D1-29 – Annotation

Gene IDLength(bp)Gene nameCOGProductNucleotide seqProtein seqPGPT:Locus TagPGPT:EffectPGPT:L1PGPT:L2PGPT:L3PGPT:L4PGPT:L5PGPT:L6
D1-29_00001960gyrA_1COG0188DNA gyrase subunit AGTGACAACCACCCACCACTGGCTGCTGTTCTTCACCAACCTGGGCCGCGTCTACCGCGCGAAGGCCTACGAACTGGTGGAGGCAGGCCGGGACGCCAAGGGCCAGCACGTGGCCAACCTGATGGCGTTTCAGCCGGACGAACACATCGCCCAGGTGCTGGACCTCAAGGACTACCAGCACGCGCCCTACCTGGTCCTGGCCACCAAGCGCGGCCTCGTAAAGAAGACACGCCTGGAGGACTACGACACCAACCGCTCCGCCGGCGTTATCGCCATCAACCTGCGCGATGAGGATGAGCTGGTGTCCGCCCAGTTGGTATCCGAAATGGATGACCTCCTGCTGGTGTCCCGGAAGGGTCAGTCCATCCGCTTCACGGCTACCGATGATGCCCTTCGTCCGATGGGCCGTGCAACCTCCGGTGTCACGGGGATGAAGTTCCGCGAGGACGACGAACTGCTGGCAGCCAACGTGGTCACTGATGGATCGTTTGTGTTCATCGTGACCGAGGGCGGCTACGCCAAGCGCACGGCCGTGGAAGAGTACCGGCTCCAGGGCCGCGGCGGATTGGGAATCAAGGTTGCCAAGCTTGCCGAAGAGCGCGGTGACCTTGTGGGTGCACTGATCGTCCAGGAAGAAGACGAAGTCCTGGTGGTAATGGAAGGCGGCAAGGTGGTCCGTTCCTCGGTGGCCGGCGTTCCCGCAAAGGGCCGTGACACCATGGGCGTCATCTTTGCCAAGCCGGACAAGAATGACCGGATCATCGAAGTGGCACGGAACAGCGAACGCGGTCTCGAGGGAGATGAATCCCTGGAGGATGACGTAACGTTGGCTGATGAGGCTGGATCCCCCGAGGGATCCGCAGAATCAGAGGCAGTGGCAGAAACATCACCGGCCGTTGAGTCAGAGGACGCCTCCGGCGACGCTGAGCCGAACGAAGACTACACCGGAGGTAACGAGTGAMTTTHHWLLFFTNLGRVYRAKAYELVEAGRDAKGQHVANLMAFQPDEHIAQVLDLKDYQHAPYLVLATKRGLVKKTRLEDYDTNRSAGVIAINLRDEDELVSAQLVSEMDDLLLVSRKGQSIRFTATDDALRPMGRATSGVTGMKFREDDELLAANVVTDGSFVFIVTEGGYAKRTAVEEYRLQGRGGLGIKVAKLAEERGDLVGALIVQEEDEVLVVMEGGKVVRSSVAGVPAKGRDTMGVIFAKPDKNDRIIEVARNSERGLEGDESLEDDVTLADEAGSPEGSAESEAVAETSPAVESEDASGDAEPNEDYTGGNENANANANANA
D1-29_00002654hypothetical proteinGTGAGTAATCCCGACTCATATCCCACACCGAGCACGAATGGTCCTGGCGGAACACGCCAACCCGCGACAGCTCCCCGGGTGAACGCCCCCGTTCGTCCCCAGCAGCGGCCGGCAGCTGCCGGCGCTCCGAGCCAGCGGCCCGCAGTTCCGGGCCAGCGCCCCGCCCAAGGGCCCGTTCAGGGTCAGCCGGGTTCCGGCCAGCGGCCTGCTCCAGGCCAGCGGCCGGCGGCTCCGGGCCAGCGGCCCCAGCAGGGCGCTCCCGGACTGGTCAAGCCGGCACCCAAAGCCAAGGTGAGGCGGGCCCGGCTGCTTGTCAGCAAGGTGGACCCGTGGTCGGTCCTGAAAATGGCATTCCTCCTTTCGGTGGCGCTGGGAATCGTTACCGTGGTTGCCGCCATCGTGCTCTGGACGGTCCTGGACCTCACCGGCATCTTTGACCAGGTGGACAGTCTCCTGGGAACCCTTGCCGGTGCGGAGGGTGGCGGGTTCGAACTGAAGAAGGTCGCATCCCTGGGGCAGGTGGCCTCGTTTGCCACCATCATTGCCGTGGTAAATGTTGTACTCCTGACAGCGCTGTCCATGCTGTCCGCCGTGCTCTACAACCTGTCGGCGGCACTTGTCGGCGGCATCGGTGTCACTCTTACGGACGACTGAMSNPDSYPTPSTNGPGGTRQPATAPRVNAPVRPQQRPAAAGAPSQRPAVPGQRPAQGPVQGQPGSGQRPAPGQRPAAPGQRPQQGAPGLVKPAPKAKVRRARLLVSKVDPWSVLKMAFLLSVALGIVTVVAAIVLWTVLDLTGIFDQVDSLLGTLAGAEGGGFELKKVASLGQVASFATIIAVVNVVLLTALSMLSAVLYNLSAALVGGIGVTLTDDNANANANANA
D1-29_000051011hypothetical proteinATGGTGACCTTCTTAATCGCGGCGCTTGGCGTGCTGGGGGTGGCATCGTCGGGTCCGCTGATTGCCGCCACCTTGGGCGCCACCAGTGTGAGTGCCCTGGCCATAGCTTTCTGGCGCAACGCCATCGGGGCAGCGGTCATGGCAACCCCGACCCTGATCCGTGAGCCCCGGCAATTTGGTCACGTCAGCCGGCGGGAGTTCCGCTGGTCTCTTTTGGCGGCAGTCGCCCTTGCCCTGCATTTTGCGTGCTTTATCACCTCACTTCAACTGACATCGGTGGCTGCCGCCACAGCGCTGGTCTGCCTCCAATCCGCGTGGATTGCCGTCTTCCAGCTGTTCCGCGGAACCAGGCACGGGTGGCCGGTGCTCGCCGGACTGGGGATTGCGTTTGGCGGTGTTGTGGCGATCACCGGCTTCGATATGGGATCCTCTCCCAGCGCCCTGCTTGGGGATCTGCTGGCGGTGGCCGGAGGCGCCCTTGCCGGCCTGTACACCTTGGCGGGCGGCAAGGCGCGGCAAAGCATGACCACGGGAACCTACACCACCCTGTGCTACGGGATGTGCGCCGCGGTGGTAGCTCTGCTGGCGCTGCTCACCAACCAGCGCCTGACGGGGTTCGAGGCCGCGGGATGGCTGGGCATCGTGGCAATCACCGTGTGCGCCCAACTGGTGGGCCATACGGCGTTTAACCACCTGCTGGCCACCATGAGCCCGCTGTTGGTCTCAATGATCATCCTGCTGGAGATCCCGGGCGCTGCCGTGCTGGCTGCGATCTTCCTGCACGAGACCCTCCCGGCCGGCACCTACGCGGGGCTGGGACTCATCCTGGTGGGACTGGCGGTTGTGGTCCTGGGACAGAAGAGCGGCATTGCAGCCGGCCGCAGCCGCCCAGGCGGCGCCGGAACAGCCGGCGAAACCGGAACAGCCGGAAGAACCGGCAAAGGGAAGGGCGGGGCCGGGAGCGGCGAACCGCCGTCGGACCAGCCCCTGGCCGAGCTGGGAACTGACTAGMVTFLIAALGVLGVASSGPLIAATLGATSVSALAIAFWRNAIGAAVMATPTLIREPRQFGHVSRREFRWSLLAAVALALHFACFITSLQLTSVAAATALVCLQSAWIAVFQLFRGTRHGWPVLAGLGIAFGGVVAITGFDMGSSPSALLGDLLAVAGGALAGLYTLAGGKARQSMTTGTYTTLCYGMCAAVVALLALLTNQRLTGFEAAGWLGIVAITVCAQLVGHTAFNHLLATMSPLLVSMIILLEIPGAAVLAAIFLHETLPAGTYAGLGLILVGLAVVVLGQKSGIAAGRSRPGGAGTAGETGTAGRTGKGKGGAGSGEPPSDQPLAELGTDNANANANANA
D1-29_00006876arnC_1Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferaseATGTCAGCCGATAAATCCTCTGGGGATGCCTTGAACGACGCAGCACAGCTGCCCAGCGTGTCCATCGTCATCCCGGCCTACAACGAGGAGAGCGTTATCAGGCAGTGTCTCATCGCTGCCATCTACCAATCCGTTCCGGCCCACGAGATCATCGTGGTGGACAACCGCTCCACGGACCGGACCGCAGCCATCGTGCGGCAGATGCAGCAGGAATATCCCGAGAGTCCGGTTATTCTGCTCAGCCAGCATGAGGAACAGGGCCTGATTCCCACCCGCAACTACGGCCTGAACCACGCAACCGGCGATATCCTGGGGCGCATTGATGCGGATTCAGTCGTGGAGCCGGACTGGGTGGAGCAGGTACAGAAGGCATTCCTGGACGAATCCGTGCAGGCGGCCACCGGCCCCGTGGTCTATTACGACATGCCCATGCGGCGGTTCGGCTTGAAGGCCGATGACAAGATGCGCCAGCTGATGCTGAAACTCGCCAAGCACCAGTACCATTTCCTGTTCGGCTCCAACATGGCCATGCGGGCCTCGGCCTGGGAGACCATTCGCGACGAAACCTGCCGCGATGAGAAGGACGAGATGCACGAGGACATCGACCTCTCACTGCATCTTGCCGACCACGACCTGAGGGTGCAGTACTGGCCTCAGATGGTCTCCGGCATGTCAGCGCGCCGGCTCGAGGATTCCCCCCGGGACTACCGCTACTACGTAACCCGTTTTGACCGCACGTACAAGGCACACAACGTCAAGAAAATGGCGCTCAAGGCTCCCATGGTGGTCTTCTTCTCGGTGTACTTTCCGGCCAAGCTCCTGCGTGCAATCCACACCGTAAATACCACCCAGCCCGTCCGCCGCGGCGGCCAGTAGMSADKSSGDALNDAAQLPSVSIVIPAYNEESVIRQCLIAAIYQSVPAHEIIVVDNRSTDRTAAIVRQMQQEYPESPVILLSQHEEQGLIPTRNYGLNHATGDILGRIDADSVVEPDWVEQVQKAFLDESVQAATGPVVYYDMPMRRFGLKADDKMRQLMLKLAKHQYHFLFGSNMAMRASAWETIRDETCRDEKDEMHEDIDLSLHLADHDLRVQYWPQMVSGMSARRLEDSPRDYRYYVTRFDRTYKAHNVKKMALKAPMVVFFSVYFPAKLLRAIHTVNTTQPVRRGGQNANANANANA
D1-29_00007957hypothetical proteinGTGAAGAAATCGGATCGTATTGCCCGTGACCTTGAGCAGTCTGTCAGCAGTGCAGTAGAGAACGCCAAGGATTGGGCAACCCCCCGCGTGGAAGCAGCAGTGGACTGGGCTGTTCCCCGTTTGCAGCATGGCCTGGACACCGCATCTCCCAAGATCCAGGAGGGGCTGAAGACGGCCGCTTACAACCTGGCCGACGGCGTTGCAACGGTAACGCCCCGGATCCAGGACGGCCTGGCCCACCTCGCCCCCAAGATCCATGACGCGGTGGAAGGCACCACCCCGCGCCTCCACGAAGCGCTGGACAAGGCCACTCCGGTAATCCTGAACGCACGGGACCGCGTGGTGGTGGAATACCTCCCGCGCCTCTCTGACCAGATCGGCCATGCGTCCGATGCCGTGCACCGTACTCTGGAGAACGCACCGACTCACGTTGACGCTGTGGCGCAGAAGCTCGGCGACGTCGGCATCGTGCATGCCCTGCAGGAACAGGCGCAGACCACAGGCACCCAGATCAAGGCTGCGGCAGCTGAAGCAGGCAAGGCGGTAGGCGTTCAGCTCGCCCAGCCCGAGAAGCCGAAGAAGCGCGGCTGGCTGGTCTTTGGTGTCATTGCCGCGGCAGTAGCCGCAGGCGTGGCAGCCTGGAAGGCCTCCAAGCCTGTTGAGGACCCGTGGAAGACGCCGTCTCCCGTTACCCCAACACCGGCGCCGGTTCCCGCTGCCACAGTGACCGAGGGGCAGGAGTCCGCAGCTGCAGGAACGGATAGTGCCGCCACCGCTACGTTGACGGGCGCAACCTCAGCCACCACGGAGGACGCTGACCAGGACGCAGCTGACAAGGCCAAGCATGTAGCTGATGAGGCCAGTGACGCCGCTGCAAAAGCGTCCACCGATGCGAAGACCGCCATGAAGAACATCGCGTCCAACATGAACGGTTCCGCGGACAAGGGCACCAGCTAAMKKSDRIARDLEQSVSSAVENAKDWATPRVEAAVDWAVPRLQHGLDTASPKIQEGLKTAAYNLADGVATVTPRIQDGLAHLAPKIHDAVEGTTPRLHEALDKATPVILNARDRVVVEYLPRLSDQIGHASDAVHRTLENAPTHVDAVAQKLGDVGIVHALQEQAQTTGTQIKAAAAEAGKAVGVQLAQPEKPKKRGWLVFGVIAAAVAAGVAAWKASKPVEDPWKTPSPVTPTPAPVPAATVTEGQESAAAGTDSAATATLTGATSATTEDADQDAADKAKHVADEASDAAAKASTDAKTAMKNIASNMNGSADKGTSNANANANANA
D1-29_00008546cypBPeptidyl-prolyl cis-trans isomerase BATGACTGCCATCGCAACTGCAAAAGCAACCATCCACACAAGCCTCGGCGACATCGCCGTGAACCTCTTCGGCAACCACGCGCCCAAGACGGTCAAGAACTTCATCGGACTCGCCACGGGCGAGCAGGCCTGGACCCACCCGGAGACGGGTGAGGACAAGACCGGCACGCCGCTGTACAACGGCACCATCTTCCACCGGATCATCAAGGACTTCATGATCCAGGCAGGCGATCCCCTGGGCCGCGGCGTCGGCGGACCCGGCTACAAGTTCGACGACGAGATCCACCCGGAGCTCAGCTTCAACCAGCCGTACAAGCTGGCCATGGCAAACGCCGGAATCCAGATGGGCAAGGGCACCAACGGCTCGCAGTTCTTCATCACCACCATCCCCACTGACTGGCTTCAGGGCAAGCACACCATCTTCGGCGAAGTGGCCGACGACGAATCCAAGAAGGTCGTTGACGCCATTGAAGGCGTTCGCACCGGCATGGGCGACCGCCCTGTTGAGGATGTCACCATCAACAGCATTGATATTGAACAGCTCTAGMTAIATAKATIHTSLGDIAVNLFGNHAPKTVKNFIGLATGEQAWTHPETGEDKTGTPLYNGTIFHRIIKDFMIQAGDPLGRGVGGPGYKFDDEIHPELSFNQPYKLAMANAGIQMGKGTNGSQFFITTIPTDWLQGKHTIFGEVADDESKKVVDAIEGVRTGMGDRPVEDVTINSIDIEQLPGPT0015110_1914DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
D1-29_00009882gluPCOG0705Rhomboid protease GluPATGAGTTACGGAATCCCGTCGGTCGAGCCGTCCGCGCAAGTCCCGGTCTGCCCCAGGCACCCGGACCGGCCCTCCTATGTGCGCTGCCAGCGCTGCGGGCGCCCCGCGTGCCCCGATTGCCAGCGGGCGGCCGCCGTCGGGTTCCAATGCATTGACTGTGTCAACGAGACAAAACGGACGACGCCGGCAGTCCGGACGGTCTACGGCGGCGCCGTAGCAACCGGCAAACCACTGGTGACGTTTGGAATTATCGCCGCTTGTGCGGTGATGTATGTTCTTCAATGGATTGTTCCTGGTGAGTGGATCTTCCAGAACCTGGCATTCGCCAATGGATTCGTCAATCCCGACTCTGGCCAGTTCGAACCGTGGCGAATGCTGACGGCGGCTTTCCTGCACTCCCAGGGTTTCATCCTCCACATTGTGCTGAACATGTACATGCTGTGGATTTTTGGCCAGGCACTCGAACCGCTCCTGGGCAGGGTCCGCTTCCTGGCCTTGTATCTCATCTCCGCTATCGGCGGGTCCGTGGGCTACCTGCTCCTGACGCCCGGCTATGTGCCTGGCGTGCCTCAGGCCGGCGTGGTTGGCGCTTCCGGGGCAATCTTCGGACTTTTCGGGGCAATGCTCCTGGTTCAACGGCACCGGGGCGGCGACACCCGGCAGTTGTGGGTACTCATCGCCATTAATGGCGTAATCGGCTTCGTCATTCCACAGATTGCCTGGCAGGCGCACCTCGGCGGGCTCATTACCGGCGGGCTATGCGCGGCCGTGATCGCCTACACTCCCCGTGGACCACGGCAGGCCCTGCTGCAGGGCTGCGGCCTGGCAGCAGTTGTCATCCTGCTCTTTCTGGTGAGCTGGCTCCGGGTAACCGCTGGCTGAMSYGIPSVEPSAQVPVCPRHPDRPSYVRCQRCGRPACPDCQRAAAVGFQCIDCVNETKRTTPAVRTVYGGAVATGKPLVTFGIIAACAVMYVLQWIVPGEWIFQNLAFANGFVNPDSGQFEPWRMLTAAFLHSQGFILHIVLNMYMLWIFGQALEPLLGRVRFLALYLISAIGGSVGYLLLTPGYVPGVPQAGVVGASGAIFGLFGAMLLVQRHRGGDTRQLWVLIAINGVIGFVIPQIAWQAHLGGLITGGLCAAVIAYTPRGPRQALLQGCGLAAVVILLFLVSWLRVTAGNANANANANA
D1-29_00010471hypothetical proteinATGAGCGCCACCACCACGCAGCACATTTTCCTGGACAAGCAGCACCCAGCCATCTGGCGGGCCTTGAACGGCTTGGGCCTGAAAGTCCGCGAGGCTGCTGCGGAGACCGGGATCGACAGTACAATCATCGATCTCCTCTATGTACGGATCTCCCAACTCAACGGTTGCGCGTACTGCCTGGACATGCACGTGAAAGAAGCCGTGGACAATGGTGAAACGCCGCAGCGTCTGGCCGTGCTGCCGGCCTGGCGGGAGACGGCACTCTTCACCGACAAGGAGCGGGCTTCCATCGCGCTTGCAGAATGCATCACGGAGCTGCCGGATTACCGGTCCCGGGAGCATGAGGAGGGATATGCCCGTGAACACCTCAGTGCCGAGGAATTCTCGGTGGTCAGCTGGCTGGCGATCACAATGAACGCCTTCAACCGCGTATCAATCACCAGCCATCATCCGGTGCGCCGGGAGCGTTAAMSATTTQHIFLDKQHPAIWRALNGLGLKVREAAAETGIDSTIIDLLYVRISQLNGCAYCLDMHVKEAVDNGETPQRLAVLPAWRETALFTDKERASIALAECITELPDYRSREHEEGYAREHLSAEEFSVVSWLAITMNAFNRVSITSHHPVRRERNANANANANA
D1-29_00011615tagCOG2818DNA-3-methyladenine glycosylase 1ATGGCCCCCGGCAGCGACGGCTCCATGATTGGAGCCGACGGATTGGCCCGGCCGCCGTGGGCCTCCGTTGATCCCCTCTTGCGGGAGTACTACGACACCGAGTGGGGCCTGCCTGTCCGGGACGAGCAGGGACTCTACGAGCGGATCTGCCTGGAGGGCTTTCAGGCTGGGCTGTCCTGGGCGATTATCCTGCGCAAGCGCCCCGCCTTCCGGGAGGCGTTTCACGACTTCCAGCCGGACACCGTTGCAGCCTTCACGGAGGCTGACGTGGAGCGCCTCCTCCAGGACCCCGGCATCGTCCGGAACCGGCTCAAGATCCGGGCGGCCATCGCCAATGCCCGTGCAACAGTTGCCCTGCGTGAACAGGGTGGCCTGGTGGCCTTCGTCTGGCGGTATCAGCCGGAAACAACGCCACACCCCCTTACCCACGCGGACATTCCCACCCAGTCGCCGGAGTCCGTGGCGCTGTCCAGAGCCCTGCGCAAGCAAGGGTTTTCCTTCGTCGGGCCCACCACAATGTTTGCCCTGATGGAAGCAATCGGAATGATTGATACCCACCTGCTGGACAGCCACCGGCGAGGCTCATCGGGAGTGTGGCCACAGGCACTTCGCTGAMAPGSDGSMIGADGLARPPWASVDPLLREYYDTEWGLPVRDEQGLYERICLEGFQAGLSWAIILRKRPAFREAFHDFQPDTVAAFTEADVERLLQDPGIVRNRLKIRAAIANARATVALREQGGLVAFVWRYQPETTPHPLTHADIPTQSPESVALSRALRKQGFSFVGPTTMFALMEAIGMIDTHLLDSHRRGSSGVWPQALRNANANANANA
D1-29_00012255crgACell division protein CrgAGTGCCAGAGTCAAAGCCACGCAAGAAGACTTCCAGCGCTGTGCCGGCATCTTCCTCAACCCAGGCATATAAGCCAAACCCCATCTGGTTCAAGCCTGTGATGTTCGGCCTGATGATCATCGGCCTGCTCTGGATCATCACTTTCTACATCAGTGAAGGCCGGCTTCCCGTCCAGGCCTGGGAGTCATGGAACATCGTCGCCGGCTTCGGGATCGCCATCATCGGCTTCCTGATGACCACCCGCTGGCGTTCCTAGMPESKPRKKTSSAVPASSSTQAYKPNPIWFKPVMFGLMIIGLLWIITFYISEGRLPVQAWESWNIVAGFGIAIIGFLMTTRWRSNANANANANA
D1-29_00013789srtE1COG3764Sortase SrtE1GTGGTATTGCAGGAAAAGGCGAGGCCCGCCGCTGTGCCGGCTCCCGGCGTCGTCCTTCTGCGCGGGACTGTCCAGGTGCTGGGTGAACTGCTCATCACCGCCGGCATTGTCCTGCTGCTCTTTGTGGCGTGGCAGCTCTGGTGGACAAATGTGGAATCGGACGCCAAGCAGAGCGCGATCATCAAGGAATTCGCCCAGGACCTTGGCGGCGCCACACCGGCCCCAGCTGCCGCCCCGGACCCGGGAGCAGCGCCGGTGGACTACGGCGCTCCGGTGGTTTCCGCGGCCCCGGGCCACGCCGGAACCATCGGCCTCATCTACATCCCCCGATTTGGCGAAAGCTATACCCGGCCCATCGTCCAAGGAACCACAGGAGACGTGCTGGATACCCTGGGGCTGGGCCATTACAGCAGTACAGCCATGCCCGGGGCCGTAGGAAACTTTGCGGTGGCGGGACACCGTCAGACCCACGGGGCCGTTCTGGACAACATCCACACGCTGGTACCGGGCGACAGGATTTATGTCCAGACCAAGGACGGCTACTACGTCTATGTCTTCCGCAACAACCAGATAGTGCTGCCGTCCAGGACGGACGTGCTGGAACCGGTGCCCACCCGGCCCGGCGTAGCCCCGACTGAAAGATTCCTCACCATGACCAGCTGCAACCCGCGCTTTGGCTCGCAGGAGCGCATTATTGCCTACGCACTGCTGGAGAGCTGGCGGCCTGCCTCTGCGGGTCCTCCGGCTGAAATCGCCGCGCAGGTGGCTGCCGCCATAGGGAAGGGCTGAMVLQEKARPAAVPAPGVVLLRGTVQVLGELLITAGIVLLLFVAWQLWWTNVESDAKQSAIIKEFAQDLGGATPAPAAAPDPGAAPVDYGAPVVSAAPGHAGTIGLIYIPRFGESYTRPIVQGTTGDVLDTLGLGHYSSTAMPGAVGNFAVAGHRQTHGAVLDNIHTLVPGDRIYVQTKDGYYVYVFRNNQIVLPSRTDVLEPVPTRPGVAPTERFLTMTSCNPRFGSQERIIAYALLESWRPASAGPPAEIAAQVAAAIGKGPGPT0024075_1349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_SORTASE,PGPT0024075-srtA-K07284NANA
D1-29_00014171hypothetical proteinATGTATGCATGGATCTTCCGGAACCTCCCGGGACCCCTGTGGCTCCGGATTCTGACCTCGCTGGTCCTGATTGCCGCCGCGCTGGTTTTGATGGTCCAGTTCCTTTTCCCCTGGATGTCCCAATTCACCCAATTCACCGACTCAACGATTGGTTCACTAAGCCAGCCATGAMYAWIFRNLPGPLWLRILTSLVLIAAALVLMVQFLFPWMSQFTQFTDSTIGSLSQPNANANANANA
D1-29_00015642trpGCOG0512Anthranilate synthase component 2ATGACCACAACCAAGATCCTGGTCGTAGACAACTACGACAGCTTTGTTTACACCCTGGTGGGTTACCTCCAGGAGCTCGGCGCCGAGACCACCGTGGTGCGCAATGACGACGTCACCCTGGCGGAAGCGATCGAGATGGCCGAAACCCGCGACGGCGTGCTCATCTCACCGGGCCCCGGCAACCCCGCTGAAGCCGGAGTCTGCATCGAGCTGATCAAATGGTGCGGCGGGAACACCAAGCCGATGTTTGGGGTCTGCCTGGGACACCAGGCTTTGGCCGAGGCCTACGGAGGCAAGGTCACCCACGCCCCGGAGCTGATGCACGGCAAGACGTCCCCCGTGGAGCACAACGGCACCAGCGTTTTTGTGGGGCTCCCCTCCCCCGTCACCGCCACCCGCTACCACTCACTCGCAGCGGTCCGGGAAACCATCCCCGACGCCCTGGAAATCACGGCGGAAACATCATCAGGAGTGGTGATGGGCCTCCAGCACCGGACGGCACCGCTCTGCGGCGTGCAGTTCCACCCCGAGTCGGTGCTGACCGAGGGCGGCTACCAGATGCTGGGCAACTGGCTGGAGTCGCTCGGCATGGCTGGAGCGGCAGCGCGGGCTGCGAAGCTGAGCCCGCTCATCCAGAACTGAMTTTKILVVDNYDSFVYTLVGYLQELGAETTVVRNDDVTLAEAIEMAETRDGVLISPGPGNPAEAGVCIELIKWCGGNTKPMFGVCLGHQALAEAYGGKVTHAPELMHGKTSPVEHNGTSVFVGLPSPVTATRYHSLAAVRETIPDALEITAETSSGVVMGLQHRTAPLCGVQFHPESVLTEGGYQMLGNWLESLGMAGAAARAAKLSPLIQNPGPT0008000_362DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008000-pabA-K01664NANA
D1-29_000161908pknBCOG0515Serine/threonine-protein kinase PknBGTGGACCATCAGCGTGTCCTGAACGGCCGCTATGAGCTTGGTGGACTCCTTGGCCGTGGGGGCATGGCGGACGTTCACCGGGGAGTGGACACCCGCCTGGGCAGGACGGTCGCGATCAAGTTGCTGCGGCCGGACATGGCGCGCGATCCGCAGTTCCAGGCCCGTTTCAAGCGTGAGGCGCAGTCTGTTGCGGCCCTCAACCATCCATCCATCGTTGCCATCTACGACACAGGCGAGCACACGGTTCCCGACGGCTCTGAGGACAATGTCAGGGTTCCCTACATTGTGATGGAATTCGTCGAAGGCCAGACTCTCCGTGACCTGATCCGGGCCAGGGAAGTCAGTATCGATCAGGCCATCGATTACTGCCTCGGGGTGCTGTCCGCCCTGGAGTACAGCCACAAGGCCGGAATTGTTCACCGGGACATTAAGCCGGCCAACGTGATGTTCTGCGACGGCTCCAATTCCGTCAAAGTCATGGACTTCGGGATTGCCCGCGCCATCGCTGACTCCTCTGCCACCATGACGCAGACGCAGGCGGTAGTGGGAACGGCCCAGTATCTTTCACCGGAGCAGGCACGCGGGGAAACCGTGGACGCGCGCAGCGACCTCTACTCGGCGGCGTGCCTGCTCTACGAAATGCTCACCGGCCGTCCGCCCTTTATCGGCGACAGCCCGGTGTCCGTCGCCTATCAGCACGTCCGTGAGATTCCAGAGCCCGCCAGCAGCGTGAACCCGGAGGTTTCAGCGGCCCTTGACTCTGTCCTGGCCAAGGCCCTCCAGAAGAACAGGGCCGATCGTTTCCAGGATGCTGCGGCTTTTCGGCGTGCACTCCGCGCCGCCCGGGCAGGGGTTCCTGTCCCCGAGCTTCCGGCGACGGAAGCCCCCACAGACCCGAACGACCACGTCCCCTCACCGGAACGCGCCCCGGCCACGGAGGCTTTCGCTTACACCGGTGCCAGCTTCCTGGATGATGCCCCTACCGGGAGGCTCCGGGCCAGCAGCCATGCCCTGGCGGAGGACGGCCCCGCTGTCCGGACGGCCGCCAACGATGAGCCCTCCGAAGCAGATGCGCTGCCCCTGGCATTCTCAGCGGAACGTGAGCGGACTCCGAGGCAGAAGTCCCGGCGTCGTGCGTGGACCGCCACCTTGGTGATTTTCACCCTGCTGGTCCTGGCAGGGGGAGGGTTCTGGGTCTACAGCATCGTGAACCAGCCGCCTCCCGCCCCTCCCAAAGTGGAGATCCCGTCGGTGGCCTCGCTAACGGAGTCTGCCGCCCTCCAGGAACTCTACGGTGACAACCTGCGCCCCCAGATCAAGCGTCTCCAGCACGACACAGTGCCCAAGGGGACAGCCATCGGCACGGACCCGGCGGCTGGAACTTTACTGGACCCCAATTCGGAGGTGGTGCTGAACATCTCCGACGGCCCCACAGCGGTGAAGATTCCTGACAACATCCCCGGCCAGACCGAGGCTGCCGCCCGCGATATCCTGCGTCAGGGCGGCCTGGTGGGTGCCGCCTCCACCACAGAGGCCAACAGCGCCACGGTGCCGGCGGGCAAGGTGATCACCACCAGCCCCGCGCCTGGCCAGATGGTGGCCGTGGGCAGCACCGTGGAAATTGTTGTTTCCACCGGCAAGGTTTCCATGCCTGAACTGCGTGGCCGGACCAGGGCTGAAGCGGAGGCCGCACTGAAGGAGCTCGGCCTGGTCCCCAATGTCGCGGAAGTCGAAAACTCCCAGGTGGAGGCAGGACGGGTGACGGATCAGAGCGACCCCGTCAACACCGCTGTTCCACAGGGCAAGGTCATCAATCTCGTAGTGGCCAAGGCACCGCCGCCCCCGCCTGCCACCCCCACGCCGACGCCCACACCAACTGCCACCAAAAAGGACCTACTCGGCGGGTAAMDHQRVLNGRYELGGLLGRGGMADVHRGVDTRLGRTVAIKLLRPDMARDPQFQARFKREAQSVAALNHPSIVAIYDTGEHTVPDGSEDNVRVPYIVMEFVEGQTLRDLIRAREVSIDQAIDYCLGVLSALEYSHKAGIVHRDIKPANVMFCDGSNSVKVMDFGIARAIADSSATMTQTQAVVGTAQYLSPEQARGETVDARSDLYSAACLLYEMLTGRPPFIGDSPVSVAYQHVREIPEPASSVNPEVSAALDSVLAKALQKNRADRFQDAAAFRRALRAARAGVPVPELPATEAPTDPNDHVPSPERAPATEAFAYTGASFLDDAPTGRLRASSHALAEDGPAVRTAANDEPSEADALPLAFSAERERTPRQKSRRRAWTATLVIFTLLVLAGGGFWVYSIVNQPPPAPPKVEIPSVASLTESAALQELYGDNLRPQIKRLQHDTVPKGTAIGTDPAAGTLLDPNSEVVLNISDGPTAVKIPDNIPGQTEAAARDILRQGGLVGAASTTEANSATVPAGKVITTSPAPGQMVAVGSTVEIVVSTGKVSMPELRGRTRAEAEAALKELGLVPNVAEVENSQVEAGRVTDQSDPVNTAVPQGKVINLVVAKAPPPPPATPTPTPTPTATKKDLLGGNANANANANA
D1-29_000171722pknD_1Serine/threonine-protein kinase PknDGTGAGGCCTACAACGGGAATCACCCTCGGCGGCAGATTCCAGCTGACCACGCGGATTGCGATCGGCGGCATGGGCGAGGTCTGGAAGGCGAAGGACCTCATCCTGGGCCGGATAGTCGCCATCAAGGTGCTGAAGGAGGAGTACACCGGCGACCCCGGATTCCTCCAGCGGTTCCGCGCCGAGGCACGCCACACTGCACTCCTGAACCACGAGGGCATCGCCAACGTTTTCGACTACGGCGAGGAAGAGGGCTCTGCCTACCTGGTGATGGAACTGGTTCCAGGCCAGCCGCTGAGCAGCATCATTGAACATGAGCGGGTGCTGTCGCCGGACCGTACCCTGTCCATGATTGCCCAGACTGCCCGCGCCCTGTCCATCGCCCACGCCCAGGGCCTGGTGCACCGCGACATCAAGCCGGGCAACCTGCTGATCATGCCCGACGGCCGCGTCAAGGTGACTGACTTCGGCATTGCCCGCCTGGCCGACCAGGTTCCGCTCACGCAGACCGGACAGGTGATGGGCACCGCCCAGTACCTCGCGCCGGAACAGGCCACGGGGCAGACAGCCACCGGGGCCTCGGACATCTACTCGCTGGGCGTGATCGGGTATGAGTGCCTCACCGGACGCCGGCCGTTCTCCGGCGAGTCCCAGATCGCCATTGCGCTTGCGCAGGTGAACGACGCTCCGCCACCGCTGCCGGATACACTGCCCAAGCCGATCCGTGCCCTCCTGATGTCCATGCTGGCGAAGGATCCGAAAAACCGTCCGGCCAATGCCATCAAGCTGGCGGAGGCCGCGGAAGCCATCCGCCGAGGGGACATCAACGCTGCCCAGGCGGCAGTCCCTGGCATGCTGCTCTTCGACGCAGCCACCGGACCCATCACGGCTCCGGTGGATGTTGCCACCGCGCCCACGGGCGTCATCAGCGGGCAGAAGGACAGTTCGACGACGTCGACCTCCGCCCTGCCCCTGCTGGGCGCCGGAGCTGCGGGTGCTGCAGCCGGCCTTGCCGCCGGAGCGGCCGCGGCGAACGCCGACGGCGGCGGTTCCGGCGCAGGCACCGGCATGGGGAGCACGCTCTCCCGTGCAGATGCACTGGCGGCCGAGCGTACGTGGGACCAGGAAGAGGAAATCTACGACGACGAACCTGCCGATGAGCCAGAGCGCCGCGGCCGCAGCCCCTGGACCTGGCCCCTTATCGCTTTGATCCTGCTGGTGCTGTTTGCATTGGTGGGCTTCTTCCTCTCCCAGCAGGGAATCTTGTTCCCCGGCACCGAAACCACCAGTTCGGCGGCCAGCAGCCCGGCATCCACCAGGGCCACCCCCACCACCACGGCGCCGTCACCCACTGCCACCCGGACCACGCCTGCACCCACGCCGACCCCGACACCCACTCCGGAAACGGTGAACATCATTTCCACGGCCTATTTGGGTAAGGATTACCGCCAGGTCCAGTCGGCCCTGGAGCAGCTTGGCCTGTCCGTCACGGTCTTGCCACAGCAGAGCGCGGAAACGGCCGGGACTGTGCTTCAGATTAACCCGACCGGGACGGTCCCGAAGGGTACGCTGGTAACAGTTATCTATGCCGTTCCCATCCCTGCACCGCCCCCCTCGACGCCACCGGCCCCACCGTCCAGCCCGGCAGCCACGTCAGGCACAGACCCCCTTCCCGACTGCACGGCCGGCCAGCTGCCGGGTGTGCCTCCCACCTGCAAGCCGTAAMRPTTGITLGGRFQLTTRIAIGGMGEVWKAKDLILGRIVAIKVLKEEYTGDPGFLQRFRAEARHTALLNHEGIANVFDYGEEEGSAYLVMELVPGQPLSSIIEHERVLSPDRTLSMIAQTARALSIAHAQGLVHRDIKPGNLLIMPDGRVKVTDFGIARLADQVPLTQTGQVMGTAQYLAPEQATGQTATGASDIYSLGVIGYECLTGRRPFSGESQIAIALAQVNDAPPPLPDTLPKPIRALLMSMLAKDPKNRPANAIKLAEAAEAIRRGDINAAQAAVPGMLLFDAATGPITAPVDVATAPTGVISGQKDSSTTSTSALPLLGAGAAGAAAGLAAGAAAANADGGGSGAGTGMGSTLSRADALAAERTWDQEEEIYDDEPADEPERRGRSPWTWPLIALILLVLFALVGFFLSQQGILFPGTETTSSAASSPASTRATPTTTAPSPTATRTTPAPTPTPTPTPETVNIISTAYLGKDYRQVQSALEQLGLSVTVLPQQSAETAGTVLQINPTGTVPKGTLVTVIYAVPIPAPPPSTPPAPPSSPAATSGTDPLPDCTAGQLPGVPPTCKPNANANANANA
D1-29_000181458pbpACOG0768Penicillin-binding protein AGTGAACCAGGCAATAAGGAACTCGTGGGTGGCGGCAGTCGCCATGTTCGCGCTGATCTTCGGCGCCCTGAGCTACGTCCAGGTGGTGGGCGCCGATGAACTCAAGGCCAACGCATGGAACAACCGTGCCATCCTCCAGAACTACTGCAACGACCGCGGCGCCATTATCGTGGGCGGAACTCCTGTGGCGGAGTCCGTGGAAGGTTCTGAGCAGTGCAAGTTCCAGCGGACCTATACACAGCCGGAGCTGTACGCCGGAATCACCGGCTACTTCTCGCAAAATTACGGTGCGACGGGGCTGGAGCAGACCATGGGCGAGCAGCTTGCGGGCAGCTCCGACCAGCTCTTCCTGGACCGGATCGGCCAGCTGTTCCTGGGCAACCAGCCCAAGGGTGCCTCGGTGGAACTCACTATTGATCCTGAACTCCAGAAGCTCGCCTACAGCCTGATCCCGGATGGTCAGCGCGGTTCCATTGTGGTGACCAACCCCAGGACAGGCGCAATCCTGGCCATGGTGTCCAAGCCCTCCTACGATCCGAACCTCATCGCCACGCAGGATCCGGCGGCAGAAGCAGCAAACATCAATGAGCTACTCAAGGTTCCCGGCATCAACCTGAACCAGAACGTCAGTGGACCCACAGGCAACCTGCTGGCCCCGGGGTCCGTCTACAAGCTTGTTGACACTGCGGCCGCCCTCAATTCGGGCAAGTACAACAAGGACAGCGTGCTGCCCAATCCCGCGGAAATGCCGTTCGAAGGGATCCAGTACAAACTGCCCAACTATGCTGGCGGCAACTGCTACACCCGGGACACTGCTTCGTTCGCCTTCGCCCTGCAGCAGTCCTGCAACACCCCGTTCGCCAGTATTGCCCTTGACCTGGGACGGGACGCGATCGCGCAGCAGGCTGAAAAGTTCGGGTTCGGCCAGGATCTTGGCGACCAACTGAAGCTTAACTACGCGCCGGGCAACGGCTTCCCTGACGGTCTGGACGCGCCGGGGCTTGCGCAGTCGGCGATCGGCCAGAAGGATGTCCGCGCCACTCCGCTGCAGGTTGCCCTGATGACGGCGGCCATCGCCAACGGCGGCGTTCAGATGAGCCCAAACCTCATCAAGACCGTCCGTTCGCCTGACCTTCGGGTAGTGGATGAGCCTCAGCCGAAGATGTTGCGCACGTCCACCACTCCTGAAATCGCCCAGCAGATCACCCAGTGGATGACCAGCGCGGTGACCGACGGCATTGCCCGCAACGCCGGCGTCCCGGGTGTCCAGGTAGCTGGCAAGACCGGCACTGCGGAGCTCGGCAACGGCCTGAACAACTCTTGGTTTACCGGGTTCGCCCCGGCGAACAACCCGCAGGTGGGTGTCACCATCGTCATGGAGGGCGTTGACATCACCACCGGCGCACAGCTAACCAGTCCGAACGCGAAGAAGATTTTTGAGGCGGTGTTGAATAAGTGAMNQAIRNSWVAAVAMFALIFGALSYVQVVGADELKANAWNNRAILQNYCNDRGAIIVGGTPVAESVEGSEQCKFQRTYTQPELYAGITGYFSQNYGATGLEQTMGEQLAGSSDQLFLDRIGQLFLGNQPKGASVELTIDPELQKLAYSLIPDGQRGSIVVTNPRTGAILAMVSKPSYDPNLIATQDPAAEAANINELLKVPGINLNQNVSGPTGNLLAPGSVYKLVDTAAALNSGKYNKDSVLPNPAEMPFEGIQYKLPNYAGGNCYTRDTASFAFALQQSCNTPFASIALDLGRDAIAQQAEKFGFGQDLGDQLKLNYAPGNGFPDGLDAPGLAQSAIGQKDVRATPLQVALMTAAIANGGVQMSPNLIKTVRSPDLRVVDEPQPKMLRTSTTPEIAQQITQWMTSAVTDGIARNAGVPGVQVAGKTGTAELGNGLNNSWFTGFAPANNPQVGVTIVMEGVDITTGAQLTSPNAKKIFEAVLNKPGPT0023920_564DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023920-pbpA-K05364NANA
D1-29_000191398rodACOG0772putative FtsW-like proteinATGAGCCAGCTCAGCACCATCCTTAAACCGCGGCGCAACACCGAGCTGCTGCTGCTGCTGGTGGCACTGGCCGTCGGGATCGGCGCCAACATGCTGGTGGGTGTGGACCAGGAAAAGGCCTTTGATTCGGACTTCTGGTTCCAGTCCAGCCTGCTGGCCGTCGCCGCCCTCGCCTTCCACGCTGTGCTGCGCGTCCGCGCCAAATATGCTGATCCGGTAATACTTCCACTGGTGGTGGCGTTGAACGGACTGGGCCTGGCCATGATCCACCGGCTCGACGCGCCCGGCGACGACACCGGAAACAACCAGCTGCGCTGGACCCTGATCGCCATGGCCGTCGCCATCGCCGTGATCTGGTCCCTGAAGGACCACCGCATCCTGCGCCGCTTCACCTACATTTCACTTGCTGTCAGTGCGCTTCTGCTGGTCCTGCCGCTTATCCCGGGCATCTCGGCCGGTGAAATCCTGGGCGCCCGCGTGTGGATCCGGCTTGGCCCCATGACGTTCCAGCCGGGCGAGGTAGCCAAGATCACCCTCGCTATATTCTTCGCCGGGTATCTTTCCTCGAACCGGGACCTGATCCTGCTGGCTGGCCGCAAAATCGGGCCCCTGCAGTTCCCCCGCTTCAAGGACATGGGCCCCATGATCACCGCCTGGCTGGTCAGCATCGGTGTGCTGATCTTCCAGCGCGACCTCGGATCCTCTGTCCTGTTCTTCGGCCTCTTTATCGTGATGATTTACGTTGCCACCAGCCGGATCAGCTGGGTTGTGATCGGCGTAGGCCTCCTGCTCGGCGGCGGTTTCGTGGCCTCCAGGGTGTTCTCCCATGTGGGGCTGCGGATCGATGGCTGGCTGAACGCCTTCACCGATGAGGTGTACGGGCGGTCCCCCGGCGGTAGCCACCAAATTGTGCAGGGACTGTTCGGCATGGCCAACGGGGGGCTGGTCGGTACTGGCCTGGGCCAGGGCAGGCCCAATCTTGTCCCCTTCGCCAACAGCGACATGATCATTGCCTCGTTCGGCGAAGAGCTGGGGCTGATCGGCCTTTTCGCCATCGTCATGATGTTCCTGCTGCTGTTCACGCGCGGCTTCCGGGCGGCCCTGGGTACCCGGGACGCCTTCGGCAAACTGCTGGCCTGCGGATTGTCGTTCGCCATTGCCCTGCAGTGCTTCGTTGTCATCGGGGGCGTCACCCGGCTCATCCCGCTGACAGGGCTGACCACCCCGTTCCTCGCCGCCGGTGGTTCGTCCCTGCTCGCCAACTGGATCATTGTTGGCCTGCTGCTGATGATTTCGCATGCAGCGCGTGGCCCGGTGGATACCACTCCGCTGGCGCCCGCCCAGGTGGCCGAAGCCGCCGGCATTGACACTCCTACCGAGGCGGTGAAGCCCCTGTGAMSQLSTILKPRRNTELLLLLVALAVGIGANMLVGVDQEKAFDSDFWFQSSLLAVAALAFHAVLRVRAKYADPVILPLVVALNGLGLAMIHRLDAPGDDTGNNQLRWTLIAMAVAIAVIWSLKDHRILRRFTYISLAVSALLLVLPLIPGISAGEILGARVWIRLGPMTFQPGEVAKITLAIFFAGYLSSNRDLILLAGRKIGPLQFPRFKDMGPMITAWLVSIGVLIFQRDLGSSVLFFGLFIVMIYVATSRISWVVIGVGLLLGGGFVASRVFSHVGLRIDGWLNAFTDEVYGRSPGGSHQIVQGLFGMANGGLVGTGLGQGRPNLVPFANSDMIIASFGEELGLIGLFAIVMMFLLLFTRGFRAALGTRDAFGKLLACGLSFAIALQCFVVIGGVTRLIPLTGLTTPFLAAGGSSLLANWIIVGLLLMISHAARGPVDTTPLAPAQVAEAAGIDTPTEAVKPLNANANANANA
D1-29_000201902hypothetical proteinATGGCCGCCCCTGACATTTCCGCACACGAGGCCAAGCCCGTGCAGCGGCCCCTCATCATGCGCTACGCAGCGCGCTCGGATGTGGGCCGTATCCGGGCCAAGAATGACGACTCCGCCTATGTGGGACGCCACCTGGCGGTCGTGGCGGACGGCATGGGCGGGCACGCGGGCGGCGATGTTGCTTCTGCGGCCACCGTCCTGGACATGCTGCACCTTGACCACGGGGATTACGACGGCGACGCCGCCACCGTCCTGGCGGACGAGATCCAGACAGCAAACTCACTGCTGTCCGAATTGGTCCATATGAACCCGAAGCTTGCCGGCATGGGGACCACAGTCACCGCTTTGCTCCTGGCCGAAGGCAGGCTGCACTTCGCCCACATCGGCGACTCCCGCGCTTATCGCCTGCGCGATGGCATCTTCGAACAAGTCAGCGTGGACCATACGTTTGTCCAGCGCCTGATCGATGAAGGCCGGCTGCGCCCGGAAGAGGCCGAGACCCACCCGCACAAGAACGTCCTGATGCGCGTGCTGGGAGATGTTGATGCCAGCCCCGAATTGGACCTCGACGTGCTGGATGTCAAGCCCGGTGAACGCTGGCTGCTCTGCTCGGACGGACTGAACTACGTCGCCGGCCATGTGGTGGAGAGGACAGTCCGCGAGACAAAGGACCTCCGCGAGTGCGTCGAGACCCTTGTTGACCTGACCCTCGAGGCTGGCTCTCCGGATAACGTCACCGTGGTGATGGTGGAGATCGCTGAGGAAACCCCCGACGACGTCAATACTGCCGCCGTCGACGTCGTCCCTCCGGCGTTGGCAGCCGGAACCGCCGGACCAACCCAAACTGCCGCGCTGGGTTCCGCGGGGAAACCCGGCTCAGGGCCGAACGAGGCAGCAGCGTCCCTCCCGTCGTCAGGAGAGCCCGCGTCTGACAGGGGTTTTGCGGCCAGGGGTTTTGCGGCCAAGGGCATAACGGCTAAGGGTTCCCCGGACGGAGCGGCAGGAGGCGCCGGTTCCACCCGGGCAGTTCCTCCCGCAGGTGCCGCCGGGGCTGCATCCGGCGGTTCCGCGGCAGCTTCCAGTGGCACAGCTGGCGGCACTGATGACGGCCCACCGGAGGAAACCGGTGCCGAGGACGAAGCCTCCTCCACGGACCCACAGCTGGGCGAGCACCTGTCCGCCGAAGTCCTTCGGGAAGAGCTGGCTTCGCGGCCGCACGAACTCGTGGGGGCGGCGGCCTCGGCTGCAGAATCGGGCTCCATACCAACCATCGCCGGCCGCACCGTCGCCCGGCGCGCCGCCACCGTCCTCACGCACAAAGCTGAGCAGCCCTCCGGAGATTACGAGGAATTCCTCGGACAGCCTCGGCCCCGCAGATGGGTGACCCTGTCCATCGCCGCTGCTGTGGTGCTTGCCCTGACGGTCGGGCTGTGGCTCGGATACGCCTGGACCCAGACCCGCTATTACGTGGGCGAATACAATTCCCGGGTTGCCATCTATAACGGCGTTTCCCAGCGCCTGGGGCCCATCCAGCTCTCCACACTGGAGACTGAAACGGAGATTCGGATGGATTCACTTCCCCAATTTTCCCAGCAGCGCGTCCGCCAGACCGTCCCCGCCCGCGACCTTTATGATGCCCAACGGATCGTCAAGAACCTGGAGCTCACCGGAACAACGTCCCCGGCTGATGACTGCGTCACGCCCACTCCAACGCCCGGAGCCACCACGGCTGCTGCAGCACCCCCGCCCGCCGATCCCGCGGCTCCGACGGCAACGCCGGCCCCATCGGATCCGGCAGCTCCAGCGGCAACGCCCCCGCCCGCCGATTCGGCAGCCCCGCCGGTAACGCCCGCGCCAACAGCTACTCCCAGTCCCACTGCCGTCTGCGAGGGGGGCCAATGAMAAPDISAHEAKPVQRPLIMRYAARSDVGRIRAKNDDSAYVGRHLAVVADGMGGHAGGDVASAATVLDMLHLDHGDYDGDAATVLADEIQTANSLLSELVHMNPKLAGMGTTVTALLLAEGRLHFAHIGDSRAYRLRDGIFEQVSVDHTFVQRLIDEGRLRPEEAETHPHKNVLMRVLGDVDASPELDLDVLDVKPGERWLLCSDGLNYVAGHVVERTVRETKDLRECVETLVDLTLEAGSPDNVTVVMVEIAEETPDDVNTAAVDVVPPALAAGTAGPTQTAALGSAGKPGSGPNEAAASLPSSGEPASDRGFAARGFAAKGITAKGSPDGAAGGAGSTRAVPPAGAAGAASGGSAAASSGTAGGTDDGPPEETGAEDEASSTDPQLGEHLSAEVLREELASRPHELVGAAASAAESGSIPTIAGRTVARRAATVLTHKAEQPSGDYEEFLGQPRPRRWVTLSIAAAVVLALTVGLWLGYAWTQTRYYVGEYNSRVAIYNGVSQRLGPIQLSTLETETEIRMDSLPQFSQQRVRQTVPARDLYDAQRIVKNLELTGTTSPADDCVTPTPTPGATTAAAAPPPADPAAPTATPAPSDPAAPAATPPPADSAAPPVTPAPTATPSPTAVCEGGQNANANANANA
D1-29_00021483fhaBCOG1716FHA domain-containing protein FhaBATGAGCGAACTGACCATTACGGCGCTGCGGTTTGGATTCCTGCTTCTGCTCTGGGTCCTCATCTTCAGCATCGTCTCTGCCATGCGCCGCGACCTGATGGTGGGCCGCAAGGCCGCCGTCGGAACTCCCACTGCCCGCCAGGTCCGCAGAAATCCGGAACTGGCCGAAGGACCGCCACAGCCGGTGAAGCAGCAGGCGCGGCAACTCGTGGTCACCGAGGGCCCGCTCAAGGGAACCACCCTTCCCCTGGCAGCCAGTCCCATCCTGCTCGGCAGAGCCCAGGAAGCCACTTTGGTACTGGAGGACGATTACGCCTCCGGCCGCCACGCCAGGCTTTTCCCGCAGGGCAGCCGATGGTTCATCGAGGATCTGGGATCCACCAACGGCACCTACCTTGCCGATCAGCAACTTACCCGTGCCCTGCCCGTTGAGCCTGGCGTACCCGTGAGAATCGGCAAGACGGTCATCGAATTGAGGCCATAAMSELTITALRFGFLLLLWVLIFSIVSAMRRDLMVGRKAAVGTPTARQVRRNPELAEGPPQPVKQQARQLVVTEGPLKGTTLPLAASPILLGRAQEATLVLEDDYASGRHARLFPQGSRWFIEDLGSTNGTYLADQQLTRALPVEPGVPVRIGKTVIELRPNANANANANA
D1-29_00022744hypothetical proteinATGGGATTGCTGGACAAGGTCGAGCGTGGCATCGAGAAAGCCGTCCGCGGTGTCTTCTCCACCGGTTCAAAAGCCCAGGTGGAGCCTGTGGAGATTGCCAGCCGGCTCCGCCGCGAAGTGGACAACAAGGCCATTACCATCGCCGCCGGACGCACTCTGGCGCCCAACATCTTCGACGTCCAGCTCAGCGACGACGACTTCAGGCGGGCCCAGGACTGGGGCACTCCGCTGGCCGAGGAACTGTGCGATGTGGTGATCAACCACGTCCGCAGCCAGGGGTACACCCTGAAAGGCTCCGTCCGCATTTCCTTCCGCCGTCAGGAAGAGCTGCGGGCCGGTGACTTCGAGATCAAGTCCTCCACCGAAAAATCGGCGGCTGCCCCGGGCAGGCCGTCACCCCGCCCCAACATGCCAGCTGCGCCGAGCCGCGCGCCCATCCGCCTCCAGCCCGTCCTGGACATCGATGGCCAGCGGTATTCGCTCAACGCTCCATCCATTGTGCTGGGACGGTCCTCCGAGGCCGATATCCTGGTTGACGATACGGGCGTCTCACGCAAACACCTCGAAATCCAGACTGAAAACGGTGTGACCAGCGCGGTGGACCTGGGTTCCACCAACGGCAGCTACGTCAACGGGCATAAAGTGTCCGGAAGCACCGAACTCACTGACGGCTCCACCATCACGATGGGACGGACAAAGATCATCTTCCGCCTGCTGCCCGCCAATACCGGTGGCCGCCCATGAMGLLDKVERGIEKAVRGVFSTGSKAQVEPVEIASRLRREVDNKAITIAAGRTLAPNIFDVQLSDDDFRRAQDWGTPLAEELCDVVINHVRSQGYTLKGSVRISFRRQEELRAGDFEIKSSTEKSAAAPGRPSPRPNMPAAPSRAPIRLQPVLDIDGQRYSLNAPSIVLGRSSEADILVDDTGVSRKHLEIQTENGVTSAVDLGSTNGSYVNGHKVSGSTELTDGSTITMGRTKIIFRLLPANTGGRPNANANANANA
D1-29_00024393Universal stress proteinATGAGCGTCGCGGTTGGTTATGCGTCCAGTAAGGAAGGGCGCGCGGCACTGCATGCCGCCATCAATGAGGCAGCCCTGAGGGCCACAACGCTGCAGATCATGGGGCCGGCCGCTGCGGAGGAATCCACGGCCGCAGACCAGGACATCGAGGAGGCGATTGCAGCCGCAGCGGCGCTCGGCGTCAAAGCCACCCTGCGCCGCAATGAGGGCCTGGACCCAACTGACGTCATGATCGACGCGTCCTATGAGGAGGACGTTGAGTTGATCGTCATCGGGGTGCGCCGGCGCTCTCCCGTTGGCAAGCTGTTTCTAGGCAGTACCGCACAGCGGGTGATCCTGGAGGCGGGCTGCCCTGTTACGGCGGTCAAGGCCGACGTCGGGCCCGCCGCCTAAMSVAVGYASSKEGRAALHAAINEAALRATTLQIMGPAAAEESTAADQDIEEAIAAAAALGVKATLRRNEGLDPTDVMIDASYEEDVELIVIGVRRRSPVGKLFLGSTAQRVILEAGCPVTAVKADVGPAANANANANANA
D1-29_00025951COG10522-ketogluconate reductaseATGAACAACACAGCCGTCCTGCAGGTGGGGCCCCTCATGCCTATGGTCCAAGACGCCATCGTTGGCGAGTACGGAGCCCTGCGGCTCCCCGATTCAGCCGCAGACCAGGAGGCGTTCCTGCGGAGGCATGGAGAGTCTTTCGGCGTCGCGGTGACATCCGGAAAGATCGGGGTGGGTACCGAGCTGATGCGCGCCCTGCCCAACCTCCGCGCGGTGGTCAATTTCGGCGTCGGCTATGACACCACCGATGTTGCCCAGGCCGCCCAACGGGGCATCACCGTCAGCAACACGCCCGATGTCCTTAACGACTGCGTGGCTGACACTGCGATCGCGCTCTACCTCGATGTCCTGCGCAAAACCAGCGCCGCGGACCGCTATGTCCGCCGTGGTGATTGGGTCAGCAAGGGAAACTTCCCCCTTGCCACCAAGGCGAGCGGGACGCGCGTGGGCATCCTGGGCCTTGGCCGGATTGGGCAGGTCATCGCACGGCGGCTTGAAGCCTTCGACTGCACCATCAGCTACCACAGCCGCAGCAGGGTAGCCGGGGTCAGTTATGAGTACGCTGCGTCCCCACGGGAACTCGCGCAGGGCTGCGATGTGCTGATCATCGCTGCCGCCGGCGGTCCGGAATCGGCGGGGCTGGTGGATGCGGATGTCATTGCCGCCCTCGGTGCCAGGGGCTATCTCATCAACATCGCGCGGGGTTCTGTCGTGGACCAGGAAGCGCTGGTTTCCGCCCTGCTGGCCGGGCGGCTTGCCGGCGCCGGACTGGATGTCTTTGCCGACGAACCAAAGGTCCCCGAGGACCTCCTGGCCCTGGACAACGTGGTCCTGCTGCCGCACCTGGGCAGCGGCACGCACGAAACCAGGGCCGCCATGGCCGAACTCACCCTGGCAAACCTCCGGTCATTCCTGGCCACGGGGTCCGTCCTGACAGCCGTCTCCGTATGAMNNTAVLQVGPLMPMVQDAIVGEYGALRLPDSAADQEAFLRRHGESFGVAVTSGKIGVGTELMRALPNLRAVVNFGVGYDTTDVAQAAQRGITVSNTPDVLNDCVADTAIALYLDVLRKTSAADRYVRRGDWVSKGNFPLATKASGTRVGILGLGRIGQVIARRLEAFDCTISYHSRSRVAGVSYEYAASPRELAQGCDVLIIAAAGGPESAGLVDADVIAALGARGYLINIARGSVVDQEALVSALLAGRLAGAGLDVFADEPKVPEDLLALDNVVLLPHLGSGTHETRAAMAELTLANLRSFLATGSVLTAVSVPGPT0001315_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001315-2_ketogluconate_reductase-K22229NANA
D1-29_000261560sgrR_1HTH-type transcriptional regulator SgrRATGACGCCTTCTTCAAAGCATCCTTTTCACCCCGCCCTTCTCACTTGGCCGGCGCTGGCCTCAGCCGGGCTTCTGGCACTCACCGGCTGCTCAGTGGCCAATTCCGACGGCGGCACGGCCGCCGCGAGCACCGTACGCGTGGTGCTGGGCCAGGAACCCCCCACCCTGGAAGCGTGTGAATCAAACCTGACGTCCACCGGGGTGGTGGTCCGCTCCAACGTGACCGAACCCCTGATCGAGCGGAACCCCCAGACAGGCGAACTCGAGCCCAAGCTCGCCACCGAATGGGAACCAACCTCTGATACTGAGTGGACCCTGAAGCTGCGCGAAGGCGTCACGTTCCAGGACGGCACCCCGTTCAACGCTGAAGCCGCGGCTTTCACCATCGATCGGGCGGTCAACTCCAAACTCGGCTGCAATGTTGAAGGCTACGTCTTTGGCGACGCCGACCTGCTGGTTAAGGCGGTGGATGCCATCACCCTGACGGTCACCACCCCCGAACCGGATCCGATCCTCCCGCTTCGCCTTTCATTCCTGGAAGTTGTTCCTGCCTCAACAAGCACCACCGAGAAGGTCCGCGAGCCGATCGGCACCGGCCCCTACAAAATCGAGAAATGGGACGCCGGCCAGAAGATCTCCCTGACCAGCTGGGACGGCTACTGGGGCGACAAGCCCGCCTACGCCAAAGCCGAATACCAGTGGCGCTCCGAAAGCTCGGTGCGTGCCGCCATGATCACCAGCGGCGAAGCTGACGTGGCCATGGGCCTGAGTCCGGACGACAACATGGGCGACCTCGGGATCGACTACCCCAACAACGAAACCGTGGCATTGAGGCTCGACGCCAACGAGGCCCCGCTGAACGACATCCGGGTCCGGCAGGCCATCAACTACGCCATCGACAAAGAGGGAATCGTCAACTCGCTCTACCAGGGCAAGCACCAGGTGGCGGCCCAGCTGGTTCCGGAAGGCATTGTGGGACACAACGCGGAACTGAAGGGCTGGGCCTTCGACCTGGACAAGGCCAAGGACCTGGTTTCCCAGGCCAAGGCTGACGGCGTGGATACCTCAGCGCAGATCTCCCTCGTTGTCCGCAGTGCACAGTTCCCCAAGATCACCGAACTGGCGCAGGTCCTGCAGGAACAGCTGAGCCAGGCCGGACTGAACGTCAAGCTGAAGATGCTTGAAACAAGCCAGCACCTGACGTACCAGGTCCGTCCCTTCGCCGACGACGAAGGCGCCGTCGCCCTGATGACCCAGCACGGCAACCAGGCCGGCGACGCAGCGTTCACCGTTGACCAGTACATGCTGTCCACCGGCGCCCAGAGCTACTTCGGCACTCCCGAGTTCGACGCCATGATCAAGAACGCCGATGCCGCCTCAGGCGACGAGCGGAAGAAGGACTTTGAGGAGATCTTCGCCTACCAGAATGACAAGGTGGTCCAGTTCGCCCACATCTCCCACCAGACCGGCATCATCGGCAAGGCGAAGTCCGTGAACTACACGCCCAACTCCTCAAGCGGCGATGAACTGCGCGTTTCGGAAATGACCCCGGCCAGCTAGMTPSSKHPFHPALLTWPALASAGLLALTGCSVANSDGGTAAASTVRVVLGQEPPTLEACESNLTSTGVVVRSNVTEPLIERNPQTGELEPKLATEWEPTSDTEWTLKLREGVTFQDGTPFNAEAAAFTIDRAVNSKLGCNVEGYVFGDADLLVKAVDAITLTVTTPEPDPILPLRLSFLEVVPASTSTTEKVREPIGTGPYKIEKWDAGQKISLTSWDGYWGDKPAYAKAEYQWRSESSVRAAMITSGEADVAMGLSPDDNMGDLGIDYPNNETVALRLDANEAPLNDIRVRQAINYAIDKEGIVNSLYQGKHQVAAQLVPEGIVGHNAELKGWAFDLDKAKDLVSQAKADGVDTSAQISLVVRSAQFPKITELAQVLQEQLSQAGLNVKLKMLETSQHLTYQVRPFADDEGAVALMTQHGNQAGDAAFTVDQYMLSTGAQSYFGTPEFDAMIKNADAASGDERKKDFEEIFAYQNDKVVQFAHISHQTGIIGKAKSVNYTPNSSSGDELRVSEMTPASPGPT0004430_14422DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_00027930gsiC_1COG0601Glutathione transport system permease protein GsiCATGCTGATCTACTTGAGAAAGCGGATTCTTTCCAGCGCACTTCCGTTGGTGGTGGTAATCGTCGGTGTATTTGCACTGGCCAGGATGACGGGCAACCCCGCCAGCCTGTACCTGCCGCTGAACGCCACCCAACAGATGCGGGACGAGTTCACTTCACGCAACGGTTTCGACCAGCCGCTGCTGGTACAGATGGCTGACTATTTTGGCGGCGTACTCCGCCTGGACTTCGGCCAGTCCCTGCGCACCGGACAGGATGCGGCAGCCATGGCTTTGCGAGCCTTTCCCGCCACCCTGCAGCTCGCCGCCACCACCATGGTGCTGGCCGTCCTGCTGGCCCTGGTGGTGGGTTGCTGGGCCGCGTTGAAGCCGAACGGCATCGCCGACCGGATCTCAAGTTTTGTCTCCATGGCTGCCGCTTCCATCCCTGACTTCTGGCTGGCCATCGTGGGCATCTGGGTCTTCGCCATTACCCTGGGCTGGCTTCCGACATCGGGGGTGTCGGGGGCCAGCGCCTGGGTGCTGCCCATTGCAACCCTGCTGTTGCGGCCTTTCGGGGTGCTGGTCCAGATCGTCCGTGGCTCCATGGTGTCCGCATTGTCGGAGCCGTATATCAAGCTGGCCCGCAGCCGGGGTGCGGGCGAGCTGCGGGTGGTGACCCATCACGCACTGCGCAACGCCGCCGCGCCGGCCCTCACGGTGGCCGGTGACCTGACTGTAGGCCTGGTCAATGGTGCCGTTGTGGTGGAGACCATCTTCGGCTGGCCCGGGATCGGAAAGCTGATGATCGATTCGATCCTGCAGCGCGACTTCGCCGTCCTGCAGGCGGCGGTGCTGCTCACCGCCGTCGCAATCTTTGCCCTGAACATCCTCATCGACATGGGCTACGCGCTGCTGGACGCGCGCGTTCGCCCGGTCACGGCACGGGCTTAGMLIYLRKRILSSALPLVVVIVGVFALARMTGNPASLYLPLNATQQMRDEFTSRNGFDQPLLVQMADYFGGVLRLDFGQSLRTGQDAAAMALRAFPATLQLAATTMVLAVLLALVVGCWAALKPNGIADRISSFVSMAAASIPDFWLAIVGIWVFAITLGWLPTSGVSGASAWVLPIATLLLRPFGVLVQIVRGSMVSALSEPYIKLARSRGAGELRVVTHHALRNAAAPALTVAGDLTVGLVNGAVVVETIFGWPGIGKLMIDSILQRDFAVLQAAVLLTAVAIFALNILIDMGYALLDARVRPVTARAPGPT0004445_13710DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_00028963ddpC_1COG1173putative D,D-dipeptide transport system permease protein DdpCATGAAAAGTCCATCGACTGAAAGCGCCGCTGTTAAGGGCACCGAAAAGCAGGAAGGAAGGCTAAGCCTCTTCCGTCTCCTATTAAAGGACCGGTTCGCCACCGTATCCGCTGTCCTCCTGGTCCTGATCGGACTGACCGCCCTCATCGGGCCGGCACTGATGGGTGACCTGGCCACCAAACAGAACCTGCTGTTCGCCAACAAGGCCCCCTTCAGCTTCGCCTATGGGTGGGAATACATCCTGGGCAGCGATTCCCTGGGCCGGAGCATGCTGGCCAGGCTGGTGGTGGCCAGCCGGACCACCTTCTCCGTGGCCCTTCCCGCCGTGGCGGTGGCGCTGCTGATTGGTTCGCTGTGGGGAGTCTGGGCCGGCTATCACCGCGGCTGGCGCGAGAACGTGTCCATGCGCATAGCCGACGTCATCATGAGCTTCCCCTCCCTGCTCCTGGCCGTCGTTGTCCTGTACGTCTTTAGCCCCAGCGCCGGCAACATCGTGCTGATCCTGGCCCTCACCCGAATTCCGATTTATCTCCGCACCGCCCGGGCGGAGTCAGCCGAGCTGCAGAGCAGGACATTCGTGGATGCGGCCCGTACCTTTGGCGCCAGGCCCAACGCGATCATCGGCCGGCATGTCATCCCCGTGGTGTTGCCCACCCTCCTCACGCTGGCCACCCTGGAATTCTGCTACGTTATGCTCGCCGAATCCTCCCTGAGTTTCCTGGGCATCGGCATCCAGCCGCCGGACGTGAGCTGGGGCCTGATGGTGTCTCAGGGACGTCAATACCTGCAGACCGCCTGGTGGCTTTCCATCTTTCCCGGCGTTGCCATCGTTATCACCACCATCGCCGCCAACGTGCTGGCCGCCTGGCTGCGGATCGCCACTGATCCGGCCCAGCGCTGGCGCCTCGCCCTTCCCCGCAAGCGGCTGATTGCCCGCATTCCAGTCAAGGAGGCACAGCCGTGAMKSPSTESAAVKGTEKQEGRLSLFRLLLKDRFATVSAVLLVLIGLTALIGPALMGDLATKQNLLFANKAPFSFAYGWEYILGSDSLGRSMLARLVVASRTTFSVALPAVAVALLIGSLWGVWAGYHRGWRENVSMRIADVIMSFPSLLLAVVVLYVFSPSAGNIVLILALTRIPIYLRTARAESAELQSRTFVDAARTFGARPNAIIGRHVIPVVLPTLLTLATLEFCYVMLAESSLSFLGIGIQPPDVSWGLMVSQGRQYLQTAWWLSIFPGVAIVITTIAANVLAAWLRIATDPAQRWRLALPRKRLIARIPVKEAQPPGPT0004450_3137DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-29_000291134oppD_1COG0444Oligopeptide transport ATP-binding protein OppDGTGAGAACAGCTGCAGAACAAGCTCGCGCGCCACGTACCGGGACCGCAGGCAACCCGCGAGAAGAGGCCAGGGCCCATGATGTTGTCCTGCAGGTCAGGGACCTCGCCGTGGACATCCGAACCCACAGGGGCACAGTCCGCGCTGTCAACAGCGTGGCATTCGAGGCGCGTGCCGGGGAAACCTTGGCCCTGCTGGGCGAATCCGGCTGTGGCAAGTCCATGACAGCCAAGGCACTTGCCGGAATCATGGATCCGGTCTGTGACCTGGCCGGCGGAGAGATCATCCTGAATGGGACGGACCTCGCGCCGCTGACTCCCAAGGAACGGCTCAAGTTCGCCGGGCCCGAACTGGGCATCGTCTTCCAGGACGCTCTCACGGCCCTGAATCCCGTCTATACCGTGGGCACCCAGCTGGGCGAGGCGTTCCGGATCCACCGTGGCCTCAACGCCAGGCAGGCCCGGGTTGAGGCCGTGGACCTGATGAAGCGCGTGGGAATTCCGGAGCCCGAGTCCAGAATCAATTCCTACCCCCATCAGTTTTCCGGGGGCATGCGCCAGCGCATCCTGATCGCCATGGCCGTTGCCCTCAACCCGCGGCTGCTGATCGCCGACGAGCCCACCACCGCCCTGGACGTCACGGTCCAGGCACAGATCATGCAGCTGCTGCGGACCCTCCGGGAAGAGGGCCAAATGGCCGTTGTCCTGATTACCCACGACCTGGCTGTGGTGGCTGAAGAAGCCGATTCAGTGGCTGTCATGTACGCGGGCAACGTGGTGGAGAGCGGTCCGGTCTCCGAGGTCTTCTCCGATCCCCGCCACCCCTACACCAAGGGCCTCCTGGAGTCGGTGCCCGTGCATTTGGAACGCGGCGCCCAGCTGAAGTCCATCGCCGGCAGCCCGCCGGAACTTCACGACATCCCCTCCGGCTGCGTCTATCAGTCCCGTTGTCCCCTGGTGCAGGACATCTGCCGGGCTGAGCGCCCCGTCCTGCGTCCCGTTACCCAACCTGGCACCCCGGACCAACGCGTGCCTGACACACATTCCGGCATCCAGCCCGGCACCCAGCCTGACACCCAGGCGAGGCCGGTACGCGCCGCCGCCTGCCACTTCAGTGAGGAGCTGAACAATGTCTGAMRTAAEQARAPRTGTAGNPREEARAHDVVLQVRDLAVDIRTHRGTVRAVNSVAFEARAGETLALLGESGCGKSMTAKALAGIMDPVCDLAGGEIILNGTDLAPLTPKERLKFAGPELGIVFQDALTALNPVYTVGTQLGEAFRIHRGLNARQARVEAVDLMKRVGIPEPESRINSYPHQFSGGMRQRILIAMAVALNPRLLIADEPTTALDVTVQAQIMQLLRTLREEGQMAVVLITHDLAVVAEEADSVAVMYAGNVVESGPVSEVFSDPRHPYTKGLLESVPVHLERGAQLKSIAGSPPELHDIPSGCVYQSRCPLVQDICRAERPVLRPVTQPGTPDQRVPDTHSGIQPGTQPDTQARPVRAAACHFSEELNNVPGPT0021030_361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021030-oppD-K15583NANA
D1-29_000301026btuD_1Vitamin B12 import ATP-binding protein BtuDATGTCTGAGCCCCTGCTGAAAATCGACGGCCTCTCCAAGACTTTCCACGTCGCCAGGAGCGCCAGCGGCAACACCCGGCTGAAGGCCCTGGACGGGATCAGCCTGAGCGTGGGACGCGGCGAGACACTGGGCCTGGTGGGTGAGTCAGGGTGTGGAAAGTCCACGCTGGCCAGGACCCTGATGATGCTGGAGACGCCTGACGAAGGGACCGTCAGTTTTGAAGGAACCAACCCCTTTGGACTGCGCGGGAAGGAATTGCTCACGTGGCGTCGGCGGGTCCAGATGGTGTTCCAGGACCCCTTTGCCTCCCTTAACGCGCGGATGAGTGCCGGCGACATCGTCTCCGAACCGTGGGCCACGCACCGTAGCCTCTATCCGTCGTCGAAGGAGCGCGAGGCCAGGGTCCGCGAACTGCTGCATCTGGTGGGACTGCGTCCGTCCGATGCCCGCAAATCGCCGCAGGAGTTCTCCGGCGGCCAGCGGCAGCGCCTGGGCATTGCCCGTGCCTTGGCACTGAACCCTGACGTCATCATCCTGGACGAACCAGTCTCAGCCCTTGACCTCTCCGTGCAGGCGCAGGTCCTGAACCTGCTCAATGACCTTCAAAAGGAGCTTGGGGTGTCCTACATCTTCATCTCCCATGACCTCACGGTGGTCAGGCATGTGGCAGACAGGGTGGCGGTGATGTACCTGGGCAGGATCATCGAAACGGGAGCCACGGAAGAGGTCTTTGACCACCCTCGGCACCCCTACACGGCTGCCCTGATGTCGGCGTCGCCGAAGCTGGACGTCAGCGGGGCGAAGCGGGACAGAATTGTCCTGAAAGGTGAGCTGCCCTCTCCGTTGGATCCGCCGTCGGGCTGCCGCTTCCGTACCCGGTGCTGGCAGGCACAGGACATCTGCGCCAAGGTGGCGCCGGAACCCCAGGTGCTGGCGGCCCCCGATGGCACCCGGCACGTGGCGGAATGCCACTTTCCACTGGCCGCCATCAAGGGACTGACAGGCGCCGCTGCTTCGGCCGGATGAMSEPLLKIDGLSKTFHVARSASGNTRLKALDGISLSVGRGETLGLVGESGCGKSTLARTLMMLETPDEGTVSFEGTNPFGLRGKELLTWRRRVQMVFQDPFASLNARMSAGDIVSEPWATHRSLYPSSKEREARVRELLHLVGLRPSDARKSPQEFSGGQRQRLGIARALALNPDVIILDEPVSALDLSVQAQVLNLLNDLQKELGVSYIFISHDLTVVRHVADRVAVMYLGRIIETGATEEVFDHPRHPYTAALMSASPKLDVSGAKRDRIVLKGELPSPLDPPSGCRFRTRCWQAQDICAKVAPEPQVLAAPDGTRHVAECHFPLAAIKGLTGAAASAGPGPT0021035_768DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021035-oppF-K10823NANA
D1-29_00031732hypothetical proteinATGAACGCCCCAGAGTATGCAGTCATCGCCGGTGTGATCTTCCTGGCAGCCTGCCTGCAGGCCTCGACAGGTTTCGGCATGGGAATGCTGGCCGCGCCGGTCATCGCGATGGTGGAGCCGGAGCTGCTGCCCGCTACGCTGATTCTCCTTGCCCTGCTGGTGACCATTATGGTCACTGTGCGGGAGCGCCAGAGCCTGGACCTGCGCGGTACAGGGTGGGCACTGGTGGGCCGGATCCCCGGAAGCATTGCGGGCGCCTTCCTGGTGGCGGCCCTGTCTAAGGAGGGCCTGGCGTGGGCCGTTGCCATCGTGGTGGTGGCAGGCCTGGTATTGGCTGCCAGGGGATGGGCGCCGCCTCCTGTCAGGGTGAACCTGATCGCGGCGGGGGCGGCCTCCGGGATCATGGGCACGGCGACATCCATCGGCGGGCCGCCCATGGCACTGATCTGGCAGGGGCACCACGGCCCGCAGCTTCGGGGCACCATGAGTGCGTTCTTTATGGTGGGCTCCGCGATGTCCCTGGTGTCGCTGGGGCTCGCAGGTGTTGTCACACCCGGGATGCTGATGCTGGCGCTCTGGATGGTCCCTGCCGTGGTGGCCGGCTACGCGGCGTCGCGGTGGGTGAACCGCTTCCTTAATGCCGCACGCCTCAAGCTGCTGGCGCTGGGCGCCTCTGCACTGGGAAGCGTGCTGCTGATCGGCCAGCTCACGCTGGCCGCAGTGGTGTCCTGAMNAPEYAVIAGVIFLAACLQASTGFGMGMLAAPVIAMVEPELLPATLILLALLVTIMVTVRERQSLDLRGTGWALVGRIPGSIAGAFLVAALSKEGLAWAVAIVVVAGLVLAARGWAPPPVRVNLIAAGAASGIMGTATSIGGPPMALIWQGHHGPQLRGTMSAFFMVGSAMSLVSLGLAGVVTPGMLMLALWMVPAVVAGYAASRWVNRFLNAARLKLLALGASALGSVLLIGQLTLAAVVSNANANANANA
D1-29_000321068hprACOG1052Glycerate dehydrogenaseGTGAGTGCTGCGGCAGCTTCCCCACACCGTCCGTCTTCCCCTCCGGAAGCACTGCGCATCGTGGTCACCGATCCGATCATCAGCCGTTTCCAGAACCGCTTAACGCTCGACGGCGGCCATCACCACTGGAACATGGCGGCGGCTTGGACACCGGAACGACAGCTGGAGGCGCTGGCGGGTGCCGACGTCGTCGTCTGCTCTTCCCTCAACCCCGAGCAGGCGGCGGCCGCAAGACGGCTGCGGCTGGTGCACGTGACGGGCGCCGGCTACGACAAAATTTCCTTTCCGGAACTGGCGGCGGAGGCGGCAGTCGCCAACACCTTCCACCATGCACGGCCCATCGCCGAACACGTCCTCATGGTCACCCTGATGCTTTCCCGGAACGTTGTGGCCGCCGACCAAGCCGTCCGTAACGGGCAGTGGCGGACCATCGCCACGGACAGCACCGTGCCCTTCCATCCCTCCCTGGGCGATCTCACGGTGGGGATGGTGGGGCTGGGTTCCATCGGGGCCGAGGTGGCACGCCTGGCCGGGCAGCTGGGAATGAAGGTCAGGGCTGTCCGCCGCACACCCACGGCGTCCGTTCCCGACGGCGTGAAGCTGGACTGGGTGGGCGGGAACGACGAACTTCCCCGGCTCCTGGCCGCGTCAGACGTTGTGGTGGTCACCGTTCCACTGGATTCCTCCACACAGGGCTTGGTCGGGGCTGCTGAGTTGGCGGCGATGAAGAAGTCGGCGCTCCTTATAAACGTCTCGCGCGGCCCGGTGGTGGATCAGGCTGCGTTGTATTCGGCCCTCAAAGACAGGCGAATTGCCGGTGCAGGCATCGACGTCTGGTGGGGATCACCGGCCGACGGCGCTGTTCCGCCGGCGGCGCTTCCCTTCGCCTCGCTGGACAACACCGTGCTGACGCCGCACCATTCCGGACATGCCAGGACCACCTTCGAACGCCGTGCGGAGGACATTGCCGCCAACATCCGCCGGCTCTCGGAGGGCAGGGAACTGGTGAATGTGGTGCCCAGGACGTTTGGGCACGGGACGGTCAGGACACCACTGCGGCCAGCGTGAMSAAAASPHRPSSPPEALRIVVTDPIISRFQNRLTLDGGHHHWNMAAAWTPERQLEALAGADVVVCSSLNPEQAAAARRLRLVHVTGAGYDKISFPELAAEAAVANTFHHARPIAEHVLMVTLMLSRNVVAADQAVRNGQWRTIATDSTVPFHPSLGDLTVGMVGLGSIGAEVARLAGQLGMKVRAVRRTPTASVPDGVKLDWVGGNDELPRLLAASDVVVVTVPLDSSTQGLVGAAELAAMKKSALLINVSRGPVVDQAALYSALKDRRIAGAGIDVWWGSPADGAVPPAALPFASLDNTVLTPHHSGHARTTFERRAEDIAANIRRLSEGRELVNVVPRTFGHGTVRTPLRPANANANANANA
D1-29_000331302gudD_1COG4948Glucarate dehydrataseGTGAACCAGGCGTACCAACCTGCATATCATCTGAACCAGGTCAGCATCACTGACGTATCCATCACGCCGGTGGCCTTCAAGGATCCGCCACTGCTCAACACCGTCGGCGTGCATGAACCGTTCGCCCTGCGGGCAGTGGTTGAGGTACACACAGACTCCGGCATCTCTGGCCTGGGCGAAACCTATGGCGACGCCGGCCACATCGCCCGCCTCGAACTGGCGGCGCGCGCCCTGACCGGCGCTGACGTCTTCAACATCAACGAACTGCGCAGCCGGGTTGCCATGTCCCTGCAGCAGGACACCATCCGCGGCGGCCACGGCATGAGCGGCATGGTCACAGGATCCAGCACCACTGACAGGGTCCTCTCCGCGTTCGATGTGGCCGCTTTGGACATCCAGGGAAAGCTTCTGGGCCGCCCGGTCAGCGACCTGCTCGGCGGGGCCGTCAGGGACTCGGTGCAGTTCAGCGGATACCTCTTCTACAAGTGGGCCGGCCACCCCGGCCAGGAGGATGACGCGTGGGGCGCAGCCCTGGACCCGGCCGGAATCGTCCGCCAGGCACGGGCCATGGTGGACCGGTACGGCTTCCAGGCGCTCAAGCTTAAGGCAGGCGTATTCCCGCCGGAGGAAGAAACAGCGGCCATCAAAGCCCTTGCCGCCGAATTCCCCGGCGTGCCGCTGCGCATCGATCCCAACGGCGCCTGGACCGTGGAGACCTCCATCCGGGTGGGGAAGGAACTGGACGGCATCCTTGAGTACCTGGAGGACCCGACCCCCGGCATCGAGGGCATGGCAGCCGTCCGCAGGGAGGTGGGCATGCCGCTGGCAACGAACATGTGCGTGGTCAGCTTTGCCGACGTTGCCCCGGCAGTGGCTGCAGGCGCCGTGGACGTCATCCTCTCAGATCACCACTTCTGGGGAGGCCTGCGCCGGACCCAATTCCTGGCGGGCATCACCGAGACCTTTGGCCTGGGCCTGTCCATGCATTCAAATTCCCATTTGGGCATCAGCCTGGCTGCCATGGTCCATCTCGCGGCCGCCACCCCCAACCTCGACTACGCCTGTGACACACACTGGCCATGGAAGGACCCGGCCGAAGACGTTATTGCCCCGGGCCAGTTCGCCTTCGAGGGCGGCGCCGTCACGGTCCCCACCGGCCCCGGGCTGGGAGTGGAACTGGACGGTGACGCCCTGGCCCGCCTGCACCGGCAGTACCTGGATTCCGGGCTGCGGAGCCGGGACGACACGGGTTACATGAAACGCCTCCACCCCTCCTACCAGCTCCAGAGTCCCCGCTGGTGAMNQAYQPAYHLNQVSITDVSITPVAFKDPPLLNTVGVHEPFALRAVVEVHTDSGISGLGETYGDAGHIARLELAARALTGADVFNINELRSRVAMSLQQDTIRGGHGMSGMVTGSSTTDRVLSAFDVAALDIQGKLLGRPVSDLLGGAVRDSVQFSGYLFYKWAGHPGQEDDAWGAALDPAGIVRQARAMVDRYGFQALKLKAGVFPPEEETAAIKALAAEFPGVPLRIDPNGAWTVETSIRVGKELDGILEYLEDPTPGIEGMAAVRREVGMPLATNMCVVSFADVAPAVAAGAVDVILSDHHFWGGLRRTQFLAGITETFGLGLSMHSNSHLGISLAAMVHLAAATPNLDYACDTHWPWKDPAEDVIAPGQFAFEGGAVTVPTGPGLGVELDGDALARLHRQYLDSGLRSRDDTGYMKRLHPSYQLQSPRWPGPT0018180_805DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706NANA
D1-29_00034912tfdSHTH-type transcriptional regulator TfdSATGTTTTCCTTGCCCCAACTTGAGGCCTTTGTTGCCGTCGCCGAGGAACTGCACTTTGGTGCGGCGGCCGAGAGGCTCAACATGACCCAGCCTCCACTCAGCCGGCAGATCCAGATGCTCGAGAAGAAGCTCGGGACGCAGCTTTTTGGCCGCACCAGCAGGAAAGTGGAGTTGACCGCCGCCGGTGCCACGCTGCTTCCACGGGCACGGCAAATCCTGGACATGTGCATCAAGACGGATTTGGATGTCCGGCGGGTCTCATCGGGCGAAGCAGGCGCCATCACTGTGGGGTACACCGCCATCGCCGGCCAGAGCGCGCTTCCTTTGATGCTGCGCCGCGCTGCCGAGAGCATGCCCGGTGTGTCTTTTGTGCTGCGGGAGCTGGTTTCCACGGACCAGATGGATGGATTGGTCAAGGGCAGTGTGGATATCGGCCTGCTGCGTCCCATTGTGGGCCGGCCTGGCGTGGTGTCCCGGCCGCTGATGAAGGACCGCCTGGTGGTGGCGCTGCCTGAGGGCAGCTCCCTGCTGGGCAACATGGCGGCACCAGAGGGCGAGCCATTGCCCCTGGGCTCCCTGGACAGGCTGCCCCTGCTAATGTACTCCACCAAGGAGGCCCGGTACTTCCATGACCTGGTGCTTCGCCTTTTTGCCAGCGCCGGCGCGCACGCCAATATCACCCAGTACGCCAGCCAGGTGCCGGCCCTGCTGGCGTTCGTTCAGGCGGGACTCGGGGTGACCCTGGTGCCCGCCTCCGCCATGGCCTTTGCCCCTGCCGGGGTGGAATTCCACGAGATCGACGGGCGGCACGGCATCAAGGAGTTGAACCGGGTGGACCTTGAGCTGGCGTGGAACGAGGAGACGGCCAACCCTGCGGTGCTGAGGCTGCTTGACCTGATCGAATCCCCCTGAMFSLPQLEAFVAVAEELHFGAAAERLNMTQPPLSRQIQMLEKKLGTQLFGRTSRKVELTAAGATLLPRARQILDMCIKTDLDVRRVSSGEAGAITVGYTAIAGQSALPLMLRRAAESMPGVSFVLRELVSTDQMDGLVKGSVDIGLLRPIVGRPGVVSRPLMKDRLVVALPEGSSLLGNMAAPEGEPLPLGSLDRLPLLMYSTKEARYFHDLVLRLFASAGAHANITQYASQVPALLAFVQAGLGVTLVPASAMAFAPAGVEFHEIDGRHGIKELNRVDLELAWNEETANPAVLRLLDLIESPNANANANANA
D1-29_00035696lutR_1COG2186HTH-type transcriptional regulator LutRATGAGCCGGAACCTGACCGCGGATCTCGCCGCCGACCTTCGCACCCGCATTGTGGACGGCGTGATCCAGCCCGGGGAGAAACTCCCGAGCGAAAACACCCTGATCGGCGAATTCGGCGTCAGCCGGACAGTGGTCCGCTCCGCCCTGACCCGGCTCCAGGCTGAGGGACTGGTGGAAACCGAGCGCGGCCGGGGCAGCTTCGCGCTGACCCCTCCTGCCGAGGGGACCCCGGCCGCACCCGGCAGCCGGCCCGTGGTAACCATGGAGGACCGCCTCCACCTGCTGGAGTTCCGGATGGGCGTGGAGGCGGAGGCCGCTGCACTGGCCGCCCGCAACCACAACGACCGCCAACTCAGGGCAGTGGACAAAGCCCTTGAGGAGTTCACCGCCAGCTCGGACCACCCCGCGCACGCCATGAAGTCCGACTACGAGTTCCACCGAGCCATTGCTGCCGCCTCCGGCAATCCGTTCTATTCCGACTGCCTGTTGGCCCTCGGCCAGACCATGATCGCGATGCCGCGCACCCGGCTGATGACCGGCGTCGAGCATTATGCGCGGGACAACTTCGACCAGGTGGTGCATGAGCACCGCTCCATCCTTGCTGCCATCGCGGACCGCGACGAAGCCTCAGCCGCGGCCGCGATGCGAAGCCACCTGGCAAATTCCCGACGGCGGCTGCGAGCCTCCCGCCAATAAMSRNLTADLAADLRTRIVDGVIQPGEKLPSENTLIGEFGVSRTVVRSALTRLQAEGLVETERGRGSFALTPPAEGTPAAPGSRPVVTMEDRLHLLEFRMGVEAEAAALAARNHNDRQLRAVDKALEEFTASSDHPAHAMKSDYEFHRAIAAASGNPFYSDCLLALGQTMIAMPRTRLMTGVEHYARDNFDQVVHEHRSILAAIADRDEASAAAAMRSHLANSRRRLRASRQNANANANANA
D1-29_000361128COG4948L-talarate/galactarate dehydrataseATGAGCACCGTAGACGTCATCCGTCACGTCAAACTTTCCACCGCGAGACTTCCGCTCACTGTCCCGATCAGTGATGCCAAGGTCTTCACTGGCCGTCAGAAACCCATGACCGAGGTGGTCTTCCTCTTTGCCGAGATCACCACGGAGCAGGGCCACAGCGGCGTCGGCTTCAGCTACTCCAAGCGCGCCGGCGGCCCCGCCCAGTACGCGCACGCCAAGGAGGTCGCCGAAGGAATCATCGGCGAGGACCCCAACGACATCGGCAAGCTCTACACCAAGCTCCTCTGGGCCGGCGCCTCCGTGGGCCGCTCGGGCGTTGCCACCCAGGCCTTGGCTGCCATCGACATCGCCCTCTACGACCTCAAGGCCAAACGCGCCGGACTCCCCCTGGCCAAGTTCCTGGGCTCCTACCGTGATTCAGTACAGACCTACAACACCTCCGGAGGGTTCCTCAACGCCTCCCTTGACGAGGTCAAAGCCAGGGCAACCGAGCTCCTGAATGACGGCATCGGCGGCATCAAGATCAAGGTGGGCCTGCCGGATACCGCAGAGGACCTGCGCCGCGTGGCAGGCATTCGCGAGCACATCGGCTGGGACGTCCCCCTGATGGTGGATGCCAACCAACAGTGGGACCGGGCCACCGCACTGCGGATGGGGCGCCAGCTGGAGGAATTCAACCTCGTCTGGATCGAGGAGCCGCTGGATGCCTACGACTTCGAGGGCCACGCCCATCTGGCCAATGTGCTGGATACGCCCATCGCCACCGGTGAGATGCTGGCCTCCGTAGCGGAGCACAAGGGCCTGATCAGTGCCAACGGCTGCGACATCATCCAGCCTGACGCACCCCGCGTCGGCGGCATCACCCAGTTCCTGCGCCTCGCCGCTCTGGCAGACGAGCGTGGACTGGGCCTGGCCCCGCACTTCGCCATGGAAATCCACCTTCACCTCGCCGCCGCATACCCCCGCGAGCCGTGGGTGGAGCACTTCGACTGGCTGGACCCGCTGTTCAACGAACGCCTCGAAACCAAGAACGGCCGGATGCTGGTTCCGGACCGCCCCGGCCTGGGGGTCACGCTCAGCGACCAGGCGCGCGCCTGGACCACCGAAAGCGTGGAGTTCGGCGCGTAAMSTVDVIRHVKLSTARLPLTVPISDAKVFTGRQKPMTEVVFLFAEITTEQGHSGVGFSYSKRAGGPAQYAHAKEVAEGIIGEDPNDIGKLYTKLLWAGASVGRSGVATQALAAIDIALYDLKAKRAGLPLAKFLGSYRDSVQTYNTSGGFLNASLDEVKARATELLNDGIGGIKIKVGLPDTAEDLRRVAGIREHIGWDVPLMVDANQQWDRATALRMGRQLEEFNLVWIEEPLDAYDFEGHAHLANVLDTPIATGEMLASVAEHKGLISANGCDIIQPDAPRVGGITQFLRLAALADERGLGLAPHFAMEIHLHLAAAYPREPWVEHFDWLDPLFNERLETKNGRMLVPDRPGLGVTLSDQARAWTTESVEFGAPGPT0018185_162DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_TALARATE_DEGRADATION,PGPT0018185-talrD_galrD-K20023NANA
D1-29_00037921hypothetical proteinTTGGGCGGCGTTGTCTCCGCAATACTCATCGTCTCCGCGGTCATCGCTGCAGGCTATTTCGCGGCCCGGCTTCGGATCCTCGGACCCGAGGTCCAGGGTGCCCTGACCCGCACTGCCTTCTACATCACCAACCCGGCGCTGCTGTTTACGGTAGTCGCCGGCAGCGACATCCGCGCTGCACTGGGAACCGATGCCCCGCTCGCGCTGCTCTCCGCAGCGATAGTGGGGCTTCTCTATTGGCTGGCGAGTTTCCTGTTCTTTCGGCGTCCGGTGGCGGAGACCGCCGTCGGGGCCATGGCAAGCAGCTACGCGAACGCCAACAATATTGGCATCCCCGTCTCCCTCTACGCGGTGGGGACGGCGCAGCATGTGGCCCCAGTGCTCCTGGTCCAGCTCCTGGTGCTGGCGCCGTTCTACCTCACTGTCCTGGGGCTGGCCTCAGGCTCCACGATCTCGTGGCGGAAGGTGCTGCTCCAACCGTTCGCCAATCCCATGATCATCGCCTCCGGACTGGGTGTCGTCGTGGCCCTCACCGGCTGGACCGCGCCGGACCTGCTGCAAAAGCCCATCGACATGCTCGCCGGAGGCGCCGTGCCAATGGTGCTGCTGGCCTTCGGCCTCTCCCTTGCTGGCAAGGCGCCCCTGCAAAAGGGCGACGGCCGCGTGGAAACGCTCGTGGCCACGTTCCTCAAAATTGCCGGAATGCCGCTCGTCGTGTGGGGCCTGGGCCGCTTCGTTTTTGGACTGGACGGGCAGCACCTGCTCGCCAGCGTCATCATGGCCGCGCTGCCCACTGCCCAAAACGTCTTCCTCTTTGCCTCCCCCTATGGGCGCGGCATGACAGTGGCCCGCGATGTCATCCTGTGCACCACAGTGCTCAGCATCGGCGCGCTCCTGGCCGTGGCCTGGCTGGTTCACTGAMGGVVSAILIVSAVIAAGYFAARLRILGPEVQGALTRTAFYITNPALLFTVVAGSDIRAALGTDAPLALLSAAIVGLLYWLASFLFFRRPVAETAVGAMASSYANANNIGIPVSLYAVGTAQHVAPVLLVQLLVLAPFYLTVLGLASGSTISWRKVLLQPFANPMIIASGLGVVVALTGWTAPDLLQKPIDMLAGGAVPMVLLAFGLSLAGKAPLQKGDGRVETLVATFLKIAGMPLVVWGLGRFVFGLDGQHLLASVIMAALPTAQNVFLFASPYGRGMTVARDVILCTTVLSIGALLAVAWLVHPGPT0001720_2516DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936NANA
D1-29_000381329gudD_2COG4948Glucarate dehydrataseATGAGCACCCAGCCCACCATCGCCAAGACTGAGGTCGTCCCGGTCGCCGGGCACGACAGCATGCTGATGAACCTCAGCGGTGCCCACGGACCCTTCTTCACCCGCAACGTGGTCATCATTACCGATTCAGACGGACGCACCGGACTGGGCGAGGTGCCCGGCGGCGAGAAGATCAAGGCCACCATCGAGGAAGCCGGGACGCTCATCACCGGCCAGCCCGTGGCCCGCTACCGCTCCCTGCTGCGGGAAGTCGCGGCGGAGTTTGCCGACCGCGACGCCGGCGGGCGCGGCCTACAGACCTTCGACCTGCGCACCACCGTGCATGCCGTCACCGCCGTCGAATCCGCCCTGCTGGACCTTCATGGGCAGTTCCTCGGCGTCCCCGTCGCCGAACTGCTGGGCGATGGCCAGCAGCGCACGTCGGTGCCGATGCTCGGCTACCTCTTTTTTATCGGCGATCACAGGCGGACCGATCTTCCCTACCTCGTGGAGGAATCGCCGTCGGATCGCTGGGAGAAGCTGCGCCGCCAGGAGGCCATGACACCGGAAGCCGTGGTGGCCCTGGCGGAAGCGGCCCAGGAGCGCTACGGCTTCAGCGACTTCAAGCTCAAGGGCGGCGTACTGTCCGGGGATGACGAAGTTGATGTGGTCACTGCCCTCGCCAAGCGCTTCCCCGACGCGCGGGTCACCCTTGATCCGAACGGCGGCTGGCTCCTGGAGGAAGCCATCCGCCTCGGCAAGCGGATGCAGGGCGTCGTGGCTTATGCGGAGGATCCGTGCGGCGCGGAAGGCCGGTTCTCGGGCCGCGAGGTGATGGCCGAATTCCGCCGTGCCACCGGCCTCAAAACTGCCACGAACATGATCGCCACGGACTGGCGGGAAATGTCGCACGCCATCCGCAGCAACGCCGTCGACATCCCGCTGGCCGATCCCCACTTCTGGACCATGTCCGGCTCCGTCCGCGTCGCGCAACTGTGCAACGAATTCGGCCTGACCTGGGGATCACACTCGAACAACCACTTCGACATCTCGCTGGCCATGTTCACCCACACCGGTGCCGCGGCTCCGGGTGAGATCACGGCGCTGGACACGCACTGGATCTGGCAGGACGGGCAGGGCCTGACCAAGAACCCGCTGCAGATCCACGACGGCGCCATCGAAGTCCCCTCTGCTCCGGGCCTGGGCATCGAACTGGACCGTGAGGCGCTGGACAAGGCTCACGAGCTGTACCTGCAGCACGGCCTTGATGCCCGCGACGACAGCATCGGCATGCAGTACTACATCGATGGCTGGTCCTTTGATCCGAAGCGGCCCTGCCTGGTCCGGTAAMSTQPTIAKTEVVPVAGHDSMLMNLSGAHGPFFTRNVVIITDSDGRTGLGEVPGGEKIKATIEEAGTLITGQPVARYRSLLREVAAEFADRDAGGRGLQTFDLRTTVHAVTAVESALLDLHGQFLGVPVAELLGDGQQRTSVPMLGYLFFIGDHRRTDLPYLVEESPSDRWEKLRRQEAMTPEAVVALAEAAQERYGFSDFKLKGGVLSGDDEVDVVTALAKRFPDARVTLDPNGGWLLEEAIRLGKRMQGVVAYAEDPCGAEGRFSGREVMAEFRRATGLKTATNMIATDWREMSHAIRSNAVDIPLADPHFWTMSGSVRVAQLCNEFGLTWGSHSNNHFDISLAMFTHTGAAAPGEITALDTHWIWQDGQGLTKNPLQIHDGAIEVPSAPGLGIELDREALDKAHELYLQHGLDARDDSIGMQYYIDGWSFDPKRPCLVRPGPT0018180_694DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706NANA
D1-29_000391608LhpGAlpha-ketoglutaric semialdehyde dehydrogenase 3GTGACACTCACCGGACATTCCTTCATCGCCGGGCAGCCCCTCGTCGGCGGCGGCAAGACCACTTTCGGATTCAACCCCGCCACGAATGAACAGCTGGACCCCGCCTACTCGCTGATCACCGAAGAACAGCTGACGACGGCGACCTCCGCCGCCGCCGCTGCCTACCCCTCCTTCTCCACCCTGGATCCGGAAACCCTCGCCGCGTTCCTGGACGCCATCGCTGACAACATCGAGGCCATCGGCGAGGAACTGATCATCCGCGCCGGCCAGGAAACCGGGCTTCCGGCTGCCCGGCTGCAAGGCGAACGGGCCCGCACCACCGGCCAGCTCCGCCTCTTCGCGAACGTTGTCCGGCAGGGCGATTTCCGCGGCGTCCGCATTGACCCGGCCATCCCGGACCGTGCCCCGTTGCCGCGTGCGGACATCCGCCAGCGGCAGATCCCGCTCGGCCCCGTGGCAGTGTTCGGCGCCAGCAACTTCCCGCTGGCGTTCTCGACGGCGGGCGGCGACACCGCCTCGGCCCTCGCCGCGGGCTGCCCTGTCGTGTTCAAGGCCCACAACGCCCACCCCGGCACCAGCGAACTGGTCGGCCAGGCAGTGGCCAAGGCCGTCAAGGACTTCGGCCTGCACCCCGGCGTGTTCTCGCTCGTCTATGGCCCCGGGGCCAGCATCGGCCAGGCCCTGGTGACCGACCCTGCGATCAAGGCCGTGGGGTTCACCGGTTCCCAGGCCGCCGGCATATCGCTGATGCGCACCGCGGCCGCCCGGCCCGAACCCATCCCCGTCTACGCCGAAATGTCCTCGCTCAATCCTGTTTTCGTCTTTGAAGGCGCCCTCAACGGCTCCGCCGAAGACATCGATGCCCTCGCCGCCCAGTACGTCACCGCGGTCACCGGAAGCTCCGGGCAGCTCTGCACCTCTCCCGGACTGCTGTTCGCCCCCGCAGGCGAGGCAGGGGACAAACTCGCTGCCGCCGTCGGCCGCGCCGTCTCGGCCTGTGCAGGACAGACCATGCTCACGGAGGGCATCGCCGGATCCTGGAACGCCGGCGCCGAAGCCCTCGGCGCCGCAGCCGGCGTCACCGTCGTCGGACAGGGCACCACCGGCCCCACCGAAAACGCCCCGGCGCCCACCATCTTCGGCACCCAGGTCCGGGACTTCGTCACCAACCACGTCCTCCACCAGGAAATCTTCGGCGCAGCATCCCTGGTCATCCGCTACTCCAACACCGAAGAGCTCCTGGACGCCATCACCAAACTCGAAGGCCAGCTCACCGCCACCCTGCAGCTCACCGAGGCCGACTATCCGACGGCGGCGCCCCTGATCCCTGCCCTCGAACAGAAAGTGGGCCGCATCATCATCAACGGCTGGCCCACCGGCGTCGAAGTAGGCCACGCCATGGTCCACGGCGGCCCCTTCCCCGCCACCTCCGACTCCCGCACCACCTCCGTAGGCACCCTCGCCATCAACCGTTTCCTGCGCCCCGTCGCCTACCAAAACCTCCCCCAGGAACTCCTCCCCGTCCCGCTGCAGGACACCAACCCCTGGCACCTCAACCGGCGCATCGACGGCACCGTGGTTACGGCAGATGCAGAGGTCAACGCATGAMTLTGHSFIAGQPLVGGGKTTFGFNPATNEQLDPAYSLITEEQLTTATSAAAAAYPSFSTLDPETLAAFLDAIADNIEAIGEELIIRAGQETGLPAARLQGERARTTGQLRLFANVVRQGDFRGVRIDPAIPDRAPLPRADIRQRQIPLGPVAVFGASNFPLAFSTAGGDTASALAAGCPVVFKAHNAHPGTSELVGQAVAKAVKDFGLHPGVFSLVYGPGASIGQALVTDPAIKAVGFTGSQAAGISLMRTAAARPEPIPVYAEMSSLNPVFVFEGALNGSAEDIDALAAQYVTAVTGSSGQLCTSPGLLFAPAGEAGDKLAAAVGRAVSACAGQTMLTEGIAGSWNAGAEALGAAAGVTVVGQGTTGPTENAPAPTIFGTQVRDFVTNHVLHQEIFGAASLVIRYSNTEELLDAITKLEGQLTATLQLTEADYPTAAPLIPALEQKVGRIIINGWPTGVEVGHAMVHGGPFPATSDSRTTSVGTLAINRFLRPVAYQNLPQELLPVPLQDTNPWHLNRRIDGTVVTADAEVNAPGPT0018165_62DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877NANA
D1-29_00040915COG0329putative 5-dehydro-4-deoxyglucarate dehydrataseGTGGCAAAGTACACCCCGCAGGAACTGGCAGACACCCTCAAGGAAGGCCTGCTGTCCTTCCCGGTGACGGCTTTCGACGCCAACCTGCAGTTCGACGAGGAAAGCTACCGCAAGCACCTCGCCTGGCAGGCCAGCTTCCCCGTGGCCGGCCTCTTCGCAGCAGGCGGCACCGGCGAGGGTTTCTCCCTCACCCCTGCGGAATCCGAGCGTGTTGTCAGCGCCGCCGTTGATGAAGTGGGCTCCATGGTTCCCGTCCTGGCCTCCGCCGGCGGTTCCACTGCCCAGGCCATCGAAAACGCCAAGGCTGCCGAAGCCGCGGGTGCCGACGGTCTCCTGCTCCTCCCCCCGTACCTGACCGAGGCTGACCAGGGCGGCCTGACCGACCACGTCAGCGCCATCTGCTGCGCCACGTCGCTGGGTGTGATCATCTACAACCGCGCCAACGCCATCTACAAGGACACCACCGTGGCCACCCTCGCGGACCGCCACGAGAACCTCATTGGCTTCAAGGACGGCGTGGGCGACCTCGAACACGATGCCCGCGTCTACGCCAAGCTCGGCGACCGCCTCTTCTACCTCGGCGGCCTTCCCACAGCGGAGACGTTCGCCCTTCCGCTGCTGCAGCTCGGGATGAGCACCTACTCTTCCGCCATGTACAACTTCGTCCCGCAGTTCGCGCTGGACTTTTACCAGGACGTCCGCAACAACGATCGCGTGGCCGTGAACAAGAAGCTCAACGAGTTCGTGATCCCGTACCTGGACATCCGCGACCGGGTCAAGGGCTACTCCGTCTCCATCGTCAAGGGCGGCCTCGACGCCATCGGCCGCCCGGCCGGCGGTGTCCGCCCGCCGCTGCAGAACCTGGCACCCCAGGATCTCGCGGATCTCAAAGCCCTCATCGCCCGCGTTTCCTGAMAKYTPQELADTLKEGLLSFPVTAFDANLQFDEESYRKHLAWQASFPVAGLFAAGGTGEGFSLTPAESERVVSAAVDEVGSMVPVLASAGGSTAQAIENAKAAEAAGADGLLLLPPYLTEADQGGLTDHVSAICCATSLGVIIYNRANAIYKDTTVATLADRHENLIGFKDGVGDLEHDARVYAKLGDRLFYLGGLPTAETFALPLLQLGMSTYSSAMYNFVPQFALDFYQDVRNNDRVAVNKKLNEFVIPYLDIRDRVKGYSVSIVKGGLDAIGRPAGGVRPPLQNLAPQDLADLKALIARVSPGPT0018160_401DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018160-kdgD|ycbC-K01707NANA
D1-29_00041888hcaR_1Hca operon transcriptional activator HcaRATGTTTACGTTTGACCAGTTGGCTGGATTCATCGCTGTGGCAGAGGAACTTCACTTTGGCCGCGCCGCAGAACGGCTCAACATGACCCAGCCGCCGCTGAGCCGGCAGATCCAGAAGCTGGAAAAGATCATCGGCACCGAACTGCTGGAGCGCGACAATCGGAAGGTGCAGCTCACCCCGGCGGGCGAGGCCTTCCTCGACGAGGCCAGGCGGCTGATGGCCTTGGCCACCCGGGCTCCCGTCACCGCGCGGCGCATCGCCACGGGGCGTTCGGGCATCCTGCGGGTGGGCTTCACCGCTGCCAGCGGCTTCAGCATCCTGGGGCCGCTGCTGGAGGAGATTGCGGAGATCATCCCGGACGTGGACATCGACCTGCAGGAACTCGTCACCGGCGAACAGATTGAGGGGCTCCTCACGGGAGTGCTGGACCTGGGCCTGGCCAGGCCACCGTTCGACCGGGAGATCTTCGACTCGCACCTGCTGTATACCGAGCCCATGATGCTGGCCGTTCCCAGCGGGCACCGGCTCGCGGACCTTTCCCGTCCCATCGAGGACTCCGACATAAAGGAAGAGCCCCTGATCATGCACTCACCCACAAAAGCCGCTTACTTCTACGACCTGGTGGTCCGGATGTTCCCCATCCAGCACGGCAACGTAATCCACACGGTCAGCCAGATCCTCACTATGGTTTCCCTGGTGGCGGCCCGCCGCGGGGTGGCTTTCGTCCCGCATTCGGCCACGCTGCTGGCCATCAAGGGTGTGGACTTCCTCCCCCTCGCCAAGCTGGCCAGCGAGCAGCCCGTGGAATTGCATGCCATCTGGAACCGGAAAGTGGCCAACCCTGCCCTGCGGCGGCTGCTGCAGGATCTGGAGTTCCGCACCGAGTAGMFTFDQLAGFIAVAEELHFGRAAERLNMTQPPLSRQIQKLEKIIGTELLERDNRKVQLTPAGEAFLDEARRLMALATRAPVTARRIATGRSGILRVGFTAASGFSILGPLLEEIAEIIPDVDIDLQELVTGEQIEGLLTGVLDLGLARPPFDREIFDSHLLYTEPMMLAVPSGHRLADLSRPIEDSDIKEEPLIMHSPTKAAYFYDLVVRMFPIQHGNVIHTVSQILTMVSLVAARRGVAFVPHSATLLAIKGVDFLPLAKLASEQPVELHAIWNRKVANPALRRLLQDLEFRTENANANANANA
D1-29_000421002hypothetical proteinATGAAGCACTTCCCCACACGCCGCACGATTCTCGGTGCGGCCGCCGCCACGCTGCTGGCGCTGACCGCCTGCGGCAATGTCGCCGGCGGCGGCACCGCCGATGCGGCCAAATACCCTACCGGGCCCGTCAGCCTCTCCGTGGGCCAGGCTGCCGGCGGCAGCACTGACCTGATCGCCCGTGCCCTCGCCGAAGGGGCCGCAAAGACCCTCGGCCAGCCGATCCCGGTGGTGAACAAGCCCGGCGCCAACGGCGCGCTTGCCACCAAGGAAGTGGCGGGCAAACCGGCCGATGGCCACGAACTGGTCCTGCTCAATGCATCCCTGATCACCATCACACCGTTGGCAGTCACTGCCGATGAAGCCGTGAACATTGATGACCTGGACGTCATCGCGGGCTTGTCGCAGGACGATTACGTCCTCGTGGCCAGCACTGACTCCGGCTTCAAGACGTTCGACGACGTCACCGCCGCAGGGCGCAACGTCACCTTTGGCACCACGGGCGTTGGCACCGGAAGCCAGCTGGCCCAGACCGTTCTGTTCAAGCAGGCCAAGGTCCAGGGAACCGACATCCCCTTTGACAGCGGCAAGCCCGCCCTGACGGCAGTCCTGGGCAACCAGGTTGAGCTCGCCACCATCCAGCTCGGCGAGGCGATGCCGCAGATCGAGGCCGGCAAGGTGACACCGCTGCTGGTCTTCTCGGAGGAGCGCACCAGCTTCCTCCCCGACACCCCCACTGCCAAGGAAGCCGGCTATGACGTTCCGGTTGCGCAGTACCGCGCCGTGGCCGCCCCCAAGGGCACCCCGCAGGAAGTCAAGGACAAGCTGCTCGCTGCCTTCCAGGAGGCCTTCAAATCGGACGCCTACAAGGAGTTCAACAAGAAGAACTCGCTGACGCCGAAGGAGATCTCCGGCGAGGAGGTTGTTACGGAATGGAAGGAATACGCCGCGAAGTACAAGGAGCTGGTGGAGAAGTACGACATCAGCCTGAGCGGAAATAAGTGAMKHFPTRRTILGAAAATLLALTACGNVAGGGTADAAKYPTGPVSLSVGQAAGGSTDLIARALAEGAAKTLGQPIPVVNKPGANGALATKEVAGKPADGHELVLLNASLITITPLAVTADEAVNIDDLDVIAGLSQDDYVLVASTDSGFKTFDDVTAAGRNVTFGTTGVGTGSQLAQTVLFKQAKVQGTDIPFDSGKPALTAVLGNQVELATIQLGEAMPQIEAGKVTPLLVFSEERTSFLPDTPTAKEAGYDVPVAQYRAVAAPKGTPQEVKDKLLAAFQEAFKSDAYKEFNKKNSLTPKEISGEEVVTEWKEYAAKYKELVEKYDISLSGNKPGPT0017360_676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795NANA
D1-29_00043591hypothetical proteinGTGAGTCCTGTGAAAGGAACACCCGCAGTTCCCGCCGGAGGCAGCGAGGCGGTTGCCCCCGGCGGGGAAACCCCCGGTACCGGCCCCGGCGAGGTTCTCGACGACCTGACGCCGGAGCAGCTCGCAGCCCAGTGGGAGGAGGAGAAGCCTCCCGCGGCAGGAGCCCTGGCCAACGCGGCATCCTCGCTGGTGGTCCTCGCAGTGGGGATCGGCGCCGTCGTCCTTTCCGTGGCGATGGGCCTGGGCACCCCGGCCAGCCCGCAGCCCGGCCTCTGGCCGTTCATTATCAGCTGCGTCATGGTGGCCCTCGGCTTGTTTCAGCTGATCGTTGGCCGGCGCAACCGGGACGCGGAGAAGTTCACCCGCATGTCCACCGCGCCGCTGACCGGACTGGTGACCCTCGCCGCCATGGTGGCCCTAATGCCGCTGATCGGGTTCGAAATTCCTGCCCTGGTGCTGTGCATCATCTGGATGCGCTTCCTGGGCGGCGAAACCTGGCGGTCCACCCTCGTTGTCAGCGCAAGTGTGGTCCTTGCCTTCTACGGCATCTTCGTCCTCGCGCTCGGCACCTCCGTTCCCCACCTTTTCTAGMSPVKGTPAVPAGGSEAVAPGGETPGTGPGEVLDDLTPEQLAAQWEEEKPPAAGALANAASSLVVLAVGIGAVVLSVAMGLGTPASPQPGLWPFIISCVMVALGLFQLIVGRRNRDAEKFTRMSTAPLTGLVTLAAMVALMPLIGFEIPALVLCIIWMRFLGGETWRSTLVVSASVVLAFYGIFVLALGTSVPHLFPGPT0017355_234DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794NANA
D1-29_000441530hypothetical proteinGTGGATTTTCTTAATCCCGTGATCAACGGATTCGCGGTTGTCCTGGAGCCCACAAACCTCCTGTACTGCCTGCTCGGCGTGGTCATCGGCATGCTGATCGGTGTGCTGCCCGGCCTGGGGCCCGCGGCAACCATCGCCATCCTGCTTCCGCTCACCTACAACGTGGAGCCGGTGACGGCCATCATCATGCTGGCCGGCATTTTCTATGGCGCACAGTACGGCGGCACCATTACATCCGTGCTGCTGCGGCTCCCCGGCGAAGCGTCCTCGGTGGTCACCGTCTTCGACGGCTACCAGATGGCCAAGCAGGGCAAGGCCGGTACTGCACTTGGTCTGGCCGCGATCGGTTCCTTCGTCGGCGGCACTGCAGCCATCATTGGCCTGACCTTCCTTGCCCCGCTGGTAGCCAGCTTTGCACTGGATTTCGGCCCGCCCGAGTACACAGCCCTGGCCATGCTGGGCATCCTGCTGGTGGCAACCATCAGCAGCGGCTCGAAGGCCAAAGCCCTGATCGCCGCCGCCCTGGGCCTTCTGCTCGCCAGCGTTGGCAGGGACATCTTCACCGGCGAAAGCCGCTTTACCTTCGGCAGCCTGCAACTCGCAGACGGCATCGATTTTGTACCGATCGCCATGGGCATTTTCGGACTCGGCGAGATCCTCTACAACCTGGAGGAACGGCACCGGGCCGCGAAGGCGCCGTCGAAAGTTGCAAACGTCTGGCCGTCCCGGAAGGAACTCAAGCAGGCCTCCGGGGCGATTGGCCGCGGATCGGTGCTGGGCTTCTTCCTGGGAATCCTCCCCGGAGGCGGCGCAACCATCGCCTCGATGGCGTCCTACGCCATGGAAAAGAAGCGGGCCAAGCAGCCTGAGCGCTTTGGCAAGGGTGCCCCCGAGGGCGTCGCCGGACCGGAAACCGCCAACAACGCCGCCGCCACATCGTCGTTTATCCCGTTGCTGACGCTTGGCATCCCGGCCAACGCCACCATGGCGCTGATGTTCGGTGCGCTGCTGATCCAGGGTGTCACCCCCGGACCGCAGCTCGTGGAACAAAACCCGGAGCTCTTCTGGGGCGTGGTGAACTCCATGTACATCGGCAACATCCTGCTGCTGATCATGAGCCTGCCGCTGGTAGGCATCTTCGTGAAGATCCTCCGCGTCAGGGCCGCCATCCTGGCTCCCGTCACGGCACTCATCACGCTGCTGGGTGCGTACACCATCAACAACAGCATGTTCGATGTCACCCTGGTGGTCGTCTTCGGCATCATCGGCTACCTGATGAAGAAGTTTGGCTTCGAACCGGGCCCGCTGGTCCTGGCTTTTGTGCTGGGCGAGCTGCTGGAAAGCTCCATGAGGCGCTCCCTGCTGGTCTTCGGCGGGGATCCCACCGGATTCTTCGGCCGCCCGATTTCGGCGACCCTTCTGGTGGTCTTTGTCCTGGTAGCAGTGCTCCCGGCTATCCGCAGCACCATTGCCAAGCGCAAAATAACCGCCACCACGGCCGTCACCCCGCACATCAAGGAGAAGGTATGAMDFLNPVINGFAVVLEPTNLLYCLLGVVIGMLIGVLPGLGPAATIAILLPLTYNVEPVTAIIMLAGIFYGAQYGGTITSVLLRLPGEASSVVTVFDGYQMAKQGKAGTALGLAAIGSFVGGTAAIIGLTFLAPLVASFALDFGPPEYTALAMLGILLVATISSGSKAKALIAAALGLLLASVGRDIFTGESRFTFGSLQLADGIDFVPIAMGIFGLGEILYNLEERHRAAKAPSKVANVWPSRKELKQASGAIGRGSVLGFFLGILPGGGATIASMASYAMEKKRAKQPERFGKGAPEGVAGPETANNAAATSSFIPLLTLGIPANATMALMFGALLIQGVTPGPQLVEQNPELFWGVVNSMYIGNILLLIMSLPLVGIFVKILRVRAAILAPVTALITLLGAYTINNSMFDVTLVVVFGIIGYLMKKFGFEPGPLVLAFVLGELLESSMRRSLLVFGGDPTGFFGRPISATLLVVFVLVAVLPAIRSTIAKRKITATTAVTPHIKEKVPGPT0017350_676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-29_00045405Universal stress proteinATGAGCATCATCGTCGGATTTGTCCCCACTCCCGCAGGAGAAGCCGCGCTGACGGCAGGCATCGCGGAAGCCAAGCTCCGCAACGAGGACCTGCTGATCGTCAACTCGGCCCGGGAAGGCGCCCTCGTGGACAAATCGGTGGCAGCCGACGACGTGCTCGCCCGGGCTGCCCGCCGTGCAGCCGACGCCGGGGTGAACGCCAGCGTTGTTCAGCCTCCGTACCAGCACGATCTTGCTGACGAGTTCCTCGACGTCGCCCGCGAAGCGGACGCATCGCTGATTGTCATCGGGCTCCGGCACCGCACGCAGGTGGGCAAGTTCATCCTGGGAAGCCATGCACAGCGGATCCTCATGCAGGCCGACCGCCCCGTCCTCGCCGTCAAGGCGGACGGAGCCGGTTTCTAGMSIIVGFVPTPAGEAALTAGIAEAKLRNEDLLIVNSAREGALVDKSVAADDVLARAARRAADAGVNASVVQPPYQHDLADEFLDVAREADASLIVIGLRHRTQVGKFILGSHAQRILMQADRPVLAVKADGAGFNANANANANA
D1-29_00046702tetRTetracycline repressor protein class B from transposon Tn10ATGCCGGCAGTATCAGCCGCATCAGGAAGCAGGACCGGAGCCGCCGGCAATTCCTCCACTGCAGCGCGGCGGCGGGCAGGACGCCCGTCAGCCGCCGTCCTGGACAAGGCAGGCATCACGGCCGCCGCCCTGGACCTCATCGGCAAGAAGGGCTACGACGGCCTCACCATGGCCGGACTGGCGCGTCTACTGGAGGTGGCGCCGTCGGCCCTTTACAACCATGTAGCGTCCAAACGGGACGTCCTCCTGCTGGTGGAGGACCACCTCACGGCCCTGGTGGATGTGTCCGGCTTCGGCGTGGAACCCTGGGAAGACGCCGTGCGGACATGGGCGTGGAGCTATCGTGACGTCTTCGCCCAGCACACTCCGCTGATTCCGGTGATAGCCGTCCTGCCCGTGACGGACGCACCGCAGACCCTCGCCATGTACGAGACGGTGAGTGCCGCTTTCCTGGCTGCCGGCTTCCCCCAGGAGCGGATTGTGTCCGCGATCGTAGCTCTGGAATCGTTCATTTTCGGCTCGGCCTATGACGTGACAGCACCCGCTGACATTTTCGATGCCGGCAGCATGGCCGGCGCCACTCCGCATTTCACCGGGGCGGTGCAGAGCCTGGCCGCCCAGAGGCACCACAAGCCGGCTGATGTTGCCTTCGGCCTGGGCCTGGAGGCGCTCATCACTGGGCTCGGAGCGCTGCGGAGCTAAMPAVSAASGSRTGAAGNSSTAARRRAGRPSAAVLDKAGITAAALDLIGKKGYDGLTMAGLARLLEVAPSALYNHVASKRDVLLLVEDHLTALVDVSGFGVEPWEDAVRTWAWSYRDVFAQHTPLIPVIAVLPVTDAPQTLAMYETVSAAFLAAGFPQERIVSAIVALESFIFGSAYDVTAPADIFDAGSMAGATPHFTGAVQSLAAQRHHKPADVAFGLGLEALITGLGALRSNANANANANA
D1-29_000471404puoPutrescine oxidaseATGCTGAACCTTAACCGCGACGTTGTGGTCGTGGGAGCCGGGCCCTCCGGCCTGACCGCCGCCCGTGAACTGAAGAAGGCCGGCCTGAGCGTTGCCGTGCTGGAAGCCCGTGACAGGGTGGGCGGCCGCACCTGGACCGATACCGTGGACGGCGCCGTGCTGGAAATCGGCGGCCAATGGGTCTCGCCGGACCAGACCGTGCTGCTGGAGCTGCTGGAGGAACTGGGGCTTAAAACCTATTCGCGGTACCGCTCCGGCGAGTCGGTCTACATCGGTGCCGACGGCAAACCCGTCCGCTACTCCGGCGACTCCTTCCCCGTGGACGCGGCCACCGCCGTCGAGATGGACAAGCTGATTGGCCTGCTGGACGGGCTGGCCGCCGAAATTGGCCCCACCGAACCCTGGGCGCACCCGAAAGCCCGGGAACTGGACACCATTTCCTTCCACCACTGGCTGCGGGCCAATTCGGACAACGAGGAAGCCTGCAACAACATCGGCCTGTTCATCGCCGGCGGCATGCTGACCAAGCCTGCGCACGCCTTCTCAACACTGCAGGCAGTGCTGATGGCGGCCTCTGCGGGGTCCTTCACCCACCTCACTGATGAGGACTTCATCCTGGACAAGCGGGTGATCGGCGGGATGCAGCAGGTCTCGCTGCTGCAGGCGCAGGAGTTGGGGGACGACGTGGTCCTTAACAGTCCCGTGCGCAGCATTAACTGGAGCACGGATCCCGACGGCGGCAGCGGCGACCGCTACCGGGTCACCGCCGTTTCCGAGCGGGCAACTGTCAACGCGCGGTTTGTGATCATGGCCGTCCCGCCGAACCTCTACTCGCGGGTTTCGTTCAATCCGCCGCTCCCGCGCCGGCAGCACCAGATGCACCAGCACCAGTCGCTGGGCCTGGTCATTAAGGTGCACGCCGTCTACAGCACGCCGTTCTGGCGGGAGCAGGGGCTGTCAGGGACCGGCTTTGGCGCCGGTTCCCTCGTCCAGGAGGTCTACGACAACACCAACCACGGCGATTCCCGCGGCACGCTGGTGGGGTTCATTTCCGACGAAAAGGCCGACGCCGTCTTCGAACTGGGTGCTGAGGAACGCAAGCGGGCAGTCCTTGAATCGATCGCCGGGTTCCTGGGGGACAAGGCCCTGGAGCCGGAGGTCTATTACGAGTCGGACTGGGGCTCGGAGGAGTGGACGCGCGGAGCTTACGCCTCCAGCTATGACCTGGGTGGCCTGCACCGCTACGGCAAGGACCAGCATGCGCCGGTGGGGCCGATCTACTGGTCCTCCTCAGACCTTGCTGCCGAGGGCTACCAGCACGTGGACGGTGCCATCCGGATGGGCAGGATCACTGCTGCCCGTATCTGCGAGGTTGCCCGGGTGGCAGTGCCGGCAGGGGTCTAGMLNLNRDVVVVGAGPSGLTAARELKKAGLSVAVLEARDRVGGRTWTDTVDGAVLEIGGQWVSPDQTVLLELLEELGLKTYSRYRSGESVYIGADGKPVRYSGDSFPVDAATAVEMDKLIGLLDGLAAEIGPTEPWAHPKARELDTISFHHWLRANSDNEEACNNIGLFIAGGMLTKPAHAFSTLQAVLMAASAGSFTHLTDEDFILDKRVIGGMQQVSLLQAQELGDDVVLNSPVRSINWSTDPDGGSGDRYRVTAVSERATVNARFVIMAVPPNLYSRVSFNPPLPRRQHQMHQHQSLGLVIKVHAVYSTPFWREQGLSGTGFGAGSLVQEVYDNTNHGDSRGTLVGFISDEKADAVFELGAEERKRAVLESIAGFLGDKALEPEVYYESDWGSEEWTRGAYASSYDLGGLHRYGKDQHAPVGPIYWSSSDLAAEGYQHVDGAIRMGRITAARICEVARVAVPAGVPGPT0007642_60DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007642-puo-K03343NANA
D1-29_000481305hypothetical proteinATGACTGATGCTCCTATCCGCGTCAACGACAACGGCGCCTGGTGCTGGTTCCAGGACGAGCGGGCGCTGATCGATCCCGGGAACAACACGCTCCTGGTGGGCTCTGTGGCCGCACCCGAGGGCCCCGGCGGTTCGGCCAGGGGCGGAAATATCGAGGTTGCCGTGCTGGACCTGGGCACAGGGGAGCGGCGGGTGCACGTACTCCATGAGCGGCTTGAATCGGATGACCACAACGCCCCTGCGCTTCTGATCCGGCCGGATGGGCGCTACCTCGCGATGTACGCCAAGCACAAAACAGACAACTATTCCCGCTGGCGGGTGTCCGTCCGGCCGCATGATGCCAGCGAGTGGAGTCCGGAACAGAGCTTCGACTGGACAGAGCTGGCCGACGGCCGGGGTGCAACCTACTCCAACCTGCACCGGCTGTCCGCGGAGGCGCTGACCTACAACTTTGTCCGCGCCGTCAATGATGATCCCACCATGATGGTCTCCGGCGACGACGGCAGCACCTGGAGCTACGGGGGCAAGCTTTTCACGCGGCCCAAAGTGGGGTACGTCAACGGGTACACCCGGTATTCCTCCAACGGCACGGACCGGATCGACCTGATCACCACCGACCACCATCCCCGGGATTTCAACAACAACATCTACCACGGCTACCTCCAGGGCAACGCGCTGCATGACACCACCGGGCGGGTGGTCAGCAAACCCGTGATCGGCTCGGCCGGTGTCTCGCAGACCGAACTCACCACCATTTTCGCCGCCGGAAGGGAGCTCGACGGCGACGTCCTCACCCACGGCTGGACAGCCGATCTCCGAAGGGACGGCACCCAGCTCGCGGCGATCATCACCTGCCGGGCCAACGACGTCAACGGCCCCCTCGAGCGGAACCAGCAGCTCGACGTCGACGATCACCGCCTGCTCTACGCGCGGTTTGACGGTTCCAGCTGGGCGCTTCATCCGCTTGCCGTGGCCGGCCCCGGGTTCCTCCCGCACGAGCAGGACTACACTGGGCTGGGAGCTGTGGACCCTTACGACCTGGACCACGTTTACATCTCGGCCCCGGTGGATCCGCGCTCCGGCCGCGCCACCGAACACTACGAGATCTACTCTGGGCGTACGTCCGACGGCGGCGCGGGCTGGGTCTGGGAGGCTGTCACTGAGGGGTCCGCCGTCGACAACCTGCGGCCGATGGTGGTTCCGGGAGACCCCGCCGTGCACGCGCTCTGCTGGTTCACGGGATCCATGAGGTCATCGCAGGCGTTTGAGACAGAGATCGTGGCGGTGGTGAATCGCTGCTACTGAMTDAPIRVNDNGAWCWFQDERALIDPGNNTLLVGSVAAPEGPGGSARGGNIEVAVLDLGTGERRVHVLHERLESDDHNAPALLIRPDGRYLAMYAKHKTDNYSRWRVSVRPHDASEWSPEQSFDWTELADGRGATYSNLHRLSAEALTYNFVRAVNDDPTMMVSGDDGSTWSYGGKLFTRPKVGYVNGYTRYSSNGTDRIDLITTDHHPRDFNNNIYHGYLQGNALHDTTGRVVSKPVIGSAGVSQTELTTIFAAGRELDGDVLTHGWTADLRRDGTQLAAIITCRANDVNGPLERNQQLDVDDHRLLYARFDGSSWALHPLAVAGPGFLPHEQDYTGLGAVDPYDLDHVYISAPVDPRSGRATEHYEIYSGRTSDGGAGWVWEAVTEGSAVDNLRPMVVPGDPAVHALCWFTGSMRSSQAFETEIVAVVNRCYNANANANANA
D1-29_00049612hypothetical proteinATGGAGCCAACAGAAACGAAAACCCGTGACGAGTTCGGCAGGCTGCTGGCGGACCGTGAGGTGTGGCGCCAGGCAGTAACCCTGGAGGCGGCCGGCGAGCTGACCGCCCGGTGGCTGGAAGGCAGCAGCGAGTACCAGGCGGCCACGTTCACAGCCCGCTACGACGACGAAACCCGCCACATAGCTTTGGCACTGGCCGCGCTCAACCGGAACGGGCTGTTCACCAAGGAGTCCCAGCCGGGCCTGCGGTCCGGAGCACACGTCCAGCGCGAATATGTCACGGGCTTCTGCAGCGCTGACGCAGCCGCCGAGCTCCTGTCCCTGTCCACGCGGTCCGATCTTGTCACAGTGGTACACGCACCCGGCGAGGCCAGCAGCGCGGCGATCCCTGTCACGCTGTCCGGAACCGAGGTGGTCACGGTGCTCGGCACCAGCGAAAACCCGGTCAGTGAGGAACAGATCCGGGGCTGGGCGGATGAGACCAACGAAACCCTGGCGCTCCTGCTGGCCGATTCCTGGTACGTGGAGATCCTGGACCCGGTGTGGGGCAGGAGCGACGTTCTGCTGCCCGCGGTGCTTTCCGCGCTGGCGTCACTGGCGTCCCGTCAGTAGMEPTETKTRDEFGRLLADREVWRQAVTLEAAGELTARWLEGSSEYQAATFTARYDDETRHIALALAALNRNGLFTKESQPGLRSGAHVQREYVTGFCSADAAAELLSLSTRSDLVTVVHAPGEASSAAIPVTLSGTEVVTVLGTSENPVSEEQIRGWADETNETLALLLADSWYVEILDPVWGRSDVLLPAVLSALASLASRQNANANANANA
D1-29_00050960hypothetical proteinATGGACAACCAGCCCCACAACCGCGCCGACATTCGGGACTTCCTGGCCAGCCGTCGCGCCAAAATCCGGCCTGAGGATGTGGGGCTGCCGGCAGGCACCAGGCGGCGCGTTCCCGGGCTGCGCCGCGAAGAGGTGGCGGTTCTCGCCGGGGTCAGCACGGAGTGGTATGCCCGCCTTGAAAAGGGTCATATCAGGGGTGTGTCGGAGGATGTCCTGAAGGCAGTGGCCCGCGCACTGCACCTGACCGACGAGGAATGCCTGTATCTCTTCGAACTGGCGCGGGCTGCCAACCCCGCCCGCCGCCCAAGTTCCCGCCGCAAAGAAGCCGACGTCGCGGCACCGGTCCAATGGCTGCTCGACTCCATGACGATGTCCGCAGCGTTCCTCCGCAACGGCAGCCTCGACATTCTGGCCACCAATCCGTTGGGGCGTGCACTTCATGCGCCGATGTTCGCCAGCAGCACCGCCGCTGCCCACGGCCACGCGAACTTCGCGCGCTTCCACTTCCTTGACCCCGCGGCCCGGGACTTCTACGTGGATTGGGAAGGTGGCGCCGCCGTCACAGCTGCTCTGCTGCGGGCCGAAGCCGGACGTGATCCCAACGACGCCTCCCTTCGCGCACTGGTGGGCGAATTGTCCACACTGAGCCCGGAGTTCCGAACGCTCTGGGCATCGCATGACATCCGCTTCCGCCACGAGGGAACCAAGCGCCTGCGTCACCCGGTGGTGGGCGACCTGGAGCTGACCTACCAGCCCCTCTCCCTGCCGAGCCTCCCCCGGGCCATGCATGAACTCAGCGTCTACACCGCCGAACCGGGAACCACCAACGAAGAGCGCATCAAGGTCCTGACCAGCTGGGCGGCCACGGCTGCCGCCGAAGCAGCTGCCGCGGAAGCAACGGAAGCAACGGAAGCAACGGAAGCAGCGGAGCCGGGCAGCCGGCAAAACCCGGCTGTCTGAMDNQPHNRADIRDFLASRRAKIRPEDVGLPAGTRRRVPGLRREEVAVLAGVSTEWYARLEKGHIRGVSEDVLKAVARALHLTDEECLYLFELARAANPARRPSSRRKEADVAAPVQWLLDSMTMSAAFLRNGSLDILATNPLGRALHAPMFASSTAAAHGHANFARFHFLDPAARDFYVDWEGGAAVTAALLRAEAGRDPNDASLRALVGELSTLSPEFRTLWASHDIRFRHEGTKRLRHPVVGDLELTYQPLSLPSLPRAMHELSVYTAEPGTTNEERIKVLTSWAATAAAEAAAAEATEATEATEAAEPGSRQNPAVNANANANANA
D1-29_000511044adhC2_1COG1064NADP-dependent alcohol dehydrogenase C 2ATGCTTTCCGTTAATGCTTACGCAGCCCCGTCCCCCACCGGTGACCTGGGCCCCACCACCATCGAACGCCGCGACGTCGGGCCCCATGACGTGCTGATCGAAATCAAGTACGCGGGCATCTGCCACTCTGACATCCACACCGTGCGCGGAGACTGGGGACCCCAGCAGTACCCGTTGGCCCCCGGCCACGAGATCGCAGGGATCGTCACCAAGGTGGGCACCGAAGTCACCAAACATGCCATCGGAGACCGCGTTGGCGTCGGCTGCATGGTCAACTCCTGCCGTGAGTGCGCCAATTGCCTGAAGGGCGAGGAGCAGTACTGCCTGAACGGCATGATCGGCACCTATGGAGCCGAAGACCGCGACGGAACCGTCACCCAGGGCGGCTACTCCACCCATGTGGTGGTCACCGAAGACTTCGTGGTGCGCATCCCTGAGGGGCTGGACCTCGCTGCTGCGGCGCCGCTGCTCTGCGCCGGGATCACCACCTTCTCCCCGCTCCGCCGCTGGGGTGCCGGACCCGGCAAGAAGGTTGCCGTCGTCGGCCTCGGCGGACTCGGGCACATGGCCGTCAAGCTCGCGTCCGCAATGGGCGCCGAGGTGACCGTCCTCTCCCAGTCCCAGAAAAAGCAGGAGGACGGGCTGCGCCTGGGCGCCGACAGCTACTACGCCACCAGCGATCCCACTACGTTTGAACAGCTCGCCGGGACGTTTGAGCTGATCATCAACACGGTCAGCGCTTCGATCGACATCTCTGCCTACCTCCAGCTGCTGACCCTCGACGGCGCCCTGGTGAACGTGGGCGCCCCCGCCGAGCCGCTTCCGGTCAACGCCTTCGCCCTCATCATGGGCCGGCGCTCGTTTGCCGGCTCGATGATCGGCGGCATCCGTGAAACGCAGGAGATGCTGGACTTCTGTGCCGAACACGGACTCGGCGCGGAAGTTGAAGTCATCCCTGCCGGCAAGATCAATGACGCTTACGAACGCGTCCTGGCCTCCGACGTGCGCTACCGCTTTGTCATCGACACGTCGACCCTGAACTAGMLSVNAYAAPSPTGDLGPTTIERRDVGPHDVLIEIKYAGICHSDIHTVRGDWGPQQYPLAPGHEIAGIVTKVGTEVTKHAIGDRVGVGCMVNSCRECANCLKGEEQYCLNGMIGTYGAEDRDGTVTQGGYSTHVVVTEDFVVRIPEGLDLAAAAPLLCAGITTFSPLRRWGAGPGKKVAVVGLGGLGHMAVKLASAMGAEVTVLSQSQKKQEDGLRLGADSYYATSDPTTFEQLAGTFELIINTVSASIDISAYLQLLTLDGALVNVGAPAEPLPVNAFALIMGRRSFAGSMIGGIRETQEMLDFCAEHGLGAEVEVIPAGKINDAYERVLASDVRYRFVIDTSTLNPGPT0024430_1740DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0024430-yahK-K13979NANA
D1-29_000521527hypothetical proteinATGCCACAGCTGCCGCTTCGCAGGGTCGGCTTCATTTCTATTGGGGGAATCTTGATCACCGTTCTGCACCGCGCCCTGCGCCAATTCCTGTCTGCGGCCCTAGCTGTTGGCGTTGTGCTGGCACTCGTCATCGCTGCCGTACTGATTCCCTCCACAGCGGCGCACGCTGATTCTGAAGGCGAGGACCGGGTACAAACCACCTACCTCATCGAAAGCGAATGGCCGCGGGTCAGGTTGGCGGCGCAGAAGGCATTGGATAGCAATTCACCAGTAGTGATTCGGGAGTTCCTCCGTTACGGGCAGTATCTCGCGGCTGCCATGGACCAGGAGGAACAGGCCATCCTCCTGCTGACGGGAAACGCAGAGTCTGCCAGCCTCGAAGCGCAGTCGCAGAGGCTGGCTGCCGAAAGCTTCCTGGTCCAGGCGAACGATCCCCAGCGCGCCATCGCTGCCGCTGCGTCTGCCAAGACGGCGGCGGAAGCCGCACGGGCGGCAGCGGGGAAGGCAGCCGAGGCCGTGAAAGCCGCCCAAGTAACAGAGCAAGCTTCCCGGGCGGAGGAGCATGCGCGGTTCCTGACTGATTGGGCCTTCCGAACAGCTGAGGCCAAGGCTGCCAACCTGGTAGAAGATGCCCGGCTGGCCGCAGAAGCCGAAAGCAGGATTAACAACCCGGAACCCTATCCAACGGATGAGCAGATCACGGCTGACAGGCAACGGACGTATCAGTACCTGGCTACGGGCACCCCGCACGTCCAGTCGTCTGCAAAGAAGGTCCTGCTGGGGAATGATCCCCTTCTGGTGCGCTCATTCCTGGTGGAAGGTGTCTTCGCGGCCGAGGAATTGGACAACAGGATTTTTGCCTACGCGCTGCTTGAAACGGGCGGTTCCGAAACAAGGGCCGGCGCTGATGTCGCCATAGACGGGACGCGGGAAATGGTCCGCACTTTTGTCCAGACCGAGCAGTTCCGGTTGGCAGCGAGGGACCAGGAAAAAGCGGCCCACGTGATGGGCATCCAGGCACGAATTTTGGTCTCCAAAAACCTTGCAAGCCAGGCTGCGTCGGACGCCGCAGCCGCCGAAGCAGCGGCTGCCGCGGCAGCCACACTGGCGGCGGCTTCCAAAGCAACCAGCACACCTTCCAGCCAGACCGGAACGGCCATCAAACAGGCACCGGCTCAGGGCAGACTTGGCCTCACGGGTGGCACCGCCCTGAACACAGGACTCTTCGGTGCAGCCTCCTCCCCGGAGCTGCCTGCACCGGCTGAGGCCGCTGCCCCCGCGGAGCTGGCGGAAACCCCAACGCCTGCTGCAGCCGCTGCCCCTCCGGCGGGCAAAACATCCTCCGGAACGGGCGATGCCGATAAGAAGGCGGCCGATAAGAAGGCGGCTGCACCGCAGGCCAGCGGGACGCAGGCAAGCCAGAATACCGGGCTTCCTCTGTGGGCCATCCTGCTCGGCCTGGGAGTGTTAGTACTGGCGGTTGCTTGCAGCATCCTTGTCCTGCGCCGCCGCAGGATTCTGGCCTAAMPQLPLRRVGFISIGGILITVLHRALRQFLSAALAVGVVLALVIAAVLIPSTAAHADSEGEDRVQTTYLIESEWPRVRLAAQKALDSNSPVVIREFLRYGQYLAAAMDQEEQAILLLTGNAESASLEAQSQRLAAESFLVQANDPQRAIAAAASAKTAAEAARAAAGKAAEAVKAAQVTEQASRAEEHARFLTDWAFRTAEAKAANLVEDARLAAEAESRINNPEPYPTDEQITADRQRTYQYLATGTPHVQSSAKKVLLGNDPLLVRSFLVEGVFAAEELDNRIFAYALLETGGSETRAGADVAIDGTREMVRTFVQTEQFRLAARDQEKAAHVMGIQARILVSKNLASQAASDAAAAEAAAAAAATLAAASKATSTPSSQTGTAIKQAPAQGRLGLTGGTALNTGLFGAASSPELPAPAEAAAPAELAETPTPAAAAAPPAGKTSSGTGDADKKAADKKAAAPQASGTQASQNTGLPLWAILLGLGVLVLAVACSILVLRRRRILANANANANANA
D1-29_00053594hypothetical proteinGTGGTGCCAGCCGCAATGGAGTTCTTGCTTCTCACGGTGGGGCCGTTCCTTTTCTGGGGTGCCCTGCTGGTGGCCGCGGTGGCCGGCACGGTGTTCGCCGTCCGCCGCCACGCTATGCTGCAGGCCGACGGAACCTCAGACACCATGTTTTGGGACGTCTTTATGGGTTCCGTTGTGGCGGTTCCGGCCATTCTGATCCCGGCGCTGGAATCCCCGTTGTCCGGCTTGCTGCTGAGTGTTGTTGGTGGGGCCGCGGGTATCGCCTCCTACCGGTACAGCCCCCGGGTTCTGGCCTGGCAGCAGCTCAGGAGGCAGCGGCGGCTGGATCAGCCCGTTCACCAGGCAGCACAGGCACAGCATGAGGAACTGCTGGCCCGCTGGCGCAGATACGAACTCGATCCTGCCCTGTGCATCGACTACCCCGCTATCACCGATGTCCGGATGCCCGAAACCTCGGCCCTGATCAGGGCTATGCGTGATGCGGAGGAGCTGCGGGCGGTACGCCACGAAGGGTACCCGCCCGCCGTCACCCGGCTTGTGCAGGCCCTCGCCGCCGCGGAAAAGGCAGCAGGCATCCCGGCAAACGGACACTAAMVPAAMEFLLLTVGPFLFWGALLVAAVAGTVFAVRRHAMLQADGTSDTMFWDVFMGSVVAVPAILIPALESPLSGLLLSVVGGAAGIASYRYSPRVLAWQQLRRQRRLDQPVHQAAQAQHEELLARWRRYELDPALCIDYPAITDVRMPETSALIRAMRDAEELRAVRHEGYPPAVTRLVQALAAAEKAAGIPANGHNANANANANA
D1-29_00054759pxpA_15-oxoprolinase subunit AATGCCATTCATCGATCTGAACAGCGACGTCGGAGAGTCCTTCGGCAGCTGGACCATGGGCGACGACGCGGCCATCTTCCGCCACGTTTCCAGCGCCAACGTGGCCTGCGGCTTTCATGCCGGTGACCCCACCACCATCGCCAGGACCTGCCGCGACGCCGTAGCCGCAGGCGTGACCATTGGCGCCCATGTGGGATACCGGGACCTTGCCGGATTCGGCCGCCGGTTCCTGGACTGCTCAGCCACCGAACTCGCAGATGACGTGCTGTACCAGCTCGGGGCACTGCAGGCCCTGGCGAAGGCCGCGGGCTCGGAGATCAGGTACGTCAAACCGCACGGCGCCCTGTACAACACCATCGTCCATCACGAGGTGCACGCCCAGGCGGTGGTGGATGCCGTCCACGCGTTCGGTGCCGAACTTCCGCTGCTGCTCCTGCCCGGTTCTGTGGCGCTGCGCAAGGCCGAGTCCCGCGGGCTCCGGGCGGTGGCGGAAGCCTTTGCCGACCGCGCCTACAATCCTGACGGCACCCTGGTGTCCCGCCGGGAAGAAGGCGCGGTGCTGCACGAGAACGACGTAGTCACCAGAAACATGGTGCGCCTGGCCACGGAGGGCAAAATCGTGGCACGGGACGGCTCAGTCCTGGCAGTGCACGCCGACAGCATCTGCGTGCACGGGGACACTCCGGGCGCCGTAGCCATGGCTGGAGCAGTCCGTGCGGGGCTTGAGGCGGCCGGTGTCACCGTGCGGAGCTTCGTATGAMPFIDLNSDVGESFGSWTMGDDAAIFRHVSSANVACGFHAGDPTTIARTCRDAVAAGVTIGAHVGYRDLAGFGRRFLDCSATELADDVLYQLGALQALAKAAGSEIRYVKPHGALYNTIVHHEVHAQAVVDAVHAFGAELPLLLLPGSVALRKAESRGLRAVAEAFADRAYNPDGTLVSRREEGAVLHENDVVTRNMVRLATEGKIVARDGSVLAVHADSICVHGDTPGAVAMAGAVRAGLEAAGVTVRSFVNANANANANA
D1-29_000551698hypothetical proteinATGAGCATCACCGGGGTGCGCTGGGCCGGGCCGCGCGCATTGCTGGTGGAGCTGACGGACCTTGCGTCAGTGCTCGCCTTCCATCACCGCGTCCAGTCGGAGCCCTTCCCCGGCCAGCTCGACGCCGTCGCTGCCGCCGCCACAGTGCTGCTGAAATTCGCCTCGCACCGCCAGGCGCTGACTGCGCGCGCCGCCGTCGAACATTTCCAGCTGGACGCCGTCGAGCAGGACGGCGGCAGGGAGGTCACCATTGAGGTGGTGTACGACGGCGAGGACCTCGCCGAGGTGGGCAGGCTCACCGGCCTCGGGCCCGACGGCGTCATCGCGGCGCACACAGGACAGGTGTGGACGGCTGCCTTCGGCGGCTTCGCCCCCGGCTTCGCCTATCTGGTGGGCGAAAACGACAGCCTCACCGTTCCCAGGAGGACGTCACCGCGCACCGCTGTACCGGCCGGCTCCGTCGCACTGGGCGGTCAGTTCTCGGCCGTGTACCCGCGGCAGTCCCCGGGCGGCTGGCAGCTCATCGGACGGACGTCTGCAGTGATGTGGGATCTGGACAGGGAGCAGCCCGCCCTCATCCGCCCCGGCGACAAAGTGCGTTACGTGGCCGTGAACAGCGCCGCTGCAGACAGTGCCGCTGCAGACCGGGCGGCGGGTGTGCCCGCAGCAACCCCTGCCACCGCGGATCCTGCCCAAGCGGATCCTGCATTGGGTGCTGCCGGCACCCGGGACGAAGGGGTTTCCGGACTGGAGGTCGAGTCACCAGGATTGCAGTCACTCCTCCAGGACCTGGGCAGGCCCGGGCTGGGGGACCTGGGTGTTTCCGCGGCCGGGGCGGCGGACCAGCGGTCAACCCGCCAGGCGAACAGGCTGGTGGGGAACGAACCCGGAGCCGCCGTCATTGAGAATCTCCTCGGCGGGCTTTCCGTCAGGGCCCGGGGGGACCAGGTTCTCGCGACGTCAGGCGCCAGCGTTCCGCTGGAGATCCGTTCCGGGAAGGGAATGGTGCTGCGGCGCCCCGCCGGCTGTGCTCCCTTTGCCCTGCTCGACGGCGAAAGCCTCACCCTGGGTGCGCCGTCCCTGGGGCTGCGCAGTTACCTGGCAGCCCGCGGCGGTTTCGACGTCCCGCAGGTGCTTGGCAGCAGGTCGAGCGACACCATGTCCGGTCTGGGTCCTCCTCCGTTGAGTGCGGGAACGCTGCTGCCGGTGGTACCTGTCGACGGCGTCCGCCCGGTGGGTGAGCCCGAATCCTCCACGTTGCGGCTGGGACCAGGAACGGCAGAGCTCCGGGTAACGCCGGGCCCGCGGGATGACTGGTTCACCGCGGCGGCCGTCCAAGCCCTCTCCGGCCAGGCCTGGCAGGTCACGGACCAGTCGAACCGGATCGGCGTCCGGCTTGTTCCCGAAGCCGGGGACGGCCGGTCCCTTGAACGCAGCCGCGCGGGCGAACTCGCCAGCGAGGGCGCCGTGGCGGGTGCGCTGCAGGTTCCGCCGAGCGGGCATCCTGTCCTCTTCCTGGCCGACCATCCGGTGACTGGCGGCTATCCGGTGATTGCCGTCGTCGTGCCCGAAGATCTTCCGACGGCGGCGCAGCTGCCGCCGGGCTGCCGGGTCCGGTTCACTCTGGTGGACCCGGCCACCCTCGAACCCCTTGAACCAGCCGCCAGCGGCATCATTTCAGAAGGAATCCCGTCATGAMSITGVRWAGPRALLVELTDLASVLAFHHRVQSEPFPGQLDAVAAAATVLLKFASHRQALTARAAVEHFQLDAVEQDGGREVTIEVVYDGEDLAEVGRLTGLGPDGVIAAHTGQVWTAAFGGFAPGFAYLVGENDSLTVPRRTSPRTAVPAGSVALGGQFSAVYPRQSPGGWQLIGRTSAVMWDLDREQPALIRPGDKVRYVAVNSAAADSAAADRAAGVPAATPATADPAQADPALGAAGTRDEGVSGLEVESPGLQSLLQDLGRPGLGDLGVSAAGAADQRSTRQANRLVGNEPGAAVIENLLGGLSVRARGDQVLATSGASVPLEIRSGKGMVLRRPAGCAPFALLDGESLTLGAPSLGLRSYLAARGGFDVPQVLGSRSSDTMSGLGPPPLSAGTLLPVVPVDGVRPVGEPESSTLRLGPGTAELRVTPGPRDDWFTAAAVQALSGQAWQVTDQSNRIGVRLVPEAGDGRSLERSRAGELASEGAVAGALQVPPSGHPVLFLADHPVTGGYPVIAVVVPEDLPTAAQLPPGCRVRFTLVDPATLEPLEPAASGIISEGIPSNANANANANA
D1-29_000561764carB_1Carbamoyl-phosphate synthase large chainATGAAAAAGGTCCTGATCGCCAACCGCGGCGAGATTGCCGTCCGCATCGCCCGCGCCTGCTCCGATGCCGGCCTGCAGTCCGTTGCCGTGTACTCGGATCCCGACGCCGACGCCCTCCACGTGCGGCTGGCGGACGAAGCCTTCGCGCTGGACGGGTCCTCGGGCGCCGAGACCTACCTGGACATCGGGAAGATCATTGGCGTGGCCCGCCGGGCAGGGGCAGACGCGGTGCACCCCGGATACGGGTTCCTGTCAGAAAACGCGGACTTCGCCCAGGCGGTGATGGACGCCGGGCTGACGTGGATTGGACCCACACCCCAGTCCATAAGGGAACTGGGCAACAAGGTGACTGCCCGTGACATCGCCGTGCGGGCCGGCGCGCCCTTGGTGCCCGGCAGCGACGGTCCGGTGGCCAACGCCGACGAGGTCCTGGCCTTCGCCCAGGAATACGGCCTGCCGGTGGCCATCAAAGCTGCTTTCGGCGGCGGCGGGCGCGGGCTGAAGGTTGCCCGGCGCCTTGAGGATATTGAGGACGCCTTCGAATCGGCGGTCCGCGAATCCACCGTGGCATTTGGCCGCGGGGAGTGCTTTGTGGAGCGCTTCCTGGACCAGCCCCGCCACGTGGAAGCCCAGGTCCTGGCGGATACGCACGGCAATGTGGTGGTGCTGGGCACGCGGGACTGCTCCCTGCAGCGCCGCAACCAGAAGCTTGTGGAGGAAGCGCCCGCCCCGTTCCTTACCCCCGAACAGCGCGCCCAGATCCACGCCTCCGCCAAAGCAATCTGCCGGGAAGCCAACTATCACGGTGCCGGAACCGTGGAGTACCTGGTGGGCAAGGACGGCATCATCTCCTTCCTGGAAGTGAACACCCGGCTGCAGGTGGAGCACCCCGTCACCGAGGAAACGTCCGGTGTGGACCTGGTCCGTGAACAGTTCCGGATCGCCGCCGGCGGCGTCCTGCCCTTTACGGAGGATCCGGAACCGCGCGGTCACGCCATCGAATTCAGGCTGAACGCCGAGGACCCGGCCCGCGGTTTCCTTCCCGGTCCGGGCACCGTGGAGGCCTTCGAGCCGCCCACCGGCCCCGGCATCCGGGTGGACAGCGGGGTCCGTTCAGGATCGGTGGTGCCCGGCCACTACGACTCCCTGCTGGCCAAGCTCATTGTGCACGGCGAGGACCGTCCCCAGGCCCTGCGCCGGGCCCGGGCCGCCTTGGACGAAATGCAGATCAAGGGCCTGCCTACCGTGCTGCCGTTCCACCGGGCCGTGGTGCGCCACCCAGATTTCCTGGCCGAAGACCGCCTTGGCGTCCACACCACGTGGATCGAGAACGAGTTTGCCGAACCCCTCGCCGCGTCGCCGGAGATTGCCCGTACCGCGCCCGACGCCGCGCGGAACACCATCACGGTGGAGCTGGACGGAAAGGCGGTGCAGCTTGGGCTGCCGGCCAGGCTCTATGAGGCTTTGCTGAGTGGCGGCGGTGGTTCGGGGGCGCTTGCCGGTTCTGGCTCCGTTGGGGCTGGGCTGTCCGGAGGTTTGGTCGGGGCCGAGGACACCGGCCTCACCTCGCCGATGGCTGGGTCGCTGGTGAAATGGCTGGTGGAGAGCGGTGATGCTGTGGTGGCCGGGCAGCCTGTGGCGGTGCTCGAGGCCATGAAGATGGAGACCACCGTTGCCGCCCACCGGTCAGGCACTGTGGCCAGGGGCCCGCAAGAGCCGGGCACCGCCGTCGGGCGTGGAGACGTCCTGGCCAAAATCAGCTGAMKKVLIANRGEIAVRIARACSDAGLQSVAVYSDPDADALHVRLADEAFALDGSSGAETYLDIGKIIGVARRAGADAVHPGYGFLSENADFAQAVMDAGLTWIGPTPQSIRELGNKVTARDIAVRAGAPLVPGSDGPVANADEVLAFAQEYGLPVAIKAAFGGGGRGLKVARRLEDIEDAFESAVRESTVAFGRGECFVERFLDQPRHVEAQVLADTHGNVVVLGTRDCSLQRRNQKLVEEAPAPFLTPEQRAQIHASAKAICREANYHGAGTVEYLVGKDGIISFLEVNTRLQVEHPVTEETSGVDLVREQFRIAAGGVLPFTEDPEPRGHAIEFRLNAEDPARGFLPGPGTVEAFEPPTGPGIRVDSGVRSGSVVPGHYDSLLAKLIVHGEDRPQALRRARAALDEMQIKGLPTVLPFHRAVVRHPDFLAEDRLGVHTTWIENEFAEPLAASPEIARTAPDAARNTITVELDGKAVQLGLPARLYEALLSGGGGSGALAGSGSVGAGLSGGLVGAEDTGLTSPMAGSLVKWLVESGDAVVAGQPVAVLEAMKMETTVAAHRSGTVARGPQEPGTAVGRGDVLAKISPGPT0001705_1632DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
D1-29_00057684hypothetical proteinATGAACGCTGCACTCCAAGGGATCGCCGACGGCGACCATGCAACCCACGCCCACACCGGGGCGTGGGTTGCCGGCGTGCTGCGCGCACGCATCTCCGCCGGGCAGCTTCCGCCCGGGACCAAGCTGTCCGAGCAGAAGCTCTCAGAAGCCCTGGGCGTTTCGCGGAACACGCTGCGGGAGGCGTTTACGGTATTGGCTGGCGAGTCGGTGGTGCAGCGCATCCCCAACCGCGGCGTGTATGTTGCCGCGCCGGATGCGGAGGATGTGCGCGAGATCTACCGGGTGCGGCGTCTGATCGAACCCGCGGCGGTGCTGTGGGGCGAGAAGACAGAGGGAGTCCTGGACCGGCTTGACGCGATCATCGCGGGGGCCCGGGAGGCCCTGGCCGCCGGCTCCATTCCCGGCATGGCGGACGCCAACCAGGAACTGCACAAGGCGCTGGTCTCACTCTCCGGCAGTGCCTCCTTGGATGAGCTGATGGAAAAGGTCCTGGCCGAGATGCGCCTGGTTTTCCATGCCATGGCCACCACTCCTGATTTCCACAGCCACTATGTGGAGCGCAACGCGGCCCTGGTGGCCCAGATCCGCTCCGGCCAGCGTGAAGAAGCGGCCGCGGAGCTTCGCCGTTACCTTGACGCCGCCGAGCAGGAGCTGCTGGCCCACATCGGCGCCGTCCCCGCCTGAMNAALQGIADGDHATHAHTGAWVAGVLRARISAGQLPPGTKLSEQKLSEALGVSRNTLREAFTVLAGESVVQRIPNRGVYVAAPDAEDVREIYRVRRLIEPAAVLWGEKTEGVLDRLDAIIAGAREALAAGSIPGMADANQELHKALVSLSGSASLDELMEKVLAEMRLVFHAMATTPDFHSHYVERNAALVAQIRSGQREEAAAELRRYLDAAEQELLAHIGAVPANANANANANA
D1-29_00058825COG4336Putative hydro-lyaseGTGACTGTTTCAACAAACCTTCCTGCCGGCGTCGAACTTCCCCACAATCCGGCAGCGCTGCTGCCGTCCCAGGCCCGCGCACTGTTCAGGTCGGGCCTGGTGACACCCACCTCCGGCTGGAGCGCCGGATACGCACAGGCCAACCTGATCATCGTTCCCAAAGCCCAGGCGTTCGACGTTCTGCTGTTCGCGCAGCGCAACCCGAAGCCTTGCCCCATTTTGGGAGTGCTCGACGCCGGCGAAACCACCGGGGCGCTGCTGGCCGGCGGCGATGTGCGCACCGACGTTCCCCGTTATGCCGTGTACGTCGACGGCGAAAAGACGGACGAGCCCACGGACATCTCAGGCTACTGGCGCGATGACCTGGTGACATTCATTGTCGGCTGCAGCTTCACGTTTGAGGCTGCCCTCCAGGAGAACGGCATCAGGGTGGCCCACATCGACCAGGGGGTCAATGTGCCGATGTACCGCACCGCGGTGCGCTGTGAACCGGCCGGTTCCCTGGCCGGACCCCTGGTGGTGTCCATGCGGCCCGTTCCGGCGTCTCAGGTGGCCGACGCCGTCCGGATCACCTCGCGGTATCCGGCAGTCCACGGTGCACCCGTGCATGTGGGGAATCCGGCCGAGCTCGGCATTGCCAGCCTTGGCCGCCCGGACTTTGGCGATGCCGTGGACATCCCCGCCGGCCATGTGCCTGTGTTCTGGGCGTGCGGGGTGACGCCGCAGGCCGCCGTCATGGAGTCCAGGCCGGCCCTGGCCATTGGGCATGCTCCTGGGCACATGCTGATCACCGACGCCAGGGACAGTAGCTACCTGGTGCCTTAGMTVSTNLPAGVELPHNPAALLPSQARALFRSGLVTPTSGWSAGYAQANLIIVPKAQAFDVLLFAQRNPKPCPILGVLDAGETTGALLAGGDVRTDVPRYAVYVDGEKTDEPTDISGYWRDDLVTFIVGCSFTFEAALQENGIRVAHIDQGVNVPMYRTAVRCEPAGSLAGPLVVSMRPVPASQVADAVRITSRYPAVHGAPVHVGNPAELGIASLGRPDFGDAVDIPAGHVPVFWACGVTPQAAVMESRPALAIGHAPGHMLITDARDSSYLVPNANANANANA
D1-29_000591221hypothetical proteinGTGGAAAGTACGGCAACACTCAAACCAAGCACAACGAAAGCCGGCAGGCGCTCGGCTCTCCTGGGAGCCATGTTCCTCATGGCAACCAGCGCAATCGGTCCAGGTTTTATCACCCAGACGGCAGCGTTCACTGTGCAGCTGGGGGCTGCCTTCGCGTTCGCCATCCTCGTTTCGATCCTCGTGGACATCGCGGTGCAGACCAACGTCTGGCGAGTCATCGGTGTTTCGGGGATGCGGGCCCAGGAGCTCGGCAACAAGGTCCTGCCCGGTGTGGGCTGGTTCCTCGCCGGCCTGGTCTTCCTGGGCGGCCTGGTCTTCAACATCGGCAACATCGCCGGTACCGGCCTGGGTACCAACGCCATGATGGGGCTGGATCCCAAGCTCGGTGGTGCCATCTCCGCTGTCATTGCCATCCTGATCTTCCTGAGCAAAAAAGCAGGCGTGGCACTCGACAAAATCGTCGTAATCCTGGGCGCACTGATGATTCTCATGACCCTTTACGTGGCCATCGTCTCGGCCCCGCCCCTGGGTGAGGCCCTCCGGAACACAGTAATGCCGGAGAAAGTGGACTTCCTGGTGATCACCACCCTCATCGGCGGCACCATCGGCGGCTACATCACGTACGCAGGCGCGCACCGGATGCTCGACTCCGGCGCGACCGGCGTGGAGCACGTCAAGGAGATCACCAGAAGCTCCATCCTGGGCATCCTGGTGACCTGCGTGATGCGCGTCCTGCTCTTCCTGGCAATTTTCGGAGTGGTGGCAGGCGGTGTGGCCCTGGCCAACAACAACCTTGCCGCCTCGGCCTTCGAAGCCGCAGCCGGCCAAGTGGGCCTGCGCATGTTCGGCGTGATCCTCTGGGCCGCCTCCATCACCTCGGTGATCGGCGCCGCCTACACCTCCGTTTCCTTTGTCACGAAGTCCTCCACCAAGGAACGCACCCGCAACCTCATCACCGTCGGCTTCATTGCCTTCTGTGCTGTCGCCTTCCTTCTCATCGGCCAGGCACCACAGCAGCTGCTCATCTTCGCCGGTGCCTTCAACGGCCTGATCCTCCCCGTGGGCTTCGCCCTCCTGCTGTGGGTGGCCTGGCGGCGCCGCGATCTTATGCAGGGCTATGCCTACCCCAAATGGCTGCTCATCATCGGCGTCCTGGCCTGGTTGCTCACCCTGTTCCTTGGCTGGAATTCACTGGCCGGCCTCGCCAAGCTGTGGGCCTAGMESTATLKPSTTKAGRRSALLGAMFLMATSAIGPGFITQTAAFTVQLGAAFAFAILVSILVDIAVQTNVWRVIGVSGMRAQELGNKVLPGVGWFLAGLVFLGGLVFNIGNIAGTGLGTNAMMGLDPKLGGAISAVIAILIFLSKKAGVALDKIVVILGALMILMTLYVAIVSAPPLGEALRNTVMPEKVDFLVITTLIGGTIGGYITYAGAHRMLDSGATGVEHVKEITRSSILGILVTCVMRVLLFLAIFGVVAGGVALANNNLAASAFEAAAGQVGLRMFGVILWAASITSVIGAAYTSVSFVTKSSTKERTRNLITVGFIAFCAVAFLLIGQAPQQLLIFAGAFNGLILPVGFALLLWVAWRRRDLMQGYAYPKWLLIIGVLAWLLTLFLGWNSLAGLAKLWAPGPT0020786_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_BRANCHED-CHAIN_AMINO_ACID_TRANSPORT,PGPT0020786-ycsG-NANANA
D1-29_00060867hypothetical proteinGTGGGCTTCGGAGCCATAGGATCTGGCGTAGGCCCACTCCTCTTGGAGGATGCGGTTGAAGCGCTCGACTTTGCCATTGGTTTGGGGTCGGTAGGGCCTGGTGCGTTTGTGCGTGATCCCGGCTTCGGCCAAGACAGCGGCGAAGGAGCGGGAGCGGTAGCAGGAGCCGTTGTCGGTCAGCACTCGCTGGATCCTGACGCCCTGGGCGGCGAACGCGGCGATGGCGTTGCGCATGAACGCCGACGCGGTCTCCTTGGTTTCATCGGGCAGGATCTCGGAATAGACAAACCGGGAATGGTCATCCACTGCGTGGTGCAGGAACGTGTAGCCCCGGACCTGGCCGCGGTCCTTGGGTCGGCCTTCGGCGAGGTTCCTTGCCCGGGAGTTCGCTTCGCCCCGAACCCTCCCCTGGACGCGGTGTCCGCCGCCGTGGGGGATGCGTCCGAGCTTCTTGATGTCCACGTGGATCATTTCGCCCGGCCAGGCATATTCATACCGTCGGGCGCGGTCCCGGCCGCGGACCCTGATCCCTGTGGCCGGATCGGTGAAGCGCAGCGGCGGGCAGAGGTACCGGGTCAGGATGCGGTGAACCGTGGAGACGTTCAGGTGCAGGTGGTACGCGATCCGCGCCGGACCCCAGCGCCTGTTCACCCTCAGTCCGAGCACCCGCCGCTCAGTCCGCATCCGGGTTTGGTGCGGGCACGTCAGGGGCCGGCTCCTGCGATCCTCAAGCCCCGCCTCACCGAACTCCCGGTAGCGGCGGGACCAGCGCGCGGCCGTCGGGACAGAAACGTTGAACCTCTCCGCTGCCCGGCGCAGCGGCCAGCCATCAACCACAATGCACCGGGCCAGCTGCAGACGCCCTGAMGFGAIGSGVGPLLLEDAVEALDFAIGLGSVGPGAFVRDPGFGQDSGEGAGAVAGAVVGQHSLDPDALGGERGDGVAHERRRGLLGFIGQDLGIDKPGMVIHCVVQERVAPDLAAVLGSAFGEVPCPGVRFAPNPPLDAVSAAVGDASELLDVHVDHFARPGIFIPSGAVPAADPDPCGRIGEAQRRAEVPGQDAVNRGDVQVQVVRDPRRTPAPVHPQSEHPPLSPHPGLVRARQGPAPAILKPRLTELPVAAGPARGRRDRNVEPLRCPAQRPAINHNAPGQLQTPNANANANANA
D1-29_00061390hypothetical proteinATGACCTCTGATAACTCCCAGTCCATGAAGCCGGCCACCGTTGCCAAGAAGCTTGGCATCTACCTGCCCGCAACACCGCAGGAGTTCCAGGATTCAACCATCAGCCGCGCAGATTTCGCCGAACTCCAGTCCAATCCGCCCGAGTGGCTCATCGAGCTCCGCCGGAACGGCCCGCACCCGCGCCCCGTGGTGGCCCAGAAGCTGAACGTCTCCATCAGCGGCCTGGCCCGCGGCGGTGTTGAGGAAGCACTAACGACGGCCGAAATCACCGCGCTGCTGCAGGCTCCTCCGCAGTGGCTGGTCACGGAACGCGCCACGCACGCCGCTGTGCGTGCCGAGGCCCAGCGCGTAAAGGACGAGGCCGCCAAGAAGGCGGCCAAGAAGGGCTAGMTSDNSQSMKPATVAKKLGIYLPATPQEFQDSTISRADFAELQSNPPEWLIELRRNGPHPRPVVAQKLNVSISGLARGGVEEALTTAEITALLQAPPQWLVTERATHAAVRAEAQRVKDEAAKKAAKKGNANANANANA
D1-29_00062747hypothetical proteinGTGCCCGCTGACATTGACTCCCAGAACCCCAGCTCCTTCGAAACTTCCGCACCTGAGGCCCCGCGGGTGCTGCGGTTTGCATACGTGGCCGGAGTTACTCCGGGGAAGTGGATCCGCCGCTGGGAAGAGCGCGTGCTGGATATCCCGCTGCAGTCCTTTATGACCGACGACGGCGCGCAACTGGAAGTGTTGCGGGACGGCACCGCCGACCTCAGCTTTGTCCGGCTGCCGGTGGAGCGCGAAGGCCTGAACGTCATCCCGCTCTACGAAGAGCAGCCGGTGGTGGTTGCGCCCAAAGGCCACGAAATTTCAGTTTTTGAGGAAGTGGCCCTGGCTGACCTGTCCGAGGATACGTTCCTGGACGTCGCGGCACTTGGTGGCCCCGAGCAGGCACTTCAGGTTGTCGCGACGGGCGCCGGCCTGGCGATCCTGCCCATGTCCGTGGCGCGGCACTTCAACGTCAAAGACACCGTTGCGCGCCGGCTTACAGGGGCGCCCGTGACAGAGATAGCGCTGGCATGGCCAAGCGGATCCGAGGACGAGATCATCGAGGAGTTCATCGGAATAGTCCGGGGACGCACGGCGCAAAGCTCCCGGCAGCCGTCCGCGCAGCAGGAGAAGCCCAAGAAGGAACCCAAGCCGGACCGGCGCGGCACCGGCGTCAAGAAGCCAAAAGTGGCGCAGCGATACGCCCCCAATCCGGACAAGGGCCGGGGCAAGGGCTCGCGGAAAAAGGGCAAGCGGTAGMPADIDSQNPSSFETSAPEAPRVLRFAYVAGVTPGKWIRRWEERVLDIPLQSFMTDDGAQLEVLRDGTADLSFVRLPVEREGLNVIPLYEEQPVVVAPKGHEISVFEEVALADLSEDTFLDVAALGGPEQALQVVATGAGLAILPMSVARHFNVKDTVARRLTGAPVTEIALAWPSGSEDEIIEEFIGIVRGRTAQSSRQPSAQQEKPKKEPKPDRRGTGVKKPKVAQRYAPNPDKGRGKGSRKKGKRNANANANANA
D1-29_000633426hypothetical proteinATGGGAGCTCCTAGCAAACTTCCTAGCTTCACTAAACTCGCAGACGATGTTGCGGCGGACCTCGGAGCCGACATCTCGGAGGCAACAGGGGCGGAAGATCTGGTACTGGGGCAACTCGACGATGACCCGCAGCAAGACGTTCACACGATAGTCCAACGACACATTTTGCGGGCAAAGCAGGGAAATGCATTGCATGCAGCCTTAGCAAGGCTTGCCTCGGCGGGACCGGCCCCAAAGGTTGTAACCACAAACTACGACCCGTTCCTGTCATTAGCCCTCGAGACCGCGGGAGCAGAACTTGAGGAGTTTCGCGCGCCCGCATTGCCCATGGGCGATGATTTCGAAGGCCTGGTCTACTTGCATGGTTCGGTGCATCAGGATTCGCGAAAACTGGTCCTCACAGACAAGGACTTTGGGCGTGCATATCTAAGCGATGCGTGGGCGGCAAGGTTTCTCGAGCGGATGTTCCACCAATATGTCGTGTGCTTTGTGGGGTACAGCCATCACGACATGGTGCTTTCTTATCTGGCGCGAGGTCTTCGACCAGGGTCCAAGCGATATGCCTTCACCTCCGAGGGAGTCTCAGGCAGTGCGCGCTGGTCCAGTTTAGGCATCGTTCCGATTTTGTACGCGGATACGGACAACTCTCATGAGCAGTTGCTGACTGCGATTCAAGACTGGGGCATCTGGGCAGCATCCGGGCTTTTAGATAAGCACGAGCTGGTGCGAGAAATGGTGGGCAATCCGCCAACGGGGATCCCGGATGAAGACGACTTCCTTGAAAAGGCCTTGGATGACGATGTCCTTGCCCGGGCATTTTGCACGAAGGCCCGGGGCAGGGAATGGTTGGACTGGGTCGTAAGCAAGAACGCGTTCCGGCGACTTACAGACGCATCTGAAACGACTTTCTCCTTAAGCCAAGCCGCCTTAGCGAACTGGTTTGCTAAGGATTTCGTCGTTTCCGACTCGGAGTCCCTTTATGCACTCTCTCTCCTCACAAAGCAAAACAAGCGACCAAGCCGGGCGCTCTGGAGCGCCGTCTGTATGGAACTTATCGACGTAACTGAACGTCGTGATTGGGTTACACCGTGGGTTTTCTGGCTACTGGATCACCTATCCCCCGACCATGCCGCTGAACTCGAGGGATTGGCTTGGCTGATTGCGGAGGCTAAGTGCCTATCGACAGCTGATCTGCTCGTTGTTCTTGAAGAGCTACTCAAGCCCCGGCCGCGGACAACCAATCAGCTGCTGGGTGACAGAACAGAATATGTCGTCGAGGTGAGCCTTACATGGATGGATTCGCTGCAAGAAAGATGCTCGAGCCTGACATCTGAAGCTTCGAGTGCGTTAGAGCTTCTGAGGATTCTTGAAGGTACCATGTACGGCATCTTTATCAGGAACCGTTCTCTCTCCGGCTCGGACTACGACTCATGGGCCTTCAGCAGAAGATCCATAGAAGACTCGCCCCAGAATGGAATTGACGAGTCTGCAGACCTGGTTATCGATTTGGCCCGGGACTGCATCCTGTGTCTCGTCCAGACACGGGATCCTAATCTGGGAAGTAGCCTGAACAGGTGGCTGGCCGGCCCGGTGCCCATGCTTAGGCGCCTTGCTGTATTCGGATGGCGCCAGCGGTCAGATGTGTCAGAGGCCGAGAAGCTCGAATGGCTGCTTGACCAAGAGGACGGACACCTGCTCTTCGAACCTCAGCTCCGGTACGAGTCGCTAAAGCTTATTCGGGCGGCCCTTCCCAAAACGGACCAATCCATGCGCTCAAGGCTTGTAACCGTGGTGCTCCATGGTTCCCATGCCAAGCAGCCCTATCGAGACTACGAAACCCATGATGTGTTGGCATGGCTGCTGAATCTCGATTCGGCCTTGGTCGAGGCAGCAAGAGCACTGACCGACTTGAAAGAAAAGTATCCAGATCTCGGGAGGCTTCCGTATGCAGATCTGGACGCGCCGGAGGTGGATTTTGACTGGGCAACCTCTACAAACGAGAGCCCCTGGTCCGAAGAGTATCTGCACAGTCTTATTAACGGTGACCCGGCATCAGCGGCAAACGAAATCACTAGCCAACTTGCGCTTTCCTCGTCCTCCATACGTTGGTCAGGAGTCACTCAGCAGGTGGCAGCGGTGGTTTCCCGATGGCCAGATGACGGTTTCCTGCTATGGAACAACGCCCTCAGTGAACCGAGATTGCTGGCCAGCATTATGAATGGATGGGCCGGAAACCCTGCAGACGCGGCCTACGCCGAACGAGTGATCAGCGTTATTTCAACGTTGGACCTTAAGGAAAGCGGGCCAGCAGTGGCTTCCCTTCTGAGTCCGCGAGCGAGTAATCAAACAGCAGGACCACCCTGGCCGGCACTCCCCCAAGCCCGAGACCTGGCTTTTGCCGCCTGGTACAAACTTGGTCGGTCACCGAGTACAAGCGCGGACCCATTCGGCTCCGCGCTCAACAGCGACGACGGACATTTGGCCGAATTTTGGATAGAAGCAATACGCCATGATTGGCGCCTCCACAAGGACGATTGGGAAGGCATCCAAGGCCAAATCCGTGAGGCAGTAGATTGCATATGTAGTCGCGAGGTTCTGCTCAACACAACCGGATGGGCAATCCTTGTACGGCACCTTCGGTTCCTCCACTCAGCCGACGCCGAGTGGACCACCGCACATATCGTGCCTCTACTGAAATGGAGCTCGTCACCAGTGGCAGCGGCCGCGTGGACGGTGGTCGTGCAAACAGCTGGCATCAATCAAGCTCTATTGGACGATGGCCTGAAGCCAGAGCTGATAAAGACAGTTGAACGCTCTACGGACCTAGCCGAAACCGCTCAGCGTCAACTGTCCAAGCTCTGCGCTTCCGTGACAGTCCACAGCGTGTGGTCCGTCAATATCAAACTCCAGTGGCTCTTGGAGCTAACACGTGCATCAACCCCCGAATTTTGCGCAATCATTATCCGGTCAATCCGCCAGCAGCTGGCAGAGGCTACGCACGAAGTGCTCTCAAAATGCTGGAACGATTGGATGAAAGCCTACTTAGCGGCTCGGGTCGAGGGACGTCCAAGAACCGTGGATGCACAAGAGGCCTCGGCCCTAGCCGAGTGGGTGGAAGTCTTGGACTCCCCACAAAGTATCGAAAGGGCCATCGAGTACATCCGCCTGATGCCAGCTGCACTGAGCTTCCCTCCGAGACTCCGCAAGATGGAGGACAGCCGCGTCAAGTCGGCCCCCAACGCATACGCGAAGCTGTTGGCTCATCTACTGGCGAACACCGCTCGCCCTCAATACTTGGGAAGGGATCTAGAGAAGCTGTACATGATCCTTGCTGCCGACACGCGAGTTGAAAGAACACATCTACGCACCATCCGAGAGCAATCACTGCGGTTGGGTATCGAGGCGGCCACAGATTGGCCTGATTAGMGAPSKLPSFTKLADDVAADLGADISEATGAEDLVLGQLDDDPQQDVHTIVQRHILRAKQGNALHAALARLASAGPAPKVVTTNYDPFLSLALETAGAELEEFRAPALPMGDDFEGLVYLHGSVHQDSRKLVLTDKDFGRAYLSDAWAARFLERMFHQYVVCFVGYSHHDMVLSYLARGLRPGSKRYAFTSEGVSGSARWSSLGIVPILYADTDNSHEQLLTAIQDWGIWAASGLLDKHELVREMVGNPPTGIPDEDDFLEKALDDDVLARAFCTKARGREWLDWVVSKNAFRRLTDASETTFSLSQAALANWFAKDFVVSDSESLYALSLLTKQNKRPSRALWSAVCMELIDVTERRDWVTPWVFWLLDHLSPDHAAELEGLAWLIAEAKCLSTADLLVVLEELLKPRPRTTNQLLGDRTEYVVEVSLTWMDSLQERCSSLTSEASSALELLRILEGTMYGIFIRNRSLSGSDYDSWAFSRRSIEDSPQNGIDESADLVIDLARDCILCLVQTRDPNLGSSLNRWLAGPVPMLRRLAVFGWRQRSDVSEAEKLEWLLDQEDGHLLFEPQLRYESLKLIRAALPKTDQSMRSRLVTVVLHGSHAKQPYRDYETHDVLAWLLNLDSALVEAARALTDLKEKYPDLGRLPYADLDAPEVDFDWATSTNESPWSEEYLHSLINGDPASAANEITSQLALSSSSIRWSGVTQQVAAVVSRWPDDGFLLWNNALSEPRLLASIMNGWAGNPADAAYAERVISVISTLDLKESGPAVASLLSPRASNQTAGPPWPALPQARDLAFAAWYKLGRSPSTSADPFGSALNSDDGHLAEFWIEAIRHDWRLHKDDWEGIQGQIREAVDCICSREVLLNTTGWAILVRHLRFLHSADAEWTTAHIVPLLKWSSSPVAAAAWTVVVQTAGINQALLDDGLKPELIKTVERSTDLAETAQRQLSKLCASVTVHSVWSVNIKLQWLLELTRASTPEFCAIIIRSIRQQLAEATHEVLSKCWNDWMKAYLAARVEGRPRTVDAQEASALAEWVEVLDSPQSIERAIEYIRLMPAALSFPPRLRKMEDSRVKSAPNAYAKLLAHLLANTARPQYLGRDLEKLYMILAADTRVERTHLRTIREQSLRLGIEAATDWPDNANANANANA
D1-29_00064927hypothetical proteinATGCCGACCAACCAGCTGCCCCCGACTATTTGGAAGAACCTTGTCGTCGAGACTCAGTTCGCCACAGAGCTGACGTTGACCGGCCTCCGAAGGTTATGCTCCGTCCCTACCGATCCTGCGCTCGAGCAGTGGGGGAGTGATGAGCAGAACTATGCACTCCACGTCGGGATGTACTCATACTCGTCCGGCTTAGAACGTCTGTGCAAGCTGGCCATCGCCTGCAACGGGTACGCGGCCACGAAGGAGTTCCCCAAGCTCCGCAGCTACTCGCACAAAATAGGGAAACTGCTTGACGCTGTTGAGGAGTTAACTCCCGCAGGCCCTAAGGCCACTTTCCACGACGCAAAGTACGTCGTTCGACCTGTGGATGGCCTCGATCCTGACCTTACGAACACGGTCGAGCGGTTCGCTAACGGAGCCGGACGGTACGAACACCTGGACTCGCTATGGAACGACGATGCTGAGGTCAATACCTATAACGAGTGGTCTGAACTTGCCGCAAGGTCTTCGGTCTCAGAAGAAGTGAGCCAACTAATCTCCCTCAGGGATGCCATGGCGCGCGCGATCCGATCCGAACTGAGCGACGTCGGGCTCGAATCTGCCGGGGAGACCGTGATGGAAGATCTGGAGCTCCCGATGTTCGAGCCATCGGTAGGCGTGGTGATCAGCCTGTTCCGGAAGGTCCGATGGGTATCAACCATCCTTGATGTTGCCACCGGCTACACGGATCCCGGTCTTCCGATTCTCGGCGATGTCGTCTCTCCAACCTTCATTCACCCGTCGGCGGACTTTTTCAACTACCACATCGCCAGATTCTCAGATGATTCTGTCGTCCAAGAGGAGCTGGCAGAGGTGTACCCGCGGATTAATGCACGTGAGGAGGAAGAAGGCGAAGGGGAGTTCGAAGACAGCAGGATCAAGGTTTGAMPTNQLPPTIWKNLVVETQFATELTLTGLRRLCSVPTDPALEQWGSDEQNYALHVGMYSYSSGLERLCKLAIACNGYAATKEFPKLRSYSHKIGKLLDAVEELTPAGPKATFHDAKYVVRPVDGLDPDLTNTVERFANGAGRYEHLDSLWNDDAEVNTYNEWSELAARSSVSEEVSQLISLRDAMARAIRSELSDVGLESAGETVMEDLELPMFEPSVGVVISLFRKVRWVSTILDVATGYTDPGLPILGDVVSPTFIHPSADFFNYHIARFSDDSVVQEELAEVYPRINAREEEEGEGEFEDSRIKVNANANANANA
D1-29_00065108hypothetical proteinATGGTCTCTAGGAGTGTCGGATACTACCTTAAGGCAACCGAGGCCAGGAAGGCCCGAGCGGGGGCATCGGAGGTTGCTGAGAGAAGTAAGAACGGCCTGAGCCGCTAAMVSRSVGYYLKATEARKARAGASEVAERSKNGLSRNANANANANA
D1-29_000661479pknD_2Serine/threonine-protein kinase PknDATGCAGATCAAGCTCGACAGAAAAACGTGGACCCGAGGACCTGCCTTGACCGAAGGTGAAGGCGGCTTCGGCAAGGTATATCTCGCATCAAACGCCGAGGCCGAGGATGCTGTTGCGAAGTTTGTGGAAAAGACTCCGGGCGCCACCCGTGAAATGCTCATTGGAGAGTATTTGCAGGCCACGAATTGCGCTAATGTCGTTCCTGTCCTGGACTCGGGTGAACACGAGAACTTTTGGGTAATTGTCATGCCTCGCGCAGAAATGTCTCTCGCCCAGCGGTTGGCTCAACCCGAACCCGTAGAACTCGCAGAGTGCCTGAAGATTCTCGACGACGTGGCTCAAGCCTTGGTCAGCCTCGACGGTCATGTTGTCCATCGAGACCTGAAACCCGCGAACGTCCTATTGTTGGATGGTACGTGGTGCCTTGCAGATTTTGGAACATCCAGATACACGGAAGCTGCCACGGCGGAGCATACATGGAAAGACACTGCCACGGTCATGTATGCGGCCCCAGAACAATGGCTGGCGGAACGGGCCACGGCCGCCACAGACATCTATGCCTTTGGGGTCATGGCCTACGAAGTGGTTGCGGGACATTTGCCGTTTCCTGGACCGAGTCCAGCAGACTATCGGGAACAGCACCTCAAAGTGCTCCCCCCGCCACTTACCGGTGGGACTGGTCGGCTGCGCAACATCATCTCCGAGTGCTTAAACAAGGCCCCTGAAGCGCGGCCGAGAGCAGCCAACATTCTGTCTCGGCTTCAAAAATCCACTATTGAACCAGCTCTCGCCGGCATACAGAAGCTGGCCAACGTCAACACCGAAGTAGTTGCACGCCGGGCCCAGGCGCACGCCGAACAACGGGTACTGGAGGATCACGCTGCAAGCAGAGCCCGCCTCTTTGCATCATCAGCAGGCATGTTTGAATCATTCGCCCAACCGCTAATCGAAGCAGTTGAGGACAATGCTCCGACTGCGTCGATCAAAAGAGGATTGGGGAACGGGAACCAGATATTCACGGCCGAACTCATGGGCGCAAAACTGGGGCTCAGCCGCCCTAAACAAGAGCCTAAATGGGATGGCCCGTTCGACGTCATCGGCAGCGCGGTGGTCAGCGTCGTTCGGCAACGCCCCAATAGTCGTGGATGGCTAGGACGAAGCCACTCGCTTTGGTTCTGTGATGCGCATAGGCGAGGGCAGTACGGGTGGTATGAGTTGGCTTTCATGAAAACGTTTTTCCGAGGGCCGCAGGATCAAATTGAACCTTTTTCGCTGGAACCAAAATTGGCTTCAGATCACTTTGCCATGGTTATGGGAACCGGCCAGCTTGCTTGGCCAGTGACCGAAGTGGACAGGGACGATCCCAGCGAGTTCCTCAATAGATGGCTGGGCTGGTTTGCAGACGCAGGAGTGGGAACGTTGGGCCAACCCAGCACCATGCCAGAACGAATCCCCAGCGGATCCTGGCGCACGAAGTAGMQIKLDRKTWTRGPALTEGEGGFGKVYLASNAEAEDAVAKFVEKTPGATREMLIGEYLQATNCANVVPVLDSGEHENFWVIVMPRAEMSLAQRLAQPEPVELAECLKILDDVAQALVSLDGHVVHRDLKPANVLLLDGTWCLADFGTSRYTEAATAEHTWKDTATVMYAAPEQWLAERATAATDIYAFGVMAYEVVAGHLPFPGPSPADYREQHLKVLPPPLTGGTGRLRNIISECLNKAPEARPRAANILSRLQKSTIEPALAGIQKLANVNTEVVARRAQAHAEQRVLEDHAASRARLFASSAGMFESFAQPLIEAVEDNAPTASIKRGLGNGNQIFTAELMGAKLGLSRPKQEPKWDGPFDVIGSAVVSVVRQRPNSRGWLGRSHSLWFCDAHRRGQYGWYELAFMKTFFRGPQDQIEPFSLEPKLASDHFAMVMGTGQLAWPVTEVDRDDPSEFLNRWLGWFADAGVGTLGQPSTMPERIPSGSWRTKNANANANANA
D1-29_00067261hypothetical proteinGTGGAGGAGCTGGAACCGGCCGAGGTGATCGCGCTCGAAGTTGCCCGGATCGACAACCTTATGTGGCGGCGACGTTGTTTCATGCGCCGCCAGAGTTGGCCGTGCGGAGATCGCGCTGGTTCTGTAGGGGCTATGGCTGCATACGAATCGCAGCTGCATTTCGCGAGAACGCTGGGGTGGAAGCTGGAGGCCAAATGGACTCCGGGCTACTGCGAAGGCTGCTCGGATGAGCGGCAAGTTCTTCGCCGACAACAATCGTAAMEELEPAEVIALEVARIDNLMWRRRCFMRRQSWPCGDRAGSVGAMAAYESQLHFARTLGWKLEAKWTPGYCEGCSDERQVLRRQQSNANANANANA
D1-29_00068258hypothetical proteinATGAGCAAGTCCCATTTTGAGGTTTTTCTCGCGCAGACCATCCACGAGGAGCGCGACAACGAGGCAGGCCTCAGCCCAGACGAGCTTTACGGGGTCTATACCAGCTGGTGCCTTCTGAACAACGAGGAACCCGAGGCTCCCGCAGCCCTATGGGCCGCACTGAAGGCCCACCGCATCGCGCCTGCACACAATCACCTGGTCATGAAAGGACCGGCGGCCGCGGACTACATCGTCGCCAGCGCACCGGATATCGTCTGAMSKSHFEVFLAQTIHEERDNEAGLSPDELYGVYTSWCLLNNEEPEAPAALWAALKAHRIAPAHNHLVMKGPAAADYIVASAPDIVNANANANANA
D1-29_00069297relFCOG2161Antitoxin RelFATGTCAGGCTATAATTCAAGCATGAGAACTGTACCGCTCAGCGAGGCCAAGGACAAACTCTCAGCCCTCGTGGAGGAAGCAGACAGAACCCACGAAATCATTCAGATCACACGGCACGGGCACCCATCAGCGGTGCTGATGTCAGCGGACGACCTGGAATCCCTGCAGGAAACGATCCACTGGCTGTCCCAGCCAGGTATCCGCGAGGATGTGGATCAGGCGCGGCGCGACATCGCCGAAGGCAACACGACCAGCGGCGCCGACCTGCGCCGCGAGTTCGGACTGCCGCCGCGGTGAMSGYNSSMRTVPLSEAKDKLSALVEEADRTHEIIQITRHGHPSAVLMSADDLESLQETIHWLSQPGIREDVDQARRDIAEGNTTSGADLRREFGLPPRPGPT0027475_337DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-YoeB-YefM_TOXIN-ANTITOXIN_SYSTEM,PGPT0027475-antitoxin_yefM-K19159NANA
D1-29_00070282relECOG2026Toxin RelEGTGAGCGAAACAGAATCAGACGACACGGCCGCGTGGAAGGTCGAAGTCACGAGCCCGGCCCTGAAAGGATTCCACCGGCTTCCCGCGAAGGCGGCAGCAGCCATCGTTGAATTCGTCACCGGCCCGCTGGCCGACAATCCCCGTCGGTTCAGCAAACCCCTCACAAACGAACTGCTTGGCCTGCGAACGGCACGACGCGGCGACTACCGTGTGCTGTTCACCCTCGACGCTGAAGACCACATCCTGTACGTCCACCGCATCGAACACCGATCCGACGTATAGMSETESDDTAAWKVEVTSPALKGFHRLPAKAAAAIVEFVTGPLADNPRRFSKPLTNELLGLRTARRGDYRVLFTLDAEDHILYVHRIEHRSDVPGPT0027425_359DIRECT 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
D1-29_000711563lysPCOG0833Lysine-specific permeaseATGACGCTAACGAACGAAACTTCCGCAGATATCAAGCCAGACAAAGCGGCGCAACACGGTTCTTCCCTTGCGACACGGGAGGATCCTAGCTCCGGTGGTACCGCCAATGAGCTCAAGCGCGGATTAAGCAGCCGCCACCTGCAGATGATTGCCATTGGCGGTGCGATCGGTACGGGGCTGTTTGTTGCCTCGGGCGGCACCATTGCACAGGCGGGTCCCGGCGGTGCATTGGCCGCCTACGCGCTGGTCGGGCTGATGGTATTCCTGCTGATGCAGTCACTGGGCGAAATGTCGGCCAAAATCCCGGTCGCCGGTTCCTTCCAGTCCTTTGCCACCCGTTTCGTCTCCCCGTCCTTTGGGTTCGCGATCGGCTGGAACTATTGGTTCAACTGGGCCATCACCGTGGCAGCCGAGCTGGTCGCGGCCGGAATCATCATGGATTTCTGGTTCCCGGGGGTCCCCGGCTGGGTATGGGCCGGGATCTTCCTGCTGGTGCTGACCGGGCTCAACGCCCTCTCGGCGAAAGCCTTCGGTGAGTCGGAGTTCTGGCTTTCCCTGATCAAGGTCAGCGCAGTGGTGATTTTCCTGGTCGCCGGCGTGCTGATGATCTTCGGCATCCTCGGCAATTCCTCCCCAGGACTAAGCAACTGGGAAAACCGCGAAGACGTATTCCACGGGGGTTGGGTCTCGATCATCTCGGTCTTCATGATTGCCGGGTTCTCGTTCCAAGGCACCGAGCTGGTGGGTGTGGCGGCAGGCGAAGCCAAGAACCCACGACGCGAGGTGCCAAAGGCTATCCGCACCGTCTTCTGGCGCATCATGCTTTTCTACATCGGCGCCATCTTCATCATTGGCTGCCTGATCCCCTTCACCGATCCGAGCCTGTTGGCATCCGGCGAAGCCGATATCGCAGCCTCCCCCTTCACCTTGGTCTTCTCAAATGCAGGGATCGCCTTCGCAGCGGCCTTGATGAACGCGGTGATCCTGACCGCCATCCTGTCCGCTGGCAACTCCGGGCTGTATGCTTCCACCCGGATGCTTTACGCGATGGCCCATGACGGCATGGCCCCGAAAATCTTCGGCCGAACGAATGGGCGCGGCGTGCCGATCCCGGCCCTGCTCGCCACCGCATCCGTGGGACTCTTCGGGTTCCTCTCGGCGATAATCGGCCAGGGCGCGGCGTACTCGTGGCTGCTGAACATGTCAGGCCTGTGCGGCTTCATCGTCTGGGCGGGAATCGCAATCTCCCATTACCGTTTCAGGCGCGGCTTCCTCGCCCAGGGAAATAAAGTCAGCGACCTGCCATACAGAGCATCCCTGTTCCCCATCGGCCCACTGCTGGCCTTCGCCTTGTTGATCCTGGTAATCGCAGGACAGAACTACGAGGCAGTGCTTGCCGGACGGAGCCTGGAGGTACTTTCCTCCTACATTGGACTGCCGATCTTCATCGCCCTATGGCTGACTCACCGCTACATCACCAAATCAAAGGTCGTACCGTTGCTCGAGATGGATCTCACGGGACCAAAGGACCTCGAGGACGGACCTCGGGACGGCACCCAATAGMTLTNETSADIKPDKAAQHGSSLATREDPSSGGTANELKRGLSSRHLQMIAIGGAIGTGLFVASGGTIAQAGPGGALAAYALVGLMVFLLMQSLGEMSAKIPVAGSFQSFATRFVSPSFGFAIGWNYWFNWAITVAAELVAAGIIMDFWFPGVPGWVWAGIFLLVLTGLNALSAKAFGESEFWLSLIKVSAVVIFLVAGVLMIFGILGNSSPGLSNWENREDVFHGGWVSIISVFMIAGFSFQGTELVGVAAGEAKNPRREVPKAIRTVFWRIMLFYIGAIFIIGCLIPFTDPSLLASGEADIAASPFTLVFSNAGIAFAAALMNAVILTAILSAGNSGLYASTRMLYAMAHDGMAPKIFGRTNGRGVPIPALLATASVGLFGFLSAIIGQGAAYSWLLNMSGLCGFIVWAGIAISHYRFRRGFLAQGNKVSDLPYRASLFPIGPLLAFALLILVIAGQNYEAVLAGRSLEVLSSYIGLPIFIALWLTHRYITKSKVVPLLEMDLTGPKDLEDGPRDGTQPGPT0020630_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_LYSINE_TRANSPORT,PGPT0020630-lysP-K11733NANA
D1-29_000721404hypothetical proteinATGTCTGTAATTGCAAACCTGGAAGTGGCACCCACCCAGGTAGAAGACCTGGTGGCGCTCCCGGCATGGCAGGCTCTGAAGGCCGCCGTCATTGGGCTGCAGCAGGTTCAGGTCCAGGACGGTTCCGTTCCGGAACCAGCTGACCATGGCCAGGCGCGCCAGTATGTGGGCATCATCACTGATTCCGTCAACGAGCTGCGCGCCCATCTTCCCCACGACAGCGAATACCTGGAACTGCTCGTGCAGGACTTCCAGCGGTGGGAGTCTGAGGGCTTCGTCGGACCTGACTTCCTCGACTCGTTGGTAGCCTTCCACCCCGAGCAGTGGCGCATCGATGGGCTGCCGCACCTGGTTGTGTTCCCCATGTACACGCAAAACGGCAGCACCAACCGCTACATTGAGGCCGTCATCGTCGAGGTTATCTGGCCCTCTTTCGTCGCTGAACTGGAGGCGGGCAACTACTCGAACAAGCTGTTTGTCCCCATTAGGTTCGTGGATTTCACGCCCGGCTACGACACGAACTCTGCAGTGCTCTTCCCCGAGAGCGTTGCGGTCCGAAGCACCCCCTCGTTCACCTGGGGAGGCATATTTGCGGACCGCGAAGCTGCCCGGTTCCGCCGCGTCCTGAAAGCTGCTGCCGACATTACCTCGTTGGACCTGCCTGCTGACGCCGCGGAATTGATCGAAGACCACCACCTCACGGAGAAAACCTTCGTGATGTGGGATCTGATTCATGATCGGACCCACATGCGCGGGGACTTGCCCTTTGACCCGTTCATGATCAAGCAGCGGATGCCATATTTCCTTTACTCTCTGGAGGAACTCCGCTGTGACCTGACCGCTTTCCGCGAATCAGTCCTCATCGAGCGGGATGAAACGGCTTCCGAGGATGCACGCAAGCACGCCAAGCTGGTCCAGTACGCCGTGATCTTCGACCGCATTTTCCGCTTCGCCATTACCGGAAACCGGGTTCGTAACTACGACGCCGTGGGCGGCCAGTTGCTGTTCGCGTGGATGCACCAGCACCGGGTCCTGCACTGGACCGATGGGAAGTTGAGCATCGACTGGAAGGACGTCGCTGACGTGGTCGTCGAGCTGGGCCGGCGCATCGAAGAACTCTACTGGCGTTCGATCGACCGGCCGAAGACGGCACACTGGCTCGCTGCCTATGAGCTGGTCTCCGAAACCCTCACCCCCCACCCGGCATCCGTGTGGGCCAAGGGACCGGAGGCACTTCCGCTGGACGGCCCGCCCCGGGGTCTGACGGATCAGGTCCTCGATGACGAATTCCCCCTGTCGATGTTCTACGAGGCACTGGAGAAGAAGATGCGCCCTGTTATTGATTCAACTGCGGGAATCACCGGCAAGAGCCCCGTGAAGACTGAGGGCGAGGCGGGCGCATGAMSVIANLEVAPTQVEDLVALPAWQALKAAVIGLQQVQVQDGSVPEPADHGQARQYVGIITDSVNELRAHLPHDSEYLELLVQDFQRWESEGFVGPDFLDSLVAFHPEQWRIDGLPHLVVFPMYTQNGSTNRYIEAVIVEVIWPSFVAELEAGNYSNKLFVPIRFVDFTPGYDTNSAVLFPESVAVRSTPSFTWGGIFADREAARFRRVLKAAADITSLDLPADAAELIEDHHLTEKTFVMWDLIHDRTHMRGDLPFDPFMIKQRMPYFLYSLEELRCDLTAFRESVLIERDETASEDARKHAKLVQYAVIFDRIFRFAITGNRVRNYDAVGGQLLFAWMHQHRVLHWTDGKLSIDWKDVADVVVELGRRIEELYWRSIDRPKTAHWLAAYELVSETLTPHPASVWAKGPEALPLDGPPRGLTDQVLDDEFPLSMFYEALEKKMRPVIDSTAGITGKSPVKTEGEAGANANANANANA
D1-29_00073750hypothetical proteinATGAGCCAGGATCTCTCGGAGCGTACGATCGTCGTCGCCGGTTCAACAAGCGCTGCCGGAGTGGCAGTAGTCCGCGCTCTTTCGCAGGCAGGGGCACGCGTAGCCGCAGTGGACATTCTTGAGGACCGGGTGCAGGAGCTCTCTGGCACATACGCCAACGTCGAGGGCTATGTCTGCAACCTCGCGGACCTGCAGGCCGTTGAGGACTTAGCGGCCTCGGTCCGGAACGATCTGGGTCCCGTGGACGGCCTTATCCACCTTGTAGGAGGGTGGCGAGGCGGTGCCGGCATCAGTGGCCAGGCGGATGAAGACTGGGACTTCCTGCACACCAGCGTCCTCACCACCCTGAGGAACACCAGCCGCGCGTTCTACGACGACCTGGCTGCCTCCCCTGTGGGACGCCTGGCCATCGTTTCCGCACAGTCCGCTTCCGCTCCGACAGCCGACGGCGCCGCTTACGGCGCCGTTAAGTCCGCGGCTGAGGCATGGACCCTGGCCGTGGCTGACGGCTTCCGGCAACCGCAAGGCGGAAAGGAAAACACCCAGCACTCGGCCGCCCTGATCTTCGTGGTCAAAGCTCTGGTCGACGACCGGATGCGGGCAGCCCAGCCGGAACGGAAATTCCCTGGTTTCACCGATGTCAGTGTCCTTGCCGACGCTGTTCAGCAGATCTTCGACATGGAGGCAGAAAAGATCAACGGGCAGCGCTTGCCCCTCACTGCCGGCCAGCTCGTGGGTCTGCCGGCATGAMSQDLSERTIVVAGSTSAAGVAVVRALSQAGARVAAVDILEDRVQELSGTYANVEGYVCNLADLQAVEDLAASVRNDLGPVDGLIHLVGGWRGGAGISGQADEDWDFLHTSVLTTLRNTSRAFYDDLAASPVGRLAIVSAQSASAPTADGAAYGAVKSAAEAWTLAVADGFRQPQGGKENTQHSAALIFVVKALVDDRMRAAQPERKFPGFTDVSVLADAVQQIFDMEAEKINGQRLPLTAGQLVGLPAPGPT0003180_21639DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_000741095ltaE_1Low specificity L-threonine aldolaseATGAGCGTCAGCATTGATTCCACAGCAGGGCAGCTACTGTCGGCGCGCCTGCACGACCCGACCTACCGGGGCTTCGCTTCGGATAACTACGCCGGGGCTCACGCCGAAATCATCGAAGCGGTTCAGGCGGCCAACGAAGGCCACGTCACCGCATACGGCGAAGATGTCTACACGGCCGCGCTACAAGAGCTCGTCCAGTCCCACTTCGGGTCAGCTGCCAGCGCATACCCGGTCTTCAATGGCACCGGTGCCAACGTGCTTGCCCTGCAAGCCCTGCTCCCGCGCTGGGGCGCTGTCATCTGCGCGGCGACAGCCCATATCAACACCGACGAAAACGGCGCCCCGGAACGCATCGGCGGAATAAAGCTCCTCCCGGTCCCCACACCCGATGGCAAACTAACCCCGGAATTGATCGACGCCGAGGCCTGGGGGTGGGGAGACGAGCACCGGGCGCAACCGCTGGTGGTATCGATCACCCAGACCACCGAGTTGGGGACCTGCTACACGCCAGGTGAAATCCAACGGATCGCGGAACACGTCCATGCCAAGGGCATGAAACTGCACCTGGACGGTGCAAGACTGGCCAACGCCGCAGCACATCTCGGCCTTCCTCTGCGGGCATTCACCACCGACGTCGGTGTGGACGTCCTGTCCTTCGGCGGCACCAAAAATGGGCTGCTGTTCGGCGAAGCCGTCATCTGGCTCAACCCACAGTGTGACCCGGGCATGAGCTACCTGCGCAAAATGAACATGCAGCTCGCATCAAAAATGCGGTTCGTCTCGGCACAACTGATAGCCCTGCTGACAGATGGGCTGTGGCTGCGCTCCGCCAGCCACGCCAACGAGATGGCGAAACGCCTCAGCGAAGGGATCTCCGCCATTGACGGTGTTTCCCTGACGCAAGCCACACAGTCGAATGGCGTCTTTGCCGTCCTCCCACCGCACCCAGCCGCGAAAGTCAGGGAATCCTTTCGCTTCTACGACTGGGACCAGGCACGCGGGGAAGTCCGGTGGATGTGCTCCTGGGACACCACCGAAACGGATGTCCAAGCCCTTCTTGCCGCCGTTCGGGATGCCATAGACTCCCCGACTTAAMSVSIDSTAGQLLSARLHDPTYRGFASDNYAGAHAEIIEAVQAANEGHVTAYGEDVYTAALQELVQSHFGSAASAYPVFNGTGANVLALQALLPRWGAVICAATAHINTDENGAPERIGGIKLLPVPTPDGKLTPELIDAEAWGWGDEHRAQPLVVSITQTTELGTCYTPGEIQRIAEHVHAKGMKLHLDGARLANAAAHLGLPLRAFTTDVGVDVLSFGGTKNGLLFGEAVIWLNPQCDPGMSYLRKMNMQLASKMRFVSAQLIALLTDGLWLRSASHANEMAKRLSEGISAIDGVSLTQATQSNGVFAVLPPHPAAKVRESFRFYDWDQARGEVRWMCSWDTTETDVQALLAAVRDAIDSPTPGPT0020465_575DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
D1-29_00075528hypothetical proteinATGACAGGCAGTCTCGATCCAGATGCCCGGAACAGCTACCGCTTGCTCACCGTGGCGGCCCGGCTGGTACAGCGGCGGCAGGACGATGCGCTGGCTCCGCTCGGACTGACACGGGCTGCCGTGATCGCCTTGGAAGGACTTGCCGCGGGGCCGTTAAACCAGGAACAGCTCGCCGCGGTGATCCACGTCCAAAGCCAGACCCTCGGCAGGGTCCTGACCCGGCTGGAAGGCAGCGGCCACATCACCCGGGCGCGGCAGGCCGCGGACCGCAGGCAGTTCAAGGTGGAGCTGACGGAGGCGGGGTGGGCGGCGCTGGTGGCAGCGCGGACTGCCGAGGTCAACGCCTATCCAAGCGATCCGGACATCAGCTGGAAAGCACTCCGGGAGGAACTCACAAAGTTCGTCAGTTCCTTCCCGGCAGCCCAGCCCGACTCCGGCGTTCTTCCGTTCTCCAGCCCTGATCACAAGGGCCGGCGGTCCGGCTGGCACGGCTCCATGCTCCACGGCGTGGACGACAGCGGCGAATGAMTGSLDPDARNSYRLLTVAARLVQRRQDDALAPLGLTRAAVIALEGLAAGPLNQEQLAAVIHVQSQTLGRVLTRLEGSGHITRARQAADRRQFKVELTEAGWAALVAARTAEVNAYPSDPDISWKALREELTKFVSSFPAAQPDSGVLPFSSPDHKGRRSGWHGSMLHGVDDSGEPGPT0013155_401DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_00076336hypothetical proteinATGAATCGCCGTCTTGCCGCCCTGTCCGCCCTCCCCCTGATGCTGCTTCTTTCCAGCTGTGCCTCCGTACAGGAAGCCGCCGAATCCGCCGCGAGTGATGCGTCATCGAAGGTGGCCACCGCCGCCGCTGACGAAGTGAAAAAGCAGGTGTGCGCGGTGGTGCAGGACGGACTGGTCAGCGTTGAGGACAAGGCCCTGCTGGGCGGGCTGGTCTCCGCCGCGGAGACAGCTGGCGTTCCCGCAGAAATCACGACGCCGTTGGGCCAGATCGCCGATGCCGGCGACCAGGTGCCGGCTGAGTCAGTCACCGCATTGAAGGACGCCTGCACAGCTTAAMNRRLAALSALPLMLLLSSCASVQEAAESAASDASSKVATAAADEVKKQVCAVVQDGLVSVEDKALLGGLVSAAETAGVPAEITTPLGQIADAGDQVPAESVTALKDACTANANANANANA
D1-29_00077270hypothetical proteinATGACCGATATAGCTGCTGTGCTTGGCAGGCTGTCGCAGGATGAGCTTGAAGAGCTCCGGACCATTGGACCCCAGGGGCATCTGCCAAAACATCTGGTTGCGGCGCTGGACACGGCGGCCGGCGGACCCGGTGCCGGACGGGGGTACTACGTTCCCACTGGAAGTGTCAGTGAGACCGGGGGCCCCCACGTGGCGCTCCGCAGCGATGTTTCACGCTGGCTCTTCCCGCCGATCCTTCACGCTGGCCAAACGACTCCTGAGGACCGGTAGMTDIAAVLGRLSQDELEELRTIGPQGHLPKHLVAALDTAAGGPGAGRGYYVPTGSVSETGGPHVALRSDVSRWLFPPILHAGQTTPEDRNANANANANA
D1-29_000781257xyoACOG0277putative xylitol oxidaseATGCAAAACTGGGCAGGAAACCTCGAATACTCCTCTACGGAGATTCGCCGTCCACGCTCTGTGGAGGAACTCGCTGAGGTGGTGGCAGGCGCCAGCCGGGTTAAGGCCCTGGGGTCCCGGCACTCCTTTAACCGGGTGGGCGACACCAGCGGCGTCCACGTGCTCCTCGACGGACTGCCGCAGGAAATCGAGCTGGATTCCGAGGCTCGGACCGTCAGGGTGAGCGGTGGCGTCAGCTACGGCGAGCTGTGCCGCAGGCTGGACCAGGCCGGCGTCGCCATCCACAACCTGGCCTCCCTGCCCCACATCTCCGTGGCGGGGGCCATCCAGACCGGAACCCACGGCTCCGGAGTCAACAACCCCTCCCTGGCGGGCGCCGTCAAACGCATCGACCTGGTCCGCCCCTCGGGTGAACAGGTCTCGCTGTCCGCCGCGGACGGGGACCAGTTCCTGGGCAGTGTTGTAGGCCTCGGCGCCCTGGGAATCGTCACCGGACTGGAACTGTCCGTCCGGCCAAGCTTCCACATGCGGCAGCGCGTCCTCGAAAATCTGCCGTGGGACAGTGCCCTGGAGAACTTCTCCGCCCTGGTCTCCAGCGCGTACAGCGTCAGCCTCTTTACTGACTACGCGGGAGACGTCATCGATCAGGTCTGGCTGAAGGCCCTCGATTCCGAACCTGCCCTAACCGGGCTCTTTGGCGCCACCGCGGCCGCAGAGGCGCGGCATCCCCTGCCCGGAATGTCGGCGGAAACGTGCACACCCCAACTGGACGAACCCGGGCCATGGCTGGACCGCCTGCCGCACTTCCGGCACGAGTTCACTCCCAGCAACGGCGCGGAGCTGCAAAGTGAATTCATCATGCCACTGGAGCAGGCGCCGGCCGCATTGCAGGCGGTACGCACCCTGGCGGCCAAGGTGGCGCCGCTGCTGTTCGTGTCCGAGATCCGCACGGGCGCGGCTGACGAGTTCTGGCTGAGCCCGTTCTACCGGCAACAGAGCGTGGCCCTGCATTTCACCTGGAAGCCCCTGCAGGCTGAGGTTGAGGCTGTCCTTCCGGAGCTCGAGGACCTGCTCCGTCCGTTTGGTGCCCGGCCACACTGGGGCAAGCTCTTTACCCCTGCCGGCCACGACTGGGAAGCGCTCTATCCCAGGTTCGGTGACTTCCGGTCACTGGCCTCGGCACATGATCCGGAGGGCAAGTTCCGCAACGACCTGCTGGACAGCATCCTGGGGGTCCCCGCGGCGAGCGCCCGGTAGMQNWAGNLEYSSTEIRRPRSVEELAEVVAGASRVKALGSRHSFNRVGDTSGVHVLLDGLPQEIELDSEARTVRVSGGVSYGELCRRLDQAGVAIHNLASLPHISVAGAIQTGTHGSGVNNPSLAGAVKRIDLVRPSGEQVSLSAADGDQFLGSVVGLGALGIVTGLELSVRPSFHMRQRVLENLPWDSALENFSALVSSAYSVSLFTDYAGDVIDQVWLKALDSEPALTGLFGATAAAEARHPLPGMSAETCTPQLDEPGPWLDRLPHFRHEFTPSNGAELQSEFIMPLEQAPAALQAVRTLAAKVAPLLFVSEIRTGAADEFWLSPFYRQQSVALHFTWKPLQAEVEAVLPELEDLLRPFGARPHWGKLFTPAGHDWEALYPRFGDFRSLASAHDPEGKFRNDLLDSILGVPAASARNANANANANA
D1-29_000791257hypothetical proteinATGGGCTGGAACAGTTGGGACTGCTACGGCACCACGGTCACCGAGGAGGAGGTGCTGGCCAACGCTTCTTTTATGGCTGAACACCTGCTGCCTCATGGCTGGGACACGGTGGTGGTGGACATCCAGTGGTACGAACCCGCAGCCCGCGCCGGCGGCTACAACGATGGCACCGCCCTGGAACTTGATGCCTTCGGCCGGCAGTTGCCTGCCGTCAACAGGTTCCCGTCGGCCGCTGAGGGAGTTGGCTTCAAGGACCTTGCGGACAGGATCCACGGCCTGGGCCTCAAATTCGGCGTACACATCATGCGCGGCATCCCGCGACAGGCTGTCAGGGACCGTCTTCCGGTGGAAGGCACGGACTTCACGGCTGACCAGGTTGCCGACCAATCGTCCGTCTGCAACTGGAATACGGACAACTTTGGGCTGAACCACCAGCATCCGGGTGCCCAGGCCTACTACGACTCACAATTGCGCCTCTTTGCCGCCTGGGGAGTGGACTTCGTCAAGGCTGACGACATGCTGGGTCCCTACTACGCGGAGGAGATAGCGGCCTACCAGCGCGCCATCTCGAATTCTGGGCGGGAAATTGCCCTGAGCCTGTCGCCAGGCCGCGCGCTGTCCCTGGCCCACCTGGAACACCTGCAGGGCAACTCACAGATGTGGCGGGTATCGGATGACCTCTGGGATGTCTGGGAGGACGTGGAGGCCCAGTTCGCCCGGATGGCCCGCTGGGCACCCCACCAGCGCGCAGGCGCCTGGGCAGATGCCGACATGCTGCCCGTGGGCAGGATCGCCCTCAGGGCCGAGCGCGGTGCCGAGCGGCTGAGCCGGCTGACCATGGATGAACAGCGGACCATGATGACCCTCTGGTGTGTGTCCCGGTCGCCGCTGATGCTGGGCTGTGACCTGCCGTCCTCGCCCCCGGAAACGCTTGAACTCCTCACCAACCGTGACCTCCTTGACGTCCTGAACGCCAGCCGAAACAACCGCGAACTGCTGCGGGACGGCGATCTTGTCCTGTGGGAAGCGGAAAGCGCGACGTCGGAGGACCGTTTTGTTGCGGTCTTCAACACCGGGACAGGGGACTTGGTCCGCTCGCTTCCGCTCGGTGACCTTGGTTTGGCCTCCGCATCATGGAAGGCGAGGGAGGCCTGGAGCGGCAACAACGCCGTGCCCAGCCTGAAGGATGGCCTGCCCGCGCTCGACGTGAAGCTGCCTGGCCATGGTTCACAGCTCTTCCGCTTCACGGCGGAATAGMGWNSWDCYGTTVTEEEVLANASFMAEHLLPHGWDTVVVDIQWYEPAARAGGYNDGTALELDAFGRQLPAVNRFPSAAEGVGFKDLADRIHGLGLKFGVHIMRGIPRQAVRDRLPVEGTDFTADQVADQSSVCNWNTDNFGLNHQHPGAQAYYDSQLRLFAAWGVDFVKADDMLGPYYAEEIAAYQRAISNSGREIALSLSPGRALSLAHLEHLQGNSQMWRVSDDLWDVWEDVEAQFARMARWAPHQRAGAWADADMLPVGRIALRAERGAERLSRLTMDEQRTMMTLWCVSRSPLMLGCDLPSSPPETLELLTNRDLLDVLNASRNNRELLRDGDLVLWEAESATSEDRFVAVFNTGTGDLVRSLPLGDLGLASASWKAREAWSGNNAVPSLKDGLPALDVKLPGHGSQLFRFTAEPGPT0018835_2911DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
D1-29_00080870hypothetical proteinATGAACATCACACGTACACCCCAGAACCCCGCCACCCCCACCCTTGACCTGGGCCGGCTGCGCCCTGACTGTGGCAGCTGCTTCGCCCTGTGCTGCACAGCCTTCGGCTTCACCCGCTCCGCGGACTTCGCCATCGACAAGCCCGCCGGCACACCCTGCCGGAACCTGGGCCAGGACTTTTCCTGCACCATTCATGACCGACTCCGGCCCAGGGGTTTTTCCGGCTGCACGGTCTTTGACTGCTTTGGTGCGGGGCAGGCCGTCTCGCAGCGGCTTTTCGGCGGCATCAGCTGGCGGGATAACCCGGGCTCACAGCAGGACATGTTCGCCGCGTTCAAATCCATGAGGCAGCTGCACGAAATGCTGTGGCACCTGGCCGAGGCCCAGGCAAGAACGTTCGATCCCTATGCCGCCGGGGATGCGAAGAAACTGGCCGGGAGGATCGAGGCGATTGCCGGCGGGACTGTCTCCGGGCTCCTCAACTGCGACATGGAAAGCCTTCACGGCGAAGTCAGGGGAACCTTGATGGAGATCAGCGAAGAGGTGCGGGCGGCCCGCTTTGCCGACGGCGGCGGTCACCTTGATCCGGACCTGCAGCCGGGCGCGGACCTGATGGGAGCCAACCTCCGCCAGCGCCAGCTCTGCGGGGCGGATCTGCGGGGCGCTTATCTTATTGGTGCCGACCTCCGGGGCGCCGACCTCGCCGGCGTGGACCTGTTGGGGGCCGACCTCCGGGATGCACGGCTGGACGGCGCTGATCTTTCCGCCGCGCTGTTCCTCACCCAGCCGCAACTCAACTCAGCCAGGGGCAACAGGGCCACCGTCCTCCCGCCGCGCCTTACGCCGCCGTCGCACTGGCTGGTTGGCTAAMNITRTPQNPATPTLDLGRLRPDCGSCFALCCTAFGFTRSADFAIDKPAGTPCRNLGQDFSCTIHDRLRPRGFSGCTVFDCFGAGQAVSQRLFGGISWRDNPGSQQDMFAAFKSMRQLHEMLWHLAEAQARTFDPYAAGDAKKLAGRIEAIAGGTVSGLLNCDMESLHGEVRGTLMEISEEVRAARFADGGGHLDPDLQPGADLMGANLRQRQLCGADLRGAYLIGADLRGADLAGVDLLGADLRDARLDGADLSAALFLTQPQLNSARGNRATVLPPRLTPPSHWLVGNANANANANA
D1-29_00081381hypothetical proteinATGCGAATTACCTTGATCAGAACCGCTTTGAGCCTAGGCCTCTTTGCGGTTTTCCTTCTTCCGGGACCGGCGCTGGCCATCACGGCAGAACCAGTTGCCGATACGCCGGCCCTGCAGGCAGCCGCTACGCAGACCCAGCAGCCCACGGCTACCCGGCAGCCCACCCCGACCGAAGCGCCCACAGGAGTAACGCCCGCCCCAACGGGACAAGCAACCGCCCCTGAAACCTCGCCGCCTGTGCCGGGGGAGGGTGACAGAACGGAGACTACGCAGACCGGCAATGACATGACGCCGCTCGTAGTGGGGGCGATACTGCTCCTCATCGTGTTGGCCGCTCTTTTCTACTTGTGGAGGCAACGCCGCACGGACACGGAGGTATGAMRITLIRTALSLGLFAVFLLPGPALAITAEPVADTPALQAAATQTQQPTATRQPTPTEAPTGVTPAPTGQATAPETSPPVPGEGDRTETTQTGNDMTPLVVGAILLLIVLAALFYLWRQRRTDTEVNANANANANA
D1-29_00082723hypothetical proteinGTGACCTCTGAATCAACCACATCAGCCGAGCCGGCAGTTCCCCAGCTGTCCCGGCGCGAACTCAACAAAGCGGCAACCCGGCAGGCAATCACGGATGCCACCATGGAGCTTGTCCGGCAAAAGGGCCTGGGCAACTTCACGGTGGAGGACATCGCCGACGCCGCGGGCGTCTCGCGCCGCACCTTCTTCAACTACTACGCCAGCACCGAGGCGGCGATCGGAAACGTCACCCACGGTTTCCTGGACGTAGCGCTCCAGCAGTTCCGGTTGCGCCCGGCGGGTGAGCCGGTGATCGTTTCGGCAAGGGAAGCCCTGATGGCCCTTGCCGATCCCATGGCCGTGGCGCCCGTTGCCGAGCTCTTCAGCCTGATTCAGCAGAACCAGCAGCTCGCCCGTACGGAGCTCGAAGCGTGGGACCACTGCGCCGGGCAGATTATTGAGGCGGCACGTGAGCGCATTGCCGGGAACACCGGCGTCGAACTGGATGAGCTGTACCTCCGCGCGCTGGCAGGCTCGGTCATTTCCTGCGGCAAGGCCGCAGTGGAGGTCTGGTTTGCCCGCTGCGGCGCCGACCTCTCCGAGGCCTCCATGGCCACGCTCCGGCAACTGATGATCGATTCCATGGATCTGCTGGCCTGCGGTTTCGGCACAACGCCAGACACCTCACAGACTTCCCAGGCTGCTGAAACCCCGGCATCCGCACTTCCCACAGATCGGCACTGAMTSESTTSAEPAVPQLSRRELNKAATRQAITDATMELVRQKGLGNFTVEDIADAAGVSRRTFFNYYASTEAAIGNVTHGFLDVALQQFRLRPAGEPVIVSAREALMALADPMAVAPVAELFSLIQQNQQLARTELEAWDHCAGQIIEAARERIAGNTGVELDELYLRALAGSVISCGKAAVEVWFARCGADLSEASMATLRQLMIDSMDLLACGFGTTPDTSQTSQAAETPASALPTDRHNANANANANA
D1-29_000832532hypothetical proteinATGGCCTTACTCCTTTACCGCCTGGGCAAGTTTTCCTACCGCCACCGCTGGCTAGTGATCTCGGCGTGGCTTGCCGTCCTCGTCGCCGTCGGCGGCTCGGCTGCCGCCTTCCACGGCACCATGTCCAACAACTTCCAGATCCCCGGGACCGAAACCCAGCGGATGCTGGACAAGCTGAAGGCAGACCTGCCGGCTTCCTCGGGCGGCACCGCCGGAATCGTTTTCGAGGCCGACGGCGATGGGTTCAGCCAGGAAGGCAAGGCCGCCGTGACTGCCGCGCTGGCCAAGCTGGGCACCCTGCCGGACGTCCAGGGAACAGTGGATCCGTTCGCCATCCAGGCCCAGCTTGACCAGGGAGCAGCGGACCTGGCAACCGGCGAGCAGAAAGCTGCGGCCGGGAAGGCGCAGCTGGACAAATCCGCCGCAGAACTCGCGGCAGGAGCTGCCCAGCTGGCCCAGGCTGAACAGCAGATGAAGGCCGCCGGGCTTCCCGACGCTGCCATCGAGGCCCAGCTGGGCCAGCAGAAAGCGGCGATTGCCGCCGGGCAGCAGCAGCTCGACGCCGGCCGGAAGGATCTCGAGGCGGGCACCGCTGAGCTGGAACTCGGCAAACGCCGGATCGCGGCTTCCGAAGGCATGCGTTTCGTGTCCGAGGACGGGAAGGCAGCCCTCGCCCAGGTGCAGTTCAAAACCTCCATCAATGCGATCGATCCGGCTGTCCGCGAGGAAGTCCAGGAGATCGCCCAGGAAGTGTCGTCAGCAGGCGTCACGTCCTACGCCAGCAAAGAGATCACCGAGGATGTTTCCGACCTGTTCGGAATTTCCGAGATCCTCGGCATCGCCATTGCAGCCTTGGTGCTGATCGTCATGCTGGGCACGCTGATCGCTGCCGGATTGCCGCTGCTGATGGCAGTGGTGGGAGTCGCCGTCGGCGTGGGCGGCACATTCGCCCTCACCAGCGTGGTGGATATGAGTTCCATTTCACCCATGCTTGCCCTCATGCTGGGCCTTGCCGTGGGCATCGATTACTCCCTCTTTATCGTCAACCGGCACCGGAACCAGCTGCTGGCGGGGATGGACGCGGAGGAGTCCGCCGCCCTGGCCACCGGCACGTCCGGCAACGCCGTACTGTTCGCCGGGCTTACCGTCATCATCGCGCTCGCGGCTCTGGTGGTGCCCGGGCTCCCCTTCCTGGCGGTGATGGGCCTTTCCGCCGCGGCCACTGTGGCAGTCGCCGTCGTGGTTGCCCTGACCCTCACCCCGGCCGTCCTGTCGCTCGTGGGCCGACGCCTGATCTCCCGGCGCAGGTGGGCGAAGGCCGAAGCGCACAACGCGGCACCCGGCCACGAAGAAGCAGACCGTACCAAGGAAGAGCACCGGAGCAGCCATGGCTGGGGAGGCCTGGTCACCCGCCACCCCATCCTGGCCCTCCTGGCCGGCGTTGTCCTGTTGGGTGTGCTGGCCCTGCCGGCCAGCCAGCTCCGGCTGGCCCTGCCCGACGGCGGCTCCGAGCCCGTGGCCTCCCAGGCCTACAAGGCGTACGACGCCACCAAGCGCAGCTTCGGCGAGGGCATGACCGGACCCATCGTGGTGGTGGGCGAGTTCCCCGCCGGCCTGAACGAAGCCGAAGCAGTGTCAAAACAGTACGACGTGGCCGACGTCCTGCGGGGTGTGGACAACGTCACGGCGGCCGTCCCGGTTGCGCTGAGCGAGGATCGCCGCACGGCCGTATTCCAGGTGATCCCGCGGGAAGGGCCCGCCAGTGCGAGCACCGTCCAGGTGGTCTCCGAACTCCGTGCGAGGAACGCCGAAATCAAGGACTCCACGGGCGTTACCGTCGGTCTCACCGGGCAGACCGCCGGCAACATCGATGTCTCCACGAAACTGGGCGACGCCCTGCCCCCCTACCTGGCGATCGTCGTCGGGCTCTCCCTGATCCTCCTGCTCCTGGTGTTCCGCTCCATCGTGGTGCCGCTGCTGGCCACGGGCGGGTTCCTGCTGTCCCTGGCGGCCGCGTTCGGAGCCGTCGTCGCCGTCTACCAGTGGGGCTGGCTGGGGACAGTGTTTGACGTTCCCAACCCCGGCGCGGTGCTCAGCTTCCTGCCCATCATCCTGATCGGCGTGCTGTTCGGCCTGGCCATGGACTACCAGGTGTTCATCACCTCCGGCATGCGGGAGTCCTACATGCACGGCGAAACCGCCAAACACGCCGTGCGGACAGGTTTCAGCCATGCCGCCGCTGTGGTCACCGCCGCCGCCATCATCATGGTCAGCGTCTTCTCCGGGTTCGTCTTCAGCCACCTGACCATGGTGCGCCCGCTCGGTTTTGCCATGGCGTTCGGCGTCCTGGTGGATGCGTTTGTGGTCCGCATGACCATTGTTCCTGCCGTCATGTACCTGCTCGGCGAAAAGGCCTGGTGGCTGCCCACCTGGCTGGACCGCATCCTGCCCGATGTTGACGTGGAGGGCGCGAAACTCCGGGCGGACATACCGCCGGCCGCGCTCAGGGAAAAGGAGGGCTCCATCCGCTAGMALLLYRLGKFSYRHRWLVISAWLAVLVAVGGSAAAFHGTMSNNFQIPGTETQRMLDKLKADLPASSGGTAGIVFEADGDGFSQEGKAAVTAALAKLGTLPDVQGTVDPFAIQAQLDQGAADLATGEQKAAAGKAQLDKSAAELAAGAAQLAQAEQQMKAAGLPDAAIEAQLGQQKAAIAAGQQQLDAGRKDLEAGTAELELGKRRIAASEGMRFVSEDGKAALAQVQFKTSINAIDPAVREEVQEIAQEVSSAGVTSYASKEITEDVSDLFGISEILGIAIAALVLIVMLGTLIAAGLPLLMAVVGVAVGVGGTFALTSVVDMSSISPMLALMLGLAVGIDYSLFIVNRHRNQLLAGMDAEESAALATGTSGNAVLFAGLTVIIALAALVVPGLPFLAVMGLSAAATVAVAVVVALTLTPAVLSLVGRRLISRRRWAKAEAHNAAPGHEEADRTKEEHRSSHGWGGLVTRHPILALLAGVVLLGVLALPASQLRLALPDGGSEPVASQAYKAYDATKRSFGEGMTGPIVVVGEFPAGLNEAEAVSKQYDVADVLRGVDNVTAAVPVALSEDRRTAVFQVIPREGPASASTVQVVSELRARNAEIKDSTGVTVGLTGQTAGNIDVSTKLGDALPPYLAIVVGLSLILLLLVFRSIVVPLLATGGFLLSLAAAFGAVVAVYQWGWLGTVFDVPNPGAVLSFLPIILIGVLFGLAMDYQVFITSGMRESYMHGETAKHAVRTGFSHAAAVVTAAAIIMVSVFSGFVFSHLTMVRPLGFAMAFGVLVDAFVVRMTIVPAVMYLLGEKAWWLPTWLDRILPDVDVEGAKLRADIPPAALREKEGSIRNANANANANA
D1-29_00084387hypothetical proteinATGCCGTTGGATCAGCTAGCCGCGATCTTTGCCTGCGTGATTCTGGGTGGCCTGGCAGTTTTCCAGGCCGCACTGGTTGCCGGGGCTCCGCTGGGGAGAATGGCCTGGGGAGGGCAGCACGAAGTGCTCCCCGGCCGGCTCAGGGCAGGCAGCGCGGTGTCCATTGGGCTGTACGCACTTTTTGCCTACGCAGCCCTGGCCAAAGCCGGCCTGGCCCCGCCCCTGGTCAACGAATCCTTCACCTCGGTCTTTTCCTGGGTGCTGACAGGCTACTTCGCCCTGGGCGTGGTGATGAACGGTATCTCCCGGAGCAAGCCGGAACGCCTCGTCATGACCCCCACTGCACTGTTACTCGCAGCCTTGTACCTGGCGCTGTCCGTCAACTGAMPLDQLAAIFACVILGGLAVFQAALVAGAPLGRMAWGGQHEVLPGRLRAGSAVSIGLYALFAYAALAKAGLAPPLVNESFTSVFSWVLTGYFALGVVMNGISRSKPERLVMTPTALLLAALYLALSVNNANANANANA
D1-29_00085294hypothetical proteinATGTCATTCCAGGCTTACCTCGACGCCATCGAGGACAAAACAGGTCTCACCCCCAGGCAGCTTGTGGAGAAGGCGCGGGAGCGGGGCTATCACCTGCCTGATACGAAAGCCGCAAACATTGTTGATTGGCTGAAAGAGGACTACGGACTGGGACGTGGGCATGCCATGGCGCTGGTCCATGTCATCAAAAAAGGTCCAGTAATTGATGACAAACACGTCGGCTCCGCGGGCACCCATGCCGACGCATCAAATGTCCTGTGGCTTGACGGCAAAGCCACCAAGCCGTCTTCCTAGMSFQAYLDAIEDKTGLTPRQLVEKARERGYHLPDTKAANIVDWLKEDYGLGRGHAMALVHVIKKGPVIDDKHVGSAGTHADASNVLWLDGKATKPSSNANANANANA
D1-29_000861920amsCOG0366AmylosucraseATGCTTGAACCCGCAAACGCAGAACACTTCGACAGCGCCAAGGTGCTCACCGCCGTCGCAGAGAAAGCCGGCATCCGTCCAGGGGACGGGGACTGGGCCGATTTCGAACGGCGCTTCCACGTCCATTTCCCCGACTTGGCGCGCCTTTTTCACGCACTCTACGGCTCACGGCCTGACTTCCAGGATCAGCTGATTTCCCTTGTGCTTGAGGCGGCAAGGTCCTGGCAGGAAAGGGCGGCGGACCTGAAGATCCAGGACGCCGAAAGCGACGGCGGCTGGTTCGAGTCCAACCGTATGCTCGGCGGGGTCTGCTACGTGGACCGGTACGCCGCCGACCTTGAAGGTGTCCGTGCCCGTATCCCCTACTTCAAGGAACTGGGCCTTACCTACCTGCACCTGATGCCGCTTTTCCTGGCACCCGAACCGTTGTCCGACGGCGGCTACGCGGTGTCCAGCTACCGGCAGGTCAATCCGCGGCTCGGAACCATGCAACAGCTGCGCGGGCTTGCCGCCGAACTGCGCGCCAACGGTATCAGGCTGGTTGTGGACTTCGTCTTCAACCACACGTCAAACGAGCACGAGTGGGCCCGGAAAGCTGCCGACGGCGATGCGGACTTCAGCGACTACTACTGGATTTTCCCTGACCGGAGAATGCCTGACGCGTTCGAGCAGAACGTGCGGGAGATCTTCCCGGAAGACCACCCCGGCTCCTTCGTGCAGCTGCCCGACGGCAGGTGGGTATGGGCCACGTTCCACACCTACCAATGGGACCTGAACTACACCAATCCTGAAGTGTTCCGGGCAATGGCGGCCGAGATGCTCTTCCTCGCCAACCAGGGCATCAGCATCCTCCGGATGGACGCCGTCGCCTTCATCTGGAAGAAGCTGGGAACACCCTGCGAAAACCAGCCCGAGGCACATACCCTGCTGCGGGCCTTCAACGCGGTCTGCCGGCTGGCCGCCCCGTCACTGCTCTTCAAATCCGAAGCCATTGTCCACCCGGACGAGGTGGCCCTGTACATCGATCCGGCGGAGTGCCAGCTCTCCTACAACCCGCTTCAAATGGCGCTCATCTGGGAGTCGCTGGCCACACGGAACGTTTCGCTGCTCTCCCAGGCCCTGGAACGCCGCCACAACATTCCCCCTGGGACATCCTGGGTGAATTATGTCCGGAGCCACGACGACATCGGCTGGACGTTCGGCGATGAGGACGCCGCAGAGCTCGGAATCAACGGCTTCGACCATCGCCGGTTCCTGAACTCCTTCTACGTCAACCGCTTCCCGGGCAGCTTCGCACGCGGTGTGCCCTTCCAGGACAACCCCAACACCGGCGACTGCCGCATCTCGGGAACAACTGCCTCGCTCTGCGGGCTGGAGCATGATTCGGTCCAGGCGGTGGACCGGATCCTGCTGGCCCACTCGGTGGCATTCAGCACCGGGGGCATACCCCTGCTGTACCTGGGCGACGAGGTGGGCCAGCTCAATGACTACGAGTACGCCGCGGAGGAAGGCCACGAAGCCGACAGCCGCTGGGTGCACCGGCCCCACTTTCCGGCCGAACGCTACGCACACCGCCATGACCCGTCAACCCCCGAGGGCGCCATCTTCGCAGGCCTGCGCAGAATGGCGGATGCCCGGGCCAGTACCCCTGAACTGGCAGGCACCCGCCTCATTCCGTTCGACACAAAAAACCCGGGCGTCCTTGGCTACCAGCGGCCCGGCGAGGGAACACTGGTACTTGCCCTTGCCAACTTCAGCGACCATCCCCAGATCATCCAGGCCGGGACACTCTCAGGCTTCGCACCGGAGGCCGTGGACATTCTGTCCGGCAACCCGGTAAGCCTCAACAACGGAATAGTCCTCCCGGGGCTGGAGTACGCCTGGCTCCGGGTTGTGCCGGTGAACCCGCAATCGTCCTAGMLEPANAEHFDSAKVLTAVAEKAGIRPGDGDWADFERRFHVHFPDLARLFHALYGSRPDFQDQLISLVLEAARSWQERAADLKIQDAESDGGWFESNRMLGGVCYVDRYAADLEGVRARIPYFKELGLTYLHLMPLFLAPEPLSDGGYAVSSYRQVNPRLGTMQQLRGLAAELRANGIRLVVDFVFNHTSNEHEWARKAADGDADFSDYYWIFPDRRMPDAFEQNVREIFPEDHPGSFVQLPDGRWVWATFHTYQWDLNYTNPEVFRAMAAEMLFLANQGISILRMDAVAFIWKKLGTPCENQPEAHTLLRAFNAVCRLAAPSLLFKSEAIVHPDEVALYIDPAECQLSYNPLQMALIWESLATRNVSLLSQALERRHNIPPGTSWVNYVRSHDDIGWTFGDEDAAELGINGFDHRRFLNSFYVNRFPGSFARGVPFQDNPNTGDCRISGTTASLCGLEHDSVQAVDRILLAHSVAFSTGGIPLLYLGDEVGQLNDYEYAAEEGHEADSRWVHRPHFPAERYAHRHDPSTPEGAIFAGLRRMADARASTPELAGTRLIPFDTKNPGVLGYQRPGEGTLVLALANFSDHPQIIQAGTLSGFAPEAVDILSGNPVSLNNGIVLPGLEYAWLRVVPVNPQSSPGPT0018825_159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_SUCROSE_METABOLSIM|DEGRADATION,PGPT0018825-suxB|ams-K05341NANA
D1-29_00087705hypothetical proteinATGGACATCATCCTGGTACCCGGTTTCTGGTTGGACGCCTCGTCATGGGCGGAGGTGACGCCAGCCCTGGAGGCGGCAGGGCACACGCCCCATCCGCTCACCCTTCCCGGCCTCGAGTCTGCAGACGCCCCGCGCGCCGGAATTGGCCTGCGTGACCACATCGATGCCGTCGTGAAGGCCGTGGACGGGATGGAAGGGAAAGTGGTGCTGGTGGGCCATTCGGGCGGCGGCGCCATCATCCACGGTGTGGTTGACGCGCGGCCGGACCGGGTGGAGCGGGCCATCTACGTGGACAGCGGCCCCCTGGGCGAAGGCGGCGTCATCAACGATGAGCTGCCGGCGGAGGGCGACGACATTCCCCTGCCGCCTTGGGAGGGTTTCGAAGACGCCGATCTCACGGACCTCACGGAGGATCTTCGTGCCCAATTCCGGGCCCGCGCCATCCCGCAGCCCAAGGGCGTGGCGTTCGATCAGCAACACCTGCACGACGTGCGCCGTTATGACGTCCCCGCCACCGTGATCGCGTGCGAGTTTCCCTCCTCACTGCTTCAGGAGTGGATCGACGCCGGCCATCCCTACGTGGCGGAGCTGGCCCGCATCCGGGACGTGGAGTACGTGGACCTTCCCACGGGGCACTGGCCCCAGTTCACCAAACCGGCGGAACTGGGCCAGGCAATCCTGGCAGCGGTGGACCGCAAGGTGTGAMDIILVPGFWLDASSWAEVTPALEAAGHTPHPLTLPGLESADAPRAGIGLRDHIDAVVKAVDGMEGKVVLVGHSGGGAIIHGVVDARPDRVERAIYVDSGPLGEGGVINDELPAEGDDIPLPPWEGFEDADLTDLTEDLRAQFRARAIPQPKGVAFDQQHLHDVRRYDVPATVIACEFPSSLLQEWIDAGHPYVAELARIRDVEYVDLPTGHWPQFTKPAELGQAILAAVDRKVNANANANANA
D1-29_000881473hypothetical proteinATGACGAAGTCACGATCTTGGACAACGCGCGCAGCGGGATTGGCAGCGGCTTTCGGCATCGCGCTGACAGCGGCGGTGCTGCCGCCGGCCGCGGGCGCCGCCATTGAAAACAGACCAGCGATAGAACACCAGCTGGCTGCTGACCAGAAGCAGGCCGGAGCACACAAGCAGCAGGCCGACCTGCCGGGCGGCAAAACGGTGGTGGGCCAGACCTCGCCAATCCACGATCCCGCGCTGATCATCGCCGACGACGGCACGTGGTACGTCTATTCCACCGGACTGCTAAACAGGGAGAACGGCGGGACCATCCAGATCTGGTCCTCCTCGGACCAGGGAACGACGTGGGAGTACAGCGGCACGGTCTGGGACAAGATTCCGGCGTGGATTGATGAACACTTCGCCGACGGCGAGCTGCCGGGCAACCTGTGGGCACCGGAAATCACCGAACACAACGGGACCTACTACCTGTACTACTCGGCGTCGCGCTTTGGCGGGAACAACTCTTTGACCGCCCTCGCCACCAACACCACTCTTGACCCCAACGACCCCGACTACGAGTGGGTGGACCAGGGCCTGGTGGTCTCCTCCCCCGCCACGGGGCTGGATCCGAACAACCCCGGCAAGACGTTCAACGCGATCGACGCCGGCATCATCGAAGATGCGGACGGCACCCCGTACATGGCCATCGGCTCGTTCTGGTACGGGATCTTCCTGGTGCCCATCGAGTGGCCCACCGGCAAGCCTGTGGCCGACTGGCAGTCCAAGACCGTCAACATCGCGGACCGCTTTATGCCGGGCAACCCGGTCGAGGCGCCGTACATCACCCGGCACGGCGGCTACTACTACCTGTTTGTCTCCTTCGACTCCTGCTGCCGGGGCGGGGACTCCACCTACAAAGTGGCGGTGGGCCGCTCCACGTCCGTGAAGGGCCCCTACCTGGACAAGGACGGCCGCGACATGTTCGGCGGCGGCGGGTCTGTGGTGCTGGATTCGCACGGTGCAATCACGGGCCCGGGCGGACAGTCGGTTTTTGGCGACTACCTGGCGTTCCACTACTACGACGGGTCCAACCAGGACATCCCGTACTTCCCCACCCTGGGCCTGCAGAAGATCAACTGGGTGGACGGCTGGCCCGCTTTTGACCAGACCCTGGAGCTGCCGGCGGTACAGAAGCAGCCGAAGCCGGTATCCATAAACGCCGGGAAGACGGCCGTATTCGCCGCCACAGCCACCGGGACGCCAGGCCCGGTGGCTGTCTGGGAGACGTCCTCCGATGGCGGGGCCACCTGGGAGCAGCTCGAATCCCAGCCCATCACCAAGCGGACGGACGAAGGCACGTACCGGTCCACCCTCGAGTTGGCGGCCGCTTCCACGGAGGACGACTCCCCAGAGCCGGGGCTTCTGGTGCGTGCCGTTTTCCACAACGCACACGGCTCGGTGACCACCGACGCCGTCGGACTTTCGGTGCGGTAAMTKSRSWTTRAAGLAAAFGIALTAAVLPPAAGAAIENRPAIEHQLAADQKQAGAHKQQADLPGGKTVVGQTSPIHDPALIIADDGTWYVYSTGLLNRENGGTIQIWSSSDQGTTWEYSGTVWDKIPAWIDEHFADGELPGNLWAPEITEHNGTYYLYYSASRFGGNNSLTALATNTTLDPNDPDYEWVDQGLVVSSPATGLDPNNPGKTFNAIDAGIIEDADGTPYMAIGSFWYGIFLVPIEWPTGKPVADWQSKTVNIADRFMPGNPVEAPYITRHGGYYYLFVSFDSCCRGGDSTYKVAVGRSTSVKGPYLDKDGRDMFGGGGSVVLDSHGAITGPGGQSVFGDYLAFHYYDGSNQDIPYFPTLGLQKINWVDGWPAFDQTLELPAVQKQPKPVSINAGKTAVFAATATGTPGPVAVWETSSDGGATWEQLESQPITKRTDEGTYRSTLELAAASTEDDSPEPGLLVRAVFHNAHGSVTTDAVGLSVRPGPT0019090_287DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINANASE,PGPT0019090-abnA-K06113NANA
D1-29_000891332hypothetical proteinATGACGAAGTCACGTCCCATGGCCGCTGCCTTGGCGCTTTTGACCGCAACAGGCCTGATGCTCGGCGGATGCTCCGCCCCAACAGGCGGGGATGCCGGCGAAAAGAAACTCACCTTTATGTTCCGTGGGGGTGAGGACGAAAAGAAGGCCTACGAAAAGGCCGTCGCGCAGTTTGAAATGGACAACAACGTGGACGTGGACATCATCGTCACCACCGCGGACCAGTACGCCACCAAGCTGAAGGCTGCCATCGCCGGCAAGCAGGTCCCGGACGTCTTCTACATCGGCCCCGGCGACGTCCAGGCGTACGTGCAGAACGGCATCGTCAAGGACATCACCGAGTACGTGGAGAAGTCCGACACCATCGACCTGGACAACATCTGGGAGTACGGCGTCGACAGTTACCGCTATGACGGAAAGCGGGTGGGCGAAGGTGCCATCTACGCCCTCCCCAAGGATGTTGGACCGTTCTCCTTCGGCTACAACAAGACCATGCTGGAGAAGGCAGGCATCCCGCTTCCGGACAAGGACAAGCCCTACACCTTCGACGAATTCGTGGCCGCGGCCAAGAAGCTGACAGCCGACACCAACGGGGACGGCGCCCTGGACCAGTGGGGCACCGGCCTGAACGTCCAGTGGAACCTGCAGCCGTTTGTCTGGTCCAACGGCGGCGACTGGCTCAACGAGGACCGCACCAAGGTCACGGTGGACACGCCGGAGTTTGCCGAATCCCTCCAGTGGTTCGCTGACCTGCAGAACGTCCACGGCGTGACGCCGTCCGTTGCCGAGGCACAGACCCTGGACACGTACCAGCGCTGGATGAAGGGCGAAATCGGCTTCTTCCCGATCGCTCCGTGGGACCTCTCCACCTACCAGAAGCTGGGCTTTGAATGGGATGTGATCCCGTACCCGGCCGGCGACACCGGCAAGACCGCCAGCTGGATCGGAACGCTGGGCGTCGCGGTGTCTGAGAGCACCAAGCACCCGGAAGACGCCGTGAAACTGGTGGAATACCTGACGGCCAACAAGGAAGCCCAGCAGAGCCTGGTGGATGCGGGTATCCAGATCCCCAACCTGAAGGACATGGCTGAGACCTGGGCCGCCGACACCACCACCAAGCCTGCCAACAAGGCCGAGTTCCTGCAGATCGTGAAGGACTACGGGCGGGCCCTGCCGGGCGGCAACACCTTCAACGCCGAGTGGTACGACGAACTCTTCACCAACATTCAGCCCGTGCTGGACGGCAAGCAGACCGCAGCCGACTACCTGAAGGAAGCCCAGCCGCGGATGCAGGAATTCCTGGACGCAGCCAACCAGCAGGCCGGCAGCTAAMTKSRPMAAALALLTATGLMLGGCSAPTGGDAGEKKLTFMFRGGEDEKKAYEKAVAQFEMDNNVDVDIIVTTADQYATKLKAAIAGKQVPDVFYIGPGDVQAYVQNGIVKDITEYVEKSDTIDLDNIWEYGVDSYRYDGKRVGEGAIYALPKDVGPFSFGYNKTMLEKAGIPLPDKDKPYTFDEFVAAAKKLTADTNGDGALDQWGTGLNVQWNLQPFVWSNGGDWLNEDRTKVTVDTPEFAESLQWFADLQNVHGVTPSVAEAQTLDTYQRWMKGEIGFFPIAPWDLSTYQKLGFEWDVIPYPAGDTGKTASWIGTLGVAVSESTKHPEDAVKLVEYLTANKEAQQSLVDAGIQIPNLKDMAETWAADTTTKPANKAEFLQIVKDYGRALPGGNTFNAEWYDELFTNIQPVLDGKQTAADYLKEAQPRMQEFLDAANQQAGSNANANANANA
D1-29_00090903lacF_1Lactose transport system permease protein LacFATGTCATCAACCATCACGCGCCGCTCGCGGCTTCACCGGAAGGAACACCAGGCCGCCCTTGTCTTTGTTGCCATACCGGTGATCGGGTTCCTCCTCTTTACGCTTTTCCCCTTGCTGTTCTCCGTGTATGCGTCCTTCACCAACTGGAACGGTATCTCCGCTCCGGTGTTCAAGGGCCTGGACAACTACACCAAGATGTTCGGCGACAGGTATTTCCTGAAGTCGCTGTGGAATACCGTCTTTATGATGATCGGCATCCCCGTGGGCCTGGTCATTTCGCTGGCCCTGGCACTTGCCATGAACCGCAAGATGCGTGGCACCACGTTCTTCCGCACGGTCTACTACCTGCCGGTGATCTCCTCCATCGCGGCCGTGGCCATCCTGTGGCAGTGGGCCTTCAACGGCGATTTCGGCCTCATTAACCAGGGGCTGGGACTGCTGGGAATCGACGGCCCCAACTGGCTGCAGGACACTGCCACCGTGAAGCCTGCCCTGATCATCATGGCGGTGTGGAAGGGGCTGGGGTATTCGATGCTGCTTTACCTGGCCGCCCTCCAATCGGTGCCCCGCTACCTGTATGAGGCCGCCGCCCTGGACGGCGCCTCGGCCTGGCAGCAGTTCCGCCACATCACCATTCCGATGGTCCGGCCGGTTACTTTCTTCCTTATCGTCACCAGCATCATTGGCGGTTCCCAGATCTTCGTGGAAATCAACATCATGACCCCCACCGGCGGCCCGGAGTTCGAGTCCGCTTCCATCGTCTGGTACATCTGGCAAAAAGCGTTCGACAACCTCCAGATGGGCTACGCCTCCGCCATGTCCGTGGTCCTGGGGCTGCTGGTCTTCATCATCACTTTCATCCAGTTCCGGCTTAACCGCCGCAACCAGTTTTCGATCGATTGAMSSTITRRSRLHRKEHQAALVFVAIPVIGFLLFTLFPLLFSVYASFTNWNGISAPVFKGLDNYTKMFGDRYFLKSLWNTVFMMIGIPVGLVISLALALAMNRKMRGTTFFRTVYYLPVISSIAAVAILWQWAFNGDFGLINQGLGLLGIDGPNWLQDTATVKPALIIMAVWKGLGYSMLLYLAALQSVPRYLYEAAALDGASAWQQFRHITIPMVRPVTFFLIVTSIIGGSQIFVEINIMTPTGGPEFESASIVWYIWQKAFDNLQMGYASAMSVVLGLLVFIITFIQFRLNRRNQFSIDPGPT0016535_3247DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_00091954lacG_1Lactose transport system permease protein LacGATGTCCGCGCAGAATGTCATCACCACCCCTCCGCTGAAAACCACCGAGCCGATCCCCGGCCACCGGCGGGACAGAACCGGCAACCAGCCGCACCGTGCCAAGGATGGCCAGCGTTCGACCAAAAACGGGCTCAGGCTGGGCAATATCCTGACCACCCTGATCCTCAGCGTGGGCGCCATCATCATGATCGCGCCGCTCGCCTGGACCTTTTCCACGTCACTGAAAACCAAAGACGGCGTGTTCGAGCTTCCGCCGCAGTGGATTCCGGACCCGTTCGTCTGGGAAAACTATGCGCGGATCTGGACGGCCGGGCCGCTCCTCACCGGCATCCAGAACAGCCTGATCGTGGCATGCTCCGTCACCATCATCGGTTCCCTGACCTCGGCGCTTGCCGCCTTCGCGTTCGCCAAGATGCGGATGCCCTTTAAGAACGTCCTGTTCCTGGGGCTGCTGTCCGGCCTGATGATCCCGTTCCCCACGCTGATGATTCCGCAGTTCACCATCTTCGCCAGCATCGGCTGGGTGGACACCCTGCTGCCGCTGATCGTGCCCGGGCTGTTCGGCAACATCATCATGATCTTCTTCCTGCGCCAGTTCCTGAACAGCGTGCCGGACTCCATCGTGGAGGCGGCAAGGATCGACGGCGCGTCCTACCTGCAGATCTTCTGGACCCTGATCATGCCCGCCATCCGCCCTGCCCTTGCGGCCCAGTTCATCCTCTGGTTCATGGCCATGTGGAACGACTACCTGGCACCGATCATCTACCTCAACTCGCCCGGAACGCAGACCCTGCAGCTGGTGATCGCCAACTTCAATGCCCAGTACGCCATCCAGACCGATTACCCCCTGATCATGGCGGCATCGTTCATCGCGCTGCTGCCCGTCCTGATCGTTTTCATCGTGTTCCAGCGCCAGATCATCGAATCAATCGCCCTCTCGGGATCCAAGGGCTGAMSAQNVITTPPLKTTEPIPGHRRDRTGNQPHRAKDGQRSTKNGLRLGNILTTLILSVGAIIMIAPLAWTFSTSLKTKDGVFELPPQWIPDPFVWENYARIWTAGPLLTGIQNSLIVACSVTIIGSLTSALAAFAFAKMRMPFKNVLFLGLLSGLMIPFPTLMIPQFTIFASIGWVDTLLPLIVPGLFGNIIMIFFLRQFLNSVPDSIVEAARIDGASYLQIFWTLIMPAIRPALAAQFILWFMAMWNDYLAPIIYLNSPGTQTLQLVIANFNAQYAIQTDYPLIMAASFIALLPVLIVFIVFQRQIIESIALSGSKGPGPT0016540_2463DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00092681hypothetical proteinATGACGGGCAACAACCTCGCCGTTACACCGAACGAATTGCATCTGGGCTGGGCCGGCCGGGTGATGCAGTGGCTGGGTTTCGCCACCCGGCTGGTGCTGGTGAACATGCTGTTTGTGGCCGGGGCGCTGGCTGGACTGCTGGTTTTTGGACTGTTCCCCGCGGCCGTCGCGGCCACCACCATCCTGGCCAGGCTGCGTGCAGGGCTTGCCGGGGAGCATCTGGTGCGTGACTTCATCAGCGTGTACCGCTTCCAGTTTTGGCACGCCAACCGGGTGGGCAGCATATTCTGGCTGGCCGGCGTCGTACTTGGCCTTAACGTCCTCAGCGTGCTGGGACCGGAGGGCGCCGTGTTGCTGTCCTCGCCAGTCCACGCCGTCCTTCTTCTTGTGGCGGCGATGGCAGGCACTGCCACCTTCCTGGCGGCCGCGACGGCGGTGGCCATCTGCAGCCGCTACCGTGACTCGATAGTACGGACCTGGCGGACGGCCTTTGTGCTTCCGCTGGTGTCGCCCGTGATGAGCATTTCGCTGCTGCTGAGCCTGCTGGCATGCGCCGTCATCTTCTCCGGAACGACCGTCCTGCTGCCGCTGGCAGGGGCATCGGTTCCCCTGCTGCTTTCCGGATGGCTGGTGGAACGCCGGCTTTCCACCCTCCAACAGGGGCGCACCGTCCCCGCCTGAMTGNNLAVTPNELHLGWAGRVMQWLGFATRLVLVNMLFVAGALAGLLVFGLFPAAVAATTILARLRAGLAGEHLVRDFISVYRFQFWHANRVGSIFWLAGVVLGLNVLSVLGPEGAVLLSSPVHAVLLLVAAMAGTATFLAAATAVAICSRYRDSIVRTWRTAFVLPLVSPVMSISLLLSLLACAVIFSGTTVLLPLAGASVPLLLSGWLVERRLSTLQQGRTVPANANANANANA
D1-29_000931551afuBCOG3534Exo-alpha-(1->6)-L-arabinofuranosidaseGTGACCATCACCTCCGCTGCTGCTGAACAGACCGACTTGGCTGTTGTGGCACCCACCGTCATCACCATCGACAGGTCCGCCGTCGTTGCCCCCGTCAGCCGGCGCATCTTCGGCTCCTTCGTGGAGCACCTGGGCAGGTGCGTCTACGACGGCATCTACGAGCCCGGGCACCCAACCGCCAACGAGGACGGATTCCGGCTGGACGTCATCGAGCTGGTCAAGGAACTCGGCTCCAGCACCATCCGCTACCCCGGCGGAAACTTCGTTTCCGGCTACCGCTGGGAGGACGGCGTGGGACCGCGGGACCAGCGGCCGGTCCGCCGCGACCTCGCCTGGCACTCGCTGGAATCGAACCAGGTTGGCCTGGACGAGTTCGCCCGCTGGTGTGAGCTCACCGGCTCCGAGCTGATGATGGCCGTGAACCTGGGCACCCGCGGCATCGACGCCGCCCTTGACCTGCTGGAGTATGCCAACCACCCCTCCGGCACCGCCCTCAGCGAGCAGCGCATCGCCAACGGAGCCAAGGATCCCTACAACATCCGGATGTGGTGCCTCGGCAACGAAATGGACGGCCCGTGGCAGATCGGCCACATGTCGGCAGACAGCTACGGCAGGCTCGCAGCCCGTACGGCGTCCGCCATGAAGACCGCGGACAAGGACCTGCAGCTGGTGGTGTGCGGCTCCTCGAGCTCCTCCATGCCCACATTCGGCGAATGGGAGCGGGTGGTCCTGGAGCACAGCTACGACTACGTGGACTACATTTCCTGCCACGCCTACTACCAGGAGCGCAATGGCGACCTGGGCTCCTACCTCGCATCCTCGCTGGACATGCAGTACTTCATCGAGACCGTGGTGGCCACCGCCGACCACGTCAAGCACAAGCTCAAGAGCAAAAAGACCATCCAGCTCTCCTTCGACGAGTGGAACATCTGGTACCTGGACGAGCACCAGGCCTCCGACGAGGTCAACGAGGAATGGACCCACGCCCCGCGCCAGCTGGAGGATGTCTACTCCGTGGCCGACGCCGTGGTGTTCGGCAACCTGCTCATCACCCTGCTGAAGAACCACGACCGCGTGGCTGCGGCCTCGCTGGCGCAGCTGGTGAACGTGATTGCGCCCATCATGACCGAGCCCGGCGGCGACTCCTGGCGGCAGACCACGTTCTTCCCGTTCTCCGTCACCTCGCGCCTGGCCCGTGGCGAGGTGCTCCGCCCGCGCATTGAGGCAGGGACGTACACGACGGCGGTCTATGGCGAAGCGCCGCTGGTGGACGCCGTGGCAACCGCCGACGCCGCCACCGGCCAGTCGGCGCTGTTCCTGGTGAACCGCAGCCAGACGGAGGCGATCGACGTCAGCATCAACGTTTCAGAGTTGAAAGCCACCGTGGTCACCGAGGCCGTCACCCTCCACGACGAGGACGTGTACGCCAAGAACACCCTCCAGGACCAGAACCGTGTGGGCCTGAAGCAGCTCAACGGTGCCGTCCTGGAGGAGGGCACGCTCACGGTGACGCTGCCGCCGGTGTCCTGGTCCGCCGTCGCGCTTGGCTGAMTITSAAAEQTDLAVVAPTVITIDRSAVVAPVSRRIFGSFVEHLGRCVYDGIYEPGHPTANEDGFRLDVIELVKELGSSTIRYPGGNFVSGYRWEDGVGPRDQRPVRRDLAWHSLESNQVGLDEFARWCELTGSELMMAVNLGTRGIDAALDLLEYANHPSGTALSEQRIANGAKDPYNIRMWCLGNEMDGPWQIGHMSADSYGRLAARTASAMKTADKDLQLVVCGSSSSSMPTFGEWERVVLEHSYDYVDYISCHAYYQERNGDLGSYLASSLDMQYFIETVVATADHVKHKLKSKKTIQLSFDEWNIWYLDEHQASDEVNEEWTHAPRQLEDVYSVADAVVFGNLLITLLKNHDRVAAASLAQLVNVIAPIMTEPGGDSWRQTTFFPFSVTSRLARGEVLRPRIEAGTYTTAVYGEAPLVDAVATADAATGQSALFLVNRSQTEAIDVSINVSELKATVVTEAVTLHDEDVYAKNTLQDQNRVGLKQLNGAVLEEGTLTVTLPPVSWSAVALGPGPT0018655_1567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
D1-29_00094996abn-tsIntracellular endo-alpha-(1->5)-L-arabinanaseGTGGGGCTGGCTGCGGCGCTGGCCGCCGTCGTCGTGGTCCTGTCCGCGTGTGCCGCCGTTCCCGGCGCCACAGCCAAACAGGAACCAACGGAAGCTGGGCTGACCGGGGATATTTTCACCCACGATCCTGCCCTGGTGAAGGGCGGGGAGGGTAAACCCTGGTTCATCTACTCCACCGGAAACGGCCAGGTGGCGGACGGAAACATCCAGATCAGGCGCTCCACCGATGGCAGGAACTGGGAATACGCCGGCGAGGTCTGGCAGCAGAAACCGGCCTGGCTTGCGGCGGCGGTTCCCGGTGTGGACAACCTCTGGGCGCCGGAGCTGTACCACCAAAACGGCACCTGGTACCTCTACTACTCCGCCTCCACCTTCGGCAAGAACCTGTCCGTGATTGCGCTGGCCACCAACACCACGCTTGACCCGGAGGACCCGGGCTATGAATGGGTGGACCGGGGGCAGGTGATGTCCTCGAAGGGGGAGCGGTTCAACGCCATTGATCCCGGCATTGCCGAGGACGCGGACGGCACGCCGTGGATGACCTTCGGTTCGTTCTGGACCGGGCTGCAGCTGGTGGAGCTCGAGTGGCCCAGCGGGCTGCCCGCGGCGGGTGCAGAGCCGGTGACAATAGCCGACCGGAAGGCGCCGCCGAATGCGATCGAGGCGCCCTACATCCTGCCGCACGACGGTGCCTTCTACCTCTTCTTCTCCCGCGATTTCTGCTGCCAGGGGCTGGAGAGCACCTACAACATTGCCGTCGGGAAATCGGACAGCATCAACGGCCCGTATGTGGATGCCGAGGGCAAGGCACTGCTCGACGGCGGCGGCACACCGCTGCTGGGCACCGACGGCGGGCGCGTGGGGCCGGGCGGCCAGTCCGTTTCCGGCGGCACGCTCGCATTCCACTACTACGCCGAGGAACTTGACGGCGCCTTCCGGCTGGGCCTGGCCGAGCTGGAGTGGAAGGACGGCTGGCCCACCGCCCGCTGGCAGTAAMGLAAALAAVVVVLSACAAVPGATAKQEPTEAGLTGDIFTHDPALVKGGEGKPWFIYSTGNGQVADGNIQIRRSTDGRNWEYAGEVWQQKPAWLAAAVPGVDNLWAPELYHQNGTWYLYYSASTFGKNLSVIALATNTTLDPEDPGYEWVDRGQVMSSKGERFNAIDPGIAEDADGTPWMTFGSFWTGLQLVELEWPSGLPAAGAEPVTIADRKAPPNAIEAPYILPHDGAFYLFFSRDFCCQGLESTYNIAVGKSDSINGPYVDAEGKALLDGGGTPLLGTDGGRVGPGGQSVSGGTLAFHYYAEELDGAFRLGLAELEWKDGWPTARWQPGPT0019090_662DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINANASE,PGPT0019090-abnA-K06113NANA
D1-29_000951008degA_1COG1609HTH-type transcriptional regulator DegAATGGCAGCGACTCTTCACGACGTGGCCCGGGTCGCCGGCGTGTCCTTCAAGACGGTCTCCAACGTCATCAACAACCACCCGCATGTCCGGGACACCACCCGCGCCAAAGTGGAGCAGGCCATCGCCGAGCTGGGCTACCGCCCCAACCTGACCGCCCGCAGCCTGCGCTCCGGACAGACAGGTGCCGTCACCCTGGCGCTCCCCCAGCTCAGCCTGCCCTACTTCGCCGAGCTGGCCGATGCCGTGATCGAAGCCGCCGCGAAGCACGGCCTGGTGGTGCTGATCGAGCAGACAGGCGCTGACCGCGCGCGGGAACTCGAAGTGATGTCCAGCCCGCGGCTCAAGATGTCGGACGGCCTGATTTTCAGCCCGCTCGCCATGGGCCAGGAAGACGCCGACCTGGTTAAGGCCGACGTGCCGATTGTCCTGCTGGGTGAACGCATCTTCGGCAGCGGCTCGGATCACGTCACCATGCAGAACGTCACCGCGGCGCGGGCAGCCACCGACCACCTGCTGGACATCGGCCGGAAGCGAATCGCCGTGGTGGGCGCCCACCAGGGGGAAGTCATTGGTTCTGCCGGGCTGCGGCTCCGCGGTTACCGCGAGGCGCTTGAGGCCCGGGGCATCCCGTACGACGACGGGCTCGTTGCCTACGTCCGGGACTGGCATCGCTCCAACGGCGCTGCGGCGATGCACGATCTGCTGGACCGCGGCGCATCCTTCGACGCGGTGTTCGGGCTGAACGACACCTTGGCGCAGGGCGCCATGCGGGTCCTGCAGGAAGCGGGCTTCCGTGTGCCGGACGACGTCGCCGTGATCGGCTTCGATGACCTGGACGAAACCCGCTATTCGCTCCCCACGCTCAGCACCGTGGACCCGGGGCGGGTGGAGATTGCGGAGACCGCCATCCGGATGCTCATGGAGCGGATTAAGAACCCGGATGGCGGCGCGCCGCGTCAGATCGAAGCTGCCTTCCGCGTGGTGCCGCGGGAATCAACGGCGAGCTGAMAATLHDVARVAGVSFKTVSNVINNHPHVRDTTRAKVEQAIAELGYRPNLTARSLRSGQTGAVTLALPQLSLPYFAELADAVIEAAAKHGLVVLIEQTGADRARELEVMSSPRLKMSDGLIFSPLAMGQEDADLVKADVPIVLLGERIFGSGSDHVTMQNVTAARAATDHLLDIGRKRIAVVGAHQGEVIGSAGLRLRGYREALEARGIPYDDGLVAYVRDWHRSNGAAAMHDLLDRGASFDAVFGLNDTLAQGAMRVLQEAGFRVPDDVAVIGFDDLDETRYSLPTLSTVDPGRVEIAETAIRMLMERIKNPDGGAPRQIEAAFRVVPRESTASPGPT0021075_439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-29_000961185rsgA_1Small ribosomal subunit biogenesis GTPase RsgATTGAAAAATTCTTCAGGCAACAGCCTGGACAGCATTGCTTTACCCACTTCCGGCCACAACGGGCCCACTTCCGGCCACAACGGGCCCAGCCTGTACGGCTATAACCCCGCCGTGGAACGGCACTTCGACGAAAATCCGCCCCCGGTCAGCAGTACGGCCTGCGAGCCTGGCCGTGTGGTCCGGGTGGACCGCAGCATGGTGCTGGTGGCGGTCGGCGCGGAACTCCTGCACCTGCCCTACCCGCTGGATGCCGGCGTGCCGGTAACGGGCGACTGGGTATGGATCGGACCCAACCGTGCCGGTGACCGGCAGATAGTCGCGATCCTTCCCCGGCGCTCGGAACTCAGCCGAAAGCGCGCCTTCGAGGCCTCGTCGGCCGCCCAGGTGCTGGCCGCAAACATGGACGTGATCGGCGTGGTGGTGCCGGTGGACCGGCCGCTCACGCACAACCGGCTCGAACGCACCCTGGTTGCCGCGTGGGACTCGGGAGCCGTTCCCTTGGTGATCGTCACCAAAGCGGACCTCGCGGACATAGCGGACGACGTCGTCGGGCAGGTCATCCTGCAGGCGGCGGGAGTTGAGGTGGTCACCACCTCCGCCGAGCATGGGGACGGAATCGATGAACTGCTGGGCCGCCTGCCGGCGCGCAGCACGTTGGTCCTCCTAGGGCCTTCCGGTGCCGGCAAATCCACCCTGATCAACGCGCTGGTGGGGCACAACGTCCAGGACACTGGCGCCGTCCGCTCCGGTGACTTCAGGGGCAAGCACACCACCACCTCCCGTGAACTGGTGCCTCTGGCGGACGGCACCGTCCTGATGGACACTCCCGGCGTCCGCGGGTTTGGGCTTTTCGACGCCGACGACGGGATGGAGCAGATGTTCGGCGACGTGGACGAACTGGCCGGCCTCTGCCGGTTTTCGGACTGCGCCCATGAGCGGGAGCCCGGCTGTGCGGTGCGGCAGGCCCTCGCCGACGGCACGCTCGAGGACCGGCGCTGGAACAACTACCTGAAACTCCAGCGCGAACTGGCAGCACTTGCCCGCCGCAAGGATGCCGCAGCCACCCGGGCGTACCAGCGCGAGTGGCACCAAAAGGTGGTGGGAGGAGGGACATCCCAGCGTTCCGCGGAGCGGGCCAGGTCGGAGCGGCAAGAGGAACAGCGGTCTAAACGGAAGCGGCGCTAAMKNSSGNSLDSIALPTSGHNGPTSGHNGPSLYGYNPAVERHFDENPPPVSSTACEPGRVVRVDRSMVLVAVGAELLHLPYPLDAGVPVTGDWVWIGPNRAGDRQIVAILPRRSELSRKRAFEASSAAQVLAANMDVIGVVVPVDRPLTHNRLERTLVAAWDSGAVPLVIVTKADLADIADDVVGQVILQAAGVEVVTTSAEHGDGIDELLGRLPARSTLVLLGPSGAGKSTLINALVGHNVQDTGAVRSGDFRGKHTTTSRELVPLADGTVLMDTPGVRGFGLFDADDGMEQMFGDVDELAGLCRFSDCAHEREPGCAVRQALADGTLEDRRWNNYLKLQRELAALARRKDAAATRAYQREWHQKVVGGGTSQRSAERARSERQEEQRSKRKRRPGPT0009020_165DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949NANA
D1-29_00097180hypothetical proteinATGGAACGCCGCCTCTGGCGGAACCCTCAGGTGGAGGCTAAAGTTGGGACCGGTCCGGTAATTCACTTCGATGGACCACACGAGAGAGCGGAGGTGTTTTTGATGACTGTCATTGCCGCGCGCCCCGGGCGCTTTGCAACCATCACCCTAACCACCCCCGTCTCCAGCCGCACCGCGTAGMERRLWRNPQVEAKVGTGPVIHFDGPHERAEVFLMTVIAARPGRFATITLTTPVSSRTANANANANANA
D1-29_00098225hypothetical proteinATGGAAGATCCACGACTGACGGCCCGAAGGCTTATTGAGCAGGATGCGCGGTACCTCCGTGAGCTGTGGCTCAGCTACTGGTCCAACGGCGGCGAGGCACAACTGCTTGAGTTCGAGTCGTACCTTCACGGCGTGTACGAGCGCAGCGAATCGGACCTGAAGATTCTTTCCTGGGCGATACACGACGTTCAACCCTCGAGCAGGCCGCCACAGCGCCGCTACTGAMEDPRLTARRLIEQDARYLRELWLSYWSNGGEAQLLEFESYLHGVYERSESDLKILSWAIHDVQPSSRPPQRRYNANANANANA
D1-29_00099387hypothetical proteinATGGAACTGATTTTCGTGCGCTATCAGGCAAGTGCCCCCAACGCCCGTGGACGGTACCCGGGGATCTTCGCCTTGGCGAACGGTCTGGCAAGGGGCGGCAGGCTCAGCGGTGAGGACTGGGCTTCCTGGCGCGCCGCGAACGATCACTACGACGCCGCCTACACGGACCCTTCGACAGTTGACAGGTCCGTCTACGACCCCCACATCAACCCGTCGGCGCAGTCCTGGTTCAAGGGCAGCGCCGCACACCTGCTGGAAGGAGTGGCTTTTTACACGGATCTTCTGGGCCGGTATGACGTTGGCTGGCAGGTGCTCTATTCCGCCAACCCAGGAAAAATCCTGTACGAAGACGATGTGCAGGTAGTTGTTGCACCTTATGAAGGATGAMELIFVRYQASAPNARGRYPGIFALANGLARGGRLSGEDWASWRAANDHYDAAYTDPSTVDRSVYDPHINPSAQSWFKGSAAHLLEGVAFYTDLLGRYDVGWQVLYSANPGKILYEDDVQVVVAPYEGNANANANANA
D1-29_00100402hypothetical proteinATGGACGAAGGCCGAATAACCCTGCTGCAGGTTGCCCAGCGGGCCACCGACCTCCAGCGTGCTGCCGGCTTCTACACAGACCTGCTGGGCCAACCTCCCACAGCACTCTTTGATCCTCCCGGCCTGCTGTTCTTTGACGTTGACGGTGTCAGGCTCCTGCTCGAAAAGGGCGCCCAGTCCGCGGTGCTTTACCTCCGGGTGGCTGATGTCAGGGCCGAGGTAGAGCGCCTTAAAGGCCTGGGAGTGGAGATCGTGTCCGAGCCGCATGTCATCTTCAGCCATGCCGACAGCACCCTGGGCCCGGCCGGAACCGATGAATGGCACGCGTTCATCCGTGACAGTGAAGGAAACACTCTGGGGCTGGTCAGCCAGTTAGCCCCCGACGGCGGCACGCTGGCCTGAMDEGRITLLQVAQRATDLQRAAGFYTDLLGQPPTALFDPPGLLFFDVDGVRLLLEKGAQSAVLYLRVADVRAEVERLKGLGVEIVSEPHVIFSHADSTLGPAGTDEWHAFIRDSEGNTLGLVSQLAPDGGTLANANANANANA
D1-29_001011029adhT_1Alcohol dehydrogenaseATGAAGGCCGCCGTTCACAGTCGTTTTGGCGGGCCGGACGTGGTCCCGGTGAAAGAGGTGCCTGCGCCCTCCCCGCGACCGGGGGAAGTGCTGATCAAAGTCCACGCGAGCACGGTGAGTGCCGCCGACCTCCGCGCGCGCAGCCGCGACGTCCCGCGCGGGCTGGGTTTGCTTGCTGCGCTGGCCCTTGGCGTCTTCACACCGCGCCGCGCCGTCCTGGGCATGGACGTCGCCGGCGTTGTTGAGGCTGTGGGCGCGGGGGTGACATCAGTCAGGCCGGGGACCGAGGTGATCGCGATGCTGGGCAGCAGGTTCGGCGGCCACGCAGAGTACGTATGCCTCCCTGCTGAAGCCGCCATTGCGGCCAAACCGTCCAACATGACGTTCCAGGAGGCGGTGACCCTGGTGTTCGGAGGACTGACAGCCCTCGTTTTCCTCAACCGCGCGGGGCTAAAGCCGGGTGACACTGTCCTGGTCAACGGCGCGTCCGGGGCTGTGGGCGCGGCAGCGGTGCAGCTCGCCAAACAGCTCGGCGCGCATGTCACTGCTGTCTGCAGTGACGCCGGGCGGGAACTCGTCACCTCGCTCGGGGCGGACCGGATGATTGATTACGCCACGGTTGATTTCACCGCAGAGGCCACCACGTACGACGCCGTGATGGACTGTGCGGGGAACGCCCCCTTCGAGCGGGCGGCGGCTTCCGTCAAGCCCGGCGGCTCGCTGTTGCTGGTGGTCGCGGATCTGAAGGGAATCATCTGGTCGTCGTGGCGTAGCCGGATCAGCGGGAAGCTGGTCAGCGCCGGCAACGTCCAGTACACCGCCAAGGATCTCGAGTACCTCGTCCAGCTGGCCGAAGCCGGGCGTTTTCGGGCCGTCATAGAGCGCACCTATACGCTGGCCGACGTCGTGAAGGCCCATCGGTTTGTCGATACGGGACGCAAGAAGGGAAGCGTCGTTTTGCAGATATTTGGCGGCGTTGCCACACCTGACATTGAGCACTCAGGCCAGCGTGCCGCCGTCGGGGGCTAAMKAAVHSRFGGPDVVPVKEVPAPSPRPGEVLIKVHASTVSAADLRARSRDVPRGLGLLAALALGVFTPRRAVLGMDVAGVVEAVGAGVTSVRPGTEVIAMLGSRFGGHAEYVCLPAEAAIAAKPSNMTFQEAVTLVFGGLTALVFLNRAGLKPGDTVLVNGASGAVGAAAVQLAKQLGAHVTAVCSDAGRELVTSLGADRMIDYATVDFTAEATTYDAVMDCAGNAPFERAAASVKPGGSLLLVVADLKGIIWSSWRSRISGKLVSAGNVQYTAKDLEYLVQLAEAGRFRAVIERTYTLADVVKAHRFVDTGRKKGSVVLQIFGGVATPDIEHSGQRAAVGGNANANANANA
D1-29_00102651hypothetical proteinATGACTCCGCTGACAGTCACAGCCGCTCCGCCCGCCAAACGCATGCGGGCGCAATGGCCCGTTCCCGCCGGACTCATTCTCCTCAGCCTTATCCCGGTCATCGCGGGGGCCGCACGGCTCACGGAGCTGACTGGAGGGGCGGCCATCACGCCGCAAAACGCCCGCTTCTTCGCCTCGCCCGTGCCCGTGGTGATCCACATCGTCAGCGTCACTGTCTACAGCCTCCTCGGGGCATTCCAGTTCGTCCCGTCACTTCGGGGCAGGCGGGGCTGGCACCGCATGGCCGGAGGAATTCTTATACCTGCCGGCCTGCTCGCCGCACTCTCAGGCCTGTGGATGTCCGCCTTCTACCCATTGCCCGACGGCGACACGGACGTGCCGCTGCGGCTGCTTTTCGGCTCGGCAATGCTGGTCAGCCTCATCCTGGGAGTCGTGGCTGTCCGGCGCCGTGACTACGTGCGGCACAGCATGTGGATGACGCGCGGCTACGCCATCGGCGTCGCGGCGGGGACACAGGCCCTGGTGATCGGCCCCTGGATACTCCTGGCGGGGCCGCCCAGCGAACTGACCAAGGCACTGCTGATGGGGGCAGCCTGGGTGATCAACGTGGCGGTGGCCGAGTGCGTCATCCAGCGGCGGGTTGCGCGATGAMTPLTVTAAPPAKRMRAQWPVPAGLILLSLIPVIAGAARLTELTGGAAITPQNARFFASPVPVVIHIVSVTVYSLLGAFQFVPSLRGRRGWHRMAGGILIPAGLLAALSGLWMSAFYPLPDGDTDVPLRLLFGSAMLVSLILGVVAVRRRDYVRHSMWMTRGYAIGVAAGTQALVIGPWILLAGPPSELTKALLMGAAWVINVAVAECVIQRRVARNANANANANA
D1-29_00103744hypothetical proteinATGACTGAGCAGCTGGAAACGACGCGCCGCATTCCGCTGAACAGGGACCGTGTCCTGCAGGCCGCCGTCGTGCTGGCAGACGAAACCGGCATCAGCTCACTGAGCATGCGAAGGCTCGCCCAGGAACTCAGTGTGGTGCCTATGGCGCTCTACAAGCACGTAGCCAACAAGGACGAGCTGTTCAACGGAATGGTGGACGCCGTCATTGCCGAGATCGGAGCGCCTGCCCCGGCGGCAGACTGGAAAGCCGGGGTGCGGGCGCGGGTCCTCGCCGCGCGCCAGGCACTCCTGCGGCACCCCTGGGCTCGCCAGGTGGTCGAGTCCCGCACCACCAAGTCCCCTGCGGTGCTTGGGTATATGGACGATTTCATCGGGCTGTTCCTGGCCGGCGGATTCTCGGTTGACCTCACCCATCACGTGATGCACGCCCTGGGCAGCCGCATGTGGGGGTTCACGCAGGAGCTGTTCGACGACCAGGCGGGCCCCGCCACCGAAGGCGCAGCCGCCGAAAGCAATGCGAACGCCGCGGAACAAGCGGCGATGTTGCAGGAGATGGCCGCCCGGTATCCGAACATCCTGCAGGTGGCCATGGCTGCCGGGCATGAGGAGGATTCTGTGGTGGGGCGCGGCTGCGACGACCAGTTTGAATTCGAGTTTGCCCTTGATCTCCTGCTGGACGGGTTTGAGCGGCTGCATGCCCAAAGCTGGACATCGCGGCGGGCAACCCCTCCGGGTCCGGGGTAGMTEQLETTRRIPLNRDRVLQAAVVLADETGISSLSMRRLAQELSVVPMALYKHVANKDELFNGMVDAVIAEIGAPAPAADWKAGVRARVLAARQALLRHPWARQVVESRTTKSPAVLGYMDDFIGLFLAGGFSVDLTHHVMHALGSRMWGFTQELFDDQAGPATEGAAAESNANAAEQAAMLQEMAARYPNILQVAMAAGHEEDSVVGRGCDDQFEFEFALDLLLDGFERLHAQSWTSRRATPPGPGNANANANANA
D1-29_00104615hypothetical proteinATGGATGGAGACAGAAGGACAGGCAGGCGCCGAAAGCTGATGGCGATCGCGGCGGCAGTAGCGGTGGCCGGACTCGTTATTGGCTTGGTGGTGTTTAAACCCTGGCTCCTGTTTGTGGACGTCCGCGTGGACGAACAGCTCCCGGCGGTGGCGGCACCAGCCGTCACGGAACCCACCGCCACGGCCTCGTCTCCCGCAGCCTCTCCCCAGACTGCCTCTCCTTCAACCGCGCCGCCCCCTGCCCAGCCAACTCCAGCAGGCCCCGTGGAACTGGCAGTAGGCAAGCTGATCAGCCACGAACACGCCACCACCGGGACGGTCCGGCTTGTTCAGCAGCCGGACGGCTCACGGGTGCTGACCCTGGAGAACCTGGACACCTCCAATGGTCCTGATGTGCACGTGTGGCTTAGCGCTGCGGACGTGGTGGAGGGAACCGCAGGCTGGTACACGGCTGGATCGGCGGAACACTATGACCTCGGCCTGATCAAGGGAAACCAGGGCAACCAGGTCTACGCCATCCCTGCGGAGGTTGATCTGTCGAAATACAGGTCCATTGACCTCTGGTGTGTCCAATTCAGTGTTTCCTTTGGCGCGGCACAACTAATTCATAACTGAMDGDRRTGRRRKLMAIAAAVAVAGLVIGLVVFKPWLLFVDVRVDEQLPAVAAPAVTEPTATASSPAASPQTASPSTAPPPAQPTPAGPVELAVGKLISHEHATTGTVRLVQQPDGSRVLTLENLDTSNGPDVHVWLSAADVVEGTAGWYTAGSAEHYDLGLIKGNQGNQVYAIPAEVDLSKYRSIDLWCVQFSVSFGAAQLIHNNANANANANA
D1-29_001051152hypothetical proteinATGGTTCTGGATACAGCGACGCTGAGGTTCGCCTTCGGGCTGATGGCGTTGGCGCTTGGGGTTTTGTTCTACTTCTCGGCGTACCGGACCACACGCTCCCCGTATAGCGGCTGGTGGTGCCTGGCCCTGGTGTTCTTTCTGACCGGCTCCGGCGCCTTCCTCCTCGACGGCACGGCGCACCAGTGGTGGGCCAACCCGCTGGGAAACGTGCTGCTGGTCCACGGCGGGGTGGCTGTCTGGGCGGGTGCCCGTTCGCTGCGGACAGTGCGGCCACCACGATGGGCTTTCACCGGGCTTCCCCTGATCACCCTGATCGCCTCCGCCCTGGACAATCCCGCCACTAATGTCTGGGCCGGCGGTCCCGTTTTCCTGGGCGCGATGGGGCTTTCGATCGGGCTGGGGTCCCGTGAGCTGTGGCGGCTGGAACCCGGGTACTCGCGGGCCCGGATCCCCATGGCGGCCGCGGCAGGTGCGGTCTCCGTCTTCTACTTTGGCCGGCTGCTGGCCTTCCTCCTCGACGGGCCTGGCGGGGACACCTTCGAAACGTTCTTTGGCTCTGGGGTCACCACGCTGGTCACCATGGTGATGCTGGTTGTGGTTTCCTTCAGCATGGCCGGGCTCAGCAGCGAGCAGCAGACCCGGGCGCTGCGAATGGTGGCCAGCAGGGATGACCTCACCGGCCTCCTCAACCGCAAAGCCTTCCTGGACCTGGCCTCAGAGCAGCTGGCGGAGACTGCCGTCACCAAGCCGTCCGGGGTCCTGATCCTTGCTGACCTGGACCACTTCAAAGCCGTCAACGATACCTACGGCCACGCCGCCGGGGACCTGGTCCTGCAGGCCTTTGCACTGGCATGCCAGGACACCATCCGCTCCACCGACCTGGCCGGACGATACGGCGGCGAGGAGTTTGTCCTCCTCATCCCCGGCGGAACAGCGGACCGCGCAGAAAGGGTGGCAGACGCGATCAGCCTTCGGTTGACCCAGGCGTCAAAGCCGGAGGGGCCGCAGATGCCCACCGTGAGTTACGGGATTGCCCTGTACGACGCCGATACCCCCGGCCTGGAGGCGCTGATCGCCGCCGCCGATACTGCCCTTTATGCGGCCAAGTCATCGGGACGGAACCGCACCGCCCGCAGCGACAGGGCGGGGTAGMVLDTATLRFAFGLMALALGVLFYFSAYRTTRSPYSGWWCLALVFFLTGSGAFLLDGTAHQWWANPLGNVLLVHGGVAVWAGARSLRTVRPPRWAFTGLPLITLIASALDNPATNVWAGGPVFLGAMGLSIGLGSRELWRLEPGYSRARIPMAAAAGAVSVFYFGRLLAFLLDGPGGDTFETFFGSGVTTLVTMVMLVVVSFSMAGLSSEQQTRALRMVASRDDLTGLLNRKAFLDLASEQLAETAVTKPSGVLILADLDHFKAVNDTYGHAAGDLVLQAFALACQDTIRSTDLAGRYGGEEFVLLIPGGTADRAERVADAISLRLTQASKPEGPQMPTVSYGIALYDADTPGLEALIAAADTALYAAKSSGRNRTARSDRAGNANANANANA
D1-29_001061266hypothetical proteinATGGAGAATATTCATCTCACGGGCACCGAGTCCCGTACTGCCGTATCAAGTACCGCCGTATCAAGCCCGGCCGGTCCGAGTACCGCCGCACCCAGCCCCTCCGCATCCCGCACCGCGGGGCGGCTCCACGCTGCCCTTCTGGTCGCCGGCAGTTGCATGCCGGTGCTGGGCGCGGTCCTGCTGGCCCCGGTGCTGCCCACCCTCAGCCAGGCCTTTGCCGGCACCCCCGGTGTCGCCATCCTGGTACCGCTGACCCTGACGCTGCCGGCCCTCTTTGTCGCCCTGTTCTCACCGTTGGCGGGATACGTCGCGGATCGGGTGGGACGCAAGCAGCTGCTGATCTTCGCCATGCTTGCCTACGCGCTTTTCGGGACGGCACCGCTGTGGCTTGAAACCCTGGAATCGATCGCGCTCTCCAGGGTGGGCGTCGGCATCGCCGAGGCTGCCATCATGACCTGCTGCACCACCCTTATCACCGACTACTACGCCGGGGAGCAGCGCAACAAGTACCTGGGGCTGCAGACCATGGTCAGCGCGCTCGCGGCCACCGCTTTCTTCGCCCTCGGAGGAGCCCTGGGCAGCATCAGCTGGCGCGCACCGTTCTGGCTCTACGCCGTCAGTGCGGTCATTGTCATTCCGATGATCTTCAAGCTCTGGGAACCGGCCAAGACCCAACGCACGACGGCGGCCAGGACTCCGGTGCCGTGGCGGCAGATCGGCGCACCCGCCGCCGTGACGCTGTTCGGCGGCATCGTCTTCTATGCACTCATCGTCCACCTGCCTTACGTCATCACGGGCCTGGGCGTGGCTGATGCCGCCCTGATCGGGCTCGCGGCGGCCATCGCTTCCCTCGCCACCGCGGCAGGGGCCATCTCCTTCCGCTTCCTGGCGAAACTGGGCACCCGCAGCCTGCTGGCGCTCGCCTTCGGACTCGCCGCCGTCGGACTTTCCATGGTTTCCCTGGCCGGCAGCGTGCCCCTTGCCATCGCCGGAGCCGTGGTGGCCAGTGCCGGAACCGGTGTGCTGCTGCCAACCCTCCTGACGTGGGCCGTCAGCGGCCTGGAACTGCGGCAGCGCGGGCGTGGCACAGGCATCTGGACCGGAACCCTGTTCGTGGGGCAGTTCCTGACGCCCATTGTCCTGGGAAGTGCCGCCACGGCCCTGGGCAACCTCAGCTTCGCCTTGGGGGCGCTGGGCATCGCCTGTGCTGTCGCCTTGCTGGCTGTGCTGGTCCGCGGACCGCGGATGGTGCCGGCCAGCCATTAGMENIHLTGTESRTAVSSTAVSSPAGPSTAAPSPSASRTAGRLHAALLVAGSCMPVLGAVLLAPVLPTLSQAFAGTPGVAILVPLTLTLPALFVALFSPLAGYVADRVGRKQLLIFAMLAYALFGTAPLWLETLESIALSRVGVGIAEAAIMTCCTTLITDYYAGEQRNKYLGLQTMVSALAATAFFALGGALGSISWRAPFWLYAVSAVIVIPMIFKLWEPAKTQRTTAARTPVPWRQIGAPAAVTLFGGIVFYALIVHLPYVITGLGVADAALIGLAAAIASLATAAGAISFRFLAKLGTRSLLALAFGLAAVGLSMVSLAGSVPLAIAGAVVASAGTGVLLPTLLTWAVSGLELRQRGRGTGIWTGTLFVGQFLTPIVLGSAATALGNLSFALGALGIACAVALLAVLVRGPRMVPASHNANANANANA
D1-29_00107963nodD2_1Nodulation protein D 2ATGGGTATGAAGAACCTGGACCTGAACCTGCTGCCGCAACTGCAGGTCCTGCTGGAACTGCGGAACGTGTCCAGGGCGGCGGAACGGCTTCAGCTCAGCCAGCCCGCCACCAGCGCGGCCATGGCCCGGCTGCGGCGGCACTTCGACGACGAACTCCTGGTCCGGAACGGCCGCACCTACGATCTCACGCCGTTCGCGCAGGCACTGGTCCCGCTGGTGGATGAAGCGATGCTTCACATCCGGCGGGCCACGCGCGTCCGCTCCGGTTTTGACGCCGCCACGAGCGAGCGGGAGTTCGTCATCGCGGCTTCGGATTATGCGTCAGCGCTGATGGTTGGCCCGCTGCGGGGAATCCTTCAGCAGGAGGCGCCCAACGTGGCCGTGGACTTTGTGCCCACCGCCGGCATCCAGGGCAAGCTGGCTGACTACTCCAGGCTGGATCTGCTGGTGGGGCCCACCGGTTACCACATGCAGGGCACCAGCAAACAGCTCTTCCGGGACAGTTTCGTAGCGGTCCTGGACGCCGGCAACCAGCTCCTTCAGCAGCCCCAGCTGACACTGGAGGACCTGACCCGGGTTCCCCACGCCGTCGGCTATTTCGGTGAGGGAATCAGTACCCCGGCGGACAGGCTTTTCGAATCACGCGGCCTCCAGCGCCGGGCTGCTGCGGTAGTGGCCGGCTTCCTGTCCCTGCCGCTGCTGGTGGAAGGGACGGACCTTGCGGCGCTGGTGCCGCGGATGCTGGCGGCACGTGCCCAGCGGGGTGCGAACATCGCGGTGCTGGAGTTTTCCGAAGAAGGTGAAGCGTCCCTCGTGGAGGCGATGTACTGGCACCCGTCCCAGACGGAGGATCCGGCGAGCATCTGGCTGCGTTCGGTGGTGCAGCGGGCATGTTCACGGCTGCAGGAACTTTTTCCTGCCACCGTTCACCCGGTCACGGTAACGGTGGGTCCTTCCGGCTAGMGMKNLDLNLLPQLQVLLELRNVSRAAERLQLSQPATSAAMARLRRHFDDELLVRNGRTYDLTPFAQALVPLVDEAMLHIRRATRVRSGFDAATSEREFVIAASDYASALMVGPLRGILQQEAPNVAVDFVPTAGIQGKLADYSRLDLLVGPTGYHMQGTSKQLFRDSFVAVLDAGNQLLQQPQLTLEDLTRVPHAVGYFGEGISTPADRLFESRGLQRRAAAVVAGFLSLPLLVEGTDLAALVPRMLAARAQRGANIAVLEFSEEGEASLVEAMYWHPSQTEDPASIWLRSVVQRACSRLQELFPATVHPVTVTVGPSGNANANANANA
D1-29_001083201hypothetical proteinATGACGAATCGATGCAGACGCCTCTGGGCCTCCACCGCCGTCGGGGCAACAACGGCTGTCATGGCTGCCGGCCTCCTGGCCGGCCCTGCGATGGCCGTCCCCGCGCTTGGCCCCGCAGTTACGGAGCCGGTCCCGGCCGGCGCGGTGACGGTGAAGCCGGATCCCTCTTATCAGGGTGACCCTTTTGAGGGTTGGGGAACCAGCCTGGTCTGGTTCGCCAACGCCACCGGTGACTACCCGGATGAGGTGCGGGAACGGCTTGCCGAGATGGTGTTCGGCGATGAAGGCCTGAACCTGAACATTGCCAGGTACAACATCGGCGGCGGGAACGCGCCGGACGTCAAGGACTACCTTCGGGCCGGCGGCGCCGTCGAGGGATGGTGGAAGGCACCGGAAGGAACCACCCGGACGGACAAGGACTGGTGGGACCCGGAGAACCCGGAACACTGGAACCTGGACGCGGACCAGACCCAGCGCTGGTGGATCGACCGTATCAAGGCCGACGTCACCAAATGGGAAGCCTTCAGCAACTCCCCGCCCTGGTTCCAGACCGTCAGCGGCTACGTGTCCGGCGGCTTCAACTCCTCAGAGGACCAGCTGCGCACCGAAAGCATCGACGAATTCAACACCTATCTCCTGCGCGTTGTTGAAGAGCTCGAGGACGCCCACGGCATCAAGATCGATACCCTGGACCCCTTCAACGAACCCAACACACCCTACTGGGGCACCAAGCTCGGGGCCGACGGTGAGCCTGTGGGAGGCCGGCAGGAGGGAGCCCACATTGGGCCCGAACTGCAGCAGAAAGTCCTGAAGTCCCTCGCTGGCCAGCTCGCCGAAGCTGACACCGACGCTGTCATCTCCGCCATGGATGAGACCAACCCGTCCATCTTCACCAACAACTGGAACAGCTACTCCGAGGAGAGCCGGGCACTGGTTGACCAGCTCAACGTCCACACCTACGGCACCGGCCAGCGCACCTCGGCCCGCGACATCGCCAAGGGCGAGGGCAAACCCCTCTGGATGAGCGAAGTGGGCGGCGCCTGGATGTCCGGGCAGAACTTCGTCAGCATGCAGCCCGGCCTGGGCCTGGCCAAGCAGATGGTGGATGACCTGCGCGAGCTCGAGCCCAAGGCCTGGGTGTTCTGGCAGCCGGTGGAGGACTACAACAACATGAAGCCCGGCGGGGAGAGCGAAGCCGGGTCCAACTGGGGCGAAATCCAGCTCCCCTTTGACTGCACCGCCGAGGACACGCTGGAAACCTGCCCCATTTACACCAACACCAAGTACAACACCGCCCGGAACTTCACCCAGTTCATCGAGCCCGGCGACCGCCTGGTGAAGGTCAATGATCCGAAGAGCGCTGCCGCCGTTTCCGACACCGGCGCAACCGTGGTCCACGTGAACGACAGCGCTCAGGAGCACCCGGTGGTCCTGGACCTGTCAGGTTTCGGAGCGATCCAGGGCAACGCGACAGTCACGCCGGTGGTCAGCGACGTCAACGGGGCATTGGTCAAGGGCCAGCCCATCGCCGTCGGACGCAACGCCACAGCCACCCTGACAGTGCCCAAGGAATCCGTCACTACGTTCATCATTGACGGCGTCCAGGGCGTGTCCAAGGACGCATCCCTGGTCCAGGCAGGCCACGTCTACCGGCTCCAGGGTGTGCAAAGCGGCAAGTCCATCGCCGTTGCCCCTAACGGAACGTCCGCCGTCATCCGCTCGGGCGCTGCCGCAGAGCAGCTGTGGACCATCCGGCTGCTCAGCGGCGAAAACAGCAACCAGGCCCGCTATGCCGTGGGAACTGCAGACGGCACGCGGGAACTGGCATCGGTGGAGAACGCGGTGACGCTTGTGGACGCAGCCGAGATTCCGGCCGAGAACGCGCAGTGGATCCTGTCCACCACCGGCGACGGCACCTACACCCTGGTGAACGCTGCAAGGGGCAGGCTCCTGGAGGTGGGCGGAAACGCCACCGCCGAGGGATCAGCAGTCACCACGTGGATGGCCAACTCCGCCGACAACCAGCGCTGGACCATTGTGGATGAAACCATCCAGGGCTTCCAGGAGATCAACATCTTCACCGTCCCGGGATCCGTTCCGCAGCTTCCGGCAACCGCCACTCCGCTCTACCCGGGCGGTGCCCGCGGCGAGCTTGCAGTGACGTGGAAAATGCCTCCGGACAGCCTCTGGAAGACTCCGGGGACAACAGTGGCGGTCAAGGGAACCGTGACGGACGCACTGGGCGCCGTGCACGAAGTCCGCGCCAGCGTCACCGTGGACACCCTGGTTTCCACGCTTCCTGCCCGTGCCAAGACCTACGTGGGCGGCACACCCGTTCTCCCGTCCACCATCACAGCGGTGGCCGAACACGGCGGAACAGTCGAACGCGCGGTGGCGTGGGACGCCGTCGGGCCTGCCGCTGCGGCGGGGATCCTGACGGTTAACGGCGCCGCTGATGCCGGGGACGGCACCACCCTTCCGGCAACTGTCCGCGTCCAGGTCACGGAGGCCGCTGTTGACAATGCGGCCGACGACGACGGCGCCTCCATCAGCGCCACCTTCACGGAGCCGGGCTACGGAACCGCCGGCCTCCGCAACGGCAACCTGACGGACAAGGCGTGGTCCAACTGGAAGTCCAGCAGCAAGAACGTTGCCGACACCCTGACGGTGGCCCTTCCGGCCACCAGGACGGTCAAGGAACTCAAGGTGCACTTCTACCGCGACGGGTCCACGGACAGTTATGCGCAGACCGTCCAGGTCCAGACCAGGACAGCCAGCGGGAGTTGGGTGAACGCCGGCCCGGCGGTCTCCGTGCCCGGCGGCAGCCCGGCGCCCGTGGTGTCCGTGCCCGTGGCCAACGTGGACACGAAGGAGGTCCGCGCCATACTCACGGCCCGACCCAACACCCACATGACCGTCAGCGAGATCCAGGTGATGGCGCTGTCGGCGGGCAAGTCCTCTGACGCCTCCGCCGCCGGGATCGCCGTCGACGGCCAGGCAGTGCCCGGCTTCGACCCGGCTACCAGCACGTACAGCGTGGAATGGGGCGGCGCACTGCCCCAGGTGACTGCAACGGCGACGGACCCGTACGCCACCGTAGCGGTCCAGCAGCCCGACCAGCAGACGCGGAAAGCCGTGGTCACCGTGACCAGCGAGGACGGCACCCAGTCACGGACGTATGAGGTAGGAATCGGACGCTAGMTNRCRRLWASTAVGATTAVMAAGLLAGPAMAVPALGPAVTEPVPAGAVTVKPDPSYQGDPFEGWGTSLVWFANATGDYPDEVRERLAEMVFGDEGLNLNIARYNIGGGNAPDVKDYLRAGGAVEGWWKAPEGTTRTDKDWWDPENPEHWNLDADQTQRWWIDRIKADVTKWEAFSNSPPWFQTVSGYVSGGFNSSEDQLRTESIDEFNTYLLRVVEELEDAHGIKIDTLDPFNEPNTPYWGTKLGADGEPVGGRQEGAHIGPELQQKVLKSLAGQLAEADTDAVISAMDETNPSIFTNNWNSYSEESRALVDQLNVHTYGTGQRTSARDIAKGEGKPLWMSEVGGAWMSGQNFVSMQPGLGLAKQMVDDLRELEPKAWVFWQPVEDYNNMKPGGESEAGSNWGEIQLPFDCTAEDTLETCPIYTNTKYNTARNFTQFIEPGDRLVKVNDPKSAAAVSDTGATVVHVNDSAQEHPVVLDLSGFGAIQGNATVTPVVSDVNGALVKGQPIAVGRNATATLTVPKESVTTFIIDGVQGVSKDASLVQAGHVYRLQGVQSGKSIAVAPNGTSAVIRSGAAAEQLWTIRLLSGENSNQARYAVGTADGTRELASVENAVTLVDAAEIPAENAQWILSTTGDGTYTLVNAARGRLLEVGGNATAEGSAVTTWMANSADNQRWTIVDETIQGFQEINIFTVPGSVPQLPATATPLYPGGARGELAVTWKMPPDSLWKTPGTTVAVKGTVTDALGAVHEVRASVTVDTLVSTLPARAKTYVGGTPVLPSTITAVAEHGGTVERAVAWDAVGPAAAAGILTVNGAADAGDGTTLPATVRVQVTEAAVDNAADDDGASISATFTEPGYGTAGLRNGNLTDKAWSNWKSSSKNVADTLTVALPATRTVKELKVHFYRDGSTDSYAQTVQVQTRTASGSWVNAGPAVSVPGGSPAPVVSVPVANVDTKEVRAILTARPNTHMTVSEIQVMALSAGKSSDASAAGIAVDGQAVPGFDPATSTYSVEWGGALPQVTATATDPYATVAVQQPDQQTRKAVVTVTSEDGTQSRTYEVGIGRNANANANANA
D1-29_001091347hypothetical proteinATGAACAAAACCCTGACCCGGCGCGGCCTGCTGCAGAGCTCGGCCGTGGGAGTTGCCGCCGCACTCGCCCTCGGCCTGAGCGGTTGCGGCGCCGCCGCCCCCGCCGCCCAGCAGACGGTGTCCAGCAACGCCGTCGAAGAAGCCCTTCAAAAGGGCGGAAAGCTGACCGTGTGGGCGTGGGAGCCAACGCTGAAGAAGGTCGTGGAAGGCTTCGAAGCGAAATACCCCAACGTGGACGTGGAACTGGTCAACGCCGGCACCGGCAATGATCAGTACACGGCCCTGCAGAACGCGATCTCGGCCGGTTCCGGAGTTCCCGATGTTGCCCAGGTGGAGTACTACGCATTGCCGCAATTCTCGCTGGCCAAATCCGTCACCGATCTTGGCCAGTTTGGCGCCTCGGACCTCAAGGACGCGTTCACGCCGGGACCGTGGGCCTCGGTCCAGGCGGCAGGCGGGGTCTACGGCCTGCCCATGGACTCCGGCCCCATGGCCATATTCTACAACAAGGAACTGTTCGCCAAGCACGGCATCGAAGTACCCACAACCTGGGACGAGTTCCTGGAAGCCGGCCGCGCACTGAAGAAGGCCGATCCGAACGCCTACATTGCCAACGACACCGGCGACGCAGGCTTCACCACCAGCATGATCTGGCAGGCCGGCGGAAAGCCGTACAAGGTCAGCGGCAACGACGTAACCGTTAATTTCTCCGACGACGGGTCAAAGAAGTTCGCCGAGACCTGGCAAAAGCTCATCGACGAGGACCTCCTTGCGCCCATCAGTTCCTGGAGCGATGAGTGGTACAAGGGACTGGGCAACGGCACCATCGCCACCCTGTCCACCGGGGCATGGATGCCGGGCAACCTCTCCTCCGGTGTCGCCGAAGGCGCAGGCAAGTGGAGCGTGGCGCCCCTTCCCCAGTGGAAGGAAGGCGGCAAGAGCAGCTCGGAAAACGGCGGAAGCTCACTTGCCATCCCCGCCGCCAGCAGCCAGGCCGCCCTCGCGTACGGCTTCCTGAAGTACTCCAACGTCGAGGACGGCGTCAAGACCCGCATCGACGGCGGTTCCTTCCCCGCCACCGCCAAGGAAATCTCCTCCCCCGAGTTCCTGAACGCTGAATTCGCATACTTCGGCGGTCAGCAGGCCAACAAGATCTTCGCCGAGTCAGCCCAGAACGTGGTCCAGGGCTGGTCCTACCTGCCCTTCCAGGTGTACGCCAACAGCATCTTCAACGACACCGTCGGCCAGGCCTACGTCTCTGACACCAAGCTGGTGGACGGCCTGGCCGATTGGCAGAAGGCATCCGCCAAGTACGGCACCGAGCAAGGTTTCACCGTCAAGGAATAGMNKTLTRRGLLQSSAVGVAAALALGLSGCGAAAPAAQQTVSSNAVEEALQKGGKLTVWAWEPTLKKVVEGFEAKYPNVDVELVNAGTGNDQYTALQNAISAGSGVPDVAQVEYYALPQFSLAKSVTDLGQFGASDLKDAFTPGPWASVQAAGGVYGLPMDSGPMAIFYNKELFAKHGIEVPTTWDEFLEAGRALKKADPNAYIANDTGDAGFTTSMIWQAGGKPYKVSGNDVTVNFSDDGSKKFAETWQKLIDEDLLAPISSWSDEWYKGLGNGTIATLSTGAWMPGNLSSGVAEGAGKWSVAPLPQWKEGGKSSSENGGSSLAIPAASSQAALAYGFLKYSNVEDGVKTRIDGGSFPATAKEISSPEFLNAEFAYFGGQQANKIFAESAQNVVQGWSYLPFQVYANSIFNDTVGQAYVSDTKLVDGLADWQKASAKYGTEQGFTVKEPGPT0016545_3439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00110951araQ_1COG0395L-arabinose transport system permease protein AraQATGAGCGTCCCCACTGCCTCCCGCCCCGCCACCCCAACCGCTGCCCCTGCCGGTCAAAGGCGCACCACGCCTGCCAGGCTGCGCCCCCAACGGGTCACCTCCAAGCGCCGGTCCCGCCGCAGCGTCATGCTCACCCTTGTGACCGGGGTGGTCCTTCTGTACAGCCTGGCGCCGCTGGTGTGGCTGCTGATCAACGCCACCAAAACCCAGGAAGGGCTCTTCAGCTCCTTTGGACTGTGGTTCGCCGGTGATTTTGTCCTGTGGGACAACATCACCCGGACGTTCACCTACGACGGCGGCATCTTCCTCCGCTGGCTGGGCAACACGGTGCTGTACGTCGTGCTCGGCGCCGGGGGTGCCACCTTCCTGGCGGTCCTTGGCGGCTACGCCCTGGCCAAGTTCGACTTTCCGGGAAAGAAGGGGGTCTTTGCCGTGGTGATCGGCGCGGTGGCCGTTCCCGGCACGGCCCTGGCGGTGCCCACCTTCCTGATGTTCAGCCAGATGGGCCTGACCAACACACCGTGGGCTGTCATCATCCCCTCACTCATCTCGCCCTTCGGCCTGTACCTCATGTGGACCTTCGCCTCCGAGGCGATCCCCACCGAGATTCTCGAGTCAGCCCGCATTGACGGAGCCAGCGAGGCCCGGACGTTCTTCCAGGTCTGCCTGCCGCTGCTGACGCCGGGCATCGTCACAGTGCTCCTCTTCACCATGGTGGCCACCTGGAACAACTATTTCCTGCCACTGATCATGCTCAAGAACCCGGACTGGTACCCGCTCACCCTGGGGCTGAACGCCTGGAACGCCCAGGCGGCCACCGCCGGCGGCGAGGCCATCTTCAACCTGGTCATCACCGGATCAATGCTCACCATCCTGCCCCTCATCGCCGCGTTCCTGCTCCTGCAGCGGTACTGGCAATCAGGCCTGGCGGCCGGAAGCGTCAAAGAATAAMSVPTASRPATPTAAPAGQRRTTPARLRPQRVTSKRRSRRSVMLTLVTGVVLLYSLAPLVWLLINATKTQEGLFSSFGLWFAGDFVLWDNITRTFTYDGGIFLRWLGNTVLYVVLGAGGATFLAVLGGYALAKFDFPGKKGVFAVVIGAVAVPGTALAVPTFLMFSQMGLTNTPWAVIIPSLISPFGLYLMWTFASEAIPTEILESARIDGASEARTFFQVCLPLLTPGIVTVLLFTMVATWNNYFLPLIMLKNPDWYPLTLGLNAWNAQAATAGGEAIFNLVITGSMLTILPLIAAFLLLQRYWQSGLAAGSVKEPGPT0016540_1493DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00111927lacF_2Lactose transport system permease protein LacFATGACAATGGTGTCCCCGCCGATAGCAGCCCCTGCTGCTACCGCTGCCGTCCAGCGGAAACCCCGCCGGCGCTCCTGGGCAGGGTGGTGGTTTATCGGCCCGTTCATGGCAGTCTTCGCCCTGGTGTTCCTCGCACCGATTGCCTACTCGATCTACCTCAGTGTCTTCCGCACCCAGCTCATTGGCGGAACCACCTTCGTTGGCCTGAACAACTACACCCGGGCACTGTCCGATCCGCAGTTCTGGTCGGCCTTGGGCCGGGTCTCCATGTTCCTGGCGGTCCAGGTTCCGGTGATGCTCTTTATCGCCCTGCTGGTTGCCCTCGCGCTGGACAGCGGCCGGCTGTACGGCAAGGCATTTTTCCGCATCTCCATCTTCCTGCCGTATGCAGTGCCTGCCGTGGTGGCCGCCCTGATGTGGGGATTTATGTACGGTCCCCGCTTCGGACTGGTGGGGAACATCAACCAGGCCTTCGGGCTGCAGTTGCCCAGCCCCCTCTCCGCCGAACTGGTCCTGGTCTCGATCGGGAACATCGTGACCTGGGAATTCATCGGCTACAACATGCTCATCTTCTACTCCGCGCTGACGGTCATCCCCAAGTCCCTGTACGAGGCGGCAGAGATTGACGGGGCCGGGCAACTGAGGGTCATTTCGGCCATCAAAATCCCGGCCATTCGCGGTGCGATCGTGGTGGCAACCATTTTCTCGGTCATCGGGAGCTTCCAGCTATTCAATGAACCGAGCATTCTGAAGAGCCTTTCACCGAACACCATCTCAACGTTCTTCACGCCAAACCTGTACGCCTACTCCCTCTCCTTCTCAGGCCAGCAATACAACTACTCCGCCACGGTGGCGATCATCATGGGCCTGCTCACGATGGCTATCGCCTTCGCAGTCCAGGCCCGCGGCATGCGAAAGGAACGCTAAMTMVSPPIAAPAATAAVQRKPRRRSWAGWWFIGPFMAVFALVFLAPIAYSIYLSVFRTQLIGGTTFVGLNNYTRALSDPQFWSALGRVSMFLAVQVPVMLFIALLVALALDSGRLYGKAFFRISIFLPYAVPAVVAALMWGFMYGPRFGLVGNINQAFGLQLPSPLSAELVLVSIGNIVTWEFIGYNMLIFYSALTVIPKSLYEAAEIDGAGQLRVISAIKIPAIRGAIVVATIFSVIGSFQLFNEPSILKSLSPNTISTFFTPNLYAYSLSFSGQQYNYSATVAIIMGLLTMAIAFAVQARGMRKERPGPT0016535_1768DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_001121059lacI_1COG1609Lactose operon repressorATGTCCTCACAGCCGGGTCAACCCCCCATCCAGGAAGCAGTTGCCTCCCTGGCCCGTCGGCGCGTCTCCATGGCCGACGTCGCCAAGCTTGCAGGGGTCTCCTCCCAGACCGTTTCGCGGGTCTCCAACGGCAGCCCCGATGTGGTGCCCGGGACCCGGCAGCAGGTTATTGCGGCAATGGACCAGCTGGGCTACCGGCCCAACAGTGCGGCCAGGGCATTGAAGCGCGGAAGCTTCCGAACCATCGGCGTCATTCTCTTTTCGCTGTCGTCCTTCGGGAACGTCCGGACGCTAGAGGCCATTGCCCTGCATGCCGCCAGGGAGGACTTTGCCATCACGCTCATTCCGGTCACGGCGCCCACCCAGGCCGGCGTGCAGGGAGCGTTTTCCAGGATGGGCGAGCTGGCCGTGGACGCGGTCATCGCCATCATGGAAGTCCAGCTCCTGGATGCCGCCACAGTGACAGTGCCGCCGGGAGTGAAGGTTGTGGTGGTGGATTCGAACGCCGGTTCCGACTACAGCGTGGTCGACACGGACCAGGCGGACGGCGCCAGGCAGGCTGTGGAGCACCTTCTTGGGCTGGGCCACCAAACGGTGTGGCATGTGGCGGGGCCGGAGAAATCCTTCGCCAGCGAGCGGCGGCAGGAGGCGTGGCGGAACACGCTGCTTGCCCGGGGCAGGACGGTGCCGCCCACCGTGCGTGGAGACTGGTCGGCCGGGTCAGGCTATGAAGCCGGCTTGTGGCTTGCAGAGCAGGAGGGGTGCACTGCCGTCTTCACCGCCAACGACCACATGGCCCTGGGTGTGCTCCGCGCCTTCCGCGAAAAGGGCATTTCCGTTCCCGGGGACATCAGTCTTGTAGGTTTCGACGACGTACCTGAGGCGTCCTCGTACACCCCGCCACTCACCACGGTCCACCAGGATTTCACGGAGGTGGGCCACCGCTGCGTGGACAACGTCCTCCATCAGATCCGCAGCAATACGGCTGATCCCGGGATGGTCCTGGTGCCCACGCGCCTGATCATCCGCGAGAGCACGGCGCCGCCACGCCTTCCCTGAMSSQPGQPPIQEAVASLARRRVSMADVAKLAGVSSQTVSRVSNGSPDVVPGTRQQVIAAMDQLGYRPNSAARALKRGSFRTIGVILFSLSSFGNVRTLEAIALHAAREDFAITLIPVTAPTQAGVQGAFSRMGELAVDAVIAIMEVQLLDAATVTVPPGVKVVVVDSNAGSDYSVVDTDQADGARQAVEHLLGLGHQTVWHVAGPEKSFASERRQEAWRNTLLARGRTVPPTVRGDWSAGSGYEAGLWLAEQEGCTAVFTANDHMALGVLRAFREKGISVPGDISLVGFDDVPEASSYTPPLTTVHQDFTEVGHRCVDNVLHQIRSNTADPGMVLVPTRLIIRESTAPPRLPPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_001131077rbsR_1COG1609Ribose operon repressorATGGATTCGCAGGAGAACAGTTCGGGTACGCCGTCGGCGGCTGCCCCCTTGAAGCAGGCCCGCCGCGCCCAGCCGGTTACCCTGCGTCAGGTAGCCGAAGCCGCAGGCGTTTCCACAGCCACTGTTTCCCTGGTGGTGAACAAGAAAAAGGCCGCCCGGATCTCCGATGAGACCCGCAAACGGGTACATGACGCGATCCGGGACCTCGGCTACCGGCCCAACGCCATGGCCCAAACCCTAGTCAGCGGCAGTTCCAGGTTCATCGGCCTCGTCGCCGACGCCATCGCCACCACCCCGTTCGCGGGCCAGATCATCCACGGCGCCCAGGACGAAGCCTGGAAACATGGTTTCGCCCTTCTCATCGCCAACACCGAAGGCAACCGGGAGCTTGAAACCGACGCCATCGCCATGATGCTCGAATACAAGGTCCGAGGCATCCTCTACTCCACCTGGTTCCACCGTGCCACGGACGTCCCGGACTCCCTCCGGGAATCGGATTTCGTCCTCGTCAACTGCTTTGCCGAGGAACCGGGCGCCCGGGCGGTGGTCCCGGACGAAATCCAGGGCGGCCGTTCGGCCACGGAGATCCTGCTCAGGCATGGGCACCGCCGGATCGCCTTCATCAACGCCACCATCCCCGCCCCGGCGAAGGACGGACGGCTCCAGGGCTACAGGGAAGCCTTGGAGGCTGAAGGCATCGTCTTCGACGACGGCCTGGTCCTTGAAGCCTATCCGGACCAGGAAGGCGGGTTCGGGGCCACCGAGGCACTCCTCAAACTCGGCGTCACAGCGGTGTATTGCTATAACGACCGAATGGCGATGGGACTGTACGACGGGCTCCGCGAGCATGGGCTCTCCATCCCGGACGATATTGCAGTGGTGGGGTTCGACAACCAGGAAGTCATCGCCGCCCACCTCCGGCCCCCACTTTCCACCGTCTCCCTCCCGCACTACGAACTGGGCGCAGCCGGTGTGAGAGTGCTGCTGGGCCTTGACGAACCACAGTCCGGCGGCCCCGCGAAAATTTACTGCCCCACCGTGGAACGGAACTCCGTCCGGGCCTTGGCCCCCGCCTGAMDSQENSSGTPSAAAPLKQARRAQPVTLRQVAEAAGVSTATVSLVVNKKKAARISDETRKRVHDAIRDLGYRPNAMAQTLVSGSSRFIGLVADAIATTPFAGQIIHGAQDEAWKHGFALLIANTEGNRELETDAIAMMLEYKVRGILYSTWFHRATDVPDSLRESDFVLVNCFAEEPGARAVVPDEIQGGRSATEILLRHGHRRIAFINATIPAPAKDGRLQGYREALEAEGIVFDDGLVLEAYPDQEGGFGATEALLKLGVTAVYCYNDRMAMGLYDGLREHGLSIPDDIAVVGFDNQEVIAAHLRPPLSTVSLPHYELGAAGVRVLLGLDEPQSGGPAKIYCPTVERNSVRALAPAPGPT0017992_4088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_00114906ngcG_1COG0395Diacetylchitobiose uptake system permease protein NgcGATGACCGCGCCAGCAGCCCCAGTCACCCGGCCTGTTACAGCACTGCCGGAGAGCCGGCCGCCGCTCCGCAGACGGAAACCGGCCACCCTCCACGGCACCCTGTCGAGGGTAATCATCGCCCTCATCGTCATCGTGCAGGTCTACCCCCTGGCCTGGCTTTTCATCACCAGCCTCCGCACCGAACACGACTTCGCCACCGGCGACCCGTTCGCGCTCCCCAAGGCGATCACTTTCGAGAACTACGCCCGCGCCTTCGAGACCGGCAACCTCGGAATGAACATCCTCAACAGCTTCATTGTCACCATGGGCGCCAACGTGCTGATTGTGCTCCTGGGAATGATGGCCGCGTATGCCCTGCAGGTTCTCGGCTTCCGCTTCAGCAAGTTTGTCCGGAGCCTTTTCCTGATCGGCATCATCGTTCCCGTGCAGATCGCACTCGTCCCGCTGTTCATCGACTACTCCAGCATCAACCTGCTCGACACCTACCCGTCGATGATCATCCCCCTGGCCGGCTTCGCCCTGCCGATGTCCATCTACCTCTTTTCCTCTTTCTTTGAGTACATCCCCCGGGAAACGTACGAGGCAGCGTCGCTGGACGGTGCCGGGCCCTACCGCATCTTCGGACTCATCACCCTCCCCCTTTCGGTCAATACCGTTGTGACGGTTGTCTTGGTCAACAGCATCTTCATCTGGAACGACTTCATCTTCGCCAACACCTTTGTCCTCTCCGAGGAACTGAAGACCATTCCGCTGGGCCTGCAGAACTACATCGGCGCGATGGGTAAAACAGACTGGACAGCCACGTTCGCCGCCGTCTGCGTCACCATCACCCCCCTCCTCCTGGTCTTCCTCGTGCTCAACAAGGCAATGATCCAGGGCCTGGAAAGCGGGGCGAACAAGGGATGAMTAPAAPVTRPVTALPESRPPLRRRKPATLHGTLSRVIIALIVIVQVYPLAWLFITSLRTEHDFATGDPFALPKAITFENYARAFETGNLGMNILNSFIVTMGANVLIVLLGMMAAYALQVLGFRFSKFVRSLFLIGIIVPVQIALVPLFIDYSSINLLDTYPSMIIPLAGFALPMSIYLFSSFFEYIPRETYEAASLDGAGPYRIFGLITLPLSVNTVVTVVLVNSIFIWNDFIFANTFVLSEELKTIPLGLQNYIGAMGKTDWTATFAAVCVTITPLLLVFLVLNKAMIQGLESGANKGPGPT0016340_160DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
D1-29_00115882melD_1COG1175Melibiose/raffinose/stachyose import permease protein MelDATGCTTCCCAACAGGTCACGACTCTCCGTCCTGGTCTTCCTGCTCCCTCCCTTGCTGCTTTACGGCGTCGCAGTGCTGTTCCCCATCATGCAGTCGCTGTTCCTGAGCTTCTTCTCCTGGAACGGCATCAGCGATATGGAGTTCGTGGGGCTCGCCAACTACGTGCGGATGCTCACAGCGGACGACATCTTCTGGCGCTCGTTCTTCAATGCCCTCGGCTATCTGGCCATCTGCCTGGTTCTGCAGCTCGGCGGCGCACTGCTCGTCGCCAGCCTCCTGACCTCCATGAGCAGGGGCCGCGAGCTCATCAAAACCCTCTACCTCCTGCCTGCTGTTATCTCCACGGTGGCCATCGCGTTCCTGTTCGTGCGGATCTACTCAATCGAACCGGTGGGCCTGCTCAACCAGCTCCTGCACTGGATCGGGCTCGGCGCCCTTGAACGCCCGTGGCTTTCGGACATCAATACGGTCCTCGCCGCCGTTTCCGCCCCGGAAGGCTGGCGGTTCACGGGCCTTTACATGCTCATCATTTACGCGGCGCTGCTGTCCGTCCCGAAGGAATTGGAGGAAGCCGCCAGGCTCGACGGCGCATCACGGTGGCAGCTGTTCACCAAGATCCGCTTCCCGCACATCATGCCCGTCTGGATCACCACCACGATCATGGCAACCACCTACGGCCTGCGCGGCTTCGACATCCCGTACCTGATGACGAACGGCGGCCCAGGGCAGTCCTCGGAGCTGCTGACCACGTACATGTACAAGACCGCATTCACCAGCACTGACTTCGGATACGCCAGCACCATCGCCGTCTTCATCGTCGTCGAATGCCTGGTCGCCGTCGGACTGATCCTCTTCATGCTCAAGCGAAAGGCGGACGCATGAMLPNRSRLSVLVFLLPPLLLYGVAVLFPIMQSLFLSFFSWNGISDMEFVGLANYVRMLTADDIFWRSFFNALGYLAICLVLQLGGALLVASLLTSMSRGRELIKTLYLLPAVISTVAIAFLFVRIYSIEPVGLLNQLLHWIGLGALERPWLSDINTVLAAVSAPEGWRFTGLYMLIIYAALLSVPKELEEAARLDGASRWQLFTKIRFPHIMPVWITTTIMATTYGLRGFDIPYLMTNGGPGQSSELLTTYMYKTAFTSTDFGYASTIAVFIVVECLVAVGLILFMLKRKADAPGPT0016335_1796DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
D1-29_001161335hypothetical proteinATGAAGAAGTTATTCCGAACGGCGGCCGTAGCGACGGCCGCAGCACTCGCCCTCGCCGGATGCGGCAGCGGAGGAACCACTGATCCTTCCAACGTCAGTCCCACCGGGGAGGTCAAGCCCCGCGAAATTTCGTGGCTGCTGTCCCGGCCGGCGGACGGGGCGGTCATCAACATCATGAAGAAGCTCGCGGACGACTACGCCAAGGACCACCCGGGCTTCTCGCTCAACCTGATCACCACCCCGGACAGGCCCTCCTACATCCAGAAGCTTGAAACCCTGGCGGCCGCGAACAAGCTCCCCGAGCTTTTCGACACCGACGCCACACCGTTCGCCCAGCAGCTGGCCAAACAGGGAAAGATGGTCGACGCCGAAAAGCTGCTCAAGTCCCTGGACGTGTATGACGACTACCGGCCCAGCGCGCTGGACTACCAGCGGTTCGACGACGGATCCCTGCACATGATTCCGTTCCAGTTCGAGCTGGAATTTATCTGGTACAACAAGGCCCTGCTGCAGAAGGCAGGGGTGTCCACCCCGAAATCCCTCGACGACATCCCCGCCATGTGCACCGCCCTGCGCAACGCCGGCATCACGCCGATCGCCATCGACGGCCAGGACCAATGGCCCCTGGAGCGGTACGTCGCGTACCAGCCGTTCCGCGCAGCCGGCCCCGATTTCATCCAGAAGCTCAAGAAGGGCGAAGCGAAGTTCTCCGACCCCGCAGGCCAAAAGACCGTCCAATGGCTGGCATCGCTCGGCAAGGCCAAGTGCTTCCAGGATGGATTCTCCTCACAGGGCTACTCCGACGCACAGAACCAGTTCACCTCCGGGCAGGCAGCCATGTACAACATCGGCACCTGGGAACTGCCCAGCCTGGCAACTGACAGGCTGAACCCGGCAGTGCGGGATGACATCGACTTCTTCACCCTCCCCACCACTGAAGGATCAGTCACCGCCGCCAACGAATTCGTCTCTCCGTCCGGTATCGGTATGGCCGTCAATGCCAAGACCTATGACCCGCTGGTGAGCGACTTCCTGAAGTTCGCCCTGACAAAATACCCGTCCGAATACGCTGCCACCGGCGCACTGTCCCCCACAACGAACGTGGAGACGATAGTTCCGGCCAACGCAACTCCCCTGTACAAGAAGGCTCTGGAGAAGGCCAACGACCTCGGGGACGAGCAGGCGATGCCGTGGGATACCCAGCTCGATCCCACCACTAACGGCAGGCTGCAGCAGGAGCTTGTGCTCCTGGTCCAGGGCAACATCACGCCCGAACAGTTCACCAGCACGATGGATAACGCCGTCGCGCAGAACGCCCCGAAGTTCTTCAAGTAAMKKLFRTAAVATAAALALAGCGSGGTTDPSNVSPTGEVKPREISWLLSRPADGAVINIMKKLADDYAKDHPGFSLNLITTPDRPSYIQKLETLAAANKLPELFDTDATPFAQQLAKQGKMVDAEKLLKSLDVYDDYRPSALDYQRFDDGSLHMIPFQFELEFIWYNKALLQKAGVSTPKSLDDIPAMCTALRNAGITPIAIDGQDQWPLERYVAYQPFRAAGPDFIQKLKKGEAKFSDPAGQKTVQWLASLGKAKCFQDGFSSQGYSDAQNQFTSGQAAMYNIGTWELPSLATDRLNPAVRDDIDFFTLPTTEGSVTAANEFVSPSGIGMAVNAKTYDPLVSDFLKFALTKYPSEYAATGALSPTTNVETIVPANATPLYKKALEKANDLGDEQAMPWDTQLDPTTNGRLQQELVLLVQGNITPEQFTSTMDNAVAQNAPKFFKPGPT0016330_829DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
D1-29_001171437sacA_1Sucrose-6-phosphate hydrolaseATGAAACACTCAGTCTTCTTTCAGCCCTCCGATGGATGGGTTGGAGATCTTATCCCGTTCCAGAAGGACGGAGAGTTCTGGCTCTTCTACCTTCATGAGGTACGCGCAGACCCGAAGCCGGGAACCTCATGGCACCTGGTGACCACCAAGGACCTCACGCAGTTTGAGAACCATGGTGTTGCGCTCCAACACGGAGGCGAAGCCGACCTGGATTTCAACGCCTACACAGGAAGCGTCGTCGTCGACGAAACCGGTAGCCACCACTTGTTCTACACGGGTCAAAACCCTCACAACCTCGGACCGGACGGAGCCCCTCTTCAGCTGGTCATGCACGCCACGAGTATCGACGGGATGCAGACCTGGGTGAAGCACCCGGAACTCACCTTCGGCGCCCCGGAAGGCTACGAGTCCGGCGACTGGCGGGATCCTTTCGTCTTCCGGGACGAGAGCTCAGGGCAATGGAGGATGCTGCTGGCGGCGCGGCACTCCGCAGGACCGGAACGCCGGCGAGGTGTCATAGCCCATTGCGTCTCCAACGACCTGGTGACGTGGCAGCACACTGAACCGTTCTGGGATCCGCGCCGCTACATCACCCATGAATGCCCGGACGTTTTCTCCTGGGGCGACTGGTGGTACATGGTCTACTCGGAGTTCTCAGAATCATTCACCACCCGGTACCGCATGGCCAAGAGCCCCGACGGCCCATGGAGCGTACCGGACCTGGACAGCGTGGACGGGCGCGCCTTCTACGCCTCCAAGACCGCCGAACGTGACGGACGCCGGTTCTTTTTTGGATGGATCGCCAGCAAGGAAGGCAACAACGACGACGGCCCCTGGCAGTGGGCCGGCACGATGTCCGTCCTGGAAGCCCGGCAAAACCCGGACGGAACCCTGGGGTTCGCTTTCGCCGACGAACTCGTCGACAGCTTCTGGGAGGACGTCCCGGTATCCCTGACTAACCGGCTGCCGGTGCGACTGCACGTCCCGGACTCGTACACCGCCGTCGTCTCTGACGAAGAACTGCCCGGCCAGTTCTATGCCAAGGCAGTCCTGGACATCGAACCCAACACCACAGAATGCGGGTTGTTGCTTCGCTCCAGCCAGGACGGGGACAAATCCTACGTCCTGCGCCTGGAACCCAAGCGCGGCCGCATGGTGTTCGACCGTTGGCCGCGGAAAGTTACCGGTGACGCCCAATGGCACGTCTCCGGGGACGTTCCGTTCGCCATCGAACTGGAACGCCCCTGCGATCTTGCTCCCGGGCAGCACACGCTCGAAGTCGTTGTGGACGGGGACCTGTGCGTTGCCGTTCTGGATCGGCAGGTGGCTCTCAGCACCAGGATCTACGACCTGGCAGCAGGGCGGATCGGCGTCTTCACCGGGGAAGGGTCAGCAACCCTTACGGAACTTCAAGTCCGCCAACGCACAAACAACTAAMKHSVFFQPSDGWVGDLIPFQKDGEFWLFYLHEVRADPKPGTSWHLVTTKDLTQFENHGVALQHGGEADLDFNAYTGSVVVDETGSHHLFYTGQNPHNLGPDGAPLQLVMHATSIDGMQTWVKHPELTFGAPEGYESGDWRDPFVFRDESSGQWRMLLAARHSAGPERRRGVIAHCVSNDLVTWQHTEPFWDPRRYITHECPDVFSWGDWWYMVYSEFSESFTTRYRMAKSPDGPWSVPDLDSVDGRAFYASKTAERDGRRFFFGWIASKEGNNDDGPWQWAGTMSVLEARQNPDGTLGFAFADELVDSFWEDVPVSLTNRLPVRLHVPDSYTAVVSDEELPGQFYAKAVLDIEPNTTECGLLLRSSQDGDKSYVLRLEPKRGRMVFDRWPRKVTGDAQWHVSGDVPFAIELERPCDLAPGQHTLEVVVDGDLCVAVLDRQVALSTRIYDLAAGRIGVFTGEGSATLTELQVRQRTNNPGPT0018815_2247DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOFURANOSIDASE,PGPT0018815-sacA-K01193NANA
D1-29_00118570betI_1HTH-type transcriptional regulator BetIGTGAAAAACGGCGAACAGGTTGACAGACAGTCGCGCATTCTCGAAGCGGCGCTGGACCTGCTGTCGCGCCACGGCATTTCAGGAGTGAATATGCGGGCGGTGGCCCGCGAAGCGGGCGTGGCGCTCGGGCTGGTGAACTACTACTACGAAGACAAGATGAGCCTGATCCGTGCGGCCCTGCACCGGATAGACCAGCATGACCTGATGCTGGTCACGCCCGATCCGGACTCGCCCCCGGACGAACAGCTGAAGAAGGCCCTCCAGCGCGTTGCAGGCCCGGAATTGCTGACCACACAATATCTGTCCCTTCGGCTCCACCTCTGGGCGCTGGCACAAGCCCATGAAGACTTCGCCTCCATCAATGCGGCGGCGTTCGAGCGCTATCTCCAAGGGCTCGCCACGCTGATCGGAAATGCCAGGCCCGAGCTTTCCAATGACGAATGCAGGGAGCGGGCGGCTGACATCGTCGTCGTGCAAAACGGGATGTGGCTTACGGCGCTCCTTGGTGTTGACAAGGAATCCATCCGGCGGAGCATCGCCCGCACCGAAGAGATCGCCTTCGCCGCCTAGMKNGEQVDRQSRILEAALDLLSRHGISGVNMRAVAREAGVALGLVNYYYEDKMSLIRAALHRIDQHDLMLVTPDPDSPPDEQLKKALQRVAGPELLTTQYLSLRLHLWALAQAHEDFASINAAAFERYLQGLATLIGNARPELSNDECRERAADIVVVQNGMWLTALLGVDKESIRRSIARTEEIAFAANANANANANA
D1-29_00119366hypothetical proteinATGAAACGCGCGTTCGCGTCCGGTGGGCTGCTTCTGTTGCTGACCCCACTGCTGGCTGGCTGTGTGGGCGACTACTTCGCATCCGGCGACTGCGATGATCTTGCGAACGAGCTCTCTCCGGTCATCGAGAAGTCCATCGGGTCCGCGCCATCCATAAACAGCACTTGGGGCGACGGCGGGATGAGGCCATGGTGCCGAATCGACTTCTCGACGACCAAAGAGTATGCGCCCGACGATGAGCGCCTCAGCGCGCTGAAGTCCGAAGTCGAGGCCGGAATGGCGGACTGGTCAAGTGGCGTCGTCGTGACAATACAGGCGGGCAACGACCGCAGCATTGAAGTTCTTTCGCCTGACGAACAGGACTGAMKRAFASGGLLLLLTPLLAGCVGDYFASGDCDDLANELSPVIEKSIGSAPSINSTWGDGGMRPWCRIDFSTTKEYAPDDERLSALKSEVEAGMADWSSGVVVTIQAGNDRSIEVLSPDEQDNANANANANA
D1-29_00120324hypothetical proteinATGACTGCCTGGGGCATCACGTTTCCTCTCACCCGGAAGATAGGTCTTTTGCTCGTCAGCCCTGATGAACTCATTGGGCACGTGGCCGGAGACGAAGTTGCGACCGGCCGCTTTGATCTCGCCCAAGCTCCGTCGACAGCAGCAGCCAATTTGTTCAATGACGCCACGATCAGGAACGCCCGCCAATGGATCTTCCACCACCCGGACGACTCGCACCTTGTGCCGGACGACCTGCCCGAGCCGAGAAATAGGGAAATGGAAGTGATCGGCGGACCCGTGGAGTTCTCGGGAAAACCACTCTTCGGGTCACTCCCGCCAGAGTAAMTAWGITFPLTRKIGLLLVSPDELIGHVAGDEVATGRFDLAQAPSTAAANLFNDATIRNARQWIFHHPDDSHLVPDDLPEPRNREMEVIGGPVEFSGKPLFGSLPPENANANANANA
D1-29_00121591hypothetical proteinATGAGTGACCTTCTGACCAAATACGCCCTTGAGCGACTCGACGTTGCCTTGCAACTTGCTCGAGTTCCTACCGCTTGGGAGCTGCTGAACCCTGGCATACCTAAAAGCCAGGTCAGGGAGGCCGTGTCCTTACATGGCCTCCCCAATAGCCCGGAGCTCGAAACGTTGTATGAATGGCACGACGGTACGGGTTCCGGTTCTGGGGCAGCACTCTTGGGAGACCTGTGGCTCATACCCGGGTTTTATCTGCTCTCATTGGATGAAGCCATCACAAACTATGCCGCCTTTAGAAAGGACCAGCGCTGGAACCAGAACTGGTTTCCAGTGTTCGCAGACGGGGGTGGGGACTTCTACGTAATCGACTTCGCCAACGCTCCCGCTCGCGTTGTCCGTCATTTCCGTCTTGAGGAGGTGGAACACCCTGTCGAGTACGGATCTCTCGCAGCAATGATTGACACGTTCGCTGCAGCCTTTGCATCGGGGGCGATCTTTGTCGATGAAACCGGGTACGTTGGCGTGAACGACGAGGCTTTCAATGCCATCGCTGCCCGGATGAATCCGGACATTCCTTGGTGGACTGATTCGGTGTGAMSDLLTKYALERLDVALQLARVPTAWELLNPGIPKSQVREAVSLHGLPNSPELETLYEWHDGTGSGSGAALLGDLWLIPGFYLLSLDEAITNYAAFRKDQRWNQNWFPVFADGGGDFYVIDFANAPARVVRHFRLEEVEHPVEYGSLAAMIDTFAAAFASGAIFVDETGYVGVNDEAFNAIAARMNPDIPWWTDSVNANANANANA
D1-29_00122183hypothetical proteinATGAGATTCCCCTTCCAGTTTCTGTTCTTGGCCTTCTCAATCGCCATGACCTACACATACATAATCCTCAGCGAGAATGCTGACACATTGGACCGGCGGGCCCTGTCCGGGGCGATCGGAGCCGGCATGGCCGTCGTCGTCGTAGGGTTAGTGATCTTCTGGATGCTGGGTATCTTACGATAGMRFPFQFLFLAFSIAMTYTYIILSENADTLDRRALSGAIGAGMAVVVVGLVIFWMLGILRNANANANANA
D1-29_00123444hypothetical proteinATGACATCGGATTTTGATTGGGCGCGCTTCCGTGAGGCCTTCGGGGACGACCCCGGCGTGCTCCCTGATGGCGAGGTACTCGGAAGTACAGAACACGACTGGGATGATGTGTTTGCGATGCTGCACCGCAGCGGCTGGGAGCTGTCAACCAGTGATGGCCATTCACCGCTCCCGCCCAATAGACACGGTCTCGCTGAACTTGAGAGTTTTGCCGTTTGGCCCGTCGACGGCGTACGCGTCAACTTTTTCCCCGGGCCGCACGCCGTGTTTTTCGACATCGACCTCCGGGAACTAGTCAACCAGGCCAAAGTGGACGGCCTGGCCCACTTGATGAGAAAGCTCGGAACCACGCTTGGTCGAGATGTCGTGATTAGAGACGAAGGTTCGAGTGGCGCGCCGGTCCTTCGCTACACACCTGCAACAGACCAATTTTCACTAAGGTGAMTSDFDWARFREAFGDDPGVLPDGEVLGSTEHDWDDVFAMLHRSGWELSTSDGHSPLPPNRHGLAELESFAVWPVDGVRVNFFPGPHAVFFDIDLRELVNQAKVDGLAHLMRKLGTTLGRDVVIRDEGSSGAPVLRYTPATDQFSLRNANANANANA
D1-29_00124129hypothetical proteinGTGATTCCCAAGGGGCCCCTTCAGTCGAAGAAAAGCGTCCGCTCAAGGTTCGGCTACCGGGCCACCAAGGATGCGGTGATCGACCGGCTTACGGGCACGGCTATCACGTGTCCCGACGCAGCGAGCTAAMIPKGPLQSKKSVRSRFGYRATKDAVIDRLTGTAITCPDAASNANANANANA
D1-29_00125462hypothetical proteinATGTATTCGTTTTCTTCTGATGGCCTGAAGGGATTTGGCGTGCTGGACCACATTGACCACAACCCCGGTATCGTCGCTCGCGTCGCGCAGCACGTGATCGAAGAAGACCTGGGCTACGAGGCGGTCGTGCTTGCCAATCGAGCCGATATGCCTACCTGGCAATTGGAAATCCAGAGGCCGCTCGACCCGGACGACCAGGATCGCCGGCTTGGTCTTGATACCTATTGCCTGGTACTGCCCACCGGAGCTACGGCCTACGGATGCTTGGCTTCGGCGAGTGTTTCTGGGCAACGCCTTCGCTTGACCTTTCCTGCGGATCGATTGACGGAGCTCGGGCTCACCGACTCGACGCTCGAGCTCCAGCTCGAGCTGGAAGCGGCATCCCTAGATGTGCTCGTGACTGGCTTGCGCCAGGTGCTCGGTTCGCCACGCGGTCCCGCCCTCGGCGGTCTCCTGACGTGAMYSFSSDGLKGFGVLDHIDHNPGIVARVAQHVIEEDLGYEAVVLANRADMPTWQLEIQRPLDPDDQDRRLGLDTYCLVLPTGATAYGCLASASVSGQRLRLTFPADRLTELGLTDSTLELQLELEAASLDVLVTGLRQVLGSPRGPALGGLLTNANANANANA
D1-29_00126300hypothetical proteinATGACGCATGTGATCGTTCGGGCTACTGCGGTGCGATGGGCAGACGACGACTTCCCGGGATGGATCGAGGTCGACCTTGTCGACGCGGAGGGTCGGACTCATCGGATCGTTGAGAAGGTCCCTGTCCTCACCAGAGCCAACATCACGGCGGCGTCGACGTTCCCGCTTGAACTGTGGATACAAGCTGAGTTCGAGCGCATGCAGGGTGGCGCTATCTTGGTACGGTTTGCCCATGGCGTAGAAACCACCGATGGCCTTGACCTGATCGGAATGGAGGGGCACGCCGTCCGCTGGCTTTGAMTHVIVRATAVRWADDDFPGWIEVDLVDAEGRTHRIVEKVPVLTRANITAASTFPLELWIQAEFERMQGGAILVRFAHGVETTDGLDLIGMEGHAVRWLNANANANANA
D1-29_001271734betA_1Oxygen-dependent choline dehydrogenaseATGACAAAAACCCATTACGACTACGTCATCGTCGGCGGCGGAAGCGCGGGTTCCGTGCTCGCCAACCGGCTGAGCGAAGGAGGCCAGAGCAGCGTCCTGGTTCTCGAGGCCGGACGCAGCGACTACCCCTGGGACCTTTTCATCCAGATGCCCGCCGCGCTGACGTTCCCCAGCGGCAACCCGCTGTACGACTGGCGCTACCAGTCCGATCCTGAACCGTACATGGGCGGCCGCCGCGTGGCCCACGCCCGCGGCAAGGTCCTGGGCGGTTCCAGCTCCATCAACGGCATGATCTTCCAGCGCGGCAACCCCCTCGACTACGAGCGGTGGGGCGCTGACGCCGGCATGGACACGTGGGACTTCGCCCACTGCCTGCCCTACTTCAACAAAATGGAAAACGCCCTGGCAGCGGACCCTGACGACGAACTCCGCGGGCACGACGGCCCGCTGGTCCTGGAACGCGGTCCGGCCACCAACCCGCTCTTCCAGGCGTTCTTCAAGGCCGCCCAGGAAGCCGGCTACCCCCTGACCGACGACGTCAATGGTTACCGCCAGGAGGGCTTTGCTGCCTTTGACCGCAACGTCCACAAGGGCCAGCGCCTCTCAGCCTCCAGGGCGCACATCCGCCCCAACGCAGGCCGCCAGAACCTCACCGTGCTGACCAGGGCGATGGTCACCAAGGTCAACTTCAAGGGCACCGTTGCCACCGGCGTCACCTACCGCCGCAACGGCCAGACCCACGTGGTCAACGCCGGCGAGGTCATCCTGTCCGGCGGCGCCATCAACACCCCACAGTTGCTGCAGCTGTCCGGTGTGGGCGAAGCCGGGCACCTGAACTCCCTGGGCATCAATCCCGTGGTCAACCTCCCCGGCGTCGGCGAGAACCTCCAGGACCACCTGGAGGTCTACATCCAGCACGCCTGCACCCAGCCGGTGTCCATGCAGCCAAACCTGGACCTGTGGCGCTACCCCCTGATCGGCCTGCAGTGGCTGCTGGGACGCAAGGGCCCAGCGGCCACCAACCACTTCGAAGGCGGCGGGTTCGTGCGCTCCAACGACGACGTGGCCTACCCCAACCTGATGTTCCACTTCCTGCCCGTGGCGGTGCGCTACGACGGCCAGAAGGCGGACGCCAAGCACGGCTACCAGGTGCACATCGGCCCCATGTACTCCGATGCCCGCGGCACCCTGAAGATCAAGTCCACCGACCCCACCGTCCACCCGTCCATGATCTTCAACTACCTCTCCACGGAGCAGGACCGCCGCGAATGGGTGGAAGCCGTCCACGTGGCCCGCGACATCCTGGGCCAATCCGCCATGATGCCCTTCAGCGGCGGGGAGCTCTCACCCGGACAAAGCGTCAGGACCGACGCGGAAATCCTGGACTGGGTGGCCAAGGACGCCGAAACCGCCCTGCACCCCTCCTGCACCGCCAAGATGGGCCCGGAGTCCGATCCGATGGCCGTGGTGAACCCGCTCGACATGTCCGTCCATGGCACCCAGGGCCTCCGCGTTGTGGATGCCTCGGCCATGCCGTACGTAACCAACGGCAACATCTACGCGCCCGTCATGATGCTCGCCGAGAAGGCCGCCGACCTGATCGCCGGGAAGGCACCGCTGGCCCCCCAGCACGCCGAGTTCTACCGCCACGGGATCTCTCCCCTTGAAAAGGACGGCACAGAGCGTAATGGCGCCGGTACTGCAACTGCACCTGCCCGTAAGGCAAGGGCCTAGMTKTHYDYVIVGGGSAGSVLANRLSEGGQSSVLVLEAGRSDYPWDLFIQMPAALTFPSGNPLYDWRYQSDPEPYMGGRRVAHARGKVLGGSSSINGMIFQRGNPLDYERWGADAGMDTWDFAHCLPYFNKMENALAADPDDELRGHDGPLVLERGPATNPLFQAFFKAAQEAGYPLTDDVNGYRQEGFAAFDRNVHKGQRLSASRAHIRPNAGRQNLTVLTRAMVTKVNFKGTVATGVTYRRNGQTHVVNAGEVILSGGAINTPQLLQLSGVGEAGHLNSLGINPVVNLPGVGENLQDHLEVYIQHACTQPVSMQPNLDLWRYPLIGLQWLLGRKGPAATNHFEGGGFVRSNDDVAYPNLMFHFLPVAVRYDGQKADAKHGYQVHIGPMYSDARGTLKIKSTDPTVHPSMIFNYLSTEQDRREWVEAVHVARDILGQSAMMPFSGGELSPGQSVRTDAEILDWVAKDAETALHPSCTAKMGPESDPMAVVNPLDMSVHGTQGLRVVDASAMPYVTNGNIYAPVMMLAEKAADLIAGKAPLAPQHAEFYRHGISPLEKDGTERNGAGTATAPARKARAPGPT0013615_1262DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-29_001281554gbsA_1COG1012Betaine aldehyde dehydrogenaseATGACCGCCACCGTTGAGCAAATCCACCACGTCGGGAAAGGCCAGGAGGCCATTAAGGGCCTGTACTTTGACGGCGCCTGGCAACAGACATCCGACGGCGGGACAACAGTTGTGCGCTGCCCGGCGGACGGGCGCGAGGTGGCAGTTGTCGCCTCGTCAACCGTCGAGGACGCGGAGCGGGCGATCGCCAGTGCCCGGGCAGCGTTCGACGGCGGCGCGTGGCGCCGGCTGACGGACATCGAACGCGGCGAGGTCCTGCTTCGCATCGCCGGGCTGCTTGAGCGGGACAAGGCGGCTTATGCCCGGGCCGAGGCGCTGGACACCGGCAAGCGCCTCGTTGAGGCGGAATACGACATTGACGACATTGCCGCGTGCTTCCGTTACTACGGCAAGATAGCGGGCCTGGATGCGGGCAGGGTCATCGACACGGGCCGGGCGAACGCCATCAGCCGCGTGGTTTACGAACCGCTTGGCGTCTGTTCCCTCATCGCACCATGGAACTACCCGCTACTCCAGGCGGCCTGGAAAGTGGCACCGGCACTCGTCGCGGGAAATTCCTTCGTGCTCAAGCCCAGTGAGCTCACGCCGTCCACCTCCATCCTGCTCATGGAAACGCTGGCAGAGGCCGGGGTTCCCGCCGGCGTCGCAAACCTGGTCACGGGACGCGGATCGAGGGTGGGTCCTCTCTTGAGTTCGGACCCGCGTGTGGATCTCGTCTCCCTGACCGGAAGCCTGGCCACGGGCCAGACCATCATGGCGGCCGCCGCGGAGACCGTGAAGCGCGTCGCCTTCGAGCTCGGCGGAAAGAACCCCAACGTCGTCTTCGCTGACGCCGACTGGGACTCCGCCATCGACAATGCCCTGACAGCTGTGTTCCTGCACTCCGGCCAGGTCTGCTCGGCAGGGGCGCGACTGGTGGTCGAGGAGACCATCGCGGAGCGCTTCGTTGCCGAAGTGGTGGAACGGGCGAAAAACATCCGGATGGGCGGGCCGTTTGATCCCGATGCAGAAACGGGTCCGCTCATTTCCGCCAAGCACCGCGAGCAGGTCCACGCCTATGTCCAGGCCGGCATCGCGGAGGGCGCTGAGCTTCTGTGCGGCGGCTACATCCCCGACGACGGGACGCTCGCGGACGGATTCTTCTACCCGCCCACCGTGCTGGGCAACTGCCGCTCGGGTATGAGCGTGCTGCGGGAGGAGTCATTCGGCCCGGTGCTGACCGTTGAGACATTCCGGACCGAAGCCGAAGCCGTTGCCATCGCCAACGACACGGAGTACGGCCTGGCGGGGGCGGTGTGGACTTCGGACGCGTCAAAAGCGCAGCGTGTTGCGGGCGCCCTCCGGCACGGAACAGTATGGATCAATGACTACCACCCGTACGTCCCGCAGGCGGAGTGGGGCGGTTTCGGCAAGTCCGGCATTGGCCGTGAACTTGGCAGCGCGGGCCTCAATGAATACCGCGAGGCAAAACATATCTGGCAGAACATCCAGCCCGCACCCAGCGGCTGGTTCGGCTCATCTTCGGACGGAACGGGGGCGGGTCCGGCCGAATAAMTATVEQIHHVGKGQEAIKGLYFDGAWQQTSDGGTTVVRCPADGREVAVVASSTVEDAERAIASARAAFDGGAWRRLTDIERGEVLLRIAGLLERDKAAYARAEALDTGKRLVEAEYDIDDIAACFRYYGKIAGLDAGRVIDTGRANAISRVVYEPLGVCSLIAPWNYPLLQAAWKVAPALVAGNSFVLKPSELTPSTSILLMETLAEAGVPAGVANLVTGRGSRVGPLLSSDPRVDLVSLTGSLATGQTIMAAAAETVKRVAFELGGKNPNVVFADADWDSAIDNALTAVFLHSGQVCSAGARLVVEETIAERFVAEVVERAKNIRMGGPFDPDAETGPLISAKHREQVHAYVQAGIAEGAELLCGGYIPDDGTLADGFFYPPTVLGNCRSGMSVLREESFGPVLTVETFRTEAEAVAIANDTEYGLAGAVWTSDASKAQRVAGALRHGTVWINDYHPYVPQAEWGGFGKSGIGRELGSAGLNEYREAKHIWQNIQPAPSGWFGSSSDGTGAGPAEPGPT0007165_86DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-29_001291728hypothetical proteinATGTTAGAACCCACAAAGCGTGCAGACGCAAGCGGCATGGACGAATTCGGCTATGCCCAGACACTGGACCGCAGCATCGGCAAGTTCGCCAGCTTCGCGGCAGGAGTCAGCTACATCTCCATCCTCACCGGCGTATTCCAACTCTTCTACTTTGGCTTTTCCATGGCCGGCCCCGCCTATGCGTGGTCCTGGCCCCTCGTTTTCGCCGGCCAGCTGATGGTGGCGCTATGTTTCGCTGAGCTGGCCGGCCGCTACCCGGTAGCCGGCTCGGTGTACAACTGGGCCAAGCGGCTCTCGTCGGGGACATTCGCCTGGCTGGCCGGCTGGCTGCTGCTCATTTCCTCGATCGTGGCGCTGGGAGCCGTGGCCCTTGCACTGCAGCTCACCCTGCCCCAGATCTGGTCCGGTTTCCAGATCATCGGCGACGGCACCGGCACCTACGATTTCGCCCTCAACGGCGTGCTGCTCGCCAGCATCATGATCTCCATCTCCACCCTCATCAACGCCTTCGGCGTGAAGCTGATGACCCGAATCAACAGCATCGGCGTCTTCGTGGAGCTCGCTGCCGCCGCGCTCCTCATCCTGGCCCTTGCCTGGCATGTGGTGCGGGGACCGGAAGTCCTTTTCAGCACCGAAGGCTACGGCATGGACCACGACCTTGGCTTCTTCGGGGTGTTCCTCATCGGCGCCATGGCCTCCGGCTACGTGATGTATGGCTTCGACACCGCCAGTTCCCTCGGCGAGGAGACGAAGGACCCGAAGAAGACTGCCCCCAAGGCCATCCTCCGTGCAATCACGGCGTCCTTCATCCTCGGCGGCCTGATTCTCCTTGGCGGACTCCTGGCCGCCCCCGACCTCAACGACCCCAAGCTGGGCGCTGCCGACGGCGGCCTGCAGTACATCGTGCTCTCCGTGTTGGGAGGCCCCTTCGGGAAGGCGTTCCTGGTGTGCATCGTCGTGGCCGTTATCGTCTGTACCCTGGCCGTTCACGCCGCCGCCATCCGCATGATGTTCGCCATGGCCAGGGACAACAACCTGCCCTTCAGCCGCCAGCTCAGCAAGGTGCATCCCGAGCGGAAGACGCCCACGGTGGCGGCCATCGTCATCGGAATCATCGCCATCATTCCGCTGATCGTCAACGTCTCCCAGCCAGCGATCTTCACCATCCTTTCCAGCATCAGCATTGTCCTGATCTACCTGTCCTACCTGCTGGTTACCGTTCCACTGCTCCGCAAGCGGTTCCAGAAGAAGTGGCCTCTGGCGGACGACAGCACGGAGCCGGGCTTCAGCCTGGGCAAGTGGGGGCTGCCCGTGAACATCGTGGCGGTGCTGTGGGGCGGCGCCATGACGCTGAACCTGATCTGGCCACGCCCGGAAATCTACAACTCGGTGCCCCCGTTCGAGTGGTACCTGCAGTGGGGCGGCGTCCTGTTCGTCGGCGCCGTCACCGGAGGCGGCGCGCTCCTTTACCGGTTGAAGATCAGGCACCAGACGGGTGTGCTCGCCGCCCACGCGGCACCCGCCCCGGCAGACCCCTCCCAGGGCTCCGCCGCCACAGGATCCACGGTTGCCCCCGAACTGGCACTGGCCCCTGTCCATGCCATGTCGGCACAGTCCTCTTCGGAAACGGACGTCTCTTCGGACACGAACGCCTCTTACAAGGATGGAGAGCTTCCTGACGCGCTGGCAGTCCAGGGTGCAACGTCAGGGAAAGGTCCGGGGTCGTAGMLEPTKRADASGMDEFGYAQTLDRSIGKFASFAAGVSYISILTGVFQLFYFGFSMAGPAYAWSWPLVFAGQLMVALCFAELAGRYPVAGSVYNWAKRLSSGTFAWLAGWLLLISSIVALGAVALALQLTLPQIWSGFQIIGDGTGTYDFALNGVLLASIMISISTLINAFGVKLMTRINSIGVFVELAAAALLILALAWHVVRGPEVLFSTEGYGMDHDLGFFGVFLIGAMASGYVMYGFDTASSLGEETKDPKKTAPKAILRAITASFILGGLILLGGLLAAPDLNDPKLGAADGGLQYIVLSVLGGPFGKAFLVCIVVAVIVCTLAVHAAAIRMMFAMARDNNLPFSRQLSKVHPERKTPTVAAIVIGIIAIIPLIVNVSQPAIFTILSSISIVLIYLSYLLVTVPLLRKRFQKKWPLADDSTEPGFSLGKWGLPVNIVAVLWGGAMTLNLIWPRPEIYNSVPPFEWYLQWGGVLFVGAVTGGGALLYRLKIRHQTGVLAAHAAPAPADPSQGSAATGSTVAPELALAPVHAMSAQSSSETDVSSDTNASYKDGELPDALAVQGATSGKGPGSNANANANANA
D1-29_00130903hypothetical proteinATGACGCAGCAGCTCAGCAACATCCGCATCCGAGACCCGTTCATCCTGCACCTGCCGAGCCGGTCCACCTATTACCTGTTTGGAACCACGGACGATCAGCCCTGGACCGGCCCCGGAACCGGCTTTGACTGCTACACCAGCTCTGACATGGAAGATTGGGACGGGCCCATCTCCGCGTTCCTCCCGCCCCTGGACTTCTGGGGCACCACACAGTTCTGGGCCCCGGAGGTCTACGAATACAACAGCAGCTTCTTCATGTTCGCCACCTTCGCTGATGACCACGGCCACCGCGGCACCCAGGTACTAAAGGCCGACGAACCAACCGGGCCGTACCTGCCTTGGAGCGACGGGCCTGTCACTCCCGCAGACTGGGCATGCCTGGACGGAACCCTTTACATCGACACAGCGGACCGGCCATGGATGGTTTTCTGCCACGAATGGCTCCAGATCAACGACGGCGCCATCTACGCCCAGCGCCTCTCTCCGGACCTGAAGACAGCAATCGGCCTGCCGTTCTTCCTTTTCAACGCCTCCGAAGCTGCCTGGAGCACTCCCCTCCCTGAGGGATCCCCGGAAACCCCCAACTACGTCACTGACGGGCCCTTTCTTCAGCGAACCAGCAGCGGGGAATTAGTGATGCTGTGGTCCAGCCACGGAAAAGATGGCTACGCCATGGGCCTGGCCCGGTCAAAGAATGGCACCATCGAAGGTCCCTGGGACCACGACCCCGAACCCTTGTGGGCCGAAGACGGTGGGCACGGGATGTTCTTCCATCCCTCCCCCAACCAATCCATCCTCGTCTTCCACCACCCCAACGACCTCCCCAACGAACGAACCAAAATGATCGAAATCGCCGGCTTCGAAACCGGCAGCACGGCTGAACGAAGTGCGGCCCATTTATAGMTQQLSNIRIRDPFILHLPSRSTYYLFGTTDDQPWTGPGTGFDCYTSSDMEDWDGPISAFLPPLDFWGTTQFWAPEVYEYNSSFFMFATFADDHGHRGTQVLKADEPTGPYLPWSDGPVTPADWACLDGTLYIDTADRPWMVFCHEWLQINDGAIYAQRLSPDLKTAIGLPFFLFNASEAAWSTPLPEGSPETPNYVTDGPFLQRTSSGELVMLWSSHGKDGYAMGLARSKNGTIEGPWDHDPEPLWAEDGGHGMFFHPSPNQSILVFHHPNDLPNERTKMIEIAGFETGSTAERSAAHLPGPT0019090_990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINANASE,PGPT0019090-abnA-K06113NANA
D1-29_001312475hypothetical proteinATGCCGTTGACCAAACGCCGCTTTCGGCGAAGGCCCTCCCGTGTCCACTTGCTGGCCACACTGACCGCTACGGCGATCTGCGCGGCAGCAGGCCTGGCAGGAGCCGCTCCCGCCAGTGCCTTGAACACCAGCTACTACCTTGACTGCTCGGCATCAACAAACGGTTCAGGAACGCAGGCGTCCCCATGGAACGCCCTGAGCTCCGTGAACGCCGTGACCTTCGGGGCGGGCGACAGGATCAACGTCCGGGCCGGTACCTCCTGCACCGGCCAACTCACCGCGAAAGGGTCCGGCGCCAGCGGCAACCCCATCCTCCTGGGCAGCTACGGCACGGGGGCAAAACCCATCCTCGACGCCGCCGGAGCAACCGGTGCCGTGATTCTGCTGCAGAACGTCCAGCAGTGGGAAATCAGCGGCCTTGAACTGCGCAACCAGGCCAGCAGCCCCGACTACCGTTCCGGGATCCTCGCCATCAATTCTTCAGGTACCACGCTCAACCACCTCAAGATCAGCGGCATGACCATCCGCAACATCAGCGGCTGGTCCGGCGGCTGGTACTCCACCAACGCCGGCGTCGGCATCCAAACGAACCACACCAGCACCGTTTCGACCTGGAACGACATCCAGGTCAGCGACAACACCTTCGAGAACGTTGACCGTATCGCCGTCGCCGTCACCCCGGATCATGACGGGGTAGGCACGGGCCTGAGTACTGGGGTGAAAATCCAGCGCAACACCATCCGCTACTCCGGCGGCGACGACATCCTGGTCGTCAAAGGCCAGGGAGCCCTGATCGAAGGCAACGACACAGCCTTTGGTGGCGCGAAGTCCATCAACGCCTGCCCGCCCAGCGGCCAGTACTGCAACGGCGCCTCGGCCGGGATCTGGATGGCCGGGTCCAACGACACCCTTGTCCAGGGCAACAGCGTGGTGTGCAACGTCAACGAAGCCGACGGTCAGGCTTTCGACGTGGACTGGGGCAACCACAACACCACCGTCCAGTACAACTACGGCCGCAACAACCGCGGCGGCTTCATCCTCATCATGCCGCCGATCAGCGTCTCCAACGAGCCCACCTCCCGGGTCCCCTCCGACGGCACCGTGGTCCGCTACAACGTCAGTGAAGACGACGCCAACACCACCGGCTGTCCCCTGCAGCCTGCATGGAACGGGCCACGGGACGTCATCCACTTCGCTGGCTCGATCGCGAACAGATCCGGAAGCAGCACCGCCCAGCCGGACATCTACAACAACACCATCTTCATTCCCTCCAACAGGGGTACCTACGTGGTGGGCAGCCGCAGCGGCGTGAACGCCTCCGGGTCTTTCCTTTTCCGGAACAACCTGGTGGAAAACTTCGGCACCGGCGGTTACGTCCAAACAAGCGGCTCCACCTACGCCAACAACTTCATGTACGGGAACCGGCATTCCACCGAACCGGCGAACTCCGGAACGATCATCCTGGACCCGCAGCTTTCCGGGCCGCTGCCCACCGCAGCCCAGGCCTCCTCGGGGTCCGCCTCGTTCAAGATCCGGCCCTCCTCCCCGGCCATCAACGCCGGAGTGACAATCGCGAACAATGGCGGCAGGGACTTTACCGGAACACCCCTCCCCTCCAAGCCCACCGTCGGCGCCTTCGAAAGCACCGGGACGCTGGTCTCGAACCCCGGCTTTGAAACCGGAACCCTGTCCTCCTGGACAACCTCTGGCAATGGCACCACGTCCCAGGCCACCGGGACATCACCAGCGGCAGGAACCACCTCGGTGCAGACGGGCCCAACCAACAGCGGCATCCAGCAGGCCATCAACGGGCTGAGCCCGAACACCACCTACATGCTCACTGCCTCCCTGAAGGTTGCAACGGCCGGAGACCAGATCGCACTCGGGGTCAAGGACTTTGGTGGAGCCGAAACCTACGTCCGCACCACTTCAACCGCGTGGGCGCAGCAGACGGCGTACTTCACCACAGGTACTTCCAACACCAGCGCAACAATCTACTGCTACAAGAACACCGGCAGCGGAGCAGGACACTGCGACAACTTCGCAGTCCAGGCAATCTCCTCCCCCGCGAACCTGGCCAACAACCCAGGATTCGAAAGCGGGTCCCTGGCCCCCTGGACACTCAGCGGAGGCGGCGCAGCCGCGGCAACCTCAGCGGCCAACACCGGAACCTACGGCCTGCTGACCGGAGCCGCCAACAGCGGTGCCAACCAGAGCATCACCGGCCTGGTCCCGGGCGCCAGCTACGTGCTGTCCGGTTTCCTGCGCGCAGCACCGGGGGAAGAGATTGCCCTCGGCGTCAAGGACATGGGCTCAGCCGAAACGTACCAGCGTGTAGGCGGGTCAGCGTTCGCCCCCGCCAGCGTGCGCTTCACCGCCGGAACGAACGTCACGAGCGCCAGCATCTACTGCTACAAGAACAACGGATCCAGTGCCGGCGCCTGCGATGACCTGCGGCTGACGCGCATCGGCTAAMPLTKRRFRRRPSRVHLLATLTATAICAAAGLAGAAPASALNTSYYLDCSASTNGSGTQASPWNALSSVNAVTFGAGDRINVRAGTSCTGQLTAKGSGASGNPILLGSYGTGAKPILDAAGATGAVILLQNVQQWEISGLELRNQASSPDYRSGILAINSSGTTLNHLKISGMTIRNISGWSGGWYSTNAGVGIQTNHTSTVSTWNDIQVSDNTFENVDRIAVAVTPDHDGVGTGLSTGVKIQRNTIRYSGGDDILVVKGQGALIEGNDTAFGGAKSINACPPSGQYCNGASAGIWMAGSNDTLVQGNSVVCNVNEADGQAFDVDWGNHNTTVQYNYGRNNRGGFILIMPPISVSNEPTSRVPSDGTVVRYNVSEDDANTTGCPLQPAWNGPRDVIHFAGSIANRSGSSTAQPDIYNNTIFIPSNRGTYVVGSRSGVNASGSFLFRNNLVENFGTGGYVQTSGSTYANNFMYGNRHSTEPANSGTIILDPQLSGPLPTAAQASSGSASFKIRPSSPAINAGVTIANNGGRDFTGTPLPSKPTVGAFESTGTLVSNPGFETGTLSSWTTSGNGTTSQATGTSPAAGTTSVQTGPTNSGIQQAINGLSPNTTYMLTASLKVATAGDQIALGVKDFGGAETYVRTTSTAWAQQTAYFTTGTSNTSATIYCYKNTGSGAGHCDNFAVQAISSPANLANNPGFESGSLAPWTLSGGGAAAATSAANTGTYGLLTGAANSGANQSITGLVPGASYVLSGFLRAAPGEEIALGVKDMGSAETYQRVGGSAFAPASVRFTAGTNVTSASIYCYKNNGSSAGACDDLRLTRIGNANANANANA
D1-29_00132909melC_1COG0395Melibiose/raffinose/stachyose import permease protein MelCATGACCGCCCCCATCACAGAAGTACAGGCCACCCTCAGGGCTGAGCCCCTGCCGCAGCGCCCGGGCCCGCTCCCCAAACGTTCCCGCGCCGGCGGTGCCGGAGCCTACTGGGCAGGGAACATCGCCTTGGTCATAGTTGTGGCAGCCATCATCGTTCCGTTCTTCTTCACCCTGCTAACGTCCCTCAGGACCAGCCAGGACGTAGCCAACGACCCGCTGGGGTTCCCGTCCTCGCTGACGCTGGAGAACTTTGCAGCGGTCTTCCAGAAGATGAACTACGGACCGGGGCTGCTGAACTCCATCGTCATCCTGGTCTTCTCCCTGCTGGCCACCATCCTCCTCGGGGCGTTGGCCGCCTATCCCCTGGCCCGTGTCTCGAGGAACTGGACCTCATGGGTGTACCGGCTTTTCATTGCCGGATCAACCATCCCCGTCTTCGTGCTGATCGCACCCCTGTATCTGCTTCAGCGCGACCTTGGCCTGTTGAACAGCCACGTCGGCGTGATCCTGGCCTACGCCGCCCTGAACCTTCCTGTGGCGATCTTCTTTTACACCAGCTTCTTCCGCCAGATCCCCATCGAGCTTGAGGAAGCAGCAGCCCTCGACGGCGCAAGCCCCGTCCGGATCTTCTTCACAGTTCTTTTCCCCCTGCTGCGCCCGATCACCGCGACTCTGGCGACGTTCCTGACCCTCGCCATCTGGAATGACCTCATCATCCCGCTGGTCTTCCTGCAGAACCCAGCCTTCAAGACCGTGATGGTCAACGCCTACTCGCTGATCGGCACCTACTCCATTGACCCGACAGTGCTGTTCCCCGCAGCCCTGCTGGGCGTCGCCCCGCTGCTGGTCGTCTTCATGTTCCTGCAGCGCCAGGTCGTGGACGGCCTGACCATGGGCGCCGTCAAGTAGMTAPITEVQATLRAEPLPQRPGPLPKRSRAGGAGAYWAGNIALVIVVAAIIVPFFFTLLTSLRTSQDVANDPLGFPSSLTLENFAAVFQKMNYGPGLLNSIVILVFSLLATILLGALAAYPLARVSRNWTSWVYRLFIAGSTIPVFVLIAPLYLLQRDLGLLNSHVGVILAYAALNLPVAIFFYTSFFRQIPIELEEAAALDGASPVRIFFTVLFPLLRPITATLATFLTLAIWNDLIIPLVFLQNPAFKTVMVNAYSLIGTYSIDPTVLFPAALLGVAPLLVVFMFLQRQVVDGLTMGAVKPGPT0016340_84DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
D1-29_00133858lacF_3Lactose transport system permease protein LacFATGACGGCCTTCCTCTTCCTCGCACCAGGGTTGGCACTTTACGTGCTGATCGTGATCTACCCGCTGCTTCAGGGGTTCTCCCTCAGCACCACCAACAGCAAGGTTGGAAACCCGGGGAAATTCATTGGAGCCGAGAACTACGTCGACGCCTTCGCTGACCCGGTGGTGACCGGGGCCCTCCTCCGCACCGTGCTCTACGCAGTGGTTGTGGTAGTCGTTCAGAACGGCGTGGGTCTGTGGCTGGCCCGGGCACTGTACTACCGGTTCCGGGTACGCCGGCTGACCAGCATCCTTGTTCTGCTGCCCACGCTGATGTCCGCAGTTATGGCTGCGTTCGTGTGGACGTACCTTTACGCCCCAAACGGCGGGATCAACACCATGCTGCGCAGTGTGGGTCTTGATTCCCTGACCCGGGTATGGCTCGGGGATCCCTCCACGGCGATTTGGGCCATCGCGGTGGTGAACATCTGGATGTTCGCTGGTTACTCCTGTGCGATCTTCCTTGCCGGTTATAGCGGCTTGCCCGGGGAGCTCCTGGACGCAGCCCGGGTGGACGGCGCCTCGGGATGGCGGCGGTTCGCCAACGTGGAATGGCCCCTTTTGGCCCCCGCTCTCACTGTCAACGTCACGCTGTCCCTGATCGGTTCACTGAAGGTCTTCGAGCTGCCCCTGGTGATGACCAGCGGCGGCCCGGCCGGATCATCAACCACTCTCAGCCTGCTGATTTACGAGCAGACCTTCGGCGGCCAGGGCACCTTCGCCTACGGCACCGCCATCGCCATCATCCTTCTGGTCGTCGTGGTCGTGCTCGCCGCCGGAACCCAAACGCTCCTGCGGCGCCGAGAGGACCTCATCTAAMTAFLFLAPGLALYVLIVIYPLLQGFSLSTTNSKVGNPGKFIGAENYVDAFADPVVTGALLRTVLYAVVVVVVQNGVGLWLARALYYRFRVRRLTSILVLLPTLMSAVMAAFVWTYLYAPNGGINTMLRSVGLDSLTRVWLGDPSTAIWAIAVVNIWMFAGYSCAIFLAGYSGLPGELLDAARVDGASGWRRFANVEWPLLAPALTVNVTLSLIGSLKVFELPLVMTSGGPAGSSTTLSLLIYEQTFGGQGTFAYGTAIAIILLVVVVVLAAGTQTLLRRREDLIPGPT0016335_2143DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
D1-29_001341308hypothetical proteinATGAATTCGAAGTATCTGGCGCCTGCCACAGTCAACGCGAAGGTCCGCCGTGCCGGTCGTATCGCTGTAGCCCTGATCGCGTTGACTTCGGTGGTTGGCGTAGCGGGCTGTTCCTCACAGTCCGGAGCCGCGACCTCCAGTGATGGCAAGACTGTTCTGAAGGTATATGGGTGGAAGGGCGGCGATGCTGAACCGGCCAACATGGAGAAGGTCAACAGCGCCTTTGAGCAGGCGCATCCGGAAATTGACGTGCAGTTCGAATACGTTCCGGGAAACGATTCCTACACCCAGCGCGTTCAACCTGAACTCCTCGCCGGCAACAGCGCCGATGTCATCATGACGGACTCAAGCAAGGTCCAGGACTGGGGTTCTGCCGGGTACTTGGAGGATCTTGGCGGCAGTGACTGGTCCGATTCGGTGATCCCGGCAGTGAGCCCCTTCATCCAGGAAGAAGGCACCACCTACGCGCTGCCGATGGAACTGATAGGCATCGATCTGTACGCGAACCTGGATCTGCTGAAGAAGGCAGGGGTGAACGAGGTCCCCGCAACCTACCCTGATTTCGTAGCAGCACTGCAGAAGCTCAAGGACGCGGGCATCACCCCGCTCTCGCTGCCGAACAAGGGCGGCTGGACCGGCGCGTCGGTCGTCACCGCGATCGCGGCCACCAAGGTCTATCAGGATGATGCTGACTGGGACAAGAAGTTCCTTGATGGGTCATCCTCCTTCAGTGATTGGAAGAGCTCGGCTGATCAGATGATGGAGCTCCAGAGCAAGGGCTTTGTTGATTTCTCAACCGAACTTGGCGTCGATGAGTGGGGCCAGGGCCTGGCCGACTTCACGTCCGGCAAGAGTGCCTTCTGGTTCCAGGGCGCATGGAACCAGTCCGCCGTCACCAAGGCCGGCATCAACAATGTGTTCATCCCATGGCCCGCCGGCGACAAGGGCCAGGAGTCCTCGGCGAACCTGTTTGTGGGAACCATGTGGAGCATCAACGCCAAGTCCAAGGTCAAGGACGCCGCGAAGGAGTACGTGGAGTTCTGGTCGGACAGCACCAATGCTGCACCGTTTGTGGAGGCTGAAAACGCGGTAACCCCGTTCAAGGACGGCAAGACCCCCAGCACCCTCGCCACCAAGGACTTCGTGGCCGCTGTCGACGCGGGGCGCTTCCACATCCTGCCCTCAGACAGCTGGTTCGCAGCTGCCGGGGAGAAGCAGATGCAGCAGGAAACACAGTCACTCTGGCTCGGCCAGGTGGACGTCAACCAGTACGTGTCGAACCTCGACAAGCTCCGGGACATGAAGTAAMNSKYLAPATVNAKVRRAGRIAVALIALTSVVGVAGCSSQSGAATSSDGKTVLKVYGWKGGDAEPANMEKVNSAFEQAHPEIDVQFEYVPGNDSYTQRVQPELLAGNSADVIMTDSSKVQDWGSAGYLEDLGGSDWSDSVIPAVSPFIQEEGTTYALPMELIGIDLYANLDLLKKAGVNEVPATYPDFVAALQKLKDAGITPLSLPNKGGWTGASVVTAIAATKVYQDDADWDKKFLDGSSSFSDWKSSADQMMELQSKGFVDFSTELGVDEWGQGLADFTSGKSAFWFQGAWNQSAVTKAGINNVFIPWPAGDKGQESSANLFVGTMWSINAKSKVKDAAKEYVEFWSDSTNAAPFVEAENAVTPFKDGKTPSTLATKDFVAAVDAGRFHILPSDSWFAAAGEKQMQQETQSLWLGQVDVNQYVSNLDKLRDMKPGPT0016330_2309DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
D1-29_001351854hypothetical proteinGTGCTGACAACAGCTACCGGGTGGGATACACAGGATCTCCTGCAGAAGCTGATGGACATGCGTTTCGGTATGTTCAACCACTTCAACCTCGGCACCTACACCAACCAGGAATGGGCTGCGCCCAATCAGAATCCCGGGATCTTCGCACCGCCGTCGGTGGACACCGATCAGTGGGCCGACGTCGCTCTCGCGGCAGGGATGAGCTACGGGGTGCTTACCACCAAGCATCATGACGGATTCGCGCTGTGGCCCACCAAATACGGCAGCCAGAACGTCATGAACTCCGGCTACAAGCGCGACGTCGTCAGGCAGTACGTGGACTCGTTCCGCTCGCGCGGACTGAAGGTGGGCTTCTACTTCTCCATCTGGGACCGGACCTATCCCGTGCAGGCCACCGGCGGGTACCATGTCAACGACCCCGCCGCGGGTGTGGACTTACCCCAGATCACCTTTGTGCTGAACCAGATCCGAGAACTGCTCACCGGCTACGGCGAGATCGAAGTCCTGATGCTCGATGGCTACGCCTGGCAAATGGGCCACCAACAGGTCCCGATGCAGCGGGTCCGCGACCTGGTCAAAACCCTCCAGCCCAACTGCCTCATCATCGACATCTGCGCCGTCCTCACCCCTTGGCTGGCCGACGCGATCTTCTGGGAAGAACCCTTCGGGATCACCGCGCCGGCCGGAAACACGTGGGCCGGGATGCAGGGCCAGACCATCAGCAACGGCTGGTTCTGGCACCCCTCAACCCCCACGGAAGGACTGATGTCCAAGGACGCCATCATCACTCACCTCACCGAACTCGAATCGAGGTGGACCTCGTTTATTCTCAACTGCCCACCCAACCGGAACGGCAAGCTGGACCCCAATGTGGTGGCCCGCCTCGCTGAAGTCGGCGCGGCCTGGGCCCCCAACGCGGCACGCGGCGCACTCCCGGCGCAGCCTCTCCGTGCCGAACACCTGATCACTCCCGTGGCGGCCTACGCCTCCGCGTTCCGCGATCCCGAACCCCCGTACTTCGCGATCGACGGACGCGCCGACAACAAACTGCAAACCTGCTGGTCCACCTGGCCAGGCACCGGCGAACTCACCGCTCCAGTGTCCATAACGCTTGATCTGGGCGGAATCTACACCGGTGTCAGCACCCTGGAGTACCTTCCCAAGCAGTGGAACCGCGCGAACGGCACCGACGGCGACGTGACCTCCTTCGAGATCTCCACAAGCACCAACGGCGTGACATTCACAACCGTCGCGTCCGGCACCTGGGCCACCGGCCCCACCCCGAAGCTCGCCCAGTGGGCCCCGGTCACAGCGGGGTTCATCCGGCTCACCGCCAAGGCTGGCTCCGGCGGTTACACCAACGTCGCCGGCCTGCGGGTGGGCGGCCGCACCGCAAAGCCTGTCCGGCAGTCGTTCGCCATCGCTCCCAACCGCGCCTACAAACTCATCAATCCCGCCACCGGGAAGGCACTAACCGTACTCAACGGCTCCACTGCCAACAGGGCCGCCGTAGTCCTTGCCCCCGACACCAACGCCGCGAACCAGCGCTGGACGCTGACCGCCGACGTCGACGGCTACTACAAGCTAAGGGACGCCAATAGCGGAAAGGTCCTCGAGATCGGTTTCCGCTCACGGACCATCGGCGAGAAGGCAGCGATCTATTCCAGCGCCGACGTCCTGCAACAACAATGGGCAATAACACCATTAAGCATCGGAAAAGTCGCCCTCACCAACCGTTTCTCCACCTACGCCCTCGGCCTGACCGCAGCAGCCACCACTGACGGAACCACCGCGGAGCAACAGCTCTACCGTGGCGCCGGCCACCAGCAATGGACGCTTATCGACGTCACGTAAMLTTATGWDTQDLLQKLMDMRFGMFNHFNLGTYTNQEWAAPNQNPGIFAPPSVDTDQWADVALAAGMSYGVLTTKHHDGFALWPTKYGSQNVMNSGYKRDVVRQYVDSFRSRGLKVGFYFSIWDRTYPVQATGGYHVNDPAAGVDLPQITFVLNQIRELLTGYGEIEVLMLDGYAWQMGHQQVPMQRVRDLVKTLQPNCLIIDICAVLTPWLADAIFWEEPFGITAPAGNTWAGMQGQTISNGWFWHPSTPTEGLMSKDAIITHLTELESRWTSFILNCPPNRNGKLDPNVVARLAEVGAAWAPNAARGALPAQPLRAEHLITPVAAYASAFRDPEPPYFAIDGRADNKLQTCWSTWPGTGELTAPVSITLDLGGIYTGVSTLEYLPKQWNRANGTDGDVTSFEISTSTNGVTFTTVASGTWATGPTPKLAQWAPVTAGFIRLTAKAGSGGYTNVAGLRVGGRTAKPVRQSFAIAPNRAYKLINPATGKALTVLNGSTANRAAVVLAPDTNAANQRWTLTADVDGYYKLRDANSGKVLEIGFRSRTIGEKAAIYSSADVLQQQWAITPLSIGKVALTNRFSTYALGLTAAATTDGTTAEQQLYRGAGHQQWTLIDVTPGPT0018775_274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FUCOSIDASE,PGPT0018775-fucA-K01206NANA
D1-29_001361011ccpA_1COG1609Catabolite control protein AATGGTTCGAGGGCGTGTCACCCTTCATGATGTCGCCGCCGAGGCGGGTGTTTCCAAGAGTTCCGTATCAAATGTGATCCGGAACCAGCCTCATGTTCGGGAGTCGGTCCGGAAGCGGGTCTACGATGCCATCGACAAGCTCGGGTACCGGCCGTTGGCTATCGGACAGAACCTGGTCACGGGCAGTACCGGTGTGGTGGCCCTGGCGATACCAAACTTCGCCCAGCCCTATTTCGCCGAGGTCGCCCGGGCTGCCGTAGCCGCTGCCTCGCGGCACGGACTCCGGCTCATTGTTCAGCAGACAGATAATGACCTGCTGCGTGAGCGGGAGGTTGCCGACGCGTGGAACCTTGGGGCCGCTGACGGCTTGATTTTCAGCCCCTCCACCATCACGGATGAGGAGATCGAGGAGCGGCGCGGCGGGATGCCCCTGGTCCTGCTCGGCGAGCGTTCCAAGCTCAAGAGCGTGGACCGGGTGGGAATCGACTCAGTGGCCATCGCCAAGCTGGCCACCCAGCACCTGATTGAGCAGGGCCGCCGGCATGTGGCCATGATCGGACACAAAGACACCGGGGACCCCTTCGTCGTTTCCGAGCGAGAAGAAGGGTTCCATAAGGCATTGGCAGAAGCCGGACTCGCTGAAGCAACACCGATCGGCTACGTGCAGGACTGGACGCGCCAAGATGGCGAGGCGGCTATGGAGGCCCTCCTGGAGCGGGGGGACAAAATCGACGCCGTCTTCTGCGCCAATGACCTGCTGGCCCTGGGGGCCATGAAAACATTGGCGAAGCGCGGCATCGCAGTACCCGCCGAGGTGGCCATTATTGCGGTGGACGACATCGAGGAGGCGTCATTTGCCAACCCTGGACTCTCCAGCGTGTTCATCGACCGGACCTGGATGATGGACAAGGCCTTCGCCTTCCTCACCGCCAGACTCAACGACCCCCTCTCCCCGCCCCAGCAGGTGGACGTTCCGTTCCGGCTGGAAGTAAGGTCATCCACCGGCGCCTGAMVRGRVTLHDVAAEAGVSKSSVSNVIRNQPHVRESVRKRVYDAIDKLGYRPLAIGQNLVTGSTGVVALAIPNFAQPYFAEVARAAVAAASRHGLRLIVQQTDNDLLREREVADAWNLGAADGLIFSPSTITDEEIEERRGGMPLVLLGERSKLKSVDRVGIDSVAIAKLATQHLIEQGRRHVAMIGHKDTGDPFVVSEREEGFHKALAEAGLAEATPIGYVQDWTRQDGEAAMEALLERGDKIDAVFCANDLLALGAMKTLAKRGIAVPAEVAIIAVDDIEEASFANPGLSSVFIDRTWMMDKAFAFLTARLNDPLSPPQQVDVPFRLEVRSSTGANANANANANA
D1-29_00137900hypothetical proteinATGCATTTCGTCACCGCTTCGGCTGTCCTGCTGACGCTGCTGGCTTCACTTCAGGGCTGCAGCAGCGATGGCGCGCAGCCAGGGCCCGAAGTAAGCGCCACTCCTGCCCTCACGGCCTCCCTCAACCAGTTCAGGGACAACTACAGCAAGCGGATCATTGAAATCCAGCTCACCAACAACACCGCCGATCCTGTCACAGTGACGGACGCGGAGCTGGACAGCGCCCTGTTCAGCTCTGGCATCAGGTGGCACGCTCCCGCCGAAGGCACCGTGCTGCCGCCCAAGCAGCCCAAGAGCCTGCCCGCCCAGCTGCCGGAGCCCAGCTGCACGGAAACAAGCGGGGGTACCGGGACAGGCAGCAACAGCCCGGACACCCGGCCCACCGTACGTGTCAGCACCCGCCCCGACAGCCACGGGGCCGGGCCGCTTACGGTTGAGGACCCGTTTGGGGTCCTTGCCCGGAACAACAGCGAGATGTGCCTGGACAAGGCAGTTCGTGAGATTGCCGCCTTCCAGCCGTCCCCCGAGCTGGTGGTCGCAGACGACGGGACAACCGCCGTCGTGCGTGTCCTTATCGTCCCCAAGCCGGCTCTTGAAGGGCAGGAGGTGCTGAGCATTGACCGGATCGACGGCACAACGCTGATTGCGGAGGACGCGGCCCGGCCTTGGCCGCGCGGTGTTCAGGTATCCGCTGGCGGTCCACCGGTGGAGCTGTCTCTGGCCATCCGCCCGGCGCGCTGTGATCCGCACGCTGTGGCAGAGGACAAGATAGGAACGCTGCTGCCCTTCCGCGTCACGGCAGGCGGGCGGAACGGAGTCCTCAAGGTCGACACCGGTGACGTGCTCAGGCACCGCATTTATGACTTCGTCACTGCTGCCTGCGCTACCTCGCGATCATGAMHFVTASAVLLTLLASLQGCSSDGAQPGPEVSATPALTASLNQFRDNYSKRIIEIQLTNNTADPVTVTDAELDSALFSSGIRWHAPAEGTVLPPKQPKSLPAQLPEPSCTETSGGTGTGSNSPDTRPTVRVSTRPDSHGAGPLTVEDPFGVLARNNSEMCLDKAVREIAAFQPSPELVVADDGTTAVVRVLIVPKPALEGQEVLSIDRIDGTTLIAEDAARPWPRGVQVSAGGPPVELSLAIRPARCDPHAVAEDKIGTLLPFRVTAGGRNGVLKVDTGDVLRHRIYDFVTAACATSRSNANANANANA
D1-29_00138816COG0589Universal stress proteinATGCGAACCAGGGTGGCGGTCGGATATGACGGCTCGGATGCGTCCAAGCTGGCCCTTCGATGGGCTGCGGAATACGCCGCGTCGTCCCAGGCGGTGCTGCGTATCATCCATGCCTGGATCTGGCCCATGTTCACCCACCATGTAGGTCCTGTGAAGGGCGTGGCGGACAGCGGCCTTCGCCGCGCGGCCGAGGATCTTCTGGCCGAGGGCGTGGAGCTTGCGCGCGGGATCTCACCCAGGTTGGAGCTCGAACCGCGAATGGTTGCCGGCCTGCCCGCCGACGTCCTGCGCCAGGAAACCCTTGATGCGGACCTGCTGGTGGTTGGCAGCCGCGGCCTGGGCAAATTCCTCGGCAAACTGGTGGGGTCTGTTTCCGTTGACCTGGCAGGGGCGTGCCCCTGCCCCGTACTGGTGGTCCGGGCCGCACCTGAGGAAGGAAAACCCGTGGTCGCCTGCCTCGACGGCCGGGTGAGGAGCAGCAAAGTCCTGGAGCAGGCTGTCATGGTGGCCCAGACCCTGCAGACGAAGCTGCGGATTGTCCACGTTGAGCCGCAGCTGCCGAAGGGGCGGCATGCTCCCTCGCAGTTCCATGGACGCGACGTCCTCCACAACGCCGCGCTCCGGGCGCAGGAGCTCAACCCGGATCTGGCGGTATCGGAGGAGCTTCTCTCCGGCCAGCACGTGGCGGCTGTGCTGGCTCAGGCCGGAGCGGACGCGGCGCTTCTGGTGTTGGGTGCCCACGGGCGCGAAGGACATAAGGGAACGCTGACCTACGTTCTGACCCACGCGCGATGCAACGTCATGATCGCGAGGTAGMRTRVAVGYDGSDASKLALRWAAEYAASSQAVLRIIHAWIWPMFTHHVGPVKGVADSGLRRAAEDLLAEGVELARGISPRLELEPRMVAGLPADVLRQETLDADLLVVGSRGLGKFLGKLVGSVSVDLAGACPCPVLVVRAAPEEGKPVVACLDGRVRSSKVLEQAVMVAQTLQTKLRIVHVEPQLPKGRHAPSQFHGRDVLHNAALRAQELNPDLAVSEELLSGQHVAAVLAQAGADAALLVLGAHGREGHKGTLTYVLTHARCNVMIARNANANANANA
D1-29_00139999hypothetical proteinATGGTCAAGATTGCACGCTGGAATCACGACGGCGGGACGCAGTCCGGTTTCGTAGACGGCGTCAGCTGCTACGCCCTGCCCGCGGGCCAGGGCGTCCAGACCCTGTTGGAGTCAGGACTCACGGAAACCCTGAATCTTGCCGGGCAGACCATTGGTTCCGTCCCTGCTGTTCCGCTGGCTGATGTGCACCTGCTCGCCCCGCTGGTGCCCGCCACCATCAGGGACTTCGTGGCGTTCGAGGAGCATGTTGAAGGGGTGCGGAAGAGCATCGACGGCGTGGCCGGCGTGGTGCCCGAATGGTACGAGGCGCCCACGTTCTACTTCACCAACCCGCACACGGTGACCGACACCGGCGAGGTGATCGGTATTCCGGCCGGCTGTACGGACCTGGACTTTGAAACGGAAGTGGCCGCCGTCGTCGGACGCGTTCCCGGAAGTAGCGGCCGGAACCTGACCGCGGAGGAGGCGCACCGCCATATCTTCGGCTACACCGTCCTCAATGACTGGTCCGCGCGGGACCTGCAGCGCCGCGAAATGAAGGTCAGCCTCGGGCCGTGCAAGGGCAAGGACTTCGCCAACACGCTGGGCCCTTGGATCGTCACTGCCGACGAGTTCGAGGACCGGCACGATGCCGAAGGGTTCCTGCCCATCTCCATGGCTGTCGAGGTCAATGGGCAAGCCATCGGGCAGGACCTGCTGTCCAACATGGGCTGGCCGTTCGCGGAACTGGTGGCGTACGCGTCGCAGGATTCGGTGGTACGGCCAGGCGACGTCCTGGGCTCCGGCACCTGCGGCACGGGCTGCCTCGCCGAGCTCTGGGGCCGGAATGGTTCAAAGACTCCCCCGCCACTAAAGACCGGCGACGTGGTGCGCATGACCGTTGAAGGCATCGGGACCATCGAGAACACGGTGGGTGCCCGGCGGGAGGCGGTGACCCGGGTTCCTGCCCGGCGGCGGCCGCGCAACCGGGTTGCATCTGCGGCTCCTTCCGGGGCCTGAMVKIARWNHDGGTQSGFVDGVSCYALPAGQGVQTLLESGLTETLNLAGQTIGSVPAVPLADVHLLAPLVPATIRDFVAFEEHVEGVRKSIDGVAGVVPEWYEAPTFYFTNPHTVTDTGEVIGIPAGCTDLDFETEVAAVVGRVPGSSGRNLTAEEAHRHIFGYTVLNDWSARDLQRREMKVSLGPCKGKDFANTLGPWIVTADEFEDRHDAEGFLPISMAVEVNGQAIGQDLLSNMGWPFAELVAYASQDSVVRPGDVLGSGTCGTGCLAELWGRNGSKTPPPLKTGDVVRMTVEGIGTIENTVGARREAVTRVPARRRPRNRVASAAPSGAPGPT0001615_276DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0001615-faaH-K16171NANA
D1-29_001401086hypothetical proteinATGAGCACCCGCCCTCTGGAAGAACTTCGGGAAGAAGCACCCACGGTGGACGTCCACGCCCACATCCTGCTTCCGGCCCTGCAGCAGCTGGTGGCTGAGGCCGATCCCGAAGGCTTCGGCGCGCAGCAGGGCTTGGAGGTACGGCGCAACGGACCGGAATCGATGGCCGCCTCGGGCCGGATGATCCAGGAGCGCTGGCCGCAGCTGACAGACCTGGACCGCCGGCTTGCTGACATGGATGCCCAGGGCGTGGACGTGCAGCTGGTCTCGCCGTCGCCGTCGCACTTCTACTACTTCGCCGGCCAGGAGCTGGCCCTGCAGCTGGCGAAGGCCGCCAATCAGGCGGTCCGCGAGTTCGTTGCCCGGGCGCCGGAGCGGCTCAACGGCCTGGGCCTGGTTCCGCTGCAGCACCCGGCGCTGATGGTGGAAGCCCTGGAGCACGCGGTGCTGGAATGCGGTCTGCTCGGGGTGGAACTCGGCTCGTTCGCGGCAACGCCGGACAACCCGGCACGCAGCACCGTCGAGCTCTCCGACGCCCGGCTCGAACCATTTTGGAGCCGGGCGGAGGAGCTGGGCGCCCTCGTGTTCCTGCACCCCTTCGGCTGCTCACTGGATGAGCGACTGGACCGGTTCTATCTCGCCAACACGGTGTCCCAGCCAGCCGAAAACGCCGTGGCCCTGTCCCACCTGATCTTCAGCGGAGTCCTGGACCGGCACCCGGAACTGAAAGTCCTGGCCGCACACGGCGGCGGCTACCTTCCCACCAGCCTGGGCCGCTCCGACCACGCGTGGAGGGTCCGGCCGGAGGCACACGGCTGCGCCCAGCCGCCGTCGTCCTACCTAAAGAAGCTCTATTTCGACTCACTGGTCCACAGTGCCGCCGAGCTGCGAGCGCTGGTGGCCGCCGCCGGCCCGCAACGGGTGCTGCTCGGCTCGGACTACCCCTTCGACATGGGCTCCGACCATCCCGTACGGGAAGTCCGTGACGCCGGTTTGCCAGCAGCGGATGAAGCCCAGGTCCTGGCGGGAAACTCCGCCGCGCTGGGCATCACGGCCGCTTCAGTCCCCGCCCGCCGCACAGCCTAAMSTRPLEELREEAPTVDVHAHILLPALQQLVAEADPEGFGAQQGLEVRRNGPESMAASGRMIQERWPQLTDLDRRLADMDAQGVDVQLVSPSPSHFYYFAGQELALQLAKAANQAVREFVARAPERLNGLGLVPLQHPALMVEALEHAVLECGLLGVELGSFAATPDNPARSTVELSDARLEPFWSRAEELGALVFLHPFGCSLDERLDRFYLANTVSQPAENAVALSHLIFSGVLDRHPELKVLAAHGGGYLPTSLGRSDHAWRVRPEAHGCAQPPSSYLKKLYFDSLVHSAAELRALVAAAGPQRVLLGSDYPFDMGSDHPVREVRDAGLPAADEAQVLAGNSAALGITAASVPARRTANANANANANA
D1-29_001411125auaG_1Aurachin C monooxygenase/isomeraseATGGCAGCAGTACAGAATGTCGGAATCGTCGGAGCGGGAGCCGCGGGACTGACCGCTGCCATCCTCCTGGCAGACGCCGGGGTCCGCGTCGAAATCCTGGAAAAGGCCGACGAACCCCAGCGGGTTGGTTCGGGAATCACCCTGCAGGGGAACGCCCTGCGCGTTTTCAAGCAGCTTGGAGTCTGGGAGCAGGTCGAGGCGAAGGGCTATGCCTTCAGCACGCTCGGACTGCGCGCCCCGGATCCCGCCGGGACCGTCATCGCGGTCCTGGAGGACATCCGGACCGGGGGCGAGGACCTGCCCGCCACCCTGGGCATGTACCGCCCGGACCTCACCGCCATCCTCCGCGAGCGCGCACTGCAGGCCGGCGCCGTGATCACGTACGGAAAGACTGTCACGGGGGTAACGGACGACGGCGGCAGCGTCACCGTCAGCACGGCCGACGGTGCCTCCGCCACCTACGACCTCCTCATCGGCGCCGACGGCCTGCACTCCGCTGTCCGCAAGGCCATCGGCATCGACGTGGAGCCCGTTGGCACCGGCATGGGGATCTGGCGGGCGTTCGTGGAACGGCCGGAGGAGGTAGTCCGCACCGACCTCACCTACGGCGGGCCCTGCTTTATTGCCGGGTACACCCCCACCGGCCCGGACACCATCTACGCCTTCCTGGTCGAAAAGGCGCAGGAGCGCCGGCACGAGGACGGCCCCCGCATCATGGCTGAACTCGCCGCAGCCTATGGCGGCCCGTGGAATGAAATCCGCGAAAACCTGGATCACACGGCAAACATCAACTACACGAGGTTCACCAGCCACATCGTGGACGGACCGTGGCACCGGGGCCGGACCGTCATCATCGGGGACGCCGCGCACAGCTGCCCGCCCACGGTGGCGCAGGGCGCCGCCATGGCCCTGGAGGACGCCGCCGTCCTGGCTGAGCTGCTTATCAACGCCGACCACATCACGGAGACGCTCTGGAAGGAGTTCTCCGACCGGCGCCTGGACCGGGCGCGCACCGTGGTGCAGGGCTCGGTCCAGCTGGGCCAGTGGATGCTTGACGGCGTCCGGGACGCCGATGTGCCGGGCCTGATGCACTCCCTCTCCACCATGCTGAAGCAGCCCGCATGAMAAVQNVGIVGAGAAGLTAAILLADAGVRVEILEKADEPQRVGSGITLQGNALRVFKQLGVWEQVEAKGYAFSTLGLRAPDPAGTVIAVLEDIRTGGEDLPATLGMYRPDLTAILRERALQAGAVITYGKTVTGVTDDGGSVTVSTADGASATYDLLIGADGLHSAVRKAIGIDVEPVGTGMGIWRAFVERPEEVVRTDLTYGGPCFIAGYTPTGPDTIYAFLVEKAQERRHEDGPRIMAELAAAYGGPWNEIRENLDHTANINYTRFTSHIVDGPWHRGRTVIIGDAAHSCPPTVAQGAAMALEDAAVLAELLINADHITETLWKEFSDRRLDRARTVVQGSVQLGQWMLDGVRDADVPGLMHSLSTMLKQPANANANANANA
D1-29_001421038hypothetical proteinGTGACCACTCAGGACACAGCACCAACCACCGCCACCGGAGAATCGGCCGATACCCCGGTGATCCGCCGTGACGACCCGCTGGGCAGCATCCGCGCCATGGCCAAGGCCCACAACAACTGGGGCCGCTGGGGCGAGGACGACGTCCTGGGAACCCTGAACTTCATCGACGCGGCCAAGCGCATCGAAGCCGCGGCACTGGTGAAGACCGGCGAGGCCTTCTCACTGTCCCAGCCGTTCGACACCAACGGCCCCCAGAAGGGCTGGCGCCGCCGCACCAACCCCGTCCACACCATGACGGACACCGGGGTGGACGCCGAACGCGGCAACCAGGGCTTCCCGCACGGCTTCGGCGGTGCAGACGACGTGATCGCCATGCCGCTGCAGTGCTCCACGCAGTGGGACGGCCTGGGCCACATCTTCGACCAGGGCAAGGCCTGGAACGGCCGCGCCGCCGGCGACGTGGTCACCTCCGAAGGCGACCTGGTGACCGGCATCGAAACCGCCGCAGCCAAGATCGTCACCCGCGGCGTCCTGCTGGACGTTGGCCGTGCGCTCGGGCCGGAACTGGGAAGGAACGACGGCGAGCTGCCGGACGGTTTCGCCATCACCCCGGAGCACCTGGAGCGCACCATCGAACTGCAGGGCGCCACTTCCAGGGTAGGCCGCGGCGACATCGTGGTGATCCGCACCGGGCAGCACACCAGGGTCCGCCGTGACGGCTGGGGCGACTACGCCGGCGGCTCGGCACCCGGGCTGTCCTTCACCACCGCGCCCTGGCTGCACGAAAGCGAAATCGCCGGGATCGCCACCGATACCTGGGGCTTCGAAGTCCGCCCCAACGAGTTCGACGGCGCCTTCCAGCCCCTGCACCAAATCGCCATCCCCAACCTCGGGCTTTTCCTGGGCGAGATGTGGGACCCGGACCTCCTGGCAGAGGCATGTGCAGCGGACGGCAGGTACGACTTCCTGCTGACCGCGGCGCCGCTTCCCATCACCGGCGCCGTGGGCTCACCCGTAAACCCCATCGCCCTCAGGTAGMTTQDTAPTTATGESADTPVIRRDDPLGSIRAMAKAHNNWGRWGEDDVLGTLNFIDAAKRIEAAALVKTGEAFSLSQPFDTNGPQKGWRRRTNPVHTMTDTGVDAERGNQGFPHGFGGADDVIAMPLQCSTQWDGLGHIFDQGKAWNGRAAGDVVTSEGDLVTGIETAAAKIVTRGVLLDVGRALGPELGRNDGELPDGFAITPEHLERTIELQGATSRVGRGDIVVIRTGQHTRVRRDGWGDYAGGSAPGLSFTTAPWLHESEIAGIATDTWGFEVRPNEFDGAFQPLHQIAIPNLGLFLGEMWDPDLLAEACAADGRYDFLLTAAPLPITGAVGSPVNPIALRNANANANANA
D1-29_00143945hypothetical proteinATGCCTGAAGCAACATATGCCCTGATCCGCTTCCAGGAGGCGGGCGACGGCAAAGCCCGTGCGGGCCTGCTGGTGGGTGACCGGGTACTTCCGCTGGACGGGGACATCAACTCCCTGATCGAGCACTGGGAAACAACCGAAGCTCAACTGGACGCCCTGGCCGCCTCGGCAGGCGGGGATACCGGCCTGGCGCTGGCCGACGTCGAGGTTCTCGCCCCGGTGGAGCCAGTCCAGGTCCTGCAGACCGGCGCGAACTACCGCAAGCACGTGATCGACCTCGCCGCCGCGCACCGCGAACCGGGCCAGGACGAAGAGGAAGTGCGCGCCAAGACGGCGGCAATGATGGACAAGCGCGCAGGCCAGGGAACGCCATACTTCTTTATCGGGCTCCCCACGGCGATCGCTTCCGCCACGGACGACCTCACCCTTCCGTCCTACAGCACGTCGCACGACTGGGAGCTGGAGCTCGCTGCGGTGATCGGCAAAACAGCGTTCCGGGTCACCCCGGAGGAAGCCCTGGACTACGTGTTCGGCTACACCATGGTCAACGACATCACCACCCGGGAATACGTCTTCCGCAAGGACATGCCGGCTATCGGCTCGGACTGGTACCGCGCCAAGAACGCGCCCGGCTTCCTGCCCACCGGACCGCTGCTGGTGCCCGCCAAGTTCTTCGGCGATCCGCAGGACGTCCAGGTGACACTGAAGCTCAACGGCAAGCCAATGCAGGACGAGTCCACGCAGGACATGATCTTCGGCGTGGCCAAGCTGGTCAGCGAAGCCTCGCAGATCATGCCGCTGCGGGCCGGCGACCTGGTCCTCACCGGCAGCCCGGCCGGCAACGGCCAGCACTGGGGCCGGCTGCTCCGGGACGGCGACGTGATGGAAGGCACCATCACTGGCCTGGGCACCCAGCTGATCCATTGCAAGGACGAAGTCCAGTGAMPEATYALIRFQEAGDGKARAGLLVGDRVLPLDGDINSLIEHWETTEAQLDALAASAGGDTGLALADVEVLAPVEPVQVLQTGANYRKHVIDLAAAHREPGQDEEEVRAKTAAMMDKRAGQGTPYFFIGLPTAIASATDDLTLPSYSTSHDWELELAAVIGKTAFRVTPEEALDYVFGYTMVNDITTREYVFRKDMPAIGSDWYRAKNAPGFLPTGPLLVPAKFFGDPQDVQVTLKLNGKPMQDESTQDMIFGVAKLVSEASQIMPLRAGDLVLTGSPAGNGQHWGRLLRDGDVMEGTITGLGTQLIHCKDEVQPGPT0001745_51DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
D1-29_001441020bphC_1Manganese-dependent 2,3-dihydroxybiphenyl 1,2-dioxygenaseGTGGAAACTCCCCTCTCCCATCTTGCCCACCTCGAGATCACCACCCCCGACGTCGAAGCCTCCGCCAAGTTCTACGAGGAAAAGTTCGGCATGCGCATCATCGACCGCGTGGGCGGCAACGTCTACCTGCGCTGCTGGGGCGACTACTACCGCTACAGCCTGGTCATCACCGAAGGACCTGAGGCGTCGCTGGGCCGGATGGCGTGGCGCACCAACTCCCAAGCTGCCCTCGAGGCCGCCGCCCAACGCGTCGAAGCATCAGGTGTCCAGGGCAGCTGGACTGCCGGCGGCCACGGCTACGGCAAGGCCTACGAATTCACTGGCCCCTACGGGCACCGCATGCGCCTGTTCTTCGATGTCGAGAAGTTCGTCGCGGAACCCGGTTTCGAGTCCACCTACCCGGACCGGCCGGAGCGCCGCAGCAGCCACGCCGCCGCACCCCGCTTCCTGGACCACGTCACCGTGGCGTCCTCCGATGTCCGCGGCTTCGCCAAGTGGTACAACGAGGCCCTGGGCTTCCGCGTCATGGCATTCGTTGACCTGGACGAGGCACCCATCACCGTATTCTCCGTGCTGACCACCAACGAAAAGTCCCACGACCTCGGCGTGGTCCTGGACACCTCCAGCCGCGCCGGCCGCGTCAACCACATCGCGTTCTGGGTGGACGCCACCGAGGACCTACTCCGCACCGCCGACGTCATGATGGAAAACGGCACCCCGATGGAATACGGCCCCTCCATCCACGGTGTGGGCGAGCAGAACTTCCTGTACTTCCGCGACCCCTCCGGCCTGCGGGTGGAGCTCAACTCCGGTGGCTACCGCAACTACGTCCCGGACTGGGAAGCGAACACCTGGAAGCCGTCGCTGGGCTCCAACAACTTCTACAAAAACGGCGCCATGCCGCACTCCATGACCGAATCCTTCCCGCCGGCCGAAGGCTTCACCGCCACCGAAGAAGGCGCCTCCCCCGAGATGAAGGAAGCCCTGCTCAACCCCTACGCCAAGCAAGGACGGGGCTAGMETPLSHLAHLEITTPDVEASAKFYEEKFGMRIIDRVGGNVYLRCWGDYYRYSLVITEGPEASLGRMAWRTNSQAALEAAAQRVEASGVQGSWTAGGHGYGKAYEFTGPYGHRMRLFFDVEKFVAEPGFESTYPDRPERRSSHAAAPRFLDHVTVASSDVRGFAKWYNEALGFRVMAFVDLDEAPITVFSVLTTNEKSHDLGVVLDTSSRAGRVNHIAFWVDATEDLLRTADVMMENGTPMEYGPSIHGVGEQNFLYFRDPSGLRVELNSGGYRNYVPDWEANTWKPSLGSNNFYKNGAMPHSMTESFPPAEGFTATEEGASPEMKEALLNPYAKQGRGPGPT0005055_173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-29_00145822kipR_1COG1414HTH-type transcriptional regulator KipRATGACTGCAGCAGAATCCAGTGAGACCCCAGGCAACGGCGATACCAAAGGCGCCTCCGTCATCGTGAACGCCATCGCCGTCCTCCGCACGTTCACCGCTGAGGAGCCCCTGCTCGGCGTCACCGAGATCGCGAACCGCGTTGGGCTGCACAAAAGCACGGTGTCGCGGATCCTCGCCACGTTCGAGCAGGAACATTTGGTGGAACGGGACGCGGAGACGCGCCGGTTCCGGCTGGGGCTGGGACTGATCGCGGTGGCCGGCCCGCTCCTGGCTGAGCTTGAAGAGCGGCGGGTGGCCTATCCGGTCCTGCGCGAGCTCGCGGAGCAGACCGGCGAAACCAGTGCGCTGATGGTGTGGAACGGTTTGGAGTCCATGTGTGTGGAACAGATTGCCAGCCACCAGCAGATCAAACACACCACCCCGCTGGGTGCCAGGTACCGGGACGCCATGAGCTCTTCGGTGCAGGTTTTCCTGGCCGCGGAACCAGCCGAGCGCGTCCGGTCGCTGCTGCGCGGCGGAGCCATCACGTATCCCGGCCTGGACGACAGCAGCCTGGAGGCATACCTCATCCGGCTCAAGGAAGACCTGAACCGGGGCTGGGCAATCAACTACGGGGAATCTTCCATCGACGAGGTGGGCGTCGCGGCCCCCGTCCATGACCACCGCGGCGACGTGGTGGCCGCCGTCCTGATCCCGGCGCCCAAGTTCCGCGTCTCCCCGGACAGGCTGCAGAGCCTGGGGGAAGCCTGCGCCGCTGCCGCGCAGAAAGTCACCGCCCGCCTGGGTGGGCGCGCTCAGGAACCTTCTGCCCGTCCCAACTAGMTAAESSETPGNGDTKGASVIVNAIAVLRTFTAEEPLLGVTEIANRVGLHKSTVSRILATFEQEHLVERDAETRRFRLGLGLIAVAGPLLAELEERRVAYPVLRELAEQTGETSALMVWNGLESMCVEQIASHQQIKHTTPLGARYRDAMSSSVQVFLAAEPAERVRSLLRGGAITYPGLDDSSLEAYLIRLKEDLNRGWAINYGESSIDEVGVAAPVHDHRGDVVAAVLIPAPKFRVSPDRLQSLGEACAAAAQKVTARLGGRAQEPSARPNPGPT0000860_41DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ALLANTOIN_USAGEN-AQUISITION-ALLANTOIN_METABOLISM,PGPT0000860-allR-K10973NANA
D1-29_001461257CreatinaseATGACCACCACAGCATCAGATAACGCCACGTCCGTCGCCGAACTGGAGCGCACGAAAGTCCTTAACAACGGCGAGAAGGTCCGGCTGACCTTCTCGGATACGGAGTTTGAACGCCGGCTGGCCGGTCTCCGCCGGATCATGGCAGAGAAGGAACTGGACGCCGTCGTCCTTACCAGCTACCACTCCATCAAGTACTACTCAGACTTCCTGTTCACCTACTTCGGCCGCTCCTACGCCATGGTTGTCACCAAGGACGACACCGTCACGGTCACGGCCAACATCGACGCCGGGATGCCCTGGCGCCGCAGCTACGGCGACAACCTCGTGTACACCGACTGGCGCCGGGACAACTACATCTTTGCCATCCAGGAGGTCCTGCGGACCCGCGGCATCAACCCGCGCCGCCTCGGCGTCGAGGACGATTCCCTGCCGCTGGACAACCGGAACAAGATCCAGGTGGCCTTCGCGTCGGCAACCCTGGTGGACGTGGCCCAGGCGGCCATGCGCCAGCGCATGTTCAAGTCAGCAGAGGAAATCGAGGTCATCAAGCACGGTGCGCGGATCGGCGACCTGGGCGGCGAGGCCATCCGCAATGCAATCCGTGCAGGGATCACCGAGTACGAGGTGGCTTTGATCGGCACCGAAGCCATGGTCCACGAGATCGCGCGGACCTTCCCGGATTCGGAAATCCGCGATACCTGGGTCTGGTTCCAGTCCGGCATCAACACCGACGGTGCCCACAACTGGGCCACCACCCGGAAGATCCAGGAACACGACATCCTGTCCCTGAACTGCTTCCCCATGACCTCCGGGTACTACACCGCACTGGAGCGCACGCTGTTCTTCGGCGAACCCGACGCGCGGTCGCTGGAGCTGTGGAACATCAACGTGGAGGTCCACAAGCGCGGCCTTGAGCTGATCAAGCCAGGCGCTGTCTGCAAGGACATCGCCGCGGAACTGAACGAAATCTATGTGGGCCATGGCCTGCTGGCCAACCGCACGTTCGGCTATGGCCACTCCTTCGGCGTCCTGAGCCACTACTACGGACGCGAGGCCGGGCTGGAACTGCGCGAGGACATCGACACGGTGCTGGAACCGGGAATGGTGGTGTCCATGGAGCCCATGATCACCGTCCTTGATGGCCAGCCCGGCGCGGGCGGCTACCGCGAGCACGACATTCTGGTGGTAGGCGAGGACGGCGCGGAGAACATCACTAAGTTCCCGTTTGGACCCGAGCACAACATCGTGGGCGCTTAGMTTTASDNATSVAELERTKVLNNGEKVRLTFSDTEFERRLAGLRRIMAEKELDAVVLTSYHSIKYYSDFLFTYFGRSYAMVVTKDDTVTVTANIDAGMPWRRSYGDNLVYTDWRRDNYIFAIQEVLRTRGINPRRLGVEDDSLPLDNRNKIQVAFASATLVDVAQAAMRQRMFKSAEEIEVIKHGARIGDLGGEAIRNAIRAGITEYEVALIGTEAMVHEIARTFPDSEIRDTWVWFQSGINTDGAHNWATTRKIQEHDILSLNCFPMTSGYYTALERTLFFGEPDARSLELWNINVEVHKRGLELIKPGAVCKDIAAELNEIYVGHGLLANRTFGYGHSFGVLSHYYGREAGLELREDIDTVLEPGMVVSMEPMITVLDGQPGAGGYREHDILVVGEDGAENITKFPFGPEHNIVGAPGPT0013580_32DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013580-CREATINASE-K08688NANA
D1-29_001471407proP_1Proline/betaine transporterATGAGTAACGAAACTCCCTCCCCGTCTCCTCTTGCGGGACGTGCAGGCCAAGAGTCGAATAGCGGGTATGACGGCTCTTTGTCCGGAAGCAGCACGTTGACCGGCCGGAGACTTGACCAGACCAGCAACGGCGTCAGCAAAGACACCCGCCGCAGAGTGGTGGCGGCCAGCTTTATCGGCAACTTTGTTGAATGGTTCGATTACGCCGTTTACGGCTATTTGGCCGTAACCATCGCCACTGTCTTTTTTCCAGACTCAGACCCTCAAACCGGACTGCTGCTGACGTTCGCCCTGTTTGCGATTTCATTCCTGGTGCGCCCACTCGGCGGGTTCGTCTGGGGGCATATCGGTGACAGGGTGGGCCGGCGGACAGCTCTCTCCCTTTCCATCCTGATCATGTCAGGGGCAACATTCTGTATTGCCCTGATCCCCGGCTACGCCACGATCGGCATCTGGGCCCCCGTCCTGCTCCTGCTGATTAGGGTGGTGCAGGGGTTCTCCGCCTCCGGTGAGTACGCCGGGGCGTCAGCCTTCCTGGTGGAGTACGCTCCAGCCAACAGGCGCGGCCTGTATGCGGCCGTGGTTCCGGCCAGCACCGCCGCCGGCCTGCTCCTCGGCTCCCTGATGGCGGGCCTGCTGACAGTCCTGCTGAGCTCCGACGCCATGCAAGGCTGGGGCTGGCGGCTGCCGTTCCTGCTGGCAGCACCCATGGGCCTCATCGGCAGGTACATCCGGACCAGGCTCGAAGACACCCCAGTGTTCCGCGAATTGGCGGCCGAAGGCGAGGCCGTGAAGGCACCGGTGTCCAGCCTGTTCCGGAACCACTGGCGGCAGCTGCTGCAGGCCGTCGGAGCAGTGCTGCTCAACGCCGTCGGGTTCTACGTGATCCTCAGCTACATGCCCACTTATCTGTCCTCGGAACTGGGCCTCGGCGCGACCGAATCGTTCCTCGCCACTACCATCGCGCTGGTTACCTACATCGGCTTTATCTTCCTGACCGGCATGCTCTCGGACCGTTACGGGCGCAAGAAGGTGCTGATCACCGCCTCTGTCACCTTCATCCTGCTGACCGTGCCCGCGTTTGCCCTGCTGGGAACCGGAAACTTCCTGGTCATCGTCCTGGTGCAGATCCTGCTGGGCGCCATGCTCACCCTCAACGACGGGACGCTTCCCAGCTTCCTGGCCGAGATGTTCCCCACCCGGGTCCGCTACAGCGGCTTCGCGGTCAGCTTCAACCTCTCCAATGCGCTCTTCGGCGGCACCGCCCCGTTTATGGCCACGCTGCTGATAGCGGCCACCGCCAGTGACCTGGCTCCGGCGTGGTACCTCGTGGCCGCGGCCGTCATCTCGCTGATCGCCGTCGCCCTCTCCCGCGAAACCTGCAATGAACCGCTGCGCCACGAATAGMSNETPSPSPLAGRAGQESNSGYDGSLSGSSTLTGRRLDQTSNGVSKDTRRRVVAASFIGNFVEWFDYAVYGYLAVTIATVFFPDSDPQTGLLLTFALFAISFLVRPLGGFVWGHIGDRVGRRTALSLSILIMSGATFCIALIPGYATIGIWAPVLLLLIRVVQGFSASGEYAGASAFLVEYAPANRRGLYAAVVPASTAAGLLLGSLMAGLLTVLLSSDAMQGWGWRLPFLLAAPMGLIGRYIRTRLEDTPVFRELAAEGEAVKAPVSSLFRNHWRQLLQAVGAVLLNAVGFYVILSYMPTYLSSELGLGATESFLATTIALVTYIGFIFLTGMLSDRYGRKKVLITASVTFILLTVPAFALLGTGNFLVIVLVQILLGAMLTLNDGTLPSFLAEMFPTRVRYSGFAVSFNLSNALFGGTAPFMATLLIAATASDLAPAWYLVAAAVISLIAVALSRETCNEPLRHEPGPT0013645_908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013645-proP-K03762NANA
D1-29_001481104S-(hydroxymethyl)mycothiol dehydrogenaseATGGTTCACAAAGTCAAGGCAGTCATCGCCAAGGAAAAGAATGCTCCGGTTTCGGTGGAGACCATCCTGGTGCCGGACCCGGGACCGGGCGAGGCCTTGGTGGACATCCTCACCTGCGGCGTCTGCCACACTGACCTGCACTACAAGCAGGGCGGAATCACTGACGATTTCCCCATCCTGCTGGGCCATGAAGCCACCGGCGTGGTCAGTGCAGTAGGCGCCGGCGTCACCGACGTGGCGCCAGGGGACCGGGTGATTCTTAACTGGCGTGCCGTGTGCGGCCACTGCCGGGCCTGCGCCAAGGGGCAGCCGCAGTACTGCTTCAACACCCACAACGCCACACAGAAGATGACCCTCGAGGACGGCACCGAACTTTCGCCGGCCCTCGGTATCGGCGCCTTCGCCGAGAAAACGCTGGTGGCCGCCGGGCAGTGCACCAAAGTGGACGACGACGTGGATCCCGCTGCCGTGGGGCTGCTTGGCTGTGGGGTGATGGCCGGCATTGGCGCCGCGATCAACACCGGCGAGGTCAAGCGCGGCGAGTCCGTGGCCGTGATCGGCTGTGGCGGCGTAGGCATCGCCGCGATCGCCGGGGCGAAACTGGCGGGTGCCACCACCATCATTGCGGTGGACATCGACGCCAACAAAGTGGAGCTGGCCAAGTCCCTGGGCGCCACCCACGGGATTGATTCCTCCACGACTGACCCCGTCGAGGCCATCCGGGCCCTCACCGGAGGCAACGGCGCCGATCTGGTGATTGACGCCGTCGGCCGTCCTGAAACGTACAAGCAGGCGTTTTACGCCCGCGACCTTGCCGGCCGCGTGGTGCTGGTGGGCGTCCCGACGCCGGACATGAAGCTTGAGCTGCCGCTGCTGGATGTTTTTGGCCGGGGCGGCTCGCTGAAGTCCTCCTGGTACGGGGACTGCCTGCCCTCCCGGGACTTCCCGATGCTGGTCCAGCATTACAAGCAGGGCAACCTGGACCTGGACGCCTTTGTGACCGAGCGGATCACCATCGACCAGGTGGAGGAGGCGTTCGCCAAAATGCACGAGGGCAAGGTCCTCCGCTCCGTGGTTGAACTCCCTGCGGCGGTGCAGCTCTGAMVHKVKAVIAKEKNAPVSVETILVPDPGPGEALVDILTCGVCHTDLHYKQGGITDDFPILLGHEATGVVSAVGAGVTDVAPGDRVILNWRAVCGHCRACAKGQPQYCFNTHNATQKMTLEDGTELSPALGIGAFAEKTLVAAGQCTKVDDDVDPAAVGLLGCGVMAGIGAAINTGEVKRGESVAVIGCGGVGIAAIAGAKLAGATTIIAVDIDANKVELAKSLGATHGIDSSTTDPVEAIRALTGGNGADLVIDAVGRPETYKQAFYARDLAGRVVLVGVPTPDMKLELPLLDVFGRGGSLKSSWYGDCLPSRDFPMLVQHYKQGNLDLDAFVTERITIDQVEEAFAKMHEGKVLRSVVELPAAVQLPGPT0006355_3496DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
D1-29_00149621gloB_1Hydroxyacylglutathione hydrolaseATGGCCGCCACCATCGAGAACCTGGTCACCTCGGGCACGTTTTCGCTCGACGGCGGCACCTGGGACGTGGACAACAACGTCTGGATCGTGGGCAATGACGAGGAATGCGTCATTATCGACTCGCCGCACGACGCAGCAGCGATCATCAGCCAGGTCCGCGGCCGGAGGGTACTGGCCATCCTGCTGACCCACGCGCACAACGACCACATCGGCGCCGCGCGGGAAGTTGCCGAGGCAGTGGACGCCCCGATCTGCCTGCATCCTGACGAACTGATGCTGTGGGAACAGGTCTATCCCGGCGGCAAGCCGGACCGGGATCTGGCCGACGGTGACGTGTTCGAAGTCGCAGGCGCCACGCTGCGGGCCATCCATACCCCCGGCCACTCGCCCGGCTCCACGTGTTTCTACCTGGAAAGCGAAGGGACAGTCTTCACCGGAGACACCCTCTTCAACGGCGGCCCCGGCGCCACCGGCAGGTCCTACAGTGATTACCCCACCATCCTGGCGTCAATCCGGGATCGCCTGCTGACCCTCCCGCCCGAAACGGTGGTGCGTACCGGCCACGGCGACAGCACCACCATCGGAGCGGAGCGGGAGACGCTGGCGAAGGTTTCGCAGTAGMAATIENLVTSGTFSLDGGTWDVDNNVWIVGNDEECVIIDSPHDAAAIISQVRGRRVLAILLTHAHNDHIGAAREVAEAVDAPICLHPDELMLWEQVYPGGKPDRDLADGDVFEVAGATLRAIHTPGHSPGSTCFYLESEGTVFTGDTLFNGGPGATGRSYSDYPTILASIRDRLLTLPPETVVRTGHGDSTTIGAERETLAKVSQPGPT0001770_7680DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
D1-29_001502301COG0243putative oxidoreductaseATGAAGTTCGGGAAACAGCCCGCCCCCGTCGCGGACATCAACGAGGACGAACTCTCCGTCCACAAGCCCAAGACCGAGGCCGCCGGCGTCAAAGCTGTGTTTGTGGCCCTGGAGCGTGCCGTTGCCCAGGCCGGGGTGCCCCGCACGGCACAGTCGCTGCTGCGGCTCAACCAGCGCGGCGGGTTTGACTGCCCGGGCTGCGCCTGGCCGGAGTCGGACAAGAAACGCAAGGCCGCCGAGTTCTGCGAGAACGGTGCGAAGGCCGTGGCCGAGGAAGCCACCCTGCGGACCGTGGGGGCTGAATTCTGGGCCCGGCATTCCATTGCCGATCTGGCCGGGAAGACAGAGTACTGGCTGGGCAACCAGGGCCGGCTGAGTGAGCCGGTGGTGATCCGCGAGGGGGAAACCCACTATTCGCCGATTTCCTGGGCTGACGCGTTTGAACTGATCGGCGAACATGTCCGGGCCAGCACGCCGGAACGCTGCGTCTTCTACACCTCCGGCCGAACAGCCAACGAGACAGCATTTATGTACCAGCTCTATGCCCGGGCCTTGGGAACCAACAACCTGCCGGACTGCTCCAACATGTGCCATGAGTCCTCCGGCTCGGCCCTGAACCCGACCATCGGGATCGGCAAGGGCACGGTGTCGCTGGATGACATCCACGATTCCGAGCTGATTTTTGTGGTGGGGCAGAATCCCGGCACCAACCACCCCAGGATGCTCTCGGCGCTGAAGGACTGCAAGGACAGGGGCGGCAAGGTGGTGGCGGTGAACCCGTTGCCGGAGGCCGGCCTGTTCAACTTCAAGGATCCGCAGACCGTTTCAGGTGTGGTGGGCGGCGGCACGCCGCTGGCCGACGAGTACCTGCAGATCAAGGTGGGCGGGGACCTGGCGCTGTTCCAGGCGCTGGGCCACCTGCTGTTCCTGGAGGAGGAACGGAACCCGGGTTCCGTCGTCGACCGTTCCTTCATTGACGCCCAGACGGACGGTTTTGAGGCTTACCGTGAGGCCCGCAAGGAACTGGACTGGGCCGAGACGGAGAAGGCCACCGGCCTGTCCCGGGAGCAGATCGAAACTGTGGCCGGGATGCTTATCAGGTCCAAGGCCACCATCTTCTGCTGGGCCCTGGGTGTGACGCAGCAGCCGCATTCGGTGGACACCATCAAGGAAATGGTCAACGTCCTGCTGCTGCAGGGCAATTTCGGCAAGCCGGGCGCTGGTGCCTGCCCGGTCCGCGGGCACTCCAACGTCCAGGGCGACCGGACCATGGGGATCTGGGAGAAGCCAAAGGAGTGGCTCCTGGATGCGCTGGATTCCGAGTTCGGGATCCAGTCCCCGCGGCACCACGGCTATGACGCCGTGGAGGCCATGGAAGCGTTCGAACGGGACGAGGTGGACGTTTTTGTGTCCATGGGCGGAAACTTCTCCCTGGCGTGTTCGGACACCGAAACCCTGGAAGCCGGAATGCAGCGGATCGGCCTGACCGTCCACATTTCCACCAAGCCGAACCGGTCCCACGTGGTCCACGGCCGCACGTCCCTGATCCTGCCCACGCTGGGCAGGACGGACAAGGACGACAAGCACCCCAAGGGCGCCCAGTTCCTGTCCGTGGAGGACTCCATGTCGGTGGTCCACTCTACCCAGGGCAGGCTTCAGCCTGTGTCCGAGCACCTGCTCGCCGAGCCTGTCATCGTGGCCAGGATGGCAGAAGCCACCTTCGGCCCGGGCCACTCCGTGAACTGGAAGGCCATGGCCGAGGACTACGACGTGATCCGGGAGCACATCGCCCGCGTCCTGCCCGGGTTCGAGGATTTCAACGCCAGGGTCCGGACCAAGAACGGGTTTGTGCTGCCCAACCCGCCGCGCGACACCCGCTCCTTCGCCACGGACATCGGGCGCGGGCGCTTCACGGTCAGCCCCCTTGAATACCTCAGCCCGCCCGAGGGACATCTGGTCCTGCAGACCATGCGCAGCCACGACCAGTACAACACCACCTTCTACGGGCTGGATGACCGGTACCGCGGCATCTCCAACGGCCGCCGGGTGATCCTGGTGCACCCCGAGGACCTGGCTGAGCTCGGCTTCCAGGACCGCGACCTGGTGGACGTGGTCAGCACGTTCCGGGGCCAGGACCGGAAGGCCGACAGTTTCCGGCTGGTGGCCTACCCCACGGCCAAGGGCTGCGCCGCCGCATACTTCCCGGAGGCCAACGCCCTGGTCCACAAGGAAAACGTCGCCCGCGAATCCAACACCCCCGGCTTCAAAGCCATGTTCGTCCGCTTCGTGCCGCACGCCTGAMKFGKQPAPVADINEDELSVHKPKTEAAGVKAVFVALERAVAQAGVPRTAQSLLRLNQRGGFDCPGCAWPESDKKRKAAEFCENGAKAVAEEATLRTVGAEFWARHSIADLAGKTEYWLGNQGRLSEPVVIREGETHYSPISWADAFELIGEHVRASTPERCVFYTSGRTANETAFMYQLYARALGTNNLPDCSNMCHESSGSALNPTIGIGKGTVSLDDIHDSELIFVVGQNPGTNHPRMLSALKDCKDRGGKVVAVNPLPEAGLFNFKDPQTVSGVVGGGTPLADEYLQIKVGGDLALFQALGHLLFLEEERNPGSVVDRSFIDAQTDGFEAYREARKELDWAETEKATGLSREQIETVAGMLIRSKATIFCWALGVTQQPHSVDTIKEMVNVLLLQGNFGKPGAGACPVRGHSNVQGDRTMGIWEKPKEWLLDALDSEFGIQSPRHHGYDAVEAMEAFERDEVDVFVSMGGNFSLACSDTETLEAGMQRIGLTVHISTKPNRSHVVHGRTSLILPTLGRTDKDDKHPKGAQFLSVEDSMSVVHSTQGRLQPVSEHLLAEPVIVARMAEATFGPGHSVNWKAMAEDYDVIREHIARVLPGFEDFNARVRTKNGFVLPNPPRDTRSFATDIGRGRFTVSPLEYLSPPEGHLVLQTMRSHDQYNTTFYGLDDRYRGISNGRRVILVHPEDLAELGFQDRDLVDVVSTFRGQDRKADSFRLVAYPTAKGCAAAYFPEANALVHKENVARESNTPGFKAMFVRFVPHAPGPT0019635_3096DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123NANA
D1-29_001511977hypothetical proteinATGACCACCTTGACCAGGCCTCCGGCGGACCCTTCGGCCCCGCGGCCGACGGCAGCGGCAGGGCTAAGGACATGGCTGCTGTCCGGCCTCCAGGACAGTAAAGGTTCGCATCAGGGTCCGGGCAGCGTGGGCCCGGCGCAGGAAGAGAAGCATCCTTGGTGGCAAGTGATGTGCCTGACCGGTGTTGACTACTTTTCCACCCTTGGCTATCAGCCGGCCATCGCAGCCCTGGCTGCCGGTGTCATTTCTCCGCTGGCGACGCTGGTGCTGGTTGCTGTCACGCTCTTGGGCGCCTTGCCTGTGTACCGCAGGGTGGCGCGGGAGAGCCCGCGGGGGGAAGGGTCCATCGCGATGCTTGAGCGGCTGCTGCCACGCTGGGGCGGCAAGCTGTTCGTGCTGATTCTGCTGGGGTTCGCGGCTACGGACTTCATGATCACCATCACCCTCTCGGCGGCGGACGCCAGCGAACACCTGATTGAAAACCCTCTTGTCCCGGGATGGCTGCATGGGCAGAACATCCTGGTCACCCTGGTGCTGCTGGCGCTGCTGGCCGCCGTGTTCCTCCGCGGATTCAGGGAAGCAATCGGCGTGGCCGTGGTTTTGGTCATCGTCTACCTTGGCCTTAATGCCGTTGTGGTGGCTGTGACCATGGCCGGGGTTATCAACCACCCGGCTGCTGTTGACGACTGGTGGACAACCTTGTGGACTTCCCACGGGAATCCTCTGATGGCTGTGGCTGTCGCGCTGATCGTCTTCCCGAAGCTGGCACTGGGACTGTCCGGCTTCGAAACCGGAGTGGCCGTCATGCCCCAGGTCCGGGGCGGTCAGGATGACACCGAAGACAATCCTGCGGGGCGCATCCGGGGGACCCGGCGCATGCTGACCTCGGCAGCGGTGATCATGAGCTCGTTCCTGATCACCACCAGCTTCATCACCGTGGTGCTGATCCCGGCGCACGAGTTCCAGGACGGCGGCCAGGCCAACGGCCGTGCCCTGGCTTACCTCGCCCATGAATACCTGGGCGTCGGCTTCGGCACGCTCTACGACGTCAGCACCATCGCCATCCTTTGGTTCGCCGGCGCCTCGGCCATGGCAGGACTGCTGAACCTGGTCCCGAGATACCTTCCCCGTTACGGCATGGCCCCTGAATGGGCCAAGGCAGTCCGGCCCCTCGTGCTCGTGTTCACCCTCGTCGGGTTCCTGATCACCTGGCTCTTCGAGGCCGACGTCGATGCCCAGGGCGGCGCTTACGCCACCGGCGTGCTGGTCCTGATGACGTCCGCGGCTGTTGCCGTGACGCTCTCTGCCCGCCGCCGGAAGCAGCGCAAACGCACGATTGCTTTCGGTGCCATCGCTATGGTTTTTTCGTACACCACGGTGGCAAACGTCGTCGAACGTCCCGATGGCATCAGGATCGCCGGGCTCTTCATCCTGGGCATCATCGTGATCTCCCTTCTCTCCCGCGTCCGGCGTTCCTTCGAACTGCACGCAACCCACGTGCACCTGGACCGGCAGGCATTGGAGTTTCTGGCGCCCAACCTTGAGGGCCCGATATCGATCATCGCGCACGAACCGCTGCGGATAACCGCCGAGGCTTACCGGGATAAGCTCGCTTCCGCCATTGAGGTCAGCCACCTGCCCCTGGACCAGGAGGCATTGTTCCTTGAAGTCATCGTCGATGATTCCTCCGACTTCGAAACCACACTGGAGGTTCGTGGTGTGACGCGGCACGGATACCGCATCCTGGAGGTCCACGGCCCGGTGGTGCCGAACACCATCGCGTCTGTGCTCTGTCACATCCGGGACGTCACGGGATTGATGCCGCACATCTATTTTCGCTGGACAGAGGGAAACCCGCTCACGAACCTCCTCCGTTTCCTGTTCCTGGGCGAGGGCGAGATCGCACCTGTCACCCGCGAAGTGCTGCGCGAAGCAGAACCGGACGTCACTAAGCGCCCGTGGGTCCACGTGGGCTGAMTTLTRPPADPSAPRPTAAAGLRTWLLSGLQDSKGSHQGPGSVGPAQEEKHPWWQVMCLTGVDYFSTLGYQPAIAALAAGVISPLATLVLVAVTLLGALPVYRRVARESPRGEGSIAMLERLLPRWGGKLFVLILLGFAATDFMITITLSAADASEHLIENPLVPGWLHGQNILVTLVLLALLAAVFLRGFREAIGVAVVLVIVYLGLNAVVVAVTMAGVINHPAAVDDWWTTLWTSHGNPLMAVAVALIVFPKLALGLSGFETGVAVMPQVRGGQDDTEDNPAGRIRGTRRMLTSAAVIMSSFLITTSFITVVLIPAHEFQDGGQANGRALAYLAHEYLGVGFGTLYDVSTIAILWFAGASAMAGLLNLVPRYLPRYGMAPEWAKAVRPLVLVFTLVGFLITWLFEADVDAQGGAYATGVLVLMTSAAVAVTLSARRRKQRKRTIAFGAIAMVFSYTTVANVVERPDGIRIAGLFILGIIVISLLSRVRRSFELHATHVHLDRQALEFLAPNLEGPISIIAHEPLRITAEAYRDKLASAIEVSHLPLDQEALFLEVIVDDSSDFETTLEVRGVTRHGYRILEVHGPVVPNTIASVLCHIRDVTGLMPHIYFRWTEGNPLTNLLRFLFLGEGEIAPVTREVLREAEPDVTKRPWVHVGNANANANANA
D1-29_001521911kdpDCOG2205Sensor protein KdpDATGGCACAAGGCAATATGAGTAGTTTCCTGGGAGCTGCGCCGGGGGCCGGAACCACGATCGTCGTCGGCGTGAGCGGCCAGACCGGGGACGAGGCACTCGTCCGCCGCGGAGTGAGGATGCTGGCTGCTGCCGAAGGCGGGGAGCTCCATGTGGTGCATGTCCGCACAAGGACCGCCGCGACGGGGCCCTCAAGCAAAGACCTGGAACTGCCGCGCAATCTGGCCACCGAATTCGGAGGGGTGTTCCACGCCGTCGGCGGTGAGGAAGTGGCCGCGACGCTCCTTGAGTTCGCCAGGAGCGTGAACGCGAGCCAGATCATCCTGGGAAAGCCCCGGCGGCGGTCGATGCTCCAGCCCAGGCCCGGGACGGTGGCCTCTGTGGTGGCAAATGCCGGAACCATTGACGTTCACCTCATTGGCCAAGAGCCCGGGCCAGCCGGAGCTGCCCGCCGGAAACGGCCGCGGCTTGGGCGGCACCGGGAGGCGGCTGCGTTTGCCCTGGCTGTGGGTCTGCCCCCGCTGCTGCAGTTCGTCCTGGAGTTCCTCCCTCACGACCAGCTGTCCACGGACATGCTGGTTCATTTGACCGGGGTGGTTGGCGTGGCGTTGCTCGGCGGGGTGTGGCCTGCCGTTGCGGCAGCTGCTCTGGCGGGCCTGATCGTGAATTACTTCAGTGTCAGGCCAGTGGGTTCGCTGTCCGTGATTGACCCGGAGAATGTTCTGGCCCTGCTGGTCTTTGTTCTGGTGGCTGTGGCTGTATCGATGGTGGTCGACCGGTCCGCGAAGCTCAGCAAGGAGGCACACATTGCCCGCGCGGAAGCGTCCATCCTGGGTGAATTGAGCCGCAGGGCGGTAGCCGAGGGAAACAGTATTCCGGCGTTCCTGGATCAGGTCCGGGAGCATTTCCAGGCAGGCGGGGCCGCCTTGTGGACCCGGGAGGAGCCCGGTCCGGTCCGGGACGGCGACTGGGTCCTGAGGGAATTCTCGGGTTCGTCCCGGCCGGCTGCGGTCTCCGATGCAGACTCGGTGGAGCAGATGGACGCTGACAGGATGCTGACTCTGACCGGCAGGGAGCTCAACCAGGATGAACGGCGGCTGCTGGCCGCTTTTGGTGCGCACCTGCTGGCCATGCTGCAACGTGAAGAACTGACTGTGAGCCAGCGTGAAAACCTTCGCCTGGCGGAGGGAAACAAAATGCGGACCTCCATTCTGCGGGCCGTTTCCCATGACCTCCGCACGCCCCTGGCCGGAATCAAGCTGGCCTCCGCCACCCTGCGTGACAGGACCGTAACCCTTCGTGGGGAGGAGCAGGATGAGCTCCTGGCCACGATTGAGTCAGGGGCTGACCGGCTCGACGGGCTGGTGAGCAACCTGCTGGACATGTCCAGGATCACTGCGGATGCTGTTTCCCCGTTAATCCGTCCGGTGCATTGGGCTGAGGTGGTGGGCGTGGCCCTGCGCGGAATAGCGTCAGACCGGGTCCGCGTGCTCTTGCCCGGCAACATGCCTCCGGTGGATGCCGATCCCGGCATGCTGGAGCGGGTCATTGCCAATCTTGTCGAAAACGCCCTGAAGTATGCCCCTGATTCGGACGTCACTATCGCCGGCGCCGTCGGTGGGGCCGGGAGCGCAAGAATTGGCGACGTCCCGGCCAGCGAGCTTACCGTCGTCGATCATGGACTGGGTATCCCGGCAGAGGAGGTGCTGTCCATGTTCAGGCCTTTCCAACGGGCAGATGACACGACGGCAGGAACAGGGATCGGGCTTGGCCTGGCCGTGGCAAAGGGCTTCACCGAGGCTATGGGCGGAGTCCTGCTCGCAGAGCCAACCCCAGGCGGAGGCCTGACCATGGTGGTGCGCCTGCCGCTCTCCACCGGCGCACTCCCCGAGACCGAAACGGCGAAGCCATGAMAQGNMSSFLGAAPGAGTTIVVGVSGQTGDEALVRRGVRMLAAAEGGELHVVHVRTRTAATGPSSKDLELPRNLATEFGGVFHAVGGEEVAATLLEFARSVNASQIILGKPRRRSMLQPRPGTVASVVANAGTIDVHLIGQEPGPAGAARRKRPRLGRHREAAAFALAVGLPPLLQFVLEFLPHDQLSTDMLVHLTGVVGVALLGGVWPAVAAAALAGLIVNYFSVRPVGSLSVIDPENVLALLVFVLVAVAVSMVVDRSAKLSKEAHIARAEASILGELSRRAVAEGNSIPAFLDQVREHFQAGGAALWTREEPGPVRDGDWVLREFSGSSRPAAVSDADSVEQMDADRMLTLTGRELNQDERRLLAAFGAHLLAMLQREELTVSQRENLRLAEGNKMRTSILRAVSHDLRTPLAGIKLASATLRDRTVTLRGEEQDELLATIESGADRLDGLVSNLLDMSRITADAVSPLIRPVHWAEVVGVALRGIASDRVRVLLPGNMPPVDADPGMLERVIANLVENALKYAPDSDVTIAGAVGGAGSARIGDVPASELTVVDHGLGIPAEEVLSMFRPFQRADDTTAGTGIGLGLAVAKGFTEAMGGVLLAEPTPGGGLTMVVRLPLSTGALPETETAKPPGPT0002755_1681DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CAPSULE_METABOLISMCE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002755-kdpD-K07646NANA
D1-29_00153672kdpECOG0745Transcriptional regulatory protein KdpEATGACGACGGTGCTGATCGTCGATGACGAAGTCCAGATACTCCGCGCCCTGCAGATCAACCTGAACGCAAGGGGGTTCTCAACCCTTACGGCGCTCACCGGGCAGGCCGCACTGGACCAGGCAGCCGAACACCCCGTGGACGTCATCATCCTGGACCTGGGTCTGCCTGACCTGGACGGGGTGGAGGTGATCCACCGGCTCAGGCGCTGGAACGGCGTGCCAATCGTGGTCCTCTCAGCCAGGCACGGATCCGATGACAAAATCCAGGCCCTGGACGCCGGGGCGGATGACTACGTGACCAAGCCTTTTGGAATGGACGAGCTCCTGGCAAGGCTGCGCGCTGCGCTGCGCCGCGGGACAACGGGGGAGGCTCCCGTTGTGGAAACCGACAGCTTTACTGTGGACCTGCCCGCGCAACGGGTAACCCGGAGAGGCATGCCCGTCCGCCTGACTCCCACCGAATGGAACATCCTGGAACTTCTGATCCGGAACAATGGCGCCCTCGTCACCCATGAGAAACTCCTCACGGATGTATGGGGACCCGCTTACATCGGCGAGACAGCCTACCTCCGGGTCTACCTTGCCCAGCTGCGGAGAAAGCTTGAAACGGACCCTGCCAACCCCAGGCACCTGCTCACCGAAACCGGGCTGGGTTACCGCTTCCAGGAATAAMTTVLIVDDEVQILRALQINLNARGFSTLTALTGQAALDQAAEHPVDVIILDLGLPDLDGVEVIHRLRRWNGVPIVVLSARHGSDDKIQALDAGADDYVTKPFGMDELLARLRAALRRGTTGEAPVVETDSFTVDLPAQRVTRRGMPVRLTPTEWNILELLIRNNGALVTHEKLLTDVWGPAYIGETAYLRVYLAQLRRKLETDPANPRHLLTETGLGYRFQEPGPT0002760_2155DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CAPSULE_METABOLISMCE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002760-kdpE-K07667NANA
D1-29_00154483hypothetical proteinGTGACGGCAAGGAACTTGCCTCGACGGCGAATCTACGCCGCCAGGGCGTCCGGCCCGCTGGCCGTTACATTGGGCGCCGCAGCGCATTTCCTGAGCGGCGCGGCGGTCCCAGGCCCCTCGGTTCTCCTGGCAATTGCCGCCTTGCTAAGCATGGCAGCATCCATGCTCGCGGGCCTGAACCTCCGGTTCTGGGCGCTGCTCCTGGCCTCGGGCCTGGTTCAGCAGGTGCTGCATTTGGTGTTCGCCGGTTTCGCCGGTGGCTCGGGCAGCACATCGCCCGGGCATGCCCACGGAGTGCTGATCTGGCAGCCACTCCCACCGGCCCAAACGTCCGGCGGCCACCACGCGATGGAACTCATGTTGGACACGCATGTGGCGGCGGCACTGCTGACCGTCCTGGTCCTCACGCAGTCGGGCGCCCTGATATCGCACGTGTCGCGGCTGCGGCGCAGGCGGACCAGCCAGGTGGCAACAGACAGTTAGMTARNLPRRRIYAARASGPLAVTLGAAAHFLSGAAVPGPSVLLAIAALLSMAASMLAGLNLRFWALLLASGLVQQVLHLVFAGFAGGSGSTSPGHAHGVLIWQPLPPAQTSGGHHAMELMLDTHVAAALLTVLVLTQSGALISHVSRLRRRRTSQVATDSNANANANANA
D1-29_00155402COG3631putative proteinATGACTGACCAGACTCCGGCGGCCGTGACCGCCTCATACTTTGACGCCCTCGGACGCGGTGACGTACCCGCGGCGATGGCACTGCTAAGCCCCGACGTGGTGTGGCACCAGCCCGGTGCGAATCAGTTCTCCGGCGACCATTCAGGAATCGATGGCGTGGGCTCATTGCTCGGCGGGATGATGGAAGCAAGCCAGGGCACCTTCCAGCTCGCCGTCACCGGACCCGCCATGGTCAATGGCGAGTTCGTGGCAGTCCCGGTCAGGTTCTCCGGCAAGCGAGCGGACGTGGCAATGGATATGTCCGGCGTAGACCTCCTCACGGTACGCAACGGAAAAATCGCCGAAGTGCGCTTATTCTCCGAGGACGGCCAGGCGGAAGACGCCTTCTGGGGACGCGCCTAAMTDQTPAAVTASYFDALGRGDVPAAMALLSPDVVWHQPGANQFSGDHSGIDGVGSLLGGMMEASQGTFQLAVTGPAMVNGEFVAVPVRFSGKRADVAMDMSGVDLLTVRNGKIAEVRLFSEDGQAEDAFWGRANANANANANA
D1-29_00156384hypothetical proteinGTGACTGTGCCGGCTTGGAACGTCATGGTGGCAACGTGTCCCTCGCGGACTTCCTTGGCGAAGATCGCCAACAAGTGGACGGCCATGATCGTCATTGCTCTCAGCGGGGGCCCGTTGAGGTTCGGTGAACTGCGGCAGGCTGTGGACGGCATCAGCGGCAAGGTCTTGGCCGATACCCTGCGGGACCTGGAACGGGACGGGATCGTGGGCCGGACCGCCTATGACGAAATGCCTCCGCGCGTCGAGTATGAGTTGACCGCTCTCGGCCAAACCCTGCGTGAGCCACTGACGGCGCTGGGCCTCTGGGCTGAGGAATACATCGAAGACGTGATGTCAGCGCGTGAGTCCTACGACAGGCGTGTCACCCCGGCCGCGTTCACTTAGMTVPAWNVMVATCPSRTSLAKIANKWTAMIVIALSGGPLRFGELRQAVDGISGKVLADTLRDLERDGIVGRTAYDEMPPRVEYELTALGQTLREPLTALGLWAEEYIEDVMSARESYDRRVTPAAFTNANANANANA
D1-29_00157966rhaSHTH-type transcriptional activator RhaSATGCGCATCGCGATCTACGCCTTCCACGGAGTAACCATGTTCCACCTTGCTGTGCCACAGATGGTTTTCGACGAGGTGACACGTCAGGGACTTGCGGAATGGAAGACCGTCCTCTTCTCAGACCAGGCCAGCCATGTTCGAACAGCAGAGGGTTACCAACTGGGAGAGGTCCAGGGCCCTGCCGCGGCGGAAGCGGCGGACGTCGTGGTGGTGCCCTCCTGGTTCGATGACGGCCGCGCTCCGAACGAATCGCTGCGGCGCGTGCTTCAGGAAGCACACCAGCGCGGTGTGACAATCCTGGGGCTTTGCCTCGGTGCCATCCCCGTTGCCGATGCAGGTCTGCTTTCTGGGCGCCGGGCAGTCACCCACTGGCAAGCGTTCGGATCCCTCGCTGTCCGCCACCCTGATGTTTTCCTGGATCAAACCGTGCTGTATATCGATCACGGTGACGTGTTGACGTCGGCCGGCACGGCATCAGGACTGGACGCGTGCCTGCATCTTGTCCGGGGCCGGCTCGGGGCGGATGCCGCTAACCAGGTAGCCCGCAGCCTCGTCATCGCCCCGCATCGGGAGGGCGGACAGGCGCAGTACATAGAACACCCCGTTCCGCCGCGCTCCTCAGATGACCCGATCGCACGCCTGCTCGAATGGGTGCTGGGCCGCCTGGGCGAGCCCCTCAGTATCGATCGCCTCGCCGCCCAAGCGCACATGAGCCGGCGGACCTTCGTCCGCGCCTTCCGGGCAACAACAGGGACAACACCCTCTGCGTGGATACGCACCCGGCGGCTCGACGCTGCCCGGCGGATGCTGGAAACCACGGACTTATCCGTTGATCAGGTTGCCGCTGACTGCGGCTTCGGCAGCGCCGTTACCCTGCGGCAAAACTTCGCAACCGCCTTTTCCACCACCCCAACCGAATACAGGCGCCACTTTGACGCCCGGCTCACGCGTCCGACGTCGTACTGAMRIAIYAFHGVTMFHLAVPQMVFDEVTRQGLAEWKTVLFSDQASHVRTAEGYQLGEVQGPAAAEAADVVVVPSWFDDGRAPNESLRRVLQEAHQRGVTILGLCLGAIPVADAGLLSGRRAVTHWQAFGSLAVRHPDVFLDQTVLYIDHGDVLTSAGTASGLDACLHLVRGRLGADAANQVARSLVIAPHREGGQAQYIEHPVPPRSSDDPIARLLEWVLGRLGEPLSIDRLAAQAHMSRRTFVRAFRATTGTTPSAWIRTRRLDAARRMLETTDLSVDQVAADCGFGSAVTLRQNFATAFSTTPTEYRRHFDARLTRPTSYPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
D1-29_00158639hypothetical proteinATGAGCACCCCTCGCCGCGCCCTTATCCTCATCGATGTGCAGCAGCAGTACTTCGGCGGACCCTTCGAGATCCAGTACCCGCCGCACCAGGAGTCCCTACCGATGATCGCGCGGGCTGTCGACGCAGCGACCGCCGCGGGCATCCCTATCGTGGCCGTACAACACAGCGCGGGTGAGGGTGCTCCGGTCTTCGCACCTGGCACCCCCGAATTCGAACTTCACCCACAGATCGAAGGCCGCAGAACCGAGGCATGGAAGGGTGTCGTCAAACAGTATGGTTCCGTCTACGCAGACACCGACCTCACTGGGTGGCTGCGGGAGCAGGACGTCGACACCGTCGCACTGGTCGGTTACATGACCAACAACTGCGTCCTCGCTTCGGCCGTTGAAGCTGAATCCCTGGGCTTCACCACCGAGGTCCTTTCGGATGCCACCGGGGCTATCAACCTCGCCAACGATGCGGGCTTCGCGGACGCAAAAACAGTTCACACCACTTTGCTCACCCTGTTGAACTCAAACTGGGCAGCTGTCAGCACCACTGATGAGTGGGCAGATGCCCTTGAAGCGGGGCAGACGCTGAAAAGAAGTGATCTCGGCAGCTCGGCAATGGCCGGGGCCGCGCGCCTGGCCCGCGCCTAAMSTPRRALILIDVQQQYFGGPFEIQYPPHQESLPMIARAVDAATAAGIPIVAVQHSAGEGAPVFAPGTPEFELHPQIEGRRTEAWKGVVKQYGSVYADTDLTGWLREQDVDTVALVGYMTNNCVLASAVEAESLGFTTEVLSDATGAINLANDAGFADAKTVHTTLLTLLNSNWAAVSTTDEWADALEAGQTLKRSDLGSSAMAGAARLARANANANANANA
D1-29_00159579hypothetical proteinATGAGCAAGGTATACGGTGCGATCGACGAGCGGCTGACAAAATTCATCGCACGGCAAGTTGTCTTTTTTGTGGCCACTGCGCCGCTCTCGGGGGACGGTCATGTCAATGTCTCGCCGCGCGGGCTGCCCGGCACCTTTGCTGTCCTCGACGAGCGCACCTTCGCCTGGCTCGACGTTACCGGCAGCGGAAGCGAAACCATCGCCCACCTCAGGGAAAACGGCCGCATCACGATTATGTTCTGCGCCTTCGACGGCCCGCCGAACATCGTCCGCCTGCACGGCACGGGGAGGGTGGTCAGCCGGTACGACGACGAGTTCGAGTCGCTCGCTCAGCACTTCGACGACAAGCCTGGCGCGAGGGCCGTCATCGTGGTTGACGTCGTCCGTGTTTCGGATTCATGCGGGTGGGGCGTTCCGCTGATGAGCTTCCAAGGTCATCGCGATCTGCTTGGACCGTACTTCAAACGCAAAGGGACGGACGGCAGCGCCGAATACCGGATCGCCAAGAACCGCATCAGCATCGACGGGCTTGCCGCCTACGACTTCGACACCGCAAGGGCGACGCTGCAGGATCAGTGAMSKVYGAIDERLTKFIARQVVFFVATAPLSGDGHVNVSPRGLPGTFAVLDERTFAWLDVTGSGSETIAHLRENGRITIMFCAFDGPPNIVRLHGTGRVVSRYDDEFESLAQHFDDKPGARAVIVVDVVRVSDSCGWGVPLMSFQGHRDLLGPYFKRKGTDGSAEYRIAKNRISIDGLAAYDFDTARATLQDQNANANANANA
D1-29_00160507hypothetical proteinGTGGAGTTAACCGATGGGGTTATCCGGTTGTCCCCGCTTTGCCTGGAGGACATCGAGCCCCACCTCGCGGGGGAAGATGCCGAGCTTGTTCGCTGGCTCAGCGGGGGCATTGGCACCCGGCAGTCCGTCGAGGAATACATCAGGCGCTGCCTGGATCAGTGGGAAACCGGCGGGCCAGTGCATGCCTTTGGCATACGGGTTGGCCTGGCAGAACTCGCAGGCACCACCGAGGTGCAGTTTGATCGGCCGTACCTGGGGCCCGGCACTGTGAACATCAGCTATGGACTTTATCCTTCATGGCGCGGCCGGGGTATCGCCACGCGCGCGCTCCTCCTTGCAGGCGCTCACGCCGCCGCGGCAGGGGCAGCCCAAGGAGTTCTCAGAATCGAACCGGGGAACACCTCATCGGTTGCCGTCGCCCTGCGCGCCGGCTACATTCCCTTTCGGCAGAGCGAGGAGAGTGATGGCCGGCAGTTCAATTGGTACACAAAGACCCTGCCAGCGTAAMELTDGVIRLSPLCLEDIEPHLAGEDAELVRWLSGGIGTRQSVEEYIRRCLDQWETGGPVHAFGIRVGLAELAGTTEVQFDRPYLGPGTVNISYGLYPSWRGRGIATRALLLAGAHAAAAGAAQGVLRIEPGNTSSVAVALRAGYIPFRQSEESDGRQFNWYTKTLPANANANANANA
D1-29_00161378hypothetical proteinGTGAAGCACACCCCCATCGACAGCGGAAAGGCCACGCTGGAGCTTCTTCCAAATGGCGTCGTAAACCTGACCTGGCAGCGCCATGCCAACCTCGAGATAGCAGACGTCACCGCTGCAATGGCCAGCCTGGATGATGTTTGCCACGGAGTACCTCACCCGTTGCTGGTTGACATGGGCGGCACCATGGGTGTCAGCCACGACGCACGTGAAGCATTCTCAGCCCCGTCTGCGGCATCCCGGATTGCGCTGCTCGGCTCGACTCCGGTTGACCGGATCCTTGCTAACTTCCGTCCCGCCGGCTCCTATCCATGCCCCACACGCTTCTTCACGGATCGAACCGAGGCGATGAGCTGGCTGTTGCAGGACCCCACAGACTAGMKHTPIDSGKATLELLPNGVVNLTWQRHANLEIADVTAAMASLDDVCHGVPHPLLVDMGGTMGVSHDAREAFSAPSAASRIALLGSTPVDRILANFRPAGSYPCPTRFFTDRTEAMSWLLQDPTDNANANANANA
D1-29_00162339hypothetical proteinATGCTCGATAGCAATTCCGTAAGTTACCTGGTTTCACTGATCAAGAATTTCGATTATTCGATGTTGAGCGACGCGGAGTGGAATGCGTTAAAGGACGTCGATGTGTTAGACAACGTGCAGCTGACAGCGGCAATCCGTGATGTTGTGAAACCCGAATACGCTTCCTGGGACGCGTCCTCCAGACAGCTGGTGAACAACGCCCTGGAAGCTGGCCTGGCGCTCCCGGACTACGATTTCGCGCCCGTTCTTCGCAACGTGGAGATGCCCTTGGCTCAAGATCTGAATCCCCGGACATTTTTCCTCCTGATACAACAGGTGCTTGTCGAACAGCAGGGTTGAMLDSNSVSYLVSLIKNFDYSMLSDAEWNALKDVDVLDNVQLTAAIRDVVKPEYASWDASSRQLVNNALEAGLALPDYDFAPVLRNVEMPLAQDLNPRTFFLLIQQVLVEQQGNANANANANA
D1-29_00163501hypothetical proteinGTGGAGTGTGGACACCCGGCTATCCACGTATTCCGTGAGATGTGCGGGAGGAATAGCAAGGACACCAGGCTCTGGGGCCGCCCACCTGGGCAGATGCTGCTCCTGCGCCTGATCGCCCGTTCCACCTGGCGCTGGGCAGTGGGAACCGCGGTGGCTCTGTTGCTCATCCACATCATCGGGGACGTCTTCCCGGACACTTTTTCCGTTCCGCTGATGGCGGTGTTTGGCGGATTCCTGCTGGCCGGCAGCCAATGGTGGGCACTTCGCATGCCGCTGCGGGATGGGCTTCTTTGGGTGGCCGGGTCAGCAGTTGCCTGGGCCGTGGCGGTCCTGCTGGGTGTCCAGCTGACGGCCGGAGCGGGTTGGAGGATTGAACACACCGTTGTCGGGGTGTTGACGGGCTTGCTGGTGGGCGCTGCAACCGCGTCCATTTGGGCATGGCATCTGTTCGGCAGTACGTCCGGGGCGCGCGGCCGGGTGCTGCGAACAGGGGCACCTTGAMECGHPAIHVFREMCGRNSKDTRLWGRPPGQMLLLRLIARSTWRWAVGTAVALLLIHIIGDVFPDTFSVPLMAVFGGFLLAGSQWWALRMPLRDGLLWVAGSAVAWAVAVLLGVQLTAGAGWRIEHTVVGVLTGLLVGAATASIWAWHLFGSTSGARGRVLRTGAPNANANANANA
D1-29_00164813xynR_1COG1414HTH-type transcriptional regulator XynRATGGCTTCGAAGACTGACCCTGAATCTGAGAATGACGCCGAGGGCGGGCAGCACGGCGGCGTTCAGTCCGTGGACCGGGCACTTGCGGTGCTGGAAATCCTGGCCCGCGACGGCCATGCAGGCGTCAGCGAAATCGCCGAGGAAATGGGCATCCACAAGTCCACCGCCTCTCGGCTTCTCGGCGCGCTGGTCACCAGGGAGATGGTCCACCAGAACAGCGAACGTGGAAAGTACCAGCTGGGCTTCGGCGTCCTGAGGCTGGCGAGCTCCATTCCCGGACGGCTCAGCCTGGTGCGGGAGGCCCGCCCGGTGATTGAAAGCCTGGCCGAGCAATTCAAGGAAACCGTAAATCTGGCCGTGCTGCGGTCCAACTTCGCCGTCAACGTGGACCAGGCCATGGGTCCTTCATCGCTTGCCACCTATGACTGGGTGGGCAGCCTCACGCCCCTTCACGCGACCTCCAGCGGAAAAGTCCTGTTGGCCGCGCTGTCCGTCGAGGAACGGGACCGCGTCCTGAAGGAAACCGGACTGCAGGCCAGGACTCCCCGGACCATCACCAACCGCAACAAACTCGAAGCGCAGCTGCTGGAAGTCGCCCGCCAGGGCTACGGATTGGCGCTGGAGGAATTCGAGATCGGGCTCAACTCCGTGTCCGTGCCCGTCCACAACCACCTGGCCACGGTGATCGGCGCCGTCAGCATCTCCGGGCCTGCCTTCCGCTTTGATCCGGAAAAGGAGCCCGGGCTGCTTGAGGCGCTGAAGCAGGCCGGACTCCAGATCAGCGCCAAGATGGGCTACACCCGGACAAGGTGAMASKTDPESENDAEGGQHGGVQSVDRALAVLEILARDGHAGVSEIAEEMGIHKSTASRLLGALVTREMVHQNSERGKYQLGFGVLRLASSIPGRLSLVREARPVIESLAEQFKETVNLAVLRSNFAVNVDQAMGPSSLATYDWVGSLTPLHATSSGKVLLAALSVEERDRVLKETGLQARTPRTITNRNKLEAQLLEVARQGYGLALEEFEIGLNSVSVPVHNHLATVIGAVSISGPAFRFDPEKEPGLLEALKQAGLQISAKMGYTRTRPGPT0018213_115DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
D1-29_00165396hypothetical proteinATGGCACAAACCCAACTCCCGGACCTGGGGCTGCCTCTGGGCGACGACAACGTCTTTGCAGAGAACTGCCCGTCCAGGGTTCTGCTCAGCCACGTCACCAATAAGTGGGGAACCCTGGTGCTGATAGCTCTGTCGGCAGGCACCCTAAGGTGGAGCGAACTCTGCCGCACCATCGGCGGCATCAGCGAAAAGATGCTGGCGCAGACCCTTCGCACGCTCGAAGCTGACGGACTGGTACGTCGGGATGCCAGGCCCGTGGTGCCGCCGTACGTGGAGTACAGCCTTACGGACAGCGGGCAGGAGCTGAGCAGCCACCTCATCCCGTTGGTCCAGTGGGTGGCCATCCATGCCCTGAAGAGCTCAGATGTAGAAACCCCGTCACACTTCCCGGTCTAGMAQTQLPDLGLPLGDDNVFAENCPSRVLLSHVTNKWGTLVLIALSAGTLRWSELCRTIGGISEKMLAQTLRTLEADGLVRRDARPVVPPYVEYSLTDSGQELSSHLIPLVQWVAIHALKSSDVETPSHFPVNANANANANA
D1-29_00166858qorB_1COG0702Quinone oxidoreductase 2ATGTCAATTGTCATCACCGCCGCCACCGGCCAGCTCGGCAAGCTCGTCATCGACAGCCTGCTGGAACGGGGAGTTGAAGCGAGCCACATTGTTGCCGCCGGCCGGGACCAGGAGAAGCTGTCCGCCCATTACGGTCTCCGGGGCATCCGCACTGTCCGGATTGACTACAGTGATCCCGAATCGCTGGCGGCAGCCTTCCAGAGCGGCGACAAGGTCCTGCTGATCTCCGGCAGCGAAGTGGGCCAGCGGGTTGCGCAGCACCGGAATGTCATTGATGCCGCGCGGACGGCCGGTGTTGCACAGCTGGCATACACCAGTGTTGTCAGGGCTGACACGAGCACGCTGGTGCTGGCCCCGGAACACAAGGCCACCGAGGAAGCCGTGGTCGCATCCGGCCTTCCCTACACGCTGCTGCGCAACGGCTGGTACACCGAGAACTACGTCCCGGCCCTGGAGCAGGCGCGCCAGACAGGCAAGGTGGTGGCCAGTGTCGGGACCGGCCGGGTGGCCAGTGCATCCCGTGCTGACTACGCCGCGGCAGCGGCTGTCGTGCTCTCCACTGATGGGCACCACAATGCGGTCTACGAGCTGTCCGGCGATGTTGCCTGGGACTTCGAAGAGTTTGCAGCTTCGCTCAGCACGGCCCTGGACCGCTCCGTGGTGTACGAAGCCGTGGAGCCGGGCGAGCATTTCGAGCTCCTCAAGGCAGCCGGGCTGGACGATCAGACTGCAGGTTTCCTGGTTGCCCTTGACGGGAACATCCGCGACGGCGAACTGGCGCCGATCACAGGCGACCTCTCCCGTCTGACCGGACGTCCCACCGCTTCCTTGGGCGAGACGTTGGCGCAGCTGTCCTGAMSIVITAATGQLGKLVIDSLLERGVEASHIVAAGRDQEKLSAHYGLRGIRTVRIDYSDPESLAAAFQSGDKVLLISGSEVGQRVAQHRNVIDAARTAGVAQLAYTSVVRADTSTLVLAPEHKATEEAVVASGLPYTLLRNGWYTENYVPALEQARQTGKVVASVGTGRVASASRADYAAAAAVVLSTDGHHNAVYELSGDVAWDFEEFAASLSTALDRSVVYEAVEPGEHFELLKAAGLDDQTAGFLVALDGNIRDGELAPITGDLSRLTGRPTASLGETLAQLSPGPT0009465_1162DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009465-qorB-K19267NANA
D1-29_00167492hypothetical proteinGTGACAGAACGTGAACGGCTTGTCACCTGGGAGGACCCTGCCATTGGCGCGGGAGCCATGCCCAGCATGAGTGGCCTGGACTACCTGCATTCGATGATGGGAAAGAAGCTGCCGCCCCCGCCGATGGGCCAATTGCTGAACATGACGTTGGTTGAGGCGGAGCCGGGAACTGCCACGTTCACCTGCCTCCCGGACGAGTCGCATTACAACCCCATTGGGGCAGTCCATGGCGGCCTGGTGTGCACCCTCCTGGACTCGGCCCTGGGCTGCGCCGTGCAGACCACCCTTCCCCAGGGGCAGGGCTACACCTCCATAGAAATCAAAGTGAACTACCTCCGCCCAATACGGGCCGGCAGCGGCCTGTTAACCTGCGTGGGAGTGGTGTCCAAGGCCGGCAGCCGGGTGGCCTTCGCGGATGGAACAGTCACCGATGGCAGCGGCAAACTGGTGGCTACCGCCAGCGGGTCCCTGCTCGTTTTCCCCCTGGGCTGAMTERERLVTWEDPAIGAGAMPSMSGLDYLHSMMGKKLPPPPMGQLLNMTLVEAEPGTATFTCLPDESHYNPIGAVHGGLVCTLLDSALGCAVQTTLPQGQGYTSIEIKVNYLRPIRAGSGLLTCVGVVSKAGSRVAFADGTVTDGSGKLVATASGSLLVFPLGPGPT0006080_11DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006080-paaI-K02614NANA
D1-29_001681545hypothetical proteinATGCCAGTTCGGTTACAAGACGTGTTGCAGCATGCCACCCTGCTGGCAGCCGACCCCGTGGTCCGCGCCGCAGCGGCACTGGTCCCGGAAACGCAGCTCCGCTGGATCCACTCGAGCGAGGTCTTGGACATCGCGCCCCTGCTGGGCGGTGGCGAGCTGTTGCTGACGGGTGGCCAGGCCCTTGCCCTGGCAACGGATGAACGCCGCACAGGCTACATCAGGGAGCTGGCCGAGCGCGGGGTGGCCGCCTTGGCAATCGAGACCGGCAGGGAACTCCCTTCGATCCCCTCCTCGATGGTCGCCGCAGCTGAAAATGCGGGCCTTCCCCTGATTGAGCTTCGCAAGGTGGTGCCCTTTGTCGGCGTGATGGAAGCCATCAACTCCATGCTCGTTAGTGAATCCGCCGCTCAACTGCAGCAGGCGGACCAGGCCAGCCACGCCATGGCGGTGGAACTGGCCCACGGCGGCAGCCTTGACCGGATCCTTGCTGTCTTGGCTGCTGCCACCGCTTCCGAGGTGGTCCTCAGCTCAACGGCGGGAACCACCCTGGCCAGCGCATTGCCGGCCGAGCGGGGTGAAGATCCCGAGCCTGCCCCAAGGGACGCGGCCGCCCGAGACCACGCCAACATCATCCACATTGACGTGCCGGTACGCGGCATACCGTCCGCCCGCCTAACCCTGGACGTTCCCGCCGACGCCGACGTCAACCTGGCGCGGATTGCCGGGACCCGGTCAGTGGACATCCTTGCCCTGGCCCTGTTGCAGCGAATGCCTCCCGGCCTGAAGGAAATGGCGGGCGGGGCGTTGATCCGTGCCATAGCTTCCGGCACGCAAAACTGGAGGCTTCAACAGCTCGCTCCGGCTGCCGGCATCCCCGTGTCGGCGCAGCTGGTGGCAGTGGTGATCCGCTCCCCCGGCTCACAGCAGCTCCGGACGGCCGTGGAGCACCTTCTGAACCGGGTAGGCCGTCAGAGCGCGAGTTATGCGGACAACGCAGAGCTTCTGGCACTGGCCGTCCTTCGCTCCGACAATCCAAAAGACGACAGGCAAAAAATCGTGGCCGGACTGGAGTCGCTGGCGGTACCGGAAGGGACAGTCAGCTCCGTGGGCCCCATAGCTTCCGGCATATCCTTCGCTCCGTGGTCCCTGACCGAAGCCCGGCTCACGCTTGAACTCGCGGCGGGCACGGACTCACCCCGAGCGCCGCGGGGCGCCGCTGTCCTGGATTCCCAGGCGTTCGCCGTCGAGCGGCTTGCCGTCCATTCCCTCGATGAGGCGCAGCGGCGGGACTTTGTGAACCAGCAACTGGCGGCGGTCCTTGACCACGATGCCCAGCGCAACTCCCAGCTGGTTGAAACCCTCAGGGTCTGGCTGGATTCAGGCTGCAATACGGCCCAGGCCGCCCGTGAACTGCACGTGGAGCGGCAGTCGATGCATCAGCGCCTGCAACGGATCTTCTCGCTGTGCGGCGGGGACCCCCGGGGCACCGGCCGGCTGGCTGCCTTGCACGTTGCTACGCGCCTGGCCCAGCTGCAGCCCACCTGAMPVRLQDVLQHATLLAADPVVRAAAALVPETQLRWIHSSEVLDIAPLLGGGELLLTGGQALALATDERRTGYIRELAERGVAALAIETGRELPSIPSSMVAAAENAGLPLIELRKVVPFVGVMEAINSMLVSESAAQLQQADQASHAMAVELAHGGSLDRILAVLAAATASEVVLSSTAGTTLASALPAERGEDPEPAPRDAAARDHANIIHIDVPVRGIPSARLTLDVPADADVNLARIAGTRSVDILALALLQRMPPGLKEMAGGALIRAIASGTQNWRLQQLAPAAGIPVSAQLVAVVIRSPGSQQLRTAVEHLLNRVGRQSASYADNAELLALAVLRSDNPKDDRQKIVAGLESLAVPEGTVSSVGPIASGISFAPWSLTEARLTLELAAGTDSPRAPRGAAVLDSQAFAVERLAVHSLDEAQRRDFVNQQLAAVLDHDAQRNSQLVETLRVWLDSGCNTAQAARELHVERQSMHQRLQRIFSLCGGDPRGTGRLAALHVATRLAQLQPTNANANANANA
D1-29_001691527hypothetical proteinATGCAACAACCATCCACTGGCACGGGAGTTGAGCAATCCGCTCATCTCGAAGACGTCGAAGCCTGGCTGCAGCCAATCCCTGAATCCCAGCGCACCCACAAGGTCTCCGGCCAGTTCTGGATCTGGGCCGGAGCCAACCTGGCACCGATCAACTGGGTGCTTGGGGCCCTCGGAATTCATCTCGGCCTCGGCTTTGCGGACACTGTGACGGTCCTGGTCCTCGGCAACCTCATTGGCATGCTGCTGTTCGGCTGCTTTGTCCTGCTCGGCCAAAAGACCGGAGCCACCGGGATGGTCCTGGCCCGGGCGGCATTCGGACGCCGCGGGAACTATCTTCCGGCCGCCATCCAGGCGCTCCTGGTGATCGGCTGGTGCGCGGTCAACACCTGGATCATCCTGGACCTGGTCATGGCACTGTTCGGGACGCTCGGCTGGGTTGATCCGGCAGCCGCCAATTACGGCTGGAAGATCGGTGTGGCCACGGCCATCATGGCCACGCAGGTAGCCATCGCCTGGTTTGGCTACAAAGCGATCGCCGCCTTTGAAAAGTGGACCGTGCCGCCCACCATCATCATCCTGGCCGTTATGTCCGCAGTCGCCTGGTTCGGCATGAAGATCAACTGGTCCTATGCCGGGCCAGCGGGCAACATCCTGGAAGGGTCAGAGCGGATCGCTGCCATGAGCGCTGTGATGACAGCCATCGGCATCGGCTGGGGCATCACCTGGTTCACCTACGCGGCCGACTACTCCAGGTTCGTCAGCACCGAAGTACCCAAGAAGAAGGTCTACCTGGCGTCGGTCCTTGGCCAGTTCATCCCCGTGGTGTGGCTCGGAATCCTCGGCGCAAGCCTGGCCACCAACAGCGGCGAAATTGATCCCGGGAAGCTCATAGTCCAGAACTTCGGTGTCCTGGCATTGCCCGTTCTTTTGATGGTCCTGCATGGCCCCATCGCCACCAACATCCTGAACATCTACACCTTTTCGGTGGCCACGCAGTCACTGGACATCACCATCAGCCGCCGCAAACTGAACCTGTTCGTCGGGGTCTTCTCCCTGGCCGCCGTCGTCTTCTTCATCTTCCAGGAAGATTTCGCCGCTGTCCTTGATGCCTGGCTGATCGGGCTGGTCGCCTGGGTAGCGGCCTGGGGCGGCGTCATGCTGGTGCACTACTTCTGGATCGAAAAGCGCTGGCCCGGCAACCCGGAAAGGCTCTTCGACGCCGTCGGTACCAAGCGGCTCCCCGGCGTCAACTGGGCGGGCGTCACGTCCCTGCTGGTGGGGATCTTCGCCACCTGGCTGTTTATGTACGGGCTCGTCCCCGCGATGCAGGGCCCCATCGCCGTGGCCCTGGGCGGGTGGGACCTGTCATGGCTCGCCGGCGGCCTCGCCAGCGCCGGTACCTACGCCGTCCTTGGCCCGAAGGTCCACCGCAAATATCTCGACGACGCACTGGCAGCCCCGGCACAGCAGCAGCCGTCAGCAGACCTGGCCGTTTCCACGCAGCCCGGTGCCCCGGCCGGGCTGTGAMQQPSTGTGVEQSAHLEDVEAWLQPIPESQRTHKVSGQFWIWAGANLAPINWVLGALGIHLGLGFADTVTVLVLGNLIGMLLFGCFVLLGQKTGATGMVLARAAFGRRGNYLPAAIQALLVIGWCAVNTWIILDLVMALFGTLGWVDPAAANYGWKIGVATAIMATQVAIAWFGYKAIAAFEKWTVPPTIIILAVMSAVAWFGMKINWSYAGPAGNILEGSERIAAMSAVMTAIGIGWGITWFTYAADYSRFVSTEVPKKKVYLASVLGQFIPVVWLGILGASLATNSGEIDPGKLIVQNFGVLALPVLLMVLHGPIATNILNIYTFSVATQSLDITISRRKLNLFVGVFSLAAVVFFIFQEDFAAVLDAWLIGLVAWVAAWGGVMLVHYFWIEKRWPGNPERLFDAVGTKRLPGVNWAGVTSLLVGIFATWLFMYGLVPAMQGPIAVALGGWDLSWLAGGLASAGTYAVLGPKVHRKYLDDALAAPAQQQPSADLAVSTQPGAPAGLPGPT0027745_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-CptA-CptB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027745-toxin_cptA|ygfX-K19168NANA
D1-29_00170963hypothetical proteinATGACCCTTGAAGCATTCCCGGACTTAGCCCATCCGATCACCTGGCCCGAGGGGAAGCGGGCAGCAGCCTCCTTCACGTTCGACGTCGACGCCGAGTCCTGCACCATTGCCCATGACCCCAAAAGCACGCGCAGGATGTCGCTGATGACGCATCAGTCCTACGGGCCGAAGGTGGCCGTTCCGCGGCTGCTGCAGATCCTTGCCCGGCAGGACGTCCGGGCCACGTTCTTCGTTCCCGGGTTTACGGCCGAGTGCTACCCGGACACGGTCCGGCGGATCGTGGACGCCGGTCACGAGGTGGCCCACCACGGCTACCTGCACGAACCCATGCAGGGCATCGACGCCGAAACCGAGGGCCGCTACATTGACCGCGGCCTGGAGGCGCTGGCGAAAGCAGCCGGAGTTGAGCCTGTTGGGTACCGGGCCCCGTGGTGGGAGCTGAACTGGCATTCAGCAGCGCTCCTCGCGGACCGCGGCTTCCTTTATGATTCGAGCCTGCTCGACGGCGACGCTCCGTACCGCTTCAGCGTGGCCCCCGATGACAGCCGGGACATCGTCGAAATCCCTGTGGACTGGGCTCTGGACGACTGGGAACAGTACGCCTTCTATCCCGGAGTCACCGGCAGCGGCGTTATCGAAAGCCCGGCCAAGGTCCTGGAAATGTGGACCCTTGAGGCGGAGGCGCACCATGCCCAGGGGAGCTGCTTTGTGCTGACCAACCATCCGTTCATCTCCGGGCGGCCGTCCAAGGCTGTTGCGCTGGAGCGTCTTATCGAGCGGGTCAAGGCGATGGACGGGATGTGGGTGGCAACCATGGAGGAAATAGCCGGGCACACCCGCAGAACTGTCTCCGAAATCCACAGCCATGCCCGGATCGAGGTGCCTTCCTTCCCGGACACCGGCGCCCGCTTTACCCCCGCTGGGGTTCGTGAGGCTGAGCAGATCGCGGTCCGCCAGAACTAAMTLEAFPDLAHPITWPEGKRAAASFTFDVDAESCTIAHDPKSTRRMSLMTHQSYGPKVAVPRLLQILARQDVRATFFVPGFTAECYPDTVRRIVDAGHEVAHHGYLHEPMQGIDAETEGRYIDRGLEALAKAAGVEPVGYRAPWWELNWHSAALLADRGFLYDSSLLDGDAPYRFSVAPDDSRDIVEIPVDWALDDWEQYAFYPGVTGSGVIESPAKVLEMWTLEAEAHHAQGSCFVLTNHPFISGRPSKAVALERLIERVKAMDGMWVATMEEIAGHTRRTVSEIHSHARIEVPSFPDTGARFTPAGVREAEQIAVRQNPGPT0018645_1364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-29_00171684liaR_1COG2197Transcriptional regulatory protein LiaRGTGGCTGATGCGGGTGCACTCATCTCCGTTGCCCTGATAGATGACCAGCCCCTTTTCCGGGCAGGCATCCGCATGCTCATTGAAAGCCAGGCTGACTTGGAGTTCTTTGGCGAGGCCGGCGACGGGGAGCAAGCGGTGGTCCTCGCCAGCGAACTCCGCCCGGACGTCATCCTGATGGACCTGCGCATGCCCGTCATGGACGGAGTCGAAGCCACCCGGCGGATTGTGGAGCATGCCGCTGCCACAGGCACCGACAAGCCCAAAATCATCGCCCTGACCACTTTCAACAGGGACCAGGCCGTGGTCCAAGCCGTCCAGGCCGGAGCCAGCGGCTATTTACTCAAGAGCGCCGAGCCGGAATTCCTCCTGGCTGCCATTCGGACCGTTCACTCGGGCTACTCGGTGATCGCACCAGGATCGGTCCACTCCCTCTTCCAGCACGCCGCCCGCAACACTCCCGCTGCGGACCCGGACTTGTCGGTCCTGGAGGTCCTCTCCGTGCGGGAACGGGACGTTTTTCTTCTCGCGGCCAAGGGCCTCAGCAATGGCGAAATCGCGGAAGGCCTGTTCGTCTCTGAGGCAACCGTCAAAACACATCTGCGCAGCGTGCTGGACAAGCTGGAACTCCGCACGCGGCTGCAACTTGTCGCCTTCGCCTACGAACGCCATCTACTAGGCAACTAAMADAGALISVALIDDQPLFRAGIRMLIESQADLEFFGEAGDGEQAVVLASELRPDVILMDLRMPVMDGVEATRRIVEHAAATGTDKPKIIALTTFNRDQAVVQAVQAGASGYLLKSAEPEFLLAAIRTVHSGYSVIAPGSVHSLFQHAARNTPAADPDLSVLEVLSVRERDVFLLAAKGLSNGEIAEGLFVSEATVKTHLRSVLDKLELRTRLQLVAFAYERHLLGNPGPT0014870_178DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_001721392hypothetical proteinATGGAATCAGTTCTGAAAATTGCGCGGCCTTGGGGTGCCCCAGCGGCAGCCGTCATCTTTTTCCTCCTGTGGTGCCTCGGTGAGGCCGGCCGAATGGGAGGGTCCTGGGTGACATGGTCAGGAAACTGGCCGCTGGCCCTGATGACACTGGCTATTGCCACGGCCTCCTGGAAACCGCTGGTATCGCTCGGATTCACAGCAGCCCTCCTCGCCGCACAGTTGACTCACGGCTTGCCGCGTGTGGAGTCAAACACCTGGGCCATTTACCTGGGCTCCTTCATTGCCCTTGGCTTTATCCTCTGGACCGCACCCCGGCGGATGCGGTTTATCGCGGCCGGCGCCAATCTGGTTTTCGCAGCCCTGATGACCGTCCTCATGCTCTCCTGGAGATATGGCGCCGGGGTCGGCTGGTTCCAGCCCATGCACCACGGTGACAAAGCGATGTTCACGTCCTATGGATTGCAGCTGTTTACCCTCCTTCTGCTGATCGCCGGAGCCTGCGCCGCCGTCGGACTCCTGCTGGCCCTGTCCCAGGAACGCGGCACCCTCTTCCGTTCCCGCGAGCTGGCCCGGAACACCCTGAAGGAAACCGAGATCGACCTCATCGTGGAGCAGGAACGCACACGCATCGCCCGCGACCTCCACGACGTCCTGGCCCATTCCCTTGCCGTCATCGCCGCGCAGGCCGACGGCACCCGCTACTTGAGCCAGGACCAGCCCCCTGCCGTGCTCAACGCGCTGGACACCATCGCCCGCTCAGCGCGAAGCGCGCTCGTGGACGCCCAACGCGTGATCGAATGCGTCCGCGACGATGGAATGGCAACGCCACAGCCACGGCTGAGCGACATCAAGGGGCTGATCGAGACCATGCAGCGGGGCAGTCTGAAGATCCAGTCCAGCGAGTCCGGCACACCCGTTGAGCTCTCCACTGGTCAGCAGGTAGCCGTGTTCCGGATCGTTCAGGAATGTATGACCAACGCGCTCAAACACGGCGGCCGCGGCACGGAAGTTCGGCTCCACCATGACTGGAGCGGCCCGGGCCTTACCCTGCACGTTGCCTCCGCTGTACCCTCCGGCCAGGACCAGGCCGACGACGCGTCCCCGCGCCGGATCGGCCGCGGTCTTCCCGGAATGCGTGAACGCGCCCACCTGGCGGGCGGCTGGCTGACAGCCGGACCGGATGGGGATCACTTCCGGGTGACGGTTTTCATCCCTTACGGGCCGCTCGACGCCGGTCCACACAGTTCTGCCCGTCCAGACAATCCCGCCGCCGGGGCTGAAGACGGCCGTACTCCCAACGGAATTCCGGCTGCGGTCACCCATCCCGTACTGGAAGCAATAGGCTCGCCTCAGCCTCCCGCGGCCGCATCGGAAGCGGCCCGCCGTGGCTGAMESVLKIARPWGAPAAAVIFFLLWCLGEAGRMGGSWVTWSGNWPLALMTLAIATASWKPLVSLGFTAALLAAQLTHGLPRVESNTWAIYLGSFIALGFILWTAPRRMRFIAAGANLVFAALMTVLMLSWRYGAGVGWFQPMHHGDKAMFTSYGLQLFTLLLLIAGACAAVGLLLALSQERGTLFRSRELARNTLKETEIDLIVEQERTRIARDLHDVLAHSLAVIAAQADGTRYLSQDQPPAVLNALDTIARSARSALVDAQRVIECVRDDGMATPQPRLSDIKGLIETMQRGSLKIQSSESGTPVELSTGQQVAVFRIVQECMTNALKHGGRGTEVRLHHDWSGPGLTLHVASAVPSGQDQADDASPRRIGRGLPGMRERAHLAGGWLTAGPDGDHFRVTVFIPYGPLDAGPHSSARPDNPAAGAEDGRTPNGIPAAVTHPVLEAIGSPQPPAAASEAARRGNANANANANA
D1-29_00173564hypothetical proteinATGAACACCGTCACCACCACCAAGCCGTTCGCCGACCTCGCTGCTATCGAGGCAACCGTCGAAGCCGTCACCGCCCAGCGTGAACTCGGCCGCGTCACTTTTACCATGAACAGTGAGTCCGCAGGCGGTCTAACAGCGAAGACCGAAACTGGACCACTGGTGCAGGCAGGCGTACCGGACGAGTCACGACGTGGAAAGTACACGCTGCACAGTGACGAGCCCATCTCACTGCTAGGCACAGACACTGCCGTCAGCCCGGCTGAATACATTCTCAAAGGGCTCGCCGGCTGCTACGTCGTTACCCTCGCCTCACTCGCCGCATCCCGCAACATCACGCTCGAGCAGATCCGGCTCACCCTCGGATTCGATATCGATCTGAGCGGATTCCTCGGCATCGACAAATCCGTCCGAAAGGGCGCAGAACACATCACGGTCGACGTGGAACTCGAAAGCCCAGGCACTTCACGAGAAGACCTTCAAGACCTCGTAAAGGCACTGGAGGCGACCTCGCCAATCCGCGACACGCTTGCCAACCCCGTGAAAGTCACCACCACTCTCAACTAGMNTVTTTKPFADLAAIEATVEAVTAQRELGRVTFTMNSESAGGLTAKTETGPLVQAGVPDESRRGKYTLHSDEPISLLGTDTAVSPAEYILKGLAGCYVVTLASLAASRNITLEQIRLTLGFDIDLSGFLGIDKSVRKGAEHITVDVELESPGTSREDLQDLVKALEATSPIRDTLANPVKVTTTLNNANANANANA
D1-29_00174747dauRCOG2964Transcriptional regulator DauRATGACCCAGATTGGTTCGGTCGGATACACAGCTCCGTCCCCGGACGCGCTGCACGGAATGGACGCCGAGTCCATCAACCTGGTCCTGGAGCTCCTGGTGGCCCCCCTTCAGGCCGCGGTGCCTCAGCCCACCGAGGTGGTCCTGCACGACCTGCAGCGAATCCCTAACACTGTCCGTGCTATCGCCGGAGACGTCACCCGGCGCCAGATCGGTGACCCGCCTACCGACAAATTGCTCGAACGCGTGGCAGCCGGTGATTTCTCCCATGAGATCGGCTACCGCTCGCAACTGCCTGACGGGAGAATCCTCCAGAGCACGACGATCATTTACGTCGACAAGGAAGGCCGTGCCGCCGCAGCCCTGTGCCTGAACGCTGACGTGTCAGCCTGGGTCACGCTCCGCTCGGCCTTGGACCGCTTCGTTCTCGGCCACGACGGGAGCTCCGTGCTCGCGGCGCCTGCACTGAACAAGGCGACGTCGGTCGGCCCCCAGGGGAGCGAGTACTTCCCGCACAGCGTGGAGGAACTCAGCTCCAAGCTCGTCGAGGCGGCGATCGCCGCCATTGGGGTCCCCGTCGAACAAATGCGCAAGGAACACAAAGTGCAGGTCGTGGCGGAGCTTGAACGTCGTGGCTTCTTCCTCGTAAAGCAGGCTGCCGAGACTGCCGCCGTCGCGCTCGGAGTCACGCGGTTCACCATTTACAACTACCTCAACGAGCTCGGCGGAGAGGTCGAAGAGACAGCCTAAMTQIGSVGYTAPSPDALHGMDAESINLVLELLVAPLQAAVPQPTEVVLHDLQRIPNTVRAIAGDVTRRQIGDPPTDKLLERVAAGDFSHEIGYRSQLPDGRILQSTTIIYVDKEGRAAAALCLNADVSAWVTLRSALDRFVLGHDGSSVLAAPALNKATSVGPQGSEYFPHSVEELSSKLVEAAIAAIGVPVEQMRKEHKVQVVAELERRGFFLVKQAAETAAVALGVTRFTIYNYLNELGGEVEETANANANANANA
D1-29_001751197COG1168Putative cystathionine beta-lyaseATGGGGAACCCGCTTGAGGAGCTCTCCCTCGAACAGCTCCGCCAGCGCACGAGCATGAAATGGCGCACTCATCCCTCCGACGTGCTGCCTCTGTGGGTTGCCGAGATGGACGTCCGGCTCGCGCCGCCCGTTTCGGAAGCGCTTCACCAGGCCATCGATGCCGGGGACACCGGATATCCGGCTGGGACGGAGTTCGCGGAGGCCATAAGTGCGTTCGCTTCCCGGCGCTGGGGCTGGGATGGGCTGGCAGTCGAGCGCACGGCCATCGTGCCCGACGTGATGATGGGCGTCGTCGAAATCGTGCGGCTGATTACAGATCCAGGAGACGCCGTTGTGGTCAACTCGCCGGTCTATGCGCCTTTTTACGCTTTCATCACCCATGATTCGCGCAGGATCATTGAAGCGCCGCTAGGACAGGATCTCCGGATCGACCTCGGCACCCTCGAGGAAGCTTTCAAGCACGCGCGGTCGCAGGGACGGAATGCCGCCTACCTGATCTGCAATCCACATAACCCGACCGGGGTGGTCCACAGCCCTGAAGAACTCGCAGCCGTCGCGGCTCTCGCCCATAACTACGGGGTCCGGGTCGTCTCGGACGAGATCCACGCCCCGCTCGTCCTTCCGGGAGCAAAATTCACGCCATATCTCAGCGTGCCCGGGGCCGAGAACGCATTTGCGCTCACGTCGGCGTCAAAGGCCTGGAACCTCGCCGGCCTCAAGGCAGCACTCGCAATCGCCGGACCAGACGCGGCCGATGATCTGGACCGCATACCCGAAGAAGTCAGCCACGGACCGAGCCACCTGGGGATCATCGCCCAGACCGCCGCGTTCCGTGATGGTGAAGAATGGCTGGATGCTCTGCTCCGAGGCCTCGACGCGAACAGGACTCTCCTCGGAAAGCTGCTCGCCGAACATCTTCCCGGTGTCGGGTTCACCCCTCCCGAGGGGACATACCTGGCCTGGCTGGATTGCAGCCACCTCGCCGTGGATTCGCCAGGCGGCCCCGAAGGCCTCGCCACCGTTGCCGACCTTGCCGGGCCGGCCAGGATGTTCCTCGACAAGGCGAGGGTCGCACTGAGCTCCGGCCATGTCTTCGGCACGGGCGGGGCGGGACATGTTCGCCTCAACTTTGCCACTTCCCAGGCCAATCTCACAGAGGCCATCACCCGGATGGGCCGAGCCGCCCACCCCGATTGAMGNPLEELSLEQLRQRTSMKWRTHPSDVLPLWVAEMDVRLAPPVSEALHQAIDAGDTGYPAGTEFAEAISAFASRRWGWDGLAVERTAIVPDVMMGVVEIVRLITDPGDAVVVNSPVYAPFYAFITHDSRRIIEAPLGQDLRIDLGTLEEAFKHARSQGRNAAYLICNPHNPTGVVHSPEELAAVAALAHNYGVRVVSDEIHAPLVLPGAKFTPYLSVPGAENAFALTSASKAWNLAGLKAALAIAGPDAADDLDRIPEEVSHGPSHLGIIAQTAAFRDGEEWLDALLRGLDANRTLLGKLLAEHLPGVGFTPPEGTYLAWLDCSHLAVDSPGGPEGLATVADLAGPARMFLDKARVALSSGHVFGTGGAGHVRLNFATSQANLTEAITRMGRAAHPDPGPT0001990_181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001990-patB|malY-K14155NANA
D1-29_00176417hypothetical proteinATGGCTGAGTCAGCTACGTCCACACCGCTCTATGAACGTGCGGTCCGGGTGGGGGATCTACTCTTTGTCTCCGGCCAACTCCCTATCGGAGATGGTGGGTTGCTCTATCCCGGGCGGGTGGGCCAGGAAGTTACAGTCGAGCAGGCGCGTGAGGCTGCCGTGCTCGCTGCCAGCCGATGCCTGGACGTCGTCCGCGGCGAACTCGGGTCGTTGGATGCGGTCAAGGGTATCGCCAGGATCGGAGGATACGTCTCAGCAGGGGAAGGATTCGTGGATGCATCCGCCGTTGTCGATGGTGCGTCCCAACTCGCCCTCGATGTCCTTGGAGAAAAAGGGCACCATGCGCGGTTGGCAATGGGGGTAGCCTCGCTGCCGCTGGGTGCATGCGTGGAGATTGAAATGACTGTCCTGTGCTAGMAESATSTPLYERAVRVGDLLFVSGQLPIGDGGLLYPGRVGQEVTVEQAREAAVLAASRCLDVVRGELGSLDAVKGIARIGGYVSAGEGFVDASAVVDGASQLALDVLGEKGHHARLAMGVASLPLGACVEIEMTVLCNANANANANA
D1-29_001771497ansP2_1COG1113L-asparagine permease 2ATGTCGATTCAGCCACCCGTCACAGACTCCGGGCACGCACACGCACCCGACCAAGTCCTGCACGCCGAGGATGCCGGCTATCAGAAAGGACTTAAATCCCGACAAATCCAGATGATCGCCATCGGGGGCGCGATCGGCACCGGCCTATTCCTCGGCGCAGGTGGCCGCCTTGCCGCAGCCGGGCCATCGCTCTTCGTCGCTTACGCCATCTGCGGGGCCTTCGCCTTCCTGATCCTGCGCGCCCTCGGCGAACTCGTACTGCACCGGGCATCGTCGGGCTCGTTCGTCTCCTACGCCCGAGAATTCTTCGGAGAGAAGGCAGCGTTCACCGTGGGATGGTTCTACTGGCTGGTCTGGGCCGCCACGACCATCGCCGACACGACCGCTGCCGCGCTCTACATGAGCTTCTTCGGCAGGTACGTCCCCTGGATCGCCGCGGTCCCGCAATGGGGCTGGGCCCTCATCGCCCTGGTGCTCGTCCTCGCCCTCAACCTTGTCTCCGTCAAGGTCTTCGGCGAGATGGAATTCTGGTTCGCCCTCATCAAGGTCGCCGCACTGGTCATTTTCCTCCTCGTGGGCATCTATTTCGTCCTCTTCGGCACCCCAACCGGTGATCCGGTCGGCTTCCAGCTCATCTCCGACCACGGCGGAATCTTCCCGAACGGCATCATGCCGATGATCCTGCTCATGTCGGGAATCATCTTTGCCTACGGCTCAATTGAGCTCGTCGGCACCGCCGCCGGCGAAACCGAGAACCCGGCCAAGGTCATGCCTAAGGCGATCAACGCCGTCATCGCCCGCATCGCGGTCTTCTACGTTGGATCCGTCGTCTTGCTTTCACTGCTGCTGCCCTACACCGCTTACGAAAAGGGCGTGAGTCCGTTCGTGACGTTCTTCAGCTCGATTGGCATCAATGGCATCGACTCCATCATGAACCTCGTCGTGCTCACAGCCGCCCTGTCTTCGCTCAACGCCGGGCTCTACTCAACCGGAAGAATCCTGCGCTCGATGGCCACCGCAGGCTCAGCGCCGAAATTCGCGCTCCGAATGAACAAGGCGGGCGTCCCCTACGGCGGCATTGCCATCACCGCAGCAGTTTCCTTCCTCGGCATCCCGCTGAACTACATCGTCCCCGGCGACGCGTTCGAGATCGTCCTTAACATCGCGGCCGTTGGCATCATCGTCGCGTGGGGCGCGATCGTCCTGTGCCAAATCCAGTTTCAGCGGTGGAGCAAGAAAGGTTGGACCCAACGTCCTTCGTTCCGCATGCCTGGAGCCCCCTTTACCGGCTATCTAACCATTGCCTTCCTCGCCGTGGTCCTTGTCATGATCCTTATCGAATCCCCGTTGACCATGCTCGTAACTGCAATTGCGGTGGCCCTCATGATCGCCGGCTGGTACGCATGCCGCGGAAGGATCCGCCAGATCGCCGCTGCACGCGACGGCTACACCGGAGCGGCACCCGTCGTCACCCACGCCACAGCCCGACAGCCATAAMSIQPPVTDSGHAHAPDQVLHAEDAGYQKGLKSRQIQMIAIGGAIGTGLFLGAGGRLAAAGPSLFVAYAICGAFAFLILRALGELVLHRASSGSFVSYAREFFGEKAAFTVGWFYWLVWAATTIADTTAAALYMSFFGRYVPWIAAVPQWGWALIALVLVLALNLVSVKVFGEMEFWFALIKVAALVIFLLVGIYFVLFGTPTGDPVGFQLISDHGGIFPNGIMPMILLMSGIIFAYGSIELVGTAAGETENPAKVMPKAINAVIARIAVFYVGSVVLLSLLLPYTAYEKGVSPFVTFFSSIGINGIDSIMNLVVLTAALSSLNAGLYSTGRILRSMATAGSAPKFALRMNKAGVPYGGIAITAAVSFLGIPLNYIVPGDAFEIVLNIAAVGIIVAWGAIVLCQIQFQRWSKKGWTQRPSFRMPGAPFTGYLTIAFLAVVLVMILIESPLTMLVTAIAVALMIAGWYACRGRIRQIAAARDGYTGAAPVVTHATARQPPGPT0000815_1640DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_0017899hypothetical proteinATGCGAAAATGGCAACTGCCCATCATTACATTGCTTGTCATCGCGGCATTTGTGATTCTTTATCTCAACGGGCTTTTAGGAAATACGGCGGTCCCATAGMRKWQLPIITLLVIAAFVILYLNGLLGNTAVPNANANANANA
D1-29_00179561yyaP_1COG0262putative protein YyaPGTGGATAGCGTCAGCTTCATGGGCACGGTGTTCGGCGGGATGGCTGCCAGCCTCGATGGTTATATCCGTTCAGAGACCGGGGACTTGTCCTGGCTGAACAATGCGATGGCCAAGGATGAGGACTACGGCTTCGAAGAAACCAGCCAAAGGACCGGCGCGTACGTCATGGGCGCCAACACCTACCGCGAAGTGGCTGGCACCGGCGGCATGGGTTCCGGGGCGCCGAGCTACGTGGTGACCCACGACAGGAGCCTGCCGGCACCGGCGAAAACCACATTGTTTTCAGGAGACCTCAGAGAGCTGGTGGCGGACATCAAGGCCTCCATCCCCGACAACAAGGACATTTGTGTCTTTGGCGGCTCTCAACTGCTCACCCAGTTCATCGAGTTGGAGTTGCTCGACGAACTGGGTATTTCCATCATTCCGGTTGTCCTCGGCGGCGGTGTGCCTTTCCTCGGCAGGACCAGCCAATCGACAAAGCTTGAGCTCCTGGAGTGCCGCTCCTTTCCGTCAGGGATTGTGCTGCTTAGTTACAGGCTGACGTATGTGCCGGCAGACTGAMDSVSFMGTVFGGMAASLDGYIRSETGDLSWLNNAMAKDEDYGFEETSQRTGAYVMGANTYREVAGTGGMGSGAPSYVVTHDRSLPAPAKTTLFSGDLRELVADIKASIPDNKDICVFGGSQLLTQFIELELLDELGISIIPVVLGGGVPFLGRTSQSTKLELLECRSFPSGIVLLSYRLTYVPADNANANANANA
D1-29_001801089iolG_1Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseGTGGGCAAGCCGCTGAATGTTGGAATAGTGGGCTGCGGCGCCATCAGCGCCCAGTACCTGGCCAGTTTCCGGAGGCTCAGCTCGGTTCGGCTGGTGGCAGTGGCGGATCTCGATCAGTCCCGCGCTCAGGCAGTCGCCAAAACGAACGACGGCGTCCGTGCGCTCAGCGTCGACGCTCTCCTTGATGACCCCGATGTTGAGCTGGTCCTGAACCTAACGGTTCCGGCAGTCCACGCCGAAGTGGCGCTGAAAGCGATTGCGGCGGGAAAGAGTGTGTACGGCGAAAAGCCGCTCGCTGCCACGACCGAAGAGGCACGCACGGTGCTGGATGCCGCGAAGGCCGCGGGCGCCGTCGTCGGCTGTGCGCCGGATACTGTCCTGGGCACCGGGGTGCAGACCGCCCGCAAGGCGATTGACGACGGCATGATCGGGACCCCGGTGTCCGCCACGGCCACCATGGCCACGCCCGGTCATGAGTTATGGCATCCCAATCCTGATTTCTACTACCAGCCCGGCGGCGGCCCGCTCCTGGACATGGGCCCCTACTACGTCAGCGCCCTGGTGACACTGCTGGGGCCGGTGGTGTCAGTGACCGGGGCGGCGAGCCACACCCGTGCCCAGCGCACCATCGGCTCGGGTCCCCGCGCCGGCCAGGTGATTCCGGTGGAGGTCGACTCGCACGTGACGGGTATCCTGACCCACCAGGACGGAGCCATCTCCACGCTGGTGATGAGCTTCGACGCGGTGCGCACCAAGGCCCCGAACATTGAGGTGCACGGCGAATTTGGCTCCCTGGTGGTCCCGGACCCCAACCGTTTCGACGGCGATGTTGAGCTTTTCGCCCTCGGCTCCCGCGAGTGGGAAACCCTGCCGGTCTCAGCCGGCTATGTGGACGCCGGCCGGGGCTTCGGCATCGCCGACCTCGCCTCGACCCCTGCAGGAACGGAACCCCGCGCTGGCGGGCAGCTGGCCTTCCATGTGCTCGATGTTATGGAATCGGTGCTGGAATCCGCCCGGGCAGGGTCCTCGGTAACCGTCCGCAGCACCGTGGCCCGGCCGGAGCCTGTGCCGCTGACGGCTGTTGCCTGAMGKPLNVGIVGCGAISAQYLASFRRLSSVRLVAVADLDQSRAQAVAKTNDGVRALSVDALLDDPDVELVLNLTVPAVHAEVALKAIAAGKSVYGEKPLAATTEEARTVLDAAKAAGAVVGCAPDTVLGTGVQTARKAIDDGMIGTPVSATATMATPGHELWHPNPDFYYQPGGGPLLDMGPYYVSALVTLLGPVVSVTGAASHTRAQRTIGSGPRAGQVIPVEVDSHVTGILTHQDGAISTLVMSFDAVRTKAPNIEVHGEFGSLVVPDPNRFDGDVELFALGSREWETLPVSAGYVDAGRGFGIADLASTPAGTEPRAGGQLAFHVLDVMESVLESARAGSSVTVRSTVARPEPVPLTAVANANANANANA
D1-29_00181699hypothetical proteinATGACCGGCAAGAAGTCCGCCCTGGTGGTCCGTGGCGGGTGGGACGGGCACCAGCCAGTGGAGGCGACGGACCGTTTCATCCCTTTCCTTGAGGGGAACGGATATAGCGTCCGGGTGGAGGACTCCCCCAAGATCTACGGGGACACTGATTACATGGCGGGCGTGGACCTGATCATGCAGTGCATGACCATGTCCACCATCGAGCGGGACGAATTCGATGGGCTGCGCACCGCCGTCGAAAACGGCACCGGACTTGCCGGCTGGCATGGCGGGATCGCCGATTCCTACCGGAACACGTCGGACTACCTGCACCTCATCGGCGGCCAGTTTGCGTGCCATCCGGGCAAGCACCCGGACGAGCGCACCGCCGGCCAGGCGGACAACTACGTGCCGTACACAGTGAACATGCTTCCCGCGGCGGCGGATCACCCGATCACCCGCGGCCTCAGCGACTTTGACCTGGTCACCGAGCAGTACTGGGTGCTGGCGGATGACTACATCGACGTGCTGGCCACCACCACCCAAAAAGTGCGCCCGTGGGACCCCTGGAACCGCGAAGTCACGTCCCCGGCGGTCTGGACCCGGCAATGGGGCCAGGGGCGGATCTTTGTCTGCACCCCCGGCCACAACCTGAAAGTCCTGGAGGACGCCAACGTGAACACCCTGATCGAAAGGGGACTGCTGTGGGCAAGCCGCTGAMTGKKSALVVRGGWDGHQPVEATDRFIPFLEGNGYSVRVEDSPKIYGDTDYMAGVDLIMQCMTMSTIERDEFDGLRTAVENGTGLAGWHGGIADSYRNTSDYLHLIGGQFACHPGKHPDERTAGQADNYVPYTVNMLPAAADHPITRGLSDFDLVTEQYWVLADDYIDVLATTTQKVRPWDPWNREVTSPAVWTRQWGQGRIFVCTPGHNLKVLEDANVNTLIERGLLWASRNANANANANA
D1-29_001821224iolG_2Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAGCACCCCGCCACCCCTCCGGATTGGCATGATCGGTTACGCCTTTATGGGCGCCGCGCATTCCCATGCCTGGCGTACCGCCCCGCGTTTCTTCGACCTGCCCCTGGAACCACAACTGACCGCAGTGGCCGGCCGCAGCGCCACGGGCGTCCGGGAAGCTGCCGCCAAACTGGGATGGGCCTCCACGGAGACGGATTGGCGGCGGCTGATTGAACGGGATGACATTGACCTGATCGACATCTGCACCCCCGGTGATACCCACGCCGAGATCGCGATCGCCGCCCTTAATGCGGGAAAGCATGTTCTCTGCGAAAAGCCGCTGGCCAACTCCGTGTCCGAGGCAGAGCGGATGGCGGAGGCGGCCACTGCGGCTGCGGACAAGGGGGTGTTCTCCATGTGCGGCTTCACCTACCGCCGCACGCCTGCACTCGCCCTGGCGAAGCGGATGATTGAGCAGGGCCGCCTGGGCAGCATCCGGCACGTCCGGGCGCAGTACCTGCAGGACTGGCTCAGCGACGAAACGGCCCCCATGACCTGGCGGCTGGACAAATCGAAGTCCGGCTCGGGATCGCTCGGCGACATTGGCGCGCACAGCATCGACGCTGCCCAGTGGGTCACCGGCCAGCAGATCAGCGGCGTCTCCGCACTGCTGGAAACCTTTGTCCCCGAACGCCCCCTGGCCGGCGACCTGGTTGGGCTGGGCGGTCACGGCGATGTGGACGCGAACGCACCGCGTGGCCAGGTGACGGTGGACGACGCTGCCATTTTCAGCGCAAGGTTCGACGGCGGCGCCGCTTCCGCCGGCAGTGCTTCCAACGGCGGTCAGCCAGCCGGTGCGATAGGAGTGTTCGAGGCCACCCGCTATGCGCTGGGCCGCAAGAACGCGATGCGGCTGGAGGTGAACGGTACCAAGGGCTCGCTGGCCTTCGACTTTGAAGACATGAACGTGCTCTCCTTTTACGATGCCGCCGCGGGTCCCGACGCCGGCTTCCGCAGGATCATGGTGACCGAGCCCGAGCACCCCTATGTGGGCAACTGGTGGCCCACAGGGCATGGGCTTGGCTACGAACACGGATTCACGCACCAGGCAGTGGACCTTGTGCATTCCATTGCCGAACAGCGCCAGCCCGAGCCCTCCTTCGCCGCCGCGCTCCAGGTCCAGCGTGTGCTTGCTGCCGTCGAGGCGAGCGCGGCCGCCGCCAGCCGCTGGCAAACCGTCTGAMSTPPPLRIGMIGYAFMGAAHSHAWRTAPRFFDLPLEPQLTAVAGRSATGVREAAAKLGWASTETDWRRLIERDDIDLIDICTPGDTHAEIAIAALNAGKHVLCEKPLANSVSEAERMAEAATAAADKGVFSMCGFTYRRTPALALAKRMIEQGRLGSIRHVRAQYLQDWLSDETAPMTWRLDKSKSGSGSLGDIGAHSIDAAQWVTGQQISGVSALLETFVPERPLAGDLVGLGGHGDVDANAPRGQVTVDDAAIFSARFDGGAASAGSASNGGQPAGAIGVFEATRYALGRKNAMRLEVNGTKGSLAFDFEDMNVLSFYDAAAGPDAGFRRIMVTEPEHPYVGNWWPTGHGLGYEHGFTHQAVDLVHSIAEQRQPEPSFAAALQVQRVLAAVEASAAAASRWQTVNANANANANA
D1-29_001831032ccpA_2COG1609Catabolite control protein AATGCCGTCTGAGCAGCAGGCCCGCCTGACCCTGGCGTCGGTCGCCAGGGAGGCTGGGGTTTCCGCGCCTACCGTCTCGAAAGTCATCAACGGCCGCCACGATGTCTCCGCCGAAACCCGGGCAAGGGTGTTGGCTGTGTTGGCCCGGACCGGCTACAAATCACCGCTGCAGCAGCGGCGTACGCTGGCGGAAAAGCCCGCGGTGGACGTAGTCCTGGACTCACTGAACTCCGCCTACAGCGTGGAGGTGCTCAACGGCATCCTGGAGTGCGCGGAACTCTCCGGTGTGGAGGTCCTGCTCACGGTCAGGGGAATCGACGGCGCCGCACCACTGAATCCGGAACGGCGCGCCCAGCGGATCATGGACGAGGGCCGTTGCGGGATGATCGTGGTGACGTCGGCCTTCGGCGACGCGCCCCTTGACGCCTTCCACCGCCGCGGCATTCCGGTGGTTGTCATCGATCCCCTCAATCCGCCGTCGGAAGAAGTGGTCAGTATTGGCGCCACCGACTGGGCCGGCGGCAAGGACGCCACGGCACACCTCCTGGCGCTGGGCCACCGAAGAATTGCCTATCTGGGCGGGCCGGACACCGTCGAATGCAACCAGGCCAGGCTGCACGGTTACCTGGCCGCGCTCCGATCAGAAGGAGTCGCTGTGGGGGACGGCTATATCGTTTCGGGCCCCTTCTCCGCGGATCACGGAGCCCAGGGGCTGAACACCCTGCTGCAACTGGAGCCACGGCCCACTGCCATCTTTGCCGGCAATGACGCCATCGCCCTGGGCGTGCTGGCCGAAGCACGCAGGCTGAACATCCGGGTTCCGGCTGACATCAGCGTGGTGGGCTTTGACGGTACCCGCCCGGCCCAGGACTCCGTGCCTGCACTGACGTCTGTGGCGCAACCGCTCCGCGAGATAGGCCGCACAGCCCTGCGGATTGTGCTGCGGCAGGTGCGCGGCGAGGTGCCCGACTCACGTCGGGTGGAACTGGCCACCCACCTGTTGGTCAGGGAATCCACCGCCCCGCCGCCCTAAMPSEQQARLTLASVAREAGVSAPTVSKVINGRHDVSAETRARVLAVLARTGYKSPLQQRRTLAEKPAVDVVLDSLNSAYSVEVLNGILECAELSGVEVLLTVRGIDGAAPLNPERRAQRIMDEGRCGMIVVTSAFGDAPLDAFHRRGIPVVVIDPLNPPSEEVVSIGATDWAGGKDATAHLLALGHRRIAYLGGPDTVECNQARLHGYLAALRSEGVAVGDGYIVSGPFSADHGAQGLNTLLQLEPRPTAIFAGNDAIALGVLAEARRLNIRVPADISVVGFDGTRPAQDSVPALTSVAQPLREIGRTALRIVLRQVRGEVPDSRRVELATHLLVRESTAPPPPGPT0017992_922DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_001841494dauA_1COG0659C4-dicarboxylic acid transporter DauAATGCAGCCCCTGCAGCTCCAGTCCGTCCGGGCCACCCTCCGCTCTCCCCGCCGGCTCAAGACCGAGGCCCTTGCCGGACTGGTAGTGGCACTGGCGCTGATCCCGGAGGCCATCGCCTTCTCGGTGATTGCGGGCGTTGACCCGCGGATCGGCCTGTTCGCCTCCTTCACCATGGCAGTCACCATCTCCTTCGTGGGCGGCCGGCCCGCCATGATCTCCGCGGCCACCGGCGCCGTGGCCCTGGTCATTGCCCCGCTGATGCGCAGCCACGGCCTGGACCACCTGATCGCCGCCGTGATCCTGGCAGGGGTCTTCCAGATCCTGCTGGCCGTCCTGGGCGTCACCAGGCTGATGCGCTTCATCCCCCGCTCGGTCATGGTGGGCTTCGTCAATGCCCTGGCCCTTTTGGTGTTCATGGCGCAGATTCCCGAGCTGATCGGCGTGCCGTGGATGGTTTATCCGCTGGTTGCCGTGGGCCTGGCCATCGTGGTCTTCCTGCCCAGAATCACGACGGCGGTTCCGTCACCGCTGGTGGCCATCGTGGTGCTCACCCTGTTTGCCGTACTGGCAGGGGTGGACGTGCCCACGGTCCAGGACAAGGGCCAACTGCCGGAGAGCCTGCCCTCGCTGTTCTTTCCCAGCGTCCCGCTGACCTGGGAGACCTTCCAGGTCCTGGCACCTTTCTCGCTCTCGATGGCTTTGGTGGGGCTGCTGGAATCACTGATGACGGCCAAGCTCGTGGACGACATCACGGACACGCGGTCCAACAAAACCCGTGAATCCTGGGGCCAGGGGGTGGCCAACATCGTGACCGGCTTCTTTGGCGGCATGGGCGGCTGCGCGGTGATCGGCCAGACCATGATCAACGTCAAGGGATCGGGAGCCCGGAGCCGGGTGTCCACGTTCCTGGCCGGCGTCTTCCTGCTGATCCTGGTGGTGGCGCTGGGCGATGTAGTGGGCCTCATTCCCATGGCTGCGCTGGTAGCCGTGATGATCTTCGTTTCCGCCATCACCTTCGACTGGCACTCCGTTGCTCCGCGCACACTGCGCCGGATGCCCAAGTCCGAAACCGCCGTCATGCTCATCACCGTGGCGGTGGTGTCGGTGACGCACAACCTGGCCATCGGGGTGGGAGCGGGGGTGCTGGCGGCCATGGCCATGTTCGCGCGCCGGGTGGCCCACTTTGTGACCGTGGAGCGCACGGTGGTGGAACTGAACGGCGAGAACGTGGCCATTTACACCGTGGACGGCGAGCTGTTCTTTGCCTCCTCCAACGATCTCTACACCCAGTTCGAATACGCGCTGGACGCCGAACCTGGCATTGACCGTGTCATCGTGGACCTGCACGCCTCGCACCTCTGGGATGCCTCCACCATTGCGGTGCTGGACGCCGTCACGGAGAAGTATCGCCGGCACGGACGCGAGGTGGAGCTGATCGGGCTCAACTCGGCCAGCATCCAGATGCGCGAGCGCCTGGCAGGCAAGCTGAACTGAMQPLQLQSVRATLRSPRRLKTEALAGLVVALALIPEAIAFSVIAGVDPRIGLFASFTMAVTISFVGGRPAMISAATGAVALVIAPLMRSHGLDHLIAAVILAGVFQILLAVLGVTRLMRFIPRSVMVGFVNALALLVFMAQIPELIGVPWMVYPLVAVGLAIVVFLPRITTAVPSPLVAIVVLTLFAVLAGVDVPTVQDKGQLPESLPSLFFPSVPLTWETFQVLAPFSLSMALVGLLESLMTAKLVDDITDTRSNKTRESWGQGVANIVTGFFGGMGGCAVIGQTMINVKGSGARSRVSTFLAGVFLLILVVALGDVVGLIPMAALVAVMIFVSAITFDWHSVAPRTLRRMPKSETAVMLITVAVVSVTHNLAIGVGAGVLAAMAMFARRVAHFVTVERTVVELNGENVAIYTVDGELFFASSNDLYTQFEYALDAEPGIDRVIVDLHASHLWDASTIAVLDAVTEKYRRHGREVELIGLNSASIQMRERLAGKLNPGPT0003020_4378DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
D1-29_001851107hypothetical proteinATGCCGAGTAACTGGGACAGCCTGGACGTCAGCCTCCGCGAATCCGTGCAGGAGAACGTGGAGCTTTACGAGCGCGTCCGGCCTGCCCTGAAGCTGGTCACGAAGGACGTTCTGCACATCCTGCGGGACATGCTCAAGGACACCGAGGTCACCCCGCTCTTTGTTACCGGCCGCACCAAGTCGGTGGAGTCGTTCCGGGAGAAAATTTCCCGGATCGAGGAGCCGCTGGAGCCCGGCGGCCCGCCGGTGCTGAAGTTCCCGGATCCGTTCAGGACCCTCAATGACATGGTGGGCGTGCGGGTCATCACCAAGCTGCCTGCCGAGAATGCCCTGGTGGCCAACCTGATTAAGCGCCAGCGCCAGGTCTTTGACTGCCGCGGCGACCGGGAGAAGGACATCGGCTCCATCGAGTCCGGCACGTACGGTTACTCCAGCCGCCACCTCATCCTGCGCAGCATCCAGAACGAGGCCGTCAAGGAGTACCAGCACGCCTTCAACCCGGACATCCAGCCCAACGGCAGCTACTTCTTCGAATGCCAGATCCGCACTGTCTTTGCCCACGCTTGGAGCGAGATTGAGCACGACATCCGCTTCAAGGCCGAGGATCCGCGCGCCTGGACACCCCACTTCGACCGTCAGTTCACCGCCACCGCCGCCATGCTGGAGACGGTGGAAGGCGCCTTCGCCGATCTCCACGAGCGCTATGAGGAGGTCCGCAGCTACTGGGACATGGACGGGGAGGGCGCCGCGCAGCTGACGCCCAACAGGATCCGTGACGTCTGGCGTACGCTGCTGCCACACGTGGACCGTAAAGTGGATGATGACTGGGGCTGGGCCGCCGAACTCATGGCGGCGCACGGCCTCAAGGAGACCGTCCAGCTGGCCGGGCTGCTCAGCGCCAACCGGATCACCGAGGTCCGCAAGGCGCTTGATCACCGCTACTCCCCCGGCCCGGACCGCCTGCTGGATGACCTCCTGCTGTGGCAGTACGGGCCCAAACACATTGACCTCACCGCCGAGGCGCCCGACGCCGTTCCGCACCCGCGGCGCGACAGCCTCCTCCGGCGGCTGAAACAGATCGAGCGTTACCGCCAGACCAAGAAATAGMPSNWDSLDVSLRESVQENVELYERVRPALKLVTKDVLHILRDMLKDTEVTPLFVTGRTKSVESFREKISRIEEPLEPGGPPVLKFPDPFRTLNDMVGVRVITKLPAENALVANLIKRQRQVFDCRGDREKDIGSIESGTYGYSSRHLILRSIQNEAVKEYQHAFNPDIQPNGSYFFECQIRTVFAHAWSEIEHDIRFKAEDPRAWTPHFDRQFTATAAMLETVEGAFADLHERYEEVRSYWDMDGEGAAQLTPNRIRDVWRTLLPHVDRKVDDDWGWAAELMAAHGLKETVQLAGLLSANRITEVRKALDHRYSPGPDRLLDDLLLWQYGPKHIDLTAEAPDAVPHPRRDSLLRRLKQIERYRQTKKPGPT0014825_56DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0014825-ywaC|yjbM-K07816NANA
D1-29_001861038cytR_1COG1609HTH-type transcriptional repressor CytRATGAAATCCGCGGAACAGGTGAAGCAGTCCGGGCGTGCGCCGCGGGTCACGGCGGCCATGGTGGCTGCCCGCGCCGGCGTTTCGACGGCGACCGTCTCGCTGGTTGCCAACGGCAAGACCGCGGGACGCGTCTCCGAAGACAATATTTCCCGGGTCCGGGAGGCAATCTCCGAGCTCGGCTACGTGGTGGACGGCATCGGCAGCTCCCTCGCGAAGGGGGTGAGCTCCATCGTCCTGCTGGTGGCACCGGACATCTCCAACCCGTTCTTCGCCAAGGTGATTGCAGGTGTCCGGGAATCCCTGGGGGCCGATTACCAGCTGCTCTTGTCAGTGACCGACGCCGGTGAGTTTCCGCAGGCGGACGACGTCAGGAAGCTGATGGCACTCCGGCCGGCCGGGCTGCTGGTGGATGCCCCGAACGCTGACTTCCTCGAGGAGCTGTCCGCGGCCGGGCCCCTCGTCCTGCTGGACGCACCGGGCCTGGAGGCCTACGCTCCCTCGGTCAACCTGGACGTAGCCCACGGTGCCCGTGAACTGGCGGCGCACCTGGCCGCCGTCGGGCATTCAGAGGCGGCGTACCTGGACAGCCTGACCGGCACCGCAACCTTCGACGTCCGCCGTGAAGCCTTCCTTGCCGAAGCCGAGGAACGCGGTATTTCGGTGAAGCCAGGCAGCGTCATCAGCACCACCATCGACGTTGGCGCTGCCGCCCAGGCGTTCGCAGCCGCCTGGCCGCAGTGGCAGGAAGCGGGCGTCACCGCCGTCGTCTGCGCTACGGACACCCACGCGTACGGGGTGCTGCAGGAAGCCCGCGTTGCCGGGGTCCGGATCCCGGCTGAGCTGGCCGTGGCCGGGTTCGATGACCTGCCGTACTCAGCCACCAGCAATCCCAGCCTGACCAGCGTCCATCTCCCCGCAACGCCGCTGGGGGCCAAGGCTGGCGAGCAACTCCGGCGCCTGATGGAAGGCCTGCCCTTGGAGCAGCCGCAACTGACACTCGAAAGCTCGCTGGTGGTGCGAAACTCCACCTCTGCCTAAMKSAEQVKQSGRAPRVTAAMVAARAGVSTATVSLVANGKTAGRVSEDNISRVREAISELGYVVDGIGSSLAKGVSSIVLLVAPDISNPFFAKVIAGVRESLGADYQLLLSVTDAGEFPQADDVRKLMALRPAGLLVDAPNADFLEELSAAGPLVLLDAPGLEAYAPSVNLDVAHGARELAAHLAAVGHSEAAYLDSLTGTATFDVRREAFLAEAEERGISVKPGSVISTTIDVGAAAQAFAAAWPQWQEAGVTAVVCATDTHAYGVLQEARVAGVRIPAELAVAGFDDLPYSATSNPSLTSVHLPATPLGAKAGEQLRRLMEGLPLEQPQLTLESSLVVRNSTSAPGPT0017992_5290DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_001871563hypothetical proteinGTGGAAAAGCCCAACAAAATACACCTGCCGCTCGGGATTTCCCTGGCGGTAGTGGCCAGCCTGGTCCTGACCGCTTCAGTGACTGTACCTGTGCAGATGACACCCCCACCCCAAGCCATCAGTGCACTTCCCGGACCAGCGCCGGAAAAGGTTGTTGTGGACGCGGCTGCGTTCGTGGACATGCGTGTCCGCGGTGCAGGGCCGGTCCCCATCGTGGCCAAGTGGCAGTACATCAACGGCGCAGAGGCTTTTAATACCAGACTGGACACTCGTCTCTTGGGGATCTTGGACGCCCAGGCGGGCGGCCGTCATGAGCCTTCAGTGCAGGACAGCGTTGCCGCGGCACCTATCAGGGATGGACTGTCGGTCACCCATGAGGTGGTGCTGGCTATCGGAAGCATCGCAGGTTCGAGGTTCGTGCAGGAATCCACGAACGGAGGCGTCCGGACCGGCTACACCGTGGAGACTGCATACGAGGACCTGGGTACCGGGGCAGTCACCGGCAGCGCCGCCCTGATCGATCCCGAAGAAATCAGCACGCTCCGCAGCATGCTCCGGGAGGTGCCGGAACTTTCCGCCCGGGCCGGCTCAGAGCAAGAACCGGCGCCAAGGCCAGCTGCCGAACAGGGCAGCACGCCCCCGGCAGACACGACGACGGGCACGGCGCCCATTCCTGATGGCGAGCTGCTCTCCGCCGTGACGTTCACTCCCGCCGGGGAAGTCAGCCTCACTCTAAGCCGGGTTCCTGATATCGGCTCCGCACTGGCCGATCCCGTCACCGTCGTCCTCAGCGCGGCAGCCGCCAGCAAAGTCCTGTCACCTGCCGGCCAGGCACTTCGCCGACAGGTCATCGCCGGAACGCCGTTCGAAACGCCTGCTTCTTCAGGTGTTGAACGCATCAACTGCGACCTGGTTGCCTGCGCTGCACTGACCTACGATGACGGGCCGAACGCCCAGACCGCCCGGCTCCTGGAGATCCTTGAAAAGCACAACGTGAAAGCCACATTCTTCCAGCAGGGCGCGTACGTCAATTCCCACCCGCAGGTTGCCAGGTCGGTAGCGGACGCGGGCCACACGATAGCAAACCACACGATGAGCCACCCCTACCTGACCAAACTCCCACCAGCCGGTATCGCACGGGAGGTCCAAGGTGCACAGGCAGCCATTGAAAAGGCGGCCGGTGTGGTGCCGGCCTACCTGCGGCCACCGTACGGTGCAACGAATGCCAGCGTTGCCTCTTCGGTTGGGCTGCCCCAGATCCTTTGGGATGTTGATGCTTTGGATTGGCAGTCCCGAAACAAGGCCGCCTTCATCCCGCGGATCATGGGCCTGGTCAAACCCGGATCCATCATTCTTCAACATGACGTCCATGCCGCCACTGTGGATGGCCAGGACGAGCTCATTACGCAACTCAAGAACCGGGGCTACCACCTGGTGACCTTGCCACAGCTTTTCGCCGGAATAGAGCTGGCGCCGGGGGGATTGTATAAATGCCGCGGGGCAACACCCGGCTGTGTCAGCGGACGCCATAGCCCGCCACCTGCATCGGCCCAGCACAGGTGAMEKPNKIHLPLGISLAVVASLVLTASVTVPVQMTPPPQAISALPGPAPEKVVVDAAAFVDMRVRGAGPVPIVAKWQYINGAEAFNTRLDTRLLGILDAQAGGRHEPSVQDSVAAAPIRDGLSVTHEVVLAIGSIAGSRFVQESTNGGVRTGYTVETAYEDLGTGAVTGSAALIDPEEISTLRSMLREVPELSARAGSEQEPAPRPAAEQGSTPPADTTTGTAPIPDGELLSAVTFTPAGEVSLTLSRVPDIGSALADPVTVVLSAAAASKVLSPAGQALRRQVIAGTPFETPASSGVERINCDLVACAALTYDDGPNAQTARLLEILEKHNVKATFFQQGAYVNSHPQVARSVADAGHTIANHTMSHPYLTKLPPAGIAREVQGAQAAIEKAAGVVPAYLRPPYGATNASVASSVGLPQILWDVDALDWQSRNKAAFIPRIMGLVKPGSIILQHDVHAATVDGQDELITQLKNRGYHLVTLPQLFAGIELAPGGLYKCRGATPGCVSGRHSPPPASAQHRPGPT0018645_731DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-29_00188915hypothetical proteinATGCATCAAAAGGTCAGTAGTCCGCGGCGTCGGGCGTTTCTTCTCACAGCGACAGCTTTGCTGCTCTCCGGATGCAAAGCCGGAGAGTTACCGTCAGCGCCCAAACTGACAGAACCTACGGCTCCTACAGCTTCGGCCGATGCGCCGGCTCCTGATATTTCTCCAGACCCGGAACCTCTCATACGGGATGCCGCGCCGGAGCCGGCAGTCCAGTCGCAGGAGCAGATACATGCCGGATTCTCTGAGCACCGTCCTTCCTATTGGGGCCTCCAGGCGCCAAAGGTCGTCCAATCCCTGCCACAACCCGCCGCAGGGATTGCGCTGACCCTGGATTTTTGCGGCGGACCGGGAGGCAGCGGAATTGCCCAGGCAGTCCTGGACATGCTGAAACGCCACGGGGTCCCGGCGACGCTGTTCCTGAACACACGATGGATCCACCACAACCAGAACCTGGCACAGGAACTAGCCGCCGAACCCCTCTTTGAACTCGCCAACCACGGAACCCGCCACGCCCCGCTAAGTGTGGACGGCAAATCCGCCTACGGGATCCCCGGAACGCAAAACAGGCATGAGGTATACGAGGAGATCATGTCCAACGACAACCTCCTGAGGAAAATCACCGGTAAGCGCCCGCGCTTTTTCCGTCCCGGCACCGCTTACCTGGACGACGTCGCAGCTGAAATCTGTCTCGCCCTGGGCGTGATTCCCACTGGCTTCAGCATCAATGCCGACGCCGGGGCAACATACCCAGCGTCAGTTGTCGCCGCCGAAACGGCCAAAGCCCGGCCTGGTGACATCATCATTTCCCACGGCAACCGCCCCGCATCCGGCACGGCGGCCGGACTCGCGACAGCCATCCCGGCCCTGCTGGAGAAGGGCTATGCCTTCACCACCCTCAGCGCAGCCCTGCCCTGAMHQKVSSPRRRAFLLTATALLLSGCKAGELPSAPKLTEPTAPTASADAPAPDISPDPEPLIRDAAPEPAVQSQEQIHAGFSEHRPSYWGLQAPKVVQSLPQPAAGIALTLDFCGGPGGSGIAQAVLDMLKRHGVPATLFLNTRWIHHNQNLAQELAAEPLFELANHGTRHAPLSVDGKSAYGIPGTQNRHEVYEEIMSNDNLLRKITGKRPRFFRPGTAYLDDVAAEICLALGVIPTGFSINADAGATYPASVVAAETAKARPGDIIISHGNRPASGTAAGLATAIPALLEKGYAFTTLSAALPPGPT0012156_526DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012156-chitin_deacetylase-NANANA
D1-29_00189762hypothetical proteinATGGGCCCTGAGGAGCAAGAACTGGCAGGCGGTAATGCGTCCGAAAGTGTTGTGCGCATCGGAAACACCGTCCGGAAGCCGTGGTTGGAAAACTCGTCCGCTATACAGAGCTATCTTGCTGCGCTCCGCTCCGCCGGGTTGGATGTTCCCTGCCCCCTGGGCCGTGACGAAAAAGGCCGGCAGGTGGTGGAGTACGTGGAGGGCGAATCCGCGATCAATCTGTTGCCACTTGGCCAGGAGGAATTACTGCGCGTTGGCCGGATGATCCGCCGTATCCACGATGCGAGCGAAGCGGTTGTGGTTCCCCATCAGGGCGACTGGAAGATGCTGCTGCCGGCGGAGAATCCTGACCTGATGTGCCATAACGACCTTGCTCCCTGGAACCTCATCATGGGTGACCGCTGGGTGTTTATTGACTGGGACGGCGCCGGCCCCAGCACCCGGCTGTGGGACCTGGCCTACGCGGCGCAGTCATTCGGTGTGCTGTTCGACGGGCAGCCTGTGGAGGAGGCGTCCCTCAGGCTGCGTGCCGTGGTGGACGGATATGACGCCGATGACAGCCTGCGCAGGGCGCTGCCGGCTGCGATGGCGGAACGGACAGCCGCGATGTTCGATCTCCTGAAGTCCGCACACGCTACCGGGTTCCAGCCATGGGCCGGCATGTACCTCAACGGACACGGCGAGCATTGGCGGGCCGCTGCTGGCTACGTCGCACGCCACCAGGCGGCGTGGGAACTGGCGCTCGCGCCCCTGGACTCGTGAMGPEEQELAGGNASESVVRIGNTVRKPWLENSSAIQSYLAALRSAGLDVPCPLGRDEKGRQVVEYVEGESAINLLPLGQEELLRVGRMIRRIHDASEAVVVPHQGDWKMLLPAENPDLMCHNDLAPWNLIMGDRWVFIDWDGAGPSTRLWDLAYAAQSFGVLFDGQPVEEASLRLRAVVDGYDADDSLRRALPAAMAERTAAMFDLLKSAHATGFQPWAGMYLNGHGEHWRAAAGYVARHQAAWELALAPLDSNANANANANA
D1-29_00190882hypothetical proteinATGGTCGGTGCCCGTACCCGCCTTCTAGCCTGGCTCGTCGTCCTGGCGACCCTCCTCGGAGCCTGCGCGCCCTCGATCGGCCTCGACGAAACCACCACCGCCCCGCCCGTCCCGGCTTCCTCGGCCCCGCCAGATACGGGCGGCGCTGCACCCGCCCCGCAGGCAGCACAGATTCCGACGCCGGTCCCCACCCCGGCGCTGGACCCCACCCCGGCGCTGGACCCGACCCCGCCGCCGGTTCCGGAGCCTGCCCCTGTCCCCGTGCCGGCCCCGGTGCCGCAGGCGTTCGCCCTCAATCTCTACCAGGAAGGGGACTTCGTGCCGCAGTACACCTTCGACTGGTGTGTTGCGGCGAGCATCCAGATGGCGCACAACCTGGTCGATGACACGGGCGGCGGCACGTGGACCGATCCCACCCAGCAGGGCGACCTGTGGGAGATGGCCCGGGCAAGGTCGTCCAACTCGTTCAACGGTGCCAACCCGTTGGGCTGGGCGCAGGTGCTGACTGAGGTGGGAATGGGGCCGTACAAGGTGGTCAGCATTGCCGACTACCAGGAGGCGCTGCGGACCGCGGCCCGCGCCATCGCCGATACGGGCCGCCCCGTGGGGCTGGTGATGTGGCGCGGCCGGCACGCGTGGGTGATGAGCGGGTTCGAATCGCTTGGCGATCCCCACCAGTTCCCGGAGTTCTCGGTCACAGGCGTCCGCGTCCTGGATCCGCTCCACCCGCACGGCAGCGACCAGTGGGGTCCGTCGCCCGCGCCCAACAGCCTGCTCACCCCCGAACAGCTTGCAACGCAGTTTGTGGTCCGCGAGCCGCGGCGCTGGAGCGGCGAGCTGCCCACCGGCTACCTGCTGGTGCTGCCGGTCGCCCAGGGCTGAMVGARTRLLAWLVVLATLLGACAPSIGLDETTTAPPVPASSAPPDTGGAAPAPQAAQIPTPVPTPALDPTPALDPTPPPVPEPAPVPVPAPVPQAFALNLYQEGDFVPQYTFDWCVAASIQMAHNLVDDTGGGTWTDPTQQGDLWEMARARSSNSFNGANPLGWAQVLTEVGMGPYKVVSIADYQEALRTAARAIADTGRPVGLVMWRGRHAWVMSGFESLGDPHQFPEFSVTGVRVLDPLHPHGSDQWGPSPAPNSLLTPEQLATQFVVREPRRWSGELPTGYLLVLPVAQGNANANANANA
D1-29_00191411hypothetical proteinATGAAGATTGCCCTGACAAGCCTTTTCGTCGATGACCAGCGGGCAGCCCTCGCCTTCTACACCGAGGTGCTCGGCTTCCGGAAGCGGCATGACATCCCCCTCGGGGAGGACTCCTGGCTCACCGTTGTGTCGCCCGAATCGCCCGACGGTCCGGAGCTGCTGCTGGAGCCGGCACGCCACCCTGCCGTGAAGCCGTACCGGGATGCCCTTGCCGAAGACGGCATCCCCCTCGCGCAATTCGCCGTCGGCAACATTGAGGCGGAGCACGGCAGGCTGACCGGCCTGGGCGTGGTGTTCACCCAGCCGCCCACCGACATCGGCACCGCCTTCGTGGCCGTCTTTGATGACACCTGCGGCAACCTCATCCAGCTCATCGAAATGAAGCCGGAGGGAGACAACACTCCCTCGTGAMKIALTSLFVDDQRAALAFYTEVLGFRKRHDIPLGEDSWLTVVSPESPDGPELLLEPARHPAVKPYRDALAEDGIPLAQFAVGNIEAEHGRLTGLGVVFTQPPTDIGTAFVAVFDDTCGNLIQLIEMKPEGDNTPSNANANANANA
D1-29_00192285hypothetical proteinATGGTCGATGTGTTCCGCGCCCTGGACGATGAAACAAGGCGCCTGGTCCTGGACGAATTGTCGGTGCGCGACGGCCAGACGCTCTTCGAGCTCTGTTCCGTGCTCGCGATGCGCCATGGCCTCAGCCTCACCCGCCAGGCCATCTCCCAGCACCTGGGTGTGCTCGAGTCAGCCGGCCTGGTGACGACGGAGCGGCGCGGACGCTCCAAATTCCACTACTTCAACCCAGAGCCCCTCGCCCAGATCACCGGACGATGGCCCACCAGAAAGAGGACCGAACCATGAMVDVFRALDDETRRLVLDELSVRDGQTLFELCSVLAMRHGLSLTRQAISQHLGVLESAGLVTTERRGRSKFHYFNPEPLAQITGRWPTRKRTEPNANANANANA
D1-29_001931026rihA_1COG1957Pyrimidine-specific ribonucleoside hydrolase RihAGTGGACCCCTACCGCCTGACACCTGAACCCCGGAAGATTATTCTCGACTGCGACCCCGGGCACGACGACGCCGTGGCGCTGCTCCTGGCGCACGGCAGCCCTGAGATTGAGCTGCTGGCCGTCACCACGGTGGTGGGCAACCAGACCCTCGACAAGGTCACCAAAAATGCCCTGGCCGTCGGCACCATCGCCGGCATCACCGGCGTCCCGTTTGCCGCCGGATGCGCCCGCCCCCTGGTCCGCAGCATCGAAACCGCCCCGGACATCCACGGCGAGTCCGGCATGGACGGCCCCGCCCTCCCCAAGTCCGCCATCGAGCTGGACCCGCGCCACGCCGTCGACCTCATCATTGACACCGTGATGGCACACGAGCCGGGCACCGTCACCCTGGTGCCCACCGCCGGCCTGACCAACATTGCCCTGGCCGCGCGCAAGGAACCGCGCATTGTGGAACGCGTGAAGGAAGTTGTCCTAATGGGCGGCGGCTACCACGTGGGCAACTGGAGCGCCGTGGCCGAATTCAACATCATCATCGACCCCGAAGCCGCCCACATCGTCTTCAACGAAAAATGGCCAGTGGTCATGGTGGGCCTGGACCTGACCCACCAGGCACTCGCCACCCCGGACGTCGTGGAAAGGATCGCGGCCATCGGCACCAAGCCGGCACGCTTCGTCACGGAACTGATGGACTTCTTCGCCCACACCTACAAGGACGCCCAGGGCTTTGACCACCCGCCGGTGCATGATCCGTGCGCCGTGGCCTACGTGATCGATCCCAGCATTGTCAGCACCCGCAAAGTACCGGTGAACATCGAGCTGCAGGGAACCCTGACCCTGGGCATGACCGTGGCTGACTTCCGCGCCCCGGCACCGTCGGACTGCCACACCAGCGTTGCCGTGGACCTTGACCACAAAAAGTTCTGGGACCTGGTGACCGATGCGCTGGTCCGCATCGGCGAGCCGGGGCAACCAGCGGAGACTGCACGCCCCGAAGGCGCGGCCCTCACCGCCGGAGGGATCAAGTAAMDPYRLTPEPRKIILDCDPGHDDAVALLLAHGSPEIELLAVTTVVGNQTLDKVTKNALAVGTIAGITGVPFAAGCARPLVRSIETAPDIHGESGMDGPALPKSAIELDPRHAVDLIIDTVMAHEPGTVTLVPTAGLTNIALAARKEPRIVERVKEVVLMGGGYHVGNWSAVAEFNIIIDPEAAHIVFNEKWPVVMVGLDLTHQALATPDVVERIAAIGTKPARFVTELMDFFAHTYKDAQGFDHPPVHDPCAVAYVIDPSIVSTRKVPVNIELQGTLTLGMTVADFRAPAPSDCHTSVAVDLDHKKFWDLVTDALVRIGEPGQPAETARPEGAALTAGGIKPGPT0013465_159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013465-iunH-K01239NANA
D1-29_001941428hypothetical proteinATGACTGCCACCCTCACAGCCTCCAAGACAAGCCGCGGCAACGTTACCGCGCTCATGATCGCCCTGCTCGCCGCGTGCGTGGCGTTCCAGCTCAACGCCTCCATGCTGAGCCCCGCCCTGGTCACTATGGGCAAAGAGCTCAACACGGACCAGGCTGTTATTGGCCTGTCCCAGACCTGGTTCTTCACCGCGGCCGCCCTGTTCTCCCTCTTCCTTCCCCGCCTGAGCGACATCATCGGCCGGAAGAAGATCCTGCTCGGAATGATGCTGCTGATGGCCGTTGGCTCCGTCATCGCAGCAATGGCCCCGGACGTCACCTGGCTCTTCGTGGGACGGATCATCCAGGGCGTCAGCGGCCCCACCGTGCCGCTCTGCCTGATCATGCTCCGGTCCGCCGTCACCAGCCCCCGCAAGTACGGAACGCTGATGGGCCTCATCACCGCGGTCAACGGCGGCGTGGCTGGCGTTGACTCCTTTGTGGGCGGCTACTTTGCCGAGCACTACGGCTTCCGCAGCATCTTCTGGCTCATGGTGGTGCTTGCCCTCGTGGCAACAGCCCTGATCGCCCTGCTGGCCGGAGAGAGCAAGCCCGCAGCAGGCACCACCATGGACTGGCTTGGCGTGTTCTTCATCGTTGTTGCCGTGGGCGCGCTGCTCACCGCCCTCAATGAAGGCTCCAAACTGGTGGGCGCCTTTTCGGCCGGCACACTGATGCTGGCCCTCGGACTGGTGGCCGTTGCCGCCGTCGCGTTCTACGCCTTCTGGCGGACCGAGAAGCGCGCCAAAGAACCCATGGTGGAAACCGTGCACCTCCGCCAGCGCTCCACGTGGGCGCCGCTGCTGACCACCACGCTGACCATGACGGGCATCTTCGCCGTGATCAACGGCATCGTCCCGGCCTATGTACAGGCAGCCGGCCCGGGGTTCGGCGTCGGTCCCACGGAAATGTCGCTCATCATCCTCACTCCGTACGCCCTGCTGGGCTGGGTGGTGGGTCCGCTAAGCGGCAAGCTGGCGCCCGTGCTGGGCTACACCAAGGTCCTCCGCATTGGCATGCTGGGCAGCATCGCCGCCCTGGCCGTCATCGCGTTCTTCGGCCTGAGCAGCCTGCCGATGATGATCGCCGGAACGGTCTTGCTGGGCATCATGTACGCCGGTACGGTCAACATCATGCTGAATGGACTCGGAGTTGTCCTCTCGCCCGCCGGAAACCCCGGCTTCCTGCCGGGTATGAACGCCGGAGCCTTCAATCTGGGCGCCGGCCTGAGCTTCCTGGTGCTGCCGGCCGTTCTGGTGGCAACATCGGCACTTGGCGACGCCAAGGCGTCCTACCTCACCGTGGTGGTGGTTGGCCTGGCCATCACCGTGGCGGCCTTCGCGGCGTCGCTGCTGATCCCCAAGCCCATTGAGGCGGAGGTGGCCGAATGAMTATLTASKTSRGNVTALMIALLAACVAFQLNASMLSPALVTMGKELNTDQAVIGLSQTWFFTAAALFSLFLPRLSDIIGRKKILLGMMLLMAVGSVIAAMAPDVTWLFVGRIIQGVSGPTVPLCLIMLRSAVTSPRKYGTLMGLITAVNGGVAGVDSFVGGYFAEHYGFRSIFWLMVVLALVATALIALLAGESKPAAGTTMDWLGVFFIVVAVGALLTALNEGSKLVGAFSAGTLMLALGLVAVAAVAFYAFWRTEKRAKEPMVETVHLRQRSTWAPLLTTTLTMTGIFAVINGIVPAYVQAAGPGFGVGPTEMSLIILTPYALLGWVVGPLSGKLAPVLGYTKVLRIGMLGSIAALAVIAFFGLSSLPMMIAGTVLLGIMYAGTVNIMLNGLGVVLSPAGNPGFLPGMNAGAFNLGAGLSFLVLPAVLVATSALGDAKASYLTVVVVGLAITVAAFAASLLIPKPIEAEVAEPGPT0021051_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021051-uriP-NANANA
D1-29_001951011rbsK_1COG0524RibokinaseATGAGCGCTGCAGCGGCCGGACCCACCACCGGCAAAAGTGGCCGGATCGTCGTCGTCGGGTCGCTGAATGCTGACCTGACCATCTACTGTGAGCGGCTCCCGCTCCCGGGCGAGACGGTCCACGGCACCGGGTTCGCCGTCAACCCGGGCGGCAAGAGCGCCAACCAGGCTGCCGCCGCCAGTCTCCTGGGCGGGACCGTGAGCCTTATCGGCGCGGTGGGGGACGACGCCAACGGCGAGATGCTCCTCTCCTCCGCGGCGGGCGCCGGAGTGGACATCTCCCATGTTCGCACGTCCACCGCCGCTCCCACCGGCCTCGCGGTCATCTCCGTCGACGCCCGGGGGGAGAACAACATCATCATCTCCGCGGGGGCGAACGGAACGCTGACTCCCGCGGATGTGGCCGCCTCAGCGGACGAGTTCGACGGCGCCTCCGTGGTCAGCCTTTGCCTTGAGGTCAGCCTTGAGACTGTTCTGGCGGCCGCGCAATTGGGGCACGACGCCGGCGCAACAGTTTTGCTCAACCTCTCGCCTTACGGCGACATCCCGCAGGAGCTCGCCGACCTGACGGATATCCTGCTGGTCAATGCCCACGAGGCAGCGCTGTTCCTCGGTTCGTCCGGCAGCGCAGACTCGCCCGGTGCGGGGATGCCGGATTCCACAGGCGACGACGGCGACTGGGATCACATTCGGCAGCGTTTCGTTCAGCGGGGGCTGCAGCGGGTGGTGGTCACCCTGGGTTCCGAAGGTTCCGTCGTGTTGGACTCGCTGGCCGGCCCCGGCCAACAGGTCACCCGAATAAGGCCCACCCAGGTCAAGGCAGTGGATACCACCGGTGCCGGCGATGCCTTCACCGGGGCGGTGGCGGCCTGCCTGGCTGCAGGCGGTTCCCTGGCTGATGCCGCGGGGTTCGCGTCAGTTGCGGCTGCGCTCGCCACCACGCGGAAGGGGACGCAGACGGCCTACCCGGAGGCAACAGATGTGGGGCGGTTGCTGGGTTCCGTGCAGTAGMSAAAAGPTTGKSGRIVVVGSLNADLTIYCERLPLPGETVHGTGFAVNPGGKSANQAAAASLLGGTVSLIGAVGDDANGEMLLSSAAGAGVDISHVRTSTAAPTGLAVISVDARGENNIIISAGANGTLTPADVAASADEFDGASVVSLCLEVSLETVLAAAQLGHDAGATVLLNLSPYGDIPQELADLTDILLVNAHEAALFLGSSGSADSPGAGMPDSTGDDGDWDHIRQRFVQRGLQRVVVTLGSEGSVVLDSLAGPGQQVTRIRPTQVKAVDTTGAGDAFTGAVAACLAAGGSLADAAGFASVAAALATTRKGTQTAYPEATDVGRLLGSVQPGPT0017405_606DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
D1-29_00196693hypothetical proteinATGGCATGGATCCGGGGTGGCATTTTGGCGGTTTTCGTACTGATTCATGGTGGCGGTTCCACCGCATGGGACTGGCATCTTGTCAGACCACTGCTTGAGGCATCGGGCCATGACGTCATCGCTGTCGATTTACCTATCGAAGATGACAAGGCAGGGCTTGAGGACTACGTCCATGCAGTAACTGCAGCGGTGGGCGACGCTCAGCGCACCATCGTGGTCGGCCACTCACTGGGAGGCTTCACGGCGCCCTTGGTCTGCGACGAGCTCCAAGCGGACGGTCTCATGTATCTTGCGGGAATGATCCCAGTACCGGGTGAGACATTTGCCGACTGGTGGACCAACACGGGTCATGACCGGGAGACGATAGATCCGGACCCCCAGGCGGCGTTTTTCCACGATGTCCCCGAAGATTTGGCACACCAGGCCCGCGATAGGGAGCGCGACCAGCAAGGTGCATGGATGGCCCGGCCCTGGCCGGGTCACAGGAATCCGGCCGTCCCCACGAGAGCAATACTGTGCCGCGACGACAGGTTCTTTCCGCCATCTTTCATGAGACGCCAGATACACGAGCGACTTGGAATTGAGCCGCTGGAAATCCCAGGGGGCCACTACGCCACCTTGGGTCATCCGTACGCTGTGGCTGCTGCGCTGGACGGCTTCGCCCAAGAGATCAGTCAGATGCGGCGCAGGTAAMAWIRGGILAVFVLIHGGGSTAWDWHLVRPLLEASGHDVIAVDLPIEDDKAGLEDYVHAVTAAVGDAQRTIVVGHSLGGFTAPLVCDELQADGLMYLAGMIPVPGETFADWWTNTGHDRETIDPDPQAAFFHDVPEDLAHQARDRERDQQGAWMARPWPGHRNPAVPTRAILCRDDRFFPPSFMRRQIHERLGIEPLEIPGGHYATLGHPYAVAAALDGFAQEISQMRRRNANANANANA
D1-29_001971284tylNO-mycaminosyltylonolide 6-deoxyallosyltransferaseATGCTTGTTCTGATCATGTCGTTCGGGACCCGCGGAGACATTCAGCCCTACGCCGCCCTCGCCGGTGCGGTTGCCCGCGCGGGGCACGACGTCACCCTCGCTGTCCCTGAAGGGTTCGAAGATCTGGTGCCACACGCCGGCCCCGGAACCATCACGCACCATCCGGCGGGTTCCACGATGCTGCGTCTTGTTCAGGAGGTCATGCCCGAGCTGAGCGGTCCCCGGGATGCGTTGCGAACACTGGGGATTATGACCTCCGCGATGCGCGAGCTGAACGCGGAGTGCTGGGCTGCGGCAAAGGCGGCGCGCCCGGACGTCGTGGTGTACCACCCCAAGTGCCTTGCCGGGCCGCACATCGCCGAGGCGCTGGGGGTTCCCGGCGTGCTTTCCCTCCCGTTGCCGTTCTTTACCCCGACGCGTGCGCACGCCATGCCGTTCTTTGGTGGCGCCTCCTTCGGGGCGTTGGGAAACCGTGCGTCCTACGGGTTCCGCCGAATGGCTGGGGCCATATACGGCGGCATGATCAACGGCTTCAGACGCGAGGTCGGCCTGGGCCGCATCCACCGTCTCGCCGATCCGCTCAGGAATCCTGACGGCAGTCCGGTCCACGTCCTGTACCCGTACAGCAGGCACGTTGTGCCTATCCCGGACGACTACCCGCCTTCGGCCCACGTCACCGGCTACTGGTTTCTGGATCACAGCGATGACGGCCATGACTGGGATCCGCCCCCGCAACTGGTGGACTTCCTCGCGGCTGGCGAGCCTCCGGTCTACGTCGGGTTCGGCTCCATGGGCTTCGGTAAGGGAGCGAATGAGCGCCGGGACGCCGTTCTGGACGCGTTGCGGGTTCATGGTCTACGCGGAATCATCGCGACCGGGTGGGGCGGCATCGCGCCCGGCGAGGCTGGGACCGACGACGTCCTGGTCCTGGAGGCCGTGCCCCATGAATGGCTTTTCCCGCGTGTCGCGGCGGTTGTGCACCACGGCGGTGCGGGCTCGACGGCGGCTGGCATCCGGGCGGGTCGGCCTACGCTGGTCGTGCCGTTCCTTGGGGACCAGCCATTCTGGGGCATGCGGGTCCATGCGCTCGGCGTCGGACCTGCCCCGCTACCGGCCAGGCATCTCAGGACGGGCCTGACCGACCGTCTCGGCGACCTCGTCCACACCGCCTCTTACGCCTCCCGTGCCGATGAGCTGGGCGTCGCAGTCCGCGCCGAAAACGGTCTCGCCGCCGGTGTGCGCGCCCTGGAGCAGATCACCGGTGCTTACCTGCGCCGCATCTGAMLVLIMSFGTRGDIQPYAALAGAVARAGHDVTLAVPEGFEDLVPHAGPGTITHHPAGSTMLRLVQEVMPELSGPRDALRTLGIMTSAMRELNAECWAAAKAARPDVVVYHPKCLAGPHIAEALGVPGVLSLPLPFFTPTRAHAMPFFGGASFGALGNRASYGFRRMAGAIYGGMINGFRREVGLGRIHRLADPLRNPDGSPVHVLYPYSRHVVPIPDDYPPSAHVTGYWFLDHSDDGHDWDPPPQLVDFLAAGEPPVYVGFGSMGFGKGANERRDAVLDALRVHGLRGIIATGWGGIAPGEAGTDDVLVLEAVPHEWLFPRVAAVVHHGGAGSTAAGIRAGRPTLVVPFLGDQPFWGMRVHALGVGPAPLPARHLRTGLTDRLGDLVHTASYASRADELGVAVRAENGLAAGVRALEQITGAYLRRINANANANANA
D1-29_00198942kdgK_12-dehydro-3-deoxygluconokinaseATGGACGTCCTGACCTTCGGCGAAACCATGATCGCGCTCAGGGCGGACCGCCCGCTGGCCCTGAACCCGAACATCAGCGCAACCATAGCCGGTGCGGAGTCGAACGTGGCCATAGCGCTGGCGCGGCTAGGGCACAGCGTCCAGTGGGCCGGCAGGGTGGGCAACGACGCCGGCGGCGACCTTATCCGGCGCACGCTCCGGGCCGAGTCGGTGGGACAGGACCATGTCACCACCGATCCCCACCGCCAGACCGGCATCCTGATTTTCGAGCAGCGGCTGCCGGATGTGACCAGGGTTGACTACTACCGCCAGAACTCCGCAGGTTCGGCAATCAGCAGCGATGATGTGATCGCGGCACTCTCTCGGGGCCCGCACATCCTGCACATCACCGGAATCACCCCTGCCTTGAGCACCAGCGCCGCAGAGGCAGTCCTCCGCGCAGCATCCGCGGCACAGCAGGAAGGGGCAACAGTCACGTTCGACGTGAACTACCGATCAAAGCTCTGGACGAGGGAGGAAGCGTCCTCAACTTTCAGGGCACTGGTCCCCCACGTGGACGTTGTCATCGGCTCAGCGGACGAACTGGAACTCCTCATCGCAGATCCGCATCCGGAAGCGGACGCGGCGCCGGCCCTCCTCACCCTCGGCGTGCGGGAAGTCGTGCTCAAACGTGGCGCCGGCGGAGCCACACTTTCCAGCAGGCACGGAACTGTGCACTCCCCCGCCCGTCTTGTCACCGCCGTCGACAGCGTTGGTGCCGGTGACGCCTTCACTGCCGGCTACATTTCCGGGCTGCTCACCGGGCTCACAGCGGAAGGGCGGCTGCGCCTGGCCAACACGCTCGGAGCGTTCGCCGTTTCGAGCAAGGGAGACTGGGAAGGCCTGCCCACCCGGGACGAATTGGCCCTGCTGGATGCCGCGGACGGCACCGTCCTCCGTTGAMDVLTFGETMIALRADRPLALNPNISATIAGAESNVAIALARLGHSVQWAGRVGNDAGGDLIRRTLRAESVGQDHVTTDPHRQTGILIFEQRLPDVTRVDYYRQNSAGSAISSDDVIAALSRGPHILHITGITPALSTSAAEAVLRAASAAQQEGATVTFDVNYRSKLWTREEASSTFRALVPHVDVVIGSADELELLIADPHPEADAAPALLTLGVREVVLKRGAGGATLSSRHGTVHSPARLVTAVDSVGAGDAFTAGYISGLLTGLTAEGRLRLANTLGAFAVSSKGDWEGLPTRDELALLDAADGTVLRPGPT0018060_1972DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-29_00199660kdgA_1COG0800KHG/KDPG aldolaseATGGAAGACGCTTCCCCTGTACTCCTTGCCGGCCTGAGGAACAACCGGCTGCTCGCCATCATCCGCGGCAACAATCCGGATGCCTGCTTCAACACCGCCATGGCGCTGATCGATGCGGGGATCACCATCGTGGAAGTCTCGCTGACAACGGCGGGGGCCCTGGCCGTGATCAGCCGCATCGCCGAGGCCGCCAGCGGCCGTGCCCTCTTGGGCGCCGGTACAGTCCTGACGTCCGGTCAGGTCCGGGAAGCGCACGACGCCGGTGCGCAGTTTATCGTGACGCCCTGCCTTGCGCCCAGCATCGGGGAGGCCCGCAGCCTGGGGCTTCCCGTGCTGGTGGGGGCCCTCACGCCCGCCGAGGTGTATGCCGCTGCACGCGAAGGCGCCACTGCTGTCAAGCTGTTCCCCGCGAGCGTGGGCGGCCCGGCCTACCTGAAGGCACTGCGGGACCCGTTCCCGGAGATCCCCTTTGTGCCCGTCGGGGGCGTCAGTGCCGATTCGGTGGCCGGTTATCTGCAGGCAGGGGCGCTTGCCGTGGGCGCAGGCAGTCCCCTGACCGGCGACGCACCCCGCGGCGGCAGCCTTGCCGCTCTTCGCGAGCGTGCCCGCGATTTTATTGCGCTCGCGCAGGAAGGCCGTCATCCCCAATGGACGTCCTGAMEDASPVLLAGLRNNRLLAIIRGNNPDACFNTAMALIDAGITIVEVSLTTAGALAVISRIAEAASGRALLGAGTVLTSGQVREAHDAGAQFIVTPCLAPSIGEARSLGLPVLVGALTPAEVYAAAREGATAVKLFPASVGGPAYLKALRDPFPEIPFVPVGGVSADSVAGYLQAGALAVGAGSPLTGDAPRGGSLAALRERARDFIALAQEGRHPQWTSPGPT0002060_3309DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
D1-29_00200825udhCOG0451Uronate dehydrogenaseATGACCTTAGGTGCAGACGAAGGAACCAAGCCTCCCCTCGTTGTTGTCACGGGCGCCGCCGGGCACGTCGGACGCCTCACCTCGGCGGCCCTCGCCGGGCGCTACAGGCTCCGGCTGATCGATCTGGACTGGCCCGCCGCAGGGCCGGGGGAAACGCCGGACGGGATTGAACGCATGGCGCTGGATCTGAGCCACCGCAGTGCCTGGGACGTGGCGATTGAGTCCGCCGACGCCGTCGTGCATCTGGCCGGGCATCCCTCCCCGGAAATCGATGCGCGGACAGCGGTGGAGGGCGGAGCCATGCTGACGGCGCATCTCACGGCGGCGGTTGCGGGCTCGGACGTCAGGAGGATTGTCTTCGCGAGCTCCATCCATACAATGGGCCTCCACCACCGGCATGGGCACTACCCCGTCAGCCAGAAGTGGGCGCCCCGCCCCTGCTGTGAATACGGGGCTGCCAAGGTGTTCTCCGAGAATCTGCTGGAAATCCTGGCCGAACGGACGCCGATCTCAGTGATCTGCCTGCGGCTTGGCCTGACCGGCTTTCCACCCGGAACAACTGCCCACGCCACCCAGTGGCTGGGGCCCAATGACTACGCCCAGTTGCTCCACGCCTCACTGACGGTGCCGCTGCATTACGGGACGTATCTCGGCATGTCGGCGGCAGCGGGTGAAAGGTGGGACCTGACCGACAGCATCAGGGACCTTGGGTTCGATCCCGCTGACCCCACCCCTGTCCCCGAAAATCCGGAGGAGCCCCAAGCATCCCCTTGCCTGATGTTCCCCGCCACCCTGCCGCCCCCAACCGACCCCTCGGAGCCCTAGMTLGADEGTKPPLVVVTGAAGHVGRLTSAALAGRYRLRLIDLDWPAAGPGETPDGIERMALDLSHRSAWDVAIESADAVVHLAGHPSPEIDARTAVEGGAMLTAHLTAAVAGSDVRRIVFASSIHTMGLHHRHGHYPVSQKWAPRPCCEYGAAKVFSENLLEILAERTPISVICLRLGLTGFPPGTTAHATQWLGPNDYAQLLHASLTVPLHYGTYLGMSAAAGERWDLTDSIRDLGFDPADPTPVPENPEEPQASPCLMFPATLPPPTDPSEPNANANANANA
D1-29_002011131COG4948D-mannonate dehydrataseGTGAAAATAACGGACCTCGAAGTCCTCACCATTGACGACGGCGGTGCCCTGATGATGGTGGTTGTCCACACCGACGAGGGGATTTTCGGTGTGGGAGAGGTGGGGCTCCGCTCCCGGCAGCTGGCCGTCCGGGGAGCGCTGGAACACTTCAAGCCCCTGCTCATCGGCAATGATCCCTTCCGCACCGAACACCTTTGGCAGGTGATGTCCCGGTCAGGGTTCTACCCCGCGGACCGAGTCCTCGCCTCTGCCATCTCGGCGGTGGACATTGCCCTCTGGGACCTGAAAGGCAAGGCGCTGGACGTCCCGGTTTATGAACTGCTCGGCGGCGCGGTCCGTGACCGGGTGAAGTGCTACCGCCACATCGGCGGCGCCGACCATGCCGAGCTCGTGGACAACGCGCGGCAGGCCTTTGAGCAGGGGTGGACTGTAGGGCGGCTCTCTGTGCCGTCGGAAGGCGACCTGCTGGAACCCCGTGCCGCCGCCCGGCACGCCCTGGCGGAAGTGGCTGCCGTCAGGGATGAGCTCGGCACGGAATTCGAGCTCATCCTCGATGTCCATACCCGGCTGGAACTTCCCGAGGCAACTACCCTTTGCCGTGAGCTGGAGGGGGCTAACATGTACTTCGTCGAGGATCCCCTGCGGTGGGAGAACCCTGACATCTACGGCGCCCTGCGCCAGCGCACCTCGGTGCCGCTGGCAGCGGGCGAGCAGGCCGCGTCCAAGTGGGAAATGCGGCCGCTGATTGAACGGGACCTGATCGACTATGCACGCTTTGACATCTGCATTGTGGGCGGGTTCACCGAGGCCAAGAAGATAGCCGGCTGGTGCGAGTCCCACCACATCCGCACAGCTACGCACAACCCGCTGGGCCCCATCGCGACGGCAGCATCCCTGCACCTGAACATGACACTGCCGACCTTCGGCATCCAGGAGCAGTACCAGTTGCCGGGCACCCAGGTCACTGACGTGTTCCCGGTCCAGGCCACCATGGACGGGGAATGGATGCGCCGCCCCGAAGCCCCCGGCCTTGGCCTTGAAGTTGACCTGGAGGCCGCCCGCGCCCACCAGATGGAACCGCCGCTGATGCCGCAGCTGCGCCGACTCGATGGATCCTTCACCAACTGGTGAMKITDLEVLTIDDGGALMMVVVHTDEGIFGVGEVGLRSRQLAVRGALEHFKPLLIGNDPFRTEHLWQVMSRSGFYPADRVLASAISAVDIALWDLKGKALDVPVYELLGGAVRDRVKCYRHIGGADHAELVDNARQAFEQGWTVGRLSVPSEGDLLEPRAAARHALAEVAAVRDELGTEFELILDVHTRLELPEATTLCRELEGANMYFVEDPLRWENPDIYGALRQRTSVPLAAGEQAASKWEMRPLIERDLIDYARFDICIVGGFTEAKKIAGWCESHHIRTATHNPLGPIATAASLHLNMTLPTFGIQEQYQLPGTQVTDVFPVQATMDGEWMRRPEAPGLGLEVDLEAARAHQMEPPLMPQLRRLDGSFTNWPGPT0002220_1679DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0002220-dgoD-K01684NANA
D1-29_00202891araQ_2COG0395L-arabinose transport system permease protein AraQATGACGCTCACCGGTCACCGCCCCCAAACACAGTCCCAGGCCGCCCCGCCGGAACCACCAATCCGGCAGAGCCGGGAACGCAAGAACCCGGTGGCTTTCGTGATCCTGCTGGTGGTCTGCGCCATTCTGTTCCTTCCCGTCCTCTGGCTCCTCCTGACGGCGCTGAAGTCTCCGCAGCAGCTGGCCTCCGATCCCATCACCTGGATTCCCACCCAGCCGCAGGTGCAGAACTTCATCGATGCCACGATGATCCTGCCCTTCTGGGCCTATGCGGCCAATTCCCTCTTCCTGTCCACCGTGACCGGCGTCCTGACCACCGTCAGCTCCGCGCTTGTGGGCTACGGGTTCGCCCGGCTTAACGGCAAGGGAAAAAACGTCCTCTTCGGGATCCTTATCGCCATGATGATGACACCGCCCATCATCACCCTCATACCCACCTACCTGCTGTTTGCGAAGGTTGGACTGGTGGGAACGTACTGGCCATGGGTCTTGTGGGGAATGGCCGGTGCTCCTTACCTCATTTTCCTCTACCGCCAGTTCTTCGCGCAGCTGCCACGGGAACTTGAGGAGGCCGCCATCCTGGACGGCTGCGGCCGGCTGCGCATCTTTGTGCAGATCTTCCTGCCGCTTTCCAAGCCGGTCATCATCACCGCCTTTGTCCTGTCCTTCAACGGCGTGTGGGGCGACTTCATCGCCCCGCAGCTTCTGCTCAACCAGGACAACACCACCCTCGCTGTGGCCATCACCACCGGCTATGTGAACTCCCAGGGGTTCCCGGTCAACAACCTGCTGGCGGCCGGCGCGGTGCTTTATGTCCTCCCCGTGCTCATCATGTTCTTCTTCGTCCAGCGGTCCTATGTCCGCGGCTTTGCCACCTCAGGCATGAAATAGMTLTGHRPQTQSQAAPPEPPIRQSRERKNPVAFVILLVVCAILFLPVLWLLLTALKSPQQLASDPITWIPTQPQVQNFIDATMILPFWAYAANSLFLSTVTGVLTTVSSALVGYGFARLNGKGKNVLFGILIAMMMTPPIITLIPTYLLFAKVGLVGTYWPWVLWGMAGAPYLIFLYRQFFAQLPRELEEAAILDGCGRLRIFVQIFLPLSKPVIITAFVLSFNGVWGDFIAPQLLLNQDNTTLAVAITTGYVNSQGFPVNNLLAAGAVLYVLPVLIMFFFVQRSYVRGFATSGMKPGPT0016540_1694DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00203972melD_2COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGAGTACACAGTCACTGGCTAAGAACGTCCGGTCCAGGAACCGGCGGGGAACCACCGGTTTCAGGGGTTCGGGCACCTTTTACGCCTTTATCTCCCCGTGGCTGATTGGGACTGTACTCCTGACGCTGTTTCCGCTGGGCTACGCACTGTGGATCAGCTTCACCAACTGGGATGGAATAGCGCCGAACCAAAACTGGATCGGCCTGAAGAACTACACCGATGCGTTGAGTGATCCCCGAATGTGGGCAAGCCTGCAGCGCACCGGCCTGCTCGCTCTCGCCGTAGTGCCAGTCACCATCTGCGGAGGACTGGCACTGGCGTTGCTGCTGAACGAAAAGGTCCATTGGCGGTCAGGCCTGCGGATGCTCGTCTATCTCCCGGCCATCGTGCCTCCCGTCGCAGCGACACTGACCTGGAAGCTGCTGTTCGACCGCGACAGCGGCGCGATCAACGGTGTTACTGCGATCTTCGGTGCGGATGCCGTGAGCTGGATGAGCGGAAACACTGTGTTCGTGGTCCTGCTGGTGGTCATGCTTTGGGGCATTGGCGCCGGTGTGCTGATCAACCTCGCCGCCCTGCAGGACGTTCCCGCAGAGCTTCACGAGGCCGCGCGGCTGGACGGGGCAAACGCCTTCACGGCCTTCTGGCACGTCACGCTGCCGAGCATCTCGCCGGTGCTTCTTTTCCAAGTGATCACCACCACCATCGGCGTCCTGCAGACGTTCGTCCCGGCGCTCCTGCTCTCACCTGCCAATGGGCCGGCAGCGATCACGGCCGTGCCTGAGGCCAACAGGGTCTTCATGGTGGACGTTTACGCCCAGTACTTCGCGTACTCCAAGTACGGGTACGCGTCAGCGATGCTTTGGCTGTTCTTCCTGGTCATCCTGGTGGTCACCATCATTACGTTCAAGATCGGCGGCCGCACCGTGTTCTACGCCGTCGACCCCTCCAAAGAAGGGAAAGAGGGATGAMSTQSLAKNVRSRNRRGTTGFRGSGTFYAFISPWLIGTVLLTLFPLGYALWISFTNWDGIAPNQNWIGLKNYTDALSDPRMWASLQRTGLLALAVVPVTICGGLALALLLNEKVHWRSGLRMLVYLPAIVPPVAATLTWKLLFDRDSGAINGVTAIFGADAVSWMSGNTVFVVLLVVMLWGIGAGVLINLAALQDVPAELHEAARLDGANAFTAFWHVTLPSISPVLLFQVITTTIGVLQTFVPALLLSPANGPAAITAVPEANRVFMVDVYAQYFAYSKYGYASAMLWLFFLVILVVTIITFKIGGRTVFYAVDPSKEGKEGPGPT0016535_1546DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_002041371hypothetical proteinATGAAGGTACGTCCAATGAATGCACTAAATAATGTTTCCCGCCGGAGCCTCCTCAGCGGCGCCGCTCTGTTTGCCGGATTTGCAGCAGCCGGCGGCCTGACCGGATGCTCGGCGAGTGGGGCAGGCGGCGCGGCCAAAAAGTCGGGCGGCCTGACCATTATGGGCAATCCGGGTGAAATCACCCAGGAGGTTATCGACGCCTGGGTCAAGGAGCACCCCGAGGTGCCCATCACCCTGATCAAGGATGATCCCACCCGGCTTAATGCCATGATGGCCGCGGGAACTCCGCCGGACCTGGCCAGGAGCCTTGGGGCCATCAGCACTGCCAACCTGGCGAGCCGCGGCCTGGCGCTGGATCTGGACCCGTATCTGGCGAAGTCCAGCACGCTGAAGGAATCCGACCTGGCCAAGATCAACGACGTCTGGCGCTGGGACGGAAACAAGCAGGGCAGCGGACCACGTTACGGATTCGTCAAGGACTGGTCCCAGGATTCCATGTTCTGGTACAACACCGAAGCCTTTGCTGCGGCCGGCATTCCGCTTCCGACTGCGGACAAGCCGCTCACCTATGACCAGCTGCTCGAATATGCCGAGCCCATGACAAAGCGGGGCGGCGGCAAGGTTGAGCAGTATGGGCTGTTCAGCACCGCTCCTACCATCGAGGCGCTCTCTGCCATGGTGGCCACCACCAGCGGGCGCATCTTTAATGACGACCTGACCAAGGCAGACTTCACCAGCCCGGAGGCCAGGCAGGCACTGCAGTGGCACATCGACGTGGCCAAAAAGCAGGTGGGTTACACCCTGGTGGATCCCAATCCGGATGGCTGGGACTGGCCGCCGTTTGATGCCAAGAGGACTGCCATGGCACTGGCCGGCTACTGGTTCGGCGGCATGGTGTCCACCAATCCCGCAACCGCCGAGTTCGCCCGGATGGCGCCCGCCCCCATGATGGGCTCCAAGCGGGTCAGCCCCACCACGTCGGCCACAGGCTACTGGATCTCCTCCAAAACCCAGATGAAGGACGAGGCCTACGCATTCCTTGAGTGGTACTGCTGCACCGGCCCCAACGCCAAGGTAAGGGCACAGACCGGAGTGGGCATGCCCTCCGTTACAACCCTGACCTCCGAACTCCCGCAGTCCCTGCCGTACCAGTCCGAGGCCATGAAGGTCCAGAAGAATGAAGAGCAGTACCTTCAGGTCCTCCCGTTCAGCCCTTACGCCCAAGCGGTTGCTGTTAGCGCTGCCATCGCAGAACTCTTCCCCCGCGCAGCGACCGGCGAGCTGTCCATCGGCCAGTTCGCGGACCAGGCGACCACTGCCGTCAACGAGCTCCTCAAGCAGGGCATGGAACTTGCCGGCAAGAAGGGCTGAMKVRPMNALNNVSRRSLLSGAALFAGFAAAGGLTGCSASGAGGAAKKSGGLTIMGNPGEITQEVIDAWVKEHPEVPITLIKDDPTRLNAMMAAGTPPDLARSLGAISTANLASRGLALDLDPYLAKSSTLKESDLAKINDVWRWDGNKQGSGPRYGFVKDWSQDSMFWYNTEAFAAAGIPLPTADKPLTYDQLLEYAEPMTKRGGGKVEQYGLFSTAPTIEALSAMVATTSGRIFNDDLTKADFTSPEARQALQWHIDVAKKQVGYTLVDPNPDGWDWPPFDAKRTAMALAGYWFGGMVSTNPATAEFARMAPAPMMGSKRVSPTTSATGYWISSKTQMKDEAYAFLEWYCCTGPNAKVRAQTGVGMPSVTTLTSELPQSLPYQSEAMKVQKNEEQYLQVLPFSPYAQAVAVSAAIAELFPRAATGELSIGQFADQATTAVNELLKQGMELAGKKGPGPT0016545_3195DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_002051293mlc_1COG1940Protein mlcATGACCTGCAAATTCATACATAATGGGAAAGTGAACTCCTCCAGAAGCGGTGGATCCCTCCGCAATCTCCGGCAATCCAACTCTTTGCATGTGCTGGATCTGTTGGCCAGCCAAGGCCCCATGCATCGCGCGGAGATGGCCAGGCGGGCCAACATCTCACGCACCACCGTCACCACCATCACCAGGGACCTGATGGAGCGCGGCGTCCTGGTGGAGCTTACCGAGCGGGCCGATGGCGGGGATGAAGTTGACGGCCGCGCCGGCGACCAGCTCGCCTTCAGCCCGGAAGCCGGCTGGATTGCGGGCATGAGCCAGGTCCTGGACAGGATCTGCGTCCGGATCACCGACCTGATGGGGCAGGAAGTGGCGTCAGCCGATGTGCCCATCGGCGCCAAGGATGATTGGCGTATCCGCGCGGAAGCCGCCGTCCACCTCCTGGACAGGGCACTGAAGGACGCCGGAGGAGAGCGTGAGGACCTTCTCGGCGTCGGCATAGGCCTGCCTGGGCAGATCAACCCCGTGGATGGCATCGTGCATGGCGCGCTCGCCGATCAGCCCTGGCACGGCATCAACGCGCGGGAGGAACTGGGGCGCCGCCTGGGTGTTCCGGTCTTCATCGACAACAACGTGCGCCTCGAGACGATAGCCGAGGCGAAATGGGGCGCCGGACAGGGGATCCAGGACCTGATGTACGTCAACATCTCCAGCGGAATCGCCGCCGGGTTCCTCTTCGGAGGGGAGCTCTACCGGGGCTCTGTTGGCGGCGCCGGGGAGTTGGGCCATGTTTCCATAGACGTCAACGGCCCGGCCTGCCGGTGCGGAAACCGCGGCTGCCTTGTCCTGGTGGCCGGCACTCCTGCCATCCTGGGCCGGCTCGCCCCCACGCTGGGCGAAACGGCCACCATGGATGACGTGCTGGCCGCCAATGCTGCCGGAGACAGGTCCGCCCAGAACGTCCTGGCCGAGGCCGGAACCATGGTGGGCCGTCTCCTGGCCAACATGTGCAACCTCCTCAACCCCACTCGCATCGTGGTGGGCGGCCAGACCTCCCTCGCCGGAGCGGTGGTGCTTGACCCGCTGCGTGACGGCATTACGCGCTACGCACTGACCCCTTCGGCAGCCCTGGAAGTGGTTGCCTCGGATCTTGGCGGCGGCCCCGAGGCCGGTGCCGCCGGCGGTGCCGCACTTGCACTGTCAAAGCTGACCACCTCATCTGAAATGCTGAGCCGGCTCCTGGACGGGGCCGCAACCGCTTCAGCGTCCGCCCGCGGCCGGGTGCAGGTAGCGAACTAGMTCKFIHNGKVNSSRSGGSLRNLRQSNSLHVLDLLASQGPMHRAEMARRANISRTTVTTITRDLMERGVLVELTERADGGDEVDGRAGDQLAFSPEAGWIAGMSQVLDRICVRITDLMGQEVASADVPIGAKDDWRIRAEAAVHLLDRALKDAGGEREDLLGVGIGLPGQINPVDGIVHGALADQPWHGINAREELGRRLGVPVFIDNNVRLETIAEAKWGAGQGIQDLMYVNISSGIAAGFLFGGELYRGSVGGAGELGHVSIDVNGPACRCGNRGCLVLVAGTPAILGRLAPTLGETATMDDVLAANAAGDRSAQNVLAEAGTMVGRLLANMCNLLNPTRIVVGGQTSLAGAVVLDPLRDGITRYALTPSAALEVVASDLGGGPEAGAAGGAALALSKLTTSSEMLSRLLDGAATASASARGRVQVANNANANANANA
D1-29_00206801hypothetical proteinGTGAGGCGGCATAAGTATCAGTACGGCCAGGATCCCAGCCAGTGGGGCGAGCTTTTCCTGCCCGAGGCGCGGCCCGGACACCAGCTGCGGGGTGTGGTGGTGGTGATCCACGGAGGTTACTGGCGCTCGCACTACGGCGCCGAACTGGGCGAGCCGCTGGCCAAGGACCTTGCCGCGCACGGGATGGCCGCCTGGAACCTGGAATACCGCCGCGCCGGCAACGGTGGCGGCTGGCCGCACACCTTTGAAGACGTGCTGGCCGGAATCGACAAACTGCATGACGTCGCCGCCGCCCATTCCCTGGAACTTGGTCCGGTGGTGGCGCTCGGCCATTCAGCCGGCGGCCACCTCGCCGCCTGGGCCGCCGGCCGGAGCAAGCTGGGGCAGCTGGGGATGCCCGACGCCGACCGCCAGGTCAAGCGGAAGGAGAACGGGGACGCTGTCCTGCTGACCGGCGTGGTGAGCCAGTCGGGCCTGCTGAACCTTGCCGAGGCCGAGAAGCTGGACCTGAGCAGCGGTGCGGTCAGCAACCTGCTGGGCGGGTCGTCGTCGAAATACCCGGTGCGGCACAAGTATGCGGACCCCATGAGCACCATCCCGCTGGACCTTCCGGTTTTCGCGGTCCACGCCCTGGCGGACGGGGACGTCCCGCTGAGCCAGTCCGAGGCATATGCCGCCGCCGGCAGGCCGCCGCGATCACCGCAGCTGGTCAAGGTCCCGGGGGACCACTTCTCACTCATCGATCCGAAGTCCGCCGCCTACAAAAAATGCCGCGAGCTGGTGCAGGCGCTGATGGCCTAGMRRHKYQYGQDPSQWGELFLPEARPGHQLRGVVVVIHGGYWRSHYGAELGEPLAKDLAAHGMAAWNLEYRRAGNGGGWPHTFEDVLAGIDKLHDVAAAHSLELGPVVALGHSAGGHLAAWAAGRSKLGQLGMPDADRQVKRKENGDAVLLTGVVSQSGLLNLAEAEKLDLSSGAVSNLLGGSSSKYPVRHKYADPMSTIPLDLPVFAVHALADGDVPLSQSEAYAAAGRPPRSPQLVKVPGDHFSLIDPKSAAYKKCRELVQALMANANANANANA
D1-29_00207939scrKCOG0524FructokinaseATGCTTACTGTTATCGGCGAGGGGCTGGTGGACGTAGTCCAGCGAGCCTCCGGAATCCAGGCCCATGTGGGCGGCAGCCCCCTCAACGTTGCGGTGGGCCTGGCCAGGCTCGACCATCCGGTGCAGTTCATCGGCCGCTATGGCCGTGACGCCTACGGGGATGCGGTGGCCGCGCACCTGCGCTCCAGTTCCGTCATGCTCCCGTGGGGACCGGATGAGCAGCCCACCAGCGTGGCCACTGCCCTGATCGACGACGACGGCGCCGCCACCTACACGTTCGACCTCACCTGGGAGCTTCCCGGCCTCGCCGACCGGCTTGGCTTTATGCTTCAGGGCACCACCCTCCTGCACACCGGGTCCATTGCCACCATGCTGGCGCCGGGCGCCACCGACGTCCTGGCCGCCGTCGAATATGCCCACCCTTCCGCCACCATCAGCTTTGACCCCAACTGCAGGCCCAGCATCATCACGGACGTTGACTTCGCGCGCCGGCAGGCGGAAAAGTTCGTCACACTCGCGGATGTGGTCAAGGCGTCCAATGAAGACCTTCAATGGCTCTATCCCAGCCGCGACGTGCTGGACTCGGCGCGCCACTGGCTGTCACTGGGAGGTTCGGAAGGGCCCGCCATGGTGGTGGTCACGCGGGGAGCGGCCGGGCCGTGGGGCGTCACGGCCGCCGGCGAGGCGGAATTCCCCGCCCCCCGGGTGGTGGTGGCCGATACCGTCGGCGCAGGTGATTCCTTTATGGCTGCGCTGCTCTCCGGCCTTGTGGACAGGCACCTGGACGGCGCGCAGAACCGGAAGGAGCTCCGCGAACTCCCAGCCGAGGGCCTGGCGGAGATCCTGGCCCACGCGTCCCGGGCCGCGGCCATCACAGTGTCCCGGCCGGGCGCCAACCCGCCCAGCCGCGAGGAACTGAACGCCGTACCCGGAGAATAAMLTVIGEGLVDVVQRASGIQAHVGGSPLNVAVGLARLDHPVQFIGRYGRDAYGDAVAAHLRSSSVMLPWGPDEQPTSVATALIDDDGAATYTFDLTWELPGLADRLGFMLQGTTLLHTGSIATMLAPGATDVLAAVEYAHPSATISFDPNCRPSIITDVDFARRQAEKFVTLADVVKASNEDLQWLYPSRDVLDSARHWLSLGGSEGPAMVVVTRGAAGPWGVTAAGEAEFPAPRVVVADTVGAGDSFMAALLSGLVDRHLDGAQNRKELRELPAEGLAEILAHASRAAAITVSRPGANPPSREELNAVPGEPGPT0017625_2133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
D1-29_002081146hypothetical proteinATGGAGCAGTTGACGGCAGAGTTCGGTGGATCGGGCCGCGTGGGTATGGGCGTCGGCCCCGTCCTGGAAAAGTTCGACGGCGTCTCCCGCATCGCCGTCCTGCGCGGCGGCGGACTGGGGGACCTGATTTTCGCTGTCCCCGCCATGGCCTCGCTCAAGGCGGCCTATCCCGGAGCGGCGATTACGCTGCTCGGGACCCCGGTTCACGAGGCACTCATCGCCGCGACGGAAAGCCCTGTGGACGAAGTGCTGGTGCTTCCGTTCTCGGAAGGTGTGCGCCCGGGCGACGAGGATGCCGACGAACTTGAGAGGTTCTTTTCGCGCATGCGGGAGCGGCGTTTTGACCTTGCCGTGCAGCTCCACGGCGGCGGGCGTTACTCCAACCCTTTCTTGCTGCGGCTCGGAGCCCGCCACACCGTCGGCACTCGCACTGCTGACGCGGCCAGCCTGGAGCGGACGGTCCCGTATCTCTACTATCAGCACGAGCCGCTGCGGGCCCTGGAAGTGGCGGGATTTGCCGGAGCCTTCCCCGTGGATTTGGAAGCCAGGCTCTCTGCTGCCGCAGGCGCCGACGCTTTGCCGCCCGGCCTGGCTGACGACAACTCCCGGCCCCTGGTGGTGCTGCATCCGGGTGCCACCGATCCCCGCCGGCGGTGGCCGCCGGACCGGTTCGCGGAACTGGCCGCAGCCTGCGCTGCTGACGGCTGCCACGTGGTGGTTGTTGGCGACAGGAGCGAACAGCGGCTCGCGGAGCGAATCGTTCAACTTGCTGCTCCTGCATCCATCCGCTCCGTGGCTGGCGAACTGGACATGGCCGGCCTGGTGGCACTGCTTGCCCGCAGTGCCGTGGTGGTGGGGAACGACAGCGGCCCCAGGCATCTCGCCCAGGCGCTGGGGGTACCCACCGTGGGCATCTTCTGGGCGGGAAATGTGATCAACGCCGGGGCCCTGGGCCGGAGCCTCCACCGCATCCATCCATCCTGGGTGACCACCTGCCCTGTTTGCGGGATAGATATCACGCAGGTCGGCTGGACGGCGCCGCGCTGTCCGCACGATGAGTCGGTCGTGGCCGATATAGGGGTGCGGGAAGTCCACGAGGACGTTCGCAGCCTGGTAGCCACCGAACCTCATGCGCACGGCGGATAGMEQLTAEFGGSGRVGMGVGPVLEKFDGVSRIAVLRGGGLGDLIFAVPAMASLKAAYPGAAITLLGTPVHEALIAATESPVDEVLVLPFSEGVRPGDEDADELERFFSRMRERRFDLAVQLHGGGRYSNPFLLRLGARHTVGTRTADAASLERTVPYLYYQHEPLRALEVAGFAGAFPVDLEARLSAAAGADALPPGLADDNSRPLVVLHPGATDPRRRWPPDRFAELAAACAADGCHVVVVGDRSEQRLAERIVQLAAPASIRSVAGELDMAGLVALLARSAVVVGNDSGPRHLAQALGVPTVGIFWAGNVINAGALGRSLHRIHPSWVTTCPVCGIDITQVGWTAPRCPHDESVVADIGVREVHEDVRSLVATEPHAHGGNANANANANA
D1-29_00209936hypothetical proteinATGGCGGTGGAGAACGGTAAGCCGGATGTGCTGGTGTTGCGGGCACTCAAACTTGGGGATCTGCTGGTGGCGGTGCCTGCGCTGCACGCACTCCGCCGCGCCTATCCAGGGCACAGGCTCCGGTATGCGGCGCAGGGGTGGCTGGCAGAGGCGCTGAGCCTGGTGGGCGGTTTCGAACTGCTTCCCACGCATGGACTGGACGTGCCGCTGGCGGTAGAGCCGGGCAGCGTGGACGTGGCAGTCAACCTTCATGGCAGCGGGCCGGAGAGCCAGGCGAGAATCGATGCTGTCCGCGCGCGGCGGACCATAGCCCACGGCACGGACCACCGGTCCGGACCGCGCTGGCGGCCGGACCTGCATGAGCGGGAAAGATGGGTCCGGCTTCTGGAGTGGCACGGGATTGAGGCGGACCCGCTGGACTTCCGGGTGGATGTTCCGCCCATTGCCAGTCCGGTTCCGGCGGCCACGGTGCTTCATGTCGGCGCCGCCTATGGGAGCCGCTTGTGGCCGGCGGACCGCTTCGCCGCCGTCGCCTCCAGGCTTGCTGAGGCCGGGCACAACGTCATCTTCACCGGCAGTGCGGGCGAACGGGAACGGGCACTGGACGTGTGCATCCGATCCGGATTGCCGGCCACCGCCGTCCTGGCCGGGAACCTGAGCCTGGGAGAATTTGCGGCCACGATCGCTGCCGCCAGGCTGGTGGTTTCGGCCGACACCGGGGCAGCCCACCTGGCCTCCGCGTACAGCACCCCTTCGGTGGTACTTTTTGGGCCGGCGCCCCCCGAGATCTGGGGGCCGCCGCCCGGGCCGCACGTGGTGCTGACCCGGGCCGACCTGCGCCGCGGTGATACTTTCGCCGCAGATCCCGATCCCGCCCTGCTGGCTGTTTCGGTCCAGGACGTCCTTGCCGCCGTCCGGGACCTCGGAGTGCTCTAAMAVENGKPDVLVLRALKLGDLLVAVPALHALRRAYPGHRLRYAAQGWLAEALSLVGGFELLPTHGLDVPLAVEPGSVDVAVNLHGSGPESQARIDAVRARRTIAHGTDHRSGPRWRPDLHERERWVRLLEWHGIEADPLDFRVDVPPIASPVPAATVLHVGAAYGSRLWPADRFAAVASRLAEAGHNVIFTGSAGERERALDVCIRSGLPATAVLAGNLSLGEFAATIAAARLVVSADTGAAHLASAYSTPSVVLFGPAPPEIWGPPPGPHVVLTRADLRRGDTFAADPDPALLAVSVQDVLAAVRDLGVLNANANANANA
D1-29_002101212hypothetical proteinGTGTCAACACCACAAGACAAGAACCCCCGCAGCCAGGCCCCGCAGGAACAGCAAGGATCCACCCGCATCGTGGCGGGCCAGTCCACCGCCCCCAAACGCCCCCTCGGCCTCAAGATCGGCGTCCTGGCCGGCATCCTCGCCCTGGTGGGCGGCGGCGTGGCCGTCGCCTCCGCCGTCGCCGGCAACAATGGCGCCCCGGCCGGACAGGCCGCCGTCTCGGGAGATCCCGCCGCGTCCGGAAACCCTGCCGCTGAGCTGCGGCTGGGCTACTTCGGAAATGTCACCCATGCGCCTGCCCTGGTGGGCCTCAGCAAGGGCTTAATCGCGGGGGAACTGGGCGGCACGAAGCTCAGCACCCAGGTATTCAATGCCGGTCCTGCAGCGATCGAAGCCCTGAACGCCGGCGCCATCGACGCCACGTACATCGGGCCCAACCCCGCCATCAATTCCTTCGTCAAAAGCCAGGGACAATCCATCAGCATCGTTGCCGGCGCTGCTGCCGGCGGCGCCCAGCTGGTGGTGCGGCCTGAAATCACCTCGGCGGCGGACCTCAAGGGCAAAACCCTGGCGTCCCCCCAGCTGGGTGGCACCCAGGACGTGGCGCTGCGGGCCTGGCTCGGGACGCAGGGCTATCAGACCAACGTGGACGGCAGCGGCGACGTGGCCATCAACCCCACCGAAAACGCCCAGACCCTGAAGCTGTTCCAGGATGGAAAGCTCGACGGCGCGTGGCTGCCTGAACCGTGGGCGTCCCGTCTGGTGCTCCAGGCAGGAGCCAAGGTCCTGGTGGACGAAAAGGACCTGTGGGACGGCTCCCTCTCCGGCAAGGCCGGCGAATTCCCCACCACCATCCTGATCGTTAACAAAACGTTCGCCGCGGAACACCCGGACACCGTCAAGGCACTGATCAAGGGCCACGCCAGGTCCGTGGAGTGGCTGAACAATGCCCCGGCCGACGAAAAGGCCAGCACCATCAATGCCGCGCTCAAGGACGCAGCAGGCGCCGAGCTCAAGCCTGACGTGATCGAACGGTCCCTGAATAACATTGTGTTCACCGTTGATCCGCTGGCCGGAACCTACAAGAAGCTGCTGCAGGACGGCGTGGACGCCGGCACCACCAAGCAGGCCGACATCAACGGCATCTTCAACCTCACGGCCCTCAACGAGGTGACGGGAGCGGAGGCTTCCGCGGCCGGGTTGGGGACGGAGTAGMSTPQDKNPRSQAPQEQQGSTRIVAGQSTAPKRPLGLKIGVLAGILALVGGGVAVASAVAGNNGAPAGQAAVSGDPAASGNPAAELRLGYFGNVTHAPALVGLSKGLIAGELGGTKLSTQVFNAGPAAIEALNAGAIDATYIGPNPAINSFVKSQGQSISIVAGAAAGGAQLVVRPEITSAADLKGKTLASPQLGGTQDVALRAWLGTQGYQTNVDGSGDVAINPTENAQTLKLFQDGKLDGAWLPEPWASRLVLQAGAKVLVDEKDLWDGSLSGKAGEFPTTILIVNKTFAAEHPDTVKALIKGHARSVEWLNNAPADEKASTINAALKDAAGAELKPDVIERSLNNIVFTVDPLAGTYKKLLQDGVDAGTTKQADINGIFNLTALNEVTGAEASAAGLGTEPGPT0001135_557DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-29_00211819ybhACOG0561Pyridoxal phosphate phosphatase YbhAATGCGGCTGGTAGCAAGTGACATTGACGGAACGATCCTTGGGCACGACGGAAAAATCAGTGACCGCACCGTCCGCGCCTTCCACGCCTGCCGAAACGCCGGCGTCGAACTCGTTTTTGTCACCGGCCGCCCGCCGCGCTGGCTGCACCCGCTGGAAGAGCAGCTGGGCCACACGGGCACCGTGATCTGTTCCAACGGTGCCGTGGTCTGGGACCTTGAGGCGGACCAGCTGGTGTCCGCGCGGACGCTGGGCATCGAGTCCGTGATGGAGGTCCGGCGGATCATCAAGGACCTGCGCCCCACTGCGTTGTTCGCCGCCGAAACCCTCACGGGGTTTCACCTTGAGCCAGGCTTCATTCAAAATGCCTCCAGTGAACTCCTCTCCGAATTCACACCTGCGCCGCTGGCCGAAACGCTCGCCCAGGATTCTGAAGTGGTCAAATTCCTGGCGATCGTGCATGAGGGCACGCCGGATGAATTCCTGGCCGAGGTGGCCCCGGCGGTGGCCCATCTTGCGGCGGCCACACACTCCTCGCCCGGGGCCTCGATGCTGGAACTATCGCTTCCCGGCGTCAACAAAGCCGTGACGCTGGCCGAATACGCGGCGTCGCTTGGCATCGACGCCGCGGACGTTGTGGCCTTCGGTGACATGCCCAATGACATTGAAATGCTGCGGTGGGCCGGCCACGGCTATGCCATGGCCAGTGGTCATCCGGAAGCCATCCGCGCCGCCGGCCAGCAGGCGCCCCATTTCGACGACGACGGCGTGGCCCAGGTTCTCGAAGCCAGGCTCGCGGCCCTGGGCGTCAAGCTTTCCTGAMRLVASDIDGTILGHDGKISDRTVRAFHACRNAGVELVFVTGRPPRWLHPLEEQLGHTGTVICSNGAVVWDLEADQLVSARTLGIESVMEVRRIIKDLRPTALFAAETLTGFHLEPGFIQNASSELLSEFTPAPLAETLAQDSEVVKFLAIVHEGTPDEFLAEVAPAVAHLAAATHSSPGASMLELSLPGVNKAVTLAEYAASLGIDAADVVAFGDMPNDIEMLRWAGHGYAMASGHPEAIRAAGQQAPHFDDDGVAQVLEARLAALGVKLSPGPT0017727_17DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017727-yidA-NANANA
D1-29_00212249hypothetical proteinATGGCAAGGAAAGTCAGTCAACATGTGGCCGAGGCAACGCTGCGCCCTGCTGAACCGGCCGCGCACTGGAAGAAACTGAAGCAGGGGGACCGCGTCAGCGTCCGGCTCACGCCTGCTTTTGTCACCCTGGGCCAGGTGGACGCCATCACGTGGGACCACACAGCGCTCTGGGTGGAGCTCGACGGCGGGGGCGGACGCGTCCTGGTCCACTGCAGCGACGGTGTCGAGGTGGCATTGCAGGAGGAATAGMARKVSQHVAEATLRPAEPAAHWKKLKQGDRVSVRLTPAFVTLGQVDAITWDHTALWVELDGGGGRVLVHCSDGVEVALQEENANANANANA
D1-29_00213804hypothetical proteinGTGACTGAGCCGTTTTTTACTGCCGCCCGCGGTTCCGCGGGCTCCTGGCCGGTGGCCATGGCCCACCGCGGTTTTTCACGCGAGGGGCTGGAAAACTCCATGGCCGCGTTCCGCGCCGCCGTCGAGCTCGGATACCTGTACCTGGAAACCGACGTGCACACCACAGCAGACGGTGTCCTGCTTGTCTTCCATGACGACAGCCTGGACCGGGTAACCGACGGCAGCGGCAGGATCGCCGAACTCACGGCTGCTGAGGTGGCGGCAGCCCGCATCGGCGGACGGGAGGCGGTGCCGCTGTTTGACGAGCTGGTGACGGCCTTCCCTGAGGTCCGGCTCAACGTGGACGTCAAGGACTGGGCATCGGTCAGAAGCCTGGCCGCAGGAATCGAGCGCCACCAGGCCCACCACCGCATCCTGGTTGCCAGCTTTTCGGACCGCCGGCGCCGGGCCGTGCTGAAACTCCTCAGCCGCCCCGTGGCGTCCTCCGCCGGGGTCATCACCAATGCGCTGTTTGTGGCACTTGGACCCCTCATGCCAACCAGTTGGCTGGGGCGGGTGCTCGGCAGTGTCCTGCACGACGTGCACGCGCTGCAGGTTCCGGTCAGGTACGGAGTGGTCAGGGTGGTCACCAAGGCCTACGTCCGGCGGGCGCATGAGCTGGGCCTCATGGTGCATGTGTGGACCGTCAACGAGCCCCAGGAAATGCGGCGGCTTCTCGCCCTCGGAGTGGATGGCATCGTGACCGACCGTGCCGATCTGCTCAAACAGGTCCTGGAGGAGCGCGGCGAGTGGCCCGGCACCTGAMTEPFFTAARGSAGSWPVAMAHRGFSREGLENSMAAFRAAVELGYLYLETDVHTTADGVLLVFHDDSLDRVTDGSGRIAELTAAEVAAARIGGREAVPLFDELVTAFPEVRLNVDVKDWASVRSLAAGIERHQAHHRILVASFSDRRRRAVLKLLSRPVASSAGVITNALFVALGPLMPTSWLGRVLGSVLHDVHALQVPVRYGVVRVVTKAYVRRAHELGLMVHVWTVNEPQEMRRLLALGVDGIVTDRADLLKQVLEERGEWPGTPGPT0018470_5080DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
D1-29_00214477hypothetical proteinATGGGTATCGGCGACAGCATCGGCAAGGCAGCGGAAAATGCCATGGAGGACCTGGCGGGAACGTCCACGCCCACAGAAAACGCGAAGGTTCCGGAGCCCACGGACCCCAACAGCGACGTTGAAGTGCATTCGTCCATCAGCGAGGGCTCCAACGCCATGGAGGCGGAGAAGGAGAAGGCCCCGGGGTTGAAGGCAGGCTCTGCCACCGGGCCGGTTTCCAGCAACCCGACCACCCCAGCCGGCACCAACGCCACGGGCGCGGAAACGGGAGCTCCAGGCAGCCCAGCCGGAAGCGACTCCGGCATGAACGGCAATGCACCCGGAGGAACTAGCTCAGATGAGGACAGCGGCGTGACCACTGAGCCTCCCCGCGATGTGCCCGGGCCTGCAGGCCTCCCGGAAGGCGATCCGGATGCCCTGCGCGCGGATCCAAGCGAGGGCGACCAGGACCCGTCCACTGGTTTGGGGCGCGGCTGAMGIGDSIGKAAENAMEDLAGTSTPTENAKVPEPTDPNSDVEVHSSISEGSNAMEAEKEKAPGLKAGSATGPVSSNPTTPAGTNATGAETGAPGSPAGSDSGMNGNAPGGTSSDEDSGVTTEPPRDVPGPAGLPEGDPDALRADPSEGDQDPSTGLGRGNANANANANA
D1-29_00215234hypothetical proteinATGAGCAGCTACCATCCGGAGAACGATCCAGCCAACCCTGATCCGCCCGGCGCAGCCGGACAACAGGGCGCAGGCCAGCAGGGGCGGGGGCCGGGAAAGGACTCGGCTGATTCCGCCAATCCCGATCCGCTGGAGGGTAACGTCACAGGCCTGGAGCCCGGCGGCGGAGTCCCGCCGGGGGAGACGCCGCCTGCGGAGGACCAGATGAGCGGGGACCAGGGGCACGACGAGTAGMSSYHPENDPANPDPPGAAGQQGAGQQGRGPGKDSADSANPDPLEGNVTGLEPGGGVPPGETPPAEDQMSGDQGHDENANANANANA
D1-29_00216342hypothetical proteinATGACCAAGTATCTGATCTCGTTTCCGAGCGCTGCCATGGACTTCCCGGACGAAGACCTGCAGGCCGCTTCGGACGCGTCGCGCGCGGTGGTTCAGGAGGCGAAGGACGCCGGTGTCTGGGTGTTCGGCGGTGGCATCGATGAGAGCATCCCGCCTGTCATGGTGGAGGGCGATGGGACCGTGCGCGAGGGCACCTATCCACAGACAACGCAGCTCGACGGCGGCTACGCAGTGCTGGAACTGCCCTCCTACGATGCGGCCCTGGAGTGGGCCGCGAAGCTGGCGGCCGCCTGCCGTTGCGCCCAGGAGGTGCGCGCTTTCCATTACGACCCCGCCAGCTAGMTKYLISFPSAAMDFPDEDLQAASDASRAVVQEAKDAGVWVFGGGIDESIPPVMVEGDGTVREGTYPQTTQLDGGYAVLELPSYDAALEWAAKLAAACRCAQEVRAFHYDPASNANANANANA
D1-29_002171062hypothetical proteinATGTCGGTTCGGGTACAAGCGTGGGGAATCATTGCTGCGGTGCTGGCGGACTCCGATCCTGCCGGCGCAGCAACACGTCAGCGTCTCAGCAACCTGCTGGACGAAAACCCGGGAGTCCCCGAGAGGGCCCTCCTGGAACATCTTCTTGAATCCAGGCAGCAGGAGGCGCTCAAACAGGGCGGCTCCGACGCCGTCCGCACCCCCTTGCCGCTGGAGGGCATGCCGCCGCGGCTGGTTGAGCAGCTGGACACCCTGATGAGCCTGTCCCGGATCAGTTCATTGCTTGAGAACCAGATGCTGATGACCGCCTTCCAGCCCATCTACGGTTTGGCATCCCAGAGCGTGGTGGGTGTTGAAGCCCTCTCCAGGTTTGTCAGTGACGACGGCGCCAGCGCCGAGCTGTGGTTCGCGGAAGCCGCGGCAGTGGGGCTGGGAGCCAATCTGGAATTCTCGGCTCTGGGCTCGGCCGCCGCGGCAGCAGCCAAACTTCCCCCGCAGCTTTACGTGTCCCTGAACATCTCGCCGTCGTCCTGCATTGATCCCCGGCTGCCTGAATTGTTTGACCACATCGAGTTGCCCGTCAGCCGTATTGTCCTGGAATTGACCGATGGAATTCCGGACGAAGAATACCTGCATTTCATTTCCGCAATTACACCCCTGCGTGAACGCGGGCTGCGGATTGCCATCGACGATTCCCAGTCCGGCGCCGGCATCCTGAGCCGGATGCTGCACCTCCGTCCCGACTTCATCAAGCTGGGCAGGAACATTATTGGCGGAGTGGACAAGGACGCCTCGCACTACGCCTTGGCAGCCTGCATGGTGGACTTCGCAGAGCAGATCGGCTCGGTGCTGGTGGCCGAAGGCGTTGAAACCCCGGAGGAGCTCCGTATTCTGACCGAGCTCGGGATCAGCGCCGGCCAGGGTTACCTGCTGGGGCGCCCCTCCGTCCGGCCGAAGGACTGGGCGGCCTGGAACACGCCACTGGACCCGGACGGGCTGGCACAGCACGCCGCCAAGGCAAGCCACATGGCGGAAGGCTCCGGGGCGAAGGACAAGCGCTAAMSVRVQAWGIIAAVLADSDPAGAATRQRLSNLLDENPGVPERALLEHLLESRQQEALKQGGSDAVRTPLPLEGMPPRLVEQLDTLMSLSRISSLLENQMLMTAFQPIYGLASQSVVGVEALSRFVSDDGASAELWFAEAAAVGLGANLEFSALGSAAAAAAKLPPQLYVSLNISPSSCIDPRLPELFDHIELPVSRIVLELTDGIPDEEYLHFISAITPLRERGLRIAIDDSQSGAGILSRMLHLRPDFIKLGRNIIGGVDKDASHYALAACMVDFAEQIGSVLVAEGVETPEELRILTELGISAGQGYLLGRPSVRPKDWAAWNTPLDPDGLAQHAAKASHMAEGSGAKDKRNANANANANA
D1-29_002181542COG2200putative signaling proteinATGTTCGCTGGCAATGATCCCAGGCTCACCCAACTGCTGGACGGCATTGTCCGCCTTGCCTCCGGGGATCTCCAGTCACGCATCGAGGTCTCCCCCGCCCGGGACGAGCTCGATGCCATCATCATGGGCACCAACCTGCTGGCGGAGGACCTGCAGATCATCTATGAGGAACTTGAGCAGCGGGTCGAAGTCCGCACCCAACTGCTCCACGAAGCCCACCTGGAAATGCAGAAGATGGCCATGCAGGACCCCCTCACGGGCCTGGCCAACCGTTCGGCCCTCCTGGCAGCCCTGAAATCGGCGCAGGGCGAGGAGGCGTCGGAGGCTGAACCTCCGGTCATTCTGCTGCTAGACCTGGATGCCTTCAAGTCCATCAATGACACCCTTGGGCACACGGTGGGCGACCAGGTCCTGATCACCGTGGGAGAACGCATCCGGGATGCCGTACGCGTCACGGATGTCGTGGCCCGGCTGGGCGGAGACGAGTTCGCCATCGTGATGCCGGCAACAGACCCGGATCAGGCAACTCTTGTGGGGCACCGCGTCCTGGCAGCCTTGAACCGGCCCATCGAGTTGCCTGACCGGAGCATCCGCTGCGGGGCAAGCCTGGGGCTGAGCGTCGGCGGCAGGGGGCAGCGGCCGGAGGATATCCTCATGCAGGCCGATGTGGCCATGTACGCCTCCAAGGCCGAGGGACAGAACAGGCTCCACATCTTCGAACCGGGACTTCTGCTGGTCCGCCGGCTCCGCAGCCAACTGCTGGATGACCTCCGGGCCGCCATCAAGGGCGAGGGCCTGGTGCTCTACTACCAGCCGGTGGTGGAGCTTGCCACCGGACAGATCGAGGGAGTCGAAGCCCTGATCCGCTGGAACCATCCCACCCGTGGCCTCATCATGCCGGATGAATTTATCCCGCTCGCGGAAGAGGCGGGGCTGATCTCAGAGCTCGGCGTCTGGGTGCTGAAGGAAGCAGTGGGCCAGCTCGGGCGATGGATCTCCGACTCCGCAGTGGACAGCCGGTTCTCTGTCCGGATCAACATTTCCGCCAGCGATCTCCAAAGCCTTCAGTTCATCGAGGACGTCCGTGCCGTGCTCAAGGAGACTGGCGTCCGTCCCGAGCAGGTTGTCCTGGAGCTGACGGAAATGGCAATCGTGAAGGGAAATGACCTGGACCGCTATTCGCTGGGCGGTTTGCGTGGACTGGGCGTGGGCATCGAGATCGACGATTTCGGAACCGGCTATTCCTCGATCAGCTACCTCCGGAAGCTGCCGGTGGACCGGGTCAAGGTGGACCGCTCACTGATTGTGGGCCTGGGATCTGATCCCAGCCAGCCCGCCTTGGTGGCCGCCGTTCTCCAGCTGATCCGGGCCTGCGGCCTGGAGGCAGTCTGGGAAGGTGTGGAAACAGCCGAGCAGGCTGAGCATCTGCGGCGCCTCGGCTGCCTCAGCGCCCAGGGCTATTTCTTCAGCCGGCCGGTGCCGGCCGAGCAGATTCCGGCGTTGGTGGCCGCCGAATCCTCCGCAGGTAATACCAGGCCGTAAMFAGNDPRLTQLLDGIVRLASGDLQSRIEVSPARDELDAIIMGTNLLAEDLQIIYEELEQRVEVRTQLLHEAHLEMQKMAMQDPLTGLANRSALLAALKSAQGEEASEAEPPVILLLDLDAFKSINDTLGHTVGDQVLITVGERIRDAVRVTDVVARLGGDEFAIVMPATDPDQATLVGHRVLAALNRPIELPDRSIRCGASLGLSVGGRGQRPEDILMQADVAMYASKAEGQNRLHIFEPGLLLVRRLRSQLLDDLRAAIKGEGLVLYYQPVVELATGQIEGVEALIRWNHPTRGLIMPDEFIPLAEEAGLISELGVWVLKEAVGQLGRWISDSAVDSRFSVRINISASDLQSLQFIEDVRAVLKETGVRPEQVVLELTEMAIVKGNDLDRYSLGGLRGLGVGIEIDDFGTGYSSISYLRKLPVDRVKVDRSLIVGLGSDPSQPALVAAVLQLIRACGLEAVWEGVETAEQAEHLRRLGCLSAQGYFFSRPVPAEQIPALVAAESSAGNTRPPGPT0026010_3086DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-29_002191671sasA_1Adaptive-response sensory-kinase SasAGTGGGGGCTGGCACACCATTTGTCGCGACTGCATCTGTCACGACTGCGCAACGAACTGCCGTCGTGGCAGACCCCGACGCCGGGCGCCGGGACTTCATCGAGGCAACACTTCTGGCCGCAGGCTACACAGTCCGCGCGGCCGGCGATGCCGGCGCAGCCACCGCCGCCCTCGACGCAGGCGGCGCGTCAGTCCTCGTGGTGGACAGCTCCCTGTCCATGGTGGAGGCAGACGTTCCCGTCCTGGTACTGGTGGACCTGGACAACCCTGCGGAGGTCGCCGCCACCGAGCGGCCCGGCATCCGGGACTGCATCGCAAAGCCTCCTGCACCGCGTGAACTCGTCCACCGGACCACGGCGCTGATCAACCTTGTGGCGCGGCGGGCCGATGCACGGGCAGCGGCTGAGGCACTGCGCGAACAGCTGCGGCTGGTTTCGGCCGCCGTCCGCGGCACCAACGATCCGCAGGAGATCGCCGACTACGTGGTGGCGGGATTCGGCGGAACGTTCGCCGCCGACCGCGTCTGGCTGACCACGTTCGAAGACGACAGGGTGCCGCGAATTACCGCCCAGTGGAACAGGCCGGGGTTGAAACCCCTCCCGGCTGGCCTGCTGACGGATGAAGAATCGGCGCTCCGGACGGCGGATCTGCTCTGGTCACGAGCGGAGTCCCTGACTTTTGACGGGTGGGACCACCCTGATGCCGAAGCGCAGAGCCGGCTGCCGGGCTCCCTCCAGAAACTGAACGCCACGGCGTCGGTCCTGGTTCCCATGGGGGAAGGTGACTCGTCCCTGGGCCTCATCTGGATCGCGCTGATGGACAAGCCCCGGAGCTGGTCACGCGCCGAGCTCGGGCTGATTCAGCACGTTGCCGGAAACGCCGCGCACGGGCTGATCCAAAGCCACCTGATCAGCAGCCAGCAGCAAGTGGTCAAACAGCTTCAGCACCTGGACAAGGCCAAAACCGATTTTCTGGCCACGGTCAACCACGAACTGCGCACGCCGCTGACGTCGATCATGGCCTACCTGGACATGATCCAGGAGAGCACCGCCGATCCTGTATCCAGCGAGGTCCACCAAATGCTGGACATCGTGGTCCGGAACACCGAGCGGCTGAGGCTGCTCATCGAAGACATGTTGAGTGTGTCGCGGGACGGGCATACCGAAACTCCGCTTCATCTGACGCCCGTGAGGCTGGGGCGGACCCTGGACATCGTGGCCGGAGCCCTCAGGCCGCTGGCCAAGCTCCAAAACGTCACCATTGCGGTTGAACCTGTCCGGGAGGACCCGGAAATCATGGGGGATGAGGTCCAGCTGCAGCAGGTCTTCACCAACCTGGTCTCGAACGCCATCAAATTCACGCCAAGCGGCGGAAAAATCCAGGTGGGCAGCGTGGCAGACACTGCCCCTGACGGTACGCACTGGGCAACAGTGAGTGTGGCGGACACCGGAATTGGCATTTCCACCGATGAGCTCGCCCATGTTTTCACCAGGTTCTACCGGGCGTCCAACGCCATGGCCGGGGCTGTCCCGGGGACGGGGCTTGGGCTTGCCATCACCCAGGACATCGTGAACCGGCACGGCGGCAGAATTCATGTCGCTTCAGAACTCGGTGCAGGCACAACCGTCACTGTCAGCCTCCCCCTGGACGCCGGCGGGAACCACGCCAACTGAMGAGTPFVATASVTTAQRTAVVADPDAGRRDFIEATLLAAGYTVRAAGDAGAATAALDAGGASVLVVDSSLSMVEADVPVLVLVDLDNPAEVAATERPGIRDCIAKPPAPRELVHRTTALINLVARRADARAAAEALREQLRLVSAAVRGTNDPQEIADYVVAGFGGTFAADRVWLTTFEDDRVPRITAQWNRPGLKPLPAGLLTDEESALRTADLLWSRAESLTFDGWDHPDAEAQSRLPGSLQKLNATASVLVPMGEGDSSLGLIWIALMDKPRSWSRAELGLIQHVAGNAAHGLIQSHLISSQQQVVKQLQHLDKAKTDFLATVNHELRTPLTSIMAYLDMIQESTADPVSSEVHQMLDIVVRNTERLRLLIEDMLSVSRDGHTETPLHLTPVRLGRTLDIVAGALRPLAKLQNVTIAVEPVREDPEIMGDEVQLQQVFTNLVSNAIKFTPSGGKIQVGSVADTAPDGTHWATVSVADTGIGISTDELAHVFTRFYRASNAMAGAVPGTGLGLAITQDIVNRHGGRIHVASELGAGTTVTVSLPLDAGGNHANPGPT0002705_1002DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636NANA
D1-29_00220849hypothetical proteinATGCAGGCCAACGGGAGGCGCGGGACTTATATTGGGACGGTGCCTTCCGCCCTGAAACTCGTGCGCTCTGCCCTGCAGAAGTACCTGATGATCCCCACGCTCATCCGGCTGTCCCGCTCCGCGCCCAAGGACAGGCACGTGGCGTGGGACCGGTACTGGGCCGGAATTGCCAGGACGGGGCCGCACGGGGAGGTCCTGTGGGACTCCGGGAGCGATCACGAGCTGCTTGGTTACCGCGACATACTGCAACGGCACCTGGATCCCGGACTGCCAGTGGTTGACATTGGGTGTGGCCACGGCAGCTTCACCCGCGGCCTGGCAGCGTTGTTCCCGCAGGCCATTGGCGTGGATGTCTCCGCCCATGCAGTGGCGCGTGCCACCAGTGAGTTGGCGGAGCTGGACAACGTCAGTTTCCTGGCACGCGACATGACCGCGGCAGGGGCCGGTAAAGGGCTGGCCGGGCCAACCGACGCGAACGTCTTCATCCGCGGCGTCCTCCACGTGCTGGACCCTTCTGATCAGGCAGCGCTGGTGGAAAACCTTCGGGAAATTGTTGGTACCAGGGGCGCCGTGTTCCTGGCTGAAACAAACTTCCAGGGCAATCCGGTGGAGTATGTCTCGCACCTGGGTGCCACCTCCCGTGCCATTCCCGCCCCGCTGGAGCGTGCCATCCGGGAACTGCCGATGCCCGGCCATTTCGGGCCTGAGGAACGCAGCAGGGCCATGCCCTCCCATTTATGGGAGCTGCTGGAAGATGGCCCGGTGACTATAGAAACCAACCCCATGACGGCGGTGACGGGCGCGAGCATGATACCGGGCTATTTCGCCGTGCTGCGGGCCCGCAGCTAGMQANGRRGTYIGTVPSALKLVRSALQKYLMIPTLIRLSRSAPKDRHVAWDRYWAGIARTGPHGEVLWDSGSDHELLGYRDILQRHLDPGLPVVDIGCGHGSFTRGLAALFPQAIGVDVSAHAVARATSELAELDNVSFLARDMTAAGAGKGLAGPTDANVFIRGVLHVLDPSDQAALVENLREIVGTRGAVFLAETNFQGNPVEYVSHLGATSRAIPAPLERAIRELPMPGHFGPEERSRAMPSHLWELLEDGPVTIETNPMTAVTGASMIPGYFAVLRARSNANANANANA
D1-29_00221453hypothetical proteinGTGGCACAGGATAAAGGCAACCGGACCAAGGACCAGCCTGACGTGCAGGAATCCGAAGAAGACCTGGGTGCAGGTCCTGAAGGAGGCAAGATCCGGCAAGGACCCGAGTCGTCCAAGTCCCTGAAGTATTCGCAGGAAGTGACATCAACGGACGATGAACCGGAGCGGGAGGGCAGGAGCCTTGCCACAACCCACCATGAGGTCATCCGGCAGTGGGCCGAGGCCCGCAACGGTGTTCCGGCCACAGTGGAGGGGACCGAACACGGAGACCATCTGGGAGTGCTGCGGATTGACTTCGGCGGCGATGATAAAAATCTCCGCCACATCTCCTGGGACGAATGGTTTGATACTTTCGATGCCCGCGGGTTGAACTTCATTTATCAGGAGCAGCGCAGCGACGGCCAGGACTCCAATTTCTTCCGCCTCGAGAATCCTGGCCGGGAAGACGCCTAGMAQDKGNRTKDQPDVQESEEDLGAGPEGGKIRQGPESSKSLKYSQEVTSTDDEPEREGRSLATTHHEVIRQWAEARNGVPATVEGTEHGDHLGVLRIDFGGDDKNLRHISWDEWFDTFDARGLNFIYQEQRSDGQDSNFFRLENPGREDANANANANANA
D1-29_00222423hypothetical proteinATGCGTAACCCAATCCCCATCGGCTCCCTTCGGCAGATGCTGTTGCCCCCCACCTTCGGGTCCCATCTGACGCAAAGCGCCGAGTTCACCGTACTCTCGGTTGAAGTCTGGTCAACCGGCCTGGTGGTCAACATTCATGTGGCCTCCGCGAACGGAAGGCCGGCGCCGGACATTGCTGTTGAGGATCACCAGGGCACGGAATATTCATTGCGGGACTCCGTCACGGTCGGATCCCGCAATCTCCAGATTTTTACACCCTCTGTGCCACCTGGAACCAGGAGCCTGACCATCAGGTCCACCGAGGAGGATGACGCCCGCCTTGTGGTGACGTTCGCCGTCCCGCCGGTTCGCCTGGTGGAAGACGACGAGCCAACAGACATTGACCTCCTGTCACCGCCATACCGACTGCGCCGCCCGGCTTGAMRNPIPIGSLRQMLLPPTFGSHLTQSAEFTVLSVEVWSTGLVVNIHVASANGRPAPDIAVEDHQGTEYSLRDSVTVGSRNLQIFTPSVPPGTRSLTIRSTEEDDARLVVTFAVPPVRLVEDDEPTDIDLLSPPYRLRRPANANANANANA
D1-29_00223810yohFCOG1028putative oxidoreductase YohFATGGAAGACACCACCGGCTTTTCCCCGATGACCGCAATCGTCACAGGATCTGATTCGGGCATCGGCAGGGCCACCGCCGTAGCCTTGGCCAAGGCCGGACTGGATGTCGGCATAACGTGGCACAGTGACCAGGCCGGCGCTGAAGAAACCGCCGACGAAGTCCGCAGTCTCGGGCAGAAGGCTGCGGTCCGGCAGTTGGACACTACTGACATCCGCGGTTCCGCGGCCGTCATTGATTCCCTGGCTGACGAGCTGGGCGGAGTGGATGTTTTCGTCAACAACGCGGGCACCGGCGACCAGACCAAATTCCTTGACCTCGACGTGGAAACCTGGATGGGCACGCTGGACACGAACCTCAATGGCGCTTTCGTGTGCATGCAGGCCGCCGCGCGCCGGATGGTCAAGGCGGGCCGGGGCGGGCGCATTGTGGCGGTTACCAGCGTCCATGAATTCCAGCCCCGGGTGGGCTCCTCGGCCTATGACGCTTCCAAGCACGGCCTGGGCGGACTGATCAAGACCATGGCGCTGGAGCTTGCGCAGTTTGGCATCACAGCCAACAGTGTTGCGCCTGGGGAGATTGCCACGCCCATGACCGGCCAGACGGACGAGGATCCCACGTCGAAGGACCGGCCGGGGGTTCCCCTGGGCAGGCCGGGTGACGCCCGGGAGGTGGCCGCAGTCATCGCTTTCCTGGCTTCGCCTGAATCGAGCTATGTGACGGGTGCCTCCTGGGTTGTGGACGGGGGCATGCTGCAGATGGGTCCGCAAGGTGGCTCGCACATCACCGCACACGACTGGCGGGAAGGCTGAMEDTTGFSPMTAIVTGSDSGIGRATAVALAKAGLDVGITWHSDQAGAEETADEVRSLGQKAAVRQLDTTDIRGSAAVIDSLADELGGVDVFVNNAGTGDQTKFLDLDVETWMGTLDTNLNGAFVCMQAAARRMVKAGRGGRIVAVTSVHEFQPRVGSSAYDASKHGLGGLIKTMALELAQFGITANSVAPGEIATPMTGQTDEDPTSKDRPGVPLGRPGDAREVAAVIAFLASPESSYVTGASWVVDGGMLQMGPQGGSHITAHDWREGPGPT0014705_817DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034NANA
D1-29_002241137garK_1COG1929Glycerate 2-kinaseATGATGGAGGGCATGCGCATTCTTATTGCTCCGGACAAGTTCAAGGGCTCGCTCACTGCCGCTGAAGCAGCAGCTGCCATCGCCGAGGGCGCGCTGCGCGTCTATCCGGATGCCGTGGCCAACCAGTTCCCCATCGCAGACGGCGGCGAAGGCACTTTGGAGGCCGCGGTGTCCGCCGGGTACGAGGAACGCCTGAACGCTGTGGTGGGGCCAATCCTGGCACCTGTTGGTGCCGCCTGGGCTTTCCATAAATTGTCCGACGGCGGCGCTACCGCGGTCATTGAGACGGCCCAGGCCTCCGGCCTTGCCGACATGGACCCCACTCCCGTGAACGCGCTCCGTGCCCACAGCTATGGCTGCGGGCAGCTGATCGCTGCCGCCCTGGACGCGGGTGCCACGGAGATTGTTCTGGGCCTCGGCGGTTCAGCAATGACCGACGGCGGCAGCGGCGCCCTTCGTGCGCTGGGCCTCAAGCCACTGGATTCAGCGGGCAACGTTGTTCCGCTGGGCGGGGGATCGCTGGCCGATGTTGTTGCCCTTGATACGTCAGGGCTGGACCCCAGGCTGTCGGCCGTTTCCTTCCGGATTGCCGTGGATGTGCAGAACCCCTTGTATGGCCCGACTGGAGCGGCCCACGTCTTCAGTCCGCAGAAAGGCGCCGATGAGGAGGCAGTTGAACTGCTCGACGCCGGCCTCCGCAACTGGGCCTCCGTCCTCCGGCAGGAGACGGGCCGGGACGTCAACATCCAGGGCGCAGGCGCAGCAGGCGGCTTCCCGGCGTCGTTCCTTGCCTTTACCAGTGCCACGCTGGAAGGTGGCTTCGCTTTGGTGGCGGGCCTGACGGGGCTGGCCGGGCAACTGGCGGACGCGGACCTGGTGATCACCGGCGAAGGTTCCATGGATACGCAGTCCCTCACGGGCAAGGCGCCCATCGCGCTCGCCGACGCGGCCCGCGAACGGGGCATCCCCGTGATTGTGGTGGCCGGGCGGATCCTGGTGACTCCTGAGGATCTGGCGCAGCATGGCGTTGTGGCCGCGGCGCAACTGCTCGATGTGGCCCCCAGCCCCCAGGATGCGATTGCCCATGCGGCAAAGTACCTGACCTGGGCCACCACGCAAGTCCTGGAAGGGGCATAGMMEGMRILIAPDKFKGSLTAAEAAAAIAEGALRVYPDAVANQFPIADGGEGTLEAAVSAGYEERLNAVVGPILAPVGAAWAFHKLSDGGATAVIETAQASGLADMDPTPVNALRAHSYGCGQLIAAALDAGATEIVLGLGGSAMTDGGSGALRALGLKPLDSAGNVVPLGGGSLADVVALDTSGLDPRLSAVSFRIAVDVQNPLYGPTGAAHVFSPQKGADEEAVELLDAGLRNWASVLRQETGRDVNIQGAGAAGGFPASFLAFTSATLEGGFALVAGLTGLAGQLADADLVITGEGSMDTQSLTGKAPIALADAARERGIPVIVVAGRILVTPEDLAQHGVVAAAQLLDVAPSPQDAIAHAAKYLTWATTQVLEGAPGPT0018175_2612DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
D1-29_00225375hypothetical proteinATGCGAAAGATCCTGGAATCCGTTTTTGCCGCGCTGGCGCTGTTTGCCCTGTCGCCACTGCTGGCCCTTGCCGCCCAAGCCGCTCCACAGGCCCCGGCAGCCATCAGTGAGCGGGCGGCAGTGCAGGCGGCCGCGGTGCAGACCGAGGGCGTCCACTCTGCCGATGTCCAGGCAGCCGCGGCTGCGGCCACCAATACCCCGCCTCCTCCGACGGATCCGGCGTCGACGGGTCCGGCCAACCCGGGAACGGGTGAAACCGGCGAGGCCGAGGCCACCCGGCTGGACTTCGCGCCGCTGGTGATTGGCGCGGTGGCGGTGATCACCCTGGTGGTGATTCTGATTTGGCGGCGCCGCCGCAACACCACCATTGTCTAAMRKILESVFAALALFALSPLLALAAQAAPQAPAAISERAAVQAAAVQTEGVHSADVQAAAAAATNTPPPPTDPASTGPANPGTGETGEAEATRLDFAPLVIGAVAVITLVVILIWRRRRNTTIVNANANANANA
D1-29_00226495hypothetical proteinATGTCAGACGTGGAGGACTACACCGGGAGCACCGGACGCAACGAGACCCGGGAAGAACAGCTGGATCGCAACTGGGCCGAGCTCCTGCAGGAACTGAGGGTCCTGCAGACCGGCGTCCAGATCCTCGCCGGCTTCCTCCTGACGCTGCCCTTCCAGGACCGGTTCGACGAACTGGATGATTTCCAGGTTGTCCTGTATCTGGTCAACGTGGTGATCGCCACCCTCACCACGGCCTTTATCCTGCTTCCCGTCAGCGTCCACCGCCGGTTGTTCCGCCAGCGGCTCAAGGCAACCCTGGTATCGAGCGCAGACACGATCACCAAGATCGCCCTGGCGGGAGTGGGCACCCTGAGCGTCGGAACCGCAGCGCTCGTCTTTGACGTGGTAGCAGGCCGCCCTGCCGGACTGACCGCCGGCGGCCTGCTGCTGGCTGTCCTCCTGGTGCTGCTCGCCTACGTTCCGTTGCACCTGAATAAACGCGCCAAGGCTAGGTAAMSDVEDYTGSTGRNETREEQLDRNWAELLQELRVLQTGVQILAGFLLTLPFQDRFDELDDFQVVLYLVNVVIATLTTAFILLPVSVHRRLFRQRLKATLVSSADTITKIALAGVGTLSVGTAALVFDVVAGRPAGLTAGGLLLAVLLVLLAYVPLHLNKRAKARNANANANANA
D1-29_00227900yghA_1putative oxidoreductase YghAATGAGCGATACGCAGAAACAGACCGACCCGCCCACCGATCCCCGTGCTGGCTACCATTCCGGCCCCTTCCCGGAACAGGAACAAAAACAGCCGGGCCTGACAGCTCCCATGGATCCGAAACCCGATCACGGTGAGCACAGCTACGAAGGGCACGGCGCCCTCCTGGGCAAGGCTGCGCTGATCACCGGCGGGGACTCCGGAATCGGCAAGGCCGCGGCCATCGCCTTCGCCCGCGAGGGGGCCGACGTCGCGATTTCCTACCTTCCTGAAGAAGAGGAAGACGCCCAGGACACCGCTGACTGGATCCGGAAGGCCGGGCGGCGGGCCCTCCTGCTGGCAGGGGATGGCCGTGAAGAGGAATTCAGCACCGGCATTGTCCGGGACACGGTTGCCGAGTTCGGCCGCCTGGACGTTGTGGTGCTCAACGCTGCCTACCAAAAGAACCGCGAAAGCTTTGAATCCCTGCCCACCGAAGAGTTCGACAGGGTGTTCAGGACCAACCTGTACTCCCTGATCTGGACTGCCAGGGCCGCGGTTCCGCACCTTAAGGCTGGCTCTTCTATCATCACCACTGCCTCCATCCAGGCCTTCAACCCCTCACCGGGGCTGATCGATTACGCCATGACCAAGGCGGCGCAGGTGGCCTTCACCAAAGCACTGGCGCAGGAATTGGGCCCGAAGGGCGTCAGGGTCAACGCCGTTGCGCCCGGTCCCATCTGGACCCCGCTGATCCCTGCGACCGAATGGCCGGACAAGCTTCCCAGCTTTGGACAGGACACCCCGCTCCAAAGGGCAGGCCAGCCCGCCGAACTCGCCGCGGCTTACGTGCTGCTGGCGTCCGAGCAGGGGTCGTACATCTCAGGAGCCGTCCTTCCCGTCACCGGGGGCAAGGGGCTTTGAMSDTQKQTDPPTDPRAGYHSGPFPEQEQKQPGLTAPMDPKPDHGEHSYEGHGALLGKAALITGGDSGIGKAAAIAFAREGADVAISYLPEEEEDAQDTADWIRKAGRRALLLAGDGREEEFSTGIVRDTVAEFGRLDVVVLNAAYQKNRESFESLPTEEFDRVFRTNLYSLIWTARAAVPHLKAGSSIITTASIQAFNPSPGLIDYAMTKAAQVAFTKALAQELGPKGVRVNAVAPGPIWTPLIPATEWPDKLPSFGQDTPLQRAGQPAELAAAYVLLASEQGSYISGAVLPVTGGKGLPGPT0003180_12566DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_00228546hypothetical proteinATGAGTCAGGACAACCAGCACAGCGCGGCCGAAGAGGAAGTTGGCGGGTACGGGACCCCGACGGCGGAGCAGGAGATGGGCGGGGCCGGAGGCAAACAGTTCGCCCAGCCCCGCGAGGAAGAGGATTTTGACGCCGCCGGCCTGAACCAGGACAGCCCCACGGGGGAAACGTTCGCCACCGACGCACCCAACCTCAGCCACTTTGAGGAGGAGGACAAGGACAGCGCCGGTGAGCCCGGTGCGGGCCGCTTCGGTGGCATTGACGACCAGCTCCATGCAGAGAGCGACTCCAGTGATCCGGGCTTCGAACCGGCCGGGCGGTCTGAGGGCGGTGATGCCGGTGACGTAGGTTTCATGGATGATGACACGGTGGCCCCGTCGGTGGACGCGGAGATCGACGAGTCAAATTCCGATGACCAGGGATCGCCGCAGTTTTCCTCCGAACCTGGACAGGACGCGGCGGGCCTTCCTGACGGGAGCGGCAATAACCTCCCTCAGGAAAAGTCGCCCAACGACGACGATGACGAGAGCTTCAGCGCCGGCTGAMSQDNQHSAAEEEVGGYGTPTAEQEMGGAGGKQFAQPREEEDFDAAGLNQDSPTGETFATDAPNLSHFEEEDKDSAGEPGAGRFGGIDDQLHAESDSSDPGFEPAGRSEGGDAGDVGFMDDDTVAPSVDAEIDESNSDDQGSPQFSSEPGQDAAGLPDGSGNNLPQEKSPNDDDDESFSAGNANANANANA
D1-29_00229954hypothetical proteinATGGTCCACGGATGCAGTGAAGTCCGGAGGTACATCGTGAGCAGAATATCCTCTGAACAGTGGGGCCGGCGCGTCCAAGCGCCGGACGAGGTCCCGTTGGACGTCCTGATTCCCACCTGTGACCGTCCCGCCGAGCTGGCGGTCACCCTGGCAGGCCTGGCCGGCCAATCAGAACCGGCGTTCGCCGTGGTAGTCAGCGATCAGTCCACCGCCACCCCCGACTGGGAACATCCGGCCGCGGCGGCCATGGTGCGGGTCCTTGGGGCCCAGGGGCGCAGGGTGAGCCTGCTGCGCCACCTGCCCCGGCGTGGGCTTGCTGAACAGCGCCAATTCCTGCTGGAGCAGTCCACTGCGGACAAATGCCTGTTCCTGGATGATGACGTATGGCTGGAGCCAGGCTCCCTGGAGAAGCTCAGCAACGCCTTGGATGAGCTCCAGTGCGGGTTTGTGGGCATGGCGCCGCAAGGTCTGTCCTATCTGCACGACAGGCGTCCCGAGCAAACTGAGGTATTCGAAACCTGGGACGGGCCCGTGACGGCGGAGAGAATCACTCCGGACGGCCCGGAATTTCTTCGCTGGCCACTGCACAACGCGGCAAATCTCAGCCATGTGAGCGCAGATCTCTCCCTTGAGGCCGGCCAATGGGTGCCATACCGTGTGGCGTGGGTCGGTGGCTGCACCATGTTTCGCAGGAACGCCCTGAACCGGGCGGGAGGTTTCACCTTCTGGCCCAGCCTTCCCAGCGACCATGCGGGTGAAGACGTCGTGGCCCAGTGGAAGGTCATGGAAGAGTTTGGCGGCGCAGGGATCCTTCCGTCCGGGGCGGTGCACCTGGAATCTCCCACCACTGTGACCGAACGCAGGGTTGAGGCCTTTGAGGTGGTGCTCAACAGAAATTCGGCATCCGGGAATGATGAGGCCGGCTCCGGCCCACCGGGCCAGCTCCCGAAGTAAMVHGCSEVRRYIVSRISSEQWGRRVQAPDEVPLDVLIPTCDRPAELAVTLAGLAGQSEPAFAVVVSDQSTATPDWEHPAAAAMVRVLGAQGRRVSLLRHLPRRGLAEQRQFLLEQSTADKCLFLDDDVWLEPGSLEKLSNALDELQCGFVGMAPQGLSYLHDRRPEQTEVFETWDGPVTAERITPDGPEFLRWPLHNAANLSHVSADLSLEAGQWVPYRVAWVGGCTMFRRNALNRAGGFTFWPSLPSDHAGEDVVAQWKVMEEFGGAGILPSGAVHLESPTTVTERRVEAFEVVLNRNSASGNDEAGSGPPGQLPKNANANANANA
D1-29_00230867hypothetical proteinATGGCCGTGGACACCTCAGGGGGCGCAGGCCGGGAGCCGCTGCCCGCCCCCCAGGACGTAGTTTTCGAAAGCAACGACGTCGAAAACTTCCTCAGCGATGTGACCCATGAGTTCATGCAGGACATTCAAGGTGCCCCCCGGGGAATCAGCTGGGCAGCCACGCTGTTCCGGCGGGGGGAAGCGCACACCATAGCCGCGGGAAGCGCCAAGGCCCGGGCTGCGGACCAGGAGCAGTGGTCCTTCGGCGACGGACCGGTCCTGCTGGCCATGCGGACCGGCGAGTTCGTCCATGTCCCCGATGTAGCCCAGGAGCGGCGCTGGCCCGGATATGCCGCCGCCGCAGCAAGCCACGGTGTCCGTTCGCTGCTGTCCATGCCCATCGTGTCCGCGGCCGGGTCCGTTGCTGCCATCAATCTTTACGCGCCGTCGCCGCATGCCTTCACCAGCGAAGACCTTGTGAGAACCCGCAGTTACGCCCGGCAGGTTGCCAGGGCCCTTCGTGTGGTCCTCCGCGTGGCGGAAAGGGCCGAAGCCAGCGCGGAATTGGCGGTCGCGCAGACGTCTTTGGCTCTCATGGACCTTGCGGTGCGGGCCTTGATGGGGGAGTACGGGCTCAGCCACGAAGGTGCCTTCCAGTATCTGAGGACCATGGCAAGGCATAACAACCTGGGGCTGCGCGAGGCAGCCCTGAGCGTCCTGGCGTCCGGTTCACAGTTGGACACAGGAGCAGGAGACCTGGGGGGACGAAATCCGGGGGAACAAAACCTGGAACAACCAGGTCAGGACAACATCGATGTCCGCAGCCTGATCGGGGCGGAATCCCCACGCTCGGGCGAATCCCCGTACGGCAGAGGGAGTCCATCATGAMAVDTSGGAGREPLPAPQDVVFESNDVENFLSDVTHEFMQDIQGAPRGISWAATLFRRGEAHTIAAGSAKARAADQEQWSFGDGPVLLAMRTGEFVHVPDVAQERRWPGYAAAAASHGVRSLLSMPIVSAAGSVAAINLYAPSPHAFTSEDLVRTRSYARQVARALRVVLRVAERAEASAELAVAQTSLALMDLAVRALMGEYGLSHEGAFQYLRTMARHNNLGLREAALSVLASGSQLDTGAGDLGGRNPGEQNLEQPGQDNIDVRSLIGAESPRSGESPYGRGSPSNANANANANA
D1-29_00231945hypothetical proteinATGAACAGCCAAAATCCGGACCGGACACAATCGACGTCGGCGGCCACCTCTTCAGAGGCCAGCCGGCCAGGTGCCACCGAGCCAGAAGCCACCCGTTCAGAGGGCGTCCAGCCAACGGCCGTCCAGCCAATGTTGGGTTCCCACCCCTGGCATCGCTTCGTGGCGCTCGGTGATTCCTTCACCGAAGGAGTGGGGGATCCCGAACCCGGCAGCGAGGGCGGACTGAGGGGGTGGGCGGACCGCGTTGCCGAGGAACTGAGCGAGGGCCAGGCGGACTTCGCCTACGCCAACCTTGCCATCCGGGGTCTGCGGATGCAGCAGATACTGGACCGGCAAATTGGGCCTGCGCTGGCATTGAAACCCGACCTCATCACACTGTCCGCAGGCGGCAACGACATCGTCTTCCGTCGCAGCGATCCTGACAAGCTGGCCGAAAAGATGGACGCGAATGTGGGCCTGCTGACCGCCACAGGGGCCACGGTGGTCCTGTTTGCCGGCCCGGACTGGGGTGCCACGCCCGTCCTTGCCCAGGTCCGGGGCAAGGTGGCCATCTTCAACGAAAACCTGCATACGGTGGCCGCCCGCCACGACGCCCTGATCGTTGACCTCTGGTCCCTCCGCGAGTTGGCGGACCCCGGAATGTGGGACCCCGACCGGCTGCATTTCTCCCCGCTGGGGCATCACACCATAGCCGCCGCTGTGCTCAATGCGTTGGGTGTGCCCCATAGCCTGAAGCCGCTCGAGCCCAAGCAACTCCCCGCGCGGAGCTGGAAGGAAGCCCGTTCCGAGGACCTCGTTTGGGCCCGGGAGTATCTGGTGCCCTGGGTAATCCGCCGTTTGCAGCTACGTTCGGAGGAGGGACTGGCAGCCAAGCGTCCCCATGCGGGTCCGGTCTTCGGAGTAGGCCGCGCTTCCGGCCAGTTCTCCCGGGGCTCCGCCGCCTGAMNSQNPDRTQSTSAATSSEASRPGATEPEATRSEGVQPTAVQPMLGSHPWHRFVALGDSFTEGVGDPEPGSEGGLRGWADRVAEELSEGQADFAYANLAIRGLRMQQILDRQIGPALALKPDLITLSAGGNDIVFRRSDPDKLAEKMDANVGLLTATGATVVLFAGPDWGATPVLAQVRGKVAIFNENLHTVAARHDALIVDLWSLRELADPGMWDPDRLHFSPLGHHTIAAAVLNALGVPHSLKPLEPKQLPARSWKEARSEDLVWAREYLVPWVIRRLQLRSEEGLAAKRPHAGPVFGVGRASGQFSRGSAANANANANANA
D1-29_002321353rutGCOG2233Putative pyrimidine permease RutGATGAGCATGCTCGGAACCAAATGGAAGCTGCACGGCACCGGCAAGTCGATCCGGCCCGGACACGTGGTCGCACCCGATGAAAGGCTGGCCTGGCCGCTGACCATCGGCGTCGGCATGCAGCATGTGGTTGCCATGTTCGGCGCCACCTTCCTGGTCCCCATCATCACCGGAATGCCGCCAGCCACCACCCTCTTCTTCTCGGGCATTGGCACCCTGCTGTTCCTGGTGATCACCCGCGGCCGGGTGCCCAGCTACCTTGGTTCCAGCTTCGCGTTCATCGCACCCATCATGGCGTCCCAACAGCAGTTCGGCGTACCGGGGGCGCTGGGCGGAGTGGTGCTGGCCGGCGTCGCCCTGGCCCTGATCGGGGCCATCGTGCAGAAATTCGGCGCCGGCTGGATCAACCGGCTCATGCCGCCCATCGTCACCGGCGCCATTGTGGCGCTGATCGGACTGAACCTGGCGCCGGCGGCCAAGATGAATTTCGACGCCGCGCCGGTCACCGCCGTGATCACGTTGGCCACCATCATCCTGGTCAGCGTGCTGTTTCGCGGGATCATCGGCCGGCTGAGCATCCTGGTGGGCGTCGTGGCGGGCTACCTCGTGGCCATGATGCGCGGTGAGGTGAACTACGCCAAGATGGATGCGGCAGCGTGGATAGGCCTGCCGCAGTTCCAGACTCCCGAGTTCCACATCGGTGTCCTTGGCCTCTTTGTGCCGGTGGTGCTGGTGCTGGTGGCCGAGAACATCGGGCATGTGAAGTCCGTGGCGGCCATGACGGGCCAGAACCTCGACGGCGTCTCCGGACGGGCGCTGATGGCCGACGGCGCCGCGACTGTCCTGGCGGGCATCGGCGGCGGCTCCGGTACCACCACATATGCGGAAAATATCGGCGTCATGGCAGCCACGAAGGTCTACTCCACGGCGGCATATTGGGTAGCGGGCATTTTCGCGATTGTGCTCAGCTTTTCGCCAAAGTTCGGGGAACTGATTGCCACGGTTCCGCCCGGGGTGCTCGGCGGGGCAGCCACCATGCTTTACGGCATGATCGGCATCCTGGGCGTGAAGATCTGGGTCCAGAACAAGGTGAACTTCTCCAATCCGGTCAACCTGACCACCGCCGCCGTCGCGCTGATTATCGGTATTGCGGACTACACCTGGACCATCGGCGACCTGAAGTTCACCGGCATCGCGCTGGGCTCGGCCGCCGCGCTAGTGATCTACCACGGCATGAAGGCAGTGGCGAAGGCCCGGGGCACCGTGGCCGAGCCTGAGACGGAGCAGGCGGGCCTCCCGCCCGCAGTGAAGGCGGCAGTCAACGCTGCGGCCAAGCGGGCTCCCAAAAAGCGCTAGMSMLGTKWKLHGTGKSIRPGHVVAPDERLAWPLTIGVGMQHVVAMFGATFLVPIITGMPPATTLFFSGIGTLLFLVITRGRVPSYLGSSFAFIAPIMASQQQFGVPGALGGVVLAGVALALIGAIVQKFGAGWINRLMPPIVTGAIVALIGLNLAPAAKMNFDAAPVTAVITLATIILVSVLFRGIIGRLSILVGVVAGYLVAMMRGEVNYAKMDAAAWIGLPQFQTPEFHIGVLGLFVPVVLVLVAENIGHVKSVAAMTGQNLDGVSGRALMADGAATVLAGIGGGSGTTTYAENIGVMAATKVYSTAAYWVAGIFAIVLSFSPKFGELIATVPPGVLGGAATMLYGMIGILGVKIWVQNKVNFSNPVNLTTAAVALIIGIADYTWTIGDLKFTGIALGSAAALVIYHGMKAVAKARGTVAEPETEQAGLPPAVKAAVNAAAKRAPKKRNANANANANA
D1-29_00233606rutECOG0778putative malonic semialdehyde reductase RutEATGACCATTGCCCACGAAGAAGCGATTATCGATTCGGCCGCCATCGACGCCATTTTCGGTCAGGCCCGCACCGCCAACTCCTTCACCGGAGAGGTGACTGACGAGCAGGCGCAGGCCATCTACGAACTCACCAAGTATGGCCCTACCGCCTTCAACTCGCAGCCGCTGCGCCTGACCTACGTCCGCTCCGCTGAAGCCCGTGCCAAGCTCGTTGACGCCCTCGCCACCGGGAACAAGGCCAAGACCGAGTCCGCCCCGCTCGTTGCCATCCTCAGCTACGACACCGACTGGGCTGAGCAGTGGGACAACTTCCTGCCCGGCTACAACGCCCCCAAGGCCATGTACGACGCAAACCCCGAACTCGCCGCCGCCACGGGCAACAACAACGCCCACCTGCAGGCCGGCTACTTCATCCTGGCCGTCCGCTCGCTCGGCTTCGCAGCCGGACCCATGACCGGCGCCGACTTCGGTGCCATCGACGAGGCCTTCTTCCCCGCCGGCGACCAGAAGAGCTTCCTGGTGGTCAACATCGGCCAGCCCGCCGACGACGCGTGGGGCGAAGCCAAGCCCAAGTTCTCCTACCAGGACGTCGTCCGCACCGTCTAAMTIAHEEAIIDSAAIDAIFGQARTANSFTGEVTDEQAQAIYELTKYGPTAFNSQPLRLTYVRSAEARAKLVDALATGNKAKTESAPLVAILSYDTDWAEQWDNFLPGYNAPKAMYDANPELAAATGNNNAHLQAGYFILAVRSLGFAAGPMTGADFGAIDEAFFPAGDQKSFLVVNIGQPADDAWGEAKPKFSYQDVVRTVPGPT0021290_266DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021290-rutE|ycdI-K09019NANA
D1-29_002341665pgmCOG0033PhosphoglucomutaseATGGCTAGCCGCGCGGGCACAGTTGCCCAACCCCATGACCTTGTTGACATCACTGCGCTCCTTGACGCGTACTACGACATCACGCCGGATCTCGCTGATCCGGGCCAGCGGGTGGCTTTTGGTACCTCAGGGCACCGCGGTTCCAGCTTGAAGGCATCGTTCAACGAAAAACACATCGTTGCGATCACGCAGGCCATCGTGGAATACCGCTCCGGGCAGGGCATCACCGGCCCGCTGTTCCTGGCCAAGGACACCCACGCACTCAGCGAACCGGCCCAAAACTCCGCCCTTGAGGTGCTCGCTGCCAATGGCGTCCAGGTGCTCATCGATGCCCGCCACGGCTACACGCCAACGCCTGCCCTGAGCCACGCCATCCTTACCTACAACAACAACAATCCCGCCGGGGCCCCGCAGGCAGACGGCATTGTGGTCACGCCCAGCCACAACCCGCCCGCCGACGGCGGCTTCAAGTACAACCCTCCGCACGGCGGCCCCGCAGACTCCGATGCCACCGGCTGGATCGCGAACCGCGCCAACGAACTGCTGGAGAACGGCCTGCGCGGCGTGAAGCGCATTCCGCTTGCAGATGCCCTCAACGCCGATACCACAGGCAAGTTCGATTTCCTCAGCAGTTACGTTGACGACCTCCCCTCAGTCCTGAACCTCAATGCGATCCGCGACGCCGGTGTCCGCATCGGGGCCGATCCCATGGGCGGCGCCGCTGTTGATTACTGGGGCGAGATCGGCGAGCGCCACCACCTGAACCTGACCGTTGTGAACCCCACCGTGGATCCGCAGTGGGCATTCATGACTCTGGACTGGGACGAAAAGATCCGGATGGACTGCTCGTCGCCGGCTGCCATGGCCTCCCTGATCAAGCGGATGTCCGACGCCGCATCGTCCGGCCAGCAGGCCTTCGACGTTGCAACCGGCAACGACGCCGACGCCGACCGGCACGGCATCGTTACACCAGACGGCGGGCTGATGAACCCCAACCACTACCTCGCCGTCGCCATTGATTACCTGTACCGGAACCGCAGCGGCTGGAACCCCGCCTCCGTGGTGGGGAAAACCCTGGTGTCCTCCTCTATCATTGACCGCGTGGCCGAGAACCTGGGCCGCAAACTGGTTGAAGTTCCTGTAGGTTTCAAGTGGTTTGTGCCTGGCCTGCTCTCTGGTGAAGGTGCATTCGGCGGTGAGGAATCAGCCGGCGCCTCCTTCAACAAGCTGGACGGCAGCGTCTGGACCACAGACAAGGACGGCATCCTGCTGGCTCTGCTGGCTTCGGAAATCACTGCCGTCACGGGCAAGTCGCCGTCGCAACTGTACAAGGGCCTGACTGACCAGTTCGGTTCCCCCGTCTATGCGCGGATTGATGCCGCAGCCACCCGGGAGCAGAAAGCGGCGCTGGGCAAGCTGTCGCCGTCGGACGTTACCGCCACCGAACTTGCCGGCGAAACGATCATGGCCAAGCTGACCAGGGCGCCTGGAAACGACGCCCCCATTGGCGGCCTTAAGGTGGTCACGGAGAACGCCTGGTTCGCGGCGCGCCCGTCCGGAACTGAGGACGTGTACAAGATCTACGCTGAGTCCTTCAAGGGCGAGGACCACCTCAAGCAGGTCCAGGCCGAGGCCAAAGCACTGGTGGACGGCGTGATCGCCTAGMASRAGTVAQPHDLVDITALLDAYYDITPDLADPGQRVAFGTSGHRGSSLKASFNEKHIVAITQAIVEYRSGQGITGPLFLAKDTHALSEPAQNSALEVLAANGVQVLIDARHGYTPTPALSHAILTYNNNNPAGAPQADGIVVTPSHNPPADGGFKYNPPHGGPADSDATGWIANRANELLENGLRGVKRIPLADALNADTTGKFDFLSSYVDDLPSVLNLNAIRDAGVRIGADPMGGAAVDYWGEIGERHHLNLTVVNPTVDPQWAFMTLDWDEKIRMDCSSPAAMASLIKRMSDAASSGQQAFDVATGNDADADRHGIVTPDGGLMNPNHYLAVAIDYLYRNRSGWNPASVVGKTLVSSSIIDRVAENLGRKLVEVPVGFKWFVPGLLSGEGAFGGEESAGASFNKLDGSVWTTDKDGILLALLASEITAVTGKSPSQLYKGLTDQFGSPVYARIDAAATREQKAALGKLSPSDVTATELAGETIMAKLTRAPGNDAPIGGLKVVTENAWFAARPSGTEDVYKIYAESFKGEDHLKQVQAEAKALVDGVIAPGPT0017710_2611DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
D1-29_00235906hypothetical proteinATGGGCGCAGGGGACGGGGCAGCCGAACAGTCCAGGCTGGCTGCCGAGCGGGTTGCACGGCTGAAACGCCAGCTGGACCAGGCGGAGCGTGCCACGAAAGCGCGGAATGTGGACGCCGAGGGCGAGAAAGCCGTGGCGGAGAGCCTTGGCGGGCTCGTCTCCAGCGGTTGGCACCTGTTGCATGATGTCCAATGGCCGGGGAGACCCGAGGCCATCCTGGACCATGTTCTGGTGGGGCCAGGCGGTGTAGTGGTGGTGGACACCAAGAACTGGACCGGTGAAGTCCGGGTGTCCTCAGGCGTGCTCTGGCAGGGGCGTTACGCCAGGACGCAGTCGGTAGAAGGTGCGCTGGCACAGTGCGCCGCAGTGGCTTCGGTGATGGCGCCGCAGCACAGGCGGTATGTCCGTCCGCTGATCTGCATGTCCCGGCAGCCGGACGTCTTCGGTATTACCAGCTCAGATGTGGCTGTTGCGGGAACGGACCGGGTTGTTGCGGCAATCCAGGCTCTCCCCGCTGTACTGGACCAGCAGGCCGTTGTGGCGCTGTCTGCCCAGCTGGGTGAGCTGCTGGCACGGCAGCAGCCTCCCCGCGCCGGTGCGGTCATGCGGACAGGGGAGCCTGCTGCTGCTCCAACAGGGTCAGGGCCAGGGGCTGGAGCTGCAGCAGATCCTTTGCGGCGGGGGCGCACGGGAGGACGCCGCGGACCACGACATGCTGTTTCTGGCGTTGCACCAGGTGCGGCCCCTGGGGTGGCACCAGATACGGGCCCGGACGGGCGTACAGGCCTAGGCAGGAAATCGAAGTCGAACGCCCACCACCATGGAACGGGAGGCATGGCCGGGCTCCTGATTCTCGCGGCCTTTGTCACCTTCGCCGTGTACGTTCTGCCCTACTGGGGACGGTAGMGAGDGAAEQSRLAAERVARLKRQLDQAERATKARNVDAEGEKAVAESLGGLVSSGWHLLHDVQWPGRPEAILDHVLVGPGGVVVVDTKNWTGEVRVSSGVLWQGRYARTQSVEGALAQCAAVASVMAPQHRRYVRPLICMSRQPDVFGITSSDVAVAGTDRVVAAIQALPAVLDQQAVVALSAQLGELLARQQPPRAGAVMRTGEPAAAPTGSGPGAGAAADPLRRGRTGGRRGPRHAVSGVAPGAAPGVAPDTGPDGRTGLGRKSKSNAHHHGTGGMAGLLILAAFVTFAVYVLPYWGRNANANANANA
D1-29_00236648hypothetical proteinATGACTGACCAGCCAACTCACCGGCCGGATTCACAGGGATACGGCGAGCAGGGTTCAGGCGATTCGCCGGCGGGCTACCAGCCGCCGCAGTTTGTGCCGCCGCAGGGTTCGGGGACACCTGCTCCGCCTGCCTATGATCAGGGCCAGTACGGACAGCATGAGTACGGGCAGCAGCAGTACCAGTACCAGTATGGCCAGGCCTCCAACCCGTACGGTCAGCCCTCGGAGCAGTATGGCGCACCCTATGCCCCGGCGGACAGCCCCTATGCCTCGGCGGACAGCCCCTATGGCCAGGCGGCCGGCCCGTATGCCCAGGCAGCCAACCCTTACGGCCAAGCGCCCAGCCCCTACGGCCAACCGCCCAGCCCCTACGGGCAGCCGGCCTATTACGGCATGCCGGTGGAGCCCAAGGGCATGAGCATCACCAGCATGGTGCTCGGCCTGGTCTCCGTGATCTTCGGCTGGTTCCTGCTTCCGCAGCTTGCAGCGATCATCACGGGGCACCTCGCGCTCCGGCGCGAACCCTCAGGGAAGGGTATGTCCATCACCGGCCTGGTCCTGGGGTACCTCTGCTTGCTCGGCTATGGTGGCTTCTGGCTGCTGATCATCGTCCTGGCAGCATCAAGCGGAAGCAGCTACTCCTACTAGMTDQPTHRPDSQGYGEQGSGDSPAGYQPPQFVPPQGSGTPAPPAYDQGQYGQHEYGQQQYQYQYGQASNPYGQPSEQYGAPYAPADSPYASADSPYGQAAGPYAQAANPYGQAPSPYGQPPSPYGQPAYYGMPVEPKGMSITSMVLGLVSVIFGWFLLPQLAAIITGHLALRREPSGKGMSITGLVLGYLCLLGYGGFWLLIIVLAASSGSSYSYNANANANANA
D1-29_002371347hypothetical proteinATGGAGCCGCACGCTGAGCTGGAGGCCAAGATTGACCGCTGGCGGGGATACGTCCAGCGGCGCCAGGCGATCTCTGCGGCCGACATCGAAGAGCTGGAGGACCATCTGCGTGAGCAGATTGCGGACCGGCAGGCAACCGGTCTTGACGATGAGGAGGCCTTCCTCGTCGCGATCAAGCGCCTGGGCAATCTCGACGCCGTCTCCCGCGAGTTCGCCCGGGAACACTCGGACCGGCTGTGGAAACAGCTTGCGCTGGTCCCTGAGGACTCAGACGGCGGAACGCCGCCATACCGTGAGCTGGCCGTGGTGCTCACGCTCGCCGTCGGCGCCGGGGTGGCGGTCAAGGCCGGGTTCACCTGGATGGACGACGGCGGCACGCTGGCACGCAATCTCGGCCTCCTCATTTTCCCTTTCCTTGCAGCGTACTTCGCGTGGAAGCGCCGCTTCTCCTGGGCGGTGGCAGTGGCGCTGCTTGTGCCGTTCGCCGCTCTTGCCGTGCTGCTCAACGCCTACCCGTTTACTTCCGGAGGCTCCACCGAGGTGCTTGCCGTCCTCCACGCCCCGGTAATTCTGTGGCTGCTTGCAGGAGTGGCGTACGCCGGCGGGAGGTGGCGGTCCGACAAACGGCGCATGGACTTTGTCCGGTTCACCGGCGAGCTGGCGATCTACTACACGCTCCTGGCCTTAGGCGGTGCTGTCCTGATCGCCCTCACGCTCGCCACACTCCAGGTGGTGGGCGTTGACTTCGAACCCGTACTGGAGGACTGGATCCTTCCGTTCGCGGTGCCCGGCGCACTGGTAGTGGCCACCTGGCTGGTTGAAGCCAAGCAGCAGGTGGTCGAAAATATCGCCCCCGTCCTCACCCGGGTCTTTACACCCCTGACGATCGCCATGCTGCTGGTTCTGCTGGCCGTGCTGCCCACGGCCGGTGGCCTGGTGAACGTGGACCGCAACTTGTTGATCCTCATGGACGCGATCCTGGTGCTGGTCCTGTGCCTGCTGCTCTACTCGATTTCGGCAAGGGACCCGCTGGCCCCCCCGGGACTGGCCGACGCACTGCAGCTCCTCCTGGTTGTCGCCGCCCTTGCAGTGGATGCTGTCATGCTGACGGCGATGCTGACCCGGATTGCCGAATTCGGCTTCAGCCCCAACAAAATCGCGGCGCTGGGCCTGAACCTCCTGCTGCTGGTGCACCTTGCCAGGGCCGCCTGGCTGACGCTGGGGTTCCTGCGCGGGCGGACCAGCTTCAGTGCGCTCGAGCGCTGGCAGACACAGTACTTGCCGGTCTACAGCGCCTGGGCGGCGGTGGTGGTGGTGGTTTTCCCGCTGGTGTTCGGCTTCGCCTGAMEPHAELEAKIDRWRGYVQRRQAISAADIEELEDHLREQIADRQATGLDDEEAFLVAIKRLGNLDAVSREFAREHSDRLWKQLALVPEDSDGGTPPYRELAVVLTLAVGAGVAVKAGFTWMDDGGTLARNLGLLIFPFLAAYFAWKRRFSWAVAVALLVPFAALAVLLNAYPFTSGGSTEVLAVLHAPVILWLLAGVAYAGGRWRSDKRRMDFVRFTGELAIYYTLLALGGAVLIALTLATLQVVGVDFEPVLEDWILPFAVPGALVVATWLVEAKQQVVENIAPVLTRVFTPLTIAMLLVLLAVLPTAGGLVNVDRNLLILMDAILVLVLCLLLYSISARDPLAPPGLADALQLLLVVAALAVDAVMLTAMLTRIAEFGFSPNKIAALGLNLLLLVHLARAAWLTLGFLRGRTSFSALERWQTQYLPVYSAWAAVVVVVFPLVFGFANANANANANA
D1-29_00238363hypothetical proteinGTGCGCATCGATAAGGACCTCGTCGCAGCCTCAGCCACTCCCCTCGTGCTGGGGATCCTGTCCGACGGCGATCTGTATGGCTACGCCATCCTCAAACGGGTGGGCGAACTGTCCGGAGGCTCCATGCAGTGGACGGACGGCATGCTGTACCCGCTGCTGCACCGGCTGGAACGTCTCGGCTATGTGTCGTCGTCGTGGGGCGTGTCAGAGGCGGGGCGGCGGCGCAAGCACTACGCCATTACGCCGACGGGACGGGATGCCCTTGCTGACAGGCAGGAACAGTGGACTGTTGTTGCCGATGCGCTGCGGCATGTCTGGCGGACGGCGCAACGGCCGCCGGCGCCGGCTGCGGGGTTGGCGTGAMRIDKDLVAASATPLVLGILSDGDLYGYAILKRVGELSGGSMQWTDGMLYPLLHRLERLGYVSSSWGVSEAGRRRKHYAITPTGRDALADRQEQWTVVADALRHVWRTAQRPPAPAAGLANANANANANA
D1-29_00239225hypothetical proteinATGAAGGCGCTCGATACCTTGCCGCCGAAGGCCCGGCGGCTGGTGAAATGGGCCGCACTGGGATTCCTCGGTGCGGCGGCGCTGGCCCTCATCCTGATGACTTTCCTTGAGTTCTGGACCTCGTTCTTTATCGCGCTCGGCCTGTACCTGGCGCTGATCGGACCCCTCAACGCAGCCGCCCGGAAGGAACACGTCCAAAGACTGCGCGAACGAAACCGCCACTGAMKALDTLPPKARRLVKWAALGFLGAAALALILMTFLEFWTSFFIALGLYLALIGPLNAAARKEHVQRLRERNRHNANANANANA
D1-29_00240525L-methionine sulfoximine/L-methionine sulfone acetyltransferaseGTGACCACTGCAGCGCCGGCAACCGCAACCGTTCGCTCCCTGCACCGGGAGGATTGGCCGGCCGTTCGGAGCATTTACCAGGAGGGGATCGACACAGGCCACGCCACGTTCGAGTCCGAAGCGCCTGACTGGGACCGGTTTGACGCTTCCCGGCTGCCCGGACATCGGCTTGTCGCCGAAACCGTCGAGGGAAGGATCGTCGGCTGGGCCGCCGTCTCCCCCGTGTCCGCGCGTCCCGTCTACTGCGGCGTGGTGGAACATTCGGTGTACGTCGCGGGAGATACACGCGGCCTTGGTGTTGGCGCAGCACTGCTGCGGGCCCTGTCCGAATCAACCGAAGCCGCCGGGATTTGGACCATCCAGGCCAGCGTCTTTCCGGAGAACGAAGCAAGCCTCAAACTCCATCTCGCTAACGGCTACGTTGTGGTGGGACGCCGGCAGCGCATAGCCCAAATGGCCCATGGACCGCTAAGCGGAACATGGCGCGACACCATCCTGATCGAGCGACGCTCCCCCGCCGTCTAGMTTAAPATATVRSLHREDWPAVRSIYQEGIDTGHATFESEAPDWDRFDASRLPGHRLVAETVEGRIVGWAAVSPVSARPVYCGVVEHSVYVAGDTRGLGVGAALLRALSESTEAAGIWTIQASVFPENEASLKLHLANGYVVVGRRQRIAQMAHGPLSGTWRDTILIERRSPAVNANANANANA
D1-29_00241348hypothetical proteinATGACCTCACTGCCCCTGCTTGAACCAGCCACGGACAGCGCCTGCTGCCTGCCGGCAGAGCCCGCACTGGGTTCTGCCCAAGCGCACAGCACGGCGGCCGTCTTTAAGGCCTTGGCGGACCCGAACCGGCTGCGGCTGCTGTCCATCGTCAAGGCTGCGGAGGGTGGAGAGTCCTGCGTTTGCGATCTCACCGAACCGCTAAACCTTGGCCAGCCCACCGTGTCCCACCATCTGAAAATCCTCGTCGACGCCGGTCTGCTGCATCGCGAAAAACGCGGAACCTGGGCCTACTACTCGCTGGTCCCCGGCGCCCTGGAGCGCACCGCAGGCCTGCTGGAGAGCCTGTGAMTSLPLLEPATDSACCLPAEPALGSAQAHSTAAVFKALADPNRLRLLSIVKAAEGGESCVCDLTEPLNLGQPTVSHHLKILVDAGLLHREKRGTWAYYSLVPGALERTAGLLESLPGPT0004735_1986DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
D1-29_00242762aqpZ_1Aquaporin ZGTGCGTCAAGCTGGTGGCATGACTTCACCTCAGCCGCCGCTCTGGCGCCGCGCCGTGGCCGAACTGCTGGGCACGGCCTTGCTGGTTGCCGTCGTTGTGGGTTCCGGCATCGCCGCCCAGCAGCTTTCACCTAATGATGTGGGCCTGCAACTGCTCCAGAACAGCACTGCCACTGTCCTGGGCCTGACAGTGCTGATCCTGGTTTTTGGTCCGGTCAGCGGCGCGCATTTCAACCCCGTCGTTTCCCTGGCCGACTGGCTGCTCGGCCGGCGCAGCGGAACCGGCCTGAGCCTGCCGGACCTTGGCGCCTACGTGGCGGCCCAGGTGACCGGCGCGATCGGTGGCAGCGTGCTCGCCAACGCGATGTTCGACGTCGGGACCTCCTTCTCCGTCAAGGACCGGGCAACCGGGGGGCACCTGCTGGGTGAGGTGGTGGCGACCGCCGGGCTCATCCTGCTGATTTTTGCCCTCGCGGCCACCAACCGGGGCGCGCTCGCAGCGCCCGCAGTGGGCGCCTACATCGGGGCAGGGTACTGGTTCACCTCCTCGACCGCGTTCGCCAACCCGGCGGTGACCGTCGGCCGGATTTTCAGCGACACCTTCGCCGGCATCGCACCCGGCTCAGTGCCTCCGTTCATAATTGCCCAGCTGCTGGGCGCCGCCGTCGGCCTGGGCGTGCTGCTCCTGCTGTTCCCGGGGGCGGCACGCGTCGCGGACGATGTGGTGATCCCGCACGGCACGCAGGCAACCAAGCCCTCATAGMRQAGGMTSPQPPLWRRAVAELLGTALLVAVVVGSGIAAQQLSPNDVGLQLLQNSTATVLGLTVLILVFGPVSGAHFNPVVSLADWLLGRRSGTGLSLPDLGAYVAAQVTGAIGGSVLANAMFDVGTSFSVKDRATGGHLLGEVVATAGLILLIFALAATNRGALAAPAVGAYIGAGYWFTSSTAFANPAVTVGRIFSDTFAGIAPGSVPPFIIAQLLGAAVGLGVLLLLFPGAARVADDVVIPHGTQATKPSPGPT0004715_21DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741NANA
D1-29_00243675hypothetical proteinATGAGTATTGAGGCAGCTGACGCTTTTCAGACCCGCGTCGCCCGGCACGCGGCCCTGGCCGATCCGGCGCGCCTGCGCATCGTTGACCTCCTGACACTGGGGGACTTTTCTCCGACCGAGCTGCAGGCGGAGCTGGGCATGTCCTCGAATCTGCTTGCGCACCACCTGCGGACACTCGAAGAGGCCGGGCTGGCAACCCGGCACCGCTCCGAGGCGGACAGGCGCCGCAGCTACCTTCGGCTCGCCGCCGGGGCGCTGGATGGGCTGGTCCCCGGGGCAGTCCACGGCGCCGACCGGATTCTGTTCGTCTGCACGCGCAACAGTGCCCGGTCCCAACTGGCCGCGGCCCTCTGGCGCCAGGTCAGCACCGTCCCCTCAGCCTCTGCCGGAACGCATCCGGCCGAGCACATTGCCCCCGGTGCCATCGATGCCGCCCGGCGCCATGGCCTGGAGCTGCCCTCTCTTGCGCCGCGCTCCCTCGGTGAGGTCGCAGGGGATGCTGACTTCGTGGTCACCGTTTGCGACGCCGCACACGAGGAGCTGGCCCGGCTGGGAGGCATCCACTGGTCCATCCCCGATCCCCTGCGTTTGGGCACCAAGGACGCCTTCGATCAGGCTTTTGAGGACATCGCCCGCCGCATCACCGACCTCGCACCACGCATTACAGCTGTCTGAMSIEAADAFQTRVARHAALADPARLRIVDLLTLGDFSPTELQAELGMSSNLLAHHLRTLEEAGLATRHRSEADRRRSYLRLAAGALDGLVPGAVHGADRILFVCTRNSARSQLAAALWRQVSTVPSASAGTHPAEHIAPGAIDAARRHGLELPSLAPRSLGEVAGDADFVVTVCDAAHEELARLGGIHWSIPDPLRLGTKDAFDQAFEDIARRITDLAPRITAVPGPT0004765_235DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-ARSENIC_HOMEOSTASIS,PGPT0004765-arsR_arsC-K23988NANA
D1-29_00244423arsC1COG0394Arsenate-mycothiol transferase ArsC1GTGACCACCGAAACAACCAAGAAGCCCTCCGTCCTCTTCGTCTGCGTCCACAACGCGGGCCGCTCCCAGATGGCCGCCGCATTCCTCACCACCCTCGGAAAGGGCCAGATCGAGGTCCGCTCCGCGGGGTCCCAGCCTGCAGACAAGATCAACCCGTCAGCCGTTGAAGCCATGGCTGAAGTGGGCATCGACATGTCCGCTGAGGTTCCCAAGGTCCTCACCACCGAGGCCGTCAAGGAGTCCGACGTGGTGATCACCATGGGCTGCGGCGACGAGTGCCCCTACTTCCCGGGCAAGCGCTACGAGGACTGGGTTCTGGAAGACCCTGCCGGCAAGGGCGTAGAATCCGTGCGCCCGATCCGCGATGAAATCAGGACCCGTATCGAGGACCTGATCCAATCACTGACCCCTGCCGCCAAGTAGMTTETTKKPSVLFVCVHNAGRSQMAAAFLTTLGKGQIEVRSAGSQPADKINPSAVEAMAEVGIDMSAEVPKVLTTEAVKESDVVITMGCGDECPYFPGKRYEDWVLEDPAGKGVESVRPIRDEIRTRIEDLIQSLTPAAKPGPT0004715_2212DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004715-arsC-K03741NANA
D1-29_00245978trxB_1COG0492Thioredoxin reductaseATGAGCAACGAACAGCTGATCATTATCGGATCCGGCCCGGCGGGTTACACCGCGGCGATCTACGCTGCCCGCGCGGGCCTGGAACCGCTGGTACTGGCCGGTTCGGTCACCGCCGGCGGTGCGCTGATGAACACCACCGAGGTGGAAAACTTCCCCGGTTTCCCGGCCGGGATCCAGGGACCGGAGCTGATGGACGGGCTCCAGGAACAGGCCGAGAAATTCGGCGCCAAGGTGGTGTTCGACGACGTCACGTCAGTTGACCTGAAGGGTCACCTGAAGACCGTGGTTACCGGAGCCGGCGAAACCCACCAGGCCCCGGCGGTTATCCTGGCCACCGGCTCGGCCTACAAGGAACTCGGCTTGCCCGAGGAAAAGAAGCTCAGCGGCCACGGCGTCTCCTGGTGTGCCACCTGCGACGGGTTCTTCTTCCGCGAGCAGGACATCATCGTCGTCGGCGGCGGCGATTCGGCGATGGAGGAAGCGACGTTCCTGACCCGGTTCGCGAAGTCCGTCACCGTCGTCGTCCGCAAGGGTGAACTGCGGGCCTCCCGCATCATGGCCCAGCGCGCCAAAGATAACCCGAAGATCAGCTTCGCCTGGAACTCGGCCGTGACGGCAATCCAGGGCGACGGCAAGGTCACCGGCGTGACCCTGAAGGACACGCGTTCCGGCGAAACCCGCCAGCAGGCCGCTACCGGGCTTTTCGTGGCCATCGGCCACCTGCCGCGCACCGAACTCGTGGCCGGTCAGGTGGAACTGGACGCCGAGGGCTACATCAAGGTGGACTCGCCCACCACCGTGACCAACCTGACCGGTGTGTTCGCGTGCGGCGACGCCGTGGACCACCGCTACCGGCAGGCCATTACGGCCGCGGGCACGGGCTGCGCCGCAGCCCTCGACGCCGAACGCTACCTCGCCGCCCTGGACGATGCGGACAGCATCGCCACGGCGCTGGTGGAAGAACCTACCCACGCCTGAMSNEQLIIIGSGPAGYTAAIYAARAGLEPLVLAGSVTAGGALMNTTEVENFPGFPAGIQGPELMDGLQEQAEKFGAKVVFDDVTSVDLKGHLKTVVTGAGETHQAPAVILATGSAYKELGLPEEKKLSGHGVSWCATCDGFFFREQDIIVVGGGDSAMEEATFLTRFAKSVTVVVRKGELRASRIMAQRAKDNPKISFAWNSAVTAIQGDGKVTGVTLKDTRSGETRQQAATGLFVAIGHLPRTELVAGQVELDAEGYIKVDSPTTVTNLTGVFACGDAVDHRYRQAITAAGTGCAAALDAERYLAALDDADSIATALVEEPTHAPGPT0013060_3975DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
D1-29_002461389Ferredoxin--NADP reductaseATGGATTCCGCAAAGAGCCTTCCCGTCGCAGTGATCGGCGCCGGGCCTGTAGGCCTGGCCGCCGCGGCCCACCTGCTTGTGCGGGGCCTGGAGCCGCTGATCTTTGAGGCGGGCCCGACGGCGGGTGCTGCCGTTGGGCAATGGCGTCACATCCGGTTGTTCTCACCCTGGCGGTTCAATACCGACGCCGCTGCCGTGCGCCTCCTTGCAGCCGCCGGCTGGGAAGCACCCAGGCCCACGGCCCTGCCCTATGGCGGGGAGCTGATCGACAACTATCTGGCGCCCCTGGCTGCCCTTCCCCAGATCTCTTCGCGTCTGCAGACCGGTGCCCGCGTCACCGCCGTCACCCGTCAGGGCCTGGACAAGACCCACATCAAAGGACGGGACGCCACACCCTTCGTGGTGCGGGCCGAACACGCCGACGGCGAAACCCGGGACCATACCGTGGCCGCGGTCATTGACGCCTCCGGCACCTGGGCCACCCGCAACCCGCTGGGCACTTCTGGCCTTCCCGCCATTGGCGAAGAGGCAGCAGGGGGCCGGGTCTCCGCACCGCTGCCCGACGTGACCGGCCGCGACCGCGCCACGTTTGCCGGGCGCCGAGTCCTCGTTGTTGGCGCCGGGCACTCCGCCGCCAACACCCTGATCAACCTCGCTGACCTCGCTAAGGCGGAGCCGGACACCCGGATCCTGTGGGCCGTCCGGGGCGCAACAGCGGACAAAGTCTACGGCGGGGGCGACCTCGACGGGCTGCCTGCACGGGGCCAGCTCGGTGGCCGGGTCCGCCGGCTTGTGGAGGCCGGAAAGATCGAACTGCACACCGGCTTCGGCATCGCCTCGATCAAGTCCTTGGACTCCGCTGTCACGGTGGGCTCGGTGGATGGCCGAACCCTCGAAGCCGACGTCATCGTCCCCTGCACCGGCTTCCGTCCCGACCTGGACATCCTCCGCGAGCTCCGCCTCAACCTGGACCCCGCCGTCGAAGCGCCGACGGAACTGGGACCTCTGATCGATCCCGAGTTCCACTCCTGCGGCACCGTCCCGTCGCATGGCGCCAAGCTCCTGGCCCACCCGGACAAGGACTTCTACATCGTTGGCATGAAGTCCTACGGCCGGGCTCCCACTTTCCTGCTGGCCACCGGGTATGAGCAGGTCCGGTCGGTTGCCGCCGCCCTCGCCGGAGACCAGGAATCGGCCGACACCGTGCACCTTGAGCTCCCCGAAACCGGTGTCTGCTCCACCGACGCCGGCACCAGCTGCGACGTCCCCGCGGCATCGGCAGCAGAGGACGCCGCCGCTGCCCAGTCCGGGTGCTGCGCCGCACCCGAACCGGTGCTGGTTGGCTTCCCCACGGGTCTGGCCCACGGCCGATCCGGCACCAACAAGTAAMDSAKSLPVAVIGAGPVGLAAAAHLLVRGLEPLIFEAGPTAGAAVGQWRHIRLFSPWRFNTDAAAVRLLAAAGWEAPRPTALPYGGELIDNYLAPLAALPQISSRLQTGARVTAVTRQGLDKTHIKGRDATPFVVRAEHADGETRDHTVAAVIDASGTWATRNPLGTSGLPAIGEEAAGGRVSAPLPDVTGRDRATFAGRRVLVVGAGHSAANTLINLADLAKAEPDTRILWAVRGATADKVYGGGDLDGLPARGQLGGRVRRLVEAGKIELHTGFGIASIKSLDSAVTVGSVDGRTLEADVIVPCTGFRPDLDILRELRLNLDPAVEAPTELGPLIDPEFHSCGTVPSHGAKLLAHPDKDFYIVGMKSYGRAPTFLLATGYEQVRSVAAALAGDQESADTVHLELPETGVCSTDAGTSCDVPAASAAEDAAAAQSGCCAAPEPVLVGFPTGLAHGRSGTNKNANANANANA
D1-29_00247486hypothetical proteinATGCACAGTAAGGAATGGGCCGATGGCCCTATCCTGGTCGGCGTCGAGTGGGACTTCCCCGAGCCCCTGATCCGGACCGCCGCAGCACTGGCGGCGGCCCTGGAAGTGCACCTGATCTGCGCATTTGTCGACCCAGCCAGCTACCTGACCGAGTGGGCGCCGGCGAATCAGCGGACAGCCCTGTCCCTGGACCCTGCCATCAATGAAGAAGCCGAGTTCCCCTCTGAGCAGCTGCAGGTGAAGCTGGAAGCCATCCTTGGGAAGCCGGGGGAGGCCTGGTCCTTCCGGGTGCTCAACGGGGATGTTTCCAAGGCACTCAGTCGGCTCGCCGAGAACGCCGGCGCAGCGTTGCTCGTGGTCGGCACCGGCCGGCCAGGGCCTATGGCGCGGCTGGACCGGGTCCTGGAAGGGTCCGTATCCGCTGCCCTGCTCCGCAGGCAGCACCGCCCCGTCCTCGTTGTCCCCGAGGACCGCAGCTGCCCCTGAMHSKEWADGPILVGVEWDFPEPLIRTAAALAAALEVHLICAFVDPASYLTEWAPANQRTALSLDPAINEEAEFPSEQLQVKLEAILGKPGEAWSFRVLNGDVSKALSRLAENAGAALLVVGTGRPGPMARLDRVLEGSVSAALLRRQHRPVLVVPEDRSCPNANANANANA
D1-29_00248912glsACOG2066Thermolabile glutaminaseATGGACATCCAAAACCTCCTCGACGACATCGTCGGATCCATCAAGCCGCAACTGGGACAAGGCCAGGTAGCGAGCTACATACCGCAGCTGGGCGCCGTGGACGCCGCCCAGTTTGGCATTTCCGTGGCCACCGGCGACGGCCAGGTCTATGCCTCCGGCGATGCTGCAGTCCCCTTCTCCATCCAGAGCATCTCCAAAGTGTTCGCGCTGGCCCTTGTCCTGGCGGCCGACGGGGACGGCATCTGGAAACGCGTCTTCCGCGAGCCCTCCGGCAACCCGTTCAACTCGCTGGTGCAGCTGGAACATGAGGACGGGATTCCGCGGAACCCCTTTATCAACGCGGGCGCCCTGGTGGTGACGGACAGGCTCCTGAGCGTTACAGGCGACGCTTCCGGTGCCGTGCTGGACCTCCTCCGGCAGGAAAGCGGAAACAGCGGGATCGGCATTGACGCCGTGGTGGCCGAATCCGAAGCCAGGAACAGCGACCGCAATGCCGCACTGGCCCACTTCCTGGCCAGCTGCGGCAACCTCGAGAACCCTGTGCAGGATGTGCTGGACAACTACATCCTGCAATGCTCGCTCGAGATGAGCTGCACGGACCTGGCCCTGGCCAGCCGGTTCCTGGCCAGCAACGGAGTGCGGGTGGACGGCACAGCCCTGCTCTCCTCGCCGCAAACAAAACGGATCAACGCCGTGATGCTGACGTGCGGAACCTACGACGCGGCCGGGGAGTTCGCCTATCGGGTGGGGCTGCCCGGCAAGAGCGGGGTAGGCGGCGGAATCATTGCCGTGGTGCCGAACAACTGCACCGTGTGTGTCTGGAGCCCCGGGCTGGGCAAGTCAGGAAACTCCATGGCGGGGATCGCGGCGCTTGACGAGTTCACAACCAGGACGGGGCTGTCCATCTTCTGAMDIQNLLDDIVGSIKPQLGQGQVASYIPQLGAVDAAQFGISVATGDGQVYASGDAAVPFSIQSISKVFALALVLAADGDGIWKRVFREPSGNPFNSLVQLEHEDGIPRNPFINAGALVVTDRLLSVTGDASGAVLDLLRQESGNSGIGIDAVVAESEARNSDRNAALAHFLASCGNLENPVQDVLDNYILQCSLEMSCTDLALASRFLASNGVRVDGTALLSSPQTKRINAVMLTCGTYDAAGEFAYRVGLPGKSGVGGGIIAVVPNNCTVCVWSPGLGKSGNSMAGIAALDEFTTRTGLSIFPGPT0020215_2549DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425NANA
D1-29_002491614hypothetical proteinGTGAGGCCTGAAGAGCAAGCCGGGGACGCCGTCCGGGTCACGCTGAGCGACATCCTGGAGGACATCGGCGTCGACAATGCCAGGCTGTTGATGGCCCCGGAAGCGGACAACGAACAGGTTCGTGAAACGGTGATTGTCGATCCTGAGGACGGGGCGGCCGTCCAGCCCGGTTGCCTGGTATTCCTGGTGGGTGCCCGCGGCAGGGCTGCCCTGCCCAAAGTGCGCACCCTGCTTGCGGACCGTCCCGTGGCCATTGCCATCAAGGGATCCGAGTCGGATCTGGCTGCCGTCGGTGAGGTCATGAACGGTACCGGGACGGGGCTCATCGCCGTGGGCGCGGAGGCCCGCTGGGACCAGCTCGAAGGCATCGCCGTCGACCGCATCCGTGAATCGCTCCCCTCCGGCGACACATCCACCCTCATGCAGCGGGACCTCTTTGGCATCGCGCAGACCACGGCAACCCTCACCCGCGGGCACGTGGTTATTGAGGACACAGCCAACAGGGTCCTGGCGTATTCCCCGGCCTCCAACGATGTGGACGAACTCCGGCGGCTATCCATTTTGGCGCGCCGGGGGCCGGAGCGATACCAGAAGCTGCTCAAGGAATCCGGCGTGTACAAACGCCTGCAGGCAGGCGAGGTGCCGATCCATATCCCGGCCAATCAGGAGGAAGGGCTGCGCGAGAGGGTGGCTATTGCCATCTTCGCCGGACGCCGGATCCTGGGTTACATCTGGCTGCAGGAAGGAACCGAACAGCTCGCGTCCAACACGGACAGGATCATGGTGGGTTCCGCGCGGCACGCCGCCATCGAGCTGGTGCGGCACCGCAACGAACAGTCGCAGTCCATGCGCCGGGACCGGGTTTCCAGCCTGCTCAGCGGCACTGCCCAGATCCACTCCCAGGCGCAGTCCGCCGGGCTGGACCCGTCACGGCCGGCCGCGCTGGTGCTGGTCTCCTCCGGAAGCCTGCACCAGTCGGCGCCCGGCCTCCAGCTCCAGCGGGGGGAGCTTGCCAACCTGGTCTCCATCCATGCGGCGGCGTACCGGCCCGGAGCGGTGGTGGGCTCGCTGGGACTGGAGACGGCCATCATCCTCCCGGACCTGGACCCTGTGAAGTCCCCGGCCGCCATCAGCAGGCTGGTGAACGTTATTGTGCGCGACGCCGGCGCGCACCTGGATCTGCAGGTGCAGGCAGCCATCGGTCCGGTGGTGGACCGGCTGGACCGGCTGCACACGTCGCTGGAGCATGTCCGGAACGTGCTGACGGTGCTCAGCACGGACCCGTCGCTGAAGGTGGCCTCGTTCAGCGACGTGGAAACCACGGTGCTGGTCAATGAGCTGCTGGACCTGGTGCAATCCCGGCAGGAGCTCCGGCACAAGGGCATCACAGAACTCTGCGGGCGCTACCCGGAATTCGCCACAACGCTGCTCGCCTACCTGGAGTCCTTTGGCGACGTCAACAGCTGCGCCGAAGACCTGGGAATCCACCGCAACACCGTGCACTACCGCCTCCGCCGTTCCTGCGAGGTCTCGGGCATAGACCTCCAGGATCCCGGCCAACGGCTCCTGGCGCACCTGCAGATCCGGCTCTGGACCCGTTCCGGAAAACACTGAMRPEEQAGDAVRVTLSDILEDIGVDNARLLMAPEADNEQVRETVIVDPEDGAAVQPGCLVFLVGARGRAALPKVRTLLADRPVAIAIKGSESDLAAVGEVMNGTGTGLIAVGAEARWDQLEGIAVDRIRESLPSGDTSTLMQRDLFGIAQTTATLTRGHVVIEDTANRVLAYSPASNDVDELRRLSILARRGPERYQKLLKESGVYKRLQAGEVPIHIPANQEEGLRERVAIAIFAGRRILGYIWLQEGTEQLASNTDRIMVGSARHAAIELVRHRNEQSQSMRRDRVSSLLSGTAQIHSQAQSAGLDPSRPAALVLVSSGSLHQSAPGLQLQRGELANLVSIHAAAYRPGAVVGSLGLETAIILPDLDPVKSPAAISRLVNVIVRDAGAHLDLQVQAAIGPVVDRLDRLHTSLEHVRNVLTVLSTDPSLKVASFSDVETTVLVNELLDLVQSRQELRHKGITELCGRYPEFATTLLAYLESFGDVNSCAEDLGIHRNTVHYRLRRSCEVSGIDLQDPGQRLLAHLQIRLWTRSGKHNANANANANA
D1-29_002501578ansP2_2COG1113L-asparagine permease 2ATGAAAGCCCCGTCCGCAGGGAAACAACATGACACGCAACCGGAACCGGACAGCCAGACAAGCCCTGCGCGTCGGGGTACCGCCCAACTGGATCAGGCCGACGCCCTGGAGAACAGCCGGGAGCTGCTGGGGGACAGGGCAGCGGCAGCGCAGGACTTTTCCAGTGAAGAGGCCGGCTACCACAAGACCCTGACCCCGCGCCAGATCCAGATGATCGCCATCGGCGGCGCCATCGGCACCGGCCTTTTTATGGGCGCCGGCGGCAGGCTGAACGGCTCCGGCCCAGCCCTGGTGCTGGTGTACGCCGTGTGCGGCCTCTTCGCCTTCCTGATCCTGCGCGCGCTTGGCGAGCTGGTGCTGTACCGGCCGTCGTCGGGCTCCTTTGTTTCCTACGCCCGCGAGTTCTACGGCGAACGGATGGCACACACAGCCGGCTGGCTCTATTTCCTGAACTGGGCCATGACCTCCATTGTGGACGTCACCGCCGTCGCCCTGTACGTAAAGTTCTGGGCCCCCTACTGGGAGCCGGTGCGTGACATGCCACAGTGGGCCATCGCGCTGCTGGCCCTGGTGGTGGTCCTCGGCCTGAACCTTGTGTCCGTGAAGGTGTTTGGCGAGATGGAGTTCTGGTTCGCGCTGACAAAGGTGACGGCGCTGGTCCTTTTCCTCATTGTTGGTGTCTGCTTCATCGTCTTCGGCGGCAAGACGGACCTGGGAACGCCGGGGATCGGCATCATCCTGGAGAACGGCGGCGCCTTTCCCACCGGCGCGGTGGCTCCGCTGCTGGCCATCAGCGGCGTGGTCTTCGCCTATGCCGCGATCGAGCTCGTTGGCACGGCGGCAGGTGAAACCGCCCACCCTGAGAAGGTCATGCCCAAGGCGGTGAACACAGTGGTGGCCCGCATCGCCGTGTTCTACATCGGTTCGGTGCTGCTGCTCTCCCTGCTCCTTCCGTTCACTGCCTACAAGGCGGGGGAGTCCCCGTTTGTCACGTTCTTCTCGCACCTGGGCTCGCCGGAATCGGCGGCGGTTTCCGCGTCCGTGATGAACTTCGTGGTGCTCACGGCCGCCCTCTCCAGCCTCAACGCCGGGCTCTACTCCACCGGCCGTATCCTGCGGTCCATGGCCGTCAATGGATCCGCACCGGCTTTCACTGCCCGGATGAGCCGCAGCGGGGTGCCCTACGGCGGGATCCTGCTCACCGCCGTCGTCACCCTGCTGGGGGTTGGCCTCAACGCGCTGGTGCCGTCGCACGTGTTTGAAATCGTCCTGGAAATCTCTGCTGTGGGCATCATCGGCGGCTGGGCCACCATCATGCTCTGCCACATCAAGCTCCAGAAGTGGGTCCGGCAGGGCAAGGCCGTGCGCCCCTCCTTCAGGCTGTTCGGCGCACCCTATACGTCCTACCTGACGCTGGCATTCCTCGCCTTTGTGCTGGTCACCATGGCGTTTTCCGAAACCGGCCGCTGGGTCCTGCTGTCCTCGCTGGCCCTGGTCCCGCTGCTCAGCCTTGGCTGGTATGCGACGCGACGCCGCCGCGCCGAGGCTGCCCTGGCCGCCAGGACCCCGACGAACTAGMKAPSAGKQHDTQPEPDSQTSPARRGTAQLDQADALENSRELLGDRAAAAQDFSSEEAGYHKTLTPRQIQMIAIGGAIGTGLFMGAGGRLNGSGPALVLVYAVCGLFAFLILRALGELVLYRPSSGSFVSYAREFYGERMAHTAGWLYFLNWAMTSIVDVTAVALYVKFWAPYWEPVRDMPQWAIALLALVVVLGLNLVSVKVFGEMEFWFALTKVTALVLFLIVGVCFIVFGGKTDLGTPGIGIILENGGAFPTGAVAPLLAISGVVFAYAAIELVGTAAGETAHPEKVMPKAVNTVVARIAVFYIGSVLLLSLLLPFTAYKAGESPFVTFFSHLGSPESAAVSASVMNFVVLTAALSSLNAGLYSTGRILRSMAVNGSAPAFTARMSRSGVPYGGILLTAVVTLLGVGLNALVPSHVFEIVLEISAVGIIGGWATIMLCHIKLQKWVRQGKAVRPSFRLFGAPYTSYLTLAFLAFVLVTMAFSETGRWVLLSSLALVPLLSLGWYATRRRRAEAALAARTPTNPGPT0000815_358DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_002512793hypothetical proteinATGACGTACGACGCCGTGTCCCCGGCCCTGCAGGTCCAGCCGGCACATGCGCCGGCACTTTCGCCCTCACAAGCAATGCCGTCCGCGTCCGCCCAGCGTGGGATCGGAACCCCCAGCCGGGCGTGGCGGATCCGGGCGGACTCATGGGAGTTCCTGGGTTATGCGCTCAGGCAGCTTGCCAACGGTTCCGGCAGCAACGGCCAATCCGGCCTGCTGGGCCAGATCAGGAGGGCCCTGGCGCTCCTGGAGTCGGTGGAGCCCTATTGGGCGTTCCCTGGACGCGCCAGTATGGACCGCCTGAATGGCTTCATCGCTGCCCGGCAGTACCAGGATGCGGTTGACCTGGTGGACGGCATCAGGGCCAGGATGGGACGGGCCAGGCCCACAGCGGAACAGCCCAATACGGGCCAGTCAGATGCTGCCGAACCCATCCATGACACGGACATGACTGCTGAGCGTCCGCGGTTTGAAGTGCTGGTGGTTGACGATATCCCGGCGCAGGACGCAGAGGCGCTCAGGAACGACATGCTGGCCCAGCGCCGTCCGGCCGACGCCTTCAGCTACGACGTCAATGTGGTCTCGTCCTACGAGGACGCGCTGGTGGCCTTGTTGCTCAACCCGGACATCCAGGCGTGTGTCCTGCGGCCGGGATTCGGCATCCGGGCTTCCCGGCCCCTCGGATCGGACCTGAAAAGGGTTGTCTCCCGCCACGTGGAGGATGACCTGGAACGGCTGCGTCCCATCGACAGGATCCTTCGGCTGGCTGAACGGATCGCCGAACTCCGTCCGGAGCTGGACGTCTACCTGGTGGCAGGGGTTGCCATCGAGGGCCTGGCCGGTTCGCTGACCCGGCGGTTCGCGCGGATCTTCAGGCGGGAGGACAGGCTGGACCTGCACCTGTCGCTGCTCGCCGGGGTGGCCGGACGCTATGAAACCCCCTTCTTCACGGCGCTCCAGGAATACAGCCGCCGGCCTGCCAGTGTCTTCCATGCCCTGCCGATATCCCGCGGCGGCTCGGTAGGGAACTCCCCATGGATCAGGGACATGGCTGACTTCTACGGCCAGAACCTGCTCCTGGCGGAAACCTCCGCGACATCCGGCGGCCTTGATTCGCTGCTGGATCCACATGGCTCCATCAAGAAGGCACAAACCTTGGCGGCGCGGGCTTTTGGGGCGGAGAAGACCTTCTTTGTCACCAACGGCACCTCCACGGCCAACAAGGTGGTGCACCAGGCCATCGTGGCGCCGGGGGACATCGTGCTGGTGGACCGGAACTGCCACAAGTCCCACCACTATGCCCTGATGCTCTCCGGTGCCCAGGTGGCCTACCTGGACGCTTACCCCCTGGACCAGTACTCGTTCTACGGGGCCGTGCCGCTGGAAAGCATCAAGAAGATGCTGCTGGACTACCGCCGCGCCGGCCGGCTGGACCGCGTCAAGATGATCACGCTGACCAACTGCACCTTCGACGGCATTGTCTACGATCCCGAACGGGTCATGGAGGAATGCCTCGCCATCAAGCCGGACCTGGTGTTCCTCTGGGATGAGGCCTGGTTCGCCTTCGCCGGGTTCCATCCGGTGTACCGCCGTCGGACGGCCATGGCGGCTGCCGCCAAGCTGGAGGGGCAATTCCGGGACCCCGGATTCAGCGTCCGGCACGCAAAGCAGGCGGCCGAGTTGCAGAACGCAGAAAGCGGCGGGCCGGAAGCGGACGACGCCTGGCTCCGGACCCGGCTCATCCCGGATCCGGCAAAAGCCAGGCTGCGGGTCTATGCCACCCAATCCACGCACAAGACCCTGACCTCGCTGCGCCAGGGGTCCATGATCCATGTGTTCGACCAGGACTTTGAACAGCTCAACGGCGAAGCCTTCCGTGAGGCCTACATGACGCATACGTCCACGTCGCCCAACTACCAGATCCTGGCGTCGCTGGACATCGGAAGGCGGCAGGCGGAGCTGGAAGGTTTTGCCCTGGTCCAGAAGCAGGCGGACCTCGCGGTGAGCATAGCCCAGGCGGTGGCGCGGAACCCGCTGCTGAAGAAGTACTTCCGGATCCTGGGCGCCCGGGATCTGGTGCCGGAGGAGTTCCGGGAGACGGACTGCTCCATGCCGCTGAGCCAGGGACTGTCCGCCTTTGACGACGCCTGGCGGCGGGACGAGTTTGTGGTGGACCCCAGCCGGCTCACGCTGGACATTGGCCTGACCGGAATCGACGGCGACACCTTCAAGCACGAGCACCTCATGGACAAGTACGGCATCCAGGTCAACAAGACCTCACGGAACAGCGTGCTGTTCATGACCAACATCGGCACGTCCCGCAGCGCGGTGGCTTACCTCGTGGAGGTGCTGGTGAAGCTGGCCGAATCCTTCGAAACGGAAAAACGGACGCTGGGGCCGCGGGGGCTCAGGGCATTGGAAGCCCGGATTTCCGCGCTCAGCAGCGCCCCGCCGGCGCTGCCTGATTTCAGCAGGTTCGCCCGCCGGTTCCGCGCTGATGCCACCTCCCCTGACGGCAATCTCCGGGCCGCCTACTTTGAGACGTACAAGGACGGAGCCACGGAGTACGTGGAACCTGCCGAGCTGGCCGCGAGGGTGGAGGCCGGGCAGGAGGTGGTGTCTGCCGGTTTTGTGACCCCCTACCCTCCGGGGTTTCCCATTCTGGTGCCGGGGCAGGTGATCACAGGCAACGCCCTGGCCTTTATGGCCGCACTGGACACCCGCGAGGTCCACGGGTTCGATCCCGCCCTCGGCTACCGGGTCTTCACTGAAGAATGGCTCACCTCGGCCGGCTAGMTYDAVSPALQVQPAHAPALSPSQAMPSASAQRGIGTPSRAWRIRADSWEFLGYALRQLANGSGSNGQSGLLGQIRRALALLESVEPYWAFPGRASMDRLNGFIAARQYQDAVDLVDGIRARMGRARPTAEQPNTGQSDAAEPIHDTDMTAERPRFEVLVVDDIPAQDAEALRNDMLAQRRPADAFSYDVNVVSSYEDALVALLLNPDIQACVLRPGFGIRASRPLGSDLKRVVSRHVEDDLERLRPIDRILRLAERIAELRPELDVYLVAGVAIEGLAGSLTRRFARIFRREDRLDLHLSLLAGVAGRYETPFFTALQEYSRRPASVFHALPISRGGSVGNSPWIRDMADFYGQNLLLAETSATSGGLDSLLDPHGSIKKAQTLAARAFGAEKTFFVTNGTSTANKVVHQAIVAPGDIVLVDRNCHKSHHYALMLSGAQVAYLDAYPLDQYSFYGAVPLESIKKMLLDYRRAGRLDRVKMITLTNCTFDGIVYDPERVMEECLAIKPDLVFLWDEAWFAFAGFHPVYRRRTAMAAAAKLEGQFRDPGFSVRHAKQAAELQNAESGGPEADDAWLRTRLIPDPAKARLRVYATQSTHKTLTSLRQGSMIHVFDQDFEQLNGEAFREAYMTHTSTSPNYQILASLDIGRRQAELEGFALVQKQADLAVSIAQAVARNPLLKKYFRILGARDLVPEEFRETDCSMPLSQGLSAFDDAWRRDEFVVDPSRLTLDIGLTGIDGDTFKHEHLMDKYGIQVNKTSRNSVLFMTNIGTSRSAVAYLVEVLVKLAESFETEKRTLGPRGLRALEARISALSSAPPALPDFSRFARRFRADATSPDGNLRAAYFETYKDGATEYVEPAELAARVEAGQEVVSAGFVTPYPPGFPILVPGQVITGNALAFMAALDTREVHGFDPALGYRVFTEEWLTSAGPGPT0012235_141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0012235-adiA-K01584NANA
D1-29_00252492hypothetical proteinATGCCTGCGGGCGGCGCGGAGCGTCGGCCGCAACCCCGCGAGGAGTATGTGGGGCAGCCGGTGGCGGAGCCCCGGCCCGTGAGTCCGCCCGCGTCCGCCAGTCCTTCCGCATCCCAGGAGGCAGCGGCCGGCGGAGCCGTGCCCGCCGCAGCGGCCACCCCCGCCGCTCCACCGGCTGCCACGGGCACCCCGGCAGCGCCTTCAGCAGGCCCGCAACGGGTGACCCGCGCCGGAATGGTGTGGGCCGCCGTCGTGGCCGCCCTGGTGCTCCTGATCCTGCTGATTATCTTCATCCTGCAGAACCAGGACCAGGTGGCCGTCAGGTATCTGGGGATGGAAGGAGTTGTCCCGTTGGGCATGGCGCTGTTCATTGCCAGCGTCACCGGCGGCGTCCTGGTGGCCATCGCCGGCGCGGCCAGGATCCTGCAGCTCAGGGCCACCGCGCACCGCGCCCGGCTCAAGGAGACCCGGGGCAGCGGCACCCGGCGCTAGMPAGGAERRPQPREEYVGQPVAEPRPVSPPASASPSASQEAAAGGAVPAAAATPAAPPAATGTPAAPSAGPQRVTRAGMVWAAVVAALVLLILLIIFILQNQDQVAVRYLGMEGVVPLGMALFIASVTGGVLVAIAGAARILQLRATAHRARLKETRGSGTRRNANANANANA
D1-29_00253414hypothetical proteinATGAACGGGGCCCTTCGGCTGTGCCGTGACGGTGGCATGGCGGAGAATGGGGCCATGCGCGGACTCTATGCACAGAATGCCACCCTGCTGATGGATGCCGGCGCCGATCTCCGTGCGCCGGGCGCCGCCATCACGCTTGCGCTCTGCGGGAGTTTTGAGCACCAGCCGCCTTGCCCGCTTGCCGCACACCACACCAGTGCCGAGCGCACCGGCGGGACGGTGCGCCTGAAGATTATCTTCGCCACCGAGCCGGAGCGGCTGGCCGATGTCCGCCGTCGGATGCAAGAAGCCCTCAGCGCTGGATCCATCGCCGGTCCGGACGGCGCGGTGACGGCCTGGGTCCTGCAGGCCAGCGCGGCCGGCGATCTGAATGCGGCAGAGATGGAGCATGCCCGCCGGCTGGCCGACAGCTGAMNGALRLCRDGGMAENGAMRGLYAQNATLLMDAGADLRAPGAAITLALCGSFEHQPPCPLAAHHTSAERTGGTVRLKIIFATEPERLADVRRRMQEALSAGSIAGPDGAVTAWVLQASAAGDLNAAEMEHARRLADSNANANANANA
D1-29_00254204hypothetical proteinATGTGCTATTCATCGAGTAAGGACTTCGGGTGGGGCATCCGCAAGGAAACCGAACGCGAACCAGAGAAAAAGCAGGACACGCCGCCGGCCCGTTCAGAGCCGGACCTGACGGAGCCTGAATTCAAGTTCTGGGCATTCGTTCCCCGCCGGAAGGCACCAAAGGTCCAGGAGCCTGCTGCTGACCGCAACTTTGAGAAGGTCTGAMCYSSSKDFGWGIRKETEREPEKKQDTPPARSEPDLTEPEFKFWAFVPRRKAPKVQEPAADRNFEKVNANANANANA
D1-29_00255531hypothetical proteinATGGAGTCCAGCGGTCTCGATCATATTGACGAGGCGATCCTTGCCGAGCTCACCAGGAACGCCAGGATTCCCCATGCTGAGCTCGCCCAGCGCGTGATGCTGTCCCGGAACGCCGTGCGCCAGAGGATCACCCGGATGGAGCGCCGAGGGCATATTGAGGGCTACACCATTATTGCCGGCAGCCCGGGCCAGCGGATGGTGTCCGCCATGCTGCTGGTGTACCGCAAGGACCGGATGCGCGGTTCCGATGTGCTGGCGGCGCTTCGGACCATTCCCGAAGTGGTCCTCTGCGATGTGCTCAGCGGCGACTTCGATCTTCTGGTGCGCCTGGAAGCCCGCTCCCTGGAGCGGATCCAGGCCATCTGGGAACAGATCGCAGGCCTCCCCGGAGTACGTGACACCGTGACGGCGCTGACCCTCTCCACCGTCATCCGGCGCTCGGCCTCCGGCCAAGACGACAGTCAGAACAACAGCCAAGACGACAGTCAGAACAACAGCCAGGACCACGGGGACCGTCCGGCGGAAAGCTAGMESSGLDHIDEAILAELTRNARIPHAELAQRVMLSRNAVRQRITRMERRGHIEGYTIIAGSPGQRMVSAMLLVYRKDRMRGSDVLAALRTIPEVVLCDVLSGDFDLLVRLEARSLERIQAIWEQIAGLPGVRDTVTALTLSTVIRRSASGQDDSQNNSQDDSQNNSQDHGDRPAESNANANANANA
D1-29_002561185macBMacrolide export ATP-binding/permease protein MacBATGACCGGCATCATTTCCGCCCTCCTGGAAGCCTGGCAGGAACTGAGGATCAACAAGACCCGGATTCTGCTGGCGCTGGTGGGGGTGGCACTTTCCGTGGCCGCCCTGACCTCCGTCGTCGGCTTAGGGAACCTGGCGCGCGAAGGTTTCAAGGCAAGCTCAGAACAGTACGGCGGGCGTGCGGCCACCCTCGGCATCGGCGTCTTCGGGCCAACGCAGCCGGATCAGCAGAAACTCGAGGACGCCTACCAAGGCGTGATCGACCGCTATGGGATCACTTACTACTCACATTCAGAACAGGCACAGCATTCCTTCCAGTCCCCGTACGGCGTGCAGCAGCTGAACCTCCAGCTCGTGGATCCCGGTTACGGCATGATCCACCGCCTGGACGTCCGCCAGGGCGGATGGTTCGCCGCCGACGACGAAAACCGGCTTGCTCCGGCACTGGTTGTCTCAGAGGGCTTCTATAACGCCGCAGGCCGGCCAAACCTGACCACGGATCCAAAAGTCCAGCTGCTCGGAACGCAGGAAACGACGGCGGTGATCATCGGGGTGGTTCCCGACCAGTTCCCGCAGGCACCGCCGTCGGCCTTTATGCTGACCGGGGCAGCGGAGCGTGCGGATATCTCCCCGGGAGGGTTCGGGCAGTTCAAACTCTGGGTGGGCGACGACCAGGCTGAAGCGCTCAAATTTGCTATTGCCTCCGACCTGCAGCGGCAGTTTCCCGGCATGCAGGTGCAGGTTGACCGGACGGACTACGCCAGCAACGGTGATCCGTTCGCGACTGTCCAGCTTGCCGTCGGCGGCATCGCCGGGCTGGTCCTCCTCCTGGGGGCGGTGGGCATGCTGAACATTTCCATGGTGACGGTGCGGTACCGGGTACGGGAAATTGGCATCCGCCGCAGTTTTGGCGCCACATCGCAGCGGATTTTCCTCGGCGTCATGATGGAATCCGTGGTGGCCACTGCTGTAGCGGGAATCGTTGGCGTCATGCTGTCCGTGGCGGTGGTGAAGCACCCATGGATCCAGGCCAACATCGCGCCCGGACTGACGGAGTACCCGGGGTTTCCGGTTGAGGCCGCGATGCTTGGGCTGGGCTCCGCCGTGCTGGTGGGCGCCCTGGCCGGCGCCATTCCCGCCCTGGTGGCCGTGCGGATCAAGGTCATTGACGCCATCCGCTTCTAGMTGIISALLEAWQELRINKTRILLALVGVALSVAALTSVVGLGNLAREGFKASSEQYGGRAATLGIGVFGPTQPDQQKLEDAYQGVIDRYGITYYSHSEQAQHSFQSPYGVQQLNLQLVDPGYGMIHRLDVRQGGWFAADDENRLAPALVVSEGFYNAAGRPNLTTDPKVQLLGTQETTAVIIGVVPDQFPQAPPSAFMLTGAAERADISPGGFGQFKLWVGDDQAEALKFAIASDLQRQFPGMQVQVDRTDYASNGDPFATVQLAVGGIAGLVLLLGAVGMLNISMVTVRYRVREIGIRRSFGATSQRIFLGVMMESVVATAVAGIVGVMLSVAVVKHPWIQANIAPGLTEYPGFPVEAAMLGLGSAVLVGALAGAIPALVAVRIKVIDAIRFPGPT0013350_18206DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-29_00257708ytrE_1COG1136ABC transporter ATP-binding protein YtrEGTGGAGGAACTTGTAGCCCTCAAAGGCGTCACCCGGACAGTCCTGCTGCCTGATGACCAGGAACTCCATATTCTTCGGGGCGTTGACCTCGCCGTCCACAGCGGCGACCACACAGCAGTGGTGGGACGGTCCGGGTGCGGCAAGTCCACCCTGCTGAACCTGCTCGGTCTTTTGGACCTGCCTACCAGCGGGGAACTGAGCTTCATGGGAACACCCGTGCAGCAACTGAAAGGCGGTGCCAGGGCAAGGCTCCGCGGGGAGGCCGTGGGATTTGTGTTCCAGCAGTTCAACCTGCTGCCCGGCCGCACCGCACTGGACAACGTCATCACACCGCTCCTGTATGCCCGCGGTGCCCAATTTTGGCGGCGCCGGGAGATAGCGATGGACATCCTGGACCGGGTTGGCCTGGCCCACCGGGCGCAGACGCTGCCCAACATGCTCTCCGGCGGCGAACAGCAACGGGTGGCCATTGCGCGCGCGCTGGTCCGCCGCCCCCGCCTGATCCTGGCGGACGAGCCTACGGGCGCCCTCGATGTGGATACCGGACAGGCCGTGATGGCGCTGCTGGACACTGTGGCAACAGAATCCGGCGCCGCACTTGTCACCATCACGCACGACGTCAACGTGGCCTCCCTCGCCCGGGCCTGTTACCGGCTTGAGACAGGTGTCCTGTCCGCTGCGGACGTCCCGGCGGGAGTGAGCGCATGAMEELVALKGVTRTVLLPDDQELHILRGVDLAVHSGDHTAVVGRSGCGKSTLLNLLGLLDLPTSGELSFMGTPVQQLKGGARARLRGEAVGFVFQQFNLLPGRTALDNVITPLLYARGAQFWRRREIAMDILDRVGLAHRAQTLPNMLSGGEQQRVAIARALVRRPRLILADEPTGALDVDTGQAVMALLDTVATESGAALVTITHDVNVASLARACYRLETGVLSAADVPAGVSAPGPT0013345_3474DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-29_00259972COG3940Extracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGCCCCGCCTCGAAACCGCTGCCGGCCCGATCAGCCCGACCAGCCCGATCAGCTCCGACAACACAGAACCGGGGCTTCCGGATCCCTTCATCCTGCAGCGGGCCGACCCCTGGATGATCAGGCATCAGGGCCGCTACTATGTCACGGCCTCGGTCCCGGAGTACGACCGCCTGGTGCTTCGGCAGGCGTCGACCATTGCGGGTCTTGGTTCTGCAGCTGAAACGACCATTTGGCAGCGGCCCGAATCGGGGCCGCTCGGCGGCCATATCTGGGCGCCGGAACTGCACCACTTCGACGGCGGGTGGCACCTGTATTTCGCCGCCGGCGACAGCGACGATCCCTTCAGGATCCGCATGTACGTGATGTCCAATCCGGAGCCGGACCCTTCGGCCCCGGCCTGGAGTCCGCCGGTGCGCATCCACACCCACAAAGAGAGCTTCTCGCTGGACGCCACCACCTTTGAGCACGGCGGCACGAGGTTTCTTGTGTGGGCGCAGATGGACCCTGATTCCAGCTTGTTCATCGCTCCTCTGTCCTCACCTTCAACCCTGGCCGGCCCTCCCGTGCGCATCGCCGATCCCACGCTGGGCTGGGAGACAGTCGGCCACCGGGTGAATGAGGGTCCGGCAGTCATCAAGCGCAACGGGCGGATTTTTTTGACCTTCTCCGCCAGCGCCACCGACGCGAACTACTGTATGGGCCTGCTGACGGCGGACGACGATGCCGACCTGCTGGATCCGTCGTCCTGGACCAAGGATCCGCTTCCGTGGATGGCATCGTCGGACCGCTTGGGGGAGTTCGGGCCCGGGCACAACTCCTTCACGGTGGACGAGGCCGGAAACGATCTGATTGTTTACCATTCCCGTTCCTACCGCGACGTTATGGGAGATCCGCTCCGGGACCCGAACCGCCACACCCGGATCAGGCGCATCCACTGGTCTGCCGGCGGCCGGCCGTCCGTCAGTTGCTGAMPRLETAAGPISPTSPISSDNTEPGLPDPFILQRADPWMIRHQGRYYVTASVPEYDRLVLRQASTIAGLGSAAETTIWQRPESGPLGGHIWAPELHHFDGGWHLYFAAGDSDDPFRIRMYVMSNPEPDPSAPAWSPPVRIHTHKESFSLDATTFEHGGTRFLVWAQMDPDSSLFIAPLSSPSTLAGPPVRIADPTLGWETVGHRVNEGPAVIKRNGRIFLTFSASATDANYCMGLLTADDDADLLDPSSWTKDPLPWMASSDRLGEFGPGHNSFTVDEAGNDLIVYHSRSYRDVMGDPLRDPNRHTRIRRIHWSAGGRPSVSCPGPT0019091_701DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_002601413safD_1COG1012Sulfoacetaldehyde dehydrogenaseATGCATAAGCTCGCTGATCCGTTGACCGCCGTGGCGGCTCCGGAATACGCTGAGGTTTTCAGTCCGTACGACGGCGGGTGCGTGGGCCGGGTGCCCATCACCGCTGCCGCATCCATCGACGCTGTCCTGGCCACAGCACGGGAAGGCGCCAAGCTGGCCGCTGCCCTGTCCCGCAGCGATCGCGCCGACATCCTCTCGGGCGCCGCCCGGCTCCTGGAACTGCGCAGCGACGAGTTCGCGCGGACCATCACGGCCGAAGCGGGCAAGACCATCCGCCAGGCGCGCAAGGAAGTGGTCCGCGCCATCAACACCCTCTCCCTCTCCGCAGCCGAGGCAAAGAGCAACGCCGGGGAAGTCATCCCGTTTGACGCCTACCGCGGATCGGAGAACCGGACGGGTTGGTTCAGCCGGGAACCGCTGGGCATCGTGGCGGCCATTACGCCGTTCAACGATCCACTCAACCTGGTGGCGCACAAGATCGGCCCCGCCATTGCCGGCGGAAACGCCGTCATCCTGAAGCCCTCGGCCTTGACTCCGCTGTCCGCGCAGCTGCTGGTGGACGCCCTGCGGGAATCAGGGCTGCCACCTGAGGCCATCACGGTGGTGCACGGCGGGCGCGAACTGGCTGCCGCCGTCGTCCGTTCACGGGACGTCAGGATGGTGTCCTTTACCGGCGGCTTTTCCACCGGGGAATCCATCGCGCGGGAAGCCGGCCTCAAGAAGCTGTCCATGGACCTGGGCGGCAACGCCCCCAACCTGGTACTGGCCAACGCCGATATTGCGGCAGCAGTGGAAGCCTGCGTTTCCGGGGCCTTCTGGGCCGCAGGCCAGAACTGCGTGGGCGTCCAGCGGATCCTGGTGGACGAGAGCGTCCTTCCCGAATTCAGGAGCCGTTTCCTGGCCGCCACGGCAGCCCTGGTGGCCGGTGACCCGGCGGCGGAGGGCACCGATGTGGGCCCGATGATCACCGCGGCTGCCGTTGGCGAGGCAACAGCGAAGATCAGTGAAGCGCTCGACGCCGGCGCCACCCTTTTGACGGGGGGTTCCAGTTCCGGGAACGTCCTTGAGCCCACCGTCCTGGAAAACGTTCCGCTCAACGGCAGGCTCTGGCGCGAGGAGGTCTTCGCCCCGGTGGTCATGCTCCAGCCGTTCACGGGCTTCGACGACGCCATTGAGCTGGCCAACTCCATTGAGTTCAGCCTGCACGCCGGCATCTTCACCGCATCCCTGGCCTCTGCCATGGAAGCTGCCAGGCGGCTGGAAGCGGGCGGGGTGATGATCAATGACTCGTCGGACTACCGGTTTGATGCCATGCCCTTCGGCGGATCCAAGTACGGCAGCATGGGCAGGGAGGGTGTGCGCTTCGCCTACGAGGAGATGACCCAGCCAAAAGTCGTCTGCATCAGCAACTGAMHKLADPLTAVAAPEYAEVFSPYDGGCVGRVPITAAASIDAVLATAREGAKLAAALSRSDRADILSGAARLLELRSDEFARTITAEAGKTIRQARKEVVRAINTLSLSAAEAKSNAGEVIPFDAYRGSENRTGWFSREPLGIVAAITPFNDPLNLVAHKIGPAIAGGNAVILKPSALTPLSAQLLVDALRESGLPPEAITVVHGGRELAAAVVRSRDVRMVSFTGGFSTGESIAREAGLKKLSMDLGGNAPNLVLANADIAAAVEACVSGAFWAAGQNCVGVQRILVDESVLPEFRSRFLAATAALVAGDPAAEGTDVGPMITAAAVGEATAKISEALDAGATLLTGGSSSGNVLEPTVLENVPLNGRLWREEVFAPVVMLQPFTGFDDAIELANSIEFSLHAGIFTASLASAMEAARRLEAGGVMINDSSDYRFDAMPFGGSKYGSMGREGVRFAYEEMTQPKVVCISNPGPT0018005_767DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131NANA
D1-29_002611092hypothetical proteinATGACCACCTACAACCTCGCGCTCATCGGTTTCGGCGGCGTGAACCGCACCCTGGCTGAACTGATCGAGTCCCGCGGATCACAGCTGCAGGCCGAACTGGGATTCGGCCTGCGCGTCACGGCCATCACGGATCTCCGTCTCGGCTCACTGGTGGACGCCGGCGGAATTGACCTCGCCGCCGTCCTCGCCCTCGGACCCGGGGCCACCTTTGAACAGTTCGGCGGGTCTGCCGAGACGGACAACGAGGCAGTCATCCGCAACTGCCCGGCGGACATTGTTGTGGAGGCAACCTTCACTAACCCGGACGACGGCGAACCGGCGGTTTCGCACGTCCGCTGGGCCATCGAAGCGGGCAAGAGCGTCTGCACCACCAATAAGGGGCCGGTGGCTCTGCGCGGACGGGAGCTTGCAGCCCTCGCTGCGGAGCACGGCGTCGCTTTCGAGTTCGAAGGTTCCGTTATGAGCGGCACTCCGGTCATCCGGCTGGCGAAGCAGATGTTCGGCGGCCTACGGCTGGGCGGCTTCGAGGGGATCATGAACGGCACCAGCAACTACGTCCTGGGGAGGATGGAATCCGGCCTCAGCCTCCAGGAGGCGGTGCGTGAAGCCCAGGATCTTGGCTACGCGGAGGCAAACCCCAGCGCGGACATCGACGGTTACGACGTCCAGCTCAAAGTGCTGATCCTGGCCAACGAACTGCTGGGTGCCGACCTTGAACTCGCTGATATCAGCCGCGAAGGCATCTCCTCGGTGACGGTGCAGGACGTTAGGCAGGCCTCACTCGAAGGCAAGCGCTGGAAACTGGTGGGATCAGCGCAGCGGAATCCGGACGGTTCGGTAACAGCCGGCGTCGCCCCGCAGGCCCTGCCCCTTGAGCATGGACTGGCCGGAGTTTCCGGCGCCACCAACGCCGTGGCCTTCAGTACCGACCTTCTGGGCCAGGTGACGGTGTCCGGCCCCGGGGCCGGCAGGATGGAAACTGCCTACGCGCTGCTGTCGGACATCATCGCCATCCACGCCAGGAACAGTTCGTCCGCCCAGGCAGAGGCTCCAGCTGTGGCGCCGGCACAGAGCGAGGCCGCACATGCATAAMTTYNLALIGFGGVNRTLAELIESRGSQLQAELGFGLRVTAITDLRLGSLVDAGGIDLAAVLALGPGATFEQFGGSAETDNEAVIRNCPADIVVEATFTNPDDGEPAVSHVRWAIEAGKSVCTTNKGPVALRGRELAALAAEHGVAFEFEGSVMSGTPVIRLAKQMFGGLRLGGFEGIMNGTSNYVLGRMESGLSLQEAVREAQDLGYAEANPSADIDGYDVQLKVLILANELLGADLELADISREGISSVTVQDVRQASLEGKRWKLVGSAQRNPDGSVTAGVAPQALPLEHGLAGVSGATNAVAFSTDLLGQVTVSGPGAGRMETAYALLSDIIAIHARNSSSAQAEAPAVAPAQSEAAHAPGPT0020155_3933DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003NANA
D1-29_002621428rocC_1COG0833Amino-acid permease RocCATGTCACTCTCTTCACCTACCGAACTGGGAACAACCGCCCCGGCCGCGGAACCGGCCACCGGCCTCCGCCGGTCCATGGGCTCACGCCACCTGGTCATGATCGCCATGGGGGGCGTCATTGGCTCGGGCCTGTTCCTCAGCTCCGGATACACCATCTCGCAGGCGGGCCCGCTGGGCGCCGTCCTGGCTTACCTTGTGGGCGCCTTTGTGGTCTATCTGGTGATGGCCTGCCTCGGCGAGCTTGCCATCGCCTACCCGGTATCCGGCGCCTTCCACATCTATGCTGCCCGCTCCATCGGCCCGGCCACGGGCTTTACCACCGCCTGGCTCTACTGGCTGTGCTGGGCCGTGGCCATCGGATCAGAATTCACGGCCTCGGGGCTGCTGATGCAGCGCTGGTTCCCCGGGGTGGATGTGTGGGTCTGGTGCGTCGTTTTCGCGCTGATACTCTTCTCGCTCAATGCCATCTCCTCAAGGGTCTTTGGCGAATCCGAATTCTGGTTCTCCATCATCAAGGTGGGGGCCATCGTTGTCCTGATTGTGTTGGGCGGCGCTGCCCTGTTTGGCTTCCATCCCCTCGCCGGCGGCGACCATCCAGTACTGTTCAGCAACTTCGCCACGTCCGCCGGCCTCTTCCCCAACGGCTTCACCGGCGTCCTGGTCACCGCCCTCGCCGTGTTCTACGCGTTCTCCGGGTCTGAACTCATCGGTGTAGCCGCCGGCGAGACAGCTGATCCGGAAAAGAACATCCCCAAGGCCATGCGGACCACCGTCATCCGGCTGCTGATCTTCTTTGTCGGCGCCATCGCCGTTATCGCGGCCACCATTCCCTACGACGAGGTAGGCCTGGACGAAAGCCCGTTCGTCACGGTCTTTTCCGCCATTGGCATCCCCTTCGCCGCGGACATCATGAACTTTGTGATCATCACGGCGCTGCTGTCCGCGGGCAACAGCGGACTCTTCTCCTGCGCCAGGATGCTCTTCTCCCTCGCCGAAGAGGGACATGCGCCCAAGGCGTTCCGGAAGCTGACCAAGCGGGGCATCCCTCTGCTGGCACTCAGCGTCAGCATGGTGGGTGGGCTTGCCTCGCTGATCTGCAGCGTAGTGGCACCCGAAACCGTCTACCTGGCGCTGGTGTCAGTGGCAGGGTTTGCCGTGGTGGGAGTCTGGATGTCAATTACTGCATCCCACTTCTTCCACCGGCGTGCATTCGTCAAGGCCGGCGGCGATGTGGCCGCCCTGGCCTACAAGGCGCCGTTTTTTCCGCTGGTGCCCGTTCTTGCCTTTACCCTGTGCCTCGTCTCGCTGGTGGGCATCGCGTTTGATCCAAACCAGGTGGCTGCGCTGTACTTCGGGGTTCCCTTTGTGGCCGGATGCTACCTGTTCTTCCACTTCAAGTACGGGCGTTCACGGACGGCCCGGCGCTAAMSLSSPTELGTTAPAAEPATGLRRSMGSRHLVMIAMGGVIGSGLFLSSGYTISQAGPLGAVLAYLVGAFVVYLVMACLGELAIAYPVSGAFHIYAARSIGPATGFTTAWLYWLCWAVAIGSEFTASGLLMQRWFPGVDVWVWCVVFALILFSLNAISSRVFGESEFWFSIIKVGAIVVLIVLGGAALFGFHPLAGGDHPVLFSNFATSAGLFPNGFTGVLVTALAVFYAFSGSELIGVAAGETADPEKNIPKAMRTTVIRLLIFFVGAIAVIAATIPYDEVGLDESPFVTVFSAIGIPFAADIMNFVIITALLSAGNSGLFSCARMLFSLAEEGHAPKAFRKLTKRGIPLLALSVSMVGGLASLICSVVAPETVYLALVSVAGFAVVGVWMSITASHFFHRRAFVKAGGDVAALAYKAPFFPLVPVLAFTLCLVSLVGIAFDPNQVAALYFGVPFVAGCYLFFHFKYGRSRTARRPGPT0020525_53DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020525-mmuP-K16235NANA
D1-29_00263591hypothetical proteinATGCTACCTGTTCTTCCACTTCAAGTACGGGCGTTCACGGACGGCCCGGCGCTAAGCCGCCTCCGTGCCTCTACTGCCGGGCGATGTCATCCGCTTCCTGCGGCCCGTGGAACTCACAAGGACCATGGTGCCGCAGGGGGAGGAGGCATGTCCGCCCGGTGGCCAGGTGGACGTTGGCGCACCGCCCTGCCCGTGCCACATCTTCACGGACATTCGTATTGCTCAGATCTGTCCGAAACACCCCTGGGCCTGTATTTGCCCTGCGCGAGGGTTCGCCCTGTGAAGACCAGGGGGATGCGGCGGATGGATGCTCAGCTGTCACTGGGGCTCCTCTTTGAGCGTTTGCTTTCGATGGATGCTTTTCTCATGGCATACAGCTCTTTAATTCTGCTCCCCGCACGTTACGAATGGGTTAAAAACCTTGATCCATTTGCTGGCCGCCGCCGGCCTTTCCGCTGGAACCCTTGTGCAAGAATTGGTGGCGCCGCAAGAATTGGGGCCAAGAAGAATTGGGCCTCGTCCGGCCGTCAGGAGCAGCACCCATGGAATCCTCCGAAGCCTCATCCCTGGCCCAGGGCCTTCGGATCGTGAMLPVLPLQVRAFTDGPALSRLRASTAGRCHPLPAARGTHKDHGAAGGGGMSARWPGGRWRTALPVPHLHGHSYCSDLSETPLGLYLPCARVRPVKTRGMRRMDAQLSLGLLFERLLSMDAFLMAYSSLILLPARYEWVKNLDPFAGRRRPFRWNPCARIGGAARIGAKKNWASSGRQEQHPWNPPKPHPWPRAFGSNANANANANA
D1-29_00264789hypothetical proteinATGGAATCCTCCGAAGCCTCATCCCTGGCCCAGGGCCTTCGGATCGTGAGGGTGGTGGCGGACAGGGAAAAGTGGGGCCGGCCGCTGTACGGCGTGACCCAGATAGCTGCCGATCTCGGCCTGGACCGGAGCCGCGTTTCCCGGCTCACCCAAGAGCTGTGTGATCTCCGCCTGCTGGAAAGGGTGGAACGCGGGCCCTTCCGGCCAGGGTCCGCCTTTTTCGCGTTGGCGGCTTCCCTCAACACTGGATGGGCCCACGATTCCAGGGCGGAGCTCCAGCGGATCGAGGCATCGTTGGGGCTGCCGGGGAAGCTCTCCGTGCTGGACGGCGCCCGGGTCATCCTGGTCCGTTCCTCCGCCGGGCACGGGGCCCTGGCAGGGTCCATCCACCCGGGCATGGTGACCCCCGTCTGGTGTACCGGTTCCGGCCGGGCGCTGCTGTGGGACCACACTGCCCAGGGCATCGCCGAGGTACTGGATGACGTCGAGTTCATCGGCGTGGGAGGACCCCAGGCGGCGCATTCAGCAGCCGAAGTAGCAGCCCTGATGGAACGCGACCATCCACGCGGTTGCGTCTACGCCGTGGAGGAGTTCGAACACGGTGTCCACGAAATTGCCGTCCCCATCAGGAGCCCGGAAGGGCGGATCGTTGCGTCACTGTGCGTCTACGGCGGCCGCGACGAGTTCGACGGGCGGCTTGAGGAGATCCGGACCGGGCTGGAAGAGTCTGCCCGGACGTTGTCTGCCGCCTCATCTGCCCAAGGGCCGCCGTCGTCCTCTGAGGCCTAGMESSEASSLAQGLRIVRVVADREKWGRPLYGVTQIAADLGLDRSRVSRLTQELCDLRLLERVERGPFRPGSAFFALAASLNTGWAHDSRAELQRIEASLGLPGKLSVLDGARVILVRSSAGHGALAGSIHPGMVTPVWCTGSGRALLWDHTAQGIAEVLDDVEFIGVGGPQAAHSAAEVAALMERDHPRGCVYAVEEFEHGVHEIAVPIRSPEGRIVASLCVYGGRDEFDGRLEEIRTGLEESARTLSAASSAQGPPSSSEANANANANANA
D1-29_00265780hypothetical proteinATGAAGGTTGTGTTCGCTGTGGCTGCACGGCAGGAGGCCGGGGAACCCGGCGCAACCGTTGCCGACGTCGCCGCGGACCTCGGCCGGGACCGCAGCCAGGTTTCCCGTGGGCTCAAGGTGGCCCAACAGGAGGACTTCCTCATCCGCGGCGAGCGCCGGGCCTACGCACTGCATTGGGGACTCTACGCGGACGCGCAAGCCATCACCGAGCAGCGGCTGCGGACCGACGGGCTGACGGCCCTGGAAGGCCTTGTTGCGGCGACCAACGAGGGGTGCTTCCTGGGCGTCCTGCAGGGCGATTCCACTGTCACCATCGGCGAGCGCGTCCCGGCGGCCAGCAGGATGATCGGCTCCTGGATCGGCCGGCCATACCCGGCGTACTGCAGTGACGCCGGCCAGGCCCTGCTGTGGGACGCCTCAGAGCAGGAGGTCCGCACGGTCTTCGCCAACACTGAGTTTGTCAGGCATGGGCCCAACACCCCCGCCAGTGTCGACGACTTTATGGGGCGGCTGGAGCAGGCGCGGTCCCGCGGGTATTCCGTGGTTGACGAGGAAGCCGAGCCGGGCCTGTTTTCCATCGCCGTTCCGGTGCGTGACTTCCGTGGCGAAGTGGTGGCCGCGCTGCAGGTGGTGGGGCCGAAAACGCGATTGGAGGGCCGGCGCACCGAGTGCGCGGCAGCCGCCGTGGAGTGGGGGCATTGGCTGGAGGCTGCCCTGCGCGGCGAATCGGACAGCGGCAATTTGGATCAGCCCGTCACGGAAAGCAGGACAGGCAGCTAGMKVVFAVAARQEAGEPGATVADVAADLGRDRSQVSRGLKVAQQEDFLIRGERRAYALHWGLYADAQAITEQRLRTDGLTALEGLVAATNEGCFLGVLQGDSTVTIGERVPAASRMIGSWIGRPYPAYCSDAGQALLWDASEQEVRTVFANTEFVRHGPNTPASVDDFMGRLEQARSRGYSVVDEEAEPGLFSIAVPVRDFRGEVVAALQVVGPKTRLEGRRTECAAAAVEWGHWLEAALRGESDSGNLDQPVTESRTGSNANANANANA
D1-29_00266753COG1878Isatin hydrolaseATGAGCCAGCAGCTCGAACTCAGTCTCTGGAGCGGGCTCAGCGGGCTTTTGGCTGACCGCACTTTTGTGGACCTTACGCACGCATTCCATCCCGGCCAGCCGCACTTTCCCGCATTCCCGGACGAGGTCCGGGAACCGCTGTTCGACATGGGACGCGGTGACGGCTTTACGGTCCACCGGTACTCCATAGTGGGCCAGTGGGGCACCCATGTGGACCCGCCGTCGCACTTCGTTGCCGATGGCACCACGCTGGACAACATTCCTGTCGAGGAGATGCTGCTCCCCCTCGTCGTGCTGGATATCAGCGCACGGGTCCGTGAGAACCCGGACGCCACCCCCTCTTTGGACGATGTTGCCGCCTGGGAAAGCAGGAACGGCCGGATCCCCGCCAATGCTTTTGTGGCTCTGCGCACCGGGTGGTCGGACCGGTGGCCCGATGTGGATGCCATGGCCAACCGGGACGCCGACGGCGTGAGCCACGCGCCAGGGTGGTCCAGGGAGGTTCTGGAATTTCTGGTGGAGGACCGGGCAGTCCGAGCCATCGGCCATGAGCAGACGGACACCGATCCCGGCCAGTCCACGTCCCGGCAGGATTTCAGCCTGGAGACCTACATCCTGGCGCAGGGCCGGTGGCAGATCGAATTGATGGCCAGCCTGGCGGGGCTGCCTGAGGCTGGCGCCGTAGTGGTGGCCACCTGGCCCAAGCCCCAGGGCGGCAGCGGCTTTCCTGCCCGGGTCTTCGCCATCTTCTAGMSQQLELSLWSGLSGLLADRTFVDLTHAFHPGQPHFPAFPDEVREPLFDMGRGDGFTVHRYSIVGQWGTHVDPPSHFVADGTTLDNIPVEEMLLPLVVLDISARVRENPDATPSLDDVAAWESRNGRIPANAFVALRTGWSDRWPDVDAMANRDADGVSHAPGWSREVLEFLVEDRAVRAIGHEQTDTDPGQSTSRQDFSLETYILAQGRWQIELMASLAGLPEAGAVVVATWPKPQGGSGFPARVFAIFNANANANANA
D1-29_00267450hypothetical proteinATGGATATTTTTGGCATGAAGCGCGTGCGGAAGTTGCGGGTGCACTGGCCAGTGAACGGGGCAACCCTCGCCCGCCTCACCGCGGGTGACGTCCGCGTCTTTGAAGAGGATCCCAGCCTGGCCCTGCTGCTGGCCGCACTGGCGGAAAAGCCCGAGCTTGGTGACTTTGGCATCTACCGCCACGTCTTCGAATCGAGCTTCGGCTTCGAGGGCTTCACTGTTGCTCCCGGCGCGAACCCCACGCTGGGTTCCGTCGGCGGCAGCTCCGTATCCCCCACCTTTGTGCTCACGAGCTACTTTGATGCCGGGATGCCGGCGGCCGCCGTGGAAAACCTGATTCAGACCATCATGGACATCCACCCCTGGGAGGTCCCTGTGCTGGAGATTTCCGACCCGGTAAGCATCTCCACCGGGCGCACCGCTGACCGCCAGGAAAAGGTGATGGCATGAMDIFGMKRVRKLRVHWPVNGATLARLTAGDVRVFEEDPSLALLLAALAEKPELGDFGIYRHVFESSFGFEGFTVAPGANPTLGSVGGSSVSPTFVLTSYFDAGMPAAAVENLIQTIMDIHPWEVPVLEISDPVSISTGRTADRQEKVMANANANANANA
D1-29_002681455amiB2COG0154Putative amidase AmiB2TTGGCTGAGATCCATGAACTGTCCGCGGTCCGGCTGAGCGCCGCGCTGCGTGGCGGAGACCTTTCCGCCAGGGACGCCGCCGCCCACTACCTGGCACGGATTGAGTCCCAAAACAGGCTGCTGGGCGCCTTTGTCACAGTCACGGCCGACCAGGCCATGGCCGAGGCCGCCGCTGCCGACGCCCGTTTCACCCGGTTCCGAGGCGGGACCGGGAGAGGGACGCAGCCGCTCAGCAGCCGGGACGGTGAAGGCCTTCCACTGCTCCACGGAATGCCCCTGGCCTTCAAGGACCTGACGGATGTGGCGGGTGTGGTGACTACGCACGGCAGTGCCGCCCTGGACCACAAACCCGCCCTCACCGATGGCGCCCTGGTGAGCGTCCTGAGGTCCGCGGGAGTCATCTCGCTCGGTAAGACCCAGGTTCCCGAGTTCGGACTCACTGCCTACAGCGAAAACCGGATCGCGCCGCCGTCGCGCAATCCCCACGCCCCCAGCCGGAGTTCCGGCGGTTCTTCAGGCGGAAGCGCTGCAGCGGTTGCCGCCGGCCTCCTCCCCTTTGCGCCCGGGACCGACGGTGGAGGTTCCGTCCGCATCCCGGCGGCTGCCTGCGGGCTGGTGGGGCTAAAGCCGGGCCGCGGGCTGGTGGGGTCCGGCGAGAGTTCGGGCGATCCGGCGCGGCTGGTGGTGGCGGGTCCCCTGGCCACGAGCGCGGAGGATGCCGCGCTCCTGCTGGACGCGCTGGCACCCCAACAGCACACCAGTTACCTGGACCAGGTAAGCCAGGAACCCGCCCGGCTGCGGATCGGCGTGACCCTGGACAGCCCGTGGTCCACCACCTTTCCGTTCACGGTGGAGGAGGAAGCACTCGATGCACTGCAGGCCGGCACAAAGCTGCTGGAAAAGGCCGGGCACAGCGTTATGGAGGCTTCCGTCCGGTACGACAACCGGTATCCGGACGCCTTCACCACGGCCTGGACGGCCGCCGTCGGGACTGCGAGGATCAGCCCGCACCGGGAGGCGCTGCTGGCGCCCCTCACCAGGGCCTTCAGGCGGCGGGCGCAGCAGCGCAGCGCCGCAAAGCTCAACGAATCACTGGCATTCCTGCGCCAGTTCCAGCGGGACACCGTCGTACAGTACGCGCAATGGGACCTGATGCTGATGCCGGCGCTGGCGCAGACGCCGCGTCCGGTGGGCTGGTTTACGGGTGCGGCCCACGGCGACGAGCGGTGGCCCGCAGCGGAGTGGGCAGGCGACGCCGACGGCGACTACAGGAAGCAGTGCGAATTCGCGCCCTGGTCTTCCATGGTGAACGTGTGCGGGCTGCCCGCGATCACCATCCCGGTGCACTGGACCGACGGCCGCCCCGGGCAGGGCCTGCCGATGGGCATCCAACTGGTGGGGCCCATGGGATCCGAAGGTCTCCTGCTTCAGGTGGCTGCGCAGCTGGGATTCTAAMAEIHELSAVRLSAALRGGDLSARDAAAHYLARIESQNRLLGAFVTVTADQAMAEAAAADARFTRFRGGTGRGTQPLSSRDGEGLPLLHGMPLAFKDLTDVAGVVTTHGSAALDHKPALTDGALVSVLRSAGVISLGKTQVPEFGLTAYSENRIAPPSRNPHAPSRSSGGSSGGSAAAVAAGLLPFAPGTDGGGSVRIPAAACGLVGLKPGRGLVGSGESSGDPARLVVAGPLATSAEDAALLLDALAPQQHTSYLDQVSQEPARLRIGVTLDSPWSTTFPFTVEEEALDALQAGTKLLEKAGHSVMEASVRYDNRYPDAFTTAWTAAVGTARISPHREALLAPLTRAFRRRAQQRSAAKLNESLAFLRQFQRDTVVQYAQWDLMLMPALAQTPRPVGWFTGAAHGDERWPAAEWAGDADGDYRKQCEFAPWSSMVNVCGLPAITIPVHWTDGRPGQGLPMGIQLVGPMGSEGLLLQVAAQLGFPGPT0006115_3958DIRECT 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
D1-29_00269744hypothetical proteinATGACCGCCGATCAACCCACCATTCTGGCCACGTCCGGGGGCTACCAGCCCGGATCCCGCACGCGGCTGGAGTTCAACGCCCTGGTGCATCACGCCGTCGAGCTTTCCGGTGTCAGTGGACGGGCGCCGCGGGTGACCCACCTCGGCACAGCATCAGGGGACCAGCGCTGGCTGAGTGCGGAGCTTGATGAGGCAGCCCGGCTGGCCGGCTTCGATTTCAGCCACCTGAACCTTTTTTCAATGCCGAATCAGGCGGAACCCGAGGCCCATCTCCTCGAGCAGGACGTGGTGTGGGTGAACGGCGGATCGGTAGTGAACCTGCTGGCTGTGTGGCGTGCCCATGAACTGGACCGGATCCTGCACCGGGCGTGGCAGCAGGGAGTGGTGCTGGCAGGAGTCTCTGCCGGATCCATCTGCTGGTTCCAGGGCGGCACCACGGACTCGTTTGGGCCTGAGCTTCGCGCAGTGAACAACGGCCTGGCGTTCCTCCCCTATGCCAACGGCGTCCACTACGATTCCGAGGAACGCCGCCGCCCCTTGGTGCACCAGCTTGTGGCGGACGGCACACTGGGCGAAACCCACTGCACGGACGACGGCGTGGGCTTGGTTTACCACGGCACTGAACTGGTGGAGGCGGTAACGGAAGTCCGGGGCAAGGGTGCCTACATCGTCACGGCACAGGACACAGACGGCCGCGGGCCTGCCGCCTCGGAGCTGCGACTGGAACCGCGCTTCCTTGGCTGAMTADQPTILATSGGYQPGSRTRLEFNALVHHAVELSGVSGRAPRVTHLGTASGDQRWLSAELDEAARLAGFDFSHLNLFSMPNQAEPEAHLLEQDVVWVNGGSVVNLLAVWRAHELDRILHRAWQQGVVLAGVSAGSICWFQGGTTDSFGPELRAVNNGLAFLPYANGVHYDSEERRRPLVHQLVADGTLGETHCTDDGVGLVYHGTELVEAVTEVRGKGAYIVTAQDTDGRGPAASELRLEPRFLGNANANANANA
D1-29_00270327COG0607SulfurtransferaseGTGAGCGATTTCGATACTGTGCCAGTCAACGACGTGCCCGCCGACGCCGTGATCCTGGATGTCCGCGAAGACTATGAATGGGTGGCCGGACATGCCGACGGCGCCGTCCACATCCCACTGGAGCAGCTTCCGGTCCGGCTGGAGGAACTGGATCCCGACCAGGACCTGTACGTCATCTGCCGTACGGGCGGGCGCTCCTTCCGGGCCGCGCAATGGCTGACCGGCCAGGGCTACACGGCCATCAACGTGTCCGGCGGGATGGACCAGTGGCTCGAATCGGGGAAACCGCTCGTGTCCGACAACGGCCTGAAGCCCCTGGTCCTCTAAMSDFDTVPVNDVPADAVILDVREDYEWVAGHADGAVHIPLEQLPVRLEELDPDQDLYVICRTGGRSFRAAQWLTGQGYTAINVSGGMDQWLESGKPLVSDNGLKPLVLPGPT0001770_1256DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
D1-29_00271984pheA_1COG0077Prephenate dehydrataseATGCCGGCCTCCCCTGTGACCTATACCTTCCTTGGGCCGGAAGGCACGTTCACCGAGGCAGCACTCATGCAGGTGCCGGGCGCAGCAGAGGCAACCCGCATTCCTGCATCGAACGTTAATGCAGCTTTGGACAAGGTCCGTGACGGATCTGCGGACGCCGCCATGGTCCCTATCGAGAATTCGGTAGAGGGCGGGGTAACAGCCACCCTTGACGCCATCGCCAGCGGGCAGGAACTCCGCATCATCCGGGAAGTGCTGGTGCCCATCAGCTTTGTGCTGGTTGCCAGGCCCGGCCTTGCCATCTCCGAGCTCCGGCGGATTTCCACCCATGGGCATGCCTGGGCACAGTGCCGGTTATGGGTGGACCAGAACATCCCCGGTGCAGAATACGTTCCCGGCTCGTCCACCGCGGCGTCTGCGATGGGCCTGCTTGAGGACCACCCGCACTACGAGGCCGCGATCTGCGCACCTATCGTGGCCCAGGAACAACCCGGCCTGAACGTCCTGGCCGAGAACATCGGCGACAACCCCGGCGCCGTCACCCGCTTCGTCCTGGTCAGCCGGCCAGGTGTCCTTCCGGAACGCACCGGGGCGGACAAAACAACGGTGGTGGTCCCGCTGCCGGAGGACCGCCCCGGTGCCCTGATGGAAATCCTGGACCAGTTCGCCACCCGCGGCGTAAACCTCAGCCGGATTGAATCCCGTCCCACCGGACAGTACCTTGGCCACTATTTCTTCAGCATCGATGCCGACGGCCACATTGGCGACGCACGCGTGGCTGACGCCCTGGCTGGCCTCCACCGCATCAGTCCGGCTACCCGCTTTCTGGGCTCCTACGGGCGTGCTGATGCCCAGAGCGCCTACGTGGCCCCCCACACCTCCGACGATGCATTCCGGGCAGCACATGAATGGGTGGAAGCAATTCTCCAAGGGGAATCGGTCGCCCCGAAAGCGTTTCCGGAGCTTCGCCCAGAGCGTAGATAAMPASPVTYTFLGPEGTFTEAALMQVPGAAEATRIPASNVNAALDKVRDGSADAAMVPIENSVEGGVTATLDAIASGQELRIIREVLVPISFVLVARPGLAISELRRISTHGHAWAQCRLWVDQNIPGAEYVPGSSTAASAMGLLEDHPHYEAAICAPIVAQEQPGLNVLAENIGDNPGAVTRFVLVSRPGVLPERTGADKTTVVVPLPEDRPGALMEILDQFATRGVNLSRIESRPTGQYLGHYFFSIDADGHIGDARVADALAGLHRISPATRFLGSYGRADAQSAYVAPHTSDDAFRAAHEWVEAILQGESVAPKAFPELRPERRNANANANANA
D1-29_00272210hypothetical proteinATGACTACCGGCAGCACTGACAACGACGGCCAGGGAATGATTGTTAATCCCAAGCCCACCGCCGACAACCAGGACTGGGACGGCGACGAAGCAGACCGCGCTGACCGCCTGCGCTTCGAAGAGGAGCAGGCTATGATCCGTGAGCAGTCCGAAGCACGGGCCGCCGCCAAAGCCGCGGCTGAAGCCGCCGCGAAGAAGGCCAGCGCCTAAMTTGSTDNDGQGMIVNPKPTADNQDWDGDEADRADRLRFEEEQAMIREQSEARAAAKAAAEAAAKKASANANANANANA
D1-29_002731062dagK_1COG1597Diacylglycerol kinaseATGAGCGACCTGCTGCTTTACCTCCTCAGTGCGGTGGCACTGGCGTTCGCCGTGTCCAGCTGGTGGGGCGTGCGCAAGCTCAAGGCCCTGCATGTCAGGAGCGCCGTGGGCGAGGACGCCCACGAATCGGGCCTGGCCCAACAGCGCGTGGCAGTGGTCCTGAATCCCATCAAGGCCCGGTCCTCCGAGGCCAAAGCCGCGATCGAGCGTGCCTGCTTCGCGGCAGGCTGGGAGCCGCCGCTGTTTTTCGAGACCACCATCCAGGATCCCGGATTCTCGCAAGTCCAGTCAGCGCTGGACTGCAAGCCCGACGTCGTCCTGGTGGGCGGCGGGGACGGCACTGTGCGGGTGGTGGCTGAATCCCTCGCGCATACGGATGTGGCCATGGGCCTCATCCCGCTGGGAACGGGAAACCTCCTGGCCAGGAACGTGGACCTGGACGTCAACGACCTCCATGCGAACGTGCAGACGGCCCTGTTCGGCCGGCAGCGCTACATCGATACCGCCAGGATGGGGATCGAGAACTCGCGGACCGGCCACTCGTCCGAGCACGCCTTTCTGGTGATTGCAGGCATCGGGATGGATGCGGAGGTGCTAGCCGACACGAACGACGGCCTTAAGAAGGCGGTGGGCTGGCTCGCCTACACCGAGGCCGGGATGCGGCATTTGCCGGGCCGGCGCAAGAAAGTCTCCATTTCCCTGGATGACAGCGCCGAGCAAGTCAGGAATATCCGCAGTGTCCTGTTTGCCAACTGCGGGCTGGTTCCCGGCGGCATCGATTTCATTCCCCAGGCCATGATCGACGACGGGATGCTGGACGTGGTGGTCATGAGCCCGCGCAGCGCCATTGGCTGGTTGGCCATGTACGGCAAGATCATTTTCAAGCACAAGGGGAACCTGCCGATCATGACCATGTACCGCTCCGGGAAAGTTGTGATCAAATGCCCAGAGCCAATGCCCACCCAGCTCGACGGCGATACTTCCGGGGAAGCCACAAAGCTCACCGTTCGGGTGGAACCCAGATCGCTCCTGGTCCGGGTCAAGGGTCACCAGCTGCCATAGMSDLLLYLLSAVALAFAVSSWWGVRKLKALHVRSAVGEDAHESGLAQQRVAVVLNPIKARSSEAKAAIERACFAAGWEPPLFFETTIQDPGFSQVQSALDCKPDVVLVGGGDGTVRVVAESLAHTDVAMGLIPLGTGNLLARNVDLDVNDLHANVQTALFGRQRYIDTARMGIENSRTGHSSEHAFLVIAGIGMDAEVLADTNDGLKKAVGWLAYTEAGMRHLPGRRKKVSISLDDSAEQVRNIRSVLFANCGLVPGGIDFIPQAMIDDGMLDVVVMSPRSAIGWLAMYGKIIFKHKGNLPIMTMYRSGKVVIKCPEPMPTQLDGDTSGEATKLTVRVEPRSLLVRVKGHQLPPGPT0024345_238DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
D1-29_002741281serSCOG0172Serine--tRNA ligaseGTGATCGACGTAAAAGACCTCAGTGAAAACCCGGACAAGTTCCGTGCCAGCCAGCGCGCCCGCGGTGCGGACGAATCAGTGGTGGACGCGATCATCTCCGCAGACTCAGCGCGGCGTGCAGCCCTCATCCGCTTTGAGAACCTCCGGGCCGAGCAGAACGCCTTTGGCAAGAAAGTGGCCCAGGCCAAGGGAGACGAGAAGAAGGCCCTCCTGGCCGAGGTCAAGGAACTGGCCAACACTGTCAAAGCTGCGTCGGCGGAGGCTGACGCTGCGCAGGTTAAGCAGGACGAACTGTTGCGTGCCATCCCCAACGTCATCGAGGACGGCGTTCCGGAAGGCGGCGAGGATGACTACGTTGTGCTCAAGACCGTCGGAACGCCCCGCGAATTCCCCGACTTCGAACCGAAGGACCACCTACAGATCGGTGAGCTGATCGGCGCCATCGATATGGAGCGCGGTGCCAAGGTCTCGGGCTCACGCTTTTATTTCCTCCGCGGTGTGGGGGCCCGGCTGGAGATGGCACTGCTGCAGATGGCCATGGACCAGGCCATCGAGGCAGGCTTTATCCCGATGATCACGCCCACGCTGGTGCGCCCGGAAACCATGCAGGGCACGGGCTTTGACGTCAAGCACGACGCCGAGATCTACCGGCTCGCCGAGGACGACCTTTACCTCGTGGGAACCTCCGAGGTGGCCCTGGCTGGCTACCACGCAGATGAGATCCTGGACCTGTCGGCCGGCCCCATCCGGTTCGCAGGGCAGAGCTCCTGCTACCGCCGCGAAGCCGGATCCCACGGGAAGGACACCCGCGGCATCATCCGGGTCCACCAGTTCAACAAGGTGGAAATGTTCATCTACACCACCGTTGAAGAAGCCGCTGCGGAGCACCAGCGCCTCCTGGCCTGGGAGGAAGAGATGCTTGCCAAGTGCGAGATTCCCTACCGCGTGATCGACACCGCTGCCGGTGACCTGGGCATGTCCGCAGCCCGTAAATTCGACTGCGAAGCCTGGGTCCCCACACAAGGCGCCTACCGCGAGCTGACCTCCACCTCCAACTGCACCACGTTCCAGGCGCGCCGCCTGAACATCCGGGAGCGTGTGGTGAACGACGAAGGCGTAGCCAAGGGCACCCGGGCCGTCGCCACCCTGAACGGCACCCTGGCCACAACCCGGTGGATCGTTGCCATCCTGGAGCACCACCAGAACGCCGACGGCTCCGTCAACGTCCCCGCAGCCCTGCAGAAGTACCTGGGCGGCCTGGAAGTCCTCCCGGTCCTGTAGMIDVKDLSENPDKFRASQRARGADESVVDAIISADSARRAALIRFENLRAEQNAFGKKVAQAKGDEKKALLAEVKELANTVKAASAEADAAQVKQDELLRAIPNVIEDGVPEGGEDDYVVLKTVGTPREFPDFEPKDHLQIGELIGAIDMERGAKVSGSRFYFLRGVGARLEMALLQMAMDQAIEAGFIPMITPTLVRPETMQGTGFDVKHDAEIYRLAEDDLYLVGTSEVALAGYHADEILDLSAGPIRFAGQSSCYRREAGSHGKDTRGIIRVHQFNKVEMFIYTTVEEAAAEHQRLLAWEEEMLAKCEIPYRVIDTAAGDLGMSAARKFDCEAWVPTQGAYRELTSTSNCTTFQARRLNIRERVVNDEGVAKGTRAVATLNGTLATTRWIVAILEHHQNADGSVNVPAALQKYLGGLEVLPVLNANANANANA
D1-29_00275861ywpJCOG0561Phosphatase YwpJATGACGACACTGACTGAAACCTCAGTCGCCGGCAACGATGACCGGCGAGAGAACAAAAACACAAAAACATCCAACGCGCTCATGATCGCCCTGGACGTTGACGGGACACTCGTAGACCACGACGGCCACATGTCCGCAGGCGTCCGTGAGGCCGCACAGGCTGTGGTGGGCGCAGGGCACGAGGTCATGATTGCCACGGGCCGTTCACTGAATGCGGCCCTGCCCATCATTGAGCAGATCGGCATCGACCGCGGCTACGCAGTTTGCTGCAACGGCGGCGTGACTCTCCGCCTCGATCCGGCGCTGCCAGATGGCTACAAGGTCATTCACAAGGCAACCTTCGATCCCGCCCCGGCCCTGCGTGCGCTGCGCGAACAGCTGCCATCCGCCAAGTACGCCCTGGAGGACGAGGACGGCAACTTCCTCTCCACCGAGCGGTTCCAGGACCCAAGTTTCGGCGTAGAGGCCGTCGGCGTGGACTTCCACACGATGCTGGAATCCACGGCCGTCCGCGTGGTGGTGTTCAGCACGGAGAACACGCCCGAAGAATTCAACCAGGCCATCAAGCACGTCGGGCTGGCGGGAGTCACCTACTCGGTGGGATGGACCGCCTGGCTTGATATCGCTGCCGCCGGCGTGACAAAAGCCAGCGCCCTGGAGCGACTTCGAAGCCGCCTGAACATTGAATCCCACCGGACCGTAGCCATCGGCGACGGCCGGAACGATATCGAGATGCTTGCCTGGGCCGGCCGAGGCGTGGCCATGGGCCAGGCGCCCGAGGAAGTCATCGCCGCAGCGGACGAAGTCACGCACTCGGTGTTCGACGACGGCGCCGCCCACGTCCTCCGCAGCCTGATCTAGMTTLTETSVAGNDDRRENKNTKTSNALMIALDVDGTLVDHDGHMSAGVREAAQAVVGAGHEVMIATGRSLNAALPIIEQIGIDRGYAVCCNGGVTLRLDPALPDGYKVIHKATFDPAPALRALREQLPSAKYALEDEDGNFLSTERFQDPSFGVEAVGVDFHTMLESTAVRVVVFSTENTPEEFNQAIKHVGLAGVTYSVGWTAWLDIAAAGVTKASALERLRSRLNIESHRTVAIGDGRNDIEMLAWAGRGVAMGQAPEEVIAAADEVTHSVFDDGAAHVLRSLIPGPT0008595_684DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008595-ycsE|yitU|ywtE-K21064NANA
D1-29_00276873hypothetical proteinGTGCTCTACGAGGAGTCCCCGGCGCCGGCCGCGCTTCGGCCCTTCGTCACCGGCTTCTGGCTGATCCGTGCCCGGCCGGTGGCGCGTTACGAGAAAATCCTCCCGGGCCCGTCGGCACACCTGGTCCTGAACCTTTCGGACCCTTACCGGCTGATCGATCCCGACCGGCCGGCAGGCGAGGCAGCCGGAGCCGAAGTCTCCACCGGCTTCTACTCGGGACTGCAGCGCGGATTCCTCATCAGCGAGAATCCACCGCAGCTGTTCAACGTCGGGGCCGTCCTTTCGCCTTTCGGCGTGGCCGCGTTCACGGAGCAGCCACCAGCCACCCTCAACAGCCGGGTGACAGATGCAGACACGATCTTTCCTGGGTTCAGTGCACTGCGCAGCCGGCTCCTCAGCACGGAAGGCCCGACGCCGGACCGCGCCTTCGCGGCGCTCGAATCCTTTCTCACGGCCAGGCTCCGCCCTGGTTACCGGCAGGACCAAAGGTCCGCAGCCGCCGTCGGGCTTCTTGCCGAAGAGGATATTCCGGTGGCGGAACTCTCCAAGCGGCTTGGGATGAGCGACTCCACCCTGGAGCGCATCATCATGCGTGACTGCGGCATCACAGCGAAGGGGTTCTCAGACGTCTGCCGCTTCCACCGCTTTGTCACCGCGGCAGCGGGGTTGCCGCCGGGGGCTGCGGCCGGGAAGGATCTCCTGGCACTCGCCGATTACTACGACCAGCCGCACCTGGTCCGGGCCTTCCGGCGGTTTGCCGGCTTCACGCCGTCGGAATACCTGGCGATTGTCCGGCAGCACGGCGCCGAGTATGCCACCTTCGTGCCGGTGGAGGACGTCCCGGCCGTTCGTTCCGGGACCGTACGCAGCTAAMLYEESPAPAALRPFVTGFWLIRARPVARYEKILPGPSAHLVLNLSDPYRLIDPDRPAGEAAGAEVSTGFYSGLQRGFLISENPPQLFNVGAVLSPFGVAAFTEQPPATLNSRVTDADTIFPGFSALRSRLLSTEGPTPDRAFAALESFLTARLRPGYRQDQRSAAAVGLLAEEDIPVAELSKRLGMSDSTLERIIMRDCGITAKGFSDVCRFHRFVTAAAGLPPGAAAGKDLLALADYYDQPHLVRAFRRFAGFTPSEYLAIVRQHGAEYATFVPVEDVPAVRSGTVRSNANANANANA
D1-29_00277393hypothetical proteinATGGATCTGGAGATCAACTGGCTGGCGGTGCTGCTCGCTGCTCTGGCCAGTTTTGTGGTGGGCGGGCTGTGGTACTCGCTCTTGTTTGCCAAGCCGTGGCAGCGGGAGGCAGGCGTCACCGATGAGCAGCTAAGGCATGGAACAGCCAGGGTTTTCGCCGGTTCCTTCCTGCTCGCCCTGGTCATGGCCGTTGCGCTCGCAGCGTTCATCGGCAACGGCGGGGCAGGTTTTGGAACCCTGGCGGGACTGGCTGCGGGCGTCGCCTGGGTGGCTGCAGCGCTTGGCGTGAACTACCTGTTCGAGCGGCGCAGCCTTGTCCTCTTTGCGATTAATGCCAGCTACAACGTGGTGGCGTTTACGGCCATGGGAGCCATCATCGGCGCCTTGCAATAGMDLEINWLAVLLAALASFVVGGLWYSLLFAKPWQREAGVTDEQLRHGTARVFAGSFLLALVMAVALAAFIGNGGAGFGTLAGLAAGVAWVAAALGVNYLFERRSLVLFAINASYNVVAFTAMGAIIGALQNANANANANA
D1-29_00278600hypothetical proteinATGTTCACGCTGACCATCAATCAAACGGACAGCCGGCGCGATGGTGACCGGGTGCCGCAGTTACTCAGGGAACTGCGGCACATTCCGGCGCGCCTCGACTTTGACCGGTCCGTGGAGGACGAGGTGCAGGGCATCGTGGACTGCCCGCACCAGGCGGTGGAGGCTGCACTGATCGCCCTGCGCTGCGGCACCTGGTACGTGGGAATTGGTGCAGGGCCTGTCAATGAACCGCTGCCCAACCTGATCAGGGACGCCTCGGGGCACAGCCTGATCTACGCGCGCCGTGCCGTGGACCGCCTCCGAAACGGCAAGGACCGTATCCCGGTGGCTGTGGAAGGCCCGCTGTCCGATCTGGCCCGCGAGGCTGAATCCGTGCTCCGGTTATTGGGCCACATTGTCCGCGGCAGGTCCGGCGCTGAATGGCGCGTCCTGGACCTCATGACCCCCGGTGTCCGGGGCCAGCAGAAGGCTGTCGCCCAGGAATTGGGGATCACCACCCAGGCTGTCAGCAAGGCTGTGGCCAGGGCGCAGTGGAACGAGGAACATGCTGCCCGCCCCGCCGCGGCCCGTCTGCTGGCGCTGATCCTCGAGGTGCGCTGAMFTLTINQTDSRRDGDRVPQLLRELRHIPARLDFDRSVEDEVQGIVDCPHQAVEAALIALRCGTWYVGIGAGPVNEPLPNLIRDASGHSLIYARRAVDRLRNGKDRIPVAVEGPLSDLAREAESVLRLLGHIVRGRSGAEWRVLDLMTPGVRGQQKAVAQELGITTQAVSKAVARAQWNEEHAARPAAARLLALILEVRNANANANANA
D1-29_00279717hypothetical proteinGTGGCTGACGCAGGGAGAACCTGGCTGGTCCGCCGGGCCGAGCGGCTCTATGGAGACAGGCTGGGCCGGCTGCGGCACAGCGAACTTTCCTGGCATATCGCCTGGAAGTGGCTGCCCGTCCTTGTGGCGGTCGGATTCATTTACGGCACCATCGCCGAGTTCACCGGCAACTCCTCATCGCAGCGAGCCCCTGGCCTTTTCTCCGATGTCCCGCTTTTTGTGACTTCGAGCGTCCTCACCGGGCTGGTCCTGTGGTCCATGACCTTGTTCTGGAGCTTCCGGCGCGTGCTGGTGTTCGACCGCGGGCTCTTGTACGGGTACGCCCAGAAGCAGACTGCCCACGCCATCTTCTGGCATGACATCGACCCAACATCGCTGCGGACCGTCCAGGCCCCGGCCGGCGTGGAGGCGGATGGCCTGCTCAAAACCCTGGATAAGAAGAGCAAAGTTCGGCTGGGGGTAAGCGGACGGTTTGCGGTGATGTTCCGCGGCATACCCTCGGTTATCGGGACGGCAGGAAGTACCGGCCAGACGGCTGGCCCCGAGGCACCTGGGCAGGGATTCTTCACGTTCAGCATGTCGCGCATCCCGGACAGGCTGGTTGCGGAGATCCAGCACGCCATGGCGGAATCAGGCCTGCTAACGGCCGGGTCTGCGGTGCCCAAGGCATTGCCGCCGGTTCAGATCAACTCGGCCGTCAGGCTTGACCAGGCCTGAMADAGRTWLVRRAERLYGDRLGRLRHSELSWHIAWKWLPVLVAVGFIYGTIAEFTGNSSSQRAPGLFSDVPLFVTSSVLTGLVLWSMTLFWSFRRVLVFDRGLLYGYAQKQTAHAIFWHDIDPTSLRTVQAPAGVEADGLLKTLDKKSKVRLGVSGRFAVMFRGIPSVIGTAGSTGQTAGPEAPGQGFFTFSMSRIPDRLVAEIQHAMAESGLLTAGSAVPKALPPVQINSAVRLDQANANANANANA
D1-29_00280669hypothetical proteinATGAAGGCCCAAGGGGTGGCAGAAACGGGAGCCGACGCAGATCCTGCACTCATCCACAGTGCATGCAAACGGACAAAATACTTGAGGAACGGCCGTCCGGTGGTGGAAGCGACCGGTTGGCAGGTGTTCGGCGCCTGGGCCGTGGACTTTGGCCTCATCGCCATCATGGCGGCGGTGGCGTCTGCCACTGCCGCAACGTCCGTGACGGGGACAGCAGGCCGGACGGCGGCCGCAGCCATCATTGTCTGGATGGCGGCGCCCTGGTTGTACGGGTTCTGCTGCGCCCGCGGACTTTCCCTCGGGTCGCTGGCTACAACTACGGTCCTGGTGCGGATGGGCGGCGGTGAACGCCCGGGATTTTGGCGAGCAGGATGGGTCATGTTTTCCAGGATGGTGCTCTTTCCCATTGTCATCCTGCTCATACTCCTTGCAGCCGCCGGAGGCTCGAGCCCCTCCGGGGACAGTCCCAGAGCCCGCCACCTGACGATTGACCGGCGATTTCCCGTACCGCCACCACCCATCCGCCCGGACGTGGCCCGGGCCGCAGCCGAGGAAGCTGCGGCCAGGCACTCCCAGCTTCCGGGCCTTTACGAGCTCAACCAACCCGGCCCTCACGAACAAGGCCTCAACCAGCCTGGCCCCTACCAACAAAGAGGCCCGCGTGGCTGAMKAQGVAETGADADPALIHSACKRTKYLRNGRPVVEATGWQVFGAWAVDFGLIAIMAAVASATAATSVTGTAGRTAAAAIIVWMAAPWLYGFCCARGLSLGSLATTTVLVRMGGGERPGFWRAGWVMFSRMVLFPIVILLILLAAAGGSSPSGDSPRARHLTIDRRFPVPPPPIRPDVARAAAEEAAARHSQLPGLYELNQPGPHEQGLNQPGPYQQRGPRGNANANANANA
D1-29_002812427xfpXylulose-5-phosphate/fructose-6-phosphate phosphoketolaseATGGCCAGCAGCACCGGACAGGACGAACTGGAGCACGTAGACCGCTGGTGGCGGGCGGCCAACTACCTTTCGGTGGGCCAGATCTACCTGCGCTCCAACCCCTTGCTGCGGGAACGGCTCACGGCAGAGGACACCAAATCTCGCCTGCTGGGCCACTGGGGCACCACTCCGGGCCTGAACTTCGTGTACGCCCACCTGAACCGGGTCATACGCAGGGATTCCCAGGAGATGCTCTTTGTTGCCGGACCCGGGCATGGCGGGCCAGCTGTGGTCGCAAACGCGTGGCTGGAAGGCACTTATTCAGAGATCTACGGCCACGTGGGCAATGACGAGGCCGGGATGGCTGAACTCTTCCGCCAGTTCTCCTACCCGGGAGGCATCCCCAGCCACGCTGCGCCGGAAAGCCCCGGATCCATCAGCGAAGGCGGCGAGCTGGGTTATGCGCTGGCCCATGCGTACGGCTCGGTGTTCGACAACCCCCAGCTGATCACCGCCGTCGTGATTGGCGACGGCGAGGCCGAAACCGGTCCGCTGGCAGCGAGCTGGCATTCGCACAACTTTTTGGACCCGGCGGCGGATGGTGCCGTACTGCCCATCCTGCATCTGAACGGGTACAAGATCGCCAATCCCACCATCCTCGCCCGGATGCCCGAAGAACAGCTGGAACAGCTGCTGCGGGGCTACGGCCACGAGCCCTACTTCGTCACGGTGGACCACCCGGACGCCACGGAGAAGGCGCACCGGGACTTCGCCGCGGCGCTGGACCAGTGCCTGGCGGACATCCGCGCCGTCCAGGACGTGCACCGGGCGCCGGACAATTTGGACGCAGCCAAGCAGTACGCAGCCAAGCAGTACGCGGCCAACCAGGACCCGGGGGAGGACGGCGCGCCGCGGTGGCCCATGATCGTCCTGCGCTCGCCAAAGGGCTGGACGGGGCCGCGCACCGTGGACGGGGTGCAGGTTGAGGGCACGTGGCGCAGCCACCAGGTCCCGCTGTCCGAAATCCGCACCAATCCGGCCCACCTGGACCAGTTGGGGGAGTGGCTGCAGTCCTACCGTCCGGAAGAACTGTTCGACGGCGACGGCCGGCTCCGGCCCGACATCGCGGAAGGCGCGCCCACCGGAGATTTCCGGATGAGTGCCACGCCGCATGCGAACGGCGGGCTCCTCCGCAGGGCCTTGACGCTCCCGCCCTACCGGGACCACGCCGTCGAGGTTGCCCGGCCGGGGACGGAACGGGTCAGCCCCATGATTACGCTGGGTTCGTGGATGCGTGATGTCATCTCGCTGAATATGGAGAACTTCCGGCTCTTCGGCCCTGACGAGACGGCGTCCAACCGGCTGCAGAACGTCTACGAAGTGACGGACAAGGTGTGGCAGTACCGGATTGACGACGTCGACGAGCACCTTGCACGGTCCGGCCGGGTGATGGAGGTGCTCAGCGAGCACCTGTGCCAGGGGTGGCTGGAGGGCTACCTCCTGACCGGCCGGCACGGAGTCTTCAGCTGCTACGAGGCGTTCATCCACATCGTGGACTCTATGTTCAACCAGCACGCCAAGTGGCTGAAGGTGCACCGCAAACTGCCGTGGCGGCAGCCCGTTGCATCCCTGAACTACCTGCTTTCGTCGCATGTCTGGCAGCAGGACCACAACGGGTTCTCGCACCAGGACCCGGGCTTCATTGACCACGCGGTGAACAAAAAGGCCGAGGTCATCCGGGTGTACCTGCCGCCGGACGTGAACACCCTGCTGTCCGTTATGGAGCACTGCCTGGCTTCAACGGACTACGTGAATATTGTGGTCAGCGGCAAGCAGCCCTCTCCCGCTTGGCTGGGGCCTGCGGACGCTGCCAATCACTGCCGCCGCGGGCTGGGGATCTGGACGTTCGCCGGGTCCGAGATCCCAGGCGAGGAGCCCGACGTCGTCCTTGCCTGCGCGGGGGACGTGCCCACCGTGGAGACCGTGGCCGCTGCGGAGCTTCTCAAGGAAGGTGCGCCGGGGCTGAAAGTCCGGGTAGTCAACGTGGTGGACCTGATGCGGCTGCAGGACTCCAGCGAGCACCCGCATGGCCTCCCGGCACGCGACTTCGACGGAATTTTCACCGCAGACAAACCGATCATCTTCGCCTACCACGGCTACCCTGCGCTGATCCACCGGCTGGCCTACCGCCGCACCAACCAGGACGGCCTGCATGTGCGCGGCTATAAGGAGGAGGGCACCACCACCACGCCGTTTGATATGGCCATGCTGAATGGGATAGACCGGTTCCAGCTGGCCATCGACGCGATCGACCGCGTCCCGGGGTTGGCCGAGAAGCACTCACTGCTGCGGCAGGACCTCCAGGACCGGCGGATGCGGGCCTTTGAACATACAAGGACCCACGGCGAGGACCCTGAGGAGATCCGCAACTGGTCGCTAGGCACCTGAMASSTGQDELEHVDRWWRAANYLSVGQIYLRSNPLLRERLTAEDTKSRLLGHWGTTPGLNFVYAHLNRVIRRDSQEMLFVAGPGHGGPAVVANAWLEGTYSEIYGHVGNDEAGMAELFRQFSYPGGIPSHAAPESPGSISEGGELGYALAHAYGSVFDNPQLITAVVIGDGEAETGPLAASWHSHNFLDPAADGAVLPILHLNGYKIANPTILARMPEEQLEQLLRGYGHEPYFVTVDHPDATEKAHRDFAAALDQCLADIRAVQDVHRAPDNLDAAKQYAAKQYAANQDPGEDGAPRWPMIVLRSPKGWTGPRTVDGVQVEGTWRSHQVPLSEIRTNPAHLDQLGEWLQSYRPEELFDGDGRLRPDIAEGAPTGDFRMSATPHANGGLLRRALTLPPYRDHAVEVARPGTERVSPMITLGSWMRDVISLNMENFRLFGPDETASNRLQNVYEVTDKVWQYRIDDVDEHLARSGRVMEVLSEHLCQGWLEGYLLTGRHGVFSCYEAFIHIVDSMFNQHAKWLKVHRKLPWRQPVASLNYLLSSHVWQQDHNGFSHQDPGFIDHAVNKKAEVIRVYLPPDVNTLLSVMEHCLASTDYVNIVVSGKQPSPAWLGPADAANHCRRGLGIWTFAGSEIPGEEPDVVLACAGDVPTVETVAAAELLKEGAPGLKVRVVNVVDLMRLQDSSEHPHGLPARDFDGIFTADKPIIFAYHGYPALIHRLAYRRTNQDGLHVRGYKEEGTTTTPFDMAMLNGIDRFQLAIDAIDRVPGLAEKHSLLRQDLQDRRMRAFEHTRTHGEDPEEIRNWSLGTPGPT0017575_755DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017575-xfp-K01621NANA
D1-29_00282789hypothetical proteinATGCAACGGCCCGTTGCACCGAAGAGTGCCGGCGGTATGAAGACACTGGGCGTCGATCTTGCGGCGGCGGCTAGGAAGACGGGGGTGGCGGTCCTGGTATGGACCGCCGGTTCTGCCCGCCTGGAGCACCTTGCCCTGGGTGTGGATGACCGGGAGATAGTGGATCTCTTCGGGAGCAGCTCCATGACCGGCATCGACTGCCCGGTTGGCTGGCCGGACGCTTTCCTGCCGTTCCTCGCAGGACACCTGAATTTCGACGCCGGTCCCGTCCTTGACCACGATGGCATCGAGGGACGGCGGCTGCTGGCCTACCGGGACACGGACCGCTTCGTTACGGGACACACCGGGCTGATTCCGCTCAGCGTCTCTGCCGACCGGCTCGCCCATCCGGCCATGAGGTGCGCCGTGATCCAGGCGAGGATCGCCGCTGAGTACGGGCCCCAGGCGCGGGACGGGTCCGGCCGCCTGGCGGAGGTCTATCCTGCTGCATCCCTGAAGGTTTGGGGCCTCTTGGCCCGCGGCTACAAGGGCCGGGGCGCGCCGGAGGCAGAACGGCTTGGCGTGATCCTGGATCAGCTGCAGGCTGCCGCGCCTTGGCTGGACCTGGCAGGACACGAAGGGCGGCTGGCCGCGTCCGACGACCTCTTTGACGCAGTGATCGCCTCTTTGACCGCACGCGCCGTCATCCAGAAGCAGACCCTCGGGCCGCCAGGAACCCATGCCGCGGCAGCACTGACAGAGGGCTGGATCCATCTGCCGTCAGGCCAGCCCGCCGATCTGTGTGACTGAMQRPVAPKSAGGMKTLGVDLAAAARKTGVAVLVWTAGSARLEHLALGVDDREIVDLFGSSSMTGIDCPVGWPDAFLPFLAGHLNFDAGPVLDHDGIEGRRLLAYRDTDRFVTGHTGLIPLSVSADRLAHPAMRCAVIQARIAAEYGPQARDGSGRLAEVYPAASLKVWGLLARGYKGRGAPEAERLGVILDQLQAAAPWLDLAGHEGRLAASDDLFDAVIASLTARAVIQKQTLGPPGTHAAAALTEGWIHLPSGQPADLCDNANANANANA
D1-29_00283831TropinesteraseATGCCATGGCTTGATGTGCTCGGCAACGACATCCATTACACCGACGCGAGCCACGGCCAGCCCGTGGTCCTGCTGCATGGCCACGCGTCCGCAGCGGCGTGCTGGGAACCGATCAGTGCGGAACTGGAGCGGGACTTCCGGGTACTGGCCTACGACACCTACGACCACGGCTGGTCCTCGAACTCGCCGCGGCAGGGACCGCTGGTTGACCGGGCGGCTGAGCTTGAGCACTTCATCGGTTCACTCGCCCTGAAGAGCCCGATTATCGTGGGGCAGTCCATGGGTGGCATGACCACCCTGCGCTGGGCGGTCCGCCATCCGGGGGAAGCGGCGGCCCTGGTCATCTGCGGCATGGGCTGGCCGCTGGTGGTGCCGCCGCCCGGGCAACCCGGCCAGGCGGAAAAGTTTGAGGTGTTCAGCTCGCTCGACGCCGACGAGCGGATCTGGCTCGGTGTGGGGAACTCCTTCACGGAGGAGTGGATCGCTGCCAACCCGCTCGACTACGCCCGCTACATCCGGTTCCGGTCCACGGCAGCCGCGATCGAAGCGGCGCGTCATCCGCGCAGCCTGGAGGCAAGCCAGGGAGAGTTCCTCAGCGCCGCTGCCGGGGACGTTGACGCATTCCAGCGCGGACTGGAATCGATCACCAGCCCCCTGCTGGTCATCATTGGCGACGCCGAAAGGCCGCGCATCCGCCGCGGCGCCGAACACGTCGCCGCCACGGTTCCCGGCAGCCGCCTCCTCGTCGTGGAGAACGCTGGCCACAACGCCTACTTCCAGCGGCAGGACCTTCTGGTGGAGGCGATCCGAAACGCGGCCGCCGGCACCTGAMPWLDVLGNDIHYTDASHGQPVVLLHGHASAAACWEPISAELERDFRVLAYDTYDHGWSSNSPRQGPLVDRAAELEHFIGSLALKSPIIVGQSMGGMTTLRWAVRHPGEAAALVICGMGWPLVVPPPGQPGQAEKFEVFSSLDADERIWLGVGNSFTEEWIAANPLDYARYIRFRSTAAAIEAARHPRSLEASQGEFLSAAAGDVDAFQRGLESITSPLLVIIGDAERPRIRRGAEHVAATVPGSRLLVVENAGHNAYFQRQDLLVEAIRNAAAGTNANANANANA
D1-29_002841326aqdA2putative N-octanoylanthranilate hydrolase AqdA2GTGAATTCGGAGCTTTCTTTTGATCCTCCCTGCGGTCCGGTCACCGGCTGGCGGGACGGCGATGTTGTGCGCGCAACGGGAATCCCGTACGCCACGGCGGGCCGCTTCCAGCCCCCGATTCCTGTGCCGGACCGGTCCGGGATATTTGCGGCCACCTCCCCCGCACCCGCCTGCCCGCAGGGCCCTGTGCCTTTCCTCGATGACATCCTGGGCACGCGGTACGGCGAACTCCCGGGCAGCGAAGACTGCCAGAACCTCTCCATCACCATGCCGGCCGACATTGGTGCAGGCGAACGGCTGCCGGTCATGGTCTGGATCCACGGAGGTTCCTACACCACCGGATCAGGGGACCTGGCCATCTTCGACCCCGCCGTGCTGGTCGCCGAGAACCGCGTGATTGTCGTTGCCGTGAGCTACCGGCTGGGGCTGTTTGGCTTTCTGGCTACGCATTCAGGCAGGCCCGCCAACCTGGGACTGCTCGACCAGCTTGAGGCGTTCCGTTGGGTGCAGCGCAATATCGCAGCGTTCGGCGGTGACCCGGGAAGGGTGACGGCGTTCGGTCAGTCTGCCGGCGGGGACGCGATTGCCCACCTGATGGCATCACCGGAAGCGCCTTCCCTTTTCCAGCGCGCCATTATCCAGAGTGCACCCCTGGGCATCTCCCGTGGGCGCGAAAAGATGAATCATGCGATGGGCATCGCGGCCGAAGCCGTTACGGAGGAGACGCCCGCTATGGACGTGGTGGCTGTCGAGGACCGCGTCTCGCAGGTGGCACGGAAGTACGGCCTGATGGCAGCCATGCCGTTCGGAACCCAGTACGGGCACGCCCCGCTGCCGCCGGAAGCCGACATTGAGGCAGCCTGGGATGCCACGGCCCCGCATATCGAGGTGCTGATCGGGCATACGGCGGACGAAGCGCGGCTTTTCCTTCCCCGCAATCCCGTGGTGCGCAGGCTCGGCAATGTCCCCGGCATCGGCGGGGCCGCCGTCGTAGCCATCAATTGGGCAGTGACGGAGGCCGTGTACGGCCGGGCGGCGCGGAAGTTCGCCCGGCGTCACGCGCGCGCCCGCGGCAAGGCCCACAGCTATGTGATCTCCTGGGGCGCTCCGGGGAATTACTTTCGGGCCGCTCATACTGTTGACCTGCCGCTGCTGTTCGGCAATCAGGGGACATGGGCAGCTGCCGGCCTGCTTTCCGGCTCCACCTGGGAGGAGGTCGACGCCGTCGGGCGGGAACTGCGCAGCCTGTGGGCCACTTTTGCCCGTGGGGAAGACCTGGGCGAATCAGGCGGCATCCCCGGCGCACTCCACTACCGGTCGGCATAGMNSELSFDPPCGPVTGWRDGDVVRATGIPYATAGRFQPPIPVPDRSGIFAATSPAPACPQGPVPFLDDILGTRYGELPGSEDCQNLSITMPADIGAGERLPVMVWIHGGSYTTGSGDLAIFDPAVLVAENRVIVVAVSYRLGLFGFLATHSGRPANLGLLDQLEAFRWVQRNIAAFGGDPGRVTAFGQSAGGDAIAHLMASPEAPSLFQRAIIQSAPLGISRGREKMNHAMGIAAEAVTEETPAMDVVAVEDRVSQVARKYGLMAAMPFGTQYGHAPLPPEADIEAAWDATAPHIEVLIGHTADEARLFLPRNPVVRRLGNVPGIGGAAVVAINWAVTEAVYGRAARKFARRHARARGKAHSYVISWGAPGNYFRAAHTVDLPLLFGNQGTWAAAGLLSGSTWEEVDAVGRELRSLWATFARGEDLGESGGIPGALHYRSAPGPT0030515_2706PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TANNIN_DEGRADATIONPUTATIVE-TANNIN_DEGRADATION-1,PGPT0030515-pnbA-K03929
D1-29_00285489ppaCOG0221Inorganic pyrophosphataseATGAAGCACGACGTCACCATCGAGATCCCCAAGGGATCCCGCGTCAAGTACGAAGTCGACCACGAGACCGGCCGGGTCCGCCTGGACCGCGTCCTCTTCACCTCCATGCAGTACCCCACGCACTACGGTTTCTTTGAGAACACCCTGGGCGAAGACGGCGACCCGCTGGATGCACTGGTGCTCCTGCAGGACTTCGATCTGCTCCCGGGCGTCATCGTTGAATCCCGCCCCATCGGCGTCTTCAACATGACCGACGACGGCGGCGGAGACGCCAAGGTCCTGTGCGTCCCGGTTGACGCCCGCTTTGACCACATCCAGGAAGTCAGCGACGTCAGCGAATTCCTGATCAAGGAAATCGAGCACTTCTTCACACGTTACAAGGACCTGGAGCCGGGCAAGTGGGTCAAGGCCGAGGGCTGGGGCGACCGCGCCGCCGCCGAAGCCGAGCTGGAAGCCTCCATCAAGCGTTACGTTCCGGCCGCTCACTAAMKHDVTIEIPKGSRVKYEVDHETGRVRLDRVLFTSMQYPTHYGFFENTLGEDGDPLDALVLLQDFDLLPGVIVESRPIGVFNMTDDGGGDAKVLCVPVDARFDHIQEVSDVSEFLIKEIEHFFTRYKDLEPGKWVKAEGWGDRAAAEAELEASIKRYVPAAHPGPT0002600_4658DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507NANA
D1-29_002861524COG2027CarboxypeptidaseATGAAGGAAACATTGCGTCCCGCAGGGTTCAGGGCGGCGTTCCAGGGCGGCTTTCAGGCCACACCAAGGCGCATAGCAACGGGTGTGGCCGCCTGTCTCCGCCACACGTGGCCGGTTGGTCTGCTCCTGGCGCTGATGGTGGCGCTGGCCGTGCCCGCTGCCCTGGTGGTTGCCCCCGGCTTTATCGGACCGGAACCCCCCGCGGCGCCCCCGGCTGCTCCCGCCTGGCAGCAGGCTCCTGCAACGCTTTCGGCCCGGCAGGGCCTGTCCCCGCTGAACGAAACCGCGCCGGTGCCAGTGCCGTCGGCCGTCGCCGCGCAGCTGGAGCCACTGTTGAAGGCCGACGGCGGCGGCACCTTTACCGGCCTGGTCCAGGATGCGCTGACCGGCCAGGTCCTTTTCGACCGCGGCGGTTCCGACAACCGGATCCCCGCCTCCAACATGAAGCTGCTCACCGCCGTCGCTGCCCTGCGGGCTATGGGGCCTGAACACCGGTTCAGCACCACCGTCGAGGCAGGTCCTTCGGCAGGCCAGGTGGTGCTCAGGGGCGGCGGCGATGTCCTCCTGGGAGCCGGCCAGTCGGACCCGGACCAGGTGATGGGCCGTGCAGGGCTCGCCTCGCTGGCGGCATCAACAGTGGCTGCGCTTCAGGAGAACGGAACCACGGGGGAGCTGACGGTCCTGGTGGACGATTCCCTCTTCAACGGTCCGGCGCTGAACCCGGCATGGGAAAAGGGTGATGTGGAGGCCGGCGAGCTGGCCCCGCTTTACCCGCTGGCCATGAATTCGGCCCGCTTCAGCGCCGGCGTGACCACAGGTCCGCGCCCCCAGGATTCCGCGCTCACTACGGCTGAGGCGTTCGCCGGGCAGCTTAAAGCGGCAGGTGCCGCTGCGGGGATAACTGTGTTCGACGGCGTCCAACGCGTCACTTCTTCGGCGCCGCCAGGGCAGGCTGAAGTCCTGGCGGAAGAGCAGTCCGCCACAGTAAGCCAGCAGGTGGACCTGATGCTGCAGACCTCGGACAACTACCTCGCGGAAATATTGGGCAGGATGTCCGCCGTGGCAGCCGGGCAGCCAGGCAGTCACGACGCCGCCACTGCTGCGGTCCGCACCCAGCTCGGGGAATTGGGTATCCCCACGGACCCCATGAGGCTGGCCGACGTATGCGGGCTGGCGCTGGGCAACCAGGTCTCCGCCCGCCAGTTCGCCGAGGTGGTGCGGGCCATCACCTCCGGCACGGACACGAGGCTGCGCGCGGCGCTGGCCGGCTTCCCCGTGGCCGGCCTGACAGGAACGCTTGACGCCCGTTACGGAGATGATTCCACTGCGCGCGGAGCCGGGCTGGTGCGGGCCAAAACGGGAACGCTGAACTCGGTGATCGCACTCAGCGGCTACGTAGTGGACGCTGACGGCCGGCTGCTGGTCTTCTCCTTTATTGGCAACGGGCTCACCCCCGGCGCCGCCGGCAATAAGGAAGCGCTGGACCGCGCAGCCACAGCGCTTGCGGCCTGCGGCTGCCGTTAGMKETLRPAGFRAAFQGGFQATPRRIATGVAACLRHTWPVGLLLALMVALAVPAALVVAPGFIGPEPPAAPPAAPAWQQAPATLSARQGLSPLNETAPVPVPSAVAAQLEPLLKADGGGTFTGLVQDALTGQVLFDRGGSDNRIPASNMKLLTAVAALRAMGPEHRFSTTVEAGPSAGQVVLRGGGDVLLGAGQSDPDQVMGRAGLASLAASTVAALQENGTTGELTVLVDDSLFNGPALNPAWEKGDVEAGELAPLYPLAMNSARFSAGVTTGPRPQDSALTTAEAFAGQLKAAGAAAGITVFDGVQRVTSSAPPGQAEVLAEEQSATVSQQVDLMLQTSDNYLAEILGRMSAVAAGQPGSHDAATAAVRTQLGELGIPTDPMRLADVCGLALGNQVSARQFAEVVRAITSGTDTRLRAALAGFPVAGLTGTLDARYGDDSTARGAGLVRAKTGTLNSVIALSGYVVDADGRLLVFSFIGNGLTPGAAGNKEALDRAATALAACGCRPGPT0024035_865DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259NANA
D1-29_00287375hypothetical proteinGTGGTTGAAGGCGGCAAGGGCACCGTTGCCCTGGGAGCCGATGATGTTATCCACCTTGTCTGGAATCAAAGCACCAAAATCGAAGCTGTGGATGCCCAGGCCGCCATGGCGGCAGTCAATCAGGCCGGTAACGGGTCCGAATATCCCATGCTGGTGGACATGGCCACCACCGAGTCCGTGAGCCGCCAGGCCCGTGGCGTTTTCTCCATCCCGTGTGCGGCCAACCGCATTGCCCTGCTGGGATCAAGCCCTGTTGACCGGGTTCTGGCCAACTTCTTTCTCAGCATGCATGTTCCGCCCTGCCCCACCCGTTTCTTCACGTCCAGGCCCGAAGCCATGGCCTGGCTGCTCGAGGGGTCTCCGTCACGTAGCTGAMVEGGKGTVALGADDVIHLVWNQSTKIEAVDAQAAMAAVNQAGNGSEYPMLVDMATTESVSRQARGVFSIPCAANRIALLGSSPVDRVLANFFLSMHVPPCPTRFFTSRPEAMAWLLEGSPSRSNANANANANA
D1-29_002881131hypothetical proteinATGGAGTCCACTGCACGTGATTCGTCACCGGCGTCATCCACCCCGGCCCAGGCCCTGATCAACTGGGATCTCGCAGCGTCCACCGCTGCCCGGCTTGCTTCCGCCGGCCCGGTGCTTAACTCGGCGGAAATTGGTGATGCCGTGGACAGCCTCCGGCACCTCGCGGACGCCTCCGTTCCGCACGTACACGAGATCACGGGCCTGGAAGCTGCCCGGGACCTCCGCGATTCATCGGTCCTGGTGGTGGACCGCGCCAACTGGGCCAAAGCCAACACCCAGAGCTTCGCAGTGATGCTCAAACCGGCCATGGAAAAGATGCTGGAAAGCCGCCGCGGCTCCATCAGCCCGGCGGCGGCCAGCGTCAGCGGCGCCATCACCGGCAGCCAACTGGGAGCAGTCCTGGCTTTCCTTTCCAGCAAGGTCCTGGGCCAGTACGATCCCTTCGCGGCGCTGGCTGAGGGGTCCAACGCTCCCGCCGGCGGCCGGCTGCTGCTGGTTGTCCCCAACATCGTCTCCGTGGAGCGCGAGCTCAATGTCACGCCGGAGGATTTCCGGCTCTGGGTCTGCCTCCATGAACAGACTCACCGGGTGCAGTTCGCGGCCGCGCCCTGGCTCCGGCACCACATGCTGCAGGAAATCGACAACCTCAGCGGCCACCTGCTCGGCAACGTGGACTCCCTGATGGAGCGCGCCTCCGCCGCCGCACGCTCACTGAAGGACCGGACGGCTGCCGGCAACGCCCCGGGCCGCGGCGCCATCCTGGACCTGCTGCAGAATCCGGAGGAAAAGGCATCGCTGTCGCACCTGACGGCAGTGATGAGCCTGCTGGAAGGCCACGCCAATGTGGTGATGGATGCAGTTGATGCCAGCATTGTGCCGTCCGTGAAGACCATCCGGCAGCGCTTTAATGACCGTGGCAAGGACCGCGGTGTCATCGAGAAGTTCATCCGTAACCTGCTGGGCCTGGATGCCAAGATGCGTCAATATTCCGACGGCGCCAAGTTTGTCCGCGCGGTGGTGGAAGTTGCAGGGATGGAGGGCTTCAACAGGGTCTGGGAATCCGCTGACCATCTCCCCACCGAGCCCGAAATCCATGACGCCAAGCTGTGGCTTGACCGGATGGGCCTCTAAMESTARDSSPASSTPAQALINWDLAASTAARLASAGPVLNSAEIGDAVDSLRHLADASVPHVHEITGLEAARDLRDSSVLVVDRANWAKANTQSFAVMLKPAMEKMLESRRGSISPAAASVSGAITGSQLGAVLAFLSSKVLGQYDPFAALAEGSNAPAGGRLLLVVPNIVSVERELNVTPEDFRLWVCLHEQTHRVQFAAAPWLRHHMLQEIDNLSGHLLGNVDSLMERASAAARSLKDRTAAGNAPGRGAILDLLQNPEEKASLSHLTAVMSLLEGHANVVMDAVDASIVPSVKTIRQRFNDRGKDRGVIEKFIRNLLGLDAKMRQYSDGAKFVRAVVEVAGMEGFNRVWESADHLPTEPEIHDAKLWLDRMGLNANANANANA
D1-29_002891080tilStRNA(Ile)-lysidine synthaseGTGGGCAAGGCACGCACCATGGTCCGGGACGCCCTGGAGCAGGCCGGCTACCCGCGCCACGTTCTGGTGGCCTGCAGCGGTGGCCCGGATTCCCTGGCGCTGGCGTCGGTGGCTGCCTACTTTGCCCGCCGCGGCCACGTTGACGGGCACCCCCTGACGGTCGGGGCGGTGGTGGTGGACCACCAGCTGCAGCATGGCTCGGCGCAGGTGGCCGCGGAGGCCGCGGACGTTTTGAAGGAGCTGGGCCTGTCCCCGGTGGAAGTCCGGACCGTCAATGTGGCCAGCGCCGGAATGGGGCCGGAGGCGGCCGCCAGGGCTGCCCGCCATGCCGCGTTGGAGGATGCCGCAGCTGAGCAGGGCGCCGCGGCCATCCTGCTCGGGCATACCCTGGATGACCAGGCCGAGCAGGTCCTGCTGGGCCTGGCCCGCGGCTCCGGCACCAGGTCATTGGCGGGTATGAGGCCTGCCCGCGGGATCCTGCTCCGGCCTTTCCTGGGGCTCCGGCGTGCGGATACCCTCCAGATCTGTGAGGTTGAGGAACTGCAGCCCTGGCACGATCCCAGCAATGCGGATCCGGCTTTTGCCCGTTCCCGGACCCGGGTGGAAGTCCTGCCCCTCCTGGAGGAAAAGCTGGGGCCGGGCGTCGCCGAGTCGCTGGCGCGGACAGCCTCCATCCTCCAGTTGGACGCCGATTATCTTGAAGACGTGGCGGAACGCACTTTTTCGGAACTGGTGGTGCGTTCCGGTACGGAACTGAGCCTTCCGGAGGAGGCGCTGGCGGACCTTGCCCCGGCCATCAGGTTCCGGGTTATCGCCAAGGCGGCCGCCGACGTCGGGGGTCAACAACCCAGCTACCAGCGCCTCCTGGCGGCTGAGGGACTCCTCCGCCGGCAGGGCTCCGCGGGTCCGGTGGAGCTCGCCGGCGGGGTGAATGTCTTCCGGCTGTCGCTGGCCGAGTTGGACGCAGCAGGCCGCAGCGCTGAGGCCGGCAGGCAGCCCGACGGCGGTGCTCCCGTTCCCCGCGAAGGGGCCCGCTGTGGGAAGCTAGTATTCCGGCCTCAAAAACCGCCCCAAAAATAGMGKARTMVRDALEQAGYPRHVLVACSGGPDSLALASVAAYFARRGHVDGHPLTVGAVVVDHQLQHGSAQVAAEAADVLKELGLSPVEVRTVNVASAGMGPEAAARAARHAALEDAAAEQGAAAILLGHTLDDQAEQVLLGLARGSGTRSLAGMRPARGILLRPFLGLRRADTLQICEVEELQPWHDPSNADPAFARSRTRVEVLPLLEEKLGPGVAESLARTASILQLDADYLEDVAERTFSELVVRSGTELSLPEEALADLAPAIRFRVIAKAAADVGGQQPSYQRLLAAEGLLRRQGSAGPVELAGGVNVFRLSLAELDAAGRSAEAGRQPDGGAPVPREGARCGKLVFRPQKPPQKNANANANANA
D1-29_00290552hptCOG0634Hypoxanthine-guanine phosphoribosyltransferaseGTGGATTCAAACGACGTCCAGGCAGACCTCAAGCACGTTCTCTACACCAAGGAACAGATCCAGCAGCGGATCACCGAGCTCGCTGCACAGATTGACAAAGACTACGAGGGCCGCGAAATCCTCATCGTGGGGGTCCTCAAGGGGGCGGTGATGGTCATGGCGGACCTCGCCCGCGCACTCCACAGCCACATCTCCATGGACTGGATGGCTGTTTCCTCCTACGGCTCTGGCACCCAGTCCTCAGGGGTTGTCCGCATCCTCAAGGACCTGGACACCGACCTCATGGGCAAGGACGTCCTGATCGTCGAAGACATCATCGACTCCGGCCTCACGCTGTCCTGGCTGAAGACCAACCTGGAGTCCCGCGGCACCGCGTCGGTGGAAATCTGCACCGCCTTCCGCAAGCCCACCGCCGCCAAGGTGGAGATTGACGTCAAGTACGTTGGCTTCGACATCCCCAACGAATTTGTGGTGGGCTACGGCCTGGACTACGCCGAGAAGTACCGCAACCTGGACTTCGTGGGAACCCTGGCGCCGCACGTTTACGAGTAAMDSNDVQADLKHVLYTKEQIQQRITELAAQIDKDYEGREILIVGVLKGAVMVMADLARALHSHISMDWMAVSSYGSGTQSSGVVRILKDLDTDLMGKDVLIVEDIIDSGLTLSWLKTNLESRGTASVEICTAFRKPTAAKVEIDVKYVGFDIPNEFVVGYGLDYAEKYRNLDFVGTLAPHVYEPGPT0007295_1919DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760NANA
D1-29_002911353Inulin fructotransferase [DFA-I-forming]GTGGTCACTGGCAGGAATCTGGAAATGGCTGGTCCGAGCCGCCGCATGCTCGTCGGCGCGGGGGCCGTGAGTACGCTCGCTGCAGCGCTGACTCTTGGGACGTCTCAAACGGCAAAGGCAGCAGACCGTCCGCAGGGGGTGGCCTTCAGTTCGCCGAACATGTATGACGTGACCGCCTGGCAGATCAAGGCGAGTCCTCACGTTACGGCACAGTCCGACATCGGTGCCGTCATCAACGACATCATTACCGACGTTAAAAGGCGGCAGTCCACACCTGACACCCGGCCCGGCGCTGTCATCATCATTCCCCCCGGAGACTACGACCTTCGCACCCAGGTCATCGTGGATGTGGACTACCTGACCATTGCCGGGTTCGGGCATGGGTTCTTCTCCCGGAGCATCCATGTCAATGTCGACACCACGGGCTGGCTCAACATCCAGCCTGGCGGAAGCCACATCAGGGTCCTCACGTCTCCAGAGGCACCCCAGGCTTTCTTGGTCCGCAGAACCGGGAGCCCGCGCCTTTCCGGGGTCGTCTTCCGGGACTTCTGCCTTGATGGGGTCCACTTCACTCCGGACGAGAACAGCTACCACAACGGCAAGACGGGCATTGAGGTCGCATCCGATAATGATTCCTTCCACATCACCGGAATGGGCTTCGTCTATCTTGAGCACGCACTGATCGTGCGGGGTGCAGACGCCCTGCGGGTACACGACAACATGATCGCGGAATGCGGGAACTGTGTGGAACTGACCGGCGCCGGACAGGCGACAACTGTGAGCGACAACCTCATGGGCGCGGGCCCGGACGGAGTGACGCTCCTGGCAGAAAACCACGAGGGCCTCCTCGTGACGGGCAATAACTTCTTTCCCCGGGGCCGGAGCCTCGTCGAGTTCACCGGGTGCACCCGCTGCTCTGTGTCGTCGAACAGGTTTCAGGGCTTCTATCCAGGGATCATGCGCCTACTGAACGGCTGCAAGGAGAACCTGATCACGTCAAATCACTTCCGCCGCGGCACAGAAGGGTTCCCGCCGTTCATCAACCGCTCGAACGGCCTGGATGACCTCTACGGGGTCATCCACACGGTGGGAGACAACAACCTCATTTCGAACAACCTTTTTGCCTATGACGTCCCACCGGAGAAGGTGGTCCCCGTTGGTGCCCGGCCGACGATTATCCTGATCGCAGCAGGAGACAGCAACGTGATCGCCACCAACCATGTAGTGAGCAACGTGGCGTCCCAGCACGTGGTTCTTGACGGATCGACAACCCGTTCAAAGGTGCTGGACAGCGGAGCTGCATCGACCATCACATCGTACAGTCCGGATACTGCGACACGCCCGACTCCCTGAMVTGRNLEMAGPSRRMLVGAGAVSTLAAALTLGTSQTAKAADRPQGVAFSSPNMYDVTAWQIKASPHVTAQSDIGAVINDIITDVKRRQSTPDTRPGAVIIIPPGDYDLRTQVIVDVDYLTIAGFGHGFFSRSIHVNVDTTGWLNIQPGGSHIRVLTSPEAPQAFLVRRTGSPRLSGVVFRDFCLDGVHFTPDENSYHNGKTGIEVASDNDSFHITGMGFVYLEHALIVRGADALRVHDNMIAECGNCVELTGAGQATTVSDNLMGAGPDGVTLLAENHEGLLVTGNNFFPRGRSLVEFTGCTRCSVSSNRFQGFYPGIMRLLNGCKENLITSNHFRRGTEGFPPFINRSNGLDDLYGVIHTVGDNNLISNNLFAYDVPPEKVVPVGARPTIILIAAGDSNVIATNHVVSNVASQHVVLDGSTTRSKVLDSGAASTITSYSPDTATRPTPNANANANANA
D1-29_002921278hypothetical proteinATGTCCACTCGAAAAACCATCAACAGGTTCGCCACCATCGGCGGCCTCTGCACCGCCGTCGCATTAGCGGCCACCGCCTGCGGCGCCGGGGGCCCGTCGTCGACGGGTAGCGCCGCCAGCACCATCAACGTCCTGGTGGAGGCCGGCGGCCACGCCGAGCTGACTGGCGTTGCCGCACAGTGCAAGAAGGACGCGGGCATAGACGTCAACTTCGTTGAACTGCCCTACGATGGCATGTTCAACAGGCTTTCCAGTGAATTCTCCTCAGGCAACGTCTCCTTCGACGTCGCCGCCCTGGACTCCGTCTGGCTGCCCAGCTTCAAGGACGCCGTCCAGCCCATCGACGAGCTCTTCACCGATGAGGCCAAGAAGGACATCTTCCCGGCCCTGGTCAAGGAAGCAAACGTAGACGGCCACTTCATCGGCATGCCGGCCTGGACCAACGCCGAAATCATCCTTTACCGCAAGGACCTCTTCGAGGACCCGCAGAACAAGTCCGCATTCAAGGCCAAGTACGGCTACGAGCTGGCTGCACCCACTACCTGGGAGCAGTACCAGGAGGTTGCCGAGTTCTTCACCAAGGACGGAATGTACGGCACCGACGTGAAGGGCGGGGTGGAGACCGAATGGCTGGCCCACGTCCTCCAGGCGGGCTCCCCGATGGTCCTTGATGACAAGAACAACGTGGTCATCGACAACGCCGCCCACAAGGAAGCGCTGGACTTCTACACCAGCCTCGCACCGTCCGCCCCGCCAGGGGCTGCACAGGTTGACTGGGCCGCGGCGCAGAACCTGTTCAACCAGGGCAAGACTGCCATGACCCGGTTCTGGGCCCACGCCTACCGCCAGATCCCCAAGGATTCCCCGGTGGCCGGCAAAGTGGGTGCGGCTCCGATGATCGGCGGCAGCGCCGGGGTGGCCGGTGTTCCGGGCCCCTGGTACCTGTCGGTTCCGAAGGCCACGAAGAACACGGACAACGCCAAGAAGTTCATCAAGTGCGCCTACGACCACAACAGCATGGGCATCGAGTCCAGCCTGGGCCTGGCCTCGCGCATCTCCGCCTTCGAGAAGTACCAGGACCAGCCGGGGTATGAAAGCTTCGGCCCGCTGATCGAAACCCTCAACGGGAAGGCCACCGCCACCCGCCCGGCCACCGAAAAGTGGCAGCAGATCGTGGACACCGTCCTGGTGCCGCTCCTGCAGAAGGCTGTGGCCGGCGGGGACTCCGCAACCCTCCTGGCAGACGCCAAGAAGCAGATCCAGGATCTCCTCAAGTAAMSTRKTINRFATIGGLCTAVALAATACGAGGPSSTGSAASTINVLVEAGGHAELTGVAAQCKKDAGIDVNFVELPYDGMFNRLSSEFSSGNVSFDVAALDSVWLPSFKDAVQPIDELFTDEAKKDIFPALVKEANVDGHFIGMPAWTNAEIILYRKDLFEDPQNKSAFKAKYGYELAAPTTWEQYQEVAEFFTKDGMYGTDVKGGVETEWLAHVLQAGSPMVLDDKNNVVIDNAAHKEALDFYTSLAPSAPPGAAQVDWAAAQNLFNQGKTAMTRFWAHAYRQIPKDSPVAGKVGAAPMIGGSAGVAGVPGPWYLSVPKATKNTDNAKKFIKCAYDHNSMGIESSLGLASRISAFEKYQDQPGYESFGPLIETLNGKATATRPATEKWQQIVDTVLVPLLQKAVAGGDSATLLADAKKQIQDLLKPGPT0016545_7980DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00293888sugA_1COG1175Trehalose transport system permease protein SugAGTGCGCATCTCCGATCGCCGCTTCGCAATGTTCCTGATGGCCCCGGCGGCCTTGTTCCTCGCCATATTCGTGGCCTACCCGCTGTTCCGTCTTGTCACAGACAGCTTCTTCAAGATCTCGCCCATGGCCGGCGGGCCCCGTGATTTCGTGGGCCTGGACAACTACTTCCGGGCCTTCGCCTCTGAAGCCTTTATGGGGGCGGGCTGGCGTACGCTGGCCTACACCCTGGTGGTGGTCACCCTCGAGTTTGCGCTCGGGCTGGGAATGGCCCTGCTGTTTACCATGCTGGGGAAAAATTCCCAGATCTGGCGGACCGTCTTCCTGTATCCGCTGATGATCGCGCCCATCGTGGCCGGCCTGCTGTGGAAGTTCCTGATGATCGACAACTTCGGCCTGATCGGAACACTTCTCCACCAGGCTGGAATCCTGCAGAACCCCAACCAGATCGGCTGGCTGTCCGACCCCAACATCGTCCTGTTCTCGGTGGCGATTCCGGACATCTGGCTCACCACGTCGTTTATGTGCCTGGTGCTGTTCGCCGGCCTGCAGAACATCCCGGGTGACCTCATCGAGGCAGCCAAGCTGGACGGGGCACGCGCCCCCGCACTGCTGTTCCGCATCATCCTTCCCTTGCTCCGGCCCGTTATCGCCGTGGCACTGGTGGTGCGCGGCATCGACGCCGCCCGGGCCTTCGACACCATCCTGATCCAGACCAACGGCGGCCCGCAGTCCGCATCGGAAACCATGAGCCTGCTGATCTACCGCACCATGATCCGCTTCGGCGATCCTGGGCTGGCAAGCGCCATGGGCACCATCTACCTGCTGGCCATGCTCGGCGTCGCCTTCTTTGCGGTCGCCACTATCTGGCGGCCAGGAAAGGACAACTGAMRISDRRFAMFLMAPAALFLAIFVAYPLFRLVTDSFFKISPMAGGPRDFVGLDNYFRAFASEAFMGAGWRTLAYTLVVVTLEFALGLGMALLFTMLGKNSQIWRTVFLYPLMIAPIVAGLLWKFLMIDNFGLIGTLLHQAGILQNPNQIGWLSDPNIVLFSVAIPDIWLTTSFMCLVLFAGLQNIPGDLIEAAKLDGARAPALLFRIILPLLRPVIAVALVVRGIDAARAFDTILIQTNGGPQSASETMSLLIYRTMIRFGDPGLASAMGTIYLLAMLGVAFFAVATIWRPGKDNPGPT0016535_7319DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_00294978dasC_1COG0395Diacetylchitobiose uptake system permease protein DasCATGAGCCTCGCAGATCCCCGCCTTAGCGGCACGCCTGCAACGGAAACCACCCCTTCGGATCCGACATCGGCTTCCCGGAAGGGCGCAAGGGCCCAGCCAGACCTCGGAGGAGGCCGGAGGCGCCGTCCCCGCCACCACGCGGAGGGTCTTGAGGCAGGCAAGCGCAACACCAGGACGCTGCTCTGGATCCTCCTCGCGGCGGCCATGATCCTCTACGGCTTCCCGTTCCTCTACCTGCTTTTCACCTCCTTCAAGACGCCGATCGACACCATCGCCGTTCCGCCCAGCATCCTGCCCAGGGAATGGACCCTGGAGAACTACATCAACGCGCTGGGCCGCAACGGGGTCCTGGCTTCCTTCATCAACAGCACCCAGACGGCCATCATCAGCACTGTCCTGTCGCTGGTGCTGGCTGTACCGGCGGCCTACGGCATCACCCGGTACAAGACTCCCAGCGGCCGGGTGTTCATCATGGCGGCACTCGTCACACGGATGGTGCCGCCAGTGGCCATCGGCATCCCGCTTGCTTCCATGATGGCGACGGCGGGACTCGCCGATACCCCCATCGCGCTGTCCATCGCCCACACCACCATCTCGCTGCCCCTGTCCATCTGGCTGATGTCCAGCTTCTTCGAAGCCGTGCCCAAGGACCTGGAGGAAGCAGCCACCGTGGATGGCTGCAGCAGGCTTGGCGCCCTGTGGCGGGTAGTCATTCCGGTAGTCTCCGGCGGCATCGCGGTCACCGCGATCTTCGCCTTTCTGGCCTCCTGGAACGAGTTCCTCTTCGCCCTCCTCATGACGGCAATCCGCTCCCAGACCACCCCCGTGGTCATCGCGAATTTCCAGACCCAGTTCGGCCTCGACTGGGGATCCATGACGGCATTGGCCGCCGTCTACTCGATCCCGGTCATCCTCCTTACGCTTCTCTTGCAGCGCAAGATCGTGGCCGGCATGACGCTGGGTGCCGTCAAGGGCTGAMSLADPRLSGTPATETTPSDPTSASRKGARAQPDLGGGRRRRPRHHAEGLEAGKRNTRTLLWILLAAAMILYGFPFLYLLFTSFKTPIDTIAVPPSILPREWTLENYINALGRNGVLASFINSTQTAIISTVLSLVLAVPAAYGITRYKTPSGRVFIMAALVTRMVPPVAIGIPLASMMATAGLADTPIALSIAHTTISLPLSIWLMSSFFEAVPKDLEEAATVDGCSRLGALWRVVIPVVSGGIAVTAIFAFLASWNEFLFALLMTAIRSQTTPVVIANFQTQFGLDWGSMTALAAVYSIPVILLTLLLQRKIVAGMTLGAVKGPGPT0016540_1460DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_002951401Inulin fructotransferase [DFA-I-forming]ATGCCAAGCAACAACTCCTACGACGTGACGACGTGGCCCGTCGGCGATCCGTCCGAGGACGTCGGTGAAGTCATCAACAGCATCATCGCCGATATCAAGGAACGGCAGACTGCCACCGATGCGAACAGCGGAGGAAAGCCAGGCGCGGTGATCTACATTCCGCCCGGGGACTATCGCCTTCGTACGCAGGTGGTGATTGACGTCAGCTTCCTTCGAATCGAGGGCTCGGGGCACGGCTTTACGTCCTCGAGCATCCGGTTCAACGTTCCCGAAGACGAATGGCCCGACTTGCACGAGCTGTGGCCCGGAGGGAGCCGCATTCTCGTCGACCTCGCCCTCGATGGAGAAGAAGGCGAAGACGGGCAGGAATCCAAGGGAGCCGCGTTCTACGTTGCGCGAAGCGGGAGCCCGAGGATCAGCTCGGTGGAGTTCTCCAACTTCTGCATCGACGGGTTGCACTTCAGCCCGGATGGCTCAGGGACGCCTCAGGAGAACACCTACGTCAACGGCAAGACAGGCATCTACGTCGCGGACGCCAATGACTCATTCCGCGTGAACGGCATGGGGTTCGTCTACCTTGAGAACGCACTCACCATCTACAAGGCGGATGCTCTTTCCATCCACGACAACTTCATCGCCGAATGCGGAAGCTGCATCGAGCTGCGCGGGTGGGGACAGGCATCAAAGATCACCGACAACCTGGTGGGAGCAGGGCCAAGGGGCCACTCGATCTACGCAGAGAACCATGGCGGGCTCCTGATCACCGCGAACAACGTCTTCCCCCGTGGTGCGAGCAGCGTCCATCTCAAGGGCGTCACGAGGTCAAGCGTCACCAACAACCGTTTGCATGCGTTCTACCCTGGGATGCTGGTTGTCGCGAACAGCTCGGAAATCCTCGTGGCCACCAACCACTTCCTGCGCGACCATGAACCGTGGACGCCCTTCCAGGGAGTGGACAACGGTCTGAACGATCTCTACGGACTGCTGTCGGTCAGCGGCAGCAATAACTCTGTTGTCGCCAACCACTTCTCCCAGATCATCGACTCACAGAGCATTCGTCCGGCAGGTGCTACGCCTGTCATCATCCGGCTGACGGCGGGAGTTGGGAACTTCGTCTCCAACAACCACGTCGTGGCAATGGACGTTCACGCCACCACAAGCGACTCCTGCTTCGAGGCCCAGGTGGACGCCCTGTTGACCACGGCCGCTTCGGACGGCCTCTCCGTTACGGCCGTTATGGTCGATTCCGAATCAACCCGGAACACGATCCTTGATTCCGGAACTGACGCCCAAGTCATCGCAGACAGGGCCGTGAACGCCTTGAGGGCCACACCCACGATCGGTTTCCCAGCATCGAACACGGCAACACCGGCAAGCAGGGAAACGATTACTCGTCTGTAGMPSNNSYDVTTWPVGDPSEDVGEVINSIIADIKERQTATDANSGGKPGAVIYIPPGDYRLRTQVVIDVSFLRIEGSGHGFTSSSIRFNVPEDEWPDLHELWPGGSRILVDLALDGEEGEDGQESKGAAFYVARSGSPRISSVEFSNFCIDGLHFSPDGSGTPQENTYVNGKTGIYVADANDSFRVNGMGFVYLENALTIYKADALSIHDNFIAECGSCIELRGWGQASKITDNLVGAGPRGHSIYAENHGGLLITANNVFPRGASSVHLKGVTRSSVTNNRLHAFYPGMLVVANSSEILVATNHFLRDHEPWTPFQGVDNGLNDLYGLLSVSGSNNSVVANHFSQIIDSQSIRPAGATPVIIRLTAGVGNFVSNNHVVAMDVHATTSDSCFEAQVDALLTTAASDGLSVTAVMVDSESTRNTILDSGTDAQVIADRAVNALRATPTIGFPASNTATPASRETITRLNANANANANA
D1-29_002961050rbsR_2COG1609Ribose operon repressorTTGAGCAACAAGAACATTGGCATCAAGGATGTAGCAGTCGCCGCCGGCGTGTCTGTAACCACGGTTTCGCACGTCCTGAACGACGTGTCCTACGCCCGGATCAGTCCGGAAACCCGCAACAAGGTCAGGTCCGCTGCGGAGGAACTTGGATACGGGCCCAACCGCCTGGCCCAGGCCCTGCGCACCCAGCGGACGGGCATGCTGGGGCTGGTGAGCGAGGACATTCACACCACCCCCCACGCGGGCCGGATCATCCTCGGCGCGGACGAGGCTGCCCGCGCCCGCGGCTACAACCTGATGATCATCAACACGTCAGGCTCGGCCAGCGCCGAATCCCGGGAGGCCGACGTCGAGGCTCTCCTGGAGCGCCGTGTGGACGGAATCCTCTACGCCACCATGTACCACCGGAAGGTGCAGGTCCCGGCGAATCTGGGGAACGTGCCCGCCGTCCTGGTGGACGCCGTCAGCACCGGCCGAAGCCTGACCGCCGTGGTTCCGGACGAGGAAGGCGGTGCCCGCGCCGCCGTCGAATATCTCGTGGCGGCGGGCCACACCCGCATCGGCTTCCTTAACAACACCGACGACGTCCCGGCCACCCGGGACCGCCTCCGTGGCTTCCGGGCCACCTTGACGGAGGCCGGGCTCGACGGCGATGCGGCACCTGTTGAATCTGAGCTGTCAGAAGTGCCGGGAGGCTACGAGGCAGCACGCCGGATGCTGGACCAGGCGGACCGGCCCACCGCGCTGTTCTGCTACAACGACCGGATGGCCATGGGCGCGTACCGGGCGGCGGCGGAGCTGGGGCTATCCATCCCCGGCGACCTGTCAGTGGTGGGTTTCGATGACCAGCAGCTCATCGCCGCCAACCTGTACCCGGGCCTCACCACCGTTGCCCTGCCGCACTACGAGATGGGCGCGTGGGCCACGGAAAGCCTGATTGACGCCATTGAAGGCAAAACTGACCTGGCCCTCATGGCCCTGCACCCGACCATCCTGGACTGCCCCCTGGTGGTCCGGGAATCAGTGGCGGCACCCCCGCCGCCGCACTGAMSNKNIGIKDVAVAAGVSVTTVSHVLNDVSYARISPETRNKVRSAAEELGYGPNRLAQALRTQRTGMLGLVSEDIHTTPHAGRIILGADEAARARGYNLMIINTSGSASAESREADVEALLERRVDGILYATMYHRKVQVPANLGNVPAVLVDAVSTGRSLTAVVPDEEGGARAAVEYLVAAGHTRIGFLNNTDDVPATRDRLRGFRATLTEAGLDGDAAPVESELSEVPGGYEAARRMLDQADRPTALFCYNDRMAMGAYRAAAELGLSIPGDLSVVGFDDQQLIAANLYPGLTTVALPHYEMGAWATESLIDAIEGKTDLALMALHPTILDCPLVVRESVAAPPPPHPGPT0017992_4550DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_002971638sacC_1COG1621LevanaseATGTCGAGTCGCCTTGATGACGCACGCCCGCAGCCGCCTATGCTGCCGCCTCTGCCGCCGGCACAGCAGCAGCCGGCACCGCTGCTGCCGGTTGCCCGGTCAGAACAGGCGGAGACGCCGCACTACCGCCCCGCAATCCACTACACAGCCCGGGATACCTGGCTCAACGACCCCAACGGCCTGGTCTACTACCGCGGCCTGTACCACCTGTACTACCAGAACAATCCGCACGGAAATGTATGGGGCAATATGTCCTGGGGGCACGCCACCTCCGAGGACCTGGTGCACTGGACCGAGCAGCCCGTCGCCATCACCTGCGACGCCGAAGAGGACGTCTACTCCGGAAGCATTGTGGTGGACCACGCCAACACCTCCGGATTTGGCACGGCCAACAACCCTCCCCTGGTTGCCGTATACACCAGTGCCTATAAGGACGGGACGCCGCACGCCGGCACGCAGGCCCAGTCCCTCGCGTACAGCATTGACGCCGGCATGACGTGGACCAAGTTCAGCGAAAACCCCGTCCTCACGCGCGGTTCGGCCCACTTCCGCGATCCCAAAGTTTTCAGCTATCCCGGCCCGGACGGCCAGGAATGGGTGATGGCCGCCGTCGAGGCGGGGGAACAAAAGGTGGTCTTCTACCGTTCGGCGAACCTGCGGGACTGGGTGTTTGCCAGCGAATTCGGACCCGCCAACGCCCTCGGCGCAGAGTGGGAATGCCCCGATCTCTTTCCGCTGCCAGTAGACGGCGATCCTGCCCGGACCAAGTGGGTACTGGTGGTGAACCTCAACCCCGGCGCGCTAGCGGGCGGGTCAGGCGGCCAGTATTTCGTGGGAGATTTCGACGGCGCCACTTTCACCCCGGATCCTTCCTGCCTGCTGGATGACCCGGTGGATGGTGCGGCTGCCCGCAGGCCGGACGGCAACGCCATGGACAGGGACAGATTGCGCCAATGCAACTGGCTGGACTGGGGCCGCGACTATTACGCCGCTGTTTCCTTCAGCAACGTCCCCGACGGCCGGTGCCTCATGATCGGCTGGATCAACAACTGGGACTACGCCAACTCCCTCCCCACGTCACCTTGGCGGTCCGGCATGTCGTTGGTGCGGGAAGTCGGCCTGGAAACGGTGGACGGCCGGCCGCGGCTGGTCCAGACGCCTGTCCTGCCCGCTGCAGATATCGTCAACCGGCAGGTCATGGAGCCCTGCGGGCTTCCCGCGGAGGTCAGGCTGCCGGAAGCCGTCCCGGGCACGGCGCAGCTCATCGACGCCGAACTCCTGCCCGGAACGGCCCGGCAGTTCGGCTTTCGGCTGTTTCAGGCTGCCGACGGCGGTGCCGCCGCGGTATTGACCTATGACGCAGCCGCCGGGCTGCTGACACTGGACCGCAGCGAAGGCGGGATAACGGGGTTCCATCCGGATTTTCCGTCAGTCGAGTCGGCCCCTGTCGCCCTGGACAGCGGCGTGCTGGCGCTGCGCATTGTCGTCGACCATTGCTCGGTGGAGGTGTTTGCCCAGGGCGGCAGGGTGGTCCTGACGGACCTGGTGTTCCCGGCTCCAGGAAGCATGGGCACATCGGTCTTCGCTGACGGCGGGACGGCCGTTATCCGACGGCTGGAGGTCTCGGCAATCAGCTAGMSSRLDDARPQPPMLPPLPPAQQQPAPLLPVARSEQAETPHYRPAIHYTARDTWLNDPNGLVYYRGLYHLYYQNNPHGNVWGNMSWGHATSEDLVHWTEQPVAITCDAEEDVYSGSIVVDHANTSGFGTANNPPLVAVYTSAYKDGTPHAGTQAQSLAYSIDAGMTWTKFSENPVLTRGSAHFRDPKVFSYPGPDGQEWVMAAVEAGEQKVVFYRSANLRDWVFASEFGPANALGAEWECPDLFPLPVDGDPARTKWVLVVNLNPGALAGGSGGQYFVGDFDGATFTPDPSCLLDDPVDGAAARRPDGNAMDRDRLRQCNWLDWGRDYYAAVSFSNVPDGRCLMIGWINNWDYANSLPTSPWRSGMSLVREVGLETVDGRPRLVQTPVLPAADIVNRQVMEPCGLPAEVRLPEAVPGTAQLIDAELLPGTARQFGFRLFQAADGGAAAVLTYDAAAGLLTLDRSEGGITGFHPDFPSVESAPVALDSGVLALRIVVDHCSVEVFAQGGRVVLTDLVFPAPGSMGTSVFADGGTAVIRRLEVSAISPGPT0018745_443DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOSIDASE,PGPT0018745-fruA-K03332NANA
D1-29_002982067ftsH_1ATP-dependent zinc metalloprotease FtsHATGAAAGCTAAGAGTTTCTTCAAAGGCCCGGGCATCTGGATCGTTGTTGTGATCGGCATGCTCCTTGTGGCTTTTGCAACGCTGGCTCCCGGCGGCGCGGCCAGGATCGACACGGATAAGGGCCTTGAGCTCCTCGCCGACAGCGGCAAGGTGGAGCAGGCAAAAATCTTCGACGGCGAAAACCGCGTGGACCTTACCCTGAAGGACAACCTCCAGGTCAACGGCCAGGACAAGGGCAAGAGCGTCCAGTTCTTCTTCGTGGACGCGCGCGCGGGCGACGTCGTCAGGGCTGTCACCGACGCCCGGCCGGCCAGCGGCTACACGGACCAGCCCATCGAGAGCAACTGGTTCTCCGGACTGCTTTCCCTCCTGATCCCCGTCATTCTGCTGGGTGCACTCTTCTGGTTCCTGATGACCCGGATGCAGGGCGGCGGCTCCAAGATCATGCAGTTCGGCAAGTCCAAGGCCAAGATGGTCAACAAGGACATGCCGCAGGTCACGTTCGTGGACGTTGCCGGTGCGGACGAAGCGGTTGAGGAACTCCAGGAAATCAAGGAGTTCCTGCAGGAGCCGGCCAAGTTCCAGGCAGTGGGCGCCAAGATCCCCAAGGGTGTGCTGCTGTACGGCCCGCCAGGCACCGGCAAGACCCTCCTGGCGCGCGCCGTCGCAGGCGAGGCCGGCGTCCCGTTCTTCTCCATCTCCGGCTCTGACTTCGTGGAAATGTTCGTGGGCGTGGGTGCTTCCCGTGTCCGCGACCTCTTCGAGCAGGCCAAGGCAAACTCTCCCGCCATCATCTTTGTGGACGAGATCGACGCCGTGGGCCGGCACCGCGGCGCAGGCATTGGCGGCGGCAACGACGAACGCGAGCAGACCCTCAACCAGCTCCTGGTGGAAATGGACGGCTTCGACGTCAAGACCAACGTCATCCTGATCGCGGCCACTAACCGTCCCGACGTCCTGGATCCGGCCCTGCTGCGTCCGGGCCGTTTTGACCGCCAGATCTCGGTGGAAGCGCCGGACCTGATCGGCCGCGACCAGATCCTGCAGGTGCACGCCAAGGGCAAGCCGATGGCGCAGGGCGTTGACCTCAAGGCCGTCGCGAAGAAGACCCCGGGTTACACGGGCGCGGACCTCGCCAATGTGCTGAACGAGGCCGCACTCCTGACCGCGCGCTCCAATGCCAACCTCATTGATGACCGCGCCCTGGATGAGGCAATCGACCGCGTCATGGCCGGCCCGCAGAAGCGCAGCCGCGTCATGAAGGAGCACGAGCGCAAGATCACCGCGTACCACGAGGGCGGGCACGCCCTGGTGGCTGCCGCGCTGCGCAACTCGGCGCCGGTCACCAAGATCACCATCCTTCCGCGCGGCCGTGCCCTCGGATACACCATGGTGGTGCCGGACAACGACAAGTACTCGGTCACCCGGAACGAGCTGCTGGACCAGATGGCCTATGCCATGGGCGGCCGCGTCGCCGAGGAGATTGTGTTCCACGATCCCTCCACCGGAGCCTCCAACGACATCGAAAAGGCCACCGCGACGGCCCGCAAGATGGTCACCGAGTACGGCATGAGTGAACGCGTGGGTGCAGTGCGGCTGGGCCAGGGCGGCGGCGAACCGTTCCTGGGCCGTGACGCCGGGCACGAGCGCAACTACTCGGACCAGATCGCCTATGTGGTGGATGAGGAAGTCCGCCGCCTGATCGACCAGGCCCACGACGAGGCCTACGCCATCCTCATCGAGAACCGCGATGTCCTGGATGATCTCGCCCTGGAGCTCCTTGAACGGGAGACCCTGAACCAGGCCGAGATCGCGCAGATCTTCAGCTCCATCCGCAAGCGTGACTTCCGCGAGGTCTGGCTGTCCAAGGAGACCCGCCCGGTGCAGCAGGCAGGTCCCGTGGAGTCCCGCCAGGAGAAGGCCGAACGGGAGGCCCAGGAGGAAGCCAAGCAGGCCCGCCTGGACGAACCGCTGGATTCGCAGCCCCTGCACCCGCAGGGTGTCCCAGAGGACGCTGCATTCCAGGGCGGCGTCCCCGACTCGGGACCTGACGGCGTCCGCGGCTAAMKAKSFFKGPGIWIVVVIGMLLVAFATLAPGGAARIDTDKGLELLADSGKVEQAKIFDGENRVDLTLKDNLQVNGQDKGKSVQFFFVDARAGDVVRAVTDARPASGYTDQPIESNWFSGLLSLLIPVILLGALFWFLMTRMQGGGSKIMQFGKSKAKMVNKDMPQVTFVDVAGADEAVEELQEIKEFLQEPAKFQAVGAKIPKGVLLYGPPGTGKTLLARAVAGEAGVPFFSISGSDFVEMFVGVGASRVRDLFEQAKANSPAIIFVDEIDAVGRHRGAGIGGGNDEREQTLNQLLVEMDGFDVKTNVILIAATNRPDVLDPALLRPGRFDRQISVEAPDLIGRDQILQVHAKGKPMAQGVDLKAVAKKTPGYTGADLANVLNEAALLTARSNANLIDDRALDEAIDRVMAGPQKRSRVMKEHERKITAYHEGGHALVAAALRNSAPVTKITILPRGRALGYTMVVPDNDKYSVTRNELLDQMAYAMGGRVAEEIVFHDPSTGASNDIEKATATARKMVTEYGMSERVGAVRLGQGGGEPFLGRDAGHERNYSDQIAYVVDEEVRRLIDQAHDEAYAILIENRDVLDDLALELLERETLNQAEIAQIFSSIRKRDFREVWLSKETRPVQQAGPVESRQEKAEREAQEEAKQARLDEPLDSQPLHPQGVPEDAAFQGGVPDSGPDGVRGNANANANANA
D1-29_00299645folECOG0302GTP cyclohydrolase 1GTGAACTATTTCGACGACGACGACGCTCCCACCTCCGCCGGCCTCCTGGCGGAGGATGGCCACCACCGCAAAAAGCACGAAAAGGTGGACCGGCCCCGGATCGAGGCTGCGGTGCGTGAAATCCTGCTCGCCATTGGCGAAGACCCTGACCGCGGCGGCCTGCAGGACACTCCCAAGCGGGTGGCCAAGGCCTATGCAGAGGTGTTCGCCGGGCTGCACCACGACCCGGCGGAGATCCTTTCCACCACCTTTGACCTGGACCACGAGGAACTGGTCCTGGTCAAGGACATCCCGTTCTATTCCACCTGCGAACACCACCTGGTGCCGTTCCACGGCGTTGCTCACGTGGGCTACATCCCGTCCCACGACGGCAGAGTGACCGGGCTCAGCAAGCTGGCACGCCTCGTGGATATTTACGCGCGGCGTCCCCAGGTGCAGGAACGGCTCACCACGCAGATCGTCGAAGCAATGGTCAGCCACCTCAAACCCCGTGGCGCAATCGTTGTTATCGAATGCGAACACATGTGCATGTCCATGCGCGGTGTCCGCAAGCCCGGAGCGAAGACCGTCACCAGTGCGGTACGCGGGCAGCTTCATGACCCGGCCACCCGCGCCGAAGCCATGAGCCTCATCATCGGAAGGTAAMNYFDDDDAPTSAGLLAEDGHHRKKHEKVDRPRIEAAVREILLAIGEDPDRGGLQDTPKRVAKAYAEVFAGLHHDPAEILSTTFDLDHEELVLVKDIPFYSTCEHHLVPFHGVAHVGYIPSHDGRVTGLSKLARLVDIYARRPQVQERLTTQIVEAMVSHLKPRGAIVVIECEHMCMSMRGVRKPGAKTVTSAVRGQLHDPATRAEAMSLIIGRPGPT0007875_2006DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495NANA
D1-29_00300921folP1COG0294Dihydropteroate synthaseATGGACTCATTAGCTGCAGCCCCGGGAACCGGGCCCGCCACCTCCCCGCTTCCCATCCTGCGAAAACCCCGCCCGGCCGCGAAATTTGAAGACCTTCCCACGGACCGCACCCTGGTCATGGGCATCCTGAACGTCACCCCCGACTCCTTTAGCGACGGCGGCAGGCATGAGACGGCGGACAGCGCCATCGCAGCCGGCCTCCGGATGTTCTACGCCGGAGCGGACATCATCGACGTCGGCGGCGAATCAACGCGCCCCGGCGCGGAGGATGTCAGCCCGGAAGAGGAACAGCGCCGGGTGCTGCCCGTGATCCAGGCGCTGGTGAAAGCCGGCGCCCTGGTCAGCATCGACACCACCCACGCGTCCACGGCAACGGCCGCGCTGGATGCAGGCGCCGCCATCATCAATGACATCTCGGGGCTGAGCATTGAACCCGAGATGGCGGAGCTCGTGGCCACGTCGAAGGTGCCGTACATCCTCACGCACCGCCGCGGGGATGCCCGCACCATGAATTCGCTGGCCGAGTACACCGACGTTGCCGCCGAGGTAGTGGCCGAGCTCGCGGGTGTCCGTGACAAGCTCTACGCCGCCGGCGTCAGCCAGGAGCAGATCATCGTGGACCCCGGCCTGGGGTTCGCCAAGAACGATGCCCACAACTGGGAACTCCTGCGGAACCTGGACCGGCTCGAAAGCCTTGGCCATAAGGTCCTGGTGGGTGCTTCCCGCAAACGCTTCCTGGGCTCGCTGCTCACGGAGGCAGGCAAAGCCGCTGTTCCCGAGGAGCGCGACGCCGCCACCGCTGCGATCTCAGCCATCGTCGCCGCCCGCGGCGTCTGGGCCGTCCGCGTGCACAACGTCCGTCCCAGCCTTGATGCCGTCAAGGTCGCCTCGCGCCTGGCTGCTGCCCACACCACTCACTAGMDSLAAAPGTGPATSPLPILRKPRPAAKFEDLPTDRTLVMGILNVTPDSFSDGGRHETADSAIAAGLRMFYAGADIIDVGGESTRPGAEDVSPEEEQRRVLPVIQALVKAGALVSIDTTHASTATAALDAGAAIINDISGLSIEPEMAELVATSKVPYILTHRRGDARTMNSLAEYTDVAAEVVAELAGVRDKLYAAGVSQEQIIVDPGLGFAKNDAHNWELLRNLDRLESLGHKVLVGASRKRFLGSLLTEAGKAAVPEERDAATAAISAIVAARGVWAVRVHNVRPSLDAVKVASRLAAAHTTHPGPT0007915_949DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
D1-29_00301375folBCOG1539Dihydroneopterin aldolaseATGGACAGGATCACGCTGAGCGGTGTCACCGCCGTCGGCCATCATGGCGTGTTTGAATTTGAGCGCCGCGAGGGCCAGCCTTTTGTTGTGGACGCCGTCCTGCACCTGGACTTCTCCAAGGCAGCCGAATCCGACGACGTACGGGACACCGCCCACTACGGCGAAGTGGCGGAGCGGATCAAGGCCTGGATCACGGGTGAGCCGTTGAACCTGATCGAGGCGCTGGCCGTGCGGATTGCCGATGACCTTCTCAGCGGATTCCGGATCAACGCCGTGGACATCACCGTGCATAAACCGGAGGCGCCCATCGAGGTGCCTTTCGGCGACGTGGCCGTCACTGTCCACCGCGCCCGGAATGACGGGCAGAACCCATGAMDRITLSGVTAVGHHGVFEFERREGQPFVVDAVLHLDFSKAAESDDVRDTAHYGEVAERIKAWITGEPLNLIEALAVRIADDLLSGFRINAVDITVHKPEAPIEVPFGDVAVTVHRARNDGQNPPGPT0007905_2523DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007905-folB-K01633NANA
D1-29_00302540folKCOG08012-amino-4-hydroxy-6-hydroxymethyldihydropteridine pyrophosphokinaseATGAGTGCTGTCTATTCAAAGGCCGTGCTGGCCCTGGGCAGCAATCTGGGCGAACGGAACGACACCCTTTCCGAGGCCGTGGCGGACCTTGTTGATCCGCCGGAGGTCCGCCTCCTGGACGTTTCGCCGGTGGTGCAAACCAAGGCGGTGGGCGGCCCGGCCGGCCAGCCGGACTTCCTGAACATGGTCATCACCGTGGAAACCTCGCTGTCGCCGCTGCAGCTGCTGGAGCACTGCCAGGCTGTGGAGAACAAGCACCACCGCGTCCGGGAGGTGAGGTGGGGGCCGCGGACGCTCGACGTCGACATTATTGTCTACGGTGACCTCATCAGCGGGGATCCGGTGCTGACCCTCCCGCATCCCAGGGCCGCCACGCGCGCTTTTGTGCTGTACCCCTGGTCCCTGATAGAGCCCGCGGCCACACTGAACGGCGAACGGATCAGCACCCTGGCCGCCCGGGCCGGAGATTTTGACGATCTTGCGCCCTTTGATGGCTTCGGTGATTTTGACGGTGTGCCCCTGGCCGGGACGGCGGAGTAGMSAVYSKAVLALGSNLGERNDTLSEAVADLVDPPEVRLLDVSPVVQTKAVGGPAGQPDFLNMVITVETSLSPLQLLEHCQAVENKHHRVREVRWGPRTLDVDIIVYGDLISGDPVLTLPHPRAATRAFVLYPWSLIEPAATLNGERISTLAARAGDFDDLAPFDGFGDFDGVPLAGTAEPGPT0007910_669DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007910-folK-K00950NANA
D1-29_00303546hypothetical proteinGTGAAACCGATTAATCCCCTGCGCCTGCTGCTCATCGGCGTCATCCTTGCCGTCGCCGGATGGTCTGCCACGGTCCTCACCAACCGGTACAGCATGGCCACCCCGGTCCTGCCGGTCACGGCTCTCGCCACCATGGGCGTGATCGTGGTTATCACACTGATCCTTGGCATCCGGATCGTGAGGTGGCGCAACAGGAACCGGGACAAAACCAAAAAGAAGATCGCCCTGGATCCGATTCTCGCCGCACGGACCCTGGTGCTGGCGCAGGCCTGCGCCTACGCCGGGACTGTCCTGCTGGGCTGGCATGCAGGGATCTTCCTGGACCAGCTGCGGGTCTGGAGCCTGCGCAGCGATCAAGGCATTACCTGGGTTGCACTGGCCCAGGCCGGCGGAGGCCTGGCCATGATCGTGGTGGGACTGCTGGTGGAACGCTTTTGCAAGATCCCGCCGGAGGACGGCGACACCCCGCCCGGTGAAGGACAACCCGGCCGCGGGGCACGGGGCGAAGCCGCAGGGGAAGGCGAATATGCATACCGAGGCGATTGAMKPINPLRLLLIGVILAVAGWSATVLTNRYSMATPVLPVTALATMGVIVVITLILGIRIVRWRNRNRDKTKKKIALDPILAARTLVLAQACAYAGTVLLGWHAGIFLDQLRVWSLRSDQGITWVALAQAGGGLAMIVVGLLVERFCKIPPEDGDTPPGEGQPGRGARGEAAGEGEYAYRGDNANANANANA
D1-29_00304513hypothetical proteinATGCATACCGAGGCGATTGATCCGCCGGGCATCACGTGGCAGCGGGTGTCGCCCAAATACATCACGGTGCGCCTGGTGCAGTGGGCCGTCGGGAACCTGGTCACCCTGGTGGTGCTCAGCCTGCCCCTGGTCTTGGTCCTCAACAGGTGGTGGGCCTGGCCGCCGCTCTGGCTTGCCGTCACCATGCCCGCCGTGATGCTGGTCCTTGCGGTCTGGCGGCTTGTGCTGATCCCGCGGCAGGTCCGCGCCATCGGCTATGCCGAGCGCGACGACGACCTTTTGATCCGCACTGGCATCTTCTTCCAGCGGACCATGGCTGTCCCCTATGGCCGCATGCAGTACGTGGACATTGGAGTGGGGCCTGTGGAACGCGCGCTAGGCCTGTGCACCCTCAAACTGCACACGGCATCACCTGGCACCAACGCCCAGATCCCCGGCCTGCCCGCCGCCGAGGGGGCGCGCCTGCGTGAGCAGCTCACGGCCCGTGGCGAAGCCAGGCTGGCAGGACTGTGAMHTEAIDPPGITWQRVSPKYITVRLVQWAVGNLVTLVVLSLPLVLVLNRWWAWPPLWLAVTMPAVMLVLAVWRLVLIPRQVRAIGYAERDDDLLIRTGIFFQRTMAVPYGRMQYVDIGVGPVERALGLCTLKLHTASPGTNAQIPGLPAAEGARLREQLTARGEARLAGLNANANANANA
D1-29_003051545hypothetical proteinGTGACGGCTGACGGCCCTCCGCAGCCGGCGCAGCCTCCGGTTCAGCAGCCTGCACCGGCCCCCGACGGCGAATGGCTGCGCGTTCATCCGGCGTCGCCTTTTGTGCGCGGCTGGGTGGCCTTGGCCGCCATCGGCTTTTTCTTCGGGCGCGATATCTTCGAACGGATGCTTCAGGGCAGGCCCGTGCTGGAAGACGACTTCGCCGGCCGGGTCCCCTGGCTGCTCGCCGGGGGAGGGGCCGTGCTGCTGATCGCGGTGCTGGGCTTCATCCTCACCTGGTACTTCACCAAGTACCAGGTGTCTGGAGGCTACGTCAGGGTCAATACCGGCTTCCTCTTCCGGCAGCAGCGCCAGGCGCGGCTGGACCGGGTCCAGGCCATCGACATCGTGCAGCCACTGCTGGCCAGGGTCTTTGGCCTTGCCGAACTCAAATTCGAGGTGGCGGACGCCGGCGAGTCAGCGGTCCGGCTGGCCTACCTCCGGATGGACGATGCCCGGCAACTCCGGGCCACCATCCTGGCCCGGGCCGCCGGCGTGGTGCAGGATTCCGGAGGACCGCAGGAGGCCGCGCCCGAGGCGCCGGAGCAGCCTGTGCTGTCAGTGCCGCCGTCGCGCCTTTTCGGTTCGCTGCTGCTCAGTGAGCAGAGCTTCTTCATAGCGCTGGGCGGTGTGGCGTCCGTTGTCCTGTCCGCGGTGACGGACAACCGGGGGTTCTACTTCTACCTGATTCCGGCGGCCCTTGGGCTGGCAGCCACGTACTGGGCATCCTTCAACAAGGGTTACAACTTCACGGCTGCCATCTCACCGGACGGGATCCGCCTCCGCTACGGGCTGCTGGACACCCAGGCGCAGACGCTGCCGCCCGGCCGGATCCAGGCGCTGAAAGTGACGCAGCCTCCGCTGTGGCGGATCTTTGGCTGGTACCGGATCCAGGTGAACGTGGCCGGTTATGGTTTGGTGGGAGGCGACGGCGAGGGCACGTCCCGCACCACGCTCCTGCCGGTAGGAAAGCTGCCTGACGTGATGAGCATGCTTGCCCTGGTGCTGCCGGATCCGGGAACTCATGAGCCGGGCAAGGTTTTCGTCGCCGGCCTGACCGGACTGGATTCCGACGGCGGTTTTGTCACCACCCCGCGACGGGCCCGGCTGCTGGCACCCCTCGGGTGGCGGCGTAACGGTTTCACCGCCACTGACACAGCACTTCTGATCCGTTCAGGCCGCTGGTGGCGGCAGCTGGTGGTGGTCCCGCATCAGCGGACCCAGTCCATGGCCCTGCACCAGGGACCCTTGGCCAGGCGGTTCCGGGTGGCCGATCTGGTGCTCCACACCACTGCCGGGCCCGTGGTGCCCCGCCTGATCCAGGCCGATGTGGACCAGGCCAGGGCCCTGTTTGACGAACAGTCAGCGCGCGCCCGCCTGGCCCGGAAACGGCAAACCAGCGAACAATGGCTGGCCCAGGTTGCCCCTGGCCTGGCGGAACAACCGCAGCAGGGAACCGCCCCCGCCGCCGCCACCTCACTTCAGGAAGGCCAGCAGCATGGCTAAMTADGPPQPAQPPVQQPAPAPDGEWLRVHPASPFVRGWVALAAIGFFFGRDIFERMLQGRPVLEDDFAGRVPWLLAGGGAVLLIAVLGFILTWYFTKYQVSGGYVRVNTGFLFRQQRQARLDRVQAIDIVQPLLARVFGLAELKFEVADAGESAVRLAYLRMDDARQLRATILARAAGVVQDSGGPQEAAPEAPEQPVLSVPPSRLFGSLLLSEQSFFIALGGVASVVLSAVTDNRGFYFYLIPAALGLAATYWASFNKGYNFTAAISPDGIRLRYGLLDTQAQTLPPGRIQALKVTQPPLWRIFGWYRIQVNVAGYGLVGGDGEGTSRTTLLPVGKLPDVMSMLALVLPDPGTHEPGKVFVAGLTGLDSDGGFVTTPRRARLLAPLGWRRNGFTATDTALLIRSGRWWRQLVVVPHQRTQSMALHQGPLARRFRVADLVLHTTAGPVVPRLIQADVDQARALFDEQSARARLARKRQTSEQWLAQVAPGLAEQPQQGTAPAAATSLQEGQQHGNANANANANA
D1-29_003061056hypothetical proteinATGGCTAAACCCGGACGCCTTGGCGTCGGAATCATCGGTGCCGGCAAGGTGGGCGCAGTCCTCGGTGCGGCATTGCGCTCCGCCGAGCACGCCGTCGTCGGGGTTTCCGCCGTATCCGATGCCAGCCTGGAACGAGCTGAAGCCCTGCTTCCGGGGGTTCCGGTGATGGAGGTCCAGGACATCGTGGAGCGGTCCGAACTGGTGCTCCTGGCGGTCCCGGACGATGCCCTGGCCAGCCTGGTTCAGGGCCTGGCCAAACTTGGTGCCTGGCAGCCAGGCCAGCTGGTGGCCCATACGTCGGGCCGGTTTGGCGTGGGCGTCCTGCACCCGGTGCGGGCGGCAGGATCCATCCCGCTGGCCCTGCACCCAGCCATGACCTTCACAGGTATGAGCCTGGACCTGACCCGGCTCCTTGACTGCACGTTCGGTGTTACCGCTGACGCCGCGATGCTGCCCATAGCGCAGGCGCTGGTGGTGGAGATGGGGGCGGAGCCGGTAGCCATCGCCGAGGGAGACCGCACGCTGTACCACGCGGCCCTGGCCCATGGTTCCAACCACCTGGTTACCCTGGTGGCGCAGGCGTCCCAGCTGCTGCGGGACGTAGGCGTGGACGCACCCGAACGGATGCTGGGGCCCCTCTTGCGTGCCACCCTGGAGAACGCCCTCGCGTCCGGCGAATCGGCCTTAACCGGCCCGGTGGCACGTGGCGACGTCGGAACTGTCGCCGCGCACGCGGAAGCCCTGCGCGAGTACGACGCCGGATCGCAGGCTGATGTGCTTGAGGCGTACCTTGCCATGGCCCGGGCAACCGCCCGCCGTGCCGAAGGAAGGGGGCTGCTAAAGGCGGATCAGCTCAAGGCGATCCGCGAAGCCCTCCTGGAAAATGATGGAGGCGGCGGCCCCAACAACGGCGGCTCCAACAACGGTGGCGCCAACAACGGTGGCCCGGCCAGCGGCGACACCGGCGGTCAAGGCAGCGGTGACCCTTTTGACGAAGAAAACTCCGACGGCGATGACTCCGACGGTGGTTGGCCGCGGTCCGCGGGAGGACGATGAMAKPGRLGVGIIGAGKVGAVLGAALRSAEHAVVGVSAVSDASLERAEALLPGVPVMEVQDIVERSELVLLAVPDDALASLVQGLAKLGAWQPGQLVAHTSGRFGVGVLHPVRAAGSIPLALHPAMTFTGMSLDLTRLLDCTFGVTADAAMLPIAQALVVEMGAEPVAIAEGDRTLYHAALAHGSNHLVTLVAQASQLLRDVGVDAPERMLGPLLRATLENALASGESALTGPVARGDVGTVAAHAEALREYDAGSQADVLEAYLAMARATARRAEGRGLLKADQLKAIREALLENDGGGGPNNGGSNNGGANNGGPASGDTGGQGSGDPFDEENSDGDDSDGGWPRSAGGRNANANANANA
D1-29_00307930panCCOG0414Pantothenate synthetaseATGACTATCCAGCTGGTGACAACGGTGGCGGACCTGCGCGCGCAGGGCGCGCGGCTGCTGAGGGAAAAGCAAGGTGTGTCCCAGGGCCTGGTGCCCACCATGGGAGCTCTCCATGAGGGACATGCCCGGCTGGCGCGCACCGCCGTCGAACAGAACGATGTGGTGGTGGCGTCCATATTCGTTAACCCCCTGCAGTTCGGCGATGCAGTGGACCTGGACCGCTATCCACGGACCCTGGACGCGGACCTCGCGCTGCTGGAGGAGCAGGGAGTGGACATCGCATTTGCGCCGCCGGTGGAGGAGGTCTATCCCGAAGGGCCGCCGCTGGTGCGGGTCACAGCGGGTCCATTGGGGGAGAAGTGGGAGGGCGCATCCCGGCCGGGCCACTTTGACGGTGCCCTCACCGTGGTGGCCAAACTGCTTCATTACGGCACCCCGGGGACAGGGCTGCCGGCGGCCGGGGCTTTTGTGTCGGGTGATGGCGGGGGGCTTCCTGCCTACCGGGCGTACTTTGGCCAGAAGGACGCGCAGCAGTTGGCCCTGGTGCGGAGGATGGTGGCCGATCTTAACTTCCCGGTGGACATCGTTGCCGTGCCCACCGTCCGTTCGGGCGACGGACTGGCGCTGTCCAGCCGCAACCGCTTCCTGTCCGAGGACCAGCGCGAAGCGGCACTGGTGTTGTCCAGGGCGCTGCGGCTGCTGGAGGAGCGGGCGAACGCCCACGAGCCGCTGGACATCGAGTCGGCCCAGGCCCTGGTGGCGTCCCAGCCGCTGGTTGAGCTCGACTACTTCGACGTGGTGGATCCGCTCACCCTGGAGCCCCTGGCGGAGAATTGCCGGAAGACCCCTTTCCGCGGCGAGGGCCTGGGGATCGTCGCCGCGAGGGTGGGCCCGGTCCGGCTGATCGACAACGTGCCGCTAAGCTCCTGAMTIQLVTTVADLRAQGARLLREKQGVSQGLVPTMGALHEGHARLARTAVEQNDVVVASIFVNPLQFGDAVDLDRYPRTLDADLALLEEQGVDIAFAPPVEEVYPEGPPLVRVTAGPLGEKWEGASRPGHFDGALTVVAKLLHYGTPGTGLPAAGAFVSGDGGGLPAYRAYFGQKDAQQLALVRRMVADLNFPVDIVAVPTVRSGDGLALSSRNRFLSEDQREAALVLSRALRLLEERANAHEPLDIESAQALVASQPLVELDYFDVVDPLTLEPLAENCRKTPFRGEGLGIVAARVGPVRLIDNVPLSSPGPT0008750_496DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008750-panC-K01918NANA
D1-29_003081818COG3387TrehalaseATGGCGGCACCCATCGAGGATTACGCGCTTTTGTCAGATCTGGCCACCGGGCCACTCATCTCCCGGTCTGGGAGCGTGGACTGGCTTTGCTTCCCCCGTTTTGACTCACCGTCCGTCTTTGCAGCACTCCTTGGCAACGAAGATCACGGCAGGTGGCTGCTAGCGCCGGCGGACCCCGATGCCGTGGTGGTGAGCCGCCAGTACCTGGAGTCCACCTTCGTCCTGGAGACGACATGGCAGACCTCCACCGGGCAGATGCGTGTTACAGACCTAATGCCGCCTGGGCAAGGCAGATCCTCCCTCTTGCGGCGCGTCACATGCGTCCAGGGAACAGTTTCAGTGCGCCAGGAGCTCAGCATCCGGCCCCAATACGGTGCTCTCGTGCCATGGATGAGCCGCATCCGCAAGAACACCGTGCCCGGGAGCGGGGACGCGTTGCTGGCAATGGCCGGGCCTGATGCCTGGGCCCTGCAGGGGCCTCATTTGCCCGAGGCCCACGGCCACGTACGCCTCGGGGATTTTGAGGTCCCGGCAGGCGGGTCAGCCGACTTCGAACTGACGTGGTTCCCCTCCTACAAGGAGGTGCCGCCGCCTCTCGATTTTGACGCAGCGCTCGAGGAGACAACCGGCTATTGGACCCGTTGGGGCGGAAACTGCCGCCAGGACGGGATCTACGGGCCGGCCGTCAAGAGATCCCTGCTTGTCCTGCGGGCGCTGACCCACTACGAAACGGGAGGAATCGTCGCCGCTCCCACCACCTCCCTGCCAGAGGACTTTGGCGGTTCACGCAACTGGGACTACCGCTTTTGCTGGCTCCGCGACGCCGCCCTGACGCTTGAGGCCATGCTGACCCACGGGTACGAGACTGAGGCCCTCAAGTGGCGCAACTGGCTGCTGCGCGCGCTTGCCGGTGATCCTGAGGATGTCCAGATCATGTACGGGGTGGCCGGGGAACGCGACCTCCCGGAGAGGGTGCTGGACCACTTGCCCGGCTATCAGGACGCGCGGCCGGTCCGGATTGGCAACGCCGCGGTGGCCCAGTACCAGGCCGACGTGGTGGGCGAAGTGATGGTGGCCCTGGAACGGCTGCGCCTGGCCGGCGGAAAGGAAGACACCTTCTCCTGGGCGCTGCAGCGGGCCCTGCTGGGATTCGTCGAGAAGCATTTTGATGACAAGGACTTCGGGTTGTGGGAGATGCGGGGCACCGCCCAGTACTTCACACATTCCAGGGTGATGATGTGGGCGGCCTTTGATTGTGGTGTCCGCGCCGTTCGCGACCACGGCCTCCCGGGCCCGGCCGAGCACTGGGAAGAACTGCGGCGGCGGTTACGGTCGGAAATCATGGAGCGGGGTTTCAACGCCGAGCTGAAGTCCTTCACCCAGACGTACGGCGGCACCCAGACTGACGCAGCCCTCCTGGCCCTGCCGCAGGTTGGCTTTCTGGCTTACGACGACGAGCATATGCTCGGTACCGTGGCGCAGCTGGAGCGCGAGCTGCTGACTGACCAGGGGCTGCTGCTGCGCTACCGGACCGAGACGGGCGTTGACGGCCTTGAACCAGGCGAGCATCCCTTCCTTGCCTGTTCTTTTTGGCTGGTGGAGCAGTACGCACGCACGCGCCGCCAGGCCGAAGCCGGGGCACTGATGGACAGACTTGTGGGCTTCTCCAATGAGCTGGGCCTGCTGAGCGAAGAATACGCGCCGGAGGATCAGCGGATGGCAGGCAACTTCCCGCAGGCGTTCTCCCATTTGGCGCTGGTCCGGGCCGCCGACGCGATGCACGGAGTGGACCTGCTCAGCCTTGCAGTGCGGGACTGAMAAPIEDYALLSDLATGPLISRSGSVDWLCFPRFDSPSVFAALLGNEDHGRWLLAPADPDAVVVSRQYLESTFVLETTWQTSTGQMRVTDLMPPGQGRSSLLRRVTCVQGTVSVRQELSIRPQYGALVPWMSRIRKNTVPGSGDALLAMAGPDAWALQGPHLPEAHGHVRLGDFEVPAGGSADFELTWFPSYKEVPPPLDFDAALEETTGYWTRWGGNCRQDGIYGPAVKRSLLVLRALTHYETGGIVAAPTTSLPEDFGGSRNWDYRFCWLRDAALTLEAMLTHGYETEALKWRNWLLRALAGDPEDVQIMYGVAGERDLPERVLDHLPGYQDARPVRIGNAAVAQYQADVVGEVMVALERLRLAGGKEDTFSWALQRALLGFVEKHFDDKDFGLWEMRGTAQYFTHSRVMMWAAFDCGVRAVRDHGLPGPAEHWEELRRRLRSEIMERGFNAELKSFTQTYGGTQTDAALLALPQVGFLAYDDEHMLGTVAQLERELLTDQGLLLRYRTETGVDGLEPGEHPFLACSFWLVEQYARTRRQAEAGALMDRLVGFSNELGLLSEEYAPEDQRMAGNFPQAFSHLALVRAADAMHGVDLLSLAVRDPGPT0018651_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NANANA
D1-29_00309147hypothetical proteinATGACCCGCGAAGAAGCCTACTCCCGCTGCCCGGCGGACTCGTACGTGGAATACTACGGAAGCCAATGGCTGATCGTCCCGTTCGAGCCCGTTGAGCAGCCGCACTTCTTCGATTGCCGTCCCGGATCCCAGCCCGCCTTCGCATAGMTREEAYSRCPADSYVEYYGSQWLIVPFEPVEQPHFFDCRPGSQPAFANANANANANA
D1-29_00310264hypothetical proteinATGTCAGCAGAACGAATGTTCCACGACATGCGGGACTGTCCCGATCCGTGGCTGGATGAAGACATCCCTGCCGACGTGCGCCAGTTCGCGATTGAGTCCCTTCGGTGGCAGGCGCAGGAGATCATCGACGAAGTACTGCGCGGATCTGACCCCCGGGAAGAGCTGGCGCGGGCACGGCTCCGCCGCTGTGTAAATCAAAACCCCGGAAAGCCCGAGCTTGCCCTTCTTCAGCAACTCACGTTCAACCGGGACCTGCCTGACTGAMSAERMFHDMRDCPDPWLDEDIPADVRQFAIESLRWQAQEIIDEVLRGSDPREELARARLRRCVNQNPGKPELALLQQLTFNRDLPDNANANANANA
D1-29_00311573hypothetical proteinGTGGCGGCAATCGGTCCTGCCGATTCCGCAGAGCGGATTCTGGCCGTGGCCTACGAGCTCTTTTCACGGCGCGGTGTCCGGGATGTGGGCGTGAATGAACTCATCTCACGCTCGGGAGTAGCCAAGGCTACTTTCTACCGGCATTTTCCGTCCAAGAATGACCTGGTGCTGGCGTTCCTTGAGCAGCGAGACCAGTTGTGGACGGTCGAGGCGATTGTGGGCCAGGCGAAGCTCCGTGCCGGCTCGCCCGCAGAACAGTTGCTGGCCATCTTTGACGTTTTCTCTGACTGGTTCCTGCGCGAAGACTTCGAGGCCTGCTCGTTCATTAACGTGCTGCTTGAGATGGGCCCGGTGCATCCGCTGGGCCGGGCGAGCATCGACTACCTCGCCAAGATCAGGGGGCATGTGCAGGCGCTGGCGGAGGAGGCCGGGCTGCAGCGCACCGAGGAATTTGCCCGGTCCTGGCACATCCTGATGAAGGGGTCCATCGTGTCAGCCGCAGAAGGTGACACCGCAGCTGCGCATCGCGCCCAGCAGATGGCAGGCTGGCTGATCGAACACCACCGCGGCTAAMAAIGPADSAERILAVAYELFSRRGVRDVGVNELISRSGVAKATFYRHFPSKNDLVLAFLEQRDQLWTVEAIVGQAKLRAGSPAEQLLAIFDVFSDWFLREDFEACSFINVLLEMGPVHPLGRASIDYLAKIRGHVQALAEEAGLQRTEEFARSWHILMKGSIVSAAEGDTAAAHRAQQMAGWLIEHHRGNANANANANA
D1-29_00312567yraACOG0693Putative cysteine protease YraAATGTCAGAACACAGCATCGCAGGCAAGAAGGTGGCATTCCTGCTGACCGACGGCGTTGAGCAGGTGGAGCTCACCAGCCCATGGCAGGCCGTGAAGGAAGCAGGCGGCCAGCCCGTCCTGGTGGCACCATCCAGCGGCCGGCTGCAGGGCTACAACGGCACCGATAAGGGCGATACCTTCAATGTGGACCTCACCGTGGCGGAAGCCAATGCCTCCGAATTTGACGCCCTGGTGCTGCCGGGCGGAGTGGTGAACGCCGACCACCTGCGGGTGGACAAGGATGCCCAAAACTTCACCCGGAGCTTCTTTGAACAGCACAAGCCAGTGGCCGCCATCTGCCACGGTCCGTGGTTGCTCATCGAAGCCGGCGTGATTCGGGGCCGCAACGTTACCTCGTATCACACGCTCCAGACTGACCTGAAAAATGCCGGAGCCAACTGGAGTGACGAGGAAGTGGTGGTGGACCAGGGCCTGGTGACCAGCCGGAGCCCAAAGGACCTCCCCGCCTTCAACAGCAAAGTGGTGGAGGAGATCTCGGAAGGCCAGCACGCGGGGCAGACAGCATAGMSEHSIAGKKVAFLLTDGVEQVELTSPWQAVKEAGGQPVLVAPSSGRLQGYNGTDKGDTFNVDLTVAEANASEFDALVLPGGVVNADHLRVDKDAQNFTRSFFEQHKPVAAICHGPWLLIEAGVIRGRNVTSYHTLQTDLKNAGANWSDEEVVVDQGLVTSRSPKDLPAFNSKVVEEISEGQHAGQTAPGPT0015010_1453DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520NANA
D1-29_003131428ribZRiboflavin transporter RibZATGCAGGCTTCCAATGTGAAGCTGTCCGCGCCGGAGAAGATGTCCCGGGAGTCGGTGACCATCATTGCCACCCTGCTGGTGGCAACTTTTGTAGTGATCCTCAACGAGACCATCATGAACGTTGCCCTGCAGCGGCTGATGGTTGACCTGCGGGTTGATGCGCCCACGGTGCAGTGGCTCTCCACCGGCTTTATGCTGACCATGGCCGTGGTCATCCCCACCACCGGATTCATTCTGCAGAGCCTGTCCACGCGGGCCGTTTTTATGCTGGCGATGGGCCTGTTCGCCGGCGGCACGGCCCTGGCCGCGGTGGCGCCGGGCTTTGAGCTGCTGCTCCTGGCCCGCATCATCCAGGCCGGCGGCACGGCCATCATGCTTCCTCTGCTGATGACCACCATCCTTACGCTGGTTCCCGTGGCCAAGCGCGGTGCGGTGATGGGCAACGTGAGCATCGCCATCTCGGTGGCCCCCGCCATGGGCCCCACCGTTTCAGGGCTCATCCTGGAACACTTCACGTGGCGTTTTATGTTTGTGTTTGTCCTTCCGGTCGCGCTCGCAGCGCTGGCCATCGGGGCGAAGTACCTCACCAACGTGGGCGAAAGTGAGAAGACGAAGCTCGACTTCCTCTCCGTGGTCCTGACCATTCCTGCCTTCGGCGGGGTGGTTTACGGCCTCTCCCAGATCGGCGGCGGCCATGGCGGACAGGCCGGCCCCGGCCCGGCGGCCATTGCGGCGCTTGTCATCGGTGCCGCCAGCCTAGCCGTGTTCGTGCTGCGCCAGCTCCGGCTGCAGAAGGCCGACGCTCCGCTGCTGGACCTCCGCGCGTTCAACTTCCGGATGTTCACGGTGTCGGTGCTGCTGATGGTGGTGGCCATGATGGCCCTCTTCGGCGGTGTCATCCTGCTTCCGCTCTACCTGCAGGAGATCCGCGGCCTGGGCTCGCTGGAAACAGGACTCGCGCTGCTGCCCGGCGGCCTGGCCATGGGTCTCCTGGGCCCGGTCATTGGGCGGCTGTTCGATAAGGTGGGCCCGTTGCCGCTGACCGTGACCGGGTCCGTCCTGATGGTGCTGTCCCTGTGGCAGTTCTCCATGCTGGACGCCGGAACGCCCGTCTGGTGGATCGTTACCCTTCACATCGGGCTGAGTTTCGGCTTGGCGCTGCTGTTCACGCCGGCGTTCACCACCGGTCTGAACCCGTTGCCGCCGCACCTTTACTCGCACGGTTCGGCCATCATGAGCACCACGCAGCAGGTAGCCGGGGCCGGCGGAACGGCGCTGCTGGTGTCCATCTTCGCCGTGGTTTCGGCCACCTCGGGCCTCGTCGCAGGGATGAATGCCGCTTTCCTGACGGCCGCGGTGATAGCCGTCGCCGCCGTCGTACTTTCCGCCATGATGCGCAAAACCGAAGGCGCCCCCCACGGTCACTAGMQASNVKLSAPEKMSRESVTIIATLLVATFVVILNETIMNVALQRLMVDLRVDAPTVQWLSTGFMLTMAVVIPTTGFILQSLSTRAVFMLAMGLFAGGTALAAVAPGFELLLLARIIQAGGTAIMLPLLMTTILTLVPVAKRGAVMGNVSIAISVAPAMGPTVSGLILEHFTWRFMFVFVLPVALAALAIGAKYLTNVGESEKTKLDFLSVVLTIPAFGGVVYGLSQIGGGHGGQAGPGPAAIAALVIGAASLAVFVLRQLRLQKADAPLLDLRAFNFRMFTVSVLLMVVAMMALFGGVILLPLYLQEIRGLGSLETGLALLPGGLAMGLLGPVIGRLFDKVGPLPLTVTGSVLMVLSLWQFSMLDAGTPVWWIVTLHIGLSFGLALLFTPAFTTGLNPLPPHLYSHGSAIMSTTQQVAGAGGTALLVSIFAVVSATSGLVAGMNAAFLTAAVIAVAAVVLSAMMRKTEGAPHGHPGPT0028570_287DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028570-lmrB-K18926NANA
D1-29_00314834hypothetical proteinATGACGCGTGAGAACATCAGGACCCCGGACGGCGGCACGCTGGAGGTATTTTCCACTGGCTCGGAACTGGCCTCGGCCGGTTCAGGCGTGGTGGTTGTTCCGCCCTCCATGGTGACGGCCGCCGACTACACCAAGTTTGCGCAAAAACTCAGCGCCGCTTTGGGCCGGCCGGTCCACACTTTCAACCGCCGGGGCCGCGGCTCTTCCTCTCCACAGCCGGAGGACTACACCCTGGACGTGGATATCCGCGACCTTGACGTGGTCATGAAGCACACGTCCAGCACCGACGTATTCGGCCACAGCTTCGGCGGCGCCGTGGCGCTGCACGCTGCCCGCACCCTTCCCGTGGAGCGGCTGGCCGTCTACGATCCCGCCGTTTCCGTGAACCACAGCGTGAAGGCTGACTGGACTGCCGAGTACGAGCGGGCCACCGCAGCCGGCGACGACGACCGTGCCCTGGCCGTGCTGAGCAAGGGACTGGAGACCGGCGGCACCTTCGCCCGGATGCCGCTGTCCATGCTCACCATCGCGAACAAGCTCACGGCAGGCACACACCTGGGAAAGCAGCAGCGCGAGCTGATGCGCACCGGCGTCCGTGAAATCAAGGCCATCATCGCGGCCGACATGCCTGCGGAGCCGTTCCTGGCACTGCCGCTGGAAACCCTGATTATTGTGGGCGAGAAGAGCCCGGCGTACTTCGGCGTGGCCTGCGGCCAGATCCACGATGTCCTGTCCGGGTCCAGCTACACCATCCTGCCCGGCTTCGGCCACGACGGCGTCATCCGGGCACCGGACAAGCTGATCACCGAGCTCCGGGACTTCTTCGCCAGCTGAMTRENIRTPDGGTLEVFSTGSELASAGSGVVVVPPSMVTAADYTKFAQKLSAALGRPVHTFNRRGRGSSSPQPEDYTLDVDIRDLDVVMKHTSSTDVFGHSFGGAVALHAARTLPVERLAVYDPAVSVNHSVKADWTAEYERATAAGDDDRALAVLSKGLETGGTFARMPLSMLTIANKLTAGTHLGKQQRELMRTGVREIKAIIAADMPAEPFLALPLETLIIVGEKSPAYFGVACGQIHDVLSGSSYTILPGFGHDGVIRAPDKLITELRDFFASNANANANANA
D1-29_00315855hypothetical proteinGTGAAAGAACAGGCAGTTACCACCCACGACGGCGGCCGGTTGGCTTTGTACAGCTACGGCGACGTGGATGCGCCGGGCGAACGCCGTGTGGTGGTTATCGGCGGAGCTTTCCTCACCGCCCTCATCTATCGCCCGTTCTCGATCGCGCTGGCCAAAGGCCTCGGCGAAGGCTGGGCTGTGGACGTCTATGACCGGCGCGGCCGGGGCAAGTCCAGCGAACAGCCGCCGGGGTATTCCATGGCCACCGAAATCGCCGACGTCCGCACCGTCATGGACGCAACCGGGGTCCGCAATATCCTGGGCCACAGCCTGGGCGGCTCGGTGGCGCTCAATGCCGTGCAGGAGTTTTCGGGAACCGCCTACGAACCCGACAAATTGGCGGTCTACGACGCCGCCGTGAACATCGATGGCAGCCTGGACACCTCGTGGCTGGACGATTTCGAGCAGGCCGTCAACGCCGGCAACGTGGGACATGCACTCGCCCGGCTCAAAAAGGGCATGCAGCCGGGTTCCGCCCTCTCCAAGATCCCGGAGCCTGTCCTGGCGGGGCTGATGGCCCTTGTCTCCCGGACCAAGGTCAACCGGATTTTCCGGGACCTGATGCCCAGCGGGGTGGGTGAACTGCGGGCAGCCTACGACGAAGCCGAGCATGTGCGTGACTTCGCGGTCCTTCCCGCCAACACGCACTTTATGGTGGGCGGCAAGAGCCCCGGCTACTACAAAGTCACGGCCCAGCGCCTGCATGCTGCCGTGCCCGGGAGCACGTACGAACTCTCACCCAAGGGTTTCCATGGCTCCATCCCCGCGGCTGTGGAGGAACTCGTGACGGACATCTCCGAGTACTTCAAGGGGTGAMKEQAVTTHDGGRLALYSYGDVDAPGERRVVVIGGAFLTALIYRPFSIALAKGLGEGWAVDVYDRRGRGKSSEQPPGYSMATEIADVRTVMDATGVRNILGHSLGGSVALNAVQEFSGTAYEPDKLAVYDAAVNIDGSLDTSWLDDFEQAVNAGNVGHALARLKKGMQPGSALSKIPEPVLAGLMALVSRTKVNRIFRDLMPSGVGELRAAYDEAEHVRDFAVLPANTHFMVGGKSPGYYKVTAQRLHAAVPGSTYELSPKGFHGSIPAAVEELVTDISEYFKGNANANANANA
D1-29_00316585hypothetical proteinATGGGCCTCATGGCAAGACCTGTAGTGCACACCGATTCCCTGAGGCAGGACCTGTTGGCCGTGACCGCTGACTTGGTGGATCGGGACGGTCCGGCGCGCGTGACCCTGCGGGATGTGGCAGCCGCCGCCCGGACGTCCACTACTGCCGTCTATTCCCTCTTTGGCGGGAAATCACAGCTCCTGACGGCGGTTGTGGACGACGGGTTCCGGTCCTTCCGCGACTCACAGCTGGCCGCTTCCTCGGGCGGACTCCGGGGCCTCGGCGTGGCCTACCGGGACTGGGCGCTGCAGCACACGTCGCTGTACCGGCTCATGTTTGGTGGTGCGCTGGCCGGCTACGTCGATTGCCAGCCAAGCCCGGAGGTTGCCGCCGACGCCATGGAACCCCTCTTAGACGCAGTCGCTTCTGCCCAGGCCGCCGGCAACCTGCTGGAGGCACCCACGGAGGTGGTCGCCGTCGCCATCTGGGGCCAGGTCCATGGGCTGGTGAGCCTGGAACTGGCACAGGTGGGGCCGTCGGACGCAGACTGGGCTGCCGCATACGGCGCGGCCCTCGACGCCGTCGCCCGCGGCTGGGCCGCCTGAMGLMARPVVHTDSLRQDLLAVTADLVDRDGPARVTLRDVAAAARTSTTAVYSLFGGKSQLLTAVVDDGFRSFRDSQLAASSGGLRGLGVAYRDWALQHTSLYRLMFGGALAGYVDCQPSPEVAADAMEPLLDAVASAQAAGNLLEAPTEVVAVAIWGQVHGLVSLELAQVGPSDADWAAAYGAALDAVARGWAANANANANANA
D1-29_00317519hypothetical proteinATGACACAGAAGGTATTTCCGGGCCGGTACACCGCTGACCCGCAGCGTGAATCCGTGACAGTCTTCCTAATCGGGATGCGGGCAAACCGCTGGTGGAAGGTCGGGACCGTCGGCAAGGTGGCTGCAGGCATGCCCCGGATGCTCCAGCATCTGGCCGCGGACCCGTCGGCCGGAATGCTTGGATACGAGCAGTGGTTCGGCCGCACCACCATGCTGCTGAGCTACTGGGAGAGCCCGGAGCATCTGCGGAAATTTGCCGCGGACCGGGAATCGCCCCATCTGGCACCCTGGCGCCGGTTCATGAAGGAACTCTCCGGAACCGGCGACGTCGGCGTCTGGCACGAGACGTACCAGGTGCCTGCCGGCGGCATCGAGGTTGTCTACAACGGGATGCCTTTGTTTGGTCTCGCCAAGGCCACGGCACATATCCCTGTTGGCGCCGGGACCAACACCGCAAAGCAGCGGATGGGCCGGACCGCGGGCCACGCCGCCGGAGGGGCTGGCCCGGAAGGGCACTGAMTQKVFPGRYTADPQRESVTVFLIGMRANRWWKVGTVGKVAAGMPRMLQHLAADPSAGMLGYEQWFGRTTMLLSYWESPEHLRKFAADRESPHLAPWRRFMKELSGTGDVGVWHETYQVPAGGIEVVYNGMPLFGLAKATAHIPVGAGTNTAKQRMGRTAGHAAGGAGPEGHNANANANANA
D1-29_00318984hypothetical proteinGTGGAGACCTGGACAGTTGAAACGGAAGACGGCGGCCGCCTGGACGTTCACACGTTCCTGACTCCGGCCGGCAGCCTCAGGGCCGGGACCGTCAGCACGGCCCGCACCGCTGCCTTGAAGGTTCCGGGGGCAAGCACCCCCACGGGCGGGGAGCCGACGACGGCGGGCGCTCCCGGCGTCGTACTCATCCACGGCACTCTGGTAACCGATGCCCTCTACCGGCCTTTCGCCCGGAAGCTCAGCGTGCTGCTGGGCAGGCCGGTGCACTGCTATAACCGGCGCGGCAGGGGCGGTTCCGCGCCGCAGCCAGCCGACTATTCGGTGAAGACCGAGATCAGCGATCTGGCAGCGGTGATGCGTGAGACCGGGTCGACGGACGTGGTGGCTCACAGCTACGGCGGGTTTGTGGCGCTGCAGGCCGCCCGGACACTGCCGATGGGCCGGCTGGTGACCTATGACGCCGCCGTGTCCCTGTCCGGGAGCCTGAGCCACCGGTGGCGGCCCGAGCTGGAGGACGCCGTTACTGCAGGCGAGCTCAACCATGCCTGGGCACACCTGGTGCAGGGCCTTGCAACCGCCGGTCCGGTCTCCTACCTGCCGCTTGGCGCCTTACGAATGTTGAGCATACTGTCCGCGCGGACCAATGTGGGTGCGGAAATGCGGCAACTGCTGCCCACCGCCGTGGCGGAGATGCGGGCAGTGCTTGACGCCGACGCCGAACTGGAGGACTTCACCTCGCTCAACACCCCCATCCTGATGCTCAGCGGCGGCTGGAGCCCGGCATACTTCGCGCAGACGGGCCGGGAGCTCGCCGCGGCGGTTCCGTCCATCCAGTTCGCCGTGGTACCCGGCCAGCTCCACGAGGGTCCGATCCGCCCAGGCAAAGGCCTCGCGGTGCGCGTGGCACGCTTCATCAACGGAGGTGACAGCGAAGTCCGCCGACTCGGACGACGGCGGCCCAGGGGCGGCCGGTCGGGCGGGTAGMETWTVETEDGGRLDVHTFLTPAGSLRAGTVSTARTAALKVPGASTPTGGEPTTAGAPGVVLIHGTLVTDALYRPFARKLSVLLGRPVHCYNRRGRGGSAPQPADYSVKTEISDLAAVMRETGSTDVVAHSYGGFVALQAARTLPMGRLVTYDAAVSLSGSLSHRWRPELEDAVTAGELNHAWAHLVQGLATAGPVSYLPLGALRMLSILSARTNVGAEMRQLLPTAVAEMRAVLDADAELEDFTSLNTPILMLSGGWSPAYFAQTGRELAAAVPSIQFAVVPGQLHEGPIRPGKGLAVRVARFINGGDSEVRRLGRRRPRGGRSGGNANANANANA
D1-29_003191533lysS1COG1190Lysine--tRNA ligase 1GTGACTTCCCAAAACGCCCCCGCCCCCAAGAATGCCCCCGAGCCGCTCGACGCCAGCGAACAGATGCGCATCCGCATGGAAAAGCGCGCCAAGCTGATCGAGCGCGGCACCGAGGCATATCCGGTGGGTGTGGAGCGCACGCATTCCCTCACAGAGATCCGTGAGAAGTACGCGCACCTGCAGGCTGATGAAACCACCGGTGACATCGTGGGGGTAACGGGACGCGTGGTGTTTGTCAGGAACACCGGCAAGCTCTGCTTCGCCACACTGCAGGAAGGCGGCGTGGACGGCAAGGGCACCAGGCTGCAGGCCATGCTGAGCCTGGCCGCCGTGGGTGAAGAAGCGCTCGCGGACTGGAAGGCCCTGGTTGACCTGGGCGACCACGTGTTTATCAAGGGCGAGGTGATTTCCTCCCGCCGTGGCGAACTGTCCGTGATGGCAGAGTCCTGGTCCATGGCTTCCAAGGCGCTCCGCCCGCTGCCCGTCCTGCACGCGGAGCTGAACGAGGAAACCCGCGTCCGCCAGCGCTACGTGGACCTGATGGTGCGCGACGAAGCCCGGGAAATGGTCTACACCCGTGCCGCGATCACCCGTTCCATCCGCGAGAGCCTCCACCGCCACAATTATGTGGAGGTGGAAACCCCCATCCTGAACCTGGTTCATGGTGGAGCCCTGGCCCGCCCGTTCGAGACGCACATGAACGCGTTTGACCAGAAGATGACGCTGCGCATCGCCACCGAGCTTTACCTCAAGCGCGCCGTAGTGGGCGGGATCGACCGCGTCTACGACATGGGCCGGGTTTTCCGCAACGAGGGCGTGGACTCCACCCACAGCCCGGAATTCACCACCCTTGAGTGCTACGAGGCTTGGGCGGACCAGTTCGTCATGGCGGACCGCATCAAGGAAATCATCCTGGATGCGGCAGACGCTGTGGGTGCAGGACGCGCCCTGCAGACAGAGGCCGGGGAGATCAATCTCGACGGCGAATGGGCCTGGCTGTCCGTCTACCCCGGGCTTTCCGACGCCGTTGGCCAGGAAGTTACCCCTGAGACCTCCCTTGAGGTGCTGCGCGAAATCGCCGAAAAGCATGAGGTCAAGGCCGATCCCAAGTGGGACGCTGAAAAGCTGGCGGTTGAACTCTTTGGCGAAATCGTGGAGCCCACGCTGCTGAACCCCACATTCGTGTACGACTACCCGCCGTCCGCCCAACCGCTGGCCCGCCCGCACCGGAAAGACGGCCGCCTGATCGAGGCCTGGGACCTCATCATCGGCGGCATGGAACGCGGCACTGCGTTCTCCGAACTGATCGACCCCGTCATCCAGCGTGAGCGTCTCACCGAGCAGTCCCGTCACGCCGCCGCCGGCGATGACGAGGCCATGCAGTTGGACGAGGACTTCCTTCGGGCCCTCGAATACGGCGCCCCTCCCATGGGCGGCATCGGCCTCGGGATCGACAGGCTGGTCATGCTGTTCACCGGGGCCGGCATCCGGGAGACAATACTCTTCCCGCTCCTCAAGCCCGAGGTGAACTAAMTSQNAPAPKNAPEPLDASEQMRIRMEKRAKLIERGTEAYPVGVERTHSLTEIREKYAHLQADETTGDIVGVTGRVVFVRNTGKLCFATLQEGGVDGKGTRLQAMLSLAAVGEEALADWKALVDLGDHVFIKGEVISSRRGELSVMAESWSMASKALRPLPVLHAELNEETRVRQRYVDLMVRDEAREMVYTRAAITRSIRESLHRHNYVEVETPILNLVHGGALARPFETHMNAFDQKMTLRIATELYLKRAVVGGIDRVYDMGRVFRNEGVDSTHSPEFTTLECYEAWADQFVMADRIKEIILDAADAVGAGRALQTEAGEINLDGEWAWLSVYPGLSDAVGQEVTPETSLEVLREIAEKHEVKADPKWDAEKLAVELFGEIVEPTLLNPTFVYDYPPSAQPLARPHRKDGRLIEAWDLIIGGMERGTAFSELIDPVIQRERLTEQSRHAAAGDDEAMQLDEDFLRALEYGAPPMGGIGLGIDRLVMLFTGAGIRETILFPLLKPEVNPGPT0012225_2597DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567NANA
D1-29_00320180hypothetical proteinGTGGAATACGTCGCAGTACTCCTTCCTTCCCTGGTTGTTGGCCTGCTTTTCTGGTTCGCCATGAAATCCATTTTTAATGCCGACAAAGCGGAGCGGCAGGCCGAAGCCCGGGCGCAGGCTGAAGCGGAAGCCCGCAAAACGGACACCCCGAACGGGCCCGAAGCGGATACCAATAAATAAMEYVAVLLPSLVVGLLFWFAMKSIFNADKAERQAEARAQAEAEARKTDTPNGPEADTNKNANANANANA
D1-29_00321330lsr2Nucleoid-associated protein Lsr2ATGGCACAGAAAGTAAACATCATCCTCGTAGATGATCTGGATGGGGGAACTGCGGACGAGAATGTCCGTTTTGGCCTCGATGGGGTCAGCTACGAAATTGATCTGTCCGCAGCCAACGCCGCCGAGCTTCGTTCGGCACTGGAGCGGTATGTGGCCGCAGCACGCAAGACATCCGCGGGCCGCGCCACCCGAACAAAAGCCGCATCAGGCGGGCGCGCCAATGATTCTGCGCAAATCCGCCAGTGGGCACGCGAAAACGGCTACACGGTTAACAGCCGGGGCCGAATTCAGGCTGAAATCCAGGAAGCCTACCAAAAGGCCAATTCCTAGMAQKVNIILVDDLDGGTADENVRFGLDGVSYEIDLSAANAAELRSALERYVAAARKTSAGRATRTKAASGGRANDSAQIRQWARENGYTVNSRGRIQAEIQEAYQKANSNANANANANA
D1-29_003222493clpC1COG0542ATP-dependent Clp protease ATP-binding subunit ClpC1ATGTTTGAGCGATTTACGGACCGTGCCCGTCGCGTAGTTGTGCTTGCCCAAGAAGAGGCACGCATGCTGAACCACAATTACATTGGTACCGAACACATCCTCTTGGGTCTAATCCATGAGGGTGAGGGCGTTGCCGCCAAAGCTCTTGAGTCCTTGAGCATTTCGCTCGACGGCGTTCGCGAGCAGGTGCAGGAGATCATCGGCCAGGGCCAGCAGGCCCCGTCCGGACACATCCCCTTCACCCCCCGCGCCAAGAAGGTGCTGGAACTCTCGCTGCGCGAGGCCCTGCAGCTTGGCCACAACTACATCGGCACGGAGCACATCCTGCTGGGACTCATCCGTGAGGGTGAGGGCGTTGCCGCCCAGGTGCTGGTGAAGCTCGGCGCTGACCTGAACCGTGTCCGCCAGCAGGTCATCCAGCTCCTCTCCGGCTACCAGGGCAAGGAAACCACCGGCGCAGGCGTCGGTACGGGCCAGCCCGAAGGTACTCCGGCCGGTTCAGTTGTGCTGGACCAGTTCGGACGCAACCTGACCCAGGCTGCGCGCGAGAACAAGCTGGATCCGGTGATCGGGCGCGAGTCGGAAATGGAACGCGTTATGCAAGTCCTTTCCCGCCGCACCAAGAACAACCCGGTCCTGATCGGTGAGCCGGGCGTTGGCAAGACGGCCGTCGTCGAGGGCCTGGCCCAGGCGATTGTCCGCGGCGACGTCCCGGAAACCATCAAGGACAAGCAGCTCTACACCCTGGACCTCGGGTCCCTGGTGGCCGGCTCCCGGTACCGCGGTGACTTCGAAGAGCGCCTGAAGAAGGTCCTCAAGGAAATCCGCACCCGCGGCGACATCATCCTCTTCATTGACGAGATCCACACCCTTGTTGGTGCAGGTGCCGCCGAAGGCGCAATCGACGCCGCGTCCATCCTGAAGCCCATGCTGGCCCGCGGTGAACTGCAGACCATCGGTGCCACCACGCTGGACGAATACCGCAAGCACATCGAAAAGGACGCAGCGCTGGAGCGCCGCTTCCAGCCGATCCAGGTCAAGGAACCCTCCGTTGCGCATGCGATCGAGATCCTTAAGGGCCTGCGGGACCGCTACGAGGCACACCACCGCGTCACCATCACCGACGGCGCCCTCGCCTCGGCGGCCAACCTGTCCGAACGCTACATTTCAGACCGGTTCCTGCCGGACAAGGCGATCGACCTCATCGATGAAGCCGGTGCACGGCTGCGTATCCGCCGCATGACTGCTCCGCCGGAGCTGAAGGCCATGGATGAGCGGATCGCCAAGCTGAAGATGGAGAAGGAATCCGCCATCGACGCGCAGGACTTCGAAGGTGCCGCTTCGCTCCGCGACAAGGAGCAGAAGCTCATCACCGAGCGTTCGGAGAAGGAACGCCACTGGAAGTCCGGCGGCATGGACGATATCTCCGAGGTGGATGAGGATCTCATCGCCGAGGTATTGGCCAACTCCACCGGCATCCCGGTGTTCAAGCTGACGGAGGAAGAGTCCTCGCGCCTGCTGAAGATGGAAGACGAGCTGCACAAGCGTGTGGTGGGCCAGAACGAGGCCATCAAGTCGCTGTCCCAGGCCATCCGCCGTACCCGTGCAGGCCTCAAGGACCCCAAGCGGCCCGGTGGATCGTTCATCTTCGCCGGCCCTACCGGCGTCGGCAAGACCGAGCTGGCAAAGGCCCTGGCTGAGTTCCTGTTTGGTGAAGAGGACGCCCTCATCACCCTGGACATGTCCGAGTACTCCGAGAAGCACACCGTCTCGCGGCTCTTCGGTGCCCCTCCGGGCTACGTCGGCTACGAGGAAGGCGGACAGCTGACCGAAAAGGTACGCCGCCGCCCGTTCTCCGTGGTCCTGTTCGATGAAGTTGAAAAGGCCCACGCGGACCTCTTCAACTCACTGCTCCAGATCCTGGAAGACGGCCGCCTGACCGACTCCCAGGGCCGGGTGGTGGACTTCAAGAACACGGTGATCATCATGACCACCAACCTGGGCACCCGCGACATCTCCAAGAGTGTTGCCACCGGCTTCCAGTCCGGTACGGACACGCAGACCGGCTACAACCGGATGCGCGCCCGTGTGACGGAGGAGCTCAAGCAGCACTTCCGCCCGGAGTTCCTGAACCGTGTGGATGACGTTGTGGTGTTCCCGCAGCTGACCCAGGACGAGATCGTCGAGATCGTGGACATGTTCGTGAGCCGGCTGGAGAAGCGCCTCAAGGACAAGGACATGGGCATCGAGCTCACCACCGCGGCCAAGGTACTGCTGGCAACCCGAGGCTACGATCCAGCCATGGGTGCACGGCCGCTGCGCCGCACCATCCAGCGCGAGATCGAGGACCAGCTCTCCGAGAAGATCCTCTTCGGCGAGATTCACGCCGGGGACATCGTGGTGGTGGATGTGGACGGCGAAGGCGACGACGCCAAGTTCACCTTCGCCGGCAACGCCAAGCCGCGCATCCCCGAGATCGCCCCGAGCGTCTAAMFERFTDRARRVVVLAQEEARMLNHNYIGTEHILLGLIHEGEGVAAKALESLSISLDGVREQVQEIIGQGQQAPSGHIPFTPRAKKVLELSLREALQLGHNYIGTEHILLGLIREGEGVAAQVLVKLGADLNRVRQQVIQLLSGYQGKETTGAGVGTGQPEGTPAGSVVLDQFGRNLTQAARENKLDPVIGRESEMERVMQVLSRRTKNNPVLIGEPGVGKTAVVEGLAQAIVRGDVPETIKDKQLYTLDLGSLVAGSRYRGDFEERLKKVLKEIRTRGDIILFIDEIHTLVGAGAAEGAIDAASILKPMLARGELQTIGATTLDEYRKHIEKDAALERRFQPIQVKEPSVAHAIEILKGLRDRYEAHHRVTITDGALASAANLSERYISDRFLPDKAIDLIDEAGARLRIRRMTAPPELKAMDERIAKLKMEKESAIDAQDFEGAASLRDKEQKLITERSEKERHWKSGGMDDISEVDEDLIAEVLANSTGIPVFKLTEEESSRLLKMEDELHKRVVGQNEAIKSLSQAIRRTRAGLKDPKRPGGSFIFAGPTGVGKTELAKALAEFLFGEEDALITLDMSEYSEKHTVSRLFGAPPGYVGYEEGGQLTEKVRRRPFSVVLFDEVEKAHADLFNSLLQILEDGRLTDSQGRVVDFKNTVIIMTTNLGTRDISKSVATGFQSGTDTQTGYNRMRARVTEELKQHFRPEFLNRVDDVVVFPQLTQDEIVEIVDMFVSRLEKRLKDKDMGIELTTAAKVLLATRGYDPAMGARPLRRTIQREIEDQLSEKILFGEIHAGDIVVVDVDGEGDDAKFTFAGNAKPRIPEIAPSVPGPT0014585_2009DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014585-clpC-K03696NANA
D1-29_003232142dpp5COG1506Dipeptidyl-peptidase 5ATGGCTAACCTGAACCCGGCGATCCCGGGCGAGCAACCTATGACCCCTTTCCACGACCTGGACCATTACCTGGCTATCCCCCGGGTGAGCGGCCTTGCCCTAAGCCCGGACGGGCGGAGGCTGGTCACCACCGTCTCCACTCTCAATGGCAAAGGCACTGAATTCGCCACAGCACTTTGGGAGCTAGATCCCACGGGCGAGAAGCAGGCCCGGCGGATCACGCGCAGTGCCAAAGGAGAAGCCGGGGCCGTCTTCTCAGCCACCGGCGATGTCTATTTCACCTCGGCCCGGCCGGACCCGGAAAGCCCCGACGGCGATCCCGTCAAGGCCCTGTGGCTGCTCCCGGCTGGCGGCGGGGAGGCCAGGGTAATTCTCTCGAGGCCGGGGGGAGTGGACACGGTCCTGGCTGCCCGGCATGCCGACGCAACGTTCGTTATTGCCGAGATCCTGGCCGGGTCCACGGACGAGGACAATGATGCCGAGCGGCGTAAGGCCCGCAAGGAGAACAAAGTGTCCGCCATCCTGCACAGCGAATACCCGGTGCGCTACTGGGACTCGGACCTGGGCCCCGGCCAGCCGCGTATCTTCGCCGTGGAGGAAGGCCAGGACGAGGAGGCGGGAAAGCCCGCCACGGTGGATGCTGCCGCGCCGCGCGTCCTTCGCAACCTCACTCCCCATGCTGGGCCCCGGCTGCGGGAAGCGGAAACGGTGGCCAGCCCGGACGGCAGGACCATCTACACAAGCTATACGAGGCCATTGGCGAAGGCTGAAAGCCGTTCCGTGCTGGTGGCCGTGGACGTGGCTTCCGGCAGCCAGCAAGTGCTGCTGGACGAGGAAGGCATGAGCTACTTTCCCGGCCCGGTCAGCCCGGACGGCAACACCCTGGTTGTGGTCAGTGAGAGCGATACCACCCCGCACCAGGCGCCGCAGGTCAAGCTGAACCTTCTGGATGTTTCGGGCCGGCCGGATTCACCGGGCCGGACAGCGGGCGGTGCCGCCCGCCTCGCCGCGCTGGTTCACGACTGGGACCGCTGGGCCCGGCCCGCGGCCTGGCTCCCTGACGGTTCAGCGCTGCTGGTCACAGCGGATGACGACGGCGCGTCGCCGGTCTTCCGGATCAGCCTTCCGGCGTCTGCTGCTGAAGTGAGCGTCACGAGGGTGACACAGGATGCCGCGGCGTACACCGACGTCGTGGTGTCACCGGAAGGACGCACCGCGTATGCGCTGCGCAGCTCCTACGCGTTCCCGCCGGAAGCCGTTCGGATCGACCTTGAAACGGGCGAGGCAACGCGCCTGCCGGCGCCGGCCGAACGGCCTGCGGTTCCGGGACGGCTGGAACGGCTGGCGGCGACGGCCGCCGACGGCGCACGGGTTCCTGCATATCTGGCACTGCCCGAGGGAGCATCGGCCGATGCGCCTGCGCCGATGCTGCTGTGGATCCACGGCGGCCCGCTGGGATCCTGGAACGCCTGGACCTGGCGGTGGAACCCCTGGCTGCTGACCGCGAAGGGCTATGCCGTCCTGTTGCCCGACCCCGCGCTGTCCACGGGCTACGGGCAGTCGTACATCCAGCGTGGCTGGGGGGAATGGGGCAAGGCTCCCTTTACCGACCTGATGGCCGCCACAGACGCCGCTGAGAGGCGCCCCGACATCGATCCGACTCGGACCGCGGCTATGGGAGGGTCCTTTGGCGGCTACATGGCCAACTGGGTGGCGGGACATACTGACCGTTTCAGGGCCGTCGTCACCCATGCCAGCCTGTGGGCCCTGGACCAGTTCGGGCCCACCACTGACGATTCGCAGTACTGGTTGAGGGAAATGACCGAGGAAATGGCCATTGAGAACTCGCCGCACCGCCATGTGGAAAAGATCAGCACGCCCATCCTGGTAATCCACGGGGACAAGGACTACCGGGTGCCTATCGGTGAAGGCCTGCGGCTCTGGTACGAACTTTTGTCCAAATCCCAACTGGCCGCGGACCGGGACGGCCAGACCCCGCACCGCTTCCTGTACTACCCCGACGAGAACCACTGGGTCCTGCAGCCTCAGCACGCCAAGGTCTGGTACGGCGTCGTGGAAAGCTTCCTCGCCAAGCACGTGCTGGACGAGGAGCTCCCGATACCTGCCGAGCTGGGTCTCTAAMANLNPAIPGEQPMTPFHDLDHYLAIPRVSGLALSPDGRRLVTTVSTLNGKGTEFATALWELDPTGEKQARRITRSAKGEAGAVFSATGDVYFTSARPDPESPDGDPVKALWLLPAGGGEARVILSRPGGVDTVLAARHADATFVIAEILAGSTDEDNDAERRKARKENKVSAILHSEYPVRYWDSDLGPGQPRIFAVEEGQDEEAGKPATVDAAAPRVLRNLTPHAGPRLREAETVASPDGRTIYTSYTRPLAKAESRSVLVAVDVASGSQQVLLDEEGMSYFPGPVSPDGNTLVVVSESDTTPHQAPQVKLNLLDVSGRPDSPGRTAGGAARLAALVHDWDRWARPAAWLPDGSALLVTADDDGASPVFRISLPASAAEVSVTRVTQDAAAYTDVVVSPEGRTAYALRSSYAFPPEAVRIDLETGEATRLPAPAERPAVPGRLERLAATAADGARVPAYLALPEGASADAPAPMLLWIHGGPLGSWNAWTWRWNPWLLTAKGYAVLLPDPALSTGYGQSYIQRGWGEWGKAPFTDLMAATDAAERRPDIDPTRTAAMGGSFGGYMANWVAGHTDRFRAVVTHASLWALDQFGPTTDDSQYWLREMTEEMAIENSPHRHVEKISTPILVIHGDKDYRVPIGEGLRLWYELLSKSQLAADRDGQTPHRFLYYPDENHWVLQPQHAKVWYGVVESFLAKHVLDEELPIPAELGLNANANANANA
D1-29_00324510argACOG1246Amino-acid acetyltransferaseGTGACTGACTCCTTCCATATCCGTCCTGCCCGCACCAGTGATGTGGCCGCCATCAAGAGACTGGTGGCGCCGCTGGCGGAGCAGCGGATCCTGATGGCCAAGGAGACGGTGGCCTACTACGAAAGCCTGCAGGAGTTCCGGATCGCCGAATCGGACGACGGCGACGTCATCGGCTGCGGCGCTTTGCACGTGATGTGGGAAGACCTGGCAGAGGTGCGCACCCTTGCCGCTTCAGATATGTGGCGGGGCAGGGGCGTTGGCCATGTGCTGGTGGAGAGCCTTCTGGAGGAAGCGCGTCAGCTGGGCGTGGGACGGGTCTTCTGCCTCACGTTTGAGGTGGATTTCTTCAAGCGCCACGGCTTTGAGGTGATGGCTGACCAGACGGCGGTGGACCCTGAGGTGTACTCCGAGTTGCTGCGCTCGCACGATGAAGGCGTGGCCGAGTTCCTTGACCTGGCCCGCGTTAAGCCCAACACCCTTGGCAATACCCGAATGATCAAGTTCCTCTGAMTDSFHIRPARTSDVAAIKRLVAPLAEQRILMAKETVAYYESLQEFRIAESDDGDVIGCGALHVMWEDLAEVRTLAASDMWRGRGVGHVLVESLLEEARQLGVGRVFCLTFEVDFFKRHGFEVMADQTAVDPEVYSELLRSHDEGVAEFLDLARVKPNTLGNTRMIKFLPGPT0014241_357DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014241-argA-K00619NANA
D1-29_003251419mcrA_1Mitomycin radical oxidaseATGCACATCCTCTCCTCCCACACGGAAAAAACCGAGCTTCAGCTTCTGGTCCGCGGGCTCGTCTATGCCCCAGGCGACCCCCACTATGGTGCGGAAGTCGCAGCTTTTAACCTCGCCACCCGCCACACCCCGGACCTGGTTCTGAGCGCCGTCAATGCCGACGACGTGGTGGCCGCGGTCCGGTGGGCAGCCGCTCGCGGTATGTCCATTTCAGTCCAATCCACCGGCCACGGAGCCGCCAACGCCATTACCGATGGCCTGCTTATCAGTACCCGGCTGATGCTGGAACTCTTCATCGATCCTGACGAGCGGACGGCGCGCGTCGGCGCCGGAGTGCGCTGGCGTGACGTCCTCAAGGCTGCTGCGCCCTACGGGCTGATGGGCCTGCACGGCTCCAGTACCGACGTCGGCGTTGTTGGCTACACGCTGGGCGGCGGTTTGCCTCTCCTGGGGCGGAAGTACGGCTTCGCCTCCGACCATGTGCTGGCGTTCGACGTGGTGACGCCGGATGGCGTCCTGCGCCGAGTGGACGCAGCAAGCGACCCGCGGCTGTTTGCCCTGCTCCGCGGCGGCAAGGGGAACTTCGGCATTGTCACGGCCATGGAGTTCTCGCTTTTCCCGGCCGGCGAACTCTTCGCCGGCGGCATCTTTTACGACGGCGGGCACTCCCGGGAGGTGCTGGCAGGGTTCGGTCAGTGGATCCGGCATCTTCCCGCCGAGGCTTCCGCGTCCCTGGCATTCCTGCGCCTGCCGGACATGGAGGAAGTACCGGCGTTCCTCCGCGGCAATTTTGTCATGCACCTCCGGTTCGCCTGGCAGGGCAATGCGGCTGACGGGGCACGTGTATTGGCGCCGATGCGCGAGGTGGCTCCGGTCCTGCTGGACGGGGCAGGGCCGCTGCCGTACTCGCGGGTGGACGAGATCCACGCAGACCCTGAACATCCGGTTCCTGTCCGGGAAGGCGGCATGCTGCTCAAGGATCTGGACGCCGGCCTGGAGGACGCGCTGCTCCGGCTGGCTGGACCGGGCAGCACCGCGCCGCTCCTGTTGACGGAAATCCGGCTGATGGGAGGAGCGCTGGCCAAGCCATTGAAGGCTGTGGTGCCCGACTTCGACTACGTGGGTGGGCGTGATGCCGCGCTGTCCTTCTTTGCAGTGGGCATCATGGCGCCGCAGGTCGCGCACTTGGTTCCGGCAGCCATACAGGAAGCCCGGGAGGTCTTGGAGCCTTTCGGGACGGGCGGTACCGCTGTCAACCTGCATGGGCACCTCACGTCGCCGGAACTGGCCTTCCGCGCCTGGCCGGAAGCTGCCCGGGAGCGGCTCAGCAAGGCCAAAGCTGAGCTGGACCCAAAGAATCTGTTCCGTCATGGCCATGCAATCCAGCCAGCGGCAGGGGAGCTGACCTTCGTCACTTAGMHILSSHTEKTELQLLVRGLVYAPGDPHYGAEVAAFNLATRHTPDLVLSAVNADDVVAAVRWAAARGMSISVQSTGHGAANAITDGLLISTRLMLELFIDPDERTARVGAGVRWRDVLKAAAPYGLMGLHGSSTDVGVVGYTLGGGLPLLGRKYGFASDHVLAFDVVTPDGVLRRVDAASDPRLFALLRGGKGNFGIVTAMEFSLFPAGELFAGGIFYDGGHSREVLAGFGQWIRHLPAEASASLAFLRLPDMEEVPAFLRGNFVMHLRFAWQGNAADGARVLAPMREVAPVLLDGAGPLPYSRVDEIHADPEHPVPVREGGMLLKDLDAGLEDALLRLAGPGSTAPLLLTEIRLMGGALAKPLKAVVPDFDYVGGRDAALSFFAVGIMAPQVAHLVPAAIQEAREVLEPFGTGGTAVNLHGHLTSPELAFRAWPEAARERLSKAKAELDPKNLFRHGHAIQPAAGELTFVTPGPT0031395_4DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-FERROVERDIN|BAGREMYCIN_METABOLISM,PGPT0031395-fevA2|bagG-NANANA
D1-29_003261002dhaKCOG2376PEP-dependent dihydroxyacetone kinase, dihydroxyacetone-binding subunit DhaKGTGAAAAAACTCATCAACGATCCGCGCAGCGTCGTGGACGAATCCGTGGAGGGCTTCGGAGTTGCCCACGCGGACCTGGTAAAAATCAGCGTGGACCCCACTTTCGTTGTCCGCGCAGACGCGCCGGTAGCCGGGAAGGTGGGGCTGCTTTCAGGAGGCGGCAGCGGACACGAACCCCTCCACGCAGGCTTCGTGGGGCGGGGAATGCTCGACGCCGCAGTGCCCGGCGCGGTTTTTACCTCGCCCACCCCTGACCAGATCCTTCCGGCGACACTCGCGGTTAACTACGGCGCCGGCGTCGTCCACATCGTAAAGAACTACACGGGTGACGTCCTCAATTTCGAAACAGCGGCGGAACTGGCAGAGGCTGAAGGAATCCAGGTCCGTGCCGTCCTGGTCAACGATGATGTCGGGGTGGAGGACTCGCTCCATACCGCCGGCCGGCGTGGCGTTGGTGGAACTGTGCTGGTGGAGAAAATAGCCGGCGCGGCTGCCGAACGGGGGGACGGCCTGGACGCCGTTGCCGCGATCGGTGAGCGTGTGAACACCAACGTCCGCAGCATGGGCGTGGCACTGTCAGCCTGCACCGTCCCGCACGCAGGATCACCGAGCTTCGACCTGGAGGACAACGAGATCGAAATCGGCATCGGCATCCACGGCGAACCGGGCCGGCACCGGATCCCGATGGAGGGCGCCGATGGAATCACAGACCGGCTGTTGGAACCGGTGCTGGACGATCTGGGCGTGGGCGCGGGGGACAGGCTGCTGCTGTTCGTCAACGGCATGGGCGGGACACCACTCAGCGAGCTTTACATTGTCTACCGCAGGGCTGCACAGGTGATCGCCGCAAGGGGAGCCGCCGTAGAGCGGAACCTGGTGGGGAACTACATCACCGCGCTGGAAATGCAGGGCTGCTCCATTTCCGTGCTGCGGCTGGACGACGAACTCATCGATCTGTGGGATGCCCCCGTTCACACGGCCGCCTTGCGCTGGGGTGTGTAGMKKLINDPRSVVDESVEGFGVAHADLVKISVDPTFVVRADAPVAGKVGLLSGGGSGHEPLHAGFVGRGMLDAAVPGAVFTSPTPDQILPATLAVNYGAGVVHIVKNYTGDVLNFETAAELAEAEGIQVRAVLVNDDVGVEDSLHTAGRRGVGGTVLVEKIAGAAAERGDGLDAVAAIGERVNTNVRSMGVALSACTVPHAGSPSFDLEDNEIEIGIGIHGEPGRHRIPMEGADGITDRLLEPVLDDLGVGAGDRLLLFVNGMGGTPLSELYIVYRRAAQVIAARGAAVERNLVGNYITALEMQGCSISVLRLDDELIDLWDAPVHTAALRWGVPGPT0018460_764DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018460-dhaK|dak-K05878NANA
D1-29_00327633dhaLCOG2376PEP-dependent dihydroxyacetone kinase, ADP-binding subunit DhaLATGGTGCTTGATGTGAACTGGGCCGTTAAATGGCTGACTCTTTGTGCGCAGGCCATGGCGGCACACCGGCTTGAACTCATCGAGCTGGACCGCGCCATCGGGGACTCGGACCACGGGGAGAACATGGACCGCGGCTTCCAGGCCGTCCTGGAAAAGCTTGCCGAGGCGCCGCCGGAAACCCCCGGAGCGGCATTCAAGCTGACCGCCATGACGCTGATGTCCAAGGTGGGGGGCGCCGCGGGCCCTTTGTACGGGACTGCTTTCCTGCGTGCTGCCACCTTCCTCGGCGACGCCATCGAGGTGGACCCGGCGGCCCTGGCAGGTGCCCTCGCCGCCGCGCGTGACGGCATTGTGGCCAGGGGCAAGGCCGAGACGGGGGACAAAACCATGGTGGATGCATGGACTCCCGCTGTGGAGGCCGCACAGGCGGCAGCCGCCGACGCCGACGGCAATGTCCTGGCCGTGCTGGTCGCTGCGGCCGAGGCGGCCGAGGCAGGTGCAGCGGCGACGGACCCGCTGGTGGCCCGGAAAGGCCGGGCCAGCTACCTGGGCGAACGGAGCGTTGGGCACCGTGACCCCGGCGCCGCCTCCAGCGCGCTGATTTTCCGGGCCGCCGTTGGGGCTGCCGCGTGAMVLDVNWAVKWLTLCAQAMAAHRLELIELDRAIGDSDHGENMDRGFQAVLEKLAEAPPETPGAAFKLTAMTLMSKVGGAAGPLYGTAFLRAATFLGDAIEVDPAALAGALAAARDGIVARGKAETGDKTMVDAWTPAVEAAQAAAADADGNVLAVLVAAAEAAEAGAAATDPLVARKGRASYLGERSVGHRDPGAASSALIFRAAVGAAAPGPT0018455_814DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018455-dhaL-K05879NANA
D1-29_00328705dhaMCOG1080PEP-dependent dihydroxyacetone kinase, phosphoryl donor subunit DhaMGTGACGGTCCGCATCGTGGTGGTGTCCCATAGCGAAAAGATTGCCGACGGTGCAGTGGAACTTGCCGCCCAGATGGCGCCCGACGTCGTGATCGTGGCAGCCGGGGGAACCCCGGAGGGACGCATCGGCACCAGCCTTGAGAAGGTTATGTCAGCGCTGGAGCGGGCTTCCGGCGGGGACGGCGTGGTGGTACTGACCGACCTGGGGTCGGCCGTTATGACAGCAGAATCGGCGCTGGAACTTGCGGAGGATCCGGCCGGCGTGCTGCTGGCCGACGCACCGTTGGTGGAAGGACTGGTGGCCGCCGCTGTCGCAGCCCAGGGAGGCGCCGACGCGGCTGCGGTGAAGCGCGCCGCCGAGTCCGCTTACGGTTCGGCTTTGCCGGCAGCCGCCGGGCCGCTCCCCGCGGACAGCGCCGTGTCGCAGGGATCGGTGACGGGTGCCGGCCCGGATTTTACCGGCGACTTTGAGCTCATCAACCAGGCCGGCATGCACGCCAGGCCGGCCGCCAAGATTGCTGGCGGGCTCTCGTCACTGGATGCCGAGGTCAAGGTCAACGGGGTGGATGGAGCGTCCATGACCGGGCTCATGACCCTGGCCGCGGGCCGGGGGTCGGTGCTGCACGTGGAAGCCTGGGGTGCCGACGCAGAGCGGGCCGTGAACTATGTTGGCGGCCTGGTGCAGGCAGGGTTCGGCGAGCCTTAAMTVRIVVVSHSEKIADGAVELAAQMAPDVVIVAAGGTPEGRIGTSLEKVMSALERASGGDGVVVLTDLGSAVMTAESALELAEDPAGVLLADAPLVEGLVAAAVAAQGGADAAAVKRAAESAYGSALPAAAGPLPADSAVSQGSVTGAGPDFTGDFELINQAGMHARPAAKIAGGLSSLDAEVKVNGVDGASMTGLMTLAAGRGSVLHVEAWGADAERAVNYVGGLVQAGFGEPPGPT0018450_255DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHOTRANSFERASE_ACTIVITY,PGPT0018450-dhaM-K05881NANA
D1-29_00329990hypothetical proteinGTGCACCCCAGCCCTGCCCCCGCGCCTGCCCCGCTGTACCGTGACCCGTTGGAAGACGGGGCAGCGGACCCTGTCCTGATCTACAATCGGCATGAGCAATCGTGGTGGATGATCTACACCAACAGGCCCACTACCGTCCGGCATGCCCAGGGGATCAGCTGGCTGTTCGGTTCACAGCTGGGGGTGGCGTCGTCAACGGATGGGTGCGCCACCTGGCGGTACCGCGGAACCCTCAAGGGTCTCGACTTTGAATGGGGCCACAACACCTTTTGGGCTCCCGAAGTCTTCGAGCACAACGGAATCTTCCACATGTACGTCAGCTACATCCAGGGCATTCCGCTGGGCTGCGCCATCGATGAGACGCTGATTCACCACTACACCAGCGAAGACCTCATCTCCTGGCAGCACCATGGCCCCATCACCCTGAGCTCCAACAACGTCATTGATGCCTGCATCATCGAGCTCCCGCAGGGTGGATTCCGGATGTGGTACAAGGACCAGCACCAGGGTTCCGAGACCTGGGCGGCAGACAGCGAGGACCTCTACACCTGGACGGTCCGGGGCCGGGTGCTGTCCACGCCCGGCGGCCATGAGGGCCCCAACGTCTTCTCCCTTCAGGGGTTTTACTGGCTGATCGTGGACAGCTGGAGCGGCCAGCTGGCTTTCCGCTCCGATGACCTGGACGTTTGGGAGCCGGCGGGGAGGATCCTCGGCGGGTCAATTGGCGACCGGCATGCGCGAACTGACGATGAGGGTCCTGGACTCCATGCAGACGTGGTGGTCGACGGCGACGACGCCTGGATCTTCTACTTCACCCATCCTGAGCGGACCGGCCAGGACCATCCGACGGAAAGCAGCCGGCGGTCCTCGATCCAGGTGGCGCGGCTCGCCGTCGAGAACGGAAACCTGGTGTGCAATCGGGACCAGGTCCCGGCGCCTGCCATCGGCGCCCCCTCCCCCGGAGTTTTTGTCCAGATCGGGCGGGTTTAAMHPSPAPAPAPLYRDPLEDGAADPVLIYNRHEQSWWMIYTNRPTTVRHAQGISWLFGSQLGVASSTDGCATWRYRGTLKGLDFEWGHNTFWAPEVFEHNGIFHMYVSYIQGIPLGCAIDETLIHHYTSEDLISWQHHGPITLSSNNVIDACIIELPQGGFRMWYKDQHQGSETWAADSEDLYTWTVRGRVLSTPGGHEGPNVFSLQGFYWLIVDSWSGQLAFRSDDLDVWEPAGRILGGSIGDRHARTDDEGPGLHADVVVDGDDAWIFYFTHPERTGQDHPTESSRRSSIQVARLAVENGNLVCNRDQVPAPAIGAPSPGVFVQIGRVPGPT0018835_91DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
D1-29_00330333hypothetical proteinATGAAGAAACTCACCACAGCCCTGCTCGCCACCGGGCTTGTTCTCTCGGCTTCGGCCTGCACCGCATCGACCCAGTTGAGCACCCCTGAAACCTGCGACCGGATCAAGTCAGTTGTGGCGAACCCACCAGTTGGCAAGAGCGGGATGACCCGGATGGCCAACCAGTTCCGGCCCATCGAGGTAGTGGCCTCTGATGACCTGAAGTCCGCGCTGCAGTCGATCATCGAGTACACGGACGAGTCCGCGAAAGAGACCCCGGACGAGGAAAAGCTTTCGGGCCTGCAGGCGGACTACGAAGCTGCCGGCGGCACGTTCAGCAAATTCTGCAGCTAAMKKLTTALLATGLVLSASACTASTQLSTPETCDRIKSVVANPPVGKSGMTRMANQFRPIEVVASDDLKSALQSIIEYTDESAKETPDEEKLSGLQADYEAAGGTFSKFCSNANANANANA
D1-29_00331486hypothetical proteinATGGGCAAGTCCGGAGTACTGCTGACACTGATCACGACGACGGTTCTCACCTCCGCCTGCTATCCCTACGACGTGCCGTGCCCCATGATCGCCCAGGCGTCGGTGGTCTCCGTGACGGTGGCCCGCGAGTATGCCGCCCAGGTGAAAACCCTTCACCTGAAGGCGTGCCAGGACGGTGCCTGCAAGGAAGCGGACCTTGAGCTCTACCCCGGGACAGTGTCCGTTGACCAGGGCTGTACCCCTGACGGCGTCTGCTCCGCCACGGCGTCGCCTGACGGGACCCTGATGGGGAATCTGATGCTGGATTCCCTGACAGAGTCCCCCATGGCGCTGACGGCCAGCGGAACAGCAGCAGACGGATCAGCGCTGCCCGTACGTACGCTCGACTTCCGGCCCCGGGGCGATTATCCCTACGGCGAGCACTGTGGAAGGTTTGTCTCCGCCTCGGTTGAGCTGAACGAAGATGGGCTCCGGGCGAGGTTGTAAMGKSGVLLTLITTTVLTSACYPYDVPCPMIAQASVVSVTVAREYAAQVKTLHLKACQDGACKEADLELYPGTVSVDQGCTPDGVCSATASPDGTLMGNLMLDSLTESPMALTASGTAADGSALPVRTLDFRPRGDYPYGEHCGRFVSASVELNEDGLRARLNANANANANA
D1-29_00332432hypothetical proteinATGGACTCCATCAAGGCCGTGTTTGTAGTCCTTCCGGGCCTTTTTGCCGCCGCGGGACTGGTGCTGGTGGGACTGTCACTGGCTGCATCGTTCCGCCGGCGCAGCATCGTCCGCGGCTGGGTGGCCACCTACGCCACCGTCACAGGGAACCTTCGCGGCAAAGACGGCCCGGGCAGCAACGGCGGCCACCGGTTCGCCCCCTCCTATGAGTTCAACGACGCCGGGGGCCGGCGCTGGCTGGGCCAGTCGGACATCTATGGCCTGGACCAGGAAATCATCGGCAGTCCCATAGCGGTGCTTTACAACCCTGCCAACCCCGCCGAATCCACGCGCCCGGTCTTCCTGGTGTCAAAGGGCAGGTTCTCATTCGGTCTCATTATGGTCATTTTCGGCGCGGGTGCCATAACGATGTTTGCGTCAGTTCTCTGGTAGMDSIKAVFVVLPGLFAAAGLVLVGLSLAASFRRRSIVRGWVATYATVTGNLRGKDGPGSNGGHRFAPSYEFNDAGGRRWLGQSDIYGLDQEIIGSPIAVLYNPANPAESTRPVFLVSKGRFSFGLIMVIFGAGAITMFASVLWNANANANANA
D1-29_00333432hypothetical proteinATGAAGATCGTGCTGTACATCATTGGGGCGCTGTGGGTTGTTGGCGCGGGCCTGGCCACGCTCCATCTGCTGCGAAAAGCCAAACGCCGCGAGAAGCAGGCCGAAGGCTGGCCCCGGGTGCAGGCCACCGTAACAGGGAGTGTGGCCGGCTGGAGCAGGAGTGCAGGCAGCTCTCCCAGCAGCAGGCGCTACTTCCCCACTTATCAGTTCACAGATCCCCACGGCACATTGTTTGCGGGGGAATCAGAGGTTTCGCTGGTGAACCGGCCACAGCCGGGGTCGCTCGTGCAGGTGACCTACAACCCGCTCAACCCCAACCAGTCATTCCAGGTTGCCTCCGATTCAAAAAAGATTGTTGGCTGCCTCATCCCGTTCCTGGTGGTGTTTTCCATCCTGCTGTTCAACTTCATCAGCATCTTTCCGGTGGACTAGMKIVLYIIGALWVVGAGLATLHLLRKAKRREKQAEGWPRVQATVTGSVAGWSRSAGSSPSSRRYFPTYQFTDPHGTLFAGESEVSLVNRPQPGSLVQVTYNPLNPNQSFQVASDSKKIVGCLIPFLVVFSILLFNFISIFPVDNANANANANA
D1-29_00334960nth_1Endonuclease IIIGTGCCCGTTGGTCCTTCCCTGAACGGGGACGCGCTGGCCTCCCTGCATGCCAGAATTACGGACTGGTTCGCGGAGACCGCCCGGGACCTGCCCTGGCGGGATGCGGGCTGCTCACCATGGGGCGTCCTGGTCAGTGAAATCATGCTCCAGCAGACCCCTGTGGTGCGTGTGCTGCCCGTCTGGCAGGAATGGCTCAGCCGCTGGCCCAACCCCGCTGCGTTGGCGGGAGAACCTGCGGGGGAAGCCGTCCGTTTATGGGGCAGGCTGGGCTACCCGCGCCGTGCGCTCCGGCTGCACGCAGCGGCCGCAGCGATCGTCCGTGACCACGGCGGCACAGTCCCTGGAAGCTACGCGGAGCTGTTGGCCCTGCCCGGAGTGGGCAGCTACACGGCTGCCGCGGTGGCCGCGTTTGCCTTTGGACGTCGGGAAACGGTGGTGGACACCAACATCCGCCGCGTCCATGCACGCCTCATTTCCGGCGTCGCGCTTCCGTCGCCGTCGCTGACCGCCTCGGAAATGCGCTTGGCGGCAGAACTCCTGCCGGACGACGACGGCGCCTCCGTCCATTGGAACGCTGCGGTCATGGAACTGGGGGCGCTGGTCTGCACGGCCCGCGTGCCCAAGTGCTCAGCCTGCCCGGTCCGGAACTCATGCGCCTGGCTCGCGGCCGGCGAGCCGCCGCCGTCGTACATTCCCAAAGGACAGGCGTGGCACGGCACTGACCGCCAGGTCCGCGGCGCCGTGATGGCGGTCCTGCGGACCGCGGAGAATCCCGTACCACCCGAGATGTTCCACCAGGAGCCCGCGGACCTGGGCTTTGCGCCGGAAGGCGTTGCAGTGCCGCTCTCTGCCCTCCACCGGTTGAACTGCGGCCCGGAGCAGCTGGACCGCGCGCTGGCCGGACTGCTCACCGACGGCCTGGCCGAGCTGCACCAGGGCGGATACCGGCTACCCGCCTGAMPVGPSLNGDALASLHARITDWFAETARDLPWRDAGCSPWGVLVSEIMLQQTPVVRVLPVWQEWLSRWPNPAALAGEPAGEAVRLWGRLGYPRRALRLHAAAAAIVRDHGGTVPGSYAELLALPGVGSYTAAAVAAFAFGRRETVVDTNIRRVHARLISGVALPSPSLTASEMRLAAELLPDDDGASVHWNAAVMELGALVCTARVPKCSACPVRNSCAWLAAGEPPPSYIPKGQAWHGTDRQVRGAVMAVLRTAENPVPPEMFHQEPADLGFAPEGVAVPLSALHRLNCGPEQLDRALAGLLTDGLAELHQGGYRLPAPGPT0014770_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
D1-29_00335609hypothetical proteinGTGGTGTACCGCCGCCGGCGCTTGTTCGTCGGTGCTGTAGTGCTGATGGTCATTGCCATGGTCCTTGGCGGCTTCGCGGCAGGCGGGGCCTTCAGCGGTAACTCCGAGCAGGTTTCAAGCACCGACAATGGAACCGACGCCGGTGCCTCGCCGGCAGCCTCCACCACAGAGTCGCCGTCGGAAGCGCCCAGCAGTACCCCTGCTCCCACGGCAAGCCCCACCTGCGACCAGAACCTGGTGACTGTTTCTGCTGCAACGGACAAACCTGCCTACGGGCCGGACGAGAACCCTTTGCTCACCCTGAAGGTGACCAACGGCGGGAAAATGCCGTGCGAGGTGAACATCGGTACGTCCCAGATGGAGTTCCTGGTGACCAGCGGCGCAGACCGGATTTTCTCCTCAAGGGACTGCCAGGCGGCGAGTGAGGATCTGGTGAAGACCATTGCCCCCGGCGCCAGCGAAACAGCCAACTTCCCGTGGCCGCGCAACCGCAGCGTGGAAGGCTGCGAGCCCATTGATGCCAAACCGGGAGGCGGCGGGGCGTACTACATCTTTACGGCCAAGCTGGGCTCGAAGGCCAGTCCCAAGGCAGTGTTCCAGCTGGGCTGAMVYRRRRLFVGAVVLMVIAMVLGGFAAGGAFSGNSEQVSSTDNGTDAGASPAASTTESPSEAPSSTPAPTASPTCDQNLVTVSAATDKPAYGPDENPLLTLKVTNGGKMPCEVNIGTSQMEFLVTSGADRIFSSRDCQAASEDLVKTIAPGASETANFPWPRNRSVEGCEPIDAKPGGGGAYYIFTAKLGSKASPKAVFQLGNANANANANA
D1-29_003361077disACOG1623DNA integrity scanning protein DisAATGCCCCGGAGCCCCGAAGAATCGCTCAAGGCGACTCTGGGCAGAGTAGCTCCAGGAACGCCCCTCCGCGATGGACTGGAACGCATCCTCCGGGGACGCACTGGCGCACTGATTGTTCTTGGCTCGGACCGGACCATCGATTCCATCTGCTCCGGCGGCTTTGACATCGGCATCGACTTCTCCCCCACGAGGCTCCGTGAACTGGCCAAGATGGACGGCGCCATCATTTGCGACAGGGACGCCGGGAACATCCTCCGCGCCGCCGTCCAGCTGGTGCCGGACTCGAGCATCGAAACCCAGGAATCGGGCACCCGGCACCGGACCGCCGAGCGCGTGGCCATCCAAACCGGCGTGCCCGTCATCTCCGTCAGCCAGTCCATGCAGATCATCGCACTGTATGTCAACGGCCTGCGCCACGTGCTTGAGGGCTCCGAGAAGGTCCTTGCGCGCGCCAACCAGGCCCTGGCCACCCTGGAGAGGTACCGGTCGCGGCTTGACCAGGTGACCAGTTCACTGTCAGCCCTTGAGATCGAGGCCATGGTCACTGTCCGGGACGTGGCCGTCACCTTGCAGCGCCAGGAAATGGTCCGCCGGATCTCGGAGGAAATTTCCCAGTATGTGCTGGAACTGGGCGAGGACGGCCGGCTGCTGTCCCTCCAGCTGGACGAGCTCACCGTGGGCCGGGGCCCCGGCAGCGACATCATCATCCGTGACTACGCGGGCCCGCACGCCTCCCCGGACGACATTGAGAAAGCCGTGAGCGCCCTCGTAAACCTGGGTCCCACCGAGCTGATAGACCTGGGCAAGATTTCCGGCATCATCGGCTTCGCCGGCGGGGTGGACACCCTCGACGCCGTGGTGCAGCCCCGCGGGTACCGGCTGCTCTCCGGGCTTAAGGCAGTCCCCAAGGCTGTCGCCGACCGGCTGGTGGACCACTTCGGCGGCCTTCAGTTCCTGATGGCAGCCACCATCGATGACCTGATGACGGTGGACGGCATCGGTGACCAGCGTGCCCGTACCGTGCGTGAAGGCCTGAGCCGGATGGCCGAGGCCAGCCTGCTGGACAGGTTCCTCTGAMPRSPEESLKATLGRVAPGTPLRDGLERILRGRTGALIVLGSDRTIDSICSGGFDIGIDFSPTRLRELAKMDGAIICDRDAGNILRAAVQLVPDSSIETQESGTRHRTAERVAIQTGVPVISVSQSMQIIALYVNGLRHVLEGSEKVLARANQALATLERYRSRLDQVTSSLSALEIEAMVTVRDVAVTLQRQEMVRRISEEISQYVLELGEDGRLLSLQLDELTVGRGPGSDIIIRDYAGPHASPDDIEKAVSALVNLGPTELIDLGKISGIIGFAGGVDTLDAVVQPRGYRLLSGLKAVPKAVADRLVDHFGGLQFLMAATIDDLMTVDGIGDQRARTVREGLSRMAEASLLDRFLPGPT0014770_423DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-SPORULATION_SIGNALLING,PGPT0014770-disA-K07067NANA
D1-29_003371755prfCCOG4108Peptide chain release factor 3GTGCCGGGCCGGCGCTGGGATAAACTTGGACCTTGGCGCTCAGCCAGTCCCCAGCCAGCCTTACAACGTCCCGTCAAGCGCCATCCCGACAAGCGCCGTCCCGTCAAGCGCCAGGACCCCCACCGTAGCGAAAGTAGCACCGTGTCCCAAGATGTCCTCAGCCCCGCCCGGATCCACGAGATTCACAAACAGGCGGCCCGGCGTCGGACGTTTGCCGTTATTTCGCATCCTGACGCCGGCAAGTCCACGCTGACCGAAGCACTGGCGTTGCATGCGAAGGTGATCGGCATTGCCGGTGCTTCCAGCGGCAAGGCAAACCGCAAGGAAACGGTCTCGGACTGGATGCAGATGGAAAAGGACCGTGGCATCTCCATCAGCTCCGCAGCGCTCCAGTTCTCCTACCGTGACACCGTCATCAACCTGCTGGATACTCCCGGCCACGCCGACTTCTCGGAAGACACGTACCGTGTCCTCGCCGCCGTCGACTGCGCGGTGATGCTGGTGGATGCCGCCAAGGGCCTGGAAACCCAGACCATGAAGCTCTTTGAGGTCTGCAAGCAGCGCAACCTGCCCATCATCACCGTGATCAACAAGTGGGACCGCCCCGGCCTGGATGCCCTGGCCCTGATGGACGAAATCACCGAGCGCACAGGCCTGCAGCCCATGCCGCTGACCTGGGCCGTTGGCATCTCCGGCGACTTCCGCGGGGTCTGGGATCTCCGCAACGACCGGTTCGCCCAGTTCAAGCGGAACAACTCGGGCGCCAACATTGCGCTGACCGAGTACTTCACCCCGGATGAAGCGGCGGAGAGCCAGGGCAGCAACTGGTCTGACGCCGTGGACGAAGCCGGCCTGGTGATCGAATCCAACCTCGAGTTCGATGTTGAGAGCTTCCATGCCGGCAAGGCCACGCCCATACTCTTCAGCTCAGCCGCCCTGAACTTCGGCGTCAAGGAACTGCTGGACGCCCTGGTGGACTTCGCCCCGCCGGCAGCTCCCAGGCCGGACGTCGAGGGCAGCCCGCGCGCCGTGGCTGCCCCGTTCTCCGGGTTCGTCTTCAAAGTCCAGGCCGGCATGAACAAGGCGCACCGCGACCACGTGGCGTTCATCCGTGTGTGTTCCGGCGTCTTTGAGCGCGGCATGGTGGTCACGCAGACGCGCACGGGCAAGTCCTTCGCCACGAAGTACGCGCAGCAGGTCTTTGGCCGCGAACGTGAGGTCATCGATGAGGCCTATCCCGGCGACGTGGTGGGCCTGGTGAACGCCTCCTCCCTGCGCGTGGGGGACAGCCTCTTCCTCGAGGACCCGGTGGAATTCCCGGCCATCCCGCTGTTCGCGCCGGAACACTTCCAGGTGGCACGCTCCAAGGATCCCAGCCGCTTCAAGCAGTTCCGCCGCGGCATCGAGCAGCTCGAACACGAGGGCGTCATCCAGGTGCTCCGCTCCGACGTCCGCGGTGACCAGGCGCCGGTGCTCGCCGCCGTCGGCCCCATGCAGTTCGAAGTGGTGGAGGACCGGATGGCCCATGACTTCAGCGCCCCCATGCGGCTGGAACGCCTCCCCTATTCCATCGCCAGGATTTCGACGGCGGATGCCATGCCTGCGCTGGCCAACGTGCCTGGCGCCGAGGTGCTGCTGCGGTCCGACGGCGAATTCCTCGCCCTGTTCAACGACGTCTGGGCCCTGCGCCGGATAGAGAAGAACCACCCGGACCTGACGCTGGTCCCGATCGGCACGCACAATCCGGCGAAGTAGMPGRRWDKLGPWRSASPQPALQRPVKRHPDKRRPVKRQDPHRSESSTVSQDVLSPARIHEIHKQAARRRTFAVISHPDAGKSTLTEALALHAKVIGIAGASSGKANRKETVSDWMQMEKDRGISISSAALQFSYRDTVINLLDTPGHADFSEDTYRVLAAVDCAVMLVDAAKGLETQTMKLFEVCKQRNLPIITVINKWDRPGLDALALMDEITERTGLQPMPLTWAVGISGDFRGVWDLRNDRFAQFKRNNSGANIALTEYFTPDEAAESQGSNWSDAVDEAGLVIESNLEFDVESFHAGKATPILFSSAALNFGVKELLDALVDFAPPAAPRPDVEGSPRAVAAPFSGFVFKVQAGMNKAHRDHVAFIRVCSGVFERGMVVTQTRTGKSFATKYAQQVFGREREVIDEAYPGDVVGLVNASSLRVGDSLFLEDPVEFPAIPLFAPEHFQVARSKDPSRFKQFRRGIEQLEHEGVIQVLRSDVRGDQAPVLAAVGPMQFEVVEDRMAHDFSAPMRLERLPYSIARISTADAMPALANVPGAEVLLRSDGEFLALFNDVWALRRIEKNHPDLTLVPIGTHNPAKNANANANANA
D1-29_003381233kasACOG03043-oxoacyl-[acyl-carrier-protein] synthase 1ATGACGACTGTTCAACCACGGGCTGTGGTCACGGGAACGGGCACGCTCAATCCCCTCGGATCCAACGTTGCAGAAACGTGGTCTGCCCTGCTTGCCGGCCGGTCAGGCATTGCCGGCATAGCTGAGGACTGGGCTGCGCCTTTGCCCGTCCGGATCGCAGGCCGGGTCAACACCGACCTGACAACACTGCTGACGACGCGGGAACTGAAGCGCATGGACCGGTGCGGGCAGCTTGCTGTCGCCGCGGCGAGGGATGCCTGGGCGCAGGCGGGCGCCCCCGAAGTGGATCCTGACCGGTTTGCCGTGGTCATCGGATCGGGCTATGGCGGCCTGGACACTACCCTGGCCCAGACCCGCGCGCTGGACAGCGGCGGTCCACGCCGCGTCTCGCCGCATACCCTGACCCGCCTGATGGTGAACGGGCCATCCGCGTGGGTATCCATCGACCTCGGTGCCCGGGCTGGAGCGCGGACCCCGGTGAGCGCCTGTGCGTCCGGGGCAGAAGCAATAGCCCAGGGCGTGGAAATGATCAAGGCCGGAGCGGCCGACGTCGTGGTTGCCGGTGGTGTTGATGCCTGCATCAACGACCTCGTCCTGAGTGGTTTTTCGCAGATCCGGGCACTGTCTACCCGCAATGACGATCCGCAGGGCGCGTCCAGGCCATTCGACCGTGACCGGGATGGCTTTGTCCTGGCGGAGGGCGCGGGGATCCTGGTCTTGGAAAGCGAGGAGCATGCGCGGGCACGTGGTGCACATGTCCTGGGGGTGGTGGCCGGGGCTGCCGTAACGTCCGATGCGGGCGACATCGTGGCTGCGGACCCTGCCATGCAGCAGCGCGTGATGGAGAAGGCCCTGGCTGTGGCCGGGCTCAGCGGTGCCGATATCAGCTTTGTGCACGCCCACGCCACGTCAACGCCGGTGGGGGACCGCCTGGAGGCCCAGGCGATTGGCGCCGTGCTCGATTCCGCCGTTCCCGTTACGTCAACAAAGTCCCTGACCGGCCACCTCCTCGGCGGTGCCGGGGCGCTGGGTGCCATCGTTGTCCTCGAAGCGCTGCGGAGTGGAGACCTTCCCGGCACGTACAACGTGGGCACCCTGGACCCGGACGTCAACCTCAATGTCATCACCGGGACGGCACGCTGGAGCGGTGGGTCCGAAAGTGGAGGGGCGGGAATGGTCAACGCCTTCGGCTTCGGCGGTCACAGCGCCTCGTTGGTGATCACACGCGGGTAGMTTVQPRAVVTGTGTLNPLGSNVAETWSALLAGRSGIAGIAEDWAAPLPVRIAGRVNTDLTTLLTTRELKRMDRCGQLAVAAARDAWAQAGAPEVDPDRFAVVIGSGYGGLDTTLAQTRALDSGGPRRVSPHTLTRLMVNGPSAWVSIDLGARAGARTPVSACASGAEAIAQGVEMIKAGAADVVVAGGVDACINDLVLSGFSQIRALSTRNDDPQGASRPFDRDRDGFVLAEGAGILVLESEEHARARGAHVLGVVAGAAVTSDAGDIVAADPAMQQRVMEKALAVAGLSGADISFVHAHATSTPVGDRLEAQAIGAVLDSAVPVTSTKSLTGHLLGGAGALGAIVVLEALRSGDLPGTYNVGTLDPDVNLNVITGTARWSGGSESGGAGMVNAFGFGGHSASLVITRGPGPT0008360_8130DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-29_00339198hypothetical proteinATGGTCATCCTGACCGTGCTTATCGCAGCAGCGCTCCTGACCAGCCTCAGCGCCGTCATATACATTCCGCAGCCCGCCGCAGGTGCAAAGCGCCGCTGGAGATTCAAAGATCGCTCCGTGGTGCAGACCTGCGCCGGAATCGTTGCGCTTGGTTCAGTCCTTCTTGCCGTTCATATCCAATGGGGCGTATTCCGGTGAMVILTVLIAAALLTSLSAVIYIPQPAAGAKRRWRFKDRSVVQTCAGIVALGSVLLAVHIQWGVFRNANANANANA
D1-29_00340219hypothetical proteinATGATGCAAAGCCATGGTAAATCTCTGTGGGCGGGCCTCCAGCGCGGCGACGCCGTCACCCTTAGCCAGCGTGGCGTGGAGTGCTACAGAGGGTTGATAGATGATCGGACCGACGATGGCCGAACCATTTGGGTGACGGACAAAATCGGTGATCGCCGGCTGTTCCATATTGAGGACGACTGCGACCTGCAGCTTTCTGACAGCAGCCATGCCTGCTAGMMQSHGKSLWAGLQRGDAVTLSQRGVECYRGLIDDRTDDGRTIWVTDKIGDRRLFHIEDDCDLQLSDSSHACNANANANANA
D1-29_00341693gntR_1putative D-xylose utilization operon transcriptional repressorATGGCGGCACCGGAAGGACTATTTACGCTGGAGGGAAGACCCACGGCGCAGCTGATTGCCGATCAGCTGCGGGAACAAATCGTCCAGGGGATTTTCCGTCCGGGAGAGCAGATCAATGAATCTGTTCTGGCAGGTCAGCTGCGCACATCCAGGGGCCCGGTCCGTGAGGCGTTGCAGCGGCTGTCCCAGGAGGGAATCCTGGTCAGCCACCGCAACCGCGGAGTGTTCGTCCTGGAGCTTTCAGACGATGACGTGAGGGAGATCTATGCAGTCCGCCAGGCCATGGAATCAACAGCCGCAGACGCGCTACTGGATGCCGGCCAGGAGCAGACCAAAGACACCTGCCAGGCTTTGAAGGCGGTCATCAGTGACATGGCGAAGCAGGTCGCCGTGTCGGACTGGCAGGCAATTGCACGGCTCGATATGCAATTCCACACCACCTTCGTGGGCGGGGCCGGCAACACACGCCTGATCCGGATCTACGAAACCCTCGCAGCCGAATCCAGGATGTGCATCCTGAACCTGGCTGTCTCCTACCCGCGGATTGATGTCCTCGTCCAGGAACATCAGAACCTGCTGGATCTCCTCGAGGCCGGAGACAGGGAAGGACTCCACAAAGCCATCAGGCAGCACATGCAAACGGCCGTAAACGATCTCACCTCCCCACAGAACGGGAAGGCGGATAACGCCTAGMAAPEGLFTLEGRPTAQLIADQLREQIVQGIFRPGEQINESVLAGQLRTSRGPVREALQRLSQEGILVSHRNRGVFVLELSDDDVREIYAVRQAMESTAADALLDAGQEQTKDTCQALKAVISDMAKQVAVSDWQAIARLDMQFHTTFVGGAGNTRLIRIYETLAAESRMCILNLAVSYPRIDVLVQEHQNLLDLLEAGDREGLHKAIRQHMQTAVNDLTSPQNGKADNANANANANANA
D1-29_003421134soxA_1Monomeric sarcosine oxidaseATGGACGCAAAACTCGCCGTCATCGGCCTGGGCAGCATCGGCTCCATGGCCCTCTGGCAAGCCAGCCAACTCACCGACTCAGTCACGGGTTTCGAAGCCCACACCCCCGCCCACGGCCGCAGCGCCGTAGGCGGGGACACCCGGCTCTTCCGCATGATCTACCGCGGCAACCCCCACCTCTACCCCATTCTGGAACGCTCACGGGACCTCTGGGCCGAACTCGAAGCCGAAACCGGCCAGAACATCCTCACCCGCACCGGCGGACTGTCCATCGGAACCAAAAACGGCCCCTACCTCACAGCCCTCCTCGAAACCACCAAAGCCACCGGCGCAGACCACGAAATCCTCAACCGCGAACAGATGGCCCAACGCTACCCCCAGCACAACCTCCGCCCCGACGACACCGCCGTCTACGACCCCCACGCCGGCGCCCTCCGCACCGACCGCGCCGTCACAGCCGCCATCACCGCAGCCCAAACCAACGGCGCAACCATCCACACCAACACCCCCATCGACAGCATCACCGAAACCACCCACGGCGTCCTCATCACCTCCGGCGAGAAATCCTGGACCTTCGAAAACGTCATCATCTCCTCCGGCGGCTGGTCCCAACTCCTCATGCCCGACTACCTGAAGAGTGCCACGAAGCCCTATCGGATCTATCTCACGTGGTTTGTGGCGCGTGATCCGGCACAGTTTTCGCCGGAGGAGTTCCCCATCTTCATCCGAATCTCCGGGGACCGGTCCATGTACGGCGCACCCGCCGTCGACGGCGCCACCGTGAAGGCAACCCTGGACGGCCGGGGAGCACCAACACCGCAGGCGGATTCAGTACCCCGGGAACTTACGGCAGAAGAAATGGCGGAAACGACCGAGACTGTCACTGAGTTCTTCCCAGGGTTGTTCCCCAACATCGTCCGCTCGGACGCTTACCCCGACCTCTACACCAGAGACGGCAACCCCCTGCTTGGCCGGTTCAGCGATGGCAGGAGGATCTACTGCGCCACCGGCTTCTCCGGCGGCGGCTTCAAAAATGCCACCGGCTACGGCCAAATCGCCGCATACGAAGCCCTCGGCAAACGCACCTTCGACGGCCTCGATTTCACGCGCCCCCAACGCTTTAAAGGCAACTGAMDAKLAVIGLGSIGSMALWQASQLTDSVTGFEAHTPAHGRSAVGGDTRLFRMIYRGNPHLYPILERSRDLWAELEAETGQNILTRTGGLSIGTKNGPYLTALLETTKATGADHEILNREQMAQRYPQHNLRPDDTAVYDPHAGALRTDRAVTAAITAAQTNGATIHTNTPIDSITETTHGVLITSGEKSWTFENVIISSGGWSQLLMPDYLKSATKPYRIYLTWFVARDPAQFSPEEFPIFIRISGDRSMYGAPAVDGATVKATLDGRGAPTPQADSVPRELTAEEMAETTETVTEFFPGLFPNIVRSDAYPDLYTRDGNPLLGRFSDGRRIYCATGFSGGGFKNATGYGQIAAYEALGKRTFDGLDFTRPQRFKGNPGPT0013530_435DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
D1-29_00343768glnQ_1COG1126Glutamine transport ATP-binding protein GlnQATGAGCAACGATGGCACCATCCTTGCCCAGAAAATCCGCAAGTCCTTCGGACCCAAAACAGTCCTCAAAGACATCGACCTGGACATCGCCAGCGGTGAGATCTGCTGCATCATCGGACCCAGCGGCTCCGGCAAATCCACCATCCTGCGCTGCATCAACGGCCTGGAAACAGTGGACTCCGGCGTCCTGAAAGTCAACGGCGAAGACTTCGGTTACTACGAAACCGACAACGCCTACCACGCCCTGCCACCCAAAAAACTCGCCGAACAGCGCACCAGGGTGGGCATGGTCTTCCAGTCCTTCAACCTGTTCCCCAACATGACCGCCCAGGAAAACATCATGTCCGGCCCCGTCCTGGTCAAAGGCCAGGACAAAAAACAAGCCGCCAAACGCGCCCACGAACTCCTCGCCAGCGTCGGCCTGGCCGGGTTCGGGGACTACTACCCCGCCCAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGCGATCGCCCGGTCCCTGGCCATGGACCCGGAGATCATGCTCTTCGACGAACCCACCTCAGCCCTGGACCCGGAAAAGGTCGGCGAAGTCCTCACCGTGATGAAACAACTCGCCAAGAAGGGCATGACCATGGTCGTCGTCACCCACGAAATGGGCTTCGCCCGCGAAGTCGCCGACTCCCTGATCTTCATGGACGACGGCTACGTCATCGAACGCGGCGACGCCCGCGAAGTCCTCACCAACCCCAAGGAAGCCCGCACCCAGGCCTTCCTGGAACAGGTCCTCTAAMSNDGTILAQKIRKSFGPKTVLKDIDLDIASGEICCIIGPSGSGKSTILRCINGLETVDSGVLKVNGEDFGYYETDNAYHALPPKKLAEQRTRVGMVFQSFNLFPNMTAQENIMSGPVLVKGQDKKQAAKRAHELLASVGLAGFGDYYPAQLSGGQQQRVAIARSLAMDPEIMLFDEPTSALDPEKVGEVLTVMKQLAKKGMTMVVVTHEMGFAREVADSLIFMDDGYVIERGDAREVLTNPKEARTQAFLEQVLPGPT0020790_2472DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_00344933hypothetical proteinATGCAGCAAACTAATATCGAAAGAAGTGAACCCTCCATGAGTGGGATAGACCCAGCGCTCAAGCCAAGGCTTCGGCGGCGCAGCACCTTCGAGTATGTTGCCTGGATCCTATGCAGCCTTTTGGCTCTGGGCATTCTCATCTCGGTTTCCACCAACCCCAACTTCAAGTGGGGCGTAGTGGCGAGGTACTTCACGCATGAAACGATCCTGCGTGGTTTGATGCTCACGCTCTTCCTCACGGTGGCCAGCATGGCCCTGGGAACGATCCTCGGGCTGTTCCTGGCGATCATGAGGGCCTCAAAAATCAAGCCGATCGCGGCCACCGCAGGCGTCTACATCACCCTTTTCCGCGGCACCCCTGTGCTGGTGCAGCTGATCTTCTGGTTCAATGTCGCAGCGCTGTACCCGAACCTGTCCATCGGGATCCCGTTCACCGACATCAGCACCGCGATCGACATGAACGCGCTGATGGCCCCCATCACCGCAGCCTTGGTCGGCCTGACGCTGAACGAGGCAGCGTACATGGCCGAGATCATCCGCGGCGGGTTCTCCTCCGTCGGCAAGGGCCAGATCGAAGCCGCAGACTCCCTGGGCATGAGCGGGTCGATGAAAATGCGCAAAGTCATCATCCCCCAGGCAATGCCCTCAATCATCCCGGCCACCGGCAACCAGGTCATCGGCATGTTCAAGGGAACCTCCCTGGTCAGCGTCCTCGGTGTCGCCGAACTCCTCCAAAGCGCGCAGCTGATCTACGCCCGGACCTACGAAACCATCCCGCTGCTGCTCGTCGCCAGCCTCTGGTACCTGATCATGACCCTGCTGCTGAGCTACCCACAGTCCAAGCTCGAACAGAAATACTCCCGCTCAACCTCCAGGCTTCCCCGAAAAGCCAAACCCGTTCTGCTGACTGCCCCGGAAGGCGCGGCCCGATGAMQQTNIERSEPSMSGIDPALKPRLRRRSTFEYVAWILCSLLALGILISVSTNPNFKWGVVARYFTHETILRGLMLTLFLTVASMALGTILGLFLAIMRASKIKPIAATAGVYITLFRGTPVLVQLIFWFNVAALYPNLSIGIPFTDISTAIDMNALMAPITAALVGLTLNEAAYMAEIIRGGFSSVGKGQIEAADSLGMSGSMKMRKVIIPQAMPSIIPATGNQVIGMFKGTSLVSVLGVAELLQSAQLIYARTYETIPLLLVASLWYLIMTLLLSYPQSKLEQKYSRSTSRLPRKAKPVLLTAPEGAARPGPT0020795_1526DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_00345921hypothetical proteinATGAGGACCAGGGTTCAGGCTGCCGCTGCAGGGTTAGCGGTTTTACTGGCCTTAACCGCCTGCGGGACCAGTCCCGGTGAAGATTCAGGTAATAACGGATCCAAGACATCGAACACCACTGACATCTCGGAGGGCGTCCAGCCCGATGAAGCTGCGGTGAAGTTGCTGCCGCAGTCCTACAAGGACAAGGGCGAAATCACGGTGGCCATGGATCTGCATTACCCGCCGACGACATTCCTGGCCGATGACAACACCACCCCGATTGGCCTTAATCCCGATATGGCACGGCTCATTGCCAAAAAGCTTGGCCTGAAGCTGAAGTTCGAGAACACGGCGTTCGACACGATCATTCCCGGGATCGACGGCGGACGCTACGACTTCACCGTGACCACCATGTCGCCCACCGAAGAGCGGTTGAAAGTGCTGGACATGGTGACCTACCTCAACAGCGGGGTATCCGTGGCGGTCTCCCATGGCAACCCGCTGAACATCAGCAACGATGACATGTGCGGCAGGAACATTGCTGTCACGAAAGGCTCGAACGCCCAACTGAAGCACCTGCCGAACGTTTCGAAGTGGACCTGTGAGGAAAAAGGCCAGCCGGCCATCAACGGCGTGACGCTGCCCAACGTCCAGGAGGCCCTGACGCAGCTGGCGTCCAAGCGGGTTGACGGCGTCTTCTACGACACTCCAGCACTTGTCTGGGCCAACGAGCAGCAGCCGAACACGTTCACGGTCCTGACTCCCCAGGTGGACACCCGCACCGACCACATCAACGCCATCGGCCTGAAGAAGGGCTCCCCGCTGACGCCGGCACTCCAGGCAGCCACGCAGTCGGTCCTTGACAGCCGGGAATACAAGAAGTCGCTCGACACCTGGGGCATGAGCGGCGCAGCCATCACCACGGCCAACCTCAAGTAAMRTRVQAAAAGLAVLLALTACGTSPGEDSGNNGSKTSNTTDISEGVQPDEAAVKLLPQSYKDKGEITVAMDLHYPPTTFLADDNTTPIGLNPDMARLIAKKLGLKLKFENTAFDTIIPGIDGGRYDFTVTTMSPTEERLKVLDMVTYLNSGVSVAVSHGNPLNISNDDMCGRNIAVTKGSNAQLKHLPNVSKWTCEEKGQPAINGVTLPNVQEALTQLASKRVDGVFYDTPALVWANEQQPNTFTVLTPQVDTRTDHINAIGLKKGSPLTPALQAATQSVLDSREYKKSLDTWGMSGAAITTANLKPGPT0020800_2452DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_00346693gntR_2putative D-xylose utilization operon transcriptional repressorATGGCGGCACCGGAAGGGCTCTTTGCACTGGAGGGAAGGCCTACGGCGCAGTTGATCGCTGATCAGCTGCGTGAACAAATTGTTCAGGGTACGTTCCGTCCGGGAGACCAGATCAACGAATCTGTCCTGGCAAGCCAGCTACACACATCCAGAGGCCCGGTCCGTGAGGCGTTGCAGCGGCTGTGCCAGGAGGGAATCCTGGTCAGCCGCCGCAACAGGGGCGTCTTCGTCCTTGAGCTCGCTACCGATGACATTATTGAGATCTATGCAGTCCGCCAGGCGGTGGAATCAACTGCCGCTGACGCGCTGCTCGATGCCGGCCAGGACCAGGTCAAGGACACCTGCCAGGCCTTGAAAGCCATCATCAGTGAGATGGCCAAGCAGGTCGCCGCGTCGGACTGGCAGGCGCTTGCCCGGCTCGATATGGAATTCCACACCTCCTTCGTGGCCGGGGCAGGCAACACACGCCTGATCCGGATCTACGAAACCCTCGCAGCCGAATCCAGGATGTGCATCCTCAACCTGGCCGTCGCCTACCCACGGATAGACGTCCTGGTGCAGGAACACCAGATCCTGCTGGATCTGCTCGAGGCCGGAGACAAGGAAGCACTCCACAAAGCCATCAAACGCCACCTGGAAACGGCCGTGGACGATCTCACAGCATCAAGTAAAGGGAGCGACGTCGGCGCCTGAMAAPEGLFALEGRPTAQLIADQLREQIVQGTFRPGDQINESVLASQLHTSRGPVREALQRLCQEGILVSRRNRGVFVLELATDDIIEIYAVRQAVESTAADALLDAGQDQVKDTCQALKAIISEMAKQVAASDWQALARLDMEFHTSFVAGAGNTRLIRIYETLAAESRMCILNLAVAYPRIDVLVQEHQILLDLLEAGDKEALHKAIKRHLETAVDDLTASSKGSDVGANANANANANA
D1-29_003471455sad_1Succinate-semialdehyde dehydrogenaseATGAGTCTTTCCTTTGATCCCACCACTCTTCATACTGACTTGTTCATCGACGGTGCCTGGCGGAAGGCCTCCAACGGCGCCACGTTCGCCGTCGAAAACCCTGCAACCAATGAAATCATCGCCCACGTCGCCGACGGCGGACCCGAGGATGCAGCCCTGGCCATTCAGGCCGCCGGCCGGGCCCAGGCAGCCTGGGGCAAGTCCACTCCCCGGGAACGGGCAGACATCCTGCGCCGGGCCTTCGAACTGGTCATCGCCAACACCGACCGGCTCGCCGCGATCATGACAGCGGAGATGGGCAAACCCCTCCCCGAAGCCAAGGGCGAGATGGCCTACGGCGCCGAGATGCTCCGCTGGTTCTCCGAAGAAGCCGTCCGCATCGGCGGGGACAGCACCACCTCGGTGGACGGCAACACCCGGATCCTGGTCACCAAGGAACCCGTTGGCCCCTCCGTGCTGGTCACCCCGTGGAACTTCCCGCTGGCCATGGGCGCCCGCAAGATCGCCCCCGCCGTCGCCGCCGGCTGCACCATGGTCTTCAAACCCGCAGAACTGACCCCGCTGACCTCCCTGGCCCTGGTGGACATCTTCCAACAGGCCGGCCTGCCGGACGGGGTCCTGAACGTCGTCACCACCGCCAGCGCCGCCCCCGTGGTGGAGAACTGGACCGGCAGCGGCATCGCCCGCAAGATCAGCTTCACCGGCTCCACCGGCGTCGGCAAAATCCTGCTGCGCCAGGCATCCGAGAACGTCATGCGCTCCTCCATGGAACTGGGCGGCAACGCCCCCTTCATCGTCCTCGCCGACGCCGACATCGAAAAAGCCGTCGACGGGGCCATGAAAGCCAAAATGCGCAACATGGGCGAAGCCTGCACCGCCGCCAACCGCTTCTTCGTCCACCGCTCAGTCCTGGCCGAATTCTCCGAAAAGTTCGCCAAGAAAATGTCAGAACTCCAGGTCGGCAACGGCGCCCTCGACGGAACCGACGTCGGCCCCCTGATCGAGCAAAAGGGCCTGGACAAGGTCCAAAGCCTCGTCGCCGACGCCGTCGCCAAGGGCGCACGCGTCCTGACCGGCGGAAGCCGCCCGGAAGGCCCCGGCTACTTCTACACCCCCACCGTCCTGACCGACGTGACCCTGGACGCGGACCTGATGAACACCGAAATCTTCGGACCGGTCGCAGCCATCACCCCCTTCGACAGCGAAGATGACGTCCTGCACGCAGCCAACGACACCGAATGGGGCCTGGTGGGCTACGTCTTCACCGAAAACATGACCAAAGCCCTGCGGTTCTCCCAGGAACTCGAAGTAGGCATGGTGGGCATCAACACCGGCCTCGTCTCCAACCCGATAGCACCCTTCGGCGGCATCAAACAGTCCGGCCTGGGCCGCGAAGGCGGCAAAATCGGCATCGAAGAATTCCTCGAATACAAATACACCGCAATAGCAATCTAAMSLSFDPTTLHTDLFIDGAWRKASNGATFAVENPATNEIIAHVADGGPEDAALAIQAAGRAQAAWGKSTPRERADILRRAFELVIANTDRLAAIMTAEMGKPLPEAKGEMAYGAEMLRWFSEEAVRIGGDSTTSVDGNTRILVTKEPVGPSVLVTPWNFPLAMGARKIAPAVAAGCTMVFKPAELTPLTSLALVDIFQQAGLPDGVLNVVTTASAAPVVENWTGSGIARKISFTGSTGVGKILLRQASENVMRSSMELGGNAPFIVLADADIEKAVDGAMKAKMRNMGEACTAANRFFVHRSVLAEFSEKFAKKMSELQVGNGALDGTDVGPLIEQKGLDKVQSLVADAVAKGARVLTGGSRPEGPGYFYTPTVLTDVTLDADLMNTEIFGPVAAITPFDSEDDVLHAANDTEWGLVGYVFTENMTKALRFSQELEVGMVGINTGLVSNPIAPFGGIKQSGLGREGGKIGIEEFLEYKYTAIAIPGPT0001580_2994DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_003481254davTCOG01605-aminovalerate aminotransferase DavTATGGCAACTCTTAGTCCCCTCCTCAAGCAGGCCACTCCGGTCGTCGTCGACCATGCCCTCGGCAGCTGGATCCACGCGACCGACGGCAAAAAGTACCTCGATTTCACCACTGGAATCGGTGTTACCAGCACGGGTCACTGCCACCCCGACGTCGTAGCGGCTGCCCGCGAGCAGGTGGGCAAGATTGTCCATGCCCAGTACACCACCGTGATGCACAAGCCGTTGCTTGCGCTGACGGAAAAACTGGGAGAATTCCTGCCCTCGGGGCTGGACAGCGTTTTCTACGCTACCTCCGGCTCCGAGGCAGTGGAGGCTTCCGTACGCTTGGCCCGCATGGCCACAGGGCGCCCCAACATCATCTCCTTCCACGGCGGCTTCCACGGCCGGACCGTGGGCGCGGCCTCACTCACCACCGCAGGCACCAAGTTCCGTTCAGGCTTCTCCCCACTCATGGGCGGCGTGCACATCGCCCCCTTCCCCCACGCCTACCGCTACGGCTGGGATGAGGAAACCGCAGTCAACTTCGCCCTGAAGGAGCTGGACCACCTCCTCCTGAGCATCAGCAGCCCCGCAGACACAGCCGGCTTCATCATTGAACCTGTACTGGGCGACGGCGGTTACATCCCCACACCGCCCGCTTTCCTTCAGGGGCTGCGTGAGCGCGCAGACCGGCACGGCATTGTGCTCATCCTCGACGAGGTCCAGGCCGGCGTCGGACGCACGGGCAAGTTCTGGGGACACGACTGGGCGGGAATCGCCCCCGACGTCGTAATCACCGCCAAGGGGCTCGCCAGCGGCTTCCCCATCTCGGCAATTGCGGCATCAGCAGAGCTGATGGGCAAGGCCTGGGCGGGTTCGCAGGGCGGCACTTACGGCGGAAACGCCGTAGCGGCCGCGGCCGGCGTCGCAACCCTGGGTGTTATTGAGCGCGAGAACCTGGTCGAGAATGCCCTGCTTCGGGGCGATGAGCTGCGGGCAGGGCTTGACAGGCTCAAGACAGAATTCACGGGCATCGGAAACGTCCGCGGCCGCGGCCTGATGCAGGGCGTCGAATTCACTTCCCCGGACAGCACCCCTGATGCCACTACCGCCGCGGCTGTCCAGCAGGCAGCCATCAAGGAAGAACTCCTTCTCCTCACCTGCGGCCCGCACGGCAACGTCGTACGCATCATCCCGGCGCTCAACGTCACCAGCGACGAGATCCAGGCCGGCTTGGTCAGGTTCACCCAGGCGCTGAAGACGGCCACCTCCTAAMATLSPLLKQATPVVVDHALGSWIHATDGKKYLDFTTGIGVTSTGHCHPDVVAAAREQVGKIVHAQYTTVMHKPLLALTEKLGEFLPSGLDSVFYATSGSEAVEASVRLARMATGRPNIISFHGGFHGRTVGAASLTTAGTKFRSGFSPLMGGVHIAPFPHAYRYGWDEETAVNFALKELDHLLLSISSPADTAGFIIEPVLGDGGYIPTPPAFLQGLRERADRHGIVLILDEVQAGVGRTGKFWGHDWAGIAPDVVITAKGLASGFPISAIAASAELMGKAWAGSQGGTYGGNAVAAAAGVATLGVIERENLVENALLRGDELRAGLDRLKTEFTGIGNVRGRGLMQGVEFTSPDSTPDATTAAAVQQAAIKEELLLLTCGPHGNVVRIIPALNVTSDEIQAGLVRFTQALKTATSPGPT0007140_1586DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007140-puuE-K00823NANA
D1-29_003491134soxA_2Monomeric sarcosine oxidaseATGGACGGAAAGCTCGCCGTCATCGGCCTGGGCAGCATCGGCTCCATGGCCCTCTGGCAGGCCTCCCGCCTGTCCGATTCAGTCACCGGCTTCGAAGCCCACACTCCCGCCCACGGCCGCAGCGCCGTGGGCGGGGACACCCGCCTGTTCCGCATGCTCTACCGTGGAGTGCCTGACTTCTACCCCATCCTGGAACGCTCACGGGATCTCTGGGCCGAGCTCGAAGCCGAAACCGGGCAGAACATCCTCACCCGCTGCGGCGGACTGTCCATCGGAACCAAAGATGGGCCGTACATCCCCACGCTCCTGGAAACCACCAGGATCAACAGCGCGGACCACGAAATCCTCAGCCGGGAAGAGATGGCCCAACGCTACCCCCAGCACAACCTCCGCCCCGACGACATCGCCGTCTACGACCCCCACGCCGGCGCCCTCCGCACCGACCGGGCGGTCACGGCGGCGGTGGCGGCCGCCCAAGCCAACGGCGCGACAGTCCACAGCAACACCCCGATCGACAGCATCACCGAAACCGCCGACGGCGTCCTCATCACCTCCGGCGACAAAACCTGGACCTTCGAGAACGTCATCGTCTCCTCCGGCGGCTGGTCCCAACGGCTGATGCCCGACTACCTCACGGCAGCAACCGAAACACGCCGGAACTATCTTTCCTGGTTCGTCGCCCGGGACGCAGCAGACTTTTCACCGGAAAAGTTCCCCATCTTCATCCGGATTTCCGGGGACCGGTCCATGTACGGGGCTCCGGCTGTTGACGGCGTCACCGTGAAAGCAACCCTGGATGGCAGGTCGGAACGGGCCTCCGGACCGGATTCCGTCGTCCGGGAACTAACAGCCGCGGAAATCTCGGAAACCATGGAGACGGTAACAGAGTTCTTCCCCGGACTCTTCCCCAACATAGTCCGCTCTGACGCCTTCCCTGATCTCTACACCAGAGACGGCAACCCCCTCCTTGGACGGTTCAGCGAAGGCAGCAGGATCTACTGCGCCACCGGCTTCTCCGGCGGCGGCTTCAAAATGGCCACCGGCTACGGCGAAATCGCAGCACACGAAGCCTTGGGAAAGCGCACCTTCGACGGCCTCGATTTCGCACGCCCCCAACGCTTCAAAACAAAATAAMDGKLAVIGLGSIGSMALWQASRLSDSVTGFEAHTPAHGRSAVGGDTRLFRMLYRGVPDFYPILERSRDLWAELEAETGQNILTRCGGLSIGTKDGPYIPTLLETTRINSADHEILSREEMAQRYPQHNLRPDDIAVYDPHAGALRTDRAVTAAVAAAQANGATVHSNTPIDSITETADGVLITSGDKTWTFENVIVSSGGWSQRLMPDYLTAATETRRNYLSWFVARDAADFSPEKFPIFIRISGDRSMYGAPAVDGVTVKATLDGRSERASGPDSVVRELTAAEISETMETVTEFFPGLFPNIVRSDAFPDLYTRDGNPLLGRFSEGSRIYCATGFSGGGFKMATGYGEIAAHEALGKRTFDGLDFARPQRFKTKPGPT0013530_435DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
D1-29_00350768glnQ_2COG1126Glutamine transport ATP-binding protein GlnQATGAGCAACGACGGCACCATTCTTGCCCAGAAGATTCGCAAGTCCTTCGGACCCAAAACAGTCCTCAAAGACATCAACCTGGACATCGCCAGCGGAGAAATCTGCTGCATCATCGGCCCCAGCGGCTCCGGCAAATCCACCATCCTGCGCTGCATCAACGGCCTGGAAACAGTGGACTCCGGCGTGCTGAAAGTCAATGGCGAAGACTTCGGTTACTACGAAACCGACAACGCCTACCACGCCCTGCCGCCCAAGAAACTGGCCGAACAGCGCACCAGGGTGGGCATGGTCTTCCAGTCTTTCAACCTGTTCCCGAACATGACCGCCCTGGAGAACATCATGTCCGGGCCCGTCCTGGTCAAAGGCCAGGACAAGAAGCAGTCGGCCAAGCGGGCGCAGGAGCTTCTGGCCAGTGTCGGCCTGGCCGGGTTCGGGGACTACTACCCGGCCCAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGCGATCGCCCGGTCCCTGGCCATGGACCCGGAGATCATGCTCTTCGACGAGCCCACCTCGGCGCTGGACCCGGAAAAGGTCGGCGAAGTCCTGGCCGTCATGAAACAGCTCGCCAAAAAGGGCATGACCATGGTGGTGGTCACGCACGAAATGGGCTTCGCCCGCGAAGTGGCCGACTCGCTGATCTTCATGGACGACGGCTACGTCGTTGAACGCGGCGACGCCCGGGAGGTCCTCACGAACCCGAAGGAAGCCCGCACCCAGGCCTTCCTGGAACAGGTGCTCTAAMSNDGTILAQKIRKSFGPKTVLKDINLDIASGEICCIIGPSGSGKSTILRCINGLETVDSGVLKVNGEDFGYYETDNAYHALPPKKLAEQRTRVGMVFQSFNLFPNMTALENIMSGPVLVKGQDKKQSAKRAQELLASVGLAGFGDYYPAQLSGGQQQRVAIARSLAMDPEIMLFDEPTSALDPEKVGEVLAVMKQLAKKGMTMVVVTHEMGFAREVADSLIFMDDGYVVERGDAREVLTNPKEARTQAFLEQVLPGPT0020790_2472DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_00351936hypothetical proteinATGGTCACAGCTACAAAAGGAAGCAAAGCAACGATGAGCAGCATCGATGCAGCCCTGAAGCCACGGCTTCGGCTTCGGACCCGCTCTGAGTACGCCGGATGGATCCTCAGCATCCTCCTCGGAATCGGGGTCCTCACCTCCGTCCTGACCAACCCCAACTTCAAGTGGGGCGTGGTTGCCCAGTACTTCACGCATGAATCCATCCTCCGCGGGCTGATGCTCACGATCTTCCTCACCGTTGCGAGCATGACCTTGGGAACGCTCCTGGGGCTGGGCCTGGCGATCATGCGCTCTTCCCACGTGAAGCCGATCGCCATCGCCGCAAATATCTACATCACCATTTTCCGTGGCACCCCGGTGCTGGTGCAGCTGATCTTCTGGTTCAACATCTCCGCGTTGTACCCGGATCTGTCCATCGGGATCCCGTTCACGGACATCGGCACCGCAATCGACATGAACGTCCTGATGGCACCCATCACCGCGGCCCTGGTGGGCCTGACGCTGAACGAGGCCGCCTACATGGCCGAGATCATCCGCGGCGGGTTCTCCTCAGTCGGCAAGGGCCAGATCGAAGCCGCAGACTCCCTGGGCATGAGCTCCGGCACCAGGATGCGCAAGGTCATCATTCCGCAGGCGATGCCCTCGATCATCCCCGCGACCGGTAATCAGGTCATCGGCATGTTCAAAGGAACATCCCTGGTCAGCGTCCTCGGCGTCGCCGAACTGCTCCAAAGCGCGCAGCTGATCTACGCCCGCACCTACGAGACCATCCCGCTGCTGTTGGTTGCCAGCCTCTGGTACCTCGTGATGACCCTGCTGCTGAGCTACCCACAGTCCAAGCTCGAGCAGAAATACTCCCGCACAGCCTCCAGGCTTCCCCGGAAGGCCAAGAAAGCGGTTGTCCTGACCGAACCGGAAGAAGGTAACCTCCGATGAMVTATKGSKATMSSIDAALKPRLRLRTRSEYAGWILSILLGIGVLTSVLTNPNFKWGVVAQYFTHESILRGLMLTIFLTVASMTLGTLLGLGLAIMRSSHVKPIAIAANIYITIFRGTPVLVQLIFWFNISALYPDLSIGIPFTDIGTAIDMNVLMAPITAALVGLTLNEAAYMAEIIRGGFSSVGKGQIEAADSLGMSSGTRMRKVIIPQAMPSIIPATGNQVIGMFKGTSLVSVLGVAELLQSAQLIYARTYETIPLLLVASLWYLVMTLLLSYPQSKLEQKYSRTASRLPRKAKKAVVLTEPEEGNLRPGPT0020795_1894DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_00352930hypothetical proteinATGAAGACCATCAACAAAGTTCAGACCGCAGCCACAGGGCTGGCCCTCGTATTGGCACTGAGTGCCTGTGGCGGCGCTGCCACAGGCACTTCTGCCTCCGCGGAAGACAAGTCAAAGACCAACCACACCGCCGACATCTCAGAAGGCGTCCAGGCTGATCCGGCTGCCGTAGCCCTGTTGCCGCAGTCCATCAAGGACAAGGGCGAACTGACGGTCGCGATGGACCTGCACTACCCGCCGACGACATTCCTGGCTGAAGACAACACCACCCCGATCGGCCTGAACCCGGATGTGGCACGGCTCATTGCCAAAAAGCTTGACCTGAAGCTGAAGTTCGTGGACACGAAGTTCGACACCATCGTCCCCGGCCTTGACGGCGGCCGCTTCGACTTCACGGCCACCACCATGTCCAAGACCGAAGAGCGGCTCAAGGTCCTGGACATGATCGACTACTTCAAGGCCGGCACCTCTGTGGCCGCAGCCGCCGGAAACCCGCTGAACCTCACCGTCGAGACCCTCTGCGGAAAGAACATCGCCGTCACCCAGGGCTCCACCGGCCAGCTCAAGCGCCTTCCGGCCCTGAGCGAGCAGACCTGCACCTCGAAGGGACAGCCGGAGATCAACGCCGTAACGCTGCCCAACGTCCAGGAAGCCCTGACCCAGCTGCACTCCAAGCGGATTGACGGCGTACTCTACGACACCACCTCCCTCGGCTGGGCCGAGAAGCAGCAGCCGGGCTCCTTCACCATCATCGGCCGCGTAAACGTTGGCAACAGCGACGTGACCGCCGTTGGCCTGAAGAAGGACTCACCGCTGACACCGGCCTTGCAGACAGCGCTCCAGTCCGTCCTGGAGACCCCCGAGTACAAGGAGTCACTGGAGACCTGGGGTCTGGACTCCGGGGCCATCACCGACGCCAAGCTGAACTAGMKTINKVQTAATGLALVLALSACGGAATGTSASAEDKSKTNHTADISEGVQADPAAVALLPQSIKDKGELTVAMDLHYPPTTFLAEDNTTPIGLNPDVARLIAKKLDLKLKFVDTKFDTIVPGLDGGRFDFTATTMSKTEERLKVLDMIDYFKAGTSVAAAAGNPLNLTVETLCGKNIAVTQGSTGQLKRLPALSEQTCTSKGQPEINAVTLPNVQEALTQLHSKRIDGVLYDTTSLGWAEKQQPGSFTIIGRVNVGNSDVTAVGLKKDSPLTPALQTALQSVLETPEYKESLETWGLDSGAITDAKLNPGPT0020800_2384DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_00353675hypothetical proteinATGGCAGATACGAACCTCCGGCCGAAGTACATCTCTTTTGATATCTACGGCACCCTCATCAACTTCGACATTGATCCCACCACGCGTCGCCTGCTCGATGGCCGCATCTCAGAAGAGCAGTGGCCTGCCTTCAAGAAGCAGTTCCGCGGGTACCGCTTCGACGAGGTCTGCGGCGACTACAAGGACTACGAAGCGATCCTTCAGGATTCCTTTGACCGCGTGTGCAAGCGCTGGGGCATTGGGCCCACCGAAGGTGCCGGCGCAGCGTTCGCTGAGGCTGTGCGCGGCTGGTTTGCCCACGAGGACGTGCCGGCACCGCTGAAGCTCATGGGCGACAACTACAAGCTGGTGGCTCTGTCCAACGCCGACGACAGCTTCTTGGACATCAGCATTCCCAAGCTCGGGGCCGACTTCCACGCGGTGTTCACCGCTGAGCAGGCTCAGGCCTACAAGCCGCGTTACCAGGCCTTCGAGTACATGCTCGACACCCTGAACGCTTCGCCGGAGGACTTCCTGCACATCTCCTCGCACACCCGCTACGACATGCACCCGATGCACGACATGGGCTTCCGGAACCTCTGGATGCTGGACCGTGGCTATGACCCCATTGGCCCGGGCTACGACCTCAACACTGCTAAGTCCTTGGACGAGATCAACAAGCACCTCGGTCTCTAAMADTNLRPKYISFDIYGTLINFDIDPTTRRLLDGRISEEQWPAFKKQFRGYRFDEVCGDYKDYEAILQDSFDRVCKRWGIGPTEGAGAAFAEAVRGWFAHEDVPAPLKLMGDNYKLVALSNADDSFLDISIPKLGADFHAVFTAEQAQAYKPRYQAFEYMLDTLNASPEDFLHISSHTRYDMHPMHDMGFRNLWMLDRGYDPIGPGYDLNTAKSLDEINKHLGLPGPT0006885_2040DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-29_003541278puuB_1Gamma-glutamylputrescine oxidoreductaseGTGAAACTCATTCCTTACTGGCTGGACACAGCCGAAGCATCCGGGGACTACCGGCAGACGCCGGTACCGGAAAATGTCGATGTGGCAATCATCGGCGCCGGATTTACCGGGCTGTCCGCGGCCCTGGAATTCGCCAAGCAGGGCGCCAGCGTTGCCGTTTTTGAACGCCACACCGTGGGCTGGGGCGCATCGGGCCGCAACGGGGGAATGGCGACGACCGGTTTGGCCATCAGCTTCAGCACCGCGGTCAAGCGGTATGGGGAAACCCGCGCGGTGGAGATGTTCCAGGAATACAACGATGCCATCGAGACCATCGAGAAGCTGGTCCATGACAACGGCATCGACTGCGACTACAAGCGCTTCGGGAAGCTCTCGCTGGCGTTCCACAAGTCCCATTACGAGGGCTTCCTGAGGTCGCAGGAGAAGCTGGCCAAGCTGGCCAACCACCATGTCACCGTTATCCCCAAGTCCGAGATCCACAGTGAAATCGGCACGGACTTCTACCAGGGCGCGATGGTTGACCCGCTTGGGGCCGGCCTGCACGTTGGCAAGTTTGTCCACGGCCTGGCCGGAGTGGCTGTTGCCGCCGGAGCGGATATCTGTGAAAACGCTGCGGTGACCGAACTGAAGAAGGTTTCCGGCACTGTGCACGACGTGCACACCACCAGGGGCATCACCAGGGCCAAGCAGGTCCTGGTGGCCACCAGCGGTTACACCGGCAATGTCACGCCGTGGCTGCAGCGCCGGGTGATTCCGGTGGGCAGCTTCATCATTGTCACTGACCCGCTGCCCGAAGACGTGGTCAACCGGATCCTGCCCAACCGCCGCCAGGCCTCGGACAGCAAGATGCTGACCTACTACTTCCGCATCACCCCGGACAACAGGCTGCTGTTCGGCGGCCGGGCCCGTTTCGCGCTGTCCAGCCCGGATTCGGACGTCAAGAGCGCCGAGATCCTCCGGAAGGCAATGCTCGAGCTCTTCCCGTACCTCTCCAACGCCAAGGTGGACTACATCTGGGGCGGCCTGGTGGACCTCTCCATGGACCAGATGGTACATGCGGGGCAGCACGACGGCCTCTTCTACTCCCTCTGCTACAGCGGACACGGAGTGCAGATGGCTGCGCACATGGGCAAGCGGATGGCTCACTACATGGCCGGCGACAAGACCGCCAACGTGTGGGAAGACCTGAAGAACCCGCCCGTGCCAGGCCACTTCGGCCCACCGTGGTTCCTGCCCTTCATCGGCGCGGCGGCAAAAATCATCGACCGAGTCAAGTAGMKLIPYWLDTAEASGDYRQTPVPENVDVAIIGAGFTGLSAALEFAKQGASVAVFERHTVGWGASGRNGGMATTGLAISFSTAVKRYGETRAVEMFQEYNDAIETIEKLVHDNGIDCDYKRFGKLSLAFHKSHYEGFLRSQEKLAKLANHHVTVIPKSEIHSEIGTDFYQGAMVDPLGAGLHVGKFVHGLAGVAVAAGADICENAAVTELKKVSGTVHDVHTTRGITRAKQVLVATSGYTGNVTPWLQRRVIPVGSFIIVTDPLPEDVVNRILPNRRQASDSKMLTYYFRITPDNRLLFGGRARFALSSPDSDVKSAEILRKAMLELFPYLSNAKVDYIWGGLVDLSMDQMVHAGQHDGLFYSLCYSGHGVQMAAHMGKRMAHYMAGDKTANVWEDLKNPPVPGHFGPPWFLPFIGAAAKIIDRVKNANANANANA
D1-29_003551548safD_2COG1012Sulfoacetaldehyde dehydrogenaseATGTCATCACCAACTGTCGCTGAAGCGCGCCCAAAAACTACAGAGGAATCTGCGTACAGGCGTGCACGATTTGCCAACCTTCCCGGGGGAGCTTTTTTCGAGGGGCAGTGGCAGACCGCCGATCTGACCCTGGAGGTGCGGGATCCTGAGGACGGTGTCCTGCTCGGCCGGGTGTGCACTTCCACTCCAGAGGATGTGGAGCGTGCCATCGCCCACATCCGCCGCCATCTTGAGGCGGGTGAGTGGCCGTTGCGTGCCCGCCGGCAGGCGCTGGAAAAGGCTGTGCTGCTTTTGGGCGAGCAGGCTGAGCGGTTCGCGAACATCATCGCGTCCGAGAGCAGCAAGACCATCACCGAGGCCGAGCGCGAGGTGCGCCGCTGCGCCGAGACGCTGCGGCTGTCCGCGGCGGCTGCCGGGGAGCTGGCAGGGGAGACCCTGGGTTTTGAGGACAGCATGGCAGGTGCCGGCAAGATTGGCTGGTACAGCCGGAAGCCGGTGGGGATCGTCGCGGCGATCACCCCGTTCAATGATCCGCTGAACCTGGTGGCGCACAAGCTGGGCCCGGCCCTGATCGGCGGCAACGGCGTCCTGCTCAAGCCCTCCACGCGCACACCCCTGGTGGGGCTGGCCTTTGTCCAGCTGCTGCTGGAAGCCGGTGTCCCGGCGGGCCGGATCGCGGCGATCGTGACCGGGCCCGGCGTGTCCGAGGCTGTTGTCACGGACCCGGGCGTTGACCTGATTTCCTTCACCGGCGGCCCCGCCACGGCAGAACGGATCGCCGCGGCGGCCGGTGCGAAGAAGATCCTCTCCGAACTCGGCGGGAACAACGCCACGATCATCTGCGCCGACGCCAACGCGCAGGCCGCGGCGAAGGCCGTCGTGGCCGGCGCGTTCGGGGTCGCGGGGCAGAACTGCCTGTCGGTCCAGCGGGTCTACGTCCACACCTCACTGTTTGAGGAAGTCCTGGAACTCGTCACCACGGGCACGAGGGCGCTGCGGACCGGGCCGAAGCTTGACCGGGGAACCGACGTGGGCCCGCTGATCTCCGAGGCCGAGGCCCGCCGGGTGGAGGAATGGGTGGAAGAAGCCACAGCGGCCGGCGCCACCATCCACGCCGGCGGGACCCGCCGGGGCGCCTACTATGAACCCACGGTCCTGACCGACGTGCCCTCGCAGGCCCGGGTGATCCGGGACGAGGTGTTCGGCCCGGTGGTCAGCATCCTGCCGTTCATCGAGGTCCGCGACGCCGTGTTCGCGGCCAACAACACCGAGTTCGGCCTCCAGGCCGGGGTCTTCACCCAGTCCATCGACCTGGCCCTGGCGATAGCGGAGAAACTGCACGTGGGCGCCGTGGTGATCAACGAGACCAGCGACGTCCGGATCGACTCGATGCCCTTTGGCGGGTTCAAGAAATCCGGCGTAGGCCGCGAAGGCGTCAGCCACGCGGTCCGCGAAATGACAGAACCCAAAAACACCATCATCAACCTCGGCGAATCACAGGCCCGCTGGCAGGTCCTGGGCGGCCTAACGGAACGGACCACACCATGAMSSPTVAEARPKTTEESAYRRARFANLPGGAFFEGQWQTADLTLEVRDPEDGVLLGRVCTSTPEDVERAIAHIRRHLEAGEWPLRARRQALEKAVLLLGEQAERFANIIASESSKTITEAEREVRRCAETLRLSAAAAGELAGETLGFEDSMAGAGKIGWYSRKPVGIVAAITPFNDPLNLVAHKLGPALIGGNGVLLKPSTRTPLVGLAFVQLLLEAGVPAGRIAAIVTGPGVSEAVVTDPGVDLISFTGGPATAERIAAAAGAKKILSELGGNNATIICADANAQAAAKAVVAGAFGVAGQNCLSVQRVYVHTSLFEEVLELVTTGTRALRTGPKLDRGTDVGPLISEAEARRVEEWVEEATAAGATIHAGGTRRGAYYEPTVLTDVPSQARVIRDEVFGPVVSILPFIEVRDAVFAANNTEFGLQAGVFTQSIDLALAIAEKLHVGAVVINETSDVRIDSMPFGGFKKSGVGREGVSHAVREMTEPKNTIINLGESQARWQVLGGLTERTTPPGPT0018005_345DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131NANA
D1-29_003561083dmlACOG0473D-malate dehydrogenase [decarboxylating]ATGAACGCCAACACAAGCACGCACAATATCGCGGTGATCGCCGGGGACGGCATCGGCCAGGAAGTCGTCCCGGCGGCCATCGAGTGCCTCGAGCGGATCGCCTCGATGCATGGGCTGGACCTGAACTTCACGTTCTTTGAGTGGGGCTCTGACTACTACCTGCGGCATGGCCGGATGATGCCGAAGGACGGCATCGACCAGCTCGCAAAGCATGACGCGGTGTTCCTGGGCGCGGTGGGCTCACCGGAGGTCCCGGACACCGAATCACTGTGGGGGCTGCTGATCCCGATCCGGCGCGAATTCCAGCAGTACATCAACCTCCGCCCGGTCAAAACGCTCGACGGCGTGGCCTCACCGCTCGCCTCGGACAAACCGATCGATATCCTGATCGTCCGGGAAAACAACGAGGGTGAATACTCGGAGGTGGGCGGGCGGATGTACCGTGGCCTGCCGCACGAGAGCGCCGTGCAGGAAACCATCTTCACCCGCCTGGGCATCTCCCGCGCCGCCCGCTACGCCGCTTCCCTGGCCTCGTCCCGCACGGGCAGGCTGACGTCCGCAACCAAGAGCAACGGCATCGTGCACACCATGCCGTTCTGGGACGAAGTCGTCGAAGAAACCGTCAGCAATTACCCGGGCGTGACTGTGACCCACGAACTCGTGGACGCCCTGGCCGCGCACCTGGTCCTGAAGCCCTGGACCCTGGACGTCATCGTCGCCTCCAACCTCTTCGGAGACATCCTCTCGGACCTGGGCAGCTCCGTAACAGGGTCCATCGGGCTGGCCCCCAGCGCGAACCTGAACCCGGAAGGCCACTTCCCGTCCCTGTTCGAACCGGTCCACGGCTCCGCCCCTGACATCGCCGGGAAGAACCTGGCAAACCCGGTAGGGCAGATCTGGTCCGGTGCGATGATGCTGGAGCACCTCGGCCACCCCGAAGCCGCCGCGCACCTGCAGGCCGCGTTCGAATCAGCCCTGCGCGACGGTCACGGCACCCGCGACATCGGCGGAACCTCGTCCACGACCGAATTCACGGCCGCCGTCCTGACCGCCATCAACGCCCTCTCCCCGGTCACAGTATGAMNANTSTHNIAVIAGDGIGQEVVPAAIECLERIASMHGLDLNFTFFEWGSDYYLRHGRMMPKDGIDQLAKHDAVFLGAVGSPEVPDTESLWGLLIPIRREFQQYINLRPVKTLDGVASPLASDKPIDILIVRENNEGEYSEVGGRMYRGLPHESAVQETIFTRLGISRAARYAASLASSRTGRLTSATKSNGIVHTMPFWDEVVEETVSNYPGVTVTHELVDALAAHLVLKPWTLDVIVASNLFGDILSDLGSSVTGSIGLAPSANLNPEGHFPSLFEPVHGSAPDIAGKNLANPVGQIWSGAMMLEHLGHPEAAAHLQAAFESALRDGHGTRDIGGTSSTTEFTAAVLTAINALSPVTVPGPT0001905_20DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TARTRATE_UTILIZATION,PGPT0001905-ttuC|dmlA-K07246NANA
D1-29_003571005ghrB_1Glyoxylate/hydroxypyruvate reductase BATGAGCCCCGGTTACAGCATGAGGACCGGAGCCCCAGTGCCCAAGCGTCCCGTCGTCGCCGCCCTCTACCGCGAAGCACTCCCGCCCCGCCTGGCGGAAGTCGAGGAACTCGCAGAGGTCCGGCTGACCAAGGCAGACGGCCTCGCGGATGCGCTGGACGGCGCCGACGTGCTCTACCAGTGGCACTCCTTCTCGCCGGCACTGCGTGAGAACTGGGGCGCCGCCTCCACCCTGCAATGGATCCACGTCACCGCAGCAGGTGTCAGCCAGCTCCTGTTCGATGAACTGGTCCGCAGCAACGTGACCTACACCAACTCCCGCGGCGTGCTCAGCACGGCCATCGCCGAGTTCGCGCTGGGCTTCGTCCTGGATATGGCCAAAGACTCCCAGGGCTCCTACCGGTTGCAGCAGGAACAGCGCTGGCAGCACCGGACTACCCGCAAAATCCAGGGCCAAACCGCCCTCGTGGTCGGCACCGGGTCGATCGGCCGGGAAATAGCCAGGCTCTTCCGCGCCGTGGGCATGGAGGTGGACGGCGCCGGAAGGACAGCCCGGCCAGGAGACACCCACTTTGACCGGATCCACTCCTCCCAGAACCTCGCCGCGGTGGTTCACGGCTATGACTACCTGATCCTGGCAGCCCCGCTGACCGCCGACACCAAAAACCTGGTCGGCGCTGGCGTCCTCAATGCCATGAAACCCTCGGCCCGGCTCATTAACGTCGGCCGCGGGGAACTGGTTGATACCGAAGCACTGATCCACGCGCTCACCACAGGCTCCATCGCCGGCGCAGCCCTGGATGTTGTCCACCCGGAACCACTCCCGGCCGGACACGCCCTCTGGGACATGGAAAACGTCATCATCACCCCACACATGTGCGGCGACACCGAGAACTACCTCGATGACCTCGGCAAGCTCTTCGTAGACAACCTCAAACGCTACTGCAGCGGCGAACCACTGGAAAACATCGTGGACAAAGAACTCGGATTCGTCCCCGCCGGCTAGMSPGYSMRTGAPVPKRPVVAALYREALPPRLAEVEELAEVRLTKADGLADALDGADVLYQWHSFSPALRENWGAASTLQWIHVTAAGVSQLLFDELVRSNVTYTNSRGVLSTAIAEFALGFVLDMAKDSQGSYRLQQEQRWQHRTTRKIQGQTALVVGTGSIGREIARLFRAVGMEVDGAGRTARPGDTHFDRIHSSQNLAAVVHGYDYLILAAPLTADTKNLVGAGVLNAMKPSARLINVGRGELVDTEALIHALTTGSIAGAALDVVHPEPLPAGHALWDMENVIITPHMCGDTENYLDDLGKLFVDNLKRYCSGEPLENIVDKELGFVPAGNANANANANA
D1-29_00358102hypothetical proteinATGTTAGATGACGTTGCTGATCAGCAGATGTCCGGCGGCTCGGAACCCGATGACCTGTGCGATGAATACTGCCACTACTGCTTAGGGCCGGAAACAGACTGAMLDDVADQQMSGGSEPDDLCDEYCHYCLGPETDNANANANANA
D1-29_003592196hypothetical proteinATGGCTGGATGGAATGCTGATACTGCGGCGGGCCCCATTGGGGCCGGGACGGTCACCTTGGTGGAGGGATCGTCCTTCTGCATCTCGCTGCAGAACGGGGACATCCATGCTGAGTTTCCCCATGGAGTCTTTTACCTTGACACCCGCATCCTGTCCGGCTGGTGCTTAACCGTAAACGGCATGGCGCTTGAGCCGTTGGCGGCGGAGACGAAGGAACCCTACAGGGCCCTGCTGGCCGGGCGCGTTCCGCGGGCCGATGGATACGCCGACAGCCCCCTGATTGTGGAGCGGCTGCGGGAAGTTGGCGCGGGCATCCAGGAACAGGTGACCGTCCGCAACTATTCGCCCGTCCCTGCGGAATGCCTGATTTCGCTGACGGTCGGAGCGGATTTCGCGGACCTTTTTGAGGTGAAGGAAGCCCGGGTCCAGCGGCGGTGGGAAGAAACCCGGCACGTGGACGGCGACACCTTGGCCATCCGGTCCACCTGGCAGGACATCCAGAAAGGCATCCTGGTCCAGGCACCCGGGGCAGAGGTGACCCCTGAGGCCCTGACGTACCGGGTGTCCGTCGCCCCGCATGGCCAGTGGAGCACTGTCCTGACAGTGGTTCCCAGCAACGACGCCGCCAGTCCTCCGCCGCCGTCGTTCATCCATACCGAAGCGGATGGATTGTCCCCCCGGGACCTGCGCCGACGCGAGTGGGTGGCCAAGATTCCAGTGCTGCGGCTGGAAAACCATGCCCTCGAACGGACGTTGCGGCGCAGCTACGACGACCTGGGCGCCCTGCGCATCGAGGACCCGAACCATCCGGAACGGGTGGTTGTGGCCGCCGGTGCGCCGTGGTTCATGACATTGTTCGGCCGGGACTCCCTGTGGGCTTCGGAAATGGCGATGCCGGTGGACCCCTCCCTTGCCCTGGGCACGTTGCAGACGCTGGCGGACCGGCAAGGCAGGGTGGTGGACCCGATGAGCGAGGAGGAGCCGGGCAAGATCCTGCACGAGGTCAGGCTGGACGTCTCCAGCGGCCTTTCCTTGGGCGGAAAGTCCGTCTACTACGGAAGCGTGGACGCTACTCCGCTGTTTGTGGTGGTTCTTGGCTCGGTCAGCCGGTGGGGATTCGCCAAGGACACCATTGCGGCCCTGCTCCCCCATGCCGACCGGGCATTGGAATGGATCCGCAAGTACGGGGACAAGGACGGGGACGGTTTTGTCGAATATGAACGGCTCAACCCCCAAGGGCTGATCAACCAGGGCTGGAAGGACTCCTGGGACGGCATCAACTTCGCCGACGGCCGCATGGCTGAGGGTCCGATCGCCCTCTGCGAGGTTCAGGCGTACGTCTACGACGCGTATATGTCCCGCTCGTGGCTTGCCTACGATACCGGTGACATTGCCTTGGCGGAGGAACTGCGGGACCGCGCGAAGCAGCTCAAGGAACAGTTCAACGAGCAGTTCTGGCTTCCTGACCGCGGCTACTACGCCATCGCCCTGGACGGGGACAAGCGTCCTGTCGATGCCTGCGCATCGAACATGGGCCACTGCCTCTGGACGGGCCTGGTGGACGAGGACAAGGCGCCGCAGGTGGTGGAGCGCCTGATGTCCCCGGAGATGTTCAGCGGCTGGGGCATACGTACCCTGGCAAGCGACATGGGTGCCTACAACCCCGCGAGTTATCACAATGGCTCAGTGTGGCCGCACGACAACGCGGTTATCCACGCCGGGCTCGTACGCTATGGATTTGTGGCCGAGGCGCAAAGGATTTCGACGGCGTTGCTGGAGGCTGCGGAGTATTCCGGCGGCCGGCTGCCGGAGCTGTTTTGCGGCTTCAGCCGGGACCAGTTCGCCGAGCCTGTGCCCTATCCGACGGCCTGCTCCCCACAGGCCTGGGCGGCAACGACGCCAATCCTGCTGGTGACGAGTCTGATGCGGTATGACGCCCATGTTTCCCGTGGCGGCATGTGGATGGACCCCGTTCTCCCCGAGTCCTACGGCAACCTGCATATCAGCAATGCCCCCATGGCCGGTGGCCGGATCACCATCGATATTGCCAATTCAGTTCCCACCGTCCAGGGGCTGCCCGAAGGGATGGAGTTCCACCACGGACACCGGCCATGGCTGACAGAGCTCGTGGAGGAAGCCGGCCGGCGCCAAAAGTCCGGCCTTCAGGATCAGTCTGTTTCCGGCCCTAAGCAGTAGMAGWNADTAAGPIGAGTVTLVEGSSFCISLQNGDIHAEFPHGVFYLDTRILSGWCLTVNGMALEPLAAETKEPYRALLAGRVPRADGYADSPLIVERLREVGAGIQEQVTVRNYSPVPAECLISLTVGADFADLFEVKEARVQRRWEETRHVDGDTLAIRSTWQDIQKGILVQAPGAEVTPEALTYRVSVAPHGQWSTVLTVVPSNDAASPPPPSFIHTEADGLSPRDLRRREWVAKIPVLRLENHALERTLRRSYDDLGALRIEDPNHPERVVVAAGAPWFMTLFGRDSLWASEMAMPVDPSLALGTLQTLADRQGRVVDPMSEEEPGKILHEVRLDVSSGLSLGGKSVYYGSVDATPLFVVVLGSVSRWGFAKDTIAALLPHADRALEWIRKYGDKDGDGFVEYERLNPQGLINQGWKDSWDGINFADGRMAEGPIALCEVQAYVYDAYMSRSWLAYDTGDIALAEELRDRAKQLKEQFNEQFWLPDRGYYAIALDGDKRPVDACASNMGHCLWTGLVDEDKAPQVVERLMSPEMFSGWGIRTLASDMGAYNPASYHNGSVWPHDNAVIHAGLVRYGFVAEAQRISTALLEAAEYSGGRLPELFCGFSRDQFAEPVPYPTACSPQAWAATTPILLVTSLMRYDAHVSRGGMWMDPVLPESYGNLHISNAPMAGGRITIDIANSVPTVQGLPEGMEFHHGHRPWLTELVEEAGRRQKSGLQDQSVSGPKQNANANANANA
D1-29_00360114hypothetical proteinATGCAAGCTAAATCCTTCGTTCCCGTATCCGGGGGCCATATCAGGCGCAAAGCCGCCATCCGCTACATCCTGGACGCTGCCCCGCAGCGCGGCCTTACCTGGAGTACACGGTGAMQAKSFVPVSGGHIRRKAAIRYILDAAPQRGLTWSTRNANANANANA
D1-29_00361204hypothetical proteinGTGACTGCGATGCTCAGCTCAGGAGACCGGGTTGTCTTTGAAACCGACCGATTCGGGGGAGCTGGCATTGTTGACGATGTCATGCCTGACGGGTCAGTTGTCTGGGTGTGGACCGACGACGGCATGGGGCGCAGGATGATCTGCACCAAAGACGGCGCCTCCATAGCCCGCGAAGACGGAGAGAGCTGGCAGTCAGCGCGCTAGMTAMLSSGDRVVFETDRFGGAGIVDDVMPDGSVVWVWTDDGMGRRMICTKDGASIAREDGESWQSARNANANANANA
D1-29_00362570hypothetical proteinATGCCGTACACAGCAAGAAGGCCGCAGAGGTTCTCCCGGGAGGAACTGGAGTCCCGAATTCCCGGCTGGGGAGCTGATCTGGACCCCGCCGACAGGCCGGCAGTGCCCCGGGAACGCACGGACCTGCAAACGGGAGCCCACTGGGAGTTTCCCGAACGCCAGCCGGAGGAGTGGCACCGGGAGCGGTCTGTGGAACACCAGTTCCTGACTCCGGTTTTTGGGACGTCCGCTCCCCCGAAAGGTGTTTCAGGGGCCATCCGAAAATACGCGTACCGGTTCAGCGAGGGACGCGCGGCGCACTGGCTGATTCTGGTCGCCGCGGACAGGGTGGACGCCTGGGGCAGCCATCTGCGGTCATTCGGGACACTGCGCCCGGACAACCCCGTGACGGAAACAGGTGTTCTGAGCGAAAGGGCACGCCACGGTTTCCGGTCACGGTTCGACGGTAAGCGCCCGGACGTTAAACACCAGTGGCTGGACCCTATTATCGTTGCCGGCCCGTGGCTGGGAGTGGCTGCCGCGGGCATTGCCGCCGTGCGGGCCCTGGCCGCCAGGCGGAGCGGACCCTAGMPYTARRPQRFSREELESRIPGWGADLDPADRPAVPRERTDLQTGAHWEFPERQPEEWHRERSVEHQFLTPVFGTSAPPKGVSGAIRKYAYRFSEGRAAHWLILVAADRVDAWGSHLRSFGTLRPDNPVTETGVLSERARHGFRSRFDGKRPDVKHQWLDPIIVAGPWLGVAAAGIAAVRALAARRSGPNANANANANA
D1-29_003631149COG1063putative zinc-binding alcohol dehydrogenaseATGCGCGCAATGGTGTACCGCGGCCCATATAAGGTCCGGGTGGAAGAAAAGGAAATCCCCAGGATTGAGCATCCCAACGACGCGATCGTGCGGGTCTCGCTCGCCGCGATCTGTGGTTCGGACCTGCATCTGTATCACGGCATGATTCCGGACACCCGCGTGGGCACCACCTTTGGACACGAGTTCGTGGGCGTCGTTCACGAGGTGGGGCCATCCGTTGAGAACGTCAAACCCGGAGACCGGGTCATGGTGCCGTTCAATGTCTATTGCGGCTCGTGCTATTTCTGCTCCCGTGGCTTGTATTCGAACTGCCACAATGTCAATCCCAATGCCACCGCCATCGGCGGGATCTACGGCTATTCGCATACCTGCGGCGGTTACGACGGCGGGCAGTCCGAATTCGTTCGGGTCCCTTTTGCCGACGTGGGGCCTGCACCGATCCCCGACTGGATGGATGAGGAAGACGCAGTCCTCCTCACCGACGCCCTGGCCACCGGCTACTTCGGGGCGCAACTCGGGGACATCGCCGAAGGTGACACCGTGGTTGTTTTCGGTGCCGGCCCGGTTGGCCTTTTTGCTGCCAAATCTTCCTGGCTGATGGGGGCAGGCCGGGTCATCGTCATCGACCACCTTGAGTACCGGCTGGAGAAAGCGCGCACCTTTGCACACGCCGAGACGTACAACTATGCCGACTACCAGGACATTGTTGTGCACCTGAAGAAGATCACGGACTATTTTGGTGCAGACGTGGCCATCGACGCGGTGGGCGCCGAGGCTGACGGCAATTTCCTGCAACACGTCACAGGAACAAAACTGAAGCTGCAGGGCGGATCCCCGGTGGCACTGAACTGGGCTATTGACTCGGTCCGCAAGGGCGGCACAGTAGCAGTTATCGGCGCCTATGGCCCGGTGTTCAGCGCCGTGAAGTTCGGTGATGCAGTCAACAAGGGGCTGACACTGCGGATGAACCAGTGCCCGGTGAAGCGCCAATGGCCGCGGCTTTTCGACCACATCCGCAACGGCTACCTCAAGCCCAGTGACATCGTCACCCACCGCATACCGCTTGAGGACATAGCGGAGGGATACCACATCTTCTCGGCAAAGCTCGATAACTGCATCAAACCGCTGATCCTGCCCACGGCCAGCTGAMRAMVYRGPYKVRVEEKEIPRIEHPNDAIVRVSLAAICGSDLHLYHGMIPDTRVGTTFGHEFVGVVHEVGPSVENVKPGDRVMVPFNVYCGSCYFCSRGLYSNCHNVNPNATAIGGIYGYSHTCGGYDGGQSEFVRVPFADVGPAPIPDWMDEEDAVLLTDALATGYFGAQLGDIAEGDTVVVFGAGPVGLFAAKSSWLMGAGRVIVIDHLEYRLEKARTFAHAETYNYADYQDIVVHLKKITDYFGADVAIDAVGAEADGNFLQHVTGTKLKLQGGSPVALNWAIDSVRKGGTVAVIGAYGPVFSAVKFGDAVNKGLTLRMNQCPVKRQWPRLFDHIRNGYLKPSDIVTHRIPLEDIAEGYHIFSAKLDNCIKPLILPTASPGPT0006375_428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_003641206COG2170Putative glutamate--cysteine ligase 2ATGACCTTGGGCGGCCTGCGAAGCTTCGGGGTGGAGGAAGAGTTCCTGCTCGTTGACGCCCGGACAGGAAGCCATGCCCCCGTAGCTGAATCGATAGTGGACAAATCCGGCGCGGACGCAGCGGCCCGCGCCGGGAAACGCCCAGGTACGGGAGGCGCCAAAGCACGGCCTCTGCATAACAGCCTGACCGGCGAGGTTCAACGCGAGCAGCTGGAGGCAGTGTCCGCGCCGTTCGAGGATCTGGAGCAGCTGGCTGCTGCCCTCCGGGCAGGACGGGAAGAGGCTGACCGCCAGGCGTCCAGGGTTGGCGCAAGGATCGTCCCCCTCGGTACGTCACCCCTTCGTGTACTCCCGCACCGGGCAAGCCAGCCCAGGTACCGGGCTATGGAAGAGCGCTTTGGGCTGATCCTTCGGGAACAGTTGATGTGCGGCTTCCATGTTCACGTTTCGGTGGCCTCGCCTGAGGAAGGGGTAGCCGCACTTGACCGGATCAGGACGTGGCTTCCTGTCCTGATCGCGCTTTCTGCCAATTCTCCCTTCTGGCAGGGGCAGGACACCGGTTACGCCAGCTTCCGCTACCAGGTCTGGCGGCGCTGGCCAACCGCAGGACCTACCGAAGTTTTTGGTTCGGCCTCAGCCTACGAAGAACTCGTTCAGATGCTGCTCTCCTGCGATGTCCTGCTGGATGGCGCCATGATCTACTTCGACGCACGCCTGTCAGCAAGCTATCCGACTGTGGAGGTACGCGTGCCGGACGTCTGCACAGAGCCTGACCACGCCGTCGCCCTGGCCGCGATTACCCGCGCCCTGGTGGAGACGGCGGCAAGGGACTGGTCAAAGGGGGTGCCGCTGCCCCCGGTTCCGGCCGAGATGCTCCGGCTCGCGTCGTGGCGCGCCAGCCGTTTTGGACTCAGCGGGGACCTGATCCATCCCGTCCACAATCGCCCGAGTCCTGCCCGGGAGTGCGTGGAAGCTTTGCTTTCCCATACGAGGGACGCCCTGTCCGACGCCGGTGACCTCACGTTCGTCACCGACACGGTTGCCAGGATCCTCGCCGAAGGCAACGGGGCGGAACGGCAAATGGCGGTTTTCAGCCGCACCGGAAATTTGCGCAACGTCGTTCTGGATGCCATGAACACCCCAACCCTGCGCCCTTCGCCCGCGGAGCGGCGCTATCCCGTCGGACTGAATCGTGAGGGGACCTAAMTLGGLRSFGVEEEFLLVDARTGSHAPVAESIVDKSGADAAARAGKRPGTGGAKARPLHNSLTGEVQREQLEAVSAPFEDLEQLAAALRAGREEADRQASRVGARIVPLGTSPLRVLPHRASQPRYRAMEERFGLILREQLMCGFHVHVSVASPEEGVAALDRIRTWLPVLIALSANSPFWQGQDTGYASFRYQVWRRWPTAGPTEVFGSASAYEELVQMLLSCDVLLDGAMIYFDARLSASYPTVEVRVPDVCTEPDHAVALAAITRALVETAARDWSKGVPLPPVPAEMLRLASWRASRFGLSGDLIHPVHNRPSPARECVEALLSHTRDALSDAGDLTFVTDTVARILAEGNGAERQMAVFSRTGNLRNVVLDAMNTPTLRPSPAERRYPVGLNREGTPGPT0026300_409DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-29_00365294hypothetical proteinATGGCGGACCAGAGCACAGAGCGGAAAGAGCCTATCGTGGCCACCTCTCACTTTGACCAATTCCTCATTGAAGCGACAGTTACCGACCCCGGCACAGATCTGTCCCTTGGAGCGGACACCCTCTACGGCCTATACACAAGCTGGTGTTTTCTCAAGGGCCTGGTACCGAAGGAAGACAGTGTCTTCCGGGCAGCCATGCGGCGCGCCGGCATTGACCTGCACGACACCCGGCTGCGCATGACGGGCCCGGCGGCGGCAGACTACATCTTGGCGAGTTACCCAGCGATGGCATGAMADQSTERKEPIVATSHFDQFLIEATVTDPGTDLSLGADTLYGLYTSWCFLKGLVPKEDSVFRAAMRRAGIDLHDTRLRMTGPAAADYILASYPAMANANANANANA
D1-29_00366795ybeMDeaminated glutathione amidaseATGCGGGTTGCTGCTGGGCAGTTCAGTGCGGGGACAGATATATCCCTGAACCTGTCGGCGATCTCCGTGCTGATCGGGAAAGCAGCGGATGTGTCGGCGGAGTTGCTTGTCCTCCCTGAGTCCAGCATGTATGCCAGCCCTGAACCACCCCCTGACGCCGCCGTCCTTGCACAGAATCTTGATGGCCCCTTTATCCGGGACATCGCGGTGCTGGCGAGGGAAGCAGGTCTTGGTGTGGTGGTGGGGATGATGGAGTCCCGACAGGACGGAGCGCCGCCATACAACACCCTTGTGGCGCTTGATGTCCGCGGCGGAATCAGCGCCTTGTATCGCAAAATCCATCTCTACGATGCATTCGGTTACAGCGAAAGCGCCTGGACCAGCGCCGGTCCAATTGCGGAGCCCCAAGTTCTGGATATCGGCGGTTTCCGGGCCGGAATGCTCACCTGCTATGACCTCCGATTTCCTGAAAGCGCACGATTCCTTGTTGACGCGGGTGCGAATGTCCTCCTTTTGCCCGCGATGTGGATAGCGGGCCCCGGCAAGGAGGACCACTGGAACACTTTGGTGCGTGCCCGCGCCATCGAGAACACGAGCTACGTCGTGGCGGCGAACCAGTGCGGCCCGCTGGCCACGGGATATTCAATGATCGTGGATCCGTTTGGAGTGGTGATGGCCAATGCTGGCGAAGGGGCGGGGCTGGTGTTTGCCGACCTGGACCTCACGCGGCTTGCCGACGTACGCCTGCGGATCCCCTCCTTGGGAAACCGGCGGTTTAAAGTCCTGCCCGGCTGAMRVAAGQFSAGTDISLNLSAISVLIGKAADVSAELLVLPESSMYASPEPPPDAAVLAQNLDGPFIRDIAVLAREAGLGVVVGMMESRQDGAPPYNTLVALDVRGGISALYRKIHLYDAFGYSESAWTSAGPIAEPQVLDIGGFRAGMLTCYDLRFPESARFLVDAGANVLLLPAMWIAGPGKEDHWNTLVRARAIENTSYVVAANQCGPLATGYSMIVDPFGVVMANAGEGAGLVFADLDLTRLADVRLRIPSLGNRRFKVLPGNANANANANA
D1-29_00367840COG2071Putative glutamine amidotransferaseATGAACCACACCGAAGGTGCCGCGCGGCCGCTGATCGGGCTGACCACTTACCTTGAGGCGGCCGGCACGGACGGCTGTGGCAGGGTGGAAGCGGCGTTTCTGCCGCAAAAGTACATGGAACCGATCATCGCCGCCGGCGGTGTGCCGCTGCTCCTTCCCCCTCAGCCGGTGACGGCTCCTGCCGTGGAACGCCTGATCAGCACGGTCGACGGGCTGCTCATCCCCGGCGGCTGGGACGTGGACCCCTCGCTTTATGGCCAGGAACGCCACGCTGAAACAGACCAGCCCCGCACCGGCCGCGACGCCTGGGAACAGGCCCTCATCCTGGAAGCCATCCGTCAGGACGTGCCGCTGTTTGGCATATGCCGGGGTGAGCAGTTGCTGAACGTCACACTGGGAGGCACGCTGCACCAGCACCTGCCGGATGTGATCGGGAGCGCCCACTACCAAGCGGGCGGACACCGTTTCCACACCATCCCTGTGGAGATTAGGCCTGGTTCCACGCTGGGCGGACTTTTGGGCCCGGCGGCAGACGACGTCCCGGTATCCCACCACCAGGCTGTCGATAAGTTGGGGCGTGGCCTCATGGCAACAGCCTGGAGCCCCGAGCAGGTAGTTGAAGCGATCGAACACCCGGGACTCACATTCTGCGTTGGCGTCCAGTGGCACCCCGAGCAGATAGCTGGTGAAGAGGTTCTGTTCCAAGCCTTTGTTGATGCTGCGGCCGGAAAGATGCTTTCCAGGCTCCTGCCGGCGCTGGACCTGGCCGGGCCTCAGATCCCGACGCCGGGCCCTCAACTTTCCGGCGTCGGGCACCTCAGCGCTTCAAAGGCCAGCTAAMNHTEGAARPLIGLTTYLEAAGTDGCGRVEAAFLPQKYMEPIIAAGGVPLLLPPQPVTAPAVERLISTVDGLLIPGGWDVDPSLYGQERHAETDQPRTGRDAWEQALILEAIRQDVPLFGICRGEQLLNVTLGGTLHQHLPDVIGSAHYQAGGHRFHTIPVEIRPGSTLGGLLGPAADDVPVSHHQAVDKLGRGLMATAWSPEQVVEAIEHPGLTFCVGVQWHPEQIAGEEVLFQAFVDAAAGKMLSRLLPALDLAGPQIPTPGPQLSGVGHLSASKASPGPT0007105_154DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007105-trpG|phnB-K01658NANA
D1-29_003681374radACOG1066DNA repair protein RadAATGGCAACAAAGACCTCCCGGGCCTCCAAGGCGCCCGCCTACAAGTGCGCCGAATGTGGCTGGACCACCGTCAAGTGGGTGGGCCGCTGCGGGGAATGCCAGGCCTGGGGCACCGTGGAGGAAACCGGTGCCGCGGTGGCCCGGACCACCGCGGCAGCCACTGTTCTTGAGCCGGCCCGCCGGATCGCGGAGGTGGACGCCACCACCGCGGCATTCCTGCCCACGGGCGTTGATGAGCTGGACCGGGTGCTGGGCGGCGGACTGGTACCGGGCGCCGTCATCCTGCTGGCCGGCGAGCCTGGCGTGGGGAAATCCACCTTGCTGCTGGACGTTGCGGCAAAGTTTGCCCGCACCGCCCAGGACGTTCTGTATGTCACCGGTGAGGAGTCAGCAGCTCAGGTGAAGCTGCGCGCGGAACGGATCGACGCCGTCGCCGAGTCTCTGTACCTGTCCGCGGAGACAGATCTTGGCCAAGCGCTGGGCCAGGTCGAGAAGATCGAGCCACGGCTGCTCATTGTGGACTCGGTCCAGACCCTCAGCAGCGCTGACGTGGACGGCAGCGCCGGCGGTGTATCCCAGGTCCGCGAAGTCGCCGCCTCAATCATCGCCGCGGCCAAAAGGCGAAACATGACCACCCTGCTGGTGGGCCACGTGACCAAGGACGGATCCATCGCCGGGCCCCGCCTTCTGGAGCACCTCGTGGACGTCGTGTGCCAGTTCGAAGGCGAGCGGCACTCCCGGCTCCGGCTCCTGCGTGCGGTGAAGAACCGCTACGGGCCTACGGATGACGTCGGCTGCTTTGACCTGAACGAGGACGGCATCGTGGGCCTTGCCGATCCCAGCGGGCTTTTTGTCAGCCGCATCAAGGAACCGGTGTCCGGCACGTGTATTACTGTGACCATGGAAGGCCGCCGTCCGCTGCTGGCGGAAGTGCAGTCCCTGCTGGCCGAAAGCCCGAACTCCCAGCCGCGGCGGGCCACCAGCGGGCTGGACAGTTCCAGGGTTTCCATGCTGCTGGCGGTGCTGCAGCAGCGCGCGGGATGCCTGCTGCACAAGGATGATTCCTATGTGGCCACAGTGGGAGGCGTGAAGCTCAGTGAGCCCGCCACGGACCTTGCGGTGGCCCTGGCTGTGGCCTCGGCAAAGGCGCGGAAGCCGCTGCCCATCCGCCTGATCGCCTTCGGTGAGGTGGGGCTGGCCGGTGAAGTCCGCCCGGTGCCGGGGATCAATCAGCGCATCCAGGAAGCCCACCGGCTGGGGTTCACGCACGCCGTCGTACCGGCAAGCCACAACGGCCCGGGCCCCATCCCGGCTGGCTTCTCCGTCCGGGAAGTGGAGCACCTGACGGAGGCCCTGAGCCTGCTGATCGGATAGMATKTSRASKAPAYKCAECGWTTVKWVGRCGECQAWGTVEETGAAVARTTAAATVLEPARRIAEVDATTAAFLPTGVDELDRVLGGGLVPGAVILLAGEPGVGKSTLLLDVAAKFARTAQDVLYVTGEESAAQVKLRAERIDAVAESLYLSAETDLGQALGQVEKIEPRLLIVDSVQTLSSADVDGSAGGVSQVREVAASIIAAAKRRNMTTLLVGHVTKDGSIAGPRLLEHLVDVVCQFEGERHSRLRLLRAVKNRYGPTDDVGCFDLNEDGIVGLADPSGLFVSRIKEPVSGTCITVTMEGRRPLLAEVQSLLAESPNSQPRRATSGLDSSRVSMLLAVLQQRAGCLLHKDDSYVATVGGVKLSEPATDLAVALAVASAKARKPLPIRLIAFGEVGLAGEVRPVPGINQRIQEAHRLGFTHAVVPASHNGPGPIPAGFSVREVEHLTEALSLLIGPGPT0014905_2535DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485NANA
D1-29_003691317hypothetical proteinGTGAAATTTTCACGACGAAATACCGCCGCCGCGCTAGCGGGAGCAGCAGCATTGGCCCTTCTCGCCACCGGCTGCGCAGGCAGTTCGGACCAGCCGGCCGGTGCGGGCAACCCCGTTGAACTGACGGTCACTACGTTCGGCACGTTTGGTTACGAGGGCCTCTATGCCGAGTACGAGCAGGCAAACCCCGGGGTAACGATCAAGGCCACCAACATTGACCGGGGATCAAACGCCCGCACGGACGCTTTCACCAAGTTGGCTGCCGGCTCAGGGCTCACCGATGTGGTGGCCATCGAGGAAGGCTGGCTGGGTTCAATCATGGAAGTCTCGGACCAGTTCGTGGACCTCAAGGAACACGGCGCCGCTGACATCCAGGCCAACTGGGTGGATTGGAAGTTCAAGCAGGGCACCGACCCCGCCGGCCGCGTCATCGGCTACGGGACCGACATCGGGCCGCAGGGGCTTTGCTACAACGGCAAGCTGTTCGAAGCGGCAGGCCTCCCCAGCGACCGTGAATCCGTTGCCAAGCTCTTCGGTGGGCAGGACGCCACTTGGGAGAAGTACTTCGAACTCGGCAAGCAGTACAAGGCAGCCACCGGAAAGGCCTGGTATGACCAGTCCGGCTTCGTCTGGAACTCCATGGTGAACCAGATGGAGGAGGGGTACTACACCAAGGACGGGGAGCTCAACGTCGACGGCAACAAGGAAATGAAGGGCAAGTTCGAGATGCTGGCGGCCGGAACGGCTGCGGGCCTGTCCGCCAACCAGACCCAGTGGGACTGGGGCAATGGCAAGGCGTTTGTGGACGGCTCCTTCGCCACCTTCGTCTGCCCCGGCTGGATGCTGGGCACCATCAAGGGACAGCTGGAATCTGCAGGCGGCGGCGCCGGCAGCGGCTGGGACTTCGCCGATGTCTTCCCCGGCGGGGCGTCGAACTGGGGCGGTGCCTTCCTCTCCGTTCCCAAGACGTCCGAGCACCCGGCAGAGGCCGCGAAACTTGCCGCCTGGCTTACGGCCCCCGAACAGCAGGTCAAGCAGTCTGCTGCCGCCAATAATTTCCCCAGCACGCTCAAGGCCCAGGAAAAGCTGGTCCAGGATGCCACGCCCAACGTCCTCTTCAACAACGCACCCACCGGCGCGATCCTGGCCAACCGCGCCAAGGGCGTGGTCGCGCAGTTCAAGGGACCGGACGATTCCGTCATCCAGGAGAACGTGTTCGGCCCGGCGCTGAAGAGCCTCGACGCCGGAACCGCCGACGCCGGCAAGGCCTGGTCCGAAGCCCTGCGCCTCCTCAACGACCTGGTCGTCAACAACTAGMKFSRRNTAAALAGAAALALLATGCAGSSDQPAGAGNPVELTVTTFGTFGYEGLYAEYEQANPGVTIKATNIDRGSNARTDAFTKLAAGSGLTDVVAIEEGWLGSIMEVSDQFVDLKEHGAADIQANWVDWKFKQGTDPAGRVIGYGTDIGPQGLCYNGKLFEAAGLPSDRESVAKLFGGQDATWEKYFELGKQYKAATGKAWYDQSGFVWNSMVNQMEEGYYTKDGELNVDGNKEMKGKFEMLAAGTAAGLSANQTQWDWGNGKAFVDGSFATFVCPGWMLGTIKGQLESAGGGAGSGWDFADVFPGGASNWGGAFLSVPKTSEHPAEAAKLAAWLTAPEQQVKQSAAANNFPSTLKAQEKLVQDATPNVLFNNAPTGAILANRAKGVVAQFKGPDDSVIQENVFGPALKSLDAGTADAGKAWSEALRLLNDLVVNNPGPT0016430_286DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016430-cebE-K10240NANA
D1-29_003701023lacF_4Lactose transport system permease protein LacFATGACAACCACGCTGAACCGGTCCGCCACGCCTGGGGCCGCCAAACCCAAACCGACGTTCAAACAACGCCTGAGCATTTTCGACGTCAAAGCATCGCCCTACTTTTACGTCGCTCCCTTCTTCATCCTGTTTGCCCTCGTGGGCCTCTTCCCGCTGGTCTACACATTTTTCGTGAGCCTCTTTGACTGGCACCTGCTCAAAGGGCAGGGGCAGTTTGTGGGCCTGGAGAACTTCGCCGAGATCCTGCAGGACCGCTTCTTTTGGAATTCGATCTTCAACACCGTGAGCATTTTCATCCTCTCCGCCGTTCCGCAACTGGCACTGGCGCTGTTCCTGGCAGCAGTTTTGGACCAGAACCTTCGGGCCAAGACGTTCTGGCGCATGAGCATCCTGCTGCCGTACATCGTGACGCCGGTGGCGGTGGCCATGATCTTCACCAACATGTTCGGCGAGCAGTACGGCCTGATAAATAACATCCTCGGGAACTTCGGCCTGGACCCCGTCATGTGGAAGAACGAGACGTTTCCGAGCCACGTCGCCATCGCTACCATGGTCAACTGGCGCTGGACCGGCTACAACGCCCTGATCCTGCTGGCCGCAATGCAGGCCGTTCCGCGGGACCTGTATGAATCGGCAGCCCTTGACGGTGCCGGAGCAGTCCGGCGGTTCTTCAGCATCACACTGCCCAGCATCCGGCCCACCATGGTCTTTGTGGTCATCACAGCCACCATCGGTGGACTCCAGGTCTTCACGGAGCCCAGGCTTTTTGACCCCGCCACGGCCGGCGGATCGCAGCGCCAGTTCCAGACCACCGTGCTGTACCTCTGGGAGATGGCCTTCCAGCGCCAGAACTTCGGCAAGGCATCAACCATCGCCTGGCTGCTCTTCCTGATCATCGTGCTGTTCGGCTTTATCAACTACCTGATCTCCCGCCGGATCGCCACAGCTGATGCAGGCAGGCCCTCCCGCGCTGCCCGCAGGACAATCGCTGCCCGGAAACGTGCTGAGAGGACCAACAGATGAMTTTLNRSATPGAAKPKPTFKQRLSIFDVKASPYFYVAPFFILFALVGLFPLVYTFFVSLFDWHLLKGQGQFVGLENFAEILQDRFFWNSIFNTVSIFILSAVPQLALALFLAAVLDQNLRAKTFWRMSILLPYIVTPVAVAMIFTNMFGEQYGLINNILGNFGLDPVMWKNETFPSHVAIATMVNWRWTGYNALILLAAMQAVPRDLYESAALDGAGAVRRFFSITLPSIRPTMVFVVITATIGGLQVFTEPRLFDPATAGGSQRQFQTTVLYLWEMAFQRQNFGKASTIAWLLFLIIVLFGFINYLISRRIATADAGRPSRAARRTIAARKRAERTNRPGPT0016435_29DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016435-cebF-K10241NANA
D1-29_00371933hypothetical proteinATGAGCATCATCGACCGCGCCAAACCTGAATCTGCCGGGCGGTCAACCGGCAAAACCCCTGCGGCGGAAGCAGTCCCGGCGAAACCTGCCATCTTCCGAAAGCGGTTCTTCGGGACCGGCGAGCGCCCCGGGTTCCTCAGCTACGGACTTCTTCTGGCGTTCCTGCTTTCGTCCGCCTACCCCCTGTGGTGGTCTGTTGTGATCGGAAGCAGGTCCAACGAAGCACTGGGTGAAACGTGGCCGCCGCTGCTGCCCGGCGGGAACTTCTGGAAAAACGTGGGCGAAGTTTTTGACACCGTTCCGTTCTGGCTTGCCCTGGGAAACAGCGTCCTGATCTCGGGAATCATCACTGTCTCGGTAGTGGGATTCTCCACCCTCGCCGGCTACGCCTTCGCCAAGCTGAGGTTCCGCGGCCGGAACGGTCTCATGCTGATGGTTGTTGCCACCATGGCCATCCCCACCCAGCTGGGCATTATCCCGCTCTTTATGGTGATGCGGACGCTCGGCTGGACCGGCGAGATCGGCGCCGTTGTGGTGCCCAGCCTGGTAACGGCTTTTGGAGTGTTCTTCATGCGGCAATACCTGATGGACGTTATTCCGGACGAGCTCATCGAATCGGCCCGCGTGGACGGCGCCAACATGATCTCCACGTTCTGGCACGTGGCCATCCCTGCCGCCCGCCCGGCCATGGCCATCCTGGGCCTGTTCACTTTCATGACGGCGTGGACGGACTTCCTGTGGCCTCTGCTGGTGCTCGACGCCGGCAACCCCACACTGCAGACGGCGCTCAGCCAGTTGCAGTCGGCCCGTTACGTGGACTACTCGGTGGTCCTGGCAGGCGCGGTGCTGGCCACCCTGCCGCTGCTGGTGCTGTTTGTGCTGGCAGGGAAACAACTCATTTCAGGAATCATGCAAGGAGCAGTGAAGGGCTAAMSIIDRAKPESAGRSTGKTPAAEAVPAKPAIFRKRFFGTGERPGFLSYGLLLAFLLSSAYPLWWSVVIGSRSNEALGETWPPLLPGGNFWKNVGEVFDTVPFWLALGNSVLISGIITVSVVGFSTLAGYAFAKLRFRGRNGLMLMVVATMAIPTQLGIIPLFMVMRTLGWTGEIGAVVVPSLVTAFGVFFMRQYLMDVIPDELIESARVDGANMISTFWHVAIPAARPAMAILGLFTFMTAWTDFLWPLLVLDAGNPTLQTALSQLQSARYVDYSVVLAGAVLATLPLLVLFVLAGKQLISGIMQGAVKGPGPT0016440_188DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_CELLOBIOSE_TRANSPORT,PGPT0016440-cebG-K10242NANA
D1-29_003721443bglB_1Beta-glucosidase BATGCCACATTCGACGTACTCACGGCAGTGGCCGGAGGGTTTCATTTGGGGATCGGCGACGGCGGCAGCCCAGATTGAGGGGGCCGGCCATGAGGGCGGGAAGGAGGATTCCGTGTGGGACCAGTTCGCCCGGATCCCCGGCGCGGTGGCCAAGGGGGACAACCTGGAACAGGCCGTGGACCATTACCACCGGATGCCTGAAGACGTCCGGCTGATGAAGGAACTGGGGCTGGATTCCTACCGGTTCTCCACCAGCTGGGCCCGGGTGCGCCCGGGGGACAGGGGCACCAATCCGGAGGGCCTGGACTTCTACTCACGCCTGGTGGATGAACTGCTGGAGGCGGGAATCCTGCCGTGGTTGACGCTTTACCACTGGGACCTGCCCCAGGCACTGGAGGACAAGGGTGGCTGGGCGAACAGGGACACGGCCTACCGGTTCGTCGACTACGCAAACGATGTCTACACCGCCCTCGGGGACCGGGTGCAGCACTGGACCACCTTTAACGAACCATTCTGCTCTTCACTGCTGGGCTACGGTTCCGGTGTCCACGCCCCCGGCCGGCAGGAACCAACAGCAGCCGTCGCGGCCGTGCACCACCAGCACCTGGCCCACGGCCTGGCCGTCAACGCACTGCGGGACCGCGGAGCCCAGAACCTGGGAATCACGCTTAACCTCAGCAACTCCATTCCACGGGACCCGCAGGACCCTATCGACCTGGACGCGGCCCGGCGCTTTGATTCCCTGCAGAACCGGATCTTCCTCGATCCCATCCTGCGCGGAAGCTACCCGGAGGACACCCTGCGCGACCTCGCAGCGTTTGGCCTGCCGGAACTCATCCTCCCCGGTGACCTGGAGACCATCAGTGCGCCGCTGGAGTTCCTGGGCGTCAACCACTACCACGACGATCTCATCAGCGGGCATGCCGACGATGCCGGAAGCGACGGGCACTCGGGCGGCGCCGAACGGGTTGCGGCCTCACCGTGGATCGGATCCGAGGACATCGCCTTTCCGAGCCGGGGGCTGCCGCGGACTGCCATGAACTGGGAAGTGAACCCTGACGGATTGCGGAAACTGCTGGTCCGCCTCGGCGATGAATATCCGTCGCTGCCGCCGTTGTACATCACCGAGAACGGTGCGGCTTATGAGGACAGTGTCGGCCCGGACGGCGCCGTGCACGACGCCGATCGCACCGGCTTCATCCTGGACCACATCGCTGCTGTCGGTGAAGCGATCGATCAGGGCGCCGACGTCCGGGGCTACTTCGTCTGGTCGCTGCTGGATAACTTTGAATGGTCCTGGGGATACGGGAAGCGCTTTGGGATTATCCGCGTGGACTACGGCTCGTTCGAGCGCACCATCAAGGACAGCGGCCACGCCTTTGCCCGGCTGATTGCCGTCACAAAGCGGGACGCGTCCCGGCTGCCTGCCACACTGCCTGCCTAAMPHSTYSRQWPEGFIWGSATAAAQIEGAGHEGGKEDSVWDQFARIPGAVAKGDNLEQAVDHYHRMPEDVRLMKELGLDSYRFSTSWARVRPGDRGTNPEGLDFYSRLVDELLEAGILPWLTLYHWDLPQALEDKGGWANRDTAYRFVDYANDVYTALGDRVQHWTTFNEPFCSSLLGYGSGVHAPGRQEPTAAVAAVHHQHLAHGLAVNALRDRGAQNLGITLNLSNSIPRDPQDPIDLDAARRFDSLQNRIFLDPILRGSYPEDTLRDLAAFGLPELILPGDLETISAPLEFLGVNHYHDDLISGHADDAGSDGHSGGAERVAASPWIGSEDIAFPSRGLPRTAMNWEVNPDGLRKLLVRLGDEYPSLPPLYITENGAAYEDSVGPDGAVHDADRTGFILDHIAAVGEAIDQGADVRGYFVWSLLDNFEWSWGYGKRFGIIRVDYGSFERTIKDSGHAFARLIAVTKRDASRLPATLPAPGPT0019165_822DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
D1-29_003731020rbsR_3COG1609Ribose operon repressorGTGAAGCAAGATCAGAGCGGAAGCCGGCCGGCGCCAACCCTTGAAATGGTGGCGGCGCTGGCCGGCGTGTCACGGGCTACTGTCTCGCGCGTGGTGAACGACGTGCCCAGCGTGGACGAGGACATCGCCGCAAAGGTACGCCAGGCCATCCTCGCCGTGAACTACACCCCCAACCGGGCCGCCCGGTCCCTTGCCAGCCGGAAGCCCAACTCGATCAGCCTGATTGTGCCGGAGTCCACGTCCAAGGTCTTTGCCGACCCGTTCTTCGCCTCAGTGGTCCAAGGCGTGGCCCTCCATCTCGCGGATACCGACTACACCCTCAACATGGTCATCGCGTCCGAGGCCAAACCGGAAAAAACCAGGGCGTTCCTGCTCGGCGGCAACGTGGCCGGCGCACTGGTGGTGTCCCACCATGCCGGGGACCGTTCCTGGGCCCACGTCAGCGACTACATCCCGATGGTTTTCGCTGGCAGGCCCCTGGCCGAGGGCGGAAGCTACTACGTGGACGTTAACAACGAAGCCGCCGCCGAAGGAGCAACCCGGCTGCTGATCGAGGGCGGCCGCACGCACATCGCCACCATCGCCGGACCCCAGGACATGCCGCCCGGCGTCGACCGGGTCACCGGCTGGCGGAAGGCCCTCGAAGTCTCCGGGCTGGACGATTCCCTGGTGGAGTATGGCGACTTCACCCTTTCCTCCGGCGCCAAGGCAATGCGGCGGCTCCTTGAGCGTGGCAAACCCATCGACGGGCTCTTCGTGGCCAACGACCAGATGGCTGCCGGGGCCTACACCGTCCTCCAGGAACGCGGGATCAGGATTCCAGACGACGTGGCGGTAGTGGGATTCGATGACGATTCCTTTGCCACTTCCGTGAATCCGCAGCTGACCACCGTGCATCATCCCATCATTGAGATGGGCAAGAAGATGGCTGAGATCCTGGTGGATCTGATCGAGGGCAAGCCCACGGACCGGGTCACCCAGATCCCCACATCGCTGGTGATCCGTGATTCCGCCTCTTAAMKQDQSGSRPAPTLEMVAALAGVSRATVSRVVNDVPSVDEDIAAKVRQAILAVNYTPNRAARSLASRKPNSISLIVPESTSKVFADPFFASVVQGVALHLADTDYTLNMVIASEAKPEKTRAFLLGGNVAGALVVSHHAGDRSWAHVSDYIPMVFAGRPLAEGGSYYVDVNNEAAAEGATRLLIEGGRTHIATIAGPQDMPPGVDRVTGWRKALEVSGLDDSLVEYGDFTLSSGAKAMRRLLERGKPIDGLFVANDQMAAGAYTVLQERGIRIPDDVAVVGFDDDSFATSVNPQLTTVHHPIIEMGKKMAEILVDLIEGKPTDRVTQIPTSLVIRDSASPGPT0017992_8991DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_003741005iolU_1COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolUGTGATTCCGCCTCTTAACTGGGGTGTGGTGGCCACCGGCCGGATTGCCCACCGGGCCACCCGCGATCTCGCCCGGCTGGAAAATGCGGTTCTGCATGCGGTCAGTTCACGCAGCCAGGCCGCCGCGAAGGAGTTCGCCGGACAATACGGCTTCGCAGCCAGCTACTACGACCGGCGGGCCACCACGGGCTACCAGCAGCTCTTTGACGATCCTGTGGTTGACGTGGTCTATGTCGCCACCCCGCATGCGCAGCACTTCGAGGTTGCAAAGGCGGCCCTGGAAGCGGGCAAGCACGTCCTCTGCGAAAAGCCGCTCACGGTCAACGCCAGGGAAACGATAGAGCTTGTGTCACTGGCCGGGGAGCGGAAGCTGTTCCTGATGGAGGCGGTGTGGACCCGGTTCCTGCCCGCGACGCTGCGGGCCCTGGAGCTGGTCCGGGGCGGCCATTTCGGCACCATCCGGTGGGTGCAGGCCGATCTCGGCTTTGCCGCACCCTACGACCCCAGCCACCGGCTCTTTGATCCGGCGGCAGGGGGCGGCGCCCTCCTGGACCTGACCGTCTATCCGCTGACCTGGGCCATCAGCGTACTGGGTTTTCCAGCCACTGTCGCCGCCTCGGGCCAGCTCAACAGCGACCGGATAGACGTCCAGAACACCGTGACCCTGGGGTACGCGGACGGCGCCTCGGCCCAGTTGGTTTCCTCCCTGCAATCTGAGAGCCCAGGCACCGTTACCATCAGCGGCACGAAGGGCTGGCCGCGGACCGGCTGGCCCCTCTACCGCCCGCGCAGGCTGGAATACCAGGGCACTGACGGCATAGTGCGGGTGGAGGAGTTCCCGGAAGAGACCGAAGGCTTCATCCATGAATTGAGGGAAGCAGCACGGTGCATCAGGGCAGGGCTGCTGGAGAGTCCCCTGCTGCCGTGGGAAGAAAGCCTGCGGATCATGCAGATCCTTGACGGCGTCCGGGACCAGCTGGGCGTCCACTACAAGAACGACCGCTAAMIPPLNWGVVATGRIAHRATRDLARLENAVLHAVSSRSQAAAKEFAGQYGFAASYYDRRATTGYQQLFDDPVVDVVYVATPHAQHFEVAKAALEAGKHVLCEKPLTVNARETIELVSLAGERKLFLMEAVWTRFLPATLRALELVRGGHFGTIRWVQADLGFAAPYDPSHRLFDPAAGGGALLDLTVYPLTWAISVLGFPATVAASGQLNSDRIDVQNTVTLGYADGASAQLVSSLQSESPGTVTISGTKGWPRTGWPLYRPRRLEYQGTDGIVRVEEFPEETEGFIHELREAARCIRAGLLESPLLPWEESLRIMQILDGVRDQLGVHYKNDRNANANANANA
D1-29_003751152hypothetical proteinATGCCGGTGAATAGACTGGAACGCATGGCCATTTCAGCAGGAATCTCAACAGGCAGGCGTTTCCTGCGTGGCCGCGTCCGCACCGGGCTGATCCGGAGCCGGAACTCCTTGCTCCCCGCCATCCAGATGACCGTTTGCGCGGTGGGGGCCTATGCCTTCGCCGAGTACGTGCTGGGGCACACCGGCCCGCTTTTCGCGGCCACGTCGTCGCTGATTGCGTTGGGTTTCTCCCGGGAGCCGAGGCTGCGCCGGGTGGTTGAGGTGGGCCTGGGCTGCACTATCGGCATTGCGGTGGGCGACCTGCTGCTGCACTGGCTGGGTGATGGAATCTGGGTGGCCGCCGTCGTCCTGATGGTCTCCATCCTGCTGGCCCGTTTCTTGGACAGCGGCACCATCTTCACCACGCAACTGGGGCTCCAGTCACTGCTGGTGGTGCTGCTGCCGGCGCCCCCCGGCGGGCCCTTCACCCGCAGCCTGGATGCCGTGGTGGGTGGGCTTTGCGCCCTGTTGGTGACCATCCTCATCCCGAAGGACCCCCGGCGTGAACCACGCAAGGACGTCCAGAAGCTGCTGCACGAACTCGCCGAGGTGCTGCGCGAATGTGCCACCGCACTGGGCAACAGCGATTCCACCCAGGCGTGGCATGCGCTGATCCGGGGCCGGAACTGCCAGCCGCTGGTGGACGGCATGCGCCAGTCGCTGCGCGCCTCCGGCGAGGTGGCCACCCTGGCTCCGGCCTACCGCCGGCACCGGGACGAGCTGGACCGGCTGGAGCAGTCGCTGGATTTCATCGACCTGGCGCTGCGGAACAGCCGGGTTTTTGCGCGCCGGCTCACCAGCGCGATCAACCATGCCGCCCTGTCGGATGAAGCCACGGAGAACCTCTCCGAGGTCCTGCAGGACACCGCTGCCGCGATCGACGAGCTCTCACTTGGGCTGGCAGAAACGCACGACGGCGTCCGGCGCGCCCATCTGCGCGCGGCCCGGCAGGACCTGAGCGAAATCGCACTGCGGCTGCACCCGAAGCTGTTGGAGGTGCAGCGGCTGGAAGGCGAGACAGTGGTCATGCTTTTCAGGCCGCTGATGGTGGACCTGCTCGAGGCCACGGGGATGGATTCGCGCGAGGCCCGGGACATCCTGCCCGCGCTCTAGMPVNRLERMAISAGISTGRRFLRGRVRTGLIRSRNSLLPAIQMTVCAVGAYAFAEYVLGHTGPLFAATSSLIALGFSREPRLRRVVEVGLGCTIGIAVGDLLLHWLGDGIWVAAVVLMVSILLARFLDSGTIFTTQLGLQSLLVVLLPAPPGGPFTRSLDAVVGGLCALLVTILIPKDPRREPRKDVQKLLHELAEVLRECATALGNSDSTQAWHALIRGRNCQPLVDGMRQSLRASGEVATLAPAYRRHRDELDRLEQSLDFIDLALRNSRVFARRLTSAINHAALSDEATENLSEVLQDTAAAIDELSLGLAETHDGVRRAHLRAARQDLSEIALRLHPKLLEVQRLEGETVVMLFRPLMVDLLEATGMDSREARDILPALNANANANANA
D1-29_003761122pstS3COG0226Phosphate-binding protein PstS 3GTGAAGGCTCTCCGCTTCGGCCGCCACGCGGCCATCGCTGTTATCGCGGCAGGCGCACTCGCGCTCTCCGCCTGCGGTTCAGACAACGTCACGGGCGCGGCCCCCGCAGGCACCCAGACTTCGGCAGGACCCAAGGTCACCGGCACACTGACCGGCATCGGCTCCTCCGCGCAGGGCGCGGCCATGGATGCCTGGAAGACCAACTTCGCCTCCGCCAACCAGGGCGCAACCGTGCAGTACTCCCCGGATGGTTCCGGCGCAGGCCGCAAGGCACTCCTGGACGGTTCAGCACAGTTCGGTGGGTCCGACGCCTACCTCAAGGACGAAGAATACGCAGCTTCACAGACCGTCTGCGGCCCTGACGGTGCCCTGAGCATCCCGGTCTACATTTCCCCGATCGCCGTTGCGTTCAACCTCCCGGGCCTGACCGAGCTGAAGCTTGACGCCCCCACCGTGGCGAAGATCTTCCGCGGCGAAATTGCCACCTGGAATGACCCGGCCATCACCGCCTTGAACCCGGGCGTCACCCTTCCGGACACCAAGGTCACACCGGTGAACCGCTCTGACGACTCCGGAACCACCACCAACTTCACCGACTACCTGGCAGCAGCGGCTCCCGAGGTCTGGACTGACAAGTCCTCAGGCATCTGGCCGGCAAACCTGCAGGGCGAAAACGCCAAGGGCACCTCCGGCGTGGTCAAGACCGTCACGGACACTCCCGGCGCCGTCACCTACGCCGACGACTCCGCAGTCAGCGGCAAGCTCGGTGTAGCCCAGATCAAGGTGGGCGAGAGCTTCACCAAGATCTCTGCAGAAGCTGCAGCCAAGGCTGTTGACGCCGGCAAGCCCGTTGAAGGCCGCAGCGCCAACGACCTGTCCATCAAGCTGGACCGCAAGACCAGCATTGAGGGCGCCTACCCGATCGTCCTGGTTTCCTTCCACATCGTCTGCTCCACGTATGACAAGCAGGAGACCGTTGACCTGGTGAAGGCCTTTGAGAACTATGTAGTTTCTGAGGACGGCCAGAAGGCAGCCGCTGACTCCGCGAAGTCCGCACCGCTCTCCGCCGAACTGGCAGAGAAGGCCAAGAAGGCCATTGAAACCATCAAGGTCAAGTCCTAGMKALRFGRHAAIAVIAAGALALSACGSDNVTGAAPAGTQTSAGPKVTGTLTGIGSSAQGAAMDAWKTNFASANQGATVQYSPDGSGAGRKALLDGSAQFGGSDAYLKDEEYAASQTVCGPDGALSIPVYISPIAVAFNLPGLTELKLDAPTVAKIFRGEIATWNDPAITALNPGVTLPDTKVTPVNRSDDSGTTTNFTDYLAAAAPEVWTDKSSGIWPANLQGENAKGTSGVVKTVTDTPGAVTYADDSAVSGKLGVAQIKVGESFTKISAEAAAKAVDAGKPVEGRSANDLSIKLDRKTSIEGAYPIVLVSFHIVCSTYDKQETVDLVKAFENYVVSEDGQKAAADSAKSAPLSAELAEKAKKAIETIKVKSPGPT0002625_1342DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-29_00377933pstC2COG0573Phosphate transport system permease protein PstC 2ATGACCGCCACCTCCCTGAGAGCTTCCCAGGGCGCAGGCCGCGCCGGGGACAAGATCTTTTCCGGAGCAACCCTGGCAGCAGGGTGCCTGATTCTTGCCGTCCTATTCGGCGTTGCCCTGTTCCTGGTGATCCAGGCCATCCCGGCCCTGACCGCTCCCGCCGAGGAGATCCAAGGCGGTGCAGGCTTCTTTTCCTACATCTGGCCGATCGTCATCGGGACGCTCATCGCCGCGGTCATCGCACTGGTCATCGCCACGCCCGTGGCCATCGGCGTGGCGCTGTTCATCTCGCACTTCGCCCCACGGAAACTGGCCGCCGGGCTGGGTTACGTCATTGACCTGCTGGCTGCCATTCCCTCGGTGGTTTACGGTGCCTGGGGCGCCGCATTCCTAGCCAAGGAGATCTCCCCGGCCTACAACTGGCTGGCCGCGAACATGGGCTGGCTGCCCATTTTCCAGGGTCCCGCGTCAGCCACGGGCAAGACCATCCTCACGGCAGGCATTGTCCTGTCCGTGATGGTCCTGCCCATCATCACGTCCCTGAGCCGGGAAATCTTCCTCCAGACCCCCAAGCTCCATGAGGAGGCAGCCCTCGCCCTGGGTGCCACGCGCTGGGAAATGATCAAAATGTCGGTCCTGCCGTTTGCCCGCCCCGGCATCATCAGTGCTGTCATGCTGGGACTCGGCCGCGCACTCGGTGAAACCATGGCCGTCGCCCTGGTGCTTTCCTCCGGCGCCCTCACCGCCAGCCTGATCCAGTCCGGAAACCAGACCATCGCCGCCGAAATCGCCCTGAACTTCCCGGAAGCCAGCGGCCTCAAGGTCAGCACCCTCATCGCCGCCGGCCTGGTCCTGTTTGTGATCACCCTCGCCGTCAACATGATTGCCCGCTGGATCATCACGCGGCACAAAGAATTCTCGGGAGCCAACTAAMTATSLRASQGAGRAGDKIFSGATLAAGCLILAVLFGVALFLVIQAIPALTAPAEEIQGGAGFFSYIWPIVIGTLIAAVIALVIATPVAIGVALFISHFAPRKLAAGLGYVIDLLAAIPSVVYGAWGAAFLAKEISPAYNWLAANMGWLPIFQGPASATGKTILTAGIVLSVMVLPIITSLSREIFLQTPKLHEEAALALGATRWEMIKMSVLPFARPGIISAVMLGLGRALGETMAVALVLSSGALTASLIQSGNQTIAAEIALNFPEASGLKVSTLIAAGLVLFVITLAVNMIARWIITRHKEFSGANPGPT0002620_3739DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
D1-29_003781113pstA1COG0581Phosphate transport system permease protein PstA 1ATGACCTCCACCCTTACTCCCGTCCGCAGCAAACGTTCCGCCCTGACCAAGGGCCAGCTGCCGAAGTACGCGCCGTACGTGGTGCTCGCGATTGCCCTGATCGCCGGAGCCGCCATCCTCGCCCTGATCGGCTTCAACGCGTTCGGCTGGGGCATCGTCTCCGCCATCCTGTTCGCCGCAGGCCTGGTGGGCTGGAGCGCGGTGGTGGAAGGCTCGCGCAAGGCCAAGGACAAGCTGGCCACCTGCCTGGTCATGGGCTCGTTCCTGATCGCGCTGCTCCCGCTCATCTCCGTGATCTGGACAGTGCTGGTCAACGGCGTCCCCGGCCTAATCACACCGGGCTTCCTCACCACCTCCATGAACGGCGTCACCGGGGTCTATGACAACAAGGCGGTGGAAGAGGGAACCCCCGTACTCGGCGGCATCTACCACGCGCTTTTGGGCACGCTGCAGATCACCTTCCTGGCCACGCTGATCTCCGTCCCGGTGGGCCTCCTGACCGCCATTTACCTGGTGGAGTACGGCCACGACGGCCGCCTGGCGCGTGCCATTACATTCTTTGTGGACGTGATGACGGGCATCCCGTCCATCGTTGCCGGCCTCTTCGCCGCAGCCTTCTTCTTCGCCGTCATGGGGCCAGGCACCAAAACAGGCGCCGTTGCCGCCGTCGCGCTTTCGGTCCTGATGATTCCGGTAGTGGTCCGCTCAAGCGAGGAAATGCTGAAGATTGTGCCCAACGAGCTGCGTGAAGCGGCGTACGCCCTGGGCGTACGGAAATGGCGCACCATCCTGAAGGTTGTCATCCCGACGGCGATCTCCGGAATCGCTTCCGGCGTCACCCTGGCGATCGCCCGCGTGATCGGGGAGACGGCGCCCATCCTTGTCACCGCCGGATTCGCCACGAGCATCAACAGCAACGTCTTTGGCGGCTGGATGGCATCGCTGCCCACGTTCATCTACACCCAGATCCTGAACCCCACCTCCCCTGCGAACCCGGACCCGTCGTCGCAGCGGGCGTGGGGCGCGGCCCTGGTGCTGATCATCCTGGTGATGGTCCTGAACCTTGGATCCCGGCTGATCGCCAGGGTTTTCGCCCCGAAATCCGGCCGATAGMTSTLTPVRSKRSALTKGQLPKYAPYVVLAIALIAGAAILALIGFNAFGWGIVSAILFAAGLVGWSAVVEGSRKAKDKLATCLVMGSFLIALLPLISVIWTVLVNGVPGLITPGFLTTSMNGVTGVYDNKAVEEGTPVLGGIYHALLGTLQITFLATLISVPVGLLTAIYLVEYGHDGRLARAITFFVDVMTGIPSIVAGLFAAAFFFAVMGPGTKTGAVAAVALSVLMIPVVVRSSEEMLKIVPNELREAAYALGVRKWRTILKVVIPTAISGIASGVTLAIARVIGETAPILVTAGFATSINSNVFGGWMASLPTFIYTQILNPTSPANPDPSSQRAWGAALVLIILVMVLNLGSRLIARVFAPKSGRPGPT0002610_1586DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
D1-29_00379780pstB1COG1117Phosphate import ATP-binding protein PstB 1ATGTCTAAGCGTATCGACGTCAAGGACCTGAATGTCTACTACGGCGATTTCCTGGCCGTGGAAGACGTCACCATCAACATCGAGGCCAAATCCGTGACGGCCTTCATCGGTCCTTCCGGCTGCGGAAAGTCCACGTTCCTCCGCACCTTGAACCGCATGCACGAGGTGCTGCCCGGTGCCCGGGTGGAAGGCGAAGTCCTCCTGGACGGCGACAACCTGTACGGCCCGGGCGTTGATCCGGTGACCGTGCGCTCGCAGATCGGCATGGTGTTCCAGCGGCCCAACCCGTTCCCCACCATGTCCATCCGGGACAACGTGCTGGCCGGTGTGAAGCTGAACAACCAGAAGATCTCCAAGGGCGAGGCCGACATCCTGGTGGAGCGGTCGCTGCAGGGCGCCAACCTGTGGAACGAGGTCAAGGACAGGCTGGAAAAGCCGGGCTCAGGCCTTTCCGGCGGGCAGCAGCAGCGCCTCTGCATCGCCCGGGCCATCGCCGTGGAGCCGCAGGTCATCCTGATGGATGAGCCGTGTTCCGCGCTGGACCCCATCTCCACCCTGGCCATCGAGGACCTCATCAACGAGCTCAAGGACCAGTACACGGTGGTGATCGTGACCCACAACATGCAGCAGGCCGCGCGCGTCTCGGACAAGACCGCCTTCTTCAACATTGCGGGGACCGGCAAGCCGGGCAGGCTGATCGAATTCGGCAACACGCACACCATCTTCAGCAACCCCACCGTGAAAGCCACCGAGGACTACGTCTCCGGCCGCTTCGGCTAAMSKRIDVKDLNVYYGDFLAVEDVTINIEAKSVTAFIGPSGCGKSTFLRTLNRMHEVLPGARVEGEVLLDGDNLYGPGVDPVTVRSQIGMVFQRPNPFPTMSIRDNVLAGVKLNNQKISKGEADILVERSLQGANLWNEVKDRLEKPGSGLSGGQQQRLCIARAIAVEPQVILMDEPCSALDPISTLAIEDLINELKDQYTVVIVTHNMQQAARVSDKTAFFNIAGTGKPGRLIEFGNTHTIFSNPTVKATEDYVSGRFGPGPT0002615_3193DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
D1-29_003801014hypothetical proteinGTGTCTGCGGTAATCTTCGGCGCGGTGGTCCTGCTGACTGCCGCGTTTGCCTTCCTTAATGGGTTCAGGGACGTTTCCACCTCGGTGGCCGTGGCGGTTCGCACGCGGGCACTGACGCCCAGTGTGGCGGTGCTCCTGGCGGCCTTTTTCAACTTCCTGGGGGCCCTGCTCAGCGCCAGTCTGGCAGTGGCGGTCAGCCAGCATTGGATCAGCCTGCCTGCCGGGACGAACGGCCTCAGCATACTGGTTGCAGGCCTCGCGAGCGCCTTCGCCTGGGGCGTCCTGCTGTGGTGGCGCGGCATTCCGGCATCATCCACCCACGCGCTCGTGGGCGGGCTTGCCGGCGCCGGGCTGGCCAGCGTGGCGGTAGGCGGGACAGGCGTGGGCGGCGTGGACGAGTCATTGCTCCTCCAGGTGGTCCTGCCGCTGCTGCTCTCCCCCCTGGTGGCCTACAGCGGCGCGTTCCTGCTGGTTTTCCCGGTGACCTGGGCCGCCCGTTATGCCCAGCCCAACGTCATCAACCAGCGCTTCCGGCGCAGCCAGTCCATCGCCGCAGGCGCGGTGGCGTTCGGGCACGGGCTGCAGGACGGCCAGCGGGTCAGCGCGGTGCTGCTGCTTGCCCTGCTCGCGGCAGGCTATTCCGACGGCGGCACCATCCCTGCGTGGGTGGCCCTGCTCTCCGCCGTGATGATCACGGCAGGAACGCTGTTTGGCGGCTGGCGGATCTCGCACACCATCGGTTACAAAATCACCAGGATTGACCCTCTCCGCGGCTCCGTGGCCCAGATCTTCAGCGCCGTGATGCTGTTTGTGGGGGCCATCGGCCTGCACTGGCCAGTGTCCACAACGCACACGGTGACCTCGGCGGTCCTGGGTGCCGGCGAAAACCAGCACTTCTCTGTGACCAACCGGAAGCTGGTCATCCGGATCGTGGGGCTGTGGATCCTGACTCCTGCGGCGACCGCGGCCGGAGCTTTTGTGCTGGCGCTGGCTCTGTCCCCGCTGGCTGGCTAAMSAVIFGAVVLLTAAFAFLNGFRDVSTSVAVAVRTRALTPSVAVLLAAFFNFLGALLSASLAVAVSQHWISLPAGTNGLSILVAGLASAFAWGVLLWWRGIPASSTHALVGGLAGAGLASVAVGGTGVGGVDESLLLQVVLPLLLSPLVAYSGAFLLVFPVTWAARYAQPNVINQRFRRSQSIAAGAVAFGHGLQDGQRVSAVLLLALLAAGYSDGGTIPAWVALLSAVMITAGTLFGGWRISHTIGYKITRIDPLRGSVAQIFSAVMLFVGAIGLHWPVSTTHTVTSAVLGAGENQHFSVTNRKLVIRIVGLWILTPAATAAGAFVLALALSPLAGPGPT0002655_3144DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306NANA
D1-29_00381618hypothetical proteinGTGAAGCTGCGCCTTTTCCCCCAGGAGCCCGCCGGGCTGAACCTCCTTTCGCAGATGGCGCACCAGATAGTGCTGGCCAGCGCCACCCTGGCCGAGATCCTGGGCGTTCCCGCCGATGAGCACGGCAAGCTGGTGGAAGACATGCACAACCACGAGGCCAAGTCCGCGGAACTGCACTTCGCACTGCTCACCCACATGCGCACCAGCTTTGTGAACCCGCTGCCCCGCGAGGACATGTACGCGCTGTCCCGCTACCTCAACGAGGCCATGGAGAAGCTGGACGCCGCCGCGGAACTGGTGGCCCTGTACAGGCTGGAACGGCTGCCCAAGCGGGCCGCTGACCAGCTGGAGATCATCAGCCGCCAGGCGGAACTCACCGTGGACGCCATGCGCCGGCTGAACAACCTTGACGACCTCGAGGACTACTGGATCGAAATCCTCCGGCTTGCCAAGCGCGCCGAGCGGACCCACCGCGTCTGGGTCGCTGACATGATCGGCGACATGAAATGGGCGCCATATGCCCGCAACCGGGATATCGCCAATCAGCTGGTGGAAGTCACCAAGGACATGCGCCGAATCGCCACCCAGGTGGGCAGCATCATCGTCAAGGAATCCTGAMKLRLFPQEPAGLNLLSQMAHQIVLASATLAEILGVPADEHGKLVEDMHNHEAKSAELHFALLTHMRTSFVNPLPREDMYALSRYLNEAMEKLDAAAELVALYRLERLPKRAADQLEIISRQAELTVDAMRRLNNLDDLEDYWIEILRLAKRAERTHRVWVADMIGDMKWAPYARNRDIANQLVEVTKDMRRIATQVGSIIVKESNANANANANA
D1-29_00382669hypothetical proteinGTGGGTGCCATGAGCGAGCAAGCAGGACCCAGCCACTACGGCGGAGCCAACAGGCACCACAAGCCCAAGCCCTTCGCCCCCATTGATTTTGAACCGTTCGCGGGCGGCGCCGATCCCGCCCGCGTCTCCGAGGCCGCCCACCTCGCAGCCCAGGCGCTGGTCCGCCATGGCCGTGACAGTGACGACCCCGTCGTCACTGAACGGCTGGTCAGGCTTGCCGACGAGCAGGGCCTGGAGGCCATCGCGGAGCTGTGGGCCGAAAGCCCGGCGCGCTCCCTCCCCGGTGCCCTGTGGCGGCTGTATGCACTGCGGGCCGCCACCGTGCAGGATCCGGAGCGGATTTCGGTGTACTTCCGCGCAGGCAAGGACACGGCCCAGGTCTCCAATGTGGTGGCGGGCGCCGCAGAGCCGCCGGGAGCCGAGGAGATGACTGCCATGGCAGACGCCATCCTGTCCGGAGCGTTCGACGGCGAGTTCGACGTCGCGCTGGAACGCTCCGCAGCTTTCTGCCGCGTAGTGGCACTTGGCCAGGCGACCATCGCTGACGGGGCCGAGCACGCAAACGAGGCCCATGCGAGCAAGCTGACGCGCAACTCCCATCAGCTGGTGAAAACGGCAGAAGACCTTGAGCATGCTGCCAACGCCTGGCGCCTGGGAGAGCTGGACTGAMGAMSEQAGPSHYGGANRHHKPKPFAPIDFEPFAGGADPARVSEAAHLAAQALVRHGRDSDDPVVTERLVRLADEQGLEAIAELWAESPARSLPGALWRLYALRAATVQDPERISVYFRAGKDTAQVSNVVAGAAEPPGAEEMTAMADAILSGAFDGEFDVALERSAAFCRVVALGQATIADGAEHANEAHASKLTRNSHQLVKTAEDLEHAANAWRLGELDNANANANANA
D1-29_003841659hypothetical proteinATGTCAGCTCGCCGAGCCGCCCCCCGCGCCCGTCACAGCGCATCGACCAGCCGGTCCCGCTTTCCCTGGGCCCGGATTGCCATAGTTTTGGGGACGCTCGTGGCCCTTGCAGTCGCGGGTGGGGCCGTGGTGTGGATTATGGGAATGCGCACACCGGCAGAGGCCTCCCAGTGCACCGATCCAATTGACGTCAGTGTGGGAGCGGACGCTGCCATGACGCCGGTGCTGGAACAGGCGTCCTCCCGGATTCCGCCGGAGGCGTGCGTAAACTTCACCTTCGCAACTTTGAGCCAGGCGGAATTGGCGGCCAAGGTATCAGCAGGCAAGGATGCACCGGATGTGTGGGTCGCGGATTCTGCGGTCCGGGTCCAAAGAGTGGTCACCACAACCCCGCCTGAGGTCATCGTGCCGTCGTTGGCGTCGACGCCCGGAGTCATCGTCGGACGCACCGGGGAAGTCCCGGCTTTTGCGACGTGGCTCAGTGCCCTGCAGGCTCCCGGAGTACGCTTCGGCGATCCGTTGGTCACCGGGAGCGGCGAAGTTGCGTTGCTGGGAGCGGTCTCGGAAGTCCAAGCAGGCCTGACAGACGCCAAAGCGCTCCAGGCTGCCACCGCGCAACTGGCCCAAAAGGAAAGCCAGCGGGCGGGGGAGAAGCTCTCGGACGTGCAGCAGCTCGAGTCTGTGGCCTCAGCCGGCGGATTCGTCATCGTCACGGAGGAGGCCTGGCTGAAGTTTTCCAAGACCACGTCAGGGGCCCTCCTGGCGGCTTCGGTCCCGGCAAGCGGTGCTGTATCACTGAACTACCCCCTGGTCAGTACTGCCGGAAGCGGGGCCCGGGGCCAGGCCGTGGCGGCCGCGGCGCGGGCCCTTGCTGAGCAGGTCGCCACAGACGAAGGCAGGATGAACCTTGCCGGCCAGGGGCTGCGCCCCGCGGACAGCAGCAACCTCCTGGACCAGAAGGGTGCCGGTCCCGTCGTAGCGCTCGCCCCGGCCTCCGCTCAGGCAGTCAGCCAGGCCCTCAGCGCCTGGTCTGTGCAGGCCATTCCCTTCCGGTCCCTGGTAGTGATGGATGTGTCAGGCTCCATGGAATTTCCGGCCGGCAACCAGACGCGGATGGAGTTGACGCAGCAGGCAGCCACCACCGGCAGCAAACTTTTTCCCAACACTGCGGCCCTGGGATTGTGGGCCTTCTCAATCGGCCTTGGCGGCGGCAGCCAGGACTACCTGGAGCTTGAGCCAATACGGAAGATGGACCAGGTGGTGGACGGGGTGACACAACGTGATCGCCTCGTGGCGGGGATTGCCGGCCTGTCCGAACGCACCGGCGGAGCAACGGGCCTTTATGACTCCACCCTCGCAGCTTTCAGGACAGTGCAGGCCTCCTACGACTCCCGTGCCATCAACAGCGTCATCCTGTTCACCGACGGCGCCAACGAGGACCCCGAGTCCCTCGCCCTGGAGCAGTTGCTGGAGACCCTGCAGCGGGAAAGGGATCCGGCCAAACCGGTAGTGATTGTCACTATTGGCATCACCGAAGACGCGGACGCTGAAACACTGACGAAAATTTCCGCGGCCACCGGGGGCACAAGTTATGTTGCCCGCGCACCCCAGGACATCCCCAGTGTGTTTGCGGACGCACTGCTGGCTCGCGGGAAATAGMSARRAAPRARHSASTSRSRFPWARIAIVLGTLVALAVAGGAVVWIMGMRTPAEASQCTDPIDVSVGADAAMTPVLEQASSRIPPEACVNFTFATLSQAELAAKVSAGKDAPDVWVADSAVRVQRVVTTTPPEVIVPSLASTPGVIVGRTGEVPAFATWLSALQAPGVRFGDPLVTGSGEVALLGAVSEVQAGLTDAKALQAATAQLAQKESQRAGEKLSDVQQLESVASAGGFVIVTEEAWLKFSKTTSGALLAASVPASGAVSLNYPLVSTAGSGARGQAVAAAARALAEQVATDEGRMNLAGQGLRPADSSNLLDQKGAGPVVALAPASAQAVSQALSAWSVQAIPFRSLVVMDVSGSMEFPAGNQTRMELTQQAATTGSKLFPNTAALGLWAFSIGLGGGSQDYLELEPIRKMDQVVDGVTQRDRLVAGIAGLSERTGGATGLYDSTLAAFRTVQASYDSRAINSVILFTDGANEDPESLALEQLLETLQRERDPAKPVVIVTIGITEDADAETLTKISAATGGTSYVARAPQDIPSVFADALLARGKNANANANANA
D1-29_003851011lacI_2COG1609Lactose operon repressorGTGGCGAACATCAACGGCCGCCGGCTACCGCGCCTCAATGACGTAGCCGCGCTGGCCGGTGTGTCGCACCAGACCGTCTCCCGGGTTGTTAATAACCATCCCAACGTCAGCAAGGCAACGCGGGAGCGGGTGGAGGCGGCCATCTCCGAGCTGGGATACCGGCGCAACACCGCTGCCCGCAGCCTGGTCACCCGGCGGTCCCAAACCATTGGCGTGCTGGGCAGCGAGCTGTCCCAGTACGGCCCGGCCAACACCATCCTGGGGGTGGAGCAGGCTGCGCGGGACGCCGGTTACTTCGTCAGCATTGCAGCGCTCAAGACCGTCAACCGGGACACCATTTCCGATGCCCTCCGCCACTTCCAGGACCAGTCCGTGGATGGAGTGGTGGTGGTGGTTCCGCACTCTGAGACGCTCAGCGCCCTGGACGAGATGGCGCTGGATGTGCCGGTTGTGACGGTGGGCTCCCTGGGTAACGACAAAATCAGCGGCGCCATGGTGGACCAGATGCGCGGTGCCGAACTTGCCGTCAGGCACCTCATCGAACAGGGCCACCGGAGGATCGGCCACATCTCCGGGCCGCTTGACTGGATCGACGGCGCGGCCCGGGCAGAAGGCTGGAGCCAGACCCTCCGCGCCGCCGGGCTGGAGGATGATCTCCTGGCCCACGGCGACTGGAGCGCAGGCAGTGGCTACGCAATCGGCCGCGAGCTGGCCCGGAAACGCTCAGCCACGGCAATTTTCGTCGGCAACGACCAGATGGCCCTTGGGCTGTTTCGGGCCTTCAGCGAGGCCGGGATCAGTGTCCCCGGCGATGTCTCCGTGGTCGGTTTTGATGACACCCCTGAAGCGGCCTACTTCGTCCCGCCGCTGACTACTGTGCGCCAGGACTTTGAGGAACTCGGCAGGCGCTGTGTGGATGCCATGGTGGGGGAGATCGAGCAGGGCGCCGCGGTCAGCGGAATTGTGGTGACGCCGGAGTTGGTGGTCCGCGGCAGCACCGCGGCCATCTAAMANINGRRLPRLNDVAALAGVSHQTVSRVVNNHPNVSKATRERVEAAISELGYRRNTAARSLVTRRSQTIGVLGSELSQYGPANTILGVEQAARDAGYFVSIAALKTVNRDTISDALRHFQDQSVDGVVVVVPHSETLSALDEMALDVPVVTVGSLGNDKISGAMVDQMRGAELAVRHLIEQGHRRIGHISGPLDWIDGAARAEGWSQTLRAAGLEDDLLAHGDWSAGSGYAIGRELARKRSATAIFVGNDQMALGLFRAFSEAGISVPGDVSVVGFDDTPEAAYFVPPLTTVRQDFEELGRRCVDAMVGEIEQGAAVSGIVVTPELVVRGSTAAIPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_003861017yjfFInner membrane ABC transporter permease protein YjfFATGTCTCCCCTCTCCACAGTGGCCCCGCCCACTCCCCGCAAGGCCTTTACCGTCCGGAACCGGATGCGCACCGGTGCCCGTTACGCTCCCACCCTGGCTACCCTGGCCCTCTTCATCCTGATGTTCATCGTGGGCGCCGGCATGTACCCAAGTTTCCTCTCGGGCCAGGTGCTCCTGAACCTCTTCATCGACAACACCTTCCTGATCGTCCTTGCGGTGGGCATGACCTTCGTCATTCTTACTGGCGGGATCGATCTGTCCGTTGGCGCCGTCGTCGCGCTTTCCATGATGGTGACCGCCAGCATGCTCCAAAACGGCTGGAACCCGGGCATCGTCATAGTGGCCGTCCTGGTCATTGGCGGCGGCCTCGGGTTGCTGATGGGGCTGGTCATCCAGTACTTCGACATCCAGCCATTCATCGTGACCCTGGCCGGGATGTTCCTGGCCCGCGGCCTGTGCTACGTGATCAGCCTCGACTCCATCCCGGTCACGGACCCCTTCTTCACGGGGATGGCGCAGGCGCGGATCCCGCTGTCCGAGGAGCTCTTCATCTCCCCAGGCGTACTGATCGCCCTGGTGGTGGTGGGCCTTGCGTTCTTCGTCCTTCACCACACGAGGTTCGGCCGGACGGTCTACGCGATCGGCGGCAATGAGAACTCAGCCATGCTGATGGGCCTTGCCGTGAAGAGCACCAAGGTCCTGGTCTACTGTGTCAGCGGGCTTTGCTCGGCGGTTGCCGGGATCCTCTTCTCCTTCTATAGTCTGTCCGGCTACAGCCTGGCCGCCCAGGGCATGGAGTTGGATGCCATCGCCGCTGTGGTCATCGGCGGAACCCTGCTGACTGGCGGGGTTGGCTACGTGCTGGGTTCGGTTGTCGGAGTCCTGGTTCTCGGGATCGTCCAGACCTTCATCGCCTACGACGGAACGCTCAGCTCCTGGTGGACCAAGATTGTGATCGGCGGCCTGCTGCTGGTCTTCATCCTGCTGCAGCGGCTGTTCACCAGACGCACCGCATAAMSPLSTVAPPTPRKAFTVRNRMRTGARYAPTLATLALFILMFIVGAGMYPSFLSGQVLLNLFIDNTFLIVLAVGMTFVILTGGIDLSVGAVVALSMMVTASMLQNGWNPGIVIVAVLVIGGGLGLLMGLVIQYFDIQPFIVTLAGMFLARGLCYVISLDSIPVTDPFFTGMAQARIPLSEELFISPGVLIALVVVGLAFFVLHHTRFGRTVYAIGGNENSAMLMGLAVKSTKVLVYCVSGLCSAVAGILFSFYSLSGYSLAAQGMELDAIAAVVIGGTLLTGGVGYVLGSVVGVLVLGIVQTFIAYDGTLSSWWTKIVIGGLLLVFILLQRLFTRRTAPGPT0016630_872DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509NANA
D1-29_003871032ytfTInner membrane ABC transporter permease protein YtfTGTGAAATCCATCCTGAAGAACCGGCTGGCCTGGCCGGTCCTGGCCCTCGTCGCGCTGCTGGCAGTCAACCAGATTTTCCGGGGAGACTTCCTGAGCCTGCGGATGCAGGACGGCCATCTCTACGGCAGCCTCATCGACATCATGCGCAATGGTGCCCCCACCATCCTGATAGCCCTCGGCATGACCCTGGTTATTGCTTCCAGGGGCATCGACCTTTCGGTGGGTGCCGTGGTTGCCATTGCCGGTGCCGCCTCCTGCGCCTACATCGCGGCTTCTCCGGAACCTGCTTCGCCGGCAACCGCCGCCGTGGCGGTGGTCATCGCCGTGGTGGCGGGCCTGGTGCTGGGCGTCTGGAACGGATTCCTGGTTTCCACCATCGGGGTCCAGCCCATCATTGCCACGCTGGTGCTGATGACGGCCGGACGCGGCATCGCCCAGCTCATCACCGACGGCCAGATCGTGTCGGTGACCAACGACAGCTACAAAGCAATAGGCGCCGGCTACCTCTTCACACTTCCGGTCTCCATCCTTATCACCGCCGTGGTGTTCATCCTGGCGGCCGTCCTGACCCGCCGGACAGCGCTCGGAACACTGATTGAGGCAGTTGGCATCAACCCGGTGGCGAGCCGGTTGGCGGGGTTGCGGGCCCGCAACATTATCTGGATCGTCTACATCTTCAGCGCATTCTGTGCGGCGATTGCCGGACTCATGATCAGCTCGAACGTCACGGCGGCGGACGCCAACAACGCCGGCCTGTACATTGAAATGGACGCGATCCTCGCCGTCGTCATCGGTGGCACGTCCCTTGCCGGCGGACGCTACAGCCTGGTGGGCACCGTGGTGGGAGCGTTTATCATCCAGACCCTGACCACCACCGTCTACACGCTGGGCATTCCCCCGGAGGTCACCCTGGTGTTCAAGGCCATCGTGGTTCTCACCGTCTGCCTCCTGCAGGCGCCAAAGGCCAGGAACCTGTTCAGGAACCTCAAACCGGCAAGTCCGCTCCGCACCAAGGAAAAGGTGGCAGTCTGAMKSILKNRLAWPVLALVALLAVNQIFRGDFLSLRMQDGHLYGSLIDIMRNGAPTILIALGMTLVIASRGIDLSVGAVVAIAGAASCAYIAASPEPASPATAAVAVVIAVVAGLVLGVWNGFLVSTIGVQPIIATLVLMTAGRGIAQLITDGQIVSVTNDSYKAIGAGYLFTLPVSILITAVVFILAAVLTRRTALGTLIEAVGINPVASRLAGLRARNIIWIVYIFSAFCAAIAGLMISSNVTAADANNAGLYIEMDAILAVVIGGTSLAGGRYSLVGTVVGAFIIQTLTTTVYTLGIPPEVTLVFKAIVVLTVCLLQAPKARNLFRNLKPASPLRTKEKVAVPGPT0016630_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016630-ytfT|yjfF-K23509NANA
D1-29_003881527fruKCOG1129Fructose import ATP-binding protein FruKATGAACGAACTCGTTCCGGTCGTCGAGATGACCGACATTGCCATCGGATTCCCCGGAGTCAAAGCCCTTGACGACGTCAGCTTCCGTCTTTTCCAAGGCGAGGTGCATGCCCTGATGGGCGAAAACGGGGCGGGCAAGTCCACCCTTATCAAGGCATTGACCGGCGTCTACAGCATCGACTCCGGCCGGATCACCGTCCTGGGCCAGCAGCAGAACTTCTCCACGCCTGCCGAATCACAGGCGGCCGGTATCAGCACGGTTTACCAGGAAGTCAACCTCTGCACCAACCTCACGGTCGAAGAGAACGTCATGCTGGGCCGGGAGCCACGGCGGCGCGGTTCCATTGACTGGCGCGGCGTACGCGCCCGCACCCGTGAGGTCCTGGCCCAGCTCCACCTGGAACATGTGGAACCCGGGTCCTTGCTTTCCGAACACTCCATCGCGGTCCAGCAATTGATCGCCATTGCCCGCTCCGTCGAAGTCAACGCCAAGGTCCTGATTCTTGACGAGCCGACGTCGAGCCTGGACGCAGATGAAGTCAACCAGCTTTTCCGGGTGATCCGGGACCTCCGTGACCGCGGCGTTGCCATCCTTTTCGTGTCGCACTTCCTCGAGCAGGTCTACGAACTTTCAGACCGCATGACGGTGCTCCGCAACGGCAAGCTCGTGGGCGAATACATGACCCGCGACCTTTCCCGCATGAACCTCATCTCCAAAATGATCGGCAAGGACCTCGAGGTCCTGGAGGAACTTGATCAGGCGTCCACCCGGTCACAGGCCAGGCTCGCGGCGAACGCCCAACCGTTTATGGAAACCGAGGGGCTAGGCCGAAAAGGATCCGTCTCCGGTATCAACCTGTCCATCTATCCCGGCGAGGTGGTGGGACTGGCCGGGCTCCTCGGTGCCGGACGCACCGAGACGGCACGGCTCCTCTTTGGCGCCGACAAGTCGGATGAGGGTTCCCTCACGGTCAAGGGCCAGCCCTTGAAATTGCGTTCCCCACGCACCGCCATCGACCATGGCATCGGTTTCTGTTCCGAAGACCGCAAAGAGGAAGGCCTCATCGGCGACCTCACCGTCCGTGACAACCTGGTGCTCGCCATGCAGGCAACCAAAGGCTGGGCACGGCGGATCCCGCGCCGCGTGCAGGATGAACTCGTTGCCGAGTTCATCAAGACCCTCGACATCCGGCCGGCAAACCCGGATGCCCTCATCCGCAATCTCAGCGGCGGGAACCAGCAAAAAGTATTGTTGGCCCGCTGGATGGTGACGTCCCCGGATCTGCTGATCCTGGACGAACCAACCCGAGGCATTGATATCGGAGCGAAGACGCAGATCCAGAAACTGGTCAACAAGCTTGCCTCAGAGGGAATGTCCATCCTCTTCATCTCCTCGGAGCTGGAAGAAGTGCTCCGGCTCAGCGACCGCATCGCCATCATCAAAGACAGGGCCATGGTGGCCGAAATCAGTAACGACGACGTTTCCGTCGAAGACGTCCTGACAGTCATCGCCGGAGGCGCCCAGTGAMNELVPVVEMTDIAIGFPGVKALDDVSFRLFQGEVHALMGENGAGKSTLIKALTGVYSIDSGRITVLGQQQNFSTPAESQAAGISTVYQEVNLCTNLTVEENVMLGREPRRRGSIDWRGVRARTREVLAQLHLEHVEPGSLLSEHSIAVQQLIAIARSVEVNAKVLILDEPTSSLDADEVNQLFRVIRDLRDRGVAILFVSHFLEQVYELSDRMTVLRNGKLVGEYMTRDLSRMNLISKMIGKDLEVLEELDQASTRSQARLAANAQPFMETEGLGRKGSVSGINLSIYPGEVVGLAGLLGAGRTETARLLFGADKSDEGSLTVKGQPLKLRSPRTAIDHGIGFCSEDRKEEGLIGDLTVRDNLVLAMQATKGWARRIPRRVQDELVAEFIKTLDIRPANPDALIRNLSGGNQQKVLLARWMVTSPDLLILDEPTRGIDIGAKTQIQKLVNKLASEGMSILFISSELEEVLRLSDRIAIIKDRAMVAEISNDDVSVEDVLTVIAGGAQPGPT0016635_270DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016635-ytfR-K10820NANA
D1-29_00389981ytfQABC transporter periplasmic-binding protein YtfQGTGTTCAAAAAAACTTTAGTCGCGGTCATGGCCGCATCAGCCCTCGCCCTGACCGCATGCGGCGGCGGCACCCAGGCCGCCAGCAGCGGCGGCGACGCTGACAAGAAGATTGTGATGGGCTTTGCCCAGGTCGGCGCAGAAAGCGGCTGGCGCAGCGCGAACACCAAGTCGGTCCAGGAATCGGCCAAGGAAGCCGGGATCGAGCTGAAGTTCTCAGACGCCCAGCAGAAGCAGGAAAACCAGATCAAGGCCATCCGCTCCTACATCCAGCAGAAAGTGGACGTCATCGCTTTCTCTCCGGTGGTTGAATCCGGTTGGGACACCGTGCTGAAGGAAGCCAAGGACGCGAAGATCCCGGTCATCCTCACCGACCGCGCAGTGGACTCGGCCGACAAGTCCCTCTACAAGACCTTCCTCGGCTCCGACTTCGTTCTCGAAGGCAAAAAGGCCGGCGAATGGCTGGTAGCCGAATCCAAGGCGGCCACGGACACCGTCAACATTGTTGAAATCCAGGGCACCACCGGCTCAGCCCCCGCCAACGACCGCAAGGAAGGCTTCGAAGCTGCCATCAAGGCCGACCCGAAACTGAAGATCATCGCTTCCCAGAGCGGCGACTTCACCCGCAGCGGCGGCAAGCAGGTCATGGAAGCCTTCCTGAAGAACAACCCGGACATCGACGTCGTCTTCGCCCACAACGACGACGAAGGCCTCGGCGCGATCGAAGCCATCGAAGCCGCCGGCAAGGTACCGGGCAAGGACATCAAGATCATCACCATCGACGCCGTCAAGGACGGCATGACCGCCCTGAGCGCCGGCAAGATCAACTTCATCGTTGAGTGCAGCCCGCTGCTGGGCACCCAGCTCATGGACCTGGCCAAGAAGGTCCTCGCCGGCGAAACGGTACCCGAGCGCGTGGTCACCGAAGAAACCACCTTCACCCAGGAACAGGCAACCAAGGCCCTGCCTACCCGTCAGTACTGAMFKKTLVAVMAASALALTACGGGTQAASSGGDADKKIVMGFAQVGAESGWRSANTKSVQESAKEAGIELKFSDAQQKQENQIKAIRSYIQQKVDVIAFSPVVESGWDTVLKEAKDAKIPVILTDRAVDSADKSLYKTFLGSDFVLEGKKAGEWLVAESKAATDTVNIVEIQGTTGSAPANDRKEGFEAAIKADPKLKIIASQSGDFTRSGGKQVMEAFLKNNPDIDVVFAHNDDEGLGAIEAIEAAGKVPGKDIKIITIDAVKDGMTALSAGKINFIVECSPLLGTQLMDLAKKVLAGETVPERVVTEETTFTQEQATKALPTRQYPGPT0016625_326DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GALACTOFURANOSE_TRANSPORT,PGPT0016625-ytfQ-K23508NANA
D1-29_00390381tdcFCOG0251Putative reactive intermediate deaminase TdcFATGCCTAAAACCATCCCCGCCATCGACGGCGTCCAGCCCGGAGGCGACTCCTACTCCCAGGTGGTGGAGGCCAACGGCCTCGTCTTCCTCGCCGGCCAGGTCGGAAGCATCGGCGGCCGCCCGGAAACCTACCCGGCCAACTTCGAAGCAGAAGTCCGCGCCACCTTCGCCAGCGCCGAAAAGCTGCTGACCGGCGTCGGACTCGGACTCCAGGACGCCGTGCGGTGCGTCTGCTACCTCACCGATTGGTCAGACTTCGCTGAGATGGAGAAAGTCTTCCGCGAAGTTTTCCCTACCAATCCACCGGTGCGAGCCACCGTTGGTGTCACAAGCCTGGCCCGCGACTGCAAGTTCGAGGTCGAGGTCACCGCCGCCCGGTAAMPKTIPAIDGVQPGGDSYSQVVEANGLVFLAGQVGSIGGRPETYPANFEAEVRATFASAEKLLTGVGLGLQDAVRCVCYLTDWSDFAEMEKVFREVFPTNPPVRATVGVTSLARDCKFEVEVTAARNANANANANA
D1-29_00391978tdcB_1L-threonine dehydratase catabolic TdcBATGGCCATCACCTTGCCGACGAGCCTGACCTCCCTCGAGGACCTGTACTTGGCACAATCACACATCGGCACCACCTGCCTGCGCACGCCCGTGTTGCAGATGCCCCCTCATTCAGCCGGCGGCCGGCCCCTCTGGATCAAGGCAGAATCGCTGCAATACACGGGTTCCTTCAAGCTTCGCGGCGCCACCAACGCGGTGGCTGCACTCGATGACCGCGCGAAGGCCGCCGGCGTCATCGGCTACTCCGCCGGTAACCATGGCCGGGGCCTGGCCCGGGCCGCCAGGCTCGCCGGGATCGCGGCCACGGTGGTGATGCCGGAGACCGCGCCGTCAACGAAGATCCTGGGCACGAGGGAGGAAGGGGCCACCGTGATCCTCCGCCCTCCGACCGAGACCATGACTCATGCCAAAGACCTGGCGGCGGCCCATGGCCTGACTGTGGTGCCTCCGGACGATGACGCCATGATCATCGCCGGCCAGGGCACCATTGGCCTCGAACTGCTGGATCAGCTCGATGACCTCGAGATAGTCCTGGTCCCTGTTGGGGGCGGCGGCCTGATCTCCGGCGTAGCTGCGGCCATCAAGAGCCTGCGGCCAAACATCCGCGTGATCGCAGTTGAGCCCGAGCTGGCCGGTGACCTCGCCGAGAGTATTGCTACCGGTGAGCGGAAGCGGTGGTCCAGAGAGCTGACCGGGCGCACGATCGCCGATGGCCTGCGCTCCACCATGGTGGGCGACCTGCCCTGGGAACACATCCAGGCCCTCGTGGATGACGTCGTGACGGTCTCCGAAGATTCCATAGTCGAGGCCATGCGATGGCTGGCCGAGACCAGCAGGCTCATCGTCGAACCCAGCGGCGCCGTCGCAGCCGCCGCCGTCCTCGAGCACTCCACCCGGATCGGCACCGGAACCATAGCCGCAATCGCCACCGGCGGAAACATCGACCTGGAAAAGTTCGCCTCACTCATGGCCCCCTGAMAITLPTSLTSLEDLYLAQSHIGTTCLRTPVLQMPPHSAGGRPLWIKAESLQYTGSFKLRGATNAVAALDDRAKAAGVIGYSAGNHGRGLARAARLAGIAATVVMPETAPSTKILGTREEGATVILRPPTETMTHAKDLAAAHGLTVVPPDDDAMIIAGQGTIGLELLDQLDDLEIVLVPVGGGGLISGVAAAIKSLRPNIRVIAVEPELAGDLAESIATGERKRWSRELTGRTIADGLRSTMVGDLPWEHIQALVDDVVTVSEDSIVEAMRWLAETSRLIVEPSGAVAAAAVLEHSTRIGTGTIAAIATGGNIDLEKFASLMAPPGPT0001960_6451DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-29_00392147hypothetical proteinGTGAACGCTAACACGGGCAGCGTCAAGGCCACCACTAACTCCCCGGACAACGAGGCCTCCAGCCTCACCGAAACGGCCGGAACACCCATGGTCCTTGGTGAATGGATTTTATTCAATCCATTGGGGAAAGCCCAGCGCGGCCCCTAAMNANTGSVKATTNSPDNEASSLTETAGTPMVLGEWILFNPLGKAQRGPNANANANANA
D1-29_003931788araBCOG1069RibulokinaseATGCAAAGCAATACACCTGAAATTTCCCCCGAATCCGGTGCGGAGAACTACGTCATCGGCGTGGACTACGGCACCCTGTCCGGCCGGGCCCTGGTGGTTCGAGTACGGGACGGCAAGGAGCTGGGAAGCGGCGTTTACGACTACCCCCACGCCGTGGTCACAGACGCGTTGCCCGAGGATGTGGCTGGCGACGACGGAAAAGGCGTCCGGCTTCCCGGCGAATGGGCACTTCAGGTACCCAACGATTACCGGGACGTGCTTCGGTACGCAGTTCCGGCAGCGATCGCGGATGCAGGCATCGACCCCGCCGGCGTCGTCGGAATCGCCACGGACTTCACGGCCTGCACCATGGTGCCGGTGAAGTCGGACGGCACCCCGCTGAATGAGCTGGAGGGCTTCGCCAACCGGCCGCACGCCTACGTCAAACTGTGGCGCCACCACGCGGCGCAGCCCCAGGCCGACCGGATCAACACGCTGGCAGCGGAGCGCGGGGAGGACTGGCTGCCACGCTACGGCGGGCTCATTTCCTCTGAATGGGAGTTTGCCAAGGGCCTGCAGCTGCTGGAGGAGGACCCCGAAGCCTACGCCGAGATGGACCACTGGGTGGAGGCCGCGGACTGGATCGTGTGGCAGTTGTGCGGCAAGTACGTCCGCAACGCCTGCACCGCCGGCTATAAGGGCATCTACCAGGACGGCCGGTACCCCTCGGAGGATTTCCTGGCAGCACTCAACCCCCAGTTCAAGGACTTTGTCAGCACCAAACTGGAACACACCGTCGGCCGCCTTGGCGACGCCGCAGGCTACCTGACTGCGGAAGCGGCGGCATGGACCGGCCTGCCGGAAGGCATTGCCGTTGCCGTAGGCAACGTGGACGCGCATGTCACCGCCCCTGCCGCCCGCGCCGTTGACGCCGGCCAGCTGGTTGCCATCATGGGAACCTCCACCTGCCACGTCATGAACGGCACCGAACTGCATGAAGTTCCTGGCATGTGCGGGGTTGTTGACGGCGGCATCGTGGACGGGCTTTGGGGCTACGAAGCCGGCCAGTCCGGTGTAGGGGATATTTTTGGCTGGTTCACCAAGTACGGTGTGCCGCCGGAATACCACCAGGCCGCGGAAGCAGCAGGGCTGGGCATCCACGAATACCTCACCGAGCTGGCCTCCCACCAGGCAATTGGCGAACATGGCCTGATCGCACTGGACTGGCACTCGGGCAACCGCTCTGTGCTGGTGGACCACGAACTGTCGGGCATCGTTGTGGGCCAGACCCTGGCCACCCGCCCGGAGGACACCTACCGCGCGCTCCTGGAAGCCACGGCCTTTGGCACCCGCACCATCGTGGACGCGTTCCGGACTTCCGGTGTCCCGGTCAAGGAATTCATCGTGGCCGGCGGCCTGCTGAAGAACAAACTCCTGATGCAGATCTACGCGGACATCACCGGTCTCCAGCTCTCCACCATCGGCTCCACGCAGGGACCCGCCCTCGGTTCCGCCATCCACGCCGCGGTGGCTGCCGGCAAGTACGCCGACATCCGCGAAGCCGCCGAGGCCATGGGTTCAGAACCCGGCGCGGTCTACACTCCCATCCCGGAAAACGTTGCAGCGTATGACCAGCTCTTTACCGAATACCGCACACTGCACGATTACTTCGGGCGCGGCACCAACGACGTCATGCACCGGCTCAAGGCCATCCAGCGCAAGGCCAAGCCGCAAGTCACCGCATCCACATCGGATACGGTGGCAGCAGAGTCCGACGCCGCCGAACGAGTTGCAGGGGTGTCCGCATGAMQSNTPEISPESGAENYVIGVDYGTLSGRALVVRVRDGKELGSGVYDYPHAVVTDALPEDVAGDDGKGVRLPGEWALQVPNDYRDVLRYAVPAAIADAGIDPAGVVGIATDFTACTMVPVKSDGTPLNELEGFANRPHAYVKLWRHHAAQPQADRINTLAAERGEDWLPRYGGLISSEWEFAKGLQLLEEDPEAYAEMDHWVEAADWIVWQLCGKYVRNACTAGYKGIYQDGRYPSEDFLAALNPQFKDFVSTKLEHTVGRLGDAAGYLTAEAAAWTGLPEGIAVAVGNVDAHVTAPAARAVDAGQLVAIMGTSTCHVMNGTELHEVPGMCGVVDGGIVDGLWGYEAGQSGVGDIFGWFTKYGVPPEYHQAAEAAGLGIHEYLTELASHQAIGEHGLIALDWHSGNRSVLVDHELSGIVVGQTLATRPEDTYRALLEATAFGTRTIVDAFRTSGVPVKEFIVAGGLLKNKLLMQIYADITGLQLSTIGSTQGPALGSAIHAAVAAGKYADIREAAEAMGSEPGAVYTPIPENVAAYDQLFTEYRTLHDYFGRGTNDVMHRLKAIQRKAKPQVTASTSDTVAAESDAAERVAGVSAPGPT0017410_22DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017410-araB|L_ribulokinase-K00853NANA
D1-29_00394690ulaFCOG0235L-ribulose-5-phosphate 4-epimerase UlaFATGAGCACGCTGGAAACCATCGCCCGCATCCGCGGCGAGGTCTGCGCACTGCACGCGGAACTGACCAGGTATGAACTGGTGGTGTGGACGGCAGGCAACGTCTCCGCGCGTGTGCCCGGCCAGGATCTGATGGTGATCAAGCCGTCAGGCGTTTCGTATGACGACCTGACCCCCGAACAGATGGTGGTCACGGACCTTTACGGGGTTCCCGTGGATGGGGACGCAACAGGTGAGTGGGGCAATCCGCCGCTCGCGCCGTCGTCGGACACCGCGGCACATGCATACGTTTACCGGCATATGCCGGAAGTGGGCGGTGTGGTGCACACCCACTCCACCTACGCCACGGCTTGGGCGGCGCGGGGGGAATCCATCCCGTGCGTCCTGACCATGATGAGCGACGAGTTCGGTGGCGCCATTCCGGTGGGACCCTTCGCGCTGATTGGCGATGACTCGATCGGCCAGGGCATCGTGGAAACCCTGAAGGATTCCCACTCACCAGCGGTCCTGATGCAGAACCACGGCCCCTTCACTATCGGCAAGGACGCCAGGTCCGCTGTCAAGGCTGCGGTGATGTGCGAGGAAGTGGCACGCACCGTGCATATTTCACGGCAGCTGGGCGAGCCGATTCCCATTGACCAGGGCCACATCGACTCCCTCTACGCGCGCTATCAGAACGTCTACGGCCAGTAAMSTLETIARIRGEVCALHAELTRYELVVWTAGNVSARVPGQDLMVIKPSGVSYDDLTPEQMVVTDLYGVPVDGDATGEWGNPPLAPSSDTAAHAYVYRHMPEVGGVVHTHSTYATAWAARGESIPCVLTMMSDEFGGAIPVGPFALIGDDSIGQGIVETLKDSHSPAVLMQNHGPFTIGKDARSAVKAAVMCEEVARTVHISRQLGEPIPIDQGHIDSLYARYQNVYGQPGPT0017420_490DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017420-araD|ulaF|sgaE|sgbE-K03077NANA
D1-29_003951521araAL-arabinose isomeraseATGAACACCGCAGCAAACACCTCCCTCGACGGCTTTGAGGTCTGGTTCCTCACCGGAAGCCAGCACCTCTACGGCGAAGACGTCCTGAAGCAGGTGGCGGCGCAGTCCCAGGAGATCGCCAACCAGCTCAATGCTTCCTCCAGCGTTCCGGTCAAGATCGTCTGGAAGCCCGTCCTGACCGACTCGGACGCCATCCGCAGGACCGCCCTGGAAGCCAATTCCAACGATTCCGTCATCGGCGTCACCGCCTGGATGCACACTTTCTCGCCGGCCAAAATGTGGATCCAGGGCCTGGACCTGCTGCGTAAGCCCCTCCTGCACCTGCACACGCAGGCCAACGTGGAGCTGCCCTGGGCGGACATCGACTTCGACTTCATGAACCTGAACCAGGCCGCCCATGGTGACCGCGAATTCGGCTACATCCAGTCACGCCTCGGCATTGCCCGCAAGACCGTTGTAGGCCACGTCTCCAATCCGGAGGTGGCACGCCAGGTAGGTGTCTGGCAGCGCGCCGCCGCCGGCTGGACTGCTGTCCGCACGCTGAAGCTGACCCGCTTTGGCGACAACATGCGTAACGTCGCCGTCACCGAAGGCGACAAGACCGAAGCGGAACTCCGGTTCGGAGTGTCCGTCAACACCTGGTCCGTCAACGAACTCGCCGACGCCGTCCACGGCGCCGCTGACTCCGACGTCGATAACCTGGTCGCTGAGTACGAGGAACTTTACGACGTGGTTCCTGAGCTCCGCGCCGGCGCTTCCCGCCACGATTCCCTCCGCTACGGTGCGCGGATCGAGCTCGGCCTGCGCAGCTTCCTGGAAGCCAACGGGTCCGCCGCCTTCACCACCTCCTTTGAGGACCTGGGCGCGCTCCGGCAGCTCCCCGGCCTGGCGGTCCAGCGGCTTATGGCATCCGGCTATGGCTTCGGCGCCGAGGGTGACTGGAAGACCGCCATCCTGGTCCGCGCCGCCAAGGTGATGGGTTCCGGCCTGCCCGGCGGTGCCTCCCTGATGGAGGACTACACGTACCACCTGGAGCCCGGCGCCGAGAAGATCCTGGGTGCACACATGCTTGAGGTCTGCCCCTCCCTCACGGCCGGAAAGCCCCGCCTGGAAATCCACCCGCTGGGCATTGGCGGCAAGGAGGATCCCGTCCGCCTCGTATTCGACGCCGATGCCTCCCCTGGCGTGGTGGTGGCGCTTTCGGACATGCGCGACCGCTTCCGGCTGGTGGCTAACGCCGTGGACGTAGTGCCCCTTGACCAGCCGCTTCCGAACCTCCCGGTGGCCCGCGCGCTCTGGGAGCCGAAGCCTGATTTTGCCACGTCCGCAGCAGCCTGGCTCACGGCGGGTGCAGCACACCACACCGTCCTGTCCACCCAGGTGGGGATGGACGTCTTTGAGGACTTTGCCGAGATCACCCGGACCGAACTGCTCACCATCGACGAGGACACCACCATCCGCCAGTTCAAGAAGGACCTGAACTGGAACGCGGCGTACTACAAACTTGCAGGCGGGCTCTAAMNTAANTSLDGFEVWFLTGSQHLYGEDVLKQVAAQSQEIANQLNASSSVPVKIVWKPVLTDSDAIRRTALEANSNDSVIGVTAWMHTFSPAKMWIQGLDLLRKPLLHLHTQANVELPWADIDFDFMNLNQAAHGDREFGYIQSRLGIARKTVVGHVSNPEVARQVGVWQRAAAGWTAVRTLKLTRFGDNMRNVAVTEGDKTEAELRFGVSVNTWSVNELADAVHGAADSDVDNLVAEYEELYDVVPELRAGASRHDSLRYGARIELGLRSFLEANGSAAFTTSFEDLGALRQLPGLAVQRLMASGYGFGAEGDWKTAILVRAAKVMGSGLPGGASLMEDYTYHLEPGAEKILGAHMLEVCPSLTAGKPRLEIHPLGIGGKEDPVRLVFDADASPGVVVALSDMRDRFRLVANAVDVVPLDQPLPNLPVARALWEPKPDFATSAAAWLTAGAAHHTVLSTQVGMDVFEDFAEITRTELLTIDEDTTIRQFKKDLNWNAAYYKLAGGLPGPT0017450_62DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017450-araA-K01804NANA
D1-29_00396810hypothetical proteinATGAATGTCCCTTACTCTTCTGCGGAGGCAGCATTGGGCGGGCCGGAAGTGTCCGTTCGCGCTGCGGATGGGGCGCGCACTGTCTACGCTGCCCTGCGGCCCAACGGCATTGTGCTTGACCTGGTGACGGGCGCGGAGTGTGTCACCGACTCACTGCAAACATTGGTAAACCAGGCAGCAGCGGCCATGGCCCGGACCACCGGGGCTCCCATCCAATGCGCTCTGATCCTGCAGCGCATCAAGCGCACCACGGAGGCGATCGGGACGGATCAGGAAACCGAGTCTTTGGCGCGGCTGGATCAAAAACTGGCTGAAGGTCCCCTGACGCAAGCGATCCGGGCAAACTCTCCCATCGCTGTGAACTGCGGCAACGCCGGGTTCAGCTGGCCGCGGTACGGGGCAGGGTTTAAGGCTGCCGGCTTCAGCAGCGTCCTTAGCGTCCCGCTGAAACTCGGTGAGGGGTCACAGTCCGCCATCGCATTCTTTGCCCGGAATCCTGACGTGTTTCCGGTACAGGTCATGGCTGATGCCCTCGCCTTTGCAGACCTCGCCTCACGCAGCCTGAAACTCGTTTTGGAACTGAAAGCTGCACGGGCCGCGGCCTCCGATTTACGGTCAGCACTGGAAAGCAGGACGTCCATCGACATCGCGTGTGGGGTCATCATGGCTCAGAACAGGTGCTCTTACCACGACGCGATTGGCATCATCTCCAGGGCATCCAGCCACCGGAACATCAAGCTCCGCAAGATTGCCGAGGGCATCCTGGACAGGCTTCCGGGCGGCACCCCGCGCACGCACTTCGACCACTAGMNVPYSSAEAALGGPEVSVRAADGARTVYAALRPNGIVLDLVTGAECVTDSLQTLVNQAAAAMARTTGAPIQCALILQRIKRTTEAIGTDQETESLARLDQKLAEGPLTQAIRANSPIAVNCGNAGFSWPRYGAGFKAAGFSSVLSVPLKLGEGSQSAIAFFARNPDVFPVQVMADALAFADLASRSLKLVLELKAARAAASDLRSALESRTSIDIACGVIMAQNRCSYHDAIGIISRASSHRNIKLRKIAEGILDRLPGGTPRTHFDHNANANANANA
D1-29_00397198hypothetical proteinATGCGTTCAGGACTCACAATCTGCGAATTCCCGATTCCAAGGAACCGGGTAACTAGCGGGGCCGGCGACGAGGAGGTCTTTGAGACCGAGGCCTCTCCCCCAGCCGTCGCCGGCCCTCTTACTTCCAGCCTTGTTTCCGGCCGCCAGGCTTACTTCGAGCACCGAATGCCGGCCACCCGTCCGGCCCCGCATGCCTGAMRSGLTICEFPIPRNRVTSGAGDEEVFETEASPPAVAGPLTSSLVSGRQAYFEHRMPATRPAPHANANANANANA
D1-29_003981521abfAIntracellular exo-alpha-(1->5)-L-arabinofuranosidaseGTGGCCCTTTCAGCTGCAGCAAAAATCACCATTGACCCTGCCTTCACGGTGGGACCGGTCCGGCGGCGCACCTTTGGTGCCTTCGTGGAACACCTGGGCCGCTGTGTGTACACCGGGATCTTCGAGCCCGAGCACCCGCAAGCTGATGCGGATGGTTTCCGCACTGACGTGCTGGGACTCACCCGGGAGCTGGGCGTCTCAACGGTCCGCTACCCGGGCGGAAACTTCGTCTCCGGCTACCGCTGGGAAGACGGTGTCGGACCCGTGGAGCAGCGGCCCATGCGGCTCGACCTGGCCTGGCACTCCTCGGATCCCAACCTGGTGGGCGTCGACGAGTTCGCCACATGGTGCGCCAAAGCCGGCGTCGAACCCATGATGGCAGTCAACCTGGGAACGCGCGGGACGCAGGAGGCGCTGGACCTCCTGGAATACTGCAACATCGACGGCGGCACGGCCTTCTCCGACCAGCGGAAGGCCAACGGTGCGCAGGAGGGCTACGGCATCAAGATGTGGTGCCTCGGGAACGAGATGGACGGCCCGTGGCAGATCGGCCACAAAAGCGCCCTCGAGTACGGCCGGCTCGCCGCTGACACCGCCCGAGGCATGCGCATGATCGATCCGGACCTCGAACTGGTGGCCTGTGGCAGCTCCTCGCCCGGCATGGACACCTTCGGAGAGTGGGAGCGTGTGGTCCTGTCAGAGACGTACGAACTGGTGGACCTCATTTCCGCCCACCAGTACTTTGAGGATTTCGGCGATCTGCAGGAACACCTGGCAGCTGGCCACAAGATGGAGTCCTTCATCGGGGACATCGTGAGCCACATCGATCACGTGAAGTCGGTGAAGAAGTCCAACAAGCAGGTCAACATCTCGTTCGACGAGTGGAACGTCTGGCACGGGAGCCGCGCGGAATCCAAGTCACCCAGCGGCAAGGACTGGCCGGTGGCCCCCGTCCTGCTGGAGGACCGCTACACGGTGGCGGACGCCGTCGTCGTCGGTGACCTGCTGATCACCCTGCTGCGCAATACTGACCGTGTCCACTCCGCAAGCCTGGCGCAGCTGGTCAACGTCATCGCTCCCATCATGACCGAACCGGGCGGGCGGGCCTGGAAGCAGACCACGTTCCACCCCTTCGCCCTGACCTCCCGGCACGCCGCCGGCACGGTTCTGCAGCTCGCCGTCGAGTCCCCGCTGGTCAGCGGCGGGAAAACCGCTGATTTCGGTGCGCTTTCAGCTGTGGCAACCTTCGACGCCGGGGCGGGCGAGGCTGTGGTGTTTGCCGTAAACCGCTCGGCTACCGACGCCCTTACGCTGGATGCGGCCGTGGCCGGGCTGGGTAACGTCAGGATTATTGAAGCCCTTACCTACACGAACAAGGACCCGTACTGGCAGGCCACCGCAGATGACTCCACCTCGGTCCTGCCGGCCGAGAACGTTACGGCAAAGGCCGACGGCGGCCGGCTCACCACCGAGCTCCCGGCAGTGTCCTGGTCCATGATCCGGCTGGCCGTGGAGTCCTAGMALSAAAKITIDPAFTVGPVRRRTFGAFVEHLGRCVYTGIFEPEHPQADADGFRTDVLGLTRELGVSTVRYPGGNFVSGYRWEDGVGPVEQRPMRLDLAWHSSDPNLVGVDEFATWCAKAGVEPMMAVNLGTRGTQEALDLLEYCNIDGGTAFSDQRKANGAQEGYGIKMWCLGNEMDGPWQIGHKSALEYGRLAADTARGMRMIDPDLELVACGSSSPGMDTFGEWERVVLSETYELVDLISAHQYFEDFGDLQEHLAAGHKMESFIGDIVSHIDHVKSVKKSNKQVNISFDEWNVWHGSRAESKSPSGKDWPVAPVLLEDRYTVADAVVVGDLLITLLRNTDRVHSASLAQLVNVIAPIMTEPGGRAWKQTTFHPFALTSRHAAGTVLQLAVESPLVSGGKTADFGALSAVATFDAGAGEAVVFAVNRSATDALTLDAAVAGLGNVRIIEALTYTNKDPYWQATADDSTSVLPAENVTAKADGGRLTTELPAVSWSMIRLAVESPGPT0018655_1069DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ARABINOFURANOSIDASE,PGPT0018655-abfA-K01209NANA
D1-29_00399576hypothetical proteinATGGAACTGCATATCACCGGGGATCCCGCTGCTGACAAACTTTTGGGCGATGACGCATTTGCGCTGCTGACCGGCATGCTGCTGGACCAGCAGGTGACCATGGAGTCCGCTTTTGCCGGGCCGGAGAAGATCCGTACCCGCATCGGGTCCATCAGCCCGTCCGCCGTTGCCTCCCAGGACCCCCAGGCTTTCATTGAGGTGTTCAAGGAGCGGCCGGCAGTACACCGCTTTCCCGGCTCCATGGCAGGGCGTGTCCAGGCTCTGGCAGAAACCGTTGAGCGTGACTGGGGCGGCGACGCAACCAGCATCTGGACCCAGGGAGACCCCGACGGCTCAGAGGTGCTGCGGCGTTTGAAGGAGCTGCCCGGGTTCGGGGAGCAGAAGGCGAAAATCTTCCTGGCACTGCTGGGCAAGCAGTGCGGGCTCCAGGCGCCCGGATGGCGCGAGGCTGCCGGCCACTACGGCCAGGAGAATGCCTTCCTTTCGGTCGCCGACATCGTTGACTCTGAATCACTGGCCAAAGTGCGGGCGAGCAAGCAGGCGGCGAAAGCTGCCGCGAAGGCCGCCAAAAGCTGAMELHITGDPAADKLLGDDAFALLTGMLLDQQVTMESAFAGPEKIRTRIGSISPSAVASQDPQAFIEVFKERPAVHRFPGSMAGRVQALAETVERDWGGDATSIWTQGDPDGSEVLRRLKELPGFGEQKAKIFLALLGKQCGLQAPGWREAAGHYGQENAFLSVADIVDSESLAKVRASKQAAKAAAKAAKSNANANANANA
D1-29_004001005ccpA_3COG1609Catabolite control protein AATGGCAGTCACCATGAACGACGTCGCACGGGCCGCCGGTGTCTCGCTGAAGACAGTATCGAATGTACTGAACGACTACGAGTTCATCCGCCCGGCCACCAAGCAGAAGGTCCACGACGCGATCGCGGCGCTGGGATACGAAGCGAACCTGACAGCGCGCAGCCTGCGCTCGGGCAAGACGCGCATGCTGGGCCTGGTGCTGTCCGATCTCTCCGCGCCGTATTACGCGGAGCTGGCATCAAAACTGATGACGGTGGCCTCCAGCCGGGGCTACCGCGTGCTGGTGGAACAGTCGGGGGGCACAACCGACAATGAGCTCAGTGCGCTGCAGGGACCGTTCCGGCAATTGACGGACGGACTGCTGTTCACGCCTTTGGGGATGGATGCCGACGCCGTCGCCTCCCGCCGCGGCACCAAGCCGGTGGTGCTGCTCGGGGAACACATCCTTGACCCACGGTTCGACCTGGTCACCATGAAAAACGAAGAGGCGGCGAAGGCCGCCACGGCCCACCTCCTGGCGGGAGGCCGCCGTCGGATAGCCGTGGTGGGCGCTTCTCCGGAGGAGACGGTAGGCTCGCCCGGCCTGAGGCTGAACGGTTACCGGAAAGCCTTGGACGAAGGGGGCGTCGCTTTTGATCCCGCCCTGGTGGCATCCGGGGAATGGCGCCGGGATGCAGGTGCGGCCGCCGTCGCCGGCCTGCTGGACAGCGGCGTCCACTTTGACGCCGTGTTCGGCCTGAATGACGCACTGGCCCTGGGTGCCATGCATGAACTGCTGATCCGCGGGATCAAGGTCCCTCAGGACGTCGCCGTGGTGGGCTTTGACGATATTGACGAGGCGCGGTTCGCGTCGCCGTCGCTCACCACTGTTTCGCCCGGAATGGACGAGATCGCCGAACGTTCCATCGGGCTCCTCATCGACAGGATCGACGGGACGGAGTCTGCAGAGGACAGCGTTCACATCGAGGCGGGCTTTGTCCTGAAAATCCGGGAATCGGCACCCTAGMAVTMNDVARAAGVSLKTVSNVLNDYEFIRPATKQKVHDAIAALGYEANLTARSLRSGKTRMLGLVLSDLSAPYYAELASKLMTVASSRGYRVLVEQSGGTTDNELSALQGPFRQLTDGLLFTPLGMDADAVASRRGTKPVVLLGEHILDPRFDLVTMKNEEAAKAATAHLLAGGRRRIAVVGASPEETVGSPGLRLNGYRKALDEGGVAFDPALVASGEWRRDAGAAAVAGLLDSGVHFDAVFGLNDALALGAMHELLIRGIKVPQDVAVVGFDDIDEARFASPSLTTVSPGMDEIAERSIGLLIDRIDGTESAEDSVHIEAGFVLKIRESAPPGPT0021075_1369DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-29_00401438hypothetical proteinATGGTAGACGTGCAAACCGAGACCGTCATCAACCGCCCCCGCGCGGAGGTGGCAGGCTTTGCCGGGGACCCAAGCAACGCGCCCCAGTGGTACAGCAACATCAAGTCGGTCCGCTGGGAAACCGCGCCTCCCCTTTCGGTGGGTTCCCGGCTGGCGTTCGTGGCCGAGTTCCTTGGCAGGACGCTGGAGTACACCTACGAGTTCACCGAGCTGGCACCTGGTTCCTCCCTGACTATGCGGACTGCGCAGGGGCCCTTTCCCATGCAGACCACTTACACCTGGCAGGACGCCGGGGACAACGCCACGCGCATGACCCTTCGGAACACCGGCAGCCCGGCCGGATTCTCCCGTCTCGCCGGCCTGGTGATGGCCCCGATGATGCGCAGGGCAATGCGCAAGGACCTGGCACGGCTGAAGGAACTGCTGGAGGCCCGCTGAMVDVQTETVINRPRAEVAGFAGDPSNAPQWYSNIKSVRWETAPPLSVGSRLAFVAEFLGRTLEYTYEFTELAPGSSLTMRTAQGPFPMQTTYTWQDAGDNATRMTLRNTGSPAGFSRLAGLVMAPMMRRAMRKDLARLKELLEARNANANANANA
D1-29_00402555hypothetical proteinATGATTGCGTTGCTGGTCATCGATATGCAGAACGCCTACTTTGAGGATCCGGCGCTCGCCGCGAGGCAGGAACGGATCGTGGACGCGTGCAACGAACTGCTGAAAGCCTTTTCCTCCAATGGCCATAAGGCGCTGCTGATTGGCACCGAGCACGAGCGGGACAAGTCCACTTGGTCCCTTAACATGCTCGACGACGGCCAAGGCTTCATTTTCCGGGGCACCGAACAGGCCGAATTTGTTCAGGGCCTGGCCACCGATGGCCTGCCCCAACTGGTCAAGACCCGGGACAGCGCGTTCGTGGGCACCAACCTCCTGGCCAGGCTCCGGAACTGGGACGTTGACGAGGTGGTGCTGGCCGGCGTCTCCACCCACAACTGCATCGCCCAGACAGCTGCCGACGCCTTCGCCCGGAACATCCGGGTCACCTATGCCAAGGACGCGGTGGGATCCGAGAATGACCAGGCGGCTGAGGACATGCTGCGGATCCTGACGGCCGAGTACCGGCAGGCTGTCCAGACCAATAAGGAGATCCTGGGCAGGTTAAACGGCGTGTGAMIALLVIDMQNAYFEDPALAARQERIVDACNELLKAFSSNGHKALLIGTEHERDKSTWSLNMLDDGQGFIFRGTEQAEFVQGLATDGLPQLVKTRDSAFVGTNLLARLRNWDVDEVVLAGVSTHNCIAQTAADAFARNIRVTYAKDAVGSENDQAAEDMLRILTAEYRQAVQTNKEILGRLNGVPGPT0013445_453DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013445-nadE-K01916NANA
D1-29_00403303ureACOG0831Urease subunit gammaATGCATCTGATGCCCCGTGAGCAGGAAAAGCTCATGATCGTAGTGGCCGCCGATCTGGCCAGGCGCCGGCAGGCCAGGGGTTTGAAGCTGAACTTCCCGGAGGCCGTGGCCATCATCAGCTACGAACTGATTGAGGGGGCGCGGGACGGCCGGACGGTGGCGGACCTGATGAGCTACGGCACCACGCTGCTGACCCGCGAGGACGTCATGGAAGGTGTACCCGAAATGGTCCGCGACGTGCAGATCGAGGCAACCTTCCCTGACGGCACCAAGCTCGTCACCGTCCACGATCCCATCCGCTAGMHLMPREQEKLMIVVAADLARRRQARGLKLNFPEAVAIISYELIEGARDGRTVADLMSYGTTLLTREDVMEGVPEMVRDVQIEATFPDGTKLVTVHDPIRPGPT0000955_1109DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000955-ureA-K01430NANA
D1-29_00404357ureBUrease subunit betaATGATTCCAGGAGAGTACATCCTTCGGTCCGAGCCCGTACCGGTAAACGCCGGGCGAAAGGCGATCGACGTCGTCGTGGTCAATACCGGTGACCGGCCCGTGCAGGTGGGCTCGCATTTCCACTTCGCGGAGGCGAACGGTGCGCTGACCTTCGACCGGGCGGCGGCGTATGGGCGGCGGCTGGACATCCCGGCCGGTACCGCGGCGCGCTTTGAACCTGGCGACAGCAAAACCATCAGGCTCATTGAACTGGCCGGAAGCCGCGAAGTGTACGGCCTCAGCAACGCCATCAACGGACCGCTCGACGGCAGCAATCCTGGCGGCGGTCCCGGTTCCGGCAAGGAGGGGACAGCATGAMIPGEYILRSEPVPVNAGRKAIDVVVVNTGDRPVQVGSHFHFAEANGALTFDRAAAYGRRLDIPAGTAARFEPGDSKTIRLIELAGSREVYGLSNAINGPLDGSNPGGGPGSGKEGTAPGPT0000960_431DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000960-ureB-K01429NANA
D1-29_004051758ureCCOG0804Urease subunit alphaATGAGCTTCGACCTTCCGCGCAGGCAATACGCTGACCTGTACGGCCCGACGACGGGTGACAAAATCCGCCTGGCCGACACCGAACTTTTCCTGGAGATCGAAAAGGACCTCACCGTTTACGGCGAGGAAGTGGTGTTCGGTGGCGGAAAGGTGATCCGCGACGGCATGGGCCAGAACGGCCAAGCCACCAGGGACGGGAACGTCCAGGGCGCAGACGTCCCGGACACCGTCATCACCAACGCGGTCATCCTGGACTACACCGGCATCTACAAGGCGGACGTCGCGCTCAAGGACGGCCACATCTTCAGGATCGGCAAGGCCGGCAACCCGCAGATTTCCGACGGCGTGGACATCGTCATCGGGGCCAGCACCGAAATCATCGCCGGGGAGCGCAGGATCCTCACGGCCGGCGGCGTGGACTCCCACATCCACTTCATCTCCCCGGACCAGGTACCCACGGCCCTCAGCAGCGGGATCACCACCATGGTGGGCGGTGGCACAGGTCCCGCCGAGGGCACCAAAGCCACCACTGTCACGCCGGGAAAATGGCACATCCAGCGCATGCTTCAGGCGGCGGAGGGCCTGCCCATCAACATCGGGCTGTTCGGCAAGGGGCACGCATCCGCCGTCGAACCTCTGGCCGAGCAGATCCGCGCCGGCGCCATCGGGCTTAAAGTCCATGAGGACTGGGGCTCCACCACCTCCTCGATCGACACCTCGCTGAAGGTGGCCGACGAATACGACGTCCAGGTGGCCATCCACACGGACACGCTGAACGAGTGCGGCTTTGTGGAGGACACCATCCGCGCCATTGACGGCCGCGTGATCCACACATTCCATACCGAGGGTGCCGGCGGCGGACACGCTCCGGACATCATCAGCATCGCCGGGCTGCCCAATGTCCTGCCCGCCTCCACCAACCCCACCCTTCCCTACACGCGCAACACCATCGAAGAGCACCTGGACATGCTGATGGTCTGCCACCACCTGAACCCGGACATCCCGGAGGACGTGGCCTTCGCTGATTCCCGCATCCGGGCCGAAACCATCGCCGCCGAGGATGTGCTGCAGGACCTGGGCATCTTCGCCATCACGTCCTCGGACTCGCAGGCGATGGGCCGCGTGGGCGAGGTGATCACACGCACCTGGCAGGTGGCAGACAAGATGAAGAAGCAGCGCGGGGTGTTGCAGGACCCCCGCGGGGAGAGTGCCGCCAGCATGCACGGCTCCGAGGACAGCGACAACTTCAGGCTCAAGCGCTACGTGGCCAAGTACACCATCAACCCCGCCATAGCGCAGGGGATGGCGGACTCCATTGGCTCGGTGGAGGAGGGGAAGTTCGCGGACCTCGTCCTCTGGGACCCGGCGTTCTTTGGGGTGAAGCCGGAGCTGGTCCTTAAGGGTGGCCAGATTGCCTACGCCCTGATGGGTGACGCCAACGCCTCCATCCCCACCCCGCAGCCGCGCACCATGCGGCCCATGTTCGCGGCGTTCGGCAAGGCGTTGCAGCAGTCCTCCATCACGTTCCTGTCCCAGGCCGCGATTGATGCCGGCGTCCCGGAGGAGCTGGGGCTGGAGAAAGTCATCCGGCCTGTGTCCGGCATCCGCTCGTTGACCAAGGCCGACCTGAAATACAACGACGCCACCCCTGACATCCAGGTGGACCCGGAGACATACCAGGTGACGGTGGATGGCGAAGACGTTACGTGTGAACCGTCCGACGTGCTGCCCATGGCCCAGCGCTACTTCCTCTTCTGAMSFDLPRRQYADLYGPTTGDKIRLADTELFLEIEKDLTVYGEEVVFGGGKVIRDGMGQNGQATRDGNVQGADVPDTVITNAVILDYTGIYKADVALKDGHIFRIGKAGNPQISDGVDIVIGASTEIIAGERRILTAGGVDSHIHFISPDQVPTALSSGITTMVGGGTGPAEGTKATTVTPGKWHIQRMLQAAEGLPINIGLFGKGHASAVEPLAEQIRAGAIGLKVHEDWGSTTSSIDTSLKVADEYDVQVAIHTDTLNECGFVEDTIRAIDGRVIHTFHTEGAGGGHAPDIISIAGLPNVLPASTNPTLPYTRNTIEEHLDMLMVCHHLNPDIPEDVAFADSRIRAETIAAEDVLQDLGIFAITSSDSQAMGRVGEVITRTWQVADKMKKQRGVLQDPRGESAASMHGSEDSDNFRLKRYVAKYTINPAIAQGMADSIGSVEEGKFADLVLWDPAFFGVKPELVLKGGQIAYALMGDANASIPTPQPRTMRPMFAAFGKALQQSSITFLSQAAIDAGVPEELGLEKVIRPVSGIRSLTKADLKYNDATPDIQVDPETYQVTVDGEDVTCEPSDVLPMAQRYFLFPGPT0000965_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000965-ureC-K01428NANA
D1-29_00407486ureEUrease accessory protein UreEATGATCATCGAAAAAGTCCTTGGCAACCTCCACGAGCTGCCCACCGCAGACCTCGCCGCCTACACGGGCATGCACCGCGAAAAGGTGGTTCTTCCCAGTGCGGAGCTGGTCAAGCGCATCCAGCGTGTCACCACGGACCACGGCCAGGAGCTGGGCATCCGGCTCCCCTCCGGCTCGGACGACCTGCGGGACGGCGACATCCTGCACGTCGCCGGGACCAACATGATCGTGGTGGCTGTGCTCCCCACAGACGTGCTGGTGATCTCGCCCGGGTCCGTCTACGAGATGGGCGTGGTGGCGCACTCCCTGGGCAACCGCCATCTGCAGGCCCAGTTCTTCGACGCGTCCTCGGAGTACGGCGCCGACGTGATGGTCTGCGCCTACGACCACACCGTTGAGGACTACCTCAAACACGTCGGAGTGCCCTACGCCCGCCAGGAACGCGTGATGCCGGTGCCTTTCCGCCATGCCGAACACAGTCACTGAMIIEKVLGNLHELPTADLAAYTGMHREKVVLPSAELVKRIQRVTTDHGQELGIRLPSGSDDLRDGDILHVAGTNMIVVAVLPTDVLVISPGSVYEMGVVAHSLGNRHLQAQFFDASSEYGADVMVCAYDHTVEDYLKHVGVPYARQERVMPVPFRHAEHSHPGPT0000975_1015DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000975-ureE-K03187NANA
D1-29_00408699ureFCOG0830Urease accessory protein UreFATGCCGAACACAGTCACTGATCCGGCTCCTGCGCCGGCCTACCAGTTGGCGTTGCAACAGCTCACTGACTCGGCGCTCCCCACGGGGGCCTTTGCGCATTCTCTTGGCTTTGAGACGTACATCGACCGGGGGCTCATTCATGATGAGGCTTCTTTTGGGATCTGGCTCAGTGTGTTCACAAGGCAGCAGCTGACCTACTCCGACGGGCTCGCCATCCGGTTTCTTTACGAAGGCACCCCCCTCACAGAGCTGGATGAGCTGTTGTCCGCGCAACTGCTTCCCCGGCAGCTGCGCGAAGCCAGCATCAAGATGGGCACCCGCCTGCTCGAGATCGGCTCGGAAGTCTTCCCTTCGCCTGAGCTGGAACTGTACCGGGACCTGGTGATCACGGGCCGCGCTGCAGGCCACCAGCCGCTGGCGTTCGCCGTCGTCGCCCGTTCACTGGGAGTGCCCCTGAACGGGGCGCTCGCCGCCTACCTTTTCGCCTGCGTCACCTCCCTGACGCAGAACGCCGTGCGCGCCATCCCGCTGGGCCAGAACGCCAGCCAGCGGCTGCTGCGGAAGGCGGCCGACGACGTCGCTGCCGCCGTCCGGCAGATCGCTCACCTGACGCCGGACGACTTCGGGGCTGTCAGCCCCGGACTGGAAATTTCGCAAATGCGGCACGAACACCAACGCGTCCGTATGTTCATGAGCTAGMPNTVTDPAPAPAYQLALQQLTDSALPTGAFAHSLGFETYIDRGLIHDEASFGIWLSVFTRQQLTYSDGLAIRFLYEGTPLTELDELLSAQLLPRQLREASIKMGTRLLEIGSEVFPSPELELYRDLVITGRAAGHQPLAFAVVARSLGVPLNGALAAYLFACVTSLTQNAVRAIPLGQNASQRLLRKAADDVAAAVRQIAHLTPDDFGAVSPGLEISQMRHEHQRVRMFMSPGPT0000980_1433DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000980-ureF-K03188NANA
D1-29_00409618ureGCOG0378Urease accessory protein UreGGTGTCTGAACCCATCAGAATCGGCATCGGCGGCCCGGTGGGTGCCGGCAAAACCCAGTTGGTGGAGCGGCTCACCCGTCACATGAGCGGCGAGATTTCCATGGCCGCCATCACCAACGACATCTACACCATCGAGGATGCGAAGATCCTGGCGGCCAATGGCATCCTGCCCGTGGACCGGATCATCGGTGTGGAAACCGGCGGCTGCCCGCACACCGCCATCCGGGAGGACACGTCGATGAACACGGCGGCCATCGAGGAGCTGAAGAGCCGGCACCCGGACCTGCAGGTCATTTTTGTCGAATCCGGGGGCGATAACCTCTCCGCCACCTTCAGCCCCGAGCTGGTGGACTTCTCCATCTACATCATCGACGTCGCCCAGGGCGAAAAGATCCCCCGCAAAGCCGGCCAGGGCATGATCAAGTCCGATCTGTTCATCATCAACAAAACCGACCTCGCCCCGCACGTCGGCGCCGACCTCTCCGTCATGGAGCGGGATTCGCGAGAGTTCCGCGGTGCGAAACCCTTTTGCTTCACGAACCTCAAAACCGACGATGGACTCGACGCCGTCATCTCCTGGATGAGGCGCGACGTCCTGATGCTCGACCTCGCTCCATGAMSEPIRIGIGGPVGAGKTQLVERLTRHMSGEISMAAITNDIYTIEDAKILAANGILPVDRIIGVETGGCPHTAIREDTSMNTAAIEELKSRHPDLQVIFVESGGDNLSATFSPELVDFSIYIIDVAQGEKIPRKAGQGMIKSDLFIINKTDLAPHVGADLSVMERDSREFRGAKPFCFTNLKTDDGLDAVISWMRRDVLMLDLAPPGPT0000985_1501DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000985-ureG-K03189NANA
D1-29_004101014ureD1COG0829Urease accessory protein UreDATGAGCACGACGGTCGGGTCCAGCCCGGCGCCTTCACCGGATATTGGGGGCCGTGCCCGTCCCCAGGCGCTCCCAATCGTCACAAGCTCGGATCGGGGCCCTCGCGCCAGTGGGCCCCCCACGAGTGCCACCACGCCGCGGCCCCCAATATCCGGCTCCACCGCCTCTGCGCTTGACGCGCCTCGCGGTGTGCTTGAGCTCGTAATCAGTGAACGGGGCGGGAGATCCGTTGCGTCCCGGCAGTTCCATGAGGGCGCTCTTCGTGTTTTGCGGCCGCACTATCTGGATGACTCTGGGCAGGTTTGTTATGTCGTGGTGAATCCTGGCGGGGCTTATCTTGGGGCGGATCTCTTTGTTGTGGATCTTGAGGTGCGGGACGGGGCGGACCTGTTGCTCACTACCCAGTCGGCGACCAAGATTTACCGTACCCCCGGGTCTTTCGCGGAGCAGCGGATGGCGGTGCGGCTGGGGGAGGGAGCCCGGCTGGAGCTGATGCCTGACCAGCTCATTGCGTACCGGGAGGCCAGCTACCGGCAACGGACGCAGATCACGGTGCGGCCGTCGTCGAGCCTTGTGATGGCCGAAGTCATCACCCCGGGGTGGTCACCGGAGGGGACATCCTTTCGGTACGAGGAACTGCGGCTGCGGAACGAGATCCACGTCGACACCGACAGCGGGGTGGAGCTGCTCGCACTGGACAGCGTGCTGATCCGTCCCCCGCTCAACGATGTCACTGGCCTGGGATTCATGGAGGGCTTTAGCCACCTCGGTTCACTGATGGTGGTTGATGCCCGGGTGGACCAGGCGCTCGCCGACGAACTGCTCACGCTCACCAACGAACACAGGGCCTACACGGGCGTCTCCCTGACCAGGACTGTGGCCGGAACCACCGGTGTGGCGCTGCGATCGTTGTCCAACAGCACGGGGGAGCTGAACCGCCTGCTGGCTGCATGCACCGCACTTCTCCGCAAACGCTGGTCCAGGCAGGAACCGCTGAACCTGAGGAAGTACTGAMSTTVGSSPAPSPDIGGRARPQALPIVTSSDRGPRASGPPTSATTPRPPISGSTASALDAPRGVLELVISERGGRSVASRQFHEGALRVLRPHYLDDSGQVCYVVVNPGGAYLGADLFVVDLEVRDGADLLLTTQSATKIYRTPGSFAEQRMAVRLGEGARLELMPDQLIAYREASYRQRTQITVRPSSSLVMAEVITPGWSPEGTSFRYEELRLRNEIHVDTDSGVELLALDSVLIRPPLNDVTGLGFMEGFSHLGSLMVVDARVDQALADELLTLTNEHRAYTGVSLTRTVAGTTGVALRSLSNSTGELNRLLAACTALLRKRWSRQEPLNLRKYPGPT0000970_172DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000970-ureD-K03190NANA
D1-29_00411768nixACOG3376Nickel transporter NixAGTGGGCTTCGCCTTCAGCCTGGGGCACAGCTCGGTGGTTGTCCTGGCCGGCGTCCTGGTGGTGGCCGGCGCCGGCGCGGTGGGGCAGCTGATGGAGGAAGGCACAGCGGGAAACCTGGCGCTTGGCCTGATCGGCAGCGGGGTCTCGGGACTCTTCCTGCTGGCCATGGGCACGTTCAACGGCTCGGCCTTTGTCCGCGCGGCGCGTCTTTACCGGACTGTTCGGAATGGCGGACGCGTGGCCGTCGAGGACCTTGAAGCAAAGGGATTTGTGGCCCGGCTCCTGGCCAGGCCGCTGTCCCGGGTCCGGCGGCCGCGCAACATCTACGTCATCGGGTTCCTGTTTGGGCTGGGTTTTGACACCGCCACCACCATCGGCCTGCTGGTGATGGCGACGGCGGCCTCGCTGGCCGGTGTTTCACCCCTCGCCCTGGTGGCGCTGCCGCTCGCATTCACGGCGGCGATGACCTTGTGCGATTCAGCCAACGGGGTGGCCATGATGCGGATGTACACGTCCGCACTGGAGGATCCGCGGCGGAAGCTCGGGTTTAATGCCGTGGTCACTGGCATCTCGGCGGCCTCGGCGCTGTTTATCGCCGTAATCACCCTCGCGGGTTTCTTCAACGCCGCCCTCGGGCTGCAGGATCCGCTGACCACGTGGCTGGGCGCCGTGGACCTCGGGGATGCCGGGCTTATTCTCGTGGCCCTGCTGCTGGGGATCTGGGGCGTTGCCTCCCTCAAAGGGCAGTTCCGGGCAGCGGCACCCTGAMGFAFSLGHSSVVVLAGVLVVAGAGAVGQLMEEGTAGNLALGLIGSGVSGLFLLAMGTFNGSAFVRAARLYRTVRNGGRVAVEDLEAKGFVARLLARPLSRVRRPRNIYVIGFLFGLGFDTATTIGLLVMATAASLAGVSPLALVALPLAFTAAMTLCDSANGVAMMRMYTSALEDPRRKLGFNAVVTGISAASALFIAVITLAGFFNAALGLQDPLTTWLGAVDLGDAGLILVALLLGIWGVASLKGQFRAAAPPGPT0004545_445DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_NICKEL_RESISTANCENICKEL_RESISTANCE-NICKEL_TRANSPORT,PGPT0004545-hoxN|nixA-K07241NANA
D1-29_00412603hypothetical proteinATGGGGCGCCCGCTCCTCCCGCTGATATCCGTGGAGGCCCTCACGTCTGCCGCCCTGGAGCTGGTTGACGAAAGCGGCGATTTCAGCTTCCCGAAGCTGGCGAAGAAGATCGGCGTCAGCCAGTCGTCCATCTATAACCACGTCAGCGGCAGGGACGAGATCCTGGAACTGCTGCGTCACAGGATCATCACCGAGGAGCCGTATCCGCCGGTAGACCACAAGGAGTGGGAGGCCGCATTGCGGGTCCTGATCCGCGCCTACAGGGACGCCTTTGCCCGACATCCGCGGCTGGCACCGCTGCTGGTGCTGCAGTCCATCACCGATCCGGACGTCATCGGCCTCTACGAGGATCTGGCCTTGGCATTGGAAAGTGCCGGCTTCCGTGGGCGGGATGTGGTGGCCGGCATCTCAACCATCGACAGCTTCGCACTGGGCGCCGCCCTGGACCTGGCGGCTCCGGAGGTTGTCTGGGATCCGCCGGCCGAGGGCTACCCCACCCTCAAGCGGGCGGTGGGCAACGCGGGCCCACCGGAGGAACGCGGCGGGCATGCCTTCGACTTCGGACTGGACGTGATTATCGGCGGGCTGAAGGCGAAGCTCTGAMGRPLLPLISVEALTSAALELVDESGDFSFPKLAKKIGVSQSSIYNHVSGRDEILELLRHRIITEEPYPPVDHKEWEAALRVLIRAYRDAFARHPRLAPLLVLQSITDPDVIGLYEDLALALESAGFRGRDVVAGISTIDSFALGAALDLAAPEVVWDPPAEGYPTLKRAVGNAGPPEERGGHAFDFGLDVIIGGLKAKLNANANANANA
D1-29_004131458hypothetical proteinGTGCCGGATACGCAAACCAGACCACAGTCGTCGTCCGCGGACGGCGCCCTCAAGCGCAATGCCCTGGGGACCGGCGGCATCGCCTTCCTCGTTATCTCGGCAGCGGCTCCGCTGACCGTTATGGCCGGGGTCGCCCCCATAGCGATCGGCGTCGGAGGCATCGGCGCCCCCGCCGGCTATCTCCTCGCGGGCCTTGTCCTCACCCTCTTCGCCGTCTCCTTTATGGCCATGACGCGCCACGTCAAGGCCTCCGGCGGCTTCTATACCTACATTTCGCTGGCCATGGGCAGGACCATGGGCCTGGCCTCCGCCATCCTGGCGATCGTTTCCTACAACTGCCTCCAGATCGGCGTCTACGGCCTCTTCGCCGTCCAGACCCACGACATGCTCAAGGTCCTCTTCGGGCTGGAGGTGCCGTGGCCGGCCATCGCGCTCGCCGCCGTCGCCGCCGTGTGGTTCCTCGGCTACAGGGGGATCGACGTCGGCGCGAAAGTGCTGGGTGTGCTCCTGGTCGCAGAGACCGGGATCCTGGCCGTGATGGGCGTCGGCATCCTCAGCAGCGGCGGGGCAGACGGCATCGGCATGGCTTCCTTCAGCCCGGATCAGGCATTTAGCCCAGGTGTCCTGGCCATCCTGGGGATCTGCTTCGCGGCTTTTATGGGCTTCGAGTCCACCGTCCTGTACCGTTCGGAGGCTCGGAATCCGGACAGGTCAGTGCCGCGGGCCACGTACATCGCCGTGGGCTTTATGTCCGTTTTCTACGCCTTCATCGTCTGGACGGTCGTGCAGGCCTATGGCGAAGGCCGCGTGGTGGAAGCTGCCGGGGAACTGGCCGGCGGGATGTTCTTCCAGACCATCAACCAGTACGTGGGTCCCTGGGCGGAAGCGGTGATGTACGTCCTGATCGTCACCAGTGTCTACGCCTCCCAGCTGGCCTTCCACAACGCCATAAACCGATACGTCTACATGCTGGCGCGCGACGGCGTGCTGCCGGCCTTCCTTGCCCGCACCCACCCCAGGTTCCAGTCCCCGCATCGGGCAGGCCAGATCCAGACCCTCCTCGCCGCGGTGGTCATCAGCATCTGCGCGCTCCTGAACGCCGACCCGTACCAGCAGTTGCTGATCTGGGTAAACACTCCCGGAATCTTCGGCATCGTTGGGCTCCAGGGCCTGGTTTCGGTGGCAGCCTTCCTCTACCTTCGCCGCAATCCCGCTGCGGCCACCCACAGATTTCTCATTCCCGTCAGCCTGGCGTCCGCCATTCTGCTTTTCGGAGCAGTGCTGCTCATCGGCCTGAACATCGAGCTGCTCACCTTTGCTGACAGCATCACCAACACCATCCTCATCCTGGTCATGCCCGTGGTCTTCCTCGCCGGACTCCTCACGGCCCGCTGGGTACGCCGCCACCGTCCCGAAACCTTCGCGCAGATTGGAAGCTTCGAAACCCATGAATCCTGAMPDTQTRPQSSSADGALKRNALGTGGIAFLVISAAAPLTVMAGVAPIAIGVGGIGAPAGYLLAGLVLTLFAVSFMAMTRHVKASGGFYTYISLAMGRTMGLASAILAIVSYNCLQIGVYGLFAVQTHDMLKVLFGLEVPWPAIALAAVAAVWFLGYRGIDVGAKVLGVLLVAETGILAVMGVGILSSGGADGIGMASFSPDQAFSPGVLAILGICFAAFMGFESTVLYRSEARNPDRSVPRATYIAVGFMSVFYAFIVWTVVQAYGEGRVVEAAGELAGGMFFQTINQYVGPWAEAVMYVLIVTSVYASQLAFHNAINRYVYMLARDGVLPAFLARTHPRFQSPHRAGQIQTLLAAVVISICALLNADPYQQLLIWVNTPGIFGIVGLQGLVSVAAFLYLRRNPAAATHRFLIPVSLASAILLFGAVLLIGLNIELLTFADSITNTILILVMPVVFLAGLLTARWVRRHRPETFAQIGSFETHESNANANANANA
D1-29_004141686nfdA_1N-substituted formamide deformylaseATGAATCCTGACCTGATCATCCTTGCCGGCACCATCCATACGATGGAAACCAGCTCCACGGCCAGCCCGGCCGGGACACCGCCCCAGGCCGTGGCTGTCAAGGACGGCGTGATTGCCGCCGTCGGAACACGGGCGGAAGCTGAAAGCTGGCGGGCCGCAGAGGTCATTGACTTTGGCCAAGCCGTCCTGACGCCCGGCCTGGTGGACTGCCACATGCACCCCGTCCTGGGGCTGGAACTCACCCGCGGCTGTGACTTGTCCGGTGCCTCCAGCCTCGGCGAGGTGCAGGCGATCTTGCGGACTGAAACGTCAGCAACCCCCGCCGGCGACTGGGTCAGGGGCTGGGGCCTGGATCCCAATCTGTTCGGCTCAGCTGCTGCCCACCGCGGGCTGATTGACGACGTCGTCCCAGGGCGGCCGTGCCTTGTCCGGCTTTTCGACGGGCATTCGGCGCTGGCAAACACCCTTGCGCTCGATATCACGGGCATCACTGGCCCCCGTTCGTTTGACCAGGCCTCCGAGGTGGTCTGCGATGCCGGCGGGACACCCACAGGGCTGCTGCTGGAGGCAGCCGCCGTCGAGCTGGTTGCCCGTGTGATGCCCGCCGAATCCTTCGCCGCGCGGAAGGAGCGTCTGGCGGAGCTCTTCACGCAATTTTCCAAGTCAGGGCTGACGGGCGCCCACGTTATGGACTGCGGGGAGGGCTCCCTGGAGCTCTACCGCGCGCTCGAAAACGACGGCGGAAGCACCGACGGCGGCAGCGCCGGAGGAAGGGACGGGTCCGACGGCGGCCTTCCGCTGCGCCTGCGGATCTCGCCGTGGTGCATGCCCGGCAGCAGCCGGACGGAGTGGCTCGGGCTCGCTGAGCGGGTGGGAACCCTGGCGGGGCGGCGCTGGGAGGTGGCCGGCATCAAACTGTTCGTTGATGGCACGGTGGACAACGGAACCGCCTGGCTGTTTGAACCTGACGTGTACGGGGAGTCGGTTCGCCCGTTCTGGCCACGGCCGGAAGAATACGCCCAGGCCGTTCGGTTCTTTGCCGGCCGGGGCATTCCCACAGCCACCCACGCCATCGGCGACGCCGGGGTGGCCGCCGTGCTGGACGCCTTTGAGGCACTGCCGCCGAGTACTCCGCCGGCAGTGCACCGGATTGAGCATCTCGAAACCGTCCCGGACGCGCTGGTGGACAGGTTTTCCCGTTCCGGCCTGGTGGCAAGCATGCAGCCTTCCCACTGCACGCACTACTCCCGGGCTGACCAAACTGACAACTGGTCCACACGGCTTGGTGCTGAGCGGGCCAACAACGCCTGGCGGTGCGGGGACCTTCGCGCTGCCGGAGCCACCCTTGCCCTCGGCTCGGACTGGCCGATCGCCCCGTTCGAACCCCTGCCCATTCTGGCCGATGCGCAATTGCGCCGGCGGGCCGGCCACCCTCATGACGAGCCGATCCTGCCGGGGCAGGCTCTCACAGCCCTGCAGGCTTTAGAAGGCTATACGTCCCATGCAGCCCGCGCGGCAGGGGAGTGGGCGGTCTCCGGTTCCGTCACAGTTGGCAAGCGCGCGGATTTCACGGTGTTTGAAGTCGATCCGCTTCTTGCTGCCCCGGACGAGCTGGCCGCCGCCCGGGCAGTGGCCACCTTTGTGGACGGCGTGCCGCAGCACCTGGCGGTGGGGTCCGCCAGGTAGMNPDLIILAGTIHTMETSSTASPAGTPPQAVAVKDGVIAAVGTRAEAESWRAAEVIDFGQAVLTPGLVDCHMHPVLGLELTRGCDLSGASSLGEVQAILRTETSATPAGDWVRGWGLDPNLFGSAAAHRGLIDDVVPGRPCLVRLFDGHSALANTLALDITGITGPRSFDQASEVVCDAGGTPTGLLLEAAAVELVARVMPAESFAARKERLAELFTQFSKSGLTGAHVMDCGEGSLELYRALENDGGSTDGGSAGGRDGSDGGLPLRLRISPWCMPGSSRTEWLGLAERVGTLAGRRWEVAGIKLFVDGTVDNGTAWLFEPDVYGESVRPFWPRPEEYAQAVRFFAGRGIPTATHAIGDAGVAAVLDAFEALPPSTPPAVHRIEHLETVPDALVDRFSRSGLVASMQPSHCTHYSRADQTDNWSTRLGAERANNAWRCGDLRAAGATLALGSDWPIAPFEPLPILADAQLRRRAGHPHDEPILPGQALTALQALEGYTSHAARAAGEWAVSGSVTVGKRADFTVFEVDPLLAAPDELAAARAVATFVDGVPQHLAVGSARNANANANANA
D1-29_00415453lpxD_1UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferaseATGAGCAGGAAGTTCGAATCTGTAGAAGATGATGCCGGCAAGGTCACCCGCTACCTGCGGCACCCCAACGGAGGGGGCTTTGTTGGGCCAGGGGCCGACGTCGCTGAAAGTGCGCGCATCGGTTCAATGACCTACGTGGAACCCGGCGCACAAGTCGGTCCCGGGGCACGCGTAGGGCGTGGAAGCTGGATCGACCGCGAGGCGAAGGTGGGCGACCGCACGGTCATCGGCGACGGCGTGTACGTAGGCCACGGATCTGTCATCGGCAGCCGCGTTCATATCGGAAGCCATTCACGGATCGGAGCCGGCGCCCTGATCGGCCATGGCTCCCACGTGCATGCCGATACCACCGTGCCCGAGCGGGGACGGGTAGTGGCAGAGGCAAGCCGACGGCGCCGCGGCCCGGCCGGGAAGCGTCCGCCCCGCAGGCCGGACCACGGCCTGGCGGCCTAGMSRKFESVEDDAGKVTRYLRHPNGGGFVGPGADVAESARIGSMTYVEPGAQVGPGARVGRGSWIDREAKVGDRTVIGDGVYVGHGSVIGSRVHIGSHSRIGAGALIGHGSHVHADTTVPERGRVVAEASRRRRGPAGKRPPRRPDHGLAANANANANANA
D1-29_00416528hypothetical proteinATGCTGCTGCCGCCGGACCTGGTCCTGACCCTCGCCGAATACACTGCCTTGGGCCTGGCCTGGTCAGAACCCACTGCCGCGCCGGAGAGCGCTGATTACGGGGCCCACACGTTCGCCGTCCACGGTCAAACGGCCGTCTTCCGCAGTGCCAGGACCACGCCAACGAAGATTGGCCAGTTCGTCACGCTCTGGCAGCGCTCTGAAGCCGGCGCCAGGCCCATCCGCCCCTTCGATACTTCCGACGGCATTGACATCTTTGTGGTCAGTACCCGCTGTGGCGGGGAATTGGGGCAATTCGTGTTCCCTCAGGCTGCCCTGGTCCTGGGGGGCGTGGTGTCGAAGGATTTCGACGGCGGCAAACGCGCCTTGCGTGTCTACCCGCCGTGGTCCCATCCCACCAGCCGTACCGCCCTGGCTACCCAGGGCTGGCAGCTGGAGCACTATTTTCCCATTCCGGACCCCCTCCAGGGAGTGTCAGGAGTCCTGTCCCCACGTTCTGGCAGAGGTGCTTCTTCCACGGCACCCTGAMLLPPDLVLTLAEYTALGLAWSEPTAAPESADYGAHTFAVHGQTAVFRSARTTPTKIGQFVTLWQRSEAGARPIRPFDTSDGIDIFVVSTRCGGELGQFVFPQAALVLGGVVSKDFDGGKRALRVYPPWSHPTSRTALATQGWQLEHYFPIPDPLQGVSGVLSPRSGRGASSTAPNANANANANA
D1-29_00417753hypothetical proteinATGGTAGCTGCGAAAGTTTCGGAGAATGAAGTTTTTAAGGATGTTGCCCAGCGCCTTCAGGATCTTGTGTTGGACAGTCCTGAAGTGGGCCAGTTCCTTGAGGAACTGGCTGCATACTCTGCCGACCGGCTCAGCAGTCCGGGGCGTGAAGTGTCCTGCGGGATTACCGTTGTCAGGCATAAGAAGGCCACCACCGTGGCCAGCAGCAGCCCGTGCGCACGGGTGATGGACGAGCTGCAACACGAATATGGTGACGGGCCGTGCCTGACGGCCATGCGTGACATGGTCACGGTCCTGGTACCGGATCTCAGGCAGGAGCGGCGCTGGCCCGGCTATGTCGAGGCGATCACGGGCCTGGGGAACAGGTCCGTCATCGGGATTCCGCTGCCGTTGGAGGGCCAAAGCCGGGCAGTGCTGAACCTCTACAGCCGGTTGCCGCACGCGTTCAGCGGGGAGGACATCGCCAGTGCGGAAGCTTTTGCGGGGCAGGCATCCAAAGGCCTGCGGCTGGCGCTGCGGCTGGGGCAGCTGCAGGACACCCGGGACGACATGAGCGCCGCGATGAAATCCAGGACGGTCATTGACCTGGCCACCGGCGCCATCATGGCCCAGAACCGGTGCGGGCAAAGCGCTGCGTTCAAGGTCCTGGTGGAAGCATCCAACACCCGCAACATGAAGCTCCACCACGTGGCCGCCCGCGTCCTTTCGTCGCTCGCGGGCAGCGCCATCACGTCCACGTATTTCGACGAGTAGMVAAKVSENEVFKDVAQRLQDLVLDSPEVGQFLEELAAYSADRLSSPGREVSCGITVVRHKKATTVASSSPCARVMDELQHEYGDGPCLTAMRDMVTVLVPDLRQERRWPGYVEAITGLGNRSVIGIPLPLEGQSRAVLNLYSRLPHAFSGEDIASAEAFAGQASKGLRLALRLGQLQDTRDDMSAAMKSRTVIDLATGAIMAQNRCGQSAAFKVLVEASNTRNMKLHHVAARVLSSLAGSAITSTYFDENANANANANA
D1-29_00418975RBKS_1RibokinaseGTGCTTACGAATTCCCCTTCCGCCTCCGGCACTCCCCTGCCTGCAGCCGCTCCCGATGTCGTTGTTATCGGGGAGGCACTGGTGGACATTGTCAGCTCCGCCGACGTCAGTGTGGAGCACCCTGGCGGGTCGCCGATGAACGTTGCCTACGGCCTGGGCCGGCTGGGTGTCCCCACTGCGTTGCTCACGTCGCTGGGGAACGATGCCCGGGGCGAGGCGATCGAGGCGCATCTCCGGAGTGCCGGCGTCGACCTCCTGCCCGGCTCCAGGTCTGCGGGGCGGACCAGCTCCGCCGCCGCAACGATCGCAGCCGATGGCTCGGCCAGCTATGAATTCGACATCAGCTGGGAGCTGGCAGCGGTTACTCCCGCTTACCTTCCCAAGGTGCTCCACACGGGATCCATCGCCACTTTCCTCTCCCCGGGTGCCGGCACGGTGAGGACACTGCTTGAGCAGGCGCACCGGGAATGCATCGTGACGTACGACCCCAATATCCGGCCCGCCCTGCTGGGAAGCAAGGCCGAGGCGCGGTCCATTTTTGAGGACCTGGTTCCCCTGACCGATGTGGTGAAGCTCAGCGACGAGGATGCTGGTTGGCTTTACCCCGGCCACAGCCTTGAAGAGGTGGCGGCCAGGATCCTTGGGCTGGGCTCTGGGCTTGCCGTGGTGACGCGGGGCTCCGAAGGCTCTCTTCTGGCCACTGCGGCCACCACACTACACGTTCCAGCCACCAGGGCCGTAGTGGCGGACACCATTGGGGCAGGCGATTCCTACATGGCGGCGCTGATTTACGGGCTGCTTGCACGGAAGACTGAAGGGCTCGCAGCCGACGTCCTGGATAGCCTCGGGCGGACCGCGGCCAAGGCCGCCGCCATCACGGTAGGCAGGCCCGGCGCCAACCCGCCAACGGCAACGGAACTCGCGGCGGAACCCGCGGCGGAGCCAGCGGTGACAGGAACCGCCGCCGTCGCCTAAMLTNSPSASGTPLPAAAPDVVVIGEALVDIVSSADVSVEHPGGSPMNVAYGLGRLGVPTALLTSLGNDARGEAIEAHLRSAGVDLLPGSRSAGRTSSAAATIAADGSASYEFDISWELAAVTPAYLPKVLHTGSIATFLSPGAGTVRTLLEQAHRECIVTYDPNIRPALLGSKAEARSIFEDLVPLTDVVKLSDEDAGWLYPGHSLEEVAARILGLGSGLAVVTRGSEGSLLATAATTLHVPATRAVVADTIGAGDSYMAALIYGLLARKTEGLAADVLDSLGRTAAKAAAITVGRPGANPPTATELAAEPAAEPAVTGTAAVAPGPT0017625_622DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
D1-29_00419795frcACOG1129Fructose import ATP-binding protein FrcAATGACCGCCACGCATCAGGAGTCCACGGGGACCGAAGTCCGCCAGCCAATCATGCAGGCCAGGAACCTCGTCAAGACCTACGGCCGGGTGGTGGGCCTGGACGGTGTCAGCCTTGACCTCTACCCGGGCGAAGTCCTGGCGATCATCGGGGACAACGGCGCGGGAAAGTCCACCCTGATCAAATGCCTCACAGGTGCGGAAATCCCGGATTCGGGCGAACTGAAAGTGTCCGGCCAGCCGGTCCACTTCAAGCGTCCGCAGGACGCCCGGGCCTACGGGATCGAAACGGTCTACCAGAACCTTGCCGTCTCACCGGCACTGGACGTTGCCTCCAACCTGTTCCTGGGCCGGGAAGAACGGCTGGCCGGCCCGCTTGGCAAGATCTTCCGGGTCCTGGACATCAAGGGAATGCGCCGCAAGGCAAAGGAAGAGCTGACCCGGCTGGGCATCTCCACACTCCAGGACGTCACCGTTCCGGTGGAGAACCTTTCAGGCGGCCAGCGCCAGGCGGTCGCTGTGGCCCGTGCCGCTGCGTTCGGTTCAAAGGTGGTTGTGCTGGACGAGCCGACGGCGGCGCTGGGCGTCCGGGAATCCAACCAGGTTTTGCAGCTGGTCAGGGACCTCCGCGACCGCGGGCTGCCGGTGATCCTGATCAGCCACAACATGCCCCACGTGTTTGATGTGGCCGACAGGATCCACATCCAGCGCCTCGGCAAATGTGCGGCAACCATCACGCCGGAATCACACACCATGACCGATGCAGTGGCAATCATGACCGGTGCCGCCACAGCCTAAMTATHQESTGTEVRQPIMQARNLVKTYGRVVGLDGVSLDLYPGEVLAIIGDNGAGKSTLIKCLTGAEIPDSGELKVSGQPVHFKRPQDARAYGIETVYQNLAVSPALDVASNLFLGREERLAGPLGKIFRVLDIKGMRRKAKEELTRLGISTLQDVTVPVENLSGGQRQAVAVARAAAFGSKVVVLDEPTAALGVRESNQVLQLVRDLRDRGLPVILISHNMPHVFDVADRIHIQRLGKCAATITPESHTMTDAVAIMTGAATAPGPT0016685_154DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_FRUCTOSE_TRANSPORT,PGPT0016685-frcA-K10554NANA
D1-29_004201047frcCCOG1172Fructose import permease protein FrcCATGACACAGCAACAGACCGCAGGCCCGCCCGCAGCGGGGCAGGCAGACCTGGCCGAGGAATTCCTCGACCGGCAGACAACCCTTAGCCGCATCCGCAACGTCCTGCACCGTTATCCGGCCCTCAGCCCCGCGATCGTGCTGCTTATCGCGGTGGTGGTGTTCGGGCTCCTCAATGACAGGTTCCTCCGGTTTGAGAACCTTTCCCTGATTACCCAGCAGGTGTCGGTGGTGGGTACCCTGGCGATCGCCCAGACCCTCATCATCCTCACTGCCGGCATCGACCTGTCCGTTGGCGCCGTGATGATCCTGGCCTCCATGGTGGTGGCGCAACTCTCGGTCAGCAACGGACTGCCGGCTCCCCTGGCGCTCTTCGCAGGGCTGGTGGTGGGGCTCGGCGCGGGAGCGCTGAACGGCTTCCTGGTCACGAGGTTCAGGCTTCCACCGTTCATCGTGACGCTCGGAACCCTGAACATCTTTATCGCCCTGACCCTGCTGTATTCGGGCGGCTCCACGGTCCGCGGCTCCAGCATGCCCGACGTGCTGACGTGGATGGGCAGCACCTTCCCGGTGGGCCCGGTCCGCATCTCCACCGGCGTGGTGATGATGCTGCTGCTCTACATCGCCATGGCATTCATCCTGGGCAAGACAGCCTGGGGCAGGCATGTCTACGCAGTGGGCGATGACAAGGAGGCCGCGCGCCTTGCCGGTATCCCGGTCAACCGCGTCCTGATGAGCGTCTACCTCACCGCCGGAGCCGTACTGGCCATCGGCGCCTGGATCCAGATCGGCCGGACCAACGCAGCCAGCCCCAACGGCGGCGTGGACTTGAACCTGGACTCCATTACCGCCGTCGTGATCGGCGGAACAAGCCTCTTCGGCGGGCGCGGTTCCGTCTGGGGTTCGCTCCTGGGCGCACTGATCGTGGGTGTGTTCCGCAACGGACTCTCGCTGGCCGGACTGGATGTGCTCTACCAGACCCTCGCCGTAGGCGTCCTTATCATCCTCGCTGTGTCCATCGACCAGTGGATCCGAAAGGTGAAATCATGAMTQQQTAGPPAAGQADLAEEFLDRQTTLSRIRNVLHRYPALSPAIVLLIAVVVFGLLNDRFLRFENLSLITQQVSVVGTLAIAQTLIILTAGIDLSVGAVMILASMVVAQLSVSNGLPAPLALFAGLVVGLGAGALNGFLVTRFRLPPFIVTLGTLNIFIALTLLYSGGSTVRGSSMPDVLTWMGSTFPVGPVRISTGVVMMLLLYIAMAFILGKTAWGRHVYAVGDDKEAARLAGIPVNRVLMSVYLTAGAVLAIGAWIQIGRTNAASPNGGVDLNLDSITAVVIGGTSLFGGRGSVWGSLLGALIVGVFRNGLSLAGLDVLYQTLAVGVLIILAVSIDQWIRKVKSPGPT0016590_4286DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
D1-29_004211113frcBFructose import binding protein FrcBATGTTGACTTCCAAGACCCCGCGCACCATCGCCCGCCGCCTGGCTGCCGCGGGCGCCGTCCTGACGCTCGCCACCCTCAGCCTCACGGCCTGCGGCGGCAGCTCCCCGGCAACCTCCGGCACCGAATCCGGAGAAAAGGTGGGCGTTTCGCTCATCGTCAAGACCACGTCCAACCCGTTCTTCGTTTCCATGCAGGACGGCGCCAAGAAGGCTGCCGAGGCGGACGGCGTGGATCTCAAGCTCGCAGCCGGCAAGGCCGACGGCGACGAGGACACCCAGATCCAGGCAATCGAAAACGCCATCTCCAATGGAGACAAGGGCATCCTGATCACACCGAACGGTCCTTCCGTGGTGGACGCGCTGAAGAAGGCCAAGGATGCCGGCCTCTTTGTTATCGCCCTGGACACCCCGCCGGACCCGGCCGACGCCGCCGACATCACCTTCGCTACCGACAACTTCGCAGCCGGCGAACTGATTGGCGAATGGACCGCGGCGCAGTTGGGCGGCAAGAAGGCCACCATCGCCCTGCTGGACCTTTTTGACGACAAGGTTGTTTCCGTGGACTACAACCGCGACCAGGGCTTCCTGACCGGTCTGGGCATTGACACCGCGGATGCCAAGAAGAACGGCGACGAAGCGAAGACCGGAAAGTACACCGGCGGCAAGGGCGGCGACTACGAGATCGTTGGCAGCCAGGCTTCCCAGGGTGCCGAGGACGGCGGCCGCACCGGCATGGAGAACCTGCTGTCCAAGAACCCGAACATCAACGTTGTCTACACCATCAACGAGCCGGCCGCGGCAGGCGCCTACGAGGCCCTGAAGTCAGCCGGCAAGGAAAAGGACGTCCTGATCGTGTCGGTGGACGGCGGCTGCGCCGGCGTTGACAACGTCAAGTCCGGCATCATTGGCGCCACGGCCCAGCAGTACCCGGTCAAAATGGCCGAGATGGGCGTCAAGGCCATTGTTGAACTGGCCAAGACCGGAAAGAAGCCTGCCAACTCCGAAGGCCTGGACTTCTTCAACACCGGAGTTGAACTGGTGACCGATACCCCGGCCGATGGCGTCAAGAGCATCACCACGTCAGAAGCCAGCCAAATCTGCTGGGGCAAGTAAMLTSKTPRTIARRLAAAGAVLTLATLSLTACGGSSPATSGTESGEKVGVSLIVKTTSNPFFVSMQDGAKKAAEADGVDLKLAAGKADGDEDTQIQAIENAISNGDKGILITPNGPSVVDALKKAKDAGLFVIALDTPPDPADAADITFATDNFAAGELIGEWTAAQLGGKKATIALLDLFDDKVVSVDYNRDQGFLTGLGIDTADAKKNGDEAKTGKYTGGKGGDYEIVGSQASQGAEDGGRTGMENLLSKNPNINVVYTINEPAAAGAYEALKSAGKEKDVLIVSVDGGCAGVDNVKSGIIGATAQQYPVKMAEMGVKAIVELAKTGKKPANSEGLDFFNTGVELVTDTPADGVKSITTSEASQICWGKPGPT0016680_10DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_FRUCTOSE_TRANSPORT,PGPT0016680-frcB-K10552NANA
D1-29_00422999rbsR_4COG1609Ribose operon repressorATGCGGCATGTCGCCGCGCTCGCCGGCGTAGGTATCAAGACCGTTTCCCGCGTGATGAATGATGAACCGGGCGTCTCTGAGGCCACCCGGCAGCGTGTCCTCGGCGCATCGCAGCAGCTCAATTACCAGCTGGACCTGGCCGCCGGAAGCCTGCGCCGTGCGGGCCGGCAGACGCTGTCCATCGGGCTCCTGCTGCCCAGTGTGGCCAACCCGTTCAGCAGTGAAATCCACCGCGCGCTCGAGGATGCCCTGGCCACCCGCGGGATTGCCGTTTTCGCCGCCAGCCTGGACGACGACGCCGAACGGGAAAAGTCCCTGGTGGCCGCGTTCCTTGGCCGGCGCGTGGATGGGCTGGTCCTCACCCCCATTGCCAAAAGCCAGTCATACGTCATACCGGAGCATTCCCGAGATCTGCCCATGGTGTTTATTGACCGCGAACCCGTAGGGATTGAAGCAGACGCCGTGGTGACGGACAACGCCGTGGGAGCTGCCCGGGCGGCGGCCCACCTGATGGCGCACGGCCACACCAAACTTGCCTATCTGGGTGACCGCACTGACATCCAAACGGCCCGCGAACGGCGCCGCGGCTTCCTGGAGGAGCTGGGTAGGGCCGGCATCCCGACGTCGTCCGTGCCTGTCCGCGAAGGCCTTCACAACGAGGAATCAGCCCGGCAGGCGGCGCTGGAAGTCATGTCAGGAGAGGACCCGCCCACGGCCATTTTCTCCAGCCAGAACCTGGTCACGTTTGGAGCCATGCGCGCACTGAAGGAGCTCGGAGCCAGCCGGAGCACCGCGCTGGTGGGGTTCGACGACTTCACGCTCGCGGACATGATGGACCCCGGCATCACCGTGATTGCACAGCACCCCGAGAGGATCGGAAAACTGGCAGCGGAGCGGCTGCTTGCCAGGATCGACGGCGATGACCAGCCGGCGCAGACCTACATCGTTCCAACCGAGCTCATCCAGCGGGGTTCCGGGGAGCTCCCGCCCGTCCGTTGAMRHVAALAGVGIKTVSRVMNDEPGVSEATRQRVLGASQQLNYQLDLAAGSLRRAGRQTLSIGLLLPSVANPFSSEIHRALEDALATRGIAVFAASLDDDAEREKSLVAAFLGRRVDGLVLTPIAKSQSYVIPEHSRDLPMVFIDREPVGIEADAVVTDNAVGAARAAAHLMAHGHTKLAYLGDRTDIQTARERRRGFLEELGRAGIPTSSVPVREGLHNEESARQAALEVMSGEDPPTAIFSSQNLVTFGAMRALKELGASRSTALVGFDDFTLADMMDPGITVIAQHPERIGKLAAERLLARIDGDDQPAQTYIVPTELIQRGSGELPPVRPGPT0017992_13026DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_00423294hypothetical proteinATGACCAAAACGCTGTACGCCGAATTTACCGTCAAACCCGGCAGCGAGGCCCGGGTGGCCGAGATGATGCAGGAACTGACCGAGCATGTCCGCCGGGAGCCGGGCAACCAGCTGTTCCTGCCCTACACCCGGGAAACAAACCCCCGCGAGTACTTCGTCTTCGAGGTCTACCAGGACGACGCCGCGTTCCAGGAACACATCAGCGCCGACTACGGCGCACGGTTCAACGGTGAGCTCTCAGGCCACATCGAGGAGGACGGCTCCGTGCTGACCTGGCTCCAGCCGGTCGCCTGAMTKTLYAEFTVKPGSEARVAEMMQELTEHVRREPGNQLFLPYTRETNPREYFVFEVYQDDAAFQEHISADYGARFNGELSGHIEEDGSVLTWLQPVANANANANANA
D1-29_004242712hypothetical proteinATGAAGGGCGACCCCAACGATATGCGGAGCAAAAAATCTCCAACAATCCGGGCGTGTTCTGCGCTCACCCTGGCAGGCCTGAGCCTTGCCGCCGCTCTGGCGGGAGCCGGCCCATCCCAGGCACTGGCCGTGCCCAGAACCCCGGTTGACCCCGTCAACGTGGCACTCAACGGAACAGAGACGGCAGGGGGCGAGCAGTACCGGCCGGGCATCCACTTCACACCCCAGAAGAACTGGATGAACGATCCGAACGGGATGGTCTTTCATAAGGGTGTCTATCACCTGTATTACCAGCACAATCCGTCCGGCAATACGTGGGGCAACATGTCCTGGGGCCACGCCACGTCCACGGACCTGACGCACTGGACTGAGCAACCGCTGGCCATCGCCACCGATGACCAGCAGGACATCTTCTCCGGAAGCGTGGTGGTGGACAAGGACAACACCACCGGCTTCGGCACGGCCGAAAACCCTCCACTGGTGGCAATCTTCACCAGCGCCTACAAGGACGCTTCCCCCTACAAGGGCCTGCAGGCACAGTCACTCGCCTACAGCCTGGACGATGGCCAGACCTGGACCAAGTACGGTGCCAACCCCGTCCTCAACCGCAATTCCGCGAACTTCCGGGACCCCAAAGTCTTCTGGTACGAAACTCCCGGCGGTGGCGGCTACTGGGTCATGGCCGTCGTCGAGGCCACAGACCACAAGGTGCTCCTCTACAAGTCCGCCAACCTCAAGGACTGGTCCCTGCTCAGCGAATTCGGGCCAGCCAACGCAACCGGCGGGCTCTGGGAATGCCCGGACCTGTTTCCGCTGGCAGTGGACGGCGATCCCGCGAACGTCAAGTGGGTCATGGTGGTCAACATCAACCCGGGCGGCGTGGCAGGCGGATCGGCAGGCCAGTACTTCGTGGGCAATTTCGACGGGACCACCTTCACCTCGGAAACAACCAAACCCAGTGACACCCTGCCTGCCGGGACTCCCCTGGCCGGGTTCAATGACGGCACCTACAACGGGTGGACGGTCAACAACGAGCCGGGCAACTGGAAGAACGGCCCCTTCGGCGATGCTCCGGCGGCAGGAACGCTCCCGGGGCAGAACACCGTCACCGGCTTTGCCGGAGCCGGGCTGATCAATTCATTCAACGACGGCGACTGGCCGCTCGGCTCCATGAGCTCCCCGGCGTTCACCGTCACCAGCGACTACCTCAACTTCCTGGTGGGCGGCGGCCAGCATCCGCGTGTCTCGGACAAGCTCGACAACACACCACCGGCCGGCGAGCTGCTTTTCAACGGCTTCGAAGGTGCGGACGGTTCCACACTTGCCGACGCCGGCTGGACCGGAACGGACGATTTGGCGCCCGCATTCCAGCCAGCTACCGCCGGAGGCGACTACTACATCGGCGCCAAGCGCATCAATACGTTCGAAACCGGGGGCGCTCCCGGCGACGACAGGCAGGGAACCCTGACATCGCCGTCGTTCACGTTGTCCAAAAACTTCATGAGCATGCTGGTGGGCGGCGGGCACAGGGCTGCGGAAACCGGGCAGACCCTGCAGGCCCAGCTCCTGGTGGATGGCAGCGTGGTGCGCAGCCTGGCCGGGGACGACGCCGGCCAGCTCAACTGGAAGGGGTGGGATGTTTCGGAGTTTGCCGGAAAGACCGCCCAGCTGCGGATCGTGGACCAGGCCACCGGAGGCTGGGGCCACCTGACCCTGGACCACGTGATGCTCACCGACCAGGCCGCCGTCCCGCGCTCGGACGAGACCACCGTGAACCTCGTGGTGGACGGGGATGTGGTCCGCTCGGCAACCGGCGCGAACAGTGAAGTCCTGGACTGGGCCTCGTGGAACGTTGCTGAATTCAAGGGTCGGCAGGCCAGCATCAGGGTGGTGGACAACAACCGCTTCGGCTGGGGGCACATCCTGGCTGACGAATTCATTGCCTCGCCAACCGCGGCGGCACCCCGGTTGCAGAGCTATGACTGGCTGGACTACGGCCGGGATTACTACGCCTCCGTCTCCTTCGCCAACATGCCGCAGGACAAGCGGATCATGCTCGGCTGGATGAACAACTGGGACTACGCCAACACCATCCCCACCTCACCATGGCGCAGCGCCATGTCCCTTCCCCGCGAGGTGGCACTGACCCAGACGGCAGCCGGCCCGCGGCTGACCCAGAAGGCGGTGAAACAGGTTGACTCCCTGGGGACCAGGGTGGGCTACGCCGAAAAGCAGGCACGGGACATTGTGCCGGGCACCACGGCGCTGCCGGCCGCTGCCTCCGGCCAGGTACAACGAATTGATGTGACATTTGCTCCCGGCACCGCCGCGAAAGCCGGAATCACCGTCCTGGGGAGCGGCACCACGTCCACGGTGATCGGCTACGACCAGGCAGCAGGGGAGGTTTACGTAGACCGGCGGAACTCCGGGAACACCGCCTTCCACCCGCTGTTCACCTCGGTGGACTCGGCGCCCGTGACGCCCGACGCCAACGGCAACGTGACGCTGCGGATCTACGTGGACAGGTCCTCCGTTGAGGTCTTCGCCCAGGGCGGCCTCCGGACCATCACCGATCAGGTCTTTCCCGAAGCCGGCGCCCGTCAGGTGGCGCTCTTTGCCGACGGCGGAACAGCCCGGTTGAAATCGATCACTGTTACTCCGCTGGATTCTTCGATGTTCAGCGGACAGACCAAGCCGGTGAAGGACCGCTAGMKGDPNDMRSKKSPTIRACSALTLAGLSLAAALAGAGPSQALAVPRTPVDPVNVALNGTETAGGEQYRPGIHFTPQKNWMNDPNGMVFHKGVYHLYYQHNPSGNTWGNMSWGHATSTDLTHWTEQPLAIATDDQQDIFSGSVVVDKDNTTGFGTAENPPLVAIFTSAYKDASPYKGLQAQSLAYSLDDGQTWTKYGANPVLNRNSANFRDPKVFWYETPGGGGYWVMAVVEATDHKVLLYKSANLKDWSLLSEFGPANATGGLWECPDLFPLAVDGDPANVKWVMVVNINPGGVAGGSAGQYFVGNFDGTTFTSETTKPSDTLPAGTPLAGFNDGTYNGWTVNNEPGNWKNGPFGDAPAAGTLPGQNTVTGFAGAGLINSFNDGDWPLGSMSSPAFTVTSDYLNFLVGGGQHPRVSDKLDNTPPAGELLFNGFEGADGSTLADAGWTGTDDLAPAFQPATAGGDYYIGAKRINTFETGGAPGDDRQGTLTSPSFTLSKNFMSMLVGGGHRAAETGQTLQAQLLVDGSVVRSLAGDDAGQLNWKGWDVSEFAGKTAQLRIVDQATGGWGHLTLDHVMLTDQAAVPRSDETTVNLVVDGDVVRSATGANSEVLDWASWNVAEFKGRQASIRVVDNNRFGWGHILADEFIASPTAAAPRLQSYDWLDYGRDYYASVSFANMPQDKRIMLGWMNNWDYANTIPTSPWRSAMSLPREVALTQTAAGPRLTQKAVKQVDSLGTRVGYAEKQARDIVPGTTALPAAASGQVQRIDVTFAPGTAAKAGITVLGSGTTSTVIGYDQAAGEVYVDRRNSGNTAFHPLFTSVDSAPVTPDANGNVTLRIYVDRSSVEVFAQGGLRTITDQVFPEAGARQVALFADGGTARLKSITVTPLDSSMFSGQTKPVKDRPGPT0018745_82DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOSIDASE,PGPT0018745-fruA-K03332NANA
D1-29_004252388malQCOG16404-alpha-glucanotransferaseATGAAGGCTCCAGACCACCAGTACACGGAATTTCCCGGAATGCCGGGGGACGCTCCTGGCCAAGGTCCGGTGCCAGGTCCAGCGCCAAGTGAAGCCGCAGGTGAGGCGTCCGTGACAGGTCAGGGAGCGCCAGGTCAATCGTCCCTTGCGGGGGATGATTCCCTTGCAGGCCGCGCTTCCGTTCCAGCTCAGAGCCCTGTTGATAGCCACCTGCTCCAGCGGTTGGCAGATGCACATGGCGTCGGCACTTCGTTCCAGGGGTGGGATGGCCTTCCGCACAGCGTGGCCCCGGAGACCCTGATCAAAGTGCTTGCTGCGCTCGGCGTTCCGGCGCATACGAACGAACTCATTGAGGCTGCCCTGGCCGAGGCGGAACTGGCGCCGTGGCGGCGCATGCTGCCACCCGCCGTCGTGGTCCAGCAGGGGGAAATGGCGCTGGTCCCGGTCCATGTACGCGATGGCGCCACGGCAAAGCTCAGCATCCATCTGGAGGACGCAGCGGGCCCCGGGCAAAAGGCAGAGCCTCCAGTAGTGGAGGCCATCCAGCAGGATGTCTGGATTCAGCCCCAGGACGTGGATGGATTACTGACTGGCCGGGCCACCTTCGCGCTGCCGCAGGATCTGCCCCTGGGCTGGCATACCCTCTCAGCTGAGTCTGAGGGGAACACAGCGGAAGGAACGCTGGTGGTGGTGCCCGCCCGCCTGACCACGGCCACACCCCTTGAGCAGCGCCGCGGCTGGGGCCTGGCAACCCAGCTCTATTCCTTGCGCTCCAAGCGATCCTGGGGAATCGGCGACTTCGCGGATCTGGCCGATCTGGCCACACTGAGCGGGGAGCGCGGGGCCGACTACGTCCTGGTGAATCCGCTCCACGCCGCCGAGCCGGTTCCTCCTGTCCAACCCTCGCCTTATTCGCCCTCCACCAGGCGCTTTTTCAATCCCTTGTATATCCGCGTGGAAGACATTCCTGAACTGGCATATCTCAAGCCGCGGAGGCGTGCCGTTGTGGACAGGCTCCTGGAACAGGTCCAAGGGCTGAACAGGGACGGCGAGCGGCTGGACAGGAACACCGTTTATGCGGCAAAGCTGGAGGCCCTGGAACTCCTCTACCACGCCAGGCGGTCACCCACACGGCAGGCAGCGTTTGACGAATTCTGCCGGATGTCCGGCTCAGGACTTGACGATTTCGCCCTGTGGTCCGCCGTAAGGGAGGACATCGGACCGGAGGATCCCTTCTGGACGGATCCGGCGTTGGCCCTGGGGAAGCCCGAGGCTGAGGGCCTGCGGGAGAAGCTGTCGGACCGGATCGGCTTCCACCGCTGGCTGCAATGGATCTGCGACGAACAGCTGGAGAACGCCCAGCAGGCTGCCCTCCGGGCCGGAATGAGACTGGGGGTGGTCCACGATCTTGCGGTTGGAGTGGACCTGAGCAGCGCAGACGCCTGGACCCTCCGTGGAGTACTGGCGCCGGGAATCAGCGTGGGTGCCCCGCCGGACATGTACAACCAGCTGGGCCAGGACTGGAACCAGCCGCCGTGGCACCCTGGCCGGCTCGCCGAAGCCGGCTATGCGCCCTTCCGCAACATGCTTTCCACTGTTCTACGGCACGCCGGCGGCATCAGGGTGGACCATGTGCTTGGCCTTTTCCGTCTCTGGTGGGTGCCCGCCGGAAACTCCCCGCGGGACGGCGCCTATGTCCGCTATGACCATGAAGCCCTGATCGGCATCCTGGCTCTTGAGGCACAGTGCGCTGGTGCAGTGGTGATTGGCGAGGACCTGGGAACCTTTGAACCCTGGGTCCGTGACTACCTGGCCGCCCGAGGCATCCTGGGCACGTCCATCCTGTGGTTCGAGAACGACGGCGATTCGCCGCTCCCGCCGGAACGGTACCGGAAGCAGGCGCTTGCCAGCGTGAACACCCATGATCTGCCGCCCACGGCGGGATACCTGGCGGGCGACCACGTGGAGCTGCGCAGCCGCCTTGGCCTGCTGGAGCGCTCTGAAGAAGCCGAGCGGACCGAGCACCTGGCCACCCTGGAGAAGATGATGGGCCTGCTGCGGGAGCGCGGGCTGCTTCCTGAGGGCAGTGCGGCCTCCTCCCGCGGTCCAGGTGCCGGAGCAGTCTTGCCGGAAAGCGAGGAGCAAACGGTGGTGGCGCTTCACCGCCTGCTTGCCCAGACGCCGTCGGTCCTGCTGGGTGTTGCCCTGGTTGATGCCATGGGGGAGCGCCGTGTCCAGAACCAGCCGGGGACAACAGAAGCGCTGTACCCGAACTGGCAGGTGCCCCTGGGCGGCCCAGACGGCCGCCCGGTCTTGCTTGACGATCTTCCGAGGAACGCGCGGTTCAATACCCTCCTGGCCGCCGTGCAGGAAGCCTTAGGCTCGTGAMKAPDHQYTEFPGMPGDAPGQGPVPGPAPSEAAGEASVTGQGAPGQSSLAGDDSLAGRASVPAQSPVDSHLLQRLADAHGVGTSFQGWDGLPHSVAPETLIKVLAALGVPAHTNELIEAALAEAELAPWRRMLPPAVVVQQGEMALVPVHVRDGATAKLSIHLEDAAGPGQKAEPPVVEAIQQDVWIQPQDVDGLLTGRATFALPQDLPLGWHTLSAESEGNTAEGTLVVVPARLTTATPLEQRRGWGLATQLYSLRSKRSWGIGDFADLADLATLSGERGADYVLVNPLHAAEPVPPVQPSPYSPSTRRFFNPLYIRVEDIPELAYLKPRRRAVVDRLLEQVQGLNRDGERLDRNTVYAAKLEALELLYHARRSPTRQAAFDEFCRMSGSGLDDFALWSAVREDIGPEDPFWTDPALALGKPEAEGLREKLSDRIGFHRWLQWICDEQLENAQQAALRAGMRLGVVHDLAVGVDLSSADAWTLRGVLAPGISVGAPPDMYNQLGQDWNQPPWHPGRLAEAGYAPFRNMLSTVLRHAGGIRVDHVLGLFRLWWVPAGNSPRDGAYVRYDHEALIGILALEAQCAGAVVIGEDLGTFEPWVRDYLAARGILGTSILWFENDGDSPLPPERYRKQALASVNTHDLPPTAGYLAGDHVELRSRLGLLERSEEAERTEHLATLEKMMGLLRERGLLPEGSAASSRGPGAGAVLPESEEQTVVALHRLLAQTPSVLLGVALVDAMGERRVQNQPGTTEALYPNWQVPLGGPDGRPVLLDDLPRNARFNTLLAAVQEALGSPGPT0018570_856DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705NANA
D1-29_004262982COG0247putative proteinATGGACCCGATGAACCGAGCCGGAGCAGACAGTGTCGTGCGGGATCTGGAGCAGGATGGCGTGGAGGTGGACGCCAGCAGCCGCAGGCTGTCGGAGTACTCTTACGACGCGTCCAACTACAGGGTGCGTCCCCAAGCCGTCGCCTTCCCCCGCACCAGCCAGGACGTTGCCGCTGTCATCCGCGCCTGCCGGCGGCACGGCGTTCCCCTCACCAGCCGCGGCGGCGGAACCAGCATGGCCGGGAACGCAATCGGCACCGGCGTGGTCATCGATTTCTCCCGCTATATGAACCGGCTCCTCGAGCTGGATGCCGGCGCAAAGACAGTCAAGGTTGAGCCAGGCATTATTCTGACAACCCTGCAAAAAGAGATCCTGGCCGCCACCGACGGCGCTCTGACGTTCGCTCCGGATCCCTCCAGCATGGGGCGGGTTACTGTGGCGGGAGCCATCGGCAACGATGCCTGCGGCAATCACTCGGTCAGGTACGGCCGGACTGTTGACCACGTTGTTTCCCTTGAATTGATCACAGCATCAGGCCACCACGTGACCGCCGGGCCGGGAGGGGTAACGGCAGCTGACCCGACGGACGCGGCAGCTGTCGAAGAGGCCGCTCGGATCGATGCCGGCCTGAAGAAGCTGGCCGATTCCAATCTGGGTCTCCTGCGCACAGAGTTCGGGCGCATTGCCCGCCAGGTCTCTGGCTATCAGCTGGCCAACCTGCTGCCGGAGAACGGCTTCAATGCCGCCAAAGCCCTCGCCGGAAGCGAGGGAACCTGCGCCGTCATCGTGTCCGCCACCGTGAAGCTCGTTGACGTTCCTGCTGCAGCACTGCTCGTTTGCCTGGGATACAACGACGTTGTTGCCGCGGCGACGGATGTGCCGGAGATCCTCCGCTTTAACCCTGCCGCCGTCGAAGGGATCGACGACGCCATTGTCCAGACCGTGTTGGATCGGCGTGGACCCGGGGCTGTGGGGGCGTTGCCTGCCGGCACCGCCTATCTCTACGTCGACCTGGACGGCAGCAATCCTGCCGAGGTGCGGGCGAAGGCGGATGACCTCCTGAAAACCCTGAAGCAGCGGGGCAACGTGGTGGACGGCGTGGTGGTGTCTGATCCTGTGGAAAGGGCCAACCTCTGGCGTGTGCGGGAAGACGGGGCAGGGCTTTCCTCCCGCCTGGCCGGCGGTGTCCAGTCGTGGGCAGGCTGGGAAGACGCCGCGGTGGCACCCGAAAACCTGGCCGCCTACCTGGCCGACTTCACCAGCCTGCTGGCTGAGCATCAGCTACGGGGCGTGATGTACGGGCACTTCGGTGCCGGCTGCACCCACGTCAGGATCACTTTCGACCCCCGGACTGAATCCGGGAGGGCTGTGATGGACAACTTCCTGCGCGCGGCCGCCGATCTGGTCACCCGCCACGGCGGATCCCTCTCTGGCGAGCACGGCGACGGCCGGGCACGGTCCGCGCTTCTTCCCATAATGTACAGCCCGGCAGCACTGGCAGCCTTCGCAGCATACAAGGCAGTCTGGGACCGGGACGGAATCCTGAATCCAGGCATCATCACCGATCCTGCCCCTGTTATGTCCAACCTCGCGCTGGCGGCAACGCCTGCCCGTGGTTTCCGGACGTCCTTTGCTCTGGAGCCGGCCGCCGGCACGGGCCGGGAAGGGTTCACGGACGCAGTCCAGACCTGCATCGGCGTGGGACGGTGCCGGACCACTTCCGGCGTCGGCGTGATGTGCCCAAGCTACCGCGCCACTCGGGACGAAAAGAACTCCACCCGAGCCCGGGCACGCGTCCTCCAGGACATGGTCACCGGATCACTCACTGCCGAGGAAGGCTGGAAATCGGAGGATGTGCGGGAGTCACTGGACCTCTGCCTGTCCTGCAAAGCCTGCTCCACTGACTGCCCGGCCGGCGTGGACATGGCCACGTACAAATCCGAGTTCTTCGATCACTACTACGAAGGCCGCCTGCGCCCGATAGCCCACTACACCCTGGGCTGGCTGCCCACCTGGCTGAAGATCACCGGCCGGATCGCACCGCTTGTCAACGCGGCCCTGGCTTCCCCGCTGCGGCCCCTGATTGCCCGCATCTCCGGGATCACCACGCACCGGAGGATGCCGGACTTCGCCTCCCGCAAGCAGCTGCTGAAGGAGATCGGCGGCGAAACGGTCCGCGGCACCGCAAAGGCCAAGGCTTCTAAGTCGGGCCGGGCCGATACGGTCCTGTTCATCGACAGCTTTACGCGCGGTTTCCGCCCCTCGGTGGCCGGCGCAGCAAAGAGGGTCCTGGAGGATGCCCAGCGCACCGTGGAATGCAGCGCGGACCTGTGCTGTGGCCTGACCTGGATTTCAACCGGCCAGCTGGACACAGCGCGAAAGCTGCTCAACCGGACCGCCGAGGCACTTGACGACGGAACGGACAGGCCGATCGTTGTGATCGAACCCAGCTGCGCGGCCGCCCTGCGCAAGGACCTCCCCGAACTGGTTCCCACGGAAGCTGCCCACCGGGTCTCCCGCCGGATCCAAAGCTTCGCCACCGCAGTCATCGAACAGGCTAAGGCGGGCTGGCAACCGGCCAACGTCCCGTCTGCGGTGACCGTCCAGACCCACTGCCATGAGTACGCCGTCTTCGGTTCTGGAACGCAGGCCAATGCACTGGCAGCCCTGGGCATCACTACCGTCAAGGAAGCCACGGGATGCTGCGGCGTGGCCGGAAACTTCGGCTTCGAAGCGCAGCACTACGACGTCAGCATGGCTGTGGCCGAGCAGTCACTCGCCCCTGCCCTCCGCGGTGCAGCCGACGGCACACCCATCCTGACGGACGGCTTCAGCTGCCACATGCAGGTACGGCAAATCCTGGACAGCCACTCCAACGGCGCCTCCAGCCACCTTGCTGAACTCATTGACCCCAAGAACCAGGAACCGGCCCCTCGTGAGCTGGGCACCAGGCGGTCAGAACGCCGCGCGTCACGAGCCTAAMDPMNRAGADSVVRDLEQDGVEVDASSRRLSEYSYDASNYRVRPQAVAFPRTSQDVAAVIRACRRHGVPLTSRGGGTSMAGNAIGTGVVIDFSRYMNRLLELDAGAKTVKVEPGIILTTLQKEILAATDGALTFAPDPSSMGRVTVAGAIGNDACGNHSVRYGRTVDHVVSLELITASGHHVTAGPGGVTAADPTDAAAVEEAARIDAGLKKLADSNLGLLRTEFGRIARQVSGYQLANLLPENGFNAAKALAGSEGTCAVIVSATVKLVDVPAAALLVCLGYNDVVAAATDVPEILRFNPAAVEGIDDAIVQTVLDRRGPGAVGALPAGTAYLYVDLDGSNPAEVRAKADDLLKTLKQRGNVVDGVVVSDPVERANLWRVREDGAGLSSRLAGGVQSWAGWEDAAVAPENLAAYLADFTSLLAEHQLRGVMYGHFGAGCTHVRITFDPRTESGRAVMDNFLRAAADLVTRHGGSLSGEHGDGRARSALLPIMYSPAALAAFAAYKAVWDRDGILNPGIITDPAPVMSNLALAATPARGFRTSFALEPAAGTGREGFTDAVQTCIGVGRCRTTSGVGVMCPSYRATRDEKNSTRARARVLQDMVTGSLTAEEGWKSEDVRESLDLCLSCKACSTDCPAGVDMATYKSEFFDHYYEGRLRPIAHYTLGWLPTWLKITGRIAPLVNAALASPLRPLIARISGITTHRRMPDFASRKQLLKEIGGETVRGTAKAKASKSGRADTVLFIDSFTRGFRPSVAGAAKRVLEDAQRTVECSADLCCGLTWISTGQLDTARKLLNRTAEALDDGTDRPIVVIEPSCAAALRKDLPELVPTEAAHRVSRRIQSFATAVIEQAKAGWQPANVPSAVTVQTHCHEYAVFGSGTQANALAALGITTVKEATGCCGVAGNFGFEAQHYDVSMAVAEQSLAPALRGAADGTPILTDGFSCHMQVRQILDSHSNGASSHLAELIDPKNQEPAPRELGTRRSERRASRANANANANANA
D1-29_00427903dmlRHTH-type transcriptional regulator DmlRGTGGACCTGTCAACTGTGGATGATCTCGAATTCTTCGAAGAGATCTCACGATCAAAAAGCCTGACGGAGGCGGCCAGGAGTTGGGGAAAGTCCCTGCCTTCCGTCAGCAAAAGGCTGACCCAGCTTGAATCGAGGCTCGGCGCCCAGCTTGTCAGACGGAGTACGCGCAAACTCACGCTCACTCCGGAAGGGGAACAATATGCTGCGGGGGCACTGTCCATCCTTCAGCAGAAAATGGACCTTGAGGAAGGCATCTCGCAGAAATACGGTGAGCTTCGGGGGCGGATCGCCGTGCATACAACGGTTGGCCTGGGCCGGATCCATATCGCCCCGCTGCTGGGCGAGTTTGTTCGGGATCATCCTGGCGTCTCGGTTGACCTTCAGCTGTCCGCGCTTCCGCTGAACATTGCGGGCAGCAGCTTTGACCTGGGGATCCGGGTGGGGAGCCTGGAAGACTCCCAGCTCAAGTTCACGCGGCTTGCGGAAAGCCGGCGGGTGGTCTGCGCGTCCCCGCAGTACCTGGAGCGGATGGGTGCGCCCACCACAACAGCCGAGCTTGAACGGCACAACTGCATCATCCTGCGCCAGGACAACAGCGACTATGCCCTGTGGCGGTTTGGGGAGCAGGGCCGGGAACGGAACGTCCGGGTGAACGGCAATATGGTCAGCGATGACGGGGAAGTGGTGGCCGGGTGGTGCCTGCAGGGCCTGGGACTGATGATGCGCTCCACGTGGCATGTGAACCCCATGCTGCGGCAAGGGCTGCTGAGGCAGGTCCTTGAGGATGTTCCAACCCCGGCCGCGGACATTCACGCTGTTTACCCGGATGCGGTGCATACCCCACGGCGCGTGACCGCAGCCATCGATTACCTGCGGCGCGGTCTCGCGGAGCGGCTGGCGTAGMDLSTVDDLEFFEEISRSKSLTEAARSWGKSLPSVSKRLTQLESRLGAQLVRRSTRKLTLTPEGEQYAAGALSILQQKMDLEEGISQKYGELRGRIAVHTTVGLGRIHIAPLLGEFVRDHPGVSVDLQLSALPLNIAGSSFDLGIRVGSLEDSQLKFTRLAESRRVVCASPQYLERMGAPTTTAELERHNCIILRQDNSDYALWRFGEQGRERNVRVNGNMVSDDGEVVAGWCLQGLGLMMRSTWHVNPMLRQGLLRQVLEDVPTPAADIHAVYPDAVHTPRRVTAAIDYLRRGLAERLANANANANANA
D1-29_004282898hypothetical proteinGTGACTGACGAGAATTTCTATTTTGTGATGGCAGACCGCTTCAGCAACGGCAACGCTGCCAATGACGACGGCGGCCTGGGCAGCGATCCGATGGTGTCCGGGTTCGATCCCACCGGAAAGGGCTTCTACAACGGCGGAGACCTGGCCGGCCTGCTGGACAAGATCGACTACATCCAGGGCCTGGGCACCACCTCCATCTGGCTGACGCCGAGTTTCAAGAACAAGGCGGTCCAGCCGGAGGACAAGTCAGCGGGTTACCACGGCTACTGGATCACGGACTTCACTCAGATCGATCCCCATCTGGGAACGAATGACGAGCTCAAGGCCCTCATTGACGAGGCCCACGCCCGCGGCATGAAGGTCTACTTTGACATCATTACCAACCACACCGCGGACGTGATCGGCTATGAGGAAGGCGCCCGGAAGACGTACGTTTCCAAGGACTCCGAGCCGTACAGGACCGCAGACGGTAACGAGTTTGATGACCGTGACTTCGCCGGTTCCGCAAGCTTCCCGGCGCTTAGTCCAGCCACCTCCTTTCCCTACGTTCCCGTGCTGGACAAGGGCGAGGAGAACCTGAAGGTCCCCGCCTGGCTGAACGATCCCACGCTTTACCACAACCGCGGCGACACCACTTTTGTGGGCGAGGATGCCTACTACGGCGACTTCTTCGGCCTGGATGACCTCTTCACCGAGCACCCCAAAGTGGTGGACGGGATGAAGGAGATCTACAAGGCATGGATCGCGGACTTCGGTGTGGACGGCTTCCGGATCGACACCATGAAGCACGTCAACGACGAGTTCTGGCAGGAGTTCGGCCCCGAGGTCCTCAGCTTCGCCAAGGAACAGGGCAAGGACGAGTTCTTTATGTTCGGTGAGGTTTTTGACACCACCAAGAGCTTTACGTCCCAGTTCACTACCCGCAACCAGATGCAGGCAGTCCTGGATTTCCCGTTCCAGGACGCAGCCCGAAACTTTGCCTCCAAGAGCCAGGACACCAGTGCCCTTGAATCCTTCTTTGCCGGCGACGACTGGTACACGGACGCCGATTCCAACGTCTACCAACTGCCCACTTTCCTGGGAAACCACGACATGGGCCGGATCGGCAGTTTCATCGCTGCGGATAACCCCGGCTCAACGGATGCCGAGCAGGTGGCACGCGACGAACTTGCCCACGAACTCATGTACCTCTCGCGCGGCAACCCGGTAATCTACTACGGCGACGAGCAGGGCTTCACCGGGCCCGGCGGCGACCAGGACGCCCGCCAGACGCTGTTCGCCAGCCAGGTGCCGGAGTACCTCGACGACGACCTGCTGGGCACTGATGCCACCCACGCCACGGACAACTTCAATCCTGGGCACCCGCTGTACTCCAAGATCAGCGAGCTTGCATCGCTGACCAGGGAACACCCGGCCCTGCGCGACGGCGCCCACCAGCACCGGTACGCTTCCGAAGGTCCGGGCATTTACGCCTTCTCCCGCACGGACTCTGAGGATCAGCGCGAGTATGTGGTGGCCCTGAACAACAGTGAAGAGCCGCAGTCCGCCGAGGTTCCCACCTATATCGACAAACGCACTTACAAAAAGATCTATGGGGACACAGGTGCCGCCCATGAAGTGAAGACGGCCGGCGATGGCAAACTCAGCGTGACGGTTCCGCCGCTTTCGGCTGTGGTGTACCAATCGTCGGGCCGCATCCCCCACTCCCAGGCGGCCCCCGCCGTCGAACTTCAGGAACCTGCCGCGGCGCCCGGTGACAACGGCCGCGTTAAGGTGACGGCCGACGTCGGCGGTACGTCGTTCTACGAGGTCACCTTCGAGGCAAGGACGGCAGGTGGGGGCTGGGTTCCGATCGGCACCGATGACACCGCGCCCTACCAGGTGTTCCATGATGTTGCGGCGATGGATACCGGGACAGGGCTGGAATACAGGGCCACGGTGCTGGACAACGGCGGCCATACCGCCAGCAGCCAGACCCGCAGTGCAACCGTTCCGGCACCGGTCCTGACCATCCAGAAACCCACAGAGGGCAGCAGTGTGAACGGCAACGTGGAGCTCAGCGCCGTCGCCGACCCTGAGAAGGCAAGCCATGTGGTGTCATTTGAGCGGAGCGTTGCCTCCGGCGAATGGACAGCGGTGGGTTCAGACGATTCCTCCCCCGTGTACTCCGTTGTGGATGACCTGTCCGGCCTGGACCTGGCGGACGGAACCGAGGTGCGGTACCGGGCTGCCATGAGCGGTACCGGCTTCAGCGTGGTCAGCGAACCACGGACGGTGACTGTGGGTGAGGCTCCCCAGCCGGATTCGGTCACTGTGGCGGGTTCGCTCAACATTCCCATGGGTTGTGGAGAGTGGAGCCCTGCCTGCGCACAGGCGATGATGAGCCTGGAACCGGTGGACAAGATCTGGCGGCTCACGGTTGACCTGCCGCCTGGCCGATACGAGTACAAGGCGGCGCTGAACGGCGGGTGGGACGAAAACTACGGGGCCGACGGAGTCTTCAACGGCTCCAACATTGTGCTGGATCACCCCGGCGGATCTGTCACCTTCCGCTACGACAACTCCACCCACCTGCTGAGTGCCGTCTACGCCTCCCAGCAGCCGCAGGCTGTGTCGGTGGCCGGAAGCCTGGGATCGGAACTGGGCTGCGTGGACGACTGGCTGCCCGAATGTGACCAGGCGCAGCTGATGCTGGATCCGGCTGACCTGGTGTGGAAGTTGCAGGTGGCAGGCCTTCCAGCCGGCACCTACGAGTTCAAGGCCGCTCTGGACCGTTCCTGGAACGTGAATTATGGAGCAAACGGGGTGCCGAACGGCGCCAATATTGCCTACAAGCACGACGGCGGCCCGGTCACTTTCCGCTATGACCACGCCACGCACGTCATCACCGCCGGCTAAMTDENFYFVMADRFSNGNAANDDGGLGSDPMVSGFDPTGKGFYNGGDLAGLLDKIDYIQGLGTTSIWLTPSFKNKAVQPEDKSAGYHGYWITDFTQIDPHLGTNDELKALIDEAHARGMKVYFDIITNHTADVIGYEEGARKTYVSKDSEPYRTADGNEFDDRDFAGSASFPALSPATSFPYVPVLDKGEENLKVPAWLNDPTLYHNRGDTTFVGEDAYYGDFFGLDDLFTEHPKVVDGMKEIYKAWIADFGVDGFRIDTMKHVNDEFWQEFGPEVLSFAKEQGKDEFFMFGEVFDTTKSFTSQFTTRNQMQAVLDFPFQDAARNFASKSQDTSALESFFAGDDWYTDADSNVYQLPTFLGNHDMGRIGSFIAADNPGSTDAEQVARDELAHELMYLSRGNPVIYYGDEQGFTGPGGDQDARQTLFASQVPEYLDDDLLGTDATHATDNFNPGHPLYSKISELASLTREHPALRDGAHQHRYASEGPGIYAFSRTDSEDQREYVVALNNSEEPQSAEVPTYIDKRTYKKIYGDTGAAHEVKTAGDGKLSVTVPPLSAVVYQSSGRIPHSQAAPAVELQEPAAAPGDNGRVKVTADVGGTSFYEVTFEARTAGGGWVPIGTDDTAPYQVFHDVAAMDTGTGLEYRATVLDNGGHTASSQTRSATVPAPVLTIQKPTEGSSVNGNVELSAVADPEKASHVVSFERSVASGEWTAVGSDDSSPVYSVVDDLSGLDLADGTEVRYRAAMSGTGFSVVSEPRTVTVGEAPQPDSVTVAGSLNIPMGCGEWSPACAQAMMSLEPVDKIWRLTVDLPPGRYEYKAALNGGWDENYGADGVFNGSNIVLDHPGGSVTFRYDNSTHLLSAVYASQQPQAVSVAGSLGSELGCVDDWLPECDQAQLMLDPADLVWKLQVAGLPAGTYEFKAALDRSWNVNYGANGVPNGANIAYKHDGGPVTFRYDHATHVITAGPGPT0018575_56DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0018575-amyA|malS-K01176NANA
D1-29_004291047pgl_1COG27066-phosphogluconolactonaseATGACTTCTCCTGCGCGGCACTCACTGATCTGGACCGGCACTTATACCCAGGACGGCGGCGGCCGGGCAGAGGGGATTGGTGCTATATCCGCCAGCAACGACGGGACGCTCGAATGGCTGGGTACGGCAACCAAGGCCGATTCGCCGTCGTTCCTTGCGGTTCACCCCACCCTTCCCGTGGTCTACGCCGTCGCCGAGCAGGCCGGAACGGTCCAGGCTTACCGCCGGTCCGGGGAGTTCGGCCTGGAACAGTTCGGCGAACCCCAACCGGCCGGGGAGGCCGCGTGCCACGTTGCCGTGGATCCGCTGGCGCGCTTCGTCACCGTCACCTGTTGGGGGGACGGCCAGGTCCTGCTCTATGAACTGGATCGCGACGGCGGGATCACCGGGCGGTCTGCTGCGCCAGCATCGGTTGACCCGCACGGAAGCCAGACGCCGGGCGAGCCCCGGCAAAGCCGGGCCCACGCAAGTCTTATGCTCGCCGACGGGCGCGTCATGACAACGGACCTCGGACACGACACACTCCGCATCTGGCGGTTTGAGCCCGGCACCGGGCTGATTGCGGACCACGAGGTTGCACTCCCTTACGGCAGCGGCCCACGCCACCTGGTGCAGCACACCAGCGGGAGCGTTTTTGTGGTCTCAGAGTATTCCATCGAGGTTTTCGTGCTCAGGGCGGATGCCGGGACCTTTGAGCTGATCAACCGCGGTCCGGCGACCTCCGGCGGTAGCCTTCCCGGCGATTCGGCCGCGGAGATCTGCCTCAGCCAGAGCGGGGACCACGCGTATGTCGGTGTGCGCGGCTCCAACCTGATCAGTGTTCTCCTGGTGGGTGCCGACGGCGCAGAGGTTGCGCCCCTGGCCGACTTCACCAGCGGCGGGGACTGGCCCCGGCATCACCTGGTCAGGGGCCCCTGGCTGCACGTGGCTCATGAGCGTTCAGACGAGGTTGCCACCTTCGCTTTGGACGCGTCAACAGGCTTGCCCGGGCCCGTTGTGCACAGGTTGCAGACCCCCTCGCCCACTGCTTTGGTGCCCGCCAACTAGMTSPARHSLIWTGTYTQDGGGRAEGIGAISASNDGTLEWLGTATKADSPSFLAVHPTLPVVYAVAEQAGTVQAYRRSGEFGLEQFGEPQPAGEAACHVAVDPLARFVTVTCWGDGQVLLYELDRDGGITGRSAAPASVDPHGSQTPGEPRQSRAHASLMLADGRVMTTDLGHDTLRIWRFEPGTGLIADHEVALPYGSGPRHLVQHTSGSVFVVSEYSIEVFVLRADAGTFELINRGPATSGGSLPGDSAAEICLSQSGDHAYVGVRGSNLISVLLVGADGAEVAPLADFTSGGDWPRHHLVRGPWLHVAHERSDEVATFALDASTGLPGPVVHRLQTPSPTALVPANPGPT0014975_1666DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014975-ykgB|pgl-K07404NANA
D1-29_00430297hypothetical proteinATGAACCAGCAGCTCGGTACGGCGGCGGGGAACGAACACTCCTGGATCCACGGCTATTCGGGCCCCACAAAACTGGGCCCAACCAAGAATGTGCTCCACCGGATACCCGGCAATCCGCCGCTCAACAGCATGAGCGAGATCATCAGGGTTCGTAAAAGCGTCGAGAAGAAGTTGCGCCTCCTCCTCGGCGAATACGCAGCCCGCAGCACGAAGCCGTGCGGTATTTTCTGCAGCCAGGGTCCCGGAGAAATGGTGCTGGCGGGAGGGGATCGGAGAGTAGTCCTGTTTAGGTGCTGAMNQQLGTAAGNEHSWIHGYSGPTKLGPTKNVLHRIPGNPPLNSMSEIIRVRKSVEKKLRLLLGEYAARSTKPCGIFCSQGPGEMVLAGGDRRVVLFRCNANANANANA
D1-29_00431624prmC_1Release factor glutamine methyltransferaseATGGGAGTCAGCCGGCAAGGATCCAGGCGAGGAAGCCGGGCCGGCCTCGGCCTGCACTTGTCTGCGCATGATGAAGCAGTCGTCCTGGTTGATCTCTGCTGCGGTTCCGGCGCGGTGGGCGCGGCGCTTGCAAGTCGGGTAGGCGGGCTTGAGCTTCATGCCGCGGACATCGATTCGGCAGCAGTGAAGTGCGCCGCCCGTAACGTGGGGCTTCTGGGCGGGCAGGTTCACCATGGCGACCTGTACGAGGCCCTTCCACCGGCGCTCAAGGGAAACGTGACACTTCTGGCGGTGAATGCTCCATATGTTCCAACGGATGCCATCGCCACGATGCCGCCCGAAGCCCGGGAGCACGAGCCGCTCATCTCCCTCGACGGCGGTACTGACGGCCTGGACGTCCATCGCCGGGTGGCGGCTGGTGCCCGGGAATGGCTGGGTTCTGGCGGGCATATCCTCATCGAAACAAGTAGGAGGCAGGCCCTTGAGACTGCCGGCGTCCTTGCAGCGGCAGGACTGGAGACAAGGACTATCCACTCCGATGAGCTGGATGGCACAGTTGTGATCGGCACTGCTGCGATGGGCACGGCAGCATCTGGCGACGGCACTGCAGATACATTCGAATAGMGVSRQGSRRGSRAGLGLHLSAHDEAVVLVDLCCGSGAVGAALASRVGGLELHAADIDSAAVKCAARNVGLLGGQVHHGDLYEALPPALKGNVTLLAVNAPYVPTDAIATMPPEAREHEPLISLDGGTDGLDVHRRVAAGAREWLGSGGHILIETSRRQALETAGVLAAAGLETRTIHSDELDGTVVIGTAAMGTAASGDGTADTFENANANANANA
D1-29_00432468hypothetical proteinATGACCACTCAGAGCTACGGCGCAGGCGGCCCTGCTCAGGCCAGACCCCTGGACATCAGGCAGGCACTCGAGGCGTCGAGTCAGGCGATGAACGCCCATGATGTCCACGCTTTTGCCAGCTTCTATGCGGACAACGCCGTCGTGGTAGATCCCCAGTACCCAGAACCGCTACGTGGCCTGGCGGCAATCGAGCAGGACGCGGGGGTGTTCACTAAAGCATTTCCGGATCTCCAGTTCTCGATAACCAGCATTCTGGTAGAGGGTCGTATGGCTGCCGGCGAGGGCACAATCTCCGGCACGAATACCGGACCGCTCCCACTGCCCAGTGGAGAGGAGATCCCGGCTACGGGTCGACGGCTGGAGTTCCCCATGGCCTTCTTCAGCCGCTTCGATGAAGCAGGGAAGATCGTCGAGGAACGCCGCTACTACGACCTCGCGACGCAGCAGGAGCAACTGGGGCTGGCCTAGMTTQSYGAGGPAQARPLDIRQALEASSQAMNAHDVHAFASFYADNAVVVDPQYPEPLRGLAAIEQDAGVFTKAFPDLQFSITSILVEGRMAAGEGTISGTNTGPLPLPSGEEIPATGRRLEFPMAFFSRFDEAGKIVEERRYYDLATQQEQLGLANANANANANA
D1-29_00433597hypothetical proteinGTGCCCGTGGTCGTTTTTGCTGGATGTTCGAGCCAGCTGTACTCCAACATTCTTTTGGGAACAGGAATATCGAACAGAAGTGACCCTTTGTGCAGAGGGGAAGCCTATGCCCAGCAATTGCAATACGCAGCAGTTGTCGTTCAAAGTCGTCACGTGGCTTACTGCAGGAGGAGCGTCACGCCAGCCAACAGTTCAGCCTTTGCTATGGAAGCAGCGACGAAGGCCCCGGAGGCCTATCCAAGGATCTGCACACATCCTAAAATGGGCTTGCTGCCTTGGATGCAGCCGGCTCACGGAAAGCCCCGAAAGGCTTTGCAACTTTTCTGGCTGCCCCGCACACCATGCCATGGGCTGGACTGGCACAGAACATCGTCCCGCAACCAAAGAAGCACGCGCGTGTTCATCCGCCAATCGGTTCCGATTTTCATTGCCCCCCATCCGCAAGTTTCATCCCGTTCGCCACCACCAACTCCGGCGGCGCGCCCATACTGCGCACTTTCTGATGCCCCCGGACGGGACAGACGCCGGTTGGAGTCGAACCTCCAGCCGTATGCAAGGCCGGAAACATCCACGGTCATTGAAGTTCTTGCCTCTTAGMPVVVFAGCSSQLYSNILLGTGISNRSDPLCRGEAYAQQLQYAAVVVQSRHVAYCRRSVTPANSSAFAMEAATKAPEAYPRICTHPKMGLLPWMQPAHGKPRKALQLFWLPRTPCHGLDWHRTSSRNQRSTRVFIRQSVPIFIAPHPQVSSRSPPPTPAARPYCALSDAPGRDRRRLESNLQPYARPETSTVIEVLASNANANANANA
D1-29_004341935hypothetical proteinATGGAAGCCATCGGGGAACAGCTTGCAGAGCAGGGCGGGGCTGCCCTCCTGACACCCGCAGGCACCCCGGCAGCAGCCCTTTCAAATTCAACTAAAGCGTCCGACGGCGGCGGCTGGGAGCGCGGGCTGTCCCACCTTCGTGCCGTCCCGGCCAACCCAGTCTGGACGGCTGAGACTGACACGTGCGCCAGGGCGGCCGGGCCCGCTGAGGCCGCAGGCGTAACTGAGACCATGGGGCTGGCCGGCCTTGTTTCGCTTCTGAACCGGGCCGCCGCTGCCGCTCCGGAAACTCTGGCGCTGGCAGGCTACGTGGAGGCTTCAAACTTCGCCGGCCTGGTCGAAGAGTTCTCTCGGACCGTGGACTACCTGCAAATCCTCTCCGCCGGCGCCGTGGACCGCACGCGGACCCAGGCCATCATCGAAGCCAACACCAGAACCCGCCGCACCAGCGCCAGCACAGCATCAGCCAGCACCGGCACCACCGGCTGGGTCACCGGCCGGGACAGCGGAACCGAAACCCTCCCCGAGACCGACGCCGCCTGGCCCGCCACCAGCCCCACAAGCACAAAACCGGAAATGTCAGTGCCGCGGTCCCCGGCCGATGACGGATGCCGGAACACCGCCGAGTTCCTGCGCCTCAGACTCAGGATCGGCATCAGCGAGGCCCGCCGCCGGCTCCACCTCGCCCACGACACCCTTCCCGCCACTACCCTCACCGGAGACCCCACACCCCCACCCCGGGAACACCTCGCCACAGCACTGGCACCAGCAACCGGCACCGAAGAAGCCGACACAGAACAAACCGACACCGAGGCGGGACTGGCTGTCACCGGTACCGTGGGCAGCCCGGTGGTGTCCTCCCGGGCCGGGACCATCATCGCCACCACCCTGGACCGGCTCCGGCACCACACCACCCCCGACACCCTCACCCGGATCGAACAGCACCTCACCGGCACCGCAGCCACCGCAGACCCCGACTTCCTCACCCGCGTCGCCCGCCGCTGGTCAGACACCATCGACGCCGACGGCACCGAACCCAGCGAAGAAGCACTCCGCCACACCCAAGGCGCCTTCATCCGCAAACCCCGCCACGGCCTCCACCGCATCGAAATCTTCGCCACCACCGACCAATACGAACACTTCCTCACCGTCATGAACACTGCCACCAACCCCCGCAGCACCACCCCACCCACCAGCACCGAAACCGGTACTGGCACGAGTGACGGCGCGGGCGGACTTCTCCAGGTCTGGCAGGACGCGGACGTGGACCTGGACCGGCGCACCCGCTCCCAAAAACAACTCGACGGCATCATCACCGCCATCAAAGCCGCCCTCACCACCAACACCCTGCCCACCACCGGTGGCAACAGACCCCAAATCCTCGCCACCATCAACTACCAGGACCTCCTCCCCCACCTCCCCCAACCCACCGCACCACAGGCACGGGCCCAGGCACGGGGACCGGCGCAGAGTCAGGGACCGGGAACTTCACCTTCACCGGACCCGTCGCCGCCACCACCCTGCGCAAAATCGCCTGCGACGCCGACATCATCCCCGCCCTCCTGGGCACCAACAGCGAAATCCTGGACCTCGGCCGCAAAACCCGCCTCTTCACCACCGCCCAACGCCTCGCCCTTACCGCCCGCGACCAAGGCTGCACCTTCCCCAACTGCACCATCCCCGCCCCCTGGTGCGAAGCCCACCACATCACCTACTGGTCACACGGCGGCCCCACCACCACCAACAACGGCGCGCTCCTCTGCCCACACCACCACCACCTCATCCACAAAGAACAATGGACCATCCACACCCACCACGGCACCCCCTGGTACACACCCCCACCCCACATCGACCCCCACCAAAAACCCCAACAAAACAACTACTTCAAACCACCCCCACCACCACAGAAATAAACCTGCCCTCGCCCCGCGCTGAMEAIGEQLAEQGGAALLTPAGTPAAALSNSTKASDGGGWERGLSHLRAVPANPVWTAETDTCARAAGPAEAAGVTETMGLAGLVSLLNRAAAAAPETLALAGYVEASNFAGLVEEFSRTVDYLQILSAGAVDRTRTQAIIEANTRTRRTSASTASASTGTTGWVTGRDSGTETLPETDAAWPATSPTSTKPEMSVPRSPADDGCRNTAEFLRLRLRIGISEARRRLHLAHDTLPATTLTGDPTPPPREHLATALAPATGTEEADTEQTDTEAGLAVTGTVGSPVVSSRAGTIIATTLDRLRHHTTPDTLTRIEQHLTGTAATADPDFLTRVARRWSDTIDADGTEPSEEALRHTQGAFIRKPRHGLHRIEIFATTDQYEHFLTVMNTATNPRSTTPPTSTETGTGTSDGAGGLLQVWQDADVDLDRRTRSQKQLDGIITAIKAALTTNTLPTTGGNRPQILATINYQDLLPHLPQPTAPQARAQARGPAQSQGPGTSPSPDPSPPPPCAKSPATPTSSPPSWAPTAKSWTSAAKPASSPPPNASPLPPATKAAPSPTAPSPPPGAKPTTSPTGHTAAPPPPTTARSSAHTTTTSSTKNNGPSTPTTAPPGTHPHPTSTPTKNPNKTTTSNHPHHHRNKPALAPRNANANANANA
D1-29_00435666hypothetical proteinATGAGCAATTCCAATACCGGCGCGTCAGTTCCTCCCGGCTGGTACCCCGACCCCGCAGGTACCGGACGGCTCAGGTGGTGGGACGGCACAAACTGGACAAGCCAATACAGCACACCGTATGTACCCGCTGCACAAGTACCCGGACCCGGCGGTGCCCCTTACCCGGTTACCCCCTACATTCCCGAACGCCCCCATATCAGCAGCGAAACGCCCGTCTACAATCCCCTGATCTGGATCATTACGCTGCTGCCACTGCTGCCGGTCATACTTTTGCTGCTGTGGAACCCGGAAGTGCGCTTCATCAGCATTGGAAGCCAGGACACGCCCGCTGTCGACCCGCTGTCCGTTTTCACACCCGTCTATTTCCTTCTCGTCTTTTCGGGTTTCCTCACCTACGCCGCTTCTGTGCTGTTGGCGTACTTTGACAGCGAACGGCTCAAGCGGGACGGGGTGGTCAGGCCCTTCCACTGGGCATGGAGTTTCCTCAACAGCGCGGTATATGTCATTGGGCGCTCGGTGATCGTCCATAAGGTTGCGCCCGGACGCGGCCTGCTGCCCGTCTGGGTGACCATTGGCGTTTTCGTTCTCAGCTCCGTGGTGTCCACCATCAAAATGTCGGCGCTCCTGTCCTCGGTCATGTCGTCCGTTATGTCCATTCCGAGCTGAMSNSNTGASVPPGWYPDPAGTGRLRWWDGTNWTSQYSTPYVPAAQVPGPGGAPYPVTPYIPERPHISSETPVYNPLIWIITLLPLLPVILLLLWNPEVRFISIGSQDTPAVDPLSVFTPVYFLLVFSGFLTYAASVLLAYFDSERLKRDGVVRPFHWAWSFLNSAVYVIGRSVIVHKVAPGRGLLPVWVTIGVFVLSSVVSTIKMSALLSSVMSSVMSIPSNANANANANA
D1-29_00436546hypothetical proteinATGAAAAATAAACTTCTTTTGGGTGTTGGCATCGCAGCAGGCTACGTCCTGGGATCCCGGTCCGGCCGGGCAGCGTACGACAAGCTCAAGGCCAAGGCAGCCGGCATCTGGGACAGCAAGCCTGTCCAGGACAAGGTCACCGCGGCCACCGAAGCCATCAAGGAAAAGGCACCCGAAGTAGCGGACCAATTGGGCGAGGCCGCTCGTCGGGCCGGCACCGTGATCGGGTCCGCCATGCACCATGAATCTGCCTCTGGCGACGGCACCGGCAAGAGCAGCCAGACCAAGGCTTCCGACGACGGCATGACGGTCCCAGCCTCCGCTGGGACCGGAGCGGGCATGGCAACATCCGCCGCGGACCTTGGGCCAGGAGCTGTTGGCGACCACGTTCCGTCGCACAGCACGCACCCGGAGACGGTCAACCTGGGGACGTCGGATGTTGAATCCGACCCCGCACGAAATGCCAGCCAGGGCCAGGACTGGTCGGACGAAGGCGGCGCAACCCCCGCCGGCGCGGCCACGAACGTAGATCCCAAGCGGGACTGAMKNKLLLGVGIAAGYVLGSRSGRAAYDKLKAKAAGIWDSKPVQDKVTAATEAIKEKAPEVADQLGEAARRAGTVIGSAMHHESASGDGTGKSSQTKASDDGMTVPASAGTGAGMATSAADLGPGAVGDHVPSHSTHPETVNLGTSDVESDPARNASQGQDWSDEGGATPAGAATNVDPKRDPGPT0015027_142DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0015027-ytxH-NANANA
D1-29_00437267hypothetical proteinATGGGTTTTTTTGCATTTCTGATTCTGGGCCTCATTGCTGGCGCGATCGCTAAGGCGATCCTCCCGGGCAAGCAGGGTGGCGGCATTTTCATCACCTTGCTCCTGGGCGTTGTGGGAGCATTCCTCGGCGGCTGGATCGGCGGACTGATCTTCGGCGAAGGGCTCCAGGAGTTCTTCTCGCTGCAGACCTGGCTGCTCGCGATCGGCGGCGCCATCATCGTGCTGCTCGTTTACGGCATGATCACCAAGCGGAGCGTCCGCAGCTAAMGFFAFLILGLIAGAIAKAILPGKQGGGIFITLLLGVVGAFLGGWIGGLIFGEGLQEFFSLQTWLLAIGGAIIVLLVYGMITKRSVRSNANANANANA
D1-29_00438834COG0656putative oxidoreductase/MSMEI_2347ATGACACTTGCACCCCTCATCAAGCTCAATGATGGCCACAGCATCCCGCAGATCGGCCTCGGCACCTGGCCGCTGGACGACGATCAGGTGGCTACCGCCGTCGTACATGCAGTGGAAGCCGGGTACCGGCATATTGATACCGCCGTGAAATACGGTAACGAGGAGGGGGTGGGAAACGGAATCCGCGCCAGCGGCGTGGACCGCAGCGAAATGTTCGTCACCACCAAGCTGGATGGCCAGTTCCAGGGGCAGGACCGTGCCATCGAAGGGCTGGAGGGTTCGCTGCGGCGGATGAAGCTGGACTATGTGGACCTGCTGCTGATTCACTGGCCGCTGCCTCAGCGGAACGAGTTCATCTCCACCTGGAAGACATTCGAGCGGCTCCAGCTGGAGGGAAAAGTACGGTCCATCGGGGTGTCCAACTTCAAGCCGGCCCACCTTGAGCGGCTTATGGCCGAGTGCGAGGTGGTGCCGGCGGTGAACCAGGTCCAGCTCAGCCCTGCGATCACCCGGACGGCCGAGCGGGAATTCCACGCAAAACACGGCATCGTCACCGAGTCCTACAGCCCCCTGGGCGGTTCGGGGGCCAGCCTGCTGGATGCTCCGGTACTTGTCCAGCTGGGCGAAAAGTACGGCAAAACGCCCGGACAGCTTGTGTTGCGCTGGCATATCCAGAACGGACTTGTCACTGTTCCGAAGACCGGTGATCCGGAGCGGATGAAGGAGAACCTGGACGTGTTCGATTTCGCCCTGGATCCGCAGGATCTAGCGGAAATCTCCATCCTGGACGAGGGTCCGGACGCCGGCATTGATTCAGACGTCAGCGGTCACTGAMTLAPLIKLNDGHSIPQIGLGTWPLDDDQVATAVVHAVEAGYRHIDTAVKYGNEEGVGNGIRASGVDRSEMFVTTKLDGQFQGQDRAIEGLEGSLRRMKLDYVDLLLIHWPLPQRNEFISTWKTFERLQLEGKVRSIGVSNFKPAHLERLMAECEVVPAVNQVQLSPAITRTAEREFHAKHGIVTESYSPLGGSGASLLDAPVLVQLGEKYGKTPGQLVLRWHIQNGLVTVPKTGDPERMKENLDVFDFALDPQDLAEISILDEGPDAGIDSDVSGHPGPT0001320_1454DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
D1-29_004392550hypothetical proteinATGAATCCGAGCAGGAAATCCGTGCGCCATCTTTCAGGCGCCGCCGCCGCAATGGCACTCACCGTAGGCTGCCTCGCCAGCCCGGCCGCCGCCGTCGAAACCTCAGCCATCCCAACTACGGCGGGAGTCCAACTGGACCATCTTGACCGGGGGCTGGTGGCAGCCGGAACAACGGAAGGGGTGTTCCTGAGCTGGCGGCTGCTTGGCCATGAGGCGACGGGATCAACCGCCACTGGCCTCACTGGTACGGACTTCGCGGTGTACCGCGATGGGCACAAGCTCGCCACTGTCACGGACAGCACCAACTATCTTGACGCGGGCGGAACCGCCGCCTCCGCGTACGAGGTGCGTGCCGTCGTCGGGGGTGTGGAACTGGACCGCAGCGCCACGGCCACCGCCTGGGCCGGCAACTTCAAGGACATCCCCCTGAAAAAGCCTGCCGACGGCGTCACCCCGGCCGGCCAGGCGTACACCTACGCCGCCAACGACGCCTCGGTGGCAGACGTGGACGGCGATGGCCAGTACGAGTTCATCGTCAAATGGGACCCGAACAACTCCAAGGACGTCTCCCAGGTGGGCTACACCGGCAACACGTATGTGGACACGTACAAGGCGGACGGTACGCTGCTCCACCGGATCGACCTGGGCGTCAACATCCGCTCCGGCGCCCACTACACGCAGCTGCTGGTCAACGACTTCGACGGCGACGGGCGCGCCGAGATGATGATGAAGACCGCGCCCGGCACCAGGACCATCCCGTACAAGGATGGCAACGGGGCCGGTGGCTCCTTCATCTCGCTGCTCCAGCGGGACATCGACGCCGGCTACTCCCACGGTGACGATTACCGGATGAGCGCTGAGGACTACTACCAGCACATGGTGGACACTTTCCTGGGCTGGACCGAGCACCCCGAGGTGAAAGCCGGCAACTGGCCGGCCACGTTGGAGGAGGCGTTCGGCATCGCTCCGAAGTACCAGTACCCGCTCTCGCGGACGGACGCCGAGGCTGTCACGGACTACTTCATGGACGTCTACGCCCCGTCCCGCAGCACACGGAACAACCTGCGGGCTTTCGAAGGATTTATTGTCTCCGGCCCGGAATACCTGACCGTCTTTGAAGGTGCGACGGGCAAGGAACTGAAAACTGTGGAGTACACGCCTGGCCGGCACGACGACGGCCTGATGTGGGGCGACTATGCCATGGCCCGGATCGAACCGGGAAACCGCGTGGACCGCTTCCTGGCCGGCGTGGCCTATTTGGACGGCCAGAAACCCGCAGCGGTGTTCGCCCGCGGCTACTACACGCGGACCACCCTGGCCAGCTACACCTGGGACGGCACCACCCTCTCCCCGGTGTGGAATGTGGACTCCGGCTGGGCACCCATGACCAACCCCTTCAACGACTCCCCGCATGGCCGCGACGGCTCGGATCCGGTGTTCGGCAGGCTCACCACCCAGGGCTTCCACTCCCTTAGCGCCTCTGACGTTGACGGTGACGGCAAGCAGGAAATCGTCTACGGCGCAGCCACGATCGACGACGATGGATCGCTGCTGTACAGCTCCTTCGACACCATGCCTGCCGGCAGCGCCACCCCTGGCTCAGAGGCGCGGTTGGGCCACGGCGATGCGATGCATGTGACGGACATCGACCCGGCGCGTCCGGGCAAGGAGATCTTCACCGTCCATGAGGGCGGAATACACGCGCCGTACGGTTATGCAATGCGCGACGCCAGCAACGGGAAAGTCCTGTTCGGCGCCTATTCCGGGAAGGACACCGGCCGCGGCATGATCGGCGATGTTGATCCCGCCATTCCCGGAATCGAGGTCTGGGCCATGGGGATGCAGACGGCAGACGGCCGCCCCCTGTCCGCCAGCACTCCCGGCACCAACATGAGCATCAAATGGGCCGCGGACATGACCACCCAGATCATCAACGGCTCCGGGGACCAGACACCCACCATTGACGACTGGAAGCGCGGCCGCCTGCTGACCGCCGACGGTACCCGCACCAACAACGGCACCAAAGGCACACCCAGCCTGGTGGCGGACGTGGTGGGTGACTGGCGTGAAGAGATGCTGGTCAGGACCGCCGACAGCTCCGCCCTGCGCCTCTACCTGAGCACCGAGGTAACCAACCACAAGCTGTACACGCTGATGCACGATCCGCAGTACCGTGCCGAAGTCGCCCGGCAGAACACCACCTACAACCAGCCCTCCTACACGGACTTCTACTTCGCATCCGACATGGACTTCGGCAACGTCCCGCTGCGGGCCGCCTGGCTCCCGGGCAGCGTCAAGGCCCTGCAGTATGTCCTGGAAGACCTGACGGACTCCGGCGATGTTTCCGGGCCGGTGGCCAGCCAGCTCAATGCCAGTGTGGAGCAGGCGCAGAAGGCCGTTGCCGACGGCGACAGCGCCAAAGCCGGCCAGGCCATCCAGCGGTTTGTCGACTTCCTTGGCCAGCAGAAGAACCCTGACAACGTTTCCGAAGCCGCCCGCAGCGTCCTGGGCTACAACGCCGGAAATATTCTGCGGGCGTTCAAGGGCTAGMNPSRKSVRHLSGAAAAMALTVGCLASPAAAVETSAIPTTAGVQLDHLDRGLVAAGTTEGVFLSWRLLGHEATGSTATGLTGTDFAVYRDGHKLATVTDSTNYLDAGGTAASAYEVRAVVGGVELDRSATATAWAGNFKDIPLKKPADGVTPAGQAYTYAANDASVADVDGDGQYEFIVKWDPNNSKDVSQVGYTGNTYVDTYKADGTLLHRIDLGVNIRSGAHYTQLLVNDFDGDGRAEMMMKTAPGTRTIPYKDGNGAGGSFISLLQRDIDAGYSHGDDYRMSAEDYYQHMVDTFLGWTEHPEVKAGNWPATLEEAFGIAPKYQYPLSRTDAEAVTDYFMDVYAPSRSTRNNLRAFEGFIVSGPEYLTVFEGATGKELKTVEYTPGRHDDGLMWGDYAMARIEPGNRVDRFLAGVAYLDGQKPAAVFARGYYTRTTLASYTWDGTTLSPVWNVDSGWAPMTNPFNDSPHGRDGSDPVFGRLTTQGFHSLSASDVDGDGKQEIVYGAATIDDDGSLLYSSFDTMPAGSATPGSEARLGHGDAMHVTDIDPARPGKEIFTVHEGGIHAPYGYAMRDASNGKVLFGAYSGKDTGRGMIGDVDPAIPGIEVWAMGMQTADGRPLSASTPGTNMSIKWAADMTTQIINGSGDQTPTIDDWKRGRLLTADGTRTNNGTKGTPSLVADVVGDWREEMLVRTADSSALRLYLSTEVTNHKLYTLMHDPQYRAEVARQNTTYNQPSYTDFYFASDMDFGNVPLRAAWLPGSVKALQYVLEDLTDSGDVSGPVASQLNASVEQAQKAVADGDSAKAGQAIQRFVDFLGQQKNPDNVSEAARSVLGYNAGNILRAFKGPGPT0018715_56DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONSPLANT_MEMBRANE_RHAMNOGALACTURONAN_ENDOLYASE,PGPT0018715-yesW-K18197NANA
D1-29_00440666hypothetical proteinATGGGTGGCAGGTCGGAGAAAGAGGCGCTCTTCGATGCATTCGCTTCAGTGGCGACAGCCCTTGGCAGCGGCCGCCGTGTAGAGATTGTGGACGTACTTGCCCAGGCAGAACGTCCTGTCGATGACGTCGCGCGGGAAATTGGGCAAAGCGTGGCGAACACTTCCCATCATCTCCAGCACCTATTGCGGTCCGGGCTCGTCACTTCCCGCCGCGAGGGCACCCGGATCTTTTACCGCCTCAGCAGCCCTGCCGTGGCCAAACTTTGGGCTGCAGTGCGCCTTGTGGCTTCAGATCATGTTGCCCAACTCAACGACCTCGCAGCCGCATACCTCGGAGACCGCTCGGTGTTGAGCACCATAACCAGGGGGGAACTGAAGGACAGGCTGTCGAGAGGCGACATTGTTGTGCTTGACGTTCGGCCCGAGAGTGAATTCCGGTCGGGTCACATTGCCGGCTCGGTGTCCGTCCCGGCCAAAGAGCTGGTGGGCCGGCTGCGGGAGCTGCCTGAAGACAAAACTGTGGTTGCCTACTGCCGCGGCCCGTACTGCGTGTTCGCTGACGACGCCGTCAGGACCCTGCAGGGCCACGGCATTCCAGCCGTGAGACTGGAGGACGGCTATCCCGAGTGGGAGGCAGCCGGCCTGCCTGTAGAAACCAACCTGTAAMGGRSEKEALFDAFASVATALGSGRRVEIVDVLAQAERPVDDVAREIGQSVANTSHHLQHLLRSGLVTSRREGTRIFYRLSSPAVAKLWAAVRLVASDHVAQLNDLAAAYLGDRSVLSTITRGELKDRLSRGDIVVLDVRPESEFRSGHIAGSVSVPAKELVGRLRELPEDKTVVAYCRGPYCVFADDAVRTLQGHGIPAVRLEDGYPEWEAAGLPVETNLPGPT0004735_10DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
D1-29_00441786arsMArsenite methyltransferaseATGAACATCCCGACCAACACAACATCCGTCGACCGCGACGTGCTGGAGAGCAAAGTTAAGCAGCTTTATCGGGAAGTGGCCCAGAACCCCGCCGGCAGCTACCACTTCCCGACCGGACGCAGCCTTGCGGAACGGCTAGGGTATCCGCGCTCGGTTTTGGAGCGGGCCCCCGACGGTGCTGTCGAATCCTTCGCCGGCGTCGGTTACGCCTTCGACCTGGCGGGCCTCGCGGAGGGTGAAGAGGTCCTGGACCTCGGTTCCGGGTCAGGACTGGACTCCTTCGTCGCAGCCCTCAAAGTGGGCCCTCGCGGGCGCGTTGTCGGTTTGGACATGACGGAGGAACAGATTGCCAAGGCGGAGAGCCTGCGAACATCCGAGGACTATTCCCGGGTCACGTTCGTGAACGGCCATATCGAGGCGCTTCCTTTCGAGGACTCAAGCTTCGATTGCGTCATATCCAACGGCGTCATCAACCTGTCCCCGGACAAGTCGGCCGTATTCCAAGAGGCGGCGCGGGTGCTTCGGCCCGGCGGCCGCCTGGCAATCACGGACATCGTCACCGCCCAGGAACTCTCCACGCAGATCGTGTGCAACGCCGACCTCTGGGCCGCCTGCATTGGCGGAGCCGCACAGTCCGACACGTATCAGCAGCTCATCGCAGACAGTGGATTCGTCCTTGAACAACTTCGGACGAATGCCTACGAGTTCCTCTCCGACAGGTCCCGCAAAGCGGCCGTGAAATATGGGGTCACGAGCGTATCTATCCTCGCCACCCCCATTAAGTAAMNIPTNTTSVDRDVLESKVKQLYREVAQNPAGSYHFPTGRSLAERLGYPRSVLERAPDGAVESFAGVGYAFDLAGLAEGEEVLDLGSGSGLDSFVAALKVGPRGRVVGLDMTEEQIAKAESLRTSEDYSRVTFVNGHIEALPFEDSSFDCVISNGVINLSPDKSAVFQEAARVLRPGGRLAITDIVTAQELSTQIVCNADLWAACIGGAAQSDTYQQLIADSGFVLEQLRTNAYEFLSDRSRKAAVKYGVTSVSILATPIKNANANANANA
D1-29_004421026hypothetical proteinGTGGTAAGGCCCCTGAGCCTTCAGGCCGACACTGTGGCGCCGAGGAACATCCTGTTTATCGGTGGAACCGGGGTCATCAGCGCGGCGGCGGCTGAACGCGCCGTCGCCCTGGGCCACCGGCTCACCATCCTCAACCGGGGCCGCTCCGCGGAAAGACCCGCCGCCGATGGCGCCGAGATCCTGCACGCCGACGTCCGTGATGCCTCCGCTGTGCGGGAGGTGCTCGGCGGACGGGAGTTCGACGCCGTCGCGGACTTTATTGCCTTCACTCCGGACCAGGCGCGGAACAGCATAGAGCTGTTCCGCGGCCGGACCGGACAGTACGTCTTCATCAGTTCCGCCTCCGCCTACCAAAAGCCGCCCACCCGGCTTCCCATACTGGAATCCACGCCGCTGAAGAACCCGTTCTGGCAGTATTCACGGGACAAGATCGCCTGTGAGGACCTGCTGTTTGAGGCCTACCGCACTGAAGATTTTCCGGTCACGGTGGTCCGCCCGTCGCATACCTACGATCGCACCAAGATCGCCATGGTGGGCGGCTGGACGGATATCCACAGGATGCGGGAAGGACTTCCTGTCCTGGTCCACGGCGACGGCACCTCGCTCTGGACGTTGACCCACAGCCGTGACTTTGCCAAGGCCTTTGTGGGCCTGCTGGGCAGGCCGCAGGCAGTGGGTGAGAGCTACACCATCACCTCGGACGAGTACTTGCCGTGGAACCAGATCTACCAGCTTTTCGCCCGTGCGGCCGGGGTTCCCGAGCCCGAACTGGTCCATGTGGCCTCGGAGACCATCGCCGCGCACAACCAGGAACTCGGCGCCAATCTGCTGGGCGACCGCTCGCACTCGGTGGTGTTCGACAACACCAAAATCAAGTCCCTGGTACCGGATTACGCGGCCACCATCCCCTTCGCCGATGGCGCCAGGGAAATTGTGGACTGGTACGACGCCCATCCCGCGCTCCAGGTGGTGGACCCGCAGTTCATGGAGCTGAGCGAGCGCCTGACCAAATGGGCGCGAAGCTGAMVRPLSLQADTVAPRNILFIGGTGVISAAAAERAVALGHRLTILNRGRSAERPAADGAEILHADVRDASAVREVLGGREFDAVADFIAFTPDQARNSIELFRGRTGQYVFISSASAYQKPPTRLPILESTPLKNPFWQYSRDKIACEDLLFEAYRTEDFPVTVVRPSHTYDRTKIAMVGGWTDIHRMREGLPVLVHGDGTSLWTLTHSRDFAKAFVGLLGRPQAVGESYTITSDEYLPWNQIYQLFARAAGVPEPELVHVASETIAAHNQELGANLLGDRSHSVVFDNTKIKSLVPDYAATIPFADGAREIVDWYDAHPALQVVDPQFMELSERLTKWARSNANANANANA
D1-29_00443972yajO_1COG06671-deoxyxylulose-5-phosphate synthase YajOATGCAGTACACCCACCTTGGCCGCTCCGGCCTCAAGGTTTCCCGCCTCTGCCTGGGCACCATGAACTTCGGCCCGAAAACCGAGGAAGCCGATTCGCACCTCATCATGGACTCGGCGGTGGACTCCGGCATCAACTTCTTCGATACCGCCAATGTTTACGGCGGAACAGAACACCGCGGCTGGACCGAAGAGATCATTGGCCGCTGGTTCGCCACGGGCGGCGAGCGCCGCGAACGGACCGTGCTGGCCACCAAGCTCTACGGCACCATGACGGACCGGCCCAACGAGTCCAGGCTGTCCGCGCTGAATATCCGCCGGGCCCTGGATGCCAGCCTCAAACGCCTGCAGACGGACTACATCGACATCTACCAGTTCCACCACATCGACAGGGACACCCCGTGGGACGAGATCTGGCAGGCCATCGAGGTGGCGGTGCAGCAGGGCAAGATTCTGTACTCAGGCAGCAGCAACTTCGCCGGCTGGCACATCGCCCAGGCCCAGGAGGCTGCGCGGGGCCGGAACTACACGGGCCTTGTCAGCGAGCAGTCCATTTACAATCTGTTCCGCCGGGAGGTGGAACTTGAGGTCATCCCGGCCGCCCGGGAGTATGGCCTGGGCCTGATCCCGTGGTCCCCGCTGCAGGGCGGCCTCCTGGGCGGCGTGCTCAAAAAGGAACGGAACGGAGTCCGGCGAACTGAAGGCCGGGCGCTGGAAACCCTGAAGAAGCACGAGGACCAGCTCCGGCAGTACGAGGATTTCGCTGATGAGCTCGGCCACGAACCGGGCGACGTCGCCCTCGCCTGGCTGCTGCACCAGCCTGCGGTCACGGCACCGATCGTGGGACCCCGTACGCAGGAACAGCTCGACGCCGCCATCCGGGCTTTGGAGGTTACCCTCGACGCCGACGCCCTCAAGCGCCTCGACGACATCTTCCCGGGGCACCGCACCGCGCCGGAAGACTACGCGTGGTAAMQYTHLGRSGLKVSRLCLGTMNFGPKTEEADSHLIMDSAVDSGINFFDTANVYGGTEHRGWTEEIIGRWFATGGERRERTVLATKLYGTMTDRPNESRLSALNIRRALDASLKRLQTDYIDIYQFHHIDRDTPWDEIWQAIEVAVQQGKILYSGSSNFAGWHIAQAQEAARGRNYTGLVSEQSIYNLFRREVELEVIPAAREYGLGLIPWSPLQGGLLGGVLKKERNGVRRTEGRALETLKKHEDQLRQYEDFADELGHEPGDVALAWLLHQPAVTAPIVGPRTQEQLDAAIRALEVTLDADALKRLDDIFPGHRTAPEDYAWPGPT0010855_19DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-ERYTHROMYCIN_METABOLISM,PGPT0010855-eryBII-K13315NANA
D1-29_00444822COG0656putative oxidoreductase/MSMEI_2347ATGTCAGAGCTGACCCTGAACAACGGCGTCACCATCCCCCAGCTGGGTTTTGGTGTTTTCCAGGTGCCGCCGGAAGATACCCAACGAATTGTCGAAGATGCTCTGGAGGCGGGCTACCGGCACATCGATACCGCCGCGGCGTATCGGAATGAGGCAGGCGTTGGCGCCGCCCTTGCTGCGTCGGGCATCCCGCGTGAGGAAATCTTCGTCACCACCAAGCTCCGCAACGGCGAACAGGGCCGTACGCAGGAAGCTTTCCAGAACAGCCGCAAGGCTTTGGGCCTGGACGTCATTGACCTGTACCTCATTCACTGGCCGGTCCCTTCACAGGGCCTGTATTCCCAGGCCTGGAAGGAGATGGAGCGGCTCTACAACAACAACCAGGTCCGTGCCATTGGTGTGTCCAACTTCCTCGCCGAGCACTTGGACAGCCTGCTGGAGTCGGCCGAGATCGTGCCGGCCGTGAACCAGATAGAACTCCACCCGAGCTACCAGCAGGCAGGTCTTGCCGCCAAGTGCCGTTCGCTCGGCATCGCAGTTGAGGCCTACAGCCCACTGGGCCAGGGCGGGGACCTCAACGGTCACGCAGTGACCGCCATTGCACAGAACCACAACGCCACCACCGCGCAGGTAGTACTCGCCTGGCATCTTGCGGCCGGCAATATCGTCATTCCAAAATCTGCCAACCCATCGCGGCTCCGCGAGAACTTCGCCGCATCGTCCCTGGTCCTCAGCGACGAAGAACTGGAATCCATCAGCGCCCTGGAATCGGGTGCGCGCATTGGGGCCGATCCCGCCGTCGCCTCCTTCACGCAAATGTAGMSELTLNNGVTIPQLGFGVFQVPPEDTQRIVEDALEAGYRHIDTAAAYRNEAGVGAALAASGIPREEIFVTTKLRNGEQGRTQEAFQNSRKALGLDVIDLYLIHWPVPSQGLYSQAWKEMERLYNNNQVRAIGVSNFLAEHLDSLLESAEIVPAVNQIELHPSYQQAGLAAKCRSLGIAVEAYSPLGQGGDLNGHAVTAIAQNHNATTAQVVLAWHLAAGNIVIPKSANPSRLRENFAASSLVLSDEELESISALESGARIGADPAVASFTQMPGPT0001320_2181DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
D1-29_00445897hypothetical proteinATGGGTCAAAGCGCCGAGTTCGGAAAATTCCTGAAAGCCATGCGGTCCCGCCTAAGCCCGGAGGATGCCGGGACTGACGGCACCGCCGGAGTACGAAGAGTACCCGGGCTCCGGCGCGAGGAAGTAGCGCGGCTGGCAGGGGTCAGCACGGACTATTACATCCGCCTGGAGCAGGGCCGGAACATCCATCCCTCGCGAACGGTCCTTGATTCGGTGTCGCGGGCCCTCCGCCTGGACAGCAGCGAGCACGCGCACATGATGGACCTCCTGGAAAACTGCTCGGGCACCAGCCGAACTCCCGGTCCTCCCCAGGGCGTGCGCCCCGCCCTTCGCCAGCTCCTTGATGCGGTGGGGGACATCCCCGCATTGGTGCTGGGCCGCCGGACCGACGTCCTGGCCGGCAACAGGATGGCATTCCTGTTGTTCACCGACTTCGGGGAGCTCCCCGCCCAGGAGCGGAACCTCACCCGCTGGCTGATTCTGGACCCCCTGGCCAGGGAGCTCTTCAGGGATTGGAAGGCCGTGGCTGCGGAAGCCGCAGGTGCCTTGCGGGTGGATGTGGGACGGCACCCCAATGATCCGCAGGCCAACCAGTTGGTGGGTGAGCTCGCGGTCCACAGCGAGCACTTCCGCCATTGGTGGGCAGGGCACAAGGTAGCCACGCGGTCTGCAGGCACGGTCCGGCTCCACCACCCCGCCGTCGGCGATCTGGAACTGAACTTTGAGAACCTGGTTCTCCCCGACGATCCGGACCAGCTGCTGCGGGTGTTTTCCGCCAAGCCCGGGTCGCCGTCGTCGGACGCCCTGACGCTGCTGGGGAGCCTCGGGGCGGACGGTCAGCAGTCCCGCCAGGGAGTGCACACTGAAGCCCTTCCGCCTGCCGCGGTGGAGGGTTGAMGQSAEFGKFLKAMRSRLSPEDAGTDGTAGVRRVPGLRREEVARLAGVSTDYYIRLEQGRNIHPSRTVLDSVSRALRLDSSEHAHMMDLLENCSGTSRTPGPPQGVRPALRQLLDAVGDIPALVLGRRTDVLAGNRMAFLLFTDFGELPAQERNLTRWLILDPLARELFRDWKAVAAEAAGALRVDVGRHPNDPQANQLVGELAVHSEHFRHWWAGHKVATRSAGTVRLHHPAVGDLELNFENLVLPDDPDQLLRVFSAKPGSPSSDALTLLGSLGADGQQSRQGVHTEALPPAAVEGNANANANANA
D1-29_004461926hypothetical proteinGTGAATCACCAGCTGGTAGTCAGGATCCTGACCGCACTCACCATCGTCCTGGGAGTGAACTACATCCTGTGGCGGTGGATGTTCTCCGTGAACTGGGCCGCGGCCTGGATCAGTGTGCCGCTGGCCATGGTGGAGACCTACAGCCTGATAAACGCCTTCCTTTTCGGGGTCACCATGTGGCGGCTGCGTCAGCGGCCTGCTCCCCCGGCCGCGGAAGAAGGGCTGGATGTGGATGTCTTCATCACCACCTATAACGAACCCGTTGATCTGGTCATGACAACGGCGGTGGCCGCCCGGAACATCACCTATCCGCACAAAACCTGGATCCTGGACGACGGCGCACGGCCGGCCATGCAGCAGGCTGCCCGGGAGGCCGGCGTCGGCTACATCACCCGCTCACGGGACTGGGACGATCTCCCCCGCCATGCCAAGGCGGGCAACCTCAACAACGCCCTGGCCGCCACCGAAGGTGAGTTCCTGCTGATCCTGGACGCGGACCAGATCCCGGAGCCGCACATCCTGCACCGGATGCTTGGCCACTTCAGCAATGACAACGTAGCCCTGGTGCAGACACCGCAGTGGTTTGCCAATGTCCTGGACGACGACATCCTTGGCAGCCAGGCGCCGCTGTTCTACGGCCCCATCCAACAAGGCAAGGACGGCTGGAACGCCGCCTTCTTCTGCGGCTCCAACGCCATCATCCGCCGCGAGGCCCTCATGCAGATCGGCGTCACAGGCTATGTCCAGGGCGTCCGGACCTCCGTTGAGCTGGCCCTGAAAGGTGCGGACAGGGTCATTGCCAGGGCTCGCTCCGAGCACGGCAGCACCGGACCCCACGTGGCCATGGCGCTGGACCAGATCGGATCGGCGGTACGCAGCGCACGTGATGAACTGAAATCGGACCATCCCGTTGCGAATGTCACCTATGATTTCCAGCGCAAGGTGCACCTGGCCGCACGGAACGTGGTCACGATGGACATCGCCTCGATGACAGCGGACCTGAATACTATCGCCGGAATCTCCGGCAGCATCAGCCGGGTCGATATCGGTGAGGACGCAGTGGACCGGCTGGCCAGCCGCGACTGGTCGCCCATCAGTGCCATCGATCCCGTCCAGAAGCTGGTCCGGGCGGTAGACGTTGACCGCTACCTTGAGGCCCTGCCCGTGATGCCGCTGGCCACAAATTCAGTCACCGAAGACATGGCCACCTGCATGCGTCTGCACGCCGCAGGCTGGGAAAGCGTCTATCACCATGAAATCCTCGCCAAAGGCCTGGCCCCCGAGGACCTTCGTACCATGCTGACCCAGCGGCTGCGGTGGGCCCAGGGCACCATGCAGGTTTTCCTGCGCGAAAACCCGCTCTTCCAAAAGGGGCTCAAGGCGGGGCAGCGCCTGATGTACTTCGCCACAATGTGGAGCTATCTCTCCGGTTTCGCCGCGGTGGTCTACATCGCTGCGCCCATCATTTTCCTGTGCTTCGGCGTGATGCCCGTCGCCGCGTTCAGCACCGACTTTTTCGCCAGGCTGATACCTTTCCTGATCCTCAACCAGATCCTGTTCTTCGTGGCGGCCAGGGGCAGGAAAACCTGGCGCGGCCAGCAGTACAGCGTGGCGCTCTTCCCGATCTGGATCAAAGCCTGCACGACGGCGGCAGGCAACGTCCTGTTCGGCCGCAACCTCGGCTTCGCTGTCACCCCCAAAACCCGGCAGGACGGCGGCCCGCCCTGGTCCCTCATCCGGCCCCAGCTCGTGGCCATCGCCGCCCTCCTGCTCGCCGCCGTCGTCGGTTTGATCAGAATGTTGTCCGGGCTGGGCGCGCCCGCCGGGACCCTGGTGAACATTGCCTGGGTTGTTTTCGACCTGCTGATCCTCAGCGTCATCATCCGCGCAGCCCTCTACAAGGGCTTCACCGGAACAAGGGCTTGAMNHQLVVRILTALTIVLGVNYILWRWMFSVNWAAAWISVPLAMVETYSLINAFLFGVTMWRLRQRPAPPAAEEGLDVDVFITTYNEPVDLVMTTAVAARNITYPHKTWILDDGARPAMQQAAREAGVGYITRSRDWDDLPRHAKAGNLNNALAATEGEFLLILDADQIPEPHILHRMLGHFSNDNVALVQTPQWFANVLDDDILGSQAPLFYGPIQQGKDGWNAAFFCGSNAIIRREALMQIGVTGYVQGVRTSVELALKGADRVIARARSEHGSTGPHVAMALDQIGSAVRSARDELKSDHPVANVTYDFQRKVHLAARNVVTMDIASMTADLNTIAGISGSISRVDIGEDAVDRLASRDWSPISAIDPVQKLVRAVDVDRYLEALPVMPLATNSVTEDMATCMRLHAAGWESVYHHEILAKGLAPEDLRTMLTQRLRWAQGTMQVFLRENPLFQKGLKAGQRLMYFATMWSYLSGFAAVVYIAAPIIFLCFGVMPVAAFSTDFFARLIPFLILNQILFFVAARGRKTWRGQQYSVALFPIWIKACTTAAGNVLFGRNLGFAVTPKTRQDGGPPWSLIRPQLVAIAALLLAAVVGLIRMLSGLGAPAGTLVNIAWVVFDLLILSVIIRAALYKGFTGTRAPGPT0022275_1288DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0022275-bcsA|yhjN|celA-K00694NANA
D1-29_004471404hypothetical proteinATGGTCGGTACCGGCCGGCAAAGGGAACAGGCGCCCGGCACACTCTTGCCCCGCCGGGGCCTGATTCCGCTCTTGCTGGGAGTATTCATGCGTCATTCTTTCGTTCGATGGGTCGTGCCCGGCGTGATCCTGTCACTGGCAGTTCTGTTCGGCATAGCGGCACCGGCCCAGGCAGCCGGCCGCGCCGAAATCAGCCTGAGCGCCTCGGCGGGCCCGGCTGGATCCTCAGTCACAGTGACAGGGTCCGGCTTCGCCCGGCAGAGCCCCGGTACGCTGACTGCCGGAACCAACACTGTTCCCATCACCACCAGTGCCACGGGATCGTTTTCCGCCTCGGTGACCATCCCGCCCACATCGGCCGCCAACGTTGTGGTCACTGCGAAGACAGGGCCCCGTTCCGCATCGGCACCGTACGCCGTGACGTACAGCCCGGCTTCCACCACGGCTGGCAAGGACAGCGCCCTTGCCGTTGCGGAAGCGCCGGTTACCATGGCAGCCCGAACCAAGACAGGAACCACAACGGCAACCACCACGCCTCCCATCAGTTCCGACTCCCTGCGGTTTGGTGTGTCCACGCCCGGAGGCCCCTGGGCTGCCAGCGAACTCGACGCCGTGGCCACCCTGGTGAACGAAAGCCCGTCCATCGTTATGTCGTACAAGGACTTTGGCCAGGCCGCTCCCATCGCAGAACTGAATGCAGTCAACGCCCGCGGAGCCACGAGCCTGGTCACCTGGGAACCTTGGCTGTGGGGCGGAAACGGCGCCAATCAGCCGGCCTTCGCACTGGACCGGATCACCGCCGGAGACTACGACACCTACATCGCCAAGTGGGGCACGGCGCTGGCATCGTGGGGTAAGCCGGTAATGCTCAGGTTTGCTCACGAGATGAACGGCAACTGGTATCCCTGGGCGGAGTCCGCCAACGGCAACCAGGCCGGGGATTATGTGGCCGCCTGGCGGCACGTCCACGACGTAGTGGCCGCAACCGGAGCCAGCAACGTGCAGTGGGTCTGGAGCCCCAACGTTCCCTACTGGGGTTCAACGCCTCTGGCCGGGCTGTATCCAGGTGCCGGGTATGTCGACGCCGTTTCACTGGACGGCTACAACTGGGGAACCTCCGCATCCTGGAGCACCTGGACGTCGCCGGCATCGCTGTTCGGTGAGGGACTGACCGCCCTTCGCAGCCTGGCCCCGGGCAAGCCGATCATGATCTCCGAGACGGGGTCTGCTGAAGCCGGCGGGTCGAAAGCAAACTGGAACACTGCGCTCGTCTCCTACCTTGTGGCCCAGCCGGACATCACAGCGCTGGTTTGGTTCCATCACAACAAGGAAGTGGACTGGCGGATCAACAGCTCCACGTCCTCGGCGAGCGCCCTCGCGGCTGCCCTGGCTGCCAGGAACTGAMVGTGRQREQAPGTLLPRRGLIPLLLGVFMRHSFVRWVVPGVILSLAVLFGIAAPAQAAGRAEISLSASAGPAGSSVTVTGSGFARQSPGTLTAGTNTVPITTSATGSFSASVTIPPTSAANVVVTAKTGPRSASAPYAVTYSPASTTAGKDSALAVAEAPVTMAARTKTGTTTATTTPPISSDSLRFGVSTPGGPWAASELDAVATLVNESPSIVMSYKDFGQAAPIAELNAVNARGATSLVTWEPWLWGGNGANQPAFALDRITAGDYDTYIAKWGTALASWGKPVMLRFAHEMNGNWYPWAESANGNQAGDYVAAWRHVHDVVAATGASNVQWVWSPNVPYWGSTPLAGLYPGAGYVDAVSLDGYNWGTSASWSTWTSPASLFGEGLTALRSLAPGKPIMISETGSAEAGGSKANWNTALVSYLVAQPDITALVWFHHNKEVDWRINSSTSSASALAAALAARNNANANANANA
D1-29_00448219hypothetical proteinATGATGAAACGCATCGCCCTGCTCAAGGAACGCCAGGCCCCCGGCGACGGACAGGGTCCGGCGCCCACCGGTTCGCACTGCCCTGCCTCTGGACTTTGGGCACCCGGCTCGGACCCCCAGGCCGTGCAGCTGATCTTCGAGGGCCAGGTCTTCCCGGCTTTCGACGGCGTCCCCACCGTATGGCGCCGGTGCGCGGCCGGAACTGTGTCGGCCGGTTAGMMKRIALLKERQAPGDGQGPAPTGSHCPASGLWAPGSDPQAVQLIFEGQVFPAFDGVPTVWRRCAAGTVSAGNANANANANA
D1-29_00449213COG3360DodecinTTGTCCAATCACACGTACAGCATTTCTGAAATTGTCGGTACCTCAACCCAGGGCGTGGACGACGCCGTCCGGAATGGGATCGCCAAGGCGTCCCAGACCCTCCGCAACCTGGACTGGTTCGAAGTGAAGGAGATCCGCGGCCACCTGGAAAACGGTCAGATCGCCGACTGGCAAGTCACCATCAAGCTCGGTTTCCGGCTGGAAGAACACTAGMSNHTYSISEIVGTSTQGVDDAVRNGIAKASQTLRNLDWFEVKEIRGHLENGQIADWQVTIKLGFRLEEHNANANANANA
D1-29_00450897ngcG_2COG0395Diacetylchitobiose uptake system permease protein NgcGATGGCTCTCCTCGAACTACCACTCAAGAACAAGCAAAAGAAGGACGTGCCCGCGGAGGACGCGCTCACCGGGACCACCGGGACACGCTTCTCACGGCACCTGATCCTGTGCCTGGTTGGCCTACTGATGCTGTACCCGCTGCTGTGGCTCATCTCAAGCTCGTTCAAGCCCAGCAACGACATCTTCCGGCAGCTCGGACTATGGCCGGAAAACTGGGACTTCAGCAACTATGAACAGGGCTGGACCGCCCTGAACCAGCCTTTCCACGTCTACCTGGTCAACTCGCTGATTGTTGTGGTGTTCTCCATTGTGGGCAACATCTTCTCGTGCGCCTTGGCCGCCTACGCCTTCGCCCGGATGGAGTTCACCGGCCGGAAGCTGTTCTTCGCCCTCATGCTGGGAACCCTGATGCTGCCGGGCCACGTGCTCCTGGTGCCGCAGTACATTATTTTTTCCCAGCTGGGCTGGCTGGATACCTACCTGCCGCTGATAGTGCCGAACTTCATGGCCACCAACGCGTTCTTCATCTTCCTCATGGTCCAGTTCATGAAGGCACTGCCCAAGGAGCTCGACGACGCCGCGCAGATCGACGGCTGCGGCCCGTTCCGGACGTTCCTCCGGGTCATCCTCCCCCTGTGCGTGCCGGCCATGGCCACCACCGCCATCTTCACCTTCATCTCCACCTGGAACGAGTTCTTCGGGCCACTCCTCTACATCCAGAACCAGGACCTCTACACGGTCCCGCTGGCGCTACGGGCGTTTATGGACTCCGAGGGCCAAAGCATGTGGGGCCCAATGTTTGCCATGTCCGTGGTTTCCATCGCCCCTATCATCGGCTTCTTCATCGCGGGCCAGAAGTACCTCATCAACGGCATCGCCACCACTGGGCTCAAGTAAMALLELPLKNKQKKDVPAEDALTGTTGTRFSRHLILCLVGLLMLYPLLWLISSSFKPSNDIFRQLGLWPENWDFSNYEQGWTALNQPFHVYLVNSLIVVVFSIVGNIFSCALAAYAFARMEFTGRKLFFALMLGTLMLPGHVLLVPQYIIFSQLGWLDTYLPLIVPNFMATNAFFIFLMVQFMKALPKELDDAAQIDGCGPFRTFLRVILPLCVPAMATTAIFTFISTWNEFFGPLLYIQNQDLYTVPLALRAFMDSEGQSMWGPMFAMSVVSIAPIIGFFIAGQKYLINGIATTGLKPGPT0016540_2314DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00451954lacF_5Lactose transport system permease protein LacFATGTCAGTGCTGACCAAGCAGGTCCCCGGCTCAGCCGCTGCGCTGGCAGAGCAGTCCGGCGGACAGCGCAGGCGGGGTAACTCGCGCCGTACCAACCAGCGTTCGGGCTATTTGTTCCTGCTGCCATGGTTCCTGGGCATGCTGTTCACCATCATTCCGTTCTTCGCCTCGCTGTACCTGGCATTCACGGACTACAACCTGTTCACGGAGCCGAACTTCGTAGGCCTGGCAAACTTCCAGGCGATGTTCGAGGACCCGCGGCTCCTGCAGTCCCTGAAGGTCACGTTTATCTACACGTTCGTTTCTGTGCCCATCTCCCTGGCAGTGGCCCTGCTGATAGCCCTTGTGCTGAACCGCGGCCTCCAGGGCCTGGCGATCTATCGCTCCGTTTACTACCTGCCGTCCCTGCTCGGTGGCAGCGTCGCGATCGTGATGCTGTGGCGCTACATCTTCGGCAACAATGGCATCGTCAACGGCGCCCTGGGTCTCCTCGGAATCCAGGGCCCGGCGTGGGTTACAGATCCCGAATTCGCGTTGAGCACCCTGATCGTCCTGAATGTGTGGACGTTCGGTTCGCCGATGGTAATCTTCCTCGCCGGCCTGCGGCAGGTGCCTTCCATGTACTACGAGGCTGCGTCCATCGATGGCGCCTCCAGCTGGCGCCAGTTCCGCAACATCACCCTGCCGCTGATCAGCCCCATCATCTTCTTCAACCTCATCATGCAGCTGATCGGCTCCTTCCAGACCTTCACCCAGGGCTATGTGATGAGCGGCGGAACCGGCGGGCCGGCAGATTCCACGCTGTTCTACAACCTCTACCTGTACCAGAAGGGCTTTACCGAGTTCGAGATGGGGTATGCCTCGGCCATGGCGTGGCTGCTGCTGATGATCATTGCGATTTTCACTGCCATCAACTTCATCGCATCCAAGTTCTGGGTCTTCTACGACAACTAAMSVLTKQVPGSAAALAEQSGGQRRRGNSRRTNQRSGYLFLLPWFLGMLFTIIPFFASLYLAFTDYNLFTEPNFVGLANFQAMFEDPRLLQSLKVTFIYTFVSVPISLAVALLIALVLNRGLQGLAIYRSVYYLPSLLGGSVAIVMLWRYIFGNNGIVNGALGLLGIQGPAWVTDPEFALSTLIVLNVWTFGSPMVIFLAGLRQVPSMYYEAASIDGASSWRQFRNITLPLISPIIFFNLIMQLIGSFQTFTQGYVMSGGTGGPADSTLFYNLYLYQKGFTEFEMGYASAMAWLLLMIIAIFTAINFIASKFWVFYDNPGPT0016535_2433DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_004521305yesO_1COG1653Putative ABC transporter substrate-binding protein YesOATGAAGAAGACAGCAAGCACCCCCATCCCGCGCAGGATCATCCTGGGTGCAGCGGTGACCGCCGCGGGCCTGGCCCTCAGCGGTTGCGGCGGGGCATCCTCGCCCAGTTCCGGCGGCAATGTGGAGCTGAACTTCGTGTACTGGGGCGACTCCAACCGCGCCAAGATGACCGATGCGGCAATCAAGATCTTCGAGGAGAAGAATCCCGGCATCACCGTTAAGAGCGAGTATCAGGACAGCGGACCGTACGCGGACAAGCTGGCCACCCGTTTCGCGGGTGGCAATCCACCGGACGTCCTGAACATGGCAAACCGCAGCTTGCTGGAGTATGCCCAGCGCGGCACGCTCGCAGACCTCAGGTCCATGCAGGAACTCGACCTGGCAGACATCCCGGACACCATCCAAAGTCGGGGTGAAGTGGATGGCAAGCTTTACGGCCTGGCCACAGGCGTGACCACTATCGGCATGGTGGTCAACAAGACCATTACGGACGAGGCCGGCGTCACCATCCCAGACGACAAGATCTGGAGCTGGGAGGACTACGCCAAGTTCGCCACCGAAGTCACGCAGAAGACCGAGGGCAAGGTATACGGGGCCGGTTATGACGTTGCCACCGAAACCGGTCCCATTCTGTTCGCCAGGCAGCGCGGCGAGGACTTCTACACCAAGGACAACAAGCTCGGGGTCAGCGAGGAGACCATAAGGGAGTGGTTCCAGTACAGCGTTGACCTTCGCAGTGCCGGAGGCTATCCGCCGGCAGGCTTCTTTGAGCAGATCGGCGGCTCAGCCGCCCAGTCGTACCTCGCCAAGGGAACCGTCGCCTCGCAGATCATTCCGATCAACAACTACAAGGCCTACAACGAAGCTGCCGGCGGCAACGTGCTCCTGCTCCGTATGCCCGGTGAAACCACCGAGGAACGCCGCGGCTACTCAGCGGATCCCAGCATGCTCTGGTCCATTGCTGCCAAGTCGAAGCATCCCAAGGAAGCTGCAAAACTGCTGAACTTCCTGATCAACGATGCAGACGGAGCTGCGGAAACGCTCACCCAGCGCGGGGTGCCCATTAATCCGGAAGTTGCGGACGCCATCAAGCCAAAACTAAGCAAGGACGACATCGCCTTCGTGGACATGGTGGCCGCCATTCAGGAAGACGACCTGGCCCCTGCATATGTGTACCCCAAGGGCGCAAGCGTGGTGGCCGACACCCTCAAGCAACTGGCCACCGAAGTCGAGTTCGGCCGCGTAACCCCTGCTGACGCCGCGAAGACCTTCCTCGAGAAGAGCAATGCAGCCATCAACAAGTAAMKKTASTPIPRRIILGAAVTAAGLALSGCGGASSPSSGGNVELNFVYWGDSNRAKMTDAAIKIFEEKNPGITVKSEYQDSGPYADKLATRFAGGNPPDVLNMANRSLLEYAQRGTLADLRSMQELDLADIPDTIQSRGEVDGKLYGLATGVTTIGMVVNKTITDEAGVTIPDDKIWSWEDYAKFATEVTQKTEGKVYGAGYDVATETGPILFARQRGEDFYTKDNKLGVSEETIREWFQYSVDLRSAGGYPPAGFFEQIGGSAAQSYLAKGTVASQIIPINNYKAYNEAAGGNVLLLRMPGETTEERRGYSADPSMLWSIAAKSKHPKEAAKLLNFLINDADGAAETLTQRGVPINPEVADAIKPKLSKDDIAFVDMVAAIQEDDLAPAYVYPKGASVVADTLKQLATEVEFGRVTPADAAKTFLEKSNAAINKPGPT0016545_5975DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00453255hypothetical proteinATGGACGCTGGACTATCACAAGGCGGAAAGTTTCTGGACAAATCAATCAGAAATGCGGCCCCGATCCTTCTGAGCAAACCTTGGGGCTTCTCGGAGGAAAATATGAGTAAACGATTTCTAGCAAGAAAACCTTGTGACTGTCAACACAATTCTTTAGGGCTCGAGGAGCTGGTGAACGAGAAACTTTCTGTATTGCTTGCCGAAGACTTTCTGGATGGCTATGCTGATCCCCACACCGCTGATTCCCAAACCTGAMDAGLSQGGKFLDKSIRNAAPILLSKPWGFSEENMSKRFLARKPCDCQHNSLGLEELVNEKLSVLLAEDFLDGYADPHTADSQTNANANANANA
D1-29_00454933hypothetical proteinGTGGTCCCCTCCCCGTCGGCTGCCCTGGCCGCGGACCAGCCCCCTGCCGGGCAGTCCCTGGTGACGCACTGCACCGGACGGGCGCTGCCAATCACGAGCGCCCCACGGCCATACCTGCACCCGATAATGTCCCTCGCCGGTACCACCGTCACCGACGCGGAGCCGGCGGACCATCCCCATCACCTGGGGCTGTCACTCGCCTTCTCGGATGTCAACGGAACCAACTTCTGGGGCGGGTCCACTTTTACGCGGGGCGGCGGGCCCGTGCTGCTACCGAATCACGGCACCCAGGTCCCGTGGGGATGGCAGCACACCGCCGGCGGAGCAGCAGGGAATGTCACCTGGCGGTCAGAGAGCGGAAAGGAAGTCGCTCTCGAACGGCGAAGCTTCCACTACCTCAGCCATCCCGACCCCAAAACCTGGAGCCTCTCCGTGGCCTCGGTGATGGTTCCGGGAGCCGGCGTGAAGGAGCTGGTGGTGTCGTCGTCGGCCGTTAAGGGCCGGAACGGTGCCGGCTACGGTGGAATCTTCTGGCGGTTCGGCGCATGCGCCGGTGAGCCGGTGATCCTCTCCGCTGCCGGTCACGGTGAAAGTGCCGCCCACGGTTCGACGTCATCCTGGCTTTCCATCTCCATGAGGATCGATGGCGCACCCGTCGGCGTGGTCCTCTCCCAGGACGTCCTTGAGCCCCGAATCCATGCCCGGGACGGCGAAGGCCTCCTCCCGTGGTTCGTCCGGGCGGACGGCTACCTCGGCGCAGGGCCCGCCGTGGCGTGGGCCGAACCGGCACGTGCCACCAGCTCCCGTCCTTTGAGGCTGGCCCTCAACGCTGTGATCCACGACGGCCCGGTGGAGACCAGCGCCCACGCCCTTGACCTTCTTCAGCAGCACCCCCGAATCAGCCATACCAGGACACCCGACAGGACACCATGAMVPSPSAALAADQPPAGQSLVTHCTGRALPITSAPRPYLHPIMSLAGTTVTDAEPADHPHHLGLSLAFSDVNGTNFWGGSTFTRGGGPVLLPNHGTQVPWGWQHTAGGAAGNVTWRSESGKEVALERRSFHYLSHPDPKTWSLSVASVMVPGAGVKELVVSSSAVKGRNGAGYGGIFWRFGACAGEPVILSAAGHGESAAHGSTSSWLSISMRIDGAPVGVVLSQDVLEPRIHARDGEGLLPWFVRADGYLGAGPAVAWAEPARATSSRPLRLALNAVIHDGPVETSAHALDLLQQHPRISHTRTPDRTPPGPT0017992_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_004551581Beta-xylosidaseATGACAACCCGGCCCCCCACGCCCCTCTACACCAACCCCGTCCTGAACGGTGACTGGCCGGACCCGGACGCCGTACAGGTCGACGGGACCTACTACCTCATCGCCTCAAGCTTCAACCGCGTGCCCGGTTTGCCTGTCCTGCGGTCCCGGAACCTCGTGGACTGGGAACATGCCGGACACGCGCTCGCCGAACTGCCGCAAGGCAGCCACTACTCCCTGGTCCGGCACGGGAGCGGAGTGTGGGCGCCGGCGCTCAGGTATCACAACGGCCGCTTCTGGATTTTCTACCCGGACCCTGACCACGGCATCTTTGTGCTCAGCGCGGAAAGGGCAGAAGGGCCGTGGAGCGCGCCGCACCTGCTCTACGCCGGGCGCGGCCTCATTGATCCCTGCCCGCTGTGGGACGAGGACGGCGAGGCCTATCTCGTGCACGGTTGGGCCCAAAGCCGGATCGGCGTCAAAAACAGGCTCACCGTCCATCGGATGAGCCCGGACGCCGGCAGGCTCCTTGACAATGGCATCCACGTGATCAATGGTGCCGACCTGCCCGGCTACACCACCCTTGAGGGCCCGAAGTTCTACAAGCGCGACGGCTGGTATTGGATCTTTGCACCGGCAGGTGGCGTGGCAACGGGATGGCAGTCCGTGTTCCGCTCGCGGTCGCCGTTCGGCCCCTATGAGGAGCGCCGGGTGCTGGAGCAGGGGGAAACGGCAGTCAACGGACCCCACCAGGGGGCGTGGGTGACCACGCCTGAGGGCGAGGACTGGTTCCTACATTTCCAGGACCGCGGCCCCTTCGGCCGCGTGGTCCACCTCCAGCCGATGGGCTGGGGCGCCGACGGCTGGCCCTGGATGGGAGAAACCCCTGACGACGGCGGCACTGGAGTTCCGGTGGCCAGCCATACCTACCCGGCCGGTACCGTCCCTGAAGACGTGGCTCCGCCGACGAGTGACAACTTCACTTCCCCGTGGCTGGGGCCACAGTGGCACTGGCAGGCGAATCCGCTGGAATCGTGGTCGTTCCAGGGCGGGGGAGGGCAGCTGGTCCTCCGTCCGCAGGCCAATGATCCCGTGAACCTTCGGGAGCTGCCCAACGTCCTGGGCCAAATCCTTCCCGGCACGCCGTCTACCTTCACCACTGTGCTGGAGCTGGCTGATGTCCCGGAGGGCACCCGCGCCGGAGTGGTGGTTCTGGGTCAGCAGTACGCGTGGCTGGGCATCATCCGGACCACCAACGGCTACGTCCTGGGGAGCGGAAGGGGCGGAGAAGGCCCGCACGAACAACCGCTCGGGCGCCGGGTTCCCCTGGACAGCCCCAGGATTGAGCTCCAGATCCGCACTGACGGGACTCCCCGCTCCACCTTTGCCTGGCGGTCAGGGGCTGGCGAACCCTGGGAAGTGCAGGGCTGGAACTTCGATGTTGTCCAGGGGAAGTGGATCGGCGCGGAGCTCGGGCTGTTCGCCACGTCACCGCTGGGCTCGCAGGAAAAGGGCAGTGTTATCGTTGGACCCGTGCGGGTGGATACTGTGCCGGTGAGCCGGCCGGCTCCCCGGCATTACGCCGCAACCTCCTCCACATGAMTTRPPTPLYTNPVLNGDWPDPDAVQVDGTYYLIASSFNRVPGLPVLRSRNLVDWEHAGHALAELPQGSHYSLVRHGSGVWAPALRYHNGRFWIFYPDPDHGIFVLSAERAEGPWSAPHLLYAGRGLIDPCPLWDEDGEAYLVHGWAQSRIGVKNRLTVHRMSPDAGRLLDNGIHVINGADLPGYTTLEGPKFYKRDGWYWIFAPAGGVATGWQSVFRSRSPFGPYEERRVLEQGETAVNGPHQGAWVTTPEGEDWFLHFQDRGPFGRVVHLQPMGWGADGWPWMGETPDDGGTGVPVASHTYPAGTVPEDVAPPTSDNFTSPWLGPQWHWQANPLESWSFQGGGGQLVLRPQANDPVNLRELPNVLGQILPGTPSTFTTVLELADVPEGTRAGVVVLGQQYAWLGIIRTTNGYVLGSGRGGEGPHEQPLGRRVPLDSPRIELQIRTDGTPRSTFAWRSGAGEPWEVQGWNFDVVQGKWIGAELGLFATSPLGSQEKGSVIVGPVRVDTVPVSRPAPRHYAATSSTPGPT0019091_311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_004561038cytR_2COG1609HTH-type transcriptional repressor CytRATGACCGCAAGGACCGCCCCGTTGACCCCCACTCCGCGTCCCAAGATCGCCGACGTGGCCGCAGCGGCAGGCGTCTCAGTTCCCACGGTGTCCAAAGTCCTCAACGGCCGGTCGCACGTTTCCGAGGCCACCCGCGCCCGGGTGCGGAAGGCCTTGGAAGAGCTCGACTACACCAAGCGGAATGTCCCCGCCGCCCAGCCGGGGCTTCTCCAGCTGGTGGTCAACAACTTCGATTCACCCTGGGTGCTGGAGATCATGGAGGGCGCGGAGGCGGCGGCTGCGCGGCTCGGCTACTCCGTTGTCTACACAAGGGCTGAGCACGCGAACGCCGAGAACTGGCGCAAGCTCCGGGAATCCTCAGCCAACCGGCTCGCCGGGGTGGTGCTGCTCGCCCCGCGGACCGGCTCACGGCTGGTTACCACCCTGCGCAGCCTCAACATTCCCGCGGTTGCTGTGGACCCCGAGGGCAGCGAGGGGCTCACCATTCCCAGCGTCAGCCCGGCGTCGTTCTCCGGAGCACTTTCAGCGGTGGGGCACCTTCTGGGACTTGGGCATCGCAGGATTGCCATCATCACCGGCCGCGGCCATGGTTCCGGGCACAGCCGGGCACGGTATGCGGCGTACGCCGCCGCCTTGCATGAGGCCGGGCTGCCGGTCCTGCCGGAACTGGTACGCGACGGCGATTTCAGCATTGAGGCGGGAGTCCGGCATGGCGGGGACCTTTTGGACCTGGCCCAGCCTCCCACCGCCATTTTCGCTGCCAACGATCTCCAGGCGCTCGGTGTGATGAACGCCGCCGCCCAGCGCTCGCTGAAGGTGCCGGCGGACCTCAGCATTGTGGGTTTTGACGACATCGCCCAGGCCGCGCTGATGTCGCCGCCCCTCACCACCGTTCGGCAGCCGCTGGCCCACCTGGCGTCCATGGCCGTGGGTATTCTGGCCGAGCAACAGGAGCAGCAGGGCCCCGCCGTTCCGGCGGCATTGGAACTTGCCACCGAACTGGTGGTCAGGGGAACCACCGCCCGGCCTTCACGTTAGMTARTAPLTPTPRPKIADVAAAAGVSVPTVSKVLNGRSHVSEATRARVRKALEELDYTKRNVPAAQPGLLQLVVNNFDSPWVLEIMEGAEAAAARLGYSVVYTRAEHANAENWRKLRESSANRLAGVVLLAPRTGSRLVTTLRSLNIPAVAVDPEGSEGLTIPSVSPASFSGALSAVGHLLGLGHRRIAIITGRGHGSGHSRARYAAYAAALHEAGLPVLPELVRDGDFSIEAGVRHGGDLLDLAQPPTAIFAANDLQALGVMNAAAQRSLKVPADLSIVGFDDIAQAALMSPPLTTVRQPLAHLASMAVGILAEQQEQQGPAVPAALELATELVVRGTTARPSRPGPT0017992_5547DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_00457711pdhRCOG2186Pyruvate dehydrogenase complex repressorATGGCACGGAAATCACTGGTGGGCGTAGTCGCCGACGAGCTTCTGGACCGGATCATCGCCGGAGAGTTCCCGCCAGGAGCCAGCGTGCCCGGCGAGCTTGAACTCAGTGCCAAACATGAAGTCAGCCGGATGACGGTGCGCGAGGCCATGAAAACCCTTGAGGCGCAGCGCATCCTCAGCGTCGAGCGCGGGCGCGGCACTTTTGTGAACCCGCTCAACCGCTGGGCGTCGCTCGAGGCAGTGCTGCGTGCGGCCTCCGAAGGGAAAAATGAGGCTGACGCCTCCGTGCAGCTCATCGAATTGCGCCGGATGCTGGAGACGGGAGCCTGCGAGCTGGCCGCCGGCCGGATTGGGGACGCAGACGTTGAGGCGCTCTACAAGTGCGTGGCCGCAATGCGCGCGGCCAACGAAGTCAACGACCTCCCCGCGTTTGTGGAAGCCGACCTCGCCTTCCACGACCTGATCCTGCACGCGTCCGAGAATGTTTTTGTGGCGGTACTCTTCGAACCGCTGCACCGCGTGCTCGCCAAGCGCCGGGCCGAAACGTCGGCAGTGCCGGAGATCCAGGTCCACGCCATCGCGCACCACCAGAACATCGCTGAAGCCCTGGAATCCAGGGACCCCTCACGTTCCCGGCAAGCCATGGATGACCACATGCAGCAGACCCTCGACGACCTCAAGAACCTGGTGCTGGGTGCGCCCAAGGTCTAAMARKSLVGVVADELLDRIIAGEFPPGASVPGELELSAKHEVSRMTVREAMKTLEAQRILSVERGRGTFVNPLNRWASLEAVLRAASEGKNEADASVQLIELRRMLETGACELAAGRIGDADVEALYKCVAAMRAANEVNDLPAFVEADLAFHDLILHASENVFVAVLFEPLHRVLAKRRAETSAVPEIQVHAIAHHQNIAEALESRDPSRSRQAMDDHMQQTLDDLKNLVLGAPKVPGPT0018085_147DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776NANA
D1-29_004581482hypothetical proteinGTGAAGCTTGAAGCAGACGTCTTGGCCGCCTTTCCGGCCGAGGTCCGGATCCCAGCCAGGCTGGTTGCCGAAACCCTCGCCGCGTCCAATGCAGAAACTCCCAGCATCCTGGTAGTGCTCGACGACGACCCCACAGGAACGCAGTCCGTTGCGGATCTTCCTGTGCTGACCAGCTGGGATGTGGAGGACTTCACCTGGGCCTTTGCCCAGGCCAAGCCGGCCGTTTACGTCTTGACGAACACCCGGAGCCTGGACCCGGCACAGGCGGCTGCCAGGAACGCCGAGATAGTCCGCAACGCGCTGGCCGCCGCCGCGGATGACGCGCTCCGGCTCCGCTTTGTCAGCCGCAGCGATTCCACCCTCCGCGGCCACTACCCGCTTGAGCCGGACGTCATCGCGGCCACCGTCGCCGAGGTGAGCGGTGAAGACACCGACGGTGTGGTGCTGGTTCCCGCTTTTCCCGACGCCGGCCGCGTCACCATCGGCGGCGTGCACTACATGCGCGGAACAGGGGAGGACGCCGGCCTTCTCACGCCGGTATCGGAGACTGAATTCGCCAGGGACGCAAGCTTCGGCTTCGCCAACTCCGAGATGGCCAAGTATGTGGAGGAGAAGTCAAAGGGCCGCTTCGCAGCCGAATCCGTGATTGTCCTGGATCTCACCACCATCCGTGCCTCGGAAGACCCGCAGGTCACCGCCGCAGCCATCGCCGATGCCATTGCGCCAGCCACCCACTCCACGCCCATCGTCGCGGACATCGTTACCGAGAACGATCTTCGCTCCCTGTCCCTGGGCCTGGAAGAGGCTGAACGGCGCGGCAAGAAGCTGCTGTACCGCGTAGGCCCTCCGTTTGTCCGTGCCCGCATTGGCCAGGAGATCCGCACCGAACTCAGCGGGGCCGAAGCCTACGCCGGAAACACGCCCTCGGTGGCGGGCGGCCTGATCGTCGTCGGTTCGCACGTGGGTGTCACCACACGTCAGCTCAAGGCCCTCACGGACCAGCACAGCGCCGCGCGGATCGTGGAAATCGATGCCGAGAAACTGCTTGCCGCCGAAACCGAAACAGGCAGCGCAGCTTCCTACCTGGACGAAACAGTGGACACGGTAGTGGACGCGCTCCACGACGGCGACGTCATCGTCCATACCAGCCGCCTGCTCATCAAGACCGATGACCCAGCCGAAAGCCTGCGGATCGCACGCACGGTGTCCGCCGCCGTCGTCGCCGTGGTGAACGGGACACTGAAGACCTTTCCGCCGCGTTTTGTCATTGCCAAGGGCGGCATCACCTCCTCGGACGTTGCCGCACACGGGCTCGAAATCAGGCACGCGATCGTCCGGGGGCCCATGCTTCCGGGCATCGTCTCGCTCTGGGAGCCGGTGGACGGTCCCGCGAAGGGCATTCCGTACATCGTGTTCGCGGGCAACGTAGGGGACGACGACTCCCTGGCCCAGGTCACCCGCAAGCTCAGCAACACCTTCTAGMKLEADVLAAFPAEVRIPARLVAETLAASNAETPSILVVLDDDPTGTQSVADLPVLTSWDVEDFTWAFAQAKPAVYVLTNTRSLDPAQAAARNAEIVRNALAAAADDALRLRFVSRSDSTLRGHYPLEPDVIAATVAEVSGEDTDGVVLVPAFPDAGRVTIGGVHYMRGTGEDAGLLTPVSETEFARDASFGFANSEMAKYVEEKSKGRFAAESVIVLDLTTIRASEDPQVTAAAIADAIAPATHSTPIVADIVTENDLRSLSLGLEEAERRGKKLLYRVGPPFVRARIGQEIRTELSGAEAYAGNTPSVAGGLIVVGSHVGVTTRQLKALTDQHSAARIVEIDAEKLLAAETETGSAASYLDETVDTVVDALHDGDVIVHTSRLLIKTDDPAESLRIARTVSAAVVAVVNGTLKTFPPRFVIAKGGITSSDVAAHGLEIRHAIVRGPMLPGIVSLWEPVDGPAKGIPYIVFAGNVGDDDSLAQVTRKLSNTFNANANANANA
D1-29_00459900ltnDCOG2084L-threonate dehydrogenaseATGTCTGCAAACTACAAAGTCACAGTTCTAGGCCTTGGTGCCATGGGCCTGCCCATGGCCACGCGCCTGGCAAGCCAGCTCACCGTCCACGGCTTCGACATTGCCGAGCCGCGCCTGGCGCTCGCCGAAGAAGCCGGAATCCACACGTTCGGCTCCGCCCGCGAAGCTTCCAAAGGCGCCAACGCCCTGCTGCTCGCGGTCCGCAACGGCGAACAGCTCAACGATGTCCTCTTCGGCGAAAACGGCGTGGCCTCCGTGCTCGAGCCGGGCGCCGTGGTGATCCTCGGCAGCACAGTAGGCACGGAAGCCATTCCAGCCACCGTAGACCGCCTGGCCGAATACGGCGTCGAGCTTGTTGACGCGCCCCTGTCCGGCGGGCCCAAGCGCGCCGGCGAAGGCGACCTGCTGATCGTCGTGGGCGCCTCGCCCGAAGCCCAGGAAAAGGCCCGGCCCGTGCTGGAACTGCTGGCCTCTACCCTGACCATCGTGGGCGACAAGCCCGGCGACGGCCAGGCGCTCAAGACCGTCAACCAGCTCCTGTGCGGCATCCACATCGCCGCCGCCGCAGAAGCGATGGCCCTTGCCGACGCGCTCGGCCTTGACCAGGCCAAGACCCTCGCCGCCCTGGAAGCCGGCGCGGCCGGGTCCTTTATGCTCTCCAACCGCGGCCCCCGCATCCTGGAGGCTTACACGGAGGACGGCGCCGAAGTCCTCAGCCGCCTGGACATCTTCGTCAAGGACATGGGCATCGTGGGCAAGGCCACCCGCGCCGCCGGACTGGCAGCCCCCGTTGCCGCCGCGGCAGAACAGCTCTACCTCCTCGGCCAGGCCCAGGGCCTCGCCGCAGCCGACGACTCCGCCGTCATCAAGGTTGTAGCGCCCACAAAGCGCACCTCCTAAMSANYKVTVLGLGAMGLPMATRLASQLTVHGFDIAEPRLALAEEAGIHTFGSAREASKGANALLLAVRNGEQLNDVLFGENGVASVLEPGAVVILGSTVGTEAIPATVDRLAEYGVELVDAPLSGGPKRAGEGDLLIVVGASPEAQEKARPVLELLASTLTIVGDKPGDGQALKTVNQLLCGIHIAAAAEAMALADALGLDQAKTLAALEAGAAGSFMLSNRGPRILEAYTEDGAEVLSRLDIFVKDMGIVGKATRAAGLAAPVAAAAEQLYLLGQAQGLAAADDSAVIKVVAPTKRTSPGPT0018135_511DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_THREONATE_DEGRADATION,PGPT0018135-ltnD|ygbJ-K08319NANA
D1-29_004601419ygbN_1COG2610Inner membrane permease YgbNATGAGCGCACTAGCTCTTTTGGCCATAGCAGCCGCAGGCGTCGCCCTGCTGCTCGTAGCCGTTATAAAGTTCAAGATCCCAGCCTTCCTCGCACTGCTTGTCGTCAGCGTGTCCGTGGCGCTGGTGGCGGGCATTCCGCTGCCGGACATCATCAAGACAGTCACGGAAGGAATGGGCGGAACCCTTGGATCCGTCGCCATCCTGGTGGGCCTGGGCGCCATGCTGGGAAAGATGATCGAAATTTCCGGCGGCGCCCAGTCGCTCGCCGGAAAGTTCACCCAGCTGCTGGGGCCGCGACGTGTAATAGCAGCCCTCACCGCCGCAGCCTTCCTGCTGGCCATCCCGGTGTTCTTCGACGTCGGATTCATCATCCTGATCCCCATCATCTACGGCTTCTCCAAGGCTGCAGGAGTGAACCCCGTCAAGATCGGCCTTCCCGTAGGTGCCATCATGCTGGCCATTCACGTGGTTGTTCCGCCTCACCCGGGTGTTGTAGGCGGCGCCGGTATCCTCGGCGCCGACATCGGCTGGACTACCATCCTGGGCCTCGCGCTCTGCATCCCTGTCGGCGTCCTGGGCTACTTCGTTGCCCGCAAGCTCAACCGCCGCGAATTCACCATGCTGCCTGCCACTGCCGAGCAGTTCCGCCTCTTTGGTTCCGGAACTTCCCAGGTGGAGCAGGAATCCGGCCAGGGCACCTCCAACATTGCAGTCAAGACCGAGGTCAAGACCGCACCAAGCCCGGCCATGATCATCACGCTGATCGTTCTCCCCATCCTTATGATCATGGTGGGCACCGTTGGCGCAGTTATCCTGCCCAAGGACTCGGTTCCTGCCCAGATCGCCGCCTTCGTGGGAGCTCCGCTGATTGCACTCCTGACGGCCCTTGGCCTGGCGTACTACTTCCTGGGCATCCGCCGCGGCTGGTCCTCCCAGCACACCGGTGAAGTCATGGACTCGGCCCTTGCCCCCACCGCAATCGTCATCCTGGTAACCGGCGCCGGCGGCGTCTTCGGCAAGGTGCTCACCGTATCCGGCATTGGCAAGGCCCTCGCCGAAGGCCTGCAGACAGCCGGCCTTCCCGTCATCTTGATGGCCTTTATCCTTGCTGCGATCCTCCGTGCTTCACAGGGCTCTGCCACAGTGGCCATCATCACCACGTCCGGACTGCTGGCCGCCTCGGTGGCCGACGGCGGCTTCTCACCGTTGCAGACGGCCCTCATCCTGATTGCCATCGGCTTTGGCGCCTTTGGCCTCAGCCATGTGAACGACTCCGGCTTCTGGATCGTGACCCGTTATCTGGGGCTTTCGGTGGCGGACGGCCTCCGGACCTGGACCGTCCTCACAACCCTTCTCGGTCTGGCGGGCTTCGCCCTGACATTCCTGGTCTGGATTCTCGTGGGAGGCCTGGGCATCTAAMSALALLAIAAAGVALLLVAVIKFKIPAFLALLVVSVSVALVAGIPLPDIIKTVTEGMGGTLGSVAILVGLGAMLGKMIEISGGAQSLAGKFTQLLGPRRVIAALTAAAFLLAIPVFFDVGFIILIPIIYGFSKAAGVNPVKIGLPVGAIMLAIHVVVPPHPGVVGGAGILGADIGWTTILGLALCIPVGVLGYFVARKLNRREFTMLPATAEQFRLFGSGTSQVEQESGQGTSNIAVKTEVKTAPSPAMIITLIVLPILMIMVGTVGAVILPKDSVPAQIAAFVGAPLIALLTALGLAYYFLGIRRGWSSQHTGEVMDSALAPTAIVILVTGAGGVFGKVLTVSGIGKALAEGLQTAGLPVILMAFILAAILRASQGSATVAIITTSGLLAASVADGGFSPLQTALILIAIGFGAFGLSHVNDSGFWIVTRYLGLSVADGLRTWTVLTTLLGLAGFALTFLVWILVGGLGIPGPT0001340_427DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
D1-29_00461864gatYD-tagatose-1,6-bisphosphate aldolase subunit GatYATGCGGACCCGACTTGACCACCTGGTCACCTCCACGCTGCAGCAGGGCTCTGCAGTTCCGGCCTTCACATGCTACGACTTCACCACTGCCATGGCTGTGGTGGGCGCGGCGGAGGAAGCCGGCCAGGGCGTCATCCTGCTGGTGGCACCCAAGACGGCCGCAACCGCCAACGGCCTGCGCCTGATCTCGGCCCTTCGCGGCCTCGCTGACAGCGCCTCGGTGCCGGTGTCCGTGCAGCTTGACCATGCATCGGATCTGGATATGATGATCGACGCCGTCGCCGCGGGGGCGGACTCAGTCCTCGCGGACGGCTCGTCCTTTCCGTACGAGGACAACATCGCCCTGGTCCAGGCGGCGCGGAGGGCGCTGGAAGCGCAAGGCCATGCCGGCGTCGTTCTTGAAGCGGAACTGGGTGGACTGGCCGGTGACGAGGACCGCGCGTTTGGGGCGGACCAGGCCGGCGTCGCCGTGGCTGGCCTGACTGATTCCGCCCAGGTGGATGACTTTGTTGGCCGGACCGGCGCCGACCTGCTGGCAGTAGCCGTAGGCAACGTGCACGGCAAGTACAAGGGGGAGCCGCAGCTGCGCTGGGATGTGCTCCAGGACATCGCCGTACGGACGCACATTCCGCTGGTGCTGCACGGCGCATCCGGCATCCCGGCCGATGAACTGGTCAAAGCTGCGGCCATGAACGTGGGCAAGGTCAATTTCAATACGCAACTGCGCACCGGGGTCCTTTCCACGCTTCAGCAGCACCTTCCCGGACACCGCGCCGATGGCGAAAACCTCCAGGGCCTGCTGGGGCATTGGAACAGCTCGGCGCGGGAGTTCGCCACGGCCGCGCTGGGCATGCTCACGCGCTGAMRTRLDHLVTSTLQQGSAVPAFTCYDFTTAMAVVGAAEEAGQGVILLVAPKTAATANGLRLISALRGLADSASVPVSVQLDHASDLDMMIDAVAAGADSVLADGSSFPYEDNIALVQAARRALEAQGHAGVVLEAELGGLAGDEDRAFGADQAGVAVAGLTDSAQVDDFVGRTGADLLAVAVGNVHGKYKGEPQLRWDVLQDIAVRTHIPLVLHGASGIPADELVKAAAMNVGKVNFNTQLRTGVLSTLQQHLPGHRADGENLQGLLGHWNSSAREFATAALGMLTRPGPT0017920_433DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017920-gatY_kbaY-K08302NANA
D1-29_00462264hypothetical proteinATGATCCTGGCCTCCCTTCTTTTTGCCTTCATCGCAGCTGCCCTCCACGTGTACATCTTCACCATGGAGTCTCTGACCTGGACCACGCCCGCTACCTGGAAGCGATTCGGCCTGGCTTCCCAGGCCGACGCTGAGACCACCAAGTCCCTGGCCTATAACCAGGGTTTCTACAACCTGTTCCTCGCCATCGGAGCGTTATCGGTGTCGGCTGCGTGGCGTTGGCGTCCCAGGGCTCAGCCCAGGCGGTGGTGGGCTGGACGCTGAMILASLLFAFIAAALHVYIFTMESLTWTTPATWKRFGLASQADAETTKSLAYNQGFYNLFLAIGALSVSAAWRWRPRAQPRRWWAGRNANANANANA
D1-29_00463192hypothetical proteinGTGGCGTTGGCGTCCCAGGGCTCAGCCCAGGCGGTGGTGGGCTGGACGCTGATCTTCAGCTGCTGCGGTTCCATGCTGCTCGCTGCGCTGGTGCTCGCCTTGAGCGGGAAGAAGAACCTCAGGCCTGCCACCATCCAGGGCACCACACCGCTGCTGGCCGTTGTCCTCGGGATCCTTGCGGTATCCCTCTAAMALASQGSAQAVVGWTLIFSCCGSMLLAALVLALSGKKNLRPATIQGTTPLLAVVLGILAVSLNANANANANA
D1-29_004641434hypothetical proteinGTGAGTGGAGTGAAGGGGCAGGGGCCAGTTTCCGGGCGCGAGCCGGTCAAAGGCGGCGAGCCGGCCACAGAGGGCGGGCCGGTGGCCGAGCGTGACCTGGTCATTGACCTGGTCCGCTTCTTCTGCCTGGCCCTGGTGGTGGTGGCACACTGCATGATGGTGAGCCCGGTCCTGCACCCGGACGGCACTGTGACCACGGAAAACACCCTCACCGAGCAGAACTGGTTTCAGCCGGTCACCTGGATCTTTATGGTGATGCCGCTGTTCTTCGTCACGGGCGGGACCACAGGCCTCCAGTCCTGGCGGAGGCTGAAATTCCGCGGAGGCACGGGCTTTGACTTTGCCCAGGCGCGGCTCCTGCGGCTGGTCCGCCCGGCGGCGGCACTCCTGGCAGCCATGTTCCTGGGACTGTGGGCCGCATTGCTCCTTGGTGTGGACCCGCAAGTGGTTCAACTCATGGCCACGGGCGCCGGAATGCCGCTCTGGTTCCTGGCCGCCTACCTTGCCGCGCAGCTGAACATTCCGCTGCTGGCCGGGTTCCATGCCCGCGCCCCCTGGCTAACCCTTGGTGTCCTTGCCGCCCTGGTGGTGGCCGTGGACTGCCTCCGTGGAGCCCTTCCGTTGCTCGCCTATGCGAACCTCGTTTTCCTCTGGTGCACGGTGCAGCAGCTGGGCTTCCTCATGGCTGACGGCGTTTTCGCCAGGATATCCCGCTCCGGGCTGGTGGGCCTGATCCTGGCAGCCAACCTCCTGCTCGGACTGCTGGCCGGGCTGGGCCTGTACTCCGGGGACATGCTGGTCAACCTGAACCCGCCCAACCTGTGCCTGCTGCTGCTGGGCGTATCCCAGGCGGCTGCGCTGGAGCTGTTCAGGCCGGGGCTCGATTGGCTTTCCCGGCTGGGGTGGCTGCGAACTGTCGTGGCTGTGGCGGGGCGGCGTTCCATGACCGTTTACCTGTGGCACCTGCCCCTGCTCGTGGCCATGTCCGGAATACTGCTCCTGACAGACTTTCCCAAACCTGCGGCCGGCACTGCGGCATGGTGGTGGGCGCGGCCCTTGGTGCTGCTGGGCGTGGTGGGCCTCCTGCTTCCGGTGCTGGCCGTTTTCGGCCGCCTTGAGGAACGTCCGACGGCGTCTGTCCACAGCCGCAGACGGCCCCCGGCCGCAGTGGTGACTGCCGCCGTCGTGGTCTTCATCCCCGTGGCGGACGCCGCCTTCAATGGCCTGACGCTTGGCCTGCTGGGAGGCGGGGCGGCGTGCTTTATTTTGGCCGCACTACTCCTGGGGCGGGTTCCGGAACGCGTGCCTGGCGGGAGTGCAGCGGCGCCAGCTAAGCAGGACGGTCAGCGCGGTACAGGAGCCGGGGGAGGTACGGCAGCCTCAAACGGTGGGGCATTGCCAGCGGGGCCAAGTAGTGCCAATGTCGAACCATGAMSGVKGQGPVSGREPVKGGEPATEGGPVAERDLVIDLVRFFCLALVVVAHCMMVSPVLHPDGTVTTENTLTEQNWFQPVTWIFMVMPLFFVTGGTTGLQSWRRLKFRGGTGFDFAQARLLRLVRPAAALLAAMFLGLWAALLLGVDPQVVQLMATGAGMPLWFLAAYLAAQLNIPLLAGFHARAPWLTLGVLAALVVAVDCLRGALPLLAYANLVFLWCTVQQLGFLMADGVFARISRSGLVGLILAANLLLGLLAGLGLYSGDMLVNLNPPNLCLLLLGVSQAAALELFRPGLDWLSRLGWLRTVVAVAGRRSMTVYLWHLPLLVAMSGILLLTDFPKPAAGTAAWWWARPLVLLGVVGLLLPVLAVFGRLEERPTASVHSRRRPPAAVVTAAVVVFIPVADAAFNGLTLGLLGGGAACFILAALLLGRVPERVPGGSAAAPAKQDGQRGTGAGGGTAASNGGALPAGPSSANVEPNANANANANA
D1-29_00465330hypothetical proteinATGACTGAGAACATGATTTCCACGGAGGACGAATTCCGTCCTGACGTCTCTATGGCCAGGAACGATGCGCAGCACTGTTACCAGCTGCAGGCGGGCGGGAAGATCGCCGTTCAGTCCTTCTTCCTGGACAAGCCCGGACACGTGGATTTCACCCACGTGGAAACCGCCGAAGGTTTCCAGGGACAGGGGTTGGACAAAGTGCTGGTCCATTTTGCGCTGGACGATGTGGTCGCAGCAGGAAAGCGGATCATTCCCCGCGACCCCTTTATTGCCGAGTACCTGCGCCGCCATGAAGGCTACGAACAGCATGTGGACTGGCCTGAGGGGTAGMTENMISTEDEFRPDVSMARNDAQHCYQLQAGGKIAVQSFFLDKPGHVDFTHVETAEGFQGQGLDKVLVHFALDDVVAAGKRIIPRDPFIAEYLRRHEGYEQHVDWPEGNANANANANA
D1-29_00466753hypothetical proteinATGGACAACTCATCGATTGACACCTCAGTTCGTTCCGAGGCCGCTGTCACGGCGCAGCTTCAGAACCTGGTCATCGACAGCCGTGACGTCAACGAGTTCCTCCATGAACTGTGCGACTATGCGGCCCGTGCCGTCTCAAGTTCCCTGGAGCTTCCGGTGGTGTGCGCTGTCACCCTGAGCCGGCGCCGCCGGACCACCACTGCCGCCTGGAGCGACCAGCAGGCCCGTGTTATGGACGAGATCCAGCAGAACTACGGCGCAGGGCCCTGCCTTCATGCGATGAATACCGGAACCACTGTGCTGGTCCCCGATACCCGCAACGACTCTCGCTGGCCGGAATACAGCCAGGCCATTGCGGAGCTTGGCCAGCTGAGCGTTCTTGCCGTTCCCCTTATCTTGGATGAGGATGCCCGCGCCGCCCTCAACATCTTTGCCCCCGCAGTGAACGCGTTCAATTCTTCTGCTTTGGAAAGTGCAGAACTGTTCGCCTCGCAGGCGCAAAGCGCGCTGCGCCTCGCTGTCCGGGTGGCTACCGGCCAGCAGTTGGCGGCAGATCTTAAGGCGGCGATGGAATCGCGGACCGCCATTGACCTGGCCGCCGGAATCATTATGGGGCAAAACCACTGCTCGCAGGAGGAAGCAATGGCCATCCTGGTCAAGACGTCCAGCGGCAGGAACCAAAAGCTGCGGACCGTTGCCGAGAACCTGGTTGCGGCAATTTCCACCCGAGGGCCCGTCACGCACTTTGACTGAMDNSSIDTSVRSEAAVTAQLQNLVIDSRDVNEFLHELCDYAARAVSSSLELPVVCAVTLSRRRRTTTAAWSDQQARVMDEIQQNYGAGPCLHAMNTGTTVLVPDTRNDSRWPEYSQAIAELGQLSVLAVPLILDEDARAALNIFAPAVNAFNSSALESAELFASQAQSALRLAVRVATGQQLAADLKAAMESRTAIDLAAGIIMGQNHCSQEEAMAILVKTSSGRNQKLRTVAENLVAAISTRGPVTHFDNANANANANA
D1-29_00467540hypothetical proteinGTGAGCCACAAACTTTCCCACCACAAGCTGCGCGTAGTTGTCCACGTTGACCTTGATCCGGGACACATCACGGTAGAGGTTGGCGGATGCCTGACACACTCGAACTTTCCGGCCTTGCTGCACCTTCTGCTCCGGGCCCAGCGCCTGTCTTTCAGCCCTAACATCGCGCTGAACCTGCGGCGTGCCATTCACTTGGATGCGGGCGTCCTTGCCCATCTTCGTCACATCGCGTCTCCGGGCTCCCATGGTGCCGGCCAGCATGCGGCAATCCACCACGAAATGGGGATGGCGGCAGCGGCGGCGCTGGAGGAAGCTGACGATTTCCATCTGACCATCATGGAACCCGTGTACCTGCCGGTATGCCCGATCCATTCGGCAAAGGAGTTGGCGGAAGCGCGCCTGGATGTGGCCCAGGCAGCCCTAGTGGAGCACCCGAACCAGCCCACAGACCCGGCCCATCCCGTGCGGCCAAGCCGGTCCGCCAGCGCCAAGCGCATCCAGCGGGAACGGTCACTTAAGGCCCACAAGGTTCACTTTTAGMSHKLSHHKLRVVVHVDLDPGHITVEVGGCLTHSNFPALLHLLLRAQRLSFSPNIALNLRRAIHLDAGVLAHLRHIASPGSHGAGQHAAIHHEMGMAAAAALEEADDFHLTIMEPVYLPVCPIHSAKELAEARLDVAQAALVEHPNQPTDPAHPVRPSRSASAKRIQRERSLKAHKVHFNANANANANA
D1-29_00468354hypothetical proteinGTGGAGCAGACAGAGGCCAACAGCATCCGATTCCGTGAAGTGGACAAGGACGGGCGGCCCGTCGACCCGGAAACTGCCGGCGGCACCGGGGCCGGGGCGTCAGCACCAGGCAGTCAGGCGGGCAACTTCCGCGTCAATCCGTTCATCGTCATTCTCTGGATCCTGGCCTTAGGACTGAACGCCGGGTCGGTCTGGGCCTATGCCAACGCCTTTTCAAACGTGGGTCCCGTCTCCGATACCACAGGGCCCCAACTGGCCTTCTTCCTGATGAGTTTTGCGCCCCTGGCCGGAACGCTGACCGTCATCTGCCTGCTGTTCTGGCATGCGGTCCAATGGCAGCGTCGGAGTCGGTAAMEQTEANSIRFREVDKDGRPVDPETAGGTGAGASAPGSQAGNFRVNPFIVILWILALGLNAGSVWAYANAFSNVGPVSDTTGPQLAFFLMSFAPLAGTLTVICLLFWHAVQWQRRSRNANANANANA
D1-29_004691650ddcCOG0076L-2,4-diaminobutyrate decarboxylaseGTGCCGCTGCTGCCCCGTGTTGAAGAGATGTATGTGGATGAAGGCCGTGCCGGCGGAGCCGCGCCGGGGCAGGACTTTGCGTCGCGGGTGGAACTCGCCCTGGCCGCCACCAACCATCTGTTCAACGCCCGCAACTCGCCGCGTTACGTGGCGCAGGTGCTGCAGGGTGTCAACGCGGTGGCCACCAAACTGGACAGGACCACGCAGCCGTTCACCGGCGTCGGGCCCTCGGAAATGAAGGCGCGCATCGGCGCGGTGGATCTTGACCGGCCGTTGCCTGATACCGCTGCCGCCCTGGAGGAGCTCGAGTCCGTCTACCTGCGCGACGCCATCTACTTCCACGATGCCAAGTACGCAGCCCACCTGAACTGCCCCGTGGTGATCCCGGCGCTGGTGGGGGAGGCCATCCTCTCGGCAGTGAACTCCTCGATGGATACCTGGGACCAGAGCGCCGGTGCCACCATGATCGAGCGCCGGCTCATCGACTGGACCGCCGAGCGGCTGCAGCTGGGGACTGCAGCCGACGGCGTGTTCACCTCCGGCGGCAGCCAGTCCAACCTGCAGGCCCTGCTGATCGCCCGCAACCACGCCGTGGCGGGGCTGCGCCAGGAACCCGCCAACACGGGCCTGCGGCTGCCCGCACTGCTGGACAGGCTGCGCATCTTCACTTCGGAAGACAGCCACTTCAGCATCCAGAAATCAGCCTCCATGCTGGGGATGGGGTTCGACGCCGTGATCTCCGTCCGCTGTGCACCTGACCATCGGATGGACCCCGCCGCCCTCGCTGAGGCCATGGCCGAAGCGCACGACGCCGGGCTGGTGCCGATGGCGGTGGTGGCCACCGCCGGGACCACTGACTTTGGGGCCGTGGACCCGCTGCCTGAGCTTTCGGCCCTGGCCCGCGCCTACGGCGCGTGGCTTCACATCGATGCTGCGTACGGCGGTGGGCTGATGGTGTCGGGCCGCTACCGGCACCTGCTGGACGGAACCCGGCTGGCCGATTCCGTCACCGTGGACTTCCATAAGACCTTCTTCCAGCCGGTCAGCTCCAGCGCCCTGCTGGTCCGCGACCGCGCCATGCTGCGTCACATCACCTATTACGCGGACTACCTGAACCCCGAGAGTGCCGCCCTCGCAGAGATTCCCAACCAGGTGGACAAGAGCATCCAGACCACCCGGCGCTTCGACGCGCTCAAACTCTGGCTCACCCTGCGCATCATGGGTGCAGACGCCATCGGTGCGCTCTTTGATGAGGCGATAGACCTGGCCGCCCGCGTAGGGTCACTTCTCGCCGCCGACGACGACTTCGAGCTGGCCGCAGAGCCCCAGCTGAGCACCCTGGTGTTCCGGTACCGGCCACGGATTGATACCGCAAACGGCAGCCAGCTGATCTCGGAGCATGCCTCGGATGTCCTTAATCCGGCCATCCGCGCGGCGGTTTTCGCCTCCGGAAAGGCCGTTGTGGCCGGCACCAAAGTGGCAGGACGGCACTACCTGAAGTTCACGCTGCTCAATGCTGAAGCAACCCTGGAGGATATTAGCCAGATCATCAGCCTCCTGCGCAGCACGGGCACCGGGCTCCTGCAGGACGGGCTCCTGCAGGACGGACTCCTTCAGGACGGGCTGCTCCAGGACGAGGTGTCCGCATGAMPLLPRVEEMYVDEGRAGGAAPGQDFASRVELALAATNHLFNARNSPRYVAQVLQGVNAVATKLDRTTQPFTGVGPSEMKARIGAVDLDRPLPDTAAALEELESVYLRDAIYFHDAKYAAHLNCPVVIPALVGEAILSAVNSSMDTWDQSAGATMIERRLIDWTAERLQLGTAADGVFTSGGSQSNLQALLIARNHAVAGLRQEPANTGLRLPALLDRLRIFTSEDSHFSIQKSASMLGMGFDAVISVRCAPDHRMDPAALAEAMAEAHDAGLVPMAVVATAGTTDFGAVDPLPELSALARAYGAWLHIDAAYGGGLMVSGRYRHLLDGTRLADSVTVDFHKTFFQPVSSSALLVRDRAMLRHITYYADYLNPESAALAEIPNQVDKSIQTTRRFDALKLWLTLRIMGADAIGALFDEAIDLAARVGSLLAADDDFELAAEPQLSTLVFRYRPRIDTANGSQLISEHASDVLNPAIRAAVFASGKAVVAGTKVAGRHYLKFTLLNAEATLEDISQIISLLRSTGTGLLQDGLLQDGLLQDGLLQDEVSAPGPT0013725_19DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-1|3-DIAMINOPROPANE_BIOSYNTHESIS,PGPT0013725-ddc|dfoJ|desA-K13745NANA
D1-29_004701359iucDCOG3486L-lysine N6-monooxygenaseATGAGCCGCATTTACGACTTCGCCGGCATCGGTGTTGGCCCCTTCAACCTTGGCCTGGCCGCGCTCAGCGAACCTGTGGAGGGCCTGGACGGTGTGTTCCTGGAGCGCCGCGAGTCCTTCGACTGGCACCCGGGCATGATGCTGGAGCCGGCCCACCTGCAGGTCCCGTTTATGGCGGACCTGGTGACGCTCGCCGATCCCACATCGCCCTACTCTTTCCTGAACTTCCTCAAGCAGACCGGGCGGCTCTACCGGTTCTACATCCGCGAGAACTTCTACCCGCTGCGCGCTGAATATAACCAGTACTGCCAGTGGGTAGCCGGTCAGCTGCCGTCCATACGTTTTAACACAGCCGTGCTTGATGTGACCTACAGCGATGGCGTGTACCGCCTGGCGGTGGAGGGACCGGACGGGGCAGAGGTGCTGTTGGCCCGCCGCCTGGTGCTGGGCACCGGTACGGCCCCGTATGTGCCGGCGGCTTGCGACGCAATAGTGGAAGCGGCTGCCGGCGGCGGTGGAGGACTGGTCCTCCACAACGCCGACTACCTGTCGAGGAAGAGCGAACTGGAGGCCAAGCGCAGCATCACCATTGTGGGCAGCGGCCAGAGCGCGGCGGAGATCTACTACGAGCTTCTTCAGGAGATCGATGTCCACGGCTACCAGCTGAACTGGGTCACCCGTTCGGGCAGGTTCTTCCCGCTGGAGTACACCAAGCTGACGCTGGAAATGACGTCCCCCGAGTACGTGGACTATTTCCACCGGCTGCCCCAGGACCAGCGCGATGGCCTGATCAAGAGCCAAAAGAACCTCTACAAGGGGATCAACTCTGAGCTCATCGACGCGATCTACGACCTCCTGTACACCAAGAGCCTTTCCGGCATGGTGGACACCCGCCTGCTGACGCACTCCTCCCTGACCAGCGCCGCCTGGGACCCCGCCGCACGCTCCCACAGCCTGGAGCTGCACCACGAGGAACAGGGCGCGTCCTACGCCCTGGAGAGCGAGGCTGTAGTCCTGGCAACCGGGTACACCTACCGCGAGCCCGGTTTCCTTGCCGGTGTGCAGGACAGAATCGCACGGGACTCCGCCGGCCGGTTCGCCGTGAGCCGCAACTACAGCACCGGCGTCGAACCCGGGGAGATCTTTGTGCAGAACGCTGAGCTGCATACCCACGGCTTTGTCACCCCGGACCTGGGCATGGGCGCCTACCGCAACTCCTGCATCCTCCGCGAAATAACGGGCCGTGAGGTCTACCCGGTGGAGCGCAGCATCGCCTTCCAGGAGTTCGGCGTGCCGGCTACAGGTCCGGTTGAGGGTGTCCGACGTCCGGCTGCCGACGATGCTGTGGTGCCGGCATGAMSRIYDFAGIGVGPFNLGLAALSEPVEGLDGVFLERRESFDWHPGMMLEPAHLQVPFMADLVTLADPTSPYSFLNFLKQTGRLYRFYIRENFYPLRAEYNQYCQWVAGQLPSIRFNTAVLDVTYSDGVYRLAVEGPDGAEVLLARRLVLGTGTAPYVPAACDAIVEAAAGGGGGLVLHNADYLSRKSELEAKRSITIVGSGQSAAEIYYELLQEIDVHGYQLNWVTRSGRFFPLEYTKLTLEMTSPEYVDYFHRLPQDQRDGLIKSQKNLYKGINSELIDAIYDLLYTKSLSGMVDTRLLTHSSLTSAAWDPAARSHSLELHHEEQGASYALESEAVVLATGYTYREPGFLAGVQDRIARDSAGRFAVSRNYSTGVEPGEIFVQNAELHTHGFVTPDLGMGAYRNSCILREITGREVYPVERSIAFQEFGVPATGPVEGVRRPAADDAVVPAPGPT0031170_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-BISUCABERIN__BIOSYNTHESIS,PGPT0031170-bsbB-NANANA
D1-29_00471579iucB_1N(6)-hydroxylysine O-acetyltransferaseATGAGGTTTACGTTCCGCTGCCTGGATCCCCACGCCGATGCACCACTCCTGCACAGCTGGGTGACCCAGCCCTACGCGTCGTTCTGGGGCATGTTGTCCTCCACAGTTGACGGGGTTGTGGAGGAATACTCCAAGATCCAGGCCAGTGGGCACCACCACGCCCTCTTGGGGCTCGACGGCGGTGTCCCCGCCTTCCTGATGGAGGAGTACCTGCCGTCTGCCTCGCCACTGGCCGCGGTCTACGCCGCCCAGCCCGGTGATATGGGCATGCACCTGCTGGTGGCGCCGCCGTCGGGAGGGCCTCAGCCCGGGTACACCGCGGCGGTGATGGACGCCGTCCTGGACCGGCTGTTCAACAAGCCGAGTGTGGAACGCGTGGTGGTGGAGCCCGACGCCAGGAACACCAAGATCCATGCCCTCAATGAACGGCTGGGATTTCAGCCGGCCGGGGTGGTGGACCTGCCGGACAAGCAGGCACTGCTGAGCTTCTGCTCCCATGCCGATTACCTCACCGCACGGGCTGCCCTCCAGCCGTCCGCAGACTCTTCAAACCCGATCCACCAGGGAGCATCACTGTGAMRFTFRCLDPHADAPLLHSWVTQPYASFWGMLSSTVDGVVEEYSKIQASGHHHALLGLDGGVPAFLMEEYLPSASPLAAVYAAQPGDMGMHLLVAPPSGGPQPGYTAAVMDAVLDRLFNKPSVERVVVEPDARNTKIHALNERLGFQPAGVVDLPDKQALLSFCSHADYLTARAALQPSADSSNPIHQGASLPGPT0031205_7DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-DESFERRIOXAMINE-BIOSYNTHESIS,PGPT0031205-desC-NANANA
D1-29_004721896iucCCOG4264Aerobactin synthaseGTGACCATCATTGCCATCGATCCAGACTTGCTCGCGGGACCCAGGGCCAACACCGCCGTCCCGCATCTCACGCCGGAGCGGTGGGCCAGAGCCAACCGCCACCTGGTGCGCAAGGCGTTGGCGGAATTCCTGCACGAAAGGATCCTCACCGCCGAACGGACGGGCAGCAACGGCCCAGACTCGCCCGAGGGGGCGGAGTCGCTCGAGGGGGTGGCGTCCTACCTGGTCAGCAGCGACGATGCTGCCAGCCAGTACTCTTTCAAAGCTCGGCTGCTTGCCCTGGACCACTGGTCCATCGACGCCGAGTCCATCCGCTGTACCCGGGACGGAAGGGAAGCAGCCCCGGATGCCCTGACCTTCATCACCGAATTCCGGAACACCCTGGGGATCCGGGAGGAGATGCTTCCGGTCTACCTCGAGGAAATCAGCAGCACGCTCGCCAGCCACGCCTACAAGCAGTGGATGGGCCAGCCGCTTGCCGGTGAGCTTGCCGCCGGAGTGACAGGGGGCAGCGATCCCGCCACAGACTTCCAGGTGATTGAGCGCAGCATGACCGAGGGTCATCCCTGCTTCGTGGCCAACAACGGCCGGCTCGGGTTCGGCATCAGCGACTACCGGGCATTTGCGCCCGAGACGGGAGCTCCCGTCCAGCTGGAGTGGATCGCCGTGCGCCGCAGCCAGGCGGTGTTTACCTCCAGCGCAGGGCTTGACTACCGGGCCCACCTGGAGGCGGAATTGGGCGGACCGCTCGTGGCCGCCTTCGACGCCAGGCTCAACGCCCAGGGCCTGGAATCCGCCCATTATTTCCTCATGCCGGTGCACCCGTGGCAGTGGGAGAACAAACTCACTGTCACCTTCGCCGCGGAGATCGCCCGCCAGTTCATAGTCCACCTGGGGTCAGGGACTGACAGCTACCAGGCGCAGCAGTCCATCCGCACGTTCTTCAATACGAGCGACCCCGCCAAGAGCTACGTCAAGACGGCGATGTCCGTGCTCAACATGGGCTTTATGCGTGGCCTTTCGCCGCAGTACATGAAGGCCACCCCGGCCATCAATGACTGGCTGCGGGACCTGATCGGCTCAGACGAGGCACTCCAGCGCCGTGGCCTGGAAATGATCAGCGAAATTGCCGCCATCGGGTACCACAACAGCTACTACGAGGCCGCTTCCGCCAAAGGATCACCGTACCGGAAGATGCTCTCCGCCCTGTGGAGGGAGAGTCCGTTGCCACTGCTCAAGGACGGCCAGCAACTGGCAACCATGGCCTCGCTCCTGCACGTTGATCGGGACGGCAAACCCCTGGTCTCAGCCCTGATGGAACGGTCCGGGCTGGCCCCTGTCGAGTGGCTGCGCCGGTACTTCGAGGTATACCTTGTCCCGCTGGTGCATTGCCTGTTCCGCTATGAGCTCGCTTTTATGCCGCACGGCGAAAACGTGATCCTGGTGCTGGAGAACGGTGTTCCCGTGCGTGCGGTCATGAAGGACATTGCCGAGGAGATTGTGGTGATGGGGGACAGGCTGGACCTTCCCGAGGAAGTGGCCCGGATCCGGGCGGACATTCCCGACGGCGAAAAGGTGCTCGCCATCTTCACGGATGTCTTCGACTGCATCTTCCGATTCCTGGCCGCCCTGCTGGTAGAGGACGGCAAACTCAGCCAGGACCAGTTCTGGGCCACCGCCGCCCAGGCCATCCGGGACTACCAGGCAGAGAACCCGGAGTTGGCCAGCCAGTTCGCACGCCATGACCTCTTCGCCCCGGACTTTGAATTGTCGTGCCTGAACCGCCTGCAGCTGCGGAACAACCAGCAGATGCTGGACCTCGCGGACCCGTCCGGCGGGCTGCAGATGGCCGGCCGGCTGGTGAATCCACTCGCCACGTACGCGCCCCAGTCCTGAMTIIAIDPDLLAGPRANTAVPHLTPERWARANRHLVRKALAEFLHERILTAERTGSNGPDSPEGAESLEGVASYLVSSDDAASQYSFKARLLALDHWSIDAESIRCTRDGREAAPDALTFITEFRNTLGIREEMLPVYLEEISSTLASHAYKQWMGQPLAGELAAGVTGGSDPATDFQVIERSMTEGHPCFVANNGRLGFGISDYRAFAPETGAPVQLEWIAVRRSQAVFTSSAGLDYRAHLEAELGGPLVAAFDARLNAQGLESAHYFLMPVHPWQWENKLTVTFAAEIARQFIVHLGSGTDSYQAQQSIRTFFNTSDPAKSYVKTAMSVLNMGFMRGLSPQYMKATPAINDWLRDLIGSDEALQRRGLEMISEIAAIGYHNSYYEAASAKGSPYRKMLSALWRESPLPLLKDGQQLATMASLLHVDRDGKPLVSALMERSGLAPVEWLRRYFEVYLVPLVHCLFRYELAFMPHGENVILVLENGVPVRAVMKDIAEEIVVMGDRLDLPEEVARIRADIPDGEKVLAIFTDVFDCIFRFLAALLVEDGKLSQDQFWATAAQAIRDYQAENPELASQFARHDLFAPDFELSCLNRLQLRNNQQMLDLADPSGGLQMAGRLVNPLATYAPQSPGPT0031210_6DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-DESFERRIOXAMINE-BIOSYNTHESIS,PGPT0031210-desD-NANANA
D1-29_00473777ucpAOxidoreductase UcpAATGACGACGCCACAGAGCACCGGAACCACCGCCCTGATCACCGGAGCCACAGCGGGGCTTGGCGCCGAGTTCGCACGTCAGCTCGGGGAGCAGGGCCACCACCTGGTGCTCGTGGCGCGGGACAGTAGGCGGCTGGCGGCCAAGGCGCACGAACTGGAAAACAACTACAGCATCGACGTTGAGGTGATTGCCGCAGACTTGACCGACGACGACGGCGTGGCTGCCGTCGTCGAACGCCTTTCCGATGACGCGCGGCCGGTGGAGGTCCTGGTGAACAACGCGGGGTTCGGGCTGCTGCGGTCCTTTGAAGAAAATGACATCGAGGATGAAAAGGCGCATCTGAAACTCCTCGTGGAAACCCCCATGGTGCTGAGCCACGCTGCGCTAAAGGGAATGCTGCGGCGCCGTTCCGGGAAGATCATTAACGTGGCCAGCGTGGCGGCCTTCCTGCCGCGGGGAACCTACTCGGCAGCGAAGGGGTGGCTGGTAGCCTTCAGCCGCTGGGCCAACCTGCAGTATTCCCTTCAGGGCGTCACGGTCACGGCAGTGTGCCCCGGGCTGACGCACACTGAGTTCCATGACCGGATGGAGATGGACAAGTCAGTGGCACCGCAGTGGATGTGGCTCAACCCAGAGCGTGTGGTCCGGGAGGGGCTGGCCGCCAGCCAGCACGGCAAGGCAGTCTGGGTCCCCTCCAAGAGGTACAGGGTCATGATGGCGGCGGCGCAGGTGCTCCCCGCCCGTCTGACAACAGGCCCGCCGCGAAGGGCGAGGTAGMTTPQSTGTTALITGATAGLGAEFARQLGEQGHHLVLVARDSRRLAAKAHELENNYSIDVEVIAADLTDDDGVAAVVERLSDDARPVEVLVNNAGFGLLRSFEENDIEDEKAHLKLLVETPMVLSHAALKGMLRRRSGKIINVASVAAFLPRGTYSAAKGWLVAFSRWANLQYSLQGVTVTAVCPGLTHTEFHDRMEMDKSVAPQWMWLNPERVVREGLAASQHGKAVWVPSKRYRVMMAAAQVLPARLTTGPPRRARPGPT0030485_3480PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
D1-29_004741125hypothetical proteinATGGGTGGCATCGGCGACATGAAGCCCGTTTGGCAGCAGGTGCGCGCGCTCCACCGGTTGGAACCGGCGGACAACGACGGCCTCGCCGCATTCAGGGTTGCCATCAGCGTTGCCATTCCCTCACTCACACTCCTTTTGCTGGGCCGTCCGGATCTCATCATTTACGCAGTCTTTGGAGCCCTGACCGGGATGTACGGACGGTCCGAACCGCACCAGCTGCGGCTAAAGCACCAGGCACAGGCGGCGCTCGTGCTGCTGACAGGCGTGGCTGTGGGGGTGGTCCTTTCCGTCAACCAACTCCATTCGTGGTGGCTGGTGGGGATCGAAGCAGTGCTGGCCGGCGCAGGGTCAGTGTTCGCAGACAAGGTAAGACTCAAGCCCAACGGCCCGTTCTTCGGAATCCTGGCTTTAGGCGCCTGTGCTTCCGTCCCTCTGGCCGTCCCCTGGTATGTTGCCCTGCTGATCGCCGCCGCGTCTGCCGTTTTCTCCCTGGCCGTCGGGTTCGGAGGGTGGGTCCGTTCGCGGGCCTGGCAGCCGGGTGCGGCCGGGAACATCGCGTCGCTCCGGGCGGTGGGTGCCAGACCTGCCGTGGTCCATGCAGCGAGGTATGTCCTGGCTGTTGGTGCTGCCGGCACGCTGGGTGTCCTCAGCGGAAGTGGCCATCCCCACTGGGCCATGGCGGCCGCGGCAGTGCCGCTGGCAGGTGCGGACCTTCCCAGCAGTGTCCGCCGGGGGATCCACAGGATCGTGGGGACGTTCTTAGGATTGGTGGTCACCGCCGTCGTACTTCTTCCCCATCCCTGGCTGCCGGCTGAAATCCTGGCCGTCCATCACGTGGCGGTGCTGGCCGTCCTGGTCATCGTCTTCCAGTTCACCACGGAGCTGTTCATGGCCAGGCACTACGGACTGGCCATGGTGTCCTTCACTCCGGTGATCCTGCTGATGACGCAACTCGCAGCGCCCATCGATCCCGCGGTACTGATTCTTGAGCGCGGCGTGGAGACCTTGGTGGGCGCCCTGGTGGGGATCCTTGTAGTGCTTGCGGTGCGGCGGGCCCCTACCTCGCCCTTCGCGGCGGGCCTGTTGTCAGACGGGCGGGGAGCACCTGCGCCGCCGCCATCATGAMGGIGDMKPVWQQVRALHRLEPADNDGLAAFRVAISVAIPSLTLLLLGRPDLIIYAVFGALTGMYGRSEPHQLRLKHQAQAALVLLTGVAVGVVLSVNQLHSWWLVGIEAVLAGAGSVFADKVRLKPNGPFFGILALGACASVPLAVPWYVALLIAAASAVFSLAVGFGGWVRSRAWQPGAAGNIASLRAVGARPAVVHAARYVLAVGAAGTLGVLSGSGHPHWAMAAAAVPLAGADLPSSVRRGIHRIVGTFLGLVVTAVVLLPHPWLPAEILAVHHVAVLAVLVIVFQFTTELFMARHYGLAMVSFTPVILLMTQLAAPIDPAVLILERGVETLVGALVGILVVLAVRRAPTSPFAAGLLSDGRGAPAPPPSNANANANANA
D1-29_004751620proP_2Ectoine/proline transporter ProPATGCCCACGGACCGAAGCACGACCGACTCTTCAGCAGGCGTAGAAAACGCCGGCGGAACCGACACACTGGCAGCACCAGTCACCTCAGCGAGCGGAAGGAAACCGAAGCTCCTCGCGCGGCGACGGCTCAAAGAGTCGGACGTCAACGTGGTGAATCAGCCCATGCTGAAAAAGGCCCTCGGCGGAACCATCGTGGGAAACACCATGGAATGGTTCGACGTCGGCGTGTTCGGCTACCTGATCACCACCATGGGGCCTGTGTTCCTTCCCGAGGCGGACCCGGCAGTCCGGACGCTGTTCCTTTTGGGAACATTCGCGGCCACCTTCATTGCCCGCCCACTGGGCGGCGTGGTGTTCGGCTGGCTCGGCGACAAGATCGGGCGGCAGAAGGTACTCGCCGCAACCCTGATGATCATGGCTGCGAGCACGTTCGCCGTCGGGCTGCTGCCCGGATACGCGCAGATCGGCATCTGGGCCGCTGTTCTCCTGGTGGTCCTGAAACTTGTCCAGGGCTTCTCCACCGGCGGTGAATATGCTGGTGCCACCACGTTCGTCAGCGAATACGCCCCGGACAAGCGCCGGGGATACTTTGCGAGCTTCCTGGATATGGGCAGCTACCTTGGTTTTGCCTTGGGTGCGGCGCTGGTATCTGTCCTGCAGCTGACCCTTGGCCAGGCCGCCATGGAGGAATGGGGCTGGCGCATTCCGTTCCTGATTGCAGGTCCGTTGGGCCTGATCGCCATTTACTTCAGGAACAAGATCGAGGAATCCCCTCAGTTCCAGGCCACCCTGGACGCGCAGGAATCAATCGCGCAGGACGCCGATTCGGCTGACGTTGATGCCTCCAAGGGGCCGGTAGGCATTGTGAAGGCCTACTGGCGCTCACTCATTGTGGCGATGATCCTTGTGGCCGCGGCGAACACCGCCGGCTACGCCCTGACGTCGTACATGCCGACGTACCTCACCGAGTCCAAGGGTTACGACCCCGTCCACGGAACCCTGCTGACCATTCCCGTGCTGGTCATCATGAGCCTCTGCATTCCCCTGACCGGGAAGCTCTCAGACCGCATCGGCCGCCGTCCCGTGTTGTGGATCGGCGCCGTCAGCACCGTGGTGCTCGCAACGCCTGCGTTCATGCTGATCGGCGTCGGTGAAGTCTGGTCCACCCTGGCAGGACTTTCGCTGATCGCTTTTCCGGTGGCCTTCTACGTTGCGAACCTCGCCTCAGCTTTGCCGGCGCAGTTCCCGACCGCCAGCCGGTACGGTGCCATGGGTATCGCCTACAACTTCGCCGTGGCCATCTTCGGAGGAACCACCCCGTTCGTTGTTGCCGCGCTGATCACGGCCACCGGCGACGACATGATGCCCGCCTACTACCTGATGGCCACCTCCCTCATTGGTGCCGTGACCATTTACTTCCTCAAGGAATCGGCCAAGCGTCCGCTGCCCGGCTCCATGCCGAGCGTGGCAACCCAGGAAGAGGCACGCGAACTGGTGGCCACCCAGGATGAGAATCCGCTGATCGACCTCGATGACATGCCGTTCGAAACCCAGGACGTCATCACCGCCAACGCGGCACCTGCCGACGCCGAAGAGGATAAAGTCCCCGCTTCCGTGTAGMPTDRSTTDSSAGVENAGGTDTLAAPVTSASGRKPKLLARRRLKESDVNVVNQPMLKKALGGTIVGNTMEWFDVGVFGYLITTMGPVFLPEADPAVRTLFLLGTFAATFIARPLGGVVFGWLGDKIGRQKVLAATLMIMAASTFAVGLLPGYAQIGIWAAVLLVVLKLVQGFSTGGEYAGATTFVSEYAPDKRRGYFASFLDMGSYLGFALGAALVSVLQLTLGQAAMEEWGWRIPFLIAGPLGLIAIYFRNKIEESPQFQATLDAQESIAQDADSADVDASKGPVGIVKAYWRSLIVAMILVAAANTAGYALTSYMPTYLTESKGYDPVHGTLLTIPVLVIMSLCIPLTGKLSDRIGRRPVLWIGAVSTVVLATPAFMLIGVGEVWSTLAGLSLIAFPVAFYVANLASALPAQFPTASRYGAMGIAYNFAVAIFGGTTPFVVAALITATGDDMMPAYYLMATSLIGAVTIYFLKESAKRPLPGSMPSVATQEEARELVATQDENPLIDLDDMPFETQDVITANAAPADAEEDKVPASVPGPT0013645_43DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013645-proP-K03762NANA
D1-29_00476246hypothetical proteinATGACCAAAGACCACCGCCAGCCCGCCACCGGGGACGCAGACGCGCCGTCGGACTCTGAAAAGCCGGCAAACCCTGAAAAAGCTGAGTCGGGCGGCGTCCGGTCCCGGCTGACGGAAGCCCAAAAAGCCATGCTCGACAGCAAATCCCGTGGCGGAGGCGCTGGCCTCCAGAGCGTGGGCAAGAGTCACAAGCCCACCCACGTGAGCGGCAAACAAGGCCCGGCAGAAAAGAAAGTCCGCTGGTAAMTKDHRQPATGDADAPSDSEKPANPEKAESGGVRSRLTEAQKAMLDSKSRGGGAGLQSVGKSHKPTHVSGKQGPAEKKVRWNANANANANA
D1-29_00477261hypothetical proteinATGGCTGAAATGCACCCAGCAGGAAAGATCGAACCGGAGGTTTTGAGTCACCTCGCAGCAGCAATGGACACGCCGGCCATACCAGGACCGGCCACCGTTCCGGTAAACCCAGCAATGACCGGGGAGCAGCATTGGCCGGACGGGAACGGCAGTAAACGCCACCCCAAAGAACGGGGCGCCGGCCATGGAAGGATGGGCCACGAGGCCGCAGTGACTGCGGTGCACCGGACCAGCCGGCCGCAAATGCCGCACTCGTCGTGAMAEMHPAGKIEPEVLSHLAAAMDTPAIPGPATVPVNPAMTGEQHWPDGNGSKRHPKERGAGHGRMGHEAAVTAVHRTSRPQMPHSSNANANANANA
D1-29_004782595ligDNA ligaseATGGCCGGCACTAAGGAACGGGTCCGGGTGGCGGGGCGAGAACTGAGCCTGACCAACCTGGAGAAAATCATCTACCCGGAGACGGGCACAACCAAGGCCGACGTCCTGGCCTACTACGCCGCCGTCGCGCACGTCCTGATCCCTGCCGCCGCCAGCCGGCCGGCCACCAGAAAGCGATGGGTCAACGGCGTGGGCACCGCAGACAATCCCGGGGAGGTGTTTTTCCAAAAGAATCTTGAAGATTCCGCGCCGGGCTGGCTCCCGCGGGCCGCCATCACGCACAAGGAACGGACCATCTACTATCCGATGGTCAATGACCGCGCCACGTTGACCTGGTTCGGCCAGATCGGTTCATTGGAAATCCACGTGCCCCAATGGCGCGTGGATTCCCACGGCAACCAGCTCAACCCGGACCGCCTCGTTCTGGACCTGGATCCCGGTGAAGGCGCGGGGCTGGAGGAATGCGTGGAGGTGGCCAGGCTGGCCCGCGCCATCCTTGAGGACGTGGGCCTGGCCCCGGTTCCGGTGACCAGCGGCAGCAAGGGCATCCACCTTTACGCAGGACTGGACGGGACCCAGAGCTCCGAACAGATCTCGTCCTTCGCTAAAGAACTGGCCCGCGCGTTGGAGGCGGATCATCCCGATCTTGCCGTCAGCGATATGAAGAAAACGCTCCGCACAGGCAAGGTCCTGGTGGACTGGAGCCAGAACAACGCGGCCAAGACCACCATCGTGCCCTACTCGCTCCGCGGCCGCCCCACTCCCACCGTGGCCGCTCCGCGGACCTGGCGCGAGCTGAGCTCCCCGCATCTGCACCAGCTCGATTACAAGGCTGTCATGCGCCGCGTCCAGGCGGGCAAGGACCCTTTCGCCGCCATCACCACAGCTGCCGGGCACCCCGGCGGCTCTGGTCAGCACGGCAACCCCGGCAACTCAAATAAAAGTGGAAACCACGACGACGGCGCCGCGCATCCGCGCCTGCAGAAGTACCGTTCCATGCGGGATCCGCACGCAACCCCGGAACCCTTCACCGGCGTCGAGGGCCCCGGTAACACCTTTGTGATCCAGGAGCACCACGCCAGCCGGCTCCATTTTGATTTCAGGCTGGAGCACGACGGCGTCCTGGTCTCCTGGGCCCTGCCTAAAGGCGTGCCGGAGTCAGGCGACAAGAACCACCTGGCCGTCCAGACCGAGGACCATCCGTTGGACTATGCCACATTCGAAGGCACCATCCCTCAGGGTCAGTACGGCGCCGGCGAGGTCACCATCTGGGACCACGGAACCTACGAACTCCACAAGTGGATCAACGGCAGGGAAGTCATCGTCACGCTGACCGGCTCCGAGGGTGGCGGGCTCGGCGGAACCAAAAAGTTTGCCCTGATAAACACCGGCCGCGGCGGAGGGAAGGATACCGAGGGGCAGTGGCTGATCCACCTGATGGACAAAGACCACCACCGCCGTCGTCCGCTTTCGTCGAAGGACGGATCAAACGAAGGCGAGGATGAGCCCGCGGACCTGCCGGCGCCCTCGAAGCGGGAATCCCCCGCAGCCGACCCCGCCCGTGCACGTAGACCCGCCGCCGCTGCAGCCCAAGCAGCTGCCGCAGTCGCCGTGCCAGCGGCAGTCACCGCGCCCGCGCCCGAGGACTTCAGGCCCATGATGGCCACGTCGGGAACGGTGGCGGACCTCCAAGGCAGCGGCTGGCACTTTGAACTGAAATGGGATGGCGTCCGGGCCGTTATCGTGGCCGATGAAAAGAAGATCCGCATCTTCAGCCGGAACGGCAACGACGTCACGGCAACGTATCCGGAACTGGCGGTCCGAAACTGCTGGCCCCCACAGGCGTTCGCCGCCGACGGCGAGATCATCGCCGTCGGGCCTTCCGGAAAACCGGATTTCGGGCGGCTGCAGGGACGGATGAAACTGACCCGGCCCCACGACGTCGAGAGGGCCCGCGCCTCCATCCCGGTCCGGCTGATGCTTTTTGACCTGCTGTCCGAGGACGGCGAAGACCTGCGCCGCAGGCCGCTGGAGAAGCGGCGGCAGCGGCTGGAGGAATTTTTCACGCCATCCGATTGCCCGGTTGAGTTGTCTCCGGTGCTGGACGAACGGATCGAGCACATCCTCGAGAGCGCGCGGGAACTTGGCCTGGAAGGGGTGCTGGCGAAGCGGACCGGCAGCCGCTATGCCAGCGGCCAGCGCACCCGGACCTGGATCAAGATCAAGCTCGAAAAGACCCAGGAAGTAGTGGTGGGCGGCTGGCGTCCCGGCAAAGGGGGGCGGAACAGTTCGGTCGGTTCCCTCCTGGTGGGTATCCCGGACGGGAAAAAGCTGCGGTACGCAGGCCGGGTGGGCAGCGGGTTCAGCACCAGGGAACTGACGGAGCTTCGGCTCAAAGTCGATGCGCTGGCGCGGAAGACCTCCCCTTTCGACGAGGTTCCGGCGGAGGACGCCGCGGACGCGAACTGGGTAAGCCCGCAGCTCGTGGGAGAAGTGACCTTCGGTGAATGGACGGGGGGCGGGAAGCTCCGGCACCCTGTCTGGCGCGGCTGGCGCGTGGATAAGGAGCCGGGGGACGTTGTGGCGGAGTCCTGAMAGTKERVRVAGRELSLTNLEKIIYPETGTTKADVLAYYAAVAHVLIPAAASRPATRKRWVNGVGTADNPGEVFFQKNLEDSAPGWLPRAAITHKERTIYYPMVNDRATLTWFGQIGSLEIHVPQWRVDSHGNQLNPDRLVLDLDPGEGAGLEECVEVARLARAILEDVGLAPVPVTSGSKGIHLYAGLDGTQSSEQISSFAKELARALEADHPDLAVSDMKKTLRTGKVLVDWSQNNAAKTTIVPYSLRGRPTPTVAAPRTWRELSSPHLHQLDYKAVMRRVQAGKDPFAAITTAAGHPGGSGQHGNPGNSNKSGNHDDGAAHPRLQKYRSMRDPHATPEPFTGVEGPGNTFVIQEHHASRLHFDFRLEHDGVLVSWALPKGVPESGDKNHLAVQTEDHPLDYATFEGTIPQGQYGAGEVTIWDHGTYELHKWINGREVIVTLTGSEGGGLGGTKKFALINTGRGGGKDTEGQWLIHLMDKDHHRRRPLSSKDGSNEGEDEPADLPAPSKRESPAADPARARRPAAAAAQAAAAVAVPAAVTAPAPEDFRPMMATSGTVADLQGSGWHFELKWDGVRAVIVADEKKIRIFSRNGNDVTATYPELAVRNCWPPQAFAADGEIIAVGPSGKPDFGRLQGRMKLTRPHDVERARASIPVRLMLFDLLSEDGEDLRRRPLEKRRQRLEEFFTPSDCPVELSPVLDERIEHILESARELGLEGVLAKRTGSRYASGQRTRTWIKIKLEKTQEVVVGGWRPGKGGRNSSVGSLLVGIPDGKKLRYAGRVGSGFSTRELTELRLKVDALARKTSPFDEVPAEDAADANWVSPQLVGEVTFGEWTGGGKLRHPVWRGWRVDKEPGDVVAESPGPT0014910_605DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-29_004791131kuNon-homologous end joining protein KuATGAGAGCCATCTGGAAAGGTGCCATCGCGTTCGGCCTGGTCAACGTGCCTGTGAAGGTCTATAGCGCCACCGAGGATCATGACATCAGTCTGCACCAGGTCCACAACGCCGACGGCGGCCGGATCCGCTACCAGCGCCGGTGTGAGGTCTGCAGCGAGATCATCGACTACTCGGATATTGAGAAGGCCTTCGAGGAAGACGGCAGGACGGTGGTCCTGTCCAAGGATGAGCTCAAGGCCATCCCGGCCGAGAACAGCCACGAGATCGAAGTGGTCCAGTTTGTGCCGTCCGAGCAGCTGGAACCCATGATGTTCGAGAAGAGCTATTACCTGGAGCCGGACTCCAAGTCGCCCAAGGCCTACGTCCTGCTGCGCCGTGCGCTTGAGGATACCGACAGGGTGGCCATTGTGCAGTTTGCCCTGCGCGACAAGACCCGGCTGGGCGCGCTCCGTATCAAGGACGACGTGCTGGTGCTGCAGTCCCTCCTGTGGCCGGACGAGGTCCGGGAAGCCAACTTTCCGTCGCTCGATGCTGACGTCCGGATTTCCCCCCAAGAGCGTGAAATGTCGGCCGCCCTGGTGGAGTCCATGGCCGGGGACTTTGAGCCCGAATCGTTCACTGACGAGTATCAGGTGCAGCTCCGGCAGCTGATCGAGGCCAAGCTGGAGCAGGGCGATGCGCTGGACACCGAGGCCACGTTCGGGGTTGAGGCGGGCGAAGGCAAGGGCGAGGTGATCGACCTGATGGAGGCGCTCAAACGCAGCCTGGACCGGAAGCGTGGCGGCGGGCTGCCGGAAGCTGCCGAGGATACTGAGGATGAAGAGGCGGAGGAGGCGCCGGCCAAATCTGCCAGTGGTGGCACCAAAACTGGTGGCGCAAAAACCGCCGGCACCAAGACTGCGGGTACCAAAACAGCAGGGACCAAGACCGCGGCGGCCAAATCGACAACGGCCAAGTCGGCCACAACCAAGTCCACGTCCGGTTCGGCCAAAGCCAGTTCCGCTCAGTCCAGTCCGGCGAAGTCCGAAGCTGCCAAGTCCACCGTCCGGAAGCCCGCCGCCAAGCCGGCGGCGTCCTCCGACAAGCCCGAGGCGAAGGCGTCCACTACGCGGGCGCGCAAGCGTGCCTGAMRAIWKGAIAFGLVNVPVKVYSATEDHDISLHQVHNADGGRIRYQRRCEVCSEIIDYSDIEKAFEEDGRTVVLSKDELKAIPAENSHEIEVVQFVPSEQLEPMMFEKSYYLEPDSKSPKAYVLLRRALEDTDRVAIVQFALRDKTRLGALRIKDDVLVLQSLLWPDEVREANFPSLDADVRISPQEREMSAALVESMAGDFEPESFTDEYQVQLRQLIEAKLEQGDALDTEATFGVEAGEGKGEVIDLMEALKRSLDRKRGGGLPEAAEDTEDEEAEEAPAKSASGGTKTGGAKTAGTKTAGTKTAGTKTAAAKSTTAKSATTKSTSGSAKASSAQSSPAKSEAAKSTVRKPAAKPAASSDKPEAKASTTRARKRANANANANANA
D1-29_00480267hypothetical proteinATGCCCGGCAAGAAAAACCCGAGCGTGAAAGATCCTAAGCTGTATGAGGAACTGCGCGAGGATGGCGCCTCCAAGCAGAAAGCCGCCCGGATTTCGAACGCCGCCGCCAAAAAGGGGCGCTCCGAGGTGGGCCGCAAGGGCGGCAAGTCCGGTGATTACGACGATTGGACAGTCCCGCAGCTGAAAGCCAAGGCGAAGGAAATAGGCCTCACCGGTTATTCCTCCAAGAAGAAGAGCGAACTCATCTCCGCCCTCCGGAACTCCTAGMPGKKNPSVKDPKLYEELREDGASKQKAARISNAAAKKGRSEVGRKGGKSGDYDDWTVPQLKAKAKEIGLTGYSSKKKSELISALRNSNANANANANA
D1-29_00481879COG1262Formylglycine-generating enzymeATGCACGCCGACGTGCTGATCCCGGCAGGAACGTATGCCATGGGGGACTCTTTTGACGAGGGGTACCCTGCTGACGGCGAAGGGCCCGTGCACGATGTTCGCTTGGATTCATTCCGGATTGACGCCACGGTGGTGACCAACACCATGTTCGCAGCATTTGTGGACGCCACCGGGTACCGCAGCGATGCGGAGAGCTTTGGCTCATCGGCGGTGTTCCACCTGCTCGTCGGGGCTCCGCGGAAGCACATTATTGGCGAAGCCGCCGGCGCGCCCTGGTGGCTAAACATCCGGGGTGCGGACTGGCGCTACCCGGCCGGAAGAGGCTCCCACTGGACAGAAATCCCTGATCACCCGGCTGTCCATATTTCGCACAACGACGCCCTGGCCTACTGCCGGTGGGCCGGCCGCCGCCTCCCCACCGAGGCGGAGTGGGAGTATGCGGCACGGGGCGGCCTGGAAGGCCGGCGCTACCCGTGGGGCAATGAACTGCTTCCCGACGGCGGGGATCACCATTGCAATATCTGGCAAGGTACGTTTCCCACCACCAACACGTTCGACGACGGTTTCCTTGGCACCGCCCCTGCCGGAAGTTTTCCCCCGAACGGGTACGGCCTTTTCCAGATGGCCGGCAACGTCTGGGAGTGGTGCTCGGACTGGTTCCTGCCGAAGTACTACCGGAATTCCCCTGCCTACAACCCGCCCGGCCCCACCATCGGGGCGGGGCGGGTCATGAGGGGCGGGTCCTACTTGTGCCATGAGTCGTACTGCAACCGGTACCGGGTAGCCGCGCGCAACGCGAACACGCCGGAATCCTCCAGCGGAAACTGCGGATTCAGGACTGCAAGGACGGCGCCAGGCACCAAAAGCAAGCAGCCTTAGMHADVLIPAGTYAMGDSFDEGYPADGEGPVHDVRLDSFRIDATVVTNTMFAAFVDATGYRSDAESFGSSAVFHLLVGAPRKHIIGEAAGAPWWLNIRGADWRYPAGRGSHWTEIPDHPAVHISHNDALAYCRWAGRRLPTEAEWEYAARGGLEGRRYPWGNELLPDGGDHHCNIWQGTFPTTNTFDDGFLGTAPAGSFPPNGYGLFQMAGNVWEWCSDWFLPKYYRNSPAYNPPGPTIGAGRVMRGGSYLCHESYCNRYRVAARNANTPESSSGNCGFRTARTAPGTKSKQPNANANANANA
D1-29_004821503COG3119N-acetylgalactosamine-6-O-sulfataseTTGACCGAACCAACCCAACGGCCGAATGTCGTACTGATCCTCGCGGACGACCTTGGCTGGGGTGACGTGGGATGCAACGGGGCAGAGCGAATCAGCACTCCCCACATTGACTCACTTGCGCAGCAGGGAACCCGGTTCACTGATGTCCACTCAGCCTCGGCGGTGTGCACCCCCAGCCGGTATGCCCTTTTGACGGGTCAGTACAGCTGGCGCACACGGCTCAAAAAGCGTGTCCTGATGGGCCACGCCCCCGCACTCATCGAGAGCGGGACGCCCACTGTTGCATCCGTTCTGCATGGCTGCGGATATCGCACGGCAGCCATCGGAAAGTGGCATCTGGGACTGGGTTGGCGGCACAAGGACGGAACGAAATGGAAGGCTTCCAACCCTGACCACCCGTTGGAGCTGGAATCGGTCGGCACGGACTCGCGCCTGCTCCTGAACAGCGTGGATACCGGGGATACCATCGACTACACGAAAGCGTTCGAGGACGGCCCGCTGGAGGTCGGATTTGACCGGTTCTTCGGTATCGCCGGGTCCTTGGATATGCCGCCGTACTGCTTCCTTGAGCAGGACAGGACAGTGGGCATCCCAGCGGAGCCGAAACGCGAGTACCTCACCGAACAACGCCCGGGCCTGCAGACACCGGACTGGGACGAGCACCAGGTAGATCTCCGTTTCACTTCTGAAGCGGTCCGCTTCATCGAGGAAGCACCCTCCGAGCAGCCGTTCTTCCTCTACTTTGCGCCATCGGCGCCCCACCGCCCCCAGGTTCCGCCTGAATTCCTCAGGGGCACCTCCCAAGCCGGACCCCGCGGGGACTCTGTGGCTTTCGTCGACTGGATGACCGGTCAAATCCTCGAAGCCCTGGATAGAACGGGGCGATCCCAGGACACCGTGGTGATCTTCACCAGCGACAACGGGGCGCCCACTGTTTATGACGACGGCGACACCACCATCCACAGGCCAAATGGGCCCTGGCGTGGGCAGAAAGGGGATTTGTGGGACGGCGGGCACCGCGAACCGTTCATCGTCCGGTGGGCCGGCACCGTTCCCGCCAACGCTGTCAGCGATCAGCTGCTTGGACTGGTAGACATGCTTCCCACCCTTGCCGCGCTGGTTGGTGCGGACCTGCCGGAATTGCCCGTGGACGGTGTTGACGTCTCGCCTGCCCTCCTGGGAGAACCGTGTCCTCCCAGGGTTCTGGTGCACCACAGCATGGAGGGATCATTCTCAGTGCGCGACGGATCGTGGAAGGCATTGTTCTCGACGGGTTCGGGAGGAGGCTTCTCTGAACCGGCGGGCGTTCCCGTGACCGCTGAGGAACCCGGGGGCCAACTCTACGACCTGGCCACGGATCCCGATGAACAGGAAAATCTTTGGGAAAGGCATCCGGAACAGCGCCAGAGGATGCAGGGACTGTTGGAGGACATCATCGGCCCTGACGCAGCAATCGATGCCCATGCAGCGGCGGGATCCGAGGGGCAGAGCATTGACCGATGAMTEPTQRPNVVLILADDLGWGDVGCNGAERISTPHIDSLAQQGTRFTDVHSASAVCTPSRYALLTGQYSWRTRLKKRVLMGHAPALIESGTPTVASVLHGCGYRTAAIGKWHLGLGWRHKDGTKWKASNPDHPLELESVGTDSRLLLNSVDTGDTIDYTKAFEDGPLEVGFDRFFGIAGSLDMPPYCFLEQDRTVGIPAEPKREYLTEQRPGLQTPDWDEHQVDLRFTSEAVRFIEEAPSEQPFFLYFAPSAPHRPQVPPEFLRGTSQAGPRGDSVAFVDWMTGQILEALDRTGRSQDTVVIFTSDNGAPTVYDDGDTTIHRPNGPWRGQKGDLWDGGHREPFIVRWAGTVPANAVSDQLLGLVDMLPTLAALVGADLPELPVDGVDVSPALLGEPCPPRVLVHHSMEGSFSVRDGSWKALFSTGSGGGFSEPAGVPVTAEEPGGQLYDLATDPDEQENLWERHPEQRQRMQGLLEDIIGPDAAIDAHAAAGSEGQSIDRNANANANANA
D1-29_004831245iolG_3Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCCTGAAAGTGGGAATCCTTGGCTTTGGGGAGCGCTCATCGATCGCGCACTACGCCCACAAGCCCGATGAAGGCTCGGAAGTCGCCGCCGTTTTTGATCCAAGTGAAGCCGCACGGGACCGTGCGCAAGCGGATTATCCTGACGCCCGCGTGACGGGGAGCCTTCGTGAATTCCTGGCCCTTGGCCTGGACGCCGTGATGATTACCTCGCCGGACCATACGCACGCCGCCCTGGCGTTGGAAACGCTGAGGGCCGGCATTACCACCTTCTGCGAAAAGCCCCTTGCCATCACCCTGGAGGACTGCGACCAGGTACTGGAGGAGGCGTTCCGCACCGGAACGCGCCTTTACATCGGCCACAACATGCGGCATATGCCAGTGATCGTCCAGATGCGGCAGCTGATTGATGAGGGCCGCATCGGGGACGTCAAAGCAATCTGGTGCCGGCACTTCATCGGCAATGGCGGCGACTTCTATTTCAAAGACTGGCACGCGGACCGGAGCAAGTCCGGCGGCATGCTTCTGCAGAAAGGAGCCCACGACATTGATGTGATCCATTGGCTGGCCAAAGGCTACTCGCGGCGGGTCGCGGCAGTCGGCAGCCTCAGCGTCTATGGGGAAATCGCGGACCGGCGGGACCGAAGCGCAGAACGGCGCAGCGACTGGTTCAGCCTTGATAACTGGCCGCCGAAAGCACAAACAGGGCTCAACCCGGTAGTCGACGTCGAGGACATCTCCATGATGAACATGATCCTGGACAACGGAGTGCTGGGCGCCTACATGCAATGCCACTTCACCCCCGATTACTGGCGGAACTACACGGTCATCGGAACCGAGGGCCGCCTGGAGAATATGGGCGATGGCCCGGGCAGTGAAATCCACCTGTGGAACAGAAGGCGGGAAGGCCACGCTCCGCCTGACGAAATCTACGCCGTCGGCGGTGACGACCAAGGCCATGGCGGCGCCGATCCGGTAATGGTGGCCGAGTTCCTGAAATTTGCTGCAGATGGAGTACCTACGGCCACGTCACCCATCGCGGCACGAAACGCCGTCGCCGCCGGACTGCTTGCCACCGAATCCCTCAGGGGAAACGGATGCGCCTTGGACGTTCCCATGGTCGACGAGAGCCTTGCCTACTACTTCGAGTCGGGACAAAAGCAGCAGCAGCCCGCACCCGTCAGGATCCCGCAGCCGGGACCCTCCCCAGTCTCCACCTCCATCCATTACCAGGAGAAAAAATGAMTLKVGILGFGERSSIAHYAHKPDEGSEVAAVFDPSEAARDRAQADYPDARVTGSLREFLALGLDAVMITSPDHTHAALALETLRAGITTFCEKPLAITLEDCDQVLEEAFRTGTRLYIGHNMRHMPVIVQMRQLIDEGRIGDVKAIWCRHFIGNGGDFYFKDWHADRSKSGGMLLQKGAHDIDVIHWLAKGYSRRVAAVGSLSVYGEIADRRDRSAERRSDWFSLDNWPPKAQTGLNPVVDVEDISMMNMILDNGVLGAYMQCHFTPDYWRNYTVIGTEGRLENMGDGPGSEIHLWNRRREGHAPPDEIYAVGGDDQGHGGADPVMVAEFLKFAADGVPTATSPIAARNAVAAGLLATESLRGNGCALDVPMVDESLAYYFESGQKQQQPAPVRIPQPGPSPVSTSIHYQEKKNANANANANA
D1-29_004841275yesO_2COG1653Putative ABC transporter substrate-binding protein YesOATGAAAATCCGAGCAGGAATCGTCGCCATGGCGGCGGCAGCAACACTGGCGTTGTCTGCCTGTGGGGGAGGGCAACAGTCCCCAACGCAGGACCAAGGGCCGGCCGACTCAGGGGAGCTGCGTTTCGCGATGTGGAACCAGGCCCAGTCCGAAGTCATGAAGACCATAGTGGCCGACTTCAACAAGACAAACCCCAACATCAAGGTAAACGTCGAGGTCACTCCTTTCGACAATTACTGGACCAAGCTGCAGACCGAGGCGTCCTCGGGTAACCAGCCGGATGTCTTCTGGATGAACGGCCCCAACTTCCAGCTGTATGCCAGCAACGGCCAGCTTGAACCCTTGGATGATGTCATCGACGGCAACAAGATTGACCCCGCGAACTATCCGGAATCCCTTAACAAGCTGTACAGCTACGAAGACAAGCAGTATGGCGTCCCGAAGGACTTCGACACCGTAGGCCTCTGGTACAACAAGAAGATTTTCGACCAGGCAGGCGAGACGTACCCCGCGGACAACTGGACCTGGGAGGACTACAAGTCCACCGCCAAGCGCATCAGCGACAAGCTCAAGGACCAGGGAATCTACGGAACGGCCATCCGTGCAGGCGATGCACAGATGACCTACTACAACAGCATCCCCCAGGCTGGCGGATTTGTGATTTCCGAAGACCAGAAGAAGAGCGGCTACGACGATCCCAACACCATCAAGGGACTCAAACTCTTTGCCGACCTGATGGCTGACGGCTCCGCACCTACGGCCCAGCAGCTCACTGACACCCGCGGTGACAAGTGGTTCGCGTCTGGCAGGGCGGCCATGATCTGGGGCGCCTCATTCGAAGCCCCCGTGTTCTCAGCCATTAAGGACGATATCCAGGTGGTCCCGCTTCCCCGTGACTCCAAGCAGGCAACCGTTATTCACGGGCTCGCCCACGTCATCTCGGCCAACTCCAAATCCAAGGCTGCTGCCAAGACCTTCCTGGCCTACCTGGGATCAAAGGAAGCTTCCGAAACGTGGAGCAAGTCCGGCACCGTCATCCCGTCCTTCAAGGGATCACAGGATGCCTACCTGGCCAGCAATCCGCAGTGGAACCTGCAGGTCTTCCTTGACGCAGCCGAGAACTACGCCGTCCCGTACCCCGTCTCCAAGAACACCGCGGAATGGAACAAGCTCGAAAAGGACATCCTGTCCGGTGTCTGGACAGGACAAAAAACAGCGGAAGAGGCTGGCAAGGAACTGGCCGCCAAGATGAACGAAACCCTGGCGAAGGAATAGMKIRAGIVAMAAAATLALSACGGGQQSPTQDQGPADSGELRFAMWNQAQSEVMKTIVADFNKTNPNIKVNVEVTPFDNYWTKLQTEASSGNQPDVFWMNGPNFQLYASNGQLEPLDDVIDGNKIDPANYPESLNKLYSYEDKQYGVPKDFDTVGLWYNKKIFDQAGETYPADNWTWEDYKSTAKRISDKLKDQGIYGTAIRAGDAQMTYYNSIPQAGGFVISEDQKKSGYDDPNTIKGLKLFADLMADGSAPTAQQLTDTRGDKWFASGRAAMIWGASFEAPVFSAIKDDIQVVPLPRDSKQATVIHGLAHVISANSKSKAAAKTFLAYLGSKEASETWSKSGTVIPSFKGSQDAYLASNPQWNLQVFLDAAENYAVPYPVSKNTAEWNKLEKDILSGVWTGQKTAEEAGKELAAKMNETLAKEPGPT0016545_8643DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00485948melD_3COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGTCAGTCCTTGCAAAAGGAAGCAGCGTCGGGCGCGCGGCCCAAAAGCCCGCGCGCCGGCCTGGCGGCGCCGCCCGCAAAGAGTCAGGCCTCGTTCCGTGGCTCTTCATCTTCCCCACCTTCCTGGGTGTTGGCATCTTCTTCCTGTGGCCAATGGTGCAATCCGTCTACTTCAGCTTTACGGAGTGGGGCGCTTTCGGAGGCACCACGTGGATTGGTCTGGAGAACTACCAGCGCCTCGTCACGGATCCGGAGACCCTGAAGGCACTGGGTAACACACTGGTTTACGCAGGTATCTCCCTTCTCTCCATCCCCCTTGCGATCTACCTCGCAAGCCTCATCAACCGCCCTGGCCTGAGGTTCAAGGGCCTGTTCCGTACCCTGTATTTCCTGCCCGTCATCACCATGCCTGCGGCAGTGGCGATCGTCTGGCGCATTATGTACAACGGCGATTTCGGGGTGATCAACTACGCCCTGTCGCTTGTGGGCATTACTGGGCCGCACTGGCTCTCTACACCGGGTCTGGCCATTACCGCCGTCGCGCTGGTGGGCGTGTGGCTGACGCTCGGGCTGAACATGATTATTCTGGGCGCCGGGCTCCAGGGCATCTCACCCGAAATCTATGAGGCAGCGGAGCTGGACGGGGCCAGCCCCTGGACCCAGTTCCGGCAGATCACTGTTCCGTTGCTGACGCCAAGCATCTTCTTCGTCACCGTGCTGACCGTCATCAGCAGCTTCAAGGTCTTTGACCTCCTGTTCGTCATGCTTGGGACCACCAACCCGGCCACGCAGGAGTCGGAGACGCTGGTCTACCTCTTCTACGACAAGGCCTTCATCACCAACGACAAGGGATACGCAGCAGCGATCGGCATGGTGCTGCTCCTGATCATTGCCCTTGTGACGTACTTCCAGTTCCGGATGCAGAAGAGGTGGGTTACTTATGTCTGAMSVLAKGSSVGRAAQKPARRPGGAARKESGLVPWLFIFPTFLGVGIFFLWPMVQSVYFSFTEWGAFGGTTWIGLENYQRLVTDPETLKALGNTLVYAGISLLSIPLAIYLASLINRPGLRFKGLFRTLYFLPVITMPAAVAIVWRIMYNGDFGVINYALSLVGITGPHWLSTPGLAITAVALVGVWLTLGLNMIILGAGLQGISPEIYEAAELDGASPWTQFRQITVPLLTPSIFFVTVLTVISSFKVFDLLFVMLGTTNPATQESETLVYLFYDKAFITNDKGYAAAIGMVLLLIIALVTYFQFRMQKRWVTYVPGPT0016535_7113DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_00486891araQ_3COG0395L-arabinose transport system permease protein AraQATGTCTGAGCTCGCCCAGCGCGCAGCAGTTGCGCCGCGCCCGAACAACACCCGCACCCGCAACACCGGAAAGCGGCGCTATTCCTCGAATGTTTCCGCGTACGTCGTGCTGTCCCTTGGCGCGGTCATCATGGTTTTCCCGTTCCTCTATCAGTTGTCGGCCTCGCTGATGACCAACGCGGAGGTGCTGTCGGTTCCACCAAAGTGGATCCCCGGAGCCGTGCGGGTGGAGAACTATGCAGCGGTTTTCGACACCATTCCCTTCCTGCAGCAAATGGGGAATACGGCCGTCTTCAGCGTCACCCGGACCGTCTCGCAGGTGGTGTTCTCCGCGTTGGCCGGCTATGCCTTCGCCCGGATGCATTTCCGCGGGAACACACTGCTGTTCGGGATTCTGCTGTCCATCCTGATGGTTCCGCCGGAACTGCTGATCATTTCCCAGTACCAGATCATCGATGCCCTCGGCTGGCTGAACACCATGCCAGGCCTCGTCGCCCCTGGCCTGGTCAGTGCTTTTGGAACCTTCATGATGAGGCAGTTCTTCCGGGGCCTGCCCATCGAACTGGAGGAAGCAGCACGAATTGACGGAGCCGGACCATTCCGGACATTCTTCCAAGTCATGCTGCCGCTGGCACGTCCGGGTCTGAGCGCCCTCGCGATCATCACCCTCATCGATGTCTGGGGTGTCCTGCTGTGGCCTCTGGTGGTGACGTCCAGCCAGGACCGGATGCCTGTGTCAGTAGGCCTGGCCTCCTTCCAGGGAGAGCACGGAGCCGAGTACCCCACCATGATGGCTGCGTCTCTGATGGCCATTCTTCCCATCATCATCCTGTTCATCTTCCTGCAGCGCCGGGTTATTGAAGGCTTCGCACACGCAGGCCTGAAGGGCTAGMSELAQRAAVAPRPNNTRTRNTGKRRYSSNVSAYVVLSLGAVIMVFPFLYQLSASLMTNAEVLSVPPKWIPGAVRVENYAAVFDTIPFLQQMGNTAVFSVTRTVSQVVFSALAGYAFARMHFRGNTLLFGILLSILMVPPELLIISQYQIIDALGWLNTMPGLVAPGLVSAFGTFMMRQFFRGLPIELEEAARIDGAGPFRTFFQVMLPLARPGLSALAIITLIDVWGVLLWPLVVTSSQDRMPVSVGLASFQGEHGAEYPTMMAASLMAILPIIILFIFLQRRVIEGFAHAGLKGPGPT0016540_3516DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00487906glmS_1COG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]GTGCCAGAATCAACCAACCAGACGCCCGGGAAATACATGGAGCAGGAGCTTCACTCCCAGCCCGATACCTGGGAGCAGGCTGCGGAACAGAGCCGGAAGGAGAACCTCCTGCCGCGTGACGGCCAGCGGATAGCAGTCATCGGGTGCGGCACCTCATGGTTTATGGCCCAGTCCTACGCGGTGCTGCGTGAACAGGCAGGAAAAGGAATCACCGATGCGTTCGCCGCCTCTGAGGCTTTCCTGGACCGAGGGTACGACGCCGTAGTGGCCATTACGCGCTCCGGAACCACCACCGAGGTACTGGACGTCCTGGAGGAGTTGCGGGGGCGGGTACCTACGGTAGCAATCGTGGGAGACAATTCGACGCCGGTGGCTGCAGCGGCCGACGCTGTTGTTGCCCTTCCCTACGCGGATGAACGTTCGGTGGTCCAGACACGCTTCGCCACCACCGCCCTGGCGTACCTGAAGGCATCGCTGGGTCATGACCTTGCGCGGGCTGTCCGGGATGCCCGCGATGTCCTTGCCGCTGAGATCGACCCCCGCCTGATCGCGGCGGAGCAGTTCAGCTTCATCGGTCGGGGCTGGACCATCGGACTCGCACACGAAGCGGCCCTGAAGATGCGGGAGGCCGCCCAGACCTGGACCGAGTCCTACCCGGCAATGGAGTACCGCCATGGACCGATTTCCATCGCTGCACCCCGCAGGGTCACGTGGATGTTCGGTGAGGCCCTTCCCGGGCTCGAAGGGGAAGTCGGAAACGCCGGAGCGCTGTATCTCCAGGACAGCGCAGATCCCCTCGCGCAGCTGGTCCATGCCCAGCGGGTCGCGCTTGAGAAGGCGCGCCACGCTGGCCTGGACCCGGACCACCCCCGAAACCTGACCCGCTCCGTCATTCTCAGCGCCTAGMPESTNQTPGKYMEQELHSQPDTWEQAAEQSRKENLLPRDGQRIAVIGCGTSWFMAQSYAVLREQAGKGITDAFAASEAFLDRGYDAVVAITRSGTTTEVLDVLEELRGRVPTVAIVGDNSTPVAAAADAVVALPYADERSVVQTRFATTALAYLKASLGHDLARAVRDARDVLAAEIDPRLIAAEQFSFIGRGWTIGLAHEAALKMREAAQTWTESYPAMEYRHGPISIAAPRRVTWMFGEALPGLEGEVGNAGALYLQDSADPLAQLVHAQRVALEKARHAGLDPDHPRNLTRSVILSAPGPT0017630_7467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-29_00488978glkA_1GlucokinaseATGGTCCTGAATACATCCAAACACTCAGTCATCGCCATCGACGTCGGAGGGACTGATATCAAGACCGCGGTCCTGGACCGCAATGGAGAGCTGCTGGCCGTTCAGCGCACTCCCACTCCGACGGATCACGGTGCAACAAAACAAAACAGTGCAACCAACGGTGCAAACACGGCAGGGGAGCTTGTCCTGGGGCGGGCGGAAGAACTTGTGCGGGAGCACCAGGAAGCCGGGATCGGGAAAATCGCAGCCGTCGGACTGGTGGTGCCGGGTCTGGTGGACGAGCCAAACGGTATCGGGCTCTACTCGGCAAACCTGGGCTGGCGCGATTTTCCCTTCCGGGAGCGATTGGAGAACAGGATCGGGCTGCCGGTGGCCTTCGGCCACGACGTCGGAGCAGCCGCGGAAGCAGAGTTTCGCTTGGGTGCAGGACGCGGCTTCGCCGACGTTCTGGTGATGGTGTTGGGAACAGGAGGCGCCGGAGCCGTCTTTGCCGACGGCCGGCGCGTCCGAGGCGGAGGCTATGCGGGCGAAATCGGGCACGCCCAGGTTCCCTGGGGAAGCAGCTGCAGATGCGGAGCCGAGAGTTGCCTTGAAACGGTTGCCTCGGCCCGCTCAATTGTCTTGAATTATCGACGGCGGTCCGGGCGTTCCGCCGCCAACGCCCAGGAAGTGGTCAGGCAGGTCGAGCTTGGGGATCGGCACGCCCTGGGTGCCTGGTCCGAGGCGACTGACGCCCTCGCCCACACCATCCGGCAGTGCTGTTCCATCCTGGGGATAGAAGCCGTGATCATCGGGGGCGGGCTGGCAGAGTCCGGGGAAACGCTCCTGGCCCCCGTCCGCCGCAAGGTCCTGGAGGGCCTTTCGTTCCACCGCAGGCCACAAATTTTGAAAGCCGAGCTGGGTCAGGACGCGGGACTAATCGGGTCGGGTTTGCTGGCCCGCGATCTTGCCGACCAAGCATTGGAGGGAGGGAAATAGMVLNTSKHSVIAIDVGGTDIKTAVLDRNGELLAVQRTPTPTDHGATKQNSATNGANTAGELVLGRAEELVREHQEAGIGKIAAVGLVVPGLVDEPNGIGLYSANLGWRDFPFRERLENRIGLPVAFGHDVGAAAEAEFRLGAGRGFADVLVMVLGTGGAGAVFADGRRVRGGGYAGEIGHAQVPWGSSCRCGAESCLETVASARSIVLNYRRRSGRSAANAQEVVRQVELGDRHALGAWSEATDALAHTIRQCCSILGIEAVIIGGGLAESGETLLAPVRRKVLEGLSFHRRPQILKAELGQDAGLIGSGLLARDLADQALEGGKNANANANANA
D1-29_00489975lacC_1COG1105Tagatose-6-phosphate kinaseATGCCACATCCGCGCGTCATCACCCTCACCCCGAATCCCGCAATTGACGAAACTTACATCATCGGCCGCCTGCGCGAGGGTGAGACACATCGAGTCGAGGCCCCGCTGACCCAGGCTGGCGGAAAAGGCGTCAACGCCGCACGTGTCCTGAACCAACAGGGATTTCCGGTTGTTGCGGTAACGCCGGCCGGGGGAAGCAGCGGGGATCGGTTCATTGCGGACCTGGAAGCCAGCACGCTGGCGCACCGTATCGTGGCAGTCCGCGCCGCCACACGGCGGAGCTTTGCCCTGGTGGACCTGTCCAACGGTGAAACAACCATATTCAACGAACGGGGAGAACCCCTCACCGGGCACGAGCTGCAGTCGCTGCTGGACACTGTGCAGGAGGAAATGGAAAGCAGCGGCGAGGAATCGGGGATCGGCTGCCTGATCGGTTCCGGAAGCCTGCCGCCCGGAGCGCCAGCCGATTATTTCGGCCGTCTTGTCCATCTGGCCCATTCCATGGGAGTGCCGGCGATTATAGACACGTCGGGTCCGGCCCTGGTCGAGGCCGCAATGGCCGGTGCCGATCTCCTCAAACCAAACGTTGGGGAGCTGGTGGAGGCCACCGGCATCGAAGACCTGTCCTTGGCAGCCCGGAGCCTGATTGCCAGGGGTGCCCAACGGGTGCTGGTCAGTGATGGCCCCAACGGTATGTACGCCTTCGACGCCGTCCATCCGCAGGAGTTCTGGTCTGCCCGCCTGCCAGAGCCGCTGGAGGGGAATCCAACGGGGGCTGGCGACGCAGCAGTAGCGGCGGCCGCAGCGGTTTTGGTGGACGGAGGGGACCTGCAGGAACTCCTGAAGCGCTCCGCGGCCTGGTCGGCTGCTGCCGTGCTGGAACCGGGTGCAGGAGTCATTTCTGCCCGGCACCACGAACTTGAAGAGCAACTGATTCTTACCACCCATCCTCACCCCCTGGAGACGAAACTGTGAMPHPRVITLTPNPAIDETYIIGRLREGETHRVEAPLTQAGGKGVNAARVLNQQGFPVVAVTPAGGSSGDRFIADLEASTLAHRIVAVRAATRRSFALVDLSNGETTIFNERGEPLTGHELQSLLDTVQEEMESSGEESGIGCLIGSGSLPPGAPADYFGRLVHLAHSMGVPAIIDTSGPALVEAAMAGADLLKPNVGELVEATGIEDLSLAARSLIARGAQRVLVSDGPNGMYAFDAVHPQEFWSARLPEPLEGNPTGAGDAAVAAAAAVLVDGGDLQELLKRSAAWSAAAVLEPGAGVISARHHELEEQLILTTHPHPLETKLPGPT0017940_254DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017940-lacC-K00917NANA
D1-29_00490834fba_1Fructose-bisphosphate aldolaseGTGACCCTGATGCAAACCGGCACCCTGATGGAAGAGGCCGTGCGCTTAGGGCGGGGCCTTGGCGCTTTGAACATCATCCACCTCGAAACCCTGGAGGCACTCCTTCAGGGTGCCGAGCAAGCGGATCGCGGCATCGTGGTCCAAATCTCGGAAAACTGCGTGAAATACCACGGCGGCCTGGAGCCTATTGCTGTTGCCAGCCTTTCCGCTGCCCGCTCTGCCAGCGTGCCTGTGGCTCTGCACCTGGACCATGCCCAGGACGAGGAACTCGCCCGGCAGGCGGTAGACCTCGGTTTTGGCTCGGTCATGTTCGACGGCGCGCACCTGGACTTCGAGGACAACGTCAAGGCCACAAAGCGGATCAGCGAGTACGCCCATGACCGCGGTGTCTTTGTTGAAGCCGAGTTGGGGAAGATCGGCGGCAAGGACGGCGCCCATGCCCCGGGCGTGCGGACCGACCCGGCTGAGGCAGTGATGTTTGTTGAGGCCACAGCCGTGGATGCCTTGGCCGTGGCGGTGGGGTCGTCCCACGCCATGACGGACAGGACCGCTGAACTGGACCTGGACCTGATCAAGCAATTGCGTGCTGCCGTCGCGGTTCCACTCGTCCTGCACGGCTCCTCAGGGGTTTCCGATGAGAACCTAGTCGCAGCGATATCTGCGGGAATGACTAAGATCAATGTCTCTACACATTTGAACGGCTTCTTTACCCGCGCAGTGCGCGGGTACCTGGAAACCCACCCGGATGTTGTGGATTCCCGAAAATATATTTCGGCCGGGCGGACCGCGCTCGTGCCGGAAGTTGCACGGCTGCTGACCCTCTTCGCAAGGTGAMTLMQTGTLMEEAVRLGRGLGALNIIHLETLEALLQGAEQADRGIVVQISENCVKYHGGLEPIAVASLSAARSASVPVALHLDHAQDEELARQAVDLGFGSVMFDGAHLDFEDNVKATKRISEYAHDRGVFVEAELGKIGGKDGAHAPGVRTDPAEAVMFVEATAVDALAVAVGSSHAMTDRTAELDLDLIKQLRAAVAVPLVLHGSSGVSDENLVAAISAGMTKINVSTHLNGFFTRAVRGYLETHPDVVDSRKYISAGRTALVPEVARLLTLFARPGPT0017615_4969DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624NANA
D1-29_00491837glpR_1COG1349Glycerol-3-phosphate regulon repressorATGAACAGACAAGAACGCCTGGCCGCCATCTTGGACATGCTGGCACAAACCGGACAGATCGACATCGATGATGTCGTTCACCGCTTTGGCGTGTCCCAAGCCACCGCAAGGCGCGACATCGACAGCCTCGCGGCCAGGCGGCTCTTGAGCCGCACCCATGGCGGTGCAGAGAAGGGCTCCGTGGCCTATGACCTGCCTGGCAGATACAACAGGAATGACAACGCCCGCCAAAAAGAAGAAATCGCCCGTACCGCCAGCTCCCTTATCCCCAAGGGCGCTGTCATCGGACTCTGCGGCGGAACCACCAGCACGGCACTGGCCCAGGTCCTGGCCACCCGGGATGACTTGCAGGAGCCATCCGACCGGCCCACCCTGACGGTGGTTACGAACGCCATCAACATCGCCGCCCAGCTGGCCGTGCGGCCGAACATCAAGGTCATGGTGACCGGGGGCGTGCTCAACCCCCGTTCGTATGAACTTGTAGGCCCCCACACTGACATCATCCTGGAGCGGATCGCCCTGGACCTGGCTTTTGTTGGGGTGAACGGCATCGATACGGAAGTCGGCCCCACCATCGCCGACGAAGCCGAAGCCGCGGTCAACACCTCTATGGCCCGTAGGGCAATGCGGGCGTACATCCTGGCGGATTCGTCCAAGATCGGCAATCGGGCCTTCGCAACCATGAGCGGCTTCAACTTCACCCAACTCATCACTGATTCCGGGATCTCGGACCAGGACAGAAAGCGCCTTGTTGCAAGCGGCGTCACTGTGCTCACCGGGGACAAACCTCCAGCCACGGGGACGAAGAGGCTCGAAGAGCAGGAACTGTTCGCTTAAMNRQERLAAILDMLAQTGQIDIDDVVHRFGVSQATARRDIDSLAARRLLSRTHGGAEKGSVAYDLPGRYNRNDNARQKEEIARTASSLIPKGAVIGLCGGTTSTALAQVLATRDDLQEPSDRPTLTVVTNAINIAAQLAVRPNIKVMVTGGVLNPRSYELVGPHTDIILERIALDLAFVGVNGIDTEVGPTIADEAEAAVNTSMARRAMRAYILADSSKIGNRAFATMSGFNFTQLITDSGISDQDRKRLVASGVTVLTGDKPPATGTKRLEEQELFAPGPT0017955_308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017955-agaR-K02081NANA
D1-29_004921311nagACOG1820N-acetylglucosamine-6-phosphate deacetylaseATGGATTATCTGGTTTCAGGGACCGTCATTACCGACGGGGAGATCCGCCAGGATCAGGTGCTGGCCATCATGGACGGAAACATTGTCTTTTCGGGTCCGGCCTCGGCATTCCAATCGAATCTGCTGCCTCACGCTGAAACCATCCGGATTCCCGACGGGGGTGCCGTGCTGCCGGGGTTAGTGGACTTGCATTGCCATGGTGCGGCAGGAGGCGATTTTCCGGCTGGCCATGAGGAGGACAGCCGGAAGGCCGCGTCCTTCCTCCACTCCCAGGGGACAACAACGCTGCTGGCCAGCGTGGTCACGGCGCCGAAGGACGATCTCCTCAAGGCCATCAGGTCGCTCCGGGTCTTGGCGGATGACGGGCTTATTGCCGGTATCCACGCCGAAGGGCCTTTTCTCTCGCATTCGCGATGCGGTGCCCAGGACCCGCGGTGGCTGCTGGAACCTGACCTCAAGCTCCTGAAGGCGTTGGTGACTGAGGCCGGCGGGCACCTGAAGACGATGACATACGCTCCCGAACTGCCGGGTTCCGATGAGCTTGTCTCCACGCTGGTGTCGGCCGGCGTGATCCCGTCCCTCGGCCACACGGATTCCGACGCGCGGACCGCCGCCGTTTCGCTTGAGCATGCGGCAGGCGGGCTCGCCTCGTCCTCAATGCGGGGAGCGCGGCCAACGGTAACCCACCTCTTCAACGGCATGCCCCCGATGCACCACCGCGCACCCGGGCCAGCCGCCGCAAGCCTGCGGCTGGCACGTGCCGGGACTGTCGCCGTCGAACTTATTGCGGATGGCGTCCACCTTGACCCGGAAACGGTCAGGATGGTTTTCGAGCTGGTGGGCGCGAACAACGTTGTCCTGGTCACCGATTCCATGGCGGCAACGGGCCTTCCGGAAGGCGAGTACCAGCTCGGCCCGGCGCAGGTTTCCGTCGTGGGCTCTGTTGCCACCCTCACCAGTACGGGATCCCTGGCAGGCGGCACGGCAACCCTGCTCGACGTCGTTCGTCGGACCATAGCGGCCGGAGTCAGCGCCGCTGATGCCGTTGCGGCTGCAACCGGAACCCCGGCACGGCTGCTCGGGCTGGACGGGCACGTGGGCAGCCTGCGCGCCGGGATGCAGGCTGACCTCCTGATAGTGGACCGTGAATTCAGGCTCCAGACCGTCCTGAGGCAGGGAGTGAGGCTTCCCGCCGTGCAGGCTGGCCCCCTCCAGCCCGCAGCGCAGGAGGAGGGGAGCCAGGCTGTATCAGCTGCCGGCCGCCCGGTTGCGCAGGAAGATCGAAACCACAGCAGCCGTCCCCAGGCATAGMDYLVSGTVITDGEIRQDQVLAIMDGNIVFSGPASAFQSNLLPHAETIRIPDGGAVLPGLVDLHCHGAAGGDFPAGHEEDSRKAASFLHSQGTTTLLASVVTAPKDDLLKAIRSLRVLADDGLIAGIHAEGPFLSHSRCGAQDPRWLLEPDLKLLKALVTEAGGHLKTMTYAPELPGSDELVSTLVSAGVIPSLGHTDSDARTAAVSLEHAAGGLASSSMRGARPTVTHLFNGMPPMHHRAPGPAAASLRLARAGTVAVELIADGVHLDPETVRMVFELVGANNVVLVTDSMAATGLPEGEYQLGPAQVSVVGSVATLTSTGSLAGGTATLLDVVRRTIAAGVSAADAVAAATGTPARLLGLDGHVGSLRAGMQADLLIVDREFRLQTVLRQGVRLPAVQAGPLQPAAQEEGSQAVSAAGRPVAQEDRNHSSRPQAPGPT0018860_220DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443NANA
D1-29_004931446efpA_1putative MFS-type transporter EfpAATGACAACCCGGCAAACGCCTCCCCTCCAGCACCTGGCCACCCCGACCCAACCGGAGCGGATGACAGGCCGCCAGCGCCTGACCATGATCCTGCTGCTGACCGCCAGCTTCACCCTGGCCGTGGATTTCTCCATCCTCAATGTTGCCCTCCCGACCATAGGAGCCGACGTCGGATTCTCGCTGGAGCACCTGCAGTGGATCGCCACTTCCTTTGCGCTGTGCGCCGCCGGCTTCACGCTGTTCTTCGGGAGAATCGCCGACCTGTTCGGACGTAAACGACTCTTCATCGCGGGCATGGCGCTGCTGGGGGTCGGCTCACTTCTCGGCGGACTGGCGACAGAGCCCGCGCTGCTGCTGGTGGCGCGTGTGGCCCAGGGACTGGCGACCGCCGCCGTGACACCGGCGGCCCTGTCGCTGCTCACCACGTCCTTTCCCGAAGGGCGGCTTCGGGCCAAGGCCCTGGGGCTGAACGGTTCCCTGATGGCAGCCGGCTTCACCACCGGCGCCATTCTCGGCGGGCTTCTGACGGACTTGTTCAGCTGGCGGTGGGCGTTCCTCATCAACGTCCCCGTCGCCTTGTTCGTTCTGGTCCTCGCTCCTGCGCTCCTGTCTGAATCATCAAACCCAAACAGAACCAAGCTGGACGTTCCCGGGGCACTTACCGTGACAGCCGCGCTACTTCTGCTCGTCTTCGGCCTGACCAGCGCCGGGGAGAAGGGGTGGACTGACCAGCTCGCCTGGGGTCCCCTGGCGGCCAGCCTTGTGCTCTTCGCCGTGTTCCTCGTCATCGAAAAGAACACCGCCCACGCCTTGATTCCGGTGGGAATCCTGCGGCGGAACAACATTGCCTGGGGGAACGCTGCCGGAATTCTTGCCTTCGCTACCGAAACCTCCCTGGTCTTTGTCCTGACCGTCTACCTGCAGCAGGTCCTGGGCTACACTCCGCTCGGCGCCGGGCTGTCTTTTGCCGTCCTGGGACTTGGCACGGTGGTGGGTGGGATTGTTGCGCCCAAACTCATTGGCAGGGTTGGCCCAAAAATCACCATTATCAGCGGACTCTCGGTCCAGGCCGCTGCCACCGGCTCGCTGCTCTTCATCACCGCAGATCCTGCCTCGGTGATGTTGGTGCTGGCAGCTACTTTTGTTGGCGGCGTTGCCAACCTGGCGGCCATCGTCGGCTTTATGGTCACCGCAACCACCGGTCTTCCCGACTCCGAGCAGGGCCTCGCCACCGGCTTGGCCACCATGAGCCAGCAGATCGGAATTACCCTGGGCATCCCGGTCATGAGCGCAGTGATGGCCGCGTTCCTCCATCACGGCGCCATTGGTCAGCCGGCCGGCGTACTCGCTGCCGTGGTCCCCGCCATCGGAGTCAATGCGGCGCTATGCCTGGGGACGGCTGCTGTGGTTTCGATCTTCCTGCGCAACCGGGCGGCCGGCAGCTGAMTTRQTPPLQHLATPTQPERMTGRQRLTMILLLTASFTLAVDFSILNVALPTIGADVGFSLEHLQWIATSFALCAAGFTLFFGRIADLFGRKRLFIAGMALLGVGSLLGGLATEPALLLVARVAQGLATAAVTPAALSLLTTSFPEGRLRAKALGLNGSLMAAGFTTGAILGGLLTDLFSWRWAFLINVPVALFVLVLAPALLSESSNPNRTKLDVPGALTVTAALLLLVFGLTSAGEKGWTDQLAWGPLAASLVLFAVFLVIEKNTAHALIPVGILRRNNIAWGNAAGILAFATETSLVFVLTVYLQQVLGYTPLGAGLSFAVLGLGTVVGGIVAPKLIGRVGPKITIISGLSVQAAATGSLLFITADPASVMLVLAATFVGGVANLAAIVGFMVTATTGLPDSEQGLATGLATMSQQIGITLGIPVMSAVMAAFLHHGAIGQPAGVLAAVVPAIGVNAALCLGTAAVVSIFLRNRAAGSNANANANANA
D1-29_00494876hypothetical proteinATGAACGAACCAGCAGCCATGGGCAGCTTCCTGCGCAAACGACGGGCTGCCCTGAGTCCCGGCGACGTGGGCCTGATGGATTACGGCACCCGGCGCGTCCCCGGTCTTCGGCGCGAGGAAGTAGCCATGATGGCGGGCATGAGCGTGACCTACTATGCGCGGCTGGAACAGGGCCAGCACGTCAACGCTTCCGATTCGGTCATCAATTCGCTGTCGCGGGCCCTGGCCCTGACGGAGGCGGAAGGAAAACATCTCCGGGACCTGTCCGGAATCAGGCGCCGAAAGTCAACGTCCTCCCGGAACCCTCATGACGGCGGCTCCCATCCCTACGGCCGTGATCACGCCAGGCCGGATCACGTCAGGGAGGGCACGAAACGCTTGGTGGAGGCCATGGCGGTGCCCGCAGTGGTAGTGGGCAAGCGCACCGAGGTGATTGCCTGGAATAAAGCCGGCCACAGGCTGGTGGCATCGCATCTGGCCTACGGCTGCGCAGAGGATCCTGTGGCGCGGCCGAACCTGACCCGCATGCTGTTCCTGGACGACGCCACCCGGACGCTCTACCCGCAGTGGCGCTCGGAGGCAGGCCGCGCCGTCGCGTCCCTGCGTTTGCTCTCCGGACGGTTCTCCGACGATACCGAGCTTGCCGGGCTGGTGGGGGAGCTGACCCTTAAAAGCCCTGAGTTCGCCGTGATGTGGGCGGAACATCCCGTGGAGAACTGCATGTCGGGGCAGAAGCTGATGAACCATCCGGAGCACGGCCAGCTGGACCTGGGATTCGAGGTCCTCACCATGCCTGATGATTCAGGGCACCGGATCCTGACCTACACCGCAGCGCCAGGCAGCAGATCCGCAGCCATCCTCGCAGGCCTTGCGTGAMNEPAAMGSFLRKRRAALSPGDVGLMDYGTRRVPGLRREEVAMMAGMSVTYYARLEQGQHVNASDSVINSLSRALALTEAEGKHLRDLSGIRRRKSTSSRNPHDGGSHPYGRDHARPDHVREGTKRLVEAMAVPAVVVGKRTEVIAWNKAGHRLVASHLAYGCAEDPVARPNLTRMLFLDDATRTLYPQWRSEAGRAVASLRLLSGRFSDDTELAGLVGELTLKSPEFAVMWAEHPVENCMSGQKLMNHPEHGQLDLGFEVLTMPDDSGHRILTYTAAPGSRSAAILAGLANANANANANA
D1-29_00495432hypothetical proteinGTGGCAGGAAACTACGTGGCGACGTCCGCTGTCACCATAGATGCTCCGCCCAGCCGGGTCTGGGAGGTGATCACGGACCCCGCCGCCGTCCAGGAGTTTATGTTTGGGACAGAACTCGTGACCGATTGGACGGTGGGCGGTCCCATCGTGTGGCGCGGAGAGTGGGAGGGCAAACCCTACGAGGACAAGGGGTACATCCTCGAGGTAGAGCCCGGGCAGCGGCTGGTCCACACGCATTTCAGCGCGCTGGGCGGCGAGGAAGACGCTCCGGAGAATTACCACACCCTGACGTGGACGCTCGAGGCCCGCGACGGCGGAACGCTGCTCACGCTTTCCCAGGACAACAACCCCACGGAACAGGCCGCCCACCATTCGCAGGGCATGTGGGACATGCTGGTGGCAGACGTCAAGGAGATCGCCGAGCGCGGCTAAMAGNYVATSAVTIDAPPSRVWEVITDPAAVQEFMFGTELVTDWTVGGPIVWRGEWEGKPYEDKGYILEVEPGQRLVHTHFSALGGEEDAPENYHTLTWTLEARDGGTLLTLSQDNNPTEQAAHHSQGMWDMLVADVKEIAERGNANANANANA
D1-29_00496279ptsHPhosphocarrier protein HPrATGTCAGAACGCACCGCAACCGTCGCCAGCCGCGTAGGTCTCCACGCCCGCCCCGCCGCCATCTTTGCCGAGGCAGCCGGCGAGTTCGACCTAGACATCACCATTGCCCGTGAAGGCGAGCCGGCGGACGAAGCAATGGACGCCGCCAGCATCCTGTCCCTGATGAGCCTGGGTGCTTCCCACGGTGACGTTGTGGTGCTTCGCGCCGAGGGCGACGGTGCCGACGATGCCCTGGACCGCCTGGTCAAAATCCTGGAAACGGATCACGACGCCGAGTAGMSERTATVASRVGLHARPAAIFAEAAGEFDLDITIAREGEPADEAMDAASILSLMSLGASHGDVVVLRAEGDGADDALDRLVKILETDHDAEPGPT0016875_882DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0016875-ptsH-K02784NANA
D1-29_004972070fruA_1COG1299PTS system fructose-specific EIIABC componentGTGACTCAGCTCATCACCACCGAACTGGTCGACCTCGACCAGAACCTGGGCAACTCGCCCGAGGACGTGATCCGGCACCTGGCCAGCAAAGTTGCAGCCACCGGACGTGCCACCGAAGTTGAAGGCCTCTTTGCCGATGCCTTTGCCCGCGAGCAGAAGACCGCCACCGGCATCCCGGGTGGCATTGCCATCCCGCACTGCCGGTCTGAGGCGGTGACCGTTCCCACCCTCGCCATGGCCCGCCTGAACCCCAAGGTGGACTTCGGCGCCAAGGATGGCCCGGCGGATCTGATCTTTTTCATCGCGGCACCCGGCGGCGCGGACCAGGAGCACCTTAAGCTCCTCTCCAAGCTGGCCCGCTCCCTGATCAAAAAGGACTTCACGGCGGCCCTGCGCAATGCATCCTCCCGCGAAGAAATCGTGGAGCTGGTGGACGGCGCCCTGGCTGACAAGCCGGCATCGCACGCTGCCGCCGCGCCGGTTGACGCTGTTGCCGGCAGTGCTGCTGGCGCTTCCGCCGGTGCCTCCGCCGTTGCGGGGGATGGTGTTGGCGACGCGGTTGGTAACGGCCGTGGCCCGAAACGGCTCGTTGCCGTAACCGCTTGCCCCACCGGCATCGCCCACACCTACATGGCTGCCGACTCCCTGGTAGCCGCTGCCAAGGACGTTGGCGTGGACCTCCAGGTGGAGACCCAGGGATCCTCCGGAGCCAAGCCCCTGGACCCGGCAGTGATCGCCGCCGCTGACGCCGTGATCTTCGCCGTGGATGTGGATGTCCGCGGAAAGGAGCGCTTCGCCGGCAAGCCCGTCATCAACGCTCCCGTCAAGCGCGGCATCGACGAACCGGACAAGATGGTCCAGGAAGCCCTCGCCGCGGCTGACAACCCCAACGCACGCCGGGTTCCGCATTTCGGTGCCGAGGAGCAGGCCCAGAACGCGGATATGGAAAAGGGCGAGCACATCGGCCAGAAGCTGAAGAAAGCGCTCCTCACAGGCGTCAGCTACATGATCCCGTTCGTGGCCGGTGGCGGCCTGCTGATTGCCCTTGGCTTCCTGCTGGGCGGCTATGACATCACGGAAGTCGCCGACACGGTGGTCCTGGAGAACAACTTCGGGAACCTTCCCGAAGGCGGCCTCGCGATCTACCTCGGTGCCGTGATGTTCAAGATCGGCGCGCTGTCCATGGGCTTCCTGGTACCGGCGCTGGCAGGTTACATTGCGTACGCCATCGCTGACCGGCCCGGCATTGCCCCGGGCTTCGTTGCCGGTGCGGTCGCCGGATTCATGGGTGCCGGCTTCCTTGGCGGCATCGTCGGCGGCCTGCTCGCCGGTTACATCGCCCATGTGATTGGGACGTGGGCCGTACCTCGCTGGCTGCGTGGCCTGATGCCTGTTGTCATCATCCCGTTGCTGGCTTCCATCGTGGCATCCGGCGCGATGTTCCTCTTCCTCGGTGGCCCGATCGCCGGACTCACGGCCGGCCTCAACGGCTGGCTCTCCGGCATGACCGGCGCCTCCGCTGTGGTCCTGGGCATCATCCTCGGCCTCATGATGTGCTTCGACCTCGGCGGCCCGGTCAACAAGGTTGCCTACGCCTTCGCCGTTGCAGGCCTGAGTGCCGGCAGTGCCACCAACCAGGCTCCGTGGGAGATCATGGCAACCGTCATGGCAGCGGGCATGGTTCCGCCGCTGGCTATGGCATTGGCCACTGTGCTGGACAAGAAGCGCTTCAGCCTCGCCGAGCGGGAAAACGGCAAGGCAGCCTGGCTGCTCGGAGCCTCCTTTATCTCTGAGGGCGCTATTCCGTTCGCAGCTGCAGATCCCCTCCGTGTGATCCCGGCCAGCATGGTGGGCGGCGCAGTCACGGGTGCTCTCACCATGGCTTTCGGGGTTACCTCGCAGGCTCCCCACGGCGGAATCTTCGTCTTCTTCGCCATTGGCAACCTGCTGATGTTCGTCCTCGCCATCGTGGCAGGAACCATTGTCAGCGCGCTGGCGGTCCTGGCACTCAAGCGCTGGGCAGTTCGCGAACCCGCTGCTACCGTGGAGCCCGTTCCCGCAACGGTCTGAMTQLITTELVDLDQNLGNSPEDVIRHLASKVAATGRATEVEGLFADAFAREQKTATGIPGGIAIPHCRSEAVTVPTLAMARLNPKVDFGAKDGPADLIFFIAAPGGADQEHLKLLSKLARSLIKKDFTAALRNASSREEIVELVDGALADKPASHAAAAPVDAVAGSAAGASAGASAVAGDGVGDAVGNGRGPKRLVAVTACPTGIAHTYMAADSLVAAAKDVGVDLQVETQGSSGAKPLDPAVIAAADAVIFAVDVDVRGKERFAGKPVINAPVKRGIDEPDKMVQEALAAADNPNARRVPHFGAEEQAQNADMEKGEHIGQKLKKALLTGVSYMIPFVAGGGLLIALGFLLGGYDITEVADTVVLENNFGNLPEGGLAIYLGAVMFKIGALSMGFLVPALAGYIAYAIADRPGIAPGFVAGAVAGFMGAGFLGGIVGGLLAGYIAHVIGTWAVPRWLRGLMPVVIIPLLASIVASGAMFLFLGGPIAGLTAGLNGWLSGMTGASAVVLGIILGLMMCFDLGGPVNKVAYAFAVAGLSAGSATNQAPWEIMATVMAAGMVPPLAMALATVLDKKRFSLAERENGKAAWLLGASFISEGAIPFAAADPLRVIPASMVGGAVTGALTMAFGVTSQAPHGGIFVFFAIGNLLMFVLAIVAGTIVSALAVLALKRWAVREPAATVEPVPATVPGPT0017120_411DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_FRUCTOSE_PTS_SYSTEM_I,PGPT0017120-fruA-K02770NANA
D1-29_004981053lacC_2Tagatose-6-phosphate kinaseATGATCGTCACGCTCACCGCCAACCCCAGCCTGGACCGCACCGTTGCCCTGCCCGGTCCGCTCGAACGCGGCGAGGTGCAGCGCGCCGTTTCCGTCAGCCAGGAGTCCGGCGGCAAGGGAGTTAACGTCTCCCGCGCCCTGGTGGCCTCCGGGCTGGAAACTCTTGCCGTGCTTCCCGGGGCTGACAGCGACCCCGTCCTGGCAGGGCTGCGTGACACCAAAGTTCCTTTCGCTTCCCTTTCCATCGGCGAGCCGCTGCGCACCAACGTGGCTCTCACCGAGCCGGGCGGCGTGACCACCAAAATCAACGAACCCGGGCCGCTCCTGAACGAGGAACAGCAGGAAGCCCTGATCCAACTGCTGCTTGATCGCTCCCGCGGTGCCAGCTGGGTGGTTCTGGCCGGCTCGCTGCCGCCAGGCTTCCCCGCTGACTTCTACGCCACCGTCACCCGGCGGCTGCGCACCCTTGCCGACGGCGGTGCAGACGGCGGTGCCCCGCGCATCGCCGTCGACTCCTCCGGCGGACCCCTCGCTGCCGCCATAGCGGACACCCCGCAGGACGGCACGTCACAGAATGGCACGTCACAGAATGGCACCTCACAGCAAGGCGCCTCCGGGAAACCGGACCTCCTCAAACCCAACGCCGAGGAACTGGCGGAATTGGCTGCAGCAGCCGGTTTCGCCCTGGCGTCCACCGCTGACGAGCTTGAAGCGGATCCGGCGGCTGCCGCGGCAGCTGCTGCCGCCGTCGTGCGTTCCGGTGTGGGTGCTGTGCTGGCAACTCTCGGATCCAAGGGAGCTGTCCTGGTAACGGCCGACGGCGCGTGGCTGGCCACGCATCCGCCGGTCGCCGCGGTCAGTACTGTCGGTGCGGGCGATTCCTCGCTGGCCGGCTACCTGCTCGCCCACGGCCAGGGCGCCGCCCCGGCCGATTGCCTCCGTCAGGCTGTGGCACATGGTGCCGCCGCCGCTTCCCTGCCGGGTTCCACTGTCCCGGCAGTCCACCAAACCACCCCGGAAGCCGTAACCATCACGGCCCTTCGAAAGGATTGAMIVTLTANPSLDRTVALPGPLERGEVQRAVSVSQESGGKGVNVSRALVASGLETLAVLPGADSDPVLAGLRDTKVPFASLSIGEPLRTNVALTEPGGVTTKINEPGPLLNEEQQEALIQLLLDRSRGASWVVLAGSLPPGFPADFYATVTRRLRTLADGGADGGAPRIAVDSSGGPLAAAIADTPQDGTSQNGTSQNGTSQQGASGKPDLLKPNAEELAELAAAAGFALASTADELEADPAAAAAAAAAVVRSGVGAVLATLGSKGAVLVTADGAWLATHPPVAAVSTVGAGDSSLAGYLLAHGQGAAPADCLRQAVAHGAAAASLPGSTVPAVHQTTPEAVTITALRKDPGPT0017580_110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017580-fruK|fpk-K00882NANA
D1-29_00499819srlR_1COG1349Glucitol operon repressorGTGTTCGCCGAGGAGCGCCAGCAGCAGATTGCCGAGCTTGTAGCCGGCAGCGGCAGGGTCAGTGTGAACCTGCTGGCCGAGCGCTTCCGCATCACCACCGAAACCGTCCGGCGGGATCTCGCCACCCTTGAATCAGCCGGCACCATCCGCCGCGTCCATGGTGGCGCCGTGGCTGCAGACCGCTTCACCACCACCGAGGAAAGCATCAAAGAGCGGGCAATCAAGCGTCCGGACCAGAAGATGCGCATCGCCCAGGCTGCCTTGGCCCTTATCCCCCAGACGCCTTCCGGAAGCATCCTGATCGACGCCGGCTCCACCACCGAGGTCCTCGCAGAACTGCTTTCCCGCCGGGCCTCCGGCGACCAGCCTTCCGTACCAGCCAGTTCCGCGGACTCCGGAAGGGAACTCGTGGTGATCACCCACGCCATCCCGATCGCCGGCAAACTGTCCACCACGCCGGGAATCGCCCTCCAGATCCTGGGCGGGCGGGTCCGCGGACTCACCCAGGCGGCCGTAGGCCAGGCCACCGTGGACGCAGCACGCCGGATCCGCCCCGACATTGCCTTCATCGGCACCAACGGCATCCACGCACGCTTTGGCCTCAGCACTCCCGATCCTGAAGAAGCCGCCGTCAAGGCAGCCTTCGTCCATTCGGCGCGCCGCATTGTGGTGCTGGCCGATTCCTCCAAGCTGGACGCGGAAACCCTGGTCCAGTTCGCCTCCCTGAAAGATCTGGACACCTTGATTACAGACAGCGAACCAAGCCCCGAACTTGCAGCCGCCCTGGCAGAGGCCGGCGTCGACGTGGTGATCGCATGAMFAEERQQQIAELVAGSGRVSVNLLAERFRITTETVRRDLATLESAGTIRRVHGGAVAADRFTTTEESIKERAIKRPDQKMRIAQAALALIPQTPSGSILIDAGSTTEVLAELLSRRASGDQPSVPASSADSGRELVVITHAIPIAGKLSTTPGIALQILGGRVRGLTQAAVGQATVDAARRIRPDIAFIGTNGIHARFGLSTPDPEEAAVKAAFVHSARRIVVLADSSKLDAETLVQFASLKDLDTLITDSEPSPELAAALAEAGVDVVIAPGPT0017590_111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017590-fruR2-K03436NANA
D1-29_00500258hypothetical proteinATGAGAATAGGTTCCTCCATTTTCCTTATCGCCCTCGGCGCCATCCTGGCTTGGGCCATCACCCCGGGTCTGATCCCCAACGTGGATCAGACGCTGATCGGCTACATCCTGATGGCCGTGGGGGTCATCGGCCTGATCGCGTCCCTCATCCTCGCGTCTCCCGGACGCAGCCGGCGCGTTAGTGAAACGCGCTCCGTAACGGATCCCAATACGGGAGAACGGATCACTCGAAACGAAAGCCGTGACGGCCAGCTGTAGMRIGSSIFLIALGAILAWAITPGLIPNVDQTLIGYILMAVGVIGLIASLILASPGRSRRVSETRSVTDPNTGERITRNESRDGQLNANANANANA
D1-29_00501618hypothetical proteinATGAAAACAGTTGTATGGTCCAAGCCGGAGAGCGAACGGGCCGGCACCCCGCTGCTGGTGATGATGCACGGCTACGGCACGGACGAATCCCGCATGGTGCGGCTGTTTGACTACCTCCCGCCTGAATTCACCTGCGCGGCGGTGCGGGGTCCCATGGTGATCGGCGACGATTACGGCTGGTTCCTGCTGGACTACTTCCTGGCCAACGATTTCGCGGACGTCATCACCGCCACCAATGCCGTCCATACCTGGATCAACTCGGTAAAAGGCCAGCACAGCAGCGTGAGCCTGTTCGGCTACTCCCAAGGGATGGCGATGGCCAGCACCCTGCTGCGGCTTCACCCGAACGACTACACGGCCACAGTGGGTTTGTCCGGCTTTGTCCTGAACAACGAACTGCTGTCGCTGAGCGAGTCCTTTGATGCCCCGCCGCCCTTCTTCTGGGGACGGGACAAGGCCGATCTGGTCATCAACGAGGACGCCATCGAGTACACGGAAGAGTGGCTCAACGCGAACACCCGGCTCACCGCCAGGACGTACCCGGGCATGGGACACGCCATGTGCAAGGCGGAGATGGTGGACGTGAGCGCGTTCCTGCGCCACTACGTTCTCAGCTAGMKTVVWSKPESERAGTPLLVMMHGYGTDESRMVRLFDYLPPEFTCAAVRGPMVIGDDYGWFLLDYFLANDFADVITATNAVHTWINSVKGQHSSVSLFGYSQGMAMASTLLRLHPNDYTATVGLSGFVLNNELLSLSESFDAPPPFFWGRDKADLVINEDAIEYTEEWLNANTRLTARTYPGMGHAMCKAEMVDVSAFLRHYVLSPGPT0028515_3153DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999NANA
D1-29_00502735COG0637putative proteinATGACAGACCTGCTGAAAACCATCAGTCCCTCCTGGACCGGTGCCTCTGCCATCCTCTTTGACCTGGATGGCGTTCTGACGCCCACCGCAACTGTCCACGAACGGGCGTGGCAGGAACTCTTTGAGGGATACCTTGCCTCGCAGCCTGGCGTGACCGGCTACCAGGAAAGCGACTACTTCGACCACATCGACGGCAAGCCACGGTTCGACGGCGTCAGGGACTTCCTTGCCTCGCGCGGCATTGTGCTTCCCGAAGGTCCCACGGATGACGACCCCGCCAACGTCACCGTCCAGGGCCTGGGCAACCGGAAAAACCGGATCTTCAACGACATCGTCAGCAGCGGAGTGGAGCCGTTTGAGGGTTCTGTGCTCTTCATCGAAGCCGCGCAGGCGCTGGGACTGAAGATCGCCGTCGTCTCCTCCTCCCGCAATGCACCGGCGGTGCTGGAGGCGGCGGGCCTGAGCCAGCACTTCCGGGTTGTGGTGGACGGCGTTGTGGCAGCGGCGGAAGGCCTCCCCGGCAAACCAAGCCCCGCCACGTACGACTACGCCGCGCAACTGCTGGACCTGCCCAGCGAGGAATGCGTCGTCGTCGAAGATGCCGTCTCCGGTGTCCAGGCAGGACATTCCGGGCAGTTCCACTCGGTGATTGGCGTGGACCGCGGCGCAGGCCGCCAGACGCTGCTGGACGCCGGAGCCACCCTGGTGGTCAACGACCTCAAGGAACTCCTTTAGMTDLLKTISPSWTGASAILFDLDGVLTPTATVHERAWQELFEGYLASQPGVTGYQESDYFDHIDGKPRFDGVRDFLASRGIVLPEGPTDDDPANVTVQGLGNRKNRIFNDIVSSGVEPFEGSVLFIEAAQALGLKIAVVSSSRNAPAVLEAAGLSQHFRVVVDGVVAAAEGLPGKPSPATYDYAAQLLDLPSEECVVVEDAVSGVQAGHSGQFHSVIGVDRGAGRQTLLDAGATLVVNDLKELLPGPT0014080_20DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342NANA
D1-29_005032343trePAlpha,alpha-trehalose phosphorylaseATGGCTCTCATCACCGCGGACCGCGATCGGTTCCCCAATACCCCCTGGCAACTGGTTGAAACGCGCCATGAACCGGACGACGCAGGCACGCTCGAAACCCTGTTCGCGCTGGGCAACGGCCATTTGGGTATTCGCGGGGCACATTGGGCGGCCGCAGACGCTGACCTGCCTGGCAGCTTCATCAATGGCCTGCATGAAATTTGGGACATCAAGCATGCCGAGAACGCCTTTGGGTTTGCGCGGACCGGCCAGCGGATCATCTACATCCCGGATGCGAACAACTTCACGGTTGTCATCGACGGTGAGACCCTTAGCCTGGCGGAATCTGCCGTGGCAGACTACCGGCGGTCCGTGGACTTCTCCACCGGCATCTATGAATGCCGCATCACCTGGCAGTGCCGTTCCGGCGCCACGGTGACCACCACCGAACGGCGGGCCGTTGGATTCGCCTCCCGCGGAACCCTGGGCATCTCACTGGAGGTGTCGGCGGACCGGGACGTCTCCGCCGATGTGACGTCCTCAGTCATCAACCGCCAGGACCAGCCGGTGGAGGACCATTCCGCGCACGACCCGCGCCGTGCCGGCCGCCACGCTGGGCGCGTCCTGCTGCCGTTGCGGCTCGACGGCGGCGACGGCTCACTCCGGCTCTCCTGGGAAGCTGCCGAATCCAGGCAGCGGGTAGGACTCGCCGTGGATCACTGGACCTCGGCGGGCCATCAGCCGTTTGACACGCTGGTTGACCAGGATGACAGCAGCGTCCGGTACGTCCTGGCCGTCGGCGCGGAGCAGCCCTTCCTGCTGGAGAAAAGCATCAGCTACGCCGCAGGCCGCGGTGTGCAGGATTCGGGCCAGGATGCCGCTGAAGCTGCAGAAGCAGGCCTTCGTGCTGTCCGGGACATCTTCGCTGAGAGCGAGGAGCACTACCGCGACTATTGGGCCACATCGGACATCGTGGTGGGCGGCCAGCCAGCGCTGCAGCAGGCCATCCGCTGGAACCTGTTCCAGCTGGCCCAGGCAACCGCGCGTGCCGACGTCACAGGCATCCCCGCCAAGGGCGTCACGGGCTCGGGCTATGAGGGCCACTATTTCTGGGACCAGGAGGTCTACCTCCTGCCCTACCTGACCTACACCAATCCCGCCGGCGCCCGCCAGGTCCTGGAGTTCCGGCACGACATGCTCCCCGCAGCCAAGATCCGGGCCAAGGAGCTGAGCGTAGACGGGGCGCTGTTCCCGTGGCGCACCATCAACGGGCTGGAAGCCAGCGCGTACTACGCCGCCGGTACCGCCCAGTTCCATATTGCCGCTGCCATCGCCTTCGCCACCAACCGGTACCTTTGGGCCAGTGGTGACGAAGTGTTCCGCGACGGCATGGGCTCTGAACTGCTGATCGAAACTGCCCGGATGTGGATCTCGCTGGGGTTCTTCGGCAAGGACGGCCTCTTCCACATCCACGGTGTCACTGGACCGGATGAGTACACAGCGGTGGTCAATGACAACCTCTACACCAACGTGATGGCGCGTTTTAACCTGCGTGCCGCTGCCGCCCTGGACCACATCGAAATCAGCGACGAAGAGCGCCAGCTGTGGGCGGCCGCGGCCGACCGGATGCAGCTTCCGTTCGATGAGCGGATGGAGGTCCATTCCCAGGACAACGACTTCATGACCCTGGAGCCCTGGGACTGGACAACGCCCCGGTCAAAGTACCCTCTGCTGCTGCATTTCCACCCGCTGGTGATCTACCGCCACCAGGTGCTCAAGCAGGCGGACACCGTCCTGGCGATGTTCCTGCAGTGGCAGGACTTTACGGCGGAGGAGAAGCGCCGGGCCTTTGACTTCTACGATCCCATCACCACCGGAGATTCCACGCTCTCCGCTTGTGTGCAGGGGATCATGGCTGCCGAGGTGGGGTACACCAAGGCGGCGCTGGAGCACTTCACCCACGCCCTGTTCATCGACTTGGACGACACTCACGGGAATACCATCGACGGCGTCCACATTGCCTCCACCGGCGGAGTCTGGAGCTCCCTGGTGTGCGGCTTCGCCGGTCTCCGCGACCAGGGGCCTGTGCCGTTCTTCGATCCGCGGCTGCCGTCCGGATGGGAATCCCTGTCCTTCCACCTCAAGATCCAGGGCAGGCTGCTGCTCGTGGAACTTGACGCCGGCTCCATCACCCTCAGCATCCGCGACGGCGAGCCGCTGGGCATAGACGTCCGCGGACAGGTCTTCACGGTGGGCAGCGATCCCGTCCGTGTGGCCCTGGAGCCGGTTCCGGTTCCGGAACCCACTGTGTTCCCGAGCGGACCGCCGACGGCGAGCCTGCCTGTAGTCCGCGCCCGCGCCTAGMALITADRDRFPNTPWQLVETRHEPDDAGTLETLFALGNGHLGIRGAHWAAADADLPGSFINGLHEIWDIKHAENAFGFARTGQRIIYIPDANNFTVVIDGETLSLAESAVADYRRSVDFSTGIYECRITWQCRSGATVTTTERRAVGFASRGTLGISLEVSADRDVSADVTSSVINRQDQPVEDHSAHDPRRAGRHAGRVLLPLRLDGGDGSLRLSWEAAESRQRVGLAVDHWTSAGHQPFDTLVDQDDSSVRYVLAVGAEQPFLLEKSISYAAGRGVQDSGQDAAEAAEAGLRAVRDIFAESEEHYRDYWATSDIVVGGQPALQQAIRWNLFQLAQATARADVTGIPAKGVTGSGYEGHYFWDQEVYLLPYLTYTNPAGARQVLEFRHDMLPAAKIRAKELSVDGALFPWRTINGLEASAYYAAGTAQFHIAAAIAFATNRYLWASGDEVFRDGMGSELLIETARMWISLGFFGKDGLFHIHGVTGPDEYTAVVNDNLYTNVMARFNLRAAAALDHIEISDEERQLWAAAADRMQLPFDERMEVHSQDNDFMTLEPWDWTTPRSKYPLLLHFHPLVIYRHQVLKQADTVLAMFLQWQDFTAEEKRRAFDFYDPITTGDSTLSACVQGIMAAEVGYTKAALEHFTHALFIDLDDTHGNTIDGVHIASTGGVWSSLVCGFAGLRDQGPVPFFDPRLPSGWESLSFHLKIQGRLLLVELDAGSITLSIRDGEPLGIDVRGQVFTVGSDPVRVALEPVPVPEPTVFPSGPPTASLPVVRARAPGPT0014080_470DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-TREHALOSE_METABOLISM,PGPT0014080-treP-K05342NANA
D1-29_005041398entS_1Enterobactin exporter EntSATGCCAACCCCCAAGGCCCTGCGGCCGTTTGTCCACCGTGAGTACCGGGTCCTGATAGCAGCGTTGGCCATCTCAATTTTTGGTTCCGGAATGTGGGCCGTAGCAATGGTTTACCAGGTGATCCACCTGGGCGGCGGTCCGCTGGAGCTCTCCCTCGTTGCCACCGCGGGCAGCATCGGACTGGTGGCCTTTGTCCTTGCTGGAGGCATTGCCGCGGACAGGGTCCCACAGCGGCTCCTGATCATTGCCGTGGAAGGAGCAAACCTGGCGGTGATCGCCGCTCTCAGCGGGCTGTCAATGGCCGGGTGGCTTCAGCTGTGGCATGTCGCCGTGGGCGCCTTTGTGCTGGGAGTGGGGGCAGCCTTCTTCTTTCCCGCCTACTCTGCCATCCTGCCCCGGATCCTGCCGGCGGAGGACCTGCTGGCGGCGAACGGAATGGAAGGGTCCATGCGCCCCATCCTCCAGCAGGCAGCAGGACCCGCTGTGGCCGGAATCCTGGTAGCGGCTTTGTCGCCGTCCCACGCCGTGACCGGTGTGGCCGTGTGCCACTTGATGGCCTTCATCATCCTGAACTTCCTCGGCACCCACACTCTCGATGCCCCAGCCAACGGTGCCGAGGACCGCAGGACGGGAGCCGGTCACGGAAGCGCGGATGGAACAGATGGCGGAATCCCGGCAACAGGAACCCCGCCAACTGGAACCCCCTCAACAGCGGCGCCCGCCAAGTCGTCGTTTTTCCACGATCTCCGGGAGGGCATCAGCTACACGCTGCGCACTCCCTGGCTCCTGTGGACGCTGCTGTGGGCCTGCATCTCGGTGCTGTTCCTCATTGGTCCCATTGAGGTGCTGATGCCCTTTGTGGTCCGTGATCAGCTGGGCGGCGATTCAAGCATGTTCGGCTTCCTGCTGGCCACCATGGGCGTCGGCGGGGCACTGGGCTCGCTGGTGACTGCTTCCCTCAACCTGCCGCGCCGCTACCTGACGGTGATGATGGTGTCCTGGGGTGTCGGAAGCCTGCCGCTCGCCGCCGTCGGCATCATGGAAAGCTTCTTGGCGGTGGCTGCCGCCATGTTCGTGTTCGGAGCCACCGGAAGCGTGGGCATGGTTATCTGGGGCACACTGCTCCAGCGCCGCGTTCCGCCGCATCTGTTGGGCCGGGTCTCAAGCCTTGATTTCTTTGTTTCCCTGGCCCTGATGCCTGTCTCCATGGCCTTGGCCGGTCCTGCCGCGGAGGTGCTCCCCATCTGGCTGATCTTCCTGGTGGCCGGCTGCGTCTGCCCCATCGTGGCAGTGGTCGCATCGATCGTCGCGAAAATGCCGCAGGACGAACTCGCCCACCCGCTGGACAGAGACCCAGGGATGGAGCGAATGGAACGCACGACGGCGGCAGGAGACTGAMPTPKALRPFVHREYRVLIAALAISIFGSGMWAVAMVYQVIHLGGGPLELSLVATAGSIGLVAFVLAGGIAADRVPQRLLIIAVEGANLAVIAALSGLSMAGWLQLWHVAVGAFVLGVGAAFFFPAYSAILPRILPAEDLLAANGMEGSMRPILQQAAGPAVAGILVAALSPSHAVTGVAVCHLMAFIILNFLGTHTLDAPANGAEDRRTGAGHGSADGTDGGIPATGTPPTGTPSTAAPAKSSFFHDLREGISYTLRTPWLLWTLLWACISVLFLIGPIEVLMPFVVRDQLGGDSSMFGFLLATMGVGGALGSLVTASLNLPRRYLTVMMVSWGVGSLPLAAVGIMESFLAVAAAMFVFGATGSVGMVIWGTLLQRRVPPHLLGRVSSLDFFVSLALMPVSMALAGPAAEVLPIWLIFLVAGCVCPIVAVVASIVAKMPQDELAHPLDRDPGMERMERTTAAGDPGPT0027890_21DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TETRACYCLINE_RESISTANCE,PGPT0027890-tetV-K18215NANA
D1-29_00505519hypothetical proteinATGCAAGACATCAGCGGGGCGATCTCGCGCCTCAGCACACCCGCCGGTTCTTCAGTGCCAACCAGGAACAAAATTGCCATCTACGTCTTCAACCCGGGGCTGGACCGGTACCTCACGTTCGTACAGCCTGGCTACCCGGAAGCGGGCAGACAGGTTCCCGCCGGAACCATCGAAGCGGGAGAGACACCACTTCAGGCAGCCTCCAGGGAGCTTGGAGAAGAGACGGGACGGGCCGCCGGACTCCCGCTTTTCCATTTCGCGGACACCATTTACGACATGCGCGAGTACAAGCCGGAGATCCACCATCGCAGCTGGTTTTTCGGCATCGCAGCCGCCGATGAATTTCCCTCGGGACCATGGAACCACGTTGAACGCCGGGGCGGTCGAATAGAACAGGTAGCGGAATTCTCCTGGACGGACACGTCAGCCGAGGAGGAACTGATTGCAGGCCATGGCCATCTTTTGCCGCTCGCCCTGCACCTGGCCCGATCCTGGGATACTGGCCAACTGCCTGGATGAMQDISGAISRLSTPAGSSVPTRNKIAIYVFNPGLDRYLTFVQPGYPEAGRQVPAGTIEAGETPLQAASRELGEETGRAAGLPLFHFADTIYDMREYKPEIHHRSWFFGIAAADEFPSGPWNHVERRGGRIEQVAEFSWTDTSAEEELIAGHGHLLPLALHLARSWDTGQLPGNANANANANA
D1-29_00506990COG1131Multidrug efflux system ATP-binding proteinATGCACACAGACTCATCTCCCGTCATCCACACCGCTCAACTTGTGAAGAACTTTGGGCGGACCGTCGCGCTCGCGGGTCTGGACCTCTCTGTTTTGCCCGGGGAAGTTCACGGTTTCCTCGGGCCCAACGGAGCTGGAAAATCCACCACGCTTCGCATTCTTCTGGGTTTGATACGGCCAACCTCGGGAACGGCACGGGTTTTCGGCATCGACCCGTGGGCTGAGCCGGTGCGGGCCCACCGCGATGTTGCCTACGTCCCCGGGGACGTGACGCTCTGGCCCAACCTGACCGGCGGTGAGGTCATCGACCTGCTCGCCGGGCTGCGCGGCGGTGCGGATGAAAACCTGCGTCGGCAACTCATTGATGAGTTCGATTTCGATCCACGTAAGAAGGCGAGGACCTACTCGAAGGGCAACCGGCAGAAAGCTGCCCTGATTGCGGCCTTTGCCCGCCCCGCCAGGCTCTACCTGCTGGACGAACCCAGCTCGGGCCTGGACCCGGTGATGGACGCCGTCTTCCGCCGCCATGTCCGCCGGGTCACCGCGGACGGTGCCACCGTGCTGCTGTCCAGCCACATCCTGGCAGAGGTGGAACAACTCTGCGACAGGGTGACCATCATCCGGTCTGGTGTGGCCGTGGAATCCGGGACCCTGGCCGAACTCCGGCACCTCACCCGCACCCGCTTCCGGGTCACGTCGGCGGCGACACCAGAGGTGCTGTCCACTTGGCGGGGCATCCACGACCTGCGCGTTGACGGGACATCCATAGAGTTCGACGCCGATGCAGCGGACCTGGGCCACGTCCTGGAGGCGTTGGCTACTGCCGGCATTACGGGCATCACCGCGGCGCCGCCTTCGCTGGAGGAGCTGTTCATGCGCCACTACGGTGTGCAGGATGCCGCGCAGGATGCAGGGCTGGCCAGCCACAAGAGTCTTGCCAGCCACAAGAGTCAGGCAGGCCACAAGAGCCAGAAGAGCCAGGTGCTGTGAMHTDSSPVIHTAQLVKNFGRTVALAGLDLSVLPGEVHGFLGPNGAGKSTTLRILLGLIRPTSGTARVFGIDPWAEPVRAHRDVAYVPGDVTLWPNLTGGEVIDLLAGLRGGADENLRRQLIDEFDFDPRKKARTYSKGNRQKAALIAAFARPARLYLLDEPSSGLDPVMDAVFRRHVRRVTADGATVLLSSHILAEVEQLCDRVTIIRSGVAVESGTLAELRHLTRTRFRVTSAATPEVLSTWRGIHDLRVDGTSIEFDADAADLGHVLEALATAGITGITAAPPSLEELFMRHYGVQDAAQDAGLASHKSLASHKSQAGHKSQKSQVLPGPT0006725_12463DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_005071620COG3559Multidrug efflux system permease proteinATGCGCACCGTTCTCCGGCTGGCCCTGCTCCAGGCACGCAGGGATCGCGGGACCCTCGGAGCCTGGATCCTGGGCGTCGCCGGACTGGGCTACGCGGCAGCCACCGCCGTCACCACACAGTTTGGCGAGGATACCGACCGTGCCGCCCTGATTTCCGTGGCTGCAGCCAGCCCGGCGTTCCTGTTCCTCCGGGGGCTGCCCGACGGCATCAGCTCCGGAGCGGTCACCTTCTTCCAGGGCTATTCGTTCACGGCAGTGCTGGCCGGGCTGATGAGCGCGTTCCTTGTGGTCCGGCACACCCGCGCGGATGAGGATCAGGGCCGGTTTGAGCTGGTCGGTTCCACCCGGGTCACCCGGGTGACGTCCCTGTACGCAACCCTGCTGCTCGGCACCTGCGCCAACGTGGTCCTTGCCCTGGCCGTTGCCGCCGGATTCATCGGTGCCGGCCTCCCGGTCCAAGGATCATTCCTGGCGGGGACAGCTGTTGGCTCCGTGGGTCTGTTCTTCATGGCGGCCGCCGCGCTGGTAGCCCAGGTCATGCCCTCCGCCAGGAGCGCCAACGGGACAGCCGCGGCGCTGGTGGGTGGCGCCTACCTGATCCGCGGTGCCGGCGACGCCCTCGGCACAGCCGACCCCTCCTTGCTGCACGTCACCGCCGCCTGGCCCTCACTGTTCTCACCCATCGGCTGGGGCCAGCGCATCCGGCCCTTCACCGAGACGGATACGCTGCCGTTGCTGGTTATCGGCGCCGTTGCCGTGGTGCTGGCAGGGATTGCCGTGGTGCTCCGCAACGGCAGGGACCTGGGCGCTAGCTACATCGCTGCGGATGAGTCGGGCGCGGAACGGGCGGGCGCCGGCCTGGCATCGATGCTGGGCCTCGCATGGCGGCTGCAGCGTGGAAGCCTGGCCAGCTGGTGCTTCACCACTGCTGCCCTGGGGGCCGTGGCCGGTGGTCTGGGTCCGGTGGTCCGCGACGCACTGGAAGGAAACCCGTCCGTGGCGGAACTGATGAGCCGCATCGTTCCAGGCGACGCGGGCCTGGTGGACCTGTTCACCACTGCCATGCTGGGCATCGCCGGGATCCTCGCCGCTGCCGCGGGCATTGAGGCGGTGCTGCGGCTCAGGGCGGAAGAGGCGGAAGGGCGGGCCGAACTGCTGCTGTCCGTGCCGGCGTCGCGGTTCCGCTGGCTGGGCAGCACCCTCGCCGTTGCGGCAATTACGACGACGGCTGTTGCCGTTGCCGCCGGAGCCGCTGCCGCCGTCGTGCTCGCCCTGGGTCAGGCAGGGGGAAGCAGCCCCGGCACCGTGTTTGCCGCCGCCCTGGCACACATCCCGGCAGCACTTGTTTTCCCGGCAGTGACCGTGCTGGTATTCGCGCTCGCACCCCGCTGGAGCAGTGCCGTCGGCTGGAGTGCCTTGGCCGCCGCGCTGGTCCTGGGGCAGTTTGGGGAGCTGCTCAGCCTGCCCGTGTGGCTTCAGGACCTGAGCCCCTTCCGGCATTCCTCAGCCATGCCGGTGGAGGCCTTCAAGCCGGAAGGCGCGTTGCTGATGCTTGCCATCGCCATAGCCTTTGCTGCGGTGGCCAGCTGGCAGGTGGGTGAAAGAGACGTCACCACCTGAMRTVLRLALLQARRDRGTLGAWILGVAGLGYAAATAVTTQFGEDTDRAALISVAAASPAFLFLRGLPDGISSGAVTFFQGYSFTAVLAGLMSAFLVVRHTRADEDQGRFELVGSTRVTRVTSLYATLLLGTCANVVLALAVAAGFIGAGLPVQGSFLAGTAVGSVGLFFMAAAALVAQVMPSARSANGTAAALVGGAYLIRGAGDALGTADPSLLHVTAAWPSLFSPIGWGQRIRPFTETDTLPLLVIGAVAVVLAGIAVVLRNGRDLGASYIAADESGAERAGAGLASMLGLAWRLQRGSLASWCFTTAALGAVAGGLGPVVRDALEGNPSVAELMSRIVPGDAGLVDLFTTAMLGIAGILAAAAGIEAVLRLRAEEAEGRAELLLSVPASRFRWLGSTLAVAAITTTAVAVAAGAAAAVVLALGQAGGSSPGTVFAAALAHIPAALVFPAVTVLVFALAPRWSSAVGWSALAAALVLGQFGELLSLPVWLQDLSPFRHSSAMPVEAFKPEGALLMLAIAIAFAAVASWQVGERDVTTNANANANANA
D1-29_00508651hypothetical proteinTTGGGCGAGGCTCTGGTACACGAGCTGTCGGCCGGCGGGTGGAGGGTGCTTGCTGTCGTAAAGCAGGCTTCGCACGCTGAAGCGCTTCAGGGCCTGGTCGGCGTCGATTCCGTGGTGTACGACGTTAGGTCCGACGATGTGCGGGCCGTCCTTGATGCCGTGAAGGATCAGCCCGTTGACGTCCTCATCAACAATGCTGCCCGGGGTGCGCCGCATCAGCCGCTGGGATCTGTTCAGGTGGACGCTGTGCTCAACTCTGTAGATGTCAACGTGGCAGGCCCGCTCCGAATGGTTCAGGCCCTGCTGCCGAGTCTCCTCGGGAGCACCGACCCGGTCATCATCAACATCAGCTCGAGACTGGGTTCTGCCTCAGCACAGGCGCGCGGCGACTTCACCCACCTCTCAACCAGCTACGCTTACAGGATTTCAAAAGCTGCACAAAACATGCTGACCATATCCCTGGCTCATGACCTGCGTGGAAAGGTCCGCTGTTGGGCCGTGCATCCCGGCAAACTGGCAACTGACCTGGGACAAGCCGACGCCGTGAAGCATCCACGCGAGGCGGCACAACAGCTCAGGTTGCTCCTGGAAACCGCCGACGGGCGTTCCCCGCGCTTTGTCTCCCTCGGGGAAACAGACCTGGATTGGTAGMGEALVHELSAGGWRVLAVVKQASHAEALQGLVGVDSVVYDVRSDDVRAVLDAVKDQPVDVLINNAARGAPHQPLGSVQVDAVLNSVDVNVAGPLRMVQALLPSLLGSTDPVIINISSRLGSASAQARGDFTHLSTSYAYRISKAAQNMLTISLAHDLRGKVRCWAVHPGKLATDLGQADAVKHPREAAQQLRLLLETADGRSPRFVSLGETDLDWNANANANANA
D1-29_00509807hypothetical proteinATGGCCCAGCGAAGCAACCCAGCACTACGAATCACCCAGCAAGCCGCCCACAATGCGGTGTTCGACGCCGAAGGCAACCCGAAACCCGGCCTGCACAACATGCTGCTCCGGGCCGTAGAGATCCAGCGGCCGCTGGTCCTCGCGTACATCAATAGGCTGCAGCGGAAGCATCCGCGCGCCTCGGCAGCGCAGCTGGCCAATATCCTGGAACGCGACTACCTCCGTGCCGTCACAGGAGGAGGGGCGATCGTGGGGGCCACGGCTGTGGTGCCCGGTGTTGGGACCATCGCCTCCTTGGGGTTGTCTGCCGCAGCCACCGTGGGCTTCCTTGAGGCGACTGCCCTCTACGCCACGTCGCTCGCAGAGCTTCATGGCATCCGTCTGACCAACCCGGAGAAAGCCAGCACCATGGTGATGGCCATCATGCTGGGCGAGGAAGGAACAGCGCTGCTGGGCACGTTGAGCGGTCAGGCCACGGGCAGGGGAGTGGGTGCCACAAAGGCGTGGGGCAACGTTCTTTCCAAATCCATGCCGTCCCCCAGCTTCGGCTCCATCCGGAACAGAATCCAGAAAGCCTTCCTGAAAAACCTCCTGAGGCGCCAGGGCACGGCCCTCTTCGGCCGCGCCCTTCCGTTTGGCATCGGCGCTGTGGTGGGCGGGGCGGGTAACCTCATGATGGGCCGGGCAGTGGTGGCCAACGCCAAAGAGGCCTTCGGTCCCATGCCCGACACCATCCCGGGAGAGCTTAAAGCAACCGCCACGGCACCGGACAACCTCACGCTGGAAGGCAACAACTTTGGATCTTAAMAQRSNPALRITQQAAHNAVFDAEGNPKPGLHNMLLRAVEIQRPLVLAYINRLQRKHPRASAAQLANILERDYLRAVTGGGAIVGATAVVPGVGTIASLGLSAAATVGFLEATALYATSLAELHGIRLTNPEKASTMVMAIMLGEEGTALLGTLSGQATGRGVGATKAWGNVLSKSMPSPSFGSIRNRIQKAFLKNLLRRQGTALFGRALPFGIGAVVGGAGNLMMGRAVVANAKEAFGPMPDTIPGELKATATAPDNLTLEGNNFGSNANANANANA
D1-29_00510750pxpA_25-oxoprolinase subunit ATTGGATCTTAACGCTGACCTCGGCGAATCATTCGGCTCCTGGACCATGGGGGACGACGCCGCAATGTTTCGCCTGGTCACCAGCGCCAATGTGGCCTGCGGTTTTCACGCGGGCGATCCCGTCACCATGCTGGACAGCTGCCGAGCGGCCTTCGAACTCGACGTGACGGTGGGCGCCCACGTGGGCTACCGCGACCTGGCCGGCTTTGGCCGGCGCTCCCTGGACATGTCCTTCGACGAACTTTTCGGCGATGTGCTCTACCAGCTCGGCGCGCTGGACGGTGTGGCTCATGCGGTGGGGGCATCGGTTGACTATGTGAAACCTCATGGCGCGCTGTACAACCGCCTGGTCCACGACGCGGACCAGGCCTCCGCAGTGGTAGCAGCCATTCAGGCTTACGATCCCGGCCTGCCCATCCTTGGTCTACCGGGATCGGAGCTTCTCATTCACGCTAAGGAAGCCGGCCACCCTGTGTTTATCGAGGCCTTTGTGGACCGTGCTTACCGTGCGGATGGCACTCTGGTGCCGCGCTCACAGGAAGGCGCCGTCCTGCACGACGTCGACTCGATCGTTGAGCGTGCCGTTCGCCTTGCCACAAAGGGCGAAGTGGAGGCCGTGGACGGGACCATAGTTCAGGTGAGGCCCGATTCCCTGTGCATCCACGGGGACACTCCGGGCGCTGTGGAGATGGCCGCGGGCGTCCGGGCAGGCCTTGAGGCAGCAGGGGTCCAGTTGGAGTCCTTCGCCTAGMDLNADLGESFGSWTMGDDAAMFRLVTSANVACGFHAGDPVTMLDSCRAAFELDVTVGAHVGYRDLAGFGRRSLDMSFDELFGDVLYQLGALDGVAHAVGASVDYVKPHGALYNRLVHDADQASAVVAAIQAYDPGLPILGLPGSELLIHAKEAGHPVFIEAFVDRAYRADGTLVPRSQEGAVLHDVDSIVERAVRLATKGEVEAVDGTIVQVRPDSLCIHGDTPGAVEMAAGVRAGLEAAGVQLESFANANANANANA
D1-29_005111620hypothetical proteinATGGACAACGGGGAAGTCTTGGAAGCAGTCGAAGCACCTGATGCTGCCCTCGTCAAAATCGAAGCGGCCTCCTCCGCTGCCGCCACAGGTTCTGATCCTGGTCCTGATTCAGTAGCCGAAATTGATACTGATCCGTTGCGGGATTTGGCGGAGGACTGCCTGGCCGTCATGGCGGAGGCTGCCCGTGACGAAGCCCGCGCAGCAGCGCGGAAGGCCCGGGCTGCTGCCACCTACGCGGACACCTGCCGGCGCCTGCTTCCCCCGTCGGCGTCGCTGCACGACCAATCGACGGCGGAGATGGGCATGGTCGCGGAGGTCGCCTGTGTCCTGACCATCAGCGAAGGCGCCGCCTCGGCGTTCCTGGTCCAGTCCCGCCAGCTGAGCACCGAACTGCCGCGCACCCTGTCCGCCCTGCAGGCCGGGGCCGTGTCATGGCCGCTCGCCCGGATCTTCTGCGATGAAACCACCGGCCTGGGCCCAGACGGCGCGTCCGCCCTGGAAACACACTTCCTGGACCCCGACACCGCCAATGCTGCCCGCGCCTGCCTCGCCGGGGACCTCACGCCCTCCCGGTTCCGCGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATCGAAACCCGCCACGCCAAGTGCGTCCTGGACCGCCGCCTCGAGTACACCCCGGACCGCGACGGGATGGCCTGGCTCTCCGCCTACCTGCCCGCAGACCAGGCCGCCGGCATCTGGGAACACACCACCAGCACAGCCCGGGCACTCCAAGGCCCCACCGAGCCCCGCACCCTCACCCAACTCCGCGCCGACACCTTCGCCACCGCACTCCTCGGCGGAGGAACCACCACCAGCGGCAACATCAGCAGTTCAGCACTCATGGGTGGCGGGAGCGCCAATGGAGGGATAAGCGGCGGCGGCAGCACGAACGGCCAAATCACCAGCTGGCGTACCGGCAGCGGAGGGACCAACGGCGCGGGAAGCGACAACGGCTGGATAAGCGGCGGGGAAAGCGGCAGCGGCGCTCTCCTCGGTGACGGAAGCGACAACGGCGTAAATAGCCTTGCCGATTGGGACGGAGAGCGCGCTGCCGGGCAGGTCCGGCCGCCGCGGGCCCAGGTGCTGGTCACAGTGCCCGTGTTCTCGCTGCTGGGCCTGACCGATGAACCCGCCACCCTGGACGGCCACGGCCCCATCCCGGCCTCCATGGCCAGGAACCTGGTCGCCAACGGAGCCGACTCCTTCCACCGCGTCCTGACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGCCTCACCACAGCCATGCGCCGCTGGCTCAGACTCCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTCGACAACGAAGCAGACCACCTCCTCGCCTGGGCAAACGGCGGCACTACCGGCATCAACAACCTCGGCCAACCCTGCCGCAAACACCACCACCTCAAACACAACACCACCTGGCAACCAACCCAGGCCAGCAAAAACGAACCACCAGGCTGGACCTCACCCACCGGCCGACACTACAAAAGCGAACACCAAGACTGGGAACCACCCCAGTGGCCACAGGGTATGGATTCCTCCTGAMDNGEVLEAVEAPDAALVKIEAASSAAATGSDPGPDSVAEIDTDPLRDLAEDCLAVMAEAARDEARAAARKARAAATYADTCRRLLPPSASLHDQSTAEMGMVAEVACVLTISEGAASAFLVQSRQLSTELPRTLSALQAGAVSWPLARIFCDETTGLGPDGASALETHFLDPDTANAARACLAGDLTPSRFRARARTWRERHHPVSIETRHAKCVLDRRLEYTPDRDGMAWLSAYLPADQAAGIWEHTTSTARALQGPTEPRTLTQLRADTFATALLGGGTTTSGNISSSALMGGGSANGGISGGGSTNGQITSWRTGSGGTNGAGSDNGWISGGESGSGALLGDGSDNGVNSLADWDGERAAGQVRPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVANGADSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWANGGTTGINNLGQPCRKHHHLKHNTTWQPTQASKNEPPGWTSPTGRHYKSEHQDWEPPQWPQGMDSSNANANANANA
D1-29_005121377IS256 family transposase ISAar6GTGGCTATGACTAGACCCCGTGAGGTGTCCCCGGAGGAGTTGGCCCGCAGGGCTGCGGCGGCCGGCAGCATGGAGGCGTTGAAGGCTTCGGGCGCGTTCGATGAGCTGATGAACCAGATCGATTCCGGACAGCTGGAACTCGACGGCAAGGACGGTTTCATCCAGCAGCTGATCAAGGCCTCGCTGGAACGCGGGCTCCAGGCCGAGCTGTCGGGGCATCTGGGCTATGACAAGGGCGATCCGATCGGGCGTTTCCTGCCTAACGCCCGCAATGGGTCTTATCCGAAGACGCTCGGGACCTCCGCGGGGGACGTGGATCTGGCCGTGCCTCGTGACCGTGCTGGGTCATTCACCCCGCATCTGGTCCCGAAGGGTGCGCGCCGGACAGGTGGCCTGGATGACATGATTATCAGCCTTTACGCCGGCGGGATGACGGTCCGGGACATCGCCCACCATCTGGAATCCACGCTGGGCACGGAGCTGTCCCACGAGACGATTTCCAAGATCACCGATGAGGTCCTGGACGAGGTGATGGAGTGGCAGAAACGCCCACTGGAGCCGCTGTATCCGATCCTGTATCTGGATGCGATCATCATCAAGGTCCGTGACGGGCACCAAGTGCAGAACCGTGCCGCGCACATTGCCGTGGGCGTGGACATGGACGGGATCAAGCACGTTCTGGGGATCTGGGTCGAAGCTACCGAGGGTGCGAAGTTCTGGGCAGGGGTCTGCGCCGAGCTCGCCAACCGCGGCGTGAAGGACGTTCTGATCGTCTGTTGCGACGGGCTCACCGGCTTCCCTGAGGCGATCGCCGCGACCTGGCCGGCCGCGACCGTCCAGACCTGTGTCGTGCACCTGATCCGTGCCTCGATGCGCTTCATCGGCTACCAGGACCGGAAGAAGGTCGCGTCCGCTCTGAGGCCGGTTTACACCGCCCCGACGGCCGACGCCGCGCAGGAGGCACTCGATGCATTCGAGGCCTCCGATCTGGGACGGAAGTATCCCGCAACTGTACGAACCTGGCGCAACGGTTGGGAGAGATTCATCCCCTTCCTGGCGTTCCCACCGCCGGTCAGACGGATTATTTACACCACGAACGCGATCGAGTCGCTGAATTACCAGCTGCGCAAGATCATCAAGAACCGCGGGCATTTCCCCAACGACCAGGCGGCCGTGAAGCTACTCTGGCTGGCGATCTGCAACATCGAGGACAAACGCACCAGTGCCCGGACCAAGCTTGAAGGCAGAGCCCGGGAAAACCGTGCCAAGACGGTGAACAAACTCATCGAGGGAACCTTCACACCTGGATGGAGCGAAGCCCTTGGCGTCCTCCTCCTGAACTATCCCGACAGACTCGGACCTTACCTAAACCGATGAMAMTRPREVSPEELARRAAAAGSMEALKASGAFDELMNQIDSGQLELDGKDGFIQQLIKASLERGLQAELSGHLGYDKGDPIGRFLPNARNGSYPKTLGTSAGDVDLAVPRDRAGSFTPHLVPKGARRTGGLDDMIISLYAGGMTVRDIAHHLESTLGTELSHETISKITDEVLDEVMEWQKRPLEPLYPILYLDAIIIKVRDGHQVQNRAAHIAVGVDMDGIKHVLGIWVEATEGAKFWAGVCAELANRGVKDVLIVCCDGLTGFPEAIAATWPAATVQTCVVHLIRASMRFIGYQDRKKVASALRPVYTAPTADAAQEALDAFEASDLGRKYPATVRTWRNGWERFIPFLAFPPPVRRIIYTTNAIESLNYQLRKIIKNRGHFPNDQAAVKLLWLAICNIEDKRTSARTKLEGRARENRAKTVNKLIEGTFTPGWSEALGVLLLNYPDRLGPYLNRPGPT0030665_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_005131338hypothetical proteinATGCAGGTGAACTCTGAACCAATTACCCAGCAGGCCCCTCACGGACCGTCCGGGCCCCTGCAAAGGGGAGCCGCCGCCGTCGGACATCAATTCAGCGCAGGGGACGCCGAAAAGGCGGCAGCGCTGCGGAAGATGAAACTCGTGGCGCTGGGCCTCCTCATTGCCATGGCCATCGTTTTTGTTTTCGCTTTCGCTTTGCAACGGGAATACCCGTGGCTTCAGTATGTCCGGGCAGCGGCGGAGGGCGGCATGGTGGGTGCGCTGGCCGACTGGTTCGCCGTGACCGCGCTTTTCAAATACCCGATGGGCATCAAGATCCCGCATACCGCCATTATTCCCCGTCGCAAGGATCAGATCGGCGCGTCACTGGGCGAGTTTGTGGAAACCAACTTCCTCTCGGAGCAGGTGGTCCAGGACAAACTCGCGAGCATCAACATCGCACGGAAGGCCGGCGAATGGCTCGCTGCCCCTGGCGGCGCCGAGCGCGTGGCCAAGGAAGGTGCCGCCGTCATTCGCGGTGCGTTTAAGGTCCTGAACGACGACGACGTCCAGGCAGTCATTGAAGGCATGGTCCGCAAGCACCTGCTGGCTCCGCCGTGGGGACCGCCGGTGGGCAGGATGGCGGAACGGATTTTCGCCGAAGGGCACCATCACCAACTGGTGGACCTGCTGGTGGACAGGGCGGCGGACTGGGTCAACGACAACCATGAGACTGTCAGCAGGCTCGTTTCGGACCGCTCGCCAACGTGGGTCCCGCCGTTCGTGGACGGCCTGGTGGGCGACAAGGTCTACGTGGAAATCCTCAAATTCACCCGCGCTGTGCAGGCGGATCCCAATCACCAGGTCCGCAAGTCCATCGACAAGTACCTCAACGACTTGGCGCAGGACCTGCAGTACGATCCGGCGATGATTGCCCGTGCTGAGGACATCAAGGCGCAGGTCCTGGGAGACCCGGAGGTACGCGAGCTGGCTTCCCGGACGTGGGGCACTGTGAAGAGTGCGCTGCTCAGCGCCGTGGACGATCCGGACAGCGACCTCACCGTTCGGTTCAAGGCGGCCGTCCGTGACTTCGGCTCTCGCCTGGTGAAGGACGACGAACTTGCTGGCAAGGTCAACGCTTGGATTGGGGACGCCGCGGGTTACCTGGTCCGCACCTACCGCTCCGACATTGCCGGCGTCATCACCGACACCGTGGCGCGCTGGGACGCTGAGGAGACCTCACAGAAGATCGAGCTGCAGGTGGGCAAGGACCTGCAGTTCATCCGCATCAACGGCACAGTGGTGGGTTCGCTGGCAGGGCTGGCAATCTTCACGGTGGCGCACCTGGTGTTCGGCTGAMQVNSEPITQQAPHGPSGPLQRGAAAVGHQFSAGDAEKAAALRKMKLVALGLLIAMAIVFVFAFALQREYPWLQYVRAAAEGGMVGALADWFAVTALFKYPMGIKIPHTAIIPRRKDQIGASLGEFVETNFLSEQVVQDKLASINIARKAGEWLAAPGGAERVAKEGAAVIRGAFKVLNDDDVQAVIEGMVRKHLLAPPWGPPVGRMAERIFAEGHHHQLVDLLVDRAADWVNDNHETVSRLVSDRSPTWVPPFVDGLVGDKVYVEILKFTRAVQADPNHQVRKSIDKYLNDLAQDLQYDPAMIARAEDIKAQVLGDPEVRELASRTWGTVKSALLSAVDDPDSDLTVRFKAAVRDFGSRLVKDDELAGKVNAWIGDAAGYLVRTYRSDIAGVITDTVARWDAEETSQKIELQVGKDLQFIRINGTVVGSLAGLAIFTVAHLVFGNANANANANA
D1-29_00514870glpQ1COG0584putative glycerophosphodiester phosphodiesterase 1ATGCACTTGAGGCCCTTGGTCTTCGCCCACAGGGGGTCCAGCGCCCTGTTCGCCGAACACACGCGGGCGGCCTACCTGCAGGCCCTTGCCGAAGGCGTTGACGGCGTGGAGTGCGATGTCCACCTCACCCGGGACCAGCACGCAGTACTTATCCATGACGCCAATCTGGACCGCACTTCAGACGGCACCGGTCCCGTGGCCGAGCGCTCGCTCCGCGAATTGCGCCTGCTCGATTTTTCCTCTTGGAAAGGTGCCAGGATTCCCGAGAAGTTCGGGGCGCGCTCCGAGCAGTTCCTTACTCTCTCTGAACTCCTGGATCTCCTGCGCGGGGCAGGCCGGCCGATTGCGCTGGCCATCGAGCTGAAACATCCCAGCCCCTTCCAGCTCAAACTCGAGGACCGGGTGCTGGACGTTCTGCGCAGTGAGGGTTGGGACGCGGCAACATCGTCCCTGGACAACGTCACGGTGACATTCATGAGCTTCAGCCCGGATTCGGTGAGGCACCTGCTCCGGCAGGTGCCTGCTGAATTCATCTGCCAGCTGGTGGATGACATCGACGTTCACGAAATTCGGGAGGAACTGGGCCTTGGCCTGCTCACGGGCAGTGCCATCGCCAACGTCATGAAGGCGGCGCAACTCGAAGGCGAACGGATCCTGGACGACTGCGAGGTGCGGCTGGCAGGTCCTGGCATAGACTACGTCCGCCAGCACGCCCGGAACGTCCAGCGCTGGCTGGATTCCGGCCGCCGCTTCCGGGTTTGGACCGTTGACTCGGAACGGGACGTGGCGCTGTGCCAGGGCTTGGGCATCCACGAAATCACCACCAACGTGCCTGCCCGAGTGCTGGCGCAGCTTCAGCTGCCCGTCTAGMHLRPLVFAHRGSSALFAEHTRAAYLQALAEGVDGVECDVHLTRDQHAVLIHDANLDRTSDGTGPVAERSLRELRLLDFSSWKGARIPEKFGARSEQFLTLSELLDLLRGAGRPIALAIELKHPSPFQLKLEDRVLDVLRSEGWDAATSSLDNVTVTFMSFSPDSVRHLLRQVPAEFICQLVDDIDVHEIREELGLGLLTGSAIANVMKAAQLEGERILDDCEVRLAGPGIDYVRQHARNVQRWLDSGRRFRVWTVDSERDVALCQGLGIHEITTNVPARVLAQLQLPVPGPT0018470_3660DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
D1-29_00515747hypothetical proteinGTGAAAGTCCTGGCATCGCCCGCCGTGCGCGTGGGGATCTCCATCAGCATCGCAACGGGGCTTTACGGTGTGTCGTTCGGGGCCCTCTCTGTCACGTCGGGGCTCGATTTCTGGCAGACCATGGCGCTCAGCCTGCTGCTCTTCAGCGGCGGTTCGCAGTTCGCATTCATTGGCGTTGTCTCAGGCGGCGGCTCGGGCCTTGCTGCCATGACCGCGGCCACTCTGCTGGGCATGCGCAACGGGGTCTACGGCATCCAGCTCAATGCTCTCCTGCACCCCACCGGCTGGCGCAAATACGTGGCCGCACAGCTGACCATCGACGAGTCCACCGCCACCAGTACCGGACAGACGGATCCTGCGGAGCAGCGGCGCGGCTTCTGGACTGCCGGCGTGGGCATCTACGTTCTGTGGAACCTCTTTACTGCTGTGGGGGCACTCGCGGGAAGCGGACTAGGTGATCCGAAGCAGTGGGGCCTGGACGGCGCCGCGGTGGCCGCCTTCCTGGCGCTGCTGTGGCCCAGGCTCAAGGGACGGGAACCGGTGGCGATCGCCGTCGTGTGCGCCCTGGCTACCGTGATGGCAGTGCCGTTCGTGCCTGCAGGGGTGCCCATCCTCGTCGCTGCTGTGGTGGCCGCCGTGATGGGCTGGTTTGGGCATGGCCGCAGCGACGAAGGGTTGGAGCCCGATGTTGATCCCTACGCTGAACACCATCACGGCCACCACACGTCCCGCCAGGAGGGCCAGTGAMKVLASPAVRVGISISIATGLYGVSFGALSVTSGLDFWQTMALSLLLFSGGSQFAFIGVVSGGGSGLAAMTAATLLGMRNGVYGIQLNALLHPTGWRKYVAAQLTIDESTATSTGQTDPAEQRRGFWTAGVGIYVLWNLFTAVGALAGSGLGDPKQWGLDGAAVAAFLALLWPRLKGREPVAIAVVCALATVMAVPFVPAGVPILVAAVVAAVMGWFGHGRSDEGLEPDVDPYAEHHHGHHTSRQEGQNANANANANA
D1-29_00516312hypothetical proteinGTGAATCTCTGGATTTGGCTGTTGCTGGCTTGTGTCCTGGCCTACGGCTGGAAGCTGGTGGGCTATTTTGTTCCCGCTAAGTTCCTCCAGGATCCGCGTATGTCCCGTGTGGCCGGCACCCTGACCATCGGGCTCCTGGCCTCCCTGACCATCGTGAATGCTGTGGCTACCGGCCAGACCGTCGCTTTTGACGCGAGGCTGGGAGCGCTGGCCGCGGCCGCCGTCGCCCTGGCTTTTCGGGCACCGTTCCTGCTGGTGGTTGTTGCCGGCGCCGGCACGGCAGCCGTCCTCCGGCTGCTCGGATGGAATTGAMNLWIWLLLACVLAYGWKLVGYFVPAKFLQDPRMSRVAGTLTIGLLASLTIVNAVATGQTVAFDARLGALAAAAVALAFRAPFLLVVVAGAGTAAVLRLLGWNNANANANANA
D1-29_00517261hypothetical proteinATGAAAAATCAACTGCATGCGGCCGGTCATAGATCGAGTCTGACCCGCACCATAGCCACAGCGCGGCTCCGCGCTGGCCTCCCCGTCAAGCGGTTCTTCACCAAATTTAATTCACTGGCTGACGTCCCCGCGGAGGACCTCGAGTTCCTTTCCCAGCGGCTCCTGATCGCCATGGAAATCGGTCAGGGAGCCCAGACTGCGGCCCTTCACCGTGCCGTGCGCAACGAGATCCGCAGCCGGGAAGCGGCGCCCAATGATTGAMKNQLHAAGHRSSLTRTIATARLRAGLPVKRFFTKFNSLADVPAEDLEFLSQRLLIAMEIGQGAQTAALHRAVRNEIRSREAAPNDNANANANANA
D1-29_00518717hypothetical proteinATGAAGATCGCCGTAGTGGGCGATCTCCTCGTTGATTCAGGGCGTTTTGGCACCGCAGCCGGCGGTGCCGCACGCGCGGCATCCCTGCTTGCACGGACAGGCAACAGCGTACAGCTGTTGACTGTCCTTCCAAGTGACAGTTCGCCGTCACAGCTTGCCGCCGCCCTGCCTGGCGTGAGTGTGGCGGCAGCCCGGGACCTCACTGAAGAGATGCTGCGCTGCCTGGACTTTGCAGACGCGATAGTGGTGGCCGACGGCGGACGCGGCGTGACGTGCAATGACCGCCTGCGCTGGCGGCTGGGTGTTTTGGCCCCCAGCGTCCCCATTGTGTGGGACCAGCACCGGGACGGCCCCGCTCCAGTACCTGGGGTCAGCGCGGTGACGCTAAGCGAGTCGTCCGCCTCACAGGCCAGCGGAATCGACGTCCGGGGCCATGAATCTGCGTCCGAAGCCGCCGGTCTGCTGCTGCGCAGCTGGGACGCAAGTTCAGTTTCCGTCCTGACATCCCCCGCCGGAGCCGACTCGGGAAGGGTTCGCGGAACCTTTTCGGCCGCGCTTGCTGCGGGATTGGCCCAGGGGATGGCGGTTTCGGCCGGTGTCCATCTTGCTGCCCAACACGCCGGAATCAACAGGGCCAACCAGCGGAGCATGGGACTGGCGTTTGCGCCAACTCAGGCTCCTGCACCGGGGGAATCTGACGCCCGCCCGGGAAGCTGAMKIAVVGDLLVDSGRFGTAAGGAARAASLLARTGNSVQLLTVLPSDSSPSQLAAALPGVSVAAARDLTEEMLRCLDFADAIVVADGGRGVTCNDRLRWRLGVLAPSVPIVWDQHRDGPAPVPGVSAVTLSESSASQASGIDVRGHESASEAAGLLLRSWDASSVSVLTSPAGADSGRVRGTFSAALAAGLAQGMAVSAGVHLAAQHAGINRANQRSMGLAFAPTQAPAPGESDARPGSNANANANANA
D1-29_00519294hypothetical proteinATGAACGAACAACAACGTCCAGACGATGACCGGGAAAGTACCGGGCGCCGAGCCGAGGCTCGAGTACCTGGCTTTGAAACCGCAAAGTCCCGTCCAGCCTACGTGGATCCAGGCGGCTCCCAATCCACGAAGGAACTCCGTGAAACCGCCCGCCGCCGTCGTGAGGCCGAAGAGAAGCTGCAGCAGCATCTGATGGAAGCCAAGGAGCACGCTCACCATGAGTCAGACCACCAGGCCGATGCCGCCAAGGATGACGGAGCTGGCAAGGATGACAGGGCAGGCAACCCTCAATAGMNEQQRPDDDRESTGRRAEARVPGFETAKSRPAYVDPGGSQSTKELRETARRRREAEEKLQQHLMEAKEHAHHESDHQADAAKDDGAGKDDRAGNPQNANANANANA
D1-29_00520267hypothetical proteinATGAACCACATCCTGCGAAGTAAGCCCAGTCGCGTTACTCTGAACAGCTCCCAGCTTTCGAAGTTCATCAATGATCCCCGCGGTCCGGAGGAAGTCCTTCCCACCCTCCCCGCGGAAGAGCTCGCAAGCCTGCTGGACGCCCTCTACCAGAACCTTGATACGCCTGAACCAGAGTTCGGGGCGCAGGTCTGGTATGAGCTGGGTGTTGAAGAAGCTGCCCGAAGGGCTGTTTCACCGGATACCGCGGCCGCGCACGGCGTAGCCTAGMNHILRSKPSRVTLNSSQLSKFINDPRGPEEVLPTLPAEELASLLDALYQNLDTPEPEFGAQVWYELGVEEAARRAVSPDTAAAHGVANANANANANA
D1-29_00521735hypothetical proteinATGAACCTCGCAGTCGCCCGCAAGCCGCTCCGTGCAGATGCAGCGCGGAATGTGGACAAAATTATTACTGCAGCACGTCAATGCTTCCGTGAATATGGCCCGGACGTGCCGTTGCAGACCATTGCGACGACGGCGGGTGTAGGCCCTGCCACCCTTTTCCGTAATTTTGCGGACAAGGAAGAGCTGGTCCTCGCCGCTCTTAACCGCCAGCTTAGGCTGACTGTGGATCCGGTGATGGACGATGCTTTGGCCGACATTGATGCCGCCACGGGTCTGCTGCGTGTCATGGAAGCGATCATGGACGCCGCCAGTGCTGACGCCAACCTGCTGGGCGCTGTTGCCGGGCGGCGTGAGCTGCTCGTTGGCATCACAGGATCGCTGATCGATTCGATTGGCGTCCTGCTGGCCCGCGGACAAGGCCAGGGAACCCTGCGGCCTGACATCTCCATGACCGACATGTTCCGGCTGCTTGCAATGCTTATCGGCGTCGTGGACACCATGGAGCCCGGATCCGACGCCTGGCGCCGGCCGGTGGCGCTGGTCGAGGATGCTATTCGGACGGAACGCCCCTCACGGCCTCTTCCGCCCCACGTTCCCCTGCCTGCCGCCCAGCTCCCCACTCAGTTTCCTGGTTCACAGCAGCTTCCCGGTTCACAACAGCTTCCTGGTTCACAGCAATTTCCTGGTTCTACGCAGTTTCCTGGTTCACAGCTCCCCGGTTCACGCCTCAGCTAGMNLAVARKPLRADAARNVDKIITAARQCFREYGPDVPLQTIATTAGVGPATLFRNFADKEELVLAALNRQLRLTVDPVMDDALADIDAATGLLRVMEAIMDAASADANLLGAVAGRRELLVGITGSLIDSIGVLLARGQGQGTLRPDISMTDMFRLLAMLIGVVDTMEPGSDAWRRPVALVEDAIRTERPSRPLPPHVPLPAAQLPTQFPGSQQLPGSQQLPGSQQFPGSTQFPGSQLPGSRLSNANANANANA
D1-29_00522378hypothetical proteinGTGTTGCATATCAGGGGCCTGGACGGTCAGCGCCTGCGGGCGTGCCAGACTGGCTCCATGTTGCTTGCATTTTCTGTCGCCCCGTCCGGTACCCCCGCGGGTGGTTCCAGCCCGTCCGATGCGTCCGTTCATGACGCCGTCGCCGCCGCCGTGAAAATCGTGCGGGAATCGGGCCTGCCCAACAAGACCGATTCGATGTTTACCACCATTGAGGGTGAATGGGATGAAGTATTTGAGGTGGTAAAAAGGGCCACTGAGGCCGTTGGAGAGTTCGGAAGCCGCGTTTCGCTGGTCATCAAGGCTGACATCCGGCCTGGGTACTCGGGGGAGCTCACGGCAAAAGTGGACCGCCTCGAACAGGCAATCTCCGGCTCCTAGMLHIRGLDGQRLRACQTGSMLLAFSVAPSGTPAGGSSPSDASVHDAVAAAVKIVRESGLPNKTDSMFTTIEGEWDEVFEVVKRATEAVGEFGSRVSLVIKADIRPGYSGELTAKVDRLEQAISGSNANANANANA
D1-29_00523237hypothetical proteinATGACTGTTGACGAGACCGCGGAGGAGCAGCGGGACCGGACATCTGCTGCTTTCCAGGCGGCCGGGCTAAGCGTGGAAGTGCTGTGGATGCACTATTTCAGCATCGGCGGTGACGCTGGTGAACTGGAGATCGATGCGTACCTGAACCGGTCCTACATGCTGCGCGGCGTTCAGCGGGACCTCCTGGACCATGCCATCCACGAGCTTGACGGCAACGACTCCCATGCCGATGGCTAGMTVDETAEEQRDRTSAAFQAAGLSVEVLWMHYFSIGGDAGELEIDAYLNRSYMLRGVQRDLLDHAIHELDGNDSHADGNANANANANA
D1-29_00524753hypothetical proteinGTGACTCGAAGAGAGCCAGTGACAGGCGAGTTGCAGGCGGTCTTCGCCCGCGTCTCGGGCCTGCTCTTGACGGAGCAGGTGGCTGGCTCGGCCATCGCCAAAATAGCCCGGGCAGCCTTGGAAGGCATTCCAGGGAGCGTCGGCGCCGGGGCCACCCTCATCAATGCGCAGGGTCAACCCATCAGCAGGGCGTCCACGAATGCGCTGGTGGAAGAGGCCGACCAACTGCAGTATGACCTGAGCGAAGGACCATGCCTCTCAGCGTGGGCCGGTGCGGTGACAGTCCGTATGGACGACAGCCGCATCGAAACCCGATGGCCCCAATGGAGCCGGGCCAGCGCGCAGGTTGGCCTGCTCTCGTGCCTCAGTGTCCCGCTCCTGCTGCCCGCAGAACAGAACCTTCCCCGGATGGAGGCCATTGGCGCGCTGAAGGTCTACTCGGACCAGGCCCAGGCATTCGATGCCCGCAGTGAACATCTCCTGGAACTGCTGTCCGCACCGGCAGCCGTGATGCTTGCCAACGTGCAGGCGCATGAGAGCGCCGGTCATCTCAGTGACATCCTCAAGGACTCCCTGCACAGCCGGAGTGTGATCGACATGGCGAAGGGGGTGCTGATGGAACGCCAGAACCTCGACGAGCGCGCAGCCCTGCGGGTGCTCACCACGCGGTCCCGCGAGGAAGGAGTCCCCCTCAGCCACGTCGCCCTCAATGTTCTTGACCGGCATCCCGAACCCGACCACGAACGGCCATGAMTRREPVTGELQAVFARVSGLLLTEQVAGSAIAKIARAALEGIPGSVGAGATLINAQGQPISRASTNALVEEADQLQYDLSEGPCLSAWAGAVTVRMDDSRIETRWPQWSRASAQVGLLSCLSVPLLLPAEQNLPRMEAIGALKVYSDQAQAFDARSEHLLELLSAPAAVMLANVQAHESAGHLSDILKDSLHSRSVIDMAKGVLMERQNLDERAALRVLTTRSREEGVPLSHVALNVLDRHPEPDHERPNANANANANA
D1-29_00525729hypothetical proteinATGGCCTCCATACCCCTCCCTCCGGTGACCCATGACCATCTTCAGGACCTGTTGCTCGAAAGCAAGGACTTTGACGCTTTCCTGATGGAACTCACGCTCTATTCGGCCTCCCGACTGGGCACCCCGCAACCCATATCGTGCGCCATTTCCGTGCAGCGCGACGGCGGACTGTTTACCGTAGCCAGCAGCAGCGATCAGGCCCTTTCCATGGATGAAAAGCAATACGAGCTCAACGACGGTCCTTGCCTGACTGCCTTGCGTGGGGGGGAGCCAGTGATGGTGGAAGACCTTGCTGCCAACGCCCGCTGGAGCGATTACTACTCAGCCGTTAGGGATTTTGGTGTGCTGTCCGTCCTCGCCGTGCCAATCGACGCCGGACAGGACGCTTCTGCAGCCTTGAACTGCTATGCCTACCGAACCTCCGCCTTTAGTCCCGAAACTGTTGCCTCCATTGAGGAGCACGCACAATCCATCTCCCGCATCCTCCGCATAGCACTTCGGGTGCATCCGGGCAGGGACCCTGAGGCGTACCCGAATAAGCTGCGGGAAGCACTGCGCTCGCGGGCGACGATCGATGCTGCACTCGCCCTCGTGATGGTCCACACCCGCTCCAGCCGTGACGCTGCTATTTCGCTTCTCCACGACGCTGCCCAGGCAAGGAACGTGCGGCTTCGACTGGTGGCCACAGACATAGTCAACGGCGCCGGGATCCCGGAAAGACGCGCCTAAMASIPLPPVTHDHLQDLLLESKDFDAFLMELTLYSASRLGTPQPISCAISVQRDGGLFTVASSSDQALSMDEKQYELNDGPCLTALRGGEPVMVEDLAANARWSDYYSAVRDFGVLSVLAVPIDAGQDASAALNCYAYRTSAFSPETVASIEEHAQSISRILRIALRVHPGRDPEAYPNKLREALRSRATIDAALALVMVHTRSSRDAAISLLHDAAQARNVRLRLVATDIVNGAGIPERRANANANANANA
D1-29_00526678COG4122Catechol O-methyltransferaseATGTTTGAGCACAAGACCCAGCCCGGGTGGGTAAAAGTGGAAGAGTTCATCACCCAATCCGTAGTGCATCCGGACGGAGCGCTCCAGCGTGCGGTGGAGTCCGCCGTCGATGCCGGGATGCCGCCCATCGAAGTAGCCCCAAACGCCGGCAAACTGCTCAAGCTCCTGGTACAGCTTTCCGGTGCGCGTCGTGTCCTCGAGATTGGGACACTGGCCGGGTTCAGCACGATTTGGATGGCTCAGGCGCTTCCCGACGACGGCCGGCTGGTCACGTGCGAATATCTCATCAAACACGCCGATGTCGCGCGCGCAAATGTTGATGCCGCGGGCCTGTGCGGAAAAGTGGAGATCCGGATCGGCCCTGCCCTGGAAACACTTGCTGCCCTGCACGCTGAAGGCCAGGAGCCGTTTGATTTTGTCTTCATTGACGCGGACAAGGAGAACGACGCTGCCTACCTGGAGTGGGCTGTCCGCCTGGGCCGGCCCGGAACGGTTGTGGTGCTGGACAACGCCATTTGGGAGGGTGCGGTGCTGGACCCTTCCATAGACCGCGTCAACGCGCCGGGGATCATTGGCGCACTGGAGCTGCTGGGGAAAGACCCGCGCTTGGACGGCACAGTCATCCAGACCGTGGGTTCCAAGGGATGGGACGGGTTCGCCCTGGCATTGGTCCGTTAAMFEHKTQPGWVKVEEFITQSVVHPDGALQRAVESAVDAGMPPIEVAPNAGKLLKLLVQLSGARRVLEIGTLAGFSTIWMAQALPDDGRLVTCEYLIKHADVARANVDAAGLCGKVEIRIGPALETLAALHAEGQEPFDFVFIDADKENDAAYLEWAVRLGRPGTVVVLDNAIWEGAVLDPSIDRVNAPGIIGALELLGKDPRLDGTVIQTVGSKGWDGFALALVRPGPT0011950_26DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-ANSAMITOCIN_P-3_METABOLISM,PGPT0011950-asm17-K16028NANA
D1-29_00527177hypothetical proteinATGGGTTTGGACGACAAGATGGAGAACACCGGCGAGAAGCTCGGCGGCAAGGCCAAAGAGGCTACCGGTAAGGCTAGCGACGACGAGGGCCTCGAGGCCGAGGGCAAAATGGACCAGACAAAAGCCGATCTGAAGCAGGCCGGCGAGAAGGTTAAGGACGCCTTCAAGAAGGACTAAMGLDDKMENTGEKLGGKAKEATGKASDDEGLEAEGKMDQTKADLKQAGEKVKDAFKKDNANANANANA
D1-29_005281125hypothetical proteinATGGCCACTCAGGACAGTTCCGAGACGAGCACCGCCAAGGCAGGCAGCGCTCCGGCCCCCGACGACTCCCGTAAGCCGGACAGCCCCACGGATGTCACCAAGCCCTCATGGAAGTACATCGCCAAGAAGACCTTCAGGGAGTTCAACCAGGACCACTGTCCGGACTTGGCGGCCGCACTCACGTACTTCGCCGTTCTGTCGCTGTTTCCTGCGATGCTGGCGCTCGTTTCGCTCGTCGGCATCTTCGGTGATCCGGCAACGACGACGGCGGCCCTCCTGGAAATCGTGCGCGGCATCGCACCCGAGGATACTGTCGAAACAGTCAGCGGGCCGGTGGAGGAGCTTGCGGCTGCGCCGGCGGCAGGGTTCACGCTCTTCATCGGCCTTGCCACCGCCCTGTGGTCAGCGTCCGGATACGTGGGGGCGTTCGGCCGCGCCATGAACCGTGTTTATGAAGTCGATGAAGGCCGCCCGTTCCTGAAGCTCCGCGGAACCATGCTGGCAGTCACCCTGCTCGCCGTGGTCATTGTGGCCCTGCTTGCCGGGATGCTCGTGCTCAGCGGCCCGGTTTCGGAAGCCATTGGCGGCGCCATTGGACTGGGCGGGACCATCCTCACGGTCTGGAACATTGCTAAGTGGCCGGTCATCGTGGCGCTGGTTATTGTGATCATCGCCGTCCTCTACTACGTCACGCCGAACGTCAAGCAGCCCAAGTTCCGGTGGATGAGCATTGGCTCGTTCGTTGCGTTATTAGTTTTCCTTCTGGCCTCCCTGGGCTTCGCCTTTTACGTGGCCAATTTTGGCAATTACAACAAGACCTACGGTGCGCTGGGCGGCGTGATCGTGATGCTGCTCTGGCTGTGGATCCTCAACATGTCCCTTTTGTTTGGGGCGGAACTCGATGCTGAGACGGAACGCGGACGGCAACTCCAGGCAGGGATTGAAGCCGAGGAAACCATCCAACTGCCCCCACGGGACACCAAGAAGAGCGACAAGCTGCAGGCCCAGGAGGAGGAAGACATCCGTCGCGGCCGGGAGCTGCGCGAAAGCCGCGGCGGGGAGGTGTCGCAGGGCAAGGGGGACGAAACCGGCGGCGATCTTCACAAGGGAAGCCACCGGGACTAGMATQDSSETSTAKAGSAPAPDDSRKPDSPTDVTKPSWKYIAKKTFREFNQDHCPDLAAALTYFAVLSLFPAMLALVSLVGIFGDPATTTAALLEIVRGIAPEDTVETVSGPVEELAAAPAAGFTLFIGLATALWSASGYVGAFGRAMNRVYEVDEGRPFLKLRGTMLAVTLLAVVIVALLAGMLVLSGPVSEAIGGAIGLGGTILTVWNIAKWPVIVALVIVIIAVLYYVTPNVKQPKFRWMSIGSFVALLVFLLASLGFAFYVANFGNYNKTYGALGGVIVMLLWLWILNMSLLFGAELDAETERGRQLQAGIEAEETIQLPPRDTKKSDKLQAQEEEDIRRGRELRESRGGEVSQGKGDETGGDLHKGSHRDPGPT0014525_1751DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
D1-29_00529609hypothetical proteinATGAGTGACAACCCGGACGCGATCCGTTCAGATATTGAAGCAACCCGTGCCCGCCTTGGCACCAATGTGGATGCCGTGGCTGACAAGGTCACTCCCTCCAACATCGTCCACCGCCAGACAGACAAGGTGAAGGACGCCGTCTTCGGAGTGAAGGAGAAAGTCATGGGAGCAGCAGACAGCGCCACTTCCAGGGTGCAGGGTGGGGTCCAGAGCCGCACCGACAGCGCCGGCAACATGCTTAGTGATGCAGGATCGGCGATCGGTGAGGCCCCCCAACAGGTACGGGCTAAGGCGCAAGGAAACCCCTTGGCCGCAGGCCTGATCGCCTTCGGCGCTGGGATGCTGCTGTCCTCTCTGATCCCGGCCAGCGAAAAGGAACGCGAAGCGGCGGACGCCCTCAAGTCGGCCGCGGAACCCGTGACAAGTGAGCTGACGGAAGCCGCCAAGGAAATGGCTGAAGGCATGAAGGAGCCGGCCCGGGAAGCCATGGAAAGCGTCAAGGCAACGGCTACTGAGGGCGCTGAGCATGTCAAGAGTGAAGGCCAGGTTGCGGCCTCCGATGTGAAAGACCGTGCCACTGACGCCAAGGACCACGTTCAGAACCCCTGAMSDNPDAIRSDIEATRARLGTNVDAVADKVTPSNIVHRQTDKVKDAVFGVKEKVMGAADSATSRVQGGVQSRTDSAGNMLSDAGSAIGEAPQQVRAKAQGNPLAAGLIAFGAGMLLSSLIPASEKEREAADALKSAAEPVTSELTEAAKEMAEGMKEPAREAMESVKATATEGAEHVKSEGQVAASDVKDRATDAKDHVQNPNANANANANA
D1-29_00530432hypothetical proteinATGAGCAGCGAGATGCCGGAGACTCCTCCGAGCGCAGCGCATGCGAAGGCTGACAATACATCCTTGGGCGACCTGCTCGGGGAGGTGACCCGTGACCTTTCCACCCTGATGCGCCAGGAACTTGAGCTCGCCAAAGTAGAACTCAAGCAGACAGCTACCAAGGCGGGCAAGGGCAGCGGAATGCTCGCCGGAGCGGGCGTGGCCGGTCATTTTGTCCTGCTGTTCCTTTCCATCGCCCTCTGGTACGCCTTGGGCGAGCTGATGGGCCTGGGCTGGTCCGCCGTCGTCGTGGCTGTTATCTGGGGCATCATCGCCGCAATATTGGCGGCAATGGGCCGCAAGGAACTCAAGACGGTCAAGGGCATGCCCCAGACCACCGAAACACTCCAGGAAATTCCCCCAACCCTAAAACCCGGTGAGGTAAAACGATGAMSSEMPETPPSAAHAKADNTSLGDLLGEVTRDLSTLMRQELELAKVELKQTATKAGKGSGMLAGAGVAGHFVLLFLSIALWYALGELMGLGWSAVVVAVIWGIIAAILAAMGRKELKTVKGMPQTTETLQEIPPTLKPGEVKRNANANANANA
D1-29_005311008hypothetical proteinATGACAGAGAACCAATGGCCCGAGGACCCCACGTACAGGGTTCCCCCGGCCACACCAGGGACTACCGGAGAGCGGAGCGCCAGCACGTTCCCCTCCGCTGCCCAGACTGCGGGGACTCCGCAGACAGGCACGCCACAGACAGGCACGCCACAGACAGGCGGAGCCTATGAGACTTCCTCCCGGAAGGACGCTGTAAAGCAAGAAGCCGGGGACGTTGCCCGCACAGCAGCGGATTCTGCCCAGAGCGTGGCCCAGACAGCAAAGAGTGAAGCGGCAAACGTCGCGAGCGAGGTCAAGACGAATGCCAAGGACCTGCTGTACCAGGCTCGGAACGACCTCACCCAGCAGGCAGGGACGCAGCAGCAGAAAGTTGCTGACGGCCTCCGCTCCGTTTCTGACCAACTGCATTCCATGGCCCAGGCATCCGACCAGCCAGGCGTTGCTTCCGACCTGGTCCGCCAGGCCGCAGACCGCTCCTCCTCCGTGGCGTCCTGGCTTGAAGGGCGGGACCCTGGATCACTCCTGGACGAAGTAAGGAGCTTCGCCCGGCAGCGTCCCGGCACCTTCCTGCTTCTTGCTGCAGGCGCCGGCGTCCTTGCAGGAAGGCTGACCCGCAGCTTGAACGCCGGGGCACCGGAGTCCACCACAGGTTCTGCCGGATACACCGGCCAGTATTCCGGCAACCAGTATGCAGCCGGCCAGTACGAGGCAGACCAGGCTGCAGGCTACGTCCCCGCGGGCGGGGGTGCGGTTCCGCCGCCACCGGTCCAGCTCCCTGGCCCGTCCACCACCACGGCAGGGTACGACGGCGGCGCGCCGGGAAGCAGCTATCCTGCTGCTTCCACGACGGCAAGTCCGCTGGACAGCCCGCAGTTGGTAGAGGAGCCGTGGTCCGGTAACAGGACAGCACAGGATCCCCTGGGCGACAGGGACCTGGCGGATGATCCGATGGCCAACGACCCACTCACCCGGGACCGGTCCGCGGACGGCCAGACTGGCAGGCCGTGAMTENQWPEDPTYRVPPATPGTTGERSASTFPSAAQTAGTPQTGTPQTGTPQTGGAYETSSRKDAVKQEAGDVARTAADSAQSVAQTAKSEAANVASEVKTNAKDLLYQARNDLTQQAGTQQQKVADGLRSVSDQLHSMAQASDQPGVASDLVRQAADRSSSVASWLEGRDPGSLLDEVRSFARQRPGTFLLLAAGAGVLAGRLTRSLNAGAPESTTGSAGYTGQYSGNQYAAGQYEADQAAGYVPAGGGAVPPPPVQLPGPSTTTAGYDGGAPGSSYPAASTTASPLDSPQLVEEPWSGNRTAQDPLGDRDLADDPMANDPLTRDRSADGQTGRPNANANANANA
D1-29_00532489hypothetical proteinTTGGAAACAGCACCGTGGGTTTGGGTGGTTGTTGCAATTGTTGTCATCGCGCTTATTGTGGTGCTCCTGTTGACTGGGAAGCGCCGCAAGGCAATACAGCAGAAGCGTGAAGAATCGCAGCGTGAAAAGGCCGCGGAAATTCGCCGCAACGCCGAGAACGTCGAATTGGATGCCCGCGAAAATGAGGCTCGCGCTACTCGTGCACGTGCCGACGCCGAACAGGCCCAGGTGGAAGCTGCGCGGCTTAAGCAGGAAGCGGACCAGAAGGCGGCCAATGCCGAGTCGCTGCGCGAGGATGTAGCCCGGCAGAGCCGGAAGGCCGACGCCGTTGATCCCGACGTGCGCAATGACGGGAACGTCCGTGGCGAGCGCGAAGCCCGGACCGACACTGCCAGGACGGACGCCGCCAGGACGGACACGGCCAGGACGGACACGGCCAGGACGGACACGGCCCGGACTGACCGCGACAACCCGCGTTCGGGTATCTAGMETAPWVWVVVAIVVIALIVVLLLTGKRRKAIQQKREESQREKAAEIRRNAENVELDARENEARATRARADAEQAQVEAARLKQEADQKAANAESLREDVARQSRKADAVDPDVRNDGNVRGEREARTDTARTDAARTDTARTDTARTDTARTDRDNPRSGINANANANANA
D1-29_005331083auaHAurachin B dehydrogenaseATGCGAATCGCCATCATCGGAGCCAGCGGAAACGCCGGCACAGCACTCCTTCGGAACCTCCAGGGCCAACTGCTAAAACGGCCTGGAAGCCTGGAACCCGTAGGGGTGAGCAGGCGACTTCCGGATACCGCCCTTGCTCCGTACCAGGGGGTCGAATGGCACACCCTGGACGTGGGCCGGGATGCCGATTTTCCGCTGCTCCGCTCCGCCCTGGCAGGGGCGGACGCCGTGGTCCACTTGGCCTGGCTGCTGCAGCCGAACAGGGACCTTGCCACCCTTCGCCGAACGAACGTCACGGGAACCGCGAATGTCCTTGAGGCTGCCCGGCAAGCAGGCGTGGGGCATATTGTGTGCGCGTCCTCCGTGGGCGCCTACAGTAAAGCACCTAAGAACCAGAGGACCGATGAATCCTGGCCGGCCACGGGGATCCCGTCGTCGCATTACAGCCGGCACAAGGCGGAACAGGAAGCCCTCCTGGACCGGTTCCAGGCGGAACAGCCAGGGGTCAAAGTGGCCAGGCTCCGGCCCGGGCTGATCTTTCAGGCTGATGCCGGCAGCGCAGTGGGACAGTTCTTCCTGGGCCCCGTTCTCTCCCGGCTGGTGCCGGCCAGGCCGTGGCTGCCCATACTTCCTGCCCCTGAGGACCTCATATTTCAGGCGGTCCACGCCGAAGATGTTGCCGAGGCGTACTGGCGGGTCCTGGACCGCGGCGAGTCCGGGGCGTTCAACGTAGCCGCCGAGCCCGTGATTACTCCACAGGAACTCGGCAGGCTCCTTCGCGCGAAGCGCATCCTCCCCATTCCCATGAGCCTCCTGCGGGCCCTGGTGCATGTCACCTGGAAGCTCCGGCTTCAACCTACCGATGCAGGTTGGATTGATATGGCTGCCGGCGCACCCATCATGGACACCAGCCGCGCCCGGAGGGTCCTGGACTGGGAGCCGCGGAGATCATCCATGGACGCCCTGGCCCAGATCCTCCAAGGCATGGGAACGGGGGAAGGAGTACCTCCTTCCCCCGTTCTCAAGCCCAGGCGGAGCCTTGCTGCGGCTTCCCGTTCCAGGCGGTCACACCGGGTGCAGTAAMRIAIIGASGNAGTALLRNLQGQLLKRPGSLEPVGVSRRLPDTALAPYQGVEWHTLDVGRDADFPLLRSALAGADAVVHLAWLLQPNRDLATLRRTNVTGTANVLEAARQAGVGHIVCASSVGAYSKAPKNQRTDESWPATGIPSSHYSRHKAEQEALLDRFQAEQPGVKVARLRPGLIFQADAGSAVGQFFLGPVLSRLVPARPWLPILPAPEDLIFQAVHAEDVAEAYWRVLDRGESGAFNVAAEPVITPQELGRLLRAKRILPIPMSLLRALVHVTWKLRLQPTDAGWIDMAAGAPIMDTSRARRVLDWEPRRSSMDALAQILQGMGTGEGVPPSPVLKPRRSLAAASRSRRSHRVQNANANANANA
D1-29_00534909fliARNA polymerase sigma factor FliAATGCCTGATTTTATTGCTGCGCTTGCCGTGGAGAATACCAGAGCTGAGACGCGTCCGGTGGAGGTTCCTCCACCCACCTCTCCTCCTAAGGGCGGGCGCCTCCGGCAAACATTCGAAAACGACCTGGTCCTGAGCTACCTGGACCTGGCTGAAGCGCTGGCCGCGCGCTTTGAGGCCCGTGGCCGGGAGCGGGCCGACCTCAACCAGGTGGCATACCTGGGCCTCGTCAAGGCTGCACGAGGCTTTGACCAGACAAAAGGTGACAGCTTTCCGGCCTACGCGGCACCCACTATTACTGGCGAACTCAAGAGGTACCTCCGCGACAGGAGTTGGGTGGTCAGGCCCCCACGGCACATCCAGGATCTGCGTTCCCGCCTGTTCCGCGTGGAGCCTGAACTCGCCCAGTCGCTGGGCAGGAACCCCACTGTTGACGAGCTTGCCCAGGAACTGGGCGTAGAAAGTGTAGAGGTGCAGGAGGCGATCTCGGCGTCGAGCAGCCTGCATCCGGATTCGCTCGACGCCGTCAATCCGAACAGCGACGCGCCTCCAATCGCGGAGGTGCTCGCCGCTCCTGAAGCGCCACTGGAACGGCTGGAAGAGCTGGCCTGCCTGCGGGAGGCAATGGAGGAGCTCGACCCCGGGGACCGGGAGCTGTTATACCGGCGGTACTTTTGCGAAGAGACCCAGGTGGAACTGGGTAAACGCCTGGGAATGTCCCAGATGCAGGTTTCGCGGCGCCTGGCCCGCGTGCTGGTGGAACTGCAGCGCAGGCTCCTGGAAAGCAGCTACGTTGCCGATTCGGGTACCGGGGCGGCCCAGCACCTGCCCGTTGCACCGCGAAGGACCGGATCCGGCCGGCCGTCCAATGGATCCCAGCGGGAAAGCCGCTCCCGAGTCACCAGCCGGTGAMPDFIAALAVENTRAETRPVEVPPPTSPPKGGRLRQTFENDLVLSYLDLAEALAARFEARGRERADLNQVAYLGLVKAARGFDQTKGDSFPAYAAPTITGELKRYLRDRSWVVRPPRHIQDLRSRLFRVEPELAQSLGRNPTVDELAQELGVESVEVQEAISASSSLHPDSLDAVNPNSDAPPIAEVLAAPEAPLERLEELACLREAMEELDPGDRELLYRRYFCEETQVELGKRLGMSQMQVSRRLARVLVELQRRLLESSYVADSGTGAAQHLPVAPRRTGSGRPSNGSQRESRSRVTSRPGPT0015025_178DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSOTHER_MOTILITY_REGULATION,PGPT0015025-sigM|rpoE-K03090NANA
D1-29_00535540gmhBCOG0241D-glycero-beta-D-manno-heptose-1,7-bisphosphate 7-phosphataseATGGGAAGCTCCGCAACTCCGCAGCTCAAGGCTGTCCTGTTCGACAGGGACGGAACCTTGGTGGTTGACGTGCCCTACAACGGGGATCCCGGCCTGGTCCAGCCCATGCCGGGCGCCAAGGACGTGCTGGATTCCCTCCGCCGCCAGGGACTGGCAACCGGAGTGATCAGCAACCAGTCCGGGATTGCGCGCGGCATCCTCACTGCTGCGGACGTGGCGGGCGTCAACGCCAGGGTGGAGGAGCTCCTGGGTCCTTTTGATGTGTGGGAGGTGTGCCCGCACGCGGAGGAAGACGGTTGCGCCTGCCGGAAGCCCGCCCCGGGAATGGTGCACAGTGCCTGCCGGAAACTGGGGATCGAACCTTCCGAGGCAGCGCTCATCGGTGACATTGGAAGTGACATCCTTGCCGCCAAGGCGGCCGGCGCCAGGAGCGTACTGGTGCCTACTGCGGTGACGCGCGCCGAGGAAGTCAGCGGATCCCCGCTGGTGGCTGATGATCTTGCCCGGGCCGTGGATCTGCTCTTGGAGCGGACCCAGTAAMGSSATPQLKAVLFDRDGTLVVDVPYNGDPGLVQPMPGAKDVLDSLRRQGLATGVISNQSGIARGILTAADVAGVNARVEELLGPFDVWEVCPHAEEDGCACRKPAPGMVHSACRKLGIEPSEAALIGDIGSDILAAKAAGARSVLVPTAVTRAEEVSGSPLVADDLARAVDLLLERTQPGPT0023035_1681DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023035-gmhB|yaeD-K03273NANA
D1-29_005361089hypothetical proteinATGGGACGCGTCCTGGTGGCAAGGCTGGACAGCATGGGCGACGTCCTGCTGGCCGGACCGGCCGTCCGGGCCGTTGCCAACGGCAGGCGCCCGGACGGGAGCCAGCCAAACCAGGTGGTGATGCTGTGCGGAAGCCAAGGAGAGGATGCGGCGTCCATGCTGCCCGGGGCCGCGGAAGTCTATAGCTGGGACTGCCCGTGGATCATGAACCCTGCGCCGAAGATGACATGGCCGCACGCCGACCGCCTGGTGGACTATGTCAGCAACTCCAGGATCACCGAGGCCGTCATCCTGACGTCCTTCCACCAGTCCCCGCTGCCGCTTGCCCTGCTACTACGCCTTGCCGGCGTGGAAAGGATCAGCGGAGCCTCCACGGATTACGCTGGTTCCCTCCTGGATGTCAGGCTCAAGCCGGGTGAGGACTTTCCGGAAGACCAGCCCGAGGCAGAACGGGCCCTTGGCATCGCGCAGGCGGCCGGCTTCACACTGCCGGCAGGAGACGACGGCAAGCTGCGGGTGGACCGTGTTCCGGACGTCAAGGATTTGGTGGGTGAGGGGCCTTATGTGGTGGTCCATCCAGGGGCGGCAGTGCCGGCGAGGGCCTGGCCGCCGTTTCACCACGCCGCCGCCGTCGAACTGCTTGAAGGAGCCGGTCACCGGGTAGTGGTGACCGGCGGGCCGGGGGACACGTCACTGACGGCTACTGTGGCGGGCCCCTCCGCGTTGGACCTGGGCGGGCGGACCGACCTCCCTACCCTGGCGGGGGTGCTGGCGGGCGCTGAGGCCGTAGTCATCGGCAACACCGGCCCCGCCCATCTGGCTGCCGCCGTGGGTACCCCGGTAGCCTGTCTCTTCTCCCCGGTGGTGCCTGCCGTGCGCTGGGCCCCCTACGGTGTGCCCCTGGAACTTCTGGGCGACCAAAGTGCACCATGCCGGCTCACGCGTGCCCGGGTTTGTCCCGTACCGGGCCATCCCTGCCTGGATTCCGTGCCTCCCGAGGAGGTGGTGCAGGCCGTGGAGCGACTGATCGGCGGGGTCACCTCCTTCAGCACCCACCTCAGCACCCGCAGAAAGGCACGCAAACGATGAMGRVLVARLDSMGDVLLAGPAVRAVANGRRPDGSQPNQVVMLCGSQGEDAASMLPGAAEVYSWDCPWIMNPAPKMTWPHADRLVDYVSNSRITEAVILTSFHQSPLPLALLLRLAGVERISGASTDYAGSLLDVRLKPGEDFPEDQPEAERALGIAQAAGFTLPAGDDGKLRVDRVPDVKDLVGEGPYVVVHPGAAVPARAWPPFHHAAAVELLEGAGHRVVVTGGPGDTSLTATVAGPSALDLGGRTDLPTLAGVLAGAEAVVIGNTGPAHLAAAVGTPVACLFSPVVPAVRWAPYGVPLELLGDQSAPCRLTRARVCPVPGHPCLDSVPPEEVVQAVERLIGGVTSFSTHLSTRRKARKRPGPT0022550_428DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022550-waaQ|rfaQ-K02849NANA
D1-29_005371029hypothetical proteinATGAGAGTCCTGCTATGGCACGTCCACGGTTCGTGGACCGACGCGTTCGTCCGCGGACGCCACGAATACCTGCTTCCCGTCCTGCCGGAGCGCGGGCCCTGGGGCCTGGGGCGGGCAGGCAGGGAGTGGCCAGCCAGTGTGCGGGAGGTGGCGCTGGCGGAGTTGGACGCCGACGCCGTGGACGCCGTCGTTCTTCAGCGTCCCGAAGAGATTGTTGAAGTGTTCAGGGCGCTGGGCCGCCGGCCTGGCCGGGACCTGCCTGCGGTGTACGTGGAGCACAACACTCCGAAGGGGAATTTTCCCTTCACCCGGCATCCGCTGGCGGAGCAGGCAAACATTCCAGTGGTCCACGTGACCCATTTCAACAAGTTGGCCTGGGACAACGGCTCGGCACCCACCCTTGTCATTGAGCACGGGATCCCGGACCCGGGACTCCTTTATACGGGAGAGCTGCCGGAACTGGGAGTGGTGGTCAATGAGCCTGTGCGGCGTGGCCGGGTGACCGGTACGGACCTCCTGCCGGCGTTCGCCTCCGTGGCGCCGCTGCAGGTTTTCGGCATGCAAACCCAAGGACTGGCAGCCGCCGTCGGAATAGGGGAATCGCGCCTGACGTCGCGGGGCGATCTGCAGACGCGCGAACTGCACCGGGAACTGTCGCGATGCCGGATCTACATCCATCCCATGCGCTGGACCTCGCTGGGACTGTCCCTGCTGGAAGCGATGCACCTGGGTATGCCGGTGGTTGCGCTTGCTGCCACGGAAGCGCCGCGGGCGGTGCCGCCCGAAGCCGGCGCCGTCTCTGCCGACATGGATGAACTGCTGCGCAGCGCTGCAAGGCTGGTGGCCAATCCGGAAGAAGCCCGACGGCGGGGCGCCGCCGCCAGGGAAGCGGCACTGGCGCGTTACAGCCTGGGCAGGTTCCTGGGCCGCTGGGACGAGGTGCTGGCGGACCTGTTGCCCCGGCCGAAAGCCAACGAACGTCTGGAAGAGAAGATCCTTATTCCGGCGCGAGAGAGGAAGACCCCATGAMRVLLWHVHGSWTDAFVRGRHEYLLPVLPERGPWGLGRAGREWPASVREVALAELDADAVDAVVLQRPEEIVEVFRALGRRPGRDLPAVYVEHNTPKGNFPFTRHPLAEQANIPVVHVTHFNKLAWDNGSAPTLVIEHGIPDPGLLYTGELPELGVVVNEPVRRGRVTGTDLLPAFASVAPLQVFGMQTQGLAAAVGIGESRLTSRGDLQTRELHRELSRCRIYIHPMRWTSLGLSLLEAMHLGMPVVALAATEAPRAVPPEAGAVSADMDELLRSAARLVANPEEARRRGAAAREAALARYSLGRFLGRWDEVLADLLPRPKANERLEEKILIPARERKTPNANANANANA
D1-29_005381254mshA_1COG0438D-inositol 3-phosphate glycosyltransferaseATGAAAATCTCCATGATTTCAGAACACGCCAGTCCGCTGGCGGCACTGGGCGGGGTGGATGCCGGCGGGCAGAACGTGCATGTTGCGGCATTGTCCGAGGCCCTGGCCAAGAGGGGGCACACGGTAACTGTCTACACCCGGAGGGATGCAACGGAGCTTCCCGCCAGGGTAAAGGTGGGCCGCCGGCTGGAAGTGGTCCATGTGGATGCCGGACCGGCGTGCCACATTCCCAAGGATGAGCTTCTTCCGCTGATGGGGGAGCTTGCGGACGGCGTCGCCAAGGACTGGGGCCAGCGTCCGCCCGACGTGGTGCATGGCCATTTTTGGATGTCCGGCCTCGCGGCGCTCTACGCTGCCCGGCGGGAAGGATCAGGCTACCAGGTGCCTGTCATCCAGACTTTTCATGCCCTGGGAACCGTCAAACGCAGGCACCAGGGCGCCGAGGACACCAGCCCGCTGGAGCGCCGCTGGCTGGAACCCGGGGTGGGACGCTCCGCAGACAGGATCATCGCCACCTGTTCGGATGAGGTCTTTGAACTGAAATCCATGGGGATCAACACCAGCAAGATTTCCATCGCTCCGTGCGGTGTTGACCTTGCCCTCTTCTCTGCGGAGGGACCCGCCGACCCCCGGCCACGCAGGCACCGGATCCTTTCGGTGGGCAGGCTGGTTCCGCGCAAGGGGGTGGACCTGGTGATCCGGGCGCTTCCGCTCCTGAGCCAGGTTGGATTCGACGACGTCGAACTCCTGATTGTGGGCGGCGGCGGGGACTCGCGGGCCCTTGATGCTGACCCGGAAGTGCGCCGCCTCCTGGGGCTGGCCAAAGAACTGAACCTTTCGGACCGGGTGACATTGCAGGGGCAGGTACCACGGGCAGCCATGCCAGGCATCTTCCGAAGCGCCGACGCCGTGGTCTGCTCCCCCTGGTACGAGCCCTTCGGCATCGTCCCGCTCGAAGCCATGGCTTGTGGCGTGCCGGTGGTGGCCGCGGCCGTGGGAGGGCTCCGCGACACCGTGGTTGACCACGGCACCGGGCTACACGTACCGCCGCGCGATCCGGAAGCCATCGCGTCCGCCCTGGCCCTCCTGCTGGGCGATCCCGCCCTGGCGGCCGAACTTGGCAGGGCCGGGCAGCAGAGGGCCAAGTCGCGGTATTCCTGGGACCGGGTGGCTGCAGAAACCGAAAAGGCCTACAAGCTGGCCATGTCGGAAGCCCCGGCCGGCCGGGTCCCTATGGAAGGAGCAGCGCTGTGAMKISMISEHASPLAALGGVDAGGQNVHVAALSEALAKRGHTVTVYTRRDATELPARVKVGRRLEVVHVDAGPACHIPKDELLPLMGELADGVAKDWGQRPPDVVHGHFWMSGLAALYAARREGSGYQVPVIQTFHALGTVKRRHQGAEDTSPLERRWLEPGVGRSADRIIATCSDEVFELKSMGINTSKISIAPCGVDLALFSAEGPADPRPRRHRILSVGRLVPRKGVDLVIRALPLLSQVGFDDVELLIVGGGGDSRALDADPEVRRLLGLAKELNLSDRVTLQGQVPRAAMPGIFRSADAVVCSPWYEPFGIVPLEAMACGVPVVAAAVGGLRDTVVDHGTGLHVPPRDPEAIASALALLLGDPALAAELGRAGQQRAKSRYSWDRVAAETEKAYKLAMSEAPAGRVPMEGAALPGPT0024580_811DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
D1-29_00539780gmhAPhosphoheptose isomeraseGTGACTGCCGAATGGTCCCTTCGTGAGGCCGACGTCCAGGCCCTGGCCCGCCACGCCGCGCTTTCCCCGGCGCATCCATCCACAACGCCGTCCCACGATCCTTCCGGTGCAGCCGTTAGGGACGCAGGGGCAGCCCTCGTGGACGCGGCAGCTGCACATGCTGTCCGCGCGCACCTGGACAACGTCCTGCCTGCGCTGGACTCGCTCCGGAGCCAGTCGGACCGGCTCGCCGCGTGGGGAGTGGAGCTGGCCCAGCGCCTGCTCCGGGGGCAGCGGGTGATGGCCGCGGGCAATGGCGGGTCAGCCGCCGAGGCCCAGCACCTGACCGCCGAACTGGTGGGACGGTTCGACGGCGAGCGGATCCCCTTCTCCGCTATCTCCCTCCATGCGGAGACCTCGGCAGTGACTGCGATTTCCAATGACTACGGCTACGACGAGGTGTTTGCCCGGCAGATCCGGGCCCACGGCCGTTCCGGCGACGTGCTGGTCCTGCTGTCCACCAGCGGCAAGAGCCCCAACCTGCTCAGGGCCGCGGAAGCAGCCGCCCGGCTCAACATCACCACCTGGGCACTGACCGGCCCCGGGCCCAACCCGCTGGCGTTGGCCTGTGACGAGGCCGTGATGATTGAAGCCGTTAACGCCAACGCCCAGGAAGGCCACCTGATCGCGCTGCATGCCATCTGCCGGGCCTTCGACCTGGAGGTCAACCGGCGCGGCTCCGGAAACCACAGCGGGCACAGGTCTGGCAGCCCTGACGGAGAAGCAGGAGGCCGGGCATGAMTAEWSLREADVQALARHAALSPAHPSTTPSHDPSGAAVRDAGAALVDAAAAHAVRAHLDNVLPALDSLRSQSDRLAAWGVELAQRLLRGQRVMAAGNGGSAAEAQHLTAELVGRFDGERIPFSAISLHAETSAVTAISNDYGYDEVFARQIRAHGRSGDVLVLLSTSGKSPNLLRAAEAAARLNITTWALTGPGPNPLALACDEAVMIEAVNANAQEGHLIALHAICRAFDLEVNRRGSGNHSGHRSGSPDGEAGGRAPGPT0023030_72DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023030-gmhA|lpcA-K03271NANA
D1-29_005401383hldE_1COG2870Bifunctional protein HldEATGAGGATCGTTGTGGTGGGTGACGCGATTTTGGATGTTGACCTGTCCGGAGAGGCCACCCGGCTGAGCCCCGATGCCCCTGTGCCCGTTGTTGACGTATCAGGCATCAGGCGCCGGGCGGGGGGAGCCGGGCTGGTGGCCCGGATGCTGGCTGAGGACGGCTGGCCCGTCACCCTGGTGACAGTCCTGGCAGATGACGACGCCGGACGGCAGCTTGAGGCTGCGCTCGCGGGGGTGCGGCTTGTGGCCGGGCCCAGCAGCTTCCCGTCGCCGGTCAAGACCCGGGTCCGGGCCGGCTCCCATCCCGTGGTCCGTTTTGACCAGGGCTGCGGGCCGACGCCCGTACCCGACGTGACTCCCGCGATGCTGCGGGCCGTGGAAAAGGCCGGGGCCATCATCGTTGCAGACTACGGCCGGGGCCTGGCCGCCAACCCCCAGCTGAGGGAACTTTTGACAAGGCTCGCTGACGACATTCCCATCGTGTGGGACCCGCACCCCTCCGGCGCCCCTCCGGTTCCGGGGGTCGCCGTGGTGACGCCCAACCTGTCCGAAGCCCGCAAGGCCGCCGGCGGCAGGACCGCGGCGTCCGGGAACAGTGCCTCCTCCAATGGGGCGGGGGACATTGCGGGCGTCCTGCTGGACCAGTGGCGCAGCCGTGCCGTCCTGGTGACCACCGGGGAACATGGTGCCGTACTCCTGACGCGGCGGGACCCGGCGCCGCAGCCTGTTCCCGTGCCCCGGGTGGAGGTGGGCGATCCCTGCGGCGCAGGCGACAGGCTGGCCGCCAGCCTGGCCGTCCACTTGCTGGCAGGCCGTGACCTTCGGGACGCCTCCGTACTCGCCGTCCATGAGGCCGCAGATTTCCTGGCGGCCGGCGGGGTGGCCTCGCTGCCGGATCCGCCCCCGCCCGGGAAAGCCAGGCACCGCACCACCGAGCCGCTCCTGCTGGCCCGCAGCGTGCGGGAGAACGGCGGCATGGTGGTGGCCACGGGGGGCTGCTTCGACCTGTTGCACGCCGGACATGTCAGGTCACTGGCAGCCGCCCGTGAACTGGGGGACTGCCTCATTGTCTGCCTGAACTCGGATGCCTCGGCGCACCGGCTGAAGGGCGACCAGCGCCCCATTATGGGCCAGCAGGACAGGGCAGAGCTGCTGCTGGCGCTGGAGTGCGTGGACGCGGTGATGATTTTTGACGAGGACACTCCGGAGGCCGCGCTGGACCGGCTCCGCCCCGACATCTGGGTCAAGGGCGGCGACTACAAAGGTGCGCGCCTGCCCGAAGCCGAGCTGGTGGAGAGCTGGGGCGGACGCTGCGTGACCGTTCCCTACCATCCGGCCCGCTCCACCACGCTCCTGGCCGACGCCCTGGCGAAGGTGAGCTGAMRIVVVGDAILDVDLSGEATRLSPDAPVPVVDVSGIRRRAGGAGLVARMLAEDGWPVTLVTVLADDDAGRQLEAALAGVRLVAGPSSFPSPVKTRVRAGSHPVVRFDQGCGPTPVPDVTPAMLRAVEKAGAIIVADYGRGLAANPQLRELLTRLADDIPIVWDPHPSGAPPVPGVAVVTPNLSEARKAAGGRTAASGNSASSNGAGDIAGVLLDQWRSRAVLVTTGEHGAVLLTRRDPAPQPVPVPRVEVGDPCGAGDRLAASLAVHLLAGRDLRDASVLAVHEAADFLAAGGVASLPDPPPPGKARHRTTEPLLLARSVRENGGMVVATGGCFDLLHAGHVRSLAAARELGDCLIVCLNSDASAHRLKGDQRPIMGQQDRAELLLALECVDAVMIFDEDTPEAALDRLRPDIWVKGGDYKGARLPEAELVESWGGRCVTVPYHPARSTTLLADALAKVSPGPT0023040_1258DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023040-gmhC|hldE|waaE|rfaE-K03272NANA
D1-29_00541702putative oxidoreductaseATGAACATTCAGTCGCCTTGGCCCGGCCGGGTCCTGGTTACCGGAGGGGCCTCCGGACTGGGTGCCGCCGTCGTCGAAGCTGTTCTCAGGGCAGGCGGGACTCCAGTGGTCCTGGACCGCGACATCAGCGCAGTTTCGTCCGTGAAGGCGTTCGAAGTTGACGTCTCGGACCGCCTTGCCGTTGAGCATGCCGTCCAGGAGGCAGCGGACTCGCTGGGAGGACTGGATGCGGTGGTGACAGCGGCGGGAATCGACCGCTGCGGCAAACTGGCCGATGTTGCCGCGGACGAATGGGAGAAGGTCATCGGCGTCAACCTGTTGGGCACAGTCTCCGTTGTCCGCGCAGCGTTGCCCCATCTCAAGGCTTCCCGGGGGCGGGTGGTGACGGTGGCCTCGACGCTGGGAAAGCGGGCGGTTGCGGATGCCACCGCCTACTGCGCCTCCAAGTTTGGCGTGGTGGGCTTCAGCCATGCGCTGGCCGCTGAAACCGGCGGGGAGATTGGGGTGACCACCATGATCCCCGGCGGCATGAAAACCAGGTTCTTTGATGACAGGACTGAGCAGTACAAGCCGCAGGACGACTCCCGGCTCAACAGCCCGGGCAACGTGGCGCAGGCCATCCTGTTCGTCTTGTCCCAGCCCACCGGCTGCGAGGTGCGCGAGATGCTCATCTGCCACGAGGAGGAGGGCTCCTGGCCGTGAMNIQSPWPGRVLVTGGASGLGAAVVEAVLRAGGTPVVLDRDISAVSSVKAFEVDVSDRLAVEHAVQEAADSLGGLDAVVTAAGIDRCGKLADVAADEWEKVIGVNLLGTVSVVRAALPHLKASRGRVVTVASTLGKRAVADATAYCASKFGVVGFSHALAAETGGEIGVTTMIPGGMKTRFFDDRTEQYKPQDDSRLNSPGNVAQAILFVLSQPTGCEVREMLICHEEEGSWPNANANANANA
D1-29_00542687COQ5_12-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialGTGACGGGACACGAACTGGATCGGCCCACGGGGCCGGACCACCTGCAGCACCCGCGTTTTGCCAAAAACTATGCGCGGGTAGTGGAGGTGATGAACGAACGGGGCGCCACGGAGCATCGGCGTGCGGCACTGTCCGGCCTGTCAGGCAAGGTGATAGAAATCGGGGCAGGGGAAGGCTCAGCGTTTGCGCTCTACCCCGGCTCTGTCACCGAGGTTCTGGCGGTGGAGCCGGATGACGAGCTCCGGCGGCTGGCCAGAGACAAGGCAGCGTCCGCCCCGGTTCCGGTCCGCGTGGTGGCCGGAGCCGCGGAGGAGATTCCCGCGCCTGACGCCAGTGCCGACGCCGTGGTCACAAGTCTTGTGCTCTGCAGTGTCGAGGACCAGGCCGCCGTCCTGGCAGAAGTCCGCCGCGTTTTGCGGCCGGGCGGGACGCTGGCCTACTACGAGCATGTCCGCTCGGGCCATAGAGTCCTGGCTGCGCTGCAGGACCTGGTGACTCCTGCCTGGCAGCGCCTCGCCGGCGGCTGTCATCCGAACCGGGACACGCTGCAGGCCATCTCCGCCGCCGGGTTCACTATCCGGGAGAACCGGCGGTTCGGTTTCTCTGCGGGCCCGCTGGTACCCCCGGTGGACCACATCCTCGGCCACGCCACGTCGCCCGGACGCGGGCAAGGCCCCGGAAACTGAMTGHELDRPTGPDHLQHPRFAKNYARVVEVMNERGATEHRRAALSGLSGKVIEIGAGEGSAFALYPGSVTEVLAVEPDDELRRLARDKAASAPVPVRVVAGAAEEIPAPDASADAVVTSLVLCSVEDQAAVLAEVRRVLRPGGTLAYYEHVRSGHRVLAALQDLVTPAWQRLAGGCHPNRDTLQAISAAGFTIRENRRFGFSAGPLVPPVDHILGHATSPGRGQGPGNNANANANANA
D1-29_005431467gabD_1COG1012Succinate-semialdehyde dehydrogenase [NADP(+)]ATGCATACCACTGCCAGGCAAACGGATACCGCATCACCGGCCACGCCGATACCAGCCACGCCAACACCGGCCACGCATGTCACCGAGGACGGTTCCGGGATCACCATCAGGGATCCCCGCAGCGGCGAGACCCTGTGGACAGTTCCGGAGGCTGAACCCCATACAGTAACCGAAGCCGTGGATGTGGCGCGCAAGACCGCCGCTGATTGGGCGTTTACTGCGCCGGCGGAGAGGGGTTCGCGCCTGCGGGCGGCGGCGCGGGCACTTGAGGACGCCGCCCATGAGCTGGCCGGGCTCAACAGCAGTGAGACCGGGCGCCCCCTGGAGGAAGCCCTTGGTGGGATCGCCGCCGGGGTTTCCACCCTGGAGCAGTACGCCGAGCTTGGCCCCCTGCATCGGGGGCACAGCCTCAGGGGCAACAGCCTGGCTTCCGACTATACGGTGGCAGAGCCGCGTGGCGTGGCCGTACTGCTGACGCCCTGGAACGATCCCGTGGCGGTTGCCTGCGGGCTGATCGGTGCCGCCTTGGCCACCGGCAACACGGTAATACACAAACCCAGCGAACGTTGTCCCCGGTTAGGCGAAGCCCTCGGAGAGGTGCTGGCTCCGGCCTTCCCGCCGGGAGTGTTGCTGACCGTCTCGGGAGGTGCCCGGGTGGGTGAACTTCTGACAAGCACGGGAGTGGACGTCATCGCGCACGTGGGCTCCAGCGCTTCCGGCGCCCGGATCGCTGCCGCTGCGGTGGCCACAGGCGCGCACTTCATCCGGGAAAACGGCGGAAATGATCCGCTCCTGGTAGACCGCGACGTGGACCCGGTGTGGGCTGCCGAGCAGGCGGCGATCGGTGCCTTCGCCAACAGCGGCCAGATCTGCACTTCAGTGGAGCGGATCTATGTCCACGAGGCTATTGCCGATGAATTCTGCGCGGCGCTGGAAGCCGAAGCCGCCCTCCGCAACGGCAACGGCACGGTGGCACCACTGGTAGACACACGGCTGCGGGACGCCGTCCACGCCCAGGTTGCCGAAGCCGTGGAGCTTGGTGCACACGCAGTGGAAGGAGGCGCCGTTCCCGACGGGCCGGGCGCGCACTATCCGGCCACGGTCCTGCTTGGCTGCACCGGGAGCATGCAGGTGATGACCGAGGAAACCTTCGGGCCGGTGGCGCCCGTGCAGGTGGTATCCACTTTCGCGGAGGGGCTGAGGGAGGCCTGCAACGGCCGGTTCGGGCTGGCCGCCACGGTACTCACGGGCAGCATCGCGCACGCCCAGCAGGCCATTGCCTCCCTTCCCGTGGGAACCGTCAAGGTCAATGAGGTGTTCGGCGGCGCGCCGGGAGGTTCGGCTCAACCCCGCGGGGACAGCGGCGAAGGCTTCGGCTACGGACCCGAGCTCCTGGATGAGTTCACCCGGGTGAAGGTGGTGCACGTCGCTGCTCCGCCCGTGACGTTGAATCAGGGCACACCATGAMHTTARQTDTASPATPIPATPTPATHVTEDGSGITIRDPRSGETLWTVPEAEPHTVTEAVDVARKTAADWAFTAPAERGSRLRAAARALEDAAHELAGLNSSETGRPLEEALGGIAAGVSTLEQYAELGPLHRGHSLRGNSLASDYTVAEPRGVAVLLTPWNDPVAVACGLIGAALATGNTVIHKPSERCPRLGEALGEVLAPAFPPGVLLTVSGGARVGELLTSTGVDVIAHVGSSASGARIAAAAVATGAHFIRENGGNDPLLVDRDVDPVWAAEQAAIGAFANSGQICTSVERIYVHEAIADEFCAALEAEAALRNGNGTVAPLVDTRLRDAVHAQVAEAVELGAHAVEGGAVPDGPGAHYPATVLLGCTGSMQVMTEETFGPVAPVQVVSTFAEGLREACNGRFGLAATVLTGSIAHAQQAIASLPVGTVKVNEVFGGAPGGSAQPRGDSGEGFGYGPELLDEFTRVKVVHVAAPPVTLNQGTPPGPT0007165_2834DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-29_005441710hldE_2Bifunctional protein HldEATGAGCCCGCTGGACCGCCCCGATGCCGGGGACCTTGCGGGCTCACGGGACCTTGCCGGCGAGCGCGCCCTCTCCGGGTCGCTGCCGAGGCGCCTTGCTGCCGAACACCCAGCCGTGATGGTCATCGGGGACGTGATGCTGGACGGCTGGTGGAGCGGCAGCATTGAGCGGCTGTGCCGGGAGGCACCTGCACCCGTAGTTGACATCACCACCCGGGACTTTGCTCCTGGCGGGGCTGCGAACACGGCCATGAACCTGGCTGCATTGGGTGCCCGGGTGTCTGTAGCAGGCATCATCGGTACCGACGACGCCGGCGTGGTCCTGCGGAAAAAGCTGGTGGAGGCGGGCATCGACGTCCGGCACCTGCACAGCCACCCAGCCATGGTTACCACCACCAAGATCCGGATCAGCAGCGGCGGGCAGGTGCTGCTGCGCATCGATGACTGCGCCAAGGCTGTCCCGGAGGAAGCGCTGGCAGCGCTGGCCGCTTCGGTCAGAGCCGCCGTCGGCCATCAGGACGCCGTGATGGTGTGCGATTACGGAACCGGAGTCCTGGCAGACCCGGTCCGCGGCAGCCTGCTTCAAGCTCTGGGCCGTCCTGGATTGGATGACCCGGAATTGAATGGGCCCGAATTGCACGGGCAGGAACTGCAGGGGCCTGAATTGCACGGGCAAGAGTTGCGCGGGCCGGAAGTGCCCGCGCCCGAATTCCACAGCCCGGAACCGGAGCTGGCGGCAGAGGCAGGAGCAGCGGGCAGGCTCGGCATCCGCCCGCTGACAGTCATCGATGCGCACGACCCGCGGCTGTGGGCGGAGCTGCGTCCTGACCTGGCCACCCCCAACGCGCAGGAAGCCGCGCGGATGCTCGGCTTGCGCCTGCCGGAGGGTACCGAGCGGATCGACGTTGTGACCGCGAACCGGGAGGCGCTGCTGGAGGCCAGCGGAGCCCGCTCCCTGGTGGTCACGCTGGACCGGGACGGGACAGTGCTGTTCTCGGCGGGCGGCGGCACGCACCGGACCTGGGCACGGCCGGCCGCGGAGAAGCAGGCCTCCGGCGCCGGGGACACGTTTGTGGCGGCACTGACGCTGGGCCGGTCGGCGGGACTTCCGCTGACGGCGAGCCTGGACCTGGCCCAGGCCGCCGCGGATGTGGTGGTGCACCAGCCGGGGACTTCCGTCTGCAGCACCGCCCAGCTGAGCCGGCACCTGGAAAGTTTCGCGGATACCGCGCTTAGCGTGGAGGAACTGGACCGCCAGCTGGAGGTGCACCGCTCCCAGGGCCAGCACATCGTGCTGACCAACGGCTGCTTCGACGTGCTGCACAGCGGCCACACCAGGTACCTCAACCAGGCCAAGCAGCTGGGTGATGTGCTGGTGGTGGCGCTGAACAGCGACGAATCCGTGCGTAGGCTCAAGGGCCCTGGACGGCCCATCAACACGGTGGCGGACCGGGCTGCCGTGATCGCCGCCCTCAGCTGTGTGGACTACGTAACCGTCTTTGATACGCCTACGGCCAGCCCGCTGATCTCCCAACTCCGGCCCGAGGTGTATGCCAAGGGCGGGGACTACACACCGGAGATGCTGGCGGAGACGGCGGCTGTGGAGGAGTATGGCGGACGGGTGGCCATCCTGGACTATGTTGCCGAACGCTCCACCACGGCCGTGGTCCAGCGGATCCGGGAGGGCAAAGGGGCAGGGCAGACCAACTAGMSPLDRPDAGDLAGSRDLAGERALSGSLPRRLAAEHPAVMVIGDVMLDGWWSGSIERLCREAPAPVVDITTRDFAPGGAANTAMNLAALGARVSVAGIIGTDDAGVVLRKKLVEAGIDVRHLHSHPAMVTTTKIRISSGGQVLLRIDDCAKAVPEEALAALAASVRAAVGHQDAVMVCDYGTGVLADPVRGSLLQALGRPGLDDPELNGPELHGQELQGPELHGQELRGPEVPAPEFHSPEPELAAEAGAAGRLGIRPLTVIDAHDPRLWAELRPDLATPNAQEAARMLGLRLPEGTERIDVVTANREALLEASGARSLVVTLDRDGTVLFSAGGGTHRTWARPAAEKQASGAGDTFVAALTLGRSAGLPLTASLDLAQAAADVVVHQPGTSVCSTAQLSRHLESFADTALSVEELDRQLEVHRSQGQHIVLTNGCFDVLHSGHTRYLNQAKQLGDVLVVALNSDESVRRLKGPGRPINTVADRAAVIAALSCVDYVTVFDTPTASPLISQLRPEVYAKGGDYTPEMLAETAAVEEYGGRVAILDYVAERSTTAVVQRIREGKGAGQTNPGPT0023040_60DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023040-gmhC|hldE|waaE|rfaE-K03272NANA
D1-29_00545912speEPolyamine aminopropyltransferaseATGGCAAAACGCGGCAGGTCAGGAGGCCGCGCCAGTGGAGGTTCGACGGCGGGTGTTGTGGAAGTGCCCAAGGGCACCCGGCCCGACGGCCCCGTTGAGGGCGTCTATTACATCGATACCGGCGACTGCCAGCTGATTGCTGACCAAGACAACTCCAACGGCTGGCTCCTGAAGATCAACGGCGTGATGAGCTCCCACATAGACCTCGCCGACCCGCTCTTTTTGGACTTCGAATACATGCGCTGGATGGCGGCGCTCATTGAATCACGGTGGCCGCCCAAACCAAAGACAGGCCAGCCCGCGCGGCTGCGCGGCCTGCATCTTGGCGGCGGCGCCTGCTCCCTGGCACGCTACTTTCACGCCGCCTACCCCGATGCCCGCCAGGTGGTGGTGGAACTCGACGGAAAACTCGCCGAGTACGTCCGCGGCTGGTTTGACCTTCCCAAGGCGCCCTTGCTCCGCCTGCGGGTGGGAGAGGCCCGCGAAGTCACCGAAACCCTGACCCCGGACACCCGCGACTTCATCATCAGGGATGTCTTTGCCGGTTCGCTGACGCCGCGGGCACTGACAACGGCAGAGTTCAATGAACACATCAGGCGCGTCCTGGCTCCGGGCGGCATGTATGTGGTCAACTCCGGCGACGCCCCCAACCTGCTGAATGCCCGGGAGGACGCCGCCACCATCGCTGCCTCGTTTGAGCACACGATGATCATCGCCGATCCTGCCATGCTGAAGGGCCGCCGCTACGGGAATATGGTGATGGCCGGCAGCGATGTCCCGTTGGACGGCGACCCTCAGCTGGCCCGCAGGCTTTTGGGCGGGGCGGTTCCGGCGCATATCTGGGACGACGCGCAGGTCCGCGCGTTCGCCGCAGGATCACCGGTCCGCCACGACCCTCCCGCATCCGCCTAGMAKRGRSGGRASGGSTAGVVEVPKGTRPDGPVEGVYYIDTGDCQLIADQDNSNGWLLKINGVMSSHIDLADPLFLDFEYMRWMAALIESRWPPKPKTGQPARLRGLHLGGGACSLARYFHAAYPDARQVVVELDGKLAEYVRGWFDLPKAPLLRLRVGEAREVTETLTPDTRDFIIRDVFAGSLTPRALTTAEFNEHIRRVLAPGGMYVVNSGDAPNLLNAREDAATIAASFEHTMIIADPAMLKGRRYGNMVMAGSDVPLDGDPQLARRLLGGAVPAHIWDDAQVRAFAAGSPVRHDPPASANANANANANA
D1-29_00546915argP_1HTH-type transcriptional regulator ArgPATGTGCACAATTGCAGATATGAATGCCAACCCGGATGACCTGCTGGTACTGCTGGCGGTTTCCCGCTCAGCCAAATTTACGACGGCGGCCCAGGCGTTGGGCCTGAACCACACCACTGTGTCACGCCGGATAGCGGCCCTGGAAAAGGCACTGGGCGGCCGGGTCCTGGCCCGGGCTGCGGGCGGCTGGGAACTGACGGACCTTGGCACCCAGGCGGTGCGGGTAGCCGAACAGGTGGAGGCTGCGGTGAGTGCGCTGGGACCGGCAGGCAGGACACCGGATCCCATTACCGGCGTCGTCCGCATGACGGCGACAGACGGCTTCAGCGCCTACATCGCCGCTCCCGCCGTAGCCGGGCTCCGCCGCGAACATCCAGGGCTCAGTGTGGAAGTGGTGACCATGACCCGGCGGGCGCTGCAGCAGCGTTCCGGCCTGGACATCGAGGTGGTGGTGGGCGAACCGCAGGTCCACCGGGCCGAGGCCGTCAGGCTGGGCGAATACATGCTGGGCATGTACGCCTCGCGCTCGTACCTGGAGGAGAACGGAACCCCGGCCAGTGTGGCTGACCTGTCCGAGCACCCCTTGGTGTACTTTGTGGATTCCATGCTTCAGGTTGATGACCTGGACGCCCCGCGGCGCCTTGTCCCGGCCATGCGTGACGGGCTCACGTCCACTAACGTCTTTGTGCACGTGGAGGCCACCCGGGCCGGCGCCGGCATTGGGTTCCTGCCCTGTTTCATGGGTGACCTCCACGCGGATCTGGTGCGGCTGCTCCCGGCGGAGTTCGCCGAGCTGCTCCCCTATTGGATGGTGCTGCGGCCCGACTCGATGCGCCGCCCCGCGGTTGCCGCCGTGGTGCAGGCGCTGCGGGACCAGACGGCGGCGCACCGGGAGAAACTGTTGGGCCGCGGCTAGMCTIADMNANPDDLLVLLAVSRSAKFTTAAQALGLNHTTVSRRIAALEKALGGRVLARAAGGWELTDLGTQAVRVAEQVEAAVSALGPAGRTPDPITGVVRMTATDGFSAYIAAPAVAGLRREHPGLSVEVVTMTRRALQQRSGLDIEVVVGEPQVHRAEAVRLGEYMLGMYASRSYLEENGTPASVADLSEHPLVYFVDSMLQVDDLDAPRRLVPAMRDGLTSTNVFVHVEATRAGAGIGFLPCFMGDLHADLVRLLPAEFAELLPYWMVLRPDSMRRPAVAAVVQALRDQTAAHREKLLGRGNANANANANA
D1-29_005471383abaF_1Fosfomycin resistance protein AbaFATGAGCGTAGAGCAGCGCTCGGCAGACAATGCCGCCGGATCCGCATCCAAGGGATCCGGACTCAAGAAGATTGTGGCCGCCTCCATGGTGGGCACAGTAGTGGAATGGTATGAATTCTTCCTCTACGCCACCGCCGCAACCCTGGTGTTCGGCAAGTACTTCTTCCCCGCCACCGGCAACGAACTCGATGGCATCATCCAGGCCTTCCTCACCTACGCGGTGGGCTTTGTGGCACGTCCGCTGGGCGGAATCGTGTTCGGCCAGATCGGTGACAAGCTGGGCCGCAAGCCCACGCTGCAGCTGACCATCATCATCGTGGGTGTTGCCACGTTCCTGATGGGCTGCCTCCCGGGCTTCGCCGAGATCGGTTACCTGGCGCCGGCACTGCTGGTGGCGCTGCGCTTCATCCAGGGCTTCGCGCTGGGCGGCGAATGGGGCGGTGCCGTGCTGCTGGTTGCCGAGCACAGCCCCAACAAGTCACGCGGCTTCTGGTCCAGCTGGCCGCAGGCCGCGGTGCCGGTGGGCAACCTGCTGGCCACGCTGGTGCTGTTCATCATGTCCTCCGCCCTCAGCCCCGAAGCTTTCCTGGGTTGGGGCTGGCGGGTGGCGTTCTGGCTCTCCGCCGTGATCGTGTTCGTGGGCTACTACATCCGCACCCACGTCACCGAGGCCCCCATCTTCCTGGAAGCCAAGGCCCTGGTGGAGAAGGAGCAGGCAGTCAGCTACGGCGTCTTCGAAGTGGTCCGCAAGTATCCCAAGGGCATCCTCCAGGCCATGGGGCTGCGCTTCGCGGAGAACATCATGTACTACCTTGTGGTCAGCTTCGCCATCGTTTACCTCAAGAGCGTCCACAAGTACGACACTTCCTCCCTCCTGCTGGCCCTGCTGATCGCGCACGTCATCCACTTCCTGGTCATCCCGCAGGTGGGACGGCTGGTGGACTCGCTGGGACGCAAGCCTGTGTACCTGTTTGGCGCCATCGCCGGTGCTGCCTGGCCGTTCTTCGCCTTCCCGATGTTCGATACGCGCAATGCTGTGGTGATTGTCCTGGCCGTGACCATCGGACTGTGCCTGCACGCATTTATGTACGCCGGCCAGCCCGCCATCATGGCCGAGCTCTTTCCCACCAGGATGCGGTACTCGGGTGTGTCGCTGGGTTCGCAGGTGACGTCCATCTTCGCCGGTTCCCTCGCCCCCCTGCTGGCCACCCAGTGGCTCAAGGACACAGGATCCTGGGTCCCCACGGCCATCTACCTGGTGGTGGCCTGTGCCATCACCTCCGTGGCCGTGCTGAGCCTGAAGGAAACCAAGGGAATTGCCCTCGAGGAAGTGGACAAGGCCGACGCCGCCCGCGAAGGACTGCTCACGACGGGCACACGCTGAMSVEQRSADNAAGSASKGSGLKKIVAASMVGTVVEWYEFFLYATAATLVFGKYFFPATGNELDGIIQAFLTYAVGFVARPLGGIVFGQIGDKLGRKPTLQLTIIIVGVATFLMGCLPGFAEIGYLAPALLVALRFIQGFALGGEWGGAVLLVAEHSPNKSRGFWSSWPQAAVPVGNLLATLVLFIMSSALSPEAFLGWGWRVAFWLSAVIVFVGYYIRTHVTEAPIFLEAKALVEKEQAVSYGVFEVVRKYPKGILQAMGLRFAENIMYYLVVSFAIVYLKSVHKYDTSSLLLALLIAHVIHFLVIPQVGRLVDSLGRKPVYLFGAIAGAAWPFFAFPMFDTRNAVVIVLAVTIGLCLHAFMYAGQPAIMAELFPTRMRYSGVSLGSQVTSIFAGSLAPLLATQWLKDTGSWVPTAIYLVVACAITSVAVLSLKETKGIALEEVDKADAAREGLLTTGTRPGPT0002956_62DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_SHIKIMATE_TRANSPORT,PGPT0002956-shiA-K08172NANA
D1-29_00548768bdhAD-beta-hydroxybutyrate dehydrogenaseATGGGAACCGTAACTGCTATGGAAAACACTCTTAACGGCCGCAAGGCCCTGGTGACAGGCGGCGCCAGCGGAATCGGCGCCGCGTGCGTCCGGCAGCTGGCTGCCCGCGGGGCGAAGGTGGTGGTGGCCGACGTCGACAGCGACGGTGCTGCCGCCCTCGCCGATGACGTGGGCGGCACTGCCTGGGCCGTTGACCTGCTGGACGTGGATACGCTCGCCACCCTGAACCTGGACTGCGACATCCTGGTGAACAACGCCGGGATCCAGCGGATCAGCCCCATCGAGGACTTTGATCCGTCGGAGTTCCGCCGCATCATCGCGCTGATGCTGGAGGCGCCCTTCCTGCTGATCCGGGCCGCCCTGCCGCACATGTACGCCAACGGCTTCGGACGCATCATCAACGTCTCCTCCGTGCACGGCATCCGGGCCTCACCGTTCAAAAGCGCTTACGTTTCCGCCAAGCACGGCCTGGAAGGTCTTAGCAAAGTGACAGCGCTCGAAGGCGGGGAACGCGGAGTCACCTCCAACTGCATCAGCCCCGGATATGTCCGCACTCCGCTGGTGGAAAAGCAGATCGCGGACCAGGCCCTGGTGCACGGCATCCCGGAGTCCGAGGTCCTCGCCCAGGTGATGCTCACCGAATCCGCCATAAAGCGGCTGGTGGAACCGGCGGAGGTGGCATCACTGGTGTCCTGGCTGGCCTCGGATCAGGCCGGCATGGTCACCGGCGCCACCTACACCATGGACGGCGGCTGGTCCTCCCGGTAGMGTVTAMENTLNGRKALVTGGASGIGAACVRQLAARGAKVVVADVDSDGAAALADDVGGTAWAVDLLDVDTLATLNLDCDILVNNAGIQRISPIEDFDPSEFRRIIALMLEAPFLLIRAALPHMYANGFGRIINVSSVHGIRASPFKSAYVSAKHGLEGLSKVTALEGGERGVTSNCISPGYVRTPLVEKQIADQALVHGIPESEVLAQVMLTESAIKRLVEPAEVASLVSWLASDQAGMVTGATYTMDGGWSSRPGPT0008310_2710DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019NANA
D1-29_00549261hypothetical proteinATGGCTAAAGCTGCCCGGAATCCTGTCCGTGAACAATCCAAGGCAAAGCCGGCGGGCCTGGTGGAAAAGGCCTGGAACCGCATGCGAGCGGTTCCAAGCCCTTCCTGTCCGTACAAGATCGGTGAGTCGGTTGTTGGGGATGATCCTTTCAACGGCCGTCATGAAGGAGTGGTGGTTTCGCTGAACGGAACCACGGCAGGTGTGAAAACCGGCCACGGCATCATCTTCTACGACCACCGGCAGCTGAAGCGCCTGGACTAGMAKAARNPVREQSKAKPAGLVEKAWNRMRAVPSPSCPYKIGESVVGDDPFNGRHEGVVVSLNGTTAGVKTGHGIIFYDHRQLKRLDNANANANANA
D1-29_00550432hypothetical proteinATGGAAAATCGACGTGTCTGTCTTGTCATCGAGGATGACGAGGACATCCGGGGACTGATCACGCTGGTCCTGACCCGGGCAGGGTTCGAGGTGCTGGCGGTGGGCACGGGGGCTGAGGCCATCGCTGCCGCAGCTGATCCATCCCTTTCTCTAATCACGCTGGACCTCGGCCTGCCTGATGCTGACGGCCACGTGGTGGCGCAAGCCCTTCGCGAACTGACCAACGCTCCGCTGTTGTTCCTCACGGCCAGATCCGACTCTGACGATCTGCTGGCAGGAATGGCCTCCGGCGCCGCAGCCTACTTGACCAAGCCCTTCCGGCCGAAGGAGCTGGCAGAAGTCGCAGAGCTGCTGTGCGCCGCCCCTGCCCCAGCCCAGGACAAGCCGAACCGTCCTGCTCCAGCCAATCTCACGTCAGCGTCAGGTCTTTAAMENRRVCLVIEDDEDIRGLITLVLTRAGFEVLAVGTGAEAIAAAADPSLSLITLDLGLPDADGHVVAQALRELTNAPLLFLTARSDSDDLLAGMASGAAAYLTKPFRPKELAEVAELLCAAPAPAQDKPNRPAPANLTSASGLPGPT0015055_73DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015055-creB-K07663NANA
D1-29_00551429hypothetical proteinATGTCCTATGAGGAAAAGAGTGCCTGGATCATGGGTGTGGTGGCGGTGGGCTCCTATGGCATTTACCTCGCCATCATCCTGGGCCAGGCCGGAAGCTCGCCCCTCACCGACGTCGCGTATGTCTCGCCTCTGTTGTGGACGGTCGGTGCCTCCATCCTGACGTCCATTGCGCTGCATGCCGTAATGGGCATTTCGGCGCCCAAGGAGGCGGGCAGGAAGGACCAGCGTGACAGGGAAATCTATCGGTTCGGCGAGTACATCGGGCAGTCGTTTGTGGTGATCGGCGGAGTGGCGGCACTGCTGATGGCCATGGCTGAACTGGACCACTTTTGGATTGCCAACGTGATCTACCTGACCTTCGTCCTCTCGGCCATCCTGGGCGCCGTGGCGAAGATTGTCGCCTATCGGAGGGGATTCCAGCCGTGGTGAMSYEEKSAWIMGVVAVGSYGIYLAIILGQAGSSPLTDVAYVSPLLWTVGASILTSIALHAVMGISAPKEAGRKDQRDREIYRFGEYIGQSFVVIGGVAALLMAMAELDHFWIANVIYLTFVLSAILGAVAKIVAYRRGFQPWNANANANANA
D1-29_00552234hypothetical proteinGTGGTGAAGCCTACGCGGGTGACCAACTCCATCCGCCGGCTGCGGTTTGAGCGCGGCGAAATGACGCAGGCCGAGCTTGCCGAGCGGGTGGGCGTGACCCGGCAGACCGTCATCGCCATCGAGCAGGGCCGGTATTCACCGTCCCTGGAGATGGCCTTCCAGATAGCCCATGTCCTGAGCGTTCCGCTCGAGGACGTGTTCCAGTACCCGCACCACGAAGGAGACGCATCATGAMVKPTRVTNSIRRLRFERGEMTQAELAERVGVTRQTVIAIEQGRYSPSLEMAFQIAHVLSVPLEDVFQYPHHEGDASPGPT0008430_6404DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-29_00553972pikAIINarbonolide/10-deoxymethynolide synthase PikA2, modules 3 and 4ATGAAAGCTATCGTGCAGGACATCTACGGATCCGCGGACGTGCTCACGCTTCGCGATATCGACAAACCAACGGCAGGCGACGGTGAGGTCCTCATCCAGGTCCGTGCCGCCGGCGTCGACCAGGGAGTGTGGCATCTCATGACCGGACTGCCGTACCTGGTCAGGGTGTTTGGCTACGGCCTCAAAAAGCCCAAGGTCCCTGTCCGGGGACGGGATGTGGCAGGTGTGGTGGAGGCCGTGGGAAACGGCGTAACCCGATTCCAGCCAGGTGATGAGGTATTTGGCACCTGCGAGGGATCATTCGCCGAATACGCCTGCGCCAAGGAGGGCAGGCTGGCACTCAAGCCGGCCAATCTCACGTTCGAACAGGCTGCAGCCGTGCCCATTTCCGGGGGCACTGCACTGCAGGCGGTACGCGATGCGGGGCAGGTGACGGCTGGCCAAAGCGTGCTGGTGATCGGCGCAGCAGGCGGGGTGGGCTCGTTCGCGGTCCAGCTGGCCAAGGCCTTCGGTGCCGAGGTCACCGGCGTCTGCAGCGGTGCAAAGGCGGACCTGGTCCGGTCTTTGGGCGCCGACCAGGTGATCGACTACACGCGGGACGATTTCGCGGCCACAGGGCAGCGCTATGACGTCATCCTCGACACCGCCGGTAACAGGCCCCTGTCAGTGCTGCGGCAGGCACTCGCCCCTGAGGGGACCCTGGTGATCGTGGGCGGGGAGGGCGGCGGCCAACTCACCGGAGGGTTTGAGCGGTCCCTTGGCGCTGCGCTGCTCACGCCGTTCGTGGGCCAGAAGCTCAAGGGGCTCGTGGCAGGGGAGAATCACCAGGACCTTGAGTACCTGGCGTCACTGATCGAGACCGGCAGGGTGAAGCCGGCCATCGATACTGTCTACCCTTTGGCTGAAGCAGCGGCCGCCATTGACCATGTCCACGAAGGCAGGGCCAGGGGCAAGGTTGTGGTCAGCGTCTGAMKAIVQDIYGSADVLTLRDIDKPTAGDGEVLIQVRAAGVDQGVWHLMTGLPYLVRVFGYGLKKPKVPVRGRDVAGVVEAVGNGVTRFQPGDEVFGTCEGSFAEYACAKEGRLALKPANLTFEQAAAVPISGGTALQAVRDAGQVTAGQSVLVIGAAGGVGSFAVQLAKAFGAEVTGVCSGAKADLVRSLGADQVIDYTRDDFAATGQRYDVILDTAGNRPLSVLRQALAPEGTLVIVGGEGGGQLTGGFERSLGAALLTPFVGQKLKGLVAGENHQDLEYLASLIETGRVKPAIDTVYPLAEAAAAIDHVHEGRARGKVVVSVNANANANANA
D1-29_00554678hypothetical proteinATGAGCCTCGGGAACGGCGCCATCAAGCTCCAGTCAAAAGTGACCGCAGACCTCATTGCCGAGTATCTGCGTGAGCGGATCCTGGACGGGACCTTCGCACCCTCAACGAACATCAACGAAGTGCAACTGGCCGCCCATTTGAACATCAGCCGGGGGCCACTGCGCGAAGCCGTCCAACGGCTGGTGCAGGAGGGACTCCTTGTGAGCACCCGCAACTACGGCACCTCCGTTGTTGACCTGGGCCCTGAGGACATTGAGGACATCTATAAGGCGCGGGTCGCGATTGAGCTGGAGGCAGGCCGGCTGGTCCTCCAGCAGGACACTGCCGCCCTGGCCGCCGAGCTGGACGTCATCCTGGAACGCATGCACGATGCCTTGGACGGGGACAGGTGGCAGGACGTGGCCACCGCGGACCTGACATTCCACCAAACCATCGTGCGGGCCACCCTCAGCCCCCGGCTGGACAGGATGTTTTCCACCCTGGCGGCTGAGACCCTGCTGTGCGTTCGCCAGTTCCGCTACATCCACGAACGCAAGGAAATCGTCCTGGAACAGCACCGCCGTCTCCAGGAACTTATCCAGGCGCGGGATGAAACCGGCTATCTCACCGAAATCGAATGGCACCTCAAAAAGTCGGTGCCCATGTTGGAAGCAGCCCGAAAACAATCGAGCTCCTGAMSLGNGAIKLQSKVTADLIAEYLRERILDGTFAPSTNINEVQLAAHLNISRGPLREAVQRLVQEGLLVSTRNYGTSVVDLGPEDIEDIYKARVAIELEAGRLVLQQDTAALAAELDVILERMHDALDGDRWQDVATADLTFHQTIVRATLSPRLDRMFSTLAAETLLCVRQFRYIHERKEIVLEQHRRLQELIQARDETGYLTEIEWHLKKSVPMLEAARKQSSSNANANANANA
D1-29_005551488gabD_2COG1012Succinate-semialdehyde dehydrogenase [NADP(+)] GabDATGAGCCTCATTTCACCAGTTACTACGCCGTTGATCGCGGCGGACCCGGACAGCCTCCGCCACGCGGATGCAGTCATCAAGTCCATCAACCTTCCCGGCCAGGGAATCGCAGTCCAGGACCCCGCCACGGCTGAGACCATCGCCCACGTACCCGACGCTGACGTTGAGGCTGCACTGGAAGCTGTGGGAAAGGCCGATGAAGCCGGAGCTGCCTGGGCCAAGACCAGCCTTCGTCAGCGCGCGGATGTGCTGCACGCCTGGTACGACAAGCTCGTTGCCCACACCGAGGATCTCGCGCACCTGATTTCGCGCGAAATGGGCAAGCCGCTCGCCGAGGCCCGCGGCGAGGTCAAGTATGGTACCGACTTCGTCCGCTGGTACGCCGAAGAGGCTGTGCGCCCTGCCGGAAACTTCCGGGACACCCCCGACGGCGGGGCGAGCCTTCTGACCCGCCGTTCGCCCGTTGGCCTGGCGGTGCTGATCACGCCCTGGAACTTCCCCCTGGCCATGGCAACGCGAAAGATCGCTCCGGCGCTGGCAGCGGGATGCCCGGTCGTGATCAAGCCTGCCACCCTGACGCCCCTGACAACGTACTTCGCTGTCCAGCTCGCCATCGAGGCAGGGGTGCCTGAAGACCTGATCCAGGTCATCACCACCTCAAAGTCGGGGGCCTTTAGCGAAGCTGTCCTGCTTGACCCCAGGGTCCGGAAGGTTTCCTTCACCGGGTCAACGCCGGTGGGCCGTCAGCTCCTGCAGCTTGCGTCCCGGAATGTACTGCGCAGCTCGATGGAGCTTGGCGGCAACGCCCCGCTCCTGGTCTTCAACGACGCCGATCTGCAGCGGGCCGTGGAGGGAACGTTTGCCGCGAAGCTGCGCAACGGCGGACAGTCCTGCATCGGGGCCAACCGGATTTACGTCCAGGACGGGATCGCCGATGACTTCGTGGCCGCACTCACCGAACGCTTCGCCCAGATTCAGGTGGGAAGCGGCCTCGGAAAGCAGACCGGGCTCGGTGCCCTGATTGATGACCGTGCAGTGGCTCAAATGCAGGCGTACACCGAGAACGCCGTGAGCCTGGGTGCCACCCTGCTGACCGGCGGCCACGGCTACGACTCGGCCGGCAACTTCTTCGCCCCCACCGTCCTGGACCGGGTCACGGAAGATTCCGACGTTGCCCAGTCCGAGATCTTCGGCCCCATCGCCGCAATCCAGCGCTTCAGCACCGAAGCCGAAGCCATCAGCCGGGCCAACGCCACGGAATTCGGCCTCGCCGGCTATGTCTTCACCGAGAACCTGGACCGCGCGCTTAATGTCGCCGATCGTCTGGAGACCGGCATCGTGGGAATCAACCAGGGTGTACCGTCCAACGCCGGCGCCCCCTTCGGAGGCATCAAGCAGTCAGGCCTCGGGCGCGAAGGAAGCGCCGAAGGCCTGGAAGAGTACGAAAACATCCGCTTCTACAACGTCGCCCGCCGCGACACCGCCTAAMSLISPVTTPLIAADPDSLRHADAVIKSINLPGQGIAVQDPATAETIAHVPDADVEAALEAVGKADEAGAAWAKTSLRQRADVLHAWYDKLVAHTEDLAHLISREMGKPLAEARGEVKYGTDFVRWYAEEAVRPAGNFRDTPDGGASLLTRRSPVGLAVLITPWNFPLAMATRKIAPALAAGCPVVIKPATLTPLTTYFAVQLAIEAGVPEDLIQVITTSKSGAFSEAVLLDPRVRKVSFTGSTPVGRQLLQLASRNVLRSSMELGGNAPLLVFNDADLQRAVEGTFAAKLRNGGQSCIGANRIYVQDGIADDFVAALTERFAQIQVGSGLGKQTGLGALIDDRAVAQMQAYTENAVSLGATLLTGGHGYDSAGNFFAPTVLDRVTEDSDVAQSEIFGPIAAIQRFSTEAEAISRANATEFGLAGYVFTENLDRALNVADRLETGIVGINQGVPSNAGAPFGGIKQSGLGREGSAEGLEEYENIRFYNVARRDTAPGPT0001580_673DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_00556504hypothetical proteinATGAGCATCGTTTCTGCAGACTTGGCCGACGGGGAGACCGGGCGGCGGCTGGGTGGGCTGCTGCACTCCTATCACCGGCAAACGGAGCTGGAGAAGGCGGCCAACGGGGTTGGATCGCTGACCGGGGACGGCCTCCTGCCGGCGAAGTACCAGCAGGAGATCGACTGCCCTGCGGTGGCGTTCGCGTCGTCACGGGTCTTCATGGCGCAGCAGGATGGCCGGCCCGTTGGCATGGTGGTCCTCACTCCTGCGGGCGGTTCGGCCAGCGAGGTGAAGAGGCTTTGGGTGGAACCGTCGCTCCGCGGTGCCGGAGTGGGATCGGCGCTGCTGAACGAGGCCATCCTCGCCGCCCAGGCAGATAACGCTGAAACGGTGCGCCTTACGGTCTGGGAATGGCGCGAACCCGCCGTGCGGTCCTACCTCCGCCTCGGATTTCGGCTGGTTCCGTCCTGGGAGGAGCGTGCGGCCCTGCAATGCATGGAGCTGCGGCTGCCGGCCCGGTGAMSIVSADLADGETGRRLGGLLHSYHRQTELEKAANGVGSLTGDGLLPAKYQQEIDCPAVAFASSRVFMAQQDGRPVGMVVLTPAGGSASEVKRLWVEPSLRGAGVGSALLNEAILAAQADNAETVRLTVWEWREPAVRSYLRLGFRLVPSWEERAALQCMELRLPARNANANANANA
D1-29_00557939hypothetical proteinATGCAACCGGAATGGAGCCCCCGCATCAGCTGGACGGATCTGCCTGTCCAGGTGCGGGCAGGAATTGAAGAAATTCTTGGCTCACCGGTGGTGGAGGCATCGGGCCAGCAGGGAGGGTTTTCTCCGGGCACCGCGGACAGGGTGCGCACAGCGGCAGGCGGCAGGGCGTTCGTGAAAGCAGTCGGGCGCCAGCTGAATGAGCAGTCGCCGGGGATCCATCGGAAGGAAGCGGCGGTTGCCGCCGCGCTGCCGGACGGCCTGCCTGCTCCGTCACTGATCGGAACCTTTGACGACGGCGACTGGGTTGCACTTGTCCTGAGCGATGTTGAAGGCCGGCACCCGCAGGTCCCGTGGCGCACCCAGGACGTGCTCCTTGTCCTTGATGCCCTGGCGGACATTGCCCGGGCACCGGTCCCGCCTGAACTGGAACACCTGCCCAGGCTTGAGGAAGGACTGGATGAAGCGTTCCGTGGCTGGAGCCGGCTCAGATCGGACATCCCGGAGCACTTCGATCCCTGGATCCTCGGGAACTTGGACGTCCTGGAGGAGCTGGCGGAGGCCGGGCTGACGGACCTGGCCGGCGGCTCCCTGGTGCACACTGACGTCCGCGCCGACAATGTCCTTATCACCGCGAAGGGCGCTGTCCTGGTGGACTGGCCCTGGGCATCCATCGGCTCGGCCTGGATGGACGCGCTGACGGTCCTGATCAACGTGCGCGTGTTCGATTCCGCTTACGACGCCGATTCTGTGCTCCGGTCCCACGATGTTTTTGCCTCCAGCGACGCTGACAGCATTAACAGGGTCCTCGCCGGCTTGGCTGCATACTTGGTTGACGCCGCCCGGCAACCTCCGCCGCCGGGGCTCCCCACTCTCCGCGCTTTTCAGCAGCGGCAAGGCGAAGCGGTCATCCGGTGGCTCCGGGAGCGGCTGCAGCTGTAGMQPEWSPRISWTDLPVQVRAGIEEILGSPVVEASGQQGGFSPGTADRVRTAAGGRAFVKAVGRQLNEQSPGIHRKEAAVAAALPDGLPAPSLIGTFDDGDWVALVLSDVEGRHPQVPWRTQDVLLVLDALADIARAPVPPELEHLPRLEEGLDEAFRGWSRLRSDIPEHFDPWILGNLDVLEELAEAGLTDLAGGSLVHTDVRADNVLITAKGAVLVDWPWASIGSAWMDALTVLINVRVFDSAYDADSVLRSHDVFASSDADSINRVLAGLAAYLVDAARQPPPPGLPTLRAFQQRQGEAVIRWLRERLQLNANANANANA
D1-29_00558825iclR_1COG1414Transcriptional repressor IclRGTGGCAGGCAGGGAGCCGGTGAACGGCGCAGCGCGGACCGCAACAAAGGTGGCCTCGAAAGTCCCTGCCGCCGAGAATACCTTGCGCATCCTCAAACTGTTGGCCTCCCGCAGGGGCCCCATGGCGGCGTCGAGCATTGCCACCGCCCTGGGACTGCCGCGTTCCAGCGTCTACCACCTCCTGGGTGTGATGGAGGTGAACGGGTTTGTGCTGCATCTGCACGAGGAACAGCGCTACGGATTGGGGATCAGTGCCTTCGAACTGAGCTCCGCCTACTCCCGTCAGGAGCCTTTGTCCCGCCTGGGCCGGCCGTTGTTGGCGTCCCTGGTGGACGTGATCGGCGAGAGCGCGCACTTGGCTGTGCTGCATGGCCGGGACGTGCTCTACATCGTGGAGGAGCGGGCCAAGAACCGCCCCTCCCTTGTTACCGACGTTGGCGTCCGGCTGCCCAGCCACCTGACTGCCAGCGGCCGGGCCATCCTCGCCGCGCTGCCCAAGTCGCAGGTGCGGGCGCTGTACCCGAACGCCGCCGCGTTCACCTCGCGGCATGAGGTGGAGGGCGCCATCATGAAGTACTCGGCGCTGTCCTCGCACCTGGACCAGGTCCGGCAGCGCGGGTATGCAACAGAGCACGGTGAAGTGACGCCCGGTTTTGGCTCCATTGCCGCCGCCGTGACGGACCACGTGGGATGGCCGACGGCGGCAGTCGCGGTGACGTTCCTGGAGGACAAACTGCCCGCTGACCAGTGGCCGGCGCTCGCAGCCAGGGTGCAGAAGGTGGCCGATGAGCTCTCGGTCCGGATTCACGGCCGCCCCGCCAAATAGMAGREPVNGAARTATKVASKVPAAENTLRILKLLASRRGPMAASSIATALGLPRSSVYHLLGVMEVNGFVLHLHEEQRYGLGISAFELSSAYSRQEPLSRLGRPLLASLVDVIGESAHLAVLHGRDVLYIVEERAKNRPSLVTDVGVRLPSHLTASGRAILAALPKSQVRALYPNAAAFTSRHEVEGAIMKYSALSSHLDQVRQRGYATEHGEVTPGFGSIAAAVTDHVGWPTAAVAVTFLEDKLPADQWPALAARVQKVADELSVRIHGRPAKNANANANANA
D1-29_005591698hutUCOG2987Urocanate hydrataseATGGCACCCGCCGATTTCACCACCGGTGCCCGCCCGGTCAAAGCAGCCCGCGGCACCGAGCTCACCGCCAAGAGCTGGCAGACGGAAGCCCCGCTGCGCATGCTGATGAACAACCTGGACCCCGAGGTCGCCGAACGCCCGGACGACCTGGTTGTCTATGGCGGCACCGGCCGGGCTGTGCGTTCCTGGGCCGCGTTTGATGCGATCACCCGAACCCTGGAAACCATGGAAAAGGACGAGACCCTCCTGGTCCAGTCCGGCAAGCCGGTGGGAGTGTTCCGCACCAACGAGTGGGCACCCCGGGTGCTGCTGGCCAACTCCAACCTGGTGGGTGACTGGGCCAACTGGCCCGAGTTCCGCCGCCTGGAGGCCGAGGGCCTGATGATGTACGGCCAGATGACCGCCGGCTCCTGGATCTACATCGGCACCCAGGGCATCCTGCAGGGCACCTTCGAGACCTTCGCCGCGATCGCCCGCAAGCTCACCGGGGACGAGAACGGCACCCTGGCCGGAACCCTGACCCTCACCGGCGGCTGCGGCGGCATGGGCGGCGCCCAGCCCCTCGCCGTGACACTGAACGACGGCGCCTGCCTGATCGTCGACGTCGACGAAACCCGCCTCCGCCGCCGCGCCGGCAAGCGCTACCTCGACGAGGTGGAAACAGACCTCGACGCCGCCATCGCCAAGGTGCAGAAAGCCAAGGAAGAGCGCCGCGGCTGGTCAGTGGGCTACGTGGGCAACGCCGCCGAAGTGTTCCCGGAGATCCTGCGCCGCCATAACGCCGGTGAGCTCACTGTGGACATCGTCACGGATCAGACCTCTGCCCACGATCCGCTGAGCTACCTCCCCGAGGGCATTTCGGTGGAGGACTGGCACCGGGAAGCCGAGGCTGATCCCGAAGGCTTCACCAAAAAGGCCCAGGCATCCATGGCCCGGCACGTCCAGGCCATGGTGGAATTCCAGGACGCCGGCGCCGAGGTCTTCGACTACGGCAACTCCATCCGGGACGAAGCCCGGAAGGGCGGCTACAACCGCGCGTTCGAATTCCCCGGCTTTGTTCCCGCCTACATCCGCCCGCTGTTCTGCGAGGGCCTGGGCCCGTTCCGCTGGGTGGCACTGTCCGGGGACCCCGAAGATATCCGGGTCACCGATGAGGCCATCAAGGAGCTGTTCCCGGAGAACAAGCACCTACACCGCTGGATTGACGCCGCCCAGGAACGGGTGGAGTTCGAAGGACTGCCGGCCCGGATCTGCTGGCTGGGCTACGGCGACCGCGCCAAGGCCGGCCTGCTCTTCAACCAGCTCGTCAAAGAGGGCAAGGTCAAGGCCCCCATCGTGATCGGCCGCGACCACCTGGACTCCGGCTCCGTGGCCTCCCCTTACCGGGAAACCGAAGCCATGGCAGACGGCTCCGATGCCATCGCCGACTGGCCCATGCTCAACGCCCTGCTCAACACCGCCTCCGGAGCCACGTGGGTCTCCCTCCACCATGGCGGCGGCGTCGGCATCGGCCGTTCCATCCACGCCGGCCAGGTCTCAGTGGCCGACGGCACCGACCTCGCCGCCCAAAAACTCGAACGCCTGCTCACCAACGATCCCGGCATGGGCGTCATCCGGCACGCCGACGCCGGCTACGACCGCGCGCTCGATGTCGCCAAGGAACGCGGCGTTCGCATCCCGATGAAGGAACAGAAATAAMAPADFTTGARPVKAARGTELTAKSWQTEAPLRMLMNNLDPEVAERPDDLVVYGGTGRAVRSWAAFDAITRTLETMEKDETLLVQSGKPVGVFRTNEWAPRVLLANSNLVGDWANWPEFRRLEAEGLMMYGQMTAGSWIYIGTQGILQGTFETFAAIARKLTGDENGTLAGTLTLTGGCGGMGGAQPLAVTLNDGACLIVDVDETRLRRRAGKRYLDEVETDLDAAIAKVQKAKEERRGWSVGYVGNAAEVFPEILRRHNAGELTVDIVTDQTSAHDPLSYLPEGISVEDWHREAEADPEGFTKKAQASMARHVQAMVEFQDAGAEVFDYGNSIRDEARKGGYNRAFEFPGFVPAYIRPLFCEGLGPFRWVALSGDPEDIRVTDEAIKELFPENKHLHRWIDAAQERVEFEGLPARICWLGYGDRAKAGLLFNQLVKEGKVKAPIVIGRDHLDSGSVASPYRETEAMADGSDAIADWPMLNALLNTASGATWVSLHHGGGVGIGRSIHAGQVSVADGTDLAAQKLERLLTNDPGMGVIRHADAGYDRALDVAKERGVRIPMKEQKPGPT0020250_956DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020250-hutU-K01712NANA
D1-29_005601593hutHCOG2986Histidine ammonia-lyaseATGAGCACCATTACCCACGAACCGCTCACCGTCACCCTCGGCTCCAGCGGCGTCACACCCGAGGACGTTGTCGCCGTCGCACGCCACAACGCCAAGGTGGCCATCTCCCAGGAAGCCCTGAACACGGTGGCCAAAGTCCGCGCGCACATCGATGGCCTTGCCTCCAGCGACGTCCCGGCGTATGGCATCTCCACCGGCTTCGGTGCGTTGGCGAACAGGCACATCCCCAATGAGCTCCGCACACAGCTGCAGAAGTCGCTCATCCGCAGCCACGCAGCAGGCATGGGCCCGGCTGTGGAGCGCGAGGTGGTGCGTGGCATCATGTTCCTCCGCGCCAAGACGCTGGGTTCCGGCCGCACGGGAGTCCGTCCCGTGGTCCTGCAGACCATGGTTGACGTCCTCAATGCCGGCATCACGCCCGTGGTACGCGAGTTTGGCTCGCTGGGCTGCTCCGGTGACCTCGCCCCGCTGTCCCACTGCGCCCTGGTGCTGATGGGGGAGGGCGAAGCTGAAGGGCCCGACGGCGTGACCTACGGTGGCCGGGGCGAGGCGCCGGTGGCAGAGCTGCTCGCCGCACACGGCATTGAGCCCGTCACCCTCGCGGAAAAGGAAGGCCTGGCGCTGGTCAACGGCACCGAAGGCATGCTTGGCATGCTCCTGATGGCCATCGCAGACATCCGGCAGTTGCTGACGACGGCGGACATCACGGCCGCCATGAGTGTTGAGGCGCTGCTCGGCACGGATCAGGTATTCCTGCCCGAGCTCCATGCCGCACTCCGTCCGCATCCGGGCCAGGCAGCCAGCGCGGACAACATGCTGCGGGTGCTCTCGAATTCGCCCATTGTGGCCTCGCACCGGGTGGGCGACTCGAAAGTCCAGGACGCCTACTCGCTGCGCTGCGCACCGCAGGTGGCCGGCGCCGTCCGGGATACCGTTGACCATGCCGCGCTGGTGGCCTCCCGGGAACTCGCGGCGGCAATCGACAACCCTGTGGTCCTGCCGGACGGCCGGGTGAGCTCCAACGGCAACTTCCACGGCGCCCCCGTTGGCTACGTACTGGACTTCCTGGCCATTGCGGTGGCGGACCTGAGCTCCATTGCCGAGCGCAGGACGGACCGGATGCTGGACCCGGCACGTTCGCACGGCCTCCCCGCCTTCCTGGCTGCGGATCCCGGCGTGGATTCGGGAATGATGATCGCGCAGTACACCCAGGCAGGCTTGGTTTCGGACAACAAGAGGCTGGCTGTTCCGGCCTCCGTTGACTCCATCCCCAGCTCCGCGATGCAGGAGGACCACGTGTCCATGGGCTGGCACGCTGCCCGGAAGCTGCGCAAGGCCGTGGAGAACCTGCGCCGTGTCCTGGCCATCGAACTGGTCACCTCCGCCCGTGCCATCGACATCCGCACCCAGCTCTCCGGCGGGGAGCTCACCCCCGGACCAGCCGGCGCCGCAGTTATCGCCACGCTCCGTTCCGTGGTGGAAGGCCCCGGAACCGACCGGTACCTGTCCCCGGAACTGGAAACGGCTGACCGCTTGGTGGCGTCGGGGGAGGTGCGGGCGGCTGCCGAATCCGCCGTCGGCGTCCTCTCCTAAMSTITHEPLTVTLGSSGVTPEDVVAVARHNAKVAISQEALNTVAKVRAHIDGLASSDVPAYGISTGFGALANRHIPNELRTQLQKSLIRSHAAGMGPAVEREVVRGIMFLRAKTLGSGRTGVRPVVLQTMVDVLNAGITPVVREFGSLGCSGDLAPLSHCALVLMGEGEAEGPDGVTYGGRGEAPVAELLAAHGIEPVTLAEKEGLALVNGTEGMLGMLLMAIADIRQLLTTADITAAMSVEALLGTDQVFLPELHAALRPHPGQAASADNMLRVLSNSPIVASHRVGDSKVQDAYSLRCAPQVAGAVRDTVDHAALVASRELAAAIDNPVVLPDGRVSSNGNFHGAPVGYVLDFLAIAVADLSSIAERRTDRMLDPARSHGLPAFLAADPGVDSGMMIAQYTQAGLVSDNKRLAVPASVDSIPSSAMQEDHVSMGWHAARKLRKAVENLRRVLAIELVTSARAIDIRTQLSGGELTPGPAGAAVIATLRSVVEGPGTDRYLSPELETADRLVASGEVRAAAESAVGVLSPGPT0020230_614DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745NANA
D1-29_00561237hypothetical proteinATGAAAGCACGTGGGGCAGTCTTATCGAGGCGAAACGCCCATCCGGCCACCATTTCAGACTGGGGAACCCTCAGCCCTGGAGATCGGGTGGAGATCATCAAGCATGCGCATGTCATCGCAACGGGTGAAGTGGAAGAGGTGTCAAAGAGCGGGAACGTGCTGTGGCTTGTGCCGGCCAGCCCGTCCGAAAAGCAGCTCTTCCTGAAATCCGATGGCGTGCAGGTGCGCAGGAGCTAAMKARGAVLSRRNAHPATISDWGTLSPGDRVEIIKHAHVIATGEVEEVSKSGNVLWLVPASPSEKQLFLKSDGVQVRRSNANANANANA
D1-29_00562261hypothetical proteinATGAACACCGCCCTATTGGAATGTCCCCCGGCTGCTTCGCCGGCCGCGGAGGCACGGGAACTTCGCTCCATCGACCTGCGCTTTTCCAGCGCGGACGAGATGCACGAAGGCCTGGACAACGCTGTTGCCACACTGATCGAGACAGCCGCCAAGGACGCCGCGTGTGGCATCCTTGTCACCCGGCTGCACCCGGGGCCCTACATTGTGGCACTGGATGACTCAGTGCCTTTCGGCGAGACGTACGAGAACTTCGCCGCCTAAMNTALLECPPAASPAAEARELRSIDLRFSSADEMHEGLDNAVATLIETAAKDAACGILVTRLHPGPYIVALDDSVPFGETYENFAANANANANANA
D1-29_00563975araQ_4COG0395L-arabinose transport system permease protein AraQATGACCCTCACTTCAATCCCCTCCAAGACCGCCGGGCCTGAAGAAGACACCCGAAAGAGGGACCCCAAGGCCAGCCGGCAGCAACGGCGGCTGCAAAGAAAAGCAGAAGAGGCCGGTGACTCCACCCAACTGTCGGGCAAGCGTGGAGGTTCCCGTCTGATTGTCATCATAGGACTGGTGCTTTTTGCCCTGTATTCCATAGGTCCGGCATGGTGGCTGATCGTTTCGTCAACCAAGACCAAAGAAGATCTGTACACCACAGACGCCATGTGGTTTGCGAACTTCAGCCTGTTCGACAATTTGTCCTCCCTCTTCACCTACCAGGACGGCATCTTCGGAGTCTGGATGTGGAACTCCACGCTCTATGCCTTTGCCGGTTCCATTGGCCATACCCTGGTCTCGCTGGCTGCGGGGTATGGGCTGGCCATGTACTCCTTCCGGGGCAAGGGCACCACCATGGGCTTTATTATCGGCTCATTCCTCATTCCCGGCGCCCTGCTCACCATTCCGTCCTATCTGCTATTCGTGCAGATCGGGTTCTACGACACCATCTGGGCCATGATCATCCCCGCGTTCTTCAGCCCCTTCGCGGTGTATTTGGCTAAGATTTACACCGAAGGGGCAGTCCCGAGCGAGCTCCTTGAAGCGGCCCGGATTGACGGGGCTGGCGAATACCGGATCTTCTTCCAGATTGCGTTCCGCCTCCTGACCACAGCCGGCGCCACCATCTTCCTCCTGCACTTCGTGGGCTCCTGGAACGCCTTCTTCGGCCCGATGGTGTTCCTGCGCGGAGCGGACAAATGGCCTGTGATGCTGGGCCTGTATTCCTGGCTGCAGCGTGGCACGGATTCCACGGTAGACCTCACCGGAATGGTCATTACCGGCTCGTTGGTGGCCACGATTCCCATGGTGATCCTGATGGTGGCAATGCAGCGCTACTGGCGCTCCGGCGTCGCCATGGGCAGCCTCAAATAAMTLTSIPSKTAGPEEDTRKRDPKASRQQRRLQRKAEEAGDSTQLSGKRGGSRLIVIIGLVLFALYSIGPAWWLIVSSTKTKEDLYTTDAMWFANFSLFDNLSSLFTYQDGIFGVWMWNSTLYAFAGSIGHTLVSLAAGYGLAMYSFRGKGTTMGFIIGSFLIPGALLTIPSYLLFVQIGFYDTIWAMIIPAFFSPFAVYLAKIYTEGAVPSELLEAARIDGAGEYRIFFQIAFRLLTTAGATIFLLHFVGSWNAFFGPMVFLRGADKWPVMLGLYSWLQRGTDSTVDLTGMVITGSLVATIPMVILMVAMQRYWRSGVAMGSLKPGPT0016540_1282DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00564987ngcF_1COG1175Diacetylchitobiose uptake system permease protein NgcFATGTCTTCCACAACTCAAGTTCGTGAAAGCCACGGTGGCCGCAATCAGGGGCCGGCCAGGCAGTCACGGGCGAAAGGGAGCCCAGCGTCTCCCCTCTTGTCCTGGCGGAGTATCCAGCGCATCAAGGGTGCCTCGTTCACCTGGCCGTTCGTGATTGGCTTCGCCATTTTTACCCTTCTTCCCGTGGTGGTCGGACTGGCCCAGAGCCTGTACGCCTCAAAGACCACTGGGCTTGGATTCGGCGCCCCAACCATCAGTTTCGCCGGCTTTGACAACTTTGCCCGTGGACTCGCGGACGTGGTTTTTTGGGAATCGATGCTCCGGGTCAGTATTTATGCAGTGGTGATCGTCCCGGTGACGCAAGTGGTCAGCCTGACGCTTGCCCTGCTCATTGATGCCGTACAACGGCGGGTGGCCAACAGGTTCCGGCTGATCCTGCTGGTGCCCTACATGATTCCGGGGATTGTGGCCACGATGATCTGGATCTACCTCTACAGCCCCATCGTGGGCCCTTTGACGCCCGTGCTGAAATTCTTCGGCCTGGATGTTGACTTCTTCAGCGGCGAGATGATTTGGGTTTCCATTGGCAACCTCTCAGTGTGGGGCGCCATCGGCTTCAACATGCTGATCCTCTACGGGGCACTGCAGGCGGTCCCCCGGGAAATATTTGATGCCGCCAGGGTTGACGGGGCTTCCGAGTTCCGCATTGCCATGTCCATCAAGGTGCCCTATGTTCAGACGTCCCTGGTGTTGACCGGGTTGCTCGCGATCATCGGGACGCTGCAGATCTTCGCTGAGCCAACGCTCTTCAGGTCCATCTCTCCGGAAACCATCACGAAGGACTTCACACCCAGCATGGTGATCTTCAACCAGGCTTTCCAGGTTGGAAACCTCAACTACGCGGCCGCCCAGTCCATCATCCTCGCCGCCGTGGTGGGGGTAGCTTCAGTGCTCATCTACCGTCTGACGAAAAAGGTCGACTCATGAMSSTTQVRESHGGRNQGPARQSRAKGSPASPLLSWRSIQRIKGASFTWPFVIGFAIFTLLPVVVGLAQSLYASKTTGLGFGAPTISFAGFDNFARGLADVVFWESMLRVSIYAVVIVPVTQVVSLTLALLIDAVQRRVANRFRLILLVPYMIPGIVATMIWIYLYSPIVGPLTPVLKFFGLDVDFFSGEMIWVSIGNLSVWGAIGFNMLILYGALQAVPREIFDAARVDGASEFRIAMSIKVPYVQTSLVLTGLLAIIGTLQIFAEPTLFRSISPETITKDFTPSMVIFNQAFQVGNLNYAAAQSIILAAVVGVASVLIYRLTKKVDSPGPT0016535_3847DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_005651344hypothetical proteinATGAGCCTGAAAAACACCAAGCGGAAAGCGCTGTCGATCTCGGCCGCGGTTGCAGCAATCGGCCTCCTTGCCGGCTGCGGCAGCGCCTCGACGCCCCCCGCAGCTCCCGCAGCGGACGCCGGCCCGGTCACCATCGACGTTTGGGGGTGGGACGCCGAATCCACGCCGAACGTCGTCGCAGCGTTCAATGCCAGCCAGGACAAGATCACGGTCAACTACGTTCTCCAGGCCAGCCTCAAGGCCACCCAGACGAACTTCAGGAACGTCATGGAGTCGAAGAAGGACATCCCCTGCTACTTGCCGGGCATCGGCCCCATGGCCACCACGCTTGTCAACGGCTGGGCCCAGGACATCACCCAGTATGTAGAGCCGATCAAGGACACTTACAGCAAGGGCGCACAGTCGGCGGCACAGGTTGAGGGTAAGTTCTTCGGCTTCCCGGCGGGACCCTCGGCAACGTTCATGATGGCCAACATGGCCGTTTATGAGAAGTACGGACTGGCCGTTCCGAAAACGTGGGAAGAGTTCGTCACCACCGGCAAGGAGCTCAAGAAGCACGGTGTGACGGTCATGAACCTTGCCGGCGAAGACCCCTCAACCCTTCTGCAAATGTCACAGCAGGCCGGCGCCAGCTGGTTTGAGATCGATGGCGACAAGTGGAAAGTCAACCTCCAGGACGACGCCACCATGAAGGCTGTGGACATCATCCAGCAGATGGTGGACAACGACCTGGTAGCCCACCAGACCTACCAGGACAGGCCCGCCCTGTACTCCTACTTTGACAGTGGCCAGCTTGCCACGGTTCCTCTGGCATGGTGGTCGATGGCCGGATACGAGACCAACTTCAAAGCATCCCTCGGACAGTGGAAGGCAGTTGACGTGCCGCAGTTCAAGGATGCCAAAGAATTTGTCAGCTCCGGCATGGCAGATCCCGGCTTCGTTCCGGTGGGCTGCGAAAACCCCGCCGCTGCCATCGAATACGTCCATTGGGCCGCCAGCTCCAAGGAAGCCATAGAAGCAGGCAGAAACAAGAAAACCGGGTCAATCGGAGTTCCCGCCCACCTTGCTGATGTGTCTGAATACACTGACGCAGTGGTCCCCCAGAAGATATTCGGGGCCCAGCCGGCTGCCGAGATAGGCAAGGTCATTACCAAGGCCCAGGGCGCCGCCGTGGGCAAGTTCGAGCGCGGTCCCAACTACGATGCCTGGTTCCCCGAGATGCAGGACCAGTGGGGCAAGGCCATGGCCAAGCAGATCACCCTGAAGGAGGCCATGTCCAACGTCCAGACCTTCATCACCAAGGACCTTGACAGCAAGGGCATCAAGTACGAGGTCAGCAAGTAGMSLKNTKRKALSISAAVAAIGLLAGCGSASTPPAAPAADAGPVTIDVWGWDAESTPNVVAAFNASQDKITVNYVLQASLKATQTNFRNVMESKKDIPCYLPGIGPMATTLVNGWAQDITQYVEPIKDTYSKGAQSAAQVEGKFFGFPAGPSATFMMANMAVYEKYGLAVPKTWEEFVTTGKELKKHGVTVMNLAGEDPSTLLQMSQQAGASWFEIDGDKWKVNLQDDATMKAVDIIQQMVDNDLVAHQTYQDRPALYSYFDSGQLATVPLAWWSMAGYETNFKASLGQWKAVDVPQFKDAKEFVSSGMADPGFVPVGCENPAAAIEYVHWAASSKEAIEAGRNKKTGSIGVPAHLADVSEYTDAVVPQKIFGAQPAAEIGKVITKAQGAAVGKFERGPNYDAWFPEMQDQWGKAMAKQITLKEAMSNVQTFITKDLDSKGIKYEVSKPGPT0016545_4721DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00566393Universal stress proteinATGACGATCGTGGTGGGATACGTCCCCACACCAGAGGGCGAAGCGGCGCTGACCCAGGCCATTCTGGAGGCCCGGAAGAACAGCACTACCCTGCTGGTCATCAATTCGTCCAAGGGCGATGCCCTGGTGGACAACAGATACGCCCAGGAGCCGGAGATCCAGAGCATCGAGGACCGTTTGGCAACTCAGGGAATAGACCACGTGATCAAGCAGCCGGTCCGTGGGCATGACGCGGCAGCGGAGGTCCTCGATGCCGCGGAGGAGCACAATGCCGATCTGATTGTGATCGGCCTGCGCCGCCGCACTCCGGTGGGCAAGCTGATCATGGGCAGCACGTCGCAGCGCATTTTGCTGGAGGCGGACTGCCCGGTATTGGCGGTCAAGGCCAGTTAGMTIVVGYVPTPEGEAALTQAILEARKNSTTLLVINSSKGDALVDNRYAQEPEIQSIEDRLATQGIDHVIKQPVRGHDAAAEVLDAAEEHNADLIVIGLRRRTPVGKLIMGSTSQRILLEADCPVLAVKASNANANANANA
D1-29_005671620hypothetical proteinATGGACGTCTTCTCCTCCCTGATGGACGGCTTTGCCACCGCCCTGACCCCCATGAATTTCCTCTACGCGGTCATCGGTGTGCTGCTGGGCACCGCCGTCGGCGTCCTCCCGGGCCTGGGTCCGGCCATGACGGTGGCCTTGCTGCTCCCGGTCACGTATGCCTTGGAACCCACCAGTGCATTTATTATGTTCGCCGGCATTTACTACGGCGGCATGTACGGCGGCTCCACCACCTCCATCCTGCTCAACACGCCGGGCGAATCGTCGTCAGTGGTGACGGCCATCGAAGGCAACAGGATGGCCAAAGCCGGCAGGGCCGCCCAGGCCCTGGCGACGGCGGCCATCGGCTCATTCGTTGCCGGCACCATCGGCACCGCGCTGCTCGCCGTCTTCGCACCGGTAGTAGTGGAGTTCGCCGTCAGCCTCGGGGCGCCCAGCTACTTTGCCATCATGGTGCTTGCCCTCCTGGCGGTGACCGCCGTCCTTGGCTCGTCCCGCCTGAGGGGCTTCGCCTCCCTGGGCCTGGGCCTTGCGATCGGACTGGTCGGCATGGATTCAGTGACCGGCCAGCGCCGCCTCACCTTTGGCCAGCCGCTGCTGGCTGACGGTCTGGACATCGTGGTGGTGGCAGTGGCCATCTTCGCGGTGGGCGAGGCACTCTGGGTTGCCGCGCACCTGCGCCGCAACCCGCTGCAGATCATCCCGGTGGGGCGTCCATGGATGGGCAAATCCGACTGGAAGCGGTCGTGGAAGCCCTGGCTCCGTGGAACGGCCTACGGCTTCCCCTTCGGTGCACTCCCGGCCGGCGGCGCCGAAATCCCCACGTTCCTGTCCTATGTCACGGAGAAACGACTCAGCAAGCACCCCGAAGAGTTCGGCAAGGGCGCCATCGAGGGCGTGGCCGGGCCTGAGGCAGCCAACAACGCTGCGGCCGCCGGCACCATGACACCGCTGCTGGCCCTGGGCCTGCCCACCAACGCCACGGCTGCCGTGATGCTGGCAGCCTTTACGTCCTACGGTATCCAGCCAGGACCCCTGCTGTTCTCCAACGAGGGACCCCTGGTCTGGGCACTGATCGCGAGCCTCTTCATCGGCAACTTCCTGCTGCTGCTGATCAACCTTCCGCTCGCGCCGCTGTGGGCCAAGCTCCTGCAGCTTCCCCGGCCTTACCTCTACGCGGGCATCCTGTTCTTCGCCACGCTGGGCGCCTATTCGGTGAACTTGCAGGCGTTCGACCTGGTGCTCCTGCTGGCCCTCGGTGCGTTGGGATTCATGATGCGCCGCTTCGGCCTCCCCGTGCTGCCGCTTATCCTCGGCGTGATCCTCGGGCCGCGGATCGAAGGTCAGCTGCGCAAGAGCCTGCAGCTCAGCGCCGGTGACCCCGCCGGCCTGTGGAGCGAGCCGATCGCCGTGGGCACCTACATCCTCATCGCTATCATCCTGGCTTGGCCGCTGCTATTCAAGCTGTACCGCCGCAACCATCCGACCCCCGCCCTCCTGTCCGCAAACGCCACCCGCGGAAACGAGCCGACGGACGTGGCCAGCGGCCGCCGGGCGGACGGACACCATGGCGACGGCGGCGACGGTGGCGATGGCGGTGACGGGGGCGACGGCAGCTAGMDVFSSLMDGFATALTPMNFLYAVIGVLLGTAVGVLPGLGPAMTVALLLPVTYALEPTSAFIMFAGIYYGGMYGGSTTSILLNTPGESSSVVTAIEGNRMAKAGRAAQALATAAIGSFVAGTIGTALLAVFAPVVVEFAVSLGAPSYFAIMVLALLAVTAVLGSSRLRGFASLGLGLAIGLVGMDSVTGQRRLTFGQPLLADGLDIVVVAVAIFAVGEALWVAAHLRRNPLQIIPVGRPWMGKSDWKRSWKPWLRGTAYGFPFGALPAGGAEIPTFLSYVTEKRLSKHPEEFGKGAIEGVAGPEAANNAAAAGTMTPLLALGLPTNATAAVMLAAFTSYGIQPGPLLFSNEGPLVWALIASLFIGNFLLLLINLPLAPLWAKLLQLPRPYLYAGILFFATLGAYSVNLQAFDLVLLLALGALGFMMRRFGLPVLPLILGVILGPRIEGQLRKSLQLSAGDPAGLWSEPIAVGTYILIAIILAWPLLFKLYRRNHPTPALLSANATRGNEPTDVASGRRADGHHGDGGDGGDGGDGGDGSPGPT0017350_170DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-29_00568513hypothetical proteinGTGAGCTCCTCACCAACTTTGGCCTCCAGGCTCAAAGGCCGCGCCGAGCTGGGGGTAGCCCTCCTGCTCGGCGTGGTGGGCGTCCTGGTCCTTCTGGACGCCATCGCCCTGGTAACTCCTTACTCGCAGTCAGATCCGGTGGGACCCAAGACCCTGCCGTACATCGTGTCCGCCATGCTGATCGTCTGTGCAGTGCTGTTGGCCATCAACGTGCTGCGCGGCGGACAGGGCGAAGCAGAAGGCGGCGAGGATGTTGACCTCACGCACCCGGCCGACTGGAAGACCGTCCTGCCGCTGGTGGGAGCGTTCTTGGCCAACATCCTGCTGATCGACCTGGCAGGCTGGGTGATCTCCGGGACCATCCTGTTCTGGGGCAGCGCCTGGGCACTGGGCAGCCGGCACTATGTGCGTGACGGCATCATTTCCCTGGCCCTCTCCGTGATCACCTTTTACGGCTTCTACCTGGGCCTCGGTATTCCGCTGCCCGCAGGCCTCCTGAAAGGGATTCTCTGAMSSSPTLASRLKGRAELGVALLLGVVGVLVLLDAIALVTPYSQSDPVGPKTLPYIVSAMLIVCAVLLAINVLRGGQGEAEGGEDVDLTHPADWKTVLPLVGAFLANILLIDLAGWVISGTILFWGSAWALGSRHYVRDGIISLALSVITFYGFYLGLGIPLPAGLLKGILPGPT0017355_642DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794NANA
D1-29_005691008hypothetical proteinATGCGCCAGATCCGCGCAATGCGAGTCGCCGCCGTCGCCGCCGGCATCGCCCTGATGGCCACCGGCTGCGGTGCCACCGGGGGCTCCACCAACACCGCCAGCCCCGGCGCTGCTGCCGGCCCGGTAACCAACCTGCAGATCATGGTCCCCAACACCCCGGGCGGCGGCTATGACACCACCGCCCGCGTCGCAGCGAAGGTGCTCGACGACGAGAAGGTGGCCAACAACACCGAGGTCTTCAACCTTGCCGGTGCAGGCGGAACGGTTGGCCTGGCCCGCATCGTCAACGAGAAGGGCAACGGCGACCTCACCATGCTCATGGGCCTGGGCGTGGTGGGTGCGAGCTACACCAACAAGTCCGAGTCCAAGCTGACTGAAACCACCCCGCTGGCCAAGCTCATTGAAGAGCCGGGCGCCATCATGGTCAACAAGGATTCGCAGTACAAAACCATCGATGACCTGGTCAAAGCCTGGAAGGCAGACCCCGGCTCCATCAGCGTCGGCGGCGGCTCCTCCCCCGGCGGCCCGGACCACCTGCTGCCCATGCAGCTCGCCGGAGCCGTGGGGATCGACGCCACAAAGGTGAACTTCGTCTCCTATGACGGCGGTGGAGACCTCCTCCCGGCCATCCTGGGCAATAAGGTTGGCTTTGCAGCCTCCGGCGCCGGGGAGTACCTCCAGCAGATTCAGTCCGGTGAGGTCCGTGTGTTGGCAACCAGCGGCTCCAAGCGGCTGGAGGGCGTGGACGCACCCACGCTGAAGGAATCAGGCATCGACCTGGAATTCACCAACTGGCGTGGCATCGTGGCTCCTCCGGGAATCAGCGACGACGACAAGACCAAGCTGATCGCAGCCCTGGAAAAGATGCACGGCACCGATGGCTGGAAGGAAGCACTCAAGACCCATGGCTGGACTGATGCCTTCATCACCGGCGATGAGTTCAAGACCTTCCTGAGCGACCAGGACAAGCGGGTGGCGGACGTCCTCACGAAGCTTGGCCTGGCGTGAMRQIRAMRVAAVAAGIALMATGCGATGGSTNTASPGAAAGPVTNLQIMVPNTPGGGYDTTARVAAKVLDDEKVANNTEVFNLAGAGGTVGLARIVNEKGNGDLTMLMGLGVVGASYTNKSESKLTETTPLAKLIEEPGAIMVNKDSQYKTIDDLVKAWKADPGSISVGGGSSPGGPDHLLPMQLAGAVGIDATKVNFVSYDGGGDLLPAILGNKVGFAASGAGEYLQQIQSGEVRVLATSGSKRLEGVDAPTLKESGIDLEFTNWRGIVAPPGISDDDKTKLIAALEKMHGTDGWKEALKTHGWTDAFITGDEFKTFLSDQDKRVADVLTKLGLAPGPT0017360_607DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795NANA
D1-29_005701596dcuS_1COG3290Sensor histidine kinase DcuSGTGACTCGACGAAGAGGAATGTCCCTCGCTGGGCAGTACCTGGTTCTGCAGTTGCTGATAGTCCTGGCCGTGCTGGTGGCCGTTGTTGCCATCTCGCTGGCACAGTCAGCCGCCGCCTTTGAACGGATCGAAGGCCGCCGGGCGCTGTCCGCGGCCGAATCCCTGGGCAGCAACCCCACAGTCCGCGCCTTGCTGCCGTCAGCCGAGCCGCGGGCCGGCGCGGCCCTTCCTGCGGTGGTGGAGACCGTCACCACCGTATCCGGGGCGCCACAGGTGGTGCTGGCCAAAATGGACCGGACGGTGGTTGCTTCCTCTGACCCGGGCCTGCTGGGCCAGCCGCTGGAACTTGGCGGAAGCCGTGTGCTGGAAGGCAGGGCCTGGACGGGTGTGGTGGGCGGATCCGGCACTGCTTTCCTCTCAGCCCACGTCCCTGTCCTTGATGACGCCGGAGAAATGATCGGCATCGCCTCCGTCAGCCGGAACTACCCCTCCATGTTGGATCGGCTGGGCGACGCCGTCCCCAACCTGCTCACGTACCTGGGGGTTGCCAGCGTGCTGGGCGTGGCCGGCTCACTCCTGTTGGCCCGCAGGGTGAAACGGCAGACCCTGGGTATGGAGCCGAGCGAAATCACGGGGCTGGTGGAGAACCGCGAGGCCATGCTCCATGGGCTGAAGGAAGGGGTGGTGGCGCTTGATCCGCATGAACGTATCACCGTGGCCAACGACAGCGCCCGTGAACTGCTGGGCCTGCCGGCAGACTGTGTAGGCAAAAAGGTCGGCGCGCTCGCGGTGGACCCGGCGCTGAAGGAAGTCCTCACACGTGACCAGCCGGGCCCTGACCGGCTGGTCCTGGTGGGTGACCGGATGGTGGTGCTGAACCGCGTCCCCATCCGTTCCCACGGCCGGGACATCGGCTCTGTGACAACGTTGCGCGACCGCACCGAGCTCTCTTCCCTGGAGCGCGAACTTGGTGCCACCCGCACCGCCACTGACACATTGCGCGCCCAGGCCCACGAGTTCGCCAACCAGCTGCACGTGATCTCCGGGCTGATCCAGATCGGTGAGTACGATTCGGTGGTCCAGTTTGTTAACGGCGCCACGGTGGACAGGACCCGGCTGAACGACGAAGTGACCAGCCGCATCGAGGACCCGGCCCTGGCGGCCCTCCTGATTGCGAAATCCAGCCTCGCCACGGAACGCGGCGTGGCCCTCCAGCTGGATCCTGCCTCAGCGCTGGGACGCATTGACGATGATCTCTCCCGGGACCTGGCCACCGTCGTCGGGAACCTGGTGGATAACGCGTTCGACGCCGTCGCAGGGCTCGCCGGGGCATCGGTCCGGGTCCTGGTGGAAGAGGAAGACCACGCCGTCACCGTGACCGTCCGGGACTCCGGCCCCGGCGTGGCCGCCGGGAACGTCCAGGAGATCTTCCGGCAGGGCTTCACCACCAAGGGGGCTGGCCCCGGCGGCGGCCGGGGGTTTGGACTGGCGCTCTCGCGGGTGATTTGCCGCCGAACCGGCGGTGACCTGACGGTGGCCAATGACAACGGAGCAGTCTTCACCGCACGGCTGAATCAAAGGAGCCCACAGCCATGAMTRRRGMSLAGQYLVLQLLIVLAVLVAVVAISLAQSAAAFERIEGRRALSAAESLGSNPTVRALLPSAEPRAGAALPAVVETVTTVSGAPQVVLAKMDRTVVASSDPGLLGQPLELGGSRVLEGRAWTGVVGGSGTAFLSAHVPVLDDAGEMIGIASVSRNYPSMLDRLGDAVPNLLTYLGVASVLGVAGSLLLARRVKRQTLGMEPSEITGLVENREAMLHGLKEGVVALDPHERITVANDSARELLGLPADCVGKKVGALAVDPALKEVLTRDQPGPDRLVLVGDRMVVLNRVPIRSHGRDIGSVTTLRDRTELSSLERELGATRTATDTLRAQAHEFANQLHVISGLIQIGEYDSVVQFVNGATVDRTRLNDEVTSRIEDPALAALLIAKSSLATERGVALQLDPASALGRIDDDLSRDLATVVGNLVDNAFDAVAGLAGASVRVLVEEEDHAVTVTVRDSGPGVAAGNVQEIFRQGFTTKGAGPGGGRGFGLALSRVICRRTGGDLTVANDNGAVFTARLNQRSPQPNANANANANA
D1-29_00571675citT_1COG4565Transcriptional regulatory protein CitTATGATCAAAGTCCTGATCGTCGATGACGACTTTATGGTGGCGAAGGTCCACGCGGGATTCATCCAGCGAACGCCGGGATTTGAGGTCGTCGGCGCGGCCCACACGGGCGCCCAGGCCGTGGCTGAAACGGCCCGCCTGATGCCGGACCTGGTGCTGCTGGACATTCACCTGCCGGACATTAACGGGCTGGACCTGATGCAGAAACTGCGTGACGTCGCCCCCGAACTCGACGTCCTGGTCATCAGCGCTGCCCGCGAGGTGGAAACCGTCCGGAAAGCGCTGCGGGGCGGGATTGTCCACTACCTCATCAAGCCCTTCTCACAGAAGGATCTCCAGGAACGCCTGGAGCATTACCGCAGCGCCTACCAGAGCCTGGATTCGTCAAAGGACGTGGCGGAGCAGTCTGATGTCAATCGGGTTTTCGGCCTGGACCGGAGCGAGCGGCCGCTGCCCAAGGGCTGCAGTATCGAAACGCTGAAGCTGGTGGAAGCCGCCCTGCAGGAGGCGGACGGGGACCTCTCGGCCGCCGAGGTTGCCGTCCTGCTCGGCACGTCCAGGGTCAGCGCACGCCGGTACCTGGAGTATTTGTACGAGGTAGGCGCGCTGGAGGTCCGGCTCAGATACGGAGCGGGACGGCCCGAACGGCGGTACGTCCTCAAGGGAGCCGAGGCGTAGMIKVLIVDDDFMVAKVHAGFIQRTPGFEVVGAAHTGAQAVAETARLMPDLVLLDIHLPDINGLDLMQKLRDVAPELDVLVISAAREVETVRKALRGGIVHYLIKPFSQKDLQERLEHYRSAYQSLDSSKDVAEQSDVNRVFGLDRSERPLPKGCSIETLKLVEAALQEADGDLSAAEVAVLLGTSRVSARRYLEYLYEVGALEVRLRYGAGRPERRYVLKGAEAPGPT0001490_122DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0001490-citS-K11638NANA
D1-29_005721011hypothetical proteinATGACCACCGTGAAGAACGGCCGGGCTGCGAGCTTTGGCCACACCAAGCTGCCGGACGAACAGCGGGAGGCCCTCCGCAAGGCCGTGAAGTTCGAATGGATCACCATCGGCTTCCTGGCCGCCTCCACCGCACTGGTATTTGCTGTGCTGGGCAACTCGCAGGCCATGAAGGCCGCGTGGGTGGAGGATGTCCTGTCCTTCCTGCCGCCGTTGTCATTCCTGCTGGCGGCCCGCGTGATCCGCAAGCGCCCCAGCGAGGAACATCCCTACGGGTACCACCGCGCCGTCGGGATCGCCCATGTGGTGGCTGCTGTGGCGCTCACGGTGATGGGCGCCTACCTCATTGTGGATTCGGCCATCGGACTCCTGGGCAACGAGCACCCCACCATCGGCGGTTTCGACTTCTTTGGCCAGACAATCTGGCTTGGCTGGCTGATGATTGGCGCGATGATCTTGACCGCTGTCCCGCCCATTTATCTGGGCCGGGTCAAGATGAAGCTGGCGGAAAAGCTGCACGACAAGGTCCTGTATGCCGACGCCGACATGAACAAAGCCGACTGGATGACGGCACTTGCCGCCGCGGTGGGGGTGGCCGGCATCGGCCTTGGCCTCTGGTGGGCGGACTACGCGGCAGCCCTGCTGATCTCGGCCAGCATCCTGCAGGACGGGTTCCGGAACACCCGCGCCGCCGTCTCTGCCCTGATGGACAAACGGGCCCGCACGTACGACGACGCCGAGCCGCACCCGATTGGGCGGCGGCTGGACGAGTATCTTCGCGGCCTGGACTGGGCTGAGAGTGCCCAGTCCAGGATCCGGGATGAGGGGCACGTGTTCCATGTGGAATCATTTGTGGTCCCGGCAGCAGGCCGAATGCCCACACTGGATCAGCTCGAAGCCGCCCGTCTTGCCTGCATTGGGATGGACTGGAAGATCCAGGACATGGTCCTGGTCCCGGTCGCTGAACTTCCCTCCGAGTTCCTGCCCGGACCCACCTCAGGGGGCGAGCGCTAGMTTVKNGRAASFGHTKLPDEQREALRKAVKFEWITIGFLAASTALVFAVLGNSQAMKAAWVEDVLSFLPPLSFLLAARVIRKRPSEEHPYGYHRAVGIAHVVAAVALTVMGAYLIVDSAIGLLGNEHPTIGGFDFFGQTIWLGWLMIGAMILTAVPPIYLGRVKMKLAEKLHDKVLYADADMNKADWMTALAAAVGVAGIGLGLWWADYAAALLISASILQDGFRNTRAAVSALMDKRARTYDDAEPHPIGRRLDEYLRGLDWAESAQSRIRDEGHVFHVESFVVPAAGRMPTLDQLEAARLACIGMDWKIQDMVLVPVAELPSEFLPGPTSGGERPGPT0004255_2663DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004255-czcD|zitB|yrdO-K16264NANA
D1-29_00573501hypothetical proteinATGAGATATTCGCGCAGTTCAGCAGCCCTGGCGCTGTTCTCCGTGCTGGCCCTTGCCGGCTGCGGCACAGCCTATCCTGCGGATCCGTCGGGAACCCTGGACCGGGTCACGGACGGCACCCTCCGTGTGGGTGCCAGCTCCAACGGGAACTGGGTGGACGTCTCCTCAGGCGGCGGCGACGTCAGCGACGAGGACGTGCAGGGCAGGGAGGCCGAGCTGGTGCGGCGCTTCGCCGCGAAGCTGGGAGCGGAAATCGACTGGGTGTCCGGCACGGAGTACGTCCTGGCCGAAGACCTCAAGCGCGGCAACCTTGACCTGGTGATCGGCGGCCTTGACGACAAGACTCCCTGGTCCACGCACGCCGGCCTGACCATGCCATACACCGAATCCGTTGACGGCCACGGTTCCCGGCACCGGCACGTGATGCTGGTGCCCATGGGTGAGAATGCGTTCCTGCTGGAGCTGGACAGGTTCCTGAAGGAAGCGGCGGCCGCACAATGAMRYSRSSAALALFSVLALAGCGTAYPADPSGTLDRVTDGTLRVGASSNGNWVDVSSGGGDVSDEDVQGREAELVRRFAAKLGAEIDWVSGTEYVLAEDLKRGNLDLVIGGLDDKTPWSTHAGLTMPYTESVDGHGSRHRHVMLVPMGENAFLLELDRFLKEAAAAQPGPT0020800_17467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_00574987hutGCOG0010FormimidoylglutamaseATGCCACTTCCCGCACTTACCGTTGACGTCCCGCCCCTCCTTTGGACCGGGAGGTTCGACGGCGACGGCGGCGAACACCGGCGCTGGTGGCAGGCCGTATCGCCCATGGCACCCGGTGAACCCTCCGCATCCCCGGCAGCGCCGTCAAGCCCCCAAGCGGGTGGGCCGCAGCGCCCGGCCGCCCTCCTGGGGTTTGCCAGCGATGAAGGCGTCCGCCGGAACAAGGGCCGCCCCGGCGCGGCCACGGCCCCGGCCGCAATCCGCGGCGCCCTGGGCCCTTTGGCCTTCCACCTGGACCGCACCGTGTCCGACGCCGGCGACGTGGTGGTCCGGAACGGCGCCCTGGAGGCCGGCCAGGCCCGTGCCGGGTTGGCGATAGCTGCAATGCTCGACACCGGCCACCTCACCGTGGTGCTGGGCGGCGGACACGAGACGGCCTTCGCCAGCTATCTGGGACTCGCCGGATCCGAGGCCGTCCGCGGCGGCCAGCGGCTGGGCATCCTGAACCTGGACGCCCACTTCGACCTCCGCGATGAACCAGTCCCCAGTTCGGGTACACCGTTCCTCCAAATGGCCGAAGCGGAAGCCGCCGCGGGGCGCGAATTCCGGTACGCCGTCGTCGGAATTTCAGAGCCGAACAATACCCGGGCCCTGTTCGGCACCGCGGCGCGGCTGGGCGTCCAGTACCTGATGGACGAGGAGTGCACCGAAGATCGCGTGCAGGCATTTGTGGCGGAGTTCCTGGAAGCGGTGGATGTGCTGTACCTGACCATCGACCTTGACGTGCTGCCCGCGTCCGTGGCCCCCGGGGTGAGCGCGCCTGCGGCCTACGGCGTGCCGCTGGCCGTCATCAGCGCGGCCTGCCGGCAGGTGGCGGCGAGCGGAAAACTGCTGCACCTGGACGTCGCTGAGCTGAATCCGGAGTTCGACATCGACGCCCGCACGGCGAAGGTTGCCGCCCGCCTGGTGAACACCCTGCTGCGCTAGMPLPALTVDVPPLLWTGRFDGDGGEHRRWWQAVSPMAPGEPSASPAAPSSPQAGGPQRPAALLGFASDEGVRRNKGRPGAATAPAAIRGALGPLAFHLDRTVSDAGDVVVRNGALEAGQARAGLAIAAMLDTGHLTVVLGGGHETAFASYLGLAGSEAVRGGQRLGILNLDAHFDLRDEPVPSSGTPFLQMAEAEAAAGREFRYAVVGISEPNNTRALFGTAARLGVQYLMDEECTEDRVQAFVAEFLEAVDVLYLTIDLDVLPASVAPGVSAPAAYGVPLAVISAACRQVAASGKLLHLDVAELNPEFDIDARTAKVAARLVNTLLRPGPT0020240_496DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020240-hutG-K01479NANA
D1-29_005751305nhaP2K(+)/H(+) antiporter NhaP2ATGTTTGAAGCCCCCAGTATCCTGTTCGCGGCCGCCGGAGCCGCCGTCTTTGTTGCCGCAATCCTCCCCAAGATCCTGCGCAACGTCCCGTTCTCGATGCCAATGGTCTTCCTGGGCGCAGGGATGGTGGCCTTCTCCCTGATCCCCACGCTGCCCGATCCGGATCCTGTCCTGCACGGCGATTTCACCACGCACCTGGCGGAAATCTGCGTCATCATCTCCCTGATGGGCGCCGGCCTGGCCATCGACCGGCCGTTCGGCCGCACCAACTGGGCCACCACATGGCGGCTCCTGGCGATCGCCATGCCGGTGTGCATTATTGTCCTGACGCTTCTGGGCCTCTGGTTCCTGGGGCTGGGGCTGGGAGCTGCACTGCTGGTCGCCTCAAGCCTGGCACCCACGGACCCCGTACTGGCCTCCGAGGTGCAGGTGGGCGAACCGGCCGACGAACCAGACGACGCGGACAAGGAGGACGAGGTCCGGTTCGGCCTGACATCCGAGGCCGGCCTGAACGACGGCCTCGCCTTCCCGTTTGTGTATCTGGCCATAGCCATCAGCATCGTGGGTGCCTCGCCATCGGAGTGGTTGCCGGCCTGGTTGGGGATCGATGTAGTGTGGCGGCTGACCATTGGACTGGTGCTGGGATGGGGTATCGGGAAACTGCTGGCGCTGTTGTTCTTCTCGGCGCGGAAGGAAAGCATCCGTCTTTCCAACCATTCGCAGGGCTTCGTTGCCCTGGCCGCCACATTCCTGGCTTATGGAGTGACAGAAATGATCGAGGGCTACGGGTTCATTGCCGTTTTTGTGTGCGCGGTAACCATCAGGGCCGCCGAGCACACGCATGGCTACCACCGGGTGCTGCACTCCTATGTCGAACAGTTGGAGCGGCTCATGACGGTGGTGATCCTGATCCTGCTGGGCGGCGCGATCGCCCGGGGCCTGCTCGCCGACGTGGGCTGGCCCGAGGTGTTGGTGGCGTTGGCGTTCCTGCTGCTGGTGCGGCCGCTGGCCGGCTGGGTGGGGCTGCTGGGCGGCAAGACAGGTCCGCGGGAACGCATTGCCCTGTCCTTCTTCGGGATCCGCGGGATCGGTTCCCTCTACTACCTTTCCTATGCGCTGGGAAAAGGACAGTTCGAGGGCCAGGCCGAAGAGCTGTGGGGGATCGTCGGGCTGGTGGTTGCGCTGTCCATCGTGATCCATGGGGCCACCACGTCACCGCTCATGAACCGGCTGGACCGGCTTCGCGAACGGCGTGCACTGGCGGAATCCGGTGACGAGGGAATGGCGCCCAACACTCCAGTCTGAMFEAPSILFAAAGAAVFVAAILPKILRNVPFSMPMVFLGAGMVAFSLIPTLPDPDPVLHGDFTTHLAEICVIISLMGAGLAIDRPFGRTNWATTWRLLAIAMPVCIIVLTLLGLWFLGLGLGAALLVASSLAPTDPVLASEVQVGEPADEPDDADKEDEVRFGLTSEAGLNDGLAFPFVYLAIAISIVGASPSEWLPAWLGIDVVWRLTIGLVLGWGIGKLLALLFFSARKESIRLSNHSQGFVALAATFLAYGVTEMIEGYGFIAVFVCAVTIRAAEHTHGYHRVLHSYVEQLERLMTVVILILLGGAIARGLLADVGWPEVLVALAFLLLVRPLAGWVGLLGGKTGPRERIALSFFGIRGIGSLYYLSYALGKGQFEGQAEELWGIVGLVVALSIVIHGATTSPLMNRLDRLRERRALAESGDEGMAPNTPVPGPT0013856_588DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160NANA
D1-29_005761443pbuG_1COG2252Guanine/hypoxanthine permease PbuGATGCTTAAGCAAGGCTCTGCCCTGGACCGGTATTTCAAGATCACCGAACGCGGGTCCAACCTCTCCCGCGAGGTCCGCGGCGGCTTCGCCACCTTCTTTGCCATGAGCTACATCGTGGTGCTGAACCCGCTGATCCTCTCCGGCGCAGATTCCAGTGGCAACTCCCTCGGTTTTCCCGCAGTGGCGGCCGTGACCGCTCTTGTGGCCGGCATCCTCACCATCCTGATGGGGGCCTGGGCCAAGCACCCGTTTGCCCTTGCCACCGGACTGGGCGTCAATGCGTTCGTAGCTGTCACGGTGGCCACCAACCCTGGCCTGACGTGGCCGGACATGATGGGACTGGTGGTGATCTCCGGCGTGACCATGCTGATCCTGGTCCTCACCGGTTTCCGGACCGCCGTGTTCAAGGCAGTCCCGGACGGCCTCAAAACCGCCATTGTGGTGGGCATCGGCCTGTTCATCGCCCTGATCGGGCTGGTCAACGCCGGGTTCGTCCGCCGCATCCCGGACGTCGCAGGAACCACCGTCCCCGTAGGCCTTGGCTTCGACGGAAAACTCCTGGGCTGGCCCACTGCCGTGTTTGTGTTCGGCCTGATCCTCACCATCGGCCTGGTGGTCCGGAAGGTGAAGGGCGCCATCCTGATTGGCATCATCACCTCCACGATCATCGCCGTCATCCTGGAAACGACCCTGCACATCGGCCCCAGCGTTGATCCGGGCAAACCGTTCAACCCGCAGGGCTGGTCCCTGGTGGCCCCCACCTTTTCGGAGTGGGCAGCACCTGACCTATCCCTGATCGGAAAGGCCAACCCGTTTGGCGCGTTTGAGCATCTGGGCTTTGTGGCCGCCACGCTGTTGGCGTTTGTCATCCTGCTGAGCATCTTCTTCGACGCCATGGGCACCATGGTGGGGCTAGCCAACGAGGCCGGAACGGTGGACGAGCATGGAAACATCCCGGACGTTGACCGTGTTTTGCAGGTGGACGCCCTGGGCGCAATTGTGGGCGGCGGGGCCTCCGTGTCCTCCAACCAGATCTACGTGGAGGCCGGGGCGGGTATCGGCGAAGGCGCCCGGACCGGCATCGCATCCATCGTCACAGGCCTGTTGTTCCTCGTGGCCATGTTCTTCACACCGCTCATCAACCTGGTCCCGTTCGAGGCTGTGGCGCCTGCCCTGGTGGTGGTGGGCTTCATGATGGTGTCCCAGGTAGGGAAGATCGACTGGCAGGACTGGGGCATCGCCATCCCGGCCTTCCTGACCTTCACACTGATGCCGTTCACTTACTCGATCGCCAACGGCCTGGGCGCCGGCTTCATCGCCTATGTACTGATCCGCACGATCCAGGGCAGGATCCGCGACATCCATCCCCTGATGTGGGCGGTGGCGGCCGCGTTCCTGATCTTCTTCGCGGTGGGTCCGATCGAGGCCGCCCTGGGCATGTAGMLKQGSALDRYFKITERGSNLSREVRGGFATFFAMSYIVVLNPLILSGADSSGNSLGFPAVAAVTALVAGILTILMGAWAKHPFALATGLGVNAFVAVTVATNPGLTWPDMMGLVVISGVTMLILVLTGFRTAVFKAVPDGLKTAIVVGIGLFIALIGLVNAGFVRRIPDVAGTTVPVGLGFDGKLLGWPTAVFVFGLILTIGLVVRKVKGAILIGIITSTIIAVILETTLHIGPSVDPGKPFNPQGWSLVAPTFSEWAAPDLSLIGKANPFGAFEHLGFVAATLLAFVILLSIFFDAMGTMVGLANEAGTVDEHGNIPDVDRVLQVDALGAIVGGGASVSSNQIYVEAGAGIGEGARTGIASIVTGLLFLVAMFFTPLINLVPFEAVAPALVVVGFMMVSQVGKIDWQDWGIAIPAFLTFTLMPFTYSIANGLGAGFIAYVLIRTIQGRIRDIHPLMWAVAAAFLIFFAVGPIEAALGMPGPT0007325_1484DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
D1-29_00577636hypothetical proteinATGCGTTCCATCCGCCATTTGCTGAGCCTTGTGCTCGGGATTTTCGTTGCCGTCGCTATCCTGGCGGTGGCCGGTCCGGCCAGCGCGCACGACGCCGCCGAATCCAGCAGCCCAGCCCAGGGCGCAACCGTCGCCGCACCGCCGGAAAAGGTCTCCGTCACGTTCAACAGGAACCCGTTAGCCATCGGCTCACAGTTCTCCGTGAAGGATTCCACGGGGACTGAGTGGGCGGACGGCGCCGTCGAGATCGTGGACAACGTGGTCAGCCAGAAGCTCAAGGGTGGCGCGCCGGCGGGGGAATACACGGTCGCGTGGCGGGTGGTCAGTTCGGATTCACACCCCATCGAGGGGACGTTCAGCTTTACGGCCACCGCTGCGGCTGCGGGAGCTGGGCCCTCCGCTTCGGCAACAACGGGTTCGACGTCGGCTGCAGCCGTTCCCGGCATGGGCACCCCGCAGCCCGGGGTCACGTCGCCTGGCGAGCCTGCGGCTGATGCCTCGGAGCCGTTTCCGTGGAGCTTGGTGGTTTTTGCCGCTGTTGCCATCGGGCTGCTCGTGGCAATCGCGGTCACGGCAAGGCGCAGGCTCACCGCCGGAAGGGAAGAAGAGGAAGTTGAGGAACCAACACTGAGGTAGMRSIRHLLSLVLGIFVAVAILAVAGPASAHDAAESSSPAQGATVAAPPEKVSVTFNRNPLAIGSQFSVKDSTGTEWADGAVEIVDNVVSQKLKGGAPAGEYTVAWRVVSSDSHPIEGTFSFTATAAAAGAGPSASATTGSTSAAAVPGMGTPQPGVTSPGEPAADASEPFPWSLVVFAAVAIGLLVAIAVTARRRLTAGREEEEVEEPTLRPGPT0004115_200DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004115-pcoC|copC-K07156NANA
D1-29_00578648hypothetical proteinGTGTCAAGCATGCCTTTGATTGGCAGGACCGAACAGACCACCACTGTGATCATTGGCACGGGCCTTTCCGGCCTGGCCGTGGCCGCAGAGCTGCGCCGGCGGGGCGTGGACTCCATCGTTGTGGACGGCCTCGACATCCTGGGCGCCGGGCAACCGGCCAACACAGCTTCGCTGCAGCGGTGCGATGCGGCAGACTCCGATTCCCTCCGGGAGCGGAACGAGATCCTTCGGCACCTGCGCAATTACGCGGCCAGCCACAACATGGACGTCCGCAGCACCATCCGCGCGGTCAAGCTGACCATGGTGCACGGCCCGCAGGACAATCCGGCAACGGACGGCCGTTCCCGGCAATGGGAGGTCCACACTCCCAACGGCATCCTGGTGGCTGAGCACATTGTGCTGACCCGGTGCGCCCACAGCCAGCTGCGGCGGATGCTGAGCGACTTCGGCATCACGGTGGGGCACAATCTGATCGCCGCGATGCGTGCCATCGGCATCTATCTGGTGGGTGTCGGCGAGCTCATTACGCCGTCCCCCAAGGAAGTGCTGCGCCAGGCCAAAACGGTGGGCCAGGCTATCTCGTCCAAGGTCTATCCGGAGAGCGCTCCCACCATCCTGACCGGTAGCTTCGCCGTCGTCCCGGGCTAAMSSMPLIGRTEQTTTVIIGTGLSGLAVAAELRRRGVDSIVVDGLDILGAGQPANTASLQRCDAADSDSLRERNEILRHLRNYAASHNMDVRSTIRAVKLTMVHGPQDNPATDGRSRQWEVHTPNGILVAEHIVLTRCAHSQLRRMLSDFGITVGHNLIAAMRAIGIYLVGVGELITPSPKEVLRQAKTVGQAISSKVYPESAPTILTGSFAVVPGNANANANANA
D1-29_005791035COG0589Universal stress proteinATGGGCGCAGAAGAGTTGCATCCGGACCCGGAGCGGGACGGACGTGCCAGTTCTGCTCCCCGGGGGATCGTTGTGGGCGTGGACGGATCGGACCACGGCCAGTGCGCCCTTGTCTGGGCGGCCCGCGAGGCCGAGCGTCGCCGTCGGCCCCTTCACATCGTGACCGCCTATTCGGTGCCGATCTTCGCAGCGTCCGGCCTGGACGGCGGGTACGCCACAGTGGATGACTCGGTCATCCGTGAAGGCGCCGAAGCCATCGTCAAGCAGGCCCTGGATAAAGTGGCCGGCTATAACATCGACGTAGATGCCTCGGTTGAGAACGGTGACGCGGCCGGGGTGCTGCTGGAACTGTCAGAAACCGCTGAGCTCCTTGTTTTCGGAACCCGCGGCAGGGGTGGCTTTGTGGGGCGGCTTCTCGGTTCCGTCAGCAGCGCTCTTCCGGCCCACGCAAAGTGCCCCACCGTGACCGTCCCGCTGATCTGCGCCGACCGCCTCGGCGAAACCACCGAGGACAGGCGGATCAAGGCCGAGCAGGCCAAAGCCGGGCACCAGCGCGTCGAGAACGTTGTGGTGGTGGGCGTGGACGGTTCGGAGCAGGCCCGCGTGGCAGTCCTGGAGGCTGCGGCCCAGGCCGAAAGGCTGGGAGCAACGCTGCGGGTCATTTGCGCGGTGCCGCAGTACAGCGGTTCGCTCGCCTGGGTCCCGGCGCCGATGGACCGCAAAGCGCTTTTTGAGGACATCCAAGTACAGCTGGATGCCGGCATGGCTTGGCTCAAGAGCCACTATCCCCACCTCCCCATGGAGTCCGTGCTGAAGGATGGTTCCCCGGTGGAGGTGCTGGTGGAGGAAAGCCGGCATGTCGAACTCGTGGTGGTGGGAACACGTGGCCGCGGCGGCTTCGCCGGCATGCTCCTGGGTTCCACGTCGGATGGAGTTCTCCACCACGCCAAGGGCCCCATCCTGGTGGTGCCGGACCGGGAGGACCCGCGGCTGGCGGACAGGGCCAGTTTCGGTCCCATCCTCGGCGCAGCTTAAMGAEELHPDPERDGRASSAPRGIVVGVDGSDHGQCALVWAAREAERRRRPLHIVTAYSVPIFAASGLDGGYATVDDSVIREGAEAIVKQALDKVAGYNIDVDASVENGDAAGVLLELSETAELLVFGTRGRGGFVGRLLGSVSSALPAHAKCPTVTVPLICADRLGETTEDRRIKAEQAKAGHQRVENVVVVGVDGSEQARVAVLEAAAQAERLGATLRVICAVPQYSGSLAWVPAPMDRKALFEDIQVQLDAGMAWLKSHYPHLPMESVLKDGSPVEVLVEESRHVELVVVGTRGRGGFAGMLLGSTSDGVLHHAKGPILVVPDREDPRLADRASFGPILGAANANANANANA
D1-29_005802874pigCProdigiosin synthesizing transferase PigCATGCCGGATGTCACTGGCCCAGCACCTCGGGATTCCCAGGCACCAACCAGGGAAGTGCGGCAGCCGGAGAGCGGAACGCCGGACGGAAAGCTCGTTCTTGACCTCGGGCAGATCCACGCCGGACTGGTGCCCCTGGTGGGCGGCAAGGCAGCCAACCTCGGCGAGCTGATAGCCGGCGGCTTACCTGTCCCGGACGGCTTCTGCCTGACCACCGACGCCTACCGGCTGGCCACCATGCCCTCGCCGGCCAAAGAATCCGGACCAGCCAATGAATCAGGACCAGCCACGGAATCCGTGCCCCGTGGAGTGGAAGGCCTTGACGACGTCCTCGGCGCACTGAAGTCCACGGACCCGGAGAGCCTGGCGGAGTTGGCGGACCTGGCCGGCAGGGCGCGGCAGATCATCGGACGGGTACGCATTCCGGCCGAGGTGGCTGCTGCAGTGACCGAGGCCTACGAGGAGCTGGGCGAGGACGTCCCGGTGGCCGTCAGGTCCTCGGCTACTGCAGAAGACCTTCCGTCCGCCAGCTTTGCGGGCCAGCAGGACACATACCTCAACGTCGTGGGAGCCGACGCCGTCCTGACGGCCGTGCGCAACTGCTGGGCTTCGCTCTGGACCGACAGGGCTGTCAGTTACCGGGCCAGCAGGGGGATCGACCCCGCATCCGTGGCGCTCGCCGTCGTCGTGCAAAAAATGGTGGACGCCGCGGCCGCTGGCGTGATGTTCACGGCAGATCCGCTCACCGGACGGCGGCAGCAGACGGTCATCGATGCCAGCCCGGGGCTGGGGGAAGCGGTGGTCTCCGGTGCCGTTAACCCGGACCACTATGTGGTGGATCCGCTGGAGGGAACGGTATTGGAGCGTCGGGTCGGGGACAAGCGGTTGATGGTCAGGCCGCTGCCCGGTGGCGGAACCGAGAACGTACAGTTGCCGGACTCCGGGGCTCCCTGCCTCACTTACGGGCAGGCGGCCGAGCTGGCTACCCTTGGCCTGCGTGTGGAGAAGCTCTTCGGTTCCCCGCAGGACACCGAATGGGCCATCGAGCAGACAGGCAGGCTGTGGCTGACCCAGTCACGGCCCATCACCACCCTGTACCCCGCGCCGGAGCGGGCCACTGCCGCCGCGGGTGCGCGCGTCTATCTCTGCTTCAGCCTGGCACAGGGCCTCACCCGGCCTATTACCCCCATGGGCCTGGCGGCCTTCAGGCTTATTGCCTCTTCCGTGGCGCGGGCAGCGCAATTCGACGTGCCGGAGCCCCACCGCGGGCCACCACCGTACGCGGAAGCAGGCCAGCGCATCTACTTCGACCTGACAACGGTGGCGCGGAGCACCACGGGCCGGCGGATTGTCCCCCGGGTCTTCGACGTGATGGAAGCCCGTTCCGCGGTGCTGCTGCGCCGGGTCTTCGAGGACCCCAGGTTTTCCGTGACCCGCAGGACACCGTTGGGCCTGCTGCGCCACTTTGTGCCTGCGGCGGCGCATGCCCGCGCTCCCGAAACCCTGTTCCGTGCCCTGTTTCGCCCGCAGGCGGCGCTGCGGCGGCTGAACCGGTTTACCCGTGAGTTCAATGACTCGCTGCAGCTTGGCCGTGATGCCACCCCGGCGGAACGCCTGGACCATGCAGAGCGGCTCCTTGGCACGCGCCTTTTCACGATTGTGCCGGCCGTCCTTCCGCTGCCCGCACTGGGATTCGCCATGCTGGCAGTGGCAGGAAAACTGCTGGGCGGCGGGAACAGCGGATGGGACCAGCTCCAGCAGGTGCTCCGCGGGCTGCCCAACAACGTGACCACGGAGATGGACCTGGAACTGTGGCGGCTCGCCACCGTCATCAGGGATGACGCCGAATCGGCTGCTGCCGTAAGAGGGCTGAAACCGGCGGCCTTGGCCAGCCAGTTCGGCGCGGGGCAGCTTCCGGCAGTCCTGCAGGCGGGGCTGGTACGTTTTCTGGGCCGGTACGGGCACCGCGCCGTGGCCGAGATCGACGTCGGGATGCCCCGCTGGTCCGATGATCCCACGCACATCCTGGGAGTGCTGGCCAACTACCTTCGCCTCAATGACCCAGACATGGCCCCGGATGTGCAGTTCGCCAAGGCGGAAGAAGAAGCAGAGGCCCACGTCGCACGCCTCGTGGCCTTGGCGCGCAAGCGCGGACGCCTCCGCGGTGCCCTGGTGCAGGCCGCCCTGCGGCGGACCCGGCTCTTCGCGGGGCTCCGCGAGCTGCCAAAAAACCAGATCGTGATGGGCCTGGCCGAAGTGCGGAAGCAACTACATCATGTGGGCGCAGCCCTGGCAGCTGCCGGGGCCGTCACAGATCCGGAGGACGTCTTTTTCCTCGATTTTGAGGAGGCGCGGGAAGGGCTAGGACAGCGCGCGGGAAGCACTTCAACAGGAAGCCCTTCACCAGGAAGCGCTGACCTGCGCGAACTCGTCCAGGTGCGGAAGCAAGCATACGAGCGGGAGCTCGAACGGCGCCATGTGCCGCGGTTGCTGCTCTCGGATGGAACCGAACCGGAGGCGCTGCCGGCCCCCGGGGTCCCGCCTGGTGCACAGCAGGCGCCAGGAACCCTTACCGGCAGCCCCGCATCGGCGGGAACGGCAACGGCAGCAGCGCGGGTCATCCTGGATCCGGTCGGCGCGCATCTGGAACCTGGCGAGATCCTGGTGGCGCCTTCAACAGATCCCGGCTGGACCCCGTTGTTCCTCACCGCCGGCGGCCTGGTCATGGAGATGGGCGGCCCCAACTCCCACGGTGCCGTGGTGGCGCGGGAGTACGGCATCCCCGCCGTGGTGGGCGCCGCTGACGCCACCATCCGGATCTCCACCGGACAGAGAATAACGGTCGACGGCGGTGCCGGGACCGTGGTGCCGGAGTAAMPDVTGPAPRDSQAPTREVRQPESGTPDGKLVLDLGQIHAGLVPLVGGKAANLGELIAGGLPVPDGFCLTTDAYRLATMPSPAKESGPANESGPATESVPRGVEGLDDVLGALKSTDPESLAELADLAGRARQIIGRVRIPAEVAAAVTEAYEELGEDVPVAVRSSATAEDLPSASFAGQQDTYLNVVGADAVLTAVRNCWASLWTDRAVSYRASRGIDPASVALAVVVQKMVDAAAAGVMFTADPLTGRRQQTVIDASPGLGEAVVSGAVNPDHYVVDPLEGTVLERRVGDKRLMVRPLPGGGTENVQLPDSGAPCLTYGQAAELATLGLRVEKLFGSPQDTEWAIEQTGRLWLTQSRPITTLYPAPERATAAAGARVYLCFSLAQGLTRPITPMGLAAFRLIASSVARAAQFDVPEPHRGPPPYAEAGQRIYFDLTTVARSTTGRRIVPRVFDVMEARSAVLLRRVFEDPRFSVTRRTPLGLLRHFVPAAAHARAPETLFRALFRPQAALRRLNRFTREFNDSLQLGRDATPAERLDHAERLLGTRLFTIVPAVLPLPALGFAMLAVAGKLLGGGNSGWDQLQQVLRGLPNNVTTEMDLELWRLATVIRDDAESAAAVRGLKPAALASQFGAGQLPAVLQAGLVRFLGRYGHRAVAEIDVGMPRWSDDPTHILGVLANYLRLNDPDMAPDVQFAKAEEEAEAHVARLVALARKRGRLRGALVQAALRRTRLFAGLRELPKNQIVMGLAEVRKQLHHVGAALAAAGAVTDPEDVFFLDFEEAREGLGQRAGSTSTGSPSPGSADLRELVQVRKQAYERELERRHVPRLLLSDGTEPEALPAPGVPPGAQQAPGTLTGSPASAGTATAAARVILDPVGAHLEPGEILVAPSTDPGWTPLFLTAGGLVMEMGGPNSHGAVVAREYGIPAVVGAADATIRISTGQRITVDGGAGTVVPENANANANANA
D1-29_005811326hypothetical proteinATGAGCCGTGCCTGGCTGCGGTGGATGCCTGCCGCAGCAGTACCTGCTGTGATTGCCGCTGGTGTGCTGGCGGGGTCCATTCCGGCGCGGGCCGGTGACCCCCTCCCCGAAAAGACTCCCGCGCAGGTCCTTGCCCTGGTGGCCGGGCACACCACCAAGACGTTCTCCGGAACAGTGGAACAGACCTCTGACCTTGGCCTGCCTGAACTCCCGGCCCCAGGACCCACCTCTGGACCGGCCTCCGCGGGCGGGGCAGCCTCGGCTGTAGAGCTATTGACCGGCGAACACACAGCCCGCATTTTTATGGACGGACCGGCGAAGGTGCGGATCCAGCTGGTGGACCGGTTGGCTGAACGGGACCTGATCCGCCGGGACAGCGACGTCTGGTTCTACTCCTCCAAGGACAACACCGCCGCCCACCTCACGCTGCCCGCGAAGGCCAGCGACCTGCCGCTGCCGCCTCCTGAAGCCCCGGTGCCGCCCACTCCGGACGAGTTGGCCAGCAGGCTCCTGGCCGCTGCTGATGCTTCCACGGAAGTGACGGTTGGACCGGACGTCGAGGTTGCCGGCCGCGCTGCCTACAACCTGGTTCTGGAGCCGCGGACCAATGGAACCTTGGTGGGCCGTGCCGCCATCGCCGTGGATGCCCAGACGGGCATGCCGCTGAGGGTTTCGGTAACAGCGCGGGGCCAGGCAGAGCCGGCCTTCCAGAGCGGTTTTACGAGCTTGTCGTTGGAGCCGCCGGACGATTCGCGGTTCAGCTTCGTTCCGCCGCCGGGCGCCACGGTCAAGGAGCTCCAGCCGCCGGCCCCAGGCATACACTGGCCGTCGACGCCAGCCATCCCCGGATCCCCGGGCACGGCTACCCCTGGTCCGGTCGAACCCGGCCAGGTTGAGCCCGACCAGGTCGAGCCGCAGCCGGCCCCGCCGCTGCCCGGCGACGTCCCGGCCGTCCCGCCGAGCCCGCCAGACAAACTGGCGCCGGACCAGCTTCCTGCTGACCAGCTTCCGCCAGAGCTTCAGGACGGGCAGGTCCCGCCAGACAAGCCCGCCTGGGACAGAAAGGCCATGCCCCGGCCATCCGTGACTGGCAGCGGCTGGGAGACAGTGATTGGTATCCCGGCCGCCACAGGCGGGCAGGGACCGGCCCTGAGCGAATCACTGCTGAATGATCCCCTGCTGGCGCAAGCCACCGTCGTCGTTCCCGGCGGACGGTTGCTGTCCACCGCACTGGTAAATGTCCTGTTCACCGACGACGGACGCGTCTTCGTGGGGATGGTTCCGTCCGAGAGGCTGCAAGCCGCCGCCGGCGCAGTGGCCCCGTGAMSRAWLRWMPAAAVPAVIAAGVLAGSIPARAGDPLPEKTPAQVLALVAGHTTKTFSGTVEQTSDLGLPELPAPGPTSGPASAGGAASAVELLTGEHTARIFMDGPAKVRIQLVDRLAERDLIRRDSDVWFYSSKDNTAAHLTLPAKASDLPLPPPEAPVPPTPDELASRLLAAADASTEVTVGPDVEVAGRAAYNLVLEPRTNGTLVGRAAIAVDAQTGMPLRVSVTARGQAEPAFQSGFTSLSLEPPDDSRFSFVPPPGATVKELQPPAPGIHWPSTPAIPGSPGTATPGPVEPGQVEPDQVEPQPAPPLPGDVPAVPPSPPDKLAPDQLPADQLPPELQDGQVPPDKPAWDRKAMPRPSVTGSGWETVIGIPAATGGQGPALSESLLNDPLLAQATVVVPGGRLLSTALVNVLFTDDGRVFVGMVPSERLQAAAGAVAPNANANANANA
D1-29_005821020bcrABacitracin transport ATP-binding protein BcrAGTGACGGGTCCCGGCGGCGCTGCCGCGGCCGGCGTTCAGGAGAACGGGACGTCCGGACTGACCATTGAGACAAAGGGCCTGAGCAAAAGATTCGGCCACCAACTCGCCGTAAATGCGGTGGATCTGGCGGTGCCGCACGGCTCGGTGTTTGGGTTCCTGGGTCCCAACGGGTCAGGGAAGACCACCACCATCCGCATGATGCTGGGCCTTGCGGCGGCCTCGGCCGGTACCGTCAGCGTGCTTGGACTGGAGATGCCGAACCGCCTCCACGACGTCCTTCCGCGAGTAGGCGCACTCGTGGAAGGCCCTGCTTTTTATCCCTTCCTGTCCGGTGCCGCAAACCTTCACAGGCTTGACGCCGCCAGCAGGCATGCTTCGCCCGCCACACGGAAAGCGAGGGTCCAGAATGCCCTGGAACGGGTGGGCCTGGCCCACGCGGCCGGGAAAAGGGTGCACGCCTATTCATTGGGCATGAAGCAGCGGCTGGGGATCGCCAACGCCTTGCTGTCCCCGCGGGAACTTCTGGTCCTGGACGAGCCCACCAACGGGCTGGATCCACAAGGCACACGGGAGGTCAGAAGCCTTGTCCGCTCCCTCGCTGCCGACGGCGCCACCGTGTTCGTGTCCAGCCACCTGCTGGCAGAGGTGGAGCAGATCTGCACCCACGCGGCCATTATGAGCGCAGGGCGGCTGGTGGCCCAGGGGCCGCTGGCGGAGCTGCGCCAATCCGGTGAAACACGGATCCGCCTCCTAACGCCCGACGCCGGAGCAGCCTCTGATGTCCTGCGCCGGCTGGGAATGAATCCGGCTACGGGGACGCCCGCGCCCGACGGCGACGTGGTGACCGCCGTGGCTGCCGCATCCGCAGAAGCCGCCGGGGCAAACGGCACCGCTCCGGAGAATGTTGTGGCGCGTCTGGTGGAGGCAGGTGTCAGGGTCCGCGGATTTTCGGTGGAGCGGGAGAGCCTGGAGGACCGGTTCGTTGCCTTGACGGGGGAGGGGTTCGACGTTGCCCAGTAGMTGPGGAAAAGVQENGTSGLTIETKGLSKRFGHQLAVNAVDLAVPHGSVFGFLGPNGSGKTTTIRMMLGLAAASAGTVSVLGLEMPNRLHDVLPRVGALVEGPAFYPFLSGAANLHRLDAASRHASPATRKARVQNALERVGLAHAAGKRVHAYSLGMKQRLGIANALLSPRELLVLDEPTNGLDPQGTREVRSLVRSLAADGATVFVSSHLLAEVEQICTHAAIMSAGRLVAQGPLAELRQSGETRIRLLTPDAGAASDVLRRLGMNPATGTPAPDGDVVTAVAAASAEAAGANGTAPENVVARLVEAGVRVRGFSVERESLEDRFVALTGEGFDVAQPGPT0006725_3477DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_00583750hypothetical proteinATGCTGCTGGCGCTGGCCGCGATACCGGTGCTGATCGCCGTTGCCGTCCGGCTTTCCTCCACGGTGCCGCCGGGACGGGGGCCCGCTTTCCTTGACCGGATCACCCAGAACGGGCTCTTTGTGGCGGTCACGGCGATGCTGGTTTCGGTTCCCCTGTTCCTGCCCCTCACCATCGGGGTGGTTGCCGGTGACACGATAGCCGGCGAAGCGAGCCTTGGCACCCTGCGCTATCTGCTGGTGGCTCCTGCCGGGAGGGTGCGGCTGCTCCTGGTGAAGTACGCCGGCGCGCTGGCCTTCTGCGTCGCGGCCCCCGTTACCGTAGCCCTCGCGGGAACGGCCATCGGGGCCTCGCTGTTTCCTATCGGCCCGGTCACCCTGCTGTCCGGGGACGTGGTCCAACCACCGGAAGCTGCGCTGCGGCTGGTGCTGATCGCGTGTTACCTCTCGGTGTCCCTTGCAGGTCTCTCGGCGATCGGCCTGTTCCTGTCCACCCTTACGGTGGTCCCTGTCGGTGCGATGGCAGCCACGGTGGTGGTGTCGGTGGTGTCACAGGTCCTGGACCAATTGCCGCAGCTCGAGTGGCTGCACCCCTGGCTTTTCAGCCACTACTGGTTTGGCTTCGGAGATCTCCTGCGGGAGCCTGTGCTGTGGGATTCGTTCGCCAGCAACGCCTTGCTGCAGGCCGGTTACGTGGCCGTGTTCGGTGCGCTGGCCTACGGGAGGTTCGTCACCAAGGATGTGCTCTCCTGAMLLALAAIPVLIAVAVRLSSTVPPGRGPAFLDRITQNGLFVAVTAMLVSVPLFLPLTIGVVAGDTIAGEASLGTLRYLLVAPAGRVRLLLVKYAGALAFCVAAPVTVALAGTAIGASLFPIGPVTLLSGDVVQPPEAALRLVLIACYLSVSLAGLSAIGLFLSTLTVVPVGAMAATVVVSVVSQVLDQLPQLEWLHPWLFSHYWFGFGDLLREPVLWDSFASNALLQAGYVAVFGALAYGRFVTKDVLSPGPT0006730_15346DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_005841506hypothetical proteinATGAGCAGCGGGGCACCTTTGTGCCGCATCCAGGCCTCGATCCCCAGCCTTACTGTGCTGCGAGGTTTTGACATGGGTTTGACCGCACCGGGCCGGAAGGCCGCCGTATTGTGCGCCGCCGTCGTGCTTCTGGGAACTCTCGCACTGCCAGCCCAAGCCGCTCCCCTGCCACAGGCACCCGCCGTCCAGCTTCCGACCGCGCCGGAGATTCCCAGCCCCGAGGACATCGCGGCTGCCAAAGCCAGTGAAAGCGCGACGGCGGATCAGGTGGCGGCCATCGAGCGCATCCTGTCGGACGCAGCCACAGCCCAGCAGGTCACTTTCGCGTTGTCACTGCAGGCAAATAACTCCTATGGCGACGCCTTGGTTGAGCAGCAGTCCCGGCAGTCGGCTGCTGTTGCTGCCACGGAGAGAGCCCAGGCAGCACAGCGCGAGCAGGACAAAACGCGCAAGGAGGTGGGGCAGCTTGCCGGCGATCTTTACCGCAACGGCGGCATGAACCCGGCTCTGAGCACCTTCATGGCGGGCGGGGACGTCCTGCAGCAGGCTGCCACGCTGGAAGCCCTTTCAGCCAGCCGCAGCCGCGCCTTCCAGTCAGCTGAAACTGCCGCGGCCACCTTTCAGTCACTGACTGCTGCCGCCGACGATGCCAACCGGGCGGCCGAAGATGCAGCAAGGAACGCGGAAATCCGCAAGGAGGAGGCTGAACAGGCAAACGCCGCCCAGGTGAAGGCATTGGTGGAGGCCACGGCACAGCGGGCCGTCCTGGTGGATCAGCTGGCACAGCTGAGGAACACCACGGTTGCCTTGGAATCTGCGCGCGTTCATGCCCTGGACCGGCAGCGGGATGAGGCCAGGCTGGCCGCACTGACTGCAGCAGCGGACCAGGCCGCAGCAGCAGCGGCGGCCGCCGGGCGGGCGGCTGGTCCAGTGGCTGTAGCGCCGGCACCGGCTGCTCCCGCACTGGCCGCTCCAGCACCGGCAGCTCCGGCGCCTGCGGTCCCTGGCCCCGCTGCGCCGGTTCCCGCTGCTCCGCCTCCCGCTGCTCCGGCTCCTGCAGTTCCAGCTCCCGCCGTTCCGGCAGCTCCCGCACCTGTGGTTCCTGCTCCCGTTGCACCTGCGCCGTCGCCCGGAGGCTCCAACGAGACCGCCATCTCCGTGGCCATGACCAAGGTGGGGGCACCCTACTTCTACCAATGGGGCGGGACCGGGCCGTATGGCTTTGACTGCTCCGGCCTGGTGCAGACCGCATTCTCCGCAGCCGGCAAATACCTCCCCCGTACCGCGGCGCAGCAGTATGCCTCAGCCCCGGTGCATGTACCCATCTCGCAGGCCCAGCGAGGTGACCTGTTGGTGTGGGGCTCGGCGCCGAACTTCTATCACGTGGCGATTTACCTGGGAAACGGCCAGGTGGTGCAGGCCCTGAATCCGGACGAAGGAATCGCCATGACCCAGCTCAGCCGGATGGCTGGCATGCAGCTCTATCCCTACGCCGCCCGCTACTAGMSSGAPLCRIQASIPSLTVLRGFDMGLTAPGRKAAVLCAAVVLLGTLALPAQAAPLPQAPAVQLPTAPEIPSPEDIAAAKASESATADQVAAIERILSDAATAQQVTFALSLQANNSYGDALVEQQSRQSAAVAATERAQAAQREQDKTRKEVGQLAGDLYRNGGMNPALSTFMAGGDVLQQAATLEALSASRSRAFQSAETAAATFQSLTAAADDANRAAEDAARNAEIRKEEAEQANAAQVKALVEATAQRAVLVDQLAQLRNTTVALESARVHALDRQRDEARLAALTAAADQAAAAAAAAGRAAGPVAVAPAPAAPALAAPAPAAPAPAVPGPAAPVPAAPPPAAPAPAVPAPAVPAAPAPVVPAPVAPAPSPGGSNETAISVAMTKVGAPYFYQWGGTGPYGFDCSGLVQTAFSAAGKYLPRTAAQQYASAPVHVPISQAQRGDLLVWGSAPNFYHVAIYLGNGQVVQALNPDEGIAMTQLSRMAGMQLYPYAARYPGPT0023995_456DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_00585903hypothetical proteinGTGGAGCCGACGTGGGGCATTGAGGGCGCGGATTTTCTTGGGTGGTATCTCGGCATCGGTCTGTTGCTGGCTGCCACTATTGTTCTGGTCCGGCTGTTCACCGGCGGTCTGATACCCCTTCGGCCAAAGGTTGACCCCCATACCCTCGTGCCGCTTGATCTGGCCTACCTTAGCGGCGGCCCGTTCCACGCCGTGGCAATCAGCCACTGGGTATGGACGGATCACAAGGCAGGGCGCCATGGCGAGGAAGCGGAGTTCCTTCGAGCCAACCGGCTGGACCCTTTGCTGCAGGCGGTTGCCGGACCCGTGCTGAATTCCACTGCCTCCGTCAGGGAGTGCCTGCTGGATCCGGCTGTTTCGTTCCAGCTCAAGTCCCGGCACCAACAGCTTGCCGGGCGGGGACTGCTGCGCAGCCGCGGGGTTATGGGTTTTCTGCGGGTCCTGAAATGGGTTGCCATCGGGTTCCTGGCGCTGGGTGTTGCCCGGATCGTCGCGGGGATGATCAACGGCAGGGACACCGCGTATCTGATGGGTGCCGTCATTGCGGGCGTTGTCCTGCTGTTTATGCTGGCCGTCAAGGTCCCCACCATCACCCATCCAGGAATCAAGGCGCTGCGCGAACTACGGCGCGAGAACCAGGACCTCCGGCCCGGCAGGAAAGCAGGCTACCACGGAGTTCGTCCCGCCCGGGTGGCACTTGGGGCGGTGCTCTTTGGCACAGCCGGGTTATGGATTGCGGCGCCGGCCTATGCCTCGGCCATGGGGATCCCCGCCGCAGGCACAGCCGCCGGGGGTGGAATGTACTACGGCGATTCCGGCTCATCCTCCGCGTCCTCCTCCTCGTCCGGAAGCTCCTCGTGCAGCAGCGGCGGTGGGTGCGGCGGCGGCGGTTGTGGTGGTTGAMEPTWGIEGADFLGWYLGIGLLLAATIVLVRLFTGGLIPLRPKVDPHTLVPLDLAYLSGGPFHAVAISHWVWTDHKAGRHGEEAEFLRANRLDPLLQAVAGPVLNSTASVRECLLDPAVSFQLKSRHQQLAGRGLLRSRGVMGFLRVLKWVAIGFLALGVARIVAGMINGRDTAYLMGAVIAGVVLLFMLAVKVPTITHPGIKALRELRRENQDLRPGRKAGYHGVRPARVALGAVLFGTAGLWIAAPAYASAMGIPAAGTAAGGGMYYGDSGSSSASSSSSGSSSCSSGGGCGGGGCGGNANANANANA
D1-29_00586927hypothetical proteinGTGGGTGCGGCGGCGGCGGTTGTGGTGGTTGAGGCAGGCGTGCTTCAGCCGGGCCTGGGCATCGGTTGGCGTTCCAGCCTGGCGGAGTCCATTGGCCGCCTGAACGGCCTGTCCTTCGTTGAGGTTGTGGCCGAGAACCTGCATGATCACGGTTCCGGCATAGACGTCCCTCCAGACCTCCAGCAGCTGGTCGACGGCGGCAGCATCGCCGTCGCGCATGGAATCTCACTCTCCCTGGGCTCGGCCGCAGAGGTGGACCAGTCCCGCCTGGCGCATTTGCGCCGGGTGGGGGAGGCAATCCGGGCGCCCCTGGTCAGCGAACACATTGCGTTCGTGCGGGCCGGGAGTTCTGCCCCGCCGGGTTCCCCGCATGCGGACATGCTTGAGGCCGGCCATCTGCTTCCGGTGCCACGGAGCCGTGACTCGCTGTTGGTGCTGACGGCCAACACCCGGCAGGCTGTGCACGGGCTGGAGGTTCCGCTGGCTCTGGAACCCATCGCGGCGCTGGCCGAGTGGCCGGACAACACCATGACAGAGGGCCAGTTCCTGACCGAGCTGCTGGAACGGACAGACGCTTTGCTGGTGCTCGACGTCGCCAATGTCTATGCCAATGCAGTGAACCATGGCCGCGACCCGCTTGCGGCGCTGCTTGAGTTCCCGCTTGAGCGCATCGCCTACTGCCACATCGCGGGAGGAACGGTGATGGACGGTCTCTACCACGACACCCATCAGGACCCGGTCCCGCGGGAGGTCCTGGAACTCGCGGGCGAACTCCTTAAATCGACAGGACCCGTGCCGCTGATGCTTGAACGTGACGGCAAGTTCCCTCCGGAACCGGTATTTTTTGCCGAGCTGGACGCCATCGCCGACGCCGCCGGCCTGCCACGTGTCACGCCCGATGCAACGGCAGGGCAACGCCCCGAATGAMGAAAAVVVVEAGVLQPGLGIGWRSSLAESIGRLNGLSFVEVVAENLHDHGSGIDVPPDLQQLVDGGSIAVAHGISLSLGSAAEVDQSRLAHLRRVGEAIRAPLVSEHIAFVRAGSSAPPGSPHADMLEAGHLLPVPRSRDSLLVLTANTRQAVHGLEVPLALEPIAALAEWPDNTMTEGQFLTELLERTDALLVLDVANVYANAVNHGRDPLAALLEFPLERIAYCHIAGGTVMDGLYHDTHQDPVPREVLELAGELLKSTGPVPLMLERDGKFPPEPVFFAELDAIADAAGLPRVTPDATAGQRPENANANANANA
D1-29_00587564hypothetical proteinATGAGTGCAGGAACAGGCTGGCCCACGGATCCGGATGGCGGGGACTCCGGAAGCCGGGACAGTGCTGGCGAGCCGGGACTCGCCGCTGCGCGTTGGCGCCTTGCCGCCAGCCAGCGGGAGCTGGTTGAGGCACTGGTGGCGAATGGGCCGGTGCCGGAAGGCTTCGACCCGCTGCAGGTGGCGGCGGTCCGGCGTGGCCTGGAACGCAAGAGGCTAGGCGGTATTGGCTACCACTTTCCAGCCCTGGCGGCTGCGATCCGGGCAAACCCCGGCTTGATGGAGTTGTTTGGCAGCTGGCACTGTGCCAATCATCCGGGCGAAGGTCCCGAACCTGGCTATTACGCCGACGGGGTGAGGCTGATCGGCTTCCTGGAGGGCATCGGCAGGCTGCCCGGCGACGCCACCCGGGAGGTACTCATGCTGCGGATCGGGACAAGTCCGGGGCCTGAGGGTCAGCGGATCCCGGCGCGGTGGGCGGGGCTGCGCCGTGCCCGCGTTGACGGCAAGACGTGGTGGGTGGCCGGAAGCCATCGCCGCTGGGTGTGGCTGCGAGGCCCACGCTGAMSAGTGWPTDPDGGDSGSRDSAGEPGLAAARWRLAASQRELVEALVANGPVPEGFDPLQVAAVRRGLERKRLGGIGYHFPALAAAIRANPGLMELFGSWHCANHPGEGPEPGYYADGVRLIGFLEGIGRLPGDATREVLMLRIGTSPGPEGQRIPARWAGLRRARVDGKTWWVAGSHRRWVWLRGPRNANANANANA
D1-29_00588921czcDCOG1230Cadmium, cobalt and zinc/H(+)-K(+) antiporterATGGGACACGACCACAGCCATACGCATGGGATCACGGCCACGGGCCGGCACCGCAAGCGCCTTGTAGCCGTTTTGGCCATCACACTGGCTGTGGTCCTGGTCCAGGTGGCAGGGGCGGCGCTCTCCGGCTCCCTGGCCCTCCTGGCTGACGCAGGCCACATGCTGTCCGACGCCGCGGGCGTGACCATAGCCCTCCTGGCGTCGTGGATTGCGGGCCGTCCTGCCAGCGACCTGAGAACGTACGGCTATCAGCGGGCCGAGGTCCTGGCGGCGCTGGCCAACGCCCTGATCCTGATCGTGATCTCAGTGATCATCTTTACCGAGGCAATCCGGCGTTTCGGATCTGCTCCCGAAGTACAAACAGACATTATGCTGGGGGCTGCCATCCTGGGAGCGGTGGCAAATCTGGTGTCCCTGCTGATCCTGCGGGGTGCCCACCAGGACAGCCTGAACGTCCGGGGAGCCTACCTCGAAGTCCTGGGCGACCTGCTGGGATCCTTGGCTGTCATCGTGGCCGCAGTGGTGATCCTGACCACGGGTTACCACGCCGCTGACACCATTGCCTCCGTACTCATTGCCCTGATGATCCTGCCGCGGGCCTGGAGCCTGCTCCGCGATGTGGTGGATGTCCTGCTCGAAGCGAGCCCCAAGGGCGTGGAGGTTCAGATGATCCGCGAGCACATCCTGTCCGTTGAGGGAGTGGTGGACGTTCACGACATCCACATCTGGACCATCACCTCAGGGGTACCGGTGTTCTCCGCCCACGTGGTTCTTGAGGATGGGGTGCTCACTGCCCGCGGCGCCGACCAGGTGCTGGACAAACTCATCACCTGCCTTGGCTCCCACTTCGACACCGAGCACTGCACGTTCCAGCTTGAGCCTGCCAGCCACCTTGAACACGAGGCGCACCAGCACGCCTAAMGHDHSHTHGITATGRHRKRLVAVLAITLAVVLVQVAGAALSGSLALLADAGHMLSDAAGVTIALLASWIAGRPASDLRTYGYQRAEVLAALANALILIVISVIIFTEAIRRFGSAPEVQTDIMLGAAILGAVANLVSLLILRGAHQDSLNVRGAYLEVLGDLLGSLAVIVAAVVILTTGYHAADTIASVLIALMILPRAWSLLRDVVDVLLEASPKGVEVQMIREHILSVEGVVDVHDIHIWTITSGVPVFSAHVVLEDGVLTARGADQVLDKLITCLGSHFDTEHCTFQLEPASHLEHEAHQHAPGPT0004255_2127DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004255-czcD|zitB|yrdO-K16264NANA
D1-29_00589360hypothetical proteinATGTCCGACGACGAGTTCGAATCCGCCGTCAGCGATGCCCTCAACCGGATTCCCGCCAAGATTGCGAGCGCCATGAACAACGTGGCGGTCTTCATCGAGGACGACTACGTGCCCCGGCCCGGCGAAGATCCGGACACCGTCCTGCTCGGACTCTACGAGGGCGTGCCGCTGACTGAACGTGACTCGTGGTGGGACGCGGGTTCGCTCCCGGACCGCATCACCATCTTCCGCCAACCCATCCTGGAGATCTGCGGATCCCGTGACGAGGTGATCGAAGAGGTGGCCGTGACGGTGGTTCATGAGATCGCGCACCACTTCGGCATTGGTGACGAACGGCTGCACGAGCTGGGCTGGGACTAAMSDDEFESAVSDALNRIPAKIASAMNNVAVFIEDDYVPRPGEDPDTVLLGLYEGVPLTERDSWWDAGSLPDRITIFRQPILEICGSRDEVIEEVAVTVVHEIAHHFGIGDERLHELGWDNANANANANA
D1-29_00590963hypothetical proteinATGGCTTCCACCCGAACACGCACTCCACGGTCCTCGGCCCCCCTCCCTGCAGGCAACCCGGTCAACGCTCTTGGCGTGGCGGCCGTCGTGGTAACTGTGGTCCTCTGGGCATCAGCTTTTGTGGGTATCCGGGCCATCGGCCCCGACTTTTCCCCTGGCCCCCTGACGCTGGGCAGGCTGGCGGTTGCCGCCATCGTGCTTGGTGTCCTGGTGCTTCCACAGCTGCTGAAGAGCCGGGTCCTGCCGCAGGGCGGGGAATGGTGGCCCATCGTGGCCTATGGCGTGATGTGGTTCGGCGGCTACAACGTTGCGCTGAACGCCGCCGAACACCTCCTGGACGCCGGGACAAGTGCCATGCTGATCAACGTCTCCCCCATCCTCATCGCCGTTCTGGCAGGATTTTTCCTCAAGGAAGGCTTCCCCCGCTGGCTGATTATTGGCAGCCTGGTGGCCTTCGGTGGAGTGGCGCTGATCGCGCTCGGATCAGGCGCAGCTCCCGGGGCGGGGCAAAGTTCGACGTCGTATGTTGCCGGCGTGCTGCTCTGCCTCCTTGCCGCTGTTCTCGCCTCCGTCAGCGTGATCATCCAGAAGCCCGTGCTGCGGAAGTTCCCGGCGGGCCAGGCCACCTGGTTTGGGATCGTGATGGGCGCCCTGTGCTGCCTGCCCTTCACCGGGCAACTGGTGTCCGAGCTCCAGGCGGCCCCGCTGCCGGCAACATTGGGGCTTGTGTATCTGGGTGTTTTCCCCACTGCGATCGCCTTCACCACCTGGGCCTACGCGTTGTCCTTGATCGACGCCGGAAAAATGGCCGCCACCACGTACCTGGTGCCGGGCGCAACCATCCTGATCTCGTGGCTGGTACTCAGCGAGATCCCCACCATCTGGGGCCTGGTGGGAGGCGTGGTCTGCCTGGTGGGCGTTGGCCTCACCCGGCGCAGATCCCGCACACCCTCCGTGTCCTGAMASTRTRTPRSSAPLPAGNPVNALGVAAVVVTVVLWASAFVGIRAIGPDFSPGPLTLGRLAVAAIVLGVLVLPQLLKSRVLPQGGEWWPIVAYGVMWFGGYNVALNAAEHLLDAGTSAMLINVSPILIAVLAGFFLKEGFPRWLIIGSLVAFGGVALIALGSGAAPGAGQSSTSYVAGVLLCLLAAVLASVSVIIQKPVLRKFPAGQATWFGIVMGALCCLPFTGQLVSELQAAPLPATLGLVYLGVFPTAIAFTTWAYALSLIDAGKMAATTYLVPGATILISWLVLSEIPTIWGLVGGVVCLVGVGLTRRRSRTPSVSNANANANANA
D1-29_005911056ycdXphosphatase YcdXATGGATGCCGTTGCCGCACTGAATGAGATTGCGTTCTGGCTGGAACGTGGACGGGCTGCCACCTTCAAGGTGCAGGCGTTCCGCAAAGCGGCCGCCGCCATTGCCGCCCTGGAGCCGGAGGAGCTCGCGGCCAGGGCACGGGATGGGCGGCTCAAAAGCATGAAGGGCATCGGGGACCGGACGTATCAGGTCATCCGCCAGGCAGTGGACGGGGAGGTCCCTGATTACCTCCAGGACCTCCGGCAGCGCGGAACCGGCGCGCTTGCGGAAGGCGGTGGAGAGCTCCTGCGGACCCTTCGCGGCGATCTGCACACGCACAGTGACTGGTCCGACGGCGGCTCCCCCATTGCCGCCATGGCTGAGGCAGCCCGCATCCTGGGCCGGGAGTACCTGGCGCTCACCGACCACTCGCCCAATCTCAAGATCGCTAACGGCCTCAGCGCGGAGCGCCTCATGGAACAGCTCGACGTCGTCGCCGCCATCAACTCGGACGGCGCCAAAGGCAGTGGGGCCACAGCCAGCGGCGCCGCGGCCGACAACAACTTCCGTCTCCTGACGGGGATCGAGGTGGACATTCTGGAAACCGGCGAACTGGACCAGGCTCCGGAGCTGCTGGACCGGCTGGATGTTGTGGTGGCAAGTGTCCACTCCAAGCTCCGTTCCGACCGCGCCACCATGACCAGGCGAATGCTCAAAGGCATCCAGGACCCGCACACCAACGTCCTGGGCCACTGCACCGGCCGGCTGGTGGAGGGATCGCGCGGACTGCGGCCGCCTTCTGAGTTCGATGCCAGGAAGGTCTTCGCCGCCTGCGCAGAAAACAACGTGGCCGTGGAGATCAACTCCCGCCCGGAGCGGCAGGACCCGCCGGACGAGTTGATCCAGTTGGCCCTCGACGCCGGCTGCCTGTTTTCCATCGACAGCGATGCCCATGCCCCGGGGCAGCTGGATTTCCTCCAGTACGGAGCGGCGCGTGCCGAACTGAACAACGTGCCGGCAGAGCGCATCGTGACCACCTGGCCCCTGGAGCGGCTCCTCGAGTGGTCCCGGGGCTAGMDAVAALNEIAFWLERGRAATFKVQAFRKAAAAIAALEPEELAARARDGRLKSMKGIGDRTYQVIRQAVDGEVPDYLQDLRQRGTGALAEGGGELLRTLRGDLHTHSDWSDGGSPIAAMAEAARILGREYLALTDHSPNLKIANGLSAERLMEQLDVVAAINSDGAKGSGATASGAAADNNFRLLTGIEVDILETGELDQAPELLDRLDVVVASVHSKLRSDRATMTRRMLKGIQDPHTNVLGHCTGRLVEGSRGLRPPSEFDARKVFAACAENNVAVEINSRPERQDPPDELIQLALDAGCLFSIDSDAHAPGQLDFLQYGAARAELNNVPAERIVTTWPLERLLEWSRGPGPT0016200_111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-SWARMING_REGULATOR,PGPT0016200-ycdX-K04477NANA
D1-29_00595843hypothetical proteinATGACCACCACCACCACCACCACCCAAAAGGTCGCACTCGTCACCGGGGCATCCTCGGGAATGGGCCACGCATTCGCCATCCAGCTGCACGAAGCCGGATTCCTGGTCTACGGCGTCGCCCGACGCACCGACCGCATGAATGACCTGCGCGCTCACGGCATCAAGACCATCGCCATGGACATCACCGACGACGAATCGATCAGCGACGGTGTCCGCCAGATCCTTACCGAAACTGGCCGGATCGACGTTCTCGTCAACAACGCCGGCTACGGGTCCTACGGCGCCGTAGAAGACGTTCCCCTGGAGGAAGCGCGCCGCCAGTTCGAGGTGAATGTGTTCGGCGCCGCTCGACTGGTCCAGCTCGTGCTCCCGTCGATGCGATCCCACAAGAGCGGCACCATCATCAACATCACCTCCATGGGTGGAAAAATCTACACCCCGTTCGGCGCCTGGTACCACGCCACCAAGTTCGCGCTCGAATCCTTCAGCGACTGCCTCCGCCTGGAAACAAAACCTTTCGGCATCAACGTCGTCATCATCGAACCCGGCTCGATCCGCACCGAATTTAACGGCATCGTCGCCGACAACCTCATCGAAACGTCCGGCAAAGGCGCGTACGCAGACAACGCCGCGAAGGTGGCGAAGACAGCCCGGGCTCAGAACCCCAGGCAGTCGTCGCCCCCGGAGCTCGTGGCCAGAACCCTCGTCAAAGCGGCCACCGCACGCCGCCCCAAGACGCGCTATGCCGTCGGGTTCGGCGCCAACCCCCTCCTCTTCACCCGCAGCATCCTCACCGACCGGGCATATGACGCAATGATCCTTCGCGCCAGCGGAGCCCACTGAMTTTTTTTQKVALVTGASSGMGHAFAIQLHEAGFLVYGVARRTDRMNDLRAHGIKTIAMDITDDESISDGVRQILTETGRIDVLVNNAGYGSYGAVEDVPLEEARRQFEVNVFGAARLVQLVLPSMRSHKSGTIINITSMGGKIYTPFGAWYHATKFALESFSDCLRLETKPFGINVVIIEPGSIRTEFNGIVADNLIETSGKGAYADNAAKVAKTARAQNPRQSSPPELVARTLVKAATARRPKTRYAVGFGANPLLFTRSILTDRAYDAMILRASGAHNANANANANA
D1-29_00596588hypothetical proteinGTGACTCAACCACCAGTAAAGCCGTTGCGCGCTGACGCGCGGCGCAATCGCACGAAAATCCTGGAGGCTGCCCGAGCGCAGATCACCCTCCACGGTCCCGACGTCGGCATGGACGAGATCGCTGCTGCTGCGGGCGTTGCTGTCGGCACTCTTTACAGTCACTTCCCCACCAAGGTGCATCTCGTCGCGTCGGTTGTACGCGAGTTCATAGCGGAGATGGCGGATCGTAGCGAGACCGCAGCGGCGGCCGTGCGCGATGGCAGTCCCGCATACACCGAGCTCACTGCGCTCCTACGGGACATCGTCATCGCAACCGCGACCAATCAAGCCGCGAAAGCCGCCGCAGCCGCTCTCGACGCCGACGAGGGCGATGCATCAGACCTGCAACGAGCCGGCGCCGCCCTGCAGTCGATCATCAATCAAGCCCGCGTAGACCGCACCGTCCGCTCCGACCTGTCAATCGAGGACTTATATCTCCTCGTCAGCAACATCCCCGCCGGCCAACCCACCGACGCCCTCGACCGATGGATCGATCTCCTCCTTCACGGAATCGCGGCCCGAAGAGCCGAGGCGACATCCACGCCCTGAMTQPPVKPLRADARRNRTKILEAARAQITLHGPDVGMDEIAAAAGVAVGTLYSHFPTKVHLVASVVREFIAEMADRSETAAAAVRDGSPAYTELTALLRDIVIATATNQAAKAAAAALDADEGDASDLQRAGAALQSIINQARVDRTVRSDLSIEDLYLLVSNIPAGQPTDALDRWIDLLLHGIAARRAEATSTPNANANANANA
D1-29_00597432hypothetical proteinATGCCGAGTCAATTAGCTGTCATTGCCATCGATGCGGTCCGTCTGCAGGTGGTGGCGGACTTTTGGTGCGCAGTCCTCGGCTGGCATGTCGTCGATGAGGATAACGGCGTCATCAGCATCGCGCCCGAGGATGGGAGCCGGCCGGCCATTGATGTTGTCGCGGTTCCCGAGGGCAAGACCGTCAAGAACCGGCTGGACTTCGACCTGCGGGCTGACGGCCTGTCCACCGCCGAAGAGCTCGAGCGTCTGATCGCCCTCGGCGCGCGGCGCACAAACGTCGGCCAGGGCCCGGACGTTAGTTGGGTAGTACTCAGTGATCCCGAAGGAAATGAATTCTGCCTGCTGTCCCGCTCCGTCCAGGACGTCGAATCTCAAGAATATCGGCCGGAAGAATGGACGAGCGCAGCCCTTTCGAGTAAATCGGGGCCATAAMPSQLAVIAIDAVRLQVVADFWCAVLGWHVVDEDNGVISIAPEDGSRPAIDVVAVPEGKTVKNRLDFDLRADGLSTAEELERLIALGARRTNVGQGPDVSWVVLSDPEGNEFCLLSRSVQDVESQEYRPEEWTSAALSSKSGPNANANANANA
D1-29_00598795hypothetical proteinATGGATGACCCGCTGGGGTCGGTCGAGGGCGTGGAAGCCATCGAGTTGGAGCGCCTGCGGCGACGCGCGTACGGACGGGATGGCGACATCACGGGGGATGCGGCGGCTCAAACTCGGCTTTCCGAACTGGAGGCCGCCCAACACCGACAGCTGACTCCCGTCATCGATCCCACCCCGAGCGTCCCCGACCCGGTCCCGAAAAGCGTCCCGGTCGCTGAGCCGGTCGAAGGGCCGCGCTCAACTTCGACGTCGGTCCCGCAGACTGTCGACGGAGCCCCCGCAGCACCGTGGTGGCGCCGCCGCCGCTGGTTGATGATCTTCGGCGGCGCCACCGCCGCCCTCGCCCTGATCACGGTTCACGTCGCGTGGCTGTCGCAGCTGCGTGCTGATGAGCCCACTGTCGTCCCAGAGTCGCAGCACCGTATGGCCGCCGTGCCCGCAGCGGACTTCAGGCTCGAATTGAAGTCGGTCGGCGCGGACATCGATGAGCCGCAAGACAACCTCGGCACTCTCGACGCGTTGGGTCTCAACGCCAATGAGCTGCGGCAATACGAGAACTTCAACGAGTTCCGTGTCTGGAGCGGAGAGTCTCGCTACGGCATGGTCTGTCTGCTCGTGGCCGACTATTCGATTCGCGAGAGGAACGGCACCGAAGGGTGTTCCCCCAAAGGCCTCGAGACCGTCGCGGAGGTGGTGTGGTTCGATGCCCGGGGTCTCACCCGATTCGTGCTCAACGGCGATTACGTCGAGGTCTACGTGTTCCACAGGGCCGCCGACCCGCCGTCGCTCCGGTGAMDDPLGSVEGVEAIELERLRRRAYGRDGDITGDAAAQTRLSELEAAQHRQLTPVIDPTPSVPDPVPKSVPVAEPVEGPRSTSTSVPQTVDGAPAAPWWRRRRWLMIFGGATAALALITVHVAWLSQLRADEPTVVPESQHRMAAVPAADFRLELKSVGADIDEPQDNLGTLDALGLNANELRQYENFNEFRVWSGESRYGMVCLLVADYSIRERNGTEGCSPKGLETVAEVVWFDARGLTRFVLNGDYVEVYVFHRAADPPSLRNANANANANA
D1-29_00599441hypothetical proteinATGACGACTTTGGCTCCTTTCGTCAGCATCCTCGCCGTGGCGCTGGCGCTGAGTGGTTGCAATGTCTCAATAGAGGATGAGGCGCGGGCAGGCATCCGGAAGGTAGCTGCCGGTGCTCTCGATAGGTTCGAACAGGCCATCGATCGGGCGGGAAGCGCTGAGAAGCTTGAGCAGATCCTCCTCAGGGAGTTGCCCACACTGTATGCCTTCGCGTGGGACGACGACATGGAGCCGGTGGCCGACGTCTACCACATCTATTACGCCAGCCGTGGAAGCGGATTGTTTGCCGAGGATTACCAGGTCAAGGCGTGCGTGAGGTACTCGGTAGAGGCTGGCGAGCGACAGATGAAGTCCGTCGATTTGGCCTACTGGGCGGACGCGCGGGCGCCTCAGTCCTGCGGCTGGTTCCCGGAGTGGGAGCCCACAGGACTGATGAGGTAGMTTLAPFVSILAVALALSGCNVSIEDEARAGIRKVAAGALDRFEQAIDRAGSAEKLEQILLRELPTLYAFAWDDDMEPVADVYHIYYASRGSGLFAEDYQVKACVRYSVEAGERQMKSVDLAYWADARAPQSCGWFPEWEPTGLMRNANANANANA
D1-29_006002388hypothetical proteinATGTCCGTGCGACACCGCGTCCTCCTTAACAGGCCCGCAACTCTGTTCATCAACTCTTTCCTCCTGGGCAATGGTTCGACCGGGGCAGCCGTATACGGCACCCCGGCCCGGGAGCGCTTTGAGTTGAACGCCGATACGTTATGGTCCGGTGGTCCACTTCCTGAACCTTCGATCGACGGAGGGGCGGAACGTCTTGCCGCCGTCCGCGAGGCCATTCAGCGCGGCGACCATCTCGGCGCAGACGCGGCTGCCGTGGCGTTGCAGGGAAATTCGTGGACGCAGTCCTATCAGCCCGTCGGCGGACTGCTCTGGACCTACGGGAAAGAAAGGACCGGGGAGTATCGGCGCTTCCTGGACGTGTCCGAGGCAATTGCCACCACGGAATATGAGACTGGCGGCGGGTGGGTCCGTTTGGACTCCTTCGTCTCCGCGCCGGATGGCGTTCTTGTTTCCACGGCGACAGGGCCAGATGCCGGGTCAATTCTTGGTTCGCTCGATTTCGACGGCCCGCATCCACATGCCCGGGTGGAGCGGCGGGTTGAAAATGGCACCGAGTTCCTGTTCGTTTCGGGCAGGGCGCCGGCAAGCGTATTGCCCAACTACGTCCAGGATCCCGCCCCTGTCGTTTACGCGGACGACGAACCGGATGATCAAGGATTGGTTGATGCGGGGATGGGGTTTGCCCTCGTCGCATCCGTGGAAAGGACCGACGACGGCACGTTGCGGCTGATCGCCGCCACTGAGACCGGATTCCGGGGATATGACCAACGTCCAAGCGCCGACGTCGCATCCCTCCTCCGGCGTGCAGAGGGAAGGGTCCGCGGAGCACAGGTGCGAACCACCGAGGATCTCCGGCGGCGGCACACTACGGACTATCAGAGCTACTTCAACCGCATCGACCTTGATCTCACGGCATCCGGCGGCGTGGGAGCCGCCGAGGCATCCAGCGCCGAGCTGTACTTCCATTTCGGCCGATACCTCCTGATTTCAAGCTCACGCCCCGGCACTGCGCCGGCAAACCTTCAGGGGATCTGGAACGCGGATGTCCGCCCAGGCTGGAGTGCAAATTACACAACGAACATCAATGCCCAGATGAACTACTGGGGCGCGGAGGTCACGGCGCTCCAGGATCTTCACCAGCCGCTGCTGGCATTGACCCGCGACCTTGCAAAAAAGGGCGCAGAAACGGCACGCGCCTTTTACGGCGTGAAGGGCAGCGTGGTGCATCACAACACCGACATCTGGAGGTTCACCGCCCCGGTTTCCGGTGAACCGCAGTGGGCCAACTGGCCCTCCGGGCTGATGTGGCTTGCCGCCCACCTCTGGGACCGGACCGACTTTGCCGATGCCAGCCCGGTGGCTGATAAAGCCACCATTGCTGCCCTGGAGCCGATCGTGGTGTTCGCCCTCGAAATGCTTCAGGACAACGGCGCCGGCGGCCTCGCCTTCAGCCCCTCCACGTCACCTGAAAACCTCTTCCATACCGGTGGCGCCACCGCCAGCGTCACCTCCGGAAGTGCCATGGACCAGGAACTTGTCCATGAACTCCTTAGCCACTATCTGTCCCTGGCAGAAACGTGTTCAGCCGCAGACATTGCCATAGTGGACAGGGCACGGCTGGCCCTTCCGCGAATCCTTCCAGTCCGCACAGGCGCTGACGGCGCGATCCTCGAATGGGGCGACGAATCACTAGAGCCGGTTGAACCTGGACACCGTCATTTGTCGCACCTGTACGGTCTCTGTCCCGGAACCCGCATCACGGAAGCAGGAACGCCGGAAGACTTCGCGGCGGTACGCCGGGCGCTGGACACCAGGCTCGCTCACGGCAGTGGCCACACAGGCTGGAGCCAGGCCTGGGTGCTGTGCCTGGCGGCGCGGCTCAGGGACCGGCAGCTTGCGGAAAGGTCCATCTCTACACTGGTGCACCATCTCAGCTCAGAATCCTTGCTGGACCTGCACCCCAGTGCTGATTGGCCGGGCGGGAACATCTTTCAGATCGACGGGAACCTGGGTGCAATCGCCGGACTCGCCGAATTGTTGGTGCAGAGCCACGAAGGTCCCATCAGCCTGCTCAAAACCGTACCGACCGCCTGGACTGCCGGGCGCGTTTCCGGAATCAGGGCCAGAGGTGGTCACACCGTTGACGTCGAATGGGCAGAGGGTGCGCTCCTCCACGCGTCGGTCCGACCGTCCTGGGACAATGAGGTCTGGATCGAAGTGCCTCATGGCCAGGATTTAACGGTGCTCGACGACGATGGCGGCCAGGTCCCAGCCTCCCGACGGCCGGCCATTGCGGGCCGGACAGGTCTCTCCTGGACCGCCGCCGCCGGACGGTCCTACCTCATCAGTCCTGTGGGCTCCCACTCCGGGAACCAGCCGCAGGACTGAMSVRHRVLLNRPATLFINSFLLGNGSTGAAVYGTPARERFELNADTLWSGGPLPEPSIDGGAERLAAVREAIQRGDHLGADAAAVALQGNSWTQSYQPVGGLLWTYGKERTGEYRRFLDVSEAIATTEYETGGGWVRLDSFVSAPDGVLVSTATGPDAGSILGSLDFDGPHPHARVERRVENGTEFLFVSGRAPASVLPNYVQDPAPVVYADDEPDDQGLVDAGMGFALVASVERTDDGTLRLIAATETGFRGYDQRPSADVASLLRRAEGRVRGAQVRTTEDLRRRHTTDYQSYFNRIDLDLTASGGVGAAEASSAELYFHFGRYLLISSSRPGTAPANLQGIWNADVRPGWSANYTTNINAQMNYWGAEVTALQDLHQPLLALTRDLAKKGAETARAFYGVKGSVVHHNTDIWRFTAPVSGEPQWANWPSGLMWLAAHLWDRTDFADASPVADKATIAALEPIVVFALEMLQDNGAGGLAFSPSTSPENLFHTGGATASVTSGSAMDQELVHELLSHYLSLAETCSAADIAIVDRARLALPRILPVRTGADGAILEWGDESLEPVEPGHRHLSHLYGLCPGTRITEAGTPEDFAAVRRALDTRLAHGSGHTGWSQAWVLCLAARLRDRQLAERSISTLVHHLSSESLLDLHPSADWPGGNIFQIDGNLGAIAGLAELLVQSHEGPISLLKTVPTAWTAGRVSGIRARGGHTVDVEWAEGALLHASVRPSWDNEVWIEVPHGQDLTVLDDDGGQVPASRRPAIAGRTGLSWTAAAGRSYLISPVGSHSGNQPQDPGPT0018650_931DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FUCOSIDASE,PGPT0018650-afcA-K15923NANA
D1-29_00601156hypothetical proteinATGAAGGGGGTCAGGATCGGCCTGGCCACCCCCGTTCCACCCAACAGCCTCAACAAAAACTACAACGATGCAGATCCGGTGTCCACACCATTCGGGAAAGTTCCTACATCGATCAATACATCCGATGATTACGTCCCCTGCTTCTTTAGTTGCTGAMKGVRIGLATPVPPNSLNKNYNDADPVSTPFGKVPTSINTSDDYVPCFFSCNANANANANA
D1-29_006022052hypothetical proteinGTGACATTGATGGCCCCGCCGCAGAGCGACCGGCAACACAACATCGAATGGGCCCACCCTGGACTGCACCTGCGGTTTGAGTGCGGCGAAGACCACCCTGTCCGCCTCATTCACTGGGCGACCGGACCGGACACCCCGTCGGTGGCCGCCCCGACGGCGATCGTGGACGTGAGCACCGCAGGGGAGCACCGCGCCCGCCACAATCAGAGCCTCCTGCTGTGGGGGGCAGGGCCGCGGCTCCGCTACACCGGTCACGAAACGCTCGGCGACGAGCTGCGGATCCGCCAGCACCATCCTGAGAGCGGCCTCGAAGTGACCAGCGTCTTCCGGGCGGCGGGGCCCGGAGTCCAGCTCCGGCACACCGTGCGCAACGGGACCGAGGATGAAGTCATGCTCCTCTCGGTCAGCTCCGGGCTCGTGTCCGTCCCGGAGGGGGCACACGACCTGCTGTGGGGCGAAAGCGAATGGCTCGCCGAAGGGCGCTGGCAGCAGCGTCCGGTCTCGGAGCTGCTGCCGAATGTCAACCCCGATTTCCACAACCGGCGCAGTCGCGGAAACTTTGCGGTGACCAGCCACGGGTCCTTCTCGAGTGGCGAGTTCCTGCCGACCGGGGTCCTCGCGATCGACGGCGGGCCTTCCATCGCATGGCAGGTCGAGACCAGCGCGGGCTGGCACTGGGAGGCGACGCAGAACGAAGGCATGGTCACCATCGGCGTGTACGGCTCGACCGACCTGTACCACCAGTTCGCCGAGCGCCTGGCCCCCGGGGAGGAGTTCACCACGGTGCCCGCCGGGTTCTGCATCGCGGACGGCGGACGGGACGCTGTCTTTGCGGCGCTCACCGATTATCGGCGCGCGATCCGCGAACTGCGCCCGGTCGACGCGGGGCTTCCGGTGGTCTACAACGACTTCATGAATACGCTCATGGGCGGTCCCTCGACGGAGAAGGAGCTGCCGCTCATCGCGGCGGCAGCGAAAGCGGGCGCGGAATACTTCTGCATCGACGCCGGGTGGTTCGGCGGCGGCAACTGGTGGACGGACGCGGGCGACTGGCACGAGACTCCCGGGCTGTTCACCGGCGGCCTGATCTCGGTCATCGACACGATCCGCGCCCACGGGATGCGCCCGGGGATCTGGCTCGAACCCGAAGCAGTCGGCGAGAATGCGGCGCTGGCGCAGCAGCTGCCCGAGGAGGCATTCTTCCGCCGGTTCGGCCAGCGGGTCAGCGAGACCGGGCATTTCCAGCTTGACTTCCGGCATCCGGCGGCGCGCGCCCATCTGGATGAGGCAGTGGACCGGCTTGTTGCCGAGTTCGGGATTACGTTCTTCAAGCTCGACTACAACGTGAATTCGGGCGTCGGGACCGACGTGGACTCCGACGGGCCCGGGGCCGGGCTCCTGGGGCATACCCGGGCCTTCCGCGAATGGCTGAGCGACGCCCAGGCGCGGCACCCGGAAGTGCTGTTCGAGAGCTGCTCCTCGGGCGGGATGCGGATGGACTACAACCTGCTGTCCGTGGCGCACCTGCAGTCCACCAGCGACCAGGAGGACTTCCGGCTGTACGCGTCGATCGCCGCCGCCGCACCCGCCAGCGTCCTCCCCGAGCAGGCAGGAAACTGGGCCTATCCGGCGGCGTCGATGAACATGGAGGAGACGGCGTTCGCCATGACAGCGGGCGTCATCGGCCGGCTCTACCTGTCCGGTTTCCTGGGCGGGCTCAGCGACGAACAGTTCGCGCTGGTAGGCGAAGCCGTTGCGCTCCACAAAGACTGGCGCCACCGCATCGCCGGGGCGCATCCGGTGTGGCCGTTGGGGCTCCCCGGCTGGGATGACGACGTCATCGCGCTGCAACTGAACACCGGTTCCGAGTCGTTGCTGGCGCTATGGTCGCGCGGTGAGGCTAGGGAGATCACGCTGCCAGGGCTGCGCGGGCGGACCATGGAGCAGGTCTATCCGGTCGCTTTGCCGGAGTGGACCCTCCGCGCGGCTGAGGGACTACCGGTCATCGAGGTGCCCGCCGGTCCGGCCGCAAGGATCTTCGCGGTACGGTGAMTLMAPPQSDRQHNIEWAHPGLHLRFECGEDHPVRLIHWATGPDTPSVAAPTAIVDVSTAGEHRARHNQSLLLWGAGPRLRYTGHETLGDELRIRQHHPESGLEVTSVFRAAGPGVQLRHTVRNGTEDEVMLLSVSSGLVSVPEGAHDLLWGESEWLAEGRWQQRPVSELLPNVNPDFHNRRSRGNFAVTSHGSFSSGEFLPTGVLAIDGGPSIAWQVETSAGWHWEATQNEGMVTIGVYGSTDLYHQFAERLAPGEEFTTVPAGFCIADGGRDAVFAALTDYRRAIRELRPVDAGLPVVYNDFMNTLMGGPSTEKELPLIAAAAKAGAEYFCIDAGWFGGGNWWTDAGDWHETPGLFTGGLISVIDTIRAHGMRPGIWLEPEAVGENAALAQQLPEEAFFRRFGQRVSETGHFQLDFRHPAARAHLDEAVDRLVAEFGITFFKLDYNVNSGVGTDVDSDGPGAGLLGHTRAFREWLSDAQARHPEVLFESCSSGGMRMDYNLLSVAHLQSTSDQEDFRLYASIAAAAPASVLPEQAGNWAYPAASMNMEETAFAMTAGVIGRLYLSGFLGGLSDEQFALVGEAVALHKDWRHRIAGAHPVWPLGLPGWDDDVIALQLNTGSESLLALWSRGEAREITLPGLRGRTMEQVYPVALPEWTLRAAEGLPVIEVPAGPAARIFAVRPGPT0018835_1828DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
D1-29_00603996hypothetical proteinATGACTTCCAGCCGTGAGTATGCGGGGTACCTCTACGTCCATTTCAAACGCGAAGCAGCGGACGGTGAGCAGGTCTATTTCGCCCTGAGCGAGGGGAACCACCCGCTTCACTTCCACGACCTCAACGGCGGCAAGCCGGTCCTGCACTCGGCTTTGGGTGAATGCGGCGTCCGCGACCCGCACATCGTCCGTTCCCCTGACGGCGAGCGCTTTTACATGGTGGCCACGGACCTGTGCCTCTACGCGAACCTTGACTGGGACCGGCATCAGCGCTGGGGCAGCCGTTTCATCATGATCTGGGAGTCGACGGATCTGGTGGACTGGGGAGAGGGCCGCCTCGTCGAGGTCGCACCGCCCGAAGCAGGTAACACGTGGGCGCCGGAGTCGGTCTGGGATCCCGGGCAGGACGCCTTCCTCGTGCACTGGTCATCGAAGCTCTATGACAACGCTGAACACGAAGGTGAGAGCTATAACCGGATCATGTACGCCACCACGCGCGACTTCCGGGAGTTCTCCAAGCCGCGCGTCTGGATCGATCGGGGTTGGCCTACCATCGACACCACCGTAATCGGCCACGACGGCCTGTACTACCGCTTCCTCAAGGACGAGCGCACCCGCAGCGGGGAGGCGCCCAACGGCAAATCAGTCTTCAGTGAGACCGCCGATTCCCTGACGGCGGCAGGCTGGAAGCCGCTGACTGAAGGTATCGGCCTCGACGGGATCAGCAGGGGCGAGGGACCCTTGGTGTACAAGTCGAACACCGAGGACAAGTGGTTCCTATGGTTGGACGAGTTCACGCCGGAACGCCGTTACGTTCCCTTCGAGACGACTGACCTGGCCGGCGGCCAGTGGACTCCCTGCAAGGACGTCCGGCTGCCGGAGGATCCCTGTCACGGTGTGGTGCTGCCGGTGACGGCCGAAGAGTACGCGCGGCTCAGCGCCGCGTGGGGAGACCGGGTTCGCAGCAGCGTGTCGCAGGGCTCACTGGGGAGGTAGMTSSREYAGYLYVHFKREAADGEQVYFALSEGNHPLHFHDLNGGKPVLHSALGECGVRDPHIVRSPDGERFYMVATDLCLYANLDWDRHQRWGSRFIMIWESTDLVDWGEGRLVEVAPPEAGNTWAPESVWDPGQDAFLVHWSSKLYDNAEHEGESYNRIMYATTRDFREFSKPRVWIDRGWPTIDTTVIGHDGLYYRFLKDERTRSGEAPNGKSVFSETADSLTAAGWKPLTEGIGLDGISRGEGPLVYKSNTEDKWFLWLDEFTPERRYVPFETTDLAGGQWTPCKDVRLPEDPCHGVVLPVTAEEYARLSAAWGDRVRSSVSQGSLGRPGPT0019091_45DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_00604519hypothetical proteinATGTCTCCTGTACAAGCTCTCCACGGGAAACAGTCCCGCCGCCTCCGCACGGGTGCCGCCCTCATGACGCTGGCCGGGCTCGCCTTCGTGGGCTACGCGGCAGTCTTCCTGGTGCTCAACTTCACGGGCATCTTCCTCGAGTTGGGCATCGGCCCCGATCAAGTGGACAAGGGGAAGGCTGATGTGGAGGAGTTCAGCCCACAGCTGTATCACTACATCAGCCATCTCCACCTTGCCATCAGCGGCTTCATTGCGGCCACCGGACTGGCCATCGTTGGCCTGTCCTGGTACGGCGTGCGACGAGGAGAACGGTGGGCCTTCGCCACGGCGATTATCGTCCCGGTTGTCGGGCTCGCCATTTCCGTCCCCGCACACTACCCATGGGGCCTGGCGACGCTTGAGCACCTGGGCCCGGTCTATCTCGCCGTCCTCATATTCGTTGCCGGTGTCGGTACAGCCTACAGCGGACTGCGGACACCGGAGACGCCCGATCGGGCGGTACCGCTACCTCCCCAGTGAMSPVQALHGKQSRRLRTGAALMTLAGLAFVGYAAVFLVLNFTGIFLELGIGPDQVDKGKADVEEFSPQLYHYISHLHLAISGFIAATGLAIVGLSWYGVRRGERWAFATAIIVPVVGLAISVPAHYPWGLATLEHLGPVYLAVLIFVAGVGTAYSGLRTPETPDRAVPLPPQNANANANANA
D1-29_006051107ccpA_4COG1609Catabolite control protein AATGGCGAACAGCAACGCACGCGCACAGGCTGTGGGTGGGGGCGCGGCCGCACCGTCGGCTTCGGGAACCCCCGCGCAACGCGGCGTCACCATGGCGGATGTTGCCAAGCATGCCGGAGTGTCCCGCACCGCCGTCTCGTTCGTCCTGAGCAACCGCGGGGACACCAGCATTTCGCAGGAAACCAAGCACCGCATTCTCGAAGCCGTCCAGACCCTGGGATACCGGCCCAACGCCGGGGCCCGGGCCCTGGCCTCGCAACGGAGTGACTGGTACGGAATCGTCACGGAGATCGTCACGGCACCGTTCGCCGTCGACATCATCAAGGGCGCACAGGACCAGGCCTGGCTGGACCGCAAGTTCCTGCTCATCGCCCCGTCAGACCAGGCCGACGCCGTAGGACCAAACCAGGGCCTGGAAGATGCCGCCGTGGAAAAGCTGCTGGAACAAAGGGTGGAAGGACTTCTGTACGCGGCCACCTTCCACCGGCCCGTACACGTTCCGAAAAGCACCCACGAGGTGCCCACCGTCCTGATCAACTGCTTCGACGCGGACGGGAAGCTGCCCTCGATCGTCCCGGACGAACGCGGGGGCGGCCGGGTCGCCGTCGAACGCCTGCTCCAGGCCGGACACAAGCGGATCGGTGTCATCAACCTGGATCCGAACATCCCCGCCGCCGTCGGGCGCCTGGAAGGATGCCGCGAGGCACTCGCCGGTGCCGGCCTGGAACTGGACCCTGAACTTGTAGTCTCGGGATACGCGACGGCGGACGGCGGCTACGAGGCAGCGTGCGAAATCCTCGACAGATTTCCGGCCGATGCAGGCAGGCCAACGGCACTGTTCTGCCTCAATGACCGGATGGCCATGGGCGCCTATGACGCCATCAAGGAACGTGGACTGGCCATCCCCCAAGACATCGCCGTGATCGGCTTCGACAACCAGGAACTCATTGCGGCCTACCTCAGGCCCAAACTGACAACGGTTGCGTTGCCCTTCCAGGAGATGGGTGCGCTGGGTGTCCAGACACTCGCAAGCCTTACAGCAGGACAGCCGATCACCGCACACCAGCAAATGGTCGACTGTCCGCTGCTAGAACGCTTTTCAGTCTGAMANSNARAQAVGGGAAAPSASGTPAQRGVTMADVAKHAGVSRTAVSFVLSNRGDTSISQETKHRILEAVQTLGYRPNAGARALASQRSDWYGIVTEIVTAPFAVDIIKGAQDQAWLDRKFLLIAPSDQADAVGPNQGLEDAAVEKLLEQRVEGLLYAATFHRPVHVPKSTHEVPTVLINCFDADGKLPSIVPDERGGGRVAVERLLQAGHKRIGVINLDPNIPAAVGRLEGCREALAGAGLELDPELVVSGYATADGGYEAACEILDRFPADAGRPTALFCLNDRMAMGAYDAIKERGLAIPQDIAVIGFDNQELIAAYLRPKLTTVALPFQEMGALGVQTLASLTAGQPITAHQQMVDCPLLERFSVPGPT0017992_1037DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_006061674nikACOG0747Nickel-binding periplasmic proteinATGACACAATCGCGATTCCTCAGGTCTGCCCGCATCACCGCGGCCAGCCTGGCAGTAGGTGCCCTACTGCTCACCGGCTGCTCGGCCAACCAGGGCGGCCAGTCCAACGCCGGCGGTTCGGCTGAAAGCGCCCTCCTGACCATTCCGCGGGAGGACATGGGCACCTTCGTCAGGAACTTCAACCCGTTTGCCCCCACCGTGGCCCCCATGACGCAACAGGCCATCTACGAATCCCTGTTGATCTACAACCCCGCCAAGGGTGAAACCACGCCGTGGCTTGCCAGCGAGTGGAAGGCTGCAGAGGACGGAAAGTCCGTCGTCTTCACGCTCCGTGAGGGCGTGAAATGGTCCGACGGCCAGCCCCTCGTTCCCGCTGACGTGGTGACCACCTTCGCGCTGCAGAAGAAGATCAAGGGCGGCTACGAGTACCTGGACACGGTTGCTGCCGAGGGCACGAACCAGGTGAAGTTCACGTTCAAGACTGCCTGGTCGCCGGCCCTGTTCGACCTGGGCCAGCTGAGTATCCTGCCCGACCACGTCTGGTCCAAGATCGCCGATCCTGAGAAGGACGCCAACGAAAAGCCCGTGGGCACCGGCCCCTACACCGAGGTGGACACCTTCCAGGCGCAGTCCTTTGTGCTGAAGAAGAACCCCAACTACTGGCAGCCGGAAAAGCAGAAGATCGCCGGCATCAAGATGCTCGCCTTCGCCGGAAACGACGGCGCCAACCTCGCCGCCGCCAACGGCGACGTGGACTGGGCTCCGCAGTACATGCCCAACATCGAAAAGACGTTCATCTCGAAGGACCCGGACCACCGCAGGTACTGGTTCCCGCCCACGGGTTCGATGATTAACTGGCAGCTGAACACCACCAAGGCCCCGTTTGATGACGCCAACGTCCGCAAGGCCCTCAGCATGGCGGTGGACCGTGAACAGGTCACCAAGATCGGCATGAGCGGCTACACCAAGCCCGCCGACTGCACGGGCCTGTCCGGGAACTATGAAACGTGGAAGAACAAAAAGGTCCAGGAGGATTGCGACTGGACCAAGCTGGACGTTGACGCGGCGAACAAGCTGCTCGACGAGGCCGGCTACGCCAAGGGCGCGGACGGCAAGCGTTCCTTCAAGGACGGAAAGCCCTTCGAATTCAAGATCTCCGTGGGCGCCGCTTCCTCTGACTGGCTCTCCGTGGCCAACGTGATCGCACAGAACCTTGCCGAGGTGGGCGTCACCGTCAAGGTGGATTCCCCGGACTGGGCCGCCGTGGTGGCCGGTTACGAGACGGGCGACTTCGACTCCGGCATCGTGTGGAGCGCCAACGACCCCAGCCCGTACAAGTACTTCGCGGGCCTGATGGGAACGTCCACGGTGAAGCCGGTGGGGGAGAAGGCCTTCGAGAACTACCACCGCTTCGGTGACCCGACGGCGGACGGCCTCCTCACCGAGTTCGCCGCCGCGGCAGACGAGGACACCCAGCACGCGGTCGCGGACAAACTCCAGGAGGAGTACAGCGCCGAGGCCCCGGTCATCCCGCTGTTCGCCGGCCCGGAATGGGGCGCCTACAACGACACCCGGTTCACGGGGTGGCCCACCGAGGACAACCCGTACGCCACGCTGTCAGTCCGGGCGCCCACCACTGTGCTGGTCCTGACGTCGCTGGAACCCCGCAAGTAAMTQSRFLRSARITAASLAVGALLLTGCSANQGGQSNAGGSAESALLTIPREDMGTFVRNFNPFAPTVAPMTQQAIYESLLIYNPAKGETTPWLASEWKAAEDGKSVVFTLREGVKWSDGQPLVPADVVTTFALQKKIKGGYEYLDTVAAEGTNQVKFTFKTAWSPALFDLGQLSILPDHVWSKIADPEKDANEKPVGTGPYTEVDTFQAQSFVLKKNPNYWQPEKQKIAGIKMLAFAGNDGANLAAANGDVDWAPQYMPNIEKTFISKDPDHRRYWFPPTGSMINWQLNTTKAPFDDANVRKALSMAVDREQVTKIGMSGYTKPADCTGLSGNYETWKNKKVQEDCDWTKLDVDAANKLLDEAGYAKGADGKRSFKDGKPFEFKISVGAASSDWLSVANVIAQNLAEVGVTVKVDSPDWAAVVAGYETGDFDSGIVWSANDPSPYKYFAGLMGTSTVKPVGEKAFENYHRFGDPTADGLLTEFAAAADEDTQHAVADKLQEEYSAEAPVIPLFAGPEWGAYNDTRFTGWPTEDNPYATLSVRAPTTVLVLTSLEPRKPGPT0004430_4905DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_00607978dppB_1COG0601Dipeptide transport system permease protein DppBGTGCGCTTTATCCTGCGCCGCCTGGGTTTCTACCTGATTGCCTTCTGGGTGTCCATCACTTTGAATTTCCTGCTCCCGCGCTTTATGCCCGGTGATCCCGTCTCCCGCATGTTCGCCCGCACGCAGGACCGGATGCAGCCCGAACAGATCGAGGCGCTCCGCAAGCTCCTCGGCGTGGACGACCGGCCCCTATGGGAGCAGTACATCGGTTACCTGCACAACATGCTCACCGGGCAGATGGGTGTCTCCATCTCCCGCTTCCCCACACCGGTGACAGAGGTGATTGCCTCCCAGGTGGGCTGGACGCTCCTGCTGGGCGGGACTGCACTGGTGATTGCCGCCGTCGTGGGCAACCTGCTGGGAATCCTGGCGGCGTGGCGGCGTGGAGGCGCCATCGACTCCGCCCTCCCGCCGATCCTGATTTTCATCGGATCCTTCCCCTACTTCTGGCTCGCCATGGGCGCCCTGTACCTGTTTGGCGTCACCCTGGGCTGGTTCCCCATCCGGCACGCCTTCAGCGACACCATCGAGCCCAGCTTCAGCTGGGAGTTTATGTCCGACGTCGGCATGCACCTGGTGCTGCCGGCCCTCACTATCGTGCTGGTCTCGGTGGGCGGCTGGATGCTGGGCATGCGGAACACCATGATCGCCACCAACGCCGAGGATTACATCACGATGGCAGAAGCAAAAGGCCTGCGGCCGGGGCGGATCATGTTCCGCTACGCCGCCCGCAACGCCATGCTGCCGTCGGTCACGAGCTTCGGCATGAGCCTGGGTTTTGTGGTGGGCGGCGCGCTCCTGACAGAGGTGGTGTTTGCCTACCCCGGGGTGGGCTACCAGCTCCTGAACGCCGTGCAGGGCCTGGACTATCCGCTGATGCAGGGCCTCTTCCTGACCATCACGGCCGCCGTGCTGCTGGCCAACTTCCTGGTGGACATCCTGTACGTCCGCCTCGATCCGCGTGTGCGCAGCAACTAGMRFILRRLGFYLIAFWVSITLNFLLPRFMPGDPVSRMFARTQDRMQPEQIEALRKLLGVDDRPLWEQYIGYLHNMLTGQMGVSISRFPTPVTEVIASQVGWTLLLGGTALVIAAVVGNLLGILAAWRRGGAIDSALPPILIFIGSFPYFWLAMGALYLFGVTLGWFPIRHAFSDTIEPSFSWEFMSDVGMHLVLPALTIVLVSVGGWMLGMRNTMIATNAEDYITMAEAKGLRPGRIMFRYAARNAMLPSVTSFGMSLGFVVGGALLTEVVFAYPGVGYQLLNAVQGLDYPLMQGLFLTITAAVLLANFLVDILYVRLDPRVRSNPGPT0004445_7019DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_006081029dppCCOG1173Dipeptide transport system permease protein DppCATGACAAGCTCCATCGCAACCACAGCCTCCACCATTTCGGCGGAGACCCTCGCCGGCTCCCGTCCCGGCAAATCGTCAGGACAGTCGTCCGACGGCGGCGCCGGACTTCCGCCCCAAGGTTCAGTCCGGCAGCCCAACAGGACACTCCTGCACGGGCTGCTGACCAACAAGAAGGCCATGGCCGGCACCGCCATCCTGCTCACCTTCATCGCCCTGGCGCTGCTCGCCCCCGTGCTGTATCCGGACAACCCCTCCAAGATCACGGGCATGGCATCCCAGGAACCCGACGCTGAATTTTGGCTGGGCACAACCGCCAAGGGCCAGGACGTCCTGGCCCTGACCATCCACGGGGCGCGCAGCTCACTGCTGGTGGGCCTGACCGTGGGTTTTGCCTCCACGTTCATCGGCATCCTGGTGGGGCTGGCCTCGGCGTACTTTGGCAAGTTCATCGACGAAGCCCTGTCCCTGACCACCAACGTGTTCCTGCTCCTGCCGGGACTGCCGCTGCTGGTGATCCTGGCCGCGTTCCTGCCGCCGGGCCTTGGGACAGTGATCCTGGTCCTGGTGGTCACCGGCTGGGCGGGATCGGCCCGGGTGCTGCGCTCGCAGGCCCTGTCCATCCGCTCCAAGGACTTTGTTGCCGCTGCCGTGGTGACCGGTGAACGGCCGCTGCGGATCATGTTCCGGGAAATCCTGCCCAATATGGCCTCCATCGTGATGGGCACGCTCCTTGCGTGCATCATCTACGGAATCGGCGCCCAGGCCGGCCTGGAGTTCCTGGGCCTGGGGGACGTCAGCACGGTCTCCTGGGGCAACAACCTGTACTGGGCAGGCAATGAAGGAGCCCTGCTGACAGGCAGCTGGTGGGTGTTTGTGCCGTCCGGCCTGTGCATTGCCCTGGTCGCCTTCTCGCTGTCGCTGATCAATTACGCAGTGGATGAAGTCACCAACCCGCGCCTGCGGAAGATCCGGAAGACCAAGCCGGCAGCCACTAAATCCGCTACCTCCGGAAAGCGAGCAGCAGCATGAMTSSIATTASTISAETLAGSRPGKSSGQSSDGGAGLPPQGSVRQPNRTLLHGLLTNKKAMAGTAILLTFIALALLAPVLYPDNPSKITGMASQEPDAEFWLGTTAKGQDVLALTIHGARSSLLVGLTVGFASTFIGILVGLASAYFGKFIDEALSLTTNVFLLLPGLPLLVILAAFLPPGLGTVILVLVVTGWAGSARVLRSQALSIRSKDFVAAAVVTGERPLRIMFREILPNMASIVMGTLLACIIYGIGAQAGLEFLGLGDVSTVSWGNNLYWAGNEGALLTGSWWVFVPSGLCIALVAFSLSLINYAVDEVTNPRLRKIRKTKPAATKSATSGKRAAAPGPT0004450_2533DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-29_00609936oppD_2COG0444Oligopeptide transport ATP-binding protein OppDATGACCGTCTCCCAAACCTCCTTCGGCTCCCACGAACCGGTGCTGGAGATCAAGGACCTCACCGTGAAGTACCGCGGTGACACCCGGTCCACCACCGCCGTCGACCGCGTTTCCTTCAACATCGGTGTGGGCGAAATCTTCGGCCTGGCCGGCGAGTCAGGCTGCGGCAAATCCACCATCGCAAACGCCATCATGCGGTTGCTGCGGGACCCCGCGGAGATCTCCGGCGGCAGCATCCGATTCGGCGGCAGGGATGTCCTGTCCATGGGCAGCGAGGAGCTGCGGCGTTTCCGCTGGCAGGACGTAGCCATGGTGTTCCAGTCGGCCATGAACTCGCTGAACCCGGTGATGACCATCGGGGACCAGATCGTGGATATCTACACCACGCATGCAGGCTACTCCCGCAAGGAGTCGCTGCGGCGGGCTGCGGAACTGCTTGAGCTGGTCCGGATCGACCCCGCCCGGCTGAAATCGTATCCGCACCAGCTGTCGGGCGGGATGCGCCAGCGTGCGGTCATCGCCATGGCCGTGGCGCTGAAGCCCTCGCTGCTGATCCTGGATGAGCCAACCACCGCCCTGGACGTGGTGGTGCAGCAGGAGATTATGGCCCAGATCAAGGAACTGCAGCACGAACTGGGCTTCTCTGTCCTGTTCATTACCCACGACATGTCCCTCATGGTGGAGCTTTCGCACCGGATGGCTGTGATGTACGGCGGCCGGATTGTGGAAACTGCCCGGGCCAAGCACATCCATACGGCTCCGCTGCACCCGTATACGCAGGCCCTGATGGGGGCCTTCCCGCCGCTGACCGGCCCGCGGGTCCCGCTGACAGGCCTGGCCGACGGCGTGAAGTTCAATGACATCGCGGACCTCCAGGAAGTCTCTCCCGGGCACTTCGTCTCTCCCCTTCCCGTTCTGCAAGGAGCGCAGCCATGAMTVSQTSFGSHEPVLEIKDLTVKYRGDTRSTTAVDRVSFNIGVGEIFGLAGESGCGKSTIANAIMRLLRDPAEISGGSIRFGGRDVLSMGSEELRRFRWQDVAMVFQSAMNSLNPVMTIGDQIVDIYTTHAGYSRKESLRRAAELLELVRIDPARLKSYPHQLSGGMRQRAVIAMAVALKPSLLILDEPTTALDVVVQQEIMAQIKELQHELGFSVLFITHDMSLMVELSHRMAVMYGGRIVETARAKHIHTAPLHPYTQALMGAFPPLTGPRVPLTGLADGVKFNDIADLQEVSPGHFVSPLPVLQGAQPPGPT0004435_12489DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_006101080oppF_1COG4608Oligopeptide transport ATP-binding protein OppFATGAGCACCAACACCCCAGCCCCCGAGGTTCCAGCCCTGGAGGTGCGCGGCCTGGTCAAGGACTTCCACAGCGGCGGACTGTTCTCCCGGGCCTCCGTGCGGGCCCTGGGCGGTGTGGACCTGGCCATCGGCAAGGGCGAGATCGTGGCGCTTGTGGGCGAGTCCGGTTCAGGCAAGAGCACCCTGGCCCGCTGTGTGGCCCGGCTTGAAAAGCCCACGGCCGGCCAGATCCTGGTCAACGGCGTGAACGTCCTGAAGCGGGACCGCTTCCAGGCCTCCAGGGAATACCGGTCGCAGCTGCAGATGGTTTTCCAGGACCCGTTTGGTTCGCTGAACCCGGTCCACCGGATCGAGCACTTCCTCACCCGGTCACTGACCCTCCACGGTAAGGCGGGGACCCCGGACCAGCTGCGGACGCGCCTGGATCAGCTCATGGCCACGGTGGGCTTGACGCCGGACATGCTTAACTCCTACCCGCATGAGCTTTCCGGCGGCCAGCGGCAGCGGGTAGCCATCGCCAGGGCGCTCGCCGTTGAGCCGGACGTGATCCTGGCTGACGAACCGACGTCCATGCTCGATGTCTCCGTCCGGATCGGAATCCTCAACCTGATGCGCCAGCTGCGGGAAAGCCAGGGGATCTCCATGCTCTACATCACCCATGACCTGGCGTCTGCCCGCTATCTGGCGGACCGCATCGCCGTGATGTTCGCTGGTGAAATTGTGGAGGAAGGCGAATCGCTTGACCTGCTGGCCAACCCGGCCCACCCCTACACCCGACTCCTGGTCTCCGCCGTGCCGGACCCTTCACGCACCGGCTCCTACGATCCCGCTGAACGGGCAGCACTGCGGGCTGCGGTGATGGAATCGGCGTCGTGCGCTTTCGACGGCGACCCGCAGCAGCGCTGCTCGGCCACCGAACCGGTACGGCACGCCGTGGGTGATGCCGCCAACCGGCACTGGGTCCGCTGCCACCTCTACCGGCCGCCGGCCGCCGCGGCCGGCCACGCACTTTCGTCCGATGCCTCAGCCCCCCTCGCGGCGGCAGACGGCTCCCTCACAGAATCAAAGGCATCCGCATGAMSTNTPAPEVPALEVRGLVKDFHSGGLFSRASVRALGGVDLAIGKGEIVALVGESGSGKSTLARCVARLEKPTAGQILVNGVNVLKRDRFQASREYRSQLQMVFQDPFGSLNPVHRIEHFLTRSLTLHGKAGTPDQLRTRLDQLMATVGLTPDMLNSYPHELSGGQRQRVAIARALAVEPDVILADEPTSMLDVSVRIGILNLMRQLRESQGISMLYITHDLASARYLADRIAVMFAGEIVEEGESLDLLANPAHPYTRLLVSAVPDPSRTGSYDPAERAALRAAVMESASCAFDGDPQQRCSATEPVRHAVGDAANRHWVRCHLYRPPAAAAGHALSSDASAPLAAADGSLTESKASAPGPT0004440_6643DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-29_006111554sacA_2Sucrose-6-phosphate hydrolaseATGACTGAACTGACCCACCCCCTGGCCACCGTCCCCCGGGACGAGCTGGTGGCCCGGGCCGAGGCGGACCCGCACCGGCCGCGTTTCCACTTCGTCTCTCCCGGCGGGTGGCTGAATGACCCCAACGGTGTGGGCCAGTGGAACGGCACCTTCCACCTCTTCTACCAGTACAACCCGGAGGGAGCATTCCACCACCGCATCCTGTGGGGCCACGCCACCAGCGGGGACCTCGTGCATTGGACGGATCAGCCTGTGGCTTTGGAACCCACTGCGGGGCCGGATGCTGACGGCTGCTGGTCGGGAGTGCTGGTAAACGACGCCGGGACGCCCACGCTGGTCTACTCCGGCCGGCACGGTGAGCGTGAACTTCCCTGCGTGGCAACAGGTTCCCCCGACCTCGTGACCTGGACCAAGTCTGATGCGAACCCCGTCATCGCGGGCCCACCCGCGGGCGTGGAGATCACGGCCTACCGCGACCACTGTGTGTGGCGCGAAGGATCCCGCTGGCGGCAGCTGGTGGGCTCGGGCATCCGGGGGAGGGGCGGCACCGCCTTCCTCTACGAGTCCGAGGACCTGCGGGCCTGGACGTACGTGGGGCCGCTCCTCATTGGCAATGCCTCCGCCGGAGACCCGGCAGGCAGCAGCTGGGAAGGCACCATGTGGGAGTGCGTGGATCTCTTTCGCGCCGGCACCGGGACACTGGGGGACGGGGCCGACGGCGGCGACGCGCAAGTGGACGCCCTGGTCTTCTCCGCCTGGGACGACGGCGCCACCCGCCATCCGTTGTACTGGACCGGCCGCTACAGCGGGGATTCATTCACACCACGCCAATTGCACAGACTGGACTACGGCGGCCGCTACTTCTACGCGCCCCAGTCGTTCGCTGACGAATCCGGCAGGCGGGTGATGTTCGGCTGGCTCCAGGAGGGCCGCACGGACGAGGCCATGGTGGAGGCAGGCTGGTCCGGGGTGATGAGCCTGCCGCGCATTGCCACCCTGGACCCGGCTGGGGAGCTGGTGTTTGCCCCGGTACCTGAAATCGAATCCCTGCGCTACGGCCACGTCCGGCTGGGCCCGGAGGCTCTCAGCGGCTTCGAGGTGCTGGACGGCGTCGACGGAAACCAGCTGGATCTTGAACTGGATCTGGAACTCGAACCTGGAAGTATCTTCAGGCTCGGCGTCCTGGGCACGGCCTCGGGAACCGGGGACATGGCAGAGGAAACCGTCATTGAGGTGGGGTGCCAGGCAGGCGAGGGTTCTGACGGGTCATATATCCGGCTGGACCGCACGCGAAGCAGCCTGGACACGTCGGTGGACGTTGAGGAACTCTCCGGCCCGGTTGCCCTCCCCGACGGGGGACTGCGGCTTCGCGTCATCGTGGACCACTCGGCGCTGGAGGTCTTTGCCAACGGTAAACCCCTGACAGCGCGGGCCTACCCCACCCTCGGCGGCGGGAGCGTGCGGCTGTCCGCTGCCGGGCCGGTGCGGCTGCGGCAACTCGACGCCTGGCGGATGGAAGACGTTTTCGACGGGCCTCGCCCGCTCTTTCCCTGAMTELTHPLATVPRDELVARAEADPHRPRFHFVSPGGWLNDPNGVGQWNGTFHLFYQYNPEGAFHHRILWGHATSGDLVHWTDQPVALEPTAGPDADGCWSGVLVNDAGTPTLVYSGRHGERELPCVATGSPDLVTWTKSDANPVIAGPPAGVEITAYRDHCVWREGSRWRQLVGSGIRGRGGTAFLYESEDLRAWTYVGPLLIGNASAGDPAGSSWEGTMWECVDLFRAGTGTLGDGADGGDAQVDALVFSAWDDGATRHPLYWTGRYSGDSFTPRQLHRLDYGGRYFYAPQSFADESGRRVMFGWLQEGRTDEAMVEAGWSGVMSLPRIATLDPAGELVFAPVPEIESLRYGHVRLGPEALSGFEVLDGVDGNQLDLELDLELEPGSIFRLGVLGTASGTGDMAEETVIEVGCQAGEGSDGSYIRLDRTRSSLDTSVDVEELSGPVALPDGGLRLRVIVDHSALEVFANGKPLTARAYPTLGGGSVRLSAAGPVRLRQLDAWRMEDVFDGPRPLFPPGPT0018815_1158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOFURANOSIDASE,PGPT0018815-sacA-K01193NANA
D1-29_006123732hypothetical proteinATGCCGAAAAGACTTGTCGCAGGAATCGCCGCAGCCGCCCTTGGGCTCGGCACGCTCACCGCGGGGGCCGTGCTGGCTCCGGCAATCCTCGCCGGCCCTGCACAGGCTTCGGGCCAGGCGCCCGTAACAGCCAACAGCACCAGCAGTCCCATTCCCGACGCCGTTGCCCTGCCGGACAGCGGCACCTGGACCCGGACCGCGGACGCCGGGTACACCGCCGTCGTCCCGGCCGGACAGAACGGCACGGCCATCAGTGAACAACGGATCAGCGGCACCGCCCGGTACACCGCCGGGGTGTCCGTCGATCCCGGGACGCCCTACGGTGTGGGGACGCTGCTCTTCAGGGCCGCCGCAGACGGCAGCGGCGGGTATGCGGTGGCCATCGATCCCAACCTGGACAGGGTCAGGCTGTTCGACCTCGCCACCGGGGAAGACGTGGTTCCGTCAGCCGCAGTGCCGCTGGACACCGGCCGCACCTACTCCGTGGACGTTCATGTGGACGGCCCGCGCATCTACGTTGCGGTGGACGGCGTGGAACGCCTGGATGCCCTGGACCAGCGGTATCAAAGCGGGCATCTGGGCCTGCTTGCCTACAACGGCAAGGTCCAGTTCGGGCAGCCCTCAGCCCGCTCTGTGGAGGCGAACGTCACCGGCTGGACCAGCTCCGGCGCCGGCTGGCAGGCGTCCGCCACCGGCTTGCGTGGCTCGGCAGGGGCCGGCGCCAACCTCCGGACCGTTGCCACCGGACAGACCCCGCAGGTCACCGATTTCACCGCGGACATCCAGATCCGTTCCGCGCACGCCGTTGGAGCGTTGCTCTTCCGCAGCAACAGCGCCGGCAGCGCAGGTTACGCCGCCGAGGTGGACCCGAACGCCGGCCGGCTGCGGCTCTACCGGATCGGCGACAACGCGACTCTGGGCACCTACAACACACCCATCACGGTGAACGAGGTTTATCGGCTCCGGGTGACGGCCGACGGCGGCAAGCTTGCCGTCCACTGGCAGACCGGCTTCCTTGACCCGAACGGCTACACCCCGGTCATTACCGCCCAGGACGCCTCCCATGGTTCCGGCCACGTCGGACTTCTGTCCTTCAATGGGGAATCGGTCTTCCAGGGGATGACGCTCAAGGGCCTGGAAAGTTCCCTCCAGGGCTGGCGGACCGCAGCCGGCAGTTGGGAACCTGACACCAGGGGCATGCGCGGCGCGGTGGACGGCTTGCCGGCGGGTGGGGAAGCCGCGCGCTTTATCCCGGCGGTGGCATCCGACGTCGTGGTGTCCCTTGACCTGGACGTTGCGGCCCCGGCCACGGCCGCTGTGGTGGTCCGCGGCAATGCTGACGGCAGCGGCGGCACAGAACTGAGGATCGACCCCAGCGCCGGGACCGTTCTCCTGAACGACCGGGCGAGCGGAACTGTCCTTGCCTCCGGCGCAATGCCACCGCACAGCTTTGCCGCCGGCCAGCTGAACCGGGTCCAGCTAACCGTTCAAGGGACACAGGCCACTGCCCTGGTCAACGGCATTCAAGCGCTTAGCGGGACGGCCGGGACTGCTGCAGGCAAGGGCTTCGGGCTGCGCGTTGGCGGCGGCGGAGCCTACTTCCAGAACGTCCGGGCGGACGATGTGGCGGCGTACATGAACGGCCTGTACCAGCCCGGCTACCACTACAGCCAGAACTCGGGCAACAGCTCAGACCCCAACGGGCTGGTGTACTTCGACGGCGAATATCATCTGTTCCACCAGGACCGGGGCCGCTGGGCCCACGCCGTGAGTACCGACCTGCTGCACTGGAAGCAGCTGCCCATCGCCCTGCCGCACCTGGCAGCCGGCGAATCGTGGTCCGGGTCCGCCGTGGTGGACGCCACGGACGCCACCGGACTCTTCGGCGGCGGGCAGGGCCTGGTGGCTTTCTACACCAGCTTTAATCACGATGCACCCAACGGGAACCAGTCGGTGCGCGCCGCCTACAGCGCCGACCATGGCCGTACCTGGCAGGTGGCCCAGGTCCCACCCGTAGTGCAAAATCCCGGAGGGTCCGACGGCGGCTGGGACTTCCGGGATCCGAAGGTCACCTGGGACAGCGCCACCGGTAAATGGATCATGGTGGTGGCCGCCGGGGACCACCTGCGGTTCTACACCTCCACAAACCTGCTGCACTGGACCTTTGCCAGCACCTTCGGTTACGGCAATTGGCTGCGCGGCGGAGTGCTGGAATGTCCGGACTTTTTTGAACTTCCCGTCGAAGGCCAGCCCGGGGTGAAGCGCTGGGTGCTCTGGTGGAGCACCGGAGCAGTGCGGTCGACGAACGGCTCCGCCGCCCAATATGTCACCGGCACCTGGAACGGTACCGCATTCACATCTGATACCGGTCCTGACCAGGTGCTGCAGGCGGATGCCGGCCGGGACTACTACGCCGCGATGAGCTTCTTCGGCGCTCCGGACGGCCGGCGCATCATGCTCGGATGGATGAGCAACTGGGACTATGCCTTCAGCCCTCCCACGGGCCGCTGGAACGGCCAGCTGAGCGTTCCGCGTGAGATCAGCCTGAAGGACGTTCCGGGCGCCGGGCTCCGGCTGGCCCAGGAACCCGTTCCGGAGCTTGCCGGCCTGCGGAGCTCCTCATGGCAGGCCTCGGATGTCCTGGTGACGCCGACGTCGGCCAATCCCCTGACTGGAGCCTCCGGGCGGTCTTTCGAACTGGAGGCCGAGGTGGCCGTTCCATCATCCGGGGGTGCATCGGCCTTTTCCTTCGGACTTCGGAAGGGGATTGCGGGGGGTGTGGTCCAGGAAACCCTGCTCCGCTATGACACCGGCGCGGGAACGCTCACGCTGGACCGCGGCCGGTCCGGCCGGGAGGATTTCACCAGGTATTTTGCCGCTGATCCGGCGGACAACGCCGGCACACGGTGGAGTTCCTCCACTGTTGCGGCGGCAGGCGGCGGCACGGAACGCCGGGTCAGCGTGCGGGTACTGGTGGATTCCTCATCCGTGGAAGTCTTCGGCGGAGACGGAACGGCGGCCATAACATCGCTCATCTTCCCCGGCCCGGACTCCACCGGACTGTCCCTGAACGCTTACGGCGGGAACGTCAGGCTGGTATCCGCCACCGTTCATCAGCTGGCTGACACCGCCCGGCTGACCAGCGCGCCGCCGTCGGCCGTTCTGCCGCCGGCAACGGGCGCAGCACGGCATAACATGGGCGCCTACACAGTGGTGCCCGGTGGCCGGTGGGAAAGCACTGGAGCGGGGCTGGCGGGAACATTCGACAAGGACTCAACGGCATTGAGCGCGGGAACCTACGCCAATGTCAAGGTGGAGGCCACCGTGCGCTTCGGCGGGGAAGCCTATGCCGGGGCCATGCTCAACAGCGATCTGGCGCCCGAGCGCGGGGACGGCGGTGCCGGATCCGTGCTGCTGCGGGCGTCGGATGACGGGTCTACCGCCTACTACGTCAATCTGGATCCAAACCTGCGGTTGGTGCGGATTTTCAAGCTTGAGAACGGCTCCTTCAATCCCGCTACCAGCATCCTGGCCAGCGTCCCGGTGCTGCTCACCCACGGCGTGAGCTACCGGCTCGAGGCCCAGGCCGACGGCGGCAGGCTTACGGTGAACCTGGACGGCGCCCGGCTGATCGACGTGGTGGATTCCAGCCTGGCATCGGGCAGGGTGGGACTGAATGTCTTCGACGGACGGGCGGCCTACCAGGACGTGAGCATCACGGCCCTGTCCTGAMPKRLVAGIAAAALGLGTLTAGAVLAPAILAGPAQASGQAPVTANSTSSPIPDAVALPDSGTWTRTADAGYTAVVPAGQNGTAISEQRISGTARYTAGVSVDPGTPYGVGTLLFRAAADGSGGYAVAIDPNLDRVRLFDLATGEDVVPSAAVPLDTGRTYSVDVHVDGPRIYVAVDGVERLDALDQRYQSGHLGLLAYNGKVQFGQPSARSVEANVTGWTSSGAGWQASATGLRGSAGAGANLRTVATGQTPQVTDFTADIQIRSAHAVGALLFRSNSAGSAGYAAEVDPNAGRLRLYRIGDNATLGTYNTPITVNEVYRLRVTADGGKLAVHWQTGFLDPNGYTPVITAQDASHGSGHVGLLSFNGESVFQGMTLKGLESSLQGWRTAAGSWEPDTRGMRGAVDGLPAGGEAARFIPAVASDVVVSLDLDVAAPATAAVVVRGNADGSGGTELRIDPSAGTVLLNDRASGTVLASGAMPPHSFAAGQLNRVQLTVQGTQATALVNGIQALSGTAGTAAGKGFGLRVGGGGAYFQNVRADDVAAYMNGLYQPGYHYSQNSGNSSDPNGLVYFDGEYHLFHQDRGRWAHAVSTDLLHWKQLPIALPHLAAGESWSGSAVVDATDATGLFGGGQGLVAFYTSFNHDAPNGNQSVRAAYSADHGRTWQVAQVPPVVQNPGGSDGGWDFRDPKVTWDSATGKWIMVVAAGDHLRFYTSTNLLHWTFASTFGYGNWLRGGVLECPDFFELPVEGQPGVKRWVLWWSTGAVRSTNGSAAQYVTGTWNGTAFTSDTGPDQVLQADAGRDYYAAMSFFGAPDGRRIMLGWMSNWDYAFSPPTGRWNGQLSVPREISLKDVPGAGLRLAQEPVPELAGLRSSSWQASDVLVTPTSANPLTGASGRSFELEAEVAVPSSGGASAFSFGLRKGIAGGVVQETLLRYDTGAGTLTLDRGRSGREDFTRYFAADPADNAGTRWSSSTVAAAGGGTERRVSVRVLVDSSSVEVFGGDGTAAITSLIFPGPDSTGLSLNAYGGNVRLVSATVHQLADTARLTSAPPSAVLPPATGAARHNMGAYTVVPGGRWESTGAGLAGTFDKDSTALSAGTYANVKVEATVRFGGEAYAGAMLNSDLAPERGDGGAGSVLLRASDDGSTAYYVNLDPNLRLVRIFKLENGSFNPATSILASVPVLLTHGVSYRLEAQADGGRLTVNLDGARLIDVVDSSLASGRVGLNVFDGRAAYQDVSITALSPGPT0019220_10DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LEVAN_METABOLISMCE-EPS-LEVANBIOSE_BIOSYNTHESIS,PGPT0019220-sacC|levB-K01212NANA
D1-29_006131254ybjJ_1Inner membrane protein YbjJATGGGTCCATCATCTCCCTTCAACGTTGATCGGCGCATGCAACGCCGGCGGCCTCCGCCGTTCTGGACCCTGTTACTCCTTTTCGGAGGTAACGGGTTGCAGGCTGGGTGCTACACCTTGCTGGTAGCGGACCTCGCCCAAGCGCTGCGGCTGTCTCCCGGGCCCCTGGGGCTCGCGCTGGCGGCCTTGTCTGCTGGTGGCATGATCGGCGTGCTGGTCCTCGGCCGTCTCATGGACACCTGGGGCCGGCGCAAGGTCCTGGTGCTGGGATGCGCAGGCGGCGGAATGTTCTTCATTGCCCTGGGCCAGGTGAACACCCTGCCGATGCTGATGGTTCTGATGTCGCTGGGAGGGGCCCTGTTGTCAGGGTTCGACTTGTCGCCCACCACCCTCGGTGGCGACTACGAGCGTGAACATGGAACAGCAGCGATGAACCCATTCTTTGCTGCCCAGGATCTCGGTGGTGCAATAGGAGCCGCGGTCTGCGGCCTGTCCCTTGGCCTGGGAGTCAGCTACTCCGTCCTCTATGCTGCGCTGGGATCACTTCTCGTCATTCTTGGACTGGCGTCGTTCTTCCTGCCACTGCCCAATCCGCCAACGGCGCTTGCCACGGCAGCTTCCCACGCTGTGGCCGCGGCACCCATGGAGCCAGGACGGCGGACCCGTGTGGAGTCCGCCAATGTCTTAGTGAATCGCGGAGTGCTTTCGGCTCTGGCGTTCGTCGCACTTATCTCTGTCATCGACGCCGCCATGGAGGGCTTTTCAAGTCTGTACTTGCGGGACACCCTCGGGGCAGGACCCGCTTTGGCAGGGCTGGCCATCGCGGCCTCCCTGGTTGCCAGCGGTGCCGGACGCCTGGGCGGGCACAAACTACTGCAGCGCCTGAGTGAACGAAAGGTAATGCTGATTGCTGCGGGAGCCACAGCACTGTCAATCGCCGTGATGATCAGCAGCAGTTTCGCCGTTGTGGCTGGAATCGGTCTGCTGCTTCTGCGTTTTAGCCAAGGACCAATTGTGCCAGTCGCTCATTCATTAGCTGCCCGTTCCACACATCACCGGGCCGGTCAGGCCTCCTCGCTTGTGTGGGTGGCGCTCTACGCAGCCTTCCTCAGCGGCCCGCTCCTCGTTGGGGTTATTGCCGAAGCCGGAGGCCTCCGGCTCGCGCTCGGGTGCTTCATCAGCGCGGCCGTCCTTATCGGGATACTGGCAACAACCCTGGCTAAACCCGTCCTGCGCGACGGGCCCACAAAGTAGMGPSSPFNVDRRMQRRRPPPFWTLLLLFGGNGLQAGCYTLLVADLAQALRLSPGPLGLALAALSAGGMIGVLVLGRLMDTWGRRKVLVLGCAGGGMFFIALGQVNTLPMLMVLMSLGGALLSGFDLSPTTLGGDYEREHGTAAMNPFFAAQDLGGAIGAAVCGLSLGLGVSYSVLYAALGSLLVILGLASFFLPLPNPPTALATAASHAVAAAPMEPGRRTRVESANVLVNRGVLSALAFVALISVIDAAMEGFSSLYLRDTLGAGPALAGLAIAASLVASGAGRLGGHKLLQRLSERKVMLIAAGATALSIAVMISSSFAVVAGIGLLLLRFSQGPIVPVAHSLAARSTHHRAGQASSLVWVALYAAFLSGPLLVGVIAEAGGLRLALGCFISAAVLIGILATTLAKPVLRDGPTKNANANANANA
D1-29_00614414hypothetical proteinGTGTTAGGCAGTCACACTGAAGTAACCGCAGTGCCGGCACCATGCGGAGGCGAAAACCATCCGGACTGCGGCATCCGTGACGTCCTGGACCGGATCGGTGACAAATGGTCCGTGCTGGTCATCGTGGAACTGGCGTCCGGCACCAGGCGCTTCCGGGAACTGCAGCGAACGATCCATGGGATCTCACAGCGCATGCTGACGCTCACGGTCAGGCGTCTGGAACGTGATGGCCTGGTCACCCGAACGGTCTACCCAACCGTCCCTGCCCAAGTCACCTACGAGCTCACCGAACGCGGACGCGGCCTCGTTCAGCTGGTCAAACAGCTCGCCGACTGGTCCTTGGACAACAAAGAAGCAATAGGCGCGTCACGCGAGCTGTATGACCTCCAGAACCCAGGGACAGAAATCCGCTAGMLGSHTEVTAVPAPCGGENHPDCGIRDVLDRIGDKWSVLVIVELASGTRRFRELQRTIHGISQRMLTLTVRRLERDGLVTRTVYPTVPAQVTYELTERGRGLVQLVKQLADWSLDNKEAIGASRELYDLQNPGTEIRNANANANANA
D1-29_00615801qorB_2COG0702Quinone oxidoreductase 2ATGATTCTTGTTACCGGGGCTTCCGGCAGCCTCGCCTCTGCCATCCTCCGTCACCTTTCCAAGGCAGGCGTTTCTGCATCCGGGGCCACCCGCAATCCGGCTCAGCGTCCACACCTTAGGGTGGTCGACTTCGACTCACCCGAAAAACTTTCCTTCACTGGCGTGGACACTCTCGTCCTGGTTTCTGCCGGAGCGGAAGAAGACGACGTGGTCATCGGCCGCCACGGGAATGCCATCACAGCGGCAGAGCGTGACGGGGTGAAGCACATCGTGTACACGAGCCTCGCCGCCGCCGGCGACCATCTGGGATTCGCCCTGGCCCACCGCTGGACGGAACGGCGCCTGCAGAACGGAACCGTTCGGTGGACGATTTTGCGGAACGGCTTGTACGCAGAGCTGGTCGGCCAGCTCCTGGCTCCGCGGGAGGGAGTCATCTCGGCTCCGTTTGGCCAAGGCGGCGTCGCCGCGGTGGCCCGTAACGATCTCGCAGAAGCTGCGGCTAAAATTGCCGCTAACCCGGAAAAGCATCACGACAGGATCTACGACCTTGTCGGAAATGAAGTCATCACCGCGCAGAAAGTCGCTGACAGGCTGGGTGCAGCCTACCGGCCGGGCACACTTGGCGAACTGAGGAAGGCCTTGGATTCTTCATCCCTTCTGCCATTCCAGCTTCCGATGCTGCTGTCCATCCATTCAGCTGCATCCCATGGATTCCTTGAAGAGACCGGCACTGACATCTCCGACATCCTTGGACGGGAGCTGGCGAATCCCCTGGATGTTGCCTCAGCCGCGGCCGGCTGAMILVTGASGSLASAILRHLSKAGVSASGATRNPAQRPHLRVVDFDSPEKLSFTGVDTLVLVSAGAEEDDVVIGRHGNAITAAERDGVKHIVYTSLAAAGDHLGFALAHRWTERRLQNGTVRWTILRNGLYAELVGQLLAPREGVISAPFGQGGVAAVARNDLAEAAAKIAANPEKHHDRIYDLVGNEVITAQKVADRLGAAYRPGTLGELRKALDSSSLLPFQLPMLLSIHSAASHGFLEETGTDISDILGRELANPLDVASAAAGPGPT0009465_2116DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009465-qorB-K19267NANA
D1-29_00616516hypothetical proteinGTGGTGGCGGCAGCCCTCGAACTTTTCTCCGAGCGGGGCGTCAGCGGGACCTCCCTGCAGATGATTGCCGATCGCCTGGGAATTGGGAAAGCCGCCGTCTATTACCAGTTCAGGACCAAGGACGGCATCATCGAAGCGGTCCTCGCGCCCGCCTTCGAACAGATGCGCCGCATCATCGCCGACGCCGAAGCTTCGCAGTCACCTGAGGAGGCGGCCATCGTGGGAATCTCCGGCCTCGTGATCGCTCAACGGGAAGTGGTGGCGGCACTCAGCCATGATCCGGAAGTCCGCCGCTTCCTCGAGACACACAGCGAGGCAGCCGAACTCATTTTGCAGTTAGGCAGGATGCTCTTGGGGCCGGAACCAGACGCCCGCCGCAGGGTGGCTGTTTCCCTGTTTGGCGGAGGAATTGCCAGCGTCGGCATTGATCCCGCCCTGACCGATATAGACGATGAAGCTCTCCGCAGCGAACTCATATCCCTTGGACAGCTTCTTCTGACAACAGAACGCTGCTGAMVAAALELFSERGVSGTSLQMIADRLGIGKAAVYYQFRTKDGIIEAVLAPAFEQMRRIIADAEASQSPEEAAIVGISGLVIAQREVVAALSHDPEVRRFLETHSEAAELILQLGRMLLGPEPDARRRVAVSLFGGGIASVGIDPALTDIDDEALRSELISLGQLLLTTERCNANANANANA
D1-29_006172250ydfJ_1COG2409Membrane protein YdfJATGGCCGCTTTTCTATACCGTTTTGGGCGCCGTATGTTCCGGCGCCGGCGTCTGGTCCTCATCCTGTGGGCCATCGTTCTTGCCGGGCTGGGGGTCGGCGCCACAACGTTGTCCGGCCCTGTATCCAATTCGGTATCGATTCCGGGTACGGAATCGCAGCGGGCGCTGGACTTGCTTACGTCGCGGACGGGGGCCAACGCAGATTCGGCTACAGCGAGGGTGGTATTTGTCGCCGCTGATGGCCAGACCCTGGCAACACCGTCAGCGCAGGAGGCAATCCAGACTGCGGTGAAGAACATCTCAGAGCTTCCACATGTCAGGGCCGTGGGAGATCCTTTCGTTTCACGCGCGGTTTCACCTGATGAGCGCACTGCATTCGCCACGGTCAGCTATGCGGTGAAGGCCTCCGACCTGGGAACGGCAGAGCGTGAAGCGCTGTTCGAAGCAGGTCGCAGCGCCCAGTCAGCGGGCCTGACTGTTGAGTTCGGTGGCGATGCTGTCACGGCATCCCCGGAGCAGAGCGCCACTGAGGGAATTGGCGTGATCGTGGCAGCCCTGGTTCTCCTGATCACCTTTGGAGCGCTCGTTGCGGCCGGACTGCCGCTGCTGACTGCGATTATCAGCGTTGGTGCCGGGATGCTCGGCATCCAGATCGCCAGCGGCTTCTTCGAGCTCGGTTCCAATACCGCGTCCCTGGCCCTCATGCTCGGCCTGGCGGTGGGAATTGATTACGCCCTGTTCATCGTCTCGCGGTACCGGCATGAGCTGATCGAAGGTCATTCCCCGGAAGAGGCGGCGGGCCGGGCGGTTGGTACGGCCGGATCGGCGGTTGTGTTCGCAGGGCTGACCGTCATTATCGCCCTCGCGGCGCTGTCTGTGGTGGGCATCCCGTTCCTGATGCAGATGGGCCTGGCCGCCGCTGTTACTGTCCTGGGCGCAGTTGTTATTGCCGTCACCCTGCTTCCGGCCCTGCTTGGCTTCGCCGGAGAAAGTGTCCTTGGTCGGAAGGGCCGCGCGGCCCGGGCAACCGGAGGAACCGAAATGCCGGAGAGCCTGCGGCTCCGGGCGCCCTTGGGGGAGCGGTGGGCCCGCGGCGTGCTCCGCCACCGCGTCCTTGCGGTGCTGGGTGTCATCATCACGCTCGGCGTCGTGGCAATACCTGCACTGGACATGCGCCTTGGGCTGCCTTCCGACGCGACAGCCTCTGCCCGGACCACAGAGCACAAGGCCTACCAGGCACTGGCTGACGGTTTCGGGGCCGGCTTCAACGGCCCTCTGGTGATCGTTGCCGACCTCGCCAATGCCGGGGCGCCCCAGCAGGCGGCACAGACCATCGGCGCGGACCTGGCCAAGATCGCCGGTGTCGCCGTCGTAACGCCGGCTGAGTTCGGACAGGGCGGCGACATCGCAGTGATCACCGTTATTCCGAAGAGCGGGCCAACCAGCGTCCAGACGGAGGACCTTGTCCATGAGATCCGTGCAAATGCCGACGACTGGAGGTCCCAGACCGGCGCGCAGGTCTACGTGACCGGAACCACCGCTGCAGGCATCGACGTCTCGCAGAAACTCTCCGATGCCCTCGTTCCTTATCTTGTTGTCATTGTCGGGCTCGCATTCATTTTGCTGATGCTCGTCTTCCGCAGCATTCTCATCCCGCTCAAGGCCGTCGGCGGCTTCCTTCTCAGCGTTATGGCAGCTTTCGGCGCCGTGGTGGCGGTATTCCAGAATGGGTTCGCCGCGGATCTCCTCGGCATCGACAACCCCGGACCCATCATCAGCTTCCTACCCATTCTCCTGGTGGGCATCCTGTTCGGCCTCGCAATGGACTATGAAGTATTTCTCGTGACCCGGATGCGCGAGGAGCGCGTCCACGGCGCCACCGCCGACGAATCGATCGCTCTCGGATTCCGACACGGGGCGCGCGTAGTCACGGCCGCCGCCCTGATCATGGTTGGCGTGTTCGCCGGGTTCATCACGGCTACCGAGCCCGTGGTCAAGTCCATCGGCTTCGCCCTTGCCATCGGGGTATTCGCCGACGCGTTCCTGGTACGGATGACCCTCGTTCCTGCCCTGATGTCCCTGCTCGGCAATAGGGCGTACTGGCTGCCCCGGTGGTTTGAGCGTGTCCTGCCCGACCTTGATGTGGAAGGCAGCAACCTCACCAAATCCCTTGACACGGCGCCCGCGACATCAGCACCTGCCAGCCAAAACGACGGGAACGACCGGAAGCCCGCGGCATTGCGGCACTGAMAAFLYRFGRRMFRRRRLVLILWAIVLAGLGVGATTLSGPVSNSVSIPGTESQRALDLLTSRTGANADSATARVVFVAADGQTLATPSAQEAIQTAVKNISELPHVRAVGDPFVSRAVSPDERTAFATVSYAVKASDLGTAEREALFEAGRSAQSAGLTVEFGGDAVTASPEQSATEGIGVIVAALVLLITFGALVAAGLPLLTAIISVGAGMLGIQIASGFFELGSNTASLALMLGLAVGIDYALFIVSRYRHELIEGHSPEEAAGRAVGTAGSAVVFAGLTVIIALAALSVVGIPFLMQMGLAAAVTVLGAVVIAVTLLPALLGFAGESVLGRKGRAARATGGTEMPESLRLRAPLGERWARGVLRHRVLAVLGVIITLGVVAIPALDMRLGLPSDATASARTTEHKAYQALADGFGAGFNGPLVIVADLANAGAPQQAAQTIGADLAKIAGVAVVTPAEFGQGGDIAVITVIPKSGPTSVQTEDLVHEIRANADDWRSQTGAQVYVTGTTAAGIDVSQKLSDALVPYLVVIVGLAFILLMLVFRSILIPLKAVGGFLLSVMAAFGAVVAVFQNGFAADLLGIDNPGPIISFLPILLVGILFGLAMDYEVFLVTRMREERVHGATADESIALGFRHGARVVTAAALIMVGVFAGFITATEPVVKSIGFALAIGVFADAFLVRMTLVPALMSLLGNRAYWLPRWFERVLPDLDVEGSNLTKSLDTAPATSAPASQNDGNDRKPAALRHPGPT0028595_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TOXINES_NEUTRALIZATION_YDF_SYSTEM,PGPT0028595-ydfJ-K11625NANA
D1-29_00618354hypothetical proteinATGGTGGGCGCCCCACCCGTCACCTACATCTCGGCAGCAGTTGATAACCGGAAAGGAACCAAGGCCATCAACATGTATTCGCTGAGAATTTACACTCCTGAAGGCAGGGAATTGAAGTATGCAGGAGCCAGCCCCTACGTCGATGATCTGCGCCGCAGGCTCCCCCCGGATACGCCGTCCGAAGTGTTTAACAAGTTCATTGAGCTCTCGGATGCCTACCTCGATGATGCCTCGCCCCTGGAGGTCAAGAACTTTGTCCTGGTTGGTCCCGAGGTACCGGCCCAAATCACCGGAATCACGGTCTATCCGACTGGCGGATTCCCACCGGTAAGCGCTGAACCTGGCCCCCAGTGAMVGAPPVTYISAAVDNRKGTKAINMYSLRIYTPEGRELKYAGASPYVDDLRRRLPPDTPSEVFNKFIELSDAYLDDASPLEVKNFVLVGPEVPAQITGITVYPTGGFPPVSAEPGPQNANANANANA
D1-29_006191596lsdA_1LevansucraseATGCACAAGCACCCCAATTCACCCCGGATGCTGCGGTGGCGTTCTGCCGCCGCAGCACTGGCGGCAGCCGTAGCCGCATCGGCTTTCCTGGCCGTTCCGTCGGCGCAGGCCAACGAACCGTCCGATCCGCCGGCCGCACAGCAGATGCCGGCCCCCACCCCCGGCTTCCCGCTCCCTACGACGCACACGCAGCAGGCCCATGACCCGGCGTCGGACTTCACCGCAAAGTGGACCCGCGCCGACGCCAAGCAGATCATGGCCCAAAGCGATTCCACTGTGACTCCCGGCGAGAACTCCATGAGCCCGGACGTCACCATGCCGGAAATCCCCGAGGATTTCCCCACCATGAATGAGGATGTCTGGGTCTGGGACACCTGGTCCCTGACGGACGAGCACGCCAACCAGATCAGCTACAAGGGCTGGGACGTCATCTTCGCGCTCGTGGCGGACCGGCACGCCGGCTACGGCTTTGACCAGCGCCACTGGAACGCCCGGATCGGCTACTTCTTCCGCAAGACCAATGCGGACCCCGCCACTGACAAGTGGAACTACGGCGGCCACATGTTCGCCGACGGTGCCTCCATCGGAAACACCGAATGGTCAGGGTCCACCCGGCTGATGCAGGGTGACCAGGTCAACGTCTTCTACACCGCCACCACCTTCTACGATGTGGCCGAGCGCAACGCAGGCGGCGGCGGAATCGCCCCGGATGCGGCCATCGCCAAGGCGCTGGGCAGCATTCACGCCGACAAGAACGGCGTCACCTTCGACGGCTTCGAGCACACCAAGCTGCTGGAACCCGAGGGCAAGATGTACCAGACAAAGGAACAGAATCCGGGCTTTGCCTTCCGTGATCCCTACACGTTCGCGGACCCGGCGCACCCCGGCAAGACCTTTATGGTCTTCGAAGGAAACACCGGCGGCACCCGCGGCGAGTACCGCTGCGAGCAGGAGGACCTGGGTTACCAGCCGGGCGATCCGAACGCTGAAAGCCTGGAGCAGGTCAACAACACCGGCGCCTGGTTCCAGACTGCCAACGTGGGCCTCGCTGTGGCTGAGAACAAGGACCTGACCAAGTGGTCCTTCCTGCCTCCCATCCTGTCGGCCAACTGCGTCAATGACCAGACCGAGCGGCCCCAGATCTTCATCCAGAACGAAGATGGCAAGAACAAGTACTACCTCTTCACCATCAGCCACCAGTTCACCTATGCTGCCGGAATGCGCGGCCCCGACGGCGTCTACGGCTTTGTGGGCGACGGCATCCGCTCCGACTACCAGCCGATGAACAACAGCGGCCTTGCCCTGGGCTCCCCGACGGACCTGAACCTGCCGTCCGAATCACCGGAAAAGCCGACCGCCAACCAGAACGGCCGCCAGTTCCAGGCCTACTCGCACTACGTGCAGCCCGGCGGCCTGGTGCAGTCCTTCATCGACAACGTGAACGGCGTCCGCGGCGGATCCCTGTCACCCACCGTGAAGATCAACTTCCGCGACGGAATCTCGCAGGTTGACCGCACGTTCGGCCAGAACGGCCTCGGCCCGTTCGGCTACCTGCCCACCAATGTCAACGTAGGCGGTGCCGGCCACTACAAGTGAMHKHPNSPRMLRWRSAAAALAAAVAASAFLAVPSAQANEPSDPPAAQQMPAPTPGFPLPTTHTQQAHDPASDFTAKWTRADAKQIMAQSDSTVTPGENSMSPDVTMPEIPEDFPTMNEDVWVWDTWSLTDEHANQISYKGWDVIFALVADRHAGYGFDQRHWNARIGYFFRKTNADPATDKWNYGGHMFADGASIGNTEWSGSTRLMQGDQVNVFYTATTFYDVAERNAGGGGIAPDAAIAKALGSIHADKNGVTFDGFEHTKLLEPEGKMYQTKEQNPGFAFRDPYTFADPAHPGKTFMVFEGNTGGTRGEYRCEQEDLGYQPGDPNAESLEQVNNTGAWFQTANVGLAVAENKDLTKWSFLPPILSANCVNDQTERPQIFIQNEDGKNKYYLFTISHQFTYAAGMRGPDGVYGFVGDGIRSDYQPMNNSGLALGSPTDLNLPSESPEKPTANQNGRQFQAYSHYVQPGGLVQSFIDNVNGVRGGSLSPTVKINFRDGISQVDRTFGQNGLGPFGYLPTNVNVGGAGHYKPGPT0013775_27DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LEVAN_METABOLISMCE-EPS-LEVAN_BIOSYNTHESIS,PGPT0013775-sacB-K00692NANA
D1-29_00620489hypothetical proteinATGGAATACCAGAACCCACAACCCGATGCGGGTGTCCGTAACCACGTCGCCGCAAGTCCGACGCAGGCGCCGGTTCCGGGCCACGGCCGCACCGTCATCTCTGAAACTGCCGTTGCCAAGGTCGCCGGCATTGCCGCCCGCGCCGTACCCGGCGTCTACTCGTTGGGTTCCGGGTCCTCCCGTGCGCTCGGCGCCATCCGGGACGCCGTTGGCAGCTCGGACCATGCTGCAGGCGTGCACGCAGAGGTGGGCGAGACCCAGGTGGCAGTGGACATCAACCTGGTTGCCACCTATGGCACGCCCCTGCATTCGCTGGCAGATCAAGTCAGGTCTGCCGTTTACCGGGCCGTCGAAGAGCTGGTGGGACTTCAGGTCATTGAGGTAAATGTTGAAATCACGGACGTGTATGTGGCGCCGCCGGTGAAATCCCCGGCTGGGACCGGAACGGCCGGGGCAGTGGGCACCACCGAAAGAGAGGCACTCCTGTGAMEYQNPQPDAGVRNHVAASPTQAPVPGHGRTVISETAVAKVAGIAARAVPGVYSLGSGSSRALGAIRDAVGSSDHAAGVHAEVGETQVAVDINLVATYGTPLHSLADQVRSAVYRAVEELVGLQVIEVNVEITDVYVAPPVKSPAGTGTAGAVGTTEREALLNANANANANA
D1-29_00621192hypothetical proteinGTGAACCTGACCGTCGTGGGAATCGCCATTGGCGCCTTCGTAGCCTTTATGTCTTTTGCTTTCGGACTGTGGGGCTTTCTGGTTTCGCTGCTCTTTATGGCTATTGGTGCCCTGCTGGGCCGCGCCGCCGAAGGGAAACTGGATCTTCGCGGCGTCCTGGATGCCATCACCGGCCGGCGCTCCTCGTCATGAMNLTVVGIAIGAFVAFMSFAFGLWGFLVSLLFMAIGALLGRAAEGKLDLRGVLDAITGRRSSSNANANANANA
D1-29_00622381hypothetical proteinATGAGCTCGCCGGCACCGGCCTTACCCGGGCAGGTATTGAACGGCCATAACCGCATCAGCACTCAAGCCCTGACCAGCCTTGCCAAGGCAGCGGCCGCCGATGCGCTGGGCGTGGACGCCGAGGATATCCGGGCAGACTGGTCCGACGACGACGGCCTGCTTGCGCTGTCTCTCGTCGCACCTATCAAGATCCCGCCGCTCAAGGCAGTGGCACGGGACCCCGGCCGTGTGGCCGCCTTCGGAGGAACCATCAGGGACCGGGCAGTCACGGCCAAGGCTCAGATCCTGGCGACTGTCGCCGCCCTCAGTGGTGCCAGCCTGAGCAGGGTGGACATTCGGATCAGCGGTGCCCGGATCAGTGAAGGAGGCCGCGTCCAGTGAMSSPAPALPGQVLNGHNRISTQALTSLAKAAAADALGVDAEDIRADWSDDDGLLALSLVAPIKIPPLKAVARDPGRVAAFGGTIRDRAVTAKAQILATVAALSGASLSRVDIRISGARISEGGRVQNANANANANA
D1-29_00623675hypothetical proteinGTGAGGCAGGGGCAGGATGACCTGGTGTCAGTGAATTTGAGGCCACGTCGGCAGGACCGGGAGAACCCGGGCGCCGACCAACCGGGGCCGGACATGCGACGTATCCTGCACCGCGAGACCCATTCATCCCGTGCGGCAGTTGCCACGCTGGCTGCCGTCTTGGTGATGGTGCTGGCCGCCTACGGCCTTCTCGAAGCTGCGGTGCACGCCATTGGGCAGCCGGCGTGGCTGATCGAACCCCAGTTGGCTGCGGAGCGCATCGTGGCGCTGCCGGCCGGACTGCCGCCCTTGCTGCTCGGCGTCCTGGGAGCTGTCCTGGCGATGGTGGGGCTGTTCTTCTTCCTCAACGCTGTTCTTCCCGGCAGGCGTGCCAGGCATGTGCTGAACGGCACCGGCCCGGATCCGGAAAACGCACCGGCAGTGGTGGTGGATGACGAGGTCATTGCTTCGGCGCTGGCCCGCAGCGCCAGGCTCGCTGCGAACGTTACGCCGGAGCAGGTCATGGTGGTGGTCTCCCGGCGCCAGGTCATCGTGAATGTCCGCCCCACGTCAGGGGTGCCGGTGGATGGAACCGCTGTCCTTGCCGCAGTTCAGGAAGAACTTGGCCAAATGGCCCTGGTTCCGTCGCCTGAGGTGCAGGTCAATGTCGCCACATCGGGGGTGATTGGCGCATGAMRQGQDDLVSVNLRPRRQDRENPGADQPGPDMRRILHRETHSSRAAVATLAAVLVMVLAAYGLLEAAVHAIGQPAWLIEPQLAAERIVALPAGLPPLLLGVLGAVLAMVGLFFFLNAVLPGRRARHVLNGTGPDPENAPAVVVDDEVIASALARSARLAANVTPEQVMVVVSRRQVIVNVRPTSGVPVDGTAVLAAVQEELGQMALVPSPEVQVNVATSGVIGANANANANANA
D1-29_00624612hypothetical proteinATGAACAGTACACCCGCGCTGCTCAACCGGATCCTGATAGGCATCCTGGGTGTTAAGTTGCTGGCTGTTGGCCTGCTGCTGATTCTGCTGGCTACGGTGCCGGCCGTCGCAACGTGGTGGCATTCGTGGTCCGGCTCAGCCTGGAACGGAATCAGGCAGGCATTCGATAGCACCCGGTTCCCTGGCAGGCCCGAAAGCTGGTTATGGATCCTGGTCGCGTTTGCCCTGTTGGTGCTGATTGGGCTCATGGTTGCCTGGATTGCCCAGCAGGGAAAGGGCCGGAGCAACCTGCTGGTCTCCGAATACGACCCCGGTACGGTGCCCGGTGACGTGCGGATTGGTGGAGGTGTGGCCGAGCAGGCCCTGAAACAGGCCCTCGCCGGGCGCGCAGACCTCGCCGGTGCCACAGTCACAACCTACGACGTCCAGGGCAGGCCTGCCCTGAAGGTCAGGCTGCAGCCACGTCAAGGAGTAGCGCCCCACCTCCTGGCAGCCGAAGTGGTTGCCCTCGTGGATGCCCTGGACGCCGTGGTGGGCAAACGAACCCCCGTTCTGATCCACATTGGTGCTGGCGCCCGGACCCGCTTCAGCCGGGCTGAGCGGGTCCGCTGAMNSTPALLNRILIGILGVKLLAVGLLLILLATVPAVATWWHSWSGSAWNGIRQAFDSTRFPGRPESWLWILVAFALLVLIGLMVAWIAQQGKGRSNLLVSEYDPGTVPGDVRIGGGVAEQALKQALAGRADLAGATVTTYDVQGRPALKVRLQPRQGVAPHLLAAEVVALVDALDAVVGKRTPVLIHIGAGARTRFSRAERVRNANANANANA
D1-29_006251872malL_1COG0366Oligo-1,6-glucosidaseATGGTCCACACAGACGTTCCCGCCCCGGATTCCACGTTAGGATCGTGGTGGGCGAGTGCTGTCGTCTACCAGATCTACCCGCGTTCCTTCGCTGACTCCAACGGTGACGGGATGGGCGATCTGCCCGGAGTTACGGCGCATTTGTCCTATCTTCAGCGCCTGGGCGTCAACGCCATCTGGCTATCACCGTTCTATAAATCCCCACAGGCTGATGCCGGTTATGACGTGGCGGACTACCGCGAGGTGGATCCCTTATTCGGGACTCTTGCTGACTTTGACACCATGTTGCAGAAGGCTCACAGCCTGGGACTGAAAGTCATTGTGGACCTGGTTCCGAACCACACCTCGGACGAACACGTGTGGTTCCAGGAGGCCCTCGCCGCCGGCCCTGGGTCGAGGGAGCGGGACCGGTACATCTTCCGCCCGGGGCGGGACAGGGTTCCCGGGTCCGGCGATGGAAACGCCGCACCAAACAACTGGAGGTCCATCTTTGGCGGCCCTGCCTGGAGCCGGGTCACCGAGGCCGACGGCAGCCCGGGAGAGTGGTACCTCCACCTGTTTGACACCAAACAGCCGGACCTGAACTGGAACAATCCCGAGGTCCGGGAGGAGATGCGCTCGGTCATGCGTTTCTGGCTTGACCGCGGCGTGGACGGTTTCCGGGTGGACGTGGCGCACGGAATGGTTAAGGCGGAGGGCCTTCCGGACTGGGATGGGGTGGCGGCCATGGTGGAGGGTACCTCCCCGGCTGTCCCGGAACCCCGCACCACAACAGGTGATGCGCCCGGGGCCCACACCGACGCCGAGGAACCACACCGGGCGAGATCGCCGCTCTACCCGCCGTCGCCGTTCTTTGACCAGGACGGGGTCCACGACATCTACCGTGACTGGAACCGGCTGCTCGCAACCTACAGCGGAGACCGGATGCTCGTGGCCGAAGCCTGGGTGGAGCCGGCGGAACGACTGGCCCGCTACATCCGCAAGGACGAAATGCAGCAGGCGTTCAACTTCGATTTCCTCCTGGCCGGCTGGAATGCCCAGCGCATGGCCAATGCCATCGACGCGTCGCTGAAGGCGGCCGCTTCCGTGGAGGCACCCTCAACCTGGGTCCTGAGCAACCACGACACCGTCCGTCATGCCACCCGCTTCGGCCTGAAGGACCCCACCATTTTCCCTAACGGCATTGCGGCCGGGGACGAGCAGCCGGACGCTGCCCTTGGCCTGGCACGCGCCCGCGCCGCCACTTTGGTGATGTTCGCCCTGCCCGGCTCCGCCTACATCTATCAGGGCGAGGAACTTGGCCTTCCCGAGCACTCCACCCTTCCGGACGAGGCCCGCCAGGATCCCACCTTCTTCCGTACAAGAGGCGTGGAAACCGGCAGGGACGGCTGCCGGGTCCCGCTTCCGTGGAAAGCGAACGAGCCCGGTCACGGCTTCTCCGAGGCGTTCACCGGCGCTGTAAGGCACGACGCCGGCACTCCAGACGACGGCGGCGCCGCCCCCAGCGGCAGCGGTCCGGACCGCCCGGCGGCCCCATGGCTCCCGCAGCCTGACTCTTTCGGTGAGCTGGCCGCCGACAGGCAGGACGGAGTGCCCGGGTCTACCCTGGAGCTCTACCGTTCAGCGCTGGCACTGCGCGCCGACCGTCGCCTGGGGGCCGGAAGTTTCCGCTGGGCGGACATCCACCGGCCAGCGGAGGGCGTGTTGGCGTTCCATAACGGCGACCTCCTCGTGGTTTGCAACCTGGGTGAAGGGCCGGTCCCTGTTCCCGCCGGCTACTCACCCGCACTGTCCAGCGGCCCGGCTTCGCAGGTTGCCGCAGGCCTCACCAAGGTGCAGCCAGACTGCACGGTATACCTGCTGGTGGACTGAMVHTDVPAPDSTLGSWWASAVVYQIYPRSFADSNGDGMGDLPGVTAHLSYLQRLGVNAIWLSPFYKSPQADAGYDVADYREVDPLFGTLADFDTMLQKAHSLGLKVIVDLVPNHTSDEHVWFQEALAAGPGSRERDRYIFRPGRDRVPGSGDGNAAPNNWRSIFGGPAWSRVTEADGSPGEWYLHLFDTKQPDLNWNNPEVREEMRSVMRFWLDRGVDGFRVDVAHGMVKAEGLPDWDGVAAMVEGTSPAVPEPRTTTGDAPGAHTDAEEPHRARSPLYPPSPFFDQDGVHDIYRDWNRLLATYSGDRMLVAEAWVEPAERLARYIRKDEMQQAFNFDFLLAGWNAQRMANAIDASLKAAASVEAPSTWVLSNHDTVRHATRFGLKDPTIFPNGIAAGDEQPDAALGLARARAATLVMFALPGSAYIYQGEELGLPEHSTLPDEARQDPTFFRTRGVETGRDGCRVPLPWKANEPGHGFSEAFTGAVRHDAGTPDDGGAAPSGSGPDRPAAPWLPQPDSFGELAADRQDGVPGSTLELYRSALALRADRRLGAGSFRWADIHRPAEGVLAFHNGDLLVVCNLGEGPVPVPAGYSPALSSGPASQVAAGLTKVQPDCTVYLLVDPGPT0018560_2480DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-29_006261284hypothetical proteinATGAAAACCCGTAAATTCTTACTCCCGGCGGCAACTGCCGGCATTCTGGCCCTCACGCTCTCCGCCTGTGCCGGTGGCGGCGGCGGGGGCACTACAGGCGGCGGCGATGCCGAAGCCAACCTCGAGGGCCGCGGCCCCATCACGTACGTCCAGGGCAAGGACAACAGCAACGTGGTCCGTCCCCTCCTGGAAAAATGGAACGCTGCCCACCCCGATGAGCAGGTCACCTTCAAGGAGCAGACCGACCAGGCTGACCAGCAGCACGATGACCTGGTCCAGAACTTCCAGGCCAAGAACGAAAACTATGACGTCGCCAGTGTTGACGTGATCTGGACTGCCGAATTCGCAGCCCGCGGCTGGCTGCAGCCTCTCGAAGGCGACATGGCAATTGATACCGAAGGCATGCTCGAACCCACTATCAAGGCCGGCACGTATCAGGGAAAGCTCTACACCGCTCCTGTTTCCTCGGACGGAGGCATCCTCTACTACCGTAAGGACCTGGTCCCGACGCCGCCCAAGACGTGGGACGAAATGATGGAAATGTGTTCCGTCGCCAAGGCCAACAACATCGGCTGCTACTCGGGACAGTTCAAGCAGTATGAGGGCTTGACGGTCAACGCCTCCGAAGCAATTAACTCAGCCGGCGGCTCGGTTCTGGATGACCAGGGCAAGCCGAGCCTGACCACCTCTGATGCCGAGCAAGGCCTTCAAAACCTGGTTGACGCCTTTGCCAACGGGAACATTCCTGCAGAAGCCATCACTTACCAGGAAGAGGAAAGCCGCCGTGCCTTCCAATCCGGCAACCTGCTCTTCCTCCGCAACTGGCCGTACGTCTATAACCTGGCAACCACTGAAGGTTCCTCAGTTGTCAAGGACACGCTGGGTATGACAGCCCTGCCAGGCGAGGACGGCCCCGGTGCATCCTCGCTCGGGGGACACAATGCCGCGATCAGTGTCTACTCCAAGAACAAGGCCACGGCACGGGATTTCGTGAAGTTCCTGATCGAAGAAGAACAGCAGAAGTTCTTCGCCACCCAGGGATCGCTGGCCCCGGTCCTCGGCTCACTGTATGAGGACCAGGAACTGGTGTCCAAGCTGCCGTACCTGCCGGTGCTGAAGACCTCCATTGAGAACGCGGTGCCGCGTCCCGTGACACCCTTCTACCCGGCAGTGTCCCAGGCTATCCAGGAGAACTCCTACGCGGCCCTGAAGGGTGAGAAGTCCGCGAAGCAGGCTCTGGAGGATATGCAGAAGTCCATCGAGTCCGCTGGCGCAGGATCGTAAMKTRKFLLPAATAGILALTLSACAGGGGGGTTGGGDAEANLEGRGPITYVQGKDNSNVVRPLLEKWNAAHPDEQVTFKEQTDQADQQHDDLVQNFQAKNENYDVASVDVIWTAEFAARGWLQPLEGDMAIDTEGMLEPTIKAGTYQGKLYTAPVSSDGGILYYRKDLVPTPPKTWDEMMEMCSVAKANNIGCYSGQFKQYEGLTVNASEAINSAGGSVLDDQGKPSLTTSDAEQGLQNLVDAFANGNIPAEAITYQEEESRRAFQSGNLLFLRNWPYVYNLATTEGSSVVKDTLGMTALPGEDGPGASSLGGHNAAISVYSKNKATARDFVKFLIEEEQQKFFATQGSLAPVLGSLYEDQELVSKLPYLPVLKTSIENAVPRPVTPFYPAVSQAIQENSYAALKGEKSAKQALEDMQKSIESAGAGSPGPT0014145_598DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MALTOSE|TREHALOSE_TRANSPORT,PGPT0014145-thuE-K10236NANA
D1-29_006271038sugA_2COG1175Trehalose transport system permease protein SugAATGGCAACCGAATTGGGCCCGACGCCGGTAAAAGGGCCGGCGTCGGGCGGGACTCCGATCCACCACGCACCTAAGGGTGTTGGGGAAGACAATAAGATTCTGAGCCAGGGCAAGTGGGCTTCCTGGCTCCTGGCCCCCACCATCATCGCGCTGGGAATTGTGATCGTTTATCCGATCGTCAGCGCCATCGTCATGTCCCTCCAGAAGGACGCCGGCCTGGATCCCGCCACCGGGTTGTTCACGGCCGGCGGTCCAGCCGGAATCCAGAACTATGTGAACTGGCTTGGCCAGCAATGTGCCGCCCCAGGCGGCGGCACCGTCGCCTGTCCTCCCGGAACTCTGGGCGGCCAGTTTTGGTCGGCAACAGCAACGACGTTCTTCTTCACCATCGTCACCGTTACGTTTGAAACCATCCTTGGTTTCTGGATGGCAATGATCATGGCCCGGACCTTCAAGGGCCGGAGCATGGTCCGTGCAGCTGTGCTGGTGCCGTGGGCCATCCCCACTGCCGTGACGGCCCAGCTGTGGCTGTTCATCTTCGCGTTCGAGGGCATCGCCAACAAGCTGTTCAACGCGTCCATCCTCTGGACCGGGAGTGAGTGGCCGGCCAAGTGGGCTGTGATCATCGCAGACACGTGGAAGACCACCCCCTTTATGGCCCTGCTGATCCTGGCAGGCCTGCAAATGATCCCTGCGGATGTCTATGAGGCTGCCAAAGTTGACGGCGCCTCGGCCTGGCAGCGGTTCCGCCTGATCACCCTGCCGCTCGTCAAGCCGGCCCTGATGGTGGCCATTCTGTTCCGTACCCTCGATGCCCTACGGATGTTCGATCTTCCCTACATCCTGACGCAGGGGGCCAACAACACCACCACACTCTCGATCCTGGTGATCAATCAGATCAGGCAAGGCTTCAACTCGGCCGCTGCCTTGTCCACGATTACGTTCATCATCATCTTTCTGGTCGCTTTCATCTTCGTCCGCTTTCTTGGTGCGAACGTTGTGGAGCAAAGCGGCGCAACCGGTAAGGGGAAGAAATGAMATELGPTPVKGPASGGTPIHHAPKGVGEDNKILSQGKWASWLLAPTIIALGIVIVYPIVSAIVMSLQKDAGLDPATGLFTAGGPAGIQNYVNWLGQQCAAPGGGTVACPPGTLGGQFWSATATTFFFTIVTVTFETILGFWMAMIMARTFKGRSMVRAAVLVPWAIPTAVTAQLWLFIFAFEGIANKLFNASILWTGSEWPAKWAVIIADTWKTTPFMALLILAGLQMIPADVYEAAKVDGASAWQRFRLITLPLVKPALMVAILFRTLDALRMFDLPYILTQGANNTTTLSILVINQIRQGFNSAAALSTITFIIIFLVAFIFVRFLGANVVEQSGATGKGKKPGPT0014150_183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MALTOSE|TREHALOSE_TRANSPORT,PGPT0014150-thuF|sugA-K10237NANA
D1-29_00628894sugB_1COG0395Trehalose transport system permease protein SugBATGACTTCGGCTACAGCCACGGAGTTGCGCGTCCGGCAGGACAAGGGACGCAAGACCGCCCAGAACCGGGAGAAGTGGGCTCAGGCGAGGACGTATATCAGCGCCGGGGTCATCCTGATCTGGTGCCTGGCACCGGCGTACTGGATGGTGGTCACGGCGTTCCGGGAGGTTGGCTTCACGTACGACACGTCAATACTGCCCACGCATGTCACCATGGACAACTTCGCCACAGCCTTCGACACGTCCTTCGGCAACCGCTTTGGACAGGCGCTCCTCAACAGCGTCATCATCGGCACGGTGGTCACGGTCGTTTCCCTGGTGATCGGCGTTTTCGCCGCTTACGCACTGGCCCGCCTGAATTTCAGGTTCAAGTACTTAGTGCTGGGATTCATCCTTGGCGCTTCGATGTTCCCAGGCGTCGCACTCATCACGCCGCTGTTCCAGCTCTTCACCAACATTGGCTGGATGGGTACATACCAGGCCCTGATCATCCCGAACATCTCGTTTGTGCTTCCGCTGACCGTCTACACCCTGACATCCTTCTTCCGCGAAATGCCGTGGGAATTGGAGGAATCAGCCCGGGTGGATGGTTGCACGCAGGGTCAGGCGTTCCGGAAGGTGATCATGCCGCTCGCGGCACCGGCTATCTTTACTACGGCAATCCTGGCCTTCATCTCCTCCTGGAATGAATTCCTGATCGCCAGCCAGCTGTCCAATGATGCGACGCAGCCTGTGACCGTGGCCATCGCCAGCTTCGCAGGTGCCCAGCCCAACCAGATCCCCTACACCGCCATTATGGCCGCGGGAACCATCGTTACCATTCCCTTGGTGATCCTGGTGCTGGTGCTCCAGCGTAAGATCATCGCCGGCCTGACGGCGGGTGCTGTCAAGTGAMTSATATELRVRQDKGRKTAQNREKWAQARTYISAGVILIWCLAPAYWMVVTAFREVGFTYDTSILPTHVTMDNFATAFDTSFGNRFGQALLNSVIIGTVVTVVSLVIGVFAAYALARLNFRFKYLVLGFILGASMFPGVALITPLFQLFTNIGWMGTYQALIIPNISFVLPLTVYTLTSFFREMPWELEESARVDGCTQGQAFRKVIMPLAAPAIFTTAILAFISSWNEFLIASQLSNDATQPVTVAIASFAGAQPNQIPYTAIMAAGTIVTIPLVILVLVLQRKIIAGLTAGAVKPGPT0014155_122DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MALTOSE|TREHALOSE_TRANSPORT,PGPT0014155-thuG|sugB-K10238NANA
D1-29_00629252hypothetical proteinATGCAGTCGTCAGGGCAGCGCGGGCAGAACGAAGGTCTCGTCCGCCCTGAACGCCGCAGGGCGCGGTCCGGTGAGGACTTTGACATCATCATCGGATTCCTCGGCTTTTGGGGCGTGGTCCTGCTGGTGGTCACTGTCTGGATGGAAGTGACAGGACAACCGGCGCTCGGCTGGGCATTGGGCCTCCTGGCCACCCTGCTGGCGATCTATGGGATGGTGCGGCTCCGCCGTCGGCTTCCCGCCAGGCGGTAGMQSSGQRGQNEGLVRPERRRARSGEDFDIIIGFLGFWGVVLLVVTVWMEVTGQPALGWALGLLATLLAIYGMVRLRRRLPARRNANANANANA
D1-29_006301053ccpA_5COG1609Catabolite control protein AGTGGCACGCATTACTGAAAGGTCCCAACGGGGAGGGCACAGCGGCGTCAGCATTGAGGATGTCGCTGCAGCCGCGGGCGTATCCACCGCCACCGTGTCCAGGGCCGTCCGGGGACTGCCCCGGGTATCACCGGCCACCCGGGAGAAGATCCTGGAAGTGGCCGGCGCCTTGGGTTACGTTGCTTCATCGTCGGCTTCCGGGCTTGCCACCGGGCGCACCAAAACCATCGGCGTGCTGGCTCCCTTTGTGAGCCGCTGGTTCTTCTCCAAGGCCATTGAGGGAGCGGACCGAGAACTCCATGCGCGGCACTACAACCTGTCGCTGTTCAACCTCGGCGGACACGGCAGCAACCGCGAACGGCTCTTCAGCAAGACCATGGTCTATAAACAGATTGATGCCCTGCTGGTTCTTTGTATGGCGCTGACGCATGACGAGCTGGACCATCTCCAGAAGATCGACATCCCGCTGGTGGTCGTGGGCGGCCACGTGGAGGAATGCGCCTACATCGGCATTGACGATTACGCCGCGGCTTCAACCGCCGTGATGCACCTGATCGATCTTGGGCACCGGGACATCGCCCTCCTTCATGGCGACGACGAAACAGACCTTAATTTCGACGTTCCCCGTGTGCGCATCCTGGCATTCAAGGACGTGATGACGGCCTCCGGCCTGCCCACCCGTCCCGAATGGGATGAGTGGGGAGATTTCACCGTCCGGAGCGGGCAGGAAGCCTTCCGCCGGCTTTGGGCGCGGAGCGGCCCCAAACCCACCGCCATTTTCTGCGCCTCTGACGAAATGGCCATGGGTGTCATTTTTGAAGCAGCCAGGATGGGAGTCCGCGTGCCGGAGGAGCTCTCCGTGGTGGGCATCGACAACCATGACTTCGCTGACGCCGTGGGCCTGACCACCGTTGGGCAGAGGCCGGACGAACAGGCCGAACTCGCCACCAAGATGCTTCTTGACGAATTGGATGGTGTTGCCGGGGCGGTGCAGTCCGCCGTCGCTCCCCATCAGCTGATTGTCAGGCGAACCACGGCCCCGCCGCCCTGCTAAMARITERSQRGGHSGVSIEDVAAAAGVSTATVSRAVRGLPRVSPATREKILEVAGALGYVASSSASGLATGRTKTIGVLAPFVSRWFFSKAIEGADRELHARHYNLSLFNLGGHGSNRERLFSKTMVYKQIDALLVLCMALTHDELDHLQKIDIPLVVVGGHVEECAYIGIDDYAAASTAVMHLIDLGHRDIALLHGDDETDLNFDVPRVRILAFKDVMTASGLPTRPEWDEWGDFTVRSGQEAFRRLWARSGPKPTAIFCASDEMAMGVIFEAARMGVRVPEELSVVGIDNHDFADAVGLTTVGQRPDEQAELATKMLLDELDGVAGAVQSAVAPHQLIVRRTTAPPPCPGPT0021075_269DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-29_00631939hypothetical proteinATGACCGGAAATCTGTACCGGGGCCAGGCTGGGCTGCCGTTCTCCTCCACCCTGCGGGTCTACGAACCCCTGGACGCCTTCCCCGAGGACCAGCGCGCTGCCATCCAGGCCGCCGGCGCACGCACCGCCTCCCGCGCGGCGGTGGAAAACGCCGAACTGCTGGCGTCCCTGGGCCGTATCACCAGATCCGGCGGGGATCCCTTTCCCACCGGGCGAACCGACCTCGTGCGCGTCACCACCGCTCCGGGAGTCCCCCCAGCTGATACGCCCAAAGCAGAAGCGGCCGACGGCGACGCCGCCCCTGGCGCTTCATCCGGCTCGTCATCCGGCTCCGGGGCGGAGCAGGTACTGCTGTACTGCCCCAGCCAACTGGTCCTGCGCGCCGGTCTCGCTGCCAACGCCCTGATGGAAGGCATCCACGGCCCCCTGGCGGAAATGCTGATACCCGAGGAACAGCGGGACAAGCACCAGGAGCGGATCGACCAGGTCAAGGCCCGGGACGGGTCCATCCGGGTGCACACACGCGCCTCCACCTGGGGCATCCCGTTCAGCTGGTTCTCGCTGTTTATGGAATCAGATCCCAAAGACGTCGTCGAATCAGGCGGACGGATCCTGACGGTAAGGGTCTGGGCCCCGATCACCGAGGCGATGGAGCGGGCCCGTTACGCAGTGGCCAACCTGGCCCTGGCGGCGCCTGACCTGGACATGCTTGATGACCTCGCCCAACTCACGGAGTGGCTGGAGCTGTTCCACGTGAATTCCATGGTGGAACTGGACTATGGAGCGGTGGCGGACAAGGTGTACCCCGACGAGTCCCCCATGGACATCAGGCTGGGTATCGAGTGCCTTGCCGAAGGAGACATGACAGGAGCCGCGGCAGCCTACCGCAGGCTGGCATCCCGCTGGATCCCCATCCGCCAACTGGCCCGCGCGTCCTAGMTGNLYRGQAGLPFSSTLRVYEPLDAFPEDQRAAIQAAGARTASRAAVENAELLASLGRITRSGGDPFPTGRTDLVRVTTAPGVPPADTPKAEAADGDAAPGASSGSSSGSGAEQVLLYCPSQLVLRAGLAANALMEGIHGPLAEMLIPEEQRDKHQERIDQVKARDGSIRVHTRASTWGIPFSWFSLFMESDPKDVVESGGRILTVRVWAPITEAMERARYAVANLALAAPDLDMLDDLAQLTEWLELFHVNSMVELDYGAVADKVYPDESPMDIRLGIECLAEGDMTGAAAAYRRLASRWIPIRQLARASNANANANANA
D1-29_00632807xthACOG0708Exodeoxyribonuclease IIIGTGAAGATTGCTACCTGGAACGTAAACTCCCTCCGTGCCCGTGCCGACCGCGTGGAGGCCTGGCTTCAGCGCAGTGATTGCGACGTCCTGGCTATCCAGGAGACGAAGTGCTCGGATGAGAACTTTCCCTGGGAACTCTTCGAGCGCATGGGCTACGAGGTGGCCCACTTCGGCGTGAATCAGTGGAACGGCGTGGCCATCGTCTCCCGGGTGGGGCTGGAGGACGTTGAGCGGACGTTCCTGGACCAGCCGGCATTCGGCAAGGCAGGGAAGGATCCCGTCCAGGAAGCCCGCGCAATGGCGGCAACCTGCGGCGGTGTCCGGATTTGGAGCCTGTACATCCCCAACGGACGCTCCCTCGATGATGAGCACATGCCCTACAAGCTGAAGTGGCTGGATTCCCTGAAGAACCACGCCCAGGGCCTGGTCACGTCGGACCCGCACGCCCAGGTGGCCCTGATGGGCGACTGGAACATCGCGCCCCGGGATGAGGATGTGTGGGATATCGACCTGTTCGTCACGAACCGGTATACCCACGTCAGCCCGCCGGAACGCGCGGCCTTCTATGCGTTTGAGGAGGCCGGCTTCAACGACGTGGTCCGTCCCTACACTTCCGGCCCCGGCGTCTACACCTACTGGGACTACACCCAGCTGCGCTTTCCCAAGAAGGAGGGCATGAGGATCGACTTCGTGCTCGCCTCCCCCGCCCTGGCTGCCCGGGTGACCGGCGCCTCGATCGACCGCGAGGAACGCAAGGGCAAGGGCGCCTCCGACCACGCCCCCGTTGTGGTGGATCTGGCAGACTGAMKIATWNVNSLRARADRVEAWLQRSDCDVLAIQETKCSDENFPWELFERMGYEVAHFGVNQWNGVAIVSRVGLEDVERTFLDQPAFGKAGKDPVQEARAMAATCGGVRIWSLYIPNGRSLDDEHMPYKLKWLDSLKNHAQGLVTSDPHAQVALMGDWNIAPRDEDVWDIDLFVTNRYTHVSPPERAAFYAFEEAGFNDVVRPYTSGPGVYTYWDYTQLRFPKKEGMRIDFVLASPALAARVTGASIDREERKGKGASDHAPVVVDLADNANANANANA
D1-29_006331500bauC_1COG1012Putative 3-oxopropanoate dehydrogenaseATGGTGCGCGAGCTATCCCATTACGTAGGTGGCCAGCGGGTGAACGGGACATCCGGCCGGTACGGGGACGTTTTCGATCCCTGCACGGGACAGGTCCAGGCGCGGCTGCCCTTGGCTAGCCGCGCGGAAGTCCAAAACGCGGTTGCCGCCGCGGAGAAGGCCCAACCGGAGTGGGCTGCCATGAACCCGCAGCGCCGGGGCCGCATCCTGCTCGCGTTTGTTGGGCTGGTGAACAGGAACCTGGACGAGCTGGCCACCCTCCTGTCCTCCGAACATGGCAAAACACTTGCGGACGCCAAAGGCGACATCCAGCGCGGCATTGAGGTGGTGGAGTTCGCGGCAGGCGCTCCGCACCTGCTCAAGGGCGAGTTTTCCACCGACGCCGGTGCGGGCATCGATGTCCACTCCCTGCGCCAGCCCCTGGGCGTTGTCGCCGGCATCACCCCCTTCAACTTCCCGGCCATGATCCCGCTCTGGAAGTCCGGGCCGGCCCTCGCGGCAGGCAACGCCTTTATCCTCAAACCGTCTGAACGGGATCCGTCCGTGCCGCTGCGCCTTGCCGAGCTCTACTCGGAGGCAGGGGTGCCCGACGGTGTGTTCAACGTGGTCAACGGGGACAAGGAAGCCGTGGACGCGCTGTTGGAGGATTCCCGCGTAAAGGCGATTGGGTTTGTGGGCTCAACACCCATCGCGCAGTACATTTATGCCACCGCCGCCGCCCACGGCAAGCGCGCCCAGTGCTTCGGCGGCGCCAAGAACCACATGGTGATCATGCCCGACGCCGACTTGGAAATGGCCGCCGATGCCCTGATCGGTGCGGGATACGGCTCGGCGGGGGAACGCTGCATGGCCGTCTCCGTGGCGGTGCCGGTGGGCGAGGAAACCGCCAACAGGCTGGTGGCCAAACTCCAGGACCGGGTCAAAGGGCTCAAGGTGGGACCCAGCCTGGACAAGGACTCGGACTTCGGGCCGGTGGTGACAGCGGCCGCCAAAGAACGGATTGAAGGCTACATCCAGGCCGGACTGGATGAAGGCGCCACACTGCTTGCCGACGGACGCGGCCTTGCCGTGGAAGGACACGAAGGCGGCTTCTGGGTTGGTCCCACCCTCTTTGACCACGTCACCCGTGACATGAAGATCTACCGGGAAGAGATCTTCGGACCAGTCCTCAGTGTGCTCCGGGCCGCCGACTACGACGAGGCCCTCAGGCTCTGCAGTGAACACGAATACGGCAACGGGGTGGCCATCTTCACCCGCGACGGCGACGCCGCGAGGGACTTCGCCAGCCGGGTCGAAGTGGGCATGGTGGGCATCAATGTCCCCATCCCGGTCCCCATCGCGTATTACACCTTCGGCGGCTGGAAAGCCTCCGGATTCGGCGACCTCAACCAGCACGGCGCGGACGCCTTCCGCTTCTACACCAAGACCAAGACCGTCACCACGCGCTGGCCTTCCGGAATCCGCCAGGGCGCCAGCTTTGTGATGCCGGAAGGAAGCTGAMVRELSHYVGGQRVNGTSGRYGDVFDPCTGQVQARLPLASRAEVQNAVAAAEKAQPEWAAMNPQRRGRILLAFVGLVNRNLDELATLLSSEHGKTLADAKGDIQRGIEVVEFAAGAPHLLKGEFSTDAGAGIDVHSLRQPLGVVAGITPFNFPAMIPLWKSGPALAAGNAFILKPSERDPSVPLRLAELYSEAGVPDGVFNVVNGDKEAVDALLEDSRVKAIGFVGSTPIAQYIYATAAAHGKRAQCFGGAKNHMVIMPDADLEMAADALIGAGYGSAGERCMAVSVAVPVGEETANRLVAKLQDRVKGLKVGPSLDKDSDFGPVVTAAAKERIEGYIQAGLDEGATLLADGRGLAVEGHEGGFWVGPTLFDHVTRDMKIYREEIFGPVLSVLRAADYDEALRLCSEHEYGNGVAIFTRDGDAARDFASRVEVGMVGINVPIPVPIAYYTFGGWKASGFGDLNQHGADAFRFYTKTKTVTTRWPSGIRQGASFVMPEGSPGPT0002295_2631DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-29_006341110fadJ_1Fatty acid oxidation complex subunit alphaATGCCGGACAGCCGCAACGACGTTGCGGGAACAGAACCCGGCGCAGAATCTGTCACATCAACCAGCCCGGAAGTGATCTTCGAGCGGCGCGGCCATCTGGGTGTCATCACCCTCAACCGGCCACAGGCCGTTAACGCCCTGACCGCAGGCATGGTGGAAGCCATCCGGGTGCAGCTGAGCGCCTGGGCAGAGGACGACGGCGTGGCCACCGTTTTGGTGCAGGGCGCCGGTGAGCGGGGGCTGTGCGCCGGGGGCGACATTGTGGCGATTTACCATGACCTGCTGGCTGGCGGAACGCAAACAGCGGACTTCTGGCAGACGGAGTACAGGCTGAACTCGCTGATCTCCCGCTACCCCAAACCCTATGTGGCCCTGATGGACGGGCTGGTCCTGGGCGGAGGCGTTGGCATCTCGGCCCACGGCTCGGTCCGGCTGGTCACGGAGCGGACCCGGATGGGCATGCCGGAGACCACCATTGGCTTTGTGCCCGACGTCGGCGGCACCCTGTTGCTTTCCAGGTCACCGGGGGAGGCAGGCACCCACGCCGCCCTGACGGGTGCGCATTTAAGCGCGGCAGATGCCCTGTTCCTGGGTCTTGCGGACGGCTACGTTCCGTCCGAAAGCCTTGCCGAGCTGGCGGTGGCGCTGGAGCGCGAAACTCCGGAGGACGCCGTCGAGCGCTTCCTTACAGCGCCGCCGGCGTCCGGCCTGGAGGCCCAGCGGGAGTGGATTGACGAGTGCTACGCCTCCTCCGACGCCGAAGAAATCCTCCGCAGGCTGACCGCGGCCGGGGGAGAGGCCGCGGAGGCCGCCCGCACCATCGAGGCCAAGTCGCCCACTGCCGTAAAGGTGGCTTTGGAATCGCTGCGCCGGGTCAAAGGCCTGACGCTGGACGAGGCGCTGGCCCAGGAATACCGGGTGGGGCTCAGGTTCCTGGCCGCTCCCGACTTCCGCGAAGGGATCCGGGCACAGGTGGTGGACAAGGACCGCACACCACACTGGAAGCCGGCCACCCTGCGTGACGTGCGGCCGGAAGACGTGGAACAGTTTTTCGTGCCGCTGGGTGACAGAGAGCTGAACCTTCACACAAAGGAGACGGACCATGCCTGAMPDSRNDVAGTEPGAESVTSTSPEVIFERRGHLGVITLNRPQAVNALTAGMVEAIRVQLSAWAEDDGVATVLVQGAGERGLCAGGDIVAIYHDLLAGGTQTADFWQTEYRLNSLISRYPKPYVALMDGLVLGGGVGISAHGSVRLVTERTRMGMPETTIGFVPDVGGTLLLSRSPGEAGTHAALTGAHLSAADALFLGLADGYVPSESLAELAVALERETPEDAVERFLTAPPASGLEAQREWIDECYASSDAEEILRRLTAAGGEAAEAARTIEAKSPTAVKVALESLRRVKGLTLDEALAQEYRVGLRFLAAPDFREGIRAQVVDKDRTPHWKPATLRDVRPEDVEQFFVPLGDRELNLHTKETDHAPGPT0001860_146DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_00635930mmsB_1COG2084putative 3-hydroxyisobutyrate dehydrogenaseATGCCTGAGAACAGCACCATCGCCTTCCTGGGCCTGGGCCACATGGGCGGGCCCATGGCCGTCAACCTGGTCAGGGCCGGATATCAGGTGGCCGGCTTCGACGTGGTGCCCGCCGCCCTCGAGGCTGCCAAGAACCAGGGCGTACCCGCCGCGGCCAGTGCTGCCGACGCCGTGTCCGGCGCGGGCGTGGTGCTGACCATGTTCCCCAGCGGCCAGCATGTGCTGGACGCCTACCGCGGCGCCGACGGGCAGCCCGGACTGCTGGCCACCGCCGCCCCCGGGACCATGTTCCTGGACTGCTCCACCATCAATGTGGACGAGGCCCGGGAAGCTTCCACTCTCGCCATCGACGCCGGCCACCGTGCGGTGGACGCTCCCGTTTCCGGCGGCGTGGTGGGGGCCGAGGCAGGCACCCTCACCTTCATGGTGGGCGGCGGGCCTGAGGACTTTGAGGCCGTCCGCCCCCTGCTGGAAGTAATGGGCAAACGCGTGGTGCACTGCGGGGGCCATGGCGCCGGCCAGGCAGCCAAGATCTGCAACAACCTGATCCTGGGGGTCTCCATGATCGCCGTGAGCGAGGCGTTCGTCCTCGGCGAGAAACTGGGACTGAGTCACCAGGCACTGTTCGACGTCGCCTCCGCGGCGTCAGGCCAGTGCTGGGCCCTGACCACCAACTGTCCCGTTCCTGGTCCCGTCCCCGCCAGCCCCGCCAACCGTGACTACCAGCCGGGATTTGCCGGCGCGCTGATGGCCAAGGACCTCAGGCTTGCAGTCAATGCACTCCGCAGCACCGGGGTGGCGGCCCGGCTGGGGCCACTGGCGTCCGAAATCTACGATACGTTTGCCGCGGAAGGCGGTGCTGGCCGGGACTTCTCCGGCATCATCACCGATATCCGCGACAAATCACAGGAGGACGGGAGCCAGGCATGAMPENSTIAFLGLGHMGGPMAVNLVRAGYQVAGFDVVPAALEAAKNQGVPAAASAADAVSGAGVVLTMFPSGQHVLDAYRGADGQPGLLATAAPGTMFLDCSTINVDEAREASTLAIDAGHRAVDAPVSGGVVGAEAGTLTFMVGGGPEDFEAVRPLLEVMGKRVVHCGGHGAGQAAKICNNLILGVSMIAVSEAFVLGEKLGLSHQALFDVASAASGQCWALTTNCPVPGPVPASPANRDYQPGFAGALMAKDLRLAVNALRSTGVAARLGPLASEIYDTFAAEGGAGRDFSGIITDIRDKSQEDGSQAPGPT0018170_745DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-29_00636777echA8_1COG1024putative enoyl-CoA hydratase echA8ATGACGGAATACGCAAACATTCTTGTGGAGCGGCGCGGCAGGGTGGGCCTGGTAACCCTTAACCGGCCCGAGGCATTGAACGCCCTTAACCGGGCCACCATGGAGGAACTGGTGTCCGCTGTCGGGGGCATGGACGCTGATCCAGGGATCGGGGCAGTGGTGATCACCGGTTCCGGCAAGGCCTTCGCTGCCGGGGCGGACATCAAGGAGATGGCCTCCCAGACGTACATGGAGATGTACGCCGCCGACTGGTTCCGCGGCTGGGAGGACTTTACCCGGCTCCGCATTCCCACCATTGCTGCCGTCTCTGGCTTCGCGCTGGGCGGCGGGTGTGAGCTCGCCATGATGTGCGACCTGATTTTCGCCGGGGACAACGCGAAGTTTGGCCAGCCTGAGATCAACCTTGGCGTGCTGCCCGGGATGGGCGGATCGCAGCGGCTCACCCGTGCCGTAGGCAAGGCCAAGGCCATGGATCTGATCCTCACCGGCAGGTTCATCGGTGCCGAGGAAGCTGAGCGCTCCGGCCTGGTCTCGCGGGTGGTGCCCGCCGAGGATGTGGTGGACGAAGCGCTCAAGGCCGCCGAGGTCATAGCTTCCAAGTCAAAGCCAGTGGCCATGGCGGCAAAGGAAGCCGTAAATACCGCCTTTGAAACGGGGCTCGCGCAGGGTGTCCTTTTCGAGCGCCGGATCTTCCACTCCCTCTTCGCCACACAGGACCAAAAGGAAGGCATGGCCGCCTTCACCGAAAAGCGGCAGCCCGAGTTCAGGCACCGCTGAMTEYANILVERRGRVGLVTLNRPEALNALNRATMEELVSAVGGMDADPGIGAVVITGSGKAFAAGADIKEMASQTYMEMYAADWFRGWEDFTRLRIPTIAAVSGFALGGGCELAMMCDLIFAGDNAKFGQPEINLGVLPGMGGSQRLTRAVGKAKAMDLILTGRFIGAEEAERSGLVSRVVPAEDVVDEALKAAEVIASKSKPVAMAAKEAVNTAFETGLAQGVLFERRIFHSLFATQDQKEGMAAFTEKRQPEFRHRPGPT0001860_5473DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_00637978trxB_2COG0492Thioredoxin reductaseATGACGGAAAAAGCTGAAGAACCATACGACGTAATGATCATCGGCGGCGGTGCCGCGGGGCTGAGTGCGGCCCAGATGCTGGGACGCTCCCGGCGGTCGGTGGTGGTGATCGACGCCGGGAGTCCCCGGAACGCCCCTGCCGAAGGGGTCCACGGATTCCTCAGCCGGGACGGCATCAGCCCGGCGGAACTTCTCAGGATAGGCCGCGCGGAGGCGGAGCATTACGGCGCAGACGTCGTCGACGGCGAGGTGTCCCGTGCAGAAGGCAGCCGTGAGTCAGGCTTTACGGCCTCCCTTAAGGACGGGCGCACGGTCCGCGGCCGCCGCCTCCTGGTCACCACCGGCCTGACGGACGAGCTGCCGGACATCACAGGAATCCGCGAGCGCTGGGGGAAGGACGTGCTTCACTGTCCGTTCTGCCACGGCTGGGAAGTGCAGGACCAGGCGATCGGGATCCTGGGGAATGGGCCCTGGTCCACTCACCAGGCCCTGCTGTTCCGGCAGTGGAGCAGCAACATTACCCTGTTCCTGAACAACAGGACCAACCCCACGGACGTGGAGCTGGAGCAGCTGGCCGCGAGGGGCATCAAAGTGGTGGAGGGAACCGTGGAGGCGCTTCGCGTCGAACAGGACTCCCTCCGCGGGGTTGCCCTTGCGGGCGGCCCGGAGGTGGCGGTGGACGCAGTAGTGGTGGGTCCGCAGGTCGGCGCCCGGCTGGACGCCTTTGCCGGGCTTGGCCTCACGCTGTCACCCCATCCGATGGGCGTAGGGGATTACCTGGAGACTGACGCCGACGGAGCGACAGCCGTTTCGGGTGTATGGGCGGCCGGCAACGTAACGGATATCAAAGCACAGGTGCTGGCGTCGGCGGCAGCGGCGGCCTGGACCGCCGTCGCGATTAACAACGATCTGATGGCGGAGGAACTCCGCCGGGATGTCACCGCCTACCAGGAATCCCTCACCCTCAGCGGTGCCTGAMTEKAEEPYDVMIIGGGAAGLSAAQMLGRSRRSVVVIDAGSPRNAPAEGVHGFLSRDGISPAELLRIGRAEAEHYGADVVDGEVSRAEGSRESGFTASLKDGRTVRGRRLLVTTGLTDELPDITGIRERWGKDVLHCPFCHGWEVQDQAIGILGNGPWSTHQALLFRQWSSNITLFLNNRTNPTDVELEQLAARGIKVVEGTVEALRVEQDSLRGVALAGGPEVAVDAVVVGPQVGARLDAFAGLGLTLSPHPMGVGDYLETDADGATAVSGVWAAGNVTDIKAQVLASAAAAAWTAVAINNDLMAEELRRDVTAYQESLTLSGAPGPT0013060_7494DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
D1-29_00638594sutR_1COG1396HTH-type transcriptional regulator SutRATGGATGAACAGTTAGACGATGTCCTGGCCGCCGTGGGCCCCCGTCTGCGTGCGCTGCGGATGAGCAGGAACACCACGTTGTCGGCACTTGCCGAAGCCACCGGCATCTCGGTCAGTACCCTGTCGCGGCTGGAATCCGGGCTGCGGCGGCCAAACCTCGAGTTGTTGCTGCCGCTGGCCAAGGCGCACCAGGTTCCGCTGGATGAACTGGTGGGTGCCCCGGACATGGGGGATCCGCGCGTTCATCTGCGCCCCATCGTCCGCAACCGCATGACGATTATTCCGCTGACACGGCGGCCCGGCGGTATCCAGGCGTACAAGCACATCCTGCCGGCGGGCAGGCTGGAGGAACCGAATCCGCAGGTCCATGAAGGCTATGAATGGCTCTATGTTCTCAACGGCAGGCTGCGGATGGTTTTGGGTGCGCAGGACCTTGTCCTGGGCGCGGGCGAAGCCGCAGAATTTGATACCCGGATCCCTCATTGGTTCGGCAGGGCCGACGGGAAGGCTGTGGAGTTCCTCAGTCTTTTTGGACGCCAGGGCGAACGGATGCATGTGCGGGCCAAACCGGGGCAGCCAGCCGCGGACTCCTAGMDEQLDDVLAAVGPRLRALRMSRNTTLSALAEATGISVSTLSRLESGLRRPNLELLLPLAKAHQVPLDELVGAPDMGDPRVHLRPIVRNRMTIIPLTRRPGGIQAYKHILPAGRLEEPNPQVHEGYEWLYVLNGRLRMVLGAQDLVLGAGEAAEFDTRIPHWFGRADGKAVEFLSLFGRQGERMHVRAKPGQPAADSNANANANANA
D1-29_00639657hypothetical proteinATGTGGGGAGCATCCGTAGCTGCAGCCGGCACGGCGGACAACCTGGACGGACTGGTGGGGGTGGCTGCGCGGGCCATTGATAACCTCGGCGAATGGGGAGTGGGCCTCTTTACCCTTGCCGAGACTGTCCTGCCGCCAATCCCCAGCGAAGTGATTCTTCCCCTGGCGGGCTTCCTCGCCAAACAGGGAGATTTGAACGTTGCCCTCGTGTTCGTCACCAGTACCCTGGGTGCTTATGTTGGGGCTCTCCTGCTCTACTGGGTGGGGTCGAAACTGGGCCTTGAGCGGTCCATCCGTGCTCTGTCGAAGCTTCCGCTGATGGATCGGGAGGACTTCGAAAAGGCCGCGGACTGGTTCCGGCGCCACGGCAGATCTTCGATTTTTTTCGGCAGACTGCTTCCCGGCGTCCGGAGCCTGATCTCCCTGCCGGCCGGTGCCTCCAACATGCACCTGGCCACTTTCAGCCTCTACACGCTCGCCGGAAGCGGGCTCTGGAATGGTGCACTCATCGGCCTGGGCTACCTGCTGGGGTCCCAGTACCGGCTCATCGAACAGTATTCCCGCTTGCTGAACTACGCCGTGTACGGCGCACTGTCGGTCCTGGTGGTTTGGCTGGTTGTGAGAGGTGTCCGCCGCAGCAGGGCCCGCCAGCGCTAGMWGASVAAAGTADNLDGLVGVAARAIDNLGEWGVGLFTLAETVLPPIPSEVILPLAGFLAKQGDLNVALVFVTSTLGAYVGALLLYWVGSKLGLERSIRALSKLPLMDREDFEKAADWFRRHGRSSIFFGRLLPGVRSLISLPAGASNMHLATFSLYTLAGSGLWNGALIGLGYLLGSQYRLIEQYSRLLNYAVYGALSVLVVWLVVRGVRRSRARQRNANANANANA
D1-29_00640270hypothetical proteinATGAAGGAGGTGGGCACCATCCGGGACATCGAGAGCGGCAGTTACCGTGCTCGCCTCCACACCACTGGAAGGGATGCGGCCTATGACCTGGTGGTGGAATCCTCCGTCGAACGGCACCTCGTCCAGTTCTGGAAGGAAGCCCCATCGCCGGTGTCCGTGCTGTCCTCCAGGTCTGAACACGGGAAAGAGCTCCCGGCCATGATGAGCAGGTGGCAGGGCATGCCGGCCGCCACTTCCCCTGATGTTCCCCGGCTGCTGCCAGGAGATTGAMKEVGTIRDIESGSYRARLHTTGRDAAYDLVVESSVERHLVQFWKEAPSPVSVLSSRSEHGKELPAMMSRWQGMPAATSPDVPRLLPGDNANANANANA
D1-29_00641270hypothetical proteinATGATCGGATTCATTGTTGCCGGCCTCGTCATTGGTGCCTTGGCCCGCTTGATCAAACCAGGCAAACAGAACCTGGGCATCCTCGCCACGCTGCTCCTCGGGCTGGCCGGCTCTGTCATTGGAGGCGTCATCGCTAACCTCCTGGGCACCGGAAACATCTTCGAACTTAACTTCGTCGGTTTTATTGTGGCTGTCATCGCCTCTGTCCTGCTCATCGGGGTCGCCGAGGGCCTGTCATCCCGGCGCACCGCCGCCCGGCGAAATCCCTGAMIGFIVAGLVIGALARLIKPGKQNLGILATLLLGLAGSVIGGVIANLLGTGNIFELNFVGFIVAVIASVLLIGVAEGLSSRRTAARRNPNANANANANA
D1-29_006421272ybjJ_2Inner membrane protein YbjJATGGCCATCGCACCGCTTCTAGCCCGGCAGCCCGCTAGGGAGGCCCGCCGTGCACGATTCGCAGTAAACGTACTGTTCTTCACCAACGGTGCCATTTTCGCCAGCCTGCTGCCGAGATACCCGGAGATCAAAACGGACCTCGGGCTCACCAATGCCGTCTTCGGACTGGCTGTTGCTGCCTTTCCGTTCGGTGCACTGCTGGCGGGCCTGAGCGCAGGCTTCCTGGTGCGCCGGTTCAGGTCCTCAAGAGTGGCCATTGTCGCCACCGTGCTGGCATCGCTGGGGATCCTGCTGGCTGCCGGCGCACCTGCGTGGGCGGCCCTGGCTGCCGGCTTTTTCCTCGCCGGTGCCATGGACTCCATCACCGATGTTGCCCAGAACTCGCATGGTCTTCGGGTGCAGCGTCTCTATGGACGGTCAATCCTCAACTCCTTCCACGCCGTCTGGAGTGTGGGCGCTGTGGCGGGCGGCGTCCTGGGCGCCGCTGCCGCCGAACTGGCCGTGTCCCGCTTCTTCCACCTCGGCATGGCGGCAGTGGTCTTCAGCCTCATGGCTGCCCTTTCGTACAGGCTGCTGCTCTCCGGCCCTGAACCTCTGGACTCCGTTGGCGACGATGATACGGGCAGTGAACGCCTGGAACGCGCCGCCGAAACTGGCAAGCCCGCCAGCAAGAGTGTGACCAAGTATGGAGCACTCCTTGCCTTGGTCATCATTGCCTCCGCCGGGGCACTCGTCGAGGATTCGGGCAGCTCCTGGTCCGCAATCTATCTCTCGGGTTCGCTCGGCGCGTCCGCCTTCATCGCCGGCGCGGGCTTTATTGCCCTGCAGGGAACCCAGTTTGTAGGACGGATCATTGGTGACCGGCTGGTGGACCGCTTCGGTCAACGCTCTGTTGCCCGAGCCGGCGGCTTTATTGTGCTGCTCGGGATGGGCGTGGCCCTCGCTTTTCCGTCTGTCATGGGAAGCATCGCCGGGTTCGGCCTTGCCGGGTTCGGCGTTGCCACCCTGATCCCTGCCGCCATGCACGCGGCGGATGAATTGCCGGGATTCCGCCCAGGCACAGGCCTCACCATCGTCAGTTGGCTGCTGCGTTTGGGTTTCCTCCTCTCCCCTCCGGTGGTCGGCGCCATAGCCGATGCCACATCCCTTCGGCTCGGCCTGCTCATCGTCCCCGCCGCCGGCCTGCTGGTGATGGTTTTCGCTGGCGTGCTGGCGCCGGCCCGGCGGCAGCTTTCCAAGGCGTCTGCGGCTGCAGGCAAGAGCGCCTTATAAMAIAPLLARQPAREARRARFAVNVLFFTNGAIFASLLPRYPEIKTDLGLTNAVFGLAVAAFPFGALLAGLSAGFLVRRFRSSRVAIVATVLASLGILLAAGAPAWAALAAGFFLAGAMDSITDVAQNSHGLRVQRLYGRSILNSFHAVWSVGAVAGGVLGAAAAELAVSRFFHLGMAAVVFSLMAALSYRLLLSGPEPLDSVGDDDTGSERLERAAETGKPASKSVTKYGALLALVIIASAGALVEDSGSSWSAIYLSGSLGASAFIAGAGFIALQGTQFVGRIIGDRLVDRFGQRSVARAGGFIVLLGMGVALAFPSVMGSIAGFGLAGFGVATLIPAAMHAADELPGFRPGTGLTIVSWLLRLGFLLSPPVVGAIADATSLRLGLLIVPAAGLLVMVFAGVLAPARRQLSKASAAAGKSALNANANANANA
D1-29_00643507hypothetical proteinGTGGGTTCCCCGCTTCCGCGCGACCCCATCTCGGACGCCCAGCACAACTGGGAGGAGCACGGCTGGGCTGACGTTGCCGCCCCCATGGCTGCAATCACCGCAATCATGCGCACCCAGCAAATCCTCACGGCCAGGATCGAGGCCTCCCTCAAGCCCTTCGGCCTGACGTTTGCCAGGTACGAACTGCTGGCTCTGCTCAGCTTCACCCGGAGCGGCGCACTGCCCATGAACAAGGCAAGCTCCCTTCTCCAGGTCCATCCGACGTCGGTGACCAACGCCGTCGACCGCCTCCAAAGCGCGGGGCTGGTGACCCGCTCACCGCACCCCACAGATGGCCGCACCACACTGATTGAACTCACCGCCCAAGGCCGTACTCTCGCGAAAAGCGCGACGGCGGTACTGAACGCCGAGGTCTTCGGCCAGTCCGGATTCACCCCCGAAGACATTGGCCACCTGATCCGGATCCTCGCCGATTTCCGCCGCAAGGCCGGCGACTTCACCGACTGAMGSPLPRDPISDAQHNWEEHGWADVAAPMAAITAIMRTQQILTARIEASLKPFGLTFARYELLALLSFTRSGALPMNKASSLLQVHPTSVTNAVDRLQSAGLVTRSPHPTDGRTTLIELTAQGRTLAKSATAVLNAEVFGQSGFTPEDIGHLIRILADFRRKAGDFTDNANANANANA
D1-29_006441209mmgC_1COG1960Acyl-CoA dehydrogenaseGTGCAGCCACATGGACACGAGAAGGATGCCTTTCCTGGAACTGGCGGCACGCCACCCTTTCCTGATGCGGACCTGCTGTACATCGTGGACCTTTTGCCCGAGTCCGAGCGTCAGCGATACCGTGCCATCCGGACCTTCCTTCAGTCCTCAGTGCGGCACGCATCCATTGACTACTGGAACCGTGAAGAATTCCCGTTCGGGCTGCTTGCAGAGATGGGCAAGCACGGGCTTGGCGGACTGCAGACGGACGGCAGCTCCAAACTTTTCAAGGGCCTGATGTACGTGGAGCTGGCGCGGGCCGACGTATCCCTCTCCGCCCTGGTGGGGATCCATAACGAACTCATCGTGGGCATGATCAATGAACTCGGCTCCGAGGAGCAGCGGCAGCGCTGGCTGCCGGGCCTGACCTCCTTTACCCAGCTGGGAGCGTTCGCCCTGACGGAACCGGACCATGGATCAGACATTGCGGGCGGCCTTGAAACATCTGCCCGGCTTGAGGGCGGCGAATGGGTGATCAACGGCGCCAAGCGCTGGATCGGCGCCGGAACCATTGCCGACTTTGCCCTGGTATGGGCCCGCGACCAGGCCGACGGGCGCATCAAGGGCTTCATCGTGGAGACAGACCGCCCTGGTTACCGGGCCACCAAGATTTCCAACAAGATCGGACTGCGGATCATGCAGAATGCGGACATTGTGCTGGACGAAGTCCGCGTTCCTGAGTCCAACATATTGCCGGGCGCTACTGACTTCTCCAAGGCCAACGACCTGCTGCGGGATTCGCGTGCGTGGGTGGGATGGCAGGCTGCTGGCATCCAGCTCGCGGCCTTCGACGTGGCCCGTTCCTACTCGCTGACGCGCCGGCAGTTTGGCAAGGAGTTGGCCCGCTTTCAGCTGATCCAGCAGCAGTTGGCCGAAATCCTGGGCAATGCGTCCGCCTCACTCGCCCTGATGGCGCAGGTAGCCAGGATCCAGGAGGAAGGCCGGCTGGAAATGGTGCAGGCCGCCATGGCCAAATCCACCGGCACCAGGCTGGCGCGGGCTTCCGTGGCGATGGGGAGATCACTCCTGGGCGGCAATGGGATCAGCACGGACTACGAGATGGCCAAGCTCTTTGGCGACGCCGAGATCCTGTACACCTACGAGGGCAGCTACGAAATCAATTCGTTGATTGTGGGGCGTGCCGTCACGGGGAAGTCGGCCTTCGTCTAGMQPHGHEKDAFPGTGGTPPFPDADLLYIVDLLPESERQRYRAIRTFLQSSVRHASIDYWNREEFPFGLLAEMGKHGLGGLQTDGSSKLFKGLMYVELARADVSLSALVGIHNELIVGMINELGSEEQRQRWLPGLTSFTQLGAFALTEPDHGSDIAGGLETSARLEGGEWVINGAKRWIGAGTIADFALVWARDQADGRIKGFIVETDRPGYRATKISNKIGLRIMQNADIVLDEVRVPESNILPGATDFSKANDLLRDSRAWVGWQAAGIQLAAFDVARSYSLTRRQFGKELARFQLIQQQLAEILGNASASLALMAQVARIQEEGRLEMVQAAMAKSTGTRLARASVAMGRSLLGGNGISTDYEMAKLFGDAEILYTYEGSYEINSLIVGRAVTGKSAFVPGPT0021815_1173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-29_00645189hypothetical proteinATGGCGGGTAAATTCGAAGTCTTTCGGGACAATGACGGACCACTGCCGTTCAGGTTCCTCCTGCGCGGCAGCGACGGTTCGGTGATTGCCGTTTCACCACAACTGGGCAGCATTAGTGCGGTGAAAGCCGGCATTGTGGCAGTCAGGGAAAGCGCTGCCAGCGGCAGCATCGTAGACCTGACTGAGTAGMAGKFEVFRDNDGPLPFRFLLRGSDGSVIAVSPQLGSISAVKAGIVAVRESAASGSIVDLTENANANANANA
D1-29_006461086hypothetical proteinATGCGCTTTGAACGCGGGAAGACCGACGGCGGCGCATCCTCCGGGACGGACGGCCAGCCCTCGTTCAGCAACACAGTTCCCCGCGAACTCGTGCACCGCCGCGCCATCTCCGAAGTTTTTATGACGGACATCCACCGGGTTGGTGAGGGCCGGTACCTGGCCGCCGCACAATGGCCGCGGCTGCATCCCTTCTTCCATTCCGGGGCTGGGGCGTATGACACTGCCCTGATCGCCGAATCACTCCGGCAGGCTACGATCCTGGTTGCCCATGCCATGGAAGGCGTGCCTCTGGGACAGGTTTTCCTGATGCCCGACATGGCCGTTCAGTCCCTCGGCGGCCACGCCGGCGATCCCGGCACTCCTGCCGAGGTCCATGTGCTGCTCGACGCCTCCGTCTCACGACGGAACGCGCACGGACCGGGCGCCATGCGGATAAAGGCCAGGTTCGACGTCGGCGGGCGCGCCATTGCCACCGGAACGGCCGGAGCACGGCTGGTGGATCCGGAAAGTTATGCCAGGATGCGGCGCCGGGCCGGCGCTGATGGCCCATCTCCTCAGACCAAGCCGCTGCCGGCCGAACTGGTGGGGCACCGGTTCTCACACAATGTTGTCCTCGGCCACGAGGGGCCGGCCGGTAGCTGGCCACTGCACGTTGACGGCAGCAACCCCACGTTCTTCGACCATCCCCTGGACCACGTCCCGGGGCTTCTGATGGTGGAAGCGGTCCGGCAGGCCCTTCGTGTGCGGATGGGGGCCCCCTGCCTGGACTTTCAGGCCTTCGAGGCTGTGTTCCGGAAAATGGTGGAACTCACTGACGACGCGTCCGTATCACTGCAGCGTATGACCGTGGGCGGCCAGGATGAGGGGCATGCTTCTGCCGCCATCACGGTGGACGGCACGGTGTGCGTGGAGCTTGATTGCCGGTTTGCAGTCAGTCCGCCGAGTGATCTCCGGCAGGATCCGCCCCACGAATGCTCAGGTGCGCAACGGCCAGGAACTCAGGCAATTTGGCGTCGGGAACCATTCCAGGCAAGAGGATCGACCACATATCCTCGATCCGCCTCAGGACATCAGCACGGTGGGTGAMRFERGKTDGGASSGTDGQPSFSNTVPRELVHRRAISEVFMTDIHRVGEGRYLAAAQWPRLHPFFHSGAGAYDTALIAESLRQATILVAHAMEGVPLGQVFLMPDMAVQSLGGHAGDPGTPAEVHVLLDASVSRRNAHGPGAMRIKARFDVGGRAIATGTAGARLVDPESYARMRRRAGADGPSPQTKPLPAELVGHRFSHNVVLGHEGPAGSWPLHVDGSNPTFFDHPLDHVPGLLMVEAVRQALRVRMGAPCLDFQAFEAVFRKMVELTDDASVSLQRMTVGGQDEGHASAAITVDGTVCVELDCRFAVSPPSDLRQDPPHECSGAQRPGTQAIWRREPFQARGSTTYPRSASGHQHGGNANANANANA
D1-29_00647666arpAA-factor receptor proteinATGCCCCTGCAGGAACGCGCCAAGGCTACAAAGGTGTCCATTGTGGAAGGCGCGGCGGCCGTTTTCGAGGAAATCGGCTACGGCAACACGAGCCTGAGCAGCGTTGCCGAACGGGCCGGAGTGACCAAGGGTGCGCTGTACTTCCACTTCAAATCCAAAGAGGATCTGGCGCTGGCAGTGATCGAATCCCAGCATGAAGTGGTCAGCCGCGAAGGCCAGCGCGTCGCGGACCTCGGCCGCGGCGCCCTGTCCACCATGATCATGACCTGTGGCAGTTTTGGCCGGCTGCTGGTTGAGGAACCCATCGTCCGGGCGGGCATTCGCCTGACCCTTGAGGCGTCTGCCTTCGGGCAATCGGTGACGCGGCCCTACCACGACTGGATCCACACCATGGAGCTGCTGACCCGGCAGGGCCAGGCCGAGGGGGACATCCACCAGGCGGTGGATGCCGCCGCGTTTGCACGGTATCTCGTGGCATCCTTTACAGGCGTGCAGATGGTCTCAGGCATCCTCACCCACCGTGCTGATGTCCTGAGGCGGATCGAGGATATGTGGTCGATCCTCTTGCCTGGAATGGTTCCCGACGCCAAATTGCCTGAGTTCCTGGCCGTTGCGCACCTGAGCATTCGTGGGGCGGATCCTGCCGGAGATCACTCGGCGGACTGAMPLQERAKATKVSIVEGAAAVFEEIGYGNTSLSSVAERAGVTKGALYFHFKSKEDLALAVIESQHEVVSREGQRVADLGRGALSTMIMTCGSFGRLLVEEPIVRAGIRLTLEASAFGQSVTRPYHDWIHTMELLTRQGQAEGDIHQAVDAAAFARYLVASFTGVQMVSGILTHRADVLRRIEDMWSILLPGMVPDAKLPEFLAVAHLSIRGADPAGDHSADNANANANANA
D1-29_00648927hypothetical proteinATGACGCAGAGCTTGCCCGGGATGACCGTCCTGCTTGTGGGCGGATCCGGTTTTATCGGCCAGAACGCCCTTCAAGCCATCGCTGCCCGGAAGGAAATTAAGCTTCGCGTCCTCACCCGGCGGACCACCGCCCTCATGAAGGCCAGTGAAGCCAGCATATACGTCGGCGACCTCATGGACCGCTCAACCCTTCAAGCGGCACTGTTCGGAGCGGACGCCATCATCAACGCATCCTCCTACACCGGAGCCGACGCTTCCAAAGCCGAAGCTGTCAACCATGAAGGGGTGCGGAACCTGCTTAGCGTTGCCCATGACTGCGGCGTCCCGGGGTTCATCCAGCTCAGCACAACCGCGGTCTACGGCAGCGGGCCGCACCGCGGGGACACGGAGATGGAACTTGCCTGCCGGCCGGAATCGACTGTCAGCCGCACCCGGCGGGCGGCCGAAGAACTCGTACTGGCGGCTGGAGGCACAGTGCTTCGAGCAGGCTTAATCTACGGTCCTGGCGACATTTGGTTTATTCCGTCCCTGATCCGCATGGCCACAATGCTGGGAGGGCCGGTGGGCGACGGCGAGTCCAAACTTTCGGTTATCGGCGTCGAGTATTTGGGCGGCCTGATTGCCGGGCTGCTCCCGCTCGGCAGCCAGATACGCGGGGTCTTCCATGCCGCTGAACCCGTTCCGGTGAGCGTCGGGCAGATCCTGCAGCACATCGAAGACAACGTGACAGGTCCCCGCTGGTCACGCAGTACTGACTTGGCGGCGGCCATCGCACTGCTCCACGGAAACGGCCTGACGGAGCATCAGGTGGCGCTGCTCTCACAGGACCACTGGTATCAGTCCGACAGGCTCTGGACTATGGCGGGCGTGGAACCGCCACGCTTTGGATTCTCCCGGGCAGCGGCTGAGTGGTACCGCCGCTTATGAMTQSLPGMTVLLVGGSGFIGQNALQAIAARKEIKLRVLTRRTTALMKASEASIYVGDLMDRSTLQAALFGADAIINASSYTGADASKAEAVNHEGVRNLLSVAHDCGVPGFIQLSTTAVYGSGPHRGDTEMELACRPESTVSRTRRAAEELVLAAGGTVLRAGLIYGPGDIWFIPSLIRMATMLGGPVGDGESKLSVIGVEYLGGLIAGLLPLGSQIRGVFHAAEPVPVSVGQILQHIEDNVTGPRWSRSTDLAAAIALLHGNGLTEHQVALLSQDHWYQSDRLWTMAGVEPPRFGFSRAAAEWYRRLNANANANANA
D1-29_00649204cspA_1COG1278putative cold shock protein AATGGCAACAGGCACAGTTAAATGGTTCAACGCTGAAAAGGGCTTTGGCTTCATCGCTCCGGACGACGGATCCGCCGATGTTTTCGCGCACTACTCCGCAATCGCCAGCAGCGGATACCGCTCACTGGACGAGAACCAGAAAGTCGAATTCGATGTGACCCAGGGCCCCAAGGGCCCCCAGGCAGAGAACATTCGCCCGCTGTAAMATGTVKWFNAEKGFGFIAPDDGSADVFAHYSAIASSGYRSLDENQKVEFDVTQGPKGPQAENIRPLPGPT0014675_6587DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-29_00650627liaR_2COG2197Transcriptional regulatory protein LiaRATGAACCCCATCACTGTCCTCCTGGTGGATGACCATCTGGTGGTCCGGAGCGGCCTCAAGGCGCTGCTGGGTACCCAGCCTGACTTTGAGGTGGTGGCCGAGGCGAGCTCCGGCGAGGAGGCGCTGGAACTCGTGGAACAGTACTCCCCTGCCGTGGTGGTGATGGATCTGGCCATGGGCCCGGGGATGGATGGGATCGAGGCCATCAGGCAGCTGCGGCAGCGCAACAGCCGGCAGGCCATTCTGGTTTTCACCACCTATGATTCGGACGCCGATATTGTCCGGGCGGTGGACGCCGGCGCCATGGGCTACCTCCTCAAGGACGCCGCCCCGGACGAAATTTTCGCCGCCCTCCGCGGCGCCGTCCAGGGAAAGAGCGTCATGAGTCCGCCCGTGGCCTCGCGGCTCTTCCAGCAGCTGCGCAATCCCGATGACGTCCTGACGCCCCGGGAGGCGGAGCTGCTGAGCCTTCTCACTGAGGGGCTCAGCAACCGGGAGCTGGGGCAGCGGCTGTTCATCTCCGAGGCCACCGTCAAAACCCATCTGGCGCACATTTATGCCAAGCTCGGCGTGGAGACCCGCGCGGCGGCCATCGCCACGGCCATCCGCCGGGAGGGTATGCGCTAGMNPITVLLVDDHLVVRSGLKALLGTQPDFEVVAEASSGEEALELVEQYSPAVVVMDLAMGPGMDGIEAIRQLRQRNSRQAILVFTTYDSDADIVRAVDAGAMGYLLKDAAPDEIFAALRGAVQGKSVMSPPVASRLFQQLRNPDDVLTPREAELLSLLTEGLSNRELGQRLFISEATVKTHLAHIYAKLGVETRAAAIATAIRREGMRPGPT0014870_138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_006511305hypothetical proteinATGCCCTCGCCAGCTACTCCCCCCGAAGTGCCGTCCACGGGCGCCGCCCTGCCCGCCGGATCTGATGCGCCCCCAGGCCGCCTGGGCAGGATCGACGCCGCCGTGCACCTGGGCTTCGCCGTCCTGCTCGTCGCATCAGCAGTCCGTTATGCCATGCGGCACAGCCTGCAGGACAACCTCCTGGTCCTGGGACTGGCGGGAGCGGTCTGCGCCGTTTACGCCGTGATTGCGGTGCTGGCCCGGCAGAGGCGGCCCTGGGCGGTCTGGATGGTGGTGCTGGTGGCCATCTGGGCTGTCCTGGTCATTGCCGCACCAAGCTTTGCCTGGTGTTCCTTCGCGATCTTCTTCCTGTGCCGGACCGCCTTCACGGGCACTGTGGGCTACGTTGCGGCGGGGGCGACGGCGGCTGCCACCGCCGTCGGGCTGTTCCGGCTGAGCGACGGCACCGACCTCGCGATGCTGCTGGGGCCGCTTGCCGTCGGCGTGATGCTGACGCTGATCTACGACCGGATCGAGCACGACGCCGAGCAGCAGCGCCGCCTTCACGCCGAGGTCTCACAGGTGCAAGGCGAGCTGGCAGCCAGCGAGCGCCGGGCCGGAACCATCGCCGAACGCGAACGTGTATCACGGGAGATCCACGACACCGTGACGCAGGGCTTGGCCAGCAGCCTCCTGCTTCTGGAAGCCGCGGACCGTTCGTGGCCCAGCCAGGAGTCACGCCGGGATGTCAGCCAGGCCACTGAACTGCTGCGCAGGAACCTCTCGGAGACCCGCAGCCTGGTCCACGAGCTTGCTTCCCCGGGACTGGACGTTTCACCGCTGGCCGAGGCACTGCACCAGGCCGCCGCCCGGTACGTTCCGCATGCCCGGCTCCTGGTTACGGGCGAACCCGGGAACGTCACCACGGAGGTCCGGCACACGCTGCTGCGGGTGGTCCAGAGCGCGGCGGCGAACATCCAGCAGCACGCGAACGCCACCACCGCAACGGTGACACTGGGTTTCCTTCCCGACTCGGTCACGCTGGACGTTTACGACGACGGAACGGGCTTTGACCCTGCGGCGGCCGCACCGCCGTCGGACGCCGGGGGCTACGGGCTGCGGGCGATGCGCCAGCGGGTGGAGCAGCTGGGCGGCGTATTCTCGGTGGAAAGCTCGCCCGGCGAAGGGACGATAGTGGCCGCCCAGGTTCCGACCCGCCTGCAGACGGGACAGTCAGCGGAGGCAGAGCGGGTAGGGCAGGCGGAGCAGCCACTCCAGCCGGAGCGGGTAGGGCAGGCGGAGCAAACAGACCGGGAGCAGGCATGAMPSPATPPEVPSTGAALPAGSDAPPGRLGRIDAAVHLGFAVLLVASAVRYAMRHSLQDNLLVLGLAGAVCAVYAVIAVLARQRRPWAVWMVVLVAIWAVLVIAAPSFAWCSFAIFFLCRTAFTGTVGYVAAGATAAATAVGLFRLSDGTDLAMLLGPLAVGVMLTLIYDRIEHDAEQQRRLHAEVSQVQGELAASERRAGTIAERERVSREIHDTVTQGLASSLLLLEAADRSWPSQESRRDVSQATELLRRNLSETRSLVHELASPGLDVSPLAEALHQAAARYVPHARLLVTGEPGNVTTEVRHTLLRVVQSAAANIQQHANATTATVTLGFLPDSVTLDVYDDGTGFDPAAAAPPSDAGGYGLRAMRQRVEQLGGVFSVESSPGEGTIVAAQVPTRLQTGQSAEAERVGQAEQPLQPERVGQAEQTDREQANANANANANA
D1-29_00652594hypothetical proteinGTGAAGAAGTCAAACAAGATTGCCGCCGCCGCCGCTGCCGGAGCCTTGCTGCTGACCGGAGGGCTGACCGCTGCGGCGAATGCCGGGCCCGGCCAAGCGGCTGCCCCCGCTGCACTTCAGGCGGCCGTGTCCGCCGTGGACGTCCCGCAGGCACCGGAAACGGTTGTGGCGCAGCAACGCATCACCGTCGGGGCCTCGTCCGACGCTGTCAGCGCCGCCCTGGCCAAATGCCAGGCGGACAAACTGCCGTTTGTCACGGTGGCGTTGGTGGACAGGTTCGGCACGGTCCAGGCTCTCCTGCGCGGGGACAACGCCGCCGAGCACACCATTGAGGCAGCGAAGCAGAAGGCCTACACCGCTGCTGCCTTTGGTGCACCGACGAGTGAGCTCGCCAAGCGCATCAACGGCACGGGCCCCAGCATCGCGGACCTCCCCGGCACTCTGTTCCTGGCCGGCGGTGTTCCGCTCAAGGTCAATGGAGTCTCCGTGGCCGGGATCGGTGTGGGTGGCGCCCCCGACGGCAACCTGGACGAAGCGTGCGCTGCCGCCGGTGCTGACGCCATCGCCGCTGCGGCTGCCGGCGCAGCCAAGTAGMKKSNKIAAAAAAGALLLTGGLTAAANAGPGQAAAPAALQAAVSAVDVPQAPETVVAQQRITVGASSDAVSAALAKCQADKLPFVTVALVDRFGTVQALLRGDNAAEHTIEAAKQKAYTAAAFGAPTSELAKRINGTGPSIADLPGTLFLAGGVPLKVNGVSVAGIGVGGAPDGNLDEACAAAGADAIAAAAAGAAKNANANANANA
D1-29_00653732hypothetical proteinATGAGGCGGTTCAGCTACTGGCGCCCGGCACGGAGGGCAACGGTCCTTTTCCTGGCCTGTGGTGTAACGGTCTGTTTGGCGGCGTGCCAGGCGGATCCTGGTGAGCCACAGCAGGAGGGGGCGCCGGCGTCGTCCGTTCCGGCAAACCCGGAGCCTACCCCAGCCGCCTCTTCCACCGATGCCACTTCCCCAGCCGCCACAACAGCTCCTGCCACGCCACCGCCGCTGTCCGCGGAGGACCAGGCCCGGCTCGACCAGGAGCTCATTGCTGCCGCGAAGGCCAACAACGTGGCGCTGGTGACCGAGCTGATCGGACGTGGTGGAAACGTCAATGCCAAGGATGCCATCCAGGACTCGGCGTTCCTCTATGCCGGGGCGGAGGGCTTCAACGAGGTCCTCCGGCTGACCCTGGACGCCGGTGCAGACGTCACCAGCACCAACCGCTACGGCGGGACGGCACTGATCCCGGCCAGCGAGCACGGCCACGTGGAGACCGTCCGCATCCTCCTGGCAGCCGGCGTGCCCGTGAACCACGTGAACAACCTGGGCTGGACCGCCATGCAGGAGGCCATTCTGCTCAACAACGGCGGGCCGAGGCAGCAGGAGGTGGTATGGCTGCTCCTCGAGGCAGGTGCTGACCCCACCGTCCGGGATCCCCAGGGCCGCACAGCCCTGGAGAACGCCGAACGCCTGGGCTTCGTGGAGATCGCCAACCTCATCCGCGCCGGCTAGMRRFSYWRPARRATVLFLACGVTVCLAACQADPGEPQQEGAPASSVPANPEPTPAASSTDATSPAATTAPATPPPLSAEDQARLDQELIAAAKANNVALVTELIGRGGNVNAKDAIQDSAFLYAGAEGFNEVLRLTLDAGADVTSTNRYGGTALIPASEHGHVETVRILLAAGVPVNHVNNLGWTAMQEAILLNNGGPRQQEVVWLLLEAGADPTVRDPQGRTALENAERLGFVEIANLIRAGNANANANANA
D1-29_006541197fadA3-ketoacyl-CoA thiolaseATGAGCCTGAAAGAACAGTTTGGAAAAGACGTCCTACTCACCGGATGGGGCCACAGCCGGTTCGGCAAGCTCACGGAGGAGACGCTCGAGTCGCTGATCGTGCAGGTTGCCACGGAGGCCATCAGCAGCGCCGGCATCGAGCCCGGGCAGATCGACGAGATCTACCTGGGCCAGTTCAACTCGGGCATGATGCCTTTGGCCTTCCCGTCGTCGCTCGCGCTGCAGGTCTCACCGGACCTGGCCAACGTCGCTGCCACCCGGGTGGAGAACGCCTGCGCCTCGGGATCCGCCGCCTTCCAACAGGGCACCAAGTCGCTGCTCGCCGGAACGGCCAGGACGGTCCTGGTCATCGGCGCCGAGAAAATGACGCACGCCGGCGCGGACGTCGTCGGGGCCGCCCTGCTGGGCGCTGACTACGACATGGCCGGCCACCCGTCCACCACCGGATTCACGGGGCTCTTTGCCGACGTCGCTAAGCACTATGAGAAGCGGTACGGGGACGGCAACGGAAAACTGGGCGACGTCCTGGGCACCATCGCGGCGAAGAACCACCGCAACGGTGTGGACAACCCCTACGCCCAGCTTCGCAAGGACCTTGGCGAGGAGTTCTGCCGCACCGTCTCGGACAAGAACCCCCTGGTGGCGGATCCGCTGCGCCGCACCGACTGCTCCCCCGTGTCCGACGGCGCCGCCGCCGTCGTGCTGTCCGTGTCACCCACGGGAGGTGTTACGTCGCCGGTACGGCTGGCCGGTTTCGGTCACGCCAACGACTTCTTCCCCGCCGAGCGGCGGGATCCCACTGCCTTCGCCGCCACCCGCCAGTCATGGCACCGCGCGCTGGCGATGGCCGGCGTCGCGCTGGAAGACCTGGATTTCGCAGAAGTCCACGACTGCTTCACCATCGCCGAACTGGTGATGTATGAGGCCGTGGGACTCACGGAGCCCGGCCAGGGAGCCCGCGCTGTGGAGGAAGGCTGGGTGTTCAAGGACGGCAGACTGCCCATCAACGTCTCCGGCGGGCTCAAGGCCAAGGGACACCCTGTCGGCGCAACTGGAGTATCGCAGCACGTCATCGCGGCCATGCAGCTGACAGGCACCGCGGGCGACATGCAGCTGGCCAAGCCACGCCGGGCAGCGGTGCAGAACATGGGCGGCGTGGGCATCGCCAACTACGTCAGCGTGCTCGAAGCCGTGTAAMSLKEQFGKDVLLTGWGHSRFGKLTEETLESLIVQVATEAISSAGIEPGQIDEIYLGQFNSGMMPLAFPSSLALQVSPDLANVAATRVENACASGSAAFQQGTKSLLAGTARTVLVIGAEKMTHAGADVVGAALLGADYDMAGHPSTTGFTGLFADVAKHYEKRYGDGNGKLGDVLGTIAAKNHRNGVDNPYAQLRKDLGEEFCRTVSDKNPLVADPLRRTDCSPVSDGAAAVVLSVSPTGGVTSPVRLAGFGHANDFFPAERRDPTAFAATRQSWHRALAMAGVALEDLDFAEVHDCFTIAELVMYEAVGLTEPGQGARAVEEGWVFKDGRLPINVSGGLKAKGHPVGATGVSQHVIAAMQLTGTAGDMQLAKPRRAAVQNMGGVGIANYVSVLEAVPGPT0008320_5674DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_00655702scoB_1COG2057putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit BATGGCCTGGACCAGGGATGAAATGGCTGCCATCGCGGCCGAAGAATTGAACGACGGCGACTACGTGAACCTGGGCATCGGCATCCCCACACTGGTGGCCAACAACCTGCCCGACGGCGTCCGCGTGGTCCTGCAGAGCGAAAACGGCCTGCTCGGCATGGGTCCGTTCCCGTATGAGGGCGAGGAAGATGCCGATCTCATCAACGCCGGCAAGCAGACCGTCACAGTCCTTCCGGGCGGCAGCATCTTCGACTCCGCCACCTCCTTCGGGATGATCCGCGGCGGCCACGTCAAGGTGGCCATCCTGGGCGCCATGCAGGTCTCGGGCAACGGCGATCTGGCCAACTGGACCATCCCCGGCAAGATGGTCAAGGGCATGGGCGGCGCCATGGACCTGGTGGCCGGGACACCGCGTGTTGTTGTCCTCACCGAACACGTTGCCAAGGACGGCACCGCAAAAATCGTCACCGAATGCACCCTTCCGCTGACAGGGCTCAGCTGCGTGGACCGGATCATCAGCGACCTCGCGGTCTTTGACCTGGTGAGGAATGAACAAGGAACAGCCGACGGCGGCCGGCAGCTCACCCTGACCCGCCTGGCGCCAGGCGTCAGCGTGGAGGAGATCCGCGGGAAGACCGAGGCGGAGTTCGCCGTCGCACTGGAAAACAACACTGCCCCCGCCTTCGAAGGAGCCCCAGCATGAMAWTRDEMAAIAAEELNDGDYVNLGIGIPTLVANNLPDGVRVVLQSENGLLGMGPFPYEGEEDADLINAGKQTVTVLPGGSIFDSATSFGMIRGGHVKVAILGAMQVSGNGDLANWTIPGKMVKGMGGAMDLVAGTPRVVVLTEHVAKDGTAKIVTECTLPLTGLSCVDRIISDLAVFDLVRNEQGTADGGRQLTLTRLAPGVSVEEIRGKTEAEFAVALENNTAPAFEGAPAPGPT0008330_52DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029NANA
D1-29_00656720scoA_1COG1788putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit AATGTCCAAACTCAAACCCAGCGCTGTCGAGGCCCTGCATGACGTGCTCAAGGACGGCATCACGCTGGCCGTCGGCGGCTTTGGCCTCAGCGGTATCGCGGCGGACCTCATCGACGCTGTCCGGAACTCCGGCGTCCGGAACCTGACAGTCGTGTCCAACAACATGGGCGTCGACGGCAAGGGCCTGGGGATACTGATCGAGGCCGGCCAGGTCCGCAAGGTCATCGCCTCCTATGTGGGCGAAAACAAGCTGTTCGCCGAGCAATACCTCGCCGGCCTCCTGGAGGTGGAGTTCACCCCGCAGGGGACCCTCGCCGAACGGCTTCGAGCCGGCGGGGCGGGCATCCCGGCGTTCTACACCAAGACCGGCGTGGGAACCCTGGTTGCCGAAGGAAAGCCACATGAGGTGTTCGACGGCGAAACGTACGTCCAGGAGCGGGCCATCCTGGCCGATGTCGCCCTCGTCCACGCGCACACTGCCGACACAGACGGGAACCTCGTGTACAGATACACGGCCCGGAACTTCAACCCGGTGGTAGCCAGCGCCGGCGCGGTCACCATAGCGGAAGCCGAAGTGATCGTGGAGCGCGGCGAGCTGGATCCGAACCACATTGTCACGCCAGGCGTCTACGTCCAACGGCTTGTCCAGTCGTCCGGGAGGGTGAAGGACATCGAACAGCGGACCGTCCGCCCGCGCGCCTCCGAACCCGTCCCCGCCTGAMSKLKPSAVEALHDVLKDGITLAVGGFGLSGIAADLIDAVRNSGVRNLTVVSNNMGVDGKGLGILIEAGQVRKVIASYVGENKLFAEQYLAGLLEVEFTPQGTLAERLRAGGAGIPAFYTKTGVGTLVAEGKPHEVFDGETYVQERAILADVALVHAHTADTDGNLVYRYTARNFNPVVASAGAVTIAEAEVIVERGELDPNHIVTPGVYVQRLVQSSGRVKDIEQRTVRPRASEPVPAPGPT0008325_590DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028NANA
D1-29_00657786kipR_2COG1414HTH-type transcriptional regulator KipRATGAACCAACTTCCCGTCCAGGGTGCCCAGGTAGTCAGCCGAATTGCTGGCCTGTTACGGATTGTGGGGCGAAAGCCCGAGGGGAGCACACTGGTTGAAGTGGTCCGGGAATCGGGCCTCACGCGGCCCACGGTTCACAGGCTCCTGACGTCCCTGGCGTCCGAGGGGCTGCTGGACCACGAGGCCCGCACCGGCAACTGGGTCCTGGGCCCGGAGATCCTGCTGATGGGCTCGGTTGCTTCGGCCCGGTTCCCGCTTGAGGAGATCGCCCGGCCCAGCCTCCGCCGGCTGGCAGAGGAAACGGGGGAGAGTGCCTTCTTCTCCATCCGCCGCGGTTTTGAAACGGTCTGCCTCCTGCGCGAAGAAGGCAGCTTTCCGGTCCGTTCCTTTGTGCTGCACGAAGGCGTCCGGTTCCCGTTGGGTGTTGCCTCGGCAGGAACCGCGATCATGGCCTTCCTGCCGGAAGCGGAGCAGGACCAGCTGCTGGATAACTGGGCGGCCCATGCCGGACAGTTCGCCGCCGGTCATCCCGAAGGCGTGGTCCGGGAAAATTTGCAGAAGACCCGTGAGGCTGGCTTTTCCGTCAACCCGGGCCTGGTGCTGGAGGGAAGCTGGGGGATGGGCGCCGCCGTGTTTGATCCGGCGGGTCGCCCGTCCGGTGCGCTGTCCCTCACCGGCATCGAGCCGCGGTTCCGGCAGGAGCGCCGGGACTTCCTGGGGCGGCTGCTGATGGAGGAGGCGCACCGGATCACCGTTCAGCTGGCCGGCCCCGGCAAGGAACTGTAAMNQLPVQGAQVVSRIAGLLRIVGRKPEGSTLVEVVRESGLTRPTVHRLLTSLASEGLLDHEARTGNWVLGPEILLMGSVASARFPLEEIARPSLRRLAEETGESAFFSIRRGFETVCLLREEGSFPVRSFVLHEGVRFPLGVASAGTAIMAFLPEAEQDQLLDNWAAHAGQFAAGHPEGVVRENLQKTREAGFSVNPGLVLEGSWGMGAAVFDPAGRPSGALSLTGIEPRFRQERRDFLGRLLMEEAHRITVQLAGPGKELNANANANANA
D1-29_00658357hypothetical proteinATGACCCACGACGTCGACACGTACCTCGCGGGGAAGCCGCCTGCCGCCGTCGAACTTTTCCGCCGGTTCCGCGCCTTGGTACTTGCCGCGGGCGAGTGCGAGGAGCGGGTTCACCGCACCGAGGTGGCGTGGGCGGACCGGCGCGTCTTTGCCGAGGCATTCATTCTCTCCGGCCGGCTGGAAGTGGCCATTGACCTGTTGCGGCAAGTGGACCACTCTGCGCTGCTGCAGAAATTTCCTACGACCAGGAAGGTCTACACGCACCGGTTTTCGTTCACTCATGCCGGCCAGCTGGACGCAGACATCGAGGCGTGGCTAGTGGAAGCACACGACACCGTGGGCCCCGGCACGCGCTAGMTHDVDTYLAGKPPAAVELFRRFRALVLAAGECEERVHRTEVAWADRRVFAEAFILSGRLEVAIDLLRQVDHSALLQKFPTTRKVYTHRFSFTHAGQLDADIEAWLVEAHDTVGPGTRNANANANANA
D1-29_00659855nadE_1COG0171NH(3)-dependent NAD(+) synthetaseATGCGCGAACTCCAGGCCAGAATCGTTGAAGAAATGGGCGTGCAGCCCCGGATCGACCCCGCCGGGGAGGTGCGCAAACGCGTCGACTTCCTCAAGGACTACCTCAAGGCAACGCAGACGAAGGGCTTTGTCCTGGGCATCTCCGGCGGCCTGGACTCCTCGCTGGCGGGCCGCCTGGCCCAGCTTGCCGTGGAGGAACTGGAGGCCGAAGGTGTCGAGGCCAACTTTGTGGCAGTGCGGCTGCCTTACGGTGTGCAGCACGATGAAGAGGACGCGCAGGCGGCTTTGGACTTCATCCAGGCCAAGACCCAGTGGACGTTCAACATCTCCGCCGCCGTGGACGGCTTCGAGGACGAGTTCGAAAAGACTGTGGGAAACGGTATTTCCGATTTCCACAAGGGCAACACCAAGGCACGCACGCGCATGACCGCCCAGTATGCCCTGGCCGGTGAATACAACTACCTGGTCATCGGCACGGACCACGGCGCCGAGTCGGTTACGGGGTTCTTCACCAAGTACGGCGACGGCGGAGCTGACATCCTGCCCCTGTTCGGCTTGAACAAGCGCCAGAACCGTGAACTGCTCGCTGAACTCGGGGCGCCGGCACGCATCTGGGAAAAGGTGCCCACCGCCGACCTTCTGGACGGCAAGCCCGGCCGCACTGACGAAGACGAACTGGGCCTCAGCTACGACCAGATCGACGACTATCTTGAGGGCCGGGACGTACCGGACGAGGTCGCTGAAAAGATTGAAGGTAAGTACCTTCGCACACGTCACAAGCGCACGGTGCCCGTCAGCATCTTCGACTCCTGGTGGAAGCATGAGGGTCCCGAGGAGCCCCGCGTCGGCCTCTAAMRELQARIVEEMGVQPRIDPAGEVRKRVDFLKDYLKATQTKGFVLGISGGLDSSLAGRLAQLAVEELEAEGVEANFVAVRLPYGVQHDEEDAQAALDFIQAKTQWTFNISAAVDGFEDEFEKTVGNGISDFHKGNTKARTRMTAQYALAGEYNYLVIGTDHGAESVTGFFTKYGDGGADILPLFGLNKRQNRELLAELGAPARIWEKVPTADLLDGKPGRTDEDELGLSYDQIDDYLEGRDVPDEVAEKIEGKYLRTRHKRTVPVSIFDSWWKHEGPEEPRVGLPGPT0013445_815DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013445-nadE-K01916NANA
D1-29_00660576pyrECOG0461Orotate phosphoribosyltransferaseATGACTTCTTCCCCCCTCGATACCGCCTCCGCACGCGCCCGCCTTTTGGAACTGATCAAGGAGCTCGCCGTCGTCCGGGGCAAGGTCATCCTCTCCAGCGGAGCGGAGGCGGACTATTACATTGACCTGCGCCGCATCACCCTGCACCACGAGGCTTCCAAGCTGGTGGGTCAGGTCATGTTGTCCCTGGTGGACGACGCCGGCATTGACTTTGAGTGCGCCGGGGGCCTGACCATGGGGGCAGACCCAGTGGGTACCGCTGTGATGCACGCCGCGGCAGATGCCGGGCGGACAGTTGACGCCTTTGTGGTGCGCAAGGCGCAGAAGTCCTACGGCATGGGCCGCCAGGTTGAGGGCCCGTCAGTTGAGGGACGCAAGGTACTGGTCCTGGAGGACACGTCCACCACAGGCGGCTCTGCCCTGACCGCTGTTGAGGGTGTCCGCAAGGCCGGGGGGAATGTGGTGGCGGTTGCCGTCATCGTGGACCGGGACACCGGAGCGAAGGAAAAGATCGAGGCCGAAACCGGTGTGCCCTATCTTTACGCCTTCGGCAAGGACGAGCTGGGACTCGCCTGAMTSSPLDTASARARLLELIKELAVVRGKVILSSGAEADYYIDLRRITLHHEASKLVGQVMLSLVDDAGIDFECAGGLTMGADPVGTAVMHAAADAGRTVDAFVVRKAQKSYGMGRQVEGPSVEGRKVLVLEDTSTTGGSALTAVEGVRKAGGNVVAVAVIVDRDTGAKEKIEAETGVPYLYAFGKDELGLAPGPT0021200_4143DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762NANA
D1-29_00661759hypothetical proteinATGCTCCCGCCAGAACAGCCTTTGAATACCACCGAGCAAATCCAGAACCTCATCCTGGACAGTGCGGATTTTGAGGCGTTCGTCAACGAACTTGCCAGGTTCTCAGCCCACCAGATGGCCGGCGACGGCGACGACGCCTTGTGCGGGATCACCCTGCTCAGGGACCGCAAAGCGGCCACGATCGGCTGGAGCAGTGACTCCGCGCGGGAAGTGGATGAAATCCAGTACTCGCTCTCACAAGGACCTTGCCTCACAGCGGCCGAGGAAGAACGTGAGGTCCACGTGCCGGACCTGTACCAGGAGAACCGCTGGGGCCCTGACTATGCCAATGCCGTGGCATCCCACGGACTGCGGTCAGTCCTCTCCGTGCCGTTCAACCTCCAGGGCGAGGCCAAGGCTGCCCTGAACCTCTATTCAGACGTGCCGAACAAATTCGATGAGCGCGCGTCCGCCCGGGCCAGGGGCTACACACGGGAAATCTCACAGGCGCTGCGGCTGGCTGTCCGCTTTTCACTCCACACGGACAGTGCCGCCAATCTTCGGGCCACCCTGGAATCCAGAACCATCATCGACATCGCCATAGGCATTGTGATGGCACAGAACCGCTGCAGCCAGGATGCGGCCGTCCGGATCCTCACGGACGCGTCCAGCAACAGCAACACCAAGATCCGCGACATCGCGAAGTCGCTGGTTGAATCCGTCGGCGGGACGGGAACCCGCACGCACTATCAGGAGCCGGACCAGGCCCAGGCCGGTTAGMLPPEQPLNTTEQIQNLILDSADFEAFVNELARFSAHQMAGDGDDALCGITLLRDRKAATIGWSSDSAREVDEIQYSLSQGPCLTAAEEEREVHVPDLYQENRWGPDYANAVASHGLRSVLSVPFNLQGEAKAALNLYSDVPNKFDERASARARGYTREISQALRLAVRFSLHTDSAANLRATLESRTIIDIAIGIVMAQNRCSQDAAVRILTDASSNSNTKIRDIAKSLVESVGGTGTRTHYQEPDQAQAGNANANANANA
D1-29_00662603hypothetical proteinATGGACCGCAGACTTTATGCCCACGTTAAGCTGGATGTCACCGCTGATGTCGTGAGGATCGATGTTCGGGGCAGCCTCAATGAGCAATCCCGCCCATCCCTTGTCCACGTCATCCGCCGCGTCAGGCGCATGGGGATCAGATCGCATATCCGGGTTGACCTCTCCCGTGCAGCCATTATCGAATCATCAGCACTCGCGGGTCTTCGCAATGATCTTAACTCCATTGACGGTGCCACCTTTCCCGGCAGCAACGGAGCAGGCGTCTCCCTTGATCTGACGGCCTGGACAGAGGAGAGCTCCACCGCCCCCCGCCTCGGAGAGCGGCCGCTGGACATTGCCGGTGGACTGACAGATGTATTCGAAGAGCAGGGCGCCGGCGGAGATCCTGCCGGTTTGGGAGAGCTGGGGGCCCGTCCGTTATCGGAGTATTCCGACGACGAACTCCTGGCCGCCAGCGACTCGATCTTTTCGCTGTTGGACAGTCCCGAGGCGTTCGCCGGATCTGATCTCCTGGCCCGCTACAACGACATAGGCGAGGAGATTTCGCGCCGGAATCCCTCCGATGCTGTTTTCAAGCCGGCAGCGGGGGAGGCCGCTAGCTGAMDRRLYAHVKLDVTADVVRIDVRGSLNEQSRPSLVHVIRRVRRMGIRSHIRVDLSRAAIIESSALAGLRNDLNSIDGATFPGSNGAGVSLDLTAWTEESSTAPRLGERPLDIAGGLTDVFEEQGAGGDPAGLGELGARPLSEYSDDELLAASDSIFSLLDSPEAFAGSDLLARYNDIGEEISRRNPSDAVFKPAAGEAASNANANANANA
D1-29_00663897hypothetical proteinATGCTGTTGACCCGGCGAGTCCAGACGGAGCGCAGGGTCAACAGGATCCTCACTGTCCCGGACGATTTCGCGGACGCTTACTACCCGGATGCCAGCTGGTTCCTGTTCCCCGGCTACAAGACCAGCTGGGAGGAAGCCCAATGGATCCTGAACTCCCTCCGCGGTGCCCTGAACAAGCGAGGCCAGCTGGCCGCCGTCGGCTATTCCAATCAGGGGCTGGATATTGACGAACTGGTGATCGCCGTCATTGAGCACGTCAGGGCGAGAAAGCTTACCAAGCTGTTCTTCTACGGCCACAGCTTCGGTGGCATGGTGGCCACCCAGGTAGCCGCCCGGCTACGCGAACTTCACGGCGTTGAAGTGGCGTTCATCCTGCTCGATTCCACGCCCTACAGCAAACACGACGTCCTGGACCAGAGCTGGTTCGACGGCGTTGTGTTCCTCTACGAGCGCGGATTCCGGGTCCCGTCGGTGGTCCGCGGCGGCTATGAGCTGGGGGAGCGCGTCATCCACAAGGACGAACGGACCTGGCGCCAGATCCTGGACCAGACCATGGAGCAGCTGTCCCCGATCGCTCCCTCCAGTGTGCTCATCCAGTCCGAGTCCGCCTACATCTACCACTTTGACGGGATGCGGTTCGCGGACAAGCTTGGTGGGACCCGGATGGCGTTCATCGGCAATCCATACGACCGGACAGTCCGGTACCAGACCGCGTTGGAAGCCTGGACGGTGGCCTACCGTGCCAACATGGTGTCCTCCGACCAGCAGACGGACGGTGCCCGGCCGGCGCATGCCAGCCCGGGATGGAATCCAACGATTTACCGGCCCATCCTGGAGCGGCTCCTGAACGAGATCTTCCCCCTCCCCGGCGGAGGGTCCAGGGTGACGGTCTTCTAAMLLTRRVQTERRVNRILTVPDDFADAYYPDASWFLFPGYKTSWEEAQWILNSLRGALNKRGQLAAVGYSNQGLDIDELVIAVIEHVRARKLTKLFFYGHSFGGMVATQVAARLRELHGVEVAFILLDSTPYSKHDVLDQSWFDGVVFLYERGFRVPSVVRGGYELGERVIHKDERTWRQILDQTMEQLSPIAPSSVLIQSESAYIYHFDGMRFADKLGGTRMAFIGNPYDRTVRYQTALEAWTVAYRANMVSSDQQTDGARPAHASPGWNPTIYRPILERLLNEIFPLPGGGSRVTVFNANANANANA
D1-29_00664831hdpADihydroxyacetone phosphataseATGGCAAAAGCGGACCAGGTCAGCGAATCGTCAACCATCTACCGAAGCGGCCGGGAAATTGAGTGCTGGCTGACGGACATGGACGGCGTCCTGGTCCACGAAAACCAGGCGGTCCCGGGCGCAGCTGAACTGATCCAGCGTTGGGTGGATACTTCCCGGCGCTTCCTGGTGCTGACGAACAACTCCATCTTCACTCCCCGCGACCTTGCCGCACGGCTCCGCGCTTCCGGTTTGGAGGTTCCCGAGGAGAACATCTGGACCTCCGCCCTGGCCACAGCCCAGTTCCTCAAGAACCAGGTGCTGGGCTCGGGTTCCGGCAACCGCGCCTACACCATTGGTGAAGCCGGGCTGACGACGGCGCTGCATGAGGCAGGCTTCATCCTCACGGACCAGGACCCGGACTTTGTGGTGCTGGGCGAAACCCGCACGTACTCTTTTGAGGCGATCACCATGGCCATCCGCCTCATCCTGGCCGGCGCCCGGTTTATCGCCACCAACCCCGACGCCACGGGCCCGTCGAAGGACGGCCCCATGCCCGCCACGGGCGCCATCGCCGCTCTTATCACCAAGGCAACCGGACGGGAACCCTACATTGTGGGCAAGCCGAATCCCATGATGTTCAGGTCCGCGATGAACCAGATTGATGCACACTCGGAGACCACTGCCATGATCGGTGATCGGATGGACACGGACATCATTGCGGGCATGGAAGCGGGCCTGCATACTGTCCTGGTGCTGACCGGCATCACCCAGCGCGATGACATCGCGTCGTACCCCTTCCGGCCCAACCAGGTGCTCACTTCGGTGGCTGACCTGAAGAACCAGATTTAGMAKADQVSESSTIYRSGREIECWLTDMDGVLVHENQAVPGAAELIQRWVDTSRRFLVLTNNSIFTPRDLAARLRASGLEVPEENIWTSALATAQFLKNQVLGSGSGNRAYTIGEAGLTTALHEAGFILTDQDPDFVVLGETRTYSFEAITMAIRLILAGARFIATNPDATGPSKDGPMPATGAIAALITKATGREPYIVGKPNPMMFRSAMNQIDAHSETTAMIGDRMDTDIIAGMEAGLHTVLVLTGITQRDDIASYPFRPNQVLTSVADLKNQIPGPT0021435_79DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021435-nagD-K02566NANA
D1-29_006651110hypothetical proteinATGACCAACCAGTACAACCCACCGCCGCCTCCACCCCAGGGGCCTGACGGCCACCAAAACGGCTATCCGAACCCGCCGTACCAGCCTGCGCCTGACCAAACGGCGCCCTACCAAACCGCGCCGTACCAAACCGCGCCGTACCAAACCGCGCCGGACCAAAACGTTCCGTATCCGCATGGATTCCCGCAGGCCGGCCAGCCGGGACCGAATCAAGCCGGCCCCTACCAGCCCGGACCGAACCCCTCTGAACCCGGCAGCGGCAACAAAACCATGTTCATCGTTCTGGGCGTCGTCGCAGCAGCTGTCATCGCGGCTCTGGTGGCGGTATTCATTTGGGTCATCCCGGCATTCAGCAACCAGGGAGGGGATACTCCGGATCCTGTGGCGGCCTCAGCCGATCCCACAGATGGTGCAGACGGAAAGAAAACGGCAGAACCTTCCGCCGCTCCCAGCCCCACTGATACGTCGGCGGACATGCCGGCGGGCGCCATTCCGCTGCCCCCGGGTTGGGACACGCTGCAGGGACCCACTGACATCCCGGCCGACGGCGACCCGCTGTTCCGGAAGTTCGTCACCGGCGAATCCTCCTTCCAGTACCTTGCCTCCTGGACCCAGGACGATACGTTCGGAATCACCACGGACCCCATTTCCGGTGTGACCATGCAGCAGAAGGCGCAAGGCACCGAGGAACGGGATGGCGACGGCATCGCCCTGGCGTTCGCGTTTTTCGCGGAAGCGGAGGAGGGCAAGTACGGCAAGGAGCCGGCCAAGATCCAGGCGGGAATCCAGGAAATTGAGGCAAAGTTCAAGGCCATGCCCGCCGCGGAGCTGCCCCAGCACCTTGTGGGACACAAGTGCACCAGCAATTTCAAGACCACGACGCCGGAACTCAGGCAGTTCCGTCGCGCAGTTGCCGTGGTGATTGGCTTCACCTGCACCAATGCCCGGGCGGAAACCATCCAGGCCGTCAACCTTTTCACGGTGACGCCTTGGGGAACCCCGCAGATGATGGGCATCAGCGGGCACGAAAGCTACTGGGCGGCCAACCCCGGGCTGATGGAGAAGCTGGGTAACTCCTACCGCGCCAATAAGTGGAAGCTGGCCGGCTGAMTNQYNPPPPPPQGPDGHQNGYPNPPYQPAPDQTAPYQTAPYQTAPYQTAPDQNVPYPHGFPQAGQPGPNQAGPYQPGPNPSEPGSGNKTMFIVLGVVAAAVIAALVAVFIWVIPAFSNQGGDTPDPVAASADPTDGADGKKTAEPSAAPSPTDTSADMPAGAIPLPPGWDTLQGPTDIPADGDPLFRKFVTGESSFQYLASWTQDDTFGITTDPISGVTMQQKAQGTEERDGDGIALAFAFFAEAEEGKYGKEPAKIQAGIQEIEAKFKAMPAAELPQHLVGHKCTSNFKTTTPELRQFRRAVAVVIGFTCTNARAETIQAVNLFTVTPWGTPQMMGISGHESYWAANPGLMEKLGNSYRANKWKLAGNANANANANA
D1-29_00666618trmHtRNA (guanosine(18)-2'-O)-methyltransferaseGTGCCCAAGGCGGAGGTCGGCGTCGGGCCCTGGGAAGGGGACCTCCCTTCCGGTGACCATTGGGACCCGGACCTGCTCGCCGACGGTGACCGGCGAAACGTGGTGGACCAGTACCGCTACTGGAAGCACGACGCCATCGTGGCCGACCTCGATTCCAGGCGCCACAACTTCCACATCGCCATCGAGAACTGGCAGCACGATCTCAACATCGGCACGGTGGTCCGCACCGCCAACGCGTTCCTCGCCAAGGAAGTCCACATCATCGGACGACGCCGGTGGAACAGGCGCGGAGCCATGGTCACCGACCGTTACCAGCATGTCCGCCACCACCCCACCGTGGAGGATTTCGTGGCATGGGCGCAGGGGGAGGGGCTGGCGATCATCGGCATCGACATCTTCCCGGACTCGGTGCCGCTGGAAACGTACGAGCTGCCCAAAGACTGCGTGCTCGTGTTTGGGCAGGAAGGCCCCGGTCTGACCCCCGAAGTGCATGAGGCGGCGCTGGCCACCCTCTCCATCGAGCAGTTTGGCAGCACCCGCTCCATCAACGCCGCCTCGGCTGCGGCGATCGCCATGCACGCCTGGGTCCGCCGGCACGTTTTCAACCAGCACGTCTGAMPKAEVGVGPWEGDLPSGDHWDPDLLADGDRRNVVDQYRYWKHDAIVADLDSRRHNFHIAIENWQHDLNIGTVVRTANAFLAKEVHIIGRRRWNRRGAMVTDRYQHVRHHPTVEDFVAWAQGEGLAIIGIDIFPDSVPLETYELPKDCVLVFGQEGPGLTPEVHEAALATLSIEQFGSTRSINAASAAAIAMHAWVRRHVFNQHVNANANANANA
D1-29_00667933hypothetical proteinATGCACAGGGCGCCCCTCCCCGAACACCTCAGGCAGGGTTCCTTTTCGCTCCGCGCGTCGGATAAGGCCGGCGTCAGCAGGACCCGGACGGCGGCAGGGGACCTCGCCACCGTTTCACGCGGAATCCGGATGTACCTGGGATCAGAGGCTGTGGGTGCCGCAGCGCTTCGTGCCTACACTGAGCTCGACGACGCCTCCGTGCTGTCCCACGGCTCCGCCGCGCGCGTCCTACGCGTCGCCCTGCCACACTGGCTCGAGGATGACTGGCGGATTCATGTGGCCCGCAGACGTGGTTTCAGCACGCCCCGTCGCATCAACGTTGTGGGCCACCTCCTCACGCTGCTCCCGGATGAGGTAGTGGAGTACGACGGCGTCCGCGTCACCTCGCCCGCACGCACTTGGCTGGACCTCGCCTCGATCCTAACCATGGACGAACTTATCGTCGCCGGCGATTCCCTGGTTTGCGGTCACGGCCCTGAGTTTCCCAGGCCACGTGAACCGGTGTGTACACTCGGTGACCTCCTCAACATTATCGGCAGGCATCCGGGGATCCGGGGGATCAGGAGGGCACGAACAGCCCTGGAATCCGTCCGGGTTGGCTCGGGCTCCCAGCCTGAATCGCGGATGCGGCTGGCTATTGTGAGGGCGGGGCTGCCTGAACCCGTCCTGAATTATGTGGTCTTTGGCGCTGACGGACCGCCCGTTTTGTGGCCTGACGCCGCCTACCCGGACCAGCGTATCGCCGTCCAGTACGAGGGCGCCCACCACAATGACTCCGATCAGTACTTGCGGGACATCCGGAGGGCTGACACAACTGCCCAGTACGGCTGGCTTGAGGTCCGCGTGTCCAAGCTTGACCTCGCCGGTGACCGCCCCGCCGTCGTGGGTAAGGTCAGGTCCGCACTGGCCGCTCGGGGCTGGCGCGCGAGATGAMHRAPLPEHLRQGSFSLRASDKAGVSRTRTAAGDLATVSRGIRMYLGSEAVGAAALRAYTELDDASVLSHGSAARVLRVALPHWLEDDWRIHVARRRGFSTPRRINVVGHLLTLLPDEVVEYDGVRVTSPARTWLDLASILTMDELIVAGDSLVCGHGPEFPRPREPVCTLGDLLNIIGRHPGIRGIRRARTALESVRVGSGSQPESRMRLAIVRAGLPEPVLNYVVFGADGPPVLWPDAAYPDQRIAVQYEGAHHNDSDQYLRDIRRADTTAQYGWLEVRVSKLDLAGDRPAVVGKVRSALAARGWRARNANANANANA
D1-29_006681020fba_2Fructose-bisphosphate aldolaseATGCCCATTGCAACCCCAGAGATCTACTCCGAGATGATCGACCGCGCTAAGACGGGCGGCTTCGCATACCCGGCCGTCAACGTCACCTCCTCGCAGACGCTGAACGCGGCCCTCCGCGGTTTCGCCGATGCTGAGTCCGATGGCATCGTCCAGGTTTCCACCGGCGGTGCCGCCTACTGGTCCGGCGCCTCCACCAAGGACATGGTGGCCGGTTCCCTGGGCTTCGCAGCCTTTGCGCGCGAAGTTGCCAAGAACTACAACGTCAACATCGCCCTCCACACGGACCACTGCCCCAAAGACAAGCTGGACGGCTTTGTGCTGCCGCTGCTGGCCGCTTCCGAGGCCGAGGTCAAGGCAGGCCGCAATCCGCTGTTCAACTCCCACATGTGGGACGGTTCCGCAGAAACCCTGCAGGAGAACCTCCGCATCGCCCGTGAACTGCTGGAGCGCACCGCCGCCGCGAAGATCATCCTTGAAGTTGAGATCGGCACTGTCGGTGGCGAGGAAGACGGCGTCGAGAACGCCATCAACGACAAGCTGTACACCACGGTGGAGGATGCCCTGGCCACCGTCGAGGCCCTGGGTGCCGGCGAGAACGGCCGCTACATCACGGCACTGACCTTCGGCAACGTGCACGGCGTGTACAAGCCGGGCGGCGTGAAGCTGCGCCCGGAGATCCTGAAGGACATCCAAGCCCAGGTGGGCGCCAAGATCGGCAAGGACAACCCGTTCGACCTCGTCTTCCACGGCGGATCAGGCTCCTCTGACCAGGAAATCGCCGACGCCGTGTCCTACGGAACCATCAAGATGAACATCGACACCGACACCCAGTACGCCTACACGCGTCCGGTGGTTGACCACATGTTCAAGAACTACGACGGCGTCCTGAAGGTTGACGGCGAAGTGGGCAACAAGAAGCTTTACGATCCCCGCGTCTGGGGCGCCTCGGCCGAAGCAGGCCTTGCTGCCCGTGTGGTGGAGGCGGCCAAACAGCTCGGCTCCCTCGGCAAGACGTTCTAGMPIATPEIYSEMIDRAKTGGFAYPAVNVTSSQTLNAALRGFADAESDGIVQVSTGGAAYWSGASTKDMVAGSLGFAAFAREVAKNYNVNIALHTDHCPKDKLDGFVLPLLAASEAEVKAGRNPLFNSHMWDGSAETLQENLRIARELLERTAAAKIILEVEIGTVGGEEDGVENAINDKLYTTVEDALATVEALGAGENGRYITALTFGNVHGVYKPGGVKLRPEILKDIQAQVGAKIGKDNPFDLVFHGGSGSSDQEIADAVSYGTIKMNIDTDTQYAYTRPVVDHMFKNYDGVLKVDGEVGNKKLYDPRVWGASAEAGLAARVVEAAKQLGSLGKTFPGPT0017615_3009DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624NANA
D1-29_00669396hypothetical proteinATGGGCCCCGAGCCCACCCTCTTGCCTGCCGAGACCGAGGTCTACGAGCAGCTGGAGGCGGGCCAGGAGGCACTGGATCTGGTGGAGAAGCACCCCACCTCCTCGCTGCTGTGGGCTGTGCTCGCGGAAGAGGCGTGGGCCGAGGGCCGCACCATCGATTCCTACGCCTATTCCCGTGTGGGCTATCACCGCGGCCTGGATTCGCTGCGGCGTAACGGCTGGCGCGGCGTCGGCCCCATCCCGTGGGAGCATGAGCCCAACCGCGGTTTCCTGCGTGCGCTCTATTCGCTGGGCCGTGCATCGGCGGCCATCGGCGAGGCCGAGGAACCGGAACGGATCGAGAAGTTCCTCAACGACTCCGACCCGGCAGCGAAAGCGGCCATCGAAGGCAAGTAAMGPEPTLLPAETEVYEQLEAGQEALDLVEKHPTSSLLWAVLAEEAWAEGRTIDSYAYSRVGYHRGLDSLRRNGWRGVGPIPWEHEPNRGFLRALYSLGRASAAIGEAEEPERIEKFLNDSDPAAKAAIEGKNANANANANA
D1-29_00670633hypothetical proteinATGACAGCCCTGGCACCTGAATCTTTTCGCGAGCAGCTCATGAGCCGCCGTTACGAACCCAACGTCGCAGCCGTCAACGAGCTGTGCGATTCCCTGCAGAGCGTCAAGCCGCACACCGAAGTTCCCTACGTTGACCCCATGCACGACGTGGATGAATGCCGCATCATCAGCCTGTACTCGAACATCGGCGAAGCGGACAAGTCCGGGTTCATCACCGCCGGCGACGACGACGCCGCCACCCGCATGCTGGGCGTCCAGTGGAAACTGGGCCTGCGTCCGGAGTTCGTGATGCCGTGGAACGTCCACCCGTGGCACACCCCGGGCGAGCCCAACGGCAAGTTCACGCCGGACCAGATCGCCTCCGGCCTCAAGCCGCTGCTCAAGTTCCTGGCCCTCGTGCCCCGGGCTTCCGTCATCGTGGCCCACGGCACCGAAGCCAACCGCCTGGCCAACCTGCTGCTGAAGACCGAGGTGCCCCTGCTCTGGCGCCGCGGACTGAAAACCTACAAGGTCCGCTCCCTCAGTGGCCGAGCCTTCGCCGGTACTCCGGCCCGGCAGGAACAGTACCTTGAAGAAATGCACGTGGCCTATGCGGATGCCATGGCGCGCACAGGCCTGACGAAGCCCAGCTAGMTALAPESFREQLMSRRYEPNVAAVNELCDSLQSVKPHTEVPYVDPMHDVDECRIISLYSNIGEADKSGFITAGDDDAATRMLGVQWKLGLRPEFVMPWNVHPWHTPGEPNGKFTPDQIASGLKPLLKFLALVPRASVIVAHGTEANRLANLLLKTEVPLLWRRGLKTYKVRSLSGRAFAGTPARQEQYLEEMHVAYADAMARTGLTKPSNANANANANA
D1-29_006711209hypothetical proteinATGTCCCCCAATACTGACCACATCCAGGTCACGCATGCAGGTTCACTGCCTCGCACGCCGGAGCTCATCGCGGCAAACGCCACAAAGGAATCCGAGGGCATCACGCCCGAATTCCTGGAGCTGCTGGAAGCATCGGTGGCGGATGTGGTCCAGCGGCAGAAAGACCTCGGCGTCGACATTGCGAACGACGGCGAGTACGGGCACACCATGTCCACTTCCGTTGATTACGGCGCCTGGTGGAACTACTCCTTCGCCAGGCTGGGCGGCCTGGAACCCACTGACGTGGACAGGTGGAAGGACCCCGTGGTGCATCGCTCGTCTCCGGGGCATATTGTGCTGACGTCGTTTCCGGACCGCCGGGACCGGCTGGCTTTCAACGACGCGTACACCGATCCGTCCTCGGGCATCCTGGCGCACCGCAAAAGCGTGACGCAGCCGAAAATCGCGGGACCCCTGACCTACACGGGGCATGACCTGGTGGCCTCCGATGTCACCAATTTGAAAAAGGGCCTGGCCGCGGCGGGCCTGACGGAAGGCTTTCTGGCGTCCCTCTCCCCCGGTTCGTGCGCCAGGGTGGCCAACGAGTACTACAAGTCGGACGAGGAACTGCTGTACGCCTGCGCTGATGCCATGCGGGAGGAATACAAGGCCATCATCGACGCCGGCCTGACGGTGCAGCTCGATGACCCCTCACTCGCGGAAAGCTGGGATCAGATCAACCCCGAGCCGTCGTTGGAGGACTACCTCAAGTTCATCCAGCTGCGCATCGAGGCCACCAACTGGGCCCTGCGCGACCTGCCCCAGGAACAGATCCGCCTCCACGTCTGCTGGGGTTCCTGGCACGGGCCGCACACCACGGACATTCCGTTCGCGGACATCGTTGGATCTGTGCTGCAGGTCAATGCCGGGGCCTACTCCTTCGAGGCCGCCAACGTCAGGCACGAGCACGAGTGGCGGGTGTGGGAAGACACCAGGCTTCCCGAGGGCAAGGCCATCATTCCCGGAGTGGTCTCACACGCAACCAACGTGGTGGAACACCCGGATCTCGTGGCTGACCGGATTGTCCGCTTCGCCGAGCTGGTGGGCCGGGAGAATGTTATTGCGTCCACGGACTGCGGGCTGGGCGGCCGGGTTCACCCGCAGATCGCCTTCGCCAAACTTGAGGCGCTCGGCGAGGGCGCCCGCCGCGCCAGCCAGCGCCTCTGGTAGMSPNTDHIQVTHAGSLPRTPELIAANATKESEGITPEFLELLEASVADVVQRQKDLGVDIANDGEYGHTMSTSVDYGAWWNYSFARLGGLEPTDVDRWKDPVVHRSSPGHIVLTSFPDRRDRLAFNDAYTDPSSGILAHRKSVTQPKIAGPLTYTGHDLVASDVTNLKKGLAAAGLTEGFLASLSPGSCARVANEYYKSDEELLYACADAMREEYKAIIDAGLTVQLDDPSLAESWDQINPEPSLEDYLKFIQLRIEATNWALRDLPQEQIRLHVCWGSWHGPHTTDIPFADIVGSVLQVNAGAYSFEAANVRHEHEWRVWEDTRLPEGKAIIPGVVSHATNVVEHPDLVADRIVRFAELVGRENVIASTDCGLGGRVHPQIAFAKLEALGEGARRASQRLWNANANANANA
D1-29_006731290purACOG0104Adenylosuccinate synthetaseATGCCAGCTATCGTGATCGTAGGAGCCCAATGGGGCGACGAGGGAAAAGGCAAGGCCACTGATCTCCTCGGCGGCCGCGTCGACTATGTGGTTAAGCCCAACGGCGGCAATAACGCCGGGCATACCGTCGTCGTAGGCGGTGAGAAGTATGAGCTCAAGCTCCTTCCGGCCGGCATTCTCAGCCCCAATGCGGTTCCCATCATCGGCAACGGCTGTGTGGTGAACCTTGAAGCCCTGTTCCAGGAAATTGAGGGGCTCCAGGCCCGCGGCGCAGACACCTCCAAACTGCGCGTCTCCGCCAACGCACACCTGGTGGCGCCTTTTCACCAGGTGCTGGACAAGGTCACCGAACGTTACCTCGGAAGCCGCGCCATCGGCACCACGGGCCGCGGCATCGGGCCCGCCTACATGGACAAGGTGGCCCGGCTGGGCATCCGTGTCCAGGACGTCTTCGACGAATCCATCCTCCGCCAGAAGGTGGAAGGATCGCTCCGCCAGAAGAACGAGCTCCTGGTCAAGGTCTACAACCGCCGCGACATCGATGTTGAGGAGATTGTTGAATACTTCCTGTCCTTTGCCGAGCGTCTCCGCCCGCTGGTCATCGACAGCACACTGGTCCTGAACAAGGCCCTGGATGAGGGCAAGGTAGTGCTCATGGAAGGCGGCCAGGCCACCTTCCTGGACGTGGACCACGGCACCTACCCGTTCGTCACTTCCTCCAACCCCACCGCCGGCGGAGCCTCCGTTGGCTCCGGCATCGGTCCCACCCGGATCTCGCGCTCCATCGGCATCATCAAGGCGTACACCACGCGTGTGGGCGCCGGCCCGTTCCCCACGGAGCTCTTCGACGAGATGGGCGTGTACCTGCAGAAGACGGGCGGCGAGTTCGGCGTCAACACCGGCCGTCCCCGCCGCTGCGGCTGGTACGACGCCGTCCTGGCCCGCCATGCGTCCCGCGTCAACGGCTTCACGGACTACTTCGTCACCAAACTGGATGTACTCACCGGCATCGAGCAGATTCCGGTGTGCGTGGCCTATGACGTCGACGGGGTCAGGCATGACGAAATGCCCATGACCCAGACCGAGTTCCACCATGCCAAGCCCATCTTCGAGTACTTCGAGGGATGGACCGAGGACATTACCGCGGCCCGCACCATGGATGACCTGCCGGAGAATGCACGCAACTACGTCCTGGCCCTGGAAAAGCTCTCCGGCACGCGCTTTTCCGCCATTGGCGTGGGTCCGGACCGTGACCAGACGATTGTGGTTAACGACCTCATCAATGACTAAMPAIVIVGAQWGDEGKGKATDLLGGRVDYVVKPNGGNNAGHTVVVGGEKYELKLLPAGILSPNAVPIIGNGCVVNLEALFQEIEGLQARGADTSKLRVSANAHLVAPFHQVLDKVTERYLGSRAIGTTGRGIGPAYMDKVARLGIRVQDVFDESILRQKVEGSLRQKNELLVKVYNRRDIDVEEIVEYFLSFAERLRPLVIDSTLVLNKALDEGKVVLMEGGQATFLDVDHGTYPFVTSSNPTAGGASVGSGIGPTRISRSIGIIKAYTTRVGAGPFPTELFDEMGVYLQKTGGEFGVNTGRPRRCGWYDAVLARHASRVNGFTDYFVTKLDVLTGIEQIPVCVAYDVDGVRHDEMPMTQTEFHHAKPIFEYFEGWTEDITAARTMDDLPENARNYVLALEKLSGTRFSAIGVGPDRDQTIVVNDLINDPGPT0020140_3461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939NANA
D1-29_006741296hypothetical proteinATGATGCTTCTCGAAAGAGACCTCATCCAGTCCGTCGGCTTCCGCAACGTCACGGAAGGCGGACGTGTGACCGGCTTCCAGTTCAGGGTCCGGATGCCTTCCTACCGGGGCATGGCCGCTTCCCTCATTGACGGCATCGCGGTCCGCGTTGGCGATCTGGTGAACGTTGGCCCCGACGTTCCGCGTTGGACGTTTGGCGGGCGGACCTACACGCTGCAGCAACTCTGGGAAAGTGATGGCGTCCGCTGGCCCTTGGAGGAAGCGGCACTGGTGACCGTTCCCCTCGACGGCGGGCTGCCGCAAGGCGTCCACGAGCTCAGCATCGAGTTGCGGCTGCGAATGTCCTACATTCCCGTCGAGCACCAGCCCACCATCCACCGGGTCAGCCGGAAGGTCACGCTGGCACCGGAAGGCGGCGAAGATACCTTCCGCTACGGCGTTTCCCTGTACAGCTTCATGGGTGACTACGGCACGGTCATGGACCTTGAAACGGCTTTGGCCGCCGTCGCCGACGTAGGCGCCATCGGCGTCGAGATCCTCGGCGAGGGCCACGTCCCCAACTATCCGGAACCTTCTGCGGCGTGGATCGACAACTGGTTCGGCCTGCTCGAGAAGTACTCTTTGGAGCCCACGAACTACGGCTCTTGGATTGACACCCGGCTCCACCCCGGCAGGAGCATGACGGCAACCGAAGGTGCCGAGGCACTGCAACGGGACCTGAGGCTTGCCCACCGGCTGGGATTCGGCTTCGTCCGCCCAAAGATCGGGGTCGTGTCCAGCGACCTGGTTCCGGACCCGATCTGGACGGAGTCAGTGGAACGCTCGCTCGACCTGGCTCACGAGCTGGGGATCATCATCTGCCCCGAGATCCACTCGCCAACGCCCATCAAGCATCCCGTCGTCGAGGACTACATCGGCCTCATCGAACGGACGGGAACCAAGAACTTTGGTCTCCTCATCGACACCGGCATCTTCCAGGACCGGCCCATCCCGCTGCGGGAAGGGGAGACGCGCGAGACCCGCCCCGCCTTCCTGGACGGCATCGGCGTCGATCCGGCCGATTTCGCGGACATCGCCCAGTACGTGGTGTTCATCCAGGCGAAGTTCCACGACATCAACGAGCAGCTGGAAGACCATCAGATTCCCTGGCGGCCCGTGCTGAATGCGCTCAAGGACGCCGGTTACAGCGGCTACCTTTCCAGTGAATACGAAGGCGAACGCACCCCCTGGCGGGCCATCGAGCAGTTGCGGCGCCAGCATGCCCTCATCCGTCGCATTGCGGCCGAACTTCCCTGAMMLLERDLIQSVGFRNVTEGGRVTGFQFRVRMPSYRGMAASLIDGIAVRVGDLVNVGPDVPRWTFGGRTYTLQQLWESDGVRWPLEEAALVTVPLDGGLPQGVHELSIELRLRMSYIPVEHQPTIHRVSRKVTLAPEGGEDTFRYGVSLYSFMGDYGTVMDLETALAAVADVGAIGVEILGEGHVPNYPEPSAAWIDNWFGLLEKYSLEPTNYGSWIDTRLHPGRSMTATEGAEALQRDLRLAHRLGFGFVRPKIGVVSSDLVPDPIWTESVERSLDLAHELGIIICPEIHSPTPIKHPVVEDYIGLIERTGTKNFGLLIDTGIFQDRPIPLREGETRETRPAFLDGIGVDPADFADIAQYVVFIQAKFHDINEQLEDHQIPWRPVLNALKDAGYSGYLSSEYEGERTPWRAIEQLRRQHALIRRIAAELPNANANANANA
D1-29_006751479hypothetical proteinATGCCCAATGGATTTATTGACGAATCAAGCCTCCGCCCCCATCCGGAAGGCCTCGCGCTGGTACTGACGCTGCCGTGGTACCGCAGCCTTTGGCTCTCCTCGGTGTCCAGCCTCCGGCTGAGTATCGACGGCCAGGAGATTCCTTCCGGGGACCTGTCACTGGAACTGGGCGGTGTCCGCTACGCGCTTGCCGACTTGCCGGCGCAAAGCGAGACTCTCTGGTACCTCCAGGAACATCCCCTGCTCATCGTCACAAGGGAGAGCCCGGCTTCCCTGGGCGAGCAGCACACCATCCAGCTCATAGGGGAGCTTCGACTGCCGTACATGCAGATCGCACCGGGCCAGGACGGCGGTCCCGGCATGTACGTGCCCAACTTCGTGAACCAGACGCTGGAGCTGACCGTGACCGACAGGGCGGCGACGGCTCCTGAACTGGCGACGGCGGTGACGCCGCCTCCGCCGAAGGCTGAGGATGATCCGTTCTCCCTGGGGCTCACGCTGTACTCGGCCAGCGCCGAATTCCGGGCGGGCTGGTACGACTTTGACGGCCTGCTGAACCGGGTGGCGGAGCTGGGGATAGGCCCCGGCATCGAGATCGTGGCGTCCCAGGTCCTGCCCACCTACCCCAACGTGACTGATAATTTTGCACGTTCCTGGCAGGAGGCCTTCGACAAGCACGGCTTCACCGCCAGCTCCTTTGGCGCGAATCTTGATATGGGCCGGCGCCGTGACCGCGACATGACTCCGGATGAGGAATACGGGTTCACGGAGACGCTCTTCCGCGGTGCCAAGAAGCTCGGCTTCCCGCTGGTCCGCATCCAGAGCGCGAAGCCGGAACTGCTTCGCCGGCTCCTTCCGCTGGCCGAGGACCTCGAACTCAAGCTTGCCTACGAGATCCACGCGCCGCTGGGACCCAACTCGCCGGAGATCAGAAAGGTCCGGGAGGTCTATGCGGAGCTTGATTCACCGCTGCTGGGCTTCGTGGCTGACTTCTCCTCGACCATGCACAGCATGTCACCCACCCTCCTGCGCGCTGTCCGCCGGGCCGGACTCGACGACGAAGCCGTCCTCAGGCTGCAGGCGATCTGGGCCACCGACGCCCCCATGCGCGCCCGACAGGAAGAGTTCATTGGCTATCTCAAGGGACGCGGCTTTGATCCTGCCCGCCTCGGTTCCTTCGCCCACCTCGCCTTCAACATGCATGGCCACGTGAGCCCGGAGGAGTGGTCTGACATCATGCCGCAGATCATGCATGTCCACGCGAAGTTCTATGACATCGATGAGCACGGCAACGAGCCGGCAATCGACTATCCGGAACTGGTCCGGGTGTTCGTTGAGGGCGGCTACCGCGGCTACTGGTCCAGCGAGTGGGAGGGGCACGCCTTCGCTGAGCTCGGCGAAGTGGATCCGCTGCTGCTAGTCCGGAAGCAGCACGACCTCATTCGCAAGAGCATGCGGACGGCGCTCGCATCAGCCTGAMPNGFIDESSLRPHPEGLALVLTLPWYRSLWLSSVSSLRLSIDGQEIPSGDLSLELGGVRYALADLPAQSETLWYLQEHPLLIVTRESPASLGEQHTIQLIGELRLPYMQIAPGQDGGPGMYVPNFVNQTLELTVTDRAATAPELATAVTPPPPKAEDDPFSLGLTLYSASAEFRAGWYDFDGLLNRVAELGIGPGIEIVASQVLPTYPNVTDNFARSWQEAFDKHGFTASSFGANLDMGRRRDRDMTPDEEYGFTETLFRGAKKLGFPLVRIQSAKPELLRRLLPLAEDLELKLAYEIHAPLGPNSPEIRKVREVYAELDSPLLGFVADFSSTMHSMSPTLLRAVRRAGLDDEAVLRLQAIWATDAPMRARQEEFIGYLKGRGFDPARLGSFAHLAFNMHGHVSPEEWSDIMPQIMHVHAKFYDIDEHGNEPAIDYPELVRVFVEGGYRGYWSSEWEGHAFAELGEVDPLLLVRKQHDLIRKSMRTALASANANANANANA
D1-29_00676942nodD2_2Nodulation protein D 2GTGACAAACCATGTCCTGCTTTCCCGGCTAGACCTCAACCTCTTGATATCGCTGGATGCCCTCATCACTGAGCGGAGCGTGACCAGGGCGGCCGAGCGCCTGCACCTGAGCCAGCCGGCGTTGAGCGCCTCGCTTGCGCGCCTCCGGTCCCACTTCGGGGATCCCATCCTTGCCCGCCGGGGCAACGCCTATGAGCTCACGCCCTTCGCCCTGCGGCTGGCGGAACACACCACCACGGCCCTGGAAGCCGCCCGCCGCGTCTTCGAGAGCCAGGCAACGTGGGAACCCGCCGAATCCGAGCGCGAGTTCTCCATCTACGGTTCGGATTATGGGTTCACCACTGTTGGCCGGGTAGTTTCCGAGCTTGCGGCTGAACGCGCGCCGGGTGTCAGGTTCCGGTTTATGCTCCACAACCCGATGGTGGTGGAAGATGCAGCCAACCGCCTTCGTTCGGTAGACGGCATGGTGATCCCCCACGGCTTCCTGTCCGGACTCCCCTGCCTGGACCTGTGGCGGGACGGGTGGGTCGCCGTCGTCTCTTCCTCCAACGAGGCCGTGGGCGAGCAGATCACCATGGAGAACATCGCCGAACTTCCGTGGGTCATGACGTATCAGACCCGCTCAGCATCAACGTCCGCGGAACGGCAAATCATGCAGCTGGGTGTTGAACCGCGGGTGGATGTGGTGGTTGAAAGTTTCCAGTCCTTGCCGCATTTTGTGGTGGGGACCAACCGGATCGCGCTCATCCAGGCAGCGCTGGTCCCGTTTGCGCTGCGGGTGGGCGGAGTGCGGATCCTGCCGCTTCCATTCGATGCCACTCCGCTGGTTAATGCCCTGTGGTGGCATCCAGTACACAACCGCGATTCCGAGCATGAATGGATGCGCGGCCTGTTCAAGGACGCGGCTGACATCGTCGCAGCGGCCGCGGCCAAGCCCCTTTAAMTNHVLLSRLDLNLLISLDALITERSVTRAAERLHLSQPALSASLARLRSHFGDPILARRGNAYELTPFALRLAEHTTTALEAARRVFESQATWEPAESEREFSIYGSDYGFTTVGRVVSELAAERAPGVRFRFMLHNPMVVEDAANRLRSVDGMVIPHGFLSGLPCLDLWRDGWVAVVSSSNEAVGEQITMENIAELPWVMTYQTRSASTSAERQIMQLGVEPRVDVVVESFQSLPHFVVGTNRIALIQAALVPFALRVGGVRILPLPFDATPLVNALWWHPVHNRDSEHEWMRGLFKDAADIVAAAAAKPLPGPT0015290_98DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015290-nodD-K14657NANA
D1-29_006771290hypothetical proteinATGTCACAGCACAGTCGCTATTCGGGCCTGAAGGCCGGCGCCCTCGCCGTCCCCACCATCGCAGCCCTCGTCCTCACCGGCTGCTCGGCCCCCACCGGCAGCACCTCCTCCGGAGGCTCGCAGGAATTTTCCCTGTCATTTGCCACTTCCAACACCATCGAGAGCCCCTTCCAGGTCCTGGGTGAGAAGTACATGGAAGCCAACCCGAACGTGAAGATCACGTTCAACCCCCAGCCCAACGACTCCTACGACCAGACGTTGCGGACCCAGCTCCAGGCCGGGAACGCCTCCGACGTCGTGGTGACCTCGCCCGGTTCGGGCACCGGGCGCAGTATCCTGCCGCTCGTTCAGGCAGGCTTCCTGGAGCCGTTGGACGATGCCGCCAAGGAACTGGTTCCGGAGGGCAGCGAAGCCCTCTTCGGAACTGACGGCAAAGTCTACGGCCAGGCACCCGAGATCACCGTAGTTGGCCTGGTCGCCAACGAGACTGCTGCCAAGGCTGCCGGCATATCCGAGTTCCCGGCAGACTTCTCTGCTCTTGAGGAGCAGTGCAAGAAGCTTGAATCGTCCGGCAAGTCGTTCATTGCGCTGGCCGGGTCCGCTGCTCCGAACACCGGCCTGATGGCGATGTCCCTCGCGGCCTCGCGGGTATATGCCGAGGACCCGAAGTGGAATGAAAAGCGGGCTGCCAAGGAAACCACGTTCGCTGACTCCGACGGCTGGAAGTCATCCCTCGAGGCGGTGGTCACACTGAACGAGGCCGGCTGCTTCCAGAAAGGCGCCGCAGGTGCCGGCTTTGACGCCATCACCAAGGGCCTTGCCAGCGGATCATCGGTTGCCGGCTTTATCCCGGGTCCCAGCTGGAAGCAGTTGAAGTCCGCCGCTGCGGACTCTGAATTCGACGTCCGCGCACTCCCGGCCGAAGGCTCAGGCCAGAGCTTCGTCTACGCCAGTGCCAACTACGCGTTCTCCGTCAACGCCGCGTCCAAGAACAAGGATGCTGCCAAGGCGTTCCTGACCTGGGCCGCTGAGCCTGAGCAGACCAAGGCCTTCGCGGAAATCGATGGCGCCCTGCCGGTCACCGGCCTGGACAGCTACGACTTCGACGCCGGCGCTTATAAGAACGTCGGCGGGCTCATCAAGGACGGAAAGTACGGTCCTCTGCCGAACAGCCAGTGGCCCAACTCCGCTGTCTACGACGCCCTCGCCACCGGCGTCCAGGGACTAATCACCGGCCAGAAGAACCCTGACCAGGTCCTGCAGGCCATGGACGCAGCCTGGGGCCAGTGAMSQHSRYSGLKAGALAVPTIAALVLTGCSAPTGSTSSGGSQEFSLSFATSNTIESPFQVLGEKYMEANPNVKITFNPQPNDSYDQTLRTQLQAGNASDVVVTSPGSGTGRSILPLVQAGFLEPLDDAAKELVPEGSEALFGTDGKVYGQAPEITVVGLVANETAAKAAGISEFPADFSALEEQCKKLESSGKSFIALAGSAAPNTGLMAMSLAASRVYAEDPKWNEKRAAKETTFADSDGWKSSLEAVVTLNEAGCFQKGAAGAGFDAITKGLASGSSVAGFIPGPSWKQLKSAAADSEFDVRALPAEGSGQSFVYASANYAFSVNAASKNKDAAKAFLTWAAEPEQTKAFAEIDGALPVTGLDSYDFDAGAYKNVGGLIKDGKYGPLPNSQWPNSAVYDALATGVQGLITGQKNPDQVLQAMDAAWGQPGPT0016330_2072DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
D1-29_00678960melD_4COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACTGCGACGATGCAACCCAAAAGCGAAGCAGCTGAAGTGCCCCGGCGAGGCAGGCGCACTCCGGGGGCGGGCCCAAAGACCCGCCCCCGGGGGACCGGCCTGCAGTTGGGACACTGGTGGTGGGCGCTGCCCGGGATCACCCTCGTCATAGCCATCCACTACGTGGCAACGGGTATAGGCGGCTTCTTCGCCTTCACCAACTGGACCGGCATCGGCTCGTTCCAAGTCACAGGCTGGCAGAACTTCGAAGCAATCTTCAAGGATCCCACCAAGCTCGGAGCCCTCTCCAACACCCTCTTCCTCGCCTTCGGCTCCGTTTTCCTCGGCAACGTTGCGGGGCTGGTCATTGCCCTTGGCCTGAACCGGGTCCTGAAGACGCGCTACATCCTCCGGACACTCTTCTTTATGCCCGTGGTGCTCAGCCCCCTGGCCACGGCCTACATCTGGAAGTACATCTTCGACTTTGACGGCCCCATCAACGCCTTCCTCATATCGATCGGCGCCGAGGACCTCGCAAAGCCCTGGCTCGCAGACCCGCAGTGGGCCATCTGGACAGTGCTCGTGGTGCTGGTCTGGGGCTCCACCGGCTTCGCCATGGTGATCTTTATGGCCGGGCTTGCCGGCGTCCCGGTGGAAGTCGAGGAGGCCGCCGCGATCGACGGCGCCAACCTGTGGCAGCGCTTCCGGAACGTCACGCTGCCGGCCATCCGCCCTGCCGTCGCCATCGCCACCACCCTTGGGATCGTCCAGGGCCTGCGGGTCTTCGACCCCATTATGGCCCTGACCGGGGGCGGACCCGCCGGGGCAACCGAAACGCTGGCCACCCAGGTCTACAAGCAGGCATTCGCGCTCGGCAACTTTGGCGGCGGCGCCGCCCTGGCCCTGGTGCTCGCCGTCATCATCCTGTTCTTCGCCGTAATCCAGCAGCGGCTGACGCGATCGAACCCTGAGGACTAAMTATMQPKSEAAEVPRRGRRTPGAGPKTRPRGTGLQLGHWWWALPGITLVIAIHYVATGIGGFFAFTNWTGIGSFQVTGWQNFEAIFKDPTKLGALSNTLFLAFGSVFLGNVAGLVIALGLNRVLKTRYILRTLFFMPVVLSPLATAYIWKYIFDFDGPINAFLISIGAEDLAKPWLADPQWAIWTVLVVLVWGSTGFAMVIFMAGLAGVPVEVEEAAAIDGANLWQRFRNVTLPAIRPAVAIATTLGIVQGLRVFDPIMALTGGGPAGATETLATQVYKQAFALGNFGGGAALALVLAVIILFFAVIQQRLTRSNPEDPGPT0016335_352DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
D1-29_00679837melC_2COG0395Melibiose/raffinose/stachyose import permease protein MelCATGTTCCGTTACACCAAATTCACCCTGCTCCGCGAAATGGGCCTCTGGGCGCTGGCGCTGATCTTCCTCGCCCCGTTCTACTTCCTGGTGACCACCGCCCTGAAGCCGGACAGCGAGATGTACACAACGTCACCCCTAGCCGTGCCGAAGAGCCCGGACTTCAGTAACTTCGTCGATGTCCTGACGGCCACTGGCAACTCCAACGTCGTGATGGGGCTCGTGAACAGCCTCATCATCACCACGGGCAGCATCATCGGCCTGATCGCACTGGGCTCAATCACCGGCTACGTCATCTCACGCAGCACCCGCCGGTGGAGCAAGGGCGTCTACTACCTGTTCCTGATCGCCATCATCCTCCCCGGTCAGCTCGGCGCCGTCCCCCTGTATATGGGTGCGCGCGCCATGGGCCTGACGGGGTCGGCGTGGGGCCTGATCGTCCTGTACACGGGCATGCTCCTGCCGCTGTCGATCTTCCTCTACGCCAACTTCTTCCGGGGGCTTGGGACCGATTATGAGGAAGCAGCCACCATCGACGGTGCCAGCAGGACCCAGATCTTCTCCAAGGTGGTGCTGCCCATGATGGCCCCCGCCACGGGAACGGTCACCATTTTCGCCGGACTCATCGTCTGGAACGACTTCTTCACCTCGCTGATCTTCCTCGGCGGCTCCGCCAACCAAACACTGCCGGTGGCCATGTACTACTACATCGGTTCACTGGTCTCGCAGTGGAACTCGATCTTCGCCATCGTGATCGTGTCCATGATTCCCATCCTGGCGCTGTTCCTGTTTGCGCAGAAGCGCTTCATCCAGGGCTTCTCCGGCGGCCTGAAAGGCTGAMFRYTKFTLLREMGLWALALIFLAPFYFLVTTALKPDSEMYTTSPLAVPKSPDFSNFVDVLTATGNSNVVMGLVNSLIITTGSIIGLIALGSITGYVISRSTRRWSKGVYYLFLIAIILPGQLGAVPLYMGARAMGLTGSAWGLIVLYTGMLLPLSIFLYANFFRGLGTDYEEAATIDGASRTQIFSKVVLPMMAPATGTVTIFAGLIVWNDFFTSLIFLGGSANQTLPVAMYYYIGSLVSQWNSIFAIVIVSMIPILALFLFAQKRFIQGFSGGLKGPGPT0016340_1326DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
D1-29_00680777hyi_1COG3622Hydroxypyruvate isomeraseATGTACCAACTTGCACCCAACATCGACCTCTTGTTCGCAGAAGCCGGCGACAGCGCCGCTGACCGTGTCCGCGCCGCAGCCGCCGCCGGTTTCGACGCGGTGGAAATGTGGGGCCCGACGGGGAAGGACATTCCCGCGCTCAAGGGTGCGTTAGAGGAGACGGGTGTGCAGCTCACCGCCCAGTTGGCAGAGCCGCGGATGCAGTTCATGATCCCGCCGAAGGACCACGCGCCCTTCTATACAGGACTTGATGCCGGCGTCGAAGTGGCTCAGCAGCTGGGTTGCCCGCGGATCGTGGTGGGCAGCGGCACCGGCTTCGGCGGCCGTAAGCGGCAGGACCAGCTGGATGAACTGATTGAGATCTTCACCAAAGGCGCAGCCCACATTGAAGGTTCCGGCATCACCCTGGTCCTCGAACCGGTGAACACCAGGGTGGACCACCCCGGTGCCCTGCTGGACCGCACCTCCGAAGCCGTCTACATCGCCAGGGGCGTCAACTCGCCCCATTTCGGCGTCCTCTACGACCTCTACCACTCCACCGTCGAAGGCGAGGACGTCGTCGCTGAACTGGCCAATGCCGGTGACCTCATTAAGTACGTACAGATCGCCGACGCCCCAGGACGCGGCGAACCCGGCTCGGGTTCCATCGACTGGCCTGCCCGGCTCGGTGACCTGCGGAACAGCGGCTACACCGGCCCCATCGGGCTTGAGTACTACCCGACCATCGATTCGGCAAAGTCCGTCCGCCGAATCCAGGAACTGGTGGCTGGGCGGTGAMYQLAPNIDLLFAEAGDSAADRVRAAAAAGFDAVEMWGPTGKDIPALKGALEETGVQLTAQLAEPRMQFMIPPKDHAPFYTGLDAGVEVAQQLGCPRIVVGSGTGFGGRKRQDQLDELIEIFTKGAAHIEGSGITLVLEPVNTRVDHPGALLDRTSEAVYIARGVNSPHFGVLYDLYHSTVEGEDVVAELANAGDLIKYVQIADAPGRGEPGSGSIDWPARLGDLRNSGYTGPIGLEYYPTIDSAKSVRRIQELVAGRNANANANANA
D1-29_006811560betA_2Oxygen-dependent choline dehydrogenaseGTGAGCGGTCACCGGTACCCGGCGGCAGTCGACGTCGCCATCGTTGGCAGCGGCCCCACGGCATCGGCGTACGCGCGGATCTTGAGCGAGGAAGCTCCCGGTGCCACAATCGCCATGTTCGAAGTCGGCCCCACGGTGAGCAATCCGCCCGGGGCGCATGTCAAGAACATCGAGGATCCTAAATCCCGCAGCGTCGCGCAGCGCGCTTCGGAAGGCCCCGGCGCCGATGCCGAAACGGTGAGCTCACCCGGCGCCGTCAAGAGCGGGGAGCGCCGGGCCAGGGCCGGAACCTATTTGCTGCAGGATGGCTACGCCTTCCCGGGCGAGGACGGCATGCCCGTAGCGGCCATGTCCAGCAATGTGGGCGGCATGGCCGCCCACTGGACCGCCGCCTGCCCCCGCCCGGGTGGAAAGGAGCGCATTCCGTTCCTGCCGGACCTGGAAGATCTCCTTGACGACGCCGACCGCCTCCTGGGCGTGACCACCCATGCCTTCGACGGCGCACCTTTCTCGGACCTCGTCATCAGGCGCCTGGCAGCGGTGGCGGACCAAGGCCGAAAGGCGGCGTACCGGGTCCAGCCGATGCCGCTTGCTGTTCACCGGCGGGAGGACGGCGGCCTCGTGTGGTCAGGCTCCGACGTCGTGATGGGGGACGTCACCCGGGAGAACCCGCAGTTCGAACTCTTTGATGAGTCGCTGGTGACCCGTGTGCTCGTGGAGGACGGCGCTGCTTCCGGCGTCGAAGTCCAGGACCGCCGCAGCGGGGAGACCCATCGGGTGGCTGCCCGTTACGTCGTGGTGGGCGGGGATGCGCTGCGCACGCCGCAGCTCCTCTGGGCTTCCGGGATCCGTCCGGACGCCCTGGGCCGCTACCTCAACGACCAGGCGCAGGTGGTGTTCGCGAGCAGGCTGCGCGATGTCACGGCTCCGCAGGTCCCGGCAGCCGCCAACGGTGCCCTCAGCGAGCAAAGCGGGGTTGCCTGGGTGCCTTACACGGACGAAGCGCCCTTCCACGGCCAGATCATGCAGCTGGACGCGTCCCCTGTCCCCTTGGCCGAAGATGACCCCGTTGTGCCGGGATCGATCGTGGGGCTGGGCCTGTTCTGCGCCAAGGACCTGCAGCGCGAGGACCGGGTGGCGTTCGACGACGACGCCCGCGACTCCTACGGAATGCCCGCCATGCGCATCCACTACCGGCTTACCGGGCGGGACCACGAGGTACTCGACCGTGCGAGGCAGGAGATTGTCAGCCTGGGCAGGGCGGTTGGGGAGCCACTCGACGAGCGTCCGTTTGTCATGCCGCCCGGAGCGTCGTTGCACTACCAGGGCACAACACGCATGGGCGAGACGGACGACGGCGAGAGTGTCTGTTCTCCCGACAGCCAGGTCTGGCAGGTTCCCGGCCTCTTCGTGGCCGGCAACGGCGTCATTCCCACCGCGACGGCATGCAATCCCACACTGACGGCCGTTGCGCTCGCCGTGCGTGGGGCGCGGAAAATCAGGGAAGAACTCAACGGCGCTTTACTTATGTCTGAATCAGACAATAGAATGACTAAATAAMSGHRYPAAVDVAIVGSGPTASAYARILSEEAPGATIAMFEVGPTVSNPPGAHVKNIEDPKSRSVAQRASEGPGADAETVSSPGAVKSGERRARAGTYLLQDGYAFPGEDGMPVAAMSSNVGGMAAHWTAACPRPGGKERIPFLPDLEDLLDDADRLLGVTTHAFDGAPFSDLVIRRLAAVADQGRKAAYRVQPMPLAVHRREDGGLVWSGSDVVMGDVTRENPQFELFDESLVTRVLVEDGAASGVEVQDRRSGETHRVAARYVVVGGDALRTPQLLWASGIRPDALGRYLNDQAQVVFASRLRDVTAPQVPAAANGALSEQSGVAWVPYTDEAPFHGQIMQLDASPVPLAEDDPVVPGSIVGLGLFCAKDLQREDRVAFDDDARDSYGMPAMRIHYRLTGRDHEVLDRARQEIVSLGRAVGEPLDERPFVMPPGASLHYQGTTRMGETDDGESVCSPDSQVWQVPGLFVAGNGVIPTATACNPTLTAVALAVRGARKIREELNGALLMSESDNRMTKNANANANANA
D1-29_00682396hypothetical proteinATGATCGCCGACCGCATTATCGAGCAAGGAACACTCACCACGCAGGGCGGCCGCACCGCCGTCGAAGTCCGCATCCCCTGGTACCGCGCCCTTCCGGGCTCGTGCATCGCCGGCGCAGCACTGACAGTTGACGGTGTTGCCGCCCCCGAGGACACCCTGCGCTGGACCATGAATAACCGGACGTTCCGGTTTGAAGAACTCGTGGACGAGACCGGTGAGTGGTGGTTCCCGCTGGACTCGGCAGTTCTTTCCGGCGACGTTCCCGTCCAGGACGACCACGCCGAGCACGAGGTCCGGGTGGACCTGAAGCTCTACATCCCGTACATCATCACCGACCACGGCGTGCTGCACATTGAAGAGCACGACACCAAGACCATGAAGGTGGCACAGCGATGAMIADRIIEQGTLTTQGGRTAVEVRIPWYRALPGSCIAGAALTVDGVAAPEDTLRWTMNNRTFRFEELVDETGEWWFPLDSAVLSGDVPVQDDHAEHEVRVDLKLYIPYIITDHGVLHIEEHDTKTMKVAQRNANANANANA
D1-29_006831104hypothetical proteinATGACCAGCCTCGGCACGCCGATCCAGGGCGTCACCCTTTACAGCTTCACGCGGGCCTTCCACGCTCGGCAGTATGATCTCGACGGCCTGATCCGCAAGGTGGCGGCCGAGGGCTTCGGCCCGGGGCTCGAGGTTATTGGATTCTCCAGCTTCCGGGGCTTCCCGGACCGCATCGACGACACCTTCGTTGGGCAGTTCCGCGACCTGGTGGCAGAGGTTGACCTGGTCCCCACCTCCCTCGCAGTCAACGTTGACACGGGCATCCGCCGCGACCGGCTCATGAACCACGACGAGCTGGTCGAATACATGCGCAAGCAGATCGAAGTAGCCGCCCGGCTCGGCTTCCCGATCGCGCGAGTGCAGATCTCACTGACGCCGGACGCCATGGAAAGCCTGCTGCCCGTGGCCGAAAAGTACGGCGTCACCCTGGCCCTCGAAGTCCACGCGGACCAGCACGGCGCCCACGAGCGCGTCCTGGCCCTGCGCGACCGCTACGAGAAGCTCGATTCTCCGCTGCTTGGGTTCACCGCCGACTGGGGCGCCACCGTCACAGGGTTTGCACCCTCGCTGCTGGAGGCCTACCGGCGCCGCGGTGCTTCCGAGGAACTCCTCCGCCAAGTGGTTGACCTGTGGAACGGCTTCTATGCGGAAGGACCTCCCAACACGCAGAAGATCCACGGTGAGCGCTTCGGTGCCTTCATCGGCCTGGCAGCACGCAACGGCCGACCGGACCTCGGCATCGATTTCGGCATTAACGGAACGGGGCTGTTCGGGCCTGCACCGCTGGACACCTGGCTGGAAATCATGCCATGGGTCCGCCACGTGCACGGCAAGTTCTTCGGCATCGACGAGAATGGCGAAGAGCCCTCGGTGCCGGTGCGTGACCTGGTCCGGCAGCTCGTGGAGAACGGCTACAACGGCGCCATCTCCAGCGAATACGAAGGCTGGCACTGGAACAACTGGCAGGACCCGTTCGACATCATCCGCGCGGAGCAGGCCGTCCAGCGTTCAGCCGCTGCAAACGCCGGTTCCGCCATGATCACGGATGCTGCGGAAGCCCGCCGCATCCTCAGCAGCCACCTCGCCCAGCCCGTCCGCGGCTGAMTSLGTPIQGVTLYSFTRAFHARQYDLDGLIRKVAAEGFGPGLEVIGFSSFRGFPDRIDDTFVGQFRDLVAEVDLVPTSLAVNVDTGIRRDRLMNHDELVEYMRKQIEVAARLGFPIARVQISLTPDAMESLLPVAEKYGVTLALEVHADQHGAHERVLALRDRYEKLDSPLLGFTADWGATVTGFAPSLLEAYRRRGASEELLRQVVDLWNGFYAEGPPNTQKIHGERFGAFIGLAARNGRPDLGIDFGINGTGLFGPAPLDTWLEIMPWVRHVHGKFFGIDENGEEPSVPVRDLVRQLVENGYNGAISSEYEGWHWNNWQDPFDIIRAEQAVQRSAAANAGSAMITDAAEARRILSSHLAQPVRGNANANANANA
D1-29_006841026hypothetical proteinATGCCAGAAGGAATCGCAGGCTCGGGCATCGAGCTTGGCATCACCCTCTATTCACTGACCTCCGAATTCGCCGCCGGGCTCTACACCCCGGAGACCCTGATCAAGGCCGTCGCCGATGAAGGCCTCGGCCCGGGCGTGGAGTTCAACATCGCCCAGATGCTGCGTACCTACCCGGATGTGGACGAGGATTTCGTCCGCCTGTGGCGGGACAGCATGGACCGCTACGGACTGACCCCCAGCGCAGTCGGCACCAACCTGGACATGGGCCGGCGCAAGGACCGCGACATGACGCCGGACGAGGAGTTCGACTTCTTCGCCAGGCAGCTCAAGACCGCCAACACGCTGGGCTTCAACAAGATCGTCATCCGGTCCGCGGGCAAGGAACTGCTCCGCCGGCTGCTTCCGCTGGCCGAGAAGTACGACCAGAAGCTCGGCTACGAGATCCACGCGCCCCAGGGACCGAACGATCCCAAGATTCTGCAGATCCGCGAGATGTATGAGGAGCTCGGCAGCGACCGGCTGGGCTTCACGGCAGACTTCAGTTCCACCATGCACAGCCTGTCGCCCACGCTGTTCCGAACCCTGACCCAGATGGGACTGCCCGAGGAGCACTTCGCCGTAATGCAGGACATCTGGCGCAAGCCCCTGCCCATGCAGGAGCGCAACCAGGAGTTCGAGGACTACCTGCGCGAAAACAACTTCGATCCCGCCCAGCTGGGCCCGTTCACCCGGCTGGCGTTCAACATGCACGGACTGGTCCCGCCGGAGGAATGGCTGGACATCATGCCCCAGATGTTCCACGTCCACGCAAAGTTCTACGACATCGACGAGAACGGCAACGAGCCCGCCATGGACATCCCGCGCATCGTGCGGCAGTTCGTGAAGGGCGGCTACACAGGATTCCTCTCCAGCGAATGGGAAGGCCACGCGTTCGCCGACCTGGGCGAATCGGACCCCATTGACCTGGTCAAGAAGCAGCACTCCCTGATGCGGCGTGCCATAGAAGAATCAGTCGTTCGAGCCTAGMPEGIAGSGIELGITLYSLTSEFAAGLYTPETLIKAVADEGLGPGVEFNIAQMLRTYPDVDEDFVRLWRDSMDRYGLTPSAVGTNLDMGRRKDRDMTPDEEFDFFARQLKTANTLGFNKIVIRSAGKELLRRLLPLAEKYDQKLGYEIHAPQGPNDPKILQIREMYEELGSDRLGFTADFSSTMHSLSPTLFRTLTQMGLPEEHFAVMQDIWRKPLPMQERNQEFEDYLRENNFDPAQLGPFTRLAFNMHGLVPPEEWLDIMPQMFHVHAKFYDIDENGNEPAMDIPRIVRQFVKGGYTGFLSSEWEGHAFADLGESDPIDLVKKQHSLMRRAIEESVVRANANANANANA
D1-29_00685801hypothetical proteinATGTCCACAACAGAAGCCTCCGCCGTCGAAAGCTCCACCGCCGAAACTGGCCTTGCCGCCGAGGTGAAGCGCCTGCGCGCAGAACTCGCCGAAGCCCTGTCGCTGGCCCACCGGGCCAACGACAGGGGTGACATCGAAAACCTGTTCAACCGCTACATGTACCTGCACAACGCCTTTGAAGATGAGCAGATCATCCCGCTGTGGGTGAAGCCGGGTACTCCCGGCATCCGGGCCAGGTACACCAATGCAGGCCAGTACACCGATTACGAAAGCGTCATCCGTTACCACCAGGGCCGCCCACGGCCCGAGGGAAAGCTGATCCTGCACTACACCACGACCCCGGTCATCGAGGTGGCCGCGGATGGCAACACGGCCAAGGGTGTCTGGATCATCACCGGCAACGAGTCCGGCCTGACGGACCCTGAGGTGGCCAAGGACAGCCCGGACTACATGTACTCGCCGGGCGAGGTCCAGGGCAAGAAGGTCTGGGCCCACTGGGTGTGGTGCAAGTATGCAGTGGACTTCCTGCGCCAGGACGGGGAATGGAAGATCTGGAAGTTCCGCTGCTACGAACTCCTGCGGGCACCGTTCGAGGAAAACTGGATCAGCTTCGCCGAGAAAAACCAGCACGCCTTCGCCCTGGACCTGATGTACTTCGGCGACGACGGCAAGCCGGTGTTTATGCCACCCGCCGATGAACCCGTGCCCCAGGAATACCACCCGTACAGTCCAACCGCGCGGCAAACGCTGGAACCCAAGCCGCCGGTACCCCACCAGACATTCGTTGAGACCTTTGAGTAAMSTTEASAVESSTAETGLAAEVKRLRAELAEALSLAHRANDRGDIENLFNRYMYLHNAFEDEQIIPLWVKPGTPGIRARYTNAGQYTDYESVIRYHQGRPRPEGKLILHYTTTPVIEVAADGNTAKGVWIITGNESGLTDPEVAKDSPDYMYSPGEVQGKKVWAHWVWCKYAVDFLRQDGEWKIWKFRCYELLRAPFEENWISFAEKNQHAFALDLMYFGDDGKPVFMPPADEPVPQEYHPYSPTARQTLEPKPPVPHQTFVETFENANANANANA
D1-29_00686399hypothetical proteinATGGCAACCCATAACTCCCTGTTCCAGGACACCGACGTCCGCAGGCACCCCGAGGGCATTTCGGTTTCCGTGCAACTGCCCTGGTACCGCAGTCTCTGGCTCTCTGCTGTTGACGACGTCGCCGCCACCGTCAACGGCTTGGAGATCCCCAAGGAATCACTCCGCTTCGAACTGCAGGGCAAGTCCTACTCCATTGCTGAACTGCCGGAGCAGTGGGAAACCCTGTGGTTCGTCGCGGACAAGCCCGACGTGATCATCCCGCTGGACCGCATCCCTGACGCCGGCGAGGAAATCGACGTCGAAGTCATCCTCACCCTCCGCCTCCTGTACATGCAGATCGCGCCCATGCGCTATGTGGGCAACCGCGTCGCTGTTGAACGCAAGGTGGTGCTCGCATGAMATHNSLFQDTDVRRHPEGISVSVQLPWYRSLWLSAVDDVAATVNGLEIPKESLRFELQGKSYSIAELPEQWETLWFVADKPDVIIPLDRIPDAGEEIDVEVILTLRLLYMQIAPMRYVGNRVAVERKVVLANANANANANA
D1-29_006871188iolG_4Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAAAACCCTCCGCGTGGCCATGATCGGCTACGGCTTCATGGGGGCAGCGCACTCACAGGGCTGGCGCACCGCACCGCGGGTGTTCGACCTGCCGGCCGAGCCGGAAATGGCAGTCGTGGTCGGACGGAACCCCGAAGCGGTGGCCGCCGCCGCCCGCAAGTGGGGCTGGGCGGAGTCAGCCACAGACTGGCGCGAGGTGATCGCGCGGGACGATATCGACGTCGTCGACATTGTCACCCCCGGCGACTCCCACGCAGAGATCGCGATCGCGGCGCTGGAAGCGGGCAAGCACGTCCTGTGTGAAAAGCCGCTGGCCAACACCGTGGCCGAGGCCGAAGCCATGGCCGAAGCGGCCGAGCGGGCCGCAGCACAGGGAATCCGGGCCATGGTGGGTTTCACCTACCGCCGGGTTCCGGCTGTCACCTTCCTGCGCAACCTCATCGCCGAAGGTGCCGTGGGGACGATCAACCAGGTGCGTGCCTCCTACCGGCAGGACTGGCTGGTGGACCCGGAGATGCCGCTGGCCTGGCGGCTGCAGAAGGAGCACGCCGGTTCCGGCGCGCTGGGGGACATCGGCGCCCATGCCATCGACCTCGCCCAGTTCGTGACAGGGCTGAACCTGGAGAAGGTGTCCGGCGTCATCGACACCATCGTGAAGGAGCGACCCCTTCTTGATTCCGGTTCGGGCCTTTCCGGCACTGCCGGTGTTGGCAAAGGCCAGGTGACAGTGGACGACATCGCCATCTTCACCGGCCGCTTCGAATCCGGAGCCCTAGCTTCCTTTGAGGCCTCGCGCTTTGCCACCGGGCGGAAGAACGCGCTTCAGATCGAGGTCTCGGGCGACAAGGGCGCCCTGGCGTTCGATCTCGAGGACCTCAACAGCGTCCAGTTTTACGACCGCACCGTACCCGCGGACCGCCAGGGGTTCCGGAAGATCCTGGTCACCGAAGCGGAACATCCCTACGTTTCGGGATGGTGGCCGGCCGGCCACATGCTTGGCTACGAGCACGGGTTCTCGCACCAGGTCAAGGACCTCGTGGAGGGCATCGTGGGCGGCACCGACCCGCATCCAACGTTCGCTGACGGACTGAGGGTGCAGCGGGTGCTGGAGGCCGTCGAGCGCAGTTCCGACAATGATTCCGCCTGGATGCGCGTTGCCGCAGACGTCCCGGCGCAGGTCTCGTAGMKTLRVAMIGYGFMGAAHSQGWRTAPRVFDLPAEPEMAVVVGRNPEAVAAAARKWGWAESATDWREVIARDDIDVVDIVTPGDSHAEIAIAALEAGKHVLCEKPLANTVAEAEAMAEAAERAAAQGIRAMVGFTYRRVPAVTFLRNLIAEGAVGTINQVRASYRQDWLVDPEMPLAWRLQKEHAGSGALGDIGAHAIDLAQFVTGLNLEKVSGVIDTIVKERPLLDSGSGLSGTAGVGKGQVTVDDIAIFTGRFESGALASFEASRFATGRKNALQIEVSGDKGALAFDLEDLNSVQFYDRTVPADRQGFRKILVTEAEHPYVSGWWPAGHMLGYEHGFSHQVKDLVEGIVGGTDPHPTFADGLRVQRVLEAVERSSDNDSAWMRVAADVPAQVSNANANANANA
D1-29_006881005hypothetical proteinATGGCACGACCAATAACGTTGTTCACCGGCCAGTGGGCCGACCTGCCGTTCGAGGAGGTGGCCCGGCTCGCTGGCGAGTGGGGCTACGACGGGCTCGAAATCGCGTGCTGGGGTGACCACCTGGATCCCTGGCGCTGGGACGACGACGCCTACGTCCAGGGCAAGCTGGACATCCTTGAACGCCATGGCCTCAAGGTATGGACCATCGCCAACCACCTCAAGGGCCAGGCCGTCTGTGACGACCCCATCGACGAGCGGCACCGCGGCATCCTGCCGGATGCCGTGTGGGGCGACGGTGATCCTGAGGGTGTCCGACGGCGGGCTGCCGAGGAAATGAAGAACACTGCGCGGCTCGCCGCGAAACTGGGCGTGAAGACAGTGACCGGGTTTACTGGTTCGTCCATCTGGAAGTACGTGGCGATGTTTCCGCCTGCCTCCGAAAAGATGGTCGACGCCGGGTACCAGGATTTTGCGGACCGGTGGAACCCCATCCTTGACGTCTTTGATGAGGTGGGCGTCCGGTTCGCGCACGAGGTGCACCCGTCCGAGATCGCCTACGACTACTGGACAACGCACCGCGCCTTGGAAGCGATCGGGCACCGCGAGGCCTTCGGGCTGAACTGGGATCCGAGCCACATGGTGTGGCAGGACATCGACCCCGTGGGGTTCCTCTGGGACTTCAAGGACCGGATCTACCACGTGCACTGCAAGGATACGAAGAAGCGCCTGTCCAACGGCCGCAACGGCCGGCTCTCCTCCCACCTGGCCTGGGCTGACCCGCGCCGAGGGTGGGACTTCATTTCCACCGGCCATGGAGACGTGCCGTGGGAGGATGCCTTCCGGATGCTGAATTCCATCAACTACCGCGGCCCGCTCTCCGTGGAGTGGGAGGACGCCGGCATGGACCGCCTGGAAGGTGCCCCGGAAGCGCTCGCGTTCGTGCGCAGGCTCTCCGGCTATGAACCTTCCGCCGCGGCTTTCGACGCCGCCTTCAGTACGAAATAGMARPITLFTGQWADLPFEEVARLAGEWGYDGLEIACWGDHLDPWRWDDDAYVQGKLDILERHGLKVWTIANHLKGQAVCDDPIDERHRGILPDAVWGDGDPEGVRRRAAEEMKNTARLAAKLGVKTVTGFTGSSIWKYVAMFPPASEKMVDAGYQDFADRWNPILDVFDEVGVRFAHEVHPSEIAYDYWTTHRALEAIGHREAFGLNWDPSHMVWQDIDPVGFLWDFKDRIYHVHCKDTKKRLSNGRNGRLSSHLAWADPRRGWDFISTGHGDVPWEDAFRMLNSINYRGPLSVEWEDAGMDRLEGAPEALAFVRRLSGYEPSAAAFDAAFSTKNANANANANA
D1-29_006891014hypothetical proteinATGGCCCCCGCAATCCCCGACGGCTGGACCTTGTGCGCCAGCTCCTTCAACTGGACCCCCGAGATCGCCGCCGCCCGCCGAACCGCACACGAGATCGTGGCTGGCATCGCGGATTCGGTAGTGCAGACAATTGAGCTCGAACCCGGACTGCTCTGGCGGTCCTTCCCGGCCCCACAGGACGCCGAGGTGGACGAACTGAAGCACTCCCTGGCCGCAAAGGGCGGAAGTGTCAGTATCGTCGGTGCCAGCCTCGACGATTTCACCTCACCAACCGACCGCCGCACGCTGCAGCAGCGCCTGGACTTCCTGGTGCCCCAAATCCAGGCAGCGCACCGGGTGGGAGCCAGCGGGGTTCGGCTGCCCATCGGCCAGGCCGGCACCGAACTGCTCACGCTGGTGCAGCCGCTGCTGCACGAGCTCGACCTCGTGCTGTATGAAGAGATCCAAGGGCAGCAGGCCCCCGGGAATCCTGCCGTCGAACCGGCCCTGGAGGCGATAGCCGGGCTTGCAGATGACCATGTGCGGGTACTCGTGGACATCAGCATGCTGATGCCTGCCCTCCCGGTGACCTATCTAAATGAACTGCGGCGGGGAGGCCTGTCCGCTGAACTTCTCCGCCGCCTGGAGAAGGACTGGCGGGACCCCGCCACCCTGGACGCCGTCACGGCTTTGCTCCAGTCCGGGCAGGTTCCGCCGAATATCCATACGCTCTTTATGAACCTGCTCATCCGCTTTGGCCGGAGCGATGCCGCAGACCTGCAAGGCATCCTCCCGCTGGTCGGCGCCTTCCATCTGAAGTTCTGGGACCTGGACGACGACGGCGGCCGGGTTTCGCAGCCGCTGCGGGACGTCGGCGGCCTTCTGGGCAGGAACGGTTTCACCGGGACGCTCACCAGCGAGTGGGGCGGCCACGAATGGCTGCAGGACGACCCCACGGAGATGACGCGGAGGCACCTGGCCCTGGCGGAGGAGGCCTTTACGCAGGCAGCGCCAGTCACGCGGGCTGCCGTCTGAMAPAIPDGWTLCASSFNWTPEIAAARRTAHEIVAGIADSVVQTIELEPGLLWRSFPAPQDAEVDELKHSLAAKGGSVSIVGASLDDFTSPTDRRTLQQRLDFLVPQIQAAHRVGASGVRLPIGQAGTELLTLVQPLLHELDLVLYEEIQGQQAPGNPAVEPALEAIAGLADDHVRVLVDISMLMPALPVTYLNELRRGGLSAELLRRLEKDWRDPATLDAVTALLQSGQVPPNIHTLFMNLLIRFGRSDAADLQGILPLVGAFHLKFWDLDDDGGRVSQPLRDVGGLLGRNGFTGTLTSEWGGHEWLQDDPTEMTRRHLALAEEAFTQAAPVTRAAVNANANANANA
D1-29_00690417hypothetical proteinATGTTGCAAACTGCTTTGCGCGAAGATGCGCTGACAGCCACGCCGAAAGGCTTCGAACTTCGAATTGGCCTGCCGTGGATACGGTCCATGCCCCTGTCCAGCGTCCTTGAACTCATGGTGGAGATCGACGGCGTCCCGCTGGAGGCAAGCGAGTTGGCAGTGGTGCTGGATGCCCGGGATGTGCCGGCGGATTCGCTCCAGGGAGTGTCTGGCTGGTGGTTTGTCCAGGACAGGCTTGTGGTGTCCTGCCGCCGGAAACTTCAGGACGGCGTTCATGCCGTCGCCGTCGGCTTCCAACTGCTGGTGCCCTACCTCCAGGCGCGTCCAGGTACCCCGTTGGTCCTGCCGTTCCGGCTGGAGGCTGGGTTGGTACTTGACCACGCGCCGGTGCCCAGTGTCTCCCGGGATGTGGCCTGAMLQTALREDALTATPKGFELRIGLPWIRSMPLSSVLELMVEIDGVPLEASELAVVLDARDVPADSLQGVSGWWFVQDRLVVSCRRKLQDGVHAVAVGFQLLVPYLQARPGTPLVLPFRLEAGLVLDHAPVPSVSRDVANANANANANA
D1-29_006911263nagC_1COG1940N-acetylglucosamine repressorATGACGACAGAGTCCACCCTCCGCTTTGCGGCCCAGACGGATGAAGTGACGAGCCTCCTCAGGATCGTCAACCTCGTGCGAACAGGCGAGGCAACCACCCGCCCCGAAATCGGCAAGGTTACCGGCCTGGGCAGGGGCGTTGTCAGCCAGCGCGTGGACCAGGCCATTCAGATCGGGTTCCTGGGGGACGGTGAGTTCGGCGCGTCGTCCGGCGGACGTGCACCGCGGACCCTCCGTTTTCGCGCCGAGCAGGGGCGTATCATCATCTGTGCCCTCGGGGCCGCCCACGTGCACGTCGGCTTCACCGCGCTCGACGGCGACATCCTGGACCATGCGCACCGCCCCTGGGATATCGCCCAGGGCCCGGAAAAGACCCTCGACATGGTGACGGCCCTCGTCGACGACATGCTCAAGAAGCACCCCGACGTCCCGGTTTGGGGCGTCGTCGTTGGCCTTCCCGGACCTGTCGACTTCGCTTCGGGACAGCCAGTGGCGCCTCCGATCATGCCGGGGTGGAACGGGTTCGATGTCCGCACACCGTTTGAGGAGCGCTTCAACGCGCCGGTCTGGGTGGATAACGACGTCAACCTGCTTGCCCTCGGTGAGCGCGCCCGCCGTCGCGAGTCCCTTGCGGACCTCATCTACTGCAAGATCGGTTCGGGAATTGGAGCCGGCCTGCTGTCCCAGGGCAGGATCCACCGTGGTGCCAACGGCGCGGCCGGCGACATCGGCCACGTCCGTGTATCGGACTCCGACGCCCAGTGCCGCTGCGGCAAGATCGGCTGCCTGGAAGCGGTAGCAGGCGGTTGGGCTCTCGTCAGGGACGCCGAGGAAGCCATCAAGGACGGCGCCAGCAGTTCGTTGACCGCCCGGGCTAGGAAGGGAACGCTGAGCCTGGAGGACATCACCCTCGCCGCGCAGGCCGGCGATCCGCTGGCCATCACGCTGGTCCAGAAATCGGCACGCGTGGCGGGCGAGACCATCTCCGCACTGGTGAACATGTTCAATCCCGGGGTGATCGTTATCGGTGGAGCCATGGGTTCAGCCGGTGAGGTTTTCCTTGCCGAAGTTCGCCAACGCGTTTACGAACTGTCGCTGCCACTCGCCACCCGCGACCTCACCATCACGCTGTCCGTCAACGACACTCGCGAACCACTGCGTGGTGGAGCTGAACTGGCCCGCGAACAGCTGTTTGATATCACCTTCCCCCGCTGGTTTGCGGACGGCAGGCCGTCACCGGAACGGGTCGCCGTCACCGCATAGMTTESTLRFAAQTDEVTSLLRIVNLVRTGEATTRPEIGKVTGLGRGVVSQRVDQAIQIGFLGDGEFGASSGGRAPRTLRFRAEQGRIIICALGAAHVHVGFTALDGDILDHAHRPWDIAQGPEKTLDMVTALVDDMLKKHPDVPVWGVVVGLPGPVDFASGQPVAPPIMPGWNGFDVRTPFEERFNAPVWVDNDVNLLALGERARRRESLADLIYCKIGSGIGAGLLSQGRIHRGANGAAGDIGHVRVSDSDAQCRCGKIGCLEAVAGGWALVRDAEEAIKDGASSSLTARARKGTLSLEDITLAAQAGDPLAITLVQKSARVAGETISALVNMFNPGVIVIGGAMGSAGEVFLAEVRQRVYELSLPLATRDLTITLSVNDTREPLRGGAELAREQLFDITFPRWFADGRPSPERVAVTANANANANANA
D1-29_006921044iolG_5Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGATGCCTTGGAACGTAGGAATACTGGGCGCTGGGCCGGGAGTGGCGGCACTGCACCTGCCAGTGCTGGGCAGGATGACGGAGCTGTTTACGGTGGTGCATCTGGCAGACGCCGGAAGCGGGCGGGCCAAGGCCCTGGCGGCGAGGCTTGGTGCCCGGTGGTCAGAAGGGGAGGTGGAACTGCTCCACGACCCCGACGTGGAGGTGGTGGCAGTCTGCAGCCCGCCAGCTGAGCATGCACGCCAGATCCTGGCGGCGGTCGCCGCCGGCAAGCGCGCAGTGTTCTGTGAGAAGCCGCTGGCCACCAGCAGGGAGGAAGCGGAAAACGTGATCTCGGCCTGCCGCGAGGCCGGCACCATCCTGCTCGTGGGAACCAACCACCTGTTTGATGGAGCATGGGGCCGCGCAAAGCATCACCTGGTCGCCCTCGAGGGCCGGGTGCAGGCGATCTCCGTGACACTCGCGCTCCCGCCGAATGACAGGTACCACCGGCTGGTGGCCGAGGGCGGCCCTTTCCAGGCTGTCCGGCGGGGACGCCCTGACCTCGGCAATCCCGCCATTGCCGCCGACGTCCTGAGGCAGCTGCTGAACGGCCTCGCAATCCACGATCTTCCTGCAGTGAGGGACATAGCACCGGGCATCGACGAAGTGGTGTACGCGCGGATCGCTCCGCCGATCGGCTATGTGGTGGGCTACCGGGCAGGCAACGTCCTGGTCCAGTTGGCACTCACCATGCTTCCGCAAGGGCCCGATGCCCTCTGGCAGATGAGCATCGCCACGTCCCACGACCGCATCGAGGTCAGCTTCCCGCCTGCCTTCGTGCATGCCGGAAGCGCTGCCACCCGTGTGCGAAGCGTTGATGGTCAATGGACCGAGTACCGGCGGGATCCCGAGGATGGTTATGTGGCCGAGTGGCGCCTGCTCGCCGCGCTGCTTGAAGACTCGGCGCCAGTGGAGTACGACGAACTGCTCGCCGACTCGCATTTTGCCATCGATCTCGCCGACGCTGCCGCCGCGAAGCTCCTCGAAGAGGTGGCTCAATGAMMPWNVGILGAGPGVAALHLPVLGRMTELFTVVHLADAGSGRAKALAARLGARWSEGEVELLHDPDVEVVAVCSPPAEHARQILAAVAAGKRAVFCEKPLATSREEAENVISACREAGTILLVGTNHLFDGAWGRAKHHLVALEGRVQAISVTLALPPNDRYHRLVAEGGPFQAVRRGRPDLGNPAIAADVLRQLLNGLAIHDLPAVRDIAPGIDEVVYARIAPPIGYVVGYRAGNVLVQLALTMLPQGPDALWQMSIATSHDRIEVSFPPAFVHAGSAATRVRSVDGQWTEYRRDPEDGYVAEWRLLAALLEDSAPVEYDELLADSHFAIDLADAAAAKLLEEVAQPGPT0006545_75DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_PHTHALATE_UTILIZATION,PGPT0006545-pht4-K18067NANA
D1-29_00693798hypothetical proteinATGAGCCCGGTGGGAGGAGGCCGTGGCGTCCTGGCCGCGTTGCCTGCCTACCTGGCCGCTATTGCCGAGCTTCCCCTCAGCGCCGGATTGACGGATGAGGTCAGCGGCGCGGTGGCGGTAGTGCCGGGATCGGGCGATTGGTGGCAGGCGATGCTGGCAGCTCGCGCGGGGGGAGCCGCAGCGGTGGTGCTGGCCGACCCGGCGGTGCTTCCCCGGGATGCCGTAGTGTCCCACTGGTGGCCGGACGACATCCCGGTGATCGTCGAGCGCCCCCGCCTGCGGCCTGACGTCGTTGCCGATGCGGTGGCGGCAAGACGGGGCAGCTCGGCCCGCATCATCACGGTCGAGTGCGCTGCCCCCGCTGCAGGCCTTGATGCGGTTATTCGGGACGGATTTGGCTGGGCGCGGTCGATTGCCCGGGGGCCCCTCAGCCTCAAGACGGGCATCGCCACCTCGCACGGAAGGATGGCGCTCCTTGATTTTGACTCCCTGGGGAGTGGACCAATCCCTGCCACCCTGGTGGTGACGGCGGCCGGTGGCTTTGATGCCGGAGGCCTGCTCAAAATGCTGGTCCTCGGCGAAGTGAGAACGGAACTGACCGTTGACCAGGCCGCCGGCCTGACGCGACTGGAGACCTCAACGGAAGAAGGCGCTTTGAGGACGCCTGAACGGTATGAGTCGTCAGCCCGACTGGCGCTCCGGCGGGCCATTCAGGCCCGGTCAGAGGGTATTCAGGTGCCAGACCTGGGCGAGCTGCTTGAGGATATGGCCCTCACCTGGGCGTTGCTCGACTCATGAMSPVGGGRGVLAALPAYLAAIAELPLSAGLTDEVSGAVAVVPGSGDWWQAMLAARAGGAAAVVLADPAVLPRDAVVSHWWPDDIPVIVERPRLRPDVVADAVAARRGSSARIITVECAAPAAGLDAVIRDGFGWARSIARGPLSLKTGIATSHGRMALLDFDSLGSGPIPATLVVTAAGGFDAGGLLKMLVLGEVRTELTVDQAAGLTRLETSTEEGALRTPERYESSARLALRRAIQARSEGIQVPDLGELLEDMALTWALLDSNANANANANA
D1-29_006941497mdtD_1Putative multidrug resistance protein MdtDATGCCACTTTCGCCTTTGAGACTCCGTCTCCTTGTAATCTCCCTGCTCACGGTCTCCTTTCTCGGGGCGTTGGACCACACGGTGGTATCCACTTCACTGGCCACCATCGCCGGTGAGCTGGGCGCGCTGAAACTCATGAGCTGGGTTGTGGTGGGGTACACGCTCGCGAGCACAGTGCTGCTGCCGGTGCTTGGGAAGCTGGGTGATGTCCTGGGCGCCCGGCGGATCTTTATTGGTTCGCTGGTGGTGTTCCTTGCCGCGTCCCTGGCGTGCGGTTTCGCGACGGACATGGCGTGGCTCATTGCCGCCCGCGTCCTGCAGGGGATGAGCTCCGCCGGCCTGCAGCTGATGTCCCAGACCATCATTGCCCGCGTCACCACCCAGCGTGAACGTCCGCGCTACATGGCCATCATCGGCGCGGCTTTCCCCATTGCCATCCTGGTGGGCCCGGTTCTCGGCGGCGCCATCACTGATTACTGGGGCTGGCAGTGGGTCTTCTGGATCAATATCCCGGTGGGTGCAGCGGCCTTGGTGCTCGCGCTGATTGCTGTGCCGCACCTGGAGCCAGGGCCTGCGCCCCGCCACTTCGACGTTGCCGGGGCGGCGGTGTTCACTGCCTCGCTGGTGGCCCTCGTCCTCGCGGTCACCTGGGCTGCGGAACGCAGCGCTGGCCCTGCCACGGCTGCTGCGCTCGCGGTCAGTATCCTGGGGTTTGCGGCGTTCTTTTTTATCGAGCGCCGCGCGCCCGAGCCCATGGTGCCGCTCCACTTCTTTGCCAACCGGACCATTGGGGCGGGCACAGCGCTCTCGGCGATTATCGGCGTCGGGCTCTTCTCTATCACTGCGTACCTCCCCACATACTTCCAGATGGCCTACCAGACCACGGCCACCGTGTCCGGTCTCGTTCCGATCGCCACCGTGTTTGGCATGCTGATCAGCAACCTGCTCACCGGATGGCTGGCCAGCCGGACGGGCCGGTACCGGATCTTCCCGATCCTGGGGACTTCGCTGGGAGCCGCCGGGCTGTTCGCGATGGCCCTGCTGCCGGCCGGGCTTCCGCTGTGGGTGCCCATGGTGGTGATGGGCGTGGTGGGCATCGGCACCGGTGCGTTCATGAGCCTGATTGTCGCAGTGGTGCAGGGTGCCGTTCCGGCCAACCAGACCGGGACCATCACGGCCACCGTCAACCTGGTGCGCCAGGTGGGCTCAACAGTGGCGACGGCAATCATCGGCGGAGTCATCGGCTTCGGCGTGGCCGCCCTCCTGCCGGCGGGCCTTGACGCTTCAACCCTGACACCGCAGCTGGTCCACGGTGCTGCGCCGGCAGTCCAGGAAAGCGTGGCGCAGATCTACAGCTCGGTCTTCATCCCCATCTTCATCGCCCTGGCGGCCACCTATGCGGTGGGAATTGTCGCGGCTGTCCTGCTTCCGCAGGGCCGCCTTTCCGACGAACCCGTTCCCGCTGCCCCCTCAACTTCCGAATCGCTTTCGGCCTGAMPLSPLRLRLLVISLLTVSFLGALDHTVVSTSLATIAGELGALKLMSWVVVGYTLASTVLLPVLGKLGDVLGARRIFIGSLVVFLAASLACGFATDMAWLIAARVLQGMSSAGLQLMSQTIIARVTTQRERPRYMAIIGAAFPIAILVGPVLGGAITDYWGWQWVFWINIPVGAAALVLALIAVPHLEPGPAPRHFDVAGAAVFTASLVALVLAVTWAAERSAGPATAAALAVSILGFAAFFFIERRAPEPMVPLHFFANRTIGAGTALSAIIGVGLFSITAYLPTYFQMAYQTTATVSGLVPIATVFGMLISNLLTGWLASRTGRYRIFPILGTSLGAAGLFAMALLPAGLPLWVPMVVMGVVGIGTGAFMSLIVAVVQGAVPANQTGTITATVNLVRQVGSTVATAIIGGVIGFGVAALLPAGLDASTLTPQLVHGAAPAVQESVAQIYSSVFIPIFIALAATYAVGIVAAVLLPQGRLSDEPVPAAPSTSESLSANANANANANA
D1-29_006951578betA_3Oxygen-dependent choline dehydrogenaseATGTCCAGCCCCACCATCGCCGTCGTCGGCAGCGGGCCCATCGGCTCAACCTACGCCCGGCTGCTCGTGCAGCGGGTCCCGAACGTCCGTGTGGTGATGTTCGAAGCCGGCCCGCAGCTCACCGAAGTTCCCGGTGAAAGCGTTCGGAACATCCCCGACCCGGCCGAAAAGGCCCGTGCCCGGGAAATGTCCCAGGGGCCGCAGGCCGGCGCGTACAGGGAATCGCTGGGCATCCCTGCCGGAACCGTCACCGAAGGCATGTTCACCGCACGCCAAGGCACCCATCTGCTGGACTTCGGCGGCACCGGTTCCGCGCATGCCGCGTCGTTCCCGGCAGCGGCTGCGGCCACCAACGTCGGCGGCCAGGGTGCTCACTGGACTTGCGCGACGCCGTCGCCCGCCTTTAGTGAGAAGATCCCGTTCATCGGGGACGACGAGTGGGACGGGCTGATTGAGGAGGCCAAGCAGCTGCTGCACGTCCACAGCGCCGCCTTCGCCGATTCCAAAGTCGGAGAAGCCATCCGGTCTCTCCTTGATGAGGAGTTCGGGGCGGAACTGCCGGAAGGCTACGGGGTAGGCACCCTTCCGGTTGCCGGGGATCCGCAGCCTGACGGGTCCGTGCGCTGGGCGGGTGCCGACGTCGTCCTGGGCCCGCTCATCGACAAGGAGAACCCGCTCTCCAAGCGGTTCGAACTCCGCGACCTCACCCTGGTGCGCCGGGTGGAACTGGACGGACACCGCGTTACCGGGGTCTCGGTCCAGGACCTCCGCACAGGCCAGGAAGCATTTGTTGCGGCTGACCTGGTGGTGGTTGCCGCCGATGCCTTCCGGTCGCCGCAGCTCCTCTGGGCATCGGGGGTGCGGCCCAAGGCCCTCGGCCACTACCTGACTGAGCACCCGGTGGTCATTTCAACGGTGGCGCTGGACGAAGAGAAGATGGGGCGCTACGCCACCGAGGAGGACCTCAAGGCCGAACTGGCCCGGCGCGCGCTCAATCCGGCGGATCCGGTGGCGGCGGTGAACCGCATCCCGTTCTCTGAGCCGGAGCACCCCTTCTCTGTCCAGGTGATGTATTCCGAGACAACGCCCTTCCCGATGGAGCCGGGAACGCCCCACTCACAAAACCGCTGGGGCTACGTCAACATGGGCTACGGCATGCGCAAGCACCCCCGCTACGAGGATGCGGTCACCTTCAACGACAACGAGCCCGACTACCGGGGATTCCCGAACATGACCATCGACTACGCGCTCACCGAACGGGAGAACGTGGAGATTGCCCAGGCAACCGAGCGGCTGCGCCGTGCCGGAAAGGCCCTTGGCGCCTTCGTCGCCGAACCCCGGCTCATGCCGAACGGCTCAAGCCTGCACTATCAGGGCACCATGCGGATGGGCGAGACCAACGATGGAACGTCGGTGGCTGATCCGTGGTCGCGCGTATGGGGCTACGAAAACCTGGTGGTGGGCGGAAATGCCCTGATTCCGACGGCGACGGCGATGAATCCCACCTTGATGAGCGTGGCGATCGCGGTGCGCGGCGCCCGAAAGGTTGCTGAAGAGCTTGGTTCGGGGAACGCCTGAMSSPTIAVVGSGPIGSTYARLLVQRVPNVRVVMFEAGPQLTEVPGESVRNIPDPAEKARAREMSQGPQAGAYRESLGIPAGTVTEGMFTARQGTHLLDFGGTGSAHAASFPAAAAATNVGGQGAHWTCATPSPAFSEKIPFIGDDEWDGLIEEAKQLLHVHSAAFADSKVGEAIRSLLDEEFGAELPEGYGVGTLPVAGDPQPDGSVRWAGADVVLGPLIDKENPLSKRFELRDLTLVRRVELDGHRVTGVSVQDLRTGQEAFVAADLVVVAADAFRSPQLLWASGVRPKALGHYLTEHPVVISTVALDEEKMGRYATEEDLKAELARRALNPADPVAAVNRIPFSEPEHPFSVQVMYSETTPFPMEPGTPHSQNRWGYVNMGYGMRKHPRYEDAVTFNDNEPDYRGFPNMTIDYALTERENVEIAQATERLRRAGKALGAFVAEPRLMPNGSSLHYQGTMRMGETNDGTSVADPWSRVWGYENLVVGGNALIPTATAMNPTLMSVAIAVRGARKVAEELGSGNANANANANANA
D1-29_006961062hypothetical proteinATGAACTTACGAGCAGCGGATCGAGTACGGCGGGACCTGGACGAACTGGTCGACGCCGGTCTCCACGTCGAAGGGTTCTGCGCCGCAGCCGGCCCGCTTGTTGCCCGGGCGGTGCCCTCGGAGGCCGGTGCAGCCGCAATACCGACATGGTACGCCCTCGACCCCCGATCGCTGCTGATCAGCGGTGTGTACGGTCCCGACTGCGAACTGGACACCGCAGCGCAAATGCGTTGGGAGTACCTCGATGACGACGTCAACAAGTCGGTCGACGTCGCGCAGAACCCCACCGGAGTCCAGACCCTTGCCGAGGTCACGGACGGGAACCCCTGGCTCAGTCCGATCTACCGCGACTATATGCACGGCCACGACCTCGCCCAAGAGATGCTGGTGGCGTTGCGTGGCGCCGACGGGCATGTCTGGGCCACCGTACGCCTCAACCGGTCGCGTGCGATGGCAGCCTTCGACGAGTCAGACCGGCAGTTCATGCGGTCGGTTGCTCCATGCCTGGCCGAAGGCATCCGGCGCGGACTGCTCACGGATGCCACTTCCGGGGCACGGACCCCCGTCTCGCCAGGGCTGGTGGTCCTCGATCGTGTGGGCCGCCCGGTCGCCGTGAGCGCCTCGGTAAGGGAGTGGCTGGCACTGTTCCCCGGCGGTCCCCGGCCCGACGCCGATCTTCCGCTGCCCATCCACGCGGTTGCGTTCGCCGCGTTGGCTGGGGGAAGTCCGCCAGCCATGCTGCGTATTCGGTTGATCAACGGACAATGGGCCGCGTTGCACGGGATCGTGACTGAGCTGGGGACCGGCGCCGTGAGCGTCATTATTGCTCCGGCCAGCCGTGAGCACCTGCTGCCATTGACCGCAGCGATCTATGGGCTGACTCCCCGCGAGCAGCAGGTAGCCGGACTCATCCTGAGGGGCCATGGCACTCACCGGATAGCCCACAGGCTCGGGATTTCGCCCTACACGGCCCAGGAACACCTGCGCCACATCTTCGCTAAGGTCTGCGTCGCCAGCCGCGGCGAGCTCGTGGCGGCCCTCTTCGTCGAACGAAACGGGTAAMNLRAADRVRRDLDELVDAGLHVEGFCAAAGPLVARAVPSEAGAAAIPTWYALDPRSLLISGVYGPDCELDTAAQMRWEYLDDDVNKSVDVAQNPTGVQTLAEVTDGNPWLSPIYRDYMHGHDLAQEMLVALRGADGHVWATVRLNRSRAMAAFDESDRQFMRSVAPCLAEGIRRGLLTDATSGARTPVSPGLVVLDRVGRPVAVSASVREWLALFPGGPRPDADLPLPIHAVAFAALAGGSPPAMLRIRLINGQWAALHGIVTELGTGAVSVIIAPASREHLLPLTAAIYGLTPREQQVAGLILRGHGTHRIAHRLGISPYTAQEHLRHIFAKVCVASRGELVAALFVERNGNANANANANA
D1-29_00697444hypothetical proteinATGGCTGGTATGGGTGAAACTATTGGTCATGGGGACCGGATTGCACGGGCGTTCGTGGCCGCTGTGGGGAGCGGTGACCCGACCCGCTGGGCGGCGATGTTTACCGACGACGCAACTTACAAAACGCCGGACTTTCCGAACCCGGTTCAGGGTCGGGACGCGCTGCGGGCGATGGCGATCACGTTCTTCACGGCGTTCCCCGACATGGAACTTATGGTGCGGTCAGTGATCGAGCAAGGCAACGTTGTGGTCCTGGAAGGCGCGACCAAGGGCAGTTTTACGGGGCCGTTGACGATGGCCGATGGAGAGGTCCCGCCGACCGGCAAGTCCTTCGAGGCACCTCTCGTCTCGGTGTTGGAGTTGTCCGATTCAGGGCTGATTACGGCATGCCGCGAGTATTACGACACCGCAGCCTTTGCCGCTCAGCTCGGCCTGACCGGCTGAMAGMGETIGHGDRIARAFVAAVGSGDPTRWAAMFTDDATYKTPDFPNPVQGRDALRAMAITFFTAFPDMELMVRSVIEQGNVVVLEGATKGSFTGPLTMADGEVPPTGKSFEAPLVSVLELSDSGLITACREYYDTAAFAAQLGLTGNANANANANA
D1-29_00698552hypothetical proteinGTGAACGATGTGCTGACTGATGATGTTTTGCGGGACAATGCCCGTGATCCTGAGTTCTTCAGCCTTGTGTACCGGACATATGCGTCACAGGTCCAGGGCTACCTCGCAGCCCGCGGAGTCGAAGATCCGGAGGCGGTTATGCAGGAAGTCTTCCTCGCCGTCCTTCCCCGGCTGGCGACGGTTAGCGGCGGCATTTCCGGCTTGCGCACTTTCATCTTTTCAGTAGCCCACGCGCGAATGGTGGACGATCACCGCAGGCAAAGCCGCACCCCGCTAAAGCTTCCCTTCGAGGCGGATTTGGACCAGCGCGAGGAATCTTCCGCTGAGGCGCAGGCCCTGCAGCGGGTCTCCTCCCGGGAGGTCCTGGACCTCCTTCAGGCGCTGCCGGACGAGCAGCGCGAAGTGCTCACCCTCCGCCTCATCGGAGGCCTCACCGTCGACCAGGCGGCCGTGGTCATGGGCAAGAGCGCCGGAGCAGTCAAGCAACTCCAGCGGCGTGCTTTGAGCAATCTCCGCGAGCAGTCGGCAGTAAAGGAGTACGTGGCGCCATGAMNDVLTDDVLRDNARDPEFFSLVYRTYASQVQGYLAARGVEDPEAVMQEVFLAVLPRLATVSGGISGLRTFIFSVAHARMVDDHRRQSRTPLKLPFEADLDQREESSAEAQALQRVSSREVLDLLQALPDEQREVLTLRLIGGLTVDQAAVVMGKSAGAVKQLQRRALSNLREQSAVKEYVAPPGPT0014960_9003DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_00699870hypothetical proteinATGACACCCAGCACAAGCCGTGTCATCAGGACCGTGGATGAGATGTTGCTCGACGCCGGGCAGGTGCACGCTGACGAGCTTCGCGCCGCACTACTCGCCCTGGGGTCCCTGGGAACGGTACCGGCGCCTGCACCCAATGCCGAACTTTCAGCCTTGCTGGCCGGACGGAATGATCAGCTTGCCCACCGCCGCAGGCTGCGACGGCGCCGGTCCGGAGTTGTGGGCCTGGCGGTTATTGCAGGTATGGGACTGGGCGTCACTGGTGTGGCCGCCGGTGTGCCGGGTGGAAGCCAGCAGGCCAGCATGTCCGTCCAGCACCTGCTGGAGGGCTGGACGCCCTCCTGGACCATCGCGGCAGGCGCACCTGGCGGAAACGGTGGACTGATGCCGGCTCCGGCAGACGCTTCAGGAACCTTCGAGCAGCCACTGCCCATCCGGGCAGAACAACGCGGAAAGCCTGCAGCGCCCGCGCCGGGACGCGCGGCGCCTGAAACGGGCTCACCGGCGGACGAACGGGCGCACACTCCGGCACGCAAGGCAACAGGCGACGGCGGTTCTGAAGCGGGCGGTGCTGCCGCCAACGGGAACGCTCCCGACGGCGGTGCTGCCGACGGCGGTGCTGCCGCTAACGGTGCTGCCGACGGCGGTGCTGCGGCCAGCAGCGACGCTGCGGCAAAAGGCGAAGATTCCACCAAAGGGCACGATGCCAAAGGTTCCGACGCCCAGGAAGCTGTGAATCCGGCCGCCCCGGCGACGGAGAAATCCCTCAACGGGAAAGCCAGCGCCGGGAAAGCCAGCGCCGGGAAACCGAGCGCCGGATCCGGGAAACCGAGCCCCGGGGCTGCCTGGCTGAAAAAGTTCCGGCGTTAGMTPSTSRVIRTVDEMLLDAGQVHADELRAALLALGSLGTVPAPAPNAELSALLAGRNDQLAHRRRLRRRRSGVVGLAVIAGMGLGVTGVAAGVPGGSQQASMSVQHLLEGWTPSWTIAAGAPGGNGGLMPAPADASGTFEQPLPIRAEQRGKPAAPAPGRAAPETGSPADERAHTPARKATGDGGSEAGGAAANGNAPDGGAADGGAAANGAADGGAAASSDAAAKGEDSTKGHDAKGSDAQEAVNPAAPATEKSLNGKASAGKASAGKPSAGSGKPSPGAAWLKKFRRNANANANANA
D1-29_00700426yccUCOG1832putative protein YccUATGGGACACACCAACGATCCTGCAGTCATCGAACGCCTGATGCGCACCAAGGGGCGGTGGGCGATCGTGGGCCTGACCACCAACGAGTGGCGGGCGGCCTATGACACGTCCCTGTTCATCAGGGACCGGCTTGGTATCGAGATCATCCCCGTCAACCTGCCGGGGGACCCGGTACACGGCGAAACGGGCTACCGCAGCCTGGCAGACATTCCCCCGGAGAAGCAGCCCATCGACGTCGTGGACTGCTTTGTTAACTCGCAGAGGGTAGGAGCGGTGGTTGACCAAGCCATCGCCGTGGGCGCCAAAGCGGTGTGGCTGCAACTGGGCGTCATTGACGAGGCCGCCGTGGAGCGTGCCAAGGCCGCCGGACTGGACGTGGTGATGGACGTCTGCCCCGCGCAGCAGGCCTGGAAGTACAAACTCTAAMGHTNDPAVIERLMRTKGRWAIVGLTTNEWRAAYDTSLFIRDRLGIEIIPVNLPGDPVHGETGYRSLADIPPEKQPIDVVDCFVNSQRVGAVVDQAIAVGAKAVWLQLGVIDEAAVERAKAAGLDVVMDVCPAQQAWKYKLNANANANANA
D1-29_007011029vldWValidamycin A dioxygenaseATGTCACATGACCAGGCGACCATACCTGTTCTGGACCTGAGCACCGCACGCCAACCCTACGGTCCCTTCAGTCCGGAATTCATTGACCAGCTGCGGGACGCCACCCATCGGGTGGGCTTCTTCCAGCTCACGGGCTACGGCGCCTCGCCCGGGCAGGCGGAGGACCTGTTGGAACTGATAAAGCGGTTCTTCGATCTGCCCCTCGAGGAGCGCATGAAGCTGGACAATCGGCTTTCCCCGCATTTCCGCGGCTATACACGGATGGGCACTGAAGTCACCCAGGGCAGGGCTGACGCACGCGAGCAGATTGATTACTCCCCGGACCGCGAACCGGTTCTGGATTACCCTCCGGATCAGCCGTACTGGCTGCTTCAGGGCCACAACATGTGGCCGGATGAGTCGTTGCCGGAGCTTGAACCCGCAGCCATGGCCTGGGCCGAACTGATGTCCCGGGTGGGCGCTGAACTCCTCCGCGCCATCGCCGTTTCCCTCCAGCTGCCGGAGGACTATTTCGATGAACCGTTCAGGGATACCCCGGCCTGGATGGGCAAGCTGGTTCATTACGTGGGCGGTGTGGTGGAAGCGGCCGGCGACCAGGGGGTGGGTTCGCACGCCGACTACGGTTTTGTGACCCTCCTGCTGCAGGACGGGGTGGGCGGCCTGGAGGTGCTGCCGCCCGGAGCCAGTGATTGGGCTGCGGTGGAACCCATTCCGGGGGCGCTGGTGGTCAACCTCGGTGAGATGCTGGAGGTGGCCACGGAAGGCTACCTGGCTGCCACCATCCACCGCGTCCAGGCACCGCCGCCGGGGGTGGACCGTTACTCGGTGCCGTTCTTCTGGTCACCCAGGCTGGATGCCGTGATTGAACCCGTGCCGCTGCCGGCGGAGCTCAAGGCGCAGGCCCGCGGCATCTCCGATGACCCCGCCAACCCGATGCTTGCTTCATTTGGGCTCAACATGCTCAAGGGCAGAATGCGCGCACACCCCGACGTTACCGAGCGCCACTACCCCGAACTCATGAAGCGCTGAMSHDQATIPVLDLSTARQPYGPFSPEFIDQLRDATHRVGFFQLTGYGASPGQAEDLLELIKRFFDLPLEERMKLDNRLSPHFRGYTRMGTEVTQGRADAREQIDYSPDREPVLDYPPDQPYWLLQGHNMWPDESLPELEPAAMAWAELMSRVGAELLRAIAVSLQLPEDYFDEPFRDTPAWMGKLVHYVGGVVEAAGDQGVGSHADYGFVTLLLQDGVGGLEVLPPGASDWAAVEPIPGALVVNLGEMLEVATEGYLAATIHRVQAPPPGVDRYSVPFFWSPRLDAVIEPVPLPAELKAQARGISDDPANPMLASFGLNMLKGRMRAHPDVTERHYPELMKRNANANANANA
D1-29_00702420yjbRCOG2315putative protein YjbRATGGATGTAGCCCAGCTCAGGAAAATCTGCCTGTCGTTTCCCGGGGCCTTTGAGGATTTTCCGTTTGGGCCTGAGACCTCCGTGTTCAAGGTCAGGGCCCACGTGGCCGGCGGATCCAGGCATGAGGCCAAGATGTTCGCCGCCTCGGCCATGAACCCGGACGACTGGTCCGTGAGCCTGAAATGCGAGCCTGCCCTGGCAGAGCAGCTTCGTGCGGCCCATCCCGAAATCACCGGCGCCTGGCATATGAACAAGACCCACTGGAACGGTGTCCGCCTCGATGGTGCCCTGCCGGATGACATGATCCGTGACATGGTGGAGGATTCCTACGATTTGGTGGTGGCCACCTTGAGCCGCAAACAGCAGGAGCAGCTCGGCTGGGCCCGGCTGTCCGGATCGCAGGGTGCGTCGCTTGACTGAMDVAQLRKICLSFPGAFEDFPFGPETSVFKVRAHVAGGSRHEAKMFAASAMNPDDWSVSLKCEPALAEQLRAAHPEITGAWHMNKTHWNGVRLDGALPDDMIRDMVEDSYDLVVATLSRKQQEQLGWARLSGSQGASLDNANANANANA
D1-29_00703558hypothetical proteinGTGCGTCGCTTGACTGAAAAGCGTCTGGCGGCGGGCGAACTCGATTACCCGGGCATTGGCTCCACCGAGCACGGGCGGACACCGGAGGGGTACGCCTGTGTGGTGTCACGGACGTACATCGGGAAAGGCACCGCAATCTACCTCAGGGTGGCCAAGGGAATCCTCACCTGGGAGCTGCAGAAGCGGTCGGGGCTGCGCGTCCGGACGGAGTCCGATCAGGTCGTTCCCGGTGCACGGATAGTGAGCGGATTCGGCGTCGGGCCCTTCCGCCTGAATGCCCCGTGCGAAGTGGTGTGGGTTCGCCGGGCGGGGACCGGTGAAGGCCCGCAGTCGGCCGGCTTCGGCTATGGCACCCTTCCCGGTCATCCGGTGAGAGGTGAGGAGGCCTTCGAGGTGGAGATCGACGCGCAGGAAAGCGTGTTTTTGAAGATCACGGCATTCAGCCGGCCCGCCAACTGGATGTACCAGGTGGGCGGGGTGCTGGCCCGTGCGGCGCAAAGCCACATCACTTCCCGCTACATTGAAGGGGCGCGCCAACTCGCCGCCGATGAGATCTGAMRRLTEKRLAAGELDYPGIGSTEHGRTPEGYACVVSRTYIGKGTAIYLRVAKGILTWELQKRSGLRVRTESDQVVPGARIVSGFGVGPFRLNAPCEVVWVRRAGTGEGPQSAGFGYGTLPGHPVRGEEAFEVEIDAQESVFLKITAFSRPANWMYQVGGVLARAAQSHITSRYIEGARQLAADEINANANANANA
D1-29_00704624hypothetical proteinATGCTGGACCAAGAGGCCCTGGACCGTTTGTGGGACGTCAATGATCCGGAACTTTCCGAACAACGGCTCCGGACGGCCATGGCTGACCCGGATTATGACGACGACGAAAAGGCCGAACTGGCCACACAGGTAGGCCGGGCCATCGGGCTGCAGGGCCGTTTCGAGGAGGCCGATGCCCTGCTCGACTCCATCGACGGCGACGAACCCACCGTTGGAGTCCGGATCCTGCTGGAGCGGGGCCGGGTCCTGAATTCGAGTGGCCATGCTGCCATGGCGGTGCCCTTGTTCGAGCAGGCGGCTGAAATGGTAGATCACCTAGGTGAGGAGTTCCTGGCCGTGGACGCTCTTCGCCTGCTGGCCCTCGCCGACTCCGCCCACGCGGAACTCTGGCTGCGCAGTGCGCTGGAGTACGCTTCCACCGCGCGTGATCAGCTGACCCGGCGCTGGATGGTGGGACTGCATCATGATCTGGGCCGGGAGTTGCATGGTTCAGGAAGGTTCACGGAAGCGCTGGTGGAATTCCAACTGGCCGAACAGTGGGCCGAACGCGTGGGCACGCCGGCGCAGCAGCGCACCGCGCAGCAAGGAATCCAGGAGTGCGAACTGGCTTTGGCAGCAGGCTGAMLDQEALDRLWDVNDPELSEQRLRTAMADPDYDDDEKAELATQVGRAIGLQGRFEEADALLDSIDGDEPTVGVRILLERGRVLNSSGHAAMAVPLFEQAAEMVDHLGEEFLAVDALRLLALADSAHAELWLRSALEYASTARDQLTRRWMVGLHHDLGRELHGSGRFTEALVEFQLAEQWAERVGTPAQQRTAQQGIQECELALAAGNANANANANA
D1-29_00705294hypothetical proteinATGTGGATCGGCTGGATCGAATTCGACATCCTTTTAGGCGATGTTCAAAGCCTGAAGGAGAAACGTTCCCTCATCAGGCCCCTCGTCGCGGAGATCAAACGCCGCTTCGACGTTTCGGTGGCTGAGGTGGGGGACCACGAGCAGTACCGGCGCAGCCAGGTGGGCGCGGGACTGGTGGCAGCTGACCGGGCGCACCTCGTGGAGGTGCTCACCGCCGTCGAACGCTTTGTTGCTGCCCGCCCGGAGTTTGAGTTGCTGAGTGCAAGGCAGCGGGAGCTGCACAGCGAAGACTGAMWIGWIEFDILLGDVQSLKEKRSLIRPLVAEIKRRFDVSVAEVGDHEQYRRSQVGAGLVAADRAHLVEVLTAVERFVAARPEFELLSARQRELHSEDPGPT0014535_271DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014535-ylxP-K09764NANA
D1-29_00706828hypothetical proteinATGGGCAAGGTGGCAAGGTTCCTGAGTTTCGTGGTGTTGCTGGTCCTTGTCCTGGTTTCGGCGGCACCGACGCCAACCAGCCGCTATCCCCGGAGCATGGCTGCCATCGGGGATTCCATTACCCGGGCCTTCAGCGCCTGTTGCGGGTTTGGCGACCACCCGGTCCATTCGTGGTCCAGCGGCGACAGCGGGAATGACGGCGTCGTCAGCCACTATGAACGGCTGCTCCGCCTGCAGCCGGCAATCTCCGGAAGAAATTACAACAACTCCAGGAGCGGGGCTAAGGTGGCGGGCATTCCGGCGCAAGCTGCCATGGCTGCCAGCCAAAGAGCCGCTTACGTCACTGTCCTGGTGGGCGCCAACGATCTCTGCACATCGTCCGCAAATACCATGACCACCGAGGCTGCCTTCAGGGCGGCAGTGGACGAGGCGCTGGCCATACTGGACCGGATGCGCCCCCGGCCGAAGGTCTTTGTGAGCAGCATCCCGGATTTGTACCAGTTATGGACTGTCCTGCACAGCGACCCGGCGGCGCAGGCGGCCTGGTCCGGTGGAAGCATCTGTCAGTCCATGCTCTCGGCTTCGAACAGCGAAGAGACGCGTCAGCTCGTGGTGCAGAGGCAGGCAGCCTTCAATGCCATCCTCTCCAGCTCCTGCGCAGCCTATCCCGGCATGTGCCGCAGCGATGGCGGAGCGGTGTACGGATACAAATTCACCGCCAGCGACGTGAGCGTCCTTGATTACTTCCATCCAAGCCTGGAGGGCCAGAACAAGCTGGCAGGCATCACCTGGGACGCGGTGTGGCAGGAAGGCGACCTGACTTCCTGAMGKVARFLSFVVLLVLVLVSAAPTPTSRYPRSMAAIGDSITRAFSACCGFGDHPVHSWSSGDSGNDGVVSHYERLLRLQPAISGRNYNNSRSGAKVAGIPAQAAMAASQRAAYVTVLVGANDLCTSSANTMTTEAAFRAAVDEALAILDRMRPRPKVFVSSIPDLYQLWTVLHSDPAAQAAWSGGSICQSMLSASNSEETRQLVVQRQAAFNAILSSSCAAYPGMCRSDGGAVYGYKFTASDVSVLDYFHPSLEGQNKLAGITWDAVWQEGDLTSNANANANANA
D1-29_007072319purLCOG0046Phosphoribosylformylglycinamidine synthase subunit PurLGTGAGTACCTCAGCTGAAACCGTCAGCAAGAAGTTCAATATCGACACCGTCGAGAATGCAGCCAAGACACCGGACACCGAACTCCCGTGGGCCGAGCTGGGCCTGAAGCAGAACGAGTTCGACGAAGTGGTCAAGGTCCTGGGCCGCCGCCCCACCGGCGCCGAGCTCGCCATGTACTCGGTGATGTGGAGCGAGCACTGCTCCTACAAGTCCTCGAAGAACCACCTGCGTCAGTTTGGCGAGAAGGTGACCGACGAGATGAAGAAGGACATGCTGGTAGGCATCGGCGAAAACGCCGGTGTGACCAACCTGGGCGACGGCTGGGCCGTGACGTTCAAGATCGAGTCCCACAACTCGCCGTCGTTCGTGGAGCCCTACCAGGGCGCCGCAACCGGCATTGGCGGCATTGTCCGCGACATCATCTCCATGGGCGCACGCCCGGTGGCCGTGATGGATCCGCTGCGTTTCGGCGCCATCGACCACCCGGACACCGCCCGCGTGATGCACGGGGCTGTTGCCGGCATCGGCGGCTACGGAAACTCCCTGGGCCTGCCCAACATCGGCGGCGAGATGGTCTTCGATTCGGTGTACCAGGGCAACCCGCTGGTGAACGCCCTCGCAGTTGGCGTGATGCGGCACGAGGACATCCGGCTGGCCAACGCGTCCGGCAAGGGCAACAAGGTGGTCCTGTTCGGTGCCCGCACCGGCGGAGACGGAATTGGCGGCGCCTCGGTGCTGGCCTCCGAGTCCTTCGACGACACCAAGCCGTCCAAGCGCCCCGCCGTGCAGGTGGGCGACCCCTTCGCCGAGAAGGTCCTGATTGAGTGCTGCCTGGAGCTGTTCAAGGGCTCGCTGGTTGAAGGCATCCAGGATCTGGGCGCCGCGGGCATTTCCTGCGCCACGTCAGAGCTCGCCTCCAACGGCGACGGCGGCATGGAAGTTGAACTGACCTCCGTCCTGCTGCGGGACCCCACGCTGACTCCGGGCGAGATCCTGATGTCCGAGTCGCAGGAACGCATGATGGCTGTAGTGACTCCGGAGAACATCGAAGCCTTCGAAGCCGTGATGGACAAGTGGGCCGTGGAGTACTCCTGGCTGGGTGAGGTGACCGACACCGGCCGCCTCATCATCACGTGGGAGGGCGAAGTGATCGTCGACGTCGATCCCCGCACCGTTGCGCACGACGGTCCGGTGTACGACCGCCCGTACGCACGGCCGGAGTGGCAGGACTCGCTTCAGGCTGACACGTTCACCGGGTCCGTCCAGGACGCAGGCCGCCCCGCCGCCCCTGCAGAGTTGGCTGCCGCCGTAACGGAGCTCATCGCTTCGCCGAACATGTGTGACAAGTCCTGGATCACCAACCAGTACGACCGTTATGTTGGCGGCAACACCTCCATGGCCATGCCAGATGACGCCGGTGTGGTCAGGGTGGATGAGGAAACCGGCCTTGGTGTGGCTTTGGCCACCGACGCCAACGGCCGTTACACCTTCCTCGATCCGTACCACGGTGCACAGCTGGCGCTGGCCGAGGCCTACCGCAACGTGGCCACTTCAGGCGCTGTCCCGATGGCTGTCAGCGACTGCCTGAACTTCGGTTCCCCCGAGGATCCGGACGTCATGTGGCAGCTGGCCGAAGCCATCCGCGGCCTGTCCGACGCCTGCATGGTGCTGGGCATCCCCGTCACCGGTGGCAACGTCTCGCTGTACAACCAGACCGGCACCACGCCCATCCACCCCTCCCCCGTGGTGGCTGTGCTGGGCAAGTTCGACGACGTCGCCCGCCGCACGCCGTCGGGCTGGCGCGAGGACGGTCAGGCCATCTACCTGCTGGGCACCACTGCGGCTGAACTGGACGGATCTGAATGGTCCAACCTGCGCGGCCACCTGGGCGGGCTTCCGCCCAAGGTTGACCTCGCCGCGGAACGCGCGCTCGGTGAAATCCTGATCAACGCCTCCCGGGACGGCATGGTTGACTCCGCGCACGACCTCTCCGAAGGCGGCCTCGCGGCGGCACTCGTGGAGTCCTCGCTGCGTTACGGTGTAGGCGCCCGCATCGCACTGCAGGACGTCCTGGACCGCGACGGCGTGGACCTGTTTACGGCCCTGTTCTCCGAGAGCCAGGGCCGTGCCATCGTCGGCGTCCCGAGGTCCGAAGAGATCCGCTTCACGGACATGTGCACAGCCCGCGGCTTTGCCCACATCAGGATCGGCATCGTGGACGCCGCCAGCGGCCAGCTGGAGATCAACGGCGTGGAGACGCTGTCCCTCGATGCCCTCCGCGAAGCCCACGAGGCCACCTTGCCGAAGTACTTCGGCTAGMSTSAETVSKKFNIDTVENAAKTPDTELPWAELGLKQNEFDEVVKVLGRRPTGAELAMYSVMWSEHCSYKSSKNHLRQFGEKVTDEMKKDMLVGIGENAGVTNLGDGWAVTFKIESHNSPSFVEPYQGAATGIGGIVRDIISMGARPVAVMDPLRFGAIDHPDTARVMHGAVAGIGGYGNSLGLPNIGGEMVFDSVYQGNPLVNALAVGVMRHEDIRLANASGKGNKVVLFGARTGGDGIGGASVLASESFDDTKPSKRPAVQVGDPFAEKVLIECCLELFKGSLVEGIQDLGAAGISCATSELASNGDGGMEVELTSVLLRDPTLTPGEILMSESQERMMAVVTPENIEAFEAVMDKWAVEYSWLGEVTDTGRLIITWEGEVIVDVDPRTVAHDGPVYDRPYARPEWQDSLQADTFTGSVQDAGRPAAPAELAAAVTELIASPNMCDKSWITNQYDRYVGGNTSMAMPDDAGVVRVDEETGLGVALATDANGRYTFLDPYHGAQLALAEAYRNVATSGAVPMAVSDCLNFGSPEDPDVMWQLAEAIRGLSDACMVLGIPVTGGNVSLYNQTGTTPIHPSPVVAVLGKFDDVARRTPSGWREDGQAIYLLGTTAAELDGSEWSNLRGHLGGLPPKVDLAAERALGEILINASRDGMVDSAHDLSEGGLAAALVESSLRYGVGARIALQDVLDRDGVDLFTALFSESQGRAIVGVPRSEEIRFTDMCTARGFAHIRIGIVDAASGQLEINGVETLSLDALREAHEATLPKYFGPGPT0021730_315DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021730-purL-K23269NANA
D1-29_00708774purQCOG0047Phosphoribosylformylglycinamidine synthase subunit PurQATGACTGAGCTTCCCCTGATCGGCGGGGAGGTCGCTGTTGCGGCCGACGCCCGCCTCGCCGGCGCCAAGATTGGCGTTGTGACCTTCCCCGGCACGCTTGATGACCGCGACGCCGCCCGCGCAGTCCGCCTTGCCGGCGCCACCGCCGTCGAGCTCTGGCACGCCGATACCTCCCTGGGCGACGTGGATGCAGTGGTGATTCCTGGCGGTTTCTCCTACGGCGACTACCTCCGCGCCGGAGCGATTGCGCGTTTTGCGCCGCTCATGTCCAAGATCATCGATGCCGCCAACTCGGACGCGAGGCTGCCGGTCCTGGGCATCTGCAACGGGTTCCAGATCCTGACCGAGTCGCACCTGCTTCCCGGCTCCATGATCAAGAACGACCACCTGAAATTCATGTGCCGGGACCAGGTCCTGCGCGTGGAGAACAACACCACGGACTGGACCAGGGACTACGCCGCGGGCCAGGAAATCACCGTGCCGCTGAAGAACCAGGACGGCCAGTACATCGCCGACGAGAAGACCCTGGATGCGCTGGAAGCTGAAGGCCGCGTGGTGTTCCGCTACGTGGGCTTCAACCCGAACGGCTCCCGCCGCGACATCGCCGGCATCTCCAACGCTGCGGGCAACGTGGTAGGCCTGATGCCGCACCCCGAGCACGCTGTTGAGGTGGGCTACGGCCCCGAATCCCTGGATGGCATCGGCGGTTCCGACACGGACGGCCTCGGATTCTTCACCTCCGTCCTGACCAAGATTGTGGGAGGCGCCAAGTGAMTELPLIGGEVAVAADARLAGAKIGVVTFPGTLDDRDAARAVRLAGATAVELWHADTSLGDVDAVVIPGGFSYGDYLRAGAIARFAPLMSKIIDAANSDARLPVLGICNGFQILTESHLLPGSMIKNDHLKFMCRDQVLRVENNTTDWTRDYAAGQEITVPLKNQDGQYIADEKTLDALEAEGRVVFRYVGFNPNGSRRDIAGISNAAGNVVGLMPHPEHAVEVGYGPESLDGIGGSDTDGLGFFTSVLTKIVGGAKPGPT0020220_257DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020220-purQ-K23265NANA
D1-29_00709252purSPhosphoribosylformylglycinamidine synthase subunit PurSATGCCCCGGATCGTTGTTGACGTCATGCCCAAGCCCGAGATTCTGGACCCGCAGGGGAAGGCCATCGTGGGTGCACTCCCCCGTCTTGGCTTCACCGGCTTTAGCTCTGTCCGCCAGGGCAAGCGCTTTGAACTGACCGTCGACGGCGAGGTGACCGACGCAATCCTGGCCCAGGCCCGTGAGGCAGCAGAGACCCTGCTGTCCAACCCCGTGATCGAAGACGTCGTCAACGTCGAGGTCGTCGAGGCCTGAMPRIVVDVMPKPEILDPQGKAIVGALPRLGFTGFSSVRQGKRFELTVDGEVTDAILAQAREAAETLLSNPVIEDVVNVEVVEAPGPT0021725_881DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021725-purS-K23264NANA
D1-29_00710186hypothetical proteinATGGTTGAGAAATCGAAATCCGTGCTGTTGCCCGTGATTGCCGCAGCTGTTTTCGCGGGGCTGGGCAGGATGGTTTTGCAGAAGATCAAGGCGGACCGGGCCGCGAGGGAACACAGGGTGACGGGTCCTGTCGATGAAAAGACCCGGCAATGGATCAGTGAGGTTGTCCGCACCCCGCGCGAGTAGMVEKSKSVLLPVIAAAVFAGLGRMVLQKIKADRAAREHRVTGPVDEKTRQWISEVVRTPRENANANANANA
D1-29_007113213hypothetical proteinGTGAAATCAACTGGAAAGAGCCCCAGCAGGGGCCGGGGGTTCCGGAAAGCGGCGGCGCTCGCCGTCGGATTGCCGTTCCTCCTTGTCTCTTTGGCGCTGAGCCCCGCTACCGCGGCTACCGGCCAGCCTGGTAGTCATCCAGGTGCAGCAATAACGGCAAAGAACATCAATCCGGATGACTACCAGGCAGGGCGGTACATCGTTGTGCTTGCCGGGAAACCCGCTGCCACGTATGACGGCGGTACACCTGGCCTGGCCGCCACCAAGCCTGAAAGCGGCCGAAAGCTGGATGCCGGGCGGCCCGAGGTCCAGCAGTACCAGGCACACCTCGAGGCGAAGCAGAACGAGGTAGCCGCGGGCGAAAACGTCCAGATCAAGCGGAAGTACACCGCGGCGATCAACGGATTCTCAGCCGACCTTACTGCCGGGCAGGCCGTGAAGCTCGCAAAGGATCCAGCCGTACTGCTTGTTGCCCCGGACACTGAGAACGCCCCGGACTATTCCACCACCGACTTCCTCAAGCTCAGCGGGCCCAACGGCAGCTGGAACACCGTCTTTGGCGGCCAGGAGAATGCCGGCAAGGGCGTTGTGGTTGGTGTCATCGACTCCGGCTACACACCCTCCAACCCGTTCTTCGCCGGCCAGGACGTACAGCCGCTCACCGGTCAGGCCCAGGTGGGGGTTCCCTACCGGACGGGAGAGGGCAAGATTGCCATGCTGAAGTCCGACGGCGATACTTTCGTGGGCGAATGCCAGAAGGGTGAGGGCACGGGGGCGGCGTTCGACGGGAGTGCCTGCAACTCGAAGGTTTTGAGCGCCCGCTACTTTGCGGATGACTTCAAGAAGTATGTTGCACCGGAACACCGCGCCCCGGAGGAACTCATCTCACCGGTTGATGTGGGCAGCCACGGCACGCACACAGCCAGTACTGCAGTAGGCAACGCCAACGTCAAGACCAACCTTGGCGCGACCGACATGGGCATCACCAGCGGCGTTGCTCCTGCTGCAAAGCTTTCGGTGTACAAAGTCTGCTGGGAGGACGATAACCCTGACACCGGCGGCTGCTACAGCTCCGCATCTGTGGCTGCGATCAACCAGGCCATCCTGGACGGTGTGGATGTCCTCAACTACTCCATCTCCGGCAGCACCTCCACCACCACGGATCCTGTCTCCCTTGCCTTTCTCTCGGCGGCATCAGCCGGCATCTTCGTTGCCGGCTCGGCGGGAAACTCCGGTCCCGCCGCCAGCACGGTCAACCACGGCGCACCATGGCTGACGACGGTGGCCGCAAGTTCGTTTTCCACTGAACTCCAGGGCACGGTTGAATTCGAAGACGGCAGCAAGTTCCGCGGCGCCAGCCTGATGGCCAACCCTGTTCCCGCCAGCAATGCTGTGCTGGCTGTTGACGCTGCGGCCGCCGGGGCAGCCAACCCTGTACTCTGCGGCCCGAACGTGCTGGACCCCGCCAAAGTCGCCGGGAAGATAGTGGTCTGTGACAGGGGTGTCATTGACCGGGTTGCCAAGAGCGCGGAGGTTCAGCGGGCGGGCGGCGTCGGCATGATCCTGGTCAACCTGGCCACCTCCTCGGAGGACCTGGACCGCCATTCCGTCCCTACCGTGCACGTGAATCCTCCTGCGACACAGGAGATCAAGAACAAGATCACCGCGAATCCGGCCATCAAGGTTGCCCTCGTCAACAAGGACACCACCGGGCTTCCGGCGGCACCTCAGCCGCAGGTTGCAGGTTTCTCTTCACGGGGACCCCTCCTTGCCACCGGCTCGGACCTTCTCAAGCCTGATGTTGCAGCGCCCGGTGTGGCCGTCCTGGCCGGCGTGTCTCCCATAGGCTCCGGCGGTGACCAGTTTGGCATGATGTCCGGAACATCCATGGCGGCGCCGCACGTGGCAGGCTTTGGCGCCCTGGTCCTCGCCAAGAACCCCGGCTGGTCCCCGGCCACGGTCAAGTCAGCCATGATGACCACGGCCGGCGATGTCAAAAATGCGGACGGCTCCCGGAACAGCGATGTGTTTGCCACCGGTGCGGGCCAGGTGGACGTGGCAAGGGTGTTGGATCCCGGCCTGGTCTACGACAATACCGGGGACGACTACCTCAGGTTCATCCAGGGAACTGGCCTGGACCTTGGCATTCCGGACTTGGGAACCACCGCACCGCGGGACATGAATATTGCCTCGTTCGCGCTGGGAACCCTCACCGGCAAGACGGAGGTTACCCGCACTGTCACGGCGCTGACGCCCGGGCTCTACCGCGCCCAGGCCAATGTACCGGGGGTTAAGGTGAGCGTGACGCCGTCGGTCCTCAACTTCGAGGCCGCGGGCGAAAAGCGCACTTTCAAGGTCAAGTTCGAAAACACCGGAGCGGCCCTGGGGCAGTTCGCCATGGGAAGCCTGGTCTGGCAAGGCGCCGGGAAGAACATCACATCACCTATTGCGGTCCGGCCGCAGTCCGTGGTGGCTCCTTCCAACCTGGCCTTCACGTCGGAGGGCGGAACCGGTCAGGGCGCGATCCCGGTGGTTTCCGGTACGAACACACCTGTCAACGTCACGCTGGACGGACTGTCGAAGGCCGATTCCTCGGCGATTGAGCTGGTTCCCGGACCGTTGGCACTGGAGACCAACGCATCGAACTTTGCCAAGGAGGTCACCGTGCCCGCCGGAACGCCGCTGGCCAAATTCTCCGTCTTTTCCTCCACCGAGGAGGCGGACTTCGACATGGTGGTCTTCAACCCCGCGGGCCAGGTCCTGCTGGCGCAGACGGCTTCGGCCAGCGAATCCATATCCGTGCCAAACCCCGCCCCGGGTGTCTACACGATCTACGTGAATCTCTACGCCAGTTCCAACGGCCAGCCCACCAAGGCGTCGGTGGATGCCGCAGTGCTGGGGGCGAATGTAGGAAATGCCACCGTGTCCCCGAACCCGCTGCGGCTTGGAAACGGCCAGTCCGGCGTCCTGTCGCTGGCCTGGAAGGACCTGGCCGAAGGTTCGTACATTGGCCGGGTCAGCTTTGCCGGTTCCAGCACGCCCACCTTCGTCTCGGTGGTTGTGACACCGGGCACCGCGGGGGTGGTTCCGGCTGACGAACAGGCTGATGATCCTGCAAAGCCCGACCAAGAAGAAATGAAGGAAAAGGTCAGGAAGGACAAGAAAAAGCAGGAGGTTTCCGAAACTTCCGGGATCAGGGACATGGATATCTAGMKSTGKSPSRGRGFRKAAALAVGLPFLLVSLALSPATAATGQPGSHPGAAITAKNINPDDYQAGRYIVVLAGKPAATYDGGTPGLAATKPESGRKLDAGRPEVQQYQAHLEAKQNEVAAGENVQIKRKYTAAINGFSADLTAGQAVKLAKDPAVLLVAPDTENAPDYSTTDFLKLSGPNGSWNTVFGGQENAGKGVVVGVIDSGYTPSNPFFAGQDVQPLTGQAQVGVPYRTGEGKIAMLKSDGDTFVGECQKGEGTGAAFDGSACNSKVLSARYFADDFKKYVAPEHRAPEELISPVDVGSHGTHTASTAVGNANVKTNLGATDMGITSGVAPAAKLSVYKVCWEDDNPDTGGCYSSASVAAINQAILDGVDVLNYSISGSTSTTTDPVSLAFLSAASAGIFVAGSAGNSGPAASTVNHGAPWLTTVAASSFSTELQGTVEFEDGSKFRGASLMANPVPASNAVLAVDAAAAGAANPVLCGPNVLDPAKVAGKIVVCDRGVIDRVAKSAEVQRAGGVGMILVNLATSSEDLDRHSVPTVHVNPPATQEIKNKITANPAIKVALVNKDTTGLPAAPQPQVAGFSSRGPLLATGSDLLKPDVAAPGVAVLAGVSPIGSGGDQFGMMSGTSMAAPHVAGFGALVLAKNPGWSPATVKSAMMTTAGDVKNADGSRNSDVFATGAGQVDVARVLDPGLVYDNTGDDYLRFIQGTGLDLGIPDLGTTAPRDMNIASFALGTLTGKTEVTRTVTALTPGLYRAQANVPGVKVSVTPSVLNFEAAGEKRTFKVKFENTGAALGQFAMGSLVWQGAGKNITSPIAVRPQSVVAPSNLAFTSEGGTGQGAIPVVSGTNTPVNVTLDGLSKADSSAIELVPGPLALETNASNFAKEVTVPAGTPLAKFSVFSSTEEADFDMVVFNPAGQVLLAQTASASESISVPNPAPGVYTIYVNLYASSNGQPTKASVDAAVLGANVGNATVSPNPLRLGNGQSGVLSLAWKDLAEGSYIGRVSFAGSSTPTFVSVVVTPGTAGVVPADEQADDPAKPDQEEMKEKVRKDKKKQEVSETSGIRDMDINANANANANA
D1-29_00712372hypothetical proteinATGATGGCGCCCGGTGACGGAGTGGCAGCTACAAACCTGACCATCAGGCTCACCGAACAGCCAGGTTCCAGCGAGTACGTCTTCCGCCTGGTTGCCGAGGACGGCCACCCTGCAGCGGGGTCGAACCTGCCCGATCCGGAGGCAGCGCTTGCAGCTGTGGAACAGTTCGGCGAGGACATTTTCTTTCCGAAGCCCGGCCCGCCCAGGTTATGCACCCAGCAGTACGGCGGACCCCAGGTGGCCGTGGTGACGGGAACTTTTCGTGGCCGTCCCGTCAGTGCTCAGTTCCGACGCACTGACGGCTGCGAGATCGCCCGGTGGAAGGCGATGGCCCCGCTGTTGGGCGGAAGCCCTGGCTCTTATCAGACGTAGMMAPGDGVAATNLTIRLTEQPGSSEYVFRLVAEDGHPAAGSNLPDPEAALAAVEQFGEDIFFPKPGPPRLCTQQYGGPQVAVVTGTFRGRPVSAQFRRTDGCEIARWKAMAPLLGGSPGSYQTNANANANANA
D1-29_00713930hypothetical proteinGTGCCACTGGTGGAGCAGCTTAGCCTGCTGACGGACGGCGAGTGGCAGGTGCGCCAGGCAGCGTACCAGGAACGGGTCCGCCGCTATGCCGATCCCTACCTTGCCCGCCGTTCAGCGGGGCAGAAGCACCCGGTTGAAGATTTTCTCTTCACCTACTACACCCAGAAGCCTGGCCAGCTGCTGCGCTGGCACCCGGGCGCCGGCGTCGTCCTCACCGGCGCCCAGGCGGCTGCCCGCAGCAGCTGGAAACACTACAGAATGCTCGACGACGGCGAACTCGCCTCCCTGGGGATGCCTTCCGGCAGCACGGCGGTCACCGTTGACACCCCCGCCTTTCTGGAGGACCGGCACCAGGCAGTCACCTTCGCCGGGATCATTCTCCGCGGAACGGCGGCCCGACCTGCCCAGTTCGGCTGCTTCGGCCTGCATGAATGGGCCATGGTCTACCGCCAGGACAAGTTCGACCTGCGGCACGAGTACCTGAACCTGAGGCTGGGCTCCGCCGGCACGGACAAGGTAGTGGAGGACAACCGGATCCGCTGCTCCCATTTTGATGCCTTCCGCTTCTACACCCCCGACGCCAAGCCGCTGAACGAGCTCGAGCCCAGCCGGGAAAAGCAGCGGGATCTGGAACAGCCCGGCTGCCTGCACGCCAACATGGATCTGTACAAGTGGGCCTACAAGCTGGTGCCGGCGCTTCCCAGCGAGCTGGTGATGGACTGTTTTGAACTGTCGTGGCGGATACGTGCCATGGATATGCAGGCCTCCCCCTACGATCTGGCCGAGTGGGGTTACCCTCCCATCCGGATCGAAACAGCCGAGGGTAAAGCCGCCTACATGGAGAACCAGCGGGGCTTTGCTGCTGAAGCCGCCGCCCTCCGCGAGCGGCTCGCAGTGAAACTGGCCCCGCTTTCCGGAGGACCAGCATGAMPLVEQLSLLTDGEWQVRQAAYQERVRRYADPYLARRSAGQKHPVEDFLFTYYTQKPGQLLRWHPGAGVVLTGAQAAARSSWKHYRMLDDGELASLGMPSGSTAVTVDTPAFLEDRHQAVTFAGIILRGTAARPAQFGCFGLHEWAMVYRQDKFDLRHEYLNLRLGSAGTDKVVEDNRIRCSHFDAFRFYTPDAKPLNELEPSREKQRDLEQPGCLHANMDLYKWAYKLVPALPSELVMDCFELSWRIRAMDMQASPYDLAEWGYPPIRIETAEGKAAYMENQRGFAAEAAALRERLAVKLAPLSGGPANANANANANA
D1-29_00714561hypothetical proteinATGCGTAAATTGCTGACCCAGGTGGCGGCCCTGCTGCTGGCGGCAGGGCTCATTCCCGCCTGCTCGGCTGCGGACACCGGCGCTCCCGCCTCCACCCCGCCGGCCGCAAGCTCCCCCACCACTTCCGGAGCTGCCACCACGCCCGCCCCGGACACCGAAACCTCCGTCCCGGCTCCGGCGCCGTCTGCCTCACGCACCCCTACAGCAGGACCGGGAGTCGGCAACGCCGAACTGGCCATCACGGTCAGGCCCTCGGAGACGGAACCTGCCGTCAATTACACGCTCGTATGCCAGGACGGGGTCCCGGCAGCTGAAAGCAAGCACCCGTCAGCCGAAGCGGCCTGTGAGGCCATCAAGAACAACGCCGCCGTGCTCAGCCCGTCCGCCCAGGGCAAGGACCAGGCGTGTACTGAGCAATATGGCGGGCCGCAAGAGGCCATTGTCACCGGAATCGTTGACGACACGCCTGTTGATGCCACCTTCGCCCGCAGGAACGGCTGCGAGATCAGCGCCTGGGACGCTGCCCGGGACATACTGGGTGCCACTGGTGGAGCAGCTTAGMRKLLTQVAALLLAAGLIPACSAADTGAPASTPPAASSPTTSGAATTPAPDTETSVPAPAPSASRTPTAGPGVGNAELAITVRPSETEPAVNYTLVCQDGVPAAESKHPSAEAACEAIKNNAAVLSPSAQGKDQACTEQYGGPQEAIVTGIVDDTPVDATFARRNGCEISAWDAARDILGATGGAANANANANANA
D1-29_00715546hypothetical proteinATGTCCACCGCACCGTCCCAGCTCAGGAAGCAGAACCGGGAACAACAGCCGGACGATGACCTGCTGCTGCTGGAGCACCAGCTCTGTTTCGCCCTCACTGTTGCCTCCCGCAGCGTGGTGGGCGCCTACAAGCCGGTCCTTGAGAAGCTGGGCCTGACGCATCCGCAGTATCTGGTGATGCTCTGCCTCTGGGAGTCCAGCCCCCGCACCGTGCGTAACATCAGTGATGCCCTGGCGCAGGAGCCGGCAACAATCTCCCCGCTGCTCCGCCGGCTCGAGGCCGCTGGCCTCCTCACACGGCACCGCATGGATGGAAACGAACGCGCCCTGGCCGTGGACCTGACCCCTGCTGGAGCAAGGCTGCGGGACCAGGCCCTCGCCGTGCCCGGCACCATGATGGAGCGGCTGGGGCTTACGCGCGAACAGGTGGGCCAACTGCACGCCTCAATGATGGGCCTGATCGCGGCGACTTCAGGAGCGACCAGCGCAGGGACCAGCGAAGAGACCAGCGCAGGGACCAACGAGCGGCCCGAAATACGGCAGTAGMSTAPSQLRKQNREQQPDDDLLLLEHQLCFALTVASRSVVGAYKPVLEKLGLTHPQYLVMLCLWESSPRTVRNISDALAQEPATISPLLRRLEAAGLLTRHRMDGNERALAVDLTPAGARLRDQALAVPGTMMERLGLTREQVGQLHASMMGLIAATSGATSAGTSEETSAGTNERPEIRQPGPT0013155_1246DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_00716243hypothetical proteinATGGGCAAGGGCAAGCCGGCTGACAAAGACAACGCTTCGCAGCGGTTCATGCGGGCAACCGGAAAACTCAGGGCCATCTTCGGCCCGGCCAACCGCAGTTCCCTGTCTCACGACATGACTGAGGAGAACCGCAAACTGCTGCAGCAGCGCGAAGTCGAAAGCCAGCAGTGGGAAACGTTGCGCCGGCCCGATGGCAGCACCTACGTCGTACCCAAAAACCCGGAGGACAAGTCCCTCCGCTGAMGKGKPADKDNASQRFMRATGKLRAIFGPANRSSLSHDMTEENRKLLQQREVESQQWETLRRPDGSTYVVPKNPEDKSLRNANANANANA
D1-29_00717207hypothetical proteinATGGCACATGTAATCAGTGGTTTTATGAACCTGACTGAACGGCTCCGGTTCATCTTTGGCCCGGCGACGCGCCTCGACATCGACGAACCTGTTGTGCACAAGCATGATGCGTTCGAGCAGGCCTCAGACGAGGAACTCTCCCACTTCGAAGTGGAGACCGATTCCCACGGCCACCATTACGCAGTCCGGCGCGAAGATCTCACCTGAMAHVISGFMNLTERLRFIFGPATRLDIDEPVVHKHDAFEQASDEELSHFEVETDSHGHHYAVRREDLTNANANANANA
D1-29_007181359askCOG0527AspartokinaseATGAGTACGCCCACTACCGAAGTGCACACCGCAGTCCAGCCACAAAAGGGGCCCGACGGCGGTGCAGTCACCAAACAGCTGATTGTCCAGAAGTTCGGCGGATCATCCGTGTCCGACGCCGAGGGAATCAAGCGGGTCGCCAGGCGCGTGGTGGATGCCCAGCAGGCCGGCAACGAAGTTGTGGTGGTGGTATCCGCCATGGGTGACACCACTGACGAACTGCTGGATCTGGCCGCCCAGGTGACCGATTCTGCCCCTGCACGCGAAATGGACATGCTCCTCTCGGCCGGGGAACGCATCTCCATGGCACTGCTGGCCATGGCCATTAACAAGTTCGGTGCATCGGCGCAGTCCTTTACGGGATCGCAGGCCGGCATGATCACGGACGGAATCCACGGCAAGGCCAGGATCATCGATGTGGACCCGCACCGCATCCGTACCTCACTGGACAAGGGGCACATAGCAATCGTTGCCGGCTTCCAGGGCATGAGCCGGTCCACCAACGAAATCACCACCCTGGGCCGGGGCGGCTCCGACACCACCGCCGTTGCCTTGGCAGCCGCGCTGGACGCTGACGTCTGCGAAATCTACACCGACGTTGACGGCATCTACACTGCTGACCCGCGTGTGGTCCCCTCTGCCCAGAAGATCGACACGATCTCCAGCGAGGAAATGCTGGAACTGGCCGCCTCCGGTGCCAAGATCCTGCACCTCCGGTGCGTTGAGTACGCGCGCCGTTTCGGTGTGCCGCTCCATGTACGGTCCTCATTCAGCCAGCACGAAGGCACCTGGGTTATCCCCAGCGCCGAAGACAAGATCACCACTCAAGAGGGAGTTGCCTTGGAGCAGCCAATCATCTCCGGCGTTGCACATGACCGTTCCGAAGCCAAGGTCACCGTGGTGGGCGTACCGGACATCCCGGGCAAGGCCGCGGCGATCTTCCAGGTCATCGCTGATGCCCATTCAAACATCGACATGATCGTCCAGAACGTGTCCACCCACGGCACCGGCCGGACGGACATTTCCTTTACGCTGCCCATCGTCGAAGGGGCGGACGCACTGAAGGCGCTGAAGACAGCACAGCCCGACATCGGATTCGAGAACATCGAATACAACGAGCAGATCGGAAAGCTGTCGCTCATCGGCGCCGGCATGCGCTCGCACCCGGGTGTCTCCGCTACGTTCTTCAAGGCTCTGTCCGCAGCGGGAATCAACATCAACATGATCTCCACCTCCGAGATCCGGATCTCCGTGGTGACGCACGCGGACCTTCTGGACGACGCCGTCCGCGCCATCCACAAGGCCTTTGACCTGGACAGCGACGACGAAGCCACCGTTTACGGCGGCACCGGCCGCTAGMSTPTTEVHTAVQPQKGPDGGAVTKQLIVQKFGGSSVSDAEGIKRVARRVVDAQQAGNEVVVVVSAMGDTTDELLDLAAQVTDSAPAREMDMLLSAGERISMALLAMAINKFGASAQSFTGSQAGMITDGIHGKARIIDVDPHRIRTSLDKGHIAIVAGFQGMSRSTNEITTLGRGGSDTTAVALAAALDADVCEIYTDVDGIYTADPRVVPSAQKIDTISSEEMLELAASGAKILHLRCVEYARRFGVPLHVRSSFSQHEGTWVIPSAEDKITTQEGVALEQPIISGVAHDRSEAKVTVVGVPDIPGKAAAIFQVIADAHSNIDMIVQNVSTHGTGRTDISFTLPIVEGADALKALKTAQPDIGFENIEYNEQIGKLSLIGAGMRSHPGVSATFFKALSAAGININMISTSEIRISVVTHADLLDDAVRAIHKAFDLDSDDEATVYGGTGRPGPT0014040_1575DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928NANA
D1-29_007191035btuD_2Vitamin B12 import ATP-binding protein BtuDGTGCAGGCGTACGATCCTATAGTCAGTATGCATTCACAGACTTGGGGGACAGGTGCGCGGAAAATGACAGCAGATCAGCACACGAAGGGCAGGCCGGGCCAGCCGGACAGCGGGCAGCAAGGGGGCATCACAGCCAGCGGGGTAAGCCGAAGCTTTGGCGCTGTACACGCCGTCGAGCACATGGACTTCCATGCCCCCGCGGGAAAAGTGACGGCCCTGATCGGTCCCAACGGGGCTGGAAAAACAACATTGCTCCTGATGCTGGCGTCCCTGCTGGCGCCGGATTCCGGAACCGTCAGCGTGGGCGGGCTTGATCCCCGGCACCATCGGTCGGAGGTACGGAGCAGGATCGGGTGGATGCCGGACACCCTGGGCGTGTGGGAGTCCCTCACGGCCCGCGAAATCCTGACGCAGATGGCCCGCTTCTACCGGCTTCCGGCCGCAGGAATCGCCCAGCGTGTTTCGGCGATGCTGGAGCGGGTCCGGCTCACCGACCTGGCGGACCAGCCGGCGCGTGTCCTGTCCCGCGGCCAGCAGCAGCGGCTCAGCCTGGCGCGTGCCCTGATTCACGAGCCCTCTGTCCTCCTCCTTGATGAGCCGGCATCGGGCCTGGACCCGGGGTCACGGGTGGAACTCCGGGTCATGCTGCGCCAGCTTGCAGCCGAAGGAACCGCCGTGGTGGTCTCCTCCCACGTCCTGAGCGAACTTGATGAAATTGCCGACGGCGCCGTCTTCGTCAACAACGGCCGCACCGTCAGGCAGCAGACCATCGAAGAGGCTGCAGCCTCCGGGCGCCGTTACGCCATTTCCGCGTCGGACGGGGCTGCCCTGGCAGCCAAGCTCACCAGCCTGGGCCTTGCGTTCCGGGTTGAGGACGGACGCCGGCAGGCCGTCAGCCTCATGCTGATGAACGACGACGACGCCGCGCGCCTTCTGCGGGACCTCGTGCTGGCAGGCGTGGGAGTGAGCTCCTTTGCCCCCGCCTCAGGTGCCCTGGAAGAGACGTACATGAGCCTTGAAGGGGAACGCCGATGAMQAYDPIVSMHSQTWGTGARKMTADQHTKGRPGQPDSGQQGGITASGVSRSFGAVHAVEHMDFHAPAGKVTALIGPNGAGKTTLLLMLASLLAPDSGTVSVGGLDPRHHRSEVRSRIGWMPDTLGVWESLTAREILTQMARFYRLPAAGIAQRVSAMLERVRLTDLADQPARVLSRGQQQRLSLARALIHEPSVLLLDEPASGLDPGSRVELRVMLRQLAAEGTAVVVSSHVLSELDEIADGAVFVNNGRTVRQQTIEEAAASGRRYAISASDGAALAAKLTSLGLAFRVEDGRRQAVSLMLMNDDDAARLLRDLVLAGVGVSSFAPASGALEETYMSLEGERRPGPT0006725_4552DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_007201134hypothetical proteinATGAGCCAGCTGACCGAAACACAGCACCAGCCATCTGGGCCACATGCCGCCGGAGGCTACCTCGCCGGAATCAGGGACGTGGTGGTCCTTGAACTGAAACAGCGCCTGCGCTCGCGGGGCTGGTACATCATGCTGTCCATCTGGTTTGTCCTCACCGGCCTGGTGACCTGGCTGACCTGGGCCAGCTGGAGTGCCAACCAGGCAGCCCAGCGCGCCTATTCGGACTTCGCTCCCGAGGCCACTGGCCCTGGTTCCATGATCTTCGAAGTGGTTTTGGCCTTTGTCCTCCTGTTCGCGCTGCTGGTGGCGCCGGCGTTGTCAGCCAACGCCGTCAACGGCGACCGCGCCGGCGGAACCCTGGCGATCCTGCAGGTGACACTGCTGCAGCCAGGGCAGATCCTGTGGGGGAAATTTTTCGCCGCCTGGCTTGCGGCGCTGGCGTTCCTGGTATCCAGCGCACCTTTCCTGGTCATCGGCGTGGCACTTGGAGGGATGACGCCTGGCCACGTCTTCGTGGCGCTCTTGATGCTCACGCTGGAAGTGGGCGTTGTCTGCGCCGTGGGCGTGGGAATCTCGGCCCTGGCCGGGCGTCCATTGTTTTCCATTGTGGTGACCTACCTCGCGGTGGCGGGGCTGGTCTTCGGCACCCTGATTTCCTTTGGGCTGGGCACCGGCCTGACCCATGGCACCGTCATGGCAAACGAGGCCCAGTACAGCGGGTTCAGCCAGCCGGCACCGGATCCGGCAGAACCTGAATACACGTGTTCCGGGCCGCTCCGGGAACGTTCCACCATGCACACCGAACGCATCGCCTGGCTGCTGGCCATGAATCCGTACGTGGTGGTGGCCGACGCGATTCCCTATCCGGACCGTAGCGTGAGCCCGTTCGGCTATTCAGCTGTTGGAGCCATTGAATCGATCAGCCAGGGGGCTCGGCACGCCATGGCCGGCCCGGAGTGGACATTTCCCTGCGCCAACGGGGAGCCCAAGCCCCGGTATTTGGCGCAGTCCGCCCCGTTGTGGCCCCTTGGCCTTGGCCTGCAGCTGTTGTTCGCCGGGCTCCTGATGTGGCTGGGGTGGCGTTCACTGCGCACTCCCGCACGCAAGCTGGCGCGGGGCACGCGGATCGCCTAGMSQLTETQHQPSGPHAAGGYLAGIRDVVVLELKQRLRSRGWYIMLSIWFVLTGLVTWLTWASWSANQAAQRAYSDFAPEATGPGSMIFEVVLAFVLLFALLVAPALSANAVNGDRAGGTLAILQVTLLQPGQILWGKFFAAWLAALAFLVSSAPFLVIGVALGGMTPGHVFVALLMLTLEVGVVCAVGVGISALAGRPLFSIVVTYLAVAGLVFGTLISFGLGTGLTHGTVMANEAQYSGFSQPAPDPAEPEYTCSGPLRERSTMHTERIAWLLAMNPYVVVADAIPYPDRSVSPFGYSAVGAIESISQGARHAMAGPEWTFPCANGEPKPRYLAQSAPLWPLGLGLQLLFAGLLMWLGWRSLRTPARKLARGTRIAPGPT0006730_5419DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_007211185hypothetical proteinATGCCCGAAGATGACCACCAGGCTGCCATGCGGCCGGCTCCGGAACCGTTCCACGAAGAACCGTTCTACGAACCCATCGGCGGGGGCTGGATCAATGAGCCGCAGGAAGACGGGGACGACGCCGGCCGGCCACCGCGGCAGCTTAGCGCCACCCGGGTGGCGCTAAGGCAGGCCGCGGACGACTGGCTGCGTTCCATCAGGACGGTCCGGTTCTGGGGCTCTACGGTAATTGTTGTGTTTGGTGCCTGGCTCGCGGCCGCGGCTGTTATCGGGGTCAGGACTGTCCAGGAGGATCCATTCCCGGAGGAAAGCCAGCTCTGGACCTACATTCTGGCCTCGGCCTTTATGGCCCCGGCCGCTGCCCTGCTGGCTGTGCATTGGGGGCGCCGGGGTATCTCCTCATTCGATGGCATGGAACGGCCCGGCCACGCCAGCCGGAGCCCCCTGGCGGATTTCTTCGCGACGGCGGCCCGCGGCTTCGTCTTTGCGGTGCTGGCACTGGTTGTCCTGCTCGTTCACGCCGGTGTTGTGGGCGCCCCAGGCGGGCTTGCGGTGGCAGCCGCAGGGTTGGCCCTTCTCGAGTTCGCCGTATTCGGCGCCCTTGCGGCCGGCATCTCGGCGTGGCTCGGGCGTTCCCGTGCTGCGGACACGGCTGCCTGGGCACTGGCCTGGTGGCTGGTGCTCGGGAACCTTGCCGCCGTGTGGGCTTTATTTCCTGCAGTCCGGTCAGAAGAACCGGTGACGGTGGTGCTGAACATAGAACGGGGTCCTGACGGCGTTCCGGTGGCTTACGACTGTGCAGCGGAGATTGTGGGTGTAGCCGAGGTCTTCCACACGGAACGGATTATGTGGCTGGCCGCTCCCAATCCGATGATGATTTTCGTTATGGTGGCTGCGGGCGCAGACGGCGGCTCCGACGCCTACCCCGACTACACTTCCGCTCTCGGTGGCCCCGGTGTCTTGGGCTGGTTTCCCATGGCCCTGCAGGCGACAGCCGACGGAACCCAGGTCCCGTGCGTCAATTCCGAGCCGAAGGCTGCCGGCTCCTTCCAAACCCCTTTGGTGGCGATGGGCCTGGCCATACAGGGTGGGCTCGCCGTTGGGCTCCTGGCTGCCGGCCATCATGCCGCCCGTCGCCGGGTGAATTCGGAGAGAGTGGACCAGGGGGAGGCCTCAGCCGGATGAMPEDDHQAAMRPAPEPFHEEPFYEPIGGGWINEPQEDGDDAGRPPRQLSATRVALRQAADDWLRSIRTVRFWGSTVIVVFGAWLAAAAVIGVRTVQEDPFPEESQLWTYILASAFMAPAAALLAVHWGRRGISSFDGMERPGHASRSPLADFFATAARGFVFAVLALVVLLVHAGVVGAPGGLAVAAAGLALLEFAVFGALAAGISAWLGRSRAADTAAWALAWWLVLGNLAAVWALFPAVRSEEPVTVVLNIERGPDGVPVAYDCAAEIVGVAEVFHTERIMWLAAPNPMMIFVMVAAGADGGSDAYPDYTSALGGPGVLGWFPMALQATADGTQVPCVNSEPKAAGSFQTPLVAMGLAIQGGLAVGLLAAGHHAARRRVNSERVDQGEASAGNANANANANA
D1-29_00722600hypothetical proteinATGAGCACGGCCGGCACCGCACCAATTGAGACTGAACGCCTCACACTGCGCCTGCTGACCCCTGCTGACGCCGCTGCCGTTCACAGTTTCCGCGGGGATGAAGCCGTGACACGCTTTCTGTCCCACGGGCCCCTGACAGCCGAAGAGAACCGTGTGCGGCTGGAGGAGGTAGTGGAGCGTGCTGCCGTGTCCACGCATGAGTGGTTTCACTACGGCTGGGCCATTACTCTTCGGGAAACCGGCCAGCTCATCGGCGACGGGAGGACCTGGAACAGTGCGGGTTCACCGGCACGCGGAACGTTAACTCCCGGCCGCCTCCCCTCGCATCAGGCGTCGCTGGGTTACGTCCTGCACCCCCATTACCAGGGCCGGGGATACGGCCGCGAGGCTGCAGGTGCACTCGTGCAGTGGCTTTTCCGGGAGCTTGGCGTCAGCACTGTCTTCGCCGGAGTCTATGAACCGAATACTGCATCGATTAGGTTGCTCCGGCATCTGGGTTTTACCCGGGACGGCTACGTCGCCCCGGAGCTGGACAAATTCGGCAAAGGCTTCCCTTCGCTGATGTTCAGGCTGGACAACCCCGGCGCTTCATCCGGCTGAMSTAGTAPIETERLTLRLLTPADAAAVHSFRGDEAVTRFLSHGPLTAEENRVRLEEVVERAAVSTHEWFHYGWAITLRETGQLIGDGRTWNSAGSPARGTLTPGRLPSHQASLGYVLHPHYQGRGYGREAAGALVQWLFRELGVSTVFAGVYEPNTASIRLLRHLGFTRDGYVAPELDKFGKGFPSLMFRLDNPGASSGNANANANANA
D1-29_00723600recRCOG0353Recombination protein RecRGTGTACGAAGGTGCGGTCCAGGAGCTGATTGACGAGCTCGGACGCCTTCCCGGTGTTGGCCCCAAGTCTGCGCAGCGTCTTGCATTCCATATCCTTGAAGCCGATCCGCAGGACATGAAGCGGCTGGTGGATGCCATCACCACGGTGAAGGAGCGGGTGAAGTTCTGCTCTGCCTGCGGCAACGTTACGGAGCAGGAGCTGTGCAACATCTGCCGTGACCCCCGGCGCGATCCTTCAGTTATCTGCGTCGTGGAGGAGTCCAAAGACGTCCTTGCGGTGGAACGCACCCGCTCATTCCGTGGCCGGTACCACGTGCTCGGCGGAGCCATCAATCCCATCGCCGGCGTGGGCCCGGAGCAACTGCGGATCCGCGAACTTCTCACGCGGCTCAATGACGGCGCCATCCAGGAAGTCATCATCGCCACCGATCCCAACCTGGAGGGCGAGGCGACGGCCACGTACCTGGCCCGCATGCTGAAGTCGATCGGGATAGTGGTTACCCGCCTGGCTTCCGGGCTGCCCGTCGGCGGGGATCTGGAATACGCAGACGAAGTCACCCTTGGCCGGGCTTTCGAAGGCCGCCGCAACGCACTGACCTAAMYEGAVQELIDELGRLPGVGPKSAQRLAFHILEADPQDMKRLVDAITTVKERVKFCSACGNVTEQELCNICRDPRRDPSVICVVEESKDVLAVERTRSFRGRYHVLGGAINPIAGVGPEQLRIRELLTRLNDGAIQEVIIATDPNLEGEATATYLARMLKSIGIVVTRLASGLPVGGDLEYADEVTLGRAFEGRRNALTNANANANANA
D1-29_007243459hypothetical proteinTTGTCAGCCCGGATTGGTAGGGTTTTCTCTGTGACTGTTACAACCGCCCTTTACCGCAGATACCGTCCTGACTCCTTTGCAGACGTTATCGGGCAGGAACACGTCACCGAGCCCCTGATGACGGCCCTGCGCAAAAACCGCGTCAACCATGCCTACCTTTTCTCAGGCCCCCGCGGCTGCGGCAAGACCACGTCCGCCCGCATCCTGGCCCGCTGCCTCAACTGCGCCCAGGGCCCCACGGACACTCCGTGCGGCACCTGCGCCAGCTGCATCGAACTGGCCCGCGGCGGTTCCGGTTCCCTTGACGTCATCGAGATCGATGCCGCCAGCCATGGCGGTGTGGACGACGCGCGGGACCTTCGCGAACGTGCCACGTATGCCCCCGTCCGGGACCGCTACAAGATCTTCATCATCGACGAAGCCCACATGGTCACCTCCGCCGGCTTCAACGCCCTGCTCAAGATCGTGGAAGAACCGCCGGAGCACATCAAGTTCATCTTCGCCACCACGGAGCCTGACAAGGTCATCGGCACCATCCGTTCCCGCACCCATCACTACCCCTTCCGCCTGGTGCCGCCGGAACCGCTGATGGCATACCTGGAACTGCTGTGCCGGCAGGAGAACGTGCCAGTTGCCCCCGGAGTCCTGTCCCTGGTGATCCGCGCCGGCGGCGGGTCCGTCCGTGACTCCCTCTCGGTGCTGGATCAGCTCATGGCCGGCGCCGGTCCCACTGGCCTGGATTACGAGCTCGCGGTCGCCCTGCTCGGCTACACCCACGCTTCCCTGCTGGACGACGTTGTGGAGGCCGTCGCAGCTTCCGATGCCGCCACAGTGTTCCGGGCGGTGGACCGGGTCATCCAGACCGGCCATGATCCGCGCCGATTTGTCGAGGACCTGCTGGAACGCTTCCGCGATCTCATCATCGTTCAGGCCATGCCTGAAAGTGCTCAGACCATCCTGCGCGGCATGCCCACGGACCAGATCGCCCGCCTGCAGAACCAGGCCCACAACCTGGGCGCGGCAGAACTTTCGCGCGCCGCGGACGTCACCAACACGGCACTGACCGAAATGACCGGGGCCACGTCACCGCGCCTGCACCTGGAACTTCTCTGCGCCCGTATCCTGCTGCCCAGTTCCGAACAGACTGAACGCGGCATCGCCGCCAGGATCGACCGCGTGGAGCGGCGGCTCAACTATGCAGGAAACGACGCCGGTGCTCCCGCCGCTGCCATCGCGGCACCGAGGCCGGAATCAGCCTCGGCGGCTGTGCCTGTAACGCAGGCTGACCCAGCCGGCCCTCGTCAGCGCCGCCCTGAACGGCCGGAGGCTGTTTCATCCGCCGCCGCACCGCTGCGGCGTGAGCTGCCGACGGAATCCCCCGTTTCCGAGCCGACGCCTGCTGTGCCGGCGGAGCCGCGAGGGCAGGCCGCCGGGGCCGGGCAGGCAGAACCGGGTGCGCAGGCGGAACCGGGCCAGCCGCTGACCCCGCCGCGCGTCACTACTGCCGACTGGCCCAGGGAGGAACGGGCGGATGGACGACAAACCGCTCCGGTCAACAGGCATGCCGCCCAGTCGCCTCAGGAGGCAGCGCAGGCGGCAGGAGCACCAGGACCCGCGCCGGCCCCTCATCCCCTGCCGGCCCATGAACCTGTGCCCGCCACTAGTGGCGCGCCCGTCCCTTCTGCAGGGCCCGTCCATACTGCAGGGCCGGTCCAAAGTGGCGGTCCGGTCCAAAGTGGCGGCCCGGTCCAAAGTGGCGGTCCGGTCCAAAATGCCAGACCTGCCGGGCGGGAACCAGAACCAGCAGCATCCCCACGGCCTCCGGCACCAAGCAGTGCAAGCTCCTCAGGCGACGTGGAAGTGCTCCGCCGTGCCTGGCCCGAGATCCTTCAGGCACTGTCCAAGATCAAGCGCAGCACCTGGGCGCTGGTGGAGCCCAACGCCCAGGTAGGCGCCTTTGATGGCCAGGTCCTCACGCTGGCCTTCACCACCACCGGCCTTGCCGGCGCGTTCGGCCGGGCCGATCATTCCGACAACCTTCGCCAGGCAATCCACAAGACCGTTGGCATCGACTGCCAGATCACCGCAGTCGCCGGCACCGCCAACAGTCCAGTGAGCTCTGAGCCAAACCCAAAAGCACCCGCTAGCCCGGAGGCCCAGGCCACGTCCGCGGACGTTGCCTGGGGACTGGCCCCTGCCCCCAGTCCCGCTGCCGCGCCTGCACAGCAACCAGCCGGCCCGGTTCCCGGACCCACGCCGGGCCAGAACGCAACCCCGTCGCAGTCCGCCGTACAGTCCCCGGGGGAGTCCCAAGCCGAGTCCCCGGCGGAGTCCCCGGAACGGGAGCCAGCGAAGTCACCGCCGCAGGATGCTGTGCCGGGCAACGCACGCCCCGTGCTTCCGGAACCATCCCGGGACGAACCAACCCGGGACGAACCAACCCGGGACGATCCAGCCCCCTCAGCAGGGCACTCTGGGGCTCAGGCCGTGCACACCGGCACAGAAGCCTCCTCGGCTCCGGGTTGGCCGGCTCCCGCCGCCGAACCAGGGCTGAGCACTGAGGGCACGTACTCGTATTCTGACGACGACTGGGGTCCACCGCGGGACGAGGACGCGCCGCCATTGGATGAGGAACCGCCCATGGACTGGGCACCCCCGGCCCCCGTTGACTCCCAGCAGGGGCTTGGCTCCCAGCAGGGGCACGCCCCCGTTCCCGCTGCCGCCTCACAGCCTGCAAAGAATCGGGCGGAGACCACCCCGCGCTCCGGCGGCAGGAAACCGGCTTCGTCGTCAGAAGCATCGAAGCCTGACACGTCGCACGATCCGTGGACCCGTGCTGTCGAGCAGGCACCGGGCATCTGGGTCACGGGTGCAGAGAGCAACGTCGGCAAAAGCCCTGCCCCCGCCGACCCGGCAATTCCAGAGGCCGCCCCGGCGCCGTCCTACGAGCCTGCCGCGGCCCAAGTCCCCGGCCCTGCTGCCGTCCGGGCTAATCCGGAAGCGGAGGCCAGTTGGGGTCTGTCACCAGAACCAGTGGCGTCCCCCACTGCCACCACCATTCCGGCCTCAGCACCGGCTGCGCCAGAGCCGGTGACGGAACCCCGACGGGAACCTGTTGATGCGGCACCTATCTATGCGGAGCCCGTTTATGCCATGGCCTCGTCGGCACCCGCCGCCGCCCCGCAGGCAGCACCTGCAACATCGCCGGCGGCGGCCGCTGCCCGGCAAAGCCTGTACCAGCGGCTTTCCAACAGTCCCGAAGCCGAGGCCGGCCGGGCCAAGGCGCCGGCCCGGGTGGTAGCGGCGAGCGCTACCTATGTCCAGGACATTCCCAGCTCGGACGATGAAACCATCGAAGAATCGGGCGTCTTTGGGCGTGCTGCGGTGGAGCGTATTCTGGGCGGAAAGCTGATCGAAGAGCGCTCCCCTGACGGTAGCCCGCTTCCACCGCGGTTCTGAMSARIGRVFSVTVTTALYRRYRPDSFADVIGQEHVTEPLMTALRKNRVNHAYLFSGPRGCGKTTSARILARCLNCAQGPTDTPCGTCASCIELARGGSGSLDVIEIDAASHGGVDDARDLRERATYAPVRDRYKIFIIDEAHMVTSAGFNALLKIVEEPPEHIKFIFATTEPDKVIGTIRSRTHHYPFRLVPPEPLMAYLELLCRQENVPVAPGVLSLVIRAGGGSVRDSLSVLDQLMAGAGPTGLDYELAVALLGYTHASLLDDVVEAVAASDAATVFRAVDRVIQTGHDPRRFVEDLLERFRDLIIVQAMPESAQTILRGMPTDQIARLQNQAHNLGAAELSRAADVTNTALTEMTGATSPRLHLELLCARILLPSSEQTERGIAARIDRVERRLNYAGNDAGAPAAAIAAPRPESASAAVPVTQADPAGPRQRRPERPEAVSSAAAPLRRELPTESPVSEPTPAVPAEPRGQAAGAGQAEPGAQAEPGQPLTPPRVTTADWPREERADGRQTAPVNRHAAQSPQEAAQAAGAPGPAPAPHPLPAHEPVPATSGAPVPSAGPVHTAGPVQSGGPVQSGGPVQSGGPVQNARPAGREPEPAASPRPPAPSSASSSGDVEVLRRAWPEILQALSKIKRSTWALVEPNAQVGAFDGQVLTLAFTTTGLAGAFGRADHSDNLRQAIHKTVGIDCQITAVAGTANSPVSSEPNPKAPASPEAQATSADVAWGLAPAPSPAAAPAQQPAGPVPGPTPGQNATPSQSAVQSPGESQAESPAESPEREPAKSPPQDAVPGNARPVLPEPSRDEPTRDEPTRDDPAPSAGHSGAQAVHTGTEASSAPGWPAPAAEPGLSTEGTYSYSDDDWGPPRDEDAPPLDEEPPMDWAPPAPVDSQQGLGSQQGHAPVPAAASQPAKNRAETTPRSGGRKPASSSEASKPDTSHDPWTRAVEQAPGIWVTGAESNVGKSPAPADPAIPEAAPAPSYEPAAAQVPGPAAVRANPEAEASWGLSPEPVASPTATTIPASAPAAPEPVTEPRREPVDAAPIYAEPVYAMASSAPAAAPQAAPATSPAAAAARQSLYQRLSNSPEAEAGRAKAPARVVAASATYVQDIPSSDDETIEESGVFGRAAVERILGGKLIEERSPDGSPLPPRFNANANANANA
D1-29_00726324COG0327GTP cyclohydrolase 1 type 2ATGACTGCGCTTCACGCCTTGGTGGTTTACGTCCCGGCCTCCCATACGGGCGCTGTTCTGGCTGCCCTGGGTGACGCCGGGGCCGGCAGGATCGGGAACTACTCGCACTGTTCCTTCGTCACTGCCGGGACCGGCCGCTTCATGCCGCTCGAAGGCGCCGCTCCCTTCATTGGGAGGGTGGGCAGCCCCACCACCGTGGCCGAGGACCGGATCGAATGCGTAGTTGAGGCCACAAAGCTCGACGCCGCAGTGCTGGCTTTACGTGATGCCCACCCCTATGAGGAACCAGCGTTTATGAGCTGGCCCGTGGACGGGTGGCGTTAGMTALHALVVYVPASHTGAVLAALGDAGAGRIGNYSHCSFVTAGTGRFMPLEGAAPFIGRVGSPTTVAEDRIECVVEATKLDAAVLALRDAHPYEEPAFMSWPVDGWRNANANANANA
D1-29_00728978hypothetical proteinATGCGCAACATCCTCAGGGAGTGGCAGGGCGAGCTGAAAAAGGCGTTCACCGGCAGCGCCGACGCCCTGCCCGATTGGGTTCCGCGGCTGGCGGAAGGGGACGACGCCGGATATCACCAGCCGGGTTCTGCCGTGTGGGCTGTGCACGGGTCGATGCCAACCATTGTTGCCGGAATCCGGACGCTGCTGATGCAGGCGCTTCACCCTGGTGCATTGGCGGGGGTCCACGAGCATTCAAATTTCCGGGAGGATCCGCTGGGGCGGCTGGCCCGGACCATCCGATGGATCTTTACTGTCACCTACGGATCCACGGCTGCGGCCCAGGAAGCTTCAGCCAGGCTCCGCCGCCTCCACGAGCCCGTCCAAGGTACCTACCTCGACGGGCAGGGACGCCCGCGGAGCTATTCCGCCAATGATCCTGACCTGGCCCGCTGGGTACACATCGCTTTTATGGACGCTTTTCTCTCTGCCCACAAAATCTGGGGCGGCCCCATCCCCGGCGGGCCGGACGCGTACGTCCGCGAGTGGGCACAGGCAGGACGGCTGATGGGGGTGGAGGATCCGCCGTTGACAGAAGCGGAGATGCGCCGGCAACTGGACCGCTACAACAGGGAGCTTCGTGCGGACGGCAGAGTCAGCGAAACGGTGGCGTTTATCCGCTACCCGCCGCTGCATCCACTCCTGCGGCCCGGCTACCGGATCATGTTCGCAGGGGCCGTTTACAGCCTGGAGCCCGCCTATCGCCGGATGCTGGGGCTCAGGAACCCGCGGCTGGGTCCGCTCCCGCTGCCAGTGAAGCTGGCAACGAAGGTGACGCTCGGCGTCGTACATCTGGCACTGGGACGGAAGGGCCCCAGCGAGCTCGCCGCCCTGCAAAGGCTGCGGCGACTTGGCTACATCACCGAGGATTCTACAAAGACCCACTCGTCAGGGGCGTCAATAATTACTTCATTGAGGAATGCAAAAACCCGGCCCTGAMRNILREWQGELKKAFTGSADALPDWVPRLAEGDDAGYHQPGSAVWAVHGSMPTIVAGIRTLLMQALHPGALAGVHEHSNFREDPLGRLARTIRWIFTVTYGSTAAAQEASARLRRLHEPVQGTYLDGQGRPRSYSANDPDLARWVHIAFMDAFLSAHKIWGGPIPGGPDAYVREWAQAGRLMGVEDPPLTEAEMRRQLDRYNRELRADGRVSETVAFIRYPPLHPLLRPGYRIMFAGAVYSLEPAYRRMLGLRNPRLGPLPLPVKLATKVTLGVVHLALGRKGPSELAALQRLRRLGYITEDSTKTHSSGASIITSLRNAKTRPNANANANANA
D1-29_00729180hypothetical proteinATGACCCAGAGCGCCATGTCCAAAGTTGTGGACCGCCTTCAAAAAGCCGGCCTGCTCATCCGCAAGGCCTGCGAGGAGGACCGTCGTTCCCTCTACCTTGAACTGACCGAGGCTGGACGCACGCTTGATACCGCTGCCGCGGCCGTTCATCGCACCCTCCTGAAGGAAAACCTGGGTTGAMTQSAMSKVVDRLQKAGLLIRKACEEDRRSLYLELTEAGRTLDTAAAAVHRTLLKENLGNANANANANA
D1-29_00730159hypothetical proteinATGGAGGATTTCAAGGGGCGCCATAAGGAATCCCTGCGGCGGCCGTGGAAGTCCGGCGGAGGCGACATTGAGCTGGGGCAGGCCGTCTCTTGGAACTGCCCTGACAATGGTCCGGCTAAAGGGAACCAGGGCCCTGGCATCAGCCACGAAGCCGCCTGAMEDFKGRHKESLRRPWKSGGGDIELGQAVSWNCPDNGPAKGNQGPGISHEAANANANANANA
D1-29_00731300hypothetical proteinATGCAGGTGGCAGCCGGTGGACCATCCGGTGGTTCCCACCCGGGCGATCACCTGGCCCACCTGCACAGAGTCACCCGCCTGCACGCCAATGGCTTCCAGGTGGTTGTAGGTGGTGATAAGACCGTTGCCATGATCGATCTCTACTCGGTTGCCGCCGCCCCACGGGTGCCAGCCCGCGGCGCGCACCGCGCCCGAATCCGAGGCATAGACCCTGGTGCCGCAGGGGGCTGCATAGTCCTGGCCGAGGTGGAAGTCACCGCCTGCTCCGGTGAGGGGGCTGACACGGTGGCCAAAGGGTGAMQVAAGGPSGGSHPGDHLAHLHRVTRLHANGFQVVVGGDKTVAMIDLYSVAAAPRVPARGAHRARIRGIDPGAAGGCIVLAEVEVTACSGEGADTVAKGNANANANANA
D1-29_00732753hypothetical proteinGTGTTTCCTGTCAGGGCGGTCCTTTTCTTATCAAACTGCTTCTTTTCGGGTCAGGGAGCGGCGCTGACCGTTGCAGTTGCTGTTTCCGGGGCAATCGCCGCTGTTTCGGCCTCCCTCGAGGCCAACTCCGTGGCTGAAGGTTCGGTAGCTGGCGGGGGTGCTGGCGGAAGGGCCGGTGTCGGCAATGGATCAGCCGGGGTACCGGGAGCCACGGCAGCCGTTTCTGGCGGCGGCGCCGGGTCCGCCATGGTGGCCGCAGCTGTGGGCGCAGGCTCGGAGGTCACAGCGAGGGTGGGCGGGCCAGCCGGCGTTGATGTGGCGGACGCAGAGTCCGACGGCACAGGAGCGGTGGGGCTGGCAGTCTCGGTCGGGCTCGCAGTACCCGAAGGCGTGGCAGTCTCCGTCGGGCTCGCAGTACCCGAAGGCGTGGCAGTCTCCGTCGGGCTCGCAGTACCCGAAGGCGTGGCCGTCTCCGTCGGGCTCGCAGTACCCGAAGGCGTGTCCGTAGCTGTTGGTGTAGGCGATCCGCTGGGAGCCGGCGTCGATGCGGCGGGCGGCTGGGCAGGTTCGGCGTCGGCAGTGGGCGCAGGTGGAGCTGTGCTTTGGTCCGGCGTGGGCGCCACGGTCAGTTCGTTCTCGCCGCCCAGGACCGTGTGGCTGTGGTCGGAGGCGGCGGGGATCGCCCAGTTGTTCGTCCGGGCGGAAGCAGGCGTACTATCGGCAAAGCTGATCATGGCAATGGCAGCCAGCTGAMFPVRAVLFLSNCFFSGQGAALTVAVAVSGAIAAVSASLEANSVAEGSVAGGGAGGRAGVGNGSAGVPGATAAVSGGGAGSAMVAAAVGAGSEVTARVGGPAGVDVADAESDGTGAVGLAVSVGLAVPEGVAVSVGLAVPEGVAVSVGLAVPEGVAVSVGLAVPEGVSVAVGVGDPLGAGVDAAGGWAGSASAVGAGGAVLWSGVGATVSSFSPPRTVWLWSEAAGIAQLFVRAEAGVLSAKLIMAMAASNANANANANA
D1-29_00733513bsaAGlutathione peroxidase BsaAGTGACATCCCTGTACTCCATTCCCCTCACCCTCAACGATGGCACCTCAACTGACTTCGGCCGGTTCAAGGGGGACGTGGTGATGGTGGTTAACGTCGCCTCGAAGTGCGGCTTCACGGCCCAGTACGCAGGCCTTGAGACCCTCTACGAAAAGTTCCAGGACCGGGGCTTCGCGATTTTGGGGGTCCCCTGCAACCAGTTCGCAGGCCAGGAACCAGCCAGCGACGCCGAGATTGCAGAGTTCTGCCAGCGGAACTTTGGCGTCACCTTCCCCCTGACGGAAAAGGCGAATGTCCGGGGCAAGGACCAGCACCCGCTCTACGCCGAACTCACCAAGTTCAAGTCCGGCGTTCTGCCCGGGCTGGTGAAATGGAACTTCGAGAAGTTCCTGGTCAACCGCGACGGCGAGGTGGTGGCCCGCTTCGCCCCCGCCGTCGAGCCGGACTCCGCGGAGGTCATCGACACGATCGAGAAGGCCCTCGGGTCTGCGTTGCCGGATAGGCCGTCTGCATAAMTSLYSIPLTLNDGTSTDFGRFKGDVVMVVNVASKCGFTAQYAGLETLYEKFQDRGFAILGVPCNQFAGQEPASDAEIAEFCQRNFGVTFPLTEKANVRGKDQHPLYAELTKFKSGVLPGLVKWNFEKFLVNRDGEVVARFAPAVEPDSAEVIDTIEKALGSALPDRPSAPGPT0013115_2890DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
D1-29_00734927cpdACOG14093',5'-cyclic adenosine monophosphate phosphodiesterase CpdAATGGAGCACATCGAGGCCGAACACCCCCGGCCACGCCACTTCCTACTCCACCTGAGCGATCCCCATCTGATGGGAGGTCCGAACCCCCTATACGGCGCCATAGACAGCGAAGCCAAACTCATCCAGCTTTTTGATGAAGTGCGGGCTTCCGGAGCCCAACCTGAGGCTGTGATTTTCACAGGAGACCTGGCGGACAAGGGTGATCCCGAAGCCTACGTGAAACTCAGGGCCATCGTGGATCCCGCCTGCGAGGAACTCGGTGCCAAGGTTATCTGGGCCATGGGAAACCACGACAACCGGGCAAACTTCCGCACCGCGCTGCTGGACCAGCCCGGAAGCGACGCCCCGGTGGACCACAGCTACTTCATCAACGGCCTTCGCGTCATCACTATGGACACCTCGGTGCCAGGGTTCCATCACGGTGAGCTCGACGAAGCGCAGCTGGAGTGGCTGGCCAATGAGCTGGACACCCCTGCCCCTGACGGCACCATCCTGGCGCTGCACCACCCGCCCGTCCCGTCTGTCCTGGACCTGTCCGTGCTGGTGGAGCTGCGGGACCAGGCGAACCTCGAAGCCGTTGTGCGCAATTCGGACGTCCGGACCATCCTGGCCGGGCACCTGCACTACTCCACTACTGCGAGCTTTGCCGGCATCCCCGTCTCGGTAGCTTCCGCCACCTGCTACACCCAGGACCTCAACGTTCCGGTCGGCGGCACCCGTGGGCGCGACGGCGGGCAGGCGTTCAACCTCGTGCACGTATATGAGCACACCATCGTGCACTCGGTGGTCCCGCTGGGCAGCACGCCCACCGTGGGGGAGTACGTTACGCCGGAAGGGACGGCCGAGCGGTTAGCTGCAGCAGGCGTCCGCATCCCGGACAAGGCAAAACCCAGGGGCACCAAGGTGGGGGTCAGGTCAGCCGGTTAGMEHIEAEHPRPRHFLLHLSDPHLMGGPNPLYGAIDSEAKLIQLFDEVRASGAQPEAVIFTGDLADKGDPEAYVKLRAIVDPACEELGAKVIWAMGNHDNRANFRTALLDQPGSDAPVDHSYFINGLRVITMDTSVPGFHHGELDEAQLEWLANELDTPAPDGTILALHHPPVPSVLDLSVLVELRDQANLEAVVRNSDVRTILAGHLHYSTTASFAGIPVSVASATCYTQDLNVPVGGTRGRDGGQAFNLVHVYEHTIVHSVVPLGSTPTVGEYVTPEGTAERLAAAGVRIPDKAKPRGTKVGVRSAGPGPT0021595_445DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021595-cpdA-K03651NANA
D1-29_007351521cpsYExopolysaccharide phosphotransferase CpsYGTGACATCCCCGGCGGCGGAGGCGCGCCTCAAGCACCGCCCCGACGTCGTCCGGCATAAGGGCAGGTATGCCCTGATCAACCACAACCGGACGCCCTACCAGGCGATGGTGGAGGACTTGCTTTTCCTTCGCAACGTCCTCGCAGGCGCCGGCCTGGACTACCTCCTTGTCCGAGGCAACAGCGACCGCCCGGTGATCGCGCTTGATTGGAAGGACCGGAAGACGCTCCGGGATGCGCTGGTAAAGGCCTGCCGCAACGAGCCCGTCTATTCGATGACGGTGGATGCCAAAAAGAAGTCCTTTGTCCTCGTTGCCGACGGCGAGCTCTCGCCCAACCGGCAGGCGCGCATCTTCCGCCTGTACCGCCCGCGCGTGGAGCCCGACGGCGGCTTCGAGTTTGGATCCTCGGCCGGTGTCCAGGTGGAGCTGTGGAGCTTTGAGGGCAACCAGGTGATCCTGCCGATCGAAAATTCCCTGACCCGGCGGACCATGCTCAGCCAGGACGCGGTCCGCGGAACTGTGGAACGTTACGGCCACACGTGGCCCACCATCGAGAACATGTTCGCTGACCACGCCAGCGACATCAGCTTCGACATCGACCTCGTGTTTTCCTGGGTGGATGGCAGCTCGCCCGAATATATCGCTGCCCGTCGCGCGCAGCAGCAGGGCGTGGTGCTCGGCGAAGGCGATGACCACGAGGCACGCTTCCGGCAGATCGACGAACTCAAGTACGCCCTGCGCTCCGTGTACATGTTTGCGCCGTGGATCCGGCGGATCTTTATTGCCACGGACTCACCCGCACCTGCCTGGCTCGCGGAACACCCGGCCGTGACGATTGTGCGCAGCGAGGAATTCTTCTCCGACCCCTCGGTGCTGCCCACGCACAACTCACAGGCCGTGGAATGCCAGCTGCACAACATCGAAGGGCTGTCTGAGCACTTCCTGTACTCCAACGACGACATGTTCTTTGGCCGGCCCGTCAGCCCGGACATGTTTTTCACCCCGGGTGGCATCACCAAGTTCGTCGAGGCCGAAACCCGAATCGGGCTCGGCGACAACGACGCCGAGCGCAGCGGGTTCGAGAACGCGGCCCGGGTCAACCGCAAGTTGCTGTGGAACAGGTTCGGCCGCATCACCACCCGTCACCTGGAACACACTGCCGCACCGCTGAGGCGCAGCGTGGTGTCACAGATGGAACGCGAGTTTCCGGAGGAGTTCAGGAAGACGGCCGCCAGCCGTTTCCGGGCCGCCGACAACATCTCCGTCACCAACTCGCTCTACCACTACTACGCCCTGCTCACCGGACAGGCCGTGACCCAAACAGCGGCGAAGGTGCGCTACGTGGACACCACCATGCGTGCAGGGTTGAACTACCTGCCGAAGCTTTTGGCCAAGCGGAACATGGACTTCTTCTGCCTCAATGACGGAAGCTTCCCCGAAGTCCCTGCGGACGAACGGGCGGAGCTGGTGACGGATTTCCTGGAGAAGTACTTCCCCATCAAGGCACCTTGGGAAATCTGAMTSPAAEARLKHRPDVVRHKGRYALINHNRTPYQAMVEDLLFLRNVLAGAGLDYLLVRGNSDRPVIALDWKDRKTLRDALVKACRNEPVYSMTVDAKKKSFVLVADGELSPNRQARIFRLYRPRVEPDGGFEFGSSAGVQVELWSFEGNQVILPIENSLTRRTMLSQDAVRGTVERYGHTWPTIENMFADHASDISFDIDLVFSWVDGSSPEYIAARRAQQQGVVLGEGDDHEARFRQIDELKYALRSVYMFAPWIRRIFIATDSPAPAWLAEHPAVTIVRSEEFFSDPSVLPTHNSQAVECQLHNIEGLSEHFLYSNDDMFFGRPVSPDMFFTPGGITKFVEAETRIGLGDNDAERSGFENAARVNRKLLWNRFGRITTRHLEHTAAPLRRSVVSQMEREFPEEFRKTAASRFRAADNISVTNSLYHYYALLTGQAVTQTAAKVRYVDTTMRAGLNYLPKLLAKRNMDFFCLNDGSFPEVPADERAELVTDFLEKYFPIKAPWEINANANANANA
D1-29_00736927hypothetical proteinATGACTGCAACCGACTTTCCTGCCGGCACACCCGACGTCCGCCTGCCGTCCATGCCGCCCCTGGCACTCCTGCTCGACGTCGATGGTCCCGTGGCCAGCCCGGTGACCCGCGACGTGAAACCGGAAATTATCGCGGACCTGGTGGCGCTGGCCGCTGCCGGCATCCCCGTCATCTTCAACACCGGCCGCTCCGATGAGTTCATCCGGACCCAGGTGATGGAGCCGATGATCGCCGCCGGAATGCCCTCAGAGACAGTCATCCACGCCATCTGCGAGAAGGGTGCTGTGTGGTTCAGTTACACAGTGGCGGGACCCGGCCCCATCCACGTGGACCGGGAACTGGCAGTACCGAAGGCCTACGGGGATGACATACGAAGGCTGGTCGCTGAGGACTACGCCGCGCACATGTTCTTCGACGAAACCAAGCGCGCCATGGTGTCCGTGGAACAGCACGTCGAGGTGGCCAACTCCGATTACTTGGCGGAACAGAAGCTCTTCGATTCCGATGCCATGGACCTGATGGCGCGCCACGGCCTGGGTGTGGTTCGGCTGGAGCATCACGCGCCGAATTCCGAGGACCAAGTGGACTACCGGGTGGACCCCACCATCATCTCCACCGACATCGAATCCGTACGGCTGGGCAAAGACCTCGGCGCGAGCCGGGCAGTGGAACTTCTCGCCGCCCAAGGCATCACCCCGCAGGCCTGGCGCACGGTGGGAGATTCCCGGACGGACTACGCCATGGCAGACTGGCTTCACCACAACGACCACGCGGTGAAGCACGTAGACGTCCGTCCCGCGGACGGCGTCCCGGTGAAACCGTACGCGGTGCTAACGGCCGCTGATCTGGGACTGGCCGCCGACATAATTCACGACGACGCCGGCGGCGCGTTCCTGCGGGACTGGCTCGACGCACTGGTCAGCTGAMTATDFPAGTPDVRLPSMPPLALLLDVDGPVASPVTRDVKPEIIADLVALAAAGIPVIFNTGRSDEFIRTQVMEPMIAAGMPSETVIHAICEKGAVWFSYTVAGPGPIHVDRELAVPKAYGDDIRRLVAEDYAAHMFFDETKRAMVSVEQHVEVANSDYLAEQKLFDSDAMDLMARHGLGVVRLEHHAPNSEDQVDYRVDPTIISTDIESVRLGKDLGASRAVELLAAQGITPQAWRTVGDSRTDYAMADWLHHNDHAVKHVDVRPADGVPVKPYAVLTAADLGLAADIIHDDAGGAFLRDWLDALVSNANANANANA
D1-29_00737300hypothetical proteinGTGATATTTAAAGCTGTGGGCGAGGGCCGCCCTTACCCCGACCATGGATACAGTTCGCCCAAAGAGTGGGCTGCGCTGCCGCCGCGCCCGGTCAGGCTGGACGAGCTGGTGACCACAAAACGGACACTGGACCTTGAAGCGCTCCTTGCCGAGGACTCCACATTCTTCGGCGATCTCTTTCCACACGTGGTGCAGTTTCAGGGAACCCTGTATCTGGAAGACGGGCTGCACCGGGCCGTCCGCACAGCCCTCCACCAGCGCACCGCCATCCACGCCCGCGTGCTGGTCATAGATGGCTAGMIFKAVGEGRPYPDHGYSSPKEWAALPPRPVRLDELVTTKRTLDLEALLAEDSTFFGDLFPHVVQFQGTLYLEDGLHRAVRTALHQRTAIHARVLVIDGNANANANANA
D1-29_00738678hypothetical proteinATGGCTAGAACGCCCAAGGCCAAGGACCCCGCGGTTCTGCACGGCCATCACGTAGTCACCGGCTCCGAACTTCGCGCCGCATTCGAGGCCGGAGCGGATCCGGACAACCCTGTCCGGCTGCGCCGCCGGGTCCTGCACGGAGTGGTGCTGGTTCTCCTCCTGGGGCTCATTGCCGCCGCAATCATCACCGCGATGGCAATCATCAACGGGCAGTTGAAGATTCCGGCCGCCGAAAGCAGCGAGGAGCCCACCTCGGTCTGTCCCACAGCCACTTTTGACTACACCCCGAACGAGAAGATCAACCTCAACGTCTACAACTCCACCAGCAGGCCCGGGCTGGCGCGGACCGTCGCCGATGAGTTCCTGGCCCGGAAATTCGTGGTGGGGGCCGTGGGCAACACCGACGCCGGCTACAAGGGCGTTGCCGCTGTGGTGTCGGGCGCGGCTGGCCAATCGGCGGCCTTTAGCGTCCAGCGCAACCTGCCTGGTTCGGACTACTACCAGGACGACCGCGCGGACGCGAGCGTGGATGTGATCGTCGCCGGAGACTTCAAGGAACTTGCGGCGGCGGAACTCGTGGACCAGACGCCCGGAACGCTCAGTTGCCCGCGTGAAAGCCGGCGCATCGCCGATGACGACAAGTGGCCCGTCATCCCGACGGCGGGCGCCACGCCCTAAMARTPKAKDPAVLHGHHVVTGSELRAAFEAGADPDNPVRLRRRVLHGVVLVLLLGLIAAAIITAMAIINGQLKIPAAESSEEPTSVCPTATFDYTPNEKINLNVYNSTSRPGLARTVADEFLARKFVVGAVGNTDAGYKGVAAVVSGAAGQSAAFSVQRNLPGSDYYQDDRADASVDVIVAGDFKELAAAELVDQTPGTLSCPRESRRIADDDKWPVIPTAGATPNANANANANA
D1-29_00739651hypothetical proteinATGCCCAGGATTTCGGCGGCCAGCAACGCCGCCCAACGCGCCGAGACACAGCGCCGCATCCTCACGGCATTCGGCGAGCTGCTCTTCACGCATGGGCTGCCCGGCCTGACCATGACCGACGTCGCCCGGCATGCCGGGGTGGGACGGACGGCGGTCTACAACTACTTCGCGGACATCGAAGAGCTGCTCATTGCGTATGCCCTGGATGAGACCGAACGGTTCCTCGCCGAACTGCGGGAGGCCCTGGACCGCCTGGATAACCCCGTGGAGCGGCTGGCGCTGTACGTGCGCTCACAGGTGGAGGACCTGAGCCGCCGCCACCTCCCGCCGGGGCCGGCCATGGCGGCGGTGATGTCGCCGTCCTCCTTCGCCAAACTGGCGGACCATGTTGGTGAGCTCAGCGTCCTGCTGCAGGGCATCCTGAGGGACGGCATGGAGCAGGGATATCTGCCGCTGGCCGATATCGCCGAGCAGGCGAAGCTGATCCACGGCACGCTGTCCTCCAGCGCCGCCCGTGGCAGCGATGAGCCCGGGGAACTTGAAACCCGGATCGCCCGGACGGTCCGTTTTATCCAGTTGGGTGCCGGAGCAAGGTTCGACGACGGCGGCCGTCCAGTCCGCGTCGGCCAGCTTCCCGCCGTGACCGGCTAGMPRISAASNAAQRAETQRRILTAFGELLFTHGLPGLTMTDVARHAGVGRTAVYNYFADIEELLIAYALDETERFLAELREALDRLDNPVERLALYVRSQVEDLSRRHLPPGPAMAAVMSPSSFAKLADHVGELSVLLQGILRDGMEQGYLPLADIAEQAKLIHGTLSSSAARGSDEPGELETRIARTVRFIQLGAGARFDDGGRPVRVGQLPAVTGNANANANANA
D1-29_00740699hypothetical proteinATGAAGATTGAGATCTGGTCAGACGTCGCGTGCCCGTGGTGCTACATCGGCAAGCGCCGGTTTGAGGCCGCCCTTGCCGAGTTCCCGCACCGGGACTCGGTGGACGTGCAATGGCGCAGCTACCAGCTGGATCCCACGCTCCCGGAACACTACGACGGCACCGAACTGGATTACCTGAGCACCCGGAAAGGGCTGGCGCCGCAACAGGTCAGGCAGATGTTTGACCATGTGGCCGCCCAGGCCCGCTCGGAAGGCCTGAACTACGACTTCGACAACGTTGTGGTCGCCAACAGCTTCACAGCCCACCGCCTGATTCGCCTGGCGGCAGCCCACGGCGCGCAGGACGCAGCCAAGGAGCGCCTGCTCAGCGACCATTTCGAACATGGCAAGGACATTGGCAGCCAGGAGTACCTGACCGCACTGGGCAAGGACCTGGGCCTGGATGCGGCCGAGGTGGCTGAGCTGTTCTCCACTGACAAGTACGCCGACGACGTCCGGCACGATTTCCAGGAAGCCCGCGCCCTGGGCGTCACGGGAGTCCCCTTCTTTGTGATCGACCGGAAGTTCGGCCTGTCCGGCGCCCAACCGGCTGAGACGTTCACCGCCGCCCTGAACCAGGCCTGGCAGGAAAGCCATCCGCTGGTCCTGGTCAACAACGCCAACGGCGACTCCTGCGGCCCGGACGGCTGCGCCGTCTGAMKIEIWSDVACPWCYIGKRRFEAALAEFPHRDSVDVQWRSYQLDPTLPEHYDGTELDYLSTRKGLAPQQVRQMFDHVAAQARSEGLNYDFDNVVVANSFTAHRLIRLAAAHGAQDAAKERLLSDHFEHGKDIGSQEYLTALGKDLGLDAAEVAELFSTDKYADDVRHDFQEARALGVTGVPFFVIDRKFGLSGAQPAETFTAALNQAWQESHPLVLVNNANGDSCGPDGCAVNANANANANA
D1-29_007411062COG0438Glycogen synthaseATGCGGATAGGGCTGATTGCAGGACCGTGGATTCCTGTACCGCCGGTCACCTATGGCGGCATAGAAAGAGTAGTGGATCACCTTGCACGCGGGCTTGTGGATGCAGGCCATGAGGTCCTGTTGGCCGTCTCCTCCGACAGCGAGTGCCCGGTACCACGCGTTCCCGGCATGGCCCCGTCCGACCCCGAGGAAGTGGGCACAACTGTCTCGGAACTGAGCCACGTCATTAAGGCCTACAAGGGTGTGCAGGGCGTGGACATCATCCATGACCACACCCTGGCCGGGCCGTTCTGCCCCTTCCGTCCGGAAGGGACCCCGGTGGTCACCACCATCCACGGACTGCTCACCCCCGCCGTCGCGGAGATTTACCGCGCCGCCAGCGCCAACACCTCCATCATCGCCATCTCCCACGATCAGACCTCCCGCGCTCCCGATATCCCGGTAGCGAAGGTGATCCATCATGGAATGGACCTCTCCTCTGTCCCGGCAGGCAGCGGGAGTGGCGGCTACCTGTGCTTTGTGGGCCGGATGTGTCCGGACAAGGGAGTCATGGAAGCCATCGACCTGGCGCGGAAAGCGGGGATGCCGCTGAAAATCGCTGCCAAGATGCGCGAAGCCGAGGAACTGCGCTATTTCCGCGACGTCATCAAACCGCTGCTGGGATCCAACGAGGAGTTTGTGGGCGAAATCGGTGACGCCGAAAAATACCATCTGATGGGCGAAGCGATGGCCTTCCTTAATCCCATCCAGTGGTCAGAACCCTTTGGCCTGGTCATGATCGAATCCCTTGCCACTGGCACGCCGGTGGTGGGTACCCCCATCGGTTCGGCCCCCGAGATAGTGGAGCACGGACGGACGGGCTACCTGGCAGCCACCGACAAACTGGCGGAACTGCTTCCGGCGGCCGCGGGCCTGGACAGGACGGCGTGCCGGGCCAGCGTTCAGGAACGCTTCAGTGCCGAACGGATGGTTGCGGACCACCTTGCCCTTTTTGAACAGCTCCTTGAAGGGAAGCCGGCTGCAGGGGTGCCGAATCCTGTTGCCTTGTACCAGAACCAGTAGMRIGLIAGPWIPVPPVTYGGIERVVDHLARGLVDAGHEVLLAVSSDSECPVPRVPGMAPSDPEEVGTTVSELSHVIKAYKGVQGVDIIHDHTLAGPFCPFRPEGTPVVTTIHGLLTPAVAEIYRAASANTSIIAISHDQTSRAPDIPVAKVIHHGMDLSSVPAGSGSGGYLCFVGRMCPDKGVMEAIDLARKAGMPLKIAAKMREAEELRYFRDVIKPLLGSNEEFVGEIGDAEKYHLMGEAMAFLNPIQWSEPFGLVMIESLATGTPVVGTPIGSAPEIVEHGRTGYLAATDKLAELLPAAAGLDRTACRASVQERFSAERMVADHLALFEQLLEGKPAAGVPNPVALYQNQNANANANANA
D1-29_007421188COG2826IS30 family transposase ISAcl1ATGCCGAAGTTGTTTCCTGCCAATGTCCGTGGTGATTTTCTTGATCTGGTGTGCTCCGGCGCGTCTGTGAGCGAGGCTGCACGGCGTGTCGCGGCCTCCCGCGGGACCGGGAAGAAGTGGTGGGCCGAGTCTGGTCAGATGAAAGTGAAGATGGGGGTCGTTGGCGGTCTGGCGGACCCGGCGCCGGGTGCGGAAGGCCCGGGCGGGCGGACGTTGACGGAAGCCGAGAGGGGGATGATCCAGATGGGCGTGGAGGCCGGGATGGGTTACGCCCAGATTGGCAAAGCGGTCGGCCGGGACAGGTCCGTCATCTGGCGGGAGGTGAAACGTAACTCCGACGCCGGCGGCAGGTATCACGCCAAAGTTGCGCACGCCAAGGCGCATCAGGCACGGCGCCGGCCCAAGCCCTTCAAGCTCATCGAGGACGAGGACCTGTGCCGGCTGATCGCCTTCTGGATGGATGAGGGGTGGAGCCCGAAACTGATCTCGTCGATGTTGGCGTTTTACTTCGCCGGTGACCAGACTATGCAGGTGAGCCACGAGACGATCTACCAGGCGCTGTACGTCCAAACCCGCGGAAGTCTGCGCAAAGACCTGGCCGAAAACCTCAGCCTGAAACGTAAACAGCGCGTCCCGCACATCGCTGACCGGCGCAAGAACAGCCCCTACAAAGAGGCGTTCAAGATCAGTGAACGACCCGCCGAAGTCCAGGACCGGGCCATCCCGGGGCATTGGGAAGGCGATCTGATCATCGGTTCTGACGGGACCGCTATCGGCACCCTCGTGGAACGCTCAACCCGGTTCACGATCCTGCTGCACCTGCCCGGGGACCACAGCGCCGAGACCGTCGCCGCAGCGATGATCCGGGAGATGGCGAACCTCCCGGATCATCTGCGCCGCTCCATCACCTGGGACCGCGGCTCCGAACTGGCAGGCTACGCGAAGATCCAGACAGCCTTGGAAACCACGCTGTATTTCTGCGACCCGCACTCGCCCTGGCAGCGCGGCACCAACGAAAACACCAACCGGCTCCTGAGGTTCTGGTTCGAGAAAGGCTCCGACCTCTCGGCCCACACACCGGAGGACCTCCGCCGCGTCGCCGCGACACTCAACCGCCGGCCCAGGCCGACCCTGAACCTACAAACCCCAGCCAACCGGCTAAACCAGCTGCTGCAAACAGCGGCATAAMPKLFPANVRGDFLDLVCSGASVSEAARRVAASRGTGKKWWAESGQMKVKMGVVGGLADPAPGAEGPGGRTLTEAERGMIQMGVEAGMGYAQIGKAVGRDRSVIWREVKRNSDAGGRYHAKVAHAKAHQARRRPKPFKLIEDEDLCRLIAFWMDEGWSPKLISSMLAFYFAGDQTMQVSHETIYQALYVQTRGSLRKDLAENLSLKRKQRVPHIADRRKNSPYKEAFKISERPAEVQDRAIPGHWEGDLIIGSDGTAIGTLVERSTRFTILLHLPGDHSAETVAAAMIREMANLPDHLRRSITWDRGSELAGYAKIQTALETTLYFCDPHSPWQRGTNENTNRLLRFWFEKGSDLSAHTPEDLRRVAATLNRRPRPTLNLQTPANRLNQLLQTAAPGPT0030610_273DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
D1-29_00743996hypothetical proteinATGCCCCGCCCGTACACCCTGTTCACCGGCCAGTGGGCCGACCTCCCGTTCGAGGAAGTCGCCCGCCTTGCCTCCGGCTGGGGCTATGACGGACTCGAAATCGCCGTCTCCGGCGACCACTTGGACGCCTGGCGTTGGGACGAGCCGGGCTACGTGGACTCCAAGCTCGCAGTCCTGGCAAAGTACAACCTCAAGGTCTGGGCCATCTCCAACCACCTGAAGGGCCAGGCGGTGTGTGATGACCCCATCGATTTCCGCCACGAGGGAATCGTCGGTGCCAAGGTGTGGGGCGACGGCGATCCCGAGGGCGTGCGCCAGCGTGCCGCCGAGGAAATGAAGCACACCGCCCGGCTCGCCAAGGCACTTGGCGTGGACACCGTCGTCGGGTTCACCGGCTCCTCCATCTGGCAGTACGTAGCCATGTTCCCGCCGGTCCCGGAGAAGGTCATTGACGCCGGCTATCAGGACTTCGCCGACCGCTGGAACCCCATCCTGGACGTCTTCGACGAATGCGGGGTCCGCTTCGCCCACGAGGTCCACCCCAGCGAGATCGCCTACGACTACTGGACCACCGTCCGCACCCTCGAGGCCATCGGCCACCGCGAGGCGTTCGGCCTGAACTGGGATCCGTCCCACATGATGTGGCAGGGCATCGATCCGGTCTCCTTCATCTGGGACTTCAAGGACCGGATCTACCACGTGGACTGCAAGGACACCAAGCTCCGCCCCACGGGCCGGAACACTGTCATGGGCTCCCACCTGCCGTGGGGTGATCCGCGCAGAGGCTGGGACTTCGTCTCTGCAGGCCGCGGGGATGTCCCTTGGGAATCGTCCTTCCGGGCCCTCGCCGCGATCGGCTATGACGGACCCATTTCGGTTGAATGGGAAGACGCCGGCATGGACCGTCTCCACGGCGCCCCCGAAGCCCTCGCCGCCCTCAAGAAATTCGGCTTCCCGCCGTCGAGCACTTCTTTCGACGCCGCCTTCAAGCAGTAAMPRPYTLFTGQWADLPFEEVARLASGWGYDGLEIAVSGDHLDAWRWDEPGYVDSKLAVLAKYNLKVWAISNHLKGQAVCDDPIDFRHEGIVGAKVWGDGDPEGVRQRAAEEMKHTARLAKALGVDTVVGFTGSSIWQYVAMFPPVPEKVIDAGYQDFADRWNPILDVFDECGVRFAHEVHPSEIAYDYWTTVRTLEAIGHREAFGLNWDPSHMMWQGIDPVSFIWDFKDRIYHVDCKDTKLRPTGRNTVMGSHLPWGDPRRGWDFVSAGRGDVPWESSFRALAAIGYDGPISVEWEDAGMDRLHGAPEALAALKKFGFPPSSTSFDAAFKQNANANANANA
D1-29_007441275iolG_6Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCCCACAGGACCGGACCACCTACCGTCCGCACCCGGAACCCACCATGCCCTTACGCCGGGATGATCAGCCGCTGGGCGTGGCGATGGTTGGCTATGCCTTTATGGGCAAGGCCCATTCGAACGCCTGGCGGAATGTAGGCAGCTACTTTGATGTACCGGCCTTCGAGCAGAAGATACTCGTCGGCCGGGATGCCGCCGGAGTGAAGGAAGCCGCGGCGAAGTACGGCTGGGCCGAAACCGCGACGGACTGGCGCACCGTGATCGAACGGGATGACATCCACATTGTGGATATTTGCGCGCCGGGATGGCTGCACGCCGAGATCGCCACGGCGGCCCTGGAGGCCGGGAAGCACGTACTCCTGGAAAAGCCGCTCGCCAACACGCTGGCCGAGGCCGAAGCCATGACGGCTGCGGCCCAGGCTGCCCGGACACATGGTGTGCAGTCCATGGTGGGTTTCAACTACCGCCGCGTTCCGGCCCTGGCCCTGGCGAAGGAACTGATCGCCGAGGGCCGGCTGGGCGTCATCCGGCACGTACGCGCCGCCTACCTCCAGGACTGGCTCGCGGATGAGACGGCCCCCATGACCTGGCGGCTGAAGAAGGAAAGCGCCGGTTCGGGTGCTCTCGGGGACATCGCTTCGCACGCCATTGACCAGGTCATGTTCCTGCTCGGAGACAACGTCAGGGAGGTTTCGGGCCGGACACACACCTTCACTACCAGCCGTCCCGGGGCGGCTGGCCCGGAGGAAGTAACGGTCGACGACGCCGCCTGGGCCACGCTGTCCCTGGCCTCCGGGGCCATCGCCTCGGTGGAGGTTTCGCGCGTGGCCACCGGGCAGAAGAATTCACTGAAGCTGGAAGTTTACGGCGATAAGGGCTCCATCCTCTTTGATCTGGAGAACCTGAACGAACTCGGGTTCCTGGACGCCACGGCCCCCGTCCGCGAGCAGGGTTTCCGCCGGATCCTGGTCAACGAGCCTGAGCACCCCTACCTTGAGGCGTGGTGGCCGCAGGGCCACATCATCGGCTGGGAGCACACGTTCACCCACGAGATCCGTGACTTCCTGCTGGCCATCGACGGCGGAACCCAGCCCTCGCCGTCGTTCGAGGATGGCCTGGCCGTTCAGCGGGTCCTGGCGGCAATTGAAGAATCGTCCGCCGCGAAAGGTTCCATCATCAACGTTGCGCCGGCCACGGCTGAAACACCCACGACTGGCAAATTGCCCAGCAACATAGGCCCGTCCCAAACCGTCCCGACCGAAGGAGCCTGAMTPQDRTTYRPHPEPTMPLRRDDQPLGVAMVGYAFMGKAHSNAWRNVGSYFDVPAFEQKILVGRDAAGVKEAAAKYGWAETATDWRTVIERDDIHIVDICAPGWLHAEIATAALEAGKHVLLEKPLANTLAEAEAMTAAAQAARTHGVQSMVGFNYRRVPALALAKELIAEGRLGVIRHVRAAYLQDWLADETAPMTWRLKKESAGSGALGDIASHAIDQVMFLLGDNVREVSGRTHTFTTSRPGAAGPEEVTVDDAAWATLSLASGAIASVEVSRVATGQKNSLKLEVYGDKGSILFDLENLNELGFLDATAPVREQGFRRILVNEPEHPYLEAWWPQGHIIGWEHTFTHEIRDFLLAIDGGTQPSPSFEDGLAVQRVLAAIEESSAAKGSIINVAPATAETPTTGKLPSNIGPSQTVPTEGANANANANANA
D1-29_007451119iolG_7Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCGGCGCAGGCACCAGCCGCGGCCCGGTGGGCGTCGCCGTGATCGGCGCCGGGAACATCAGCAAGGCCTACCTGGACAACCTCACCGCGTTCCCGGACCTGAAAGTCCACGTCATCGCAGACCTCTTCGAAGACACGGCCCTCGCAAGGGCGAAGGAATACGGCATCCCCGAATCCGGCGGCGTGGACGCGGCACTGAACCATCCCGACGTCGAAATCATCGTCAACCTCACCATCCCCGCAGCCCACGTGGAAGTCGCCACCGCAGCGGTCAACGCCGGCAAACACGTCTGGACCGAGAAACCCTTCTCCCTGGACCGCGAATCCGGGCTCGGGCTGCTCAAGACCGCCGACGCCGCCGGAATCCGGCTCGGCTGCGCCCCCGACACGTTCCTCGGCGCCGGCCTGCAAACAGCCCTGCGCCTGATCCAGCGCGGCGACATCGGCATCCCGCTGACCGCCATGACCACCTTTCAGACCCCCGGCCCGGAATCCTGGCACCCCAACCCCGCGTTCCTCTTCCAGCACGGCGCCGGGCCGCTGTTCGACATGGGCCCGTACTACCTCACCACCCTGATCCAGGCCTTCGGCTCCATCCGGAAAGTCGCCGCCGTCGGCTCCAAAGCCAAAGAAACCCGCATCATCGGCTCCGGCCCCAAGACCGGCCAGGAGTTCACCGTCGAGGTACCCACCCACGTCTCCGCGATGGCCCAGTTCGAGAACGGCGCCTCCTCCCACAGCGTCTTCTCCTTCGAATCCCCCCGCCAACACATGGGCTTCGTCGAAATCACCGGCACCGAAGCCACCATCTCCCTGCCCGATCCGAACTACTTCGACGGCGACATCAAACTCTGGCGCGCCGGAGACGAAGACTGGACCACCATCCCCGCCACCGGCCCGGCAAACGGCCGCGGCATGGGCGTCCTGGACATGGCCCGCTCCCTCCGTGCCGGCGTCCAGCACCGCGCCACCGGCGACCTCGCCTATCACGTCCTGGACACCATGGTCTCCATCACCGAATCCATCGACTCCGGCACCTTCATCAACGTCGAAAGCACCGCCCCCGCCTCCCCGGCCCTCCCGGAGGACTGGGCACCGGAAACCAAAACACTCTAGMTGAGTSRGPVGVAVIGAGNISKAYLDNLTAFPDLKVHVIADLFEDTALARAKEYGIPESGGVDAALNHPDVEIIVNLTIPAAHVEVATAAVNAGKHVWTEKPFSLDRESGLGLLKTADAAGIRLGCAPDTFLGAGLQTALRLIQRGDIGIPLTAMTTFQTPGPESWHPNPAFLFQHGAGPLFDMGPYYLTTLIQAFGSIRKVAAVGSKAKETRIIGSGPKTGQEFTVEVPTHVSAMAQFENGASSHSVFSFESPRQHMGFVEITGTEATISLPDPNYFDGDIKLWRAGDEDWTTIPATGPANGRGMGVLDMARSLRAGVQHRATGDLAYHVLDTMVSITESIDSGTFINVESTAPASPALPEDWAPETKTLNANANANANA
D1-29_00746753iolE_1Inosose dehydrataseATGACCTATTCACTTCAGCTCTACACACTGCGCGATGCCATCCAGGAGGACCTTGCCGGGACCATCAGGAGGGTCGCGGAGATTGGTTTCACGCAGGTGGAACCGTACAACTTTGTGGCCACGGCCAAGGAACTCGGTGCGGCGCTGCGGGAGAACGGCCTGACCGCGCCGTCCGGCCACGCCCCGCTGCTCAGCCAGGACCAGGACCAAATCTTTGCCGCGGCGAAGGAACTGGGCATCAGCACGGTGATTGATCCGTTCATCCCGGCCGGGCGCTGGCAGCAGGCCGAGGACATCCAGGCCACCGCGGCAGCCCTCAACGCCGCCGCAAAGAAGGGTGCCGAATACGGCATCCGGGTGGGCTACCACAACCACCAATGGGAACTGGAGTCCATGGTCGAGGGCCGCACCGCCCTGGAATACTTTGCAGACCTGCTGGATCCTGAGCTGGTCCTGGAGGTGGACACCTACTGGGTGGCCGTCGGCGGACAGGACCCGGTAGAGATCCTCAGCAAACTCGGTGACCGGGTGAAGTTCATCCATATCAAGGACGGCCCGCTGACTGCCGACACGAAAGCCCAGCAGCCCGCTGGCCAGGGCAAGGTCCCGGTCCTGGACGTCATCGCCGCCGCCGCCTCCCTGGAAGTGGGCGTAGTGGAGTTCGACGACTACGCCGGCGACATCTTCGATGGCATCGCCCAAAGCCTGGCCTACCTCCAGACGGCGGCCGTGAACGCAGGAGAGCTGGCATGAMTYSLQLYTLRDAIQEDLAGTIRRVAEIGFTQVEPYNFVATAKELGAALRENGLTAPSGHAPLLSQDQDQIFAAAKELGISTVIDPFIPAGRWQQAEDIQATAAALNAAAKKGAEYGIRVGYHNHQWELESMVEGRTALEYFADLLDPELVLEVDTYWVAVGGQDPVEILSKLGDRVKFIHIKDGPLTADTKAQQPAGQGKVPVLDVIAAAASLEVGVVEFDDYAGDIFDGIAQSLAYLQTAAVNAGELANANANANANA
D1-29_007471212nagC_2COG1940N-acetylglucosamine repressorATGAGCCTTACCTCCCGGACCGTGCCTGCCAACCCTGATATCGGCGGCAATCTGGCGCGCGCCGGTGACCTCTTCCAGCTCCTCCGCGACGGCCAGGCCCGGACCCGGGCCGAACTGGCCGTGACAACCGGCCTCGCCCGTTCCACCGTCGCTGCACGCATCGACGCACTCATCGCCTCCGGCCTTATTGCCGCGGCGGGGGAGGCGAACTCAAGCGGCGGCAGGCCGCCGTCGCGCTTTGCCTTCAACCCGGCGGCACGTGCCGTCCTTGCCGTGGACGTCGGGGCTACCCATGTCATCGTGGCCGTCACCGATCTCAGTGGAGCAGTCCTGGCGGAACAGCGCCTGGTGCAGGACGTTGCCGACGGCCCGGAAACCGTTTTGGATCGGGTGGTGACGGAAGGGCTCTCGCTCCTGGCAAAGGCTGGCCGGAGCATCAATGTCCTTGCCGGCGTCGGGATCGGTTTACCGGGTCCCGTGGAGCATGCCACCGGAAGGCCCGTGAAGCCGCCCATCATGCCGGGATGGGACGGGTTCGACGTGGTCCGCTATGTCCAGCGTTCCCTGCCGGGGCCTGTCCTGGTGGACAACGACGTGAACATCATGGCTCTGGGCGAGCGCAGTGCGCATTGGCCGGAGCACCAGGATTTTGTGTTTATCAAGGTTGCCACGGGGATCGGTTCAGGCATCATCAGCAACGGCGAGCTGCAGCGCGGGGCCAACGGTACCGCCGGCGATCTTGGCCATGTCCGCGTTCCCCGCGGAGACGATGTGCTCTGCCGGTGCGGGAACTACGGCTGCCTGGAAGCGCTCGCGTCCGGCCCGGCGCTTGCCGCGGAACTCACGCGTCAGGGAGTGCCTGCCTCGAAGGGCAGCGACGTGCTGCGCCTTGTGGCGGAGGGCAACCTGCCGGCCATCCAGGCCTTGCGCCAGGCCGGGCGGGATGTGGGGGATGTGCTGGCCACCGTAGTGAACCTGCTGAACCCGTCTGTCATTGTCATTGGCGGAAGCCTGGGCCAGGCGGGAGAGCATTTGATGGCGGGGGTCCGGGAAGTTGTCTACCGGCGCTCGCTTCCGTTGGCTACAACCCACTTGCGGATTGCCCCGTCCAGGGCGGGGGACCAGGCCGCGGTTTTCGGCGCGAGCCAAATGGTCATCCAGCATGTGTTGTCACCGGCGGCTATTGAGTCCACGCTACAGGCGACCGGTTAAMSLTSRTVPANPDIGGNLARAGDLFQLLRDGQARTRAELAVTTGLARSTVAARIDALIASGLIAAAGEANSSGGRPPSRFAFNPAARAVLAVDVGATHVIVAVTDLSGAVLAEQRLVQDVADGPETVLDRVVTEGLSLLAKAGRSINVLAGVGIGLPGPVEHATGRPVKPPIMPGWDGFDVVRYVQRSLPGPVLVDNDVNIMALGERSAHWPEHQDFVFIKVATGIGSGIISNGELQRGANGTAGDLGHVRVPRGDDVLCRCGNYGCLEALASGPALAAELTRQGVPASKGSDVLRLVAEGNLPAIQALRQAGRDVGDVLATVVNLLNPSVIVIGGSLGQAGEHLMAGVREVVYRRSLPLATTHLRIAPSRAGDQAAVFGASQMVIQHVLSPAAIESTLQATGNANANANANA
D1-29_00748960hpr_1COG1052Hydroxypyruvate reductaseATGGAGCACCGGCTTGCCATTCTGGATGACTACCAGGATGTGGCGCACGGCTTCGCCGACTGGACTGCCCTTGAGAAAGAGGGTGTGTCCGTCACCGTCTTCCGGGAGCCCTTCACGTCCCAGGAAGCGCTGGTGGCCGCGCTGGCCGGTTATTCCATTGTCATCGCCATGCGCGAGCGGACTCCGTTTCCCCGCCCGGTCATGGAAAAGCTGCCCGCGCTGAAGCTCCTGGTCACTACCGGGATGGCTAATGCAGCCATCGATGTGGCTGCCGCCGAAGATCATGGCATCACGGTATGCGGGACGCCAGGATCACCTACAGCAGCACCGGAACTCACCTGGGCCCTGCTGCTGGCCATTGCCCGGAACCTCCCTGCCGAAGACAACTCGATGCGTGCCGGGGCATGGCAGAGCACCGTGGGGTTTGAACTGGCCGGCAAGACCCTGGGCATCGTGGGGCTTGGCAAGATCGGCCGCAGAATTGCAGCCTACGGCCAGGCGTTTGGCATGGACGTGCTGGCCTGGAGTGAGAACCTGACCGATGAGGCCGCCGCCGACGCGGGAGTCCGGAGGGTGAGCAAGGACGATCTCTTTCGAAGCGCAGATGTGGCCACCCTTCACCTGCGGCTGTCCCCTCGATCGGAAGGCACGGTTGGTGAGCGGGAGCTGCGGCTACTGGGACCCGAAGGGATCCTGGTGAACACTGCCCGCGGCCCGCTGGTTGACCAGGACGCCCTGATCCGTGCGCTGACGGAGGGCTGGATCCGCGGCGCCGCCCTGGACGTGTTTGACCAGGAACCGCTGCCGGCGGCCCACCCGATCCTCGCCGCCCCCAACACTGTCCTGTCGCCACACCTGGGTTATGTCACACGGGAAAGCTACCGGCAGTTCTATGGCGGCGCCTTCGAGGACGTCAACGCCTGGCTGGCAGGCTCACCCATCCGGGTGATCCCCGCCTGAMEHRLAILDDYQDVAHGFADWTALEKEGVSVTVFREPFTSQEALVAALAGYSIVIAMRERTPFPRPVMEKLPALKLLVTTGMANAAIDVAAAEDHGITVCGTPGSPTAAPELTWALLLAIARNLPAEDNSMRAGAWQSTVGFELAGKTLGIVGLGKIGRRIAAYGQAFGMDVLAWSENLTDEAAADAGVRRVSKDDLFRSADVATLHLRLSPRSEGTVGERELRLLGPEGILVNTARGPLVDQDALIRALTEGWIRGAALDVFDQEPLPAAHPILAAPNTVLSPHLGYVTRESYRQFYGGAFEDVNAWLAGSPIRVIPAPGPT0009155_7103DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-29_007491653aceB_1Malate synthaseATGAACTCTTTTACTGACAGCTTCACCATCAATGGCATTACCCTGACTGCCCAGCCCATTTGCCGGCAGGACGAGGTTCTTACTCCGGACGCCTTGGAGTTCGTTGCGAGGCTGCACCGGGCCACTGCTGAGCGGCGGCAGGAACTGCTGCAGGCACGGCGGACCCGGCGGGCCGAGATCGCTTCCGGGCAGGATCCACGGTTCCTCCGGGAGACCGAGGATATCCGCAACGATCCTTCATGGCGGGTCGCTCCGCCGGCGCCTGGGTTGGAGGACCGCCGGGTGGAGATCACCGGCCCCGTTGACAAGAAGATGGCCATCAACGCCCTGAATTCCGGGGCGAAGGTCTGGCTGGCGGACATGGAGGACTCCTCCACCCCCACTTGGCGGAACGTGATCAAGGGCCAGCTGAACCTGACCGACGCCCTGGAACGGCGGATCGACTTCACCAGCCCGGAGGGCAAGGAATACCGGCTCCGCCCCGCCGTCGAACTGCCCACTATCGTGGTCCGTCCCCGTGGCTGGCACCTGCCGGAAAAGCACATGCTGATCGACGGCGCTCCCGTGGCCGGCGGCATCGTGGACTTCGGGCTGTACTTCTTCCACAACGCCCGCCGCCTGATCGCCCAGGGCAAGGGCCCCTACTTTTACCTGCCCAAGATCGAAAACCACCTCGAAGCGCGGCTCTGGAACGACATCTTCATTCTCGCCCAGGACCTGCTCGGCATCACGCAGGGCACCATCCGCGCCACCGTGCTGATCGAAACCATCACCGCGGCCTTCGAGATGGAAGAAATCCTCTACGAACTGCGCGACCACGCTGCCGGCCTGAACGCCGGCCGCTGGGACTACATCTTCTCCCTGATCAAGAACTTCCGCACCCGCGGCCCCCGGTTCGTCCTGCCGGACCGCGCACAGGTCACCATGACCCAGCCGTTTATGCGTGCCTACACCGAACAGCTTGTGCGTGCCTGCCATAAGCGCGGCGCCATGGCCATCGGCGGGATGGCTGCGGCAGTTCCCAACCGCAAGGACCCTGAAGCGAACGCCAACGCTCTCGAAAAGGTCCGGGCAGATAAAACCCGCGAGGCCAACGACGGCTTCGACGGCTCCTGGGTTGCCCACCCGGACCTGGTTCCGGTCTGCCGTGAGGTGTTCGATTCCATCCTCGGTGAGCGTCCCAACCAGCTGGACCGCAGCCGGGAAGACGTGACTCCTGATGACCGCGCCCTCATCAACGTGGCCGCCACTGAGGGCACCATCACAGAACAGGGCATCCGGAACAACATCGAAGTCGGGATCCGATACATCGAATCCTGGCTCCGCGGCAACGGCGCCGTCGCCATCCACAACCTCATGGAAGACGCCGCCACCGCCGAGATCTCCCGCTCCCAGCTCTGGCAGTGGATGTACGCCCGGGCCATCACCGACCACGGCGAAATCATCAGCCATCACTGGATCGAAGAACTCCTCGACGAGGAATTCGCCCGGCTGGAACGCTTCGACGGCGACCGCTTCGAAGACGCCCGCGACATCTTCGAAGAAGTGACGATGGCCCGGGACTTCCCGTCCTTCCTCACCCTCCCCGCCTACGCGCGGTACCTGACGGAAGCCCGTGAAAAGGCAAGCCAGGAGGAACTCGCCGCCGCCTAGMNSFTDSFTINGITLTAQPICRQDEVLTPDALEFVARLHRATAERRQELLQARRTRRAEIASGQDPRFLRETEDIRNDPSWRVAPPAPGLEDRRVEITGPVDKKMAINALNSGAKVWLADMEDSSTPTWRNVIKGQLNLTDALERRIDFTSPEGKEYRLRPAVELPTIVVRPRGWHLPEKHMLIDGAPVAGGIVDFGLYFFHNARRLIAQGKGPYFYLPKIENHLEARLWNDIFILAQDLLGITQGTIRATVLIETITAAFEMEEILYELRDHAAGLNAGRWDYIFSLIKNFRTRGPRFVLPDRAQVTMTQPFMRAYTEQLVRACHKRGAMAIGGMAAAVPNRKDPEANANALEKVRADKTREANDGFDGSWVAHPDLVPVCREVFDSILGERPNQLDRSREDVTPDDRALINVAATEGTITEQGIRNNIEVGIRYIESWLRGNGAVAIHNLMEDAATAEISRSQLWQWMYARAITDHGEIISHHWIEELLDEEFARLERFDGDRFEDARDIFEEVTMARDFPSFLTLPAYARYLTEAREKASQEELAAAPGPT0001445_1701DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
D1-29_007501347iclCOG2224Isocitrate lyaseATGACTGCAGCATTTGAGCCTACCCAGCAGCCGTCCGCCCAGGACACAGCAAACACGCAGGCGGCCGCCCTGGAGCTCGAGTGGGCCGCCAACCCGCGCTGGGAAGGTGTGGCCCGGGACTACAAGGCCTCCGACGTCGTCCGCCTCCGCGGCCGTGTCTCCGAAGAGCACACTCTTGCCCGCCGCGGTTCGGAGAAGCTCTGGAAGCAGCTCACCGAGGAGCACAAGACCGGAGGTTACACCAACGCCCTGGGCGCCCTGACCGGAAACCAGGCCGTGCAGCAGGTCAAGGCCGGACTCCGCGCCATTTATCTCTCAGGCTGGCAGGTTGCCGCCGACGCCAACAACTCCGGCCACACCTACCCGGACCAGTCGCTGTACCCGGCCAACTCGGTCCCCACCGTGGTCCGCCGGATCAACAACGCCCTGCTGCGCGCTGACCAGATCGAATTCGCGGAGGGCATTCAGACCGTTGAGGACTGGATGGTTCCGATCGTCGCCGATGCCGAGGCCGGCTTCGGCGGGCCGCTGAACGCCTACGAGCTCATGAAATCCATGATCCAGGCCGGCGCCTCGGGTGTGCACTGGGAAGACCAGTTGGCCTCGGAGAAGAAGTGCGGCCACCTCGGCGGCAAGGTCCTGATCCCCACCCAGCAGCACGTCCGCACCCTGAATGCCGCCCGCTTGGCAGCCGACGTCGCCGGCACGCCCTCGGTGGTCATCGCCCGCACCGACGCCGAGGCAGCAACCCTGATCACCTCCGACGTCGATGAGCGGGACCAGGAATTTATCCTCCGCGAAGGGGGCCAGCCGGTTCGTACCGCGGAGGGCTTCTACAAGGTCCGCAACGGCATCGAACCCTGCATCGCCCGAGCTAAGGCCTACGCCCCCTACTCCGACCTGATCTGGATGGAAACCGGCACCCCGGACCTGGAACTGGCCCGCAAGTTCGCCGAAGCCGTCAAGGCCGAGTTCCCGGACCAGATGCTCTCCTACAACTGCTCACCGTCGTTCAACTGGCGCAAGCACCTGGACGACGCCACCATCGCCAAGTTCCAGCGTGAACTCGGCGCCATGGGCTTCACGTTCCAGTTCATCACCCTGGCCGGATTCCACGCCCTGAACTACTCGATGTTCGACCTCGCCCACGGCTACGCCCGGGAAGGCATGAGCGCCTACGTCGAGCTCCAGGAAAAGGAATTCGCCTCCGAATCCCGCGGCTACACCGCAACCAAGCACCAGCGCGAAGTCGGAACCGGCTACTTCGACGACATCGCTACTGCGCTCAACCCGAACGCCTCCACCCTCGCATTGGTCGGATCGACCGAAGAGGGCCAGTTCCACTAAMTAAFEPTQQPSAQDTANTQAAALELEWAANPRWEGVARDYKASDVVRLRGRVSEEHTLARRGSEKLWKQLTEEHKTGGYTNALGALTGNQAVQQVKAGLRAIYLSGWQVAADANNSGHTYPDQSLYPANSVPTVVRRINNALLRADQIEFAEGIQTVEDWMVPIVADAEAGFGGPLNAYELMKSMIQAGASGVHWEDQLASEKKCGHLGGKVLIPTQQHVRTLNAARLAADVAGTPSVVIARTDAEAATLITSDVDERDQEFILREGGQPVRTAEGFYKVRNGIEPCIARAKAYAPYSDLIWMETGTPDLELARKFAEAVKAEFPDQMLSYNCSPSFNWRKHLDDATIAKFQRELGAMGFTFQFITLAGFHALNYSMFDLAHGYAREGMSAYVELQEKEFASESRGYTATKHQREVGTGYFDDIATALNPNASTLALVGSTEEGQFHPGPT0001550_1059DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637NANA
D1-29_007511515hypothetical proteinATGCACTTCTTCGCGTATCCTCAAGAAATGTCGCCTTCAAGCTGGAACCGCAAAGCCGCCCCGCCGCCGTCGAGCACTGCCGCCCCGGAACTGGATGTGATCAGCCTTGGCCGGCGGGTCCGTCACCTGCGCAAGGCCGCGGGCCTGACGCTGGATGACTTGAGCGCCGCCGTCGGAACCGCTCCCAGCCAACTCAGCCTGATTGAAAACGGCAAACGGGAGCCCAAACTGGGACTTCTTCAGCAACTCGCCGCCGCCCTGAATGTTGGCATTGACCAGCTCCTCGGCGCGGACCCGCCTAACCGCAGGGCAGCGCTGGAAATCGAGCTGGAACGGTACCAGCGAAGCCCTATTTACGAATCGCTGAACCTGCCGAAAATCCGCATCAGCTCACGGCTTCCGATGGATGTGCTCGAGTCGATGGTGGGCCTGCAGCATGAGCTGGAACGCAAGCTGAACGAGCAGATCGCCACCCCGGAGGAGGCCCGCCGCGCCAACGGTGAGCTGAGGGCCATGATGCGGAAGCGGAACAACTACTTTCCCGAGTATGAGGCGGAGGCCCAGAAGGTGCTGGCGACCGTCGGGCACACCACCGGTCCGCTGTCCCAGCACGTGATCGCGGACATCGCCGCGCACCTCGGATTCAGCCTCCATCATGTGGGCGATTTGCCGCATTCAACGCGTTCGGTGACCGATCTTAAGAATCACAGAATTTATCTCACGCAGAACCAGCGGACTGACCACGACCCCCGTTCGGTGCTGCTGCAGGCCCTGGGTCACTACGTCCTGGGCCACCAAACGCCCAAAAACTATGGTGATTTCCTGATGCAGCGGGTGGCCACCAATTACTTTGCCGCGGCGCTGATGCTCCCGGAGAAGGCCACGGTGGAGTTTCTGCAGAAGGCGAAGCAGGCCAAGGAAATTGCCGTCGAGGACATCCGTGATGCCTTTGCCGTGTCCTACGAGACGGCCGCGCACCGGTTCACCAACCTCGCCACCCAGCACCTGGACATCCGTACGCACTTCCAGAAGACACACCAGAGCGGCATCATCTACAAGGCCTATGAGAACGACGGCGTGACGTTCCCGCAGGACCACACCGGCGCCATTGAGGGCCAGCCGTCCTGCAAGCAGTGGACGTCACGGGTGGTATTCGATGTGCCGGACAAGTTCCGGGCGTACAACCAATACACGGACACTCCGGCGGGGACTTACTGGTGCACCGCCAGGACCGAGCGCTCGGCCAACGGCGAATTCTCGCTGTCGGTGGGGGTGCCTTACGCCCATGTGAAATGGTTCCGCGGCCGGGACACCACGGAGCGGTCCAAGTCAACGTGCCCGGACGAGAGCTGCTGCAAGCGTCCTCCTGCTTCGCTGGCCTCCGAATGGGCAGGCAACGCGTGGCCCTCGGCGCGGGCACACTCGCACCTGCTCGCCGCCATGCCGCCGGGCGCGTTCCCCGGCGTGGACGAGACTGAGGTCTACAGCTTCCTGCAGGCGCACTCAGGGAACTAAMHFFAYPQEMSPSSWNRKAAPPPSSTAAPELDVISLGRRVRHLRKAAGLTLDDLSAAVGTAPSQLSLIENGKREPKLGLLQQLAAALNVGIDQLLGADPPNRRAALEIELERYQRSPIYESLNLPKIRISSRLPMDVLESMVGLQHELERKLNEQIATPEEARRANGELRAMMRKRNNYFPEYEAEAQKVLATVGHTTGPLSQHVIADIAAHLGFSLHHVGDLPHSTRSVTDLKNHRIYLTQNQRTDHDPRSVLLQALGHYVLGHQTPKNYGDFLMQRVATNYFAAALMLPEKATVEFLQKAKQAKEIAVEDIRDAFAVSYETAAHRFTNLATQHLDIRTHFQKTHQSGIIYKAYENDGVTFPQDHTGAIEGQPSCKQWTSRVVFDVPDKFRAYNQYTDTPAGTYWCTARTERSANGEFSLSVGVPYAHVKWFRGRDTTERSKSTCPDESCCKRPPASLASEWAGNAWPSARAHSHLLAAMPPGAFPGVDETEVYSFLQAHSGNNANANANANA
D1-29_007521359hypothetical proteinATGAGCAACGATGCCATGGACAGCACCACCCCAAGGAGCAAACTGGTGATGGCAGCAAACCAGCAGGTTCCGTCCGGAGTCAGCCACGCTGACCGTATTGACGACGACGGCGGCCGCCCCGCTAAATGGCGCATCATCGGGCCCGGTCTGGTGGTTGCAGCCACCGGCGTGGGCGCCGCTGACATGGTGGCCACCCTGGTGGCCGGTTCCCGGTACGGCTACGGCCTGTTCTGGGCCGTCATTGTTGGTGTGGTCCTGAAGATCATCCTTGTTGAAGGGGCCGGCCGGTACACATTGGCAACCGGAAAGACGATCTTTGAGGGATGGCGTTCCCTCGGAAAATGGACCACCTGGTACTTCGGGCCCTACATCATGATCTGGGGCTTCGTCTATGGAGCCACGGCCATGTCGTCGGCGGCATTGCCGCTGGCGGCCGTGTTCCCCATCCTGCCCCTCTGGGCATGGGCCATCCTGATGGGCCTGGCCGGTTTCGCGATGGTGTGGTGGGGCAAATACGCCACCTTCGAGAAGATTACCGCCGCGCTGGTGGGACTGATGTTCGTGACTGTGGTGGGCCTGGCCATCATTGCCGCTCCGAACATCCCGGAGATGCTCACGGGGCTGATTCCCATGATCCCGTCAACCGACGGCGCAATCTTCTACACGCTCGCCTTGGCTGGCGGAGTGGGCGGCACAATAACGCTCGCCGCGTACGGGTACTGGCTGCGCGAGAAGGGCTGGTACACGCCGAAGTGGATGAAGGTTATGCGGATCGACAACTCCATGGCCTACGTGATGACCGGTGTCTTCGTGGTTGCCATGCTCATTGTGGGCGCCGAGGTAGTCCGCTCCGCAGGTGTTTCCCTCAGTGCGAGCGACGAAGGCCTGCTGGATCTTTATGGCGTCCTTAAAGCGGAGTATGGCGATGTCGTTGGTACCGGGTTCCTCGTCGGCTTCTGGGCCGCTTCCTTTTCCTCAATCATCGGTGTTTGGAACGGTGTCTCCTTGATGTTCGCCGATTTCTGGGGCAATATGCGGGGCAAGGAATCAGGCCACCCCGATACCCGCGTGGGTGGAAAATACTTCAAGTTCTACATCCTGTGGCTCACGTTCCCGCCCATGATCCTCTTCGCTCTGGGCCAGCCCATCGGCCTTATCCTGGCCTATGGCGCTCTGGGTTCGCTGTTTATGCCGTTCCTGGCACTGACACTGCTGGGCCTGCTCAACGGCAAGCGGATCCCCAGGGTCTGGGCCAACAAGCTGCCCACCAACATCGCGTTGGGATGCTGCGCACTGCTATTCGTCATCCTGGGCATCCGGCAGTTCTGGACTTCCCTCTCGCCGCTTTTCGGCGCCTAGMSNDAMDSTTPRSKLVMAANQQVPSGVSHADRIDDDGGRPAKWRIIGPGLVVAATGVGAADMVATLVAGSRYGYGLFWAVIVGVVLKIILVEGAGRYTLATGKTIFEGWRSLGKWTTWYFGPYIMIWGFVYGATAMSSAALPLAAVFPILPLWAWAILMGLAGFAMVWWGKYATFEKITAALVGLMFVTVVGLAIIAAPNIPEMLTGLIPMIPSTDGAIFYTLALAGGVGGTITLAAYGYWLREKGWYTPKWMKVMRIDNSMAYVMTGVFVVAMLIVGAEVVRSAGVSLSASDEGLLDLYGVLKAEYGDVVGTGFLVGFWAASFSSIIGVWNGVSLMFADFWGNMRGKESGHPDTRVGGKYFKFYILWLTFPPMILFALGQPIGLILAYGALGSLFMPFLALTLLGLLNGKRIPRVWANKLPTNIALGCCALLFVILGIRQFWTSLSPLFGANANANANANA
D1-29_007531023hypothetical proteinATGAGTGAGGCACGCGCCCTCCCCTTTCTCCCCGCGCGGCGAACAGCCCTCAAAGCCGGGCTGGCAGCCGGACTGACCGGCCTGCTGCTGCCGGCACTCACGTCGTGCACATCGGAAAACCGGCCCGGGACAGTCACGGTAGCCGGCGGTGAGCAGGGCGGCTTCTACCTTGAGTTTTCAACCCTGCTCGCGGAAGCCCTCCAGCGCCACGGTGTGGCCCGCAACGCCACGGCACTGACTACCGGCGGCAGTCTGGACAACCTCGAGCATCTGCTGAGCGGCAAAGCCACCTTCGCCGTCGCACTCGCTGACGCCTCGGTCCAGCAGGCAGCGGCGGCAACCGGATCCGGCAACGGAATTGCCGCCGTCGGCAAGGTGTATGAAAACTATGTCCACTGCGTCGTGCGGCGGGACAGAGGCATCCGAACGTTCGTTGAACTGGCCGGCAGGACAGTCGCCGTGGGCCAGCCCGGCTCAGGGACGTCACTGACTACTCCCCGCCTCATCGAAGCCGCGGGGCTGACCCCCACTGCCGTTGGATCCGGCGCCGTGGGTCCGGCCGGCGGCCCGATCACGGTGCTTAACCTGGGGCTGAATGACGGGATTGCCGCACTCAGGGCAGGTTCCGTGGATGCGTTGTTCTGGTCCGGCGGGGTGCCCACGGCCGCCATCGCCGCTGCCCATCACGACGTGGGCTTGGCATTCCTCGATCTCTCCGCGCTGCTCCCGGCGCTGCGTTCCAGATACGGCCCCTATTACGACCGTGTGCTGATTCCTGAGGGCAGCTATGAGGGGACGCCGGCCGTGTGGACTGTGGGTGTGGCCAACCTTCTCCTGTGCCGGGATGACCTGGACGCCGGCACGGTCAGGAGGACCGTGGAACTGCTCGTGGGCCATGGCCAGGAACTCGTTCCGCGGTCCAGCCTGGGGGTTCAGTTCCTCAGCGCCGAATCACTCATTAACACAGCCGGCCTGCCGCTGCACCCCGCAGCCGCGGCCGCCTACAAGGCGCTGCACGGCTGAMSEARALPFLPARRTALKAGLAAGLTGLLLPALTSCTSENRPGTVTVAGGEQGGFYLEFSTLLAEALQRHGVARNATALTTGGSLDNLEHLLSGKATFAVALADASVQQAAAATGSGNGIAAVGKVYENYVHCVVRRDRGIRTFVELAGRTVAVGQPGSGTSLTTPRLIEAAGLTPTAVGSGAVGPAGGPITVLNLGLNDGIAALRAGSVDALFWSGGVPTAAIAAAHHDVGLAFLDLSALLPALRSRYGPYYDRVLIPEGSYEGTPAVWTVGVANLLLCRDDLDAGTVRRTVELLVGHGQELVPRSSLGVQFLSAESLINTAGLPLHPAAAAAYKALHGNANANANANA
D1-29_007541437sasA_2Adaptive-response sensory-kinase SasAATGAAGCTGCGGGTCCTGGGCGTCCTGAGCCTGCTGTCGGCACTCCTGGTCATCATTGTCTCCACTGTCATCCTGACCTCGGCCAGCCGGGAACTCACGCAGGAACTCCAAATCAACCGGGTCGCAGCCCTGAACAGGTTCGCCCAAGTGGCCTTCGATGCCGCGGGTGACGGCGACTCAAGTCAGCTGCAACGGGAGATGGACAGGTACTCGGAGCTCTACGGCGAGGGAATCCTGGTCCGCCTCCAAAATGCCACGTTGCGTTCCGGTGGCCTGAGCGAAGACAGGGCAGACGTCCGGGACGCCATCGCCAGCGCGAACCTGAACCTCAGCGACACCACCCTGGCCCCGCTTCAACCGTTCGGGACCGGCTCCGAGGTGATCTCCCGGTCCTTCGGAAGCGCCAGCCAGGTCCTGGGTGAGGCCGTTGTCGAAGTCAACCTGGACGCGGCCCGCCAGAAACTGCGGGACCGGTGGCTCGCCGTCGTGCTGGCGGCGTCGGCGCTCGGAGCGCTGCTCCTGTGGGGCGCAGCCCGCGTGACCGGATGGGTGTTGCGGCCTGTTCATCGCCTGAATTCGGCGGTGACTGAACTCGAAGCAACGGGACGGACAGCCCAGCTTCCGGACGACGGGCCTCCTGAGCTGAAGAAGCTGAGCCGCTCCTTCACCGCCATGGCGCGGACTGTCAGCGACAGTATTGCCTCGCAGCGGCAGCTGATTGCCGACACGTCACACCAGTTGCGCAATCCCGTGGGAGCCCTGCGGCTGAGGATCGATCTGCTCCAGCTGGAAGTGGATTCGGACCGTGAAAAGGCGGCCGCAGCGGGAGTTGTTGCAGAGCTGGAACGCGTCGAGGAGATCCTGGACGGCGTGCTCAGGCTGGCGGCCGCGGAACACCGGGCGTCGGAGGATTCTGCCAGGGGCACGCTGGGCCCGGCTTACGGCCGGAACGGGACGCTTATCGACCCCTTCCCGATCGTGGCGGACGAGGTGGAGCGGGCAATGCCTGCGGCGCGGCGGGCGGGTGCGGCGGTGGTGCTGGAAGAGCCGCCCAACTCGCCGGTGCAATTGGCCTGCAACCCCGAGGACCTGGCTCAAATGGTGGGTGAACTCCTGAACAACGCCATCAAATATGCCGACGGCGCCCGCGTCTCTGTTTCCGTCCGCGTCAGCTCTGGCGGCGTAATCATCGGGGTGTCCGACGACGGTCCCGGCCTGTCCGCCGACGAAAGGGCCGCCGCCACCACGCGGTTCTGGCGCTCGCCACGGCACCGGCTGGTCAGCGGCACCGGCCTGGGCATGACCATCGTGGCCAAACTCGCGGCGGCCAACGGCGGCCGGCTGTTCCTAGCCGAACGGTCACCGCATGGCCTGGACGCCCGCCTCGACTTTCCCCACCCCTCAGCGCGGGACGGCCAGGTGGGTCCGGATGAGTGAMKLRVLGVLSLLSALLVIIVSTVILTSASRELTQELQINRVAALNRFAQVAFDAAGDGDSSQLQREMDRYSELYGEGILVRLQNATLRSGGLSEDRADVRDAIASANLNLSDTTLAPLQPFGTGSEVISRSFGSASQVLGEAVVEVNLDAARQKLRDRWLAVVLAASALGALLLWGAARVTGWVLRPVHRLNSAVTELEATGRTAQLPDDGPPELKKLSRSFTAMARTVSDSIASQRQLIADTSHQLRNPVGALRLRIDLLQLEVDSDREKAAAAGVVAELERVEEILDGVLRLAAAEHRASEDSARGTLGPAYGRNGTLIDPFPIVADEVERAMPAARRAGAAVVLEEPPNSPVQLACNPEDLAQMVGELLNNAIKYADGARVSVSVRVSSGGVIIGVSDDGPGLSADERAAATTRFWRSPRHRLVSGTGLGMTIVAKLAAANGGRLFLAERSPHGLDARLDFPHPSARDGQVGPDENANANANANA
D1-29_00755663regX3_1COG0745Sensory transduction protein regX3GTGCTCATCGTCGAGGACGACGACGCCATGGCGTCGGCACTTGCCGCAGCCGTCGGGTCCGCCGGCCACAAGGCAACCAGGGTGTCCCGGGGAGCTGACGCGCTGCTGGCCCACCGGCGGTTCGAGGTCATCCTCCTGGATCTTGGGCTCCCGGACATCGATGGCCTGGACGTACTCCGCAAGCTCCGCCAGGTCACTCACTGCCCGATTCTGATCCTGACTGCCCGCGACGACGAGCGGAGCGTGGTGCTGGGACTGCGGTCCGGAGCGGACGATTACCTGGTCAAGCCGGTGAAGCTCGTTGAGTTGCTGGCCCGGATCGAAGCTGTCACCAGGCGTGCGTTCCGCCAAGGCGCAGCGCCCCCACAAAGCATTGTGCTGGGAGACCTGGAGGTGGACGTTCACCGGCGCGTGGCCGCCCTCGGTTCACAGGTTCTGCCTCTGACGGCCACCGAGTTCGACCTGCTCGCGCTCCTGGCCCGCCATGCCGGATCAGTGGTCACCCGCGAACAGATCCTGGATGCGCTCTGGGGTGATGCTTTCCTTGCCTCCTCACGGTCCCTTGATGTGCACCTGACCGGGCTGCGGGCAAAGCTCCAGTTGCCCGGCTTTATCATCAACGTCCGTGGCGTGGGTTACCGGATCGAGGCGGATCCTGCATGAMLIVEDDDAMASALAAAVGSAGHKATRVSRGADALLAHRRFEVILLDLGLPDIDGLDVLRKLRQVTHCPILILTARDDERSVVLGLRSGADDYLVKPVKLVELLARIEAVTRRAFRQGAAPPQSIVLGDLEVDVHRRVAALGSQVLPLTATEFDLLALLARHAGSVVTREQILDALWGDAFLASSRSLDVHLTGLRAKLQLPGFIINVRGVGYRIEADPAPGPT0002675_571DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
D1-29_007561302hypothetical proteinATGGTCATCAGGGCTCAACTGCTTACACGCGTACTGGCATTGGGTGCGGTGGTGGCCCTGACGGCGTGTTCGTCGCCGGCGGTGGGCCTGGTGAAGGCTGACGGCGTTGAGCGTGTTTCGGTGGAACGTGCGGCTTTTGACGGTGAGCTGTCGGCGTTCAGGACCTCCGCCCTCAAACTCGGGAATGCCCTTCTGGCCGACGGCGGCGACGACGCGAACGGGAACGTGATCGCCTCGCCCGGAAGCCTGCTGATCGCCTTGGCCATGCTGCGCGCGGGGGCGTCGGGGGACGCAGCCGCTGAAATGGATGCACTATTGGGTCTTCCGGAAGCCAACCGGGATGAGGCCATGAACGCCCTCCTGGCCGAGCTCGAAAAGTTCGACGGCGACCCCGGGTCAGTGGATGAGGACAATCCACCGGCGGAACCCTTATTGCATGTGGCCAACGGACTATTCGTCCACGGGAGCGTCCCCACCGGGGAGCCGTATCTGCAGACGCTGGCAAAGCATTACGGGAGCGGCGTCTATCCGGTGGACTTCCGCGATAAGGCCGCCACCAGCCCGGCCATCGACGCGTGGGTAGATAAGAACACGGGTGGCCGAATCAAGAAGGCGCCGGCGGATTACGACGTCAACAACACCTTCAGCCTCCTGAATGCTGTCTATTTCGCGTCCGCGTGGGAGACGCCGTTCAGCCCCAATGCCACGTATGAGGCGCCCTTCACCACTGCAAATGCCGGCACGCTGAACGTTCCCATGATGCACAGCCTGCAGGACCTGGCCTATGCGGAAGGCGACGGGTGGCAGGCTGTCGACCTGCCGTACGGGGAAGGCTTCGTGATGCGGTTGGTGCTTCCCGCTGACGGCGGCGCCGCCCAGGGCACAGGCCAGAGTGGGGACCTTTTTGACCCTCTCCAACTCGCCGACATTGCAGGCTCCCTGGAGGCTGCCGCTGACGAAAGTGTTCAGCTCTCGCTGCCAAAGTGGGATCACAAAAGTGCTTTTGACCTGCGGCGGGTCTTTGAGCAATTCGGGCTCAGCTCAATGCTGAACACGACGCGTGACTTCGATGAGATCCAGCGGGGCATGACCATCACGCAGGCGGCGCAGGCGGCCAACATCACCGTGGCGGAGAAGGGGACCATTGCGGCCGCAGTGACTCAAATCAATGCCGAGGCTGTGAGCGGAAAGATGCCAGAGCCTGCGCGCATCCTCGAATTCAACCGGCCGTTCCAGTACCAGATCGTCCACGTTGAAACCGGACTGCCGCTCTTTATGGGCAAGGTAGCCGATCCGCGCTAGMVIRAQLLTRVLALGAVVALTACSSPAVGLVKADGVERVSVERAAFDGELSAFRTSALKLGNALLADGGDDANGNVIASPGSLLIALAMLRAGASGDAAAEMDALLGLPEANRDEAMNALLAELEKFDGDPGSVDEDNPPAEPLLHVANGLFVHGSVPTGEPYLQTLAKHYGSGVYPVDFRDKAATSPAIDAWVDKNTGGRIKKAPADYDVNNTFSLLNAVYFASAWETPFSPNATYEAPFTTANAGTLNVPMMHSLQDLAYAEGDGWQAVDLPYGEGFVMRLVLPADGGAAQGTGQSGDLFDPLQLADIAGSLEAAADESVQLSLPKWDHKSAFDLRRVFEQFGLSSMLNTTRDFDEIQRGMTITQAAQAANITVAEKGTIAAAVTQINAEAVSGKMPEPARILEFNRPFQYQIVHVETGLPLFMGKVADPRNANANANANA
D1-29_00757309hypothetical proteinATGTTGGAGAACACACTCAGCCCTGTATCAGCCGCCACCGCGGCCCAGTCAAGCACTCTTTCCTCAGGGCCGCCGGCTGCCCCTGGGGCTCCGTCAGTCCACGTCCGGGCCGTCATCACGTGGCTGGCCATCTTCCCGCTGGTGACCTTGGGCATGCTGGCGTCCGCGCCGTTGATGGAGGGGTGGCATCCCGTGCTGCGCGCCCTGGTCCTGACTCTTGCAGTGGTCCCGGTGGCCGTGTACCTGGTAGTACCGAGGTTCTTCGCCGCTTACGGCATCCTCGTGCGGCGCAGGCACTCCCGGCGCTGAMLENTLSPVSAATAAQSSTLSSGPPAAPGAPSVHVRAVITWLAIFPLVTLGMLASAPLMEGWHPVLRALVLTLAVVPVAVYLVVPRFFAAYGILVRRRHSRRNANANANANA
D1-29_00758633hypothetical proteinATGGCTTGGAACACAGAGCGCACCAAAGCATTGCTGCTGGCGGCTGCCACCGATGAATTCAGCGCCAACGGCTTGGCTGGTGCCCGGGTGGACCGGATCGCAGCTGCCGCAGGCGTGAACAAGGAGCGGATCTATCAGTACTTCGGTAAGAAGGATGAACTCTTTGACGCTGTGCTGGCGGCCGAACTGGTACGCGTGATGACGGATGTGCCCATTGAAGGGCGCGGTGCCGAGGCCTTTGGGGACTACGCAGGCCGGCTCTTCGACCGCCACACCACAGACGGCGCCCTGCCGCGGCTGCTGTTCTGGGAAGGGCTGGAACGCGGGCGCAATACGGTGGACCGGGTGACGCGGGCAGACCATTGCGCCACCAAGGTGGATCAGGTCATGAAGGTCCTGCCCGGCGTCGACCGGACGGATGCCGCCGATCTGGTGATCACGGTGGTGACCCTCTGCGACGGCTGGACCGTCCTTCCCCAGCTCGATGCGCTCCTTGCCGGCGATGCGCCGGACCGGGCGAACCGCCGTCGGGCCTTCATCGTGCGGACCGCAACGCTCATGGCGGAAACCCTGCTGGAGGAGTCGCCGCTGGGCGCTTCGCAACTGGGGGCCGCGTCAGTCGCACAGGCTTAGMAWNTERTKALLLAAATDEFSANGLAGARVDRIAAAAGVNKERIYQYFGKKDELFDAVLAAELVRVMTDVPIEGRGAEAFGDYAGRLFDRHTTDGALPRLLFWEGLERGRNTVDRVTRADHCATKVDQVMKVLPGVDRTDAADLVITVVTLCDGWTVLPQLDALLAGDAPDRANRRRAFIVRTATLMAETLLEESPLGASQLGAASVAQANANANANANA
D1-29_00759780queuosine precursor transporterATGCCCTCCGCATCCGGCCCTTCCACGCCAAGCCCAGACGCCCTGCCCCTTACAGGCCAGTCAGGCAGCGCCGCCAGGTTTGCCTCTATCGGCTCGCCCTACTTCGGCATCCTGCTGGCCTTCATGGCCGTGGTTCTCATCCTGTCGAATATCGGCGCTTCCAAAGGTGTTGCCATCGGGCCGGTCATCACAGACGGCGGCTTTTTCCTCTTTCCGCTGGCGTACATCCTTGGCGATGTGATCAGTGAGGTTTACGGGTTCCGGGTTGCACGCAAAGCTATTCTTTGCACGTTTGCGCTGTCCGTCTTCGCCTCGCTCAGCTACTGGGTGATCATTGCGTTGCCGGGTTTCGACGACGAGTTTGGAACGTCCAAGCAGGCGGCACTGGAAGGTGCGTTGGGACCGGTTCCACAGATCGTGCTGGCCTCGCTGCTGGCGTTCCTGGCAGGCCAGACCATCAACTCGTGGATCCTGGTCAGGATGAAGGCCCGATCGGGGGAGAAGTCCCTGTGGGCGCGGCTCATGGGGTCCTCGGGTGCCGGCGAATTTGTGGACACGCTGATCTTCTGCAGCATCGCCGCGTCTGTCATCGGCATCACCGACTTTGGCACGTTCGTGAACTACGTGGTGGTGGGCTTCGTGTACAAGACCCTGGTGGAGTTCCTCCTGGTGCCGGTGACGTCACTGGTGATCGGCTGGATCAAGAAGCGCGAGCCGAGCTACGGGGCTGTACAGGGCAGCAGCTCAGGAGATCGCGGGAACGTTGCGGGATCGATATAGMPSASGPSTPSPDALPLTGQSGSAARFASIGSPYFGILLAFMAVVLILSNIGASKGVAIGPVITDGGFFLFPLAYILGDVISEVYGFRVARKAILCTFALSVFASLSYWVIIALPGFDDEFGTSKQAALEGALGPVPQIVLASLLAFLAGQTINSWILVRMKARSGEKSLWARLMGSSGAGEFVDTLIFCSIAASVIGITDFGTFVNYVVVGFVYKTLVEFLLVPVTSLVIGWIKKREPSYGAVQGSSSGDRGNVAGSINANANANANA
D1-29_00760309hypothetical proteinATGACCGACGGCGGCGGCCGGGTATCCCTTTACGTTGCGGTCCCTTCCACGCCCGCCGAGGACGAACTCGAAGCCGCCGCGGCCCTGGTGGCGGGGGCGGATCTCGCCCTGATTCACCTGAGCGAGCTTGGCCTGCTCTTGCTGGAACGCGAAGAGGTCCGGCATACGCCGCTGTGGGTGGACCTTCACGACTCCGACGGGTCCTCCGCGGAGGGGCGTGACCCGGACCCTGCCGGCAAGGCAAATTCCCCTTATTCAGCCAGGCTCCGCGCGTGCAGCTCAAGGTCGAGGCTGTTTTTCTCGACGTAGMTDGGGRVSLYVAVPSTPAEDELEAAAALVAGADLALIHLSELGLLLLEREEVRHTPLWVDLHDSDGSSAEGRDPDPAGKANSPYSARLRACSSRSRLFFSTNANANANANA
D1-29_007611248nagKN-acetyl-D-glucosamine kinaseATGTCTTCCGCGATCTCCGCACCGGAGCCTCAGCTGCTGCGTAGAGTGAGCGCCAGCACTGTCCTTGACTTCATGCGGGCTTCAGGTGCCGTGACGGTTACCGACATCATGGAGGCAACAGGGCTCGCCCGCGCCACTGCCATATCGGTGTGCGAGGAACTCATTGAACGGGGCTGGATCAGGGAGCTGGAGAACCAGCGGGCCTTTGGCCAATACCAGAAAGGCCGCCCGGCCCGCAGATTTGAACTCAATGAAAGTGCCGGTTTCGTTCTGGGCGTGGACGTGGGAATCGCAAAGGTCACTGCGGTGGTGTCAAATCTCCGAGGGGAAACTGTCGGACGATCCAGCCAGCCATTTCCTGGCGTGCAGATCACCGCCGAGGATCGCATTCCCGGCGCCCAGATTACGGCCGAGGAACGCATTGCCATCATCGATCAGGCGGCCATGGCGGCCCTTCAAGATGCAGGTGCTTCTGCCGACATGGTGCTCGCCATGACCGTCGGCATAGCAGCACCCGTTGACCGAAACGGTGAAGTTTTAGCCACCCAACATTTCTGGGAGCTGTTCAACCTGGACATCAAGTCTGCTTTCAACAATCTCCACGGCTGGACGGTGCTGCTGGAAAACGATGCAAACCTGGCAGCTTTGGGCGAACGCTGGCACGGCGCGGCTTCCGGTGTAGACGACGTCGTGGTGATCCTCTCCAGCGAACGCTTCGGTTCGGGAGTCATCGACGGCGGGAGGCTCCTCCATGGCAGTCATGGCGGCGCCGGAGAGCTGGCTTTCCTGAAGCAGATCGAAGGCGTGGGCGACACCTTCGGTATCGCCCTCATGGCCAGGACCTGGGCCGCCGAAGCCCTTGCCGGCAAAGCCAAGACATCCCTCCGAAAGCATCCCCATGAGGAAATCGATGCGGAACATGTATTCGCCGCCGCCGCAGACGGGGACCGCCTGGCGCAAAGGATTTTGGACCGCCTCGCCGACAGAATGGCCAGAGTTATCGGAGCCGTAGCCACCATCTTCAACCCCGAACTTGTCGTCATTGGCGGCGGCGTGGCAAAGTCCGCCGGAGTACTTCTGGAACCCATCGCGGAACGGCTGGACGAATTTACGGCCACGCCGCCCCGGATCGCGGTTTCCCCCCTGGGCGAGTCAATAGTCGCAGTCGGAGCAATAAGAAGCGCTCTGGACTACGTCGAGAAAAACAGCCTCGACCTTGAGCTGCACGCGCGGAGCCTGGCTGAATAAMSSAISAPEPQLLRRVSASTVLDFMRASGAVTVTDIMEATGLARATAISVCEELIERGWIRELENQRAFGQYQKGRPARRFELNESAGFVLGVDVGIAKVTAVVSNLRGETVGRSSQPFPGVQITAEDRIPGAQITAEERIAIIDQAAMAALQDAGASADMVLAMTVGIAAPVDRNGEVLATQHFWELFNLDIKSAFNNLHGWTVLLENDANLAALGERWHGAASGVDDVVVILSSERFGSGVIDGGRLLHGSHGGAGELAFLKQIEGVGDTFGIALMARTWAAEALAGKAKTSLRKHPHEEIDAEHVFAAAADGDRLAQRILDRLADRMARVIGAVATIFNPELVVIGGGVAKSAGVLLEPIAERLDEFTATPPRIAVSPLGESIVAVGAIRSALDYVEKNSLDLELHARSLAENANANANANA
D1-29_00762393hypothetical proteinATGCAACAGGTTATTCACGTCTCACCCGAGACCAGCTCGGAAAGAGATTTACGGCTCAATGCAGCAATCGATGTGGCTATGAGCATTGCCATCAAGGATCGCGCCGGGGGGATCCTGATTACCCGGAACGCTCCTGCTATCTTCACCGTTGCCATCACCCCTGAAGTCCCTTACGGGCTAGTAAGAGAAGCGGACGGTACAACTGCACGCGATCAACTCCAATCGTTCGGCCAGGAAGAGGCGGGCGGCGTAAAGAAGGAAGACAGCGCCTCCGAATCAGGGGACGGCCCTTGGGACAGGCTGTGGGAACCGGCTGCCCGCCACTACAGGGACATGGAACACCTTCCGCAAGCCACCAAGGAAGGCCGGTTGCATCCTGCCGCCGATGGATGAMQQVIHVSPETSSERDLRLNAAIDVAMSIAIKDRAGGILITRNAPAIFTVAITPEVPYGLVREADGTTARDQLQSFGQEEAGGVKKEDSASESGDGPWDRLWEPAARHYRDMEHLPQATKEGRLHPAADGNANANANANA
D1-29_007631317hypothetical proteinATGTCTAACTCTCTCTTCTCACGTTCTGTTGACCGGCGAGCTGTGCTGCGCGGCGGCCTGTTTGGCGCACTCGGCCTGGCGGCCGCTCCAGCGGTGGCCGCTTGCGGCGGCGGTTCTGGCTCCAGCGCCGGAGGCAGTGTTTCCTGGGCGGCCTGGGCCAACCCGGGGGAGGACGAACGCTATAAGCAGTTCGCCACTGAGCTCGGCAAGAAGATTGACGCCAAGGTCAGCTTCCAGGCCGTCGTCGGCGACTACCAGGCCAAGCTGCTCTCGCAGCTCGCAGGGGGCTCCGCCCCCGATGCTTTCTATGTCGGTGATGCCGATATGGCCAAGATGATTGACGCGAAGCAGATTACGGACCTCAGCGACTACCTCAAGGGTGGTACGTCTCCGGTCACGCTGGAGGACTTCCCGGAGGATCTCTACCAGTGGTGCAAACCGGCAGATGGCAGCGCAGGGATTTTCGGGATTCCGGTTGACTGCAATCCCTCAGTGCTCTGGTTCAACAAGGACGTTCTCTCTGCGGCAGGAGTTTCCAAGGACCCCGCCCAGCTTTTCGAGGCAGGCGCTTGGACGCCGGACGCGCTGGAGGATCTGCTGGGCAAGGTTCGAGCCTCCGGCAAGAAGGGCCTGATCCTGTCCAACTGGTGGTTCAACTGGTGCACCGCCACCACCATGTTCGGCGGTCAATTGACCGACGAATCCGGCAAGCTGGTTCTTGCCGAGGACCCCAAGGCCCAGGAAGGACTGGAATGGCTGCTTGAGCAGTTCAGGTCCGGCAACATCACCTATGCAGGTTCCCTGCCGAAGGGCCAAAGCGGAGACGCCCTTTTCCTGGCCGGGCAGCTTGCTCTGAACAATGTCGGCCGTTGGGCGCTCCCGACGCTAAAAGACGTCAAGTTCGGTTATGACATCACCCCTGTCCCCTCGCCTTCGGGCAAGGACATTCTTCCTGCGCCGGTCGCTACGGCGGCCATAGCGCTCAACGCCAAGGCCAAGAACCCGGAGAAGGCCCGCGAGCTGATTGGCAACTATGTCAGCCGTGACGGGCAGAAGTTCCGGCTCTCCGGAGGTGGTAACGCCGTGCCGTCCATCAAAGGCCTGGACGAGGTCGCCACCGAGGGCGGCGTTCCGGCTCACGGGCAGTGGTTCAACGAGGTCGTGGCCAAGGGCTACGCCATTCCGCGCGCGTTCGTCGGCAATCCCAAAACCGCTACCGAGCTGCCCCTTCTGGTCGACAAACTTTTTAAGGACTCCTCGACGACAGCGGCGTCGTTCAGCTCCGCCGTCACCCAGCTGGTGGAGTCGACCAGGTGAMSNSLFSRSVDRRAVLRGGLFGALGLAAAPAVAACGGGSGSSAGGSVSWAAWANPGEDERYKQFATELGKKIDAKVSFQAVVGDYQAKLLSQLAGGSAPDAFYVGDADMAKMIDAKQITDLSDYLKGGTSPVTLEDFPEDLYQWCKPADGSAGIFGIPVDCNPSVLWFNKDVLSAAGVSKDPAQLFEAGAWTPDALEDLLGKVRASGKKGLILSNWWFNWCTATTMFGGQLTDESGKLVLAEDPKAQEGLEWLLEQFRSGNITYAGSLPKGQSGDALFLAGQLALNNVGRWALPTLKDVKFGYDITPVPSPSGKDILPAPVATAAIALNAKAKNPEKARELIGNYVSRDGQKFRLSGGGNAVPSIKGLDEVATEGGVPAHGQWFNEVVAKGYAIPRAFVGNPKTATELPLLVDKLFKDSSTTAASFSSAVTQLVESTRPGPT0016545_2650DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_00764942lacF_6Lactose transport system permease protein LacFGTGAGCACGCTGACCGCAACCGCCACGCCGGCACGGGCCGCCGAGCCCCCTTCCCGGGGCCCATCCCGGCGCCGTCGCAAGGACACTATCGCCGCGCTGGTCTTCCTGTCGCCGCAACTCGTGGGGCTGGCCGCCTTCATGATCGGACCGCTGGTCTTCGCCCTGGTCTTGGCTTTCAGTAATTGGGATGGTTTCGGCGCGGCGACATTTGCCGGATTCGCTAACTTCACAGAGGTACTGTCCAACCCGCGGATCCAGCGCTCGGTCCTGAATACTGTGTGGTTCACGGTCCTGCAGGTGCCTGGCTTGATGATTTCAAGCTTCGTCTTTGCGCTGCTGATGCAGAAGGCGGGCAAGATGACGTCGGTCTACCGGCTTTGCTTCGTGGCACCAGTGGTGACCTCTTCGGTGGCGGTCGCTGCAATCTGGCTGTGGTTGTTCAATCCTGAAATCAGCCCGGTCAGCAGTGCTTTGGGCAGCATCGGTGTCCAAGCCCCGGACTGGCTGCAGGACCCCAACTTCGTGATCCCGGCCTTCACCATCGTGTCGATCTGGCAGGGCTTGGGCTACCAGCTGGTGATGTTCATGGCCGGACTGCAGAGCATCGGCTCTTCCTATTTGGAAGCTGCAGAACTGGACGGCTGTACCGGATGGCAGAAGCTGGTTCACGTCACCGTTCCGCTGCTGTCTCCCACGATCCTGTTTCTCTCGATCACCTCGATCATTGGCTCCTTCCAGATCTTCGACTACATCTACGTCTTCATGGACAGCAATGCTCCTGAAGCAGCCCGCACGATCGTTTACGAAATCGTCCAAATCGCCTTCCGCGAATTCAATTTCGGCCAGGCCTCGGCCCTGGCGTTCCTGCTCCTGCTGTCCCTGCTCGGTGTGACCGCGCTGCAGCTGGCAGCTCAGAAGAGATGGGTCCACTACGCAGAATGAMSTLTATATPARAAEPPSRGPSRRRRKDTIAALVFLSPQLVGLAAFMIGPLVFALVLAFSNWDGFGAATFAGFANFTEVLSNPRIQRSVLNTVWFTVLQVPGLMISSFVFALLMQKAGKMTSVYRLCFVAPVVTSSVAVAAIWLWLFNPEISPVSSALGSIGVQAPDWLQDPNFVIPAFTIVSIWQGLGYQLVMFMAGLQSIGSSYLEAAELDGCTGWQKLVHVTVPLLSPTILFLSITSIIGSFQIFDYIYVFMDSNAPEAARTIVYEIVQIAFREFNFGQASALAFLLLLSLLGVTALQLAAQKRWVHYAEPGPT0016535_2554DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_00765897lacG_2Lactose transport system permease protein LacGATGAGTACTTCCACCGCTACCCGAAACAACCACCGCAGCCTGAGCCAGCCAGGGAAGGCCAGGCGGATCCACCCCCAGCGTCTTGCCGGCCGAACCATCCTGCACGCCGCGCTGGCTGTCTGTGCAGTCCTGATGGCGCTGCCATTCCTCTGGATGCTGCTGTCATCGTTCAAACCGCTGACCGAGATCTTCGCGCACCCCCCGGCCTTGTTCCCGCTCGAATGGACCACAGAGGGTTACGAAAAAGCCTTCACAGGCGCGGACTTCGTCCGCGGATTCTGGAACAGCACCTACATTGCGGTAACCGTCACCGCCATCTCGCTGCTCACCTCATCCATGGCCGCCTACGCCTTCGCCAGGATTGAATTCCGTGGAAGCAAGCCCCTGTTCATGGTGTTCCTGGCAACCATGATGGTTCCTGCCCAGCTGACCATCATCCCGCTTTACATCATCATGGGAGGGCTGGGCTGGGTAGACACCCACGCGGCACTTATCGTCCCGGCCGCGCTCTTCAACGCTTTTGGCGTGTTTCTCATGCGCCAGTACGTCAAAGGCATCCCGAAGGAGCTGGAGGAGGCCGCGGAGCTGGACGGTGCCAGCCGCTTCCGGATCTTCACAACCATGATCCTGCCGCTGCTGCGCACACCCCTCACCGCGCTCGGCATCTTCACCTTCCTCGGACAGTGGAACAACTTCTTCGGACCGCTGATCTTCCTCAACAGCGACGCCAACTTCACACTCCCGCTGCTCGTGAACCAGTTCAAGGGCCAGTACGGCGCCGACTGGACTGCCCTCATGGCCGCCACCACCCTGGCTGCAGCACCACTGCTGATCCTGTTCGGAGTCGCCCAGCGCCAGATCGTCGACGGCATCGCCCTCTCCGGATCAAAATCCTAAMSTSTATRNNHRSLSQPGKARRIHPQRLAGRTILHAALAVCAVLMALPFLWMLLSSFKPLTEIFAHPPALFPLEWTTEGYEKAFTGADFVRGFWNSTYIAVTVTAISLLTSSMAAYAFARIEFRGSKPLFMVFLATMMVPAQLTIIPLYIIMGGLGWVDTHAALIVPAALFNAFGVFLMRQYVKGIPKELEEAAELDGASRFRIFTTMILPLLRTPLTALGIFTFLGQWNNFFGPLIFLNSDANFTLPLLVNQFKGQYGADWTALMAATTLAAAPLLILFGVAQRQIVDGIALSGSKSPGPT0016540_2437DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00766963glkA_2GlucokinaseATGACTTGTTCTCTCGGCGTAGATATAGGCGGCACGAAGATTGCCAGCGCAGTCCTTGACCGTGACGGAACTGTCTTGGATGTCCACACGACTCCAACCGCCCGGGGTGGTGACGTGATCCTTGGGCAGGTCGCGGCAATCGTCAATGGCGTCGCGGCGAAGCATGACCTGTCAGGAATTGGAATCGCCGTCCCTGGGGATGTCAATCCTTCCACCGGCATCATCAGATCCGCCCCGAACATTGGATGGAGCGATCTGGATATTGCCGAGCACGTCCGGTCATTCCCGCCGGCAGGAGCTGCGGTCCGGGTGGACAACGACGCGAATGCCGCCGCGTGGGCCGAATACCGCTTTGGAGGACATCCCCGCACGGATTCGTTCGCGATGATCACCGTCGGTACCGGGCTGGGCGGTGGATTCATTATCAATGGGCGCCTCCTGTGCGGGGCAACCGGCGCAGCGGGCGAAGTGGGCCACTTGGCCCTTGTTCCCGGCGGCGACAGCTGCCCCTGCGGATCCCGCGGCTGTTGGGAACGCTACGCCAGCGGCAGCGCTCTCCATCGGGCAGCGGTGGCCGCCGGTTGGGACGAAGGCTCGGCGGGCCACGACGTCCTAGCGGCCGCTGAAATTCATCCCCCTGCCCGCCGGGTCGTTGAAGGTGTGGCCCGCGACCTCACACGGGGCATCCTTCTTCTCGCCTCCGCCTTGGACCCTTCCTTGGTGATCCTCGGCGGAGGACTTGGCAGTGACCCCCGCTTCCTGGCGATCGCACAAGAAGCAATGGCCGGCGCTGAAGTTACCCCGCCTCGATCCCGTCCCCAACTCAGGACCGCCGTTCTGGGCCCGATCGCCGGGGCGATCGGGGCTGCCGATCTTTCACTGGCACCCCCCGATCAAAACGCGGAACCATCACAGACAAATCCGTCAGTTCAATTCAGATTCCACCATGAAGGAGCAGCGTGAMTCSLGVDIGGTKIASAVLDRDGTVLDVHTTPTARGGDVILGQVAAIVNGVAAKHDLSGIGIAVPGDVNPSTGIIRSAPNIGWSDLDIAEHVRSFPPAGAAVRVDNDANAAAWAEYRFGGHPRTDSFAMITVGTGLGGGFIINGRLLCGATGAAGEVGHLALVPGGDSCPCGSRGCWERYASGSALHRAAVAAGWDEGSAGHDVLAAAEIHPPARRVVEGVARDLTRGILLLASALDPSLVILGGGLGSDPRFLAIAQEAMAGAEVTPPRSRPQLRTAVLGPIAGAIGAADLSLAPPDQNAEPSQTNPSVQFRFHHEGAANANANANANA
D1-29_007671722malL_2COG0366Oligo-1,6-glucosidaseGTGAGCACCATCGTCGAAACGACAAGAAGCACAGACAACGAACGCATGAAGGACCACAACTGGTGGCGCCAGGCAGCCGTCTACCAGATCTACCCACGCAGCTTCGCCGACTCGAACGGCGACGGCCTGGGCGACATCCGGGGCGTCACTACCAAGGTCCCTTACCTAAAGTCTTTGGGAATCGACGCCGTATGGCTAAGCCCCTTCTACCCCTCTGCGCTGGCTGACGGCGGCTACGACGTGGACGACTACCGCAACGTGGACCCCAAATTGGGCACCTTGGAAGACTTCGACGAGATGGCCGCCGCCCTCCACGATGCCGGCATCAAGCTGATCGTGGACATCGTCCCCAACCACTCCTCGAACCGGCACGAATGGTTCAAGGAAGCACTGGCCGCCCCAAAGGGTTCCCCGGCCCGCGACCGGTACATCTTTCGTGACGGCCACGGTGAAAATGGCGAACTGCCGCCGTCGGACTGGGTTTCAGTGTTCGGCGGCCCCACCTGGGAGCGGATTACCGAGCCGGACGGCACACCGGGACAGTGGTACTTCCACATTTTCGCGAAGGAACAGCCGGACTTCAACTGGGATAACCAAGAAGTCCGCGCGGACTTCCTGAAGACTTTGCGTTTTTGGTCCGACCGTGGCGTGGACGGCTTCCGTATCGACGTCGCCCATGCGCTGACAAAGAACCTCGAGGGCGCGTTGCCCACCAGGGCGGACCTTGAGGTGAAGGGAACGCGTGCAGACGCCTTCAACGATGGCTCCCACCCCTACTGGGACCGCAACGAAGTCCACGACATTTACGCCGAATGGCGCAAGCTCTTTAACGAGTACAACCCTCCGCGCACCGCTGTCGCCGAGGCCTGGGTGCATACTGACCGCCGTGCCCGCTACGCCAGCCCGGAGGGGCTCGGCCAAGCCTTCAACTTCGACCTCCTGCAGGCCGACTTTAACGCGGCCAGATTCCGGACAATCATCACGAAGAACCTCGCCGAGGCTGCAGCGTCAGGTGCCTCATCCACCTGGGTGTTCTCCAACCACGACGTCGTCCGGCACGCCACGCGCTACGGACTCAACGCCACCGCCGCTGCCGCTGAGAGCGGGGTTATGGCCGGCCAGGCTGGAAAACAGTGGCTGCTCGATGGCGGCAGGCAGGAAGACGTCAATGTTGAACTTGGCCTCCGTCGTGCCCGCGCCGCCTCCCTGTTGATGTTCGCCCTGCCCGGATCGGCATACCTGTACCAAGGCGAAGAATTGGGCCTGCAGGAAGTGGGCAGCGAGATACCGGATTCCGAGCGTCAGGACCCGGCCTTTTTCCGCAACAAGGGCGTGGAAATCGGCCGGGACGGCTGCCGTGTTCCGCTGCCATGGACCGCAGAGGGCCCCTCCTTCGGCTTCGGCGACGGTGGCGCCCACCTGCCGCAGCCGGAATGGCTCGCCGCCTACGCCGCCGACAGCCAGGCCGGGATTGATGGATCCACCCTGGAGCTTTACCGTGCCGCACTGAGGCTCCGCCGCGAGCTGCAGGCCGCCGAAGACCTGGAATGGGTCGAGACCGTCAACCCGGAGGTCCTGCACTTCAAACGCCCGGGCGGCTGGCAGTCGATCACCAACTTCGGCGAAACGCCTGCCGACCTTCCGCCAGGAACAGTTCTTGTCAGCAGCGCGCCGCTGGAACAGGGCAAACTGCCGGCCAACACCACAGCATGGCTGCGGTGAMSTIVETTRSTDNERMKDHNWWRQAAVYQIYPRSFADSNGDGLGDIRGVTTKVPYLKSLGIDAVWLSPFYPSALADGGYDVDDYRNVDPKLGTLEDFDEMAAALHDAGIKLIVDIVPNHSSNRHEWFKEALAAPKGSPARDRYIFRDGHGENGELPPSDWVSVFGGPTWERITEPDGTPGQWYFHIFAKEQPDFNWDNQEVRADFLKTLRFWSDRGVDGFRIDVAHALTKNLEGALPTRADLEVKGTRADAFNDGSHPYWDRNEVHDIYAEWRKLFNEYNPPRTAVAEAWVHTDRRARYASPEGLGQAFNFDLLQADFNAARFRTIITKNLAEAAASGASSTWVFSNHDVVRHATRYGLNATAAAAESGVMAGQAGKQWLLDGGRQEDVNVELGLRRARAASLLMFALPGSAYLYQGEELGLQEVGSEIPDSERQDPAFFRNKGVEIGRDGCRVPLPWTAEGPSFGFGDGGAHLPQPEWLAAYAADSQAGIDGSTLELYRAALRLRRELQAAEDLEWVETVNPEVLHFKRPGGWQSITNFGETPADLPPGTVLVSSAPLEQGKLPANTTAWLRPGPT0018560_3235DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-29_007682718hypothetical proteinGTGGTCACGGCGTCCACCATGCTGCCAGCCAGCGGCGGTACCTTCATTGCCAACCAGCCTGTCCCTGATCCGGCCGCCCAGCATTCGATCCGCGGCGGCATCAGCGACCAGAATTTCTACTTCGTCATGCCGGACCGTTTCAACAACGGAAGCAAAGCCAACGACGAGGGCGGGCTGGGTCCGGACCCGATGGCGTCCGGATATGATCCAACCCGCAAAGGGTTCTTCAATGGTGGCGACCTGAAGGGCCTGCAGGACCGTCTGGACTACATCCAAGGCTTGGGAACCAACGCCCTGTGGCTCACACCGAGCTTCAAGAACAAGGCAGTCCAGGGCGGCGGGCAGCTGGAGAACAGCTCCGCCGGCTACCACGGTTACTGGGTCACCGACTTCACGCAGATCGACCCGCACATGGGCACCAATGCGGAGCTGAAGGCGCTCATCCAGGCGGCCCATGCCCGCGGGATGAAGGTCTACTTTGACATCATCACCAACCACACCGCGGATGTCATCCAGTATCAGGAAACGTCGTCCGCTCCCTACATTTCAAAGGAGACCGAGCCCTACCGTACTGCCACCGGTGAGGCTTTTGACGACAAGGACTACGCCGGCACGCGGGACTTCCCAGCCCTGGATCCGGCAACATCATTCCCTTACTCCCCGGTGATCCCCGCGGCCGAGCAGGACGTCAAAGTTCCCAGCTGGCTCAACGATTCCACGCTCTACCACAACCGCGGCAACACCAACTTCTCCGGCGAGGACTCGCTCTACGGCGACTTCTTCGGACTGGATGATCTGTTCACGGAAAACCCGAGAGTCGTCAACGGGATGAAGGACATCTACAAGACATGGATCCGGGATTTCGGGATTGACGGCTTCCGCATAGACACCATGAAACACGTCAACGACGAGTTCTGGCAGCAGTTCGGGCCAGAGGTGCTCAGCTACGCCAAAGAGCAGGGCAAGGACGAGTTCTTCATGTTCGGGGAAGTGTTCGACAGCTCCAAAAACGTCCTGTCCAAATTCACCACCAAGAACCGCATCCAGGCAGTTCTTGATTTCGGTTTCCAGGGAGCAGCCCGCGGCTTCGCCTCCCAAGGCGCCAAGGCCACCGGCTTGGCTGACTTCTTCAACGGCGATGACTGGTACACGGACGCCGATTCCAACGTCTACCAGTTGCCCACCTTTCTGGGCAACCACGACATGGGCCGGATCGGCACGTTCATCGCCCAGGACAACGCCGGAGCCCCGGCCGCGGAACTCGTTGAACGTGATGAGCTTGCCCACGAACTGATGTACTTCTCACGCGGAAACCCGGTGGTCTACTACGGCGATGAGCAAGGCTTCACTGGCCCCGGCGGAGACCAGGATTCACGGCAGTCGATGTTCGCCAGCCGGGTCCAGGAGTACCTTGACGACGACCTGCTGGGAACGGGTTCCACGCACGGGACGGACAACTTCGACACCCAACACCCTCTATATCGGAAGATCAGCGAGCTCGCTGCACTCACCGCCAAGCACCCCACACTCCGTGACGGGGCCCAGCAGAACCGCTACGCCGCCGACGGAGCCGGGATATATGCTTTCTCCCGGATCGCTGCCAAGGACCAGCGCGAGTACATCGTGGCCCTGAACAACAGCGAGACCGCCCAAACCGCGGCAATCCCCACCTACGAGGCCAAGCAGCCCTTCGAGCTCGTCTACGGCGACGCTGCCGCTGTGGCCAAAACCGATGGGCAGGCAAACCTCACCGTAACGGTCCCGCCGCTGTCCGCCGTGGTGTATGAAGCGAAAGGGCAGCTCGCGAAGTCCAAGGCGGCGCCCGCCGTCGCACTCAAAAAGCCCGTCATGGCAGCTGGTGACGCGGGTCGCCTTAAGGTGACTGCCGACGTCGACGGTAACTCGTTCTACGAGGTCACCTTCCAGGCGCGGACCCCCGGAGGTGAGTGGCAGGCCATTGGCACTGACGACAACGCTCCGTACCAGGTGTTCCATGACGTGTCTGCGATCGACGCCGGCACTTCGGTAGAGTACCGGGCGGTAGTGCTGGACAACCGCGGGCAAACATCTACTGCTGAGCCGCGCAGTGGTGTTGTGGGCGAGCCCGCCCAGCCGACCACCGTCAGCGTGGCAGGAAACTTCAACACCGAACTTGGCTGTACCGAGGACTGGCAGCCGTCCTGCGAGAAGGCTTTCATGACGTTTGAACCGGTCCACCGGTTGTGGCAGCTGAACGTCCAGAACCTGCCGTCGGGCACGTACGAATTCAAGGCAGCGCTCAATGGGACGCTGGATGAGAACTATGGTGCCGGCGGTGAGCCGGACGGCCCGAACGTCCTGTTCGACCATGCAGGCGGCCCGGTCACGTTCCTGTACGACCACGCCACTAACGTGATAAGCGCTGTCACGGCGGTCCAGCAGCCAGGTGCCGTGTCAGTGGCGGGCAGCCTGAACTCCGAGCTCGGCTGCCCGGGCGACTGGATGCCCGATTGCAGCCAGGCCCAGCTAACGCTGGACCCCTCGGACGGCATCTGGAAACTGCCCATACCGGACCTGCCCGCTGGCAGCTACGAATTCAAGGCCGCCATTGATGGTTCATGGAGCGAGAACTACGGCTTGGGCGGCGCCGCCAACGGCAGCAACATCGCGCTGAACCACGACGGCGGGCCGGTCTCCTTCCAGTATGATCACGCCAGCCACCTCATGACGGTGCGCTAAMVTASTMLPASGGTFIANQPVPDPAAQHSIRGGISDQNFYFVMPDRFNNGSKANDEGGLGPDPMASGYDPTRKGFFNGGDLKGLQDRLDYIQGLGTNALWLTPSFKNKAVQGGGQLENSSAGYHGYWVTDFTQIDPHMGTNAELKALIQAAHARGMKVYFDIITNHTADVIQYQETSSAPYISKETEPYRTATGEAFDDKDYAGTRDFPALDPATSFPYSPVIPAAEQDVKVPSWLNDSTLYHNRGNTNFSGEDSLYGDFFGLDDLFTENPRVVNGMKDIYKTWIRDFGIDGFRIDTMKHVNDEFWQQFGPEVLSYAKEQGKDEFFMFGEVFDSSKNVLSKFTTKNRIQAVLDFGFQGAARGFASQGAKATGLADFFNGDDWYTDADSNVYQLPTFLGNHDMGRIGTFIAQDNAGAPAAELVERDELAHELMYFSRGNPVVYYGDEQGFTGPGGDQDSRQSMFASRVQEYLDDDLLGTGSTHGTDNFDTQHPLYRKISELAALTAKHPTLRDGAQQNRYAADGAGIYAFSRIAAKDQREYIVALNNSETAQTAAIPTYEAKQPFELVYGDAAAVAKTDGQANLTVTVPPLSAVVYEAKGQLAKSKAAPAVALKKPVMAAGDAGRLKVTADVDGNSFYEVTFQARTPGGEWQAIGTDDNAPYQVFHDVSAIDAGTSVEYRAVVLDNRGQTSTAEPRSGVVGEPAQPTTVSVAGNFNTELGCTEDWQPSCEKAFMTFEPVHRLWQLNVQNLPSGTYEFKAALNGTLDENYGAGGEPDGPNVLFDHAGGPVTFLYDHATNVISAVTAVQQPGAVSVAGSLNSELGCPGDWMPDCSQAQLTLDPSDGIWKLPIPDLPAGSYEFKAAIDGSWSENYGLGGAANGSNIALNHDGGPVSFQYDHASHLMTVRPGPT0018575_131DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0018575-amyA|malS-K01176NANA
D1-29_007691323tgtQueuine tRNA-ribosyltransferaseGTGCCAGCCAACTCCGCCCCCGCTTCTGCCGGTCCTTCCGCTTCCTCCCCCGCCGCTGCCTCGTCTGTAACCCGGCCGGGGTTCTCATACCGGGTGGGCACGCGGCTCAGGGAGACCTGCGAGCCGTCAGCTGCCCAGGTCTCTGCCAACGGGGGCGAGTTCCTCGGCCGGACCGGCATCATCAGCACCCCGCACGGTGAGATCCGGACGCCGGCCTTCATCGCCGTCGGAACCAAAGCCACGGTGAAATCCGTCTTGCCGGAGTCCATGGCAGAGCTCGGGGCGCAGGCGCTCCTGGCCAATGCCTACCATCTCTACCTTCAGCCCGGCCCGGAGATCCTGGACGAGGCCGGCGGGCTGGGCGCCTTCATGAACTGGCCGGGCCCGACGTTCACGGATTCAGGCGGTTTCCAGGTGATGAGCCTGGGCTCGGGTTTCAAGAAGGTCATCGATATGAAGTCCGTTGATAATTCGGGTCCGGATGACGCCGTCGCGCCAGGCAAGGAACGCCTGGCCCACGTTGATGATGACGGGGTCTGGTTCAAGTCGCACCTGAACGGGGACCGCCACCGCTTCTCCCCCGAGATTTCCATGCAGGTCCAGCACCAAATCGGCGCGGACATCATGTTTGCCTTTGATGAGCTGACCACGCTGCAAAACTCGCGCGGCTACCAGGAGGAGTCGCTGGAACGGACCCGGCGATGGGCGCTTCGTTGCATCGAGGAGCACGTACGGCTGACGTCGTCCCGGGCGGGAAAGCCCTATCAGGCGCTGTTCGGCGTCATCCAGGGCGCGCAGTACGAGGACCTGCGCCGGAAGGCCTGCCGCGACCTGGGCGCCATGGATTTCGACGGCTACGGCATCGGCGGCGCCCTGGAAAAGGAGAACCTGGGCACCATCGTGCGCTGGTGCAACGAGGAACTCCCGGAGGACCGGCCGCGGCACCTCCTGGGCATCTCCGAGCCCGACGATATCTTCACCGCCATCGAGAACGGGGCCGACACCTTCGACTGCGTTTCCCCCACCCGTGTGGCCCGAAATTCCGCTTTTTACACGCCAACGGGCCGCTACAACTTGTCCGGAGCGAAGTACAAGCGCGACTTTGGCCCACTGCAGGAAGGCTGCGACTGTTACGCCTGCGCCAATTATTCGCGGGCCTACATCCACCACCTGTACAAGGCCAAGGAAATGCTGTCGGCAACGCTGATTTCCATCCACAACGAGCGCTTTGTGGTGAAGATGGTGGACGACGCCCGGCTGGCCATCGAATCCGGCAGCTTCTTCGAGTTCAAGGCCGAGACCCTGGGTCAGTACTACTCCTGAMPANSAPASAGPSASSPAAASSVTRPGFSYRVGTRLRETCEPSAAQVSANGGEFLGRTGIISTPHGEIRTPAFIAVGTKATVKSVLPESMAELGAQALLANAYHLYLQPGPEILDEAGGLGAFMNWPGPTFTDSGGFQVMSLGSGFKKVIDMKSVDNSGPDDAVAPGKERLAHVDDDGVWFKSHLNGDRHRFSPEISMQVQHQIGADIMFAFDELTTLQNSRGYQEESLERTRRWALRCIEEHVRLTSSRAGKPYQALFGVIQGAQYEDLRRKACRDLGAMDFDGYGIGGALEKENLGTIVRWCNEELPEDRPRHLLGISEPDDIFTAIENGADTFDCVSPTRVARNSAFYTPTGRYNLSGAKYKRDFGPLQEGCDCYACANYSRAYIHHLYKAKEMLSATLISIHNERFVVKMVDDARLAIESGSFFEFKAETLGQYYSNANANANANA
D1-29_00770726hypothetical proteinATGACGAACAATCTGAGCGTGGTGATTAATGCCGACGCGCCGCAGGTGTGGACCATGCTGCGCGAACCGTCCAAGGTAGCCCAGTGGCACGGCTGGGAAGCGGACGACCTGGACGCCGAAATTAAGGAAATCTACTTCTCAAGCGATGTGGTGGAAGCACCGGACCACACGAGCCTGACAACCCATGGCGGCGACGTCTTTGACCTCAAACCCGTACCCGGCGGGACCCAGGTCAGTGTGACGCGTGCGGCTTTGGACCACAATTCCGAATGGGCGGCCTGGGACGAGGACATTACCCAAGGGTGGCTCACCTTCCTGCAGCAGCTGAGATTCGCCCTGGAACGCCATCCGCACGGCAGGCGGCACACGCTGTTCTTCCAGGTTCCCGGCGGACCCGGTTCGGCCATTGAAAAACTTGGCCTCTCGGATGTGCCCAAGCCCGGGGAGAACTATGAGAAGACCCTCCGCACCGGTGAGGAGATTGCGGGCAAGGTCTGGTACCGCAGCAACCACCAGGTGGGCCTGACCGTCCATGACTATGCCGAGCACGGTGACGGTCTGCTGGTCGTTGCCGACCAGCCTGTTAATGACGATGTCAGGCCTGAGGGCGGCTCCATGGTGATCATCTCCACGTATGATCTGGGCGCGTCCAGGCTGGAGTCCATCCGTGCGCTGTGGGAAGGCTGGCTGGCTGAGAACTACCCCACATCCGCTCCGCTGCACTGAMTNNLSVVINADAPQVWTMLREPSKVAQWHGWEADDLDAEIKEIYFSSDVVEAPDHTSLTTHGGDVFDLKPVPGGTQVSVTRAALDHNSEWAAWDEDITQGWLTFLQQLRFALERHPHGRRHTLFFQVPGGPGSAIEKLGLSDVPKPGENYEKTLRTGEEIAGKVWYRSNHQVGLTVHDYAEHGDGLLVVADQPVNDDVRPEGGSMVIISTYDLGASRLESIRALWEGWLAENYPTSAPLHNANANANANA
D1-29_007711086hypothetical proteinATGACCGAAACCCCAGCCGCCCGGCACTACAGCGAACAGCAGGCTGGAGCCCTGAAGGCCGGCGATCAGCTCCTCCTTCCAGACGGTGAACGCACCGCCGAGATCCACCAGGTGGACGTTGAACGGGACGATTATGGGGTCCCGGCGCTGGTCCTGGCCAGCCTGACCCGCGGCGGGACATTGCGCATGGCAGCCGGCTCCTCCGTGAGGGTTCTGGACACAGCGCCCGACGCCGTTTCGCGGCTTCCGCTGGGAGCACACCTGCGCGGACAGGACCTTGGTCCGAAGGGCACTGGCGAACCGAACGTGGGTGACCAGAACCCGGTTGACCGGAACGTGGGTGACCAGAATCTCGGTGATCAGGGCGCGGGCGATCACGCCCCGGGTGAGGCACCTGCAATGCCGGCTCCCGCCGTCGTCGTTCCTCCCCCGCCCGCCATTCCGCCGGCGCTGAGCGGCCCCACGGCGGAAGAGCTCGAACTGATCCCCGTCCCGCAGGGGACACCGGAGGCGGTGGTTGCCGCCGTGGCCGACGCCCACCCTGACGCCGTTGGCGTCCTGCTGCTGGCCGACAAACTTGCCAAGGGGATTAACTTCAAATCCGGAAGCTGCCTGAAGGACCTCAGCGACCTGGCCCACGAGCTGTTCATTACGCTGAAGGATCCTGACGGGTCGCTGGCTGTGGCGGATCTGCTCAACGTCCTGCCGTTCGACGGAAACCCGGGCAGGTGGGCGTCAGTGGAAGCGTCGTTGGCGCTGTCGAGCTACATCTGCCGGCAGGACGGGCAGGAGGCCCGGGCTGAAGTCTACGAAAAGCTGCTGCGCGTGCCCGAGACGCAGGAGACTGACCCGTTCAAAGCCCGGATGAATGCCAAGGTCCGCCAGCGTTCCCTGAACGAGCCGAACCTCTATGACAAAGAAATCTTCCGCTCCATCGACAACTCCAACCACGAGGCCGAGCGTGAGTGGCGGCTGCTGCGGCTGGAATCCCTGCTCTTTTTGCGGGCGCACGGCGGCTCCGAGACCATCGGCCTGGGCGAACTCCAGCGCCGGATCAGCAACGAGCTTGAGGCTGTCCGCGCCTGAMTETPAARHYSEQQAGALKAGDQLLLPDGERTAEIHQVDVERDDYGVPALVLASLTRGGTLRMAAGSSVRVLDTAPDAVSRLPLGAHLRGQDLGPKGTGEPNVGDQNPVDRNVGDQNLGDQGAGDHAPGEAPAMPAPAVVVPPPPAIPPALSGPTAEELELIPVPQGTPEAVVAAVADAHPDAVGVLLLADKLAKGINFKSGSCLKDLSDLAHELFITLKDPDGSLAVADLLNVLPFDGNPGRWASVEASLALSSYICRQDGQEARAEVYEKLLRVPETQETDPFKARMNAKVRQRSLNEPNLYDKEIFRSIDNSNHEAEREWRLLRLESLLFLRAHGGSETIGLGELQRRISNELEAVRANANANANANA
D1-29_00772462hypothetical proteinATGGTTTACGTGGAAGCGGTGCCGGTCAGGCTGGATCCGCTGGGGTTCGTGAACGAGGTGGGCACACTCCTGCAGGCCGATGAAGACGGGACCATGATCCGTTCGCTGGTGTCGGGCCGGGTCATCTATCGCGAGACCATCCGTGCCGCGCTCCTGCGCCACATGGAAAAGGACCTGGGCCCCCTGGCCTTCCCACAGCTGCCCATCAGCCCGGTGCCGTTTACCGTGGCCGAGTACTTTCCGGCGCCGTCGCAGACCGGGTTCACCGATGATCGCCAACACGCCGTGTCGCTGGCGTATGTCATTCCGGTGACCGGCGAATGCGAGCCCCGCCAGGATGCCCTGGAACTGACGTGGATGACGCCTGAGGAAGTCCTCAGCCCGGACGTCCAGCTCGAATTCAGTGGCGGACGCGGTTCCCTGATCCGGCAAGCACTGGCCTTTGCCGGTGTGGGCTTCTGAMVYVEAVPVRLDPLGFVNEVGTLLQADEDGTMIRSLVSGRVIYRETIRAALLRHMEKDLGPLAFPQLPISPVPFTVAEYFPAPSQTGFTDDRQHAVSLAYVIPVTGECEPRQDALELTWMTPEEVLSPDVQLEFSGGRGSLIRQALAFAGVGFNANANANANA
D1-29_00773741hypothetical proteinATGCTGCGTGTCCGCCCTGTCCATTTCACGTCCCGGCTGGACCAGTGGGAGCAACTGCTCACTGCCCTGGGCCTGGCGAAAACGGCGGATCATGGCATGTGGCGCGAGTTCGACGCCGGCGTGGGGCGCCTGGCCCTGCACCAGGCCGAGGCAGGCACGGCCGACGACGGAACCACCGTTTTCGGGGTGGAGGTGGGCGACCTTGCCGAGTTCGCCCGGCGGACCAACCTGGCCGCCGAGGACACGGGCACCAGCTCCGCCGAAATCGTCCAGGCTGACCACGGCGAGTCCTGCCGGGTGACAGCGCGGGACGGCTTCAGCTTCCTGGCCGACCCCGCCGCCCGGGGGGAGGACGGCACCTGGGCCACTTCCCGCGGCGCTGACCCGGCCCTCGCCGTCGTCGCCGTCCTGTTCACCGAGGACGCTGCCGCCGCCGCGCAGATGCTTCGGGACATCGGCGGGAGCTTCCGGCCCTCCCCCGATGCCGACGAAACCGCCGACTTCACCGCCAAGAACGGCGGTGTGCTGATGGTGCGTCCCGCTTCCGGACCGTCCCGGGCCGGCCTGGGCTTCGAATACGACGGCGACCTGGACACCTTGGCGGACCGCCTCACGGCAGCTGGGCATGAGGTGCGGATCACCGAGGAGGCGTTCGGCCGCACGCTTCACCTCCCCAACCCCGATGCTGGCGGGTCACCTGCCGCCCATGTGCCGGCCACGCTGTGGATTTCGAAGCGTTGAMLRVRPVHFTSRLDQWEQLLTALGLAKTADHGMWREFDAGVGRLALHQAEAGTADDGTTVFGVEVGDLAEFARRTNLAAEDTGTSSAEIVQADHGESCRVTARDGFSFLADPAARGEDGTWATSRGADPALAVVAVLFTEDAAAAAQMLRDIGGSFRPSPDADETADFTAKNGGVLMVRPASGPSRAGLGFEYDGDLDTLADRLTAAGHEVRITEEAFGRTLHLPNPDAGGSPAAHVPATLWISKRNANANANANA
D1-29_00774651hypothetical proteinATGCCACGACTTCCAGCAGCGGGCACGGGGCAGAATAGGCCCATGGCCATTGAACTTGAGGAACTGCTGGTGCCTGACGCCGCCGCTTGGCGGTCCTGGCTGGAAGCCAACCATAAAGACAGTCCCGGGGTGTGGCTGGTGCTGCACAAGAAGGGCGGCGACGTCACCGAACTGGACTACGACGCCGCACTGGATGAAGCCCTCTGTTTTGGCTGGATCGACGGACAGGTCAAGAAGCGCGACGCCGGGAGCTACGTCCAGCGGATGACGCGCCGCGGCCCCAAAAGCCGCTGGTCGCTACGGAACGTCGGGCACGTGGCCCGGCTCGAGGCCGCAGGGAAGATGACCGACGCCGGACGGGTCGCCGTCGAAAGCGCGAAAGCCGACGGGCGCTGGGACGCGGCCTATCCGGGACAGGCTGCGGCGGAAGTCCCGGCCGACCTGGCTGCCGCGATCGCTGCGGTCCCGGAGGCGCAGGCGATGTTCGACGTCCTCACGTCCGTGAACCGTTATGCCCTGATCTACCGGACCACCTCGGTGAAGAACCAGGCGCTCCGGGAGCGGAAGATTGCCGCTTTTGTGGAAATGTTGGCCCGTGGCGAGTCGCCCTTCCCGCAGCAAAAGAAGCCTGCCCACTTTGGCGACCCGTGAMPRLPAAGTGQNRPMAIELEELLVPDAAAWRSWLEANHKDSPGVWLVLHKKGGDVTELDYDAALDEALCFGWIDGQVKKRDAGSYVQRMTRRGPKSRWSLRNVGHVARLEAAGKMTDAGRVAVESAKADGRWDAAYPGQAAAEVPADLAAAIAAVPEAQAMFDVLTSVNRYALIYRTTSVKNQALRERKIAAFVEMLARGESPFPQQKKPAHFGDPNANANANANA
D1-29_007751170fbpC2COG3842Fe(3+) ions import ATP-binding protein FbpC 2GTGACCCATTCCTACACTTCGCGTGGTGCCCCCTCCAGGCTTCCGGAACCACGGATCGCCGCTTCGGTGGAAGCCAGCACCAACAGCCACCTGCAGATTACGGACGCCACCAAGAACTTCGGGTCCCAGGCGGTGCTGAAGGGCGTCAACCTGTCCGTGGCGAAGGGCGGCACAACGGCTATCGTGGGTCCGTCCGGTTCCGGCAAGACAACTCTGCTCCGGCTGATTGCGGGCTTTGAGCACCCAGCCACCGGCAGCATCTCCCTCAACGGCATCAAGGTGGCGGGCGACGGCGTCTGGCTGCCTGCGCACAAACGCCAGGTCGGGTATGTCGCGCAGGACGGCGCGTTGTTCCCGCACCTCTCGGTTGGCCAGAATGTTGCCTTCGGCCTGGACCCAGCCAAGCTTCCGGGTGGCCGCCGCGGTGTTCCCGGCCGGATCACTGAGCTGCTGGAGATGGTGTCCCTTGACCCTGCAATGGCCAAGCGGCGTCCGCACCAGCTTTCAGGCGGCCAGCAGCAGCGGGTCGCCCTGGCCCGGGCGCTGGCCCGGGAACCGGAACTGATGCTGCTGGATGAACCATTCTCAGCCCTGGACGCCGGCCTCCGCGTAGCCACCCGCCGCGCCGTGGCCACGGTCCTGAACAAGGCAGGTGTCACCACCATCCTGGTGACCCACGACCAGTCCGAGGCGCTGTCCTTCGCCGACCAGGTGGCTGTCATGCGCGGCGGCAGACTGGCCCAGATCGGCAACCCGTTTGTGGTGTACACCCGCCCTGCAGACCGAGTTACCGCCGAGTTCCTGGGCGACGCCGTCATCCTGGATGCCTGGATGGAAGGGTCCCTGGCCACCTGCTCCCTGGGCGGCATCCCGGTCCGCCGGCCGCCCGCACAGGGCCGCGTGCAGCTGATGCTGCGCCCCGAGCAGATCCGCATCGCGGAGGACGGCCCCATCCGCGGAGTGGTGGTGGACACGGACTACTTTGGCCCGGAAACCACCGTTCGGCTCAAGCTTGCGGTGCCGCCGGAACTCGCTAAGGCGGACCACCGTTACCCGGGCGGCGGGGAGATCATCACCATCCGGCACTGGAACGCGTCCATCGCGCGGCCCGGGATGGAATTGTGCCTCCGCGTGGTGGGCGAAGCGGTGGCCTTTCCCCTGGACGGCTGAMTHSYTSRGAPSRLPEPRIAASVEASTNSHLQITDATKNFGSQAVLKGVNLSVAKGGTTAIVGPSGSGKTTLLRLIAGFEHPATGSISLNGIKVAGDGVWLPAHKRQVGYVAQDGALFPHLSVGQNVAFGLDPAKLPGGRRGVPGRITELLEMVSLDPAMAKRRPHQLSGGQQQRVALARALAREPELMLLDEPFSALDAGLRVATRRAVATVLNKAGVTTILVTHDQSEALSFADQVAVMRGGRLAQIGNPFVVYTRPADRVTAEFLGDAVILDAWMEGSLATCSLGGIPVRRPPAQGRVQLMLRPEQIRIAEDGPIRGVVVDTDYFGPETTVRLKLAVPPELAKADHRYPGGGEIITIRHWNASIARPGMELCLRVVGEAVAFPLDGPGPT0003735_99DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010NANA
D1-29_007761593hypothetical proteinGTGACCACTGATCTATCGGCTCCCCCCACCAGGGAGAGCACGACGACGGCGGGCCGGGGCAACAGCCCTCGCCCGCCTTTCGGCGTTTCCGTGGTGTCCATCCTGGCAGTGCTGATCGCACTGTTTTCCCTGGTTCCGCTCGGCTACGTGGTCTACATGACCGTCGCAACCGGGTGGGACACCGCCGTCGAACTGATCTTCCGGCCACGCGTCGGCGAACTGCTGCTCAACACCGTGCTGCTCACGGTGGTCACCGTTCCGCTGTGCCTGATCCTGGGTGTGGGCGGGGCGTGGCTGGTGGAGCGGACCAGGCTGCGGGGCCACAGGATCTGGGCCGTGCTCCTTGCGGCCCCCCTGGCCATTCCCGCTTTTGTGAACAGCTACGCCTGGGTCTCGGCCGTGCCGTCCCTGGAAGGGCTTGGCTCGGGCGTACTGATAGCCACCCTGTCCTATTTTCCGCTCGTCTACATTCCCGCGGCGGCCACCCTCAGCCGGCTGGATCCGGCCATCGAACAGTCTGCCGCTTCCCTGGGGCTTGGCGCGTGGCGGGTCTTCTTCCGTGTGGTGCTCCCCCAGCTCCGGCTTGCCATGACCGGCGGCGCCCTGCTGGTGGGCCTTCACCTGCTGGCCGAATACGGCGCTTTTGCCATGATCCGCTTTGACACGTTCACCACCGCCATCATGGTCCAGTTCCAGTCCACCTTCAACGGCACCGCCGGCAACATGCTGGCCAGTGTGCTCGTCTTTTTCTGCCTGATCCTGCTGGTGCTGGAAGCCCGGGGCCGAGGCTCTGCCCGCTACGCCCGGATCGGCTCCGGCGCTCAGGCCAAGGCGATCCGCCTTCCCCTGCACGCCTACCAGGTTCCGGCCCAGCTCTCGCTGGCTGCGCTGACCGCGCTGGCCTTCGGGCTCCCGCTGTTCCTTGTCCTCCGCTGGACCCTGGCCGGCGGCCCGGCCGTCTGGGTTGCGGACGAATTCATCCCGGCCCTCCTGCAGACCCTCGGATACGGCCTGGCAGGAGCTCTCGTGACCACCATCGTCGCGTTCCCCATGGCCTACCTTGCCGTCCGATACCCCAGCTGGTTCAGCAAGTCCCTTGAGCTCTCCAACTACGTCACCAGCTCCCTGCCCGGCATTGTGGTTGGCCTGGCATTTGTCACGGTCAGCATCCGGCTGGTCCCTGGCCTGTACCAGACTGCCGGGGTGCTGGTGGCGGCGTACGTCCTGCTGTTCCTGCCGCGGGCCCTGGTGAACCTTCGCGCCGGCCTGGCCCAGGCACCCAAGGAACTTGACGAGGCTGCCCAGGCGCTGGGCAAGCCGCCGCTGCTGGCCTTCATCCGTGTGACCCTGCGGCTCACGGCCCCCGCAGCCGCCGGTGGTGCCGCCCTGGTTTTCCTGGCCATCGCCAATGAGCTCACGGCCACGCTGCTGCTGTCCCCCAACGGCACCCGCACGCTGGCCACCGAGTTCTGGAGCAAGAGCAGCGAGATTGACTACTCCGGCGCCGCCCCCTATGCGCTGCTGATGATCCTGCTCTCTGCGCCCATGACCTACCTCCTCTTCCAGCAGTCCAAGAAAGTGGCCGGACAGTGAMTTDLSAPPTRESTTTAGRGNSPRPPFGVSVVSILAVLIALFSLVPLGYVVYMTVATGWDTAVELIFRPRVGELLLNTVLLTVVTVPLCLILGVGGAWLVERTRLRGHRIWAVLLAAPLAIPAFVNSYAWVSAVPSLEGLGSGVLIATLSYFPLVYIPAAATLSRLDPAIEQSAASLGLGAWRVFFRVVLPQLRLAMTGGALLVGLHLLAEYGAFAMIRFDTFTTAIMVQFQSTFNGTAGNMLASVLVFFCLILLVLEARGRGSARYARIGSGAQAKAIRLPLHAYQVPAQLSLAALTALAFGLPLFLVLRWTLAGGPAVWVADEFIPALLQTLGYGLAGALVTTIVAFPMAYLAVRYPSWFSKSLELSNYVTSSLPGIVVGLAFVTVSIRLVPGLYQTAGVLVAAYVLLFLPRALVNLRAGLAQAPKELDEAAQALGKPPLLAFIRVTLRLTAPAAAGGAALVFLAIANELTATLLLSPNGTRTLATEFWSKSSEIDYSGAAPYALLMILLSAPMTYLLFQQSKKVAGQPGPT0003730_4037DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-29_007771053fbpAFe(3+)-binding periplasmic proteinATGAAGATCCGCACCAACGCGCTGGCCGGCATTGCCCTCGCCGCAACTGCAGCCCTCGGACTGACCGCCTGCGGCGGCAGTGCCACTCCGGCAGCCACCGGCACCTCCTCGTCGGACAGTGAAGCCGGCGGGATCACCGTGTACAACGCCCAGCACGAAAGCCTCACCAAGGAATGGATCGAAGCCTTCACGGCCGAGACCGGCATCAAGGTGACCATGCGCCAGGGTTCGGACAGCGAGCTGTCCAACCAGATCATCCAGGAAGGCGCGGCATCGCCGGCCGACGTTTTCCTCACGGAGAACTCCCCCGCGATGACGCAGGTGGAGAACGCCGGGCTGTTCGCTGACGTGGACAAGGCAACCATCGACCAAGTTCCGGCGGAATATCGCCCCTCCACCGGAAAATGGACGGGCATTGCAGCCCGCTCCACGGTCCTGGTCTACGACAAGGCCAAGCTGACCGAGGACAAGCTCCCCAAGTCCATGCTGGACCTGGCCAACCCGGAGTGGAAGGGCAAGTGGGCTGCTTCCCCCACCGGAGCCGACTTCCAGGCCATCATCTCGGCACTGCTTGAGCTCAAGGGCGAGGCTGCCACCGAGGAATGGCTCAAGGGCATGAAGGAAAACTTCAAGGCCTACAAGGGCAACGGCACTGCCATGAAGGCAGTCAACGCCGGCGAAGTTGATGCCGCGCTGATCTACCACTACTACTACTACGGCGACCAGGCCAAGACCGGCGAGAACTCCAAGAACGTCACGCCGTACTACTTCAAGAACCAGGACCCGGGAGCGTTTGTCTCGGTATCCGGAGGCGGGGTCCTGAAGACTTCCAAGAAGGCAGAGGATGCCCAGGCGTTCCTGAAGTTCGTCACGGGAAAGAAGGGCCAGGAAGTGCTGAAGAACGGCACCTCGTTCGAGTACTCCGTCGCGTCTGGCGTTCCGGCCAACGACAAGCTGGTTCCGTTGGTGGAACTGCAGGCCCCCACCGTGGATGCGGCCAAGCTGAACTCCGCAAAGGTCACCGAGCTGATGACCAAGGCAGGACTCCTGTAAMKIRTNALAGIALAATAALGLTACGGSATPAATGTSSSDSEAGGITVYNAQHESLTKEWIEAFTAETGIKVTMRQGSDSELSNQIIQEGAASPADVFLTENSPAMTQVENAGLFADVDKATIDQVPAEYRPSTGKWTGIAARSTVLVYDKAKLTEDKLPKSMLDLANPEWKGKWAASPTGADFQAIISALLELKGEAATEEWLKGMKENFKAYKGNGTAMKAVNAGEVDAALIYHYYYYGDQAKTGENSKNVTPYYFKNQDPGAFVSVSGGGVLKTSKKAEDAQAFLKFVTGKKGQEVLKNGTSFEYSVASGVPANDKLVPLVELQAPTVDAAKLNSAKVTELMTKAGLLPGPT0003725_1678DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-29_007781269hypothetical proteinATGAGCCCGCCGGCCGAACCGCCCCCCACAGACGAATCGCACGCAGACGAATCCAGCACCGACGAATCCCGCACAGACGAATCCCACGCGGACGATTCCCCTGCCGTCACGCCGCCCGTTGATTGGCCTGGCCGTGCCGATGAGGCGGCCCGTGCTGTCACATCGCTCTTCGGCCAGCGGCTCCTGTTCCTGCCGGGCACGCATCTGGGCGCCGTCGTACAGCCCTCCGGCGGACTGAAGAGCCTCTTCCGCCCGTGGCACTACTGGTGGCAGGCGCATTACGTGGACTGCCTGGTCGACGCGGGAAACCGGGAACTCAGCAGGGGGGCCACGCCGGCCGCACGATTCGCGGGCCCCGGCCGCCCCAGCGCCGGACGCCTCGCCTCACACCTGGTCACGGGGATCAGGCTCCGGAATTTCCTCACTTTCGTCAACAGCTACTACGACGACATGGCCTGGCTGGCCCTGGCCACTCTCCGGCTGGAAAGGCTGGCAGAAGAAACCCGCAAACCCGGGCGACGCCGCAACGCCCGGCTCCGCACCATCCTGGCCCGGCAGTTCGATTCAGCGTCCACGGACCACTTGGGCGGCGGCACCTTTTGGAGCAAGAAGCGGGATTTCAAGAACACCCCGGCCACGGCCCCCGTAGCCCTTTTTTACGCCCGCACCGGCGAGCCGGCCAAAGCCCGGGCCCTGCTGGACTGGCTGGGTGCCAGGCTCTTTGATCCCTCACAGGGCCTCTACCTGGACGGCCTGCGCCTGACCGGGACGGGCGAATTCCTCCTGGAAAACGCCATCTACACCTACAACCAGGGCCCTGTCCTCGGGGCTCTCCTGGAGCTCGGCGGCGAGGCCAACCTGGCGCGGGCCGGCACCCTGGTGGAGGCGATCGCGCGCAACCTGACGGTCAAGGCCGCGAACCAAATCCTTCACTGCCACGGAACGGGCGACGGCGGCCTGTTCACCGGGATTCTCTGCCGCTACCTCGCTCTCGCCGCAGCGGATGCCAGGCTTCCGGACAGCGTCCGGGGCACTGCGGCAGGACTCGTCATAGGCACCGCGGACGCGTTCTGGTCAGGCAGGCGGGAGGTTTCACCGGCCGAACCCCTGTCCAGGCACGGCGGGAAGCTGCTCTTTTCATCCCTCCCGCAGGAGCCGGCGACTGCCACCTATCCCGCGGGAGCCGCCGTCGAGCTGTCCACCCAGCTGCAGGCGTGGATGGCGCTGGAGGCGGCGGCAGTGGTGCAGCAGCGCGGGAAAACTAATTAAMSPPAEPPPTDESHADESSTDESRTDESHADDSPAVTPPVDWPGRADEAARAVTSLFGQRLLFLPGTHLGAVVQPSGGLKSLFRPWHYWWQAHYVDCLVDAGNRELSRGATPAARFAGPGRPSAGRLASHLVTGIRLRNFLTFVNSYYDDMAWLALATLRLERLAEETRKPGRRRNARLRTILARQFDSASTDHLGGGTFWSKKRDFKNTPATAPVALFYARTGEPAKARALLDWLGARLFDPSQGLYLDGLRLTGTGEFLLENAIYTYNQGPVLGALLELGGEANLARAGTLVEAIARNLTVKAANQILHCHGTGDGGLFTGILCRYLALAAADARLPDSVRGTAAGLVIGTADAFWSGRREVSPAEPLSRHGGKLLFSSLPQEPATATYPAGAAVELSTQLQAWMALEAAAVVQQRGKTNNANANANANA
D1-29_00779813putative oxidoreductaseATGGACATCGACGGTACCGTCGCACTGATCACGGGTGGGGCGTCGGGGTTGGGGGCCGCTACAGCAAGGCGCCTGTTCGGCGCCGGAGCCTCAGTGGTACTGATCGATCTGCCATCCTCCGCGGGCGCGGCCTTTGCCGATGAGCTCAATGGACAGGCGCTGAGTGGTGAGCCGTCAGGCTCCCGACGGACGGCCGTTTTTGTCCCCGCGGATGTGACCAGCGAAGCGGAGGTGCAGGCCGCCGTGGACACCGCCGTTGCCTTGGGCCCGCTGCGGATCGTGGTGAACTGCGCAGGCATCGCCACTCCGGGCAAGGTTCTGGGGCGGGACGGCGTACTGCCGCTGGATGCCTTCAGCCGGGTTGTCCAGGTGAATCTCATCGGGACGTTCAATGTGCTGCGCCTCGCGGCGGCGGCCATGGTGGCCACCGAACCTGTTGGCACGGACCTCGGTGGCCAGGAGCGCGGGGTGATCATCAATACGGCCTCCGTGGCCGCGTTTGACGGGCAGATCGGCCAGCCTGCCTATGCCGCCTCCAAGGGGGCCGTGGCGGCAATGACTTTGCCGCTGGCCCGGGAGTTGGCGCGCTCCCTGGTGCGGGTGGTCACCATCGCGCCGGGAATTTTTGAGACACCCATGATGGCCGGGCTCGCGCAGGAAGCCCAGGAATCCCTGGCCAGGCAGGTTCCGCACCCCTCCCGGCTTGGCCGCCCTGCCGAGTATGCCAACCTCCTGGCCCACATCGTGGAGAATGCCATGCTGAACGGGGAGACCATCAGGTTGGACGGCGCCATCCGAATGGGCCCCAAATGAMDIDGTVALITGGASGLGAATARRLFGAGASVVLIDLPSSAGAAFADELNGQALSGEPSGSRRTAVFVPADVTSEAEVQAAVDTAVALGPLRIVVNCAGIATPGKVLGRDGVLPLDAFSRVVQVNLIGTFNVLRLAAAAMVATEPVGTDLGGQERGVIINTASVAAFDGQIGQPAYAASKGAVAAMTLPLARELARSLVRVVTIAPGIFETPMMAGLAQEAQESLARQVPHPSRLGRPAEYANLLAHIVENAMLNGETIRLDGAIRMGPKPGPT0002265_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-29_007801236carC_1COG1960Caffeyl-CoA reductase-Etf complex subunit CarCATGAATCCGGCGCAGCCGCCCTCCGCAGAGTTGGCCGCGGCGCATGGTGAGGAGCTGCCCACAGCAGACTTTTTCGCCTTCGAATCGCTCCTGAGTGACGGCGAGCGCAACAAGCTGGCCGAACTGCGGGACTTTCTCGCCACGGAGATCGCACCCTACGCCGGGGAATGGTGGAACAAGGCCGAATTTCCGGCGCACATTCTCCCCAAGCTCGCGGCGCTGGAGCTCAGCACACCTGCCCAGCGCGGCTACAGCCACCTGTTCGCCGGCCTGGTCATCGCCGAAATGACCCGCGTGGACACCTCCATTGCTACGTTCTTCCTGGTCCACCATGACCTGTTTGTGGAATCCCTCTACGCGTTCGGTTCCCCGGGCCAGAGGGAACGGCTTCTCGGTGACGCGTCCAACCTGCGCATCACCGGTGCCTTTGCCCTCACCGAACCAGGGCACGGCTCCGACGTTGCCGGCGGCATGGAAACCAGGGCACGGCGGATCTCATCCCGGACAGGAGAGCCCGACGCCGAAGGCGATAGCTGGGTGCTGAACGGCGCCAAGCGCTGGATCGGGAACGGGACGTTCTGCGACTACCTGCTCGTCTGGGCCCGCGACGAGGCGGACGGGGCCGTCCGGGGATTCATCGTGGACGCTTCCCTGCCCGGGGTGAGCCGGAGCCGGATCGAGAACAAGATGGCACTGCGGACCGTCCAGAACGCGGACATTGTCTTTGCGGACGTGCGCGTGGCCGAGGCAGACAGGTTTTCCGGCATCGCGAGTTTTGACGACACCAATCGGCTCCTGCGCGGCTCTCGGATCATGGTGGCCTGGCAGGGGGTGGGCCAGCAGCTGGCCGCGTTCGACGTGGCCCGGCAGTACGCCGTCGAACGCCACCAGTTCGGCCGCCCGCTGGCGAAGTTCCAACTCATCCAGCAGCAACTGGTGACCATGCTGGGCAATACCGTGGCGAGCATGGGGATGATGGTGCGGCTCGCCCAGCTGCAGGAGGACGGCGCGGCCGACATGCCGCAGGTGGCGCTGGCCAAGTCCTACATCAGCGCCCGTATGCGGGAAACCGTGGCGATGGGCCGGTCCATCCTGGGTGGCAACGGCATTGTGACGGAGTATCGGATGGCCAAGATCTTCGCCGATGCCGAGGCCATTTTTACTTATGAGGGCTCGTTTGAGATCAACTCGCTGATCGTGGGGCGGGCGGTGACAGGGGTTTCCGCCATCGTCTGAMNPAQPPSAELAAAHGEELPTADFFAFESLLSDGERNKLAELRDFLATEIAPYAGEWWNKAEFPAHILPKLAALELSTPAQRGYSHLFAGLVIAEMTRVDTSIATFFLVHHDLFVESLYAFGSPGQRERLLGDASNLRITGAFALTEPGHGSDVAGGMETRARRISSRTGEPDAEGDSWVLNGAKRWIGNGTFCDYLLVWARDEADGAVRGFIVDASLPGVSRSRIENKMALRTVQNADIVFADVRVAEADRFSGIASFDDTNRLLRGSRIMVAWQGVGQQLAAFDVARQYAVERHQFGRPLAKFQLIQQQLVTMLGNTVASMGMMVRLAQLQEDGAADMPQVALAKSYISARMRETVAMGRSILGGNGIVTEYRMAKIFADAEAIFTYEGSFEINSLIVGRAVTGVSAIVPGPT0021815_480DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-29_00781852hypothetical proteinATGAGCACACCCGCAGCAGCCCAGCTGGAGCGATGGCAACGCTTCCGCAGCAACCGGGACAAGGCACTGGCCACCCCGCACGGCTGGCTCACCCTCACGTCGTTCCAGTGGCTGGACAGCGAGCCATCCGCCGCCGAAGCCGCCCCCGGCCTCTGGTCAACGGACGGCTCGACGGCGGCACTCACCGCCGTGCCGCAGGACGGGCTGACGTTCGTGGAAACCGGCGAACCGGTGGACGGCACGGTCACGGCACGGCTGGCCGACGAGGAGTCCCTGATGTGGGTGCAGTTTGACGGCGCGGACGGACAGCCGGTGGTGGTGGAACTGGCTATGCGGGCCGGCCGGTACGCCATCCGCACCCGGGATTCCGGCTCACCGGTGCTGACGGAGTTCGACGGCGTCCCCACCTTCGACTACAACCCGGACCTGGTGATCGAGGCCAGCTTCCGCCCCTATCCTGAACCCGTGGACGTCCCGATCGGTACCGCAAACCCGCTGGTGGATGGCGTCCACCGGTCTGTGGGCGAACTGGTGTTCCGGCTGCCCGGCAAAGACCACGAATTCCATCTGCAGGCCGAGGAGGAAAAACTCGGCGCCCTGACGGTCACGTTCCACGACGAAACCAACGGATCCGGTCCGCCCGAACAAGCAACGGCCGAATGGCGCAAGGTATCCACGCCCCGGCCCCGCGTCGATCCCTCCGGAAACGCGTATGTGGTTCTGGACTTCAACCGGGCCATCAACTACCCCAGCGCCTTTACGCCCTATGGAACCTGCCCCATGCCGGTGAAGAACAACAGCCTTGACGCCAGGATCGAGGCCGGCGAGAAGATGCCCGGGCCCGCGGACTGAMSTPAAAQLERWQRFRSNRDKALATPHGWLTLTSFQWLDSEPSAAEAAPGLWSTDGSTAALTAVPQDGLTFVETGEPVDGTVTARLADEESLMWVQFDGADGQPVVVELAMRAGRYAIRTRDSGSPVLTEFDGVPTFDYNPDLVIEASFRPYPEPVDVPIGTANPLVDGVHRSVGELVFRLPGKDHEFHLQAEEEKLGALTVTFHDETNGSGPPEQATAEWRKVSTPRPRVDPSGNAYVVLDFNRAINYPSAFTPYGTCPMPVKNNSLDARIEAGEKMPGPADNANANANANA
D1-29_00782354hypothetical proteinATGAAGATCGCCATCCTTGGCACGGGAACGGTAGGGCGGACATTGGCCCCTGCATTCTCGGCACTGGGCCACACCGTTGTCCTGGGGACCCGCGACCCGCAGGCGACCTTTGCCCGGACCCGCCCTAACGCCGTCGGTACCCCGCCGTTTAGCGAATGGCACAGCAGGAACCAGCACATCCCGCTGGAGACGTTTGCGGATGCTGCGGCCCAGGCGGAACTGGTGGTTAACGCGACCGACGGCGCGAGGTCACTCAGCGCGCTTGGCTCGGCCCGCTCAGCTAACCTGTCCGGCAAAGTCCTGATGGACGTTTCCAACCCACTGGACTTTCCCAGGGCACGCCGCCGGTCCTGAMKIAILGTGTVGRTLAPAFSALGHTVVLGTRDPQATFARTRPNAVGTPPFSEWHSRNQHIPLETFADAAAQAELVVNATDGARSLSALGSARSANLSGKVLMDVSNPLDFPRARRRSNANANANANA
D1-29_00783267hypothetical proteinGTGGTGAAAACCCTCAACACCATGAACGCGGGGCTCATGGCTGATCCCGGGCGGCTGGCGGGCGGGGACCATTCGGTGTTCGTGTCCGGAGACGACCCCGGGGCCAAACAGACGGTGGCTGAGCTGCTTGCGGCATTGGGGCACCGGGACATCATCGACCTCGGCGATGTCACTAGTGCCCGCGGTGCCGAGATGATGCTGCCCGTCTGGCTGCGGCTGTGGTCAACGCTGGGGACGGCTGATTTCAACTTCAAGATCGTCCGCTGAMVKTLNTMNAGLMADPGRLAGGDHSVFVSGDDPGAKQTVAELLAALGHRDIIDLGDVTSARGAEMMLPVWLRLWSTLGTADFNFKIVRNANANANANA
D1-29_00784339hypothetical proteinGTGAACGACGTCCCTCAGCATGATGAACTTCCCTTGCCCGACTACGATCACCTTCCGACGGGGACGCTGGCCTCGCGGATCACAGGACTGAACGAAGCGGACCTGACGAAAGTGCTGGCCTACGAACGGGCACACGGGAACAGGCTTCCTGTTGTGCAGATTCTGGAGCACCGGCTTGATGCTGTGCAAAACGGTGCTGAGCCCAGCGGTCCAACCGTCCCACCTACCCCTGAGATGACTCAAAGCCAGCACGGGTCACCGGTATCACCTGCAACGTCAGGGCCGCCCGTCAATCCCCCGTCCCAAGGCGACCCAACAAATCCCTCCCAACCACGCTAGMNDVPQHDELPLPDYDHLPTGTLASRITGLNEADLTKVLAYERAHGNRLPVVQILEHRLDAVQNGAEPSGPTVPPTPEMTQSQHGSPVSPATSGPPVNPPSQGDPTNPSQPRNANANANANA
D1-29_00785297hypothetical proteinATGACTACAGAACCGACGGAGAGCATCGACACCAACGACGGCGACGGCACCGCACCGGTCAAAGACGGTCTCAGTGGGAGGGTGGAGCCACTCGCCCGTGAAGCCGTTGACGCCGTCGGGCCGGAAGCGGGTGCCGAACCCGGCAGCGCGAACGATTCCCGGGCCGAGACGGAAAACAGCAGCGGCAGCCCCGACGACGTCGAAGGCCTCAACAAGGCCGCGGGACCGGCACAGGAATCCAACGACCAGGCGGCGGACAGCCGTTCCCTGACCACTGACACCAGCCCCAGCGACTAGMTTEPTESIDTNDGDGTAPVKDGLSGRVEPLAREAVDAVGPEAGAEPGSANDSRAETENSSGSPDDVEGLNKAAGPAQESNDQAADSRSLTTDTSPSDNANANANANA
D1-29_007862820ppcCOG2352Phosphoenolpyruvate carboxylaseATGGCTGACACTGCAATCAATTCCGGAACTGACCTCGCCTCCGAGTTGAGGGCCGATGTCCGGCGCGTCTCCACGCTGCTTGGCGAATCTCTGGTCCGCCAGCACGGGCCCGAGCTCCTGGACCTGGTGGAGCAGGTTCGCCTCCTCACCAAGGAATCCAAGGAAGCCGCCCGTGGTGGTGCGCACGCCACCGGCCCGTGGAGCGCGCACGACGTCGTTGCCCAGGTTCGCGAGCTCCTGGGGTCCCTGCCCATTGAGCAGGCCACCGACCTGGTCCGCGCCTTCGCCTTCTACTTCCACCTCGCCAACGCCGCCGAGCAGGTCCACCGGGTCCGCGGCCTGAGGACCAGGCAGGAGAAGGACGGCTGGCTGGCCAAGGCTGTCACGGACATCGCCGGGCAGGCCGGGCCCGCTGTGCTGCAGGAAGTGGTAAACGGGCTGGATGTCCGCCCCATTTTCACCGCGCACCCCACGGAGGCTTCCCGGCGTTCGGTGCTGGACAAAATCCGCAAGCTCTCCGACGTGCTGGCACAGCCCACACAGGAAGGCACCACCGCCCGCCGCCGGCAGGACCGCCAGCTCTCGGAAATCATCGACCAGATGTGGCAGACCGACGAACTCCGTCAGGTCCGCCCCACGCCTGTGGACGAGGCCCGCAACGCCATTTACTACCTGGGCAGCATCCTCACCGATGCCATGCCGGAGATGCTGACGGAGCTGTCTGAGCTGCTGGGCGAGCACGGCGTAAGCCTGGCGTCAAAGAACGCGCCCATCCGCTTTGGTTCCTGGATTGGCGGGGACCGGGACGGCAACCCCAACGTCACTGCCGCGGTCACCCGGGAAATCCTGCAGATCCAGAACCAGCACGCGGTACGGATCAGCATCGGCATGATCGATGAACTCATCTCCGTCCTGTCCAACTCCACTGCGCTGGCCGGCGCTGACCAGGAACTGCTGGACTCCATCGACGCCGACCTCAAAAAGCTGCCGGGCCTGGACCGCCGCGTGCTGGAGCTCAATGCGCAGGAGCCCTACCGGCTGAAGCTGACGTGCGTCAAGGCCAAGCTGATCAACACCGGCAAGCGCGTGGCAACAGGTTCCTCCCACGAGCACGGCAGGGACTACAGCGGCACCGACGAACTCCTGGCCGACCTGGAACTGGTGGAACTTTCCCTTCGAAACCACTCGGCGTCGCTGGTTGCGGACGGAGCCCTGGCACGCGTCCGCCGGGCGGTAGCCTCGTTCGGCCTGCACCTGGCCACGCTGGACATCCGCGAGCATGCAGACCACCACCATGACGCCGTCGGCCAGCTGATGGACAGGCTGGGCGGCCCCGGCCTCCGCTATGCGGAACTGAGCCGCGGGGAGCGCCTGGAGGTGCTGGGGTCCGAGCTTGCCTCACGCCGGCCGCTGTCCGGGCACCCGATCAAGCTCGACGGCGTTGCTGACGGCACGTACGACGTCTTCCGTGAGATCCGGCGCGCCCTGCGCACCTACGGCCCGGATGTCATCGAGACCTACATCATTTCCATGACGCGCGGAGCGGACGATGTCCTGGCGGCCGCTGTCCTGGCCCGCGAGGCCGGGCTGGTGAACCTCTTCGGGGAAGCTCCTTACGCCAAGATCGGGTTTGCGCCGCTGCTGGAGACGGTGGAGGAGCTCCGGGCGTCAGCCGAGATCGTGGACCAGCTGCTGTCCGATCCTTCCTACCGGGAGCTGGTGCGTCTGCGCGGTGACATCCAGGAAGTCATGCTGGGCTACTCGGACTCCAACAAGGAATCCGGTGTCATGACCAGCCAGTGGGAAATCCACAAGACCCAGCGGAAGCTGCGTGATGTCGCGGCCAAGCACGGCGTCCGGGTGCGCCTCTTCCACGGCCGCGGCGGTTCCGTGGGCCGCGGCGGCGGACCCACCTACGACGCGATCATGGCCCAGCCCAACGGCGTGCTCGAAGGTGAAATCAAATTCACCGAACAGGGCGAAGTCATCTCGGACAAGTATTCGCTGCCGGAGCTTGCCCGCGAGAACCTGGAGCTTTCCCTCGCGGCCGTCCTCCAGGGCTCGGCCCTGCACCGCAGCCCGCGTACCTCCGAGGACCAGCGCGAACGCTACGGCCACGTGATGGAGACCATTTCGGACGGAGCCTTTGACCGGTACCGGAAGCTGATTGACCATCCGGACCTGCCGGCCTATTTCCTGGCATCCACCCCGGTGGAGCAGCTGGGGTCCCTGAACATCGGTTCCCGGCCGTCCAAGCGCCCGGACTCCGGGGCAGGCCTCGGTGGCCTGCGCGCCATACCCTGGGTGTTCGGCTGGACCCAGTCCCGGCAGATCGTCCCGGGTTGGTTCGGTGTGGGATCAGGGCTGAAGGCTGCCCGCGAGGCCGGGCACTCCGCCCAGCTGGTGGAAATGATGGAGAACTGGCACTTCTTCCGCTCGGTGCTCTCCAACGTGGAGATGACGCTGGCCAAGACAGACCTGGACATCGCCGGCTACTACGTTTCCACCCTGGTCCCCGAGGAGCTGCACCACATCTTCCGGACCATCCGCGCAGAGTATGAACTCACGGTGGCGGAAATCCAGAACCTCACCGGCGAGAACCTGCTCCTGGATGCCCAGCCAACGCTTAAGCGCTCGCTGGAGATCCGTGACCAGTATCTTGACCCCATCAGCTACCTGCAGGTGGAACTGCTCCGCCGCGTGCGGGCCGAGGGTGCAGGGGACAGCAGCATCAGCGGGGCGGAGATCAACGAACGGCTCCAGCGCGCCATGCTCATCACCGTCAACGGAGTGGCAGCAGGCCTGCGGAACACCGGGTAAMADTAINSGTDLASELRADVRRVSTLLGESLVRQHGPELLDLVEQVRLLTKESKEAARGGAHATGPWSAHDVVAQVRELLGSLPIEQATDLVRAFAFYFHLANAAEQVHRVRGLRTRQEKDGWLAKAVTDIAGQAGPAVLQEVVNGLDVRPIFTAHPTEASRRSVLDKIRKLSDVLAQPTQEGTTARRRQDRQLSEIIDQMWQTDELRQVRPTPVDEARNAIYYLGSILTDAMPEMLTELSELLGEHGVSLASKNAPIRFGSWIGGDRDGNPNVTAAVTREILQIQNQHAVRISIGMIDELISVLSNSTALAGADQELLDSIDADLKKLPGLDRRVLELNAQEPYRLKLTCVKAKLINTGKRVATGSSHEHGRDYSGTDELLADLELVELSLRNHSASLVADGALARVRRAVASFGLHLATLDIREHADHHHDAVGQLMDRLGGPGLRYAELSRGERLEVLGSELASRRPLSGHPIKLDGVADGTYDVFREIRRALRTYGPDVIETYIISMTRGADDVLAAAVLAREAGLVNLFGEAPYAKIGFAPLLETVEELRASAEIVDQLLSDPSYRELVRLRGDIQEVMLGYSDSNKESGVMTSQWEIHKTQRKLRDVAAKHGVRVRLFHGRGGSVGRGGGPTYDAIMAQPNGVLEGEIKFTEQGEVISDKYSLPELARENLELSLAAVLQGSALHRSPRTSEDQRERYGHVMETISDGAFDRYRKLIDHPDLPAYFLASTPVEQLGSLNIGSRPSKRPDSGAGLGGLRAIPWVFGWTQSRQIVPGWFGVGSGLKAAREAGHSAQLVEMMENWHFFRSVLSNVEMTLAKTDLDIAGYYVSTLVPEELHHIFRTIRAEYELTVAEIQNLTGENLLLDAQPTLKRSLEIRDQYLDPISYLQVELLRRVRAEGAGDSSISGAEINERLQRAMLITVNGVAAGLRNTGPGPT0001165_1015DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-ALTERNATIVE_PAHTWAYSCO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595NANA
D1-29_00787306hypothetical proteinATGCCTTCGTTCCAGACCCGCCTGAAGATCACCGGTTTGAAGCCGGGCAACCCGCCGGAAGCGGTGATGGCCGCCGCCGTGGAGGCCCTGGAGACCCGGCACCACGTGGAGGCAAACCAGCTGGAGATCGCCGGCGGCGTTCCCCAGTTGAACCTGCGGTTCCTCGTGGAACCAAGCGAATACAGCGGTGAGAACCGGCAGGCGCAGGAATCGGCAGCGATGGTGCGCGACGCCGTCGAACGCGTTGCGCTGACCGGCTCGCTGACCGTCCTGCGGCGCAGCCGCGGCCGCTGGGCGCCGGTCTAGMPSFQTRLKITGLKPGNPPEAVMAAAVEALETRHHVEANQLEIAGGVPQLNLRFLVEPSEYSGENRQAQESAAMVRDAVERVALTGSLTVLRRSRGRWAPVNANANANANA
D1-29_00788663hypothetical proteinGTGCGGTACCTTGTGGCCATGGACTTTGGCAACGCCCACAGCTGGGGGGCGGCGATCTATTTCTGGATCATCCCCCTTGTTCTCGGCGATGCCATCTTCCCGGCAATCCCCTCTGAAATGGCGGTAATCACGGGCGGGGCGCTGTCCGCCGACGGCCGCGCCAACGTGTTCCTGGTGGGAGCAATATCCGCGTTTGCCTCCTGGCTGGGCGACATGGTGGTGTTCCAGCTGTTCAAGCGCCGGCTCAGCCACGTGCTGGACCGCTGGCGCTGGGGCCGGAAAGTGCACAGCGGGATCCACCAGGCCACCGCCAAGGCCGGACGTTCCTCCACCTACGGGACCATCATCGGCGCAAGGTTCATCCCGGGCGGGAGGCTGGCGACGTCAGCGGCGGCAGGGATCGCGGATGTTTCGGTCCGCGGGTTCAGCCTGTGCGCCGGGCTCGGTGCCGTGCTGTGGGCCAGCTGGCTGGTGGGCCTGGGCTACTTCACGGGGTCCGCCACAAAGCTGCCTTTCTGGGCAAGCTCTCTGATCGGGGTGGCACTGGGGCTGGTGATCGGGATCATCGTCGGCATTATTGTCACCCGCCGGCGCGGCAACCGCTCGCCAGTAGATGAACCCGGCCCCGCTGAACAGGGAAGTCCGGAACCGGGCACAGGTTAGMRYLVAMDFGNAHSWGAAIYFWIIPLVLGDAIFPAIPSEMAVITGGALSADGRANVFLVGAISAFASWLGDMVVFQLFKRRLSHVLDRWRWGRKVHSGIHQATAKAGRSSTYGTIIGARFIPGGRLATSAAAGIADVSVRGFSLCAGLGAVLWASWLVGLGYFTGSATKLPFWASSLIGVALGLVIGIIVGIIVTRRRGNRSPVDEPGPAEQGSPEPGTGPGPT0004890_2765DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
D1-29_00789531ymdBCOG2110O-acetyl-ADP-ribose deacetylaseATGCGAATCCGCATTCTCCAGGACGACATCACCGTCCGCGCCGTGGATGCGGTGGTGAACGCTGCGAATTCGTCGCTGCTGGGCGGCGGCGGCGTCGACGGTGCCATCCACCGGGCGGCCGGGCCCGAGCTGCTGGAGGCCTGCCGCGAACTGCGCGCTACGAGCTTGCCGAACGGTCTGCCGGTGGGCGCCGCGGTGGCCACTCCCGGCTTCCTGCTCCCGGCGCGGTGGGTGATCCATACCGTCGGGCCCAACCGCCATGCCGGGCAGACGAACCCGGCGCTGCTAATTTCCTGCTTCAGTGAAAGCCTCCGGGTGGCGGATGCCCTGACAGCCGGTTCCATCGCTTTTCCGGCGGTGGGCGGCGGTGTCTACGGATGGCACGGCCGGCAGGTGGCGGAGGCAGCCTTCGACGCCGTCAACGGCTTTACTGCCTCCCATCCGGACAGCACAGTGGAGTTGGTGGAGTTTGTGTTGTTCGGCCCTGAGATGGAGGAGACGTTCAAGGCTGTGTTTGAGCAGCCTCGCTGAMRIRILQDDITVRAVDAVVNAANSSLLGGGGVDGAIHRAAGPELLEACRELRATSLPNGLPVGAAVATPGFLLPARWVIHTVGPNRHAGQTNPALLISCFSESLRVADALTAGSIAFPAVGGGVYGWHGRQVAEAAFDAVNGFTASHPDSTVELVEFVLFGPEMEETFKAVFEQPRPGPT0027680_1581DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-darG-darT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027680-antitoxin_darG-K23518NANA
D1-29_00790969hypothetical proteinATGCAATCCCCCCTCCCCGTGCGCGACGGCGTTAATGCCACCCGCCTGCGCCTGCCGGACGAGGGGCCGTGGAGCACCGCCATGGACTACATGATGCACCGCTGGGGCCACATCGATCCGCAGGGCATCGAGGACAGGTTCGACGCCGGCGAGATCGTGGGTGAGGGCGGCGTGCTGCTGGACCGCGCCACCAGGCTGCAGGACCACACCTTCATTTGGTACTACCGAAGCCTGCCGCCGGAACCCCGGATTCCGGTGGAGCTGTCCATTCTCCACCAGGACGAGCACCTCCTGGTGGTGGACAAACCGCATTTCCTGCCCACCACCCCGGGCGGCACCTACATCCAGGAATCGGCCCTGGTGCGGCTGCGGAACCAGCTGGAGCTGCCGGACCTGATCCCCATGCACCGGCTGGACCGGATGACCGCAGGCATCCTGCTCCTGTCCACCAACCCCGAGACGCGCGGAAAGTACCAGGTGCTCTTCGAGAAGCGACAGGTGCAGAAGGAGTACGAGTGCGTCTCCGCCGCGGAGCCCGCTGCTGGTCACGCCGCCGTCGACTTTCCGGTGGTGGTGCGGAACCGGATGACCAAGTCCCGCAGCTACCTGCTCGCCGAGGTCATTGAGGGCGAACCGAACGCGGAAACCCGCATCGATCTGATCAGGACGTTCGACGGCGGCGCTTCCGCGGCTGCCCTGGCGCACCGCGGTGCAGCCCGCCACGCGCTGTACCGGCTGGAGCCGCACTCCGGGAAAACCCATCAGCTTCGGGTTCATATGGCCTCGCTCGGCCTGGGCATTGTGAACGACTCGTTCTACCCAGACCTGCTGGACAAAGCTCCGGACGACTACAGCAAGCCTTTACAGCTCCTGGCCCGCGGCATCCGCTTTGTGGACCCCATCTCGGGCAAGCCGGTGGAGTACCGCAGCCAGCTTGAGCTCAGCGAGGCTGCTCAAACACAGCCTTGAMQSPLPVRDGVNATRLRLPDEGPWSTAMDYMMHRWGHIDPQGIEDRFDAGEIVGEGGVLLDRATRLQDHTFIWYYRSLPPEPRIPVELSILHQDEHLLVVDKPHFLPTTPGGTYIQESALVRLRNQLELPDLIPMHRLDRMTAGILLLSTNPETRGKYQVLFEKRQVQKEYECVSAAEPAAGHAAVDFPVVVRNRMTKSRSYLLAEVIEGEPNAETRIDLIRTFDGGASAAALAHRGAARHALYRLEPHSGKTHQLRVHMASLGLGIVNDSFYPDLLDKAPDDYSKPLQLLARGIRFVDPISGKPVEYRSQLELSEAAQTQPNANANANANA
D1-29_007911521hisC_1Histidinol-phosphate aminotransferaseATGCCCGGCACCCTAAACTCCCCAGCCTTGGCCCGTCTCCTGGGTAAGTGGCACCTCGGCGCCGCTCCCGCCTACCGCGAACTGGCCGACGTCGTACGCCTCCTGATCCTGGACGGAAGAGTTGCACTGGACACCGCCCTCCCCAGCGAACGGTCATTGTCCGACACGCTCGGCGTCAGCCGGACTACTGTTACGGCCGCGTATGCCCATCTCCGCGAACAGGGCTTCCTCAGCAGCGGCCAGGGCAGCCGGGGACGCACCCGGATCCCCCGGCTGACGCCCCTGCGGCCCACCTCGCCGGCGTATGGGGAGCTTCCGGGCCTTGGAAACGCAGGACCCGGTCTGGCAGCGCCTGGTCTCACGGCGCCGGACGGACTGATCGACCTGGCGTATGCGGCGCTTCCCGCTAGCGGCGAGGTGGTTCACCGCGCCTTCGCAGCGGCCCTGACCGAACTGCCGGCCCTGCTGCCGGGATTTGGGTACGACGCCATGGGCCTGCTGCCGCTCAGGGAGGCCATCGCGGAGCGCTACACCGCTGCAGGAGTTGCAACGGATACAACACAAATCATGGTGACATCAGGAGCCCAGCATGCTTTGAACATCGTCATCCGGGCTTTGACGGAACGGCAGGACAAAATCCTGGTGGAGCATCCGAGCTACCCCAACGCGCTGGACGCCATCCGCGCGGCCGGTTGCCGTCCCGTCCCTGTGGCGTTCGTGGGCCAGGCCGCCGGGGGAAGCCAGGTGCCGGCCTGGGATATGCCGGCACTCCAGGCGGCCCTGATGCAGCAGCGGCCCAGGATCGCCTATGTAGTGCCGGATTTCCACAATCCCACCGGCCAGTTCATGCCTGATAGCCAACGGCGTGAACTGGTCCGAGCGGCAACAGCTGCCGGAACGGTGCTGGTGGTGGATGAAACACTCCGGGAGTTGAATCTCGACGGCGCCGCCACCACTCCGGTGGCAGCCTTCAGTCCCGCCGTGGTAACCATCGGCTCGCTCAGCAAATCCCATTGGGGCGGCCTTCGCACAGGCTGGATCCGGGCCTCGGAGTCCCTCATCCATCGCTTTGCAGCTGCCCGGACAACCCTGGACCTTGGCGGTCCCGTCATGGAGCAGCTGGCGGCGGCACACCTGGTCCGCGCCTTGGACGAGCCGCTGCCGGCCAGGCTTGATTCCCTCCGCGACGGCCGCTCGGCATTGCGGGAGCTGCTGGGCAGGCACCTGCCGGAATGGGTAACTGCGCGGCCCGCCGGTGGCCTGTCCGTCTGGTGCAAGTTGCCTGGCCCCATCAGCACGGCATTGACCGTAATTGCTCCCGACTTTGGCATCAGGCTGGCTGCCGGGCCGCGCTTCGGCATCGGAGGGGCCTTCGAACGCTACCTCCGCGTGCCCTTCACGTTGCCTCCTGACCAGCTCGAAACGGCGGTCCTGGCCCTGCGGCAGGCCCAGGACAGGCTCGACGCCGCCCCGCAGCTCCGTCGCACCCTCAAGACTGCCCCTGCCGTGGCTATCGCATGAMPGTLNSPALARLLGKWHLGAAPAYRELADVVRLLILDGRVALDTALPSERSLSDTLGVSRTTVTAAYAHLREQGFLSSGQGSRGRTRIPRLTPLRPTSPAYGELPGLGNAGPGLAAPGLTAPDGLIDLAYAALPASGEVVHRAFAAALTELPALLPGFGYDAMGLLPLREAIAERYTAAGVATDTTQIMVTSGAQHALNIVIRALTERQDKILVEHPSYPNALDAIRAAGCRPVPVAFVGQAAGGSQVPAWDMPALQAALMQQRPRIAYVVPDFHNPTGQFMPDSQRRELVRAATAAGTVLVVDETLRELNLDGAATTPVAAFSPAVVTIGSLSKSHWGGLRTGWIRASESLIHRFAAARTTLDLGGPVMEQLAAAHLVRALDEPLPARLDSLRDGRSALRELLGRHLPEWVTARPAGGLSVWCKLPGPISTALTVIAPDFGIRLAAGPRFGIGGAFERYLRVPFTLPPDQLETAVLALRQAQDRLDAAPQLRRTLKTAPAVAIANANANANANA
D1-29_00792714hypothetical proteinATGATCCCTCGCAGACTCGTCCAGCTCTTTATCGGCCTCGCCATGTACGGCATCTCCCTTGCCATTTTCATTCGAGCGGGCCTCGGACTGGATCCCTGGGACGTATTTCATCAGGGCCTGGCGGAAAAGACAGGGCTCAGCATCGGCGTGGTAGTGATCATCGTGAGCTTCCTGGTGCTGCTGCTTTGGATCCCGCTGCGGCAATGGCCCGGGTTTGGCACGCTCTGCAACGCGGTACTGGTCGGGGTGTTCGCCGACATTGCCCTGGCCCTGATCCCGGAGGTGTCCCACCTGGGCGGCCAGATCGGAATGCTGGCCGGTGCCGTGCTGCTCAACGGAATCGCCTCGGCCTGCTACATCGGCGCCCGCTTCGGTCCCGGCGCCCGCGATGGGCTCATGACAGGCCTGGCCCGCCGCACCGGCTGGTCGGTTCGGATATCACGCACGCTGATCGAAGTGGTGGTGCTGGGTGCAGGATGGCTCCTCGGCGGTTCGGTGGGCGTTGGCACAGTCGTATACGCGCTCGCCATTGGTCCCTTGGTGCAGCTGCTGCTGCCGTACTTTATGGTTCCGGCTGCTGCTCCCGTTGACGTACCTGAGGCTGACGCTCTAGGGGACGGATCCTCTGACACCGAGCCCGGCAGCGAGGCCCTCTCCGCCAGCCGTGCCACCTCTTCAGGTTCTCCCCGCGGCGCAGGCGGATCACCCTCATGAMIPRRLVQLFIGLAMYGISLAIFIRAGLGLDPWDVFHQGLAEKTGLSIGVVVIIVSFLVLLLWIPLRQWPGFGTLCNAVLVGVFADIALALIPEVSHLGGQIGMLAGAVLLNGIASACYIGARFGPGARDGLMTGLARRTGWSVRISRTLIEVVVLGAGWLLGGSVGVGTVVYALAIGPLVQLLLPYFMVPAAAPVDVPEADALGDGSSDTEPGSEALSASRATSSGSPRGAGGSPSPGPT0026395_859DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-SURFACE_PROTEIN,PGPT0026395-yczE|yyaS-K07149NANA
D1-29_007931575alsTCOG1115Amino-acid carrier protein AlsTTTGAGCACAGTGAGAACGATGCAAGCGATACCCATGACTGTCACCGACGACGTCGGCTGGCTGGCCTCAGTCGAAGAATCGATTGATGCAGTCTTCCGCCCCATCGCCGACGTTTTTTCGTCCATTGTCTTTTTCCCGATCACGATCGGTGAGGTGAGCTTTCCGGCAGTGGTCGCCTGGCTGATAGCCGCGGGCGTGATCATCAGCATCTATTTCGGCCTCCCCCAGTTCCGTGGGCTCAAAGTCTCCTATGAGGTAATCCGGGGCCGTTACTCGGCAAAGGACGATCCGGGTGAGGTGCCGCATTTCCAGGCCCTCACCTCCGCCCTCTCCGGAACCGTTGGCCTTGGCAACATCGCCGGCGTGGGCGCGGCCATGGCCCTTGGCGGGCCGGGTGCCACTTTCTGGATGATCCTTGCCGGCTTGCTCGGCATGGCAACCAAGTTCGCCGAATGTACTCTCGGGGTCAAGTACCGCCAGATCCACGAAGACGGCACAGTCACCGGCGGACCGTTCAAGTACCTGCCGATCGCCTTTAAGAAATTGGGCAAATGGCCGGCGAAGATCCTCACGGGCATTTTTGCCGTCTCGATTTTGATCTTTGGTATTGCCGGTGGAAATATGTTCCAGGCCAACCAGACCTTCGCGCAGATGCGGAACGTGACGGGCGGCGACGAAGGCTTCCTCGGAAGCGCGGGAGCCGCACTGATCTTCGGCCTCATCCTCGCGGGCCTGGTCGCCGCGGTCATCCTTGGCGGCATGAAGTCCATCGGTGCCACCACCAGCAAGCTGGTCCCCTCTATGGCATTCATCTACGTCCTGGCGTGCCTCTTCGTCATTTTCGTCAATATTGGCCACGTTCCCGCCGCATTCGGGGCCATCATCGGCGGAGCCTTCAACCCCTCAGGCATGGCAGGCGGCCTGGTGGGCGTGATGATCGTGGGCTTCCAGCGAGCAGCGTTTTCCAATGAAGCGGGCCTGGGCTCAGCGGCCATCGCCCACTCGGCCGTCAAGACCCGCCGCCCCGTGAGCGAAGGCTTCGTCGCGATGTTCGAACCGCTTGTGGACACCGTCATCATCTGCACCATGACCGCCCTGGCCATCATCATCGCTGGAGCACCCAGCCTTCAGGCCGGCATCGACCAGGTTCAGGCCGGTGAAGGCGCTCCCGACGGCGTCATCCTCACCTCAGACGCGTTCGCCACCGTGATGCCCTGGTTCCCACTGGTCCTCGCCGTCGCTGTGGCCCTGTTTGCCTTCTCCACGCTCATCACCTGGTCCTACTACGGCCTCAAGTCCTGGGAATACCTTTTCGGACGCGGTAAGGCATCCGAAATCACCTACAAATGCGTTTTCCTGTTCGCCACGGTAGTCGGAACGGTGTTGACGTTCACCCAGGTGCTGAACTTTGCTGATGCCGCGCTGTTCGTCTGTGCGTTCGTGAACCTGCTGGGTGTTTACCTTCTGCTGCCGGTCATCAAGCGCGAGATGAAGGCCTACCTTGCCGACCGTAAGAGCGGAAAACTCCTGGAACTCGGAATCGAACCGGAGGAAGCACGCATCCCCACCGTCTGAMSTVRTMQAIPMTVTDDVGWLASVEESIDAVFRPIADVFSSIVFFPITIGEVSFPAVVAWLIAAGVIISIYFGLPQFRGLKVSYEVIRGRYSAKDDPGEVPHFQALTSALSGTVGLGNIAGVGAAMALGGPGATFWMILAGLLGMATKFAECTLGVKYRQIHEDGTVTGGPFKYLPIAFKKLGKWPAKILTGIFAVSILIFGIAGGNMFQANQTFAQMRNVTGGDEGFLGSAGAALIFGLILAGLVAAVILGGMKSIGATTSKLVPSMAFIYVLACLFVIFVNIGHVPAAFGAIIGGAFNPSGMAGGLVGVMIVGFQRAAFSNEAGLGSAAIAHSAVKTRRPVSEGFVAMFEPLVDTVIICTMTALAIIIAGAPSLQAGIDQVQAGEGAPDGVILTSDAFATVMPWFPLVLAVAVALFAFSTLITWSYYGLKSWEYLFGRGKASEITYKCVFLFATVVGTVLTFTQVLNFADAALFVCAFVNLLGVYLLLPVIKREMKAYLADRKSGKLLELGIEPEEARIPTVPGPT0014405_390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLYCINE_TRANSPORT,PGPT0014405-yflA|TC_AGCS-K03310NANA
D1-29_00794831nei1_1COG0266Endonuclease 8 1GTGCCTGAGGGGGATTCAGTCTGGCGCGCCGCCAACCAATTGCACCAGGCCCTGGCGCGGCAGAAGCTGACAGCCTCCGACTTCCGGGTGCCCCGCTTCGCTACCCTCAACCTTGCCGGCTGGACTGTCAGCGAGGTGGTCCCCCGCGGAAAGCACCTGCTCATGAGGGTGCAGGGGCCGGACGGGCAAAAACTGACCATCCACTCGCACCTCAAGATGGAAGGCTCGTGGCAGGTGTACCCGCCGGGCGGACGGTGGCGCAAACCCGGCTTCACCGCACGGTGCGTGCTCCGCACGGCAGCGGCAGACGCCGTCGGATTTTCCCTGGGCGTGCTTGAGGTTGTCCGCACAGACGCCGAAGATTCGGTGGTGGGCCACCTCGGCCCCGATCTGCTGGGACCTGACTGGGACCCGGCCGAGGCTGAACGCCGCATCCGCTCGGCCCCTGATGTCCCCATTGGTGTTGCCCTGCTGGACCAGCGCAATCTGGCGGGCATCGGCAACATTTACCGTTGCGAGGCCTGCTTCCTGTCCGGCGTCCATCCTGCATCCCCCGTTTCAGCCGTTGAGGATCTCCAGACCCTGATGACGGACGCCAAGCAGCTGTTGGAAGTGAACCTGGGGCCCGGCCGCCGGGTGACCATCCTGAATCCGCGCGGGTTGCCGGTGGGAAGGCAGGCGGGCAGGCCCGGCTACTGGGTCTACGGCCGCGAGCATCGGCCCTGCCTGAAATGCGGCACGCCTGTTCACCACGGCGTCCTGGGCAGACCCGACGGCGAGGAAGAACGGAACATCTATTTCTGCCCGCAGTGCCAACCGCTCCTGCCCTAGMPEGDSVWRAANQLHQALARQKLTASDFRVPRFATLNLAGWTVSEVVPRGKHLLMRVQGPDGQKLTIHSHLKMEGSWQVYPPGGRWRKPGFTARCVLRTAAADAVGFSLGVLEVVRTDAEDSVVGHLGPDLLGPDWDPAEAERRIRSAPDVPIGVALLDQRNLAGIGNIYRCEACFLSGVHPASPVSAVEDLQTLMTDAKQLLEVNLGPGRRVTILNPRGLPVGRQAGRPGYWVYGREHRPCLKCGTPVHHGVLGRPDGEEERNIYFCPQCQPLLPPGPT0004020_18DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
D1-29_007955112deaD_1ATP-dependent RNA helicase DeaDATGGGCCGCTTCAGCCAGCCCACCCGTGAGTGGTTCCTGGGTGCCTTCTCCGAGCCCACCCCTGCCCAGAACGGCGCGTGGGATGCCATCTCTTCCGGTTCGCATGCTTTAGTGGTGGCTCCAACCGGCTCCGGAAAGACGCTCGCGGCATTCCTCTGGGCCCTGGACCGCCTGCTCGTATCAGCCCCCGCCCCTGTGCAGGAACTTCCCGGGCTTGACGCCGTGCAAGTGGACGCCGCGCAAGGGAAGGGCAGGCGTCCGCGGGCGCCGAAGCGCAAGACTCGGGTGCTGTACATCTCGCCCCTGAAGGCACTGGGCGTGGACGTGGAGCGGAACCTCCGCTCGCCCTTGATCGGGATCACCCAGACCGCCAAAAGGCTGGGGCTTCCGGCTCCGCTGATCACCGTCGGAGTCAGGTCCGGTGACACTACAGCTGCGGACCGCCGGTCATTGCTCAGCAACCCGCCGGACATCCTCATCACCACGCCTGAATCACTGTTCCTGATGCTCACGTCCCGGGCCCGGGAGACCCTCTCCGAGGTGGACACCATCATTGTTGACGAGGTCCACGCCGTCGCCGGGACCAAACGCGGCGCGCACCTGGCGGTCTCCCTCGAGCGGCTCGACGCGCTGCTGCCTCAACCTGCGCAGAGGATCGGGCTGTCAGCCACCGTGGAGCCCCGGGAGCTGGTGGCTCAGTTCCTCGCGGGTTCCGCCCCTGTGCAGATCGTGGCGCCGCCTTCCCGTAAGAACTGGGACCTGACAGTCTCCGTTCCTGTGGAGGACATGTCCGATCTCCAGGGCGCTGCCGCCGCCCATGACTCCGGCCCTGCCTCCGGGCTGCAGCCGCAGGCCTCCATCTGGCCCCACGTCGAGGAAAAAATCGTTGACCTGGTGCTGGACAACCAATCCACCATTGTCTTTGCCAATTCAAGGCGTCTGGCGGAGCGGCTGACGGCCAGGCTGAACGAGATTTACGCTGAACGGCAGCTGGTGGCCGTGGGTGGAGGCTGGGACGATCCTGCCCCGGCTGCTCCAGGAGTGCCTGCTTCGACGGCCACCCCGGCTCATATGATGGCCCAGGCCGGCAGCACCGCCGGAGCAGATCCTGTGCTTGCCCGCGCGCATCATGGCTCAGTGTCCAAGGACCAGCGGGCACTGATTGAGGATGATCTTAAGTCCGGCCGGCTGCGCTGTGTGGTGGCAACGTCGTCGCTGGAACTCGGCATCGACATGGGCGCCGTGGACCTGGTGGTACAGGTGGAATCCCCGCCGTCCGTGGCCAGCGGGCTTCAGCGTGTGGGCCGCGCCGGGCACCAGGTGGGAGAAATATCGCAGGGCGTGCTGTTCCCCAAGCACCGGGCGGACCTCGTGCACACCGCCATCACAGTGGAAAGGATGCTCGAAGGCAAGATTGAACGGCTCAGCGTCCCCGCCAATCCGCTGGACATCCTGGCGCAGCAGACAGTGGCCGCTACGGCTCTGGGCAGCATCGACGTCGAGGAATGGTTCTCCACGGTCCGGAGGTCCGCCCCCTTCGCGTCCCTCCCCCGTTCGGCCTATGAAGCAACACTGGACCTGCTGGCTGGCCGCTACCCGTCTGACGAATTCGCCGAGCTGCGGCCCCGGATTATCTGGGACCGCAACGCCGGCACCATTGAAGGCAGGCCGGGAGCCCAAAGGCTGGCCGTGACCTCCGGCGGAACCATCCCGGACCGCGGCCTCTTCGGTGTCTACATCATCGGCACAGAGGTTGAGGGCAGCGCCTCCCCGGCCGATAGGAACGGTTACGGCAAGGACGGGAAGGCCCCCGCCCCGGCGTCCCCCGCGAAAGGCGGCAGGCGGGTTGGCGAACTGGACGAGGAAATGGTCTACGAGTCCAGGGTGGGCGACATCTTCGCCCTCGGCGCCACCAGCTGGAAGATCGAGGACATCACCCATGACCGGGTCCTGGTGTCTCCGGCCTTTGGGCAGCCGGGCAAGCTTCCCTTCTGGAAGGGCGATTCGCTGGGGCGTCCCATAGACCTGGGCCGGGCGCTGGGCGCCTTTGTGCGGGAACTGTCCGCGGCAGACCCGGGCCCCGCCGCGGAGCGGTGCACGGCGAGCGGCCTGGACCAGTTCGCCGCGAACAACCTCATCCAGTACCTGGAGGAACAGAAGCTCGCCACCGAGGTTGTCCCCAGCGACACCACCCTGGTGGTGGAGCGGTTCCATGACGAACTGGGCGACTGGCGCGTTATCCTGCACAGCCCGTTCGGCATGCCCGTGCACGCGCCCTGGGCACTCGCCGTCGGACAACGCCTGCACCAGCGCTACGGCCTGGACGGCTCCGCGATGGCTGCCGACGACGGCATAGTGCTTCGCGTCCCCATGATGGAGGACGAGCCGCCCGGGGCAGAGCTGTTCCTCTTTGATCCGGAAGAGCTGGAGCAGATCGTCACAGCGGAGGTGGGCGGGAGTGCCCTGTTCGCCTCGCGCTTCCGTGAGTGCGCCGCCCGCGCCCTGCTGCTCCCCCGCCAGACGCCGGGCAAGCGCCAGCCCCTCTGGCAACAGCGGCAGCGGTCGGCCCAGCTGCTGGACGTCGCACGGAAGTACCCCACGTTCCCCATCGTCCTGGAAACCGTCCGGGAATGCCTGCAGGACGTTTACGATCTTCCGGCGCTGAAGGACATTGCCGCCTCCGTGGAGCGCCGCGAGCTGCGGATTGTGCAGACCACCACCCAGCAGCCCTCCCCCTTCGCCAAATCCTTGCTGTTTGGGTACGTTGCACAGTTCCTGTATGAGGGCGACTCACCGCTGGCAGAGCGCCGGGCAGCGGCACTTGCCTTGGACTCAACCCTCCTGAACGAACTCCTTGGCCGCGTCGAGCTGCGGGAACTGCTGGACGCCAGAGTCATCGAAGCCACCGAGCGCGAACTCCAGCGCCTTGCCCCCGGCCGGCGGGCCCGTGGCATCGAAGGCGTGGCGGACCTCCTTCGGCTTCTGGGGCCGTTGGCTCCGGAGGAGGTCGCCGCTCGGCTCGAGCATGACCCGAAAACCGGGCCGGCCGACGTCGGGGCAACGGAGGCCGGGGCGGCAGGTGTCAGCGCGGCGGATGCCGGGGCGGCGACGAAACCTGGCCCAGTCCCGGAACTTGCCGGCGCGGCTGGAACTGATGACGGGACCGAGCCGGACAGCCCCCATGCAGGCACCGGCGTAGCCGCCGGGCACCTGGCTGCCTTGCAGCGGACACACCGCGCCATCCGGGTGAATCTGGCAGGCGTGGAGCGCTTCGCCGCCGTGGAGGATGCCGCCCGGCTGCGGGATGCCATTGGCGTACCGCTGCCCATGGGGGTTCCGCTCGCCTTCCTTGAGCCGGTGGAAGATCCGCTCGGCGACCTGGTTTCACGTTTTGCCCGCACTCACGGACCCTTCACCGCGGACGAAGCTGCCGCCAGGCTGGGACTCGGCGTCGCCGTCGTCGCCACCGCCCTGAAACGGCTTGCGGCGGACGGCCGTGTGGTGGAAGGCGAATTCCGCCCGCACGCCGCGCCCGCGGAACCTGCGCCGGTACCTGCGCCGGGAGATGGACCGGAATCTGCCCCGGGCGATGGGCGCGAAGAAACGCGGGATGAAATGCCAGGGGCCATGCCTGCCGTCCGGCTGCCGCAGCCCACCACTAGCGAGTGGTGCGACGCCGAGGTCCTCAGGAAGCTCCGGCGCCGCTCATTGGCCGCGCTCCGGGCTGAAGTGGAGCCGGTGGACGGCGCCGCGTACGGCCGGTTCCTTCCCGCATGGCAACACGTCCAGACGCCCGGTTCCGGACGCGGCCAACCGGCGTTGCGCGGGCTGGACGGCATCGTCACCGCCATAGACCAGCTCTCCGGTGTGCCGGTCCCTGCGTCTGCGTGGGAACCGCTGGTCCTGGCCAGCAGGGTCTCCAATTACCAGCCAGCCATGCTGGATGAGCTGATGGCGGCCGGTGAGGTCTTGTGGTCCGGAGCGGGTTCCCTGCCCGGGAACGACGGCTGGATCAGCCTCCATCTGGCTGAATCCGCCGAGCTGACGCTGAATCCAGCCCTTGAGTATGAACCCGGCGATGCGCAGCAGCGGCTGCTCGAGCACCTTCGGAACAATGGCGGCGGATATTTCTTCCGCCAGTTGACTGACGTTGCAGGCGGTATGGACAGGGTGTTGAGCGATCAGGAGGTGGTGTCCGTGCTGTGGGACCTCGCGTGGGCGGGACGGATTACCGGGGACACTTTCGCACCGGTCCGCGCGCTGATCGCCGGCGGGCACACGGCTCACCGTCAGGTTGCCCGTCCGCCGCGGGCCAGGGCCCCCCGGATGAGCCGTTTGGGCCGCTCCCATGGCACTGGCCTGCTCGGCTCACCCGGGCTGGGGCCTTCGGGCGTTGGGCGGTACGGTTCGGCGTCCGGGGCCGGAGCCACTCCCCCCATGGCGGCGGGCCGTTGGTCGGCCCTGCCATCGCCGGAACTGGACCCCACCATCCACGCGCGGGCCACGGCCGAGCTGCTGCTGGACAGGTACGGAGTGGTGACCCGGGGCTCGGTCATGGCCGAACAGATCCTGGGCGGTTTCGGTTTGATGTACAAGGTGCTGGCCCGGCTGGAAGAGGCAGGCCGGTGCCGCCGCGGCTACTTCATTGAACACCTCGGGGCGGCCCAGTTCGCGGTTCCGGCAACCGTGGACAGGCTCCGCACCTATTCCGAAGACGCACAGCTCGCGAAGAAGGAACCAGTGGCCTTGGCGCTGGCCGCCACCGACCCCGCCAACCCCTACGGCGCGGCGCTTCCGTGGCCGGCCCTCAAAGAGGACGCAGGCACCGGTCACCGTCCAGGCAGGAAAGCCGGGGCCCTTGTTGTGCTGGTGGACGGCGCACTGGTGCTGTATGTGGAGCGGGGCGGTAAAACCCTCCTGGCTTTCAGCGACGACGAATCAGTTCTGGCGGCCTCCGGAGCAGCGCTGGTGGGTGTTGTCACCCGCGGAGCCGTGGACAAACTGGTGATGGAAAAGGTCAACGGCCACGATATTCTGGAGACTGCGGTGGCCCGTGCCTTGGCTGCAGCCGGGGCCTATTCCACACCCAAGGGCCTGAGAATCCGTGCCTGAMGRFSQPTREWFLGAFSEPTPAQNGAWDAISSGSHALVVAPTGSGKTLAAFLWALDRLLVSAPAPVQELPGLDAVQVDAAQGKGRRPRAPKRKTRVLYISPLKALGVDVERNLRSPLIGITQTAKRLGLPAPLITVGVRSGDTTAADRRSLLSNPPDILITTPESLFLMLTSRARETLSEVDTIIVDEVHAVAGTKRGAHLAVSLERLDALLPQPAQRIGLSATVEPRELVAQFLAGSAPVQIVAPPSRKNWDLTVSVPVEDMSDLQGAAAAHDSGPASGLQPQASIWPHVEEKIVDLVLDNQSTIVFANSRRLAERLTARLNEIYAERQLVAVGGGWDDPAPAAPGVPASTATPAHMMAQAGSTAGADPVLARAHHGSVSKDQRALIEDDLKSGRLRCVVATSSLELGIDMGAVDLVVQVESPPSVASGLQRVGRAGHQVGEISQGVLFPKHRADLVHTAITVERMLEGKIERLSVPANPLDILAQQTVAATALGSIDVEEWFSTVRRSAPFASLPRSAYEATLDLLAGRYPSDEFAELRPRIIWDRNAGTIEGRPGAQRLAVTSGGTIPDRGLFGVYIIGTEVEGSASPADRNGYGKDGKAPAPASPAKGGRRVGELDEEMVYESRVGDIFALGATSWKIEDITHDRVLVSPAFGQPGKLPFWKGDSLGRPIDLGRALGAFVRELSAADPGPAAERCTASGLDQFAANNLIQYLEEQKLATEVVPSDTTLVVERFHDELGDWRVILHSPFGMPVHAPWALAVGQRLHQRYGLDGSAMAADDGIVLRVPMMEDEPPGAELFLFDPEELEQIVTAEVGGSALFASRFRECAARALLLPRQTPGKRQPLWQQRQRSAQLLDVARKYPTFPIVLETVRECLQDVYDLPALKDIAASVERRELRIVQTTTQQPSPFAKSLLFGYVAQFLYEGDSPLAERRAAALALDSTLLNELLGRVELRELLDARVIEATERELQRLAPGRRARGIEGVADLLRLLGPLAPEEVAARLEHDPKTGPADVGATEAGAAGVSAADAGAATKPGPVPELAGAAGTDDGTEPDSPHAGTGVAAGHLAALQRTHRAIRVNLAGVERFAAVEDAARLRDAIGVPLPMGVPLAFLEPVEDPLGDLVSRFARTHGPFTADEAAARLGLGVAVVATALKRLAADGRVVEGEFRPHAAPAEPAPVPAPGDGPESAPGDGREETRDEMPGAMPAVRLPQPTTSEWCDAEVLRKLRRRSLAALRAEVEPVDGAAYGRFLPAWQHVQTPGSGRGQPALRGLDGIVTAIDQLSGVPVPASAWEPLVLASRVSNYQPAMLDELMAAGEVLWSGAGSLPGNDGWISLHLAESAELTLNPALEYEPGDAQQRLLEHLRNNGGGYFFRQLTDVAGGMDRVLSDQEVVSVLWDLAWAGRITGDTFAPVRALIAGGHTAHRQVARPPRARAPRMSRLGRSHGTGLLGSPGLGPSGVGRYGSASGAGATPPMAAGRWSALPSPELDPTIHARATAELLLDRYGVVTRGSVMAEQILGGFGLMYKVLARLEEAGRCRRGYFIEHLGAAQFAVPATVDRLRTYSEDAQLAKKEPVALALAATDPANPYGAALPWPALKEDAGTGHRPGRKAGALVVLVDGALVLYVERGGKTLLAFSDDESVLAASGAALVGVVTRGAVDKLVMEKVNGHDILETAVARALAAAGAYSTPKGLRIRANANANANANA
D1-29_007961626petCCytochrome b6-f complex iron-sulfur subunitATGACGTCACTTTGGTTGGACCGCGGGGAATCATTTACTTCTGACACATTTCCAGCCGGAGACAGTTACGACACCGTAGTGGCCGGAGCGGGCCTGACCGGGCTGGTCACGGCACTGCTCCTTGCCCGGTCCGGGCAGAAAGTCCTGGTTCTGGAGGCCCGGTTCCCCGGCGCTGTCACCACGGGAAATACCACGGCGAAGGTGACCCTGCTTCAGGGCACCGTGCTGTCCGGCCTGTCCAAGCACTACTCCAAGAAGCAGCTCAGCGCCTACGTGGAGGCCAACAAGGAGGGACAGGCCTGGCTGCTTCGCTATCTGGACGAAAACAACGTGCCGTACCAGCGGCGGGATGCCTACACCTACGCCATCACGGCCAGCGGCGCGGATTCCGTACGTGCCGAACGGGATGCCGCCACCGCCGGCGGCCTCGAAGTGGAATACGTACGCGACGCCGGGCTGCCGTTCCCGGTGCATGGCGCCGTTCGGCTTGCCGCCCAGGCCCAGATCAACCCGATGCAGGTCCTGGACACCCTGCTGGCCGATATCCGGGCGCGCGGCGGCACCATTGTTTCAGGGGTGCGCGTGCGCGACGTTACCGCCAGCAGCCCGGCAACCGTGCACACTGATCTGGGCACGGTGACCGCCAAAGAGGTGGTCCTGGCAACCGGCACTCCGATTCTTGACCGCGGCCTGTACTTCGCCAAGCTCAAGCCCGGCCGCTCTTACGCCGCTGCCCTGCAGCTGCCCGCGGACCAGGTTCCGCCGCCGGGAATGTATATATCGGTGGAACAGCCCACGCATTCCCTGCGCGACTACGAGGCTGACGGCCGCAGGCTCCTGCTCGTTGGAGGGCACGGGCATCCGGTGGGGCGGGCAAAGTCGGAGCGGGAACACCTGTCCGGGCTGCTGCAGTGGGCCGGGGAGCAGTTCCCTGGCGCCGTTACCACCCATACGTGGTCAGCACAGGATTACCAGCCCACCAGCCTCATGCCGTTCTTTGGCAAACTGCCACGAGGCCGGGGACATGTTTACGTGGGTACGGGCTACAACAAGTGGGGCATGACCAACGCAGTGGCAGCGGCCCTGGGCATCTCCGGCGACATGTTGGGCGGCCAGCTCCCCTGGGCTGACACGATCCGCCACCACGGCCCCACCGCTTCCGGCGCCTGGTCCACCGTGGCACTCAATGCCGGGGTTGCAGCCAAGCTGGCCACCGATTGGGGACACGTGGCAGCCGGCGGCGGTGACGGCCATCAGGAGCGGACGACGGCGGCAGCAGGCACCCAGCCGGACGCCACCTTGACGCCGGACACCGGCATGGTGCCGGGTGCGGGTGTTGAGTCCGCTGGCGTTGAGTCCGGTGACGCCGGCCCGCAGGCGGCTATCCAACCGGCAGAGGGGGAAGGGCTGGTTTACCGCGAGGGTGTCCGGCCGGTGGCAGCGTCCACGGTCAACGGAACAACATGCCGGCTTTCCGCCGTCTGTACCCATTTGGGCGGGATCGTCCACTGGAACGACAACGAAATGACCTGGGACTGCCCTCTCCACGGGTCCCGGTTCAACAGCGACGGGACCCAACTGGAAGGCCCGGCCACCAAGGATCTGCCGCCCATCGAGCACGTTTGAMTSLWLDRGESFTSDTFPAGDSYDTVVAGAGLTGLVTALLLARSGQKVLVLEARFPGAVTTGNTTAKVTLLQGTVLSGLSKHYSKKQLSAYVEANKEGQAWLLRYLDENNVPYQRRDAYTYAITASGADSVRAERDAATAGGLEVEYVRDAGLPFPVHGAVRLAAQAQINPMQVLDTLLADIRARGGTIVSGVRVRDVTASSPATVHTDLGTVTAKEVVLATGTPILDRGLYFAKLKPGRSYAAALQLPADQVPPPGMYISVEQPTHSLRDYEADGRRLLLVGGHGHPVGRAKSEREHLSGLLQWAGEQFPGAVTTHTWSAQDYQPTSLMPFFGKLPRGRGHVYVGTGYNKWGMTNAVAAALGISGDMLGGQLPWADTIRHHGPTASGAWSTVALNAGVAAKLATDWGHVAAGGGDGHQERTTAAAGTQPDATLTPDTGMVPGAGVESAGVESGDAGPQAAIQPAEGEGLVYREGVRPVAASTVNGTTCRLSAVCTHLGGIVHWNDNEMTWDCPLHGSRFNSDGTQLEGPATKDLPPIEHVNANANANANA
D1-29_00797471hypothetical proteinATGACATCCATGAGTTCCGGTCGGACCGTCGGCCGAACCAACATTCAAAAGGCCTCCCTGGCCGTGGGCGCTGTTTTCCTCTTGGTGGGCATCCTGGGATTCATTCCCGGCATCACCACCAACTACGAGGCCCTTGGCATGGCAGGCCCCGGCTCTGAAGCGCTGTTGATGGGAATTTTCCAGGTCTCCATTCTCCACAACATCGTTCACCTGCTCTTTGGGGCGGCAGGAATCGCCATGGCCCGCACCGCCACGCAGTCAAGGAATTTCCTGTTGGTGGGTGGCGCAATCTACCTGGTTCTGTGGCTCTACGGCCTGCTGATCGGCCACGAGACGCCTGCGAACTTTATTCCCGTCAACACGGCTGACAACTGGCTGCACCTGGTTCTGGGCCTGGCCATGATTGCGCTGGGCGTGGCGCTCTCCCGCGGTCCGTCAAGGGCCGGGCGGACCACCACCACAGCCCACTAGMTSMSSGRTVGRTNIQKASLAVGAVFLLVGILGFIPGITTNYEALGMAGPGSEALLMGIFQVSILHNIVHLLFGAAGIAMARTATQSRNFLLVGGAIYLVLWLYGLLIGHETPANFIPVNTADNWLHLVLGLAMIALGVALSRGPSRAGRTTTTAHNANANANANA
D1-29_00798624hypothetical proteinATGATGTCTCAGCGAGGGTTACACGGGTTTGTTTTCACTACGGCGATCGCCGCAGCGGCACTGATGCTCACCGCCTGCGGTCCTAACCAGCCGCAGACGCAGGGGACAACGGAGCCCGGCACCGGCGGTGCCAGTCCCGCCACAACGTCCGCATCGCCCGCCGCCCCAGGGACGCCGTCGGCCACCACGTCCGCCGCAACCGGACCGGCGCTCTGCAAGGCCGGCAGCCTCACCGCCGCCACGGATGCCTCCGGCGGCGGAGCGGCGGGAAGCGTCTATATGAACCTCATCCTCACCAACACCGGCAGCGAGCCGTGCTTGCTTAGGGGGTTCCCTGGGGTGTCCCTCGCAGCAGACGCCGAGGGTGGCCCTATCGGAGCCCCCGCGAAACGTGATGAAACGGCACCTGTTGCCGACGTACTGCTGGCGCCGGGCAAGGCTGGTTCTGCGGTGCTCCGCTACACCAATGCCGGCAACTACACGGACTGCACCAGGACGGATGCGGCAGGCTACCGGATCTATCCTCCGGAAGACACTGCCTCACTATTCCTTGCGCAGCCCACCCAGGCCTGCACCAACGCGGCCATTGAACTCCTGACCATCGGCCCCTTCCAGCCGGCATGAMMSQRGLHGFVFTTAIAAAALMLTACGPNQPQTQGTTEPGTGGASPATTSASPAAPGTPSATTSAATGPALCKAGSLTAATDASGGGAAGSVYMNLILTNTGSEPCLLRGFPGVSLAADAEGGPIGAPAKRDETAPVADVLLAPGKAGSAVLRYTNAGNYTDCTRTDAAGYRIYPPEDTASLFLAQPTQACTNAAIELLTIGPFQPANANANANANA
D1-29_00799759hypothetical proteinATGACCACCCCCTTCCTTCGCCGTACCCTCACCGCCGCTGCAGCCACAGGCGGCACCGCAGCACTTCTGCTCACCGCAGCGGCCGGCGCCTCCGCGCACGTGGGCGTAACACCCGACAAGACCACTGCCAACTCGTACGCCCTCCTCACCTTCGGCGTCCCTCACGGCTGCGACGAATCGGGAACCACCAAGGTGGCAATCACGCTGCCGGCTGAGCTCAACGACGCCCAACCCACGGTGAACCCCAACTGGACGGTGGAGAAAGTCACCGAGCAGCTTGCCGAACCGCGGAAGCTGGCCGACGGCACCTCCATTACCAAGCGCACAAGCCAGATCGTGTATACGGCCAAGGCTCCCCTTCCCGACGAGCTCAGGGACGCGCTGGTGTTGTCCCTGAAGCTGCCCGACGCTGCCGGGACTACCCTCTACTTCCCTACCCTGCAGACATGTGAAACCGGGCAGACGGACTGGTCCGAGATCGCCAAAGACGGCCAGGACCCGCATTCGCTGAAGGCACCGGCACCGTTCATCACCATCACGGAAGCCGCCGCGGCAGGGCACGGAGGCAGCGCGGCTGATGCGTCCCATACCGAACAGGCCTCTGTGGTGACGGACAGCGGAGTGGAAGCCCGGAGCTGGGCCGGCCTCGCCGCTGGTCTTGGCGGACTGGCACTGGGCGGTGTGGCGGCGGCACGCGGCTTCAGGCGCCCGGCCCGGGACAATGATCCGGCCGCGCCCAGCCAGCCTGCCGCCGAATAGMTTPFLRRTLTAAAATGGTAALLLTAAAGASAHVGVTPDKTTANSYALLTFGVPHGCDESGTTKVAITLPAELNDAQPTVNPNWTVEKVTEQLAEPRKLADGTSITKRTSQIVYTAKAPLPDELRDALVLSLKLPDAAGTTLYFPTLQTCETGQTDWSEIAKDGQDPHSLKAPAPFITITEAAAAGHGGSAADASHTEQASVVTDSGVEARSWAGLAAGLGGLALGGVAAARGFRRPARDNDPAAPSQPAAENANANANANA
D1-29_00800630hypothetical proteinGTGCGCACCCACCGTGCCCGTGCTCCCTTTCATTTCCTTCGCGCAGCCGCCCTTTCCACTGGAATCCTGACACTGGCGGCCGGTGCCCACGTGGCAGCCGGCGGTCAGCTCCCGGGCCTTGGCATCCTGCTGGCCGTGCTTGCCCTGACCGGGCTGGCCGCAACCAGCGCAACACGGCTCCGCCTGAACCTTCCGGCCATGATCACTGTCCTGGGAATGGGACAGGTCATACTGCATGAAGTTTTCACTGCCTTCAGCGGGCCGGCGGTGGCGGACGGCAGCACAGTGTCCGGCCTGCACGGCAGCCACTCTCCGGGTCTCGCCCCACCTGCCCTCGAGGGTATGAACGGCCATCCCCATCAGCTGGATTCAGCGGCCGGACTGGCGATGCTGCTGGCCCACGCCGTTGCCACCGCCGGCTGCGCTCTGCTGCTCGCCAAGGGCGAAACCGCCCTCTGGGCCCTGGCGGCCTGGCTCGGCCCCCTGATCCAGCTCCCCCAAGCGGTAATTCCCGACGCCGGTCCCCCACCGGCGGTGCCCCGTCCGGGGGCGGTTCCATCCGCACCCCGCTGGCGGAATCTCAGGCAAGACAGCCGGCGCGGCCCGCCTTTCGCCGTCGCCCTCTCCTGAMRTHRARAPFHFLRAAALSTGILTLAAGAHVAAGGQLPGLGILLAVLALTGLAATSATRLRLNLPAMITVLGMGQVILHEVFTAFSGPAVADGSTVSGLHGSHSPGLAPPALEGMNGHPHQLDSAAGLAMLLAHAVATAGCALLLAKGETALWALAAWLGPLIQLPQAVIPDAGPPPAVPRPGAVPSAPRWRNLRQDSRRGPPFAVALSNANANANANA
D1-29_008011077pnoANitronate monooxygenaseATGACGCCAGGACAGAACCTCTCCTCCCGCCCCAACCGGGCCACGGAACTGTTCCGAACAGAGGTTCCAGTGGTGCTGGGCCCGTTCGGCGGCGTCTCCTCCGTGCAGCTCACCGCTGCCGTCAGCGAGGGCGGCGGGCTTGGGTCATATGGCCTCTACGGATACGACGCCCAAGCCATCCACAAAACTGCGGCGCAGCTCAAGGAGGCCACGGCCAAGCCGTTCGCTCTGAACCTCTGGGTACCGGACGGCACGGAGGACACACCACTCACCGCCGCTGCCTTTGACCGGTACGTCAGCATCCTCCGCCCCTACTTCGACGAACTTAACCTCCCGCTGCCGGAAATGCCTGACCGGTACCTTCCTGACTACGGCGAGCAGGTGGAGGCCACGCTGGAAGCGGAACCCGCCGTCGTGAGTTTTGTCTTTGGTGTCCCCGCCCCCGAGATCATCGAGGCAGCCCACCGGCGCGGAATCGTTGTGGTGGGCACCGCCACCACTGTGGCCGAAGCGGTGGCCCTGGAATCCGGCGGTGTGGACGCAGTGGTGGCTAGCGGGATGGAATCCGGCGGCCACCGGGTCTCGTTCCTGAAGCCGGCGGAGGACTCCCTGGTGGGGACCTTCGCGCTGGTCCCGCAGGTGGCGGACGCCGTCCGAATCCCCGTCATCGCTGCCGGCGGCATCGCCGACAGGCGCGGATACGCGGCCGCAATGGCCCTTGGCGCGGACGCTGTCCAGGTGGGTTCAGCCTTCCTGGCCACCAGGGAATCGGCCGCCGTTCCCGCATACCGTGAAATCCTGCACAGCCCCGCCGCCCGGGAAACTGTGCTCACGCGCGTCCTCAGCGGCCGGCTGGCCCGCGGCATCCCCAACCGCATCATCACTGACCTTGACCCGGCGCGCATCGCACCATTCCCGGCCCAGAACTGGCTGACCGGCAGGTTCCGCCCGGAGGCAGCCGCCCAGGGCAACACCGAACTCATGTCGCTCTGGGCCGGACAGTCCGCGGCACTGATCCGGCACGACTCGGCCGAGGCCGTACTGGCAGAACTGCTCGCGGGCCGTCCCTCTGCCTGAMTPGQNLSSRPNRATELFRTEVPVVLGPFGGVSSVQLTAAVSEGGGLGSYGLYGYDAQAIHKTAAQLKEATAKPFALNLWVPDGTEDTPLTAAAFDRYVSILRPYFDELNLPLPEMPDRYLPDYGEQVEATLEAEPAVVSFVFGVPAPEIIEAAHRRGIVVVGTATTVAEAVALESGGVDAVVASGMESGGHRVSFLKPAEDSLVGTFALVPQVADAVRIPVIAAGGIADRRGYAAAMALGADAVQVGSAFLATRESAAVPAYREILHSPAARETVLTRVLSGRLARGIPNRIITDLDPARIAPFPAQNWLTGRFRPEAAAQGNTELMSLWAGQSAALIRHDSAEAVLAELLAGRPSAPGPT0006800_729DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
D1-29_00802342hypothetical proteinATGAACTACTCAGGGATGGGCAACGAGAAAGCCACGCCGGCCAGCGAGCTCAACAGGACCCATGTAGGGCACACCATCAGTTTTGAGCCCGACGAATTTACGCTGGTATTCGGAAAAATCGCGGCAATAGCCCGTAAGGAGGGCAGCGTCACCATTGCACTGCAGGGCGTGGACGGCAGCGGAGGCCTGCAGTCCAGCTACAGCCTCTCCGGCAGCCAGCTGGTCTACCTCCAGCCCGACATGCTGACCAACACCGAGTCAACCATCAAGGACATCTTCGGCAAAGTCCAGGAGAACCTCCGTGGCGGCCTGAAGGGTGACGACAAGACAGACAAGCTCTGAMNYSGMGNEKATPASELNRTHVGHTISFEPDEFTLVFGKIAAIARKEGSVTIALQGVDGSGGLQSSYSLSGSQLVYLQPDMLTNTESTIKDIFGKVQENLRGGLKGDDKTDKLNANANANANA
D1-29_00803114hypothetical proteinATGACAATCATTGAATACTTTTCAGGCCTAGGCATCATGCTCGGAAGCCTGGCTGGGATCTTGGGACTGCTGGCGGGAGTGGTCCGCTACCGGTCTGGCCATCAGGGCTCCTGAMTIIEYFSGLGIMLGSLAGILGLLAGVVRYRSGHQGSNANANANANA
D1-29_00804216hypothetical proteinATGGCTGAAGACGAGTTCAGGACGCGGCTGGATCGAGTGGAAGAGCTGTACCGCCATCTGGTCGCCTTGCGGGAGGACGCCAAGAGCCGCCACGGGGCCGGCAGCGAGGAGCTTGTCCTGGCTGAACTGCGGCTGGATAACGCCTGGCATGAACTGTACGAATTTATGGACCTTCCCCTTTCACGTGATGTTGGAGCCGCACCGAAGCCGGAGTAGMAEDEFRTRLDRVEELYRHLVALREDAKSRHGAGSEELVLAELRLDNAWHELYEFMDLPLSRDVGAAPKPENANANANANA
D1-29_008051530hypothetical proteinATGACAGTATTGCTGATCGGCGGGGCCGTACTTGCCGCCCTGCTCATCGCAGGATTCATCTTTTACACTTCGAGCATCCGGTTCGCCAAGCCGAATGAGGCCATGCTCATCACCGGCAAGAGTGACCCGAACACCACCGATGAAACGTCCGATGACCAGTCCCGCGTCATCATCAACAACCGGGCATTCGTTAACCCGATCACAGAACGCGTCAGCCATATCTCGCTGTCCTCGCGCCAGGTCGAAGTCACCATTGAAGCCATCTCCAACAACGGCATCCAGCTCAAACTGGCCGGCGTTGCACAGGTGAAGGTGGGCGGTGACAAGATCTCCGTCCGCAAGGCAGCCCAGCGATTCCTTGACCAGCAGGACGCGATCGATCACTACACGCAGGAAACCCTCTCGGGTTCACTGCGTTCCATCGTGGGCACCCTGAGCGTAGATGCGATCATCAAGGACCGCGCCCAGTTCGCAGCTTCAGTGAAGGAAGAAGCCGAGCACTCCATGACCAACCAGGGTCTGGTCATCGACACGTTCCAGATCAAGTCTGTTGACGATGCAGGCGGCTACCTGAAGAACCTGGGCCGTCCTGAGGCTGCCCTGGTTGCACGGAACGCAAGCATTGCCGAAGCCAACTCCCAGCGTGAAGCTGCGGAAGCGAAAGCCCTCGCGGATCAGAAAACGGCTGAAGCTGAGCAGAAGCTGGCCCTTCGCCGCGCCGAACTGAAGCAGGAAACGGATGCCCGCCAGGCCGAAGCTGACGCCGCCGGTCCGCTTGCCCATGCCGACCAGCAGCAGGCGATCATCCTCAAGAACCAGCAGGTAGTGGCACGCCAGGCGGAACTTCGTGAAAAGGAACTCGACATCGAGGTCCGCAAACCCGCAGACGCTGCCAAGTACAAGGTCGAAACTGAGGCGGCCGCTGACCTTTCCCGCCGTACCCGCATCTCGGAAGCCACCAAGGTTGAAGCTGCTGCGGAACTGGAAACCCGTAAGCTCAAGGCTGCCGGCAACGAGGTGGAAGCTCAGGCCCTGGCTGCAGCCAACACTGCCAAGGGCAACGCCGAGACGGAGATCAACAAGATCCGCGGCCTTGCCGAGGCTGAGGTCACCAAATCCAAGGGCATAGCGGAAGCTGACGTCATTGGGCTTCGTGGCAGGGCCGAAGCTGAAGCCATCGAGGCTCAGGCCAAGGCCTACAGCGAGTTCAATGAGGCGGCCATCCTGAACAAGCTCCTGGAGGTGCTGCCGTCCATCGCCAAGGAAATCGCCGCCCCGATGAGCGCCATCAGCAACATGACGGTCATCTCCAACGATGGCGCAGGGCAGATGAGCAAGAACGTTGCCTCCGGCGTCCAGCAAACCGCCCAGATGCTCAAGGACACCACCGGATTCGATGTGATCGAGATGCTCAAGGGCTTCGGCGCTTCAACCCCGGCAAACACTCCTGTCCCCGGAAACGGTGCCATCAAGGAACCGGCCCGGACCGGTGTGGTCAATGCTGCGTTGAAGGACGAATCCGCGGAGTAGMTVLLIGGAVLAALLIAGFIFYTSSIRFAKPNEAMLITGKSDPNTTDETSDDQSRVIINNRAFVNPITERVSHISLSSRQVEVTIEAISNNGIQLKLAGVAQVKVGGDKISVRKAAQRFLDQQDAIDHYTQETLSGSLRSIVGTLSVDAIIKDRAQFAASVKEEAEHSMTNQGLVIDTFQIKSVDDAGGYLKNLGRPEAALVARNASIAEANSQREAAEAKALADQKTAEAEQKLALRRAELKQETDARQAEADAAGPLAHADQQQAIILKNQQVVARQAELREKELDIEVRKPADAAKYKVETEAAADLSRRTRISEATKVEAAAELETRKLKAAGNEVEAQALAAANTAKGNAETEINKIRGLAEAEVTKSKGIAEADVIGLRGRAEAEAIEAQAKAYSEFNEAAILNKLLEVLPSIAKEIAAPMSAISNMTVISNDGAGQMSKNVASGVQQTAQMLKDTTGFDVIEMLKGFGASTPANTPVPGNGAIKEPARTGVVNAALKDESAENANANANANA
D1-29_008064263hypothetical proteinATGATGCAAGCCCGCAAACGCAGACGATCACAGTTGCCTGCCTTGACCGCCGTACTGGCGATCGTGGCAGGCATGTTCGTGATGGCGGCCCCAGCGAGGGCCGCCGAGTACGATGCCCTGCTCACCAACCACGTGGTCACGATCAACGAGACGGTCAGCGACGCCGGATTCGTCCACCCAGGCGTGGGACTGTCGGCCGAGGACCTGCGCAACGCGCAGGCGATGGTCCGCTCCGGGCAGGAGCCCTGGGCCTCCTACTTTAAGGCGATGACGGCCACCGGTGCAGCGTCCAAGACCTACCGGGCGTCGAACTCGAAGTCCGCCGCCCAACCCGACGTCGCGCTCGACCCGAACTTTAACCACGGCGGATTGCGCGGCAGGGAGACCAACGACTCCTTCGGCGCACTCACCCAATCCCTTATGTGGGTCATGACCGGCAACGAGGTCCACCGCAAGAACGCGATCCAGGCCCTCCGGACCTGGGCGAGCATGAACCCCGACGGCTTCAAGTACTTCGCCGACTCGCACATCCACACCGGCAAGCCGCTCTCGCAGTTCCTCATGGCCGCGGAGATCATCCGCGCCACCGAACCGGTCGCCGACGACACCCCCGGCACCCAGGACGGCTACAACGTCGTGTGGAGCGCGCAGGATGACGAGCGTCTGCTCGGCAACTTCGCCAACCCGCTCGTGAACACCTTCCTTTACTCGCCCGAGCGATGGATGAACCAGCACAACTTCGGGCTCTACGGCCGCATCGCCACCGCGATCTACGCTGACGACGCCGCCGCCTACGCCAAGGGCGTCGAATGGTTTACCGTGAACTCGGAGTTCACGAACTACACCAGCGGCGGACTCGCTCAGCAGATCCCGCTCATCGACGCGGACGACCCCGCCAACCCCTACGGCGAGGACTTCGTGCAGCTCCGCGAGATGGGCCGCGACCAGGCCCACGCCGAGTGCAACATCGACAACTTCGCCGCTATGGCGCGCTTCCTGCACGTCCAGGGCACCAAAGTTGACCCGGAGGACGGTACCGTCTCCACCGCCGACGACGCCGTCACCGCGTACAAGTTCCTCGACAATCGCCTCCTGGCGGGCGCTGACGCCTTCGACGGCTACATGATGGGCCAGCCCACGAAATACATCGACGACAGGGGCACCGGCGGCACCATCTCCGCGGCTTACCGCGGCCGGATGTTCAACGCCCTCAACGAGTTGTACTACCAGTACAAGTACGTCGAGGGCGTCGACGTGGAGGCCGAGGCCCCGAACGTCGCCCTGCTTAACGAGCGCATGGACGGCCCCCTGTACAACTACGGCACCGGTGTCAACAACTTCTGGAGCGCAGGTGACAAGAGCATCGAGTACTGGGTGGCCTTCCCGCCGGAAATCGCGGGAACCAAGCCGACCCCGGTGGAGGACACCACACTCACCTTCGGCCACTACGGCATCCCGCTCGATGAGGGCACCGAGATCATCACCGAAAGTGACCGCACCTTTGCCCGCGCCACCGCGGACGCGGACGGAACCATGAGCGTTGTCAGCCGCGTGATGTACCCCGGCAACAGCAAGATGGGCGTCCTCGTGCGCACCGACGGCCCCGCCGTCATCGAGGTGCTCGACAAGGAGCGGCGCGACCCCCGCAACGGGATCGAACCCGAGCCGGGCATCATGGCGAGGATCGAACTGCCTGACACCAAAGGCCAATGGCGGTACATCACCTATCCCGCGGGCGGCCCGCACACCCAGTTCTACCGGGTGACCGGCGGCGGCACCAAGGTGGACATGGACACCCTCATGTTCAACGCCCAGGCCCAGCTCACCCCGCCCGCCTTCGAGCAGGCCCGCGACCGGTACTATCTGTGGCCGGATGCGACCTCCACCTTCCAGTTCAGCGCTACCGATGCCGGCGGGGCCCCTGCATACGCTGCCGGCGGCCTTCCGGCAGGGGCAACGCTCGATGCCGCCACCGGGACCGTCACTTGGAAGCCAACCGACCGTGACCCGGGTGTACACAAAGTCCAGATCGTGGCCGACGACGGCGCTGCCGTCACCGCACGGACCTTCGAACTCGTCGTGGCCAAGAACCGGCCCAAGATGATCGACGCCGCCGTCGCCGACGGCACCGACGAGGGCGCGGTCTACACCACGGCTTCAAAGGAGCCGTACCAGGCTGCGTTGGCCGCCACGAGGTACGCGTCCGAGAACGGCTCCGACTCGGAGTTCCGGACCGCGTTCCAGGGGCTGCTCGACGCGATCGAGGCGCTCGAACTGCTCAACTCCCGCCTGTCGGACGGATCGATCGACTATCCCGGCGCGGTCACTCCCGGCGGCATCAGCGCGGACGCGGCACGGGCACTTGCCGATGGGAACAATCACAGCCACTCCGGCGACCTGCGCGTTGGGTTCTTCACCTTCGACTTCGGGACCAAGTACCGTGTCAAAGCCGAGAAGTTCGGCCTCCAGGCCCGCTTCTCCTTCCCGATGCGCTCGCAGGGCACCAACGTTTACGGCTCGAACGACGGCATCACCTGGACCCTCCTCACCGAGCGTCCGACCGGTGACACCAACGACATGGAGACCATCGCCGTCAAAGCCGAGCACCGCGGCAAGGAGTTCCGCTACCTGAAGCTCCAAATCGACGAGCCGGCCCCTCCGATCGACCCGGCGTACCCGGGCATCTGGTCCGTCGGCGAGTTCCACGTCTTCGGCGACCGCTCGGAAGTCCCCGGGGACATCACCGACGTCTCCGTGGCTTCACCGGGTGCCGTGGCAGGCAGGGTGACAGCGGGTGGCGACATCAACGTGACGTTCACCAGCGCGAAGCCGGTCAGCAATGTGGCGGTGAGCGTCGGCGGCCAAAAGCTCACGGCCGCGAGCGCGGACTCGCTGTCGTGGACTGCCACCGGCAAGCTCGGCGACCTGACGGGCGGCGGCCGCCTCGACGTCGTGATAGATAACACGACTCAGAACGGACAAGCAGCCGCAACGATTCACGGTTCGACTGACGGCACCGCCCTGTACGGCTCGGACGAGCGAAACCTGATTGATCTCACCGACGCCCAAGTGGTCAAGGCGGACGGTTCGGCAGATTCGTCCAAGGCCACGCACTCGGCGAACATGCTCGACAGCAAACCCGCTACGTTCAGCGACGTGCCCGCCATCGACGGCCAGTACTACCTCATCTGGGACTTTGGCGCAGGCATGCAGGTCAGCGTGGATCGCTTCGACTACCTTGCACGCCAGGACTCCGAAGGCGTCCGCCGCATGAACGACCAGGTGCTCCAGGGCTCGAACGACCTCAACACCTGGACAACCATCGCCGACGCGTCTTACAAGACGCTCTCGTGGCAGAACCTCGACGCGACCGACGCCGGCAGCTACCGCTACCTGCGGGTCGCGAACAAGGCGCCCATCTACGTCGCGGAGCTCCGGCTCTTCGGTGCGGCCAAGTACGACATCGGTCCGCTCCTTCAGCGCGCCGATGCCGTTGACCTCAGCACCTACACTCGCGGTTCGAAGCTCCTCTTCCCCCGCGAGGTCGCGGCGGTCCGCGAGGCACTCGCCAAGCAGGGCGCCGACGAGCAGGCACTTGCACGCCGTCTCCTGGACGCCTGGGACCTCCTGGACCCTTCGGCAGCCGTGGCTCCCGCGACGTTCGAACAGTCCTGGGTTGCGGCGAGCACCGCGACCGCTGACGGCGCGACGAGCGCGGCAGCGAACGGCTGGCGCATGTTCGACGGGAACACCGGGACGTACACCGACACGACCACGAAGTCCTGCACCAACACCGTGCTCCCGGCCGACGGCTCCGCGTTCAAGGTGGTCGGCGTGAAGTACTTCCCAAGGGACAACGCGGTGTTGCGGGCAACCGGCATGGGCATCCAGGGTTCCAACGACGGCGGCGCCACCTGGACCCAGTTCGCGAGCACGGGGACCCCGGTCCGCGGCTGGAACACCATCACCCTGACCGAGCCCGTTCACTATGGGGCCTTGCGCATCAACGGCGGCAACGGTTTCTGCAACGTAGCCGAGCTTCAGTTCATCGTCGAGACGATCGACAAGTCGGGACTGGCTGTCTACCTGGTTGACGCGAAGGCGCTGACAGAAGGCGGCTGGACGGCCGACTCCTGGGCGGCCTTCGCCGCCGCCCGAGACGCGGCCACCGCCGTCAACGGGAACAAGGGAGCCAGCCAAGAGGAGGTGGACCAGGCGGCAGACAAACTCGCCCAAGCGATCAAAGGCCTGACTGCAGCCTAAMMQARKRRRSQLPALTAVLAIVAGMFVMAAPARAAEYDALLTNHVVTINETVSDAGFVHPGVGLSAEDLRNAQAMVRSGQEPWASYFKAMTATGAASKTYRASNSKSAAQPDVALDPNFNHGGLRGRETNDSFGALTQSLMWVMTGNEVHRKNAIQALRTWASMNPDGFKYFADSHIHTGKPLSQFLMAAEIIRATEPVADDTPGTQDGYNVVWSAQDDERLLGNFANPLVNTFLYSPERWMNQHNFGLYGRIATAIYADDAAAYAKGVEWFTVNSEFTNYTSGGLAQQIPLIDADDPANPYGEDFVQLREMGRDQAHAECNIDNFAAMARFLHVQGTKVDPEDGTVSTADDAVTAYKFLDNRLLAGADAFDGYMMGQPTKYIDDRGTGGTISAAYRGRMFNALNELYYQYKYVEGVDVEAEAPNVALLNERMDGPLYNYGTGVNNFWSAGDKSIEYWVAFPPEIAGTKPTPVEDTTLTFGHYGIPLDEGTEIITESDRTFARATADADGTMSVVSRVMYPGNSKMGVLVRTDGPAVIEVLDKERRDPRNGIEPEPGIMARIELPDTKGQWRYITYPAGGPHTQFYRVTGGGTKVDMDTLMFNAQAQLTPPAFEQARDRYYLWPDATSTFQFSATDAGGAPAYAAGGLPAGATLDAATGTVTWKPTDRDPGVHKVQIVADDGAAVTARTFELVVAKNRPKMIDAAVADGTDEGAVYTTASKEPYQAALAATRYASENGSDSEFRTAFQGLLDAIEALELLNSRLSDGSIDYPGAVTPGGISADAARALADGNNHSHSGDLRVGFFTFDFGTKYRVKAEKFGLQARFSFPMRSQGTNVYGSNDGITWTLLTERPTGDTNDMETIAVKAEHRGKEFRYLKLQIDEPAPPIDPAYPGIWSVGEFHVFGDRSEVPGDITDVSVASPGAVAGRVTAGGDINVTFTSAKPVSNVAVSVGGQKLTAASADSLSWTATGKLGDLTGGGRLDVVIDNTTQNGQAAATIHGSTDGTALYGSDERNLIDLTDAQVVKADGSADSSKATHSANMLDSKPATFSDVPAIDGQYYLIWDFGAGMQVSVDRFDYLARQDSEGVRRMNDQVLQGSNDLNTWTTIADASYKTLSWQNLDATDAGSYRYLRVANKAPIYVAELRLFGAAKYDIGPLLQRADAVDLSTYTRGSKLLFPREVAAVREALAKQGADEQALARRLLDAWDLLDPSAAVAPATFEQSWVAASTATADGATSAAANGWRMFDGNTGTYTDTTTKSCTNTVLPADGSAFKVVGVKYFPRDNAVLRATGMGIQGSNDGGATWTQFASTGTPVRGWNTITLTEPVHYGALRINGGNGFCNVAELQFIVETIDKSGLAVYLVDAKALTEGGWTADSWAAFAAARDAATAVNGNKGASQEEVDQAADKLAQAIKGLTAANANANANANA
D1-29_008071353hypothetical proteinATGAACGCGCAAGAACTACGGCCCGCCTTCCACTTCACCGCCGGCGAAGGATGGATCAACGATCCCCTCGGTGTGACCTGGAAGGACGGCCAGTACCACCTCTTCTACCAGTACGTCCCGGGCAGCACTACGTGGGCCTCTAACTGCCACTGGGGCCATGCGACCTCCCCGGACATGATCGCCTGGACCGAGCAGGGCATCGCGGTCGCCCCCGGCGACGGGGACGACGGCGTCTGGTCCGGTTCCATCGTCACCGCCGCCGACGGTGCCGCCACCATGTACTACACCTCTGTCACCGAGCCTGACATCGGCATCGGCACCGTCAGGGCAGCCACCCCGGACGACGCCTCCTGGAACTCCTGGACAAAAGGTCAAAAACTGATGACCGCACCGGACCTGGGCGTGGTGGCCTACCGGGACCCATTCGTCTTCCGCGATGGCGAACAGTGGCGCATGTTTGTGGGCGCCGGACTGGAGGGCGGCACCGCCGCCGCGGTGTCCTACAGCTCACCCGACCTTTCCGAGTGGACCCTGGACGGCATTGCCGCCCAGCGGAGCGGAATCGAATCAGACCCCGTCTGGACCGGCACCATGTGGGAGTGCCCGCAGTTGTTCGAAATCGACGGCTCCCACGTCCTGGTCACCTCCATCTGGGAAGACGACGTGCTGCACTACGTCGCCTACGGCGTCGGAACCTACGCCGGCGGTAAGTTCACCGCCCGATCCTGGGGCCAGCTCAGCTACGGCAAAAGCTATTACGCCCCCTCCTTCTTCAGAGACAAAGACGGCGCACCATCGCTGATCTTCTGGGTCCGCGGCGTGATCAGCCCTAAGGCACAATGGGCCAGCGCCCTGAGCATCCCCCACACGCTGACCCTCGACGGCGACACCCTGGTGGCGACCCCGCACGCCGACCTCGCGACGTACTCCCGGCCGGGATCCCTGAATCCGGTCAGCGCCGGGGTTTTCGAGACAGTGCTCGACGGCGGTGCCGACCTTCGGTGCACCGTCACCGCCGGGACAGTCATCAGGCTCGCCACCGTGGACGGGCCACTGGCCACCGTCCGGCATGATGGCGACGGCATCGAAGTCACGGTACCCGGCAACGCGGACTTCACGGACGCTTTCCTGCCGGTTGACGAGGGCTGCGAACTGCGGGCCATCATTGATGCCGGGGTGTTGGAAATCTCCGGCCGCCAGGGCATCATGGCCGTGCCCCTGCCCATCATGGACACTCCCGTGACGCTGACAGTGGCCAACACCGCGTCCACGCCCCTGCTCAACACGGTCGAGGGTCAGGCCGTAACGTGGCCTACGGCCTTGGCGGGCTCGGAACGGACACCGGCCTACTGAMNAQELRPAFHFTAGEGWINDPLGVTWKDGQYHLFYQYVPGSTTWASNCHWGHATSPDMIAWTEQGIAVAPGDGDDGVWSGSIVTAADGAATMYYTSVTEPDIGIGTVRAATPDDASWNSWTKGQKLMTAPDLGVVAYRDPFVFRDGEQWRMFVGAGLEGGTAAAVSYSSPDLSEWTLDGIAAQRSGIESDPVWTGTMWECPQLFEIDGSHVLVTSIWEDDVLHYVAYGVGTYAGGKFTARSWGQLSYGKSYYAPSFFRDKDGAPSLIFWVRGVISPKAQWASALSIPHTLTLDGDTLVATPHADLATYSRPGSLNPVSAGVFETVLDGGADLRCTVTAGTVIRLATVDGPLATVRHDGDGIEVTVPGNADFTDAFLPVDEGCELRAIIDAGVLEISGRQGIMAVPLPIMDTPVTLTVANTASTPLLNTVEGQAVTWPTALAGSERTPAYPGPT0018815_2936DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOFURANOSIDASE,PGPT0018815-sacA-K01193NANA
D1-29_008081365hypothetical proteinATGTCTTCATCGCCGCGCTCCGGCCTGCTCTCAAGCCTGACCAAGCTCTCCGCCGCCCGCACCGCCCGCGCCTCCAGCTGGGACCAGACCGGCCGCAACCGGGACAACTGGATCATCATGCCGGGCGAGGAACGGGTCCTGGCGGACCTCGAAGGGCCCGGCGCCATCACCCACATCTGGATGACCCAGTCCTGCCGCATCCAGCCGGGCCCGGGGCAGATCTCTCCCGAACTGGTGGGCGTGCCGATGCTCGAGATCCACAACGCGTTGGGCGTCAGCTGGGAGGTCGTGGACCCGGACTACTACCGCAAAATCGTCCTCAAAATGTACTGGGATGATCAGGAAATCCCCAGCGTCATCGCACCACTGGGCGACTTCTTCGGCCTGATGAACTCCCTCTCCGGCTCATACGACTCCCTGCCGCTCTCCGTCTCCGCCAAGGAACCGGAACTGAACACCTTCGGCGGCAGCGCGGCATTCAACAGCTACTTCGAAATGCCTTTCAACTCCCGGGCCCGGATCACGGTCGAAAACCAGAACGACATTCCCTACCTGCAGTACTTCTACATCGACTACGAGCTCTACACCGAGCCCCTCCCGGAAGACACCGCGTACTTCCACGCGCACTGGCGCCGGCAGAAGCCCAATGCCGGCTGGGGCCCTGACCTGCAGACCAACAGCATCGAGGTGGCCATCCCCAACCTCTCGGGCCAGGACAACTACGTGGTGCTCGAGACCGAGGGGCAGGGCCACTACGTGGGCTGCAACCTCGCCGTCCGGCACTTCCAGGGCTCCTGGTGGGGCGAGGGCGATGACATGATCTTCATCGACGACGACACCTGGCCGCCCAGCCTGCACGGCACCGGCATGGAGGACTACTTCGGGCACGCCTGGGGCATGCAGCACAACGCCTTCCTCATGAACGGCACCATGGTCCATGAGGAGAACGTGCCCGGCTTCCACCACAGCTACCGCTTCCACATGACCGATCCCATCCGATTCCAGAAGCGCATCAAGGTCACCTTCGAGCACGGCCACGCCAACCACCTCTCCGACGACTGGTCCTCCACCGCCTACTGGTACCAGACGCTCCCCTCCCCCATCCTGGACATCGACGCCGTGGAAGACCGCCTGCCGCTTCGCCCCCGCGACCAGGTGGAGGAGCGCCCGCTGCCGGAGCTGACGCCTGCCCAACAGGCCGCCCGCGACGCCTCCGCCGAACGGATGCGGCAGTTCACCGAGACGCGGGATGCGGTCCGGAACGAACGCAGGGCCGAGATCGACCAGTGGGAGAAGGCCAACGCCGAGCAGGCCCGGGAGGTCCGTCAGCGGTTCCTGGCCGCCAACAGCGTCCCCGTCAGTTAAMSSSPRSGLLSSLTKLSAARTARASSWDQTGRNRDNWIIMPGEERVLADLEGPGAITHIWMTQSCRIQPGPGQISPELVGVPMLEIHNALGVSWEVVDPDYYRKIVLKMYWDDQEIPSVIAPLGDFFGLMNSLSGSYDSLPLSVSAKEPELNTFGGSAAFNSYFEMPFNSRARITVENQNDIPYLQYFYIDYELYTEPLPEDTAYFHAHWRRQKPNAGWGPDLQTNSIEVAIPNLSGQDNYVVLETEGQGHYVGCNLAVRHFQGSWWGEGDDMIFIDDDTWPPSLHGTGMEDYFGHAWGMQHNAFLMNGTMVHEENVPGFHHSYRFHMTDPIRFQKRIKVTFEHGHANHLSDDWSSTAYWYQTLPSPILDIDAVEDRLPLRPRDQVEERPLPELTPAQQAARDASAERMRQFTETRDAVRNERRAEIDQWEKANAEQAREVRQRFLAANSVPVSNANANANANA
D1-29_00809906araQ_5COG0395L-arabinose transport system permease protein AraQATGAGTAACGCCACTATCCTGTCGTCCCGTTCAGGTGCCGGAACCCAAGGTTCCGGGAAAGATGTACGACGGCGGCGGCCCCGCCCCGGCGTCGGCAAGACTGTATCGGTGGCGCTGCTGGTCCTGGGCGCCATCGGGATGATCGCACCGTTCCTGTGGATGTTCACCACCTCGCTCCGGGACGCCAGCCAGGCGTACGACCTTCCGCCGCAGTGGCTGCCCATCGAGTGGGACTGGTCCAATTACGCGGACGCGGTCAGCGGACCGGTCCCCATCCTGAGGAACATGTTCAACAGCGCGGTGATTGCGATCGCCGTCAGCATCGGCATGATCATCACCGCCCCCATGGCCGGGTACGCCTTCGCCAAGTTGAACTTCCCGGGCCGCAACTCGATCTTCGTGGGCCTGCTGTCCTCGCTGATGGTGCCGGCACAGGTGACCATCATCCCGTTGTTCCTCCTGATGCGGACCTTCGGCCTGCTGGACAACCCGCTCAGCCTGATCCTGCCCGGCATCACTGGAGCCCTGGGAGTGTTCCTGCTGCGGCAGTTCTTCCTGGGCCTGCCGCAGGAGATCATCGACGCGGCGAGGATGGACGGGGCCACGGCTTGGCAGACATACCGGCTGATCGCGCTGCCACTGGCCAAAAACGCGGTAAGCACACTCGGCGTCATCACGTTCCTGGGCAGCTGGAACGCCTACTTCGCCCCGTCCATCTTCCTCAACAGCACGGACACCGCCACCCTTCCGCTGGGCCTGGTCCTGATGCTCGGCCCCTACGGCGCAGGCAACGTGGCCCAGGTGATGGCAGCAACCACCATCGCCATCGCACCGGCACTGATCGTCTTCCTTGTGGCACAGCGCTGGATCATCGCCAGCCTCACCCAGTCAGCCGTCAAAGGCTAAMSNATILSSRSGAGTQGSGKDVRRRRPRPGVGKTVSVALLVLGAIGMIAPFLWMFTTSLRDASQAYDLPPQWLPIEWDWSNYADAVSGPVPILRNMFNSAVIAIAVSIGMIITAPMAGYAFAKLNFPGRNSIFVGLLSSLMVPAQVTIIPLFLLMRTFGLLDNPLSLILPGITGALGVFLLRQFFLGLPQEIIDAARMDGATAWQTYRLIALPLAKNAVSTLGVITFLGSWNAYFAPSIFLNSTDTATLPLGLVLMLGPYGAGNVAQVMAATTIAIAPALIVFLVAQRWIIASLTQSAVKGPGPT0016540_7004DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_00810957melD_5COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGACCTTGACTGCCCCCAAAACCGCGTTGCCGCCCGCGCCCCCTTCAGGGCGCGGGGGGCGCCCCGGGCACCAAAGCACCGCCCGGCGTCGGGAAGCTCTCACCGGCTACCTGTTCACGGCCCCCACGGTCATCGGCTTCCTGGTTTTTATCCTCGGCCCGCTGGTCGCAGCCCTCTACCTGAGCCTGACGAAGTACAACATCCTCACCGCGCCAAATTTCATCGGGTTGGACAACTACGCACGGATGTTCCGGGACGAGCGCCTGGCCACGACGTACGGCAACACTGTCCTCTACGTGGGCGCCGCCGTCGTCCTGATCAACGGGTTCGCGCTCCTGTTCGCGGTGCTGATCAACCAGCGGCTCCCCCGGGCCCTGACCTACGTGTTCCGCTCCGCGTACTTCTTCCCGTACCTCGTGGCGCTGGTGTACGTGTCCATCATCTGGCAGGCGCTGTTCCAGAAGGACACGGGCATCCTGAACTACTACCTCACTGCCATGGGCGGGGAACGGATCGACTGGCTCAACAGTTCGGAGTTCTCCAAGGTGTCGGTGGTCATCGTGGACACCTGGCGGAACGTGGGATTCGCCATGCTGATCTTCGTCGCGGCGCTGCAGGAAGTCCCCAAGGACATGGTGGAGGCCGCCCGGATGGACGGCGCGAACGAGTGGCAGGTCTTCCGCCGTATCGTGCTGCCGATGATCAGCCAGGCGACGTTCTTTAACATCACCATCACCATCATCGGCGCGTTCCAGATCTACGAATCGATCATCGTGCTCACCAGGGGCGGCCCGGGCGATGCCAGCCGCAGCGTGGTGATGTACATCGCCGAAGTCGCGTTCAACAAGTTCGACATGGGCTACGCCTCAGCCATCGCGGTCACGCTGTTCGTCATCATCATGCTGGTGACCATGGTGCAGTTCCGCCTTAGGAAGTCGTGGGTGACCAATGAGTAAMTLTAPKTALPPAPPSGRGGRPGHQSTARRREALTGYLFTAPTVIGFLVFILGPLVAALYLSLTKYNILTAPNFIGLDNYARMFRDERLATTYGNTVLYVGAAVVLINGFALLFAVLINQRLPRALTYVFRSAYFFPYLVALVYVSIIWQALFQKDTGILNYYLTAMGGERIDWLNSSEFSKVSVVIVDTWRNVGFAMLIFVAALQEVPKDMVEAARMDGANEWQVFRRIVLPMISQATFFNITITIIGAFQIYESIIVLTRGGPGDASRSVVMYIAEVAFNKFDMGYASAIAVTLFVIIMLVTMVQFRLRKSWVTNEPGPT0016535_5034DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_008111305yesO_3COG1653Putative ABC transporter substrate-binding protein YesOATGAGAAAAACAGTCCGCACCTCCATCGCCACGGCGGCAGCCGTCGCGCTGCTGGCCCTCACCGCGTGCGGGAGTGCCACCGAAACGGCAGCACCAGCGGCAGACGGTCCCTACACCGCCCCGGCCAAGGACGTCACGGCCACCATCTCCGTCTCCAACTGGGGTGACCCTGGGGACAAGGCGGTGTATGACGGCGTGGCCGAACGGTTCAAGGAGAAGTATCCGAACGTCACGGTGAACAACAACTTCACCCCCATCACCACTTGGACCGAGTACGTGAACAAGCTCGTCACCCAGGCTGCGGCCGGGCAGGCCCCGGATGTCATAAACATCGCCACCGAGGGTGTGGAACTAGGCCTCGCCAATGAACTCTTCAGCCCCCTGGACGGCTTCCTCAAGAACGACCCCGAAGCCAAGTCCCTGCGCGAGGACATCGATCCGAAGCTGCTGGCAGGATTCAGCAAGGACGGCTCCACCTACCTGATGCCCAACACCTTCAACACCATGGTGATCTTCTATAACACCAAGATGTTCGAGGCTGCCGGCATCGAGCGGCCCGGCGATGACTGGACCTGGGACGAGTTCCTGGAGATCTCCAAGAAGCTGACCACCGGCGAAGGCGCGGACAAGGTGTACGGGTTCGTGATGCCGTACTACTCCTTCGGTATCACCCCGTGGCTGTACTCCAACGGCACGTCGATGATGAGCGAGGACCTTAAAACCGCGCAGCTCAGGGACGGGAAGGTCAAGGAAACAGTGGGCTGGGTCCGGGACCTGGTCACCAAGCACGGGGTTTCGCCGCAACCGAAGGGATCTGACCCGTACCAGCTGTTCCCGGCCGGAAAGGCAGCCATGACCGGCGCCGGGCACTTCGTCACCGGCGGCTTCGAAAAGGCCGGATTCGAAGACTACGACATCCTGCCCTGGCCGAAGGGAACCACCAAGTCCACCGTCTTCGGCGCCGGCGCGTTCGCCGTCTCCAAGGCCTCCAAGAACCAGGAGCTGTCCTGGGAGTTCATCAAGATGCTCACCGACCAGCAGACCCAGAAGAAGTGGGCCGACGCCGGCGCCGCCGTTCCGTCAACCAAGACCGCCGCTTCGTCGCCGGAGTTCCTGGCCTCGCCCGAGCACGCCGAAGAGTTCTACAACTCGCTGTCCTACGCCAAGCCGGTAGCGGCCCCGGGCGTCTACAACGTGCTGGATCCGGCGTTCATGCGGGCCATGGACGAGATCATGTCCGGCCAGGACATCGGCTCCTCCCTGGAGAAGGCCCAGAAGGATGTTGAGGAGGCGTTGCAGCAGTGAMRKTVRTSIATAAAVALLALTACGSATETAAPAADGPYTAPAKDVTATISVSNWGDPGDKAVYDGVAERFKEKYPNVTVNNNFTPITTWTEYVNKLVTQAAAGQAPDVINIATEGVELGLANELFSPLDGFLKNDPEAKSLREDIDPKLLAGFSKDGSTYLMPNTFNTMVIFYNTKMFEAAGIERPGDDWTWDEFLEISKKLTTGEGADKVYGFVMPYYSFGITPWLYSNGTSMMSEDLKTAQLRDGKVKETVGWVRDLVTKHGVSPQPKGSDPYQLFPAGKAAMTGAGHFVTGGFEKAGFEDYDILPWPKGTTKSTVFGAGAFAVSKASKNQELSWEFIKMLTDQQTQKKWADAGAAVPSTKTAASSPEFLASPEHAEEFYNSLSYAKPVAAPGVYNVLDPAFMRAMDEIMSGQDIGSSLEKAQKDVEEALQQPGPT0016545_6669DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_008121017purRCOG1609HTH-type transcriptional repressor PurRGTGGCAACCATCGTCGATGTCGCATCACTTGCAGGCGTTTCGACGTCCACTGTGTCCCACGTCCTCAACGACACCAGGCATGTTGAACCGGAGACCAAAGAGCGCGTCATGAGCGCTGTGAAGGCCACCGGTTACCGGCGGGACGTCCTGGCCCGCTCCATGCGCCGGGCCAGGACCGATTCCATCGGCCTGGTGGTGTCCGACGCCGGGGAGCCGGCTTTTGCGGACATGGTGCACGGTGTGGAGGAAGCCGCGGCACAGCATTCCCTGTCCCTGCTGCTGGCTAACTCGGCGGAAGATCCCGCCCGGGAACGCGCAGCCGTGGAGGCCCTCCTGGACCGCCGTGTGGATGGCCTGATCATCGCGCGGGCAGCGGGTTCAAGCCCCGTGCTGCTGGAGCGGATCCGCGAGGAGAAGAAGCCCCTGGTCCTCCTGGACCGCCTCGCGGACCTGGACGCCGGAGCAGGGCACATCGACCAGGTGGGCGTCAACAACCAGTCCGCCATGGCAGCCCTGGTGGACCACCTCACGGACCGCGGCCACCAGCGCATCCTGCTGGTTTCCGGCGATCTGCGGGTCTCATCCCTCCGCGAGCGCCATGACGGATTCCACACCGCCATGCTCGAAAAGGGGCTGGAGGTCCCGGCCGGCCTGCTGTGCGAAGGCACAGTCACCGCGGCTGCCACTTTTAACCGCGTCCAGGCGGCCCTCCGCGCTGCGGAACGGGGTGAACGTCCGACGGCGGTCCTCGCCTGCAGCACGCTGCTGGCAGCAGGTGCGCTGCGGGCTGTGCAGCACGAAGGGTTGCGCGTGCCGGGAACCATGGCCTTCGCCACGTTCGACGGCTTCACCTACTCGGACCTGTTCCAACCCCAGATCACCACCGTCCGCCAACCCGCTTTCCAACTGGGTGAGAGCGCCGTGAGCCTGCTCCTGCGGCGCCTCGAAACCCCTGACGCTCCTCCCAAAATCCTCCGGCTTGAGTCCCAGATCGAGTTCCGCCGCTCCACCGAATGAMATIVDVASLAGVSTSTVSHVLNDTRHVEPETKERVMSAVKATGYRRDVLARSMRRARTDSIGLVVSDAGEPAFADMVHGVEEAAAQHSLSLLLANSAEDPARERAAVEALLDRRVDGLIIARAAGSSPVLLERIREEKKPLVLLDRLADLDAGAGHIDQVGVNNQSAMAALVDHLTDRGHQRILLVSGDLRVSSLRERHDGFHTAMLEKGLEVPAGLLCEGTVTAAATFNRVQAALRAAERGERPTAVLACSTLLAAGALRAVQHEGLRVPGTMAFATFDGFTYSDLFQPQITTVRQPAFQLGESAVSLLLRRLETPDAPPKILRLESQIEFRRSTEPGPT0017992_8067DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_00813999rbsR_5COG1609Ribose operon repressorATGACGACGATGGTAAAAGTGGCCAAGCTTGCGGGCGTGTCCATTTCCACCGTTTCCCACGTCCTCAACGGGACACGCCACGTAAATGATGAGACCCGGCAACGCGTCCTGAAAGCCATCGAGGAAACCTCCTACCGGCAGGACGCCCTGGCCCGTGCAATGCGCCGCTCCCGCACAGACAGCATCGGCCTGATAGTGTCCGACGGCGGGGAGCCGGCCTTCGCGGAGATGATCCGTGGGGTGGAAGAAACAGCGGCCAGCCAGGGCATCACCTTGCTGCTCGCCAATTCGGCAGAGGACCCGCAGCGGGAGGCCCGGGCCGTCCAGGCGCTCCTCGAGCGCAGGGTGGACGGACTCATCCTGGCGCGCGCAGCCGGCTCAGGCCCGGAAGCCCTCAGGGAGTTCGCCAACCAGGACACGCCGCTGGTGCTGATGGACCGGCTGTCCGATGACCCATACGACCAGGTGGGTGTTGAAAACCGTGCTCCCATCAAGGAACTGGTGGAACACCTCGCATCCCAAGGCCACCGGCGGATCCTGCTCATCGCCGGGGACACCAGGGTTGCCACCCTCCACGAACGGCACGAGGCGTTCCGGGAGGCTATGACGACGGCGGGCATAGCGGAGGCGGACCTGCTGACAGTCACCGCGGGCGAACCTGAAGAGACCGACGCCGGGATCGCAGCAGCGCTGTCCGCAGCCAAACCGCCTACCGCCGTCATCGCGTGCAGCACCGTGCTGGCCGCCGCGTCGCTCCGGCATATCCAGCGGCTGGGCCTGAGGATGCCGCAGGACATTGCCTTCGCCACATTTGACGGCTTTGCCTTTTCGGACCTGTTCGAACCGCAGCTCACCACTGTCCGGCAGCCGGCCTTCCAGGTGGGTGCCACCGCGGCTGAGCTGCTGACCAAGAGGATCGCGGACAAGTCGGGCGAACACTCGATTGTCCGCCTGGCGCCCACCATCGAATACCGCTCCTCCACCGGCCCTCGCATTTAAMTTMVKVAKLAGVSISTVSHVLNGTRHVNDETRQRVLKAIEETSYRQDALARAMRRSRTDSIGLIVSDGGEPAFAEMIRGVEETAASQGITLLLANSAEDPQREARAVQALLERRVDGLILARAAGSGPEALREFANQDTPLVLMDRLSDDPYDQVGVENRAPIKELVEHLASQGHRRILLIAGDTRVATLHERHEAFREAMTTAGIAEADLLTVTAGEPEETDAGIAAALSAAKPPTAVIACSTVLAAASLRHIQRLGLRMPQDIAFATFDGFAFSDLFEPQLTTVRQPAFQVGATAAELLTKRIADKSGEHSIVRLAPTIEYRSSTGPRIPGPT0017992_8067DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_00814510hypothetical proteinATGAACAATGACGAGGGCGAGGTGCAGAAGATGGAGCCCGGCCAAGGACGCGTCCACATTGGCGTGTTGCTGAGAACCGGCTGGCACGGGTTCCTGGACGAGCTGTTTGAACGACTGGCCCACGAGGGCTTCGACGACCTGACGCCGTCGCATTCGCCTGTCTTCCAGCACATCGAGCGCGGCGGCACACGCATCGGCGTATTGGCCGAACGCGCCCACATGACCAACCAGTCCATGGGCTACCTGGTCGACGCGTTGGAGGCCCGGGGGTACTTCGAGCGCAAGCCCGACCCCGACGATCGGCGTGCATCGCTTGTAGTGATCACGGATCGCGGCCGCGAGCAGATCCGTGTCGCTCGCCGGCTGATCGCAGACATAGAACGCGAGTGGGAGGAGCGCATCGGCGACGAGCGGATGGCGCTGCTGCGCGAGGCCCTCGAGGCTTTAGCGAGCTCGCTCGGCAACGACCTCGGCCGGCGCCCCCCGCGGCGGGCCGCTGAGCGTGTTTGAMNNDEGEVQKMEPGQGRVHIGVLLRTGWHGFLDELFERLAHEGFDDLTPSHSPVFQHIERGGTRIGVLAERAHMTNQSMGYLVDALEARGYFERKPDPDDRRASLVVITDRGREQIRVARRLIADIEREWEERIGDERMALLREALEALASSLGNDLGRRPPRRAAERVPGPT0016185_226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-TEMPERATURE_DEPENDENT_REGULATION,PGPT0016185-hosA-K22489NANA
D1-29_00815711rutBCOG1335Peroxyureidoacrylate/ureidoacrylate amidohydrolase RutBATGGTCACCATCGACGCCAGGCCTGAACCCACGACCATCGATCCGTCGCGGAGCGCGCTGATCGTCGTCGACATGCAAAACGACTTTGGCTCCGAGGGCGGCATGTTCGACCGTGCCGGCGTCCCCATCGATGGCATTAAAGCTGCCGTGGCGCCGACAGCGCGGGCGATCGCTGCGGCCCGCCGGGCCGGTATCCCGGTCGTCTACCTGAAGATGCAGTTCGAACCGGATCTGTCGGACGCCGGCGGCATCGATGCGCCGAACCTCGTCCTCCACCGTCGCCTCGGGGTAGGCGACACGGTTCCGACGCCGGCCGGCGGCGAGGGCCGTATTTTGGTACGGGACACGTGGGGCACGGACATCGTTGCGGAGCTCGCGCCGCAGGAGGGCGACATCATCGTGCCCAAGCACCGCTTCAGCGGCTTCTTCGAGACCGACCTCGATAAGACGTTGAGGAGCCTCGGGGTAACGTCCTTGGTATTCACGGGGTGCACCACGACGGTCTGCGTCGAGTCGACGCTGCGCGACGCCTTCTTCCGCGACTACCACTGCCTGCTGCTCGAGGACTGCACGGCCGAGCCCATCGGGAGTAACCTGCCGGGCACCAACCGCGACGCGAGCATCCGGGTCATCGAGATCATGTTCGGCTCCGTCTCGGACTCATGGGCGTTTGAGACCGCCCTCCTGCAGCCGGTCTCGGCGTCCGCCTGAMVTIDARPEPTTIDPSRSALIVVDMQNDFGSEGGMFDRAGVPIDGIKAAVAPTARAIAAARRAGIPVVYLKMQFEPDLSDAGGIDAPNLVLHRRLGVGDTVPTPAGGEGRILVRDTWGTDIVAELAPQEGDIIVPKHRFSGFFETDLDKTLRSLGVTSLVFTGCTTTVCVESTLRDAFFRDYHCLLLEDCTAEPIGSNLPGTNRDASIRVIEIMFGSVSDSWAFETALLQPVSASAPGPT0021270_181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021270-rutB-K09020NANA
D1-29_00816204hypothetical proteinGTGGCCGAACTGATCGGCTGGTTGCGGGATCACGGCCGCGATGCCTCGTTCCCGCAGGTGGGTCGGATCGCCCGGGATGAGTACGCCTTGTCAGGTGCCGTGCTGGTGGGCCGGTTCACCGTCGAGTCAACCAAGACAGACCAATCCACACCGCCCCTGGAGTCAGCCAAGGTCGGCAGCTCGGCCAGGATCTTTTCTAGCTAAMAELIGWLRDHGRDASFPQVGRIARDEYALSGAVLVGRFTVESTKTDQSTPPLESAKVGSSARIFSSNANANANANA
D1-29_00817327hypothetical proteinGTGAAGCTCAGAACCGGGCTGGTCCTGGCTGTCATCCTGGTTCTTGGGGCCACAGGGTATTTTCTGGTCCGGTCAGCCGAGGACAGGGTCACTGCCGACATGCTCTCGCGGGTGGAGCGTTTCGCGATTCCCTCGGACTGGCAGCTGGACGTCGAGACTGTCTGGCCCGAGCGGTTCCTATGCATCAGTACCAACCCCTGCCCCAGCTTCTACCGGCGATGGAACGCCGGCAAAGAGCTCACCGCCGCAGAGGTAGATCCTGGAGGCCGATGCGCCACAGGCCTCTCTTATCTTGCTCCATTCGGCTGTGAGGATCGTGCGCTTTGAMKLRTGLVLAVILVLGATGYFLVRSAEDRVTADMLSRVERFAIPSDWQLDVETVWPERFLCISTNPCPSFYRRWNAGKELTAAEVDPGGRCATGLSYLAPFGCEDRALNANANANANA
D1-29_00818882hypothetical proteinATGAATTATCAACCTAAGGCCCTGCGTGCTCTCTTGGCGGCCGGCCTGACAGCGGTGCTCTGTGCCGGAGCAACCGTCACGGCGCTTCCGGCAGCCGCCGCAGAGACGAAGCTTCGGGTCATCCAGCACAACACCGATCAAATTCAGGAGCGCTGGAACAATGTCCTGAAGCTTGCTGGCGACAATGATGTACTGCTCGCTGAAGAGGTCTGCGAGGCCTGGTACGAAAAAGCCAAGAAGGACAACCCCGGATGGACGTTCTCTTTCCACCGGCAGACACTGACCCCCGCTAATGAAAAAGCGGATACCTGCCCGGAGTCGGAGAAGGGCACGAAGTCGGCGGACGGCACAGAGCAGAAGACCTGGAAGGGCCTTGTCGCTGTTCACACCGGCAAGGGCGACACCAAGGACATTGATTTCTACGGCGCCAAAGTGAACGAGGAAAAGGGCAAGACTTTCGGGATGGCCTGCGTGGACTTCCGGAAGGCCGGCAAGAAGGTAATGGCCTGCGCGACGCACCTGGAGCTTGGTTCAGAGCCAGTGCGCACCGAGCAGACGAAGAAAATCAAGAAGATCACCAAAAAATGGATTAACGATAACTTTGCCGTCGTCGTCGGGGGTGACTTCAATAGTCAACCCGGGACAGATCCGATGTCGAACATGTACCAGTACGGTGTCGACAGTCAGGGAAAGTTTGTGGAGGGGCACCAGCTCAAGACCGGAGAAGCGGCTCGCGATGGGGCCTTCACGGTTGAAAATAGGAAGATCGACTATGTGTTCTTCGACGCTAAGCACACCCCGCTGAAGTCCGGGGGGACCTTTCACGTTGATCGGGTAGCGAACGGACACGCGATCCTTACGGCGACAGCCAACATTAAATAGMNYQPKALRALLAAGLTAVLCAGATVTALPAAAAETKLRVIQHNTDQIQERWNNVLKLAGDNDVLLAEEVCEAWYEKAKKDNPGWTFSFHRQTLTPANEKADTCPESEKGTKSADGTEQKTWKGLVAVHTGKGDTKDIDFYGAKVNEEKGKTFGMACVDFRKAGKKVMACATHLELGSEPVRTEQTKKIKKITKKWINDNFAVVVGGDFNSQPGTDPMSNMYQYGVDSQGKFVEGHQLKTGEAARDGAFTVENRKIDYVFFDAKHTPLKSGGTFHVDRVANGHAILTATANIKNANANANANA
D1-29_00819633hypothetical proteinATGGCTACTCCGCCGCAGAGCTGCCACAAGCGGTCAGCCTTCGCCTTCGACGCGTATGTCGAAACTCCATACTTCCGTCTCACTCCCCTGCTGTTCCCTCGTGCTGGTCGCAATCGGTACAGCCCAACTCGTTTTGCTGTCACCGACAGTAACTGCTGTGGCTGTTCTCGTCGGTGCTGTCTTCGCGGGCTGGGCTCTGTTCCGCTTCCCGCCACCGCTGCAAATCAGAAACGGACTCCTCCTCGTTATACCTGTCATCTGGTTCGCTTTGGCGTTCATCGGGGGAGCCACCAACCAAATGGCCCTTCCACATGCGTGGGCGTACGGCGTTCTCGCCGGCATCCTGATCGGCGGGCGGTACTGGACTGGTCCCCGGCGGGGCCAGCCCCGTCCACCGTTCAATGGCCTTGGCTCGCGGCGACGCCGGCGGAAACGGCGGCCCAGGCAGAAGCAGTCGAAGCAGTAAACGCAGAAGCTCCGACAACTCGGGGCTCTGGACAATCAGGATTCACCGACGACTGCGTGATAATTCCATTCGTTAGATGTATCTTCAGTCAGAGGTGTCTACCACCTCTCATTGGGGGAATTTCGTCGTCCCCGGACACATTCAACGAAAGGGATCGACAACGATGAMATPPQSCHKRSAFAFDAYVETPYFRLTPLLFPRAGRNRYSPTRFAVTDSNCCGCSRRCCLRGLGSVPLPATAANQKRTPPRYTCHLVRFGVHRGSHQPNGPSTCVGVRRSRRHPDRRAVLDWSPAGPAPSTVQWPWLAATPAETAAQAEAVEAVNAEAPTTRGSGQSGFTDDCVIIPFVRCIFSQRCLPPLIGGISSSPDTFNERDRQRNANANANANA
D1-29_00820267hypothetical proteinATGACAGCGCAGATCGAAAATCTACTGGCCTCTTTGAACGAGGAATTGCGATTTGCCAAGGAGGAGCGCGCCACAGGCGCGTCTGATGTGTCACTTCAGTCCGTGGCGAGTTTGCTTCAGCGAGCCGACAAGTTTACAGCTTCGGGTCAGTGGGCAAACGACCAAGAACTTTTGAACGCTGCCGCACATCACATATCGGACTCATGGGGCTTTAGGTCAACGCTGGGTGTGGAGATTCTTGAATTTGTACGAGCGAGCAAGCCGTGAMTAQIENLLASLNEELRFAKEERATGASDVSLQSVASLLQRADKFTASGQWANDQELLNAAAHHISDSWGFRSTLGVEILEFVRASKPNANANANANA
D1-29_008221191hypothetical proteinATGGCTCGCATCCCCAAAACGGCAGCCTGCCCCGCTGGTGCCTGGCAAGGTTCACAACCGCAAGTACGGGCCACAAGTGTCCGTTCGCGCTGCCTGGCTTTGTCCGTAAAGCCGGGCGGGACTAGATTCATAAGCAAGATGACTAATTCAGGCGAACCAGCGCAGGCAACAGCATATTGGACCACCGGCCCGGAGCATGGCGAACTCCGCACAGAGGAGCTGCCCGCCCCGGGGCCAGGTCAGGCGCTGGTCCGCACCCTCTACTCCGGGATCAGCAAGGGCACCGAGATTGTGGTGCACAAGTGTTCGGTCCCGCCGCGGGTTGCCGAGGAGATGCGCGCCCCGCACCAGGAGGGCTCCTTTCCGTCCCCCGTGAAGTTCGGCTACCTGTCGGTGGGCGTGGTGGAGCAGGGGCCCGGGGACTGGGTGGGCCAGAAGGTGTTCTGCCTGAACCCGCACCAGGACCGGTACGTTATCGCCACCGATGCCCTGACCAGGATCCCCGACGGCGTTCCCGCCCGCCGCGCTGTCCTCACCGGCACTGTGGAAACTGCCGTGAATGCCCTCTGGGAGGCCGGCCCCCGGCTGGGGGACCGGATCGCCGTCGTCGGCGCCGGCCTGGTGGGCGGCATGGTGGCCACCCTCCTTCGCACCTTTCCGCTGTCCCGCCTCCAGCTGGTGGACCTGGATCCTGAGCGGAAACACCTTTCTGACCGGCTCGGGGTGGAGTTCGCCCACCCGGATGACGCCCTGGCCGACTGCGACATCGTGTTCCACTGCTCGGCATCCCAGGAGGGCCTGGAACGCAGCATGCAGCTGGCCGGCGACGAAGGCGACATCATCGAGATGTCCTGGTACGCCAACCGCGAGGTCACCGTGCCCCTCGGCGAGGACTTCCACGCCCGCCGGCTGTCCATCCGCGCCAGCCAGGTGGGGGTAGTGTCCCGCGCCCGGCGCCACCGGCGGACTACCGCCGACCGGCTGGACCTCGCCGTCGGGCTGCTCCAAGACCCGGTGTTCGACGCATTTATTACCGGCACTTCACCTTTCGCGGAACTGCCGGACGTGGTGCAGAGCCTGACCGACGGCAAGCTGGAAGCCCTGTGCCACGTGATCGAATACCCTGGCGCCGGAGACCCCCAGCAGAACACAGACTCCGCACAAGCCACTGACCCCGAAGACAAGAGGTAGMARIPKTAACPAGAWQGSQPQVRATSVRSRCLALSVKPGGTRFISKMTNSGEPAQATAYWTTGPEHGELRTEELPAPGPGQALVRTLYSGISKGTEIVVHKCSVPPRVAEEMRAPHQEGSFPSPVKFGYLSVGVVEQGPGDWVGQKVFCLNPHQDRYVIATDALTRIPDGVPARRAVLTGTVETAVNALWEAGPRLGDRIAVVGAGLVGGMVATLLRTFPLSRLQLVDLDPERKHLSDRLGVEFAHPDDALADCDIVFHCSASQEGLERSMQLAGDEGDIIEMSWYANREVTVPLGEDFHARRLSIRASQVGVVSRARRHRRTTADRLDLAVGLLQDPVFDAFITGTSPFAELPDVVQSLTDGKLEALCHVIEYPGAGDPQQNTDSAQATDPEDKRNANANANANA
D1-29_00823396hypothetical proteinATGTTCAGCCTGACCGTCCGTCGCCACTTTATGATTGCCCACAGCCTCCCGCGTGAAGCTTTCGGCCCGGCCCAGGCCCTGCACGGGGCAACTTTCGTGGCCGAGGTGGCCTTCCGCCGTCGGGCCCTGAACCAGGACGCGATCGTGCTGGACATCGGGGCGGCCGGCACCATCATCGAGGGGGTGCTGGCAGGGCTGAACTACCGCAACCTGGACGAGCATCCTCATTTCGACGGCAAACTCACCACCACCGAGGCGCTCGCGGAGTACATCGCCCAGTCCGTCGCTGCACAGCTTAAAGGCGACGACGACGGCCGCGAGCTGGCCGGGATTGACGTCACCCTGCGCGAAAACCCGGATGCCTGGGCAACCTACACCCTGGACATGGCCGGCTGAMFSLTVRRHFMIAHSLPREAFGPAQALHGATFVAEVAFRRRALNQDAIVLDIGAAGTIIEGVLAGLNYRNLDEHPHFDGKLTTTEALAEYIAQSVAAQLKGDDDGRELAGIDVTLRENPDAWATYTLDMAGNANANANANA
D1-29_008241137hypothetical proteinATGCTCAGCCTCCGTCTCCTGGTGCCCGCCAACATCCGTCACCACTCCGGCGGCAACGCCTACAACGCCCGGCTCGTTCAAGGGCTAAGGACGCTGGGTGCCCGGGTTGAGGTGCTGGCGGTGGAGGGCTCCTGGCCGGCCGCCAGTGCAAAGGAACGACGGCGGCTGGGGAGCCTTTTGGGTACCTGGGAGACTTCCGCGGAAACCACTTCTGGAACGGTCACCATGGTGGACGGACTCATCGCCTTGGGCGCACCGGACGAACTCGAGTATGCAGCCGCGGCCCGAAGGCCGGCATGGGTTCTGCTCCACATGCCGTCCGCAGGCCATCCGGAGAGCGAGGCACGCGGCCTGCGTGCAGCGGCCGGGGTGATCAGCACCAGCAGTTCCACCGCTGCCGCCATCAGGTCTCTGCACGGATTGGCGGAAAGCTACGTTGCATTGCCCGGAACGGAACCGGCGCCCGTTGCTAAAGGCTCGGACCCGCCGCACATCATTGTGGTGGCGGCGCTCTTGGCCAACAAGGACCAGCTGTTGACTGTGGAGGCCCTGGCGAGGCTTCAGGATCTGGCCTGGACGGCGTCGTTTGTGGGTTCCGACAGCGCCGACCCGGAGTACGCGGAGCTGGTCCGCGCCGCCATCGCTGCCCGCGGGCTCCAAGACCGGGTACGGATCACAGGCCAGCTGACGGGAGAGGCGCTGGAGGACGAATGGAACCGGGCTGACCTGAGCCTGCTGGTGTCCCGGGCCGAAGCCTTCGGGATGGTGGTCACAGAATCACTTGCCCGCGGCATACCCGTCATTGTTCGGGAGGGAACAGGCGCCATGGAGGCGCTGACGCTCGCCGCCCGCGCTGTAGGGCACACCAATGGCGCGGGCGCCGCACTGCCCGACGGCGCACTGCCCGGTGCCGCCGTCGGCCCGCCCAGCTCCCCGGACCTCCAGACGCTGGAACCCGGTACGCTGACGGCCACGAATCCGGAGCCTCTGGCCGCGGGCCTCCGGGAGTGGCTGGAGGAACCGGGGCTCCGCGCCGCCTGGCGGGCAGCCGCGCTTGCCTCCCGTGAACGGTTGCCAGGGTGGGAAGCCACGGCCCGGACGGTGCTGGAAATCGTAGCGGCACCCCGGGAGGATTGAMLSLRLLVPANIRHHSGGNAYNARLVQGLRTLGARVEVLAVEGSWPAASAKERRRLGSLLGTWETSAETTSGTVTMVDGLIALGAPDELEYAAAARRPAWVLLHMPSAGHPESEARGLRAAAGVISTSSSTAAAIRSLHGLAESYVALPGTEPAPVAKGSDPPHIIVVAALLANKDQLLTVEALARLQDLAWTASFVGSDSADPEYAELVRAAIAARGLQDRVRITGQLTGEALEDEWNRADLSLLVSRAEAFGMVVTESLARGIPVIVREGTGAMEALTLAARAVGHTNGAGAALPDGALPGAAVGPPSSPDLQTLEPGTLTATNPEPLAAGLREWLEEPGLRAAWRAAALASRERLPGWEATARTVLEIVAAPREDNANANANANA
D1-29_00825507tadA_1COG0590tRNA-specific adenosine deaminaseATGGTCCCCGCACAAAAGAAACACGGCGAGTGGATGGGCCTTGCCCTGGCCGAGGCCAGGCGGGCACTCGCCACCAACGATGTGCCCATTGGTGCGGTGGTGATAGGTCCCGACGGCGCGGTGCTGGGTTCGGGACGGAACCAGCGGGAGGCCCTGGGAGACCCCACCGCACATGCCGAGATCGTCGCTATTCGCCAGGCGGCTGAGCGGCTGCGGGAGCTTGCCCTGCACGACGGCGGTACCGGGGACGGCTGGCGGCTGGCGGACTGCACTCTGGTGGTCACCCTGGAGCCATGCGCCATGTGCGCAGGTGCTGTGGTGTTGGCCCGGATCCCCCGGGTGGTTTTTGGCGCGTGGGATGAGAAGGCGGGCGCGGCAGGCTCGGTGTTTGATGTGCTCCGGGAGCGCCGCCTCAACCATTGGGTGGAGGTTTACGCGGGTGTCCGGGAAGACGAATGCGGCGCGCTGCTCAGGGAATTCTTCGCCAGACACCGCACCCGGCTGTAGMVPAQKKHGEWMGLALAEARRALATNDVPIGAVVIGPDGAVLGSGRNQREALGDPTAHAEIVAIRQAAERLRELALHDGGTGDGWRLADCTLVVTLEPCAMCAGAVVLARIPRVVFGAWDEKAGAAGSVFDVLRERRLNHWVEVYAGVREDECGALLREFFARHRTRLPGPT0006855_48DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563NANA
D1-29_00826843hypothetical proteinGTGGACACCCTCAAAGACCGCTTTGCACTATGGGTTTTGCCGTACGCTGCCTTGTGGATCACGCTTCTGGTGGGTGGCGCCCTGGTGGTCACTTTGGCCTTGCTGGGTGCCGAGGTATACGCCAACGTGGTGGACGATGAGGGCCTGGCCTCCCTGGACCTGCCCGCCCTGGAACTGTCCCAGCAACTGCGCACTTCGGATCTGAACGCGGGCGTAACGGCCTTCACCAACGTTGGCGGCGGAATCGGGATGCCCATCGTGGCAAGCGTCCTGACGGCCTGGCTGACCTTCCTGAGCCGGACCTGGCGGCCCATCATCCTGGTGGGCGGCGCTGCAGCAGTGTCCACCCTGGCTACGACGGCGGGCAAGCGGCTGGTGGGGCGGACCCGCCCGGACCATTCGGAGGCTGTCCCACCCTACGAAACCTCACCGTCCTTCCCCAGCGGGCACACGCTGAACACCACAGTGGTCATCGGAGTCCTGGTGTACATCATGTGCCTGCAGTTTGAGGTCCTGTGGGTGCGCATCACGGCCATCACTGCCGGTGCACTGTTCATCATTGCCATGGGCCTCAGCCGGGTCTTCCTGGGCCATCACTGGATGACCGATGTCCTGGCCGCCTGGTTCCTCGGGCTTGCCTGGATGGCGCTGGTGATCCTGGCACACCGGCTGTTCCACCTGACACGGAAACGCGAGCATGCCGGCCCCGCACCCACGTTCGAACACCCCGCCCTCCGTGAGGACCACAGCGAGGACCACCGTGAGGATCAGCCCGCCGTGGAAGGGGCGGAGGAGCGCGGCGCAGGCACCGGTTCTCCCGGTAAAGGCTCTTCTGCCGGGTGAMDTLKDRFALWVLPYAALWITLLVGGALVVTLALLGAEVYANVVDDEGLASLDLPALELSQQLRTSDLNAGVTAFTNVGGGIGMPIVASVLTAWLTFLSRTWRPIILVGGAAAVSTLATTAGKRLVGRTRPDHSEAVPPYETSPSFPSGHTLNTTVVIGVLVYIMCLQFEVLWVRITAITAGALFIIAMGLSRVFLGHHWMTDVLAAWFLGLAWMALVILAHRLFHLTRKREHAGPAPTFEHPALREDHSEDHREDQPAVEGAEERGAGTGSPGKGSSAGPGPT0024170_12DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302NANA
D1-29_00827636uppUracil phosphoribosyltransferaseATGCGCACTCTCGTTGTGGACCACCCGCTGGTCGCCCATAAGCTCACTGTCCTGCGGGACAAGAACACACCGTCCCCTGTTTTCCGGCAGCTGACGGAAGAGCTGGTGACACTCCTCGCGTACGAGGCCACCCGTGAAGTCCGCACCCAGCCCGTGACCATTGAGACGCCGGTCAGCACCGCGGTGGGCACCGCGTTTACCAAGCCGACGCCGCTGGTGGTCCCCATCCTCCGCGCCGGCCTGGGCATGCTGGAGGGCATGACCAAACTGGTTCCCACGGCTGAAGTGGGATTCCTGGGCATGGCCAGGGACGAGGAAACCCTGGACATCATCACTTACGCCGAGCGGCTCCCGGAGAATCTCACGGACCGGCAGATCTTTGTGCTTGATCCCATGCTGGCCACAGGCGGAACCCTGCGCGAGGCCATCAAGTTCCTGTTCAAGCGCGGCGCCTCGGACGTCACCTGCATCTGCCTCCTCGCCGCCCCGGAAGGCCTGGCGAAGCTGGAAGAGGAACTTTCCGACGCCAACGTGACCATTGTCCTGGCTTCCATAGACGAAAAGCTGAACGAGAAGTCCTACATCGTCCCGGGCCTCGGAGACGCGGGGGACCGGCTGTACGGCATCGCCGGCTAGMRTLVVDHPLVAHKLTVLRDKNTPSPVFRQLTEELVTLLAYEATREVRTQPVTIETPVSTAVGTAFTKPTPLVVPILRAGLGMLEGMTKLVPTAEVGFLGMARDEETLDIITYAERLPENLTDRQIFVLDPMLATGGTLREAIKFLFKRGASDVTCICLLAAPEGLAKLEEELSDANVTIVLASIDEKLNEKSYIVPGLGDAGDRLYGIAGPGPT0021240_1974DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761NANA
D1-29_00828681ppaXPyrophosphatase PpaXATGAGCCTTCCCACGCCTGCCGATACCCGCACCCTCACCTGCCGCGCCGTGCTGTTTGATATGGACGGGACATTGGTGGATTCGACCGCCATTGTGGAACAGGTGTGGAGTGAGTTCGCCGCCCGCTACGGGCTGGACTTTGCCGAGATCCTGCGAACCTCCCACGGCGTCCAGGCAGGCGACACGGTGCGGCGCTTCGCCCCGGCAGGGGCGGACGTCGTGGCCCTCACCGCCGAACTCGGCGCTGCCGAACGTGTCCGCACCGCAGGCATTGTCGCTTTGCCCGGAGCCGCCGAGCTGCTGCGGACCCTCCCGGGCGACGCCGTTGCGCTGGTGACCTCTGCCGACCGTATCCTGGCGGACATCCGCATGGAGGCTGCCGGCCTGGCCATGCCCGCCACCGCCGTTACGGCCGAGCTGGTAACCAGGGGCAAGCCGCATCCTGAGGGCTACCTGCAGGCAGCGGGACTCCTGAGGGTGGAACCGGCGCACGCGCTGGTGTTCGAGGATGCGCCTGCCGGTATTGCTGCCGGGCTGGCTGCCGGTATCCGCACGGTGGCGGTGGGTCCGAATACCGGTTTGCTGCCGGACGGCGTGCTGCACATTTCCGACTACAGCGACGTTTCGGTTGCGGTGGAAACAGATTCAGCGGGCGCGAGGGTCATTTCTTTCCGGCTTTGAMSLPTPADTRTLTCRAVLFDMDGTLVDSTAIVEQVWSEFAARYGLDFAEILRTSHGVQAGDTVRRFAPAGADVVALTAELGAAERVRTAGIVALPGAAELLRTLPGDAVALVTSADRILADIRMEAAGLAMPATAVTAELVTRGKPHPEGYLQAAGLLRVEPAHALVFEDAPAGIAAGLAAGIRTVAVGPNTGLLPDGVLHISDYSDVSVAVETDSAGARVISFRLPGPT0018405_82DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_SORBITOL_DEGRADATION,PGPT0018405-hxpB-K19270NANA
D1-29_00829444hypothetical proteinATGAAATTCACCACCACCATCCTGGGCAGCGGCAACAAGGCGGGCATTGAGGTTCCGGAGGAAGTTGTCTCCGCGCTGGGAGCCGGCAGGAAGCCGCCGGTGGTGGTGACCATCAACGGCCAAAGCTACCGCAGCAGCATCGCCGTCATGGGCGGGCAGAACATGGTTGGGGTGAGCACAGCCAACCGGGAACTCACCGGCGTTTCGGCAGGCGACACCGTTGATGTGGACGTTGAGCTGGATACGCAGCCCCGCGTCATTGAGGTTCCGGACGATCTTGCCGCCGCCCTCGCTGCCGAGCCTGACGCACAGGCGTTCTATGCCACGCTGAACTACAGCACCCAGCGGCGGTACGTTGAGCCGCTGGCCGAAGCGAAGACCGCGGAAACCAGGGCCCGCCGGATCGCCAAGGTGGTGTCCGACCTCAAAGCCGGAAAGAAATGAMKFTTTILGSGNKAGIEVPEEVVSALGAGRKPPVVVTINGQSYRSSIAVMGGQNMVGVSTANRELTGVSAGDTVDVDVELDTQPRVIEVPDDLAAALAAEPDAQAFYATLNYSTQRRYVEPLAEAKTAETRARRIAKVVSDLKAGKKNANANANANA
D1-29_00830747hypothetical proteinATGTCTGAATTCAAGGTAGAACCACGCCCTAAAACCGGGCAGTCCGAATCCCACGGCCGTCACAAGCTCCGCCTGACGGTGGCAGCCTGGCCCGCCGCCACCATGTCCAGGCTGGCAAAAATACCCTCCCTCGGCAAGCGCACAGCCGTTCTTGTCACCGCCGGTGCATTGCTGGTGGGAGTCGGCGCCGCCGGCCAGGCGTCCGAATCCATCACCCGGGTGTCGGCCGTCGAGTCACAGTCCTCCCCCGCAGCCCCCGCCGACTCCGATTTGAGCGTCGAGAAGACCGAGGTCCAGGCGCCGCCCGCTCCCGCTCCGGCCGAGGTTGCTCCGCCGGCACCCGAGCCGGCACCAGCGCCTGCTCCCGAGCCCGCACCGGCACCCGCCCCGGCACCAGCACCCGCCCCGGCCCCGGAGCCTGCTCCGGTTGTCGCCGTCAATGATCCCGCGGGAGCCCAGGCCTACGCTGCCAGCCAGCTGGGATCCTATGGCTGGGCCCCTGACCAGATGCAGTGCCTCAAGACGCTCTGGACCAAGGAGTCCGACTGGACCACCACGGCGATGAACCCGAGCAGCGGCGCGTACGGCATCGTCCAGTCACTGCCCGCCGAGAAAATGGCCACCGCCGGTGCGGACTACCTCACCAACTACCGCACGCAGATCAACTGGGGCCTGAACTACATCCAGGAGCGCTACCAGTCACCGTGTGGTGCCCTGAACTTCCACCTGTCGAATAACTGGTACTAGMSEFKVEPRPKTGQSESHGRHKLRLTVAAWPAATMSRLAKIPSLGKRTAVLVTAGALLVGVGAAGQASESITRVSAVESQSSPAAPADSDLSVEKTEVQAPPAPAPAEVAPPAPEPAPAPAPEPAPAPAPAPAPAPAPEPAPVVAVNDPAGAQAYAASQLGSYGWAPDQMQCLKTLWTKESDWTTTAMNPSSGAYGIVQSLPAEKMATAGADYLTNYRTQINWGLNYIQERYQSPCGALNFHLSNNWYNANANANANA
D1-29_008321557tcrYputative sensor histidine kinase TcrYGTGGCCTTGTCCTCGTCCTCGCCCTTGTCCCCCTCCTCCCCCTCGTCCCCCTCCTCCTTGCCGGCCGCGGCGCCCAAGGACGAGCGCAACTGGCTGAGGCCCGGCACGTGGCACCTGCGCACGCGGCTGGTTGCGCTGGCCATGGCGCTTCTGATTGCCATCTGTGGCGCCGTGGGGCTGTTCACCTACGCGTCCATGGATTCATTCCTCACACGCCAGCTCGATGACCAGCTCAGCCAGGCGGCGGAACGCTCCAACGCTCCCGGCAGGCCGCCGCTGGGCGGGTTCAATGGCGGGCGTGATCCCCTTGACGCCCGGGGACAGAGCGTTGGCACTCTCAATGCCCGCATCCTCGGCGGGCAGGTCAACAGTGCCGGCTTCCTCGCCTCAGACACCACGCGCGCACCACTCACCACCCGAGACAAAGAGATCCTGCTGGATCTGGCACGCAACGGCAATCCGGTGGACCGGACGTTGTCCAACGGCAACTACAGGCTGTTGGCTGAGGAAACCTCGTACGGGGACGTGCTGGTCACGGGACTCCCCCTTGCCAGTAAGGAAAGCACCATGTCCTCACTGGTGTGGACCTTTGTCTTTGTCTCCCTGGGCGGCCTGGTCCTGATCGGACTGGCGGGAACCGTGCTGATCCGGCGCACGATGCAACCGCTGGAACAGCTGTCCGAGGTTGCCACCCGCGTTTCCCGGCTTCCCCTCGACGCCGGCGAGGTAGCCCTCGCGGTGCGGGTGCCGCCGTCGAACGCCAATCCCCGGACTGAAGTGGGCAGCGTGGGGCACGCCCTCAACCTCATGCTGGACAACGTAGCCCGGGCACTGGAGGCCAGGCAGCAGAGCGAGACCAAAGTGCGGCAGTTCGTCGCCGATGCCTCACATGAACTCCGCACCCCGCTGACTGCCATCCGCGGCTACACCGAACTGATGCGGATGACCGAGGATTTCACTCCGGACGGCCAGAAGTCGCTGGCCCGGGTCCAGAGCCAGTCGGAACGGATGACCACCCTGGTGGAGGACCTGCTCCTGCTCGCCAGGCTGGACGAAGGCCAGCCCCTGAAGCTCGCCGAAGTTGACCTCACGCAGCTGGTCATCGAGACCGTCAGCGACGAGAAGGTCATCGCCCCCACCCACAACTGGCGCCTGGAACTCCCCGACGAGCCGGTGCTGGTCAACGGCGACGCGCCGAAGCTTCGCCAGGTGCTGGTGAACCTGCTTTCCAATGCCCGCAAGCACACGGCCCCCGGCACCACTGTTATCACCGGGGTCACGACGTCGCCGGAGGGCAGCGCGGTGGTAACCGTAACGGACGACGGCGGCGGCATCCCGCCGGAGTTCCTGGACCAGGTTTTCTCCCGCTTCGCCCGCGCAGACGCTTCCCGGGCGGGCAAGGCACCTGGATCAGGTCCCCGGGCCTCGGAAGGAACCAGCGGCCTGGGCCTGGCGATAGTCCAGTCCATCGTGGAGGCGCACGGCGGCACGGTAACGGTAAGGTCACAGCCCGGCTTCACCGAGTTCGCTTTGCGACTGCCCATCATTGCCCGTTAAMALSSSSPLSPSSPSSPSSLPAAAPKDERNWLRPGTWHLRTRLVALAMALLIAICGAVGLFTYASMDSFLTRQLDDQLSQAAERSNAPGRPPLGGFNGGRDPLDARGQSVGTLNARILGGQVNSAGFLASDTTRAPLTTRDKEILLDLARNGNPVDRTLSNGNYRLLAEETSYGDVLVTGLPLASKESTMSSLVWTFVFVSLGGLVLIGLAGTVLIRRTMQPLEQLSEVATRVSRLPLDAGEVALAVRVPPSNANPRTEVGSVGHALNLMLDNVARALEARQQSETKVRQFVADASHELRTPLTAIRGYTELMRMTEDFTPDGQKSLARVQSQSERMTTLVEDLLLLARLDEGQPLKLAEVDLTQLVIETVSDEKVIAPTHNWRLELPDEPVLVNGDAPKLRQVLVNLLSNARKHTAPGTTVITGVTTSPEGSAVVTVTDDGGGIPPEFLDQVFSRFARADASRAGKAPGSGPRASEGTSGLGLAIVQSIVEAHGGTVTVRSQPGFTEFALRLPIIARPGPT0004100_740DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-29_00833741tcrX_1COG0745putative transcriptional regulatory protein TcrXATGGCCACTTCGCACTCCATGACCAACAATCTTCCCCAGCTCACCCACCCGGACGGCTCACCCATCCGCGCCTTGGTGGTGGACGACGAACCCAGCCTCTCCGAGCTCATGAGCATGGGGCTGCGCATGGCGGGCTGGTCTGTGGCCGTCGCCGCGGACGGCCCTGAGGCCATCAAGCTCGCCAAGGAGTTCCGGCCGGACGTGCTGGTGCTGGACGTGATGCTGCCGGGTTTCGACGGCGTCGAGCTGCTCGGCAGGATCCGCGCCTTCGCGCCGGAGGTGCCTGCGCTTTTCCTGACAGCCAAGGATGCTGTCCAGGACCGGATCCTAGGTCTGGCTGCAGGCGGGGATGACTACGTCACCAAACCCTTCAGCATGGAAGAAGTCCTGCTCAGGCTGCACCGGCTGGTGCAGCGCTCCGGGGTTGCGGCGATGGACACTGCCGAACTAGTGGTGGGCGACCTCGTCCTGAACGTGGACACCCGCGAGGTGACCCGGGCCGGGGACGAACTACACCTCACGGCCACACAATTCGAGCTTCTGCGTTACCTCATGGAAAACCCCAAGCGCGTCATCAGCAAGGCCCAGATCCTTGACAGGGTTTGGGACTACGACTTCGGCGGGCAGGCCAACATCGTGGAGCTCTACATCTCCTACCTCCGCAAGAAGGTGGATGCCGTGCACCCGCCCATGATCCACACCGTGCGCGGGGCCGGCTATGTGATCAAGCCGGCGGACTAGMATSHSMTNNLPQLTHPDGSPIRALVVDDEPSLSELMSMGLRMAGWSVAVAADGPEAIKLAKEFRPDVLVLDVMLPGFDGVELLGRIRAFAPEVPALFLTAKDAVQDRILGLAAGGDDYVTKPFSMEEVLLRLHRLVQRSGVAAMDTAELVVGDLVLNVDTREVTRAGDELHLTATQFELLRYLMENPKRVISKAQILDRVWDYDFGGQANIVELYISYLRKKVDAVHPPMIHTVRGAGYVIKPADPGPT0004105_1307DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-29_00834864hypothetical proteinATGTCAGTTGCATCCGGATACGTCCACATCTCCGTCCGTAACGCCAGCAAGGCGGGCCAGCCCGCCGGCCTCCGGCAAGGCTTCGGCGCCCGTCCGGCGCTCGCCCCGGCCACCCCCGGCGCCAGCTTCCCGGCTCCCGGCTACGCACCCCAGGGCTACAACCCCAACTCCTACGGACAGCTCCGCGCAGTACAGCCCGACGCTTCACCCATGACCGCTCCCACGCCCGTGGTGGCAGGGCCCAACACGGTCCGGCCCGTAGCCAACGACAACGTGGCCAGGGGATTTGTCCTGTACATGGGCATCGATGAGGAAACTGCCGCGGCCGCCGGAACGTCCATCGCCAAGCTCGCCCAGGAAATCCGCGCCTACGCCCAGTCCCTGGTATCGGGTGCCGAAAGCTACGCCGCTGTGGCAGTGGCGCCGGCCAGCACACCCGGTTCCGCTCTCGACGTCGTCCGCTCCACCTTCGGTGACCCCACCGTGAACGCACGGCAGCGCACCGAAACGTCCAGGCTCCAGCAGGCCCAGGACCCGCGTCCGTCCGGCGTCCTGATTGACCTCGCCCGCCGCGAAGTCCACCTGGACGGCGAATCCCTGAACCTGACGTTCAAGGAGTTCGAACTCCTGAACTACCTCGTGGAGAACGGCACCCGCACCGTTGGCCGCGACGAGCTGCTCGAAGGCCTGTGGCGCAATGCCGAAGAGGTTCCCAACGAGCGCACCATTGACGTCCACATCCGCCGCCTCCGCTCCAAGCTGGGCCGCCTCGCCAACACGGTGCGCACGGTCCGCGGCCAGGGCTACCGGTTCTACGAGCACCCGGAAGTTGTGGTCTGGGCCGCTCCGGAATACTCGATCTAGMSVASGYVHISVRNASKAGQPAGLRQGFGARPALAPATPGASFPAPGYAPQGYNPNSYGQLRAVQPDASPMTAPTPVVAGPNTVRPVANDNVARGFVLYMGIDEETAAAAGTSIAKLAQEIRAYAQSLVSGAESYAAVAVAPASTPGSALDVVRSTFGDPTVNARQRTETSRLQQAQDPRPSGVLIDLARREVHLDGESLNLTFKEFELLNYLVENGTRTVGRDELLEGLWRNAEEVPNERTIDVHIRRLRSKLGRLANTVRTVRGQGYRFYEHPEVVVWAAPEYSINANANANANA
D1-29_00835528COG2062putative proteinATGAGCGACCACCACATCAGGCGACTGGTGATCATGCGGCATGCCAAGGCGGACTGGCCTGGCGGTGTGGCGGATCACGACCGGCCGCTGGAAGAGCGCGGCCACCGGGAAGCGCCCCTTGCCGGAAAATGGCTCGTCAAGCATGGGATTGTCCCGGATTTCATCCTCTGCTCCAGTGCACTCCGGACCCGCCAGACCTGCACCTGGGTGTGCTCGGAGCTGGGGGACAAGGCCCCGACGCCGAAACTGGAGGGCGGACTTTACGGAGCCTCCGCGCTGCGCATGCTCACGGTGGTCAACCACGTGCCCGATACCGTCACCACCCTGATGCTGATCTCCCATATGCCCGGGGTCCAGGACCTCGCCATGCACCTGGCTTCGCGTGACTCCAACCACGACGCCTACATGGACGCGGCCACCAGGTTTCCCACCAGCGCGCTCACTGTTCTGGAAACTGAAAAATCCTGGGCGGAACTGGACGGGCAGGACGCGCGGCTGACCAGGTTCAAGGTTCCGCGCGCGCACTAGMSDHHIRRLVIMRHAKADWPGGVADHDRPLEERGHREAPLAGKWLVKHGIVPDFILCSSALRTRQTCTWVCSELGDKAPTPKLEGGLYGASALRMLTVVNHVPDTVTTLMLISHMPGVQDLAMHLASRDSNHDAYMDAATRFPTSALTVLETEKSWAELDGQDARLTRFKVPRAHNANANANANA
D1-29_00836924hypothetical proteinATGTACCTTTACTTCATGATCGATATCGGTACTTTGCGGGCGCTGACAGCTATTGAGCAGCATGGGTCTGTCATTGCCGCCTCAGAAGTCCTGGGCTTTAGCCCTTCAGCTGTCTCCCAGCAGGTTAAGAAGCTGGAGAAACAGACAGGATTCGCGGTCCTCGAGCGCCGCGGGCGGGGTGTGCTGTTGACCGAGCGCGGACTCACCCTCGCCGCCTACGGGCGCAGGATCCTTGCGGAACTGGAAGAACTCCAGTCCACCCTGCTTGCGGATCCGGCGAAACCAACCGGCCACCTGAGGGTGGTGTCCTTTTCCACCGCCTGCCGCGGCCTGGTGGGACCAATGTTGGGGAACCTGGCCGCCTCAGGAAGTGAACTGGACGTCAGCGTGTTGGCGGAGGACCCGCGGGAGGCCGTGGCCCGGGTGGCCAACGGAGAGGCGGACCTGGGCGTGGTGCACAACTGGAACTCCGTCCCCCTGGTCATTCCTGAACACATGAGCCTTGAGTGGCTGTGCGAGGACATTGCGGATCTCCTGGTGCACCAAAGCCATCCACTGGCCGGACGGAAGGCGGTGGAACCGGCGGACCTGGTTGACGAGCGCTGGATCAGCACCCCGCACGGCGCCATCTGCAACGAGGCACTGCTCAGGATCTTCGCGGACCTGGGCCGGGTGCCCGACATCCGGGTCTATGATCCGGACTTTGCGACCCACCTTGCCCTGGTGGAACAGGCGGCCGTGGTGGCGCTGGTCCCCCGGCTTGGCAGGCCGGCACTTCCCGGCGGCGTGGTGTCAGTACCCGTCATCAAGCCCGTCCAGGTCCGCCAGGTGGGGCTGGTCCACCGCAGGACCATGACAGCCAGCCCGGGCATCCGCCACGTGGCAGCACTATTGAAGGAGATCGCGGCCGGCCCAACCAGGTAGMYLYFMIDIGTLRALTAIEQHGSVIAASEVLGFSPSAVSQQVKKLEKQTGFAVLERRGRGVLLTERGLTLAAYGRRILAELEELQSTLLADPAKPTGHLRVVSFSTACRGLVGPMLGNLAASGSELDVSVLAEDPREAVARVANGEADLGVVHNWNSVPLVIPEHMSLEWLCEDIADLLVHQSHPLAGRKAVEPADLVDERWISTPHGAICNEALLRIFADLGRVPDIRVYDPDFATHLALVEQAAVVALVPRLGRPALPGGVVSVPVIKPVQVRQVGLVHRRTMTASPGIRHVAALLKEIAAGPTRNANANANANA
D1-29_008371038hypothetical proteinGTGAACCTCCGCCATTCCTTGCTTGCCGCCCTGGTCGCAGTCCTGTGGGGCCTGAATTTTGTCGCCATCGACTTCGGCCTGCACGCCAACGGCCGCGAGGTTCCGCCGCTGTTGTTCGTCGCCATGAGATTCGTGCTGGTGGTTTTCCCGTGGATCTTCTTCATCCGGAAGCCGGAGGTCAGCTGGAAGGCGATTGCCGGCGTCGGGCTCTTTATGAGTGCGGGGCAGTTCGGCCTCCTCTACCTGGCCATGGCGCTGGGCATGCCGGCGGGCCTCGCGTCGTTGGTATTGCAGGCGCAGGTGCTGCTGACGGTCCTCCTGGCCGCGGGGTTCCTCGGTGAACGACCCACCGCCCGCCAGATGGCCGGAGTTGTGCTTGGCGTGGCGGGCCTTGCCGTAGTGGCAGTAGGCCGCAGTGCGATGGCACCGGTGCTTCCGCTGATCATTGTGCTCGCCGCTGCGCTTTCCTGGGCTGCCGGCAACATCATCGCCCGGAAGGCACGGGCTGCGTCAGGGTTGGGGCTGGTGGTCTGGTCCGGGGCGGTAGTGCCGCTTCCCCTTGCGGGTCTTTCGCTGATCATCGACGGACCGGCCGCCGTTGCCGGAACCTTGTTGGACCTGCAGCCAGCCACCCTCCTGAGCGCCCTGTACACGGCAGTCTTCGCATCGCTGGTTGGCTACGGGATCTGGAACAGGCTGCTGGCCACCTACACGTCATCGGCCGTGGTGCCCTTCACCCTCCTGGTTCCGGTGGTGGGAATGAGCGCCGCATGGCTGGCCCTGGCTGAGGTTCCCTCTCCTGCCGAACTGGCCGGCGGCCTGCTCCTGCTGGGTGGCGTCGCGACGGCGGTGCTCACGGGAACGGCCGGCAGGACTCAGCGCCGCGGCGCTGCCCTGGTGCCGGGTTTGGGCGCGGGTTTGGGCTTTGATGCGCCCGCGGGGACCGCCTTGCGCACCGATGATGCTGACGACGACGGCCGCTTGGCCGCCGCCGCTGGAACCCGTGGTGTGGGGGTCCGGGAAGCAGACGCCCCCTGAMNLRHSLLAALVAVLWGLNFVAIDFGLHANGREVPPLLFVAMRFVLVVFPWIFFIRKPEVSWKAIAGVGLFMSAGQFGLLYLAMALGMPAGLASLVLQAQVLLTVLLAAGFLGERPTARQMAGVVLGVAGLAVVAVGRSAMAPVLPLIIVLAAALSWAAGNIIARKARAASGLGLVVWSGAVVPLPLAGLSLIIDGPAAVAGTLLDLQPATLLSALYTAVFASLVGYGIWNRLLATYTSSAVVPFTLLVPVVGMSAAWLALAEVPSPAELAGGLLLLGGVATAVLTGTAGRTQRRGAALVPGLGAGLGFDAPAGTALRTDDADDDGRLAAAAGTRGVGVREADAPNANANANANA
D1-29_00838696hypothetical proteinATGCGTCACATGGGGAACAGTGGAAAGCTCGCCATCATCACGGCCGTGGTGGCCCTTCTCATGCTGGTCCTGACAGCACTCACGCTGGAAGAGCCGGTGATGTTCACCTTCCTCGCGCTGGTGGCCCTGGCGTACGTCGCCGCTCTTTCTGAGGTGCTGTCCCGGCGTCGTTACGCTGTTGCCGTAGCCACTGGCGTAGGAACCAGCCTGACAATAGCGTTTGCCCTGGCCTTCATCAGCACGTGGGAACTGGCCTTCGCCGGCCAACCATCTTTCTTTGGCACCCCCCTTCCCACCGGGGATCCGGACAACTACTTCTTCCTCTCTGCCGCCTCGTCGTTGACCACCCTTTTGGTCCTGTTCGCCGGGGCCGCCTGGCCGTCCCGAAGGCGGCCGGCAGCCAGGACACCTGCGTCGCAGAGGCGTCCCGCCACCGCCGCACGCCGCCCCGCTGCCCGGCCCCGCACCCAGGGCGCACCGGGCCAACGCACAGCAAGCCAACGCACCAGTCAGAGCACAGCACAGCGCACAAGTCAGGGGGCGTCTGCTTCCCGGACCCCCACACCACGGGTTCCAGCGGCGGCGGCCAAGCGGCCGTCGTCGTCAGCATCATCGGTGCGCAAGGCGGTCCCCGCGGGCGCATCAAAGCCCAAACCCGCGCCCAAACCCGGCACCAGGGCAGCGCCGCGGCGCTGAMRHMGNSGKLAIITAVVALLMLVLTALTLEEPVMFTFLALVALAYVAALSEVLSRRRYAVAVATGVGTSLTIAFALAFISTWELAFAGQPSFFGTPLPTGDPDNYFFLSAASSLTTLLVLFAGAAWPSRRRPAARTPASQRRPATAARRPAARPRTQGAPGQRTASQRTSQSTAQRTSQGASASRTPTPRVPAAAAKRPSSSASSVRKAVPAGASKPKPAPKPGTRAAPRRNANANANANA
D1-29_00839705betI_2HTH-type transcriptional regulator BetIATGAGTGCCAGGCCACCGGAACTACAGAAGCCACCGGCGGAACCGCATGCGGAACCGTCAGAACCGGCCGCGAAGAAGCTGCGCCCCGAACGGACCAGCGCCACCAGGCAGCGGCTCTTCGACGCGTCGATGGAACTCATCGGCCAGCGGGGTGCTGCGGAAGTGACAGTGGACGAGATCGCCGCCGCCGCCGGGGTGTCGAAGGGCACGATCTACTACAACTTCGGCAGCAAGTCCCATCTCATCGCCCAGCTGCTGCGGCATGGCGTCGATATTCTGAAGGAACGCCTCCTGCGCGCGGGCAACGCAGACCCGGGCAGCACGCCGGTGAGCGAACCCGTCACCGCAGACGTGGATCCGTTGCTGTCCATGGAGGCGATGATTGGCCAGGCCATGGATTTTATGGACGACTACCCCTCCTTCGCGCGGTTGTGGGTCAGTGAAAACTGGCGCACCCCCAGTGAATGGCAGGACACCTTTGCCGTACTCAGGGGCGAACTGCTGGAGGTCATTGGGGCAGCGGTGGGGAAGGTTGCCGCCGCCCATCCCGTGGATGAGCGGATCTCCCAAGGCAGCCTGGCGACGGCAATCTTTGGGGCCTGTTTTGTGGTGGGGCTGGACCGCCAGACCTACAACCCGGAGCGGACCCGTGACCAAAGTGTTGCAGCAATAATGGCGATCATGCGCGGCTACGTGCTGAAGTAGMSARPPELQKPPAEPHAEPSEPAAKKLRPERTSATRQRLFDASMELIGQRGAAEVTVDEIAAAAGVSKGTIYYNFGSKSHLIAQLLRHGVDILKERLLRAGNADPGSTPVSEPVTADVDPLLSMEAMIGQAMDFMDDYPSFARLWVSENWRTPSEWQDTFAVLRGELLEVIGAAVGKVAAAHPVDERISQGSLATAIFGACFVVGLDRQTYNPERTRDQSVAAIMAIMRGYVLKNANANANANA
D1-29_008402037hypothetical proteinGTGACTGTGCTGCGGCTGGCCCGCTCCGAACTCAAGCGGATGACCGGCGGGCTGCTGCCCAAGCTGACCATCCTGGCGCTGGTGATGGTGCCGCTGCTCTACGGGGCCGTTTACCTCTACGCCAACTGGGATCCTTACGGCAACCTGGACCGGATTGATGCCGCCCTGGTGGTGGAGGACACGGGCGCTTTAACCAGTGACGGCACCGAACTTCAGGCGGGTGCCAAGGTGGCCGACAGCCTGGTGGAAGGCAACGTCTTCAACTGGAAATCCGTTGCCAGCGCCGACGAGGCCGATCTGGGTGTGAGCAGCGGCAAGTACGCCTTTGCCTTGAAGATCCCGGAGGACTTTTCCACCAACCTGGTGTCTCCCGGCAGCTTCGATTCGGCGAGCCAGGCCATGCTGGATGTCACTACCAACGATGCCAACAACTACCTCCTCAGCACCATCGTGGACAAGCTCACCACTGCGGTGCACAACACGGTGGCCAAAGACGTGGGCGAGGAGACGGCCAACCAGCTGCTCACCGGCTTTGGCACCATCCATGCCCAAATGCTCAAGGCCGCCGACGGCGCCGGGCAGCTCGCCGACGGCGTGGCCACCCTGCGCGACGGGACGGTCACCCTGCATCAAGGCAGCACCGCGCTCAACGGCGGAGCAGGCGAACTGTACGCAGGGCAACTCAAACTGCGCGACGGCGCCAACCAGCTCACCGACGGCGCCGGGCAGCTAAGCAGCGGACTGTCCGTCTTGAAGGACAAGACCGCCACCCTGCCCAGTGACTCACAGACACTGGCCAACGGCGCGGCCCAACTGGCTGCAGGCAACGCCCAGCTGAACACCAAGGTCCAGGACATCGCGGCCCAGCTTGACGCGGCCGATCTGGGCCTCCGCGCCCGTGTGATCGAATCCAACAGCCGCCTGGTCGCCTCTGAGGTCATCACGCAGGCACAGGCTGACAGGATCCTTGCCGACTTTGACGCCACCGCTGCCTCCAGCCCCGTGACTGCCGCCAAAACCAAAATCCAGGCCGACGCCGCGCAGGTCCAGCAACTCGCTGACGGTTCCGAGGCAGTCAGCGTCGGGGCCGCGCAGCTCGCCGCGGCAACGCCCGCGCTCAAAGACGCGGTAGCGCAGGCCTCCAGCGGCGCGGACCAGCTCCATACAGGGTCCGCCACGCTTGCCACCGGACAGCAGGCTGCGGTGGACGGCGCCGCCCAGCTGGCGGACGGGGCAACCAAGCTCGACGCCGGTGCCGGCCAGTTGGAGACCGGCGCCGGAACGGCCGCAAACGGCTCGCGCACCCTGGCGGAGGAAATCGCCAAGGGCGCCGGTCAGGTACCCAACCCGGACGATTCGCAGAAAAGCAGCCTCTCCGAAGTGATCGCCGATCCCGTCGCAGTGAGCAACGTTTCGCAGGCGAAGGCCGACTCCTACGGCGCAGGGCTTGCCCCGTTCTTCCTGACCCTGGCGCTGTGGATCGGAGTCTTTATGCTGATCCAGGCCATGCGGCCCATGACGCAGCGGGCTCTGGCATCAAACGCACGGGCGTGGAAAATCGCCGTCGGAGGCTGGCTGCCCTTCCTTGCCGTATCAGTGGTCCAGGCCAGCCTGCTGACGCTGGTGGTGAACCTGGGTCTGGGACTCAACCCCGCGCATCCCGTCCTGATGTGGCTCTTTATGCTGGCAGCGGCCATGGCGTTCAGTGCCATCATCCAGGGCATAGTTGCCCTGCTGGGATCCCCCGGCAAACTGGTGGTGCTCATCCTGCTGGTCCTGCAGCTGGTCTCCTCCGGCGGCACTTTCCCGTGGCAGACCACCCCTGAGCCGCTGCACGTGGTGCACGAGGTCCTGCCCATGGGCTATGTGGTGACGGGCATGCGGCACCTGATCTACGGGGCCGATCTGTCCATGATCGTGCCCACAGTCCTGGGACTTCTGGGCTACACAATATTGGGCGCCGGACTGTCCACGCTGGCGGTCAGGAAACACAGGTTCTGGACCCTCAAAACGCTTAAACCCGAGATCGCCATATGAMTVLRLARSELKRMTGGLLPKLTILALVMVPLLYGAVYLYANWDPYGNLDRIDAALVVEDTGALTSDGTELQAGAKVADSLVEGNVFNWKSVASADEADLGVSSGKYAFALKIPEDFSTNLVSPGSFDSASQAMLDVTTNDANNYLLSTIVDKLTTAVHNTVAKDVGEETANQLLTGFGTIHAQMLKAADGAGQLADGVATLRDGTVTLHQGSTALNGGAGELYAGQLKLRDGANQLTDGAGQLSSGLSVLKDKTATLPSDSQTLANGAAQLAAGNAQLNTKVQDIAAQLDAADLGLRARVIESNSRLVASEVITQAQADRILADFDATAASSPVTAAKTKIQADAAQVQQLADGSEAVSVGAAQLAAATPALKDAVAQASSGADQLHTGSATLATGQQAAVDGAAQLADGATKLDAGAGQLETGAGTAANGSRTLAEEIAKGAGQVPNPDDSQKSSLSEVIADPVAVSNVSQAKADSYGAGLAPFFLTLALWIGVFMLIQAMRPMTQRALASNARAWKIAVGGWLPFLAVSVVQASLLTLVVNLGLGLNPAHPVLMWLFMLAAAMAFSAIIQGIVALLGSPGKLVVLILLVLQLVSSGGTFPWQTTPEPLHVVHEVLPMGYVVTGMRHLIYGADLSMIVPTVLGLLGYTILGAGLSTLAVRKHRFWTLKTLKPEIAINANANANANA
D1-29_00841669hypothetical proteinGTGAAAGGACGGCGGAACGATCTGCTTCCGCCCACCTCACTGCAGGCGAAACGGGGTGAATTGCTCCTGGTTGCCGGGGACCGGCAGGACCAGCGGACAGCCTTGGCCCTGACACTCAGTGGTCGCATGAAACCGAGCGGCGGACGCATCGCCTGGGACGGCCACAGGCCCATCAAACAGCTCCGGCTCGCCAGCGCCTTGGTGGACTCACCCGGTGTGAACGAACCCGAGCAGCACCTCAGCGTCAGGGACCTGGTCACGGAGGACCTGGCGCTGATTCCCCGCCGCTACCGCGGGGCACTCCTCAGCAAGCCCTGGCTGAAGGTAAACAGCTTCGAGGATATCGCGGATCTGTGGACCGAGCAGCTGCCGCCCGGCCGCCGGATGGAACTCCTTACCGCCCTGGCCCTGGCCAACCCGCACACCGACCTCCTGGTGGTGGACTCCCCGGACCGGCACAGTGCTGATCCTGCGGACTGGCTCCCGCGCCTTGAGCAGTTGGCTGACGACGACGGCCGCCCACTCGCCGTCGTAGCCACCGTCACTGCCCTGCCGCCGTTGTGGCGGGGACCTGCGGCGGTCATCGGCAATTCAATCCATCGCCCCCAGGGCACACCAGCCCTGGCAAAAGTTAATGAACTCCAACTCGAAACCGAGGACGCAAAGTGAMKGRRNDLLPPTSLQAKRGELLLVAGDRQDQRTALALTLSGRMKPSGGRIAWDGHRPIKQLRLASALVDSPGVNEPEQHLSVRDLVTEDLALIPRRYRGALLSKPWLKVNSFEDIADLWTEQLPPGRRMELLTALALANPHTDLLVVDSPDRHSADPADWLPRLEQLADDDGRPLAVVATVTALPPLWRGPAAVIGNSIHRPQGTPALAKVNELQLETEDAKNANANANANA
D1-29_008421446lpdCOG1249Dihydrolipoyl dehydrogenaseATGACGCCTGAATCCCTGAAGAGGGAATGTGATGTCGTGGTGATCGGCGCGGGGGCAGCCGGCGAAACCGTCGCCCGGCGGGTGGCCCTGGGCGGACTGAGATCTGTCTTGGTGGAGGCACAACTGGCAGGGGGCGAATCCGCCTACTGGGCATGCCTGCCGTCCAAAGCCCTGCTCCGCTCCGGCACCGCGCTGCATGGTGCACAGACGGTTCCCGGGGCGGAGGAGGCAGTGACCCGTACACTCAACGCGGAGGCAGTACTTAGGCGCCGGAACCACCTGACCTCCAACTGGCAGGACCACACCCACGCAAAGTGGATAACCGACGCCGGGATCGAGCTGATCCGCGGCCAGGCAAGGCTAACGGGTCCTCGCACGGTGGAGGCAGCCGGCCTGGACGGTAACTCCTACCAGCTGACGGCACGCCACGCCGTCGTCCTGGCAACGGGCTCGACCCCGAACGTTCCATGGATCGACGGCCTGGACGGGCTCAACGTCTGGGGCACACGCGAAGCCACGTCCACAAAGGAGATTCCAGAGCGGCTGGCTGTACTTGGTGGCGGGATGTCCGGCACGGAACTCTCCCAGGCGTTCGCCAGGCTGGGCTCCACCGTGACCCTCGTGGCCCGGAGCGTGCTGCTGGGAAATTTTCCGGAGGAGGCCGCAAAACTCGTGACGGCGGGCCTGCGCGCAGATGGCGTCGAAATCCACCTCGGCACCACTGCCAAAAACGTCCGGGAAAATAAGGACGGAAGCTACGCCTTGGCTCTCAGCGATGGAGCGAGCATCACCGCGGACCGGGTCCTGCTGGCGATGGGCAGGCGCCCCGCCGTCGAAGGACTCGGCCTGGAAACTCTGGGACTTGGGGCGGCGGAGGGCCTGATGAGCCTCACCACGGACGCCTCCGGTGTGGTTCAGGGAACCAAGGAACCTGACGCGTGGCTATACGCCGTCGGTGATGCCGCCGGCGCCACCATGTACACCCATCAAGGCAAGTACGCGGCACGGGTGACCAGTAATGCCATTCTGGCCAAAGCCAAGGGCGCCGTCCCGGGCACGGGGACCCGGGACCAGGCCCAGACGTTGAACTTCAATGCAGTACCCAGGGTCCTCTTCACCGATCCCGAGGTGGCCACAGTGGGCCAGAGCCTCGAGCAGGCCGCCACCGACGGCCACAACGCCTCCACCGTGGAACTGCCCATCCGGGTGGCCGGATCTTCCCTTCATTCGGAGCACTATGAAGGCTGGGCGCAGCTGGTGGTGGATGAGGACCGGAACGTGCTCGTGGGGGCCACCTTCGCGGGGCCGGACGTCGCCGAGCTGCTGCACGCCGCCACCATCGCCGTGGCGGGCGAGGTACCGCTGGACCGGCTCTGGCACGCCGTGCCGGCCTATCCCACTGTCAGCGAAGTCTGGCTTCAGCTCCTCGAGAAGTACGGCCTCTGAMTPESLKRECDVVVIGAGAAGETVARRVALGGLRSVLVEAQLAGGESAYWACLPSKALLRSGTALHGAQTVPGAEEAVTRTLNAEAVLRRRNHLTSNWQDHTHAKWITDAGIELIRGQARLTGPRTVEAAGLDGNSYQLTARHAVVLATGSTPNVPWIDGLDGLNVWGTREATSTKEIPERLAVLGGGMSGTELSQAFARLGSTVTLVARSVLLGNFPEEAAKLVTAGLRADGVEIHLGTTAKNVRENKDGSYALALSDGASITADRVLLAMGRRPAVEGLGLETLGLGAAEGLMSLTTDASGVVQGTKEPDAWLYAVGDAAGATMYTHQGKYAARVTSNAILAKAKGAVPGTGTRDQAQTLNFNAVPRVLFTDPEVATVGQSLEQAATDGHNASTVELPIRVAGSSLHSEHYEGWAQLVVDEDRNVLVGATFAGPDVAELLHAATIAVAGEVPLDRLWHAVPAYPTVSEVWLQLLEKYGLNANANANANA
D1-29_008441851pckGCOG1274Phosphoenolpyruvate carboxykinase [GTP]ATGACCCCGAGGAAGGGAACCGCAATGGGCGATCTGGCGCAGAAGCCGCTGCTTGAGAAAGCACCCACCACACATGCTGCTTTGCTGGCATGGGTCGAAGAGGTTGCTGAGCTTACGCAGCCGGACCGTATCCACTGGGTTGATGGATCCGAAGAGGAAAATACCCGCCTCACCGATGAGCTCGTTGAAGCGGGAACCCTGACCCGTTTGAACCAGGATCTCTTCCCCAATTCTTTTGCCGCGTTCTCCGATCCCGCAGACGTGGCACGCGTCGAAGAGCAGACCTTCATTTGCTCCGAAAACGAACGCGACGCCGGCTTCACCAACAACTGGATGGCCCCGGCCACCATGAAGGAAAAGCTGCGCTCGCTGTTCGCAGGTTCCATGCGCGGCCGCACCATGTACGTCATTCCTTTTGTCATGGGCCATCTTGATGCCGAGGATCCCAAGTTCGGCGTGGAGATTACGGACAGCGCCTATGTTGTTGCCTCCATGCGGATCATGGCCCGCATCGGCACCGATGTGCTCAACCGCATTACCGAAACGGATGCCTTCTTTGTGCCGGCGCTCCACTCCCTGGGTGCACCGCTCGAAGCCGGGCAGGCTGACGTGCCGTGGCCTTGCAACCCGGACAAGTGGATTGTGCACTTCCCCGAGGAGCGCTCCATCTGGTCCTTCGGCTCAGGCTACGGCGGCAACGCCCTGCTGGGGAAGAAGTGCTACGCCCTGCGGATCGCCTCCGTCATGGCCCGCGATGAGGGCTGGCTGGCTGAGCACATGCTCATCCTGAAGCTCACGTCCCCCGAGCAGAAGACCTACTACGTCTCCGCTGCCTTCCCCTCCGCCTGCGGCAAGACCAACCTGGCCCTGCTGGATCCCACCATCCAGGGCTGGAAGGTGGAGACACTCGGCGACGACATCACCTGGATGCGCTTCGGCAAGGAAGGCGAACTCCGGGCCGTCAACCCCGAAGCCGGCCTCTTCGGCGTGGCACCGGGCACCGGCTGGGGCACCAACCCCAACGCCATGCGCGCCATCGCCAAGGGCAACAGCATCTTCACCAACGTTGCACTGACCGACGACGGCGGCGTCTGGTGGGAGGGCATGACCGAGGAAGTGCCTGCGCACCTCACCGACTGGCAGGGTAACTCCTGGACCGCGGATTCGGACAAGCCGGCCGCACACCCGAACTCCCGCTTCTGCACCCCGATCGACCAGATCGACATGCTGGCCGAGGAATACAACAACCCGGACGGCGTTGAGCTCTCGGCCATCCTGTTCGGCGGCCGCCGGAAGACCACCATCCCGCTGGTTACCGAAGCGCGCAGCTGGTCCAACGGCATTTTCATGGGCTCCACGCTCTCCTCTGAGACCACTGCTGCGGCAGCGGGCGCGGTTGGTGTTGTCCGCCGCGACCCCATGGCGATGCTCCCCTTCATCGGCTACGACGCAGGGGATTACCTGAACCACTGGGTCAACCTGTCCGCCAAGGCCAACCCTGAGCGCCTGCCCAAGATCTTCCTGGTCAACTGGTTCCGCCGGAACTCAGAGGGCGGCTTCGCCTGGCCTGGCTTCGGCGACAACGCACGCGTCCTCAAGTGGGCCATCGAGCGGCTCGAGGGCAAGGCCGACGCCGTGGAGACCCCCATCGGGTTCGTCCCCACCGGCGACTCCATTGACCTCGAGGGCCTGGACATGACTCCCGCGCAGGTTGAGGAAGCTGTCCGCGTTGACCCAACGGAATGGGCAACGGAACTGGCGTCCATCGAGGAATGGTTCGCCAACTTCGGTGACTCGCTTCCCGAAGCGCTGCAGACCGAGCTCGCCGGCCTGAAGTCCCGCTTGGGCTAGMTPRKGTAMGDLAQKPLLEKAPTTHAALLAWVEEVAELTQPDRIHWVDGSEEENTRLTDELVEAGTLTRLNQDLFPNSFAAFSDPADVARVEEQTFICSENERDAGFTNNWMAPATMKEKLRSLFAGSMRGRTMYVIPFVMGHLDAEDPKFGVEITDSAYVVASMRIMARIGTDVLNRITETDAFFVPALHSLGAPLEAGQADVPWPCNPDKWIVHFPEERSIWSFGSGYGGNALLGKKCYALRIASVMARDEGWLAEHMLILKLTSPEQKTYYVSAAFPSACGKTNLALLDPTIQGWKVETLGDDITWMRFGKEGELRAVNPEAGLFGVAPGTGWGTNPNAMRAIAKGNSIFTNVALTDDGGVWWEGMTEEVPAHLTDWQGNSWTADSDKPAAHPNSRFCTPIDQIDMLAEEYNNPDGVELSAILFGGRRKTTIPLVTEARSWSNGIFMGSTLSSETTAAAAGAVGVVRRDPMAMLPFIGYDAGDYLNHWVNLSAKANPERLPKIFLVNWFRRNSEGGFAWPGFGDNARVLKWAIERLEGKADAVETPIGFVPTGDSIDLEGLDMTPAQVEEAVRVDPTEWATELASIEEWFANFGDSLPEALQTELAGLKSRLGPGPT0019595_946DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019595-pckA-K01596NANA
D1-29_00845450nsrRCOG1959HTH-type transcriptional repressor NsrRATGAGAATTAACGCCTTCGCAGATGTGAGCCTCCGGGCGCTGATGGTACTGGCGGCCGCCCCTGAGGGCAGCCTCCTCACAACCCAAAACATCGCCAACGCTGTGGCCACGCCTTACAACCACGTCAGCAAGGCAATGGCCAAGCTCCGCGGCCTGGGACTGATCGAGGTGGAGCGGGGCAGGACAGGCGGCGCCAGGCTCAGCCCTGCAGGACGGCTGGCAACCGTAGGCCAGATCCTGCGGGCCCTCAATACGCGGACAGACGCCGCGGACTGCATAGCTCCATCCGGAGACTGCCCGCTGATCCATGAATGCAACCTGAGGAGGGCCCTGGCCCGGGCCGGCGAGGCGTTTTACCGCGAACTTGATGACGTGGTGGTCTCGACGCTCCCCAATTCCTCTCAGATGGCTCCTGTATTCGAGATGATCGGGCTGCGCCCCGGGCTGTAGMRINAFADVSLRALMVLAAAPEGSLLTTQNIANAVATPYNHVSKAMAKLRGLGLIEVERGRTGGARLSPAGRLATVGQILRALNTRTDAADCIAPSGDCPLIHECNLRRALARAGEAFYRELDDVVVSTLPNSSQMAPVFEMIGLRPGLPGPT0013005_842DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITRIC_OXIDE_REDUCTION,PGPT0013005-nsrR|yjeB-K13771NANA
D1-29_00846489hypothetical proteinGTGGCCGACCATACCGGCGGCAGCGCCGCCCCACGTTCCTCCTGGCGGGACTCCGTTCCAGAGGCGACTGCCTCCGACCTGGAGAATCTGCTGGGCACCGGGGTAGGTGCCGCCCAGGAGCAGCTCCAGCGCAACGGTGGTTTTCTGCCGTTTGCCCTGGTGGTGGAGAACGACGGCGAGGTCCGTCTGGTGGCCGTCTCGCCGGCCGACGCCGCGGAGGGCTCCGGCGCCGACTTCGATGCTGACTCGATGATCGCCGACATTACGGAGCTGCTCCGCCAAAACCGCGCGGATTTCCGGGCCACGGCAGTGGTCTGCGACATCCTCCTGGTCGAAGAGGAATCGGACGCCATCCACGTGGCCGCGGAACACCGCGACGGGTCCGTCTTTGCGGCCGTCCTCCCATACGCCGCCAACCCAGCAACCCGCGAGTGGGAATTCGGCCAGCTGTCCGCTGACACCAACGAGCCCACCGTCTGGGTGGACTAGMADHTGGSAAPRSSWRDSVPEATASDLENLLGTGVGAAQEQLQRNGGFLPFALVVENDGEVRLVAVSPADAAEGSGADFDADSMIADITELLRQNRADFRATAVVCDILLVEEESDAIHVAAEHRDGSVFAAVLPYAANPATREWEFGQLSADTNEPTVWVDNANANANANA
D1-29_008471530algCCOG1109Phosphomannomutase/phosphoglucomutaseATGTGGAAAGCCGGGCCCCGGTGGAGCAGACCAAAGGCCAGACTCTGGCGCGATCAAGGACACCACTATCCCTCAACAGGCGGCACCGCGCTTCAACGTAAGATAAGACCCGTGACTAGCGAACAGACAAAGACTTTTGACCTCTCGGCTGCCTTTAAGGCGTACGACGTCCGGGGCATCGTGGGCGATTCCATCACGGCAGAAATCGTCGAAGCAGTTGGCGCCGCGTTCGTAGACGTCCTTCAGCTTGAGGGCCAGACCGTCCTGGTGGGCGGGGACATGCGCCCGTCATCCCCTGAGTTCAGCAAGGCATTCGCCGACGGCGCCGCAACCCGCGGCGCAAACGTCCAGCTCCTGGACCTGATCTCCACCGATGAGCTCTACTTTGCCTGCGGGTCCCTCAATGCGGCCGGGGCAACGTTCACCGCAAGTCACAACCCGGCTGAGTACAACGGCATCAAGATGTCCAAACCCGGCGCCCAGCCCATCTCGTCCGAATCCGGGCTCAAGGAGATCCAGGCCCTCGCCGAGCAGTACCTCAACACCGGCTCCATTCCTGCCGCTCCCACCCGGGGACTGATCGGTGTCCACGACGTCCTGAAGGACTACGCAGAATACCTCCGCCAGTTGGTGGACCTCTCCGGCTCCCGCCCCCTGAAGGTGGTGGTTGACGCCGGCAACGGCATGGCCGGCCTCACCACGCCCGCAGTCCTTGGCGACGCCCTGCTGCCCAAGCTGCCGTTCGAGATCGTCCCGCTGTACTTCGAGTTGGACGGGTCCTTCCCCAACCACCCGGCCAACCCGCTGGAACCGGAGAACCTCCGCGACCTGCAGGCCGCTGTCATTGAACACGGCGCTGACATCGGCCTGGCGTTCGACGGCGATGCAGACCGCTGCTTTGTCATCGACGAAAAGGGCGAGCCGGTATCGCCGTCGGCCATTACCGGCATGGTCGCCCGCCGTGAAATCGCCCGCGCCCAGGCGCAGGGCGAGGCGAATCCCACCATCATCCACAATCTCCTCACCTCCCGTGCAGTGCCGGAACTGGTGGAGCACGACGGCGGCCGAGCCGTCCGCACACGGGTTGGCCACTCCTTCATCAAGGCAGTCATGGCGGAGGAAGGGGCAGTCTTCGGCGGCGAGCACTCGGCGCACTTCTACTTCCGGGATTTCTGGAACGCCGACACGGGAATGCTGGCGGCCATGCACGTCCTCGCCGCCCTCGGCGAGCAGGACGGCCCGCTGTCGGAGCTCGGCCGCGAGTATGAGCCCTACGTCTCGTCCGGGGAAATCAACTCGGAAATCGAGGACAAGGCCGCGGCAGTTGAGCGCGTGCGGGCAGATTTTTCCAGCGAAGACATCACCATCGACACCATGGACGGCAGCACCTTCACTGCCAACGACGGCAGCTACTGGTTCAACCTGCGTCCTTCCAACACGGAGCCGTTCCTGCGCCTGAACGCCGAAGCAACTGACCGGGCAACCATGGAACGCGTGCGGGATCGCGTTCTGTCACTTGTCCGGGGCTAGMWKAGPRWSRPKARLWRDQGHHYPSTGGTALQRKIRPVTSEQTKTFDLSAAFKAYDVRGIVGDSITAEIVEAVGAAFVDVLQLEGQTVLVGGDMRPSSPEFSKAFADGAATRGANVQLLDLISTDELYFACGSLNAAGATFTASHNPAEYNGIKMSKPGAQPISSESGLKEIQALAEQYLNTGSIPAAPTRGLIGVHDVLKDYAEYLRQLVDLSGSRPLKVVVDAGNGMAGLTTPAVLGDALLPKLPFEIVPLYFELDGSFPNHPANPLEPENLRDLQAAVIEHGADIGLAFDGDADRCFVIDEKGEPVSPSAITGMVARREIARAQAQGEANPTIIHNLLTSRAVPELVEHDGGRAVRTRVGHSFIKAVMAEEGAVFGGEHSAHFYFRDFWNADTGMLAAMHVLAALGEQDGPLSELGREYEPYVSSGEINSEIEDKAAAVERVRADFSSEDITIDTMDGSTFTANDGSYWFNLRPSNTEPFLRLNAEATDRATMERVRDRVLSLVRGPGPT0017865_1483DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
D1-29_008482199rhlE_1ATP-dependent RNA helicase RhlEATGGTCGATAACCAGAACGCCGCCCTTCTTTCCGCCGTACCTGCTCCGCTTGCCCCTGCTTCCTCAGCTTCTCCAACCCGGCTCCAGGCCCTTGAGGTCCTGCGTGAACTCGTGGGCCACCCGTCGGCCGAATTCCATGACGGACAGTTTGAGGCGATTGAAGCACTGGTCGACGGCGGGCGGCGGGCATTGGTGGTCCAGCGCACCGGCTGGGGCAAGTCGGCCGTCTACTTTGTGGCGTCCCTGCTCCTCAGGCGCCGGGGTGCTGGCCCAACGCTGATTGTGTCGCCGCTGCTCGCACTGATGCGGGACCAGGTGGCCGCGGCGGCCCGGGCGGGGGTACGGGCAGTTGCCATCAACTCGGCGAACCAGCTGGAGTGGGACACCGTCCGGGAACAGCTCGCCGCCGATGAAGTGGACGTCCTCCTGGTGTCGCCGGAAAGGCTCACCAACCCCTCGTTCCGCGAGAACCAGTTGCCGGAGCTGATCCGGCGCACAGGCCTGCTGGTCATCGACGAAGCACACTGTATCTCCGACTGGGGCCATGATTTCCGGCCGGACTACCGCCGGATTGCAGACCTGATCACGCAGCTTCCGGAGACAGTCCCGGTGCTGGCAACCACTGCCACGGCGAACTCACGGGTCGTCCACGATATCGAGGACCAGCTGGGTGCGGGCGTCCTGACTATCCGCGGCGCCCTGGGCCGGGATTCGTTGAGGCTGGGCGTCCTCGCGCTTCCCAATTCGCGGGAGCGCCTTGCCTGGCTCCTGACCCACCTCGCTGACCTTCCCGGCAGCGGCATCATCTACACGCTGACGGTTTCGGCGGCGGAAGACACCGCCCGGCTGCTTGCGGAAGCGGGACACAAGGTTCTCTCATACACCGGCAGGACTGATCCTGCAGACCGTGAGCGGGCGGAACAGCTGCTCAAGGACAATCAGGTCAAGGCGCTCGTGGCCACCTCGGCCCTGGGGATGGGCTTTGACAAGCCTGACCTGGGCTTTGTGGTCCATCTGGGTGCGCCGTCTTCCCCGGTGGCCTACTACCAGCAGGTTGGCCGCGCAGGCCGTGGCGCGGCCAACGCGGATGTTCTGCTGCTGCCGGGTTCCGAGGACCGCGATATCTGGCAGTACTTCGCTACTGCTTCGATGCCTTCTGAGGAGAAGGCCACTGCTGTCCTGAACGCCCTCGCCGAGGCCGGGGCGGCGGTTTCCACCGTGGCGCTGGAGGCCCGCGTTGACCTTCGGCGCACGCCGCTGGAACTGCTGCTCAAGGTCCTGGCCGTCGATGGCGCCGTGGAACGCGTGGGCGGGGGATGGCGGTCAACTGGCCGGCCCTGGTTCTACGATGCCGAGCGTTACCGCCGGATCGCCGAGGCCCGGGTGGACGAGCAGGATTCGATGGTGATCTACCAGGACACTGCAGGGTGCCGGATGGAGTTCATCACGTCGGTCCTGGACGATGAGACAGCTCATCCCTGCGGCCGGTGCGACAACTGCGCGGGCCGCTGGTTTCAGGCTGAGATAGCCGCAGATGCGACAGCGGCGGCCGGCCAGACCCTCAGCCGTGCGGGCGGGGTCCTGGAGGCGCGGCTGCAGTGGCCCAGCGGCATGGACCGCCTGGGTGTCCTGGTCAAGGGCAAAATCAAGCCCCATGAAAGCCTGGCGGACGGCCGGATCCTTGCCCGGCTGACTGATCTCGGCTGGGGCGGGGCACTCCGCGAAGTGTTCGCGGCGGGAGCACCGGACCGGCCCATTGATCCCGGCATGCTGCAGGCCTGCGTTCAGGTGCTGCGTGAGTGGGGGAGCGGCGACGGGCGCAATCCGGGATGGAGCGGCGCGGGCAGGCCTGCGGCCATCGTCAGCCTTCCCTCACGCAGCAAGCCTGAGCTGGTCAGGACCCTGGCGCAGGGAATTTCGGAGATCGGCCGGATGCCTTACCTCGGTGAACTGCAGCTGGGCCATGGCGGGCCTACAGGAGCCCGCGGCGGCAACAGCGCGTACCGGCTGGCAGGAGTCTGGGACCGGCTGGTGGTGGGCCCGGAACTGGAGTCCGGCCTGGCTTCGCTTCAGGGCCAGAGCGTGATGCTGATCGACGACCTCGTGGACAGCCGCTGGACGGTTACCGTCGCCGGACGCGCTCTGCGGCAGGCGGGGGCGGGGGCTGTCCTTCCGCTGGTGCTTGGCCAGGCCGGCTGAMVDNQNAALLSAVPAPLAPASSASPTRLQALEVLRELVGHPSAEFHDGQFEAIEALVDGGRRALVVQRTGWGKSAVYFVASLLLRRRGAGPTLIVSPLLALMRDQVAAAARAGVRAVAINSANQLEWDTVREQLAADEVDVLLVSPERLTNPSFRENQLPELIRRTGLLVIDEAHCISDWGHDFRPDYRRIADLITQLPETVPVLATTATANSRVVHDIEDQLGAGVLTIRGALGRDSLRLGVLALPNSRERLAWLLTHLADLPGSGIIYTLTVSAAEDTARLLAEAGHKVLSYTGRTDPADRERAEQLLKDNQVKALVATSALGMGFDKPDLGFVVHLGAPSSPVAYYQQVGRAGRGAANADVLLLPGSEDRDIWQYFATASMPSEEKATAVLNALAEAGAAVSTVALEARVDLRRTPLELLLKVLAVDGAVERVGGGWRSTGRPWFYDAERYRRIAEARVDEQDSMVIYQDTAGCRMEFITSVLDDETAHPCGRCDNCAGRWFQAEIAADATAAAGQTLSRAGGVLEARLQWPSGMDRLGVLVKGKIKPHESLADGRILARLTDLGWGGALREVFAAGAPDRPIDPGMLQACVQVLREWGSGDGRNPGWSGAGRPAAIVSLPSRSKPELVRTLAQGISEIGRMPYLGELQLGHGGPTGARGGNSAYRLAGVWDRLVVGPELESGLASLQGQSVMLIDDLVDSRWTVTVAGRALRQAGAGAVLPLVLGQAGNANANANANA
D1-29_008491464hsrAputative transport protein HsrAATGGAGACGACTCAAGGCAGCAGCCAGGCGTGGAATCCGCGTTTGGCGCTGCTGGTGGCTGCCACGTTCTTTATGGAGTTCCTCGACGGCACAGTCCTTACCACCGCCATTCCAAGTATCGCCGGGGACTTCTCGGTGCCGGCCGCCGACGTCAACATCACCATGACGGCCTATCTCATGACGGTTGCCATGGGAATTCCCCTGAGTGGCTGGCTCGCGGAACGGCTCGGTGCCCGGCGGGTGTTTTGCCTGGCTATTGCCATCTTCACCGTTGCATCGCTCCTGTGTGCCCTGAGCCAGGACCTGACCATGCTGACGCTCAGCCGTGTCCTGCAGGGGGCAGGCGGGGCGATGATGGTTCCTGTGGGCACACTGGTGGTGCTGCGCGGCACCCCCAAGTCCGAGCTCCTGCGGGCTACAGCCTTCCTGGTCTGGCCTGGTCTCCTTGCGCCGGTGCTGGCCCCCTTGGTGGGCGGAGCCCTGACGACCTACCTCTCGTGGCATTGGATCTTCCTGATCAACCTGCCGCTGGGGCTCGCGGCCTTTATCGCTGCTTTGAGGCTGGTCCCCGCCGGGGCGAGCGACGGCAGGCGGCGGCTTGACTGGCTGGGCCTGCTGCTGACGACTTCCGGAGTAGGTGCCCTGGTGGTTGGCCTGGAGTTGGCTGCAGGCCATCCTGACGGTCCCTGGGCTGCGCTCAGCGCAGCGGCCGGAGTGGCAGCGCTCGCAGGCGCAGCCCTGTGGATGAGGCGCACCAGCAACCCGCTTTTTGACCTCAACGTGTTTCGGACCCGCACGTTCCGGGCCATGGCCACCGGCGGGTTTGTTTACCGTCTGACCATCGGTTCGGTGCCTTTCCTCCTGCCGCTGATGTTCCAGGCAGGCTTCGGCTGGACGCCGTTGCACGCGGGCATCATGGTGGCGGCGGTTTTTGTGGGCAACATCGGAATCAAACCTGCCACCACACCGCTGATCAGGCGCTTCGGTTTCAAGGTGATGCTGGTCTTTGCTTCTTTTGCTTCAGCAGTGACCTTTGCCTTGTGCGCCCTGCTCACCCCGGACACTCCCGAAGCGCTGGTGTTTGCCCTTCTGGTCTGCAGCGGCGCTTTCCGTTCCATAGGTTTCTCGGCGTATGCCTCCGTGCAATATGCGGACATCGTTCCTGCGCAGCTCACCTCGGCCAACGCAGTCTCGGCTACCTTGGTGCAGCTGGCCACAGGCGCAGGCATCGCCGTTGCCGCCTTGCTGATCCGACTTTTCGAAGGTGCCGGGGCGTTCCCGCAGGACGCTGCCGGGCCATTCCGCGGCGCCTTCCTGACCATGGCCGTTCTGATGCTTTTCAGCACGGCAGACAGCCTTATGCTGCAGCGGCACGCCGGCGCCGAGGTCAGCCGGCCTGGCCAAGCACCAGCGGAAGGACAGCCCCCGCCCCCGCCTGCCGCAGAGCGCGTCCGGCGACGGTAAMETTQGSSQAWNPRLALLVAATFFMEFLDGTVLTTAIPSIAGDFSVPAADVNITMTAYLMTVAMGIPLSGWLAERLGARRVFCLAIAIFTVASLLCALSQDLTMLTLSRVLQGAGGAMMVPVGTLVVLRGTPKSELLRATAFLVWPGLLAPVLAPLVGGALTTYLSWHWIFLINLPLGLAAFIAALRLVPAGASDGRRRLDWLGLLLTTSGVGALVVGLELAAGHPDGPWAALSAAAGVAALAGAALWMRRTSNPLFDLNVFRTRTFRAMATGGFVYRLTIGSVPFLLPLMFQAGFGWTPLHAGIMVAAVFVGNIGIKPATTPLIRRFGFKVMLVFASFASAVTFALCALLTPDTPEALVFALLVCSGAFRSIGFSAYASVQYADIVPAQLTSANAVSATLVQLATGAGIAVAALLIRLFEGAGAFPQDAAGPFRGAFLTMAVLMLFSTADSLMLQRHAGAEVSRPGQAPAEGQPPPPPAAERVRRRNANANANANA
D1-29_008512259hypothetical proteinATGACCACCACCGCAGCTGTTCCACCGCCCGCACCGGGTGCCCCTGTTCCTTCCGCACCTTCCGGCACAGCCCCTGAGCCCACCGACGAGAATGTCTGGCTTGAGGAAATTTACGGTGAGCAGCAGCTGGACTGGGTCCGGGAGCAGAACGCCCGCACGGAGGACCTGCTGGAAGACGCCGACTATGCCGCCCTGGAGGGCAGCATCCTGGAGGTGCTGGACTCCACCGACAGGATAGCCATGGTGGGCAAGCGCGGCGACTGGTACTACAACTTTTGGAAGGACCAGCAGAACCCCAAGGGCCTGTGGCGCCGGACCACTTGGGAAAGCTACCAGACGGACACCCCCGAGTGGGATGTCCTGTTGGATGTGGATGCGCTGGCCGCCGCCGAGGGTGAGGAGTGGGTCTTCCACGGAGGCACTTTCCTGCGCCCGGCCACCGGGGAGCAGCACCGGCTGGCGCTCGTGGCTCTCTCCCCCGACGGCGGCGACGCAAACCGCTACCGCGAGTTCGACGTCGAGACGCGCACCTTTGTTGACCCGGCCGACGGCGGGTTTGACCTGCCGACGGCGAAGGGCAACGTCTCGTGGCTGGATGCCGATACCCTGCTGGTCGCCTCCACAGCCGGGGACCTGCCGCGGACGGCGTCCTCCTACCCCCGGACCGCGGTGACGCTGCGGCGGGGCGAAGCCCTCGGTACCGCAGCGCTGCTCTTTGACGTGGCCGAGAACCACATGATGGCGGCGGTGGCACACGACTCCACCCCGGGCTTCGAGCGCACGTTCGCCGTGGACTACATTGACTTCTTCAACCGCAGCACGTTCTTCCGGCAGGACGGATCCTGGGTTGAAATCGACGCCCCGACCGACGTGAACCTGAGCGCCCACCGGGAGTGGCTGCTGTTCAGGCCCCAAGGTGACTGGTCCGTTGGCGTAACTACCTACCCGGCAGGTTCGCTGCTGGCCGCCAGGTTTGAGGACTACCTCGCCGGAGCCCGGGAGCTGTCCGTGCTCTTCACCCCCGACGCGCACACGTCCCTGCAGTCCTGGAGCTGGACCCGGGACTTCCTGCTGCTGAACCTCCTGCGGGACGTGTCGTCCGAAATCAGGGTGCTTGACCCGTCCCAGCCAGGAACCGCCGGCGAGGGCGCCTGGGCCTCCTCGCTGTTGGACGCCTGCCCTCCGCTGCACGACGTGAACGCCTACGCGGTGGATGCTGAGGACGAAAGCCACGCCGACGGCGGTGCCGGCGACGATTTCTGGCTGGTAGCCACCGGGTTCACCACCCCCAGCACACTGATGCGCGGCACGCTTGAGCGGCGGGCCGTACCCGCAGGCGCTGCCGGTAGCGCATCGGTGGTGAGCAGCCATGCAGTGGTGAAGGCGTCGCCGTCGTTCTTTGACGACGAAAAGTACGAGGTTCAACAGCACTTCGCCGTCTCGGCCGACGGCACCAGGGTGCCGTACTTCCAGGTGGCGTCCCGGGACCTGGTCCTGGACGGCCAGAACCCCACACAGCTTTCCGGCTACGGTGGCTTCGAGATCTCCCGCACCCCCGCCTACAGCGGCTCGGTGGGCAGGGCCTGGCTGGAACGGCGCACAGCGAACGCGCCCGGGCCCGATGGTGCGCAGTCCTACTCCCGTGGCGGCGTCTACGTGGTGGCAAATATCCGCGGCGGCGGCGAATATGGACCAGGCTGGCATCGCGCTGCCTTGAAAGAAAACCGGCACCGCGCCTACGAGGACTTTGCGGCAGTGGCGCGGCACCTCATCTCCCGCGGGGTGACCTCGCGCGAACGGCTTGGCTGCGTGGGCGGGTCCAACGGCGGCTTGCTGGTGGGAAACATGCTCACCAGCTACCCGGAACTGTTCGGCGCCGTGTCCTGCGGCGTCCCCCTGCTCGATATGCGCCGCTACACCAAGCTCTCGGCGGGGCACTCGTGGATCGCCGAATACGGTGACCCGGACGTGCCCGAGCAGTGGGAATTCATCAGGACCTTCTCGCCGTACCATCTGCTCAAGGACGGCGTGGAATATCCGGAAACGTTCATCTGGACGGCAACCTCGGACGACAGGGTGGGCCCGGTCCAGGCCAGGAAAATGGCCGCCCGAATGCAGGCCATGGGTATTCCGAATGTCTGGTACCACGAGGCGCTGGAGGGCGGCCACGCGGGGGCCTCGGACAACCGGCAGGCGGCCGCGCTGCAGGCCCGCAGCCAGCACTTCCTGTGGCGGACGCTTGCCGGCGGTTCGGCATAAMTTTAAVPPPAPGAPVPSAPSGTAPEPTDENVWLEEIYGEQQLDWVREQNARTEDLLEDADYAALEGSILEVLDSTDRIAMVGKRGDWYYNFWKDQQNPKGLWRRTTWESYQTDTPEWDVLLDVDALAAAEGEEWVFHGGTFLRPATGEQHRLALVALSPDGGDANRYREFDVETRTFVDPADGGFDLPTAKGNVSWLDADTLLVASTAGDLPRTASSYPRTAVTLRRGEALGTAALLFDVAENHMMAAVAHDSTPGFERTFAVDYIDFFNRSTFFRQDGSWVEIDAPTDVNLSAHREWLLFRPQGDWSVGVTTYPAGSLLAARFEDYLAGARELSVLFTPDAHTSLQSWSWTRDFLLLNLLRDVSSEIRVLDPSQPGTAGEGAWASSLLDACPPLHDVNAYAVDAEDESHADGGAGDDFWLVATGFTTPSTLMRGTLERRAVPAGAAGSASVVSSHAVVKASPSFFDDEKYEVQQHFAVSADGTRVPYFQVASRDLVLDGQNPTQLSGYGGFEISRTPAYSGSVGRAWLERRTANAPGPDGAQSYSRGGVYVVANIRGGGEYGPGWHRAALKENRHRAYEDFAAVARHLISRGVTSRERLGCVGGSNGGLLVGNMLTSYPELFGAVSCGVPLLDMRRYTKLSAGHSWIAEYGDPDVPEQWEFIRTFSPYHLLKDGVEYPETFIWTATSDDRVGPVQARKMAARMQAMGIPNVWYHEALEGGHAGASDNRQAAALQARSQHFLWRTLAGGSAPGPT0020970_218DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020970-PREP-K01322NANA
D1-29_008521929hypothetical proteinGTGGGTAAATCGCAGAGCATCCGGACAGCCATCATCGGCGCCGGCCCCCGGGGTACCAGCGTGCTGGAACGCCTGCTCGCCCACCGTGCCGCCCACGGCGGAGCCGCGGCCCTCCACATCGAAATGATCGATCCCTATCCGGCAGGCCCCGGGCACGTCTGGCAGCCCGGCCAGTCACGCCTCTACCTGATGAACACGCAGTCTTTCTATCCCACCGTCATTCCCGAGGACCCCCAGCTGGCCCCCGCCATCAGCGGCACCACCTTTGACCAGTGGCGAAACCGCCAGCAGCACCGTCCGCTGCCCTCCCTCACAGCCGAGGAAAGGGCCGAACTGGCGGCGCTCACATCCCGGGACTTTCCGAGCCGCGCCCTGTATGGGCGCTACCTCCGCAGCACCCTGGAGGAACTGACAGGCCAGTTGCCTGACGGCGTCACCGTCACATTCCACGAAACGTCAGCTTCAACTGTGCGCCGGTCAGGCAAGGAAACGTTCGACGTCGGCCTCGCCAACGGCGCTTCCCTCACCGCGGACTCCGTGGTCCTGGCCCTGGGCCACATCCCCTCCCGGCTTAACGCCGAACAGCGGGAGCTGCTGTCCTCAGCTGGCCAGCTTGGCCTGCGGTACCTGCCGCCCGCCGTACCTGCGGACGTGGACTGGCAGGAGGTCCCGGCAGGCGAGCCCGTCCTGGTCCGCGGGATGGGCCTGAACTTTTTTGACGCCATGGTGCAGCTGACGGAGGCCAGGGGTGGAAAGTTCATCGACTCCGGACCGGTGCTGACCTATGAGCCGTCCGGCCAGGAGCCCCTGATCATCGCCGCGTCCCGCCGGGGCACACCCTACCGGACCAAAGCCGTCCTTCAGGGGTACTATCCGGAGTCCGTCAAGCTCCGGTACCTGACCGATGCGGCCCTGGCACGCTTTGCTGCGGCCGGGATCCGGCCAGGGTTTGATCACGACCTCTGGCCCCTGCTGCACCGGGACACCCTCTGGGCCTACTATTCCACCCTGGTGCGCTCGCAGCCCGGCGCGGTCGCGGATCCAGCCGGTTTCCTGGCCGACCTCGAGGAAGCGCTCCGGCCGCATTCCCACAGCGCGGCCAACTGGGAGGAAGCTGTGGACAGCGTACTGGCCGTCCATATCGGGCCACGGCACCGGCTGGACCTGCTGGGCCTTGCGTCCCCCTTGGCGGGCCAGCGGTTCGCATCCCGGGCCGAGCTTGATGCCGCCGTCGTGGAGTACCTGCTTGATGACGTCCGCCGCTCCGCGCTCGGTGAGCAGGACCCCGTCAAAATGGCGATCGGAGCCCTGCATCACGGCCGCGCCGTCCTAAAGACGGCAGTTGCCGACGGCGGGATCACCGACGAGTCGTGGGTGGGCGGGCTGAGGGGCTGGTTTGAGTCGTTTGTGGAAGGGCTCGCCAGCGGACCTCCCGCGTTGCGGGCCGAACAACTGGCGGCGCTGGCCCGCGCGGGCGTGGTCAGCTTTGTGGGTCCCGACCCCAAGTTCGGCATCGACCGGCGAAACGGGATGTTCACTGCTGCGTCACCTTGGGTGACGGGTCCGCCGGCGGCGGCGAAAACCATGATTGAAGCCCTGGCGCCGGCGAACCGGGTCTCAGCCAGCGCGTCCCCGCTGCTCGAGCAGCTCCTGGCGGACGGGCTGGTCCGGCCACGGCTGATGATGACAGCTGAGGGTGCTCCCGTGGAAGCCACGGGACTGGACGTCAGCCCGCATCCCTACCGCCCGCTGGCGGCAAACGGTTCCGTCACCGCCGGGCTCTACGTCCTGGGGCTGCAGCTCTCGGCTTCCCAGTGGGGCACCGCCATCGCCGCGGAGGCCTTCCAGCCGGGCGGCCCCGCTTACCCGAGCGGTCAGCGTACCCTCCGGGACGCCGACGAAATCGCCCGCGCCATCGTGGGTGCCTGAMGKSQSIRTAIIGAGPRGTSVLERLLAHRAAHGGAAALHIEMIDPYPAGPGHVWQPGQSRLYLMNTQSFYPTVIPEDPQLAPAISGTTFDQWRNRQQHRPLPSLTAEERAELAALTSRDFPSRALYGRYLRSTLEELTGQLPDGVTVTFHETSASTVRRSGKETFDVGLANGASLTADSVVLALGHIPSRLNAEQRELLSSAGQLGLRYLPPAVPADVDWQEVPAGEPVLVRGMGLNFFDAMVQLTEARGGKFIDSGPVLTYEPSGQEPLIIAASRRGTPYRTKAVLQGYYPESVKLRYLTDAALARFAAAGIRPGFDHDLWPLLHRDTLWAYYSTLVRSQPGAVADPAGFLADLEEALRPHSHSAANWEEAVDSVLAVHIGPRHRLDLLGLASPLAGQRFASRAELDAAVVEYLLDDVRRSALGEQDPVKMAIGALHHGRAVLKTAVADGGITDESWVGGLRGWFESFVEGLASGPPALRAEQLAALARAGVVSFVGPDPKFGIDRRNGMFTAASPWVTGPPAAAKTMIEALAPANRVSASASPLLEQLLADGLVRPRLMMTAEGAPVEATGLDVSPHPYRPLAANGSVTAGLYVLGLQLSASQWGTAIAAEAFQPGGPAYPSGQRTLRDADEIARAIVGANANANANANA
D1-29_008531077hypothetical proteinATGACCACAGGCGCAACGACGGCCAGGACGGCTGCCAGGATGGCAGGGGCGGCAGCAGCGATCGCCGTCGCGCTGGTGGTGTCCGGTTGTGGCGGTCCGGCGACAGCCCAGCAAGGCGCGGGTGCTGCCGCGGGAACGGAAGTGAAGACCGTCCGCTATCAGGGTTCGCCCAACACCGTCTCACTGCTGGAGGTGGCCGAGGACCTCGGATACCTGAAGGACGTGAAGCTGGAGTGGGTCAGCAATACCACCAGCGGCCCGCAAAGCATCCAATCGGTGGCAACTGACCAGACTGACATTGGGGGAGCCTTCACCGGCGCCGTGATCAAGCTCATTGAGGCAGGGGCGCCCGTGCAGGCTGTCATCAACTACTACGGGGAGGACAAGGACACCTTCACCGGGTACTACGTGGAAGAGGGAAGTCCCATCAAAACGGCCCGGGACCTGATCGGCAAGAAGGTCGCAGTGAACACCCTGGGCGCCCACCACGAAGCAGTCATCACCACGCAGCTGAAGAACAGCGGCCTGACACCGGAAGAAATCAAGCAGGTCCAGCTGGTGGTGGTCCCGCCGAACGAAACCGAAGTAGCCCTCCGCAAGAAGCAGGTGGACGTTGGGACCCTGGGCGGTGTGCTCCAGGACCGGGCCCTTGCCGAGGGCGGCGTCCGTGCTCTCTTCACTGACGTCGGCGTGATCGGCGGACCTTTCGACGCCGGCCAGTATGTCCTGCGGAAGGACTTCATCGCCAAGAATCCTGAAACCAGCCGCACCCTGGTGACGGGAGTAGCGAAAGCCATCGAGTGGGAGCGGACCACTCCGCGGGAGCAGGTGATCGCCAAGTTCGAGGAAATCATCACCAAGCGGGGCCGCAACGAGAGCACCGAAACACTGAAGTACTGGAAGAGCGTGGGCGTGGCTTCCACCGGCGGCCGCATTCAGGACAGCGACTTCACCCGCTGGAAGGACTACCTCCGTTCCGCCGGGATCGTCAACGGCCCACTGGACACCAACAAGCTCTACACCAACGAGTTCAACGGGCTGGAAACAACGCCGGCCGCGCCAACCTCGAAAGGATAGMTTGATTARTAARMAGAAAAIAVALVVSGCGGPATAQQGAGAAAGTEVKTVRYQGSPNTVSLLEVAEDLGYLKDVKLEWVSNTTSGPQSIQSVATDQTDIGGAFTGAVIKLIEAGAPVQAVINYYGEDKDTFTGYYVEEGSPIKTARDLIGKKVAVNTLGAHHEAVITTQLKNSGLTPEEIKQVQLVVVPPNETEVALRKKQVDVGTLGGVLQDRALAEGGVRALFTDVGVIGGPFDAGQYVLRKDFIAKNPETSRTLVTGVAKAIEWERTTPREQVIAKFEEIITKRGRNESTETLKYWKSVGVASTGGRIQDSDFTRWKDYLRSAGIVNGPLDTNKLYTNEFNGLETTPAAPTSKGNANANANANA
D1-29_00854879btuD_3Vitamin B12 import ATP-binding protein BtuDATGACACCCAAAATAAGCCTGCAGAATGTGACCAAGGAGTTTGCAGTCCGCCAGGGCAAAGGCGAAGGCAGGAGCAGCGGGCAGCGTGTCCTGACAGCGCTGGATGACTTGAGTTTGGACGTGGCCGACGGCGAATTCCTCACCCTCGTTGGCCCCAGCGGTTCGGGAAAAACAACCCTCCTGGACCTGCTGGCCGGCCTGTCCCGCCCTACCTCAGGCAAAGTACTGGTGGACGGAAACGAAGTGTCAGGGCCAGGCCAGGACAGGGCGGTGGTGTTCCAGCAGTACGCGCTGTTCCCTTGGCGCACAGCGTCAGCCAACGTCTCCATTGGCCTGGAGAACAAGGGCCTGTCCAGGAAACAGCGGGCCGGGATCGCCAGCGAATTCCTTGACCTTGTAGGCCTGGCCGGCTTTGAGGACCGGTATCCGCATGAACTCTCCGGCGGTATGAAGCAGCGCGTGGCAATTGCCAGAAGCCTCGCCTATGAGCCGGACGTTCTGCTGATGGATGAGCCGTTTGCAGCCTTGGATGCCCAGACCCGTGAACAACTCCAGGACGAGCTCCTGCGGATCTGGAAAGCAACGGGAAAGACGATCGTGTTCATCACCCACGGCATCGACGAGGCCGTCTACCTCGGCCAGCGCGTGGCGGTGCTCAGCGCCCGGCCCGGCAGGCTGAAGGAAATTGTGGACATCAACATTCCAGACCGCGACGGCGACGCGGACATCCGCTCCCATTCCGCGTTTGTGGAGCACCGGCACCAGGTCTGGTCCCTCCTGCATGACGAGGTCCGGCTGGCCCAGGATTCCGGTCACCGGAAAATCCTGCCGGACGGGACCGCCCCCGATGAACTGCCCCTCGAGAGGAGCGTGGCCTGAMTPKISLQNVTKEFAVRQGKGEGRSSGQRVLTALDDLSLDVADGEFLTLVGPSGSGKTTLLDLLAGLSRPTSGKVLVDGNEVSGPGQDRAVVFQQYALFPWRTASANVSIGLENKGLSRKQRAGIASEFLDLVGLAGFEDRYPHELSGGMKQRVAIARSLAYEPDVLLMDEPFAALDAQTREQLQDELLRIWKATGKTIVFITHGIDEAVYLGQRVAVLSARPGRLKEIVDINIPDRDGDADIRSHSAFVEHRHQVWSLLHDEVRLAQDSGHRKILPDGTAPDELPLERSVAPGPT0001140_870DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_00855924ssuC_1COG0600Putative aliphatic sulfonates transport permease protein SsuCATGAGTTCCGTCATTACCAAACCAGAAGTGCTGGCAGCAGCTGCTGCAGTGACGGCAGCCGGGGAACGTCCCGCCGTCGGACATTCCACCGCAAGCAGAACGCGTACGGCCGGCCGGGACAGAATCCAGGAGGGGCTTTCCGGACTGGCTGGCCGGGCCGCCCGGGCGGGATGGAAGTCCGTCGCAGTCCTGCTGTTCCTGGCGCTGTGGGAAATCGGGCCCCTGTACCTGGCCGGTCCCTCCACCCGGGTGTTCCTGCCTCCGCTGCACGAGGTGCTCGCGGCAGGAGCCAAACTGGTGCAGTCCGGCCAGTTGCAGAGCCACCTGCAGGCCAGCCTCACCCGCTCTGTGTCGGGATTTAGCATTGCCGTCGTGTCGGCCGTAGTGCTGGGGCTCCTCATCGCCTGGTACGGCTGGTTGAATTCATTCCTGAACCCGCTGCTGGAGCTCTTCCGGAACACCGCCACCCTGGCCCTGCTTCCGGTGTTCACGCTGCTGCTGGGCATCGGCGAGGAATCCAAGATCACCATCGTCGCCTACGCTGCGTTCTTCCCGGTGCTGCTGAACACCATCGCGGGCGTCCGGACCGTTGACCCGCTGCTGATCAGGGCCGCCAAGTCCCTGGGACTGAACAGCTTCCGGCTCTTCCAGAAGGTCATCCTGCCCTCGGCCGTCCCCACCATCTTCACCGGCATCAGGATGGCCGGCACCTCATCCATCCTGGTGCTGATCGCCGCCGAAATGGTAGGCGCCAAGGCCGGGCTGGGTTACCTGATCGTCAATTCGCAAATGAGCTTCCTCATCCCCGACATGTACGCAGGAATCCTCACCGTCTCGGTCCTGGGACTCCTGGTGAACGTGCTGCTGGTGGCACTGGAACGCCACTTCTCCCGCTGGCGCACCGCCGTCGGCTCCACATCCTGAMSSVITKPEVLAAAAAVTAAGERPAVGHSTASRTRTAGRDRIQEGLSGLAGRAARAGWKSVAVLLFLALWEIGPLYLAGPSTRVFLPPLHEVLAAGAKLVQSGQLQSHLQASLTRSVSGFSIAVVSAVVLGLLIAWYGWLNSFLNPLLELFRNTATLALLPVFTLLLGIGEESKITIVAYAAFFPVLLNTIAGVRTVDPLLIRAAKSLGLNSFRLFQKVILPSAVPTIFTGIRMAGTSSILVLIAAEMVGAKAGLGYLIVNSQMSFLIPDMYAGILTVSVLGLLVNVLLVALERHFSRWRTAVGSTSPGPT0001145_1530DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_00856948COG2175Alpha-ketoglutarate-dependent sulfate ester dioxygenaseATGACCGTCATCACCGAAACCAAGCTTCAGTTCACCAAACTGGGTTCCCGGATTGGCGCCGAGATCCGCGGGCTGGATCTCAGCGCGGAGCTCAGCGAAGGCACCATCGGACAGATCCGCGAAGCCCTCAATACCCATAAGGCACTGGTCTTTCGCGAGGCAAACATCCACACCGATGAGGAACAGGTGCGGTTCGCCAGCCGCTTCGGCCCGCTCACCAAGGCGCACCCGACGGTGGCGTCCGTGGACGGCAAGCCCGCCGTACTGCCCGTAGACAGCGAAAACGGCAGCGCCAACAACTGGCACACGGACGTCACCTTTGTGGTGAACCCGCCGCAGGCCTCCACGTTGCGGAGCATCACGTTGCCGGCCTATGGCGGGGAAACCCTTATCGCCTCATCCGCCGGCGCCTACCAGGACCTGCCGGAGGAACTCCGGAACTTCGCTGACACGCTCTGGGCTGTCCATACGAACGACTACGACTATTCGGTGCCCAAGAACCTGGAGCACGCCAACGCAGCGGAACGGCGCAAGGAATTCACGCGTATCCATTTCGAATCCGCCCACCCGGTGGTCCGCGTCCACCCACTGACGGGGGAGCGCGCTCTGTTCATCGGCGGTTTTGCCCAGCGTCTGAGGATCGTGGGGCTCTCCAACACCGAGTCCAGGGACATCCTGCGCCTGCTGCAGGCCTACGTCACCCGCCCAGAAAACGTGGTCCGGGTCAACTGGGAGCCGGACCAGGTGGTGCTCTTTGACAACCGCATCACCCAGCATTACGCACCGGCCAACTACGACGGCCAGGCCCGCCAGCTGAACCGTGTCACCATCGCCGGTGACATTCCCAGGGGCGTGGACGGCCGGAGCAGCACCTCCATCCAGGGCGACTCCTCCGCCTACTCGGAGACGGTAATTGTTCCTGAGGTCCGTCATAAAGTTCCCGCATAAMTVITETKLQFTKLGSRIGAEIRGLDLSAELSEGTIGQIREALNTHKALVFREANIHTDEEQVRFASRFGPLTKAHPTVASVDGKPAVLPVDSENGSANNWHTDVTFVVNPPQASTLRSITLPAYGGETLIASSAGAYQDLPEELRNFADTLWAVHTNDYDYSVPKNLEHANAAERRKEFTRIHFESAHPVVRVHPLTGERALFIGGFAQRLRIVGLSNTESRDILRLLQAYVTRPENVVRVNWEPDQVVLFDNRITQHYAPANYDGQARQLNRVTIAGDIPRGVDGRSSTSIQGDSSAYSETVIVPEVRHKVPAPGPT0002940_656DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002940-tauD-K03119NANA
D1-29_00857729COG3324Putative glyoxylase CFP32ATGTCGTTCCTGTCTAGGTGGGAGTTCGAAGCGGGAGACCAGGAAAAGTATGGCGGCTATATCACCGCCCGCAAGAACGGCAAGTCAGTGGCCGGGATCATGCAGAAGGAAGCGGACCAGGGGGAGGTACCGGACGCCTGGTCCACCTATCTGCGTTCCGACGACGCCGCCGCCACAGCGTCTGCAATCACTGCCAACGGTGGTCAGATCTACATGGAGCCCATGGATGTCCCGGAGCAGGGGTTCATGGCCTTTTTCGGTGATGTCACCGGTGCCGCTGTGGGCGTCTGGCAGCCCCGGGAGATGCAGGGCTACGAACTGGTGGCAGAAACGGGGACGGCCGCCTGGCACGAACTGCATGCCAGGGACTACGATGCCGCGGTGAAGTTCTACCAGGACGTCTTCGGCTGGGACACCGCCGTCATGAGTGATGCGCCGGACTTCCGCTACACCACACTGGGGGCCGGTGACTCAGCCAAGGCCGGCATCATGGACGCCTCCGGCTACCTCCCCGCCGATGTTCCGTCCTCCTGGCAGATTTACTTCGCCGTGGACGACGCCGATGCTTCGATCGGGAAGGCAGTGGCCATGGGCGCCACTGTCATTGATGGGCCCGACGATTCGCCTTTCGGGCGCCTCGCCACGCTGGCAGATCCCACAGGTGCTGTGTTCAAGATTATTGCGGACAGTGCCCGGGGAACCGCGGACGCGTCTGGCTCGGGGGCCTGAMSFLSRWEFEAGDQEKYGGYITARKNGKSVAGIMQKEADQGEVPDAWSTYLRSDDAAATASAITANGGQIYMEPMDVPEQGFMAFFGDVTGAAVGVWQPREMQGYELVAETGTAAWHELHARDYDAAVKFYQDVFGWDTAVMSDAPDFRYTTLGAGDSAKAGIMDASGYLPADVPSSWQIYFAVDDADASIGKAVAMGATVIDGPDDSPFGRLATLADPTGAVFKIIADSARGTADASGSGANANANANANA
D1-29_008599842-haloacrylate reductaseATGAAAGCCGTCTACATATCAGAACCTGGCGGTCCGGAAGTGCTGGAGGTCCGCGACGTGGACGCCCCGGTTCCCGGGCACGGCGAGGTCCTCATCGACGTCGTTGCTGCGGGGCTGAACCGGGCGGATGTGCAGCAGCGCAGGGGATTCTATCCGCCGCCGCCGGGCGCCTCGGAAGTGCCGGGGCTGGAAGTCTCCGGTAGGATCGCTGGCTTCGGTCCAGGTGTCACCAAGCCGTTCTCCCTGGGTGACAAGGTGGTGGCGCTGCTTGCCGGCGGCGGGTATGCGCAGCAGGTTGCCGTTCCGGCCGAGCAGGTCCTGAGGATTCCTGACGGTGTTGACGTGGTGACTGCAGCTTCCCTGCCGGAGGTGGCCGCCACCGTATATTCGAACCTGATCATGACGGCCCAGCTGCAGGCGGGCGAGACCGTACTGATCCATGGCGCCACCGGCGGCATCGGCACCATGGCCATCCAGCTTGCCAAGGCGCTTGGGGCAACGGTGGCAACCACTGCCGGGACGGACGAGAAAGTCGGCACCGCCAAGGCTTTCCTGGGTGCCGACATTGCCATCAATTACAGGGAAGAAGACTTTCCGGACAGCCTGCGGCGGCAGAATGGCGGCAAGGGGGCTGACGTGATCCTGGATGTTGTGGGGGCCAAATACCTCCAGCAGAACGTGGACGCCCTGGCTGACTATGGGCGGCTGATCGTCATCGGCCTGCAGGGCGGCGCCAAAGGCGAACTGGACCTCGGGCAGTTGCTGAAGAAGCGGGCGGCGGTGGTGGCAACGGCGCTGCGGCCGCGCCCTGTCGCGGAAAAGGGAGCCATCATGAATGCCGTCCGGGAGTCGGTCTGGCCGCTCATTTCGGACGGGCGGATCCGGCCGCTGGTGGCGAAGACCTTCCCCCTGGAGCAGGTCCGAGCAGCCCACGAGTACTTTGACAGCGGGGACCACGTGGGCAAAATACTGTTGCTTCTGTAGMKAVYISEPGGPEVLEVRDVDAPVPGHGEVLIDVVAAGLNRADVQQRRGFYPPPPGASEVPGLEVSGRIAGFGPGVTKPFSLGDKVVALLAGGGYAQQVAVPAEQVLRIPDGVDVVTAASLPEVAATVYSNLIMTAQLQAGETVLIHGATGGIGTMAIQLAKALGATVATTAGTDEKVGTAKAFLGADIAINYREEDFPDSLRRQNGGKGADVILDVVGAKYLQQNVDALADYGRLIVIGLQGGAKGELDLGQLLKKRAAVVATALRPRPVAEKGAIMNAVRESVWPLISDGRIRPLVAKTFPLEQVRAAHEYFDSGDHVGKILLLLPGPT0013255_4957DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-29_00860609hypothetical proteinATGTCCATCCGTCACAGCCTCCTCGCCCTGCTGCAGGACCAGCCGCGTTATGGTTACCAGCTCAGGGTTGAGTTCGAGAACCGCACCGGCGCCACGTGGCCCCTGAACATCGGCCAGGTCTACACCACGCTGGACCGGCTGGAGCGCGACGGCCTGGTAAACAACGACGGCGGCGACGGCGAAGGCCACGTGGTGTACAGCATCACCGACGCGGGCAAGGCCGAGGTGCAGGGCTGGTTTGCCGCCCCCGTGGAGCGCAACAACCCCCCGCGGAACGAACTCGCCATCAAGCTGGCGCTCGCCGTCACGTTACCGGGCGTTGACGTGCAGGCCATTATCCAGGCCCAGAGGGTGGCATCCATCCGGGCGCTGCAGGACTACACCAAGGCCCGCCGGGACACCGCAGCAAACCAGCGTTCCGCCGATACTGCCTGGCTGCTGGTGCTGGACTCGCTGATCTTCCAGACTGAAGCGGAGGTCCGCTGGCTGGACCTGTGTGAGGCACGGATGGTGCAGCAGGCACAGTCCGCGCAGGGAACCTCACGGAAACTGTCCAACGGGGTACCTGCGGACGAGGCCGCCCCGCTCATCGCGACCAACCGCCGGTGAMSIRHSLLALLQDQPRYGYQLRVEFENRTGATWPLNIGQVYTTLDRLERDGLVNNDGGDGEGHVVYSITDAGKAEVQGWFAAPVERNNPPRNELAIKLALAVTLPGVDVQAIIQAQRVASIRALQDYTKARRDTAANQRSADTAWLLVLDSLIFQTEAEVRWLDLCEARMVQQAQSAQGTSRKLSNGVPADEAAPLIATNRRNANANANANA
D1-29_00861738yknYCOG1136putative ABC transporter ATP-binding protein YknYGTGAGCGTCCAGGGACCACAACAGGTCCTGGAACTGTCCAAAGTCAGCAGGACCTTCGGTGACGGAGCGACGGCGGTCGCCGCACTCCGCGACGTAGACCTCACCATCAACGCCGGCGAGTTTGTCGCGGTGATGGGGCCATCCGGCTCGGGTAAGTCCTCCCTGCTGGCGCTGGCAGGAGGATTGGACCAGCCGACGTCGGGCGCTGTCTTTGTGGAATCAACGCCACTGGCGCGGCTGGGCCTCAATGAACTCGCGCGGCTGCGCCGCCGCGCCGTCGGCTACGTTTTCCAGGACTTCAACCTGGTCCCCACGCTGACAGCGGCAGAGAACGTGGCGCTGCCCTTGGAGTTGGACGGAACGGCGGCCAGGAAGGCGCACCGGCAGGCGCTGGACGCCCTCCGCCAGGTGGGGATTACGGACCTGGCCGATCGCTTCATGGACGAGATGTCCGGCGGCCAGCAGCAGCGGGTGGCCATTGCGCGCGCCATCGTGGGCGAGCGCCGCCTGATCCTTGCCGACGAACCCACGGGGGCGCTGGACTCCACCACCGGCCAGGGTGTTATGGAGGTCCTGCGTCAAAGGGCGGATGCCGGTGCGGCTGTCATGCTGGTGACCCACGAGGCCAGGCATGCAGCCTGGGCGGACCGCGTGGTCTTCCTGAGGGACGGCCGGATCGTGGACCAGGCGGCCGCCATGCACGATCCCACCATGCTCCTGACCCAGGCCGGGCTCTAAMSVQGPQQVLELSKVSRTFGDGATAVAALRDVDLTINAGEFVAVMGPSGSGKSSLLALAGGLDQPTSGAVFVESTPLARLGLNELARLRRRAVGYVFQDFNLVPTLTAAENVALPLELDGTAARKAHRQALDALRQVGITDLADRFMDEMSGGQQQRVAIARAIVGERRLILADEPTGALDSTTGQGVMEVLRQRADAGAAVMLVTHEARHAAWADRVVFLRDGRIVDQAAAMHDPTMLLTQAGLPGPT0013345_5081DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-29_008622877hypothetical proteinGTGGCGCTTGACCTCTCACCGGTGCCTGGCGGGCGCCGGCACTCCTTCCGCGTCGCCCTGCGGATGGCTCGGCGCGATATCAGCCGCCACAAGGGCCGTTCGCTGCTGATTATCCTGCTGATCATGCTGCCCGTGGCGGGCATGACAGGTGCCGCCACGCTGGTCCAGAGCATGCAGGAAACTCCCGCCGAACGGGTCCAGTACCAGCTCGGGAAGACGCAGGCGCGGTTCCAATCGCTGAACTCCGTGAACAGCGCGATGGTCCAGGACCCCCTGATGGACCACATCGTGGCCTCCAGTCCCCGGGACATCGATCCAGACTTCGTCGCCGCGGATCCCCAGGACATCCTGCCCGCTGGATACAACGTCCTGACGGAATCGCAGCTGGACCTCACCACCAGGGTGGGAGACGCTGACGTGTCCCTGATGGGCAGGGCCGTGGATGCCCTGAACCCTGCCTTTGAAGGGAAATTCCAGCTACTGAACGGCAGGGCACCGCAAACCGCCACGGAGGCTCTCGTTTCACCGGGTCTGTTGGAGCGCTTCGGTATGGAGCTGGGGGAGAACCTGACGACGTCGGCGGGTACTTTTACCGCCGTCGGCACCTTGCGTGACTTTGGGATCTCGGACCGCAACGAAATTCTCTTCCTCAAGCCGGGCCAGGGGGAGGAAGCAATCGCGCCTCTGCCTTCCGGGCGCGGTGGCCAGACGAAGTACTACCTCGTGGGCCCGGAGCCTGTGACCTGGGCCCAGGTCAGGGAAGCGAACACCGTTGGAGTGTCAGTACTCTCTCGGTCCGTAGCCTTCAATTTGCCGCCTCTGAATCAGCGGAGTGTGGACGGCACGCCGCCGCAATATGAGCAGGCCACACCTTATTCCGCCTACCTCACGGGCGGCTTCATCGGAGCCCTTGCCCTGCTGGAGGTCGGATTGCTGGCCGGCGCGGCATTCTCCGTCGGAGCCAAACGGCAGATTCGCGAGCTGGCGCTTTTGGCTGCTTCGGGCGCTGAAGCCCCCACCGTCCAGGCGGTGGTCACGGCGGCAGGCGTGTGGCTGGGAACCATTGCCGTCAGTGCCGGGGCGGCGCTGGGCCTCGCGGGTGCTGCGGGTGCCGTGTTCTGGGTACGTTACCTCGGCTCCCAGCGGCTGGCAGGCTTCCACCCGGATATCCTTCTGACCGCCATCGCCATGATCATGGGCCTGGGCGCCTGTATTCTTGCTGCCCTTGCGCCGGCCCGCCAGGTGTCAAGGCAGGCGGTGCTGGGGGCACTGAAGTCCGGGCGGGCGCCGGTACCAACAGGAAAATGGCCGCAGCGTGCCGGTGCGGGGATGCTGCTGCTGTCCGCTGGCCTGCTGTTTTCCGGCAACGCCCTGGCCGATGTCCCGGCTGACCCCGACCTGCTCAACGACAGAATGCCCCTGATTACAGGCCTGGTGATCGCCGGTGCCGTGCTGGCGGTGACCGGGCTGGTGCTTGTCACCGGATTCACGGTGGCGCTGATGACCAGCAGGACCGGCAGGCTGCCGCTTCCGTTGCGGATGGCGGCCCGGGACTCCGCCCGCAACCGCAGCCGTACTGTGCCCGCCGTTGCCGCAGTGCTGGCGGCGGCCACGCTGGCCAGTGCCGCCATGGTTCTCGCAGCCAGCCAGGAGGCCCGGGAGCGGGAAACCCACCAGTGGAATGCTTTGCCAAACCAGGTGCTGTTGCCCTTGAATGAGTCTGGTCCGCCCCTGGCAGATGGCTCCCTCCCGGCACCGGTGGCCGTGGATCCAGCCAAGTTCACCAGCGCTTTGAAGAACGCCGTTAACACGGTGTCCTGGACGCAGGTCCTGGAGTCGCCAAGGGTCACAAACTGTCAAAGGGGCCCTGAGACGGATCTCACCGTTCCGCCCGTTACTCCCACTTCCAACTGCCTCCTCTACTCGCTGAAAGTGCCGGCAGGGAACGAGTGCGCCCTGACCGAGGGCCAAAGGGTCAAGGATCCGCGGGATTGGCGCTGCCAGGGCTCAATGCGCCCCATCGGCTTCACTTCCAGCGGCTCACTGGTAGTAGGCGGGGAGGCCGAGATCCGCGCCATGCTGGGAACGGCGCCTTCCGCAGAGGCACTGGAGGTGCTCAGCAACGGCGGCATGGTGGTGACCAATCCTGTCTTTGTGCAGGACGGACGTGCAGTCGTGGAGGGCGCCGATATGCGCAGTGACAAGGTGTCCACCACCCAGATGCACGCCGGCTATGAGGTGGTCACGTCAACGGAAGTGCCCGCTGTCGTGATGGTTCCCGAGGTTCCTGTTCCATACTTCGGTGTCATCTCACCTGCGGCCGCCAAATCCGCGGGCATCCAGCTCACGGAATCGTCACTGCTGGTCCAGTTCAGTGCCTATCCCAGCCCGGCGGAGCAGGACCTGTTGGCGTCAACCGCTGCCGGTTTCTTCGGAAGTACCCCCATTGGGATTTACGTTGAGCCGGGCGTGGACCGCGATTCTTCCTGGGTCATCTGGTCCATCGTGGGGATCAGTGCGCTGATCACGCTCAGTGCTGCCGGCATTACCACGGGGCTGTCGCTTGCCGACTCGCGCAGTGACCATATGACGCTTGCAGGAGTCGGCGCGGCGCCCCGGCTGCGGAAAGCACTGGCCGGAGCCCAGGCCCTGATGACGGGTGGTCTGGGCTCCTTCCTGGGCTGCCTGGCGGGAGTAGCCCCGGCGGTCATTATTGTCCATGCTTCGGGACGGGCCACAGGACTGGGTGCGGACGCTGTTGTCCCGTGGCTTCAGCTGCTGGCACTGGTGGTCATTGTGCCTCTCACCGGCTCGGCCTTGGCCTGGATTTTCACCCGGGCACGCCTGCCGATGTCGCGCCGCAGCCTGGGAACCTGAMALDLSPVPGGRRHSFRVALRMARRDISRHKGRSLLIILLIMLPVAGMTGAATLVQSMQETPAERVQYQLGKTQARFQSLNSVNSAMVQDPLMDHIVASSPRDIDPDFVAADPQDILPAGYNVLTESQLDLTTRVGDADVSLMGRAVDALNPAFEGKFQLLNGRAPQTATEALVSPGLLERFGMELGENLTTSAGTFTAVGTLRDFGISDRNEILFLKPGQGEEAIAPLPSGRGGQTKYYLVGPEPVTWAQVREANTVGVSVLSRSVAFNLPPLNQRSVDGTPPQYEQATPYSAYLTGGFIGALALLEVGLLAGAAFSVGAKRQIRELALLAASGAEAPTVQAVVTAAGVWLGTIAVSAGAALGLAGAAGAVFWVRYLGSQRLAGFHPDILLTAIAMIMGLGACILAALAPARQVSRQAVLGALKSGRAPVPTGKWPQRAGAGMLLLSAGLLFSGNALADVPADPDLLNDRMPLITGLVIAGAVLAVTGLVLVTGFTVALMTSRTGRLPLPLRMAARDSARNRSRTVPAVAAVLAAATLASAAMVLAASQEARERETHQWNALPNQVLLPLNESGPPLADGSLPAPVAVDPAKFTSALKNAVNTVSWTQVLESPRVTNCQRGPETDLTVPPVTPTSNCLLYSLKVPAGNECALTEGQRVKDPRDWRCQGSMRPIGFTSSGSLVVGGEAEIRAMLGTAPSAEALEVLSNGGMVVTNPVFVQDGRAVVEGADMRSDKVSTTQMHAGYEVVTSTEVPAVVMVPEVPVPYFGVISPAAAKSAGIQLTESSLLVQFSAYPSPAEQDLLASTAAGFFGSTPIGIYVEPGVDRDSSWVIWSIVGISALITLSAAGITTGLSLADSRSDHMTLAGVGAAPRLRKALAGAQALMTGGLGSFLGCLAGVAPAVIIVHASGRATGLGADAVVPWLQLLALVVIVPLTGSALAWIFTRARLPMSRRSLGTPGPT0013350_706DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-29_008632301cstACOG1966Peptide transporter CstAATGGCCGGAATGCCTGGTGAAGCTGTAGATTCAACGCGTCGGGGCGGGTCTTTGACCGCCGATCCGGACCTTCCTTCCACCGCCGTGGACGAGGCCGTCCGCGAGGCGGAAGAGAAGAAGTGGACGCCCGCCAAAATCGCACTCTGGTCCGCAATCGCCCTCCTGGGCGGCGTGGCCTGGTTCATGCTGGCCATCATCCGCGGCGAAACAGTCAACGCCATCTGGTTTGTCTTCGCCTCGGTCTGCACCTACCTCATCGGCTACCGGTTCTACTCCAAGGTCATCGAGAAGTTCCTGCTCAAGCCCGATGACCGGCGCGCCACACCGGCGGAGTACAAGGCCGACGGCAAGGACTACGTCCGCACGGACCGCAACGTCCTGTTTGGCCATCACTTCGCAGCCATCGCCGGCGCCGGGCCCCTGGTGGGCCCGGTCATCGCAGCCCAGATGGGCTTCCTCCCGGGCACCATTTGGATCATCATCGGTGTGGTGTTCGCGGGCGCAGTGCAGGACTACCTGGTGATGTTCTTCTCCATGCGCCGAGGCGGCCGTTCCCTGGGCCAGATGGCCCGCGAGGAACTGGGTGTCATCGGCGGCACCGCAGCCCTGGTAGCCACGTTGCTCATCATGGTGATCATCGTCGCGATCCTTGCCCTCGTCGTGGTCAATGCCCTCGGTGAAAGCCCGTGGGGCGTCTTCTCCGTTGGCATGACCATCCCCATCGCCCTGTTCATGGGGGTCTACCTCAGGTTCCTCCGGCCCGGCAAGGTCATGGAGGTTTCCCTCATCGGCTTTGTGCTGCTGATGGCCGCGATCATCGGCGGCGGCGCCGTTGCCGGCACCGAATGGGGAGCGGCGTTCTTCCACTTGGACAAGGTCACCATCGCGTGGGGCCTGATCGTCTACGGCTTCATCGCGGCGATCCTTCCCGTCTGGCTGCTGCTGGCTCCCCGTGATTACCTCTCCACGTTCATGAAGATCGGCGTCATTGTGATGCTGGCACTGGCCATCGTGGTGGTCCGTCCCGAAATCACCGTCCCCGCCTTCAGCGAGTTCGCCGGCCGCGACAATGGGCCGGTTTTCTCCGGGGCACTGTTCCCGTTCCTGTTCGTGACCATCGCCTGCGGTGCGCTGTCCGGTTTCCATGCCCTCATTTCCTCCGGCACCACGCCCAAGCTCATTGAGAAGGAACGCCAGACCCGCTTCATCGGCTACGGCGGCATGCTGATGGAGTCCTTTGTGGCCATCATGGCGCTGGTGGCCGCCATCTCCATTGACCGCGGCCTGTACTTCGCCATGAACTCGCCTGCCGCCCTCACCGGCGGAACCGTGGAGACGGCTGCAGCCTGGGTCAACAGCCTCGGGCTCTCCGGGGTGAACCTCACACCGGATTTCCTGGCACAGACAGCCGCCAACGTGGGCGAAGAAAGCATTGTCTCCCGGACCGGCGGCGCTCCGACACTGGCTGTGGGACTGGCGCACATCATGCAGCAGTTCATCGGTGGCACCGCCATGATGGCTTTCTGGTACCACTTCGCCATCATGTTCGAGGCGCTGTTCATTCTCACAGCGGTCGACGCCGGCACCCGGGTTGCGCGGTTTATGCTTCAGGATTCCATCGGCAACTTTGTCCCCAAGTTCAAGGAAGCCTCCTGGCGGCCCGGGGCATGGCTCTGCACTGCCGTGATGGTGGGCGCCTGGGGTGCTGTACTGCTGATGGGGGTGACAGATCCGCTTGGCGGCATCAATACCCTGTTCCCGCTGTTCGGCATCGCCAACCAGCTGCTGGCCGCCATCGCCCTTGCGGTCTGCATGGCCATTGCGGCCAAACGCGGTGCGTACAAGTACCTCTGGATCGTTGCACTGCCGCTGGCCTTTGCGGCGGTGGTCACCATCACGGCCAGCTTCCACAAGATCTTCTCTCCGGTTCCGGCAGTGGGCTATTTCGCCAACAACGCCGCCTTCTCCAAGGCCCTTGCCGATGGCAAAACCGAGTTCGGCACAGCCAAGACCGTTGCAGCCATGGAGGCCGTGGTGCGCAACACCATGATCCAGGGCTGGCTTTCCGTCATCTTCGTCACGCTGAGCATCATCGTTATCGCCACGGCAGTTTTGGCCACTGTGAAGGCCTACCGCAAGACCGCCGCGGGGACCGCCAACAGCGACCACGAAGATGAGGCGCGTCCCTCCCGGGTCTTCGCGCCGGCGGGACTCATCGCTTCCCCGTCCGAGCGCGAGCTGATGGCCGAATGGAACAAACTGCCGGCTGAGCAGCGGTTCGACAAAGCGGGGCACCACTGAMAGMPGEAVDSTRRGGSLTADPDLPSTAVDEAVREAEEKKWTPAKIALWSAIALLGGVAWFMLAIIRGETVNAIWFVFASVCTYLIGYRFYSKVIEKFLLKPDDRRATPAEYKADGKDYVRTDRNVLFGHHFAAIAGAGPLVGPVIAAQMGFLPGTIWIIIGVVFAGAVQDYLVMFFSMRRGGRSLGQMAREELGVIGGTAALVATLLIMVIIVAILALVVVNALGESPWGVFSVGMTIPIALFMGVYLRFLRPGKVMEVSLIGFVLLMAAIIGGGAVAGTEWGAAFFHLDKVTIAWGLIVYGFIAAILPVWLLLAPRDYLSTFMKIGVIVMLALAIVVVRPEITVPAFSEFAGRDNGPVFSGALFPFLFVTIACGALSGFHALISSGTTPKLIEKERQTRFIGYGGMLMESFVAIMALVAAISIDRGLYFAMNSPAALTGGTVETAAAWVNSLGLSGVNLTPDFLAQTAANVGEESIVSRTGGAPTLAVGLAHIMQQFIGGTAMMAFWYHFAIMFEALFILTAVDAGTRVARFMLQDSIGNFVPKFKEASWRPGAWLCTAVMVGAWGAVLLMGVTDPLGGINTLFPLFGIANQLLAAIALAVCMAIAAKRGAYKYLWIVALPLAFAAVVTITASFHKIFSPVPAVGYFANNAAFSKALADGKTEFGTAKTVAAMEAVVRNTMIQGWLSVIFVTLSIIVIATAVLATVKAYRKTAAGTANSDHEDEARPSRVFAPAGLIASPSERELMAEWNKLPAEQRFDKAGHHPGPT0015060_78DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015060-cstA-K06200NANA
D1-29_00864204hypothetical proteinATGCGTTCGGGGCTGGCTTCGGTCGCTGCGGCATTCCGCGGATGCGCCAGGTACCTCAGCGCTGTCCTGGGTGCGGACGCCTACGCAAAGTACGTCGAGCACCACCGGAGCGCTGGACACGAGGCGGGCCCAATGGGTGAGCGCGAATTCTGGCGCGACAGGACTGACAGGCAGGACAGCAATCCGCAAGGGAGATGCTGCTGAMRSGLASVAAAFRGCARYLSAVLGADAYAKYVEHHRSAGHEAGPMGEREFWRDRTDRQDSNPQGRCCNANANANANA
D1-29_00865624hypothetical proteinATGAGCGATCCCAAAGACACTCAGCAAGACGACGTCCCGGTGGAGGGCAGGACCCTCGACGGGCAGCAGCCAGCCCCTGTTGGGCCTATTCCGGCGGACGGAAACAGATCCAAAAGCAGTCTGCAGGACCTGGTGGACGAACCTGCCAAGGTTATGCGGATTGGCACCATGATCCGCCAGCTGTTGGAAGAGGTTAAGTCCGCTCCGCTGGACGATGCTGCGCGCGGACGCCTGGCCGAGATCCACGAGCGGTCCATCAAGGAGCTCGAGGACGGGCTGGCGCCGGAACTTGTGGAAGAACTGGACCGTATCAGCCTGCCTTTCCCGGACGATGCCACTCCGTCCGATGCTGAGCTCCGCATCGCGCAGGCGCAGCTGGTCGGTTGGCTGGAGGGACTCTTCCACGGCATTCAGACGGCTCTTGCAGCCCAGCACGCCGCCCGCGAGCATGCCGCCGCTCAGCTGCAGCTCCGCCAGCTCCCGCCGGGCACCATGATTGCTCCGGGTGTGGTCATCGGCGAAAACGGCGAGCCGCAGCGGGCGCCCGCGGGCCAGCCGCGCCCGGCGCCGTCGAAGCCGGGCAGGCCGGAGGATCCGGACCACGGTCCCGGCCAGTACCTGTAGMSDPKDTQQDDVPVEGRTLDGQQPAPVGPIPADGNRSKSSLQDLVDEPAKVMRIGTMIRQLLEEVKSAPLDDAARGRLAEIHERSIKELEDGLAPELVEELDRISLPFPDDATPSDAELRIAQAQLVGWLEGLFHGIQTALAAQHAAREHAAAQLQLRQLPPGTMIAPGVVIGENGEPQRAPAGQPRPAPSKPGRPEDPDHGPGQYLNANANANANA
D1-29_00866477hypothetical proteinTTGGGATTCTTTACCGCCGCCCGCCAGGGGCGCAAGGACGACGCCGAACTCGGCAAGGGTCTGTGGCGCCGCGCCCATGACCGCTTCCACCGTGGCCTGGACCGGTATCACCAGGTACTGGAAGGCGTCGAGGACGACCAGCTGTATGGCGAACTTGTTGAGGTGGCCAATGAACTGGCCGGGCTCCTGGACCGGGTCAGGGTTATCTGCGTGGAAGCACAGCGACGCTCTCCCAGCGATGGCCTGGACATCCCCGGCCCCCTGGCCGGAGTACACCGGTCCCTGTCCAAGGCAGGCAACTCCCTGGCCACCACTGCCGAGGCAGCGGCCATGCTGCGGCTGGCCGTAGGGCCTGTACCGGTAGGGGCCGCCTCCGTGCGGCGTCGCGCAGAATCTGTGTTTGAGCAGGTGGCGGACGCCGAAAGACGGCTGACCGAGGATGCCGCAGGCCAACCTGGCGGCAGTATTCCCGGTTAAMGFFTAARQGRKDDAELGKGLWRRAHDRFHRGLDRYHQVLEGVEDDQLYGELVEVANELAGLLDRVRVICVEAQRRSPSDGLDIPGPLAGVHRSLSKAGNSLATTAEAAAMLRLAVGPVPVGAASVRRRAESVFEQVADAERRLTEDAAGQPGGSIPGNANANANANA
D1-29_00867846COG0656putative oxidoreductase/MSMEI_2347ATGACTCTTTCACCCACACTGACTTTCAATGACGGCAACACCATTCCCCAGCTCGGGTACGGCGTGTGGCAGGTCGAGGACGGCGTTGCGGAAAAGGTGGTCCGCCAGGCATTCGAAGCGGGCTTCCGCCACATCGACACCGCCAGGATCTACGGCAACGAGGCAGGCGTTGGCCGTGCCATCGCAGGTTCGGGCCTGACGCCGGACGAAATCTTCATCACCACCAAGCTCTGGAATTCCGATCAGGGCTACGAACCCACGCTGGCGGCCTTCGAGGAATCACTGGACAGGTTGGGCCTGGAAACACTGGACCTGTATCTGATCCACTGGATGCAGCCTCAGCAGGACAAGTACGTTGACACGTGGCGGGCGCTGATAGAGCTCCAAAAGCGTGGACGTGTTAAGTCCATTGGGGTGTCGAACTTCACGGCCGAGGGGATTCAGCGGCTCATCGATGAAAGCGGCGTGGTTCCGGCCATCCACCAGATCGAACTGCACCCGTACTTCAGCCAGCAGGAACTGCGGGACTTCGGCAGGGAGAAAGGCATCCTGACCCAGGCCTGGTCACCCCTCGGCCAGGGTGGAGCTCTTCTGGAGGACCCCGCCGTGGCTGCCGTTGCAGCAAAGCACCAGGCCACACCGGCCCAGGTGGTTATCGCCTGGCACCTGGCCATCGGCAATGTGGTGATCCCCAAGTCAGTCACAGAGTCCAGGATCCAGGAGAACTACGCGGCCCTGGACATCGTGCTGGACGAAGATGACGTCCAGGCGATTAACCGCCTGGACCGCACTGCAGCTGGCGAGGGCCGGATCGGCCCCGATCCCGCCGTTTCGGACTTCGCCTAGMTLSPTLTFNDGNTIPQLGYGVWQVEDGVAEKVVRQAFEAGFRHIDTARIYGNEAGVGRAIAGSGLTPDEIFITTKLWNSDQGYEPTLAAFEESLDRLGLETLDLYLIHWMQPQQDKYVDTWRALIELQKRGRVKSIGVSNFTAEGIQRLIDESGVVPAIHQIELHPYFSQQELRDFGREKGILTQAWSPLGQGGALLEDPAVAAVAAKHQATPAQVVIAWHLAIGNVVIPKSVTESRIQENYAALDIVLDEDDVQAINRLDRTAAGEGRIGPDPAVSDFAPGPT0001320_1065DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
D1-29_00868186hypothetical proteinATGGAAACACAACTCGTACAGGAATTTCACGTCACGTACTTCGACGCCGACTGCGGCCGGATCCGGGCGGAAACCTTTGACACCCTCAAACAGGCGGAGCGATTCGCCGGCCGCAACTGCACAGGCGAAGATTCGTGGGCTGTTGTTGACGCCGTCGCCGTCGAGCAGATCCGGCTCGCCGCTTAGMETQLVQEFHVTYFDADCGRIRAETFDTLKQAERFAGRNCTGEDSWAVVDAVAVEQIRLAANANANANANA
D1-29_00869978hypothetical proteinATGATGGCGTGCATGGATGACGAGGCCTTGGCGGAGATCGCGAACAGGTTGTATGCCTTGCCCGTCGACGAATTCATCGCCGCTCGCACGGCTGCGGCCAAGGATGCCTCGGATTCGGGGAAGGAAGCTCCGGCCGCCGTCCGGGCCCTGCCCAAGCCTTCCGTGGCGGCGTGGGCCGTCAACATGCTGGCCGTGCACCAGCCCGAGGTCCTCGATCAGCTTGCAGAACTTGGCGAGCGGATGCGAGCAGCCCAGTCATCCCTGGATGCGGCTGCCCTCCGGGAGCTGGGAAGGGAGCGACGCAAAATGCTCGCCGCGGCCGTCCAGACCGCCTGCTCGGTGGCTGAACAGCAGGGGCGCAGCATCAGCGCCACCATAGCGTCCGACGTCGAGCGGACCCTGCAGGCCCTGACAGCAGACGAAGGTGCTGCGGCGGCTGTCCGGAGTGGACGGCTGGTGCAGGCACTGTCCGCCGACGGTGTAGACACGGTTGAGCTTGACGGTGTGGTGGCCGTCCCCCGGGCCGTGTCCGTTCAGCGTTCTTCCCGACCACCAGTTGCGCCGGGCAAAGCCCCGGCAACAAAGCCACGAACGACGGCGGAAGCCGCCCCCCGCCGCCAGGCACAGAAGCCAAGGCTGCAGGCGGTCCGGCAGACCCCGCGGCCGGCGTCGCCGTCGGCCCTGGAAAAGGCCAAAGCAGCTCTTGCCGAGGCAAACGCTGCTGCGGATGAGGCTGCGAGGCTGGCACAGGAACGCCAGAACGAGTCCGAGGAGGCCCGGGCGGAGGTTTCCCGGCTGACGGAGGAGACACAGGAGCTCCGCGCGAGACTCAAGGAGTCCGAGGATCAGCTGGAAAAGGCCCGGAAACGGCTGGACACAACCGCCGCCGAAGCGAAGCAGCTGGCCAGGGCGGCAGACAAAGTGCAGCGCTCGGCCGTGCTGGCGCGGGAACGGGTGCTCCGCCTCGCCGGAGACTGAMMACMDDEALAEIANRLYALPVDEFIAARTAAAKDASDSGKEAPAAVRALPKPSVAAWAVNMLAVHQPEVLDQLAELGERMRAAQSSLDAAALRELGRERRKMLAAAVQTACSVAEQQGRSISATIASDVERTLQALTADEGAAAAVRSGRLVQALSADGVDTVELDGVVAVPRAVSVQRSSRPPVAPGKAPATKPRTTAEAAPRRQAQKPRLQAVRQTPRPASPSALEKAKAALAEANAAADEAARLAQERQNESEEARAEVSRLTEETQELRARLKESEDQLEKARKRLDTTAAEAKQLARAADKVQRSAVLARERVLRLAGDNANANANANA
D1-29_008711566caeACarboxylesterase AATGACTGCTCGCCCCCTGCCCGCACGTTCCCGATCCCTGGGGAAGCGAGTGCGGACCGCCGGCGCCCTGGTTTTGGCCTTGGTGCTTTCCTCCTGCAGCCTGATCGGCGGGGGCAACCAGGACAAGGGACCGTCAACCGCCAAGGCGGATCCCTCGATCGTTGCCTCGGCTCCGAATGAGCTGGCTGATTTCTATTCGCAGGAAGTGGTGTGGGAGCCGTGCGAGAACGACTTCCAGTGCGCCAAGGTCACCGTGCCGATGGACTATGACAACCCCGACGGCGACACCATCCAGATCGCGGCCCTGAAGGTTGCAAGCACGGGCAAGAAGGCCGGGAGCCTGCTGGTGAATCCCGGCGGACCCGGCGCCTCCGGCTACGACTACGTCAAGGACGCTGCTGCCACCAGCTTTTCGGAATCCGTGCGGGCCAATTACGATCTGGTGGGCTTCGATCCCCGGGGTGTTGAGCGCTCCGCCCCGGTGAAATGCATGACTGATGCCGAGCGGGATGCTGCACGGGCGAAGATCTACGCCCTGGATACCGATGCCGGCCTGGGGGCAGCCCTCGCGGAGAACAAGGCGATCGCGGCCGAGTGTGCGGAACAGACCGGTTCCTCCATGGCGCACATCGACACAGTGAGCTCTGCCAAGGACATGGACATCCTTCGTGCCGTACTGAACGACAGCAAGCTCAACTACCTGGGCTACTCCTACGGAACCTTCCTGGGATCAACCTATGCCTCGCTGTTCCCGGACAACGTGGGCCGCATGGTCCTGGATGGAGCACTTGACCCCTCCATCAGTTATGAGGACGTGACGCTCGGCCAGGCCCGGGCCTTCGAAAAGGCCATTAGGTCCTACGTTGAAGACTGTATGCAGGAAGACGGCTGTCCTTTCAGCGGGAGCCCTGACAGCGGGGTCCAGCAAATCCGCGATCTCATCGGTTCTGTCCAGCAAACACCACGCACGGCCAAGGATGGGCGCCTGGTCACGGCTAATATTTTTGTCAGCGGACTTATCACCCCGCTGTACAACGACCAGAGCTGGCCTGCCCTGACCCAGGCCCTGGAGGCCGCCATGACGGGTGATTTGAGCCTGATGCTCCGCCTGGCTGACGTTGGCGCCGACCGCTCCCCCAACGGGACCTACGCGTCGAACACCGCGTTCGCTTTCAACGCGATCAACTGCCTGGATTACCCCATGGTGACCGATACTGCAGGCATGCGCGCGGACGAGCAGGAGTTGCGCGAGGAGTCGCCCACGTTTGGTTACTTCTTCGCTTATAGCGGGACCTCGTGTGTTGACTGGCCCTACCGGAGCGTCCGGACCCCCGCGCGGGTGGATTACACAGGCGATTCCCCCATTGTTGTTATCGGCACCAGCGGCGATCCCGCAACGCCAGTGGAATGGGCCGCTTCCCTGCGGAAGCAGCTGGAGAATGCGTCGCTGCTGACGTGGGAGGGCGAAGGCCACACGGCTTACGGCAGGTCCAACAGCTGCATTGGGGATGCCGTTGATGGCTACCTCGTCGAGGGCAAGGTACCCGCGGACAACACGGTCTGCTAAMTARPLPARSRSLGKRVRTAGALVLALVLSSCSLIGGGNQDKGPSTAKADPSIVASAPNELADFYSQEVVWEPCENDFQCAKVTVPMDYDNPDGDTIQIAALKVASTGKKAGSLLVNPGGPGASGYDYVKDAAATSFSESVRANYDLVGFDPRGVERSAPVKCMTDAERDAARAKIYALDTDAGLGAALAENKAIAAECAEQTGSSMAHIDTVSSAKDMDILRAVLNDSKLNYLGYSYGTFLGSTYASLFPDNVGRMVLDGALDPSISYEDVTLGQARAFEKAIRSYVEDCMQEDGCPFSGSPDSGVQQIRDLIGSVQQTPRTAKDGRLVTANIFVSGLITPLYNDQSWPALTQALEAAMTGDLSLMLRLADVGADRSPNGTYASNTAFAFNAINCLDYPMVTDTAGMRADEQELREESPTFGYFFAYSGTSCVDWPYRSVRTPARVDYTGDSPIVVIGTSGDPATPVEWAASLRKQLENASLLTWEGEGHTAYGRSNSCIGDAVDGYLVEGKVPADNTVCNANANANANA
D1-29_008721143hypothetical proteinGTGAGTGTCTGGGACGATCTCCAAGGCCAGCCGGCCGTCGTCGAACAGCTCCGCCAGGCCTCCCTTGGCGAGGGCCTCACCCACGCATGGCTGTTCACCGGCCCCCCGGGTTCGGGACGTTCCAACGCCGCCAAAGCCTTCGCGGCTGCCCTGAACTGCGACCAGGACGATGTCAGCCTCCGCGGCTGCGGTGAGTGCTCCGCCTGCCACACCACCCTTGGTGAGACTCATTCGGACGTCACCTTTGTCCGCACCGAGAAGGTCACCATCACCATTGACGAAGCCCGCGATCTGGTGTCAACAGCCGGAAACAGGCCCTCGTCCGGACGGTGGCGGATCATCGTGGTGGAGGATGCGGATCGGATGGCTGAACGCACCACCAACGTTCTGCTCAAGGCCATCGAGGAGCCCACGCCGCGCACCATCTGGATGCTTTGTGCGCCGTCGCCGGCGGATGTCCTGGTGACCATCAGGTCACGCTGCCGTGCCGTGGCCCTTCGCCTGCCGCCGGCCGCCGACGTCGCCGCCTTGCTGGTCAAACGGGACGGCGTGGACCCAGCCCTTGCCGAACGGGCAGCCCGGGCTGCCCAGAGCCACGTGGGGATCGCCCGACGCCTGGCGCGGGATCCCGAGGCACGGGAGCGCCGGCTCGAAACAGTGCGGTTCCCGCTGGGGCTGCGCGGCGTCACGGCGGCAGTCATGATGGCGGACAAGCTGGTCAAAATCGCCACCGCCGAGGCCAACAGCTCCAACGAAGAGCGCGACGCTGCGGAGAAGGCCGCGCTCCTGGCCACACTGGGTGCACCGGAATCGGGGACACTGCCACCGTCCATGCGGAGCCAGGTCAGGCAACTCGAAGAGGACCAGAAGCGGCGGGCCAAACGCTCCATCACCGATTCCCTGGACAGGACCCTGACAGATCTGCTGTCCTTCTACCGGGATGTGCTGATTATCCAGCTCGGGAATGCTGTGGAGCTGGTAAACGTTGAGCTGAGGGGTGAACTGGAGGAGTTCGCCGGACGCTCCACGCCCGAAACCACCCTCGCCCGCATGGATGCCGTCAACAAGGCCCGCCAACGCATCACCACCACCAACGTCGCACCGCTGTTGACTATTGAGTCCATGGCAGCCAGCCTGATCTAGMSVWDDLQGQPAVVEQLRQASLGEGLTHAWLFTGPPGSGRSNAAKAFAAALNCDQDDVSLRGCGECSACHTTLGETHSDVTFVRTEKVTITIDEARDLVSTAGNRPSSGRWRIIVVEDADRMAERTTNVLLKAIEEPTPRTIWMLCAPSPADVLVTIRSRCRAVALRLPPAADVAALLVKRDGVDPALAERAARAAQSHVGIARRLARDPEARERRLETVRFPLGLRGVTAAVMMADKLVKIATAEANSSNEERDAAEKAALLATLGAPESGTLPPSMRSQVRQLEEDQKRRAKRSITDSLDRTLTDLLSFYRDVLIIQLGNAVELVNVELRGELEEFAGRSTPETTLARMDAVNKARQRITTTNVAPLLTIESMAASLINANANANANA
D1-29_00873657tmk_1COG0125Thymidylate kinaseGTGACTAACCAGACCCCCGGACTTTTCATCGCGTTTGAAGGCGGCGACGGCGCCGGCAAGTCCACGCAGGCAGCCCGGCTGGCCGAGGCGCTGGAATCCCGGGGCCTGAAGGTCTTGCGGACGCGCGAGCCGGGGGGAACACCCGTTGGCGAAAAGCTCCGCTCCCTTGTTTTGGACCATGGAAATGGGCACATCGATGCCCACACAGAGGCCCTCATCTTCGCGGCCTCCCGCGCTGCCCACGCCAGCCAGGTCATCCGGCCTGCCTTGGAGCGCGGTGAAATTGTCCTCACGGACCGTTATATCGACTCTTCGGTGGCCTACCAGGGTGCGGGCCGGGACTTGGGCACCGACGCCGTGCGCTCGATCAACGAATGGGCCACCAGCGGGCTGCAGCCTGACCTGACCGTGCTGCTGGATGTGGATCCTGGTGTTGGACGGCGCCGCAGGACGGCAGGGGACGCCGCGGAAGACCGCCTTGAATCCGAGGCCGACGAATTCCACACGCGCATCCGCAACGCCTTCCTCGAGTTGGCGGCCATCCACCCGGACGCCTACCTTGTCCTGCCCGCACATTTGCCTGTTGCCGACCTCGCAGCACAGATCCTGGCCAGGGTTGATGGGCTGCTGGCGTCGACCGGACGTGGTGCAGCGTGAMTNQTPGLFIAFEGGDGAGKSTQAARLAEALESRGLKVLRTREPGGTPVGEKLRSLVLDHGNGHIDAHTEALIFAASRAAHASQVIRPALERGEIVLTDRYIDSSVAYQGAGRDLGTDAVRSINEWATSGLQPDLTVLLDVDPGVGRRRRTAGDAAEDRLESEADEFHTRIRNAFLELAAIHPDAYLVLPAHLPVADLAAQILARVDGLLASTGRGAAPGPT0021395_1711DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943NANA
D1-29_008741191metB_1COG0626Cystathionine gamma-synthaseATGAGCCTTTCACAACAGCAAACAGCGTCCCTCTCGGCCGAGACGGTGGTTGTTGCAGCCGGCAGGCCGCCGCGGGAGCGGGATGAGCCGGTTAACCCTCCCATCGTGCTGTCCTCAACCTACTTCGGCAGCGGCCCCCTGTCTGACGGGGACCGCGGTTACGGCAGGTACTCCAACCCCACCTGGGACCCTTTTGAGGAAGCCTTGGGACAGCTGGAGGGTTCCCAACTGCCGGGGCTCCTGTATGCGTCAGGGCTGGCGGCGGTGAGCTCCGCCCTGTCTCTTATTCCAGCCGGGGGTGTCCTGGTCATGCCCTCGCACAGCTACTCCGGGTCCCTGGTGATGGCTACGGAGCTGGCACAGAAGGGCTTCCTGGAGCTCCGGACCGTGGACATCGCGGATACCGATGCTGTGAAGGAACTGCTGGCACCCCCAGGCCCTGAAGCGCGGCCGGCCAGCATGCTGTGGCTCGAAAGCCCCACCAATCCCATGCTGGGCATTGCCGACATCCGCGGACTCACCCAGGCAGCGCATCAGGCCGGGGCCATCGTTGTCACGGACAACACCTTTTCAACCCCGCTGGTGCAGCAGCCCCTGGGACTGGGTTCCGACGTCGTGCTCCACTCGGTGACCAAATACCTGGCGGGCCACTCCGACGTCGTCCTGGGCGCCCTGGTGACCTCGAATCCGGACATTCGCAATGCGTTGCTGCATCACAGGATCATCCACGGCGGCATTGCCGGGCCCTTCGAAGCATGGCTCGCGTTGCGGGGCCTGAGGACCCTGGCGCTCCGCATTGAACGGTCTCAGGCGTCGGCGGCTGTGCTGGCGGAACGGCTCAGCGCGCATCCGTGGATTGAAACCATCCGCTTCCCGGGGCTGTCCACCGACCCCGGCCATGAACGGGCCAAGACCCAAATGACCGGCTTTGGCTCAATAATCTGCGTCCAGATCGCCCCTGTGGGGAGCGTCAGTGGGCCAGATGCCGCAGACAAGCTGGTCCGCGCCCTGCAGCTGTGGCTGCCGGCCACCTCCCTCGGCGGAGTTGAATCCCTTATTGAACGGCGGCGCCGGCACACTGCCGAACCGCTCAGCGTGCCGGAGAACCTGGTAAGGCTCAGCGTCGGAATTGAGAATGTCGACGACCTCTGGGGTGATCTGAAACAGGCGCTGGACTCGCTGGACGGCTAGMSLSQQQTASLSAETVVVAAGRPPRERDEPVNPPIVLSSTYFGSGPLSDGDRGYGRYSNPTWDPFEEALGQLEGSQLPGLLYASGLAAVSSALSLIPAGGVLVMPSHSYSGSLVMATELAQKGFLELRTVDIADTDAVKELLAPPGPEARPASMLWLESPTNPMLGIADIRGLTQAAHQAGAIVVTDNTFSTPLVQQPLGLGSDVVLHSVTKYLAGHSDVVLGALVTSNPDIRNALLHHRIIHGGIAGPFEAWLALRGLRTLALRIERSQASAAVLAERLSAHPWIETIRFPGLSTDPGHERAKTQMTGFGSIICVQIAPVGSVSGPDAADKLVRALQLWLPATSLGGVESLIERRRRHTAEPLSVPENLVRLSVGIENVDDLWGDLKQALDSLDGPGPT0001980_871DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001980-metB|met|cysA-K01758NANA
D1-29_00875354hypothetical proteinATGGTGGACGGTGAAATGATAATTCGGCCTGTTGAGCAGGCAGTGTTTTTTATCCTTGCCCTGGTGGCACTGGGACTTGAGCTGTGGGCTCTGTTTGACTGTGTCCGGCACAAAGCCGGCGCTTTTGAAGCCACCGGCAAAAGGACCAAGACTTTCTGGCTTGCACTCACCGGCGGAGCCACGGCTGTAGGGGCGCTGTCCCTCCTGGGCAGCGGCGGCATTTTTGGAAGCCTTGGCCTCTTTGGGCTGGCAGCGGTAGTTGCAGCGTGCGTGTACCTCGCCGATGTCAGGCCTGCCGTGAAGGATGCCGGGCGCGGCGGAAGCCGCAACACCGGACCCTACGGGCCCTGGTAAMVDGEMIIRPVEQAVFFILALVALGLELWALFDCVRHKAGAFEATGKRTKTFWLALTGGATAVGALSLLGSGGIFGSLGLFGLAAVVAACVYLADVRPAVKDAGRGGSRNTGPYGPWNANANANANA
D1-29_00876846hypothetical proteinGTGGTTCAAAAAGCTGAACGGGTGGCAGGCCCGCACGTCTCCGGCAGAAGCAGGCCGGGGAAGCCGGTCGGAAATGTCACCCGTGGCACCACCAGCCCCAACCGGATGAGGCGCCTGGACCGTTGGCTTACTGGCCCGCAGGCCTGGCGGCTGAGGACCGCTGACGACCCACTGGTGGTGGACCTGGGCTACGGCGCCACGCCGGCCACCGCCGTCGAACTCTTCCAGCGACTGGCGGCCGTGCGTCCGGACGTCCGCGTCTGCGGGATCGAGATCGAACCCGAACGTGTCAGGGTGGCGAAAACTTTGGAGAGGCCCGGCCTCGCTTTTATGGTGGGCGGCTTCGAACTGCCGGTGCCCGGTAATCCCGTCCTCGTCCGTGCCTTCAACGTGTTGCGGCAGTATGAGGAAGCGGATGTTGGAGCTATCTGGCGCCTGGTCCAGGGCAGGCTCTCCCCCGGCGGGCTGTTCATTGACGGCACCTGTGACGAGATCGGGCGCCGGGTGGCGTGGATTGCCCTTGATGGGCAGGGGCCCCTGTCGCTGAGCATCTCGATGCGGTTCGGCAGCTTTGTGCTGCCGTCCGAGATTGCCGAAAGGCTCCCCAAGGCACTGATCCACCGTAATGTCCCGGGCGAGCGGATCCACGCCCTGATGCAGGCCATGGACCGGGCGTGGCTGGAATCTGCGCCGCTGGCCTCGTTCGGGAACCGCCAGCGGTGGCATGGGATGTGCAAGGCACTGCTCGACGCCGGGTGGCCGGTTCAGGACGGTCCCGCGCGTTGGCGGCTGGGGGAACTGACGGTGGGCTGGGAAGCCGTGGCCCCGCCGGCCCAGGAGGTTTGAMVQKAERVAGPHVSGRSRPGKPVGNVTRGTTSPNRMRRLDRWLTGPQAWRLRTADDPLVVDLGYGATPATAVELFQRLAAVRPDVRVCGIEIEPERVRVAKTLERPGLAFMVGGFELPVPGNPVLVRAFNVLRQYEEADVGAIWRLVQGRLSPGGLFIDGTCDEIGRRVAWIALDGQGPLSLSISMRFGSFVLPSEIAERLPKALIHRNVPGERIHALMQAMDRAWLESAPLASFGNRQRWHGMCKALLDAGWPVQDGPARWRLGELTVGWEAVAPPAQEVNANANANANA
D1-29_00877747gpmA_1COG05882,3-bisphosphoglycerate-dependent phosphoglycerate mutaseATGACTTACAAGCTGATTCTGCTGCGCCACGGCCACAGCGAATGGAACGCCAAGAACCTGTTCACCGGCTGGGTGGACGTTGACCTCAACGACCAGGGCCGCACCGAGGCCGTCCGCGGCGGTGAGCTTCTGGTGGAGCACGACGTACTCCCGGACATCCTCTACACGTCCCGCCTGAAGCGCGCCATCAACACGGCCAACCTGGCGCTGGACAGGGCTGACCGCGGCTGGATCGATGTAAAGCGCGACTGGCGCCTGAACGAACGCCACTATGGTGCGCTGCAGGGTAAGGACAAGGCCCAGACCCTGGCCGAGTACGGCGAGGATCAGTTTATGGAGTGGCGCCGTTCCTACGACACCCCGCCGCCGCCCCTGGCTGATGACTCCGAGTTTTCCCAGGTGGGCGACCCCCGCTATGCGGACATTGGCGACGCCCTGCCGCGCACCGAATGCCTCAAGGATGTCCTGGTCCGGCTGCTTCCTTACTGGGAGTCGGACATCAAGGAAGACCTCAAGGCCGGTAAGACAGTCCTGGTCACCGCCCACGGCAACTCGCTCCGGGCCCTGGTCAAGCACCTTGACGGCATCAGCGACGACGCCATTGCCAGCCTGAACATCCCCACGGGCATCCCGCTGGTCTACGATCTCGACGAGGACTTCCAGCCGATCAACCGCGGCGGCACCTACCTTGATCCGGAAGCAGCAGCGGACGCCATCCTCGCCGTGGCCAACCAGGGCAAGAGGTAGMTYKLILLRHGHSEWNAKNLFTGWVDVDLNDQGRTEAVRGGELLVEHDVLPDILYTSRLKRAINTANLALDRADRGWIDVKRDWRLNERHYGALQGKDKAQTLAEYGEDQFMEWRRSYDTPPPPLADDSEFSQVGDPRYADIGDALPRTECLKDVLVRLLPYWESDIKEDLKAGKTVLVTAHGNSLRALVKHLDGISDDAIASLNIPTGIPLVYDLDEDFQPINRGGTYLDPEAAADAILAVANQGKRPGPT0018030_1966DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018030-gpmA-K01834NANA
D1-29_00878663phoU2COG0704Phosphate-specific transport system accessory protein PhoUGTGCGTAAGGTTTTTCAGGAAGAGCTGACCCAGGTGGGTGAGCAGCTGGTGGAGATTTCGCGGCTGGTCAGCGAAGCGATCGGCAAGGCCTCAACGTCTTTCCAAGTGGCTGACGTGGACCTTGCCCAGGATGTCATTGCCGCGGACGCCCGGATTGATTTCCTGCAGAACAGCCTGGATGAACGCGCCATCGACATCCTCGCCCTGCAGGGACCGGTTGCCAGTGACCTCCGCATGATCGTTGGATCATTGCGCATGAGCGCCTCCCTGGAACGCATGGGTGACCTCGCCCGGCACATCGCCCAGCTGGCGCGCCTCCGCTTTCCGTCCAATGTGATCCCGGAGTCCATGACGGAGACCTTTAAGAGCTTTGCGGAACTGGACCAGCTCATCGCGGACAAACTGACGATTCTCCTGGAGACCCGGGACCTTGAAGTGGCCCGCGACATCCTGAAGGCGAAAAGTGCCATCAACGATCTCCACTTGAGCGTCTTCAAGGCGATCGCCCACAGCGACTGGCAGGAGTCCCCGGCCACCACCGTTGACGTGGCGCTGGCAAGCCGCTATTTCGAGCGCTTCGCCGACCACGGTGTTTCCGTCGCCCAAAAAGTCACATACCTGGTGACGGGTACTTGGCAGCCGAACGGCACCGAATACAGCTAAMRKVFQEELTQVGEQLVEISRLVSEAIGKASTSFQVADVDLAQDVIAADARIDFLQNSLDERAIDILALQGPVASDLRMIVGSLRMSASLERMGDLARHIAQLARLRFPSNVIPESMTETFKSFAELDQLIADKLTILLETRDLEVARDILKAKSAINDLHLSVFKAIAHSDWQESPATTVDVALASRYFERFADHGVSVAQKVTYLVTGTWQPNGTEYSPGPT0002630_3313DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039NANA
D1-29_008791296sasA_3Adaptive-response sensory-kinase SasAATGCTCATTGGTGTCATCGCCGGCCTCATCGGCCTGTCGTTCGGCACTTTCGGCGTGCTTGCGTTCAGGGTCAGCGAAAAACAGCGCCAGCTTGTGGACATCAACGTCGATGAACTCGCGTTGCCGGCGGGTGCTGCCGAGGTGCTCGCGGTTGTCGGCAGGGCTTTCGTTGTGGTGGATGCGGTGGACGGCGTGGTCCGTGCCAGTCCAGCAGCGTACGCCTACGGCCTGGTCCGCGGCCACACTGTGGTCCATGAACAGCTGCTGGAGATGACGGCAGGTGTGCGCCGCGACGGCGTCATCCTGGAAAAGAAACTGGAACTTCCCCGTGGGCCGCTCGGTCAGGGCACCATCATCGTGCAGGTGCGCGCTGCCATGCTCGGTGAGGAATACATCGTATTGCTGGCGGATGACCGCACGGAGATCACCCGGACGGAGGAGATCCGCAATGATTTCGTGGCGAACGTTTCCCATGAACTCAAGACACCCGTAGGCGCCATCTCCCTGCTCGCCGAGGCCCTGGAATCCTCCGCAGACGATGAGGAAGCGGTCCGCCGGTTCGCCAAGCGCATGCACAAGGAATCCGGCCGCTTGGCTGCGCTGGTCCAGGACATCATTGAGCTCTCCCGGCTGCAGGGTGCCAGTGTTTCCCAGCAGGGCAGGCCGGTGGACATCAACGCCGTGATCACCGAAGCCGTGGACCGCTCCCAGCTTCCCGCCGAGAGCAAGAATATTGAGATAGTGGTTGGCGGACGGGCCGAAGGCATGGTTTATGGTGACCAGGATTTGCTGGTTACGGCCCTGCGGAACCTCATAGACAATGCCATCCGGTACTCCCCGGAGAACACCCGGGTGGGCATCGGTGTCCGCGCCAAGGACGGGCTGATTGCCATCTCAGTCACCGATCAGGGACTTGGGCTCACGCAGGAGGACCAGGAGCGGGTGTTCGAACGTTTTTACCGTGTGGACGCCGCCCGGTCGCGGCACACCGGCGGTACGGGGCTGGGCCTGAGCATTGTCAAGCACGTTGCCTCAAACCACGGGGGCGAGGTGACGGTGTGGTCCAAGCCCGGCCAGGGCTCCACCTTCACCCTCCGGCTTCCGGAGATGGAGAGCGAAGAACCGCAGGCGCCCCTGCTGGATGACCGTGGTGCAACGGAGCGCGCCAAGGAATCCGCCGCCACGGAAACCGGTGCATTGGGCCGCGGTGCCCGGGAACAAAACGCCAACGAACGCCACGTCACCGAGCAGAACGCCGACGAACGCAATGTCAACGAACAAGGAGCCAGCGCTTGAMLIGVIAGLIGLSFGTFGVLAFRVSEKQRQLVDINVDELALPAGAAEVLAVVGRAFVVVDAVDGVVRASPAAYAYGLVRGHTVVHEQLLEMTAGVRRDGVILEKKLELPRGPLGQGTIIVQVRAAMLGEEYIVLLADDRTEITRTEEIRNDFVANVSHELKTPVGAISLLAEALESSADDEEAVRRFAKRMHKESGRLAALVQDIIELSRLQGASVSQQGRPVDINAVITEAVDRSQLPAESKNIEIVVGGRAEGMVYGDQDLLVTALRNLIDNAIRYSPENTRVGIGVRAKDGLIAISVTDQGLGLTQEDQERVFERFYRVDAARSRHTGGTGLGLSIVKHVASNHGGEVTVWSKPGQGSTFTLRLPEMESEEPQAPLLDDRGATERAKESAATETGALGRGAREQNANERHVTEQNADERNVNEQGASAPGPT0002670_470DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002670-senX3-K07768NANA
D1-29_00880681regX3_2COG0745Sensory transduction protein regX3TTGAGCAGGATTTTGATTGTCGAAGACGAGGAGTCCTTCAGCGACCCGTTGTCCTACTTGCTGGGCAAGGAAGGTTTCGAGGTGGAAGTCGTGGACAACGGCTTGGACGCCATCACCGAATTCGACCGCAACGGGGCAGACCTCGTGCTCCTGGACCTGCAGCTTCCGGGCCTGTCAGGCACAGAGGTATGCCGCCAGCTGAGGCAGCGCTCCAGCGTCCCGGTAATAATGCTGACCGCAAAGGACTCGGAGATCGACAAGGTGGTGGGCCTGGAGCTCGGCGCCGATGACTACGTCACCAAGCCGTATTCTTCCCGTGAACTGGTGGCAAGGGTCCGGGCCGTGCTGCGCCGGCAAGGCGAGCCCGAAGAACTGATCTCCTCCACGGTCCAGGCCGGACCAGTCCGGATGGACATCGAGCGGCACGTCGTCAGTGTTGGCGGGGAGCAGGTGCTCCTGCCGCTGAAGGAATTTGAGCTGCTGGAGATGCTTCTTCGCAATTCCGGCCGTGTACTCACGCGGGGCCAGCTGATCGACCGGGTCTGGGGCTCTGATTATGTGGGCGATACCAAGACCTTGGACGTCCATGTCAAAAGGCTGCGAAGCAAGATCGAGCCTGACCCATCCCTGCCCCGGTTCCTGGTGACGGTTCGGGGCCTCGGCTACAAGTTTGAGCCGTAAMSRILIVEDEESFSDPLSYLLGKEGFEVEVVDNGLDAITEFDRNGADLVLLDLQLPGLSGTEVCRQLRQRSSVPVIMLTAKDSEIDKVVGLELGADDYVTKPYSSRELVARVRAVLRRQGEPEELISSTVQAGPVRMDIERHVVSVGGEQVLLPLKEFELLEMLLRNSGRVLTRGQLIDRVWGSDYVGDTKTLDVHVKRLRSKIEPDPSLPRFLVTVRGLGYKFEPPGPT0002675_671DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
D1-29_00881561hypothetical proteinGTGCGTTTCACTGCGACGAACCGGGCCCAGCGCGGCAAACTGGCACTGGCGGCAGCTGCCCTTGGCCTCGGCCTGCTGACTGTGACGGGCTGCGGCTACATCACCCCCCAGCAGACCGCTCAGCAGTACGCCGCTTCCGACGGCATCACCGCGGACCTCGGCCCTCTGCAACTGCGCAACATGCTGATTATCTCGGCGGGAGAAGACAAGCCCGGACGTCTTCTCGGGGCCGTTTACAACTCCTCCTCCAAGGACGTGAAACTCACCGTCAAGGGTGCGGAAGGCTCGCAGACACAGGTGTCCGTGAAAGCCAACGACTACACCCTGCTGAACAATTCCACTGACGAAGCCGTCCTGAGCACCACCGGCGGCATTCCCGGCTCCCTCGTGGACGTCCAAATCAGCGAAGACGGAACCAACGTCAATGAAACGGTAAAGGTGCCCGTCCTGGACGCCACGCTTGCGGAGTACAAAGAGTACCTGCCGGCCGGCAGCGAACCTACGGGAACAGCGTCGCCGACACCGTCGCCGTCGGCCTCTTCCGCAGCCGCAGCCCACTAGMRFTATNRAQRGKLALAAAALGLGLLTVTGCGYITPQQTAQQYAASDGITADLGPLQLRNMLIISAGEDKPGRLLGAVYNSSSKDVKLTVKGAEGSQTQVSVKANDYTLLNNSTDEAVLSTTGGIPGSLVDVQISEDGTNVNETVKVPVLDATLAEYKEYLPAGSEPTGTASPTPSPSASSAAAAHNANANANANA
D1-29_00882483carDCOG1329RNA polymerase-binding transcription factor CarDATGGTATTTGAGGTCGGCGAGACAGTAGTTTACCCTCACCACGGTGCAGCAAAAATTGAAGAAATCAAGATGCGCACTGTCAAGGGCGAAGAGAAAATGTATCTCAAGCTCAAGGTGGCTCAGGGTGATCTGACCATTGAAGTTCCAGCAGAGAACGTTGACCTTGTTGGGGTTCGTGACGTAGTGGGCAAGGAAGGCCTGGAGCACGTATTTGACGTGCTGCGGGCTGAGTTCACTGAAGAGCCCACCAACTGGTCACGCAGGTATAAGGCAAATCTGGAGAAACTTGCTTCCGGTGACGTCATCAAGGTAGCAGAGGTCGTTCGTGACCTTTGGCGCCGTGATCACGATCGGGGCCTTTCCGCAGGTGAGAAGCGAATGCTGGCCAAGGCCCGGCAGATTCTGATTTCAGAATTGGCGCTGGCTGAAAAGACCGACGAAGAGAAGGCTGCAAGCGTTCTCGACGAGGTCCTGGCTTCCTAAMVFEVGETVVYPHHGAAKIEEIKMRTVKGEEKMYLKLKVAQGDLTIEVPAENVDLVGVRDVVGKEGLEHVFDVLRAEFTEEPTNWSRRYKANLEKLASGDVIKVAEVVRDLWRRDHDRGLSAGEKRMLAKARQILISELALAEKTDEEKAASVLDEVLASPGPT0014830_1272DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-STRINGENT_STRESS_RESPONSE,PGPT0014830-ydeB|carD-K07736NANA
D1-29_00883783ispDCOG12112-C-methyl-D-erythritol 4-phosphate cytidylyltransferaseATGAGTAGCGATCCGCCCCGCCCCCTCACCGCCGTCATCGTCGTGGCCGCCGGTTCCGGCGAAAGGCTGGGTCACGGCATGCCCAAGGCCGCCGTCCCGCTCGGCGACGAACCCATCCTCCTCCACGCCCTGCGCGGTGTGGTGGCCTCTGGGGTGGCAAGCCAGGTGTGCATCGCGCTGCCCGCAGGCCATGACGCGCTGAAGCAGCTCGTGGACGATTTCAGGCTGGAGCTTGTCGACGGCGGCCCAGTCCTGACGGTGGTTGATGGCGGAGCCACCAGGTCAGACTCCGTCCGCTTCGCGCTTGCGGCGGTGGAAACGGGGACAGAGGCGGTACTTGTCCACGATGCAGCCCGGGCACTGACGCCTGAGTATGTATTTCACCGTGTGGTTGACTCATTGGCCGCCGGCGCCCTTGCCGTCATCCCCGCGGTCCCGGTGGTGGACACGGTCAAGACAGTGGCGCCCACCACGGGCGAGAATGGCAGAATCGCGCCGGAGATAGTCACCGGCACGGCTCCGCGGGAGAGTCTGCGGGCGGTCCAGACCCCCCAGGGATTCCACCTCCCCACGCTGGTCAAAGCCCACGAAGCGGCGTTGAATCTTAAGGACCAGCAGGCTGCAGCTGTCACGGATGATGCCATGCTGGTGGAACTTCTTGGCGTTCCCGTCCATGCCGTCCACGGCTCCACCCAGTCGCTCAAGATCACCACACCCCTGGACCTGATCATTGCTGAAGGGCTCCTGGAAGGCCCGCTCGGGGTCCGCTGGGTGGAAGGCTAGMSSDPPRPLTAVIVVAAGSGERLGHGMPKAAVPLGDEPILLHALRGVVASGVASQVCIALPAGHDALKQLVDDFRLELVDGGPVLTVVDGGATRSDSVRFALAAVETGTEAVLVHDAARALTPEYVFHRVVDSLAAGALAVIPAVPVVDTVKTVAPTTGENGRIAPEIVTGTAPRESLRAVQTPQGFHLPTLVKAHEAALNLKDQQAAAVTDDAMLVELLGVPVHAVHGSTQSLKITTPLDLIIAEGLLEGPLGVRWVEGPGPT0007590_323DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991NANA
D1-29_00884498ispFCOG02452-C-methyl-D-erythritol 2,4-cyclodiphosphate synthaseGTGGCTGCAGACAGAATGATCCTTCCGCGCACCGGCATCGGCCTGGATGTGCACGCGTACTCTTCCGCTGAGGAGCCGCGCCCGCTCTGGCTGGGTGGTCTCTTCTGGGAGGGCGAGCGCGGACTGGCGGGACACTCCGACGGCGATCCGGTGGCCCACGCTGCCGCGGACGCGCTGTTTTCCGCCGCAGGCATCGGAGACCTGGGAACCCACTTCGGCACAGACCGGCCTGAGTTTGCCGGCGCCTCAGGAGTAACGCTTCTCGCGGAGGCGGCGAGGATTGTCCGCGGCGCGGGCTTTGAGATCGGCAATGTTGCGGTTCAGTTCGTAGCCAACCGGCCAAAGTTCGGACCCCGCAGGCAGGAATCGCAGGGCGTACTCAGTGAGGCAGCAGGTGCGCCCGTCAGCGTTACGGCCACCACCAGCGACGGCCTGGGATTCGCAGGCCGGGGGGAGGGCATTTCCGCCGTCGCCACTGCCTTGGTGTACCCGAAGTAGMAADRMILPRTGIGLDVHAYSSAEEPRPLWLGGLFWEGERGLAGHSDGDPVAHAAADALFSAAGIGDLGTHFGTDRPEFAGASGVTLLAEAARIVRGAGFEIGNVAVQFVANRPKFGPRRQESQGVLSEAAGAPVSVTATTSDGLGFAGRGEGISAVATALVYPKPGPT0007595_750DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
D1-29_008851467cysSCOG0215Cysteine--tRNA ligaseGTGACCCTGCGATTTTACGACACAGCATCCGCCGAAGTCCGTGACTTCGTCCCCCTCGTCCCGGGCAAGGCGAGCCTGTATTACTGCGGAGCCACAGTGCAGGGCATGCCGCACGTGGGGCATATCCGGTCAGCCATTGCCTTTGACCAGCTGACCCGCTGGCTTCAGTTCCGTGGGTACCGTGTCACCGTGGTACGGAACGTCACGGACATTGATGACAAGATCCTTGCCAAGTCGGCTGAGTCCTTCGCCGCTGACTTCCGGCCTGAGCCGGGGGCGGTCCCTGAGGAAGAGTGGTGGGCGCTTGCCTACCGCTACGAGCAGGAATTCCTCAAGGCCTACGACACTCTGGGTGTTTCCCGGCCCACCTACGAGCCCCGCGCCACCGGCCACATCCCCGAGATGCATGCACTCATCCAGCAACTGATCGAAAGAGGCCATGCCTACCCGGCCCTGGATGGCTCGGGAGACGTCTATTTCGACGTGCGGTCCTGGAGCAAATACGGGGCCCTCACCCGGCAGAACATCGACGATATGCAGGGCGCGCCGGATGCTGACCCGCGGGGCAAGAAGGATCCCCGGGACTTCGCGTTATGGAAGGGCCACAAGGAGGGGGAACCGCTCACCGCGAGTTGGGCTTCACCTTGGGGCGCCGGACGCCCCGGCTGGCACCTGGAGTGCTCCGCCATGGTAACCAAGTACCTTGGTACTGAGTTTGATATCCATGGCGGCGGCCTGGACCTGCGCTTCCCGCACCACGAAAATGAGATGGCACAATCCCAGGCAGCGGGCCACGGTTTCGCCAACTTCTGGATGCACAACGGCATGGTCACGTACCAGGGCGAAAAGATGTCCAAGTCGATCGGCAACACCGTCAGCCCTGCTGAAATGCTGGAGCTCGCTCCCTCACGCGTTGTCCGGTACTACCTCGGCCAGGCACACTACCGGTCCGTGCTGGACTACAGGCCAACTTCGCTGCAGGAAGCGGCGGCAGCAGTGGACCGCATCGACGGATTCCTGAACAAGGCCAGGGAACGGTTCGGCCCGGGCTTCGGTTTTGTGGCCGGAGCCTTTGGCGCGTCCAAGGAGACAATGGATGCCTTTACGGCGGCGATGGATGATGACCTGAATGTTCCGCGGGCACTGGGTGCCCTCCATGACACAGTCCGTGCCGGAAACACAGCGCTTGCCGCCGGGGACGATGAGGGCGCACGGAATGCCAGGCACGTGGTCATTCTTATGACCCGGGTCCTGGGGCTGAATGCTGCCACCCAGCCGACCGCAGCGGGCGGAAAGGAACAGGCGGCGCTGCAGGTCCTGGTGGATAGTCAGCTCGCTGCCCGGGCCCAAGCGCGTGCCAACAAGGACTGGGCTGCTTCGGATGCCATCCGCGACGCGCTCAAGGCCGCCGGCGTCGTCGTCGAAGATGGCCCGGACGGTGCCACCTGGAGCCTGCAGCGGGACTGAMTLRFYDTASAEVRDFVPLVPGKASLYYCGATVQGMPHVGHIRSAIAFDQLTRWLQFRGYRVTVVRNVTDIDDKILAKSAESFAADFRPEPGAVPEEEWWALAYRYEQEFLKAYDTLGVSRPTYEPRATGHIPEMHALIQQLIERGHAYPALDGSGDVYFDVRSWSKYGALTRQNIDDMQGAPDADPRGKKDPRDFALWKGHKEGEPLTASWASPWGAGRPGWHLECSAMVTKYLGTEFDIHGGGLDLRFPHHENEMAQSQAAGHGFANFWMHNGMVTYQGEKMSKSIGNTVSPAEMLELAPSRVVRYYLGQAHYRSVLDYRPTSLQEAAAAVDRIDGFLNKARERFGPGFGFVAGAFGASKETMDAFTAAMDDDLNVPRALGALHDTVRAGNTALAAGDDEGARNARHVVILMTRVLGLNAATQPTAAGGKEQAALQVLVDSQLAARAQARANKDWAASDAIRDALKAAGVVVEDGPDGATWSLQRDPGPT0002985_1845DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883NANA
D1-29_00886990COG0566putative tRNA/rRNA methyltransferaseATGGCCAACAACGGTCGCCGGTCGGTCAAAGCAAAGAAGGGGCCTACCATCGGAACCGGTGGCCATGGCCGCAAGTCCCTGGAGGGCAAGGGCCCCACGCCCAAGGCGGAAGATCGCCCGTACCACAAAGCGCACAAGAGCAAGCAGCTGGCTGAGAGGTCAGCAGCCAAGCGCGGAACCGGCGCCCGAAGCGCCGGTGCAGCCCGCTCCGGACCCAAGGGGCGGGCCACCGAGGAAGTTGTCACCGGCCGTAACTCGGTGGTTGAAGCGCTGCGGGCGGGGATCCCGGCGAAGGCTCTGCACATTGCCATCCGGATCGAGATGGATGACCGCGTCAAGGAGTCCCTGAAGATAGCGGCAGAACGCGGCATCCCGCTTCTTGAAACGGGCAAGCCGGAGCTGGACAGGATGACCGACGACGCCGTTCACCAGGGCCTGGTGCTTCAGATTCCGCCGTACGAGTACCAGGATGCCTACGATCTTGCCGTGGAAACCGTGGAACGGTGGAAGAAGGGCCACGTGGCCAACGCCCCGCTGTTCGTTGCCCTGGACGGCATCACCGATCCACGCAACCTGGGTGCCATCATCCGCTCAGTCTCAGCTTTCAGCGGCCACGGCGTTATTGTCCCCGAGCGACGCTCAGTTGGTGTCACGGCTTCTGCCTGGAAGACCAGCGCCGGCGCTGCCGTGCGTGTTCCGGTGGCCCGTGCAGCAAACCTGAACAGCGCCCTGAAGCAGTTCAAGAACATGGGCATCTTTGTCCTGGGACTGGATGGTGACGGCGACGTCTCCCTGCCGGACCTGACCCTCGCCACTGAGCCTGTCTGCATTGTGGTCGGATCCGAGGGCAAGGGCCTGAGCCGTCTGGTCCGCGAAAACTGCGACCAGATCGTTTCGATCCCGATCGATTCGGCCATGGAATCCCTGAACGCATCCATGGCCGTGGGGATCTCGCTCTACGAAGTTTCCAGGCAGCGCGCCACCAAGTAGMANNGRRSVKAKKGPTIGTGGHGRKSLEGKGPTPKAEDRPYHKAHKSKQLAERSAAKRGTGARSAGAARSGPKGRATEEVVTGRNSVVEALRAGIPAKALHIAIRIEMDDRVKESLKIAAERGIPLLETGKPELDRMTDDAVHQGLVLQIPPYEYQDAYDLAVETVERWKKGHVANAPLFVALDGITDPRNLGAIIRSVSAFSGHGVIVPERRSVGVTASAWKTSAGAAVRVPVARAANLNSALKQFKNMGIFVLGLDGDGDVSLPDLTLATEPVCIVVGSEGKGLSRLVRENCDQIVSIPIDSAMESLNASMAVGISLYEVSRQRATKNANANANANA
D1-29_00887810COG0388HydrolaseATGCGGGTTGCACTTGCCCAGATCATCACCGGCCGGGAGCTTGGCAAAAACCTGGCCCTTGTGGAGGAGTACGCCCACAAGGCCAAGGCCGGCGGAGCGGAAATGGTGGTGTTCCCCGAGGCCACCATGCGGGCCTTCGGGAACTCCTTGCTGGATATCGCCGAACCCGTGGACGGGCCCTGGGCGACGCACGTGCGCGGCATCGCCCAATCGCTCGGCCTGGTGATCGTGGCCGGCATGTTCACGCCGGGCTCGGCCTCCGGCGGCGGCCGCGGGAAGGTGCGCAACACCCTCCTGGCCACCGGACCCGGCGTGGACGCCAGCTACGACAAAGTGCACCTCTTTGACGCGTTTGGCTTTCTTGAATCGGACACCGTGGAGCCCGGAACAGGCCCCGTAACCTTCGATGCCGGTGGCCTCACCTTTGGCCTGGCCACCTGTTACGACATCCGCTTTCCGGCATTGTTCACCGCCAACGCCGAGCGGGGTGCCGAAGTCAACATCCTCTGCGCCTCCTGGGGCGCCGGTCCAGGCAAGGTGGAGCAGTGGCGGCTGCTCTCCCGGGCGCGTGCACTGGATTCCACCACCTACGTCCTGGCGTGCGGGCAGGGCGATCCCGCCGCGCAGGGCATCGAGACTAAGGGCACCGCGCCCACCGGGGTAGGACACTCTGCCGTCATCTCCCCGTTTGGAGAGGTCCTGGCCGAAATCGACGGCGCCCCGGACCTGCTCTTCGCGGACCTCGACCCCGCCGTGGTCAAGGACGCCCGGCAAAAGCTCCCCGTCCTGGCCAACCGCAGGGACTTCTGAMRVALAQIITGRELGKNLALVEEYAHKAKAGGAEMVVFPEATMRAFGNSLLDIAEPVDGPWATHVRGIAQSLGLVIVAGMFTPGSASGGGRGKVRNTLLATGPGVDASYDKVHLFDAFGFLESDTVEPGTGPVTFDAGGLTFGLATCYDIRFPALFTANAERGAEVNILCASWGAGPGKVEQWRLLSRARALDSTTYVLACGQGDPAAQGIETKGTAPTGVGHSAVISPFGEVLAEIDGAPDLLFADLDPAVVKDARQKLPVLANRRDFNANANANANA
D1-29_008882109glgX_1COG1523Glycogen operon protein GlgXATGCCGCTCTTTGATACTGCTTCCACCATGGACGCCTCCGCCGCGCTTCCTTTAGGTGTGACTGTTCCGCGCCCAGCTTCCTCCGGTGCGGAGCATCATTCGCAGTCCCGGGCGAACGTCGCTGTCTACGCCCCGGGTGTAGAAAACCTGGAGATCGCCTACAAGGCGCCCGGCGGCGAGTGGCAGCTGAAAACGCTTCCGAACGTCACCCACGGCGTGCACCATGGGATCGTTGAGGACTTTCCGTACGGATCCCGTTACGGTTTCCGGGCCACTGCCAAAGAGGCATCCCTGCCACTTTCCGTGCCCACCCTGGACCTGGATGACGACGGCGGCCAGCCGCTGCTGCTGGATCCCTATGGGCGCGCTGTGGACGAGCGCGAGGGATTCCTGACCAACGTCAGGATGGCCAACCACTTTGACTGGGGCAACGACCACCGGCCGCGCGTGCACTGGCGCAACACCATCATTTACGAGGCCCATGTCCGCGGCCAGAGCATGCTGCACCCTGACGTCCCCGAGGAACTGCGCGGAACATACGCCGGCATGGCTCATCCGGCGATCATCGAACACCTCACCAGCCTTGGAATCACGTCCGTCCAGCTGCTCCCCGTGCACTTCCACCTGGATGAGCCGCACCTGCAGAACCTCGGCATGACCAACTACTGGGGCTACAACACCGCCGCTTTTTTTGCACCCCATCCCGGCTACGCCACCCGGGCCGCGCAGGAAGCCGGACCACAGGCCATCCAGGATGAATTCAAGGGCATGGTCAAGCTGCTTCATGCGGCCGGCCTGGAAGTGATCCTTGACGTTGTCTACAACCACACCGCGGAGGGCGGCCCCGATGGGAAGACGCTCAGCTTCCGGGGGCTCGGCGAAGACAAGTATTACCGCACTGACGGCCACGGCAGGTACATCGACACCACCGGCTGCGGCAACAGCCTGAACTTCGGGGAACCGCGGGTCGTGCAGCTTGTCCTGGATTCCCTCAGGTACTGGGTGGATGAGTTCCATATTGACGGCTTCCGTTTCGATCTCGCCGTGACCCTGTGCCGTAACGCAGCCAACGAATTCGATCCGCGGCACCCCTTCCTGGTGGCCATCGCCGCCGACCCCGTCCTGTCCGATGTGAAGCTCATTGCCGAGCCCTGGGACGTTGGTTACGGGGGGTGGCAGACCGGACGCTTCCCCGGTGGCTGGGTGGACTGGAACGATCACTTCCGGGATGCTGTGCGCTCATTCTGGCTCGCGGACCGCGCTGCCATTGAGGCCGGAGGCCAGGGCGGGTCGGTGTCCAGGCTGGCGGACGCGCTATCCGGCTCGGCAGGACTCTTTGAAGGATCGGGCCGGTCGCGACTGGCTTCGGTCAACCTCGTCACAGCGCACGACGGTTTCACCCTCAGTGACCTTGTGTCCTATGACCGTAAGCACAATGAAGCAAACGGCGAGCAGAACCGGGACGGCCACGGCGACAACCGCAGCTACAACCATGGCTTCGAAGGCCGGACCGAGGACGAGGCAATCCTGGCGCAGCGCGCCCAGTCCCGCCGGAACCTGATGGTCTGCCTGATGATTTCCCTGGGCATCCCTATGATCACCGCGGGCGATGAACTGGCCCGTACCCAGCAGGGCAACAACAACGCCTACTGCCAGGACAACCCCATCACGTGGCTGGACTGGACCCGGACTCCGGAATCGCACGAAATGCTGCGCAGCACCAAAAGGTTCATCCGGCTCCGGAAGGACTTTATGGCCAACCAGCCACACGATTTCCCGGTCCGCGACGAGCAGTCCTACCTCTACTGGTTCGACGAGTCGGGCGCACCAATGTCCATGGAGCACTGGAACGATCCGCACCGCCGGGTCATGCAGCTCCTGCTCGGGTCCGACGACGGCACCCTCGCCGGTCTCGCGGTGGTTAACGGCGGAAACACCGACGTCAAGATCACCCTGCCGCAACTCACCAACGACGACGGATCACCGCGGCGCATGTTTGAGCTCAGGCTGACCACTTCACCGCTGCATGAGCTCCGCCAGGGCAGCCGGGTGGCCTCCGGGGAATCCGACCTGGTCCAGGCCAACTCCATCAACATCTACCGCACCTAGMPLFDTASTMDASAALPLGVTVPRPASSGAEHHSQSRANVAVYAPGVENLEIAYKAPGGEWQLKTLPNVTHGVHHGIVEDFPYGSRYGFRATAKEASLPLSVPTLDLDDDGGQPLLLDPYGRAVDEREGFLTNVRMANHFDWGNDHRPRVHWRNTIIYEAHVRGQSMLHPDVPEELRGTYAGMAHPAIIEHLTSLGITSVQLLPVHFHLDEPHLQNLGMTNYWGYNTAAFFAPHPGYATRAAQEAGPQAIQDEFKGMVKLLHAAGLEVILDVVYNHTAEGGPDGKTLSFRGLGEDKYYRTDGHGRYIDTTGCGNSLNFGEPRVVQLVLDSLRYWVDEFHIDGFRFDLAVTLCRNAANEFDPRHPFLVAIAADPVLSDVKLIAEPWDVGYGGWQTGRFPGGWVDWNDHFRDAVRSFWLADRAAIEAGGQGGSVSRLADALSGSAGLFEGSGRSRLASVNLVTAHDGFTLSDLVSYDRKHNEANGEQNRDGHGDNRSYNHGFEGRTEDEAILAQRAQSRRNLMVCLMISLGIPMITAGDELARTQQGNNNAYCQDNPITWLDWTRTPESHEMLRSTKRFIRLRKDFMANQPHDFPVRDEQSYLYWFDESGAPMSMEHWNDPHRRVMQLLLGSDDGTLAGLAVVNGGNTDVKITLPQLTNDDGSPRRMFELRLTTSPLHELRQGSRVASGESDLVQANSINIYRTPGPT0018555_97DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0018555-glgX-K02438NANA
D1-29_00889357hypothetical proteinATGAAGATCTACTCCGCAGACACCTGGTCCATCGAAGAGCTGCAGGAGATGGTCGCAGACGCCGGGCGCCGCAGCCTCGTTGTCCCGCCGGCGGACCACAAGAAGGCAGTCCTGGAGGTGTTCGGCGAGGTCCTGGACTTCCCCGAACACTACGGCGTGGATCTGGACGCCCTCAACGATTCCCTGCACGACTTCGCCGACAGCATCAGTGAGAACGGACATGCATCGGTTACGGTCCTCTGGCAGGTCGCCGCACCGTTTCGTGGCGACAGGTCCTTCGGCATCATCTGCGAGATTCTCCAGGACGCCGAGAGCTACGCCGGCGGCCAGCTCGCCGTTACCGCTGTCCTGCTGTAGMKIYSADTWSIEELQEMVADAGRRSLVVPPADHKKAVLEVFGEVLDFPEHYGVDLDALNDSLHDFADSISENGHASVTVLWQVAAPFRGDRSFGIICEILQDAESYAGGQLAVTAVLLNANANANANA
D1-29_008902643glgPCOG0058Glycogen phosphorylaseATGTTGTCGGTTAGTGTGGCGCAGGTGAAGGCAATCCGCAGATTTACCGTTCGAACTGTTCTCCCTGAACCGATCAGGCCGCTGGCCCGGTTGGCCACCAACCTCCGCTGGTCCTGGCACCGGCCAACCCGCGAGCTTTTCGCCGGATTGAACGCCCGGGTCTGGGAGGAAAGCGGGCAGGATCCGGTGAGCTTCCTCGGGCTGGTGAGCCGCGAGGAGTTCCAGAGCCTCGCAGCAAACCAGTCTGTGGTAGAGCGGATCCGGGCTGCCGAGGCGGACCTTGACAGGTACCTTGAGGAGCCCCGCTGGTATCAGACGCTGGGTGAGGACGCTCCGTCTTCCATTGCATATTTCTCGCCGGAGTTCGGTATCACCGAGGTGCTTCCGCAGTACTCCGGCGGCCTGGGCATCCTCGCCGGTGACCACCTGAAAGCTGCTTCCGACCTCGGCGTGCCGTTGGTGGGCGTTGGCCTGCTGTACCAGGCCGGTTACTTCAAGCAGTCACTGTCACGGGACGCCTGGCAGCAGGAGACCTACCCCGTGCTGGATCCGGACGGCCTGCCGCTGACGCTGCTCCGCGAACCGTCAGCCGACGGCAACGGCCGCCCTCTCCAGATTTCGCTGCCGCTGCCCAACGGGCGCCGGCTGCTGGCGCATATCTGGCGTGCCGACGTCGGACGTGTTCCGCTGCTGCTTTTGGACTCCAACGTTCCGGGCAACGACGACGCCGCCCGCGGCATCACCGACCGCCTCTACGGTGGCGGCGGGGACCACCGGCTGCAGCAGGAGCTGCTCCTGGGAATGGGCGGGGTGAAGGCGCTCCGCCTCTACCAGCGGCTCACCGGACGCGCTGCGCCGGAGGTGTTCCACACCAACGAGGGCCACGCCGGCTTCCTGGGGATCGAACGTATCCAGGAGCTGATGTCCGGGGAGCAGGCGCTCAGCTTCGATGAGGCGCTTGCCGCGGGCAGGGCCTCCACCGTTTTCACCACCCACACACCTGTGCCGGCGGGCATTGACCGGTTCGAGGTTTCCCAGATCCAGCACTTCTTCCAGGCCGGGCTCGCGCCGGCGGTGCCTGTGGACAGGATCCTGGAGCTGGGCCGGGAGAACTACGCGGACGGAAACCCATCCGTCTTTAACATGGCGGTGATGGGGCTCCGGCTGGCCCAGCGGGCCAACGGCGTTGCCAAGCTTCACGGTGAAGTATCCCGGGGCATGTTCTCGGCCCTCTGGCCGGGCTTTGACCACTCCGAGGTGCCCATCACGTCGGTCACCAACGGCGTGCACGTTCCCACCTGGGTGGACGGACGTATTTCCAAGCTCGCCAGGGAGCAGTTCGGCACTGAAGCTGAAGCCATGGGCCGCTGGGACCTTGCATATAACGTGAGCGACGCCGACGTGTGGGCTTTGCGGCGTGAGATGCGGACAGCCCTCGTTGAGGATGTACGCCGCCGTCTCCGTGCCGCCTGGAAGAAACGCGGCGCCGCAGACGCCGAGCTGGGCTGGACGGACAGCGTGCTGGACCCGGATGTCCTGACCATCGGCTTTGCCCGCCGAGTTCCGACGTACAAGCGCCTCACCCTGATGCTGCGCGAGCCCGCACGGCTCAAGGCACTCCTGCTGCACAAGGAACATCCCATCCAGCTGGTGATTGCCGGCAAGTCCCACCCTGCCGATGATGCGGGCAAGAAAATGATCCAGGACCTGGTCCTCTTCGCCGATGACCCCGAAGTGCGGCACCGGATCGCCTTCCTGCCCAACTACGACATCGCGATGGCCAGGACCCTGTTCCCCGGCTGCGACGTCTGGCTGAACAACCCGCTGCGGCCGCTGGAAGCCTGCGGAACGTCAGGGATGAAGGCCGCCATCAACGGTTCGCTGAACCTGTCCGTCCTGGACGGCTGGTGGGACGAGATGTACGACGGCGAGAACGGCTGGGCGATCCCTACGGCCAACAATGACGCGTCCCCTGAGGAACGGGACGACATCGAGGCAGCAGCCCTCTACGAGCTGCTGGAATCCGAGGTTGCCCCGCGCTTCTACGGCAGCACAGTTTCCGAAGAGGCGGGGGCCGCTGGGCCCTCCACGTCGGAGATGGAAAAGGTTCCCACGCACTGGGTTTCGATGATCAAGCACACCCTCTCGCACCTGGGCCCGGCGGTTTCAGCGGAGCGGATGCTGCACGACTACGTCAACATCCTGTACCGTCCGGCGGCGGAGGCAGGCCGCGCGGCGGTGGCAGATTCGTATGCCCAGTCGCGCACCTTGGCGGCCTGGATCGCGAAGGTACGGTCCGCATGGCCCCTGCTCCACGTGGAGCACGTGGACTCCGTCGGTGTATCCGAGGATCCTCAGATCGGTGACACGCTGCAGGTCAACGCCTACGTGGCACTTCACAGCCTGACGCCGGACGACGTCGCGGTTGAAGTTGCCTACGGCCGCGCTGAGGAAAGCGACACCCTGACTGACATCACCGTGATGGAACTGAAGCCGCAGGAAGACCTCGGAAACGGACGCCACCTTTTCACCGGTTCCCTGGTGATAGACCGTTCGGGTTCCTTCGGCTACACGGTGCGGGTGCTGCCCCGGCACGAGGCCCTCGCCTCGAAGGCCGAGCTCGGGCTGATCGTCAACGCCTAAMLSVSVAQVKAIRRFTVRTVLPEPIRPLARLATNLRWSWHRPTRELFAGLNARVWEESGQDPVSFLGLVSREEFQSLAANQSVVERIRAAEADLDRYLEEPRWYQTLGEDAPSSIAYFSPEFGITEVLPQYSGGLGILAGDHLKAASDLGVPLVGVGLLYQAGYFKQSLSRDAWQQETYPVLDPDGLPLTLLREPSADGNGRPLQISLPLPNGRRLLAHIWRADVGRVPLLLLDSNVPGNDDAARGITDRLYGGGGDHRLQQELLLGMGGVKALRLYQRLTGRAAPEVFHTNEGHAGFLGIERIQELMSGEQALSFDEALAAGRASTVFTTHTPVPAGIDRFEVSQIQHFFQAGLAPAVPVDRILELGRENYADGNPSVFNMAVMGLRLAQRANGVAKLHGEVSRGMFSALWPGFDHSEVPITSVTNGVHVPTWVDGRISKLAREQFGTEAEAMGRWDLAYNVSDADVWALRREMRTALVEDVRRRLRAAWKKRGAADAELGWTDSVLDPDVLTIGFARRVPTYKRLTLMLREPARLKALLLHKEHPIQLVIAGKSHPADDAGKKMIQDLVLFADDPEVRHRIAFLPNYDIAMARTLFPGCDVWLNNPLRPLEACGTSGMKAAINGSLNLSVLDGWWDEMYDGENGWAIPTANNDASPEERDDIEAAALYELLESEVAPRFYGSTVSEEAGAAGPSTSEMEKVPTHWVSMIKHTLSHLGPAVSAERMLHDYVNILYRPAAEAGRAAVADSYAQSRTLAAWIAKVRSAWPLLHVEHVDSVGVSEDPQIGDTLQVNAYVALHSLTPDDVAVEVAYGRAEESDTLTDITVMELKPQEDLGNGRHLFTGSLVIDRSGSFGYTVRVLPRHEALASKAELGLIVNAPGPT0018545_513DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018545-glgP-K00688NANA
D1-29_008912082glgE1COG0366Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 1GTGACGACTAACTTTGGAACCACTGCCGCATCAAAGCAAAAGCCGAAAGGCCGGATCGCTGACGGCCTGCGGTTTGGCCGTTTTCCCATCACGGACGTGCAGCCCGTGGTGGAAGGCGGAAAGTTTCCCGCCAAGGCCTTGCCGGGTGAAGGAATCGTGGTGGGCGCCACCGCTTTCCGCGAGGGACATGACCAGCTCGGCGTGAGCGCCGTCCTTCTAGATCCCCGGGGCAAGGAGCGCCAGCGCGTCCGCCTGGCCCCGCCCAGGGGCGGACGAGGGATGGGGACCGACCGCTGGGAAGGCATCCTCACGCCGTCGGGAACGGGAACCTGGTCATTCATCATCGAGGCCTGGCACGACCGCTACGGGACCTGGCACCACAACGCCGAGGTCAAGGTAGGGGCCGGGATCGACGTCGAGCTGATGCTCGCCGAGGGTTCGGCACTCCTCGCAGAAGCCGCCGACGACGCCTCCCGGAGTGCCGCCGACAGGCGCACCCTGCGGGCGGCAGCCGCCACCCTTGCCAACGGCTCACTGACTGATGAGGAACGGCTCGCTGCAGGATTCGGTCCGGACATCACGGACCTTGTTAACCGTCAGCCCATCAGGGAACTGGTCACCGTGTCGGAGCGCTTCCCACTCTTCGTGGAGCGCGACCTCGCCGGCCGCGGTGCCTGGTACGAATTCTTCCCCCGCTCTGAGGGCGCTGTCCGGGACCCTGCCACAGGCACCTGGACCTCAGGCAACTTCCGCACCGCGGCGAAGCGCCTGGAGGCGGTGGCGGCCATGGGCTTTGACGTGCTCTACATGCCTCCCATCCATCCCATCGGTGTTCAGCACCGCAAGGGACCCAACAACACGCTGATTGCAGGCCCCAACGATCCCGGTTCACCCTGGGCCATTGGCGCCAAGGAGGGCGGCCACGACGCCATCCACCCCGATCTGGGAAGCTTTGACGATTTTGACGCCTTTGTGGCCCACGCCAACGAACTCGGGCTCGAAGTTGCGCTGGACCTCGCGCTCCAGGCGGCCCCGGACCACCCCTGGGTGGAATCGCACCCTGAATGGTTTACCACCCGGGTGGATGGAAGCATTGCCTACGCGGAAAATCCGCCGAAGAAATACCAGGATATTTATCCGCTCAATTTCGACAACGACCCCGAAGGCCTGTCCAAGGAAATCCTGAGGGTGGTCCTGCTGTGGGTCAGCCACGGCGTGAAGATTTTCCGGGTGGATAATCCGCACACCAAGCCCGTGTGGTTCTGGGAATGGCTGATCGGGCAGGTCAACAAGAAGGCGCCCGGCGTAGTGTTCCTTGCCGAGGCCTTCACCCGCCCGGCCATGATGCACGCCCTGGGCAGGGCCGGATTCCAGCAGTCCTACACGTACTTCACCTGGCGGAACACCAAGAAGGAGCTGGAGGCGTACTTCACGGAGGTCAGCCACGAATCCGCGGCCTACTTCAGGCCCAACTTCTTTGTGAACACCCCGGACATCCTCACGGAATACCTGCAGTACGGCGGACCACCCGCGTTCAAGATCCGGGCAGCGCTGGCGGCGACGGCCAGCCCGCTGTGGGGTGTGTATGCAGGCTACGAGCTGTATGAGCACGTGGCCCGCCCGGGTGCCGAAGAGTACATCGACAACGAAAAGTTTGAGTACAAGGCCCGCGACTGGGACGCCGCCGAAGCGTCCGGACGCTCCCTGGCGCCCTACATCACCAGGCTCAACGAGATCCGGCACGCGCATCCGGCGCTGCAGGACCTCCAGAACCTCACGGTGCACCAGAGCACGGATGACGCCACCATCGTCTACTCCAAGCACAAGACCCTCGCGGATGGCACCAAGGACACCCTCATCGTGGTAGTCAATGTTGATCCGCACGGGACAAGGGAGAGCACCGTTTCGCTGGACCTTCCCGCGCTCGAACTGGACCCGGCGGACCTTTCGCACAACGGCGGCTTCTGGGTGGACGACCTGATCTCGGGTGAATCCTGGGAATGGGGCGAATACAACTATGTCCGCCTGGACGCACACGTTGAACCCGCACACATCCTGAGAGTGAGGAGAATTCATCAGTGAMTTNFGTTAASKQKPKGRIADGLRFGRFPITDVQPVVEGGKFPAKALPGEGIVVGATAFREGHDQLGVSAVLLDPRGKERQRVRLAPPRGGRGMGTDRWEGILTPSGTGTWSFIIEAWHDRYGTWHHNAEVKVGAGIDVELMLAEGSALLAEAADDASRSAADRRTLRAAAATLANGSLTDEERLAAGFGPDITDLVNRQPIRELVTVSERFPLFVERDLAGRGAWYEFFPRSEGAVRDPATGTWTSGNFRTAAKRLEAVAAMGFDVLYMPPIHPIGVQHRKGPNNTLIAGPNDPGSPWAIGAKEGGHDAIHPDLGSFDDFDAFVAHANELGLEVALDLALQAAPDHPWVESHPEWFTTRVDGSIAYAENPPKKYQDIYPLNFDNDPEGLSKEILRVVLLWVSHGVKIFRVDNPHTKPVWFWEWLIGQVNKKAPGVVFLAEAFTRPAMMHALGRAGFQQSYTYFTWRNTKKELEAYFTEVSHESAAYFRPNFFVNTPDILTEYLQYGGPPAFKIRAALAATASPLWGVYAGYELYEHVARPGAEEYIDNEKFEYKARDWDAAEASGRSLAPYITRLNEIRHAHPALQDLQNLTVHQSTDDATIVYSKHKTLADGTKDTLIVVVNVDPHGTRESTVSLDLPALELDPADLSHNGGFWVDDLISGESWEWGEYNYVRLDAHVEPAHILRVRRIHQPGPT0018610_507DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147NANA
D1-29_008921797treS_1COG0366Trehalose synthase/amylase TreSGTGAGTTTTAACCCGCAGGGCTCCAGTCAGCATTTCACCCCCAAGAGCACGTTTGAGCTAAACGCGCCCGGCCTCCAACATGACCCCTTGTGGTATCGGAAGGCAGTGTTCTACGAGGTGCTCGTGAGAGCCTTTGCGGACGCCAACGGTGACGGTTCAGGCGACTTCCACGGACTCATCGACAGGCTGGACTACCTGCAATGGCTGGGGGTGGACTGCCTGTGGCTGCCGCCGTTTTTCCAGTCACCTCTGCGCGACGGCGGATATGACATCTCCGACTACAACTCCGTGCTTGATGAGTTCGGCACCATCACGGACTTCAAGCGCCTCGTGGCCGAAGCCCATGCGCGCGGCGTCCGGGTCATCATCGACCTCCCGCTGAACCACACGTCGGACCAGCACCCCTGGTTCCAGGAATCCCGCAAGGATCCCGATGGCCCGTTCGGTGACTTCTACGTGTGGAGCGACACGGACGAGAAGTACCAGGATGCCCGCATCATCTTTGTGGACACGGAGGAATCAAACTGGAGTTTCGATCCCATCCGTCGCCAGTTCTTCTGGCACCGCTTCTTCAGCCACCAGCCTGATTTGAACTTTGAGAACCCCAAGGTCATTGATGCGCTCTTTGACGTTGTCAGGTTCTGGCTGGACCAGGGCATCGACGGCTTCCGCGCTGATGCCATCCCTTACCTCTTCGAGGAGGAAGGGACCAACTGCGAAAACCTTCCCGCCACCCATGACTTCCTGCGCAAGCTGCGGACCATGGTGGACGAGAGCTACCCGGGCCGCGTCATCATCGCCGAGGCCAACCAGCCTCCCAACGAGGTGGTGGAGTACTTCGGTACAGAGGCCGAGCCTGAATGCCACATGGCCTTCCATTTCCCCATCATGCCGCGCCTCTACTACGCGCTGCGTGACCAGAAGGCCGCCCCGATCATCGAGACGATGCATGACACCCCGGAAATTCCGGAGGGGGCGCAGTGGGGGACCTTCCTGCGGAACCATGATGAACTGACCCTGGAAATGGTAACGGCGGATGAACGTGCCGCGATGCTCGGCTGGTACGCACCGGACCCCCGGATGCGGGCCAACATCGGTATCCGCCGCCGGCTGGCGCCCCTGCTGGACAACTCCAGGGCCGAGATCGAGCTGATCCACGCCCTGCTGCTCTCGCTCCCGGGGAGCCCGTTCCTGTACTACGGGGACGAGATCGGCATGGGGGACAACATCTGGCTTGAAGACCGCGACGCCGTGCGTACTCCCATGCAGTGGAATCCGGACCGTAACGCCGGCTTCTCCGACGCGGATCCCGGCAAGCTGTACCTTCCGGTCATCCAGTCGCTTGTGTACAACTACAGCATGGCCAACGTCGAGGCAGAGGCGGCTCATTCGGGTTCCCTGCTCCGCTGGACCAGGCAAATCCTCAGCGTCCGCAAGAACCACCCGGCCTTCGGACTGGGGAGCTTCAAACACGTCGAGGCAGACCACGACGCCGTCCTGGCGTACATCCGCGAGCTGTCCGATGACAACACGGCGGGAGCGGACGGAGAGTCCATCCTGTGCGCGTTCAATCTTTCCCAGCACCCGGTGGCGGCCAGGCTGCGGGTTCCGCAATTTGCCGGCCGCGGGCTCCGTGACGTGTTCGGCGGGCAGCCTTTCCCCGGCATCGACGACGACGGCACGCTGACGCTGACCCTGGGAAGCCATGATTTCTTCTGGCTTCGCGTCCGGTCGGCGGCATCCAACCCGGCCTCGCCCTACACTCAGGCGATGCCTATCCTGTCCATCGAGAACTGAMSFNPQGSSQHFTPKSTFELNAPGLQHDPLWYRKAVFYEVLVRAFADANGDGSGDFHGLIDRLDYLQWLGVDCLWLPPFFQSPLRDGGYDISDYNSVLDEFGTITDFKRLVAEAHARGVRVIIDLPLNHTSDQHPWFQESRKDPDGPFGDFYVWSDTDEKYQDARIIFVDTEESNWSFDPIRRQFFWHRFFSHQPDLNFENPKVIDALFDVVRFWLDQGIDGFRADAIPYLFEEEGTNCENLPATHDFLRKLRTMVDESYPGRVIIAEANQPPNEVVEYFGTEAEPECHMAFHFPIMPRLYYALRDQKAAPIIETMHDTPEIPEGAQWGTFLRNHDELTLEMVTADERAAMLGWYAPDPRMRANIGIRRRLAPLLDNSRAEIELIHALLLSLPGSPFLYYGDEIGMGDNIWLEDRDAVRTPMQWNPDRNAGFSDADPGKLYLPVIQSLVYNYSMANVEAEAAHSGSLLRWTRQILSVRKNHPAFGLGSFKHVEADHDAVLAYIRELSDDNTAGADGESILCAFNLSQHPVAARLRVPQFAGRGLRDVFGGQPFPGIDDDGTLTLTLGSHDFFWLRVRSAASNPASPYTQAMPILSIENPGPT0014120_686DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
D1-29_008933675glgB1,4-alpha-glucan branching enzyme GlgBATGAATCAGCCAACCCTCACCCCTGAACTGGGGGCAGTCCTTCGGGAATGGTTGCCGCGGCAGCGCTGGTTCCCGGTCAAGTCAGCCGATTTTTCGCTGGAACTGGCGGGTGGCCTGAACCTGGAAGATCCCGCCAGGAAGGTCCACCTGGAGGTTTTCCTGCTGGCGGTGACGTCGCGGACGGCCGACGGCGGGAGCCGCACCGACGTTGTCCAGGTCCCTCTGAGCTACCGGAGTGCGCCGCTGGCCGGGAGCGAGCGGGCACTGGTCGGCCAAGCCGAATCCGGCGACGCCGGGCCGGCATGGATCTATGACGGCGTCCACGATCCGGCCTTCGTTTCCGCCTGGCTGGAGCTGATCCGCACCGAAACCGGCTCCGGCACGGTTAAGGGCCACCGCGTACCTTCGGACCATCGTCTGCCCACCGCCCATGGAATGGTCAAGGTCCTGTCCGGAGAACAATCGAACAGCTCCGTCATCGTTGATGACGGCGAGTCCGCCGCGATTGTGAAATTCTTCCGGGTGCTCTCGGAAGGGACGAACCCGGAAGTGGAAGTGGGGGCTGCCCTCACCGCCGCAGGCACGTCCGAAGTTCCGGCCACGCTTGGTTGGGTCAGCAGCGCATGGCAGGTGGCCAGCCTGACCGCGGGCGCCCGTCTGGCCGAGGGCGAACTGGCAGTCGCCCACGAATTTCTGGCCGGCGGCCGGGACGCGTGGCGCCTCGCCGTTGACGCGGCCCGGACCGGCACCGACTTCACGGCTGAAGCGCACGCCCTCGGGGCGGCCACAGCCACCGTCCATCGCAGGCTCGCCGACGCCCTGGGTACCTCCAAGGAATCCGAGCCGGGGGAGATCATCGCTCCCGCAGTAGCCCAGCGGGTGCGGCAGGCATGGGCGGAAGCCGGTGCCGCCGTCGGGCCCTACGACCAGGAGCTCACCGCACTGCTCACCGAGCTCGACGGCGTGCCGGCCGGTCCATTGCAGCGGATCCACGGCGATCTCCACCTTGGCCAGATCCTGCAGGTGCCCGGGCACGGCGACGATCCTGAACGGTGGGCCATCCTGGACTTTGAAGGTGAACCGCTGCGGCCCATCGCCGAACGCAACCTCCCCGACGTTCCGCTCCGCGACGTCGTGGGCATGCTGCGCTCGTTTGACTACGCGGCCGGGGCAGCAGAACGCGAGTACCAGGGTGCACACATCGTGGAGACGTGGGTGGACGATTGCGCCGACGCCTTCATAGCCGGCTATACAGAGGTCACACCCGGCACCATCGACCGCAGCTCGCCGCTCTTTGTGGCATTGTGGCTGGACAAGGCGCTCTACGAAGTTGTTTATGAGTTGCGGAACAGGCCTGACTGGCTGGCGATTCCAGTGAACTCCTCCAGACGGCTCCTCAGCGGTAAAGGCTCCGGCGATCAGGCCGGGGCGGCATCGGAAGGTAACGAAATGACAGGCTCAGCACGTACTGATCGGCCGCATGCGCCGCTTCACGTGAACCCAGATACCCTCGGCCAGGTGGCAAACGGTGAGCATCACGCGCCGCACTCAGTCCTGGGTGCACACCTGGACGACCACGGCCACGTGACCATCCGGACCGTGAAGCACCTCGCTGCGTCCGTGTCCGTCGTCACTGCCGCCGGTTCCGTGCCCATGACGCACGAGGCACACGGCGTCTGGGCTGCAGTGCTTGAACCACTTCAGCCGGGCCATGTTCCCGATTACCGGCTGGAAGTTGCCTACCCGGGTGCAGAGCCAGTGGTGGTGGACGAGCCCTACCGCTACCTTCCCACTGTGGGTGAAGTGGACCTGCACCTGATCGGAGAGGGCAGGCACGAGAAGCTGTGGGAGGTGCTGGGTGCGCATGTCCAGCACTACAAGTCCTCACTTGGCGACGTCGACGGCGTGTCCTTCGCCGTCTGGGCGCCCAACGCACAGGCCGTTCGTGTCAAGGGCGACTTCAACGCCTGGGACGGCCGCGAGCATTCGCTCCGTTCCCTGGGCTCGTCCGGGGTGTGGGAAGTCTTCCTGCCCGGCGTTTTAGCAGGGGCGTGCTACAAGTTCGAGATCAAAACCAAGGGCGGCTACTGGGTCGAAAAGGCCGATCCGCTTGCTTTTGGTACAGAGGTTCCGCCCCTGACTGCGTCCCGGGTGGTGGAACCGTCCTACGTCTTCAAGGACGACGAATGGATGGAGGCGCGGGCCCAGCGGGATCCGCACAACTCGCCCATGAGTGTTTACGAAGTCCACCTAGGCTCGTGGCGGCTGGGCCTCGGCTACCGTGAGCTGGCCAAAGAGCTGGTGGACTACGTCAAGTGGCTGGGATTCACCCACGTTGAGTTCATGCCCGTGGCCGAGCACCCGTTCGGTGGTTCCTGGGGTTACCAGGTCACCTCCTACTTCGCCCCGACGTCGAGGTTCGGCCACCCGGATGAGTTCCGCTTCCTGGTGGACGCGCTGCACCAGGCCGGAATCGGTGTGCTTCTGGACTGGGTTCCGGCGCACTTCCCGAAGGATGCCTGGGCGCTGGCAGAGTTCGACGGCGAGCCGCTGTACGAGCATGCCGATCCGAACTTGGGTGAGCACCCGGACTGGGGCACGCTGATCTTCGACTTCGGCCGGACCGAAGTCCGGAACTTCCTGGTCGCCAACGCGCTCTATTGGCTTGATGAATTCCACATCGACGGGCTCCGCGTGGACGCCGTGGCCTCTATGCTCTACCTGGACTACTCCCGTGAAGACGGCCAATGGTCACCCAACAGGTTTGGCGGCCGTGAAAACCTGGAAGCCATTTCCTTCCTCCAGGAAGTCAACGCCACGGTCTACAAGACCCACCCTGGCGCGGTCATGATCGCTGAGGAATCCACGGCGTTCCCCGGAGTGACGGCACCAACCAGCCACGGCGGCCTGGGCTTTGGCCTGAAGTGGAACATGGGCTGGATGCATGACTCCCTCAAGTACGCCTCCGAGGATCCGGTCAACCGCAAGTGGCACCACGGCACCATCACGTTTTCCATGGTCTACGCCTTCACCGAAAACTTCCTGCTGCCCATCAGCCATGATGAGGTAGTGCACGGCAAGGGCTCCATGCTCCGAAAGATGCCCGGTGACCGCTGGCAGCAGCTCGCCAACCTGCGGGCCTTCCTGGCGTACCAATGGGCACACCCGGGCAAGCAGCTCATCTTTATGGGCACCGAGTTCGGGCAGGAAGCCGAATGGTCAGAGCAGCATGGCCTGGACTGGTGGCTTGCGGACATCCCCGCACACCGCGGAATGCAGCTGCTCACCAAGGATCTGAACGAGCTATACAGCTCGACGCCGGCGCTCTATTCGCGCGACAACGAGCCCGGAGGCTTTCAGTGGATCAACGGCGGCGATGCTGACCGGAACGTCCTGACCTTCGTTCGCTGGGACACTGAAGGTAATCCGCTGGTCTGCGCCGTGAACTTCTCCGGGGGCCCGCACGTCGGTTACCCCTTGGGCGTGCCGGAGGATGGCGCCTGGACGGAAGTTCTGAACACCGATTCATCCGCGTACGGGGGATCTGGTGTGCTGAACGGGGGAAGCCTCACCGCACTCCCGAAGGGACTCGATGGCCAGCCGGCAACCCTGACTGTGACGTTGCCGCCACTGGGCGCAGCGTACTTCAAGCCGGCCGGCCCCGCGGTCAAGTAGMNQPTLTPELGAVLREWLPRQRWFPVKSADFSLELAGGLNLEDPARKVHLEVFLLAVTSRTADGGSRTDVVQVPLSYRSAPLAGSERALVGQAESGDAGPAWIYDGVHDPAFVSAWLELIRTETGSGTVKGHRVPSDHRLPTAHGMVKVLSGEQSNSSVIVDDGESAAIVKFFRVLSEGTNPEVEVGAALTAAGTSEVPATLGWVSSAWQVASLTAGARLAEGELAVAHEFLAGGRDAWRLAVDAARTGTDFTAEAHALGAATATVHRRLADALGTSKESEPGEIIAPAVAQRVRQAWAEAGAAVGPYDQELTALLTELDGVPAGPLQRIHGDLHLGQILQVPGHGDDPERWAILDFEGEPLRPIAERNLPDVPLRDVVGMLRSFDYAAGAAEREYQGAHIVETWVDDCADAFIAGYTEVTPGTIDRSSPLFVALWLDKALYEVVYELRNRPDWLAIPVNSSRRLLSGKGSGDQAGAASEGNEMTGSARTDRPHAPLHVNPDTLGQVANGEHHAPHSVLGAHLDDHGHVTIRTVKHLAASVSVVTAAGSVPMTHEAHGVWAAVLEPLQPGHVPDYRLEVAYPGAEPVVVDEPYRYLPTVGEVDLHLIGEGRHEKLWEVLGAHVQHYKSSLGDVDGVSFAVWAPNAQAVRVKGDFNAWDGREHSLRSLGSSGVWEVFLPGVLAGACYKFEIKTKGGYWVEKADPLAFGTEVPPLTASRVVEPSYVFKDDEWMEARAQRDPHNSPMSVYEVHLGSWRLGLGYRELAKELVDYVKWLGFTHVEFMPVAEHPFGGSWGYQVTSYFAPTSRFGHPDEFRFLVDALHQAGIGVLLDWVPAHFPKDAWALAEFDGEPLYEHADPNLGEHPDWGTLIFDFGRTEVRNFLVANALYWLDEFHIDGLRVDAVASMLYLDYSREDGQWSPNRFGGRENLEAISFLQEVNATVYKTHPGAVMIAEESTAFPGVTAPTSHGGLGFGLKWNMGWMHDSLKYASEDPVNRKWHHGTITFSMVYAFTENFLLPISHDEVVHGKGSMLRKMPGDRWQQLANLRAFLAYQWAHPGKQLIFMGTEFGQEAEWSEQHGLDWWLADIPAHRGMQLLTKDLNELYSSTPALYSRDNEPGGFQWINGGDADRNVLTFVRWDTEGNPLVCAVNFSGGPHVGYPLGVPEDGAWTEVLNTDSSAYGGSGVLNGGSLTALPKGLDGQPATLTVTLPPLGAAYFKPAGPAVKNANANANANA
D1-29_00897519hypothetical proteinATGGACAACCTCTTCAGCCACGCGGATGACTCCCTCCCAGGCACTGCTGAATCCCGGGATTCCCTGGACCCGGTCATCTGTACTGTCACGGTTCCAGGTCCGGTTGCCCAGGCCTTTGCCGGCTTCACCGACCACACGCATCTGTGGTGGCCACTCGAGTCGCACGGCGTCTACGGCGCGGGTTCCTACGTCGAGTTCGAGGAAAACCTCATCCTGGAAACTGCCGATGACGGACGAACCACTATCTGGGGCACCATTGATGACTGGCAGCCGCCGCTGTCCTTCCACGCGTCCTGGCATCCGGGAACCACCGCACTGTGGTCCACAGAGTTGCGTGTGGCCTTCAGGGCCGTTTCGGACGGGACAGAGGTCCGCCTGGTGCACGACGGCTGGGAGGGCGCTGAGGATCCTTCTGCGACGCGTGCCTCGTATGAGGCCGATTGGCCAACGGTACTGGAACGCTTTGTGCGTTTTATGGGTGGAACGGGCCCGGACGGGGACGAAGCCGGGCCGGCCTAAMDNLFSHADDSLPGTAESRDSLDPVICTVTVPGPVAQAFAGFTDHTHLWWPLESHGVYGAGSYVEFEENLILETADDGRTTIWGTIDDWQPPLSFHASWHPGTTALWSTELRVAFRAVSDGTEVRLVHDGWEGAEDPSATRASYEADWPTVLERFVRFMGGTGPDGDEAGPANANANANANA
D1-29_008981086ccpA_6COG1609Catabolite control protein AGTGGGACTTGCGGGGATCAAGGACGTCGCCGACCGGGCAGGGCTGTCAATTGCAACGGTTTCGCGGGCGCTCAGCGGCAAGGCCAATGTTTCAGCCAAAAGCCGCCAGCTTGCGCAGGCGGCTGCCGAAGAACTTGGCTTTGTTCCGTCCTACCATGCCTCCAGCCTTGCATCAGGGCGCAACCATAATGTCGGCCTGGTGGTTCCCTCGGTCCACCGCTGGTACTTTTCGTCCGTGGTGGAGGGCGTGTCTGCGGCCCTGCTGGACGCAGGGTATGACCTGACGCTCTACAACGTGGGAGACCAGCCGGAGCGGCGCCACAGCGTCCTGAACGACTTCCTGCTCCGTAAAAGGCTGGACGCGGTCATCGCTGTCGCTTTGGTGCTCACCGACGCCGAAATCCAGCAGCTGCTTGCCATCCACCGGCCCATCGTTGGAATTGGCGGGGCGCTGACCGGGGCGTCCACCATCAGGATCAACGATGCCGGCCTTTCCTTGATGGCCATGGAACACCTGCTCCGGCTGGGACACACCCGGATCGCCCACATGACGGGTTATGCCGAGCTCAACCAGGACTTCAAGCTGCCGGGGATCCGGCAGACGGGCTTTGAGACAGCCATGAAGACTGCTGGGCTCCCCGTGCGGCCCGAATGGCAGGTGGATGCGGACTTCACCATCCAAGGCGCCTACGCCAGTGCCCGAAGGCTCCTTGGTACGGCGTCGGAGCGGCCAACCGCGGTGTTCGCGGCATCGGACGAGATGGCCATCGGCACGATTCTTGCGGCACGGGACTTCGGCCTTCGCGTACCCCAGGACCTGTCAGTCATCGGCATGGACGGCCACGAACTCGGCGAAGTGTTTGGGCTGACCACCATCAACCAGGATGCCCGGGGACAGGGAGCCCTGGCGGCCAAAATGCTGTTGGCAAGCCTTGATGCCGGCGCGCAAACCGGGACAAGGCAGCCGGCGTCCCGGCAAGGCCTCAAGCAACGCTCCAAGCGCACGTCGGGAAGTCCAGACACAGTGGACCATGAATACCCCACCGAGTTTGTGATCAGGACGAGCACCGCCGTACCGCCGGTTTAGMGLAGIKDVADRAGLSIATVSRALSGKANVSAKSRQLAQAAAEELGFVPSYHASSLASGRNHNVGLVVPSVHRWYFSSVVEGVSAALLDAGYDLTLYNVGDQPERRHSVLNDFLLRKRLDAVIAVALVLTDAEIQQLLAIHRPIVGIGGALTGASTIRINDAGLSLMAMEHLLRLGHTRIAHMTGYAELNQDFKLPGIRQTGFETAMKTAGLPVRPEWQVDADFTIQGAYASARRLLGTASERPTAVFAASDEMAIGTILAARDFGLRVPQDLSVIGMDGHELGEVFGLTTINQDARGQGALAAKMLLASLDAGAQTGTRQPASRQGLKQRSKRTSGSPDTVDHEYPTEFVIRTSTAVPPVPGPT0021075_1159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-29_008991731malL_3COG0366Oligo-1,6-glucosidaseATGTCCGTAGATACAGTGATCTCCACCACAGCGCACCTGACAGGTCCGCTGACCCTCATCCACGACGCCGATACAGTCCCGGGCTGGTGGCGGTCCGCCGTCATCTACCAGGTCTACCCCAGGTCCTTCCGCGACCTTAACGGCGACGGCATCGGAGACATCCCGGGTATCACGGAGGAGCTTGCTCACCTCGCCGAGCTGAATGTGGACGCCGTCTGGCTGTCACCCTTTTACCGCTCCCCGCAGAGGGACGCCGGTTACGACGTCAGCGACTACTGCGACGTTGATCCGATCTTCGGCACGCTGGGTGATTTCGACGTCATGATGGCCGAGGCAAACCGGCTGGGCCTCCGGGTCATTGTGGACCTTGTACCCAATCACTGCTCTGACCAGCACGTGGCCTTCCAGGCCGCGCTCTCAGCCCCTGCAGGCAGCCCTGAGCGGGACATGTTCATCTTCCGTGACGGCACCGGGCCTGACGGAAACGAACCGCCCAACAACTGGCAGTCCCATTTTGGCGGCCCTGCGTGGACGCGGGTCACCGGGCCCGACGGCCGGCCCGGCCAGTGGTACCTGCACCTCTTTGATTCGTCCCAGCCGGATTTCAACTGGGACAACCCAGCCGTCCACGCGGAATTTGAGCGGGTGCTCCGCTTTTGGCTTGACCGCGGCGTTTCCGGCTTCCGGGTGGACGTGGCCCATGCCCTGGTCAAGGCTCCCGGACTCCCCGGGTGGGGCGGCCGCGCCGACGGCGGGAGCTCGTACGGCTTCCCGGGCCACGAGGCTCCAATGTTCGGCCAACCTGCTTTGCACGACATCTACCGTGCCTGGCGCCTCATCCTTGACCAGTACGGGCCCGACCGCATCCTGTGTGCCGAGGCCAATGTGGATCCGCTGCCGCGCCTGGCGAACTGGGTCAAACCAGACCAAATGCACCAGGCCTTTAACTTCCCGTTCCTGCACGCCGGGCTGGACGTGTACAGGCTCAGGTCCGTCATCACGGATTCACTGACGGCATTGGACGCCGTGGGAGCACCCAGCACCTGGGTGCTGTCCAACCACGACGTCGTACGGCACGCCTCGCGGTTTGGCTACAACGGCTCAGGACCACGGGACGGCGACGGAATCGGGCCGGCGGATCCGCAGCCCGATATGGCGCTGGGCCGCAGGCGGGCAGCAGCAGCCTCGACGTTTATGCTGGGGCTCCCCGGCGCCGCCTACCTCTACCAGGGTGAGGAGCTGGGCCTCCCGGACGGCATAGACATCCCTGAGGGGCTGCGGCAGGACCCCACGTTTGCCCGCACCGGTGGCGAACGGCTGGGCCGTGACGGCTGCCGGGTTCCACTCCCCTGGCGCGCGGCGGAGCGGCACGCCGGCTTCGGTTCCGGGCAGGACCCGTGGCTGCCCTTGCCGGCAAGCTTCACTGAACTGTCAAGGGACGTGCAGGCTGCCTCGCCGTCGTCGCACCTTTCGCTGTACAGGCGGACTTTGGCGCTCCGGCGCGAACGCGACTTGGGCCGCGGATCCTTGGCCTGGGCAGAGGAATGGTGCACGGGCTCATCACTGGCATACGTGAACGGCGCTACGCTGGTGCTTATGAACCTGAACCACGAGTCCCTGGAGATGCCTGCAGGGGACGTCCTGCTGCGCAGCGCCGAGCCTGACCTGGGTCACTACCTGGCTTCCGGCGAAACCGCCTGGCTGCGCATTGACGGGCGCGGCGCCGAGTAGMSVDTVISTTAHLTGPLTLIHDADTVPGWWRSAVIYQVYPRSFRDLNGDGIGDIPGITEELAHLAELNVDAVWLSPFYRSPQRDAGYDVSDYCDVDPIFGTLGDFDVMMAEANRLGLRVIVDLVPNHCSDQHVAFQAALSAPAGSPERDMFIFRDGTGPDGNEPPNNWQSHFGGPAWTRVTGPDGRPGQWYLHLFDSSQPDFNWDNPAVHAEFERVLRFWLDRGVSGFRVDVAHALVKAPGLPGWGGRADGGSSYGFPGHEAPMFGQPALHDIYRAWRLILDQYGPDRILCAEANVDPLPRLANWVKPDQMHQAFNFPFLHAGLDVYRLRSVITDSLTALDAVGAPSTWVLSNHDVVRHASRFGYNGSGPRDGDGIGPADPQPDMALGRRRAAAASTFMLGLPGAAYLYQGEELGLPDGIDIPEGLRQDPTFARTGGERLGRDGCRVPLPWRAAERHAGFGSGQDPWLPLPASFTELSRDVQAASPSSHLSLYRRTLALRRERDLGRGSLAWAEEWCTGSSLAYVNGATLVLMNLNHESLEMPAGDVLLRSAEPDLGHYLASGETAWLRIDGRGAEPGPT0018560_3118DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-29_009001371COG0277putative FAD-linked oxidoreductaseGTGGGCAGCATTGTTGAGGAGCTTGAAGGCACCCTCGGTCAGGAAAAAGTGAGCACCGACGAGGTCACCTTGGCCCGGTACGCCCTGGATCAGGGGCCAGTCCTGGACTACCAGCTGCCGGCTGCGGTGGTCTTCGCGGAGTCAACAGCCGACGTGCAATCGACGGTCCGGAGTTGTGCGGCCATGGGTGTGGCGCTGATAGCCCGTGGAGCGGGAACAGGGGTTTCCGGCGGTGCGCACGCCAGCAGGAACTGCGTGATCCTGTCCCTTGAACGGATGGACCGCATCCTGGACCTGAACCCGGATGACGAGACCGCCGTCGTCGAACCCGGAGTGGTCAACGCAGTCCTGAATGACGCCGCGGCGGCGCACGGGCTGATGTATGCGCCGGATCCGGCCAGCTTCCGCACCTCCACCATCGGGGGAAATGTGGCCACCAACGCCGGCGGCCTCCGCTGCGCCAAGTATGGCGTCACCAGGGATTCCGTCCTGGCACTGGACGTGGTGCTGGCCGACGGGTCCCTCATCCATACCGGCCACCAGACCTTCAAGGGCGTTGCAGGGTATGACCTCACAGGGCTTTTCGTCGGTTCCGAGGGGACGCTGGGAATCGTGGTGGGCGTAACTGTCCGGCTCAAATACCTGCCCCGGGACATCCACACCATCGCCGCCTTCTACCCGGACTTCCGGCTCGCCGCCGCCGGCGTCCTCGCGGTGGGCAGGGCGCGCGTTCAGCCTGCCATCATGGAACTGCTCGACGGCGGCACGCTGGCCCAGCTGGACAGCATCCACGGCTCGGACCTGAGTTCCCGGGGCCGGTCATTGCTCCTGATCCAGACGGACGGGTTCGGCGCCGCCGCGGAGGCGGACGTTGTCCGAAGGGTCCTGGCCGAGGGAGGAGCCGTAGTCACCATGGAGGCCAGCGCGGAGGCCGAGCACCTCGTGGAGCTGCGCCGGCACAGCAGGGGCGTGGAAGTGGATGACGAGTACAGGGTGGGCGAGGATGTGGCCGTGCCCCGCTCGCGCCTGGTTGATTACGTTGCCGCCCTGGAGGGCATGGCGGCCGCCCACGGAGTGAACCTTAAAGTGGTGGCGCACGCAGGCGACGGCAACCTCCATCCAACGTTCTGGGTGGACCGGCTGGACAATGCGGTGGATGAAGCCGCGATGGAGCGCCTGAACCTGGCATTGGACGCTTCCATTGACGCCGCGCTGGAGATGGGCGGCACCATCACCGGTGAGCACGGCATCGGACAGTACAAACTGCGCTGGCTGGGTCTGGAACAGCCTGAACCGGTCAGGGAGTTGCAGCGCAGGATCAAGCAACTGTTTGATCCGGCCGGAATCCTCAATCCCGGCAAGGCCATCTAGMGSIVEELEGTLGQEKVSTDEVTLARYALDQGPVLDYQLPAAVVFAESTADVQSTVRSCAAMGVALIARGAGTGVSGGAHASRNCVILSLERMDRILDLNPDDETAVVEPGVVNAVLNDAAAAHGLMYAPDPASFRTSTIGGNVATNAGGLRCAKYGVTRDSVLALDVVLADGSLIHTGHQTFKGVAGYDLTGLFVGSEGTLGIVVGVTVRLKYLPRDIHTIAAFYPDFRLAAAGVLAVGRARVQPAIMELLDGGTLAQLDSIHGSDLSSRGRSLLLIQTDGFGAAAEADVVRRVLAEGGAVVTMEASAEAEHLVELRRHSRGVEVDDEYRVGEDVAVPRSRLVDYVAALEGMAAAHGVNLKVVAHAGDGNLHPTFWVDRLDNAVDEAAMERLNLALDASIDAALEMGGTITGEHGIGQYKLRWLGLEQPEPVRELQRRIKQLFDPAGILNPGKAIPGPT0028045_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
D1-29_009011440hypothetical proteinATGTACGGAAGAATTGAACCCATGACCGAGGAATACAGCGCCCAGTGGCACGACGAACCCACCGACTACGCGCAGATCGGCAAACTGCCGCGGTTCGAGGCCGCGAGCGCCAATGATTCCAAGCTCTCGGCGGTTTCCAGTTCACTGAACATCACGGCCGCTGCGGCCGATCCGGAGCTCCTGGACCTGCCCTGGCACATCGCCCTTGAGGACTGGCCTGCAGAAAACCTCGCTGCCCTCCCCCGCGGCATCTCCCGGCACATCGTGCGTTTCGCCCACCTGGGCGGATCCGTCATTGCCATCAAGGAAACCTCGGAGCACGTCGCCCGCCACGAGTACCACATGCTCCGGAAACTGGCACGGCTGGACGTCCCCTGCGTGGAGCCGGTCGCGGTCATCACCGGCCGCACCACCCTGGATGGCAGGCCGCTGAACCCCGTGCTGGTCACCCGCCACCTGAAATTCTCCATGCCGTACCGTGCCCTCTTCTCCCAGATGCTGCGCAAAGACACGCTGACCCGCCTCATCGACGCCCAGGCGCTGCTGATGGTGCGGCTGCACCTCATCGGCTTCTACTGGGGCGACGTTTCGCTGTCCAACACGCTGTTCCGCCGTGACGCCGGCGCTTTCGCTGCCTATCTTGTAGACGCCGAGACGGGTGAGCTGTATCCGGATCTTTCCACCGGACAACGGGAGTACGATCTCGAGATCGCCCGGGTGAATATTGCCGGCGAGCTCATGGATCTGCTCGACGGCGGCCTGATCGAGGAAAAGGTGGACCCTGTGGCCACCAGCGAACTCATCATGGACAGCTACCGGCGGCTCTGGGCAGAACTGACGGAAAAGGAATCCTTCGAACTCGGAGAACGGTGGCGGGTGGGCGCGCGCATCCGCCGGCTCAACGAACTGGGATTCGACGTCGAAGAATACGCGATCAAGACCACCCAGAACGGCACCACCATCCAACTGCAGCCCAAGGTGGTGGATGCAGGGCACCACCAGCGGCGCCTCCTGCGGCTGACCGGGCTGGACGCCCAGGAAAACCAGGCCCGCCGGCTGCTCAACGACATGGACACGTTCCGCGCCGACAACAATCCGGACATGGACGAGGAATACAGCGCCCACCTTTGGGTCAGCCAGGTCTTCGAGCCCATCGTGCGTTCCATTCCGCGCGACCTCTCCGGCAAGCTTGAACCCGCGGAAGCCGTCCACGAGGTGCTGGAGCACCGCTGGTACATGTCAGAAAAGCAGGAGCGGCACATCCCGCTTGCCGAGGCCGTCCAGTCCTACATCGATTCCATCCTGCGACACCGCCGGGACGAGGCCGCGATCATGCTGAACCCGGACACTGAGCTTCTCAAGATCCTCGAAGTTGAAACTGAAGAATCCAGGTACGGTCCGGAGGAATCCATCGACGAGTACCCGGACGTGGACGACTAAMYGRIEPMTEEYSAQWHDEPTDYAQIGKLPRFEAASANDSKLSAVSSSLNITAAAADPELLDLPWHIALEDWPAENLAALPRGISRHIVRFAHLGGSVIAIKETSEHVARHEYHMLRKLARLDVPCVEPVAVITGRTTLDGRPLNPVLVTRHLKFSMPYRALFSQMLRKDTLTRLIDAQALLMVRLHLIGFYWGDVSLSNTLFRRDAGAFAAYLVDAETGELYPDLSTGQREYDLEIARVNIAGELMDLLDGGLIEEKVDPVATSELIMDSYRRLWAELTEKESFELGERWRVGARIRRLNELGFDVEEYAIKTTQNGTTIQLQPKVVDAGHHQRRLLRLTGLDAQENQARRLLNDMDTFRADNNPDMDEEYSAHLWVSQVFEPIVRSIPRDLSGKLEPAEAVHEVLEHRWYMSEKQERHIPLAEAVQSYIDSILRHRRDEAAIMLNPDTELLKILEVETEESRYGPEESIDEYPDVDDNANANANANA
D1-29_009021083msiKCOG3839Diacetylchitobiose uptake system ATP-binding protein MsiKGTGGCTACAGTTACTTTTGATAACGCTACGCGTCTGTACCCGGGCACAGAAAAGCCCGCCGTCGATAAGCTCAACATCGACATCGCCGATGGCGAATTCCTGGTCCTCGTTGGACCCTCCGGTTGCGGTAAGTCCACCTCGCTGCGCATGCTCGCAGGCCTTGAGGACGTCAACGCCGGCCGTATCCTCATTGGCGACCGCGACGTCACCGACGTCCCGCCGAAGGACCGCGACATCGCCATGGTGTTCCAGAACTACGCGCTGTACCCGCACATGACGGTTGCAGACAACATGGGCTTCGCACTGAAGATCGCCGGCGTCAGCAAGGAAGAGCGCGCCGAGCGTGTCCGCGAAGCAGCCAAGCTCCTTGACCTTGAGCCGTACTTGGACCGCAAGCCGAAGGCACTCTCCGGCGGCCAGCGCCAGCGTGTTGCCATGGGCCGTGCCATCGTGCGTAACCCGCAGGTCTTCCTCATGGATGAGCCGCTTTCCAACCTGGATGCAAAGCTCCGAGTCCAGACGCGTACGCAGATCGCATCCCTGACCCGCCGCCTCGGTGTCACCACTGTTTACGTGACGCACGACCAGGTCGAGGCCATGACCATGGGTGACCGCGTGGCTGTGCTGAAGGACGGCCTGCTGATGCAGGTCGACACCCCGCGCAACCTCTACGACAAGCCCAAGAACGTCTTCGTTGCCGGCTTCATCGGCTCCCCCGCCATGAACCTGCTCGAACTCCCCGTCGTCGACGGCGGCGTCCAGTTCGGCGGAACGGTTTACCCCGTGCCGCGCAACGTCCTCGAAGAAGCACACGGCAGCACCGTCACCCTGGGCTCACGCCCCGAGGACCTCGAGACCGCACCGGCTGGCGAAGGCCTCAAGGTTGAAGTTGACGTTGTTGAAGAGCTGGGTGCCGACGCCTACGTATACGGCCACACCACGCTGGACGGCAAGGACCACGACATCGTGGCACGCGTCGACGGCCGCCGTCCCCCGATGAAGGGCGAGGCCATCTACGTCCGTCCGCAGTCGGGCCACGTGCACCTGTTCGACACCAAGACCGGCCTGCGCCTGGGCGACTGAMATVTFDNATRLYPGTEKPAVDKLNIDIADGEFLVLVGPSGCGKSTSLRMLAGLEDVNAGRILIGDRDVTDVPPKDRDIAMVFQNYALYPHMTVADNMGFALKIAGVSKEERAERVREAAKLLDLEPYLDRKPKALSGGQRQRVAMGRAIVRNPQVFLMDEPLSNLDAKLRVQTRTQIASLTRRLGVTTVYVTHDQVEAMTMGDRVAVLKDGLLMQVDTPRNLYDKPKNVFVAGFIGSPAMNLLELPVVDGGVQFGGTVYPVPRNVLEEAHGSTVTLGSRPEDLETAPAGEGLKVEVDVVEELGADAYVYGHTTLDGKDHDIVARVDGRRPPMKGEAIYVRPQSGHVHLFDTKTGLRLGDPGPT0016310_4662DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016310-msmX|msmK|malK|sugC|ggtA|msiK-K10112NANA
D1-29_00904837otsBCOG0637Trehalose-phosphate phosphataseATGACTCCTGATACCCGCCCCGCCAAGGGCCCGCTGACCCTTTCTCCTGAGCTCCGTGAGGCGATCCGGAGGGTCGCGCAGACTGAACACCTGCTGGTTGCCATGGACTTTGACGGCACCATCTCCCCCATCGTTAACCGCGCCGACGACGCCCGGCCGCTTCCGCGATCGGCGATCGCTTTTGCGGGCCTTGCCGCCCTACCCAGGACGACGACGGCGCTCATCTCAGGGCGTGCCCTCGGCAGCCTCCGTGGCGTCGCGTCACCCCCTGTGGACACGCTGCTGATTGGCAGCCATGGCGCCGAAGCCTGGCTCGGCCCCGGCTCCACGGAGCTGACCCTGGATGAGCACCAGCGGGAGCTGCTTGGCGAGGTCCGCAGCATCCTTGAGGGCATCGTGGCGGAGGCTCCGGGCACTCTCCTGGAAGAGAAGCCCGCCGGAGTGGTCCTGCATACCAGGCTTGCCGCCGACGACGTTGCCGAGGACGCCGTGGCCGCAGCCCTGTCGCTGCTGCAGGAGCGCAAGGGCGTTTTCCTCAAGACCGGCAAGCGCGTCCTGGAGACGTCCGTGGTGAATGCTTCAAAGGGCGAAGCTGTGACGTTCCTGCGCCAGATCACCGGAGCAACATCGGTCCTTTTTGCCGGTGACGACACAACGGATGAGGACGCCCTGGCCAGGCTGGAACCCGGCGACGTGGGCGTCAAGGTGGGGCTCGACTTTACCCAGGCCGAGTTCCGGGTGGAGGCCCCGGTGCACGTCGCGGAACTGCTGGAAACGCTGCTGCATGAGCGAAGCCTGGCGGTGGCGGAGGAAGCGCCTGGACAGCTGGGAAGTTAGMTPDTRPAKGPLTLSPELREAIRRVAQTEHLLVAMDFDGTISPIVNRADDARPLPRSAIAFAGLAALPRTTTALISGRALGSLRGVASPPVDTLLIGSHGAEAWLGPGSTELTLDEHQRELLGEVRSILEGIVAEAPGTLLEEKPAGVVLHTRLAADDVAEDAVAAALSLLQERKGVFLKTGKRVLETSVVNASKGEAVTFLRQITGATSVLFAGDDTTDEDALARLEPGDVGVKVGLDFTQAEFRVEAPVHVAELLETLLHERSLAVAEEAPGQLGSPGPT0014140_1209DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087NANA
D1-29_009051503otsACOG0380Trehalose-6-phosphate synthaseATGCAAACACCTGTCCAAGAAAAACCCATAGCTGTACCTGATGCCGGCACCGCCGCGAATGGCCACAGCACCGGGACGAAGTACGACTTCATGGTGGTGTCCAACAGGCTGCCTGTGGACCGCTGCGCCACGGGAGAGGGCGGCGATGACGGCAGCGGGTGGCGCCGCTCGCCCGGCGGCCTGGTGACCGCGCTCGCTCCCATGATGACCAAGACCGACGGCGCGTGGGTGGGGTGGCACGGAGCTCCCGACGAGACGGTTAAGCCTTTCAGCCACGGCGGGATGGACCTCGTCCCGGTTCAGCTCAGCACCGAGGACGTTGAGCTGTATTACGAAGGGTTCTCTAACGCCACGCTGTGGCCGCTGTATCACGACGTCATCGCCCCGCCGGAGTTCCACCGGACCTGGTGGGATGCCTACCGCAGGGTCAACAGAAGGTTCGCCGACGCCGTCGTCCGCCATGCTGACGAAGGCGCCACGGTGTGGATCCAGGATTACCAGCTGCAGCTGGTGCCGAGGATGCTGCGCGAAGCGCGGCCGGACCTACGGATCGGGTTCTTCAACCACATCCCGTTCCCGCCTCCCGAGATCTTCGCCCAACTTCCCTGGCGGCAGGCCATCATTGACGGGCTGCTGGGCGCTGACCTGGTGGGCTTCCAGCGCGCCAGCGACGCCGGCAACTTCATGCGCTCAGCGCGGCGCTTCCTGGGTGCCAGCGTCAAGCAGCAGCAGGTGCACGTCAAGGGCCAGGATGATCAGGTTACGCACATTGCCCGGGCCCAGGCCTTCCCCATTTCCATCGACGTGGGCCATATCAGTGAGCTGGCCAGCAACCCGGACATCATTGAACGGGCCCGCCAGATCCGGCAGGACCTCGGCAATCCCAAGACCATCCTGCTCGGTGTTGACAGGCTGGACTACACCAAGGGCATCAGGCACCGGCTCAAGGCCTACGAGGAACTCCTGAACGAAGGCAAGCTCACGGTGGGCGACGCCACCCTGATCCAGGTGGCCAGCCCCAGCCGTGAGCGGGTGGAGCAGTACCGGCTGCTGCGTGAGGAGGTGGAGGGAACAGTGGGCCACATCAACGGCACGTACGACACCATCGAGAACACCGCCGTCCGCTACCTGCACCACAGCTACCCGGTGGAGGAGATGGTGGCCCTGTACCTTGCCGCCGACGTCATGCTGGTGACCGCCCTCCGTGACGGCATGAACCTTGTGGCCAAGGAGTATGTGACGGCCCGCAGGGACAACAACGGCGCCCTGGTACTCAGCGAGTTCGCCGGCGCGGCGGACCAGCTCAAGCAGGCGCTGCTGATGAACCCGCATGACATTGACGGCCTCAAGGACACCATCATGAGGGCCGTCAACATGTCCCCCAAGGACGCCGCACGGCGCATGCGGGCCATGCGCAAGCAGATCCTTGAACACGACGTGGACCACTGGTCCGCGGACTTCCTGACTGCCCTCAACGAGAAAGTGGTCCGCGATGACTCCTGAMQTPVQEKPIAVPDAGTAANGHSTGTKYDFMVVSNRLPVDRCATGEGGDDGSGWRRSPGGLVTALAPMMTKTDGAWVGWHGAPDETVKPFSHGGMDLVPVQLSTEDVELYYEGFSNATLWPLYHDVIAPPEFHRTWWDAYRRVNRRFADAVVRHADEGATVWIQDYQLQLVPRMLREARPDLRIGFFNHIPFPPPEIFAQLPWRQAIIDGLLGADLVGFQRASDAGNFMRSARRFLGASVKQQQVHVKGQDDQVTHIARAQAFPISIDVGHISELASNPDIIERARQIRQDLGNPKTILLGVDRLDYTKGIRHRLKAYEELLNEGKLTVGDATLIQVASPSRERVEQYRLLREEVEGTVGHINGTYDTIENTAVRYLHHSYPVEEMVALYLAADVMLVTALRDGMNLVAKEYVTARRDNNGALVLSEFAGAADQLKQALLMNPHDIDGLKDTIMRAVNMSPKDAARRMRAMRKQILEHDVDHWSADFLTALNEKVVRDDSPGPT0014135_347DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014135-otsA-K00697NANA
D1-29_00906891hypothetical proteinATGAGCCCCGCAAACGAAGTACGTAAGTCCAAGGCTGAGCGAACCGCGGAGGCACGCGAAAAAGCGCGCCTGATCCGCGAGGCCCAGCTGAAAAAGGACAAGCGCAACAAGCTGCTGATCGGCTGGGGCATCGTGGTGGCAGTGGTTGCAATCCTGGCGGTGGTAGCGCTGGTGGTAACCACCAGCATGCGGCAGAACGCAGAGATTGCCGAGCAGGGTCCCACCCCCGCAAACGGCAACATTTATGGCGGCGTCACATTACTCGCCAATACCGAAGTAGCCCCGACCGAGCCAGCCACCGTGAACGTGGCGGACCTGCCGGGTCCGCCGGAAACTGCCCCGGCCGAAGTGGTGGCCCCCGGGGCCGAAGCCGAAGAGGGCAAGCCCGTGAAGGTGGTTCTTTACATCGACTTCATCTGCCCCGCCTGCAAGAGCTTCGAGGCCCAGAACAACGCGCAGCTGACCACCCTTCGGAACGAGGGCAAGATTTCCGTGGAGTACCGCCCGCTGGGCTTCCTGGACACGCGGTCCACCACCAACTACTCCTCCCGCGCAGCCAACGCTGCCGCCTGTGTTGTCAACGAATCCCCGGAAAAGTACGCGGAGTTCGTGGACGAGCTGTTCGCTCAGCAGCCCAAAGAAGGTGGAGCGGGCCTGTCCGACAATGACCTGAAGAAGATGGCCACGGACATTGGCGCCAAGAATATCGATGCCTGCGTGGACAACAAGACCTACCGCCCCTACGTGGCGTACACCACCAAGCAGGCCGCGTCCATCGGCGTGACCGGCACGCCTACTGTGTTTGTGGACGGCAAGCAGTGGGGCAAGGGCGCCAGCGCCCAGACCCCGTTCCCCGAGTTCCTCCAGGCCGCGATCGACGCTAAGGGCTGAMSPANEVRKSKAERTAEAREKARLIREAQLKKDKRNKLLIGWGIVVAVVAILAVVALVVTTSMRQNAEIAEQGPTPANGNIYGGVTLLANTEVAPTEPATVNVADLPGPPETAPAEVVAPGAEAEEGKPVKVVLYIDFICPACKSFEAQNNAQLTTLRNEGKISVEYRPLGFLDTRSTTNYSSRAANAAACVVNESPEKYAEFVDELFAQQPKEGGAGLSDNDLKKMATDIGAKNIDACVDNKTYRPYVAYTTKQAASIGVTGTPTVFVDGKQWGKGASAQTPFPEFLQAAIDAKGNANANANANA
D1-29_00908348hypothetical proteinATGGCCGTCAAACTTAACCGTAAGGCGTTGGCGTACGCCCGGAAACTTGTTGAGAGCGGAAAGGTTGAACGCGATATCCGTGATGACTGGAGCGAACACGCGCCTTCGACTGAAGTTGAGAACAAATTTATCGACAAGCACGGTTTCGCCGATTTCGCGGAATGGCATCTGGGCCGGGACGACGAAGAATCAGATGGCACCAAAGGCAGCGTGAGCTTTCCTTTCGGAGACTTCAAAAAGGTGCACCGGTGCGCCGTGATTTCATTGGAAAGCCGGGCCGGCCAGTACGGGCACGATGACATCCGGGACGCCGCCAAAAAACTGCTTGAGCTGATCGACAAGGATTGAMAVKLNRKALAYARKLVESGKVERDIRDDWSEHAPSTEVENKFIDKHGFADFAEWHLGRDDEESDGTKGSVSFPFGDFKKVHRCAVISLESRAGQYGHDDIRDAAKKLLELIDKDNANANANANA
D1-29_00909306hypothetical proteinATGGCTACCGATTACGACGCTCCACGCAACAAGACAGACGAAGAGTCTTCCGCCGAATCGCTGGAGGCCCTGCAGGCCTCCCGCAGCGGTAATGCACAGACCGCGGTGATTGACGTTGACGAGAACGACACCGCCGAAGGCATCGACCTGCCCGGCGCTGACCTCTCCGGTGAAGAACTGACGGTCATCGTTGTTCCGGAGCAGTCCGACGAATTTACCTGTTCCTCCTGCTTCTTGGTCCGCCACAGGTCCCAGGTTGCCCGCGAAAAGAACGGCCTGAAGTACTGCCGGGAATGCGAAGGCTGAMATDYDAPRNKTDEESSAESLEALQASRSGNAQTAVIDVDENDTAEGIDLPGADLSGEELTVIVVPEQSDEFTCSSCFLVRHRSQVAREKNGLKYCRECEGNANANANANA
D1-29_00910552hypothetical proteinATGAAAAAGATTCATACGTGGCTGGCAGTCATTCTGATGGCTGTCGGATTGGGTTTCGTGGCTCCGGGGCCCGCCTCGGCAACCACATCCTATTGCGGACTTGTTTGGGGGTCGCAGGCTGAATCAAAGTCAGCGATGAGCGCCGCATCAGTAACCAACGTTCGGACGGGGCAGCACTACTGCTTCGACCGGATGGTGGTTGATCTCAACGGCCCTGTGGCCGGCTACCATGTCCGCTACGTCGATGCCGTAAGACAGGACGGTTCCGGGCATACGGTTCCTCTGCGGGGGAGGGCGTTCCTCCAGGTCACTGTGACTGCGCCGTCCTACGACATCCAGACCGGTGGCGCTACGTACAGCCCGGCTAACCAAGCCGAACTGACCAACGTGGCGGGTTACCAGACCTTCCGTCAGGTAGCTTGGGCAGGCAGCTTTGAAGGCTCCACCGACATCGGCGTGGGTGTCCGCGCGCGGCTCCCGTTCCGGGTACTCACCCTGGACGGGCCGGGCTCCGGCTCCCGTTTGGTAGTGGACGTGGCGCACTTCTGGTGAMKKIHTWLAVILMAVGLGFVAPGPASATTSYCGLVWGSQAESKSAMSAASVTNVRTGQHYCFDRMVVDLNGPVAGYHVRYVDAVRQDGSGHTVPLRGRAFLQVTVTAPSYDIQTGGATYSPANQAELTNVAGYQTFRQVAWAGSFEGSTDIGVGVRARLPFRVLTLDGPGSGSRLVVDVAHFWNANANANANA
D1-29_009111569hypothetical proteinATGACCCACACCATCCGTAACAGCACCGCAACCGGAGTAGCCGCCGGCCCCGGGGCCGACGCCCCGGGCTCCGCCCACGGCATCAGCGCCAAAGGACTGAAGGGCGGCCAGCTGGGCCTCCTGGCCGTGGTGGTCCTTGGCATCTCCACCATCGCTCCCGCCTACACACTGACCAGCGCGCTGGGCCCCACCATCAATGAGGCCGGGCTCCAGTTGCCGGTCATCTTCCTGATCGGGTTCATCCCCATGATCCTGGTCTCGCTGGCCTACCGGGAACTCAACGCCGATTCCCCGGACAGCGGCACCACCTTCACCTGGGTCACCAAGGCCTTCGGCCCGTGGGTTGGCTGGATGGGCGGCTGGGGGCTCCTTGCCGCCAACATCATTGTGCTGTCCAACCTGGCCGCCGTGGCAGTGGACTTCTTCTACCTTTTCCTCTCCCAGCTCACCGGTTCACCAGAACTGGCCGAGCTCGCCGCCAACAAACCGCTCAACGTGCTGACCTGCTTTGTCTTCGTGGCCCTGGCGGTGTGGATCAGCTACCGCGGCATGCACACCACCAAACTGGTGCAGTACGGCCTGGTGGGATTCCAGCTGCTGGTCCTGGGCCTGTTCGTGGCCATGGCCTTCGCCAACTGGTCCACGTCCGAAACGGCCATCCCGTTCAGCTGGGAGTGGTTTGACGTCACCAAGATCGAGACGTTCGGCCAGATCGCGGCCGGCATCTCGCTCTCCATTTTTGTCTACTGGGGCTGGGATGTGTGCCTCACCGTGAACGAGGAAACCACCAACGGCAAGAAGACGGCTGGACTGGCCGGGACCCTGACCGCGGTCATCGTCCTGGGCATCTACCTGCTGATCAGCATCTCCACCATGATGTTCGCCGGCATCGGCGATACCGGCAACGGGCTCAGCAACCCCGATAACCAGGAAAACATCTTCACCGCACTGGCTTCCCCCATCATGGGACCGTTCGCCATCCTGATGTCGCTGGCGGTGTTGTCCAGCTCTGCCGCTTCGCTGCAGTCCACGTTCATGTCGCCGTCCCGCAGCCTGCTGGCCATGTCCCACTACGGCGCACTTCCCAAGCCGCTCAGCCGCCTGAGCAAACGCTTCGCGACGCCGCGCACCGCCATCATTGCCGCCGGCGTCCTGTCCGCAGGGTTCTACGCTGCCATGCACATCATCAGCGAGAACGTCCTGAATGACACCATCCTGGCGCTGGGCCTGATGATCTGCTTCTACTACGGACTCACCGCCATCGCCTGCGCCTGGTACTTCCGGAACAGCGTGTTCAGCAGCGTCCGCAACTTCACGCTTCGGCTGCTGTGCCCGCTGCTGGGCGGAGTCGGACTCTTTGTGGTGTTCATTCAGACCGCCGTAGACAGCCTGGCCCCGGAGTTCGGCAGCGGTTCCGAGGTGTTCGGTGTTGGCCTGGTCTTTGTCCTGGGCATCGGAATCCTGGCCCTCGGAGCGGTGTTTATGCTCATCATGGCCCGCCTGCGGCCGGGATTCTTCCGTGGCGAAACCATCCGCCGCGATACCCCCGCGCTGGTAGTGCCGGAGTAGMTHTIRNSTATGVAAGPGADAPGSAHGISAKGLKGGQLGLLAVVVLGISTIAPAYTLTSALGPTINEAGLQLPVIFLIGFIPMILVSLAYRELNADSPDSGTTFTWVTKAFGPWVGWMGGWGLLAANIIVLSNLAAVAVDFFYLFLSQLTGSPELAELAANKPLNVLTCFVFVALAVWISYRGMHTTKLVQYGLVGFQLLVLGLFVAMAFANWSTSETAIPFSWEWFDVTKIETFGQIAAGISLSIFVYWGWDVCLTVNEETTNGKKTAGLAGTLTAVIVLGIYLLISISTMMFAGIGDTGNGLSNPDNQENIFTALASPIMGPFAILMSLAVLSSSAASLQSTFMSPSRSLLAMSHYGALPKPLSRLSKRFATPRTAIIAAGVLSAGFYAAMHIISENVLNDTILALGLMICFYYGLTAIACAWYFRNSVFSSVRNFTLRLLCPLLGGVGLFVVFIQTAVDSLAPEFGSGSEVFGVGLVFVLGIGILALGAVFMLIMARLRPGFFRGETIRRDTPALVVPENANANANANA
D1-29_009121041aguACOG2957Putative agmatine deiminaseATGAGCACCTGGCGCATGCCCGCTGAGACAGCCCCGCAGGAACGCCTCTGGATGGCCTTCCCAACCGGCGGCTACACGCTGGGCGATTCCGAGGAAGCCGCCCACGCCGCCCGGTCCACATGGGCTGCTGTCGCGAATGCCGCCGTCGAGTTCGAACCCGTCACCATGGTGGTAAACCCCGACGACGTCGACATCGCCGCCCGCTATCTGCATCAGGACATCGAGGTGCTCGTTGCTCCGCTCAACGATGCCTGGATGCGGGACATCGGCCCAACTTTTGTCCTTGACCAGCACGGGTGCCGCGGCGCCGTCGACTGGGTCTTCAACGGTTGGGGTGCACAGGATTGGGCGCGCTGGGACAAGGACGCCCTGATCGCCGCCGAAATTTCCGCCCGCTCTGGGTCCCACCACGTTGTTTCCCCACTGGTGAACGAGGGCGGCGGGTTGCAGGTGGACGGTGCGGGAACGGTGCTGGTCACCGAGACTGTTCAGCTGGACCCCGGACGCAACCCTGGCCTCAGCAAGGCCGATGTGGAAGCCGAACTGGCCCGCACGCTGGGCGCCACCCACGTCATCTGGCTCCCCCGCGGCCTGACCCGGGACTCGGAACGTTTCGGCACCCGCGGCCACGTGGACATCGTGGCAGCCATCCCCTCCCCCGGCACACTGCTGGTCCATTCGCAGCAGAATCCGGCACACCCTGACTTCGACGTCTGCCGGGACATCATCAGCTACCTGCGCACCACGCGCGACGCTGCAGGCCGAGAATGGGACATCGTGGAGGTTCCCGCGCCTGAGGCCCTCACAGACGACGAAGGCTTTGTGGACTACAGCTACATCAATCACGTGGCGGTCAACGGAGGGGTCATCGCCTGCAGCTTCAGCGACCCCAACGACGACAAGGCCCTCCAGATCCTGGCCGAGGCCTATCCCGGCCGCCGGATTGTCAGTATTGACGCACGGGAACTCTTCGCCCGCGGCGGCGGTATCCACTGCATCACCCAACAGCAGCCTGCTGCCCTCAAGAAAGTACGGACATGAMSTWRMPAETAPQERLWMAFPTGGYTLGDSEEAAHAARSTWAAVANAAVEFEPVTMVVNPDDVDIAARYLHQDIEVLVAPLNDAWMRDIGPTFVLDQHGCRGAVDWVFNGWGAQDWARWDKDALIAAEISARSGSHHVVSPLVNEGGGLQVDGAGTVLVTETVQLDPGRNPGLSKADVEAELARTLGATHVIWLPRGLTRDSERFGTRGHVDIVAAIPSPGTLLVHSQQNPAHPDFDVCRDIISYLRTTRDAAGREWDIVEVPAPEALTDDEGFVDYSYINHVAVNGGVIACSFSDPNDDKALQILAEAYPGRRIVSIDARELFARGGGIHCITQQQPAALKKVRTNANANANANA
D1-29_009131035N-carbamoyl-D-amino acid hydrolaseATGATTGAAATTTCCTGCCTTGATGCACCAGCCTCCCCTGCACGGACAGCGCCGTCCGATCGCCCCGCCCTCCGGGTGGGAGTGGTACAGCACCGCTGGAACGCAGACGACGCTGTCCTGCGCGCCGAACTCGACGAAGGCATCGGACGGGCCGCCAGGCTCGGAGCCACAGTGGTGTTCCTGCCTGAGCTGACGCTCTCGCGCTACCCGGCAGACACCCTGCCGGTCAATGACACTTCCCGGCCGGGAGTGGTACGGCCCAGGCCCTCAGACGCTGCCGAGGATCTGCTCACGGGACCCACCTTCCAGTTCGCTGCCGCTGCAGCACTCCGTCACGGCGTCTCTGTCCATGCCTCGCTCTATCAGCGCGCAGACAACCCGGACGGCTCGGATGACGGACTGGGCCTCAACACGGCCATCCTGGTCTCGCCTGAGGGCGAACTGCTGGCCCGCACACACAAGCTGCACATTCCCGTGACGGCCGGCTATTACGAGGACAAGTTCTTCCGTAAAGGTCCCGCAGCCGCTGACGCCTATGAGGTCCACTCGCCCGCAGAACTCAATGGCGCACGGCTGGGCATGCCCACCTGCTGGGACGAATGGTTCCCAGAAGTGGCCCGCCTTTACTCCCTCGGCGGGGCCGAAATCCTGGTCTACCCCACTGCCATTGGCTCTGAACCTGACCACCCGGACCTGGACACGCAGCCGCTGTGGCAGCAGGTGATCGTGGGCAACGGCATCGCCAACGGACTGTTTATGGTGGCGCCCAACCGCTGGGGCAATGAAGGAACACTGAGCTTTTACGGTTCCTCCTTCATCTCCGATCCGTACGGCCGGATCCTGGTCCAGGCGCCGCGCGACCAGTCCGCGGTGCTGGTGGCAGACCTTGACCTTGACCAGCGGCGGGATTGGCTGACGCTCTTCCCGTTCCTGGCCACACGGCGTCCGGACACGTATGGACGACTCACCGAACCCGTCCGCCCCGGCCAGCCCCTGGGCGGAGAAGCGCAGGCCTATCTGGAGGCAACAGCATGAMIEISCLDAPASPARTAPSDRPALRVGVVQHRWNADDAVLRAELDEGIGRAARLGATVVFLPELTLSRYPADTLPVNDTSRPGVVRPRPSDAAEDLLTGPTFQFAAAAALRHGVSVHASLYQRADNPDGSDDGLGLNTAILVSPEGELLARTHKLHIPVTAGYYEDKFFRKGPAAADAYEVHSPAELNGARLGMPTCWDEWFPEVARLYSLGGAEILVYPTAIGSEPDHPDLDTQPLWQQVIVGNGIANGLFMVAPNRWGNEGTLSFYGSSFISDPYGRILVQAPRDQSAVLVADLDLDQRRDWLTLFPFLATRRPDTYGRLTEPVRPGQPLGGEAQAYLEATANANANANANA
D1-29_00914480dps2DNA protection during starvation protein 2ATGAAGGCTTCACCGACCCTGACCAATAACCTGCAGGCCGTACTCGCTGACCTGATTGAGCTGCACATCCAGGGCAAACAGGCCCACTGGAACATTGTGGGAACCAACTTCCGGGACCTCCATCTGCAGCTGGACGAAATCGTCGAAGCTGGCCGCCAGTTTGCGGACGACCTGGCCGAGCGCATGCGCGCACTGCACGCCCTCCCGGACGGCCGCAGCTCCACTGTGGCCGCGTCCACCAACCTTCCGGCGTTCCCCGAAGGGCTGATCAACACCAAGGATGCGATCGAGCGGACCGTGGCCGCCCTTGAGGCTGCTGTGGGCACTATGCGAAAGGTTCATGACGAAGTGGATGAGGAAGATCCCACTACTGCCGATCTCCTCCATGAGTTCATTGCCAGGCTTGAGCAGTTCACCTGGATGGTTAACGCGGAAACCATGAAGGCCACGGCCAGCGTCACGGCCCCGGACGCCCCATAGMKASPTLTNNLQAVLADLIELHIQGKQAHWNIVGTNFRDLHLQLDEIVEAGRQFADDLAERMRALHALPDGRSSTVAASTNLPAFPEGLINTKDAIERTVAALEAAVGTMRKVHDEVDEEDPTTADLLHEFIARLEQFTWMVNAETMKATASVTAPDAPPGPT0004055_2499DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
D1-29_009151599lfrACOG0477Multidrug efflux pump LfrAATGACCTCGTCCGCAACTTCCCTTCGGAACGCCCCCGAATCGTTGGCAAACCAGCTCCCCGCGACCTCCCGTACGCCCCGCCGGCCGGGACCGAAAGCACCATGGCGCGACTGGCTTGCCCTGGGCCTGCTGATGTTCCCCGTGCTGCTGGTCGCGGTGGACAACACGGCCCTTACGTTCGCCCTCCCGGCGATTGCGCGCAGCCTGGAAACCACGGGGGTCCAGCTCCTGTGGATCGTTGACGCCTATCCGCTGGTGCTCGCCGGCCTGCTGGTGGCCATGGGAAGCCTGGGTGACAGGGTCGGACGCCGCCGGCTGCTGCTGGTCGGCAGTATCGGGTTCGCCTTGGTGTCAGCCGCAACAGCCTTCGCCCCCAGCGCCGAGTGGCTTATTGCCGGCCGGGCAGCGCTGGGATTCTTTGGTGCCATGCTGATGCCGTCCACCTTGTCGCTGATCCGCAACATCTTTCCGGATCCCAACCGCCGCCGGCTGGCGATCGCCATCTGGGCAGCAGGATTCTCCGGTGGCGCAGCCCTGGGACCCATCTTTGGCGGCTGGCTGGTGGAACAGTTCTGGTGGGGCGCGGTGCTCCTGGTTGCCGTGCCCATCATGCTTCCGCTGCTGGCGTTCGGCCCCGCCTTCATCCCCGAATCACGGGATCCCCGGCCCGGCCGGGTGGACGTCCCCAGCATGCTGCTGTCCCTGCTGGTCATGGTCCCTGTGGTCTATGGCATCAAGGAGGTGGCCACCGAGGGCTTCGGCATCATGCCACTGGCCGCCGTCACCTTCGGTGTGGCCATGGGATTCGTTTTTGTCCGCCGCCAGCAATGGCTGGCCAACCCGCTGCTGGACATGTCCCTATTCAGCAACAGGGTCTTCAGCACGGCCATCTCCGCGAACGTGCTGGCACTGTTTTCCTTCAACGGCTTTATCCTGTTCCTGGCCCAGCATCTCCAGCTTTTGGAAGGGATGTCACCGTCTGCCGCGGGCATTGCCATGATTCCGGCGCTGCTCGCCACCGTGACGGCCGGGCTGGTGGCAGTACCGCTGGTCCGCCGGATACGGCCGGGCTTCGTGGTTGCGGGCGGCCTCTCCCTGAGTGCCGGCGGCTACCTTGTGGTCACCGTCGGCGATCATAGTGCCGGACCGGCCCTCCTGCTGGGCGCGCTGTTCATCCTGGCATTGGGCGTTGGGACCGCCGAAACCATCTCCAACGACCTCATCCTGGGTTCCGCGCCGGCCGAAAAATCCGGGGCCGCCGCCGCCATCTCCGAAACAGGCTATGAGGTGGGGTCAGTGCTGGGAACAGCAATCCTGGGCTCAATTCTGACGGCGTCCTACCAGCAGAACCTCAGGCTTCCGGCAGGACTGAGCGAAGCCGCATCCCACACAGCCACGGACAGGGCCGGGGAAACCTTGGCCGGTGCCATGGAACTGGCCGGCAGCCTCCCGGGACCGCTTGCCACAGCCGTACGGGAAGCGTCCAGGGCGGCTTTCGATTCCGGCGTCCACATCACGGCAGCCATCGCGCTGGTACTGATGGCAGCAGCGGCGGTCCTTGCCGCCGTCGTGCTCCGAAAAGTTCCGACGGCGCGCTAGMTSSATSLRNAPESLANQLPATSRTPRRPGPKAPWRDWLALGLLMFPVLLVAVDNTALTFALPAIARSLETTGVQLLWIVDAYPLVLAGLLVAMGSLGDRVGRRRLLLVGSIGFALVSAATAFAPSAEWLIAGRAALGFFGAMLMPSTLSLIRNIFPDPNRRRLAIAIWAAGFSGGAALGPIFGGWLVEQFWWGAVLLVAVPIMLPLLAFGPAFIPESRDPRPGRVDVPSMLLSLLVMVPVVYGIKEVATEGFGIMPLAAVTFGVAMGFVFVRRQQWLANPLLDMSLFSNRVFSTAISANVLALFSFNGFILFLAQHLQLLEGMSPSAAGIAMIPALLATVTAGLVAVPLVRRIRPGFVVAGGLSLSAGGYLVVTVGDHSAGPALLLGALFILALGVGTAETISNDLILGSAPAEKSGAAAAISETGYEVGSVLGTAILGSILTASYQQNLRLPAGLSEAASHTATDRAGETLAGAMELAGSLPGPLATAVREASRAAFDSGVHITAAIALVLMAAAAVLAAVVLRKVPTARPGPT0028045_313DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
D1-29_00916549hypothetical proteinATGATTGAAGCCATGGCCAGAAAACCCGTAGCCCGCGAGGCTGTTCTCGATGCTTTTGAATCCCTGCTGATTGAGGTGGGCGAGCGGGCCGCCACCCTTGATGCGGTAGCTAAGCGCGCGGGAGTCTCCAAGGGCGGGTTGCTGTATCACTTTCCGAACAAGGAAGCCCTGATTGAGGTGCTGCTGGACAGGCTGGATGAGCTGGCAGCCGCCGACGCCGACGCCATGGCCACCGCGGAGGAGGGAGCGGCCGCGTACTTCATCAGGTCTTCCGTCTGGGCAGATACACCCCTGGACCGTGCCATTGTTGCTGCCACCAGGCTCGCCGAGGTGGCCCATGAGGAAACTCGTGAGCGCTTCGCGGCAATCCAGCAGCGCTGGCTCCGGGAGATTGCTGCCGACGTTGGCACGGCCATGGCCAAACCGGTGCTGTATATGGGTGACGGCCTGTACTTCAACGCCATGCTTTCCGTGGGGCCGGTTCCTACCCAAGAGACGGCGGCCGACGTCGCCGGCCTGCTGGCAGCGCTGGACCGGCTCCGCAGTTGAMIEAMARKPVAREAVLDAFESLLIEVGERAATLDAVAKRAGVSKGGLLYHFPNKEALIEVLLDRLDELAAADADAMATAEEGAAAYFIRSSVWADTPLDRAIVAATRLAEVAHEETRERFAAIQQRWLREIAADVGTAMAKPVLYMGDGLYFNAMLSVGPVPTQETAADVAGLLAALDRLRSNANANANANA
D1-29_009182916gcvP_1COG0403putative glycine dehydrogenase (decarboxylating)GTGACTGTTTCTCCGGCCTCCGCCACTCCGGCCCCCACTGCCCAGGCCCCGGCTACCACCGCCCCCGCCCCGACCTTCCCGGCCGCTGCATCCTTTGTTGACCGGCACATCGGCTCACGCCGCCAGGACGACGTCGACGCCATGCTCAAGGCTGTTGGCTATGACTCCGTGGATGCACTCGTGGACACCGCAGTCCCCAAGGACATCCGCCAGGACTCTCCACTGGAGCTCACCCAGGCCCTGAGCGAGGTGGAAGCCCTCGCCGAATTGCGGAGGCTCGCGGCCAAGAACAAGACCGCCGTGCAGATGATCGGCCAGGGGTATTACGACACCGTGACGCCGCCGGTGATCCGCCGCAACATCCTCGAAGGCCCGGCCTGGTACACCGCGTACACGCCATACCAGCCGGAAATTTCCCAGGGCCGGCTCGAGGCGCTGCTGAACTTCCAGACCATGGTGCAGGACCTCGTGGGCCTGCCCATCGCCAACGCGTCCCTGCTGGATGAAGCCACCGCCGTGGCCGAAGCGGTGCTGATGATGCGCCGGGCAAACAAAAATAAGGACGCCCGTGATGGGAAAACCGTCCTGGATGCCGACTGCCTTCCACAGACCATCGCCATTGTGAAAGGCCGGGCCGAGGCGCTGGGATTCGAGGTCCAGGTGGCTGACCTCTCCAAGGGACTTCCCGACGGCGTGATCAACGGCGTGGTGCTCCAGCAGCCCGGCGTCTCCGGCCGGGTTTTCGACCACACCTCCGTCATTGCCGACGCCAAGGAACGCGGCGCGCTGGTAACAGTGGCTGCCGACCTCCTGGCCCTGACACTCATCACCCCTCCCGGTGAGCAGGGGGCCGACATCGCCGTCGGCTCCGCGCAGCGGTTCGGCGTCCCCCTCTTCTACGGCGGACCGCACGCCGCCTACATGGCCGTGCAGAAGGGCCTTGAGCGTTCCATGCCCGGCCGCCTGGTGGGCGTCTCGAAGGACAACGCCGGCGTCCCCGCGTACCGCCTTGCCCTTCAGACCCGCGAGCAGCACATCCGCCGCGAGAAGGCCACCTCCAACATCTGCACAGCCCAGGCGCTGCTGGCCATCGTGGCCTCCATGTACGCCGTTTACCATGGACCGGAAGGGCTCAAGGCGATCGCCCAGGCCGCGCACGCCCACGCCAGGACCCTTGCAGGATCGCTGAACGCAGCCGGGCTTGACGTCCTCCACACAAGCTTCTTCGACACCGTCACGGTTTCCGTGCCCGGCAAGGCAGCTGGAATTGTTGCCGCGGCAGAAGCCAAGGGCATCAACCTTCGCGGCATCGATGCCGACAGAGTGGGCTTCTCCACGGATGAAACCACGACGCCGGAAATCGTCGCCCAGGTGCTGGAGGCTTTCGGTGTTTTGGCCACCGCCGGCGGCAACGCAGCCTTCGCGCTGGACCCCGCCGTCGAACGTTCTTCCGGGTACCTGCAGCACCCGGTGTTCAGCACCCACCGCTCCGAGACGCAGCTGCTTCGCTACATCCGCAAGCTGTCCGACCGGGACCTGGCGCTGGACCGCACCATGATCCCGCTGGGTTCCTGCACCATGAAGCTGAACGCAACGGCCGAGATGGAGGCCATTTCCTGGCCGGAGTTCGCCTCCATCCACCCCTTCGCCCCCGACTCCCAGACCGAGGGCTGGCGCGAACTGATCGCGGACCTGGAAGCCCAGCTGACCGAGATCACCGGCTACGACCAGGTGTCCATCCAGCCGAATGCCGGTTCCCAGGGTGAGCTGGCCGGCCTCCTGGCCATACGCGGCTACCACCTGTCCCGGGGCGATGACCAGCGCAATGTGTGCCTGATTCCCGCGTCGGCGCACGGCACCAACGCAGCCTCAGCCGTTCTGGCGGGTATGAAGGTGGTAGTGGTGGCCACCGCAGCGGACGGCACCATCGACCACACCGATCTTTACGCGAAGATCGACGCCAACAAGGATGCGCTGTCCTGCATCATGATCACCTACCCGTCCACGCACGGTGTGTACGACGCCGACGTCCGCGAGGTGTGCGACGCTGTTCACGCTGCCGGCGGCCAGGTGTACATCGACGGTGCCAACCTGAACGCGCTGGTCGGACTGGCCCAGCCGGGCAAGTTCGGCGGCGACGTTTCGCACCTGAACCTGCACAAGACCTTCTGCATCCCGCATGGCGGCGGCGGACCCGGCGTGGGCCCGGTCGCAGCGAAGGCGCACCTGGCGCCCTTCATGCCGGGCAACGCGGCAACCTGGACCGAAGGCAACGACGTCCCCATTTCGGCGTCCAAGTACGGCTCCGCCGGCGTCCTTCCCATCTCCTGGGCGTACGTCAAGCTGATGGGTGGCCAGGGCCTGACCGAGGCCACGAAGTCGGCGCTCCTTGCTGCCAACTACATCGCTGCCCGCCTCAACGACTTCTTCCCCGTGCTCTACACAGGAGAAGGCGGTCTGGTGGCGCACGAATGCATCCTTGACCTGCGCGACCTGACTGCAAGGACGGGCGTGACAGCGGAGGACGTGGCCAAGCGCCTCATCGACTACGGCTTCCACGCCCCCACCCTGGCATTCCCCGTCGCCGGCACACTCATGGTGGAGCCCACGGAGTCCGAGGACCTCGGCGAGATGGACCGGTTCATCGACGCGATGATCTCGATCCGCGCGGAAATCGACCAGGTGGCCAACGGCGACTTCACCGTCGCGGACAGCCCGCTGCGCAATGCCCCGCACACCGCCGCCGCTGCCATCAGCAGCGACTGGGACCGTGCCTACCCGCGCGAACAGGCAGTCTTCCCGGTCCACACCCTCAAGCAGGACAAGTACTTCCCGCCCGTTGGCCGCATCGACGGCGCCGCCGGGGACCGGAACCTGATCTGCTCCTGCCCGCCGCTTTCCGAGTTTGAAAACTAAMTVSPASATPAPTAQAPATTAPAPTFPAAASFVDRHIGSRRQDDVDAMLKAVGYDSVDALVDTAVPKDIRQDSPLELTQALSEVEALAELRRLAAKNKTAVQMIGQGYYDTVTPPVIRRNILEGPAWYTAYTPYQPEISQGRLEALLNFQTMVQDLVGLPIANASLLDEATAVAEAVLMMRRANKNKDARDGKTVLDADCLPQTIAIVKGRAEALGFEVQVADLSKGLPDGVINGVVLQQPGVSGRVFDHTSVIADAKERGALVTVAADLLALTLITPPGEQGADIAVGSAQRFGVPLFYGGPHAAYMAVQKGLERSMPGRLVGVSKDNAGVPAYRLALQTREQHIRREKATSNICTAQALLAIVASMYAVYHGPEGLKAIAQAAHAHARTLAGSLNAAGLDVLHTSFFDTVTVSVPGKAAGIVAAAEAKGINLRGIDADRVGFSTDETTTPEIVAQVLEAFGVLATAGGNAAFALDPAVERSSGYLQHPVFSTHRSETQLLRYIRKLSDRDLALDRTMIPLGSCTMKLNATAEMEAISWPEFASIHPFAPDSQTEGWRELIADLEAQLTEITGYDQVSIQPNAGSQGELAGLLAIRGYHLSRGDDQRNVCLIPASAHGTNAASAVLAGMKVVVVATAADGTIDHTDLYAKIDANKDALSCIMITYPSTHGVYDADVREVCDAVHAAGGQVYIDGANLNALVGLAQPGKFGGDVSHLNLHKTFCIPHGGGGPGVGPVAAKAHLAPFMPGNAATWTEGNDVPISASKYGSAGVLPISWAYVKLMGGQGLTEATKSALLAANYIAARLNDFFPVLYTGEGGLVAHECILDLRDLTARTGVTAEDVAKRLIDYGFHAPTLAFPVAGTLMVEPTESEDLGEMDRFIDAMISIRAEIDQVANGDFTVADSPLRNAPHTAAAAISSDWDRAYPREQAVFPVHTLKQDKYFPPVGRIDGAAGDRNLICSCPPLSEFENPGPT0020480_1168DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281NANA
D1-29_009191149gcvT_1COG0404AminomethyltransferaseGTGACTGAGAACTACACAGCGCTCTACGAAGAGCACAAGAAACTCGGCGCCTCCTTCACCGACTTCGGTGGCTGGCAGATGCCGCTCAAGTACAGCTCGGAGCTGGCGGAGCACCACGCGGTCCGCAAGGCAGCAGGGATCTTTGACCTGTCCCACATGGGCGAAGTCTGGGTCACCGGCCCCGACGCCGCCGCGTTCCTGGACTACGCGCTGGTGGGCAAGATCTCCGCAATGGCCGTGGGTAAAGCCAAGTATTCGCTGATCTGCAATGAAGCCGGCGGCATCATCGATGACCTCATCATCTACCGCCGCCCTGTCGCTGAAGACGGCACCGACGTATTCCTGGTTGTTCCCAACGCCGGCAACGCCAAAACGGTGGCGACAGAACTTGCTGACCGCACAGCGAACTTCAATGTTGTGGTGGAGGACGCCTCCGCGGACACCTCCCTGATCGCCGTCCAGGGCCCCAAAGCGGAGGAGCTCCTGCTCCGCCTCGTCCCCGCCGCCCAGCACAGCCTGGTCACCGGGCTCAAGTACTACGCCGCCGTCGAAGTTCCCTTCCTCGTGGCCGGAGCCGGCCAGGACCTCCTGCTGGCCCGCACCGGCTACACCGGTGAGGACGGATTCGAGATCTTCATCAATAACGACGACGCCGCCGCACTCTGGCAGGCCATCGTCGCCATTGCGGACGAAGGGGAACTGGTACCCGCCGGCCTTGCCTCCCGCGATTCCCTCCGCCTCGAAGCGGGCATGCCCCTCTACGGCAATGAACTGTCCCTCGACGGCGACCCCTTCGCCGCCGGGCTGGGACAGGTGGTCGCGCTCTCCAAGGAAGGCGACTTTGTGGGCAAGGCCGCCCTCGCAGCCATGAAGGAAGCCGGCGCCGGCAGCACCACCGGCCGCCGGCTGGTTGGACTCAAGGGCCTGGGACGCCGCGCCGGCCGGGGACACTACCCGGTCCTCAAAGACGGCGCCGTGGTGGGCGAAGTGACCTCCGGCCAGCCGTCACCCAGCCTTGGCTACCCCGTGGCCATGGCCTACGTGGACATCGAGCACAGCGAAATCGGCACCACCTTGGACATCGACCTCCGCGGCAAGGCAGAGCCGTTCGAAGTCGTGGGACTGCCGTTCTACAAGCGCCAAAAGTAGMTENYTALYEEHKKLGASFTDFGGWQMPLKYSSELAEHHAVRKAAGIFDLSHMGEVWVTGPDAAAFLDYALVGKISAMAVGKAKYSLICNEAGGIIDDLIIYRRPVAEDGTDVFLVVPNAGNAKTVATELADRTANFNVVVEDASADTSLIAVQGPKAEELLLRLVPAAQHSLVTGLKYYAAVEVPFLVAGAGQDLLLARTGYTGEDGFEIFINNDDAAALWQAIVAIADEGELVPAGLASRDSLRLEAGMPLYGNELSLDGDPFAAGLGQVVALSKEGDFVGKAALAAMKEAGAGSTTGRRLVGLKGLGRRAGRGHYPVLKDGAVVGEVTSGQPSPSLGYPVAMAYVDIEHSEIGTTLDIDLRGKAEPFEVVGLPFYKRQKPGPT0008130_1101DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
D1-29_00920384gcvH_1COG0509Glycine cleavage system H proteinATGGCAAAAGTTGCCGCTGAGCTGCAGTACTCCGACGAGCACGAGTGGGTGGCCCGTGAGGGTGGCAACCTTGTGGCGATCGGGATTTCCGCCGTCGCCACTGATGCCCTCGGTGACATCGTGTACGTGGACCTGCCGGAGGTCGGCTCGGCCGTGACGGCGGGGGAAACATGCGGTGAAGTTGAGTCCACCAAGTCCGTCTCGGACCTGTATGCCCCGGTGACCGGGGAAGTTACGGAAATCAATCCCGCCGTCGTCGATGACCCTGCGCTGATCAACAGCGACCCCTACGGCGCCGGCTGGCTCTTCAAAGTCGCCACAGAGTCTGAGGGCCCGCTCCTTTCCGCCCAGGACTACGCTTCCAAAAACGGCGGCGAACTGTGAMAKVAAELQYSDEHEWVAREGGNLVAIGISAVATDALGDIVYVDLPEVGSAVTAGETCGEVESTKSVSDLYAPVTGEVTEINPAVVDDPALINSDPYGAGWLFKVATESEGPLLSAQDYASKNGGELNANANANANA
D1-29_009211410sdaA_1COG1760L-serine dehydrataseATGGCCGTTGGAGTCTTTGACCTTTTTTCCATCGGAATAGGACCCTCAAGTTCCCACACGGTGGGCCCGATGCGCGCCGCTGCGGTTTTCGCCGGCGAGCTCAAATCCTCCGGGGTACTGGACCGCGTGGCCGGCCTCCGCGTGGATCTATATGGTTCGCTGGCCGCCACCGGGCATGGCCACGGCACCATGACAGCCATCCTCCTGGGGCTGGAGGGATTCCATCCCGAGCTGATCCTGCCCGATGAGGTGGAGGAACGGCTGGCGACCATCGCCGAGACCGGGATACTGCAGTTGGCCGGCGCTGATGGACACGGTGTCCCCCTTCCTTATGGGGTGCAGGACATGGTGCTGCGGCCGCTGACCATCCTGCCGAGGCACACCAACGGACTGACATTCACCGTCTCCGAGGCCGGGGGCGACGTCCTGCACACGGCCACGTTCTACTCCGTGGGCGGCGGGTTCATCGTCCGTGAAGGCGAGGAGGACGCTGCACAGCAGGAACTCGAAGAGTCCAAGAAGGAGCTTCCGCTGCCGTTCAGGACAGCCGCTGAGCTGCTGGGGCACTGCCAGTCCAAGGGCCTGTCCATCGGCGAAGTCATGCTCGTCAACGAGCAGGCCTCCCGGTCCGAGGAGGAGATCCGCGAGGGCCTGCTCCATATCTACTCGGTGATGGAAAGCTGCGTCCAGGTCAGCCTTAGGCGCGAGGGCCTGCTGCCGGGCGGGCTAAAGGTCCGCCGCCGCGCGCCGGACTGGCATGAACGCCTTCTGAAGGAAGATAAGGACCGTGATCCCAAATACTGGCAGGAGTGGGTGAACCTGGTCGCCCTTGCGGTCAACGAGGAGAACGCCTCCGGCGGGAGGGTGGTCACCGCGCCAACCAACGGTGCGGCGGGCATCATTCCGGCCGTGCTGTATTACGCCCTGCATTTCGCGCCGGGGATGGAGAACGCCAGCCAGCAGGACCGCGATGACGTTGTGGTGAAGTTCCTGCTCACGGCCGGTGCCATCGGGGTCCTGTACAAGGAGCAGGCGTCCATCTCCGGCGCCGAGGTGGGCTGCCAGGGTGAGGTGGGCTCGGCGTCGTCCATGGCCGCTGCAGGCCTGGCCGAGGTGATGGGCGGGACCCCCGCCCAAGTGGAGAACGCCGCGGAAATCGCCATGGAGCACAACCTGGGCCTGACCTGCGATCCGATCGGTGGGCTGGTCCAGGTGCCCTGCATCGAACGCAACGCCATCGCAGCCGCCAAGGCGATCAACGCCGCCAAGATGGCACTCTGGGGCGACGGTTCGCACCGGGTATCGCTCGACGAGGTCATCATCACCATGCGCGAGACCGGCAAGGACATGAGCTCCAAATACAAGGAAACAGCCATGGGCGGCCTTGCCGTGAATGTTGTGGAGTGCTGAMAVGVFDLFSIGIGPSSSHTVGPMRAAAVFAGELKSSGVLDRVAGLRVDLYGSLAATGHGHGTMTAILLGLEGFHPELILPDEVEERLATIAETGILQLAGADGHGVPLPYGVQDMVLRPLTILPRHTNGLTFTVSEAGGDVLHTATFYSVGGGFIVREGEEDAAQQELEESKKELPLPFRTAAELLGHCQSKGLSIGEVMLVNEQASRSEEEIREGLLHIYSVMESCVQVSLRREGLLPGGLKVRRRAPDWHERLLKEDKDRDPKYWQEWVNLVALAVNEENASGGRVVTAPTNGAAGIIPAVLYYALHFAPGMENASQQDRDDVVVKFLLTAGAIGVLYKEQASISGAEVGCQGEVGSASSMAAAGLAEVMGGTPAQVENAAEIAMEHNLGLTCDPIGGLVQVPCIERNAIAAAKAINAAKMALWGDGSHRVSLDEVIITMRETGKDMSSKYKETAMGGLAVNVVECPGPT0001975_441DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752NANA
D1-29_00922561crtK-2COG3476Tryptophan-rich protein TspOATGCAGTCCCCTTCCGGTAAATCTCCGGCCCCAAGCCAGCCGCCGGCTGCACAGCAGGAAACGCCTGAACGGGGAACTGCGGCCCAACTCCTGATGCTCCTGCTCTTCCTAGGCACTTCAGCTGCCGTGGCCGGCCTGGGCAGCCTGGCCGTCACGGCGAACGTCGACGGCTGGTTCGCCGCTGCCAATATGCCTCCCTGGACTCCGCCGCGGTGGATGTTCGGTACCGTCTGGACGGTCCTCTATGCCGCCATGGCAGTGGCGGCGTGGCTCGTCTGGCGGAGCGGGAAAAGCCTCACCAGCAGGCCGCTGAAACTGTACTGGCTGCAGCTCGCCTTGAACCTGGCCTGGACACCGATCTTCTTCGGCCTCTACCCCGTGCTGGGGCCGCTGGCTCTGTGGCTTGGGCTGGCGGTCATCGTGGCCTTGATTGTGGCGCTGACCTTTGCGGTTCTGAATTTTGGCCCCATCAGCACCTCCGCCGGCCTCCTGCTGCTGCCTTACCTGTCCTGGGTAATCTTTTCCGGGACCCTTAACGCCTGGGCCGCCGCACATAACTGAMQSPSGKSPAPSQPPAAQQETPERGTAAQLLMLLLFLGTSAAVAGLGSLAVTANVDGWFAAANMPPWTPPRWMFGTVWTVLYAAMAVAAWLVWRSGKSLTSRPLKLYWLQLALNLAWTPIFFGLYPVLGPLALWLGLAVIVALIVALTFAVLNFGPISTSAGLLLLPYLSWVIFSGTLNAWAAAHNPGPT0014330_381DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014330-ytaB-K05770NANA
D1-29_009231074hypothetical proteinTTGCGAGAATTTACCGCCCGCTTTGCCACAGCCGAGGAAATTGAGAACTGGGACAAGCACGTCACGGCCAACCCGAACGGCGGCAACATGTTGCAGTCGGCGGCCTACGCGTCGGTGAAGAACGGCCAAGGCTGGAAGGTCCGTTTCCTGGTCCTGGAATCCGGGGGAACTGCCAGCTACAACTTGGTTCTGGAGAAGAAGTTTCCCGTCCTGGGCCGCCTCTGGTACCTCATCAAGGGGCCCGATCTGGCCGCGCTTGAGGACCTCAAGCCGGCACTGGACGCCTGCGCTTCGTTGGCCCGGAACCGGAAATTCAACGTCTTCGCGGTCAAGGTCGAGCCGGACATCACCGCCACTGCCGAAACCCAGGCACACTTTGCCGCCGCGGGCTTCATTAAGGCACCGAACATCCAGTCCAACGACTCCACAGCCCTGCTTGACATCGCTGCGCCGGAGAATGAGGTGCTCCGTGCCATCACCTCACGCGCACGCAACGCCATCCGCCGCGCCGAACGCGAAGGCTGCGAAGTGGTGCAGCGCGACCAGGGCGCCGAAACGTACCGCGCCCTCTACGACCTGATGGCGGACACCGTCAAGGCCAAGGGATCGATGCCCTTGCGCAGCTTCGAGTACTACTCCCGGTTCTGGGACGAATTCTGCAACCGCGGCCAGGGGAACTTCTTCTTTGTCTATGAGGACGGGAAGCCGAGCGTGGGCGCCTTTGTGATCAATTACGGCTCCAAGGCGACGTACAAGGACGGCGGGTCCACGCAGAACCGCAAGCAGTACGGTGATTCGCATCTGGTGCAGTGGGCAGCCATCCGCCGGATGAAGGAACTGGGCTGCACGGAGTACGACTTCTGTGGCACGCCGCCGGCAGCCAGGATCAAGGACAAGTCCCACCCGCTGTACGGCATGGGCATGTTCAAGACCAGCTTCACCAAGACAGTCACCGATTTTGTGGGCTGCTACGACTACATCCTTTCGCCCGTCAGGCACGCCATGTGGGTCAAGGGCGCCGAACGCATTTTCCGGCGGCTGGAAACCATGCGCACCGGCGGCCAGTTCTACTGAMREFTARFATAEEIENWDKHVTANPNGGNMLQSAAYASVKNGQGWKVRFLVLESGGTASYNLVLEKKFPVLGRLWYLIKGPDLAALEDLKPALDACASLARNRKFNVFAVKVEPDITATAETQAHFAAAGFIKAPNIQSNDSTALLDIAAPENEVLRAITSRARNAIRRAEREGCEVVQRDQGAETYRALYDLMADTVKAKGSMPLRSFEYYSRFWDEFCNRGQGNFFFVYEDGKPSVGAFVINYGSKATYKDGGSTQNRKQYGDSHLVQWAAIRRMKELGCTEYDFCGTPPAARIKDKSHPLYGMGMFKTSFTKTVTDFVGCYDYILSPVRHAMWVKGAERIFRRLETMRTGGQFYPGPT0023735_177DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-REGULATION_FACTOR,PGPT0023735-murM-K05363NANA
D1-29_009241317femAAminoacyltransferase FemAGTGAATCCAATCAAGGCCGGAACGGACCTCGAATTTGCCGTCCTGAGCGACGCCGAATATGAGTCCTTTTCCGTGCAGCACCCGCAAAACAGCTTCATCCAGTCCGCAGGTTTCGCCCGTTTCCAGCGCGCCCGCGGACAAGTCGTGGAGCTCGTCGGCTTCAGGCGCAACGGGGAACTCGTGGCGGCCGGGAAACTGAATTACACCAGAAACCGCTGGGGTTACACGGTCTGCGAGTGCGCAAAAGGCCCCCTCCTGGACTACACGGACGCTGACCTGGTGAGCTCCGTCGTCGAACTCCTTAAAACACGGGCCGCAGACCGTAAGGCCGCGGAGCTGAGGATCTCGCCGAACCTGGTGTACGTTGCCCGGGACGAGGACGGCGCAGAGCACCCGGAAATCCTCGACAACCGCCCCCTGGTGGCGGAACTGGACAGGCTGGGCTTTGAGCACCAGGGCTCGGACATGAACTTCGCGAACGTCAACTGGATGTTCGTCAAAAAGCTCGAGGGCATCAAGGACGCCGAGGAGCTCATCATGAGCACCAGCTACCGGACGCGCAAAGCCATCCGGAAGGCGGAGAAGAACGGAGTCTTCCTGGAGCAGGCAACCCTGGAAACCCTGGATGAGTTCTACGACGCGTTGAGCACGGCGGGGGATGAAAAGGGCTTCATCTACCGTGAACGCGAATACTACGAGCACCTCCTGCGGACCACTTCGTCAGAGTTCACCAAGCTCATGATGGCCAAAATCGACATCCCCGGCTACCGCAAATCCATCACCGAACGGCTGGAAGCCGAGTCGGCAACCGCGGCCGAGCTGCGCCGCGAGGTTGAGGAAACCGGCAGCAAAAAGAAGGCCAACAGGCTCAAGGTGGTCCAGGACCTCGTGGACAGCTACGAGCGCAGCCTTAAGGACATCGAGCGTTTCCCCGACTCCGTTGGCGTGGTAACCGTGGCGGCCATCCATTTTGTCTGCTTTGGCGACGAGGTGGTCTGTGTCATCGGCGGCACCAAACAGGATTACATCTACTTCAACGGTGCCACGTCCCTGTACTGGGGCATGATGCTGCACGCGCTGGAGAAGGGGTACTCCCGTTACAACTTCTACGGAACCTTCGGTATCGAAGGCCAGGACGAGGAGGGCCACGGTGGCTACGCCTTCAAGAAGGGCTTCGGCGGAGAGGTGGTCCAGCTCCTGGGCGACTTTGTGATGCCGGTCCGGCCAGCCATGTTCCAGGCCAACCGCCTGGTCAGGGCCGCAACCTCCGCCGCCCGCCTGGTTCTCGGCAAGCTTCCCCTCAAACGGACTGCTTAGMNPIKAGTDLEFAVLSDAEYESFSVQHPQNSFIQSAGFARFQRARGQVVELVGFRRNGELVAAGKLNYTRNRWGYTVCECAKGPLLDYTDADLVSSVVELLKTRAADRKAAELRISPNLVYVARDEDGAEHPEILDNRPLVAELDRLGFEHQGSDMNFANVNWMFVKKLEGIKDAEELIMSTSYRTRKAIRKAEKNGVFLEQATLETLDEFYDALSTAGDEKGFIYREREYYEHLLRTTSSEFTKLMMAKIDIPGYRKSITERLEAESATAAELRREVEETGSKKKANRLKVVQDLVDSYERSLKDIERFPDSVGVVTVAAIHFVCFGDEVVCVIGGTKQDYIYFNGATSLYWGMMLHALEKGYSRYNFYGTFGIEGQDEEGHGGYAFKKGFGGEVVQLLGDFVMPVRPAMFQANRLVRAATSAARLVLGKLPLKRTAPGPT0023740_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-AMINO_ACID_ADDING,PGPT0023740-murN-K12554NANA
D1-29_009251488hypothetical proteinATGACCCATCGACCTGAAAAGCCCGGGACCAGGCCACACACCGACGGCCTGCCCAAGACCGAGCCGCTTTCGCCTTCACAGCTCCGCCAGAATGCCGCAGCCAAGAGGATGCTGCGCCGCCTGGTCCAGGGGGAGAACCCGCCGACGGCGCCCCTGAGCATTGTGGACAGGCTCACCGGGAGCCCCTACGCCAACCCAATGATCCAGGTGGGAGGCGTGGATACGTCCGCGCGCAAGACCCTGGATTTCGCCCTCCACCTGGCCGAGACCATGTTCCGCTATGGGGCAGGTGCCTTGGAAGTGGAAACCAGCATCATCGCCGTCACCGCCGCGCTGGGGCTGAAGAACATCGAGGTGGACATCACCAACCAGTCGGTGGCCATCAACTACGCTCCCAAGGACCAGACGCCCATAGCGCTGTTGCGCGTGGTCCGGTCCTGGACCAACAACTACGCCGGGCTGGCCAAGGTGCACCAGCTGGTGACCGATATTGTGGCCGGGGGAGTGGGCCGGGACGAGGCGATCCGGCGGCTGGACGAGGCCATCACCAGCCCCAAACCGTTCCCGCGCTGGATGGTCACCATTGCCTTTGGAGTGTTCGCAGCGGTCTTTGTGGGTGTTCTTGGCGGTGGCCCTGTTTCCTCGCTCATCGCTTTCCTCTCCAACATCGGCGTGAGCCTCCTGGCCCGCAAGCTGGGGCGCCTTCGAATGCCTGATTTCTTTATCACCGCAACATGTTCTTTCGTGGTGACGTTCGTGGCGCTTCTGCTCTGGCGGTTCGGGCTGACCAACTCACCGGCGATCGTGGTGGTTGGCGGCATCCTTTTGCTCCTCCCCACCGGTCGACTGGTCTCTTCCGTCCAGGACGCCATCAACGGCTTCCCTGTGACAGCCGCGGGGCGGTTCCTGTCCACGATCCTGACGTTCGGGGCGCTGGTGGCAGGGATCGCCGTCGCGTTTGTGGTGGGGTCTAAGACCGGGATGAAGGAGATCGATGTCACCGAGACCTTCCCGCCGGCCTACGACCTGTGGGTCCTGGTCGTTTTCATCGCCTTGGCGGTGATGGCCATCGGCATCACCGAGCAGACCACGTGGAAGCTGTTGCTCCCAACAGCAGCCGTCGGCGTTGCAGGCTACCTGGTCCTGCTCGGCGGGGGCGCGCTGGGCCTGGGTGACAGGTTCTCGCCTGCGCTCTCCGCCGTGGTGATCGGTTTCCTGGCGCGGGTGGTGGCCTTGAAGATGGGCGCCCCTCAGCTGGTGGTGGCCGTTCCCGCGGCGCTGATCCTGCTGCCTGGCCTCACCATTTTCCGCTCCATGTACGTGCTGACCATCGAGGAATCCGAGATCCTGCTCGGCGCCGGAGGGATGCTGAACGCCGGAGCCATTGTCCTGGGCGCGGCCGGCGGGATTGTGCTGGGAGACACCCTGGCCAGGCCGCTGACCCGGAGCCTGGCCAGCAATGAACGCAGGCGCGCCCGGAGACGGTAAMTHRPEKPGTRPHTDGLPKTEPLSPSQLRQNAAAKRMLRRLVQGENPPTAPLSIVDRLTGSPYANPMIQVGGVDTSARKTLDFALHLAETMFRYGAGALEVETSIIAVTAALGLKNIEVDITNQSVAINYAPKDQTPIALLRVVRSWTNNYAGLAKVHQLVTDIVAGGVGRDEAIRRLDEAITSPKPFPRWMVTIAFGVFAAVFVGVLGGGPVSSLIAFLSNIGVSLLARKLGRLRMPDFFITATCSFVVTFVALLLWRFGLTNSPAIVVVGGILLLLPTGRLVSSVQDAINGFPVTAAGRFLSTILTFGALVAGIAVAFVVGSKTGMKEIDVTETFPPAYDLWVLVVFIALAVMAIGITEQTTWKLLLPTAAVGVAGYLVLLGGGALGLGDRFSPALSAVVIGFLARVVALKMGAPQLVVAVPAALILLPGLTIFRSMYVLTIEESEILLGAGGMLNAGAIVLGAAGGIVLGDTLARPLTRSLASNERRRARRRNANANANANA
D1-29_00926840COG2375putative proteinATGAGCACCGTTCCGGCAGCCACCAGCGCCTCGAAGCAGACCCGCCCGCAGACCGACCTGACCGTAATCCGCCGTGAGGAACTCAGCCCGCACATGGTCAGGATCGTTGCCGGCGGCGAGGGCTTTGCAAGCTACATCAATAACGGCTTTGTGGACCGGTACGTAAAGATTGTCTTCCCGCAGCCCGGCGTGGACTATGCCATGCCACTGGACCTTTGGGCCATCCGCGAAACCATGCCCCGTGAGCAGTGGCCGTTCACGCGCACATATACCGTCCGGTGGGTGGACCTGGAGGCCAGGGAACTCGCCATCGATTTTGTCATCCACGGCGACGAAGGGCTCGCCGGCCCCTGGGCAGCAGCTGCCCAGCCGGGCGATACCCTGACCTTCACCGGCCCGGGCGGCGCCTATAACCCAGCTCGCGACGCCGACTGGTACCTCTTTGCCGGCGATGAGGCCGCCTTGCCTGCCATCGCCGCTTCGCTGGAGGCGTTGCCCCCGGAGGCGCGCGGCCTGGCCTTCCTGGAGGTCGACGGCAACGCCGACATCCAGCCAATCTCCGCCCCGGCCGGAGTGGACATCACTTGGGTTTTCCGCCACGGCGCACCGGCCGGCACCGGCGACTTGCTGGCCTCAGCCGTCGCCAGCGCCGATTGGCCTGCCGGCCGGGTTGATGTCTTCGCCCACGGGGAACGCGGGTACATGAAGGCGCTGCGGGACGTGTTTTTTGCCCAGCGCGGGCTGGAGCGCAAGCAGGTGTCCCTGTCGGGTTACTGGGCCAGCGGCCGGGTGGAGGACGATTTCCAGGCGGAGAAGAAGCTCCCCGTAGGGCAAATCTAAMSTVPAATSASKQTRPQTDLTVIRREELSPHMVRIVAGGEGFASYINNGFVDRYVKIVFPQPGVDYAMPLDLWAIRETMPREQWPFTRTYTVRWVDLEARELAIDFVIHGDEGLAGPWAAAAQPGDTLTFTGPGGAYNPARDADWYLFAGDEAALPAIAASLEALPPEARGLAFLEVDGNADIQPISAPAGVDITWVFRHGAPAGTGDLLASAVASADWPAGRVDVFAHGERGYMKALRDVFFAQRGLERKQVSLSGYWASGRVEDDFQAEKKLPVGQINANANANANA
D1-29_00927771ungCOG0692Uracil-DNA glycosylaseGTGTTTGAGCCCGACGCCCTGTTCGAGTGGGACCCGGTCCCCGTGGATACTCTTGACTTCGTCGAGATGGCGCGGCTCCCGCTCGCCGAACTGATGGCTAGTGACTGGGCTGAAGCATTGAGCGGGGTGGAACCGGAACTTCGGGCCGTCCTGGGCTTCCTTGCCGCCGAAGTGGCGGCGGGCTACCAGGTCCTGCCGTCGCCGTCGAACGTTCTGCGTGCATTCCGTCAGCCCCTGGCCGACGTGAAGGTTCTGATTGTTGGCCAGGACCCCTATCCGACTCCCGGGCACGCCGTCGGGCTGTCCTTTTCTGTTGATCCGCGGACGCGGCCCATCCCCCGGAGCCTGGCCAACATTTACCGTGAACTGGAAGCCGATTTGGGGATCCCGCCCCGGGGACACGGCGACCTGTCCGGCTGGGCTGATCAGGGGGTGCTGCTGCTGAACCGGGTGATGAGCGTCAGGGCCGGGGAGGCTGGCTCGCACCGCGGCAAAGGGTGGGAGAAAATTACGACGGCGGCCGTTGCGGCCGTAGCCAACCGGCGGACCCCAGGTGGCGCGGTTGCTCCCCTGGTAGCCATCCTGTGGGGCAAGGACGCAGAGGCGGTCAGGCCGCTTCTCCACGGGGCAATGGTGGTGTCGAGTCCGCACCCCAGTCCGCTTTCGGCATCGCGCGGGTTTTTTGGTTCCCGCCCTTTCAGCCGGGCAAATGAGTTGCTGCGCGAACAAGGCAGCGCCGGCGTAACCTGGGAACTCCCCCAGGTTCCTTAGMFEPDALFEWDPVPVDTLDFVEMARLPLAELMASDWAEALSGVEPELRAVLGFLAAEVAAGYQVLPSPSNVLRAFRQPLADVKVLIVGQDPYPTPGHAVGLSFSVDPRTRPIPRSLANIYRELEADLGIPPRGHGDLSGWADQGVLLLNRVMSVRAGEAGSHRGKGWEKITTAAVAAVANRRTPGGAVAPLVAILWGKDAEAVRPLLHGAMVVSSPHPSPLSASRGFFGSRPFSRANELLREQGSAGVTWELPQVPPGPT0007090_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
D1-29_00928330hypothetical proteinGTGGCAGAAGCAGCTCGGGAACACATGCCGGAGCCGGAAGGGCACAGCCCGCTGCTGGCTGATTTCAGTCTTCGTGACTCGCGGTTGAGCGAGCGGGACCAGCAGATGCTTGCCCTGGAGCGGCAGTGGTGGAAGTACGCCGGTGCAAAGGAACAGGCCATCAGGGAGCTCTTTGACCTGTCCGCCACCCACTACTACCAGTTGCTGAATTCGCTCATAGACACCGAGGATGCACTGGCCCACGATCCCATGCTGGTTAAGAGATTGCGTAGACTACGTACGTCACGTCAGCGGGCACGTACTGCACGCCGCCTGGGATCCGACGCGTAAMAEAAREHMPEPEGHSPLLADFSLRDSRLSERDQQMLALERQWWKYAGAKEQAIRELFDLSATHYYQLLNSLIDTEDALAHDPMLVKRLRRLRTSRQRARTARRLGSDANANANANANA
D1-29_00929630hypothetical proteinATGACCAAATACGCTCGGGATGAATTCGACAAGATACCGGAGACTGCCTCGCGGCAGGGAGTCCACCGTTCCGCATCTGCTCCTTCCCGGCGCAAGTTGTGGCCCATTCTGGCGGTCGGCATGGTCGCGTTGGCGATCGGGTTGGTCTCCTTCCTGATCCTCCCAAAGCTGGGCATCATGCCCGGGGGTACCCAGGCTTCCAGCAGCCTGGAGTCGGCAGCCCTGCCCCAGTCGGGGGCGGATCCTTCAGCCAGTGCGGACAGCTCCGCCAGCCCGCAGCCTTCCGCCGTGCAGACGTCCGAAAGTGCAAAACCAGAACCAAGCCCGACGCCGAGCGCCACCCCGTCGTCCGCGGTGGACAAGACCCAGGGCGTGGCGGTCTACAACGCTTCCGGAACGGCCGGGCTGGCTGGCCGGGTCAGTTCAACGATCCAGACCGATGGCTGGACGCTGGGACAGGTCGGCAACTGGGGCGGTGCCCCGCAGCAGACGTCCGTAATCTTCTACGCCGGCCCGGCCCAGAAGGCCAACGCAGAGGCCCTTTCCGCGCTTTTGAACATTCCCACCCTGGTGGACAGCGCCGAATTCCAGGTCCCGGTGGTTGTGGTGCTCGGTCCCGGCTTCCCGTAAMTKYARDEFDKIPETASRQGVHRSASAPSRRKLWPILAVGMVALAIGLVSFLILPKLGIMPGGTQASSSLESAALPQSGADPSASADSSASPQPSAVQTSESAKPEPSPTPSATPSSAVDKTQGVAVYNASGTAGLAGRVSSTIQTDGWTLGQVGNWGGAPQQTSVIFYAGPAQKANAEALSALLNIPTLVDSAEFQVPVVVVLGPGFPNANANANANA
D1-29_00930207scoFCOG1278Cold shock protein ScoFATGGCACTGGGAACCGTTAAGTGGTTCAACGCTGAAAAGGGCTACGGCTTCATCACCGTTGACGGCTCAGGCGACGATGTTTTTGTGCACTGGTCGGCCATTGAGGGTGAGGGGTACCGTGCCCTGGACGAGGGGCAACGCGTGGAGCTGGAAATCGGCGAAGGCGAGAAGGGCCCGCAGGCCGAAAGCGTCCGGCCCGCCGAGTGAMALGTVKWFNAEKGYGFITVDGSGDDVFVHWSAIEGEGYRALDEGQRVELEIGEGEKGPQAESVRPAEPGPT0014675_5809DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-29_009311272braCCOG0683Leucine-, isoleucine-, valine-, threonine-, and alanine-binding proteinGTGAGGTCTGAGACGTTCAAGGCGGCCATTTTCCGGGGCGCAGCAGGTGCGGCCGTCCTCCTTGCCCTGGCGGGCTGTTCAACGGCCGCCGGGAATGCACGGCTGGATTCCGTTGAAGCGTCCGGTGACGGAACCCTGCGCATCGGCCTGATCCTGGATAACACCGGGGAACAGGCCTTCCTCAACGATTCACAGCGTGCCGCGGCCAAACTCGCCGTGCAGGAAGTAAACGCCGCCGGCGGTCACAAGGGAAAGCCGGTGGAGCTGCTTCCCGAGTCGGCCGGCGATGATACCGAGACCCAGGCCAGGAACCTGGTGGCAGCCAAGGCTGATGTGGTGATTGGGCCCACCGATTCGAGCCACGCGGCCGCTGCCATCGCCGTGCTGTCCCACGCGAAAGTGCCGCTCATTTCACCGGCCAACTCTGCCGCAGGGCTCAGTTCACACCAGAACGGCGGCTATTACTTCCGCACGGCGGCCGCCGACGTCGCCCAGGCATCCGTGCTGGTCAAGCTTGCCAAGGACAGCGGCGCCAAGAGCCTTGCCGTGGTCCATCAGGACAGCGCTTACGGCGGGGAGGTGTCCTCCGCTGTGGCCGCTGCCGCCAAGGACGCGGGCCTGGAAACAGTGTCCACCTCGGACTTCAAACCCGGAGACGCACGCCAGGCAGCCGCTGCTGCGCAAAAGGCTGCGCCGGATGCCGTGGTGCTGGTTGCCCGTGAGGGCGCCCAAGGCGCCATAGCCGAACTGATCAATGCCGGATTGTCCGGAAGCAGGATCATCCTCAGCGATGGCGCCTTTGCCAGGTACGGTTCGGGGCTGGGTTCCAAAGCGCTGGACGGAGCACGGGCCGTAGTTCCCGGTGTGTTCCCCTCGGCGGACTTCCAAGCCCGCCTGGTGGCGGTGGAGCCCCGGCTGAAGGATCTGTCGTTCGCTGCAGAGACCTTCGACGCCGTGAATCTCGCGGTCCTTGCCGCTGCGGAAGCCGATGACGACGCCGGGCGGACCATAGCTGCCAACCTCATCGCCGTCTCCGGCGGGTCCGTTGAAAATCCTGACCGGGGGCCGGGCGGGAAGAAGTGCACTTCCTTCAAGGATTGCCAGGCTCTGGTGAAGTCCGGTGCCGCCGTTGATTATGACGGTGAGTCAGGTCCTGTCGCCTTTGACGCCAACGGTGACATCACCACGGCCAACTTCATGGTCTTCACCTATGGGCCGGACAATAGCGCCCGCGTGACGGGCCGCGAGACGGCAGGCCGTGCCGCCGGCTGAMRSETFKAAIFRGAAGAAVLLALAGCSTAAGNARLDSVEASGDGTLRIGLILDNTGEQAFLNDSQRAAAKLAVQEVNAAGGHKGKPVELLPESAGDDTETQARNLVAAKADVVIGPTDSSHAAAAIAVLSHAKVPLISPANSAAGLSSHQNGGYYFRTAAADVAQASVLVKLAKDSGAKSLAVVHQDSAYGGEVSSAVAAAAKDAGLETVSTSDFKPGDARQAAAAAQKAAPDAVVLVAREGAQGAIAELINAGLSGSRIILSDGAFARYGSGLGSKALDGARAVVPGVFPSADFQARLVAVEPRLKDLSFAAETFDAVNLAVLAAAEADDDAGRTIAANLIAVSGGSVENPDRGPGGKKCTSFKDCQALVKSGAAVDYDGESGPVAFDANGDITTANFMVFTYGPDNSARVTGRETAGRAAGPGPT0020565_113DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_NEUTRAL_AMINO_ACID_TRANSPORT,PGPT0020565-natB-K11954NANA
D1-29_009321629groL1_1COG045960 kDa chaperonin 1ATGGCCAAGATCATTGCATTTGATGAAGAGGCACGCCGCGGCCTTGAGCGGGGATTGAACATCCTCGCCGACGCCGTTAAGGTCACCCTCGGCCCGCGTGGACGCAACGTTGTCCTCGAAAAGAAGTGGGGCGCCCCCACGATCACCAACGATGGTGTTTCCATCGCCAAGGAGATCGAACTGGACGATCCTTACGAGAAGATCGGCGCCGAGCTGGTCAAGGAAGTTGCCAAGAAGACGGACGACGTGGCCGGCGACGGAACCACCACGGCTACCGTACTGGCACAGGCGCTGGTCAAGGAAGGCCTGCGCAACGTTGCTGCCGGCGCTGACCCGCTGTCACTCAAGCGCGGAATCGAGAAGGCTGTAGAAGCCGTCACGGTGGAGCTGCTTGCATCGGCCAAGGAAATCGAAACCAAGGAAGAGATCGCGGCAACCGCGTCCATCTCCGCCGGTGACGATGAGATCGGCGCCCTCATTGCCGAAGCCCTGGACAAGGTGGGCAAGGAAGGTGTTATCACCGTTGAGGAGTCCAACACCTTCGGCCTGGAGCTTGAGCTCACCGAAGGCATGCGCTTCGACAAGGGCTACATCTCCGCGTACTTCGTCACGGACGCTGAGCGTCAGGAAACGGTCCTTGAGGACCCGTACATCCTGATCGTCAACTCCAAGATCTCCAACGTCAAGGAACTGGTTGCTGTCCTGGAAAAGGTCATGCAGTCCAACAAGCCGCTGCTGATCATTGCCGAGGACATCGAGGGCGAGGCCTTGGCCACGCTGATCGTGAACAAGATTCGTGGCACCTTCAAGTCGGTTGCCGTCAAGGCTCCCGGCTTCGGTGACCGCCGCAAGGCCCAGCTGGCTGACATTGCCGTCCTCACCGGCGGCCAGGTCATCGCCGAGGAAGTCGGGCTCAAGCTGGAGACGGCCGGCCTGGAACTCCTGGGCCGCGCCCGCAAGGTGGTTGTCACCAAGGACGAGACCACCATTGTTGAGGGTGCAGGCGACGCCGACCAGATTGCTGGCCGCGTTTCCCAGATCCGCGCCGAGATCGAAAACTCCGATTCCGACTACGACCGCGAGAAGCTGCAGGAACGACTGGCCAAGCTGGCCGGCGGCGTTGCAGTCATCAAGGCCGGTGCCGCTACCGAAGTTGAGCTCAAGGAACGCAAGCACCGCATTGAGGACGCTGTCCGCAACGCAAAGGCTGCTGTTGAAGAAGGCATCGTCGCCGGTGGTGGCGTTGCACTGATCCAGGCCGGCGCCAAGGCGTTCGCCAACCTGCAGCTCCAGGGCGACGAAGCAACGGGCGCCAACATCGTCCGCGTTGCCATCGACGCTCCGCTGAAGCAGATCGCCTTCAACGCCGGCCTCGAGCCGGGCGTTGTGGTGGACAAGGTCCGCGGCCTGCCTGCAGGCCACGGCCTGAACGCAGCAACCGGTGAATATGTTGACCTGCTGGCTGCCGGCATCAACGACCCGGTCAAGGTGACCCGCTCTGCACTGCAGAACGCGGCCTCCATTGCCGGCCTGTTCCTCACCACCGAGGCCGTAGTGGCCGACAAGCCGGAGAAGAACGCTCCGGCCATGGGTGGCGGCGAAGACATGGGCGGTATGGGCGGCTTCTAGMAKIIAFDEEARRGLERGLNILADAVKVTLGPRGRNVVLEKKWGAPTITNDGVSIAKEIELDDPYEKIGAELVKEVAKKTDDVAGDGTTTATVLAQALVKEGLRNVAAGADPLSLKRGIEKAVEAVTVELLASAKEIETKEEIAATASISAGDDEIGALIAEALDKVGKEGVITVEESNTFGLELELTEGMRFDKGYISAYFVTDAERQETVLEDPYILIVNSKISNVKELVAVLEKVMQSNKPLLIIAEDIEGEALATLIVNKIRGTFKSVAVKAPGFGDRRKAQLADIAVLTGGQVIAEEVGLKLETAGLELLGRARKVVVTKDETTIVEGAGDADQIAGRVSQIRAEIENSDSDYDREKLQERLAKLAGGVAVIKAGAATEVELKERKHRIEDAVRNAKAAVEEGIVAGGGVALIQAGAKAFANLQLQGDEATGANIVRVAIDAPLKQIAFNAGLEPGVVVDKVRGLPAGHGLNAATGEYVDLLAAGINDPVKVTRSALQNAASIAGLFLTTEAVVADKPEKNAPAMGGGEDMGGMGGFPGPT0014570_4957DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077NANA
D1-29_009331005hypothetical proteinATGGATCCGGTCAAGAACCAGATATCAGCGGTTGACCCACTGGCTATCGATCCAGAGGCGGAGCCGAATGGGGAAGATGCCCTGCATAAGATCCTGTCAGGGACCACAGTCTTCCGCCACAGCCCCCCGGGTGCGGGTGTGACCTCCCTGGACAACCACAGGCATCGCAAGGCGCAGATCGCCGGTGGGTTTTTGCTCGCCGCTGCTGCTGTGACGGCAGCGGTCCTCGTTGGCGCTAACTTCGGTTCGGTGAGTTCCAAGCCTGCGCCGGCAGCCACTGTTACCTCCGCCCAGGCAACACCCACGCCCTCCGCGACTCCGTCGGCCACCCCATCGGTGTCAGCAACGGTACCGGCTGCAACCCCCACCCCGGCACAAACTGCCCCCGCCGCGGCACCAACAACTGCTCCGCCGCAACCGGCGGCGCAGCCCGCGGCGCTGCAGACGTTCACTTTCCCGGACGGCCATGTCTCCTTTAAGTACCCCACTGGCTGGAGTGTCAGAACGGAGCAAGGGCCCTATCTTTCGGAGGACACGAAGGCCAGTTCCCTGGGAGCCATCATCTCGGATGCTGCTGGCGGAGAAGTAGCCCACGTGTTCAGCGGGTTCTACGGTGATGGCACGGGTGGCTGGGTGAAGCGGACCGTACTGGACAGGGCGGCAGTTCCCGGGGTCACGGACAAGTCGGGAAATCCCGTGGAGTTCGGTTTCGCGGCGGATCAAGGTTTGGCTGATCCCTCTGAAGGGACGGCCTCACCCGCCCAATTGGCGGACAGTCGTCCGTCCTACTTCATGGACGTGCGTCTTTCCTCGGAATTCGACGCCGGGGAGAGGAGTTCGGGGACCAATCAGATCATGATGCCCAATGGAGCCATGTCCGCCCGCGTGCTGTTCGACTTTGAAAAGCAGCCGATCTTTGCCAGCCCCGAGGCGGCAAAGGCCTGGATGAACAGCGTGCAGTACGCCCAGCTGAAGGCTTTGCTGCTGAGCCTGCGCTACCAGTAAMDPVKNQISAVDPLAIDPEAEPNGEDALHKILSGTTVFRHSPPGAGVTSLDNHRHRKAQIAGGFLLAAAAVTAAVLVGANFGSVSSKPAPAATVTSAQATPTPSATPSATPSVSATVPAATPTPAQTAPAAAPTTAPPQPAAQPAALQTFTFPDGHVSFKYPTGWSVRTEQGPYLSEDTKASSLGAIISDAAGGEVAHVFSGFYGDGTGGWVKRTVLDRAAVPGVTDKSGNPVEFGFAADQGLADPSEGTASPAQLADSRPSYFMDVRLSSEFDAGERSSGTNQIMMPNGAMSARVLFDFEKQPIFASPEAAKAWMNSVQYAQLKALLLSLRYQNANANANANA
D1-29_00934510hypothetical proteinGTGCTTTCAGAGCGCGAATTGGCGTTTATCGCCATTCATAAAGACAACTATCCATCCGTCTATAAGTTCGTCCGCCGACGCGTGGAATCGGCGGACCTGGCGGAGGAGATCGCAGCTGACGTCTTCCGCGTGGTGTGGCAGAAATGGGCCGACAGCTCACAAAAGGACCTCCCCTACCTGTTGACGGTTGCGCGGAACTTGGTGGGAAACGCTTACCGCAGCCGCGACAGGCGGCAGGCGCTGCTGGACAAACTGCGGACTGCGGTGGTTCAACGGTTCGGGGACGCGTCCGAAAACGTCGCGGTACAGGATGCCATGATGCGGTTGCGCGAACAGGACCGCGACGTTTTGCAGCTGGCCTACTGGGACGGCTTGGGCACCGCAGACATTGCGAGGGTGCTGCAATGCAGCGAATCGGCGGCCAGGGTCCGTCTGCACCGGGCCCGCGCAGCCTTCCGGAAACAGGTGCCTGCAGGGGCCGAAGCCACTACACACAAGATGGGGGTCTGAMLSERELAFIAIHKDNYPSVYKFVRRRVESADLAEEIAADVFRVVWQKWADSSQKDLPYLLTVARNLVGNAYRSRDRRQALLDKLRTAVVQRFGDASENVAVQDAMMRLREQDRDVLQLAYWDGLGTADIARVLQCSESAARVRLHRARAAFRKQVPAGAEATTHKMGVPGPT0014960_11500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_009351131rnhARibonuclease HATGCTCTGCGGACGCCCGCGCGAACGCATTGTCAGGGTGGTCTGGCAGGATGGAGCAGTGACAATTACTGCAGCAGCCGACGGTTCGGCTTTAGGAAATCCCGGCCCTGCCGGATGGGCCTGGTATGTGAACGACGATTGCTGGCGGGCAGGGGGCTGGCCGCACGGGACCAACAACCAGGGTGAGCTGATGGCTGTCCTGGACCTTTTCCGGGCCACAGCGCACGTTCCTGCGGAAGACCTTCGAATCCTGTGTGACAGCCAGTACGTCATTAACTCCATCACCAAATGGATGCCCGGCTGGAAGCGGAAGGGGTGGCGGAAGGCCGACGGCAAACCGGTCCTGAACGTGGAACTGCTGAAAGAACTTGACCGGGAACTCCTGGGCCGCAAGTACACCTTCGAGTGGGTCAAAGGCCACGCCGGCCACCCTCTCAATGAGGCAGCAGACGAACGGGCCAGGGCCGCCGCCACGGCCTACCAGCAGGGAGTAGCTGCCCGCTCGGGTCCGGGCTTTCCCGGTGCCCATACTCCTGCCGGCACCACCGCAGCTCCCGCCGGTATCACCACAGCTCCTGCCACGTTGAACGGCACAGCTCCCGCCGCGAACGGCACAGCGGCCCGCGGCCGCACGGGAACCGCTGCCGCTTCCGCCGCCCCCGCCGCGGCCCTTGCTCCCCGGGCCACGTCCGGTCCCGCCACGCTCGGCCTCCCGGCCTACGATGAGCCCGACCTGTTCAGTGAGCTGGAGAGTGAATCCTTCCCCGCACCAGGGGCCGCAGGTGCCGAACGTGCCCCGGAAGCCATCGTCGAGGCCCTCGAGCGCGAGCTCTTGGGTCCGGACGTCCGCGGCGACATCGGCAGGACCGGGGTCCTCCTGCACCCGGACTTCATGGAGATTGGGAGCTCGGGGCGGATCTGGACCCGTGACGCCATGATGATGGCCCTGGAAGAAGACCCGGGCGAGCGGACGGAACTGGAGGTGCTCGGGGCCGACCGCATCGGAACCGATGCAGTGCTCTTGACATATCGAAGCTATTCGCGCTCAGGTACCACCCTGCGAAGCTCCCTGTGGGTCCTTGATGGCGGTCGATGGAGGCTCAGGTTCCACCAGGGCACTCCGGAAGCCTGAMLCGRPRERIVRVVWQDGAVTITAAADGSALGNPGPAGWAWYVNDDCWRAGGWPHGTNNQGELMAVLDLFRATAHVPAEDLRILCDSQYVINSITKWMPGWKRKGWRKADGKPVLNVELLKELDRELLGRKYTFEWVKGHAGHPLNEAADERARAAATAYQQGVAARSGPGFPGAHTPAGTTAAPAGITTAPATLNGTAPAANGTAARGRTGTAAASAAPAAALAPRATSGPATLGLPAYDEPDLFSELESESFPAPGAAGAERAPEAIVEALERELLGPDVRGDIGRTGVLLHPDFMEIGSSGRIWTRDAMMMALEEDPGERTELEVLGADRIGTDAVLLTYRSYSRSGTTLRSSLWVLDGGRWRLRFHQGTPEANANANANANA
D1-29_00936288hypothetical proteinATGAGCATCATTTCCGTCGATACCGAACAGCTCCAGCTCAAATCAGCCAATGTGAAAGCAACCGTGGACCGGATCGGCGCGGACGTTCAGACCATGAAGCGGGGCCTCGACGAACTCCAGGCCACGTGGCGTGGTTCAGCGGCCACCAACTTCCAGGCGCTGGTGGCCGAGTGGACCATCACCCAAGGCAAGGTGGAGGCGTCGCTGGCATCCATCAACCTGGCGCTGGCTTCGGCGGCTGCCAGCTATGCCCAGACCGAGCAGGGCAACACCCAGCGGTTCAGCTGAMSIISVDTEQLQLKSANVKATVDRIGADVQTMKRGLDELQATWRGSAATNFQALVAEWTITQGKVEASLASINLALASAAASYAQTEQGNTQRFSNANANANANA
D1-29_009371680sasA_4Adaptive-response sensory-kinase SasAGTGGCCATGATCATGGCGCTGCTGATCGTCGCCCTGACGGTGACCGGTGCCGGCACGCTGACCCTGCTACACAGCTATCTGCAGGGCCAGGTTGACGACAAACTCAACGCCGCCGTCAAGCTCGCCAGCCAGCAGCGCTCGTTCACCCAACTGCAGACGCCCAACCCGATGGTGCTCACCGACTATTCCCTGACGCTGTTCACTCCGGGCCAGGATCCCATCCCCTTCGGCGGTGATCCGGACGACCGGCCGGACATCAAGTCGATTTCTGTCCAGGAAGCACGGGACCAGGGCGGGCGCCCCTATCAGGTTCGGGGGACCGACGGCGAAAACTGGCGCGTGGTGGCTGTTACAGTCCTGAACAACGGCACCAGTGCCGTGGTTGTCATCGGCCTGCCGCTGACCAGCGTGGACGACGTCCTGGAGCACGCCATCCTGGTGGTGTGCGGCGTGGGTCTGCTGACTCTTCTGCTGGCCTCCCTGATTGCCAGCTGGACGGTTTCCCGGTCCTTCCGGCCGCTTGCCAGGGTTGAGAAGACAGCTGCCGCGATTGCTGCTGGCGACCTCTCCCGTCGAGTGGAAGTGGACAACCCCGGCACCGAACTGGGGCGGCTTGGCAGCTCGCTCAATGCCATGCTCGCGCATATCGAAACAGCCTTTTCCGCCCGCACAGCCTCTGAAGGCAGGATGCGCCGGTTCGCTGCGGACGCATCGCACGAGCTGCGCACCCCGCTTGTAACCATCAGGGGATTCTCCGAGCTCTACCGCCACGGCGCGCTCGCCACTGAGGAGGACGTGGCCACCGCCATGGGGAGGATCGAAAGCGAAGCCAAACGGATGGGATCCATGGTGGAGGACCTCCTGCTGCTGGCCCGCCTTGACGAACAGCGCCCACTGCAGCAGAAACCGGTGGACCTGTATCTCATCGCGCATGACGCCGTGGTAGACACTCAGGCCAGCGACCGCACACGTGCGATCACTCTCACCGGGCTCGACGGCGGCGCTGCGGTACCGGCACCCGTCCTGGGGGACGAAGCGAAATTGCGGCAGGTGGTGGGCAACCTGGTGGGCAACGCGCTGCGCTATACACCGGAAGGAAGTCCGATCGAAGTTGCCGTTGGAGTCCGCACCTCCGACGGCGGCCAGAAGTACTCCGTGATCGAGGTACGCGATCATGGACCTGGCATCTCCCAGGAGGACGCTTCCAAGGTCTTTGAGCGCTTCTACCGCGCGGATACTTCCCGGACCCGTGAAACGGGCGGCAGCGGCCTGGGCCTTGCCATTGTGGCGGCTATCGTCGGGTCGCACGGTGGCTCGGTCAGGGTGGAAGCCACCGACGGCGGCGGGGCCACCTTGGTGGTCAGCCTGCCCATGAGGCAGGACGCTGAAGGTATGGATGCTGATGGCCTGGATGCTGACAGACATGATGTTGAGGCTCTTGATGCTGACGGACCAGGTGCCCAGGGACCAAGTGCTCAGGGACAACTCGCTGACGGACAAGAGGCTGAAGGACAAGTCGCCCCGGGCGCAGGGCAGGTCACTGCCGGCTCCCGTTCCGGGCAGGCCGCCAATCAGGGTGCGGATGGGCCCCAGGGCGGCAGGCCTGGCATGCCTGGCAGGGGCGGCCCTGACAGCGGTGACGGCGGCAACCAAAGCGACGGCCGGGTTATCCACATATAGMAMIMALLIVALTVTGAGTLTLLHSYLQGQVDDKLNAAVKLASQQRSFTQLQTPNPMVLTDYSLTLFTPGQDPIPFGGDPDDRPDIKSISVQEARDQGGRPYQVRGTDGENWRVVAVTVLNNGTSAVVVIGLPLTSVDDVLEHAILVVCGVGLLTLLLASLIASWTVSRSFRPLARVEKTAAAIAAGDLSRRVEVDNPGTELGRLGSSLNAMLAHIETAFSARTASEGRMRRFAADASHELRTPLVTIRGFSELYRHGALATEEDVATAMGRIESEAKRMGSMVEDLLLLARLDEQRPLQQKPVDLYLIAHDAVVDTQASDRTRAITLTGLDGGAAVPAPVLGDEAKLRQVVGNLVGNALRYTPEGSPIEVAVGVRTSDGGQKYSVIEVRDHGPGISQEDASKVFERFYRADTSRTRETGGSGLGLAIVAAIVGSHGGSVRVEATDGGGATLVVSLPMRQDAEGMDADGLDADRHDVEALDADGPGAQGPSAQGQLADGQEAEGQVAPGAGQVTAGSRSGQAANQGADGPQGGRPGMPGRGGPDSGDGGNQSDGRVIHIPGPT0004100_1942DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-29_00938711tcrX_2COG0745putative transcriptional regulatory protein TcrXATGAATAAGAACGGGCCCGAAGCCAAGCTCCTCGTTGTCGATGATGAACCCAACATCCGCGAGCTGCTGTCCACCTCCCTGCGCTTTGCGGGGTTCGAGGTAGTCTCCGCCGCAAACGGCAGGGACGCTTTGGCCGCGGCTGAGCTCCATGCCCCGGACCTGGCGGTACTGGACGTGATGCTCCCGGACATGGACGGCTTTACTGTGACCCGCAAGCTCCGCGCTTCCGGCAAGCACTTCCCCGTCCTCTTCCTCACGGCCAAAGACGACACGGAGGACAAGGTCACCGGCCTCACCGTGGGCGGCGACGACTACGTCACCAAACCCTTCAGCCTGGATGAAGTGGTGGCCCGGATCCGTGCGGTCCTCCGCCGAACCCAGCCCATGCTCGATGACGATGCCGTGATCCGGGTGGATGACCTGGAGCTCGACGACGATGCGCACGAGGTGCGCCGCGGCGGCACCGTTATTGAGCTGTCCCCCACCGAGTTCAAGCTGCTCCGGTACCTTATGCTGAACCCGAACCGGGTGCTGTCCAAATCACAGATTCTGGACCACGTGTGGGAGTACAACTTCAACGGGGACGCCTCGATCGTCGAGTCCTACATCTCTTACCTGCGGCGCAAGGTGGACCTGGATCCGGACGCGCCGGCCCTGATCCAGACCAAACGCGGCGTGGGCTATGTTCTCCGAACGGCAGAGAAGCGCTGAMNKNGPEAKLLVVDDEPNIRELLSTSLRFAGFEVVSAANGRDALAAAELHAPDLAVLDVMLPDMDGFTVTRKLRASGKHFPVLFLTAKDDTEDKVTGLTVGGDDYVTKPFSLDEVVARIRAVLRRTQPMLDDDAVIRVDDLELDDDAHEVRRGGTVIELSPTEFKLLRYLMLNPNRVLSKSQILDHVWEYNFNGDASIVESYISYLRRKVDLDPDAPALIQTKRGVGYVLRTAEKRPGPT0002665_544DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002665-phoP|phoB1-K07658NANA
D1-29_009391647hypothetical proteinGTGAACGACGGCCCGCTGATTGTCCAGAGCGATAAAACAATCCTGCTTGAAGTGGACCACGAACTGGCCACCGAAGCCCGGCATGCCATCGCACCGTTTGCCGAGCTGGAACGCGCACCGGAACACATGCACAGCTACCGGCTCACTCCCCTTGGGCTGTGGAATGCCCGCGCCGCCGGGCTGGACGCGGAGAAGGTCCTGGATACGCTGCTCAAATACTCCCGGTTCCCCGTGCCGCACTCGCTCCTGATCGACGTCGAGGAAACCATGTCCCGGTACGGAAGGCTCCGGCTGGAGAAGGACCCGCAACATGGCCTGGTGATGCGCACAGACGACTACCCGGTGCTCGAAGAAGTCATCCGGTCCAAGAAAATCCAGCCCCTGCTGGGCCCCCGGATTAACGGCGAGACCATCGTGGTGCATTCCTCTCAGCGGGGCCAGCTCAAACAGTTGCTGCTGAAGATCGGCTGGCCCGCCGAGGACCTCGCCGGCTACGTTGACGGCACTCCGCACCTGATCGCCCTGAACGAGGACGGCTGGAAACTGCGGCCCTATCAGCGGCTCGCCACCGAGAACTTCTGGGCCGGCGGGAGCGGCGTGGTGGTCCTGCCCTGCGGCGCGGGCAAGACCCTTGTGGGTGCCGCCGCCATGGCCACCAGCTCAACCACCACGCTCATCCTGGTAACCAACACCGTGGCCGCCCGGCAGTGGAAGGACGAGCTGCTCAAACGGACTTCCCTGACCGAGGACGAAATCGGCGAGTATTCCGGTGCGGTCAAGGAAGTCCGCCCCGTAACCATCGCCACCTACCAGGTCCTGACCACTAAGCGGGGCGGCCTCTACCCGCACCTGGAGCTGGTGGATGGCCACGACTGGGGCCTGATCATTTACGACGAAGTGCACCTCCTGCCTGCCCCGATCTTCCGGATGACTGCCGACCTTCAGGCCCGCCGCCGCCTGGGCCTCACCGCCACCCTGGTCCGCGAGGACGGCCGCGAGGGCGAGGTGTTCAGCCTCATCGGGCCCAAGAGGTATGACGCCCCGTGGAAGGACATCGAATCGCAGGGCTACATCGCACCGGCTGATTGCGTTGAAGTCAGGATTGACCTGCCGCGGGATGAACGGGTGGCATACGCCATGGCTGAGGACGCGGACAAGTACCGGCTGTGCTCCACGTCGGAGTCCAAGACGCTGATTGTGGAGCAGCTCGTGGCCCGGCACCAGGGCGAGCAGCTACTGGTGATCGGTCAGTACATCGACCAGCTGGACGAGATCGGGGAGCGGCTCCAGGCTCCGGTCATCAAGGGCGATACCTCGGTCAAGGAACGCCAAAAGCTGTTTGATGCCTTCCGGGCCGGTGACGTGCACACCCTGGTGGTGTCCAAGGTGGCCAACTTTTCCATCGACCTGCCGGAGGCGTCTGTCGCCATCCAGGTTTCCGGGTCCTTCGGGTCACGGCAAGAAGAAGCTCAGCGGCTGGGCAGGCTGCTTCGGCCCAAAAAAGACGGCCGTGCCGCACTCTTCTATTCCCTGGTAGCACGGGACACCCTGGATCAGGACTTCGCCGCGAAACGCCAGCGGTTCCTGGCCGAGCAGGGGTACGCCTACCGCATCATGGACGCGAAGGACGTCGGCCTGCCCGGCTAAMNDGPLIVQSDKTILLEVDHELATEARHAIAPFAELERAPEHMHSYRLTPLGLWNARAAGLDAEKVLDTLLKYSRFPVPHSLLIDVEETMSRYGRLRLEKDPQHGLVMRTDDYPVLEEVIRSKKIQPLLGPRINGETIVVHSSQRGQLKQLLLKIGWPAEDLAGYVDGTPHLIALNEDGWKLRPYQRLATENFWAGGSGVVVLPCGAGKTLVGAAAMATSSTTTLILVTNTVAARQWKDELLKRTSLTEDEIGEYSGAVKEVRPVTIATYQVLTTKRGGLYPHLELVDGHDWGLIIYDEVHLLPAPIFRMTADLQARRRLGLTATLVREDGREGEVFSLIGPKRYDAPWKDIESQGYIAPADCVEVRIDLPRDERVAYAMAEDADKYRLCSTSESKTLIVEQLVARHQGEQLLVIGQYIDQLDEIGERLQAPVIKGDTSVKERQKLFDAFRAGDVHTLVVSKVANFSIDLPEASVAIQVSGSFGSRQEEAQRLGRLLRPKKDGRAALFYSLVARDTLDQDFAAKRQRFLAEQGYAYRIMDAKDVGLPGNANANANANA
D1-29_009402520hypothetical proteinATGTCCCTCATTCGCGCGCTCAGCAAGGAACTGGAGGCACGCAGCGACGAATCGTTGCGTGCCCTGTTCGCCGCGCGGCCGGACCTTATCTCTCCCACCGTTCCCGATTTCTCCGCACTCGCCGCCAGGGCCAGTGCCCGGGTCAGCGTCCAGCGCGCACTGGAGCGCCTCAACAAACCCCAGATGCAGGTCCTGGAAACCCTCCATCTCTGCACCAACACAGACACCGAACACAGCGCCTCGGCAACAGTGGTCAGGAAACTGATCTCAGGATCCACGGTCACCGCCGTAGAACGCATCCTGGCCTCACTCCAGGAGCTGGCCCTGGTCCACCGGGCGGAGCCGCCACACGGAACCCCTTCCACTGCCCGCCGCCAGCGGTTCTACCTTCCCGTGGGGTGCCTCAAGGATGTGGTGGGCATCTATCCGGCGGGGCTGGGCCGCAGCTATACAGAACTGGTCCGGCTGCAGCCCGCCTTCGCCCAGCGTGCCGTCCAGCTGGTTTCCGAACTGCACCGCAGCGGTGTGGCCATCCACCCGGCCACCACACCCATGGAAGCAGCGTTGTCCCTCCAACACTGGACATCATCGCCGGAGGCCCTGCAAAAGGTTCTGGCCGGAGCCCCGGAACGCACGACGGCGCTGCTCGCCCGGTTCCGCAACTGGGCCATGGGTGCCGTTCCCCAGGCGCAACGCAAGGCGTCCGTGGCGAACGAGGGCGCCGACGTCGGGCCCGTTGACTGGCTGCTTGCCCGGGGCTTGCTGGTGCCGCTGGACGCCGCCCATGTGGAACTGCCGCACAGCGTAGGACTCTCCCTGCGTGGCGGTGCTGTCATCAACGACTTCACGCTGTCGCCCCCTGTTCCCGAGCTCGGAAACACCACTGCCCTGCTGCGCAGGAATGCCGCCCTCGGGGCCATCGCCGAGACGCTGCGGCTGGTTGGCGAGCTGCTGTATGTGGTCAGGGAACAACCCCTTGCAACGCTGCGCAGCGGAGGGGTGGGCGTCCGCGAGATGAGGCGCCTTGCCGAGGCCCTGCGCATAGACCAGTCCCGGATGGGCCTGCTGCTGGAGCTTTGCGGACTGTCGGGGCTGCTCCGGCTGGATGTGGATTCTTCGGCCTGGGTTCAGCCGCCTCAGCTGGAATGGCTGGTTCTTCCACGGCAGGAACAGTGGCTGTGGCTGGTCAACGCCTGGCTTGCGAGCGAACGTGTCCCGTCGCTTGTAGGCCAGCCGGTGGGAGGCCCGGCCGGCGGTTCCGGCGCCCACCGCACAGCTGCCGGAAGCATCATCAACGCACTGTCCGCCGAAGCACAGCGGCCCGACGCGCCGGTGGTGAGGAAACGGATCCTGGAAATTCTTAATGAGCTCACCCGTGAGGCAGCAGCCTCGGATGGCAAAGCCCCGGTCCTGGATGCCGCCGCCGTGCTCCAGCGGGCCGAATGGGCCCAGCCCCGGATGGCCCGCCGTTTCAGTTCCCTCATCCGGGGCGTCCTGGCGGAGGCTGAAATGCTTGGCCTGATTGGGTCAGGCGCGCTCAGCCAGCTGGGAAGCGCCATGGCAGAAGACAGCCCGGACGAAGCACTGGGCATCCTGGGCGAGCACCTGCCCGCAGCGCTGAACCATGTGCTTCTGCAGGCAGACCTCACGGCGGTGGCACCCGGTTACCTTTCACCGGAGCTGAGCGAGAAACTGCTGCTCATGGCGGACGCCGAAGGCCAGGGTCCAGCCACCATCTACCGCTTCTCCGCATCTTCCGTCAGGCGGGCACTGGACTCCGGGCACGATGCCTCCAGCCTGCTCGAGTTCCTGCGTGAACATTCCGCCACTTCAGTTCCCCAGCCACTGGAATACCTGGTGGAGGACACCGCGGCCCGGCACGGGCGGCTACACGTCGGCGCCGCTGCGAGCTTCATCCAGAGCGACGACGAAACGACAGTTCTGGAGCTCGCCGCGGAATCGAAGACGGCGGGCCTGAGGCTCACCCGGATCGCGCCTACGGTGCTGATCTCGTCCGCGCCTCCCCGGGAGACCGCGCATGTACTTCGCGGCCTGGGTCTCTCGCCTTCGGTGGAGGAATCCGAGCCGTCGGTGGTCCGGCTGCGCCGCACTACCGGTGCCGCTGGCAGCGTCCGCCCTGTTTATACCGCTCCCCGGACAGCCCCGGCCGAGGCGGACGTGGAGGCCCAGCTGTCCCTGCTTCGCCATAACAAGTTAGTCCGCGCCGGCAGCCCGTCTGCGCCCGGCGGCGCCGGCTCCGCCGGCGCCGGAGCCTCGGCGGAATCCGGTGAGGCGGCCACGCAGCTTGGCCTGGAAACACTGCAGCGGGCCATCCGCCTCAAGCAGCGGGTCAGCATGAACGTGGTGGACAGCCAGGGGAATGCCAACCTGGAAACGGTTGTTCCGCTATCTGTAAGCGGCGGCCGGGTCAGGGTTTTTGATCCGGCGAAGGACACCGAACGCGTGCTCTCCATCCACCGCATCATCGATATAGAGGCTGCAGAGGAACTGCGCCAGTGAMSLIRALSKELEARSDESLRALFAARPDLISPTVPDFSALAARASARVSVQRALERLNKPQMQVLETLHLCTNTDTEHSASATVVRKLISGSTVTAVERILASLQELALVHRAEPPHGTPSTARRQRFYLPVGCLKDVVGIYPAGLGRSYTELVRLQPAFAQRAVQLVSELHRSGVAIHPATTPMEAALSLQHWTSSPEALQKVLAGAPERTTALLARFRNWAMGAVPQAQRKASVANEGADVGPVDWLLARGLLVPLDAAHVELPHSVGLSLRGGAVINDFTLSPPVPELGNTTALLRRNAALGAIAETLRLVGELLYVVREQPLATLRSGGVGVREMRRLAEALRIDQSRMGLLLELCGLSGLLRLDVDSSAWVQPPQLEWLVLPRQEQWLWLVNAWLASERVPSLVGQPVGGPAGGSGAHRTAAGSIINALSAEAQRPDAPVVRKRILEILNELTREAAASDGKAPVLDAAAVLQRAEWAQPRMARRFSSLIRGVLAEAEMLGLIGSGALSQLGSAMAEDSPDEALGILGEHLPAALNHVLLQADLTAVAPGYLSPELSEKLLLMADAEGQGPATIYRFSASSVRRALDSGHDASSLLEFLREHSATSVPQPLEYLVEDTAARHGRLHVGAAASFIQSDDETTVLELAAESKTAGLRLTRIAPTVLISSAPPRETAHVLRGLGLSPSVEESEPSVVRLRRTTGAAGSVRPVYTAPRTAPAEADVEAQLSLLRHNKLVRAGSPSAPGGAGSAGAGASAESGEAATQLGLETLQRAIRLKQRVSMNVVDSQGNANLETVVPLSVSGGRVRVFDPAKDTERVLSIHRIIDIEAAEELRQNANANANANA
D1-29_00941234hypothetical proteinATGACTCCCACGCGTTACCGGCGGCCCCTGATGATCTGCGCAGCGTTTGTTGCCATCCTGTCCCTGGTGGCGGTAGGCGCGGTGATGGCATTCGCGTTCGCGGGTTCCGTAGCGCCCGTGTGGGTCACCTCCACAGCCCTGTACGGCCTGCCGCTGGCCTTCCTGCTGATGCTCTTCCTGGTCCTGGACAGTGTGGCCGGCAGGCGCCGGGCAGGAAAGCCCGGCGGGCGGTAAMTPTRYRRPLMICAAFVAILSLVAVGAVMAFAFAGSVAPVWVTSTALYGLPLAFLLMLFLVLDSVAGRRRAGKPGGRNANANANANA
D1-29_00942384hypothetical proteinGTGCCTACCGGCAAGGTCAAGTGGTATGACAAGGAAAAAGGTTTCGGATTCCTCGCGGGCGAGGACGGCCAGGAAGTCTTCCTGCCCAAATCATCGCTCCCGGAAGGCGTCACGGAGCTGAAGGCCGGGACGCGCGTTGAATTCGGTGTGGCAGACGGCCGGAAAGGCGCGCAGGCGTTGGGTCTGCGGGTCCTGGACAAGACACCTTCCATTGCCAAGGCCAAACGGCCGAGCGCCAAGGATCTGGCCCCCCTGGTTCAGGACCTGGTGACAGTGCTGGACAACCTCTCCGGCACCTTGTCCGCAGGTAAGTACCCGGAAGGCAACAAGGGCAAGGCCATCGCCGCTGCCCTGCGTAAGGTTGCCGACGAGCTGGACGTTTAGMPTGKVKWYDKEKGFGFLAGEDGQEVFLPKSSLPEGVTELKAGTRVEFGVADGRKGAQALGLRVLDKTPSIAKAKRPSAKDLAPLVQDLVTVLDNLSGTLSAGKYPEGNKGKAIAAALRKVADELDVPGPT0014675_1378DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-29_00943768hypothetical proteinATGAACCTGGAAGGTGAACAGCAGGAGGCAACAACCAGCGGCCAGCCAGGCGAGACGGCCGGGCAGCCCGAACTGGCCCTGCCTCCAACAGACCCCGCCACAACAGACTCCGCCACAACTGACGCCGCCACGACTGACGCGGCCACAACTAACGCGGCCACAGCGGCAAAGCCGGGGGCCCCGCGGCGGGCCGCTGTGCCCGTATGGCGGACCGGCAAGCCCGACGCATTCCTCGCCGCTGCTGTGGACGTGGCGCGTACGGCCATCGAAGGCATCACTGCCGCCTCAGACATTGGTCAGCACGTTGCAGCCCGAAGTGAGGGCGACCGCCTTGTCACCCACCTGTTCGAATCCAAGCTGCCCGGCTACCTGGGTTGGCAGTGGTACGCGGTCCTGACCCGCAACTCCCGCTCCAAAGTAGTCACCATCAATGAGCTTGGCCTCCTGCCCTCCGAGGACTCCATCCTGGCCCCCGAATGGGTGCCGTGGGCAGAGCGTGTCCGCCCGGAGGATGCCCAGGAAGCGGAAACCGCCGGGCAGGCCGTGCCTGCGGCAGAAGCACCCGTGGATGATCTCGACGACGTCGACCAGGACGGCTCTGATCAGAACGACGTTGACCAGGACGGCGCTGAACAGGACTCTTCCAGTCCAAAGGACCTCGGCCAGGGCCAGGGCCTTGTGGATCAGGACGACGCCGACCAGGACGGCCCTGATCAGGACGACGACCACGACGACGCGGATGACGGCTCTGCCGGAGGGGCTCACTAGMNLEGEQQEATTSGQPGETAGQPELALPPTDPATTDSATTDAATTDAATTNAATAAKPGAPRRAAVPVWRTGKPDAFLAAAVDVARTAIEGITAASDIGQHVAARSEGDRLVTHLFESKLPGYLGWQWYAVLTRNSRSKVVTINELGLLPSEDSILAPEWVPWAERVRPEDAQEAETAGQAVPAAEAPVDDLDDVDQDGSDQNDVDQDGAEQDSSSPKDLGQGQGLVDQDDADQDGPDQDDDHDDADDGSAGGAHNANANANANA
D1-29_009441131serCCOG1932Phosphoserine aminotransferaseGTGAGCGAAACCAGCATCACTATTCCCGCCGACCTCCTGCCAAAGGACGGACGGTTCGGCGCCGGACCTTCAAAAGTCAGGCCGGAACAAATTGAGGCGCTTTCCGCGGCATCCACAACCATTCTTGGCACCTCACACCGCCAGGCCCCGGTCAAGAACCTGGTGGGCTCGGTCCGTGAAGGCCTGAACCAATTCTTCCGCGCCCCAGAGGGGTATGAGGTAGTCCTGGGCGTGGGCGGCTCCACAGCCTTCTGGGATGTTGCCAGCTTTGGCCTGGTGGAGAACAAGGCCCAGCACCTCTCATTTGGCGAGTTCGGCTCCAAGTTCGCGTCCGCCACCAACAAGGCGCCGTTCCTTGAGGCCTCCACGATCATCACGTCAGAGCCCGGCACGCGCCCGGAGGCTAGGGCCGAGGCCGGCGTGGATGTCTACGCCTGGCCGCAGAACGAGACGTCCACGGGCGTCTCGGCGCCTGTGAAGCGGGTGGCTGGCGTGGATGACGGCGCCCTGGTCCTGGTGGATGCAACATCAGCCGCAGGCGGACTGGACGTGGACGTCGCCCAGGCGGACGTGTACTACTTCGCGCCGCAGAAGAACTTCGCTTCCGACGGCGGCCTGTGGCTGGGGCTCTTCTCCCCCGCAGCGCTGGAACGTGCCGCCCGGATCAAAGCCAGCGGCCGCTGGATCCCGGACTTCCTGGACCTGCAGACAGCTATCGACAATTCGCGCCTCAACCAGACGTACAACACCCCGTCGCTGTCCACCCTGGTGACCCTGGACTCGCAGGTCCGCTGGCTTAACGACAACGGAGGGCTCGACTTCGCCTCCAAGCGGACCGCCGATTCGGCCGGCCGCATCTACACGTGGGCAGAGGCCTCCGGTTTCGCTTCCCCGTATGTGGCCAAGGCTGAGGAGCGCTCGAACGTTATTGCCACCATTGACTTTGACGAGTCCGTGGACGCAACTGCGGTTGCCAAGGTGCTGCGCGCGAACGGTGTCGTGGACACGGAGCCGTACCGGAAACTGGGACGCAACCAGCTCAGGATCGCCACCTTTGTCGCGATCGAGCCCGCCGACGTTTCGGCGCTGCTGGCCTGCATCGACTACGTGGTGGGCGAACTCCGCAAGTAGMSETSITIPADLLPKDGRFGAGPSKVRPEQIEALSAASTTILGTSHRQAPVKNLVGSVREGLNQFFRAPEGYEVVLGVGGSTAFWDVASFGLVENKAQHLSFGEFGSKFASATNKAPFLEASTIITSEPGTRPEARAEAGVDVYAWPQNETSTGVSAPVKRVAGVDDGALVLVDATSAAGGLDVDVAQADVYYFAPQKNFASDGGLWLGLFSPAALERAARIKASGRWIPDFLDLQTAIDNSRLNQTYNTPSLSTLVTLDSQVRWLNDNGGLDFASKRTADSAGRIYTWAEASGFASPYVAKAEERSNVIATIDFDESVDATAVAKVLRANGVVDTEPYRKLGRNQLRIATFVAIEPADVSALLACIDYVVGELRKPGPT0009160_1180DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009160-serC|pdxF-K00831NANA
D1-29_00945696ideRCOG1321Iron-dependent repressor IdeRATGACGGATCTGATCGATACTACGGAGATGTATCTTCGGACCATTTTGGAGCTTGAGGAAGAGAATATTGTCGCTCTTCGGGCCCGCATCGCTGAACGGCTGCGCCACTCCGGCCCCACGGTGTCCCAGACCATTGGGCGAATGGAGCGGGACGGCCTGGTAGTGGTCTCCGGAGACCGACACTTGGAACTAACGGCCATCGGCCGCAAACGCGCTATCGAAGTCATGCGCAAGCACCGGCTGGCGGAACGGCTCCTTGCTGACGTGATTGGCCTGGACTGGGCCTATGTCCATGACGAGGCCTGCCGCTGGGAACACGTGATGAGCGAACGGGTAGAGCGGCGCATCTATGAAATGCTGGACCACCCCACCGAATCCCCTTATGGCAACCCCATCCCTGGGCTGGCAGCCCTTGGTGGCGCCGAGCCTACCGGGATCACCGACGGTGTGATTAATCTCCTGGACGCGATGAAGGGCTATGGCCAGGGCTCCCAGGTGACGGTCAGCCGCCTGGCCGAGCCAATCCAGGTGGAGCCGGAGTTGCTGGTTCAACTCGACGAAGGCGGGATTCGCCCAGGTGCATCCGTCTCCCTTGAGCGTGTGGGGGAGTACATTTCAGTCCGTGTTCCTGGGATTGAGGGTGCGTTGGAGTTGCCGCCCGAAGTAGCGGCCCACGTCTTCGTTTCTGTCGACTGAMTDLIDTTEMYLRTILELEEENIVALRARIAERLRHSGPTVSQTIGRMERDGLVVVSGDRHLELTAIGRKRAIEVMRKHRLAERLLADVIGLDWAYVHDEACRWEHVMSERVERRIYEMLDHPTESPYGNPIPGLAALGGAEPTGITDGVINLLDAMKGYGQGSQVTVSRLAEPIQVEPELLVQLDEGGIRPGASVSLERVGEYISVRVPGIEGALELPPEVAAHVFVSVDPGPT0003890_590DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
D1-29_00947822hypothetical proteinATGCAAAATTCCAGGGGCCGCCGTCGCGCCGCCGGCCCGCCTTCGGCGCCCCGGGTTGCCGAGGTTCTTGCCGCGAACCGACCACGCGACCCCCAACGCGACGCGCGCCGCCGACGCGGTCCGTTCCAGCAAATCAGCGATTTTGCCGCCGCCAGCGGGGTAGGGCAGAAAGCCGGTATTGCCCTCGCCGCCACCGGCCTGGTCCTCACGGTCACGGTTCCCGCAACGGGTCCCGTCATGGCAACTCCTGCTGTCGGCCAGACTGCAACTTCAGCCGCGTCTGTCTCACCGCAGCCCGAAATTTCTGCAGAAGCCGGCGCGCAGATCGACTTCAGCCGCTCCTCCGTGGTGACGCAGGGCGATCCCGATGGCAAGCTCAAGCAGCTGCTGAGCGCCCAGTCTGCCGGCTCGATCACCCGCGCCGCATCCGCCGGCAGCCTGGGTGCACCGCTGGCTTCGCTGTCGACTGCCTCTCCGTTCGGTTACCGCGTCAGTCCCATCACCGGCGGTTCCGGTGACTTCCACCGCGGCCAGGATTACGTGGCCCAGTGTGGGACGTCCGTCCTGGCCGCCGCGAGCGGCACAGTGACCTTTGCCGGCTGGCATCCCTACGGCGGCGGCAACCGTGTTGTGGTGGACCATGGCAACGGCCTTGAGACCACGTACAACCACCTGTCATCCTTCAACGTCAAGGTTGGCCAAACGGTCAGCAGGGGCGAGGTGGTGGCGCTCAGCGGCACCACTGGGGCTTCCACTGGATGCCACCTTCACTTTGAGGTGCAGGTCAATGGAGAAGTCGTAGATCCCACAGGCTGGCTCTAAMQNSRGRRRAAGPPSAPRVAEVLAANRPRDPQRDARRRRGPFQQISDFAAASGVGQKAGIALAATGLVLTVTVPATGPVMATPAVGQTATSAASVSPQPEISAEAGAQIDFSRSSVVTQGDPDGKLKQLLSAQSAGSITRAASAGSLGAPLASLSTASPFGYRVSPITGGSGDFHRGQDYVAQCGTSVLAAASGTVTFAGWHPYGGGNRVVVDHGNGLETTYNHLSSFNVKVGQTVSRGEVVALSGTTGASTGCHLHFEVQVNGEVVDPTGWLNANANANANA
D1-29_00949789hypothetical proteinGTGACTCCCATCCGAATCCGACAGCTCACCTCGCAGGCATTGGGAGAGGCTACCTTCGTGTCTTCACGCCATAATTCTGCGCGCCACCGTGCGCAAACGGTTCGTACCAACCCATTGGACTCCGTGTCCAAGGCTGTTAGTGCAAATGCCGGGACCGTAGGTCGCCAGGCTGCTGTCATCGCAGCCGCTTCAGGCCTGATCCTGAGCATTGGACTTCCGGCCAACGCCGCGGACACCACCGCCGGCATCTCCGCCTCCACCGAGTCGGGTTCCGCACAAGCTGCACTTGCAGTTACGGCTGCACCCACCGCCACGGTGTCCTTCGAGCGTCCCGTGGTCAAGACCACGGCTGCTCCGAAGGTCGAAACCGTGCGGCCGCAGTCCACCGAGACTGCCACCCGGGCATCCGGAGCCACGGCGACCACCGCCTCAAAGCTGACGGACACCGTCTCCTCTGCTGCGGCGTCGGGTCTGGCGGCCATTGCCTACACCGGAATCGGCAGCCCCTACGTCTGGGGCGGCACAACTCCCAACGGCTGGGACTGCTCCGGCTTCACCCAGTGGGTTTACGCCCAGGCAGGCATCAGCATTCCGCGAGTCAACGCGTGGACCGCAATGAAGCCCACCTCCACACCGTCTCCCGGTGACCTTGTCATGCAGAATGGCGGCGCCCACGTAGGCATCTACGTTGGCAACGGCATGATGATCAGCGCCTTGAACCCCTCACAGGGAACGCTGCTGCACTCTGTCGCCTCCACGGGTGGCGGATCCTTCTACACCCTGAGCTAGMTPIRIRQLTSQALGEATFVSSRHNSARHRAQTVRTNPLDSVSKAVSANAGTVGRQAAVIAAASGLILSIGLPANAADTTAGISASTESGSAQAALAVTAAPTATVSFERPVVKTTAAPKVETVRPQSTETATRASGATATTASKLTDTVSSAAASGLAAIAYTGIGSPYVWGGTTPNGWDCSGFTQWVYAQAGISIPRVNAWTAMKPTSTPSPGDLVMQNGGAHVGIYVGNGMMISALNPSQGTLLHSVASTGGGSFYTLSPGPT0023995_3672DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_00950747hypothetical proteinATGACTACACGTGCAACTGTTGCACGGCACCGCGCCGAGGTTGTCAAGACCAACTCGCTGGCTGTCATTGCCAAGGCTGTCGGCGACAACGCCGGCGGCGTGGGCCGACAGGCCGCAGTCATCGCTGCTGCCTCCGGCCTTGTCCTGACCAGTGGTATCGCGGCCAACGCTGCTGACACCAACGTTCAGCGTGAATCTGCTTCCACTTCCGCTCTCGGTGTAGAAGCTGCAGCTCCGGCAACTATTTCGGCTGCTTCCACCATCTCCATCTCCTACGAAAAGCCCGCGGTTACCACCACACCGGCTCCCGTCGTCGAGGCACCTGAGCCCGTGGTTGAGGTTCAGGAAGCTCCCGCCGCCAAGCCCGTGGCTTCTGTCAAGGTTGCCGCTGCCGTTCCGGCCGGTCCCGTAGCCGCAAGCAGCAAGGGCCAGGCCATCCTGTCTGCCGCTTATGCGCAGCTGGGCGTCAACCAGGACTGCACCATGCTGGTGACCAACTCGCTTGCAGCGGTAGGCATCAACTTCCACGACTGGCCCGCCGGTTACCTCTCCCTGGGCCGCACCGTCAGTGCTGCCGAGGCCCAGCCCGGCGACCTGATCTACTACGCCGACGGCGGCGCGGGCGTTGCCCACGTGGCTGTTTACGCCGGCAACGGCCAGGCCGTGCACGGTGGCTACAACGGCAACCAGACCGTTGTGTTCAGCGCCAACGTTGGTTCCGGCCCCGTCTTCATCCGCATCCCCTAAMTTRATVARHRAEVVKTNSLAVIAKAVGDNAGGVGRQAAVIAAASGLVLTSGIAANAADTNVQRESASTSALGVEAAAPATISAASTISISYEKPAVTTTPAPVVEAPEPVVEVQEAPAAKPVASVKVAAAVPAGPVAASSKGQAILSAAYAQLGVNQDCTMLVTNSLAAVGINFHDWPAGYLSLGRTVSAAEAQPGDLIYYADGGAGVAHVAVYAGNGQAVHGGYNGNQTVVFSANVGSGPVFIRIPPGPT0023995_3643DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_00951501hypothetical proteinATGCGCACTCTCGTTCTGAATGCTGGATATGAACCGCTGGCGGTGATCACCTTCCGCCGGGCACTGGTGCTTGTGCTCACGGGTAAGGCAAGCGTGGTAGCGGAAGGCGAGGATCCCGTGGTGGGGCCGCAGGAGATATTGGGCCGCCCGTCCGTGATCCTCCTGAACCGCTACATCCGCCCCCGATACAACCAGAACACCGCGGTCAGCCGCCGCGGTGTCTTGCGCCGTGACGGACACCGCTGCGCCTACTGCGGCAAGGCAGCCCACACCATTGACCATGTTCACCCCAAATCGCGCGGAGGCGCCGATTCTTGGGAAAACCTGGTAGCTGCCTGCCTTCGCTGCAACAACCTCAAAGGGGACCACACCCCGGCGGAAATGGGCTGGAAGCTGAGGTTTACGCCGGAGCCCCCACACGGCACCATCTGGCAGATCAAGGAGCTGGAGAAGCCTACCCCGGCCTGGGACCCTTTCCTGCTGCCGGAACGCGCGGCCTGAMRTLVLNAGYEPLAVITFRRALVLVLTGKASVVAEGEDPVVGPQEILGRPSVILLNRYIRPRYNQNTAVSRRGVLRRDGHRCAYCGKAAHTIDHVHPKSRGGADSWENLVAACLRCNNLKGDHTPAEMGWKLRFTPEPPHGTIWQIKELEKPTPAWDPFLLPERAANANANANANA
D1-29_00952606mobA_1Molybdenum cofactor guanylyltransferaseGTGGATCCAGACTTGGAATTTGACGCCGTGATTCTTGCCGGCGGACGCTCCTCCCGGCTGGGCGGCCGGCCTAAACAATGGATGACGTACCACGGCACCACACTCCTTCAGCGGTCCCTTGACGCTGCCCGGGGCGCTGCCGGCGTAGTGGTGGTGGGTCCCCAGGACGGAGCCTTGCCGGGCGGAGTGCTGGCGTGCAGGGAGGACCCGCCGTTCGCGGGGCCCGCCGCTGCTGTGGCAGCCGGGCTGGCCGCGCTGGCCGACGTTCGGCCGCCTAAGCCTTTCACGCTCGTGCTGGCCTGCGACATGCCCAAGGCAGGGACCGCCGTGCAAGCCCTCCGAGGGGCTGTCCATGGCGGGTCCGAGGGAGTGATGGCAGTTGACCAGGATGGCCGCCGGCAGCCGCTGGTGGGGTTTTATAGCACAGCCGCGCTACAACGCTCGGTCCAGGACCTGACCTCCCGCGGTGCCTTAATCAACGCTTCAGTGGGGGCACTACTTGCTAGTCTGGACGTGCAGCTTGTCACCGTCCCGGCCGGGTCCACAGATGATGTGGACACCTGGGACGATGCCGCCGCACTTGGAGTGGCCGGCCAGGAACCGTGAMDPDLEFDAVILAGGRSSRLGGRPKQWMTYHGTTLLQRSLDAARGAAGVVVVGPQDGALPGGVLACREDPPFAGPAAAVAAGLAALADVRPPKPFTLVLACDMPKAGTAVQALRGAVHGGSEGVMAVDQDGRRQPLVGFYSTAALQRSVQDLTSRGALINASVGALLASLDVQLVTVPAGSTDDVDTWDDAAALGVAGQEPPGPT0008430_203DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-29_00953294hypothetical proteinGTGAAGAGCCAGGATGAAACGCTGGAGGAATGGTGCAGGTCACTGCTCCAGGCCTATGAGCTCGAGGACGTCCAGCTGGACATCAATGCGATCCTTTCGCTCGCCGGCGTGGCTGCCCACTCAGTAGTCCGGCCCGCCGCACCCCTGACAACGTTCATTGCCGGCTTCGCCGCCGGACTCGCCTCCGGCTCAGGGCAGGCCACCGATTCGGCCTCCATGGCGGCAGCGATGGATGTAGCACGTTCCCTGGCCAAGGACTACGACGCTGAAGCCGCCGGGACGCCGGCCGAATGAMKSQDETLEEWCRSLLQAYELEDVQLDINAILSLAGVAAHSVVRPAAPLTTFIAGFAAGLASGSGQATDSASMAAAMDVARSLAKDYDAEAAGTPAENANANANANA
D1-29_009541509hypothetical proteinATGACTGCCGGACCCGGCGAAGAACCAGGGGATCCGGAAAAGCCCCGGGTCCCCGAACCCCAGGAAACGCGGCAGTTCGCCGAAAACCACGAATCCCTGCAGGCCCCTGAAACGCCGCAGGAAGAAGCCGGCCATCTTGCCCACACCTGGCAGGAAGCCCGGACGGCTGCTTTTGAATGTGCCACACCCATTCCTGCCGGACGCGTGCCGCTGGAGCACGCGCTGGGCAGGGTCCTGGCAGGGGATATCACGGCCCTGCACGACATGCCGCACTATGCCTCCTCCGCCATGGATGGCTGGGCGGTTAATGGCAGCGGACCCTGGATAATTGCCGAACCCGGCCAGCGGCTGGCCCCGCACCAGGCTAGTCCGATCGTGACCGGCGGCCTGATCCCGGCTGGCGCCAAGGCGGTGCTGCGCAGCGAAAGTGCCGTCCTGGGGACGGACGACGACGGCCTGCCAATCCTCATGACCGGGGGCACGGCCCGGCCAGGTGAACCGCGGAACGGCCAGCACATCCGTAAGGCAGGCGAGGAAGCAGCGGCTGGGGAAGTACTGGTCCGCGCCGGCGAGGCCCTTAACCCCGCCCATCTGGCCCTTGCCGCACTGGCCGGCCACGATGCGCTGCTGGTCCAGGGAAAACCCGTGGTCAAACTCCTGCTGACAGGCTCCGAAGTGGTCTCGCATGGCGTACCTGAGCCCGGCAAGGTCCGGGACACTTTCGGTCCACAGCTCGCGGCCGTGGTGGGAATGCTCGGCGGGATCTTCGGCGGCCAGGAAAAGATCGGCGATACCTATGCCGAGTGGCTTGAAGGGCTGGAAGACGTCGCCTTGCCACCGGAACCTCCGTCGTCTCCGGAGGGCGGCCAGGACATGCCGGCCCCCGCTGTCCTGCCCGCCGACGTCGTGATCACCACCGGCGGAACGGGCCGCTCCGGGACGGACCATCTGCGCCAGGCGGTGGCCGAACTCGGCGGGCGGCTGATCATTGACGGCATTGCGATGCGCCCGGGTCATCCCGCCGTCCTGGCCGAGCTCCCGGACGGACGCTTTGTGCTGGGCCTGCCGGGCAATCCCTTGGCCGCGATGATGGCGTTATCCACGGTGGGCGAACCGCTGCTGGCGGCGCTTGGCCACGGAACGATGCCGCCGGTCCAGGAGGTCCCCTGCGGGACAACCATCGAGCCGGATTCGGACCGCACCCGGCTGATGCCCTTCCGCCTGCTCTACGGCATGGCGTCTCCGGCCCAGCACACGGGACCCGGCATGATGCGCGGCCTGGCGTCAGCCCACGGCGTGATGGTGGTGCCGCCGCACGGGGTGCAGTTGGGTGAACCTGTACCAGCATTCGCCCTCCCCTGGGGACCTCCGATTCCGGTCCCCGAGCCGGCCGGAGCGAAGTCCAAAGCCAAAACGGGCTCCAGGACAGCGGGACGGACGGCCGGCAAAGCTGCGGCAAAACCTGCTGCGCCGGCCGGACCTGTCGACTGGAGCGCGCTGCTGGGCTGAMTAGPGEEPGDPEKPRVPEPQETRQFAENHESLQAPETPQEEAGHLAHTWQEARTAAFECATPIPAGRVPLEHALGRVLAGDITALHDMPHYASSAMDGWAVNGSGPWIIAEPGQRLAPHQASPIVTGGLIPAGAKAVLRSESAVLGTDDDGLPILMTGGTARPGEPRNGQHIRKAGEEAAAGEVLVRAGEALNPAHLALAALAGHDALLVQGKPVVKLLLTGSEVVSHGVPEPGKVRDTFGPQLAAVVGMLGGIFGGQEKIGDTYAEWLEGLEDVALPPEPPSSPEGGQDMPAPAVLPADVVITTGGTGRSGTDHLRQAVAELGGRLIIDGIAMRPGHPAVLAELPDGRFVLGLPGNPLAAMMALSTVGEPLLAALGHGTMPPVQEVPCGTTIEPDSDRTRLMPFRLLYGMASPAQHTGPGMMRGLASAHGVMVVPPHGVQLGEPVPAFALPWGPPIPVPEPAGAKSKAKTGSRTAGRTAGKAAAKPAAPAGPVDWSALLGPGPT0008430_769DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-29_00955891fdhD_1COG1526Sulfur carrier protein FdhDATGGGACGAGTGACCCAGCGCCGGAAGGTGCACAAATATGTCCTGGACGGCTCGCCCAACGCTCTCGAGTTTCCCGTCCGGCACCGCGAGGACGTGCTTGCCGTTGAAGAACCGCTGGAGATCCGAATCGGGACCCTTTCCTTCTCCGTAACCATGCGCACCCCCGGTGACGACTTTGACCTGGTGGCCGGATTCCTGGTGTCCGAAGGCGTTATCTGGGAACCAGAGCAGCTGGTGTCCCTCCGGTTCTGCGCCGGTGAGGACGAAAACGGCGTCCAGACCTTCAATGTGGTGGAGGCCCAGCTCCGGCCTGACGTCCGGATACCGGAAACCGGCCGGAACGTCTACACCTCCAGCTCCTGCGGCATCTGCGGCACGGATTCGATCGACGCTGTCCACAAGTCTTCCCACTACAGCCCTGCCACGGACATGATGACCCTTCCCGCGGAAACCCTGGCCTCCCTGCCCGGCCGGCTTCGGGAAGCCCAGGCAGTTTTCGACGTCACCGGCGGAGTCCATGCCGCCGGCCTGTTTAGCGTCAAGGACGACGGCGACGTGGAGCTTTTGTGCCTCAGGGAGGACGTGGGCCGCCACAACGCCGTGGACAAGGTGGTGGGCTGGGCCCTCCGGGAACGCCTCCTTCCGCTGTCCGGACTGGTTCTGCAGGTATCGGGACGCGCATCGTTCGAACTTGTCCAAAAGGCGGCCCTCGCCGGAATCCCCGTACTGGCGGCCGTCAGCGCGCCCTCCAGCCTTGCCGTGGAGTTGGCGGAAGCCAGCGGCATCACCCTGGCAGGATTCAGCCGCGGCACCAGCCTGAACGTGTATGCCGGACATCAGCGGATCACTCTCCCCGCGCCCGCACGGCTACCTGCTGAGCTGCAAGGATAAMGRVTQRRKVHKYVLDGSPNALEFPVRHREDVLAVEEPLEIRIGTLSFSVTMRTPGDDFDLVAGFLVSEGVIWEPEQLVSLRFCAGEDENGVQTFNVVEAQLRPDVRIPETGRNVYTSSSCGICGTDSIDAVHKSSHYSPATDMMTLPAETLASLPGRLREAQAVFDVTGGVHAAGLFSVKDDGDVELLCLREDVGRHNAVDKVVGWALRERLLPLSGLVLQVSGRASFELVQKAALAGIPVLAAVSAPSSLAVELAEASGITLAGFSRGTSLNVYAGHQRITLPAPARLPAELQGNANANANANA
D1-29_009563006hypothetical proteinGTGCGCCTGGACCGCTTTGTGCGTGAGCGGGTCATCCCCGCTGTATACACGCGCATGGTTCCGCTGACGCTGACCAGCTGGGATGTACCGGACGAACCAGTGACTGTGATGGAGGCACTGCGGCAGGATTTCGTGCCGCAGGAGCACGGCGCTGCCTGGGGCAAGCCCTGGGGGACCAAATGGCTGAGATTGCAGGGTGATGTCCCTGAGTCCTGGGGTACGGAACCGGACACCACCGTCGAAATGGTGGTCGACCTGGGCTTCACCACAGAAATCCCGGGCTTCCAGTGTGAGGGGATAGCCTGGCGTCCTGACGGCACGATCATCAAGGCGATCTCGCCACGGAACCAGTACATTCCGCTCAAGCTTTTGGGCAGCGGCATGGCCGTGGATTTTTATGTTGAAGCCGCAGCCAATCCGGACGTCGCGCAGGGCTGGACTTTTGCGGCCATGCCCTACGGCGATAAGGCAACGGCCGGAACGGCGCCGCAGTACAGGCTCGGCACCATCGCCATTGCGGAACTGAGCCAGTCGGTGTGGGAGCTCCAGCAGGACATCTGGACGCTGGCGGGGCTGATGCACGAGCTCCCCATGGAGCAGCCTCGCCGCCATGAAATTCTCCGGGCACTGGAACGCATGATGGACCTGATGGACCCGGACGACATTGCCGGAACGGCAGCTGCGGGGCGCGAAGCCCTCGCCGAAGTGCTGTCCAGGCCTGCCTACGCCTCCGCCCACCAGCTCGTTGCCACGGGCCATGCCCACATCGATTCGGCCTGGCTGTGGCCGGTACGGGAAACCATCCGCAAGTGCGCCAGGACCTTCTCCAACGTGGTGTCGCTGATGGACGAAAACCCGGGCTTTGTCTTCTCCTGCTCCTCGGCCCAGCAGTTCGCCTGGATGAAGGAGTTTTATCCGGAACTTTTTGGCCGCATCCGGGAGAAGGTCAAGGCTGGCCAGTTTGTTCCGGTGGGCGGCATGTGGGTCGAGTCGGACACCAATATGCCCGGCAGCGAAGCGATGGCCCGCCAGTTTGTGGAGGGCAAGAGCTTCTTCCTGGAGGAGTTTGGCATCGATTGCCGCGAAGCCTGGCTCCCGGACTCGTTCGGCTACTCCGGCGCCCTGCCGCAGATCGTCAAGTCGGCCGGCAGCCGCTGGTTCCTTACGCAGAAGATCTCCTGGAACCAGCTGAACCGGATGCCCCACCACACTTTCAGCTGGGAAGGCATTGACGGCACCAGGCTGTTCACGCACTTCCCTCCCATTGACACCTATAACTCCGAGTTGAGCGGGCGCGAACTGGCGCACGCCGAGCGCAACTACCGGGACCACGGCCGCGGCAATACGTCGCTTGTCCCGTTCGGATACGGCGACGGCGGCGGCGGCCCCACCCGTGAAATGCTGGCAGCCGCAAGCCGGACGGCTGACCTGGAGGGTTCTCCCAAGGTGCGCATCGGTTCCGCTGAGAGTTTCTTTACCCAGGCAGAGGAGGAATACAAGGCGCTGCCGGTCTGGGTGGGGGAGATGTACCTCGAGCTGCACCGCGGCACCTATACCAGCCAGGCCCGGACCAAACGCGGCAACCGCCGCAGCGAACACCTGCTCAGGGAAGCTGAACTTTGGTGCGCCACCGCCGCTGTCCGGAGCGGGGGATCCTTCCCGTATCCCGCGGCCGAGCTCAAGCGGCTCTGGCGGCTGGTTCTGATGCACCAGTTCCATGACATCCTGCCGGGCAGCTCCATTGCCTGGGTGCACCAGGACGCCGAGCGGAATTACTCGGCCATCGCCTCCGGTTTGGAGGCTCTCATTGCCAGGGCCGCTGCGTCGATGCTCGGTTCCGGATCCCGGGAGTTCCTCCTGAACGCTGCGCCCCACCCCCGCCACGGGGTTCCGGCCCTGGGCGCCGCAGAACCAGTCGCCCCACGCCTGCCCGTGCGGGTGTCCCCGGCGGAGGGTGGCTATGTCCTGGACAACGGGATTGTCAGGGCAGTGCTGGATGCCAACGGACTGATCGTATCCCTGACGGACTACGCCTCGGGACGCGAAGCAATCGCACCCGGCCAGCGTGGCAACCTGTTGGAACTGCACCGCGATACGCCCAATGAATGGGATGCCTGGGACATCGACGAGTTCTACCGCCGCAACGTCACAGCCCTGGCTGACGCCACGGCTGTCAGGCTGGAACAGGACGGCCAGACTCCCGTCGTCGTTGTGGAGCGCCTGGCAGGATCTTCCCCGGTCAGGCAGCGGATCATGCTTGAGGCGGGCAGCGACTCCCTGGCCATCACCACCGCCGTCGATTGGCAGGAGCGTGAGAAGCTCCTCAAGCTGGGCTTTGCCCTGGATGTCCGGGCGGACCGTTCAGCTTCCGAGACGCAGTTTGGCCACGTGTTCCGTCCCACCCATGTCAACACCTCATGGGAGGCCGCGAAGTTCGAAATCTGCGCGCACCGCTGGATTCATGTTGCAGAGCCCGGCTACGGCGTCGCAATTTCGAACTCTTCCAGCTATGGGCACGACGTCACCAGGAGTATCAGGGAGGACGACGGCGGGACCACCACTGCCGTGCGGCTCTCACTGTTGCGTGCGCCCAAGTTCCCGGACCCTGCGGCGGACCGCGGACGGCACGAACTGACGGTAACGATCCGTCCCGGCGCCGGCATCGCGGAGGCAGTTGAGGAGGGATACCGCACCAACCTCACACCACGGGAGATACGTGGCGGCCAGGCAGTGGAACCTCTATTTAGTGTGGGCAATCCCGCCCTGGTCATTGAGGCTGTCAAGCTTGCCGAGGATGGCTCGGGTGATGTGATTGTCCGGCTCTACGAATCCCTGGGGCAGAGGTCTGCGGGGCTGCTCACAGCCAACTTCCCGGTCAGGAGTGTCCACCCCACGGATCTGCTGGAACGGCAGGTGGATGCACCCGGAATTTCGGTGACAGGGCCGGACTCCGTGGATCTGAGCCTGCGCCCCTTCCAGCTGGTGACCTTGAGGTTCGTCCGCTAGMRLDRFVRERVIPAVYTRMVPLTLTSWDVPDEPVTVMEALRQDFVPQEHGAAWGKPWGTKWLRLQGDVPESWGTEPDTTVEMVVDLGFTTEIPGFQCEGIAWRPDGTIIKAISPRNQYIPLKLLGSGMAVDFYVEAAANPDVAQGWTFAAMPYGDKATAGTAPQYRLGTIAIAELSQSVWELQQDIWTLAGLMHELPMEQPRRHEILRALERMMDLMDPDDIAGTAAAGREALAEVLSRPAYASAHQLVATGHAHIDSAWLWPVRETIRKCARTFSNVVSLMDENPGFVFSCSSAQQFAWMKEFYPELFGRIREKVKAGQFVPVGGMWVESDTNMPGSEAMARQFVEGKSFFLEEFGIDCREAWLPDSFGYSGALPQIVKSAGSRWFLTQKISWNQLNRMPHHTFSWEGIDGTRLFTHFPPIDTYNSELSGRELAHAERNYRDHGRGNTSLVPFGYGDGGGGPTREMLAAASRTADLEGSPKVRIGSAESFFTQAEEEYKALPVWVGEMYLELHRGTYTSQARTKRGNRRSEHLLREAELWCATAAVRSGGSFPYPAAELKRLWRLVLMHQFHDILPGSSIAWVHQDAERNYSAIASGLEALIARAAASMLGSGSREFLLNAAPHPRHGVPALGAAEPVAPRLPVRVSPAEGGYVLDNGIVRAVLDANGLIVSLTDYASGREAIAPGQRGNLLELHRDTPNEWDAWDIDEFYRRNVTALADATAVRLEQDGQTPVVVVERLAGSSPVRQRIMLEAGSDSLAITTAVDWQEREKLLKLGFALDVRADRSASETQFGHVFRPTHVNTSWEAAKFEICAHRWIHVAEPGYGVAISNSSSYGHDVTRSIREDDGGTTTAVRLSLLRAPKFPDPAADRGRHELTVTIRPGAGIAEAVEEGYRTNLTPREIRGGQAVEPLFSVGNPALVIEAVKLAEDGSGDVIVRLYESLGQRSAGLLTANFPVRSVHPTDLLERQVDAPGISVTGPDSVDLSLRPFQLVTLRFVRPGPT0018760_1267DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-MANNOSIDASE,PGPT0018760-mngB|ypdB|manA-K01191NANA
D1-29_00957726hypothetical proteinATGATCGAAATCCTTCAGTGGTCAACACTGGCCTTGTGCGCCGTCACCGCCGCGGCCCGGATTCCCAGCGCCCTCCGCGGGCAGAACCGGGCTGTTTTCTACATCTTCGCGCTCTTGACAGTAGCCATCCTGCTCAGCATCGAGGCACCGTACGTTGCCATCGATCAGGCTCTGGGCGGCATCAACGTTGCCAACCTCATCCTCCGTTTTGTCATCTTTGCTGCCATCTTTTTCGTGGGCATCCGCGTGACCAGGGGTTTCGGGGCGGTCGAAGGGCACCGCTTCATTACGGGGCGGATCGGAATCAGTGTCCTGGCGCTGATCTCCGTCGCAGTGCTGGTGCTGTTCCTGATGATGGATACCGCCGGCTCCTCGGCAGGCATGGCGGCCGTATCCGGCAAGGATGCCCGCAACGGCCTGTTGGCTGAGCTCTATGGTGCCGCCGGCCGCGCCTACCCCGCCTATGCCTCGCTCGCCTTGCTGCCTGCCATGGTAAGGGCGGTCCGGAGCAGACTGCCGGCAATGGTGCGGTTCGCGGCCTTCCTGCTGGCAGCGGGAGCGCTGACCATCGCCCTGACGCTGTTGTTCCCTCTGGTGCCGCCGCAGTGGGGCACCGCCGAGTTCATCATCAATTACACAGCTGTCCTGTGCTTTGTGGTGGGGCTCGGGCTGATCTGGGCGGCGAGGATCCGGTACGGACGCAATGTGGTGCGCTCAAAGACTTAAMIEILQWSTLALCAVTAAARIPSALRGQNRAVFYIFALLTVAILLSIEAPYVAIDQALGGINVANLILRFVIFAAIFFVGIRVTRGFGAVEGHRFITGRIGISVLALISVAVLVLFLMMDTAGSSAGMAAVSGKDARNGLLAELYGAAGRAYPAYASLALLPAMVRAVRSRLPAMVRFAAFLLAAGALTIALTLLFPLVPPQWGTAEFIINYTAVLCFVVGLGLIWAARIRYGRNVVRSKTNANANANANA
D1-29_00958738hypothetical proteinATGCCCCTCCCCGCCAAGGCGTTCCAGCGCTGGCTGCAAGGCATCGCGCCGGACACCAGCACGGCTGACGTCTGCCGGATTTCCGGGATCAAACGGACAACCCTGGCCCAGCAGTTGGTCCGCGGCAAGGTCGCGGAAACCACCGTGGTGAGCATCAGCCGGGCCTTCAACATCAATCCAGTGACGGCGTTGGCCAGCTTCGATGTGTTCCGGGAACTCGCCGACCCACAACCTCCTCCCACCAGGTCCGAACTGGTTAGCCAGGTTTCGACTCCCGATCTCCTGCGGGCGGTGCTCGCCCGCGAGTCGGTGGATCCGGCGGCGCAGCCCACCACCGAAAGGCCGGACCTCAGCCCGGCGCCGCATTCCACCTCCGTCAAGAACTGGGTGGAAGCCATCGACGACGGCGAACTGCGGCACCGTGTGTCGGTTGCCACGGGCATCGCGCCGCAGAATTACTCGGCACAGCTGACCGCAAACAGGCTTTCCCCGGAGCTGGCCCTGGCCACGTCCCTGGCTGCCGGCGTTGGCCCTGCCGGCGGCCTCGTGGCCACCGGCCTGATCACCGAGGAGGAGGCAGGGTGGCCGGCGAGGGCCAGGCAGGCAGCCTTGGACGCCCTGACGGACGGGGAGCTGACGACGCTCGCCGGAGAACGCCTGCAGGCATTGGGCAGGACGCTTCGCCGCCAGGAACACGATCAGGAACAAACCAACAAGATCTGGGAGAACCTGGGATGAMPLPAKAFQRWLQGIAPDTSTADVCRISGIKRTTLAQQLVRGKVAETTVVSISRAFNINPVTALASFDVFRELADPQPPPTRSELVSQVSTPDLLRAVLARESVDPAAQPTTERPDLSPAPHSTSVKNWVEAIDDGELRHRVSVATGIAPQNYSAQLTANRLSPELALATSLAAGVGPAGGLVATGLITEEEAGWPARARQAALDALTDGELTTLAGERLQALGRTLRRQEHDQEQTNKIWENLGNANANANANA
D1-29_009591638ettA_1COG0488Energy-dependent translational throttle protein EttAATGACTGCAACCCTTGTTGCCAAAGAACTTTCCGGTGGTCACGACCACCGCACGCTCTTCTCAAAGCTTTCCCTGACGGTGGCGCCCGGTGACGTGGTGGGGGTGGTTGGTGCCAACGGCGCCGGCAAGTCCACCCTGCTGCGACTGCTGGCCGGGGTTGACCAACCGCAGGATGGAACCGTCAGCCTTGCCCCAGCCGACGCCTTTGTAGGCTGGCTTCCGCAGGAGCATGAACGGGTAGCCGGCGAAACCGTTGCGGGCTATATTGCACGCCGGACCGGCTGCGCCCAGGCCACCGCCGAGATGGAGTCCACCGCGGAGGCCCTGGGATCTTGTGCTCCGGGTGCTGATGATGCCTATTCGCTGGCTTTTGACCGCTGGATGGCGTCGGGCGCGGCGGACCTGGATGAGCGGCTTCCGGCTGTTCTTGCGGACCTGGGCCTGGAAACCGGGCCGGATGCCCCCATGACCGGGCTCTCCGGCGGCCAGGCCGCCCGGGTGGCCCTGGCGGCCCTGCTGCTGAGCCGCTTCGACATTGTGCTGCTGGATGAACCAACCAATGATCTGGACCTGGCTGGACTGGCCAAACTGGAGGCCTTCGTCCAGGGGCTTCGCGGCGGGGTGGTCCTGGTGTCCCATGACCGGGAATTCCTGGCCCGCTGCGTCACCACCATTGTAGAACTGGACCTGGCCCAGAACTCCGTGGCTGTGTACGACGGCGGCTACGAGGCTTTCCTGGAGGAACGGGCCGTGGCACGCCGCCATGCAAGGGAAAGATTCGAGGAGTTTGCCTCCACCAAGGCGGATCTGGTCTCCCGCGCGCGTACCCAGCGTGAATGGAGCTCCCAGGGAGTTCGAAACGCCATGAAGAAGAGCCCGGACAACGACAAGATCAGGCGCGCGGCCAGTACTGAATCCTCGGAGAAGCAGGCGCAAAAAGTTCGGCAGATGGAATCGCGGATTGCACGGCTGGACGTGGTGGAAGAGCCCCGGAAGGAATGGCAACTGCAGTTCACCATTGGGCAGGCAGCGCGGTCCAGTGCCGTGGTGGCCACGTTGCGGGATGCTGTTGTGCACCAGGGAAGCTTCACCCTGGGCCCGGTCAACCTCCAGCTCAACGCCGGCGAGCGGATCGGTATTACGGGCCCGAACGGCGCAGGCAAGTCCACCCTTCTGCGGCTGCTGCTGGGCGTGCAGGCTCCGGACTCCGGGAACGCTGCCCTGGGTGCTTCGGTGGCCATCGGCGAGATCGATCAGGCGCGCGGCCTCCTGGCGGGGCACCTCAGCCTGGCGGACGCCGTCGAGGCCGTGCTCACGGACCAGACTCCTGCGGAAGTCAGGACGCTGCTGGCGAAGTTCGGGCTGAAAGCTGACCACACGGCACGCTCCGTGGATTCGCTCTCGCCGGGTGAACGGACCCGGGCAGCCCTGGCCCTGCTCCAGGCCCGCGGCGTGAACCTGTTGGTCCTCGATGAGCCCACCAACCACCTCGATCTGCCAGCCATTGAGCAACTGGAAGAGGCGCTGGGAAGTTATGAGGGCGCTTTGCTGTTAGTTACCCATGACCGCAGGCTGCTGGAAAACGTCCAGCTGGACGTGCGGTGGAATGTGGAAAACGGGACGGTAACTGAACTATGAMTATLVAKELSGGHDHRTLFSKLSLTVAPGDVVGVVGANGAGKSTLLRLLAGVDQPQDGTVSLAPADAFVGWLPQEHERVAGETVAGYIARRTGCAQATAEMESTAEALGSCAPGADDAYSLAFDRWMASGAADLDERLPAVLADLGLETGPDAPMTGLSGGQAARVALAALLLSRFDIVLLDEPTNDLDLAGLAKLEAFVQGLRGGVVLVSHDREFLARCVTTIVELDLAQNSVAVYDGGYEAFLEERAVARRHARERFEEFASTKADLVSRARTQREWSSQGVRNAMKKSPDNDKIRRAASTESSEKQAQKVRQMESRIARLDVVEEPRKEWQLQFTIGQAARSSAVVATLRDAVVHQGSFTLGPVNLQLNAGERIGITGPNGAGKSTLLRLLLGVQAPDSGNAALGASVAIGEIDQARGLLAGHLSLADAVEAVLTDQTPAEVRTLLAKFGLKADHTARSVDSLSPGERTRAALALLQARGVNLLVLDEPTNHLDLPAIEQLEEALGSYEGALLLVTHDRRLLENVQLDVRWNVENGTVTELNANANANANA
D1-29_009601914COG1132putative ABC transporter ATP-binding proteinATGAGCATGGAAGGGGTGGCCTGGAACTCCCTGTACAAGATCACCAGGGCCAAGAGCGGCTCCAAGCCGTTCTCCAAAGCCACCCTGAAGCGGGTCCTCGGCTTCGCCCGCCCGCACCGCGGGAAACTCATTGCCTTCGTGGCACTGTCCATCGTGATGGCGTTCCTCGCAGTGGCCACGCCGGTCCTGGCCGGCCAGGTGGTGGATGCCATTGTCGCCAAAGCAGGGGCTGACGAAGTGGTCCGGCTGGCGGTGCTTATTGCACTCGTGGCGCTTGCCGAGGCCGGCCTGGGACTGGTGAGCCGCTGGCTCTCGTCCACCATCGGCGAAGGCGTGATCGTGGGCCTTCGCACCAGGGTCTTTGACCACGTGCAGAAGATGCCGATCGCCTTTTTCACCCGCACGCGCACGGGCGCCCTGGTCAGCCGTCTGAACAATGACGTCATCGGTGCCCAGTCGGCCTTCGCCGGCACGCTATCCGGCGTGGTCAGCAACGTGGTGGCGCTGATCCTGACATTGATCGTGATGCTCGGTACCTCCTGGCAGGTAACCGTCCTGGCGATGATCCTGCTGCCGGTCTTCCTCATCCCCGCCCGCCGCATGGGTTCCAAGCTGGCAGACCTCCGGCGTGAGGCCGCAGAACACAACGCCGCCATGGGCACCCAAATGACCGAGCGGTTTTCCGCCCCGGGTGCCACGCTGGTCAAGCTCTTCGGCCGGCCGGAGGAGGAATCACGGGAATTCGCGGTGCGCGCCGGCCGGGTCCGGGACATCGGCATCCGCACGGCCATGCTGCAGTTCACCTTCGTCACCGCGCTGACCCTGGTGTCGGCGCTGGCCCTGGCGCTGGTCTATGGGCTGGGCGGCTGGATGGCCATCACCGGGCAACTCGCAGCGGGCGACGTCGTGGTGCTGGCCCTGCTGCTCACCCGCCTATACGCCCCGCTCACCGCGCTCTCCAACGCCCGGGTGGAAATCATGAGCGCCCTGGTCAGCTTTGAGCGCGTCTTTGAAATCCTGGACCTCAAGCCCCTGATCCAGCAAAAGCCGGACGCCGTGGCCGTGCCGCCGGGGCCCGTGTCCGTTGAGTTCGACGACGTCCGTTTCGCCTATCCGTCCGCTGACAAGGTGTCCCTTGCCTCGTTGGAGGAAGTGTCCACGCTGGACACCCGCGGCGGCGATGAAGTGCTGCACGGCATCAGCTTCCGGGTGGAGCCCGGCCAGACTGTTGCGCTGGTTGGCTCCTCCGGCGCGGGCAAGTCCACTATCGCGCAGCTGCTGTCCAGGCTCTACGACGTTGACTCCGGCGCCGTCCGCCTGGGCGGAACCGTGCCGGGGACTGGCCTGGACGTCCGCGACGTGACCTTTGACTCCCTGCGCGACACCCTGGGCATGGTCACCCAGGACGGCCACCTGTTCCACGAAACAATCGCCTCCAACCTGCGCCTGGCGCGGCCGGAAGCCACCGAGGACGACATGTGGGACGTCATCCGGCAGGCCCGGCTGGAAACAATGATCCGTTCCCTGCCCGACGGCCTGGAGACCGTCGTGGGGGAGCGTGGCTACCGGCTCTCCGGAGGCGAACGGCAACGGCTCACCATCGCCCGGCTCCTGATCGCGCAGCCCAGGGTAGTGATCCTGGACGAGGCAACAGCCGCTCTGGATTCCACCAACGAAGCCGCCGTGCAGGCTGCACTGGGCGCAGCGCTCGAGGGGCGCACCGCCGTCGTGATTGCCCACCGGCTGTCCACCATCCGGGCCGCGGACGTCATCCTGGTGGTGGAGGATGGAAGGATCGTGGAACGGGGCACGCACAATGAGCTCCTTGCGGCCGACGGCCGGTATGCCGAGCTGTACCGGACGCAGTTCGCCGAGGCCACGGCCGTGGCGGAGGAAGCCGTTCCGGAGTTCTAGMSMEGVAWNSLYKITRAKSGSKPFSKATLKRVLGFARPHRGKLIAFVALSIVMAFLAVATPVLAGQVVDAIVAKAGADEVVRLAVLIALVALAEAGLGLVSRWLSSTIGEGVIVGLRTRVFDHVQKMPIAFFTRTRTGALVSRLNNDVIGAQSAFAGTLSGVVSNVVALILTLIVMLGTSWQVTVLAMILLPVFLIPARRMGSKLADLRREAAEHNAAMGTQMTERFSAPGATLVKLFGRPEEESREFAVRAGRVRDIGIRTAMLQFTFVTALTLVSALALALVYGLGGWMAITGQLAAGDVVVLALLLTRLYAPLTALSNARVEIMSALVSFERVFEILDLKPLIQQKPDAVAVPPGPVSVEFDDVRFAYPSADKVSLASLEEVSTLDTRGGDEVLHGISFRVEPGQTVALVGSSGAGKSTIAQLLSRLYDVDSGAVRLGGTVPGTGLDVRDVTFDSLRDTLGMVTQDGHLFHETIASNLRLARPEATEDDMWDVIRQARLETMIRSLPDGLETVVGERGYRLSGGERQRLTIARLLIAQPRVVILDEATAALDSTNEAAVQAALGAALEGRTAVVIAHRLSTIRAADVILVVEDGRIVERGTHNELLAADGRYAELYRTQFAEATAVAEEAVPEFNANANANANA
D1-29_00961405hypothetical proteinGTGAAGCCCAGAATCGTTGTCTCCGCCGTGTGTGTTTTCGACGACGCCGGACGCCTGCTGACCGTCCGCAAACGCGGCACCGGCATGTTTATGCACCCCGGTGGAAAGCCCGAACCCGGCGAAACCGCAGTGCAGGCGGCAGCCCGGGAGCTCGCAGAGGAGGTGGGCATTGTCCTGGATCCCCGCGAGCTGGAGCTGATGGGCATCTGGATCGCCGACGCCGCCAATGAGGCCGGCACCGACATCGAAGCCACCGTGTTCAAAGCCCCGGGAACCTGGACGGCACATCCATCGGCCGAGATCGCGGAGATCCGCTGGCTGGACCTGGCCGCTAAACTGCCGCAGGACCTCGCTCCCCTGCTCACGGACCACATCCTCCCGGAGCTCGCCGCCTCCGGACGCTGAMKPRIVVSAVCVFDDAGRLLTVRKRGTGMFMHPGGKPEPGETAVQAAARELAEEVGIVLDPRELELMGIWIADAANEAGTDIEATVFKAPGTWTAHPSAEIAEIRWLDLAAKLPQDLAPLLTDHILPELAASGRPGPT0021230_1527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
D1-29_00962513hypothetical proteinTTGAACGTTTCCGAGAAGGAATTCGACCTTCGCGCCTACCTGCTCGGCGCCACTGAGTCCGCTCCTTTGATGGCCGGCCGCTGGACCATTGAACGGCAGTTGCTGGACCGCGCCACAGGCACCCACGGAACCTTTTCCGGCGTCGTCCGGTTCTCCGTGACGGACGACGGCGGCCTGGCCTACCAGGAGGAAGGCACCATGCGCTGGCCCTCCTTCACCGGACCGGCCACGCGCGAATACCTCCTGAAACCCGCCGGCGGGCCAGACGCGCTGGACGTCCTCTTCGCCGACGGACGTCCCTTCCACCGGATGAGTTTCAGCCCGGAAGCCAACCTGGACCGGCATTGGTGCGATCCGGACACTTACCGCGTGGCCTATGCCATGGAGGGTCCGGACCGGTTCAGCTACACCTGGGACGTCAAAGGCCCCAACAAGGACCTCCTGCTGGCCTCCACCCTGAAACGCCTGGCCGGGACGCCCGGCGCCCAAGCACCGTTAGGCTCGGAAGCGTGAMNVSEKEFDLRAYLLGATESAPLMAGRWTIERQLLDRATGTHGTFSGVVRFSVTDDGGLAYQEEGTMRWPSFTGPATREYLLKPAGGPDALDVLFADGRPFHRMSFSPEANLDRHWCDPDTYRVAYAMEGPDRFSYTWDVKGPNKDLLLASTLKRLAGTPGAQAPLGSEANANANANANA
D1-29_00964759hypothetical proteinATGTCCGCTCCAGCCCTGGCCTACATTCCCGACACAGCTTCCACCAGGCAGTACATCGGGGCATGGTCAGTCCTAAGCGTGCTGCAGTATTTTGCCGCGGAAGCTGCGGTGATCGGCGGCTGGGCCGGACCGCAGCCCTACGACCGGCGGACGGGCTACATCAGCGATCTGGGGGCGGTCCACTGCGGCGTCTTCGACGGCCGGGACGTCTGTTCGCCGCTGAACTGGCTCATGAACGCCTCGTTTGTTGTTCAAGGCCTGGGAATGCTGCTCGGGGCGCTGCTCCTCAGTTCAGGGCTGCTCTGCATCGCGGCGAGGGCCGGTGCCCGTGTCCAGCCCGGACCCCGCAGGAAGCCCTGGCTGGCGGCGATCTGGGTTCGGATATTTGTCGGAACCGCCGGCGCGGGCACCGTCATCGTGGGTCTGGTTCCCGAGGATGTGGGTTCGGGCTGGCATTTTGCCGGTGCTGTTATGTACTTCATCGCAGGGGCCTTGGGACTGTTGGTTTTGGGGGTCCTCTGGCTGGACCAGTCGCCGCTGGGATGGTTCATCCTGGTGTGCGGAGTGGTGTCTGCTGCCGCTCTCGCTACTGGCGCACTCACGCGGATGGACGTTCCGGAGCCCGGGACGCTGGAACGCCTGATGGGCTATCCGGTCACGCTGGGAGTGGCAACTGCCGGCCTGGTGATAGCTCAGCGGGTGCACCGGCACCGGAAGGTCCGCAAAGCCACCCGGGCCCAGGCGGTTGCACCGCACTGAMSAPALAYIPDTASTRQYIGAWSVLSVLQYFAAEAAVIGGWAGPQPYDRRTGYISDLGAVHCGVFDGRDVCSPLNWLMNASFVVQGLGMLLGALLLSSGLLCIAARAGARVQPGPRRKPWLAAIWVRIFVGTAGAGTVIVGLVPEDVGSGWHFAGAVMYFIAGALGLLVLGVLWLDQSPLGWFILVCGVVSAAALATGALTRMDVPEPGTLERLMGYPVTLGVATAGLVIAQRVHRHRKVRKATRAQAVAPHNANANANANA
D1-29_00965627hypothetical proteinATGGCCAAAACCCCTGCACAGCGGATCAAAAAGCACGGCACCAAGGCTGCTGTTCCGCAGCACCACCTTCCGCCGGTGATCAACCCCACCACAGCCCGCTCGCCGCAAAAGGCCCAAAGCAACAGCAACCTCATCGTCGTTGCGGGAGTGGTGGCCAGCCTCTTCCTGTTCTGGTACGTCCACCTGCTGACCCTGAACCAGCTGACGCAGCTCTCGGGCGGCCTGGCCATGCCAGATTCCCTGCTGGGCGGCTTCGACGCCGGCTACATCGAACGGCTGCGCGGTGCCATGGACGACGACGCCCGCGGCCAGCTGAACTACATCCACAAGACGGCCGGAACCCTTTTCCCGCTGATCTTCGGCTTTACCTGGGTGCTGCTGATCGGCACCAACGTTGCACGCAAGGGGCTGCGCTGGGCCCTGTGGGCGGCCCCTCTGCTGTTTGTGGTGGCCAGGCTCTGGGGAAACGTAGCAGTTGATTCCGTGCTGGCTTCTGAAGCGCCCGACGCCGGGCAGGTTGCCCTGGCGTCCGCGCTCACCGTCGCCGGTTGGGTCCTGCTGGTCCTCAGCCTCCTGGCCGGGGCGGCGGCGGTCTTTTTGCGCCGCGCGCGCCGTCAAAACAACTGAMAKTPAQRIKKHGTKAAVPQHHLPPVINPTTARSPQKAQSNSNLIVVAGVVASLFLFWYVHLLTLNQLTQLSGGLAMPDSLLGGFDAGYIERLRGAMDDDARGQLNYIHKTAGTLFPLIFGFTWVLLIGTNVARKGLRWALWAAPLLFVVARLWGNVAVDSVLASEAPDAGQVALASALTVAGWVLLVLSLLAGAAAVFLRRARRQNNNANANANANA
D1-29_00966831suhB_1COG0483Fructose-1,6-bisphosphatase/inositol-1-monophosphataseATGACCATTGGCCGGCACAGCGCTGTTGAACTTGACCCCTCTCTGGACGACTACCAGTTGGCATCCGCCCTGGTCCGGGAGGCCGGCCAACTGGCGCTCCTCATGCGCATGGCGGGCCTGCAGTCCCAACAGAAAACGTCCATCTCGGACGTGGTGACGGCGGCGGATCACGCCGCGGAGGCCTACGTGCTGGAGCAGCTGCAGCGCTGCCGGCCGGAGGATGGAATCCTGGGTGAGGAGGGTGCCTCTGTCCAGGGCCGCAGTGGCCGAACGTGGGTCATCGACCCCGTGGACGGCACCTACAACTTCCTGCACGGCTCCACCTACTGGTGCTCAGCCATCGCCCTGAAAGACTCCTCCGACGTGCTCCTGGGTGCCATCTTCCAGCCCGAGGAAGACAAACTCTGGCTGGGCGGCAGCGGGCGGCCGGCCACGCTGAATGGCGAGGCACTCACCGTCTTCCATGACAACAGCGGAGCACGCAATGGCACTGCTGTGGCGGAATTTGGTGCGGCCACCTACATCCACCCCAGCTGGCTTATGGACCCACTCTGCGCCATGCCATGGCATGCGGCCGCAACGTCCGCCGCGGCTTTACGAATGCTTGGCTCCGGATCCTGCGACCTTGGCAGGGTGGCGGACGGCCAGCTGGGCTGCTGGTTCCAGCACAGCTGCCCGGAGTGGGACTGGCTGCCAGGCAAGGCAATCGTCCGCGCCGCCGGCGGCGCCACGGACACCGTCCGGGTCAACGGGCTGGAATGGTTTATGGCCGGAGGCACGACGGCGGTGCGCGAGTTGCGTGCGGCCCTGCAGTCCGCCTCGGTGGGCTAAMTIGRHSAVELDPSLDDYQLASALVREAGQLALLMRMAGLQSQQKTSISDVVTAADHAAEAYVLEQLQRCRPEDGILGEEGASVQGRSGRTWVIDPVDGTYNFLHGSTYWCSAIALKDSSDVLLGAIFQPEEDKLWLGGSGRPATLNGEALTVFHDNSGARNGTAVAEFGAATYIHPSWLMDPLCAMPWHAAATSAAALRMLGSGSCDLGRVADGQLGCWFQHSCPEWDWLPGKAIVRAAGGATDTVRVNGLEWFMAGGTTAVRELRAALQSASVGPGPT0018535_2244DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
D1-29_009672553uvrD1COG0210ATP-dependent DNA helicase UvrD1ATGGATATGTTGTTTGACCCGTACTCTGACGGACCGTTCAAGGCCGCTTCCAAAGCTGCCACCTTCACCAAGTCGCGCCCGGAAGTCCTTGCGGCGGGGGCGGAAGTCAGCGGCGGCGGTGCCGACTCCCACCCCGCCCGCTGGAAGAAGCCGGCACCCCAGGAGCACGGAGACCAGCCTGAGGGCAGCCGCATGGCGCGCCACCGGCCGGACGCCGCCCAGCTGCTGCAGGGCCTGAACCCGCAGCAGGAGGAGGCCGTCAAACACTCCGGCAGTGCCCTGCTTATTGTCGCCGGTGCCGGGTCAGGCAAAACCAGGGTGCTCAGCAACCGGATCGCCTACCTCATCGCCACCGGGCGTGCCCATCACGGCGAAATCCTGGCCATCACCTTCACCAACAAGGCCGCCGCGGAAATGCGTGAGCGCATTGAAGCATTGGTGGGCGGCCGGGCGAAAATCATGTGGATCTCCACCTTCCACTCGTCCTGCGTACGGATCCTGCGCCAGGAAGCCGCCAACGTCGGCCTAAAATCCAACTTTTCGATCTACGATTCCGCCGACTCCCTGCGGCTCGTGACCCAGGTGTCCAAGAGCCTGGACCTGGACCCCAAGAAGTTCGCGCCCAAAGCCATCCAGCACAAGATCTCGGCGCTGAAGAACGAACTCATTGACGCTGACTCCTTCGCCTCAGCCGCCAATTTCAACGACCCCTTCGAAAGCGCCGTTGCGGACGTCTTCAAGGGCTACACCCAGCGGCTGCGGCAGGCCAACGCTATGGACTTTGATGACCTCATCGCCGAGACCGTCTACATGTTCCGGGCCTTTCCGGCGCTCGCCGACTCTTACCGCCGGCGTTTCCGCCACGTCCTGGTGGACGAGTACCAGGACACCAACCACGCGCAGTACGCGCTGGTTCGGGAAATTGTGGGCGAGGGGCCCGGAGCCTCCGAACTCACCGTGGTGGGCGACTCCGATCAGTCCATCTACGCCTTCCGCGGAGCCGACATCCGCAACATCGTCGAGTTTGAGAATGACTACCCCGAGGCGCGCACCATCAAGCTGGAGCAGAACTACCGCTCCACGCAGAACATCCTGACCGCAGCCAACTCGGTCATTTCCCGCAACCCCAACCGCCCCGAAAAAAGGCTGTGGACGGCTGAGGGCGAAGGCCACAAGATCGTCGGCTACGTGGGCGAAAACGAACACGACGAAGCCCAGTTCATCGCCAAGGAGATTGACCGGCTCCAGGATGAGGACAATCTTCGCCCCGGGGACGTGGCCATTTTCTACCGCACCAACGCCCAGTCCCGCTCCATCGAGGACGTCCTGGTCCGCGTGGGCCTGCCATACAAGGTGGTGGGCGGCACGCGCTTCTACGAGCGCAAGGAGATTAAGGACGCCCTCGCGTATCTGCGGGTCCTGGTCAACCCGGACGACGACGTCAACCTGCGCCGGGTGCTCAACGAACCGAAGCGAGGGATCGGTGACCGCGCCGAGGGCGCCGTGGCTGCCCTGGCGCAGCAGGAGCGGATGTCCTTTATGGCTGCGGCGCGGCGTGCCGAGGAAGCTCCCGGCATGGCCACGCGTTCGGTCAACGCAGTCCTGGGTTTTGTGAAACTCCTGGATGACCTCGCCGAAGTAGCTTCAGGGTCCGGCGCCGCCGCGGCACTGGAGGCCGTACTGGAACAGACCGGGTACCTGGCCGGGCTGCGTTCCAGTACGGATCCACAGGATGAGTCCCGCGTGGAAAACCTGGCAGAACTCGTCGCCGTCGTGCGCGAATACGAACAGGAAAACCCCGAAGGTTCACTGGGCGCTTTCCTGGAGCAGGTATCCCTGGTGGCGGATGCCGACCAAATCCCTGACGCCCCCGGCTCCAACCCCGAAGAGACCGCCGCTGCCGTCGCCGAAGCCAGGCGCCTCGGTGTGGTCACCCTGATGACGCTGCACACGGCCAAGGGGCTGGAATTCCCTGTGGTGTTCCTGACCGGAATGGAGCACGGGCTGTTCCCGCATCAGCGGTCCGCCACCGATCCCAAGGAACTGGCCGAGGAACGCCGGCTTGCCTACGTGGGCCTCACCCGGGCCCGGAAGCGGCTCTACGTGACCCGTTCGGAAGTCCGCAGCATGTGGGGGCAGAGCCAGTACAACCCCGCCAGCCAGTTCCTGGAGGAGATTCCCTCCGAGCTGGTGGAATGGAAACGCGAAGGTTCCAGCAGGCAGACCGGAGGCTGGGGGAGCGGGCCGTCCATCGGCTCCAGCCGCTACGGCGGGTCCTTCTGGGGTGCCGGCACGGCCCGCGGGGCTGCCGCGGATGCCAGCGCCGGCTTCAACTCCGATGTTCCGGCCGCCATCGCCAAGAGCCGTGTGCAGCCGCAGAAGGAAATTGTCGCCGTCACCGTGGGGGACAAAGTCAACCACACCAGCTTCGGCAACGGCACTGTCCTTGCTTTGGAGGGTGCCGGGGACAAGACCGTCGCCAAGGTGAAGTTCGACGTCGGCGAGAAGCGCCTTCTGCTGCGTTACGCTCCGCTGACCAAACTCGACGCCTAAMDMLFDPYSDGPFKAASKAATFTKSRPEVLAAGAEVSGGGADSHPARWKKPAPQEHGDQPEGSRMARHRPDAAQLLQGLNPQQEEAVKHSGSALLIVAGAGSGKTRVLSNRIAYLIATGRAHHGEILAITFTNKAAAEMRERIEALVGGRAKIMWISTFHSSCVRILRQEAANVGLKSNFSIYDSADSLRLVTQVSKSLDLDPKKFAPKAIQHKISALKNELIDADSFASAANFNDPFESAVADVFKGYTQRLRQANAMDFDDLIAETVYMFRAFPALADSYRRRFRHVLVDEYQDTNHAQYALVREIVGEGPGASELTVVGDSDQSIYAFRGADIRNIVEFENDYPEARTIKLEQNYRSTQNILTAANSVISRNPNRPEKRLWTAEGEGHKIVGYVGENEHDEAQFIAKEIDRLQDEDNLRPGDVAIFYRTNAQSRSIEDVLVRVGLPYKVVGGTRFYERKEIKDALAYLRVLVNPDDDVNLRRVLNEPKRGIGDRAEGAVAALAQQERMSFMAAARRAEEAPGMATRSVNAVLGFVKLLDDLAEVASGSGAAAALEAVLEQTGYLAGLRSSTDPQDESRVENLAELVAVVREYEQENPEGSLGAFLEQVSLVADADQIPDAPGSNPEETAAAVAEARRLGVVTLMTLHTAKGLEFPVVFLTGMEHGLFPHQRSATDPKELAEERRLAYVGLTRARKRLYVTRSEVRSMWGQSQYNPASQFLEEIPSELVEWKREGSSRQTGGWGSGPSIGSSRYGGSFWGAGTARGAAADASAGFNSDVPAAIAKSRVQPQKEIVAVTVGDKVNHTSFGNGTVLALEGAGDKTVAKVKFDVGEKRLLLRYAPLTKLDANANANANANA
D1-29_009681296rebG_14'-demethylrebeccamycin synthaseATGAATATCCTTTTCGCCAGCCAGGCCGTTGACGGCCACTTCAATCCGATGACAGGCGTGGCCGTCCGCCTCAAGGAGCGGGGCCACAACGTTGCGTGGTACACCGGCCCCGTGTTCGCGGAGAAGCTCGGCCAGCTCGGCATTGCGCATTTCCCCTTCCGCCGCGCCATTGAGCACCGGGCGGACAACCTCAATGAGCTGTACCCGGAACGGGCCAAACTGAAGGGGCCCCGGGCGATCGGCTTCGACGGCGAAAAGATCTTCGCCAGCAACATCACCAATTTCTTCGAGGACATCAAGGAACTGCAGCAGGACTTCCCGTTTGACGTTGTGGTCGCGGACAGCTCCATGTTTATCCAGCGGCTTGCTTCACGTCTGCTGGGAAAGCCGGTGGTGAGCTTCGTGGCGGTTCCAAACATGGAAAGTGATCCGTTGGTGCCGCCGCTCTTTTTCGGGTTCAAACCGCCGCGGAACCCGGGAGAAAAGGTGCTGCAGACCGCAGCCGGGCTGCTCTCCGACAAGGTCATTCTCAGGCCTGCCAGTCTCAGCTACCGCCGCCAGCACGCCGCGTACGGGCAGGAAGTGCCCCGGCATGGCAGGTTGACTGATGAGCCGTACCGCTGCTCGGCGGCCATCATCCAGACTGGACCGGAGTCCCTGGATTTCCCCCGCCGGAACGTGAATGCCAAAGTCCATTACGTCGGAGCGCTGCCGCCCTACCGCGCCCCTGCCACTGACCGTTCCGAAGGCCGTGACAATGGCTGGGCGACTTACCCCAACACTTTCCTGGTTACCCAGGGAACCGTGGACAACCTGGACCACAACAAGCTCATCGTTCCGGCCCTGGAAGCCGTAAAGGACATGGACGCGCTGGTGATTGTTGCCACGGGGGGCCGCGGCACGGAGGCGCTCAAGGCACGGTACCCGCAACCCAACATCATCGTGCGGGACTACGTGGATTTTGCCCAGGTCTTCGAGTTCGCCGATGTCTTCATCAGCAACGGCGGGTTTGGTGGGGTACAGCTAAGCCTGTCAAAGGGCGTTCCACTGGTGGTCGCGGGCATTAACGAGGGCAAAAGCGACGTCAACGCCAGGGTGGAATACGCAGGGGTGGGCATTAGCCTCAGAACAGAGTCGCCAAAACCCGGCGACATTGCCAAGGCAGTCACCCAGGTCCTCACAGAACCAGGCTGGAAAAATAGGGCCCGGCACATGAGCGAACAGTTCAAGGCGCAGGATCCGGCCGAAGCCGCTGCCGACGTCGTGGAGGGCGTTGTGGGTCCCGCCGGGGGCTGAMNILFASQAVDGHFNPMTGVAVRLKERGHNVAWYTGPVFAEKLGQLGIAHFPFRRAIEHRADNLNELYPERAKLKGPRAIGFDGEKIFASNITNFFEDIKELQQDFPFDVVVADSSMFIQRLASRLLGKPVVSFVAVPNMESDPLVPPLFFGFKPPRNPGEKVLQTAAGLLSDKVILRPASLSYRRQHAAYGQEVPRHGRLTDEPYRCSAAIIQTGPESLDFPRRNVNAKVHYVGALPPYRAPATDRSEGRDNGWATYPNTFLVTQGTVDNLDHNKLIVPALEAVKDMDALVIVATGGRGTEALKARYPQPNIIVRDYVDFAQVFEFADVFISNGGFGGVQLSLSKGVPLVVAGINEGKSDVNARVEYAGVGISLRTESPKPGDIAKAVTQVLTEPGWKNRARHMSEQFKAQDPAEAAADVVEGVVGPAGGNANANANANA
D1-29_00969708hypothetical proteinATGGAGCCCATGCGACCGACTGTATGGGGGATTCTGGCCGCCCTCTTTTTGCTGACCGCCACGGCGTGCACCATCACCACGGAGGACCCCGGGTACGTTCCGCCCCCGCCGCTGCCCGCCCTGGAACAGCTGGAACAGGCACCCCTGGCAGACTCGGGCGATTTTTCCCAGGGACAGGACGTCATCTCCTTTATCACCGAGGACCGGAACGTTGTCTGCTCGCTGACATCGGCGCGCGGGGAGCACATCGACCTCCCGTATGAGCAGAACAGCTTCAGCGACAGCGCCAACAACAAGCTGGCCACCGTGCCAGTTGCCCACTGCGAGCTGGCCGTCTACGTGAAGCCTGCAGCAAAGGACGTGAAGGACGACTGCGCGGGCACCGGACTGGGCTACCTGGGCGGAACGGCGCTGCTGACGCCGGAGACCGCCAGTTATGGGGAATGCCGCTCCGGCGTCACACAAATGGAGGCTGCGTACGGACCGAAGGGGAGCCAGAGCGGACCATTGACTCAGCTTCCGGTGCTGGCAGAGGGGCAGAACATCGAACGGAACGGGCTCCGCTGTTCTGCCTACAACGGCGGCGTGGCATGCGGAAATGTGTCCGCGGGCGTGGCATTTTTTGTTTCCCGGGGAAGCTACGAACTTATTTCGAAGGCCCCGGAAACCGGGGTTGGGGCACCGGCAGGGCCCTCAAAATCCGCGTAAMEPMRPTVWGILAALFLLTATACTITTEDPGYVPPPPLPALEQLEQAPLADSGDFSQGQDVISFITEDRNVVCSLTSARGEHIDLPYEQNSFSDSANNKLATVPVAHCELAVYVKPAAKDVKDDCAGTGLGYLGGTALLTPETASYGECRSGVTQMEAAYGPKGSQSGPLTQLPVLAEGQNIERNGLRCSAYNGGVACGNVSAGVAFFVSRGSYELISKAPETGVGAPAGPSKSANANANANANA
D1-29_009701170sucCCOG0045Succinate--CoA ligase [ADP-forming] subunit betaGTGGACCTGTTTGAATACCAGGCGCGCGATATGTTCGAGGCGCACGGTGTACCCGTGCTTGCTGGCATCGTGGCGTACACCCCAGAAGAAGCAAAGGCAGCAGCCGAGAAGATCGGCGGCGTAACTGTCGTCAAGGCCCAGGTCAAGGCCGGTGGCCGCGGTAAGGCCGGCGGCGTCAAGGTTGCCAAGACCGCCGATGAGGCACTTGAGCACTCCACCAACATCCTGGGCATGGACATCAAGGGCCACACCGTCAACAAGGTGATGATTGCCCAGGGTGCCGACATCGCCGAGGAGTACTACTTCTCCGTCCTGCTGGACCGAGCCAACCGCAACTACCTGGCCATGTGCTCGGTTGAAGGCGGCATGGACATCGAGCAGCTCGCCGTCGAACGCCCGGAAGCGCTGGCCAAGATTGCCATCGATCCTGCCATTGGCATCGACCAGGCAAAGGCTGACGAAATCGTTGCGGCCGCAGGGTTCGCTGAGGAACTTCGCGGCAAGGTGGCCGCTGTGATCCTCAAGCTCTGGGACGTCTTCAAGAAGGAAGACGCCACCCTGGTTGAGGTCAACCCGCTGGTGAAGACCGGCGAAGGCGAGATCGTGGCACTGGACGGCAAGGTCTCGCTGGACGAGAACGCCGAATTCCGCCACGCCAAGCACGCCCTCCTTGAAGACAAGGAAGACACTGACCCCCTTGAGGCCAAGGCCAAGGCCCAGGACCTCAACTACGTCAAGCTGGACGGCGAAGTGGGCATCATCGGTAACGGTGCAGGCCTGGTCATGTCCACTCTGGACGTTGTTGCCTACGCCGGTGAGAACCACGGCAACGTCAAGCCCGCAAACTTCCTGGACATCGGCGGTGGAGCTTCCGCCGAGGTCATGGCTGCAGGCCTCGACGTGATCCTCGGCGACGAGCAGGTCAAGTCCGTGTTCGTGAACGTCTTCGGTGGCATCACCGCGTGTGACGCCGTCGCCAAGGGCATTGTTGGTGCGCTGGCTGAGCTGGGCCACTCCGCGAACAAGCCGCTGGTAGTCCGCCTCGACGGCAACAACGTCGAGGAAGGCCGCCGCATCCTGGCCGAGGCCAACCACCCGCTGGTTACCCTGGCCGCCACCATGGACGAGGGCGCCGACAAGGCCGCCGAGCTCGCCAACGCAGCTAAGTAAMDLFEYQARDMFEAHGVPVLAGIVAYTPEEAKAAAEKIGGVTVVKAQVKAGGRGKAGGVKVAKTADEALEHSTNILGMDIKGHTVNKVMIAQGADIAEEYYFSVLLDRANRNYLAMCSVEGGMDIEQLAVERPEALAKIAIDPAIGIDQAKADEIVAAAGFAEELRGKVAAVILKLWDVFKKEDATLVEVNPLVKTGEGEIVALDGKVSLDENAEFRHAKHALLEDKEDTDPLEAKAKAQDLNYVKLDGEVGIIGNGAGLVMSTLDVVAYAGENHGNVKPANFLDIGGGASAEVMAAGLDVILGDEQVKSVFVNVFGGITACDAVAKGIVGALAELGHSANKPLVVRLDGNNVEEGRRILAEANHPLVTLAATMDEGADKAAELANAAKPGPT0019515_1536DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019515-sucC-K01903NANA
D1-29_00971903sucDCOG0074Succinate--CoA ligase [ADP-forming] subunit alphaATGTCTATCTATCTGAACAAGGACTCCAAGGTCATCGTCCAGGGCATCACCGGCGGCGAAGGCACCAAGCACACCGCCCTGATGCTGAAGGCCGGCACCAACATTGTTGGCGGCGTCAACGCCCGCAAGGCCGGCACCACCGTGCTGCATGGTGAGAACGAAATCACCGTTTTCGGCACCGTCAAGGAAGCCATGGCCGAGACCGGCGCTGACGTTTCCATCGTCTTCGTGCCGCCGGCGTTCACCAAGAACGCCGTTGTGGAAGCCATCGAGGCCGGCATCGGCCTGGTGGTTGTCATCACCGAAGGCGTTCCGGTCCAGGATTCCGCCGAGTTCTGGGCACTGGCCCAGTCCAAGGTTGACGCCGACGGCAACCAGGTCACCCGCATCATTGGCCCGAACTGCCCCGGCATCATCACCCCGGGTGAGGCCCTGGTGGGCATCACCCCGGCCAACATCACGGGCAAGGGCCCCATCGGCCTGGTTTCCAAGTCCGGAACCCTGACCTACCAGATGATGTACGAACTGCGTGACCTTGGCTTCTCCACCGCCATCGGCATCGGCGGCGACCCCATCATCGGCACCACGCACATCGACGCCCTGGCCGCGTTCGAGGCCGACCCCGAAACCAAGGCGATCGTCATGATCGGCGAAATCGGTGGCGACGCTGAAGAGCGTGCAGCCGACTTCATCAAGGCCAACGTCACCAAGCCGGTTGTTGGCTACGTGGCCGGCTTCACCGCACCCGAAGGCAAGACCATGGGCCACGCCGGCGCCATCGTTTCCGGTTCCGCCGGAACCGCCCAGGCCAAGAAGGAAGCCCTCGAGGCCGCTGGTGTGAAGGTCGGCAAGACGCCGTCCGAGACCGCCACGCTGCTGCGCGAAGTTTACGCAGCCCTCTAAMSIYLNKDSKVIVQGITGGEGTKHTALMLKAGTNIVGGVNARKAGTTVLHGENEITVFGTVKEAMAETGADVSIVFVPPAFTKNAVVEAIEAGIGLVVVITEGVPVQDSAEFWALAQSKVDADGNQVTRIIGPNCPGIITPGEALVGITPANITGKGPIGLVSKSGTLTYQMMYELRDLGFSTAIGIGGDPIIGTTHIDALAAFEADPETKAIVMIGEIGGDAEERAADFIKANVTKPVVGYVAGFTAPEGKTMGHAGAIVSGSAGTAQAKKEALEAAGVKVGKTPSETATLLREVYAALPGPT0001540_788DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001540-sucD-K01902NANA
D1-29_00972156hypothetical proteinGTGGCTCACCTTACCGGCGAACCGAACCGGCCGTCGTCGTACTCTATCGAAAGGCTCTACAGAAAGCGCGGGCTTACAGAAAAGCGCGGGGATACGGAAAAGCGCGGGCATACGGAAAAGCGCGGGGCCACCTCCGTCCTGACGGACGGCAGGTGAMAHLTGEPNRPSSYSIERLYRKRGLTEKRGDTEKRGHTEKRGATSVLTDGRNANANANANA
D1-29_00973483hypothetical proteinATGAGCAATTCCCTGAAACTCAACATCCCGGACGGCCTCCCCTTCATCGACTTCGAGCGGGAGTTCGATTACCCGGTGGATGACGTGTTCCGCGCCCACAAAGAGCCCGAGCTCATCGCTCAGTGGCTGGGTCCGCGCGGCTACAAAATGGACGTTGACCACTACGATTTCCGGACCGGCGGCAGCTACCGGTATCTCCACACCGGGCCGGACGGCGTTGGCTACGAATTCAGCGGCGTCTTCCATACCGTCCGGGAGAACGAATTCGCCATACAGACCTTCGAATTCGGCGGCTACCCTGACGTGGTCAGCATCGAATTCCTCACTTTCGAGGATCTGGGTGGAGGGCGCTGCCGGGTCCGGGGCCACTCCGTCTACCCCACTATGGAGGCCCGCGACGGCATGGCGCAGTCCGGCATGGAGGGCGGCATGACCGAAGGCTACGAACGGCTCGACGAACTCCTGAGCAGCGCGAAAGTCTAGMSNSLKLNIPDGLPFIDFEREFDYPVDDVFRAHKEPELIAQWLGPRGYKMDVDHYDFRTGGSYRYLHTGPDGVGYEFSGVFHTVRENEFAIQTFEFGGYPDVVSIEFLTFEDLGGGRCRVRGHSVYPTMEARDGMAQSGMEGGMTEGYERLDELLSSAKVNANANANANA
D1-29_00974360hypothetical proteinATGAACGCGGACGCTGGATCCCTGGACTCGGCCTTTATGGCCTTGGCCGATCCGGTGCGCCGCAGCATCATCGCCCGGCTCAGCCGGGGTCCGGCCACTGTGAATGAACTGGCGGAACCCTTTGCGATCACCAAACAGGCGGTCTCAAAGCACATCCAGGTCCTCGAGCAGGCGCAGCTAGTGACCCGTACACGGGATGCGCAGCGCCGGCCCGTCCACCTGAATCCCGCACGGTTGGAGGCGCTCACAGCATGGATCGACCAATACAGGTTGGTTCGTGAAGGGCAGTTCCGCAGCCTCGACGCCGTGCTCCAATCAAAGGCCGCAGCGAGCGGCAAGCAGGCAAAGGACTCATCATGAMNADAGSLDSAFMALADPVRRSIIARLSRGPATVNELAEPFAITKQAVSKHIQVLEQAQLVTRTRDAQRRPVHLNPARLEALTAWIDQYRLVREGQFRSLDAVLQSKAAASGKQAKDSSNANANANANA
D1-29_009751002iolCCOG05245-dehydro-2-deoxygluconokinaseGTGAACCACGAACTGCTCACCATCGGGCGAATCAGCGTTGATATCTACCCGAATGACATCGGCGTGGACCTGGAGGATGTCACGTCCTTCGGTAAGTACCTCGGTGGCTCCCCGTCCAATGTTGCGGTGGCGGCTGCCCGCCATGGCCGGCGGACCGGTGTGATCACCCGGACCGGCGACGACGCCTTCGGAAACTACCTTCGCCGGGAACTGCGGAAGTTCAACGTGGATAACACCTTCGTCTCCGCCGTGAAGGAGTGGCCCACGGCTGTGACGTTCTGCGCCATCAAGCCGCCGGAGGATTTTCCGCTGTACTTCTATGGGCGCCTTCCCACCGCGCCGGACCTCCAAATTGCCGCCGAAGAACTGGACCTGGACGCCATCAGGGACGCCGGAATCTTCTGGTCCACGGTGACCGGCCTGTGCCAGGAACCCAGCCGCACCGCCCATCTGAAGGCCCATGAGGCGCGGCCACGCACCGGGCTCAAGGATGGCCAGTTCACCATCCTGGACCTCGACTACCGACCCATGTTCTGGACCTCCCAAGAGGAAGCCCGGGCCGAAGTCGCCAAAATCCTGCCACACGTGACCGTCGCGATCGGTAACGACAGGGAATGCGCGGTGGCCGTGGGTGAGGGGACCCCCGATGAACAGGCTGACAGGCTGCTGGCGGCCGGCGTCGAAATCGCCGTGGTCAAGCTTGGAGCCGAGGGGGTGATGGCTAAAACCCGCAGCCAGCGTGTGGTGTCGGCTCCGGTTCCGGTGGAAACCGTCAACGGACTGGGGGCCGGAGACTCGTTCGGTGGGGCCTTCTGCCACGGGCTGCTGTCCGGCTGGCCACTGGGCCAGGTCCTGGACTACGCCAACGCGGCAGGTGCAATCGTCGCGTCCCGTTTGTCCTGCGCTGACGCCATGCCGACGCCGGCCGAGGTCACCTCGCTGCTGGCGGACCGTGGACGGCTCCCGCGGGGTCACGTTGCCACGGAAAGGGCAGTGCTGTGAMNHELLTIGRISVDIYPNDIGVDLEDVTSFGKYLGGSPSNVAVAAARHGRRTGVITRTGDDAFGNYLRRELRKFNVDNTFVSAVKEWPTAVTFCAIKPPEDFPLYFYGRLPTAPDLQIAAEELDLDAIRDAGIFWSTVTGLCQEPSRTAHLKAHEARPRTGLKDGQFTILDLDYRPMFWTSQEEARAEVAKILPHVTVAIGNDRECAVAVGEGTPDEQADRLLAAGVEIAVVKLGAEGVMAKTRSQRVVSAPVPVETVNGLGAGDSFGGAFCHGLLSGWPLGQVLDYANAAGAIVASRLSCADAMPTPAEVTSLLADRGRLPRGHVATERAVLPGPT0018480_848DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018480-iolC-K03338NANA
D1-29_00976984hypothetical proteinGTGAGTCCGAACCCCGTTCCCTCCGTCGCCGAGATTAGTGACGATCCGCGCCGCTACCAGCACCTCAGCATCATCCGGCTGGAGGATCCCGAAGCTGTTGCCCGCGCAGCCCGCGACCGCCGTCGGCATCCGGGCCCCAAGTTCGGCAAACAGAACTTCATTGTTGCGGCCGATCATCCCGCCCGCGGAGCCCTGGGGGTTGGCGAGGATCCTGTGGCCATGGCTGACCGCCGCCAGCTCCTGGACCGCTTGAGGGTTGCTTTGGCCAACCCTGACGTGGACGGGGTGCTCGCCTCGCCCGACATCCTGGACGACCTGCTGTTGCTTGGCGCCCTTGAAGGCAAGCTGGTCTTCGGTTCGATGAACCGCGGCGGCCTGGCCGGTCTGGTCAACGAGTTTGATGACCGCTTCACCGGGCACACGGCCGAAGCGTTGGAAGCGCTCGGCGCCGACGGCGGCAAGATGCTCACCCGCATCTGCCTGGGCGATCCGGACACGGTATCCATGCTGGAGGCCACCGCCAAGGTCATCGATTCCCTCGCGGAGCGCAAGCTTATCGCGATGGTGGAACCGTTCCTCTCCGTGCGCGAAGAAGGCAAGGCCCGCAACGACCTTTCCCCTGACGCCGTGATCAAGTCGGTGGCCATCGCCCAGGGGCTCGGCTCCACCAGTGCCTACACCTGGCTTAAACTCCCGGTGGTGGCGGAGATGGAACGCGTGATGGCAGCCACCACGCTGCCAACCGTGCTCCTCGGTGGAGACCCGGAGGGAACCCAGGATGAGGTGTTTGCCAGCTGGCAGGCGGCACTGGCGCTGCCGAACGTGCAGGGGCTGACAGTAGGACGGACCCTGTTGTATCCGCAGGACGGCGATGTGGGCGGTGCCGTGGCTACCGCGGCCAGCCTGCTCCGGCACGCGAACCGGGTAGAGCAGCCAGAGCATCAGAACACTGCGGGCAGAGTCCCTGCACAAGTATCGGAGTAGMSPNPVPSVAEISDDPRRYQHLSIIRLEDPEAVARAARDRRRHPGPKFGKQNFIVAADHPARGALGVGEDPVAMADRRQLLDRLRVALANPDVDGVLASPDILDDLLLLGALEGKLVFGSMNRGGLAGLVNEFDDRFTGHTAEALEALGADGGKMLTRICLGDPDTVSMLEATAKVIDSLAERKLIAMVEPFLSVREEGKARNDLSPDAVIKSVAIAQGLGSTSAYTWLKLPVVAEMERVMAATTLPTVLLGGDPEGTQDEVFASWQAALALPNVQGLTVGRTLLYPQDGDVGGAVATAASLLRHANRVEQPEHQNTAGRVPAQVSENANANANANA
D1-29_009771929iolDCOG39623D-(3,5/4)-trihydroxycyclohexane-1,2-dione hydrolaseATGACGGTGGCGCAGGCCGTCGTCGAGTATCTCTCCAACCAGTACACCGTTGATTCAGTGGGCGGAGCCGAGTACCGTGAGCGCCTGATTCCGGGGATGTTCGGGATCTTTGGGCACGGCAATGTGGCCGGTGTGGGCCAGGCTTTGAAGCAGTACCAGCAGTTTGATCCTGCTGTGATGCCGTATTACCAGGGCCGGAATGAGCAGGCGCAGGTCCACCAAGCGGTGGGGTACGCCCGGCACACCCGCCGCCGGCAGACGTTCGCGGTCAGCAGCTCGATCGGGCCCGGCTCCTCGAACATGCTCACCGGCGCGGCTTTGGCCACCACCAACAGGCTTCCCGTGCTGCTGCTGCCGTCCGACACGTTCGCCACGCGCGTGGCAGATCCTGTGTTGCAGCAGCTTGAACGTCCGGAGGCCTACGACATCACTGTCAATGACGCGTTCCGGCCGCTGTCGAAATTCTTTGACCGGGTGTCCCGGCCGGAACAGCTGTTCTCAGCCTTCCATCACGGCCTGCGGGTCCTGACAGACCCGGCGGAAACCGGGGCGGTGACCATCTCGCTGCCCCAGGATGTCCAGGCCGAGGCCTTTGATGTGCCGGAGGATTTCCTGGCTGAGCGGGAGTGGCGGATCCGCCGCCCGGACGCCGACGACGACGACATCGCCCGTGCTGCAGCGGTGATCCGGGCGGCGAAGCGCCCGCTGATCATCGCCGGCGGCGGTGTCCTCTACGCCTACGCGAACGAGGAACTGGCGAAGCTTGCCGACCTGACCGGCATTCCGGTGGCCAACACCCAGGCCGGCGTCGGCGTCCTGCCCTGGGATCACCGGTTCTCCCTCGGCGCTGTTGGTTCCACGGGCACGACGGCGGCCAACGCCATCGCTGCCGAGGCGGACCTGATTATCGGAATCGGGACGCGGTATGAGGACTTCACCACCGCGTCCCGGACGGCGTTCCAGAACCCGGACGTTAGGTTCGTCAACATCAACGTCGCTCCGATTGATGCCTACAAGCACGGGACCTCCCTGCCCATCGTTGCCGATGCGCGCAAGGCACTGGTCAAGCTCAACCGGGCGCTGGGCGGCTACCGCGTGGGTGCGGACCTGGAGCAGGCCGTTGCCGCCGGAAAGCAGCGTTGGGATTCCACGGTCGACGAGGCGTCCGATACGCGGTTTACCCCTTTGCCGTCGCAGAACGAGATCATCGGCGCCACCCGCCGCGCCATGGACGATCCAGATGTGGTGGTCTGCGCTGCCGGTTCGCTGCCCGGGGACCTGCACAAGATGTGGCGGGTCCGGGATCCGTTCGGCTACCACGTCGAGTATGCCTACTCCTGCATGGGTTACGAAATCCCCGGCGGGCTGGGCGTCAAGCGCGCGGTGCTGGCTGAGGCCGCAGCCGGCGGAACCCAGCGCGACGTCGTGGTGATGGTCGGGGACGGCTCGTACCTGATGATGCACACCGAACTGGTCACCGCCGTCGCCGAACGGATCAAGCTGATCGTGGTCCTGATCCAGAACCACGGGTACGCCTCCATCGGCTCCCTGTCCGAGTCCCTTGGATCCCAACGGTTCGGCACCAAGTACCGGAAGCTTGACGCGGAACGGCACAGCTTCGACGACGGCGACAGGCTCCCCGTTGATCTGGCCCTCAACGCTCAAAGCCTGGGCGTGAAGGTCACCCGGATCGAGCCGGGCGAGAAGGTCATCGCCGAGCTCGAGCAGGCGATCCGCGATGCGAAGGCCGCGCCCGAGGGCGGAGGGCCAATCCTGATCCACGTTGAATCCGATCCGCTGCTGGACGCCCCGAGCTCCGAGTCCTGGTGGGACGTACCCGTTTCCCAGGCCGCCGAACTTGATTCCACCCGCCAGGCCTTCGAAACCTACACCCAACACAAGGCCCGTCAGCGCAAACTGCTGGGCTGAMTVAQAVVEYLSNQYTVDSVGGAEYRERLIPGMFGIFGHGNVAGVGQALKQYQQFDPAVMPYYQGRNEQAQVHQAVGYARHTRRRQTFAVSSSIGPGSSNMLTGAALATTNRLPVLLLPSDTFATRVADPVLQQLERPEAYDITVNDAFRPLSKFFDRVSRPEQLFSAFHHGLRVLTDPAETGAVTISLPQDVQAEAFDVPEDFLAEREWRIRRPDADDDDIARAAAVIRAAKRPLIIAGGGVLYAYANEELAKLADLTGIPVANTQAGVGVLPWDHRFSLGAVGSTGTTAANAIAAEADLIIGIGTRYEDFTTASRTAFQNPDVRFVNINVAPIDAYKHGTSLPIVADARKALVKLNRALGGYRVGADLEQAVAAGKQRWDSTVDEASDTRFTPLPSQNEIIGATRRAMDDPDVVVCAAGSLPGDLHKMWRVRDPFGYHVEYAYSCMGYEIPGGLGVKRAVLAEAAAGGTQRDVVVMVGDGSYLMMHTELVTAVAERIKLIVVLIQNHGYASIGSLSESLGSQRFGTKYRKLDAERHSFDDGDRLPVDLALNAQSLGVKVTRIEPGEKVIAELEQAIRDAKAAPEGGGPILIHVESDPLLDAPSSESWWDVPVSQAAELDSTRQAFETYTQHKARQRKLLGPGPT0018485_467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018485-iolD-K03336NANA
D1-29_009781518bauC_2COG1012Putative 3-oxopropanoate dehydrogenaseATGACTGCCATCACTGATCAGAGCACCACCACCATCAACCACTTCATCAACGGCGCCGAGACCGCCGGCCAGGGCACCCGCACCCAGCCCGTGTTCAACCCGGCGACGGGTGCGGTGTCGGGGGAGCTGCGGCTGGCGAGCCGGGCGGATCTTGATGCCACGGTGGCCGCCGCCCGGGCCGCTGCTGATTCGTGGGGCGATATTTCGCTGGCCAAGCGCACCAATGTGCTGTTCAAGTTCCGTGAACTGGTTGCCTCCCATGTGGATGAGCTCGCGGCGCTGATCACGGCGGAACATGGGAAGGTCCTCTCCGACGCGAAGGGCGAGATCGGCAGGGGCCTGGAGGTGGTGGAGTTCGCCTGCGGCATCCCCACGCTGCTCAAGGGTGACTACTCGGACCAGGTCTCTACCGGCATCGATGTGTTCTCCTTCCGCGAGCCGCTCGGTGTGGTCGCCGGGATCACGCCGTTCAACTTCCCGGTGATGGTGCCGCTGTGGATGGCGCCGATGGCGATCGCCACCGGCAACGCGTTCATCCTCAAGCCCTCCGAACGCGATCCGTCCGCGTCCATGCTGCTGGCGAAGCTGTGGAAGGACGCAGGTCTGCCGGATGGGGTGTTCCAGGTCCTGCACGGCGGCAAGGAAACCGTCGACGGGCTCCTGACCCACCCGGACGTGGACGGGATCTCCTTCGTCGGGTCCACCCCGATCGCCCAGTACGTCCAGGAGACCGCCACCAAGCACGGCAAACGCGTCCAGGCCCTGGGTGGGGCGAAGAACCACGCCATCGTCATGCCCGACGCCGACCTGGACAACGCCGCCGACCACCTCGCCGCAGCGGCGTTCGGCTCGGCCGGGGAACGCTGCATGGCGATCTCGGTCGCCGTCGCTGTCGGGGACGCCGCCGACCTGATTGTGAAGAAGGTCGAAGAGCGTGCCCTGGGCGTGAAGGTGGACAACGGCACCGCGCCCGACGCCGAAATGGGCCCGGTCATCACGCCCGAGTCCCGGGACCGGATCGTGCGGATCGTCACCGAAGCCGAAGCCGCGGGCGCGGCGATGGTGGTGGACGGCCGGGACCTCGTCGTCGAAGGCCACGAGGAAGGCTTCTGGGTCGGACCCACCGTGATCGACCACGTCAAAACCGAAATGACCGCGTACACCGAGGAAATCTTCGGACCCGTGCTGGTTGTTGTCCGCGTTCAGGACCTGGAGGAGGGGATCAGGCTGATCAACGCCAACCCCTACGGCAACGGCACCGCGATCTTCACCTCCTCCGGCGCGCACGCCAGGAAGTTCCAGCGCTCAGTGGACGTCGGAATGATCGGCATCAACGTGCCGCTGCCCGTCCCCGTCGCGCACCACTCGTTCGGCGGCTGGAAAGCCTCGCTCTTTGGTGACAAGCACATCTACGGCCCCGAAGGCGTGTCCTTCTACACCCGCGGCAAAGTGGTCACCTCCCGCTGGCCCGAACCCACCCACGCCTCCGGCGCCTCCTACAACTTCCCCTCCAACTGAMTAITDQSTTTINHFINGAETAGQGTRTQPVFNPATGAVSGELRLASRADLDATVAAARAAADSWGDISLAKRTNVLFKFRELVASHVDELAALITAEHGKVLSDAKGEIGRGLEVVEFACGIPTLLKGDYSDQVSTGIDVFSFREPLGVVAGITPFNFPVMVPLWMAPMAIATGNAFILKPSERDPSASMLLAKLWKDAGLPDGVFQVLHGGKETVDGLLTHPDVDGISFVGSTPIAQYVQETATKHGKRVQALGGAKNHAIVMPDADLDNAADHLAAAAFGSAGERCMAISVAVAVGDAADLIVKKVEERALGVKVDNGTAPDAEMGPVITPESRDRIVRIVTEAEAAGAAMVVDGRDLVVEGHEEGFWVGPTVIDHVKTEMTAYTEEIFGPVLVVVRVQDLEEGIRLINANPYGNGTAIFTSSGAHARKFQRSVDVGMIGINVPLPVPVAHHSFGGWKASLFGDKHIYGPEGVSFYTRGKVVTSRWPEPTHASGASYNFPSNPGPT0002295_1602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-29_00979912iolE_2COG1082Inosose dehydrataseATGACTGAGAACAAGCTGATCATCGGCACTGCACCTGACTCGTGGGGCGTGTGGTTCGCTGACGATCCCCGGCAGACCCCGTGGGAACGCTTCCTGGACGAGGTGGCCGAATCCGGGTACAAGTGGATCGAGCTGGGCCCGTACGGCTATCTCCCCACCGACCCCACCCGCCTGGCAGAGGAACTGAAGCAGCGGGACCTGAAAGTCACCGCGGGCACGGTATTCACGGCCTTCCACCGTGGCCTGGACCAGTGGAAAACAGCGTGGGAGCCAGCCCGCAAGGTGGCAGAGCTGACAGCAGCCATGGGAGGCGAGCACATGGTGGTCATCCCGGCGATGTGGCGCGATGACGTCACCGGCGAGGCCGTGGAAAGCGGCAAGCTCACCGAGACGGCCTGGAACGATCTCTTCGAAGGCCACAACCGGCTGGGCAAGACCCTGTTGGAGGACTTCGGCCTGAAACAGCAGTTCCACTCCCATGCCGACTCCCATGTGGGCGCCCAGGAGGATATTGAGACCCTCCTGGCGTCAACCGACAGCAAGTACGTCAACCTGTGCCTGGACACCGGGCACGCGGAATATTGCGGCGCCTCCAGCCTGGAGCTGATCAAGAATTATCCGGACCGTATTGGTTACCTCCACCTGAAACAGATCAACCCGGAGATCCTCAGGAAGGTCAATGAGGAGAATATGACCTGGGCTGCGGCCAACCTGGCTGGTGTGATGACAGAGCCGCCGGGCGGGCTGCCAGACCTGCGCGCTGTGATTGAGGCAGTCGAAGCGCTGGAGAAGCCCATCTTCGGGATCGTGGAGCAGGACATGTACCCGGTGGACTTCGACGTGCCCATGCCCATCGCCAAGCGCACGCGCAATTATCTGCTCTCCTGCGGCTCGCGTACCGCCGTCAGCTAGMTENKLIIGTAPDSWGVWFADDPRQTPWERFLDEVAESGYKWIELGPYGYLPTDPTRLAEELKQRDLKVTAGTVFTAFHRGLDQWKTAWEPARKVAELTAAMGGEHMVVIPAMWRDDVTGEAVESGKLTETAWNDLFEGHNRLGKTLLEDFGLKQQFHSHADSHVGAQEDIETLLASTDSKYVNLCLDTGHAEYCGASSLELIKNYPDRIGYLHLKQINPEILRKVNEENMTWAAANLAGVMTEPPGGLPDLRAVIEAVEALEKPIFGIVEQDMYPVDFDVPMPIAKRTRNYLLSCGSRTAVSPGPT0016785_742DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335NANA
D1-29_009801014iolG_8COG0673Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACCGATACCCTTCGCGTAGCTGTGATCGGCGCTGGCCGCATGGGCGCGGACCATATCCAGCGGCTCGACACCCGCATCAACGGCGCTGAAGTGGCCGCCGTCGTCGACGTTGACCTGGCACGCGCACAGTCCGCCATTGAGGGCATTCCCGGTGCAGTGGCTCTGACGGACGCCGATGAGGCGCTCAATAACGGCGACGTCAACGCTGTCCTGATCGCCACGCCGGGCTTCCTGCACGAGGAGATCCTGCTCAAGGCATTGGCTTTGGGACTGCCCATTCTGTGCGAGAAGCCGATGACTCCGGATGCTGCCTCGGCCTGGCGCGTGGTCCAGGCCGAGCAGGAACTGGGCCGCAAGTGCATCCAGGTGGGCTTTATGCGCCGCTTTGACGCCGAGTACGCAGCCTTGGGCAAGATCATTCGGGACCGGGACCTTGGCGAGCTGCTGATGCTCCACCACCAGCACCGGAATCCCGACACCCCGCCGGGTTTCACCAACGAGATGCTGATCAACGACTCGGTAGTGCATGAGTTTGACGCCATCCGCTTCTTCACCGGTGAGGAAATCACCAGCGTCCAGGTCCGGATGGGTAAGCCGACCCGGAACGCCCCAGCCGGCCAGCACGATCCGCAGCATGTCCTGATCGAGACTGAGTCCGGCGTGCTGGCGGACGTGGAAATTTTCGTCAACGCCCGGTTTGGGTACGAAGTTGCCGCGCAGGCCACATTCGAAGAGGGCATCGTCAACATCGGCGGCGACAGGGGACTCTACACCCGCACCGCCGGCCGCTGGGGCGGACAGGTCACGCCGGGCTTTGTGGAGCGTTTTGTGGAAGCATACGACGTCGAGATCCAGGCCTGGGTGGATGCAACCCGCCGCGGCGAACTCGGCGGTCCTTCCGCCTGGGACGGTTACGCCACAGCGGCCTGCTGCGAGGCAGGCGTGGAAGCCCAGAAGAACGGCGAGAAGGTGGCCGTCAGGCTGCACCCCAAACCGGCGCTCTATAAATAAMTDTLRVAVIGAGRMGADHIQRLDTRINGAEVAAVVDVDLARAQSAIEGIPGAVALTDADEALNNGDVNAVLIATPGFLHEEILLKALALGLPILCEKPMTPDAASAWRVVQAEQELGRKCIQVGFMRRFDAEYAALGKIIRDRDLGELLMLHHQHRNPDTPPGFTNEMLINDSVVHEFDAIRFFTGEEITSVQVRMGKPTRNAPAGQHDPQHVLIETESGVLADVEIFVNARFGYEVAAQATFEEGIVNIGGDRGLYTRTAGRWGGQVTPGFVERFVEAYDVEIQAWVDATRRGELGGPSAWDGYATAACCEAGVEAQKNGEKVAVRLHPKPALYKNANANANANA
D1-29_00981456hypothetical proteinATGGGTATCAAGGACGACGCCGTAGAGGTCCGGGCGCAGGGATGGCGCACACTCGCGGCACTGCACGGGCTGATTGAAGGCGAGCTGGAAAGGTCGCTTCAGGCAGAGTCAAAGCTGTCAGTGGTGGAATACACCGTGCTGGACGCGCTCAGCCGGCAGGACGGCTGGCATATGAGGATGCAACAGCTGGCCCGCGCCACGGCGCTCAGCCCCAGCGCCACCACCCGGCTGGTTAACCGGCTTGAGGACCGGGGACTGCTGACCCGGATCCTCTGCGCCGACGACCGCCGCGGGATCTATACCGAACTCACCCCCAGCGGCATCACGTTGCTGGAGCAAGCACGGCCGGTCCACGACGCCACCCTGGAAAGGGCCCTGGCCGAAGCGATGGGCATCCCGGAACTGGCGCCCCTGGTCGATGCGCTCCCCCGGCTGCACGCAAACGCGCACCCCTAAMGIKDDAVEVRAQGWRTLAALHGLIEGELERSLQAESKLSVVEYTVLDALSRQDGWHMRMQQLARATALSPSATTRLVNRLEDRGLLTRILCADDRRGIYTELTPSGITLLEQARPVHDATLERALAEAMGIPELAPLVDALPRLHANAHPNANANANANA
D1-29_009821221ydhP_1COG2814Inner membrane transport protein YdhPATGCCCGCAGGCCTGATAGCCCTGGCCCTTGGCGGATTCGGCATCGGACTCACTGAGTTCGTCATCATGGGCCTGCTGCCCGAAGTGGCAGCCGATTTCCAGGTCACTGAAGCCTCGGCCGGCTGGCTGATCTCTGGCTACGCACTCGCCGTGGTGGTAGGCGCCCTATTGCTGACCGCTGCCGTGACCCGGTTGGAACGCAAACCTGTGCTTGCCGTGCTGCTGGTGCTCTTCATTGCCGGCAACCTGATCTCCGCCACGGCACCGGACTACTGGATGATGATGGCGGGACGGATCGTCGCCGCCCTTGCCCACGGCGCCTTCTTCGGCATCGGGGCGGTAGTGGCCGCTGACATGGTTGCCCCCACCAAAAAGGCCGGCGCGATCGCCATCATGTTCACAGGCCTCACCGCCGCCAACGTCCTGGGCGTGCCGTTGGGCACCATGCTTGGCCAGGCAGCAGGCTGGCGCTCCACCTTCTGGGCCATCACCGTCATTGGTGTCATAGCCCTGGCGGGCATCCTGGCCCTGGTGCCGAAGACCGGACACGGGGACACCTCTCCCGGAAGCCTGCGCAGTGAACTGGGTGCCTTCCGCTCCGGCCAGGTCTGGCTGTCCATTCTGGTCACCATTCTTGGGTTCGGCGGCATGTTTGGCGCCTTCACGTACATCGCCTTCACCCTGACCGAAGTGTCCGGATTTACCGCCTCCACCGTGCCATGGCTGCTTATCCTCTTCGGTGTGGGGCTTTTCATCGGCAACACCCTGGGCGGCAAGGCGGCCGACCGAAACGTGGACCGCACCCTGACAGTTGTCCTCGCCGTTCTCGTGGTGGTTCTCGTGTCCTTTGCCCTGACGGCCGGCAACCAGATCCTCACCGTGGCCTCAATCGTCCTGATGGGCGTCTTCGGATTCGCCGCCGTCCCCGGCCTGCAGATGCGGGTCATGAAATACGCCAGCAGTGCCCCCACCCTTGCCTCGGGTGCGAACATCGGCGCCTTCAACGTAGGGAACGCCCTCGGGGCCTGGCTCGGCGGGGTGACCATCACGGCCGGCCTCGGCTACACGTCGCCCATCTGGGCCGGGGCCGGCATTACGCTTGCAGGCCTGGCCGTTATGGCGGTGGCTGCCAGGGCGGCCAAGCTGGCCCCTGCCGCCGCCATGGCGGACGCGTCCCCGAAGGCCCCTGCCGCCGTCGAACCTGCTGCCGCATCCCGCTGAMPAGLIALALGGFGIGLTEFVIMGLLPEVAADFQVTEASAGWLISGYALAVVVGALLLTAAVTRLERKPVLAVLLVLFIAGNLISATAPDYWMMMAGRIVAALAHGAFFGIGAVVAADMVAPTKKAGAIAIMFTGLTAANVLGVPLGTMLGQAAGWRSTFWAITVIGVIALAGILALVPKTGHGDTSPGSLRSELGAFRSGQVWLSILVTILGFGGMFGAFTYIAFTLTEVSGFTASTVPWLLILFGVGLFIGNTLGGKAADRNVDRTLTVVLAVLVVVLVSFALTAGNQILTVASIVLMGVFGFAAVPGLQMRVMKYASSAPTLASGANIGAFNVGNALGAWLGGVTITAGLGYTSPIWAGAGITLAGLAVMAVAARAAKLAPAAAMADASPKAPAAVEPAAASRPGPT0028991_1131DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-29_00983897iolBCOG37185-deoxy-glucuronate isomeraseATGGCTGACTGGGTATATCCGCTGGGCTCCGCTGCTGACGGGAGCTGGGACATCTCGCTGGGGACTTCGGACTCTCCCCTGGCGGTCAAGGGGTGGGCACACACAGGACTAAAGGTGGCCACCTTGGCGGCGGGCGCCGGCGTCGAACTTCCCGCGGCGGGAGAAGAGCGCATCGTGGTGCCGCTCAGCGGATCCTTTATGGTCACGGTGGACGGTGAGAAGTATTTGCTGGCCGGACGCCCCAGTGTGTTCAGCGGCCCCACGGACGTGCTGTATTCCGGAACGGACAGAGCGGTCACCATCACCTCGCCAGAGGGCGGCCGGGTGGCCATCGCCACCGCCCCCGCACAGGTCCGGTACCCCACCAGGCTGATCACCGCCGCGGAAACCCCCGTTGAGCTGCGTGGCGCCGGCAACTGCTCCCGGCAAGTGCACAACTTCGGCACGCCGGCGGCGCTGGAGGCAGACCGTTTTATTGTTTGCGAGGTCCTCACCCCGGCGGGGAACTGGTCCTCCTACCCGCCCCACAAACACGATGAGGAAAAGGACGGCGAGACCCGGCTCGAGGAGATCTACTACTTCGAAACCCGTGTCGCACCGAATCTGGGCGGGCCCCGCAGGAAACAGGATCCCATCGGCTACCAGCGTGTCTACGCCTCGGACGAGCGGCCCATTGACGTCGCCGCAGAGGTACGCACCGGCGACGTTGTGCTCGTTCCCTATGGTTGGCACGGGCCGGCAATGGCGGCACCCGGGTATGACCTCTACTACCTCAACGTTATGGCCGGGCCCGGCCGGGTGCGCGACTGGCTCATCAGCGACGACCCCCACCACGGCTGGATCCGGCAGACCTGGTCGGGCCAGGTCATTGATCCGCGGCTGCCCTTCCGCGCCTAGMADWVYPLGSAADGSWDISLGTSDSPLAVKGWAHTGLKVATLAAGAGVELPAAGEERIVVPLSGSFMVTVDGEKYLLAGRPSVFSGPTDVLYSGTDRAVTITSPEGGRVAIATAPAQVRYPTRLITAAETPVELRGAGNCSRQVHNFGTPAALEADRFIVCEVLTPAGNWSSYPPHKHDEEKDGETRLEEIYYFETRVAPNLGGPRRKQDPIGYQRVYASDERPIDVAAEVRTGDVVLVPYGWHGPAMAAPGYDLYYLNVMAGPGRVRDWLISDDPHHGWIRQTWSGQVIDPRLPFRAPGPT0018475_55DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018475-iolB-K03337NANA
D1-29_00984741nagRCOG2188HTH-type transcriptional repressor NagRATGGCGAATCAACTCAATCTCAGCATCGACCGTTCGTCTCCTGTGCCGCTCTATCATCAGGTGGTCCAAGGCATCGAGGCTGCTATCAACACAGGCATTCTGGAGCCAGGGAGCCGGCTGGACAACGAGATCGACCTTGCAGCCAGGCTGAACCTGTCCCGGCCCACCATGCGCAAGGCCATGGACGAACTGGTCCGCTCCGGCCTCCTGGTACGGAAGCGCGGAGTAGGCACGCAGGTGGTGTCCAGCCAGGTCCGACGCCCCCTTGAGCTGTCCAGCCTCTTTGACGATCTCAGCAACAGCGGCAGTAAACCCACCACGGACGTGCTGTCCTTCAGTCACATCGAGGCCGACGACGCCACCCGCGAAGCCCTGCACCTCCCGGCGGGGGCAACAGTCTTTCATTTCACCCGGCTGCGGAAGGTGGGCGGCAAACCACTGGCGCTGATGGAAAACTGGGTCCGCGACGACATTACGGAGATCAGCGAGGAACTCCTGGCCAGCCAGGGCCTCTACGGAATCCTGCGCAATGGCGGCGTAAACTTCCGGCTGGCCACCCAAAGGATGGGTGCCGTGATTGCCAACGAGTACCAGGCCAAGCTTCTGGAAACAGCTCCGGGATCGGCCCTGGTAACCATGGAACGCACCGCTGTAGACGACACCGGCCGCAATGTGGAGACCGGCCATCACGTGTACCGCGCAGATTCCTACAGCTTTGAAATGACGCTGGTCCAGCGTTGAMANQLNLSIDRSSPVPLYHQVVQGIEAAINTGILEPGSRLDNEIDLAARLNLSRPTMRKAMDELVRSGLLVRKRGVGTQVVSSQVRRPLELSSLFDDLSNSGSKPTTDVLSFSHIEADDATREALHLPAGATVFHFTRLRKVGGKPLALMENWVRDDITEISEELLASQGLYGILRNGGVNFRLATQRMGAVIANEYQAKLLETAPGSALVTMERTAVDDTGRNVETGHHVYRADSYSFEMTLVQRNANANANANA
D1-29_009851134hypothetical proteinGTGAACCTCTCGGGCAACCTGGGTCCCAGCCCCCGGAGCATTGAAGTCGAAAGCCTGGACAGCTTTGACCGCCTGGTTAGCGCGGGGGCCGTGGAAATGCAGGGCTGGCATGCCCAGGCCCTTGACCTCCGTGGCAGGTCGGCAGCACTGGACAGGCTGGATGTGGAGGGCGCCATCTTCCTGGGATGCACGTTTGACCCTGGGGTCGAGGACAAACTGCGCCGGCGCGGTGCACTGATTTTCCCGCGGCTCCACGGCGTCCCCTTCGATCCCTACCGGGCCACACTCTACGCACCGCAGGAGCTGTATGCCGGCTTGGCGGGCGCACCCTATGAGGAGCTCCCCGATGCACTCGTCTACCAGTGGAGCATCCAGCCTGATCAACGCCACCGGCTGGATTCCACTTTGGCGTCGGCGCTGCACGACCATGCGATCGGCGATGCGCTGGAAGAGTTCACCCGCTCGGACGTGTGCGTCGGAAGGACCATGGTGGGCGTCATGGGGGGCCATGCTGCCCAGCGCGGAACCCCGGAATATGCGCAGGCGGCCGCATTGGGCAGGCTGCTGGCGCAGAGCGGCAAGGTGGTGGCCACAGGCGGAGGGCCGGGCGCGATGGAGGCAGCCAACCTGGGAGCGTACCTCAGCGGTGTCACAGAACCTGAGTTCAGGGAGGCTTTGGATTCCCTGGGTTCGGTTCCGGGTTTCCGCCCCTCGGTGTCAGCGTGGGCGCGGGCGGCGGCCGCCGTCGTCGAGCGTTTTCCGGACGGTGCGCCGTCGCTGGGAATCCCCACGTGGTTCTACGGACATGAGCCGCCCAACTACTTCGCCACGCACATTGCCAAGTACTTTGCCAACGCCATCCGGGAGGCCATCCTGCTGGAACTGTGCAACGGCGGCATCGTTTTCCTGCCCGGGGCGGCGGGCACAGTCCAGGAAATTTTCCAGGATGCCTGCGAGAACTACTACAGCCCGCGCGAGGCTGTTACCCCCATGGTGCTGGTGGGGCGGCAGCACTGGCAGCACGAGTACCCGGCGTGGCCCATGCTCCGCAGCCTGGCTGCCGGCCGGCCCATGGCAGAGAGCATCTTCCTGGTGGACAGCGTTGAAGAAGCGCTGGCCGTCCTTGGCGCCTAGMNLSGNLGPSPRSIEVESLDSFDRLVSAGAVEMQGWHAQALDLRGRSAALDRLDVEGAIFLGCTFDPGVEDKLRRRGALIFPRLHGVPFDPYRATLYAPQELYAGLAGAPYEELPDALVYQWSIQPDQRHRLDSTLASALHDHAIGDALEEFTRSDVCVGRTMVGVMGGHAAQRGTPEYAQAAALGRLLAQSGKVVATGGGPGAMEAANLGAYLSGVTEPEFREALDSLGSVPGFRPSVSAWARAAAAVVERFPDGAPSLGIPTWFYGHEPPNYFATHIAKYFANAIREAILLELCNGGIVFLPGAAGTVQEIFQDACENYYSPREAVTPMVLVGRQHWQHEYPAWPMLRSLAAGRPMAESIFLVDSVEEALAVLGANANANANANA
D1-29_00986900hypothetical proteinGTGGAGGGCCGCCCTCCCCGCCACTCGCACCAGGACTACCGGAAGCGAAGTACCGCGCGGGTCATCCGCAACCTCCTGCTTGTCGTGGCTTTCAGCGCAACGGCTTTCCTGGCGACCGGCCTGTTGTACAGTGATCCCCGCTTCGCCGGCCTGCTCGATGTCCGCATCGGCCCTGGCGCCCGGCCCCCCGGAGCCACCGGCGGCGTCCAGCCACCGGCTGAAGGACGCCCGGACGCACCGCCGCCAGGACTGGAAGAAGGCGGCTCCCCGCTGGGAACCCCGGAACCGCCCCCTGTCGCCAGTGATTCCTATGAGTTCCTGGCCGTTAACGACGACGGCACTCCGGTGGGCTACTCGCCCTGCCGGCCACTGCATTATGTGGTTAACGACCAGCTTGTTCCAGCCGGCGCCCAGCACCTCGTTCCTGATGCCATCGACAAGATTTCCGCGGCCACCGGAATCCGCTTCGTTTACGACGGCGCCACCACGGAGGTGCCGTCAAGCCAGAGGCCGCCCTACCAGCCGGATTCCTACGGGGACCGGTGGGCTCCCCTGCTGATTTCCTGGACCACCCCGGAGGTGGCACCCCAGCTCAAAGGCAAGGTCATCGGAACCGGCGGAAGCACGCATTACAGTTACGACGACGGGCCCAAGAGCTTCGTTACGGGCAGCCTCGAGCTGGACGCGCCCCAAATTGCGGACGAACTTCTGTACCCTGACGGTCAGCTCTACGCCACAGCCGTCATCCTGCACGAACTTGGCCACGTGATGGGCCTGGAACACGTGGACGATCCCCGGCAACTGATGTTTCCGGAGATCGGCACGCCGGAGGGCCTGTCCGACGGGGACCTGAACGGCCTGCATGAACTGGGCAAAGCCATGTGCCGCAAGGACCTGTAAMEGRPPRHSHQDYRKRSTARVIRNLLLVVAFSATAFLATGLLYSDPRFAGLLDVRIGPGARPPGATGGVQPPAEGRPDAPPPGLEEGGSPLGTPEPPPVASDSYEFLAVNDDGTPVGYSPCRPLHYVVNDQLVPAGAQHLVPDAIDKISAATGIRFVYDGATTEVPSSQRPPYQPDSYGDRWAPLLISWTTPEVAPQLKGKVIGTGGSTHYSYDDGPKSFVTGSLELDAPQIADELLYPDGQLYATAVILHELGHVMGLEHVDDPRQLMFPEIGTPEGLSDGDLNGLHELGKAMCRKDLNANANANANA
D1-29_009871221hypothetical proteinGTGTTTCAGCACGCCAAATCCAATCAAGAGAACCCCGCCGCGGAGCATCAGCCAGAAGTCCCCACACCGGGCCCCGCAGCAGGTGGCAACCAAAACCACAAACCTGGATTCAGCGTCCCCGCGGAAACCATCCCTGCACGCCAGCCCACCCCCTCCGACATCCGACGGTGGCGCCAGTACTTGGCAGATGAACGGGCCGAAGCAGCCGTGTACCGCGACCTGGCGCAGAACAGGCAGGGCGAAGAGCGGGACATCCTCCTGGCCCTGGCGGAGGCCGAGGGACGCCATGAAGCCCACTGGCTGCGGCTGTTGGGGCCGCACGTGGGCAAGTCCCGTCCGGCGTCGCTGCGCAGCCAGCTCCTCGGATTCCTGGCGCGCCATTTTGGCTCAGTCTTTGTCCTGGCCCTCGCCCAGCGCGCCGAAGGCCGCTCCCCCTATGCCAACGACCCCTCTGCCACTCCTGCCATGGCAGCGGACGAGCAGATCCACGAGGAAGTGGTGCGAGGCTTGGCAACGCGTGGCCGCAACCGGCTGGCCGGCACGTTCCGCGCGGCCGTCTTCGGCGCGAATGACGGCCTGGTCAGCAACCTCTCCTTGGTTATGGGCATGGCAGCATCCGGCGTCGCGAGCAGTGTGGTGCTGTTGAGCGGCGTGGCGGGCCTGCTGGCCGGCGCCCTGTCCATGGGAGCCGGCGAGTTCGTCTCCGTCCGGTCCCAGCGCGAACTCCTGGCAGCCACGCGCCCCACCCAGATCACCCTGGCAGCGGCCCCCAAGCTGGACATCGAACACAACGAACTGCTGCTGGTGTACCTGGCCCGGGGAATGTCCCATGAAGCAGCGGAGCACCGGGTCGCGGAGCGCATGGGGCTGCTCGCCTGCGATTGTGATCCCAGCCTGTCCCTCCAGCCTGAACTGCCGGACACCACCGACCGGCACGAAGCCGTGGGCACGGCCTGGGGAGCCGCACTTTCCAGCTTTTGCTTCTTCGCGTCCGGCGCCATCGTTCCCATCCTGCCGTTCCTCGTCGGCCTGACCGGAGTGGCTGCCCTCGTGGTGGCCGCTGTGCTGGTGGGGATGGCGCTGCTGGTGACCGGCGGAATTGTGGGCCTCCTTTCCGGCACCTCACCCCTGACCCGCGGATTGCGTCAGCTGGCCATAGGCCTGGGCGCGGCCGCTGTGACCTACGTGCTGGGCCTGGCCTTCGGCACCGTGGTGGGCTAAMFQHAKSNQENPAAEHQPEVPTPGPAAGGNQNHKPGFSVPAETIPARQPTPSDIRRWRQYLADERAEAAVYRDLAQNRQGEERDILLALAEAEGRHEAHWLRLLGPHVGKSRPASLRSQLLGFLARHFGSVFVLALAQRAEGRSPYANDPSATPAMAADEQIHEEVVRGLATRGRNRLAGTFRAAVFGANDGLVSNLSLVMGMAASGVASSVVLLSGVAGLLAGALSMGAGEFVSVRSQRELLAATRPTQITLAAAPKLDIEHNELLLVYLARGMSHEAAEHRVAERMGLLACDCDPSLSLQPELPDTTDRHEAVGTAWGAALSSFCFFASGAIVPILPFLVGLTGVAALVVAAVLVGMALLVTGGIVGLLSGTSPLTRGLRQLAIGLGAAAVTYVLGLAFGTVVGNANANANANA
D1-29_00988243hypothetical proteinATGAACACCACCGGACAGCACCCGGACATGCCGCACCTCGATGCTGTGGAATCCGATCCGGCTTATGACTACGCCGAGGATGCGCCGGTTGTTGATGACGACTGGGACGCAGAGGACGAGTTTCTGGATACCGAAGAAGTGGTCATTCCGGCGCCTCCGGCCGTCGTTGACGCCGAAGAGCGGGTCGTCCCGCTGGATCCGGACGAGTACCGCGAGACGGGCGAGATTGACGACCTTGAATAAMNTTGQHPDMPHLDAVESDPAYDYAEDAPVVDDDWDAEDEFLDTEEVVIPAPPAVVDAEERVVPLDPDEYRETGEIDDLENANANANANA
D1-29_009891524opuECOG0591Osmoregulated proline transporter OpuEATGGACGCTAACTTCGTCAACATCGCCATTGTGGTGGTGTACCTCATTGCCATGCTGGCCTTTGGCTGGTGGGGCAAGTCCCGCACCAAAAACAACAGTGATTTCCTGGTGGCCGGCCGCCGCCTGGGTCCATTCCTCTACACAGGCACCATGGCCGCCGTTGTCCTCGGCGGCGCCTCAACCGTTGGCGGTGTGGGACTCGGCTACAAGTTCGGCATCTCGGGCATGTGGCTGGTGGTGGCCATCGGCGCCGGCGTTCTGCTCCTGAGCCTGCTATTTGCCGGAACCATTCAAAAGCTCAAGATCTACACGGTCTCCCAGATGCTGACTCTGCGCTACGGCAGCAAGGCCACCCAGACCTCCGGCATCGTCATGCTGGCCTACACCCTGATGCTCTGCGCTACCTCCACCGGAGCTTACGCCACCATCTTCGTAGTGCTGTTTGGCTGGGACCGCGCCCTTGCCATCGCCATCGGCGGCGCCATCGTCCTGGTGTACTCCACCATCGGCGGTATGTGGTCCATTACGTTGGCGGACCAGGTGCAGTTTGTTATCAAGACCGTAGGCATCTTCCTGCTGATGCTGCCGTTCACCCTCAACGCGGCCGGCGGCCTGGACGGCATCCGCAGCCGGGTTGATGAAAGCTTCTTCCAGATGGACGGCATCGGTGTCCAGACCATCATCACGTACTTCGTGGTGTACACCCTGGGCCTGCTGATCGGCCAGGACATCTGGCAGCGCGTCTTCACGGCCAAAACCCCCAAGGTGGCCCGCTGGGGTGGCGCCACCGCCGGCATCTACTGCATCCTCTACGGTGTGGCAGGTGCCCTCATCGGCCTGGGCGCCAAGGTGGCCCTGCCGGACATTGACGTTGCCGCCGAAGGCAAGGATGTGGTCTACGCCGAAGTGGCGCAGAACCTGCTGCCCATCGGGATCGGCGGACTGGTGCTTGCCGCAGCCGTGGCAGCCATGATGTCCACCGCGTCCGGCGCCCTCATCGCCGCCGCAACGGTGGCACGGGCCGACGTCCTGCCGTTTGTTGCCAGCTGGTTCGGCAAGGACATCAATACCGAAGACACGGAGAACCCGGAGCACGACGTCAAGGCCAACCGCATCTGGGTCCTGGCGCTTGGCATTGTGGCCATCGTTATCGCCATCATCACCAAGGACGTGGTGGCAGCCCTGACCATCGCGTACGACATCCTGGTGGGCGGCCTGCTGGTGGCCATCCTCGGCGGACTGGTGTGGAAGCGCGGCACCGGCCTGGCTGCGGCCGCCTCCATGGCAGTCGGTTCCGTGGTGACCCTGGGAACCATGATCGTCCTGGAAATCAACGCCAAGGCCCCGCTGGACGGCGTCTTCGCCAACGAACCCATCTACTTCGGCCTGATCGCCTCGGCAGTGGTCTACGTTGCAGTGTCCCTGTTCACCAGGCCCACGGATGCGCTGGTAATGCGGAACTGGCGACGACGGGTGGCTGGCCAGGAAAACGAGGAAGTGCCGGTCCCCGTCACGGCGCCCTGAMDANFVNIAIVVVYLIAMLAFGWWGKSRTKNNSDFLVAGRRLGPFLYTGTMAAVVLGGASTVGGVGLGYKFGISGMWLVVAIGAGVLLLSLLFAGTIQKLKIYTVSQMLTLRYGSKATQTSGIVMLAYTLMLCATSTGAYATIFVVLFGWDRALAIAIGGAIVLVYSTIGGMWSITLADQVQFVIKTVGIFLLMLPFTLNAAGGLDGIRSRVDESFFQMDGIGVQTIITYFVVYTLGLLIGQDIWQRVFTAKTPKVARWGGATAGIYCILYGVAGALIGLGAKVALPDIDVAAEGKDVVYAEVAQNLLPIGIGGLVLAAAVAAMMSTASGALIAAATVARADVLPFVASWFGKDINTEDTENPEHDVKANRIWVLALGIVAIVIAIITKDVVAALTIAYDILVGGLLVAILGGLVWKRGTGLAAAASMAVGSVVTLGTMIVLEINAKAPLDGVFANEPIYFGLIASAVVYVAVSLFTRPTDALVMRNWRRRVAGQENEEVPVPVTAPPGPT0013955_3152DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013955-TC_SSS|yerK|opuE-K03307NANA
D1-29_00990576puuR_1HTH-type transcriptional regulator PuuRATGAAGGCACTGCCAGTTGAGCCAAGCAACGTTCCCGTTGCCATTGGTTCCCGAATCCGTGCCGCGCGGCAGTCCCAGCGGCTGACCATTGAGCAGGTTGCCGACGCCACCGGCCTGACCAAGGGGTTCCTGAGCCGGGTGGAACGGGATCTGACCTCGCCGTCGGTTGCCTCCCTGGTGACCCTGTGCCAGGTGTTGTCCATTTCTATTGGGGACCTTTTTGCCGCCCCCGAAACGCACCTCACCAAGCGGAATGACGGGCCGCGGATCTCCTTGGGCGGCCATGGGATTGTGGAACGGCTCCTGACGGCACGCTCGGAACGCCGGATCCAGATCATCCAGGCCGTGATTGAGCCGCATGGCCGCGGCGAGACGGAGCTGTATGCCGTGGACTGCGATGTTGATGTGCTGCACGTGATTAAGGGCAGCATCCGGCTGATCCTCACCAACGAGGAATATGAGCTCAACACTGGCGACACTGTCACATTCCCCGGACGTGAACCCCACACCTGGGTAAACCCCACCGACAAGCCCGTAGAGGTGCTCTGGGTCCTGGTTCCGGCGGCCAGCCGCTAGMKALPVEPSNVPVAIGSRIRAARQSQRLTIEQVADATGLTKGFLSRVERDLTSPSVASLVTLCQVLSISIGDLFAAPETHLTKRNDGPRISLGGHGIVERLLTARSERRIQIIQAVIEPHGRGETELYAVDCDVDVLHVIKGSIRLILTNEEYELNTGDTVTFPGREPHTWVNPTDKPVEVLWVLVPAASRNANANANANA
D1-29_00991186hypothetical proteinATGCACTCTGCACATTGTGGGAAAGCTGCCGCCGTGGCCGCCCTCGCGCTTGCTTTCACCGCTGCCACTGCCGCCTGCCCGCCCGCCACGTCAGGGCCGACGGCGGACCGGGGCTCCGGTTCGACGCTCTCCCTGACGTCACTTGCCCAGCGCCGTCGCGTTCTCCCCTTCGGGAGTGTCGTGTAAMHSAHCGKAAAVAALALAFTAATAACPPATSGPTADRGSGSTLSLTSLAQRRRVLPFGSVVNANANANANA
D1-29_009921065gbhGuanidinobutyraseTTGGAAGAGCTGCGCATCGAAGCCAACGGCAATCTTGGCCCCATCGATTCATCCCGTATTCCGCGCTACGCCGGCGCCGCGACGTATGCCCGCCTTCCCCGCCTTGACCAGGTGGCCAAAGCCGACGTCACAGTGGTGGGTGTTCCCTTCGACTCAGGCGTCTCCTACCGCCCGGGCGCACGCTTCGGCTCCAACCACATCCGGGAAGCCAGCCGCCTGCTGCGCCCCTACAACCCGGCCTGGGATGTTAGCCCCTTCGAAAACATCCAGGTGGCGGACGCCGGTGACATGGCGGTCAACCCCTTCAATATCAACGAGGCCATCGAAACTGTTCAGCAGAATGCCCTGGACCTGACCTCAGGCGGGAGCAAGCTGGTGACCCTGGGCGGTGATCACACCATCGCGCTGCCCCTGCTGCGCGCCGCGGCTGAACGTGCCGGCGGCCCCCTCGCCATGCTCCACTTTGACGCGCACCTGGACACCTGGGACACCTACTTCGGCGCAGAATACACCCACGGAACCCCGTTCCGCCGTGCTGTGGAGGAGGGCATCCTGGACACGGAAGCCATCAGCCACATCGGCACCCGCGGCCCGCTGTACGGCAAAAAGGACCTCGACGACGACCACCGGTTCGGGTTCGGCATCGTTACCTCCGCGGACGTCTACTACCAGGGCGTCCTGGAAACTGTGGCCAAGGTCCGGGACCGGATCGGCAGCCGCCCGCTCTACATTTCGGTGGACATCGATGTCCTGGACCCTGCACACGCCCCTGGCACCGGCACCCCCGAAGCCGGCGGCATCACCAGCCGCGAACTGCTGGAAATCATCCGCGGCTTCCGCGGCATGAACCTGGTGGGCGCGGACATCGTCGAGGTTGCCCCTGCGTACGACCACGCCGAGATCACCGGCGTCGCCGCCAGCCATGTGGCGTTCGAGCTGGTGACCCTGATGGCGGACAATGCCGTGGCGGGCGACCGTTTCGGTGCAGCCAACGGCTATGCCGCGCAGGCGCTTGGCCAGGAAGCCCGCCAGCCGGCCGGGTTCGCGGCAGCCGGCAAGGAGTAGMEELRIEANGNLGPIDSSRIPRYAGAATYARLPRLDQVAKADVTVVGVPFDSGVSYRPGARFGSNHIREASRLLRPYNPAWDVSPFENIQVADAGDMAVNPFNINEAIETVQQNALDLTSGGSKLVTLGGDHTIALPLLRAAAERAGGPLAMLHFDAHLDTWDTYFGAEYTHGTPFRRAVEEGILDTEAISHIGTRGPLYGKKDLDDDHRFGFGIVTSADVYYQGVLETVAKVRDRIGSRPLYISVDIDVLDPAHAPGTGTPEAGGITSRELLEIIRGFRGMNLVGADIVEVAPAYDHAEITGVAASHVAFELVTLMADNAVAGDRFGAANGYAAQALGQEARQPAGFAAAGKEPGPT0007775_606DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007775-speB-K01480NANA
D1-29_009931755ilvG_1Acetolactate synthase isozyme 2 large subunitATGATCGATGACGGCGCCGGAACGGCCGCGGCCGGGGCAGTGGATAAAACCGGAGCAGGGGACAAAGCCGGAGCAGGAGAAAATAAGGGAACCGATGAGCGCAACGGCGGGGACCTCGTCGTCGAGACCCTTGAAGCATTGGGCGCCAAAACGGTCTTTGGCATTCCCGGCCAACACGCGTTGGGCCTGTTTGATGCAATGGGCCGCGGCAATCTGCACTTCGTCTCCTCCCGGGTGGAAAACAACTCGGCTTTTGCCGCCGACGGCTATTCCCGCGCCACCGGCGAAGTGGGGGTGCTGTTCCTGTCCACCGGGCCGGGTGCGCTGACGTCACTGGCCGGACTGCAGGAGGCCTACGCAACGGGTGTGCCCATGGTTGTTGTGGCAAGCCAGATTCCCCTGGAGGGCCTGGGTGCCCGGCGCAAGGGCATGCTCCACCAGCTCGATGACCAAAAGGCCTCGGCGGCAAACGTCACCAAGAGCCAGCGCCTGATCCAGCACGCCTCCGGCATTCCGTCCGCCATCCAGGACGCCTGGACCGAAGCCATTTCGTCACCGCAGGGCCCGGTCTGGCTGGAAATCCCGCAGAACGTCCTGCTGGATCCCATCATGGTTCCGCCGGTGGAGGACGCCCTCGCCGAAGCGGCGGACAACCCGCCGCGCGTCGAGCTGGTCCGTGAAGCAGTGAAATGGCTCTCGACGGCGGAGCGCCCGGCCATCATTGCCGGCGGCGGCACCCGCCGAGGCCGGGCGGAGAAGTCCCTGCTGTCCATCGCAGAGAAGCTCAGGGCTCCCGTCATCTGTACTCCCGGCGGCAACGGCGCGTTTCCCTGGAACCACGAGCTGTCCCTGCAGTCCTGGATCGAGGACCGCTACATGACCGACGTCCTGGAGGATGGAGACGTCCTGGTTGTGATCGGTTCCTCCCTGGGTGAAGTGACGTCCAACTACTTCACCTTCGAGCCGCGTGGCCGGATCATCCAGATCGACGCCGAGCCGCGTGTGCTGGAGTCCAACCGTCCGGGCCTGGGAATCCGCGCAGACGCCGGTCAGGCGCTCGCAGCCCTGGATGAGGCCCTGGACACGGCCTTGGAGCGGGATCGGAAAGCATCGCCCACGTGGCACGGGGTTACCCCGGAGGATCTGGTCAGGGAGTCGCTGGCAAAGGTCAAGGCCCGGCTCGAGTCCCAGGACCTGGCCAAGGAACTGAAGTTCATGGCGGACATCCGCGAGGCTGTCCCCCCTGACATGCAGACCTTTTGGGACATGACCATTTCGTCCTATTGGGCCTGGAGCTGCTGGGATGCGCGCCAGGGCCAGTTCCATTCAGCCCAGGGCGCGGGCGGCCTGGGCTTTGGCTATCCGGCGGCCATCGGTGGCGCAGTGGGGCTGGAAACGGTGGGAAAACCGGGACGTGTGCTGGCTGTATCCGGTGACGGCTCGGCCATGTACTCCATCTCGGAACTCGCCACGGCCAAACAGCACAACATCCCGGTCACCTGGCTGATTGTGGACGACGGCGGCTACGGCATCCTGCGCGAATACATGGTGGGCGCCTTCGGCAAAGCCACGGCCACCGAGCTCGCACGCCCTGACTTCGTCAAGCTCGCCGAAGCCTTCGGTGTGCCGGCCACCCGGGTGGCCCCCGAAGAAGTCGGGGACGCGCTGAAAGCCGGATTCGCCGCGGACGGACCCAACGTCGTCGTCGTCGAAACCCTGCTCAAGATGTTCGCCCCCACCCACACGGAGGACTGAMIDDGAGTAAAGAVDKTGAGDKAGAGENKGTDERNGGDLVVETLEALGAKTVFGIPGQHALGLFDAMGRGNLHFVSSRVENNSAFAADGYSRATGEVGVLFLSTGPGALTSLAGLQEAYATGVPMVVVASQIPLEGLGARRKGMLHQLDDQKASAANVTKSQRLIQHASGIPSAIQDAWTEAISSPQGPVWLEIPQNVLLDPIMVPPVEDALAEAADNPPRVELVREAVKWLSTAERPAIIAGGGTRRGRAEKSLLSIAEKLRAPVICTPGGNGAFPWNHELSLQSWIEDRYMTDVLEDGDVLVVIGSSLGEVTSNYFTFEPRGRIIQIDAEPRVLESNRPGLGIRADAGQALAALDEALDTALERDRKASPTWHGVTPEDLVRESLAKVKARLESQDLAKELKFMADIREAVPPDMQTFWDMTISSYWAWSCWDARQGQFHSAQGAGGLGFGYPAAIGGAVGLETVGKPGRVLAVSGDGSAMYSISELATAKQHNIPVTWLIVDDGGYGILREYMVGAFGKATATELARPDFVKLAEAFGVPATRVAPEEVGDALKAGFAADGPNVVVVETLLKMFAPTHTEDPGPT0008185_5420DIRECT 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
D1-29_00994477hypothetical proteinATGGCAGTTGCGCCGAATACCGCGGCAGAGCTCGTCTACCAGATCTTTGATCTACAGGGGGCGGTACGCTGCGTGGCAGCAGCGAGCCTTCGCGGGCAGGAAACAGGGGTCGCGCTGCAGGGCGTTCTCAGGTTCGTGGGGGAGGGGGAGACCCGCGCCACACGGCTCGCTGAGCGGCTGGGCGTCAGTGCCCCGGTCCTCAGCCGCCATATCGCGGATCTGGAGGAGCAGGGGTACGTCATCCGCCGGCAGGATCCCGACGACGGCCGTGCCCAGCTGGTTGCGCTGACCTCCAAGGGCTCTGAGAAGCTGCGCCACATCGAGGAGCAGCGTACTTCGGCCCTGCAGGACTACCTCCGGGAATGGAGCCAGGAGGATGCCGAGGAAGCAGCAAAGACCCTGCGGAAACTCACCGATTCCCTCAAAACTTCAGCCCGGGCAAAGGCGGCCGGACGTTCGTCAGTTACCACGTCTTAGMAVAPNTAAELVYQIFDLQGAVRCVAAASLRGQETGVALQGVLRFVGEGETRATRLAERLGVSAPVLSRHIADLEEQGYVIRRQDPDDGRAQLVALTSKGSEKLRHIEEQRTSALQDYLREWSQEDAEEAAKTLRKLTDSLKTSARAKAAGRSSVTTSNANANANANA
D1-29_009951665bmr3_1Multidrug resistance protein 3ATGTCGAGCCAAACGGCTGCAGCACCACCCGTGGCGATGACCCACCGCCAGATCATGGAAGCCCTGACCGGGCTCCTCGCCGCCTTCTTCACGGCCATCCTCAGCAGCACCATTGTGGCGAATGCGCTGCCCACCATCATGTCCGAGCTCAAAGGCACCCAGACGGATTTTGCCTGGGTCATCACGGCTGCGCTGCTTGCCAACGCAGCCACCACGCCCATCTGGGGAAAACTGGCCGACCTCTACGACAAGAAGCTGCTGGTCCAGCTCAGCATTGTCGTCTTCGTGGCCGGCTCCGTCATGGCGGGACTGTCCCAAACCATCCCGTTGCTTTTGGCGGCACGGGTGATCCAGGGCGTGGCCATGGGCGGGCTCACCGCCATGGCCCAGGCCATTATCGGCACCATGATCCCGCCCAGGGACCGCGGAAAATACTCCGGCTACATGGGCGCCGTGATGGCAGTGGGCACCGCCGGCGGCCCGCTCCTGGGCGGGTTCATTGTGGACAGCCCGCTGGGCTGGCGCTGGACGTTCTTTGTCTGCGTCCCGCTCGCCATCGTGGCCCTGATCCTGTTGCAGATCACCCTGAAGATCCAGCACGTCCGGCGCCCCGCAAAGATCGACTGGCTGGGTTCCATCCTGCTCACCTCCGGCGTCAGCCTGCTCCTGATCTGGGTCTCCTTCGCCGGCAACCCCGCCTACTACGGCTGGATCTCCTGGCAGTCCGCCCTGATGGTGGGCGGCGGCGTGGTGCTCCTAGGCCTGCTGGTCCTGGTGGAGTCCAGGGTGGAACAGCCCATCATTCCGCTCAAGATTATCTCCGAGCGGACCACCGCCCTGGCCATCCTTGCCTCGGTGGCAGTAGGCGTGGCCATGTTCGGTTCCTCCACCTTCCTGGGCCAGTACTTCCAGGTGGCACGCGGCGCCAGCCCCACCGAAGCGGGGCTGCTGACATTGCCCATGATCGCCGGCAACCTGGTGGGCTCTGTCGCGTCCGGCCTCCTGATCAGCCGTACCGGCAGGTGGAAGGGCTACCTGGTGGCCGGCTCAATCCTGCTCATCGGCGGGCTCGGCCTTGCCGGCACCATGGACCACACCATCGAGCTGTGGCACGCAGGCGTTTTCACGGCGGTCCTGGGATTGGGACTTGGCATGCTGATGCAGAACCTTGTCCTGGCCGTGCAGAACACCGTCCGGGCCGCTGACATCGGTACGGCCAGCGCGTCGGTGGCGTTCTTTCGGTCCGTGGGCGGTGCCATTGGTGTTTCGGTTCTTGGTGCCGTTCTGGCCAGCCGGGTCAGCGAACTTGCCGGCCAGGGACTCAGCGCGGCGGGCATTGCCGTGGAGGGCGGCCCGGCAGGGACCAGCATGGACCTGACCCACATGCCCGAGCCGGTGCGCGAGATCATGCGGGCGGCCTATGGCGATGCCACCGCTGAAGTCTTCCTCGTCTCGGCAGCTGTGGGCCTCGTGGCGCTGATCTCTGTCCTGTTCATCAAGGAACGCCCGTTGCGGCGCACCGTTGACGTGCAGGAGGCGGAAGCCGCACGCAGGGCGGAGCCAGGATCGGGGTCAGGGACAGGACGTCAACCAGCGTCCCGGTCAGGAGCCGCTGAGGCAAAACTGGAAAGCCCGACGGCGGAACTCGCCTCAGTCCACAGCTGAMSSQTAAAPPVAMTHRQIMEALTGLLAAFFTAILSSTIVANALPTIMSELKGTQTDFAWVITAALLANAATTPIWGKLADLYDKKLLVQLSIVVFVAGSVMAGLSQTIPLLLAARVIQGVAMGGLTAMAQAIIGTMIPPRDRGKYSGYMGAVMAVGTAGGPLLGGFIVDSPLGWRWTFFVCVPLAIVALILLQITLKIQHVRRPAKIDWLGSILLTSGVSLLLIWVSFAGNPAYYGWISWQSALMVGGGVVLLGLLVLVESRVEQPIIPLKIISERTTALAILASVAVGVAMFGSSTFLGQYFQVARGASPTEAGLLTLPMIAGNLVGSVASGLLISRTGRWKGYLVAGSILLIGGLGLAGTMDHTIELWHAGVFTAVLGLGLGMLMQNLVLAVQNTVRAADIGTASASVAFFRSVGGAIGVSVLGAVLASRVSELAGQGLSAAGIAVEGGPAGTSMDLTHMPEPVREIMRAAYGDATAEVFLVSAAVGLVALISVLFIKERPLRRTVDVQEAEAARRAEPGSGSGTGRQPASRSGAAEAKLESPTAELASVHSNANANANANA
D1-29_009961734COG1132putative ABC transporter ATP-binding proteinATGCTCCTCACCCTCATACGGCGCTATTCGAAACCGTATATGCCATACATCGTGGCCGTCATTGTCCTGCAACTGGCGTCCACGATTGCCGCGCTCTACCTTCCCAGCCTCAATGCCCAAATTATCGATGAGGGTGTTTCCCGCGGTGACACCGATTTCATCTGGCGTACCGGCGTTCTGATGCTCCTGGTCGCCTTTGTCCAGGTTGGTACCGCCATCGCAGGTGTTTACTACGGATCCAAGGCAGCCATGGCGGTGGGCCGGGACCTGCGCCGCGGTGTGTTCCGCAAGGTCACCAGCTTCTCGGCCAAGGACGTAAACGCTTTTGGCGCGCCCACCCTGATCACCCGCGGCACCAACGACGTCCAGCAGGTCCAGATGCTCGTGCTGATGGGCCTGAACTTCATGGTGGCCACGCCCATCATGTGCATCGGCGGCATCATCATGGCGCTCCGTGAGGACCTCAACCTCTCCTGGCTGGTGTGGGTCTCTGTACCCGTGCTGATTGTGGTGGTGGGCTACCTGGTGGTCCGCCTGATGCCGCTTTTCCGTTCCATGCAGAAAAAGATCGACGGCATCAACGCCGTCCTGCGCGAGCAGATCATCGGCATCAGGGTGGTCCGCGCCTTTGTCCGCGAACCCTATGAAACCGAGCGCTTCGGGGAAGCAAACAGGGAACTGACAGACGTTTCATTGAAGATCGGCGCTCTCTTTGTCCTGATGTTCCCGGCCATCGGCATGATCCTCCATCTCTCAACGGCAGCCGTCCTGTGGTTCGGCGGCCAGCGCGTTGACTCCGGCGACATGCAAGTGGGTGCCCTGACCGCCTTCCTCCAATACCTCCTGCAGATCCTCATCGCAGTCATGATGGGCACATTCATGGCCATGATGATTCCGCGGGCCTCGGTCTGCGCGGACCGCATTGGTGAAGTGCTCGACGTCGAACCCTCGATCCACGATCCTGAGCAGCCGGAGAGTCCGGCCACCCTCGCCGGTGTCGTCGAATACCGGAACGTCACGTTTGCGTACCCCGGTGCCGAGTCACCGGTCCTGAGCAACATCAGTTTCACCGCCAGGCCGGGGGAGACGCTGGCCATCATCGGTTCCACGGGCGCCGGCAAAACCTCCTTGCTGTCGCTTCTGCCACGCCTCTATGACGTGGCCGAGGGTGAGGTCCTCCTTGACGGCGTGTCCGTCAGCAAGCTGGACCGGTGCGAAATTACCAAACGGGTGGCGCTGGTTCCCCAGCGGCCGTATCTGTTCTCCGGGACCATCGAGCACAACCTGCGCTTCGGGAAAACCGAGGCAACGGACCAGGAGCTCTGGGAGGCACTGGAGGTATCGCAGGGCGAGGACTTTGTCCGGGAAAAGAAGAACGGCCTGAACGCGCGCATCGCCCAGGGAGGAACCAACGTCTCAGGCGGCCAGCGGCAGCGGCTTTGCATCGCCCGTGCCCTGGTGACCAAGCCCAAGGTGTACCTCTTTGACGATTCCTTCTCTGCCTTGGATGTTGCCACCGATGCACGGCTCCGCGCTGCACTGAAAGGCACCACTGCTGATGCAACGGTGATTATCGTTGCCCAACGGATCTCCACCATCACCGAGGCCGATCAGATCCTGGTGCTGGACAACGGCCGGATCGTGGACCGCGGCACCCATGAAGAACTGCTGGAAACGTCACCCACCTACCAGGAAATTGTGGAATCCCAGCTGAGCGTGGAGGAAATGGCATGAMLLTLIRRYSKPYMPYIVAVIVLQLASTIAALYLPSLNAQIIDEGVSRGDTDFIWRTGVLMLLVAFVQVGTAIAGVYYGSKAAMAVGRDLRRGVFRKVTSFSAKDVNAFGAPTLITRGTNDVQQVQMLVLMGLNFMVATPIMCIGGIIMALREDLNLSWLVWVSVPVLIVVVGYLVVRLMPLFRSMQKKIDGINAVLREQIIGIRVVRAFVREPYETERFGEANRELTDVSLKIGALFVLMFPAIGMILHLSTAAVLWFGGQRVDSGDMQVGALTAFLQYLLQILIAVMMGTFMAMMIPRASVCADRIGEVLDVEPSIHDPEQPESPATLAGVVEYRNVTFAYPGAESPVLSNISFTARPGETLAIIGSTGAGKTSLLSLLPRLYDVAEGEVLLDGVSVSKLDRCEITKRVALVPQRPYLFSGTIEHNLRFGKTEATDQELWEALEVSQGEDFVREKKNGLNARIAQGGTNVSGGQRQRLCIARALVTKPKVYLFDDSFSALDVATDARLRAALKGTTADATVIIVAQRISTITEADQILVLDNGRIVDRGTHEELLETSPTYQEIVESQLSVEEMAPGPT0029025_1622DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887NANA
D1-29_009972070COG1132Fatty acid ABC transporter ATP-binding/permease proteinATGAGCGGCCGCAAGAAGGATTCAACAAAGGCCGGGGACATGGCAGCAACACCACCGGCTGTACCAGATTCCATCGACGTTCTCGAGGACGACGAGTTCTTCGAGGAGGAATACAAGCCCTCCGAGGCCGACGGCGATATGTTCGGCGGCATGCCGGCGAAAAAGGCGGAACACTTCTGGCCTTCGGCCAAGCGGCTGATGGGCCTGCTCAAGCCGGAGTCGCTGGGCATCTATGCTGTCGTGGCCCTGGTACTGGTGGCGGTGGTCCTGAACGTCATTGCGCCCAAGATCCTGGGCCAGGCCATGGACGTGATTTTCGGCGGCGTGGTGGGAAAACAGCTTCCCGCCGGTGCCAGCAAGGAAGAGTTCGTCGAGGGGCTGCGCCAGCAGGGACAGGACAACTTTGCGGACATGATCTCGAAGATGGAAGTGGTTCCCGGAAGCGGCATCGACTTCCAGAAACTATCCGTCCTGATTGCCATTGTGCTGCTGATGTACTTCGTTGCCAACATTTTCCTCTGGCTCCAGGGCTACGTCCTGAACCGCATTGTCATGAAGGTCATCCGCCGGCTCCGCGACGATACTGAAAAGAAGCTGAACCGCCTGCCGCTGAACTACTTTGACACCCGCCAGCGGGGCGATGTCCTCTCACGGGTGACCAACGACGTCGACAACATCCAGCAGGCACTCCAGCAGGCCTTTGCCCAGCTGATCAACTCGCTGCTGACCGTCATCGGCATTGTCATCATGATGTTCATCGTGTCCTGGCAACTGGCAGTCATTGCGCTGATCGCACTTCCGCTCTCCGGTGTTGCCGCCGGAATCATCGGGTCCCGCAGCCAGAAGCTCTTCGCCGCGCAGTGGAAGAACACCGGGGCACTCAACGGCCAAATCGAGGAATCCTTCTCAGGCCATGACCTGGTGCGGGTTTTCGGCCGCGACGCAGACATGCTGGAACGCTTCGAGGAGCGCAACGAGGCACTGTACAAGGCCAGTTTCGGGGCACAGTTCGTCTCCGGCATCATTTTCCCGGTGATGCAGTTTGTCTCCTACCTCAGCTACGTGGGCATAGCCGTTGTGGGCGGCCTCCGGGTCGCCTCAGGTTCCATGTCCCTGGGGGATGCCACCGCGTTCATCCAGTACTCACGGGAATTCACGCAGCCGCTGGGCCAGATGGCCGGCATGGCCAACATGCTCCAGTCAGGCGTGGCGTCCTCGGAACGAGTATTCGAATTCCTGGACGCCGATGAGCAGGATCCGGAGACTGCCACCGACCACTTGCCCGCCAAGACGGACGGCCACGTGGAGTTCAGGGATGTCACATTCAGCTACACCGAGGACAAGAAGCTGATCGAGAACCTGTCCTTCACCGCGCAGCCGGGGCACACCGTCGCCATTGTCGGCCCCACCGGAGCAGGTAAAACCACTTTGGTGAACCTGGTGATGCGCTTCTACGAGATCAATGCAGGCTCCATTACCCTGGACGGCGTGGACATCACCAGGCTGACCCGTGCCGAACTCCGGTCCAAGGTTGGAATGGTGCTCCAGGACGCCTGGCTGTTCGGCGGCTCCATCTACGACAACATCCGCTACGGCAACCTGGACGCCACGGAAGAGCAGGTGATGGCTGCGGCAAAGGCCACCTTCGTGGACCGTTTTGTGCGCGCCCTGCCGGAAGGCTACAACACCGTGATTGATGAGGAAGGCAATAACGTCAGCGCCGGTGAGAAGCAGCTGATCACCATCGCCCGCGCGTTTGTGGCCAACCCGTCGCTGCTCATCCTGGATGAGGCCACCAGCTCGGTGGACACCCGCACGGAACTGCTGGTGCAAAAAGCCATGGCAGCCCTCAGGACCGACCGCACCAGCTTTGTCATCGCGCACCGTCTTTCCACCATCCGCGATGCCGACACCATCCTGGTGATGGAGAACGGCCAGATCGTCGAACAGGGTAACCACAGGGTCCTTTTAGCGGCTGAGGGGGCGTACTACCGGCTCTACATGTCCCAGTTCGCCGGGTCCGACGCTGAAGAAACACCTGTGGACGACTCGACGGCGGTGCACAGCTGAMSGRKKDSTKAGDMAATPPAVPDSIDVLEDDEFFEEEYKPSEADGDMFGGMPAKKAEHFWPSAKRLMGLLKPESLGIYAVVALVLVAVVLNVIAPKILGQAMDVIFGGVVGKQLPAGASKEEFVEGLRQQGQDNFADMISKMEVVPGSGIDFQKLSVLIAIVLLMYFVANIFLWLQGYVLNRIVMKVIRRLRDDTEKKLNRLPLNYFDTRQRGDVLSRVTNDVDNIQQALQQAFAQLINSLLTVIGIVIMMFIVSWQLAVIALIALPLSGVAAGIIGSRSQKLFAAQWKNTGALNGQIEESFSGHDLVRVFGRDADMLERFEERNEALYKASFGAQFVSGIIFPVMQFVSYLSYVGIAVVGGLRVASGSMSLGDATAFIQYSREFTQPLGQMAGMANMLQSGVASSERVFEFLDADEQDPETATDHLPAKTDGHVEFRDVTFSYTEDKKLIENLSFTAQPGHTVAIVGPTGAGKTTLVNLVMRFYEINAGSITLDGVDITRLTRAELRSKVGMVLQDAWLFGGSIYDNIRYGNLDATEEQVMAAAKATFVDRFVRALPEGYNTVIDEEGNNVSAGEKQLITIARAFVANPSLLILDEATSSVDTRTELLVQKAMAALRTDRTSFVIAHRLSTIRDADTILVMENGQIVEQGNHRVLLAAEGAYYRLYMSQFAGSDAEETPVDDSTAVHSPGPT0029030_82DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888NANA
D1-29_00998417hypothetical proteinATGCGATGGGGCGACATGGATGCCTATGGGCATATCAACAACGTCCAGATCGTCCGGATGCTCGAGGAGGCGAGAATCGCCGCCTTCGGGCCACCCCGAGGTGCGGGATTGCCGGGGATCGAACCACACGTTTCCCTCTTCAATGATGTTCCGGAAGGCACCATGGCGTTGGTGGTGGACCACAAGATCCGGTACGTCAGGACCTTGGAATACCGGAATATTCCTGCAGTGGTCCAGGTATGGATTGGCGCGGTGAAGGGAGCCAGCTTCGACATCCACTATGTGGTGCAGGATCCGGTCAGCAGGGAAGAGTGCGTCAGAGCCAGCAGTCATTTGGCGTTTGTGGATGAAGCAACAGGCCGGGTGCTGCGTCTGACCCCGGAGCAAAAGGAGCGCCTCCGGCCCTTTGTTATCTAGMRWGDMDAYGHINNVQIVRMLEEARIAAFGPPRGAGLPGIEPHVSLFNDVPEGTMALVVDHKIRYVRTLEYRNIPAVVQVWIGAVKGASFDIHYVVQDPVSREECVRASSHLAFVDEATGRVLRLTPEQKERLRPFVIPGPT0001850_6495DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-29_00999240hypothetical proteinATGGCCAAGATGAAAAAGAAGACCTGGAAAGAAATGTCGCCCGCCGCACGGACGGGGACAATTGTTGTGGGAATTGCGCAGGTGGCGCTGATGCTTGCCGCCCAGCGGGACATCTCGCGGCGCCCGGCGGAACTGATTAACGGGCCGAAGGCAGCATGGCGGATGGGGGCCCTGATCAACTTCGTCGGACCCATGGGCTACTTCGTGTTCGGCCGCAAGCGGCCTGGGGCGGCTAAATAGMAKMKKKTWKEMSPAARTGTIVVGIAQVALMLAAQRDISRRPAELINGPKAAWRMGALINFVGPMGYFVFGRKRPGAAKNANANANANA
D1-29_010002232hypothetical proteinATGATCCCTGCCCCAAAAACTGCCATCACCCGTGCCCTCGGTATCTCGCAGGAGATAGAGGACGCGGCTTGGTTTGTGCTCGGGCCGGGCCTGCAAGGCAAGCCGTCCGCCTTGGACGGGCGTACTCTCACGTGGACAGCTGAGGCCGCGGCTGAGCTGCTGGAGCGTCTGGAACGCGGTGTTCCGGACGCCAAGGCACCCATGATGACCAACCTGCGCGAGAACCTTCAGGACGCATCCCGCGGCGCCAAGCAGCTGGCGGTGGAGCTGCTCTTCCTGCAGTCGTTGCCACTGGCGCATGAGGTCAAGTCCCTTAAGGTCAAGCGGGCCCGCGTGGCCGAGGCAGCCTCCTGGCTGGAACCTCCGCTGGAGCTGCCCGAAGAGCTCTACAAGGGCATGACAGACCATGGCGTGATCAGGGACCGCACCGCAGAATTCAACTGGACCATTTGGGACCATCTGAAGTGGCTGTGCCGGTTTGTCCAGCACGTGGACCAGCAGGTCCCGGAGGCCATCACCGCAGCGCTCAGGGATCCGCTGAAGTTCCATGCGTTGGCCTCGTCAACGCCGGGTGACCAGCCGGCCATCCGGCGCAGCATCGAGTACCTGGCGTGGCCCAGCTACTTTGAGCCCGTGGTGGCCGACGTGGAGCGCCAGGAGATCCGCGACGCCTTTGCCTCGCTGGTGGGCGGGGCCAAGGGTGACAGCGACGAGGACATCACCGCAGACATACACCGGATCCGGCTCCACCTTGATGAACAGGCCGGGCAGCGCATCGACTGGTACGCGCGCCAGCTGGTGAGCCAGTGGCGCAAGGTGGGCGACCCCGGCAGGCGGGCATGGCTGCTGCGCACGCACAGCGACAATACCGAACTGCTTAGCGCCTGGCAGGGCGAAGAAAAGGTGACGCTCGACGTCGAACACCTCCGGCTGCTCGATCCCGGCGTGACCGCCGGGCTGGTGCAGCACGCCGTCGATGAGGACTACAAGCATCTGGGCTATGTTGAGCGCGAGGACACCAAGACCGCCGTCTTTGCCTTCCTCACGGTGATGAAGCCCGGCGATCTGGTGCTGTACCAGCACTCCGGCTCAGTCCGGCTTGGTGTGGTCCTGGGTGAGCCCGAACATAACGAGGACAACCGCCGGATGCGCCGCAAGGTTCGCTGGTTCGACGAAGGCCATACCACTACCTCCCTGCCGCGGCACGTCCAGCGCCAGCTTGCCACTCCAGGGATCATCGTGGACGTCACCAAGGTGGCGCAGGCGCTCCAGGCGCTCCTCCCGGCCGAGGCCGAACCGGAAGACGACGACGCCGGCGACGCGTCCGCCGTCGTCGAGCCTGCCCAGGAAGGCTTCCGGCCGCTTACTGCCGAATTCGCGGAATCGCTGCACATGGACCTGGAGCCGTTGCAGGAGATCGCGGAACTGCTGGAAGAAAACCGACAGCTGGTTCTCTACGGTCCGCCTGGAACCGGCAAAACCTACCTGGCCAAACACCTCGCCGCCGAACTGGCCGATGACAGCACGGACGAACGCGTCAAACTGGTGCAGTTCCACCCGTCGTATGCCTACGAGGACTTCTTTGAGGGCTACCGGCCGGACAAAACAGACGAAGGCCAGGTGTCCTTCAAACTTGTGGCCGGGCCGCTGCGACGGTTGGCCGAGGAAGCTGCGAAGCCGGGCAACGAAAAGAAGCCCTACTTCCTGATCATCGATGAGATGAACCGGGCCAACCTGGCCAAGGTGTTCGGCGAGCTCTACTTCCTGCTCGAATACCGCGACGACAGGATCTACCTGCAGTACAGCCCGAACGAGCCGTTTACGCTGCCGGACAACCTGTACATCATCGGCACCATGAACACGGCTGACCGCTCCATCGCGATGATGGATGCGGCCATCCGCCGCCGGTTTGCCTTCATTGAGCTGCATCCGCAGACGGAGCCCGTGAAGGGTTCGCTGCTGCGCTTCCTGCAGGCCAGGCAGCTGGACACCACTCCGGCGCTGCTCCTGGATGCGCTGAACACGGCCATCGATGAGTGGGACCGGGACCTGATGATCGGTCCGTCCTACTTCATGAAGCCTGCAGCCCAGACGCCCGCAGGCCTTCGCCGCATCTGGAAGTACGAGCTGATGCCCCTGCTGGAGGAGCACTACCACGGCCAGTTGACCCGGGCGCAGCTTGAGGAGCGCTTCGGACTGGACCAGCTGCTGGGACGCCTTGCTGCCGGGTAGMIPAPKTAITRALGISQEIEDAAWFVLGPGLQGKPSALDGRTLTWTAEAAAELLERLERGVPDAKAPMMTNLRENLQDASRGAKQLAVELLFLQSLPLAHEVKSLKVKRARVAEAASWLEPPLELPEELYKGMTDHGVIRDRTAEFNWTIWDHLKWLCRFVQHVDQQVPEAITAALRDPLKFHALASSTPGDQPAIRRSIEYLAWPSYFEPVVADVERQEIRDAFASLVGGAKGDSDEDITADIHRIRLHLDEQAGQRIDWYARQLVSQWRKVGDPGRRAWLLRTHSDNTELLSAWQGEEKVTLDVEHLRLLDPGVTAGLVQHAVDEDYKHLGYVEREDTKTAVFAFLTVMKPGDLVLYQHSGSVRLGVVLGEPEHNEDNRRMRRKVRWFDEGHTTTSLPRHVQRQLATPGIIVDVTKVAQALQALLPAEAEPEDDDAGDASAVVEPAQEGFRPLTAEFAESLHMDLEPLQEIAELLEENRQLVLYGPPGTGKTYLAKHLAAELADDSTDERVKLVQFHPSYAYEDFFEGYRPDKTDEGQVSFKLVAGPLRRLAEEAAKPGNEKKPYFLIIDEMNRANLAKVFGELYFLLEYRDDRIYLQYSPNEPFTLPDNLYIIGTMNTADRSIAMMDAAIRRRFAFIELHPQTEPVKGSLLRFLQARQLDTTPALLLDALNTAIDEWDRDLMIGPSYFMKPAAQTPAGLRRIWKYELMPLLEEHYHGQLTRAQLEERFGLDQLLGRLAAGPGPT0027240_291DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027240-mcrB-K07452NANA
D1-29_010011218hypothetical proteinGTGCAGACAGTCCGGCACCTGACCTTGGATGAGCTGTCTGCAGGGATCGTGGACCGGCTGGACCCGGCCAGTGCGGCCTTCCTGAACTCCAGCGGCCTGGCCAAGGCGTCGCCGATGGGGATGGGACTGTACCGGATTGAGCCTGTGGGCAAGGTGGGCTCCGTTCGGACCAGCACGGTGCAGCTGGACGTGCGGCCCAAGGACAGGCTGGGGCTCAGCCGGCTGCTGTTCCTTCTCAGCTACGCCGGCAATCAGGGATTCCGTTCCGATTCCGTGGCCGCCGTCGAAGAGCGTGAGCTGTGGAGCGCGCTGGCCGAATCCCTGGCCCAGCTCGCCGAACGTGCGCTGGGCCGTGGCGTCCTGCAGGGCTATCTGACAGTGGATGAGTCCCTCCGGACGGTCAAGGGCAGGATCCGCATCTCCGACCAGATCTCCCGCCGCCCCGGAATGCTGGTTCCGCTGGAAGTGTCCTACGACGAGTTCACTGAGGACATCGCCGAAAACCGCATCCTGCGTGCCGCGCTGGACAGGATGGGCCAGGTCCCGCGCGTCCGCCCGGAAGTCCTGAGCCGCCTCCGCCAGCTGAAGGGAAAGCTCGACGCCGTCACCCGGCTGGCGTCGGGCGCGCCGCTGCCGCCGTGGAAACCCAGCAGGATGAACGTCCGCTACCAGCCGGTCCTGCGCCTGGCCGAGCTGATCCTGCGCAATGCCTCTGCCGAGGCCGGTGACGGCAAGCAGCAGACCGCATCATTCGTGGTGGACATGGCGCAGGTCTTTGAGGACTTTGTGGGGACCGCCCTCCGGGAAGCAATGGCCGCATACCCGGGGGAGCTGCGGCTGCGGTACAACGCCCTCCTGAGCGAGGCGGTCAGGGACTCGGACCGGCTGTCCGTGCAGCCTGATGCGGTGCATCTGCTGGGCGGCCGGCCGGTTGTGGTCTACAACTCCAAGTACAAGGCCGCCTCGGACCTAGGGGCATCCCTCACAGTTGACCACTACCAAATGCTGGCTCACTGCACCGCGCTCAGGGTACCCACCGCCTGGCTGGTTTATGCCGGACCGGGTGAGGTGAAGCTCCGGCGGATCCTCAACACTGACATCGACATTGTGGAGTTTCCCCTGGATCTGTCCCGGCCGCCGTCGGACATCCTTGCCGCCATTAAGGACCTCGCAGAGCAGTCCTGGGGCGAAGTGGTGCGCCAGGCCAGGGTCGGCTAGMQTVRHLTLDELSAGIVDRLDPASAAFLNSSGLAKASPMGMGLYRIEPVGKVGSVRTSTVQLDVRPKDRLGLSRLLFLLSYAGNQGFRSDSVAAVEERELWSALAESLAQLAERALGRGVLQGYLTVDESLRTVKGRIRISDQISRRPGMLVPLEVSYDEFTEDIAENRILRAALDRMGQVPRVRPEVLSRLRQLKGKLDAVTRLASGAPLPPWKPSRMNVRYQPVLRLAELILRNASAEAGDGKQQTASFVVDMAQVFEDFVGTALREAMAAYPGELRLRYNALLSEAVRDSDRLSVQPDAVHLLGGRPVVVYNSKYKAASDLGASLTVDHYQMLAHCTALRVPTAWLVYAGPGEVKLRRILNTDIDIVEFPLDLSRPPSDILAAIKDLAEQSWGEVVRQARVGPGPT0027245_567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027245-mcrC-K19147NANA
D1-29_010021656sasA_5Adaptive-response sensory-kinase SasAATGACTGAGCCGGTCAAGTGGGCGTCAGGCCGGGTGCGGTTCTTCCGCCAGCCGTTCCACGAGTACTCCCTGCGGGAGCGGGTGGCCTTGAGCCAGATGCCGCTTTTCGTCACAACGGTGCTGACGGCCATCCTGGTCTGGGCCTTTTTCCGGGACACCCTGGGCAACCCCCTTTTTGCTGCGTTCCTCGTGTCCCAGCTGGCCATCATGGTGCTTTGCTACGTAGTGCCCTGGGAGCGGCTGCCTTACACCAGCTTCCTGCTGCTTCCGCTGCTGGATTTCGTCTCGATTGGGCTGGGGCGTGAAGGTGGGCAAGAAAGCCTGATTGGCATCAGCCTGCTGGCTGTATTCCCCGTGATCTGGCTGTGCGCCTCCGGCTACTATCCGCGGACAGCCCTCTGGCTGTCCTTCCTTGCACCCCTGGCCATTATTTGGGTGCCCCTCTTTGTTAATGACAATGTCACCGGCCCCAATCTGGCACGATCCTTGCTCCTGCCCGTCATGACGCTTGGCATTGGCGTCTCCATCAGTGTCCTGACCCTGAGCATGACCCGCCAGCAACAGGACCTGGAGGAAAAGGACGCACAGCTCCAAGACAGCCTGCGGACCAGCAAGCGGCACGAGTCCCTGTTGAATACCATCCTGGACACCGTCCATCTCGGCGTCCTTGCCGTGGATGCGGACGGCAACGACATCCTCATGAACCGCAAGCAGCGCGCCAACCACAAACTGGCCACACCCAAGGACATTGCCGATCCCAACGAATCGCAGCTGTTGGTCTTTGAGCCCGACCGCACCACCCCGGTCCCGGTGGCGGAACGCCCCGTCCGGCGCGCCATCGCCGGCGAGACCTTCACGGACTACCTTGTCTGGCTCGGTTCAGGCAAGGAACAGCGCGCCATCACCACCACTGCCAGGGCGATGAAAGACCAGGATGGCCAGTTTGCCGGTTCGGTGATTGTGTTCAGTGACGTCACGGACCTCGTGAACGCCCTCGCGGCCAAGGACGATTTTGTCTCCAACGTCTCGCACGAGTTCAGGACACCCCTGACCTCAATCCTGGGCTATGTCGAAATCCTGCAGGACGACGATCCGGAAGAGCACCAAAAGAATCCGCTACAGATCATCCGGCGCAACTCGGAGCGGCTGCTCACTTTGGTGTCCGATCTTTTGGCCGTCCGGCATGGCCAGCTGATTGTGACGCCCCAGGCGGTGGACGTCGCGGAACTGGTCCGTGCCAGTGTGTCCGCCGCCCTGCCCAAAGCAGCTGCCTCGCGGGTGGCCCTTCAGGCCGCAACCCCGGAGCGGCTGGATGCGCACGTCGACGCCGCCCGCATCTCCCAGGTCCTCGATAACCTGGTCTCCAATGCCATCAAGTACTCGCCGGATGGGGGCAGCGTGCTGGTCGCGCTGGAACAGCACGAGAGCCTGCTGGCGTGCCGGGTCACCGATACGGGCATGGGTATGAGTTCCGAGGACCAGGCGAACGTCTTTACCAAATTCTTCCGCACCAGCAACGTGCGCCGGACAACCATCCCCGGGGTAGGCCTTGGCCTGCCGATCAGCAAGGCGATTGTGGAAGCCCACGGCGGCACCATCGACGTCGAGAGCAACCTGGGCGAGGGCACCACCTTTACGTTCCGGGTGCCCGTCTAGMTEPVKWASGRVRFFRQPFHEYSLRERVALSQMPLFVTTVLTAILVWAFFRDTLGNPLFAAFLVSQLAIMVLCYVVPWERLPYTSFLLLPLLDFVSIGLGREGGQESLIGISLLAVFPVIWLCASGYYPRTALWLSFLAPLAIIWVPLFVNDNVTGPNLARSLLLPVMTLGIGVSISVLTLSMTRQQQDLEEKDAQLQDSLRTSKRHESLLNTILDTVHLGVLAVDADGNDILMNRKQRANHKLATPKDIADPNESQLLVFEPDRTTPVPVAERPVRRAIAGETFTDYLVWLGSGKEQRAITTTARAMKDQDGQFAGSVIVFSDVTDLVNALAAKDDFVSNVSHEFRTPLTSILGYVEILQDDDPEEHQKNPLQIIRRNSERLLTLVSDLLAVRHGQLIVTPQAVDVAELVRASVSAALPKAAASRVALQAATPERLDAHVDAARISQVLDNLVSNAIKYSPDGGSVLVALEQHESLLACRVTDTGMGMSSEDQANVFTKFFRTSNVRRTTIPGVGLGLPISKAIVEAHGGTIDVESNLGEGTTFTFRVPVPGPT0002705_998DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636NANA
D1-29_01003774phoP_1COG0745Alkaline phosphatase synthesis transcriptional regulatory protein PhoPATGAGTGATGCACGTGTGGGTCTAGTGATTGAAGATGACCAGGACATCCGGGAATTAGTGCGCACTGTGCTGAGCCAGGCAGGGTTTGAGGTCACGGTTGCCTCCAGCGGCGCCGAGGGTGTCCTCGCGGCCAAAACGCTGAAGCCGGATGTGATCACCCTTGACCTGGGATTGCCGGACATTGACGGTTTTGAGGTTTCGCGGCAGATCCGGGAGTTTTCGGACGCCTACATCGTGATGCTGACCGCCCGGACCGAGGAACTCGACACCCTGATCGGGCTGGAATCCGGCGCGGACGACTACCTCACCAAGCCCTTCCGTCCGCGGGAGCTGCGCGCCCGTGTTGCAGCCATGATGCGGCGTCCGCGTGCTGCCCCGGAGCCCGCAGAAACCACTGCAGAGGCAGCCGGAGCTACGAATGGCGCCCCCGCAGCCAATGGCCGAGGGACGTACAACCACAATGGCCTCAACCTCAATTACGCATCCCGCTCTGTTGCCGTGGACGGTCAGGAACTGAGTTTGACCCGCACCGAATTCGAACTCCTGTACGCCCTCCTGGAAGCCGGCCGGACGGTCCGGACCAAGTCCGATCTGGTACGGCGCCTGCGGGATGAGGATTACGACGTCGGGGGTTACATCAGCGAAGCCGACGAACGGTCCGTGGAAGTCCACATGGGAAATTTGCGTAAGAAACTGGGAGATTCAGCCCAGAGCCCACGGTGGCTCCAGACAGTTCGAGGCGTTGGCTACCGGCTGGCTCCTGAGGAGCGCTGAMSDARVGLVIEDDQDIRELVRTVLSQAGFEVTVASSGAEGVLAAKTLKPDVITLDLGLPDIDGFEVSRQIREFSDAYIVMLTARTEELDTLIGLESGADDYLTKPFRPRELRARVAAMMRRPRAAPEPAETTAEAAGATNGAPAANGRGTYNHNGLNLNYASRSVAVDGQELSLTRTEFELLYALLEAGRTVRTKSDLVRRLRDEDYDVGGYISEADERSVEVHMGNLRKKLGDSAQSPRWLQTVRGVGYRLAPEERPGPT0012985_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-29_01004411hypothetical proteinATGACGCAGTCTGAGGAGCCTGACCGGCCACTGGTTGACCAGTCCGTTTTGGACAGGCTGCGGGCGGAACTGGACGAGGACGAGGGTTACTGCACGGTGTTCGTAGCCAACTTCATGGACTACCTCCCGCACAGGATCGCCAAGCTGCGGCTCGCGCTGACAACAGGGGACCTTGACGGGGCAATGGATGCGATCCTCAGCCTCAAAACGTCCAGCCAAATGGTGGGGGCGGAGCGGCTGGCCGGCCTGGCCATGGATCTTGAGGCGGAAATCCGGAGCGAGGCACGCCAGGCCGACGTGGCCGTTGCCCTACCCCGGCTGGCTGCCGGCTTCCTTAAACCGATCGACCAATGCGCAAAGCAAACCCTGCATCGCCTGCAGGCTCAGCGCTCCTCAGGAGCCAGCCGGTAGMTQSEEPDRPLVDQSVLDRLRAELDEDEGYCTVFVANFMDYLPHRIAKLRLALTTGDLDGAMDAILSLKTSSQMVGAERLAGLAMDLEAEIRSEARQADVAVALPRLAAGFLKPIDQCAKQTLHRLQAQRSSGASRPGPT0025855_68DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025855-hptB-K20976NANA
D1-29_01005447vsrCOG3727Very short patch repair proteinATGGCAGACAGGCTGACTCCCGAGCAGCGCAGCTGGAACATGTCACGGATCCGGGGCAAGAACACCAAGCCTGAATTGCTGGTGCGCCGGCTCCTCCATGCGAAGGGATACCGGTACCGCCTGCATGGCCGGGCCGGCAATGACCGCCTGCCCGGCAACCCCGATCTTGTGTTTGCGGGACGCCGGAAGGTCATTTTCGTCAACGGCTGCTTCTGGCATTTCCATGACTGCCGGGTCGGCCTGCACGCTCCCAAGGCAAACGCCGACTTCTGGGAGACCAAACGCACCAGGACCAAAACCCGCGACGCCGATCAGCGCCGCCGGCTCCGCGACTCAGGGTGGGAGGTCCTCACCCTGTGGGAATGCGAGCTGAAGGACGGCTCGGCGCTGGAGACACAACTGGTGGCCTTCCTCGGGGCGCGGACGCCGACTACCGGCAGAAGTTGAMADRLTPEQRSWNMSRIRGKNTKPELLVRRLLHAKGYRYRLHGRAGNDRLPGNPDLVFAGRRKVIFVNGCFWHFHDCRVGLHAPKANADFWETKRTRTKTRDADQRRRLRDSGWEVLTLWECELKDGSALETQLVAFLGARTPTTGRSPGPT0020015_1155DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0020015-dcm-K00558NANA
D1-29_01006432hypothetical proteinATGTTCAATCACCCAGATGGAAACCCTGTCCTGGAACTCGACGACGAGCAGTGCTGGAAGCTCCTGGCGAACACCGAGCACGGACGGCTGGTAGTCTCCGTCGCCGGCGAACCCGACATTTTTCCCGTGAACTACAAGGCCAATGACCGGAAGATCTATCTCCGGACGGCGCCGGGAAACAAGCTGGCCCAGCTGACAATCAATGAAACAGTACTTTTTGAAACAGACGGCGTGCTGTCCGACGAAGCCTGGTCCGTGGTGCTCAGGGGAACCGCCCGCGTCCTCAACACCTCCGCTGATATTGCGGCCGCCGAGGAACTGGGGCTGAAGTCATGGGTGCCCACCCTCAAGGATTTCTACGTGGCAATTGAGCCCTCCTCTGTCTCCGGCCGCCACTTCCAGTTCGGTGAACAGCCGGAGAGGTACTTCTAGMFNHPDGNPVLELDDEQCWKLLANTEHGRLVVSVAGEPDIFPVNYKANDRKIYLRTAPGNKLAQLTINETVLFETDGVLSDEAWSVVLRGTARVLNTSADIAAAEELGLKSWVPTLKDFYVAIEPSSVSGRHFQFGEQPERYFPGPT0028780_2232DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005NANA
D1-29_010071812hypothetical proteinATGAGCAATGACGTTGAGAATACCCGGTTACTGGAGCCGTCGGCGGTAAGTACCCCCGCCGTCGTCAGCTCTTCCGGGACTGCTTTAGAAACGGCAGCGCCGGAAACTGCTGTGCATGAAACCGCAGTACCTGAAACTGCACCGCCGGAAACCGCGACGGCGGGGATCACGACGGCGGGCAGCTCCGCGGCGCTGAGTGCCACCAAGGAGAGCCTGGAGGACTATGCGCTGAGGTTCGCGCCGCGGTCGTACCGGAAATGGAGCGCCGGAGTGGTGGCCACCAGCGCGCTGGGTGGCATTGCGTACCTGGCGGACTTTTCCATTGGTGCGAACATCGGCATCGCGTACGGGACGGTGAATGCCGTTTTCGGAATTCTGGTGGCCGCGGTCATCATCTTTGCCACTGGCTTCCCGCTGGCTTATTACGCTGCGCGGTACAACATCGACCTGGACCTGATTACCCGGGGCTCCGGCTTTGGCTACTACGGATCGGTGGTTACGAACGTCATCTTCGCAACGTTCACTTTCATCTTTTTTGCACTGGAGGGGTCGATCATGGCCCAGGGGCTGGAGGTGGGCCTGGGCATCCCGCAATGGCTCGGGTACGCCGCGTCCACGGTGATCATCATTCCGTTGGTGATTTACGGTATGAACACGCTGGCCAAACTGCAGGTATGGACCACGCCGCTGTGGCTGCTCCTGATGGTGGTGCCCGTGGGATACCTGCTCGTTTCACACCCGGAAAGCATTGACGGCTTTTTCGCCTATACGGGTGAATCAGGTTCCGGCGGGCCAAGCCTGGCCTCGGTGATGCTCGCGGCGGGCGTTTGCCTGTCCCTGATGGCGCAGATTGCAGAGCAGATCGACTACCTGCGGTTTATGCCGCCGAAGACCGCTGAGAACAGGGGCGCCTGGTGGAGGGCCGTGATCCTGGCCGGGCCCGGTTGGGTGATTTTTGGGGCCGTCAAGCAGATTGTTGGCATGTTTATCGCCATCTACCTGATTGCCACGTTGGATCCTGCCGCCTCCGTCCACGCCAACGAGCCCGTTCACCAGTTCCTGGGCGTGTACCAGGAAATGATGCCCGCATGGCTGGCGATGAGCCTAGCCGTGGTGCTCGTGGTCATTTCACAGATCAAGATCAACGTCACCAACGCGTACTCCGGTTCCCTGGCATGGACCAACAGCTTCACCCGCGTCACCAAGACCTACCCCGGCAGGATGGTGTTCGTGGTGGTGAACCTGGTGATTGCGCTGATCCTGATGGAAGCGAACATGTTCGACTTCCTCAACACCATCCTCGGCTTCTACGCCAACTGCGCCATGGCCTGGGTGGTCACCGTCGCGTCCGATATCGCCATCAACAAGTACCTGCTGAAGATCTCGCCCAAGGTTCCCGAGTTCCGCCGCGGGATGCTGTATGCGGTGAATCCGGTGGGTTTTGTATCCATGATGGCTTCGGCGGGGATCTCCATTGCGGTGTTCTTCGGGGCATTCGGAGCTGCCATCCAGCCGTTCTCACCGATCTTCGCGGTGGGGCTGGCGCTGGTCCTGCCGCCCGTCCTGGCGGTTTCCACCCAGGGCCGGTACTACATGCGCCGCACGGACGACGGCATTGACCTGCCAATGTTCGACGCCGACGGAAACCCCAGTGACGCCAAGCTTCTCTGCCACGTGACGGGCATGGAGTTTGAGCGTCCCGATATGATCCGATCGGCCCAGGATGCGCCCGACGGCGGGATCCAGTATGTCTCGTCCCTCGCCCTTTCGACAGATAAGACGGGCGAGTTGGTGTTGCCGGCGCAGAAGTAGMSNDVENTRLLEPSAVSTPAVVSSSGTALETAAPETAVHETAVPETAPPETATAGITTAGSSAALSATKESLEDYALRFAPRSYRKWSAGVVATSALGGIAYLADFSIGANIGIAYGTVNAVFGILVAAVIIFATGFPLAYYAARYNIDLDLITRGSGFGYYGSVVTNVIFATFTFIFFALEGSIMAQGLEVGLGIPQWLGYAASTVIIIPLVIYGMNTLAKLQVWTTPLWLLLMVVPVGYLLVSHPESIDGFFAYTGESGSGGPSLASVMLAAGVCLSLMAQIAEQIDYLRFMPPKTAENRGAWWRAVILAGPGWVIFGAVKQIVGMFIAIYLIATLDPAASVHANEPVHQFLGVYQEMMPAWLAMSLAVVLVVISQIKINVTNAYSGSLAWTNSFTRVTKTYPGRMVFVVVNLVIALILMEANMFDFLNTILGFYANCAMAWVVTVASDIAINKYLLKISPKVPEFRRGMLYAVNPVGFVSMMASAGISIAVFFGAFGAAIQPFSPIFAVGLALVLPPVLAVSTQGRYYMRRTDDGIDLPMFDADGNPSDAKLLCHVTGMEFERPDMIRSAQDAPDGGIQYVSSLALSTDKTGELVLPAQKNANANANANA
D1-29_01008660hypothetical proteinATGGCATCACTCAAAGTCTTCATGTCCGGTCGCTTGAGGTCCGGCGCAATCATCTTTTGTATTGTTGCTTCAGTTGCCCTGGCCGGATGCACGGGGGGAGCACCTGCAGATCCCGGTACGTCGGCCCCGGCAGCTACGGAGTCAACGTCGCCCAGTGCTTCACCCAGCCCGACCCCGACACCCAGCGCCGCTTACAAACCAGCCGATGCATCCGGCCCCGCCCAAAACGTTCCCGTCCCAGTCATGCCCGATTCGGCGAAGGCGGAGACGAAGGAAGGATTGGAGGCATTCACAAAATATTGGTTTGATCGACTCGACTATGCCTACCAAACGGGTGATGTTGCCGCTTTTCAGGACATGAGTTCGCCAAATTGCGACTACTGCTCGAAACTCGCTGCCTCGCTCACTGCAAATTACGAGGAAGGTCACTGGCTGGCAGGCGGGAAGATTACGATTCCCGCGGCCACAACGTCGTTTGAACCCGCTGCAGACGGAAACTACCAAGTCATTCTCCAAGTGCAGCAAAGTCCGATCAGCTATCACGCATCAAACGGCGAGGAAGTCAGGGCACCGAGCAAGGCCTCGAACACGGGTAACGTGCTATTGGCTGACTTCATAGATTCCGCCTGGCGTGTCAACGGCCTCCATCCAATGCGCTAAMASLKVFMSGRLRSGAIIFCIVASVALAGCTGGAPADPGTSAPAATESTSPSASPSPTPTPSAAYKPADASGPAQNVPVPVMPDSAKAETKEGLEAFTKYWFDRLDYAYQTGDVAAFQDMSSPNCDYCSKLAASLTANYEEGHWLAGGKITIPAATTSFEPAADGNYQVILQVQQSPISYHASNGEEVRAPSKASNTGNVLLADFIDSAWRVNGLHPMRNANANANANA
D1-29_01009930hypothetical proteinATGAAAAAACGATGGGGGATAAGGGTCTGTTGCGTCTTGGGCTTATTAGTTGCTTTTGTATTGACACCATCGGTTTCAGGATTTGCCGCTGAGGGTCCGGAAGCCAACTTCGGCGAAATAGGTGTTGACGTTGGTGGGTTGATACTGGACCCCGTAACGGGCGAAATGGTTCCTCCGGTTCCTGGCTCTGTGAACATTGACCCCAACGACTACAAATATGAGCTCCAGTGCCACCTCGGCGGGGGAGACTTTGATACTCCATGCCTAGCCGGGCAGGTTGAGTGCAACAACGGCCCGGATGGTGAGGAAGGTATTCCCGTCATTTGGTATTCGAAACCACGGGGTGTCCCGGGAGCCGTCTGGGCGATCCACTCCGGCCCAACGTGTCTCTATGACGCGAAGCCCGAGGACTTGCTGCCGCGGATTGCCGCCGAGATCCAGCGGGAGTTCCAGAGCCTGCCGATCAATGCCGGTGCCGTGGTGGCGCAGCCAAGTCCCCACACACTTCGCGGAGCCGAGACAAACTTCTATGCCGAGGCGGTCGAGCAGCAGTTCGACATCACGATGTTCGGCCAAAAGGTGCACGTCGTCGCCACCCCGGCGCAGTACACGTGGAACTACGGCGACGGTACTGTGTTCGGGCCGCAACCCTCGATGGGCGGACCACTGCCACACGAGCGCTGGGGTGAGAAGACGCGGACCAGTCACGCCTACACTGCCACAGGCGATTTCCAGGTAGTTCTGACCACGTCCTTCCAAGGTACGTATTCGGTAAACAACGGCCCGCCCCTGCCCATCCCCGGTCAAGGGCAGTTCAGTGCGCCGTCGCAGACCATCAGCGTTTGGCGGTCCATCACACGCAATTACGCCGACGACTGCAAGAAGAATCCCCTGGGGCAAGGATGCCCAGGGGTCGCACCCCGTCCGTAGMKKRWGIRVCCVLGLLVAFVLTPSVSGFAAEGPEANFGEIGVDVGGLILDPVTGEMVPPVPGSVNIDPNDYKYELQCHLGGGDFDTPCLAGQVECNNGPDGEEGIPVIWYSKPRGVPGAVWAIHSGPTCLYDAKPEDLLPRIAAEIQREFQSLPINAGAVVAQPSPHTLRGAETNFYAEAVEQQFDITMFGQKVHVVATPAQYTWNYGDGTVFGPQPSMGGPLPHERWGEKTRTSHAYTATGDFQVVLTTSFQGTYSVNNGPPLPIPGQGQFSAPSQTISVWRSITRNYADDCKKNPLGQGCPGVAPRPNANANANANA
D1-29_010101314spuCCOG0161Putrescine--pyruvate aminotransferaseATGGATCTCGACGAACTGGTCTTCCACCCCTGGATTGTCCAAGGACGGCGTGACGTTCCGACGCTGGTCGGCGGCGCCGGGAGCTACGTCGTTGACGTCAGCGGCCGGCGATACCTGGACTTCAGTTCGCAACTGGTGTTCACCAATCTGGGGCATCAGCACCCGCGCATCGTCGCTGCCATCAAGGAGCAAGCAGACCGCCTGTGCACACTGGCACCTGGCTTTGCATCCGACGTTCGGGGCGAAGCGGCACGGCTGATTGTGGATGTCGCGCCAGGGAACCTTGGGCACGTACTCTTCACCACCGGCGGAACGGAGGCCATTGAGCATGCGGTTCGAATGGCGCGCCTTTACACCGGTCGGCCGAAAGTCCTCGCCGCCTACCGCTCCTACCACGGCTCAACAACCACATCCATCCACCTGACCGGCGATCCTCGCCGCTGGGCCTCAGACACTGGTGCCGCCGGCGCCGTCCACTTCTTCGGCCCGTTCCTGTACCGCTCGGCCTTCGGGTCGAGAACCTCTGAGGAAGAGTGTGAGCGGGCGCTTGCTCATCTCGAGCAGGTGGTCCTCCTGGAAGGTCCGACGACGATCGCCGGCCTGGTCCTCGAATCGGTCGTTGGCAGTGCCGGCGTCATTGTGCCGCCGGCGGGCTACTTGCGTGGGGTCCGCGAACTGTGCGACCGCCACGGCATCGTGTACATTGCCGACGAGGTGCTGGTCGGCTTTGGCCGTACGGGAGCCTGGTTCGGAGTGGACCACGATGGTGTGGCACCTGATCTGTTGGTCTTCGCGAAAGGCGTGAACTCGGGATACGTGCCGCTGGGCGGCGTTCTGGTCAACGACGCGATTTACGAGGTGTTCACCAAGCGCCCCTACCCGGCGGGCATGACGTACAGCGGCCACCCGCTCGCCTGCGCAGCAGCCGTGGGCGCCATCAACGCCATGCACGACGAGGACACCATCGCTGCAGCAGCCAGCCTCGGCACCAATGTCCTTGGGCCTGCTCTCAGGGGACTTGCCGACAAACACCAGGCAGTCGGGGATGTTCGGGGCATCGGCGGGCTGTGGACTGTGGAACTGGTCCGCAACCGGCAAACGAAGGAGCCGCTGGTGCCGATAGGAGCCACTGGTGCGGACAACGCGCCCATGGCCTCATTCGCCAAGGCGTGCCTGGAGCGAGGCTTGCTGCCGCTGATCCTGGGCAACCGGATCCACGTCGCTCCCCCGCTCAACGTCAGCCAGCCCGATGCCGCCGCGGGCCTGGCTATCCTCGATGAGGCGCTGAGTGCCGCCGACGAGTTTCTGACCTGAMDLDELVFHPWIVQGRRDVPTLVGGAGSYVVDVSGRRYLDFSSQLVFTNLGHQHPRIVAAIKEQADRLCTLAPGFASDVRGEAARLIVDVAPGNLGHVLFTTGGTEAIEHAVRMARLYTGRPKVLAAYRSYHGSTTTSIHLTGDPRRWASDTGAAGAVHFFGPFLYRSAFGSRTSEEECERALAHLEQVVLLEGPTTIAGLVLESVVGSAGVIVPPAGYLRGVRELCDRHGIVYIADEVLVGFGRTGAWFGVDHDGVAPDLLVFAKGVNSGYVPLGGVLVNDAIYEVFTKRPYPAGMTYSGHPLACAAAVGAINAMHDEDTIAAAASLGTNVLGPALRGLADKHQAVGDVRGIGGLWTVELVRNRQTKEPLVPIGATGADNAPMASFAKACLERGLLPLILGNRIHVAPPLNVSQPDAAAGLAILDEALSAADEFLTNANANANANA
D1-29_010111071nemACOG1902N-ethylmaleimide reductaseATGCTGTTTTCCCCTCTGACCCTCGGTGAGCTCGAACTGCCCAATCGCCTGGTAATGGCTCCCTTGACCCGGGTCCGCTCGGGCGGCGAGGGCGTGCCCGGTCCGCTGGTAGTGGAGCACTACCGCCAGCGCGCCTCGTTGGGACTGATCGTCAGCGAAGGCGCCTACCCGAGCCCTGCAGGCCGTTCCTATGCCGGCCAGCCGGGACTGGTTACGGAAGCGCAGGTTGCCGGCTGGAAAAAGGTCACCGACGCTGTTCACGCCGAGGGTGGGAGGATGTTCGCGCAGGTCATGCACGGCGGGCGGGTATCGCATGAGGACATCACCGGCGGACACCGGCTTGTGGCTCCCAGCGCCGTCGCGATTGAGGGTGAAGTCCACACGCCAGGCGGCAAGAAGCCCTATCCGGTGCCGCATGCACTCACCACCGATGAGCTTCCTGTTGTGATGCAGGAGATCGTAACGGCTTCGCTCAATGCGATCGCTGCCGGGTTCGACGGAGTGGAGCTGCACTCGGCCAACGGGTACCTGTTGCACGAATTTCTGTCCTCGAATGCCAATATCCGCACGGACAGTTATGGCGGTTCGCCGGAAAACCGCGCCCGCTTCGTGATTGAGACGGTCAACGCCGTAGTGGCGGCAATCGGCGCCAACCGGGTGGGCATCCGCATCTCACCGGCCCACAACATCCAGGGGATCGCCGAAACCGACCCCGCAGACGTCCGTGCCACCTATGAAGTGCTGGTGGACAGCATCGCGCCTTTGAACCTCGCGTACCTGAGCATCCTGCACCATGACCCGGCAGGGGAGCTCATGCAGGATCTTAGGGCCCGCTTCGACGGAACGTTCCTCGTCAACAGCGGCTTTGGAGTGATCACCACGCGTGAAGAGGCAGTGGCACTGATTGCCGACGGCCATGCTGATGCAGTGGTGGTTGGGCGCCCTGCTATCGCCAACCCTGACCTGGCCCGCCGCTGGAAGGAAAGCCTTCCGCTGAACGAGGCCGACCCGGCTACCTTCTACGGTGACGGAGCCAAGGGCTACACGGACTATCCCGCGTACTCGGCCTAAMLFSPLTLGELELPNRLVMAPLTRVRSGGEGVPGPLVVEHYRQRASLGLIVSEGAYPSPAGRSYAGQPGLVTEAQVAGWKKVTDAVHAEGGRMFAQVMHGGRVSHEDITGGHRLVAPSAVAIEGEVHTPGGKKPYPVPHALTTDELPVVMQEIVTASLNAIAAGFDGVELHSANGYLLHEFLSSNANIRTDSYGGSPENRARFVIETVNAVVAAIGANRVGIRISPAHNIQGIAETDPADVRATYEVLVDSIAPLNLAYLSILHHDPAGELMQDLRARFDGTFLVNSGFGVITTREEAVALIADGHADAVVVGRPAIANPDLARRWKESLPLNEADPATFYGDGAKGYTDYPAYSAPGPT0005930_2793DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680NANA
D1-29_01012297hypothetical proteinATGCGGGACTTGCTCATCGTCTTTCAAGAGGGGTTTGACGAGGCCAACATCACGGTAACGGTCAACGGCAAGCAGGCCCGGCGCGATCTGGGAGTATCCACCAATCCCCTTCTGGGAATGGCCACAGAAGTTTCGGTGGAGCTGCCGGCGAAAGGTGCGCATGTGGGGGTGGAAGTCACTAACCGGGGGCTGAAGGCCATCACCAAAGTCAGCGGCAAACCCAAGAGCCTGCTGGTCTCCATTGAGGACGGCAAGCTGGTGATGCGGGAAGGGACGGGACGCGAGGCGTTCCTCTAGMRDLLIVFQEGFDEANITVTVNGKQARRDLGVSTNPLLGMATEVSVELPAKGAHVGVEVTNRGLKAITKVSGKPKSLLVSIEDGKLVMREGTGREAFLNANANANANA
D1-29_010132568yhgFCOG2183Protein YhgFGTGCCGCTGGAGACCTCAGACGCGGTAGGGCAAAATGTTCTGGTGACCCAACTCCCGCAAGGCCCCTCCACGACGTCCTCAACGTCAGCGCCGGACAGCGCCATCTTCCACCAAATCGCCGCGGAGCTCGGCGTCAAAACCTGGCAGGTGAAGGCCGCTGTGGAACTGCTCGACGGCGGGTCCACCGTGCCGTTCATCGCCCGGTACCGCAAGGAAGCCACCGGAACGCTGGACGATACGCAGCTCCGCGAGCTCGACGAACGCCTGCGCTACCTCCGCGAACTTGAGGACCGCCGTCGTACTGTCCTTGAAGTCATTGCCGCCCAAGGGCAGCTGACTCCAGAGCTGCAGGCTGCCATCGTTGCCGCGGACACCAAATCACGGCTTGAGGACATCTACCTTCCCTTCAAATCCAAGCGGCGCACCAAGGCGCAGATCGCCCGCGAGGCAGGGCTGGAACCGTTGGCCGAGGTGCTGCTGAAACGGCCGGACCTTGATCCTGAGCGGGAGGCTGCGAAGTATCTGAATCCAGAGCATGCCATCGGGGACGCCGCTGCCGCGCTGGCCGGGGCCCGCTCCATCCTGGTGGAACGTGTGGCACAGGACCCCGACCTCGCCGCAACCCTGCGGGAGCGCCTCTGGACACAGGGCCGGATGGTGTCGCGCGTGAAGAAGGGCAAGGAGGCGGACGGCCAGAAGTTCTCGGACTACTTCGATTTTGCACAGGCGCCGGCCGGCATGCCGTCACACCGCGTGCTGGCGTTGCTGCGGGGCGAGAAGGACGGCGTCCTGGAGCTCGACCTCGCCGAAGCGGACCCGAACGACGACGACGCCCTGGCCGCCGCGCGCTCCCGCTACGAATCGGCTGTGGCCAAGTGCCTTGGGGTCGCCGACCGCGGCCGTCCCGCCGATGCCTGGCTGATGCAGACCGCCCAGTTGGCGTGGCGCTCGCGGGTGCTGGCGCGGCTGACGGCGGACCTGCGCGGGCGGATGTTTACCGCCGCGGAGGACGAGGCCGTTCGAGTCTTCGCAGCCAATCTGCGCGATGTCCTGCTAGCAGCACCCGCGGGAAACCGCGCAACCCTTGGCCTGGACCCGGGGCTACGTACCGGGGTGAAGGTGGCAGTGGTGGACGGAACCGGGAAGGTGGTGGCCACCGATACCGTGTACCCACACGCTCCGGCGCGGAAGTGGGACGAGGCACTGGCCACCCTGGTACGGTTGGCGCGGCAGCACGCCGTCGAACTTGTGGCAATCGGGAACGGCACGGCGTCCCGCGAGACCGACAAGCTGGCTGCGGAACTGATCAAGCTGCTGCCGGACGCGGACAGGAAGCCACAAAAGCTTGTGGTGTCAGAGGCTGGCGCATCTGTCTACTCGGCATCCGCCCTGGCCTCCGCCGAATTGCCCGGCATGGATGTGTCCCTGCGCGGAGCTGTGTCGATTGCCCGCCGGCTCCAGGACCCGCTGGCCGAGCTGGTAAAAATCGATCCCAAATCCATCGGAGTGGGGCAGTATCAGCATGATGTGACGGCAGCGAAGCTGGACCGCAGCCTGGACGCTGTGGTGGAGGACTGCGTCAACGCCGTAGGGGTGGATGTGAACACAGCGTCACCTGCGCTGCTGAGCCGCGTTGCCGGCGTCGGGCCCCTGCTGAGTGAGAACATCGTGGCGTACCGGAACGAACACGGGCCGTTCGCCAAACGAAGCGAACTGAAGAAGGTTCCGCGGCTGGGAGCCAAAGCGTTTGAACAATGCGCCGGCTTTCTTCGGATCACCGGGGGAGCGGAACCGCTGGACGCGTCAAGCGTGCATCCGGAGGCTTACTCGGTGGCCCGGAAAATCCTGGTTGCTGCGGGTTCGGCGCCCGCCTCGTCACTTGACCCCCGCAACTTTGTGGACGGAATGTTCGGCCTGCCCACAGTCCAGGACATCCTGGCGGAGCTGGACAAGCCGGGCCGCGACCCCCGGCCGGCCTTCGCCGCGGCCACGTTCTCGGAAGGGATCGAGAAGATCTCCGATTTGAAGCCCGGCATGGTGCTGGAAGGAACGGTCACCAACGTCGCCGCTTTTGGTGCGTTTGTGGACGTTGGTGTCCACCAGGACGGCCTCGTCCACGTCTCTGCCCTTGCCAATCGGTTTGTCTCGGATCCCCGCGAGGTGGTCAAGTCCGGTCAGGTGGTGCGCGTGAAAGTGCTGGAGGCGGATCCGGACCGGAAGCGGATCTCCCTGACATTAAGGCTCGACGACGACCCGGCAGCTTCTGGCGGCCGGGGTTCCGGCGGGCGGGCCTCGGGTGGACATGTCTCGGGAGACCGGGAGCCGGGGGCGCGGGACGCTGGTGCGAGGCCTTCTGGCGGGCGGGCGGCCTCGCTCGACCGGGAGTCCGGGGGCCGGGATGCCGGGGCGAGGCCTTTGGGCGGCGACGGGAAGACTCAGCGTAACCAGAATGCGCAAGCAGGCCGCGGCTCGGGCAAGCCCTCCGGCAACAGGGCCGCTGCGCCCCAAGCGGCGCCCGTGAACACTGCGATGGCGGAGGCGCTGCGCAAGGCCGGCCTCGGCAAGTAGMPLETSDAVGQNVLVTQLPQGPSTTSSTSAPDSAIFHQIAAELGVKTWQVKAAVELLDGGSTVPFIARYRKEATGTLDDTQLRELDERLRYLRELEDRRRTVLEVIAAQGQLTPELQAAIVAADTKSRLEDIYLPFKSKRRTKAQIAREAGLEPLAEVLLKRPDLDPEREAAKYLNPEHAIGDAAAALAGARSILVERVAQDPDLAATLRERLWTQGRMVSRVKKGKEADGQKFSDYFDFAQAPAGMPSHRVLALLRGEKDGVLELDLAEADPNDDDALAAARSRYESAVAKCLGVADRGRPADAWLMQTAQLAWRSRVLARLTADLRGRMFTAAEDEAVRVFAANLRDVLLAAPAGNRATLGLDPGLRTGVKVAVVDGTGKVVATDTVYPHAPARKWDEALATLVRLARQHAVELVAIGNGTASRETDKLAAELIKLLPDADRKPQKLVVSEAGASVYSASALASAELPGMDVSLRGAVSIARRLQDPLAELVKIDPKSIGVGQYQHDVTAAKLDRSLDAVVEDCVNAVGVDVNTASPALLSRVAGVGPLLSENIVAYRNEHGPFAKRSELKKVPRLGAKAFEQCAGFLRITGGAEPLDASSVHPEAYSVARKILVAAGSAPASSLDPRNFVDGMFGLPTVQDILAELDKPGRDPRPAFAAATFSEGIEKISDLKPGMVLEGTVTNVAAFGAFVDVGVHQDGLVHVSALANRFVSDPREVVKSGQVVRVKVLEADPDRKRISLTLRLDDDPAASGGRGSGGRASGGHVSGDREPGARDAGARPSGGRAASLDRESGGRDAGARPLGGDGKTQRNQNAQAGRGSGKPSGNRAAAPQAAPVNTAMAEALRKAGLGKNANANANANA
D1-29_01014798hypothetical proteinATGATGATGTCGCTGCTGTTCGGCGTCATAGCATCCAGTGCTCTGCTCGTGGGTGCCTTCATTGGTGTTCGATTTGAACTGCCCAAACGGCTCCTCGCCATACTGCTCTCCTTCGCAGCGGGCTCCCTGATCACAGCCCTGGCCTTCGAACTCTTCGAGGATGCCTATGAACAAGGCGGTATCGTCCGGGCCGCGATCGGTCTGATGGTCGGTGCCATCGTATTCACTGTTCTCAGCTCCCTCCTGGACCGTTGGGCCCAGCCGGGGCCGGAGGCCGCTGCCACACCGGCGGACGAATTCCAAGGCAGCGCCAAGCTGGACACGGATGCGGCAGCCACTGAGCTTCCTGCCACCGGAGCATCCACGAGAGGGGCAGCGGGGATGGCGCTTCTGGCCGCTGTCACCCTGGATGGAGTGCCCGAAAACATCGCCCTCGGTGTTGCCCTGGGTGAGGGAACAGGTGGCCTTGCCCTGCTCGCCGCAATTTTCGTATCCAACCTGCCGGAAGCGCTGGTGGGAGCCGCGTCCATGCGCAGCCAGGGCCGCTCGACTGCAAGCATCATTGGGCTATGGGTTGCCTGCGCCGTCCTGCTGGTGGCAGCGGTAGTGATCGGGGCCGGCCCACTTTCCGGCACAGATCCGCAGGCGATCTCACTCCCCCTGGCTTTCGCGGCCGGCGCCGTTATTGCCTCCCTCGCTGACACGCTCATGCCGGAAGCCTACGAACACGGCGGTCCCGCTGTAGCGCTCAGTACCGCCGCAGGCTTCGTCCTGGCGTTTGTGTTGTCCCTCGCCTGAMMMSLLFGVIASSALLVGAFIGVRFELPKRLLAILLSFAAGSLITALAFELFEDAYEQGGIVRAAIGLMVGAIVFTVLSSLLDRWAQPGPEAAATPADEFQGSAKLDTDAAATELPATGASTRGAAGMALLAAVTLDGVPENIALGVALGEGTGGLALLAAIFVSNLPEALVGAASMRSQGRSTASIIGLWVACAVLLVAAVVIGAGPLSGTDPQAISLPLAFAAGAVIASLADTLMPEAYEHGGPAVALSTAAGFVLAFVLSLAPGPT0004250_1691DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK-NICKEL_TRANSPORT,PGPT0004250-TC_ZIP|zupT|ZRT3|ZIP2-K07238NANA
D1-29_01015321hypothetical proteinATGACTTACTTCTTGGAGTACACCATCCCGGCCCCTTCTGACGCTGCCGAGTTCGAGTTCCCGCACGACGAGATCAATGCCGGCACAACTATTCCACTCGCCGAGACTAACGCCGAGATTGTGCACACGCCGGAATTGCCCGCACGCACCGGCATAGTTGGCGCAACAGTTCCCGAAGCCAAGCTCGAGGCCGAACAACTCATCACGCACAGCCGCGCCACAGAAGGCAGCCTGTACTTCGACCCCTCAGACTCGCTCCAAGCCGGTGTAGGGACCCTCGTGGCAACTTTCGTGGAAGGCCGAGGCTGGCAGGACGCCTAGMTYFLEYTIPAPSDAAEFEFPHDEINAGTTIPLAETNAEIVHTPELPARTGIVGATVPEAKLEAEQLITHSRATEGSLYFDPSDSLQAGVGTLVATFVEGRGWQDANANANANANA
D1-29_01016780prpB_12-methylisocitrate lyaseATGACTCAAAACACCGCTGCCAAAGCCACCGAACTCCTCCGTCTGCACCAAGCGGCCGATATTCTCCAGGTCATTAACGTCTGGGATGCCATCACTGCAAAGATCGCCACGGACGTTCCCGGTGCGGCTGCGCTGGCCACCGCGAGCCACTCGATCGCTGCTTCGCAGGGATATCCGGACGGCGAAAAAATCCCGGTGGACCTGATGATCGAGGCCGCGGGGCGTATCGCCGCTTCCACTCCACTGCCTGTCAGCGCAGACCTTGAGGCTGGTTACGGAAATGCTGCTGAAACCGTTCGCAAGGCAATCGGCGTCGGGATCGTTGGCGCAAATATTGAGGACCAGATGCGCCCACTGGACGAGGCAGCGGAGCAGATGGCCGGTGTAGTGAAGGCCGCCCAGACGGAGGGAATCGACTTTGTCCTCAACGCCCGCACCGATGCATTCCTCAGGGGCAAGGAACGCGATCCGCGCGAAGTGCTGGCTGACGCAATCGAACGCGGCCGCGCCTACTTGGATGTGGGTGCAGCCACCGTGTTTGTTCCCGGTCTTTTGGACGAGCCGACGGTCAGCGCCTTGGTTGAAGGCATCGGCTGGAACAAAGTGTCAGTCATTAATGTCCCCGGATCACTCGCCCCTGCCAGGCTCCAGGAACTGGGTATCTGCCGTATCTCCTATGGCCCCTGGACTCAGCGTGTGGCGTTGACTGCCTTTGCAGATGCCGCAGCCAGCCTGCTCGCCGGAGGCGCCTTGCCGGAAGGAACGCGGATCCTGAACTAGMTQNTAAKATELLRLHQAADILQVINVWDAITAKIATDVPGAAALATASHSIAASQGYPDGEKIPVDLMIEAAGRIAASTPLPVSADLEAGYGNAAETVRKAIGVGIVGANIEDQMRPLDEAAEQMAGVVKAAQTEGIDFVLNARTDAFLRGKERDPREVLADAIERGRAYLDVGAATVFVPGLLDEPTVSALVEGIGWNKVSVINVPGSLAPARLQELGICRISYGPWTQRVALTAFADAAASLLAGGALPEGTRILNNANANANANA
D1-29_010171575hypothetical proteinATGCCCCGACAGCTCGGCCTGGAGCCCGCGTTCCAGCGAGGCCTTGATCAGCTGCTGGATGAAACCGTCCTTGCCGTCGAGTTCCAGCTGTCCGGAATCGATCTGGTTCATCAGCTCATCGAACGCGCCCGAAGCCTTCAACGCCTCCATGCTGCCGGCCGCCGCAGCCCTGCGGGCCAACTCCTCCGGGGACACCTCACGGGGTCTAGTCATAGCCACAATGATTCTCCAATCACCCAGCGACTACAGCCCTCCTACACAAACAATCTGACACCCCCCTGTGCCCTGACCATCAGCGAAGGCGCCGCATCAGCGTTCCTGGTCCAGTCCCGCCAGCTGAACACCGAACTGCCCCGCACCCTCGCGGCCCTGCAGGCCGGGACCCTGTCCTGGCAGCACGCCCGGATCCTCTGCGATGAAACCACCGGCCTGGGCCACGACGGGGCGGCAGCCCTGGAAACACACTTCCTGGACCCCGACGCCGCCAAGGCTTCCCGCGCCTGCCTGGCCGGGGACCTTACACCCTCCCGGTTCCGCGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATTGAAACCCGCCACACCAAGTGCGTCCTGGACCGCCGGGTCGAATACACGCCGGAGCGCGACGGGATGGCCTGGCTCTCCGCCTACCTCCCCGCAGATCAGGCCGCCGGCATCTGGGAACACACCACCACCACAGCCCGGGCACTCCAAGGCCCCACCGAATCCCGCACCCTCACCCAGCTCCGCGCCGACACCCTCGCCACCGCGCTTCTGGGCGGAGGAACCACCAACCCCGGCAAGACCAGTGGCGGAAGCGCCAGCAGGGGAACCAGCAGTTGGCGTAGCGACGGCGGCGGAAGCGCAAACGGCAGGATCAACGGCGAGGGAAGTGGCAGCGGAGGGACCAACGGCGAGGGAAGCGACAACTGCGGGATAAGCGGCGGGGAAAGCGGCAGCGGCGCTCTCCTCGGTGACGGAAGTACCAGCGGCGCAAATAGCCTTGGCAATTGCGGGGGAGAGCGCGCTGCCGGGCAGGTCCGGCCGCCGCGGGCCCAGGTACTGGTCACAGTGCCCGTGTTCTCGCTCCTGGGCCTGACCGACGAACCAGCCACCCTTGATGGCCACGGCCCCATCCCGGCCTCCATGGCCCGGAACCTGGTCGCCAACGGAGCCCACTCCTTCCACCGCGTCCTCACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGCCTCACCACAGCAATGCGCCGCTGGCTCAGACTCCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTCGACAACGAAGCAGACCACCTCCTCGCCTGGGCAGACGGCGGCACCACCGGCATCAGCAACTTCGGCCAACCCTGCCGCAAACACCACCACCTCAAACACAACACCACCTGGCAACCAACCCCAGCCAGCAAAAACGAACCACCAGGCTGGACCTCACCCACCGGCCGACACTACAAAAGCGAACACCAAGACTGGGAACCACCCCAGTGGCCACAGGGTATGGATTCCTCCTAGMPRQLGLEPAFQRGLDQLLDETVLAVEFQLSGIDLVHQLIERARSLQRLHAAGRRSPAGQLLRGHLTGSSHSHNDSPITQRLQPSYTNNLTPPCALTISEGAASAFLVQSRQLNTELPRTLAALQAGTLSWQHARILCDETTGLGHDGAAALETHFLDPDAAKASRACLAGDLTPSRFRARARTWRERHHPVSIETRHTKCVLDRRVEYTPERDGMAWLSAYLPADQAAGIWEHTTTTARALQGPTESRTLTQLRADTLATALLGGGTTNPGKTSGGSASRGTSSWRSDGGGSANGRINGEGSGSGGTNGEGSDNCGISGGESGSGALLGDGSTSGANSLGNCGGERAAGQVRPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVANGAHSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWADGGTTGISNFGQPCRKHHHLKHNTTWQPTPASKNEPPGWTSPTGRHYKSEHQDWEPPQWPQGMDSSNANANANANA
D1-29_01018975IS256 family transposase ISSer2ATGATTATCAGCCTTTACGCCGGCGGGATGACGGTCCGGGACATCGCCCACCATCTGGAATCCACGCTGGGCACGGAGCTGTCCCACGAGACGATTTCCAAGATCACCGATGAGGTCCTGGACGAGGTGATGGAGTGGCAGAAACGCCCACTGGAGCCGCTGTATCCGATCCTGTATCTGGATGCGATCATCATCAAGGTCCGTGACGGGCACCAAGTGCAGAACCGTGCCGCGCACATTGCCGTGGGCGTGGACATGGACGGGATCAAGCACGTTCTGGGGATCTGGGTCGAAGCTACCGAGGGTGCGAAGTTCTGGGCAGGGGTCTGCGCCGAGCTCGCCAACCGCGGCGTGAAGGACGTTCTGATCGTCTGTTGCGACGGGCTCACCGGCTTCCCTGAGGCGATCGCCGCGACCTGGCCGGCCGCGACCGTCCAGACCTGTGTCGTGCACCTGATCCGTGCCTCGATGCGCTTCATCGGCTACCAGGACCGGAAGAAGGTCGCGTCCGCTCTGAGGCCGGTTTACACCGCCCCGACGGCCGACGCCGCGCAGGAGGCACTCGATGCATTCGAGGCCTCCGATCTGGGACGGAAGTATCCCGCAACTGTACGAACCTGGCGCAACGGTTGGGAGAGATTCATCCCCTTCCTGGCGTTCCCACCGCCGGTCAGACGGATTATTTACACCACGAACGCGATCGAGTCGCTGAATTACCAGCTGCGCAAGATCATCAAGAACCGCGGGCATTTCCCCAACGACCAGGCGGCCGTGAAGCTACTCTGGCTGGCGATCTGCAACATCGAGGACAAACGCACCAGTGCCCGGACCAAGCTTGAAGGCAGAGCCCGGGAAAACCGTGCCAAGACGGTGAACAAACTCATCGAGGGAACCTTCACACCTGGATGGAGCGAAGCCCTTGGCGTCCTCCTCCTGAACTATCCCGACAGACTCGGACCTTACCTAAACCGATGAMIISLYAGGMTVRDIAHHLESTLGTELSHETISKITDEVLDEVMEWQKRPLEPLYPILYLDAIIIKVRDGHQVQNRAAHIAVGVDMDGIKHVLGIWVEATEGAKFWAGVCAELANRGVKDVLIVCCDGLTGFPEAIAATWPAATVQTCVVHLIRASMRFIGYQDRKKVASALRPVYTAPTADAAQEALDAFEASDLGRKYPATVRTWRNGWERFIPFLAFPPPVRRIIYTTNAIESLNYQLRKIIKNRGHFPNDQAAVKLLWLAICNIEDKRTSARTKLEGRARENRAKTVNKLIEGTFTPGWSEALGVLLLNYPDRLGPYLNRPGPT0030665_47DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_01019567hypothetical proteinATGGACAGCACGGTAGTTGTTGGCGGTGAAAGCAGGCTTGCTTTGGATGCAGCCACGCTTGATGCTGGCTTTGACGGACCTGATTCGACCACCTGCTCTGCTGTAGCTGGTGCCGGAACTAATGCTGGCTCTGGCGCAGGTTCTGATGGCGCTTCTGGCCCCGTTTCCCGCGCTGGCTCTGGTGCAGGGTTTGATGCTCGTTCTAATGCTTCTGGCACAGGATCTGATGATACTTCTGGCGCCGTTTCCCGCGCAGCCGGGGACTCTGGCGCCGTTTTCCGGGCTGGCTCTGGCACAGGTTTTGATGCTGGTTCTGATCCGTTGCGGGATCTGGCGGAGGAATGCCTGGCCGACATGGCGGAGGCTGCCCGTGACGAAGCCCGGGCCGCTGCCCGGAAGGCCAGGGCGGCCGCCACCTACGCGGACACCTGCCGGCGCCTGCTTCCACCGTCGACGTCGCTGCACGAACAGTCCGTGGCGGAGATAGGCATGGTCGCCGAGGTCGCCTGTGCCCGAGCCTGTCAAGTTATTTGTGTAAGTCGGGTGCAGTCTCATCGGTTTAGGTAAMDSTVVVGGESRLALDAATLDAGFDGPDSTTCSAVAGAGTNAGSGAGSDGASGPVSRAGSGAGFDARSNASGTGSDDTSGAVSRAAGDSGAVFRAGSGTGFDAGSDPLRDLAEECLADMAEAARDEARAAARKARAAATYADTCRRLLPPSTSLHEQSVAEIGMVAEVACARACQVICVSRVQSHRFRNANANANANA
D1-29_01020408hypothetical proteinATGGACTTTCAGCACATTATTGAGACCGTGGGCAAGTTCATGGATTTTGCCGGCGTTGCCGTGATGGTGATCGGTGCTCTGGTGTCCGTTCCCATGGCCTTCCGGGGTTATCAGCCGCGAAAGCTCCCTGCCGGAGCCGAGAAGCTAACTGTCTACCGCGCCTATCGGCAATTGCTCGGCAGGTCCATTCTGCTGGGACTGGAGCTTCTGGTTGCAGCGGACATCATTCGCACGGTCGCGGTGACGCCCACGTATGAAAGTGTGGGCGTCCTGGCGATCATCGTGCTGATCCGTACGTTCCTGAGCTTCTCCTTGGAACTGGAAATCACTGGCCGCTGGCCTTGGCAGAAAGAGTCATCTGACGGGTCGTCCGAGCCTGCCGGCGCTTCATCCCCAGCCTCTCGCTGAMDFQHIIETVGKFMDFAGVAVMVIGALVSVPMAFRGYQPRKLPAGAEKLTVYRAYRQLLGRSILLGLELLVAADIIRTVAVTPTYESVGVLAIIVLIRTFLSFSLELEITGRWPWQKESSDGSSEPAGASSPASRNANANANANA
D1-29_010211383dmoADimethyl-sulfide monooxygenaseATGAGTTCACCGTCTCCCCTGCTTTTTGCCCTCTACGAGCAGGCCAGCGTAGGCTGCGGCGGCGCGCCCAGCCTCTGGACCCACCCGTTGGATGACCGCCTGCAGGTCAATTCCCTGGACCGGTGGCGCAACGTCGCCGTCACTGCTGAAGAAGCAAACCTGGACGCACTCTTTTTTGCCGACGTCCTGGGACTGTATGACGTGTATGGCGGCTCCGCCGATGCTGCCTTGGGCTGGGCGGTGGAGGCCCCGGCCAACGATCCGTTTATGTACGTTCCCGCCTTGGCTGCCCTCACCGAGCGGCTTTCCTTTGTGATCACGGCGTCCACCACCTATGAGCACCCCTTTGCCCTCGCCCGTCGCTTCGGCACTTTGGACCACCTCAGCACAGGGCGGATCGGGTGGAATATCGTCACCTCCTACCTGTCCAGCGCGGCCCGCAACTTCGGCATGGTCGAGATGCTCAAGCACGCAGACCGTTATGCGCGTGCCGATGAGTTCATGGACGTCTTCTACAAGCTGCTGGAAGGCAGCTGGGCGGCCGACGCCGTTGTGGGCAGCAAGGCGGACCGCCTGTACGCCCGCGCCGGTTCCGTCCATCCCATTAATCACGACGGCGAACACTTCCGTGTGGACGGACCGTCGCTGACATCTCCATCACCACAGCGGACGCCCACACTGTTTCAGGCCGGCTGGTCGCCGCGGGGCCGCGAATTCGCGGCTAAGCACGCTGAGGTGATCCTGCTGCCCAAGAAGGATCCGCAGGAGATCGCGGCGGGACTGGCTGACATCAATCAGCGGGCATTAGCTGTTGGACGGCCCGCCGGCGAGGTGCGCTCCATGGCGCTGGCCCGGATCATCACGGCTCCCACTGCCATCGAAGCCCAGGAGAAGTACGACGAGCTGCAGCGCAATTACCACGTGGAGGCGCAGCTGGTCAGCTACGCCGGGGACACCGGAATTGATCTCAGCAAATACGCCGACGACGAGCCGCTCACGACCTCCACCAACGGCCTGACCTCCTACGTGGTCAAGGGAGCTTCGCAGGACAAACCGCTCACTGCCGGCGATGTACGCCGCAAATTCTCCGAGGTCACCCGCGGCACGGACCTTCTGTTCATCGGCACACCGGACGACGTAGCCCGGCAGATCCAGGATCACGCTGCTGTTTCGGGGCTGGACGGCTACATGCTGAATCCGCTGATTAGCCCGGGATCCCTGAACGACTTTGCCGAGCTGGTGGTGCCGCGGCTGGCCGAGCGTGGGCTGTACGACACGGAGCCCAAGTCCGGCACACTACGGTCGCGGCTGCGGTCGGATTCCTCGGACCTGCTGCCGCCGTCAGCATATGGAGCATCGTTCCGGCAGCAGGTGACCGTCTAGMSSPSPLLFALYEQASVGCGGAPSLWTHPLDDRLQVNSLDRWRNVAVTAEEANLDALFFADVLGLYDVYGGSADAALGWAVEAPANDPFMYVPALAALTERLSFVITASTTYEHPFALARRFGTLDHLSTGRIGWNIVTSYLSSAARNFGMVEMLKHADRYARADEFMDVFYKLLEGSWAADAVVGSKADRLYARAGSVHPINHDGEHFRVDGPSLTSPSPQRTPTLFQAGWSPRGREFAAKHAEVILLPKKDPQEIAAGLADINQRALAVGRPAGEVRSMALARIITAPTAIEAQEKYDELQRNYHVEAQLVSYAGDTGIDLSKYADDEPLTTSTNGLTSYVVKGASQDKPLTAGDVRRKFSEVTRGTDLLFIGTPDDVARQIQDHAAVSGLDGYMLNPLISPGSLNDFAELVVPRLAERGLYDTEPKSGTLRSRLRSDSSDLLPPSAYGASFRQQVTVPGPT0030630_25DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030630-tnpA-K07485NANA
D1-29_010221533rocC_2COG0833Amino-acid permease RocCATGCCGCAAAACAGTTACAGCCCCGTGCTGCCTGCCCGCCAAGAGACGCCTGGCGCCCCTGCCCTGGATTCTTTGGACGCCTCCCACCGCGACCTGCGCCGGACTGACCTGCACCGGACTGACCTGCGCCGGACCATGGGGCCCCGCCACCTGATCATGATCGCCATGGGCGGCGTCATCGGTTCCGGCCTTTTCCTGAGTTCCGGATACACCATTGAACAGGCCGGCCCGCTCGGTGCCGTCCTGGCGTACCTGGTTGGCGCCTTCGTTGTTTACCTGGTGATGGCGTGCCTCGGTGAACTCGCCATCGCCTACCCGGTGGCAGGTGCTTTCCACATCTATGCGGCACGATCCATTGGCCCCGCCACCGGCTTTACCACCGCGTGGCTGTACTGGCTTTGCTGGGTGGTGGCCTTGGGCTCGGAGTTCACGGCCTGTGGGCTGCTCATGCAGCGGTGGTTTCCGGGAGTGGACGTCTGGGTCTGGTGCCTGGTCTTCGCCGCTCTGATCTTCAGCCTCAATGCCTTCTCGGCACGGGTCTTCGGAGAGTCTGAATTCTGGCTCTCACTGATCAAGGTGGCAACCATCGTGGCGCTCATCGTGTTCGGCGGCGCCGCCCTGCTGGGTTTCAAGCCCCTGGCAGCTGAGTCCGGCCCTCCCCTGCTCCTGAACAACTTCGTCACGGAGGGTGGGCTCTTTCCCAATGGCTTTGCCGGGGTGCTGATCACCGTGCTGGCTGTCTTCTATGCCTTCTCCGGCTCGGAACTGATCGGCGTAGCAGCCGGCGAAACCAAAAATCCGGAGCACGCCATTCCCAAGGCCCTCCGCGCCACCGTCCTGCGCCTCTTGATCTTCTTTGTTGGTGCCATCACCGTCATCGCCGCCACCGTTCCCTATGGAGAGGTGGGGCTTGATGAAAGCCCGTTCGTCACGGTGTTCAGTTCACTGGGGATCCCGTATGCCGCAGACATCATGAACTTTGTGATCATCACCGCCCTGCTTTCCGCTGGCAACAGTGGCCTGTATTCCTGCGCGCGCATGCTTTTCTCCCTCTCGGATGAAGGCCACGCCCCTAAGGCCTTCCGCCGCCTCACCAAGAAGGGCATCCCGCTCATTGCCCTCAGCATCAGCATGATCGGTGGTGTCGCCTCGCTCCTCTGCAGCGTGGTGGCCGCCGAATCCGTCTACCTGGTGCTGGTCTCCATCGCCGGGTTTGCTGTGGTCGGAGTGTGGATGTCCATCACGGCCTCGCACTTCCTCCATCGCCGGGCTTTCCTCCGAAATGGCGGCGACGTGTCCACACTGGCCTACCGTGCGCCGCTCTATCCCGTAGTTCCCCTGCTGGCCTTTGCGTTGTGCCTGGCGTCCGTGGTTGGGCTCGCCTTTGACCCCAACCAGGTGGCCGCCCTCTACTTCGGTATCCCGTTTGTGGCCGCCTGCTATCTCTACTTCCACTTCCGGCACGGTTCCCGCAAAAGCGGGCGCCGCGCCGCCGTCGAACTTTCCCCTGACGAAAGCGAAATGATCCGATGAMPQNSYSPVLPARQETPGAPALDSLDASHRDLRRTDLHRTDLRRTMGPRHLIMIAMGGVIGSGLFLSSGYTIEQAGPLGAVLAYLVGAFVVYLVMACLGELAIAYPVAGAFHIYAARSIGPATGFTTAWLYWLCWVVALGSEFTACGLLMQRWFPGVDVWVWCLVFAALIFSLNAFSARVFGESEFWLSLIKVATIVALIVFGGAALLGFKPLAAESGPPLLLNNFVTEGGLFPNGFAGVLITVLAVFYAFSGSELIGVAAGETKNPEHAIPKALRATVLRLLIFFVGAITVIAATVPYGEVGLDESPFVTVFSSLGIPYAADIMNFVIITALLSAGNSGLYSCARMLFSLSDEGHAPKAFRRLTKKGIPLIALSISMIGGVASLLCSVVAAESVYLVLVSIAGFAVVGVWMSITASHFLHRRAFLRNGGDVSTLAYRAPLYPVVPLLAFALCLASVVGLAFDPNQVAALYFGIPFVAACYLYFHFRHGSRKSGRRAAVELSPDESEMIRPGPT0020525_123DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020525-mmuP-K16235NANA
D1-29_01023861hypothetical proteinGTGACGATCCTGCTGGCCGGATGCGGCGACCTGGGCACTGAAGCGGGCCTGCGTTTTGCCGCGGCGGGGCACCGCGTGGTGGGCTGGCGCCGGTCGCCTGAAAAACTGCCGGCGATCATTGAAGGGGTTGCGGCGGACCTGGGCACACCGGGCCTTCCGCCCGTCCCGGCCGATACCACCGCCGTCGTTATTGCCGTCGCTGCGGACTCCCCCACGGAAACTGCCTACCGGGCTGCGTACGTGGACGGCGTCTCGCACGTCCTGGACGCCCTCGAGCGGGATGCCGTGACGCCCCGCCGGGTTCTTTTTGTCTCCTCCACTGCTGTTTATGGGGACGCCAACGGCGGCTGGGTTGATGAAAGCACGACGGCGGAACCCGGCGGATTTTCCGGCCGCATCATGCGGGAGGCAGAGGAACTGCTGCACCACCGCCTACACGGCACCGAAACAGCCGGTGTTGTCGTGCGGCTCGGAGGCATCTACGGCCCTGGCCGTACGCGGCTGATTGACCAGGTCCGGAAAGGCGCTGCGGTGATTCCCGACGCCCCCCGCTATACCAACCGGATCCACAGGGACGATGCCGCTGCAGCACTGGTACATCTTGCCAGTATGGAAGCCATGCCTGTCCAGGTATATCTCGGCGTGGATAACGAGCCCGCAGAACTGGGCGAGGTGCTGCTTTTCCTGGCTTCCGAACTGGGGTTTCCCGAGCCACCCACCGGTCCGGCGGCCGATGCCCGCAACGGGAACAAGCGCTGCAGCAATGCACTTCTGCGAAGCACCGGCTTTGAGCCCGCTTACCCGTCCTTCCGCGAGGGCTATCGGGAAGTATTGACGGGAACAGGGGTTCGGCACCGATAGMTILLAGCGDLGTEAGLRFAAAGHRVVGWRRSPEKLPAIIEGVAADLGTPGLPPVPADTTAVVIAVAADSPTETAYRAAYVDGVSHVLDALERDAVTPRRVLFVSSTAVYGDANGGWVDESTTAEPGGFSGRIMREAEELLHHRLHGTETAGVVVRLGGIYGPGRTRLIDQVRKGAAVIPDAPRYTNRIHRDDAAAALVHLASMEAMPVQVYLGVDNEPAELGEVLLFLASELGFPEPPTGPAADARNGNKRCSNALLRSTGFEPAYPSFREGYREVLTGTGVRHRNANANANANA
D1-29_01024921hypothetical proteinATGCAAACCTTCCTTCCGCACCCCGATTTTAGGTCGAGCGCGGCCGCGCTCGACCCCGCCAGGCTTGGCAAGCAACGAGTCGAGGCGCTGCAGATCCTCCGGGCGCTGGTGATCCCGGAATACGGCTGGCAGTCCCACCCGGCCGTCCGGATGTGGATGGGGCACGTCCCCGCACTGACCCTGTATGGCCTTGCCATGGTGGACGAGTGGACCGCCCGCGGCCACGCCGACAACACCCGCGCCAACATCACAGAGTTTGCACCCCAGGCAGCGCACCCCGATTACGCAGCCAAGATTCCGATGCCGCATTGGCTAGGCGATCCGGACTTCCACTTGAGCCACCGCTCCAAGCTCCTCCGCAAAGAGCCGAAGTTTTACAAAGACGTCTTTCCTGACGCCGAGGTGGATCTGGACTACATCTGGCCTGAGCCGAAACACGAATTCCTCCCCGAGGACCCCGACGGTGACATCCTGTGGATCCTCCGCGCCCCGCATCGGGAGATTGACCCGGAAACACTGGGAACCGTTGCCCTTCCCCCGGTTCGCCGCGGCGGCACTCCCACTGCCGGTTTGGGCGCCGATCAGGATGACTATTCCCCTGTCTACGTGGACGACGGTTCACGCCGGCCCTCCAAGCAGCCGCGCAAGCTTCCACCCAAGCAGTTGGTGAAGAAGCCAACCCGAAAGCGCAAAGCCCAGGAGGAGGCTTTCGCCACCCTCCCCGGCAAGACAGTGGTAGCGGTGGCCTTCGAGGACGGCAGCAAGTTCGCGGTGGGACAGGTCCTGGGCCGCCCCATCACCCTGGAGGATGGCAGGTTCGGCCGCAACTTCAGCGTCACCGAAGTGATCGACAGGTCCGCATTCGACTACCCGGCCCTTTTGCAGGACCCCCGGGTCTTCTTCCCCGTCCCGGCTCCCTGAMQTFLPHPDFRSSAAALDPARLGKQRVEALQILRALVIPEYGWQSHPAVRMWMGHVPALTLYGLAMVDEWTARGHADNTRANITEFAPQAAHPDYAAKIPMPHWLGDPDFHLSHRSKLLRKEPKFYKDVFPDAEVDLDYIWPEPKHEFLPEDPDGDILWILRAPHREIDPETLGTVALPPVRRGGTPTAGLGADQDDYSPVYVDDGSRRPSKQPRKLPPKQLVKKPTRKRKAQEEAFATLPGKTVVAVAFEDGSKFAVGQVLGRPITLEDGRFGRNFSVTEVIDRSAFDYPALLQDPRVFFPVPAPNANANANANA
D1-29_01025591hypothetical proteinATGAAAACTACACCTCAAAAGACCCCCGGAAGCACCCAGATTTTCACGCCCAAGTTCGGGCAGATGCTTAGTCCGGAGGCCAATGGCATCCTGGTCCTTGACGAATTTACGCTTGATCCGGCAGCGGCGCGCAAAGAGCAGCACGGCTTCCGCGCAGCGATTGCATCCGTAGCTGTCACGCTCCGCCGAATTGCTGCCCTGCGTGTGGTGATTGCGCTCGTGGCCATCGGAAACCTGCCACTGTTCCTGCTTTCCAGCGGCTGGTGGATCTACGCGGTTTCCCTGACTCTGGTGGTGGCAGTGCACGCTGCGGTCTCCTGGCTCAACCGGCACGAGCCCAAAGTCCGCCAGCGCCAGGACCTGGAATTGCACCTGCATCGCGAACAGAGCGCCAACTACCGCAAAGTCCGTGACGCCGTGAAGTACATGATTGACACACCCAGCCGCATGAACGAACACCTCTACCTGGAGTTGCTGGCGGTCAAGCGGGTGGCCCTCAACCTCGCACACGGCACTGTTGCCCTGCTGGACACCAGCGACGAGACCTCCTGGAAAGTGCGGATCGTCCGCGAAATCCCTGCAGCAGCCTAAMKTTPQKTPGSTQIFTPKFGQMLSPEANGILVLDEFTLDPAAARKEQHGFRAAIASVAVTLRRIAALRVVIALVAIGNLPLFLLSSGWWIYAVSLTLVVAVHAAVSWLNRHEPKVRQRQDLELHLHREQSANYRKVRDAVKYMIDTPSRMNEHLYLELLAVKRVALNLAHGTVALLDTSDETSWKVRIVREIPAAANANANANANA
D1-29_01026636hypothetical proteinATGAAAACAACTACTTTCCGTACTGCCGCGCGCCGCGGAATCACCGTTACCGCCGTTTCCCTCGCCGGCCTGGCGCTCTCAGCAACCGCCGCTAACGCCACCACCGGCACGTCCACCTGGGACTCGCTGGCGCAGTGTGAGAGTGGTGGAAACTGGGCAACCAACACCGGAAACGGCTACACGGGCGGCCTGCAGTTCAGCCCCACCACGTGGGCCGCCTACGGCGGCACCGGCTCCGCTGCAGATGCCAGCCGTGAGCAGCAGATCGCCGTCGCCGAACAAGTCCAGGCTGCCCAGGGCTGGGAGGCCTGGCCTTCCTGCTCGGCCCAGCTGGGGCTGAGCGGTGGCGCAACAGCAGTTGCGCCCCAGACTGTTCCAGTCCAGAGCGTGCCCGTGACCCAGGTTCCGGCCGCCCAGGCGCCTGTCACCCAGCCTGTGGCGTCAGCTCCCGTCCATGCTGCGCCGGTAGCGCTCAGCGGCGAGACCTACACGCTGGAGGCGGGCGACACGCTGAGCATCGTGGCGGACAAGCTGGGTATCGCCGGCGGCTGGGCAAGCCTTGCGGACGCCAACCAGGACACCATCTCCAACCCGGACCTCGTGTTCGAGGGACAGGTCCTGCAGCTTCCCGCTTAGMKTTTFRTAARRGITVTAVSLAGLALSATAANATTGTSTWDSLAQCESGGNWATNTGNGYTGGLQFSPTTWAAYGGTGSAADASREQQIAVAEQVQAAQGWEAWPSCSAQLGLSGGATAVAPQTVPVQSVPVTQVPAAQAPVTQPVASAPVHAAPVALSGETYTLEAGDTLSIVADKLGIAGGWASLADANQDTISNPDLVFEGQVLQLPANANANANANA
D1-29_010271050COG1816Adenine deaminaseATGGACAATTACCAGGACAGCGCCGCTGAGACGCTTCCAGAGACTGATTTGCTGGATACGGAACCGCTTGCCCGCCTGCTTCCGCTGGCCGAACTGCACCTTCACATCGAAGGGACCCTTCAGCCCGAACTGATTTTTGAACTGGCGGAGCGCAACGGCATCACCTTGCCCTACTCGGGGCTGGACGAGCTGCGCGGCCTTTATGAATTCAGTGACCTTCAGTCCTTCCTGGATCTGTACTACGCCAACATGGCTGTCCTGCGGACGGAGCAGGACTTCGCAGACATGACCCGCGCCTACCTTGCCCGTGCCCAGGAAGCGGGAGTGCGGCACGCCGAGATCATGATGGACCCGCAGGCGCACCTTGCCCGCGGGGTCTCCCTGGAAACCTGTGTGAATGGTGTTGCGTCCGCTTTGGCAACCTCAGTTGAGGACTTCGGCATCTCCACACTGCTGATTGCCGCTTTCCTGCGCGACCTGCCGGAGGAGTCGGCGCTGGAAGTCCTGGACGCCCTGCTCGCCATGAACGCCCCCATCGCGGCCATCGGCCTGGACTCGGCAGAGGTGGGCAACCCGCCGGCCAAATTCGAACGGCTTTTTGCCCGGGCGCGGGAAGCAGGCCTGCGATTGACGGCGCATGCAGGGGAGGAGGGCCCGGCGTCGTACATTATTGATTCGCTGGACATCCTGGGCGTGGAGCGGATCGATCACGGCATCCGGTGCATGGACGATCCGGAGCTGGTGGAACGGCTGGTGGATGATCGGATTCCGCTCACGGTCTGTCCCTTGTCCAACGTTCGGCTCCGGACGGTGGACACCCTGGCGGACCACCCGCTGCCGGCAATGCTGGCCGCTGGATTGAACGTGTCCGTCAACTCCGATGACCCGGCCTATTTCGGCGGATACGTTGACGATAACTTTGCGCAGCTGACAGCGGTGTTTGAGTTGTCCGAATTCGACCGCGCCCGCCTCGCGGCCAACTCCATCCATTCGTCGTTCGCCTCCGAGAACCGGAAAGCCGAGCTCCTGGACGAGCTGAACGGCGGCTAGMDNYQDSAAETLPETDLLDTEPLARLLPLAELHLHIEGTLQPELIFELAERNGITLPYSGLDELRGLYEFSDLQSFLDLYYANMAVLRTEQDFADMTRAYLARAQEAGVRHAEIMMDPQAHLARGVSLETCVNGVASALATSVEDFGISTLLIAAFLRDLPEESALEVLDALLAMNAPIAAIGLDSAEVGNPPAKFERLFARAREAGLRLTAHAGEEGPASYIIDSLDILGVERIDHGIRCMDDPELVERLVDDRIPLTVCPLSNVRLRTVDTLADHPLPAMLAAGLNVSVNSDDPAYFGGYVDDNFAQLTAVFELSEFDRARLAANSIHSSFASENRKAELLDELNGGPGPT0021520_2407DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
D1-29_01028984hypothetical proteinATGGCCAAGTCCATCGCAGAAAACACCTACCTTCGTCTCAAGACCGTGCTGGATGTCCTGACCGAAGGCGTGTGGTCCGGCGATGCGCTGAATGCCGGCGAGGTACTGGCTGAAGCCACAGCCCGCGTCCCGTTCAGCCCGCATGAGGGAGAATTGCTCAGCGGCGGCATCCCCCGCGGTCATAAGACACTGACCTCCGCCACGGCAAAGCTGGTGAAGGCCGGCTGGCTGGTCAAGAGCCGTGCCGGCTGGATCATCACCGAGGACGGCATGCGCGCCACAGTCGCGTTCCCGGATGTGGACTCCTTTACGGCAGCGGTCGACGCCGGCACGCCCGTTCCGGCGGACACCCCGGTTCCGGCTGCCCCCGCCAATTTTGTTTCACCGAAGGCAGCCCGTGCAGAAGCCGCCGCAAAGACGGAAACAGTGAAGAAGGCTCCGGCCAAGAAGGCCCCCGCTACCAAGGCAACGGCCACTAAAGCAACCGCCACCAAGGCAACCGCCACCAAGGCGCCAGCGAAGAAGGCGGCCGAAGCTGTGGGCAAGGCAGCCAAACTGATCGAGGACGCCGTGGAGCCCGTGGTCAAGGCCGTCCGTTCCCGCAAGGCCTCGCCGAAGGCAAAGGCTGAAACCCCCACCGCGGACGCTTCGGCGGGAGCTGTTGCCACCGCAGTCGAGACGTTCCCGCAGCCTGAGGCCGTAGCTGTGGCCGGTGACTTCAACACGTTCCTGGGAGCACCGGAGAACTGGGCACCGCAGTACGACGAAGCCCAGATGGAACTCGACGTCCTGGACCAGCTGTGGAAGATCAGCGCCGAACTGCCGGCCGGTTACTACACATTCAAGATCGCACTGAACCGCTCGTGGCAGGAGAACTATGGCGCGTTCGGTGCATTCGACGGTCCCAACCACGAACTGCACCACGACGGCGGCACTGTCACCATCCGCTACGACCACCGCACACGGGACATCACCGTCAACTGAMAKSIAENTYLRLKTVLDVLTEGVWSGDALNAGEVLAEATARVPFSPHEGELLSGGIPRGHKTLTSATAKLVKAGWLVKSRAGWIITEDGMRATVAFPDVDSFTAAVDAGTPVPADTPVPAAPANFVSPKAARAEAAAKTETVKKAPAKKAPATKATATKATATKATATKAPAKKAAEAVGKAAKLIEDAVEPVVKAVRSRKASPKAKAETPTADASAGAVATAVETFPQPEAVAVAGDFNTFLGAPENWAPQYDEAQMELDVLDQLWKISAELPAGYYTFKIALNRSWQENYGAFGAFDGPNHELHHDGGTVTIRYDHRTRDITVNNANANANANA
D1-29_01029546yceI_1Protein YceIATGACTCTTCCCTCAGGCCTTACCCCGGGCGTTTGGACGCTGGATATGTCTCACAGCGAGATCGGTTTTACGGTCCGGCACGCCGGCATCAGCAAAGTGCGTGGACGTTTCACTGAGGCGAGTGCAGAGGCCCATATCGGCCAATCCTTGGCAGAATCATCGCTCCATGCCACCGTCAAGACGTCCAGCTTCGATTCTGGTGACGCCAACCGGGACGCCCACGTCCGTGGCGCGGACTTCTTCGACGTGGAGAACCACCCCGAGATGACTTTCCGAGCCACATCCGTGGAGGGCGACGGCGAGGACTACACCCTCACGGGCGACCTCACCATCCGGGGAATCACCAAGCCGGTTGAACTGGAGGTGGAATTCACCGGGGTGGCCGTGGACCCCTTCGGTGCCACCCGTGCCGGATTCTCCGCCGAGGCCGAGATCAGCCGCAAGGAGTTTGGCCTCACGTGGAATGCGGCCTTGGAAACCGGAGGATTCCTGGTCAGCGACAAAGTGAAAATCAACGTCGAGGCTGCCTTGGTGAAGCAGTCATGAMTLPSGLTPGVWTLDMSHSEIGFTVRHAGISKVRGRFTEASAEAHIGQSLAESSLHATVKTSSFDSGDANRDAHVRGADFFDVENHPEMTFRATSVEGDGEDYTLTGDLTIRGITKPVELEVEFTGVAVDPFGATRAGFSAEAEISRKEFGLTWNAALETGGFLVSDKVKINVEAALVKQSNANANANANA
D1-29_01030315acyPCOG1254AcylphosphataseATGAACGCTGGTGTTCCAGCAAACCCGGAAGTGCCGGCCACCGACGGCGTCCGGCTCTCCGCGCGCGTTTTCGGGATAGTGCAGGGCGTCGGGTTCCGCTATTGGACCATGGGCAAGGCAGACGAACTGGGCCTGACCGGGTTGGTGCGGAACCTTGCCGACGGATCCGTGGACGTGGTGGCCGAAGGTCCTGAAGAGCGCATCAAGGACTTCCTGGACTGGCTGAAGTCGGACAAAACCCCCGGCCGCGTGGAGCGGGTGGAGGACTCCATCTCTGCGGCCGAAGGAACGTTCCGGGACTTCCGGGCGCGCTGAMNAGVPANPEVPATDGVRLSARVFGIVQGVGFRYWTMGKADELGLTGLVRNLADGSVDVVAEGPEERIKDFLDWLKSDKTPGRVERVEDSISAAEGTFRDFRARPGPT0001372_3473DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001372-acyP|yccX-K01512NANA
D1-29_010313822hypothetical proteinTTGTTCCTGCTCGATCCTGCCAGCGCGGCTTCTGCAAGCCTCGATCCTGCCAGCGCTGATTCTGGCAGCACTGATCCCGGCACGGGCGGACCTGCGGACCTGGTGTTCTCGGCGAGCGACCTCGTTGCCGCCAGCGAGTGCGAGTACCGCACACTCCGTATCCTGGACGAGAAACTGGGACGTTCTCCCAAGGCCGTATTTCCCGACGACGAAATGCAGCGGCGTGCCGGTGCCCTTGGCGATAAACACGAGGCCAAGGTCCTGGCGGGCCTCATCGACCAGTACGGCGAATGGGACGCCAACCGCGGTTCCGGGGTTTATTCCATCCACCGCGGCGAGAATGTGCGCGCGGACCTCCTGGCCAAGCAGGCGGAAACTGAACTTGCTCTCCGGGCTGGGGCGGACGTCGTCTTCCAGGCCACCTTCTTCGATGGCGAGTTCCTGGGTTACGCGGACTTCATCGTCAATGAGGCCGCAGGAACCGGAAACCCGGGGCGCTACGAAGTCTGGGATACCAAGCTGGCCAGGCACGCCAAGGTGGGCGCGCTCCTCCAGCTTGCGGCATATGGCGACCAACTCATCCGGATGGGGCTTGAACCCTCACCCAAGGTCACCCTGGTGCTGGGCGCGGTGGTGGACGGCGATTACGTCCGCAGCGTGCATTCGCTCACCGACCTCCTGCCTGTCTTCCGCGAGCGCCGCGACCGCTTTCGCACCCTCACCGGCTCGCACCGCTCTGGGGATTCGCCGGTCCAGTGGCTGCAGAAGGACATCACCTGCTGCGGGCGCTGCAACTACTGCGCGGAGCAGGTCCAGTCCCACCGCGACCTCCTGATGGTAGGCGGCATGGGCTCCTCCCGGCGCAAGAAACTCATCGCCGACGGCATCACCACCATCGACCAACTGGCCGACCTTCCTTCCGCCCAGGCCACAGGTTCTGTGGTCCGGTTGCGGGACCAGGCCCGGATGCAGCTCGGCCGCGACACTCCAGACGGCTCGCGGACGTTCGTGAAGGACGGCGAGGAACACTCCGTCACGTTCAAGGTACTTCCGGCGAACGCCCTGGCCTCCATCCCTGCGCCCAGCCCCGGTGACATCTTCTTCGACTTCGAGGGCGATCCGCTCTGGCAGGATCCCGCCACCGGAAAATGGGGGCTGGAGTACCTGTTCGGGGTAATCGAGGCGCCCGATTCCGCCGCTGACCCGTCTGGCTCTGCCGGTGAAACCCGCAAGCTGGTGTTCCGTCCGTTCTGGGCGCACTCCCGCTCCGGGGAACGGCACGCCTTCCTGGACTTCCTGGATTACGTGGAAGAGCGCCGGCGCAGGTACCCGGACATGCACGTCTACCACTACGCCGCCTATGAGAAGTCAGCGCTCCGGAACCTGTCGGTCACCCATCTGGCGGGTGAGGACACCGTGGACAACTGGCTCCGGGAAGGTCTCCTGGTGGACCTGTACGCCACGGTCCGGCATTCGCTGCGCATCTCGGAGCGGTCCTATTCCATCAAGAAACTCGAGCCCCTCTACATGGGGGACCATCTGCGGTCCGGTGACGTCAAGGACGCCGGCGCCTCCGTGGTGGCATACGCCGGCTATTGCGCAGCCAGGGAAGATGGCGACTCCGCCAAGGCAGCCGAGATCCTTGCCTCCATCTCCGACTACAACGAATACGACTGCCTTTCCACCCTGAGGCTCCGCGACTGGCTCCTGGGCCTGCGTTCCTCCCAGAACGGTCACTCCACCGCTCCCGCTGCCGGGCCGGGCACTGCCGCTTCAAACGCGGCAACAGGCACTGCCGGGTCACACGCTGCCCCGTCAAGCACTTCAACAGGCACTGCCGGAAAGCCCGACGGCGGCCCAACGGTGGCGCTGCCGCCTGCCCTTTCCGAGGCGGTATCGATCGCCGAAGCGGAACCAACTCCCGAGGAGATCCGCCTCCGGGACTACCTGGCCTTGCTGCCGGACAACAGGCCCTGGACCCCGGATGAGCAGGCCATCGCCATGGTAGCCGCGGCCACCGGGTATCACCGGCGGGAGCGGAAGCAGTTCTGGTGGGAACACTTCGACCGTACGGAGTCAGAGATCGATCACTGGTCCGATCACCGCAACGTGTTTGTGGTGGATACAGCCGAGGTCCTCAGGGACTGGGCGTTGTCCGGGCCGAAGGTTCGGATGCAGACCCGCACCCTGAAACTGACCGGGACCATGAGTGAAGGTTCGGATTTCAGGCCCGGAAGCACGTGGTGCCGGTTGTACGAGGCCCCCCTTCCTGACGGAATGGACGAATCCCAAGGCAGCCCCACGGCCCGGGGATACACTTTCGGCACCCTGGTCACCGACGTGCAGGACCATCCGGACATTCCTGGCCGGACCATCATCACCATCGAGGAGAAGGAGACGGGCAAGGTCCCCGCGTACCCTCATATCCCGGTTGCCCTGACCGAGGATCGGCCAGTCCCTACCGCCAGCATTGAGGCCGCCCTGGCGGAGCTTGCCGAAGCCGTGGGGGCGTTGGGGCCTGCGTTGCCGGACCATCCGGGCCTGGACATCCTGCGGAAGCTCCCGCCCAGGTTCCGTTCGCTCCCAGGGCCCGCCGCCGTCGGACCGGACAGTGCGGGTGCTGCAGATTACGTCGCAGCCATCACCACCTCGCTGAGGGACCTGGACCACTCATATTTGGCCGTGCAGGGCCCACCGGGCACAGGCAAAACGTATGTCGGCTCGCACGTCATTGCCCGGCTGGTGGATGCCGGCTGGAAGATCGGAGTGGTAGGCCAGTCCCACGCCGTGGTGGAGAACATGCTCTGCACCGCGATCGAAACCGCGGGAGTCAACCCAGCCCGCGTGGCCAAGAAGCTGTCCACGCCGCACGACGTCCTGTGGCACCGCACATCCGACGACGACGTTGCCGCGCTGCTGGACTCTCCGGGCGGCTGCCTGGTGGGCGGCACGGCGTGGACCATGACCGGAAAATGTGTCCCTGCCGGCTCCCTGGATCTGCTGGTGATCGATGAGGCCGGTCAGTTCTCGCTTGCCAATACCCTTGCGGTGGCCAGGTCTGCCAAGCGACTCCTCCTCCTGGGGGATCCGCAGCAGCTTCCACAGGTCACCCAGGGTTCTCACCCGGAGCCGGTGGATGAGTCGGCCCTGGGCTGGCTCGCTGCGGGAAACGCCACGCTGCCCGGGGAGCTGGGGTACTTCCTGGCGGACAGCTGGCGGATGCACCCGGAGCTGTGCCGCTCCGTGTCGCTCCTGAGTTACGACGGCAAACTTGAATATGCTCCGGCCGCATCCTCCCGCAGCCTTGCCGAATTGCCTCCCGGAGTGGAGACCGTCTTCGTGGATCACACCGGAAACACCACGTGCTCCCCTGAAGAGGCAGCCGAGGTTGTCCGGCAGGCGCAGCGGCACATTGGGCTGAAATGGCTTCCCGGCGGAGACCAGCCCGCCCGGCCGCTCAGCCCGGAAGACGTCCTGGTGGTGGCTGCCTACAACGCCCAGGTCCAGCTGATCCGGCATACGTTGGAGCAGGCAGGCCTGGGCGGCGTTCGGGTTGGCACCGTGGACAAGTTCCAGGGACAGCAGGCGCCGGTGGTGCTGGTGTCCATGGCATGCTCGGCCGTGGCTGAAGCTCCGCGCGGGGCTGAGTTCCTGCTGAACAGGAACCGCATTAACGTCGCCATATCCAGGGCCCAGTGGCGCGCCGTGATTGTCCGCTCCCCTGAGCTCACCAACTACATGCCGGCGCGGCCCCGGGCCCTGGAGGAGCTGGGCGCCTTCATCGGCCTCAGCCCACGGTCAGCACCCCGGCCACCCAAGTAAMFLLDPASAASASLDPASADSGSTDPGTGGPADLVFSASDLVAASECEYRTLRILDEKLGRSPKAVFPDDEMQRRAGALGDKHEAKVLAGLIDQYGEWDANRGSGVYSIHRGENVRADLLAKQAETELALRAGADVVFQATFFDGEFLGYADFIVNEAAGTGNPGRYEVWDTKLARHAKVGALLQLAAYGDQLIRMGLEPSPKVTLVLGAVVDGDYVRSVHSLTDLLPVFRERRDRFRTLTGSHRSGDSPVQWLQKDITCCGRCNYCAEQVQSHRDLLMVGGMGSSRRKKLIADGITTIDQLADLPSAQATGSVVRLRDQARMQLGRDTPDGSRTFVKDGEEHSVTFKVLPANALASIPAPSPGDIFFDFEGDPLWQDPATGKWGLEYLFGVIEAPDSAADPSGSAGETRKLVFRPFWAHSRSGERHAFLDFLDYVEERRRRYPDMHVYHYAAYEKSALRNLSVTHLAGEDTVDNWLREGLLVDLYATVRHSLRISERSYSIKKLEPLYMGDHLRSGDVKDAGASVVAYAGYCAAREDGDSAKAAEILASISDYNEYDCLSTLRLRDWLLGLRSSQNGHSTAPAAGPGTAASNAATGTAGSHAAPSSTSTGTAGKPDGGPTVALPPALSEAVSIAEAEPTPEEIRLRDYLALLPDNRPWTPDEQAIAMVAAATGYHRRERKQFWWEHFDRTESEIDHWSDHRNVFVVDTAEVLRDWALSGPKVRMQTRTLKLTGTMSEGSDFRPGSTWCRLYEAPLPDGMDESQGSPTARGYTFGTLVTDVQDHPDIPGRTIITIEEKETGKVPAYPHIPVALTEDRPVPTASIEAALAELAEAVGALGPALPDHPGLDILRKLPPRFRSLPGPAAVGPDSAGAADYVAAITTSLRDLDHSYLAVQGPPGTGKTYVGSHVIARLVDAGWKIGVVGQSHAVVENMLCTAIETAGVNPARVAKKLSTPHDVLWHRTSDDDVAALLDSPGGCLVGGTAWTMTGKCVPAGSLDLLVIDEAGQFSLANTLAVARSAKRLLLLGDPQQLPQVTQGSHPEPVDESALGWLAAGNATLPGELGYFLADSWRMHPELCRSVSLLSYDGKLEYAPAASSRSLAELPPGVETVFVDHTGNTTCSPEEAAEVVRQAQRHIGLKWLPGGDQPARPLSPEDVLVVAAYNAQVQLIRHTLEQAGLGGVRVGTVDKFQGQQAPVVLVSMACSAVAEAPRGAEFLLNRNRINVAISRAQWRAVIVRSPELTNYMPARPRALEELGAFIGLSPRSAPRPPKNANANANANA
D1-29_010321197COG0861putative membrane proteinATGGAAGTATCTTCGTTCGTTTGGACCCTGACAGTTGTGGGCATCATCGGGCTGCTCGCCTTCGACTTCTTCTTTCATGTGCGGAAGGCCCACACACCCTCTTTGCAGGAATCGGCCGTCTGGTCCGGCATCTATGTGGGGATCGCACTGCTTTTCGGCCTGGGAGTGCTGTGGCTCGGCGGCCCCACCCTGGGCACGGAGTATTTCGCGGGCTACATCACGGAGAAGGCCCTGTCGGTGGACAACCTCTTTGTCTTCCTGATCATCATGGCCAGCTTCCGGGTGCCGCGGGCTGACCAGCAAAAGGTGCTGCTGTTCGGCATCGTCTTCTCCCTCATTGCCCGCACCGCTTTCATCCTGCTGGGCGCGGCGCTGATCAACAGCTTCGCCTGGGTGTTCTACATTTTCGGCCTGATTCTGCTGATCACCGCCGGCAACCTGCTGAAGCCTGACGGCCACGACGAAGAGTCCGAGGGCCTGGTGGTCCGGCTCGCCAGGCGCTTCCTGCCGGCGTCGGAGCATTACGACGGCGACAAGCTGTTCACCGTGGAAAACGGCAAACGCGTCCTCACGCCCATGCTCCTGGTGATGGTTGCCATTGGCGGGACCGACATCCTGTTCGCGCTGGACTCCATCCCGGCCATCTTTGGCCTGACCCAGAACGTGTATATCGTCTTCACCGCCACGGTGTTTTCTCTGCTGGGCCTGCGCCAACTGTTCTTCCTGATCGACGGCCTCCTGGACCGCCTCATCTTCCTCTCGTACGGCCTCGCCACCATTCTGGGCTTTATTGGGGTGAAGCTCATCCTGCACGCGCTGCACGAGAACAACCTGCCCTTCATCAACGACGGCGAGCATGTCAACGTGGTGGAGGTGAGCACGGAGGCCTCGCTGATGGTGATCCTTGGCGTCCTGGTTGTCACCATCCTGGCGTCCGTCTTCAGCCCCAAGGGCAAGGCCAAGAACGCCGTATCCGGGGCGAAGCGTCACGCCAACGAATACCTGGACCTCAACTACGAAACGAATATGGCCGAGAGGGACAAGATCTTCGCCAGGATGTGCTGGGAAGAGGACCAGATCCGCAAGCTCCCCGAGAAGTACAAGCGGCTCATCCGCAACGAGACCGAGTTCATGAACCTGCTCCGGAGTGCCCATGCGGCGCATGACAAGGCCCAGGTGAGGGCCGGGCAGAGCTAGMEVSSFVWTLTVVGIIGLLAFDFFFHVRKAHTPSLQESAVWSGIYVGIALLFGLGVLWLGGPTLGTEYFAGYITEKALSVDNLFVFLIIMASFRVPRADQQKVLLFGIVFSLIARTAFILLGAALINSFAWVFYIFGLILLITAGNLLKPDGHDEESEGLVVRLARRFLPASEHYDGDKLFTVENGKRVLTPMLLVMVAIGGTDILFALDSIPAIFGLTQNVYIVFTATVFSLLGLRQLFFLIDGLLDRLIFLSYGLATILGFIGVKLILHALHENNLPFINDGEHVNVVEVSTEASLMVILGVLVVTILASVFSPKGKAKNAVSGAKRHANEYLDLNYETNMAERDKIFARMCWEEDQIRKLPEKYKRLIRNETEFMNLLRSAHAAHDKAQVRAGQSPGPT0004905_79DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
D1-29_01033327cmtRCOG0640HTH-type transcriptional regulator CmtRATGGAAACGCTCACCCAAGCACCCGTGCTGGCCAGGTTCGGCTATGCCGTGTCAGACCCCACCCGCGCCCGGATCCTCCTGGCCCTTTCAGAAGCTCCGTCCTATCCTTCGGATCTGGCTGATTCTCTTGGGGTGTCGCGGCAGAGTATGTCCAACCATCTGACGTGCCTGCGCGGCTGCGGCCTGGTTGTTGCGGTTCCGGATGGGCGGCGGAGTCTGTATGAGCTGGCAGATGCCCGGCTGGGCCACGCCATCAAAGACCTGATCGGCGTCGTCCTTGCAGTGGATCCTGCATGTTGCGCCCCGGACGGGACATGCTTGGCATGAMETLTQAPVLARFGYAVSDPTRARILLALSEAPSYPSDLADSLGVSRQSMSNHLTCLRGCGLVVAVPDGRRSLYELADARLGHAIKDLIGVVLAVDPACCAPDGTCLAPGPT0004390_627DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004390-cmtR-K21885NANA
D1-29_01034846hypothetical proteinATGCTTGGCATGACCACGTTGCTTTACACAACAAATCCGGATCGCCGCGCGGTGCTGAGCCGGAGGATCAGGTTATTCGCGGCCGCAACCATCACGTACAACGTCATCGAAGCTGTTGTAGCTCTGTGGGCGGGCGGCGTTGCAGACTCTTCGGCGCTGATCGGCTTCGGCTTGGACTCGATTGTCGAGGTGGCTTCGGCTGTGGCGTTGTCGTGGCAGTTCTCAGCCAAGGACCCGGAACGTCGCGAGCACCTGACCTTGCGTATCATCGCCATTTCCTTCTTTGCGTTGGCTGCATTCGTAACAGTCGACGCCGTCCGGTCACTTATGGGCGCAGGAGCGGCGCAGCATTCAACGCCGGGCATAGTAATCGCGGCTTTGAGCTTGGCGATCATGCCTGTCCTGTCATGGGCGCAGCGCCGCGCCGGGCGGGAGCTTGGGTCCAGCACGGCAGTGGCCGATTCCAAGCAGACACTGCTCTGCACATACCTTTCCGCAGTCCTGTTGATCGGTCTGGTTCTGAACAGCACCTTGGATTGGTGGTGGGCCGACGCCGGCGCGGCACTGGTGATCGCAGGCATCGCCGTCCGGGAAGGGCTCGAAGCATGGAAGGGGCAATCCTGCTGCACTATCCCGCACGCCATGAATGGCCACACAGAAGATGATGACTGCTGTGCGCCCATTGAGAACATCTCATCCGCATCCGCTCTTAAAGGAGCGGAAGGAGCGGAAGAGGCAAAGGAGGCAGGCGAACAGTCTGCGGATTCCTGCTGTGCAGGGTGTGGATCAGAGGCCTTGGCTGAGCCTGTCACCGTTGACCTCGGAACCAGGCCGGCCGATCGATGAMLGMTTLLYTTNPDRRAVLSRRIRLFAAATITYNVIEAVVALWAGGVADSSALIGFGLDSIVEVASAVALSWQFSAKDPERREHLTLRIIAISFFALAAFVTVDAVRSLMGAGAAQHSTPGIVIAALSLAIMPVLSWAQRRAGRELGSSTAVADSKQTLLCTYLSAVLLIGLVLNSTLDWWWADAGAALVIAGIAVREGLEAWKGQSCCTIPHAMNGHTEDDDCCAPIENISSASALKGAEGAEEAKEAGEQSADSCCAGCGSEALAEPVTVDLGTRPADRNANANANANA
D1-29_01035672hypothetical proteinATGAGCGCGGCCGTTACTGCCCGCAGGGTCCGCATCACGATCTGGATTCTGCTCGTTGCCATCGTTGGCGCCGGGGTGATCTGGTACGGCGTGCGGACCGCTAATGGGCCCGCTCCTGCCGCACCCCTGGCGGCTGACGCCCACGTCATGAGGGAAGACAGCCACCGGGTCACGAGACCGGCCACAGAGAAGGCCCAGCTTGTCGAGTTCCTGGACTTCGAGTGCGAATCGTGCCGCGCTGCCGAGCCCTTGATAGAGGAACTGAAAAAGGAATACGGGGACCGGATTACTTTCGTCCACCGCTACTTCCCCCTCCCTGGCCACCGGAACTCCGGCACCGCAGCCTTGGCCGCGGAGGCTGCCGCCCAGCAGGGCAGCTATGAGGCGATGACTGCCAAGCTGTTCGAGACCCAGCCACAGTGGGGCGAGAAGCAGGACCCCCAGGCAGCACTGTTCAGGACCTTCGCCCAGGAACTCGGGCTGGACATGGCCGCGTATGATGCCGCAGTGGCGGATCAGGCCACCAAGGACCGCATCAGCCAGGACGTTGCGGACGGAAAAGCCCTCGGAGTCACCGGCACTCCCACCTTCTTCCTTGACGGAAAGAAGCTCACCCTTAACACCGAAGCCCAGTTCCGTCAGCTGCTCGACAACGCCGCTGGCCCGAAGTAGMSAAVTARRVRITIWILLVAIVGAGVIWYGVRTANGPAPAAPLAADAHVMREDSHRVTRPATEKAQLVEFLDFECESCRAAEPLIEELKKEYGDRITFVHRYFPLPGHRNSGTAALAAEAAAQQGSYEAMTAKLFETQPQWGEKQDPQAALFRTFAQELGLDMAAYDAAVADQATKDRISQDVADGKALGVTGTPTFFLDGKKLTLNTEAQFRQLLDNAAGPKNANANANANA
D1-29_010361788deaD_2ATP-dependent RNA helicase DeaDATGTCCGAGAACCCTGCCCTGTCCGCCGCACTGAGTACACTCGCCGCTTCCGCTTTTTCCCTCGGGCACCTCCAACACGGCCAACTGGCCGGGATGGAAGCGCTGGCCCGTGGGCGGGACGTTCTGGCGGTGATGCCCACCGGCTACGGGAAGTCCGCCATCTATCAAGTGGCCGCGGTGCACCTGCACCGGCAGGCGGGACGTCCCGCCGTCGTGGTTTCACCGCTTATTGCCCTGCAGGAGGACCAGCGGGACGGCCTAGAGGAATCCCTGGGCCCGGATGCCGCCGTCGTTATCAACTCCTCCCGCACCGATTCGGAGGTGGAGGAAGCGTGGCAGGCAGTGGAGGCGGGCACGGCCGCGATGGTGTTCCTGGCTCCGGAGCAGCTGGCCAAGCAGGAAACCGTAGAACGGCTCGCATCCCTGGACATAGCGCTTTTTGTGGTGGACGAGGCGCATTGCGTCTCCGCCTGGGGACACGATTTCCGGCCCGACTACCTTGGCCTTGGTAGCGTCCGCGAGCGCCTGGGCAATCCCCCGGTGGCCGCACTCACCGCCACCGCCTCTCCCCCGGTGCGGGAGGAGATCATCCGGCGGCTGGGCATGACGGATCCGCTTGTCCTGGTCCACGGCTTCGACCGGCCCAACATCAGCCTGGCCGTGCTCCGGCACCATGAGGACAAGGACAAGCGCCGCGCGGTAGTGGAACAGGCAAGCGAACTGGTCAGGGAAGAAGGCGGGCAGCACGGGCTCCTGTATGCCGCAACCCGCAAGGACACCGAGAAGTACGCCGCGAAGCTGGCCAAGAACGGGGTGCGGGCGCAGGCCTATCATTCGGGCCGCACCGCGGCAGACCGCGAGGCCATCCACCAACAGTTCATGAACGATGAACTGGACCTGGTGGTGGCCACCACGGCCTTCGGGATGGGGATCGACAAGCCCAATGTCCGCTTTGTCCTCCATGCGGACATCCCGGAGTCGCTGGATGCCTACTACCAGGAGATTGGCCGCTGCGGCCGGGACGGCCAGCCGGCCTCCGCGGTCCTGCACTACCGCGCAGAGGACTTGGGCCTGCGGAAATTCTTTGCCGCCCAGGTGCCGGACGAGGAGTCACTGCTGGCCCTGCTCAAAATCCTGCGCGCTGCTGACGGGCCGGTGCCCAGGACGTCCCTTGCCGAGATCACGGGATTCCCGGCCCGGCGGGTCACAGCACTGCTGAACCAGCTCCAGGAGGCAGGCGCCCTCAAGACCGGCAAGCGCGGTGTCCGGCTCACGTCCAAGGCCAAGCTGCCCGCAGTGGTGCGGGACGCCGTCGAACTGGCCGAAGCACGGCAGCGCGTTGACCAGTCACGGATCAACATGATGCGCGGCTACGCCGAGACCAGTGGCTGCCGGCGGCAGTTCCTGCTGGGCTACTTCGGCGAAGATCTCCCCGGGGCGTGTGGCAACTGCGACAACTGCCAGGCCTCGCCCGCGGACTCGGTCCGGGACCTGGACCAGGGCTGGGAAAGGGGCAGGGAAAGGGGCTGGGACGGGGAGCGGGAAAGGATCGACGACGGCGGGGCGGCTCCTGGCGCGGCTGCCGCGGCCTCTGATTCTGGCGCCTCCGATGCCGGTGCCGATCCTGCGCCGTTTCCGGTGCAGTCGTCTGTGACCCACAAGAAATGGGGGCCGGGGCTGGTGATGCGTTCCGAGGCCGACGTGATTACCGTGCTGTTCGAGCAGGAGGGCTATAAAACGTTGTCACTCAAGGCCGTGGCGAAGAAGAAGCTCCTGCGGCAGAACTGAMSENPALSAALSTLAASAFSLGHLQHGQLAGMEALARGRDVLAVMPTGYGKSAIYQVAAVHLHRQAGRPAVVVSPLIALQEDQRDGLEESLGPDAAVVINSSRTDSEVEEAWQAVEAGTAAMVFLAPEQLAKQETVERLASLDIALFVVDEAHCVSAWGHDFRPDYLGLGSVRERLGNPPVAALTATASPPVREEIIRRLGMTDPLVLVHGFDRPNISLAVLRHHEDKDKRRAVVEQASELVREEGGQHGLLYAATRKDTEKYAAKLAKNGVRAQAYHSGRTAADREAIHQQFMNDELDLVVATTAFGMGIDKPNVRFVLHADIPESLDAYYQEIGRCGRDGQPASAVLHYRAEDLGLRKFFAAQVPDEESLLALLKILRAADGPVPRTSLAEITGFPARRVTALLNQLQEAGALKTGKRGVRLTSKAKLPAVVRDAVELAEARQRVDQSRINMMRGYAETSGCRRQFLLGYFGEDLPGACGNCDNCQASPADSVRDLDQGWERGRERGWDGERERIDDGGAAPGAAAAASDSGASDAGADPAPFPVQSSVTHKKWGPGLVMRSEADVITVLFEQEGYKTLSLKAVAKKKLLRQNNANANANANA
D1-29_010372328COG0243putative oxidoreductaseGTGGCGCGCAAGAACCCGCGGGTTGAAGAGGCTGACGAGTCAAAGCTGGAAGTCAAAGGCCACCCGAAGACGTGGGCTGCCGGGATCCCCGGCGTTTATCACTCCATGAAACCCGCCCTGGAACATATGGGGCCGGACCGGACCCGGAAAACCCTCCTGGCGCTGAACCAGAAGGACGGCTTCGACTGCATGAGTTGCGCCTGGCCTGATCCGGGGCACCGCAAGACGTTCGAATTTTGCGAGAACGGCGCCAAGGCAGTCACCTGGGAAGCCACGCCGGTGGTGATCGGCTCTGAATTCTGGGCCGAACATCCTGTCAGCGAGCTGCGGGAGAGGTCGGAGTACTGGCTGGGGATGCAGGGCCGCCTCACGGAACCGGTGTACAAGGCGGCGGGGGAGGACCACTACCGTCCCGTCAGCTGGGACCAGGCGTTCACCATCGTCGCGGATAAGCTGAACGGACTGGCCAGCCCCGATGAGGCCACGTTCTATACAAGCGGCAGGACCTCCAACGAGGCCGCGTTCCTGTACCAGCTGTTCGTCCGGGGATACGGAACCAACAACCTGCCGGACTGTTCCAACATGTGCCACGAATCCTCAGGCTGGGCGATGGGCCAGACCATCGGCATCGGCAAGGCCACCATCTCCTATGACGATTTCGCCATGGCGGACCTGATCATCATCATGGGCCAGAACCCCGGCACCAACCACCCGCGGATGCTGACCGCACTGGAAGAGGCCAAGGAGGCCGGGGCCAGCATTGTGGCGGTGAATCCGCTGCCGGAGGCCGGGCTGATGCGGTACAAGAACCCGCAGAAGGTCAAGGGCATCGTGGGCCGGGGAACCGACCTGGCCGACCAATTTATGCAGGTCCGGATCGGCGGGGACATGGCGCTGCTGCAGGCGGTCTCCAAGCGCGTGCTCGAGGCCGAGGCCAGGAACCCCGGAACCGTGCTGGACCATCAATTCCTGGCCGAACACTGCCAGGGGCTGGCCGAGCTGCAGGCCCACCTTGCGGACCTGGATGAGGCCGCCGTCCTGGAGGCCACCGGGCTGCGGGTGGAAGAGATCGACGAGCTGGCGGACCGCTACCTCAAGGCAGAGAAGGTGATCATCACCTGGGCCATGGGCATCACGCAGCAGAAAAAGGGCGTGGCCACCATCAAGGAGATCATCAACCTGCTGCTGCTCCGCGGAAACATGGGCAAGCCCGGGGCCGGCGCCTCGCCCATTCGCGGGCACAGCAATGTCCAGGGCGACCGCACCATGGGCATCTGGGAGCAGATGCCGCCGGCGTTCCTGGACGCGCTGAGCAGGGAGTTCAGCTTTGACGCGCCCCGCACGCACGGCGCCGATTCTGTGGAAACCATCCGGAAAATGCGCGACGGCGGGATCAAGGTTTTCGTCGGACTGGGCGGCAACCTGGTGGGAGCCATTTCAGACACGCAGGCCGCCTGGGCGGCCATGCAAAACACCGACCTGTCCGTCCAGATCTCCACCAAGCTCAACCGGTCCCATACCGTCACCGGAGCAGAGGCCCTGATCCTGCCCACCCTGGGCCGGACGGAAATCGACCTGCAGGAATCGGGACCGCAGTTTGTGTCCGTCGAGGACACCGTCTGCGCGGTCCACCCCTCGCACGGAACGGTCAAGCCGGTGGCGCCAGGGCTGCTGTCCGAGGTGGCTATCGTCAGCAGGCTGGCCCAGAGGGTGCTGGGTGATTCCATCCAGGCTGACTGGGCCGGCTTCGAAAAGAACTACGACCTCATCCGTGACCACATTTCCCACGTGGTGAACGGCTGCGAGGACTATAACCGGAAGATCCGCCAGGAGGGCGGCTTTGTCCTGCCCAACGGGCCCAGGGACTCCCGCACGTTCAACACCCCCACGGGAAAGGCCATGCTCACGGTCAACCAGCTCGAGCATGTGGAGCGGCCGGCGGGCACCCTGATCCTGCAGAGCATGCGCTCCCATGACCAGTTCAACACCACCATCTACGGTCACAACGACCGGTACCGCGGCATCAAAAAGGGCCGCGAGGTGGTGTTTGTCAGCCCGAAGGACCTCGCTGAACTGGGGCTCCACGACGGCCAGTACGTGGACATCCACGGGGTGCACCACGACAACGTGGAACGGGTGCTGAGGAACTTCCGGGTGGTGTCGTACCCCACAGCCGTAGGCTGCGCGGCCGCCTACTATCCGGAGGCCAACGTACTGGTCCCGCTGGACAGTTTTGCCGAGGGAAGCCAGACGCCGGTGTCCAAGGCGGTGATCGTGCGGCTGGAGCCGGCGAGGGAACATGCTGGGGAGCCGGCGGCGGCAGGCTAAMARKNPRVEEADESKLEVKGHPKTWAAGIPGVYHSMKPALEHMGPDRTRKTLLALNQKDGFDCMSCAWPDPGHRKTFEFCENGAKAVTWEATPVVIGSEFWAEHPVSELRERSEYWLGMQGRLTEPVYKAAGEDHYRPVSWDQAFTIVADKLNGLASPDEATFYTSGRTSNEAAFLYQLFVRGYGTNNLPDCSNMCHESSGWAMGQTIGIGKATISYDDFAMADLIIIMGQNPGTNHPRMLTALEEAKEAGASIVAVNPLPEAGLMRYKNPQKVKGIVGRGTDLADQFMQVRIGGDMALLQAVSKRVLEAEARNPGTVLDHQFLAEHCQGLAELQAHLADLDEAAVLEATGLRVEEIDELADRYLKAEKVIITWAMGITQQKKGVATIKEIINLLLLRGNMGKPGAGASPIRGHSNVQGDRTMGIWEQMPPAFLDALSREFSFDAPRTHGADSVETIRKMRDGGIKVFVGLGGNLVGAISDTQAAWAAMQNTDLSVQISTKLNRSHTVTGAEALILPTLGRTEIDLQESGPQFVSVEDTVCAVHPSHGTVKPVAPGLLSEVAIVSRLAQRVLGDSIQADWAGFEKNYDLIRDHISHVVNGCEDYNRKIRQEGGFVLPNGPRDSRTFNTPTGKAMLTVNQLEHVERPAGTLILQSMRSHDQFNTTIYGHNDRYRGIKKGREVVFVSPKDLAELGLHDGQYVDIHGVHHDNVERVLRNFRVVSYPTAVGCAAAYYPEANVLVPLDSFAEGSQTPVSKAVIVRLEPAREHAGEPAAAGPGPT0019635_3103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123NANA
D1-29_010382199hypothetical proteinATGGCTGGATGGAATGCTGACACTTCTGCGGGGCCCTTGGGGGGCGGGACGGTTACTTTGGTGGAGGGATCGTCCTTTTGTATCTCCTTGCCAAACGGGGATATCGAATCCGAGCACCCGCATGGTGTTTTTGTGCGGGACAGCCGGATCCTTTCCGGCTGGCGCCTCACCATCAACGGGCACGAGATTGAGCCCCTGGTGGCGGAGGCCAAAGAACCGTTCCGTGCCCTGTTGGTAGGCCGGGCCATCCGTACCGACGGCTATGCGGACAGCCCGCTGATTGTCGAGCGGCTGCGGGAGGTGGGCGCGGGCATCCAGGAACAGCTCACCGTCCGCAACTATTCGCCCGCCCCTGCAGAATGCCTGATCTCGCTGACGGTTGAGGCGGATTTCGCTGATCTCTTTGAGGTGAAGGAGGCGCGGATCCATCGCCAGTGGGAAGAAACCCGGGAGGTGGACGGGGACACGTTGATCCTCCGGTCGGTTTGGCAGGGTGTCCGGAAAGGCATCCGCGTCCAGGCTCCGGGGGCACACTTCACGGAGGAGGCGTTGACCTACCGCGTGACCATCGCCGCCCACGCGCAGTGGAGCACCATCGTCACCGTAGTCCCCACTGATGACACCCCAAGTCCGCCGCCGCCGTCGTTCGTTCATCCGGACGAGGAAGGATTGTCCCCCCGCGACGTGCGCCGGCAGGAATGGGTGGCCAAGATTCCCGTACTGCACATGGGCAACCGGTCCATCGAACGGACGCTGCGGCGCAGTTACGACGATCTGGGTGCGCTCCGGATCGAGGATCCCAATCATCCGGAGCGTGTGGTGGTGGCCGCCGGCGCACCCTGGTTCATGACGCTCTTTGGCCGAGACTCGCTGTTGGCAGCGGAAATGGCATTGCCGGTGGATCCCTCCCTTGCCCTGGGCACGCTGCAGACGCTCGCGGACCGGCAAGGCAGGGTGGTGGATCCGATGAGCGAGGAGGAACCGGGCAAAATCCTGCACGAGGTCAGGCTCGACGTCTCCAGCGGGCTGTCGCTGGGCGGAAAGTCCGTCTACTACGGCAGCGTGGACGCCACCCCGCTGTTTGTGGTGGTGCTCGGCTCTGCCAGCCGCTACGGATTCTTCGCAGAAACCATCGCCGCCCTGATGCCCCATGCCGACCGGGCGCTGGACTGGATCAGCGAGTACGGGGACAAGGACGGGGACGGGTTCGTGGAGTACGAACGGCTCAATCCGGAGGGGCTCATTAACCAGGGCTGGAAGGATTCCTGGGACGGCATCAACTTCGCCGACGGCACCATGGCCGAGGGCCCGATCGCTCTCTGCGAGGTGCAGGGCTACGTTCACGCGGCCTACACCGCGCGCGCCTGGATGGCCTACGACGCCGGCGACACAGCCACGGCCACCCACTACGCCGACAAGGCGGCGCAGCTCAAGAAGCAGTTCAACGAGCAGTTCTGGATGCCGGACCGCGGATACTACGCAATCGCCCTGGACGGCCGGAAGCGCCAGGTGGACGCCTGCGCTTCCAATATGGGCCACTGCCTGGTGTATGGCCTTGTCGACGAGGACAAAGCACCGCAAGTGGTGGAACGCCTGATGTCTCCGGAGATGTTCAGCGGATGGGGGATACGCACGCTGGCAAGCGACATGGGCGCCTACAACCCGGCCAGCTACCACAACGGGTCGGTCTGGCCGCATGACAATGCGCTGATCGCCAGCGGCCTGCTGCGGTACGGGTTCATCGCCGAAGCGCAGCGCATTTCCACTGCCCTGCTGGAGGCCGCCGAGTATTCCGGCGGCCGGCTGCCGGAGCTGTTCTGCGGCTTCAGCCGGGACCAGATCGCCGAACCGGTGCCGTATCCCACCGCCTGCTCGCCCCAGGCCTGGGCAGCCACCACACCCATCAGGCTGGTGACCAGCCTGATGCGGTACGACACCCATGTTTCCCTGGGCGGCGTATGGGTGGATCCTGTCCTGCCGGAGTCCTACGGCGACCTGCACATCAGCAACGCACCCCTGGCGGGTGGCCGGATCACCATCGACATCTCCAACTCAAAGCCGTCCGTCCAGGGCCTTCCCGAAGGGTTGGAACTGCGCCAGGGACGACGCCCATATTTGACGCAGCTGGTGGAGGAAGCGGGGCTTGACCGTGAGGCGAACCGCAGCTGGATGGCATCCGGACGGAGCGGCTCGCCCTAGMAGWNADTSAGPLGGGTVTLVEGSSFCISLPNGDIESEHPHGVFVRDSRILSGWRLTINGHEIEPLVAEAKEPFRALLVGRAIRTDGYADSPLIVERLREVGAGIQEQLTVRNYSPAPAECLISLTVEADFADLFEVKEARIHRQWEETREVDGDTLILRSVWQGVRKGIRVQAPGAHFTEEALTYRVTIAAHAQWSTIVTVVPTDDTPSPPPPSFVHPDEEGLSPRDVRRQEWVAKIPVLHMGNRSIERTLRRSYDDLGALRIEDPNHPERVVVAAGAPWFMTLFGRDSLLAAEMALPVDPSLALGTLQTLADRQGRVVDPMSEEEPGKILHEVRLDVSSGLSLGGKSVYYGSVDATPLFVVVLGSASRYGFFAETIAALMPHADRALDWISEYGDKDGDGFVEYERLNPEGLINQGWKDSWDGINFADGTMAEGPIALCEVQGYVHAAYTARAWMAYDAGDTATATHYADKAAQLKKQFNEQFWMPDRGYYAIALDGRKRQVDACASNMGHCLVYGLVDEDKAPQVVERLMSPEMFSGWGIRTLASDMGAYNPASYHNGSVWPHDNALIASGLLRYGFIAEAQRISTALLEAAEYSGGRLPELFCGFSRDQIAEPVPYPTACSPQAWAATTPIRLVTSLMRYDTHVSLGGVWVDPVLPESYGDLHISNAPLAGGRITIDISNSKPSVQGLPEGLELRQGRRPYLTQLVEEAGLDREANRSWMASGRSGSPNANANANANA
D1-29_01039444hypothetical proteinATGCCAATTGTTCGAGAGGGACTTCCAGAAGACGTGCCCGGCCTGGCCGGACTGCGGGCAACGTGGGCCGCCGAGCAGGACCCGGGTTCCGCGGAGGATCCGGATTTCGAGGCCGCCTTCCGTGATTGGGCGGACGCCAACCCGCGCAAGGTGTTTGTGGCCGAGCAGGATGGCGAGCTGATCGGCATGCTGAACCTGATGATCTTCCAGCGGATGCCCAAGCCGAGGAAGGAAGCCTCGTGCTGGGTCTACCTGGGCAACGTCTACGTCCTGCCGCAGCACCGGAACGCCGGCATCGGACGCCGCCTGGTGGAAGCGTCCGTCGACTTTGCACAAAGCATCGGAGCGGCACGGATGGTCCTGTCACCTTCCGCCGACTCCCGCAGCTTTTACTCGCGTTTGGGCTTCCAGCCGGCCGAAGAACTGGACATTCGAAAGTTCTGAMPIVREGLPEDVPGLAGLRATWAAEQDPGSAEDPDFEAAFRDWADANPRKVFVAEQDGELIGMLNLMIFQRMPKPRKEASCWVYLGNVYVLPQHRNAGIGRRLVEASVDFAQSIGAARMVLSPSADSRSFYSRLGFQPAEELDIRKFNANANANANA
D1-29_01040330hypothetical proteinATGGCAGCCGACAACGACGAACTGCGCATCCTGGACGAGTGGAGCCAGAGGCTGGCCCAGGCGCTGCAGATCCTGGACCTTGAAGTGGACCAGGATCTGCTCCTGGAACTCGCCCGGAAATCCGCAGCCTCCGTGATTCACGCGGCCGCTCCGGTGACCACGTTTATGGTTGGCTACGCGGCCGGCCTCGAGGCAGGAACGGGCAGTGCCGGGTCCACAGCCTCTTCCGCTGCTGCAGTCTCCAAGGCAGCCGACGTCGCGTTCCAGCTTTGCGGGGACGGGGCCGACGGCGGTCCGGCCAGCAAGGGCTGGGCGGACACCGCGCAGTAAMAADNDELRILDEWSQRLAQALQILDLEVDQDLLLELARKSAASVIHAAAPVTTFMVGYAAGLEAGTGSAGSTASSAAAVSKAADVAFQLCGDGADGGPASKGWADTAQNANANANANA
D1-29_01041351hypothetical proteinATGAGTGATATCACTATCCGCCACAACCCGGACCGGGAGCGCTTTGAAGTGCTGGACTCCGGCAATGTGATTGGCAAGGCCGCGTACAAAGAGTACGACGGCGGCGCCTCACCCCAGCGGATCTTCTATCACACCGTGATCAACGAGGAATACGGTGGCCAGGGCCTGGCAGGCAAGCTCGCCACCGTGGCCCTGGATGAAACCGTCGAGGCAGGCATCGCCATTGTCCCCGTGTGCCCGTTCATCAAGAAGTTCCTCACCAAGCATCCTGAGTACTCCGCCAGCACCGTTGCCACCACGCCGGCGCACCTTGAGTTCCTGAACGATCCTTCTCCGCGCGCGCGGGCATAAMSDITIRHNPDRERFEVLDSGNVIGKAAYKEYDGGASPQRIFYHTVINEEYGGQGLAGKLATVALDETVEAGIAIVPVCPFIKKFLTKHPEYSASTVATTPAHLEFLNDPSPRARANANANANANA
D1-29_01042399hypothetical proteinATGAAACGCCGTCCCGATCCGGAGAACGTTCGTCAGATAATTGCGGTCTTGCTCGCAGCAGCCACGTCCGTGGCCCTCTTGCTGGTCCCTATAGTCACGCATGCAAAATTGACGACTGGCGGGGTTGAACACATTAGATACTTGACCCTGCTGGAGAGAGAAGGGCCCTCAGTTTTCGTGCCATTGCTCATTCCGGTGATCCTGACAGCGGTACCTCTCCTGCTAAGGCCGCGCGCACGGTTGTACGTGTCCCTCGCGACCACTGTTGCTCTTACTGTGTTCATATTCATCGGCTCCGCAAGCATCGGTTACTTCTACCTGCCAGCACTGACCGCTGCCATAGCCGCCCTTGTTGCCCATCCCAGCAGCCGCGGAAGGTTCCAGGCTCACCATTCGTAAMKRRPDPENVRQIIAVLLAAATSVALLLVPIVTHAKLTTGGVEHIRYLTLLEREGPSVFVPLLIPVILTAVPLLLRPRARLYVSLATTVALTVFIFIGSASIGYFYLPALTAAIAALVAHPSSRGRFQAHHSNANANANANA
D1-29_010431077hypothetical proteinATGGTGTGGTTAGTCGGTACGTCTGGGGTGGGCAAGTCAACCATCGGCTGGCATCTTCAGCAGGCGCTGGAGCATAAGAACGTTCCTGCGGCCTTCGTGGATGCCGACCAACTGAGGAACGCCGCAGGAGTCGAGTCGAGTGAGGACGATTTCATCGCCGATGGGCTTGCGGTGGTTGGGCCGATCTTCCAACGCGCTGGAGCGACCGTCTTAATCGTGGCAGGCATGGTCGACGACGCAGATCACCTCGCGCGCTTGCTGCCAGTCGGCGGGCGTCCGCATGTTCTCGTTGTTCATCTGCGCGCCTCCGACGAGACGATTGTGGACCGCGTCGAGCGGCGTAGGTGGAACGTGGAGCTCGCAGCCGATTCTGTCGACTATGCCCACCGCTTCGACGCGAGCTGGGTGGACGTATCGGTCGACACAACCGATACGTCGCCTTCCGAGGTCATCGAGAGCTTGCTCGAACACGTGGAGCGTCTGGCCCGCCGAGAGCGCCTCGACACGCCGCCGGCTGTCCCATCCGTTATCGATGCCGAGCCCGCGGTGACTCTTATAACGGGCGCTGGAGGTATCGGGCTGTCGACAACGGGTTTCCTCGCCTTCCTGCAGCGCATGTGGTCCGGCGAACGGATCGGGTACATCGACAGCCACCAACTCGGCTTCGTGGGGGCGGACCCCCACGCGCCAGAGGCCGCGCCGCTACGCGCTGCCAACTCGGCTGCCCTCGCGGCTGTGATGGCCCGTCGCGGGATCGGGCACGTAATAATAACCGCGGATCCACAGACGGCGCGTGCGGTCACCGCTATCGCGCAGCCTGCGCACCTATACTGGCTCGATGCATCAGACGAAGTGATCGAATCCCGTCATCGCGTCCGGGCGGAGGGAGGGGGACCCCCTCTCGCCGGCGATCACCGCCTGGGACTCGACGACCTGAGCATCCGAGCGGCGGTGGCTGCGGCAATCATTGAGGCCCGCGATGAAGCACTCCGGCCCAACGGTGCCACAATCATCAATACCGACGGACTCTCGGCGGAAGAAGTCGCTCAGCAGATCAATTCGGCGGAGTTTGTGTAGMVWLVGTSGVGKSTIGWHLQQALEHKNVPAAFVDADQLRNAAGVESSEDDFIADGLAVVGPIFQRAGATVLIVAGMVDDADHLARLLPVGGRPHVLVVHLRASDETIVDRVERRRWNVELAADSVDYAHRFDASWVDVSVDTTDTSPSEVIESLLEHVERLARRERLDTPPAVPSVIDAEPAVTLITGAGGIGLSTTGFLAFLQRMWSGERIGYIDSHQLGFVGADPHAPEAAPLRAANSAALAAVMARRGIGHVIITADPQTARAVTAIAQPAHLYWLDASDEVIESRHRVRAEGGGPPLAGDHRLGLDDLSIRAAVAAAIIEARDEALRPNGATIINTDGLSAEEVAQQINSAEFVNANANANANA
D1-29_01044603hypothetical proteinGTGACCGCAAAGAAGGACTCACATCACGTCCACGATGAACCTCGCGAAGGCGATTGGCGGGCAGCGCGAGCATTGCTGCTCAACGGCTCGTCCGGCGTCGGCAAGTCCAGTGCGCTTCAGGCACTCGGTGCCGCACTGGGAGAGCGAAGTGTCTCCCACGCTCTCGTCGATCTCGACGAGCTCGCGCTCTTCTGGCCGCGCCCGAGAGATGATCCCTGGGGCGGCCGTGCAGCTCGGGCGAACCTCGCCGCGGTCAGCAGCACATACTGGGCGGCGGGTGTTAAGCACATCGCCGTGGCGCACGTGTTCACTGACCGTGAGCACTTGGACGGATGTCGCGCCGCGCTATCGCAAGGTGTGGGTGCCCTGGATGCCGAAGCAGCACCGCTTGTGCGCTTACGTGCGTCCCGCACCACGGTTGAGGAACGGCTCCGTCGACGCCATGCGGTCGCAACGCCTTGGGAGCTCGAGAGGTTTCTTGCCGGCTATGAGAGTCTCACGCAAGCGCTCGATGAAGCGGCACTGGATGACGTCGTTGTCAACGTCGACGACCTGACACCCAGGGACGTCGCCGAGCGCATCGCTGATGTCGCCGGCTGGTGAMTAKKDSHHVHDEPREGDWRAARALLLNGSSGVGKSSALQALGAALGERSVSHALVDLDELALFWPRPRDDPWGGRAARANLAAVSSTYWAAGVKHIAVAHVFTDREHLDGCRAALSQGVGALDAEAAPLVRLRASRTTVEERLRRRHAVATPWELERFLAGYESLTQALDEAALDDVVVNVDDLTPRDVAERIADVAGWNANANANANA
D1-29_010451380mdtD_2Putative multidrug resistance protein MdtDGTGCACCAGACTGTTTCCGTGAGCAACAAACCCCGGACCGGTCTGGCGGTGGCAGGCCTCAGCCTGGGCACAGCGCTGAACCCGCTGAACTCGTCCATGATTGCCGTGGCGCTGGTGGTGCTGCGCGCCGATTTCGGCCTCGACGTCGCCACCGTCACCTGGGTGATCACGTCCTTCTACCTCAGCTCGGCAGCAGGGCAGCCGCTGATGGGCAGGCTGGCGGACAGGTTCGGGCCGCGCCGGATGTTCATGTTTGGCATGGCCCTGGTGGCGGTGACCTGTGCGGTTGCCCCCTTCTCACCCAACTTCGCCCTGTTGTGCGTGGCCCGCGCGGTGATGGCCCTCGGCACAGCCGCGGCCTACCCCAGCGCAATGGCGATGGTCGGTGCCATCGCCCAGCGGGCCAAGGTTGAGTCAGCCCGGCCACTGGGCCGGATCCAGATGGCCAACACGTCCGCGGCCGCCGTGGGCCCGGTGATCGGTGGGCTCCTGGTGGGCTTTGTGGGATGGGAAGCGTTGTTCATCATCAACGTCCCGCTGGCGCTCGCCGGCCTCCTGATCGTCCGGCAGGTGGCACCCGCAGATGGCGAGCGTGAACGCGGAAGCGTTGCCGAACTGGTGCGCGATTCGGACATCCCGGGCATCCTGGGCTTTGTTACGTCGCTGCTGCTGGCGATGATGGCCCTGCTGGATGCGGTGCCCGGCTACCGCTGGTGGATGCTGGGCGCCGGGACGGTGATTGCTGCACTGTTTGTCTGGCGCGAGTTCAGGTTCAGCACGCCCTTCCTGGACCTGCGGCTCCTTGGCCGGAACCGGCCCCTGGTGCTGGTGTACCTTGGCTTCGCAGTGTTCAACGGCGTCTACTACTTCGTGTTCTTCGGCCTTCCCCAGCTCCTGCAGGAAGCAGGCGGGTACGATCCCGGCCTGGTGGGACTGCTGATGCTGCCGCTGGCCACCATGTCCATCCTTTCCACGCCCTGGGCAGTGTGGGCCATGACAAAGTTCAGCGTGCGGCGGGTGCTGATTACCGGCGTCGTTCTTCTGATGGCAGTGGCTGCCCTGATGGGGCTTTTCACCGGCTCACTGGCCATCCCACTGGTGGCGGCGCTGACAGCGCTGATGGGTGTTCCGTACGCCATGGTCAGTATTGCCTTTAACCAGGGCATGTTTGTCTCCACCCGCCCCCAGGAGCGGGGCATTGCCGCAGGGATATTCCAGACCTGCCGCTACGTCGGGGCCATCGCCGCCACGGTGTTGATTGGCGTCTTCGCGGCCGGCGGCGTGGACGCTGCAAGCTGGGGCCAGATGGTGCTTGCCATGCTGGTGCTCTGCGTGCCGGTGTTCGTGGTGACGCTGCTGTGGCGGGAGCGGACCGGCTAGMHQTVSVSNKPRTGLAVAGLSLGTALNPLNSSMIAVALVVLRADFGLDVATVTWVITSFYLSSAAGQPLMGRLADRFGPRRMFMFGMALVAVTCAVAPFSPNFALLCVARAVMALGTAAAYPSAMAMVGAIAQRAKVESARPLGRIQMANTSAAAVGPVIGGLLVGFVGWEALFIINVPLALAGLLIVRQVAPADGERERGSVAELVRDSDIPGILGFVTSLLLAMMALLDAVPGYRWWMLGAGTVIAALFVWREFRFSTPFLDLRLLGRNRPLVLVYLGFAVFNGVYYFVFFGLPQLLQEAGGYDPGLVGLLMLPLATMSILSTPWAVWAMTKFSVRRVLITGVVLLMAVAALMGLFTGSLAIPLVAALTALMGVPYAMVSIAFNQGMFVSTRPQERGIAAGIFQTCRYVGAIAATVLIGVFAAGGVDAASWGQMVLAMLVLCVPVFVVTLLWRERTGNANANANANA
D1-29_010467695hypothetical proteinATGACACCGAGCGGTACCTGGCTACGGATGGCGTCAACCATCGCGGCCTTCTGCATCGCCTCCACACTGGTGATCGCGCCCGCGCAACCGGCGCTCGCTGTCACCCCCGAGGACGAAGCGGCCGTGCAGGCAGCCGCCGGCTCCCTCGCGGTCACCAACATCGGCGACGTCCGGGGAAACCTGACCTTGCCCACCTCCGGCCCGCAGGCGACAACCATCGCCTGGGCTTCCGAGGACACTGCGGTGGTGGACCCAAGCGGCATCGTTCACCGCCCCGCCACTGGCCAGCCGACTGACCAGGTCACGCTGACGGCGCTGATCACCAAGAACGACGCCGTGACCACCAAGGCGTTCACCGCCGTCGTCCCAGCCCTCCCGGAGACGCCGAAGTTCGAGGCGTACATGTTCCCCTACTTCACCGGCGACTCCATCGCGGGGGAGAAGATCTATTTCGGTGCCAGCAACGGCAATGACGCACGCAACTGGCTGACCCTCAACGGCGGCCAGCCCGTGAAGGCTTCCACGATGGGCACCAAGGGCCTGCGCGATCCGTTCATCGTCCGCTCGCCGGAGGGTGACAAGTTCTACATGATCGCCACAGACCTCTCGATCGGCAGCGGCACCACCTGGGATGCCTCGCAGCGCCAGGGCAGCCAGTACATGGAAATCTGGGAGTCCACCGACCTGGTCAACTGGTCCGAGCAGCGCCACGTGAAGGTGTCCCCGGACAACGCCGGCAACACCTGGGCTCCCGAGGCCTACTACGACCCCTCGCTGGGCGAATATGTGGTGTTCTGGGCGTCCAAGCTCTACAACACCGCGGACCACAGCGAGGGCCAGCCCAACCAGATGCTGTACGCCACCACGCGTGACTTCGTCACGTTCAGCCCAGCCAAGGTGTGGCAGAACACCGGTAAGTCCAGGATCGACAGCACGGTGATCGCCGAGAACGGCGTTTACCACCGGTTCACGAAGGACGAAGCCCAGTCCACCGGCTGCCTGGACATCATGCAGGAACACTCCACCAGCCTGACCGCCGTCACCACCGTTACGTCGGCCACCTCCGACACCTGGAAGCTTGACGCAACCTGCATCGGCAAGGGCGCCGGAACCGCTGCCGTCGAAGGCCCCACCGTGTTCAAGGCCAACGACGGCGACGTCAATGGCCCCGGCTACTACCTCTTTGTTGACGAGTTCGGCGGCCGCAAGTACATTCCGCTGTTCTCCAAGACCCTGCAGAACGCCAGCTGGTCCGTTCCCACCGGCTACTCGCTGCCGTCCCCGGCCCCGCGCCACGGCACCATCATGCCCATCACCGCGACAGAGCAGCGCGCCCTGATGGGTGCCTACCTGCCCGCCGCTACCAGCGTCGCACCCGTCAAAATCTCCACCGTGGTGGGCGCTCCTGCCGCGCTGCCCCGGACAGCAACGGTGACCTTCGCCGACAACAGCACCAGGGACCTCGCGGTGGCCTGGAACGCTGCGGCCCCCGCGGACTACTACACCCGCGAAGGCACCATCACGGTGACCGGTTCCGTCACCGGAACCGACCTGACGGCCACCGCCACGGTTTCGGTCATCCCGGCCGGCAGCGACACCCTGCTGCACTACGACTTCTCCAAGGTCACCGGCACGGTGGTGCCCGACTCCTCGCCCTGGGGCCGCGACGGCGCCATCAAGGGCACCGGCGCAACGGTCAACGGCAACGTCCTCACCCTGCCGGGCGGCGCAGCCGGCAGCAGCGCCGGCTATGTCCAGCTGCCCATCGGAACCTTCGACGGCCAGAACACGCTGACTGTTTCGGCTTGGCTCAAGAACGAGACTGGCTCAGGGAACTACGCCGCCATGTTCTTCGGCGGACCCAACAACCCGCCCAGCCAGTACTGGCTGCTGAACCCGCGCAACTCCCAGGGCAGGTTCAAATCCGTGATCACCAACGGGAACAGCACCTCCGCGCCGTGGGGAACGGAGGCCGGCATCTCTCCGACCAACTCAGCCCAGGGCATTGCAGGTCCTGTGACTGACAATTCCTGGGGCCTCTACACCACCGTGATCGAGCCGAACCAGATCACCGGCTACTATAACGGCACCAAAATAGGCACCGTCGCCACCACCCGGAAGGTGAGTGACTTTGGCACCAGCCTGGTCTCCTACATCGGCCGGTCCTCCTATCCCGACCCGTTCTACAAGGGCGGCGTCAAGGACGTACTCGTCCACAGCACTGCCAAAACAGCAGACCAGATCAAGGACTATTACTTCAAAACGGTGGACCCCGCCGTCGTCGACGCCGCCCTCCAGGCCGACGCCAACGCCATCAACCTCGGACCCACCCAGGTGACGGGCAACCTCACCCTTCCCACCAGCGGCGCCAAGGGATCCGCCATCAGCTGGGCATCGTCAAACCCGGCAGTGATCTCCACCACGGGCGAGGTCAACCGTCCCAGCGGCGCCGACGTTCCAGTGACCCTCACGGCAACCCTGACCCTAGGCAACAGCACCATCACCCGGCAGTACCAGCTGACAGTGGTTGCCCAGAACGCGCAGGCGGTTGCCCCGGCAGCGCCGGCCGCCCCGTCGCTGACAGCCGACGGCGCCTCGCTGACCGCCTCCTGGGTCACTCCGGGCGACGGCGGCTCTGCCATCACCGGTTACACCGTGACCCTTTACACCTCTGCCGGCGCCGTCCACCGGACCGCCCAGGTGGACGGCTCCGCAACGTCCCACCGCTTCGCGGACCTGCCGGCCGGCAGCTACCAGGCTGCGGTGGTGGCCACCAACGCCGTGGGTGACTCCGCGGCGTCACCGAAGTCGTCAATGGCCGTGGTGGGGACGCAACTGCTGGCGCGGTATGACTTCTCCTCGGTGGTGGGCACCTCGGTGGCTGACGCATCGGGCAACGGCAAAACCGCCACCATCGTTGGCAGCGGGGCTACGATTTCCGGCAAGGAGCTGACGCTGCCTGGCGGTGCTGCCGGCAGCGCGGCTGCGCACGTGAAGCTGCCCACCGGAATGTTTGACGGCCAGAACACGCTGAGCATCTCCGCATGGCTGAAAAACGAGACAGGCTCGGGAAACTACGCCGCCATGTTCTTCGGCTCCGCCGCTTCGCCGCCGGGCCAGTACTGGCTGCTCAACCCCCGCAATCAGCAGGGCCTGTTCAAGTCAGTAATCACTGACGGCAACGAACCCTCAGCGCCGTGGGGGACCGAGGCCGGCATCTCGCCAACCACCGCATCCAAGGGCATCCCCGGCCCGGCCACAGGTTCCGAGTGGGGCCTGTACACCACTGTGATCAAGCCCGGTTCCATCACGGGGTACTTCAACGGCACCAAGATCGGGACAGTACCCACCACCCGGACTGTCACCGACTTCGGCACCAACCTGGTGGCCTATATCGGACGGTCCACCTACCCCGACAACTTCTACAAGGGCGGCGTGCGGGATGTGTCGGTGTTCAGCACTGCACTCTCGGACGCCGACGTGGCGAACGCCTACTACACCGGCGCAGGGGATCCGGCGGTGGCCAAGGCCGCGCTGGACGCGGACGCCGCAGCGCTGAACCTGGGCCCGGCCACCATCAACGCGGACCTCAACCTGCCGGCGGCCGGAGCGAAGGGCTCCAGGATCACGTGGACCAGTTCGGATCCGGCGCACCTGGACGGAACCGGCAAGGTCACTCGTCCGGCCACCGACGACGTGACGGTTACCCTGACCGCCACGCTCGAACTGGCCGGCCAGACAACCACCCGCTCCTTCACCTTCACCGTCCTGGCCAACACCCCGCAGAAGGACCTGTTGCTGGTGGCGGACACCTTCAACCCGGCCTTCCCGGTGGTCACGGAGGACGTGGCCCTGGCTGCCGCCGTCGGAACCGCCACCGTCTCCTGGCAGTCCTCGGACCCTGCCGTGCTCTCCACCACTGGCAAGGTCACCAGGCCCGCCGCCGAAACGTCGCTCACGCTGACGGCGACCTTCGCCGCCGACGGGCTGACGGAGGTCCGCACGTATCCGGTGAAGGTCTTGGCCGCGGACGCGGGGCGGATTGGATCCTACATCCAGTCAGGCAATACCGACCGCACCGATGCCTTGCACCTCGCGTCCTCGCCGGATACGGCCTCGCAAGACGCAGGCTCGCAAAATGCCGGGAACTACGCGGGCCTGAACAACGGCCGCCCCATCCTCTACCCCACCATTGGTGCGGTCAAGTTTGGATCGCCCGTGGTGTTCCGGAAGGCGGACGGCTCCTTCGGTCTGGTGGCCACCGTGGACAGCAACTCGTCCTCGATCTACGTCTACGACTCCGCTGACCTGGTGACCTTCACGGGGGAACGGCTGGTGGCGTTCAACTCCAGGAACCTGTCGGCGGCGTCGGTGACGGTGAGGTACGACAACAGCATCGCTGCCTACCGCCTGACCTTTGTGTCCAAGACGGACGGCAGAACCTACCAGGTCAGTACCAAGGACTTCGCAGCCTTTACTGATCCGGTCGAGGTGCCGGCTGTCCCCCTGGTTGCCCAGGGGACGTTCCCCGCAGGTGCCCTGGAGCCATCATCCGTCGGCGTCACCAAGGCCGAGTACGGCAGGGTCGTTGCCAAGTACAGCCGTCCCTTCAGCACCGGTGTTGCCCCGTTCAGTGATGTCACGCCCGACGCCGACGGGCAGCTCACGCTGCCCACGACGTCGGAAGTGCAGTACAACAATGGGTCCACCACCACAATGGGTGTCCAGTGGAACCCGGCCGATAAGGCCGCCGTCGAATCCGCCGTTGAATCCGGAAAGGCGGGGACCTACACCGTCAACGGAACGGTGCAGCGGCCCACCTACCCGGAGAAGCTGGTTGCCCAGCGGGCCGATCCCGACGTGATCAAGGGCGATGACGGGTACTACTACTTCACCGCTTCCTACCCGATGGTGGGCAGCGGAGACCTGGAGGGCTACGACCGCGTAACCCTGCGGCGTGCGACGACGATCGAAGGCCTGGGTACTGCACCCGAGGTCACCATCTGGGACGAGGACACCTCGGCGCTCAACCGGTATGTCTGGGCGCCCGAGCTGCACAAGGTGGGCGACAGCTGGTACGTGTTCTTTACCGCCAGCGTTGACGGCAGCGTGTGGAGCATCCGCCCGGTGGTGCTGAAGCTGGACGGCACGGACCTGATGGACCGGACCAAATGGCGTGAACTGGGCCGGATGAAGCCCGCCACCGGCGACACGGAGGCCTTCCGCGGCTTCTCGCTGGACATGACGTACTTCGAGAACGCCGGCAAGCACTACGTTGTCTGGGCCGAAAAGCCCGGCGCCTCCACGCTGCGGATGGCGACCATCGACCCCGCCGACCCCTCCCAGCTGACCAGCAAATCCATCCTGCTCTCCACACCCACCATGGCGTGGGAGAAGAACGCCGGACAGTCCGTGGACGAGGGCCCGGCCGTCATCAAGAAGGACGGGAAGGTGTTCATCACGTTCTCGGCGGCCACCGTGGACGCGGCCTACTGCGTCGGGCTGCTGTCCGCCGCCGAGGGCGCCGACCTGATGAACCCGTCAGTTTGGACCAAGAACCCGTACCCGATCCTGCAGACAGCCGACGTTCCCGGCCAGGCAGGCCCGGGCCACAACTCCTTCACCGTGGACGAGTACGGCAACCCGGTGATCGTGTTCCATTCGCGGACCATCGGGGAAGTTTCCGGGCCTGGCGACCAGGGCGACGGCGGACTGTTCGATCCGGGCCGGCATGCGCGGGCGGCAACTGTTCACTTCGCGGCTGACGGCCAGCCGATCCTGAACATGACTCCGGCCGAAGAGCTCGCGGACCAGTTCAAGAATGTGCAGGTAAAGGTGGTTGTGCCGGATTCCGCGGCGCCCGTGCTGACCGCAGGACTGAACCCTGCTGATCCCACCGGCAGCAACGGCTGGTACACCGGGGACGTAACCCTGGTGGCTTCCGCCACCGACGATTCGGCCGTGACCATTGAGTACAGGGTCGACGGCGGTGCCTGGCTGCCGTACTCGGCCGCCGTGGGCTTCGGCGAAGGCACGTCCACTGTCGAGGTCCGGGCCACAGACGCGGCCGGATATCAGTCGGCGGTTACCACCCTGGACGTCCGGCGTGACGGAACGGCGCCGCAGGTTTCGGCGTCGTTCGACGATCAGGGCGGCAGCTCGCTTGGCCCCGTGGTGGTAACGCTGTCCGGCAGCGACGCCGCCGGAGGTTCAGGGCTGGCTGCCATGGAATACTCGCTCGACGGCGGTCCCTGGACCACGTACACAGCGCCATTCCCGGTTTCCGGGGCGGGCAGCCACGCCGTGGCCTACCGGGCCTCTGACAGTGCCGGCAACACCTCGGCGGAGAAGATAGCAACGGTCACCATCGCAGCCCCCGACACCACTGCGCCGGTGCTCACCGTGACCGTCTCTCCTGACGCTCCGGACGGCTCCAACGGGTGGTGGAAGTCAACGGTGGGCGTGACGGCCACTGCAACAGATGACAGCGGCACAGCGCCCCTGATCGAGGCCAGCCGCGACGGTGGCCTCGCGTGGGACGTGTTTGCTCCCGTGCAGCTGAACGATTCAAGCCCGGCACTGAAGATCCGCGCTGTGGATGCGGCCGGCAATACGTCCGCAATCGTGGACCGGGAGATCAGGATCGATACCGTGGTTCCGTCGTCGTCAGCGGTGGTGGACAGCCCGGCCCGCACTGTCAGCATCACCGGTGCAGACGCGGATCCAGGTTCCGGCGTGGCCAGCCTCGAGTACCGGGTCAACAACGCTGAGCTGTGGACGTCGTCGGCCGGTGCAAGCACAACGGTGACGGTGGGTGACGGTGCCGCCACGGTGGAGTACCGCGCGGTGGACACTGCGGGCAATGTGAGCCCTGCCCAGTCCGCACTGGTGCCGGCGAAGGCAGCGCCCAAGGCGGCAGTGACCCTGACCTCCAGTGGCCAGCCTTCCGCCGAGGGGTGGTATGCCAAGGACGTCACCGTGGCAATCACCGCGCCTGCCGGCACGGCAGCCGAGTACCGCCTTGATGGCGGTGCCTGGAATGCGGCGGCCCAGCCATTCACCATTTCAGCGAGCGGACCGCATACCCTTGACCACCGGCTGTTGACGGGCAGCGTGGTGATAGACGGCTCGGCCGGCAGCGTGGCGGTGAAGATTGACAAGATGCTTCCGACGACGGCGGCTGTCACCTCGCCGGAATCAGGCACCGGCACTCCGCGGAACCCGGTGACGGTGATGTTCTCGGCCCAGGATTCGCTGTCAGGGGTCGCCAGGATCGAATACCGGCTCAACCTCGGGGCATGGACCACCATAGCTGCGGGCTCGCCGCTGACCATCGTCACGCGCGGCGACTACGTGGTCAGCTACCGGTCCTTCGACGAGGCCGGCAACGCTGACAGGATCCGTAGCACCAGCGTCAAGATCACGGCGGATGTGGCCCCGTCGCTGAAGGCCAGCGCCGGCACGGTCAAGCCCGGCGGCTCGCTGACGTTCACGGTGGCCGGCTTCGACCGATGGGACCAGGTTGTCCTTTCGGCCGGGGCCGCCACCCTTGGCACAGTGTTTACCGACGTGAAGGGAACCGGAAAAGTCACCCTCCAGATCCCCGCGACCACACCGTTGGGACCGTTGACCATCAAGGCAACCGGCAGCGACGGGGAGCCGGTGGCAACGGTCAGCGTCACCGTTAAGAGGTGAMTPSGTWLRMASTIAAFCIASTLVIAPAQPALAVTPEDEAAVQAAAGSLAVTNIGDVRGNLTLPTSGPQATTIAWASEDTAVVDPSGIVHRPATGQPTDQVTLTALITKNDAVTTKAFTAVVPALPETPKFEAYMFPYFTGDSIAGEKIYFGASNGNDARNWLTLNGGQPVKASTMGTKGLRDPFIVRSPEGDKFYMIATDLSIGSGTTWDASQRQGSQYMEIWESTDLVNWSEQRHVKVSPDNAGNTWAPEAYYDPSLGEYVVFWASKLYNTADHSEGQPNQMLYATTRDFVTFSPAKVWQNTGKSRIDSTVIAENGVYHRFTKDEAQSTGCLDIMQEHSTSLTAVTTVTSATSDTWKLDATCIGKGAGTAAVEGPTVFKANDGDVNGPGYYLFVDEFGGRKYIPLFSKTLQNASWSVPTGYSLPSPAPRHGTIMPITATEQRALMGAYLPAATSVAPVKISTVVGAPAALPRTATVTFADNSTRDLAVAWNAAAPADYYTREGTITVTGSVTGTDLTATATVSVIPAGSDTLLHYDFSKVTGTVVPDSSPWGRDGAIKGTGATVNGNVLTLPGGAAGSSAGYVQLPIGTFDGQNTLTVSAWLKNETGSGNYAAMFFGGPNNPPSQYWLLNPRNSQGRFKSVITNGNSTSAPWGTEAGISPTNSAQGIAGPVTDNSWGLYTTVIEPNQITGYYNGTKIGTVATTRKVSDFGTSLVSYIGRSSYPDPFYKGGVKDVLVHSTAKTADQIKDYYFKTVDPAVVDAALQADANAINLGPTQVTGNLTLPTSGAKGSAISWASSNPAVISTTGEVNRPSGADVPVTLTATLTLGNSTITRQYQLTVVAQNAQAVAPAAPAAPSLTADGASLTASWVTPGDGGSAITGYTVTLYTSAGAVHRTAQVDGSATSHRFADLPAGSYQAAVVATNAVGDSAASPKSSMAVVGTQLLARYDFSSVVGTSVADASGNGKTATIVGSGATISGKELTLPGGAAGSAAAHVKLPTGMFDGQNTLSISAWLKNETGSGNYAAMFFGSAASPPGQYWLLNPRNQQGLFKSVITDGNEPSAPWGTEAGISPTTASKGIPGPATGSEWGLYTTVIKPGSITGYFNGTKIGTVPTTRTVTDFGTNLVAYIGRSTYPDNFYKGGVRDVSVFSTALSDADVANAYYTGAGDPAVAKAALDADAAALNLGPATINADLNLPAAGAKGSRITWTSSDPAHLDGTGKVTRPATDDVTVTLTATLELAGQTTTRSFTFTVLANTPQKDLLLVADTFNPAFPVVTEDVALAAAVGTATVSWQSSDPAVLSTTGKVTRPAAETSLTLTATFAADGLTEVRTYPVKVLAADAGRIGSYIQSGNTDRTDALHLASSPDTASQDAGSQNAGNYAGLNNGRPILYPTIGAVKFGSPVVFRKADGSFGLVATVDSNSSSIYVYDSADLVTFTGERLVAFNSRNLSAASVTVRYDNSIAAYRLTFVSKTDGRTYQVSTKDFAAFTDPVEVPAVPLVAQGTFPAGALEPSSVGVTKAEYGRVVAKYSRPFSTGVAPFSDVTPDADGQLTLPTTSEVQYNNGSTTTMGVQWNPADKAAVESAVESGKAGTYTVNGTVQRPTYPEKLVAQRADPDVIKGDDGYYYFTASYPMVGSGDLEGYDRVTLRRATTIEGLGTAPEVTIWDEDTSALNRYVWAPELHKVGDSWYVFFTASVDGSVWSIRPVVLKLDGTDLMDRTKWRELGRMKPATGDTEAFRGFSLDMTYFENAGKHYVVWAEKPGASTLRMATIDPADPSQLTSKSILLSTPTMAWEKNAGQSVDEGPAVIKKDGKVFITFSAATVDAAYCVGLLSAAEGADLMNPSVWTKNPYPILQTADVPGQAGPGHNSFTVDEYGNPVIVFHSRTIGEVSGPGDQGDGGLFDPGRHARAATVHFAADGQPILNMTPAEELADQFKNVQVKVVVPDSAAPVLTAGLNPADPTGSNGWYTGDVTLVASATDDSAVTIEYRVDGGAWLPYSAAVGFGEGTSTVEVRATDAAGYQSAVTTLDVRRDGTAPQVSASFDDQGGSSLGPVVVTLSGSDAAGGSGLAAMEYSLDGGPWTTYTAPFPVSGAGSHAVAYRASDSAGNTSAEKIATVTIAAPDTTAPVLTVTVSPDAPDGSNGWWKSTVGVTATATDDSGTAPLIEASRDGGLAWDVFAPVQLNDSSPALKIRAVDAAGNTSAIVDREIRIDTVVPSSSAVVDSPARTVSITGADADPGSGVASLEYRVNNAELWTSSAGASTTVTVGDGAATVEYRAVDTAGNVSPAQSALVPAKAAPKAAVTLTSSGQPSAEGWYAKDVTVAITAPAGTAAEYRLDGGAWNAAAQPFTISASGPHTLDHRLLTGSVVIDGSAGSVAVKIDKMLPTTAAVTSPESGTGTPRNPVTVMFSAQDSLSGVARIEYRLNLGAWTTIAAGSPLTIVTRGDYVVSYRSFDEAGNADRIRSTSVKITADVAPSLKASAGTVKPGGSLTFTVAGFDRWDQVVLSAGAATLGTVFTDVKGTGKVTLQIPATTPLGPLTIKATGSDGEPVATVSVTVKRNANANANANA
D1-29_010471155hypothetical proteinATGGAGAACAACAGCGAAATCCGGCCCTTCACCATCGACATTCCCCAAGCTGATCTGGACGACCTTCGGGACCGACTCGCGAGAACCCGGTGGGCCTCTGACCTGCCCGACGTCGGCTGGAGCCGCGGGGTTCCGGTGAGCTACCTCAAGGGGCTGGCCGAGTACTGGCGCGATGGCTACGACTGGCGCGTCTACGAGCGGGAGATGAACAAGTACCCACAGTTCACCACCGAGATCGACGGACAGAACATCCACTTCCTGCACGTACGCTCCCCCGAGCAGGAGGCGCTGCCCATGATCCTGACCCACGGCTGGCCGGGTTCAATCGTGGAGTTCCTCAACGTCATCGGGCCGTTGACCGATCCTGCGGCGCACGGCGGGAACCCGGCGGACGCGTTCCATCTGGTGATCCCGTCGATCCCCGGCAGCGGCTTCTCCGGGCCTACGGTCGACGCCGGCTGGGACACCAACCGGGTGACCAGGGCGTTCGCTGAGCTGATGAAACGGCTGGGCTATGACCGCTACGGCGCGCAGGGCGGCGACACCGGCGCGGTCATCTCCCCGGGGCTCGGCCGGCTCAACCCCGACAAGGTGGTCGGTGTGCATGCGAACGGGCTCTCCGGGTTCACGGAGGTTAACCCCGACGAGGTGGGGGAACTGAGCGAGGCCGAGCGGGCACGGCTGGACCACCTCCAGTACCTCAGCACAGAGCAGTCCGGCTATGCAATGATCCAGATCACCCGGCCCCAGACCCTGGCGCATGGGCTGCACGACTCCCCGGTGGGGCAGTTGGCCTGGATCGTGGAGAAGTTCAAGGAGTGGACCGATCCGGCGGCCGAACTGCCCGAGGACGCGGTCGACCGGGATCTTTTGCTCACGAACGTGATGCTGTACTGGCTGACCGGCACAGCCGGGTCCTCGGCCAACAGCTACTATGAGACCGCCCATTCCGGCGCCTGGGGAGCGAGTGAGCGTTCGGCGGTGCCGACCGGGGTTGCGGTGTTCCCCATGGATGTGTCGATCCGGCGCACTGTCGAGCTCGAACACACGGTGGTGCACTGGTCCGAATTCGACCGCGGTGGCCACTTTGCCGCCATGGAGGCGCCCGACCTGTTCGTGGGTGACGTCCGGGAGTTTTTCAGCAAACTGCGCTGAMENNSEIRPFTIDIPQADLDDLRDRLARTRWASDLPDVGWSRGVPVSYLKGLAEYWRDGYDWRVYEREMNKYPQFTTEIDGQNIHFLHVRSPEQEALPMILTHGWPGSIVEFLNVIGPLTDPAAHGGNPADAFHLVIPSIPGSGFSGPTVDAGWDTNRVTRAFAELMKRLGYDRYGAQGGDTGAVISPGLGRLNPDKVVGVHANGLSGFTEVNPDEVGELSEAERARLDHLQYLSTEQSGYAMIQITRPQTLAHGLHDSPVGQLAWIVEKFKEWTDPAAELPEDAVDRDLLLTNVMLYWLTGTAGSSANSYYETAHSGAWGASERSAVPTGVAVFPMDVSIRRTVELEHTVVHWSEFDRGGHFAAMEAPDLFVGDVREFFSKLRNANANANANA
D1-29_01048954hypothetical proteinATGTGGGAAACCTCTGCGCGGCTGCTGCGACTGCTCTCCCTCCTCCAGGCCCGGCGCGACTGGTCCGGCAACGAACTGGCGGAGCGGCTGGAAGTCACGCCCCGCACCGTACGGCGCGATATCGATCGGCTGCGCAGCCTCGGATACCCGGTGCTGGCCACCGCCGGCACCGCCGGGTACCGGCTTGGTGCAGGCGCGGACCTTCCGCCGCTCCTGCTTGACGACGACGAAGCCGTTGCGGTCGCAGTGGGGCTGCGTACTGCCGCTGGTGGTTCCATCACCGGCATCGAGGAGGTTTCAGTGCGGGCACTGGCCAAGCTCGAACGGGTGCTGCCGTCCCGGCTGCGCCACCGGATCAACACCCTGCAGTCGGTGGTGGTGCCGATGGCCGGCACCGGCCCCACAGTGGACCCGGGCATCCTCACTGCTGTCGCCGCCGCCTGCCGCGATTCGCTGCGCCTGCGCTTCGACTACCGCAGCCACAACGGAACCAGCAGCCTCCGCACCACTGAGCCGCAGCGGCTGGTGCACGCCGGCTGGCGCTGGTACCTCATCGGTTGGGACGTGGACCGCCAGGATTGGCGCACTTATCGTGTTGATCGCCTGGATCCACGCATTCCCACCGGGCCCAGGTTCACCCCCCGCACCCCGCCGGCCCCCGATATCAGCGGCTACACCTCGCGGGCCGTCTCCACGTCGGCCTACCGCTACCAGGGCCGCTTCACCCTGCACGTCAGCGCCGAGACCGCCGGGGAACAGATCGCCCCCACCACGGGTGAGTTGGAGCCAATCGATGAACACCACTGCACCCTGCGGGCCGGGGCCAACTCGCTGGACGAGTTGGCGATTTACGTAACAACCAAAGGGTTCGACTTCCAGGTGCACGAGCCCCCAGAACTTGTCGAGCACGTCAGGACGCTGGCGGCCAGGCTTGCTAAGGCGACCAAACCATAGMWETSARLLRLLSLLQARRDWSGNELAERLEVTPRTVRRDIDRLRSLGYPVLATAGTAGYRLGAGADLPPLLLDDDEAVAVAVGLRTAAGGSITGIEEVSVRALAKLERVLPSRLRHRINTLQSVVVPMAGTGPTVDPGILTAVAAACRDSLRLRFDYRSHNGTSSLRTTEPQRLVHAGWRWYLIGWDVDRQDWRTYRVDRLDPRIPTGPRFTPRTPPAPDISGYTSRAVSTSAYRYQGRFTLHVSAETAGEQIAPTTGELEPIDEHHCTLRAGANSLDELAIYVTTKGFDFQVHEPPELVEHVRTLAARLAKATKPNANANANANA
D1-29_010492106bgaB_1Beta-galactosidase bgaBATGACCAGCAGCCCAGACGCCAGTGCCGCGGAGGCCCGGCTCCGGAACATGCACCAAGGCCTGGGCGGAATTGCCTACGGCGGGGACTACAACCCTGAGCAGTGGCCCCGCGAAGTCTGGCACGAGGATGCCCGCCTGATGCAGGAGGCCGGCGTCAACCTGGTTACCCTGGCCGTATTCTCCTGGAGCCGCCTGGAAACCGCTGATGGTGTCTATGACTTCGGCTGGCTGGATGACGTGATGGACCTGGTGCACCGGCACGGCATCGGCGTGGACCTGGCAACCCCGGACGCCGTTCCGCCTGCCTGGCTCACGCAGCAGCACCCGGACATCCATCCTGTCCTGGCAGACGGAACCACGTTCGGCTTCGGCTCCCGGCAGCATTTTGACGTTTCCCATCCCGTGTACCGCCGGAAGGCCCTGGCCCTGGCGGAACGGATGGGCGAGCGCTACGCCAAGCACCCCGCGCTGCGGATGTGGCACGTGGGCAACGAATACGGGCCGGTATCCTACGGCCCCTGGGCAGACAAAGCGTTCCGCACATGGCTGCAGCAGAAGTACTCCTCGCTGGAGGACCTGAACCGGGCGTGGAGCACGGACGTTTGGGGCCAGGTCTACTCGGACTGGAGCCAGGTGGGTGTCCCGGCCCAGCCCCGGACCTGGTCCAACCCGTCGCGCCGGCTGGACTTCCACCGGTTCACCTCTGCCAGCATGCTGGAGCATTACACGACTGTTCGGGATATCCTGCGCCGCCACACTCCTGACCTGCCCATCGTCACCAACTTCATGCGCTTTTACAAAACCAACGACTACTGGGCCTGGGCGGCGGAAGAGGACGCGGCCGCCCTGGACATCTACCCGGACCCGCGGGAAGCCGACTCGCATGTGGCGGCTGCACTGAACTTCGACCTCATGCGGTCCCTGCGCAACGGCCAGCCCTGGATGGTCATGGAGCAGGCCACGGGAGCGGTGAGCCAGTGGCCCATCAACGTCTCCAAGCTTCCCGGCAAGATGCGTCTGGGCTCGTACCAGGCCATCGCCCAGGGTTCGGATGGCATCCTGTTCTTCCAGTGGCGGCAGGCAAAGGGCGGAACCGAGCGCTACCACTCCGCCATGGTGGGCCACGCGGGCCCTAATACGCGGATCTTCCAGGAGGTCTGCGAGCTCGGCAACGAGCTGAAGTCCCTGGCCGGCCTCACCGGCACCAGGTCCAGTGCCAAAGTGGCAATCGTCTTTGACTGGGACTGCTGGTGGGCGCTGGAGCTCGGCAATTCGCCCCGGTCCGACCTGGACTACCCCCAGGAGGTCCTCCGGCTCTACCGGCCCCTGTTCGACGCGAACATCACCGTGGACTTTGTGGACACCAAGCGGGACCTCAGCCAGTACAGCCTGGTCCTGATGCCGGCCGCGTACCTCCTCACCGATGAGTCCGCCCGACGGTTTGAGGACTACGTATCCGACGGCGGACGCCTGGTGGTCTCCTACCTTTCCGGCATCGTTGATGAGTCCAATACCATCCGCCTGGGCGGCTATCCCGGCGCACTCCGGAACGTCCTGGGGGCCTGGAGCGAGGAGATGCACCCGCTCGCGGGCGACGGCGAGGAAATCAAGCTAAGACTGTCCGACGGCGGGACAGCCTCCGCGGGCTACTGGACTGAGCACCTGCACACCGAAGGGGCGGATGTCCTTGCCAGCTACGCGTCCGGCCGGCTCGCCGAAGCACCCGCGGTCACGCGGAACGCCTTCGGGCGGGGAAGTGCCGTCTACCTCTCCGCCCGGGTGGACGCCATATTCCTGAACGCGCTGCTGGACGCCGAATGCAAGGCAGCCGGAGTGCAGCCCGAACTGGACGCGCCCCGCGGAGTCCAGGTCCGCCGTCGTGCGGGCAACGGCACAAGGTTCATGTTCATGCTCAACCACAACGACGCCCCGGCAAGCGTCAACGTGGGCGGCGGCGGAAGGGACCTCCTGACCGGACACCCAGTCCAAGGCGTGGTGGAGCTCCCGCCCAGCGGCGTGCTGGTGCTGGAAGAAAACAGTGCCGAAGACGCACGGCTCGAAGACACAGCGACAGCCGACGCCGCCACCGATGACACCACACGATAGMTSSPDASAAEARLRNMHQGLGGIAYGGDYNPEQWPREVWHEDARLMQEAGVNLVTLAVFSWSRLETADGVYDFGWLDDVMDLVHRHGIGVDLATPDAVPPAWLTQQHPDIHPVLADGTTFGFGSRQHFDVSHPVYRRKALALAERMGERYAKHPALRMWHVGNEYGPVSYGPWADKAFRTWLQQKYSSLEDLNRAWSTDVWGQVYSDWSQVGVPAQPRTWSNPSRRLDFHRFTSASMLEHYTTVRDILRRHTPDLPIVTNFMRFYKTNDYWAWAAEEDAAALDIYPDPREADSHVAAALNFDLMRSLRNGQPWMVMEQATGAVSQWPINVSKLPGKMRLGSYQAIAQGSDGILFFQWRQAKGGTERYHSAMVGHAGPNTRIFQEVCELGNELKSLAGLTGTRSSAKVAIVFDWDCWWALELGNSPRSDLDYPQEVLRLYRPLFDANITVDFVDTKRDLSQYSLVLMPAAYLLTDESARRFEDYVSDGGRLVVSYLSGIVDESNTIRLGGYPGALRNVLGAWSEEMHPLAGDGEEIKLRLSDGGTASAGYWTEHLHTEGADVLASYASGRLAEAPAVTRNAFGRGSAVYLSARVDAIFLNALLDAECKAAGVQPELDAPRGVQVRRRAGNGTRFMFMLNHNDAPASVNVGGGGRDLLTGHPVQGVVELPPSGVLVLEENSAEDARLEDTATADAATDDTTRPGPT0017815_714DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_01050981yteP_1COG4209putative multiple-sugar transport system permease YtePATGGCAATGAGACTGGAGATTCCACCGGAGGCGGTCACCGCTGACCCGCCGCGCACCGCAGAACCGCCGCGGAACAAGCCCGGCGGCTGGAAGCTGGCCATCAAACGGGACTGGCGGCTGTACACCCTGCTGGTGATCCCGCTGTTGTACTTTGCGGTGTTCCGGTACCTGCCCATGGCCGGAAACGTGATCGCCTTCCGGCAGTTCCAGCCCGGTGGCAGCATCTTCGGTGAGAAGTGGGTGGGCCTGAAGTACGTGGTCCTGTTCATCAACGATCCCAGCTTCTGGCAGGCGTTCCAGAACACCATCATGCTGGGCGTGCTGACCCTGCTGTTCTGCTTCCCGATGCCCATCATCTTCGCGCTGATGCTCAATGAGTTGCGCTCGCAGAAGTTCAAGAAGTTCGTCCAGACCGTGGCCTACCTGCCGCACTTTATGTCCGTGGTGATCATCGCCGGCATGATCCTGCAGAACTTCTCCATGACCGGCACAGTGAACCAGATCGCCAACACGCTTTTCGGCACCACGGTGAACTTCACCCAGGACGCATCCTGGTTCCGGCCCATGTACATCAGCTCGGAGGTGTGGCAGACCATGGGCTGGGGAGCCATTCTCTACCTGGCGGCGCTGACCCGGGTGGATGAATCGCTGTATGAGGCAGCCAGGATCGACGGCGCCAACCGGTGGCAGCAGACCTGGCACGTGACCCTGCCCGCCATTAGGCCCACCATCATCACGCTGCTGATCCTGAACATCGGCACGTTCATGGCCGTGGGCTTCGAGAAGATCCTGCTGATCTACAACCCGCTCAACTACGAAACCTCGGATGTCATCTCCACCTACCTGTACCGGGTGGGCTTGGAATCAAGCAACTTCAGCTACGCGGCCGCCATCGGAATGTTTGAATCCGTCATCGGCCTCACGCTGATCCTCTCCGCGAACGCGATCTCAAAGCGGCTCGCAGGAACGAGCCTGTGGTGAMAMRLEIPPEAVTADPPRTAEPPRNKPGGWKLAIKRDWRLYTLLVIPLLYFAVFRYLPMAGNVIAFRQFQPGGSIFGEKWVGLKYVVLFINDPSFWQAFQNTIMLGVLTLLFCFPMPIIFALMLNELRSQKFKKFVQTVAYLPHFMSVVIIAGMILQNFSMTGTVNQIANTLFGTTVNFTQDASWFRPMYISSEVWQTMGWGAILYLAALTRVDESLYEAARIDGANRWQQTWHVTLPAIRPTIITLLILNIGTFMAVGFEKILLIYNPLNYETSDVISTYLYRVGLESSNFSYAAAIGMFESVIGLTLILSANAISKRLAGTSLWPGPT0017250_488DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017250-lplB-K17319NANA
D1-29_01051915araQ_6COG0395L-arabinose transport system permease protein AraQGTGGTGAACAAAATAACGTCGGACAGCGGAGTGCGGGTTGCTGACCTGAAGGAATCCCGCGGTGTCAAAGCCTTCCGGATCTTCAACCTGGTGTTCCTGCTGGCAGTGGTCTTCCTGACCCTCTACCCGTTCCTGAACATCATCGCCCAGTCCTTCTCCAGCGAAGGCTTCATCAACGCAGGCCAGGTGAACCTGTTTCCCCGCGGCTTCAACGTGGAGACGTACAAACTGATCCTGGCTGACAGCACGTTCTGGAACAACTACGGCAACACGGTCCTGTACACGGTGGTGGCCACCGCCATTTCCATGGTCCTGACCACCTCGTTCGCCTACGCCATTGCCAAGAAGGACCTCAAAGGCCGCAGCCTCTTTATCGGCATCGCGGTATTCACCATGTTCTTCAACGGCGGGCTGATTCCCAATTACGTCCTGATCAGTTCGCTGGGCATGCGGGACTCCATCTGGGCCGTGGTGTTGCCCAACGCCATCAGCGTCTTCAACCTGCTGATCATGAAGTCCTTCTTCGAGAACATGCCGCGGGAACTGGAGGAAGCCGCGGCCATCGACGGCCTCACCCAGTACGGCGTGCTGTTCAGGGTGGTGCTGCCGCTCAGCAAGGCAATCGTGGCCACCATGGTCCTGTTTTACGCCGTGGCCAACTGGAACTCGTGGTTCCAGGCTTTCCTCTACCTGGATAAGCCGGAGCTCTTCCCGGTCACCATTTACCTGCGCAACATGATCGCCGGCGTCACCACGGCAGGATCCGCCGGTGGGACCGTGGAGAACGTGGGCCAGATCGCCGCCAACATCCAGTCGGTCACCATCGTCCTGACCGTCATCCCCATTCTCTGTGTCTACCCGTTCGTCCAGAAGTACTTCTTTTCGGGCGTCATGCTCGGTTCCGTCAAGGAATAAMVNKITSDSGVRVADLKESRGVKAFRIFNLVFLLAVVFLTLYPFLNIIAQSFSSEGFINAGQVNLFPRGFNVETYKLILADSTFWNNYGNTVLYTVVATAISMVLTTSFAYAIAKKDLKGRSLFIGIAVFTMFFNGGLIPNYVLISSLGMRDSIWAVVLPNAISVFNLLIMKSFFENMPRELEEAAAIDGLTQYGVLFRVVLPLSKAIVATMVLFYAVANWNSWFQAFLYLDKPELFPVTIYLRNMIAGVTTAGSAGGTVENVGQIAANIQSVTIVLTVIPILCVYPFVQKYFFSGVMLGSVKEPGPT0017255_2697DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017255-lplC-K17320NANA
D1-29_010521629hypothetical proteinATGATCCCCAAACGAGAGCTCCGCAGACGAGACTTCCTCGGCCTGGCCTCCGTTGTCACCATCGGCCTGATGCTGACCAGCTGCGACTCCGATTCGGCGGAGGTGGACACCTCCAAGTCCCGCAACGGAGCGATGGACAGCTTTGGAGTGGGGGACACGTTCAAGGCGACGACGCCGCTGACGTTCAGCTTCCTCTTCAGCGACCAGCCCACCTACCCCTACAAGAAGGACTGGCTGCTGTTCACGCGGATGGCATCCGAGAACAACGTCACGCTGGAAACCACCATTGTGCCCAGCAGCGACTATGAGCAGAAACGCAGCCTCCTGATCAGCTCGGGCAACGCTCCGGAGATCATCGCCAAGACCTACCCCGGCCAGGAGGCCGCGTACGTCTCCTCCGGCGCGGTCCTGCCGGTCAGCGACTACGTGAACCTCATGCCGCACTTCCAGGACAAGGTCAAAAAGTGGAAGCTCGAGCCGGAGATCGCCGGGCTGACCCAGGAGGACGGCAAGTACTACGTCCTGCCGGGCCTGCACGAGGAACTCTGGCCGGACTACTCGCTGGCGTTCCGCATGGACATACTCGAGAAGGAGAATATCGCCGAGCCGAAGAGCTGGGACGAGTTCCGCGAAGTGCTGCGCAAGCTCAAAAAGGCGCATCCCGACGTCGTGCCTTTCTCTGACCGCTTCAACGGCAACAGCGTCCTGAACATCGCCGGCACGGCGTTCGGCACCGTAGCTGGATGGGGGCTGGTGGACGGGCTCAGCTTTGACGAGTCGAAGAAGGAGTTTGCGTTCGGTGCCGGTTCGCAGCAGTTCAAGGAACTGGTGACGTACTTCAACTCGCTCGTGTCCGAGGGCCTGATGGATCCGGAGAGCTTCACGCAGACCGACGATTCGGCCACCCAGAAGTTCGTCTCCGGCAAGTCGTTTGTGATCAGCGCGAACTCGCAGAACATCATCAGCTACCGGACATCCATGGAGCAGTCGCTGGGCAAGGGCAACTTTGCGGTTGCCAAAATCACGGTGCCGGGCGGTCCGGCGGGCGACATCATCGGCGGATCCCGCCTGGAAAACGGCATCATGCTCAACTCCTCCGTCAAGGAGAAGGACAGCTTTGTGGCGCTGATCCAGTACATCGACTGGCTGTTCTACAGCGATGAGGGCCAGGAGTTCACCAAATGGGGCGTTGAAGGAACCACCTTCACGAAGGAGGGCGGCAAGCGGGTCCTGGCCAAGGACATCAACTTCCAGGGCCTGAACCCGGCCGGCACCAAAGACCTCCGCGTGGAGTACGGCTTCTCCGGCGGCAACTTTGCCTACGGCGGCACCACGGAGCTGCTGCACTCCACGTTCAACGAGGAGGAGCTGGCATTCCAGAAGGCCATGAAGTCCAAGAAACCCAAGACTGTGGCCCCGCCGGTGCCGTTCAGCGATGTGGACCGGGAGCAGGCAACCCTGGTGCTGACCCCGCTGAAGGACCACGTCAAGCAGAACACCCTGAAGTTCATCACCGGCCAGCGGGATCTGAGCGAGTTCGATGCCTACGTGAAGGAACTCGATGCTAAGGGCCAGTCCAAGTACGTAGAGTTGGCCAACAAGGCGTACAAGGCCTATGCCAGCAGATAAMIPKRELRRRDFLGLASVVTIGLMLTSCDSDSAEVDTSKSRNGAMDSFGVGDTFKATTPLTFSFLFSDQPTYPYKKDWLLFTRMASENNVTLETTIVPSSDYEQKRSLLISSGNAPEIIAKTYPGQEAAYVSSGAVLPVSDYVNLMPHFQDKVKKWKLEPEIAGLTQEDGKYYVLPGLHEELWPDYSLAFRMDILEKENIAEPKSWDEFREVLRKLKKAHPDVVPFSDRFNGNSVLNIAGTAFGTVAGWGLVDGLSFDESKKEFAFGAGSQQFKELVTYFNSLVSEGLMDPESFTQTDDSATQKFVSGKSFVISANSQNIISYRTSMEQSLGKGNFAVAKITVPGGPAGDIIGGSRLENGIMLNSSVKEKDSFVALIQYIDWLFYSDEGQEFTKWGVEGTTFTKEGGKRVLAKDINFQGLNPAGTKDLRVEYGFSGGNFAYGGTTELLHSTFNEEELAFQKAMKSKKPKTVAPPVPFSDVDREQATLVLTPLKDHVKQNTLKFITGQRDLSEFDAYVKELDAKGQSKYVELANKAYKAYASRPGPT0017245_1324DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017245-lplA-K17318NANA
D1-29_01053723hypothetical proteinGTGGCACAGAAGAAGGCGGAGTATGGCTCCGGTCCGCTGTTCAGGGCGGCCGGGGTGGTGTACGGGGTCATGATGGCGGGCGTGCTGCTGGTGCTGGCCAACGTGCTCCTGGTACTGGCCCCGCTGCTGATCAGCCTGGCCGGTGGCTCCACCGTGCTGGCCGCCGGCGTTGTTGCTGCTGCGTTGGTGCCCGTGGGCCCGTCGCTGGTGGCCGCCGCCTACGCTTTCAACCGTCTGCTCGCGGGGGAGGAGACAGGAGTCTTCCGGGATTTCCTCCGCGGCTACCGCCGCAATGTCCGGCAGGCGCTCGCGGTCTGGCTGCCGTACCTGGCGGTGATGGCCGTCGTCGTCCTTAACCTGCTGCTCCTGCCCGGAACATTCGACGCCGGGAATCCCGGCCTGGCGGCCGCCCGGGCAGGGCTGCTGGTGCTGGGGCTCCTGGTGGCGACAGCCGGCGTGACGGCAATGCTGCTGGTGTCCCGGTTTGCGTTCCGGGTCCGGGACATCCACCGGCTGTCGCTGTACTGCCTGGGCGCGCAGAAGCGGGTGTCGCTGGGCAACGCCGGGATCCTGTTCATCTCGGCCTTCCTGCTTACGGCCAGCACCGCGGGCCTGCTGATCTTCATCGCCGGGCCCGTGATGTTCCTGATCTGCCTGAACTCGCGGCCGCTGCTGGCATTCATCGAAGCGAAGTTCACCCTTCGGGAACCGGCCCTGAACTGAMAQKKAEYGSGPLFRAAGVVYGVMMAGVLLVLANVLLVLAPLLISLAGGSTVLAAGVVAAALVPVGPSLVAAAYAFNRLLAGEETGVFRDFLRGYRRNVRQALAVWLPYLAVMAVVVLNLLLLPGTFDAGNPGLAAARAGLLVLGLLVATAGVTAMLLVSRFAFRVRDIHRLSLYCLGAQKRVSLGNAGILFISAFLLTASTAGLLIFIAGPVMFLICLNSRPLLAFIEAKFTLREPALNNANANANANA
D1-29_01054441hypothetical proteinATGGTGCTGTTCCTCGGCATCGGACCGGCACTCATCGTGGCCGGCACCCTCGAGGTCCACGCCGACGACGAACTCGCCAGGACCGGAGAACAGGTCAGCGGCACGATCGTCCAGTTTGACGACACCAACAAAGCGTCCGACCGCGACATCCGGGTGAAATACCAGGCAGCCGACGGGGAGTTTCGCTACGTCTCGGCGGACGTAGACCACGACCAGGAGCCCGTGGTGGGCGATGAGGTGACCGTGGTGTATCAGGCCGACCAGCCGGGCCGGGCCACGGTGCTCGGTTTCGAAAGCGGCGGCGTTTTCTTGCGGGGAATAGGGGTTCTCCTGACGCTGATTTTTGGTGGCATGGCCCTGTCTGTCTCCATCGGCGGGATGTTCCGCAGGAGGAGCCGAAAACGCAAGGCCGCCGTCTACAGCCGGATAAACGCGCTCTGAMVLFLGIGPALIVAGTLEVHADDELARTGEQVSGTIVQFDDTNKASDRDIRVKYQAADGEFRYVSADVDHDQEPVVGDEVTVVYQADQPGRATVLGFESGGVFLRGIGVLLTLIFGGMALSVSIGGMFRRRSRKRKAAVYSRINALNANANANANA
D1-29_01055480hypothetical proteinGTGAACCCCAAGTCGAAAATGTCGTGGGGAATGCGGGCGAACCTCGCGATTTCTGTGCTGGTTCTGTGCCTCGGACCCGTGTCTATAGGCGTGGGCACACAGATGATTCACGCCGACGCCGAGCTGGAGCGCAGCGGGGAACGCGCCACCGGGACAATTACGGCCTTTCACGATGAATGGCAGGCCTCCGATCGCAAGATGAAGGTGGAGTTTCCATCAAGGGATGGGTCGGTCCACTACAAGTGGGTCAGTGTGGACTACCAGCAGCACCCACTGATCGGCGGGGAAGTCATTGTGGCCTACCGAGCCGATGATCCGGGCCAGGCAACAGCCCTGGGTTATGAAAGCGACGGCGTCTGGTGGAGGGGAGTGGGAACCGTGATCACCTGCCTCTTCGGGGGGATTGGCGTTCTCCTGGCATTCTTCTTCTGGCTGGGTCTGCGCAAGGACCGAAAAAGGGAACGGATCCACCATGACTGAMNPKSKMSWGMRANLAISVLVLCLGPVSIGVGTQMIHADAELERSGERATGTITAFHDEWQASDRKMKVEFPSRDGSVHYKWVSVDYQQHPLIGGEVIVAYRADDPGQATALGYESDGVWWRGVGTVITCLFGGIGVLLAFFFWLGLRKDRKRERIHHDNANANANANA
D1-29_01056870hypothetical proteinATGACTGACTTTGTTGAGGCTGTCCTCCATGACGGTTCGGTCATTCCTGTCACCCTTCAGGGGGATGGGCCGGCGCTGCTGCTGCCCGTCAGGCTGGAGCCGTATGCGCCTGCCGAGGCCGAGACCATGCGGAAATGGGGAGGGGACCCGGAGCTCGGGCCGGTTCTGGTGGCGGGGCTGTCGGCATCGAACCGGGTGATCGCGGCGGACTACGAAGGACACCGGATGGCCCACCCGGCTCCGGACAGCCTGACCCCGGACCATCTTGCCGCTGACCTTCTTGCCATCGCGGATGCCGCCGGCGCCGAATCGTTCGGCTACTACGGCTACTACGGCTACTCCTGGCTGGCGCTTAGCGGCCTGCAGCTGGCGCTTCGCACGGACCGGCTCGGGGCGCTGGTGATGGGCGGGTTTCCTCCCCTGGAGGGACCGTACCAGAGCATGCTGACGGTCACCCGCGCGGCGCACGTGATGTCCACCCAGGCACCTCATCCATCGTCGGTTTCGGTGGCGGAAGCCGAGCCCGGCGACTGGGATTCTGCCGCTGTTCAGACCACGCCGATGCAAACCGGCCAGTTCGTCACGCTCTACGAAGCGCTCCAGGACTTCGACGACTCAGCCGCCCGCTTGCCCCGGGGCCTGCCCAGACTCGCCTTCGCCGGGGCCGAAGACACCATCGATTACAGCCCTCAGTGGGGCGGAGTCCGGGTGAACATAGGTGAGCCGTTGGCCAGGCATGAGAGCGAACTGAGGGAGACCGGCTGGGATGTGCGGGTCCTTCCTGGCCTGGACCACCTGGGTGCGATGCACAGCTCCGTGGTGTTGCCCATTCTGAAGGACTGGCTGCCGAAGGTGGGCTGGGCGAAGTAGMTDFVEAVLHDGSVIPVTLQGDGPALLLPVRLEPYAPAEAETMRKWGGDPELGPVLVAGLSASNRVIAADYEGHRMAHPAPDSLTPDHLAADLLAIADAAGAESFGYYGYYGYSWLALSGLQLALRTDRLGALVMGGFPPLEGPYQSMLTVTRAAHVMSTQAPHPSSVSVAEAEPGDWDSAAVQTTPMQTGQFVTLYEALQDFDDSAARLPRGLPRLAFAGAEDTIDYSPQWGGVRVNIGEPLARHESELRETGWDVRVLPGLDHLGAMHSSVVLPILKDWLPKVGWAKNANANANANA
D1-29_01057324hypothetical proteinATGGAGACTGAATACGCCGATGTCACCGGTCACGACGTCACCACGATTGTCTGTGTCTGCGGGAACACCGTCAGCGGCGAGGGACTGATCCAGGCCAACCGTCAAGGCATCCCGGTCCACGGGGACAGCAGCACCCCCGTACCCGCCGGGCTGGCCGAGTGGCCGGAGGATGAGGACATCTACACGCTCTGTCCGTCCTGCGGCCGGGTATACCGTGACGCCGTGATTGAGGAGACAGGGACAGCCCCGGTTGCGTTCCGGGTGGACGCCGCCCACGGACCCGTTGCCGAGGCAATCCGCATCCACTGGGAGCAAAACCAATAGMETEYADVTGHDVTTIVCVCGNTVSGEGLIQANRQGIPVHGDSSTPVPAGLAEWPEDEDIYTLCPSCGRVYRDAVIEETGTAPVAFRVDAAHGPVAEAIRIHWEQNQNANANANANA
D1-29_01058519hypothetical proteinATGGCCTCCCTCCCCGTTACCCTCTCCGAAGATGTCTTGAACCAGCCAATCCGAATCCAGTTGGAGGCGTTCCTTAACGAGCATCGGCTCGCCCTCGGTGACTGCCTGGACGGGCTCACCGAGGAGCAGGTGCGTCGGTCCCTGGTACCCTCCCGGACCACGCTGCTTGGCTTGGTGAAGCACGCCACCTTCGTCGAAAAGGTCTGGTTCGATGAAGCCATCACGTGCCGGTCCCGCACCGAGATCGGCATCGCTGCCATTGTGGACAATTCATTTATCCTCGGCGACGGCGACAGCATCGCCACCGTCCGGGAGGCCTACCGGCAGGCGTGCGGGGCCTCGCGGGCCGCGACGGCGCCGCTGGGGCTCGACGACCTTCTTCACGGAAACCGGCGTGGCCCGCTCCCGCTGCGCTGGGTGTACCTGCACATGCTCCGGGAGCTCGCCCAGCACTGCGGCCACGCTGACATCCTGCGCGAGCAGCTGCTGGCCAATAACGCCACCAGCGCGCAGGCATAAMASLPVTLSEDVLNQPIRIQLEAFLNEHRLALGDCLDGLTEEQVRRSLVPSRTTLLGLVKHATFVEKVWFDEAITCRSRTEIGIAAIVDNSFILGDGDSIATVREAYRQACGASRAATAPLGLDDLLHGNRRGPLPLRWVYLHMLRELAQHCGHADILREQLLANNATSAQANANANANANA
D1-29_01059360hypothetical proteinATGGTGCTGGACGCTGTCAGTGCCTATCGTGGAGCCATGTCTGATACTTTCTCCTCCCTCATGGACACGTTCAAAAACATCGGTGTTTCGAAGGCATACGGCCCACCGATCCAGGTGGGCGGGGAAGAAATCATCCCCGTTGCTGTGGTCTCCTTCGGATTTGGTGGCGGCGGGGAAGCAGGGAACGGTGCTTCCGGCGGAGGGGGAGGGGGCATGGTGGTGCCGCTGGGTGTTTACCGGAACGACGGCGGGCGCTCAACGTTCCGGCCCAATACCGTGGTCACGCTGGTCTGCCTGGTTCCCGCCATCCTGGCCGCCGGCGCCGCCATCAGCAGCGTTGTTCGCGCGGCGAGATCATAAMVLDAVSAYRGAMSDTFSSLMDTFKNIGVSKAYGPPIQVGGEEIIPVAVVSFGFGGGGEAGNGASGGGGGGMVVPLGVYRNDGGRSTFRPNTVVTLVCLVPAILAAGAAISSVVRAARSNANANANANA
D1-29_01060375hypothetical proteinATGTCCGGTGAGCCAGTGTATTTCGAAATCGGCGTTCAGGATGCCGGCCGCGGCAAGGCCTTTTACGGGTCGCTCTTCGGGTGGAAGTTTGCCCCCGGACCCTCAGGAGGGGAAGGGTTTGTGATCGGCACCCCGGGGATCAGCGGCGGGATGCACGGAGGCGACCCCGGCGCGGCGCCGTATCTGTTCTTTCGAGTCGATGACCTCGACTCCGCCCTGGCCCGGGTGCGCGAGCTGGGCGGTTCGATCGACGAGACCGACCTTGGCGATGAAAGCAAGGCCGCAGAGTATGGCCGCTTCAAGCTGTGCCGGGACGACCAAGGCTCCGTCTTTGGGCTCCACGAACCTCCGCCGGGCCCGGACTTCACGCTCTAGMSGEPVYFEIGVQDAGRGKAFYGSLFGWKFAPGPSGGEGFVIGTPGISGGMHGGDPGAAPYLFFRVDDLDSALARVRELGGSIDETDLGDESKAAEYGRFKLCRDDQGSVFGLHEPPPGPDFTLNANANANANA
D1-29_01061960pip_1COG0596Proline iminopeptidaseGTGACTGAACAGAGCGGGGAGACGGACAGCGGCTGGGTGGACGTGCCCCACGCAAGGATCTACTGGGAATCGACAGGACATCCTTCAGGGGTGCCGGTGCTCTACCTTCACGGCGGCCCCGGCAGCTCGCTGGGCGGCGGGGGCTACCGTAAACAGCACGATCCCAGCCGGTTCCGGACCATTGGGCTGGACCAGCGCGGCTGCGGCAAAAGCACGCCCCGGGCGCAGGATGACCTGGGCCACCTGCACCTGAATACCACGCAAATGCTTGTGGAGGACATCGAGGCCGTTCGCGAGCACCTCGGCATAGACAAGTGGATTGTCACCGGCGGCTCCTGGGGCTCAACCCTCGCGCTCGCCTACGCGTTGCAGCACCCCGGCCGGGTACTCGGCCTTGCCCTCGTGGCGGTGACAACCACCAGCCGCGCCGAGGTCCAGTGGATCACTGAAGGCGTCGGGACTGTGTTCCCGGAAGCATGGGCCGAGTTCGCAGCCAACGCCGACGCACACCCGGGAGAACGCTTGGTGGAGGCTTACGCCCGCCGCCTGGCGGGAGAAGACCGCGACGACGCCCGGCTGGCGGCAGAGGACTGGGACCGCTGGGAATCGACGCACATTGCCCTGGACCCGCGCTGGCAGCCAGGCCCGATGTTCGACGACGAACGCGAGCGCATGACCTTCGCCCTGCTGGTTACGCACTATTGGTCGCGGGACGGATTTCTAACCAAATGGCACGAGATCATTCCGCGGATCCACGAACTGGAAGGGATCCCCGGCCACCTCATCCACGGCCGCCGCGACATCAGCGGCCCCGTGATAACGCCGTGGAAGCTTCACCAAGGATGGAAAGGCAGCAAGCTCACCGTCATTGAAAGCGAGGGGCACGGCGGCCCGGAATCAGCCAAAGCACTCGCCCAGGCGGTGGAAGAGGTTGCCGCCCACCTGATTGAGGATAGCTAGMTEQSGETDSGWVDVPHARIYWESTGHPSGVPVLYLHGGPGSSLGGGGYRKQHDPSRFRTIGLDQRGCGKSTPRAQDDLGHLHLNTTQMLVEDIEAVREHLGIDKWIVTGGSWGSTLALAYALQHPGRVLGLALVAVTTTSRAEVQWITEGVGTVFPEAWAEFAANADAHPGERLVEAYARRLAGEDRDDARLAAEDWDRWESTHIALDPRWQPGPMFDDERERMTFALLVTHYWSRDGFLTKWHEIIPRIHELEGIPGHLIHGRRDISGPVITPWKLHQGWKGSKLTVIESEGHGGPESAKALAQAVEEVAAHLIEDSNANANANANA
D1-29_01062903hypothetical proteinGTGCCTTTCAGCCCGACGTCGGAAAATTCGGGCTGGATAAATCCGGCTGGATCAATCCCCCGGCCCGCCGCCTATGATGCTGACATGGGGGAACATCCGAGCTGGAGCTCATCCGGGGCTGGTCAGCAGATCTACGTAGAAATTGGCATCCGCACGTCTATGGAGCGGCTGTGGACGCTCAGCCAGGAACCGGACCTGCATCCGCGCTGGGACCTTCGGTTTTCCCGCATCGTCCCTACGGGCCAGGACGATGAAGGCAACGTCAGCTTCCGCTACGAGTTTCGGCTGCCGTTCCACACCATCAGGGGAACCGGAACGTCACTGGGCCACCGGCGTCGTGCCGACGGCCAGGCAACGTCGGTACTCAAATTCACCACAGCAGACGTGCTCTCGCCCATCGGGCCCGGTGCAGGATATTGGCGCTACATCCCCACCGACCACGGCGTGCGCTTCATCACCGGGTACAGCTACCGGCCGGGAATGGGCCTCCTCGGCGGGATCCTTGACGGCCGGGTGATCCGCCCTGCCCTGGGCTGGGCGACGGCCATCTCCTTTGATCGCCTACGCCTGTGGGCGGAATCCGGCCTCCGGCCCGAGGTTTCCCGCAACCGCTGGGCTATGGATGCAGCGGCCAGAAGTGCTGCTCTTCTAACTGCGCTGTTCCTGTTCCGCCGTGCCCTGTCCGGCCGGGACGCGGGAATGGCAGCCACTTTGGGTTCGACGGCGGCGCTGGCCTCCTGGTTCATCCCGCCACACCGGACGGTCCCGCGGGCGGGGCGGTGCCTGAGGAAGGCGCCTGATCCGCGCTCCGGACGCGCCCCCTCGGCTCTCCTGACTCTTCCGTCACCTTCCACCTCCGCCCCCGGCCCTGACAGAAGGAGCAGCAGTGGCATCAATCTTTGAMPFSPTSENSGWINPAGSIPRPAAYDADMGEHPSWSSSGAGQQIYVEIGIRTSMERLWTLSQEPDLHPRWDLRFSRIVPTGQDDEGNVSFRYEFRLPFHTIRGTGTSLGHRRRADGQATSVLKFTTADVLSPIGPGAGYWRYIPTDHGVRFITGYSYRPGMGLLGGILDGRVIRPALGWATAISFDRLRLWAESGLRPEVSRNRWAMDAAARSAALLTALFLFRRALSGRDAGMAATLGSTAALASWFIPPHRTVPRAGRCLRKAPDPRSGRAPSALLTLPSPSTSAPGPDRRSSSGINLNANANANANA
D1-29_01063684hypothetical proteinGTGGCATCAATCTTTGAACTCGCGATGGGCCAGGACTTCCACCGGCTGCATCCCATGTTGCAGAAGCGCTTTGGAGTGGACGCCGAAGCTGGTTACGCATGCGTGGGACGCGGTGTCTTTACGGAAGTGCGCCGCGGGGCGTGGTGGACGCTGCCCTTTCTTCGCCTGGGGGCGTACCGCAACATTCTCTTCCCGGACCGCGGCGAAAACATTCCCTTCACCATCGAGAACTATCCCTATGTTGACGGCTTCGGCCGCCCCACCGTCACTTTCGTCAGGACGCTGGAGCTCCCCGGGTCCAGGACCCGCCGGTTCGACGCCACTATGGTTTTCAGTCCGGACAGCGGCGGGATAGTGGACTACCTCGGCACGCACCAGCACCTGGCCACCGACCTCATCCTGGAGGTGATGCCGGATGGATCGCTCCACCTCCAATCAGGAGCCCAGCGGTTCTACGAAGGCTTGCTGGGATTCACCTTTCCCGCTGCGTTTACGGGTACCGCCGATCTCTATGAGGGCTTTGATGACGCCCGCGGTGTTTTCACCATCCAGATGCAGGTGCGCAATCCTCTCGTGGGCTTCCTTTTCGGGTACCGCGGAGAGTTCGAATGCACCTTTCCTGACATCGACGCTGACGGAGCCCCTCAGCGGCTTAGGCCGGTGAGGGAGGAACGCCGGCTGTAGMASIFELAMGQDFHRLHPMLQKRFGVDAEAGYACVGRGVFTEVRRGAWWTLPFLRLGAYRNILFPDRGENIPFTIENYPYVDGFGRPTVTFVRTLELPGSRTRRFDATMVFSPDSGGIVDYLGTHQHLATDLILEVMPDGSLHLQSGAQRFYEGLLGFTFPAAFTGTADLYEGFDDARGVFTIQMQVRNPLVGFLFGYRGEFECTFPDIDADGAPQRLRPVREERRLNANANANANA
D1-29_010641494yhdG_1COG0531putative amino acid permease YhdGATGAGCACAACGTCAGACAGAGTCTTTGATGTAACTCCTGAAAGAGACGAACCCAAGCTCAAACGGGTGCTCGGACCCAAGCTCCTGCTCCTCTTCATCGTTGGTGACATCCTGGGCGCCGGCGTGTACGCGGTGACCGGGACGATGGCCGGCCAGGTCGGCGGCATTGTATGGCTGCCGTTCCTGCTCGCCTTCATCGTCGCCACACTGACCGCCTTCTCCTATCTGGAGCTGGTCACCCAATACCCACAGGCGGCGGGCGCTGCGCTCTACACCCACAAGGCATTCGGGATTCACTTTGTCACCTTCCTTGTGGCGTTCGCCGTTGTCTGCTCCGGAATCACCAGCGCCTCCACCTCCGCGAACGTCCTGGCACAAAACTTCTTCGGCGGGATGGAGATCAACGGCTGGATGGGAGTGCCCGGACGGGAAGTCATCACCCTGGTGGCGATGGGCTTTATGCTCCTGCTGGCGATCATCAACCTGCGCGGCGTGGGCGAGAGCGTGAAGTTCAACGTGGTGCTGACGCTGGTGGAGATGATCGCGCTGTGCATCGTGATCGGCGTCGGCTTTTATGTGATGACGCAGGGCACCGGGAACGCAGGCGAAATATTCGTCTTCAATGACTACCAGGACAAGGGGCTGTTCCTGGCGGTCACGGCGGCAACCTCCATTGCCTTCTTTGCGATGGTGGGGTTCGAAGACTCGGTGAACATGGTGGAGGAGACCAAAGAACCCGAGAAGATCTTCCCGCGCACCATGCTAACGGGCTTGGGCATAGCGGTGCTCCTGTACATGCTGGTGGCCGTTTCCGTGGTCAGTGTGCTTTCGCCTACCGAGCTTGAGGACATCAGGGAGGCCGAGGGTGCCGCGCTCCTCGAGGTGGTGCACAAGGGTTCCCCGGACTTCCCGATCGACAGGATCTTCCCGTTCCTTGCGGTATTCGCTGTGGCCAACACCGCGCTGATCAACATGCTGATGGCCAGCCGCCTCATTTACGGCATGGCCCGCCAGGATGTCCTGCCGCGGGCGCTGGGCAAGGTGCTTCCGGTGCGCCGGACGCCGTGGGCCGGCATCCTGTTCTCCACCGTTCTTGCACTGGGTCTGATCTGGTACGTCAGCAGCGATCCGGAAAGCAACATTGTTGCCAACCTTTCGGGCACGACGGCGTTCCTGCTGCTTTGCGTCTTTACGGTGGTCAACGTGGCCTGCCTGGTGCTCCGGCGCAAGCGGGACCCCAACCGCAAGGTCTGGTTCACCTCACCCGGCCAACTTCCCCTGCTGGCTGCGTTGCTGTGCGCCTTCCTTGCCGGCCCGTGGGTGGGACGGAACCCCATCCAATACCAGGTGGCCGGAGGGCTGATGGCCATCGGCATCGTGCTGTGGCTTATCACCTGGCTGATCACCCGGCGGACGAACCGGGGCCCTGGCGAACCGGTGGGGACGCAGAATATCGGCAAGGACGAAGGCGTCCCTCCGCCGCCCATTCACTGAMSTTSDRVFDVTPERDEPKLKRVLGPKLLLLFIVGDILGAGVYAVTGTMAGQVGGIVWLPFLLAFIVATLTAFSYLELVTQYPQAAGAALYTHKAFGIHFVTFLVAFAVVCSGITSASTSANVLAQNFFGGMEINGWMGVPGREVITLVAMGFMLLLAIINLRGVGESVKFNVVLTLVEMIALCIVIGVGFYVMTQGTGNAGEIFVFNDYQDKGLFLAVTAATSIAFFAMVGFEDSVNMVEETKEPEKIFPRTMLTGLGIAVLLYMLVAVSVVSVLSPTELEDIREAEGAALLEVVHKGSPDFPIDRIFPFLAVFAVANTALINMLMASRLIYGMARQDVLPRALGKVLPVRRTPWAGILFSTVLALGLIWYVSSDPESNIVANLSGTTAFLLLCVFTVVNVACLVLRRKRDPNRKVWFTSPGQLPLLAALLCAFLAGPWVGRNPIQYQVAGGLMAIGIVLWLITWLITRRTNRGPGEPVGTQNIGKDEGVPPPPIHPGPT0020810_2436DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_01065297hypothetical proteinATGAACATCCGGCCAGAGCAAGAAACATCCGGAGACATACCGGAAGCTGATGCCCTTGAACAGCAAACACCTGTCCTGCCGGACGGGTCCGAGAACGTCATGGACCCCCTGCCCATGGATGCCCCGGAGGCAGACGTCATAGAGCAGCACGCGGACGTGAGGCCAGGCGGTGCGGCTGCCGGGATTGCGGCCGTTGCAGAAGCGGACGCAGCCGAGGCAGACCTGGTGGAACAGGCGATGGCGCTCTCCATTGACGACGAAGAGGATTACCCCGAAGGCAGCGACGAGGATGGCTAGMNIRPEQETSGDIPEADALEQQTPVLPDGSENVMDPLPMDAPEADVIEQHADVRPGGAAAGIAAVAEADAAEADLVEQAMALSIDDEEDYPEGSDEDGNANANANANA
D1-29_010662352Beta-xylosidaseGTGAACAGCGGTGCAGCCGAAACGCAAGCAGTTCAGCGCCCCGCCGGGCACACCGGCGTCGAACGCCTGATCCAGGACATGACCATCGAGGAGAAGCTCGCCCAGCTGGTTGGGGTCTGGGTCAATGCCTCGATCGAGGGAGACTCCGTTGCGCCGCTGCAGAGCCAGCTGGCCGGGGACATCCGCTCGTGGGGCGAGGTCATCGCGGACGGGCTGGGGCAGATCACGCGCATGTACGGCACCACTCCCCTGGACCCGGCGGCGGGGGCACGCTCCCTGGCCGCGGCGCAGCGGGACATCATGGCCGCCTCACGGTTTGGCATTCCTGCCCAGGTCCACGAGGAATGCCTCGCCGGCCTGGCCGCCTGGAAAGCCACGGCCTTCCCCGTACCGCTCGCCTGGGGCGCCACATTCAACCCTGCACTGGTGCGCGCAATGGCCGGCCGGATCGGCGAAAGCATGCGCGGACTCGGCGTCCACCAAGGCCTGGCGCCGGTGCTGGACGTGGTCCGCGACCTCCGCTGGGGACGCGTGGAGGAGACCATCGGCGAGGACCCTTACCTGGTGGGCACAGTGGCCACGGCCTATGTGCAGGGCCTGGAGGAAGCCGGCGTCGTGGCCACCCTCAAGCACTTTGTGGGCTACTCCGCCTCCCGTGCAGGCCGCAACCACGCGCCCGTCTCCATGGGTCCGCGCGAACTCGCGGACGTAATGCTTCCACCCTTTGAAATGGCCATCAAACACGGCGGTGCCCGTTCGGTCATGCACGCGTACACGGACGTCGACGGCGTGCCGGGGGCCGCCAACGGCCCCCTCCTCACCACCCTGCTTCGCGACACCTGGGGCTTTGACGGCACCGTGGTGGCCGACTACTTCGGCGTCTCCTTCCTGCAGCTGATGCACGGCGTGGCAGAGGACGGCGGACACGCCGCGGCGCTGGCGCTCGAGGCGGGGGTCGACGTCGAACTTCCCACCGTGAACTGCTTCGGCGGGCCGCTGCTCGCCCGGGTCCGGGAAGGCAAAGTGCCCGAAGAACTGATCGACCGGGCCTTGCGGCGCGTGCTGAACCAGAAGCTCGAGGCAGGCCTGCTGGACGCCGGGTTCGATCCGGAACCGCCGTTCCTGGCTGCTGCAGGCCCCATCGACCTGGACCCGACTGAAAACCGCCGGCTTGCCAGGGACCTGGCCGTGCAGTCGCTGGTGCTCCTGGCCAATCATGACCGGGGCGCCGGTCCGGCGTTGCCCCTGGCCGGCGCTTCACGTCTCGGCGTGGTGGGCCCGTTGTCCTCGGACCCGTTTGCCATGTTGGGCTGCTATTCGTTCGATGCCCATGTGGGGGCCTCGCATCCCGACACTCCCCTGGGCATCAGCATCCCCACAGTTGCCGGCGTGGCAGCCGAGCGGTTTACCAACATGCAGAGCGCCGTGACGGGAACATGCGAGGCCTCCACGGACGAGGAGATCGACCGGGCCTGCGCCATAGCCCGCTCAGTGGAGACCTGTGTGATTGTGGTGGGCGACAACGCGGGCCTGTTCGGCCGCGGAACCTCAGGCGAAGGCAACGACGCCGCGGACCTCAGGCTTCCGGGCGACCAGCACCGGTTGCTGGACCGCGTCATGGCCGCCGCGGCCCAGGCGGGCACCCGCGTCATTGTGGTGGTGCTGAGCGGACGCCCCTATGCACTGGGTGACTTTGTTGACCGCGCCGACGCCATCGTCCAAGGCTTCTTCCCCGGCGAGGAAGGCGCCGAGGCCCTCTGGGACGTCCTGCTGGGAACGTCCAATTTCTCCGGCAAGCTTCCGGTGTCCGTCCCACGGTCCCCGGGCGGCCAGCCGGGCACTTACCTGCAGAGCAGGCTGGCCGGGAAGACCGAGGTGAGCGCCCTGGATCCGTCGCCTTTGTTCAGCTTTGGTCACGGCCTGTCCTACACATCATTCGAATTGTCAGACCATTCCTGCAGTGCTCCCACCATGTCCACATCGGCGAGCGCAGTAGTCTCCTGCACCGTCACCAACACTGGTTCCCGCGGCGGCGCCGAAGTGGTCCAGCTGTACCTGGAGGATCCCGTGGCCGAGGTGGTCCGCCCGGTCCGTGAGCTGATCGGTTACGCCCGGGTGGAACTCGCCGCCGGGGCCTCGGCAAGGGTGGAGTTCACAGTCCACGCGGACCGCACGTCCTTCACCGGACTGGGGCTGGAGCGCATTGTGGCGCCGGGCCTCGCGAAGCTGCACGTGGCGACGTCGAGCATTAACGATGCCCACACGCACGAACTAATCCTGCACGGCGAGCGGCGGGTGGTGGGGTTTGAGCGGGAGATGCTGACCCCGGTGCGGGTCCGGCCGCTGGTGTAGMNSGAAETQAVQRPAGHTGVERLIQDMTIEEKLAQLVGVWVNASIEGDSVAPLQSQLAGDIRSWGEVIADGLGQITRMYGTTPLDPAAGARSLAAAQRDIMAASRFGIPAQVHEECLAGLAAWKATAFPVPLAWGATFNPALVRAMAGRIGESMRGLGVHQGLAPVLDVVRDLRWGRVEETIGEDPYLVGTVATAYVQGLEEAGVVATLKHFVGYSASRAGRNHAPVSMGPRELADVMLPPFEMAIKHGGARSVMHAYTDVDGVPGAANGPLLTTLLRDTWGFDGTVVADYFGVSFLQLMHGVAEDGGHAAALALEAGVDVELPTVNCFGGPLLARVREGKVPEELIDRALRRVLNQKLEAGLLDAGFDPEPPFLAAAGPIDLDPTENRRLARDLAVQSLVLLANHDRGAGPALPLAGASRLGVVGPLSSDPFAMLGCYSFDAHVGASHPDTPLGISIPTVAGVAAERFTNMQSAVTGTCEASTDEEIDRACAIARSVETCVIVVGDNAGLFGRGTSGEGNDAADLRLPGDQHRLLDRVMAAAAQAGTRVIVVVLSGRPYALGDFVDRADAIVQGFFPGEEGAEALWDVLLGTSNFSGKLPVSVPRSPGGQPGTYLQSRLAGKTEVSALDPSPLFSFGHGLSYTSFELSDHSCSAPTMSTSASAVVSCTVTNTGSRGGAEVVQLYLEDPVAEVVRPVRELIGYARVELAAGASARVEFTVHADRTSFTGLGLERIVAPGLAKLHVATSSINDAHTHELILHGERRVVGFEREMLTPVRVRPLVPGPT0018670_209DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_CELLULOSE|HEMICELLULOSE_DEGRADATION,PGPT0018670-bxlA-K17641NANA
D1-29_010671158iolG_9Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGTTCCACTGCGAAGACGGAGAGAGCGAATACATGCGGAGCTATAAAGTGGCGATCGTTGGCACGGGCGGAATAGCAGCTGTCCATGCTGACAACGTGGGACGCGCCGGAGGCCGGGCCCAGCTGGTGGCGGCATGCGATGTGGACGCGGCGCGGCTGGAATCCTTCAGCAACCAGCACAACATCCCGGGCCGCTTCCAAAACCTCACTGAGTTGCTGGCTGAGAGCACGCCGGACATCGTGCACCTGTGCACCCCGCCCATGATGCACATCGACCAGGCCATTGAATGCCTTGAGGCCGGCGTCCATGTCCTGTCGGAGAAGCCGCCGGCCCTGAGCCTGGCGGATTTCGACAGGTTGGAGGCAGCCAGGATCAAGGGTGGCGCGCAGTTCTCCTGCGTGTTCCAGCACAGGTTCGGCGATGCGGCGGCGGCAGCCAAGGGCCTGATCGGGGAGGCTGCTTTTGGCCGGCCGCTAGTGGCCAGGTGCGATACCCTCTGGTACCGGCCGGACAGCTACTGGGACCTGCCGTGGCGGGGTTCATGGAATGCCGAGGGCGGCGGACCCACCATGGGCCACGGCATCCACCAGTTCGATCTGCTGCTCCACCTCCTGGGCCCGTGGCAGGAGGTCACCGCTCTCGCTTCGCGTCAGGCCCGCAGGACCTCCACCGAGGACCTGTCCGCAGCCCTTGTCCGTTTTGAGAACGGGGCGGTGGCCACTGTTTTAAACTCCCTGCTGTCCCCGCGGGAAACCTCAGAGATCCGCATTGACACCGAGTTCGCCACCATCGAGCTCTCCCACCTCTACGGCTACTCCACCGGCAACTGGACCATCACCGGTGCGCCCGGACACGAGGAGACAGTCCTCGCAGCCTGGGAGGGCCAGCCGCTGGAGCAGGGGAGCGGCCATTCAGCCCAGTTCCTGGCCATGTATGACGCGCTCGACGCCGGCCAACCGCTTCCGGCGGGCGCGGACTCGGTGCGCCAGACCCTGGAACTCGCTGCCGCGATTTACGCGTCAGCGTTCACCGGCAAGGCAGTGCAGCGTGGGGAGATCGTGCCAGGGCATCCCTTCTACAACGGCATGGACGGCGACGGCCTGGGTACCCGGATCCTGGATTCAACAGCCCTTGCATCCGCCACCGCTTCCTCCTGAMFHCEDGESEYMRSYKVAIVGTGGIAAVHADNVGRAGGRAQLVAACDVDAARLESFSNQHNIPGRFQNLTELLAESTPDIVHLCTPPMMHIDQAIECLEAGVHVLSEKPPALSLADFDRLEAARIKGGAQFSCVFQHRFGDAAAAAKGLIGEAAFGRPLVARCDTLWYRPDSYWDLPWRGSWNAEGGGPTMGHGIHQFDLLLHLLGPWQEVTALASRQARRTSTEDLSAALVRFENGAVATVLNSLLSPRETSEIRIDTEFATIELSHLYGYSTGNWTITGAPGHEETVLAAWEGQPLEQGSGHSAQFLAMYDALDAGQPLPAGADSVRQTLELAAAIYASAFTGKAVQRGEIVPGHPFYNGMDGDGLGTRILDSTALASATASSNANANANANA
D1-29_01068975hypothetical proteinGTGACCACCACCGCAGCACCCACCAGCACCGTAACGAACAAAGAGCTCACCTATTCCGACGATGGCACCACCCTTGCCTTCAGTGCCGGCGGGCAGGAGCTGGCGAGATACACCTACCGCCCCGGGGATGACCAGTACGAAAGCCCGCGCCCGTACTTCCACCCGCTCAGGACCCTCGGCGGGGACGAGGTCACCATTGCCCGGCCCTGGGACCACGTGTGGCACAAAGGCCTGTCGTGGGCGCTGCCGAACGTCGGGAAGGACAACTTCTGGGGCGGCGCCACGTACACCCGGGAAACGGAATACGCCAACCTGGACAACAACGGCGCCATGAACCATGAGGCCTTCACCGGGATCACTGACTCCGACGGCGGCATTACGGCGGCGGAAGCCCTCACCTGGACCTCGCAGGACGGCAAGCCCGTCATCGCCGAAAAACGCCGCTTCAACATCCGGCTCCTGGAGGTTCCGCCGGCGGGCGAAGAAGGCCGCGCTGCCTGGGCCATCCTCTTCGAAACCGAAATGACCAACGTCTCGCCTGACACCATCGAGATCGGAAGCCCCACCACCGAAGGCCGGAACAACGCCGGCTACGGCGGGCTGTTCTGGCGCGGGCCGCGGTCCTTCACCGGGGGAGAGTTCCGGTCACCCGACGGGACCGGCGCGGACGAGTTCATGGGCACCCGCTCCCCGTGGATCGCCTTCACCGGCCAGCACGATGTCACCTGCCGCTTCTCCTCCATCATGTTTGTTGAGGACAGCGCCAACCCCGGTGCGCCCAACCAGTGGTTCGCCCGCTCGTCCATGTTCGCGTGCCTGGGTTCCGCGCCGTTCTTCAGCGAAGTAGTCCCGCTGAAGGAAGGCCAGCCGCTGACCTACCGCTACGCCGTCGTGATTTCAGACGGAAAAGCGGACGGGGACACGGCGGACCGGCTGGCGGAAGCTGCCAAAGCCGCCCTGGAAAGCTGGAAGTGAMTTTAAPTSTVTNKELTYSDDGTTLAFSAGGQELARYTYRPGDDQYESPRPYFHPLRTLGGDEVTIARPWDHVWHKGLSWALPNVGKDNFWGGATYTRETEYANLDNNGAMNHEAFTGITDSDGGITAAEALTWTSQDGKPVIAEKRRFNIRLLEVPPAGEEGRAAWAILFETEMTNVSPDTIEIGSPTTEGRNNAGYGGLFWRGPRSFTGGEFRSPDGTGADEFMGTRSPWIAFTGQHDVTCRFSSIMFVEDSANPGAPNQWFARSSMFACLGSAPFFSEVVPLKEGQPLTYRYAVVISDGKADGDTADRLAEAAKAALESWKNANANANANA
D1-29_01069744hypothetical proteinATGGCCAGCAGCACGTTCCCGGGCGCCACCGCAGTCTCCGCGGTGAGCATCTACAACTGGCCGGCCAGGGACGGTGCCGCCGGCGGCACGCCGCACATGCACACGGCGTCCACGGAGGCGTACATCGTGCTCGAGGGGACGGGCCGCCTCGAGACCCTGGACTCGAGGGGATTTACGTCCACGGACCTGGCTCCCGGGGTGGTGCTCTGGTTTACGCCGGGTACGGTGCACCGGGCCATCAACACCTCGGGCGATCTCAAGGTGCTGGTCCTGATGCAGAACGCCGGGCTGCCTGAGAACGGGGACGCTGTGATGACGTTCCCGGCGGAGCACCTTGTGGACGTGGAGTCGTACCGGGCCGCCGCTTCCCTCCCGTCCAGGGAGGCCGACGGCGGTGATCCGGCTGCGGAGGAAGCTGTCCGCCGTCGTCGGGATCTGGCGCTCGAGGGATACCTTCAGCTCAAGGAGGCGGTCCTGCGATCCGGAGTTGCCGGATTGGCGGATTTCCATGCGGCTGCGGCGAACCTGGTGAGCGGAAACACCCCAACCTGGACAGGCTTCCTGGAGCAGGGGGCGGCCGCGCAGGCAGCGCTGACAAAGGATCATTTACTCTCTCTGGAATCCAAAGAAAGTTTCTTCCTGCAGGAGTCCGCTACTAGGATGGGAATACGGAAACCCCGCAGAATCTACGGCATGTGTGGACGAATCGAGACCTGGGAACTTTCCGATAACAGTCAGCGCTGAMASSTFPGATAVSAVSIYNWPARDGAAGGTPHMHTASTEAYIVLEGTGRLETLDSRGFTSTDLAPGVVLWFTPGTVHRAINTSGDLKVLVLMQNAGLPENGDAVMTFPAEHLVDVESYRAAASLPSREADGGDPAAEEAVRRRRDLALEGYLQLKEAVLRSGVAGLADFHAAAANLVSGNTPTWTGFLEQGAAAQAALTKDHLLSLESKESFFLQESATRMGIRKPRRIYGMCGRIETWELSDNSQRNANANANANA
D1-29_010701032cytR_3COG1609HTH-type transcriptional repressor CytRATGACGAAGCCGGACGTGGGACGAGCCACCATCAGCGAGATTGCCCGGGAAGCCGGCGTCTCCGTTCCCACGGTCTCCAAGGTCCTGAACGGGCATGCCCATGTGGCAGCGGCAACGCGCGCCCGGGTGGAGGAAATCATTGCCCGCCGCGACTACGCCCGGCGTCCGGCGAAGCGAAGCAAAAAGGCCGGACTGATCGACCTGGTGTTCCCCGGGCTGGGCTCGGAGTGGGCGCTGGAAATCATCGAAGGCGTGGAGCGCGTGGCGCAGGATGCCGGGTACGGCACGGTGGTGAGCAGCCTTTCCATGGACGGTTCGCGGATCCGGCCATGGCTGGCGAACCTGGCCGAGCGGAAGTCGGACGGGCTGCTGATGGCGGTCTATGAGCTGGACGCCAAGCAGATCCAGCGCATCAAGTCGCTGGGGATCCCGGTGGTGCTGATCGATCCCGTCGGCCAGCCCGGGCCCGACCTCATGACGGTGGGGGCGGCAAACTGGGAGGGCGCGCACTCGGCCACGGAGTACCTGCTGGGGCTGGGGCACCGGCGGATTGGCATGATCGGCGGCCGCGAGGACCTGCAGTGCAGCAGTGCGCGCGAAGACGGGTACATCTCAGCGCTCCGGCGGGCCGGCGTCGGCATAGACCAGGCACTCATGGTTCCCGGTGACTTCTCCATTGAGGCCGGCGAGGCCGGAACCCGCAAGCTCCTTGAGCTGGCGGACCGGCCCACCGCCATCTTCACCGGCAACGACGACCAGGCGCTGGGCGCCTACCGGGCCGCGCGGACGGCGGGCCTTCGGATTCCGCAGGATCTGTCCATCGTTGGCTTTGATGACATCCCGGCCGCCGAATGGATCGAACCGGGGCTCACCACCATCCGCCAGCCCGTGGTCCAGATGGCCGAGACGGCCATGCGCGCGCTGCTCCGGCACCTGGACGGGGACGAGGAGTTGCCGCAGCGGATCGAGCTCGGGACGGAGCTGGTGGTGCGGGGTTCAACGGCGCCGCCGGCGAAGGCCGCGGGTTCCTGAMTKPDVGRATISEIAREAGVSVPTVSKVLNGHAHVAAATRARVEEIIARRDYARRPAKRSKKAGLIDLVFPGLGSEWALEIIEGVERVAQDAGYGTVVSSLSMDGSRIRPWLANLAERKSDGLLMAVYELDAKQIQRIKSLGIPVVLIDPVGQPGPDLMTVGAANWEGAHSATEYLLGLGHRRIGMIGGREDLQCSSAREDGYISALRRAGVGIDQALMVPGDFSIEAGEAGTRKLLELADRPTAIFTGNDDQALGAYRAARTAGLRIPQDLSIVGFDDIPAAEWIEPGLTTIRQPVVQMAETAMRALLRHLDGDEELPQRIELGTELVVRGSTAPPAKAAGSPGPT0017992_8318DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_01071345hypothetical proteinATGGGTTCCGTTGACGATTCCTTAGCCGATTTACCGCCGTCGGAGCGTGCCTGTCTTCAGCATGTGATAGACGTTGCGCGGGCCGTAGCGCCCGAGGCCATTGATGGCGTGAGCTACGGGATGCCCGCCCTGAAGCTGGACGGGAAGCCGCTCCTTGGCGTCGTTGCAGCTGCAAAGCACCTGTCCGTTTTTCCGTTTTCCCCGGAGGTTGTTGACGCGGTTGCCTCACGACTCGAGGGCTTCTCCCTGTCAAAAGGCACCATCCGTTTCACCCCCGACCATCCCCTGCCGGACGACGTTGTTGAGGAGCTCGTCCGGCTGCGCCGCGCGGAGATCCAGAAGTAGMGSVDDSLADLPPSERACLQHVIDVARAVAPEAIDGVSYGMPALKLDGKPLLGVVAAAKHLSVFPFSPEVVDAVASRLEGFSLSKGTIRFTPDHPLPDDVVEELVRLRRAEIQKNANANANANA
D1-29_01072513hypothetical proteinATGAAGTCATCGACACGTCCGGACGTTCGTGCGGAGCAGGGCAGTGCGGCGGCGCGGGATGCGGCCGGAATCTGGGCTCGTGCTACCGCTCTGCGGGATCAACTGCCCGTCATTGCAGCGCTGGATGACAAACTGCCAGGTATTGAATCAGCGCTTGCCAGAGACGGAGCCCTGCTACTGATGATCCGTATCGATGATCGCGCACTGGCTTTCTCGATCGTCGTCCCTCATATGAATGTCTTTGAAGTGCTCTACCTTGCAGTGGACCCGGAAGCTTGGGGCAAGGGTCTTGCGCGCCAACTCCTTGACCATCTCCGACGCCATTCACTGAAGGCACAGACTCCTATGGAGCTTTGGGTCATCGCCGACAACAAGAGGGCAATCGCATCCTACGAAAAAGCCGGTTGGATTCCGACGTCGGAACTTGAGGTCCGCAATGAGACGGGGCGGCCGGAACGCCGCTACATCCTGTCCGGTAAAGGATGCTTTACCAGAGAGTCTTTCGGCCCTTAGMKSSTRPDVRAEQGSAAARDAAGIWARATALRDQLPVIAALDDKLPGIESALARDGALLLMIRIDDRALAFSIVVPHMNVFEVLYLAVDPEAWGKGLARQLLDHLRRHSLKAQTPMELWVIADNKRAIASYEKAGWIPTSELEVRNETGRPERRYILSGKGCFTRESFGPNANANANANA
D1-29_01073438hypothetical proteinATGGCCATCAAATTTGAGAATGTAGGTATCGCTGTTCGCGATATCGAAGCAGCAATCGCCTTTTTCACCGATCTCGGTCTTACTGTCGCGGGCCGTGACACGGTCAGCGGGGAGTGGGCCGACACCGCCGTCGGACTTGATGGAAACCATGCCAAGATCGCGATGCTTCAGACCCCAGACGGTCTTGGTCGGCTGGAGCTCTTCGAATACATCCATCCTGAGGCGATCGAGTCGGACCCGACGCGTCCCAACGACATTGGCATGCACCGCGTGGCTTTCTCAGTAGACGACATCGATAAGGCCCTCGAGGTAGCTGCCAAGCACGGATGCCATCCGCTGCGCGGTGTGGCAACCTACGGCGACGTCTACAAACTCACGTACCTCCGCGGACCCAGCGGAATCCTCGTGATGCTCGCCCAAGAACTGAAGAAAGACTGAMAIKFENVGIAVRDIEAAIAFFTDLGLTVAGRDTVSGEWADTAVGLDGNHAKIAMLQTPDGLGRLELFEYIHPEAIESDPTRPNDIGMHRVAFSVDDIDKALEVAAKHGCHPLRGVATYGDVYKLTYLRGPSGILVMLAQELKKDNANANANANA
D1-29_01074264hypothetical proteinATGGCACTCGTCACCCTCCTCCACCGCTTCGCCGACTACGACACCTTCCGCAGCGTCTACGACTCGGCGGAAGGGCTGCGGCAGTCCGGCGGGGTGACCGATCATTCAGTGCACCGCATGGCCGACGATCCCAATAACATCCTGGTGCTCCACTACTTCGATTCAGTCGAGGCAGCCCGCGCATACCTGAGCAATCCCGGATTGAAAGTCGCCATGCTGCAAGCCGGCATGCAAGGCGAGCCGCGGATCGAGTTCTACGAGTAAMALVTLLHRFADYDTFRSVYDSAEGLRQSGGVTDHSVHRMADDPNNILVLHYFDSVEAARAYLSNPGLKVAMLQAGMQGEPRIEFYENANANANANA
D1-29_01075567hypothetical proteinATGGGTACTCATAATCGAGTGATTGCCATCAGCAGTGAGAGTTTTCCCGATTGCTACCTCGAGGTCATCGCGATCGATCCCGACGCGCCGGCGCCGGGGAGGCGGCGGTGGTTCGGGCTCGACGACCCCGAGGTGCGCGAGGCTGTCCGCGAATCCCCTCGGCTGGTGCATGCAGTGGCACGCACGCGCAAGATCGAAATGCTGTGCCGGGACCTCACCAACTTCGGCCTCAATCCTGGCGTGCTGCTTGCGGCCCAGCGCGACACGCCTCATGGACTGTTGAAATGGCGGATCACAGTCCGCGACGACGGCGCCACTGAATGCGCCGGCGCGCTGCCCAGCTTGATCGAATGGGAAGGGCAACATCCGTGTGCCCACATGCCCCCAACAGATGTCACCCTGCAGGGCCTGGTGCTGCGCGGTGTTCCGGTGCAGGCGGCCGACGTGCTGAAGCTTCCGGCAGTTCACACGAGTCCCATCGACGATGAACAGAAAACACCGCTTACCGCGACGCTGGAATCGCCGCGCGGGGGCGTTGTGCTCGATGCGTGGCACTCCGAACGCTGAMGTHNRVIAISSESFPDCYLEVIAIDPDAPAPGRRRWFGLDDPEVREAVRESPRLVHAVARTRKIEMLCRDLTNFGLNPGVLLAAQRDTPHGLLKWRITVRDDGATECAGALPSLIEWEGQHPCAHMPPTDVTLQGLVLRGVPVQAADVLKLPAVHTSPIDDEQKTPLTATLESPRGGVVLDAWHSERNANANANANA
D1-29_01076189hypothetical proteinGTGGAGAGCCTGTGGGCGGAGCGCGGTTCGGTGGTGTCACTAACGATGTCATCTGACACCACACTGAAACCTGGGGCGGCGCCCGAGGCCCACCCTCAAACCGACGACGGCGCCTACCACCGCCTCAAAGTCACTGCCCGCCCCACCAAATACGGCAGCTTCCGCGCCTTCCGCGCGGCGGTGCTCTGAMESLWAERGSVVSLTMSSDTTLKPGAAPEAHPQTDDGAYHRLKVTARPTKYGSFRAFRAAVLNANANANANA
D1-29_01077972drrA_1Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGACCCGCACAGTTATCGCCACGGACCTAGCCTTCGATGTCCGCGGCCTGCGTAAGAGTTTCGGCGAGCACACCGTGCTGGACGGCATCGACCTGCAGATCGAACGCGGCAGGGTGTTTGCCCTCCTCGGCCCCAACGGTGCCGGTAAAACCACCACCGTCCAGATCCTTGCCACGCTGATCAAGGCTGACGGGGGCACCGCCCTGGTGGGCGGCCATTCCGTGACCCACGAACCGGGCCGGGTCCGCCGGGCCATTGGCGTGACCGGACAGTTCTCCGCCGTCGACGAACTCCTCACCGGCGCCGAGAACCTCCGGCTGATGGCGCGGCTGCGCCATGTGCCCAAGGGTGAGCGGGAGGCATTGATCGAGCGTCTGCTGCGCCAGTTCGATCTTACGGAGGCCGCCACGAAGCCCGTGTCCACCTACTCGGGAGGCATGCGGCGGCGCCTTGACCTGGCCATGACGCTGGTGGGGGACCCGAGGATCATTTTCCTCGACGAGCCCACCACTGGCCTGGACCCGCGCAGCCGGCGGGCCATGTGGGACGTGGTGCGCACGCTGGTGGCCGGCGGCGTCACCCTTTTCCTGACCACCCAATACCTCGAAGAGGCGGACCAGCTGGCGGACCGGGTGGCCGTGCTCGACGGCGGCAGGATCGTCGCCGAAGGCACCCCTGCCGAGCTCAAGGCAGCCGTGGGCGAGGAGCAGCTGCGGCTTCGCTTCATCACCGAAGACCAGGCGGGCAGGGCGCGGACGGCGCTGGCCGCCGTCGTCCAGGACGTTTTGCCGGCCTCCGACGCCGGACTGGAGCTCCGCGTGCCAACACCCGCCAACGGCGCGGCCGTGCGCGGCGTGCTGAACATTTTGGCGGCAGCCGGGGTGGAACCGGCCGAAGTCACCACCGCCGCCCCCGACCTTGACGATGTCTTTTTCGCGCTCACCGGGGCACCTACCAAGGAGGAAGCATGAMTRTVIATDLAFDVRGLRKSFGEHTVLDGIDLQIERGRVFALLGPNGAGKTTTVQILATLIKADGGTALVGGHSVTHEPGRVRRAIGVTGQFSAVDELLTGAENLRLMARLRHVPKGEREALIERLLRQFDLTEAATKPVSTYSGGMRRRLDLAMTLVGDPRIIFLDEPTTGLDPRSRRAMWDVVRTLVAGGVTLFLTTQYLEEADQLADRVAVLDGGRIVAEGTPAELKAAVGEEQLRLRFITEDQAGRARTALAAVVQDVLPASDAGLELRVPTPANGAAVRGVLNILAAAGVEPAEVTTAAPDLDDVFFALTGAPTKEEAPGPT0006725_4979DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_01078834drrB_1Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrBATGACAACCATGAAAGCACCGGCAGCGGCATATGAGCCCAGCGCCGTGCAGCACGCCCTCGCGGACACCGTGACCCTGACCGGCCGGGGACTGAAGCGGCTGGTCCGTTACCCGTCAATGATCATCATGATGGTCGGCTTGCCCGTCATCTTCCTGCTGATGTTCGTGTACGTGTTCGGCGGCATGATGGGCGCGGGGCTGGGGGCGGAGTCCGACAGCGGGGTGGCAGCCTACCTCCAGTACGTGGTTCCCGGGATTGTACTGATGGCAGTGGGTACCGGGGGAGCGGGCACAGCGATCTACATTGCAATGGATATGCGGCAGGGTGTGGCGGCCCGGCTGGCAACGACGGACGTCTCCCGCATCGCGATCCTGTCTGCACACGCCGTGGTCAGCGTGGTGCAGGCGCTCCTGGCCACGCTCGCTGTAGGGGCCGCGGCGATGCTGCTGGGCTTCCGGCCCGCCGGCGGGGTGTGGGGAGTCCTGGCCGCGCTGGGCGTCGTTGCCCTGATCGGCTTCGCCATCACCTGGCTGTGCCTGGCGCTGGGAATCGTCGCTGACACCGTTGAAACGGCCAGCAACTCGCCCATGCCGCTGTCCTTCCTGCCGTTCCTGAGCAGCGGGTTCGTCCCCACTGATTCCATGCCCGCATGGTTGGGTGTGGTGGCGGAGTACCAGCCGTTCACTCCGTTCATTGAGACGGTGCGCGGGCTGCTGATGGGTACGGGCGTTGGAAACTACGGGTGGCAGGCCCTGGCGTGGTGCGTGCTGCTGACCGGTCTGGGCATGGCGTGGTCGCTGACCAAGTATGAGGCCAGCCAGACCCGCTCATAAMTTMKAPAAAYEPSAVQHALADTVTLTGRGLKRLVRYPSMIIMMVGLPVIFLLMFVYVFGGMMGAGLGAESDSGVAAYLQYVVPGIVLMAVGTGGAGTAIYIAMDMRQGVAARLATTDVSRIAILSAHAVVSVVQALLATLAVGAAAMLLGFRPAGGVWGVLAALGVVALIGFAITWLCLALGIVADTVETASNSPMPLSFLPFLSSGFVPTDSMPAWLGVVAEYQPFTPFIETVRGLLMGTGVGNYGWQALAWCVLLTGLGMAWSLTKYEASQTRSPGPT0006730_15944DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_01079687yedK_1COG2135SOS response-associated protein YedKATGTCGAAAGCCACGGGCGATCTCCTGGCTCACTTCGAGGCCAGAGACGTTGAGGGCAGCCCGCCTCCGCCGAGCTGGAATGTTGCGCCCACCCAGGATGTCCCCATCATCACGGAGAAGCTGGACGAGGACTCTGTGGAGCGGCGGCTGCTGATCGCGCGCTGGGGTTTGGTTCCGTCCTGGGCCAAGGACGTCAAGATCGGCTGCAAGCTGATCAACGCCCGCAGCGAATCGATCCTGGACAAGCCGGCCTTCCGGAAGGCGGCCATCACGCGCCGGGCCCTGATCCCGGCGGACGGGTACTACGAGTGGGAGAAGACTGAGGACGGGAAGAAGATCCCGCACTACCTCTACTCCGACAAGGATGAGGTGTTGGCCTTCGCCGGCCTGTACGAGTTCTGGCCGGATCCGGCCCTGCCCAAGGACGATCCTCACCGCTGGCTGCTCAGCTGCACTGTCCTCACGACGACGGCCCACGACTCACTTGGCCACGTCCACGACAGGGCCCCGGTCATCGTCCCCCCTGGCCTGTACGCAGACTGGCTCAACCCGGAAATCAGGGAGAAGGAGGACGTGCAGGAATTGCTGGACGCCATCCCGGAAGCAATCCTGACGCCGAGGGTGGTGACTGATCGCGTGAACAGTGTGGGCAACAACGGCCCTGAGCTGATTGAGCCGGCACAGTAGMSKATGDLLAHFEARDVEGSPPPPSWNVAPTQDVPIITEKLDEDSVERRLLIARWGLVPSWAKDVKIGCKLINARSESILDKPAFRKAAITRRALIPADGYYEWEKTEDGKKIPHYLYSDKDEVLAFAGLYEFWPDPALPKDDPHRWLLSCTVLTTTAHDSLGHVHDRAPVIVPPGLYADWLNPEIREKEDVQELLDAIPEAILTPRVVTDRVNSVGNNGPELIEPAQNANANANANA
D1-29_01080294hypothetical proteinATGGCTACCCTGCGGATCGATCTTGAGGTTCGTGACTATGACCTCTGGAGGAATGCTTTCGAAAAGGATGCCGGCGGGCGGCAGCGTTCCGGCGCGCGCAGCTACCGGATCTTCCGTCCGGTGGACAACGAGCACCGCGTCATGCTGGACATCGACTTCGACTCGGTCCAGAACGCCGGCACGTTCCTGGACATACTTCGCACCAAGGTTTGGCCATCCCCGGAGAAGTCGCCCGCCAAGATGGGCGAAGCCACCACCCATATCCTGGAAATGGTTGACGCCCGGGAGTACTGAMATLRIDLEVRDYDLWRNAFEKDAGGRQRSGARSYRIFRPVDNEHRVMLDIDFDSVQNAGTFLDILRTKVWPSPEKSPAKMGEATTHILEMVDAREYNANANANANA
D1-29_01081711hypothetical proteinATGGAAACAGTGGTCAATAGCAGCCGAAGGTATGATTCGCCGCGCCGCCGGGCCCAGGCGCAGGCCACCCGACAGGTGATCCTGGACGCCGCGCAGCGTCTCTTCGAACGCCAGGGCTATCCCGCGACGTCAATGCCGTCCATCGCGGAGGAGGCCGGGGTTGCCCTGAAGACCATCTATGTCTATTTCGAAACCAAGGCCGCCCTGGTCCGCGCGCTGTGGGACGCGCGCCTGGGCGGGGAGGAAGCAGAGGTCCCCGTCCTGGAGCGCGACTGGTACCGCGCAGTGGTCAACGAACACGACGCCGAGCGGAAGCTCCGCCTCGTGGCGGCGCAGGCACGCCGGGTGAAGACGGGCTCGGGGGCTTTATTGGAGGTTATCCGGACTGCAGCCTCAGCCGACCCGGAGATCGCTGCCCTCTGGACCGGTATCGAGGCAAAACTTCTGGATGTGCAGCGTGCCATCGTGGAGCAGCTCCATGTCAGCGGATCACTTGCGAAGTCCCTCGACGTCGTGCGGGGAACAGACATCCTGTGGACTCTCAATCACCCCACGGTGTGGCAGCTGCTGGTCCCGGGGCGGGGCTGGACCGGCGAGGAATATGAGCGCTGGCTGGGGGACGCCTTCTGCTCCCAGCTGCTTAGTGCACACCAGGCTGAGCCACCCCAAGCTGATCCACCCAAACCGAGGGCATCCAAAGCGAAGGGGTAGMETVVNSSRRYDSPRRRAQAQATRQVILDAAQRLFERQGYPATSMPSIAEEAGVALKTIYVYFETKAALVRALWDARLGGEEAEVPVLERDWYRAVVNEHDAERKLRLVAAQARRVKTGSGALLEVIRTAASADPEIAALWTGIEAKLLDVQRAIVEQLHVSGSLAKSLDVVRGTDILWTLNHPTVWQLLVPGRGWTGEEYERWLGDAFCSQLLSAHQAEPPQADPPKPRASKAKGNANANANANA
D1-29_010823570hypothetical proteinATGGTTTTCCAGCGCCCAGATGGAGCGATGGGAGGATTCCGCCGCGCGCAGCATGCCGTGGTGGTCATTGTCCTTGCCGTCGCCGCCCTGCTGGCACCTGGCATCGACCCGGCCCTTGCATATTCCACCGGCCCCGTCTCCGGCATCAGCTCCGCCACCCTGGGCAGCCTGCAGCCGCCCACCAACGTCTCAGTCCCGTCGAGCAGCACAGGCACCGTCCGCGTGAGCTGGACGGCCGCCGTCGGAACCCCCGCACCCACCGGCTACTTCGTCACCAGAACGAGGGCCAGTGACGGTTCCACGACGGCGGCCTGCGGCACCAGCGCATCCGCCACCACCACCGGAACCGCCTGTGATGACATTAAAGTCCCCGTTGGGGACTACAGCTATACGGTCACGTCCGTGTACAGGACATGGACCGCTTCCAGCGCATCGAGCGGGAGCGTCGGGGTCACCCCGCCGGGCTCAGCCGCAAAGCTTCTGTTCCTCACCCAGCCAGCCAACTCCTCCAGCGGTGTGGCCCTTCCCACCCAGCCCGTCGTCGTCGTCACGGACCTGAACGGCAGCATCGTCACCACCCAGGCCCCCACCCTTGTTTCCATCACCGCTTCAGGCGGCCTGCTCACGGGCTGTTTTCCGGCCACCACGGTGAACGGCACGGCAACGTTCTCGGGCTGCACCGTCACCGGCCCGGGCACCTACACGCTGACCGCTGCCTCGTTCCCGCTGACCAGCGCGGTCAGCACGGCTTTCACAGTCGCCGGCACGGCGGCCAAACTTGGTTTCACCACGTCGCCCTCCGGAGCCACCGGCGGCGCAGTCTTCGCCGCCCAGCCAGCCGTCTCTGTCCAGGACAGTTCCAGCCGGACCGTCACCACCAGCACGGCCCCCATCACGCTGAGCATCAGCAGTTCACCCGCCGGGGCCAACCTCAGCTGCGACTCCAACCCCAAGAGCGCCGCCGCCGGCGCGGCCTCGTTCTCAGGCTGCAGGATCGACAAAACCGGGACCTACACCCTGACAGCCAGCGGTGCCGGCTTCACCACTGTCAGCGCCAGCTTCACTGTCACCATCGGGGCGGCCAGCAGGCTGGCCTTCACCACCCAGCCCTCCGGCTCCACCGGCTCCGTGTCTTTCGGGACACAGCCCGCCGTCAGCATCCAGGACGACGGCGGCAATACAGTCACGACGTCGGCGGCCACCGTGGACCTGACGCTCACCGGAACAACCGGGGCAACCCTGAATTGCACCGCCACGCAGGTGGCAGCTGCCGCAGGCGTGGCAACTTTCTCAGGCTGCAGCATCAACAGGGCCGGCACATACACACTGACTGCCACTTCCGCCGGGCTCATCTTCGCGCTCAGCGATACTGTTGCCGTCGCTGCCGGTGCGCCGGCAAAACTGGGCTTCACCGTCCAGCCGTCCCAGGCCACGGCCGGCAGCGCTTTCGCCACCCAACCGACAGTGGCCCTGCAGGACGCCGGCGGAAACACCGCCGGCGGCACCGTTGCCATCACACTGAGCATCACGGGCGCACCCGGCGAAACCATCCTCAGCTGCGCGGCAAACACCGTGACCACAAACGGGGGTCTGGCCTCCTTCTCCGGTTGCAGTGTCAACAAGGCAGGCACCTACACCCTGACAGCGACAGGAGCCGGCTTCACCACCACCAGCGTCAACTTCACCGTTGCCCTGGGAACGCCCACGAAACTCGGCTTCACCACCAATCCGACCAACTCCACCGGCGGCGTCCCCTTTCCGGCCCAGCCGGTGGTGGCCATCCAGGACGCAGGCGGCAACACCATGACCGACAGCACCGCCGCGGTGACCCTGACCATCACCACACCTGCCGGTGCCACCCTGGCCTGTGCTGCGAACCCCGTCGCTGCCGTTTCGGGCGTCAGCGCATTTGTTGGCTGCAGCATCAACAGGCCGGGCACCTACACCCTCACCGCCACGTCCGGAAGCCTCACATCGTCAGTCAGCACCAGCATCACCATCACCACCGGTCCGGCGGCCAAACTGGCCTTCATCACGTCCCCTTCCAGCAGCCCGGTCAACACCGTTTTCGCCACCCAGCCAGCTGTGGCAGTCCAGGACGCCGGCGGCAACGCCATCACCGGCAGCACCGGCCCCGTCACGCTGAAGATCTCGTCCCCCAGCGGCGGGGCCAGCCTCACGTGCACCAGCAACCCTAAAAACGCCGTGTCCGGTGTTGCCACTTTCGCAGGCTGCAGGATCAGCAAAACGGGAACCCGCACCCTGACAGCCACCTCCGGCACGCTCACCGCAGGCACCAGCGCCAGCTTCAACATCACCGGCGGCACGGCCACCAAACTCTCCGTGACCACCAGCCCCAGCGGTTCCACCGGCGGGGTTGCCTTCCCCACCCAGCCCGTCATCACCATCCTGGATGCCGACGGCAACCCAACGGCAAGCACGGCAGCCGTCACCCTGGGCATCACCGCACCCGCCGGTGGAGCCGCCCTGAGCTGCACGGCCAATCCTAAAGCCGCCATATCAGGCGTGGCCGCGTTTACCGGCTGCAGCATCAACAAGCCCGGCACCTACACCCTGACCGCGACGTCGGGAACCCTGACCGCAGCTGTCAGCTCCTCCTTCACCGTCACGACGGGCCCGGCGGCCAAGCTGGGCTTCACCAGCACCCCGTCGAACTCCGTCTACAACACGGTCTTCGCCACCCAGCCGGCAGTGGCCGTGCAGGACGCCGGCGGCAACACCATCACCGGCAGCGCCGCACCAGTCATGCTCAGCATCACCACACCGGCAGGCGCGGTCCTGGTCTGCACCCAGAACCCGGTGAACGCAGCCTCAGGCATCGCCGCATTCACGGGCTGCAGCATTGACAAGGCGGGCACCTACACCCTGACGGCGGCCTCCAGCGCGCTCGCCCCGGCCACAAGCGCCACCTTCACCATCGCCGGAGGGGCTCCCACTAAACTCGCCTTCACCACCAACCCGGCAAACTCCACCGGCGGGACCGCCTTCCCCACGCAGCCGGCAGTGAGCATCCAGGACGACGCCGGCAACACCACCACCAGCACAGCTTCCGTCACGCTGAGCATCACCACGCCCGGCGGAGCCGTCCTGGCATGTACGGGCAACCCCAAGGCAGCAGTAGCCGGCGTGGCCGCTTTCACCGGCTGCGCGGTGAATAAGGCCGGGACGTACACCCTCACCGCCACCTCGGGAACGCTCACCACGGCCGTCAGCTCAAGCTTCACCGTCTCGGTGGGCCCCGCCACCCGTCTGGTCTTCACCACACAGCCAGCGGGCGCGTCCGTCAACACCGCCTTCACCACCCAGCCCGTGGTGACAGTCCAGGACGCCGGCGGCAACACCGTCACCTCCAGCACGGCAGCGGTCACGCTGGCCATCACGGAAAAGCAGGGCAACCCTACCCTGACCTGCACGGCAAACCCCCAGAACGCCGTCGCCGGTTTGAGTACTTTCAGCGGCTGCCGAATCAGCAGGACGGGGACCCGCACGCTGACCGCAACCTCCAACGGGCTCACGGCAGCAATCAGTGATCCCTTTATGGTCCAATGAMVFQRPDGAMGGFRRAQHAVVVIVLAVAALLAPGIDPALAYSTGPVSGISSATLGSLQPPTNVSVPSSSTGTVRVSWTAAVGTPAPTGYFVTRTRASDGSTTAACGTSASATTTGTACDDIKVPVGDYSYTVTSVYRTWTASSASSGSVGVTPPGSAAKLLFLTQPANSSSGVALPTQPVVVVTDLNGSIVTTQAPTLVSITASGGLLTGCFPATTVNGTATFSGCTVTGPGTYTLTAASFPLTSAVSTAFTVAGTAAKLGFTTSPSGATGGAVFAAQPAVSVQDSSSRTVTTSTAPITLSISSSPAGANLSCDSNPKSAAAGAASFSGCRIDKTGTYTLTASGAGFTTVSASFTVTIGAASRLAFTTQPSGSTGSVSFGTQPAVSIQDDGGNTVTTSAATVDLTLTGTTGATLNCTATQVAAAAGVATFSGCSINRAGTYTLTATSAGLIFALSDTVAVAAGAPAKLGFTVQPSQATAGSAFATQPTVALQDAGGNTAGGTVAITLSITGAPGETILSCAANTVTTNGGLASFSGCSVNKAGTYTLTATGAGFTTTSVNFTVALGTPTKLGFTTNPTNSTGGVPFPAQPVVAIQDAGGNTMTDSTAAVTLTITTPAGATLACAANPVAAVSGVSAFVGCSINRPGTYTLTATSGSLTSSVSTSITITTGPAAKLAFITSPSSSPVNTVFATQPAVAVQDAGGNAITGSTGPVTLKISSPSGGASLTCTSNPKNAVSGVATFAGCRISKTGTRTLTATSGTLTAGTSASFNITGGTATKLSVTTSPSGSTGGVAFPTQPVITILDADGNPTASTAAVTLGITAPAGGAALSCTANPKAAISGVAAFTGCSINKPGTYTLTATSGTLTAAVSSSFTVTTGPAAKLGFTSTPSNSVYNTVFATQPAVAVQDAGGNTITGSAAPVMLSITTPAGAVLVCTQNPVNAASGIAAFTGCSIDKAGTYTLTAASSALAPATSATFTIAGGAPTKLAFTTNPANSTGGTAFPTQPAVSIQDDAGNTTTSTASVTLSITTPGGAVLACTGNPKAAVAGVAAFTGCAVNKAGTYTLTATSGTLTTAVSSSFTVSVGPATRLVFTTQPAGASVNTAFTTQPVVTVQDAGGNTVTSSTAAVTLAITEKQGNPTLTCTANPQNAVAGLSTFSGCRISRTGTRTLTATSNGLTAAISDPFMVQNANANANANA
D1-29_01083462hypothetical proteinATGTCAACGAAAAAGCTCACGTTCAAATTCGGCCGGAAAACTGTCGCCGCCCTCACAGCGGCCTTCCTCATCATCGGTGGCGGCGCCTACGCGTACTGGACCACCACAAGCCAGGGAACAGGGGCCGCTCCCAACGCCGCCTCCAACGGCAGCATCGTCCTCACGGCATCATTCGCCTCGGGCCTCACCCCCGGCGCCAGCACCGCCGTCACCTACACAGCAGACAATCCAGGGACCTCCAGCCTGCAGGTGGGAACCATCAGCCACGTGGTCACCACCAGCAACCCGCTGTGCCTGCCGGCAGACTTCACCATCGCCAACGTGGCATCAAACACCACGGTGCCGGCCGGCAGCGATGACTTTGCCATTGCCGGGGCGGGAACACTCTCCTTCGCCGACACCTCAGTAAACCAGGACGCCTGCAAAAGCGCCATCGTCACGCTGACACTCACCGCCAACTAGMSTKKLTFKFGRKTVAALTAAFLIIGGGAYAYWTTTSQGTGAAPNAASNGSIVLTASFASGLTPGASTAVTYTADNPGTSSLQVGTISHVVTTSNPLCLPADFTIANVASNTTVPAGSDDFAIAGAGTLSFADTSVNQDACKSAIVTLTLTANNANANANANA
D1-29_01084306hypothetical proteinATGACAAACATCAGCGTTTTCCAGAGCGTCACTCTTGACGGGGTTATGCAGGGACCCGGAAGGCCTGATGAGGACACCCGCGGGGGATTCAATCACGGCGGGTGGGCCAACGGTTATCAGGATGAAGTGTCCATGCAGTTTGCCGGCGAAGGAATGTCCTCCGGGGGTTCTCTTTTGTTCGGCCGCCGCACCTATGAAGACCTGCTCGGTATTTGGAGCACGACGCCGGATCCCAACCCCTTTACCGACGTTCTCCTCAACTCGCGCAAGTATGTGGTGTCCTGTTCGGCGACGGCCAGCGCCTAAMTNISVFQSVTLDGVMQGPGRPDEDTRGGFNHGGWANGYQDEVSMQFAGEGMSSGGSLLFGRRTYEDLLGIWSTTPDPNPFTDVLLNSRKYVVSCSATASANANANANANA
D1-29_01085189hypothetical proteinATGGCTGACAGCAAGAGCAGGGGGCGTGGACGTCGGGAAGCCCGGGAGCAGGCGGACACCGATCCCACTGAATCGGCAGACAGCGTTGAGAAGGACCAGGAGCCTCCGGCTGACAAAGAGCCGGATATCCGCCGGGTGCCTGGGCTTCACGGCTACGACCCGAGCCAATGGCCGGATACAGCTACATAAMADSKSRGRGRREAREQADTDPTESADSVEKDQEPPADKEPDIRRVPGLHGYDPSQWPDTATNANANANANA
D1-29_01086942hypothetical proteinATGACGACAAAAACCCCCGCTCTCCCCCCAGCGGTTCGTGCACTTCACCTTCTCGAGCGCGTCGCTCCACCCTTGGCAGCCGAGGCCGCCTACAGGCTTTGGGTCCGTCCCGGTAAGCGCAAGCCCGTGCATGACACGGAAAGGCCGGTGATGGACCAGGCCGCCCGATCCATGATCAGCGTGCGCGGGCAGCGCGTGGCCGTCTACCGCTGGGGAACGGGCCCGCGTGCGGTCCTGCTGGTCCACGGCTGGCAGAGCCGTGCCGCTGTTTTGGCCCCCCTCGTACGCGAACTGCGGGCCGCGGGCCGCACGATCGTTGCCTTCGACGCCCCCGGGCACGGCGAATCCAGTGGACACCAGACCAACGTCCGCGACTACGCCGCCATCATCGAGGAGCTTGCGCGTGAACATGACGGGTTTGAGGCGATCGTGGCACATTCGTTCGGGACGCCGGGGGCCGCTCTCGCCATCCGGAACGGAGTACGGGCTGGACGGCTGGTCACGGTAAACGGCGCCGCTGACTTCGAGTATCTGCTGGCGGGCTTCGCACGCAAGCTCGGGCTGCGCGATTCAACCGTGCTTGCGGTGCGGCGCCTCACAGAGCGCCGCGTCTTCCCTGGAGTCGCAGATATTTGGACAAGCCTTTCGGCCACCGCCCCGCTTCCCGTCGCCGTTCCCTGGCTCGTTATCCACGACGACTCAGACACCATGATCGGGCTGGACCAGGCCCACGCCCTCCTCGATGCCCACCATGCATCCACCATCCTGGTGGTCACGCATGGACTGGGCCACAACCGGCCGCTCCGTGACGACAGCGTGCTGGACCGGATCAGCAGCTTCCTGTCTCCCGCCTCTCAACGCCAGCCCCAAGGGGCGGAACGGCAGCCGGCCCAGGAAAGGCAGCCGAGCCGGGATAAGGTGCCGTCTTCCGTACTCGCCTAGMTTKTPALPPAVRALHLLERVAPPLAAEAAYRLWVRPGKRKPVHDTERPVMDQAARSMISVRGQRVAVYRWGTGPRAVLLVHGWQSRAAVLAPLVRELRAAGRTIVAFDAPGHGESSGHQTNVRDYAAIIEELAREHDGFEAIVAHSFGTPGAALAIRNGVRAGRLVTVNGAADFEYLLAGFARKLGLRDSTVLAVRRLTERRVFPGVADIWTSLSATAPLPVAVPWLVIHDDSDTMIGLDQAHALLDAHHASTILVVTHGLGHNRPLRDDSVLDRISSFLSPASQRQPQGAERQPAQERQPSRDKVPSSVLANANANANANA
D1-29_01087681hypothetical proteinATGCAAAACACGGCAACATCCGATGGCCGCCGGCTCCGCGGCGATGAATCGCGGCGCGCCGTTCTGCGGCTCGCCGTCGACCAGGCGTCGTTGACCGGATTGGACGGGCTAACCATCGGCGGGCTGGCAAGTGAGCTGGGCGTCAGCAAGAGCAATGTGGCAACCCTGTTTGGCTCCAAGCTGGACCTGCAACTCGCGACGATCGATGCCGCGCGCACCGTATTCATTGACACGGTCATCACTCCGGCTCTCGCCAGGCCACGCGGCCTCCAGCGACTCATCGCGCTTATTGAGCTGTGGCTCGACTACTCCGAGGGCCGTGTATTTGCCGGTGGATGCTTTTTCCGCGCTGTCGGGGCTGACGCCTCGGCGAAGGACGACGCCGCCCGTGACCTTCTCGCCCAGATCGATGCGGAGTGGCTGGCCTTCGTTACGCGCGCCGTCCGCGAAGCCGAGCCGGAATTGCCTGGGCTTGCCGGCCGAACCGATGCCGCTGAGGTCCTGGCGTTCGAGATCGGTTCCATGCTGGAAGCCGCCAACAGCATGTCACTGCTTCACCGCACCTCGCGCGGATACGCACTGGCACGCAGCGCCGTCCGTGATCGGCTGGTCGCGCTCGGAGCCCCGCCGGACATCACGCTCTCGCCCGGTCCAAGGGCGCCATTGTCAGAAGGCCATTAGMQNTATSDGRRLRGDESRRAVLRLAVDQASLTGLDGLTIGGLASELGVSKSNVATLFGSKLDLQLATIDAARTVFIDTVITPALARPRGLQRLIALIELWLDYSEGRVFAGGCFFRAVGADASAKDDAARDLLAQIDAEWLAFVTRAVREAEPELPGLAGRTDAAEVLAFEIGSMLEAANSMSLLHRTSRGYALARSAVRDRLVALGAPPDITLSPGPRAPLSEGHNANANANANA
D1-29_010881551putative triacylglyceride transporterGTGATCCAGAGCCCGCCCCCGGCCAGCGGGCGGGTGTCGGCCAACCGCCGCATCGCGATCAGCGCGGGCAGTCTCGCTGTGACGCTGGGCGCGCTCGACACCTACGTCGTCGTCACGATCATGACCGACATCATGCGCGACGTCGGCATCGGAGTGAATCAGCTCCAACGGGTAACTCCGATCATCACCGGTTACCTGCTCGGTTACATCGCGGCGATGCCGCTACTGGGCCGGGCGTCGGACCGGTTCGGCCGGAAGATGCTCATCCAGGTCAGTTTGACCGGCTTCGCGTTCGGATCGGTGGTCACGGCACTGTCGACCGATCTCACCGTGTTGGTCATCGGCCGCACTCTCCAGGGCGCTGCCAGTGGCGCCTTGCTGCCGGTAACGATGGCCTTGGCCGCCGAACTGTGGGTTGCGCGCAATCGCGCAGCTGTACTCGGCGGTGTTAGTGCGGCACAGGAACTGGGCAGCGTGCTCGGGCCGGTTTACGGCATCGCCCTGGTCGGGCTGTTCCAGCATTGGCAAGCCGTGTTCTGGGTCAACGTGCCGCTTGCGGTGATCGCGATGGTGATGGTCCACTTCAGCCTGCCCGGCCGACAGAGAACCGATGATCCCCAGAAAGTCGACGTGCTCGGCGGTATGCTGCTGGCCATCGCCCTGGGCCTGGCCGTGATCGGGCTTTACAACCCCAAGCCCGACGGCAAGCTGGTGCTGCCCGGCTGGGGAATGCCGGTGCTGATCGCCGCCGCCATGGCAACCGTCGCGTTCTTCGTCTGGGAGAGGTTCGCCCGCACCCGGCTGCTGGAACCGGCGGGAGTGCACCTCAGACCGTTCCTGGCGGCACTTGGGGCGTCGTTGGCCGCCGGCGCAGCGCTCATGGTGACGCTGGTCAACGTCGAGCTGTTCGGTCAGGGTGTCCTGGGTCAGGACCAGAACCAGGCCGCCCTCCTGCTGCTGCGCTTCCTCGCCACGCTGCCGGTTGGGGCGCTACTCGGCGGATGGCTGGCCACCCGGATCGGCGACCGCATCGTCGCGTTCACCGGCCTGCTTGTCGCCGCCGCGGGCTATCTGCTGATCTCGAAATGGCCCGTCGATGCGCTGACAGCACAACACGATCTCGGACTGTTCACCCTGCCGACACTGGACACCGACCTGGCGATCGCTGGCCTCGGTCTCGGCCTGGTGATCGGGCCGCTGACGTCGGCGACGCTTCGGGTGGTCCCCGGCGCCCAGCACGGGATAGCGTCGGCAGCCATCGTGGTCGCCCGCATGATCGGCATGCTGCTCGGCATTGCGGCACTGAGCGCATGGGGCCTCTACCGGTTCAACCAGCATCTGGCCAGTCTGCCCGCCAGTACCGGCGAGACACTCGAGGAACGGATATCGCTCGAGGCCGCCCGGGTCCGCGAGGCGTACGCCCTGCAGTACGGCGAGATCTTCTCGATCACCGCAATTGTGTGTGTGGTGGGCGCAGTGCTGGGTCTGCTGATCAGCGCGCGCGACGAGTACGCCGAGGAGCCGGAGCCAGACGCTGTGGGAGACTCCTAAMIQSPPPASGRVSANRRIAISAGSLAVTLGALDTYVVVTIMTDIMRDVGIGVNQLQRVTPIITGYLLGYIAAMPLLGRASDRFGRKMLIQVSLTGFAFGSVVTALSTDLTVLVIGRTLQGAASGALLPVTMALAAELWVARNRAAVLGGVSAAQELGSVLGPVYGIALVGLFQHWQAVFWVNVPLAVIAMVMVHFSLPGRQRTDDPQKVDVLGGMLLAIALGLAVIGLYNPKPDGKLVLPGWGMPVLIAAAMATVAFFVWERFARTRLLEPAGVHLRPFLAALGASLAAGAALMVTLVNVELFGQGVLGQDQNQAALLLLRFLATLPVGALLGGWLATRIGDRIVAFTGLLVAAAGYLLISKWPVDALTAQHDLGLFTLPTLDTDLAIAGLGLGLVIGPLTSATLRVVPGAQHGIASAAIVVARMIGMLLGIAALSAWGLYRFNQHLASLPASTGETLEERISLEAARVREAYALQYGEIFSITAIVCVVGAVLGLLISARDEYAEEPEPDAVGDSNANANANANA
D1-29_01089717lprGLipoarabinomannan carrier protein LprGATGTATAATGCACCCCTGCAGACCCGCCTTGTGGCGATCTTCGCGCCCCTCATCGCCGTCGTCGCCCTCGTTGCAGGGTGCACCAGCCCACCGTCGCCATCGTCGGAGGAGACCCTCGACCCCGCCACCCTGTTAAAGCAGTCGAGTGAGACCACCAAAGGGCATACCAGCGCGCATCTCAAGCTAGCGGTTGAGGGCCAGATCGCCGGACTGCCGGTCGAGCTCATCGATGCCGATCTCACACAGACTCCCGCAGTCGCCGCCAAGGGCACACTCGACATGACGTACCTTGGCCAGCAGCTCAAGGGGGTCGAGTTCGTGGTCTCCGACGGCCAGCTCTGGGCCGCGATCATGCCTGGGGGCAGTCCGACGAACTTCGGGCCGGCAGCCAACATCTACGACGTCGCGGCGATCCTGGACCCCGACGCGGGGCTGGCCAACGTGCTCGCCAACTTCTCCGATGCTAAGGAGGACGGCCGTGAGACCGTCGAGGGCGTGGACTCTGTACGCATCACGGGCAACGTCAGCGCGGACGCGGTGAACAAGATCGCGCCGCAGATTCGGGCGACGGGCCCCGTGCCTGGCACCGTCTGGATCTCTGAGGACGACGACCGCGAGCTGACGCAGGCCCGGCTGGAGCCCAGCCCTGGTAACAGCGTCACGATGACCCTGTCCAAGTGGGGCGAACCGGTCACCGTCGAGAAACCGGCGGTGTGAMYNAPLQTRLVAIFAPLIAVVALVAGCTSPPSPSSEETLDPATLLKQSSETTKGHTSAHLKLAVEGQIAGLPVELIDADLTQTPAVAAKGTLDMTYLGQQLKGVEFVVSDGQLWAAIMPGGSPTNFGPAANIYDVAAILDPDAGLANVLANFSDAKEDGRETVEGVDSVRITGNVSADAVNKIAPQIRATGPVPGTVWISEDDDRELTQARLEPSPGNSVTMTLSKWGEPVTVEKPAVNANANANANA
D1-29_01090654nreC_1COG2197Oxygen regulatory protein NreCATGGCCGAACCCACGCGCATCCTGCTCGCCGATGACCATGCCCTGGTCCGCCGCGGCCTTCGCCTGATCCTCGACACGGAACCCGACCTGACCGTCGTCGCCGAAGCCGCCGACGGCTCAGAGGCAGTCGCAGCCGCGATCACCGGCGGAGTGGACCTGGCCGTTCTCGACATCGCCATGCCCCGGATGACCGGCATCCAGGCGGCGCGGGAGATATCGCGGAGTGCACCCGACGTCCGGATCCTCATCCTGTCCATGTACGACAACGAACAATACTTCTTCGAGGCGCTGCGCGCCGGTGCCTCGGGTTATGTGCTCAAGTCCGTCGCCGACCGCGACCTTATCGAGGCCTGCCGTGCAGCGATGCGCGGAGAGTCCTTCCTCTACCCCGGCGCGGTCACCGCGCTTATCCGCGACTACCTGGAGCGCGACCGCCGGGGCGGCCGGATGCCGGACAGCATCCTCACGCCGCGCGAGGAGCAGGTTACGAAGCTCATCGCAGAAGGAAACTCGGCCAAGGAGATCGCGGAAATCCTCAGAATCAGCGTGAAGACCGTGGACCGGCACCGGGCGAACGTCCTGCAGAAACTAGGGTTGCGCGACCGGCTGGACCTCACACGGTTTGCCATCCGCACCGGGCTCATCGAGCCGTAGMAEPTRILLADDHALVRRGLRLILDTEPDLTVVAEAADGSEAVAAAITGGVDLAVLDIAMPRMTGIQAAREISRSAPDVRILILSMYDNEQYFFEALRAGASGYVLKSVADRDLIEACRAAMRGESFLYPGAVTALIRDYLERDRRGGRMPDSILTPREEQVTKLIAEGNSAKEIAEILRISVKTVDRHRANVLQKLGLRDRLDLTRFAIRTGLIEPPGPT0000530_260DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE|NITRITE_SENSING,PGPT0000530-nreC-K07696NANA
D1-29_010911128hypothetical proteinATGACGCCCATTTGCGAAGAGCTGCCTGCCGAGATTCCCTGCCGCGTGTGGGTGCGAGCCCTCATGGACAAAGGACGCAAGCCGCGTCAGGCTAGTCGGATGCGGACCCCGCCCGAAACCAGGGCCGCCGGCACCACGCGCGGCTTGCCTCCGAAAGGACCGGCACAGTCGCTCTTTTGGCGACTGTTCATCATCAATGGATTGCTCTTCGCGATGGGCACGCTGGTGTTGGCACTCTCCCCGGCGACTGTGTCCTCGCCTGTCTTGCTCACGGAGGTGCCGGTCCTGGTCATCGGGCTGGCTCTCATCCTCGCCGCGAATGCCGCCCTGGTGCGGGCCAGCCTGGCACCGTTGGACGCGTTGACGGGTGTGATGCGGCGCGTGGGCCTGCTGCGGCGCGGTGGAGACCGGGCGACCACCGAGGCCGGCAACGGAGACTTCGAGCACCTCATCCGCACCTTCAACGACATGCTCGACCGGCTGGAGGCGGAGAATACCGCCAGCAGCGCCCTGGCACTGGCCGCACAGGAAGGGGAACGTCAGCGAATATCGCGGGAACTGCACGACCAGATCGGCCAGAGCCTGACCGTCGCCCTGCTCAGCCTCAAGCGGGTTGTCGACCGATCTCCCGACGGTATCCGCGAGGAGACCCTGGTCGCCCAGGAGGCGGTACGGGCGAGCCTGGAGGACGTGCGCCAGGTTGCGCAGCGCCTGCGCCCCGGCGTGCTCGCGGACCTCGGCCTGCGGAGCGCGTTGAATGCACTTGGGTCGGAGTTCTCCCGCTCGAGCGGGATTCCTGTGACCTGGGAGCTCGACGACGAGCTTCCGGAGCTCAGCGGGGACGTCGAGCTGGTGCTTTACCGCATCGCGCAGGAGGCACTCACCAACGTCGCCCGCCACGCGCACGCAACACGGGTCGATCTCTCGCTCACCCCGTCGACGAGGGGGCTGACGCTGCGAATTCTCGACGACGGCAAGGGCGGCGACTTCCGCGAGGGCGCCGGCATCCGAGGAATGCGGGAACGGGCGCTGCTCATCGGTGCCGAGCTGACGGTTGGCACGGGGCCGGGCGGGGGGACCGACGTTTGCCTCGTCGTTCCCGGTCCCGGCGCCGGGGCAGGGAGCTAAMTPICEELPAEIPCRVWVRALMDKGRKPRQASRMRTPPETRAAGTTRGLPPKGPAQSLFWRLFIINGLLFAMGTLVLALSPATVSSPVLLTEVPVLVIGLALILAANAALVRASLAPLDALTGVMRRVGLLRRGGDRATTEAGNGDFEHLIRTFNDMLDRLEAENTASSALALAAQEGERQRISRELHDQIGQSLTVALLSLKRVVDRSPDGIREETLVAQEAVRASLEDVRQVAQRLRPGVLADLGLRSALNALGSEFSRSSGIPVTWELDDELPELSGDVELVLYRIAQEALTNVARHAHATRVDLSLTPSTRGLTLRILDDGKGGDFREGAGIRGMRERALLIGAELTVGTGPGGGTDVCLVVPGPGAGAGSPGPT0017175_945DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675NANA
D1-29_01092123hypothetical proteinATGGAGACCACCCATTCCACCCTGGCCGGCGCCGGCGTGCTGCACGACTGCCTGACCCGCGACGGCCAGCAATTCCGGATTCACGTCTCACGCTCCGGTCTGCGCTGGAACCCCGGTTGGTAGMETTHSTLAGAGVLHDCLTRDGQQFRIHVSRSGLRWNPGWNANANANANA
D1-29_010931485hypothetical proteinATGGAGCACCTCAGCCGATTCGCCCGCGAATTCCTTAAGGCGTTCAAGAACCTTCTGCCCATCATTGTCGTCGTTGTTCTGTTTCAAGTTCTGGTGTTCCGCTCCATGCCCGATGACCCCCTGGAACTGGTGGCGGGGCTCCTGATCGTGGCTGTGGGCATTGCCCTGTTCCTGCATGGCCTGGATCTGAGCATCTTCCCGGTGGGCAAGAACCTGGCTAACCAGTTCGTCCGGAGCGGGGCCCTGGGGTTGTTGCTGCCTTTTGGGTTTGCCATTGGCTTCGCCGCCTCCATCGCGGAGCCGGCGGTGATCGCTGTCGCGGAGCAGGCCCAATTGGTCAGTGACGGCCGGATCAATGCATTGGTGCTGCGCTTCGTCATCGCTGTGTCGGTGGGGCTGGTCCTGATCCTGGGCATCATGCGTGTCCTGCGGGGCTGGGCGGTCCACAAACTGCTGATAGCGGGCTACGCGATGGCGCTGGGACTCACCTACATCGCCCCCCCGGAGATTATTGCTCTTGCCTATGATTCTGGCGGGGTCACCACCAACATCGTCAGCGTCCCGCTTATCGCGGCGATCGGTCTTGGCCTGGCCAATTCCATCAGGGGACGCAGCCTGCTCGCCGACGGCTTTGGCCTGGTGGCGCTGTGCGTGATGGTGCCCATGATCGGGGTCCAGCTCTACGGCATCTTGGTCTACACGTTCGGTGATGCCGGTCTGGCGCTGCCAGCGACGGAGGCCGGGCAGGACTCCACGGATTGGGTGGTCGGCATGATCCTTGGCCTCGCCTCAATGGTTCGCGAGGTCCTGCCTATTGTGGCCGTTGTCCTCTTCTTCCAGTGGGTCGCCCTGCGGCGAAGGCTGCCACACCCCTTGCGGGTGGTCACAGGCTTCATCATGGTCATGGTGGGACTGTATGCCTTCGTCGTGGGACTAAAACTTGGGCTGTTCCCGCTGGGCACCCTGATGGCGGAGCAGCTGATCGAGCAGGGGGTTCCGGCCCTCATCCTGTTGTTCGCGCTGCTCATCGGCTTTGCGGTCACCATGGCCGAACCTGCCCTGGTGGCCATCGGGGAACAGGCGCAGGACGCATCTCCTGGCAAAATCAGCGCATTCGCCGTCAGGGTCATTGTGGCCGTTGGTGTAGCCCTCGGGATCGGCTTCGGCGTCTACCGCATTCTGGTGGGAGGGCCGTTCCACTACTTCATCATGACCGCGTACGCCGTCGCTATCGTGCTGGTGTTCTTCGCCCCGAAGTACATCATCGCGCTGGCCTTCGATCTCGGCGGAGTGACGACGTCGGAGGTCACCGTGCCGCTGGTAACCGCCCTCGGGATCGGTCTTGCCGCCGCCGTGGAGGGCCGGAACGTGTTGATCGACGGGTTTGGCCTGATCGCCTACGCGTCGATCTTCCCTGTCATCTCCGTCTTGGTGTATGCCATGGTGATGGAGAGATTTCCACGGCGGAGAAGGGAACCCGCATGAMEHLSRFAREFLKAFKNLLPIIVVVVLFQVLVFRSMPDDPLELVAGLLIVAVGIALFLHGLDLSIFPVGKNLANQFVRSGALGLLLPFGFAIGFAASIAEPAVIAVAEQAQLVSDGRINALVLRFVIAVSVGLVLILGIMRVLRGWAVHKLLIAGYAMALGLTYIAPPEIIALAYDSGGVTTNIVSVPLIAAIGLGLANSIRGRSLLADGFGLVALCVMVPMIGVQLYGILVYTFGDAGLALPATEAGQDSTDWVVGMILGLASMVREVLPIVAVVLFFQWVALRRRLPHPLRVVTGFIMVMVGLYAFVVGLKLGLFPLGTLMAEQLIEQGVPALILLFALLIGFAVTMAEPALVAIGEQAQDASPGKISAFAVRVIVAVGVALGIGFGVYRILVGGPFHYFIMTAYAVAIVLVFFAPKYIIALAFDLGGVTTSEVTVPLVTALGIGLAAAVEGRNVLIDGFGLIAYASIFPVISVLVYAMVMERFPRRRREPANANANANANA
D1-29_01094351hypothetical proteinATGAAATTCACTGCAGTCATCGTGATCGCCCCGGACGAGCTGGAAGACAGGGTGATTGAACACGCCCAGCGGGCCGGTGCCACGGGTGTGACAATTTTGCCGGGCAAGGGCATCGGGGGCGAGGCCAGAAAGACGTTTTTCGGGCTCACTTTCGAAGGGACGCAGTCGGTGCTCTTGATGGTCGTAGGGACACACCTGACAGCTCCGATCCTGAAGGAACTGCACTCGATACTGGTTCAGGGAACGGAATCCCGCGGCCTGGCCTTCGCGATCCCGATCGAGCACCTGACCGGGATCGATATGCGGCAGGTGGTCAGGTTTGAGGAGCATCTGCGCCGCGAAGGCGCTTGAMKFTAVIVIAPDELEDRVIEHAQRAGATGVTILPGKGIGGEARKTFFGLTFEGTQSVLLMVVGTHLTAPILKELHSILVQGTESRGLAFAIPIEHLTGIDMRQVVRFEEHLRREGANANANANANA
D1-29_01095390hypothetical proteinATGCTCACTGTCAAAGATGTCATGGTCCCCGAGGTCGTCACGATCTCCCCGTACAGCACCCTGCGGGAGGCGCTGTCAATGATGAAGGAACGCCAGGTTAAGAGCCTGGTAGTGGAGCAGCAGCACGCCCACGACGCCTACGGGATGCTGAGCTACAGAGAACTCCTGGACACCGTCGTTGCGCAGGAGGGTGACGTGGACCTCCTGAACGTCTATGACGCCGCCACGATCCCTGCGATCACTGTCAACGAGGACCTGTCCGTCCGCCAGGCAGCGGCCCTGATGAGCCGCTACCACCTCAGCCGGTTGGTGGTGGTGGAGGGCAACCAGCTCGTCGGGCTGCTCGCTATGAATGACATTCTCGCCCGGCTCATGGAGGAACTAACGTGAMLTVKDVMVPEVVTISPYSTLREALSMMKERQVKSLVVEQQHAHDAYGMLSYRELLDTVVAQEGDVDLLNVYDAATIPAITVNEDLSVRQAAALMSRYHLSRLVVVEGNQLVGLLAMNDILARLMEELTNANANANANA
D1-29_01096780hypothetical proteinATGGCCATGCTCGCCATCTCGCTGGCGGGCTGTGAGTATGGCGGCCCGGCCGAGGGGGCCGTCAGCCCGCCGTCCCAGAGCGAGACCAGCGAACAGCGGTCGTTCCAGGAAAACGTTGAGGAAGTGGCGGGTTTGCTCAAGGCTTCGCCAACAGACCCGGGGATGCCGTCGGAAGCAGAGCCTACCGGTGAGCTTTCGATTGAGCTTGCTCCCGGAGACTATATGGTCAAGAGTGCATGTGCCGGTGGCCACGGCGCCAATCTCGCCATCGTCCAAGGCGAGAGCGCGCCCCTGACAATGCTCTATACGTGCGACTCCGTCGCGGAACGGTTCGTCCGGCACGCCGGTGGCCCTATAGCCATCAGTGCCACCGCGCCCAGTGGCAAGCCGGCCGCGGCTGGCGTTACTGTCCAGCCCAACACGGACACACGCGCTTCGGAGCTGGAAGACCTGAAGGAGTGGTCAGCACAGCAGCTGCAACCCGAAATACCCGGCCAACGTGCTGGTTCCACCCTTTCGGACACAGTCATCAGCTATGGAATGACTTCGCTCGACCCTGGCAGGTACGAACTGCACTTTGTCTGCGAGGGACCGCCCCAGGTTCAGTTTTCGATGTCCCGTCCACTAGGCGCCGAAGTCCTGGCTCCGGTGCGGGTTCCTTGCAACGGAGACGTCTTCAAAACTTCCGTGGAGTTGGTCAGCCAGGACGCAGATTTCCGGATCGACTCAGGTGACCGTACAGTAGGCCGCTACGCGTTCAGGCTGGTTCCATCCGCGTAGMAMLAISLAGCEYGGPAEGAVSPPSQSETSEQRSFQENVEEVAGLLKASPTDPGMPSEAEPTGELSIELAPGDYMVKSACAGGHGANLAIVQGESAPLTMLYTCDSVAERFVRHAGGPIAISATAPSGKPAAAGVTVQPNTDTRASELEDLKEWSAQQLQPEIPGQRAGSTLSDTVISYGMTSLDPGRYELHFVCEGPPQVQFSMSRPLGAEVLAPVRVPCNGDVFKTSVELVSQDADFRIDSGDRTVGRYAFRLVPSANANANANANA
D1-29_010971362hypothetical proteinATGTATGAATGGATCATGCTCGGTATCGGCCTGTTCCTGACCGTCGGTACCGGATTCTTTGTCGCTTCCGAGTTCGCGCTGGTCAATCTGGACCGCAACGACCTTGAGACACGCCAAGCCCGTGGCGAAAAGCGGCTGGGGCCCACCATCAAAGCCCTGAAGATCACCTCGACGCATCTGTCCGGAGCCCAGCTGGGCATCACCATCACCACACTGCTCACCGGCTACACCTTCGAACCGGCCATCAGCAAAATGCTCAGCGGCCCCCTGCTGGCAGTAGGGCTGCCCGAGGCCGTGGTACCAGGCCTGGGCGCTGTCGCCGGTATCTTCCTGGCCACTGTTTTCTCCATGGTGATCGGCGAACTGGTGCCAAAGAACTTCGCCCTGGCCCTGCCGCTGGCCACCGCCAAGGTGGTGGTGCCATTCCAGGCCGTGTTCACTGCCGTGTTCAAGCCGGTGATCCTGCTTTTCAACAACACAGCCAACGCCATCATCCGCTCCTTCGGCATCGAGCCGAAGGAAGAACTTTCAGGCGCCCGCAGTGCCGAAGAACTCAGCTCACTGGTCCGCCGCTCCGCGCTGGAAGGCTCGTTGGACCTTGATCACGCAGTCCTGCTGCACCGTACGCTGCGCTTCTCCGAACATTCGGCGGCGGACGTCATGACGCCAAGGGTCAGGATGGCTGCCGTGAACACCACGGACACCGCAGAGGACATCGTCACGCTGGCGACATCGACAGGTTACTCGAGGTTCCCGGTGATAGGCCGGGACAGGGACGACGTCCTGGGCGTCCTGCACGTCAAGCAGGCCTTCGCCGTGGCCTTGGATGAGCGGGACAGGATCACGGCTGCGGATCTGATGATCGAACCCTTGAGGGTGCCTGAGTCCATGGGGGTTGATTCGCTGCTGGTTCTGCTGCGCAGGCAGGGACTGCAGGTGGCGATCGTCTCTGATGAGCACGGTGGAACCGCCGGCATCGTCACCCTCGAGGACCTGGTCGAAGAGATCGTGGGCGAGCTCGAGGACGAACACGACCGTGCCCGGGCGGGCGTGGTCCGGACGGGACGCTCCATCACCTTCGACGCGTCACTGCGGCCGGATGAACTGCTGGACAGGACGGGCATCGCCGTCCCGGATGGTGACGAATACGACACCATCGCCGGTTTCGTCACGGATGAACTGGACCGCATCCCCGAACTGGGAGACGTAGTGGCTCTTGACGGCGGGACGTTGCGGGTTGAGCGGGTAGTGGGGACCCACGTGGAGCGGATTCGCTTCACGCCGGACGAATCGCACGAACCGCCGCAGAGCGCCCACGACCGCATCATCGACAACCTGACGCAGGAGCTGGCCCATGAGTGAMYEWIMLGIGLFLTVGTGFFVASEFALVNLDRNDLETRQARGEKRLGPTIKALKITSTHLSGAQLGITITTLLTGYTFEPAISKMLSGPLLAVGLPEAVVPGLGAVAGIFLATVFSMVIGELVPKNFALALPLATAKVVVPFQAVFTAVFKPVILLFNNTANAIIRSFGIEPKEELSGARSAEELSSLVRRSALEGSLDLDHAVLLHRTLRFSEHSAADVMTPRVRMAAVNTTDTAEDIVTLATSTGYSRFPVIGRDRDDVLGVLHVKQAFAVALDERDRITAADLMIEPLRVPESMGVDSLLVLLRRQGLQVAIVSDEHGGTAGIVTLEDLVEEIVGELEDEHDRARAGVVRTGRSITFDASLRPDELLDRTGIAVPDGDEYDTIAGFVTDELDRIPELGDVVALDGGTLRVERVVGTHVERIRFTPDESHEPPQSAHDRIIDNLTQELAHENANANANANA
D1-29_010981041COG1253putative proteinATGAGTGAATATCTTCCCGGCATCATTTGGCTGGTGGTGCTTCTGGCGGTGAACGCGTTTTTCGTCGGTGCCGAGTTTGCCGTCATTTCCGCGCGGCGTTCCCAGATCGAACCGAAAGCCGAAGCCGGCAGCAAGGCGGCCAAGACCACGCTGTGGGCCATGGAACACGCCACTCTTATGCTCGCCACCAGCCAGCTGGGCATTACCGTTTGCTCCCTGGTAATCCTGAACGTGTCCGAACCTGCCATCCACCATTTGTTGGAGATTCCGCTCGGACTGACGTCCCTTTCCGGCGAGGCGATTGGCATCATCGCGTTCGTCACCGCATTGCTGCTGGTGACATTCCTGCACGTAGTTCTCGGCGAGATGGTCCCAAAGAACATCTCGTTCTCCGTGCCTACCCGTGCGGCGTTGATCCTGGCCCCGCCGCTGGTCATGGTGGCGCGGTTCTTTAAGCCGGTTATCTGGACGCTGAACGGGATCGCCAACTCCATCCTGCGCCTTTTCCGGGTGGAGCCGAAGGATGAGGCAACCAGCGCGTACACGCTGGATGAAGTGGCCAATATCGTGGAGCAGTCCACGCGGGACGGGATGCTGACAGACACCAGCGGCACGCTGACTGCTGCGTTTGAGTTCACGGCCAAGACCGTGTCGGATGTGGAAGTCCCGATCAGCGAGATGGTTCTCCTCCCCGCGTCGTCCACACCGGCGGACATCCAGCGCGCGGTCGCCGAACACGGCTACTCCCGCTACATCCTCACAGACGACGACGGCGTACCCGCCGGATACCTGCACCTCAAGGACGTCATGGATCTGACAGCCCCCGAGACTTTCGCCCGGCCGATACCGTCCAAGAGGATCCGCCGCCTCGCCTCCGCTTTCAGCGGTAGCGAACTCGAGGATGCGCTGGCCACCATGCGCCGCACGGGGGCTCACGTGGCCCGTGTCTTCGACGCACAGGGCAACACCACCGGCGTGCTGTTCCTGGAGGACATCATCGAAGAACTCGTAGGAGAAGTGCAGGACGCTACCAGCGCCTGAMSEYLPGIIWLVVLLAVNAFFVGAEFAVISARRSQIEPKAEAGSKAAKTTLWAMEHATLMLATSQLGITVCSLVILNVSEPAIHHLLEIPLGLTSLSGEAIGIIAFVTALLLVTFLHVVLGEMVPKNISFSVPTRAALILAPPLVMVARFFKPVIWTLNGIANSILRLFRVEPKDEATSAYTLDEVANIVEQSTRDGMLTDTSGTLTAAFEFTAKTVSDVEVPISEMVLLPASSTPADIQRAVAEHGYSRYILTDDDGVPAGYLHLKDVMDLTAPETFARPIPSKRIRRLASAFSGSELEDALATMRRTGAHVARVFDAQGNTTGVLFLEDIIEELVGEVQDATSANANANANANA
D1-29_01099936cotISpore coat protein IATGCTTTGGGAATCGGCCGAGCCGCGCAGCGCCTTGCAGGAAAGATTCGGCCATGACGGCTTTGATGAAGCTGCCGGCTGGCTTACTGAAGTCCTGGCTGAAACCTGGGGTACCGAGGTACACGCGTGCGAGCGGATTATCATCAGTGGCGACAACGCCATCGCCTGGGTTCGCACGAACCGCGGGGCGTTGGTCGCAAAGTGGTCCCGGGCCCGGGACCAGTTCGCCAGGTTTGCCGCGGCCGCGGACCTGATCCAGGAGCTGCACCAGCAGGGCGTGCCCGTGGCTCCCCCACTGGCCTCAGTTGACGGTCAGCACCGGGTAGTCATTGGTTCCGTGTCCGTATCCGTGCAGCCGCGCATCGACGGCGAACTGCTCGACATTACTGCTGACACAGCGATTCGAAACGCCGGCGCGTGCCTGGCGCGGCTGCATGGCGCGTTGGCAATGCAAAGGGACATTCGGCTCACCGAGCTGGGACGCTTTACAGGCGGGTCCTTGGATTTGCGACGGCGGGTAGAGACATGGCTGCAGCGCGAGGACACCGGGAGGGCGCCGGACGCGTCCGCAGGATTACGCCGCCAGATAGAGTCACTGCCGCCGATCGACAGTGAGCCACAGCTGATCCACAACGATTACCGGGCCTCCAACATACTGACCGCCGGTTCGGAGGTCATCGCCGTTCTGGACTTCGACGAGGTGGCTCTGGACTATCCCGTCAGCGATCTCGCGAACGCATGCGTTTTGCTCGGCACCCGGTTCACCTTATGGCAACCGACACCTGACAAGGCCCGGGTCGCGCTTCTTGATGGATACGAGTCCGTGCAGCCACTCAGCCGGCTTGAACGCCAATGGCTGCACGCACTTGTGTTGCTGCGGGGGATCCAGTCCATCCCGCCCGGCGATGATCCGGCCGGATGGGCCCGCGCTGTGTAGMLWESAEPRSALQERFGHDGFDEAAGWLTEVLAETWGTEVHACERIIISGDNAIAWVRTNRGALVAKWSRARDQFARFAAAADLIQELHQQGVPVAPPLASVDGQHRVVIGSVSVSVQPRIDGELLDITADTAIRNAGACLARLHGALAMQRDIRLTELGRFTGGSLDLRRRVETWLQREDTGRAPDASAGLRRQIESLPPIDSEPQLIHNDYRASNILTAGSEVIAVLDFDEVALDYPVSDLANACVLLGTRFTLWQPTPDKARVALLDGYESVQPLSRLERQWLHALVLLRGIQSIPPGDDPAGWARAVPGPT0020285_679DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020285-thrB2-K02204NANA
D1-29_01100255hypothetical proteinATGACATCAGCTGCCAACGAGCTCGCAGGCCCCCTGACACCGCCCTTTGGCATCCTGGGATTCATGCTGATCGCATACGCAGTCCTGATCATCGGTGCCCTGATCAGCATCGCCCGGAACAGGACATACACCTCCGGGGGCATGCTGGTCTGGGCTTTGATCGTGCTTGCGCTGCCGGTGCTTGGGCCAGTGCTGTGGTTTCTGACGGGGCGCCGTCCCTCGCCCGGAGGAAGAGCGTCAGCGCTGCGGAAGTAGMTSAANELAGPLTPPFGILGFMLIAYAVLIIGALISIARNRTYTSGGMLVWALIVLALPVLGPVLWFLTGRRPSPGGRASALRKNANANANANA
D1-29_01101888hypothetical proteinATGGAAGTGCGCGAGTTCCTCGCGTCGAGACGGGCGAAGATCAGTCCCGAAATGGCGGGGCTGACGCTCTATGGCGGACGACGGCGGGTCCCCGGCCTGCGTCGTGAAGAGGTGGCAATGCTCGCGGGCGTGAGCGTCGACTACTACACCAAGCTGGAGCGCGGGAACCTGTCTGGCACGTCCGAAAGCGTCCTGGACGCCATCGCCGGTGCCCTCAGGCTCGATGAGGCCGAGCGGGACCACCTTTACAACCTCGCCAAGGCGGCCGGACCGTCAGGCAGGGCCCGCCGTCGTCCTCTTCAGCGCAAGGCCGTCCGCCCCACGCTGCAGTTCATGCTTGACTCCATCACCGGTTCCCCGGCATTCATCGGCAACCACCACATGGACATCGTGGCGGCCAACCAGCTCGGATACGCCCTCTACTCGGAGATGTACCGCGGCCCCGCGCGGCCAGCCAACCACTCCCGCTTCATCTTCCTGGACCCCAACTCCCGGGACTTTTACCCCAACTGGGATCTGGCGGCCAATACCAACGTCGCCATCCTGCGGACGCAGAGCGGACGGAACCCCTTTGACAAGCGGCTGTCCGACCTGATCGGAGAACTGTCCATGCGCAGCGATGAGTTCCGGACCCGCTGGGCTGCCCACAATGTCCGCCACCACTACGCCGGGACCAAGATTTTCCGCCACCCGGTAGTGGGAGAACTCGAGCTTGCCTACGAAGCCATGGAGCTACCCGAAGACCCCGGCTTTTCCCTCACCATCTACCCCGCGGTGCCCGGCTCCCCCTCGGACGAACGCCTCCGCCTGCTTGCCAGCTGGGCCGCCACCGAACGGATCCAGGAGGTTGCCGCCGCAACCCAGCCACAGGACGTGCCCAGGCCCTGAMEVREFLASRRAKISPEMAGLTLYGGRRRVPGLRREEVAMLAGVSVDYYTKLERGNLSGTSESVLDAIAGALRLDEAERDHLYNLAKAAGPSGRARRRPLQRKAVRPTLQFMLDSITGSPAFIGNHHMDIVAANQLGYALYSEMYRGPARPANHSRFIFLDPNSRDFYPNWDLAANTNVAILRTQSGRNPFDKRLSDLIGELSMRSDEFRTRWAAHNVRHHYAGTKIFRHPVVGELELAYEAMELPEDPGFSLTIYPAVPGSPSDERLRLLASWAATERIQEVAAATQPQDVPRPNANANANANA
D1-29_01102267bcr_1Bicyclomycin resistance proteinATGCCCGCAGTTGCCATCGACACCCCGATGCCCGCACGTGAGCAGACCGTCGGCCGCCCCCTGGCGGTTGTGCTCGCCTTGCTGACAGTATTCGGTCCCATTTCCATGGACCTCTACCTGCCTGTCCTTCCGGCCCTCACAACGGAGCTTCAAAGCACGACGTCGGTGGCCCAGCTGACCATCACCGCCTGCCTTTTGGGGCTGGCCGTGGGCCAGTTGATCGCCGGGCCGCTCTCGGACCGGTTGGCCGCAGGACGCCGTTGCTGAMPAVAIDTPMPAREQTVGRPLAVVLALLTVFGPISMDLYLPVLPALTTELQSTTSVAQLTITACLLGLAVGQLIAGPLSDRLAAGRRCPGPT0029005_1611DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-29_01103969bcr_2Bicyclomycin resistance proteinTTGCTGATCGGCGTTATCGCGTACACCGTCACGTCGGTCCTCTGTGCGGTGAGCCCCACCGTCGAGACGCTCATCCTGGCCCGGTTCGTGCAGGGCCTCGCCGGCGCCGTGGGAATAGTGATTGCCCAGGCTGCGGGACGGGACGTGTACTCGGGCGGCAAGCTGCTCCGCTACTACGGTCGCCTGACGGTGCTCGGCGGCCTGGCCGCCATCGTCGGCCCGGTCATCGGCGGGCAGCTCGCAACCTTCACGGACTGGCGCGGGGTCTTCCTGTTCCTTGCAGGCATTGGCGTCCTGATCCTGGTGGCGTCCCTGGTGGTCTTCCGGGAGACCCTGCCGGCAGACCTCAGGGTTACCGGCGGGCTCTCCCACACCCTGAACGATTTCCGGCAGCTCCTGGCCGACCGGGTGTTCGTCGGCGCGGTACTGATCACCGGGTTCACGTACTCCGCACTTTTCGCCTACCTCAGCGGCGCAACCTACATCCTCCAGGGCATGTACGGGCTCTCACCCCAGGGCTACGCGCTGGCGTTTGGCCTGAATTCGCTGGGCTTTATGGTCTTCGGCTTCCTCGGCGGCCGGCTGTCAGAGCGCTGGTCCGAGCATGGAACGCTCACCCTGGGCCTGATCATGGCGGGAGCCGGGGCGCTCGGGCTGTTGGCCACCGCGCTCCTGCAGCTGCCCCTGATCGCGATCATCCTGTCCCTGTTCACCATGGTCAGCGGTGTGGCTGTCACCAGCCCGCCGGCAACATCGCTTGCACTCAAGGACTACCCGGCCATCGCCGGGACCGCCTCCTCGCTGCTGGGGCTTGCCCGGTTCGCCTTCGGCGGACTGGCCGCCCCGCTCGTGGGGATCGCCGGCGCCGACAATCCGGTTCCTTTCGGCATCGTGGCGGCAGCTTCTCTCGCCGCCGCCGTACTCTGCCTGGGACTGGTCACGCGGCAGCGCAGCATCCCGGCTGGTTAGMLIGVIAYTVTSVLCAVSPTVETLILARFVQGLAGAVGIVIAQAAGRDVYSGGKLLRYYGRLTVLGGLAAIVGPVIGGQLATFTDWRGVFLFLAGIGVLILVASLVVFRETLPADLRVTGGLSHTLNDFRQLLADRVFVGAVLITGFTYSALFAYLSGATYILQGMYGLSPQGYALAFGLNSLGFMVFGFLGGRLSERWSEHGTLTLGLIMAGAGALGLLATALLQLPLIAIILSLFTMVSGVAVTSPPATSLALKDYPAIAGTASSLLGLARFAFGGLAAPLVGIAGADNPVPFGIVAAASLAAAVLCLGLVTRQRSIPAGPGPT0029005_1611DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-29_01104285hypothetical proteinATGTTGTTATCCCCCCAGGAGCGGGACCAGCTCGACGAGCTGGAAAGGCAACTCAGCATCGAAGACCCCGAACTAGCGCGCACGCTGCGCCTCGGAGGGGACGGGCAGCCGCTGACGGCTGACGCTGCCGCCCCCATCCTCATCGTGCTGGCCGGCCTCCTGTTGCTCGTCGTCGGCATCGCAACAAAGTTCATCGCTGTTGGCGTCATCGGTTTCCTGGCCATGGGCGCCGGGGCCTACAGCTTCGTCCAGAAACGGTGGCCCGAACACCAATCCCGGCAATAAMLLSPQERDQLDELERQLSIEDPELARTLRLGGDGQPLTADAAAPILIVLAGLLLLVVGIATKFIAVGVIGFLAMGAGAYSFVQKRWPEHQSRQNANANANANA
D1-29_01105720bacC_1Dihydroanticapsin 7-dehydrogenaseATGGTATTCGACAATAAGGTGGCATTCATCACCGGCGGCGGATCGGGGCTCGGTCTCGCAACAGCGAAGACCTTCATCGCAGAAGGCGCGCAGGTCATGATCTTCGACTACAACCCCAAGTCGCAGGAAGTCGCCGACGAAATCGGTGCGAAGTTCGTCCAGGGCGACGTCTCGAAGGCCGAGAGCGTACAGTCGGCCGTCGCAAAGACCGTTGCGGAATTCGGGAGGCTTGACATTACCGTCGCATCGGCAGGCGTGGGGGGCGAGGGCGACGTCGTCACGTCCACCGTCGAAAACTGGGAACGCACCAACGGCATCGACTACTCGGGCGTGTTCTACACCAATAAGTACGCCATCGAACAGCTCCTCAAACAAGGCACGGGTGGCGTCGTAATCAACCTCGCTTCAATGTTCGGCCTCGTAGCCGTCTCGAACAACATCGCCTACTCGGCCTCGAAGGGCGGCGTCGTCAACATGACCCGCGCCGCCGGGACGATGTACGCCAAGGAGGGCATCCGTGTAAACGCGGTAGCCCCCGGCGTCATCCGTACGCCACTTATCGACGAACCGACCCTTGAGCAGTATGCAAAACTGCACCCGGCCGGCCGCGTCGGCGAGGCCCAGGAAGTTGCAGACCTCATCGCCTTCCTCGCCAGCGACAAGGCAAAGTTCATCACCGGCGCGACCATTCCGATCGACGGTGGCTATACGGCCGTCTAAMVFDNKVAFITGGGSGLGLATAKTFIAEGAQVMIFDYNPKSQEVADEIGAKFVQGDVSKAESVQSAVAKTVAEFGRLDITVASAGVGGEGDVVTSTVENWERTNGIDYSGVFYTNKYAIEQLLKQGTGGVVINLASMFGLVAVSNNIAYSASKGGVVNMTRAAGTMYAKEGIRVNAVAPGVIRTPLIDEPTLEQYAKLHPAGRVGEAQEVADLIAFLASDKAKFITGATIPIDGGYTAVPGPT0008190_915DIRECT 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
D1-29_011061008hypothetical proteinGTGAAGACTAAATGGATCGGGGACGCTGAACTTGTGCGCGCTGTGGACCGCACGTTCCGATCAACAACGGCAGCGGCAGCCGTGGCTGTGGTTACTCCTGAACGTGAAATGACCGCGACGGTAAACGCTGACCCCCATTCCTCCTTCGAGATCGGGTCAATCTCAAAGGCGCTCACCGGCATGTTGTACCGGGACGTGACAGAGCGCGGCCTCGTCTCGCAGACAACAGTCCTTCGCGATTTGCTTCCGCTCGAGGATCACGGAGAGGTTGGCTCCGTGAGCCTGAGTTCCCTGGCCATTCACCACTCCGGTCTTCCAGGCCTACCGCCAGGGATGCATCCGCTTCGCCGAAACCTGAGGTTCTTGATCAGAGGTGAAAACCCTTACGGCGATTCGTTAGCCGACCTCCTAAACCAGACGCGCAAGGTGCGCCTTGGCAATCCGCGGCCTAGGTATTCGAACCTGGGCTTTCAGTTACTCGGACACGCCGTGGCCAAAGCAGCCGGACGTAGCTACGAGCAACTCCTGGGAGACGTCTTGGGCGCCGGGTTCTCGGCTCCCGCACGCGCAGAAGACCTTGGGCCCGCTGATCTCCTGGGAGTCAGTCGATTCGGACGCACACAGAGTGCATGGGTAGGGGAAGCCGTCGCGCCTGCGGGAGGCGTTCGCGCGAACATAAGCACTATGCGGGGCTTCCTTCGTTCGGTTCTCGACGGAACAGCCAAGGGTCTCTCCGCGCTCGAGCCGGTAGCGGAATTCACTCCCCGGGTCGGTATCGGCGCGGGGTGGATCACGCTTGAGCACCGTGGCCGCCAGGTCACATGGCACAACGGCGGCACCGGCGGATTCAGCAGCTGGATTGGATTTGACCTAGGCGCCGGCACGGGAGTTGTTGTGCTCGCGGCAATTCATCGTTCTGTTGATAGACAGGGGTTCCGGCTCCTCACCGAATTAGCCCCAGCCGAAAAGGTGCCACCGTCACCCGCTGTGAACGGCAGGCCAACCTAAMKTKWIGDAELVRAVDRTFRSTTAAAAVAVVTPEREMTATVNADPHSSFEIGSISKALTGMLYRDVTERGLVSQTTVLRDLLPLEDHGEVGSVSLSSLAIHHSGLPGLPPGMHPLRRNLRFLIRGENPYGDSLADLLNQTRKVRLGNPRPRYSNLGFQLLGHAVAKAAGRSYEQLLGDVLGAGFSAPARAEDLGPADLLGVSRFGRTQSAWVGEAVAPAGGVRANISTMRGFLRSVLDGTAKGLSALEPVAEFTPRVGIGAGWITLEHRGRQVTWHNGGTGGFSSWIGFDLGAGTGVVVLAAIHRSVDRQGFRLLTELAPAEKVPPSPAVNGRPTNANANANANA
D1-29_01107942hypothetical proteinATGACGGCGGCGTTCGATGCACAGGAGATCGACCGCGTCGTCGGCGAAGATGGCAGCATCGGGCACGCCGAGACGCGGATCGGCGATTCAGTAGTCCTTGCCTTCGACGCCCGCCCGCACTGGCCAGCCACGCCGTCGTACCTTCGCCTTTACACCGACGACGCCGATGCCACCTTCCACGCCGCCCTCGCCGCGGGTGCCACCGTAGTTTCGGTCCTGGACAACAGCGCCTGGGGTGACCGCGGTGCCCGCATCCAGGATCCGCTCGGCAATGTCTGGTGGATCATGTCGCATATGGAGGACGTGCCCGACGACGAAGCCGGCCGCCGCTGGCAAATGCCCGAATATGCTGCCGGCATGGAGTACGCCATCGACTCACTCCACAGGCACATGACAGGTCAGCCGCAAAACCCTGTCCCAGAGGCCGTCCGCAAGATGGCCCAGCTGAAGCGCGCGGAAGGAGTGAGCGCCATCCCTGCAGGCTACAGGTCAGTGGAACCGTGGATCATCACGCGCAGCACGCCGGGTTTGCTCGACTTCATTACCGCGGCGTTCCATGCGCAGGAAGCCTTCCGCGTCCCGATGGAGGACGGCTCAATCGGCCACGCTGAAGCGCGGATCGGTGACTCGAACATCCTCGCGTTCGATTCACGCCCGGACTGGCCGCCTGCTCCCGCTTTCCTCCGCGTGTACGTCGACGACGGCGATGCCACGTTCGCCGCTGCCCTAGCAGCCGGTGCCACGGCAGTAACGAACATGACCGAAATGTTCTGGGGTGACCAGGTGGGAAGGGTCCGGGATCCGTTCGGCAACCTCTGGTGGATCCACTGCCGGGTGGCTGAGCTCAGCGAGGAAGAGGCCTACGCGAGGGCGGGCGATCCGAAGTTTGTGAAGGCCATGCTGTACGTGACCAGCACAGACTTTTTCGCGCCCGAGGGTTAGMTAAFDAQEIDRVVGEDGSIGHAETRIGDSVVLAFDARPHWPATPSYLRLYTDDADATFHAALAAGATVVSVLDNSAWGDRGARIQDPLGNVWWIMSHMEDVPDDEAGRRWQMPEYAAGMEYAIDSLHRHMTGQPQNPVPEAVRKMAQLKRAEGVSAIPAGYRSVEPWIITRSTPGLLDFITAAFHAQEAFRVPMEDGSIGHAEARIGDSNILAFDSRPDWPPAPAFLRVYVDDGDATFAAALAAGATAVTNMTEMFWGDQVGRVRDPFGNLWWIHCRVAELSEEEAYARAGDPKFVKAMLYVTSTDFFAPEGNANANANANA
D1-29_01108393hypothetical proteinATGACCGAGGCCGGCGGCCCCATTCGGCCGCTCGTTGACCGGTCGGTGTTGGATTTGCTGCGCGCGGAGCTGGATGAGGATGAGGGAGTCTGGCGTGCGTTCATAAGGAACTACATCGCGCACCTGCCCAACAGGATTGAAAGGCTGCGCCTTACACTGACCACCGGGGACCTGGACGGTGCACTCGATGCGGTCCTCAGCCTTAAAACCTCCAGCCAGATGGTGGGTGCCGAACGTCTCGCGGGTCTTGCGTTGGACCTGGAGAGGTCCCTCCGCGACGAGGATACCTATGCTGACCCTGACCGTCGCCTGCCGATGCTGGCGGTGGCCCATCTTGCGAGGATCAGCCAATGCGCCAAGCAGACGAGCTCTTTGCTGCGGGATTACGCCTAGMTEAGGPIRPLVDRSVLDLLRAELDEDEGVWRAFIRNYIAHLPNRIERLRLTLTTGDLDGALDAVLSLKTSSQMVGAERLAGLALDLERSLRDEDTYADPDRRLPMLAVAHLARISQCAKQTSSLLRDYAPGPT0025855_55DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025855-hptB-K20976NANA
D1-29_01109582hypothetical proteinATGCCCCACGCGCTGGCTACGTCGTCGGCAACAGTCGAACGCCACTCCGCATCGACCGATTCCTTAATGCGTCTGATCTCACTTAGGGGCATCATCACCGGTACATGCTTACATACAACCAACTGCTCGAAGGATCTTGCTTGTTGCCTTGGAATTCACGTCCGTGCTTTTTCCCGGATGAAATCGAGATCCTCCCGGGAAAGCATCAATTGGCCGTGGCCGTCCGTTTCGAAGTGCCCAACGGAATGCTGTCTGATGCGGGCGGTGACGGTGCGGGGCAACATCACACATCCGGGATTCTCCAAGAGCCACTGGCGAGTCTCCGCGTCGAGCCGGTCCCACTCGTCTTTGAGTGTCATCTACCTCTTGCCGCCCTTCCCCCATGTCCCCCTGAGACCCCAACCGGGTCCAGCGATTCCGCCCAGAGTACCCTTCACCTCGGGAGAAGGACAGGGGGTCCTGACCCAATCGGCAAACCCTCAGCAGGCTATCTGGAGAGTGCCCGTGAGAATTTTGGCCAAACTGAAAAATAGAGTACCGACTACTCGTGCTTCCCTTCCCCGCGGTGTATATCGTCCATAGMPHALATSSATVERHSASTDSLMRLISLRGIITGTCLHTTNCSKDLACCLGIHVRAFSRMKSRSSRESINWPWPSVSKCPTECCLMRAVTVRGNITHPGFSKSHWRVSASSRSHSSLSVIYLLPPFPHVPLRPQPGPAIPPRVPFTSGEGQGVLTQSANPQQAIWRVPVRILAKLKNRVPTTRASLPRGVYRPNANANANANA
D1-29_01110180hypothetical proteinGTGTGCAAGTGGTCCAGTCAGCAGGCCTTCATGAGAGAAAATGTGAGGCTCAGCGGAATCAATTCGAGGAGCAGCAGCGTGAAACCGCGCCAGCGCCTGACCCCACTGTCGGGCCCGTTCCGGCGTGAGGGACTCTGCGTCGAGGGCAAGGCCCGGGGCTTCCTCAACGAGCATCGCTGAMCKWSSQQAFMRENVRLSGINSRSSSVKPRQRLTPLSGPFRREGLCVEGKARGFLNEHRNANANANANA
D1-29_01111426hypothetical proteinATGCACGGTGACTTCGAGCTGGACAACCTTCGGTTCACAGACTACGGCGTGGCGATCTTCGATTTCGACGAGTCAGGCTGCGGCCCCGCTGCATGCGATGTCGCTCTTGCGACTCGTGCCCTGCACGGTGAGGAGGGGGCTGAGCCCGAACCCGGGCTCTACGCAGAGTTCCTCATTGGATACCGCAGTAAGAACGAGTTCACCGCAGAAGAGGAAGCAGCGGTAAAAACATACTCACTGCACCACTCCGCTCGGCGCTCCCAGGATCGCTCGATCCTTGACGAGGGTTTTCGTCCCTCAGATCCGCTGTGGCAGCAGGAACTTCACGACGAAATCCAGGCGGCGAACGCCTGGCACCGCAGAAAGGCAATGTCCGCTGTCCGCGAGCTAGGACATGACGTGGACTTGTTTGAGCAGGAACACTGAMHGDFELDNLRFTDYGVAIFDFDESGCGPAACDVALATRALHGEEGAEPEPGLYAEFLIGYRSKNEFTAEEEAAVKTYSLHHSARRSQDRSILDEGFRPSDPLWQQELHDEIQAANAWHRRKAMSAVRELGHDVDLFEQEHNANANANANA
D1-29_01112552hypothetical proteinATGGCTCAGGCACTGGCCCCCTTGCCCCGCCGTTCCAGCGTGGCCGCCTTTCCAATCGTCATCCTGCTGGCAATCCTGCTCGGCTTCCTGCCGGCGTCTCCACGGAGTGAGGAGCTGCCCGCGGGCACTGCCGCAGCGCTTCAGTCCCTTTTGATGCCGGTCCACGAGTCGGCAGCCGCCGGAGACTATGCCCGGGCCCTGGAAAACCTTAATGGCGTGGCCAGTGAAGTTGCCGCCCATGCTGCGGCCGGCGGGATCTCAGTGGCGAGGCAACAGCGGATCCTGGGGGCTCTGGAGCTGGTCCGCGCCGACCTGGAGGGCCTGATCCGTCAAGCCGATGAGGCTGCAGCAGCGGTCCAGGCCAGCGCTGACAACACTGCCGGCCAGACCCAAGTTGATCCCGCACCTGCAGCGCCCTTGCCAGCTCCTGCTCCGGCACCGGTTCCGGCGCCTCAACCTGCGCCAGATGGGGAGGAGCCGAAGTCCAAGCCCGGCGACAAACCGGGGAAGGGCAACGACAATGGCCCCCGCGGCAACGGAAAGGGCAAGTAGMAQALAPLPRRSSVAAFPIVILLAILLGFLPASPRSEELPAGTAAALQSLLMPVHESAAAGDYARALENLNGVASEVAAHAAAGGISVARQQRILGALELVRADLEGLIRQADEAAAAVQASADNTAGQTQVDPAPAAPLPAPAPAPVPAPQPAPDGEEPKSKPGDKPGKGNDNGPRGNGKGKNANANANANA
D1-29_01113420hypothetical proteinGTGACCCAGCGCCGGGACACGCCGCGCCAGCGGGTTACGGCATGCAAACGTGGGTACGTTGCCCACATGCAGAAAATATCGATTGACGCCCTGGCCCGTCAGCAGATCGACGCCGCCGTGGCGGCGCCCAGCGGCCGGGCTGCCGACACCGCATTCGGCGGGCATGAAAAGACGCTGCGGCAGACCGTGATGGCGTTCCGCGCGGGCACCCAGCTCAGCGAACACCAGAACCCCGGCGAAGCCACTGTTTTTGTGCTGAAGGGAAACGTGTGGCTGAAGTCGGGCGGGAACTCCTGGCAGGGCAAAGCCGGGGACCTGCTGATCGTGCCGGACGGGCGCCACAGCCTCGAGGCTGAGGAGGACTCGGCGGTGCTCTTCACCGTGGTCAAGACGGACCGTTTAGTCCAGCTGCCGGTTTAGMTQRRDTPRQRVTACKRGYVAHMQKISIDALARQQIDAAVAAPSGRAADTAFGGHEKTLRQTVMAFRAGTQLSEHQNPGEATVFVLKGNVWLKSGGNSWQGKAGDLLIVPDGRHSLEAEEDSAVLFTVVKTDRLVQLPVPGPT0000300_197DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575NANA
D1-29_01114849TropinesteraseATGCTGGCAGGCCCGGCTACCGGTTCACCGGCGTACCCTGAGGCTATGGAATCCGACGTCCTGGATCTCAGGCTCCGCACCGGCATCACGGTGCCGTGCTCCGTCCAGGGCGACGACGGCGGCGAACCGGTGCTGCTGCTGCATGCCTGGGGCGAATCCCGGCGCTGTTTTGACCGCCTGATCCCCCAACTGCCCGGCTTCCGGGTCTACGCTCCCGACCTCCGCGGGCAGGGCGACGCCGAGAAACCCGATAGCGGCTACTCCCTCGCAGAACAGGCCGAGGACGCCGCCGCGATCCTGGACGCACTCAACCTACCCAGGGCATTTGTCCTTGGCTCGTCCAGCGGCGGCTACGTTGCCCAGCAGTTGGCGGCGGCGTATCCGGAGCGTGTCACCGCCCTGGTGCTGGTCGGTTCCCCCTTGAGCCTCCAGGGACGGCCGTCCTTCGCTGACGAAGTGGACAGCTTGGCCGACCCCCTCGACGAGGGCTGGGTCCGCGATTCGCTGTCCTGGTTCACCCTGCTGCACGATGTCCCGCACTGGTACATCGAGGACCGCGTGCGCGACGGGCTCAGGTTGCCCGCCCACGTGTGGAAAAGTATCCTGACGGGCCTGTCCGAGGCCACGCCGCCGACCGAATCCGGGAACGTCCGCGCGCCCACGCTAATCTTGTGGGGCGCCGGGGATGCCCTGCTGCCGCGCAGCAGCCAGGAAGAACTGGCGGCCCGGATCCCGGGAGCAATGCTGAAGGTATATCCCGACACAGGGCACATCGTCCTATGGGAGTGTCCTGACCAGGTGGCGGCGGATGCGTCTGCGTTCTTCCGCTCCCAACCGGCACCATTCTGAMLAGPATGSPAYPEAMESDVLDLRLRTGITVPCSVQGDDGGEPVLLLHAWGESRRCFDRLIPQLPGFRVYAPDLRGQGDAEKPDSGYSLAEQAEDAAAILDALNLPRAFVLGSSSGGYVAQQLAAAYPERVTALVLVGSPLSLQGRPSFADEVDSLADPLDEGWVRDSLSWFTLLHDVPHWYIEDRVRDGLRLPAHVWKSILTGLSEATPPTESGNVRAPTLILWGAGDALLPRSSQEELAARIPGAMLKVYPDTGHIVLWECPDQVAADASAFFRSQPAPFNANANANANA
D1-29_011151608yfeWPutative D-alanyl-D-alanine carboxypeptidaseATGCGACAGATTTCCTGGTCAGCGCGCTGCTTCCTGTCGTGCATCGTGGCCGCCGGCGCCCTGGGCCTGAGCATTCCGGCCGCCGCCATCCCCGAAAGTGCCCCGATCCAGGGGCCGCATCCGGACCAGGCCTACGACGCGCTGGATCTCTTCCTCCAGGACCAGCTGGACACACTGGACATTCCGGGCGCCGCCGTGGTTGTTGTCCAGCACGGCCTGCAGGTGCACTCTGCGGCGTTCGGGATGGCCGACGATTCAGCGAGGCCCATGACCGCCCAGACGCCGGTGCTGCTGGCTTCCACCAGCAAGTCACTCACAGCCATCGCCGTGATGCAGCAGGTTGAGGCCGGCCGGCTGGCGCTGGACGAGCCGGTGCAGACCTACCTGCCCTGGTTCACCCTGAAGGACAGCCGCGCCTCCGCCATCACGGTCCGGCATTTGCTGCACCAGACCAGCGGCATGTCCTCCGGAGACACGGCATTCGAAGGCTCCAACGCACAGGACCCGGAGGCGCTCGAACAAGGGGTGCGGGCCCTGGCAAACGCTCCCCTGGCCGGCACCCCCGGAGCGGAGTTCGGATATGCCAATGCCAACTACAACATCCTCGGGCTTCTGGTGCAGACGGTCTCCGGCCAGCCGTTCGCGGACTACATGGAGCAGCACATCTTCGGACCCCTGGACATGCCGCACAGCCATCCCACGCGGGCCGCTGCCCGCGCAGACAAGGTGGCCGCCGGCTATTCCCTCTGGTTCGGCTCGTTCTGGCTCCAGACCGACGTGCCCGCACCCGCCACGGGAATGCCGTCCACCACCATGTACTCCTCCGCAGAGGATCTGGGCCATGAGCTGATGGCCCTGATGAACGAGGGGCGGTATGGTGATCACCGCCTCCTCCAGCCTGAAAGCGTGACGGCTATGTTCCAGCCGCGGGTGCAGGTGGACGCCTCCAAGGGGTACGCCATGGGCTGGTTCACCCGCCCGCTGGTGGAGTCGGTTGGCCCGTCGGAGCCCTATGACGACGGCGATCTGCCACTGCTGCTGGAGCACCAGGGCGAATGGGGCAACACACACACCTACCTGGCCATGGTTCCGGACTCCCGGCTGGGGGTGGCCCTTGTGATCAACGGGAACGACGCCTCCGCCCCCTCCCGGCTCAAGTCCATCGACACGAATATCCTCCGGATTCTCCACGGCGAGCCGCCGGTGCCCACTGTTGTTCAGGAGGACTGGCTGCAGCGCTACAGCTGGGCCGTGGCGCTGGCGCTCCTGGTGGCGGAACTGCTGAGCCTGTGGCTGGCGTTGTCAGTCGTGTTCCGGCGACGTGCCGGCGCCGGGAAGCGGTGGCTGCCGGCCGTGGTGGCTGTTGGCGCCCTGGCACTTGATGCGTTCGCGCTGTGGCTGTGCTTCGTCTACGCGCCCGCCCGCTTCGAGACGGACCTGGCGGTGATCATCCGCCAGTTTCCCGACGTCGGCATCTCCCTGGTGCCGGTGCTCGCCCTGGCCATTGTGTTGCCGCTGCCCCGAACGGTCTGGCTGCTCCTCCGGATGCGGGCGGGTCCCCCTGCCGATGCTGGCAGGCCCGGCTACCGGTTCACCGGCGTACCCTGAMRQISWSARCFLSCIVAAGALGLSIPAAAIPESAPIQGPHPDQAYDALDLFLQDQLDTLDIPGAAVVVVQHGLQVHSAAFGMADDSARPMTAQTPVLLASTSKSLTAIAVMQQVEAGRLALDEPVQTYLPWFTLKDSRASAITVRHLLHQTSGMSSGDTAFEGSNAQDPEALEQGVRALANAPLAGTPGAEFGYANANYNILGLLVQTVSGQPFADYMEQHIFGPLDMPHSHPTRAAARADKVAAGYSLWFGSFWLQTDVPAPATGMPSTTMYSSAEDLGHELMALMNEGRYGDHRLLQPESVTAMFQPRVQVDASKGYAMGWFTRPLVESVGPSEPYDDGDLPLLLEHQGEWGNTHTYLAMVPDSRLGVALVINGNDASAPSRLKSIDTNILRILHGEPPVPTVVQEDWLQRYSWAVALALLVAELLSLWLALSVVFRRRAGAGKRWLPAVVAVGALALDAFALWLCFVYAPARFETDLAVIIRQFPDVGISLVPVLALAIVLPLPRTVWLLLRMRAGPPADAGRPGYRFTGVPNANANANANA
D1-29_01116276hypothetical proteinATGACCAGTCCAGAGCAGGATCCAAGCCAGCAGGAAGGCCCCGCGGACGGTGGCGCGGCCGGCGTCCCCGGCATGCATGATGGGGGTGCCGACGGAGGAGCTGACAGCGGTGCCGATGGGGGAGCTGACAGTGGAGCCGACGGGGGTGCTGACAGCGGTGCGGACGGCGGTGCCGACGGAGGAGCTGACAGCGGCGCCGACGGGGGTGCCGATGGCGGAGCTGACAGCGGTGCCGATGGCGGAGCCGACGGGGGAGCCGCAGGGCGGGGCATCTAGMTSPEQDPSQQEGPADGGAAGVPGMHDGGADGGADSGADGGADSGADGGADSGADGGADGGADSGADGGADGGADSGADGGADGGAAGRGINANANANANA
D1-29_011171206hypothetical proteinTTGAGCACAACCCGCACGGACTTTCAGGACCCCGGCGCACTGAAAAGCGGCGGGGTCCTGGAGACACGCCTGATTACCATTGGCCGTGAGAGGTTCGCCGCCGACATCTGGGGACGCACGGCGCTGCTCACGCGTGGGGCCAGCGACTTCTCCGATTTGTTCTCTGCCGGGGCCGTCGACGAACTGGTCTCGCGCCGGGGACTGCGCACACCCTTTCTCCGCGTCGCCAAGGGCGGCTCAACGTTTCCCGACTCGTCATTCACCTCTCCCGCCGGCGTCGGCGCCACCATCTCTGACCAGCTCGACGACACAGCACTTTGGCGCAAATTCGCGGACGGTGCCACCCTGGTGCTGCAGGCTCTGCACCGCACCTGGGAGCCGGTCTCGGACTTCAGCAGCCGGCTGAGCACCGAGCTGGGACATCCGGTGCAGGCCAACGCCTACATCACGCCGCCCCAGAACCGCGGGTTCGACGATCACTACGACGTCCACGACGTCTTCGTCCTGCAGATCGAGGGCACCAAACGCTGGATCATCCATGAGCCGGTCCACCCGGACCCGCTGCGTGATCAACCCTGGACTGACCGCCGCTCCACCGTCGCCGAGGCCGCGAAAGGCGAGGCCTACATCGACACCGTGCTCGAGCCAGGGGACGTCCTCTACCTGCCACGTGGCTGGCTGCATGCCGCCCAGGCGCAGGGCGAGGTCTCCATCCACCTCACGCTCGGAATCCACAGCTGGACCCGCTATGCGTTGGCCGAACAGCTCGCCCATGCCGCGCTCGCAGCGCTGTGCGATGATCCAGAGATGCGCCGTACGTTGCCGTTGGGCGTCGACGGGCCAGGTGCGGAGCTCGACGTCGTCCGTGAGCGCCTCGCCGCTGCTGTCGTTAAGGCTGAAACCACTTCTTTGTTCCACCGCACCCGGCGAGGACAAGGCCGGCCGGCACCGCTGGGACCATTGGCCCAGCTCGCGGCCGTCGACGGCCTAAGCCCCGGGTCTGTGGTCCGGCTCCGCGATGCCCTGGAAGCACGTCTGGAGGGATCGCGCCTAACCACGCGCGTGGGGTGGCTCGACTTCCCAGAGGCCGATCTGCCTTCCGTAACGCGCCTGCTCGACGGGGAGATTCACACCGCGGGTGACCTCGGCGTTGAACTCGTTGAAAGACTGTTGCGCGCGGGGGTCCTCGTTCCCGTTGAACAGTGAMSTTRTDFQDPGALKSGGVLETRLITIGRERFAADIWGRTALLTRGASDFSDLFSAGAVDELVSRRGLRTPFLRVAKGGSTFPDSSFTSPAGVGATISDQLDDTALWRKFADGATLVLQALHRTWEPVSDFSSRLSTELGHPVQANAYITPPQNRGFDDHYDVHDVFVLQIEGTKRWIIHEPVHPDPLRDQPWTDRRSTVAEAAKGEAYIDTVLEPGDVLYLPRGWLHAAQAQGEVSIHLTLGIHSWTRYALAEQLAHAALAALCDDPEMRRTLPLGVDGPGAELDVVRERLAAAVVKAETTSLFHRTRRGQGRPAPLGPLAQLAAVDGLSPGSVVRLRDALEARLEGSRLTTRVGWLDFPEADLPSVTRLLDGEIHTAGDLGVELVERLLRAGVLVPVEQNANANANANA
D1-29_01118897hypothetical proteinGTGGCGGCCAGGGAGCGCTTCTTCTGCTCTGAAGACGCCCGGTTGCGCGGCGACCCGATTGCGGGCACGGCGTCGCACGGCGTCGTCTGGGTCCTCATCGAGTACCGGGGCGGGTGGCCTCTCAATGGCTTTGAAGGGCTTGATCTAGAGCCTGAGACCAAGGCACTGGTATTATCTGCCGCGAAGGCGGCGCGGGCACGGGTGCTGCTGGTGCGGCGGCCCGGCCTTCGCCGCCGTGAGGGTCAGAGCCATTGGGCCGTGCTGCGCCATGAAGAGTCAGGCGCCTATCGTCAGCAATGGGGAACGTGGAGCAAGGATGAGGATCTGGCGGAGATTGCCACAGCCCTCAGCACCCCGGGCAGGCTCGGCTATCCGCCAGTCATCCTGGTCTGCACTCACGGTCAACGTGACCAGTGCTGTGCCGTGCGCGGACGTCCCGTGGGACGTGCACTAAGTGAGCGCTGGCAGGAGCTGGTGTGGGAATGCACGCACATAGGCGGTGACAGGTTCGCCGCCAACGTCGTGGTTGCGCCCGACGGCGTCTACTACGGAAATCTGGACGCGGAGTCGTCCGTCGCCACGATCAAAGAACACCTCGCCGGCCGTATCCATGCGGAGTATCTGCGCGGATACACGGATCTCTTCCCAGCGCAGCAGGCCGCTGTCGCTGCCATGCTCAGACGTTTCGGCCCGGCCGGCCGGAATGACTATGTGGTTGCGGCGACCTCCCGCGACGGCGATCACTGGCGGATCCGCATCACCGGCCGCCCGCCTCACCCGGAACGTGTTGACGTCGAGCTGGAGGCGCGCCGCGCGCCGCCCTGCCAACTGACCTGCCGCGGGCCGGCGATGAGTTCCGCCCTGGTCTACGAGCTCACGTCGATCTCCGCAGTCTGAMAARERFFCSEDARLRGDPIAGTASHGVVWVLIEYRGGWPLNGFEGLDLEPETKALVLSAAKAARARVLLVRRPGLRRREGQSHWAVLRHEESGAYRQQWGTWSKDEDLAEIATALSTPGRLGYPPVILVCTHGQRDQCCAVRGRPVGRALSERWQELVWECTHIGGDRFAANVVVAPDGVYYGNLDAESSVATIKEHLAGRIHAEYLRGYTDLFPAQQAAVAAMLRRFGPAGRNDYVVAATSRDGDHWRIRITGRPPHPERVDVELEARRAPPCQLTCRGPAMSSALVYELTSISAVNANANANANA
D1-29_011191260entS_2Enterobactin exporter EntSATGAGTGCTATGTTCCGTGCCCTCGAGAACCGCAACTACCGGATCTGGGCCGGCGGTGCGCTGGTGTCCAACGTGGGCACCTGGATGCAGCGTATCGCCCAGGACTGGCTGGTCCTGACCGTCCTCACCAACTACTCAGGTGCCGCCGTCGGGATCACCACGGCACTGCAGTTCCTGCCCATGTTGCTGCTGGGTCCCTACGGCGGGGTGCTGGCAGACCGCTACCGCAAACGCATCATCCTGCTCTGGACCCAGCTGGCCATGGGCCTGACGGGGCTGGCCATCGGACTCCTGGTGGTCACCGGCACCGCCCAGCTGTGGCACGCCTACCTGGCTGCCCTTTGCCTCGGCATCGCCAGCGCCATAGATGCCCCGGCGCGCCAGGCGTTCGTCTCCGAACTCGTGGGACAGGACAACATTTTCAACGCTGTGGCCCTGAACTCGGCGTCCTTCAACACGGCCAGGCTTACCGGCCCCGCCGTCGCCGGTGTACTCATCGCCTGGGTGGGCACCGGCCCGGTCTTCCTGCTCAACGCGGCCAGCTACGCCGCCGTCATCATCTCCCTGTTCCTCATCCGCACCTCCGAACTGGTGCCGGCCGCCCAATCAGGCGGCGGCAAACACCAGGTAGCCGAGGGCGTGAACTATGTGCGGCGCCGCCCGGATCTGGTGCTGATCATGGTCCTGGTGGGCATCCTGGGCGCCTTCGGCATGAACTTTCCCATCACCAACGCGCTGATGGCCACGACGGAATTCGGCGTCGGGGCCGGCGAGTTCGGGCTCCTCGGCTCCATCATGGCCGTGGGCACGCTCGCCGGGGCACTGCTCGCGGCGCGCCGGGCCGGACCGCGGCTGCGCTTCCTCCTGGGCGGTGCGCTGGGGCTGGGGTTCTTCACGCTGGTTGGCAGCGTGTCGCCGTCGTTCTGGCTGTATGCGGCCGTCCTGATCCCTGTTGGCCTGGCGTCCATCACGTTCCTGAACAGCTGCAACACGAGCATCCAACTGTCGGTGGAGCCGCAGTTCCGTGGGCGCGTACTGGCCCTGTACCTGGCCGTGCTTCAGGGCGGGACGGCCCTGGGCGCACCCCTGATGGGCTGGATCGGCGGCGAATTCGGCGCGCGCTGGTCCGTGGCCGCCGGCGGCATTGTGGTCCTGCTGGCCGGCCTGGCCGCCATGATCGTTGTCAGCCGGAGGAGCCGGCTGACCTTCCGGGGCGCCCTTCGGGTCGCGTTCCGCAGGAATCGGGAGCAGGCCGCTTAGMSAMFRALENRNYRIWAGGALVSNVGTWMQRIAQDWLVLTVLTNYSGAAVGITTALQFLPMLLLGPYGGVLADRYRKRIILLWTQLAMGLTGLAIGLLVVTGTAQLWHAYLAALCLGIASAIDAPARQAFVSELVGQDNIFNAVALNSASFNTARLTGPAVAGVLIAWVGTGPVFLLNAASYAAVIISLFLIRTSELVPAAQSGGGKHQVAEGVNYVRRRPDLVLIMVLVGILGAFGMNFPITNALMATTEFGVGAGEFGLLGSIMAVGTLAGALLAARRAGPRLRFLLGGALGLGFFTLVGSVSPSFWLYAAVLIPVGLASITFLNSCNTSIQLSVEPQFRGRVLALYLAVLQGGTALGAPLMGWIGGEFGARWSVAAGGIVVLLAGLAAMIVVSRRSRLTFRGALRVAFRRNREQAANANANANANA
D1-29_01120462COG1846putative HTH-type transcriptional regulatorATGAGCACCATCGAAGCGGCGGACCAGGAAACTTCAGGCCCCACCAGGCCGGACATCTTGGCCATAGACCTGCGGACGGCAGTAATGCGCACGTCCCGCCGGCTCCGCGTCGAAGCAACCGGCGAAGTCATCACCCCCGGGCAGTACACGGTGCTGGCCCTCCTGAACGGCAATGGCCCCAGCACCCTCCGCGCACTCGCCGAAAGCGAGCATGTGCAGGCCCCGTCCATGACCCGGATTGTCAACGCCCTCGCGGACCAGGGCTTCGTTTCCAGATCCGCCCACCCCGACGACGGCCGGCAGGTCAGGGTGGACATCACCGACGCCGGCAAGGAAGTCCTGGCCGAAGCCCGCAACGAACGGACCGCGTGGCTCGCCCAGCGTTTGGCCGGGCTCAGCGAGGAGGACCGGGTGATCCTCAGCCACGCCGCCCGAATCATGCAGGAGATGAGCGGCCGATGAMSTIEAADQETSGPTRPDILAIDLRTAVMRTSRRLRVEATGEVITPGQYTVLALLNGNGPSTLRALAESEHVQAPSMTRIVNALADQGFVSRSAHPDDGRQVRVDITDAGKEVLAEARNERTAWLAQRLAGLSEEDRVILSHAARIMQEMSGRNANANANANA
D1-29_01121615hypothetical proteinTTGGACAAATCGGTTCCGCTTGAACGCATGGTGTTCTTCAGCGACGCGGTGTTCGCCATCGCCCTGACGCTCCTGGCACTGGACCTGAAGGTTCCGGCAGGAATTCCACCGGAACGGCTGACTGCCGAACTCATCGACGGAATTCCTGAGCTGATCGCCTTTGCGCTGTCCTTCGTGATCATCGCCCGGGTCTGGATGTCCCACCACACGGACTTCTTCCGTATCCGCAAATTCAACCCGCAACTGGCGTGGCTGAACATGCTGCTGCTGTTCTTCATCGTGATGGTGCCCGCCACCACCTCGATACTCAGCGATTACGGCGGAAACGCGAGCCCCTGGCCCAGCGTCCTTTCTGCAGCCGCCATCTCCGGGGTTTACCTCACCCTTGCCGGAATGTGGACCTATGCCTGGCGCAGAGGCCTGACAGATAAGACGGTGGATGCCCAGGAGCACTGGCGGGTGTTCCGGGGCAGGATGACAGCGCCGGCCGTGTTCCTCCTCAGCATCCCGGCCGCATTCATCCTGACCAGCAACACTCCGTACCTCTGGTTCCTGATCCTGCCCGCCGCCTTCATCTCACGCAGGGTGTCCCGGCAACAGGCTGGCGCTCGGTAAMDKSVPLERMVFFSDAVFAIALTLLALDLKVPAGIPPERLTAELIDGIPELIAFALSFVIIARVWMSHHTDFFRIRKFNPQLAWLNMLLLFFIVMVPATTSILSDYGGNASPWPSVLSAAAISGVYLTLAGMWTYAWRRGLTDKTVDAQEHWRVFRGRMTAPAVFLLSIPAAFILTSNTPYLWFLILPAAFISRRVSRQQAGARNANANANANA
D1-29_01122426hypothetical proteinATGGACAACGAAGAAAGGCCCGCCGGCGCCACCGATCCCGGGCCGTTCTACCACGGCACCAAGGCTGACCTGAAGCCGGGAGACCTGCTAAACCCTGGCCATAGCTCGAATTTCGGGCAACGGAAGACGGCAAACTATGTCTACCTGACGGCAACCCTCGACGCAGCCACCTGGGGAGCCGAACTTGGAGTGGGCGAAGGGCCGGGCAGGATCTACCGGGTGGAGCCCACCGGCCGGATTGAGGATGACCCCAACCTGACCGACAAGAGGTTTCCCGGCAATCCGACGAGGTCCTACCGCACCACGGATCCGCTGCGGGTGCTTGACGAGGTCCTGGACTGGCAGCCACACTCCCCTGAGGTGCTACAACACATGCGGGACCGCCTTGAAGAACTCAAGCGGCAAGGCATCGAGGCCATCGACTAAMDNEERPAGATDPGPFYHGTKADLKPGDLLNPGHSSNFGQRKTANYVYLTATLDAATWGAELGVGEGPGRIYRVEPTGRIEDDPNLTDKRFPGNPTRSYRTTDPLRVLDEVLDWQPHSPEVLQHMRDRLEELKRQGIEAIDPGPT0028000_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0028000-vat-K18234NANA
D1-29_01123267hypothetical proteinGTGCTGGCGGTTCCTGCCGATGGGGAGATCCTGCACGACCACCTCTACGTCCTTCCCGTGGAAGGCGCCGGGCTCATCCTCGACAGCAAGATCTACTCCCCGGAAGCTGTCTTCCAAATTGCCGCCGTCGTTCTGAACACAGGCGATATCCGGACCGCGCACCAGCACATGAAGCTAAAGAGTCCTGAGGTGGCGGACATCCAGTTTGATAAGTGGTTCAACTTCAAGGACCCCGACGGAAATCTTCTGATGATCTGCCAGAACTAGMLAVPADGEILHDHLYVLPVEGAGLILDSKIYSPEAVFQIAAVVLNTGDIRTAHQHMKLKSPEVADIQFDKWFNFKDPDGNLLMICQNNANANANANA
D1-29_01124537hypothetical proteinGTGACGGGCGCCTGGAAACTCATCATCGCCCTCGCTGCTGTGCTGGGTGTTGGCACCTGCGTAGCCTTGGGTTTCCTCGGGGTGGCGTTGTTCGCCACGCAGCCGGGGACCCTTCAGGTGCTGGACAGGGCGGCGTCCGAGCGGGACGTCCTGACCGGTGACTTTGGATCTATGGACTCTGACGTGCAGATGGAGAACGCCCGCTTCCTGGGAATGTACGAGAACACCAAGTACTTTGCGGCCCCCAGCGCCTACAACGAGGACAGTTTCTGCCTGATTGCTGTTGCCGTTATGGAGGACGGCGGCTGGGAAGCCGGTTGCGGAGAGCTCATCGACGGCAGGGAGGTTCTGACGTATGTGTGGGACGCGGACGGCAGGGAGGCAGTGCTTGTTCCGGATCAGTTCGACAACGGGATGCTGGAAGCTGACGGCTGGGTTTCGATTCATCAGAACCTGATGGTCCAGGTGGATCCCGAAGCCCCCCGCGAGTTCAGCGACGAAAGAGACGACGTCGAGCCCTACCCGCTCAAGGCCTGAMTGAWKLIIALAAVLGVGTCVALGFLGVALFATQPGTLQVLDRAASERDVLTGDFGSMDSDVQMENARFLGMYENTKYFAAPSAYNEDSFCLIAVAVMEDGGWEAGCGELIDGREVLTYVWDADGREAVLVPDQFDNGMLEADGWVSIHQNLMVQVDPEAPREFSDERDDVEPYPLKANANANANANA
D1-29_01125354hypothetical proteinATGAACTACAGCGGAAGTCCGTCCGAGAAGCCACTGGCAGCCGGTGACCTTGACCGCAGCCACATCGGCCAGACTGTCAGCTTCCAGCCCAACGATTTCACGGTGGTCTTCGGAACACTCGCCGGGGTTGCCCGGACGGACGCCCAGGTGTATCTGTCCCTCCAGGGAGTGGGCGGCGGCACCCACCTGAAGGACGAGTACGACCTTCCCGTTACCCAGGAGGTCTACCTTCAGCTGGATCCCATCAGCAGCGCCGGGAAGACCCTTTCGGAGGCGGAACGGGTGATCAAGGAGAAGTTCGACGAGATCAAGAAAAACCTGATGGACCGGGAGCAGAAAACCGGTTCCGAGTAGMNYSGSPSEKPLAAGDLDRSHIGQTVSFQPNDFTVVFGTLAGVARTDAQVYLSLQGVGGGTHLKDEYDLPVTQEVYLQLDPISSAGKTLSEAERVIKEKFDEIKKNLMDREQKTGSENANANANANA
D1-29_01126924tkrAGlyoxylate/hydroxypyruvate reductase BGTGTCCACCCGCCTGCGCGTAAGCCTGCCCGACCAAGACCTGATGGATGCCATGGAGCCGCGTGCCGGCGTCGAGTTCCTGCTGTGGGACTTTTCCTGCCCCGCCCCGGCGGCGCAGCTGGACATCGTGGTGCCGCCGTACATGCGCGGGCCCAGGGTCCTGGCCGCGCTTGAGTCCGTGGAGGCACGCCTGGTCCAGAGCCAGTCCATAGGGTACGACGGCGTGGAGGCAGTTCTGCCCACGGGTTGCCTTTTCGCCAACGCGGCAAGCGTCCATGAAACCTCGACGGCGGAACTCGCCCTGGGCATGATCATCGCCAGCCAACGGGGAATCCCGGACTTCGTCCGGAACCAGGTGTCGGGCACCTGGGCGAACAGCCAGCGGCCCAGCCTGGCGGACCGCCGGGTGCTCCTGGTGGGTTATGGCGGCGTGGGGAAGGCCATCGAGGCGCGGCTGCTGCCCTTCGAAACCCAGGTCACACGAATGGCCAGCCGCGGCCGCGAGGATGGGCAAGGCAGGATCTACGGGATCGATGAGCTGTACGAACAGCTGCCGCTGCACGAGATTGTGGTGGTCAGTGTTCCCTTGAGCGAGCAGACCCGCCACCTGGTGGACCGGAAGTTCCTGGCCGCAATGCCTGATGGCGCGCTCCTGGTCAACGTGGCGCGCGGGCCGGTGGCTGACACCGATGCACTGCTCGCCGAGACGTCGTCCGGCCGGCTCCGGGCGGCCCTGGACGTGACGGATCCGGAACCGCTGCCGCAGGACCACCCCCTCTGGGCCGTGCCGGGTGTCCTCATCACTCCGCACGTGGGCGGGGCGAGTTCGGCCATGCTGCCGCGGGTGGCACGGCTGATCGGCAGGCAGGTTGACCTGATGCTCGCCGGGCAGGAGCCGGTGAACGTGGTGCTCGGCGCGCGGTAGMSTRLRVSLPDQDLMDAMEPRAGVEFLLWDFSCPAPAAQLDIVVPPYMRGPRVLAALESVEARLVQSQSIGYDGVEAVLPTGCLFANAASVHETSTAELALGMIIASQRGIPDFVRNQVSGTWANSQRPSLADRRVLLVGYGGVGKAIEARLLPFETQVTRMASRGREDGQGRIYGIDELYEQLPLHEIVVVSVPLSEQTRHLVDRKFLAAMPDGALLVNVARGPVADTDALLAETSSGRLRAALDVTDPEPLPQDHPLWAVPGVLITPHVGGASSAMLPRVARLIGRQVDLMLAGQEPVNVVLGARPGPT0009155_7891DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-29_011271188hypothetical proteinATGCACGCAGCAGATTTCCGCTTCCCCGTTGTCCGCCGTGCCGCCGCTGCTGTGCCGGCAGCGGCACTGGTTGCGGCGCTCGCAGGCTGCACCGGCGCGCCGGATCAGCAATCCCCGACGCCGGCGGCCACCTCCGTAACCGCCACGGCAACTGCGTCTGCTGCCCCGGCGTTCGCCGCTGGGCTGGACAAATACAGCCGGGACATGCGCGCCGGAGGAGCCACCGCCGTCGTGATCCAGATGAAGTCCCGGGTGGGGGAATGGGCCTCGGCTGAGGGAGTCCGGAACCTCGAAACCAATGATCCGGTGCAGCTGACCGACCAGACGCATGTCGGCGACATCACCATGACCATGGTGGCGGTTTCCGTGATGAAGCTGGTTGAGGAGGGCGACATCCAACTGGATGATCCCGTTCAGGAGTACCTGCCGGAGTTCGAGAGCATCATCAAGCCGCCCGGGCCTGTCACCATCCGCAGCCTGCTCAGCCACAGGTCCGGGATGCCGCACTACTGGGAAACACCGAACGAAATTGAAAACAGGCGCTTGACCCATCAGGAGCGTCTGTCCTTCGCGGCCGCCGTCCGGTGGGGCCGGGGAGCGGGCAGCCTGTTCAACTACTCCAACACCAACTACTCGGCCCTGGCCCTGCTGGTCGAAAAGCTGCGGGGCCAGGACATCGGGTCCGTCATCCTTGCCGACAACGTGAAGCCGTTGGGGCTGCAGGGCACCATGATGACGGGCTCCGAGCCGGGGCCGCAGAACCTGATCCACGGATACACTCGCACCGAGAGCGGGGAACTGGTGGACAACGCGCTGGCTCCGCTCCACAGCGGATCACCTGATACAGGGCTGATCTCCACCGTCCCCGAACTCAACGCCTATTTCGCCGCACTGCAGAAGGCGACGCTGCTGACCCCTCAAAGTTTGGCGGAGATGCATCACCCCAAGTATGAGCAGTTCGGCCTGGGCCTGGTCCGGCACTACGATTCCTGCTCCAACAACGACTATTACGGTCACGTCGGGGTGGTCCGGGGCTACGCTGCGCTGGCGCTGATCAGCGCAGACGGCTCCCGGCAGGTTGCCATGGCTGTGGCCAGGGCCCCCAAGCCGGACCTGATTGGCTTCGACGATCCGCAGGCGCTGGAGATGTCCCGGGTGGCGGTCGACGCGCTCAATCAGGCCTGTTGAMHAADFRFPVVRRAAAAVPAAALVAALAGCTGAPDQQSPTPAATSVTATATASAAPAFAAGLDKYSRDMRAGGATAVVIQMKSRVGEWASAEGVRNLETNDPVQLTDQTHVGDITMTMVAVSVMKLVEEGDIQLDDPVQEYLPEFESIIKPPGPVTIRSLLSHRSGMPHYWETPNEIENRRLTHQERLSFAAAVRWGRGAGSLFNYSNTNYSALALLVEKLRGQDIGSVILADNVKPLGLQGTMMTGSEPGPQNLIHGYTRTESGELVDNALAPLHSGSPDTGLISTVPELNAYFAALQKATLLTPQSLAEMHHPKYEQFGLGLVRHYDSCSNNDYYGHVGVVRGYAALALISADGSRQVAMAVARAPKPDLIGFDDPQALEMSRVAVDALNQACNANANANANA
D1-29_01128453hypothetical proteinTTGAGGCATGCACCCCGTTTCGCGAGCACTGTTTCAGGCCTCATCTGGGAGCTTGACCTGGCTTCTACTCCCATCAGCAGTGCCATGACGGCATTGCTCAGTGTCCTGCCCGAGTCCCTTCTGGAGCGAAAAGCCTTCCTGAACGTTATGAGTGCCGCCTCTGGCCCTGTCCTGGGTTCCGGCAAGCTCGGCTTGACGGGGAACGTACCCAATGGCCAGGGCTTCCGTGCAAAACCCCGCCGCATGTGGTTTGTCTCCGATAGTTCTGCGTCCCTTGCAGCTGAGGGCTTTGGCAGCCCGGAGCCGCTGCGCGTCCAGACCCGGCTGGGCGATTTCTGGATCCCGCAGCGCGGCATCTTCCTGATCGGCGCGTCCTCGTACGAGACGTTTGACCCGGCCCGACACCTCGTCGCGACCGCGCGTCCCACGGCCGGACCAGATCAACAGGCCTGAMRHAPRFASTVSGLIWELDLASTPISSAMTALLSVLPESLLERKAFLNVMSAASGPVLGSGKLGLTGNVPNGQGFRAKPRRMWFVSDSSASLAAEGFGSPEPLRVQTRLGDFWIPQRGIFLIGASSYETFDPARHLVATARPTAGPDQQANANANANANA
D1-29_011291239COG0861putative membrane proteinATGGACGTTCCTTCAATGGCATGGGTGTTGACCAACGCAGGGATCATTGCGCTGCTGGTCTTTGACTTCGTGTTCCACGTCCGCCGCGCGCACGTTCCGACGCTGGCGGAAGCTGCTATCTGGTCATCGTTCTATGTAGGAATTGCGATCCTCTTCGGGCTTGGCATTCTCTCCTTTGGAGGGCCACCGGCCGGTGGGGAGTACTTCGCCGGCTTCATCACCGAGAAGGCACTGTCGGTGGACAACCTGTTCGTCTTCCTGGTCATCATGAGCAGCTTCAAGGTGCCCAGGGAAGACCAGCAAAAGGTGCTGCTGTTCGGCATAGTGTTCGCGCTGATCGCCCGCACGGTCTTCATCTTCCTCGGTGCGGCACTGATCAACACCTTTGCATGGGTTTTCTACCTGTTTGGGCTCATCCTGCTCATCACCGCCGGCAGCATGCTCAAGCCCGAAGACAGGGAGGAAAGGTCTGCCGATAACTTCATGATCCGGATAGCCAGGCGCCTGTTCCATACAACGGACTACTACGACGGTGACAAAATCTTCACCCTGCATGACGGAAAGTGGGCGCTCACTCCGATGCTGCTCGTGATGGTCGCCATCGCCGGCACCGACATTCTCTTTGCGGTGGACTCAATCCCGGCGATCTTCGGCCTGACCCAGGACGTCTTTATCGTGTTCACGGCGAACGCGTTCGCGCTCCTTGGCCTCCGCCAGCTGTATTTCCTTATCGACGGCCTCCTGAACCGCTTGATCTTCCTTTCCTACGGCCTGGCGCTGATCCTGGGATTCATCGGCGTCAAACTCATGCTGCACGCCCTGCACGAAAACAATCTGCCCTTTATCAATGACGGGGAACCCGTCCCCGTCATCGAAATCGGCACAGGCGCGTCCCTGACCGTCATCGTCTCAGTCCTCACCATCACGGTTCTCGCGTCCTTGCTCAATCCCCGCGGAAAAGCCCAAACGGTCATTTCCGCCGCCCGACGCCATGCCGAGAACTTCCTGGAACTTGATGACACCGCGCACATCGGGGAAAGGAACCGTATCTTCGCGCAGTTGCGCGAGGATGAACAGCGCCTCCGCAGCCTTGGACCCAGACACCGCCAACCGGCAAGAGACGAGCAGGAACTGATGGATCTGATCGCAAGGGCACAAAAAAAATATAAGGAACAAAACCTGCGAGGCGACCCCGTCAACGACGGCGGCCTAAACGGTCAGAAGGATGACAATCGTTGAMDVPSMAWVLTNAGIIALLVFDFVFHVRRAHVPTLAEAAIWSSFYVGIAILFGLGILSFGGPPAGGEYFAGFITEKALSVDNLFVFLVIMSSFKVPREDQQKVLLFGIVFALIARTVFIFLGAALINTFAWVFYLFGLILLITAGSMLKPEDREERSADNFMIRIARRLFHTTDYYDGDKIFTLHDGKWALTPMLLVMVAIAGTDILFAVDSIPAIFGLTQDVFIVFTANAFALLGLRQLYFLIDGLLNRLIFLSYGLALILGFIGVKLMLHALHENNLPFINDGEPVPVIEIGTGASLTVIVSVLTITVLASLLNPRGKAQTVISAARRHAENFLELDDTAHIGERNRIFAQLREDEQRLRSLGPRHRQPARDEQELMDLIARAQKKYKEQNLRGDPVNDGGLNGQKDDNRPGPT0004905_43DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
D1-29_011301239COG2814Chloramphenicol efflux pumpATGTCCTCCGCGATTTCCGCGCCGGCAACCCAGCGATTCCCGCTGGCCGCCATGATGGTTTTGGCCACCATCGCCTTCACCGCCATCACCACTGAACTCCTCCCCTCCGGCCTGCTCCCCCAGATCAGCACCGGCCTGAACGTGTCCGAGCCGGTGGCAGGCTACCTCGCCGCCGCCTACGCCGCCGTCATCGTCGTCACGGTGGTTCCTGCCGCGCGCCTGCTGGGCAAAGTGCCGCGGCGGCCGCTGCTCGTGGCGCTCGTCCTGACGTTCGCGCTCAGCAACGCCCTGGTGGGACTCGCCCCCAACTTCACCGCGGCGATGATCGCCAGGCTGGTGGGCGGCCTGGCCCACGGACTGCTTTGGACCACCATGGCCCCGTACATCGCCCGCGTGGTCCCGGCCGACAAAGTAGGCAAAGCACTGGCGCTGGTCTTCAGCGGCAACAGCCTGGGCCTGGCCATCGGCGCCCCCATCGGCACCGCCCTGGGCGGCTTCCTCGGGTGGCGAGCGTCGTTCCTGTTCCTGGCCGGCTTCGGCCTGCTGCTCGCCGCCCTGGCCTTCTGGCTGCTGCCGTCCGCCCGGCGCGCCGCGGGCGAGGCCCGCCCCTCACTCCGCAAGGCAATCGCCCAGCCCGGCGTGAAGTCCGTGGCCATCGCCTGGCCGCTGATGGTCCTGGCCCACTTCGCGCTGTTCACGTACATCGCCCCGTACACCCGCGGCGCCGGCCTCCCGGACTACGCCGTCAGCCTCTCCCTGACGGTCCTGGGCGTCTCGGGCCTGCTAGGCATCTGGATCGCGGGCCTCACCGTGGATTCGCATCCCCGGCGTTCGCTCCTGATTACGACGGCGGCAATCGCCGTCTCGATGCTCCTGTTGCCGTTCGTGGGCGGCAGCCTCGCCCTTGCCCTGGTGCTGGTCACCGTCTGGGGCGCCGGGCTGGGAGCGATCGGCATCTACAACCAGTCAGCCATCCTCCGGGCCGGCCGCGAAAACAAGGACGCCGCCAACGGCCTCACGGTCCTGACCATCCAGCTGGGCATCACCATCGGCGCGCTCTACGGTTCCGCCGCCCTGGTGGTGGCCGGACCGCTGCTGGTTCCTGCCGCAGCCGCGCTCCCGGTCATCGCGGCGCTGCTGGTCACCATCGCCGGCAAGCAGGCTGCGTACCCGCCGGGCCCGCGGGAATCAGTGTGGAAGAGCCCGCGGCCCATCAAGGAAACTGAAGGGATCCGCTAGMSSAISAPATQRFPLAAMMVLATIAFTAITTELLPSGLLPQISTGLNVSEPVAGYLAAAYAAVIVVTVVPAARLLGKVPRRPLLVALVLTFALSNALVGLAPNFTAAMIARLVGGLAHGLLWTTMAPYIARVVPADKVGKALALVFSGNSLGLAIGAPIGTALGGFLGWRASFLFLAGFGLLLAALAFWLLPSARRAAGEARPSLRKAIAQPGVKSVAIAWPLMVLAHFALFTYIAPYTRGAGLPDYAVSLSLTVLGVSGLLGIWIAGLTVDSHPRRSLLITTAAIAVSMLLLPFVGGSLALALVLVTVWGAGLGAIGIYNQSAILRAGRENKDAANGLTVLTIQLGITIGALYGSAALVVAGPLLVPAAAALPVIAALLVTIAGKQAAYPPGPRESVWKSPRPIKETEGIRNANANANANA
D1-29_01131675hypothetical proteinATGACAATCTCTAGTGCTTTTGAAGAAATTCCTGACGACGAAGCGCGCATGTACCTGGAACGTTACTACGGGCTCGGGGAGTGGGAAGATAAGGAGTTCACCGGCGCCCATTTCGATACCTTCGGCAGCAATGAGCCCAACGCTATGACCGCAGATGATCTGCTCGCCGTAGCGTGTCTGTCTAAACATGTACCAGCACGGGCTGCATTAGGGATACTTGGCGATCACTCAATCAAGATCGCAACTCTCCTTGCCTATATTCCGCCCAACCTGTCCATTGAAGACATTCCTTTCGACGAACATGACCACTACTTTGGTGACGGAACTCCGCTGCTGCGCCTCTGGCGGCTCCTTCGGAGGGATGAGCGCACTCGCTGGGGCATTGGAGCCACCACGGCCAGCAAGCTCATGGCCCGCAAGCGTCCCGGGCTGATCCCCATTTACGATTCTGTTGTTGCCGGAGTAACAGGTTTCAACAATTCCGACGGGACCTGGAGGGCATGGCATCACGCAATTGCGACCGACGGTGACCTCATCAGGCGGCTGGAGTCCTTGCGTTCGACAACCGGGCTGCACGGGATCTCACTCCTTCGAATCCTGGACGTGGTGCTATGGATGCACGGTAGTCAAGGGACGCTGGGGCCTGAGACCGTCGACCAGGTGGAGGAAGGCTGAMTISSAFEEIPDDEARMYLERYYGLGEWEDKEFTGAHFDTFGSNEPNAMTADDLLAVACLSKHVPARAALGILGDHSIKIATLLAYIPPNLSIEDIPFDEHDHYFGDGTPLLRLWRLLRRDERTRWGIGATTASKLMARKRPGLIPIYDSVVAGVTGFNNSDGTWRAWHHAIATDGDLIRRLESLRSTTGLHGISLLRILDVVLWMHGSQGTLGPETVDQVEEGNANANANANA
D1-29_01132324hypothetical proteinATGGCCTATCACGATCAGGACTGGGACCCTTGGGACGAGTTCCACAGGCTGAAGCCCGCCCCGCCGGACCTTATCGGTGGATACCCCGGCGGAGAGCCTTTGGGCTTCGGCTTCCGCACCGGTGTGCGCAGCGCAAGGGTGGCCTTCGGGTTCGCCGTCTATGCGCTGGTCCTCGGAACCGCCCTGGTCCTTACCGGCGCGGTGGTCTTCATCAGCCAGGGCCAGTGGCTGCTGCTGGGACTGATGGTGCTGATCGAGGCCGTCTTCGTCATCGGCTTCATCCGGCTGGTGAAGCAGGCCCGCAACCGGCGCTCCGCTGGATAGMAYHDQDWDPWDEFHRLKPAPPDLIGGYPGGEPLGFGFRTGVRSARVAFGFAVYALVLGTALVLTGAVVFISQGQWLLLGLMVLIEAVFVIGFIRLVKQARNRRSAGNANANANANA
D1-29_01133750hypothetical proteinTTGGGCAGTGCCGTGCACCTCTTGTTCAAGCCAAATACCAGGGCCTACCTTTGTTGCATGAGTCGGCGGATCCACGGAGGCACCAGACTGGCGGGGGCTGTCATGGCTGCAGGGTCCGTGTCCTTTCTGACGGGGGCCGTTATGCCTGTCTCCCGCATCTACGTGGAACAGGACCCGCAGCGCAAATTGGAGATTCTGCTGGCGGACCCCGTGCAATGGAAGGCGGAGCAGGTGTTCTTCGCCGCAGGAACAATTGTGCTGCCTGTCGGTGTCGCCATGCTTGCCCGGCAATGGGGCGAGGGCAGAGGGATTCACCAGCGGGAGTTCCTGCACGGGCGGCGGCTTGCCGTGGCCGCCGCAGCTCTCCTGGCCACTGGAGCCGGCGTCTTTCTGACCGACCTGGCAGCCCGATTCAACGATCCAGAGGGCTTCGCCCTGGGGCGCCAGCCTGTGTGGCCATTCCACGGTTATATGTGGTTGAGCCTGGCCGGCATGTCCGCGCTTGGCGGCGCTCTGCTCAAGCAGACACGCACGGAGTCCGGTTCGGGCTTCCCGCGTTGGCCGGGCGGGCTGAATCTTGGTGGTGCGGCAACGTTTGCCGGGGTGTTGGTTGCCACCGGCGATATTCCACCCCTGGTGATGTATGGAGTTGAACTGGCCACCGGGGTTGCGCTGATCCGAAAGGGTCGCCATGAGAGCATGGATCCCTCCAACCCGGACTTCAGGGTAGAAATGGCCGCCCCTGAATAGMGSAVHLLFKPNTRAYLCCMSRRIHGGTRLAGAVMAAGSVSFLTGAVMPVSRIYVEQDPQRKLEILLADPVQWKAEQVFFAAGTIVLPVGVAMLARQWGEGRGIHQREFLHGRRLAVAAAALLATGAGVFLTDLAARFNDPEGFALGRQPVWPFHGYMWLSLAGMSALGGALLKQTRTESGSGFPRWPGGLNLGGAATFAGVLVATGDIPPLVMYGVELATGVALIRKGRHESMDPSNPDFRVEMAAPENANANANANA
D1-29_01134534hypothetical proteinATGGAACCTGAAATCCGGGATCTCCGGCTCCCCATAGGCACCACCGGCTCCGTGGCCAGGCGGCTAAAGGAGGTCTACGACAACCTTCCGCTGCCGGCTCCCACGGTGGCCGCGATCGTCCTGGACTTCCTCCTTCACCGGCTCCGCGCCCTGCCGCTTCCCGGCCCCCGTTCCCTCCACCGGACGGCGGGGGCCGGGCTGCTGCTCGCCGGAGTCGGCCTGAATCTTTGGGCCCTGGCTGAACGCCGACGCCGGTCCGCGAGCCCTTTCGCACTGGAGGCGCCGGAGGAACTGGTCACCAGCGGCCCTTACGCCATCAGCCGGCATCCCATGTACGTGGGCTGGTGGCTCATCCAACTGGGCGCGGGAACCATGGTCGGGTCGTCCTGGGTCCTCATGACGCTGCCTGCCGAGCTGCTGGTGGAACACCGCTATATCCTCGATGAAGAGGCCACGCTGGCCGAGCTCTTCGGGCAGTCCTATGCTCAGTACGCGGAAAGGGTTCCGCGCTACCTCGGTAACCCACGGGTGTAGMEPEIRDLRLPIGTTGSVARRLKEVYDNLPLPAPTVAAIVLDFLLHRLRALPLPGPRSLHRTAGAGLLLAGVGLNLWALAERRRRSASPFALEAPEELVTSGPYAISRHPMYVGWWLIQLGAGTMVGSSWVLMTLPAELLVEHRYILDEEATLAELFGQSYAQYAERVPRYLGNPRVNANANANANA
D1-29_011351074hypothetical proteinATGCGCCCAGTCCTGACCGCAGCGGCAGCCGCCGCCCTGATCGCCGCCATGGCGAGCCCCGCCGTCGCGAGCCCGGAGAACGGGGCCGGCGCGCCGCCGTCGAACGCTGCCGGCACCGCCCCAACGGCAACAACAGCGGCACTCAAGGCGAACGAGCGCAACGGCTCCTTCGACCTGCAGTCCCACCGCGGCGGGCGCGGCGAATGGACCGAGGAGTCCCTGGCCGCGTTCGCGAACTCCCTGGCGCTGGGCGTGACCACCCTGGAGCTGGACACCCACCTGACCGAGGACGGCAAGGTGATCGTGTGGCACGATGACACCATCCAGGCCACCAAGTGCGCGGACACAGTACCTGCCACCGCCGGCGACCCCGAATTCCCCTACGTCGGCGACCGGGTGGCCGAGCTCTCCCTCGCTCAGATCAAGACGCTCAACTGCGGCTTTGTGCAGCTGCCCGGCTACCCGGAGCAGGATGTCATCGAAGGCAACAGGATCGCCGAGCTCAAGGACGTTTACCGGCTGGTCCGCGACACCAAGGCCGACAAGGTCCGTTTCAACGTGGAGACCAAGGTGGAAAGCAGCCAGATCGGCGGGGGCGGCATGGAGTCCCTCACCGGCGCTGTGGTGGGCGAGATCCAGGCCTCCGGCATGGCGGACCGGACCACACTGCAGTCGTTCGACTGGTCCTCGCTGAACCTCACCAAGCAACTCGCGCCGGAGCTGCCGCTGGTGGCGCTCTCCAGCGGCGACGCCTGGATGGGCGTGGGCCAGCCCGGCGCCAGCCCCAACCTGGGCGGGATCGACATTGACGACTACGACGGTTCCCTTCCCAGGGCGGCAGCCGCGCAGGGGTACGACGTCGTCTCCCCCACGTTCCGTTCAGTCACCCCCGCGATGATCGCCGAAGCCCACACGCTGGGCCTGCCCGTCATCCCGTGGACCGTGAACATCCCCGCCGACATGGAGCGCCTGATGGACCTTGGCGTGGACGGCATCATCACCGACTGCCCCACCCGGCTCCGCACCCTCATGGAGGAACGAGGCCTGAAGCTGCCCAAGCCGTACGGCGTGTAGMRPVLTAAAAAALIAAMASPAVASPENGAGAPPSNAAGTAPTATTAALKANERNGSFDLQSHRGGRGEWTEESLAAFANSLALGVTTLELDTHLTEDGKVIVWHDDTIQATKCADTVPATAGDPEFPYVGDRVAELSLAQIKTLNCGFVQLPGYPEQDVIEGNRIAELKDVYRLVRDTKADKVRFNVETKVESSQIGGGGMESLTGAVVGEIQASGMADRTTLQSFDWSSLNLTKQLAPELPLVALSSGDAWMGVGQPGASPNLGGIDIDDYDGSLPRAAAAQGYDVVSPTFRSVTPAMIAEAHTLGLPVIPWTVNIPADMERLMDLGVDGIITDCPTRLRTLMEERGLKLPKPYGVPGPT0018470_2139DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
D1-29_01136411hypothetical proteinATGCTGCCGCGGTGGCAGGCCGTGCTGGAGCAGGAAGACGCGGCAGTGCGGCCGAATGAGCGCACCTGGTCGCCGCTTGAGTACGCCTGCCACGTGCGGGACGTTTTCGGACTCTTTGACGAGCGGCTGGCCCTGATGCTGCTTGAAGATGATGCCCGCTTCGCTGACTGGGACCAGGATCAGGCAGCCATCGACGGGGACTACGCGCATGAGGACCCGGCACAGGTCGTGCGGGAACTGGCCAGCCGAGGGGAGCGGATCGCCGGCGCTTTCGCCGCCGTGGACAAGTCCCAATGGCACCGCACCGGCACTCGGAGTAACGGGGCAGCATTCACCATGGTCACCTTCGCCCAGTACTTCCTGCACGACGGCGTTCACCACCTGCACGACGTCGAAAGTAAGAGGCCTTGAMLPRWQAVLEQEDAAVRPNERTWSPLEYACHVRDVFGLFDERLALMLLEDDARFADWDQDQAAIDGDYAHEDPAQVVRELASRGERIAGAFAAVDKSQWHRTGTRSNGAAFTMVTFAQYFLHDGVHHLHDVESKRPNANANANANA
D1-29_011371299hypothetical proteinATGGACAGCGACACACTGGTCAATTTCCTGTTGGTCCTCTTTTTTGTGCTGTTGGGCGGGGTCTTCGCCGGCACGGAAATGGCCCTGGTTTCCCTCCGCGAGAGCCAGGTGCGCCGGATGGAAAAGGCCGGCAAACGCGGCGCCCGGATCGCAGCCTTGGCAGGGAACCCCAACCGGTTCCTCTCCACCGTCCAGATCGGCGTCACGCTGTCCGGCTTCTTCTCCGCCGCCTACGGCGCCTCCACCATCGCCCCCGACGTCGAACCCCTCCTGGAAGGTCTGGGCCTTGGCTCCGCGGCGGAACCCGTCGCCTTTATCGGCATGACGCTGCTGGTGGCCTACCTTTCCCTGGTGCTGGGCGAGCTGGTGCCCAAGCGGCTGACGATGCAGAGCGCCGTCGGCTTCACGAAGGTCCTGGGCCCGCCCCTGAGCGTCCTCTCCGAACTCATGCGGCCCGCTGTCTGGCTGTTGTCCGTGTCCACCGACGCCGTCGTCAGGCTGTTCGGCGGCGACCCCAATGCCCGGCAGGAGGCCGTCAGCTCTGAGGAACTCTGGGACATGGTGTCCCAAAGCGAGGACCTGGAAGAACACAGCCGCAGCATCCTCACCGACGTGTTTGGGGCCGGGGACCGATCATTGCAGGAGGTCATGCGCCCCCGCACCGAGGTGACCTTCATCGATGGCTCCCTGACCATTGAGGCTGCACGCAGCAAGCTCAGGGACGGACCGTTTTCGCGTTATCCGGTGATCGACAGGACCCCGGACGACGTCCTTGGTTTTATCCACATCCGCGACCTGATGCCCCGCGACGACGAGTACGACCAGGGGCTGGTGAAGGACATTGCCCGGGAGATCCTTCCGCTGCCGGGAACCAACAGGGTGCTGCCGTCACTGTCCCGGATGCGCAGGCTGGGCCAGCACATCGCGCTGGTGGTGGACGAATACGGCGGCACGGACGGCATCGTCACCCTCGAAGACCTGGTGGAGGAACTCGTGGGCGAGATCTACGACGAGTACGACAACGGGGCGGACCCCGAGGACCGCATCATCCGGGCGAACGGATCAGTTGACGTCGACGGTGGCCTGATCCTGCAGGAGTTCGAATCAGCGTCCGGCATCGAATTGCCCGAGGGCCACTACGAGACAGTGGCCGGGTTCGTCATCGACCGGTTGGGCCGCCTGCCCCGGACAGGCGACCAGGTGGAGGTCTCAGGCCACGTTCTCACCGTGCTCGCGATGGACCGGCTGCGCATCGCCCGCATCAGGGTGACTCCCGCGAACGGTCAGCCGCAGGACTGAMDSDTLVNFLLVLFFVLLGGVFAGTEMALVSLRESQVRRMEKAGKRGARIAALAGNPNRFLSTVQIGVTLSGFFSAAYGASTIAPDVEPLLEGLGLGSAAEPVAFIGMTLLVAYLSLVLGELVPKRLTMQSAVGFTKVLGPPLSVLSELMRPAVWLLSVSTDAVVRLFGGDPNARQEAVSSEELWDMVSQSEDLEEHSRSILTDVFGAGDRSLQEVMRPRTEVTFIDGSLTIEAARSKLRDGPFSRYPVIDRTPDDVLGFIHIRDLMPRDDEYDQGLVKDIAREILPLPGTNRVLPSLSRMRRLGQHIALVVDEYGGTDGIVTLEDLVEELVGEIYDEYDNGADPEDRIIRANGSVDVDGGLILQEFESASGIELPEGHYETVAGFVIDRLGRLPRTGDQVEVSGHVLTVLAMDRLRIARIRVTPANGQPQDNANANANANA
D1-29_011381170dap_1D-aminopeptidaseATGTTGGTGAGCCGGAGTCATAAGGCCCTTGGACGTAAAACCGCGTTCGGCCTCGCCGTCCTTTTGCTTGCACTCGCTGGTTGCTCCGCCGGTCCTGATCCGGCTCCGGCGCCGTCGCCGCCGTCGTCAATGGAAGAATTGAAAGCCGAGCTGGAACAGTTCAGCACCGAGCGGTTGGGGGCGGGAGCTTCAGCAGTCCTCATACAGGCGGGGCTGGGAGGGGATGTCTGGTCCACTGCCGAAGGTGTCCGGGACCTTGAGACGAAGGTTCCTGCCCAGCCCGGCGATTCGTTCCACGTGGCCAGCCTGACCAAGTCCATGGTGGCCACCTCCGTCCTGAAGCTGGTTGAACAGGGAAAAATCCAGCTGGATGGCGTGGTCAGCGACTACTTGCCGGAGTTCGATTCGGTCCTGCACCCGCCCAAACCAATTACCGTCAGGATGCTGCTGGACCATACGTCGGGGATGCCCACCTTCGAGGAACCGCTCATCAGATCGGGTCCCCTGAAACCGGTCCTGACCACCCCACTTACCGCCGAGCAGAGGCTTGACCTGACAGGCACCGTGCCCTGGGACGCCGGCAATGTTGGCGTCTACGAGTACTCAAGCTCCAATTACGTGGCGCTGGGACTTCTCGTCGAGCGCGTGACGGGCCGCAGCCTGGGGGATGTGCTGCAGACTGACATTGTGGAGCCCCTCGAGTTGGCCGGAACGCTGCTCGCCGGAACCGCAAAGGCCCCCGCCACCATGGTGCACGGCTACGTCATGATCGACGGCGAACGCGTGGACGCTGCCGACGCCGGTGTCCAGAGCGAATCCGCCTCGGGCGGCATGATCTCCACAGTCCAGGACGTGAACGTGTTCTACTCTGCCCTGCTGGCGGGCAGGCTGGTGAGTCCCGCACTGGTGGAGGAGATGCAAAGTGAAAACTCTTCGGAGTACGGGCTTGGCCTGGCCAAATGGTGGGACAGCTGTACGAGCGGTTTCTACTATGGCCATCTGGGCGGAGCGCCGGGCTATGCTTCCATCGCGATGACCAGCGCCGACGGCTCCAGACAGCTGGCCGTGTTCATGGCACACAGTGCAGAACCGCTGAGCGTCGAGGCTCCGCCAGGCGATTACGGGCTGGAGGAGTTTGCCCAGAAGGCTCTCGAGAGCACCTGTGATTAGMLVSRSHKALGRKTAFGLAVLLLALAGCSAGPDPAPAPSPPSSMEELKAELEQFSTERLGAGASAVLIQAGLGGDVWSTAEGVRDLETKVPAQPGDSFHVASLTKSMVATSVLKLVEQGKIQLDGVVSDYLPEFDSVLHPPKPITVRMLLDHTSGMPTFEEPLIRSGPLKPVLTTPLTAEQRLDLTGTVPWDAGNVGVYEYSSSNYVALGLLVERVTGRSLGDVLQTDIVEPLELAGTLLAGTAKAPATMVHGYVMIDGERVDAADAGVQSESASGGMISTVQDVNVFYSALLAGRLVSPALVEEMQSENSSEYGLGLAKWWDSCTSGFYYGHLGGAPGYASIAMTSADGSRQLAVFMAHSAEPLSVEAPPGDYGLEEFAQKALESTCDNANANANANA
D1-29_011391065panSCOG0385Pantothenate precursors transporter PanSATGCGTCATCAATGCCCGCTGATTCCGGGACCCAACCCTGACTGTGATAATCCGGTAGGCATGTCTTCTTTATCCGAAACTTCCACGACGGCGTCCGGCGCCGAAGAACGCAGCGCCCGCATCGCCGTCACTCTTTTTCCGGTGCTTATCCTGGCCGGAGGAGCCGTGGCGCTTGCCGCTCCAGCAGCCTTCACCGGACTGGCCCCCTGGATCACCCCTCTCCTGGGAATCATCATGTTCGGCATGGGGCTGACACTCACGCCCCCTGACTTCGCCGTCATAGCCAAACGCCCCGTCCCGGTGGTGATCGGAGTGGTGGCGCAGTACGCCGTCATGCCGCTCTTGGGATGGCTGATCGCAGCTGCGCTGGGGCTGCCGCCTGCGCTGGCCGCTGGCGTCATCCTGGTGGGCTGCTGCCCTGGCGGAACGGCCTCCAACGTGGTGTCCTACCTGGCCAGGGGTGACGTTGCCTTATCCGTCGCCATGACAACTGTTTCTACGCTGATTGCTCCCCTGCTGACACCGGTGCTGGCCTTATGGCTGGCCGGTCAGTACATGCCGGTGGACGCCGGTTCGATGGCATGGTCCATCGTCCAGATTGTGCTGCTCCCTGTACTGCTGGGACTTGTCATCCGGCTCTTCCTGCCGCGCCTCGTCACCAGGGCACTGCCTGCGCTCCCGTGGATCTCGGTGCTCGCCATCACCGTTGTGGTGGTAGCGGTTGTCGCCGGAAGCGCCAAGGCAATCTTCGCCGCGGGCCTGCTGGTTCTCGCGGCCGTTGTCCTGCACAACGGCCTGGGATACGCCCTGGGCTACACTGCCGCCCGTCTTTTCCGGCTACCGATTCCTTCCCGGCGCACCACTGCCATTGAGGTCGGCATGCAGAATTCCGGCTTGGCGGCGGGACTGGCGCGGCAATATCTGACTCCCGAAGCGGCCCTGCCCGGAGCAATTTTCTCGGTGTGGCACAACGTTTCCGGTGCGGTTCTGGCGGCCTACTGGCGCCGCCGCACCACTCCTGCCCAGCGCGGCGCCGAGCCGGTTCCGGCGGCTGTCACGGAGTAGMRHQCPLIPGPNPDCDNPVGMSSLSETSTTASGAEERSARIAVTLFPVLILAGGAVALAAPAAFTGLAPWITPLLGIIMFGMGLTLTPPDFAVIAKRPVPVVIGVVAQYAVMPLLGWLIAAALGLPPALAAGVILVGCCPGGTASNVVSYLARGDVALSVAMTTVSTLIAPLLTPVLALWLAGQYMPVDAGSMAWSIVQIVLLPVLLGLVIRLFLPRLVTRALPALPWISVLAITVVVVAVVAGSAKAIFAAGLLVLAAVVLHNGLGYALGYTAARLFRLPIPSRRTTAIEVGMQNSGLAAGLARQYLTPEAALPGAIFSVWHNVSGAVLAAYWRRRTTPAQRGAEPVPAAVTEPGPT0013890_745DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453NANA
D1-29_011401542acpSodium/proton-dependent alanine carrier proteinATGAGCGATGTCCTATCAGCCATCAACGGCGTGATCTGGAGCGACTGGCTTGTCTATCTCTGCCTCGCCACCGGCGTCTACTTCTCCATCCGCACACGTTTCCTGCAGGTACGGCACGTCAAAGGAATGGTCCAGCAGCTGCTTCGGGGCGAGAAGTCCGCCTCCGGCGTCTCCTCGTTCCAGGCCCTGGCCATGTCCCTGTCCGGCCGCGTCGGTACCGGCAACATCGCCGGCGTCGCCACCGCCGTCGCCTTCGGCGGACCGGGCGCCCTGTTCTGGATGTGGGTAGTCGCCTTCCTTGGCGCTTCGACGTCGTTCATCGAGTCCACCCTCGGCCAGATCTATAAAGCCCGCGACCCGCTGACCGGCGAGTACCGCGGCGGCCCGGCCTACTACTTCTCCCGCGCGTTCGCCCACACCAAGGGCGCCGGGTTCTTCAAGGTCTACGGCTACGTCTTCGCCGCCGTGACCGTTCTGGCCTGTGGCGTTCTGATGCCGGGTGTCCAGGCCAACTCGATGGCCACCGCCATCGGCGGCGCCTGGACCCTCGAGCCGTGGATGGTTGCCGTCGGCTCCGTCATCCTCCTGGCGTTCGTCATCATCGGCGGCGTGAAGCGCATCGCCAGCGTGGCGGCGTTCGTCGTGCCGTTTATGGCTGTCGGCTACATCATCCTTGCCCTGATCGTCGTCATCATCAATGCCGGTCAGCTGCCGGAAATCATCGCACTGGTGTTCAGCAGCGCCCTTGGCATGGATTCGGCCCTCGGCGCCGTCATCGGACTGGCCGTGATGTGGGGCGTCAAGCGCGGCGTCTACTCCAACGAGGCCGGCCAGGGAACGGGTCCGCACGCAGCGGCCGCCGCAGAGGTTTCGCACCCGGCGAAGCAGGGTCTGGTCCAGGCCTTCGCGGTTTACATCGACACCCTGTTTGTCTGCTCGGCCACCGGCTTCCTGATCCTCTCCACCGGCGCCTACCGCGTCTTCTCCGGAGGCAGCGAAGACGGCGAGGTCCTGGTCGAGGGCGGCCTGCTTTCGGCCACGGCCAGTGTGGGGCCCCAGTTCGTGCAGACCGGATTCGACTCCGTCTTCCCGGGTTTCGGCGCATCGTTCATCGCCATCACGCTGATCTTCTTCTGCCTGACCACGGTCATCGCCTACTACTACATGGCAGAAACTAACCTGCGCTTCCTCGTGGGCAACTCCTCGAACAAGATGATTCCCGGTATCCGGGCAAGCCTTGGCCGGGTGACCACCATGGCCCTGCAGGTGTTGATCCTCATCGCCGTCGCCTACGGCTGCGTGAACACCGCCGCCGATGCGTGGACGATGGGTGACATCGGCGTGGGCCTCATGGCCTGGCTGAACATCATTGGCATCCTGATCCTGCAGGAGCCCGCCTTCAAGGCGCTCAAGGACTTCGAGCGGCAGCAGAAGCTCGGCCTGGACCCGGTCTTCGACCCGAAGCCCCTCGGCATCATCGGAGCCACCTTCTGGGAGTCCTACAAGACGGCCGACCGCGAGAAGGAATCCGCGCGGATCTAGMSDVLSAINGVIWSDWLVYLCLATGVYFSIRTRFLQVRHVKGMVQQLLRGEKSASGVSSFQALAMSLSGRVGTGNIAGVATAVAFGGPGALFWMWVVAFLGASTSFIESTLGQIYKARDPLTGEYRGGPAYYFSRAFAHTKGAGFFKVYGYVFAAVTVLACGVLMPGVQANSMATAIGGAWTLEPWMVAVGSVILLAFVIIGGVKRIASVAAFVVPFMAVGYIILALIVVIINAGQLPEIIALVFSSALGMDSALGAVIGLAVMWGVKRGVYSNEAGQGTGPHAAAAAEVSHPAKQGLVQAFAVYIDTLFVCSATGFLILSTGAYRVFSGGSEDGEVLVEGGLLSATASVGPQFVQTGFDSVFPGFGASFIAITLIFFCLTTVIAYYYMAETNLRFLVGNSSNKMIPGIRASLGRVTTMALQVLILIAVAYGCVNTAADAWTMGDIGVGLMAWLNIIGILILQEPAFKALKDFERQQKLGLDPVFDPKPLGIIGATFWESYKTADREKESARIPGPT0014405_590DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLYCINE_TRANSPORT,PGPT0014405-yflA|TC_AGCS-K03310NANA
D1-29_011411377mcrA_2Mitomycin radical oxidaseATGGACAACAACGGATTTCAGGCCCTGCAGGAACAAGTACGAGGCCAGGTCATCACTTCCGACCATCCCCACTATGAAGCCTCGCGAACCGTCTACAACGGCATGATTGACAAACATCCCGCCGCGATACTTCGTGTTTCCCAAGTCGCGGACGTCATCGCAGGAGTGAACTTTGCCCGTGACCAGGGTCTGGATCTCGCGCTTCGCGGCGGGGGCCACAGTGCCCCCGGATTCGGGACCTGCGACGGAGGCCTGGTGCTGGACTTCGCCGGCCGAACGGGCGTCCGGGTAGACCCTGCTACTGCAACGGCCCGGGCCGAGGCAGGCACCACCTGGGCCGACTTCAACCACGCAACCAACGCGTTTGGGCTGGCAACAACTGGCGGCATTATCGGATCCACAGGTGTTGCTGGACTGACGCTGGGCGGGGGCATCGGCTACCTCGCCCGTAAGCACGGCCTGTCCTGCGACAACCTCATCTCCGCGGATGTGGTGACCGCAGACGGCAAGTTCCGCACAGCCAGCGCAACTGAGAATGACGATCTCTTCTGGGCATTACGTGGCGGCACGGGAAACTTCGGCGTGGTCACTTCCCTGGAATTCAACCTGCATCCCGTCGGCGTCGTGTACGGCGGTGTAGTGATCTATCTGGTGGAGCACGCTGAGGCTGTTGGGCAGCTGTTCCGGGACTATATTGCCACGGCACCCGAAGACATGGGAATCTTCCTCGGGTTCCACCAAGGCCCCCCGGTCCCCTTCCTGCCGGAGGAGCACCACGGCAAGCCTGTGGTGGTTGTGGTGGGCGCCTGGACCGGCCCACACGATGAAGGCGAGCGGCAATGGCAGCAGTTCATGGATGTCGCCCCAGTTGCCGGGTCGTTTGTGGGTCCGCTCCCGTACCCGGTGCTCAACACCTTGTTCGACCCGCTACTCCCGAAAGGCCTGCAAGCATATTGGAAGGCGGAGTTCCTTCCGGAGTTGAGTGACGATGTGATCGGGGTTGCCAGGAAGTTCGGAGCCGGCGTGCCGAGTCCCCAGACCGCGAATCACTACTACCCCATCAATGGTGCGGCCCAACGGGTCGGACGGGATGAGACTGCCTTTCCTTACCGGGATGCCAACTTCTCAGTGGCCATCGCCGGAATGTGGGAGTCCCCGCAGGACAACGACGCCAACACCAGGTGGGTCAGGGAGTACCACCAAGCCCTGCATCCTTATGGATCCGGTGCCGGCTATGTCAATTTCCTTGACGCCGACGACCAGTCCAGCATCGAGGACAACTACGGCGGCAACTACGCCCGGTTGGCCAAGATCAAGGCGAAGTACGATCCCGGCAACCTGTTCCATATCAACCAGAACATCAAACCGGTGGCGTGAMDNNGFQALQEQVRGQVITSDHPHYEASRTVYNGMIDKHPAAILRVSQVADVIAGVNFARDQGLDLALRGGGHSAPGFGTCDGGLVLDFAGRTGVRVDPATATARAEAGTTWADFNHATNAFGLATTGGIIGSTGVAGLTLGGGIGYLARKHGLSCDNLISADVVTADGKFRTASATENDDLFWALRGGTGNFGVVTSLEFNLHPVGVVYGGVVIYLVEHAEAVGQLFRDYIATAPEDMGIFLGFHQGPPVPFLPEEHHGKPVVVVVGAWTGPHDEGERQWQQFMDVAPVAGSFVGPLPYPVLNTLFDPLLPKGLQAYWKAEFLPELSDDVIGVARKFGAGVPSPQTANHYYPINGAAQRVGRDETAFPYRDANFSVAIAGMWESPQDNDANTRWVREYHQALHPYGSGAGYVNFLDADDQSSIEDNYGGNYARLAKIKAKYDPGNLFHINQNIKPVANANANANANA
D1-29_011421026yedICOG2354Inner membrane protein YedIGTGAGCGGCGGTCTGGTCGCCCTGCTTGACGACGTCGCAGCCCTGGCCCGCATAGCGGCCGCCTCGGTAGACGACATCGCTGCCGGAGCCAGCAGAGCAGGGGTCAAGGCCGCCGGCGTGGTGATCGACGACGCAGCCGTCACCCCGCAGTACGTGTCCGGGGCAGACCCGTCCCGCGAACTGCCGATGATCAAAAAGATCTTCTGGGGATCGCTCCGGAACAAGCTGTTGATCATCCTGCCGGCCCTGCTGCTCGTCAGCGCGTTCGCCCCATGGGCCATCCCGTTCATCCTCATGCTGGGCGGTACCTACCTCTGCTACGAGGGCGCCGAAAAGGTCTGGCACAAGCTCCGCGGCCACCACACCGCGGACGAAAAAGCGCCGGCGGTTGAACGCGGTCCGGAGGCCGAGGCGAAGGTCATCAAGGGCGCCATCACCACCGACTTCATCCTGTCCTGCGAGATCATGGTTATCTCGATGAACGAGGTGGCCGCAGATTCCTTGTTGTCCCGGGCGATTATCCTGGTGGTCGTGGCCTTGGTGATCACGGTGGCCGTTTACGGTGCCGTGGGACTGATCGTGAAGATGGACGACATCGGCCTGCATATGGCCGCCAGGAAGTCCGCGGGTTCCCAGCGCGTCGGCGAGTTGCTGGTCAAGGGGATGCCCGCCGTGCTGGCAGCGATCACCTTCATCGGGACCATCGCCATGCTTTGGGTTGGTGGCCACATCATGCTGCAGGGGGCCTACGACCTCGGCTGGCACGGTCCGTATGACATAGTCCATGTCCTCGAGCACCCCTTCGAGGGGATCGCAGTCGTTGGAGGCTTCCTGGCCTGGCTCGTGAACACCTTGTGCTCAGCCATCATCGGGCTCGCCTGGGGCATCGTGGTCATGGCTATCGTGCATCCGCTGCTCAAAGCACTGCCGTTTGGCAAGAAGAAGGGCGGGCACGAGGAGGGCGACATCCGCGCCGAACTTGCCGGCTACCGGCCGACGAAACACGACGGCGATCCCTCCTCTTAGMSGGLVALLDDVAALARIAAASVDDIAAGASRAGVKAAGVVIDDAAVTPQYVSGADPSRELPMIKKIFWGSLRNKLLIILPALLLVSAFAPWAIPFILMLGGTYLCYEGAEKVWHKLRGHHTADEKAPAVERGPEAEAKVIKGAITTDFILSCEIMVISMNEVAADSLLSRAIILVVVALVITVAVYGAVGLIVKMDDIGLHMAARKSAGSQRVGELLVKGMPAVLAAITFIGTIAMLWVGGHIMLQGAYDLGWHGPYDIVHVLEHPFEGIAVVGGFLAWLVNTLCSAIIGLAWGIVVMAIVHPLLKALPFGKKKGGHEEGDIRAELAGYRPTKHDGDPSSNANANANANA
D1-29_01143714hypothetical proteinATGGAGGACTACGCACGTTTCCTGCCGCCTGATCGAAGGAAGCCACTTGTTCCCCCGGTCTCGGATTGGTGGCCCTGGACGAACCATCAGGTCCACCTCCTCCGGTTGCGGGACGCCAGCGCCCCGGTTCGGATGCTTGTCGTTCACGGCGCGGGCGCCCACGGAGCGGCGCTCTGGCCTGTTGCGTCCCTCCTCGCAGGCCGCGGGGTTGATGTGAGTGTGGTCGACTTGCCGCTCTACGGCCGAACGGTGACAGTATCCCCCGGAACAGTGACCTACCAGGACTGGGTCGCCCTGTTAGTCGACCTCATCTCGGCTGAAGATGATGGCCGTCCTGTCATCCTCTTCGGAGCCAGCATTGGTGGTTTGCTCGCCGTGGAGGCAGCGGCTCGTTCAGGTAACGTGGCGGCCGTGGTGGCTACCTGCCTACTCGACCCACGAGAGAGAGACGCTCGTTCGGCGATGACGCGGTTCGGCCCTGTCGCCCTGCTTTTCATGCCAATGCTCAGGCTGGTCTGGGGGCCATTGGCCAGAATTCAGTCAGAATCTCCTGGGTCGCGGAGCTCAGGCGCATGGGGCGCGACCGCGGTCTGGGGCGGCTCTGCGCGAAAGATGCGCGCGGAGGCGGCGCGTGGGTTCCGCTGGGGTTCCTCGCCAGCTACATGCAGTATCCACACTCCGAGGCGCGCACCGCACTCCTCCCAGTCCACCTAAMEDYARFLPPDRRKPLVPPVSDWWPWTNHQVHLLRLRDASAPVRMLVVHGAGAHGAALWPVASLLAGRGVDVSVVDLPLYGRTVTVSPGTVTYQDWVALLVDLISAEDDGRPVILFGASIGGLLAVEAAARSGNVAAVVATCLLDPRERDARSAMTRFGPVALLFMPMLRLVWGPLARIQSESPGSRSSGAWGATAVWGGSARKMRAEAARGFRWGSSPATCSIHTPRRAPHSSQSTNANANANANA
D1-29_01144897hypothetical proteinATGCGGATACTCGTCGTCGGAGCCGGAGCCACAGGCGGGGCGTTCGGCACACTCCTGCAGGAAGCCGGACGGGACGTCACGTATCTGGTGCGGCCGCGCAGGCAGGAGGTCCTTCGCCGCGACGGGCTGCGCTTCGTCTCCCCCACCGCCGACCGGACACACCAAGTGCAAACCATCACTGCCCCGGACGGGCCAGAGGCCTTCGACCTGATCCTCGTCACGGTCAAAGCCACCGCGTTCGACGGCGTCCTTGCCGAGATTGGCCCTTTCGTCGGGCCTGGAACCACCATCATTCCCATCCTCAACGGCATGGCCCATGTGGACCGGCTGGAACAGCTGTACCCGGGCCAGGCGCTGGGCGGCCTGGCCCGGATCGTTGCAACTCTCGACGGCGATGTGGTCCGCCAGCAGGTGCCCCTCACCTCCCTCATGGTGGGCGGGCTGAACGGCACCCCTGTCCCGCCGGCCGTTTCCGAAGCTCTGGACGTGCCCGGCGTCGACTTCTCGGTAGCCGACGACATATTGGGGGCACTGTGGGATAAATGGGCCTTCATCGCTGCCGCCGGAATCGTCAATTGCCTGTTTCGGGCCCCGGTGGGACGGATACTCGACGCCGGCGGGGAGTCCAGGATCCTGGAGGCCATCAGCGAAACCGAAGCGGTGGCAGCCGCGGCAGGACATCCCGTTTCCGATGCCGCTCATGCACAAGCACTCGGCATTCTCACCGAGCCGGGATCGGCCTTCACTTCCTCTCTATACCGGGACCTCAGCGCCGGGCTCCCCTCGGAAGCTGAGCACATCCTCGGTGACCTCGCCCGCCGTTCCCGCAGTCTGGAAGTCCCGACGCCGCTGCTGGACCTCACCCTCATCCAGATCAGGGCCGGCCTCCCCCTCTGAMRILVVGAGATGGAFGTLLQEAGRDVTYLVRPRRQEVLRRDGLRFVSPTADRTHQVQTITAPDGPEAFDLILVTVKATAFDGVLAEIGPFVGPGTTIIPILNGMAHVDRLEQLYPGQALGGLARIVATLDGDVVRQQVPLTSLMVGGLNGTPVPPAVSEALDVPGVDFSVADDILGALWDKWAFIAAAGIVNCLFRAPVGRILDAGGESRILEAISETEAVAAAAGHPVSDAAHAQALGILTEPGSAFTSSLYRDLSAGLPSEAEHILGDLARRSRSLEVPTPLLDLTLIQIRAGLPLPGPT0008745_4630DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008745-panE|apbA-K00077NANA
D1-29_01145741hypothetical proteinATGGATGCCAGAGCGAATTACGAACCGTCGGATGGCCAAACAGCCGGCACGGTTAGACCGGGTGGTGCGACCGGCAGGCCGGACCTCTGGACAGCAGTTGCGGGCCTGGTGTTCACCGCCCTGGTGGTGGCCAGCTTCTTCACACCCGACACGCCCAGTTCCGACAGCCCGGCGGAGGACATCGCGGCCCAGCTCACCGGGGACCGCACCGCCCACCAGATTTCCCTGCTGCTGGGATTGATCGCCAACATCGCATTCCTGATATTCCTGGCCGGCCTCTGGAGCAGGCTGCGCCGATGGGAGGGTCAGGCCGGGATGTTCGCCGCGCTGGTCCTCACCGCCGGCACTGCCTTGGTGACGCTCATGCTGGTTTCGGCTGGCCTGTACACGGCTCTCCTCCAGTATGCCTCCGCCGACCAGCCCGATCCGGCGGCGCTTTCTGCCCTCACCGTCCTCACCGAGTGGGTAGGTGGTGCCATTGTTCCAGCCGGTGTCGCGATGTTCCTCGGGGCGGCGATGGCCATCCTGACCACCCGCGCGCTACCTCTGTGGCTTGCCTGGCTGGCTATCGCCACGGCCGTGCTGCTGCTCACTACTGTCGCAGGCGTATTCGAGACCGCCGACGACGGAGGCGTGGTGGGCATCGCCGGTTTCGTCGGCTTCCTGCTTTTCATGGTCTGGGTGCTGGCCACGAGCGTCGTGTTGCTGATACGGCCTGGCCGGCAGCCAGCCAGGCCGTAGMDARANYEPSDGQTAGTVRPGGATGRPDLWTAVAGLVFTALVVASFFTPDTPSSDSPAEDIAAQLTGDRTAHQISLLLGLIANIAFLIFLAGLWSRLRRWEGQAGMFAALVLTAGTALVTLMLVSAGLYTALLQYASADQPDPAALSALTVLTEWVGGAIVPAGVAMFLGAAMAILTTRALPLWLAWLAIATAVLLLTTVAGVFETADDGGVVGIAGFVGFLLFMVWVLATSVVLLIRPGRQPARPNANANANANA
D1-29_01146594hypothetical proteinATGTATCTTCCCCGCACGATCCCTCTGCTGCCATGCGCCGACATCGAGGAGATTGAGCCGTTCTTCGCGGCCCTGGGATTCCGCACCACCTACCGCCAAGTCCGACCGTACTCGTGCATCGGCGTCAACGGTCACGGGTTCGATCTGCAGTACTACGGCTTGAACGGTCACACACCAGAGTCCTCGCACAGCTCCTGCATCGTCATCGTCGAAGACACCGGACCGATCTGGGAAGAGTTCGCATCAGGACTGCGCGAGGCCTACGGCCGACTGCCAGTCAAGGGATTCCCGCGAATCACCCGGCCCCGCTCCCGAAAGAACGCCGGCGGGATGAGCGGCTTTAGTCTCGTAGACCCGGCAGGGAACTGGATCCGCTTCTTCCGCGACAGCAGCACAGAGATCTCGACTGCCGATCTCAGCCGATTAGGCGAGGCCGTCCAGGACGCGGTCGTGCTCGCTGACAGCAAAGGCGACGTAGCACAGGCAGCTAAGATCCTTCGGGGTGCGATCAATCGCGCCCCTGCTGACGATCCGGCGCAAGATGAAGCTCTAAGTTTTCTCACCGAGCTAACTGAGCGTCTGCCGGACGGTTGAMYLPRTIPLLPCADIEEIEPFFAALGFRTTYRQVRPYSCIGVNGHGFDLQYYGLNGHTPESSHSSCIVIVEDTGPIWEEFASGLREAYGRLPVKGFPRITRPRSRKNAGGMSGFSLVDPAGNWIRFFRDSSTEISTADLSRLGEAVQDAVVLADSKGDVAQAAKILRGAINRAPADDPAQDEALSFLTELTERLPDGNANANANANA
D1-29_01147579hypothetical proteinATGCGCAAAGGGCTCAAAATAACTCTTTCCGGGACGGGAGCCCTAGGTGCGACACCGAAGGCACCGGGCGCGGCGATAAGAAGAACTCCTCATGCCCGTCGTGGAACCCCCGAGTTGTTGATAGCCGTGTGCTTACTAAGCTTCGGTGCGGTTTCTTGTGGCACAACAACCAACGGACCCGACTCAGGGTTTCAAGAGACACCTCTACCCTCCTCGACAACGTCAGCCGGAGCGACCGCCACGAAAGCCGGGCCGTCCTGTCCTGTACGTGAAGAGATTCCGGTGCGGGATCTCCAGTATGACGAGCTTGTGGATTGCGATCTAAGGGACGTCCGCATCCTGTTTGAAGACGGCAGGACGATCCCAACGCCTGTAGCCGGGGAAGTGGCCAGCGGGGGCTCTTCAACCGTAGTTGGGGCCGAAGACCTGGACACAATATCGGTCGCGAACCTTGGTCCAGGCCTCGGTGTGGTCGGCTTTATTGAGAATGACGCTCGGGGGGTCACTTACTGGGGACCGGCGGAGGCCACTTCGATACTGAAGGAGCAGCAGGCCAATGCAGACATGGCAGACGGATAGMRKGLKITLSGTGALGATPKAPGAAIRRTPHARRGTPELLIAVCLLSFGAVSCGTTTNGPDSGFQETPLPSSTTSAGATATKAGPSCPVREEIPVRDLQYDELVDCDLRDVRILFEDGRTIPTPVAGEVASGGSSTVVGAEDLDTISVANLGPGLGVVGFIENDARGVTYWGPAEATSILKEQQANADMADGNANANANANA
D1-29_01148843hypothetical proteinATGGTCGGGCAGGCCGTCACGTCGTGCTTGACGAGTGCAGGCCATGAAGTGGTCGGTTTTGATTTGGCGGCCGGGCAGGATGTCCTTGACGCGGACTCGTTAACTCAGGCGGTGAGCGGCTGCGACGCTGTGGTGCATTTGGCAGCGTTGGATGAGGCCCAAGATGAAGACTCGCCTTTTGCGGAACTCGGTCCTGCGTCTGCGGCTGGAGATTCGACCATTATCCAAAACAATGTGATTGGAACCTACAACGTACTTCGCTCTTCAGAACGTGCAGGTGTTCAACGTGTCGTGTTCATGAGCAGCGTGGATGTGTATGGGTGCTTTATGGGCCAGGGGTCACCCGAGTACTTCCCCATTGACGAGGTTCATCCGTTGGATCCGAAGGGGGCTTACGCGTGGTCGAAAGTTGCTGGTGAAGAGCTATGCCAAACGTTCACTGTAAACTCCGGGACACCAACCATTTGTCTTCGAGCTCCTGGCGTCTTCGCCCCATCGACATATGAATTCATCCAAACGGCGCGGAGGGATACCCCCAGCGTTGAATGGGAGCCCTATTGGGAATATGGTGCTTTCATCGACGTGCGCGACCTTGCAACTGCCGTTCTGAATGCCCTCATTGCCCCTCTTGAAGGACACCACAGGCTCCTTGTCAATGCCAACGACATCAGCTCGGCTATGGACGGATCATTGGCACTTGCTGACAGGCTCATGCCCGGAGTTCCCGTCCGAAACCGCGACACTTACCACGAATCGCCGTTCAAGGCGCTCATAGATGCCACGAAGACTTACGAGTTGTTGGGGTGGCGGCCGCTCCATGATTGGGACAGTACTCGGAACTGAMVGQAVTSCLTSAGHEVVGFDLAAGQDVLDADSLTQAVSGCDAVVHLAALDEAQDEDSPFAELGPASAAGDSTIIQNNVIGTYNVLRSSERAGVQRVVFMSSVDVYGCFMGQGSPEYFPIDEVHPLDPKGAYAWSKVAGEELCQTFTVNSGTPTICLRAPGVFAPSTYEFIQTARRDTPSVEWEPYWEYGAFIDVRDLATAVLNALIAPLEGHHRLLVNANDISSAMDGSLALADRLMPGVPVRNRDTYHESPFKALIDATKTYELLGWRPLHDWDSTRNNANANANANA
D1-29_01149690hypothetical proteinGTGGAAGGCTTCAGGCACTCTTCGGACGCCGACCGTGAGTTTTATGAGCTCCGCAGGCGGGCATATGGTCCAGATCCTGACATCAGTGTCGACCCTCCGGGCCTAGCGAGGTTGCGCGAACTTGAGGTGGCGGACCGCGCTGAAGTCAATTCTCTGCCGGTTGCCCCCGCGAGCGAGAATGCGGCTGATTCGGAGGCCCCCGCGGACGCTGCCTCGATAGACCATCCGGTGCCAAGGTGGAGTCGCCTGTACTGGGCCGGTGCCGCACTGGTCCTCGCGGGAGGGATCGTTACGACGACCCTGCTGTTATCCGCGCCGCGTCCTGATGCCACTCTTCATCCGAGCGGGGCCGCGGTCGATAACCGGCTCCCTGGACTGCTGATTAGGGGAGCACCCCTGTTGAGGATCGAAGCTTCAACCCTCCGCGGATACGGGTCGTATCTCGGTCTCGAGATCTATTCTGCCGTGAACGCGTTCGATTCGCCGTGTCTGGTGGCATTGCACCGGGCGAGCGGTAATCTCTCAGACGTTCGCTGTGCTCCGGCTCCAGCAGATCTCATGATGGACGTCGCCTCATCCCGGGACGGGTTTGAAGGATTCGAAGGACGCGCCGGGGACGGCATCGTCCGATTCGTACTTCGTTACGACACGGTGGACGCTTACGTTTACCTCATCCCGGAGGAGGGCTGAMEGFRHSSDADREFYELRRRAYGPDPDISVDPPGLARLRELEVADRAEVNSLPVAPASENAADSEAPADAASIDHPVPRWSRLYWAGAALVLAGGIVTTTLLLSAPRPDATLHPSGAAVDNRLPGLLIRGAPLLRIEASTLRGYGSYLGLEIYSAVNAFDSPCLVALHRASGNLSDVRCAPAPADLMMDVASSRDGFEGFEGRAGDGIVRFVLRYDTVDAYVYLIPEEGNANANANANA
D1-29_01150804hypothetical proteinATGGAGCCATCCTCACCCCGGTCTGATGCTGAGCGCGAGCTGGACGAGCTCCGCAGGAGGGCATACGGTCCGCATCCGGATATCCAGTCCGACCCCGCAGCACAGGTAAGACTGGCGGAACTGGAGGGGGCGCACACCGCGAGTCCCCGCGCCCTCACCGACACCGACGTCAGAACAGCCGCTGCAGCCCAGGATTCCGGTTCAGTCGCTCACCCCACCAGGACCACATTCATTGACGAAGTGCCGGACCCGGCAACCAGCATCGCGCCCGTGGCGGAGTCCAGGATTGGATCGACGTCGTTGACCTGGCGTCGTCTCACGGCGACACGTGCCCGACGTTACTCATTTGTGGCCGGCGCGCTGGCAGTCTTTCTTGCCGGTGTGTTCGCCGTGACATGGATTGCAACACCGCATCCCGATGCCACATTGCATCCGATCGCAGACGAGGCTGACAGCGACGTTCTCACAATGCTGGAATTCCTCTCAACGCTGGAATTCCCTTGGGGGGAAGCTGCCGGCCAATCCAGTTTCCGCGGCTATCAACAGTATCGGGGATTCGAACCCTGGTTCTTCGTGGACGGGCGGGGCTACCGGTGCTTCATGGTCATCGATCGTTCCGGTCCTTTTGTAGACGGCGCCAATTGTGTGCCGCCCGGGGTCGATCTTTTTGCAGACGTCGGCGGGCAAACCCATTCGGGTGATGGTGCCACGATGGGCCTCCCGAAGGGGAGCGTCGTCCGGTTCCAGTACCGCGGCGACTCCGTAGACGTCTTCCTCTACCCCGCATCGTCGGAGGCAGAATGAMEPSSPRSDAERELDELRRRAYGPHPDIQSDPAAQVRLAELEGAHTASPRALTDTDVRTAAAAQDSGSVAHPTRTTFIDEVPDPATSIAPVAESRIGSTSLTWRRLTATRARRYSFVAGALAVFLAGVFAVTWIATPHPDATLHPIADEADSDVLTMLEFLSTLEFPWGEAAGQSSFRGYQQYRGFEPWFFVDGRGYRCFMVIDRSGPFVDGANCVPPGVDLFADVGGQTHSGDGATMGLPKGSVVRFQYRGDSVDVFLYPASSEAENANANANANA
D1-29_01151483hypothetical proteinATGCTGCTCATCTCCTCGGCGGTCGGCTCCTTGGCTCGACAGCTCGAGACCACCACGGATATGTGGCTAGCCAAGTGTTTAGGGTGCCATGCCACAATGAGGCCCATGACTCGAATCCTCATGATCGGCATCCACGCGCGAGCCCTCGACTATAGCAAGTTGCCTCCTGGCCTCGACGAGGTCACGATGACCGAACGGATCGAAGCGGGGTTCGGGGCCACTAGGGCCGCAGGCTTCGACGCCGTCAACTGCCTGATCGGCACCTCCCCGGACGATGCCGAAGCAGTGATCCGCTCGGCCTTCGGTCGTGATCGTTTCGGCCTCGTGATGATCGGGGGCGGCATCAGGATCATCCCGGAGTACACCGAGCTCTTCGAACGGATCATCAACCTGTGCAATGCGGAATCGCCCGGAATCACCTTCTGCTTCAACACATCGCCCGAGACGACTCTGGACGCGTTGGAGCGTCACGCCCAGCCGTGAMLLISSAVGSLARQLETTTDMWLAKCLGCHATMRPMTRILMIGIHARALDYSKLPPGLDEVTMTERIEAGFGATRAAGFDAVNCLIGTSPDDAEAVIRSAFGRDRFGLVMIGGGIRIIPEYTELFERIINLCNAESPGITFCFNTSPETTLDALERHAQPNANANANANA
D1-29_01152579hypothetical proteinGTGTGCTTCGAATTCGAAGCAATAATGCCAAGGTACCACTACTTCGAACTCGAATCAACCATCTATGATGAGAGCATGAACGAAACGCCAACGTCCCTGACGCCCGCGCAGCTCGGGGCGTACTTCGCTTTCACCGAGGTGAGTAGCTTGTTGCGCCACGCAGTTGAAAAACAGCTCCGTGATGCCGGTGACCTCAGCTACGTCCAGTTCCAGCTCCTCGCTCGCCTGGGCGATGCTCCGGATGGGCAACTGCGCATGACGGATCTCGCCGACGGCGTGGTCTACAGCCGCAGCGGACTGACGTACCAGGCGCAATTGTTGGAACACCGTGGGCTGGTTGCCCGCTCGCCCTCGCCCAATGACGAACGCAGCAGCGTCCTGGCACTCACCGAGGCTGGCCGCACGGTGCTCGCGACAGTGTTCCCCGGCCATATCAACGCCGTTCACAGCTTGCTGTTCGCGGCTCTTTCCGACGGTGACGTCGACGATCTCGCGCGCATCCTTGGTCAGGCAGCGGCCCATCTCCGCGCCGCTCCGCCTCGCTCAGCTACGCCCCGCCGGCGGAACAAGACATCGTAAMCFEFEAIMPRYHYFELESTIYDESMNETPTSLTPAQLGAYFAFTEVSSLLRHAVEKQLRDAGDLSYVQFQLLARLGDAPDGQLRMTDLADGVVYSRSGLTYQAQLLEHRGLVARSPSPNDERSSVLALTEAGRTVLATVFPGHINAVHSLLFAALSDGDVDDLARILGQAAAHLRAAPPRSATPRRRNKTSNANANANANA
D1-29_01153933tdh_1L-threonine 3-dehydrogenaseATGAAGGCAGTGCAGTTTCACGAGGTGGGCGGACCCGAAGTGCTCCAGTATGTGGAGACCGAGCAGCCGGAGCCGGTGGCTGGGCAGGTTCGGCTGCGTGTTGCGGCGTCCGCGTTCAACGCGGCTGACAACGGAATGCGGGCAGGGTTCTTGCCGATCCCGGTGGTGCTGCCGCATGTGCCCGGCTACGACGTCTCCGGCACCATCGACGCGGTCGGCGAGGGAGTCGAGGGCGTTGCGGTCGGTGATAGGGTGATCGGCTTCCTGCCCATGGAGCGGGACGGCGGCGCGGCGGAGTATGTGATCGCCCCTGCGGATGCTGTTGTGGGGGCCCCGACGAACATCTCGCTGGCCGACGCCGCGGCGCTGCCCTCGGTGGCGTTGACCGCCTGGCAGGCGCTTTTCGATGAGGGCCGGCTAGAGGCCGGGCAGCGCCTGCTCATCGTCGGTGCGGGCGGTGTCGTGGGCAAGTACGCCATCCAGCTCGCGAAACGCGCCGGCGTGCACGTCGTGGCGACCGCGAGCCCGCGCAGCATCGACGCTGTCCGCGCGGCAGGTGCGGACGAGATCATCGACCACATTGACGCCGACCTGCTGAGCGCCGTAGATGGGCAGGTCGACGTGCTGCTCAACCTCGCTCCTATCGATCCGGAGCAGTTCGTCGCGCTTGTTGCACTCGTGCGCGATGGCGGCATAGCGGTCAGCACCACTGCATTCATGGCGACTCCGGGTGACGAGAGGCGTGGCGTGCGCGCCGCCACCGTATTTGTCCGCCCAAACCGTGAACGCCTCGCCGAACTGGCGTCCCTCGTCGACGACGGAAAATTAACCGTCGAAGTCACCCGCCGCATCCCTCTCGCCGAGCTGCCTGCCCTCCACGCCGAGGCCAGCGCGGCCCGCGTGCCCGGAAAGGTCATCATCCTTCCCGCCTGAMKAVQFHEVGGPEVLQYVETEQPEPVAGQVRLRVAASAFNAADNGMRAGFLPIPVVLPHVPGYDVSGTIDAVGEGVEGVAVGDRVIGFLPMERDGGAAEYVIAPADAVVGAPTNISLADAAALPSVALTAWQALFDEGRLEAGQRLLIVGAGGVVGKYAIQLAKRAGVHVVATASPRSIDAVRAAGADEIIDHIDADLLSAVDGQVDVLLNLAPIDPEQFVALVALVRDGGIAVSTTAFMATPGDERRGVRAATVFVRPNRERLAELASLVDDGKLTVEVTRRIPLAELPALHAEASAARVPGKVIILPAPGPT0019417_461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-29_01154564yyaP_2COG0262putative protein YyaPATGCGGAAACTGATCTATGGCATGAACCTGACCCTGGACGGCTACATCGCCGCGGCCGGCGACGACATTGGCTGGAGCGGGCCTGGCGACGAACTGTTCCAGTGGTGGCTCGACCAGGAGCGGGCGATCAGCCTGATGCTGTACGGGCGCAAGCTCTGGGAGACAATGAGCTCCTACTGGCCCACTGGCGACCAGCAGCCAGGCGCTACCCCGGCGCAGATAGAGTTCGCGCGGAACTGGCGGGACACGCCGAAGGTGGTGTTCTCCTCGACGGTCGACAAGGTCGATTGGAACACCCGCCTGGTCAAAGGAGACGCGGTCGCGGAGATCACCCGGCTCAAGGCCGAGGACGGCGGCCCCATGAGGGTCGGCGGCGCAACGCTCGCCGGTGCGGCCATGCGGGCCGGGCTGATCGACGAGTATGCGATCGTTACCCATCCGGTCCTGGTGGGCGGCGGCACGCCGTTCTTCACCGCGCTGGACGGCTGGGTGAACCTGAACCTGGTGGAGACGCTGACGTTTTCCGGCGGCGTGGTCCTAACCAGGTACGAGACGAGGCGCTGAMRKLIYGMNLTLDGYIAAAGDDIGWSGPGDELFQWWLDQERAISLMLYGRKLWETMSSYWPTGDQQPGATPAQIEFARNWRDTPKVVFSSTVDKVDWNTRLVKGDAVAEITRLKAEDGGPMRVGGATLAGAAMRAGLIDEYAIVTHPVLVGGGTPFFTALDGWVNLNLVETLTFSGGVVLTRYETRRNANANANANA
D1-29_01155153hypothetical proteinATGGACGGCGCCTCTGCCCGCAGCCGAGTGCTCAACACTGACACCTTCGCCATCGCTGCCGCTATCGCAGCCGTCCTCGTAGACAACGCCATCCCCACGGCAATGGCACAGGCTGGCGCAAGCCCCGAAAAGCTAGCGCCTACCGCCCGTTGAMDGASARSRVLNTDTFAIAAAIAAVLVDNAIPTAMAQAGASPEKLAPTARNANANANANA
D1-29_01156420hypothetical proteinATGCTGATGGAACGATCCCTGATCATCTTTTCCATCATCCTGGTCTCCGCTTCCATCTGCATCGCTGGTCGCTATCGCTTCCCCATTCAAGAGGGATCAAAGGTAGACCTTTTCTACGAACAACTCCAGCTATATGTGAACGTCGTTGCCGTAGGGGTCGAACTGCTCTTTCCGTTCGTCACAGGCTTCGTCGGTGTGCCCGTTCTAGCGTTCACAGCTGCCCTTTTCCAGGCATCGGCAGTGGCAATTTTCCGAATCAAGGTACGGGCGATCAGAATTGTTCGCCCCCAAACCTCCACTTCACACTCAGTGGCTGCGGAGGAACTCCGCCGCACTCGGTGGCCGTACCAGGCATCCTTTGCCCTAGGCTACGTCTCGTTGTTGGCTTATCTGGCGACGATTTTCAGATACTTCTTCTGAMLMERSLIIFSIILVSASICIAGRYRFPIQEGSKVDLFYEQLQLYVNVVAVGVELLFPFVTGFVGVPVLAFTAALFQASAVAIFRIKVRAIRIVRPQTSTSHSVAAEELRRTRWPYQASFALGYVSLLAYLATIFRYFFNANANANANA
D1-29_01157213hypothetical proteinATGAAGGACATGACCAGTACCATCACACCGATGGTGACTATTAGGCCCAAGATAGATCCAAAAATTTCTCGTTTTGTCATTAGCCCTCCGGAGCAGCACAGCCGGCGGCGTGCATTGTTGTACGGAGCATATTCTCCTGCGTCCCTATTTGAAACGAGTATCGCTTCCCGCCGCAGAGGGTTTCCCAAAAGGGAACAACGAACCGGCCAATAGMKDMTSTITPMVTIRPKIDPKISRFVISPPEQHSRRRALLYGAYSPASLFETSIASRRRGFPKREQRTGQNANANANANA
D1-29_01158597hypothetical proteinATGTCGGTAAATGGTTTCATGTTGGAGAATATTGCGCTGCAGGGGAGCCGGGTCTGCCTGGAGCCATACGAGGATGCCTCGGAGCGGGCGGTGGCCCGCGCGCTTGATTGTGACGCCGCAGCCTGGGACCTATTTGCCATGAGCGGGCAGGGGGCGCATTTTGCCAGCTGGTGGAGCACCCTCAATCGCCAGATCGCCTCCGGCCAGTGGATCGCGTACGCGATCCGCAACCGCTCGGACCACCGCATCGTCGGCACCACCAGTTTTCTGAACATCAGGCCCGAGCGCCAGTGCGTGGAGATCGGCGGGACGTTCTTGCATCCAGACGCACGTTCCGGCTATGCCAACGCCGAGTCCAAGCTGCTCATGCTGCAACATGCCTTCCAGTCCGGGGCGCGCAGGGTGGAATTGCTGACTGACCTGCGCAACACCCGCAGCCAAGCTGCGATTGCCAAACTGGGGGCCGTGCGCGAAGGCGTGCTTCGTCGCGATCGCATCACCTGGACTGGCCATGTGCGAGACAGTGTCCTCTATTCCATCACCGACCTGGACTGGCCTGAGGTGCAAAGCAGGCTGAAAACGCGCTTGTCACTTTAGMSVNGFMLENIALQGSRVCLEPYEDASERAVARALDCDAAAWDLFAMSGQGAHFASWWSTLNRQIASGQWIAYAIRNRSDHRIVGTTSFLNIRPERQCVEIGGTFLHPDARSGYANAESKLLMLQHAFQSGARRVELLTDLRNTRSQAAIAKLGAVREGVLRRDRITWTGHVRDSVLYSITDLDWPEVQSRLKTRLSLPGPT0028780_12DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005NANA
D1-29_01159552sutR_2COG1396HTH-type transcriptional regulator SutRATGGTGGAACAGCTCGGCGCACGAATCGGTGCGGGAATTCGACGGGAGCGCATCGCCGGAGGCCTGTCGGTTTCCGAGCTCGCCCGTCGCGCGGGATTGTCCAAGGCGACAGTTTCCCAACTTGAATCGGGCGGGGGTAACCCCAGCGTTGAGACCTTATGGGCACTGGGAGACGCGCTCGGCGTGCCATTTGCCCGGCTCGTAGACAAGACAGCTGAGCCTGTCACGCTGATTCGCGCCGCCGATGCGCCGCGCATCCGTTCTGCAGACAGCGACTATGTGGCCGCACTCCTCTCCGCCAGTCCCCCCAATGCGCGCCGCGACGTCTACTTGGTACAGGCCGACCCCAGCAGCCCCAAGGTGTCCGCTCCCCATGCCTATGGCACCGTGGAGCACGTGGTGCTGATATCGGGCGCGGCACTCGTCGGTCCGGCGTCGTCGCCCGTCGCCCTGTCGCCCGGCGACTACCTGTGTTATCCGGGCGACGCTCCCCACGTCTTCGACGCCCAGGACAATGGCACCACCGCGGTGCTCATTTCAGAACTCAGGTAGMVEQLGARIGAGIRRERIAGGLSVSELARRAGLSKATVSQLESGGGNPSVETLWALGDALGVPFARLVDKTAEPVTLIRAADAPRIRSADSDYVAALLSASPPNARRDVYLVQADPSSPKVSAPHAYGTVEHVVLISGAALVGPASSPVALSPGDYLCYPGDAPHVFDAQDNGTTAVLISELRNANANANANA
D1-29_01160606hypothetical proteinATGGTCGGGGTGGCTTATGGCTCAACGGCGCTTGCTGCGGGCTTTCCGCCGTGGCTCGTCGTGCTTGCCGCCGTTCTTGTGCTCAGCGCATCCTCGGAACTGCTGTTCGTTGGCGTCATCGCGGCGGGCGGGCTGCCTTGGGTGGCGGTAGCTGCAGCACTGCTGGTGAATCTTCGGAACGTCGTCTATGGGTTCTCGGCTTCCGCGTTTCTGCCGCAGCCGCGCCTACTCCGGTACTTGTCGACTCACCTGATCAACGACGAAAGTGTCGCCTTCGCCCTAGCCCAACCGCAACCAGCCCGACGCCTCAGCGCATTCAGCGTCGTCGGGGTCGCAATTCTGGTCGCGTGGCCGCTCGGCGCAACGGTTGGCGTGCTTGTCGGGTACGTTGTGCCCGACCCTAGTCGCCTTGGCCTTGATGCGGCTTTCCCTGCCATCTTTGTCGCGATCCTCCTCGGGACCATCACGCGCAGCACCGTTGGTCCTGCGCTTGCCGGCGCGACGATCGCCGCGGCTGCCACGCCCGTCGTGGCCGCTGGAGTCGCCCCTGTCCTGGGTTTAGCCGGCTTGCTCACACTTGTGCGAAAGCGGGGGCACCGTGGCTGAMVGVAYGSTALAAGFPPWLVVLAAVLVLSASSELLFVGVIAAGGLPWVAVAAALLVNLRNVVYGFSASAFLPQPRLLRYLSTHLINDESVAFALAQPQPARRLSAFSVVGVAILVAWPLGATVGVLVGYVVPDPSRLGLDAAFPAIFVAILLGTITRSTVGPALAGATIAAAATPVVAAGVAPVLGLAGLLTLVRKRGHRGNANANANANA
D1-29_01161318hypothetical proteinGTGGCTGACATAAATCTCGTTCTCGCGATTCTCGTTCTCGCCGTCGGTACTTATCTCATCAGACTCGGCGGGGTCAGCTTCGGCGGGTCCCGCTTCGCCCTCCGGCTCCAACAATGGAGTGAGCCCGCGGTGATCGTACTTCTCGCAAGCGTCGCCGCCGCCGCAACTATCTATGACGGACAGGGTTTCGCCGGGTGGGCTCGCATCGCTGGGGTGGCTGCGGCTACCGGCCTAACCGCGATGCACGCACCCCTTGTCATTGTTGTCGTCGCCGCTGCCGGAGTATCCGCCTGTCTGAGGGTTCTTGGGCTTTACTGAMADINLVLAILVLAVGTYLIRLGGVSFGGSRFALRLQQWSEPAVIVLLASVAAAATIYDGQGFAGWARIAGVAAATGLTAMHAPLVIVVVAAAGVSACLRVLGLYNANANANANA
D1-29_01162327hypothetical proteinATGACCATGCCGAAGTATCTGTTTGAAGCGACGTACGTGGGCCAGGGGATCAAGGGCCTCATGCAGGAAGGTGGCACCAAGCGGCGTGACGCCCTGGTGGAGGCCCTCAAGTCGATAGGCGGATCGCTGGAGAGCTACTACTACGCTTTTGGTTACTACGACGTCCTTGGCGTCTTTGAGGCGCCGGACGATGCAAGTGCTGCAGCACTGTCACTCCTGGTTAATTCGACGGGGAGTGTCAACGTCCGCCTCAAGCCGCTCCTGACAGTGGAAGACATCGACGAAGCCGCCAAGAAGACACCGTCCTACAGGCCCCCGGGACAGTAGMTMPKYLFEATYVGQGIKGLMQEGGTKRRDALVEALKSIGGSLESYYYAFGYYDVLGVFEAPDDASAAALSLLVNSTGSVNVRLKPLLTVEDIDEAAKKTPSYRPPGQNANANANANA
D1-29_011631104prmC_2Release factor glutamine methyltransferaseGTGACCTGGACTGAGGCTGGTGAGAGCATGACCGCACGGTGGCGTTCGGCGAACGGCAGGCCGGCGCCGACGCGCGTCGAAGTGGTCTCCGACTCTCTCACGGCCGATGACGCGAACCGGATGGCGTCACAGGGGATCGCGATGCTCTGGCAGGGTGACTTCCACAACGCACGGCAGATCCTCAACGCCATGGACCGGCGGATAGGCGCCGGAAAGAAAGAGACCGCAGCAACTCCGGCCGAGAAGTTCTATCGGCACCGCCAGTCCCGCTCGCATCGTGCACGCATTCTGGGCCTGCTGCTGATTCCGCTGGATCCGGGCCCAGTGGTGCCGCTGCGCCGCGCACCGGACATCCGGGAAGCCGCCGCTGAAGCGTACGGAGAGATCGGCGAAGCTTCCGTTGTGTCCCTGCATGAGCTTGTCGGGGCGATTGGCGCGCACGAGTGGCGGCGGAAGGGCGTCTACGTCGAGGCCCTGCACGGCCGCATCCACCCGCACTACGGGACGTTCTTCCCCACCCGCAGTGAGTATGTGGATCTCGTGGCCGCCGCTCCGCTGCCCTCTGACACGCTGGCGTTCGACGTCGGAACCGGCACCGGGGTGCTCGCTGCCGTCCTCGCGCGCCGTGGCGTCCAGCGTGTGGTGGCGACGGACAATGAACCGCGTGCAATCGCCTGCGCCGCCGAGAATTTCCGGAACCTCGGCGTCCAGGACCGTGCTGAGGCCGTCCTGACCGACATGTTTCCGCCCGGGCGGGCACCGCTCATCGTGTGCAACCCGCCGTGGATTCCGGCCACGCCGCATTCCACCCTGGACAACGCCGTCTACGACCCCGGGAGCAGGATGCTGTTCCGCTTCCTGAACGGACTCTCCGACCATCTGGAGCCGGCCGGTGAGGCCTGGCTTGTCCTCTCCGACCTGGCTGAACACCTTGGACTGCGGACACGTGACGATCTGCTGGCCGCCATCACGGCGGCCGGGCTGAAGGTGGTGGACCGGCTGGACACCAAGCCAACACATCCGAAGGCATCGGACCGCGACGATCCTCTGTTCGCGGCGCGCGCGGCCGAGGTCACGTCGCTGTGGCGGCTTGTTCGCCGATAGMTWTEAGESMTARWRSANGRPAPTRVEVVSDSLTADDANRMASQGIAMLWQGDFHNARQILNAMDRRIGAGKKETAATPAEKFYRHRQSRSHRARILGLLLIPLDPGPVVPLRRAPDIREAAAEAYGEIGEASVVSLHELVGAIGAHEWRRKGVYVEALHGRIHPHYGTFFPTRSEYVDLVAAAPLPSDTLAFDVGTGTGVLAAVLARRGVQRVVATDNEPRAIACAAENFRNLGVQDRAEAVLTDMFPPGRAPLIVCNPPWIPATPHSTLDNAVYDPGSRMLFRFLNGLSDHLEPAGEAWLVLSDLAEHLGLRTRDDLLAAITAAGLKVVDRLDTKPTHPKASDRDDPLFAARAAEVTSLWRLVRRNANANANANA
D1-29_011641134hypothetical proteinATGGACCAGGCAATTGTCCACTGGCGGGGACGACTTGAAGGAACCAGCGGGTTCGCGGTTGAGGGCAGAAGCTTCGTCAAGGCTCTCCGGCAAGCCGGTTACTACGTCGAGGAAATGTCGGTGCCCTCCCGTCCGGACGTAGGTGCAGGAAAAGGAACCTACCCGCTGCGCCGATGCGGCACAGGGCTGTCCATCGTGCACTTGCCGTGGCATGACTACGGTTGGGAGAACTTATCCGGACAAGTGGTGTGGCGGGCCATGTTCGAAACAGCCTCAGTCCCTCCTGAATGGCTTCAACGCCTGGCAGAAGTCGATGAAGTATGGGTGCCGTCCCGCTTCAACGCCAAGACCTTCGCTGATGCCGGCGTAGATCCGCACAAGATTAGAGTCGTACCCGAGTTCGTAGATAAGGATTGGTCCCAGGCGGCTGACCGCTCCTATGGGGGCAATCAGACATTCACATTCCTTTCAGTCTTCCGATGGCAAAAACGCAAAGGATGGGATGTCCTTTTGCAGGCTTACTTAAAAGAGTTCAGGGCCACCGACGACGTAGAACTCGTACTGCGGGTAGACCCCTTTGGTCCCGGGAGCACCGATGTCCGTTCAGATATCACCGCCGTGATCCAGAAAATCAGGCCGCATCACCCTCCTCTGGTGCGGCTGCTGCCTCATCCGCTCTCACAACCTGAAATGCAGAGGCTTTATGCCTCTGCCCACGCCTTCGTGTTGCCCACACGGGGGGAGTCCTGGGGGCGGCCCTTCATGGAAGCCATGGCCTCTGGCCTGATTACCATCGGTACCGCCTGGGGCGGCCATCTTGACTTCATGAACGTCAACAACTCGCTCCTGATCGACTGTGAGCTCGTCCCAGTGCCTGATGCCGCAGCGTTGGAATGGCCGTTCTTCCGTGGCCAAACGTGGGCTGAACCTTCCGTGGACAGCATCGGCAACTGCTTACGGCGGGCGTACGAGGGAGGCCCGGTCATTGAACGGCTCCGTCAGAACGCGGCGGCCGCTATCAGGGCTCATTATGTTCAGGGTCATGCTCATGAAGCTTTGATAAAGGAGGTGGGGAGGCTGGTAACGGACCGCCCTGAGGACGGCCAGGTGGCCGCCATTGACGACGGCGGTTAGMDQAIVHWRGRLEGTSGFAVEGRSFVKALRQAGYYVEEMSVPSRPDVGAGKGTYPLRRCGTGLSIVHLPWHDYGWENLSGQVVWRAMFETASVPPEWLQRLAEVDEVWVPSRFNAKTFADAGVDPHKIRVVPEFVDKDWSQAADRSYGGNQTFTFLSVFRWQKRKGWDVLLQAYLKEFRATDDVELVLRVDPFGPGSTDVRSDITAVIQKIRPHHPPLVRLLPHPLSQPEMQRLYASAHAFVLPTRGESWGRPFMEAMASGLITIGTAWGGHLDFMNVNNSLLIDCELVPVPDAAALEWPFFRGQTWAEPSVDSIGNCLRRAYEGGPVIERLRQNAAAAIRAHYVQGHAHEALIKEVGRLVTDRPEDGQVAAIDDGGNANANANANA
D1-29_01165153hypothetical proteinTTGCCGAAGGGAATCGTCATCAGTAGCCGAGGCAACTCAGCCTCTGTCCTCGTCGACGGCGTCTTCGCCCTCTTCTTGGTCACTGTCGCTGAGGCCGAGGCCTACGTCGCCAGCCTCCGCGCCCTCGACTCCCTCGACGCGCCAGCCCCTTAAMPKGIVISSRGNSASVLVDGVFALFLVTVAEAEAYVASLRALDSLDAPAPNANANANANA
D1-29_01166639hypothetical proteinATGTTGAGGGTTTCGCTTCGCTTATCAGCTGTGTCGTTTGCGGTAACCGGTGTGTTGGTCATCGCCGTGACGTTCCTGCACCCGAGTATTTTCGATCGGCCGATCGGTGACGTGGTCCTGGAATCCGCAGCGTGGTGGGTTCCCGTGCACCTGGTTGGCTTGGTTGTCTTTGTTCTGACAGTTTTCGGAGCCACCGGCCTTGTTGCCGCCCATGGAGATCAAATGGGCAGGCTGGGACATGCAGGCTTAGCAGTCACTCTGGTGGGTGCAGGCTGTACCGGCGGTCTTGCCGCCGTCGAAGCGGCAGTATTTCCGGTGCTTGCGGAGCGGGCTCCTGACCTGCTTCGGCTTGACGGGCCGCTGCTGGCTTCCTGGCCCATGATCGCCGTCGGCGTTGCAGCCCTCGGATGGTTTGTGGGTCTGGGGATGATTGGTGCCGCGGCGGCCCGCTGCTCCGTTTTCCCCCGCGCAGCCGGGGTGCTGCTGGCAGTCAGCAGTGTTCTGTTCCTTGCCCTTGAGGGTCCGTTCGTTCCGGTGTTTGGCCTGCTCGCGGGCGTGCTTTTCGGCGCCGTCCTGATCTGGTGGGGCTGGCTTTTGGGGAAAGCCGCTGCTGGATCTCGCCAGATGCCACAGCACTGAMLRVSLRLSAVSFAVTGVLVIAVTFLHPSIFDRPIGDVVLESAAWWVPVHLVGLVVFVLTVFGATGLVAAHGDQMGRLGHAGLAVTLVGAGCTGGLAAVEAAVFPVLAERAPDLLRLDGPLLASWPMIAVGVAALGWFVGLGMIGAAAARCSVFPRAAGVLLAVSSVLFLALEGPFVPVFGLLAGVLFGAVLIWWGWLLGKAAAGSRQMPQHNANANANANA
D1-29_01167723hypothetical proteinGTGCCGATTGAACTTCCAGCAATGCCTGTCGAGCAGCAGGAAGCCTGGCAGGCGGTGTTTGAGATCCATTCGGGTATGTCACAAGGCTGGGTCCTAGTCGGGGGACAGGCCGTCTACCTGCACGCAATTGAACGAAGTGCCCCCATTGTCAGGGCAACAACTGACGCCGATTTTGCCCTCGACATCCGGGCGTACCCTAGGATGCTCCACGATTTCACCTCACTATTAAAGAAGCTTGACTTCGAATCGGCGGGCGAGTCGCTGGAAGGCCACCAGCACCGATGGCTTCGGGGAAAAGCCGTTGTGGATGTCCTCATCCCACGTCATCTGGGTGAACGGGCAGCCGGGCGCCTTGGCGTAACAGGCGGGACTACGATCGCGGCTCCTGCCACCCAGCAGGCCCTGGACAGGGCGGAAACGGTTGATGTCATCGCAGGGACAACCACGGGTCAGGTGAACCGCCCATCACTACTCGGCAGCCTGATCGGAAAAGCCGCCGCCCTGAAGATTGTGAATGATGAATTCCGAGAGCGGCACATCACCGATTTCCTAACCCTGGCCGCCGTGGTGGGTGCGGGTGACCTGCGGGGCGTCACCTATCAGACTGCAGAACGCGATCACCTTGCACATATGCTCGGCCACCTGAAAAACACCCCCGAGCATATGGACCTTGTGCCCGAAGGTGCAGACGGCGTGGAGCGCCTCCGGATGTCCCTGGGCTGAMPIELPAMPVEQQEAWQAVFEIHSGMSQGWVLVGGQAVYLHAIERSAPIVRATTDADFALDIRAYPRMLHDFTSLLKKLDFESAGESLEGHQHRWLRGKAVVDVLIPRHLGERAAGRLGVTGGTTIAAPATQQALDRAETVDVIAGTTTGQVNRPSLLGSLIGKAAALKIVNDEFRERHITDFLTLAAVVGAGDLRGVTYQTAERDHLAHMLGHLKNTPEHMDLVPEGADGVERLRMSLGNANANANANA
D1-29_01168687hypothetical proteinATGCCGCTGAGTATCCCCGAATTGGCGAAGCGCCTAAATGTGAACGAAAGCCGTGCCCGGCACCTTGTCCAATCCGGTCGCATCCGGGGGCAGAGAGTGGGCGGAAGATGGCTGGTTGACGAAGCGGATGCATCCCAATATCGGCCCGGGGCACCCGCTGGCCGGCCCCTTTCGGAGCGTAACGCATGGCTGTTCGCCTTGGCCGCGTGCAATGCCTGGGAAAACGCGGAGCCCGATCTTCTCGTGCGCGTGTCTCCCGTTGAGAGGTACCGCCTCAACCAGCGACTGCAACGGTGGAAGGACGCAGCCTTCTCCGCCCCCCTTCTGCTAGCGTTGCTCGCCAACCGCGCCGACAGACTTGAGTTTTCCGCCGGCCGGGGCGATATCCCGGAGCTGAAGAAGGATCCTCGGCTCCGGCCGTCCGGGGTATCCCACCCAGAATCGGGTCTGCTCGCTAATTCCGAACTCGAGGCCTATGTAAGCCGGGGTGACGTCGATGCCCTGCTAAGGGATTGGTTCCTGGTGGAGACCAAGCCTGGGCAGCGGGCCAACGTTGTTCTGCGTGTAGCCAACGACGTCCCCGACGAGCTTCCGCTACTGGTCGTAGCTGCGGATCTGGCCGAACGCCCAGGCGCCCGGGAACAGGAAGCCGCTCGAGAACTTATCAGGAGCCTCCGTGCCGATTGAMPLSIPELAKRLNVNESRARHLVQSGRIRGQRVGGRWLVDEADASQYRPGAPAGRPLSERNAWLFALAACNAWENAEPDLLVRVSPVERYRLNQRLQRWKDAAFSAPLLLALLANRADRLEFSAGRGDIPELKKDPRLRPSGVSHPESGLLANSELEAYVSRGDVDALLRDWFLVETKPGQRANVVLRVANDVPDELPLLVVAADLAERPGAREQEAARELIRSLRADNANANANANA
D1-29_011691671xsc_1Sulfoacetaldehyde acetyltransferaseATGACTTCACTTACCGTCTCCGGCCGCGTGGCGCAGGTCCTCAGCAGCTACCTCAGCGATGTTTTCGGCGTCATGGGCAACGGAAACGTCCACTTCCTGGATGCCGCGGAAAAGCTGGGCCTCCGCTTCTCCCCCGTCCGGCATGAAGGCGCCGCCCTCGCCGCGGCCGACGCCTACTACCGGGCCTCGGGACGTCTCGCAGCGGGCACCACCACCTACGGCCCCGGCTACACCAACGCACTCACCGCCCTCGCCGAGGCGGTCCAGGCGCAGATCCCCGTGGTGCTGGTCACCGGGGACGCTCCGAGCAGCGGCGTGCGGCCCTGGGACGTGGACCAGACGGCCATCGCCGCGGGCCTCGGGGCGGCCACCTTCACCGTCAGCCGCGACGCCGCGGGCTCCATCACCCGGCAGGCGGTGGAGTACGCGCTCACCAAGCGGACCGCCGTCGTGATTGCCATTCCCTACGACCTCGCGGCACTTGAGGCTGCGGAAGAAGACCTCCTGAAGCCGTCGGCACCTACCGTGACGGACGACGTCGACGGCGGCCTTGGGCAGGTAGCCCGCCTGCTCGGCGGGGCGAAGCGGCCGCTGATCCTGGCCGGCCGGGGTGCGCATCTCGCCGGAGCCGGCCCCGAGCTCCGGGAGCTCGCCGACCGCCTGGGCGCGCTGACCGCCGGAACAGCACTGGCGCTCAACCTCCTCCAGGGCGACGGGTACCTGGGCGTCGCCGGCGGCTTCGGCACAGATACTGCTGCCGGGCTGATGGCTGAGGCCGATGTGGTCCTGGTGGCCGGGGCCAGCCTGACCCCCTTCACCATGCGCTTCGGGCACCTGCTCGGCCCGGACAGCACGGTCATCCAGATCGACACCGCCCTGCAGCCGACGCACCCCCGGGTGGATACCTTCGTCAGCGCGGACGTGAAGTCCGCTGCGGGCCGCCTCCTCCGGCTGCTGGATGACGGCGCTCCAGCGGATCCCCACTCAGAAGCCTGGCGCGCGGAAGCCCGCAAACGCCTGGCCGAAGGGCCAGGCCACGAGGCAGGCTCAGTGGAGACCCCCGACGGCCGGCTGGACCCGCGGTCCCTTGCCTCGGCACTGGATGCGATGCTGCCGGAGCGCCGCACGGTGGTCCAGGACGGCGGGCACTTCATGGGCTGGGCACCCATGTACTGGCGCATCCCGCGGCCCCAGGACCTGGTTATGGTGGGCACCGCCTACCAGACCATCGGGCTGGGCCTTGCCAGCGCCGTCGGGGCGGCCCGCGCGGTGGAGGACGGCCGCACCCTGGTGCTGGCCTCCGGCGACGGCGGTTTCCTGATGGGCTTGTCCGACCTCGAATCGCTCATCGCGGCGGCAAGCAGCGCCGTCGTCGTGATCTACAACGATGCCGCCTACGGAGCCGAAATCCACCAGTACGGCTCCCAGGGCCTCACCGAAAAGCCCATGCTGATCCCCGAGGTGGACTTCAGCGGCGTCGCCCGCGCGCTCGGTGCCGACTCGGCGGTCATCCGCTCGCTGGCGGACCTTGGCGCGCTTCAGGAGTGGATCCACGCCGGCGCCAAGGGAACCTTCGTGGCCGACTGCCGGATCACCTCCAGCGTCCGGGCCCCGTGGATGAGCGAGTGGATGAAAGCCAAGCAGGAGGCGAAGGCGGCTGTGGCGGGGTAGMTSLTVSGRVAQVLSSYLSDVFGVMGNGNVHFLDAAEKLGLRFSPVRHEGAALAAADAYYRASGRLAAGTTTYGPGYTNALTALAEAVQAQIPVVLVTGDAPSSGVRPWDVDQTAIAAGLGAATFTVSRDAAGSITRQAVEYALTKRTAVVIAIPYDLAALEAAEEDLLKPSAPTVTDDVDGGLGQVARLLGGAKRPLILAGRGAHLAGAGPELRELADRLGALTAGTALALNLLQGDGYLGVAGGFGTDTAAGLMAEADVVLVAGASLTPFTMRFGHLLGPDSTVIQIDTALQPTHPRVDTFVSADVKSAAGRLLRLLDDGAPADPHSEAWRAEARKRLAEGPGHEAGSVETPDGRLDPRSLASALDAMLPERRTVVQDGGHFMGWAPMYWRIPRPQDLVMVGTAYQTIGLGLASAVGAARAVEDGRTLVLASGDGGFLMGLSDLESLIAAASSAVVVIYNDAAYGAEIHQYGSQGLTEKPMLIPEVDFSGVARALGADSAVIRSLADLGALQEWIHAGAKGTFVADCRITSSVRAPWMSEWMKAKQEAKAAVAGPGPT0008185_7639DIRECT 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
D1-29_01170504asnCCOG1522Regulatory protein AsnCATGACCATCCCGAACCCTCGCACCCTGGATTCCCTCGACGGCAGGATCATCCTGGCCCTGGACAAGGACCCCGAAGCCAGCGCCCTGGCACTCTCCCGGACTCTCGGCGTCGCACGCAACACAGTCCATGCCCGCTTGGCACGGCTCGAGCGCAGCGGCGCCCTCCGCTCCTTCAGCCGCAGGCTGGACCCCGCCGCGCTTGGATATGACCTGATGGCCTTCCTCTCGCTGTCCATCAGCCAGACGCGGACAGGTGCAGTGGAAGACGGCCTCGCCGCGATTCCGGAGGTCATCGAGGTGCACGCCACCACCGGCGACGCGGACCTCATGGCCAAGGTGGTGGCACGCGGTACGGCCGATCTCTACCGCATCACCAACCAGATCCTGGAAATCGAGGGAATCCAGCGGACCAGCACGGCCATTTCCGTGCTGGAACTCATGCCGCCCCGCTACGACGGTCTCCTGAGCCGGCTGTCGAAGCAGGAATCGCGCCCTTCGGACTAGMTIPNPRTLDSLDGRIILALDKDPEASALALSRTLGVARNTVHARLARLERSGALRSFSRRLDPAALGYDLMAFLSLSISQTRTGAVEDGLAAIPEVIEVHATTGDADLMAKVVARGTADLYRITNQILEIEGIQRTSTAISVLELMPPRYDGLLSRLSKQESRPSDNANANANANA
D1-29_011711098pat_1COG0079Putative phenylalanine aminotransferaseATGACCCCTGATCAACTCGTGACCGCACCGGAGACGGCCCTCCCCACCCTTCGCGGCGCGGTGGCCGGCCTCCCTCCCTACGTCCCGGGCCGGCGCAGTGCCGGCACGGACATCGCAGCCCTCGCCAGCAACGAAAGCCACTACGAACCGCTTCCCGCGGCAGCCGCTGCGGTGGCCGCGGCGGCGGGTACGATGAACCGCTACCCGGACAGTGCCGCCGTCGAGCTCCGCGAACGGCTTGCCCGCCAGCTTGGCGTCACGGCCGAAGAGGTGGCGGTGGGACCAGGCAGCGTGGGCGTCCTCCAGCAGATCATCACCGGCCTGTGCGACGCCGGGGATGAAGTGATCTTCGCGTGGCGCTCCTTCGAGGCGTACCCCATCCTGGTTGAGCTTGCCGGCGCCCGGCCGGTCCGCATTCCGCTGGACAGCGCTGAGGGCCATGACGTCGATGCCATGGCTGCGGCCGTTACTGCCCGCACGCAGGTCATCCTGCTCTGCACCCCCAACAATCCCACCGGGGTGCCGATCAGCCATGAACGCATCGAGGCTTTTCTGCAATCCGTCCGCTCCGACATCCTTGTGGTGATCGACGAGGCCTATGTGGAATATGCCGAAGCGGGCAGCGGCCCCGATTCGCTGGCGCTCTACCGCCGGTACCCGAACGTCTGCATCCTGCGCACCTTCTCGAAGGCCTACGGGCTCGCCGGCCTGCGCGTGGGATACGCCGTGGCGGCGCCGACAATCGCCGAGGGGCTGCGCCGGACCGCCCTTCCCTTCTCGGTGAGCTCGCTGGCCCAGAAGGCGGCCATCGCGTCGCTGGACGCGGGGGAGGAGATGGAAGCGCGCGTCGCTGCCGTCAAGCAGGAACGCGCCCGGATGGCAGCGCAGCTGGAAGCCCAGGGCTGGAAACTGCAGGCGAGCCAGGGCAACTTCCTGTGGATCCGCGCCGATGACCGCCTCCAGGCCATGCTGGTGGACGCCTTTGACCGCGCAGGCATCCTGGTCCGCGCGTACCAGGGCGACGGCGTGCGGATCACCGTTGCCGATCCCGCCTCCAACGATCGTGTGCTCCGGCTCCTGGAAACCCACGCGGCCTGAMTPDQLVTAPETALPTLRGAVAGLPPYVPGRRSAGTDIAALASNESHYEPLPAAAAAVAAAAGTMNRYPDSAAVELRERLARQLGVTAEEVAVGPGSVGVLQQIITGLCDAGDEVIFAWRSFEAYPILVELAGARPVRIPLDSAEGHDVDAMAAAVTARTQVILLCTPNNPTGVPISHERIEAFLQSVRSDILVVIDEAYVEYAEAGSGPDSLALYRRYPNVCILRTFSKAYGLAGLRVGYAVAAPTIAEGLRRTALPFSVSSLAQKAAIASLDAGEEMEARVAAVKQERARMAAQLEAQGWKLQASQGNFLWIRADDRLQAMLVDAFDRAGILVRAYQGDGVRITVADPASNDRVLRLLETHAAPGPT0020305_3780DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-29_011721413gabP_1COG1113GABA permeaseATGGAACAACAGACAAAGACGTCTGGCCGCGCCCTCGGCGCGGCACTCAAACCGCGCCAGCTCACCATGATGGGGCTCGGAAGCGCCATCGGCGCGGGCCTGTTCATCGGTTCCGGCGCCGGCATCCAGGCTGCCGGCCCGGCCGTGCTGATCTCCTACCTCGTGGCCGGCACGCTCATCATCCTAGTGATGTGGGCCCTGGGCGAGATGGCCGCCGCCAATCCGGACAGCGGCGCCTTCTCCGTCTATACCGCCAAGGCCTACGGGCCGGTGGCCGGTGCCACAGTGGGCTGGCTCTGGTGGCTGCAGCTCGTGGTGGTCATCGCGGCCGAAGCGCTCGGTGCGGCTGGCCTGCTGTCCACCATCTTCCCGGACCTGCCGGTGTGGCTGATGGCCTTCCTGTTCATCGTGGTGCTCACCGCTGTGAACCTGACCAGTGTGAAGAACTTCGGCGAGTTCGAGTTCTGGTTTGCGCTGCTGAAGGTGGCGGCGATCGTCGGGTTCCTCCTGGTGGGCGCCGCCCTGTTGTTCGGCTGGCTGCCGGGCGTGCAGTCGCCGGGCCTTGCCAGCTTCACCGGTGACGGTTTCGCGCCCGACGGTTTCGCCGGGATTGCCACGGCACTGTTCGTGGTGGCTTTCGCGTTCGGCGGCACCGAGATTGTGTCCGTGGCGGCAGCCGAGACCGCTGAGCCGGCCCGCAGCGTGAAGAAGGCAGTCCGCACGGTGCTGTGGCGCATCCTGGTGTTCTACATTGGTGCGATCTTCATTATCGCGGCTGTGGTTCCCGTCGGTTCTGAAGGGCTGAAGAGCCCGTTCGCTGCGGTGTTGGAGGCAGCCGGCATGCCCGGCGCGGCCACCGCCATCACCCTGGTTGCCGTCGCCGCACTGCTCTCCGCCCTCAACGCCAACCTCTACGGCGCCTCACGTATGGCGTACTCCCTCGCCGAGCGGGGCGAAGCACCACGCTTGCTTGCTTCCGTGTCCAAGGCCCGGGTTCCGGTTGTTGCCGTCCTGGCCAGCGTTGCCTTCGGCGTTGTCACGGTGGTGCTGGAGCTGGCATTCCCCGAGATGGTCCTTGGCGTCCTGCTGAACATCGTGGGCTCGACGTGCCTGCTGGTGTGGACATCCGCGCTCCTGGCCCAGCTCGCGCTGCGCCTCCGCGCCGACCGCGAGGGGACGGAGCTTCCCCTGCGGATGCCCGGCTTCCCGTGGCTCACGGTGGTTGGTCTGCTCATCCTGGTCGCGATCTTCACGGTAGGCTTCATCGGCGAGGACTCCCGTCCCCAGCTCCTGAGCACGTTCGGGCTCGTGGCGCTTCTGGCGGTGGCTAACTGGGTGAATCACCGGAACCGCAAGGTTGCGCCCGTTATTGAGTCTTCGGATGAAGCCAAGCAGCCGGTTCTTATCGACTAAMEQQTKTSGRALGAALKPRQLTMMGLGSAIGAGLFIGSGAGIQAAGPAVLISYLVAGTLIILVMWALGEMAAANPDSGAFSVYTAKAYGPVAGATVGWLWWLQLVVVIAAEALGAAGLLSTIFPDLPVWLMAFLFIVVLTAVNLTSVKNFGEFEFWFALLKVAAIVGFLLVGAALLFGWLPGVQSPGLASFTGDGFAPDGFAGIATALFVVAFAFGGTEIVSVAAAETAEPARSVKKAVRTVLWRILVFYIGAIFIIAAVVPVGSEGLKSPFAAVLEAAGMPGAATAITLVAVAALLSALNANLYGASRMAYSLAERGEAPRLLASVSKARVPVVAVLASVAFGVVTVVLELAFPEMVLGVLLNIVGSTCLLVWTSALLAQLALRLRADREGTELPLRMPGFPWLTVVGLLILVAIFTVGFIGEDSRPQLLSTFGLVALLAVANWVNHRNRKVAPVIESSDEAKQPVLIDPGPT0000815_713DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_01173468bltDCOG0454Spermine/spermidine acetyltransferaseATGGAGCCTATGCAGAATCGTGTGCGCCTCACTGATCTACGCCGGGACACTTGGGAGGGCGTGGTCGGGCTAACCGTCACCGAGGATCAGCGTGATTTCGTCGCCCCGAACGTCTTCTCTATTGCCGAGAGCCGCTTCCTGCCCGGCTTCATGACCCGCGCGGTGTTGCACGGCGAAGAGGCTGTGGGCTTTGCGATGTACGGCCCCGACTCTGACGACAACGGGCACCTGTGGCTGTACCGCCTGATGATCCATAAGACCCACCAGGGCAAGGGCCTCGGCAGGGCAGCGCTTCAGGAGATCATCAGGCATGCCCGAGACGAGCTCGATGCACCGCTCCTTCGGTTGGGCGTACGCGCTGACAACATCGCAGCCACCGCCCTCTACAAGTCTGCAGGCTTCATCTCCACCGGCCAGACCTTCGGTTCGGAAGAAATCCTGGAACTCCGCTTTCCTAGCGGCACCTGAMEPMQNRVRLTDLRRDTWEGVVGLTVTEDQRDFVAPNVFSIAESRFLPGFMTRAVLHGEEAVGFAMYGPDSDDNGHLWLYRLMIHKTHQGKGLGRAALQEIIRHARDELDAPLLRLGVRADNIAATALYKSAGFISTGQTFGSEEILELRFPSGTPGPT0007790_1330DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657NANA
D1-29_01174204hypothetical proteinATGGAGGACGTGGCGGCCATTGGTGCCAGGATCCGGCGCGCCCGCAGGGAAGCCGGTATCACCCAAGGCGTCCTGGCGGGCCTGATTGGTACGTCCTCACGGACTATTCACGCCATCGAAACGGGGACCGGCAATCCTTCACTGGTTACGGTGGTCGCAGCTGCCAACGCGGTGGGACTGCACCTGAGGGCTACCGATGACTGAMEDVAAIGARIRRARREAGITQGVLAGLIGTSSRTIHAIETGTGNPSLVTVVAAANAVGLHLRATDDNANANANANA
D1-29_011751188hipACOG3550Serine/threonine-protein kinase toxin HipAATGACTGATGACCTGGGGCGCCTGAAATTTGTCCGTAGCGCGGACGTGTACAAGGCGGGCGTCCTGGCCGGACATCTGAACCGCACCGGCCGCGGCAGTGTCGTTTTTTCCTACAGGCCAGGCTACCTGGCCTCAGGCGGCCGCCCTGTCGCTACCACTCTGCCTATTACGGCGGAGCCGGTGGAAGCCCCGAGCGGTGCACTACCGTCCTTCTTCTCTGGCCTCCTGCCCGAAGGCCACCGTCTCACCGTGCTCCGGGAGGCCGTCAAGACGAGTATGGGCGACGAACTGAGCCTGCTTCTTGCTGTCGGCGCCGACGTTCCCGGTGACGTTCAGGTGGTGCCGGCCGGGGAAGTGCCTGTTGAGCCTCCGCCGTTGGCGGACACGTCGCACCCGGAGGATCTCGACTTTGCCTCTCTGTCGGACGCAGTCGATCCGCACGGGCTGCCGGGCGTCCAATCCAAAGCCAGCGCCTCGATGTTGACCACGCCGCTGGCTCTGGCTAACCGCCGGTACCTGCTCAAACTGGATCCACCCCGGCACCGGCACCTGGTCCTCAACGAAGCAGCCCATCTCAGTGGGGCAAAGGCCCTGAAAATTCCGGTTGCCAAGCACAATGTTGTCCTGGACCGGAACGGCCTGCCCGGCCTGCTTGTTGAGCGGTTCGACCGCACCCAGGGCGACGGGCTGCTGCGTCTGGCCCTGGAGGACGCCGCGCAGGTCCTCAACCTCCCGCCGGCGTCAAAATACGCCGTCAGCTCTGAGGAAGTGGTGCTGGCGCTGGCCGGGCTGTGCAAAGCCAAAGTCATCGCCGTAAGAAACCTCTACCTGCAGTTCGTTTTTGCATGGCTTACCGGCAACGGTGACCTGCACGCCAAGAACGCATCGGTATTGGAAGGCCAATACGGCTGGGCGGTGGCCCCGGTCTACGACATCCCCTGCACGCTCCTGTACGGCGACGACACCATGGCTCTGACCGTCGCCGGCAGGGTGAAGAGCCTCAAGGTCCGGCATTGGCAGGATTTCGCCGCCAGCATCGGGCTGCCGGAAAGAGCTGCTACAGCAGCGAACAAGGTAGCACTGACGGCAGCCGCCGCCATCGATCTGGAAGCCTTGCCTTTTACCGGATCGCCCCTGAACGGGGCGCTGCGAGAACTGCGCTTCCGCCGCGCCGAGCTCACGGGCTGAMTDDLGRLKFVRSADVYKAGVLAGHLNRTGRGSVVFSYRPGYLASGGRPVATTLPITAEPVEAPSGALPSFFSGLLPEGHRLTVLREAVKTSMGDELSLLLAVGADVPGDVQVVPAGEVPVEPPPLADTSHPEDLDFASLSDAVDPHGLPGVQSKASASMLTTPLALANRRYLLKLDPPRHRHLVLNEAAHLSGAKALKIPVAKHNVVLDRNGLPGLLVERFDRTQGDGLLRLALEDAAQVLNLPPASKYAVSSEEVVLALAGLCKAKVIAVRNLYLQFVFAWLTGNGDLHAKNASVLEGQYGWAVAPVYDIPCTLLYGDDTMALTVAGRVKSLKVRHWQDFAASIGLPERAATAANKVALTAAAAIDLEALPFTGSPLNGALRELRFRRAELTGPGPT0027480_2483DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
D1-29_011761413gabP_2COG1113GABA permeaseATGGAACAACAGACAAAGACGTCTGGCCGCGCCCTCGGCGCCGCACTCAAACCCCGCCAGCTCACCATGATGGGGCTCGGAAGCGCCATCGGCGCGGGCCTGTTCATCGGCTCCGGCGCCGGCATCCAGGCTGCCGGCCCGGCCGTGCTGATCTCCTACCTCGTGGCCGGCACCCTCATCATCCTAGTGATGTGGGCCCTCGGCGAGATGGCCGCCGCCAACCCGGACAGCGGCGCCTTCTCCGTCTATACCGCCAAGGCCTACGGGCCGGTGGCCGGCGCCACAGTGGGCTGGCTCTGGTGGCTGCAGCTCGTGGTGGTCATCGCCGCCGAAGCACTCGGTGCGGCAGGACTGCTGTCCACCATCTTCCCGGACCTGCCGGTGTGGCTGATGGCCTTCCTGTTCATCGTGGTGCTCACCGCTGTGAACCTCACCAGTGTGAAGAACTTCGGCGAGTTCGAGTTCTGGTTCGCCCTGCTCAAGGTGGCGGCAATCGTCGGGTTCCTCCTGGTGGGCGCCGCCCTGCTCTTCGGCTGGCTGCCGGGCGTGCAGTCGCCGGGCCTGGCCAACTTCACCGGAGACGGTTTCGCGCCTGATGGCTTCGCTGGGATTGCCACGGCACTGTTCGTGGTGGCTTTCGCGTTCGGCGGCACCGAGATCGTGTCCGTGGCGGCAGCCGAGACCGCTGAGCCGGCCCGCAGCGTGAAGAAAGCCGTCCGGACAGTACTGTGGCGGATCCTGGTCTTCTACATCGGTGCGATCTTCATTATCGCGGCCGTGGTTCCCGTGGGTTCGGCGGGGCTGAAGAGCCCGTTCGCCGCCGTGTTGGAGGCCGCCGGCATGCCGGGCGCGGCCACCGCCATCACCCTGGTGGCCGTCGCTGCACTGCTCTCCGCCCTCAACGCCAACCTCTACGGTGCCTCACGGATGGCGTACTCCCTCGCCGAGCGGGGCGAAGCACCACGCTGGCTTGCCTCGGTGTCCAAGGCCCGGGTCCCGGTTGTTGCCGTCCTGGCCAGCGTCGCGTTCGGCGTTGTCACGGTGGTGCTGGAGCTGGCATTCCCCGAGATGGTCCTTGGCGTCCTGCTGAACATCGTGGGTTCCACCTGCCTGCTGGTGTGGACCTCCGCGCTCCTCGCCCAGCTCGCGCTGCGCCTCCGCGCCGACCGCGACGGGACGGAGCTTCCCCTCCGTATGCCCGGCTTCCCGTGGCTCACGGTGCTTGGTCTGGTCATCCTCGCGGCGATCTTCACCGTGGGCTTCATCGGCGAGGATTCCCGTCCCCAACTCCTGAGCACTTTTGGACTCGTGGTGCTGCTGGCGGTGGCGAATTGGCTCCACCACCGGAGTGGGAAGACTCCGGCTGCTGTTGAATCGTCGGACGGAGAAAAGCAGCCGGTGCTCGTCGACTGAMEQQTKTSGRALGAALKPRQLTMMGLGSAIGAGLFIGSGAGIQAAGPAVLISYLVAGTLIILVMWALGEMAAANPDSGAFSVYTAKAYGPVAGATVGWLWWLQLVVVIAAEALGAAGLLSTIFPDLPVWLMAFLFIVVLTAVNLTSVKNFGEFEFWFALLKVAAIVGFLLVGAALLFGWLPGVQSPGLANFTGDGFAPDGFAGIATALFVVAFAFGGTEIVSVAAAETAEPARSVKKAVRTVLWRILVFYIGAIFIIAAVVPVGSAGLKSPFAAVLEAAGMPGAATAITLVAVAALLSALNANLYGASRMAYSLAERGEAPRWLASVSKARVPVVAVLASVAFGVVTVVLELAFPEMVLGVLLNIVGSTCLLVWTSALLAQLALRLRADRDGTELPLRMPGFPWLTVLGLVILAAIFTVGFIGEDSRPQLLSTFGLVVLLAVANWLHHRSGKTPAAVESSDGEKQPVLVDPGPT0000815_698DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_01177105hypothetical proteinATGGTATTCACGGACAAGGGAGTGAACGGCGTGAGATCCGCATGGGAAAGCCCCTTTATGGCAAGTGAGCATCCCACATCGGTCCGAACGTTTGAAGCCGATTAGMVFTDKGVNGVRSAWESPFMASEHPTSVRTFEADNANANANANA
D1-29_01178588hypothetical proteinATGGCACGAGGAGACACCGAGTTGACCTTCAAGGCAGCAGCCGCAGCTGATGGCATCGAACTCATTCAGAATTACTCGTTTCAATGGATGACGGAGCAGGGGCACTTCGGTCTCCCACCAGAGGCGGCTGGCGCGGTTAGGTCCCTCCACGATATCTTCCTGGCGCTTGAGGGTGACCCTGCCCCGTATGCCGCCGGGCGTACTAACGTACTTCGAGGCGACCTACTCTACAAGCCGACCGGGACCATCATTGAAGTTGATGAATTTCAGCACTTCTCAAGCTGGAGGCTAATCACCCTAGATGCTTACCCTCCGGACGCAGCCATGGGATTCGACCGCGACGAATACATTAACCTGTGCCGTCTCAATTCCCGCCGAGCCGACAATTATCGAGCCTCCAAGATCGCCAAGGGCTTCCCTAACCCGGGTTCGAGGACGAGGCAGCGCGCCTACTACGACTCTCTGCGTGACTTGGCCGCCACGGCGATGGGCCTGCCGCCGGTCATTCGGGTGCCGGCCGTCGACGACGATGGCGGACACGCATATCGGAGGCATCGAGACAAGATCGCTCGAGCCCTCTCCATCTGAMARGDTELTFKAAAAADGIELIQNYSFQWMTEQGHFGLPPEAAGAVRSLHDIFLALEGDPAPYAAGRTNVLRGDLLYKPTGTIIEVDEFQHFSSWRLITLDAYPPDAAMGFDRDEYINLCRLNSRRADNYRASKIAKGFPNPGSRTRQRAYYDSLRDLAATAMGLPPVIRVPAVDDDGGHAYRRHRDKIARALSINANANANANA
D1-29_01179783hypothetical proteinATGGATTCTGCCCTTCTTGCCGCCGTCGTCACGGCCTCTTTCGCTCTAGCCGCTACTGTTGTGGCGTCACTAATTGCCGCGGTAGCGAGTCTGAGGACGCAGCGCGGTCAAGCAGAAAACAACGAACAGCTAATACGCCTGAAAGACCGCCTTGACGCGGAGAAGGCACATCACGAACGGCATCTGAGCTCGAGGGCTGAACTTAATAACCTTCGGGAACCGCTGTTGCTCGCTGCCAAGGATTTGCAGAGCAGAATCGACAATATTCGCAGGAAGAACTTCTTCTTCTACCTCAACAGCGAAGACGACCACCGCCGTGATGTAGCCCTCCTTGGGACTCTGCACAGGTTCGCTACGTACTGGGCGGTTCAGGAATGCCTGTACAACCGCACCAACTTGCTACGTTTCGAGTCCGACGTGAATAGCCGCGAAGTTGTGGAAGATGTCGAAGGCTTGGCACGCACCTTCGCTTCAGACAGCTCTGCTGGACTGAACCTTATCTTCTGGCGAGAGGAACAGCGTGCCGTCGCCGAGCTTATGGTCGACTTAGGCAGCGCCGACCCCGTGCCAACGGTCGCGGGATTCGCCACGTTCAGGAAGAGGTATCGCGAAGACCTTCGTAGAGAGACACCCGAAGACCTCGCCCTCTGGTTGGGCCGCTTCGCTCAGGACCTCCAAGTCCCTACGATCGCTGAAAACCGCCGGTTGAAAGAGCTGGAGGAGAACCTTGACGCCTTGGTGAGAACACTGGAAAAGGGCAAGACGGCCGACCAGGCGTATTGAMDSALLAAVVTASFALAATVVASLIAAVASLRTQRGQAENNEQLIRLKDRLDAEKAHHERHLSSRAELNNLREPLLLAAKDLQSRIDNIRRKNFFFYLNSEDDHRRDVALLGTLHRFATYWAVQECLYNRTNLLRFESDVNSREVVEDVEGLARTFASDSSAGLNLIFWREEQRAVAELMVDLGSADPVPTVAGFATFRKRYREDLRRETPEDLALWLGRFAQDLQVPTIAENRRLKELEENLDALVRTLEKGKTADQAYNANANANANA
D1-29_01180771hypothetical proteinGTGGGCCGTAAAGTAGCGGATATGACCCGTCAGTTGGAGGACACCGCCGAGCCCTCACCCATCGGCGCTGACAGGATGCCCGGGACGGACCGGCGCAGCGCGATAGATGCGGTCCGCCTCCGGATCGGGATGGCAATTTCGTTGGGGCTGTTGAAGCCGGGCGAGCGGCTGCCGGACCAGGAGGACGTGGCCCTGGGCCTGTCGGTCAGCCCGATTACGGCCCGACGCGCGCTGGCGAGCCTGGCGGAGCAGGGCGTGGTGGTCCGGCGCCGCGGCCGTGCCGGCGGGACCTTTGTGGCGGATTCGCCGCCTTCGGATGTTTTGGCGTCACTTTCGGCGTCGCCGGCAGAGTCCCAGGCCGTGAACCGGCTGGTGGACCGGCGGCTGCTGTTCGAATGCGCTGTCACGCACTATGCGGCGGTTAATGCCTCGGCTCAGCAGCTCGACGAGCTGGAGCGGCTGACCCGGGACATGGCCGAGGCAACTGACTGGTCCGTCTACCACCAAGTAGACGAGCGGTTCCATCAACTGGTGGGAACGTCATCAGGGATGGGCACCGCCGTCGATGTTTATCACGAGACGCTCGCCGAGCTCTACGACTACTTCATCCCCTACCCCATCGAGAAGCTGCACAAGTCCAACCACGACCACATCGCGCTCGTGGCCGCCCTCCGCGCCGGTCATGTTGAAGAAGCCGTGGAGGTTTCGCGAAAGCACGTGGACATCCTGCACCGGACGATGTTTATGGGGCTGGCGCAGGGCGGAGCCTAGMGRKVADMTRQLEDTAEPSPIGADRMPGTDRRSAIDAVRLRIGMAISLGLLKPGERLPDQEDVALGLSVSPITARRALASLAEQGVVVRRRGRAGGTFVADSPPSDVLASLSASPAESQAVNRLVDRRLLFECAVTHYAAVNASAQQLDELERLTRDMAEATDWSVYHQVDERFHQLVGTSSGMGTAVDVYHETLAELYDYFIPYPIEKLHKSNHDHIALVAALRAGHVEEAVEVSRKHVDILHRTMFMGLAQGGAPGPT0018120_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018120-lldR-K14348NANA
D1-29_01181879amiFFormamidaseATGCAACGCATCCTTCCCCTCATCGCCGCCCAGGCAAGGCCTCGGCTCATCGGTGAACCCGTTTCGGCCTTCGCGGAGGAGGTCAGGAAAGCCCTCGAATCCCAGCCGCACAGCAAGCTGGTCGTCTTCCCCGAGCTGCACCTCTTCGGGGACGAAACCCCGGACCGGCAGCGCAGCGAAATGCTCCAAGCAAGTGCTGAACCGCTGCGCGGACCACGGGTCAAAGAGCTCAAAGAGCTCGCGAAAGACCTCAACATCTGGCTGGTCCCCGGCAGCGTCTGCGAACGCGGCCCCGAAGGCCAGCTGTTCAACACCCAGCTGGTCCTCTCTCCCGAAGGGGAGCTCGCCGGCTACTACCGGAAAATCTTCCCCTGGCGCCCGTTCGAGCCCTACGACCCCGGCGACAAGTTCACCACCGTGGACCTGCCCGGCACCGGCAGGGTGGGCCTGAACATCTGCTACGACGCCTGGTACCCGGAAGTGTCCCGCCAGCTTGCCTGGATGGGCGCCGACGTAATCCTCAACGTCGTCAAAACCACCACCCCGGACCGCAAACAGGAACTGATCCTCGCCAAGGCCAACGCCATCGTCAACCAGGTCTTTATGGTCAGCGTCAACTGCGCCGGCCCCACCGGCCAAGGCAAGAGCATCATCGTGGACCCGGAAGGCAACACCGTCGCCGAGGCCGCCGACGATCAACCGCAACTGCTCACCGCGGAACTGGACCTCGCCGCCGTCGAGCGCGTCCGCACGCACGGCACGGAGAACCTCAACCGCCCCTGGTCGCAGTTCCGCGAGGGGGAGCCCGCCGTCGAACTTTCCGTTTACCAAGGCCGGATCAACCCGGCCACCTGGACACCGCCGTCCTACAAGCCCTAAMQRILPLIAAQARPRLIGEPVSAFAEEVRKALESQPHSKLVVFPELHLFGDETPDRQRSEMLQASAEPLRGPRVKELKELAKDLNIWLVPGSVCERGPEGQLFNTQLVLSPEGELAGYYRKIFPWRPFEPYDPGDKFTTVDLPGTGRVGLNICYDAWYPEVSRQLAWMGADVILNVVKTTTPDRKQELILAKANAIVNQVFMVSVNCAGPTGQGKSIIVDPEGNTVAEAADDQPQLLTAELDLAAVERVRTHGTENLNRPWSQFREGEPAVELSVYQGRINPATWTPPSYKPNANANANANA
D1-29_011821350puuP_1COG0531Putrescine importer PuuPGTGACAACAACCCTGACCCGCACGCTGAAGCTGCCTTCGCTGGTCCTGTTCGGGCTGGCGTACCTGACCCCGATCATCGTCCTGGGGATCTTCGGCATCATCGCCGAAACCACCGGCGGCGCCGCGCCCGCCGCGTACCTCGTGGCGCTCGTGGCCATGCTGTTCACGGCGCACAGTTACGGCCGGATGGCCGTCGCCTACCCTGTGGCCGGCTCCGCCTACACCTACGTCCGCCGCTCCATCGATTCCCGGGTGGGGTTCCTGGTGGGCTGGGCCGTGCTGCTCGACTACCTCTTCCTGCCCATGGTTATCTGGCTCATCGGCGGCTCCTACCTGAGCGCCCAGTTCCCCGGCATCCCCATCGGCGTCTGGATCGTGGGCTTCATCGTGATCACCACGCTGCTGAACATCCTGGGCATCAAGGTGGCGGACAAGGCCAACTACATACTGATGGCGTTCCAGCTGCTGGTCCTGGTGTTCTTCGTGGCGCTGGGCATCGGCAGCGTGGTGTCCGCCAACGGCGCCGGGGGACTGGCCAGCGGGCAGCCGTTCTTCAACGACACCGCCAGCTTCGCCACCATCTCCGCCGGCGCGGCCATCGCCGCGTACTCGTTCCTGGGGTTCGACGCCGTCACCACGCTCACCGAGGAAACCATCAACCCGCGCCGGACCGTGCCGCGCGCCATCATGCTCGTGGCCCTGATCGGCGGCGGCATCTTCGTGGCGGTGTCCTACGTGACCCAGCTGGTCCACCCCGGCGGCGTGTTCGAGGACTCGGCCTCCGCGGCCAGCTCCATCGCCCTGCAGATCGGCGGGCAGCTGTTCGGCGCCGTGTTCCTGGCCGGCCTGGTGGTGGCGCAGTTCGCCTCCGGCCTCGCCGCGCAGGCCAGCGCCTCCCGCCTGCTGTACGCGATGGGCCGCGACTCCGTCCTGCCCAAGGCGGTCTTCGGCCGGCTGAGCGAGAGGTTCCACACCCCGGTGGCGAACCTGGTGGTCACGGGCATCGTGGGCCTGATCGCGATCTTCCTGGACGTGGCCACCTCGACGTCGTTCATCAACTTTGGTGCCTTCACCGCCTTCACGCTTGTGAACGCCGCGGTGGTGTTCCACTATGTGCGCCAGCGCCGGGCTGGGCAGCAGCTGAATCCGGTGTCCTACGTGGTGGTCCCGGTGGTCGGCGCGATCATCTGCGCCTACCTGCTCTCCCGGCTGGACAGCAATGCCATTACGCTGGGGGTGTCCTGGCTGGTGCTGGGCGTGCTGGTCCTGGCCCTGATCACCCGCGGGTTCAAGGCCTCGCCGCCGGAGATGACGGCCACGGAGAAGGCGACGGTCGAGGCCACGGTCTGAMTTTLTRTLKLPSLVLFGLAYLTPIIVLGIFGIIAETTGGAAPAAYLVALVAMLFTAHSYGRMAVAYPVAGSAYTYVRRSIDSRVGFLVGWAVLLDYLFLPMVIWLIGGSYLSAQFPGIPIGVWIVGFIVITTLLNILGIKVADKANYILMAFQLLVLVFFVALGIGSVVSANGAGGLASGQPFFNDTASFATISAGAAIAAYSFLGFDAVTTLTEETINPRRTVPRAIMLVALIGGGIFVAVSYVTQLVHPGGVFEDSASAASSIALQIGGQLFGAVFLAGLVVAQFASGLAAQASASRLLYAMGRDSVLPKAVFGRLSERFHTPVANLVVTGIVGLIAIFLDVATSTSFINFGAFTAFTLVNAAVVFHYVRQRRAGQQLNPVSYVVVPVVGAIICAYLLSRLDSNAITLGVSWLVLGVLVLALITRGFKASPPEMTATEKATVEATVPGPT0007795_331DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007795-puuP-K14052NANA
D1-29_01183783COG0388HydrolaseGTGAGGATAGCGCTGGGGCAGCTGGAGTCGGGTGCCGACGTCCGGGCCAACCTGGCCGTCATCGACCGGTTCGCCGCCGAGGCAGCGCGCGACGGCGCTGCGCTGGTCGCGTTCCCGGAGTACGCCACTTACGAGAAGAAGAAGGTGGACGCGACCTTCCCCGCGGTCGCCGAGCCGCTGGACGGACCGGTTTGCAAGGAGTTGGCGGGCATTGCCCGCCGTCACCGCATTGCGCTGGTGGCGGGCGTGGTGGAGACCTCGGACGAGCCAGGGGGCAGGGCGTACAACACACTGGTGGCGTTCGGGCCCGACGGCGGCCAACTGGCTTCCTACCGGAAGATCCACCTTTTCGACGCGCAGGGGTTCGGGGAGTCCGAGTTCATCAAGCCGGGCGAGTCCCTCGAACCGGTGGTGTTCGAGCACGGGGGAGTGCGGTTCGGGCTGATGACCTGCTACGACCTGCGGTTCCCGGAGCTGGCCAGGTCGCTGGCCGACGCCGGCGCGCAGGTCCTGCTGGTCTGCTCGTCCTGGGTGCCGGGCGAGCACAAGACGGAGCAGTGGCTGGCCTTGAACGCGGCGCGGGCGATCGAGAACAGCGTGTACGTGGCGGGGGTGTGCCAGGCTCCGCCGGTGTCGGTGGGGCGGAGTGTGCTCGTGAATCCGATGGGGGTTGTTGAAGCGGACCTTGGTCTTGCTGCCGGTGTCCGAGCGGTGGAGGTTTCGCTGGAGACGGTGGACCGGGTGCGGGAGTCGTTCCCGATGTTCCGGCAGCGGCGGCTGTAGMRIALGQLESGADVRANLAVIDRFAAEAARDGAALVAFPEYATYEKKKVDATFPAVAEPLDGPVCKELAGIARRHRIALVAGVVETSDEPGGRAYNTLVAFGPDGGQLASYRKIHLFDAQGFGESEFIKPGESLEPVVFEHGGVRFGLMTCYDLRFPELARSLADAGAQVLLVCSSWVPGEHKTEQWLALNAARAIENSVYVAGVCQAPPVSVGRSVLVNPMGVVEADLGLAAGVRAVEVSLETVDRVRESFPMFRQRRLNANANANANA
D1-29_011841431hypothetical proteinATGCCTCTGCTCATTTCGCAACGTTGCCTGAGTAACGCCACTGAAGAACTTGCCGCGCAGACGGGTGCTCTGGTCAAGTCTCATTACTCGCCAGTAGTGGAAACGATCACAATGCCTAAGAGGGTGCATGGGCCAAGACCGATAACTATCCTCCCGCCTGAGGCGAGGGTGCTCTACGAAGCCTTGGTGCAGGAACTTGAACCACACCTCCCTGCTTCGTCACGAGACATTGACATTGATGAACACCGCAAGTTTGGTACAGACGATTCTGTGGATCCGACAGTGTACATCGTTGACTTCGATATAGCCGCATTTTACGAATATGTTGACCACAGGATACTAGCCGAAGAGTTACTGATGCAGACTATGAACGCTTCCGCAGTATCTGCGCTCAACGACCTTTTACATGAAATGTTCCCGCGCAAAATTGGCATTCCTCAAGCAATGCAACCCAGTCATCGCATTTCCGATGCATACATTCAAAAGTTAGAGCGACAGCTCGTGCGCAAGGGATTTTCTGTCCACAGGTACGTCGATGACTTTCGGCTTATTGCCGCAGATCAAAGCGCAGCACATGATGCCATAGAGTTTGCCGTCGATATGGCTAGAGAGATTGGCCTAGTGCTGGCGGATGGGAAGACTAAGCTGTCGCCAAAGCGGCGAGTTAGAGAAGACATAGATGAAATCAATCGTGCATTCGATGAGTTTCGAAGCCAAGCTGAGGACGAACTCTGGGCTGTAGAAACCGAGAGAATGGGTTATGACGACGAGCCATTCTTTGACGATGACGATGACGATGACGACTTGGCGGAGCCGGACGAGGACGAGATCGACTTCGTATCTCTGAGCAGAGTCATTGAAGACTGGAGCCGCGGGGAAGAGTCCATGCGCGGTGTCCATGCTCATTTCGGCCCCGGTACCCTGAAGCGTCTCCAGTCGGCAACAAGCCGGCTAGAAGACGACTGGCTTGTAAAGATCACCGAGCGTGAGCCCATCAGACTCTATGAGGTGATTTCCTACTTACGCCGACGGCCAGAAATGGATCAAAATTGGGCTGCCTTGAGGCGCTTGACCCAACTGCCGCGTCAAAGCTCATGGGCGAAGTTGTGGATGGTCGGGCTGGCGAGCCAATTAACTGCAGGCGCCTCTGAACATGAACAGCAAATCTTAGATTGGGTCAAACAGCTGTTGCAAGACAGGCACGAGACGGTTAGGGCCGAAGCGGCTTGGTACCTGTCAAGACGCAGGTCCATTTCAACGGAGGAGTTGTCGGAGATCTACATGCAAGCGTCTGATGTTACTAGAGTTGGTGTCGCCGCTTGTGTCGGATCCCTGGATGGAAATACTGCGAGCCAGGTCGGAAAGGCCATCCAAGGAGACTCAAAGCTGTGCAAGGCTGCCTATAACTGGGGCTCCAAATATGTTGATTAGMPLLISQRCLSNATEELAAQTGALVKSHYSPVVETITMPKRVHGPRPITILPPEARVLYEALVQELEPHLPASSRDIDIDEHRKFGTDDSVDPTVYIVDFDIAAFYEYVDHRILAEELLMQTMNASAVSALNDLLHEMFPRKIGIPQAMQPSHRISDAYIQKLERQLVRKGFSVHRYVDDFRLIAADQSAAHDAIEFAVDMAREIGLVLADGKTKLSPKRRVREDIDEINRAFDEFRSQAEDELWAVETERMGYDDEPFFDDDDDDDDLAEPDEDEIDFVSLSRVIEDWSRGEESMRGVHAHFGPGTLKRLQSATSRLEDDWLVKITEREPIRLYEVISYLRRRPEMDQNWAALRRLTQLPRQSSWAKLWMVGLASQLTAGASEHEQQILDWVKQLLQDRHETVRAEAAWYLSRRRSISTEELSEIYMQASDVTRVGVAACVGSLDGNTASQVGKAIQGDSKLCKAAYNWGSKYVDNANANANANA
D1-29_01185807pat_2COG0079Putative phenylalanine aminotransferaseGTGGGCGTCCTTCAGCAGATCATCACCGGACTGTGCGACGCCGGGGATGTGGTGATCTTCGCGTGGCGCTCCTTCGAGGCATACCCCATCCTGGTTGAGCTGGCAGGCGCCCGGCCGGTCCGCATCCCGCTGGACCATCTTGAGGGCCACGACCTCGATGCCATGGCCGCCGCCGTCACCGAACGCACGAAGGTCATCCTGCTGTGCACCCCCAACAACCCCACCGGCGTACCGATCAGCCACGAACGCATCGAGGCGTTCCTGGGCAGCGTTCGCTCGGATATCCTCGTGGTGATCGACGAGGCCTACGCGGAATACGCCGAAGCGGGCAGCGGACCCGATTCCCTGGCGCTCTACCGCGAATACCCGAACGTCTGCATCCTGCGCACCTTCTCGAAGGCCTATGGACTTGCCGGCCTTCGCGTGGGGTACGCCGTAGCTGCGCCGGACATCGCTGAGGGACTGCGCCGGACCGCCCTTCCCTTCTCCGTGAGCGCGCTGGCCCAGAAAGCGGCCATCGCGTCGCTGGACGCGGGGGAGGAGATGGAAGTTCGCGTTGCCGCAGTGAAGCAGGAGCGTGCACGGATGGCCACTCACCTGGAAGCCCGGGGCTGGAAACTGCAGCCGAGCCAGGGCAATTTCCTGTGGATCCGTGCCGGCGACGAGCTCCGGACGAGGCTGGTGGATGCGTTCGATGGTGCCGGCATCCTGGTCCGGGCGTACCAAGGCGACGGCGTGCTAATCACCGTTGCCGACCCGGCATCCAACGACCGCGTGCTCCGGATCCTGGAAGCCCACGCGGCCTAAMGVLQQIITGLCDAGDVVIFAWRSFEAYPILVELAGARPVRIPLDHLEGHDLDAMAAAVTERTKVILLCTPNNPTGVPISHERIEAFLGSVRSDILVVIDEAYAEYAEAGSGPDSLALYREYPNVCILRTFSKAYGLAGLRVGYAVAAPDIAEGLRRTALPFSVSALAQKAAIASLDAGEEMEVRVAAVKQERARMATHLEARGWKLQPSQGNFLWIRAGDELRTRLVDAFDGAGILVRAYQGDGVLITVADPASNDRVLRILEAHAAPGPT0020305_2741DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-29_01186150hypothetical proteinATGGAACAACAGACAAAGACGTCTGCGCGCCCACTCGGCGCCGCCCTCAAACCCCGCCAGCTGACCATGATGGGCCTCGGAAGCGCCATCGCGCGGGCCTCTTCATCGGCTCCGGCGCCGGCATCCAGGCCGCTGGCCCTGCAGTGCTGAMEQQTKTSARPLGAALKPRQLTMMGLGSAIARASSSAPAPASRPLALQCNANANANANA
D1-29_011871374gabP_3COG1113GABA permeaseGTGCTGATCTCCTACCTCGTGGCCGGTACCCTCATCATCCTGGTGATGTGGGCCCTCGGCGAGATGGCCGCCGCCAACCCGGACAGCGGCGCGTTCTCCGTCTACACCGCCAAGGCCTACGGGCCGGTGGCCGGTGCCACCGTGGGCTGGTTGTGGTGGCTGCAGCTCGTGGTGGTCATCGCGGCCGAAGCGCTCGGGGCGGCAGGCCTGCTGGCCTCCATCTTCCCGGCCCTGCCCGTGTGGCTGATGGCCTTCGTGTTCATCGTGGTGCTCACCGCCGTGAACCTGACCAGCGTGAAGAACTTCGGCGAGTTCGAGTTCTGGTTCGCCCTGCTTAAGGTCGCGGCAATCGTCGCATTCCTGGCTGTGGGCGCCGCCCTGCTCTTCGGCTGGCTGCCGGGCGTCCAGTCGCCGGGCCTGTCCAACTTCACGGGCGACGGCTTCGCGCCCAGCGGTTTCGCCGGGATTGCCACGGCACTGTTTGTGGTGGCCTTCGCGTTCGGCGGCACCGAGATCGTGTCCGTGGCTGCAGCCGAGACCGCCGAGCCCGCCCGCAGCGTGAAGAAAGCGGTCCGCACGGTGCTGTGGCGGATCCTGGTGTTCTATATCGGTGCAATCTTCGTGATCGCCGCGGTGGTTCCCGTGGGTTCGGAGGGGCTGAAGAGCCCCTTCGCCGCCGTGCTGGAGGCCGCCGGCATGTCCGGGGCAGCCACCGCCATCACCCTGGTAGCCGTCGCAGCTCTGCTTTCCGCGCTCAACGCCAACCTCTACGGTGCCTCCCGGATGGCGTACTCCCTTGCGGAGCGGGGCGAAGCGCCGCGGCTGCTCGCTTCGGTGTCCAAGGCGCGCGTTCCGGTTGTCGCAGTCCTGGCCAGCGTCGCTTTCGGCGTTGTCACGGTGGTGCTGGAGCTGGCGTTCCCCGAGATGGTCCTTGGCGTTCTGCTGAACATCGTGGGTTCCACCTGCCTGCTGGTGTGGACGTCCGCGCTCCTGGCCCAGCTTGCGCTGCGCCTCCGTGCCGACCGCGAGGGTACGGACCTTCCCCTGCGGATGCCTGGCTTCCCGTGGCTCACGTGCTTCGGCCTGCTCATCCTCGCGGCGATCTTTACGGTGGGCTTCATCGGTGAGGATTCCCGTCCCCAGCTCCTGAGCACTTTCGGACTCGTGGCGCTCCTGGCGGTGGCGAACTGGCTGAACCACCGTTCCCGGCAGGTTACGCCCAGGTCGAAGCTTCGGACGATGCCAAGCAGCCGGTGCTCATCGACTGAAACAGATGCCGTGAACCCTTCATTGGGGTGCGGTTCTTGTGAACCCCAGGGGCGCGCTCGGTCTGAAGGGCGCGCCCCCGATGAACTCCAGGTGCCCAGCCCTTAGMLISYLVAGTLIILVMWALGEMAAANPDSGAFSVYTAKAYGPVAGATVGWLWWLQLVVVIAAEALGAAGLLASIFPALPVWLMAFVFIVVLTAVNLTSVKNFGEFEFWFALLKVAAIVAFLAVGAALLFGWLPGVQSPGLSNFTGDGFAPSGFAGIATALFVVAFAFGGTEIVSVAAAETAEPARSVKKAVRTVLWRILVFYIGAIFVIAAVVPVGSEGLKSPFAAVLEAAGMSGAATAITLVAVAALLSALNANLYGASRMAYSLAERGEAPRLLASVSKARVPVVAVLASVAFGVVTVVLELAFPEMVLGVLLNIVGSTCLLVWTSALLAQLALRLRADREGTDLPLRMPGFPWLTCFGLLILAAIFTVGFIGEDSRPQLLSTFGLVALLAVANWLNHRSRQVTPRSKLRTMPSSRCSSTETDAVNPSLGCGSCEPQGRARSEGRAPDELQVPSPPGPT0000815_713DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_011881443hypothetical proteinATGAATCCTGAACCAGATAATGTGGGAAATGATAAACATGCCCAGAATGGCGAGCTGCATGCCCAAATTTCCTCCTCCTCGGCGGCTGCAGCTACCCCGCCGTCAGCTCTGGCTAAATCCAGCGGGAAAGGCACGAATCCGCGGACCGCATGGCCAACCTGCACTGGACCGGGTCGAAATGGGGAGGTGAACTGCGGTAACCCAACGGTGAGCCAGGCTGTCAAGCTGTGTGCTTCCCACGGCCGTCAGCAACGCCTAAAGGGCGAGTTATTACCCCTGCGGACGCGGAAAAGCAAGGCCCCTTGCGTGGGCCCCGGCCCTGACGATGAGGCCTGTGGCCGTCGCGTCTACTACCGTGAGCCAGGACAGGATGATGGTGTCTGCAAATCACACTACGACCAGCTAAAGCGCAGGGGGTGGTTAAGCGCTATAGCGCCAAAGCCTGCCCCGGTCCCTGACTCCGTCTGCAAGGGGCCCGGGCAGGACGGCTCCCCGACTTGTGACCGGAAGGCCGAATACGGCTCCGGCTACTGCGCCCCGCACGACCGGCAGTACCACAAAACCGGGAATCTCAAGCCAATACGCCGTACCAACACTCCAGACGGCCCCTGCATAGGTCCAGGTGACGGAGCGGCCTCATGCGGGAGGCTAATGACACACAAGTCACTGAAACTATGTGGCGGCCATTACGCCCAACAACGTCGGGGGGATGTCCTGACGCCGCTCAAGAAAAGCAGGAAGAGAGGGCTGTCTACTCCCTGCAAATTTCCTGGATGCAGGTACCTTGATGCCCCAGATGGAAATGGATACTGCCGCCACCACTGGCGCCAGCAGTACTTGGGGCAGGAGCTAGTTCCACTAAAGGGGAATTCGAATCGCGGTCGTCTAGTCCTCGTACGCGATGTGTCTGGCAACAAGTTGTGTCCCTCGTGCGGAGAGTGGAAGCCCGAGGACGACTTCAGCAGGAACTCCAACTCCAGTGACGGACTGAATCACCGATGCAGGCGTTGCCACGCGTCCGCTCAAAAGAAGTCGAAATACGGCATCGACATAGACGAGTTTGAATCGATACTAGATGCCCAGGGAGGGAAATGTGCAATTTGTCCAGCAACTGCACGGGTGGACGGTTTTCGTCTATCCATAGATCATGACCACACTTGTTGCCCTGGAACCCTTTCTTGCGGAAGATGCATTCGAGGAATCCTTTGCCCCGACTGCAATCGCGGTCTCGGCCTATTTCGAGACAACATCAGCTCACTTCTGAGGGCTGTGGAGTACCTGCGAGGTGGGGTAATCCCACATCGTGTTCCCACCCTCGACGTCAACACTCACCAGGCTGGCCGCCAACCACACGAGTCCGGCACTCGCAATGGCGAGCCTGGATCATCCAGCACTGACGATGATGACGACGACGGACTCTCCGGTGCAATGGCTGTTGCCTAAMNPEPDNVGNDKHAQNGELHAQISSSSAAAATPPSALAKSSGKGTNPRTAWPTCTGPGRNGEVNCGNPTVSQAVKLCASHGRQQRLKGELLPLRTRKSKAPCVGPGPDDEACGRRVYYREPGQDDGVCKSHYDQLKRRGWLSAIAPKPAPVPDSVCKGPGQDGSPTCDRKAEYGSGYCAPHDRQYHKTGNLKPIRRTNTPDGPCIGPGDGAASCGRLMTHKSLKLCGGHYAQQRRGDVLTPLKKSRKRGLSTPCKFPGCRYLDAPDGNGYCRHHWRQQYLGQELVPLKGNSNRGRLVLVRDVSGNKLCPSCGEWKPEDDFSRNSNSSDGLNHRCRRCHASAQKKSKYGIDIDEFESILDAQGGKCAICPATARVDGFRLSIDHDHTCCPGTLSCGRCIRGILCPDCNRGLGLFRDNISSLLRAVEYLRGGVIPHRVPTLDVNTHQAGRQPHESGTRNGEPGSSSTDDDDDDGLSGAMAVANANANANANA
D1-29_01189627hypothetical proteinATGAAGCCCAAGAGCGCACCCGGTGATCGTCTGACACCGCAAGCACTTGCGCTCTTGACTGTGAGACATACACCAGAAAGGGCAGTTTTATATCAACTCACACTTTCTGCCGTTCTCAAAGCAAGGTTGAGTTACACATATACACACGACCATCCGGCACTTCCCACATCAAGGTTGAGTTACATATATACACACAACCAACCCGCACTTCGCACAACAAGGTTGAGTTACATATATACACACAACCAACCCGCACTTCCCACAACAAGGTTGAGTTACATATATACACACAACCAACCCGCACTTCCCACAACAAGGTTGAGTTACATATATACACACAACCAACCCGCACTTCCCACAACAAGGTTGAGTTACATATATACACACAACCAACCCGCACTTCCCACGACAGGGTTGAGTTACATATATACACGCGACTTTCAGAGGGCACTAAAGGATTGTAAGTACTTACGCATAAGGCCGTACCTTCAAACCGCTTCTGCATCGCAGGCCATAACGAAGGTCGGGTTTTCAATTTCCGAAGATACTGCTACGTTGATGCTCATCCAGTCGCGACGGACATTTTTCCGGCTACGAAGAAAGGACGGATTCTCTGATGAATCCTGAMKPKSAPGDRLTPQALALLTVRHTPERAVLYQLTLSAVLKARLSYTYTHDHPALPTSRLSYIYTHNQPALRTTRLSYIYTHNQPALPTTRLSYIYTHNQPALPTTRLSYIYTHNQPALPTTRLSYIYTHNQPALPTTGLSYIYTRDFQRALKDCKYLRIRPYLQTASASQAITKVGFSISEDTATLMLIQSRRTFFRLRRKDGFSDESNANANANANA
D1-29_011901113naeIRType-2 restriction enzyme NaeIATGACTGCTAACGTCTTTAATGATCCGTTCGCTCTGTTCAGCGATCCGCAATGGGCCCCAGAAGAACAAGAGAGTGCGAAAGACACTGCTGGATCCCGGAGGCCACGGCGGGCCCGTCCCTCTTCTCCGGACCCGGGCAGACGCCCTGAACAGGCGCTGAAGTCGCGTCCCCGCCGGACTACAGCTGTTCCACCTAATCCAGCCCAGGACCCGGAAATCCACCAGATAAAGGGCTCGATTCAAGCAGCCGACCCAGATGGGGGCCGGTGCGGGCGTGCCATACGAAATGCTCTCGACCAGGCCTACGACGGTCGGCGGACAGGGCGCTGGGATTTGACTCAGCTAACGAAAGCAGAATCAGCCCATATTGGACCACTCATCGAGATCTGGCTTCAACGGGTACTCAATCTCGACGACGGCATCACTACCTCGCTCGAGATCGCCGGATCCGACGTCGCCTGTACATGGAGTGAGAGGCTCGACGGCTGGACACTCGACCGTCCCGTTCCCGAACAACGAGAAGTGCCATACTTAGTGATATGGGCCAACGAGGAGACCTCACGGTTCAGCCTCGGGATCCTTCGCCCCGGCCCTGACTCTCGAGGGGTGGCATCGATGGACCGCGGACGCCCCCGTTTGTCGCAGGTTGGGCTCGACCAGATTCTATGGGTATTCGACGGTTGTGCCCTTCCGGCCAACGTACTTGCTAAACATCCCGAAACGGCCATGGCGGCCGTAAGTCAATCCTCCGGCCAGAAAGCCGTCAACATGTTGTTCCGACACTTACAAGGTGAGCTAGTGCAACATTCCGCCGTCGAGACGGTGGCCCAGCAGATCGACTCCTCGAAGCGGGTCCGTGAGGCTCGAGAACAGCTGAGGAACGAGGGGATCGTCATTCTCGGGCCTTATCATCCTCAACCCGAAATTGCGGCGGCGCTCGGGCTGCCGTCCCCAAGAATGGGAAGCTTCGTGAGTCACCGCTTAGCCGCTATGGAAGCCGGTGAGGTCGGAGCTGGCGCGGAGATCGACGGTGGTAGGTGGCGTCTTGCCGTCCCAGGTGATCCAATTACTGTGGCGCCTGCACTTCCCGTCCTCGGCAAACAAAGAACCTGAMTANVFNDPFALFSDPQWAPEEQESAKDTAGSRRPRRARPSSPDPGRRPEQALKSRPRRTTAVPPNPAQDPEIHQIKGSIQAADPDGGRCGRAIRNALDQAYDGRRTGRWDLTQLTKAESAHIGPLIEIWLQRVLNLDDGITTSLEIAGSDVACTWSERLDGWTLDRPVPEQREVPYLVIWANEETSRFSLGILRPGPDSRGVASMDRGRPRLSQVGLDQILWVFDGCALPANVLAKHPETAMAAVSQSSGQKAVNMLFRHLQGELVQHSAVETVAQQIDSSKRVREAREQLRNEGIVILGPYHPQPEIAAALGLPSPRMGSFVSHRLAAMEAGEVGAGAEIDGGRWRLAVPGDPITVAPALPVLGKQRTNANANANANA
D1-29_011911833hypothetical proteinATGAGTCCTAAAGACACGGCAGGGCAGGACAACACACCGCAGATGCGTCAGCTCAGATTGCAGGAGACCATCTACCCGTTCGGGGTCGGCGCCATCGTCGACATCAAGAGCGAATCGTTCATCGGCATGGATACAGCCACATGGAACGAGAAGACTTGCGAGCCCTTGTCCTGCCCGCCGCTGGAACGGGCATTGGGGGTCCTGCAGCTGCGTCGCCCCCCGACCGCCGGAGAGTTCAGCCGCAACCCGAGCTTCGCCCTGCCCTACCGGCGCTTCCCGAAATGGCGTTTCTGCCAGGACTGTACCCTGATGTCCGACCGGGTCCATCACAAGAACGGCGCCAGTACAAACAACTGCTCCCGCTGCTCAGGACCAATGGTCCCGATGCGTTTCATCGCCGTCTGCAAAGCCGGAGGCCACATTCAGGACGTCGATTGGCGGCGGTGGTCCCATTTCCAGTTCTCCAACGACGAGCAACACAACTGCAGGGACTTCGAGCACCTGGAACTGCGGACCACCCCGGGAGCCGGCGAAGGACTGCGCTCGCTGCGAGTCATATGTCGCTCCTGTGACTCGGAGAGGAACCTCGGGTCGCTGGGTCGGGAAACGTCTTTAGCCGAGGAAGGGTACAAGTGCTGGGGCCTGCAGCCGTGGGAGCCGCACGACACCACCAAGGAGTGCACCAGTGAACTACGGGTCGTTCAACGAGGGTCCACAAGCGTCTACCAGGCAGAAACAGCGTCGGCGATCGACATCCCGGAGGTGGAATCGGCTACACAAGCCGTGCGTAACAGCGTTCTCCAGAACGACATGTTCAAAGGCGTTTTCGGGCAGCAGCAGGGCCCGCTGATCGATCTTGCGGTTCCGCTCATCGCAACCCAGACCGGAGCCCCGGAGCACATGGTCCGCCGACTACTGACGACCGACCCCGCGTCAGACACCTCACACCTACAGAGCACCCTCCACTCAGGAGAATGGGCGGCGTTCGACAGGGCCCTCGCCGGGGACGCGGATGTGACGAATCCCGACTTCGACGTGCAACCTTCCGACTACCCCCGAGAACCAGGCGTACTGCCGGCCCTGGCCGGATTGGTCTCGGACGTCGGGCTGGTCCGTCGACTGCGGGAGGTACGAGCCCTGCGAGGTTTCCGCCGCTACGAGCAGGAGGACTTCACCCGTGTGGACCTCGGAAGTATCGACGGCCTCAAGTGGTACCCGGCCATTGAACAGTTCGGAGAGGGAATCTTCCTACGCTTCGACGAAGAGGCCCTGCGCGCCTGGGAGGCCGAGCCCTCTGTTCAGCAGCGGATTCGGCACTGGATCGATCGAGGGGCGAAGCTTGCGAACCGGAGAGTTGTAATCTCCGATCTCCACCCCCGGTACGTGCTCCTGCACACCTTGGCGCACCTGTTGATGCGCCGATTGGAGTTCCAGAGCGGGTACTCCGCGTCGTCCCTGTCCGAACGTATATACGCCTCGAACGACGGCCCGGACCCCCAAGGCGGTCTCTTGATCTACACCAGCAGCGGGGATGCCCAGGGCACACTCGGCGGTCTTGTCCGTCTGGGCGAGGCACGGTACTTCTCCCGGCTGCTCCTGGGCGCGGTCGAAGACGCAGACCGGTGCTCCAATAACCCGGTGTGCGCCGAGAGCCGGGGACAAGGTATGAACAGCCTCAACCTAGCCGCCTGCCACGCATGCAGCCTCACCTCCGAGACCTCCTGCGAGCGCAACAACATATATTTGGATCGTAAGCTCCTTGTGGGCGATGAGTCCGTGCCGGGTTTCTTCCGCACCGTTCTGATGGATGCTCGGGCGAGCATCCCGGGGTGAMSPKDTAGQDNTPQMRQLRLQETIYPFGVGAIVDIKSESFIGMDTATWNEKTCEPLSCPPLERALGVLQLRRPPTAGEFSRNPSFALPYRRFPKWRFCQDCTLMSDRVHHKNGASTNNCSRCSGPMVPMRFIAVCKAGGHIQDVDWRRWSHFQFSNDEQHNCRDFEHLELRTTPGAGEGLRSLRVICRSCDSERNLGSLGRETSLAEEGYKCWGLQPWEPHDTTKECTSELRVVQRGSTSVYQAETASAIDIPEVESATQAVRNSVLQNDMFKGVFGQQQGPLIDLAVPLIATQTGAPEHMVRRLLTTDPASDTSHLQSTLHSGEWAAFDRALAGDADVTNPDFDVQPSDYPREPGVLPALAGLVSDVGLVRRLREVRALRGFRRYEQEDFTRVDLGSIDGLKWYPAIEQFGEGIFLRFDEEALRAWEAEPSVQQRIRHWIDRGAKLANRRVVISDLHPRYVLLHTLAHLLMRRLEFQSGYSASSLSERIYASNDGPDPQGGLLIYTSSGDAQGTLGGLVRLGEARYFSRLLLGAVEDADRCSNNPVCAESRGQGMNSLNLAACHACSLTSETSCERNNIYLDRKLLVGDESVPGFFRTVLMDARASIPGNANANANANA
D1-29_011923159hypothetical proteinGTGCCCACAATGCATGAAGCCCTCGCACGCCAAAAATGCGTCGTCGAGCACCTCGAACAGCACTACCTCGGCCCGCTCGGCGGATCGGAGGAATTGCTCAGGAACAAACCAAATGCCACCTACCTCGTCGGAGTCCTCTACCCAGCCGGCATCGGCGCCGGACCCGAGGACGAGGAGGAGAGGGTACAACTTGCTGTGGAGGCGACCACGGCCGAGGACGGCACGGACGGCACCGAGGAACTTTCCATCGACATGGCGAACGCCTACCAGCCCTCCTCCAGCGCCCTGTCGTTCATCCACGATGGAGACTCCGTCGACATCGACCTGCGATATGCAACCTACACGGAGGAGAAGACCGACACCCACACCGCCTGGCGGCGCCACGGCCACCACCTCACGGGCATCCACTGGAAGCAAGGAATCGTCTCGGGGGTCCCAGGGGACGGGCGCGTTGCCGTGGACGTACGATGCCGACCCTTCGGCCAGAACAGTTCACTGGTCACTGTGGCCATCAGCAACACCCGCGTAGCCCCGAAGAACGACGAAGGAGTAGGACAGCTCCACACAGAGGACGCCCTTTACCAGGTCGGTATGACCGTGCGCTCCGTCGGGGGCCGTATTCTGCCCTACCGGTCGGTCGAAGACCTCCGACTCGATCCAGAACAAGAAGAACTGGCGGTACGTTACCGACACCGACAGGTCTTTGCAGTCGGCCACGGCACCTCGGTGCGCTGGGACCACGACGACACTGGCGGGTGCGCCTCCGTGTCCTTGGACCCATTACCGCGCTACACCGTCCCGACCGTCGAGGCCAAAAAGAGTACCGCCGACATCTTACGGCTGGGCCGCCTTACCTGGATCCAGGACGACACCGCGAACGTCCTAAGCGAACTTCGGACCTTCGTCGACGACTACCGACACTGGACCCAGGAACAACAGGACCAGGCACAAGGGCTCCCCGACCACCACCGTCCGGCGGCCGGTCGGATCACCGACCGACAGAGCGACGCCGTTGAGCGCATGCACGAAGGCATCACCCTGCTCGAGGAATCCTCAAGCGCCAGGGATGCCTTCCGTCTGGCCATGGCCGCTATGAACGAGCAGATGCTTCAATCGAATCGGTCGAAAGCCACCGGGGCTGAGGAGGACACACCGCGGCGCGAACCGACGTGGCGTCCGTTCCAGTTGGGCTTCATCCTCGTCGCCCTCACCAGCACGGCGGTTGCGGACCACCGGGACCGGGACCTCGTGGACCTGATCTGGTTCCCCACCGGTGGAGGCAAGACCGAGGCCTACCTCGGGTTGGCGGCCTTCGAGATCTTCCGGCGCCGCATCGAGCACGGGATCAGAGGGGGCGGTACAGCCGTCATCACCCGCTACACCCTGCGCCTGCTCACAACTCAACAATTCCAACGCGCCGCGACCCTCGTGTGCGCCATGGAACGCCTCCGGGTAACCGATCCACTTGCCCGTGGCATGGCACCGTTCACCATCGGCCTCTGGGTCGGTAACGCCACCACCCCCGGCACGCAGAAAGAGGCGATCAACCGCTTGGAGGCCACCAGGCGACGGGAAATCCCCGACAACCCCTTCCAGCTGACCGAATGCCCCTGGTGTGGGCACCGCATGATGCCTGCGACCAGATCCGAGAACGCCGAGGCCTACGGGGCTGCCCACTCGGCCGGAGACATCTGGCTCCGCTGCCCGGACCGAACCTGCCGCTTCCATGACCGGCTTCCCGTCGAGGTCGTCGACGAGAGGATCTACAAGTACCCGCCCACCATCTTGTTGGCGACCGTCGACAAGTTCGCGCGACTGCCCTTCAAGCAAGAGGCGGGGGTCCTCCTCGGCGCTGGCGCCAAGGCGAACGAACCGCCGTCGCTTATCCTCCAGGACGAGATGCATCTGCTCTCCGGCCCCCTGGGCACCACGGTCGCGATTTATGACGCTGCCGTCCTGGGCATCATCGGGGAAGTCGGCGGGCGCCCGAAAATCGTCGCCTCCACCGCGACAATCCGTTCCGCCGATGACCAGGTCAAGGGCCTCATGGCGCGGAAGGTCCAGCTGTTCCCGCCCTCAGGGCTCAACGAGGAAGACAGCTACTTCGCCCGCCCCACAGAGGACCCCAACGCCCCGGGCAGGATTTACATCGGGCTCATGCCTCAGGCCTTTACTCAATCTACCTCCGTGGTGCGTGCGATGGCCGCCATGCTCGAAGCACCCGCCCGGGCCGCACAAAGACCCCAAGATGTGAGGGGCGCCGACGCCTACTGGACGGCCGTGGCCTACCACAACAGCCTGCGCGAACTCGGGCGGACCGTCACCCTCATCCGCGACGACGTTAACAGTCTGCTCGCCACCCGACGGGGACCCGAAGGCCGTACACGTCAAATCCGTGGTGACGGGATGGTGGAGCTGACTAGCCGCGTAGATGCCGAGGACCTTCCCAAGGCCCTGCAACGACTCGGACGCAGTCTCGACGACGGTGACGCTGTGGACGTTGTCGCCTGCACGAACATGCTCTCGGTCGGTATCGACGTCCCACGGCTGGCCCTTATGCTCATGAACGGTCAACCCAAGACCACCTCGGAGTACATCCAGGCCACCAGTCGCGTCGGACGCGGCGAAGTCCCGGGTGTCATCGTCACGCTGTACCGTGCGACCCGCCCCCGCGATCGCTCCCACTACGAATCGTTTCTCGGCTACCACCAAGCGCTCTACCGGAGCGTGGAACCGACCAGTGTGACCCCATGGTCCGCCGCGTCCAGGCACCGATCCTTGGCAGCGGTCTTGGTGACCATGGTCAGGCACCTGAGCCCTTGGCGTGAGGACTCCCAGGCAGTGCTCTTCCGAGCCGATTCCAACGTGGTGCGTAACGTCCGGGAGACGATTCTGGAGGTCGTTGAACGTTCGGACCCCGACGAGTACCAGGCCACAGAAGAGCATCTCGACCGGTTAATCGACCAATGGCGCATCCGCACCTCACCGGATCCCGATACCGGAGTATCAATGCTGCGATACCAGCCCTTACGGGCACAACACGACGAGCCAGCTCTGATGCGCGCCTTCGACGAGGACCGAGAAGGATGGGCGGTCATGAACTCGATGCGTAGCGTCGATTTGAACATCAACATGAAGATCATCGGGGAAAAGGCATGAMPTMHEALARQKCVVEHLEQHYLGPLGGSEELLRNKPNATYLVGVLYPAGIGAGPEDEEERVQLAVEATTAEDGTDGTEELSIDMANAYQPSSSALSFIHDGDSVDIDLRYATYTEEKTDTHTAWRRHGHHLTGIHWKQGIVSGVPGDGRVAVDVRCRPFGQNSSLVTVAISNTRVAPKNDEGVGQLHTEDALYQVGMTVRSVGGRILPYRSVEDLRLDPEQEELAVRYRHRQVFAVGHGTSVRWDHDDTGGCASVSLDPLPRYTVPTVEAKKSTADILRLGRLTWIQDDTANVLSELRTFVDDYRHWTQEQQDQAQGLPDHHRPAAGRITDRQSDAVERMHEGITLLEESSSARDAFRLAMAAMNEQMLQSNRSKATGAEEDTPRREPTWRPFQLGFILVALTSTAVADHRDRDLVDLIWFPTGGGKTEAYLGLAAFEIFRRRIEHGIRGGGTAVITRYTLRLLTTQQFQRAATLVCAMERLRVTDPLARGMAPFTIGLWVGNATTPGTQKEAINRLEATRRREIPDNPFQLTECPWCGHRMMPATRSENAEAYGAAHSAGDIWLRCPDRTCRFHDRLPVEVVDERIYKYPPTILLATVDKFARLPFKQEAGVLLGAGAKANEPPSLILQDEMHLLSGPLGTTVAIYDAAVLGIIGEVGGRPKIVASTATIRSADDQVKGLMARKVQLFPPSGLNEEDSYFARPTEDPNAPGRIYIGLMPQAFTQSTSVVRAMAAMLEAPARAAQRPQDVRGADAYWTAVAYHNSLRELGRTVTLIRDDVNSLLATRRGPEGRTRQIRGDGMVELTSRVDAEDLPKALQRLGRSLDDGDAVDVVACTNMLSVGIDVPRLALMLMNGQPKTTSEYIQATSRVGRGEVPGVIVTLYRATRPRDRSHYESFLGYHQALYRSVEPTSVTPWSAASRHRSLAAVLVTMVRHLSPWREDSQAVLFRADSNVVRNVRETILEVVERSDPDEYQATEEHLDRLIDQWRIRTSPDPDTGVSMLRYQPLRAQHDEPALMRAFDEDREGWAVMNSMRSVDLNINMKIIGEKANANANANANA
D1-29_011931611hypothetical proteinATGAGGTTGATCCCACCGACCGAGTACATCGACGCCCAAAGCCGCGCCGAACGCAAGGTCGCCGAACACCTTACGGCTATCCGCTCCGATGACGGCGTGGCCTACCACTCGGTCCACCTCCCAACGCACCGCAAACAGGTGATGGGCGAGGCGGACTTCGTGGTCCTGTGGAAGGGGGCGATCCTCGTCCTGGAGGTCAAAGGAGGGCGAATTGGGCGGACCGAGGATGGCGTCTGGTACTCCATGGACCGCCAAGGCACCCCCCATCCCCTACGACGCAGCCCCTGGGTGCAGGCCAAGGACGCCGCGTTCGCCCTCCTGGACATCCTCACCAAGCACACGGACGAGGGCGGGTGGCCGTTCGCCTACGCCGTGGTGACTCCCGACCAGAACCTGCCCCCGGACACGGAATGGGTCCCGCAACAACACATCGGATTGGACAGGATGACCCCGGCGGGACTGGAACGCAGCCTAGACGCGCTGGCCCGCTTGGCCCGCACACCACCGGATGACCCGGAGCACCCCAGACGGCAGGCTCTGCGACCAATGGGGAATCTCTCAAGGGTCATCACCCACCTGCGCCGAGAGGTCGACGCCATGCGCACCGTCCCGGACACCGAGATGCTCATCGACCAGAACATCGTCACCATGACCGACGAACAGGTCGACGCCATGCGGGCCTTCGAGCGCAACCGACGGGTCCTGGTCCTGGGCGGGGCCGGGACGGGCAAAACCGTCGTCGCGATCGAAGCGGCACGACGGGCAGTGGCAGACGGCAGCTCGGTGGCCTTCATCTGCGGCTCACCCGGCATCATCAAGTTCGCCTCGGAGCTGCTGGACGACAGTCCTGTCCAGGTGGTCGCCTTCGATGCAATCCCCGAGACCCCTATCTTCGACGTCGTCGTCGTCGACGAAGCCCAGGACCTACTGAATCTGGAGGACATGAGCCGGCTCTCCGAATCCCTGCGCGGCGGGTTGCAGGAGGGCCGGTGGTGGATTTTCCTGGACCCCAACAACCAGACCCACCTCAGCGGGGTCTTTGACGAAAGCGTGTACCAGGAGATCCAGGCCGGTGCGATCATCGTCGACCTGACCAGGAACGTCAGGAACGCCCGCACCGTCGTCACCTCGGTACAGTCCCATCTCGGCGTGGACCTGGGAAGCCCACGCATCGGAGAAGGACCGGATGCGTCGATCGTGCAGGCCCGCACCCCTGACGAGGCCCACCTTCTCCTGGACGGGCGCCTGACCACCCTCCGGGACAAAGGTGTCGCCCGGAGGAAGATCAGCATCATCAGCGCCGCCACCGACCCCTCAACGTCGATCCTTACCGTTGAGGGCCGTATGCCGACCACCTACACCGCTGGTAACCAGTCCTACGAGGTGGTCACTGCAGCCGACATCAAAGGCCTCGAACGCGAACACGTCATCGTCGTGGACGTCGAGGACCTAGACACAACCAGGGGTAGGGCCGGTTCCTACGTCGCGATGACCCGCCCCAGGTACTCCCTTTACGTCATCAGCTCCCCCGGCGCCTACCAGATCATGGGGCGGAACGCGCTCCAGTACCTCCAGCAACAAATAGGAAAGGGCGGTGCCCACAATGCATGAMRLIPPTEYIDAQSRAERKVAEHLTAIRSDDGVAYHSVHLPTHRKQVMGEADFVVLWKGAILVLEVKGGRIGRTEDGVWYSMDRQGTPHPLRRSPWVQAKDAAFALLDILTKHTDEGGWPFAYAVVTPDQNLPPDTEWVPQQHIGLDRMTPAGLERSLDALARLARTPPDDPEHPRRQALRPMGNLSRVITHLRREVDAMRTVPDTEMLIDQNIVTMTDEQVDAMRAFERNRRVLVLGGAGTGKTVVAIEAARRAVADGSSVAFICGSPGIIKFASELLDDSPVQVVAFDAIPETPIFDVVVVDEAQDLLNLEDMSRLSESLRGGLQEGRWWIFLDPNNQTHLSGVFDESVYQEIQAGAIIVDLTRNVRNARTVVTSVQSHLGVDLGSPRIGEGPDASIVQARTPDEAHLLLDGRLTTLRDKGVARRKISIISAATDPSTSILTVEGRMPTTYTAGNQSYEVVTAADIKGLEREHVIVVDVEDLDTTRGRAGSYVAMTRPRYSLYVISSPGAYQIMGRNALQYLQQQIGKGGAHNANANANANANA
D1-29_011944722rhlE_2ATP-dependent RNA helicase RhlEGTGTCGCACGATTTTTTTTGGAACGAACCAGATCAAGTGCTCCTTGAATTCCTGGAGACATGGCGCTCGGTGGTACCCCGGATCTACAGCGAAGATCCCAAGATGCTCGAGGAGCATGTGGGGCAAGAAAACTCTTTCCGCACAAGTGGCTATTCACGTCGCCAAGTCACTGAGCTGGTCCAAAACGCGGCCGACGCGATTCTTAGGTCGGGAAGAACGGGAAAAATCGAGCTTGTCCTAACCGACGGCTACCTCTACTGCGCAAATGACGGTCAGGAGTTCCAGCAGGCTGGCATCGATGCGATCACGCACGCGTACCTCAGCGACAAGAGGGGCGAAGAAATCGGTCGCTACGGCCTTGGCTTCAAGTCGGTCCTCGCCGTGACGGACAACCCGCAGGTCTTCAGTCGTTCGGTCAGCTTTCAATTCGGGGCACCGGAGGCTCGGGCGATCTTGGCTGGGGTTGGCGCGCCCGAGAAGAACCTGCCGATACTTCGCCTGCCCACTGCCCTGAATGCGGTGGAGGCGATCGACGACGACGTCATTTTGCAGGAGCTGACGGAATGGGCGAGCACGGTTGTGCGTCTTCCGATACAGCAGCACGTGGAGCTGGAGGAACAACTCCTCGGTTTCCAGACTCAGTTTCTGATTTTCACACCCCACGTCGAGGAATTGTCTATCAGCATAAGACGTGATGGTGCCGACCAGGATGTCCAGCACTTGTGCCGATCATCAGGGCAATCGGTTTATGAACTGACGGGGCCCCGACTCGGTACCCAGAAATGGGCTATTTTCAAGAGAGAGCACCAACCGTCATTGGCGGCACGACGAGAAGTCGACGATGCAATCGCACGGAAATCGATTCTCGTCACCTGCGCTATGCCCCTGGACGCGCAGGGCAAAGAAGGCGAGTTCTGGGCCAACTTCCCACTCTCCGAACGGACCTCCGCCGTAGGGATCTTCAACGCCCCTTGGGCGCTCAGTGAGGATCGCAGTCACATTCTGACCGAGAAGAAGTACAACGCCGAGATTTTCGAGACGCTGGCTCAACTGTTCGTCGATTCCCTGCCGAACCTCCGGACACAGGAACAACCCGCGGGGCATCTTCGCTACCTCCCCAGTCGACCTCAGGAATCCTACTCCCCAGCGGATAAAGCCCTGATCTCACACATCCACCGCAAGGCTTCGGGAGCGGCTCTTATCCCCGACTCCATGGGCCGGCTACGCCACGGATCCGAAATCATCGCCTTGGACTATGCTGTCGTTCTCCCAGCGAGGGCAATGGCCGAGTGGGCTGCTGCTCCTCATACTCCTGAGAATGTGCCGCACGTGTCGTGTTATCAAGATGAGAGAAGCGGGGCTATCCGTGTACGCCTGCGGGACATTCATCGTAGAGCGTTCGCTGATGCCCGGGCCCTTCTGCAAAGAGATCTTCCCGCGTCCAGCAATGAGCTCGACGCGTCAAAGTGGTTGAGCATGCTCGGCGACGTCGACGATGTGAGGTATTCGGGGACGGCGCTGGAGATCGTTTCGGGTATTGGCTCGGACACCATTCGTGGAATCGTGGCCTCCGCTCGGATCGTGCCCACGGACAGAGGTCGGCGGGTTGCTCTCAAGGAGCATGGACAGGTTCATCTACCTCCTGAAGGCGGCGCCGAGGTGTCGGGGTATGAACTGGTGGTGGATGACATCGTCGCGAGTGCGGTCTGTCGTAGGGTCCTAGGGCAGTTCGGGTTCAAGACGTTGGATGCGGAGCTCGTTTTCGCGTCGACGCTCTCAACTATGGGGCTTGAGTCGACGGATAGTCAGTGGGAGGACTTGTGGGACCTATCGCTGAATCTGGAGCCGCGCCGGTTGGTGCTGCAGTTGGAGCAGTGGCGGCGTGAGGGCAACATCGTCAAGGTCAGGACGAAGGCTTCGACCTGGCGTGATAGTGAGGAAGTCTTCGCGCTTCAAAGCCCTGCCGTAAACCTTCCCTGGCCGGATCGTGTACTGTCGACTAATTTCGCCACCGAGGACGTCATCAAGGTCCTGGGGATTGTGACGGGTTTCTCGCCCCGGTACCCGGTGATCGAGGAACCCGAGTTCGAGCAGTATCGTGCCTGGGCGGTGGACGAGGTTCGGAAGGCGCATGTCGAGGACAGGGATTCAGCGCCGCAGGAGTGGTATTTCGCGGAGGAACGAGGCGCAGGGCCCATAGGTCTGCTTCATAACCTGTCCGACCTTGGCTCCGGCCTGACCGATGACCTCGTGAAGCTCACCGAAGCCCTGCTCCGGGTGAATGCGACCCGAGAGTGGACCCTGCACAGCCCTGATGGGTCAGAGACCTTCTCAGTGACAGCCCCGCACCTGTGGGCTGTGCGGGGGTGGGGAGTGGCGGAAACCTTGCTCGGGGCCGTCGTACCCGCAGCACGCGTGGTGTCACCTGTCCTGCAAACGTTGTTCCCCTGGGTTCCTCTACCCAAGAACTCACACTTCGGGATCCTGCCGTTGCCCGAATCCATTGAGGACGTCGACATCGACATCCTCGTGGACGGTATGAGAGCAGGCCGGGGCATGCAGGCGACTGGTGCACTGACCACTTCTCTTTTGACCTTCCTGTCCGCGGTCCTACCGAGGATCCGCGGAGAACAGCAGTGGACAGGTGAAGTCCCGGCCGTACGGGGCCAAGTGATCGATTTGGTCCCGGCACGGCAGATCTTCATTGCATCCGATCAAGAGCAGGTCAACGTCCTGCGGCGATCGAAGAACCCCTACCTCTTCGTTGAAGACGAGGCCCTCCGCGACGTCCTCTTCGAGCACGCGGACTTTCAGGATGCCGCAAGTGCCATCCGGCTCGAGGTAATCGCGCAGCAGCCGGCCGAGGCGGTGTTGCTCACGGACTGTGTGCCGACGTTGCAGGGTTTGTTGGACCGGAAGGATCGGCGGCTCACGATCACGGAGTGCGCTGGGATCGTGGCGCGTCAAATGACGCCGACCGGTGCGCAGGAGCAGCTCCTGGGGCGGGTGTTTCATGACGGGACGATTTACGTGACAGGTGATCCTTCCGACCGGAGGGGTGTACATGACCTGTTGACCTGGATCAATCAGGAAGTCGGTTTGGGGCTCAGTGCCGCGGATATCGACGGTGTGGTGCAAGCGCTCGCTGCTGCTGATGCGAATGAGGTGCGAGAACGGTGTCGTGCCGCGGTGTCGAACGAGGACCGGTTGAGGGTGTTGGCGTCGCCGCAGCAGCTGGATGCGAAGCTCCCGGATGGTCTGACGGGGACCCTCGTTGCGATGGGGACCGACGTGCGAGCACAGGACATGGCGCGGCTGTTCCTCGATTCGTACGGTACCGACAGTTTGAGCTATATCGCCGATGAGTTGAGGGCCTTGGGGTTGACGCCTCCTGAGAAGTGGGGTGGGTTGGGGCCAGCGCGTCGGTTCGTCACGGACTTGGGGTTCACCCCGGATTTCGCGGGGACGTCCAAACCATCCCGACCAGCGACGGAGACCGTAATGGGTAAGCCGGGCCTAGGTGCGTTGCACGATTATCAGAAAGAAGCTTTGCAGCAGCTTCGGTTCTGTCTGCGATCGAATCCCGGCCACGCCGATAAGGCTTTGTTAGAGTTGCCGACAGGTGCGGGGAAGACCCGGGTGGCTGTGGAGTCGTTGGTCATGGCGTTCTTGAACAACGATTTTGCGGCTGTCGGTCCTGTGTTGTGGATCGCTCAGTCCGAGGAGCTGTGTGAGCAGGCGATCACGACGTGGAGCGAGGTGTGGCGGGAACTCTCCGACGAGAGGTCGTTGAGCATTAACCGGTTCTTCGGGACGCACCGGCCTCAGGCACCCGAGTTGGAGTTGAGCGTGGTCGTGGCGACCGACGCGATGCTTTACGAGCACATCGACGATGATTCTTACGACTGGATCTATGCTCCTGTCGCCGTGATCGTCGACGAGGCACATCGGGCGGCGGACAACAAAACGTACAGGAGGCTCTTCCAACGTCTGGGGGTGGATCTCGGGAACCGCGAGCGCCCTCTGATCGGCCTGTCGGCCACTCCTTACCGAGGAAGGAACGCCGAGGCGACTGCTTTGCTGGCCAGACGGTTCGGCAACAACCTCGTGCAGACGTTGGGCCCCGATCCGATCAAGGAACTCCAGGATCGCGAGGTTTTGGCACGAATCGATCATCAGGTCCTTCCGGGTGCCCGGCTGACCCTTGATGATTCGGAGAGGAATCGCAACAACCTTTCCCAGGACACGTTGGACAAGGTGGGTGCGGACCGGGAGCGGACCAAGGGCATCGTCAAGCACATCCTGGCATTACCCGAGGACTGGCAGGTCCTGGTGTTCATGCCCTCGGTGCTCTCGGCCCAAGTCCTGGCAACGATCTTGAAGAGAGAGGGCGTCCAGGCCGCGTCGGTGAGCGGCCGGAGCTCACGTGGTGAACGCTCGAAGGTAATCTCCGATTTCAAGCGCGGGTCCCTCCAGGTCCTGGTCAACTGTGACCTGTTGACGCAAGGCTTTGACGCACCGCAGATCCGAGCCCTCTACGTCGCCCGACCGACGTTGAGCGAGAGCCAGTACGTGCAGATGGTCGGTCGTGGACTGCGCGGGCCCAAAAACCGTGGATCCGAACGATGCCTGGTGGTGAACCTCGAGGACACCATCGAGAACGTCGACGTGGACTTGGCATACCGAGGATTCACTCAGTACTGGGGAGTTGAGGTCTCATGAMSHDFFWNEPDQVLLEFLETWRSVVPRIYSEDPKMLEEHVGQENSFRTSGYSRRQVTELVQNAADAILRSGRTGKIELVLTDGYLYCANDGQEFQQAGIDAITHAYLSDKRGEEIGRYGLGFKSVLAVTDNPQVFSRSVSFQFGAPEARAILAGVGAPEKNLPILRLPTALNAVEAIDDDVILQELTEWASTVVRLPIQQHVELEEQLLGFQTQFLIFTPHVEELSISIRRDGADQDVQHLCRSSGQSVYELTGPRLGTQKWAIFKREHQPSLAARREVDDAIARKSILVTCAMPLDAQGKEGEFWANFPLSERTSAVGIFNAPWALSEDRSHILTEKKYNAEIFETLAQLFVDSLPNLRTQEQPAGHLRYLPSRPQESYSPADKALISHIHRKASGAALIPDSMGRLRHGSEIIALDYAVVLPARAMAEWAAAPHTPENVPHVSCYQDERSGAIRVRLRDIHRRAFADARALLQRDLPASSNELDASKWLSMLGDVDDVRYSGTALEIVSGIGSDTIRGIVASARIVPTDRGRRVALKEHGQVHLPPEGGAEVSGYELVVDDIVASAVCRRVLGQFGFKTLDAELVFASTLSTMGLESTDSQWEDLWDLSLNLEPRRLVLQLEQWRREGNIVKVRTKASTWRDSEEVFALQSPAVNLPWPDRVLSTNFATEDVIKVLGIVTGFSPRYPVIEEPEFEQYRAWAVDEVRKAHVEDRDSAPQEWYFAEERGAGPIGLLHNLSDLGSGLTDDLVKLTEALLRVNATREWTLHSPDGSETFSVTAPHLWAVRGWGVAETLLGAVVPAARVVSPVLQTLFPWVPLPKNSHFGILPLPESIEDVDIDILVDGMRAGRGMQATGALTTSLLTFLSAVLPRIRGEQQWTGEVPAVRGQVIDLVPARQIFIASDQEQVNVLRRSKNPYLFVEDEALRDVLFEHADFQDAASAIRLEVIAQQPAEAVLLTDCVPTLQGLLDRKDRRLTITECAGIVARQMTPTGAQEQLLGRVFHDGTIYVTGDPSDRRGVHDLLTWINQEVGLGLSAADIDGVVQALAAADANEVRERCRAAVSNEDRLRVLASPQQLDAKLPDGLTGTLVAMGTDVRAQDMARLFLDSYGTDSLSYIADELRALGLTPPEKWGGLGPARRFVTDLGFTPDFAGTSKPSRPATETVMGKPGLGALHDYQKEALQQLRFCLRSNPGHADKALLELPTGAGKTRVAVESLVMAFLNNDFAAVGPVLWIAQSEELCEQAITTWSEVWRELSDERSLSINRFFGTHRPQAPELELSVVVATDAMLYEHIDDDSYDWIYAPVAVIVDEAHRAADNKTYRRLFQRLGVDLGNRERPLIGLSATPYRGRNAEATALLARRFGNNLVQTLGPDPIKELQDREVLARIDHQVLPGARLTLDDSERNRNNLSQDTLDKVGADRERTKGIVKHILALPEDWQVLVFMPSVLSAQVLATILKREGVQAASVSGRSSRGERSKVISDFKRGSLQVLVNCDLLTQGFDAPQIRALYVARPTLSESQYVQMVGRGLRGPKNRGSERCLVVNLEDTIENVDVDLAYRGFTQYWGVEVSNANANANANA
D1-29_011951116hypothetical proteinATGACCTTCGTGCAATCGGATCCGACTCCCTCTGACGCTCATATGGTGGATCTCTTCGCCGGTCCGGGTGGACTAGACGTCGCTGCGCGCTGGTTGGGTTTGTCCGTGGCTGGTATCGAGTGGGACGAGAATGCCTGCGCAACCAGGCGGACGGCCGGACTGGGAACGGTGCAAGGTGATGTCAGGGAGCATGGGCCGTCCGAGTTCCCCAATGCGACTATCCTCGCCGGGGGCCCTCCGTGTCAGACGTACACAGTGGCCGGAGCCGGCGCTGGCCGTAAAGCGTTGGATCAGGTCCTGTCTTTCCTTACCCGTATGGCCGACGGGGACGACGTCACGACCGAATTAGGTGCGCTGGACGATGAAAGAACCGGGCTGGTCCTGCAGCCGCTGCGATGGGCACTGCAGGCCCACCAAGCGGGTAACGCCTACGAGGTGATCGTCTTGGAGCAGGTGCCGGCCGTCCTGCCAGTCTGGGAGGCTATGGCCACGGTCTTGGAACCCCTGGGATATCAGACGGTTACCGGCATCCTCCATGCCGAAGAGTACGGGGTTCCGCAGACCCGCCGCCGCGCGATCCTGATCGCGAACCGGTACCGGACGCCCGCTCTTCCTGTCCCAACGCACCAAAAATTTAGAAGAAAAGCGGTAAAGGAATCCACGAACCAATCGCCGTTGCTGCCGTGCCGCAGCATGGGCGAAACGCTGGGCCGACCACAGCCCTTCGAACTGGTCTCCAACTATGGGACTGGGGGCGATCCCAAGGCCCGCGGCCGGAGAACTTCTAAAGAACCCGCGTTTACCGTTACTGGGAAAGTCTCCCGAAATCGCCTGTTTTCCGATGAAGGTGAACTTGATCGCCTTAAGTTGTCAGAGGCTGGCCGGCTTCAAACTTTCCCAGCTGACTACCCGTGGTCCGGTAAAGACATCTCCCAACAGATTGGTAATGCCATTCCACCCCGGTTGGCCGCTCACGTCCTTGCGGCAGCGCTAGGTCGAGAACTCCCTGCAGATTTCCTCGACTCGATGACGAGAACAAAATGGACGGACATTGACGATGAGGCCATAGCTAGATCGCATCTCATTGCGGATGCCTACGATGCAGTGATGGTGTGAMTFVQSDPTPSDAHMVDLFAGPGGLDVAARWLGLSVAGIEWDENACATRRTAGLGTVQGDVREHGPSEFPNATILAGGPPCQTYTVAGAGAGRKALDQVLSFLTRMADGDDVTTELGALDDERTGLVLQPLRWALQAHQAGNAYEVIVLEQVPAVLPVWEAMATVLEPLGYQTVTGILHAEEYGVPQTRRRAILIANRYRTPALPVPTHQKFRRKAVKESTNQSPLLPCRSMGETLGRPQPFELVSNYGTGGDPKARGRRTSKEPAFTVTGKVSRNRLFSDEGELDRLKLSEAGRLQTFPADYPWSGKDISQQIGNAIPPRLAAHVLAAALGRELPADFLDSMTRTKWTDIDDEAIARSHLIADAYDAVMVPGPT0020015_4521DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0020015-dcm-K00558NANA
D1-29_011962793hypothetical proteinATGCGCGCACCTAAGAACGAAGCCACTGGCACCTCGGGCCAATCATTCGTAAAAGGTGAATTCGAAGAGTTGGGGTGGGGTGCCGTCCCCAACCCAGAGCACGACCTCGGTACAGACCTGTGGCTGATGGCTAGAGACGAGAACCGATTCGACTTGGGTGCACTGGTCGGTGCTCAAGTCAAGACCGGAGACTCCTACTTCAAGAGCGCGAAGACGGACGAAGGATCCGGCGAGGTCGTTGGCTGGTGGTATGCGGAGGAGGACGACAGTCACTTTGACTATTGGAGTGAGCACACCACCCCGCACATCCTGGTGCTGCGTGACAAGAAGTCGAAGACCTCGCACTGGGTCCACGTGACCTCGGATGCGATTCAGTCTACGGGCAAAGGAAACAAGATCCTCGTTCCTGCTTCGCAGACGGTCGATGAAAGCAGTCGGGACGCTCTTACCGCCGTAGCAACAAGTCCCTCCAAGGCGGTCAGCCTAGATGGCAGCGCATGGGGATCCAACTGGAATGTGCCGCAGTCTGACCGACTGAGGTACGCGCTCATGGCGCCCAGATTGGTTGCACCGCATCCCAACAAGGGCCAAGTGCTCCCGGATGCAACAGAAGCCTTGGCGATGCTGATGCAGGGCCGTTTCAACGAATTGCGGGACGTTGCGTCAACTACCGCGCGCGAAGCAGCCGAAAGTGTCTCTGATGCCAAGTCCTGGCTCTGGGACCTGTTCGATGCCATCTGGAGTTGGGCTGTATCGGGCGACCTGTCCAACCTCGAAGCTCTGCCCGAAACAGCGAATGAGCACTACGTCGTGGCGGGAGCAGTCGCGAGAGCAACGGCCCTGATTGAATACGGGCGACCAATAGACGCTCTCGCTGCCGTGCGTGCAGTCGAGTCTCGAGGAGGTCTGGGCACGACCGATATTGCATGGCTCAAGAGCCATGAGGCGCGCTGCCTGGTCGAGCTGGGCCATTTGGAAGAGGCTCGAGACCTCGCTCTTGAAGTCCAAAAACTTCGAGCCATAGCTCCCAGCGATCCCACCGCTGGAGCGCTTGTCGCCGTAACCAGCACGCTCGTATTCGACATGAGTGGGTTTGGCATGCGCGATATCGGCGAACTCATACAGTCCATTGATACCTCAACCCGCTGGTGGCGTTCACAGACCATAGCGAGTGGGCTTGAGAAGCATTTCGATGGACAGTTCAAGACATGGGGTCGTGATTCGAGCGTCACCTGGGCTGCTGCCGATACAGTTTGGACGAGCCTTCGCTCGGCGACGCTCCTGGCCGGTTTCAGTGCGGATCACGGTGGCTGGCGAAACGCCATGTCGTTGCTGGCGCGTCGAGAACTAATGAAGGCGTGCGCGACGGACACCACTATCGTGTTGGAGTCGTTGACGGACTTGTTCAGGGCGGGTGCCAAGAAAGAGTTGGTGCTGGCAGTTCGCAGGCTGAGCGACGACGGTCCTGTTGAGCCGCTCGTCACCCTCATGGGCCGACTCGAACTGGAGTTAGCTCCGAGGTCTTGTCTTGCTTCGGCGCTTGCATTCGTGCGTTACGCAGGAGACTTCGCCGACGTCGCGGACGCCGACCGACACGCAACCTGGCTGCTCTCGTCACTTGCGAATCCTGACGAGCTACGTCAGCGGCTGAAGCCGACCTTCCTGATCGAAACTGACTTGCTTCAGTCTCTTGGTGGGTTGATGCGAAGCATGTCTCCGACGATGAAGCGTCGGGTCATGGACCACCTAATTAGGCTCCCGGTCATCGAAGACCAGAGTCTGGCAAGCGGTTACGGACGCATAGTTGCTCTGGTAGGTGACGATCAATGGTCATCAGAAGATCTCAGGCAACTATTTGCACGAACCAACGACAACTGGGAACTTCAGGACGACATTGATGGCGTCCTCGCAACCAACAGGCCGGACTTCCGGACTGGCCTTCTTACGAAGATCAAGCAGGGTGATCTGACTGCCCTAGGAAACTTCGGCAGGGTCACTGACCTTCCCGAAGACGCCGCTGAGGCGGCGATTTCGCGTCTGGTGACTTCCATCGACAATCAGGTGAAGCAAGCTCAGGGCGGGATGCATAGCTTAGGCGGACCTGATCTCGGACAGGCGCTCGTTGTCCTGAATGCCTGGCACCGCGATGTAGCACGGTGGGACTCCGTCGAGGCGTTGCTGACTGAGCCTAACGCCCACCAGAGCCACATTCTGGGAACCGTAGATTTTCTCGGCAGGGTTGCAAAGCAGGTTCCCGAGGAGGAGAAGCAGCGCCTTAGGCCCATTCTCGAAGCCATCACGCAGAGGCCCGCTTATGAACGCGATATGGCCTTCATTTCGACCAGCTCGAGCCCGCAATCAGCTGCCAAGCTTGCGCTTCTTCGCCTCTTTCCGGAGGACGTTACAGATACCACAATGCAGGGCTTGCTTGCAGGATCATCCAGCGATAGGGAGGTGGCTGCCACCATCGCAGGCGAGAGGTCGGCGACGGGTGATTGCAATCTACTTATCTCCCTGGCAACTGACCCAGACCTTAAGGTCCGCGTCGCGGCGATTGTGAGCCTGACGAAGCGGCTTGGGAGCGACGATGTTCCCTCCAAAACATCAGCGATGATCTGCGAACTTGTTGGCCGCGGAGGACCGCTCACGGCCAAGCAGGTGAGCGGGTACCTGCTCGAAACGCCAGAGAATGAGGCGCGCAGCGTCTTGTTGGGGTCACTCGCCGACCACGCCTCGTCTCTTGTGCGGGCCCGGGTTGCGTCCTCCAGGGCGATCGGTGGGTTGCTCAACTAAMRAPKNEATGTSGQSFVKGEFEELGWGAVPNPEHDLGTDLWLMARDENRFDLGALVGAQVKTGDSYFKSAKTDEGSGEVVGWWYAEEDDSHFDYWSEHTTPHILVLRDKKSKTSHWVHVTSDAIQSTGKGNKILVPASQTVDESSRDALTAVATSPSKAVSLDGSAWGSNWNVPQSDRLRYALMAPRLVAPHPNKGQVLPDATEALAMLMQGRFNELRDVASTTAREAAESVSDAKSWLWDLFDAIWSWAVSGDLSNLEALPETANEHYVVAGAVARATALIEYGRPIDALAAVRAVESRGGLGTTDIAWLKSHEARCLVELGHLEEARDLALEVQKLRAIAPSDPTAGALVAVTSTLVFDMSGFGMRDIGELIQSIDTSTRWWRSQTIASGLEKHFDGQFKTWGRDSSVTWAAADTVWTSLRSATLLAGFSADHGGWRNAMSLLARRELMKACATDTTIVLESLTDLFRAGAKKELVLAVRRLSDDGPVEPLVTLMGRLELELAPRSCLASALAFVRYAGDFADVADADRHATWLLSSLANPDELRQRLKPTFLIETDLLQSLGGLMRSMSPTMKRRVMDHLIRLPVIEDQSLASGYGRIVALVGDDQWSSEDLRQLFARTNDNWELQDDIDGVLATNRPDFRTGLLTKIKQGDLTALGNFGRVTDLPEDAAEAAISRLVTSIDNQVKQAQGGMHSLGGPDLGQALVVLNAWHRDVARWDSVEALLTEPNAHQSHILGTVDFLGRVAKQVPEEEKQRLRPILEAITQRPAYERDMAFISTSSSPQSAAKLALLRLFPEDVTDTTMQGLLAGSSSDREVAATIAGERSATGDCNLLISLATDPDLKVRVAAIVSLTKRLGSDDVPSKTSAMICELVGRGGPLTAKQVSGYLLETPENEARSVLLGSLADHASSLVRARVASSRAIGGLLNNANANANANA
D1-29_011971269hypothetical proteinATGAACGCTCCCGCATCTAGCTCAGCACGGAAAGACGGAGTCGTGTACCTGACGCTCGAGGATGAAACAGGTACGCTCGCAATCTCGCCCGAGGACGCAGACCCGGATCAAACCTACTCGCATAACCTCTTCATTGGTACCGAAGGATCGATTGAAAGGATCAAACACGGGCCTCTTGTCATCGCCTATAAGGACCTCGCACGGGTCACGCTTCCAAGCCTCCGTGATGCTCTAAAAGTAAACCGATGCTGCCAGCGTTCTCCCGAAATTGTCTGCGTTGACAAGGGGGACGGCCCGATTAACCACAACCTTCTGAACCTCGACGACGTTCATCTTGAGGTGGACGATTCGCAGGTCGTTGCCATTGTTACGCATAGCCACGAGTCTCAGCCGAAGATGTCAGAGGCCGAGTACGCCGAGTCACTGAGAGTCGTCATGGAACGCTATGGCTGCAGCGTCGCCGGCGTTCGATACCTGACCGCCGACGGAGGTACCTTCGATGGACTTGGATTCGACTACTCAGGACTCGGACTAGACCTGGAAGTAGAAGCCAAAGCAGCCGCCGACAATGCAGAGATTATCCGCAACATGGTGCATGTCGTTGAAGTCAGCCTCATCACCGATGACGATGATGGAGCGACCAAACTCATTGACGCCGGGAGAGCCCTTGCCGCCTACCTCGAAGCGCATAAAGGCGGATCATTAACCGCCGGAACGATTGTTGACTTGCTGCGTGGGGGTCATAACAAGCTACTGCTAGGGCACAAGGAGAGCGCGTTCCTCGACGTCAAATCACAGCAATACAACGTGGGTGTACCAGGCAAGCCTGGTGAACAGCAGAAAATCGAACTGGCTCAGGACGTGGCACGTTTTGCTAACGGCGATCAGGACGCCGTTCTCGTGTTGGGCTACGAAGAGGGCAAGTCCGGACAAGACTCCGTCATCCAGAACATCAAAGAAATCAAGCTCAAAGATTTCGATCCAGCGACTTACGTGAACATCCTCGACGCCCGGATTGTGCCAGCGGTTACAGGCCTTACTGTGGACAGCGTAGAGACTAGTCCCGGCAAGGGAATTATTTACATATTTGTTCCGGCTCAGCCTGCCGAGATGCAGCCCTACCTAGTGCACGGCGTTGTGGCCGAAGGAAAAGTTGAGGGCGCCTTCTTCAGCATTGTGCAAAGGAGAGGCGAGGGATCTATCACCATTACAGCGAGCCAGATCCATGGCTATCTTGTGGCGGGTAAGGCGTTCTTGAGAGGTAAGTAAMNAPASSSARKDGVVYLTLEDETGTLAISPEDADPDQTYSHNLFIGTEGSIERIKHGPLVIAYKDLARVTLPSLRDALKVNRCCQRSPEIVCVDKGDGPINHNLLNLDDVHLEVDDSQVVAIVTHSHESQPKMSEAEYAESLRVVMERYGCSVAGVRYLTADGGTFDGLGFDYSGLGLDLEVEAKAAADNAEIIRNMVHVVEVSLITDDDDGATKLIDAGRALAAYLEAHKGGSLTAGTIVDLLRGGHNKLLLGHKESAFLDVKSQQYNVGVPGKPGEQQKIELAQDVARFANGDQDAVLVLGYEEGKSGQDSVIQNIKEIKLKDFDPATYVNILDARIVPAVTGLTVDSVETSPGKGIIYIFVPAQPAEMQPYLVHGVVAEGKVEGAFFSIVQRRGEGSITITASQIHGYLVAGKAFLRGKNANANANANA
D1-29_01198192hypothetical proteinTTGCGTGGCCATTGCAATGTTTCGCTGTGGCTCCACCGCGGCGGCAGCGGAGAGAAGTTGCTGGCCGATGCCGCGGCGCTGGGCTTCTGGGACGACGGCCACGACCTGCACAAGGAGCGGGGAAGGTTCAGGGCCAAGCGAGGCAAGGACGACGCAGACATGGACTCGTTCGATCTCTGCGATGAGGACTGAMRGHCNVSLWLHRGGSGEKLLADAAALGFWDDGHDLHKERGRFRAKRGKDDADMDSFDLCDEDNANANANANA
D1-29_011991029hypothetical proteinATGGACCCTCCGATTGATAAAGAGGCGCAGAAGACGGGACGCATTGCCGCCGACCTCGTCTCGGCTTGGCTGCAGAAAAACGACTTAGTAGTACGGCGCGAAGAACAGGGAACTGACTTCGGTGTTGACCTGGAACTGGAGCTGCACGCGGGGAATTCCGTATCGGGGCTTCTTGTAAAGTGTCAGGTGAAAGGCACGAAAGGCCCAGCCTTCGCAAGTCGCGAGACCGAGCTCGTAGGCATCAAAAGTTCAACACAGAATTATTGGGCGACCCTGCCACTAAATGTTATGTGTGTGCTCTGCGATACTTCCAGCGGGGCCATTTATTGGCAACCTGCGTCAGCAACCCTCGTGGATACCGCAAACACGAGTCTGCGGTTCTCGAAATCAATGCGGGCAGATCAGAATCCGACGGCGTTTCTTGATGCGCTTGCTCGGCTGGCGGAGACCCCGACAAGCTCGATGGTTCTCTCTCTGGTCCCAGCGTGCATGAGGTTGTTTGCCGAGCTTTCGCTTGGGGCAGACAGCGTGTATGACCGAGGATTCGAAGCCACGGCTGACATCGACGGGTCCATTCGTGTCTTTTACGAGCACTTGGAGCGACTTTGTATCTTTACAGGTGTGGAGGAGCTCCCGGCCCGATGGCTTCTGTGGGAACGACGTAACTCAGTGATTCAGACAGCGCTTGAATCCAACGACTCTGGACTGCTGGACGGCAATGTAGTCGGCGAGATCATCAGATACGCAACACCCTTCTACGAGGCGGCACTGAGTCGCGTAAAAGGCTGCGTAGACCCGTCGAACATTGAGGAATCCAACCCTGGCCTTGCGGATATGCTGCTGTCGGGCACCCTCGACGCAGAAACAGTCCGTGAAGCGTTCCAAAGACTGGACGCAGGAGGACAGTTCTATCTCGGATCAAACATGCGTTATTCGTTTGGAATGGAGCCAGCACACGAGGACATCGTGTTCGGCAACGAGTTGAGGCGTCGTGGAGTCGCCGCTTACAACGGGTTGTCTGCTTCGTAGMDPPIDKEAQKTGRIAADLVSAWLQKNDLVVRREEQGTDFGVDLELELHAGNSVSGLLVKCQVKGTKGPAFASRETELVGIKSSTQNYWATLPLNVMCVLCDTSSGAIYWQPASATLVDTANTSLRFSKSMRADQNPTAFLDALARLAETPTSSMVLSLVPACMRLFAELSLGADSVYDRGFEATADIDGSIRVFYEHLERLCIFTGVEELPARWLLWERRNSVIQTALESNDSGLLDGNVVGEIIRYATPFYEAALSRVKGCVDPSNIEESNPGLADMLLSGTLDAETVREAFQRLDAGGQFYLGSNMRYSFGMEPAHEDIVFGNELRRRGVAAYNGLSASNANANANANA
D1-29_01200255hypothetical proteinGTGGTCTGCTTCGCAGATGCCGTCCCTGGCGGTGCCGGCGTCGGTACCCAGGAACACCGGGACGAAGCTCATCCGCTCCAGCGCCGCTTCGGCCAACGGGCCCACGAAACTCTGGGAGAGGCTCCGCAGCCGGCCACCCAGGCACTCCACCTCGATGCCCTCGGAATCGGCCAGCTCCTGCGCCGGACCTCAGAAAAATCCTCCTGCGCAGCCCGCCTGAACACGATGCTCATCGGGCTCCCACAGTCGCAGTAGMVCFADAVPGGAGVGTQEHRDEAHPLQRRFGQRAHETLGEAPQPATQALHLDALGIGQLLRRTSEKSSCAARLNTMLIGLPQSQNANANANANA
D1-29_01201867rbsK_2COG0524RibokinaseATGAGCACTCGACCTCCTGCCGTCACCGTCATCGGCAGCATCAACCTGGACCTGATCGCCACCGCTGAACGGCTTCCCACTGCGGGCGAAACCATCGGCGGCGCCGTCCTGTCCGAACAGCCCGGCGGCAAGGGCGCCAACCAGGCTGCGGCTGCAGCGCGGCTGGGCGGCAGTGCCCGGATGGTCGGCGCCGTGGGCAGCGACGCGCAGGGGCAGCGGATGCTTGACGCGCTGGCTGGCGCTGGGGTGGACACCACGGACGTTGCCGTCCTGTCGGAGCCGACTGGGACGGCGCTGATCGTGGTGGACCGCGACGGCGAGAACCAGATCGTTGTGTGCCCGGGCGCCAACTCGCACCTGTCGCTGGAGGGGGTGGAGTTCGGGCCCGAGGAGACGGTGCTATGCCAGCTGGAGGTCGGGCTGCCCGTTGTGCTGGGGGCCGCCCGCCGGCATACCGGGTACTTTGTGCTGAACGCCGCGCCGGCCATGGACCTGCCGGGGGAACTGCTGGAGCGCTGCGACTTGGTGATCGTCAATGAGAGCGAATACGCCTTGATCCCCGCACTCGCGCAGGCGAAGCAGGTGGCCGTGACGTACGGCGGGGATGGCTCGGCAATGTTCGAGTATGGCCGGAAGGTGGCCGCGGCGCCGTCGGCTGCGGTGACGGTGGTGAACACCGTGGGCGCCGGGGACGCGTTCTGCGCCGCGCTGGTCCTGGCGCTCCGGAACGGGATGGACTACGGCCGGGCGCTTGCGGTGGCTAACGCGGTGGGCGGGGACGCTGTGGGCGACCCGTCGTCGCAGCCGGATTTGGCACAGCTGGGCCATTACGTGGAGCGGACTACTGCGACTGTGGGAGCCCGATGAMSTRPPAVTVIGSINLDLIATAERLPTAGETIGGAVLSEQPGGKGANQAAAAARLGGSARMVGAVGSDAQGQRMLDALAGAGVDTTDVAVLSEPTGTALIVVDRDGENQIVVCPGANSHLSLEGVEFGPEETVLCQLEVGLPVVLGAARRHTGYFVLNAAPAMDLPGELLERCDLVIVNESEYALIPALAQAKQVAVTYGGDGSAMFEYGRKVAAAPSAAVTVVNTVGAGDAFCAALVLALRNGMDYGRALAVANAVGGDAVGDPSSQPDLAQLGHYVERTTATVGARPGPT0017405_4777DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
D1-29_012021443stp_1Multidrug resistance protein StpGTGAACACCCCAACCCCGGCGGTAGCGGCGCCATCCGCGGAAGCCGCCTCCGCCGTCGTACTTGCCGATGACCAAGCCAAGTTCGCCGGCCGCCGCGCCGCCCTGCTGATCTCCACCTTGCTGCTGGGCGTGCTGTCCTTCCAGCTCAACGCCAGCATGGTCACCCCTGCGCTGCCGCAGATCGCCGCCGAATTTGGCCAGGGTGCCGACAGCGCCGCCCCCGTCCAGTCCATGTTCTTCCTGGCCGGCGCCATCGCCGGGCCCGTGATCGGCCGGTGGAGTGACTTCATCGGCCGCCGCGCCGCGCTGCTCCTGGTCCTCGGGATCATGGGCGCCGGCACCATCCTCTGCATCGCCGCCCCCACCCTGCCGCTGCTGGTCACCGGCCGGTTCCTGCAGGGGGTCTCCAGCGCCGTCTTCGCCCTCGCCTACATCGTGCTCAGCGAAAACCTGCACGCCAAGGTCTTCGGCACCTCCGTGGGCATCATCGCCGCCATCAACGGGGGAGTGGGCGGCGTGGACGGCTACGTGGGCGGGCTCATGGCCGAGACCCTCGGCTTCCGGTCCATCTTCGTGGTGGTCCTGGTCCTCACCGCCATCGCCGCTGCCTGCATCATCAAAATAGTCCCGGCCGGACGGCCGCAGGGCGTGCGCGGCGCCATGGACTGGTGGGGCGCCGGCTCCCTCTCGCTGTTCCTGGTGTTCACCACCTACTTCGTCTCCGGCGGATCTTCTGCAGGTTGGACCGCGCCCTCCACTTTGGTCCTGCTGGCCGGCACCATCGCGTCCTTTGCCGCGTTCTGGATCATCGAGAAACGCCGCAGCCACCCGCTGATCGCCGTCCACCACCTGCGCTCCCGCCAGGTGTGGCCGGTCATCGCCACCACCGTCCTCACCCTGGCCGGCATCTTCGCCATCATCAACTTCACCGTGGTGCTGCTCAGCCAGGACCCCGACGGCGGCTTCGGGCTCACCGCCTCCATCTCGGCGCTGCTGTTCCTCACCCCCGCCGCTTTGATTGGCGTGTTTGCCGCGCCTTTGGCCGGCTGGCTGGCCGACCGCCGCGGCTGGATCAAGACCCTCCGGCTCGGCACCGGGCTCAGCCTGGCCTGCGCCATCGCCGCCGCCACCTTCTCGGACAACCAGCCGGCGGTGCTGATCGCCGTCGCGGCCCTAGGCATCTTCTACAACGGCTTCTTCCTCACCGCGATCAATGGGCTCTCGGTGCTCCTCTCACCCAAGGAAGCCCCGGCTGCCCTGCCCGGCATCAACGGTGCCTCCTTCGGCATCGGGGCGAGCCTCGGCGTCGTCCTCGTGGCGCCGTTCGCCGCCCAGGCCACCGCCGCCGGGTACGCCACAGCCCTCTGGATCTCGGTGGGCATCACCGCCGCCGCATTCATCGTCAGCCTCTTCGTCGCCGCCCCCAAGGGCGAGACCGTCTAAMNTPTPAVAAPSAEAASAVVLADDQAKFAGRRAALLISTLLLGVLSFQLNASMVTPALPQIAAEFGQGADSAAPVQSMFFLAGAIAGPVIGRWSDFIGRRAALLLVLGIMGAGTILCIAAPTLPLLVTGRFLQGVSSAVFALAYIVLSENLHAKVFGTSVGIIAAINGGVGGVDGYVGGLMAETLGFRSIFVVVLVLTAIAAACIIKIVPAGRPQGVRGAMDWWGAGSLSLFLVFTTYFVSGGSSAGWTAPSTLVLLAGTIASFAAFWIIEKRRSHPLIAVHHLRSRQVWPVIATTVLTLAGIFAIINFTVVLLSQDPDGGFGLTASISALLFLTPAALIGVFAAPLAGWLADRRGWIKTLRLGTGLSLACAIAAATFSDNQPAVLIAVAALGIFYNGFFLTAINGLSVLLSPKEAPAALPGINGASFGIGASLGVVLVAPFAAQATAAGYATALWISVGITAAAFIVSLFVAAPKGETVNANANANANA
D1-29_012041215hypothetical proteinTTGCTCGTCGCCCGTCTGCCCGACGTCGGCCGTGCGGGCCCCAAGAGCAAGCAGCCGTTCCAGCTCCACGTCCTGGTCCCGGTCCACAGGGTTGACGTCGATGTGCAGGGGGAGGCGCCCGGGCCGCGGGTTGCTGCTCGGGCTCAGGATGATGGTCGGCTGCAGACCCCCAAACCCGGCGTCCGGCGGGCCGATCTCGATGGCACCGTCCTCTCGGTCGAGTTCGACATATCCGAGGACGCCGCGCCAGAACTCTGCCAGGAGTTCCGGATCGGCGCAGTTGAGGACCAGTTCGCTGATACGGGAGACCACGGACCCCAGTGTACGGAGGCCCTACCCGAACGGTCAGCAAAAGCACGCTTGTCCAACAAACGCATCAGACGTTGCACTAGGCTGGAAGCCCCGGACCCCTACCAACAAGCGAGGCATAACGTGCATCAGGACGCCGCCCGGTTCCTGTCCCAGCCGGTGGCCGCCCAGCCCGGCTCACCCCTCCGCGTCGCGGTATACTCCCGGATCGCCGAGGCCATCCGCAACGGCCTCCTCACGCCCGGCTCCATGATCCCCACCGAAACCGAGCTCGGTGCCGACATGAAAGTCAGCCGCACCGTGATCCGCGAAGCACTCATGCTGCTCGAGGAGGACGGCATCATCAGGGCAAGGCGCGGCGTCGGGCGCTTCGTCTCGGACACGCTCCCTCGCATCGGCATCGAACGCATCCGCCCCTTCGAGGAAGTCCTCGGCAGTCCCGGCCAGCAGCTCGAGGTCAAGCGCATCCAGGTGGCGCGCCAGCCCGCGTCCGAATTCGCCGCCCCCGGTGTCGGCGTCGAGCCCGGAACCGACTGCTGGCTCTGGGAATCCGTCCTGATCCGCGACGGCGAGGCCATCGCCCACCTGCAGGAAAACATCTCCGCCCAGCCCGTCAGCATCGGCCAGAGCGCCGCAGCGCCCCTTGACATAAAGGACGACGGCGGCGCCACCTTGCTTGCCACGCTTAACAACCAGCTGGGGCGCCTACCGGGGCCGGGAGAGTGCCAGATCAGTCTCAGCCAGGTGGGGCCCAGCCGCGCGAAGCTGCTGGACCTCCGCCCGTCCGATCCCGTGCTGGTCCTCACCCAGTACGTTCGATTCGGCAACCAGCCCTTCTACCTGGCCAAATGCCTGATCGCGGCCCGGGCCGGGCACCTCTCGGTGATGCAGTCCCTCCAGTCCTAAMLVARLPDVGRAGPKSKQPFQLHVLVPVHRVDVDVQGEAPGPRVAARAQDDGRLQTPKPGVRRADLDGTVLSVEFDISEDAAPELCQEFRIGAVEDQFADTGDHGPQCTEALPERSAKARLSNKRIRRCTRLEAPDPYQQARHNVHQDAARFLSQPVAAQPGSPLRVAVYSRIAEAIRNGLLTPGSMIPTETELGADMKVSRTVIREALMLLEEDGIIRARRGVGRFVSDTLPRIGIERIRPFEEVLGSPGQQLEVKRIQVARQPASEFAAPGVGVEPGTDCWLWESVLIRDGEAIAHLQENISAQPVSIGQSAAAPLDIKDDGGATLLATLNNQLGRLPGPGECQISLSQVGPSRAKLLDLRPSDPVLVLTQYVRFGNQPFYLAKCLIAARAGHLSVMQSLQSNANANANANA
D1-29_01205354hypothetical proteinATGACTACAGAGATAACTGCCGGCGCGGATCAATCGGGAGGCGCGTGCGCCCGCGTGCGCCGACGGGTCCACTGGATGTTTTGGCTGCCAACCCTTGCAATCTGTTTGCCGCTGATCTTCCTGCTCATCACCTTCTGCTGGGAAATTTCCCTGCTTGCCGCATGGCTGGTGTTGGATGAAGTCGTTCCCGGGCACCCTGACTACACAAACGTCCAGGGCCAGTTGAACGTCAGGGTGATAGGGGCGGGGGGGCTGGTCGTTCTGCTCGGTGGCTACCTGTTTGTCTGGATCGGGTGGTATCGAAAGGCGCTGAGCCGGGCCAGAGTCAGCCGGACGTTGGGTGCACCAAACTAGMTTEITAGADQSGGACARVRRRVHWMFWLPTLAICLPLIFLLITFCWEISLLAAWLVLDEVVPGHPDYTNVQGQLNVRVIGAGGLVVLLGGYLFVWIGWYRKALSRARVSRTLGAPNNANANANANA
D1-29_01206726hypothetical proteinATGACTGATTTCTTCACGATGCAGCCGGGCGAGACCGCAGCGCCTTTGCCACCGGGACCCGTCCTGTGTCAGGGAACGGCCGGCATGCGGCGCATCCACCGCTTTTTCCTGTGGGCGTACGACGAGGCGCCGGGACTGGTGCGCTCCGCCGCAGCCGGTGACACCGCGCGCGCCGCTTATGTGGGCGACGCGCTGGGGAACTTCGACAAAGTGCTCCATCTGCACCACGAAGGCGAGGACCAGAGCATGTACCCGCAGCTCGAGGAAAGGGCGCCGGCGTGTGCGTTGCACGTAGCGCAGATGATTCAGCAGCACCGGCAGGTGACGGAGCGGCTCGAGAGCATCGAGCCGGTCCGCCTTCGCTGGATGGAAACAGCGGACGCAGAAGTTGGCCGGGAACTCGCTGAGCTCTACGAGGACTTGAAGGCCGTCCTCAACGTTCACCTGCGGCGCGAAGTCACCGAGGTGATGCCCGTCGTGGACAGGGTGCTGACCGAGAAGGAACTGCAGGAGGGCGCGAAGCACGGGATCGATCAGCTCGACAAGAAGTTCCTGGTCGGCTACCTCGGGATGGTGTTGTCCACGAATCCACCCCAAGACCAGAAGGAAATGATCAAGGACATCCCCGCGCCGGTCCGCCTTGGCTACCGCCTCGTGGGGCGCAGGATGTACCGGAAGCAGTACTCGACACTTTTCCCGGGGCGCTCGATTCCCGAGACGCTGTAAMTDFFTMQPGETAAPLPPGPVLCQGTAGMRRIHRFFLWAYDEAPGLVRSAAAGDTARAAYVGDALGNFDKVLHLHHEGEDQSMYPQLEERAPACALHVAQMIQQHRQVTERLESIEPVRLRWMETADAEVGRELAELYEDLKAVLNVHLRREVTEVMPVVDRVLTEKELQEGAKHGIDQLDKKFLVGYLGMVLSTNPPQDQKEMIKDIPAPVRLGYRLVGRRMYRKQYSTLFPGRSIPETLNANANANANA
D1-29_01207576hypothetical proteinATGGTGGAACTGAAGCGCATCTACTGGGGCCGCCGGATACTGCGTGCGGCTTACTCGGCTGTGCTTTTGTGGTTGGGCGTATCTTTTGCCCTCGCCCTGATGCCGAAGGCAAACGCCGGCACCGGCGAGAGCGCCACGTCGGTCGCGGACGTTTTTCGCGGCATGTTCGACAGCGTTCTCGCCGCTGTCGCAGTGCCTGGCCTTTTCGTCGTCGTCCTGACAATCACGGCCGCCGTCATCCGTGCCCAGGACGTCCGACGCCGGGATCCGGTCCGGCGCTTCTCCCGCCAGCAGCGCCGCGAGGGAATGGCAAGGGCCGGCGGCCAATGTGAGATGGAGGCGGGGTTCCGGCGCCGTTGTTCGCGGCCCGCCGAGCAGGGGGACCATTTTTATCCGTGGTCCAAAGGCGGATCCACCTCCCTCCAGAACTTCGTTGCTGCCTGCGCCAGATGCAATCGTGCCAAAGGGGCCGGAATTCCGTCGCCGGGCAAGCAGGAAAGGCTGGAACGACGACGGCGGGACTACCTTCTGCCCGACGCATCCGTCAGCGTCGGCGAACGGCAGCCGCTCCCCTGAMVELKRIYWGRRILRAAYSAVLLWLGVSFALALMPKANAGTGESATSVADVFRGMFDSVLAAVAVPGLFVVVLTITAAVIRAQDVRRRDPVRRFSRQQRREGMARAGGQCEMEAGFRRRCSRPAEQGDHFYPWSKGGSTSLQNFVAACARCNRAKGAGIPSPGKQERLERRRRDYLLPDASVSVGERQPLPNANANANANA
D1-29_01208420hypothetical proteinATGGAGCAGTCAGAATCAAAAAAGGTAACGGACGCGCGAGCGGCGGCTGAAAAGCTGGCTGCCGAGAAGGCTGCGGCAGACAAAGCAGCGCAAGACGCCGCAGCAAAGGCGGCAGCGGACCAGGCCGCCGCGGAGGCGGCCCGCCAACAGGCCGCGGCTGAGGAGGCAGCGCGCCAGCAGCAGGCCGCAGCGGCGGCCGCGGCAGCCCCGAAAGTCCAGGCACCCGTACAGCCTGCCATCCCCGCAGCTCCCTCCGGGTGCGATCCAAACTATGCAGGGCCATGCGTGCCTATTGCGTCCGACGTCGACTGCGCCGGCGGAAGCGGCAATGGTCCCGCGTACGTACGTGGACCTGTGACCGTCGTCGGATCTGACATCTACGGTCTCGACAGGGATGGCGACGGCTTCGGATGCGAGTGAMEQSESKKVTDARAAAEKLAAEKAAADKAAQDAAAKAAADQAAAEAARQQAAAEEAARQQQAAAAAAAAPKVQAPVQPAIPAAPSGCDPNYAGPCVPIASDVDCAGGSGNGPAYVRGPVTVVGSDIYGLDRDGDGFGCENANANANANA
D1-29_01209999hypothetical proteinATGGGTTTCAGGGTACGCAAATCGTTCAAGATTGCTCCGGGCGTACGTATGACGGTGACGCCGAAAAGTCTCGGCCTCAGTGCTGGAGTGAACGGCGCCCGGATCTCCGCGAACACTTCCGGGCGTGTCACCCGAACTGTCGGTATCCCGGGGTCCGGCGTCTCGCACGTCAAGACACTTTCAAGCGGCTCCCTAGCGAACCGGTCTCCCGCTGCACCCGCGGCGGCCTCGGCCCGACGTTCCTCCCCAGGCATGTTCGCCCCCAAATGGGAAAAGGAACTTTATCGGGCACTCGTGTCGCATCCGAACTTCAACGATCTGCCCCGCATCGGCAAGGAGTTCGAGAAGGCTCGCCCGCTGGCGGCCTTCTTTGAAGCGACCGCAGATGCGATCCCGAATGGCGACCTTGCCCGGGGCACCGAGCTGCTTAACTGGCTATTCAGCACCGGCTATGACCCGACATCGGATGATTTCCTCCAGAAATACCTGCCGGGAGGAGCAGCCAGCGTAAGCATCGCAGAAGGCATCACGGTGGAGATTCCGGCTGACCATAACTTCATCGGTCTTGCCCTTGCAGAATTGCATCAGGCCGCTGGCCGCATACCTTCTGCTGTCGACATCGTGGAACAGCTCACACCGAGCACTGTGACCGCTATATCTTTGGCCGAGCTCTATTCGGTCCAGGGCCGCTGGGAAGAAGTGATCACCCTGACCGACGGTCTCCAGAATGATGACGAAGCTGCTACCTACCTTCTGATCCAGAGGGGCATCGCACTGCGCGAGCAAGGCTTCCCGGATGCGTCCCGCGAGGCCTTCAAGGAGGCCTTGAGGGTGCGGTCCCGGCCAGTCGAACTTCGTCAGCGCGCACTCATCGAACGCGGGGTCACCTACTTGACCGAAGGTAAGCGATCACTGGCACGTAAAGACTTCGAAAGGGTTCTTGCCGAAAACAGCAACTACCCGGGGCTTCGGGAACACCTCGCCAAACTCGAAGCCTGAMGFRVRKSFKIAPGVRMTVTPKSLGLSAGVNGARISANTSGRVTRTVGIPGSGVSHVKTLSSGSLANRSPAAPAAASARRSSPGMFAPKWEKELYRALVSHPNFNDLPRIGKEFEKARPLAAFFEATADAIPNGDLARGTELLNWLFSTGYDPTSDDFLQKYLPGGAASVSIAEGITVEIPADHNFIGLALAELHQAAGRIPSAVDIVEQLTPSTVTAISLAELYSVQGRWEEVITLTDGLQNDDEAATYLLIQRGIALREQGFPDASREAFKEALRVRSRPVELRQRALIERGVTYLTEGKRSLARKDFERVLAENSNYPGLREHLAKLEANANANANANA
D1-29_01210948hypothetical proteinATGAGCCAAAACCCTAATCTTGCCCCTTCTCCCCCGGCCTACGGCTATGGGCAGGTGCAGCAGAGCAACAAGTCTTTCCTCGTGACTTGGTTGTTGTCCCTCCTTCTCGGCATTTTCGGCGCGGACCGGTTCTACCTCGGTAAGGTGGGAACCGGAATACTGAAGTTAGTCACCTTCGGTGGCCTTGGCATCTGGGCCCTTGTTGATCTGATTCTCGTGCTTGCGAACATGACCCGCGATAAGCACGGACTTCCGCTAGCGGGTTACGACACGAACAAGAAACTGGCATTGATCGTGTCGGGCGCATTCATTCTTTTGATGATCGCGGCCAGCTCGGCCCGGGGTGGCTCTAACGTATCGTCCACCTCAGCCGTTTCCACTCCAGGGGCCTCCGCCACGGCTACCGCTGCTGCTGCCCCTGCAGCTGCCACAACAGATCCAGCCGCTGCAGCGGCCGAGGCCGACGCCGCGGCTAGAGCAAAAGCCGAAGCCGAGGCCGCCGCAAAGGCCCAGGCCGAGGCCGATGCCGCGGCTAAAGCAAAAGCCGAAGCCGACGCCGCCGCCGCCGCAACAAAAGCCCAGGCCGAGGCCGACGCCGCGGCTAAAGCTCAGGCTGAGGCCGACGCAGCTGCCAAAGCAAAAGCCGAAGCCGACGCGGCGGCAAAAGCTCAGGCTGAGGCCGACGCAGCTGCCAAAGCAAAAGCCGAAGCCGACGCCGCAGCAGCAGCGGCCGCGGCGAAAGCCCAGGCGCCCGTACAACCTGCCATCCCCGCAGCTCCATCCCGATGCGATCCAAACTATGCAGGGCCGTGCGTGCCTATTGCCTCCGACGTCGATTGTGCCGGAGGGAGCGGCAATGGTCCCGCGTACGTACGCGGACCTGTCACCGTCGTCGGATCTGACATCTATGGTCTCGACACGGACAGGGACGGCGTGGGATGCGAGTGAMSQNPNLAPSPPAYGYGQVQQSNKSFLVTWLLSLLLGIFGADRFYLGKVGTGILKLVTFGGLGIWALVDLILVLANMTRDKHGLPLAGYDTNKKLALIVSGAFILLMIAASSARGGSNVSSTSAVSTPGASATATAAAAPAAATTDPAAAAAEADAAARAKAEAEAAAKAQAEADAAAKAKAEADAAAAATKAQAEADAAAKAQAEADAAAKAKAEADAAAKAQAEADAAAKAKAEADAAAAAAAAKAQAPVQPAIPAAPSRCDPNYAGPCVPIASDVDCAGGSGNGPAYVRGPVTVVGSDIYGLDTDRDGVGCENANANANANA
D1-29_012111350L-amino acid dehydrogenaseATGCACGATGTGGATGTCGTCGTCATGGGCGCTGGCCTGGCTGGCCTGAGTGCAGCGCGAAAGCTTGTTCACGCGGGCAGGACAGTTGCCGTGCTGGAGGCGCGCGACCGCGTGGCCGGCCGCACCCTGGGAGGCTTGCTCAGCAACGGGGTGCCGGTGGAGATGGGCGGCCAATGGGTGGGCCCGACGCAGGACGTGGTGCTCGGGCTCATCGAGGAATTGGGCCTGAAGACCTTCCCCACTTACGACCAGGGCGACGCCTTGACCGTTTTCGACGGCAACGTGGTCCGGTACGCCGACGAGACCTTTGGCCTTCCGCCGGAGTCGGCGATGGAGGTGGGCCGGCTCTGGGAGGACCTGGAGATCCTGGCCTCCACGGTGGCGATTGAGGCGCCGTGGGAAACTGACGGCGCTGAGGACCTGGACCGGCAGACGCTGGACGGGTGGCTGGTGGCCAATACCGAAGACAGCATCGCGGTGAGGTTCTTCCGCATGGTGGTGCCCGTCCTGTTCTCCGCCGAGTCTCCGGAGCTTTCACTCCTGCACTTCCTCTTCTACCTCAAGTCCGGCACCAGCCTTGAGGCGCTGATGACGATAACAGGGGGCGCCCAGGAGAGCCGCGTTGTCGGCGGCACGCATCAGATCTGCGAGCGGATGTCCGCCGAACTGGGCGGCGCGGTCCGGCTCAATGCCGTGGTCCGGACCATCCGCCAGGATGAGACGGGCGTCCTTGTCGAATACGAAGGCGGCAGCGTCAAGGCCGGGCGCGTCGTCGTCGCCGTACCTCAGACGCTGGCCGGCCGGCTGCGCTACGTCCCGCCGCTGCCCGCGCTGCGCGACGGGCTCACCCAGCAGATGCCGGCCGGGGCTGTGATCAAGCTCCAAGTCGGTTACGACGCCCCGTTCTGGCGCGACGACGGACTGAGCGGAACGGTCCTCAGCCTCGACGACGCTTTGAGCGTTGTCCTGGACAACAGCCCCGACGACGGCTCCTGCGGGGTGCTGGTCGGCTTCCTCGAGGGCGCCCACGCCCGAGCCGCGAGCTTGATGAGCGCAGCGGAGCGCCGCGAGCTCGTTATCGGAGCGCTGGTGAAGTACTTCGGCCCGACGGCGGCACACCCGTTCGACCTCGTCGAGCAGGACTGGAGCGCTGAGGAGTTCACCCGCGGCTGCTACGGCGGACGGCTGGGCGCGGGCGCCTGGACCCAGTACGGCCCGGCCCTCGCTGCGCCCGTGGGCCGGATCCACTGGGCAGGCGCAGAAACCTCCACGGTCTGGAACGGCTACATGGACGGCGCCATCCGCTCCGGCCGCCGAGCCGCCGACGAGATCCTCACGGAACTCTCGTAGMHDVDVVVMGAGLAGLSAARKLVHAGRTVAVLEARDRVAGRTLGGLLSNGVPVEMGGQWVGPTQDVVLGLIEELGLKTFPTYDQGDALTVFDGNVVRYADETFGLPPESAMEVGRLWEDLEILASTVAIEAPWETDGAEDLDRQTLDGWLVANTEDSIAVRFFRMVVPVLFSAESPELSLLHFLFYLKSGTSLEALMTITGGAQESRVVGGTHQICERMSAELGGAVRLNAVVRTIRQDETGVLVEYEGGSVKAGRVVVAVPQTLAGRLRYVPPLPALRDGLTQQMPAGAVIKLQVGYDAPFWRDDGLSGTVLSLDDALSVVLDNSPDDGSCGVLVGFLEGAHARAASLMSAAERRELVIGALVKYFGPTAAHPFDLVEQDWSAEEFTRGCYGGRLGAGAWTQYGPALAAPVGRIHWAGAETSTVWNGYMDGAIRSGRRAADEILTELSPGPT0007641_1435DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007641-aofH-K00274NANA
D1-29_01212495hypothetical proteinGTGACCGTCGCGCTCAGGCGCGCGGCGCCGTCGGACTTTCCGGAGGTCCGGCGCATCACGCGCGACGCCTACCTGCGGGCCGGGCACTTCGCCGCGGACCATCCGTACATGAGTGTGCTGGAGGACGTGGAGCACCGTGCCGAGCACGCGCAGGTGTGGGTGGCGGAGGCTGCCGGGCGGGTGGTGGCGGCGGTGACGCTGGCGTTCGCCGGCCAGCCGTACAGTGAGATCGCCGCCGAGGGCGAGCTGGAGTTCCGGATGCTGGCCGTGGACCCGGCGTGCCAGGGCGGCGGCGTGGGCCGGGCGGTGGTGGGCAAGGTGGTGGAGCACGCCCGGCAGTTGCCCGGCATCGGGGCGATCAGCATCACCAGCGCCACGTTCATGGAACGCGCACACGGGCTGTACGAGTCCCTGGGATTTCGGCGGGTGCCGGAGCGGGACTGGTACGTGCCGGGCGAGGACGTGCTGCTGTGGGTGTTCCGGCTGGAGATTTAAMTVALRRAAPSDFPEVRRITRDAYLRAGHFAADHPYMSVLEDVEHRAEHAQVWVAEAAGRVVAAVTLAFAGQPYSEIAAEGELEFRMLAVDPACQGGGVGRAVVGKVVEHARQLPGIGAISITSATFMERAHGLYESLGFRRVPERDWYVPGEDVLLWVFRLEIPGPT0018535_62DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
D1-29_01213864rbsK_3RibokinaseATGAGCCGTTCCCTTCCTGTTGCCGTCGTCGGCAGCATCAACCTGGACCTGATCGCCACCGCCGAAAGACTCCCTACAGCGGGCGAAACCATCGGCGGCGCAGTGCTGTCCGAACAGCCGGGCGGCAAGGGCGCCAACCAAGCCGCGGCAGCCGCGCGGCTGGGCGGCATCGCCCGGATGATCGGCGCCGTGGGCAGCGACGCGCAGGGGCAGCGGATGCTGGACGCGTTGAAGAGTGCCGGCGTCGACACCGCTGACGTGATGGTGCTTCCTGGGGCGACCGGGACGGCGCTGATTGTGGTGGATCGCGACGGCGAGAACCAGATCGTGGTGTGCCCGGGCGCCAACTCCAGCCTGTCCCTGGACGGGGTGGAGTTCGGCCCCGAGGAGACGGTGCTGTGCCAGCTGGAGGTGGGGCTGCCCGTGGTGCTGGAGGCCGCCCGGCGGCACTCCGGTTTCTTCGTGCTGAACGCGGCGCCGGCCATGGACCTGCCGGCGGAGCTGCTGGAGCGCTGCGACCTGGTGATCGTGAACGAGAGCGAGTACGCCCTGATCCCGGCGCTCGCCGCGGCCAAACTCGTGGCCGTGACGTACGGCAGGGACGGCGCCGCGATGTTCGAACGCGGGCGGAAAGTGGCCGGGGCGCCGTCGGCTGCTGTGACAGTGGCGAACACCGTGGGCGCCGGCGACGCGTTCTGCGCCGCCCTGGTCCTGGCCCTGCGGCAGGGGCTGGACTACACGCATGCGCTGGCGGTGGCCAACGCGGTGGGCGGGGATGCCGTGGGCGATCCGTCCTCCCAGCCGGATTTGGCACAGCTGGGCCATTACGTGGAGCGGACTGCCGCAACCGCAGGCGCACGGTGAMSRSLPVAVVGSINLDLIATAERLPTAGETIGGAVLSEQPGGKGANQAAAAARLGGIARMIGAVGSDAQGQRMLDALKSAGVDTADVMVLPGATGTALIVVDRDGENQIVVCPGANSSLSLDGVEFGPEETVLCQLEVGLPVVLEAARRHSGFFVLNAAPAMDLPAELLERCDLVIVNESEYALIPALAAAKLVAVTYGRDGAAMFERGRKVAGAPSAAVTVANTVGAGDAFCAALVLALRQGLDYTHALAVANAVGGDAVGDPSSQPDLAQLGHYVERTAATAGARPGPT0017405_4777DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
D1-29_012141446stp_2Multidrug resistance protein StpGTGAACACCCCAACCCCAGCGGCCGCCGCGGTTTCCCCGGAAGCCGGTCCCGCCGTCGTCCTACCTGCCGCGGAGGAGGCGAAGTTCGCCGGCCGCCGCGCCGCGCTGCTGATCTCCACGCTGCTGCTCGGTGTGCTGTCCTTCCAGCTCAACGCCAGCATGGTGACCCCGGCACTGCCCCAGATCGCCGCCGACTTCGGCCAGGGTGCGGACAGCGCCGCCCCCGTCCAGTCCATGTTCTTCCTCGCCGGCGCCATCGCCGGTCCCGTGATCGGCCGGTGGAGCGACTTCATCGGCCGCCGCGCCGCCCTGCTGCTGGTCCTCGGCATCATGGGCGCGGGCACCATCCTCTGCATCATTGCCCCCACCCTGCCGCTGCTGGTCGCCGGCCGGTTCCTCCAGGGCGTCTCCAGCGCCGTCTTCGCCCTCGCCTACATCGTGCTCAGCGAGAACCTGAACGCCCGGGTTTTCGGCACGTCCGTGGGCATCATCGCCGCCATCAACGGGGGAGTGGGCGGTGTGGACGGCTATGTGGGCGGGCTCATGGCCGAGACCCTCGGCTTCCGGTCCATCTTCGTCGTCGTCCTGGTCCTCACGGCCGTCGCCGCTGCCTGCATCATCAGGATCGTCCCGGCCGGACGCCCCCAGGGCGTGCGCGGCGCCATGGACTGGTGGGGCGCCGGATCCCTCTCGCTGTTCCTCGTATTCATCACCTACTTCGTTTCCGGCGGCTCGGCCGCAGGCTGGCTGGCGCCAAGCACCCTGGCCCTGCTGGCCGGCACCGTTGCGTCCTTCGCCGCGTTCTGGATGATCGAGAAACGGCGCAGCCACCCACTGATCGCCGTCCACCACCTGCGCTCCCGCCAGGTGTGGCCCGTCATCGCCACCACCGTCCTCACCCTGGCCGGCATCTTCGCCATCATCAACTTCACCGTGGTGCTGCTGAGCCAGGACGCCGGTGCCGGCTTCGGGCTGACAGCGTCCGTCTCCGCGCTGCTGTTCCTCACCCCGGCGGCCCTGATCGGCGTCTTCGCCGCCCCGCTGGCCGGCTGGCTGGCCGACCGCCGCGGCTGGACCAAAACCCTCCGGATCGGCACCGGGCTGAGCCTGGCCTGCGCCATCACCGCCGCCACCTTCTCCGACAACCAGGTGGCGGTGCTGATCGCCGTCGCGGCCCTGGGCATCTTCTACAACGGCTTCTTCCTCACCGCCATCAACGGGCTCTCGGTGCTCCTCTCACCCAAGGAAGCCCCGGCTGCCCTGCCCGGCATCAACGGCGCCTCCTTCGGCATCGGGGCGAGCCTCGGCGTCGTGCTGGTGGCGCCGTTCGCCGCCCAGGCCACCGCCGCCGGCTATGCCACCGCCCTCTGGATTTCGGTGGCCATCACGGCCGCCGCGTTCATCGTCAGTCTCTTCGTCGCCGCCCCCAAGGGCGAGACCGTCTAAMNTPTPAAAAVSPEAGPAVVLPAAEEAKFAGRRAALLISTLLLGVLSFQLNASMVTPALPQIAADFGQGADSAAPVQSMFFLAGAIAGPVIGRWSDFIGRRAALLLVLGIMGAGTILCIIAPTLPLLVAGRFLQGVSSAVFALAYIVLSENLNARVFGTSVGIIAAINGGVGGVDGYVGGLMAETLGFRSIFVVVLVLTAVAAACIIRIVPAGRPQGVRGAMDWWGAGSLSLFLVFITYFVSGGSAAGWLAPSTLALLAGTVASFAAFWMIEKRRSHPLIAVHHLRSRQVWPVIATTVLTLAGIFAIINFTVVLLSQDAGAGFGLTASVSALLFLTPAALIGVFAAPLAGWLADRRGWTKTLRIGTGLSLACAITAATFSDNQVAVLIAVAALGIFYNGFFLTAINGLSVLLSPKEAPAALPGINGASFGIGASLGVVLVAPFAAQATAAGYATALWISVAITAAAFIVSLFVAAPKGETVNANANANANA
D1-29_012151062rihA_2COG1957Pyrimidine-specific ribonucleoside hydrolase RihAATGACCGCCACCTTCCCGTTCTACCTGGACTGCGACACCGGCATCGACGACGCCCTCGCCCTCGCCTACCTGCTGGCCGCGCCCACCGCCGAGGTGGTGGGCATCGGCACCGTCAGCGGCAACGTCAGTGCCGCCGTCGGCGCCCGGAACACCCTGGACCTGCTCCAGCTCGCCGGTCACGCGCACATCCCGGTGGCCATCGGAGCCCATGACCCCCAGGCCGGCACGTTCGGCGGCGGGGCGCCGTGGGTCCATGGGCACAACGGCATCGGCGGAGTCTCGCTGACGACGGCGTCTGCCGGCCCGGCGCCCGGAACCGCCGCCCAGATGCTGGTGCGGCTCGCCCATGAACACCCCGGCCGCCTGCGGGTCCTCGCCATCGGCCCGCTCACCAACATCGCCGAAGCCCTCCGGCTGGAACCGGCGCTGCCGTCGCTGGTGGAGGAAATCACCATCATGGGCGGTGCCGCCCTGGCCCCCGGAAACATCACCCCCGTCGCGGAGGCCAACATCTTCAACGACCCCGAGGCCGCCGCGAACGTCCTCGCCGCCGACTGGAACGTGACCCTGGTGCCGCTGGACGTCACCATGTCCAACGTGCTCGAGGAGAGCCACCGGCAAGAACTGCTCGCTTGTTCAGGTCCCGTGCCGCAGTTGCTCGGGGAGATGCTTGGCTACTACTTCCGGTTCTACGAAAGCCAGTTCGGCCGGGCATGCTCGGCGATGCACGATCCCCTCGCCGCGGCTCTTGCGGTCGGCGGGATCAGGGCGGCCGTCGCCCCCGTGGTCCAGGTCGACGTCGACACGACGGATGGTCCCGGCCGTGGCCAAACCGTCTGCGACCTGCGCGGACGGTACATGGGCTACCCCGAGCAGCCCGGCGCCCGCTGCCGGGTGGTGCTGGAGCTCGACGGCGACTTCGCGCCGCATCTGGTCGAGGTGCTGCAGAGGTTCGACGGCGGGGTCCCCTTGGTTAACGCGGCTGGCAGCCCGGGGGTCAGCTCGGGGCTCAGTTCCGCGCTCGATTCGGTGCCCAGCCGGGCGGTGCCGGTCGGCGCTTAAMTATFPFYLDCDTGIDDALALAYLLAAPTAEVVGIGTVSGNVSAAVGARNTLDLLQLAGHAHIPVAIGAHDPQAGTFGGGAPWVHGHNGIGGVSLTTASAGPAPGTAAQMLVRLAHEHPGRLRVLAIGPLTNIAEALRLEPALPSLVEEITIMGGAALAPGNITPVAEANIFNDPEAAANVLAADWNVTLVPLDVTMSNVLEESHRQELLACSGPVPQLLGEMLGYYFRFYESQFGRACSAMHDPLAAALAVGGIRAAVAPVVQVDVDTTDGPGRGQTVCDLRGRYMGYPEQPGARCRVVLELDGDFAPHLVEVLQRFDGGVPLVNAAGSPGVSSGLSSALDSVPSRAVPVGAPGPT0013465_483DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013465-iunH-K01239NANA
D1-29_01216927yidZHTH-type transcriptional regulator YidZATGAGCATGAAGAATAATAGGACCATGCTACTCAACGTCGACCTGAACCTCCTGCGGACCTTCGTGGTCGTCTACCGCGCGAAAAACCTGACCGCAGCGGCGGAGACGCTGCATATATCACAGCCTGGGGTGAGCCATGCCCTCAAACGTCTCCGGATGCACTTCGACGATCCACTTTTTGTCCGCACGGGTACCGGCCTCCGTCCCACCCGTCTTGCCGCCGACCTCTATGCCGAGATCAGCGGCCCGCTGTCGCATATCGAGACAAGCACCGAAGACCGCACCCGCTTTGATCCAGCGACCTCACGCCGCCGTTTTCGGATTGCACTCACTGACCTCGGTGAGGCGGTGCTGCTCCCCCGCATCCTGCAGGCCACCGGAAGCGCGGGGTCGGGTATCGAGATCGAAGTCGTTCCGCTCGACATTCAGACAGTGGCGCGTGATGTATTTTCCCGGGACCTCGACGCTGCGGTCACGAGCTCGCCGGTGCTCGGAGCAGTGCGCCAGGAAATCCTTTTCCACGACCGCTACGCCTGTCTGGTGCCAGCCGGCCTGAAGGACGACGGCGGGCGGATCCGGGTCGAGGACCTGCAGCGGCTGCCCGAGGCGAGAGTCGGTCCCTCAGCGGGTCATCGGGCGATCACTGAGGCCGTCGCCACGCTGGGAGCGGGCGTCCTCTCCCGCAGCCCCCAGGTGGAGGTGCCGCGGTTCACCTCGCTGCCCTGGATCGTCGCACGGTGCGGGTTCGTCGCCATCGTCCCGGTCGATGCCTTCGCCGCATTGGCGGTCCCTGCAGGAGTGAAGCTGCTCGAGCTTCCTTTTCCGTCGCCTGTGACGTCCGTGCATCTTATCTCGCACCACGATGCCGCCGCGGGGCCCGCGACGGCGTGGTTTCTGGATACAGTGCGTTCGACCCTCGCCGCGTGAMSMKNNRTMLLNVDLNLLRTFVVVYRAKNLTAAAETLHISQPGVSHALKRLRMHFDDPLFVRTGTGLRPTRLAADLYAEISGPLSHIETSTEDRTRFDPATSRRRFRIALTDLGEAVLLPRILQATGSAGSGIEIEVVPLDIQTVARDVFSRDLDAAVTSSPVLGAVRQEILFHDRYACLVPAGLKDDGGRIRVEDLQRLPEARVGPSAGHRAITEAVATLGAGVLSRSPQVEVPRFTSLPWIVARCGFVAIVPVDAFAALAVPAGVKLLELPFPSPVTSVHLISHHDAAAGPATAWFLDTVRSTLAANANANANANA
D1-29_012171653xsc_2Sulfoacetaldehyde acetyltransferaseATGGCGCAAATAATGAAAGTTGCCGATGCTCTCGGGTCCGTGCTCGTCGAATTGGGCGTGTCTCAGGTGTTTGGAGTGGTCGGCAGCGGCAATTTCCGTGTAACCAATGCGCTCGTGGCCTCCGGCGCACGCTTCGTTGCAGCCCGCCACGAGGGCGGTGCAGCATCCATGGCCGACGCCTATTCCCGGCTCACCGAGGAGGTGAGCGTACTGAGCCTGCACCAGGGCTGTGGCCTCACGAACGCTCTCACGGGTGTGACCGAGGCCGCGAAATGCCATACACCACTGCTGGTCCTCGCTGCGGACACCGCGGTCGGCGACGTAACCTCGAATTTCCACATCGACCAGGACGCGGCTGTACTGGCTCTCGGGGCGACGCCGATGCGCATCCATTCTGCTGAGACCGCCGTTTCCGACGCAGCACGGGCCTTCCGCCTCGCCCAGACTGAGCGCACTACGGTTGTTCTTTCCATGCCCATCGACCTCCAGGAACACGAGGTTCCCTATCCGGGAGCACGTCCCGTGTCGAACATCCGCGTGCCGAGGCCGGTAGTTCCCGCCGCAGAAGCGGCGGAACTCGCCGATCTTCTCGCCAAGGCGGAACGACCGGTCATCATCGGAGGCCGCGGGTCGCGGCACGCAAAAGGGGAGCTTCGCGATGTGGCCGCCGCGGCAGGAGCCCTTCTCATCGCCTCGGGGGGCGGCCGCGGCGTCTTCGAAGGTGACGATTGGGCCCTCGACATTGTGGGCGGTTTTGCCACCGAGAGTGCCGCAGACCTCGTGCGTGAGGCCGACCTCATTGTCGCATTCGGGGTGGCGCTGAATGACTGGACCACTCGCAGTGGCTCGCTCATCGAGGAAGTAACCCTCGTCCACGTCGACGACCGCGTCGAGGCGATCGGGAAGCACCGGCCCGTGGACCTGGGCATAGTCGGTGACGCGGCCGCCGTGGCCCGGGCGGCCTGCGAGGTGCTGACGGCCAGAGGGCCGTCCAGGGTGGGGTATCGCACCCCCGAAGTCGCCGAGCGGGTTCGCCGTGCCCGGTACTGGTCAGAGCAGCCCGTCGAGCCGATCGACGAGCCGGGATTCGTGGACCCTGTGGCTCTCACCAACGCCCTCGATGCGATGGTGCCCGAGGAACGGGTAGTTGTGGTCGACGGCGGGAACGTGAACGCCTACCCGGGTGCCCACCTGCGGGTGCCGGACGACGCTGGTTACGTGCTCCCCCTGTCGTTCCAATGCATCGGTCTTGGCCTGGGCAGTGCGATCGGCGCCGCCGTCGCCCGTCCGGACCGGATGGCAGTACTCGGCACCGGTGACGGATCACTGCTGATGGGGGCAGTGGAACTGGAGACGGCCGTGCGACTCCGGCTCGGAATGCTGATCGTTGTCTACAACGACAGCGCCTACGGTGCAGAGATCCATCTGTTCCCCGAGTCGACGCCCAAAGAGCAGGAGATCGTTCGCTTTCCCGACACGGACATTGCGGCGATTGCGCGCGGCTACGGCTGTGACGCCGTCACCGTGCGGTCGCTCGATGACCTTGGCGGGGTATCCACCTGGCTCCAGTCTGATCGGGACCGCCCCCTGGTGATCGATGCAAAGATCACCGGTCGACCGTCCTGGCTCATGGCCAGGGAAGGTGGTCACTAAMAQIMKVADALGSVLVELGVSQVFGVVGSGNFRVTNALVASGARFVAARHEGGAASMADAYSRLTEEVSVLSLHQGCGLTNALTGVTEAAKCHTPLLVLAADTAVGDVTSNFHIDQDAAVLALGATPMRIHSAETAVSDAARAFRLAQTERTTVVLSMPIDLQEHEVPYPGARPVSNIRVPRPVVPAAEAAELADLLAKAERPVIIGGRGSRHAKGELRDVAAAAGALLIASGGGRGVFEGDDWALDIVGGFATESAADLVREADLIVAFGVALNDWTTRSGSLIEEVTLVHVDDRVEAIGKHRPVDLGIVGDAAAVARAACEVLTARGPSRVGYRTPEVAERVRRARYWSEQPVEPIDEPGFVDPVALTNALDAMVPEERVVVVDGGNVNAYPGAHLRVPDDAGYVLPLSFQCIGLGLGSAIGAAVARPDRMAVLGTGDGSLLMGAVELETAVRLRLGMLIVVYNDSAYGAEIHLFPESTPKEQEIVRFPDTDIAAIARGYGCDAVTVRSLDDLGGVSTWLQSDRDRPLVIDAKITGRPSWLMAREGGHPGPT0008185_9067DIRECT 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
D1-29_012181038hypothetical proteinATGATGCACGCCACCACAACCCATACCCGTCGGCTTATTGCCGCTGCCGGAGCGGCCGTAGCACTGGTCCTTGCAGGGTGCACCGCTGATCCCGAGGGCGGCGAAGCCGGCGAGGGCGGCACGATACGGGTCGCTTATCTGGCCACAGGGTCGGCCCTGCCGCTCTTTGTCACTGCTGAAAAATACGCCGAGGAGGCGGGTGTCAATGTAGAACTCGTGGAGGTCACTAGCGGTAACGAGTCCATCACCGGCGTTGCAACCGGTCAGTATGACGCGGGGTTCGCCGGAATCGGCTCCGCAGCCTACAACGCGTTCGCCGAGGGATTGCCTGTGCAGTACGTAGCACCGATGCACTTCGGCTACATCGAGGACTATTTCATCATCTCCTCGCAGCTCGCCGGGTCCAACGAGGAGGCGGCCAAGGTGGCAGAGGACATGTCGCAGTTGACGGGACAGGCGTTCGCCGCGAATGCCCCAGGGGTAGTGACCGAGGCACTGCTTGGCTTCGCCCTCGAACGCGGAGGACTGTCAATCGACCAGATCAGGCTCGAGTACATCCCCTTCCCCGATCAGGTACCAGCACTCGCCAACGGCGCGATTGCCGGGGGCATACTGTCAGAACCGTTCCCCACCCAGGCGGAACAGAATGGGTCCGGCTACCGTCCGTGGGAGACGCCGACGGATGACCCCCCGCTGCCGTTCACCGGCGTTATCTACAACACCGACTGGGCCGAGCAGAACCGGCAGGCGGCGGAGGACTTCATGCGCGCATACGCCAAGACCGCCGAAGATCTTGCCGACAACGGCTGGAACACCGAGGAAATGCTTGCGCTGGTGGAGAAGTACACCGGGGCGAATCCGGAGGTCATCGCGGCATCTCGGCAGCACCATATCCCCGCCGACCTGAGCGTCGATTTCGATGTGCTGCGCCGCTACCAGGAGTTCTTCATGGAGCGGGGCTCGCTGAAGTACAACGAGATTATCCCCGACGAAGAGATGTGGAACTTCACATGGCGTGACGCAGCGCTCGGGAACTGAMMHATTTHTRRLIAAAGAAVALVLAGCTADPEGGEAGEGGTIRVAYLATGSALPLFVTAEKYAEEAGVNVELVEVTSGNESITGVATGQYDAGFAGIGSAAYNAFAEGLPVQYVAPMHFGYIEDYFIISSQLAGSNEEAAKVAEDMSQLTGQAFAANAPGVVTEALLGFALERGGLSIDQIRLEYIPFPDQVPALANGAIAGGILSEPFPTQAEQNGSGYRPWETPTDDPPLPFTGVIYNTDWAEQNRQAAEDFMRAYAKTAEDLADNGWNTEEMLALVEKYTGANPEVIAASRQHHIPADLSVDFDVLRRYQEFFMERGSLKYNEIIPDEEMWNFTWRDAALGNPGPT0001135_2300DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-29_01219792nrtD_1COG1116Nitrate import ATP-binding protein NrtDATGAGCGCACCTCCCAAGGCAAAGGTCCGGCTGCTGGACGTGGCCAAACAGTTTCCGGGACGGGAGAACGTGACCGCGCTGGAGGATGTTTCCCTGGAGATCGCCGAGGCTGAATTCGTAGCGATCGTGGGACCATCGGGATGCGGGAAGTCGACCCTCCTGCGGCTGGTGGCCGGGCTCTACGAGCCCTCCTCCGGGACAGTCAGCATTGAAAGCTCCAAGCCCGACCGGCCGAAGACGGCGATGGTTTTCCAGGAGCACGCCCTGTTCCCCTGGATGTCGGTGCGTGAGAACGTCATGTTCGGGCCGCGCAACCGCAATGTGTCCAAGAAGGAGGCTGCCGAGATCGCTGACGAGCAGCTGGCGCAGCTCGGTCTGGCACGTTTTGGCGACTTCTTTCCCCACCAGCTCTCGGGCGGGATGAAGCAGCGCGTCGGCATTGCTCGCGCGCTTGCCCAGGATGCCGAGGTCCTGCTCATGGACGAGCCGCTCGGGGCGCTCGACGCCCAGACCCGAACTCTGTTACAGGAGCAGATCCTGGAATTGCGGCAGCAGACAAAGCCGACTGTCTTGTACATTACGCACGCGATCGACGAGGCGGTGTTCCTCTCTGACCGGGTGGTACTTATGACGGCTCGGCCAGGCCGCATCCGCGACATCGTCGAGCTCGACTTCGGCCCCGACCGTACTCCTGAGTTGCGCGGCACGCCAGAATTCGCAGCATTGTCGCAGGACATCTGGAACCACCTTCGGGACGAGGTACAGGCTGCCATAGCGATGGACGACCGGTGAMSAPPKAKVRLLDVAKQFPGRENVTALEDVSLEIAEAEFVAIVGPSGCGKSTLLRLVAGLYEPSSGTVSIESSKPDRPKTAMVFQEHALFPWMSVRENVMFGPRNRNVSKKEAAEIADEQLAQLGLARFGDFFPHQLSGGMKQRVGIARALAQDAEVLLMDEPLGALDAQTRTLLQEQILELRQQTKPTVLYITHAIDEAVFLSDRVVLMTARPGRIRDIVELDFGPDRTPELRGTPEFAALSQDIWNHLRDEVQAAIAMDDRPGPT0001140_4964DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_01220780ssuC_2COG0600Putative aliphatic sulfonates transport permease protein SsuCATGCTGCGCGCCCTCCGTGAAAAGTGGGCCCTGCTCGTTGGTCCGGCGGGCATCCTCCTGGCATGGGAACTCCTCAGCCGCACCCACGTCATCCGCCCAACGTTCTTTCCGGCCCCAACCGAGATAGTTGCCCGCGGCGTGATCGTATTCGACCCCGGATCAGGGCTGGGCGGGGACATCATTGCAACGGTGCTGCGAGTGCTCGCGACGATCGCCCTCGCGGTGCTCCTCGGGGTCGCAGCCGGGATCGCGATCACCGCGTCCCAGTGGATGGAGCGCGGCACCAATACGCTTCTGGCGTTCCTGTATCCCATTCCCGGCGTACTCTTCTTCCCCTTCCTGACGTTCCTTCTGGGCCGTACGGAAATGGCTCTCATCCTTACCGCGCTGGTGACCCCACTGATCGTGATGGTCCTGTATACGGTGGCCGGAGTGCGTAGCATCGACCGCACCCTCATTGAGGTGGCGGACAACTACGGCTCTCGGGGCACCCGGCGCTTCTTCCGCATCCTTGTCCCCGGCGCCCTTCCGTCGATTGTCACCGGCATCCGCGTCTCGCTCGGCTTCACATTGATCGCGGTGATCGCTATCGAAATGGTCGGGGCCTCGAACGGGTTGGGGCAGTTCCTCTGGTCGAACTGGCAGATCTTGCGGGTCACTGACATGTATGTCGCGCTGTTGATCATCGCGGTGCTCGGCCTGCTCAGCTCGGTCGGATTCGATTCGGTCGCTGACCGGATGCTGCCGTGGCGTCGAGACGTGAAGGGGGCCCAGGCATGAMLRALREKWALLVGPAGILLAWELLSRTHVIRPTFFPAPTEIVARGVIVFDPGSGLGGDIIATVLRVLATIALAVLLGVAAGIAITASQWMERGTNTLLAFLYPIPGVLFFPFLTFLLGRTEMALILTALVTPLIVMVLYTVAGVRSIDRTLIEVADNYGSRGTRRFFRILVPGALPSIVTGIRVSLGFTLIAVIAIEMVGASNGLGQFLWSNWQILRVTDMYVALLIIAVLGLLSSVGFDSVADRMLPWRRDVKGAQAPGPT0001145_6674DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_01221789ssuC_3COG0600Putative aliphatic sulfonates transport permease protein SsuCATGAGCCCGTCGGTGCGCGGATGGGCGCAGACCTGGACCATACCGGTTGTGGTCCTCATGCTGTGGGAGGTCAGCACCCGTGCGGGCCTGCTGGATCCGCGGTTCTTCCCTCCGCTCAGCAACATAGCCGTCACTGGCGTCGACCAACTCCTGAATGGGCGGCTTGGCCTTGACCTGTTGCTCACGATCCAACGGCTGCTGTTGGCGTTCACGCTCGCGGCGGGCCTTGGGGTTGTGATCGGTGTCGCGTCGGGACGGTGGCGAATCGTTGAGTTGCTGATCCGGCCGGTCACCGACACGCTGTACCCTCTGCCTAAGATCGCGCTTCTTCCCCTGTTCATCATCATCTTCGGCCGCGGCGAGGTCGCCTACATCACCACCGCCTTTGCCACCGGATTCTTTCAGATCATCATTAGCACGCGCGGGAGCGTGCGGGATATATCGACGGACCTGATCGAGGCTGGCCGCAATTTCGGCGCGACGGGGGTGCGGTTCTTCACCCGGCTGCTGTTTCCTGCCATAGCCCCGGGACTGCTTAACGGCCTGCGGCTGGGGATGGCGACCTGCCTGATCACGCTGATCGCCGCCGAGTTTGTGGGAGCCCAGTACGGACTGGGGGCCCTGATACGCCGGGCGGGACAACAGTTCGCTGTGGAAGAAGTGTATGCGGGACTTGCACTCACCGGGCTGCTGGGCCTGCTGATCAACGTCGCTTTCCGGCTCGTCACGCCGCTTGTGCTCCCGTGGGAGCGGCGAGCACATCGCGCGGATAGCGGGCAGAAGGCGTAGMSPSVRGWAQTWTIPVVVLMLWEVSTRAGLLDPRFFPPLSNIAVTGVDQLLNGRLGLDLLLTIQRLLLAFTLAAGLGVVIGVASGRWRIVELLIRPVTDTLYPLPKIALLPLFIIIFGRGEVAYITTAFATGFFQIIISTRGSVRDISTDLIEAGRNFGATGVRFFTRLLFPAIAPGLLNGLRLGMATCLITLIAAEFVGAQYGLGALIRRAGQQFAVEEVYAGLALTGLLGLLINVAFRLVTPLVLPWERRAHRADSGQKAPGPT0001145_6306DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_01222789hypothetical proteinGTGCATCAGGACGCCGTCCGTTTCCTGTCCCAGCCGATGACGGCCCAGCCCGGCTCACCGCTCCGGGTTGCCGTCTACTCCCGGATCGCCGAGGCAATCCGCAACAACCTGCTGCAGCCCGGCTCCATGCTCCCCACCGAAACCGAGCTCGGCACGGACATGAAGGTCAGCCGCACCGTGGTCCGCGAAGCCCTCATGCTCCTCGAAGAGGACGGCCTCATCAGGGCCCGCCGCGGGGTCGGCCGGTTTGTCTCCGACACGCTCCCCCGCATCGGGATCGAGCGGATCCGGCCCTTCGAGGAAGTCCTTGGCGGGCCCGGGCAGCACCTCGAGATCAAACGGGTCCGGATCGAGCGGGAGGCCGCCTCCGAGTTCGTCGCCCCCGGCGTAGCGGTCGATCCCGGCGCGGACTGCTGGATCTGGGAGTCGGTCCTGATCCGCGACGGCGAAGCCATCGCCCACTTGCAGGAAAACATCTCCGCGCTGCCGGTCAGCTTTGGCAGCGGTTCCGGTGAGGCTGCACCATTGGAGCTCGACGACGGCGGTGGCACCACGCTGCTCGCCGCCCTGAACCAGCACGCCGGACGGGTCCTGGGTCCGGGCGAATGCCAGATCAGCCTGAGCCAGGTGGGCCCGAGCCGGGCCAAGCTTCTGGACCTGCGGGCCTCGGACCCCGTCCTTGTGCTGACGCAGTACGTCAAGCATGCGAACCGGCCGTTCTACCTGTCGAAATGCCTGATCGCGGCCCGGGCAGGGCACCTGTCGGTGATGCAGTCCGTCCAGTCCTGAMHQDAVRFLSQPMTAQPGSPLRVAVYSRIAEAIRNNLLQPGSMLPTETELGTDMKVSRTVVREALMLLEEDGLIRARRGVGRFVSDTLPRIGIERIRPFEEVLGGPGQHLEIKRVRIEREAASEFVAPGVAVDPGADCWIWESVLIRDGEAIAHLQENISALPVSFGSGSGEAAPLELDDGGGTTLLAALNQHAGRVLGPGECQISLSQVGPSRAKLLDLRASDPVLVLTQYVKHANRPFYLSKCLIAARAGHLSVMQSVQSNANANANANA
D1-29_01223228hypothetical proteinATGCGCGAGCGTGGCTTTCGGCAGGTTCAGCTGTGGGTCCCGGACACGCGCACGGAGGAATTCAAGCGCGAAGCCTGGCGGCAGGCCCTGGCAGTGGCCGCCGCGGACCGTGCCGGCGACAACCAGGACTTCATTGAGCAGACTTCGGAAGACTGGCCGGAGTGGACCGAGGCGAACTGTGGACGGTCTCAGACGGAACGTACGCGCAAAAGCCCGGGCCGGCACTGAMRERGFRQVQLWVPDTRTEEFKREAWRQALAVAAADRAGDNQDFIEQTSEDWPEWTEANCGRSQTERTRKSPGRHNANANANANA
D1-29_012241032hypothetical proteinGTGAACGGTTACCGCATCAGCTCGCCGACGGAACTGACTCACGGGGATTTGGTTCAGTTCGGCCAGGCCAGGCTGCGGTTCATCGACAGGAACGCTGACGGCCGCGGCACACCCTCCGGGACGGGCGGCAAGAAGGGAACGACGCCGGCCCCGCAGCCGCCGGGGGGACGGCTGGGAACGGCACTGATGTACGCCGCCGGCATCAACGTCGTCGGGAGTCTAGGCAACAGCCTCGCCGCCTTCCTGACCGAGCTGACGCCCACCTGGACATGGTTCATCACCCCCTTCATCGGGTTGCTGGTGGCCCTGCTGATAGAGACCCTCGGGTATTACCGGAAGGGACCCGGCACCCCGCAGCGGCCGCCCTCCGGCCACGAACCAAGGCCCCACGAACCCGGGCCGGAGCGCAGGCCTGCCCCGCAGCGGCCGCTGGCCGTCACCGTGCTCCTCACGCTGTTGCTGCTGGGAGGCGGCGGATGGCTGGCCGCCGCCGGGGTTAGCTACGCCGTCGGCTACTTCTCCGGCAACGAAGACGGCGTGCAGCGGCTGGAACGCCAGGTGGTGGCCGAAGCGCAGGGGGTTCGGGTGACGGTCCTGGGCGTCCAAAGCACAGCCCACTTCACCCGGGTGGGGATCCTGGTCAGCAACGGGACCAGCAGCTCGATATCCCTGCCGCTGTTCCAGAACGCGCTGCTCACCGGCCCGGGCGGCACCACCGTCGACGCCAGTGCCTTCCGCAGCAACTGGCAGCCCAAGATACCGGCCGGCGTGCAGCGCAGGGAACCCTCAACTTCGAAAGCCAGCTGCCCGAAGGGCCTACGACGGTGTCGCTCAGCTTCGCCACGGTCTTTGTGCAGGGCTTCGACGGCCCCCCGTCCATCACAGTTCCGAACATTCCCCTCAAGCCGCTGGACACTGAGGTTTCGGCGTCGGCTGCAGGGGTTTCCGGCCCTTGCTTTTCGCCACCGGGCGGTCCTTACTGATGGAAGGAACCTGCCATCCGGGTGGATTCTGGATGACCTGTTTGCGTAAMNGYRISSPTELTHGDLVQFGQARLRFIDRNADGRGTPSGTGGKKGTTPAPQPPGGRLGTALMYAAGINVVGSLGNSLAAFLTELTPTWTWFITPFIGLLVALLIETLGYYRKGPGTPQRPPSGHEPRPHEPGPERRPAPQRPLAVTVLLTLLLLGGGGWLAAAGVSYAVGYFSGNEDGVQRLERQVVAEAQGVRVTVLGVQSTAHFTRVGILVSNGTSSSISLPLFQNALLTGPGGTTVDASAFRSNWQPKIPAGVQRREPSTSKASCPKGLRRCRSASPRSLCRASTAPRPSQFRTFPSSRWTLRFRRRLQGFPALAFRHRAVLTDGRNLPSGWILDDLFANANANANANA
D1-29_012251269hypothetical proteinGTGCCGGCTGATTCCCCCTCCGGCTGGACCACGCTGGCAGACCTGCGGGCGCAGTCGCTGAAGGCGTGGACCAGCGGTGCACTGCTGCGCGAACTGCTGGAGCCCAGCGGGCTGTACCCCCGCCGTCGTGCGTTGAAGCGTCCGACGGCGGCATCCCTCTTGAGCGATTATGCGGCGGCACGTGCGTGGGCAGCTGAGCTGCTGGCCGCCGTCGGTCCCTTCACCCTGGAGACGGCAGAGGTGGGCCGCACCACGATCGGCTCCAACAAGCTTCCCGCGGCGGCGGTGTTCGCGTCTGCCAGCGATGAGGTTGCGTTTGTAGGCAGGGTCAAGGACGCGGCCAGGTTTGTTGAGCTTGCCGACCGGCTGGCCGCTCTGGACCCCGCGTTCCGTGCCTGGGCAATTCGGCGGCCACTCAAGCTGCTGGACCTTGGGACTAATGCGCTGACGGCTGGCCGGGTGGCACTGTGGCTCCGCGACAATCCGGAACCAGGTGTTTACGTCCGGCAGCTGAGCCTGCCGGGAGTGCACACCAAGTTCATCGAGACCCATCGGCGGGTGATCGAGGAACTGGTGGAGGCCCTGCGTCCGTCGGCGCTCTCCGAAGGTGAGCCCTCCGATGAGATCAGTCCGGACGTGCCGGCGGAACCCGGTTCCCTACTGGGGCAGCCGGCGGCGCGGACTCCTGCGGCCCGCTTCGCGGCGAGGCACGGGTTTGTGCATCCGCCCGAGCTGGTCAGGTTCCGGCTGCTGGACCCTGGCGTGCCGCTGCTGGGTGAGGTCCGCGATCTGACGGTGACGGCGGAGGCGTTCCGCTCCCTGAGCTTGCCGGTCCGGACGGTGCTTGTCACCGAGAACCTGGTCAACTTCCTGGCGCTGCCCGAACGGCCCGGCGCTGTTGCGATCTACGGCGGCGGGTACGGTTTTTCTTCCCTCCGCGATGCCGACTGGCTGCGGGACTGCGAAGTCCTGTACTGGGGCGACCTGGACACTCACGGCTTCCGGATCCTGGACCAGCTCCGAGCGGTCCACCCGCACGTGGCCAGTGTGCTGATGGATGAGGAGACCCTGCTGGAGCACCGGGATGTTTGGGGAAGGGAACCGTCGCCGTCCCGGGCTGCGCTCAGCAGGCTGACCGCCGAAGAATCAGCGCTCTATGAAGCGCTGGGCCGTGACTCCTATGGCCCGTCCGTCAGGCTGGAGCAGGAGCTGATCCGCTGGGACTGGGCTCTGGCACGGCTTGCGGGGAACTGCAACGCAAATGCGTAAMPADSPSGWTTLADLRAQSLKAWTSGALLRELLEPSGLYPRRRALKRPTAASLLSDYAAARAWAAELLAAVGPFTLETAEVGRTTIGSNKLPAAAVFASASDEVAFVGRVKDAARFVELADRLAALDPAFRAWAIRRPLKLLDLGTNALTAGRVALWLRDNPEPGVYVRQLSLPGVHTKFIETHRRVIEELVEALRPSALSEGEPSDEISPDVPAEPGSLLGQPAARTPAARFAARHGFVHPPELVRFRLLDPGVPLLGEVRDLTVTAEAFRSLSLPVRTVLVTENLVNFLALPERPGAVAIYGGGYGFSSLRDADWLRDCEVLYWGDLDTHGFRILDQLRAVHPHVASVLMDEETLLEHRDVWGREPSPSRAALSRLTAEESALYEALGRDSYGPSVRLEQELIRWDWALARLAGNCNANANANANANANA
D1-29_012263438smc_1Chromosome partition protein SmcGTGACCGCGGACCTGCAGGACAGCCTTTTCAGCCTGGAGCCTACGGAACAGGACACTACGGACGACGCCGGCACTCCCCCGGGATACCGGCTGCACCGTTTGGAGCTGCTCAACTGGGGCACGTTCCACCAGGGCGTGCGCACGTTCCGCCTGGACGGCGCCAACAGCCTCCTCACCGGAGACATCGGCTCAGGCAAATCCACCGTCGTGGACGCGATCACCACCCTGCTTCTCCCCGCGAACAAGATCGAATACAACAAGGCCGCGGGGGCGCAGAAGAAGGAACGCTCCCTCATGTCCTACGTGCGGGGGTACCACAAGAGCACGCGCAGCACCGGCGGGGAAAACTCCAAACCGGTGTCGCTGCGTGGAACGGGTGCGCTCACCGTGGTGCTGGCTGTGTTCCACAACGCGGCGCTCAACAAGTCCGTCACGCTGGCCATCACGCTGTGGGCTGTCCAGGAGGCCGGCACGCCCAACCGCTTCTACTCGCTCGCGGAAAGGGACCAGTCCATCGCCGCAAACTTCTCCAACTTCGGCCAGGACCCAGCCAAGCTCAAGAAAAGGCTGAAGGCCGACGGCGCCGCTGTCCATGACACGTTCGAGCCCTACGCCGCAGCCTTCAAGCGGCAGTTCGGCATCAGCGGAAACCAGGCCATGGAGCTGTTCCACGGCACGGTGTCCATGAAGCAGGTGGAGAACATCACCCACTTCGTGCGCACCAACATGCTGGACGAGGACGACGTCGAAGCCCGGATCGGCAAACTGATCAGCCACTTCGATGACCTGAAGAAGGCCCACGGCGCCGTGCTTCGCGCCAAGGACCAAATCAGCTTGCTGGCGCCCATTCGCGAGGGAGCCGCCAGGCACGCCACGCTGACGGCAGAGGACGAGCTGGCCCGGGCCCAGCGGGACCAGCTGCACCCCTGGTTCACCAACCAGCGCCTCATCCTGAGCCTGGAGCACGCGGCCGAACTGGAGAGCACCGGAAAACGGCTGCGCGAGGACAACAAGTCCCTCACCGCCCGGATCACGGAACTCCGGCACCAGCTCACCGCCGTGGCCGACGACATCCGCTCCAACGGCGGCGGCCGGCTCGCAGCCATCGACGCCGACATCGCCCGGCTCGGCACCGAGGCCGCATCACAGCGGACCCGCTACCAGACCTACGCCACAGCCGCGGCGGAACTGCACCTCCGCGCGCCGGAAGACCGGGTGCTGTTCGACGCGAACCGGGACCGGCTGGCCGCCGTCGAATCCGGGCTGGCTGATCAGTACAACGGGCTGCAGGAAAGCCGCACCGAACAGACCATGACGCGCACTGTCCTCACCGGACGCGCCGACGATCTCGCAGCGGAACTGACAAGTCTCCAGTCCCGGCGCAACCTGCTGCCGCTGCAGCAACTGGAGATCCGGCGCCGCCTGTGCGAGGGAACAGGCGCGGCGGAGAAGGACCTGCCGTTCGCCGGCGAGCTGCTGCGCGTCCGCGACGGCGAAGCAGGCTGGGAGGGCGCGGCAGAACGCACCCTGCGCGGCTTCGCGCTGTCGCTGCTGGTGCCGACGGAACACTACGCTGCCGTGAGCACTTGGGTGGACGCGAACAACCTGAAGGGCCGGCTGGTGTACCTGAAGGTGGGCGACGGGTACTCCCCCAGGGCCGCGGAACCCGGGACGCTGGCGGCCAAGATCGCCATTAAGCAGGGCACACCGTTCCGCGACTTCCTCCTGGATGAGCTGGCCAGCCGCTTCGATTACGTCTGCTGCGACAACCTGGCGGACTTCCGCCGCCATCCCAAAGCCCTCACCGCGAACGGCCAGCTGAAGGGCGGCCGCGGCCGGCATGAAAAGGACGATCGGAAGGACCTGGCGGACCGGCGCAACTACGTGCTGGGCTGGGACAACCAGGACAAGATCAACCGGTTCCGGTCCGAGCTGGACGAGGTCACCGGTCAGCTCCAGGTGGTGGGAACGCAGCTGGACAAGGTGGACCGGAAACTGGGCGAGATCGGCCGGAAGAACCAGCAGCTCGGTACCGTTCGGTCCGTCGCTGATTTCGGCGAGCTCAGCTGGGAAGTCACTGCCCGCCGGATCGAGGAGCTCAAGGAAGAGCGGCGCGCGCTGGAATCCGCCAGCGACGTCCTGCAGGAGCTGGCGGCCAAGGAAACCGCGCTGAACGCCGAGCTCACGCGGCAGTCGGACCGGGCAGACAAGATCCGGGAGCGGCTCGGCGCCAACAAGAAGGACAGCGAGAACCTCGCGGAGGCCATCGCGGAGTGCCGTGACCTGCTGCAGGAACAGCCACTGACGGACGACGCCGGGGTGCTGGCTTCCGTGGCCGGCCTGGCCGCCGCGGCGCCCGGGGAAAAAGTCCTCACTTACAAGAACACGGTGGCGGTTGAAAGCCTGGTCCGCTCCGGACTCACAGCCGCCATTGATGCGCTGTCCAAGCGGCTGGCCAGGGCGGAAACGGACACGGTGCGGCTGATGGCCGACTTCCGGAACAGGTACCCCACCGAGACCACCGAAATTGATGCATCCCTGGATGCCGCCGTCGACTACGAACGGCTGCTGGACCAGCTGGAGAAAAACGATCTTCCCAAGTACGAGGCTCACTTCAAGGAGTCCCTGAACCAGAACACCATCCACGAGGTGGTGGCGTTCAACGCGTTCCTGGACAGCCGCCGGCAGGACATCGTGAACCGGATCACCGAGATCAACCTGTCGCTGGCCACCATCGAGTACAACCGTGGCCGGCACATCCAGCTGGAGCACCAGAACACCACCGACCTGGACGTGCGCCAGTTCGGAACGGACCTGAGGGCCTGTTCGGAAGGCACCATCGGGGACGAGGACCAGTACTCCGAGCAGAAGTACCTGCAGGTGGAGCGGCTGATTGAGCGGTTCCGCGGGAGGGACGGCTTCACCAACCTGGACGAGCGCTGGACGGCGAAGGTCACGGACGTGCGGAACTGGTTCACGTTCTCCGCCTCGGAGAAGTGGACCGAGACCGGCGAGGAGTTCGAACACTTCACCGATTCCGGCGGCAAGTCCGGCGGGCAAAAGGAGAAGCTGGCCTACACGATTCTGGCCGCGGCCTTGGCGTTCCAGTTCGGCCTGGGAGCGGGACAGGGCGCCGGCCCGGCCGCCGGTGCCGGCGCCGGCTTGGGCAGGGGTGCCGGCAAGGGCCGCAGCTTTCGGTTTGTGGTGATCGACGAGGCGTTCGGGCGCGGCTCGGATGAGTCCGCGCGGTACGGCCTGGAGCTGTTCCAGCGGATGAAGCTGCAGCTGTTGATCGTCACGCCCCTGCAGAAGATCCACGTGATCGAGCCGTTTGTGGCACACGTGGGCTTCGTGGCCAACACCAATGGCAACGATTCCCAGCTGCGGAACATGACCATCCAGGAGTACCGCGACGAGCGAGACCGCCGTGCCGGCTGAMTADLQDSLFSLEPTEQDTTDDAGTPPGYRLHRLELLNWGTFHQGVRTFRLDGANSLLTGDIGSGKSTVVDAITTLLLPANKIEYNKAAGAQKKERSLMSYVRGYHKSTRSTGGENSKPVSLRGTGALTVVLAVFHNAALNKSVTLAITLWAVQEAGTPNRFYSLAERDQSIAANFSNFGQDPAKLKKRLKADGAAVHDTFEPYAAAFKRQFGISGNQAMELFHGTVSMKQVENITHFVRTNMLDEDDVEARIGKLISHFDDLKKAHGAVLRAKDQISLLAPIREGAARHATLTAEDELARAQRDQLHPWFTNQRLILSLEHAAELESTGKRLREDNKSLTARITELRHQLTAVADDIRSNGGGRLAAIDADIARLGTEAASQRTRYQTYATAAAELHLRAPEDRVLFDANRDRLAAVESGLADQYNGLQESRTEQTMTRTVLTGRADDLAAELTSLQSRRNLLPLQQLEIRRRLCEGTGAAEKDLPFAGELLRVRDGEAGWEGAAERTLRGFALSLLVPTEHYAAVSTWVDANNLKGRLVYLKVGDGYSPRAAEPGTLAAKIAIKQGTPFRDFLLDELASRFDYVCCDNLADFRRHPKALTANGQLKGGRGRHEKDDRKDLADRRNYVLGWDNQDKINRFRSELDEVTGQLQVVGTQLDKVDRKLGEIGRKNQQLGTVRSVADFGELSWEVTARRIEELKEERRALESASDVLQELAAKETALNAELTRQSDRADKIRERLGANKKDSENLAEAIAECRDLLQEQPLTDDAGVLASVAGLAAAAPGEKVLTYKNTVAVESLVRSGLTAAIDALSKRLARAETDTVRLMADFRNRYPTETTEIDASLDAAVDYERLLDQLEKNDLPKYEAHFKESLNQNTIHEVVAFNAFLDSRRQDIVNRITEINLSLATIEYNRGRHIQLEHQNTTDLDVRQFGTDLRACSEGTIGDEDQYSEQKYLQVERLIERFRGRDGFTNLDERWTAKVTDVRNWFTFSASEKWTETGEEFEHFTDSGGKSGGQKEKLAYTILAAALAFQFGLGAGQGAGPAAGAGAGLGRGAGKGRSFRFVVIDEAFGRGSDESARYGLELFQRMKLQLLIVTPLQKIHVIEPFVAHVGFVANTNGNDSQLRNMTIQEYRDERDRRAGNANANANANA
D1-29_01227645hypothetical proteinATGAACACCACTGACACCACCGAAACACAGGCCCGCACCCCCGAGGAACTCCCCGGTGTGGTGACCCGGCTGTTCAGGGGCGTGGTGTACGCGGAGTCGGACGAGAAGGTCTGGCAGTCGCTGATCACCCTGGAGTCGCAGGCCCGCGACTACGTGGCCGTGCTGGGACTGGACCTGATCCTGGACGAGTCGGAGGGCTACGCGTTCCTGCGGTCCAGGGAGGATCCGGAGGGCAACCTTCCCCGGCTTATCCCCCGGCGCCGGCTGACCTTTGACGTCAGTCTCCTGCTGGCCCTGCTGCGCGGCCGGATGCTCGAGTTTGACACCAACAGCAGCGAGCTCAGGCTCATCATGACCGAGCAGGAGATCGCGGATATGGTGGCCGTGTTCCTGCCCGAATCCAGCAACCAGGCCCGCATCATGGACCGGCTCGGCGCCAACATCAAGAAGGTGGTGGAGCTCGGGTTCCTGCGCAAACTCCGCGGCCAGGCAGACACCTACGAGGTGGCCCGGATCCTGAAGGCCTACGTGGACGCCCAGTGGCTGGAGGAGTTCGACGCGCGGCTGGCGGACTACCGCGCCTCGCTCGCCGGAGCGTCGCCAACGGCCAGTACTCCGGACACAAACGAGGGGGAGCTCCCGTGAMNTTDTTETQARTPEELPGVVTRLFRGVVYAESDEKVWQSLITLESQARDYVAVLGLDLILDESEGYAFLRSREDPEGNLPRLIPRRRLTFDVSLLLALLRGRMLEFDTNSSELRLIMTEQEIADMVAVFLPESSNQARIMDRLGANIKKVVELGFLRKLRGQADTYEVARILKAYVDAQWLEEFDARLADYRASLAGASPTASTPDTNEGELPNANANANANA
D1-29_012281443putative protein/MSMEI_1241ATGGACTTCTACGACATCAGCGCCCTGCGTGATAACCATGCAGGCTGGTCTCTACTCCGCGCGCAGAACGCCCCGCTGGCCATCTCCTTCTTCATCAAGGCCTTTACCGGGCCCAACCAGCGCGACATCGGCCGCCAGGAGCTCATGGACCACCTCGACGACGTCCTGTTCGGCCTCAGGGACGTCTTCGGCGAGGACAAGTATCCCCGCTCTGCCTCAGAGTATCTGGATGACTGGGCTGCCCCCGAGCGGGCCTGGCTGCGCAAATACTATGTGCCCGGGCAGGACGAGCCGCGCTACGATCTGACGGCCGCGGCCGAGGACGTGGTGCGGTGGGTGGAAAGCCTGAGCGGACGGGATTTCGTGGCAACCCAGTCCCGGCTCACCAGCATCTTCGCCGTGCTCAAGGCCCTGGTCCAACAGTCGGAAACGGACCCCGAGGTCAGGCTCGCCGAGCTCCAGCGGCAGCGGGACGGGATCGACGCCGAGATGCAGCGGATCAGGGACGGCCATGTCAAGGTCATGACCGCCCCGGAGGCCCTGGATCACTTCCAGCAGCTGACCACCCTGGCGAAGGACCTCCTGTCCGATTTCCGTGAAGTCGAACAGAACTTCCGCAAGCTGGACCGCCAGGTCCGGGAACAGATCGCCACCTGGGAAGGCAGCCAAGGCGAGCTCCTGGAGTCGATTTTCGCCAACCAGCAGGGCATCAGCAGCTCACTCCAGGGCCGCACGTTCCAGGGTTTCTGGGACTACCTCATGTCGCCGCAGCTGCGCGGCGAACTGCAGGACCTGCTGCATCGCGCCACCGAAATCGAGGCGCTCTCCGGCGTTGAGGACCTGCACGCCGTGACCACGCTGCACCAGGACTGGCTGCCGGCTGTAGACCAGACGCAAGCAACGGTGCGGCAGCTCTCTGAGCAGATGCGCCGGCTTCTTGACGACAAGGTCTTCCTGGAAAACAAACGCATCATGCGGCTGATCCGCAGCATCGAGTCCGGTGCGCTGGGCACAAGGGAGGCGCCGCCGTCGGGCGTTTTTATGGACATCCCGGCACCGTCAGTGGACGTGGCGCTGCCGTTTGAGCGGCCCCTGTATGAGCCCAGCCGGAAGGTGATGGTGGACGACGCCGTCCTCACCGCCGACGACGCCGACGTGGACGCCGGCGCCCTGTTCAGCCAGTTCCATGTGGACAAGGAGCGCCTGAAAACCAATGTGGACGCGGTCCTGGCGGACGCGGAACAGGCCACCCTCGCCGAGATCACCAACGCCTATCCGCTCCAACAGGGCCTCGCCGAGATTGTGGCGTACTACCAGCTGGCCAGCGAATCCGAGTGGGCCAGCATCCGTGACGACGTTCCCCAGCAGCTGCAGTGGCACCTCCCGGACGGCAGCATCCGCGAAGCAACCATCGACCAGATCATTTTTGTGAGGCCGGCATGAMDFYDISALRDNHAGWSLLRAQNAPLAISFFIKAFTGPNQRDIGRQELMDHLDDVLFGLRDVFGEDKYPRSASEYLDDWAAPERAWLRKYYVPGQDEPRYDLTAAAEDVVRWVESLSGRDFVATQSRLTSIFAVLKALVQQSETDPEVRLAELQRQRDGIDAEMQRIRDGHVKVMTAPEALDHFQQLTTLAKDLLSDFREVEQNFRKLDRQVREQIATWEGSQGELLESIFANQQGISSSLQGRTFQGFWDYLMSPQLRGELQDLLHRATEIEALSGVEDLHAVTTLHQDWLPAVDQTQATVRQLSEQMRRLLDDKVFLENKRIMRLIRSIESGALGTREAPPSGVFMDIPAPSVDVALPFERPLYEPSRKVMVDDAVLTADDADVDAGALFSQFHVDKERLKTNVDAVLADAEQATLAEITNAYPLQQGLAEIVAYYQLASESEWASIRDDVPQQLQWHLPDGSIREATIDQIIFVRPANANANANANA
D1-29_01229876hypothetical proteinATGGCTTTTTCCTCTGGCGGGGACACTCGGGGTGTTGTGGCAGTGGTCGGTGCAACTGGCCGGCAGGGATCGGCCGTAGTCCGTCACCTGCTCAAGGACGGATGGCAGGTGCGTGCCCTGACCCGGAATCCCTCCAGCGACGCCGCACAGGCGCTGCTCGCGCTGGGTGCCGACGTCCAGCAGGCCGACACCGAGAATCCCGGCACTCTTCGGACGCCGTTCCAAGGGGCCTACGGGCTCTTCAACGTCCAGAATCCGCAGACAATCGGGGCCGAAGCTGAAGTGCGGCAGGGCCGCAATGTGGCGGAGGCAGCAGCTGAAGCCGGCATACGCCACGTGGTGTACGGGGCGGCGGGAGTCAGCGATCAACCGACAGGCGTGGGCTCCTGGGACTCCAAGCTGGTCATCGCCCAGCACTTCCGCGAAGTGGGACTGCCGCTTACCGTCCTCCGGCCCATGGCGTTCATGGAACTGATGACGGACAAAGGTTACTATCCGCAGTTTTCCACCTGGCACCTGATGCCAAAGCTGATGGGCCAGTCCCGGCCGGTGGGGTGGCTGTGCGTTGACGATCTGGGTGCCATCGCCGCCCGGACGTTCGCCGACCCCGAACGGTGGAGCGGTGCCGTGCTGGGACTGGCGTCCGACGTCCGGTCGATCGAGCAGTGCCGCACCATGTGGCAGGAACGCGCTGGGCGAAGGCCGCGTGGGTTACCGATGCCGGAGAAGCTCTTTGAACGGTTCGTGGGGAAGGACCTCACCACCATGTGGCGGTGGCTGCGGACCGGGCAGTTCGACATGAGCACCCAGACGACGCTCGACATTCTGCCGGAGGCCTTGAATGTACGGCAGTGGCTGTCGCAACTGCCCAAGTAGMAFSSGGDTRGVVAVVGATGRQGSAVVRHLLKDGWQVRALTRNPSSDAAQALLALGADVQQADTENPGTLRTPFQGAYGLFNVQNPQTIGAEAEVRQGRNVAEAAAEAGIRHVVYGAAGVSDQPTGVGSWDSKLVIAQHFREVGLPLTVLRPMAFMELMTDKGYYPQFSTWHLMPKLMGQSRPVGWLCVDDLGAIAARTFADPERWSGAVLGLASDVRSIEQCRTMWQERAGRRPRGLPMPEKLFERFVGKDLTTMWRWLRTGQFDMSTQTTLDILPEALNVRQWLSQLPKNANANANANA
D1-29_01230534hypothetical proteinATGAGCGTATCGTCTTTCCGCATCGCCAAGCTGGCCCCCGGGTATGATCTGGGGGCTTTTGACTGCGGTGAGCCCTCGTACAACCAATGGCTGACCGATCATGCAATGCAGGCGGTTGACGCCGGAGCCAGCATGGTCTACCTGCTTCTGGAGGCGGCGCCAACTGCCCAGGAGCGCGTTGTCGGATACTTCGCGATTTGCCCAACTCTCGTAGTCCGCGATGACATGCCGAAGCCACTCCAACGAAAAGTGCTACGCAGCGCACCGGGCTGGCTCCTGGCCAAGTTGGCACTCGACCACACTAGGCGTGGCGACACAGCCCATCAGTGGGGCTCGCAGCTGCTGCGTGCGGCCTTGGAAAGAATCATCAGCGCCTCGGAGGTGGGCGGCGGCCAGATCATCGTCGTCGACGCGGACAACGCAGGGTTAGTTGGGTGGTACGAACGGCACGGGTTTGCTTCGACTGGCGGCAGCAACTTGAGGTTGTACATGAAGGTGGCTACGGCCAGGAAGTACCTCGGCCCCGCCGAATAGMSVSSFRIAKLAPGYDLGAFDCGEPSYNQWLTDHAMQAVDAGASMVYLLLEAAPTAQERVVGYFAICPTLVVRDDMPKPLQRKVLRSAPGWLLAKLALDHTRRGDTAHQWGSQLLRAALERIISASEVGGGQIIVVDADNAGLVGWYERHGFASTGGSNLRLYMKVATARKYLGPAENANANANANA
D1-29_01231270hypothetical proteinATGCCCAACACCAAATCACGTCGGCTTGAGTTGCGCACTGATGAGAGCACCGACGCCCTCATCACGGAAGCAGCCGAACTGCTTCACGTGACCAAGTCCGCGTTCGTGGCCGACGCTGCACGACAGGCCGCACAAAAGGTCGTCTCTCGCGCCGATATGACTCTCATGGCGCCCGAGGTCTTTGACGTCATGATGGCCTCCCTCGACACTCCCGATGAGTCCGCGGGGCTGGCGGAACTGGCCAGGCTCCCCCGGCTCATCGAACGATGAMPNTKSRRLELRTDESTDALITEAAELLHVTKSAFVADAARQAAQKVVSRADMTLMAPEVFDVMMASLDTPDESAGLAELARLPRLIERNANANANANA
D1-29_01232339hypothetical proteinATGGGTTGGCTACTATACGTTGCCTTCCTTCTTGGCGTTCTCGTCCTCGCCTGCATCGTCTGGTGCGTGTGCAAACTGGCGCTCTGGCTCATGGACCTCCCCCGGCTCACTGGCCCCACGCCCGCTGTCGGCCCCAGGCCGAAAGTACCCCCGGTACCCCGTAAGCCGAAAGCAGCCCCGCTCCCCCAGCGGGCGAAAGTACCCCAAGTCCCCCGCCGGGCGGCAGCCGAGGTCACCTCCGACATCTGGCCCAAATGGACGGCGGCGCGCAGGCAGTACATGGACCGCGAGCTGTCCCTCTGGCAGGAGCAGTTCGACGCCCTGAGCTCCCGCGAGTAGMGWLLYVAFLLGVLVLACIVWCVCKLALWLMDLPRLTGPTPAVGPRPKVPPVPRKPKAAPLPQRAKVPQVPRRAAAEVTSDIWPKWTAARRQYMDRELSLWQEQFDALSSRENANANANANA
D1-29_01233633hypothetical proteinATGCAGGAAAAGGATTCTCTGCAGCCCGGAACAGGTGCCGGTCCGTACCTCACTGGAGCCGCCATGGCGCAATCGCGGTTCGTTGCTGTTGCTGCCGCGCTTGCCGGCTTCGCCTTCGGAGTTCGGGGCGTGCTGAATACTTTGGGCGAAATCAGATACTGGAGTCCGGAGACTCCGCTTGAATACACCGCCGTGGCACTGCTTTCTGTGGCGATGCTGTTCCTTAGCGCCGCCCTGTGGGCTCTTGGGAGCTTTTGGGCAACGCACGATCACCTGCCCGGGCAGGCCGCACAGTGGAGCCGGTTCGCGGTCCGCGTCGCCGCCGTCGCCGCTGTGCTCGTTTCGGTTTCCAACTTCCTGGAGGACTACCTGAGGCTGCGCTGGTTCGGGCTGACGTTCGTCATGGGTTCAATCGCGCTGCTCCTGGGCCTGCTGGCTGCAATCGTCCTGCGGCTGGCGGCACCCGGAGTGGACAAGGTGGAAGGCATCCTGCTCGTGGCGCTCACTGCCGGCGTGGTGCTGATGTCCTTTGCGATGGGCGTGGGCTCCGCGTCGCTTCTGCTGCTGGCCGCCTATCACGCCTGGTTCCGGGACCGGCGGCGCGTCGGGCCACGTGCCGCAGGAGCGACGTAAMQEKDSLQPGTGAGPYLTGAAMAQSRFVAVAAALAGFAFGVRGVLNTLGEIRYWSPETPLEYTAVALLSVAMLFLSAALWALGSFWATHDHLPGQAAQWSRFAVRVAAVAAVLVSVSNFLEDYLRLRWFGLTFVMGSIALLLGLLAAIVLRLAAPGVDKVEGILLVALTAGVVLMSFAMGVGSASLLLLAAYHAWFRDRRRVGPRAAGATNANANANANA
D1-29_012341254Thermophilic serine proteinaseATGAAAAAGACTTTTATGGCTGGTTTCGCAGCGGCGATGATGGCGTTCGGGGCAGTGAATTCGGCAGTTGTGACCAACGCGGCGCCGCCCGAGCCATCCCACACGGCGGGGCAAATCATGGTCAAGTTCCGTGACAAAGCCGCGGCTGCGGGCACCCTGCGCCAGCATGGCCTCAGTGAGGGGCCGGGTATCGGTAGCACCGAAGCACAACTCATTAAGGTCCCGGCCGGCCAAGAACTCCGACTCATCGAGGCACTCAGCCGGAACCCGGCAGTGGAATACGCGGAGCCGGACCACATCGTTACTGCCGCCACAGATGACAAGTATTTCCCCAGTCAGTACGCGCTGCAAAACGACGGCCAGTCCTTCACCAACACCGCTGGCACACTGACGGTGGACAAGGGCACGGCGGATGCTGATGTGGACGCCGTCGAAGCGTGGACCGTCACCACCGGCCTCAGCATCAAAGTTGCCGTTCTGGATTCCGGTGTTGCCAACGACAACCCGGACATCCACCCGAAGGTGGTTGCACTCGCTAACTTCACCAACGGGGAGACTGGCGATGACAACTACGGCCATGGCACCCACGTGGCCGGCATCGTCGCGGCCACCGCCGACAACACTCAAGGCGTGGCTGGTACCTGCCGTGGCTGCAGCATCCTGGACGGCAAGGTGCTGAACGACAGCGGGGTCGGATCGAGCTCAGGCCTTGCGAACGGCATCAACTGGGGTGTCAGCAATGGTGCCAAGGTGATCAACATGAGCCTGGGGGTGCGGTCATCGCGAACGCTCGAATCTGCGGTCAACAACGCGTGGAACAAGGGTGTTGTGCTGGTGGGCGCGGCAGGCAACGGCGGCAATCAGACCAAGATCTACCCGGGGGCATATCCCAACGTGATTGCCGTTGGCGCCACCGACAACACCGATACCAAAGCGTCGTTCTCAACCTACGGAGCCAGCTGGGTGGACGTCGCGGCGCCGGGAGCCAACGTCTACTCAACGTTCCCCAACCACACATTCGTCCTCGGCACCCAGAACAAGCGCTCCTTCGGTTACGACGTCGGCAACGGAACCTCAATGTCTTCAGCTATCGTGGCCGGCGTTGCCGCAATGGTCTGGAGCTCACATCCCGGCGACACTCAGGCATGGATACGTGAATACGTTGAATCGACTGCCGAGATGAAATCCGGCCAGGAGACCTTCTGGGCACATGGCCGCGTCAACGCAGACAGGGCTGTCCGGGCTGTCCGGTAGMKKTFMAGFAAAMMAFGAVNSAVVTNAAPPEPSHTAGQIMVKFRDKAAAAGTLRQHGLSEGPGIGSTEAQLIKVPAGQELRLIEALSRNPAVEYAEPDHIVTAATDDKYFPSQYALQNDGQSFTNTAGTLTVDKGTADADVDAVEAWTVTTGLSIKVAVLDSGVANDNPDIHPKVVALANFTNGETGDDNYGHGTHVAGIVAATADNTQGVAGTCRGCSILDGKVLNDSGVGSSSGLANGINWGVSNGAKVINMSLGVRSSRTLESAVNNAWNKGVVLVGAAGNGGNQTKIYPGAYPNVIAVGATDNTDTKASFSTYGASWVDVAAPGANVYSTFPNHTFVLGTQNKRSFGYDVGNGTSMSSAIVAGVAAMVWSSHPGDTQAWIREYVESTAEMKSGQETFWAHGRVNADRAVRAVRNANANANANA
D1-29_01235855hypothetical proteinATGGAACCGATTCGGGCCATCCTTCTTCCCGGGAGTGTGCTCCCCGCCCAGCTGGCCTATGGCGATCTTATTGAAGCCCTGGGACCCGGGGTACAGGCCGTCGCCAAGGACCTGGAACTCTACGCCGACGACGAGCCCCCGCCCGGTTGGAGCCTGGACACAGAGGTGGACGGCGTGCTCCGCGAGGCTGATGCCCTCGGTTGGGAGACGTTCCATCTGGTCGGATACTCAGGCGGCGGGGCGGCGGCGCTGGCTTTCGCCGCCAAGCACCCGGACAGGCTGCTCAGCCTGGCGCTGCTCGAGCCCGCCTGGGCGGGCAGCTGGGACTGGAGCCCCGCCCACGCAGAGCTCTGGAAGAAGTACGAGGAGCTGGAAGCCCTGCCGCCTGAGCAGTTCATGCCCGCCTTTATGAGGCTGGGAGTGAAGCCCGACGTCGTCCTTCCGCCGCCGCCGGGTCCCCCTCCGCCGTGGATGGCCAAGCGGCCCGCCGGGATCAAAGCCTTCCTGCGGACCTTCAAGAGCTATGACCTGGAGCGGGAGCGCCTGGCCGCCTTCCCGCGGCCTGTGTTCTTCGCCCTGGGCGGCCTGAGCAATCCGGATGACTACGGCGAAATTGCCGGCCGGCTGGCAAGGGTCTTCTTCCCGGACTTCCATCTGGAGGTGTTTCCCCACCGCCATCACTTCGACCCGCCACATCGGATCGAGCCGGAGCGGCTGGCTGAGCTGCTCCGCCGGCACTGGGAAGCTGCGGAAGGCAGCCCGGCCGCGGTGCCTGCAGACTTTCGCGTCCTGCCGGGCGTCACGTCAGAATCCAGCACTGCGGAGATTCTGGACGACGTCCGTGGGGACCGTTGAMEPIRAILLPGSVLPAQLAYGDLIEALGPGVQAVAKDLELYADDEPPPGWSLDTEVDGVLREADALGWETFHLVGYSGGGAAALAFAAKHPDRLLSLALLEPAWAGSWDWSPAHAELWKKYEELEALPPEQFMPAFMRLGVKPDVVLPPPPGPPPPWMAKRPAGIKAFLRTFKSYDLERERLAAFPRPVFFALGGLSNPDDYGEIAGRLARVFFPDFHLEVFPHRHHFDPPHRIEPERLAELLRRHWEAAEGSPAAVPADFRVLPGVTSESSTAEILDDVRGDRNANANANANA
D1-29_01236873pheA_2Bifunctional chorismate mutase/prephenate dehydrataseATGGTTCGAAATATTGCATACCAGGGTGAACCCGGGGCCAACTCACACATCGCCTGCTTGGAAATGTATCCAGACATGGAGGCAGTTCCCTGCGCCAGCTTCGAGGACGTCTTCGCGCTTGTCACGGCCGGCGAGGCGGATTTGGCGATGATTCCGATCGAGAACTCGATCGCCGGACGGGTCGCTGACATCCATGCCCTCCTCCCGGACTCCAACCTGCAGATTGTGGGTGAACATTTCCTCCGGATCCGCTTCGACCTGCTGGGGATACCCGGCAGCACGATCGAACAGGCCAGGGAAGTGCACAGCCATTTGCATGCCCTTGGCCAGTGCCGCAAGCTGATCCGTTCCCACGGGCTCAAGCCGGTGATCGCGGGGGACACCGCCGGTTCGGCACGGGAGGTGCGGGAATGGAATGACCCGTCAAAAGTCTCGCTGGCCCCACCGCTGGCAGCGGGAATGTACGGGCTCGATGTCCTCGCGTCCGACGTGGAGGATGACCCTACCAATACAACCCGCTTCGTGGTCCTTGGAGAGAAGCGTCCACTTCCGGCGCGCGAAGACCTGCCGGAGTCCGTCATCACCAGCCTGGTTTTCCGGGTCCGGAACGTTCCTTCTGCCCTCTACAAGGCGCTGGGAGGATTCGCCACCAACGGAGTCAACATGACCAGGCTCGAAAGCTATATGGTGGGCGCGGAGTTCGCCGCCACCATGTTCCTTGCCGATGTTGAAGGGCACCCGGAGGACACCCCTTTAAGCCTGGCACTGAACGAACTGGAGTTCTTCACATCTGAGGTACGGATCCTCGGCGTTTATGCAGCCCATCCTTACCGGACGGGCGTTGAAACCGCAGCCGGCCCGCCAGTCCGGTAGMVRNIAYQGEPGANSHIACLEMYPDMEAVPCASFEDVFALVTAGEADLAMIPIENSIAGRVADIHALLPDSNLQIVGEHFLRIRFDLLGIPGSTIEQAREVHSHLHALGQCRKLIRSHGLKPVIAGDTAGSAREVREWNDPSKVSLAPPLAAGMYGLDVLASDVEDDPTNTTRFVVLGEKRPLPAREDLPESVITSLVFRVRNVPSALYKALGGFATNGVNMTRLESYMVGAEFAATMFLADVEGHPEDTPLSLALNELEFFTSEVRILGVYAAHPYRTGVETAAGPPVRNANANANANA
D1-29_01237783hypothetical proteinATGGAACCGATTCGGGCCATCCTGCTTCCCGGGAGCATCCTCCCTGCCCAGCTGGCCTATGGCGACCTGATCGAAGACCTGGCCCCGGGCGTTGATGCCATCGCCAAGGACCTGGAACTTTATGAGCGCGACGAGCCGCCGCCCGGATGGAGCTTGGGCACCGAGGTGGACGGCGTGCTCCGCGAAGCCGATGCGTTCGGCTGGGAGACGTTTCACCTTGTGGGCTATTCCGGGGGCGGCGCAGCGGCACTGGCGGTGGCCGCCGAGCACCCCGAGCGCCTGCTCAGCCTGGCGCTGCTCGAGCCCGCCTGGGCCGGCAGCTGGGACTGGAGCCCCGCCCACGAAGAACTGTGGAAGAAATACCGGGAACTGGAAGAACTTCCGCCGGATGAATTGATCCTGGAGTTCACCAGGCTGGGCGTGAAGCCCGACGTCGTCCTTCCGCCGCCCGTTGAAGGCGCCCCGCCGCCGCCGTGGATGGACAGGCGGCCCGCCGGCGTCAGGGCCTTCCTGGAGACGTTCAGGAGGTACGACCTGGACCGGGAAAAGCTCGCCGCCTTCCGCAAACCCGTGTTCTATGCCCTCGGCGGCCTGAGCAACCCGGACGCGTACGGGGAGATCGCGGACCGGCTGGCCAAGGTCTTCCCGGACTTCCGCGTCGAGGTGTTCGAGGAACGCCACCACTTCGACCCTCCGCACCGGGCCGAACCGCTGCGGCTGGCGGCGCTGCTGCGGGAGCTCTGGGACAGGGCCGAAGGCAGGGAGCATAACGTCGCCCTTTAAMEPIRAILLPGSILPAQLAYGDLIEDLAPGVDAIAKDLELYERDEPPPGWSLGTEVDGVLREADAFGWETFHLVGYSGGGAAALAVAAEHPERLLSLALLEPAWAGSWDWSPAHEELWKKYRELEELPPDELILEFTRLGVKPDVVLPPPVEGAPPPPWMDRRPAGVRAFLETFRRYDLDREKLAAFRKPVFYALGGLSNPDAYGEIADRLAKVFPDFRVEVFEERHHFDPPHRAEPLRLAALLRELWDRAEGREHNVALNANANANANA
D1-29_01238525hypothetical proteinTTGGCCGGAGCATCCAATCAGGGCGGACCGCACTGGCGCCGGGTGGTGGCGGCGCTCGCAAACCGGGAAGCGCGGACCGCCTACGCGCAGATAGTGCTCGGGGCCAAGCCACCGGATGCGCTTGCCGAAATGCGCGAACAACGGTGCACCCGTGCTATCGAGGTGCTGCTGACAGCCGGCCTGGTGGAACGGACCGGCACCGGTGAACTGCAAGCCTCCGCCACCATCTTCCAGGACCTCCTCACCCAACAACCCAAGCGTGTGCCACAGACCGGGGTGGACCGTTTCATGCGCCTGGGCCGGATCGAGAGGTACCCGGCCAACATGGCACAGCGCCGGGAGCTGCTCGCCTGGATTGCCGGTGACGCCATCCGGCCGGGCGAGGAGCTCACGGAACAGCAGGTCAACGAACGGCTCCTGAGCTACACCGACGACGTTGTGCTGCTCCGCCGCTACCTGATCGACTTCGGCCTGCTGACGCGGACGCCGTCGGGATCCTCCTATTCCCGTCAGGAAGAACAATAGMAGASNQGGPHWRRVVAALANREARTAYAQIVLGAKPPDALAEMREQRCTRAIEVLLTAGLVERTGTGELQASATIFQDLLTQQPKRVPQTGVDRFMRLGRIERYPANMAQRRELLAWIAGDAIRPGEELTEQQVNERLLSYTDDVVLLRRYLIDFGLLTRTPSGSSYSRQEEQNANANANANA
D1-29_01239435hypothetical proteinATGTCACGGCCGCACGGCCACGCCTTCGAAAGGGTCAAGCTCATGAAGTTCGTCATCCTTATCCACTCCAAGCCGCAGCCGTGGGGACATCCCACCGGTGACTACGTGGCCGAGAACCTGGCTCTGCCGAAGGAGCAGCGCGAGCAGATGAATACCGAGTTCGACGCGCTGCTCACGCAGCTGCAGGAGAACGGCGAGCTGCTGGGCGGCGAAGCGCTCGCCGATCCGGCGACGTCGAAGCTGTACCGGTGGCAGTCAGGCAAGGCCATCGCCACGGACGGGCCGTACGCAGAGTCCAAAGAGCAGTTCGCCGGGTTCTTCATGATCGACGTTGCCACCCGCGGGCGGGCCGAGGAGATTGCCGCGGCGTTCTCCGGCCCCGGCGAGACGATTGAGCTGCGTCCGGCGATGTGGCCCGGCGCGGACGACCAGTAAMSRPHGHAFERVKLMKFVILIHSKPQPWGHPTGDYVAENLALPKEQREQMNTEFDALLTQLQENGELLGGEALADPATSKLYRWQSGKAIATDGPYAESKEQFAGFFMIDVATRGRAEEIAAAFSGPGETIELRPAMWPGADDQNANANANANA
D1-29_01240669hypothetical proteinATGCAGCATGGGTATACGAATACGACCCGGCGGGTGCCCGGCGCCGTTCTCAAGACGTACGCCGGCCCTGATTCCTCGGCGCGCCAGGACAACGAACTGCGGGTCCTGTGTGCCCTCGCCGGCCGGTATCCCGTGCCGGAAGTCCTGGACGTCGTGGACGAGGGGGCCGGTTCGCTGCTGCTTGGATTTGTTCCGGGCGGGCACGGCCAGGACCTTATCGACGCCGGCCGGGCGGAAGAGGTGCTGCATGCCTGTGGCCTGGCGCTGCGCGCCTTGCACAGCATCGACGTCGCCACGGTGTTTCCGCTGGGTTCAAACCGGGGGCACGTCCTGACCCACGGCGACTTCGGGCCAAACAACATACTCCTGGATTCGGCGTGTGCGGTGACGGCCGTCCTGGATTGGGAGTTCAGCGGCCCCGGCGAGGCGGTGCTGGATGTGGCGTGGTGCGAGTGGATCGTGCGCATGCATCACCCCGCTGCGGTGGGGTCGCTCCCGGCATTCCACCGTGCTTACGGGCCGGTTCCCCCGTGGCCCGTGCGGCAGGCCGCCATGATCAGCCGCTGTGTATGGCTGCAGGATTTCAGCCGGCGCATGGACCCCGACGGCGGCGGCCCTGCCCTGTGGCAGGACCGCGCAACCGTCACGGCCCAGTGGAGCGAGCACTAAMQHGYTNTTRRVPGAVLKTYAGPDSSARQDNELRVLCALAGRYPVPEVLDVVDEGAGSLLLGFVPGGHGQDLIDAGRAEEVLHACGLALRALHSIDVATVFPLGSNRGHVLTHGDFGPNNILLDSACAVTAVLDWEFSGPGEAVLDVAWCEWIVRMHHPAAVGSLPAFHRAYGPVPPWPVRQAAMISRCVWLQDFSRRMDPDGGGPALWQDRATVTAQWSEHNANANANANA
D1-29_01241390hypothetical proteinATGGAAACGCAGGTCAGCGGAAGCACCGAACTCAAGGACGCGCCGCCGTCGTACATCGCTTCGATCATGGTCAGCGCTGTGGATGCCGAGCGGCTGGCTGCCTTCTGGTCCCAGTTCCTGAACCTCGAGGTGGCCTCGCGGATCGATCAGTTCATCTGGCTGGCGGCTGCCGGCCCGGGAGTGCCCCAACTGGGTTTCCAGCAGGTGGCCGACCCCACCGGCGGGCGGCGCCGCCTTCACCTGGACATCCATACCCCGGATGCGGCCAGCCTACGCAGGCACGCCGAGTCGCTGGGGGCCTCGTTTGTGGAGGGTCATGACATCGGCGATTTCCATTGGGACGTGATGCACGACCCCGAAGGCAACGAGTTCTGCATCGCCCAGGACTGAMETQVSGSTELKDAPPSYIASIMVSAVDAERLAAFWSQFLNLEVASRIDQFIWLAAAGPGVPQLGFQQVADPTGGRRRLHLDIHTPDAASLRRHAESLGASFVEGHDIGDFHWDVMHDPEGNEFCIAQDNANANANANA
D1-29_01242561hypothetical proteinATGGCGGTTGCTGTGGACATATTGAGCGGCGTAAGCGTGGACTGGCTCAAAGCTCTCACGTGGCTCTCTGCCATCGCCACCGGACTGCTGCTGGGCTTGTGGCGCCCCCGCCGTCTCCACTTGGCTGCGCTGGGGTCGGTGTTCGTTTTTCTGGTCGCCAACGCCGGGGCGGGCATCTACGTTCTGAACCACGTTGGTGACCCCCGCTGGAGCGGCAAAGATGAGGACCGTGTGGGGGTGCCCCCGCTCACTGATACGCCCGTGGTGGGACGTTTCCTGGAATCCCTCGAGACCCAGCTGCGTGGAATAGCTGACAACGTCAATGACTTCGTTGACTTCAGCGCTGCCCTTCCCCGGGCCATGGAGTTCTTTGTGGCCGCAGGCTGGGCGCTGGTCATTTCCCTGCCGCTGGCGCTCGCCGCCCTGATTGCCGGCTACCTCGAAGCAAGACGCCGGAAAGCCGAATTCCTCACGTACAAGCTTCAGGTGGAAGAGCTCAAACGTGACCTCGAAGACGTCAAGCGCCAACTCGCGTCACCGGAACGGGGGTCGCCGTCATGAMAVAVDILSGVSVDWLKALTWLSAIATGLLLGLWRPRRLHLAALGSVFVFLVANAGAGIYVLNHVGDPRWSGKDEDRVGVPPLTDTPVVGRFLESLETQLRGIADNVNDFVDFSAALPRAMEFFVAAGWALVISLPLALAALIAGYLEARRRKAEFLTYKLQVEELKRDLEDVKRQLASPERGSPSNANANANANA
D1-29_01243489hypothetical proteinATGAAGCCGGTCATCCTGCTGGACATCGACGGCGTGCTGAACCCTGTGGTGCGTCCCGGCGCCGACCGTCCGGAACTGTCGCTGCCGGCCGGCAAAGTGGCCCTGGTGCGAAGGCTGGCACGGTGCGGCCGGATCGCCTGGGTGTCCACCTGGCCGCCGGATATGACTGCCGGACTGGAATCGCAGCTGGGGCTGGACGTTGCCTCCTTGCGTGTGACGCTTATGTTCCGTTCCGCCGATGATGAGGAGCCGACGCCGAAACTGCGGTCGGTGAGCCGGTGGCTGGCCCGGATGAGGGACTCCGGCGAGGCAGATTGGGACTCGGTGGTGTGGATCGACGACGTGCTCGGACCCGACGCCCGCGAGTGGGCACAGCAGTACGATCAGCCGGTCCTGCTGGAGAAACCGGTGCCTGGCCAGGGCCTGACAGAAGTGCACGTGGTGGCCGTCGAAGTGTTTATCGACAGCGGTGAAGAGACCGGGCGGTAGMKPVILLDIDGVLNPVVRPGADRPELSLPAGKVALVRRLARCGRIAWVSTWPPDMTAGLESQLGLDVASLRVTLMFRSADDEEPTPKLRSVSRWLARMRDSGEADWDSVVWIDDVLGPDAREWAQQYDQPVLLEKPVPGQGLTEVHVVAVEVFIDSGEETGRNANANANANA
D1-29_012447622-dehydro-3,6-dideoxy-6-sulfogluconate aldolaseATGAGCGCCGCATCATTCGCCGCCAAAGCCCGGGCCAACCAGATCGTCGTCGGATATTGGGTGGTCCTGGATTCACCGGTATCCACCGAGCGGGTGGCGCGGCTCGGTTACGACTATGTGGCGCTGGACGCGCAGCACGGCCTGATGGGCTATTCCGGCTGGCTCCACGGTTTGATGGCCATCGACGCCGCCGGTGCAGCCGGGATCGTCCGGGTACCGTCCAACAACGCCGCCTTCATCGGGCAGGCGCTCGACGCCGGTGCCGCCGGCGTCATTGTGCCGCTGGTTAACAACGCGGAGGAAGCCGCCGCGGCGGTGCGTGCCGTGCGCTACCCGCCGCACGGCATCCGGTCCTACGGACCCATGCGCTCCGGGCTCCGGATCGGGCCGGTGCCCGCGGAGGCAGACGCCACCGTCCTGTGCCTGGCCATGATCGAGACCCCTGAGGGGCTGGCCAACGTCCGGGAGATCTGCGCCGTTCCCGGGCTCGACGGCGTCTACATCGGACCGTCCGATCTTTGCCTTGCGGTGGGCGGCAGGTTCCCCGATGATCCGGAGGTGGCAGAAGAGTTCGACGCCGCCCTGGTCACCATCCGTGACGCGGCCCGGGACGCGGGCATCATCGCAGCCATCCACACCGGCAGCGGCGAGATCGCCAGGCGGCGGATCGCCGAGGGCTTTACGTTCGTGACAGTGTCCTCGGACCTGACCCACCTCGAAGCCGCGGCGGCGCAACATCTTTCGACTGCCCGGGGCGAGTAGMSAASFAAKARANQIVVGYWVVLDSPVSTERVARLGYDYVALDAQHGLMGYSGWLHGLMAIDAAGAAGIVRVPSNNAAFIGQALDAGAAGVIVPLVNNAEEAAAAVRAVRYPPHGIRSYGPMRSGLRIGPVPAEADATVLCLAMIETPEGLANVREICAVPGLDGVYIGPSDLCLAVGGRFPDDPEVAEEFDAALVTIRDAARDAGIIAAIHTGSGEIARRRIAEGFTFVTVSSDLTHLEAAAAQHLSTARGEPGPT0001575_1466DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001575-hpaI|hpcH-K02510NANA
D1-29_01245204cspA_2COG1278putative cold shock protein AATGGCTACTGGTACCGTCAAATGGTTTAACGCTGAAAAGGGCTTCGGTTTCATTTCCCCCGATGACTCCTCACAGGACGTTTTCGCTCACTACTCCGCGATCGCCTCTTCCGGCTTCCGCTCACTCGAAGAGAACCAGAAGGTCTCCTTCGAGACCGAGCAGGGCCCCAAGGGCCCGCAGGCCGTCAACATCCAGGCACTCTAAMATGTVKWFNAEKGFGFISPDDSSQDVFAHYSAIASSGFRSLEENQKVSFETEQGPKGPQAVNIQALPGPT0014675_6813DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-29_01246477hypothetical proteinATGAAATCAGGTTGGGGGATCCTGGGTGTGCTGGCGGCCGCTGCGATCGGGGTTGTGCCGGCCACGGGCTGCACACCTTTGGCGTGCCCCGCCATCGGCTACGTCAGCAGCGTCACTGTGAATATCGAGGGAAATGTCGCGGCCGTCGATCAGGTGAGCCTGTGCGATAAGACCGGATGCTCCCAGCCGGAGCCCACGGCCGGGCCGGCACCGTCAAAGACGGTGGTCACCGAGTTCTCCCCCGCACCCCAGCCGACCGTCAGCATGGCACCGTTTTACAGCCGCCGCGCGGACAAGGACACGTGGGTGTTCACCGCGAATTCTGGCACGCCGTCGGAAGTCACCGTGAAGGCCATCGCGGCGGACGGCTCCGTCATTGCCGAGAAAGATCAGGATCTAGTGTGGACCAGGGTGGGTGGAACCGAACAGTGCGGCGGACCCATCACCACACCGCCCATCCAGTTTTCGGTGCCCTGAMKSGWGILGVLAAAAIGVVPATGCTPLACPAIGYVSSVTVNIEGNVAAVDQVSLCDKTGCSQPEPTAGPAPSKTVVTEFSPAPQPTVSMAPFYSRRADKDTWVFTANSGTPSEVTVKAIAADGSVIAEKDQDLVWTRVGGTEQCGGPITTPPIQFSVPNANANANANA
D1-29_012471281hypothetical proteinATGGCCACCATGCAAACAGCCGGTACCGTCCCCGCCTTTGACCTCCGGATCAGCATCGAGGATACCCGGCCCCTGGTGTGGCGCAGGCTGAAGGTGCCGGCCACGCTGACGGTGGAGGAGTTCCACTTGGCCGTGCAGGCCGCCTTCGGCTGGGAAAACCGCCACCTCTACGCTGTCCGCTTCGTGGACCGGACCGGGAAGCTGCGGGTCATTGTCGGTCCCGACGACGAATCGGAAGACCTGGACGCGGAGCCGCCCTCCGGCGTCGTCCTTTCCGATCTTCTGGCTGCCGGCAAGCCGGGAACCACGTTTGAATACGAATATGACTTCGGCGACGGCTGGACACATCACGTTCAGCTGCTGGGTTCCGCCGAGCTGCCGGCCGGGGAGATTGTTTGCGTAGACGGCGCCAACCGGGGACCGGTGGAGGATTCCGGCGGCCCCCACGGCTATGGACGGCTGCTGGAGATCCTGGCCGACCGGGCGCATCCGGAATACGAAGAGGCTTCTTACTGGACCTTCATGATGACTGGGCAGTACCGGCCGTCCTTTGACGCCACCACGTTCAGCCTGGCTACTGCCAACCGCAAGCTGCGGCTGCTGAGTCTCCAATGGTGGCCGCGAATCCGTACGGACGAGGAACGTGACGCCGTGATCCGGCCTGTCCGCTGGCTCCTCGAAATTGCTGCAGGCGATGGAGTGGAACTGACGAAGGACGGTTACCTGAAACCAGCCATGGTCCAGCGCGCACTGGATGAGCTCGGCTGGCGTGATTCCGTGATGGGCAAGGGGAACCGCGAGGCCAACGCGCTGCCCGTCCGGGAGCTCCGGGAGCACCTCCTCGCCTGGAAGCTGCTGCGTAAATTCAAGGGAGGGCTGGTTCTCACCCCTCGTGGAAAACGCGGGCTGGAGCGACCGGGGGATCTGTGGGACTACGTGGTTGATGCGGTGGCACTGCCGGAACACGATGCGGTTCGCCTTGTCACACGGCTGTACACGGAGTGGCATCTCAGCGGCGTTGCTCCGCCGAAGACCCGCCGTACCGAGGTCATCCACGCTGCGATGGAGAGCGTGGGGTTTGTGACCCGGTCCGGGCACCGCATCCCCGAGGACTGGGTCAGCGACATCAACCGGGTAGTCATGTGGAACTTCAAATGCCTGCATCTCATGGCGCCCAAGGAGCGCTACGGTGACAGGTCACTGCTTACCGACGGCGGCGTGAAGTTCCTGCTGAACGTCCGGGAGGTTGACGGGCTGTTTTCGGGTGGCCGGAAACAGTGAMATMQTAGTVPAFDLRISIEDTRPLVWRRLKVPATLTVEEFHLAVQAAFGWENRHLYAVRFVDRTGKLRVIVGPDDESEDLDAEPPSGVVLSDLLAAGKPGTTFEYEYDFGDGWTHHVQLLGSAELPAGEIVCVDGANRGPVEDSGGPHGYGRLLEILADRAHPEYEEASYWTFMMTGQYRPSFDATTFSLATANRKLRLLSLQWWPRIRTDEERDAVIRPVRWLLEIAAGDGVELTKDGYLKPAMVQRALDELGWRDSVMGKGNREANALPVRELREHLLAWKLLRKFKGGLVLTPRGKRGLERPGDLWDYVVDAVALPEHDAVRLVTRLYTEWHLSGVAPPKTRRTEVIHAAMESVGFVTRSGHRIPEDWVSDINRVVMWNFKCLHLMAPKERYGDRSLLTDGGVKFLLNVREVDGLFSGGRKQNANANANANA
D1-29_012481857ctaD_1COG0843putative cytochrome c oxidase subunit 1ATGGGTAACCTGAAGGAAATCAGGACCTCGGAATGTCATTCCGGCCTGATGAGGGGGCTCATGCACACGGGCCCGTTGGCACCGTCCGGACGAGGTGAAAAATTGGCCATCACAGGACAATCATCTGAAGGGGTAGCCGCCACGGCATCGCCCGCGGTTGTACCGCGGCGCAAAGGCAGTCTCGTCGTCACGTGGCTTACCTCCACCGACCACAAAGTCATCGGGTACATGTACCTGATCTCGTCCTTTGTGTTCTTTATGATGGCCGGGGTGATGGCCCTGCTCATCAGGGCCGAGCTCTATGAACCCGGCATGCAGATCCTGCAGACCAAGGAGCAGTACAACCAGCTGTTTACGATGCACGGCACCATGATGCTGCTCATGTTCGCCACCCCGCTGTTTGCCGGGTTCACGAACGTCATCATGCCGCTGCAGATCGGCGCCCCGGACGTCGCGTTCCCCAGGTTGAACGCCCTGGCATTCTGGTTCTTCCTCTTCGGCTCAACCATCGCCGTCTCCGGTTTCATCACGCCCCAGGGCGCGGCGTCCTTTGGCTGGTTCGCCTACGCGCCGCTGAACAATACAACGTTCAGCCCCGGCGTCGGCGGCGACCTGTGGGTGTTCGGCCTGGCGCTGTCCGGCTTCGGCACCATCCTGGGTGCTGTCAACTTCATCACCACGATCGTCTGCATGCGCGCTCCTGGCATGACCATGTGGCGGATGCCCATCTTCACCTGGAACGCCCTGGTCACGTCCATCCTGGTGATCATGGCCTTCCCGCCGCTGGCCGCAGCCCTGTTCGGCCTCGGCGCTGACCGGCGGTTCGGCGCCCACATCTACGACCCGAACAACGGCGGTGCCGTCCTCTGGCAGCACCTGTTCTGGTTCTTCGGCCACCCCGAGGTGTACATCATCGCGCTGCCGTTCTTCGGCATCGTGTCCGAGATTTTCCCGGTCTTCAGCCGCAAGCCGGTCTTCGGTTACAAGGGCCTGGTCTACGCCACCATCGCCATCGCCGCCCTGTCCGTCACCGTGTGGGCGCACCACATGTACGTGACCGGCTCCGTGCTGCTGCCGTTCTTCGCCTTCATGACCATGCTGATCGCGGTGCCCACCGGGGTGAAGTTCTTCAACTGGATCGGCACCATGTGGGGCGGCTCGCTGACCTTTGAGACGCCCATGCTTTGGAGCCTGGGCTTCCTGGTGACCTTCCTGTTCGGCGGCCTGACCGGCATCATCCTGGCGTCGCCGCCGCTGGACTTCCACGTGTCCGACTCCTACTTTGTGGTGGCGCACTTCCACTACGTGGTGTTCGGGACCGTGGTGTTCGCGATGTTCGCCGGCTTCTACTTCTGGTGGCCAAAGTTCACCGGCACCATGCTCAACGAGCGCCTGGGCAAGATCCACTTCTGGATGCTGTTCCTGGGCTTCCACGGCACCTTCCTGATCCAGCACTGGCTCGGCGCCGTGGGCATGCCCCGCCGGTACGCGGACTACCTGGTGGAGGACAACTTCATGTGGATGAACCAGTTCTCCACCATCAGTTCCTACCTACTGGGCGCGTCCATGATCCCGTTCCTCTGGAACGTCTACGTCACGTGGCGGGCCGGCGAGAAGGTCACCGTGGACGATCCGTGGGGCTTCGGCGCTTCGCTGGAGTGGGCCACGTCCTGCCCGCCGCCGCGCCACAACTTCACGTCATTGCCGCGCATCCGCTCGGAGCGCCCAGCCCTGGACCTGCACCATCCGGAGATCAGGGTCCGCGAACATGAACCCGTCCACTCTCCGGCCGCCGCTGCCCTGGGCGCCGCCGACATCGGCGAGAAGGACGTCCGCGATCCCAGCCCGGACAAGTAGMGNLKEIRTSECHSGLMRGLMHTGPLAPSGRGEKLAITGQSSEGVAATASPAVVPRRKGSLVVTWLTSTDHKVIGYMYLISSFVFFMMAGVMALLIRAELYEPGMQILQTKEQYNQLFTMHGTMMLLMFATPLFAGFTNVIMPLQIGAPDVAFPRLNALAFWFFLFGSTIAVSGFITPQGAASFGWFAYAPLNNTTFSPGVGGDLWVFGLALSGFGTILGAVNFITTIVCMRAPGMTMWRMPIFTWNALVTSILVIMAFPPLAAALFGLGADRRFGAHIYDPNNGGAVLWQHLFWFFGHPEVYIIALPFFGIVSEIFPVFSRKPVFGYKGLVYATIAIAALSVTVWAHHMYVTGSVLLPFFAFMTMLIAVPTGVKFFNWIGTMWGGSLTFETPMLWSLGFLVTFLFGGLTGIILASPPLDFHVSDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKFTGTMLNERLGKIHFWMLFLGFHGTFLIQHWLGAVGMPRRYADYLVEDNFMWMNQFSTISSYLLGASMIPFLWNVYVTWRAGEKVTVDDPWGFGASLEWATSCPPPRHNFTSLPRIRSERPALDLHHPEIRVREHEPVHSPAAAALGAADIGEKDVRDPSPDKPGPT0004025_1119DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-29_01249735hypothetical proteinATGTCGACGGCGACAGTTGGGCCCGCAGATGAAGCGGACGACGGCGGGGCTTCCCCCGCGATGCAGGGACGCGTTCTTGAGGCGGTGGGCGTTGCCATCGCCTCCGGCATCCTCCCGCCGGGCAGCCGCCTCACCCTGGACACGCTTCAGCAGGAGTACGGGGTCTCGCGGACCGTCGCGCGGGACACGATGAAGGTTTTGGAGTCGATGAACCTCGTCTACTCGCGGCGCCGGGTTGGCATTGTGGTGCAGGAACGGGCGCTGTGGAATGTTTTTGACCCCAAGCTGGTGCGCTGGCGCCTTGCCTCCGACAGCCGCGCGGAACAGTACAGCAGCCTCACCGAGCTGCGGATCGCCGTCGAACCCATCGCCGCGGCCGGGGCCGCCCGCCGTGCCAGCGCAGCCGAGCGTGCCAAGCTGATTGCCCTCGCCGCCGAGCTGAGGCGGCTGGGTGAAGCCGGGGAACTGGAGGCGTTCCTGGCCGCCGATATCGAATTCCACTGCCTGCTGCTGCAGAGCTGCGGCAATGAGATGTTCACTGCCCTGGAAGGGATGGTGGCCGAGGTCCTGACCAGCCGGACCAAGCAGGGCCTGATGCCGTTCAGGCCTAGGGACGAAGCCCTTCAGGCGCACGAGGACGTTGCCGCCGCCGTCGCCCGCGGTGATGCGACCACCGCCGAGACCGCCATGCACCACATCCTGGACGAAGTGCGGAACGCGATGGGGCTGCCCTAAMSTATVGPADEADDGGASPAMQGRVLEAVGVAIASGILPPGSRLTLDTLQQEYGVSRTVARDTMKVLESMNLVYSRRRVGIVVQERALWNVFDPKLVRWRLASDSRAEQYSSLTELRIAVEPIAAAGAARRASAAERAKLIALAAELRRLGEAGELEAFLAADIEFHCLLLQSCGNEMFTALEGMVAEVLTSRTKQGLMPFRPRDEALQAHEDVAAAVARGDATTAETAMHHILDEVRNAMGLPPGPT0018085_98DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776NANA
D1-29_01250528COG3265GluconokinaseATGCAGTATCCAGCCACGCACCTGGTGGTGATGGGGGTGGCCGGTTCCGGCAAGTCCACCATCGCGGCGGCCCTTTCCCAGCAACTGGGCTGGGCCTGCGCCGAGGCGGACGAATTCCACCCGCAGGCCAACATCAACAAGATGAGCCAGGGGATTCCCCTGCAGGATGAGGACCGCTGGCCGTGGCTGCAGGAGATCCGTGACTGGATGACAGCCCAGGCTCAAAGCGGCCAGTCCACCGTGCTTACCTGTTCGGCCCTCAGGCAGAGTTACCGGCAACTGCTCTCCGAGGCTGAAGGCCGGGTCCTGTTCCTGCACCTGCACGGTGAAGCCGACCTGATTGGCCAGCGGATGCAGGGCCGGGAAGGGCACTTCATGCCGCCCACGCTCCTGCCCAGCCAGCTGGCCACGCTGGAACCGCTCAGCCCGGAGGAGCTTGCCCAGGGAAGCCTCCGCCTGGACATTTCCAACTCGCCGGAAGAGCTCGTCCGGGCCATCCTCGCCGCGCTCAAGCTCCCGGCCGCCTGAMQYPATHLVVMGVAGSGKSTIAAALSQQLGWACAEADEFHPQANINKMSQGIPLQDEDRWPWLQEIRDWMTAQAQSGQSTVLTCSALRQSYRQLLSEAEGRVLFLHLHGEADLIGQRMQGREGHFMPPTLLPSQLATLEPLSPEELAQGSLRLDISNSPEELVRAILAALKLPAAPGPT0018055_444DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
D1-29_012511404ygbN_2COG2610Inner membrane permease YgbNATGACCATCGAAGGTTGGACCCAAACGATGGGCGCAGGCCCCCTGCTGCTCATCGCGGCGGCCGCAATAGGCGTCCTGCTGTTCCTGATCATCAAGCTGCGCATGCATGCCCTGATCGCCCTGATCGTGGTCAGCCTCGCCACCGCTTTCGCCACCGGAATCCCCGCGAACCAGGTGGTGCCGGTGCTGATCAACGGCTTTGGCACCACCCTGGGAACCGTGGCGCTCCTGGTGGGCCTGGGCGCCATGCTGGGCCGCATCGTGGAGACCAGCGGCGGGGCCAAGGTTTTGGCCGATTACCTGATCGGCGTCTTCGGTGAAAAGCGGGCCCCGTTCGCCCTGGGCCTCGCCTCGCTGATCTTCGGCTTCCCCATCTTCTTCGACGCCGGCCTGGTGGTGATGCTGCCCGTGGTCTTCGCCGTGGCCCACCGCCTGGGCGGGGGAGTGCTGCGGTTCGGCCTTCCCGCAGCCGGCGCCTTCTCCGTGATGCACATCTTCCTGCCGCCGCACCCGGGACCCGTCTCCGCGGCCGCCTTCTTCGACGCGAACATCGGCCTGGTCATGATCGCCGGCCTGATCGTCGCCATCCCCACCTGGTATGTGACCGCCTACCTCTACGGCCTGTACACCGGCAAGAAGCTGGTCCTTCCCGTGCCGGAAATCCTGGGCCATGCCAGTGCCGAAGCCGAATCACACCCGCCGCGCTTCCGCACCATCATCGGCCTGCTACTCCTGCCGCTGGTCTTGATCTTCATCAACACGGGCCTGAACACCCTTGCCTCCTCCGGCGTGCTGAGCGAAGGCGTCAGGAACGAGCAGTGGTTCCAGGTCCTGCGCACCATCGGCGAAACCCCGGTGGCGCTGCTGATCGCGGTCCTGGTGGCCATGTACGTCCTCGGTGCGCGGCGCGGAACCGCGAACGGTGCACTGGAGAAGCTGCTTGAATCTTCACTGGGCCCGGTCTGTTCCGTCATCCTCATCACCGGCGCCGGCGGCATGTTCGGCGGCGTCCTCCGGGCCTCCGGCATCGGCGACGCACTGGCCGACGTGCTGGGCAACCTGGGCATCCCGCTGATCCTGGCCGGCTTCCTGATCTCGGCCATCCTGCGCATCGCCCAGGGTTCCGCCACCGTGGCCCTGACCACCACCGCCGGGCTCATCGCCCCGGCGGTGGCGGCGGCGGGACTCACCGGTATGCAGGTTGCAGCCCTTGTGATCGCCGTGGCAGCCGGTTCCGTGGTGGTCTCGCACGTCAACGATTCCGGCTTCTGGCTCGTGGGACGTTTCTTCGGCATGGACGTCAAGACCACGCTGAAGACTTGGACTGTGATGGAAACCCTGATCGGTGTGATGGGCTTCGGTATCGCCGCCGTGATCTTCCTGCTGGCCGGGGTGGCGGGTTAGMTIEGWTQTMGAGPLLLIAAAAIGVLLFLIIKLRMHALIALIVVSLATAFATGIPANQVVPVLINGFGTTLGTVALLVGLGAMLGRIVETSGGAKVLADYLIGVFGEKRAPFALGLASLIFGFPIFFDAGLVVMLPVVFAVAHRLGGGVLRFGLPAAGAFSVMHIFLPPHPGPVSAAAFFDANIGLVMIAGLIVAIPTWYVTAYLYGLYTGKKLVLPVPEILGHASAEAESHPPRFRTIIGLLLLPLVLIFINTGLNTLASSGVLSEGVRNEQWFQVLRTIGETPVALLIAVLVAMYVLGARRGTANGALEKLLESSLGPVCSVILITGAGGMFGGVLRASGIGDALADVLGNLGIPLILAGFLISAILRIAQGSATVALTTTAGLIAPAVAAAGLTGMQVAALVIAVAAGSVVVSHVNDSGFWLVGRFFGMDVKTTLKTWTVMETLIGVMGFGIAAVIFLLAGVAGPGPT0001340_525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
D1-29_012521239IS110 family transposase ISArsp3ATGGACATTATTCACGAACGCGCCGCGGGGATGGACATCTCAAAACGCGACGCAAAAGTCTGCGTGCGGGTGCCCGGGACTCGGGCCGGGACCTACACGTCAAAGGTCACGACCTGGGGCGCGACCACGCAATCGATCCTTGAGCTGCGCGAGTTCCTGGAACACGAGCACGTCACCGTTGTGGCGATGGAAGCGACCAGTGATTACTGGAAACCCTTCTTTTACCTGCTCGAAGAGACATTGCCAGTGATGCTCGTCAATGCCAAAGCTGCCCGAAACATCCCCGGCCGCAAAACCGACGTCTCAGACGCTGCCTGGCTGGCCCAACTGGCAACCCATGGGCTGCTGCGCGCCTCCTTCGTGCCACCAGAACCGATCCGTGAACTGCGGGACCTCACCCGGGCCCGTGCCCTCGCGACCCGGGACCGCGCCCGGGAAATCCAGCGGCTCGAGAAGTTCCTGGAGAGCTCCGGGATCAAGCTCTCCTCGGTGGTCTCTGACCTGACCGGGGTCTCTTCCCGGGACATGCTCGAAGCCCTCATCAGCGGAGAACGGAACCCGGAGGTCCTGGCCGGCATGGCCCGTGGAACGATGCGCTCGAAAATCCCCGCCCTCGTTGATGCACTCACCGGCAGGTTCAAACCCCACCACGCGTTCATGGCCCGGCTCCACCTGGACCAGATCGATGCCCACAACCGAACCATCCAGGCACTCACGGCACGGATCGAGGAGGCGATGGAGCCCTTTCGTGACGCCAGGGAAGCCCTGGCCACCATCCCCGGAGTCTCCCACCGAGTCGCCGAGGTAATCATCGCCGAAACCGGCGCGGACATGACAGTCTTTGAAACCCCTGGCCGGCTCGCATCCTGGACCGGCGTCTGCCCCAGCGCCCACGAATCCGCCGGTCGGATAAAATCAGCGCACATCCTTCCCGGCAACAAATACCTCAAAGCGGCTTTGGGCACCGCGGCCATGGCAGCGGCACAATCCAAAAACACTTACCTCGCCGCGAAATACCACCGCATCACGGTCCGAAGCGGCCGCAACAAAGCCATCGTCGCCGTCGCGCATTCCATCCTCACCGCAACCTGGCACATGCTCACCAACGGCGAGTGCTACACCGACCCCGGCGCCGACCACTACACCAGACTCAACCCGACCCGAGCCAGGAACAACGCCATCAAACAACTCAACAGCCTCGGCTACGACGTCACGGTCACCCCGGTCACCGCAGCCTGAMDIIHERAAGMDISKRDAKVCVRVPGTRAGTYTSKVTTWGATTQSILELREFLEHEHVTVVAMEATSDYWKPFFYLLEETLPVMLVNAKAARNIPGRKTDVSDAAWLAQLATHGLLRASFVPPEPIRELRDLTRARALATRDRAREIQRLEKFLESSGIKLSSVVSDLTGVSSRDMLEALISGERNPEVLAGMARGTMRSKIPALVDALTGRFKPHHAFMARLHLDQIDAHNRTIQALTARIEEAMEPFRDAREALATIPGVSHRVAEVIIAETGADMTVFETPGRLASWTGVCPSAHESAGRIKSAHILPGNKYLKAALGTAAMAAAQSKNTYLAAKYHRITVRSGRNKAIVAVAHSILTATWHMLTNGECYTDPGADHYTRLNPTRARNNAIKQLNSLGYDVTVTPVTAAPGPT0030635_671DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_01253378hypothetical proteinATGGAGATGCCCAAACCTTCAGAGGCTGACAAGGAGCGCTTCCGGTCTGTGGTGCCGGACAGGCCGGACGTGGTGGTCAAACCGATGTTCGGCAACCTCGGCGCCTTCGTGAACGGCAACATGTTTGCAGGACTGTTCGGCCCCACCATCGGCGTCAGGCTCTCCAGCGAAGACCGCACGGAGCTTGAAAGCACCGAGCGGACCGTGCCGTTCGGGCCGGTGGAACGTCCCATGGGCGGCTACGTCGGGCTGCCGGAGGTGTGGAACGCCGAAGGCGACGGCGACGACGCCCGGGTACGTGCCTGGATTGAAAAGGCGTTCGAGTACGTGGCGGACCTCCCGCCCGAGGAACCCAAGGCCCACGCGCCCCGCAAGTAAMEMPKPSEADKERFRSVVPDRPDVVVKPMFGNLGAFVNGNMFAGLFGPTIGVRLSSEDRTELESTERTVPFGPVERPMGGYVGLPEVWNAEGDGDDARVRAWIEKAFEYVADLPPEEPKAHAPRKNANANANANA
D1-29_01254438hypothetical proteinGTGGGCCAGCTGTTGGTCCGCCTGCTGGCGGAGTTCCGTCGCGAGCTTCTGGCAGAGGCGGAATCCCATGGCTACGGCGACCTGCGTCCCGCCCATCTGCAGATCACAGGGAACGTTGGGACCAAGGGAATACGCCTGACAGCCTTGGCCGCACGCGCCCAGCTCAGCCTGGCCGCGACGTCCGAACTGGTCAATGAGATGCAGGAGATGGGGTATCTGGAGCGCCGGCCTGATCCGGCCGATGCCAGGGCAAAACTGATCTTCCCCACCTCCCGTGGACTCCAGCTTCTGCGCGAGGCATCAAACAAGGTCAAGGAAATTGAGCAGCTCTGGGGCACGTACGCAGGGGAACAGCGGTTCGAGGAAGCGTTGCTGACACTTCAGGACGTCCTGGCCGCAACCCGAACAGCCGCGAAACGCTCGGACAAGGACGCCTGAMGQLLVRLLAEFRRELLAEAESHGYGDLRPAHLQITGNVGTKGIRLTALAARAQLSLAATSELVNEMQEMGYLERRPDPADARAKLIFPTSRGLQLLREASNKVKEIEQLWGTYAGEQRFEEALLTLQDVLAATRTAAKRSDKDANANANANANA
D1-29_01255840menH_12-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGCATCTGAACATTTCCCCGACGATGATCCAAACCACGCTTGGTCCCCTCATGGTCCGCCGCAAAGGGGCCGGCCAGCCGGCGCTTTTATGGCACAGCCTGTTTGTTGATTCCAGCACTTTTGCCAACGTCGTGGACCGCTTGGGTCAGGAACGGGAACTCATTCTGGTGGACGGTCCCGGACACGGTGGCAGCCCCGGGCCCCGGCGCCCCTACTCCCTGGTGGAGTGTGCCGTTGCTGCAAACCAAATCCTGGATGCCTTGGGCGTCTCGGGCCCTGTTGACTGGGTGGGTAACGCCTGGGGAGGGCATGTGGGAATCGTCTTCGCTGATACATTCCCCGCCCGCTGCCGGACTCTCACCACAATCGGCTCACCCCCTTATCCGCTCACCCGATCCGAACGCCTGCAGACGCTCCCTCTGGTATCCGCGTACCGGCTCCTTGGCCCGGCTCTGTTCGCAGGTGCCATCGTGGATGCGCTGGCAGGCAAAGGCGCGGCGAAGTCAGAACCGCAGGCCGCAGCCGCAGTTGCAGAGGCCTTCCGGAGAGGAGGCAAGCGCGACAAATATTGGGCCATGCAATCGGTTATGCTGCGGCGGCCGGACCTTCGCCCTGTCCTGGCCCGGCTGCAGGTCCCCACGCTGGTGCTGGTAGGCCGGAACGATCCCATGAACGACGCTGTGGAGGCAGAGCGTGCGGCCCGAAGTGTGCGCGACGGACGTTTCGCAGTGGTCACCGGCTCCGGTCGCGTTGCCCCGCTCCTGATCGCACCGGACGAAGTCACGCAGCACATCCTGTCGTTCTGGTCAGACAGCCGGAATCAGCAGGCGGCAGCCTGAMHLNISPTMIQTTLGPLMVRRKGAGQPALLWHSLFVDSSTFANVVDRLGQERELILVDGPGHGGSPGPRRPYSLVECAVAANQILDALGVSGPVDWVGNAWGGHVGIVFADTFPARCRTLTTIGSPPYPLTRSERLQTLPLVSAYRLLGPALFAGAIVDALAGKGAAKSEPQAAAAVAEAFRRGGKRDKYWAMQSVMLRRPDLRPVLARLQVPTLVLVGRNDPMNDAVEAERAARSVRDGRFAVVTGSGRVAPLLIAPDEVTQHILSFWSDSRNQQAAAPGPT0004995_235DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-29_01256300hypothetical proteinATGACTCAGGAAATCCACGCTGAACACACCCTCACGGACCACCAGCACGGCGGAGACGACTGCACCCATGTCACCGTCCAGCACGGCGACCACGTTGACTACATCCACGATGGCCACCGCCACGCGGAACACGAAGGCCATTACGACGAGCACGACGATCCGGCCGAGCACACGCCGGCCCAGCACCAGCATGGCGGCCCGGACTGCAGCCATGAAACGGCCCAGCATGGCGACCACATCGACTACATCCACGACGGTCACCGCCACGCCGAACATGAAGGCCATTACGACGAGCACTGAMTQEIHAEHTLTDHQHGGDDCTHVTVQHGDHVDYIHDGHRHAEHEGHYDEHDDPAEHTPAQHQHGGPDCSHETAQHGDHIDYIHDGHRHAEHEGHYDEHNANANANANA
D1-29_01257669hypothetical proteinATGAACACTTCGGCTGGTTCACGGTTGCAGCGTCTGCTCGGCCACGGCCACGGACTCCTGTGGGCAATGGTGGCCGGAGGTCTTCTCTGGACGGTTCACGGATACTTCCGCTTTCTGACACCGCAGGGGCCGGACGCCGTCTGGCGGGAGGATCTGGGGTATTCGCAGATCCTGAGCACCACCCTTTTTCTGCTGTACAGCCTGCCGGGCGTACTGGCCCTCCTGCTGACTTCCTGGGCCGCCCTCTCATTCCTGCCAACCCTGGCCACCGGACGCGCAGGGCTGAGGCGCGCGGCCAGGATATTTGCGTTGCTGGCGTTTATTTTCGGACTGGTGGCCGCCGTTGGCCAGGTGATTCTGATCCTTTCCCCGACAATCGCCGGGATCAGTTTTGGGGTTCCTGCGCTGGGGCTGGCCCTGTTCCTTGGGGGGTTTGCTGCCGGCAGGAAGGGCGCGGACGGCAACGGACAACGGAGATTCGTTGGGCTTTGGATGATGCTGTTAGGCGGCGTCGGAATGCTCACCCTGCCAGTGCCACTGCTGGTGTACGCGCTGGCGCTGCTGCCTCTTGCCCTCGGGACCGCCGTGTTTGCTCTGTTCGGCGCGGGCTGGATTGCACTGGCTTTCACCCTCCGCACGGAAACGGCCACGGCCGCCCAAACCCTTTAGMNTSAGSRLQRLLGHGHGLLWAMVAGGLLWTVHGYFRFLTPQGPDAVWREDLGYSQILSTTLFLLYSLPGVLALLLTSWAALSFLPTLATGRAGLRRAARIFALLAFIFGLVAAVGQVILILSPTIAGISFGVPALGLALFLGGFAAGRKGADGNGQRRFVGLWMMLLGGVGMLTLPVPLLVYALALLPLALGTAVFALFGAGWIALAFTLRTETATAAQTLNANANANANA
D1-29_01258819fabG_13-oxoacyl-[acyl-carrier-protein] reductase FabGTTGACTCCTCGCACCATCGTGATCACCGGCGCCAGCGACGGCATCGGCGCAGCAGCCGCACGATCGCTGGCGGAGGCAGGGGAGCGGGTTGTCGTCGTCGGCCGTTCCGCTGAAAAGACGCGTGCCGTCGCCAAGGAGCTCAACGCCGACTACTTCGTCACTGACTTCGCCGACCTGGCGCAGGTACGTACCCTCGCTGCCCAGCTGAGGGAAAACTACCCGCGGATCGACGTCCTGGCCAACAACGCCGGCGGCATCATGGGAAAGCGCACCCTCACCGTGGACGGCCACGAATCCACCTTCCAGATCAACCACCTGGCCCCCTTCCTCCTCACCAACGGGCTGATGGACGTGCTGACCGCCAGCAGCGCCAAGGTCATCAACACCTCCAGTGCCGCCAACGGCTTCGGCAAACTGGATCTCTTTGACCTCACCTCGGAGCACGGCTACTCCACCAACCGCGCCTACGGCACCGGAAAACTGGCCAACATCCTGTTCACCAGCGAACTGCACCGCCGTTTCGGCGAAAAGGGAATCACGACGGCGGCATTCCACCCTGGTGTGGTCCGCACCAACTTTGCCGCGGAGTCCAGCAGCCCCTGGCGGCACGCCTACAAGACGCTCCTGAACAGGTTCATGCTCTCGCCGGAGCAGGGTGCGGACACCCTGCTGTGGCTCATCAACGGCACCCCGGGGACCGACTGGATCTCCGGTGCCTACTACTATAAGCGCGCCCTGGCCAAGGCGAACGCACAGGCCTACGACGCCAATCTGGCCCGTGAATTCTGGGACCGGAGCGCAGAGTTGATTACGGCCTGAMTPRTIVITGASDGIGAAAARSLAEAGERVVVVGRSAEKTRAVAKELNADYFVTDFADLAQVRTLAAQLRENYPRIDVLANNAGGIMGKRTLTVDGHESTFQINHLAPFLLTNGLMDVLTASSAKVINTSSAANGFGKLDLFDLTSEHGYSTNRAYGTGKLANILFTSELHRRFGEKGITTAAFHPGVVRTNFAAESSSPWRHAYKTLLNRFMLSPEQGADTLLWLINGTPGTDWISGAYYYKRALAKANAQAYDANLAREFWDRSAELITAPGPT0010520_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-TYPE_II_POLYKETIDE-AKLAVINONE-DAUNORUBICIN_METABOLISM,PGPT0010520-dnrU-K15956NANA
D1-29_01259852hypothetical proteinATGCATAAGGCCTCAGCGATCGGCCTGGCGGCAGCAAGTGTCCTGGCGTTGGCATCATGTACGGGGGGAGATGCGGGGCAGGAGCCCTCACCCACTGCCACCACCGCCACTTCGGAGGCCAAGGCCTATACCGAAGACGAACTGCGCGACCTGATCTCCGGAATGCAGGATGCCGAGGGCAACGAACTGAAACTCTATTCCAAGGAGCAGGTGGACCAGGGCGGCAATATCGCCCAGAGGCTGATGAGCACGGCGACGGTGGAGCCCGAGGACTGCAAGGCGATCGCCACCGCAGGGCTCCTGGACGAGGTGGAGAACGGCGAGGTGGCCATTGCGATCTCCGAGAGTGCCCAGCCGCGCACCCTGTCCGCGCAATCCAGCAGCAGTGGGCCGGCCGGCGTCGAACTGCTCCGCGACGTGAGGGACAAACTGGGCCAGTGCTCCACGTTCACGATCGAGATTCTGGGGCAACGCTATGAGGTGTCCAGCGAAAGCCTGGAGGCTGAGACCGATGGCGAGGAGACCTTTGCCACCGTGAGCACGCGGGATGGGAACACCGGTCAAATGCTCATGCAGGTTTCCGCGGCGGAGGGGCGCTTGCTGGTGGTTGCCACCAAGGCGGGAGCTGACCTGAGGGATCCTGACCGGGAGGAACTCGAGGGCCTGGTGAACCAAGTGCTGGCCAAGACCGACGGAGACGGGACGGCCACGGCGTCGCCCACGAGGACCCCGACGGGGACGACTAGCCCAACCACAACCGCCACGACTACTGTCACGGTGTCGCCCACGGAGACGGAAGGGGACACCAGCCCTTCGCCAACAGGAACAGCAAGCCCCACGGCTACGCGCTAGMHKASAIGLAAASVLALASCTGGDAGQEPSPTATTATSEAKAYTEDELRDLISGMQDAEGNELKLYSKEQVDQGGNIAQRLMSTATVEPEDCKAIATAGLLDEVENGEVAIAISESAQPRTLSAQSSSSGPAGVELLRDVRDKLGQCSTFTIEILGQRYEVSSESLEAETDGEETFATVSTRDGNTGQMLMQVSAAEGRLLVVATKAGADLRDPDREELEGLVNQVLAKTDGDGTATASPTRTPTGTTSPTTTATTTVTVSPTETEGDTSPSPTGTASPTATRNANANANANA
D1-29_01260552hypothetical proteinATGCGCAAAGTTACCGCCGGCCTATTCCACTCCGTGGATGGAGTGGTGTCAGACCCCTATCTTTGGCAGTTCGACAGCTTTGACGACGAACTGGGCATGGGGCTGGACCGCATGATCAAGAGTGTGGACACGGTGGTGCTGGGCCGCGTCAGCTATCAGGAGTGGGCAGGCTATTGGCCCACGGCATCAGTGGACGAGGATTTCGCCGGCTTCATCAACCCTGTGGAGAAGTTCGTCGCCTCGCGCAGCCTGAGCGAACCGCTGGAGTGGGAGAACTCGCACCTCATCGAGGGCCCGCTGGAGGAGTTTGTGGCCGGGCTGAAGGAACGCGACGGCGGCGAGATCGCCATCTGCGGCAGCATTTCCGTGGTGCGCCAGCTCCTGTTCGCCGGGCTGCTGGACTCCCTGACCCTGATGACCCACCCCGTGGTGGCCGGCAGGGGCCGCCGTCTGTTCGAGACCGACGACCCCATCACCAGGCTGAGCCTGCAGGACCAGTACCGGACCAGCAAAGGCAATGTCATCAGCACCTACGGGCTGCTGGGCGAATAGMRKVTAGLFHSVDGVVSDPYLWQFDSFDDELGMGLDRMIKSVDTVVLGRVSYQEWAGYWPTASVDEDFAGFINPVEKFVASRSLSEPLEWENSHLIEGPLEEFVAGLKERDGGEIAICGSISVVRQLLFAGLLDSLTLMTHPVVAGRGRRLFETDDPITRLSLQDQYRTSKGNVISTYGLLGENANANANANA
D1-29_01261444hypothetical proteinATGGAAACCCTGAAGAAAATCGTGAGCAACCAGTATTTCCCCGCAGCCGCCGTCCTGACGGCTGTGGTGCTTTTCTGGGCTGTGGGCATGGTGGGCGGCTTGTCCATGCTCAACGATAAGAACGCGCCGATGGCCACGCTCACGTGGATGCTGTTCGTCTACATGGCAGCAGTCCTCACCCCGGTCGCCGGCGTCATGGCCGCCATGGACCTGGTTCGCCGCTACAGGCTGAACCGCCAGACGCGCGGGAGTCAGTTCGCCGAGCTGGAGCAGGCCGAGGTACAGCAGGCTGAGCTAGAGCAGCCTGAGGTACAGCAGGCGGAGATCCTGCAGCCCGAGATCCTACAGCCCGAGGTACAGCAGCCTGAGGTTCAACACGCACCGGCCCGAAAGCAAGAAACCCCGTCAGTGAGCAAAAGGCCCGGCTGGAAACAGGCTGCCTGAMETLKKIVSNQYFPAAAVLTAVVLFWAVGMVGGLSMLNDKNAPMATLTWMLFVYMAAVLTPVAGVMAAMDLVRRYRLNRQTRGSQFAELEQAEVQQAELEQPEVQQAEILQPEILQPEVQQPEVQHAPARKQETPSVSKRPGWKQAANANANANANA
D1-29_01262909cheB_1Protein-glutamate methylesterase/protein-glutamine glutaminaseGTGAAAGTCCTGGTTGCCGACGACGATCCTGGCTCGCTCATGGTGGCAAGGGCCGCCGTCGAGCGTTCCGGCCATGACTGCCTTGCGGCGGCGGACGGCGACGAGGCGTGGAAGCTTTACCTGCGGCACCAGCCAGATGTTGTGGTCACCGACTGGATGATGCCCGGGATGGATGGCCTGGCGCTGTGCCGGGCCATCCGGGCGCGGGAGTCCGATCTCTACACCTACATCGTGATGCTGACCTCCCAGGGATCCCGGGATGACGTGCTGGCCGGGCTTGAGGCGGGTGCTGATGACTACGTCACCAAGCCGTTGGATCCTTTTGTGCTGCACGCCCGCCTGCTGGTGGCGCTGCGGGTCACCACGCTCCATGCCGATCTGGCCCATTACCGGAAGGTCCTCTCGCAGGAAGCGCGCACCGATCCGCTCACCGGCCTGCACAACCGGCTGAAACTGTCCGAGGACCTGGAGCAGCTGCACGCACGCAGCCACCGGTACGCCGAAGAGTATTCCCTGGCCATGTGCGATGTGGACAACTTCAAGAGCTATAACGACATCTACGGCCATCAGGCTGGTGACCTCGCGCTGCGGGCGGTGGCTGCGGCACTGGTCAGCCATGCCCGGAAAAGCGACGGCGTGTACCGGTTCGGCGGCGAAGAGTTCTTAATGGTCCTGCCGAACCAGACGCAGCTGGGTGCCCGGGCAGTAATTGAACGGGCGCTCCACAGCATCCGGGAACTGGCCATCCCGCACGAGGGTGATCCCGCAGGGCTGCTGACGCTCAGCGCGGGGATTGCCGCCTTCAATGCGCAGCACCGGGTGGACGCCCAGCAGTTGCTGGGCGAGGCTGACTTGGCGCTTTATGCTGCCAAGGCTGCCGGACGGAACCGGGTGGAACTGGCGCTGTAAMKVLVADDDPGSLMVARAAVERSGHDCLAAADGDEAWKLYLRHQPDVVVTDWMMPGMDGLALCRAIRARESDLYTYIVMLTSQGSRDDVLAGLEAGADDYVTKPLDPFVLHARLLVALRVTTLHADLAHYRKVLSQEARTDPLTGLHNRLKLSEDLEQLHARSHRYAEEYSLAMCDVDNFKSYNDIYGHQAGDLALRAVAAALVSHARKSDGVYRFGGEEFLMVLPNQTQLGARAVIERALHSIRELAIPHEGDPAGLLTLSAGIAAFNAQHRVDAQQLLGEADLALYAAKAAGRNRVELALPGPT0015900_1612PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-CELL_FATE_CONTROLPUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-29_012633351rcsC_1Sensor histidine kinase RcsCGTGTCTCAAACTGGTCTCGTGGAGCAGCGGCCCACCATAGTCAGCAGCAAGGCCCCGCTGGGGCGGCTGATCCTGCTGGCTCTTGTGGTGGTTGCCGCGCTTGGCCTGTATTTCGCCGCCAACAGCGGCACAACAACGGCTCTGGTGGCCGGCGATTTCGCCATCCTGCTGGCAGCGTTGCTGGCTGGTGCCAGCTGCGCACGCGCGGCGCTGCGGGGTGGACCCAACGCCCGCGCCTGGGGCTTCATGGCCCTGGCAGCCTTCATTTGGGCAGCAGGCATGGCGGTGTGGACGTATTACGGGCTGGCCTACAACCACGTCTACCCCTTCCCATCCCTTGCTGACGCAGGCTTCCTGGCCTACTCAATCCCGGCCGCCGCCGCACTTTTTGCGTTCAAGCGGCGGAGCGGCAGCAGGGTTGCCCTGTTCAGGACTGTCCTGGATGCCGCCGTCATCGCGGGATCCGTCCTGGTGGTCAGCTGGCACACGGCGCTGGGGCCAGCGTTCAGCACCGAGCATGCAGACCTTCTGACCCGGCTGACAGGCCTGGGATATCCGGTTGTCGACGTGGTCATCACGTCGCTGGTGCTGGTACTTGTCATGCGCCGGCAGCCCGGCGAGCGGCTCCCCTGGCTGTGCTTTGGCGGCGGTCTCCTGGTCCTGACCGTGACAGACAGCATCTATGTCCGGCTCACGTTTGAAGGGGTCAGCGGGGTCACAGGTTCGCCGTTGGCCATCGGATGGATCTCAGCATTCCTCCTGATCGCCCTGGCACCCTTAATTCCTTTTAGTGAGAATCCGGCTCCGGACCGCAAGACGTACGCCCTGGCTTTGGAGCTTCTCCCCTACGCCCCGCTCCTGATCGCGCTGGTGATGTTTGCTGCCCCGCACATTCATGAGGTGGATACATTCCTGCTGGTGGTGGCGAGGATAACCCTGGTAGCCGTGGTGGTACGGCAGGTGCTGATCATCATAGAGAACATCAGGCTGACCACCGGCCTGGAGCAGGAGGTCACCGCACGTACGCATGAGCTGGAGGGACTGGGAGCAATCGTCAACTCCTCCACAGACGCCATCCTGGGAACCACCAGCGAAGGCATCGTTACCAGCTGGAACCCAGGCGCTGAAAAGCAGTACGGCTATATGGCAGAAGAGGTGATCGGCCGCGACGCCATCTTCCTCCTGACGCCCGAAAACAAGGAACGGGACATGGAGGCGTTCGCGCGGCTCTATGACGGCAAGGACGCCATGAGCTACGAAACCGAGCACCTAAGGAAAGACGGAACCGTCATTCCGGTGTCCCTGACCGTCTCCCCGATCCGCGAAAACGGGGAGCTGCACGGCGTTGCCACCATCGCCCGCGATATTACCCAGCGCCGGGCGGCAGAACGGGAGCTTCAGGCTGCACAGGCGGCAGCCCTGGAATCCAGCCGGCTGAAGTCCGAGTTCCTTGCCACCATGAGCCACGAGATCCGCACTCCGATGAACGGCGTGGTGGGGCTGACGGCCCTGCTTCTGGAAACGCCACTGGATGAAACGCAGCGGCAGTATGCCCAGGGCGTCAAGGGCGCGGGTGAGGCACTCCTGGCGCTCATCAACGACATCCTGGACTTCTCCAAGCTGGAAGCCGGCAAGGTGGACCTGGATGTGCGGCCCTTCGATCCGCGGATCCTGGTGGAGGAAGTGGCAGGGCTGTTGGCCGAGACTGCACAGGCGAAGCAGCTGGAACTGATTGCCTACTGCGATCCGGACGTTCCTGCCCTTCTCTCCGGCGATTCCGGCCGGATCCGCCAAATCCTCCTGAACCTGGCCTCCAACGCCGTGAAGTTCACCGCGTCCGGCGAGGTGTCCATCCGCGTACGCGCCGAGATCCAGGAGGACAGCACGGCAATGGTGCGCTTCGACGTCCGGGATACCGGCATCGGCATTGATCCGGCGGACCATGCCCGGCTCTTCGAATCGTTTTCGCAGGCCGATGCCTCCACTACCCGCCGTTACGGTGGCACGGGGCTGGGGCTGGCCATCTGCAGCCGGCTGACGGAGGCAATGGGCGGGGAAATTGGGCTCAAGAGCCAGCTGGAGGAAGGCAGCACGTTCTGGTTCCGCATTCCGCTGCCGGTGGCACCGGGCTCCAGTGCTCCGGCCCCCGCCACGGGCTTCCTCAACGGGCTGAGGGTGCTGGTGGTGGATGACAACGCCACCAACAGGCTGGTGCTGGAATCCCAGCTGCGCGGCTGGCGCCTGGAACCGGAGGCGGTGCCGGATGCGCAGTCCGCCCTGGCCCGGGCGCGGGAGGCGGCCTCCGCCGGGGAGCCATTCGACATCGCCGTGCTTGACCTTTGCATGCCGGACATGGACGGCCTCGAACTTGCACGCGAGATCACGGCCGACCCCCTGTTGGCCAGGCTTGAAATGATTCTGCTGACCTCCACCATGCAGGTGGATGCGGCGGAAGTAGCCGACGCCGGAGTCCGTGAATGGCTGATGAAGCCGGTACGCAGCTCCGAGTTCTACAACCGGCTGGTCCGGCTGATGTCCGCCCGGGAGATGACACCCGCACCCGCCGCCCCTCCTGCCCAACCTCAGGCGGCACCCGCGGGGCCGTCCCGGGGCCGCGTCCTGGTGGTGGAGGATAACGAGGTAAACCAGCTGGTGGCCCGGGCGACGGTCACCCGGTTCGGCTATGACGTGGACGTGGTGGCCGACGGCGCCGAGGCCGTGGCCGCCACTGCCTCCACCAACTACTCGGCTGTCCTGATGGATTGCCATATGCCGGTGATGGACGGCTTCGAGGCCACCCGGATCATCCGCGGCCGCAGCGGGAAGCACAGCCGCCTCCCCATCATCGCCATGACAGCCGGAGCACTCGACGGCGACCGCGAACGGTGCCTGGCGGCGGGCATGGACGATTACCTCTCCAAGCCGGTGGTGGCCGCTGAGCTGGAGGCAACGTTGGCCCGCTGGATCCCGGAGCCTGGGAATGACGTTGAGCGGCCGCCGTCGGTGGATCCCGAACGGCTGGCCATCCTGCGGGAGCTGGGCCCCGCAGACGGGTTTGGTCTGCTGCCCGCGGCAGCGGAGGCGTTCCGCCGGGATGTCCCGGCAAGGCTCGCGGCCTTGCAGCAGGCGGTGGACGACGGCGGCGGGCCCGCTTTGCAGCTGGCCGCCCACACGCTCAAGGGGGCTGCCGCCAACATCGGTGCCACCGCCGTCGCCGATCTCTGCCAGGAGCTGGAAGGAATGGGACGAAGCGGAAACCACGACGGCGGTGCGCAAGTGATCCGGCGGCTGGAACGGGAACTCGTCCTGGTGGGCACCGCCCTCGACGAAGCGCTGGTCGTTACGCAGTGAMSQTGLVEQRPTIVSSKAPLGRLILLALVVVAALGLYFAANSGTTTALVAGDFAILLAALLAGASCARAALRGGPNARAWGFMALAAFIWAAGMAVWTYYGLAYNHVYPFPSLADAGFLAYSIPAAAALFAFKRRSGSRVALFRTVLDAAVIAGSVLVVSWHTALGPAFSTEHADLLTRLTGLGYPVVDVVITSLVLVLVMRRQPGERLPWLCFGGGLLVLTVTDSIYVRLTFEGVSGVTGSPLAIGWISAFLLIALAPLIPFSENPAPDRKTYALALELLPYAPLLIALVMFAAPHIHEVDTFLLVVARITLVAVVVRQVLIIIENIRLTTGLEQEVTARTHELEGLGAIVNSSTDAILGTTSEGIVTSWNPGAEKQYGYMAEEVIGRDAIFLLTPENKERDMEAFARLYDGKDAMSYETEHLRKDGTVIPVSLTVSPIRENGELHGVATIARDITQRRAAERELQAAQAAALESSRLKSEFLATMSHEIRTPMNGVVGLTALLLETPLDETQRQYAQGVKGAGEALLALINDILDFSKLEAGKVDLDVRPFDPRILVEEVAGLLAETAQAKQLELIAYCDPDVPALLSGDSGRIRQILLNLASNAVKFTASGEVSIRVRAEIQEDSTAMVRFDVRDTGIGIDPADHARLFESFSQADASTTRRYGGTGLGLAICSRLTEAMGGEIGLKSQLEEGSTFWFRIPLPVAPGSSAPAPATGFLNGLRVLVVDDNATNRLVLESQLRGWRLEPEAVPDAQSALARAREAASAGEPFDIAVLDLCMPDMDGLELAREITADPLLARLEMILLTSTMQVDAAEVADAGVREWLMKPVRSSEFYNRLVRLMSAREMTPAPAAPPAQPQAAPAGPSRGRVLVVEDNEVNQLVARATVTRFGYDVDVVADGAEAVAATASTNYSAVLMDCHMPVMDGFEATRIIRGRSGKHSRLPIIAMTAGALDGDRERCLAAGMDDYLSKPVVAAELEATLARWIPEPGNDVERPPSVDPERLAILRELGPADGFGLLPAAAEAFRRDVPARLAALQQAVDDGGGPALQLAAHTLKGAAANIGATAVADLCQELEGMGRSGNHDGGAQVIRRLERELVLVGTALDEALVVTQNANANANANA
D1-29_012642127hypothetical proteinATGCCGGAATCAGTGCGTCATAGGGGAAAGCCTGAAAGAGGAACTTTCGGCAGCCTCCTGGACGCCAACCCTGACGGACTCATTGCCTTGGCGCCCGACGGCACCATCAGCCTCGCCAACGAATCGGCCGCACGGCTCTTTGGGTTGAGCCGGGATGAGCTCCTTGGAACTGACCACCGGAAACTGCTCCTGGCGGGGTCCCAGGGCGAACTCGTCAAGCTCTTCCAACAGCTCCAGGAGCAGCCCGGAAAAGATATAGCACCGCGGGAAGTGCACGGCGTACACAGCAGCGGGTACAGCTTCTCCGCCGAGATGGCCGGGGCGATAGTGGAGGCCGATGAGGGGACCCAGCTCCTGGTTTCCGTCCGAAGCACCGCCCACCGGAGGGCGGCCGACGCCGACCTGCGCAAAGCCATGTCCCTGTTGACAGCAACCCTTGAGTCCACGGCAGACGGCATCCTGGTGGTCAGCTCGGAAGGCAAGCTCGCCGGGCTCAACGAGCAGTTCCTCAAAATGTGGGATATCCCCCCGGAGCTGTTGGACGGTGACTCGGCCGAGCCCATCATGCGGCTCATCCTGGCGCAGGTCACCCACCCGGAAGCCTTTATGGCCAGGGTGGCGGAGCTGCAGGAGGACCCTGCCGCTGAAAGCAATGACATGCTGGACTTCCGGGATGGCCGGACCTTTGAGAGGTATTCACGTCCACAGAAAGTGGGAGACCGCATCGTAGGCCGCGTCTGGAGCTTCCGGGATGTGACCCCGCGGAGGCAGGCGCAGGAGCAGGCACAGCGGGCCATGCAGGAAATGGCAGCGCAGGCGGAACAGCTGAAGGCGATGGCTTTCCAGGATCCGTTGACAGGCCTCGCTAACCGGGCGGTGTTCAATAACGCCTTGGAGGCAGCACTCAGCGAGCCACGGCTCAAGTCAGTGGATGTCCTGCTGCTGGACCTTGATGATTTCAAGGAAGTCAACGACATTCTGGGCCATCAGGCGGGCGATGACATGCTGGTGGAGGTGGCGCGCCGCCTCACCGGTTGCGTCCCCAATGCCGATGTTGTGGCCCGGCTCGGCGGCGATGAGTTCGTGGTGCTGCTGACCGCCTGTCAGGATGTCGAAGCCACAGCGGCCTGCATTGTTCGGTGCCTGAACGTGCCAATGCAGATTCACGACACCATGCTGCGTCCCTGCCTGAGCCTGGGTGTCGCGTCCGTCGGAAGGGAAGCAATCGGTCCCTCCGGCCTGCTCCGCGAGGCAGACATCGCCATGTATGCGGCTAAGGCAGCGGGAAAAAACCGGTTCCTGCGGTTCCAGCCGGACATGATGACGGCACTGGTGCAGCGGACGGACATGCAGGCTGCCCTGCAGTCGGCGCTCACAAAAGGCGAGATTTCCGTTGATTTCCAGCCCATCTCGTCTCCCCGCAGGGGCCAGGTGGTCAAGTTCGAGGCGCTGGCCCGGTGGGACCGTGGAGGCGAGCGTATCCCGCCCACCGTCTTTATTCCGATGGCGGAGCGGAGTGGCCTGATCAACCAGATCGGGCTGGAGGTGCTGTCGCAGAGCCTGGTCCGGCTGGCGCCCTGGCTGCGGGAAGATCCGTCACGTTCGCTTGCGGTGAACGTTTCGGGGGTCCAGTTGCAGGAACTGGACTTTGCAGACCGTGTCCTTGATCTCGCCGAGGCCAGCGACGTAGCCGCTTTCCAGCTGGTCATGGAGGTTACCGAAAGCGTATTTTTCGACGCCGACCAGCATGTGATCGGCCAGCTTGGAAGGCTGCGCGACGCCGGCGCCCGGGTGGCGCTGGATGACTTTGGCACCGGTTACTCCTCGCTGGGGCGGCTGCAGGACCTGCCGGTGGATACGGTAAAGATCGACAAGACTTTTGTGTCCATGATCCGGTCCGGGGCCGAGCGCCTGCCTATCCTCAGCTCCATGATCAATATGGCTCACAGCCTGGGCCTGACGGTCACAGCAGAAGGTATTGAGACGCCCCAGCAGGCCGACTACCTGATCGCGCTGGATTGCGACTCCCTGCAGGGTTACCTGTTCTCCCACCCCGAGCCGGGCGAACGGCTGGACATCGCGTTGCGGCACGCGAAAGAAGCGCTCGAAACCCTTAGAAACCGGTAGMPESVRHRGKPERGTFGSLLDANPDGLIALAPDGTISLANESAARLFGLSRDELLGTDHRKLLLAGSQGELVKLFQQLQEQPGKDIAPREVHGVHSSGYSFSAEMAGAIVEADEGTQLLVSVRSTAHRRAADADLRKAMSLLTATLESTADGILVVSSEGKLAGLNEQFLKMWDIPPELLDGDSAEPIMRLILAQVTHPEAFMARVAELQEDPAAESNDMLDFRDGRTFERYSRPQKVGDRIVGRVWSFRDVTPRRQAQEQAQRAMQEMAAQAEQLKAMAFQDPLTGLANRAVFNNALEAALSEPRLKSVDVLLLDLDDFKEVNDILGHQAGDDMLVEVARRLTGCVPNADVVARLGGDEFVVLLTACQDVEATAACIVRCLNVPMQIHDTMLRPCLSLGVASVGREAIGPSGLLREADIAMYAAKAAGKNRFLRFQPDMMTALVQRTDMQAALQSALTKGEISVDFQPISSPRRGQVVKFEALARWDRGGERIPPTVFIPMAERSGLINQIGLEVLSQSLVRLAPWLREDPSRSLAVNVSGVQLQELDFADRVLDLAEASDVAAFQLVMEVTESVFFDADQHVIGQLGRLRDAGARVALDDFGTGYSSLGRLQDLPVDTVKIDKTFVSMIRSGAERLPILSSMINMAHSLGLTVTAEGIETPQQADYLIALDCDSLQGYLFSHPEPGERLDIALRHAKEALETLRNRPGPT0023624_2313DIRECT 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
D1-29_01265270hypothetical proteinATGGGAATTCTCGGGTTTCTCATTTTGGGCTTGATCGCTGGAGCTATCGCCAAGGCCATCCTGCCCGGAAGGCAAGGAGGAGGCTGGCTGATCACGCTCGTCCTGGGCGTCGTGGGCGCTATTCTTGGCGGCTGGATCGGCTCCCTCATCTTCGGCGGCGGACTTGCCGAATTCTTTGACCTCCGGACCTGGCTGCTGGCAATCCTGGGCTCCATCATTGTCCTGCTGATCTACGGTGCAGTGGCGAACCGAGGCAGAAGCCGCGTGTAAMGILGFLILGLIAGAIAKAILPGRQGGGWLITLVLGVVGAILGGWIGSLIFGGGLAEFFDLRTWLLAILGSIIVLLIYGAVANRGRSRVNANANANANA
D1-29_012661410ywqFCOG1004UDP-glucose 6-dehydrogenase YwqFGTGAAGATCTCAGTCATTGGCTGTGGCTACCTGGGGGCAGTCCACGCTGCCACGCTGGCATCAATGGGGCACACGGTCGCCGGCATTGACGTGGACGCCGCCAAGGTGGAGCACCTCGGCCGCGGCGCGGCCCCGTTTTATGAGCCCGGGCTGGATGAGCTCCTGCAGGACGGGCGCACCACCGGGCGCCTGACCTTCTCCACCGACTTCTCCGCCGCAGCCGGAGCGCAGGTCCATTTCCTCTGTGTGGGAACGCCGCAGTCAAAGACGTCCGACGGCGCCGACCTCACCTATCTGGTCTCCGCCACGGAAGCGCTGCTCCCGCACCTGGCGAGGGGCGCCGCCGTCGTCGGGAAATCCACGGTGCCGGTGGGCACTGTGGACATGCTCCACGGAATCCTGGCCAGGCGCCCTGACGTGCTGGTGGGGTGGAACCCCGAGTTCCTGAGGCAGGGCACAGCCGTCAAGGATTCCCTAGTCCCGGACCGGCTGGTGTACGGCGTGGAAGGCGGCCGGGCCATGGCGTTCAACCCTTCCACAGGAGCGCCCCTCGCAGTCACCGCAGTACTGGATGCAGTCTACGAGCCGCTGCTGAACGCAGGCATCCCACGGGTGGTGTGCAGCTTTGCCACGGCCGAGCTGATCAAGTCTGCCGCCAACGCGTACCTGGCAACGAAAGTCAGCTTCATCAACGCGATCTCGGAACTGTGTGACGCATCGGGTGCGGACGTCGCCGAACTGGGTGAGGCCATGGGCATGGACCCGCGGATCGGCAGCCGCTATCTGCATGCGGGGCTGGGTTTCGGCGGCGGGTGCCTGCCCAAGGACATCCGCAGCTTCCGGGCACAGGCCGCCGGTTTAGGCGTCCGCTCAGTGGATGACTGGATGGGCCTGGTGGATGCCATCAACCTGGGGCAGCGGACCAGGACGGTTGCCCTGGCCAAGGAGCTCTGCGGTGAACTGGCGGGCCGCTCGGTCACTGTGCTTGGCGCGTCCTTCAAGCCGGACACGGACGACATCCGCGATTCCCCAGCCCTTGATGTTGCCTCCCGCCTGGCGGAGGCAGGGGCGCATGTCACGGTCACGGACCCCAAGGCCGTGAACCACGCGTGGATGCGTTATCCGCGGCTTCGCTTTGAGACCTCCACCAAGAAGGCCCTGCAGGGAGCGGAACTGGTGCTGCTCCTGACCGAGTGGGACGAATACCGGCTGCTCGCCCCTGCGGTTGCTGGCGGAATTGTCCGACGGCGGGTAGTTCTGGATGCACGGAACGTGCTGGATGCTGCTGCCTGGCAGGCCGAGGGCTGGACAGTACGGGGGCTGGGGACGAACGGGGTAACCGTCGAGCCCGCGCTGGGACCGCAAAAACCACATATTTCAGTCACAAAAACAACTATTGCCACCTTTTGAMKISVIGCGYLGAVHAATLASMGHTVAGIDVDAAKVEHLGRGAAPFYEPGLDELLQDGRTTGRLTFSTDFSAAAGAQVHFLCVGTPQSKTSDGADLTYLVSATEALLPHLARGAAVVGKSTVPVGTVDMLHGILARRPDVLVGWNPEFLRQGTAVKDSLVPDRLVYGVEGGRAMAFNPSTGAPLAVTAVLDAVYEPLLNAGIPRVVCSFATAELIKSAANAYLATKVSFINAISELCDASGADVAELGEAMGMDPRIGSRYLHAGLGFGGGCLPKDIRSFRAQAAGLGVRSVDDWMGLVDAINLGQRTRTVALAKELCGELAGRSVTVLGASFKPDTDDIRDSPALDVASRLAEAGAHVTVTDPKAVNHAWMRYPRLRFETSTKKALQGAELVLLLTEWDEYRLLAPAVAGGIVRRRVVLDARNVLDAAAWQAEGWTVRGLGTNGVTVEPALGPQKPHISVTKTTIATFPGPT0017855_924DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCURONATE_MODIFICATION,PGPT0017855-ugd|tuaD-K00012NANA
D1-29_012671122mgtACOG0438GDP-mannose-dependent alpha-mannosyltransferaseATGAACGGGGTAACGCACTCCATCCTGCGGGTGCTGGAGCATCTGCGGGACCGGGGCGATGAAGTCCTGGTGATTGCCCCCTCGACCCAGGAGCCAACGGGGGCTGCAGGACCTGAAGAGGTGTACGGCGCGCAGGTGCACCGGCTGCCTTCCATGCCCCTCGCCGGATACACCAAGGTGCGCGTAGCGATGGGGGGTGTGTATCGGGTCAAGCGAATCCTTGCCGATTTCGCACCCGATATTGTTCACCTGGCCTCGCCGTTTGTCCTGGGCTGGCGCGCAGTCCAGGCCGCACACCAGCTGGGCATCCCCACGATCGCCATCTACCAGACCGAGGTCCCCAGCTACGCGGCACGGTATGGTGTTCCGTTCCTGGAGAACTGGGCGTGGAACCGCGTGGAGAACATCCACCTGCTGGCCACCCGGACCTTGGCCCCCTCCACGTTCGCGCTGAATCAGTTGCGCGGGCGTGGCATTCCGCGGGTGGCCATGTGGCGGCGGGGTGTGGATACCGTCCGGTTTTCACCCGGAAAGCGCGACGACGGCTGGCGGGCTTCCGTGGCACCCGGCGGCGAACGGATCATCGGCTATGTTGGCCGCCTGGCTGTCGAAAAGCAGGTGGAGGACCTCGCCATATTGGCAGATGTCCCCAACACCAGGCTGGTGATTGTGGGTGACGGGCCACAGCGGGCCGCCCTGCGGGAGGCCCTGCCGGAGGCGGTCTTCGCCGGATTCCTGGGCGGGGAGGAACTCGCCCGGGCAGTTGCTTCGTTCGATCTTTTTGTCCACCCCGGCGAATTCGAAACGTTCTGCCAGACCATCCAGGAAGCAATGGCATCCGGTGTTCCAGTGGTGGCTACGGGCAGGGGCGGGCCTTTGGACCTGGTGGAGAATTCCCGCACGGGCTGGCTCTACGAACCCGGTCATCTGGCCGGGTTGCGGGCGCACGTCACGGACCTGATGGGCGACGACGCCAAGCGCCGTGCGTTTGCGGCAGCAGCCCACGCCTCGGTACAGAACCGCACCTGGCCGGCCCTCAGCGCCGAGCTGGTGGCACATTACCAGGCCGCAATCGCCGGCTCGCCGGTGGCGCCGGCCGGCAGGAAGGGGGCAACGCTGTGAMNGVTHSILRVLEHLRDRGDEVLVIAPSTQEPTGAAGPEEVYGAQVHRLPSMPLAGYTKVRVAMGGVYRVKRILADFAPDIVHLASPFVLGWRAVQAAHQLGIPTIAIYQTEVPSYAARYGVPFLENWAWNRVENIHLLATRTLAPSTFALNQLRGRGIPRVAMWRRGVDTVRFSPGKRDDGWRASVAPGGERIIGYVGRLAVEKQVEDLAILADVPNTRLVIVGDGPQRAALREALPEAVFAGFLGGEELARAVASFDLFVHPGEFETFCQTIQEAMASGVPVVATGRGGPLDLVENSRTGWLYEPGHLAGLRAHVTDLMGDDAKRRAFAAAAHASVQNRTWPALSAELVAHYQAAIAGSPVAPAGRKGATLPGPT0017895_227DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
D1-29_01268963hypothetical proteinATGGGGGCGATACCACGGACTCGTTGGCGCTCGGCCATCCGTTCCGTCCTGCTGGCACTCCTGACAGCGCTGGCCTGGCTCGCGTGGGGAGCCGGGACCGCCACTGCCTCCAGTCTGGTTCCGGACGGCGGCGAACTCGGCAACCTTTCGGAGTCTGTCCTGACCCAGCCGCTTCCGGCACCTCCCGTCGTCGTCAGCGCAGGTGATACCGCAGTAGCCGGGGCGGGTTCCCTGACGGATTCGGCAACAGGTGCCGTCAATACATTGGCCGCCCCGGTTGTGCCTGTGGTCGCAGGCACAACCGCAACAGTCACCGGCTTGGTACCCAGGCTGCCCGACCTCCCCTTGGTGCAGGCGCCCCTCCCGCTTCCCCTCCCCGACATCCTGCCGTTGCCTGACCAGTTGCCGCCGCTGCTGCCGGAACCCCTGCCCGCGCCCTTACCGCTGCCCTTACCGCTGCCGGACCTGCTGCCCGTCCCCGTCCCGCCGCAACTGCCCGGCCTGCCCCCGCTGACGACGCCGGCACCTGGCTCCGGGGCGACACCCGCCGCCAACCTCCCGTCGTCCGACGCCGTTGCACAAGTGGCCGCCGGGGCTGGTTTGACTCCGGCCAGCACTGCTACTGCACCCGCCGAAGAGACGGACGTAACGGCGCAGTCGAACACGCTGCGGTTCGGCTTCACCGCAGCCCAGGACTTCGCCGGGTCAGCCACGCGCCGTGCGGCAACGGCAAACCCCTCCGGCCCAGGGGACGGCACCGGCAATACCGGCAGGCTGGACCCTCCGGCGCTCGCGAATGGCGCAGCTACGGCCGGCTCCGGGTCAGCCGGAGGCTCATCAAGCCCTGCAGACCTGGGCGGATCCTGGCACGTCCTTCGGCCATTGGCTTATGGACCACACCTGTCCGGCACCCAGACGCTGCCGGCCGCCCCTTCCTTCGATCCCGGGTCTTCACCCGACTGAMGAIPRTRWRSAIRSVLLALLTALAWLAWGAGTATASSLVPDGGELGNLSESVLTQPLPAPPVVVSAGDTAVAGAGSLTDSATGAVNTLAAPVVPVVAGTTATVTGLVPRLPDLPLVQAPLPLPLPDILPLPDQLPPLLPEPLPAPLPLPLPLPDLLPVPVPPQLPGLPPLTTPAPGSGATPAANLPSSDAVAQVAAGAGLTPASTATAPAEETDVTAQSNTLRFGFTAAQDFAGSATRRAATANPSGPGDGTGNTGRLDPPALANGAATAGSGSAGGSSSPADLGGSWHVLRPLAYGPHLSGTQTLPAAPSFDPGSSPDNANANANANA
D1-29_01269816COG3861putative proteinATGCTCACGAGGGAAAACATTGAAAACCTCCTGAATAGGGGAGGGAACGTAGTGGCATCGGACGGCGACAAGATCGGTTCGATCGGCCAGCTCTACGCTGATGACGACACGGGCGAGCCCACCTGGGTCACCGTGAAGACCGGGCTGTTTGGAACGTCCCAGTCGTTTGTTCCGGTTGAAGGCGCCCGGATCGACGGCGACGACCTGGTGGTTCCGTACACCAAGGACCACGTCAAGGACGCTCCGCGGGTGGACGCGGACGGACACCTGGAGCCAGACGAGGAAGACCGGCTGTACGACCACTACGAACGGGGCGGCCGGACCTACTCCGAAGCCCGCACCGACGCCGGCATGACGGACACGGATTACCGCGGCGACGCCGACCTCAACGCCGGCGATGCCGCCGGAACCGTGGGCCGCGACACCTCCGGCCCCACCACCGATGACGCCATGACCCGCTCGGAGGAACGCCTGAACGTGGGTACCGAAAAGCAGGCCACAGGGCGGGCAAGGCTACGCAAGTACGTCACCACCGAGAACGTCACCCACACCGTTCCCGTGCAGCGCGAGGAAGTCCGCATCGAGCGCGAACCCATCACCGATGAGAACCGCGGAGCAGCGATGTCGGGCCCTGACCTCAGCGATGAAGAGCACGAAGTGACCCTTCACGAAGAGCGCCCCGTGGTGGACAAGGAAACCGTGCCGGTGGAGCGCGTCCGCCTGGACAAAGACACCGTGAAGGACGACGTCACCGTCAACGAAGAGGTCCGCAAGGAACGCATCGAGGCCGACGGCATCGACGATACCCGCCGCTAGMLTRENIENLLNRGGNVVASDGDKIGSIGQLYADDDTGEPTWVTVKTGLFGTSQSFVPVEGARIDGDDLVVPYTKDHVKDAPRVDADGHLEPDEEDRLYDHYERGGRTYSEARTDAGMTDTDYRGDADLNAGDAAGTVGRDTSGPTTDDAMTRSEERLNVGTEKQATGRARLRKYVTTENVTHTVPVQREEVRIEREPITDENRGAAMSGPDLSDEEHEVTLHEERPVVDKETVPVERVRLDKDTVKDDVTVNEEVRKERIEADGIDDTRRNANANANANA
D1-29_01270843hypothetical proteinATGACCGCCATCATCCTCGGCTGGAACCCGGACCGCTGGAACGACTGGAACTACCCGGCAGTCCTCGAAGAGGTGGCCGCCGCGGGGCTGTACATCCACTCCTGGAACCCTGGAAAGCGCAGAAACCTCCCGGCCGGCACAGACGTGTGGCTGGTTCTGCAGGGAAGACGCGGGCCGGGGCTCATGGGTCACGGCGCGGTTGTCTCGGCGCCAGGCGGCGAAACGCCCATCATGCATGTGCAGGTCGGCTTCGACGCCCTTCTGCCGCTGGGTGACCACATAGCGTCCGACGTCCTCATGCAGGCCACGCCTGCCGTCCCCTGGAGTGTGGCCAACCGTTCGGGCCTCACCGTCCACCCCTCTGAGGAAGCGAACATCCGGGCCCTCTGGGGAGCCTTTGGGCCGGCGCCGGCGCCAGACCCCACGCATCCGGTGCCCGGCACGTATCCGGGAGGCGCCGTCAGCTGGGCGCAGGTGAACCGGTACGAACGCGACCCAGAAGCCCGGCGGGCCTGCATCGCCCATCGCGGCACCAACTGTGCCACCTGCGGGTTCTCGTTTGAAGTGACCTACGGCGAGATTGGCCGGGACTTCATCCAGGTCCACCATGTGGTGCCGGTGTCTGAACTCGGCGATGGCTACCAACTTGATCCCGTCACGGACCTTGTTCCGCTGTGCGCCAATTGCCACGCCATGGCCCACCACGGAGTGAGCACTCCCAGGACCGAAGGGGAGCTAAGGCGGGTGATCGCCGCCGCCGGGTTCCTGCGCGGAACCACCGTGTCCGACACCGAACTCGAAGCCGAGCGTGCCGCCAAGGAGATCCTGGGACCGGAGAAGTAGMTAIILGWNPDRWNDWNYPAVLEEVAAAGLYIHSWNPGKRRNLPAGTDVWLVLQGRRGPGLMGHGAVVSAPGGETPIMHVQVGFDALLPLGDHIASDVLMQATPAVPWSVANRSGLTVHPSEEANIRALWGAFGPAPAPDPTHPVPGTYPGGAVSWAQVNRYERDPEARRACIAHRGTNCATCGFSFEVTYGEIGRDFIQVHHVVPVSELGDGYQLDPVTDLVPLCANCHAMAHHGVSTPRTEGELRRVIAAAGFLRGTTVSDTELEAERAAKEILGPEKPGPT0027235_268DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027235-mcrA-K07451NANA
D1-29_01271462hypothetical proteinATGACTACCGCATCCCCACATGCACACGGTGTCCATTTTGGACGTTCAGACGTCCAGAACGCCGGCATGGGTGTAGGTATTCTCTTGTTGTTGGTGGGTATCCTGGGCTTTATCCCCGGCGTCACCACCCGGTACAGCGAATTGATGTTCCTTGGGCCTGATTCACACGCCATGCTCCTTGGCCTGTTCCAGGTGTCCATGCTGCTCAACATTGTGCAGCTGGCCATCGGCGCAACCGGCTGGGCAATGTCCCGCACCGAACATGGCGCACGAAACTTCCTCTATGGCGCCGGCGCGCTGTACATCGTCCTCGCCATTTTCGGGCTAAGTGTCGGTGTTGATTCGGCGGCCAATTTCCTGTCGCTGAACATGACGGACAACTGGACCCATCTGGTGCTGGGTGTACTGATGATTGCTGCTGGCTGGCTGTTTTCACGGAACATGGCCGGCGAGAGGAGATAAMTTASPHAHGVHFGRSDVQNAGMGVGILLLLVGILGFIPGVTTRYSELMFLGPDSHAMLLGLFQVSMLLNIVQLAIGATGWAMSRTEHGARNFLYGAGALYIVLAIFGLSVGVDSAANFLSLNMTDNWTHLVLGVLMIAAGWLFSRNMAGERRNANANANANA
D1-29_012721314hypothetical proteinATGAAACTGCGCGCTGATCAGACCGGAGACCGTGGCATTCCCATGCCTTTATGGCTGCAGGGGGCGCTGGAAACGGCGCAGGCCGCCATCATTTCCGCGCTGGTGGTTGTGGCTCCCGTCGTGGCGGTATGGGCGACGGCGGGGTTCCAGAACTCGGCTTTCCACGTCCTGGCCCGCCTCGCCGGGCAGGCCTGGCTGCTGATCCACGGAGTGCCCCTGGAACTGGTGGCTTTGGATTCCGGCCCTGCTGCCGATGCCCGTTCAGGCACCTTGTCGCTGATTCCCCTGGGGCTCACCCTGATCCCGTTCCTGCTCGCGTGGCGTGCCGGGCGCAGGCTGGCGAGGGCCTCCTACACGGACCAGCTGTGGCAGGCGCTCCTGGGATCGTGGGTGGTCTATGCGGCATTTGGCGGCGCCACCGGCTTCATATGCCGCACCCCGGACGTTGTGATCAATCTCTGGTACGCCATGCTGATCCCGCTCATCCCTTTTGCGTTGGGCATGGTGATCGGGGCCAGGCGCGAAGCAGGCTCGTGGAGCAGGCTCATCGGCGTGGACGCCGTCGCCTGGATCTCGCGGACCAGCCAGCACTCCCGCTGGGCAGGGTCCTACTTTGCCTCGGTAGCCAAGGCGGGCTTTGTGGCTGCCATGGCTGCGCTGGCCCTGTCCTGCGTGCTTCTTGCCGCGGACCTATTCATCCACTGGAACCTGGTCATTGCCGTTTATGAAGCGCTCGACGCCGGTGCCATCGGCGGTGCGGTGCTCACCATTGCGCAGCTTGGCTTCCTCCCCAACCTTGCAGTCTTTGCGCTCGCCTGGGTCTCCGGGTCCGGTTTCGCCATGGGCGTGGGATCACAGGTGGGACCCCTTGCCACCGCTGCCGGGCCGCTGCCATCCATCCCGGTGTTTGCGGCCATCCCGTCGGGGGCCCTGGACTACGGCTTTGTCGCTTTGGTGGTCCCGGTGCTGGCCGGTGTGCTGGCAGGCTGGTGGTTCCTGCGGGAAGGTGAAAACCACTTCGACGAATGGCTCGCCATCAAGGTCCACGCCCGCTGGTTCACGGCAACGGTGTCCACCCTGGTACTCGGCGCACTCATCGGCCTGGCGTCCGGGCTGCTGGCCGCCGGGCTGGCCTGGCTGGCCCGCGGGTCCGGCGGAATCGGCCGCCTCACGGACATCGGACCCGACCCGTTCTTGATGGGAACCTGGCTGGCAGCCGAAGTGGGAATCGGCGTCGTCATCGGATACGCAGCGGGACCGTGGCTGGAACGCCGGCAGGTGGAAGAGGAAGAAGAAGCCGAACTGGTGCGGTAGMKLRADQTGDRGIPMPLWLQGALETAQAAIISALVVVAPVVAVWATAGFQNSAFHVLARLAGQAWLLIHGVPLELVALDSGPAADARSGTLSLIPLGLTLIPFLLAWRAGRRLARASYTDQLWQALLGSWVVYAAFGGATGFICRTPDVVINLWYAMLIPLIPFALGMVIGARREAGSWSRLIGVDAVAWISRTSQHSRWAGSYFASVAKAGFVAAMAALALSCVLLAADLFIHWNLVIAVYEALDAGAIGGAVLTIAQLGFLPNLAVFALAWVSGSGFAMGVGSQVGPLATAAGPLPSIPVFAAIPSGALDYGFVALVVPVLAGVLAGWWFLREGENHFDEWLAIKVHARWFTATVSTLVLGALIGLASGLLAAGLAWLARGSGGIGRLTDIGPDPFLMGTWLAAEVGIGVVIGYAAGPWLERRQVEEEEEAELVRNANANANANA
D1-29_01273426hypothetical proteinATGAACAACACTCCGGACCCGGCTGGGCAACAGCGGGCAGCGACTCCGCTCAGCGAAGCCGCCAAGACCTCGCTGGCCAAGACCCACACCCTTTTCCGGACCTTCATCTTCACGGTGCTGGGATCGCTCCTGGTCATCCAGCTGGACCTGACCTACTTCTGGCTCGCGGGCATCCTGACGTTGGCGAGCTTGGTCCTGGGAATCGTGCTGCTGATCCGCGCCGGGCAGCTCAAGGAATCCAAGCTGGTACTGTTCGGCACCGTCGCCGGGTTGGTGTTGTCGCTGGTGATGGTACTCATGGTCCTTGGCATCGCAGCCTTCACGAATCAGTTCAGTGACTACCAGGAGTGCGCCCGGCGTGCCCTCACGGACCAGGCACTCTCCGGATGCGTCGTCGAGCTGCGGAACTCCCTGCCCGGAATGTAGMNNTPDPAGQQRAATPLSEAAKTSLAKTHTLFRTFIFTVLGSLLVIQLDLTYFWLAGILTLASLVLGIVLLIRAGQLKESKLVLFGTVAGLVLSLVMVLMVLGIAAFTNQFSDYQECARRALTDQALSGCVVELRNSLPGMNANANANANA
D1-29_01274573purNCOG0299Phosphoribosylglycinamide formyltransferaseATGCGCATCGTAGTCCTCGTCTCAGGTACCGGATCCAACCTCCAGGCCGTCATCGACGCCGTCAAGGCAGGGGACCTGGACGTGCAGATTGCCGCAGTGGGTGCGGACCGGGAGGGGACGTACGGCGTCGAGCGTTCCTCTGAAGCCGGGCTGGAGACGTTTGTGATCAACTTCAACTCCTTCCCAACCCGCGCTGAGTGGGATGCCGCATTGACGGCTAGGGTGGCTTCCTATGAACCCGACGTGGTGGTGTCCTCCGGCTTTATGCGGATCGTGAGCCCGGAGTTTATCGACGCCTTCAACGGCAAATACCTGAACACCCACCCCGCCCTGCTGCCCGCGTTCCCGGGCGCCCACGGGGTCCGCGACGCCATGGCCTACGGGGTGAAGGTGACCGGCTGCACCGTGCACTGGGCCGACGCCGGGGTGGACACCGGCCCCATCATCGCGCAGGAAGCCGTTGTCATCGAGGACGCCGACACCGAGGAGACCCTGCACGAACGCATCAAGGTGGTGGAGCGCCGCCTCCTGGTCTCCACGCTGGCCTCCCTCGCCGCCGCCCAACCCAACTAGMRIVVLVSGTGSNLQAVIDAVKAGDLDVQIAAVGADREGTYGVERSSEAGLETFVINFNSFPTRAEWDAALTARVASYEPDVVVSSGFMRIVSPEFIDAFNGKYLNTHPALLPAFPGAHGVRDAMAYGVKVTGCTVHWADAGVDTGPIIAQEAVVIEDADTEETLHERIKVVERRLLVSTLASLAAAQPNPGPT0008095_4345DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175NANA
D1-29_01275636hypothetical proteinATGGCCATTCCCCGGCGCAAGGGCGTCACGGGTCACGTGGGGCAATTCTTTGACGACGAGATCCTCGATCTGGGTGGTCTGCTGCTTACTTCTCCCACCAGGACCTGGCTGGACTGCGCGCGGAAGATGAGCATCGAAGATCTGACCGTTGTGGCTGATCACTTGTTGCGGATTCCGAGGCCTGACTTCGAGGACAGAACTGAGCCTTATGCCACACCTGAGGATCTTGCGGACATGCTTGACAGGCACAAAGGAACCCCGGGAATCCGCAAAGCACGTCTGGCGTTGGAACAGGCCCGTGTTGGATCGGACTCTGCACAAGAAACCAAACTGCGGCTGGCCCTGGAGTACGGCGGGTTGCCTGAGCCGAAGCTGAACGTGCCCACGGAGCTGGGTACGGGGATCGTGCGTCAACCTGACCTGGCCTATCCGGAGCAGAAGGTCGCTGTGGAGTATGACGGAGAAGGTCATTCCGATGCCGCGCAGATCGTCAGGGACATCGTGCGGGAGGAGGATTTCGCCCGAGGCGGCTGGGCGCTGGTGCGGATCTCTAAACGCCATATGCAGAATGACGCCCGCGCCGCCGTCGCCAAAGTCCGTATGGCAATGCTGAGCCGCGGCTGGAAGCCCAACTGAMAIPRRKGVTGHVGQFFDDEILDLGGLLLTSPTRTWLDCARKMSIEDLTVVADHLLRIPRPDFEDRTEPYATPEDLADMLDRHKGTPGIRKARLALEQARVGSDSAQETKLRLALEYGGLPEPKLNVPTELGTGIVRQPDLAYPEQKVAVEYDGEGHSDAAQIVRDIVREEDFARGGWALVRISKRHMQNDARAAVAKVRMAMLSRGWKPNNANANANANA
D1-29_012761230IS481 family transposase ISArsp2GTGGCGACATGGCCCGAAGACGCTCCCCGTGGTGCCGTGACGGCGTTCTGCCGGAAGCACAACGTCTCGAGGGCGTGGTTCTATCGAGTCCGTGCGGCGGCCGGTGCGGTGGGGCCGGTGCAAGCGTTGGTGAAGAAATCCACGGTTCCGGGGACCTCGCCCACTGCCACCGAGCCTGGCATGATCGATCTCCTGCTTGCCACTCGGACTGATCTGGAGAAACAAGGTCTGGATCACGGCCCTTTGTCGGTCCTGTCTACGCTGTCCAGGCAGGGCTATCGTCCCCCGTCGCGGGCGACCGTGGCCAGGATCTTTGCCCGGTCCGGGGTAGTGGTGCCGGAGCCGCGGAAGAAGCCGCGCAGCGCCTACAAGCGATTCGTCTATCCGCAGCCGAACGCGTGCTGGCAGATCGACTCGACCGAGTGGGTCCTCGCCGACCGGACGAAAGTGGCAGTTTTCCAGCTCATAGACGATCATTCCCGGCTTGCTCTGGCATCTCTCGTGGCCCCGGGCGAAACCAGTGCCGCTGCGATCGCGGTCGTGACGCTGGCCATCCAAAGACATGGCGTGCCGCAGAAGTTCCTCTCCGACAATGGCGCAGCGCTGAACCCGACCCGCCGCGGACGCACCGGTGCGCTGGTCGAATTCCTCAAAGCCAAAGGCGTGGAGCCGATCACCGGTAAGCCCTACAAACCCACCACCCAGGGCAAGAACGAACGCTTCCACCAGACCCTGCACAAATACCTCCACCGTCAGCCGCCGGCCGCATCAATGACTCTCCTGCAAGCCCAAGTCGACGCTTTCGATCTGTACTACAACACCCAACGCGAACATCAGGGCCTGGCACCGGGAATGACCCCAAGCGAGGCCTGGCACGCCACTCCAAAAGCCCCGGCACCGGTTCCGCCAGATCAACCAACACCGGAATCAGAGCGACGCAGCCTTCGCCGAACGGTCCGGAAGGACGGCTGCATTACCGTCCTGGGCACCCATTTCATGATGGGCAAGGAACACATCGGACAAACCGTCCACGTCATCTACGACGCCGCCACCATCATGTTCTTCGGACCCCAAGGCACCGAAATCATCAGCCACGTCAGGCCACCCAAAGGCACGCCCTACGTCGGCAACGGCAAGCCCTCCGGCGTCGCCGCAGACCCTGTAGGAGCCCGCAAAAAGCGAACCCATTACCCACGCCGACGTCAGCAGCCAAACGCCACGCAACCATGAMATWPEDAPRGAVTAFCRKHNVSRAWFYRVRAAAGAVGPVQALVKKSTVPGTSPTATEPGMIDLLLATRTDLEKQGLDHGPLSVLSTLSRQGYRPPSRATVARIFARSGVVVPEPRKKPRSAYKRFVYPQPNACWQIDSTEWVLADRTKVAVFQLIDDHSRLALASLVAPGETSAAAIAVVTLAIQRHGVPQKFLSDNGAALNPTRRGRTGALVEFLKAKGVEPITGKPYKPTTQGKNERFHQTLHKYLHRQPPAASMTLLQAQVDAFDLYYNTQREHQGLAPGMTPSEAWHATPKAPAPVPPDQPTPESERRSLRRTVRKDGCITVLGTHFMMGKEHIGQTVHVIYDAATIMFFGPQGTEIISHVRPPKGTPYVGNGKPSGVAADPVGARKKRTHYPRRRQQPNATQPNANANANANA
D1-29_012771353naiPPutative niacin/nicotinamide transporter NaiPATGAATACATACACCACTGTGCCCAGCGGCGAACAGGTGGTCCAGGAACTGCCGTGGCGATGGAAAGTCCAGGGCAGGATCTTTCTGATTGGCGGCCTTGGCTTTATGTTCGACGCCTGGGACGTGACCCTCAACGGCATCCTGATCCCCCTGCTCTCCAGCCACTGGTCGCTGACCCCGGGCGAGGCCGGCTGGATCGGTACGGCCAACCTGATCGGCATGGCCCTTGGTGCGTTTGTGTGGGGAACCATCGCGGACACCATCGGGCGCAAGAAGGCGTTTACGGCAACGCTGCTCATCTTCTCGCTCTTCACCGTCCTGGGCGCCTTCTCGCCTGACTTCATCTGGTTCTGCGCCTTCCGGTTTATGGCCGGTTTCGGGCTGGGCGGCTGCATTCCCGTGGACTATGCCCTGGTGGGTGAATTCACTCCCCGGAAGCAACGCGGCAGGGTCCTCACCGCGATGGACGGCTGGTGGCCGGTGGGGGCAGCGCTGTGCGGCTTTGTCTCAGCGGCACTGGTGGCTGCGTTCGCCGACTGGCGCCTGACCATGCTGGTGATGGTGCTCCCCGCCCTGTTGGTGTTCTGGGTCCGCCGCAGTGTCCCCGAATCGCCGCTGTTCCTCATCCGCAAGGGCCGGCGCGAAGAGGCAGCCAAGGTTATTGATTCGCTCGTTGCGGCGACCGGAGTGGAGCCGCGCGCTTACAGCCTGCCCGATGCACAGGAGGTTCCGCGGCTGTCGGCAGGCAGCGCTTGGCAGCAGCTGCGGCTTGTGTGGCAGTTCAACTGGAAGATCACCGCGGCCGCCTGGTCCCTGTTTTTCAGTATCCTGCTGGTCTACTACCTGTCGCTGACCTGGATGCCGCGGATTCTCATTGGGGCCGGCTTCGCTGAGTACAAGGCGTTTGTGACCACAGCCTCAATGGCCGCCGTCGGGCTCCTGGGCGTGATTGTGGCGGCCCTGCTAGTGGAACGGGTGGGCCGCAAATGGATCCTGGCCATTACCGGTCCGCTGTCCGCACTGACCCTGGTGATCGTTGCGTTTGTGGTGGACATCCCCACGGCCGCGGTGTTCTGGCTGCTGGTCTTCGGTTTCGTGGTGCAGGTGGCCATTCCCGTGCTCTACGCCTATGTGTCCGAGCTCTATCCCACAGAACTTCGCGGCACCGGCTTCGGCTGGGCGTCAACGTTCTCCCGGCTGGGGGCAGGCTTCGGGCCGCTGGTCTTTGCCACCTTTTTCTGGCCCGAACTGGGGCTGGCCACATCCTTCGCGCTGGCCGGCGGGCTGGTCCTGGTGGCGGTGCTGTGGATGGCGTTCTTCTCCCCGGAGACCAAGCAGCGCCGGCTCGAGTAGMNTYTTVPSGEQVVQELPWRWKVQGRIFLIGGLGFMFDAWDVTLNGILIPLLSSHWSLTPGEAGWIGTANLIGMALGAFVWGTIADTIGRKKAFTATLLIFSLFTVLGAFSPDFIWFCAFRFMAGFGLGGCIPVDYALVGEFTPRKQRGRVLTAMDGWWPVGAALCGFVSAALVAAFADWRLTMLVMVLPALLVFWVRRSVPESPLFLIRKGRREEAAKVIDSLVAATGVEPRAYSLPDAQEVPRLSAGSAWQQLRLVWQFNWKITAAAWSLFFSILLVYYLSLTWMPRILIGAGFAEYKAFVTTASMAAVGLLGVIVAALLVERVGRKWILAITGPLSALTLVIVAFVVDIPTAAVFWLLVFGFVVQVAIPVLYAYVSELYPTELRGTGFGWASTFSRLGAGFGPLVFATFFWPELGLATSFALAGGLVLVAVLWMAFFSPETKQRRLEPGPT0014435_1405DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_SYMPORTER,PGPT0014435-ydjE-K08369NANA
D1-29_012781671purHCOG0138Bifunctional purine biosynthesis protein PurHGTGAGCTTCACGCAGCTTGACCGTGTTCCCATCCGCCGGGCCCTGATCTCGGTTTACGACAAGACCGGTCTGGAGGAGCTCGCCAAGGGCCTGCACGCAGCAGGCGTGAAGATCGTATCCACCGGCTCCACGGCCAAGAAGATCGCCGAGGCCGGAATCCCGGTCCAGGAAGTCGAGGAAGTCACCGGCTCCCCGGAAATGCTGGACGGCCGCGTCAAGACGCTGCACCCGCGCGTGCACGGCGGCATCCTCGCCGACCGCCGTGTCCCGGCACACATGGAAACCCTCGCCGGCATGGAGATCGAAACCTTCGACCTGGTGGTGGTGAACCTCTACCCGTTCGTGGAGACCGTCAAGTCAGGTGCCGCCCTGGACGACGTCGTCGAGCAGATCGACATCGGCGGCCCCGCCATGGTCCGTTCGGCCGCAAAGAACCACGCCGCCGTCACCATCGTTGTTGATCCGGGCTTCTACGGCGACGTCATCAATGCGGCCGCTGAAGGCGGCTTTGACCTTAAGACCCGACGCCGGCTGGCCGCCAAGGCGTTCGCCCACACCGCCACCTATGACAACGCCGTGGCCACATGGACTGCCAGCCAGTTCCTGGATGAAGACGGCGACGGCGTCATCGACTGGCCGGCCTACGCCGGCCTGGCACTGGAACGCTCCGAGGTCCTCCGGTACGGCGAAAACCCGCACCAGCAGGCGGCCCTCTACGTGGACAAGGCCGCCCCCGCCGGCATCGCGCAGGCAGACCAGCTCCACGGCAAAGCCATGAGCTACAACAACTTTGTTGACGCAGACGCCGCCCTCCGCGCAGCCTACGACTTCGCCGAGCCGACCGTCGCCGTTATCAAGCATGCCAACCCCTGCGGTGTGGCAGTGGGCTCAACCGGTGCCGAAGACCCGATCGCCGACGCGCACGCCAAAGCCCACGCCTGCGATCCCGTTTCGGCTTTTGGCGGCGTCATCGCAGCCAACCGGACGGTCACCGCCGGCATGGCAAACACCGTCAAAGACATCTTCACCGAAGTTGTCATCGCCCCCGGCTTCGAGCCGGAGGCCGTGGAGATCCTGTCCAAGAAGAAGAACATCCGCCTGCTCGCCCTGCCCGAGGGCTACGGCCGCTACCCGGCCGAAATCCGCCAGGTCTCCGGCGGAGTCCTCGTCCAGGTCACTGACAAGGTTGACGCCGACGGCGACAACCCCGCCAACTGGACCCTTGCTGCCGGCGAACCCGCCGACGAGAAGACCCTCGCCGATCTGGCTTTCGCCTGGACCGCCTGCCGCGCCGCCAAGTCAAACGCGATCCTGCTGGCCTCCGAAGGCGCAGCCGTCGGCATCGGCATGGGCCAGGTTAACCGCCTGGATTCCTGCAGGCTGGCCGTGGAACGGGCGAACACCCTGGGCGTGAACGTGAGCTCGGACGTTGAGGGGGCAGGCGGGGCCTCCAACACCCCGGCGGACGGTGCCCCTGAGCGCGCCCGCGGCGCGGTTGCCGCCTCCGACGCATTCTTCCCGTTCGCTGACGGCCTCCAGATCCTGATCGACGCCGGCGTGCGCGCCGTGGTGCAGCCGGGCGGTTCGGTCCGGGACGAGGAAGTAATAGCTGCGGCGAACGCGGCGGGCGTCACCATGTACTTCACCGGTGCCCGCCACTTCTTCCACTAGMSFTQLDRVPIRRALISVYDKTGLEELAKGLHAAGVKIVSTGSTAKKIAEAGIPVQEVEEVTGSPEMLDGRVKTLHPRVHGGILADRRVPAHMETLAGMEIETFDLVVVNLYPFVETVKSGAALDDVVEQIDIGGPAMVRSAAKNHAAVTIVVDPGFYGDVINAAAEGGFDLKTRRRLAAKAFAHTATYDNAVATWTASQFLDEDGDGVIDWPAYAGLALERSEVLRYGENPHQQAALYVDKAAPAGIAQADQLHGKAMSYNNFVDADAALRAAYDFAEPTVAVIKHANPCGVAVGSTGAEDPIADAHAKAHACDPVSAFGGVIAANRTVTAGMANTVKDIFTEVVIAPGFEPEAVEILSKKKNIRLLALPEGYGRYPAEIRQVSGGVLVQVTDKVDADGDNPANWTLAAGEPADEKTLADLAFAWTACRAAKSNAILLASEGAAVGIGMGQVNRLDSCRLAVERANTLGVNVSSDVEGAGGASNTPADGAPERARGAVAASDAFFPFADGLQILIDAGVRAVVQPGGSVRDEEVIAAANAAGVTMYFTGARHFFHPGPT0008110_558DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602NANA
D1-29_012791020hypothetical proteinATGGTGCACGTGGCGGGCGTCACCGGAGCCCTCCCCCACCGTTTGGACAGGACACGAATGACACGCACCAGGTCTCTGGCTACCAGCCTTTTGAGCCTCTCTGCAGCCGCCCTGCTGGCACTTGGTGCCGCCAGTGGAGCCACGGCTGTGCCTGCCGCCGCAGAGGACAAGCAGGCCCCTTCCGTGACAAGCGCAACGGTGGACAGCACGGGAGTGGCTGAGTACTGGACCAGTGACCGCATGCAAAACGCAATCCCCGGTGACGTCCTGGCCGGGAAAGCACTCGAACGCGGCAATTCGTCAAGTGCAGCATCCGTGGAGAAGGGCACCAACACCAAGGTGAAACCGGCCCAAGGCAAAGCCACCATAGCCGTCAGCGAGGCCCCGGTTGACCACATCGGCAAGGTGTTCTTCACCCTTGGCGGAGCCAACTATGTCTGCTCCGGCAACGCCGTGGTTTCCGCGAACAGGAGCACCGTAGCCACTGCAGGCCACTGCCTCAACGAGGGCCCTGGCGCCTTTGCCACCAATTTCATGTTTGCACCGAAATACGAGAACGGCGTGTCACCGTACGGGAAGTGGACCGCGCGCCACCTTTACACGCCAACCCAGTGGAGCTCGAACGGCGACATCCAGTACGACACCGGCTTTGCAGTGATGAACCAGCTCAACGGGCAGTACCTGGCAGACGTTGTCCAGGAATCCGGAGTCGAGTTCAACGCCGCACGGGGTCTTACCTACAAGGCCTACGGCTACCCTGCCGCAAAGCCTTTCAATGGCGCGAGCCTCAAAAGCTGCACGGGCGCGGCCTTCGACGACACCGAAAACCAGTTCAACACCCAGGGAATTTCCTGCGACATGACCGGCGGCTCATCTGGCGGCCCCTGGTTCATCGGATCAGACGCCACAGGCCTTCAGAACTCGATCAACAGCTACGGCTACAGCCGCTCCCCCGTTATGTACGGCCCCTACTGGGGCTCCGTTATCCAGCAGACGTATGCAAGTGCAGAAACAGCCTAGMVHVAGVTGALPHRLDRTRMTRTRSLATSLLSLSAAALLALGAASGATAVPAAAEDKQAPSVTSATVDSTGVAEYWTSDRMQNAIPGDVLAGKALERGNSSSAASVEKGTNTKVKPAQGKATIAVSEAPVDHIGKVFFTLGGANYVCSGNAVVSANRSTVATAGHCLNEGPGAFATNFMFAPKYENGVSPYGKWTARHLYTPTQWSSNGDIQYDTGFAVMNQLNGQYLADVVQESGVEFNAARGLTYKAYGYPAAKPFNGASLKSCTGAAFDDTENQFNTQGISCDMTGGSSGGPWFIGSDATGLQNSINSYGYSRSPVMYGPYWGSVIQQTYASAETANANANANANA
D1-29_01280843ssuBCOG1116Aliphatic sulfonates import ATP-binding protein SsuBATGCTGGATAACAAAGCACCCGGCACACCCCGCCAAGACGGCAAGCCCATACTGTCGGTCCGGGGTCTGAAGAAGGTCTACAAGACCGACGGCGGCGACGTCGAGGCGGTCCGGAACCTCACCTTCGACCTGCGTCCGGGCGAGCTGGCCTGCCTGGTGGGCCCCTCCGGCTCCGGCAAGACCACGCTGCTCAAATGCATCTCAGGGCTGATGGTCCCCACCGAGGGTGAAGTCCTCCTGAACGGCACGCGGGTCAGCGGCCCGCCGAAGAAGATGGCGGTGGTCTTCCAGGAATACGGCCGCTCCCTCTTCCCCTGGATGCGGGTCCGGCAGAACGTGGAGTTGCCGCTAAAAAACCAGCGTGTTCCCAAGGCCGAGCGCGACCGCATTGTTGACGAGGCCCTGGAAGCAGTGGGGCTGGCTCACGTCCCCCAGTCCTATCCCTGGCAACTCTCCGGCGGCATGCAGCAGCGTGTGGCGATCGCCCGCGCCGTCGCCTACCAGCCCGAAGTACTCCTCATGGACGAACCGTTCGCGGCGGTGGACGCCCAGACCCGCGCTGACCTCGAAGATCTCATCCGCAGCGTCTGGAAGAAACTCGGCGTCACTATCCTGTTCGTCACCCACGACATCGACGAATCCGTCTATCTCGGCGAACGCGTTATTATCCTCTCCAGCTCTCCCACCGTGATCCAGGAGGACATCGTCATCAACCTGCCCCAGGAGCGGGACCAGCTCAACACGCGGGCATTGCCAAGGTTTACGGAATTGCGCCATCACGTCTACGAACAGATCCAGCTTGCCAAGAAGGGACACCGCCCCGCCGCCGCAACTGTCTCCTGAMLDNKAPGTPRQDGKPILSVRGLKKVYKTDGGDVEAVRNLTFDLRPGELACLVGPSGSGKTTLLKCISGLMVPTEGEVLLNGTRVSGPPKKMAVVFQEYGRSLFPWMRVRQNVELPLKNQRVPKAERDRIVDEALEAVGLAHVPQSYPWQLSGGMQQRVAIARAVAYQPEVLLMDEPFAAVDAQTRADLEDLIRSVWKKLGVTILFVTHDIDESVYLGERVIILSSSPTVIQEDIVINLPQERDQLNTRALPRFTELRHHVYEQIQLAKKGHRPAAATVSPGPT0001140_1206DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_01281774ssuC_4COG0600Putative aliphatic sulfonates transport permease protein SsuCATGAGCTGGTTGAAGGCATTTGGCTACATGGTGGGGCTGCCGCTCCTGCTGATCTTCCTCTGGTGGGCGTTGACACTGGGGAGGCCCAACTTTTTCTTTCCCAGGCCCGGGATCCTGGCTGATACGTTCGTGGAGGTCTGGTTCGGCGAACGGATCCTGTCTGATGTCCTCCCCAGCCTCGGCAGGTTGATCACCGGGGTAACTGCGGCAATCCTGATCGGCGTCGCCGCCGGGCTGGTGATCGGATCCGTCAAATGGCTCCGGTCCTTGCTGGAGCCGACACTGGAATTCTTCCGGGCCGTCCCGCCGCCCGTTCTGGTGCCGGTACTCATGTTGCTGATGGGAATCACGGATTCGATGAAAGTGGTGGTCATCATCTCCGGCTGCATCTGGCCGGTGCTGCTGAACACCATCGAAGGCGTCCGTGCCGTTGATTCGGTGCTTTCCGATTCCAGCCACACGTACGGCATTACGGGCTGGGCCCGCCTGCAGTACCTGGTTCTCCCCTCGGCCAGCCCCCAGATCATGGCCGGGGTCCGTCAGTGCCTGTCCATTGGCCTGATCCTGATGGTCATCTCGGAGATGTTCGCCTCGTCTTCCGGACTGGGCTTCACCATTGTGCAGTTCCAGCGCTCCTTCGCCATCCCCGAGATGTGGTCCGGCATCATCGTCCTGGGCCTGATCGGCGTGGCACTGTCATTCATCTTCCAGTGGAGCGAGCGCCGCGTATTGCGCTGGTACCACGGTCAGAAAGAGGTAGAAAATGCTGGATAAMSWLKAFGYMVGLPLLLIFLWWALTLGRPNFFFPRPGILADTFVEVWFGERILSDVLPSLGRLITGVTAAILIGVAAGLVIGSVKWLRSLLEPTLEFFRAVPPPVLVPVLMLLMGITDSMKVVVIISGCIWPVLLNTIEGVRAVDSVLSDSSHTYGITGWARLQYLVLPSASPQIMAGVRQCLSIGLILMVISEMFASSSGLGFTIVQFQRSFAIPEMWSGIIVLGLIGVALSFIFQWSERRVLRWYHGQKEVENAGNANANANANA
D1-29_01282831cmpB_1Bicarbonate transport system permease protein CmpBATGAACGGCAAGAGCGGCGTGGCCGCTGCGGGCCGGGGATCGCTGATCTCCCGGCCCAAGTGGCCAGTCCAGCAATTCCTGGGTCTGGCGGGAATCCTCGGATTCCTGCTGACCTGGGAGCTGATACCGCGGTTGGGGATCGTTGAACCGCGCTTCCTCCCGCCCGCAAGCGAGGTGATTGCAGCACTCTTGCGGGCCCTCGGGCTGACGGCCTTCTGGGTGAGCGTGGGTGAAACCATGCTTGCCTGGTTCCTAGGCCTGCTGATGGCCGTCATTGCCGCCGTCGTACTTGGTTTTCTCATCGGATCTTCCGCCTTCCTGAGGAAGGCCACGAACTCCACGGTGGAATTCCTGCGGCCCATCCCATCGGTGGCGCTGATCCCGCTGGCAGTGCTGATGTTCGGCGTGAAAATCGAATCTTCACTCATGCTGATCGTCTACGCGGCTTTCTGGCAGGTCTTTATCCAGGTCCTGTACGGGGTGGCTGACATCGACATGGTTGCCAACAACACGGCCAAATCTTACGGGCTGGGACGTTTGGCGCGGATCCGGTATGTGGTGTTCCCCACCGCTTTGCCGTACCTGATGACAGGGGTCAGGCTGGCCGCCGCCGTCGCGCTTATTCTGGCGATCACCGCGGAATTGATCATCGGCTCCCCTGGACTTGGCCGCGAAATCGCCTTGGCTCAATCCGGCGGTGCCATCTCCGGCATGTACGCGTTGGTACTGGCAACGGGCCTGATCGGAGTATTGATAAATCTGATGATGCGGTTCATTGAAAAGAAGACCCTTTCCTGGCACTCGTCAATCCGTTCGGAGGTGATCGTATGAMNGKSGVAAAGRGSLISRPKWPVQQFLGLAGILGFLLTWELIPRLGIVEPRFLPPASEVIAALLRALGLTAFWVSVGETMLAWFLGLLMAVIAAVVLGFLIGSSAFLRKATNSTVEFLRPIPSVALIPLAVLMFGVKIESSLMLIVYAAFWQVFIQVLYGVADIDMVANNTAKSYGLGRLARIRYVVFPTALPYLMTGVRLAAAVALILAITAELIIGSPGLGREIALAQSGGAISGMYALVLATGLIGVLINLMMRFIEKKTLSWHSSIRSEVIVPGPT0001145_7316DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_01283993ssuACOG0715Putative aliphatic sulfonates-binding proteinATGATGAAAAGGCACCTCGCTAAAATCCTCGCCGCCGGCGCCCTCATGGCCGTTGCCCTCACCGGCTGTGGCTCCGGTTCGGTCACCGGCCAGGAGGGCACGTCTCCCGGAGCAACGGCGGGCGGCGACCTCAAGAACATCACCGTCGGCGTGCTCTCGATCGCACCCTCGGTTGCTGTTCAGTACGGCATTGATGAAGGGATCTTTGAAAAGCACGGTCTCAAAGTTGAGCTCCAGACCGGCCAAGGTGGAGCAGCCATGCTTCCAGCGGTATCCACCGGAACAATGAACTTTTCTGTTGGCAATCCACTCTCCGTGATGCTCGCCGTCGACAAGGGGCTGGACATGAAGATTGTCACCGGCTTCAGTAACTCCAAGGCGGAGGGTGAGGACATCAATGGGGTCGTTGCCGCTAAGGCGTCCGGAATCAGTTCCTTCGGCGATCTGGAAGATAAGACCGTCGCGGTCAACACACTTAAAACCCAGGGTGACCTGACCATCATGGAGAGCGCTGCAAAAGCAGGTGCGGATCCGGCCAAAATCAAGTTTGTTGAGATGCCGTTCCCGGACATGCAGGCCCAGCTTGACCGAGGGTCAGTGGACGCCATCTGGCTGCCGGAGCCTTTCCTGACCAGAGCCCTTACAGATAGCAAGAATGTGCTGGTCGGAAGCCCCAACCAGGAAGCAATCCCGGGACTGCCCACCATGGTGAGCTTCACCAGCGGAAACTTCGCCCAGCAGAACGCGGACACGGTCAAGGCGTTCAGGGAAGCCATCGAGGAGACCTTGGAGAAGGCTGAACAGAATCCGGACGATGTCCGTGCCGTGCTCCCGAAGTTTATGAACATGGATCCCGCCGTCGCCAAGAATCTGAAGATGGAATCGTACGACGGCGAAGTTCCCACCGAGGTACTCTCCAAGCTTGGATCCCTCATGGTCAAGTACAACTACGTGACTAAAGAGCCCGACGTCGACGCCATGATCGCCAAGTAAMMKRHLAKILAAGALMAVALTGCGSGSVTGQEGTSPGATAGGDLKNITVGVLSIAPSVAVQYGIDEGIFEKHGLKVELQTGQGGAAMLPAVSTGTMNFSVGNPLSVMLAVDKGLDMKIVTGFSNSKAEGEDINGVVAAKASGISSFGDLEDKTVAVNTLKTQGDLTIMESAAKAGADPAKIKFVEMPFPDMQAQLDRGSVDAIWLPEPFLTRALTDSKNVLVGSPNQEAIPGLPTMVSFTSGNFAQQNADTVKAFREAIEETLEKAEQNPDDVRAVLPKFMNMDPAVAKNLKMESYDGEVPTEVLSKLGSLMVKYNYVTKEPDVDAMIAKPGPT0001135_6114DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-29_01284471hypothetical proteinATGACCCAGCCTCGAATCATGGATCTTCTGCCGGCCGACGGCGTCGAACGGCTGTTGAATAGCCCGCTCGTCAGCGAGATTGAATTCCTGACTGCGCGGGCACGGGCGCGCGGAAGCGCGAAAGCGAATGCCCTCCTCGCACCGCTGGAGCTGAAGATCCGCTCGTACGCCGTGTTGTCGCTGGCGTGCAGTGGAGCAGCACCGTCACAGCGGGAACTCGCCGAATTCCTGCTGCTGGATCCGAGCCAAATTGTGGCGCTGGTGGACGGGCTGGAACAGCGGGGGCTGGTCAAGCGCGAAACGGATCCCCGGGACCGGCGCTCGAAAGTCATCAAGGGCACCGCGAAGGGGCAGCGTGTGCTGGACCAGGCGGCCGCGGCCACCCAGCAGGCAGAAGACCAGGCCATGGGGGACCTGACCACCGCTGAACGCGACCAACTGCGGGACCTGTTGCGCCGCATCGCCTTTTAGMTQPRIMDLLPADGVERLLNSPLVSEIEFLTARARARGSAKANALLAPLELKIRSYAVLSLACSGAAPSQRELAEFLLLDPSQIVALVDGLEQRGLVKRETDPRDRRSKVIKGTAKGQRVLDQAAAATQQAEDQAMGDLTTAERDQLRDLLRRIAFPGPT0013155_4704DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_012852220icd_1COG2838Isocitrate dehydrogenase [NADP]ATGTCCAAGATTATCTATACCCACACCGACGAAGCGCCGATGCTGGCTACCTACTCGTTCCTGCCCATCATCGAGGCGTTTGCTTCGACAGCAGGTGTGGAGGTGGAGACCCGCGACATCTCGCTCGCCGGCCGCATCATCGCCGTGTTCGGAGACTACCTCACCCCGGAGCAGCAGATCAGTGACGCCCTTGCTGAACTGGGCGAGCTGGCAAAGACGCCTGAAGCCAACATCATCAAGCTGCCCAACATCAGTGCTTCCATTCCCCAACTGAAGGCCGCCATTGCAGAGCTGCAGGGCCAGGGCTACGCGCTGCCGGACTACCCGGACAACCCCTCCTCGGACGAGGAAACCGCCGTCCGCTCGCGCTATGACAAGATCAAGGGTTCCGCTGTGAACCCCGTGCTGCGTGAAGGAAACTCGGACCGCCGCGCGCCCCTGTCCGTCAAGAACTATGCCCGCCAGAACCCGCACTCCATGGGCGCCTGGTCCCCGGATTCCAAGACCAACGTGGCCACCATGGGCAAAGACGACTTCCGCTCGAACGAGAAGTCCGTGGTCGTTGGCTCTGAAGACACCATCGCCATCCAGCTGGTCCGCGAAGACGGCTCGGTCAAGGTCCTGAAGAAGGCCTTCCCTGTGCTGGCCGGCGAAGTCATCGACGGCACCGTCATGCGCGCCGCCGCCCTGGACGAGTTCCTGGCCGCCCAGGTTGCCCGGGCCAAGGAGGAAGGCGTGCTGTTCTCGGCCCACCTCAAGGCGACCATGATGAAGGTTTCGGACCCCATCATCTTCGGCCATGTGGTGAAGGCGTACTTCTCCGAGCTGTTCGACACCTACGGCAAGCAGCTCGCAGCCGCCGGCGTTAGCCCGAACAACGGACTCGCTGCCATTCTCAGCGGCCTTGAGGACCTGCCCGAAGATGTCCGCGAAGGCGTTCAGGCCCTGATCAAGAAGGGCCTTGAAGATGGCCCGGCGCTGGCGATGGTGGATTCGGACAAGGGAATCACCAGCCTCAACGTCCCCAGCGACATCATCGTGGATGCCTCCATGCCCGCCATGATCCGCAGCTCCGGACACATGTGGGGACCTGACGGGAAGGAAGCCGATACCCTGGCCGTACTGCCGGACAGCTCCTACGCCGGCATCTACCAGGTGGTCATCGATGACTGCCGCGCCAACGGTGCTTATGACCCCACCACCATGGGCACGGTGCCGAACGTCGGCCTCATGGCACAGGCAGCAGAAGAATACGGCAGCCACGACAAGACCTTCGAGATCCAGGAAGCAGGGACCGTCCAGATCATTGACGGCTCCGGCAACGTCCTGATCGAACACCAGGTCACCGAAGGCGACATCTGGCGCGCCTGCCAGACCAAGGACCTTCCCATCCGTGACTGGGTCAAGCTGGCTGTCACCCGCGCCCGTGCCTCCCAGACGCCTGCCGTGTTCTGGCTGGACGAGGACCGCGCACACGATGCCAACCTCATCGCCAAGGTCAAGGAATACCTCAAGGATCACGACACCGAGGGCCTGCAGCTGGAGATCATGTCTCCGGAGAAGGCAATCGCCTTCACCCTGGACCGGCTCCGCAAGGGCGAGGACACCATCTCAGTCTCCGGCAACGTGCTGCGTGACTACCTCACGGACCTGTTCCCCATCCTGGAGCTGGGCACCAGCGCCAAGATGCTCTCAGTGGTTCCGCTGATGAACGGCGGCGGACTTTTCGAGACCGGTGCCGGCGGATCCGCGCCCAAGCACGTCCAGCAGCTGCTCAAGGAAAACCACTTGCGCTGGGACAGCCTGGGCGAATTCCTCGCCCTCGCAGTGAGCTTCGAGCACCTGGCTACCACCACCGGCAACGCCCGGGCACAGGTTCTTGCGGACACCCTGGACCGGGCCACCGGCACCTTCCTGCTGGAAAACAAGTCCCCGAGCCGCCGCGCCGGCGAGCTCGACAACCGGGGAAGTCACTACTACCTGGCCCGCTACTGGGCCGAGGAACTGGCCAAGCAGACCGAGGATGCCGAACTGGCAGCATCGTTCTCCGCAGTTGCAGAGGCGCTGACGTCCAACGAAGAGACCATCGTTGGTGAACTCGCGGCTGTCCAGGGTTCCCCGGTGGACATCGGAGGCTACTACCACCCGGACGACGCCAAGGCTTCGTCCGTCATGCGCCCCTCCGCCACGCTGAACAAGGTCATTGAAACCCTGAGCTAAMSKIIYTHTDEAPMLATYSFLPIIEAFASTAGVEVETRDISLAGRIIAVFGDYLTPEQQISDALAELGELAKTPEANIIKLPNISASIPQLKAAIAELQGQGYALPDYPDNPSSDEETAVRSRYDKIKGSAVNPVLREGNSDRRAPLSVKNYARQNPHSMGAWSPDSKTNVATMGKDDFRSNEKSVVVGSEDTIAIQLVREDGSVKVLKKAFPVLAGEVIDGTVMRAAALDEFLAAQVARAKEEGVLFSAHLKATMMKVSDPIIFGHVVKAYFSELFDTYGKQLAAAGVSPNNGLAAILSGLEDLPEDVREGVQALIKKGLEDGPALAMVDSDKGITSLNVPSDIIVDASMPAMIRSSGHMWGPDGKEADTLAVLPDSSYAGIYQVVIDDCRANGAYDPTTMGTVPNVGLMAQAAEEYGSHDKTFEIQEAGTVQIIDGSGNVLIEHQVTEGDIWRACQTKDLPIRDWVKLAVTRARASQTPAVFWLDEDRAHDANLIAKVKEYLKDHDTEGLQLEIMSPEKAIAFTLDRLRKGEDTISVSGNVLRDYLTDLFPILELGTSAKMLSVVPLMNGGGLFETGAGGSAPKHVQQLLKENHLRWDSLGEFLALAVSFEHLATTTGNARAQVLADTLDRATGTFLLENKSPSRRAGELDNRGSHYYLARYWAEELAKQTEDAELAASFSAVAEALTSNEETIVGELAAVQGSPVDIGGYYHPDDAKASSVMRPSATLNKVIETLSPGPT0001170_1195DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
D1-29_01286525hypothetical proteinGTGATCTTTTCTGAAAAGAGCCGGTGGCGCCAGGGGCACCGGCTCGCGGCTCCGATTGCCGCCGCCCTCCTGCTCACCGCTGCCCTGGCCGGATGTGGTCCGGCGGATCCAGATCTCGAGCGCGAGGCAGCCCGGACGCTCCAGGAGAGAGTGCTGAGTCTGACGCAGGCTGCCGCAGCCAGTGACCATACCACTGCCCTGAAGACGCTGGATACGTTGGAGTCTGATCTAGCCGCCGCCGTGACAAGCGGGCAGGTCTCAGAAGACCGCAGACGGACCATTATGACTGCCATTACCGCAGTCCGCGCCGATTTGGCTTCCGCGGCAGCTGCGGCTGAAGCCGCTGCCCAGGAGGCCGCAGCCAAAGCGGCTGAGGAGGCGGCAGCCGCAGAACGGGCTAAGGCTGAAGCAGAAGCCGCTGCCAAAGCTGCCCAGGAAGCTGCGTCCCCGGCACCAGCCCCGGCGGACAACGGCAAGGGCAACGAGGACAAAGGCGAAGAAAAAGGCAAGGGCAAAGACGACTGAMIFSEKSRWRQGHRLAAPIAAALLLTAALAGCGPADPDLEREAARTLQERVLSLTQAAAASDHTTALKTLDTLESDLAAAVTSGQVSEDRRRTIMTAITAVRADLASAAAAAEAAAQEAAAKAAEEAAAAERAKAEAEAAAKAAQEAASPAPAPADNGKGNEDKGEEKGKGKDDNANANANANA
D1-29_012871263prkCCOG0515Serine/threonine-protein kinase PrkCATGGTGGCGGATTCGCCTAGCTCCATCAGGAATGAAGTGGTCGGCGGACGTTATCGACTGGGCGAAGTAATCGGCCGCGGCGGCATGTCTTCCGTGTACTGTGCGCGGGATGAGAACCTTGGCCGTGACGTGGCCCTGAAGCTCTTTGCACCGCAGGCTCCGGACACCGAAGAACTCAAGCGCCAGGAAGCGGAAATCCAGCTGCTGGCAACGCTCAACCATCCCAGCCTGGTGACACTTTTCGACGCTGGAATCGACACCCGCATCCCAGATGAACCCCGACCGTTCCTGACCATGGAGCTGGTTGAGGGCCAGGACCTCAGAAGCCGCATCAGACACAGCACGGTCCCCCTGGACGAACTGGCCGTCATTGGTGCCGGGATTGCTGACGCCCTGGCCTACGTTCACGGCCTTGGCATCATCCACCGCGACATCAAACCGGCCAACATCCTGCTGGTGCAGATCCGGCCCGGGGAACCCCTGCGTCCGAAACTGACGGACTTCGGCATCGCCAGGATAGAGGACGGGACCCGCCTCACGGCTACCGGCACCATGGTGGGAACGGCGGCCTACCTCAGCCCCGAGCAGGCTATGGGCGCCCCGCTGTCACCTGCCAGCGACATCTACTCATTTGGCCTTGTGCTCCTCGAATGCATCAAAGGCACAGTGGAGTTTCCCGGCAATGCGGTGGAATCGGCTGTGGCCCGGCTGCACCGCGCGCCGGAGATTCCGGAGGACCTCCCACGCGAATGGGCTGACCTGCTGCGGTCCATGACGGCCATTGAACCGATGGAACGCCCCGCGGCCGCCGATATTGAGAGGGTCCTCAGGCAGGCGCTCGTGTCGCCCGCGTCCACACCCGGAGAACTTGAGCCGGAAGCCACCCTGGTACTGCCGGCCATGCCGTTCAGGCCGCCATCCATCACGCCAACTCACAGTTACCCCACCATCTCCCCGGAATCCACGGGTGAACCTTTCGCTGAGGCGGAAGCAGCCGGCCAGCCCAGGTCCGCAGCACCGGCCGAGCAAGCCTCGGGCCGCCGGTCAGCAGGCAAGGACCCGCTGTGGTCGGGGATGCGGCTCAGCGGTAAACGTCTGTGGATTGCGGCCGTCCTGCTCGTATTGGCTGCCGTGGCAGCGGTTGCCGCGGTGACCGCCAGCCTGCTGCCCACGCAGTCAACGCCCGACGTCGTCCCCTACCCCACAGTCAGCGGCACCTTGGGTGACCATCTCAAGGAACTGCAGAAGAGTGTGGAACCGTGAMVADSPSSIRNEVVGGRYRLGEVIGRGGMSSVYCARDENLGRDVALKLFAPQAPDTEELKRQEAEIQLLATLNHPSLVTLFDAGIDTRIPDEPRPFLTMELVEGQDLRSRIRHSTVPLDELAVIGAGIADALAYVHGLGIIHRDIKPANILLVQIRPGEPLRPKLTDFGIARIEDGTRLTATGTMVGTAAYLSPEQAMGAPLSPASDIYSFGLVLLECIKGTVEFPGNAVESAVARLHRAPEIPEDLPREWADLLRSMTAIEPMERPAAADIERVLRQALVSPASTPGELEPEATLVLPAMPFRPPSITPTHSYPTISPESTGEPFAEAEAAGQPRSAAPAEQASGRRSAGKDPLWSGMRLSGKRLWIAAVLLVLAAVAAVAAVTASLLPTQSTPDVVPYPTVSGTLGDHLKELQKSVEPNANANANANA
D1-29_012881656hypothetical proteinATGCATTGCATTCTTCGCAGAGGGCTGCTTAGCACCCTCTTCGCCGGCGGGCTGTTAGCCCTCGGCGCCACCGCAGCCAGCGCTGCGGACACAACAAGCGGAGCGGACCTCACCGCATCCGCCCAGGTCTCAGCGGCGACATCCGCTGCTCCGACGTCGTTGGGCCTGCTGGGTGGTCCAACGCCGTCAGAAAGCGCGAATGTCGCCGCTGCAGTAGACGTGACCGTGAACAGCGGTGCCGTCGGAACCGAGGGCAACACCGCCCTCGCTGCGGCCGCCGACGTCGCCATCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACAGCGGACGTGGCAGCAGCCGCCGACGTCGCCATCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACAGCGGACGTGGCAGCAGCCGCCGACGTCGCCATCGGACTCGGAAACGCCACCACCGGAACCGTCACCGACACCACCGCCGACGTGGCAGCAGCCGCCGACGTCGCCATCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACCGCCGACGTGGCAGCAGCCGTTGACCTCGGCCTCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACCGCCGACGTGGCAGCAGCCGTTGACCTCGGCCTCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACGCCACCGCCGACGTGGCAGCAGCCGCCGACGTCGCCATCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACCGCCGACGTGGCAGCAGCCGTTGACCTCGGCCTCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACGCCACCGCCGACGTGGCAGCAGCCGCCGACGTCGCCATCGGCCTCGGAAACGCCACCACCGGAACCGTCACCGACACCACCGCCGACGTGGCAGCAGCCGTTGACCTCGGCCTCGGCCTCGGAAACACCACCACCGGAACCGTCACCGACGCCACCGCCGACGTGGCAGCAGCCGTTGACCTCGGCCTCGGCCTCGGGAACGTCACCGACGCCACCGCCGACGTGGCAGCAGCCGCCGACGTCGCCATCGGCCTCGGAAACGTCACAGACGGCACAGGCACCACCGCCGACGTGGGCGCAGCCATCGACCTGGGCCTCGGACTGGACACCGTGGGTCTGTTGGATGATGTCACCACCGGTATTGGTGGATCAGTGATCATCGGCGGCGGTACCGACGGTACAGGCACACCGGGTACGGGTACGCCGGGTACAGGCACACCGGGAACGGGTACCCCGGGGACCGGAACTCCCGGCACCGGGACCGGATCCACCGGCGGAACCGATCCCACCGTACCTGGTAGCGGAAACGGACCTGGTAGCGGAAACGGACCAGGTAGTGGAACCGGAACGGGCGGAACCGTCACAACCGGAACGGGCACCGGCAACGGTACCGGCAGCATCACGGTTGTCCCGGCAGGTTCGGTTTCGGCCGGAACCGTTGCAGCTGCAGGAGCAACCACAGCCACTTCTGCTCAGGGTTCCAACACACTGGCCAAGACGGGTATTAATGCATCGCTGGTCCCCTTGGCCCTGCTGCTCCTCGTGGCAGGACTGCTGATGTTCTGGCGGCGCAAGACCTCCTGAMHCILRRGLLSTLFAGGLLALGATAASAADTTSGADLTASAQVSAATSAAPTSLGLLGGPTPSESANVAAAVDVTVNSGAVGTEGNTALAAAADVAIGLGNATTGTVTDTTADVAAAADVAIGLGNATTGTVTDTTADVAAAADVAIGLGNATTGTVTDTTADVAAAADVAIGLGNATTGTVTDTTADVAAAVDLGLGLGNATTGTVTDTTADVAAAVDLGLGLGNATTGTVTDATADVAAAADVAIGLGNATTGTVTDTTADVAAAVDLGLGLGNATTGTVTDATADVAAAADVAIGLGNATTGTVTDTTADVAAAVDLGLGLGNTTTGTVTDATADVAAAVDLGLGLGNVTDATADVAAAADVAIGLGNVTDGTGTTADVGAAIDLGLGLDTVGLLDDVTTGIGGSVIIGGGTDGTGTPGTGTPGTGTPGTGTPGTGTPGTGTGSTGGTDPTVPGSGNGPGSGNGPGSGTGTGGTVTTGTGTGNGTGSITVVPAGSVSAGTVAAAGATTATSAQGSNTLAKTGINASLVPLALLLLVAGLLMFWRRKTSNANANANANA
D1-29_01289966hypothetical proteinATGGCTAAAGCTCTATCGCCATGGCGCGTTCTCCGGCCGGTTTTGCTGGCCGGCGCCGCTACCCTCACGTGGCTGACCTTTTCGACTTCCGCCGCTACGGCTGACACCGCAACAGATCCAGGTTCCTTGCTGGGCGGCCTGACGTCTTCTGTTTCGTCCCTTTCGGCACCCCTCACTGGAACCGTTAGCCCGGCACCCGCGGCAGCAGTGCCGGCGCCTGCGCACGCCGCGGCTCCTGCTTCCGTCTCCCCGGGTCTTGTGAAGTCTGGGCTAGGAAGCGTTGCGGGTGCAGCCGATCAGTTGGTCGCGGCAGCGCCTGTCGTCAACAGTTTGGCGCCGACAGGCACTGTTTCGACAGTCTCGGCTCCCGTCGCCGCTGTCGCGGATGAAGCCGCGGCCGGGCTGGTGAACGCTGTCGCCCCGCCGCTCAGTGAAGCAGTGCCTGTGCTTGAACCGGTGCTGCAGCCTGTTGCGGATGTTGTGAGCGGCGTGAATCCCCTGCCGGTCTCGCTGCCCGCCCTGGAGGTACCAGCCATCGGTTCCTTGGCTGGGGCGGAAGTACCCGCTGGCGAGCTCGTAGTTGGCGACGCGTCAGCGGCCAACCCGGCATCTATCGCCGTCGAGGGTACCGATGACGTCAACGCCGGAGGCGCTGCTCTGGCCTGGCCAGTATCGTCACAGCCCTTAGCTGGCATGTCTGCCGTATCGGCGTCCCTCGCTGGCGTCCAGTCAAGTCAGGCGGATGTCCCAGGCAGCGGCGATCCATCGCCCCTCTCTGCCCTCGCGCCTGCAGGACCGTCGTCGGGAGTCGGGAGTGGCTCCTCGGCCTCCGGTGCCTCAGGTTCGGCGGCCTGGGTGGATGCCTTTGGTCTTTACCTTCCGCTCGGTGGCGCGTACCCCATCAGCGGATTCTCTGAGCATGCCCCTTCGCCGGTGTCATTCGACCCCGGCTCTTCTCCTGACTAGMAKALSPWRVLRPVLLAGAATLTWLTFSTSAATADTATDPGSLLGGLTSSVSSLSAPLTGTVSPAPAAAVPAPAHAAAPASVSPGLVKSGLGSVAGAADQLVAAAPVVNSLAPTGTVSTVSAPVAAVADEAAAGLVNAVAPPLSEAVPVLEPVLQPVADVVSGVNPLPVSLPALEVPAIGSLAGAEVPAGELVVGDASAANPASIAVEGTDDVNAGGAALAWPVSSQPLAGMSAVSASLAGVQSSQADVPGSGDPSPLSALAPAGPSSGVGSGSSASGASGSAAWVDAFGLYLPLGGAYPISGFSEHAPSPVSFDPGSSPDNANANANANA
D1-29_012901083iolU_2COG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolUATGAATGCGCCCATTGCCACACCGTGGCTGTCCAGCCAGCCCGAGCAGGACCCGCGTTCCGCCACCGGAGCCCCTTTGCGGTGGGGAGTCATCGCCACCGGGGCCATCGCCCGGGCCGTTGCCCAGGATCTTTCGCTCCTGGCTGATGCTGAGCTGCACGCCGTGAGCTCCCGGGACCAGGCCACCGCGGACGGTTTTGCGGGAACCTACGGTTTCGCCAGGGCTTACGGTGACGACGACGGCGTGCCCGGCTACCAGCGTCTCCTCGCCGACGACGCTGTGGACGTGGTCTACGTCGCCACGCCGCACGCCCAGCATCACCGGATTGTGCTGGCCGCGCTCCATGCCGGCAAACACGTGCTCTGCGAAAAGGCCTTCACCATCAACGCCCGGGAGGCCAGCGAACTGATCGAGGTCGCCAGGAGGCAGAAACTCTTCCTCATGGAGGCCGTCTGGAGCCGTTTCCTTCCGAGCATGCAGCGCGCCTTCGAGATAGCCGCTTCAGGCGAGCTGGGGGACGTCCACTGGGTCACTGCCGATCTCGGCTTCCCCGCTCCCTACTCGCCCACCGCCAGGCTCTGGTCCCGGCATGACGGTGGCGGCGCGTTGCTGGACATCTCGGTGTACCCGTTGCTCTGGGCCCTGGGAACCTTGGGATTTCCGCAGACGGTCAGTGCCACGGGCTTTATCAACGACGACGGCGTGGACGCACAGAATGCGCTGACCCTTGGGTACCACCACGGCGCCCAGGTGCAGCTCACGTCCTCACTTTTGGCTCACGGCCCCCGCACGGCCACCGTCGCCGGAAGCCTCGGCTACCTTCAGAGCGTTGGTTCCATCAACAATCCGCGTGAACTGCGGATCGGCATCGGACGCGGAGCGCCCAGGAGCGAGGCGTTCGACGTCGTCGGGCTGGGCTATGCCTACGAGCTCCGCGAGGTGACCCGCTGTATCCAGCAGGGCCTGACCGAAAGTCCGGTGATGCCCCTTGATGACTCCCTGAATACGATGCGCCTGTTCGATGGAGTACGTGCCCAACTCGGCGTCAGTTACCCCAATGATGCATTTGAACCCCGCCAATAGMNAPIATPWLSSQPEQDPRSATGAPLRWGVIATGAIARAVAQDLSLLADAELHAVSSRDQATADGFAGTYGFARAYGDDDGVPGYQRLLADDAVDVVYVATPHAQHHRIVLAALHAGKHVLCEKAFTINAREASELIEVARRQKLFLMEAVWSRFLPSMQRAFEIAASGELGDVHWVTADLGFPAPYSPTARLWSRHDGGGALLDISVYPLLWALGTLGFPQTVSATGFINDDGVDAQNALTLGYHHGAQVQLTSSLLAHGPRTATVAGSLGYLQSVGSINNPRELRIGIGRGAPRSEAFDVVGLGYAYELREVTRCIQQGLTESPVMPLDDSLNTMRLFDGVRAQLGVSYPNDAFEPRQNANANANANA
D1-29_01291804nadE_2Glutamine-dependent NAD(+) synthetaseGTGGTAAAGGTGCTGCTGGCGCTGATGCAGGCAAACTCTGCCGTACTGGACGTGGAGGCAAACTGTGCCGCCGTGGAAGCAGCGGCGCGGTCAGCGGCCGCGGCGGGGGCAGTGGTCCTGGTGACGCCTGAGCTGTTCCCTGTGGGCTACGCGCCGCGCAAACTCCGGGCCGGGCTGGACCCCGCCCGGCTGCCGGGTATCCGGGCCGGCCTTGCCGGCATTGCACGCCGGTGGGGGATCGGACTGGTCTACAGCCTCCCGGAAGTCACTGCCGGCGGTGCCTGGCACATCACATCCACGCTGCTGGATGCCGCGGGCAATGAGCTAATTCACTACGCCAAGGTGCATCTGTTTGGCGATGAGGAGCGCGCTGCGTTCAGTCCCGCAGGGGAGCGTCCCGCCGTCGTCGACTTCAACGGAATTCCGACCTCCATGGTGATTTGCTATGACGTGGAGTTCCCCGAAATCGTGCGGGCTGCAGCTGTCAGCGGCGCCGAGCTCCTCCTGGTTCCCACGGCCCTGGCCCACGGGTTTGAGGCGGTGCCCCAGGTGCTGCTGCGGGCCCGCGCGCTGGAAAGCCAGCTGACCATCGCCTACGCAAACCACTCCGGCATGGAGGACGGCTGCCTTTTCCTGGGCGGCAGCGTCATTGCCGGTCCGGACGGCGCGTTGCTGGCAGCTGCGGGCGAAGGAAGCCAGCTGCTCTTTGCGGAGGTTGGCCCGGACGCGGCCAGGCAGGCCCGGGCAGTGGTGCCCTACCTCGAGGAACGTCGGCCGGACCTCTACCGGTCCTGGGGGCTCTGAMVKVLLALMQANSAVLDVEANCAAVEAAARSAAAAGAVVLVTPELFPVGYAPRKLRAGLDPARLPGIRAGLAGIARRWGIGLVYSLPEVTAGGAWHITSTLLDAAGNELIHYAKVHLFGDEERAAFSPAGERPAVVDFNGIPTSMVICYDVEFPEIVRAAAVSGAELLLVPTALAHGFEAVPQVLLRARALESQLTIAYANHSGMEDGCLFLGGSVIAGPDGALLAAAGEGSQLLFAEVGPDAARQARAVVPYLEERRPDLYRSWGLNANANANANA
D1-29_012921830hypothetical proteinATGAGACGTAATGCACCACAGGCGAAGGCCTCTGAACCGATTCGACCGGGCTCCGCTGGCCGTGCCGATCCTTTGCCGTCCACCCCCACTGAACGGTTGGATGCCGTCACCCTGGGCCAGTTCCTGGCCGCCCTTCCCGCGGACCTCACCGTCATTGTTGACGCCGGAAACAGTTCGGCACCGCTGCGGTGGGTGGAGCCGAGTGAACTGGAAGACCCCACGCCGTACCTGCTGGACGGCGAGTTCGTCCTCACAGCCGGACTCCCCTTTCTCGAAAGCGGCGGCGACGGGCACAGCCGGGAAACCAAGGAAGAGCTGGCAGACGCCTATGTCCGGCGGCTGGTGGATGCCGGTGTTGCCGCCCTTGGATTTGGCCTTGAGCCGTATTTCGACGCCGTTCCGGAGCCGCTCGCCGCAGCGTGCCGGAAGTATGGCCTCACCCTTGTTCAAATCCCCGGCTCCCTGCCTTTCGCTGCCCTTGGCCTGGAGTTCTCCCAGCTGCTTGAGTCCGGAAACGCCAGGGTCTTCCGGCAACTCGCTGACACCAACCGGCAGCTGATGCGGGCGGTGCTTTCGGCTCGGCCCGAACATGAACTCCTGTCCGCGCTGGCCCAGCGCGTTCCGGTCTGGGCGCTCCTGATCGGCGCCGACGGGCGAGTCCGAGCCAGGGCGGCGGCGGCCGGAACGGCCGCAGGCAAGGAATATGCCGCAAGCAAGGAATCTGGCGGCGGCAAAGAAGCGTCAGGCTCAAAGGAAACGGCCCCCGCTACTCCGACCGGCACAGCCGGGGGTGCCGGCGTCGAACTCTCCCTCCTGCAGCCGATGCTCAAGCGATTGCTGGCAGGCAAGGGCCCGCGGGTGGAAACCGAATCCTTCGACATCCCCGGCGCCGCACAGGTCTTCGGCCACCCGCTGCGGAGCACCAGGGACGCCACCCTGGGTGGCCTTGTCCTGGGCACAGACAAGCCGCTGACCGCCGCGCAACACAGTGTTGTGTCGTCCGTGGTGGGGCTCTTGGAACTGCTGGTCCGGCAGCGAACCAGCGGGTCGCTGGCTCCCAGCCAGCTGGCCACGGCCCTGCTGCTTCATCCGGAAAGCCTGGTCTCTGGCAGCACCAGGCAGCTGAACGTGCTGAAGGACCTGCTGGCACAGAGCGTATCCGGAACCAGGTCCGGCCAGCTCCGGGTGGTCCAAGGGGTGCGGGCGGATGCGCAGCTGGAGTCGCCCGCCGACGGCCCCGTCAGGGAGCTGCTTCAATGGCGCCGGCTGTTCGACACCAAGATGGTGGAGCTGACCGATTACGGGTTTGCCGCAGTCACCAGGCTCAGGGTGGACGAACCGCTGCTGCAGGAAGTGGAGCGGCTGGGGTGGCGGCTCGTCGTGGGTGATCCGACGGAGCTGAGCGGACTCCCTGAGGCCTACCAGCGTGCGGCAGCACTGCGTTCCAGGGTCCAGTCCACGGGCAAGAGCGTCCGGGTTGACGAGGTCACCTGGTCTGTCACCGGGCTCCTGGGCCGGGAGGCCGGCAGCATGCTTGCCGCCAGGCTCCTGGAACCGGTCCTCAATCAGGAGCCCGAGCGCCGGCGTTCACAGCTGGCGCTCCTGAAGTCATGGCTGAGTGAAAACGGAAACTGGGATGCCACCGCTAAGGTCCTGGGGCTGCACCGGAACAGTGTGCGCCGCCAGATCACAGCCCTGGCCGAAGTGCTGGACATGGATCTGGGCCGGGCCCAGGTACGGGCCGAACTCTGGATCGCCCTGCAATACGTCGACGGCGCTGAAACGGACCGGTCTCCGGAGGCAGGGCTTCAGAGCCCCCAGGACCGGTAGMRRNAPQAKASEPIRPGSAGRADPLPSTPTERLDAVTLGQFLAALPADLTVIVDAGNSSAPLRWVEPSELEDPTPYLLDGEFVLTAGLPFLESGGDGHSRETKEELADAYVRRLVDAGVAALGFGLEPYFDAVPEPLAAACRKYGLTLVQIPGSLPFAALGLEFSQLLESGNARVFRQLADTNRQLMRAVLSARPEHELLSALAQRVPVWALLIGADGRVRARAAAAGTAAGKEYAASKESGGGKEASGSKETAPATPTGTAGGAGVELSLLQPMLKRLLAGKGPRVETESFDIPGAAQVFGHPLRSTRDATLGGLVLGTDKPLTAAQHSVVSSVVGLLELLVRQRTSGSLAPSQLATALLLHPESLVSGSTRQLNVLKDLLAQSVSGTRSGQLRVVQGVRADAQLESPADGPVRELLQWRRLFDTKMVELTDYGFAAVTRLRVDEPLLQEVERLGWRLVVGDPTELSGLPEAYQRAAALRSRVQSTGKSVRVDEVTWSVTGLLGREAGSMLAARLLEPVLNQEPERRRSQLALLKSWLSENGNWDATAKVLGLHRNSVRRQITALAEVLDMDLGRAQVRAELWIALQYVDGAETDRSPEAGLQSPQDRNANANANANA
D1-29_012931539yhdG_2COG0531putative amino acid permease YhdGATGACTGTGCCCACACTCTCCCGGCCGACGCCGGAACGTACAGCCGGCCGTCCCGGCCTGGGTGCGCAACTGCTGCGCCGCAAGCCGATCGGCCAGATGGTCACCGAAGCCGACGAAGGCCACAACGGCACCAAACTGGTGCGCAGCTTCGGTGTCTTCCAGCTGACCATGATCAGTGTCGGTGCCACGCTCGGGACCGGCATCCTGGTCATCCTGGGCGAATCGGTCCCGCTGGCCGGGCCGGCCATCTGGATTTCCTTTGCCATCGCCGGACTGGCCGCGCTGCTTTCCGCCGTGTCCTACGCCGAGATGGCCGGCCTGGTCCCGGTTGCCGGCTCCAGCTACTCCTACAGCTACGCCACCATGGGCGAGGGGATGGCCTGGATCTGTGGCTGGTGCCTGGTGCTGGAGTACGCGGTCTCGGTGGCAGCTGTTGCCGTTGGCGCCGGCCAGTACGTCAACGAGACGCTCGCGGTGTTTGGGCAGATACTTCCCGATGCCATTTCCCAGCCGCCCGGCGACGGCGGTGTGGTCAACATCCCGGCCATGGTCATTGTGGTGCTGGCCATGCTCCTGCTCGTGAAGGGCGCCAAGGAAAGCGCCTGGATCAACACCGCGATCGTGGTCATCAAGGTTGGCATCCTGGTCTTCTTCTGTGCCGTGGCGTTCACCGCCTTCAACGCCGGAAACTTCGAACCGCTCCTGCCCATGGGCGCTGCCGGCGTTTCCGCCGCGGCTTCCAGTGTCTTCTTCTCCTATATCGGCTTTGATGCCGCCTCCACCGCAGGCGAAGAAGCCCGCAACCCGAAAAGGGACCTGCCCCGCGCCATCATGCTCTCCATGGTGATCGTCACCACCATCTACGTCCTGGTGGCGGTAGCTGCCATCGGCGCGCGGCCCTGGGGCTGGTTCGACGGCACCGAAGCCGCGCTGGTTAAGATCCTCGAGGAAACCACGGGGCAGCCCTGGATCGCGCTGGTCTTTGCCGTGGGCGCCGTCCTGGCCATCGCCAGCATTGTGCTGACCGTTCTCTACGGCCAGACCCGCATCCTGCTCTCCATGTCCCGTGACGGCCTGATTCCTAAGATCTTCGGCCGCGTCTCCCGCCGCACCGGCACCCCCGTGGCCGGTACGCTGCTGGTGGGCATCGCCGTCGCGCTCACTGCCGGGCTTGTCCCGTTGGGTGCCCTGGCTGATGCCACCAGCATCGGCACGCTGTTCGCCTTCGCCCTGGTCAACGTGGCCGTGATCTACCTGCGCCGCACCCGCCCCGAACTTGAGCGCACGTTCCGCGTTCCGCTTTTCCCGCTGACCCCCATCCTGGGCGCCGCGATGTGCGGCTACCTCATGCTCAACCTTGGCGCGGACACCTGGCTGGTCTTCGGAGTCTGGATGCTGGTGGGCGTAGCCGCCTACTTCGGCTACGGACGCCGGAACTCCAGGGTGGCGGCAATGAGCCACGAGGAATACCGTGAGCTGAGCGCGCGGGAATCTTCACCACTGTCCACCACCGAACCGACGAAGGCAGAGATTTCATGAMTVPTLSRPTPERTAGRPGLGAQLLRRKPIGQMVTEADEGHNGTKLVRSFGVFQLTMISVGATLGTGILVILGESVPLAGPAIWISFAIAGLAALLSAVSYAEMAGLVPVAGSSYSYSYATMGEGMAWICGWCLVLEYAVSVAAVAVGAGQYVNETLAVFGQILPDAISQPPGDGGVVNIPAMVIVVLAMLLLVKGAKESAWINTAIVVIKVGILVFFCAVAFTAFNAGNFEPLLPMGAAGVSAAASSVFFSYIGFDAASTAGEEARNPKRDLPRAIMLSMVIVTTIYVLVAVAAIGARPWGWFDGTEAALVKILEETTGQPWIALVFAVGAVLAIASIVLTVLYGQTRILLSMSRDGLIPKIFGRVSRRTGTPVAGTLLVGIAVALTAGLVPLGALADATSIGTLFAFALVNVAVIYLRRTRPELERTFRVPLFPLTPILGAAMCGYLMLNLGADTWLVFGVWMLVGVAAYFGYGRRNSRVAAMSHEEYRELSARESSPLSTTEPTKAEISPGPT0020810_1122DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_012941746iaaMTryptophan 2-monooxygenaseATGACCATCGCCACCGAACTGCCGGCCTCCGACCCGTCAAGTACTTCTTCAGGACTGGCCACAGCCCCGGCGCCCGGCCCGGGCGAATATGGTGTCCCGGCAGCGCCCATCACCATGCTGAACCCGGACTTCCCTTTCAGCTACGACCACTACCTGGCGCATCCGGCCGGCCTCGGCACTGTTCCGCCCGGGCTCTACGGCACTGAGGTGGCAGTTGTCGGCGCCGGCCTGTCCGGCCTGGTGACCGCCTATGAGCTGATGAAACTGGGCCTGCGTCCCGTTGTGTATGAGGCAGACCAGATCGGCGGCCGGCTGCGTACCGCCAACTTCCCATCCGCCCCCGGGGTAGTGGCAGACCTCGGCGGGATGAGGTTTCCCGTGTCCGGAAAGGCCTTCTACCACTACGTGGACCTGCTGGGCCTGGACACCCAGGACTTCCCCAACCCGCTGGCGCCGGCAACATCCAGCACGGTGATTGAGCTGGCCGGCCGGAAACACTACGCCGAGACTGCCCGGGACCTGCCACCGTTTTTCCGCGAAGTGGCCGACGCGTGGAAGGCTGCCGTGAACGACGGCGCGAAGTTCAGCGAGATGCAGGAAGCCATCCGCGCACGCGACACTGCCCGGATCAAGGAGATCTGGAACGAACTCCTGCCCCTCATGGATGAACAGACCTTCTATGGATTCATCGCCGGCAGCGAGTCCTTCAAGGAAGCCGGCTTCGCGCACCGCGAGGCCTTTGGCCAGGTGGGCTTCGGTACCGGCGGCTGGGACACCGACTTCCCCAACTCCATCCTCGAAATCCTCCGGGTTGTCTATACCGACGCGGACGACCAGCACCGGCTCATCACCGGGGGAGCGCAAAGGCTTCCCGAGGCACTGTGGCACCACACGCCGTCGGGCATGGCGCACTGGCCGGACGGAACGTCCCTGGCGTCCCTCCATTCAGGCTCGCCCCGCGGCGCCGTCGGAAAAATCAGCCGCGACGCCGGCGGCGACCTTCGGATCCGTGAGCGCTGGGGCCGGGAAGCCACGTACCCGGCCGTGGTGACCACCTGCCAGTCCTGGCTGCTGTCCACGCGCATCCATACCGAGGAGGCGCTGTTCCCGGCGGAGCTCTGGACCGCCATGGAGCGCTCGCACTACATGCAGTCCTCCAAGACCTTTGTGATGGTGGACCGGCCCTTCTGGAAGGACATCGACCCGGAAACCGGGCGCGAGGTCCTGTCCATGACCCTCACCGACCGGCTCAACCGGGCCACGTACCTCCTGGACGACGGCCCTGACAAGCCTGCCGTGATCCTGCTCTCCTACACCTGGAACGATGACGCCCTCAAGTGGCTGGCGCTGGACGCCGACGAACGCGTGGAGCTGATGCTGCACTCGCTGGAGCAGATCTACCCGCGCGTGGACATTGCGAGCCATATCGTGGGCCAGCCCATTACCGTCTCGTGGGAGGCGGACCCCAACTTCATGGGCGCGTTCAAGGCAAACCTGCCCGGGCACTACCGCTACCAGCAGAGGCTGTTCAGCCACTTCAAGCAGGACAGGCTGCCGGAGAGCCAGCGCGGCATCTTCCTCGCCGGCGACGACGTGTCCTTCACGGCAGGCTGGGCGGAAGGCGCTGTCACCACCGGCCTGAATGCCGTGTGGGGAGTGGTGAACCACCTTGGCGGCTCATCCGCGCTGGGCAACCCCGGACCCGGCGAGCTCCTGGAAGCGATCGGCCCGATCAGCCTGGACTGAMTIATELPASDPSSTSSGLATAPAPGPGEYGVPAAPITMLNPDFPFSYDHYLAHPAGLGTVPPGLYGTEVAVVGAGLSGLVTAYELMKLGLRPVVYEADQIGGRLRTANFPSAPGVVADLGGMRFPVSGKAFYHYVDLLGLDTQDFPNPLAPATSSTVIELAGRKHYAETARDLPPFFREVADAWKAAVNDGAKFSEMQEAIRARDTARIKEIWNELLPLMDEQTFYGFIAGSESFKEAGFAHREAFGQVGFGTGGWDTDFPNSILEILRVVYTDADDQHRLITGGAQRLPEALWHHTPSGMAHWPDGTSLASLHSGSPRGAVGKISRDAGGDLRIRERWGREATYPAVVTTCQSWLLSTRIHTEEALFPAELWTAMERSHYMQSSKTFVMVDRPFWKDIDPETGREVLSMTLTDRLNRATYLLDDGPDKPAVILLSYTWNDDALKWLALDADERVELMLHSLEQIYPRVDIASHIVGQPITVSWEADPNFMGAFKANLPGHYRYQQRLFSHFKQDRLPESQRGIFLAGDDVSFTAGWAEGAVTTGLNAVWGVVNHLGGSSALGNPGPGELLEAIGPISLDPGPT0020330_304DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LYSINE_DEGRADATION,PGPT0020330-davB-K00468NANA
D1-29_01295522yrdACOG0663Protein YrdAATGGCTCCTCTTTACGATTTTGCCGGGAACACTCCGGCCGTCCACGACTCCGCCTTTGTTGCCCCCACGGCGTCGATCATCGGCAACGCCAGCCTCGCACAGGACTCCAGCGCCTTTTATGGCGTGTCGGTCCGGGCTGACACCGCGGCAATCAGCGTGGGTGCGGGCAGCAACCTGCAGGACAACGTGGTCCTCCATGCGGACCCCGGTTTCCCCTGCAGCGTCGGCGCCCGGGTCAGCGTGGGCCACGCCGCCGTCGTCCATGGCTGCACCGTGGAGGACGACTGCCTGATCGGCATGGGCGCCACCGTCCTGAACGGTGCCGTCATTGGCGCCGGCTCGCTTGTGGCGGCCGGCGCCGTTGTCCTGGAAGGGACAGTGGTTCCGCCCCGCTCACTCGTGGCCGGAGTCCCCGCCAAGGTGCGGCGGGAACTCAGCGACGAGGAGTTCGAGGGCGTTAAGGCCAACGCGGACCGCTACGTGGAGCTGGCCCGCGCCCACCGGGAGCTTCACGCCCCGTAAMAPLYDFAGNTPAVHDSAFVAPTASIIGNASLAQDSSAFYGVSVRADTAAISVGAGSNLQDNVVLHADPGFPCSVGARVSVGHAAVVHGCTVEDDCLIGMGATVLNGAVIGAGSLVAAGAVVLEGTVVPPRSLVAGVPAKVRRELSDEEFEGVKANADRYVELARAHRELHAPPGPT0002425_569DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002425-GAMMACA_like-K01726NANA
D1-29_01296687hypothetical proteinATGAACAGCGTTGTGGATCCGTGGACGGAGGAACCCGGCAGCGAGCAGCGCCTGGCCGAGTTCTATAACCGCCTCGCGGCTTCCGGCGCTGACGATCCGCTGGACCCGCGGAGGGCCGAACAGCGCGAGCGGTTTATCACAATGCTCAAGGCCGAGGGCCGGCGCGATGTCCTGGACGTCGGTTGCGGCACGGGCATTGACGGCCTGAAGTTTGTCCAGGCCGGCATCCACTACACGGGCGTTGACCTCGCCGAGGGAAACGTCCGGCTGGCCAGGGCGAAGGGCCTGGACGTCTCCGTCGCGAGCGCGCGGCAGCTGCCCTTCCCGGACAGCACCTTCCCCGCGGTGTGGTGCATGAGCACACTGGTGCATATCCCCGCCAGCGATGTTGACGGCGTCCTGCGGGAACTGGTGCGGGTCTCGGCACCCGGCTCGCCCATCGCCGTCGGCCTCTGGTCCGGAGGTGACGAGGAACTGCTTAACCCAGCCGACGACGCCGAACCCCGCCGGTTCTTCAGCCGGCGAAGTGACGGGACGGTACGGGATGTCTTTGGCCGGCACGGCGTGGTCGAAGAATTTATCACCTGGCCGGAGGGCGAAGGCCCGGAATCAGGTCCCGGCGCAGGGGCGTGGACGCAGCACTACCAGTTCCTCATCCTCCGCACCCCTCCCTCCCCAACTAAGTAGMNSVVDPWTEEPGSEQRLAEFYNRLAASGADDPLDPRRAEQRERFITMLKAEGRRDVLDVGCGTGIDGLKFVQAGIHYTGVDLAEGNVRLARAKGLDVSVASARQLPFPDSTFPAVWCMSTLVHIPASDVDGVLRELVRVSAPGSPIAVGLWSGGDEELLNPADDAEPRRFFSRRSDGTVRDVFGRHGVVEEFITWPEGEGPESGPGAGAWTQHYQFLILRTPPSPTKNANANANANA
D1-29_01297978purU_1COG0788Formyltetrahydrofolate deformylaseGTGGTCTTCGTGATTGCCGCTCCCTGGTGGTTAGCCACCCAACGCCAGTTGCGACCCCACCAGACTACCAAAGCCGGCCACGAAACACGCCCGGCCGGCGCGGGTAGGCTGGTACGCGTGAGTGAAGAGCACCTGAACCAAGCGTACGTAGTAACCCTTTCCTGCCCGGACCGCCCCGGAATTGTCCACGCAGTGGCCGGCGCACTGCTGGTGGCGGGGTGCAATATTACGGATTCGCAGCAATACGGAAGCCCCGCAACAGGCAACTTCTTCATGCGCGTGGAAGTCACGACGTCGGCCTCCCGCCCTGAACTTCAGGCCTCGCTTGAGCCGGTGGCCCAGTCCTTCGGGATGCAGTGGAGCCTGAACTCCGTGGGCCAGAAGGTGCGGACCTTGCTGATGGCGAGCACGTCGGCGCACTGCCTTAACGACATCCTGTTCCAGCAGCGCTCAGGCACGCTGCCTATCGAAATCCCGGCGATCGTTTCCAACCACCAGGACCTGGCCGGGCTGGCAGAGTTCTATGGTGTTCCCTTTCACTACATCCCCGTCACGCCGGACACCAAGGCCCAGGCCGAAGACAAGCTGCGTGCCATCATGGCCGAACACGATGTGCAGCTGACGGTCCTTGCCCGCTACATGCAGATCATTTCCGACGAACTCTGCGCGGAACTCACCGGCAAAGCCATCAACATCCACCACTCGTTCCTGCCGTCCTTCAAGGGCGCCAAGCCGTACCACCAGGCCCACGCCCGGGGCGTGAAGCTGATCGGCGCCACCGCGCACTATGTCACCGCCGCCCTGGACGAGGGACCCATCATCGAGCAGGAAGTGATCCGGGTGGATCACGCCCGCACCCCCGAACAGTTCGTGCAGATGGGCCGTGACGTGGAGGGCCGCACCCTGGCCCAGGCCGTCCAATGGCATGCCGAGCACAGGGTCTTGCTGGACGGCAACCGCACAGTGGTCTTCAACTGAMVFVIAAPWWLATQRQLRPHQTTKAGHETRPAGAGRLVRVSEEHLNQAYVVTLSCPDRPGIVHAVAGALLVAGCNITDSQQYGSPATGNFFMRVEVTTSASRPELQASLEPVAQSFGMQWSLNSVGQKVRTLLMASTSAHCLNDILFQQRSGTLPIEIPAIVSNHQDLAGLAEFYGVPFHYIPVTPDTKAQAEDKLRAIMAEHDVQLTVLARYMQIISDELCAELTGKAINIHHSFLPSFKGAKPYHQAHARGVKLIGATAHYVTAALDEGPIIEQEVIRVDHARTPEQFVQMGRDVEGRTLAQAVQWHAEHRVLLDGNRTVVFNPGPT0008155_63DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
D1-29_012981299glyA1COG0112Serine hydroxymethyltransferase 1GTGACTACAACAGCCACCACAACAGCCGCAGTCAGCAACCAGTCGCTGGCCGAGCTCGATCCCGAAATCGCCGCAGTCCTCGACCAGGAACTGGGCCGTCAGCGCGGCACCCTGGAAATGATCGCGTCAGAAAACTTCGCCCCGCGGGCCGTGATGGAAGCCCAGGGCTCCGTCCTCACCAACAAGTACGCCGAGGGCTACCCGGGCCGCCGCTACTACGGTGGCTGCGAATATGTTGATGTTGCCGAGCAACTGGCCATTGATCGCGTCAAGGCCCTCTTCGGGGCCGAGTACGCCAACGTCCAGCCGCACTCCGGTGCCCAGGCCAACGCCGCGGCCCTCTCCGCCATGATCACCCCGGGCGACAAGATCCTTGGCCTGTCCCTGGCCCACGGCGGCCACCTGACCCACGGCATGAAGCTGAACTTCTCCGGCAAGCTCTACCAGGTGGCCGCCTATCAGGTTGAAGAAGACAACTTCCGGGTGGACATGGACAAGCTGCGCGAGCAGGCCATCGCCGAGAAGCCGCAGGTCATCATCGCCGGCTGGTCCGCCTACCCCCGCCACCTTGACTTCGCAGCCTTCCGCTCCATCGCCGATGAAGTGGGCGCGTTGCTCTGGACAGACATGGCGCACTTCGCCGGACTGGTGGCAGCAGGCCTGCACCCGAGCCCGGTGCCGCACTCCGACGTCGTCACCTCCACTGTGCACAAGACCCTCGCCGGCCCGCGTTCCGGTGTGATCCTGGCGAAGCAGGAGTGGGCCAAGAAGCTGAACTCCAACGTGTTCCCGGGCCAGCAGGGCGGCCCGCTGATGCACGTCATCGCCGCCAAGGCAGTGGCCTTCAAGATCGCCGGCACCACTGAATTCAAGGAACGCCAGGAGCGCGTCCTGGAAGGTGCCAAGATCATCGCCGACCGCCTCAACCAGGCCGACGTCGCCGAAGCCGGCGTCTCCGTCCTCACCGGCGGCACTGACGTGCACCTGGTCCTCGTTGACCTGCGCAACTCCCAGCTGGACGGCCAGCAGGCCGAGGACCTCCTGCACTCTGTGGGCATCACCGTCAACCGCAATGCCGTGCCGTTCGACCCCCGCCCGCCGATGGTCACCTCCGGCCTCCGCATCGGCACCCCCGCCCTGGCCACCCGCGGCTTCGGCGCCGAGGAGTTCACCGAAGTGGCGGACATTATCGCCACCGCACTGAAGACCGGTGCGGCGACGGACGTGGACGCACTCCAGGCCCGCGTGGACAAGCTCGCCGCAGACTTCCCGCTGTACCCGCAGCACGAGCAGTGGTAAMTTTATTTAAVSNQSLAELDPEIAAVLDQELGRQRGTLEMIASENFAPRAVMEAQGSVLTNKYAEGYPGRRYYGGCEYVDVAEQLAIDRVKALFGAEYANVQPHSGAQANAAALSAMITPGDKILGLSLAHGGHLTHGMKLNFSGKLYQVAAYQVEEDNFRVDMDKLREQAIAEKPQVIIAGWSAYPRHLDFAAFRSIADEVGALLWTDMAHFAGLVAAGLHPSPVPHSDVVTSTVHKTLAGPRSGVILAKQEWAKKLNSNVFPGQQGGPLMHVIAAKAVAFKIAGTTEFKERQERVLEGAKIIADRLNQADVAEAGVSVLTGGTDVHLVLVDLRNSQLDGQQAEDLLHSVGITVNRNAVPFDPRPPMVTSGLRIGTPALATRGFGAEEFTEVADIIATALKTGAATDVDALQARVDKLAADFPLYPQHEQWPGPT0008090_2674DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
D1-29_01299912folD_1COG0190Bifunctional protein FolD proteinATGGCCCAGACCGCGAAGATCCTTGACGGCAAGGCAGCCGCTGCAGCCATCAAATCCGAGCTGGCTGACCGTGTGGCGGCTCTGAAGACCCGTGGCGTTACCCCTGGCATCGCCACGGTGCTCGTGGGCGCTGACCCTGCCTCGCAGCTGTATGTGTCCATGAAGCACAAGCAGTCTGTGGAAATCGGGATGAACTCGATCCAGCGGGAGCTTCCGGCAGATGCCACCCAGGCGCAGGTCGAGGCCCTCATTGATGATCTCAATGCGGACCCCGCCTGCCACGGTTACATCGTCCAGCTGCCGCTGCCCAAGCACCTGGACACCGACGCGATCCTTGAGCGCATTGACCCCGCCAAGGACGCCGACGGCCTGCATCCGACCAACCTTGGCCGGCTGGTGCTTAACGTCAACGGCGAGATCACCTCACCACTGCCGTGCACACCCCGCGGCGTCATCGAACTCCTGGAGCGCAACGGCTACAGCCTCGCGGGCAAGCATGTGGTGGTGGTGGGCCGTGGCGTCACGATCGGCCGGTCCATCGGTCTGCTGCTCACCCGGCGGGCCGTGAATGCCACCGTCACACTGACGCACACCGGCACCAAGAACCTCTCGGAACTGCTGCGGCAGGCGGACGTCATTGTGGGCGCGGCCGGTGCCAAGCACATCGTCAAGGCAGCGGACGTGAAGCCCGGCGCAGCGTTGCTTGACGTCGGTGTTACCCGCGAAACCGACCCCGAGACGGGCAAGAGCAAGGTCCAGGGCGACATCGATCCGGCTGCTGCTGAGGTGGCCGGGTGGATTTCGCCCAACCCCGGCGGCGTCGGGCCCATGACCGTGGCCCTGCTGATGACCAACGTGGTGGAAGCCGCGGAACGCCAATTGGCACAGGAAAGCGGCTCGGGCATCGCCTAGMAQTAKILDGKAAAAAIKSELADRVAALKTRGVTPGIATVLVGADPASQLYVSMKHKQSVEIGMNSIQRELPADATQAQVEALIDDLNADPACHGYIVQLPLPKHLDTDAILERIDPAKDADGLHPTNLGRLVLNVNGEITSPLPCTPRGVIELLERNGYSLAGKHVVVVGRGVTIGRSIGLLLTRRAVNATVTLTHTGTKNLSELLRQADVIVGAAGAKHIVKAADVKPGAALLDVGVTRETDPETGKSKVQGDIDPAAAEVAGWISPNPGGVGPMTVALLMTNVVEAAERQLAQESGSGIAPGPT0008075_390DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491NANA
D1-29_01300975lnrL_1COG1131Linearmycin resistance ATP-binding protein LnrLGTGCACAATGAAGCCATCCTCTCCTCCAATACGTCAGCCGGCCCCATGAAGCAGCAAGCGGTGATCGCAGCGGAAAACCTGAGGAAGACGTATGGGGACCTTGCCGCCGTCGACGACATTTCCTTCAGCGTCCAGGCGGGAGAATCCTTCGGGCTGCTGGGCCCCAATGGCGCGGGCAAATCCACCACCATGAAAATGATTGGCGGTGTCACGCAGCGCACCTCGGGGACGCTGAGCATCATGGGCCTGGATCCGGACAGCCACGGGCCGGAGGTGAGGGCACACCTCGGCGTGGTGCCGCAGCAGGACAACCTGGACGAGGAACTCAGGGTCCGGGATAACCTCCTGGTATACGGCCGCTACTTTGGCCTGCCCATGAGCTACCTGAAGCCCAAAGCCGACGAACTGCTGGAGTTTGCCCAGCTGACTGACAAGGCGAAGTCCAAGGTGGATGCGCTCTCCGGCGGTATGAAGCGGCGCCTTACCATCGCCCGCTCGCTGATCAATGAGCCGCGGATCCTGCTACTGGACGAACCCACCACGGGGCTGGATCCGCAGGCACGGCACATCCTGTGGGACCGGCTGTTCCGTCTCAAGGAGCAGGGCGTCACGCTGATCCTGACCACGCATTACATGGATGAGGCCGAGCAGCTCTGCGATCGGCTCATTGTGGTGGACAAGGGACGGATCATGGCTGAAGGCTCGCCTGCCCAGCTGATCCGGGAGCATTCCACCCGGGAGGTCCTGGAGCTGAGGTTCGGCTCCGAGCGCAACACCACCATTGGTCCGGAGCTGCAGGGGATCGGGGAACGCCTCGAGGCGCTGCCGGACAGGGTGCTGATCTACGCGCACGACGGCGAGGCAGCCCTTGAGCACGTGGCATCCCGTGGCCTGCGGCCACTGACATCGCTGGTGCGCAGGTCCTCGCTGGAGGACGTCTTCCTCCGGCTCACCGGGAGGAGCCTTGTTGAGTGAMHNEAILSSNTSAGPMKQQAVIAAENLRKTYGDLAAVDDISFSVQAGESFGLLGPNGAGKSTTMKMIGGVTQRTSGTLSIMGLDPDSHGPEVRAHLGVVPQQDNLDEELRVRDNLLVYGRYFGLPMSYLKPKADELLEFAQLTDKAKSKVDALSGGMKRRLTIARSLINEPRILLLDEPTTGLDPQARHILWDRLFRLKEQGVTLILTTHYMDEAEQLCDRLIVVDKGRIMAEGSPAQLIREHSTREVLELRFGSERNTTIGPELQGIGERLEALPDRVLIYAHDGEAALEHVASRGLRPLTSLVRRSSLEDVFLRLTGRSLVEPGPT0015275_30DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015275-nodI-K09695NANA
D1-29_01301867hypothetical proteinTTGTTGAGTGAGGCGTCCGGCTCCACCGAAACTACCCGCCTGACCGCCCCCGCCCGGGCGCACAGCCCGGAGGTCTCCGCTGCCAAGGCCCGGAGGTGGGGTGCCTTCTACTTTGCCGAGCAGGTTATCCGGGTGTTGTGGGGGTATCGCTTCTCAGTCCTGATGTACAGCGTGGGCCAGCCGGTGGCCTACCTGTTCGCGATGGGCGTGGGCCTGGCAACCCTGGTGGAGGCCGAAAGCGAGGCTTTCGGCGGGGTCAGCTACCTGGCCTTCATTGCCCCGGCACTCCTGGTGTCCGCTGCCGTCGTGACGGCGGCCAACGAGTTCACCTTCCCGGTGATGGCCGGCTTCAAGTGGCGCCGGACCTATTACGGTCCGCACGCCTCGCCGCTGACACCGGAGCAGATCGCAGCCGGACACATCATTGCTGTGACGCTGCGTTTCTTGGTGCAGTCGGCCATCTATTTTGGTGCCGTGGCCCTGTTCGGAGCGTCCCCGAGCGGCTGGGGGTGGGTCAGCGTCGTGGTGGCAACTGTGGCCGGGCTGTCCTTCGGGCTGCCCCTCATGGCCTACTCGGCGTCCCTCAAAGAGGACAAAGGACAGTTCGCGCTGGTCATGCGGTTCATCGTGATGCCTTTGTTCCTGTTCTCGGGCACCTTCTTCCCGCTGGACACCCTGCCGCTGGCCGTCCGCTGGATCGGCTGGATCTCTCCCATCTGGCACGGCACCGAGCTGGGCCGGGTCTTCACGTACGGCTACCAGGAACCACCGCTGCTTACCGCCGTGCACGTGGTGGTACTGCTGGCGCTCGCCGTGCTGGGCTGGATCCTCACCAAGCAGCAGTTCATCAAAAGGATGGGCCAATGAMLSEASGSTETTRLTAPARAHSPEVSAAKARRWGAFYFAEQVIRVLWGYRFSVLMYSVGQPVAYLFAMGVGLATLVEAESEAFGGVSYLAFIAPALLVSAAVVTAANEFTFPVMAGFKWRRTYYGPHASPLTPEQIAAGHIIAVTLRFLVQSAIYFGAVALFGASPSGWGWVSVVVATVAGLSFGLPLMAYSASLKEDKGQFALVMRFIVMPLFLFSGTFFPLDTLPLAVRWIGWISPIWHGTELGRVFTYGYQEPPLLTAVHVVVLLALAVLGWILTKQQFIKRMGQPGPT0015280_14DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015280-nodJ-K09694NANA
D1-29_01302834hypothetical proteinATGAGCGTCCTCACCGGTGGCCACAGCGTCACCGAAGACGCCCGCAACAGAAAGTTCGGGCCGCTGTACTCCCGCAACGCCAAGGCGGTGATCTCACGTGGCCTGATGGCCACCAAAAGCAGCAACTGGCTGGTGATGCTCTCCGGCTTCTTCGAGCCCGTTCTCTTCCTGATCTCCATGGGAGTCGGACTCGGACCCATCGTTGGGGCGGTGCAGGGGCCGGGCGGTGCAGAGATCAGCTACGCGGCTTACATCGCACCGGCACTGCTGGCTGTTTCCGCCATGAACGGAGCGGTCTACGACTCCACGTGGAACGTCTTCTTTAAGATGAACTTCGCCAAGCTGTACCAGGGGATGCTCTACACCTCCCTGGGGCCGCTGGACGTGGCCATGGGTGAGATCTTCCTGGCCCTCCTGCGCGGCGTCCTGTATGCCACGGGTTTCACCGCTGTACTGGGCATGATGGGCCTGATCACCACGCCCTGGGCCATCCTGATGATTCCGGCCTCGTTGCTGATCGCTTTTGGATTCGCCAGCATGGGCATGGGCATTACGAGCTTCCTGAAGACGTTCCAGCAGATGGACTGGATCAACTTCATCATGCTGCCCATGTTCCTGTTCAGCGCCACGTTCTATCCGCTCAGCGTCTACCCCCAGGCCATCCAGTGGCTCATCCAGGCCATGCCCCTCTGGCACGGCGTGGAGTTGCTGCGCCAGATCAGTGTGGGTATCTTCACGCCCGCCACGGCCATCCACATCGGCTACTACCTGGTGATGACGGCGCTGGGCATGCTGCTGACCACGGCCCGGCTGCGGAAACTGTTCCTCAAGTAAMSVLTGGHSVTEDARNRKFGPLYSRNAKAVISRGLMATKSSNWLVMLSGFFEPVLFLISMGVGLGPIVGAVQGPGGAEISYAAYIAPALLAVSAMNGAVYDSTWNVFFKMNFAKLYQGMLYTSLGPLDVAMGEIFLALLRGVLYATGFTAVLGMMGLITTPWAILMIPASLLIAFGFASMGMGITSFLKTFQQMDWINFIMLPMFLFSATFYPLSVYPQAIQWLIQAMPLWHGVELLRQISVGIFTPATAIHIGYYLVMTALGMLLTTARLRKLFLKPGPT0015280_174DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015280-nodJ-K09694NANA
D1-29_013031230IS481 family transposase ISArsp2GTGGCGACATGGCCCGAAGACGCTCCCCGTGGTGCCGTGACGGCGTTCTGCCGGAAGCACAACGTCTCGAGGGCGTGGTTCTATCGAGTCCGTGCGGCGGCCGGTGCGGTGGGGCCGGTGCAAGCGTTGGTGAAGAAATCCACGGTTCCGGGGACCTCGCCCACTGCCACCGAGCCTGGCATGATCGATCTCCTGCTTGCCACTCGGACTGATCTGGAGAAACAAGGTCTGGATCACGGCCCTTTGTCGGTCCTGTCTACGCTGTCCAGGCAGGGCTATCGTCCCCCGTCGCGGGCGACCGTGGCCAGGATCTTTGCCCGGTCCGGGGTAGTGGTGCCGGAGCCGCGGAAGAAGCCGCGCAGCGCCTACAAGCGATTCGTCTATCCGCAGCCGAACGCGTGCTGGCAGATCGACTCGACCGAGTGGGTCCTCGCCGACCGGACGAAAGTGGCAGTTTTCCAGCTCATAGACGATCATTCCCGGCTTGCTCTGGCATCTCTCGTGGCCCCGGGCGAAACCAGTGCCGCTGCGATCGCGGTCGTGACGCTGGCCATCCAAAGACATGGCGTGCCGCAGAAGTTCCTCTCCGACAATGGCGCAGCGCTGAACCCGACCCGCCGCGGACGCACCGGTGCGCTGGTCGAATTCCTCAAAGCCAAAGGCGTGGAGCCGATCACCGGTAAGCCCTACAAACCCACCACCCAGGGCAAGAACGAACGCTTCCACCAGACCCTGCACAAATACCTCCACCGTCAGCCGCCGGCCGCATCAATGACTCTCCTGCAAGCCCAAGTCGACGCTTTCGATCTGTACTACAACACCCAACGCGAACATCAGGGCCTGGCACCGGGAATGACCCCAAGCGAGGCCTGGCACGCCACTCCAAAAGCCCCGGCACCGGTTCCGCCAGATCAACCAACACCGGAATCAGAGCGACGCAGCCTTCGCCGAACGGTCCGGAAGGACGGCTGCATTACCGTCCTGGGCACCCATTTCATGATGGGCAAGGAACACATCGGACAAACCGTCCACGTCATCTACGACGCCGCCACCATCATGTTCTTCGGACCCCAAGGCACCGAAATCATCAGCCACGTCAGGCCACCCAAAGGCACGCCCTACGTCGGCAACGGCAAGCCCTCCGGCGTCGCCGCAGACCCTGTAGGAGCCCGCAAAAAGCGAACCCATTACCCACGCCGACGTCAGCAGCCAAACGCCACGCAACCATGAMATWPEDAPRGAVTAFCRKHNVSRAWFYRVRAAAGAVGPVQALVKKSTVPGTSPTATEPGMIDLLLATRTDLEKQGLDHGPLSVLSTLSRQGYRPPSRATVARIFARSGVVVPEPRKKPRSAYKRFVYPQPNACWQIDSTEWVLADRTKVAVFQLIDDHSRLALASLVAPGETSAAAIAVVTLAIQRHGVPQKFLSDNGAALNPTRRGRTGALVEFLKAKGVEPITGKPYKPTTQGKNERFHQTLHKYLHRQPPAASMTLLQAQVDAFDLYYNTQREHQGLAPGMTPSEAWHATPKAPAPVPPDQPTPESERRSLRRTVRKDGCITVLGTHFMMGKEHIGQTVHVIYDAATIMFFGPQGTEIISHVRPPKGTPYVGNGKPSGVAADPVGARKKRTHYPRRRQQPNATQPNANANANANA
D1-29_01304564hypothetical proteinATGCGATCCCTGGGTACCCCTCACTCTGACTCCAACCCCGCCAAGGGCGGGTTCTCCCTGCTCCGAATCAGCGGCCCGGGAATGATGATCTTTGTCATCGCGTTCCTGGTGGCCGTGATCTTCGCGGCCAACCAGAACGACGTCGTGGGCTGGATCGTTGCCATCATCGCGCTGTTCTGGCTGCTTCTGGCCTGCTTTGTGGTCTTCAGCATCCAAAAGGCCGCCAAAAAGGCCGGTGCCAAGCTGGCTGAAGCCCAAAATGCGTTCAACAGCGCAACCGGGCGCGCGCCGTCGCCGTCCTCGGCTGACCATGGCGGCACCCGGGTGGTGGCGGAGCGGTCCGAAGCTGACGAAGTCCGCGACCTGAAGCTGGACCATTCGTTCAAGATCGTGCAGGTGCAGACCAGGGTGATTGAGCAGGAGCGGGCCAAGGGGGAGGCAGCCGACCAGGACACCATCCGCCGTGCCCTTGAAACCATTGAGATCACCGCCACGAACGCCCGCGACATGATCAGGTCCTCCGGCGGCACCGGGGACCCGGTCAGCGGAACCATCATCGACTAGMRSLGTPHSDSNPAKGGFSLLRISGPGMMIFVIAFLVAVIFAANQNDVVGWIVAIIALFWLLLACFVVFSIQKAAKKAGAKLAEAQNAFNSATGRAPSPSSADHGGTRVVAERSEADEVRDLKLDHSFKIVQVQTRVIEQERAKGEAADQDTIRRALETIEITATNARDMIRSSGGTGDPVSGTIIDNANANANANA
D1-29_01305834exoACOG0708ExodeoxyribonucleaseGTGAGCTCGGCATTGAAGAAGGACCACCTTCGCATCGCATCTGTCAACGTTAACGGCCTTCGGGCTGCCTACAAGAACGGCATGGCGGCATGGCTTGAGCCGCGCGAGGTGGATATTCTGTGCCTCCAGGAAGTCCGGGCGCCGGACGCGATCGTGCGCCAGCTGCTCGGCGACGGCTGGCACATCCTGCACGCCGAAGCCGAAGCCAAGGGCCGCGCCGGTGTGGCCATTGCTTCCCGGGAGGAGCCGCTGGAGACCCGTAACGGCATCGGTGATGACTACTTCGCCACCGCGGGGCGCTGGGTGGAGGCTGATTTCCGGATTCCCGACGCCGGAGGGAACCCCGTGCAGCTGACTGTCGCCAGCGCCTATGTGCACTCGGGCGAAGTGGGAACGCCCAAGCAAGTGGACAAGTACCGCTTCCTGGATGCCATGAGCACGCGGCTGCCCGAACTGACCAAGCACAGCGACCACGCCCTGGTGGTGGGCGACCTCAACGTTGGCCACACCGAGCTGGACATCAGGAACTGGAAGGGCAACGTCAAGAAGGCCGGCTTCCTCCCTGACGAGCGGGCCTATTTTGACCGCTTCTTCGGCGACGAGATCGGCTGGAAGGACGTCCACAGGGGCCTCGCGGGGAGCGTAGACGGCCCGTACACCTGGTGGTCCCAGCGCGGGCAGGCGTTCGACAATGACACCGGTTGGCGCATCGACTACCACCTGGCCACACCCGAACTCGCGGCCGCCGCCTTCTCGGCAGTGGTGGACCGGGCCGCCTCGTGGGACACACGCTTCTCTGACCATGCACCGCTGGTAGTGGACTACCGGCTCTAGMSSALKKDHLRIASVNVNGLRAAYKNGMAAWLEPREVDILCLQEVRAPDAIVRQLLGDGWHILHAEAEAKGRAGVAIASREEPLETRNGIGDDYFATAGRWVEADFRIPDAGGNPVQLTVASAYVHSGEVGTPKQVDKYRFLDAMSTRLPELTKHSDHALVVGDLNVGHTELDIRNWKGNVKKAGFLPDERAYFDRFFGDEIGWKDVHRGLAGSVDGPYTWWSQRGQAFDNDTGWRIDYHLATPELAAAAFSAVVDRAASWDTRFSDHAPLVVDYRLNANANANANA
D1-29_013061146trpSCOG0180Tryptophan--tRNA ligaseATGACGACTTCCTCCACCGTGACCGGTCCTGCCTCGTCAGCGGATCCCGCTGCGGAATCGGGCGATACAGCCGCTGCCGCCTCAGTCCGCACGGATCAGGACTCAGCAGGCCCGCCGGCTGCAGGAGTCCGGCACCGTGTCCTTTCCGGCATGCAGCCTTCCGCTGACTCGCTGCACCTTGGCAACTACCTGGGCGCACTGGTGAACTGGGTGCGCATGCAGGACGAATACGATGCCATCTTCTTCATCCCGGACCTTCACGCCATTACAGTTCCGCAGGATCCGGCGGAACTGGCGCGGCGAACCCGCGTGACAGCCGCGCAGTACATTGCCGGCGGCGTGGATGTGGAGAAGTGCACTCTCTTTGTGCAGTCACAGGTGCCCGAACACGCGCAGCTGGCATGGGTCCTGAACTGCATCACCGGGTTCGGCGAGGCCTCCCGGATGACCCAGTTCAAGGACAAGGCGCAGAAGCAGGGCTCGGATTTCGCCAGCGTGGGGCTCTTCACCTACCCCGTCCTGCAGGCAGCCGACATCCTCCTGTACCAGCCGCAGGGCGTTCCCGTGGGTGAGGACCAGCGGCAGCACGTGGAGCTCAGCCGCGACCTGGCCACCCGATTCAACTCCCGCTTCGGCGAGACCTTCACCGTTCCGCAGCCGTTCATCCAGAAGGAATCGGCCAAGATCTACGACCTTCAGAACCCCACAGCCAAGATGTCCAAGTCAGCGGAGTCACCCGCGGGCCTCATCAATCTGCTGGACGAACCGAAGGTCACGGCCAAGAGAATCAAATCGGCTGTTACCGATGCCGAGACGGAAATCCGCTTTGACCGCGAGGCCAAGCCCGGCGTTTCCAACCTGTTGACCATCTTCTCCGGCGTCACGGGCCAGAGCGTGGAGCAACTTGTGTTGGCTTACCAGGGCAAAATGTACGGTCACCTCAAGACAGACCTGGCGGAAGCGGTAGTGGCGCACCTGTCACCTATCCGTGACCGCGCCAACCAGCTGCTTGCTGACCCCGCCGAGCTGGACCGGCTCCTGGCCCACGGCGCTGACAAGGCCCGGGAGATCGCATCGGCCACCCTGAGTGACGTCTATGCCAAGGTGGGTTTCCTGCCTTACGGCGGCGCACCAGGAGCCCGCTAAMTTSSTVTGPASSADPAAESGDTAAAASVRTDQDSAGPPAAGVRHRVLSGMQPSADSLHLGNYLGALVNWVRMQDEYDAIFFIPDLHAITVPQDPAELARRTRVTAAQYIAGGVDVEKCTLFVQSQVPEHAQLAWVLNCITGFGEASRMTQFKDKAQKQGSDFASVGLFTYPVLQAADILLYQPQGVPVGEDQRQHVELSRDLATRFNSRFGETFTVPQPFIQKESAKIYDLQNPTAKMSKSAESPAGLINLLDEPKVTAKRIKSAVTDAETEIRFDREAKPGVSNLLTIFSGVTGQSVEQLVLAYQGKMYGHLKTDLAEAVVAHLSPIRDRANQLLADPAELDRLLAHGADKAREIASATLSDVYAKVGFLPYGGAPGARPGPT0007120_2152DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867NANA
D1-29_01307606hypothetical proteinATGCAGGCCTCCAGCAGTGTCAGTGAAGGAATGAGCGTAGGCGTCATTCTTGGATTCCCCCCTGCCATCGCCGAAGAACTCCAACGGTGGCGGGCCTCCTTCGGGGATCCCATGGCGGGGGTCATTCCTGCGCACATCACGCTGGTCACCACCACGCCCACCCTGGACTGGGAGGCAACGCATGCCCACGTCCGGGAGGTGGCGCGGCAGCAGGCTCCGTTTATGGTCACCATCGCCGGAACCGGATCCTTTCGGCCGGTGTCGCCCGTGGTCTTCCTCAACGTGGAAGAAGGTTTTGGCGCCTGCGTGGACCTGCACGAGAAACTCCAGACCGGTCCTCTTGAGCGGGACCTGCCCTTTTCATACCACCCGCATGTGACCATCGCCCACGATGTCGCTCCGGAAAGCCTCGATGAAGCCGAAACGGTGCTCAAGGACTACAGGGCAACCTTCCCCGTGGTTAGCATGGGACTTTACGAGCACGATGCCAACGGCATCTGGCAGCTACGGGAAGAGCTGGACTTTGGGACCGAAACCGACGACGACGCCCCCGCCTTCTCAGCCGACGCCATCGCTGACACCGACGGAGCCACCGCCCCCTACTGAMQASSSVSEGMSVGVILGFPPAIAEELQRWRASFGDPMAGVIPAHITLVTTTPTLDWEATHAHVREVARQQAPFMVTIAGTGSFRPVSPVVFLNVEEGFGACVDLHEKLQTGPLERDLPFSYHPHVTIAHDVAPESLDEAETVLKDYRATFPVVSMGLYEHDANGIWQLREELDFGTETDDDAPAFSADAIADTDGATAPYNANANANANA
D1-29_013081050hypothetical proteinATGGAATGGGGAAAGGCCAGACGATCCAGCAAGGGTCCTGCCGCGAGCTTGCTGGCCATGATGCAGTGGTTGACGGCAAGGCTCAGCACCCTGCGGCCGGTCAGGGCATGGCAGCACTACAACCTCCAGCGCGGTCCGCTCCTGAGCGCAGGCATCGGTTTCAGGATGTTCTTCTCCATCACCGGCCTCCTGACCACGGGGTTCTCTGTTGCGGGGCTGGTGCTCCGGGGCCAGCCTGCGCTCCTGGACCAGGCCATCAGCACGGTTGCCCAGAGCGCGCCGGGGCTGCTCAAGGTGGGCGGCGGCGAGGGCCTGGTGGACCCGGCGGAGCTGCTGAATCCCGAGGGACTGGGCTGGGCGGCGGTGATCGCCGGTGTTGTCACGTTCGTCATCTCCCTCGGCTGGATCGACGGCATACGGGCAGGGCTCCGCGTGATCATGCAGCTCCCGCCCCCCAGGGCCAACCCCGTGCTGCTTAAGCTGCGCGACGCCGGAACGCTGCTGCTGCTGGGCGTCGCCGTGGTGATCAGCGCCGGAGCCTCCCTTGTGTTCGGCACTGCCGCAGGATGGGTGGCGGACTTCCTGCAGCTCGATCCGGTGCTGGCAGGACCCCTCACCACGTCAGTGAAGATCGGCGTACCGCTGGTCCTGAGCTGGGTCACCGCCTTCATTATGTTCCGCTTGGCTGCCAGCCTGAAGCTGTCCAGGCGGGCACTCCTGGAGGGGACAATCCTTGCCGCGGTGGGCACCACAGTGCTCCAGGTCTTCAGCACCGAACTGCTTGCCGGGGCTGGGCGGAATCCCATCCTGGCGCCGTTCGCCATCATCATTGGGCTGTTGATCTGGTTCAACCTGGTCAGCCAGGTTTACCTGGTTTCCGCAGGCTGGGCGGCGATCCGTGAAGAAGACCTCAGGAGAGTCCCCGCCGTGCATGAAAAGGTCCGCTGGGGGCCGCGTCAGGTCCAGCCTGGCAAGGTGCCCGTAGAGCATGCTGGAGCCGCAGCGGCTACTTCCCGGCGTCGAGGTATTGGTCGGCCCAGGCAGAAATGAMEWGKARRSSKGPAASLLAMMQWLTARLSTLRPVRAWQHYNLQRGPLLSAGIGFRMFFSITGLLTTGFSVAGLVLRGQPALLDQAISTVAQSAPGLLKVGGGEGLVDPAELLNPEGLGWAAVIAGVVTFVISLGWIDGIRAGLRVIMQLPPPRANPVLLKLRDAGTLLLLGVAVVISAGASLVFGTAAGWVADFLQLDPVLAGPLTTSVKIGVPLVLSWVTAFIMFRLAASLKLSRRALLEGTILAAVGTTVLQVFSTELLAGAGRNPILAPFAIIIGLLIWFNLVSQVYLVSAGWAAIREEDLRRVPAVHEKVRWGPRQVQPGKVPVEHAGAAAATSRRRGIGRPRQKPGPT0014525_2029DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
D1-29_01309771hypothetical proteinATGTCACGTTCCGAGCGAGTCAGTTTCGAAGGATCGACGGGCGAGCTCCTGTCCGGCATCCTGGACGTGCCAGAGGGCCCGGTGAGGGGCTGGGGGGTCTTCTCGCACGGTTTTACGCTGGGCAAGGACAGCCCCGCGGCCTCGCGGATGTGCAAGGCGCTGGCTGACACCGGCATCGGCATGCTCCGTTTCGACAACCTGGGATTGGGCGATTCCGCCGGCCTCTGGTCCGAGGGCTCCTTTAGCCACAAGGTGGCCGACACGGTCAAAGCCGCCGAATTCATGCGTGACCAGGGCAAGGAGATCTCCCTGCTGGTGGGCCACTCCTTCGGCGGGGCCGCCGTGCTGTCGGCCGCCCGCCTGATCCCCGAACTCGACGCCGTTGCCACAGTCGCGGCACCCTTCTCACCCAAGCATGTGGCGCACGTCTTTGACGCCGCCCTGGACAAGATCCTCAGCGAGGGCAGCGCCGAAGTGGATCTGGGCGGCAAACGGATGGAGATCCGCAAGCACTTTGTGGAGGACCTGGAAAACGCTGACCTCACGGACTGCATCCGTCAGCTCCACAGGCCCCTGATGGTGATGCACTCCCCCACCGACAACACCGTGGGAATCGAAAATGCCAGCACCATCTTCCAGACGGCCCGTCATCCGCGGAACTTCGTTTCGCTCGAGGGCAGCGACCACCTGCTGACGGGCAAGGGCCAGGCAGCCCGCGCCGCCAGGATCATTTCTGCCTGGGCCGACCAATACCTCGACGCCGGGAAGTAGMSRSERVSFEGSTGELLSGILDVPEGPVRGWGVFSHGFTLGKDSPAASRMCKALADTGIGMLRFDNLGLGDSAGLWSEGSFSHKVADTVKAAEFMRDQGKEISLLVGHSFGGAAVLSAARLIPELDAVATVAAPFSPKHVAHVFDAALDKILSEGSAEVDLGGKRMEIRKHFVEDLENADLTDCIRQLHRPLMVMHSPTDNTVGIENASTIFQTARHPRNFVSLEGSDHLLTGKGQAARAARIISAWADQYLDAGKNANANANANA
D1-29_01310783sdhBCOG0479Succinate dehydrogenase iron-sulfur subunitATGTCAGCTGAAATTGCTGAGCCAGCCTCAAAGATTGAGCTGCCTGCCCACGTTGGAGGCGGCGGCGAAATCCCCACTTTCGACGTCACACTGCGGGTCCGCCGCTACAACCCCGAAGTCTCCGAGGACGCCACCTGGGATGACTTCACGCTGACGATGTACGGCACGGACCGGGTCCTGGACGCCCTGCACAAGGTCAAGTGGGAGATCGACGGCAGTGTCTCGTTCCGCCGCTCCTGCGCCCACGGCGTCTGCGGCTCCGATGCCATGCGCATCAACGGCCGCAACCGCCTCGCCTGCAAGACCCTCCTGAAGGACCTGGACACGTCCAAGCCCATCACGGTTGAGCCGATCAAGGGCCTCCCGGTGGAGAAGGACCTGATCGTGGACATGGAGCCCTTCTTCCAGTCCTTCCGCGAAGTGATGCCGTTCCTGATCAACAAGGGCCACGAGCCCACCAAGGAACGCCTCCAGTCGGCCGAGGACCGGGAGCGCTTCGACGACACCACCAAGTGCATCCTCTGCGCCGCGTGCACGTCCTCCTGCCCCGTGTTCTGGACCGACGGCCAGTACTTTGGGCCTGCCGCGATCGTCAACGCCCACCGCTTCATCTTCGATTCCCGTGATGACGCAGGCGACATGCGCCTGGAGATCCTCAACGACAAGGAAGGTGTGTGGCGCTGCCGCACCACCTTCAACTGCTCCGAGGCCTGCCCCCGTGGCATCCAGGTCACGCAGGCAATTGCCGAGGTCAAGCAGGCAATCCTGTCGCGCAAGATCTAAMSAEIAEPASKIELPAHVGGGGEIPTFDVTLRVRRYNPEVSEDATWDDFTLTMYGTDRVLDALHKVKWEIDGSVSFRRSCAHGVCGSDAMRINGRNRLACKTLLKDLDTSKPITVEPIKGLPVEKDLIVDMEPFFQSFREVMPFLINKGHEPTKERLQSAEDRERFDDTTKCILCAACTSSCPVFWTDGQYFGPAAIVNAHRFIFDSRDDAGDMRLEILNDKEGVWRCRTTFNCSEACPRGIQVTQAIAEVKQAILSRKIPGPT0001600_888DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001600-sdhB|frdB-K00240NANA
D1-29_013111809sdhACOG1053Succinate dehydrogenase flavoprotein subunitATGCAGGTCCATAAGTACGACGTCGTCATCGTCGGTGCCGGTGGCGCTGGCATGCGCGCCGCGATCGAATCCGGTCAGCGCGCCCGCACAGCAGTACTGACCAAGCTCTACCCCACCCGCTCGCACACAGGTGCGGCGCAGGGTGGCATGTGCGCAGCCCTTGCCAATGTCGAGGAAGACAACTGGGAATGGCACACGTTCGACACCATTAAGGGCGGCGACTACCTGGTTGACCAGGATGCCGCCGAAGTCATGGCGAAGGAAGCCATCGACGCCGTCCTGGACCTTGAGAAGATGGGCCTGCCGTTCAACCGCACGCCTGAGGGACGGATTGACCAGCGCCGTTTCGGCGGCCACACCCGCGACCACGGTAAAGCCCCCGTCCGCCGGGCATGCTACGCCGCCGACCGCACAGGCCACATGATCCTGCAGACGCTCTATCAAAACTGCGTCAAGCACAACGTGGAGTTCTACAACGAGTACTACGTCCTTGACCTCCTGACCGTCGAAGAAGACGCAGTCCGCGAGGACGGAACCCCGTACAAGCAGAAGCGCGTTGCCGGCGTCGTGTCCTACGACCTCGCTTCCGGTGAGCTTCACGTCTTCCAGGCAAAGTCCGTGGTGTTCGCCTCCGGCGGCGCGGGCAAGGTCTTCAAGACCACCTCGAACGCCCACACCCTGACCGGCGACGGCATGGGCATCGCGTTCCGCCGCGGCATCCCGCTGGAGGACATGGAGTTCTTCCAGTTCCACCCGACAGGCCTCGCGGGCCTGGGCATCCTCCTTTCCGAGGCAGCCCGCGGCGAAGGCGCCATCCTGCGCAACTCCGAGGGTGAACGCTTCATGGAGCGCTACGCCCCCACCATCAAGGACCTCGCGCCCCGTGACATCGTGGCCCGTTCCATGGCCAACGAAGTCCGGGAAGGACGCGGCTGTGGCCCCAACAAGGACTACGTCCTTCTTGACCTGACCCACCTGGAGCCGGCGCACATCGACGCCAAACTTCCGGACATCACCGAGTTCGCCCGCACCTACCTCGGTGTTGAGCCCTACACAGAGCCGGTTCCGGTGTTCCCCACCGCGCACTATGCCATGGGCGGCATCCCCACGAACATCACCACCGAAGTGCTCCAGGACAACGACACTGTGGTGCCGGGCCTGTACGCCGCGGGCGAGGTTGCCTGTGTCTCTGTCCACGGTTCAAACCGCCTGGGCACCAACTCGCTCCTGGATATCAACGTGTTCGGCAAACGTGCAGGCATTGCCGCGGCTGAATACGCCAAGACGGCAGACTTCGTGGAGCTTCCCGAAGACCCGGAGGCCTACACGATCGAGCTGCTGAACATCGCCCGCAACGGCAACGGCGACGAGAAGGTGGCGGTGATCCGCAAGGAACTCCAGGACACCATGGACGCCAACATGCAGGTGTTCCGCACGGCAGACACGCTGAACCAGGTCCTGCAGGACATCGCTTCCTTCGAGGAGCGGTACCGGCGCATCACAGTCCAGGACAAGGGCAAGCGCTTTAACCTGGACCTGCTCGAAGCCGTTGAGCTCGGCTTCCTGCTCGAGCTTGCCAAGGTGATGACCGTGGCGGCCCTGCACCGCGAAGAATCCCGCGGCGGCCATTTCCGCGAGGACTTCCCGGACCGCAACGACGAAAAATTCATGAAGCACTCCATGGCGTACAAAGACATCGTTGCCCCGGCCGGGGGCACGGACGGAACCGCAAAAACAACAGCGGGCATCCGGCTCGATACCAAACCGGTTGTCTTTACCCGCTACGAGCCGATGGTGAGGAAGTACTAAMQVHKYDVVIVGAGGAGMRAAIESGQRARTAVLTKLYPTRSHTGAAQGGMCAALANVEEDNWEWHTFDTIKGGDYLVDQDAAEVMAKEAIDAVLDLEKMGLPFNRTPEGRIDQRRFGGHTRDHGKAPVRRACYAADRTGHMILQTLYQNCVKHNVEFYNEYYVLDLLTVEEDAVREDGTPYKQKRVAGVVSYDLASGELHVFQAKSVVFASGGAGKVFKTTSNAHTLTGDGMGIAFRRGIPLEDMEFFQFHPTGLAGLGILLSEAARGEGAILRNSEGERFMERYAPTIKDLAPRDIVARSMANEVREGRGCGPNKDYVLLDLTHLEPAHIDAKLPDITEFARTYLGVEPYTEPVPVFPTAHYAMGGIPTNITTEVLQDNDTVVPGLYAAGEVACVSVHGSNRLGTNSLLDINVFGKRAGIAAAEYAKTADFVELPEDPEAYTIELLNIARNGNGDEKVAVIRKELQDTMDANMQVFRTADTLNQVLQDIASFEERYRRITVQDKGKRFNLDLLEAVELGFLLELAKVMTVAALHREESRGGHFREDFPDRNDEKFMKHSMAYKDIVAPAGGTDGTAKTTAGIRLDTKPVVFTRYEPMVRKYPGPT0001605_1938DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001605-sdhA|frdA-K00239NANA
D1-29_01312480hypothetical proteinATGACTGCGACGATTCAAAACCCGCGAAGCGGAAAAGACAGCGGTGGAAAGATTGCCCCCCAGTACCGCCGTACAGGCGCCTCCAGGGGCAACTTTGAGATGCTGGCCTGGCTGTTCATGCGCTTGTCCGGTGTGGTGCTGGTGGTCCTGATTTTCGGCCACCTCTTTGTGAACCTCATGGTGGGTGAAGGCATCCACGCCATCGACTTCGGCTTTGTGGCCGGCAAGTGGGCTGACCCGTTCTGGCAGGTCTGGGACTTGGCCATGCTCTGGCTCGCCATGCTGCACGGCACCAACGGGGTCCGCACCATCATCAACGACTACGCCGAGAAGGACTCCACCCGTCTCTGGCTCAAGATCGTCCTCTACACGGCCACCACCGTCATCATCGTCCTGGGCACGCTGGTGATCTTCACCTTCAACCCGTGCCCCATGGTGGACGGTGTTCCGCTGCCCGGGGGCTTCTGCCCCGCTGCATAAMTATIQNPRSGKDSGGKIAPQYRRTGASRGNFEMLAWLFMRLSGVVLVVLIFGHLFVNLMVGEGIHAIDFGFVAGKWADPFWQVWDLAMLWLAMLHGTNGVRTIINDYAEKDSTRLWLKIVLYTATTVIIVLGTLVIFTFNPCPMVDGVPLPGGFCPAAPGPT0001590_144DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001590-sdhD|frdD-K00242NANA
D1-29_01313381sdhCCOG2009Succinate dehydrogenase 2 membrane subunit SdhCGTGCCGACAAAACCAGCTGGCACCTTGTACCGCGGCCGTGAAGGCATGTGGTCCTGGGTAGGACACCGTATTACCGGTGTTGTGATCTTTTTCTTCTTGTTGGTCCATGTGCTGGACACGTCACTGGTCCGGGTATCCCCTGAGGCCTACACCGCTGTCATCGGTACGTACCAGAATCCCCTGATGGCCCTGGGCGAAACGGGTCTTGTTGCAGCAATCGTGTTCCACGCCTTTAACGGCCTGCGCATCATTGCCGTTGATTTCTGGAAGAACGGCGCCAAATACCAGCGCCAGATGCTCTGGGCCGTTCTCGGGCTTTGGGCCGTCACCATGGTGGCGTTCTCCATCCGCCACCTGTCCCTCGCTTTCGGAGGCCACTAAMPTKPAGTLYRGREGMWSWVGHRITGVVIFFFLLVHVLDTSLVRVSPEAYTAVIGTYQNPLMALGETGLVAAIVFHAFNGLRIIAVDFWKNGAKYQRQMLWAVLGLWAVTMVAFSIRHLSLAFGGHPGPT0001595_3183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001595-sdhC|frdC-K00241NANA
D1-29_013141134rfbMCOG0662Mannose-1-phosphate guanylyltransferase RfbMATGAATACAGACAAAGTGACAAGCCCGGCTTCACCCCTGAACCGTTTTATAGCGGTGATTCCGGCAGGCGGAGTGGGGACCCGCCTCTGGCCCCTGTCACGTGCAGCAGCCCCGAAGTTTCTCCACGACCTCACGGGTTCCGGCAGCACCCTGTTGCGCGCTACCTATGACCGGCTGGAGCCCCTTGCAGGGCGGCGTGTACTGGTTGTCACCGGCACCGCGCACCGGGCAGCGGTATGCCGTCAGCTGCCAGAGGTGCAGGACGCGGACCTTGTGCTCGAAAGCGAACCGAAGGACTCCGGCGCCGCCATCGGCCTGGCCGCGGCCATCCTCCACGAGCGGGATCCGGACACCATCATGGGTTCCTTCGCCGCCGACCATGTGATCAGCCCCGACCACCTCTTCCAAAGCGCGGTCCGCGAGGCGATCCACACAGCTGCCGCCGGCAAGATTGTCACCATCGGCATCAAGCCGACGCACCCGTCCACCGGCTTCGGCTATATCCGTGCCGGGCAGGAACTTCATATCGAAGGTGCCCCCAGCGCGCAGGCCGTGGTTGAGTTCGTGGAAAAACCGGACGAAGACGTTGCCCAGCAGTACGTGGACAGCGGCGAATACGTCTGGAACGCCGGCATGTTCGTGGCCCCCGTTGCCCTGATGCTCAAGCACCTTGAGGCCAACCAGCCGGAGCTCTTCAAGGGCCTCCAGGAGATCGCCCAGGCCTGGGACACCACCGAACGTGACGAAGTCACTGCACGGGTATGGCCTACCCTGCCCAAGATCGCTATCGACTATGCAGTTGCTGAACCTGCCGCCGCCGCTGGTGACGTTGCTGTTGTGCCGGGCACTTTTGGCTGGGACGACGTCGGGGATTTCGCCTCCGTGGGCCGGCTCAACAGTGCACGGGAAGTGGATGATGTTACGGTCATCGGTGAGGGCGCGCGCGTCTTCACCGAAAACGCCAGTGGCGTGGTGGTGTCGGATACCAAGCGCGTCATTGCGCTGATTGGTATTAAGGACGTGGTGATCGTGGATACCGGGGACGCCCTGCTGGTGACCACCAAGCAGCACGCCCAGCGCGTCAAGGGTGCCGTTGACGCGCTCAAGGCCAGCGGCGATACCGACGTTCTCTAGMNTDKVTSPASPLNRFIAVIPAGGVGTRLWPLSRAAAPKFLHDLTGSGSTLLRATYDRLEPLAGRRVLVVTGTAHRAAVCRQLPEVQDADLVLESEPKDSGAAIGLAAAILHERDPDTIMGSFAADHVISPDHLFQSAVREAIHTAAAGKIVTIGIKPTHPSTGFGYIRAGQELHIEGAPSAQAVVEFVEKPDEDVAQQYVDSGEYVWNAGMFVAPVALMLKHLEANQPELFKGLQEIAQAWDTTERDEVTARVWPTLPKIAIDYAVAEPAAAAGDVAVVPGTFGWDDVGDFASVGRLNSAREVDDVTVIGEGARVFTENASGVVVSDTKRVIALIGIKDVVIVDTGDALLVTTKQHAQRVKGAVDALKASGDTDVLPGPT0022660_1022DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0022660-manC|cpsB-K00971NANA
D1-29_013151200scmPCOG1473N-acetylcysteine deacetylaseGTGCGCAATTACACTACTGAAGCTGAACCCACCGCGTTGGTGGAGCCATGGCTGGAGCCGCTCCTCCCGGAACTGATCGATTTTCGCCGGGACCTGCACGCGCACCCCGAACTGTCTTTCAAGGAGTTCCGCACCACTGACAAGCTCGTGGAAAGGCTCGAAGCAGCGGGTCTGTTTCCCCGGCGGCTTGAAGGTACCGGACTCACGGTGGACGTGGGTGTGGGGCCCATCGCCACGGCCCTCCGCGGGGACATTGATGCCCTGCCCATCATCGAAGAGACCGGGCTTCCGTTCGCCTCGAAAAACCATGGTGTGACGCATGCCTGCGGCCACGACATCCACACCGCTGCGATGCTTGGTGTGGCGTTGGTCCTCCACGAGATGCACCAGGTGTCCCCCCTGGGCGGAACTGTGCGCATCATCTTCCAGCCCGCGGAAGAGACCATGCCCGGCGGAGCGCTGTCGTGCATTGAACAGGGCGTCCTGGATGGTGTGCCGCGTATCCTCGCGCTGCACTGTGATCCCAGGATCGACGTCGGACGCATCGGCACGCGCATCGGCGCCATTACATCTGCCTCAGACACCATCAAGATCGAACTTAGCGGCCGCGGCGGCCATACGTCCCGACCGCACCTCACGGAGGACCTGGTGTTCGCCCTCGCCCAGATCGCTGTTAATGTGCCGGCCGTGCTGTCACGCCGGGTTGACGTGCGCAGCGGCGTTTCCGTGGTGTGGGGACAGATCAACGCCGGCTCGGCCCCGAATGCAATCCCGGGTACGGGCTACATGTCCGGCACCATGCGCTGCCTGGACCGGGACGCCTGGCACGACGCCGGCGAGCTGCTGGATGAAGTAGTGCAGCAGGTGGCCGCGCCCTATGGCGTCGACGTCCACCTGGAACACACCAGGGGAGTGCCCCCCGTGGTGAACTCCGAGCATGAAACAGCGCTCATTGAAGCTGCGGCCAGGGCTGAAATCGGTGAGAGTGCAGTGACGCTGACACCGCAGTCCATGGGTGGCGAGGATTTTGCGTGGTTCCTGGCTGAACGTCCCGGCGCGATGATGCGCCTGGGCACCAAGACACCGGGCGGTGAAGAGTACGATCTGCACCGCGGCGATTACATCGTTGACGAACGCGCTTTGAGTTTCGGCATCCAGGTGCTCACCGCTGCGGCCCTCAGGACCATCCGCGACCTCTAAMRNYTTEAEPTALVEPWLEPLLPELIDFRRDLHAHPELSFKEFRTTDKLVERLEAAGLFPRRLEGTGLTVDVGVGPIATALRGDIDALPIIEETGLPFASKNHGVTHACGHDIHTAAMLGVALVLHEMHQVSPLGGTVRIIFQPAEETMPGGALSCIEQGVLDGVPRILALHCDPRIDVGRIGTRIGAITSASDTIKIELSGRGGHTSRPHLTEDLVFALAQIAVNVPAVLSRRVDVRSGVSVVWGQINAGSAPNAIPGTGYMSGTMRCLDRDAWHDAGELLDEVVQQVAAPYGVDVHLEHTRGVPPVVNSEHETALIEAAARAEIGESAVTLTPQSMGGEDFAWFLAERPGAMMRLGTKTPGGEEYDLHRGDYIVDERALSFGIQVLTAAALRTIRDLPGPT0026300_499DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-29_01316435ohrROrganic hydroperoxide resistance transcriptional regulatorATGACTGAAGCTCCCCGCCTTGACCGCCAGGTGTGCTTTGCGCTGTACTCGGCGTCCCGCGCGGCCACCGCGGTATATCGGCCGGTGCTGGACGAACTGGGCCTCACCTACCCGCAGTACCTGGTGATGCTCGTTCTGTGGGAAAGCGAGCCGAGGGGCGTTAAGGAACTCGGCGAGGAGCTGGGCCTCGATTCCGGCACCCTCTCACCCCTGCTCAAGCGCCTCGAAGCACTTGGCTTGCTGGAGCGGCGGCGGTCGGGCGAGGACGAGCGCCGGGTTGCCATCCACCTGACTCCCGCCGGCCGGGCCCTCAGCACCAAGGCCACCGGGATTCCCCAGCACCTTGCCGACGCTGCAGGACTGTCCGCCAACGAGCTGGAGCAGCTTCGCGACACCCTGGACAGGCTCATCAAGGCACTCCACAACCCGCGCTGAMTEAPRLDRQVCFALYSASRAATAVYRPVLDELGLTYPQYLVMLVLWESEPRGVKELGEELGLDSGTLSPLLKRLEALGLLERRRSGEDERRVAIHLTPAGRALSTKATGIPQHLADAAGLSANELEQLRDTLDRLIKALHNPRPGPT0013155_4529DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_01317471ohrACOG1764Organic hydroperoxide resistance protein OhrAATGAACTTTCACATTAATCCCAACAGGACGGACACCACCGTGAAGACCCTTTACACCGCCGAGGCACTTGCATCCGGCGAAGGCCGTGACGGCACTGCACGCACAAAGGATGGAAAGCTCGACGTCACCCTGGCCAGCCCCGTGGAACTCGGAGGAGATGGTGCGGGCACCAATCCTGAGCAGCTCTTCGCCGCGGGCTACGCAGCCTGCTTCCACTCCGCGCTCCGCCTCGTGGGGCGCAAGGAGCGTGCAGACCTCACTGATTCAGCCGTAGCTGCCCGCATCCACTTTGGTGCCCTTGAGGGTGGTGAAGGGTACGGCCTCGCGGCCGAGCTGGAGATCGCGGTCCCCGCGCTGGACCTTGCCACGGCCGAAGCGCTCGTTGCCAAGGCCCACCGCATCTGCCCCTACTCCAACGCGACGCGCGGCAACATGGCAGTGGACATCAAGATCCTGGAGTTCGCAGTATGAMNFHINPNRTDTTVKTLYTAEALASGEGRDGTARTKDGKLDVTLASPVELGGDGAGTNPEQLFAAGYAACFHSALRLVGRKERADLTDSAVAARIHFGALEGGEGYGLAAELEIAVPALDLATAEALVAKAHRICPYSNATRGNMAVDIKILEFAVPGPT0013160_984DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-29_013181035yfmJCOG2130Putative NADP-dependent oxidoreductase YfmJATGAGCACCACTGAATGGATCGACGCCGTCGTGCCCACCTCAACCCGTGAGATCCATCTGGCGTCGCGGCCTTCCGGGCGGCCCACCCCGGAGAACTTCAGGCTGGCCGAATCAGCGCTGCCGGTGCTCCAGGACGGCCAGATCCTGGTCCGCAACCGCTACATCTCCGTTGACCCCTACATGCGCGGACGCATGAATGACGTTAAGTCCTACTCAGCGCCGTTTGCGCTGGATGCAGCGCTCGACGGCGGCGCGGTAGGCGAGGTGATCGCGTCCAGTTCTGACCTTCGCAAGGTGGGGGACGTCGTCGTCCATCAACTGGGTTGGCGCGAATATGCTGTCCTGGATGCCACCGCCACCACGGCGGCCCGGACGGACCTGGCTCCGGCATCGGCATTCCTGGGGGCGCTGGGCATGACCGGCCTGACGGCCTATGCCGGCCTGCTTAAGGTGGCCGAATTCAAGCCTGGCGATGTTGTGTTTGTGTCGGGCGCCGCCGGTGCCGTGGGCTCACTGGTTGGCCAGATCGCCAAGGCCATGGGCGCTTCCCGTGTCATCGGCAGCGCCGGCACTCCGGAGAAGGTGGCGCGGCTCCTGGACCTGGGCTTCGAAGTTGCCTTCAACTACCGGGACGCTCCGGTCCGGGAGCAGCTCATGGCGGCGGCAGGTGGTAACGGGATTGACGTCTACTTCGACAACGTCGGCGGTGAGCACCTGGAGGCTGCCCTGGCCGAGCTGAACGTTGGCGGACGGGTGGCCATGTGCGGTGCCATCTCGCAATACAACGCCACCGAGGCCACGCCTGCCCCAAGAAACCTCACGCTCGCGATCGGCAAGCAGTTGACCCTGCGGGGTTTCCTGGTGGGGGGCCAGCGTCAGCACGGTGCGGAGTTCGCCGAGAAGATGGCAGCCTGGCTGGCCGATGGTTCGGTCCGCTACGACGAGACAGTGGTGGATGGTTTGGAGAACGCGCCGCAGGCCTTTATTGACCTTCTTGACGGCGCCAATACGGGGAAGATGCTGGTCCGTCTCTAGMSTTEWIDAVVPTSTREIHLASRPSGRPTPENFRLAESALPVLQDGQILVRNRYISVDPYMRGRMNDVKSYSAPFALDAALDGGAVGEVIASSSDLRKVGDVVVHQLGWREYAVLDATATTAARTDLAPASAFLGALGMTGLTAYAGLLKVAEFKPGDVVFVSGAAGAVGSLVGQIAKAMGASRVIGSAGTPEKVARLLDLGFEVAFNYRDAPVREQLMAAAGGNGIDVYFDNVGGEHLEAALAELNVGGRVAMCGAISQYNATEATPAPRNLTLAIGKQLTLRGFLVGGQRQHGAEFAEKMAAWLADGSVRYDETVVDGLENAPQAFIDLLDGANTGKMLVRLPGPT0023605_281DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCEADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256NANA
D1-29_01319129hypothetical proteinATGCGCTACGACGGGGATTCAATGAGTGTCTGTTTCAACCCTGAAATTCTGTTTTCACTGACGATCCGCAGCACTGCGCCGAAGCGCTCTGATATCAGTTACTTTAGTGGCCTGCGACACGTCAGATAAMRYDGDSMSVCFNPEILFSLTIRSTAPKRSDISYFSGLRHVRNANANANANA
D1-29_013201107tmpCCOG1744Membrane lipoprotein TmpCTTGAAGACATCACTGCGTGCACACCTCAAGCGCGGTTCAGTGGCAGGCATGGCCACCATGAGTGCTACCGCACTCCTGCTGACCAGTTGCGGTGCGCCTCCCGAAGCCGGCAGCCCGACCGCAACGGCCATCGACTATACGGGCTGCATCGTCTCTGACTCAGGCGGATTCAACGACCAGTCATTCAACCAGTCCTCCTACGAGGGCCTGAAGAAGGCCGAAGCCGAGCTTGGCATCAAGGTCAACCAGGTTGAGTCCAAGACGAACAACGATTTTGAGCCCAACCTTCGTGCCATGGTTGCAGCCGGCTGCGACTTGACGGTGACCGTGGGGTTCCTTCTGGGCGACGCCACGAAGAAGCAGGCCGAGGCCAACCCCGACAGCAAATTCGCCATCATCGACTTTGGCTACGAGACTCCTATCGCCAACGTCAAGCCGATCATCTATGACACTGCCCAGGCGGCCTTCATGGCAGGTTATCTCGCTGCCGGCACCACCAAAACCGGAACCGTTGCCACCTTCGGCGGCATCGAGCTCCCCACGGTCACCATCTTTATGGACGGCTACGCGGACGGTGTGAAGTACTACAACGAAAAGAAGGGCAAGGACGTCAAGGTCCTTGGCTGGGACAAGGCCGCCCAGGATGGCAGCTTCACCGGCGACTTCGTCAGGCAGGACGTCGGAAAGCAGCTGACCCAGAACTTCCTGGACCAGGGTGCGGACATCGTGATGCCCGTCGCGGGCCCGGTGGCTGCGGGTGCCGGCGCAGCCCTCAAGGAAGCGAAGACGGCGGGCAAAGACGTCAAACTCATCTGGGTTGACTCCGACGGGTTCCTGACAGCACCGGAATACAAGGACATCATGTTGACCTCCGTCATGAAGCGGATGGGCGACGCCGTGGAGAACGTGGTGAAGGAAGACACCGACGGCAAGTTTTCCAACACCCCCTACGTCGGCACGCTGGCCAATGAAGGTGTGGGCCTGGCACCTTTCCATGACCTGGAATCGGCTGTCCCGGCTGAGCTGAAATCAGAGCTGGACCAGATCCAAAAGGACATCGTTGACGGCAAGCTGAAGGTCGAGTCGGCGGCAAGCCCCAAGGCCTAGMKTSLRAHLKRGSVAGMATMSATALLLTSCGAPPEAGSPTATAIDYTGCIVSDSGGFNDQSFNQSSYEGLKKAEAELGIKVNQVESKTNNDFEPNLRAMVAAGCDLTVTVGFLLGDATKKQAEANPDSKFAIIDFGYETPIANVKPIIYDTAQAAFMAGYLAAGTTKTGTVATFGGIELPTVTIFMDGYADGVKYYNEKKGKDVKVLGWDKAAQDGSFTGDFVRQDVGKQLTQNFLDQGADIVMPVAGPVAAGAGAALKEAKTAGKDVKLIWVDSDGFLTAPEYKDIMLTSVMKRMGDAVENVVKEDTDGKFSNTPYVGTLANEGVGLAPFHDLESAVPAELKSELDQIQKDIVDGKLKVESAASPKAPGPT0021055_1305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021055-bmpA-K07335NANA
D1-29_013211731xylG_1COG1129Xylose import ATP-binding protein XylGGTGCTGCAGCCACTTATCCCGTCCGGTCTGTCAACGGACGCTTCGAGATTGGTCAGAGTTGTGAAACTTGAACTCAGAGGGATCACCAAACGCTTCGGCTCCCTGCTAGCGAACGATCACATCGATGTGGTGGTTGAACCCGGACAAATTCATTGTCTGCTGGGCGAGAACGGGGCCGGCAAATCCACCCTGATGAACGTGCTGTACGGACTGTACGAGCCCACCGAGGGCGAAATCCTCATTGATGACAAACCGGTGTCCTTCCGTGGCCCGGGTGATGCGATGGCCGCAGGAATCGGCATGGTGCACCAGCACTTTATGCTCGTCCCCGTGTTCACGGTGGCCGAGAACGTGGCCCTGGGAGCAGAATCCACGAAAGCCGGGGGCTTCCTGAACCTGGACGATACCCGGAGGAAGATCAAGGAAATTTCGGACCAGTACGGGTTCGACGTTGATCCAGACGCGCTGGTGGAGGATCTTCCGGTGGGTGTCCAGCAGCGTGTGGAGATCATCAAGGCACTGGTCCGGGATGCCAAAGTGCTGATCCTCGATGAACCCACTGCTGTGCTGACCCCTCAGGACACCGACGAACTTCTGGACATCATGCGGCAGCTCAAGGGCGGCGGCACGTCGATCGTTTTCATCTCCCACAAACTCCGCGAAGTGAAAGCGGTGGCGGACACCATCACGGTCATTCGGCGCGGCAAGGTGGTGGGTACTGCAAGCCCCACGGCGTCGACGGCGGAACTCGCCTCCATGATGGTGGGCCGTGCGGTCAGCCTCACGCTGGATAAGGCTCCTGCCAAAGCCCAGGAGAAGACCTTTCAGGTTAAGGACCTGACGGTTATCGCTCCCAGCGGGCACCATACGGTGGACGGGATCAGCTTTGACATTGCCAGGGGCGAGATCCTTGCCGTCGCCGGCGTTCAGGGCAACGGCCAGACCGAACTGACTGAGGCAATCCTCGGACTTCAGGACAGGGTCCATGGCTCCATCCTGCTCGACGGCGAAGAACTGGTTGGGCGCAGCGTCAAGGACATTTTGAACGCCGGCGTGGGTTTTGTGCCCGAGGACCGGTCTGTTGACGGGTTGATAGGCACCTTTTCAATCGCCGAAAACCTGATTCTGGACCGCTACGACCAGGCGCCGTTCGCGAAAGGCATAGGCATGAGTCCTGCGAAGGTCCTGGAGAACGCCAAAACCAGGATCGAAGAGTTCGATGTCCGGACGCCTTCCGGAACATTGGCCGCCGGCACCCTCTCCGGCGGCAACCAGCAGAAGGTGGTGATGGCACGCGAGCTGTCGCGGCCGCTGCGGCTTTTCATTGCCTCCCAGCCCACGCGCGGTGTCGACGTGGGCTCCATCGAGTTCCTGCACAAGCGGATTGTGGCTGAGCGTGACCACGGCACCCCCGTGATGATCGTCTCCACAGAACTGGACGAGGTCATGGAGCTCGCCGACCGCATCGCCGTCGTTTACAAGGGCAAGCTGGTGGGCATTGTCCCCGCAGGAACGGGGCGTGACGTCCTGGGCCTCATGATGGCGGGAATTTCACCCGAGGATGCGGCCCATGGTGACGCGGCCCATGGAGATGCTGCCCACGGAGACGCCGCCACCGGAGACACGGCCATCGGATATGCCACCCGTCCAGAGGCTGAACCATCCTCCGCCAAGCCGGCCGGGTCCTCCCGGACCACCACCTCCAGCGCCGAAGGAGGCGATCATGCCTGAMLQPLIPSGLSTDASRLVRVVKLELRGITKRFGSLLANDHIDVVVEPGQIHCLLGENGAGKSTLMNVLYGLYEPTEGEILIDDKPVSFRGPGDAMAAGIGMVHQHFMLVPVFTVAENVALGAESTKAGGFLNLDDTRRKIKEISDQYGFDVDPDALVEDLPVGVQQRVEIIKALVRDAKVLILDEPTAVLTPQDTDELLDIMRQLKGGGTSIVFISHKLREVKAVADTITVIRRGKVVGTASPTASTAELASMMVGRAVSLTLDKAPAKAQEKTFQVKDLTVIAPSGHHTVDGISFDIARGEILAVAGVQGNGQTELTEAILGLQDRVHGSILLDGEELVGRSVKDILNAGVGFVPEDRSVDGLIGTFSIAENLILDRYDQAPFAKGIGMSPAKVLENAKTRIEEFDVRTPSGTLAAGTLSGGNQQKVVMARELSRPLRLFIASQPTRGVDVGSIEFLHKRIVAERDHGTPVMIVSTELDEVMELADRIAVVYKGKLVGIVPAGTGRDVLGLMMAGISPEDAAHGDAAHGDAAHGDAATGDTAIGYATRPEAEPSSAKPAGSSRTTTSSAEGGDHAPGPT0021040_646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021040-nupA|yufO-K23537NANA
D1-29_013221371hypothetical proteinATGCCTGAAAAGCATCCCCACAAACACGTGGCCGACCACCATGGAAAGTCCTCCGAGCCCAATCCGGCGGCGGAGGAAACTGCCGCGGTGGTGTCACTGGACACTGCCGGCGGCGCCATGGAGCCCTCGGCTGTCCCGGCCACTGCGCAAAGCGGCCGGCTGCCGGGCGGCCCGGACACGCTGGTCCGGAAGATCTTTACCGGCAGCGGCATGGTTTCGGTGCTGGCGGTGCTGCTGGCCCTCATCATCGGCGGCCTGCTGATCGCCAGCACGGACAAGCAGGTGGGAGCAACCTCCACGTACCTGTTTGCCCGGCCCACTGACTTCCTGTCGGCGCTGTGGAGCGCGGCCACCCGCTCGTATGTGGCCCTGTTCCAAGGGTCCGTCTTCAATCCGGCTGCTTCCAGCTTCACCCTGCAGTTTGCGCCGCTCATGGAAACCCTGACCATAGCCACGCCTCTGATCACGGCAGGTCTTGGAGTGGCTTTGGCGTTTCGTGCAGGCCTTTTCAACATTGGTGCCCAGGGCCAGATCATCATGTCGGGCATCCTGGCCGCCTGGGTCGGTTTCGCCTTGCACCTCCCGGTGGGACTGCACCTGCTCCTCGTCCTGGTGGCGGGCATTGTCGGCGGTGCCCTCTGGGGCGGGCTGGTGGGCCTCCTCAAGGCCAGGACCGGAGCCCACGAGGTCATCCTCACCATTATGTTCAACTACATCGCGTTGTACTTCCTGGGGTACCTCCTGAACACTCCCGCGTTTCGACGGCCCGGAGAGTCAAACCCGATCTCGCCCATCCTTGACCCCAGCGCCGTGTATCCACAGATCCTGGGCACCCAATACCGCCTGCATCTCGGCTTTGTAGTGGCCATCGCGGCCACGTTCCTGGTCTGGTGGCTGCTGAACCGATCCACCGTCGGCTTCGAGTTCCGCGCCGTGGGCGCCAACCCGAAAGCTGCCATGACCGCGGGGATCAACGTCTCCCGGGCCACCATCCTGGTGATGGCCATGGCAGGTGCCCTTGCGGGCCTGTCCGGTGTTGCCCAGGTGGCGGGCACGGAGAAGGTCCTCACCGATGGCGTGGCCGCAACCTACGGTTTTGACGCCATCACTGTGGCGCTGCTGGGGCGCTCGACGCCGTGGGGAACCTTTGCGGCCGGCCTCCTCTTCGGAGCCTTCCGCGCCGGAGCCGTGCAGATGCAGATCCAGACCGGTACCCCCATCGACATTGTCCTGGTGGTCCAATCGCTCATTGTCCTCTTCATCGCGGCGCCGCCGCTGGTACGGGCGGTCTTCGGGCTGAACCCCCGCAGTAGGAAGCCCGCCGCGGGCCAGAAGGCCCGGCAGGCAGCAACAACCGGAGGTGCAGCATGAMPEKHPHKHVADHHGKSSEPNPAAEETAAVVSLDTAGGAMEPSAVPATAQSGRLPGGPDTLVRKIFTGSGMVSVLAVLLALIIGGLLIASTDKQVGATSTYLFARPTDFLSALWSAATRSYVALFQGSVFNPAASSFTLQFAPLMETLTIATPLITAGLGVALAFRAGLFNIGAQGQIIMSGILAAWVGFALHLPVGLHLLLVLVAGIVGGALWGGLVGLLKARTGAHEVILTIMFNYIALYFLGYLLNTPAFRRPGESNPISPILDPSAVYPQILGTQYRLHLGFVVAIAATFLVWWLLNRSTVGFEFRAVGANPKAAMTAGINVSRATILVMAMAGALAGLSGVAQVAGTEKVLTDGVAATYGFDAITVALLGRSTPWGTFAAGLLFGAFRAGAVQMQIQTGTPIDIVLVVQSLIVLFIAAPPLVRAVFGLNPRSRKPAAGQKARQAATTGGAAPGPT0021045_178DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021045-nupB|yufP-K23535NANA
D1-29_013231329hypothetical proteinATGAGCACAACAGCAACGTCGCCCCTCCCCGGAAAAGGGGAGCCGGGAGCACCGGAGCAGGAGACAGGACGCGTCGCAGCAACATCTGCCAAGCCGGTGACCTGGAGGACTCCCATCCTGCTGGCAGTGCTGGGGCTTGTCGCCCTGGTCTTCTTTGGCATCCTGGGGCCCAACCAGACGGCAAGCTTCGGCATCTCCACCAGCGGCGACTTCTTCCAGCTGCCGGCCCTGGCGGTCCCGGCGTTCCTGGGCGGCATTGTCCTGTCCGTCATCCTGCTGGGGATCGCGGCCTACGCGGTTTACCTCAAGACAAAGGACCAGCCAGCCCCCAGATGGGTGCCCATCGCCTTCATCGTGTTGTTTGTAGCAGCCTTCCTCATTTGGGTGGTAGGCGGTGCCCGCACGCCCAGCATTTCGCTGGCGGGGCTCATCGCAGGCTCAGTGACCCTCGCAGTTCCCCTGGTCTTTGGATCCCTGTCAGGCGTGTTGTGCGAGCGCGTGGGCGTGATCAACATCGCCATTGAGGGCCAACTCCTGGGCGGTGCCTTCACCGCGGCGATGGTTGCCACCATGACGGGCAGCCCGTTGGTCGGCCTGCTGGCGGCAGCGATCGCCGGCGCCCTCGTCTCCATGGTGCTGGCGCTGTTCAGCATCAAGTACCTGGTGAACCAGATCATCGTTGGCGTAGTGCTGAACGTGCTGGTCTCGGGAGTCACCGGCTTCCTCTACAGCACCGTGATGCTGGCAAACAAGGCACAATTCAATTCGCCGGGCCGGCTGCCGATCATTGACATCCCTGTGCTGTCCAGCATCCCCATCATCGGCCCTATTCTTTTCCGGCAGTCAGTGGTGGGCTACCTGATGTACATCGCTGTCATTGTGGTGTGGGTGGGCCTGTTCAAAACCAAGTGGGGACTTCGGGTGCGGGCTGTGGGCGAGCACCCCCAGGCCGCGGACACCATGGGCATCAAAGTAAATGCCTTGCGCTTCTGGAACGTCACGCTGGGCGGGGCCGTCGCCGGAATCGGCGGATCCTTCTTCACCCTGGTGGCCATCGACAGCTTTACCAAGGAAATTTCAGGTGGACGTGGCTTTATCGCCCTGGCCGCCCTGATCTTTGGACGCTGGAACCCCATCGGTGCATTCTTCGCGGCCCTGCTGTTTGGCTTCGCGGATAACCTGCAGAGCATCGTGACCATCATCGGGACGCCGGTACCCAGCCAGTTCATGGCCATGCTGCCGTACCTGGTGACGGTCCTTGCAGTGGCAGGGCTGGTGGGCCGGTCCCGGCCCCCGGCCGCCAGCGGCATCCCGTACGTCAAGGGCTGAMSTTATSPLPGKGEPGAPEQETGRVAATSAKPVTWRTPILLAVLGLVALVFFGILGPNQTASFGISTSGDFFQLPALAVPAFLGGIVLSVILLGIAAYAVYLKTKDQPAPRWVPIAFIVLFVAAFLIWVVGGARTPSISLAGLIAGSVTLAVPLVFGSLSGVLCERVGVINIAIEGQLLGGAFTAAMVATMTGSPLVGLLAAAIAGALVSMVLALFSIKYLVNQIIVGVVLNVLVSGVTGFLYSTVMLANKAQFNSPGRLPIIDIPVLSSIPIIGPILFRQSVVGYLMYIAVIVVWVGLFKTKWGLRVRAVGEHPQAADTMGIKVNALRFWNVTLGGAVAGIGGSFFTLVAIDSFTKEISGGRGFIALAALIFGRWNPIGAFFAALLFGFADNLQSIVTIIGTPVPSQFMAMLPYLVTVLAVAGLVGRSRPPAASGIPYVKGPGPT0021050_29DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021050-nupC|yufQ-K23536NANA
D1-29_01324426cddCOG0295Cytidine deaminaseGTGGAGAACTACGGCCAGGGAGAAAAACTAAGCGCCGAAGACTGGCAGGCGCTGAAGGCAGCCGCCGTCGCCGCCATGCAGAACGCCTACGCGCCGTATTCAAGGTTTTCGGTGGGGGCGGCAGCCCTCACCGCGGACGGGCGGATCGTCAGCGGCTGCAACGTGGAGAACGCCAGCTATGGCCTGGGCCTGTGCGCTGAATGTGCACTGGTGGGCAATCTTCATATGACCGGCGGCGGTACGCTGCGGGCGTTCTACTGCGTCGACGCGGGCGGCAATGTGCTGATGCCGTGCGGCAGGTGCCGCCAGCTCCTCTATGAGTTCCGGGCGCCTGATATGGAGCTCATGACCACAGCCGGCATCAAGACCATGGACCAGGTGCTGCCCGATGCATTTGGCCCCCAACACCTGGAGGAGACCCGGTGAMENYGQGEKLSAEDWQALKAAAVAAMQNAYAPYSRFSVGAAALTADGRIVSGCNVENASYGLGLCAECALVGNLHMTGGGTLRAFYCVDAGGNVLMPCGRCRQLLYEFRAPDMELMTTAGIKTMDQVLPDAFGPQHLEETRPGPT0021360_2969DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021360-cdd-K01489NANA
D1-29_013251323deoACOG0213Thymidine phosphorylaseGTGAAAGCCGCCCCGAGACAGACTGAAGTTTTCGACGCCGTCGACATCATCCGCACCAAACGGGACAAGGGCGTTCTCAGTCCTGAACAGATCGACTGGACCATCGACGCCTACACCCGCGGTGTTATCGCGGACGAGCAAATGGCTGCGTTGAACATGGCCATCCTGCTCAACGGCATGGACCGGAGCGAGATATCGCGCTGGACCGCCGCCATGATCGCCTCGGGGGAGCGGATGGACTTCTCAAGCCTCCGAAAGCCCGACGGCGGCATCAAGGCAACCAGCGACAAGCACTCCACCGGGGGAGTGGGGGACAAGATCACACTTCCACTCGCTCCGCTCGTGGCCGTCTTCGGCGTCGCTGTTCCGCAGCTTTCCGGACGCGGGCTGGGCCACACCGGCGGCACCCTGGACAAGCTGGAATCCATTCCCGGCTGGCGCGCCGATCTTAGCAACGATGAAATACTGGCGCAGCTCCAGGATGTTGGAGCTGTCATCTGTGCTGCCGGCGCCGGGCTGGCGCCCGCAGACAAAAAGCTCTACGCACTCCGCGATGTCACCGGCACCGTGGAAGCCATCCCTCTCATCGCCTCGTCGATCATGAGTAAGAAAATCGCTGAAGGCACCGGTTCGCTGGTCCTTGATGTCAAGGTGGGCAGCGGCGCGTTCATGAAGGATGAAGCCCAGGCCCGGGAACTGGCTGAGACCATGGTTGCCCTGGGCCAGGACGCCGGTGTCAACACGGTAGCCCTGCTGACCAATATGAATACGCCCTTGGGGCTCACTGCAGGCAACGCCATTGAAGTCGAGGAATCCGTGGAAGTCCTGGCCGGCGGGGGCCCTGAAGACGTGGTGGAGCTGACGGTGCGGCTGGCCGAGGAGATGCTGGCGTGCGCCGGTGTCCATGATGCTGACGCACGGGCGGCCCTGAAGGACGGCCGGGCCATGGATGTGTGGAACCGGATGATCGGGGCACAGGGCGGTGACCCACGGGCCAAGCTGCCGGTGGCCAGGGAATCAGAAGTCATTTATGCGCCCGCTGACGGCGTGCTGGTGGAACTGGACGCGCTGGCGGTAGGCGTCGCGGCCTGGCGCCTCGGTGCCGGCCGTGCCCGCAAGGAAGACGCCGTCCAGGCGGGTGCCGGTGTCCGGATGCATGCAAAGCCAGGGGCGGTGGTCCGCGCGGGTGAACCGCTGATGACGCTGCTTACGGACACCCCGGAGAAGTTTGCACGAGCCAAGGAATCGCTGGAGCATGCTGTGGTGATCGCGCCTCCCGGGTCCCGGCCGGCCCAGCAGCTCATCATCGATCGAATAGCATAGMKAAPRQTEVFDAVDIIRTKRDKGVLSPEQIDWTIDAYTRGVIADEQMAALNMAILLNGMDRSEISRWTAAMIASGERMDFSSLRKPDGGIKATSDKHSTGGVGDKITLPLAPLVAVFGVAVPQLSGRGLGHTGGTLDKLESIPGWRADLSNDEILAQLQDVGAVICAAGAGLAPADKKLYALRDVTGTVEAIPLIASSIMSKKIAEGTGSLVLDVKVGSGAFMKDEAQARELAETMVALGQDAGVNTVALLTNMNTPLGLTAGNAIEVEESVEVLAGGGPEDVVELTVRLAEEMLACAGVHDADARAALKDGRAMDVWNRMIGAQGGDPRAKLPVARESEVIYAPADGVLVELDALAVGVAAWRLGAGRARKEDAVQAGAGVRMHAKPGAVVRAGEPLMTLLTDTPEKFARAKESLEHAVVIAPPGSRPAQQLIIDRIAPGPT0021365_1110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021365-deoA-K00758NANA
D1-29_01326630hypothetical proteinATGCAGGCCATCAATGAATTCATCCTCGCTGCGGCCGGGCAGCCCTGGGTGCTCTTCCTTGTCCTCGCCTGTTGCCTGATTGACGGCTTCTTCCCTCCCATCCCCAGCGAGTCGGTGGTGGTGGGGCTTGCCGCTGTGGCCGCGACAGCTGACGTTCCCAACCCCTGGATGCTGATGCTTGTGGCTGCAGTGGGTGCCTTCTCCGGAGACAACATTGCGTACCTGATTGGGCGCACGGTGGGAACGCGCCGCTGGCGCTGGATGCGCGGTCCGCGGATGCAGAGTGCCTTCCGGTGGGCGGGCGTGGAACTGCGGAAGCGGCCGGCGTCGCTCATCCTGGTGGCCCGGTTCATCCCCATCGGCAGGGTTGCCGTCAATCTCACCGCCGGAGTAACCCACTACCCGCGGCCGCGCTTTATCGGGCTGACGGTCCTCTCCGCCACGTTGTGGGCCGCGTACTCAGTCGGGATAGGCCTGTTCTTTGGACAGTGGTTCGAGGACAACCATCTGCTTGGGGCGGTCATCGCCATCATTTGTGCAGTAGGGCTCGGAATCGTAGTGGACCTGGTCATCAACCGGCTGCGCGGGAAGGTCCCCGTAGTGGAGCGCATGAAAGAACCGGAGCCCTAGMQAINEFILAAAGQPWVLFLVLACCLIDGFFPPIPSESVVVGLAAVAATADVPNPWMLMLVAAVGAFSGDNIAYLIGRTVGTRRWRWMRGPRMQSAFRWAGVELRKRPASLILVARFIPIGRVAVNLTAGVTHYPRPRFIGLTVLSATLWAAYSVGIGLFFGQWFEDNHLLGAVIAIICAVGLGIVVDLVINRLRGKVPVVERMKEPEPPGPT0004890_2768DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
D1-29_01327723hypothetical proteinGTGGAGTTTTTGAATCAAATGCTCGAGCATGCGGCCGGGCAGCCCTGGATATATCCTCTGCTCCTGGTCTTCTTCTTCGTTGACGGGTTTGCCACCATATTGCCCAGCGAAACGGCCATTGTTGGCTTGTCGGCGCTGTTCCTTCATAGCGGGCAACCTAACCTATGGATCCTGGGTACCACCGCCCTCGTTGGCGCCATGGCGGGCGACAACATGGCGTATATGCTGGGCCGCAAGATCGGGTTGACGCGCTGGAAATGGATGCGTCGCCCCAAGGTTCAGAAGATGTTCGCCTGGGCCCAGTACGAGCTCGACAAGCGCGGCGCTGTGCTCATTTTTACCGCGCGATACATTCCCTGGGGCCGGGTTGCCGTGAACTATGTTGCAGGGCAGACCGGGTTCCGCCATCGCACGTTCTTCTGGCTGGATGCCTTCGCCTGCCTCACCTGGGTGGGTTATTCCATTGGCATAGGCCTGCTTGCTGGTCAATGGGTCCACCACAACCCCCTCCTTGGCGTGGGGATTGCCGTGGCGTTCGCGGTCCTCCTGGGCATCCTTATCGACCACCTCCTGCGCTGGTGGCACAAGCACCTCGCCCGCAACGATGCCAAGGTAGTGGACGAGTGGCTGGATGGCGGCCCGGCAGGTGCCTCCGCCGGCGTGACCGGAGCCTCCCCAATGCTCGCGGCCAGCGCTCTGGACGCCGAACCCGGGGGGAAGTAGMEFLNQMLEHAAGQPWIYPLLLVFFFVDGFATILPSETAIVGLSALFLHSGQPNLWILGTTALVGAMAGDNMAYMLGRKIGLTRWKWMRRPKVQKMFAWAQYELDKRGAVLIFTARYIPWGRVAVNYVAGQTGFRHRTFFWLDAFACLTWVGYSIGIGLLAGQWVHHNPLLGVGIAVAFAVLLGILIDHLLRWWHKHLARNDAKVVDEWLDGGPAGASAGVTGASPMLAASALDAEPGGKPGPT0004890_538DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
D1-29_013281155addCOG1816Adenosine deaminaseGTGACTGAGCCTATTGTTGACACTGCCCCTGCCCTTGATTTCGACCTGAAGAGCCTCCCGAAGGTTTCCCTCCATGACCACCTGGACGGGGGACTCCGTCCGGCCACCATCATTGAGCTGGCTGAGTCCGTTGGCCACACCCTTCCCTCCACCGATCCCGTGGCCCTGGGGGAGTGGTTCCGTGAGTCCGCCGACTCCGGTTCACTGGTCCGCTACCTGGAAACATTTGACCACACCGTCGCCGTGATGCAGACGAAGGAAGGCCTGTTCCGGGTAGCGAAGGAATTTGTGGAGGACCTCGCTGATGACGGCGTGGTCTACGGGGAAGTGCGCTGGGCACCCGAGCAGCACCTTCAGAACGGCCTCTCGTTGGATGAAGCGGTGGAGGCCGTCCAGGAAGGCCTGGAAGCCGGCGTGGATGCCGTGGCCGAAAGTGGACGGGAGATTCAGGTTGGCCAGCTGATCACGGCCATGCGGCACGCGGACCGCGGGCAGGAGATCGCTGAACTTGCCGTCCGGCACCGCAACAGGGGTGCTGTCGGCTTCGACATTGCCGGCGCGGAGGACGGCTTCCTGCCGGCCCGTTTCAAGGATGCGTTCACCTTCCTGGCACAGAACAACTTCCCAGCCACCGTCCATGCAGGCGAGGCCGCGGGCCTGGAGAGCATCCAGTCCGCCCTGGTGGACGGACGAGCCCTCCGCCTTGGCCACGGCGTCCGAATCGCCGAAGACATCATGGTGGAATTCGAGCATGACGATGACGCGTCCGGTACCGAGGATGCGGAGGACAGCATCGGTCTGGTCACCCTGGGCGACCTCTCAAGCTGGATCCGGGACCGCGGGATCGCCCTGGAGATCTGCCCCTCCTCAAACCTTCAGACCGGTGCCATCGCCGGCTTCGGTGAAGGCATCGAAAGCCACCCGCTGGACATGCTCTACCAGCTGGGCTTTAACGTCACCATCAACACGGACAACCGGCTGATGAGCGGCGTGACCCTGACCGATGAGTTTGAACTGCTCGTGGAGACCTTCGACTACGATCTCGATGACCTGCTCGAGCTGACGCTCAATGCCGCTGAAGCATCCTTCCTGCCCCTTGAAGAGAAGGAAGCCCTGGTGGAGTACATTAACGACGCCTACGCCAACCTTGGCTAGMTEPIVDTAPALDFDLKSLPKVSLHDHLDGGLRPATIIELAESVGHTLPSTDPVALGEWFRESADSGSLVRYLETFDHTVAVMQTKEGLFRVAKEFVEDLADDGVVYGEVRWAPEQHLQNGLSLDEAVEAVQEGLEAGVDAVAESGREIQVGQLITAMRHADRGQEIAELAVRHRNRGAVGFDIAGAEDGFLPARFKDAFTFLAQNNFPATVHAGEAAGLESIQSALVDGRALRLGHGVRIAEDIMVEFEHDDDASGTEDAEDSIGLVTLGDLSSWIRDRGIALEICPSSNLQTGAIAGFGEGIESHPLDMLYQLGFNVTINTDNRLMSGVTLTDEFELLVETFDYDLDDLLELTLNAAEASFLPLEEKEALVEYINDAYANLGPGPT0021520_469DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021520-add-K01488NANA
D1-29_01329582mazGCOG1694Nucleoside triphosphate pyrophosphohydrolaseATGGGAGCGCTTACCCACGCCTCATTGGTGGAATACCTCCTTGAGGAGGCCTACGAGGTAGCGGAAACCATCGAGACCGGAGCGGATGAAGCGGAACTCCAGGGCGAGCTGGGGGATGTACTCCTCCAGGTGGTGTTGCACTCCCGGCTCGCCGAGGAACGAGGAACCTTCACTTTCGACGACGTCGCCCGCGGTCTGAGCGCCAAGATGGTCAGGCGAAATCCCCACGTGTTCCGTCCGGACGGGTCACTGCAGGACAGCTTCCCCGCCACGGTGGAGGAGATCGTTCAGAAATGGGATGCGGTCAAGATATCAGAGCGCCCGGAACGAAAGCATCCTTTTGAAGGCATCCCGCAGGCGCTGCCCGCGCTGGCCCGGGCGCAAAAGTCCATGGACCGGGCCGAACGTGCCGGATTCGGCCTCCATCTTCCCCAGGCTGCCGCGCCGGACCCCGGCACTGAAGAGGAACTGGGCGACCTGCTGTTTGCGATCGTCCGCTCCGCCCGCGCCCAGGGATTTGATGCCGAGCGCGCCCTGCGCGGTGCCCTCCGCCGTTATCAGGAGGGTTTCCGTGAGCAGTAAMGALTHASLVEYLLEEAYEVAETIETGADEAELQGELGDVLLQVVLHSRLAEERGTFTFDDVARGLSAKMVRRNPHVFRPDGSLQDSFPATVEEIVQKWDAVKISERPERKHPFEGIPQALPALARAQKSMDRAERAGFGLHLPQAAAPDPGTEEELGDLLFAIVRSARAQGFDAERALRGALRRYQEGFREQPGPT0008820_1509DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0008820-mazG-K04765NANA
D1-29_013301281enoCOG0148EnolaseATGGCGCTTATCGATGCCATCCACGCCCGCGAGATCCTCGATTCCCGTGGCAACCCGACCGTAGAAGTTGAAGTCCTGCTGTCCGATGGCCAGATCGGCCGCGCGGCAGTCCCCTCGGGCGCCTCCACCGGTGAGCACGAGGCCGTTGAGCTCCGCGACGGAGACAAGGGCCGCTACCTCGGCAAGGGTGTCCAGAAGGCCGTTGACGCGGTCATCGACCAGATCGCTCCGGCCCTGACAGGTTTCGACGCCACAGACCAGCGCAGCATCGACCAGGCAATGATCGACCTGGACGGAACGGCCAACAAGAGCAAGCTCGGAGCCAACGCCATCCTGGGTGTTTCCCTCGCCGTAGCCAACGCAGCCGCCGCTTCCGCTGACCTGCCGCTGTACAAGTACCTGGGCGGCCCGAACGCCCACGTGCTGCCCGTACCGCTGATGAACATCCTCAACGGCGGCTCGCACGCCGATTCCGACGTCGACATCCAGGAATTCATGGTTGTTCCGCTCGGCGCAGAAACCTTCTCCGAGGGACTTCGCTGGGGCGTTGAGGTTTACCACGCACTCAAGGCCGTGCTGCAGGAAAAGGGCCTCTCCACCGGCCTCGGCGACGAAGGCGGCTTCGCGCCGAACCTGCCGTCCAACCGTGCAGCCCTGGACCTGATCCAGGAAGCCATCAAGAACGCAGGCTACACCCCGGGCCAGGACATTGCCCTGGCACTGGACGTTGCCTCCTCGGAGTTCTTCACGGACGGCGCCTACCAGTTCGAAGGCAAGGCCCTCAGCTCCACCGAGATGAGCGCCTACTACGCCGAACTCGTTGCCGACTACCCGCTGGTATCCATCGAGGACCCGCTGGACGAGAACGACTGGGACGGCTGGAAGACCCTCACCGACAGCATCGGCGACAAGGTCCAGCTGGTGGGCGATGACCTGTTCGTCACCAACCCCTCCATCCTTCAGCGCGGCATCGAGACCAAGACCGCCAACTCGCTGCTGGTGAAGGTCAACCAGATCGGTTCCCTGACCGAAACGCTGGACGCCGTGAGCCTGGCCCAGCGCTCCGGTTACACCACCATCACCTCGCACCGTTCAGGTGAAACCGAAGACACCACCATCGCCGACATCTCCGTGGCAACCAACGCGGGGCAGATCAAGACAGGTGCCCCGGCCCGCTCCGAGCGTGTAGCCAAGTACAACCAGCTGCTTCGCATCGAAGAGGAACTCGACGACGCCGCACGCTACGCCGGACGCAGCGCCTTCCCGCGTTTCAAGGGCTAGMALIDAIHAREILDSRGNPTVEVEVLLSDGQIGRAAVPSGASTGEHEAVELRDGDKGRYLGKGVQKAVDAVIDQIAPALTGFDATDQRSIDQAMIDLDGTANKSKLGANAILGVSLAVANAAAASADLPLYKYLGGPNAHVLPVPLMNILNGGSHADSDVDIQEFMVVPLGAETFSEGLRWGVEVYHALKAVLQEKGLSTGLGDEGGFAPNLPSNRAALDLIQEAIKNAGYTPGQDIALALDVASSEFFTDGAYQFEGKALSSTEMSAYYAELVADYPLVSIEDPLDENDWDGWKTLTDSIGDKVQLVGDDLFVTNPSILQRGIETKTANSLLVKVNQIGSLTETLDAVSLAQRSGYTTITSHRSGETEDTTIADISVATNAGQIKTGAPARSERVAKYNQLLRIEEELDDAARYAGRSAFPRFKGPGPT0018050_5230DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018050-eno-K01689NANA
D1-29_01331735hypothetical proteinATGGCTACGCGCCGTCCAAAAGTTCCCAAGGCCTCCGGGCCAGCGAAGGAAACAGCCGACACCGCTGACATCATCCGGGCCCAGTTCGGCGGTTCCACGGAGAATGCCGGCAATGCCCGGGCCTCACAGGACAGAACCGCACAGGACCGAGCTGCAAGGGACAGGACCGCAAAGGAGAGAGCGGCAGGTCCGGGGGCACCCTCGCTGAAGGGCGCCACACACGGCCGGCCCGGCAACTCCTCCCCAGGCAGCCAATCGAAGGACCAGGGCAAAGGGCGCGGTGCAGGCGGCGCATCCGCGTCAGGCGGCCATGCCAAGGGCAACCAGCCTGAGGACGAGGCTCAGCCGGTTCCTGCAAAGGCGTTTTCGGGGCGCATGCTTGCACTCGCCGTGGTCATGATCGCCATCACCATCATGCTGGCCCCCACCGTGAAGATTTTCTTTGATAAGCGGGCTGAAATCGCTGCGCTCAACGCCGATATCGCCGCAAGCCAGGCCGAACAGGCAGGCCTGCGCCAGCAGGTATCGCGCTGGCAGGACCCCAACTATGTGAAACAGCAGGCCCGCGACCGCATTAACATGGTAATGCCGGGTGAAACGAGCTACTGGGTGTTCGGCAGCGATCTGCCGGACGGACCAGGCAACAGCCAGACCGGTGCAGCAGCACAAGACCCCGCCGATCTGCCGTGGGTGGATTCCCTGTGGGAGTCCATCAGGCGTGCGGCCACAGACTGAMATRRPKVPKASGPAKETADTADIIRAQFGGSTENAGNARASQDRTAQDRAARDRTAKERAAGPGAPSLKGATHGRPGNSSPGSQSKDQGKGRGAGGASASGGHAKGNQPEDEAQPVPAKAFSGRMLALAVVMIAITIMLAPTVKIFFDKRAEIAALNADIAASQAEQAGLRQQVSRWQDPNYVKQQARDRINMVMPGETSYWVFGSDLPDGPGNSQTGAAAQDPADLPWVDSLWESIRRAATDNANANANANA
D1-29_01332693hypothetical proteinGTGGGAGAACACACAACAGCGCCGGAGGACTCACGTCAGCCATCGGCACATGATCTTGAAGTACTGAGCCGGCAGCTGGGGCGGCCTGTCCGCGATGTGGTGGAAATCCCGGCCCGCTGCGTTTGCGGCAACCCGCTGGTGGCTGCCACGGCGCCCCGCCTCAGCAACGGCACCCCTTTTCCCACCACCTTCTACCTGACGCATCCGGTGATCACGTCGGCAGTTTCGCGCCTCGAGGCCGCCGGTCTCATGAACACCATGAATGAACGCCTCGCTGCCGACGAGCCCCTTGCCGCAGCCTACCGCTCAGCGCACGACGCCTACCTGGCCGCGCGTGCGGCGATTGGCGAGCGTTCGGGCATCGGCGCGGTCCCCGAAATCGACGGAATCTCCGCCGGTGGCATGCCCACCCGGGTCAAGTGCCTTCACGTCCTGGTGGGGCACTCCCTCGCCGCCGGAGCGGGAGTCAATCCCTTGGGGGATGAAGCCATCGCAGGCATCAGCGAATGGTGGACGACTGACCGCTGCTACTGCGACGGCGCCTGGGACACAGCGGGGGAGGCACCCTCGAGGGACCTAAGCCGCCATGGGCCCCAGGGCCTGCCGGAGATAGTTGGCCGGCCGGCTCCCCTCCGCAGGACCGCCGCCGGGGGCGACGTGGACGGCCAGGGGCACGCCGGGGCCGGCGAATGAMGEHTTAPEDSRQPSAHDLEVLSRQLGRPVRDVVEIPARCVCGNPLVAATAPRLSNGTPFPTTFYLTHPVITSAVSRLEAAGLMNTMNERLAADEPLAAAYRSAHDAYLAARAAIGERSGIGAVPEIDGISAGGMPTRVKCLHVLVGHSLAAGAGVNPLGDEAIAGISEWWTTDRCYCDGAWDTAGEAPSRDLSRHGPQGLPEIVGRPAPLRRTAAGGDVDGQGHAGAGEPGPT0002595_54DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
D1-29_01333948ppx2COG0248Exopolyphosphatase 2ATGAGCCGCGTCGCCGCCATTGACTGCGGTACCAATTCCATCCGTCTGCTGATTGCGGACATTGACCGCAGCAATGGGACGGCCAAACTCACCGACGTGGTCCGTGAAATGCGGGTTGTGCGGCTCGGCCAGGGCGTGGATGCCACCGGCGAGCTCGCGCCGGAGGCGCTGGAGCGTACCTTCGCAGCCACGGCCGACTACGCCAAGATGATCCATGAACACGGTGCCGGAAAGGTGCGCTTTGTGGCGACGTCGGCCAGCAGGGACGCACGGAACCGCCAGGTCTTTGTGGACGGGATCCGCGGCCTGATTGGGGTTGAGCCCGAAGTGATCTCCGGTGGGGAGGAAGCGGCGCTGTCCTTCGCCGGGGCAGCCAGCGTCCTGCCGGTCCTTGACGGCCAGCACGTGCTGGTGGTTGACCTTGGCGGCGGGAGCACGGAATTTGTCCTCGGAACGGCGGACGGAGTCACGGCAGCCAAGTCCGTGGATATCGGCTGCGTGCGTTTGACTGAGCGGCACCTCCGCGATGACCCGCCGACGCCGGAACAGATTGCCGCTGCCGAGGCTGATGTGGACGCTGCCATTTCATTGGCGGGACTGGACGTTCCCCTCGAACGCGCCACCGCCGTCGTGGGGGTGGCCGGATCGATCACCACCATCACAGCCCACGCGCTGCGGCTTCCGGAGTATTCCCCTGAAGCGATCCACGGCACTGAACTGCCCCTGCAAATGATCCGGGGCGCAGCAAAAGACCTGCTGGAAATGTCCAGGACCGAACGCGCCCAGCTGCCGTACATGCATCCCGGCAGGGTGGATGTGATTGGGGCCGGCGGGCTGGTGTGGGCGCGTATCCTGGAACGCCTTAACGAGCTCACTGCAGGCCGGATCGTCACGGCCACCGCCAGCGAACACGACATTCTCGACGGCATTGCCCTGAGCATCAGCTAAMSRVAAIDCGTNSIRLLIADIDRSNGTAKLTDVVREMRVVRLGQGVDATGELAPEALERTFAATADYAKMIHEHGAGKVRFVATSASRDARNRQVFVDGIRGLIGVEPEVISGGEEAALSFAGAASVLPVLDGQHVLVVDLGGGSTEFVLGTADGVTAAKSVDIGCVRLTERHLRDDPPTPEQIAAAEADVDAAISLAGLDVPLERATAVVGVAGSITTITAHALRLPEYSPEAIHGTELPLQMIRGAAKDLLEMSRTERAQLPYMHPGRVDVIGAGGLVWARILERLNELTAGRIVTATASEHDILDGIALSISPGPT0002595_4732DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
D1-29_013341380hypothetical proteinATGACCAGAGCAACAGCCCGGCTCCGCCGGACCGCCACCGCTCTTCTCGCAATGATGCTGGCCGGCGGCAGCGTGGCTGCCGGTCTTGCCGGAGCGCCCGCAGCGCACGCCGACTCATGGCGCGATAAACAGTACTGGCTGGCCGAGTCCGGGATCACGAAGGCCTGGGAGGTCTCCAAAGGCGCCGGCGTCAAGGTCGCTGTTATCGACAGCGGGGTGGACGCCCAGCATCCGGACCTCAAGGGCGCTGTGACGGGCGGCCGCGACGTTTCAGGTGCCGGAAGCCCGGACGGACAGAAGAGCATCGGCGGCAAGCCCGAACACGGCACCCTCGTGGCCACCATGCTGGCCGGCCGCGGACACCAGCCGGCAGCGTCCACAGCCTCACCCAGCCCGGGCACTTCCAGTACGGGCCCGGATGGGATCGTGGGCGTGGCACCGGAGGCGCAGATCCTGTCTGTCTCCACCTGGCTGGGTTCGCCCAACCCGGCAGGAAAAAGCGACCAGGACCAGATTCCTGAGGCTGTCCGCTGGGCAGTGGACAACGGCGCCAAAGTCATCAATATCTCACTGGGCAGCACCACGCCCCAGTGGCCGCAAAGCTGGGATGCAGCCTTCCTGTACGCCGAGCAGAAGGACGTGGTGATCGTTGCCGCCGCCGGAAACCGGGTGGGCGGCAACGTCCAGGTGGGCGCGCCCGCCACCATCCCTGGTGTGCTCACGGTGGCGGGACTGGACCGGAAGGGAGTGGCGAGCATTGACTCGTCGTCCCAGGGGATCAGTATCGGAGTGGCCGCTCCGGCGGAAAACCTGCTCGGAGGGCTGCCGGGCGGCGGGTACGCCGAGTGGGCCGGAACGTCCGGAGCCGCTCCCATCGTTGCCGGCGTTGCGGCCCTCATCCGCTCCAAATGGCCCGAGATGAGCGCCCGGCAGGTCATCAACAGGATCGTCAGTACCGCGAAGGACGCCGGTGCGCCGGGAAAGGATCCGCTCTACGGCTTTGGTGTGCTGAATGCCGAAGCGGCCTTGAAGGACGCGGTGCCCGAGGCTGCGGCCAATCCGCTGGGCTCCATCTCGGACTGGATCCGTGTGCACCGCCGGGGTGGAAACCTTGCCTCGCCCGCGCCGGCACCCACCTCCGGTGTTGCCAGCGCTGTCCCCACCCTTCCCGAACCGACTGTGCCCGCGGTGGAGGCTCCATCCCAGCGTGATTCCGCCCTTGGCGCCGCCGTCGTCATCGGCTTTGCCATCCTCTTCATAGCGATCATCGCGGCGGCAGTGTTCCAGCTGCGCCGCGCTGCCCGAAACCCTCGCCTGGCCCGGGAAGAACCGGATACAGGGGTCCTGGATTCCGTGGATTCCGGCGGAAAAGCTAGTTAGMTRATARLRRTATALLAMMLAGGSVAAGLAGAPAAHADSWRDKQYWLAESGITKAWEVSKGAGVKVAVIDSGVDAQHPDLKGAVTGGRDVSGAGSPDGQKSIGGKPEHGTLVATMLAGRGHQPAASTASPSPGTSSTGPDGIVGVAPEAQILSVSTWLGSPNPAGKSDQDQIPEAVRWAVDNGAKVINISLGSTTPQWPQSWDAAFLYAEQKDVVIVAAAGNRVGGNVQVGAPATIPGVLTVAGLDRKGVASIDSSSQGISIGVAAPAENLLGGLPGGGYAEWAGTSGAAPIVAGVAALIRSKWPEMSARQVINRIVSTAKDAGAPGKDPLYGFGVLNAEAALKDAVPEAAANPLGSISDWIRVHRRGGNLASPAPAPTSGVASAVPTLPEPTVPAVEAPSQRDSALGAAVVIGFAILFIAIIAAAVFQLRRAARNPRLAREEPDTGVLDSVDSGGKASNANANANANA
D1-29_013351491ndbBDemethylphylloquinone reductase NdbBATGGCAACCACCCCAGAGCTCCAGGACCGTCCCCGGGTACTCGTCGTCGGCGGCGGATACGTCGGCCTGTACGTAGCACTCAAACTGCAGAAGAAGATCGCGAATGCCGGTGGCATCGTCACCCTCGTGGATCCACTGCCCTACATGACTTACCAGCCGTTCCTGCCCGAGGTTGCCGGTGGCAACATCGAGGCCCGCCATGCAGTGGTCTCCCACCGCCAGCACCTCAAGCAGACCGAACTGATCCAGGGCCGCGTGACGTCGATCGACCACGCCAACCGCACCGCCGTTGTGGCTCCCGCGGACGGCGGAGACAATTTCGAGGTTCCCTACTTCGACGTCGTCCTGGCCGCAGGCGCCATCACCCGCACGTTCCCCATCAAGGGCCTCGCGGACAAGGGCATCGGCCTGAAGACCATCGAGGAAGCCGTTGCGCTGCGCAACAAGGTCCTGGAGCGCATTGAGGTTGCCTCCACCATGACCGATCCCGCGGCCCGCGCCAAGGCACTCACCTTCGTGGTAGTCGGCGGCGGCTTCGCCGGCATTGAATGCATCACCGAGATGGAGGACCTGGCCCGCGCCGCGGTCCGCAACAACCCGCGGATCAAGCAGGAGGAAGTCCGCTTCGTCCTGGTTGAGGCAATGGGGCGGATCATGCCCGAGGTTACGGCCAAGCAGGCCGAATGGGTGGTGGAGCACCTCCGCAGCCGTGGCATCGAGGTCCTGCTGAACACCTCCCTGGACAACGCCGAAGGCTCCATCAAGCTCATCAACCTCCCGGACAAGACGCCGGCGCAGGACTTTGAAGCGGATACCCTGGTGTGGACTGCCGGCGTGCAGGCCAACCCCATGGTCCGCTCCACCGACTTCCCGGTCGAGCCGCGCGGCCGCGTCCGCACCCTTCCTGACATGCGCATTGGAGGGGACGAAGGAATCGTCGACAACGCCTGGGCTGCAGGCGATATCGCTGCCGTGCCGGACCTCACGGGCAGTGGCCTGCCGGACGGTACCTGCGTTCCGAACGCCCAGCACGCCCTTCGGCAGGCCAAGCGCCTCGCGAAGAATCTGTGGGCTTCCCGCTGGGACAAGCCGCTGAAGGACTACAAGCACAAGAACCTGGGTGCCGTGGCCGGCTTCGGCGAGTGGAAGGGTGTCGCGAATATCAACCTCGTCGGCAGCATCGGCCTCAAGGGCCCGCTGGCCTGGCTGGCACACCGCGGCTACCACGGCATGGCGATGCCCACGTTCGAGCGCAAGTTCCGCGTGATCTTTAACTGGATCATCAGCTTCTTCGCAGGTCGCGACACCACCCCGCTCATGGATCTGGACAACCCCCGCGGGGCCTTCATTGCAGCGGCCACCCCGGCTCCCAAGCCGGCGGCGGCACCGCCGGCCGGAAGCCCGGGTGCCGCTCCCGAGGCCGGCAAGCCCGGATCAACGGCCGCGGCGAGCTTTGATCCCAAACAGTCAGTAAGCGCGAACGCCAAGTAGMATTPELQDRPRVLVVGGGYVGLYVALKLQKKIANAGGIVTLVDPLPYMTYQPFLPEVAGGNIEARHAVVSHRQHLKQTELIQGRVTSIDHANRTAVVAPADGGDNFEVPYFDVVLAAGAITRTFPIKGLADKGIGLKTIEEAVALRNKVLERIEVASTMTDPAARAKALTFVVVGGGFAGIECITEMEDLARAAVRNNPRIKQEEVRFVLVEAMGRIMPEVTAKQAEWVVEHLRSRGIEVLLNTSLDNAEGSIKLINLPDKTPAQDFEADTLVWTAGVQANPMVRSTDFPVEPRGRVRTLPDMRIGGDEGIVDNAWAAGDIAAVPDLTGSGLPDGTCVPNAQHALRQAKRLAKNLWASRWDKPLKDYKHKNLGAVAGFGEWKGVANINLVGSIGLKGPLAWLAHRGYHGMAMPTFERKFRVIFNWIISFFAGRDTTPLMDLDNPRGAFIAAATPAPKPAAAPPAGSPGAAPEAGKPGSTAAASFDPKQSVSANAKPGPT0004020_427DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
D1-29_01336945hypothetical proteinATGACTGGCGAAAAGAACCTCCAGGCCCTGCTGGCAGCGATCCACCCCGTACTGCGCGAAGGTGAGTATGTCTACGTCCTCTGGCCCCATGGGAGGCCGCTGGCGGCGGGTATCCAGGCGGCAGTTCGTGAGGCTGAGGGCCTGACTGTGGTTCTTCCCCGTTCGGAAGCGGATGGCTTGGGCCTGCCTTACGACTTCGTGGCCGCCTGGATCACGTTGCAGATCCACGCTGAGCTGGAGGCCGTGGGCCTGACGGCGGCGGTGAGCAGGGCCCTGACGGATGCCAAGATCAACTGCAATGTGCTGGCGGGGTTCCACCATGACCATCTGCTGGTGCCTGCCGGGGAGGCTGCCCGTGCACTGGAGGTCTTGGCTGAGCTGTCGGCGGAAAACAGCCACCAGCCCAGACCCGAACTGGTGCTGCGCAATGAAACGGCCGACGACCGGGAAAAGATCCTGGCCCTGACGGCGGAGGCTTTTGCCATATCACCGGCAACAGGCCTGCCGGCCAAGGGAGAGCCGGTTGAAGTGGAGGTGCTCCGCCAGCTGTTCGTGTGCGAGGAGTACCTGCCGGAGTTCAGCATTGTGGCTCTCCTTGACGGCGAGGTGGTGGGCCACGTTATCAGTACCCGCGGCTGGGTGGGCGAGCATGAATTGCTGGGACTTGGGCCGATCGGCGTGACGCCGAGGCTCCAACGCCACGGCGTCGGAAGCGCGCTGATGAATGAAACCATTGCGCGCGCCAACGCCGCGGGGGAGAGCGGCATCGCACTGCTGGGGAGTACCGAGTACTACCCCCGCTTCGGCTTTGTGCCTGCCACGTCCCTTGGCGTGCTGCCTCCCGAAGAGGTTTGGGCCGACAGCTTCCAGCTCCTGCCGCTGGCGTTGTGGCCTGGAGGAGTTCACGGCACCTTCCGGTATGCCGCCCCTTTTGCGGGGTTGTGAMTGEKNLQALLAAIHPVLREGEYVYVLWPHGRPLAAGIQAAVREAEGLTVVLPRSEADGLGLPYDFVAAWITLQIHAELEAVGLTAAVSRALTDAKINCNVLAGFHHDHLLVPAGEAARALEVLAELSAENSHQPRPELVLRNETADDREKILALTAEAFAISPATGLPAKGEPVEVEVLRQLFVCEEYLPEFSIVALLDGEVVGHVISTRGWVGEHELLGLGPIGVTPRLQRHGVGSALMNETIARANAAGESGIALLGSTEYYPRFGFVPATSLGVLPPEEVWADSFQLLPLALWPGGVHGTFRYAAPFAGLNANANANANA
D1-29_013381353hypothetical proteinATGATTTCACTCCCCCCTGCGTCGTCCCGTATCGCCAAGCTCACAGCGCTTAGCGTCGGCGTCGCTTTTCTGGCTACCGCTTGTGGTGGCACCACCACCCCAAGCGCGACGGAGACTACTACCGCGCCTTCAGGAGAAATCTCCTGCCCGGCAGGTGCCGGCGCCGGTGCCAGCACCTCAGCTGCGGCAGCTCCCACAGGAGCCGTTCCGCCGTCCAGCACCACCACGGACACGCCGTTGAAGCTCGGATCGCTGCTGCCCACAACTGGCAACCTGGCGTACCTGGGCCCACCCGAAATTGCTGGCGTTAACCTTGGCGTCAAAGAGGTCAACGATGCTGGCGGTGTTCTGGGCAAGCCGGTGGAAGTCACCCACCGCGACTCGGGCGACACGAAGACCGACATCGCCACGCAGTCCACCAGCGCCCTGCTGGGCCAGGGAGTCAGCGCGGTTATTGGCGCAGCTTCCTCTTCCGTTTCCAAGACCGTGATCAACCAGATTACCGGTGCAGGCGTCCTCCACTTCTCCCCGGCCAACACGTCGCCGGACTTCACCACTTGGGATGACAAGGGCCTCTACTGGCGTACTGCCCCCTCCGACGTGCTTCAGGGCAAGGTCTTGGGCAACTACATCGTTGCCTGTGGCGCCCAGACACTCGGCATGATGGTCCTGAATGACGCTTACGGAACAGGCCTGCAGAAGAACGTCAAGGAAGCTTTCGAAGCTGCCGGCGGGAAGGTCGTTGCCGAGCAGCTCTACAACACCGGTGACTCACAGTTCAGCAGCCAGGTTGACGCGATCGTAGCTGCCAAGCCTGATGCCATCGCCCTGATTACCTTTGACGAGGCAAAGAGCATCATTCCGCTCTTCACCGGCAAGGGCATCAAGCCCACCCAGATGTTCATGGTTGACGGCAACCTCTTTGACTACAGCAAGGATCTTTCGCCGGGAACACTGAAGGGAGCGCAGGGCACGAACCCAGGAACGTTCGCCAAGGAAGACTTCAAGCAAAAGCTCCTGGCGCTGGATCCCGCATTGGTGACCTATAACTACGCGGGTGAGTCCTACGACGCCGTGAACCTGATTGCACTCGCCTCGGAAGCAGCAAAGAGCACCAAGGGAACGGACATCGCGGCCAAGCTGAAGGAAGTTTCAGAGGGTGGCGAGAAATGCAACAACTTCGCTTCGTGCGTGACGTTGCTCCGGGACGGCAAGGATATCGACTACGACGGTCAGTCGGGTCCGATCACCTTCTCGGATGCCGGTGACCCCACGGAAGCGTATATCGGTATCTACGAATACGACGATTCGAACAAGCCGCAGCCTGTCAAGGAAGAATTCGGCAAGCTGTAAMISLPPASSRIAKLTALSVGVAFLATACGGTTTPSATETTTAPSGEISCPAGAGAGASTSAAAAPTGAVPPSSTTTDTPLKLGSLLPTTGNLAYLGPPEIAGVNLGVKEVNDAGGVLGKPVEVTHRDSGDTKTDIATQSTSALLGQGVSAVIGAASSSVSKTVINQITGAGVLHFSPANTSPDFTTWDDKGLYWRTAPSDVLQGKVLGNYIVACGAQTLGMMVLNDAYGTGLQKNVKEAFEAAGGKVVAEQLYNTGDSQFSSQVDAIVAAKPDAIALITFDEAKSIIPLFTGKGIKPTQMFMVDGNLFDYSKDLSPGTLKGAQGTNPGTFAKEDFKQKLLALDPALVTYNYAGESYDAVNLIALASEAAKSTKGTDIAAKLKEVSEGGEKCNNFASCVTLLRDGKDIDYDGQSGPITFSDAGDPTEAYIGIYEYDDSNKPQPVKEEFGKLPGPT0020765_615DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-29_01339786livF_1COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGTGCCACCAGCGCAGCCCCCGTAGCCCAGCAAGGATCAGAGGATGGCGTTGTCGTCAAGGTCACCGATCTGGTGGCGGGCTACCTGCCGGGTGTGAATATCCTCAATGGCTGCAGCATCGAAGCCAGGAAAGGCGAGCTGATCGGTATCATCGGCCCCAACGGCGCCGGTAAGTCCACCTTGCTGAAAGCCATGTTCGGCCTGGTAAAAGTACATTCCGGCTCAGTTGTTGTGCGCGGAAAGGACATCACCGGGCTCAAAGCCAACAAGCTGGTGACCCAGGGTGTTGGCTTTGTGCCCCAAAACAACAACGTGTTTGCCACCCTCACCATCGAAGAAAACATGCAGATGGGGATGTTCCAGCGGCCCAAGGACTTTGCCGAGAGGTTTGACTTTGTCACCAGCTTGTTCCCGGAGCTTGGGAAGCGGCGGGCCCAGCGTGCGGGCTCACTGTCCGGCGGTGAACGCCAGATGGTGGCCATGGGGCGGGCTCTGATGATGGAGCCTGCTGTCCTGTTGCTCGATGAGCCATCCGCAGGCCTGTCACCCGTCAAACAGGACGAAACCTTCCTGCGCGTGCATGAGATCAACCGGGCCGGCGTCTCGGTCATCATGGTGGAACAGAACGCGCGCCGCTGCCTTCAGATCTGTGACCGTGGCTACGTCCTGGACCAAGGCAAGGATGCGTACACCGGCACCGGTCGGGAACTCATGAAGGATCCTAAGGTCATCCAACTCTACCTCGGGACTTTGGCCGACACTGTGGAGGAGGGCCCGGGATAGMSATSAAPVAQQGSEDGVVVKVTDLVAGYLPGVNILNGCSIEARKGELIGIIGPNGAGKSTLLKAMFGLVKVHSGSVVVRGKDITGLKANKLVTQGVGFVPQNNNVFATLTIEENMQMGMFQRPKDFAERFDFVTSLFPELGKRRAQRAGSLSGGERQMVAMGRALMMEPAVLLLDEPSAGLSPVKQDETFLRVHEINRAGVSVIMVEQNARRCLQICDRGYVLDQGKDAYTGTGRELMKDPKVIQLYLGTLADTVEEGPGPGPT0020785_1445DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-29_013401122btuD_4Vitamin B12 import ATP-binding protein BtuDATGAACCAAAGCGCGCATTCAATAGACAACACAGGCAAACAAAGCAGCGTCGACTACATGACGGACACCAGTCCGATAGCCGTTGGCGAGGCCGCTCCCGGATGCCAGAAGACGGACCCCATCGTGGTGGCCGAAAACATCACCCGGAGCTTCGGTGGCATCAACGCGGTTGACGTCGAATACCTCGAAATCCCGCGCCATAAGATCACCGCCCTCATCGGCCCGAATGGAGCCGGAAAGACCACACTCTTCAACCTCCTGACCGGCTTCGATACGCCCAACTCGGGAAAATGGAAATTTGAGGGAAATAACATCCAGGGTGTGCCCTCGTACAAGCTTGCCCGGATGGGAATGGTGCGCACTTTCCAACTCACCAAGGTCATGGGCAAGCTCACCGTTATGGAGAATATGCGCCTTGGCGGCTCCGACCAGCCCGGTGAACGCCTCTCCAAGGCCCTTTTCAAAGGGATGTGGGGCAGCCGCGAGAAGGACATCACGGCCCAGGCCGAGGTCCTGCTGGAGAAATTCAAGCTCGACGCCAAAAGGGACGATTACGCGGCTTCCCTGTCTGGCGGCCAGCGCAAGCTCCTGGAAATGGCACGGGCCCTGATGGTCCGGCCGAAGCTCGTGATGCTGGATGAGCCAATGGCCGGTGTCAACCCGGCCCTGACCCAGTCCCTGCTGGACCACATTAAGAACCTCAAGGCAGAAGGCATGACCGTCCTGTTCGTGGAGCACGACATGAACATGGTCAGGCATATTGCCGACTGGGTTGTTGTGATGGCCGAAGGAAAAATCGTGGCAGAGGGTCCCCCGGGTGAGGTGATGAAGAACCCCGCCGTCATTGACGCCTACCTGGGCGCTCACCACGATGTCGACCTTGGCGACACCGAAGGGATCAAGGAACTGGAAGCAGTCCTGGAAGCGGACGAGGAATCGATCGTGGGTACGGAGAACGCGGGCATCATTGCTGTTGACGCAGTGGCGCCGAGCCTCCGGGGCGCGGACTTGGAGCAGCCCGACCTCAGCCCGGAAACCCTCCAGGTGCCGGATGCCGATGAACCCAACTCCCCTGAGTCCGGTTTGGCGGAGCCTGGCTACAAAGACAAGGACAAAGAATGAMNQSAHSIDNTGKQSSVDYMTDTSPIAVGEAAPGCQKTDPIVVAENITRSFGGINAVDVEYLEIPRHKITALIGPNGAGKTTLFNLLTGFDTPNSGKWKFEGNNIQGVPSYKLARMGMVRTFQLTKVMGKLTVMENMRLGGSDQPGERLSKALFKGMWGSREKDITAQAEVLLEKFKLDAKRDDYAASLSGGQRKLLEMARALMVRPKLVMLDEPMAGVNPALTQSLLDHIKNLKAEGMTVLFVEHDMNMVRHIADWVVVMAEGKIVAEGPPGEVMKNPAVIDAYLGAHHDVDLGDTEGIKELEAVLEADEESIVGTENAGIIAVDAVAPSLRGADLEQPDLSPETLQVPDADEPNSPESGLAEPGYKDKDKEPGPT0020780_1223DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-29_01341969hypothetical proteinTTGGACTTCGGATTCATTCTTTCCAGCGCCCTCAGTGAGCTTTTCACTCCGACGACGGCGGCATACGCTTTGGCCGCTTTGGGTCTCGCCGTTCACTTCGGCTACTCCGGCCTGCTGAACTTCGGTCAGGCCGGGTTCATGGCAGTGGGTGCGTATGGCTTTGCCATCTCCACGCTGACCTTCGGCGTGCCGTTCTTTGTGGGACTGCTAATTGCCGTGCTCTGTTCCTGCCTGTTTGCCCTGCTGCTGGGTATCCCCACCCTTCGCCTCAGGGCCGACTACCTGGCCATCGTCACCATCGCCGCCGCCGAAATTGTGCGGTACGTCGTCACCACCAACCAGCTGGATGCAGTCACGGGGTCAGCGGATGGCCTGGGCGCCTTCGAAGGCGGATTCTATGACATGAACCCTTTCCCTGAGGGCTCATATCTGGGCATGAATAACCGGGACTTCTTCATTCGGATCGTGGCATGGGCCTTGGTGATCCTTTGTTGCGTTGTCATCTGGCTGCTGATGCGCAGCCCCTGGGGGCGGGTGCTTAAGGGCATCCGTGAAGACGAGAATGCTGTCCGCGCCCTGGGGAAGAACGTCTACGCCTACAAAATGCAGGCACTGGTGATCGGCGGTGTGCTCGGTGCCCTGGCCGGCATGGTGTTCACACTTCCCCGCGGCGCCGTGCAGCCGGCCAACTATGGCACCGAACTGACCTTTTTCCTCTGGACGTGCCTCCTCCTCGGTGGCATGGCCACTGTGCTGGGACCCGTAGCCGGTGCGATGATTTTCTGGGTGGTGCTTTCGCTTACGCAGGGCATCCTCTACGGCCTGATCGAGTCCGGCGCAGTGACCTGGCTGACGACAGTCCAGGCAGGCCAGCTGCGCTACATACTGGTAGGGGTGGCGCTGATGCTGCTGATGATCTTCAGGCCGCAAGGCGTCTTCGGCAATAAGAAGGAGCTGGCGTTCGCATGAMDFGFILSSALSELFTPTTAAYALAALGLAVHFGYSGLLNFGQAGFMAVGAYGFAISTLTFGVPFFVGLLIAVLCSCLFALLLGIPTLRLRADYLAIVTIAAAEIVRYVVTTNQLDAVTGSADGLGAFEGGFYDMNPFPEGSYLGMNNRDFFIRIVAWALVILCCVVIWLLMRSPWGRVLKGIREDENAVRALGKNVYAYKMQALVIGGVLGALAGMVFTLPRGAVQPANYGTELTFFLWTCLLLGGMATVLGPVAGAMIFWVVLSLTQGILYGLIESGAVTWLTTVQAGQLRYILVGVALMLLMIFRPQGVFGNKKELAFAPGPT0020775_8203DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-29_013421341hypothetical proteinTTGAGAAGTACATCCAAAGGCCGGCCGCCGAAGCGGCGCGGCGGAATGCTGAAGATGCTGGGGGCTGTCTCAGCCTCAGTGTTGGCAATCCTGCTCGTCGTTGCTCCGGCATCGCTGGCCACTTCCCCGTCACCGACACCATCCCCGTCACCTACGGTGTTCCAAAACAGCATCAGCGGCTTCCTCCGGGATGACGAGCGCAAACCCATCGCAGATGTCACGATTACCGCCAAAAGCGGCGATTTCACTGGAACAGCAAAGTCCGCCGCCAACGGCGCCTGGACTATTGGCGTACCTACTCAGGGAACCTACGAAGTGGAGCTGGACGAGTCCACGCTTCCGGAGGGCATCAAGCTGGCTGAAGGCCAGGAAAATCCCCGCAACGTAACGTTCAGCCAGACCTCCAATCTTTCGGTCATCTTCGCCTTTGGTGAAGGAATCGTGGTCCAGGAGCAAAACTTCGCCCAGAACCTGCTCAACCGTTTGGTTGCCGGCCTGAGCTTCGGGCTCCTGTTGGCCCTGGCCTCGGTAGGACTCTCACTGATTTTTGGCACTACTGGCCTCACTAACTTTGCCCACGGTGAAATGGTGACCCTGGGCGCCGTCGTGATGTTTGGCCTCAGCGCCATGAACCTGCCCTTCTGGCTCGCGGGAATCCTGGCACTGCTGCTCGGCGGGCTGTTCGGCTACGTTCAGGACGCCGGCCTCTGGAGGCCGCTCCGCAGCCGCGGAACAGGCCTTGTCCCCATGATGATCGTGAGCATCGGCCTTGCCTTGGCCGTCCGTTATGTCATCCAGTTCAACTTTGGCGGCGCCACCCAACAGCTGCCCTTTGCCCAGTCCCCCGAGATCCAGCTGGGCGCGGTGTCCATCTCGCCCAATAACCTGTGGTCCCTCATCATCAGCGCCGTTGTCATAATCCTGATAGGCATCGTCCTGCTCAAAACGCGTTTGGGAAAGGCCACCCGTGCGGTGGCGGACAACCCGGCATTGGCGGCCGCTTCAGGCATTGACGTCGATTCCGTCATCCGCATCGTCTGGGTCGCCGGTGGAATGCTGGCTGCGCTGGGCGGTATCCTCTGGGCCTACTACCGTCCCGGCGTCACTTTCGACATGGGCTCGCAGATCCTGCTTCTCATTTTCGCCGGAGTCACCCTGGGCGGTCTGGGAACCGTCTTCGGTGCCTTGGTGGGATCCATCATCGTCGGAATCTTCGTCGAACTAACCACGGTCTTCGGACTGGCTGCCGACCTGAAATACGTGGGCGCCCTCTTCATCATGATCATCGTCCTCTTGTTCCGTCCGCAGGGTATCCTCGGCCGGCGCGAGCGTGTGGGTTAGMRSTSKGRPPKRRGGMLKMLGAVSASVLAILLVVAPASLATSPSPTPSPSPTVFQNSISGFLRDDERKPIADVTITAKSGDFTGTAKSAANGAWTIGVPTQGTYEVELDESTLPEGIKLAEGQENPRNVTFSQTSNLSVIFAFGEGIVVQEQNFAQNLLNRLVAGLSFGLLLALASVGLSLIFGTTGLTNFAHGEMVTLGAVVMFGLSAMNLPFWLAGILALLLGGLFGYVQDAGLWRPLRSRGTGLVPMMIVSIGLALAVRYVIQFNFGGATQQLPFAQSPEIQLGAVSISPNNLWSLIISAVVIILIGIVLLKTRLGKATRAVADNPALAAASGIDVDSVIRIVWVAGGMLAALGGILWAYYRPGVTFDMGSQILLLIFAGVTLGGLGTVFGALVGSIIVGIFVELTTVFGLAADLKYVGALFIMIIVLLFRPQGILGRRERVGPGPT0020770_404DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-29_01343945hypothetical proteinATGGCACTTGGCGGAAACCCGATCTTCAACGGAAAGAATTTCCGTGGAGCCACCCAGGCACCGCCTGTCCCGCAGGCGCCTTTCGGCCAGGCTCCTTACGGCCAGCACCCTTATGGCCAGCAGCCCTATGGCCAGTACGGCCAGCAGGCTCCCGGCATGACCGCCGGTCCGCAGGGTGGCTGGGGGTCCCAGCCACAGAACATGACCAATGAGCAGCTGCAGCAGATGTACAACCAGCCGGCCGCCGGTCCGGCTGACATCGGCCGGATGACCTATGACGACGTCATCGTCAAGACGGCAGCGTGCCTGGCCGTTGTGGTGGCCGGTGCCGCCGTCACGCTTTTCGTTGGCTTGAGCCTGGCCTACATGCTGATGATTGTTGGCGCCCTGGGCGGCTTTGTACTTGCCCTGGTCAACACCTTCAAAAAGCAGCCGTCTCCCGCGCTGATCCTGGCGTACGCAGGCCTGGAGGGTCTGTTCCTTGGTGGCCTGACCCGCATCCTGGACGGCATGTTCCCGGGCGTCGGCCTGCAGGCCGTCATTGGCACGCTGTCCGTCTTTGCCGTCACCCTGGTGCTGTTCAAGAGCGGCAAGGTCCGGGCAACACCCAAGGCCATGCGCTTCTTCATGATCGCGCTCATCGGCTACGCCGTGTTCGCGCTGATCAATATGGCGCTGGTGTGGACGGGCACAGTTCAGGAGCCATTCGGCCTGCGGACCAGCTTCGAAATCTTTGGCATCCCGCTGGGAGTCTTCATTGGTGTGCTGGCGATCGGCCTGGCCGCTTTCGCCCTCATCATGGACTTCACCAGCATTGAGGCCGGAGTACGCAGCGGCGCCCCGCAGCGCTTCTCGTGGACTGCGGCATTTGGCCTGACGGTAACCCTGGTCTGGCTCTACGTAGAGATCATCCGCCTGCTGGCCATCCTGCGCGGCGACGAATAAMALGGNPIFNGKNFRGATQAPPVPQAPFGQAPYGQHPYGQQPYGQYGQQAPGMTAGPQGGWGSQPQNMTNEQLQQMYNQPAAGPADIGRMTYDDVIVKTAACLAVVVAGAAVTLFVGLSLAYMLMIVGALGGFVLALVNTFKKQPSPALILAYAGLEGLFLGGLTRILDGMFPGVGLQAVIGTLSVFAVTLVLFKSGKVRATPKAMRFFMIALIGYAVFALINMALVWTGTVQEPFGLRTSFEIFGIPLGVFIGVLAIGLAAFALIMDFTSIEAGVRSGAPQRFSWTAAFGLTVTLVWLYVEIIRLLAILRGDENANANANANA
D1-29_013441191galKCOG0153GalactokinaseGTGAGCACCGCCCCAGACCCGCTGACCACCCCAGCGGCTCCGCCCAGCACGGCCGAACTCACCCGCCGGTTTGAACGTGAATTCGGCAGGCTTCCCGACGGCGTCTGGCAGGCACCGGGGCGGGTGAACCTGATCGGCGAGCACACCGACTACAACGAGGGCTTTGTGCTCCCGTTCGCCATCGACAAGACGGCCCGTGTTGCCGTTGGTATCCGTGCCGATTCCACTGTTCGGCTGCTCTCCACCTACGGTGACCAGGGCATGTTCACCACTGACGTGCAAGCCCTGGACTCCTCGGCGGCCAAGGGCTGGACCAAGTATCCGCTCGGGGTGATGTGGGCGCTGCAACAGCGTGGAATAGCGGTACCCGGCTTGGACCTGCTCCTTGATTCGAATGTTCCGCTGGGCGCCGGATTGTCCTCTTCGCATGCGATCGAGTGCGCCGTCGTGTCCGCCCTGAATGAACTGACAGGATCCGGCCTGGCCGCGGAAGAGATGGTTCTGGCCACCCAGCAGGCGGAAAACGACTTTGTGGGCGCCCCCACCGGCATCATGGACCAGTCAGCCTCGCTGCGCGGATCAAAGGACCACGCAGTTTTCCTCGACTGCCGGGACCAGAGCGTGCGCCTGGTGCCGTTTGAGACGGAGCCCGCAGGACTTGTGATGCTGGTGATCGACACGAAGGTGTCCCATTCCCACGCCGACGGCGGCTACGCATCCCGCCGTGCTTCCTGTGAACTTGGCGCGGAGGTCCTCGGCGTCAAGGCCCTCCGCGATGTACAGGTGGCCGACCTCGAAGAAGCCAGCGGCCTCCTGGACGAGCTGACCTTCCGCCGCGTCCGCCACGTGGTCACCGAAAACGACCGGGTACTCCAGACTGTGGACCTGCTGGCCAGTGAAGGCCCAGCCTCCATCGGTGCGCTGCTGGATGCCAGCCACGTATCCATGCGGGACGACTTCGAGATCTCCTGCCCGGAACTGGACCTCGCCGTTGACACCTCCCGTACGCATGGCGCCATCGGCGCCCGGATGACCGGCGGCGGCTTCGGCGGGGCGGCCATCGCCCTCACGCCGGTGGGCTCTGAGCAGCAGGTGCGCAACGCCGTCGAACGGGCTTTCTCCGATGCCGGTTTCACAGCCCCGGATATCTTCACCGTGACGCCGGCCGCGGGGGCCATGCGCATTTCTTAGMSTAPDPLTTPAAPPSTAELTRRFEREFGRLPDGVWQAPGRVNLIGEHTDYNEGFVLPFAIDKTARVAVGIRADSTVRLLSTYGDQGMFTTDVQALDSSAAKGWTKYPLGVMWALQQRGIAVPGLDLLLDSNVPLGAGLSSSHAIECAVVSALNELTGSGLAAEEMVLATQQAENDFVGAPTGIMDQSASLRGSKDHAVFLDCRDQSVRLVPFETEPAGLVMLVIDTKVSHSHADGGYASRRASCELGAEVLGVKALRDVQVADLEEASGLLDELTFRRVRHVVTENDRVLQTVDLLASEGPASIGALLDASHVSMRDDFEISCPELDLAVDTSRTHGAIGARMTGGGFGGAAIALTPVGSEQQVRNAVERAFSDAGFTAPDIFTVTPAAGAMRISPGPT0017840_1667DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017840-galM-K00849NANA
D1-29_013451206hypothetical proteinATGACAGGTATTACCAGCACCACGCTTGCCGACGGCCGGGAGCTGATCTATTTCGACGACGCGGCTACCCCCCAATACCGCACGGCTGAAACCACCACCGATCACCGTGACCTGCCCGCACGCGGCGAGCCCGGCGAGGTCCGATTTGATGCGCTGACAGGAGAATGGGTTGCGGTGGCTGCCCACCGGCAGACGCGGACCCACCTGCCTCCGGCAGACCAGTGCCCCATCTGCCCCACCACTCAGAACAACCCCTCGGAGATTCCTGCGCCGGACTACGACGTTGTGGTGTTTGAGAACAGATTCCCATCCCTCGGGCCCGCGCTGGGCCCGGTGCCGGCCGACCCGGCATGGGGAACCACAGGGCCCGCCTATGGGCGGTGTGAGGTTGTGTCCTTCACCCCCGAGCACACAGGATCCTTCAGCGGCCTGACGGAGGCCCGGGCCCGGACGGTAGTGGAGGCCTGGGCCCACCGCACGGAAGCCTTGAGCGCACTGTCCGGCATTAAGCAGGTTTTTCCGTTCGAGAACCGTGGAGCTGACATTGGGGTGACCCTCCACCACCCCCATGGACAGATCTACGCGTACCCCTACGTCACCCCGCGCGCGGGGGTCCTGGGCGCGGCCGCACGTAAATTCTATGATCAGGCGGATGGGCAAAAGACGCTCACCGGCTCTCTGTTGGGCGCCGAACGGGAGGACGGAAGACGGATGGTGATGGAAAGCGAGAACTTCAGCGCCTACGTGCCGTTCGCCGCGCGCTGGCCACTGGAAATCCACCTCGTCCCCCACCGCCAGGTCCCGGACCTCGCCGCCCTCAGCGGCGAGGAAAAGGACGAACTGGCCCACGTCTACCTGGACTTGCTCAAGCGACTCGACGCTCTCTATCCCACACCCACGCCATACATTTCGGCGTGGCACCAGGCCCCTCTTGACGATGTCCTGCGGCCGGCAAGCTATCTGCACCTGCAACTGACCTCGCCGCGCCGGGCTGCGGACAAACTCAAGTTCCTTGCCGGCTCCGAGGCGGCCATGGGCGCCTTCATCAACGACACCACCCCGGAAAGTGTGGCGGAGCGGCTCCGCGCCGTTAAGGTGCCCGCTTCCACACCCTTCCCTGCCGAAGCCACCCCTAGCAACCCCTCCCCTACAATCCCCTCCCCTGCCCCCAGCCTGGCAGCCGCAACCAAAGGAGCCTCCGCGTGAMTGITSTTLADGRELIYFDDAATPQYRTAETTTDHRDLPARGEPGEVRFDALTGEWVAVAAHRQTRTHLPPADQCPICPTTQNNPSEIPAPDYDVVVFENRFPSLGPALGPVPADPAWGTTGPAYGRCEVVSFTPEHTGSFSGLTEARARTVVEAWAHRTEALSALSGIKQVFPFENRGADIGVTLHHPHGQIYAYPYVTPRAGVLGAAARKFYDQADGQKTLTGSLLGAEREDGRRMVMESENFSAYVPFAARWPLEIHLVPHRQVPDLAALSGEEKDELAHVYLDLLKRLDALYPTPTPYISAWHQAPLDDVLRPASYLHLQLTSPRRAADKLKFLAGSEAAMGAFINDTTPESVAERLRAVKVPASTPFPAEATPSNPSPTIPSPAPSLAAATKGASAPGPT0017835_857DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017835-galT-K00965NANA
D1-29_01346885srlR_2COG1349Glucitol operon repressorATGCTGGCAGCACAACGGCAGCACCTCATTCTCCAGGAGCTTGAGGCGGCCGGCACCGTTCGGGTGGGCGCCCTGGCGGAACTCCTGGACGTTTCCGAAATGACCGTCCGCCGGGACATTGATGCCCTGGATGCCGGCGGACTCCTGCTTCGGGTCCATGGAGGTGCCGCACGCACGGATAGTTTCAGTGCCCTGGAACCAGCCTTTGCCAGCAAGTCGACCCGGGAACTGGCCGCCAAGGCAGCCATTGCAGCGGAGGCAGTTCGCCTCATCGAACCCGGTATGACGTTGTTGATTTCTGGCGGCACCACTACTTTCGAACTGGCCAGGATCCTGCCGGGGAACATGGGACTGACTGTCGCCACCAATTCCCTGATGGTGGCCAGCTCGCTGGCTTCAGGCGCGGAAGAGGACGGAAGCGATATCCGGACCCTGATCCTGGGCGGTGAACGCACCCCCTCGGAAGCCCTGGTTGGCCCCCTGGCTGCCCAGGCTGTCCGGACGCTGGAAGCAGACCTGTGTTTTATGGGAGTACACGGCATGGACCCCCAGGCCGGCATTACGTCCCCCAATCTGCTCGAGGCAGAGCTCAACGCAGCCATGATCTCAGCTTCGAGGAAGCTCATCGTGTTGGCCGATGCCACCAAATATGGGCTGGTTGGCCTTGCCGGCGTTTCCCCTTTGTCCGCCATCCACACCCTCATTACCGACGTCCGCATCAGTGAGGCGGCCGGGGACGCCCTCGCCGCCCTCCACCAAGCAGTGGCGGACATCCGGATCGCTGGGCTCGAGCCAGGCCCGGACAGGCAAGGAGACGACGCACTCATTCCACCCCTTGGGGCCGAACACCTTTCCCCAACCGCATCCAAAGGACAAAAGCCATGAMLAAQRQHLILQELEAAGTVRVGALAELLDVSEMTVRRDIDALDAGGLLLRVHGGAARTDSFSALEPAFASKSTRELAAKAAIAAEAVRLIEPGMTLLISGGTTTFELARILPGNMGLTVATNSLMVASSLASGAEEDGSDIRTLILGGERTPSEALVGPLAAQAVRTLEADLCFMGVHGMDPQAGITSPNLLEAELNAAMISASRKLIVLADATKYGLVGLAGVSPLSAIHTLITDVRISEAAGDALAALHQAVADIRIAGLEPGPDRQGDDALIPPLGAEHLSPTASKGQKPPGPT0017590_192DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017590-fruR2-K03436NANA
D1-29_01347960yihR_1COG2017putative protein YihRATGATTCCCAGTTCAATCGAGGACGCCGGTTCTTCTGACGGATACCGGTCCTATGCCACGGGGCGGCAGTACGAGCTCCGGCGGGGAAGCGCCGTTGCCACTGTCACCGAGCTCGCCGCCGGCCTGCGCCTCTATAGCCGCGCAGGGGTGCTGCTCACCGAGACGTACGGAAATGCCGATATCCCGCCAGGGGCTGCGGGTATCACCCTTGCCCCGTGGGCTAACAGGGTGGAGGGCGGGGTTTGGTATCTCGACGGGGAAAAACAGCAGCTGGACATTACCGAGGTAAAGCGGAACAACGCCAGCCACGGGCTGCTGCGCAACGCCTCCTATGCGCTGGTTGATGAGTCGCAGTTCTCGGTGACGCTGGAGGCGACGATTTTCCCCCAGCATGGATATCCCTTCCTGCTGCGCCACCAGGTTCAGTACGCTCTTGCGGAGGACCTGGGCCTGGTGGTCAGGCAAACGCTCATCAACAGCTCCAAAGCGCCCGCTCCCTTTGTCCTTGGGGCGCATCCCTATCTGCGACTGGGAGACACCGACCCCGGTAACCTGCTGTTGACGGTTGGGGCCAGTACCCAGCTGGTAGCGGACGAGCGGCTGATCCCGCGCTCCTCGGAGCCAGTCAGCGGAGACACGGACCTGCGCCAGGGCCGTTCCGTGGGGGCGTTGGATATCGACGTCGCCCTGACGGACCTGGCGTTCGACGGCGGCGTGTCCCGCCACACGCTCAGCTCGCCGGACGGACGCAGCGTCTCGCTGTGGCAGGACGAAGCGTGCACATATGTCCATGTTTTTGTCACGGACCAATATCCGGGCCGGACGCGAGCGGTGGCCATTGAGCCCATGACCGGACCGGCCAACGCCTTCAACTCCGGTGACGGACTCAGGTGGCTGCCGCCGGGGGACAGCTTCACCATCTCCTGGGGCATCGATGCCACGCTGGGCGATGCGGGGTAGMIPSSIEDAGSSDGYRSYATGRQYELRRGSAVATVTELAAGLRLYSRAGVLLTETYGNADIPPGAAGITLAPWANRVEGGVWYLDGEKQQLDITEVKRNNASHGLLRNASYALVDESQFSVTLEATIFPQHGYPFLLRHQVQYALAEDLGLVVRQTLINSSKAPAPFVLGAHPYLRLGDTDPGNLLLTVGASTQLVADERLIPRSSEPVSGDTDLRQGRSVGALDIDVALTDLAFDGGVSRHTLSSPDGRSVSLWQDEACTYVHVFVTDQYPGRTRAVAIEPMTGPANAFNSGDGLRWLPPGDSFTISWGIDATLGDAGPGPT0017825_4348DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-29_013481359hypothetical proteinATGACGCCAGCCGAGGACGCCACTCCAACCAGCACGTCCGCCGTCGCTCCGCAGGGCAGGAGTGCGCTCAGGACAGAACAGGCCCCGCCAGTGCGGGTCCTGGCAGACCGGGAACTTGACCGGGACATCCCCTACGGGGTCCGTATTGCGGCAGCCTGGGCGTGGAGGCTTGGACTGATTCTTTTGGTGGGCGGAGCCCTGATCTGGCTGCTCAGCCGGATCAGTTTCCTGATCATCCCGGTCATGGTGGCTGCGCTGCTGGCGGGGCTGCTGAGCCCGGTGGTGGGGTGGCTGCGGAGGCGCCAACTGCCCAACGGCGCTGCCGTGGCAGTCACGGTCCTGGCGTTCCTTGGCCTTATCGTTGGATCCCTTGGCCTGGTGGGCAGGCAGCTCATCTCGGGATTCGGCGAGCTCTGGTCCGAAGCGCTGGCGGGCGTCAGGCAAATACAGGACTGGCTGGCCGAGGGCCCGCTGCACCTGACGGCGGACCAGATCGACCAATACCTCAGGGAAGCCACTGACGCACTCCAGGACAACAGCAGGAGCATCATCAGCGGCGCGTTGTCCTTTGGAAGCACCGCCGGGCATTTCGCCGCGGGCCTTGTTCTGGCGCTTTTCATCCTGATCTTCTTCCTGCTCGAAGGTGACAGGATCTGGGCCTTCCTGGTCCGGCTGCTCCCGAAGAAAGCGCGAGCCGCGACGTTCGGTGCCGGGCGCCGCGGATGGACTTCCATGGTCAACTACGCGCGGATCCAGATGTTCGTTGCCTTCGTGGACGCTGTGGGCATCGGCGTGGGCGCTGCCATCATCGGGGTGCCCCTTGCGCTGCCCCTGAGTGTGCTGGTGTTTATCGGATCATTCATCCCCGTAGTGGGTGCCCTGGTAACGGGTGCCATCGCCGTGCTGCTGGCCTTGGTGGCCAACGGGCCGGTCAACGCCCTCATCATGCTTGCGATCGTCCTGCTGGTACAGCAACTGGAGAGCCACATCCTTCAGCCCCTGGTGATGGGGAAGGCCGTGGCCCTGCATCCGGTGGCTGTCATCCTGTCCGTGGCAGCAGGGTCCTACCTGGCCGGAATCCCTGGTGCCCTTTTCTCGGTGCCCATTCTTGCTGTCGCAAACTCGGCGATTCGCTACATAGCCGGCAGAACGTGGGAACATGAACAAGTGCTGGCAACACCCGGAGGGGTGATGACAGTTGGCGCGGGGCATGACGACACCTTCAAGGACATCACCCTGCCACGCGTCAGGTCCAGGCGCGGCAAGGACGCCGCTGCCAGCACAGAAACACCCAATCCGCCTGCCCCGGCCGTACCAACAGGCCCTGGCACCGGAGCCGAAGCAGCCAAAGGAGAATAGMTPAEDATPTSTSAVAPQGRSALRTEQAPPVRVLADRELDRDIPYGVRIAAAWAWRLGLILLVGGALIWLLSRISFLIIPVMVAALLAGLLSPVVGWLRRRQLPNGAAVAVTVLAFLGLIVGSLGLVGRQLISGFGELWSEALAGVRQIQDWLAEGPLHLTADQIDQYLREATDALQDNSRSIISGALSFGSTAGHFAAGLVLALFILIFFLLEGDRIWAFLVRLLPKKARAATFGAGRRGWTSMVNYARIQMFVAFVDAVGIGVGAAIIGVPLALPLSVLVFIGSFIPVVGALVTGAIAVLLALVANGPVNALIMLAIVLLVQQLESHILQPLVMGKAVALHPVAVILSVAAGSYLAGIPGALFSVPILAVANSAIRYIAGRTWEHEQVLATPGGVMTVGAGHDDTFKDITLPRVRSRRGKDAAASTETPNPPAPAVPTGPGTGAEAAKGENANANANANA
D1-29_013491239tdcB_2COG1171L-threonine ammonia-lyaseGTGAACATCCTTGATACCCTTCCCGTCACGCTGGACGATGTCCTGGAGGCGCAGAAGCTGCTCGAGGGGATTATTACGCGGACACCGGTGGAATCGTCCCGGGCCCTGGGCGGCATGGTGGGCGGAGACGTCTATTTCAAATGCGAAAACCTGCAACGGGCGGGCTCGTTCAAGGTCCGTGGAGCCTACGTGCGCATGGCCCGGCTCTCAGCGGAGGAAAAGAAGCGCGGAGTGGTTGCTGCGTCCGCAGGAAACCATGCCCAGGGCGTGGCCGTTGCTGCCAAAAGCCTTGGCATCAAGGCGCGTATCTACATGCCGATGGGTGTGGCGCTCCCCAAGCTGGCGGCCACCCGCAGCCATGGCGCCGAGGTGATCCTGCACGGGCACAACGTTGATGAGGCGCTCGCCGAGGCACAGCGCTACGCCAACGAGTCCGGAACAGTCTTTGTCCACCCCTTCGACAACGTGGACGTGGTATCAGGCCAAGGCACAGTCGGACTGGAGATCCTGGAACAGATCCCGGACGTGGACACCATTCTGATGGGCGTCGGCGGCGGCGGGCTCCTCGCCGGAGTCGCTGTCGCCGTCAAGGCGCGGGCCAAAGAACTGGGCCGGGAAATCCGTATCATCGGTGTCCAGGCAGAGAATGCCGCCGCGTATCCGCCGTCTCTTGCTGCAGATGCCCTGGTTCCGCTGAAGCGGGTGTCAACCATGGCGGACGGTATCGCCGTCGGACGTCCCGGGCAGTTGCCATTCAGCATCATCCGGGAACTGGTGGACGATGTGGTGACAGTCAGCGAGGATTCCCTCGCGCGGGCGCTGATTTTCCTGCTGGAACGGGCCAAACTGGTGGTTGAACCGGCTGGTGCCGTGGGAGTTGCTGCCCTGTTGGACGGCAAAATCGAAAATCCCGGCACAACGGCTGTCATTCTTTCCGGCGGGAACATTGATCCCATGCTGATGCTCAAAGTCATCCAGCGGGGCCTCTCAGCTGCGGGACGTTACATGACAGTGCGGATGATGCTCGATGACCGGCCGGGCTCGCTGGCCACGATCGCACGCATCATCGCGGAGAACGATGCCAACGTTACTGGCCTGGACCACACCCGGGTGGGGGGCTCCATCAGCATGGGAGACGTTTCCATCACCGTGAACCTCGAAACCAAGGGCCACGAGCACTGCGAACAGGTGCTCAGTGCCCTCCGCGCAGAGGGCTTTCAGCCCATAGTGGTGCACTAGMNILDTLPVTLDDVLEAQKLLEGIITRTPVESSRALGGMVGGDVYFKCENLQRAGSFKVRGAYVRMARLSAEEKKRGVVAASAGNHAQGVAVAAKSLGIKARIYMPMGVALPKLAATRSHGAEVILHGHNVDEALAEAQRYANESGTVFVHPFDNVDVVSGQGTVGLEILEQIPDVDTILMGVGGGGLLAGVAVAVKARAKELGREIRIIGVQAENAAAYPPSLAADALVPLKRVSTMADGIAVGRPGQLPFSIIRELVDDVVTVSEDSLARALIFLLERAKLVVEPAGAVGVAALLDGKIENPGTTAVILSGGNIDPMLMLKVIQRGLSAAGRYMTVRMMLDDRPGSLATIARIIAENDANVTGLDHTRVGGSISMGDVSITVNLETKGHEHCEQVLSALRAEGFQPIVVHPGPT0001960_3637DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-29_01350618hypothetical proteinATGTTCGGCGCTGCTGGAGACGGAGTTCCCAGGAACCGTGAGACCACTGCCTCCCGGGCCAAAGGCGGTCTGCTGGTGGTGGGCAGCTTCGCCCTGATCCTGATGGTGATTGAAGTGATCAACATGCTCACTTTACATGCGCTGAACAGGACCTTCGGGCTTCGGCCGCGGAGCCTGGACGGCCTGCTGGATATTTTCACTTTTCCATTGCTCCATGCCAGCTTGAACCACCTGCTTTCCAATACGCTGCCGCTGATCATTTTCGGCTTCCTGGTGTTCCTGTCCGGACTGCGTGTGTTCCTGACAGCGCTGGCATTCAGCTGGCTGGGGTCCGGCATAACGGTGTGGCTGATCGGTGACGGTGGCATTACGGTGGGATCCTCCGGCCTTGTGTTCGGGCTGTTCGCCTTTCTTCTGGTGCGCGGTTTCTTCAACCGCAGCTGGGGGCAGATCCTGCTTTCGATCGTGCTGTTTATGGCCTACGGCAGCATCCTGCTGGGCGCGCTTCCCATCGTGGCCGGGTACATTTCCTGGCAGGCACACCTGGGTGGCGCGGCCGGCGGCGTTATCGCCGCCATGCTGCTGCGTCCCCGCGGTTCCGGGACGCTTCAGCGATAGMFGAAGDGVPRNRETTASRAKGGLLVVGSFALILMVIEVINMLTLHALNRTFGLRPRSLDGLLDIFTFPLLHASLNHLLSNTLPLIIFGFLVFLSGLRVFLTALAFSWLGSGITVWLIGDGGITVGSSGLVFGLFAFLLVRGFFNRSWGQILLSIVLFMAYGSILLGALPIVAGYISWQAHLGGAAGGVIAAMLLRPRGSGTLQRNANANANANA
D1-29_01351495greACOG0782Transcription elongation factor GreAGTGTCTACCACCAACAGCGCGCCTGCAGCCTGGCTTACCCAGGAAGCTTTTGACCGCCTGAAGGCAGAGCTGGACCACCTTTCCGGCGCAGGCCGGGCGGAGATTGTCCAGAAGATTGAAGCAGCCCGCCAAGAGGGCGACCTCAAGGAAAACGGCGGATACCACGCTGCCAAGGAGGAGCAGGGCAAGATTGAAGCCCGTATCCGCCAGCTGACAGCACTCCTGCGCGATGCCCATGTGGGGGCAGCCCCCGCCGACGACGGGATCGTGGAACCGGGAATGATTGTTGTGGCAAAAATCGCCGGGGACGAAGAGACGTTCCTGCTCGGATCCCGTGAAATCGCCGGTGATTCAGACCTCGACGTGTTCAGCGAAAAATCGCCACTCGGTGCCGCCATTGTGGGCCACAAAGAGGGCGAGAAACTGAGCTACACGGCACCGAACGGTAAGGACATCACGGTGGAGATCCTCTCTGCCAAGCCCTACGCCGCCTAGMSTTNSAPAAWLTQEAFDRLKAELDHLSGAGRAEIVQKIEAARQEGDLKENGGYHAAKEEQGKIEARIRQLTALLRDAHVGAAPADDGIVEPGMIVVAKIAGDEETFLLGSREIAGDSDLDVFSEKSPLGAAIVGHKEGEKLSYTAPNGKDITVEILSAKPYAAPGPT0030495_612PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSCRIPTIONAL_CONTROLPUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
D1-29_01352327hypothetical proteinATGGCGTGGGTTTCGACGTCCTCCGCCACGTCGGGAGTGACCTTCAAGGACATTGGCTTCAGCGTTGCCGATGCCACCCAGGCAGAAGTGGATTTCCAGGTGACCCGGGAACCTGGCACAGCCGTCAAATGTGCGGTCAAGGCCCTGGACTCCAAGTTCGCGGTGGTCGGCTGGAAAGTGGTTGACATCCCGCCTGGCCAGCCGGACGGGACAGCGGACAACGGGCGGACTATTTCCCAGCGGGTGGTCCTGAAAACGGAATCCCTTTCTGTCTCCGGCGTGGTGGACAGCTGCTGGGTTCCGGAGTCCGGCAGTCCGGAAATGTGAMAWVSTSSATSGVTFKDIGFSVADATQAEVDFQVTREPGTAVKCAVKALDSKFAVVGWKVVDIPPGQPDGTADNGRTISQRVVLKTESLSVSGVVDSCWVPESGSPEMNANANANANA
D1-29_01353906mcaCOG2120Mycothiol S-conjugate amidaseATGACAGCGTCCAGCACCACCTCGGCCCCGCTCCGGCTGCTCGCAGTCCATGCCCACCCCGACGACGAGTCAAGCAAGGGCGCGGCCACCATGGCCATGTACGCCGCCGCCGGCGTGGAAGTCATGGTGGCAACCTGTACCGACGGCTCGAGGGGGGATATCCAAAACCCGGCAGTGGACGGGGAGCCGCATCCCAAGCGGGACATGGCAGGCGCCAGGCGGCTTGAGATGGACAAAGCCGCCAAGGTCCTGGGTATTCGGCAGCAATGGCTTGGTTTTGTGGACTCCGGACTTCCCGAGGGCGATCCCCTCCCGCCCCTGCCGGCGGGATCTTTCGCCACCCAGCCCCTTCAACGCGCCGCCGCACCCCTGATACGGCTTGTCAGGCGGTTCAGGCCGCACGTCATGATCAGCTATGACGAAAATGGCGGCTATCCCCACCCTGACCACATCATGGCGCACAAGGTGGCTGTGGAAGCGTTCGAAGCGGCCGGCGACCCCAACCGCTACCAGGGAATCGGCGAGCCGTGGGAACCCAGCAAGCTTTACTACGACCGCGCCTTCAGCCCTGAGCGGTTCCGGGCCCTGCATTTTGCCCTGGAAGAGGCAGGGCTGCAGTCTCCGTATGCGGAGCGGCTGGCGGCCTGGCTGGAAACTGATGCGGAAGGCCACACGCCGCCGCCCGCCCCGCACCCCACCACAACCCAGATTGACTGCGGTGGCTACTTCGAAGCCCGCGACGACGCCCTCCGCGCACACCGCACGCAGGTGGATCCGCTGGGCTTCTTCTTCGCTGTCTCGGCTGAGATGCAGCGCCGCGCCTGGCCATGGGAGGACTACTCCCTGATCCAGTCACGGGTTCCGGCCCATTTGCCGGAAAAGGACCTCTTTGCGGGGCTAAGATAGMTASSTTSAPLRLLAVHAHPDDESSKGAATMAMYAAAGVEVMVATCTDGSRGDIQNPAVDGEPHPKRDMAGARRLEMDKAAKVLGIRQQWLGFVDSGLPEGDPLPPLPAGSFATQPLQRAAAPLIRLVRRFRPHVMISYDENGGYPHPDHIMAHKVAVEAFEAAGDPNRYQGIGEPWEPSKLYYDRAFSPERFRALHFALEEAGLQSPYAERLAAWLETDAEGHTPPPAPHPTTTQIDCGGYFEARDDALRAHRTQVDPLGFFFAVSAEMQRRAWPWEDYSLIQSRVPAHLPEKDLFAGLRNANANANANA
D1-29_01354378hypothetical proteinGTGCAACACTTGCTCGTCGCCCTGGCCACCACTCCGACGCCCCTGCCCACGCCCACACTGCGTGAGGGCATCTCCGAGGACCAGATCACTCCGGGGCTGTGGGGCTTCATCATGACCGCCTTTTTTGTGCTGGCTACGACGTTGCTGATCGTTGATATGGTGCGGCGTATCCGCCGTGTCCGGTACCGGGCACAGGTGGAGGAGGAGCGCCTGGCGGCGGCTGCCGCGGCCGACGTCGAGGCAGAGGACACCGGCTCCTACGGCCGCACGCCTGACACCTACATTCCTGACACTTCCGAACCTGACACTTCCGAACCTGCCCACTCGGAGACAGTCCTTCCGGAGCCGAACGGCGATGCGGGACGCTCACAACGCTGAMQHLLVALATTPTPLPTPTLREGISEDQITPGLWGFIMTAFFVLATTLLIVDMVRRIRRVRYRAQVEEERLAAAAAADVEAEDTGSYGRTPDTYIPDTSEPDTSEPAHSETVLPEPNGDAGRSQRNANANANANA
D1-29_013552334hypothetical proteinATGCGGGACGCTCACAACGCTGACGCCGGACGCGGGTCCGGCGAATCCCCAGGCGGTCGCGTCAGGCTGAACCTGCTGGAGCGGGAGCCGTCCGCCTATCTGCGCCAGCATGCTGGGAACCCCGTGCACTGGCGTCCGTTTGGCGATGAGGCCTTCGCCGAGGCTGCTGCCCGTGATGTCCCCGTCTTCCTTTCGATTGGCTACGCAGCGTGCCACTGGTGCCACGTTATGGCCCACGAATCCTTCGAGGACCCGGAGACTGCTGACTACCTGAATGAGCACTTCGTGGCGGTCAAGGTGGACCGGGAAGAGCGTCCGGACGTGGACTCGGTCTACATGGCCGCCACCCAGGCCATCAGTGGGCAAGGCGGCTGGCCCATGTCCGTCTTCCTCACCCCGGATGGCCGGGCCTTCCACGCAGGTACATACTTCCCGCCCCGTCCCATGCCTGGCCACCCCTCCTTCCGCCAGGTCCTGGAAGCTGTTTGGGAGGCATGGCAGGAACGGCGCGACGCCGTCGAGCAGAACGCGCAAATACTGGCTCAAAGCATGGGTGAGGCGCAGCTGACTGCAGCGGTGAGATTGGAAGGCTCCCCGCCGCTTCTTGATTCCCTGCTCCTGCCAGGCGCCGTGGAGTCGCTGGCACGGACTGAAGACCCGCAAGACGGCGGATTCGGCGCAGCGCCCAAATTCCCGCCGTCGGCCGTGCTGGAGTTCCTCATCCGGCATGCGGCCGTCCCACTTGATCCGGCCCCATCCGATACCGCCCACTCCGATCCCGCCCCATCCGATACCGCTGACACCGCCCGGAGCATGGCCGGCAGGACACTGGCCGCCATGGCGCGTTCGGCGCTGTTCGATCAGCTGGACGGAGGGTTTGCCAGGTACTCGGTGACCAGGGACTGGTCCGTCCCGCACTTTGAGAAGATGCTTTACGACAATGCCCAGCTGCTGCGCGTCTACGTGCACTGGATCCGGCTCGGCGGAAACGAGGATTTTCCTGCCGGCGAGGCAGCAGAAGTGGCCGCCCGCACCGCAGAGTGGATGCTGGACTCCCTGGGCCTGCCGGACGCCGGCTCGGCGGAAGGAGCAGGAGCGCCGGAAACGCGTGTCGCGGCGCTGGCGTCTTCGCTTGACGCCGATTCAGTGGTGGACGGCGAACACCATGAGGGGGCAACCTATCTCTGGACCATCACAGCGCTCCAGGACGTGCTCGGACAGGATGCGGGGGCGGCTGTGGCGCGGCTGATGAACGTGGGACCGGAAGGAACTGTCTCGGAGTTCGGCTCGCCCCTCCACCCTGCCCGGGCGTTGCACGCGGATGAGGCGAAGCTGTGGGACCAGGCCCGGCCTGCGCTGCTGGCCGCCCGCCGGCTCCGCCCCCAGCCGGCGCGCGATGAAAAAGTTGTGGCCGGCTGGAACGGGTTGGCTGTTGCCGCCTTGGCGGAAGCAGGAGCGGTGCTTGACCGAACGGACTTTGTGGCCGCGGCCGAATCCATTGCCGCGTACCTGGAGCGTGTCCACTGGCAGCCCAGCCCGCCCGCACCAACAAGCGGCCAGCAAGATCCTGCGCACGTTCCACCGCTGCTGATGCGGGTTTCGCATGCCGGGACAGCCCGCGGGATCGGCGGACTCCTTGAGGACTATGCCTTCTGTGCCGAGGGTATGTTCGCGCTGTACGCCGTCAGCGGCCAGCCCCACTGGTACCGGTTCGCCGAACAATTGGTTCAGGCTGCCTGCAGCCGTTTTGTGGTCTCCGGCCGGCTGGTGGATACCTCCGAGGGGGCGGCGCAAGTCCATTCGGCACAGGGAGGCCAGTCGGGTCTCGAGCCCTATGACGGGGCTACCCCGAGCGGCGCATCAGCCTTCGCCGGAGTCCTGCTCAGCTACGCTGCCCTCTCGGGATCTGCCGAACACCGGGCCATGGCCGGTCACATTCTGTCCCTTCTGCCGCCCCTTGCGGTCCGGGCGCCGGCCGCCGTCGGCTGGCTGCTGGCCACCGCCCAGGCGGCGCTGGCGGGACCGGTGGAGGCCGCCGTCGTCGGGCCTGACAGTCCCGAAAGGACTGCCCTGCACCGGGAACTGCTGAACTCTCCAAGTCCCGGGCTGGTGATCGCGGTGGGGGACGACGGCGGTGGGCCTGCGATGCCGTCCGGTACGCCTTCAGGTGACGTGCCAGTGCCCCTGCTCAGTGGCAGGGCCGGTGGGCCAGATGGCACACCTCTGGTCTACCTGTGCCGGAACATGGTGTGTGAGCTGCCTGTTCGCAGTGTGGCAGAGCTTCGGCGACGCCTGGCGGTGATGACGGTTCCAGGCCCGGGCGGGGCGCTGTAAMRDAHNADAGRGSGESPGGRVRLNLLEREPSAYLRQHAGNPVHWRPFGDEAFAEAAARDVPVFLSIGYAACHWCHVMAHESFEDPETADYLNEHFVAVKVDREERPDVDSVYMAATQAISGQGGWPMSVFLTPDGRAFHAGTYFPPRPMPGHPSFRQVLEAVWEAWQERRDAVEQNAQILAQSMGEAQLTAAVRLEGSPPLLDSLLLPGAVESLARTEDPQDGGFGAAPKFPPSAVLEFLIRHAAVPLDPAPSDTAHSDPAPSDTADTARSMAGRTLAAMARSALFDQLDGGFARYSVTRDWSVPHFEKMLYDNAQLLRVYVHWIRLGGNEDFPAGEAAEVAARTAEWMLDSLGLPDAGSAEGAGAPETRVAALASSLDADSVVDGEHHEGATYLWTITALQDVLGQDAGAAVARLMNVGPEGTVSEFGSPLHPARALHADEAKLWDQARPALLAARRLRPQPARDEKVVAGWNGLAVAALAEAGAVLDRTDFVAAAESIAAYLERVHWQPSPPAPTSGQQDPAHVPPLLMRVSHAGTARGIGGLLEDYAFCAEGMFALYAVSGQPHWYRFAEQLVQAACSRFVVSGRLVDTSEGAAQVHSAQGGQSGLEPYDGATPSGASAFAGVLLSYAALSGSAEHRAMAGHILSLLPPLAVRAPAAVGWLLATAQAALAGPVEAAVVGPDSPERTALHRELLNSPSPGLVIAVGDDGGGPAMPSGTPSGDVPVPLLSGRAGGPDGTPLVYLCRNMVCELPVRSVAELRRRLAVMTVPGPGGALNANANANANA
D1-29_01356663hypothetical proteinGTGGATGATGCCGCGGTCCACCTTGCCGAACTCCTGATGATCAAGCCCAGATGGCGCGGCTGGATCCACACTGTTACCGCGCCGCTGGCGTTAATCGCAGGAGTTGTCCTGGTGGCGCTGGCCCCTACAGCAGACCGGAAAATCACGTCAGCGATCTACGCTGCCACGGGCGTCCTGCTCTTCGGGATCAGCGCGGTGTATCACCGGGGCAACTGGACTCCCGGTGTGAAGATGGTGCTGAAGCGGCTGGACCACACCAACATCATGCTGGTCATCGCCGGAAGCTACACACCACTGGCCTGGTCCTTGCTGGAACGGCCCAAAGCCATCCTGTTGCTCTGGGTCATTTGGTCAGGAGCCATCCTGGGAGTCCTGTTCCGGCTCCTGTGGACGAACGCGCCCCGGTGGCTGTACGTACCGATCTACATCGCCCTGGGCTGCGGGTCCCTCTTCTACCTTCCGGAGTTCTTTGCTGCCAGTGTCCCGGCTGCCGTCCTGATCTGCGCGGGCGGGGTCCTTTACATCGCCGGCGCCATCTTCTACGCCCTCAAGAAGCCCAACTTCAGCTACCGGCACTTCGGTTTCCACGAACTCTTCCACGCCCTCACGGTCCTTGCCTTCGGAGCGCACTTCACCGCTATCGCCATCGCGGTGCTTAGCTGAMDDAAVHLAELLMIKPRWRGWIHTVTAPLALIAGVVLVALAPTADRKITSAIYAATGVLLFGISAVYHRGNWTPGVKMVLKRLDHTNIMLVIAGSYTPLAWSLLERPKAILLLWVIWSGAILGVLFRLLWTNAPRWLYVPIYIALGCGSLFYLPEFFAASVPAAVLICAGGVLYIAGAIFYALKKPNFSYRHFGFHELFHALTVLAFGAHFTAIAIAVLSNANANANANA
D1-29_01357774COG0020(2Z,6E)-farnesyl diphosphate synthaseGTGAGTCTCCGGGTGGAATTGCCAGGGTTCCTTTACGGCGTCTACGAGCGCAGGCTGCTCCGGGACCTCTCCGGAGGCCGCATCCCTGAACACATCGGCGTGATGGTGGACGGGAACAGGCGCTGGGCCAGGCAGTTCAATGCACCCACCAGCCAGGGCCACCAGGCGGGAGCGGACAAGATCCATGAGTTCCTGGGCTGGTGCCAGGAGCTGGGCGTCAAGGTGGTGACGCTTTACATGCTGTCCACGGACAACATGAACAGGTCCAGCGAAGAACTTGACCTCCTGATGGGGATCATCGCCAACACCCTGGACCGGCTCGACGAGGACGTGAACATCTCCGTCCATGCCATGGGCGCCCCCGAGTTGCTCCCCGACTACCTGGCCGAGCGGCTCAACAAACTCACAGCCCGCACGCCGGTGCGGGAAAAAATCCACGTCAACGTGGCAGTGGGGTACGGCGGCCGCCGCGAAATCGTCGATGCGGTCCGGGAACTGCTGCATGACGCCGTGGCCAAAGGGACCGACATCACCACCCTGGCGGACAATCTGTGCGTCGATGACATCTCCCGCTTTCTCTACACCAGGGGCCAGCCGGATCCGGACCTCGTCATCAGGACCTCGGGGGAGCAGCGGCTCTCCGGCTTCCTGATGTGGCAAAGCGCGTACAGCGAGTTCTATTTCTGCGAGGCCCTCTGGCCCGCGTTCCGCAAGGTGGATTTCCTTCGCGCGCTCCGCGACTATGCAGGCAGGCAGCGCCGCTTCGGAGCCTGAMSLRVELPGFLYGVYERRLLRDLSGGRIPEHIGVMVDGNRRWARQFNAPTSQGHQAGADKIHEFLGWCQELGVKVVTLYMLSTDNMNRSSEELDLLMGIIANTLDRLDEDVNISVHAMGAPELLPDYLAERLNKLTARTPVREKIHVNVAVGYGGRREIVDAVRELLHDAVAKGTDITTLADNLCVDDISRFLYTRGQPDPDLVIRTSGEQRLSGFLMWQSAYSEFYFCEALWPAFRKVDFLRALRDYAGRQRRFGAPGPT0007535_652DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007535-uppS-K12503NANA
D1-29_013581425hypothetical proteinGTGGCTACTTCTGAGCAACTTCCCGAGGTCGTATCCGACCAGGGAGAGAAAGCTACCTCTCGCGCCATGCGAGCTACCTCAAAGACCGGTGCGGCAACTGCTGCGGCCGGTTTTGCTGTCTCCGGAAGGGAAGCCACCATAAACAGCTTCGTCATTGACACCTCTGTCCTGCTCTCGGACCCCCGGGCCCTGCTGCGTTTCGCCGAGCATGACGTTATTGTTCCGATCGTGGTGATCAGCGAGTTGGAGGCGAAACGGCATGATCCCGAGCTCGGGTACTTTGCCCGCAAGGCGCTCCGGCTGCTAGATGACCTCAGGGTCAAACACGGCGGCCTGAACCAGCCCATTCCCATTGGCGACGACGGCGGCACGCTGGTGGTGGAGATGAACCACATTTCCGCCGAGGTGCTTCCGCTGGGCTTCCGCAGCGGGGACAACGACAGCAGGATTCTCGCCGTGGCCAAGAACATGGCCAACGAAGGACGCAACGTCACCGTGGTCTCCAAGGACCTGCCGATGCGGGTCAAGGCTTCCGCCATGGGGCTCACGGCTGACGAGTACCGCAACGAACTGGTGAAGGACTCCGGCTGGACGGGGGTGGCGGAGGTGGAAGCCAGCGAGGAAGAGGTTTCCACCCTGTACGGACACGAGCCCGTGTTCATTCCCGCGGCAGCCGAGCTGCCGGTAAACACGGGCCTGGTACTGCTCTCCAACCGGGGATCGGCTTTGGGCCGCGTTGGTGCTGACAAGCAGGTCCGGTTGGTCAAGGGCGACCGGGACGTCTTCGGGCTCCATGGCCGGTCCGCCGAGCAGCGGCTTGCGATCGACATGCTGATGGACCCCGCGGTGGGCATCGTCTCCGTGGGCGGCCGCGCCGGAACAGGCAAATCAGCCCTGGCCCTCTGTGCCGGTCTTGAAGCCGTACTGGAACGCCGGGAACACCGGAAGGTAATTGTCTTCCGTCCCCTCTACGCCGTAGGCGGCCAGGAGCTTGGCTACCTGCCGGGCTCCGAATCGGAAAAAATGAACCCCTGGGCGCAGGCCGTCTTTGACACGCTGGGCGCGCTGGTCAGCCAGGAAGTCGTGGAGGAGGTCATGGACCGCGGCATGCTGGAAGTCATGCCGCTGACCCACATCCGCGGACGTTCCCTGCACGACGCCTTTGTGATCGTGGACGAGGCCCAGTCACTGGAGAAGAACGTCCTCCTCACCGTGATGAGCCGCATCGGCCAGAACTCAAAGATCGTCCTCACCCACGACGTCGCCCAGCGTGACAACCTGCGGGTCGGACGGCACGACGGCATCGCCGCCGTCGTCGAAACCCTCAAAGGCCACCCGCTCTTTGGCCACATCACCCTGACCCGCTCCGAACGCTCACCCATCGCCGCCCTGGTGACGGAACTCCTCGAAGGCGCCGAAGTCTAGMATSEQLPEVVSDQGEKATSRAMRATSKTGAATAAAGFAVSGREATINSFVIDTSVLLSDPRALLRFAEHDVIVPIVVISELEAKRHDPELGYFARKALRLLDDLRVKHGGLNQPIPIGDDGGTLVVEMNHISAEVLPLGFRSGDNDSRILAVAKNMANEGRNVTVVSKDLPMRVKASAMGLTADEYRNELVKDSGWTGVAEVEASEEEVSTLYGHEPVFIPAAAELPVNTGLVLLSNRGSALGRVGADKQVRLVKGDRDVFGLHGRSAEQRLAIDMLMDPAVGIVSVGGRAGTGKSALALCAGLEAVLERREHRKVIVFRPLYAVGGQELGYLPGSESEKMNPWAQAVFDTLGALVSQEVVEEVMDRGMLEVMPLTHIRGRSLHDAFVIVDEAQSLEKNVLLTVMSRIGQNSKIVLTHDVAQRDNLRVGRHDGIAAVVETLKGHPLFGHITLTRSERSPIAALVTELLEGAEVNANANANANA
D1-29_01359192hypothetical proteinGTGGTTGGGTATTTTCTGCGAGAGCAGACGGTTTCCCGCGGTGTCGATCACTACGCAGTGATGATGGGCTTTGCCGGCGTCGATACCGGCCCATACGTGCGCATCGCCGACCAAAACGGAGCGAAGGTCGCCTGCGACCGTACTAAGGCGGCGGGAGGAAGCGACGTCCAGAGGGACCCCAGGCGAGCTTGAMVGYFLREQTVSRGVDHYAVMMGFAGVDTGPYVRIADQNGAKVACDRTKAAGGSDVQRDPRRANANANANANA
D1-29_01360696gph_1Phosphoglycolate phosphataseATGGCTTTCGAATTCGAAACCAAGCCGAAGTTCGCTACATTCGACATGAACGGAACGCTGATTAAGTTCGCTATCAACGATGCGATCCGTGAGGTACTGGGCGACCGGCTGCCGGCCGAGATCGCCGATGATTATCTGCGGGCCTGCAAGGCGTACCGCATCGACGAGTGCACGGGCGAGTACAAGCCGTTCCACCAGATTGTCGCCGACTCCATGGGACGCGCCTCGCGTCGGCTCGGTCTGGAGTTCCGTGCTGACGACGCACGGGCGGTTTACGAGATTGTCCCCTCTTTTGGCCCGTACCCGGGTGTCACCGAGGCGCTGAACCGCCTGGCTGAGGAAGTCCCGCTGGTCATCATCACGAACAGCGACACCGCCCATGCTGTGCGCCTCGCAGCGAACCTCCAGGCCCCATTCGAGGTCATCATCAGCGCCGAGCAGATGGGCATGTACAAGCCGCGGCTCGGTGCATTTGAGTACATGTTCGACAAGCTTGGCGTGACACCGGATGAGATCGTGCACGTTTCCGCGAGCCCGATGTACGACCACCGACCCGCGGCCATCATGGACATCAAGAACAAGGTGTATGTCGACCGCGGCTTCGAGCACGACGAGCACTGGCTCGGCTATGAGCGGATCACCGATATCGCCGACCTCCCCGTCCTCTTCGGCCTGCCACGTCCCGCTGCCTCTTAAMAFEFETKPKFATFDMNGTLIKFAINDAIREVLGDRLPAEIADDYLRACKAYRIDECTGEYKPFHQIVADSMGRASRRLGLEFRADDARAVYEIVPSFGPYPGVTEALNRLAEEVPLVIITNSDTAHAVRLAANLQAPFEVIISAEQMGMYKPRLGAFEYMFDKLGVTPDEIVHVSASPMYDHRPAAIMDIKNKVYVDRGFEHDEHWLGYERITDIADLPVLFGLPRPAASPGPT0006885_1447DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-29_01361126hypothetical proteinGTGGATTCCAGCATCCATATCTCGGGCCAGCTCCCGTTCAAGGACGGTGAGCTGCTGGGCCAGGGCGTTGTTGGCCGGGACCTGGCCTGGAGACGGCCCGGGAACTCGCTCGCCCTTGCGTGCTGAMDSSIHISGQLPFKDGELLGQGVVGRDLAWRRPGNSLALACNANANANANA
D1-29_01362174hypothetical proteinGTGATCTCGGTCAACTTCGGAGCCCGTCGTTCCGGAGCCCCTGCCGAGGCCGCAGGCGATGTCGCCCTCGCCGCCCGCAACCGCGGCCTGGTGCCGGCTGGCGTCTTCACCTACCCGGGTCATGGCAGCGCGGGTCCGGACGCCCGCAAGCTAGGGCCCATGCGCTGTGTCTAAMISVNFGARRSGAPAEAAGDVALAARNRGLVPAGVFTYPGHGSAGPDARKLGPMRCVNANANANANA
D1-29_01363648COG1670Putative succinyl-CoA transferaseATGACCGAGTTGACTTCCATCTGGCCCCTTTTCAACCTCACCCTGACGACGCCCCGGCTGGTCCTCAGGCCCTTGGCGGATCAGGACTTTCCCGCGGCGGTGGCGGCGGCAAAGAGTGGAATCCACGAGCCAGGGAAAAGCCCGTTCAGCACACCATGGGCGGAGGCCCCTGCCGAGGAGCTGGGACCCAACTTGGCCAGGTGGCACTGGCGCAGCCGCGCCGAGGCAACGCCGGAATCCTGGAGCCTGATCCTGGGCATCTGGCACGACGGCGGTCTGGTCGGCTGTCAGGACGTCGGCGCCAAGGATTTCGGCACCTTGAAAACCGTCTCGACGGGCTCCTGGCTCAAAAGGTCCGTCCAGGGCCGGGGGCTCGGCAAAGAGATGCGCGCCGCCGTCGTTCTTTATGCCTTTGACTGGCTGAAGGCGGAGGTCGCCGAATCAGAAGCTGCGGTTTGGAACGCGGCCTCACTCGGTGTTTCCCGCTCGCTGGGCTATGAGCTCAATGGCGTTACCAGGACCGCCTGGGGTGAGAGGGTGGAGGACGTCCAAAAGATCCGCGTTACCCCTGAAACCTTCAACCGCCCCGACTGGACCCTCAAAGTAGAAGGCCACGATCCCGTCGCAAAATTTCTCGGGGTTCAGTAAMTELTSIWPLFNLTLTTPRLVLRPLADQDFPAAVAAAKSGIHEPGKSPFSTPWAEAPAEELGPNLARWHWRSRAEATPESWSLILGIWHDGGLVGCQDVGAKDFGTLKTVSTGSWLKRSVQGRGLGKEMRAAVVLYAFDWLKAEVAESEAAVWNAASLGVSRSLGYELNGVTRTAWGERVEDVQKIRVTPETFNRPDWTLKVEGHDPVAKFLGVQNANANANANA
D1-29_01364795hypothetical proteinATGGCGACGTGGGACACGAGGCATCGGCCCGATCCGGACAACAGCGCAGCGAGCGCAGACCTGATAACGACGTTCCGTAACCTTTGCCGGTCATCCCCCTGGAAGTGGCAGTCCCTGCGTTTTGAGTATTGGGACGAACCGTTCACTGACGCCCCTGAAGCCTCGGCACCGCTCGTCAGGGCGTGGCTGCGCCGGCCGGGCGCGCTCCGCCTCGAAACGGTGGACGGACGTGTCCTTCACAGCACCACCGGAATCAATGATTCCAAGGATGACTTCTATGTCAGTGCCACGCGGAAGTCTTGGCTTCTGCCTCCCCATCTGGTGGCGCCCGTTTACGACGACGCAGGTTTGGTCAGGCGGCGGCCCGAGGCCGCCTACGGCGAACCTGGCTTTGGCAATGGCCGCTTTTCGGCTGCCCTCGATCCTGTGGAGCTGGCCGGTAACGCTCCGGTCCCCCTGGAGTTCCCCGGCAACAACGCCGTGGACGTTGTGGATGTCCGCCGGATTGAGCAGGACGGCAGGCCCGCCCTTGAAGCAATTGTCACACCGACCGCGGCCTACCACCCTGCAGATCCTGCCGCTCCGCTGTGCATGCCGGGAACCAACACCGTGCGGGTAGATCTTGGGACAGGTGTCTGTGTGTCCAGCCGGTCCCTTGAACCGGCCACGCAGGGCTACGGCCACTGGCTGCGGATCATCGCCGTGGACGAGTACATGCTGGATGATCTGTTCCTGGCTGAGTCGATGAACCTCACCGACGTCCGCCGGCACATCAGCTGGGACGTTCCGGCCTGAMATWDTRHRPDPDNSAASADLITTFRNLCRSSPWKWQSLRFEYWDEPFTDAPEASAPLVRAWLRRPGALRLETVDGRVLHSTTGINDSKDDFYVSATRKSWLLPPHLVAPVYDDAGLVRRRPEAAYGEPGFGNGRFSAALDPVELAGNAPVPLEFPGNNAVDVVDVRRIEQDGRPALEAIVTPTAAYHPADPAAPLCMPGTNTVRVDLGTGVCVSSRSLEPATQGYGHWLRIIAVDEYMLDDLFLAESMNLTDVRRHISWDVPANANANANANA
D1-29_01365558hypothetical proteinGTGATCCGACGACTGGACGAACTGTGGGCTGTGACTCCGCTGGCCTTTTGGCTGGTGCTGGCTGCCTGCGCCTACTTCGCCGTGATGGCAGCCCGGCTCACTGTTATCGATGTGAGGCACCATCTGCTTCCCAATAGGATAGTTTTCCCGTCCTATGCAGTTGCCGGTGTCCTCCTGCTGGCTGCCGCCATAGTGCATGTTGCAGGGGGCCCTGCCGCGTTCCAAGCCATCCCGGAAGGTGCAGCAGGCTTCTTGGGCGTTCCTGCCCTTCGTGTACTGGCCGGCGGAGCGGTCCTCTGGGTTTTCTACTTTCTCCTGCGCCTGGCCTATCCTCCGGGGATGGGCTTCGGCGATGTCAAACTCGCCGGGGTCCTGGGCATGTACCTGGGCTATCTGGGCTGGGCGCACGTCTTTGCCGGAACCTTCGCGGCTTTCCTCCTGGGCGGACTCTGGAGCCTCGCCCTCCTCGTCGCCCGCCGCGGCACGCTGAAGTCTTCCATTCCCTTCGGCCCGTTTATGCTCGCCGGAACCGCGGCTGCCATGCTGTTGCCGGGGTAAMIRRLDELWAVTPLAFWLVLAACAYFAVMAARLTVIDVRHHLLPNRIVFPSYAVAGVLLLAAAIVHVAGGPAAFQAIPEGAAGFLGVPALRVLAGGAVLWVFYFLLRLAYPPGMGFGDVKLAGVLGMYLGYLGWAHVFAGTFAAFLLGGLWSLALLVARRGTLKSSIPFGPFMLAGTAAAMLLPGPGPT0015925_2708DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
D1-29_01366555hypothetical proteinATGAGGCTGACGAGACTATTGCCTGGCGTCACAGGGGCCACCCTGATGACCATGGCGTTAGGAAGCTGCGCCGGAGTGTCGGGCGCAGAACAGGGCTCTCCCCTCCCAGCAGCACCGGATTCCAGTTTCGGGAGGGAAACTGCAGGCCCGGATACGCATGCCCCCATTCCCGGTCCAAGCTGCGAAGGCGGTCCCTTCGGATGCCGCACGTTCACGTCCACGGAAGGCAGCGACGCCTCTGGAGAGCTGGAATGGCTCCAGTCCCAACCCCTCGTCGTCTCGTCCGCCTTTGTTAATGAAACCTGGACGGTGCGAGTGAAAACTCCCTGCAATCACATGAGCGTTGAAGTCTTTGTGGAAGGAAACCAACTGATCCCCGGCCAGACGATTTCCACCGCCATGGCTTGCGCGGAACCGGCGAGTGGCTTTGAGTCCTGGACGCGTGAACTTTTCGAACAGACAGTGACATGGGAACTGACGGGAGAATCATTGCTGCTGGAGAACGGGCACGGCACCGTGGTCCTGAAAGACTCCGGGTCAAGTACCAAGCTTTAGMRLTRLLPGVTGATLMTMALGSCAGVSGAEQGSPLPAAPDSSFGRETAGPDTHAPIPGPSCEGGPFGCRTFTSTEGSDASGELEWLQSQPLVVSSAFVNETWTVRVKTPCNHMSVEVFVEGNQLIPGQTISTAMACAEPASGFESWTRELFEQTVTWELTGESLLLENGHGTVVLKDSGSSTKLNANANANANA
D1-29_01367684nudC_1NADH pyrophosphataseATGCCAGCTCCTGACTACATCCTCAGACTTCGCGAGAAAATCGGCAATGACCCTTTGTGGGTTCCCGGCGTCCGGGGAGTGGTGGTGGATGGCCAAGGTCGCATCCTGCTGGCCCAGCGGGTTGATAACGGCCAGTGGGCCCTCATCTCCGGAATGCTGGAACCCGGCGAGCACCCGGCCCGGGGACTGGTGCGGGAGATCTTCGAAGAAACGGCTGTGGTGGTGGAGCCCGAGCGGGTAGTTTCCGTAGGCGCCGTGGGACCCTTCACCTACCCAAACGGGGATGTCTGTGAATTCCTGGACGTGGTGTTCCGCTGCCGCTATGTGTCCGGGACTGCCCGGATCAATGACGACGAGTCTCTGGCCGTGGGGTGGTTCGGAATCGATGAGCTGCCGGAATTGATGCCAGGCCACCTGACCAGCACCACCGCGCCATCGCTCCGGTTGAAGCCGCGCACTTCGAACCCTGATGTAACGCTGAAGGGCTCGGCCCTCAGCGTCCCTTCCGCACTTCGAATTTTTGTCCAGATACGGCGACTTCGAGTGCTCCGAAGTCGCCGTATCTGGACAAAAACTCTCAAGGGTGGGAACGACGACGGCCGCCCGCCTTCACAGGGAAGGTGGGCGGCCGCCGTCGTACGCTGTGTTGTTAGGCCTTGTGCGGCGGGCGTGTCATGGACATAAMPAPDYILRLREKIGNDPLWVPGVRGVVVDGQGRILLAQRVDNGQWALISGMLEPGEHPARGLVREIFEETAVVVEPERVVSVGAVGPFTYPNGDVCEFLDVVFRCRYVSGTARINDDESLAVGWFGIDELPELMPGHLTSTTAPSLRLKPRTSNPDVTLKGSALSVPSALRIFVQIRRLRVLRSRRIWTKTLKGGNDDGRPPSQGRWAAAVVRCVVRPCAAGVSWTNANANANANA
D1-29_013681422fumCCOG0114Fumarate hydratase class IIATGACTTCCACTGAAGAATTCCGCATTGAACACGACACGATGGGCGAAGTCCGCGTCCCCGTGAACGCCCTGTACCGTGCACAGACGCAGCGTGCAGTTGAAAACTTCCCCATCTCCGGCAAAACCCTGGAACGCGCCCACATCGAAGCCCTTGCCCGGGTCAAGAAGGCAGCCGCCCAGGCGAACGCAGAACTTGGAGTGCTCGACGGCGAGCTGGCCAAGGCGATTGCGGAGGCCGCCGATGAGGTAGCCACCGGCAAATACGACGGCGACTTCCCCATCGACGTTTTCCAGACCGGCTCAGGCACCTCCTCGAACATGAACACCAACGAGGTCATCGCCGAACTGGCCACCCGCGCGCTCAAGGCCGCCGGCAGTGACAAAGTTGTCCACCCGAACGATCACGTCAACGCTTCGCAGTCCTCCAACGACGTCTTCCCGACGTCCGTCCACGTGGCAGCAACCTCGGCCCTGATCAACGACCTCATCCCCGCCCTTGGCTACCTGGCCGAGTCGCTGGAACGCAAGGCCGTTGAGTTCAAGGACGTCGTCAAGTCCGGCCGTACGCACCTCATGGACGCCACCCCGGTGACCCTGGGCCAGGAGTTCGGTGGCTACGCAGCCCAGGTCCGCTACGGCATCGAGCGGATCAACGCCTCCCTCCCCCGCGTCGCTGAAGTTCCCCTCGGCGGCACCGCCGTAGGCACCGGCATCAACACCCCCGCCGGCTTCCCCGAGCGGGTCATCGAACTCCTCGCCACGGACACCGGCCTGCCGCTGACCGAGGCCCGCGACCACTTCGAGGCCCAGGCCAACCGCGATGGCCTGATCGAGGCATCCAGCCAGCTGCGCAACATCGCGATCTCCTTTATGAAGATCAACAACGACCTGCGCTGGATGGGCTCGGGCCCCAACACGGGCCTCGGCGAGATCGCCATCCCGGACCTCCAGCCGGGCTCGTCCATCATGCCGGGCAAGGTCAACCCGGTCATTTGCGAGGCCTCCATCATGGTGGCCGCACAGGTGATCGGCAACGACACCGCCATCGCCTGGTCCGGCACCAACGGCGCCTTCGAACTGAACGTCGGCATCCCCGTCATGGCCGCCAACCTGCTTGAGTCCGTGCGCCTGCTGGCCAATACCAGCCGTGTGATGGCCGACAAGATGATCGACGGCATCACCGCCAACGTTGAGCGCGCCCGCTTCCTGGCCGAAGCGTCGCCGTCCATCGTCACCCCGCTGAACAAGTACATCGGCTACGAGAACGCGGCGAAGATCGCCAAGAAGGCTGTGGCCGAGGGCCTCACCATCCGTGAGACCGTCGTCGCAATGGGCTTTTTGGAGCGCGGCGAGGTCACCGAGGAGCAGCTGGACACCGCGCTGGACGTTATGTCCATGACACGCCCGCCGCACAAGGCCTAAMTSTEEFRIEHDTMGEVRVPVNALYRAQTQRAVENFPISGKTLERAHIEALARVKKAAAQANAELGVLDGELAKAIAEAADEVATGKYDGDFPIDVFQTGSGTSSNMNTNEVIAELATRALKAAGSDKVVHPNDHVNASQSSNDVFPTSVHVAATSALINDLIPALGYLAESLERKAVEFKDVVKSGRTHLMDATPVTLGQEFGGYAAQVRYGIERINASLPRVAEVPLGGTAVGTGINTPAGFPERVIELLATDTGLPLTEARDHFEAQANRDGLIEASSQLRNIAISFMKINNDLRWMGSGPNTGLGEIAIPDLQPGSSIMPGKVNPVICEASIMVAAQVIGNDTAIAWSGTNGAFELNVGIPVMAANLLESVRLLANTSRVMADKMIDGITANVERARFLAEASPSIVTPLNKYIGYENAAKIAKKAVAEGLTIRETVVAMGFLERGEVTEEQLDTALDVMSMTRPPHKAPGPT0001650_905DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679NANA
D1-29_01369615cynTCOG0288Carbonic anhydraseGTGGCAACCTACCTGACTCCAGCCCTGGCCTGGCGGCGACTCCGCGAAGGCAACGAACGCTTCGTCAACGGCGAATCCTCCCACCCCAACCAGGACGCCTCGCGCCGGTCCTCGCTGGTGGAAAACCAGCACCCGTTTGCGGTGATTTTTGGCTGCTCTGATTCCCGGCTTGCGGCTGAAATCATCTTCGATCTTGGTCTCGGAGACGCCTTTGTGGTCCGCACCGCGGGCCAGGTGATCGATGACGCGGTACTTGGCTCCCTCGAATACAGCGTCAGCGTGCTGGGAGTGCCGCTGATCGCCATTCTTGGGCATGACAGCTGCGGCGCCGTCAGCGCAACGAAAACCGCCGTGGACACCGGCCAAATGCCGGCGGGCTTCATCCGTGACCTGGTGGAGCGCATCACACCCTCGGTTCTGACGTCGATGCGCGATGACAAGCACGAGGTCAACGACATGGTGGTTGAGCACGTCAAACAGACTTCGCAGCGGCTGGCGGACAGCTCACGTGTGATTTCCGCCGCAATCGACAGCGGGCGTACCGCCGTCATTGGCCTCTCCTACAGTCTTGCCGAGGGCCGCGCCAACGTTGTTTCCGGGATCGGCGAGCTCTAAMATYLTPALAWRRLREGNERFVNGESSHPNQDASRRSSLVENQHPFAVIFGCSDSRLAAEIIFDLGLGDAFVVRTAGQVIDDAVLGSLEYSVSVLGVPLIAILGHDSCGAVSATKTAVDTGQMPAGFIRDLVERITPSVLTSMRDDKHEVNDMVVEHVKQTSQRLADSSRVISAAIDSGRTAVIGLSYSLAEGRANVVSGIGELPGPT0002415_5750DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
D1-29_01370681hypothetical proteinATGCACGAAAAGACCAGCAGCGGGCCAGATCAGGCCGACGTCGGGCGCCACGAAGAGGCCGCCGGAACCGGCAACGACGCGCCCATCAGGCCCGTTATCCCGGCGGCGGCAGCCAAACGCGCCAATGCTTCGGTGATCGGCATGATCATCGCCCTCGTGGTGAGCATCGCGGCGTTCCTGCCCGTCGTCCTGATGAACCCTTCCCCCAAAAGTGATGGCTATCGGCCGAACGTCGACGTCAGCGAAGTGGCCCGTAATGCCGCGGATGTGGCGGGATTCACACCTGTTGCGCCGGAGACGGGAGGTGCCTTTACGTCGAACTACGCACGCTGGGAGTCGGGAAGCGGCAGCGGCGTCCCCACGTGGGAGGTTGGCTACCTGACGCCAAAGGAGTCTTTCATCGGGCTGGTCCAGACGCGCCAGGCAAATCCCACCTGGCTTCAACAGGAGACCAAAAGCGCACCCGTCACCGGAACACGCAGTGCCGGCGGCCAGGAGTGGGAGCTTCGCGATACGGGCAAGGGCGAGAAGAGCATGGTGTTGGACTACCGCGGCACCACCGTTGTCCTGACGGGAACAGCGCAGCTGGACGAGTTTGCCATCCTGGCTGACGCCGTCGTCAAATCCCTGGAAAGCAATCCGGCCGTCACAGTTTCACCCTCCGCCACTGCCGCCCCGTAAMHEKTSSGPDQADVGRHEEAAGTGNDAPIRPVIPAAAAKRANASVIGMIIALVVSIAAFLPVVLMNPSPKSDGYRPNVDVSEVARNAADVAGFTPVAPETGGAFTSNYARWESGSGSGVPTWEVGYLTPKESFIGLVQTRQANPTWLQQETKSAPVTGTRSAGGQEWELRDTGKGEKSMVLDYRGTTVVLTGTAQLDEFAILADAVVKSLESNPAVTVSPSATAAPNANANANANA
D1-29_013711038glpXCOG1494Fructose-1,6-bisphosphatase class 2GTGTCACCAGCGTCCATGACCCAGAAATACTCCACGCTCTCCCCGTCCCTGGCTGTGGGACTCGATGAGCCGGACCGCAACCTTGCACTGGAACTCGTCCGCGTCACCGAAGCCGCGGCAATCGCCGGCGGCCACTGGGTCGGCTTCGGCGACAAAAACAAGGCCGATGGTGCAGCCGTCGACGCCATGCGCTCCTTCCTTCACACTGTCCACTTCAACGGCGTTGTGGTCATCGGCGAAGGCGAAAAAGACGAAGCCCCCATGCTGTTCAATGGCGAACACGTTGGCGACGGCACCGGTCCTGAGTGTGACGTCGCAGTGGACCCCATCGACGGCACCCGCCTGACAGCCCTGGGCATCAACAACGCCTTGGCCGTCCTGGCAGTTGCCGAGCGCGGCTCCATGTTCGACCCCTCCGCCGTGTTCTACATGGAGAAGCTCGTCACCGGCCCGGAAGCAGCCGACATGGTTGACCTGCGCCTGCCGGTCAAGCAGAACCTGCACCTCATCGCCAAGGCGAAGGGCGTGAAGGTCAACCAGCTCAACGTCATGATCCTTGACCGTGACCGCCACCGCCCGCTGGTGGAAGAAATCCGCGAAGCAGGTGCGCGCACCAAATTCATCATGGACGGCGACGTCGCCGGCGCTATTGCCGCGGTCCGTACCGGTACCGGCGTTGACGCCCTGATGGGTATTGGCGGCACCCCGGAAGGCATCGTGGCTGCGTGCGCCATCAAGTCCCTGGGCGGTGTGATCCAGGGGCGCCTGTGGCCCACCAGCGACGAAGAGAAGCAGAAGGCCATCGACGCCGGCCATGACCTTGACCGCGTGCTGTCCACCAACGACCTCGTCTCCAGTGACAACTGCTACTTCGCTGCCACCGGCATCACCGACGGCGACCTCCTCAAGGGCGTCCGGTACTCCAAGGACAAGGTCCTCACCCAGTCCATCGTGATGCGCTCCAAGTCCGGCACCATCCGCTTTGTGGACGGCGAGCACCAGGCCAGCAAGTGGGAAGGCTACGCCCGCAAGCAGTAAMSPASMTQKYSTLSPSLAVGLDEPDRNLALELVRVTEAAAIAGGHWVGFGDKNKADGAAVDAMRSFLHTVHFNGVVVIGEGEKDEAPMLFNGEHVGDGTGPECDVAVDPIDGTRLTALGINNALAVLAVAERGSMFDPSAVFYMEKLVTGPEAADMVDLRLPVKQNLHLIAKAKGVKVNQLNVMILDRDRHRPLVEEIREAGARTKFIMDGDVAGAIAAVRTGTGVDALMGIGGTPEGIVAACAIKSLGGVIQGRLWPTSDEEKQKAIDAGHDLDRVLSTNDLVSSDNCYFAATGITDGDLLKGVRYSKDKVLTQSIVMRSKSGTIRFVDGEHQASKWEGYARKQPGPT0017655_203DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017655-glpX|cbbF-K02446NANA
D1-29_01372957hypothetical proteinATGGGCCTCTCACCGCTCCCCAAAGAGCTACGCACCGGATCCTTCACATCCGCCGACGCCGCCTCCTCCGGTGTATCCCGTAAACGGCAGCGGCAGCCCGACGTCGTTATTCCCTCACGCGGCATACGCGTCCCGCTGGAGAGCGAAGCCGGCATCTCCGCCAATCTTCGGGCCTATACGGCGCTCGACGGATTGTCAGTGCTAACGCACCACTCGGGAGGACGTGTCTGGGCGCTGGGACTTCCTTCGTGGCTGGAGGAAGACTGGCGTATCCACGTGGCGCGGGACCGGAACGCCAGCAAACCCCGGCGCCGAAATGTGATTGGCCACCGCATGACCTTCAAACCAGGAGAAGTCATCATGCACGACGGCGTCCAGGTCACCTCGCCAGCGCGGACGTGGCTGGATCTGGCAAGCCTGCTGTCCGTGGATGAACTCATCGCGGCTGGAGATTCGCTGGTAAATGCCCATGGACCGGACTTTCCAAGGCCAAAGGCACCCCTCGCCGCGATCGAGGACCTGCAGCGAATGATTGCCGCACACCCTGGGATGCGGGGTATGAAGACCGCCAGGCTGGCCCTTCCCGAAATCCGCGTAGGGTCCGACTCGCCTCAGGAAACGAGAATGCGACTGGCACTGGCGCGCACATACCTCGGCGAACCACTGCTGAACCATGTAATCCGCAACAGTTGGGGCCAGCCCAATGTGTGGCCCGATGCAGCCTATCCCGCGCATCGGCTCGCGCTGCAGTACGACGGGACACATCATTCTGACCCACGCCAGGTCCGGCTGGACAACAAGCGCCGGGCCATCACCGAGCGACTCGGCTGGACCGAGATCAGGGTCTTCAAGGAGGATCTGGAGGGAGACCGGCCCTTCGTCGTCGAACTGGTGCGGGCGGCCCTGCAGGCATGGAACCGGTCCAAAGAGAGCACTCAGGCCGGCTTCCTCGCGTAAMGLSPLPKELRTGSFTSADAASSGVSRKRQRQPDVVIPSRGIRVPLESEAGISANLRAYTALDGLSVLTHHSGGRVWALGLPSWLEEDWRIHVARDRNASKPRRRNVIGHRMTFKPGEVIMHDGVQVTSPARTWLDLASLLSVDELIAAGDSLVNAHGPDFPRPKAPLAAIEDLQRMIAAHPGMRGMKTARLALPEIRVGSDSPQETRMRLALARTYLGEPLLNHVIRNSWGQPNVWPDAAYPAHRLALQYDGTHHSDPRQVRLDNKRRAITERLGWTEIRVFKEDLEGDRPFVVELVRAALQAWNRSKESTQAGFLANANANANANA
D1-29_01373987hypothetical proteinTTGGACCACTTCCTGCAGAGTCAATCGTGGGCTGATGTCCAGGCGTCCCTGGGCCGCCGCGTCCACCAGCAGTCGGGGCCCGGGTGGCGCTTCCTGGCCGTGGAGGAAAAGAATCCGGCAGGCAAGGTGCTGTACGCACCCTACGGCCCGGTGGCCTCCTCCCCTTCAGCGTTCGACGCCGCCCTGGCCGCCCTGGTGGACGTCGCCCGGTCGTGCGGTGCTGTCTTTGTCCGGATCGAGCCTGTTTCGGCCGGGCTTGAGCCTTCCGCCGCTGAGGCGGAACTCCGCCGCCGTGGCCTGCAGCCGGCACCCGTGAACCAACAGCCCGAACTGAGCCGGGTAATTGACCTGGAGGGCGATTTCAAGGACGTCCTGGCAGGCATGAAGCCCGTCAACCGGAACCTCTACCGGAATATCCACAAAAAAGGCGTCACGTTCCGGAGCTCGCAGGACCCCGACGACATCCGGATCCTGCTGGACTTCCTTCACATGACCGCCAGGCGCAACGGGTTCAAGCCGCAAAGCGACGAGTACCTGACCCAGGTGGCCGCTTCCTTGATGCCTGCCGGCGCTGCCACCCTTTTTGTTGCGGAGCTGGAGGGGAGCCCCATAGCGGCGGCCCTCGTCTACGATTCGGCGGACACGCGCACGTACGCCCACGCAGCCCTGGACGACACACACCGGAAGCTCAGTGCTGGCATCCCGCTCCTGGTGACCCTGATCGCGGACGCAAAGGACCGGGGCCTGAAGTATGTGGACCTCTGGGGTGTTGCCCCGGCGGACCAGCCGGACCACAAATGGGCGGGCTTCACGGCGTTCAAGAAGTCCTTCGGCGGCCGTGAAGTCTCCTATCCGGGCACCTGGGACCTTCCGGTCAAGAAGCTGCGGTACCGCGCCTACCAGGCGGCCCGCCAGCTGCGGAACCTGGCAGTAGCCGGCGTCCGCTCCGCCCGCGCGCGAACTGGCAGAGCGCGAACGAACACTTAAMDHFLQSQSWADVQASLGRRVHQQSGPGWRFLAVEEKNPAGKVLYAPYGPVASSPSAFDAALAALVDVARSCGAVFVRIEPVSAGLEPSAAEAELRRRGLQPAPVNQQPELSRVIDLEGDFKDVLAGMKPVNRNLYRNIHKKGVTFRSSQDPDDIRILLDFLHMTARRNGFKPQSDEYLTQVAASLMPAGAATLFVAELEGSPIAAALVYDSADTRTYAHAALDDTHRKLSAGIPLLVTLIADAKDRGLKYVDLWGVAPADQPDHKWAGFTAFKKSFGGREVSYPGTWDLPVKKLRYRAYQAARQLRNLAVAGVRSARARTGRARTNTNANANANANA
D1-29_013741368manACOG1482Mannose-6-phosphate isomeraseATGAAGAGGCAATCCGGGAACTCGTGGCCACCAATGGCCAGTGCGCTCCCCTGTAGCCCTGAAGAAACGAAGCCGACAAGTTGCCTTAGCCCGCAGACCAACGAAATGGACACTGCTGTGTACGAAATTGAGAACGTCCTCCGCGATTACGCGTGGGGTTCGACGACGGCGATCGCTGGGCTCCTGGGGCGCCCTGCGTCAGGGCGGCCGGAAGCCGAACTTTGGATCAGTGCCCATCCCGACTCTCCGTCAGTGGCCCACCGCCCCGATGGATCCTCGGTTCCGTTGGATGCCCTGATCGCCGAAGACCCGGAACATTTCCTCGGCGGGCCCTCCGTGAGTGAGTTTGGGCCGCGGCTTCCGTTCCTGACGAAGATCCTGGCTGCGGCGGAACCCCTCTCCCTGCAGGTCCACCCCAGCATTGAGCAGGCAAAAGCAGGGTTCGCGCGGGAAAATGCCCAGGGTCTGTCACCTGACGCGGCCAACCGCAGCTACCGGGATGACAACCATAAGCCGGAGATGATCTTTGCCCTTACCCCCTTCGAGGCGCTCTGCGGATTCCGGCGCCCCGGCGAGACACAGGAGATCCTGCGTCAGCTCATGAAGTCTTTCGACCTGGTGGAAGCCCCGGTCCCGGCACTCCTGGAGTCGCTGCTGGAGGACCTCGCTGACCCCGATGAGGGTGTCGCGCTCAGAAACGCCTTCAAACGGCTGATCTCGGGAGGCGAGGACGTTGCAGAGGCTACGGCCCTGGTGGCGGCTGCCTTGGCGTCGGGAGCTCCCCGCGCACCCTACGAGGCTGAGCTCGCCACCGTGGCCAGCCTCAACGAGAAGTATCCCGGCGATCCCGGAGTCCTCATCTCGCTGCTGCTCAACAGAATTTCATTGGCCGCCGGCGAGGCCGTGTACCTTCCGGCGGGCAACGTTCATGCCTACCTGCATGGCCTGGGCGTTGAGGTCATGGCGTCATCAGACAACGTGCTGCGCGGCGGGCTGACGCCCAAGTTTATCGACGTTCCGGAGCTCCTGCGCACCATCGAATTCAAGCCGGTAGCCGTGCCCATGCTGGCTCCGCAGATCTCCGGCCTTGGCCAGGAGCTCTACCAGCCGCCCTTCCGTGAGTTTCAGCTTCAAAGGATCATGATGGAGCCGGAGAGCGCTCCGGTTCCGCTGGCACAGTCAGGAGCGGCGGTAGTCATCGTCGTGGAAGGGGCCATGTACCTGGACTCGCCCAAGGGTGACCTGCAACTGTCCCGCGGCGGCAGCGCGTTCCTCCCAGCGTCAGAGGCCCCCGTTAACGTCCACACCGTGGCGGGCACCTCGGAAGCAGCCCTCGCCTTTGCCGTCACCACCTCGATGAGGGGCTGAMKRQSGNSWPPMASALPCSPEETKPTSCLSPQTNEMDTAVYEIENVLRDYAWGSTTAIAGLLGRPASGRPEAELWISAHPDSPSVAHRPDGSSVPLDALIAEDPEHFLGGPSVSEFGPRLPFLTKILAAAEPLSLQVHPSIEQAKAGFARENAQGLSPDAANRSYRDDNHKPEMIFALTPFEALCGFRRPGETQEILRQLMKSFDLVEAPVPALLESLLEDLADPDEGVALRNAFKRLISGGEDVAEATALVAAALASGAPRAPYEAELATVASLNEKYPGDPGVLISLLLNRISLAAGEAVYLPAGNVHAYLHGLGVEVMASSDNVLRGGLTPKFIDVPELLRTIEFKPVAVPMLAPQISGLGQELYQPPFREFQLQRIMMEPESAPVPLAQSGAAVVIVVEGAMYLDSPKGDLQLSRGGSAFLPASEAPVNVHTVAGTSEAALAFAVTTSMRGPGPT0017860_659DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809NANA
D1-29_013751656tagU_1Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGAGATCAAGCGATCAGCTGCAACCGGCACCTGCCAGGGCCACCGACCCCGTCCGGTTCCCCCTGGGCGCCTCGCCCCACGTCCGGACCAAGCGCGCCTTCCTCCTGGTGCTCATGACCCTCCTTGTGCCGGGCAGTGCCCAGATCGTGGCGGGTGACCGTAAGCTGGGCCGGGCCGCTTTACGGGTCACCCTGGGCGTCTGGGCGCTGCTGGCACTGACAGTGCTGCTGCTGGTCGTTAACCGGACGATGCTGATCAACGTCATTACCAATCCTTTCGCGTCGTTGCTGATTGTTGTCCTCCTGGCGGCCCTCGCCGTCGGCTGGGCCATTCTTTTCATCAATACCCTGCGGATCATCCGTCCTGTACTGCTTGCACCGCCGGTCCGTCCCGCCGTCGTGATTGCGCTGGTCCTGGCGCTGGTCATCGGCAGTGGCTCGCTGGGGTACGCCGCCTACCTGCTCAACGTGGGCCGGAATGCGATCGGCAGTATCTTCAATGCCACCGGTCCCGCCATCGAACCGGTTGATGGCAGGTACAACTTCCTGATGATGGGCGGCGACGCCGGCGCGGACCGCACCGGCCGCCGGCCTGACAGCCTCTCGGTGCTCAGTGTGGATGCCCAGACCGGGCAGACCGCCATCATCTCCGTCCCGCGGAACCTGCAGAACGCCAGGTTCAGCGAGGACTCCCCCATGCGCCAGATCTACCCGGACGGCTACGACTGCGGCGACGAATGCCTGATCAATGCCATCAACACCGAGGTGACCAACGAGCACGCCGACCTCTACCCCGGCGTGGCCGATCCCGGAGCCCAGGCCACCATGGAAGCGGTCTCCGGGACGCTGGGAATGACGATCCAGGCCTACGTCCTGGTGGACATGGAGGGCTTTGCCACGCTCATCGACGCCATGGGCGGCATCAAAATCAAGGCCGGCGGCTGGGTCCCCATGAGCGGCTACTTCGATGATTACAGCCAAACCCACGGCATGCCCCTCGGCTGGATTCCTGCTGGAGAGCAGACGCTCGACGGCAACCAGGCCCTTTGGTATGGCCGGTCACGCGAGTATGTGGACGACTACGCCCGCATCCAGCGCCAGCAGTGCGTCCAGCAGGCCATGCTGAAGCAACTTGACCCGGCCACGCTCCTGGCCAAGTTCGAGGACATTGCCAACGCCGGTACCCAGGTTGTGGAGTCCAACATCTCCTCCTCGCAGCTTGGCAGTTTCCTGGACCTCGCCGTCAAGGCGAAAGGCCAGGACATCAAGCGGCTCACCATCGGCCCTCCGGACTTTGACGCGTCGTTCTCCACAGTCCCTGACTTCGACCAGATCCACGACCGCGTGGACCAGCTGCTGGCCTCTGCGTCCGCATCTGCGTCGCCACAGGCAGGAGAAGCCCCGGCCGACAGTATTATCGAACCGGCCCGTTCACGCGGTCACCTTCAGGCGTCGGGCCTGCTGCCTGCATCCCTTCAGGCAACGGGTGGACGGCCGGCCCAACAGTCTCCGTCGCCGTCGGACTTCACCCCCGTGACCACCACGCCGGATGGTGAACCGATCACCGAGGCCATGCTCAACCAGCTCAAGAGTGAAGGCAATGAAGAGGCAATCCGGGAACTCGTGGCCACCAATGGCCAGTGCGCTCCCCTGTAGMRSSDQLQPAPARATDPVRFPLGASPHVRTKRAFLLVLMTLLVPGSAQIVAGDRKLGRAALRVTLGVWALLALTVLLLVVNRTMLINVITNPFASLLIVVLLAALAVGWAILFINTLRIIRPVLLAPPVRPAVVIALVLALVIGSGSLGYAAYLLNVGRNAIGSIFNATGPAIEPVDGRYNFLMMGGDAGADRTGRRPDSLSVLSVDAQTGQTAIISVPRNLQNARFSEDSPMRQIYPDGYDCGDECLINAINTEVTNEHADLYPGVADPGAQATMEAVSGTLGMTIQAYVLVDMEGFATLIDAMGGIKIKAGGWVPMSGYFDDYSQTHGMPLGWIPAGEQTLDGNQALWYGRSREYVDDYARIQRQQCVQQAMLKQLDPATLLAKFEDIANAGTQVVESNISSSQLGSFLDLAVKAKGQDIKRLTIGPPDFDASFSTVPDFDQIHDRVDQLLASASASASPQAGEAPADSIIEPARSRGHLQASGLLPASLQATGGRPAQQSPSPSDFTPVTTTPDGEPITEAMLNQLKSEGNEEAIRELVATNGQCAPLPGPT0023440_90DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023440-tagT|tagU|tagV-K01005NANA
D1-29_01376585purECOG0041N5-carboxyaminoimidazole ribonucleotide mutaseATGACCGCCGAAGCAACGCCCGCTGCGGACAGTTCGTCCGCCCCCATCGTGGGCCTGGTCATGGGCTCTGATTCGGATTGGCCGGTGATGGAGGCCGCGGCCGATGCACTGGCGGAATTCGGCATTCCTTTCGAAGCGGACGTGGTTTCCGCCCACAGAATGCCCACGGAAATGATCCGGTACGGCCAGACAGCCCACCAGCGCGGACTCCGGGTCATCATCGCCGGAGCAGGCGGCGCTGCCCACCTGCCGGGCATGCTGGCCAGCGTCACCCCGTTGCCCGTCATCGGGGTGCCTGTGCCCCTGAAGACCCTTGACGGGATGGATTCGCTCCTGTCCATTGTCCAGATGCCCGCCGGCGTACCCGTGGCAACTGTTTCGATCGCCGGAGCACGCAACGCCGGCCTCCTTGCCGTGCGGATCCTCGCCGCCGGAACGGATGAACTGGCGGCCTCCCTCCGCGCCGACCTGCTGGAGTTCGCCCAGGACCTCAACGACGTTGCCACCCGCAAGGGCGCAAATCTTCGGCAGAAGGTCAGCGAAGTCTTCGCTGACGGCAACGGCGTCCTCCGGAACGGCCGCTAGMTAEATPAADSSSAPIVGLVMGSDSDWPVMEAAADALAEFGIPFEADVVSAHRMPTEMIRYGQTAHQRGLRVIIAGAGGAAHLPGMLASVTPLPVIGVPVPLKTLDGMDSLLSIVQMPAGVPVATVSIAGARNAGLLAVRILAAGTDELAASLRADLLEFAQDLNDVATRKGANLRQKVSEVFADGNGVLRNGRPGPT0021545_151DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588NANA
D1-29_013771284purKCOG0026N5-carboxyaminoimidazole ribonucleotide synthaseGTGACGGAGGGCCAAGTTACAGGGAAAATCGGCCGCAAAGGCACCCGGAAGCCGGGAACCTCCAAGCTTTTCTGTAGGCTGGCCCTTGTGACTTTTCCAGTAATCGGCGTGGTTGGCGGCGGCCAGCTCGCGCGAATGATGGCCCCAGCCGCCACCGCTCTCGGCTTTGAACTCCGCGTCCTTGTTGAGGCGGAGGACGTTTCAGCCGTCTCTGCAGTTTCCACCTCTCCGGTAGGGGATTACAAGGATCTCCAGACTCTTCTCGAGTTCTCGGACGGCCTCGATGTGATGACCTTCGATCACGAGCACGTGCCCACCGGGCACCTCCGTGCACTCCAGGAAGCAGGAGTGAACGTCCAGCCCGGACCGGATGCCCTGGTCAACGCGCAGGACAAGCTGGTGATGCGTGCCGCGATCGACAGGCTCGAACTTCCCAACCCGGAGTGGGCCGCCGTCGACGATGTTGCCTCCCTCGTTGCCTTTGGTGAACAGATTGGCTGGCCCGTTGTCCTGAAGATGCCCCGCGGCGGCTACGACGGCAAGGGTGTGCGGATAGTCGCATCCGCCGATGATGCTGCCCTCACGGCAGAATGGTTCGACGCCATGAGTCCGCTCCTGGCCGAGGCCAAGGTCGAGTTCAGCCGGGAGCTGTCAGCGCTGGTGGCCCGCACCCCCGACGGCGAAGCCCGGGCCTGGCCCGTGGCACACAGCATCCAGGTTGACGGGGTCTGTGACGAGGTCATTGCTCCCGCACTGGATATCCCGCTCGAGGTGGCCGCGGCGGCCGAGGACGCAGCCTTGCGGATCGCCAGCGAACTGGGCGTCACGGGAGTTATGGCGGTTGAGCTTTTCGAGACACCGGGCGTAGGCGCCGGTTTCCTCATCAACGAACTCGCCATGCGCCCGCACAACACAGGCCACTGGACCCAGGACGGGTCGGTAACCAGCCAGTTTGAACAGCACCTCCGCGCAGTCCTCAACCTTCCCCTGGGCTCCACGGACGTCCTGGGCCCGGTGGTGGTGATGAAAAATTTCCTTGGCGGCGAGAACCAGGACCTGTTTTCCGCGTATCCCGTGGCCCTGGCAAGTGAACCGGCCGCGAAAGTGCATTGTTATGGGAAGTCGGTGCGCCCCGGCCGGAAGATCGGCCATGTCAACCTGCTGGGTGATTCCACCGCGGACGTGGACTCCCTCCGCCAGCGGGCGTCGAGGGTGGCAGGCATCATCCGGGACGGCCGGGTGCCGTCCGAAGAATCACCACGGATTTCTGAGGAGAACGTATGAMTEGQVTGKIGRKGTRKPGTSKLFCRLALVTFPVIGVVGGGQLARMMAPAATALGFELRVLVEAEDVSAVSAVSTSPVGDYKDLQTLLEFSDGLDVMTFDHEHVPTGHLRALQEAGVNVQPGPDALVNAQDKLVMRAAIDRLELPNPEWAAVDDVASLVAFGEQIGWPVVLKMPRGGYDGKGVRIVASADDAALTAEWFDAMSPLLAEAKVEFSRELSALVARTPDGEARAWPVAHSIQVDGVCDEVIAPALDIPLEVAAAAEDAALRIASELGVTGVMAVELFETPGVGAGFLINELAMRPHNTGHWTQDGSVTSQFEQHLRAVLNLPLGSTDVLGPVVVMKNFLGGENQDLFSAYPVALASEPAAKVHCYGKSVRPGRKIGHVNLLGDSTADVDSLRQRASRVAGIIRDGRVPSEESPRISEENVPGPT0021550_142DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021550-purK-K01589NANA
D1-29_01378567hypothetical proteinATGTTTAACACACTTGCAGATCGTATCCGGGGGCTCGCCTCGCTATTCTGGCGCGAGGTGGCCAAATTCGGAGCCGTGGGCGGTGTGGCGTTTGTCATTGACAACGGTCTGACGTACTTCCTGATGCACGGTCCCATGACCGACAGCGAAGCGAAGGCCCGTTTTGTCGGCGCCAGCGTGGCGACACTTTTCTCCTGGATCGCGAACCGGCTGTGGACCTTCCGGCATCGCAGGCAGGCGAACGTCCTGCGTGAATTCCTAATGTTCATCCTCATTAATGGCATTGGCATCGGGATTTCCACTGGCTTTACTGCCATCGCCAAGTATTCGCTGAACGTCACGGACAAGAACATGCTGTTTGCTGCCGGCGTGGTGGGAATCCTGGTTGCCACGGTTGTCCGGTTCTTTGCCTATCGGTTCCTTGTCTTCAACGAGGAACTGGATCAGGAACCCGAGTTCTCCCACGACCACGAACTCATTGAGCTCCATCCAAAGGAGCACCATCCCAAGGCAGAAGCGGCTGCAGGAGAGAGCGAGCGGTCACCGGAGGGCAACCGCCGGCCATAGMFNTLADRIRGLASLFWREVAKFGAVGGVAFVIDNGLTYFLMHGPMTDSEAKARFVGASVATLFSWIANRLWTFRHRRQANVLREFLMFILINGIGIGISTGFTAIAKYSLNVTDKNMLFAAGVVGILVATVVRFFAYRFLVFNEELDQEPEFSHDHELIELHPKEHHPKAEAAAGESERSPEGNRRPNANANANANA
D1-29_01379699hypothetical proteinATGAACATCCCGGCTATCGACCTCATGACAACCCTGCGCTCCGGGCACTCCACCTCCCCACGGCTGACTTGGTACGGGCCAGATTCTGAGCGGGTGGAACTCTCGGGCAGAGTCCTGGACAACTGGGTTGCGAAGACCAGCAACCTGCTGCAGGACGAACTCGACGCCGAGCCGGGAATGCGGGTCCGCCTTGACCTGCCTGCCCACTGGAAGTCACTGATTTGGGCGCTGGCAGCCTGGCAACTCGGCATGGAAACCCTTCTTGACGGCGGCGGGGCGGATTTCCTTGTCACCGACAAGCCCGAAGCGTTCCAGGGTCAGTACGACGCCGTTGTTGCCGTGGCGCTTCCGGCCCTCGCCATGCGGTGGCCCGGGGAGCTGCCTGACGGCGTCATCGACTACGCCTCGGAAGTGCGGTCCCACGGCGATGTCTTCATGGCGCATGTGGATCCCGATGCATCCGGCTGCGCCCTGAGTGGCCGGGACGGGCAGCGGCACCTCCACGGGGACCTGCTGAGCGCCTTTGCCACCCCGCACGAGGAGGGCGTCCGGCTCCTGGTTTCCGCCGCGGACGGGCTGGAGGCAGCTCTGGCGAACTCCCTGGGCGCGTGGACTAAAGGCGGCTCCGTGGTGCTGGCGCATCCCGACGTGGAGTTGACGGAGAAGCTCCTCGCCGCGGAACGGATCCACGGAAGTTAAMNIPAIDLMTTLRSGHSTSPRLTWYGPDSERVELSGRVLDNWVAKTSNLLQDELDAEPGMRVRLDLPAHWKSLIWALAAWQLGMETLLDGGGADFLVTDKPEAFQGQYDAVVAVALPALAMRWPGELPDGVIDYASEVRSHGDVFMAHVDPDASGCALSGRDGQRHLHGDLLSAFATPHEEGVRLLVSAADGLEAALANSLGAWTKGGSVVLAHPDVELTEKLLAAERIHGSNANANANANA
D1-29_01380546whiBTranscriptional regulator WhiBTTGGGGCAAGTAGAGCGTATCCATGAAGATGCCGTCGTCGCCGGACAGGCTACGGCAAAATACCGGGCACGGGGCGTGCCAAGTGACTGGTACGTGGATCCTGCAGATCCCGATGCCGCCGAACGGTACAACAAAAACACCAAAGACTCATTGCAGGACCAGGCCACGGCTTTCCTGGCAGCGCATGAAGCTCTGCTGGATGGCGAGCATGACCAGGACGAAGACGACCTGGACCCGCCGATGGAACTGCAGACGCGTATCGCCGGGGCATCGTCCCAGCCGATATGGATCGGACTGCCTTTCGAGCAGGACTTCGCTGACGAAGGCGAGCTGGGGTGGCAGACTGACGCCCTGTGTGCCCAAACTGATCCCGAAGCCTTCTTCCCGGAAAAGGGCGGATCAACGCGTGACGCCAAGAAGGTCTGCGGCGCATGCAACGTACGGTCGCAATGCCTTGAGTACGCCCTCGCGAACGACGAACGGTTTGGCATTTGGGGTGGCCTTTCCGAGCGTGAGCGCCGGCGCCTGAGGAAGCGGGCAATCTAAMGQVERIHEDAVVAGQATAKYRARGVPSDWYVDPADPDAAERYNKNTKDSLQDQATAFLAAHEALLDGEHDQDEDDLDPPMELQTRIAGASSQPIWIGLPFEQDFADEGELGWQTDALCAQTDPEAFFPEKGGSTRDAKKVCGACNVRSQCLEYALANDERFGIWGGLSERERRRLRKRAINANANANANA
D1-29_013813333hypothetical proteinGTGGTGTCCCACAATGGCAGTGCCTATCTCCCCAGAACCCTGGCGGCCTTGGCTGATCAGACCCGTCCCGCGGACGCGGTCATCGGCGTTGACGCAGGTTCACGCGACGATTCCGTTGCGTTGCTTGAGGCTGCCCTCGGCGGAGCCAACGTCGTCCAGCGCCCGCACGGCAAGGGCGGCATGGGTGGCGCTGTCAAGGCAGGCCTGGACGCGCTGGCGCCCTGGAGCGGTCAGTCCGAGAGGGCTGCCACGGAATGGATCTGGCTCATCCATGACGACGCCGCGCCGGCTCCTGAAGCATTGGCCGAGCTCCTTGGGGCCGTGGAGCGGGCCCCCTCAGTCACAGTGGCCGGCTGCAAGCAGCTGGACTGGCACGCAGGGCGCCGCCTCATTGACGTGGGCCTCTCCACCAGCGGCTGGGCCGAACGCCTGACCCTCATTGACGCCGACGAACTGGACCAGGGCCAATACAACGGACGCAGCGATACCTTCGCCGTGAATTCCGCCGGCATGCTGGTCCGCCGTGACGTCTGGGAGCACCTTCAGGGCTTTGACCCTGCCCTGCCCGGCAGCGGCGATGATGTTGACTTCTGCTGGCGTAACCGCCTGGCCGGCCACCGTGTGGTGGTGGTTCCCACGGCGCGTATGTTCCACGTAGCCCACAGGCCCCATGCGTTGGGGAACCCGGCTGCTGCCCGGAAGGCCCAGGTCCATCTGCGGCTCAAGCACGCTCCGTTGTGGAAGGTTCCTTTCCATGCGGTAGGCGCGCTGGTGGGGAGCATCTTCAAGCTGGTTCTCAGCATTGCTGTCAAGGATCCGGGGCACGGGTTCTCGCAGCTCGCCGCAACCTTCGCTGCCCTGGCCCGGCCCGCCGCCGTGGCCAGGGGCAGAAGGGTGGCCGCCAGCACCAGGCGGATCCGGCGGTCCGTGATCCGGAAGCTGCAGACACCCCGGCGCGAGGTCTGGAACCACCGCAGATCGCTGATGGAGGCGATTGGGGCTGATGATGCTTCCGGTCAAGGCCTGGGGCCGGATCCCCTGGCCGACCAACCCAGCGGTGACTCGGCCGACGACTTTGCAGCCTTGACCACAACCGAACGGGGCTGGGTAGGCAACGGCGCCCTTGCTGCTGTCCTGATTGCCTCGGTTGCATCCCTCCTGGGGCTGGCCGGCCTGTTCCGCGCCGAGGCTGTTTCCGGCGGCGGCCTCATCCCGCTCTCCTCGTCCATCGGCGAGATCTGGCACCACGCCTCCAGCTGGTGGATCGGCCTGGGTGCAGGACTTCCCGGCAGGGGAGACCCCTTCGGCTACGTGCTGTGGATCCTGGGCCTTCTCGGCGGAGGCGACGCCAACGCCGCCATGGCCTGGCTCCTCCTGCTGGCGGCACCCCTTTCCGCGCTGACAGCATGGTTCGCGTCCGGGGCCCTTACGGCACGGCGCAGGTTCCGCCTGATCGCCGGGCTCTTCTGGGCGGCGGCTCCTGCGCTGCAGGTTGCCCTGAACCAAGGCCGGGTGGGGGCGTTAGTGACGCACGTCATGATTCCCCTGATGGTCCTGGGGCTGCTGCGCGCAACCGGCAGCGCGGTGGGTCATGGCCGCTTCCTGCTGCCGTCCCCCGCCGAGCGGCGTTTCACCGAGAAGCCACCGGTGCGGCCGGGAATCAACGGGATGCCATCCTGGACAGCTGCCGCCGCCGCGGGCCTGGCAATGGCTGTCGTTTGTGCTTCGGCGCCATCACTGCTGATACCCTCGGCCCTCATCATCGTCCTGTGCGGCCTTCTTCTCGGCCGCCGCGGGCGCACGGTGTGGTGGGCATTGCTGCCTGCCGCCGCCCTGTTCATTCCGTTCGGTCTGTCAACGCTTGACAGGCCGCGGGCCATCCTGGCGGACCCCGGCGTTCCCGTCGGGTTTGATGCTGCCCCGTTGTGGCAGCAGTTGCTGGGGCGGCCGCTGCCCTTCAGCCCGGAGGCAGGGCTGACCGGTCTGCCGTACTTCACCGGCCAGGCCGTTCCGTGGGCACTCCTGCTCGCTTTGCTGGTGGGCGTTCCGGTGCTGCTCCTGTCCGCCGCTGCGCTTTTCGTCCCGGGCAGAAGGGCAGGAACAGCACGGGCGCTCTGGGTGTCCGCGCTGATCGTACTCGCCGGGGGCTGGCTGGCAGGCCATGTTGCCACGGGTGCCAACGCCGACACCTTGGTGACGCCCTTCACCGGCCCGGCCGTTTCCGCCGCGGGATTCGCGCTGCTTGGAGCAGCGCTCATCGGAGCGGAACGCTTGCTGGGCTTCGCAGAGATTGCTTCCACTGCCAGCACCCGCCGGAATGTCCTTGTCCGGTCGACGGTGGCCCTGTCCATGGTCCTCCTCCTGGCCGGCCCGTTGGCCGGCATGGCCGCATGGTCGGCCCAGAACCTGCTGCGGTCCACTGCCGCGGCCCCCCAGGCGGAAGAAGCCGCCCCGGAAGCGCTGGGCACCCCCCGGCTCGTGGAATCAGTCAGTCCGCGGACGCTCCCTGCCACTGCGATTGACCGGGGCACCGGGCCCGAGCAGACGCGCACGCTGCTGATCAGTACCAAGGAAAACGGCACGTTTGACGCCACCCTGATGCGCGGCGCCGGAACAACACTGGACAGCCTCTCCACCATCGCCGCGGCGCGGGATATTTTGGGCGCTCCGGGAGCTGAAACTGTCCGGGAGGACGACGGCGTCACGTCGGTCATCCGCAGCGTGGTTGCCACCATCGTGGCAGGGCAGGGCGTGGACCCCAGGCCGGAGCTGGAACAGCTGGGCATCGGATTTGTGGTCTTGCGCTCGGCAGATACCGCTGCGCAACTGACCGCCAGCAGGATGGATGCAGTGCCGGGCCTCATCGCCGTCGGGCAGACTGACGTGGGCTGGCTATGGCGGATCACGCCACTAAACCAGCCGGTGCTGCAGCCCGCGGACGTTGCCCACCGGGTGCGGATCGTGGATGGGAAGGGCGCTGCGGTTACGCTGCTCCCGTCCGGATATGACGACGTCGGCACGGCCGTCCCGGAAGGGGCGGAGGGGCGGCTGGTGGTCTTGGCCGAGCGCGCTGATCCGGGGTGGAGCGCCTGGCTTGACGGGCGGAAACTTACGTCGACTACGTCCGGCTGGGCACAGGCCTTCACCTTGCCGCCGGCGGCCGGCCAACTGACCATCCGCTACGACAACCCATGGGCTCTGTGGTCCGCTATTGGGCAGATCACGGTGATTGGACTTACCGTGATGCTCGCGATCCCCATGCCTGCCCGTCGGCCCAACGCCGGCCTGTCAAGGGACGAAGGCTCCTTGCGTAAGGAACACCAAAATGCATAAMVSHNGSAYLPRTLAALADQTRPADAVIGVDAGSRDDSVALLEAALGGANVVQRPHGKGGMGGAVKAGLDALAPWSGQSERAATEWIWLIHDDAAPAPEALAELLGAVERAPSVTVAGCKQLDWHAGRRLIDVGLSTSGWAERLTLIDADELDQGQYNGRSDTFAVNSAGMLVRRDVWEHLQGFDPALPGSGDDVDFCWRNRLAGHRVVVVPTARMFHVAHRPHALGNPAAARKAQVHLRLKHAPLWKVPFHAVGALVGSIFKLVLSIAVKDPGHGFSQLAATFAALARPAAVARGRRVAASTRRIRRSVIRKLQTPRREVWNHRRSLMEAIGADDASGQGLGPDPLADQPSGDSADDFAALTTTERGWVGNGALAAVLIASVASLLGLAGLFRAEAVSGGGLIPLSSSIGEIWHHASSWWIGLGAGLPGRGDPFGYVLWILGLLGGGDANAAMAWLLLLAAPLSALTAWFASGALTARRRFRLIAGLFWAAAPALQVALNQGRVGALVTHVMIPLMVLGLLRATGSAVGHGRFLLPSPAERRFTEKPPVRPGINGMPSWTAAAAAGLAMAVVCASAPSLLIPSALIIVLCGLLLGRRGRTVWWALLPAAALFIPFGLSTLDRPRAILADPGVPVGFDAAPLWQQLLGRPLPFSPEAGLTGLPYFTGQAVPWALLLALLVGVPVLLLSAAALFVPGRRAGTARALWVSALIVLAGGWLAGHVATGANADTLVTPFTGPAVSAAGFALLGAALIGAERLLGFAEIASTASTRRNVLVRSTVALSMVLLLAGPLAGMAAWSAQNLLRSTAAAPQAEEAAPEALGTPRLVESVSPRTLPATAIDRGTGPEQTRTLLISTKENGTFDATLMRGAGTTLDSLSTIAAARDILGAPGAETVREDDGVTSVIRSVVATIVAGQGVDPRPELEQLGIGFVVLRSADTAAQLTASRMDAVPGLIAVGQTDVGWLWRITPLNQPVLQPADVAHRVRIVDGKGAAVTLLPSGYDDVGTAVPEGAEGRLVVLAERADPGWSAWLDGRKLTSTTSGWAQAFTLPPAAGQLTIRYDNPWALWSAIGQITVIGLTVMLAIPMPARRPNAGLSRDEGSLRKEHQNANANANANANA
D1-29_013821692hypothetical proteinATGCATAAGTCCACACCGGATGAAACGGGGACTGACGCTGTCCAGGCAGCGCCACCGCCGGCCCCCGCCCCCCAGGCAGAAGACCAGCCGCAAGCCGAGCCGCAGCATGGGTCAGCACCCCGCAGCAAGCCCTCCGCCAGTGTCCTGGTCAGGCTCCTGTCCGCTGTGGCAATTCTTGCGGCCGCGGGCGGACTGGTGACCGCGGCCTCCCTGGCCCCGCAGCCGGCGGGTGACCGGACGATCCCTGCGGCCCTGGCGGCTGTTCCTGCCGGCTCAAGCGTTGGCGTATGCCCCGGTCCCGCCAGGCTTCTTGAAGGCACCGAGGCGGGAACGGATCCGCAGTTCAGCCCCGAATCGGCCACGGCCGCCAGCGCCGTCACGGGGGCGGTGCTGAGTGCCGCCGGGGGCGATCTGCCGGACAGCCGGCTTTCGGCGTTGAACGGGACCTCCGCCGTCAAGATCGGGAAAGAGGCTCCGGCGGGAGCAACGGCCGGCCCGCAGGACCTCCTGGCGGCTGTTGTCCCGCGCCATGCCGTGGACGACGTCAGCGTGCTGAGCGCTCAGGCGGTGGACAACCAAAAAGCGTCGGCGGGTGCGCTGATGAAATACACGGCCACCGATGGGGACCTGCAGGGAGCTGCGGCCGCCAATTGCCAGCAGCCCGCCAACGACTTGTGGCTGGCCGGAGCCAGCACCAAGGTGGGCCGCACTTCGCTGCTGGTGCTCAGCAATGCCTCTACAACGCCGGCCACCGTCAGCCTGGAACTTTATGGGGCCAAAGGCCAGATCCATGCACCGGGAAGCCGCGGCCTGCTGGTGGCCCCCGGCACTACCCGGTCGGTGGTCCTGGCCGGACTGGCGCCTGGCGAAGCCCAGCTGAGTGTGCACGTCCGCAGTGTGGGAGGCCCCGTCGCCGCCGTCATCCAACAAAGTGTCCTGCGTGGACTCACCCCCGGCGGGGTGGACTACATTGCGCCAGGGGCTGCCCCCGCCGCACGACAGGTGATGACAGGGCTGGATATCCAGGAGCCCGCCGGAATAGCAGCGATGACAGGGCAAAGAGGCTTCGAGGATGCCGGTCCTGCCTTGCAGCTGACAGTACCCGGGCCGTCGGACGCCGTGGTGGAAGTCAAGATGTTCGGGCGCGACGGCCAGCAGGCTCTTGCGGGTGGTGGCGTGGTCACGGCAAAAGCAGGGGCGGTAACCGAGATTTCCCTCGCGGGAGTCCCGGCGGGACATTACACAGTCTCCGCCAGCTCCGACGTATCGTTTGTGGCTGCTGCACGCGTAACCCGCGGCGTCAACAGTGAGCAGGCGTCCGACGTCGCGTGGTCAGCGTCAGCCAGCAGGCTGGGCAGCCAGCATGTCGTGCCGGTGCCCCCAGGAGGCGGAAGGACCCTGGTCTTCGGGGCCCTGGAGGATCGCGCCACCATTTCCTACTCGGCCATCACCGCCGATGGCACCATCCACGGGGCAGCATCAGCAGACATTGCCGGGGGGACAACAACCTCCATCCAGGTTCCGGAGAAGGTGGAAGAGGCCGTCGTGGTGGGGTACGTGGTGTCAGCGTCCGGCGGTGCTGCATACGGGGCGCTGCTGCTTCAGCAGGACGGTCGCGACGACATCTCCACTTTGTCCCTCACGCCCGCAGCGTCAGGCCAGGAGAAAGTCCCGGTCACGCTCGGTTACTGAMHKSTPDETGTDAVQAAPPPAPAPQAEDQPQAEPQHGSAPRSKPSASVLVRLLSAVAILAAAGGLVTAASLAPQPAGDRTIPAALAAVPAGSSVGVCPGPARLLEGTEAGTDPQFSPESATAASAVTGAVLSAAGGDLPDSRLSALNGTSAVKIGKEAPAGATAGPQDLLAAVVPRHAVDDVSVLSAQAVDNQKASAGALMKYTATDGDLQGAAAANCQQPANDLWLAGASTKVGRTSLLVLSNASTTPATVSLELYGAKGQIHAPGSRGLLVAPGTTRSVVLAGLAPGEAQLSVHVRSVGGPVAAVIQQSVLRGLTPGGVDYIAPGAAPAARQVMTGLDIQEPAGIAAMTGQRGFEDAGPALQLTVPGPSDAVVEVKMFGRDGQQALAGGGVVTAKAGAVTEISLAGVPAGHYTVSASSDVSFVAAARVTRGVNSEQASDVAWSASASRLGSQHVVPVPPGGGRTLVFGALEDRATISYSAITADGTIHGAASADIAGGTTTSIQVPEKVEEAVVVGYVVSASGGAAYGALLLQQDGRDDISTLSLTPAASGQEKVPVTLGYNANANANANA
D1-29_01383414hypothetical proteinATGCGCCGCCGGAACCGGCACGGCCGCGGCCTGCGCGGGGAACTGATGCTGCCCACCCATCCCGGTTACCGGACGCGGTCGGACCGCTTTGACGACATGGTGCTGGACTCCGCGCAGCGGCTCCACGACATCTGGGGCAAGACCCTCGACGGCGTGCGGTTTGCCGTGGACGAGATACCCCCAGAGCTTGAGCGGCTGGTAGCGGACTCAGCCCCGCCACCGATGGGTTCCTACACCCCGGCAACCTCCGAGGAAGGCCCTGTCATCACGCTGTACCGGAGGGTGGTGGAGCAGGGGTGCGCCAGCCGGGAGGAGCTTCAGGACCTGGTCCACGATGTTGTGGTGGAACACACCGCCGAGATGCTTGGCGTGGCACCGGAGACCCTGGACCCTGTTTACCGGCGACGTTACTGAMRRRNRHGRGLRGELMLPTHPGYRTRSDRFDDMVLDSAQRLHDIWGKTLDGVRFAVDEIPPELERLVADSAPPPMGSYTPATSEEGPVITLYRRVVEQGCASREELQDLVHDVVVEHTAEMLGVAPETLDPVYRRRYNANANANANA
D1-29_01384342hypothetical proteinGTGGCTACTCTGACGTACGTCTATGCAGATTCCACCGCTGTACTGGGTCCGCTGGCCACCTACGCTGAGCCGCATTGTTACGATTTGTGCGAGCAGCATGCGGGCTCACTGACCGTGCCGCGGGGGTGGGAAGTCCTGCGCCTGGCGATGCCCAACACGCCGCAACAGCCCGGACCCGACGACCTGCTGGCTCTTGCCAACGCTGTGCGGGAGGCCGCAGCCCTTCCACCGCAGGCGCAGCCGGCCCAGGCCCACCGCTCAATCCATTCAACCCTGGAAGCCCCAGCCCGGACGGATGGCGCCCGCCGCGGCCATCTCCGTGTGCTGCGTGAACCGTCCTGAMATLTYVYADSTAVLGPLATYAEPHCYDLCEQHAGSLTVPRGWEVLRLAMPNTPQQPGPDDLLALANAVREAAALPPQAQPAQAHRSIHSTLEAPARTDGARRGHLRVLREPSNANANANANA
D1-29_01385282hypothetical proteinATGCCAAAGATCCGTCCTGAACTGTTGTCCGTCCTGCGGTGTCCTGTTACGGGATCTCCGTTGGTCCAGGACGGCGAAGAACTCGTCTCGACGGCGGCGGGGGAGTCCGGCGTGAAGCTGCGCTACACGATCGAGGACGGGATACCCCTGCTCCTGCCGCCGGAGCTGCTGCAGGCAGCAAAAGCAGCGGGTTCAGATGAGCACGACGCAGTGGAGCACTATCCGGTTGAGTATTACCAGGCCGGGCATGACCCTGCCGCCGGCGCAGCCCCCACTGCCTGAMPKIRPELLSVLRCPVTGSPLVQDGEELVSTAAGESGVKLRYTIEDGIPLLLPPELLQAAKAAGSDEHDAVEHYPVEYYQAGHDPAAGAAPTANANANANANA
D1-29_013861488ahcYAdenosylhomocysteinaseATGACTTTTGATTACAAGGTTGCCGACATTTCGCTGGCCGAGGCCGGCCGCCATCAGATCCGCCTGGCCGAACATGAGATGCCTGGCCTGATGTCGCTCCGTGAGGAGTTCGGCCCTAGCCAGCCGCTCAAAGGTGCCCGCATCGCCGGTTCGCTGCACATGACGGTGCAGACTGCCGTCCTGATCGAAACACTCACGGCGCTGGGCGCCGAGGTCCGCTGGGCTTCCTGCAACATCTTCTCCACGCAGGACGAGGCTGCCGCTGCGGTTGTGGTGGGCGCCGGAACCGTTGAGGACCCCCATGGTGTGCCTGTTTTCGCCTGGAAAGGCGAGACCCTCGAAGAATACTGGTGGACGGCGGAGCAGATCCTTACCTGGCCGGGCGCGGACACCAACCCTGAACTGGGCCCCAACATGATCCTGGACGACGGCGGAGATGCCACCATGCTGGTCCACAAGGGTGTTGAATTTGAAGCGGCCGGTGCCGTTCCGGCAACGGATGAAGCGGATTCCGAAGAGTATGCGATCTTCCTGGAGGTCCTGCGGGCATCCATCCGGCAGGATCCCCGGAAGTGGACCCGCACGGCGCAGTCCATCAAGGGCGTGAGCGAAGAAACAACAACGGGCGTCCACCGTCTCTACCAGCTGGCGGAGCAGGGCAAACTCCTTTTCCCCGCCATCAACGTCAACGACTCCGTGACCAAGAGCAAGTTCGACAACAAATACGGGATCCGCCATTCCCTGCCTGATGGCCTTAACCGTGCCACTGACGTCCTGATGGGCGGAAAAGTGGCTGTGGTCTGCGGCTACGGGGATGTTGGCAAGGGCGCGGCTGAGGCACTTCGCGGTCAGGGATCCCGCGTTATTGTCACAGAGATCGACCCCATCTGTGCCCTTCAGGCCGCGATGGACGGATACCAGGTGGCCAAGCTGGAGTCCGTACTTGCCCTGGGCGACATCTTCATCACCACCACAGGCAACAAGGACGTCATCATGGCCGAGCACATGGCGGGCATGAAGAACAAGGCCATCGTGGGCAACATCGGCCACTTCGACAACGAGATCGACATGGCCGGCCTGGCCAGGATTCCCGGCATCAAGAAGGTGGAAATCAAGCCCCAGGTCCATGAATGGGTCTTCGAAGGCGACGCCACCGATGGTTCGGCAGCGCGGTCCATCATTGTTCTCTCCGAGGGCCGGCTCTTGAACCTCGGAAACGCAACAGGGCACCCGTCGTTCGTGATGAGCAACTCCTTCGCCAACCAGACCATTGCGCAGATCGAACTGTGGACCAAAAAGGACCAGTCCGATGGCCAGCGCGAGTATGAGAACCAGGTCTACGTCCTGCCGAAGATCCTGGACGAAAAGGTGGCCCGGCTGCACCTTGCTGCGCTGGGTGTCGAACTGACGGAGCTGTCCAAGGAACAGGCCGAATACCTGGACCTGGACGTGGCCGGACCGTACAAGCCCGAGCACTATCGTTACTGAMTFDYKVADISLAEAGRHQIRLAEHEMPGLMSLREEFGPSQPLKGARIAGSLHMTVQTAVLIETLTALGAEVRWASCNIFSTQDEAAAAVVVGAGTVEDPHGVPVFAWKGETLEEYWWTAEQILTWPGADTNPELGPNMILDDGGDATMLVHKGVEFEAAGAVPATDEADSEEYAIFLEVLRASIRQDPRKWTRTAQSIKGVSEETTTGVHRLYQLAEQGKLLFPAINVNDSVTKSKFDNKYGIRHSLPDGLNRATDVLMGGKVAVVCGYGDVGKGAAEALRGQGSRVIVTEIDPICALQAAMDGYQVAKLESVLALGDIFITTTGNKDVIMAEHMAGMKNKAIVGNIGHFDNEIDMAGLARIPGIKKVEIKPQVHEWVFEGDATDGSAARSIIVLSEGRLLNLGNATGHPSFVMSNSFANQTIAQIELWTKKDQSDGQREYENQVYVLPKILDEKVARLHLAALGVELTELSKEQAEYLDLDVAGPYKPEHYRYNANANANANA
D1-29_013871239ldtBCOG1376L,D-transpeptidase 2ATGGAGCCTGAAGTTAAGCCGCGCGCCCGGGGAACGGCCAAGAAGATTCTCCTGGTGGCTGCCGTCTGCGTCCTTGCGGCCACCGGCGGCGTTTTCGCCGCCGTCGCGCCTGGTTTCGCCCCAGGGACCTTGGAGTCGGAGGCGGCTTCAGCCATGCGGTCAGCCCCCGGCCTGGCGTCGCCGGTGGTTCCGCCGCTAAAGCTGGACAGTTCGCCCGCCGATGGTGCGAGGCAAGTTAACCCAGCCACTCCCGTTTCACTCAAGGTCAGCAACGGCAAGATTGAGCGGGTGTCCCTGACCAGCACTGCCGGCGAGGCTATCGAAGGTACGTTCGGCGCGGACGAAACCAGCTGGACGGCACCTGGGCCGCTGAAATTCAACACTGACTACAGCTACACCTATGTGGTTACTGACGGTGCCGGGCGCGAAACCAGCACCACGCACTCTTTCAGTACTGTTGCCAGCACCCACGAAGCGGACGCCGCCATCTATCCGCTCGACGGCATGAAAGTAGGAGTGGGCCAGCCCCTCCAGATCATCTTCAGTGAGCCGGTACTCAACAAGGACGCCGTGGAAAAGGCCATCAAGGTCACCTCCACGGCGGGCCAGACCGGGGCCTTCCATTGGTTCAGCGACACCATGGTCCGCTACCGTCCCGAGGCGTTTTGGACCGCCAATTCCACCATCACCATGGACATGCAACTCTTCGGTGTTGACCTCGGCAACGGTCAAATCGCCAACTTCAATAAAAAGGTCAACGTTGCCATCGGCGATAAGCGGGTGGCCATAGCCGACGCCGCCGCCCACACCTTCACGTTGAGCATTAACGACCAGGTGGTTAAGACGCTGCCTGTCAGCATGGGCGACGAACGCTTCCCGTCGGCCCGGGGCTACGCGGTGCTGATGGAAAAGAACCGCCATGACCACTTCAGGGCGGCCAGCATCGGCCTCAAGCCCGGCGACCCCGCCTACTACGGCGAAGTGGACGTGGAGTACGCCATCCGGCTCACCCTTAGCGGTGCGTACATCCACCAGGCCCTGGAATCGGCCTTCCCCTACATCGGCAACAAAAATGTCTCGCACGGCTGCATCGGATTCGCTCCCGACGGCGCTGCCTGGGTCTTCGGTGCCATGACCACCGGAGACGTGGTGCAGATCGTTAACACCGAGGGTGACTACGCTGCCCACGATGACGGCTACGGCGACTGGAACATCCCGTGGGCGGAGTACGACAACTAAMEPEVKPRARGTAKKILLVAAVCVLAATGGVFAAVAPGFAPGTLESEAASAMRSAPGLASPVVPPLKLDSSPADGARQVNPATPVSLKVSNGKIERVSLTSTAGEAIEGTFGADETSWTAPGPLKFNTDYSYTYVVTDGAGRETSTTHSFSTVASTHEADAAIYPLDGMKVGVGQPLQIIFSEPVLNKDAVEKAIKVTSTAGQTGAFHWFSDTMVRYRPEAFWTANSTITMDMQLFGVDLGNGQIANFNKKVNVAIGDKRVAIADAAAHTFTLSINDQVVKTLPVSMGDERFPSARGYAVLMEKNRHDHFRAASIGLKPGDPAYYGEVDVEYAIRLTLSGAYIHQALESAFPYIGNKNVSHGCIGFAPDGAAWVFGAMTTGDVVQIVNTEGDYAAHDDGYGDWNIPWAEYDNNANANANANA
D1-29_01388801hypothetical proteinTTGAGTTCGATCGTTACGGGCGAGGCCGTTGTCCTGGAGTTGCGCCCCGCATCCTTCGCGGCCCGGGGCCTGGGCCTAATGCTGGATTTCATGTTCAACGTGGTGCTGCTCATTGTGATCCTGATTGGCGTCGCAGCTGCCGGACCCGAACTTGATGAGGCCGCGATGCGCATGCTGATCCTTGTCAGCGTGGTCTTTTGCTTCGTCATTGTCCCGGTTGGTTTGGAAACCCTGAGCCGGGGGCTATCGCTGGGGAAACTGGCCGCGGGGCTGAGAATTGTCCGTGATGACGGCGGAGCCATCCGGTTCCGTCATGCCCTGATTCGGGGCCTGGCCGGCTTCCTGGAAATTTACCTCACGCTCGGCGGACTGGCCATCGCCGTGGCCCTGTTCAACGACAAGTCCAGGCGCCTGGGGGACATCATGGCGGGAACCTACGCCCTGCGAACCCGGGTACCCGTTGAAGGGGCAGTCCGGGTTTTCGTCCCCCCTCATTTGAAGGCATGGGCGGCAGTGGCTGACATCGGACGGATCCCTGATGCCACAGCCCGGCAGGCCACGCAATTCATCCGGCAGGCAGCCCTGATGTCTCCGCTGTCCAGGAACGGCATGGCCGCCACGATCGCGACCGAGCTGGCAGCCCACGTTGCCCCTGCTCCGCCGCCCGGAACCAGTGCCGGCGATTACCTTGCTGCTGTCATCGCCGAGCGCCGTAACCGCGACTTGACGAAACTTCAGCACGCCCGCCGCCGCAACTCGAAAGTTGGCGAACGGCTGGACCGCCTGCCTTTCAGTTCCTAGMSSIVTGEAVVLELRPASFAARGLGLMLDFMFNVVLLIVILIGVAAAGPELDEAAMRMLILVSVVFCFVIVPVGLETLSRGLSLGKLAAGLRIVRDDGGAIRFRHALIRGLAGFLEIYLTLGGLAIAVALFNDKSRRLGDIMAGTYALRTRVPVEGAVRVFVPPHLKAWAAVADIGRIPDATARQATQFIRQAALMSPLSRNGMAATIATELAAHVAPAPPPGTSAGDYLAAVIAERRNRDLTKLQHARRRNSKVGERLDRLPFSSNANANANANA
D1-29_01389993hypothetical proteinGTGGATATGGATGCCTTCTCCGCTGTTAATGGGGACAAATGGTCGAGACTGCATGAACTCGCCTTTAAGCGGCGGCTTACCGGGGAGGAAGCCGACGAACTGCTCCGCCTCTACCAGGCAACGTCCGCGCATCTTTCCCTGATCAGGTCACTGGCTCCCGAAAGCGGCCTGTCGGCGTCCCTGTCTGCCACTCTGGCCCAGGCGAGAACAAGATTCACCGGGGCGCGGTCAAATTTCATGGCTGACCTCGCCCGGTTTTTTGTGATTGCGTTGCCCGCGGCGCTGTACCGCATCACCTGGCTGACCCTGGCCTGCGGTGCCGCGTTCATCCTCATTGGCGGTGCCTACGCGCTGTGGATCGGAAGCTCACCGGAGGCTCTGCGGTCACTGGCCTCCGATTCCGCCCTCAAGCAGTACGTGGAGGAGGACTTCATTGACTACTACTCCGAAAATCCGGCGGCATCCTTCGCCGGTTTGGTGTGGACCAACAACGCGTGGATCAGTGCACAGGCGGTAGCCCTTGGCATCACCGGAATCTGGGTGCCGATGATTCTGTTCAGCAATGCCCAAGGCGTGGGAATCGCTGCCGGAATCTTCGCCGCGGCAGGGAAGTCCGATGTCTTCTACAGCTACATCCTGCCGCACGGACTGATGGAACTGACGGCGGTGTTCATCGCCTGTGCGGCGGGCCTGCGCATCTTCTGGGCCATGGTTTCTCCGGGCCCGCGTACCCGGGGGCGCGCCGTGGCAGAGGAAGGCAGGTCCTTGGTGACAGTAGCCCTTGGGCTGGTCCTGGTCCTCTTCGTTTCCGGCCTGGTGGAAGGGTTCGTCACGCCCAGCCCGCTGCCCGTATGGGCCAAGCTGGGGATCGGCTCAGCCGTGCTTGGAGCATACTGGCTGTACGTTCTGGTGTGGGGCCGTCGGGCGTATCTGTCCGGCGCCCGCGGAGACCTCAGCGCCGACGAGGGCGGATACACCGAAATAGCTGCGTGAMDMDAFSAVNGDKWSRLHELAFKRRLTGEEADELLRLYQATSAHLSLIRSLAPESGLSASLSATLAQARTRFTGARSNFMADLARFFVIALPAALYRITWLTLACGAAFILIGGAYALWIGSSPEALRSLASDSALKQYVEEDFIDYYSENPAASFAGLVWTNNAWISAQAVALGITGIWVPMILFSNAQGVGIAAGIFAAAGKSDVFYSYILPHGLMELTAVFIACAAGLRIFWAMVSPGPRTRGRAVAEEGRSLVTVALGLVLVLFVSGLVEGFVTPSPLPVWAKLGIGSAVLGAYWLYVLVWGRRAYLSGARGDLSADEGGYTEIAANANANANANA
D1-29_013901215hypothetical proteinGTGAACGACAAGACCCCTGCCAAACGCACGGAGCCGCAGCCGGATCCCGTCCTGGACACCACCGGGGACTCGGACGAGCCCGCATTTGAGTGGATGAAGGCTCCAGAACCCAGCACGCCGGCTGCCAGCACGCCGGCGGCCGGCAGGTCAGGCAGCACGGCTGCGCAAAGCGCGGCTGCACAAGGTGCGGGAGCGCAGGGTGCGGGACCCCGGGGCGCGGGCGGCGGAACGGGAGCAACGCAGGGCGGCAGTTCCGAAGCCGCCGCAGCACCACAGGCCGAAAGCCGGGCTGACCGCAAAGCAGCGGAAGCCGCCGTCGAACCTTCCGCGGGAGAGGCTGCCGGCGCCCAACCTGCCAAGACAGTCAATCCGGCCGGAAAAGGCCAGGAGCCGCTGTTCAGTGAACCGCTGCCCACGTCCGCTCTCCAAGTGCGGCCTCCGCAGGAGGAAGTAGAGCGGCGGAACGCCGAACGCGAAAGCGCGGCGAACGCCAAGCCGGTGGTGCCGCGCGTCATGCAGGTCCTGCTGGCAGTCTTCTATCCCATCATCCTGTTGGTACTGGCGGTCCGGGCAGTGACCAGCCCGCTGTTTCTTTGGGTGGAGTACAACCGCCCGGGGTTCCCCGGTGACGGCTACGGCTTCAGCACTGACGACAGGATGACCTACGGGTCCTACGCGGTGGACTACTTGAGTAACTGGGCTGCGCCGCGGTACCTGGGCGAGCTGGTCAACAGGAGTGGCGACAGGCTGTTCAAAGAGGGCGAAGTCAGCCACATGGCTGATGTGAAGCTCGTGATCCTTTCCACTTTTGGTGCCGGCGCTCTGCTGGCCATTCTGAGTATCATCGCCATTGCCTACCTTCGCCGCCGCAGCATCGGGGGAGTGCGCAGGGGCCTGTTTGCGGGCTCCATCGTAGCCTTGGTGATCATTCTGGGCCTGGGTGCCCTGGCGGTGCTGGGCTGGCAGCAGTTCTTCACGGAGTTCCACCGGATCTTCTTCGCCAGCGGGTCATGGACGTTTGCCCTGGAAGACACCCTGATCAGGCTGTTCCCGGGCCAGTTCTGGATCGACGCCGGTATTACCATCGCTGCGCTGGTCCTTCTTGTCGCGCTGGTGACACTGATCCTGACGTGGCCCACCCGCCGCCGGCGCGGTCTGGTCAAAGCCGGGCGCAAAGATTCGGAGCCGTCGGTGGTAGCGGCAGATCAGCCGTAAMNDKTPAKRTEPQPDPVLDTTGDSDEPAFEWMKAPEPSTPAASTPAAGRSGSTAAQSAAAQGAGAQGAGPRGAGGGTGATQGGSSEAAAAPQAESRADRKAAEAAVEPSAGEAAGAQPAKTVNPAGKGQEPLFSEPLPTSALQVRPPQEEVERRNAERESAANAKPVVPRVMQVLLAVFYPIILLVLAVRAVTSPLFLWVEYNRPGFPGDGYGFSTDDRMTYGSYAVDYLSNWAAPRYLGELVNRSGDRLFKEGEVSHMADVKLVILSTFGAGALLAILSIIAIAYLRRRSIGGVRRGLFAGSIVALVIILGLGALAVLGWQQFFTEFHRIFFASGSWTFALEDTLIRLFPGQFWIDAGITIAALVLLVALVTLILTWPTRRRRGLVKAGRKDSEPSVVAADQPNANANANANA
D1-29_013911854COG1022Long-chain-fatty-acid--CoA ligase FadD15GTGATGCTGCGGAACGGAGACCCGGTGAGAGAAGCAAGTACGGAACTGCTGGTGGAACTCACCCCGGACAGCAACGTGACAGATCTCCTGCTGGAGCAGCGCACCACCAACCCGATGCACGCGCTTTATGCCCGGCGGGGGCCCAACGGGTGGACCGACATACCGGCGCAGAAGTTCCTCCATGATGTCAGCGCGCTCGCGAAGGGCCTCATCGCAGGTGGCCTGGAGCGGGGTGACACCGTAGCCGTCATGTCAGCAACCCGGTATGAATGGACCCTGGTGGACTTCGCCATCTGGTTCGCAGGAGGCGTCACCGTCCCCGTGTATGAAACGTCGTCGGCCGCCCAGGTGGAGTGGATACTCCACGACTCCGGAGCGCACCGGGTGTTTGCCGAGGACAGCGGAAAGGTGGAGCTGGTCCGGCACATCCTGGATACGTCCGCTTTGCTGAAAGACCGGCTGGTGAACGTCGTCAGGATGGACTACGACGGCGACGCCCCCAATCTCGCCAGCCTGGCTGCCGCCGGCGCCGGAGTCACGGAAGCCGAACTTGAACGGCACCGCTCGGCAGCAGGGCTGGATGATGTTGCGTCCCTGGTGTACACCTCCGGAACCACAGGCAAACCCAAGGGATGCGAAATCACCCACGGCAACTTCGCCCTGGTTGCCGTCAACATCGTCGCCTTCCTTCCTGAGCTGCTGAGGCAGGAGCACGCCAGGACGCTGATGTTCCTTCCGCTGGCGCACGTCTTGGCGCGCGCGGTCCAGGTGGTGTGCCTCAGCGCGGGAGCCACGCTGGGTCACACTGCCAACGCCGCACAGTTGCTTGCGGATATGGGAACGTTCAGGCCCACCTTCCTCCTGGTGGTTCCGCGTGTCTTCGAAAAGTTGCGCGCCGGCTCGGCCCGCCAGGCTGCCGCGGCAGGGAGGGCCGGGGCCTTCAGCGCCGCGTCGTCCGCAGCGGTCCGGTACTCAAGGGAACAGGACCTGGCCGCCCGCGGTGAGGGCGCCGGGCCGGGCATGCTTTCCCGCGTACGGCATGGATTGTTCGACAGACTGGTGTATCCCAAGCTCCGCCAAGCCCTCGGCGGCCAGGTTCGCTACACCGTTTCGGGCGCCAGTCCGCTGCATCAGGACGACGCACATTTCTTCCGCGGTGCCGGCATCCCCGTCCTGGAGGGCTACGGGCTGACGGAGACAACGGCGCCCTGCACTGTGAATACGCCCACCCGCACCAAGGTGGGCAGCGTGGGCATCCCCGTTCCGGGCACCACCATCCGCGTCGCCGAGGACGGCGAAATCCTGGTGAAGGGCATCGGCGTCTTCAGGGGATATCACGCCAACGAAGCCGCCAATGCTGCGGCGTTCGTGAACGGCTTCTTCCGCACCGGTGACCTCGGCAAACTTGACGCCGAAGGCTTCCTGACCATCACGGGGCGCAAGAAGGACCTCCTGGTGACTGCAGGTGGCAAGAACGTGGCACCCGGTCCGCTGGAGGAAAAAATCCGCGAGCATACGCTGGTCAGCCATGCTGTTGTGGTGGGAGACGGAAAACCGTTTGTTGCCGCCCTTGTCACCCTTGATCCGGACGGGCTGGAAAGCTGGTGCAGGGAGCACAAACTGCCCGCCTTGACGCTTGCCGACGCCACCGCCGATCCCCGGGTCCGCGCAGCCATCCAGGACGCCGTCAATAGCGCAAACGCGCTCGTGTCCAAGGCGGAATCAGTGCGCAGCTTCTCGGTGCTGACAGCGCAGTTTACCCTTGAATCCGGCCACCTGACGCCCTCGCTCAAACTGAAGAGGGCCGCCGTCGTCCGCGATTTTGAAGGCGAGATCGCCAGGCTTTACGGCTGAMMLRNGDPVREASTELLVELTPDSNVTDLLLEQRTTNPMHALYARRGPNGWTDIPAQKFLHDVSALAKGLIAGGLERGDTVAVMSATRYEWTLVDFAIWFAGGVTVPVYETSSAAQVEWILHDSGAHRVFAEDSGKVELVRHILDTSALLKDRLVNVVRMDYDGDAPNLASLAAAGAGVTEAELERHRSAAGLDDVASLVYTSGTTGKPKGCEITHGNFALVAVNIVAFLPELLRQEHARTLMFLPLAHVLARAVQVVCLSAGATLGHTANAAQLLADMGTFRPTFLLVVPRVFEKLRAGSARQAAAAGRAGAFSAASSAAVRYSREQDLAARGEGAGPGMLSRVRHGLFDRLVYPKLRQALGGQVRYTVSGASPLHQDDAHFFRGAGIPVLEGYGLTETTAPCTVNTPTRTKVGSVGIPVPGTTIRVAEDGEILVKGIGVFRGYHANEAANAAAFVNGFFRTGDLGKLDAEGFLTITGRKKDLLVTAGGKNVAPGPLEEKIREHTLVSHAVVVGDGKPFVAALVTLDPDGLESWCREHKLPALTLADATADPRVRAAIQDAVNSANALVSKAESVRSFSVLTAQFTLESGHLTPSLKLKRAAVVRDFEGEIARLYGPGPT0008380_5296DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_013921731pmtCOG1928putative dolichyl-phosphate-mannose--protein mannosyltransferaseATGGGGCACGTGACGCAGACCTCCACGCTGCCTGCCGAGGCCGGCCGAGCCGCCCCGGAGGCATCCATACCAGGTTCCCCCGAACGCGCCGCCCAAGGCGGCCGTGTTGCCGGCCGCCCTTGGATAAGGCGCCCGGCCGGGTCTTTCTCTGCGGCGTCCTTGGAGGAACGGCTCGTGGGGAGTGTTCCGGGCTGGCGCGACTACCCGCCCTCGCTGCGGCTGTGGTTCTGGCTGGTCCCGGTGCTCACCTCGGTCATAGGCGGAATCCTTCGCTTTGTCCGGCTGGACAGACCACACAGCCTGGTCTTTGACGAGACGTACTACGTCAAGGACGCCTATTCGTACCTGATCAGCGGCTATGAACGGAACTGGCCGGACAAAGCCAACGACTCCTTTAACGCCGGGAATCCGAACATACTCCTGGAGACTCCGGAATACGTGGTGCATCCTCCGGTGGGGAAATGGATGGTCGCCTTCGGCATGTGGCTTTTCGGTTCGGACAATCCGTTCGGCTGGCGTTTCGCAGCTGCGTTAACCGGCACCGTGTCCATTCTGTTGGTCACGCTCATTGCGCAGAAGTTGTTCCATTCCCTTCCCCTGTCAGCTGCTGCGGGGCTGCTTCTTGCGGTGGATGGCCATCACCTCGTGATGTCACGGACCTCGCTGCTCGATATCTTTTTGATGTTCTGGGTCCTGGCTGCCTTCGGAGCGTTGCTGATGGACCGGGACGACGGCCGGCGCCGCCTTGCCCGGAGATTGGCCAACCTGGCCGGCACGGCCAGGGACGGCCGGCCCTCGGCCAAACAGCTGCTGGCGGGCCCATGGCTCGGTATCCGGTGGTGGCGGGTTGTTGCCGGAGTATGCCTGGGCCTGGCGGTAGGGACAAAATGGTCAGGCCTGTTCTTCCTTGCCGGCTTCGGGCTGCTCTCCGTCGTGTGGGACCTTAGCGCCCGGCGTGTCGCCGGAGTGCGGGGCTGGTTCAGCGGCGGCATCATCAAGGATGGGGTGCCGGCATTCCTCACCATCGTCCCCGTGGCCGCCCTGGTATACGTCGCCGGCTGGACAGGCTGGATCCGTTCCGACGACGCCTACTTTCGCCACTGGGCGGAAGAAAATCCGTCGGCGGAGTGGGGATGGCTGCCCGACTGGGTCCGGTCCCTGGCCCACTATCACCTTGAGGCGTACAACTTCCACCAGGGACTGGGCTCCGAGCACCCCTACGAGGCAAGTGCCTGGAGCTGGCTGGTGATGGGCCGGCCAACCTCATTCTTTTATGAGTCGCCCCAGCAGGGCACCCCCGGGTGCAACGTAGCCAACTGCACGTCGGCGATCCTCTCAGTGGGAAATCCCCTGGTCTGGTGGGCTGCCACCGTCTCCCTGGTGGTGCTCCTGTTCTGGTGGGCCGGACGAAGGGACTGGCGGGCGGGAGCGGTGCTGGCTGCCGTCGGCGCGGGCTACCTGCCGTGGTTCCTGTATCCGGAGCGCACCATGTTCTACTTCTATGCAGTCTCTTTTGAACCTTTCCTGGTGCTGGCCCTTGTCTACTGTCTGGGCCTCGTCCTGGGCCGGGCCGGTGATCCGCCCTGGCGCAGGCGCGCCGGGTTCTACCTGGTGACGCTTTTCCTGGCCTGCGTAATCCTGCTTTCGGCCTTCTTCTATCCGGTGTGGGCCGCCGAAATCATCCCCTACCAGGACTGGCGGTTCAGAATGTGGATGCCGTCCTGGATCTAGMGHVTQTSTLPAEAGRAAPEASIPGSPERAAQGGRVAGRPWIRRPAGSFSAASLEERLVGSVPGWRDYPPSLRLWFWLVPVLTSVIGGILRFVRLDRPHSLVFDETYYVKDAYSYLISGYERNWPDKANDSFNAGNPNILLETPEYVVHPPVGKWMVAFGMWLFGSDNPFGWRFAAALTGTVSILLVTLIAQKLFHSLPLSAAAGLLLAVDGHHLVMSRTSLLDIFLMFWVLAAFGALLMDRDDGRRRLARRLANLAGTARDGRPSAKQLLAGPWLGIRWWRVVAGVCLGLAVGTKWSGLFFLAGFGLLSVVWDLSARRVAGVRGWFSGGIIKDGVPAFLTIVPVAALVYVAGWTGWIRSDDAYFRHWAEENPSAEWGWLPDWVRSLAHYHLEAYNFHQGLGSEHPYEASAWSWLVMGRPTSFFYESPQQGTPGCNVANCTSAILSVGNPLVWWAATVSLVVLLFWWAGRRDWRAGAVLAAVGAGYLPWFLYPERTMFYFYAVSFEPFLVLALVYCLGLVLGRAGDPPWRRRAGFYLVTLFLACVILLSAFFYPVWAAEIIPYQDWRFRMWMPSWIPGPT0024545_1279DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_MANNOSYLTRANSFERASE_ACTIVITY,PGPT0024545-pmt-K00728NANA
D1-29_01393954rsmICOG0313Ribosomal RNA small subunit methyltransferase IGTGGACCCTAACCCCAGCACAGTTGCCGATACCAGCACCGAATCTCCCGGCCAATCAGAAACCCCCAGCCAGTCAGAACCCGCCCTTTCGGAATCCAGCTCCCCGGGGAGGGTGGCCGCAGGCCCGGGCAGGGTGGTACTGGCAGCTACCCCCATTGGAAACACAGGGGATGCCTCGGCCCGCCTGATTGAGTTGTTGGCGTCGGCCGATATTGTTGCCGCGGAGGACACCCGCCGCCTGCACCGGCTGGTCCAGAGCCTCGGTGTCACCGTGGGCGGCCGCATCATCAGCTACCACGAGCACAACGAGGCAACAAAAACAGCCGAACTCCTGGATCAGGTGAAGGCGGGAAAAACCTTGGTAATGGTCACCGACGCCGGCATGCCGTCCGTTTCGGATCCCGGTTTCCGTTTGGTGGAAGGCGCCGTGGCTGCCGGTCTCACGGTGACCGCCATCCCCGGACCATCAGCCGTCCTGACGGCGCTTGCCCTGTCAGGACTGCCAACAGACAGGTTTTGTTTTGAAGGATTCCTTCCGCGGAAAGCAGGTGAACGGTCCACCCGCCTTGCCGACCTCGCTGCCGAACGCCGGACCATGGTGTTTTTTGAGGCTCCGCACCGCCTCGAAGCAATGCTGCGGGCATTGCGCGAGCGTTTCGGTTCCGACCGGCGGATCGCTGTTTGCCGCGAACTGACGAAGACCTACGAGGAAGTGATCCGTGGGTCCGTTGGCGAACTGCTTTTGTGGGCAGAGGGCAACGAAGTGCGGGGTGAGATTGCCGTTGTGCTCGCCGGGGCACCTGACCAGGCACCGGGCACTCCCGAGGATTACGTGGAGGCCGTCAACGAACTTGTGGCACGGGGCATCCGGCTTAAGGAGGCGGTGGCTGCTGTGGCGGAAGACGTCCGGGTGAGTAAGAGGGAGCTTTACTCGGCGGTCCTAGCGGCACGCTGAMDPNPSTVADTSTESPGQSETPSQSEPALSESSSPGRVAAGPGRVVLAATPIGNTGDASARLIELLASADIVAAEDTRRLHRLVQSLGVTVGGRIISYHEHNEATKTAELLDQVKAGKTLVMVTDAGMPSVSDPGFRLVEGAVAAGLTVTAIPGPSAVLTALALSGLPTDRFCFEGFLPRKAGERSTRLADLAAERRTMVFFEAPHRLEAMLRALRERFGSDRRIAVCRELTKTYEEVIRGSVGELLLWAEGNEVRGEIAVVLAGAPDQAPGTPEDYVEAVNELVARGIRLKEAVAAVAEDVRVSKRELYSAVLAARNANANANANA
D1-29_013941554sad_2Succinate-semialdehyde dehydrogenaseTTGCCGGCCTCCTGCGCGCAGGCTGCAAACAACCTTACTGACGAGGGAGTCATCGTGACTGTCACTGCACCGCCAGCTGTTACCTCAAAGCGCGAGAGCGAGTTGCTGGCCTCTGTTCCCACTGGCCTGCTCATCAATGGTGAATGGCGGCCTGCCGCTTCCGGAAAGACCTTTGACGTTGAGGATCCTGCCACCGGCAAGGTCCTGTTGAGCATTGCCGACGCCGGTCCTGAGGACGGCAGGGCGGCGCTGGATGCTGCCGCCGCCGCGCAGGAATCCTGGGCGAAGGTTCCGCCACGCGAACGCGGCGAGATCCTGCGCCGCGCCTTTGACCTGGTCACCGAACGCGCCGAGGATTTCGCGCTGCTGATGACCATGGAGATGGGCAAGCCGCTGGCCGAGGCCCGCGGCGAGGTCACCTATGGTTCCGAGTTCCTGCGCTGGTTCTCCGAGGAAGCCGTCCGTGCCTTTGGCCGCTACTCGGTCTCCCCGGACGGAAAGTCCCGGCTGCTCGTCACCAAGAAGCCCGTGGGCCCCTGCCTGCTGATCACGCCGTGGAACTTCCCGCTGGCCATGGCCACCCGCAAGATCGCCCCGGCCGTCGCCGCCGGCTGCACCATGGTCCTGAAGTCCGCGAACCTCACCCCGCTGACCTCCCAACTGTTCGCCGCGGTCATGCAGGAGGCTGGGCTGCCCGCCGGCGTCCTGAACGTCATCCCCACCTCCACGGCCGGTGCCACCACCGGTCCGCTGATCAAGGACCAGCGCCTCCGGAAGCTGTCCTTTACCGGCTCCACCGAGGTGGGCCGCCGCCTGCTGGCCGACGCCTCGGAAACCGTGCTGCGTACCTCCATGGAACTGGGTGGCAACGCCCCGTTCGTGGTCTTCGAGGACGCCGACCTGGATGCCGCCGTCGCCGGGGCCATGCTGGCCAAGCTGCGGAACATGGGCGAGGCCTGCACCGCGGCCAACCGGTTCATCGTGCACGAATCCGTGGCTGAGGAATTCGCCGAGAAGTTCGCCGCGAAAATGGCGGAGATGACCACCGCCCGCGGCACCGAAGCCCAGTCCAAGGTGGGCCCGCTGATCGACGCCAAGAGCCGGGACAAGGTCCACGAACTGGTCTCTGACGCCGTGGCGTCGGGCGCCCGGGCGGTCCTGGGCGGCGCACCTGTGGAGGGGCCGGGCTATTTCTACCAGCCCACCATCCTCACCGGTGTCACCGAGGGCACCCGGATCCTGTCGGAGGAGATCTTCGGCCCCGTGGCCCCGATCACCACGTTCGGCTCCGAGGCCGAAGCCGTCCGGCTGGCCAACAACACCGAATACGGCCTGGTGGCCTACGTCTTCACCAGGGACCTGAACCGCGGCATCCGGATGGGCGAGAAGCTTGAAACCGGCATGCTGGGCCTTAACGCCGGAGTGATCTCCAACGCAGCTGCACCCTTTGGCGGCGTCAAGCAGTCCGGCCTGGGCCGCGAAGGCGGGCTCGAAGGCATCGAGGAATACCTTTACACCCAGTACATCGGCATCGCCGACCCTTACGCCGGCTGAMPASCAQAANNLTDEGVIVTVTAPPAVTSKRESELLASVPTGLLINGEWRPAASGKTFDVEDPATGKVLLSIADAGPEDGRAALDAAAAAQESWAKVPPRERGEILRRAFDLVTERAEDFALLMTMEMGKPLAEARGEVTYGSEFLRWFSEEAVRAFGRYSVSPDGKSRLLVTKKPVGPCLLITPWNFPLAMATRKIAPAVAAGCTMVLKSANLTPLTSQLFAAVMQEAGLPAGVLNVIPTSTAGATTGPLIKDQRLRKLSFTGSTEVGRRLLADASETVLRTSMELGGNAPFVVFEDADLDAAVAGAMLAKLRNMGEACTAANRFIVHESVAEEFAEKFAAKMAEMTTARGTEAQSKVGPLIDAKSRDKVHELVSDAVASGARAVLGGAPVEGPGYFYQPTILTGVTEGTRILSEEIFGPVAPITTFGSEAEAVRLANNTEYGLVAYVFTRDLNRGIRMGEKLETGMLGLNAGVISNAAAPFGGVKQSGLGREGGLEGIEEYLYTQYIGIADPYAGPGPT0001580_765DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_013952433hypothetical proteinATGGCGGGGGCGGTGGCCTTTTCGGTGGCGGGCGCTGCGCTGTCGCTCAACGGCGTCCTGAGGGGCTGGGCCTGGTTTCCGCCCGTGCTGACCACGGTTTTTGTGGTGTGCATTACCCTGGCTGCCCTGCGTGCCCTCAAAGCCCAGCCACTGGTGGTTACTGCAGGCGGGTTCGCGGCACTGGGCGGCATCCTGACGTTTACGTTCTTCAGGGGTTCCAGCATTGCCGGATTCATCCCGTCGGGGAACACCATAACGGAGCTAAACCGTTTCATCCGCCGTGCCAGCGAGACGGTGCTGGCCGAAAGTGCCCCGGTGGCGCCCAACGCCGGGATTGTGATGGTCACGTGCGCCGTCCTGGGGCTGACGGTCATCCTCATCGACGCCCTTGCGATCCCATTGGGCATGCCGGCCACCACGGGGCTGGGACTCCTGGCCATCCTGGTTGTTCCGGCGATGGTGAAACCGCAGAGCGTGGGCATTTTGGGCTTCCTCGCCACTGTGGCCGGCTACCTGCTGATTCTGGCCTGCAGTCAATGGTTCGCCCCTGATGCCCGGATACCGGCTGACACTGCACGGAACCCAGGGCAGTTCAAAAGGGCCGCGCTGACGGGGACGGCTGCCCTTGTTGCCACCATCCTGATTCCCTTCGCCATACCGGGTTTTGACCAGGGGACTTTTCCGCAGGGCTCCCGGGTGAACCCCTGGGGTACGTCCACGGGCCTGAATCCCATGATTACCCTTGGCAATAGCCTGCGCACTCCCAGCGGCAGCGGGCGGATCACCTACGCGACCAATGCCACGGCACCGCTGTACCTCCGCTCAGTGACTGTGGACAATTTCGACGGCGACTCCTGGGGCCCGGACGACAGGGACGGGTCCCGGCGGCCTGTGGCGGACGAGCTTGAAACCGGGTACGAGATCCTTGCCGACGAACAGCTCCGGCAGGTCACGGCAGTGGATACGGGCAGCTTTACGAGCCCCTACCTTCCGGTGCCCTATGCACCCGAATCGATTCGCGGGCTCAGCGGCCGCTGGACCTGGGATCCTTCCACCCTCAGCATCAAAGGCAACGATACAAATTCCCGGAGCCAGCAGTACATTGTGGTCTCCTCGGCACCAAAGCTGACGGCCCAAGCGCTGGATCAGTCATCAGGTCAGGTCCAGGGAATATCCGATGACTTCACGAGGGTTCCCGGCAACGTTCCTGACATTGTGAGGACAACGGCGGATTCCGTGACAGCTTCCAGCGACACTGCCTACGCCAAGGCGATGGCTATCCAGAAGTACCTCCGCTCGGCTGAGTTCACTTATTCGCTGCAATCCCCCGTCCAAGGCGGCTACGACGGAAACGGGCTCTCGGTCCTGGCGGATTTCCTGTCCCAGAAAAGCGGGTACTGCGTCCACTACGCCTCAGCCATGGCCGTGATGGCCCGGCTGGAAGGCATCCCCAGCCGCATTGCAGTGGGCTACGCCCCGGGCAGGCTGACGGGGGCCACCGTTCCACTTGTCGGTGTCGGCACGTTGCCGGAGTTTGAAGTGGACGCCCGGGACGCCCATGCTTGGCCCGAACTGTATTTCCAGGGCCTCGGCTGGGTCCCGTTCGAACCCACCCCCTCACGCGGTGTGGTCCCGGAATATGCAACGGAAACCTTCACCCCGGGTGCCGGAAGCCTGGACAACAATGACGATCTCCTTGCATCCAACGCCCCCGTTCCGGCTCCCACCCCAACCGCTACCCCGCTGCCTGTGCCGGGCGCAGGCGGCGGCAACGCCGGCGGAACGGACCTCCTGCCCTGGCTGCTGTGGAGTGCCGCGGGCCTTGGCCTCTTGCTCGTTGCAGCATCCCCCCGGCTGATCCGCATGGGCGTGCGGGCGGGACGTTTGAGAAGTACGGGCACCACCGCGGACGACGCCGTTCCTCCGGCCTGGTCTGAGCTCCTTGACCTGGGCACGGATTACGGGTTGTCCCCGTACCCGAGCGAGACGCCCCGGGCATACTCCGCCCGGCTGCGCAGCTCCTCCCTGATGGGCCAGGCCGGCGGAATGGACGAGGCCGGTCACCAGGCCGTTATGACGCTGACCGCCGATTTCGAACGACGGAGGTACGGGCGCCCGCAGCCGGAGGCTTCACCTGAGACGGACAGTGCACCGGCAGCCACCGCGGCCCGCCAGTCCTCCCCGGGCCACGCCGGCAGGACGGAATCGACCGCTCTTCGCATTGCGGCCATTCAGCGCTCCCTGCGCGCAAACGCCCGGCGGTCCCGGCGGCTGCGGGCCGATTGGCTGCCGCCGTCGATCCTCGGACGCCTCGGACGCATGCTGGCTTCCCCCTTCAGGGCAGTGGGCAGCCTGGTCCAATGGACGGCGAAAGCCGCCGCGCACTCGTGGATGAGAGCACGCGACGGCTTGCGGCGTTTGCGCGAGGGCTAGMAGAVAFSVAGAALSLNGVLRGWAWFPPVLTTVFVVCITLAALRALKAQPLVVTAGGFAALGGILTFTFFRGSSIAGFIPSGNTITELNRFIRRASETVLAESAPVAPNAGIVMVTCAVLGLTVILIDALAIPLGMPATTGLGLLAILVVPAMVKPQSVGILGFLATVAGYLLILACSQWFAPDARIPADTARNPGQFKRAALTGTAALVATILIPFAIPGFDQGTFPQGSRVNPWGTSTGLNPMITLGNSLRTPSGSGRITYATNATAPLYLRSVTVDNFDGDSWGPDDRDGSRRPVADELETGYEILADEQLRQVTAVDTGSFTSPYLPVPYAPESIRGLSGRWTWDPSTLSIKGNDTNSRSQQYIVVSSAPKLTAQALDQSSGQVQGISDDFTRVPGNVPDIVRTTADSVTASSDTAYAKAMAIQKYLRSAEFTYSLQSPVQGGYDGNGLSVLADFLSQKSGYCVHYASAMAVMARLEGIPSRIAVGYAPGRLTGATVPLVGVGTLPEFEVDARDAHAWPELYFQGLGWVPFEPTPSRGVVPEYATETFTPGAGSLDNNDDLLASNAPVPAPTPTATPLPVPGAGGGNAGGTDLLPWLLWSAAGLGLLLVAASPRLIRMGVRAGRLRSTGTTADDAVPPAWSELLDLGTDYGLSPYPSETPRAYSARLRSSSLMGQAGGMDEAGHQAVMTLTADFERRRYGRPQPEASPETDSAPAATAARQSSPGHAGRTESTALRIAAIQRSLRANARRSRRLRADWLPPSILGRLGRMLASPFRAVGSLVQWTAKAAAHSWMRARDGLRRLREGNANANANANA
D1-29_013961440hypothetical proteinATGGCGATTCTGGACCGGCTGCCCCGGCATCTCTTCAGCCAGCGCGGCTGGGGGCTTTTGGCTGCCGGCGCTGTTTCCCTGGTATCAGCCCAAATCATGGGCCGGCGCGATCTTCTGAGCCTGAGTGTCCTGCTGATTATCCTGCCGCTGGTGTCCCTCGCCGGAATCAGGCTTGTCAAACCTCGTTTCCAGGTTTACCGCGAGTTCAATCCTTCGCCGGTGGAAACCTCCGCCCCCACCACTGTCCGGCTGGCGGTGGGGCGGACCGGGGTGGGCACCGGCCGCGCCATTATGGAGGAGCGGCTTCCCCACAGGTTCGGAGAATCTCCGGCGTTCCACTTCCCGGCACGCTCGGCCACCGGCGGAACCAGCAGGTATGAATACCATCTGCGATCGGCCCACCGGGGCCAGTTCCGGATCGGACCCGTTACCGCGGAGTTCACCGACCCGTTTGGCCTCTCCCTGCACCGGCAGGCCATTGACGACGGCGACGTCCTCACCGTCACGCCGGCCGCCGTCGAACTTCCCGTCACCGGGCTGGCCGGCGCACGGGGCAACGACGGCGTCACAGCCACACGGACCCGCGCAAATCCCAGCGACGATGACGTAATGACAAGGGAATACCGCCACGGCGACCCTATGCGCCGGGTGCACTGGCCGGCTACGGCCAGACACGGCGCCCTCATGGTGCGGCAGGAGGAGTCGGTGACCACTCCGGAGGCCACCATCATCCTGGACCAGCGGCATGTGACCTTCTCCGGCACCGGTGCCGGCTTCGGCGGGAACGCCTCGGCGGAGGGCCGCGACATGGCCAGCAGCGACACGTTCGAGTGGGCCGTGGTGATGGCCATGTCGGTCAGCGCGCATCTGGCTGAACGCAATTACGCCCTTCGTGTGCTTGACGTCAAGGGTGATCCCGGCTTTCTCCGGTCGCCGTCGGCGCCGGAACCGGAAACCGAAGAGTTCAGCGGCATAAGCGGCCTGCAGTCAATTGCCGAAAGCCTCGCTGCCATCCAACTCTCCGGACCCCACCACGTCCGCCGGGACTCCGGCCGCAAGGCGGAGGCTGTTTCAGGGCGCAACAACGGTGGCCCACAGGAATCCGGCCCCGCAGCCTTTGACGACCACCTCATGGACAAGCTGTCGGCCCACCGCATGCGTGGCCCGCTCATCGCGGTCCTGGGCCGGATCTCCCTGGCAGAAGCCAGAGCACTGGCGCCCGCTGCAGGATACGGAGCCAACTCTTTCGCCCTCATTGTTGCCGAGCGGCCTGCAGAATTCGACGATGTCCTGGAGGCGCTGCGGCAGGGCGGCTGGCGTGCCGCCGCGGTGGCTCCTTCGGTATCGGCGGCCACGGCATGGAGTTACTTTGACCTTGGCGGAGCAGAGCTGGACGCTGCTGCTGCAGATGTCCGGCGGGGTGCGGGGGTGGCGCGGTGAMAILDRLPRHLFSQRGWGLLAAGAVSLVSAQIMGRRDLLSLSVLLIILPLVSLAGIRLVKPRFQVYREFNPSPVETSAPTTVRLAVGRTGVGTGRAIMEERLPHRFGESPAFHFPARSATGGTSRYEYHLRSAHRGQFRIGPVTAEFTDPFGLSLHRQAIDDGDVLTVTPAAVELPVTGLAGARGNDGVTATRTRANPSDDDVMTREYRHGDPMRRVHWPATARHGALMVRQEESVTTPEATIILDQRHVTFSGTGAGFGGNASAEGRDMASSDTFEWAVVMAMSVSAHLAERNYALRVLDVKGDPGFLRSPSAPEPETEEFSGISGLQSIAESLAAIQLSGPHHVRRDSGRKAEAVSGRNNGGPQESGPAAFDDHLMDKLSAHRMRGPLIAVLGRISLAEARALAPAAGYGANSFALIVAERPAEFDDVLEALRQGGWRAAAVAPSVSAATAWSYFDLGGAELDAAAADVRRGAGVARNANANANANA
D1-29_013971119hypothetical proteinATGGAATCCCACCGACGCACCGCCGTCAATGAAATTTCCCCTGCCGGCCGGAACTTCGCCGGGGTCACTGAACCTGTCACCCACATGAACGGGCACAAGACGGCACCCATGGACGCAGCATCCTTCCATGTGGCCAGCCAACGGATCCTGAACGCAATCAATACAGTGATTGACGGGAAGTCGGAGGCAGCCAAGCTGGCCCTGACAGTCCTGCTCGCGCAGGGGCACCTGCTCCTGGAAGACGTACCTGGCGTGGGCAAGACGCTCCTGGCAAAAACCCTGGCGCGGACCATCGACTGCACGGTCAGCCGCATCCAGTTCACTCCGGATCTCCTGCCTTCTGATGTGACTGGTGTTTCCATCTACAACCAGTCTTCCCGGCTGTTCGAGTTCCGTCCCGGCGCAGTCTTTGCCAACATCGTCATTGGGGACGAGATTAACCGCGCCTCAGCGAAGACCCAGTCGGCCCTGCTCGAGTGCATGGAGGAACACCAGGTCACGGTGGATGGCCACTCCTACAAGCTGGATGAGCCCTTTATGGTGGTGGCCACCCAGAATCCCATCGAGATGGAAGGCACCTACCCGCTCCCCGAGGCCCAGCGTGACCGTTTTATGGCCCGCATTTCCATGGGCTATCCGGACAAGGATTCGGAAATCGAAATGCTCGAGACCCACCAGGCAACATCGCCGCTGGCCAAGGTCTCAGCCGTGGTCACCGCAGCGGACGTGGCGGCGATGATTGCATCTGTCCAGCAGGTCTACGTTTCCCAGGCCGTCAAGGAATACACGGTGTCCGTAGGCCGAACCACGCGTGAGAGCCCGCTGCTCCGGCTGGGCGCCAGCCCGCGGTCCATGCTGCAGCTCCTTCGGGCTGCGAAGGCCACAGCCGCGCTGGACGGACGGGACTTTGTGCTCCCTGACGACGTCATCAACGTCGCTGAATCCGTGCTGGCCCATCGGATCATCCTGGACCGTAAGGCTGCCAGTGCCGGTGAGACCCCGCACAGCGTCATCCGGGGGATTCTGGCCAGGCTTCCGGTGGGCCAGGACCTGGCCGATGCCCCGGGCCGCACTGCAGCCGGCACTCCTTCGGCTTCCGGGTCACGCAGGAATCATTAGMESHRRTAVNEISPAGRNFAGVTEPVTHMNGHKTAPMDAASFHVASQRILNAINTVIDGKSEAAKLALTVLLAQGHLLLEDVPGVGKTLLAKTLARTIDCTVSRIQFTPDLLPSDVTGVSIYNQSSRLFEFRPGAVFANIVIGDEINRASAKTQSALLECMEEHQVTVDGHSYKLDEPFMVVATQNPIEMEGTYPLPEAQRDRFMARISMGYPDKDSEIEMLETHQATSPLAKVSAVVTAADVAAMIASVQQVYVSQAVKEYTVSVGRTTRESPLLRLGASPRSMLQLLRAAKATAALDGRDFVLPDDVINVAESVLAHRIILDRKAASAGETPHSVIRGILARLPVGQDLADAPGRTAAGTPSASGSRRNHNANANANANA
D1-29_01398906tatDCOG0084putative metal-dependent hydrolase TatDATGTGCAATTCGCTGATTCCCGCCGCCTACCGCGGTTCCGGGAGCAACGGTTCAACGGCGGGGGGAGGTTCCGGGAGGCAGGATTTTCCGCCCGCTCCGGAACCATTGCCGGTGCCGGTGATGGACAACCACACGCATTTGGACTTCCCGGACGGTGAGGCGCCGGTGGGGGTTGCCGCTGCGCTGGACGCGGCGGAGGCAGTGGGGGTGCAGGGCGCCGTGCAGGTGGGTTGTGACCTGGCGTCGTCGCGTTTCACGGTGCAGGCCGTTGACCTGGATCCCAGGCTCCTGGGAGCGGTTGCACTCCATCCCAATGACGCCCCCGGCTATGCCCTTCGTGGCGAGCTGGAAGAGGCACTGGCGGAGATTGAACAGCTCGCCAACCATCCGCGCATCCGGGCGATTGGAGAGACCGGCCTTGATTTCTTCCGGACCAAGGGGGAGGGGCTGGCTCACCAGCGCTATTCCTTCCGCCGCCACATTGACATCGCGAAGCGCCTGGACCTGACGCTCCAAATCCATGACCGGGATGCCCACGACGACGTTGTGCAGGTCCTGCGGGAAGAGGGGGCTCCGGAGCGGGTGGTGTTCCATTGCTTCTCCGGAGACGAGGAACTCGCCAGGATCTGCAATGAGGCCGGATGGAGCATGTCCTTCGCAGGTACGCTCACCTTCAGAAACGCAGTCAACCTTCGCGCTGCGTTGGCAGTGGCCGATCCGGACTTGGTGCTGGTTGAAACGGATGCGCCTTTCCTGACGCCCCATCCGCACCGCGGCCGGCCCAACGCCAGTTACATGGTGCCGTACACCGTCCGGGCGATGGCGGAATTGACAGGAACGGACCTCGCCAACCTGTGCGGCCGAATCAGCGAAAATACCCTGCGGGCATACGGATCCTGGGCGTGAMCNSLIPAAYRGSGSNGSTAGGGSGRQDFPPAPEPLPVPVMDNHTHLDFPDGEAPVGVAAALDAAEAVGVQGAVQVGCDLASSRFTVQAVDLDPRLLGAVALHPNDAPGYALRGELEEALAEIEQLANHPRIRAIGETGLDFFRTKGEGLAHQRYSFRRHIDIAKRLDLTLQIHDRDAHDDVVQVLREEGAPERVVFHCFSGDEELARICNEAGWSMSFAGTLTFRNAVNLRAALAVADPDLVLVETDAPFLTPHPHRGRPNASYMVPYTVRAMAELTGTDLANLCGRISENTLRAYGSWANANANANANA
D1-29_013991161rpf2COG3583Resuscitation-promoting factor Rpf2GTGGTCAAGATCTTCACATCCTCGGACGGTAAGCTCAGCTTCCTCAAGGTTGGCACCCAATTGGTGGTGCTTTGCGCTCTGGTTCTCGGCCTCGTTGCCTTCGTTGGCAATAACAAAACCATCACGCTGAACGTCGACGGAAAAGCAACTTCGGTTCAGACCTTCGGCGGCACCGTGGGCCAGGTGGTCAAAAGTGCAAAACTGGATCTGAAGCCCGCCGACCGGGTCTCGCCGTCCCTTGATGCGACCGTGGACAACGGCACCGTCATCAACGTCAATATGGCCAAGGCCGTCAAGGTCAGCCTTGACGGTGCTGAGAAGACAGTCAACACCACGGCGCAGGATGTCGGCGGTCTCGTGACGGAACTCGGCGTGGCCAGCGCTTCATCCGTCTCCGTTCCCAAGGACGCCCAGCTGAGCGTTGACGGCTCATTCGTCTCCATCACGACGCCGAAAACGGTCAGTATCGTCGCGGACGGCAACGTGTCCACGGCAACCACGACTGCCGCTACCGTTGCCCAGGTCCTTGAGGATGCAGGCCTGACACTCGGCGTCAACGATCGCACGTCCCAGCCTGGTAATGCCCATGTGGTCAACAACATGGTGGTCAAGGTATCCCGCGTGGACACCGGCAAGACTGACGCCACCACCGAACCCGTTCCGTTCGAGACCCTGACCAGCGAAAGCGCTGAGCTGTTCAAGGGCGACAAAGAAGTCACCCAGGCGGGCGCGGCAGGAAAAGTCGACAAGACCTTCAAGCTGGTGCTGGTGGATGGACGAGAAGCATCCCGCACCCTTGTCTCTGAAACTGTTTCACTCCAGCCGGTCACCGAAAAAGTTACGGTAGGGACCAAGCCAAAGCCCGTCGCGGCGGCTCCTGCCGCTACAAACACCGGAGCTGCAGCGCCGGCCATGATGAACGAGGCCATGTGGGACAAGATCGCCCAGTGTGAGTCCGGCGGACGCTGGTCTATCAACACGGGCAACGGATACTACGGCGGCCTGCAGTTTTCCATCCCCACTTGGCTTGCCAACGGTGGAGGAACCTATGGCCCCAATGCCAGCGTTGCCACCAAGGCGCAGCAGATAGACATCGCCAACAGGCTTTTCGCAAAGAACGGCCTCCGGGACTGGGGCTGTGCCTGGGCAGCGAGCAGCTAGMVKIFTSSDGKLSFLKVGTQLVVLCALVLGLVAFVGNNKTITLNVDGKATSVQTFGGTVGQVVKSAKLDLKPADRVSPSLDATVDNGTVINVNMAKAVKVSLDGAEKTVNTTAQDVGGLVTELGVASASSVSVPKDAQLSVDGSFVSITTPKTVSIVADGNVSTATTTAATVAQVLEDAGLTLGVNDRTSQPGNAHVVNNMVVKVSRVDTGKTDATTEPVPFETLTSESAELFKGDKEVTQAGAAGKVDKTFKLVLVDGREASRTLVSETVSLQPVTEKVTVGTKPKPVAAAPAATNTGAAAPAMMNEAMWDKIAQCESGGRWSINTGNGYYGGLQFSIPTWLANGGGTYGPNASVATKAQQIDIANRLFAKNGLRDWGCAWAASSNANANANANA
D1-29_01400873ksgACOG0030Ribosomal RNA small subunit methyltransferase AGTGACTGAACCAACCTCCGCCGCGCCCGCACCTCTCTTCGGTGCCTCCGATATACGCCGGCTGGCGGAAGAGATCGGCATCCGGCCCACCAAGACACTGGGCCAGAACTTCGTTATTGATGGCAACACGATCCGCAGGATCGTCAGTGTGGCCAACATCGGCGCGGATGAGACCGTGCTGGAAGTGGGCCCCGGCCTCGGATCACTCACTCTTGGACTGCTGGACGCGGCGAAGGCAGTTGTCGCCGTCGAAATTGACCCTGTCCTGGCGGCCAAGCTGCCGGAAACTGTGAACGAATGGCGGCCGGAGGCCGCGGGGGACTTTTACCTCGTCCAGGCCGACGCCATGAAAGTGACAGCCCTGCCCGTTGAGCCGACGGCGATTGTGGCGAACCTTCCCTATAACGTTGCCGTACCCGTGGTGCTGCACCTGCTCCAGCACTTCCCCAGCCTCCAGCACGGCCTGGTCATGGTCCAGGATGAAGTGGCTGACAGGCTCGCGGCGGGCCCTGGTTCCAAGACCTACGGTGTGCCGTCGGTGAAGGCCGCGTGGTACAGCAGCATGCGCAAAGCCGGAGTCATCGGGATGAATGTCTTCTGGCCGGCACCCAAGATCCACTCCGGACTGGTCGCCTTCACCAGGCGGCAGCCACCTGTCACCACGGCCACCCGTGAACAGGTTTTCGCCGTGATTGACGCGGCGTTCGCACAGCGCCGCAAAACCCTGCGTGCCGCCCTCGCCGGATGGGCCGGGGGTGCCGCTGAAGCCGAACGCTGCCTGCTCGCCGCGGGAGTGGATCCAACCGCCCGCGGGGAAGTCATTGACGTAACAGCCTTCGCCAGGATTGCCGAAGCCCGCGAGGCCGCAGCATGAMTEPTSAAPAPLFGASDIRRLAEEIGIRPTKTLGQNFVIDGNTIRRIVSVANIGADETVLEVGPGLGSLTLGLLDAAKAVVAVEIDPVLAAKLPETVNEWRPEAAGDFYLVQADAMKVTALPVEPTAIVANLPYNVAVPVVLHLLQHFPSLQHGLVMVQDEVADRLAAGPGSKTYGVPSVKAAWYSSMRKAGVIGMNVFWPAPKIHSGLVAFTRRQPPVTTATREQVFAVIDAAFAQRRKTLRAALAGWAGGAAEAERCLLAAGVDPTARGEVIDVTAFARIAEAREAAANANANANANA
D1-29_01401963ispECOG19474-diphosphocytidyl-2-C-methyl-D-erythritol kinaseATGAACGCTCCCCTGGGGCGGTTCGCGGCGCGGACGGTCCGGGTAAAGGCGCCCGGCAAGGTCAACGTTTCCCTCGATGTGGGCCCCCTCCGGCCCGACGGCTACCATTCCGTGGCCAGCGTGTACCTGGCTGTCTCGCTCTACGAGGAAGTGGCAGCCACCAGCACGGAGACGCCCGGCATTACGGTCAGCATCAGCCCGGCCAGCACCTTGGATCTTGACGGCATTGACATTCCGCTGGATGAACGAAATCTTGCCTATAAAGCAGCGACCATTATGGCCGATGTCAGCGAGCACTCCACCGGCGTGCATCTTGAGATCACGAAACGGGTTCCCGTGGCCGGCGGCATGGGCGGCGGCTCCGCTGACGCGGCGGCCACCCTCCTTGCCTGTGATGCGCTGTGGAACAGCGGCCTGTCCCGGGATGAGCTGGCGCAGCTCGCCGCCGAACTCGGAGCCGATGTCCCTTTTTCCCTGCTTGGCGGAACCGCCGTTGGGCTGGGTATAGGAGATGAGCTCTCACCCGCACTGGCCAAAGCCCAGACGGACTGGGTGCTCGTTACGGCTGACTATGGGCTGCCAACGCCCAAGGTCTATGACACCCTGGACAGGCTCCGGGACGCGGAGGGCATTGACGCCGAGGAACCCACAGCGGTGGATCCCAAGATCCTCACAGCGCTGCGCAGCGGCGACGCTGATGCCCTGAGCCGTGTCCTGCTGAACGATCTGCAGCGGGCTTCCATTGAACTTGCCCCTGCACTCCGGGATACGCTGGGAATCGGCGAGTCACATGGAGCCATTGCCGGCATCGTCTCCGGATCGGGTCCTACGGTGGCCCTGTTAACGCATAGTCCCGCGGCGGCCGAAAGCCTTGCTGAGGACCTCCAGCATTACGGCCTGAGGGCCATCGCCGTCCATGGGCCGGTACATGGTGCACGGATCATCTCCGATACCCTCCTTTAAMNAPLGRFAARTVRVKAPGKVNVSLDVGPLRPDGYHSVASVYLAVSLYEEVAATSTETPGITVSISPASTLDLDGIDIPLDERNLAYKAATIMADVSEHSTGVHLEITKRVPVAGGMGGGSADAAATLLACDALWNSGLSRDELAQLAAELGADVPFSLLGGTAVGLGIGDELSPALAKAQTDWVLVTADYGLPTPKVYDTLDRLRDAEGIDAEEPTAVDPKILTALRSGDADALSRVLLNDLQRASIELAPALRDTLGIGESHGAIAGIVSGSGPTVALLTHSPAAAESLAEDLQHYGLRAIAVHGPVHGARIISDTLLPGPT0007605_431DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919NANA
D1-29_014021827ettA_2COG0488Energy-dependent translational throttle protein EttATTGGCACACCTTCTTGGCGGCGAAAACCTGACGGTTTCGTACGCAACGCGCACCGTCCTGGACGGCGTCACCCTTGGACTTGAGGAAGGTGACCGCATCGGAATGGTGGGCCGGAACGGTGACGGCAAATCAACCCTCATGCGGCTGCTGTCCCTGCGCGCCACTCCGGATACAGGCCGGGTGACCAAACGCGGTGACGTCAATGTGGGCTACCTCGACCAGAGCGATGTCCTCGACGGCGACCTGACCGTTGGTGCCGCCATCGTCGGTGACCAGGCAGACTATGAATGGGCACGCAACCCGCAGATCCGCGAGGTGATGGGCGGACTCGTTTCCGACGTCGACTGGCACGCCAATGTGCACGCATTGTCCGGCGGCCAGAAGAGGCGTGTGGCACTCGCGAAGCTCCTGATAGAGGACCACGACGTCATCATGCTCGATGAGCCCACCAACCACCTCGACGTCGAAGGCGTGGCCTGGCTGTCACGCCACCTCAAAACCCGCTGGCGGGCAAACCAGGGAGCCTTCCTGGTGGTCACCCACGACCGCTGGTTCCTGGACGAAGTGTGCACCAAGACCTGGGAGGTCCACGACGGGATCGTGGACCCGTTCGACGGCGGATATGCAGCGTACGTCCTGGCCCGCGCCGAGCGCGACCGCTCCGCTTCGGTAATGGAAAGCAAGCGCCAGCAGCTGGTCAAGAAGGAACTCGCATGGCTGCGCCGCGGCGCCCCGGCCCGCACCGCCAAGCCCAAGTTCCGGATCGAGGCGGCCAACGCCCTGATCGCCGACGTCCCGGAGCCCCGCGACTCAACGGCACTGAGCAAAATGGCCACCGCCCGCCTGGGCAAGGACGTCCTGGACCTTGAGAACGTAACGCTGGACTTCCTCGGCGGCGAAGAAGGGCAGAAACTCTTCGACAACATCACCCTGCGTCTTGCGCCGGGCGAACGCCTGGGCCTGGTAGGCGTCAACGGCGCCGGCAAAACCACCCTGCTGAAGCTGCTCAACGGACAGATCGAGCCGACGTCGGGCAAGCTGAAGCGCGGTAAGACAGTGGTCACCGCCGTGCTCACCCAGGAAGTCAAGGAGCTCGACGACGTCTCGGACCTGCGGGTCATTGAAGTGATCGAGCGGGAGAAGCGTTCCTTCAACGTGGGCGGCAAGGAGTTCACCGCCGGCCAGCTGGTGGAACAGCTCGGCTTCACGAACGAGAAGCAGTGGACCCCCGTTAGGGACCTTTCCGGCGGTGAACGCCGCCGCCTCCAGCTCCTGCGGCTGTTGGTAGGGGAGCCGAACGTGCTGATGCTCGATGAGCCCACCAACGACCTCGACACCGACACCCTGGCCGCCGTCGAGGATGTCCTGGACGGATGGCCGGGCACCCTTGTGGTGGTCAGCCACGACCGTTACCTGCTGGAGCGCGTGACAGACCACCAGATGGCGCTGCTGGGCGACGGTAAGATCCGCGCCCTTCCGCGCGGCGTGGACCAGTACCTGGAACTCCGCGAATCCGCGCTGGCCGGCTCCACCATCACCGGCGGCGGCAACCCCGTCACCGGACCGAGCGGCGCCTCGGCTCCCGCTGCATCCGGATCCTCCGAAGCCGAAAAACGCGACGCCCGCAAAGCCAAGAACCGGATCGAGCGCCAGATGGGCAAGCTCGAGCAGCAGGAAAAGAAGCTTCACGACCAGATGGTCAAAAGCACCAACGAGAACGACTTCGACGCCCTGGCCGAACAAAACAAGAAACTCAAGGACCTGGCCGGCGAACGCGAAGCCCTCGAACTCGAATGGCTCGAAGCCCTGGAAGTCCTCGGCGAGTAGMAHLLGGENLTVSYATRTVLDGVTLGLEEGDRIGMVGRNGDGKSTLMRLLSLRATPDTGRVTKRGDVNVGYLDQSDVLDGDLTVGAAIVGDQADYEWARNPQIREVMGGLVSDVDWHANVHALSGGQKRRVALAKLLIEDHDVIMLDEPTNHLDVEGVAWLSRHLKTRWRANQGAFLVVTHDRWFLDEVCTKTWEVHDGIVDPFDGGYAAYVLARAERDRSASVMESKRQQLVKKELAWLRRGAPARTAKPKFRIEAANALIADVPEPRDSTALSKMATARLGKDVLDLENVTLDFLGGEEGQKLFDNITLRLAPGERLGLVGVNGAGKTTLLKLLNGQIEPTSGKLKRGKTVVTAVLTQEVKELDDVSDLRVIEVIEREKRSFNVGGKEFTAGQLVEQLGFTNEKQWTPVRDLSGGERRRLQLLRLLVGEPNVLMLDEPTNDLDTDTLAAVEDVLDGWPGTLVVVSHDRYLLERVTDHQMALLGDGKIRALPRGVDQYLELRESALAGSTITGGGNPVTGPSGASAPAASGSSEAEKRDARKAKNRIERQMGKLEQQEKKLHDQMVKSTNENDFDALAEQNKKLKDLAGEREALELEWLEALEVLGENANANANANA
D1-29_01403600hypothetical proteinATGACAGGCCTGCAGCGGCGCAGCCAGCTGATCGAGGTGGGACGTGGCCTCTTCGCGACCCGCGGGCTCGACGGAACCACCATCGAGGAAATCGCGGCCTGTGCGGGCGTCTCCAAGCCGGTGATTTATGAACACTTCGGCTCAAAGGAGGGCCTGTACACCGAGGTGGTGGACTTTGAGTTCCACATCCTCCTGGACTCCATCAACAGCGCCTTAACGGAGGAGGGCAAGCCACGTGTCCTGGTGGAGCGCGCTGCCCTTGCCCTGCTCACCTACATCGAGGACCGCACCGACGGTTTCCGGATCCTCATGCGCGACGCTCCCCCGTCCCAGCCCGAGGGTGCCTTTTCAACACTCTTGTCACATGTCACAACCCGCGTGGAGCACATCCTCTCCGACGAGTTCCATCGGCGCGGCTTCAGCGCCGAAGACGGTGCCATGTACGCCCAGATGCTGGTTGGCATGGTCGCAATGACCGGCCAATGGTGGCAGGACAGCCGCGAGCCGGACAAACACACGGTGGCCGCCCATCTCGTGAACCTGGCCTGGAACGGCCTGACCGGCCTGAAAAAGGACCCAGAGCTCAAGTCCGAAGGCTGAMTGLQRRSQLIEVGRGLFATRGLDGTTIEEIAACAGVSKPVIYEHFGSKEGLYTEVVDFEFHILLDSINSALTEEGKPRVLVERAALALLTYIEDRTDGFRILMRDAPPSQPEGAFSTLLSHVTTRVEHILSDEFHRRGFSAEDGAMYAQMLVGMVAMTGQWWQDSREPDKHTVAAHLVNLAWNGLTGLKKDPELKSEGNANANANANA
D1-29_014051485glmUCOG1207Bifunctional protein GlmUGTGATCCCCGAGACCACCGGCCCAGCTGCCGTCATTGTTCTTGCAGCAGGCGCCGGTACCCGGATGAAATCCCGTACCCCTAAGATCCTCCACGAGATCGGCGGCCGCTCCATGGTGGGGCATGCCTTGCTGGCAGCCCGCAGCATCAATCCGCAGCAACTGGCGCTCGTGGTGCGGCATGAACGCGACCTGGTGGCCAAGCACCTGGGCGAACTGGACGCCGACGCCATCATCGTGGACCAGGATGAGGTGCCCGGTACTGGCCGCGCCGTGGAGGTTGCCCTTCACGCCCTGGACGCCCAAAAGCCCCTCACCGGAACGGTTGTGGTGACCTACGGCGATGTTCCGCTGCTCACGGGAAGCCTGCTGGCCGAACTTGTGGCCACGCATCAACGGGAAGCCAACGCAGTTACAGTCCTCACTGCGCTGCTCGACGACGCCAGCGGCTACGGGCGGATCCTTCGCGGCGACGACGGGACCGTGACCGGCATCCGGGAGCATAAGGACGCATCGGAGGCTGAACACCTCATCCGCGAGGTCAATTCCGGAATCTACGCTTTCGACGCCGGTTTCCTCCGCGACGCGCTGGTTCACGTCACCACCAACAACTCCCAGGGCGAGAAGTACCTCACGGACGTGCTGGGTCTGGCACGGGAGGCAGGCGGGCGGGTAGCCGCCGTCCTCACCGAAGACCGCTGGCAGGTTGAAGGAGCCAATGACCGGGTGCAGCTCTCCGCCCTTGGAGCCGAGCTGAACCGCAGGACCGTTGAGGCCTGGATGCGCGCCGGGGTCACCGTTGTTGACCCCGCCACCACCTGGATTGACTCCACGGTGACGCTGGACCAGGACGTCCGTATTCTGCCCAACACCCAGCTGCACGGCAGCACCAGCGTGTCCCGGGACGCCGTCGTCGGCCCCGATACCACCCTGACCGATGTTCACATCGGTGCCGGAGCCACTGTGACACGCACCCACGGTTCCGGTGCCGTCATCGGAGCGAATGCCGCCGTCGGGCCTTTCACGTACCTGCGCCCCGGCACTGTCCTGGGCGAGACAGGGAAGATCGGCGCCTTCTACGAGACCAAGAACGTCACGATCGGCCGCGGCTCCAAACTGTCGCACCTTGGCTACGCCGGCGACGCCGAAATCGGTGAAGACACGAATATCGGCTGCGGCAACATCACGGCCAATTACGACGGCGAGAACAAACACCGCACGGTGATCGGCTCCGGCGTCCGGACGGGTTCCAATACTGTCTTTGTTGCGCCGGTCACTGTGGGGGACGGCGCCTACAGCGGCGCCGGCGCCGTCATCCGAAAAGACGTCCCGGCCGGAGCCCTGGCCGTCTCCGTCGCCCCGCAGCGCAATGCCGAGGGCTGGGTTATCGCCAACCGCCCGGGCAGCCGCTCCGCTGAACTGGCCCAGGCAGCCTCCCCAGATTCCTCCAGTACCCAGGCACCTACAGAAGAGGGCAAGCAACAATGAMIPETTGPAAVIVLAAGAGTRMKSRTPKILHEIGGRSMVGHALLAARSINPQQLALVVRHERDLVAKHLGELDADAIIVDQDEVPGTGRAVEVALHALDAQKPLTGTVVVTYGDVPLLTGSLLAELVATHQREANAVTVLTALLDDASGYGRILRGDDGTVTGIREHKDASEAEHLIREVNSGIYAFDAGFLRDALVHVTTNNSQGEKYLTDVLGLAREAGGRVAAVLTEDRWQVEGANDRVQLSALGAELNRRTVEAWMRAGVTVVDPATTWIDSTVTLDQDVRILPNTQLHGSTSVSRDAVVGPDTTLTDVHIGAGATVTRTHGSGAVIGANAAVGPFTYLRPGTVLGETGKIGAFYETKNVTIGRGSKLSHLGYAGDAEIGEDTNIGCGNITANYDGENKHRTVIGSGVRTGSNTVFVAPVTVGDGAYSGAGAVIRKDVPAGALAVSVAPQRNAEGWVIANRPGSRSAELAQAASPDSSSTQAPTEEGKQQPGPT0018955_233DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042NANA
D1-29_01406981prsCOG0462Ribose-phosphate pyrophosphokinaseATGAGCGAAATTACGGCGCGCGGCGAGAAGAAGCTGGTGCTTGCCGCCGGGCGGGCCCACCCCGAGCTTGCGCGGGAGATCGCCAAGGAGCTCGGAACCGAGCTGCTGCCTATTGACGCCTATGACTTTGCTAATGGCGAGATCTACGTCCGTGCCGGCGAAAGCGTCCGCGGCACCGACGCCTTTGTGATCCAGGCCCACCCCGCACCGCTGAACAACCACCTCATGGAACAGCTGATCATGATTGATTCGCTGAAGCGTGCCTCTGCCAAGCGCATCACCGTGGTTTCACCGTTTTACCCTTATGCCCGCCAGGACAAGAAAGGGCGCGGCCGCGAACCGATTTCAGCCCGCCTGGTAGCTGACCTTTACAAGACCGCGGGTGCCGACCGCATCATGAGCGTGGACCTGCACACGTCCCAGATCCAGGGTTTCTTCGACGGCCCGGTGGACCACCTTATGGCCATACCGCTTCTCGCCGATTACATCCGCACGCGCGTGGACGCCGAAAACATCACTGTAGTATCTCCGGATACCGGCCGGGTCCGTGTGGCGGAGCAGTGGGCAGAGCGCCTGGGCGGGGCGCCGCTTGCGTTTGTGCACAAGAGCCGTGACCTGACAGTGCCCAACCAGGCCATTTCGAAGACCGTGGTGGGCCAGATCGAAGGACGCACCTGTGTCCTCATTGATGACATGATCGACACCGGCGGAACCATTTCAGGCGCGGTCCAGGTACTCAAGAACGCCGGCGCCAAGGATGTCATCATCGCCGCCACCCACGCCGTATTCTCAGACCCTGCCGCGCAGCGGCTCGCTGAATCAGGCGCCCGCGAAGTTGTGGTCACCAACACGCTGCCCATCACTTCCTCCCAGCAGTTCCGGCAGCTGACGGTGCTTTCGATCGCACCGTTGATCGCCCGCGCCATCCGCGAAGTGTTCGACGACGGCTCCGTCACCAGCCTGTTTGACGGCAACGCCTAAMSEITARGEKKLVLAAGRAHPELAREIAKELGTELLPIDAYDFANGEIYVRAGESVRGTDAFVIQAHPAPLNNHLMEQLIMIDSLKRASAKRITVVSPFYPYARQDKKGRGREPISARLVADLYKTAGADRIMSVDLHTSQIQGFFDGPVDHLMAIPLLADYIRTRVDAENITVVSPDTGRVRVAEQWAERLGGAPLAFVHKSRDLTVPNQAISKTVVGQIEGRTCVLIDDMIDTGGTISGAVQVLKNAGAKDVIIAATHAVFSDPAAQRLAESGAREVVVTNTLPITSSQQFRQLTVLSIAPLIARAIREVFDDGSVTSLFDGNAPGPT0021480_1887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948NANA
D1-29_01407594rplYCOG182550S ribosomal protein L25ATGTCTGAGCAGAAGCTCGCAGCAGAAGTACGCAATGAATTCGGCAAGGGTTTCGCCCGCCGTGCCCGCATGGCCGGCCAGATCCCCGCAGTCATCTACGGCCACGGCGCAGACCCCATCCACATCACCCTTCCGGCGAAGGCCACCACGCTGGCCGTCCGCGTTGCCAACGCCCTGCTGTCCCTGGACATCAACGGCGAAGACCACCTAGCCCTGGTCAAGGACATCCAGCGCGACCCCATCAAGCAGATCATCGAGCACATCGACCTGCTGACCGTCCGCAAGGGCGAAAAGGTCACCGTTGACATCCCCGTCCACGTTGTTGGCGAACTTGCTCCGGGCAACGTCTACAACCAGGAACTCACCGTTATCTCCCTTGAGGCTGAGGCAACCCACCTGCCCACCGCCATCGAGGTTGACATCGAAGGCCGCACAGCTGGCCAGCACATCCACGCATCGGACCTGGTTCTCCCCAAGGGCTCCATCCTGCTGGCTGACGCCGAGGCCCTGGTCGTCAACATCTCCGAGGCCACCGAGGTCACGGATGAAGAGGCAGCCGGTACCGAGGGCTCTTCCGAGGCCGCAGCCGAGTAAMSEQKLAAEVRNEFGKGFARRARMAGQIPAVIYGHGADPIHITLPAKATTLAVRVANALLSLDINGEDHLALVKDIQRDPIKQIIEHIDLLTVRKGEKVTVDIPVHVVGELAPGNVYNQELTVISLEAEATHLPTAIEVDIEGRTAGQHIHASDLVLPKGSILLADAEALVVNISEATEVTDEEAAGTEGSSEAAAENANANANANA
D1-29_01408591pthCOG0193Peptidyl-tRNA hydrolaseATGACTGACACCTGGCTGATCGTGGGCCTCGGAAATCCCGGGGCCGAGTACAAGGGCAACCGGCACAATGTGGGCCAGATGGTTCTTGACGAACTCGCCGGCAGGATGGGCTCCGGTTTTAAGGCCCACAAGGCCCGCGCACAGGTGATCGAAGGCCGCCTGGGGATCGGCGGCCCCCGGGTGGTGCTGGCCAAACCGATGAGCTACATGAACGTCTCGGGTGGCCCAGTGGCTGCCCTCGCCAACTTCTATGGCATCACCCCCGATTATGTCGTGGCCGTGCATGACGAAATCGACATTCCTTTTAACACAGTGAAACTGAAGATCGGCGGGGGAGAAGGCGGCCACAACGGCCTCCGGGACATCTCCAAGGCGCTGGGAACGAAGGATTACCTCCGTGTCCGGGTGGGTGTGGGCAGGCCCCCGGGCAGGATGGACACCGCGGATTACGTCCTGCGCGACTTTGCCACTGCCGAACGGAAGGACCTTCCGTTCCTGCTGGATGAGGCCGCAGATGCAGTAGACATGCTGGTCAGGGATGGGCTGACGGCCGCGCAGCAGAAGTTTCATCCCGCGAAGTCGGAGCTCTAGMTDTWLIVGLGNPGAEYKGNRHNVGQMVLDELAGRMGSGFKAHKARAQVIEGRLGIGGPRVVLAKPMSYMNVSGGPVAALANFYGITPDYVVAVHDEIDIPFNTVKLKIGGGEGGHNGLRDISKALGTKDYLRVRVGVGRPPGRMDTADYVLRDFATAERKDLPFLLDEAADAVDMLVRDGLTAAQQKFHPAKSELNANANANANA
D1-29_014092739hypothetical proteinATGTCAATCGAGCCACTCAGCTGGGGACGTGGGTCAACGCTCAACGCCGTTGAGTCGCGCACCAACGTCGCAGACACGTCAGATCTTCATAGGTGGTCGGTGCCAGCCCGAAGCGCCAACCTCGAAGCTGTCCGCACAGCCCTGACCAGCAAGGACTCGCTGGGAGTGGTCATCACCGGTGCTCGAGGAGTGGGCAAGTCATCCCTCGCCCGCACTGCTGTCTCTGAACTTGGCCCTGATGTCTGGGCATTGCAGCTGCGCAGCGGTCCCACCGCCGCGAAAACCCCGTACGGATGCCTGGCGTTCCTGCTGGCCCGGCTTCCGCAGGCCTACATGGGCTCGCCGACTGCCATCCTTCGCGGCATCACGTCCCTCATCAAGAGCGATGCTGCCGGGCGTCAATGCGTTATTACGCTGGACAACGCGGAAAGCCTGGACGAAATGAGCGCCGGTGTCCTACTGAATGTCCTCCTGACCGGGACGGCCCGGATCGTCGCGGTGGCGCCAAAGAGCAGCGATCTTCCGGCAGACTTCCACTGGCTTCTCACAGACCGGCGGCTGACCGAGGTCAGGCTGGACAACCTCAACGAGCTTCAGACGCGGCAGGTGCTGTTATCCCTCCTGGGGCATCGGGTGTCAGCCTCCCTCGTCAGCACCTACCACAGCATGGTGGGCGGAAACCCCCTGTTGCTGAAGGCACTGGTCACTGAACAGCAGCAATCCGGGAACCTGGTGCTTGCTGATTCTGTCTGGACACTCCGCGACAAGGTTGTGCTCGACGGCGCGGCGAGCCTGGATGACATCGTCAGGTCCCGGTGGGCCAGGAAATCTCCGGAAACCAGGGAAGTTATCGAAATGCTTTCCTGCGCCAGGAGCGTGGAGCTTTCACGGCTTACAGCTCTCTACGGCGCAGCGATCGTGGCTGACATGGAGGACGTCGGACTCCTGGACATCGACGATTCAGACAACCGCTGGGTGTCACTGCGTGAGAAATACCTTGGCGACGTCGTCCGGTCATGGCTGAGCATCAGCAGGCGCCGGGAACTTCGGAACCAGCTCCTGGACGGTGCGGACCCGGACCCGGCATCCATGACCATGGACGAACTGATGTCTTTTGCGGCCTGGACCTACGAGTGCGAGGCCGAACTTAGCCCGGCCATGGCACTGGCCGCAGCCGAGGCTGCCGTCCAGCTCTTTGATCCGCACTTTGCCCTCACATGCACCGAGGTCCTCAAGAGGAATGATCCACAGTGGGTCCATGGTCAAAGGCAGAAGGCCGCCGCGTATCTTTTGCTCGACCTGCCTGTCCAGGCCATGGCAGCCCTGGACGATATCTCCCAGCCGCAGTTGGACAACCTCGGCGAAGCGGAATACGCCAACGTTATCGCCGCCAAATCCCGGGTCATGGTGTGGCTGCCGGAACTTACGGAGAAAGTACCCGCCTTGCTGGAGGCGGCACGGAAAAGGCTTGACGTCCCGGCAGGGATCCCCAAGGGCTGGCCCGACCCCCTGGCCGCCGCCGCCAACCGGATCAGCCTCAGCGAATTCGAGTACAAGGCTTTTGTGGGCGACTACGCCTCGATGATCCCTGCACTTGAAGCGGCATACGATCCTGCCCTCAACCCGGACCTGGGGTTCAGGATGAATTCCGCGGTCATCCTCATGACCGCATTGGCCATGACCGGGCGCGAGATGGACGCGCTGAGCCTCATGAGGCAGGTAGGAGGCAAAATCTCCGACGCCGCCCAGATCGTTGGCCTGCGTGAACAGTTCACCGTCGAGGCGTACTCGGTGCTGCTGACCGCCGGCCAATGGCGCCGGTGCATTGACCTGCTGGACCCGCCCGCCACGCGGGAAGCCCATCGGCTCCCGTACCGGAGCGCCGCTGCCGAGCTGTCCGCCGGAGTCGCCTACGTCTACTCGGGAAGGGGTGCGGCTGCACTGGATTCGCTGTTGTCCGCAGCCGCGCAATTGGAGCTTCGGCCGCAGCAGGGCGCCCTTCGGACGGCTTACGCGGCCACCGCGCTGGCCTATGCTCAGATCGGCAATGCCGGGCAGTCCCGCAAGTATCTCGAGAAGCTCAGGAGGCCGGCGGGTCCCTGCAGCTTTGTCACGCAGAGCATCATCGAATTCTGCATTGATATGGCTGGCCGCTGGTTGGGGGATGCGGACGCCATCGCACGCCTGAAGGAGTCAGCCCGCCAGGACATCAAGGAGCAAAGATACACCCTTGCAGGAATCAGCCTCCTTGGCGCCACCATCAACGGCACGGAGGCCGACTTCCGGCTCCTGGAGGAGGTGGCCGGTCACCGGCAGGGCCCGCTGGCCGAGATTTCCCGTCTGATCGCCATAGGCAGCCGGACCAAGGACGCCAAAACCCTGCTTGCCGGCGGCGAGCTCGCAGCCACGCTAGAGCTGGATACGGTGGAGGCGAGGTGTATGGCACTTGCAGTGGATTACGCCCGCCAGGCCGGGGATTCAGTATCCGCAAGGACGGCCCAGGCCCGGCTGGACATCCTGGCTGCCACCGTTCCAAGTTTGCCCATCGTTCCGAGCACTGGGAGTCCTCTGCTGACCAGCCGGGAGCGGCAGATTGCGCGGCTGGCAGGCAGGGGCGCCTCAAACCGTGACATCGCATTGGAGATGGGCGTCTCAGTCCGCACCGTGGAAGGCCACCTGTACCAGGTCTTTACGAAGCTGGGCGTAACTTCCAGGGGTGATCTGACTGGACTCGTTTAAMSIEPLSWGRGSTLNAVESRTNVADTSDLHRWSVPARSANLEAVRTALTSKDSLGVVITGARGVGKSSLARTAVSELGPDVWALQLRSGPTAAKTPYGCLAFLLARLPQAYMGSPTAILRGITSLIKSDAAGRQCVITLDNAESLDEMSAGVLLNVLLTGTARIVAVAPKSSDLPADFHWLLTDRRLTEVRLDNLNELQTRQVLLSLLGHRVSASLVSTYHSMVGGNPLLLKALVTEQQQSGNLVLADSVWTLRDKVVLDGAASLDDIVRSRWARKSPETREVIEMLSCARSVELSRLTALYGAAIVADMEDVGLLDIDDSDNRWVSLREKYLGDVVRSWLSISRRRELRNQLLDGADPDPASMTMDELMSFAAWTYECEAELSPAMALAAAEAAVQLFDPHFALTCTEVLKRNDPQWVHGQRQKAAAYLLLDLPVQAMAALDDISQPQLDNLGEAEYANVIAAKSRVMVWLPELTEKVPALLEAARKRLDVPAGIPKGWPDPLAAAANRISLSEFEYKAFVGDYASMIPALEAAYDPALNPDLGFRMNSAVILMTALAMTGREMDALSLMRQVGGKISDAAQIVGLREQFTVEAYSVLLTAGQWRRCIDLLDPPATREAHRLPYRSAAAELSAGVAYVYSGRGAAALDSLLSAAAQLELRPQQGALRTAYAATALAYAQIGNAGQSRKYLEKLRRPAGPCSFVTQSIIEFCIDMAGRWLGDADAIARLKESARQDIKEQRYTLAGISLLGATINGTEADFRLLEEVAGHRQGPLAEISRLIAIGSRTKDAKTLLAGGELAATLELDTVEARCMALAVDYARQAGDSVSARTAQARLDILAATVPSLPIVPSTGSPLLTSRERQIARLAGRGASNRDIALEMGVSVRTVEGHLYQVFTKLGVTSRGDLTGLVNANANANANA
D1-29_014102664hypothetical proteinATGGCGGGACCGGGCATCGGGAAGTCAGCCCTGAGTGAAGCCATCACGGAGCGCCTTGCCGCCGAAATGATTGTTGTGCAGATCCATGGCAGTTCTTCTCTGGCCGGGGTTCCCTTTGGTGTCCTTGCCCCGTACACGGCGGAACTGACAGCAGAGGACTCTGTTTCACCGGTAGCTGTCCTCAGGTCAGTCTGGACCTACTTCGAAAAACTCAAGGCGGGCAAGGACACCCCGCTTTTGCTGGTGGTGGACGACGCCCACCACCTCGATGATTCAACCGCCAGCATTGTTGCAGACATGATTTCGGCCAGCTGGGCAAGTGTGGTTGCTTCCGGCAGGCCACGGCCCGGACTGCCACAGCCGCTGGCCCAGCTTTGGTATGACGGCCTGGCGGAACGGGTGGATCTTCGCCCGCTGAACAGGGAACAGATCGAGGAAGTCCTCACCCACGTATTCGACGGAACCATCCCCGCCGGCACCGTAGATGCCATCTGGAGCGCCTCGGGGGGAAACCCCCGAATCCTGGACGCGCTGCTCCACGACACTGCGGAGCGGGAAGTGCTGGCAAAGCGCAACGGCATCTGGATGCTCCTGGGACCGCTGCCGGCCGACGGGCCAAGGCTCACAGCGGTGGTGACCAAAGACCTCCTTCGACGAAGCCCCGAGGAACAGGAAGCCCTCAAGCTGATCGCCCTGGCCGAACCCGTGGCGCGGAAAGCCATAGAAGACATCAGCGGCGCCGAAGTGGTCCGTGCGCTGCTGGACCAGCAAATGATCGTGGAGGGTACCGGCCACCCCGCTGAGCTGCGGATGTGGAACACGCTGTTCGGCCAGGCTGTCCGGAAGAATGTCTCCGTCTCCCGGAGCCTGCAGTTGCTGGAAAAGATTCGTGCCCAGCACGATGCGGAGCCGGCCGGCGCGGAAGGCCGGCTCAGGGCGGTGGAATGGGCATTGGAGTGCGGGCAGAAAGTTGCCGACGCGGACCTCCTGGAAGCAGCAGGCACCGCAGTGACCAGGTTCCGCAACGTGAGCGCCGTGATGATGGCGGCAAAAGTGCATCGGTCCGACCTGGTGCCGCACGCCCAGGCCATCCGGGCACGGGCGCTTTTCAACCAGGCAGATTACGCCGCGGCGGCGGATATCCTGGACGAGTGCTGGATCCCGCTGTCGGAGAGCCCCGAAGCCGCCCAGGTACTGATGCTCAGGGCACAGTCACACCAGGCCCTGGGAAAGTCAGCGGAAACTTTCGCGGCAGAATCCCGGGAGCTTCTCAGCCAGGCCGGACTCATCCTGCCGACGGCTGGTTACGTTGACAGCCTCTCTGATGGCAACGGCTCTGATGAAGGCAGCGCTGATGGCAACGGCGCTGATGAAGGCAGTGAACAGGCCAATGGCCGCCCTGCGGACACGGCAGGGGAGAGGACCTGGCAGGAGCACGTCCTTCAGCTGCTGGAACTGGGGGCAGCGGGCAACCATGAGGCGCTCCACGCTGAAATCCAAGGCATCAAAAACCGCACTCCGGCAGGGCCCTACGATGATGCGCTCCGGACCTTCGGGCTGGCCCTGCTGGCTCACACACTGTCGGCCGCGGGACGATCCGCCGAGGGGCTGGACGACGCACTGTTGGCCGCATCTGAACTTCCTGCGCTCCAGGACGGCCTGTTCTGCTTCAATGAATTCGTCCTGGGCCGGCTGGTGATCAACTACCTTGCCATGGGCGAATGGGAATCCGCCGAACGGGAACTTGCCAGCTATGCTGCCAGCCAGGTGCAGGGTGCCGCCACCTTCAGCGGCAGCGTCCAGGTGCTGCGCGGCTATTCGCTCCTGCGCCAGGGCAGGATTGAGCGTGCCTACCAAATGCTCCTGCCGGCGGTGGAAGCATTGAGGCTGAACGATCCACAGCAGCTGTTTCGCTTCGGTTCCGCCCTGGGCTTCTATGTGGCAGCCAGGCTGGGTGACGTCGCCCAGGCCATCCGGCTGGAGCAGGACTACAAGGACGCCACCATCGCCCGGCCGCACGAGCACCTGGCAGCAGCCTATGCCGCCGCGGCGGCTGAGTACCTGGCCCGGGACGGCAAAGGCCTGGCCTCGATCCATACGCTGGCTACCACTCATGATGTCTCTGCCCGGCCCGGGACCATGCTGGAATTCCTGGCCATCTGCTGGGACCTGGGTGACAACTCGGTGATTCCCCTGGTCCATTCGCTTGCCAAGGATGTCGAAGGCAGGTGGGCCGAAGCGATGCTGATGTTATCCCGTAACTGGGAGTCCGCGGATGCCGATGCCCTGATGGATACGGCAACAGCGCTTGAAAATTCAGGGTTCGTCAACCTTGCCCGGGAGGCCTACGCCAGGGCAAGCACACTCCTGGAGCAATCCGGTGAACGGCGCCGGGCCAGGCAGGCCGTTGCCCTGCGCGAGAAATGCGATCACGAACTCGGTGAGCGGTTCAGGGAGGGCCATTTCATCGCCGCAGCGCCGGCAGTGCATCTGACCCGCCGGGAGCAGGACATTGTGGAGCTCGCCCTCCAGGGCCTAACAGACCGGGAGATTGCCCAGCGGCTGATGGTGTCGGTGCGGACCGTGGAGGGCCACCTCTACCGCACTTATGTGAAGCTGGGTGTGCGAAGCCGTGACGAGCTGGCTTCGGCGCTTCCAAAATAGMAGPGIGKSALSEAITERLAAEMIVVQIHGSSSLAGVPFGVLAPYTAELTAEDSVSPVAVLRSVWTYFEKLKAGKDTPLLLVVDDAHHLDDSTASIVADMISASWASVVASGRPRPGLPQPLAQLWYDGLAERVDLRPLNREQIEEVLTHVFDGTIPAGTVDAIWSASGGNPRILDALLHDTAEREVLAKRNGIWMLLGPLPADGPRLTAVVTKDLLRRSPEEQEALKLIALAEPVARKAIEDISGAEVVRALLDQQMIVEGTGHPAELRMWNTLFGQAVRKNVSVSRSLQLLEKIRAQHDAEPAGAEGRLRAVEWALECGQKVADADLLEAAGTAVTRFRNVSAVMMAAKVHRSDLVPHAQAIRARALFNQADYAAAADILDECWIPLSESPEAAQVLMLRAQSHQALGKSAETFAAESRELLSQAGLILPTAGYVDSLSDGNGSDEGSADGNGADEGSEQANGRPADTAGERTWQEHVLQLLELGAAGNHEALHAEIQGIKNRTPAGPYDDALRTFGLALLAHTLSAAGRSAEGLDDALLAASELPALQDGLFCFNEFVLGRLVINYLAMGEWESAERELASYAASQVQGAATFSGSVQVLRGYSLLRQGRIERAYQMLLPAVEALRLNDPQQLFRFGSALGFYVAARLGDVAQAIRLEQDYKDATIARPHEHLAAAYAAAAAEYLARDGKGLASIHTLATTHDVSARPGTMLEFLAICWDLGDNSVIPLVHSLAKDVEGRWAEAMLMLSRNWESADADALMDTATALENSGFVNLAREAYARASTLLEQSGERRRARQAVALREKCDHELGERFREGHFIAAAPAVHLTRREQDIVELALQGLTDREIAQRLMVSVRTVEGHLYRTYVKLGVRSRDELASALPKNANANANANA
D1-29_014111326csd_1COG0520putative cysteine desulfuraseTTGGCCGTAGTATCAACGCCTGCCACGCTGGAACGCGCATTGCCGGCCATGGACAACTCGGAGGTCCTGCGGATCCGCAATGACTTCCCCGTCCTCGGACAGTTGGTGAACGGGCGGCAGCTGGTCTATCTGGATTCGGGTGCGACGTCCCAGAACCCACTCAGTGTGATCGAGGCAGAGCAGGAGTTCTACGAACAGCGAAATGCCGCGGTACACCGCGGCGCACACCACCTCGCTGTGGAAGCAACCGAAGTTTTCGAAGACGCCCGCCAGACCATGGCCGACTACATCGGGGCCGATTACACGGAAACTGTGTGGACCTCCAACGCCACCGAAGGCCTCAACCTCATCAGCTACTCCTTGTCCAACGCCTCGCTGTGGTCTGCGCAGGGACGGGGAGATGAGAGGCTCAGAAGCCTCGCCGTGGGACCGGGGGACCAGATCGTTGTCACAGAAATGGAGCACCACGCCAACCTGATCCCCTGGCAGGAACTAGCCTTCCGCACCGGCGCCACCCTCCGCTACATCCCGGTGGATGACACCGGGGCACTGAGCATGGACCAGGCCGCCGCCATCATAGGGGAGCGGACCAAGGTACTGGCTTTCACGCACGCTTCTAACGTGCTCGGAATCATCAACCCAGTACAGGAACTGGTGGCCCTGGGCAGGAGAGCCGGAGCCCTGGTGGTCCTGGACGCCTGCCAGTCCGCACCGCACCTGCCGCTGAATGTGAAGGACCTTGACGTCGATTTCGCGGTCTTTTCCGGGCACAAGATGCTTGCACCTACCGGGATCGGCGTACTGTACGGCAGGCAGGACATCCTGGACGCCCTGCCGCCGTTCCTGACCGGCGGTTCCATGATCACCACGGTGACCATGGAGAGGGCCGAATACCTGCCGGCCCCGCAGCGTTTCGAAGCCGGAACCCAGCGGATCTCGCAGGCAGTTGCGCTGGCCGCCGCCGCGAACTATCTCACCGAGACAGGCCTGGAGCGGATCCATCACTGGGAGTCGGAGCTTGGCCAGCGCATGGTATCCGGGCTGCAGGACATCCCGGGAGTGCGTGTCCTGGGGCCAGTGGCCGGGCAGGATCGGATCGGGCTAGCGGCATTCGACGTGGACGGCGTTCACGCGCACGACGTCGGCCAGTTCCTCGACTCGCGGGGCATCGCCGTCCGCGTGGGGCACCACTGCGCCCAGCCGCTGCACCGGCGCCTCGGACTCACGGCGACCACCAGGGCCAGCGCCTATTTGTACAACACCACCGACGACGTTGATGTGTTCCTGGACGCCGTTGCCGGCGTCCGAAGCTACTTCCGCGTATAGMAVVSTPATLERALPAMDNSEVLRIRNDFPVLGQLVNGRQLVYLDSGATSQNPLSVIEAEQEFYEQRNAAVHRGAHHLAVEATEVFEDARQTMADYIGADYTETVWTSNATEGLNLISYSLSNASLWSAQGRGDERLRSLAVGPGDQIVVTEMEHHANLIPWQELAFRTGATLRYIPVDDTGALSMDQAAAIIGERTKVLAFTHASNVLGIINPVQELVALGRRAGALVVLDACQSAPHLPLNVKDLDVDFAVFSGHKMLAPTGIGVLYGRQDILDALPPFLTGGSMITTVTMERAEYLPAPQRFEAGTQRISQAVALAAAANYLTETGLERIHHWESELGQRMVSGLQDIPGVRVLGPVAGQDRIGLAAFDVDGVHAHDVGQFLDSRGIAVRVGHHCAQPLHRRLGLTATTRASAYLYNTTDDVDVFLDAVAGVRSYFRVPGPT0020195_594DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717NANA
D1-29_01412525sufUCOG0822Zinc-dependent sulfurtransferase SufUATGTGTTCCTGGACGCCGTTGCCGGCGTCCGAAGCTACTTCCGCGTATAGCACCCGGACCATCGAAAGTAACAACATGAGCCTTGACCAGCTTTATCAGCAGATCATCCTTGACCATGCCAAAGCCCGTCACGGCAGCGGGCTGTCCGAAACAGCAGCCCCGGAAGGCGCCTCGACGGGCCAGTCGCACCAGCTCAATCCCGTATGCGGTGACGAGGTCACTATCCGCGTGGCGGTGGAAGGTGACAAGGTGGCGCAGGTCTCGTGGGACGGGGCGGGCTGCTCGATTTCCATGGCCTCGGCTTCTGTCCTGAGCGAGATGGCCGAGGGGATGTCAGTGACTGAACTGCACTCTGTGATCCAGAACTTCCGGGAGGTCCTGCGGTCCCGCGGGAAGATCCAGGCGGATCCGGAAATTCTGGGCGATGCCGCGGCCTTTGAGGGAGTATCCCGTTACGCTGCCCGGGTTAAGTGCGCCATGATCTCCTGGGTGGCGGCGGAAGATGCACTGAACCAGGCATCCTGAMCSWTPLPASEATSAYSTRTIESNNMSLDQLYQQIILDHAKARHGSGLSETAAPEGASTGQSHQLNPVCGDEVTIRVAVEGDKVAQVSWDGAGCSISMASASVLSEMAEGMSVTELHSVIQNFREVLRSRGKIQADPEILGDAAAFEGVSRYAARVKCAMISWVAAEDALNQASPGPT0000075_1122DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488NANA
D1-29_014131344nhaACOG3004Na(+)/H(+) antiporter NhaAATGAGTGAAAATCCGTCTGCTCCTCCGCGTTCCTCCGTCTTGGGACGGGGAAGCTACGGCGAAGTGCTGCGCATCGGCGAGATCCTGCGGAAGGAAACCGTTGGCGGCATCTTGTTGGTCGCAGCAGCGGTCATTGCCCTGATCTGGGCAAACTCCCCGGCTTCCGACAGCTACTTCGCCTTGCGCGACTTCCGGATTGGCTACGAGCCCTGGCACCTGGAACTCAGCCTCGGGGCCTGGGCCGCCGACGGATTGTTGGCGATCTTCTTCTTCCTCGTCGGGCTGGAACTCAAACGTGAATTCGTGGCCGGAGACCTTCGCCAATTCAGTAAATCCGTGGTGCCCATCACAGCGGCTGTCGGAGGCGTGGCAGTCCCTGCAGTCATCTATGCTCTGATCAATCTGACCAGTCCTGGCACCCTGCGGGGCTGGGCTATCCCCACGGCAACGGACATCGCCTTCGCCGTTGCCGTGTTGGCGATCATCGGTTCACACCTGCCCAGTGCGCTACGGATCTTCCTCCTGACTTTGGCCGTGGTCGATGACCTGATCGCCATCAGCATCATCGCGGTGTTCTATTCCAGCAACATCCAGGCCGGGCCGCTGCTGCTGGCCTTAATCCCGCTGGCGGTGTACACCTTCCTGGCCCAGAAGCACCGCCGGTTCTTCGGCACCAGACCTGCTGCGGCGTGGGTGATCCTCCTTCCTTTGGGCGTGATCACCTGGGCCTTGGTGCACGCCTCCGGCATCCACGCCACCGTCGCCGGTGTACTGCTGGGGTTCGCCATCCCTGTCATCCGGTCGCAGGCCAGCGGCGGCCCCGCTGCAGGACCTGGCCTCTCTGAGATCTTCGAACACCGGTTCCGGCCGATTTCCGCCGGCATCGCGGTCCCGGTCTTTGCTTTCTTCTCCGCCGGTGTCGCCGTAGGTGGCCCGGACGGTCTGATCTCGGCTCTGACTGACCCTGTAGCCATCGGCATCATCGTGGCGTTGGTGTTGGGCAAACCGATCGGGATCCTGGGCACCACATGGGTCCTCACAAAGGCCACCAGAGCGTCACTGGACAGGTCCTTGAAGTGGATTGATGTATTCGGGATGTCCCTTTTGGCCGGGATCGGCTTCACAGTTTCGCTCCTCGTGGCCGAGCTGAGCTTCGGACACGGCAGCGCCCACGATGACCACGCCAAGGTGGGTATCCTCGCCGCGTCGCTACTGGCCGCACTTCTGGCGGCGGCAGTGCTGGGAACCAGGAACCGTCAATACCGTGCCGTGGAGGCGGAGGAGGCCGTCGACACTGACCAGGATGGCATCCCCGACGTTTACGAAGAAGACCGCCGCCGGTGAMSENPSAPPRSSVLGRGSYGEVLRIGEILRKETVGGILLVAAAVIALIWANSPASDSYFALRDFRIGYEPWHLELSLGAWAADGLLAIFFFLVGLELKREFVAGDLRQFSKSVVPITAAVGGVAVPAVIYALINLTSPGTLRGWAIPTATDIAFAVAVLAIIGSHLPSALRIFLLTLAVVDDLIAISIIAVFYSSNIQAGPLLLALIPLAVYTFLAQKHRRFFGTRPAAAWVILLPLGVITWALVHASGIHATVAGVLLGFAIPVIRSQASGGPAAGPGLSEIFEHRFRPISAGIAVPVFAFFSAGVAVGGPDGLISALTDPVAIGIIVALVLGKPIGILGTTWVLTKATRASLDRSLKWIDVFGMSLLAGIGFTVSLLVAELSFGHGSAHDDHAKVGILAASLLAALLAAAVLGTRNRQYRAVEAEEAVDTDQDGIPDVYEEDRRRPGPT0013935_501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
D1-29_01414222hypothetical proteinATGGAGCTCCCCGCGTTCGCGGCCTGGATCCTGATCATCGCCGGTGTCTGGTCGCTGGTGGTCTGGCCGCAGTTCCTCCGCCGCGTGATGAAAGACCCGCGGGCGCGGGATGCTCAGGGCAAGGCAACGAAGTTCCTGTCGGTCCACCTGGTATTGGTTGGCGTCTCGATGGCGCTCGGTGCCGCCACCGCCGTAATCGGGTTTATGGCGCTGCTCGGTTAGMELPAFAAWILIIAGVWSLVVWPQFLRRVMKDPRARDAQGKATKFLSVHLVLVGVSMALGAATAVIGFMALLGNANANANANA
D1-29_01415498hypothetical proteinATGGCACTGAGTGCAACCACTACCCTTCCCCACGCCGTCGGCAGCGTGGCAGCTGTCTTCGCAAACGAGGATTTCCAGCGCCACACCAGTGAATACGTTGGTGGAACGCTGGAATCCTTCGCCGTGGCCGGAGACACTGCCGGGGCTTTCAGCACCACGTCCGTCCGGACCCTTCCCACCACCCGCCTTCCGGAGATTGCACGCAAGTTTGTGGGCGAAAAGCTCACCGTGACTCAGGTGGAGAACTGGGATGCCCCTTCTGCCGACGGATCACGCCAGAGCAACATCACCCTCAAGATCGCCGGTGCCCCCCTCGACGTCACGGCCGTCCAACGCCTGGTGGCGGAAGACGGCAGCACCCGCATTGAGCTGGAGGGTAACGTGACCTCGTCGGTGCCGTTCCTGGGCGGCAAGATCGCCGAGGCGGCAGAGCCCATGGTGGCCAAGGCCCTCAACATCCAGTCGCAGCAGGCCCAGGCCTGGCTCGAAAGCCACTGAMALSATTTLPHAVGSVAAVFANEDFQRHTSEYVGGTLESFAVAGDTAGAFSTTSVRTLPTTRLPEIARKFVGEKLTVTQVENWDAPSADGSRQSNITLKIAGAPLDVTAVQRLVAEDGSTRIELEGNVTSSVPFLGGKIAEAAEPMVAKALNIQSQQAQAWLESHNANANANANA
D1-29_014161545hypothetical proteinATGACGGAGTCATCCAACGCATCGGAACCCAACCCAGCCGCGAAAACCGTCCTCGTGACCGGAGCCACCGGGTACATCGGGGGCAGGCTGGTTCCCAGGCTGCTGGCGCAAGGCCATACCGTGCGGGTCCTGGTCCGTTCGCCGGACAAGATCGAGGGGGTGCCGTGGCGGGACAGCGTGGACGTGGTCCGTGGGAGCCTGGATGATGCCCAGGCCCTCAAAGACGCGCTGCGGGGTGTTGATCTCCTCTATTACCTGGTCCACTCAATGGCGGCAGGCTCAGGATTTGAGGCCAAGGAAAAGTCCATGGCCGAACTGGCCGCCCAGGCAGCCGCGGAAGCGGGAGTCCGGCGGATCGTCTACCTCGGCGGCCTGCATCCCGGGAACACCGGGCTGTCCATCCACATGCGTTCCCGCGAGGCGGTGGGCCGGACGTTCCTGGCCGGTCCTGTGGACGCAGTGGTCTTCCAAGCGGGAGTGGTGATCGGCTCGGGCTCGGCCTCCTTCGAGATGATCCGGAACCTGTCTGAGACGCTGCCTGTCATGCCGGCGCCCAGCTGGGTCCGGAACAAAATAGAAGCCATTGCGGTCCGTGACGTGCTGCACTACCTTGTGTTTGCTGCCGTCCTTACGGAGCCACTGAACCGCAGCTTCGACATCGGATCCCGGGACGTCCTGACCTACGCGGGAATGATGAATGAGTACGCCGCCGAAGCGGGACTCCCGCACCGGCTTATCCTGGCCCTACCGGTGCCCGCCCCACGGCTGGCCGGGCTCTGGGTGGCATTGGTCACGCCCATCCCGCTCTCCATGGCATTGCCGCTGGTCCAATCCCTGCAGCATGACGCCGTCTCCGCGGAACACGATATCGACCAACACATCCCCCCGCCAGATGGCGGCCTCACCGCTTACCGGACCGCCGTCGCCCTTGCGCTGGGGAAGGAACGCGACGGACAGGTGGAGACAACCTGGGCCAATGCCGGCGCCGACGCCGATCCCCTGCCCAGCGACCCGGACTGGGCCGGGCACAGGGTGTTCGTGGATGAGCGCACCTTCCACGGTGATGTTGGCCCGTCTCACGTGTGGACGGTGATCGAGGGCATTGGCGGCCGTAACGGCTGGTATTCGCTTCCCCTGGCTTGGCAGGTCCGCGGGTGGCTGGACAAGCTCACCGGCGGCGCCGGGCTGCTGCGCGGCCGCCGGCATCCTGGGAACCTGGCGGCGGGCGAAGTGGTGGACTGGTGGCGGGTGGAACGGATCGAGCGCGGGAAGCTCCTGCGGCTGCGGGCAGAGATGCGGGCACCCGGCCGCGCGTGGCTGGAGCTGTCTGTGGAGCCGGACAGCGCGGGCAGCCGCTACAGGCAACGGGCCATCTTTTTCCCCAAGGGCCTTAGCGGCAGGCTCTACTGGATGGGCGTACTTCCCTTCCACAGCCTCATCTTTCCTGCTATGTCCAGGAACATCATCGCCGCCGCCCGGAAGATAGCAGGGCAGCAGGACAGTTCCCAAAAAACGGCCGCCCAATACGACGGCGGTTTCCACTAAMTESSNASEPNPAAKTVLVTGATGYIGGRLVPRLLAQGHTVRVLVRSPDKIEGVPWRDSVDVVRGSLDDAQALKDALRGVDLLYYLVHSMAAGSGFEAKEKSMAELAAQAAAEAGVRRIVYLGGLHPGNTGLSIHMRSREAVGRTFLAGPVDAVVFQAGVVIGSGSASFEMIRNLSETLPVMPAPSWVRNKIEAIAVRDVLHYLVFAAVLTEPLNRSFDIGSRDVLTYAGMMNEYAAEAGLPHRLILALPVPAPRLAGLWVALVTPIPLSMALPLVQSLQHDAVSAEHDIDQHIPPPDGGLTAYRTAVALALGKERDGQVETTWANAGADADPLPSDPDWAGHRVFVDERTFHGDVGPSHVWTVIEGIGGRNGWYSLPLAWQVRGWLDKLTGGAGLLRGRRHPGNLAAGEVVDWWRVERIERGKLLRLRAEMRAPGRAWLELSVEPDSAGSRYRQRAIFFPKGLSGRLYWMGVLPFHSLIFPAMSRNIIAAARKIAGQQDSSQKTAAQYDGGFHNANANANANA
D1-29_014173696mfdCOG1197Transcription-repair-coupling factorATGAGCCTCACCGGCCCGTCCCATCACGGTCCGTCCCTTGATGGACTGCGCCGCGTCCTTGCCGGGGACCAGACGTTCGCCCGCGTCCAGGCCGAGGCAGCCAGGGGTTTTGCCTTCCGCGGGCAGGACTACCAGATCAGCGCGCCCGCAGGGCTCCGCGCCGTCCTCCTCGCGGAGATGGCCGGGGGCCTGTCGGGAAACTCATCAGGTCCTGCGCACGCGGATGATGGAACGCGCGACGGCGGGAAACCGGCAGTGGTGCTGGCGGTCACTGCCACGGGACGCGAGGCGGAAGATTTGGCCGCAGCCCTCCGGGCCTACCTGCCCGGCGATTCGGTGGCCGAATTCCCCAGTTGGGAAACCCTGCCGCATGAGCGCCTCTCACCGCGCTCGGACACCGTGGGACGCCGGCTATCGGTGCTGCGCAGGCTCGCGCACCCGGAAAGCTCGACGGCGGGCCCGCTGCGGGTGGTGGTGGCTCCCGTCCGCGCCGTGGTCCAGCCCATCGTCGCCGGCCTGGGTGACCTGGTTCCCGTCACCCTTAAGGTGGGCCAGGAGGTTCCGTTTTCGGATGTTGTCAGGAACCTTGCCGACGCAGCCTACGCCCGCGTGGACATGGTGACGCACCGGGGGGAATTCGCTGTCCGTGGCGGCATCCTGGATGTTTTTCCGCCAACAGAGGACCACCCCATCCGCGTGGAGTTCTTCGGCGACGAGGTGGACCAGATGCGCTGGTTCGCCGTTGCCGACCAGCGCTCGCTGTCGGCGCCCGGCGTCCACCACCCCAGTGAGCTGCATGCCCCGCCATGCCGCGAAATCCTCATCACGCCGTCGGTCATGTCACGGGCGGCAACACTGAAGGCACAGCTGCCTGCCGCCGCCGACATGCTGGAGAAGATTGCCGGCGGAATCACCGTGGAAGGCATGGAGTCCCTGGCGCCGGTGCTGGTTGACTCGATGGTGCCGTTTGTGGAGCAGCTTCCGGCCGGCTCCATTGCGGTGGTCATCGAACCCGAGAAGGTCCGCACCCGCGCACACGACCTTGCCGCCACCAACGAGGAGTTCCTGGAAGCTGCGTGGTCTACGGCCTCTGACGGCGGGACGGCACCGCTGGACCTCAGTTCGCAGGCCTCGGCTGCACTGCACTCGGCCAGCTTCCGGTCCCTGGCCGAGACCCGCAGCTCTGCCCTGGACCATGACGTGTCCTGGTGGTCCATCACGTCGCTTGCCACGGACGAGGAACTCCTCCCGGAGATTGACGTCCTGAATCTTCATGCGCGGGAGCCCCGGGGCTACCAGGGCGACGTCGCCGAAATGATGGATTTCATCGGCTCCCACGTCCGGGACCAGTGGCGGATCGTGGTGGCGACCGAAGGCCCCGGGCCGGCACAGCGGCTGGCCGAATTGTTCCACGATGCTGACATCCCCTGCGCCCGGGTGGACACCCTGGAGAAGGAGCCGCAGGCGGGCATCATCGAGGTGACCACTGCCGCCGTCGGACGCGGTTTTGTCCTGGACAGCCTCAAACTCGCGCTGCTGACCGAAGCGGACCTCCTGGGCAGGACCTCTGCAGGGTCCACGAAGGACATGCGCCGCATGCCCTCAAAACGGCGGAATGCCGTGGACCCGCTGCAGCTCATCGCGGGCGACCATGTGGTCCACGAACAGCACGGCATCGGCAGGTTCGTGGAGCTCATCCAGCGCAAGGTTGCCGGCGGTGGAGACGGCGTCCGCGAATACCTGGTCCTGGAGTACGCGCCGTCCAAGCGCGGGGCGCCGGGCGACAGGCTTTTTGTGCCCACCGATCAGCTGGACCAGGTGACACGCTATGTGGGCGGTGACACTCCCGTGCTCAGCAAGATGGGAGGCTCTGACTGGGCCAGCACCAAATCCAAGGCGCGCAAGGCAGTCAAGGAGATCGCGGGCGAATTGATCAGACTGTACTCGGCCCGGATGGCGTCCAGGGGACACGCGTTCGGACCGGACACCCCATGGCAGCGGGAACTCGAAGAGGCCTTCCCCTACGTCGAAACGCCTGACCAGCTCACCACCATCAATGAGGTCAAAGCGGACATGGAGCGCGAGATCCCCATGGACCGGCTGGTCTCCGGCGATGTGGGCTACGGCAAGACCGAGATCGCCGTCCGTGCGGCGTTCAAGGCGGTGCAGGACGGGAAGCAGGTGGCAGTACTGGTTCCCACCACCCTGCTGGCCCAACAGCACTACGAGACGTTCACCGAGCGCTTCTCCGGCTTCCCGCTCAGGGTTAAAGCGCTGTCCCGTTTCCAGGGGAGCAAGGAAACAAAGGAGACCGTGGAGGGCGTGAAGAGCGGCTCCGTGGACGTGGTGATCGGCACGCACCGGCTGCTGTCCAAGGACTTTGCGTTCAAGGACCTTGGCCTGGTGATCGTGGACGAAGAGCAGCGGTTCGGGGTGGAGCACAAGGAAGCGCTCAAGAAGATGCGCACCGACGTGGACGTGCTGGCCATGAGTGCCACGCCCATTCCACGAACCCTGGAAATGTCCCTCACCGGCATTCGGGAAACCTCCACACTGGCGACGCCCCCGGAGGAACGGCACCCTGTACTCACCTACGTGGGGCCGTTCACGGACAAGCAGAGTTCGGCGGCAATCCGCCGTGAACTGATGCGTGAGGGCCAGGTGTTCTTCGTGCACAACAGGGTTTCCACCATCGAACGCACCGCGGCGAAGATCCGCGAGCTGGTGCCGGAGGCCCGCGTGGAAGTGGCCCACGGGCAGATGTCCGAAAGCCGGCTGGAACAGATCATCGTGGACTTCTGGGAAAAGCGCTTTGACGTGCTGGTGTGTACCACCATCATCGAAACCGGCCTGGACATTTCCAATGCCAACACCCTCATTGTGGACGGCGCGGACAAATACGGGCTCTCCCAGCTCCATCAGCTCCGCGGACGCGTGGGCCGCGGCCGCGAGCGGGCTTACGCCTACTTCCTCTACCCCTCAGAGAAGCCGCTGGGCGAGGTGGCCCTGGAGCGGCTCAAGGCAGTGGCCACCCACAACGAACTCGGGGCGGGCATGCAGCTGGCCATGAAGGACCTTGAGATCCGTGGTGCGGGCAACCTGCTGGGCGGGGAGCAGTCCGGCCACATCCAGGGCGTTGGCTTTGATCTGTACATCCGGCTCGTTGGCGAGGCGGTGGCAGACTACCGCGGTGAGGCCGAGGAAAAGGCCGCCGAAATGAAGATCGAGCTGCCCGTGAACGCCCACCTGCCCCACGACTACGTGCCGGGTGAGCGCCTGCGCCTGGAGGCCTACCGCAAGCTGGCTTCCGCTCTCACGCACGAGGCCATCGACGAGGTCCTGGCCGAGCTGGTGGACCGTTACGGCGAGCCTCCGCTGCCCGCCAACAACCTGATCTCGGTGGCCCGCTTCCGGGTGGGCGCACGGGAAGCAGGCCTCTCCGACGTCGCACTGCAGGGCAACTTCATCAAGTTCTCGCCGGCCCAGCTCCCAGAGTCCAAGCTGATGCGGCTGACCCGGATGTATCCCGGCGCCCAGTCCAAGCCCGCCTTGGACGCGGTGCTGATCCCGAAGCCGAAGACCGCCAGGATCGGCGGCCGCGACCTGCAGGACGCCGAAATCCTGGAGTGGGCCAACGGAGTGATCAGCAACATCTTCACCGAGGCACCTGTCTCCGTGTCGCCGACGGCGAACTGAMSLTGPSHHGPSLDGLRRVLAGDQTFARVQAEAARGFAFRGQDYQISAPAGLRAVLLAEMAGGLSGNSSGPAHADDGTRDGGKPAVVLAVTATGREAEDLAAALRAYLPGDSVAEFPSWETLPHERLSPRSDTVGRRLSVLRRLAHPESSTAGPLRVVVAPVRAVVQPIVAGLGDLVPVTLKVGQEVPFSDVVRNLADAAYARVDMVTHRGEFAVRGGILDVFPPTEDHPIRVEFFGDEVDQMRWFAVADQRSLSAPGVHHPSELHAPPCREILITPSVMSRAATLKAQLPAAADMLEKIAGGITVEGMESLAPVLVDSMVPFVEQLPAGSIAVVIEPEKVRTRAHDLAATNEEFLEAAWSTASDGGTAPLDLSSQASAALHSASFRSLAETRSSALDHDVSWWSITSLATDEELLPEIDVLNLHAREPRGYQGDVAEMMDFIGSHVRDQWRIVVATEGPGPAQRLAELFHDADIPCARVDTLEKEPQAGIIEVTTAAVGRGFVLDSLKLALLTEADLLGRTSAGSTKDMRRMPSKRRNAVDPLQLIAGDHVVHEQHGIGRFVELIQRKVAGGGDGVREYLVLEYAPSKRGAPGDRLFVPTDQLDQVTRYVGGDTPVLSKMGGSDWASTKSKARKAVKEIAGELIRLYSARMASRGHAFGPDTPWQRELEEAFPYVETPDQLTTINEVKADMEREIPMDRLVSGDVGYGKTEIAVRAAFKAVQDGKQVAVLVPTTLLAQQHYETFTERFSGFPLRVKALSRFQGSKETKETVEGVKSGSVDVVIGTHRLLSKDFAFKDLGLVIVDEEQRFGVEHKEALKKMRTDVDVLAMSATPIPRTLEMSLTGIRETSTLATPPEERHPVLTYVGPFTDKQSSAAIRRELMREGQVFFVHNRVSTIERTAAKIRELVPEARVEVAHGQMSESRLEQIIVDFWEKRFDVLVCTTIIETGLDISNANTLIVDGADKYGLSQLHQLRGRVGRGRERAYAYFLYPSEKPLGEVALERLKAVATHNELGAGMQLAMKDLEIRGAGNLLGGEQSGHIQGVGFDLYIRLVGEAVADYRGEAEEKAAEMKIELPVNAHLPHDYVPGERLRLEAYRKLASALTHEAIDEVLAELVDRYGEPPLPANNLISVARFRVGAREAGLSDVALQGNFIKFSPAQLPESKLMRLTRMYPGAQSKPALDAVLIPKPKTARIGGRDLQDAEILEWANGVISNIFTEAPVSVSPTANNANANANANA
D1-29_01418804hypothetical proteinATGGGAGGACACCACGCCGCGTCGGGAGCCGCGGCGTGGGTAGCTGTTGCGTCCACGGGGCCGTACGCGTTCGGTTGGTATCCGCTGGACGCCACGGGCATCCTGATTGGCGGTATGGCCACAGCCGGGACAGCCCTGGTGTGCGACTGGGACCACCGCTCAAGCACTGTGGCGCACTCCCTGCCGCCGTTGTCCAACGTCATAGCGGTGGGGATCGAAAATGCCAGCGGTGGGCACAGGCAGGGGACGCACTCCATCCTGGGGGCTGCATTTTTTGTGCTGCTGGCCACCATGGCGGGGCAGATCCAGCTGCAGACACAGTGGGGATTACTGTCCGTGGGGGCAGGCCTGCTGTGTATGTTCATGATCAACATCGCGGCCAAGGCGCTGAAGCTTTTTCCCAAGTCGGGCTTCATCAGCAACTGGATCTTCGCCCTGACCATGGCTGGGCTGGTTACCTGGTTTGCGCCCGACCAGTGGACCTGGCTTCCGGTGTCGATGCTGACCGGGGTGGTGGTGCATATCGTCGGAGACATGATCACCACGGGGGGAGTGCCGCTGCTCTGGCCCATCGTGATCAAGCCGCCGCGGTTCCTGCGGAAACTCCCGGTGCTCAATGACGTTTGGAAAGCCAACGGAGCATTCTCCCTGCCGTTGCTGGGCAGGGCCGGCTCCCGGCGCGAATGGCTGGTGCTTATTCCTGTCAGTGCCTACGCCATGGTTGGCATGTGCATCGCCGGCTGGTCGCTCGCCCACAGTCAGTGGTCGCGCGTGGCTGAGGCCTGGGCCCAGATAGGGCTCTAAMGGHHAASGAAAWVAVASTGPYAFGWYPLDATGILIGGMATAGTALVCDWDHRSSTVAHSLPPLSNVIAVGIENASGGHRQGTHSILGAAFFVLLATMAGQIQLQTQWGLLSVGAGLLCMFMINIAAKALKLFPKSGFISNWIFALTMAGLVTWFAPDQWTWLPVSMLTGVVVHIVGDMITTGGVPLLWPIVIKPPRFLRKLPVLNDVWKANGAFSLPLLGRAGSRREWLVLIPVSAYAMVGMCIAGWSLAHSQWSRVAEAWAQIGLNANANANANA
D1-29_01419246hypothetical proteinATGTCCAGCAAGACCACGGCTTCCAGCCAAGACACGATCCAGACGCCCCAGAACGAGAACAGCCTGGTGACCAGCATCGCCCTGTTTGCGGTCATGATTGCGCTTTTCCTGGGCGCCATCTACTCCCTGTCCTTCCTCACCCTGGACAACCCTTGGCCGATGGCCGTCTGCCTTGGCCTCTTCGCCCTGGCATTCTGGATCCCGCAGACCATCCTGGGCCGCTCCGACTCCGCCGGCGAGCACTAGMSSKTTASSQDTIQTPQNENSLVTSIALFAVMIALFLGAIYSLSFLTLDNPWPMAVCLGLFALAFWIPQTILGRSDSAGEHNANANANANA
D1-29_01420726deoCCOG0274Deoxyribose-phosphate aldolaseTTGAGCAACGAAGCAACCCCCGCCATGCAGCAGTCCGCCGGCACCACTCCCGCGCCGGACAGCATCGCTTCCTTCATCGACCACACACTCCTCAAGCCAGAAGCCAGCGAGGCTGACATCCTGAAAGTGTGCGCTGAAGCCGCGGAATACCATTTCAAGTCGGTTTGTGTGAACCCCATCTGGGTCAAGACAGTCAAAACGGCCCTCAGGGGATCGGGCGTCCTGACCTGCTCGGTGGTCGGATTCCCCCTGGGCGCAACTCCCAGCGACGTCAAAACCTTCGAGGCCCGGGGCGCCGTACTGGACGGCGCCGACGAAGTGGACATGGTCATCAACATCGCGGCCGCCCGGGCAGGTGACAAGGGAGCCCTGGTGGAGGACATCGCCGCGGTGGCGGAAGCCGTCCATGCGAGTGGCGCCATCCTGAAGGTCATCATTGAAACTGCGCTGCTGGACGATGCCCAGAAAGTCCTGGCCTGTGAGGCGGCGGTGGAAGCCGGGGCGGACTTCGTCAAAACGTCCACCGGGTTCAACGGCGGCGGTGCCACAGCCGAAGACGTTGCCCTGATGCGCCGCACCGTGGGCCCTTCCCTTGGCGTTAAGGCCTCCGGCGGCGTACGGTCGCTGGCCGACGCTCAGGCTATGATTGCTGCTGGTGCAACACGTATTGGTGCCAGCTCCGGAATTGCCATTGTCAAAGGTGAACAAGGTTCATCCGAGTACTGAMSNEATPAMQQSAGTTPAPDSIASFIDHTLLKPEASEADILKVCAEAAEYHFKSVCVNPIWVKTVKTALRGSGVLTCSVVGFPLGATPSDVKTFEARGAVLDGADEVDMVINIAAARAGDKGALVEDIAAVAEAVHASGAILKVIIETALLDDAQKVLACEAAVEAGADFVKTSTGFNGGGATAEDVALMRRTVGPSLGVKASGGVRSLADAQAMIAAGATRIGASSGIAIVKGEQGSSEYPGPT0017445_1840DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017445-deoC-K01619NANA
D1-29_01421876hcaD3-phenylpropionate/cinnamic acid dioxygenase ferredoxin--NAD(+) reductase componentATGTCTGCTCCGGCATCGTTTAACTCCGTCTCCAGCGCACCCCATATCGTCATTGCCGGCGCCGGACCGGCAGCCCAGGCCCTTGTCAGCCAGCTGGGGCAGGCCCGTTTCAGCGGCAGCATCACCGTGCTGAGCAACCGGGACGACGCCCCGGAAGAATTGCTGGAACTCGCTGCCCTGCCCCAGGTTTCGGTCCGGTTCGGCCAGCCGGCCAGCTTCATCGACGCTGACAACCGCACCGTCACCACGGCGGACGGCATGGAGTTCAGCTATGACCAGCTGGTCATAGCCACCGGCTCCGCCCCTGTGGCGTCCCCCGTTGAAGGAGCCAGCAGATGCCTCAGCTACTCCACCATCGATGACGCCGCGCGGATCGGCGAAGCGGTCCGGGAAGTCACCCGCGAATTGGGCCGCCGCCCGCTCGGCATCCTGGTGGGCACGGGTGCGGCAGCAGGACAGGCGGAAGCCGTGCTCCGGGCGCGCGGTGTCCGCCCCATCCGGACCACCCTCCGCCCGGCAGCCGTGGTGCCTTACGATTCGGAGTCCACCCTCTCAGCATCAGGGCTCATTGCCACCGGCATCGTTTTTGAGGACGGCAGCAGCATGAATGGCGATCTGGTTGTCATGGCGGAGGAAAGGGTCTCCCGTGACGGGCTGGCCGCTGCCGCCGGCCTCCGGACGGCGCCTAACGGCGGCATCGCCATTAACCAGGACTTCCGGACGTCCGTCCCGGGCATCTGGGCCATCGGCGACGCGGCAGCGTTCGACGGCGTGCGCCTGGGGCTGCTGGTGGCGGCGGCCTCCGCCGCAGGGGCCTGCGCCACCCGGCTCATGACGGCCGCGCCGGCGCAGCCGCGGGCGCAGGTTGCCGCCTGAMSAPASFNSVSSAPHIVIAGAGPAAQALVSQLGQARFSGSITVLSNRDDAPEELLELAALPQVSVRFGQPASFIDADNRTVTTADGMEFSYDQLVIATGSAPVASPVEGASRCLSYSTIDDAARIGEAVREVTRELGRRPLGILVGTGAAAGQAEAVLRARGVRPIRTTLRPAAVVPYDSESTLSASGLIATGIVFEDGSSMNGDLVVMAEERVSRDGLAAAAGLRTAPNGGIAINQDFRTSVPGIWAIGDAAAFDGVRLGLLVAAASAAGACATRLMTAAPAQPRAQVAAPGPT0019730_2530DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
D1-29_01422291hypothetical proteinATGTTCACGGCCTGGACGTTCTTGATGAACCCCAGCGTAGGCGGCGGGTTTTTCCGGCGTGTTTCCCGAGGGTTGCCGAAAAGATGGGCCCCGTTCGCCAACGTTTACTGGCCGGTAACAGAAGCCGTGACCTGCATCTCATTCAGCGCCGGAATGACATGCAAGGCCGGAATGACCTGCAAGGCCGGAATGACATGCAAGGCGGGTGGCGCCGTCGAAACAGCGGAGCTAGACGCGGATCCGGTAACCCCGCTTGACCACGGTTTCCACGAGGCGGCCGTCCGGCAGTGAMFTAWTFLMNPSVGGGFFRRVSRGLPKRWAPFANVYWPVTEAVTCISFSAGMTCKAGMTCKAGMTCKAGGAVETAELDADPVTPLDHGFHEAAVRQNANANANANA
D1-29_014231155hypothetical proteinATGAATGCACTTGCACCGGCCGAAGCCCCGCAGCTTGCCGAGGCGCCCGGGCAGGAGCCTACGGACTCCCCGCTGGAAGGGTTCCGCATCGGAGTCACCTCGCACCGCCGATCACGGGACCTCATTGAGGCCCTGGAACGCCGCGGTGCCGAGGTCCTGCATGCCCCGGCGTTGAAGATCGCCCCCGTACAGGAAGACGTCCGCCTCATCGAGGACACCCGTGCCATCATCGCGGCACGCCCCGACCTGTGCATCGCCACCACCGCCTATGGGATGCGCCGCTGGTGCGAGGCCGCTGATTCCTTTGGCATCGGCGAGGAGCTGCTGGAAACCCTGGACGCCTGCCGGATGTTTGTGCGCGGGCCAAAAGCCCGCGGTGCCGTCCGCGCGGCCGGCCTTGCCGACGTCGGAATCAGCAGTGACGAAACCACTGCGACGCTGGTGGATATGCTGCTCGCGGAAGGCGTGCGCGGCAAGACAGTGGCCGTGCAGCTGCACGGCTATACCGATGTCCGGCAGCTGGAGCGCCTCCGGATGTCCGGCGCCACCGTACTGACGGTGACACCCTACCGCTGGGTCAAGCCTGAGGGTGAGGACCGGCTCCCCCGGCTCATCGAAGCGGCATGCAGCGGGAACCTTGACGTCCTGACGTTTACCTCCGCCCCCGCCGTGGACGCCATGTGGAGCACAGCCCATGAGATGGGTGTCTACAAACAGCTGATCGACAGCCTGAAGACAAACGTCACTACGGCCGTGGTGGGCCCGGTCACGGCCCAGCCGCTGCTCGACGCCGGCGTCACCCCGTTGATTCCCGAGCGGTTCAGGATGGGTGCCCTGATCCGTCTGGTGGGTGAGCACCTGGCCCTCAACCATGTCCGGCGCCTGGACACCAGGTCCGGCAACATCGAACTCCGAGGACGCAGCCTGCGGATCGACGGACAGCCGGTGGAGCTTGCGCCTGCCCCGCTGCTGTTGCTGCGCGCCCTTTTGGGAGCCGGCGGCGCCGTGCTCTCCCGCGAGTCACTCTCGGACCTGCTGGAGCTGAGGGGCTCGGTCCATGCGTTGGACATGACAGTCAGCCGCCTGCGGTCCTCACTGCCGGACGGCCGCCTCGTGGAAACCGTGGTCAAGCGGGGTTACCGGATCCGCGTCTAGMNALAPAEAPQLAEAPGQEPTDSPLEGFRIGVTSHRRSRDLIEALERRGAEVLHAPALKIAPVQEDVRLIEDTRAIIAARPDLCIATTAYGMRRWCEAADSFGIGEELLETLDACRMFVRGPKARGAVRAAGLADVGISSDETTATLVDMLLAEGVRGKTVAVQLHGYTDVRQLERLRMSGATVLTVTPYRWVKPEGEDRLPRLIEAACSGNLDVLTFTSAPAVDAMWSTAHEMGVYKQLIDSLKTNVTTAVVGPVTAQPLLDAGVTPLIPERFRMGALIRLVGEHLALNHVRRLDTRSGNIELRGRSLRIDGQPVELAPAPLLLLRALLGAGGAVLSRESLSDLLELRGSVHALDMTVSRLRSSLPDGRLVETVVKRGYRIRVPGPT0003665_176DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
D1-29_014241035cysG_1Siroheme synthaseATGCAGCTCAGCATTGATCTCACCGGCCGCGAAGTCCTGGTCACAGGCTCGGACCACGCGGCGCGCCAGGCGGTCCGCCGCTATGAAGCCGCCGGCGCCGTCGTGTACCGCCTCAGCACCCCGCACGGTGCTGAGCATGACGGCCCGCTGCCCGAACGGCCGTTCCTGGTGGCAGCAGTCAATGATGGCCAGCCTGGCTGGGAAGCCCTCCTGGAGCGGTGCCGCGAAACCGGCATTCCCGTTTCCACCGAGCCTGCTGCCGGTCAGACCGGCCACGTCACCCTGGTGGGTGGCGGGCCGGGCACCACCGAGTTACTGACCGTCGCCGCCGTCAAGGCGCTGCGGGATGCCGACGTCGTGTTCTACGACCGGCTGGCACCCTACCAGGAGCTGCCCTCCCTGACATCGGCTGAACTGGTGGATGTGGGCAAGAAGCCCGGTCACCACAAGGTCAGCCAGGGCGACATCGAGAAGCTGATGGTGGAGAGCGCACTGGCCGGAAACAACGTGGTCCGGCTCAAGGGCGGGGACCCCTACGTCTTTGGCCGCGGCGGCGAGGAAGTGGCTTCCTGTGTCGCGGCGGGAGTACCCGTCCGGGTGATCTCCGGCGTTACCAGCGCCATCTCCGTTCCGGCAGCGGCAGGGATTCCGGTAACCCACCGCGAAGTCAGCCACATGTTTACCGTGGTCTCCGGCCACGCCCCCCTTTCCGAAAAGGAGCTCACCCACCTGTCAGGCCTGGGCGGCACGATTGTGGTCCTGATGGGCATCGGCACCCTGCACCATCTGGCGGCCGGTCTCCGCCGCGCCGGCATGCGTGCCGACATGCCCATGGCAGTGGTGGAACGTGGCTACCGGCCCGGACAGCGCACCACCATCGCGGACTTGGGCACCATCGTGGGAGCTGCCTCCGGCTGCACCAACCCGGCCGTCCTGGTCATTGGCGAGGTGGTTCGCGTGGCAGAAGCCAACCGTGGGCATGCTGAGGCCGCCGCCGACCTGGACAGGCTGGCGGCCTCGCTGCTGGGTTCGTGAMQLSIDLTGREVLVTGSDHAARQAVRRYEAAGAVVYRLSTPHGAEHDGPLPERPFLVAAVNDGQPGWEALLERCRETGIPVSTEPAAGQTGHVTLVGGGPGTTELLTVAAVKALRDADVVFYDRLAPYQELPSLTSAELVDVGKKPGHHKVSQGDIEKLMVESALAGNNVVRLKGGDPYVFGRGGEEVASCVAAGVPVRVISGVTSAISVPAAAGIPVTHREVSHMFTVVSGHAPLSEKELTHLSGLGGTIVVLMGIGTLHHLAAGLRRAGMRADMPMAVVERGYRPGQRTTIADLGTIVGAASGCTNPAVLVIGEVVRVAEANRGHAEAAADLDRLAASLLGSPGPT0003685_162DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0003685-sirA|ylnD|cysG|cobA-K02303NANA
D1-29_014252643nasD_1COG1251Nitrite reductase [NAD(P)H]GTGACCGAACAGACTTACAGCACAGAGAACCCGCGCCGCATTGTCGTCGCCGGCGGCGGCCCTGCAGCCCACCGCTTTGCAGACGCGATGCACGCCCGTGGCCTCGATGGCTGGCATGTCACGGTTCTCACTGAGGAAGCACACCTCCCCTATGACCGGGTGGCCCTGAGCAAGGCCTTGACCCAGACCGACTACGACCTCACCCTGGGCGATGCGTCCATGTGGGACCACGAGGCCATGGACCTGCGCACCGGCGAGCGCGTGGTTAAGGTCAACCACGAAGCCAAGACGGTCGAGACCGCCGCGGGCAACACGTACGCCTACGACTCCCTTGTGGTCGCCACGGGTTCAAATGCGGCCCGGCTGCCGATCCCCGGCGCCGAGCACACCCACGTGTACCGCACGCTCGAAGACGTGTGGGCCATCAACAAGGCCATTGCCGAACTCACCGAAAAGCTTGGCCGCCAGGTCAACGCCGTCACCATCGGCGGAGGCCTTCTCGGGCTCGAGTCGGCCGCCGGCACGGAGCAGCTGGGCGCCAACCCGATCGTCATCGACGGTTCACAGTGGCTGATGGCCACACAGCTTGACGAAGGCGCGGGCCAGGCAATGGGCCGGCTCATCAAGGCCAAGGGCTTCGAAGTCCACGGCGGCGTCTTCCCTTCGGAAGTATTGTCCGACGACGAGGGCCAGGTTACCGGTGTCCTCATGGCTGACGGCCGCGTTATCGACGCCGATATGGTGATCGTCGCCATCGGCGTCCGCCCGCGGGACGAGCTCTTCCGCGCGGCCGAAGGCGAAGAGCAGGTGTTCAGCCTGGGCCAGCGCGGCGGCGTGGTCATCAACGACTACTGCGCCACGGAAGTACCTGACATCTTCGCCATCGGCGAGGTGGCGAACTTCGGCGGCATGTGCCTGGGGCTGGTTGCTCCCGCGAACACCATGGCGGAGATCGTCGCCGACCGCCTGCATGGCGGCGAGGCTACCTTCCCCGGCTTTGACACCGCCACCAAGCTCAAGCTGTCAGGTGTGGATGTTGCCAGCTTCGGCGACGGCTTCGCCAAGACTGAACACTCACTCGAGATCGTCTACGCTGACCCCGCCCGCGGCGTCTACCAGAAGATCGTCACCACCGACGATGCCAAGACCCTGCTGGGCGGCATCTTCGTGGGCGACGCGACCCCCTACACAAGCCTTCGCCCGCTCCTCGGCCGGGAACTCACCGCCGAGCCCGGCGCCTACCTCACCGCGGCCGGTGGCGGCGATGCACCCGACACCGAACTGCCGGACGATGCCATCCTGTGTTCCTGCAACAACGTTGCTGCGGGCACCATCCGTGACACCATCAACGGCTGCGGCGCCTGTGAGGGCAACGCCCCTGTCCAGGAACTGGGCGAACTGAAGGGCTGCACGCGCGCCGGAACCAGCTGCGGTTCCTGTGTCCCCATGCTGAAGAAGCTGCTTGAAGGCGAACTGACGAAGTCCGGCGTCGAGGTCTCCAAGGCCCTCTGCGAGCACATCGAGCTGTCCCGCCAGGAACTCTTCGACGCCATCCGCGTCCTGGAGCTCACGTCCTTCGAAGAGATCATGGCCAAGTACGGCACCGGCGCCGGCTGTGACATCTGCAAGCCCACCATTGCCTCCATCCTGGCCAGCCAGCACAACGCCTACGTCCTGGACGCCGGCCGCGGCGCCCTGCAGGACACCAACGACCGCGCCCTGGCGAACATGCAGAAGGACGGCACCTACTCGGTGGTCCCCCGCATCGCCGGCGGCGAGATCACCCCGAAGAAGCTCGGCGTCATCGCCGCCGTGGCGGAAAAGTACAACCTGTATACCAAGATCACCGGCGGCCAGCGCATCGACATGTTCGGCGCCCGGCTGGAGCAGCTTCCGGAAATCTGGAAGGAGCTGGTGGACGCCGGCTTCGAATCCGGCCAGGCCTACGGCAAGAGCCTTCGCACCGTGAAGTCCTGTGTTGGTTCCACCTGGTGCCGCTTCGGTGTGCAGGACTCCGTGGCGATGGCCATCCAGCTGGAACTGCGCTACCGCGGCCTTCGCAGCCCGCACAAGCTCAAGATGGGCGTGTCAGGCTGTGCACGCGAATGTGCCGAGGCCCGCGGCAAGGATGTCGGCGTGATCGCCACCGCCGACGGCTGGAACCTTTATGTCGGCGGTAACGGCGGCGCCACCCCGGCGCACGCCCAGCTGCTCGCCAAGGACCTCGACGACGAAACCTTGCTCAAGTACATCGACCGCTATTTCATGTACTACATCCGCACCGCTGACCGCCTGCAGCGCACCGCACGCTGGCAGGAGGAGCTCGACGGCGGCATCAAGCACGTCGAGGACGTGGTGGTGAAGGACACCCTGGGTATCGCCGAAGAGCTCGAGGCGGCCATGGCCAAGCACGTCGACACCTACGTGGACGAATGGGCTGACACGCTGAAGGATCCCGAGCGCCTGCGCCGGTTCCGTTCCTTCGTCAACGCGCCGGACCAGAAGGACGACTCCATCACCTTCGTCCCCGATGAGCGTGGCCAGATGCGTCCGGCCACTGCGGAAGAGAAAGGGAAGGTACTGATCGGGGCCTCCATCCCCGTGCGTCGCTCCACACCCGACTTGGACGAAAACGAGGTATAGMTEQTYSTENPRRIVVAGGGPAAHRFADAMHARGLDGWHVTVLTEEAHLPYDRVALSKALTQTDYDLTLGDASMWDHEAMDLRTGERVVKVNHEAKTVETAAGNTYAYDSLVVATGSNAARLPIPGAEHTHVYRTLEDVWAINKAIAELTEKLGRQVNAVTIGGGLLGLESAAGTEQLGANPIVIDGSQWLMATQLDEGAGQAMGRLIKAKGFEVHGGVFPSEVLSDDEGQVTGVLMADGRVIDADMVIVAIGVRPRDELFRAAEGEEQVFSLGQRGGVVINDYCATEVPDIFAIGEVANFGGMCLGLVAPANTMAEIVADRLHGGEATFPGFDTATKLKLSGVDVASFGDGFAKTEHSLEIVYADPARGVYQKIVTTDDAKTLLGGIFVGDATPYTSLRPLLGRELTAEPGAYLTAAGGGDAPDTELPDDAILCSCNNVAAGTIRDTINGCGACEGNAPVQELGELKGCTRAGTSCGSCVPMLKKLLEGELTKSGVEVSKALCEHIELSRQELFDAIRVLELTSFEEIMAKYGTGAGCDICKPTIASILASQHNAYVLDAGRGALQDTNDRALANMQKDGTYSVVPRIAGGEITPKKLGVIAAVAEKYNLYTKITGGQRIDMFGARLEQLPEIWKELVDAGFESGQAYGKSLRTVKSCVGSTWCRFGVQDSVAMAIQLELRYRGLRSPHKLKMGVSGCARECAEARGKDVGVIATADGWNLYVGGNGGATPAHAQLLAKDLDDETLLKYIDRYFMYYIRTADRLQRTARWQEELDGGIKHVEDVVVKDTLGIAEELEAAMAKHVDTYVDEWADTLKDPERLRRFRSFVNAPDQKDDSITFVPDERGQMRPATAEEKGKVLIGASIPVRRSTPDLDENEVPGPT0000450_279DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
D1-29_01426375nirDCOG2146Nitrite reductase (NADH) small subunitATGACGGCAACACTGGAAATTGGGGCGGTCGTAACCGATGCAGCCGGAACCATCACCGGCTGGCACCGCGTCTGCCCGGTGGATGAGCTGGAGCTCGCCTGGGGCGAGGCTGCGCTCATCTCCGGCCGCCAGGTGGCCATCTTCCGCACCGGCCCCGCCGAGGTATTCGCGGTGGCCCACGAGGATCCTGCCACCGGCGCCCACGTGATGGCCCGGGGAATCATCGGATCCCGCGGCGCCCGTCCCACCATTGCCTCCCCGCTGCACAAAGAGGTCTACGACCTCGAAACCGGAGAATGCTTCGGAACGGCGGAACTTCGGCTTGAAACATTCAGCACCCGCATCTCCGACGGCTTCGTCGAGGTTGAGCTCTAGMTATLEIGAVVTDAAGTITGWHRVCPVDELELAWGEAALISGRQVAIFRTGPAEVFAVAHEDPATGAHVMARGIIGSRGARPTIASPLHKEVYDLETGECFGTAELRLETFSTRISDGFVEVELPGPT0000455_622DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
D1-29_014271749COG1109putative phosphomannomutaseATGACCCCCTCCGATGCCGATTCCCGCCTCCTCAGTCAGGCCCGTGAATGGGCAGCACAAGATCCGGATTCCGCAACGTCCGCCGAGCTCACCGAGCTGATCCGTCTCTACGAGGACGGCGTCCCGGTTGCCCGCCAGGAACTGGCCGACAGCTTTAATGGCACCCTGCAGTTCGGCACCGCGGGCCTCCGCGCCGCCCTGGGTCCCGGCCCCAACCGGATGAACAGGGTGGTGGTGCGCCGCGCCGCTGCCGGGCTGGCCGCTTTCCTGCTGGAAGCAGTGGGTGAGGCAGCGCCCGGGACTGCGCCGCGCGCCGTCGTCGGCTATGACGCCCGTTACAACTCGGACATCTTCGCTGAGGAAACCGCAGCGATTTTTACCGCCGCCGGAATCGAAACCTTCCTGATGCCTGCCGCGTTGCCCACTCCCCTGCTGGCTTTTGCCGTCCGGGCACTGGATTGCGACGGCGGTGTCATGGTCACAGCCAGCCATAACCCTCCGCAGGACAATGGCTACAAGGTCTATCTGGGCCGCCATGCAGTGGAGGAAAGCGGCCGCGGGGCCCAGATCGTGGCACCGTATGATGCCCGGATCGCCGCCACCATCGAAGCTGTGGGTCCGTTGGACACCATCGGCCTGGCGGAGCGGGGCTGGACTGTTTTGGATCCGTCCATCGTGGCGGACTACACGCGTGCGACGGCGGCACTCGCCGCTCCCGCCCATTTCCCGGCACGTGACGTCCGGATCGTTCTCACGCCCATGCACGGGGTTGGCGGGGAGACTGCGGTGTCGGTACTGAATGCTGCCGGCTTTGCCGATGTCACCCTGGTGGCTGAACAGGCTGAACCGGATCCCGATTTTCCCACGGTGAGCTTTCCCAACCCGGAGGAGCCGGGCGCGCTTGACCTCGCCCTGAAAACGGCCGCCACGGTGGGGGCTGATATTGTCCTCGCCAACGATCCGGATGCGGACAGGGCGGCAGCAGCGGCCAAGGACCCCGACACCGGCCTGTGGCGGATGCTCCGGGGCGACGAGGTGGGCGCGCTGCTGGGGGCACACATCGTTGCCAGGCTGGCCGCCGCGGACGGCGAAGAGGCCGAACGGGCCCACCGTGTATTCGCGAATTCCATTGTTTCCTCACGGCTGCTCTCGCGCATCGCCGCCGCGGCAGGCTACCGACACGAGGAAACACTCACGGGCTTCAAATGGATTTCCCGCGTGCCCGGACTTCTCTACGGCTATGAAGAAGCCCTTGGCTACTGCGTTGCACCCGATCTGGTCCGGGATAAGGACGGCATCTCCGCCGCCGTCCTGATTGCCGAACTCGCGGCCACGGCCAAGGCGGACGGGAAAACCGTCTTCGACACCCTGGACGAGCTGTATCTGCGGCATGGCCTGCACGCCAGCGACCAATTAAGCATCCGGGTAGCCAATCTGGGGCTGCTGGATGCCATGATGAACCGGCTCCGGGTCAGCCCGCCTGAATCCTTCGGCTCGTCCGTTGTGGAGTCGTTCGTTGATCTGGCCGAGGGCAGCGGGAGCCTGCCGCCCACTGACGGACTGCTTTATCTGACTCGTGACGGCACCCGGGTGATCATTCGGCCCAGCGGCACGGAACCCAAGCTCAAGTGCTACCTGGAAGTGATTCACCCGGTGGAATCGGCCGCGGAACTGCCGCACGTAAGGCAGGCAGCCCGCACCGCCCTGGACCAGGTGCTGGGGGATGTGCGCGAAGCCCTGGGCCTCTAGMTPSDADSRLLSQAREWAAQDPDSATSAELTELIRLYEDGVPVARQELADSFNGTLQFGTAGLRAALGPGPNRMNRVVVRRAAAGLAAFLLEAVGEAAPGTAPRAVVGYDARYNSDIFAEETAAIFTAAGIETFLMPAALPTPLLAFAVRALDCDGGVMVTASHNPPQDNGYKVYLGRHAVEESGRGAQIVAPYDARIAATIEAVGPLDTIGLAERGWTVLDPSIVADYTRATAALAAPAHFPARDVRIVLTPMHGVGGETAVSVLNAAGFADVTLVAEQAEPDPDFPTVSFPNPEEPGALDLALKTAATVGADIVLANDPDADRAAAAAKDPDTGLWRMLRGDEVGALLGAHIVARLAAADGEEAERAHRVFANSIVSSRLLSRIAAAAGYRHEETLTGFKWISRVPGLLYGYEEALGYCVAPDLVRDKDGISAAVLIAELAATAKADGKTVFDTLDELYLRHGLHASDQLSIRVANLGLLDAMMNRLRVSPPESFGSSVVESFVDLAEGSGSLPPTDGLLYLTRDGTRVIIRPSGTEPKLKCYLEVIHPVESAAELPHVRQAARTALDQVLGDVREALGLPGPT0017865_120DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_RELATED_PROTEINS,PGPT0017865-manB|yhxB-K01840NANA
D1-29_01428504hypothetical proteinATGAAAATGGGGCAGGGGGTGGAATGGGCGTTGCACAGCTGTGTGAACATGTCCTGGACCCCCTTGGGCGAGGCCGTCAGCAGCGCCCGCCTTGCCGAGTTCTACAAACTTCCGGCCGCTTACCTTAACAAGCAGCTCCAGGCTTTGGTGCGGGCTGAAATCCTGACATCCGTTTCGGGGCCGCGCGGCGGCTTCCAGCTTGCCCGCCGCCCGGAGCAGATTTCCGTCCTGGACGTGGTCCTGGCGATCGAGGGAAATGACCATGCCTTTCGGTGCGAGGGCATCCTCAAAGATGCGCCCGGCGGCGCCCCCGAGGCCGATTACGCGCGCACCTGCCTTATATCCCAGACCATGCGGCACGCCGAAGTCACCTGGCGGACCGAGCTCTCCAGGCAGTCCATTGCCGGGATCGCAGAGTCCATCGAGCGCCGTTTTCCCGACGCCAGGGAGGATACTGTCCGCCGGCTGATGGGCACCCGGGGCGCGCCCGAACGCACGGCCTGAMKMGQGVEWALHSCVNMSWTPLGEAVSSARLAEFYKLPAAYLNKQLQALVRAEILTSVSGPRGGFQLARRPEQISVLDVVLAIEGNDHAFRCEGILKDAPGGAPEADYARTCLISQTMRHAEVTWRTELSRQSIAGIAESIERRFPDAREDTVRRLMGTRGAPERTANANANANANA
D1-29_01429819punAPurine nucleoside phosphorylaseGTGAGTAATACAGACTTCCTGAACACTGACCCTTTTGCCGCCGCCAACGCAGCCGCCGCCTACATCGCCGAGGAAACGGGTGTGGACAGCCACGACGTCGCCCTGGTGCTGGGTTCAGGCTGGGGTGAAGCGGCCGAAGTAATCGGCACTACCACGGCAACGCTCTCGGCGGACGAGGTTCCCGGCTTCCACGCGCCCGCGGTAGAGGGCCATGTGGGCACCATCCGCTCCATCCTGACGAAGGAAGGTAAGCGGGCGCTGGTTCTGGGTGCACGGACCCATTACTACGAGGGGAAGGGCGTACGTTCCGTGGTCCATGGCGTCAGGACCGCAGCTGCAGCAGGCTGCACAACGCTGGTCCTCACCAACGGGTGCGGAGGCCTGAACGAAAGCTGGCCCCCTGGCACTCCCGTACTCATCAAAGATCACATCAACCTCACCGCGGCGTCACCACTGGAAGGCGCCACGTTCGTTGACCTGACAGATCTCTACTCCGCGCGCCTCCGTACACTCGCCCGCGAAGTGGATTCCTCCCTTGACGAGGGCGTGTACGCGCAGTTCACCGGGCCGCACTACGAAACGCCGGCGGAGGTCCAGTACGCCAAGCGCATCGGCGCTGACCTTGTGGGCATGTCCACCGCCCTGGAAGCGATCGCCGGCCGCCACGCAGGCATGGAAGTGTTCGGTATTTCGCTCGTGACCAACCTGGCCGCCGGCATCAGCCCTGCACCACTCAGCCACCAGGAGGTCATCGAGTCCGGACACGCCGCCGGACCGCGCATCTCCAAGCTTCTGGCCGAGATCATCGCCAAGCTCTAAMSNTDFLNTDPFAAANAAAAYIAEETGVDSHDVALVLGSGWGEAAEVIGTTTATLSADEVPGFHAPAVEGHVGTIRSILTKEGKRALVLGARTHYYEGKGVRSVVHGVRTAAAAGCTTLVLTNGCGGLNESWPPGTPVLIKDHINLTAASPLEGATFVDLTDLYSARLRTLAREVDSSLDEGVYAQFTGPHYETPAEVQYAKRIGADLVGMSTALEAIAGRHAGMEVFGISLVTNLAAGISPAPLSHQEVIESGHAAGPRISKLLAEIIAKLPGPT0013380_1532DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783NANA
D1-29_014301341lpdACOG1249NAD(P)H dehydrogenase (quinone)ATGGTCGCTGCCTCACTTGGAGCGCAGGTCACCATCATCGAACGCGCCGGGCTGGGCGGCTCGGCGGTGCTTACCGACGTCGTTCCTTCCAAGACACTGATTGCCACCGCGGACCTGATGACCCGCGTCGGTGAGGCAGGCGAGCTGGGAGTGAAGTTCGACGTCGACGGCGGAGACTTTGTGCCGGTGATGCGGGCTGACCTCAAGCACATCAATGACAGGCTCCTCAACCTGGCACGCCAGCAGTCGCGGGACATCACGGCCGGCCTGGAACACCAGAACGTCCGCATCCTGATCGGGTCCGGCAGGCTGGTGGACAGCCACACCATCGAGGTCATCACCGCGGACGGCACAGAAACGGTCGAGGCGGACACCATCCTGCTGACCATGGGGGCGCACCCGCGGGAACTGCCCACCGCCCGGCCCGATGGCGAACGCATCCTGAACTGGGCCCAGATCTACAACCTCGATGAGCTTCCGGAGGAACTCATCGTGGTGGGGTCCGGCGTTACCGGTGCCGAATTCGCATCTGCCTACAACGGCCTGGGTTCCAGGGTCACCCTGATCTCCAGCCGTGACAGGGTGCTGCCGGGTTCGGACACCGACGCTGCAGAGGTTTTGGAGGAGGTCTTCGAGCGCCGCGGCGTCAGGGTCCTTTCCCGCTCACGCGCGGAGACGGTGGAGCGCACCGCCGACGGCGTGGTGGTCACCCTCAGCGACGGCGCCAAGGTCACCGGCAGCCACTGCCTGGTCTGCGTCGGATCCATTCCCAACACGGCCGGCATTGGCCTTGAAGAAGCCGGTGTTGGCCTCACCGAGAGCGGCCACATCAAGGTCGACGGCGTGTCCCGCACCACCGCGCCCAACATCTACGCCGCCGGCGACTGCACGGGCGTCCTTCCGTTGGCATCCGTGGCGGCGATGCAGGGCCGGATCGCCATCGCGCACTACCTCGGCGACACCGTGACGCCCATCAAGCTGCACCAGGTAGCGTCCAACATCTTCACCTCGCCGGAGATCGCCTCGGTTGGTGTCTCTGAGGACGAGATCCAGTCCGGCAAGTACCAGGGCGACATCATCAAGCTCTCGCTCAAGAGCAATGCCCGCGCCAAGATGCGCAACGCCAAGGATGGCTTCGTCAAGATCTTCGCCCGGAAGGGTTCGGGCACGGTGATTGGCGGCGTTGTGGTGGGCCCTAACGCCTCGGAACTGATCTTCGCCATTTCCATGGCGGTGAAGCAGAAACTGCACGTTGACGATCTCGCCAGCACCTTCACCGTCTACCCGTCCCTCAGCGGATCCATCTCGGAGGCGGCGCGCCGCCTCCACGTCCGGATGTAAMVAASLGAQVTIIERAGLGGSAVLTDVVPSKTLIATADLMTRVGEAGELGVKFDVDGGDFVPVMRADLKHINDRLLNLARQQSRDITAGLEHQNVRILIGSGRLVDSHTIEVITADGTETVEADTILLTMGAHPRELPTARPDGERILNWAQIYNLDELPEELIVVGSGVTGAEFASAYNGLGSRVTLISSRDRVLPGSDTDAAEVLEEVFERRGVRVLSRSRAETVERTADGVVVTLSDGAKVTGSHCLVCVGSIPNTAGIGLEEAGVGLTESGHIKVDGVSRTTAPNIYAAGDCTGVLPLASVAAMQGRIAIAHYLGDTVTPIKLHQVASNIFTSPEIASVGVSEDEIQSGKYQGDIIKLSLKSNARAKMRNAKDGFVKIFARKGSGTVIGGVVVGPNASELIFAISMAVKQKLHVDDLASTFTVYPSLSGSISEAARRLHVRMPGPT0020470_303DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020470-lpdA-K23842NANA
D1-29_01431186hypothetical proteinATGACTACAGCTCTTGTGCGTCCGCGCAGTGGAAAAATCATCGGTGGCGTGTGTGCAGCGCTGGCAGCGCGCTTCGGGCTGCCAAAGTTCCTCGTCAGGCTGGGCTTTGTGATCTTTGGCCTGGTGGGCATAGGTGAGCTGGTGTACATCGCCCTGTGGATCATGATCCCCAAAGCCCCGGCCTAGMTTALVRPRSGKIIGGVCAALAARFGLPKFLVRLGFVIFGLVGIGELVYIALWIMIPKAPAPGPT0027520_1895DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-PspC-PspB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027520-toxin_pspC-K03973NANA
D1-29_014321563nasD_2COG1251Nitrite reductase [NAD(P)H]ATGAGCGAGCAGATTGTCATTGTCGGATTCGGCCCGGTAGCGGCCCGGCTGATCGATGAGCTGCTGCCGGCAGTGCGCACCGGCCACATCCAGCTGACTGTGGTTGGCGAGGAGCCGGAGGCAGCCTACAACCGCGTCCTGGTGGCCGATCTGGGCGTCGGCCGCACCACGGCTGAGGACCTGGCGTTGTCAGATGCTGCTGCGCTCATGGCTGACGGCGTGGACGTCCGCCTCGGAGTGCGGGTGCGCCGGGTGGACCGCGCCCGGCAGCAGGTGGTCCTCACCGACGGATCCTCGGCGCACTACGAGCGCCTCGTTTTCGCCACGGGTTCCCGCCCCGTCATCCCCAACCTCACCGGCATCAACCCCGACCCCACCTCCCCCGTGCTCCCGGCCGGCGTCACCGCGCTCCGGGACCTGCGGGACGCAGGGGTGCTCCGCGCCGCGGTGGACGGCGGCAAGCGCGTCGTGGTGCTCGGCGGCGGCGTACTCGGCCTGGAAACGGCGCTGGCAGCCTCGGAAGAGGGAGCCACCGTGACGGTGGTCCACAACGGCCCGCACCCGCTGGGACGCAACATCGACCGGGGCGGCGGCGCCGTCCTCGCGGCAAGCCTGCGGCAGTGCGGCGTGCGGATGGCGGGAAACGCCCGGTCCACCGGTGTGGAACACAACGCCCCCGACGGCGGTTTTTCGGCGCTGCTTCTCAGTGACGGTTCGGCAATCGACGGCGATCTGCTGGTCATCTCGTGCGGCGTTCGTCCCCGGATCGAACTCGCTGAGGGCTGTGGCCTGTCCACCGCAACCGGCATCCTGGTGGACCACCGGCTCCGCGCGCACCACGAACCGCATATTTTCGCCATCGGCGACTGTGCCGAGGTCCGCTGCCCTGATCCGGCCTGCGCCGAGTGCCGCAGCGCCAAAGGCCCGTCCGGCCTGGTGGGACCGGGCTGGCGTCAAGCGGAATGGCTGGCCGAGTACCTGACGCTGCTGGCCGCCGGAACCCAGGAGGACGCCGACGCCCTGCCCGCGCTCCCGCAGGAGATGGCAGGCGTTGTTGTCCTCAAGGCCCGGGGAATGAACATGGCCGTGGCCGGTGAGAACGCAGCCGAGCCATGGGACGAGGAAGCCCTGACGTCAGGAGCCGTCAACGGACGCCCGCGGCTGCAGGTTGCCCAGTGGTCGGATCCCGAGCATGGCCGCTACGTCAAGATGACCACCCGCGGAGGTGTGCTGGAAGGCCTGGTGGCGGTGGGCATGCCACGCACAGCCGCCGAGCTGGTGGGGCTCTTCGAGCGTGGTGCCGAGCTGCCCGCGGACCGTTCGCTGCTGCTCCGCCTCGATGGCCCGGACCAGCTGGCCACCTCCGGGCCTACGGACCCGCAGGGAACGGTGTGCCGCTGCGCCGGTGTCAGCGGGGCCAAGATCCAGGATGCCGTGGAAGAGGGCTGTTCCACGGTGGCTGAGGTCTCGAAGGCAACGCGGGCCGGCACAGGCTGCGGCGGCTGTCACGAGGACATCAAGGGCATCATCGAAAAACACTTCCAGGCGGCTCCTGCCGCCTGAMSEQIVIVGFGPVAARLIDELLPAVRTGHIQLTVVGEEPEAAYNRVLVADLGVGRTTAEDLALSDAAALMADGVDVRLGVRVRRVDRARQQVVLTDGSSAHYERLVFATGSRPVIPNLTGINPDPTSPVLPAGVTALRDLRDAGVLRAAVDGGKRVVVLGGGVLGLETALAASEEGATVTVVHNGPHPLGRNIDRGGGAVLAASLRQCGVRMAGNARSTGVEHNAPDGGFSALLLSDGSAIDGDLLVISCGVRPRIELAEGCGLSTATGILVDHRLRAHHEPHIFAIGDCAEVRCPDPACAECRSAKGPSGLVGPGWRQAEWLAEYLTLLAAGTQEDADALPALPQEMAGVVVLKARGMNMAVAGENAAEPWDEEALTSGAVNGRPRLQVAQWSDPEHGRYVKMTTRGGVLEGLVAVGMPRTAAELVGLFERGAELPADRSLLLRLDGPDQLATSGPTDPQGTVCRCAGVSGAKIQDAVEEGCSTVAEVSKATRAGTGCGGCHEDIKGIIEKHFQAAPAAPGPT0000395_39DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000395-nasB-K00360NANA
D1-29_014332247nasCCOG0243Assimilatory nitrate reductase catalytic subunitATGACCACAAGCGCCGACACGCACTGCCCTTACTGCGCCCTGCAGTGCGCCATGACGCTGAAGTCTCCAGCGGAACTGACCCCGGCTTCCGAGCCGGGGTCAGTCCCCGTGCCCGCGAAAACTGCGAAATCTGCTGTGGATGTGCCTCTCCTGGCGGCGCCTCTCACAGTGACCGGGCGCGAATTTCCCACCAACCGCGGTGGCCTCTGCCGGAAGGGCTGGACCTCGGCCAACCTCCTGAACCATGCCGGCCGCATCACTGAACCCCTGCTGAAGGGCGCTGACGGTATCCACCGTCCCATCGGCTGGGACCAGGCCCTTTCCCTGGTCACCACGGCCGTCCAGGAAACCCGCGAGCGCTACGGCGCAGACGCCGTCGGAGTCCTCGGCGGCGGCGGCCTGACCAACGAAAAGGCGTACATGCTGGGCAAGTTCGCCCGGCTTGCCCTTGGCACTTCCCGCATCGACTACAACGGCCGCTTCTGCATGTCCTCCGCCGCGGCCGCCGGGATGCGCGCCTTCGGCGTGGACCGGGGGCTCCCTTTCCCGCTTGAGGACCTGGACAGTGCCAGCACCATCATGATGCTGGGCTCCAACGTGGCCGAAACCATGCCCCCGTTTGTGCAGCACCTCAAAGGCGCCCGTGACGCCGGCGGACTGATCATCGTCGATCCGCGCCGCTCTGCCACGGCCGCTTTCACCTCCGACGGCGGTGGCCTGCACCTGCAGCCCCTGCCGGGCACGGACCTCACCCTCCTCCTGGGCCTGTCCCACGTGGTGATCCATGAAGGCCTGGCGGACCACAGCTTCATCGAAGACCGCACCTCCGGGTACCAGGCTGTGCTCCGCAGCGTGAACTCCTTCTGGCCCGAACGCGTCCAGTCGCTCACCGGCGTTCCCGCGGATCTCATCCGGGAAGCGGCCAGGAGGCTCGCCGACGGCGCCGCCAAGGGCGGAAGCTACATCCTCACCGGCCGCGGGGTGGAGCAGCACGTGGACGGCACCGACACCGCCACCGCGGCCATCAACCTCAGCCTCCTGCTGGGCCTTCCGGGCTCCCGGCGCAGCGGCTATGGCACCCTCACCGGCCAGGGCAACGGCCAGGGCGGGCGTGAACACGGCCAGAAGGCGGACCAGCTTCCCGGGTACCGCAAAATCACCGACCCCGCTGCCCGCGCCCATGTGGCAGGCGTGTGGGGCGTTCCCGAGGAACTGATCCCCGGGCCGGGCCTTCCCGCCGTTCAGCTCCTGAAGTCCCTTGGGCAGCCCGACGGCGTCCGTTGCCTTTTGGTGCACGCGTCCAATATCGTCGTGGCCTCCCCCGACGCCAACGCCGTCATCAAGGGCCTGCGCAGCCTGGACTTCCTGATGGTCTGCGACTTCTTTATGTCCGAAACCGCAGCCGAGGCGGACCTGATCCTGCCTGTGCTGCAGTGGGCGGAAGAGGAAGGCACGCTGACCAACCTTGAGGGGCGCGTCCTGCGCCGCCGCCGGGCGCTTCAGCCGCCGGCCGGCGCCCGCAGCGAGCTGTGGATCATGGCACGGCTCGCGGAAGCCCTCGGTGCCCCGTCCACCTACAGCGAGGATCCTGAAACGGTCTTTGAGGAATTGCGCCTCGCCTCCGCCGGCGGGCTGGCCGACTACTCCGGGATCGATTACGCCATGCTGGACCGCGGCGAAGCCGCCTACTGGCCGTACCCCGCGGGCAGCGGCGGAACGCCGCGGCTCTTCCTTGATGCCTTTGCCCACGCCGACGGCAAGGCGGTGATGACCGCGGTGACGCCCCGCCGTCGTCGCACTCCAGCCGCCAATCCCGTTGGGGACGGAACAGGCGCAGCCAAAACCATGACCCTCATCACCGGCCGGCTGCTGGAGCACTACCAGTCCGGGGCACAGACCCGGCGGGTGTCTGAGCTGCTGGCCAGCCAGCCTGAGGCGAAAGTGCAGATCCACCCGGCGGCCGCGGCTTCGATGGGCATCACCGACGGCTCCTTTGTCTCTGTCAGCAACGAGCGCGGCGACGTCGTCTGCAGGGCGGAGCTCAGCACGGCGATCCGCCCTGAAACAGTGTTCCTGCCCTTCCACTTCCCCGAACTCGAAAGCGCCAACCGCCTCACGGAAGCCGCCACCGATCCCATCTCCGGGATGCCGGAATTCAAGTTCAACAAGGTCTGGGTCCGGCTCGCCGCACAGCAGCCGCAGCACCAGTCCAACCCCAGTGTTCTTCAGACGACGGAGGCCTCATGAMTTSADTHCPYCALQCAMTLKSPAELTPASEPGSVPVPAKTAKSAVDVPLLAAPLTVTGREFPTNRGGLCRKGWTSANLLNHAGRITEPLLKGADGIHRPIGWDQALSLVTTAVQETRERYGADAVGVLGGGGLTNEKAYMLGKFARLALGTSRIDYNGRFCMSSAAAAGMRAFGVDRGLPFPLEDLDSASTIMMLGSNVAETMPPFVQHLKGARDAGGLIIVDPRRSATAAFTSDGGGLHLQPLPGTDLTLLLGLSHVVIHEGLADHSFIEDRTSGYQAVLRSVNSFWPERVQSLTGVPADLIREAARRLADGAAKGGSYILTGRGVEQHVDGTDTATAAINLSLLLGLPGSRRSGYGTLTGQGNGQGGREHGQKADQLPGYRKITDPAARAHVAGVWGVPEELIPGPGLPAVQLLKSLGQPDGVRCLLVHASNIVVASPDANAVIKGLRSLDFLMVCDFFMSETAAEADLILPVLQWAEEEGTLTNLEGRVLRRRRALQPPAGARSELWIMARLAEALGAPSTYSEDPETVFEELRLASAGGLADYSGIDYAMLDRGEAAYWPYPAGSGGTPRLFLDAFAHADGKAVMTAVTPRRRRTPAANPVGDGTGAAKTMTLITGRLLEHYQSGAQTRRVSELLASQPEAKVQIHPAAAASMGITDGSFVSVSNERGDVVCRAELSTAIRPETVFLPFHFPELESANRLTEAATDPISGMPEFKFNKVWVRLAAQQPQHQSNPSVLQTTEASPGPT0000390_1148DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372NANA
D1-29_014341476narKCOG2223Nitrate/nitrite transporter NarKGTGACTGTTGACCGCACCGCAGACGCCGGCACCGGCAATTCCGTAGATCTTGAGGCCGAACCCCCGCACGGAAGCGTGCCTGCATCCGCCGGCACGCAGCCCGGCTCCACCACTACAACCAGCGCCCCCGCCCTTGAATACCGTCCGGGCCGCTGGATCGCGAACTGGAATGCCGAGAACAAGGAGCAGTGGGAAACCGCAGGGCGGACCATCGCCCGCCGCAACCTGAACTGGTCCATCTTCGCCGAATTCCTCGGTTTTGTCGTCTGGCAGCTTTGGTCCATCGTGGTGGTCCAGCTTCCCGCCGCCGGCTTCACGTTCACGACGTCGGAAATCTTCTGGTTGATCTCGATGCCCAGCCTGGTAGGTGCCACGCTCCGCATCCCTTACACCTTTATGGTTCCCCGCTTCGGCGGGCGGAACTGGACCATCGTGTCCGCACTCCTGCTCCTGATTCCTTCCATCGGACTGGGACTGTGCGTCGCCAACCCCGAAACCCCGTTCGGCGTCATGCTGTTCGTGGCAGCACTGGCCGGTTTCGGTGGCGGAAACTTCGCCAGCTCCATGGCCAACATCACCTTCTTCTACCCTGCCCGTGAAAAGGGCTGGGCACTGGGCCTGAACGCCGCCGGCGGCAACATGGGTGCGGCCGTTGCGCAGCTCGCCGTCCCGATCGCGATCACCCTGCTGGCGATGGGCAGCGTCAACCTGCCGATGGCCGGCTGGATGTGGGTTCCCTTTATCCTGATCGCAGCCTTCGGCGCCTACAAGTACATGGACAACCTGACCAGCGCCAAGGGGGACGTGGCCGGCTCGGTGGCCGCCCTGAAGGAACCGCATCTGTGGATCATGGCGCTGCTCTACATCGGCACCTTCGGCTCCTTCATCGGCTTCGCCGGTGTGTTCCCCAAGCTCATCAAGGACTACTTCCCCGCGTTCTCCTCCATCGGAGTCGGAACGGTTGCCCTCTCGCTCGCCTTCCTCGGCCCGCTGGTGGGCTCACTCGCCCGCCCCTACGGCGGACGCATGGCTGACCGCATGGGCGGCGCCCGGATGACGGTTGCAGCCTTCGCATCCATGGCACTGATCACCCTCACCATGATCTGGACGCTTCCGCTGAAGAACTTCTGGCTCTTCCTGGTCCTGTTCCTGATGCTCTTCACGGCCAGCGGATTCGGAAACGGTGCAACCTACCGGATGATCCCCATCATCTTCGCCACCTCCAGCCGGGCCGCAAAGGCAGGCGCCAGCACGGTGGAGACGCAGCGCCTGGCATCCTCGGCCCTCGGCCTGATCTCGGCCATCGGCGCCTACGGCGGGTTTGTTATCCCGCAGGTACTGAACGCCTCCAACACCGCCAGCGGTTCCTACACACCGGCCTTCTACGGCTTCGTAGCCGCCTACGCCGTGATGCTGGTTGTCTGCTGGGCCTTCTACATCCGCAACGCCAACCGAAATGCGATGGGACACGTCTAAMTVDRTADAGTGNSVDLEAEPPHGSVPASAGTQPGSTTTTSAPALEYRPGRWIANWNAENKEQWETAGRTIARRNLNWSIFAEFLGFVVWQLWSIVVVQLPAAGFTFTTSEIFWLISMPSLVGATLRIPYTFMVPRFGGRNWTIVSALLLLIPSIGLGLCVANPETPFGVMLFVAALAGFGGGNFASSMANITFFYPAREKGWALGLNAAGGNMGAAVAQLAVPIAITLLAMGSVNLPMAGWMWVPFILIAAFGAYKYMDNLTSAKGDVAGSVAALKEPHLWIMALLYIGTFGSFIGFAGVFPKLIKDYFPAFSSIGVGTVALSLAFLGPLVGSLARPYGGRMADRMGGARMTVAAFASMALITLTMIWTLPLKNFWLFLVLFLMLFTASGFGNGATYRMIPIIFATSSRAAKAGASTVETQRLASSALGLISAIGAYGGFVIPQVLNASNTASGSYTPAFYGFVAAYAVMLVVCWAFYIRNANRNAMGHVPGPT0000300_1094DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575NANA
D1-29_014351413yhjEInner membrane metabolite transport protein YhjEATGTCATCTCTTGAAACCACCACGGAACCAGGGTCCGCGAAGCCGGTGAACTCCAAGGGCAAAGTCATCTTTGCCAGCCTCATCGGCACCACCATTGAGTTCTATGACTTCTACATCTACGCCACGGCGTCTGTCCTGGTCTTCCCCAAGCTCTTTTTCCCGCAGGCAACAGACATCAACGCACTGCTCAGCTCGTTTGCCATCTTCGGCGTCGCTTTCATCGCCCGCCCGGTAGGTTCGGTCCTGTTCGGCCACTTCGGCGACAAGTTCGGCCGCAAGGGCACACTGGTTGCCTCGTTGCTGACCATGGGCATCGCGACCTTCCTGATCGGCGTGCTCCCCACCGCCTCACTTCCCGGCTGGGCCATCCTGGCGCCCCTGATGCTTGTGGTCCTGCGCTTTGCCCAGGGACTGGCCCTCGGCGGCGAATGGTCAGGTGCCGCCCTGCTGGCAACTGAGAACGCCCCGCAAGGCAAGAGGGCGGTCTACGGAACGTTCCCGCAACTTGGTGCTCCGATCGGTTTCATCCTCGCCAACCTGCTGTTCATCTGGCTCAACGCTGCCCTGTCCGCGGAAGAGTTCCTCGCCTGGGGCTGGCGCGTCCCCTTCCTCCTGAGTGCCCTGTTGGTGATTGTTGGCCTGTACGTCCGGCTGAAGCTTGTTGAAAGCCTCTCCTTCCAGAAGGTCCTGACCGAAGAAAAGGTGGCCAAAGTTCCTTTTGCTGCCACCTTCAAGAACCACTGGCGCCCGGTGGTGGCCGGAACGTTCATCATGCTTGCCACCTACGTCCTGTTCTACGTGATGACCTCCTTCACCCTGACTTATGGCACCAAACCCGCCTCTGTGGAGGCAGCGCAGGCAGCAGCAGAAAAGGCCGGCAAACCGATGTCCGCGGTGGAGATCGCAAACTTCGTCCCGGGGCTCGGCATTTCCCGCGGCGACTTCCTCTGGATGCTGATCCTCGGCGTTGTCTTCTTTGGCATCTTCACCCTGGTCTCCGGCCCGCTGGCCGAAAAATGGGGCCGCCGCAAGTTCCTGCTCTCCGTCACGGCGGGCATCTTCGTCTTCGGGATCCTCTGGTTCACCATGTTCGGCCCTGGCCCGGTTGCCGCTGTCATCGGACTCATCGTGGGCTTCACGCTGATGGGACTGACCTTCGGACCGATGGCCGCCATCCTTCCCGAGCTGTTCCCCGCCAACGTGCGGTACACCGGCTCCGCTGTGGCCTACAACCTGTCCAGCGTCATCGGTGCCGCCCCGGCGTCGTTCATTGCCATTGCCCTGTGGCAGGCTGCCGGCGGCAGCACCTGGCTGGTGGGCGTCTACATGGCAGCCGCGGCCGTGCTGACCTTCATCGCCCTGTGGATCACCCGTGAAACCAAGGACACAGACTACGAGAACAACGTGGCCTGAMSSLETTTEPGSAKPVNSKGKVIFASLIGTTIEFYDFYIYATASVLVFPKLFFPQATDINALLSSFAIFGVAFIARPVGSVLFGHFGDKFGRKGTLVASLLTMGIATFLIGVLPTASLPGWAILAPLMLVVLRFAQGLALGGEWSGAALLATENAPQGKRAVYGTFPQLGAPIGFILANLLFIWLNAALSAEEFLAWGWRVPFLLSALLVIVGLYVRLKLVESLSFQKVLTEEKVAKVPFAATFKNHWRPVVAGTFIMLATYVLFYVMTSFTLTYGTKPASVEAAQAAAEKAGKPMSAVEIANFVPGLGISRGDFLWMLILGVVFFGIFTLVSGPLAEKWGRRKFLLSVTAGIFVFGILWFTMFGPGPVAAVIGLIVGFTLMGLTFGPMAAILPELFPANVRYTGSAVAYNLSSVIGAAPASFIAIALWQAAGGSTWLVGVYMAAAAVLTFIALWITRETKDTDYENNVANANANANANA
D1-29_01436732hypothetical proteinGTGAAGCCTTTCCTGCTGCTGGCCTCCCGGGCTGAAGACGCCGCTGCCGAGGACGAGTATGCCGCCTATCTGCGGTATGGCGGACTGGAACCGGAACAGCTGCGGCGCATCAGGCTGGAGGCGGGCCCGCTTCCGGATCTGGACCTGGCGGACTATTCGGGCGTGATTGTGGGCGGCAGTCCGTTCACGTCCAGTGATCCGGACGACGGCAAGAGCCCCACCCAGCACCGCGTCGAGCGGGAGCTGGCCGGACTGCTGGACCGGATCGTGCCCGCAGATTTTCCTTTTCTGGGCGCATGCTACGGGGTGGGCACGCTGGGAATGCACCAGGGCGCGCTGATCGACAGGACCTTCGGCGAGCCGCTGGGCGCCGCGGAGATTGAGCTGACGGAGGCCGGGCTGGCCGATCCTGTGCTGCAGGGCATGCCCCGGCGCTTCACCGCCTTTACCGGCCACAAGGAAGCCTGCACGTTGCTGCCGGCCCATGCCGTGCTGCTGGCCACCTCCGCCGCATGCCCGGTGCAGATGTTCCGGATCAGGCAGAACCTGTACGCCACCCAGTTCCATCCGGAACTTGACGTGGACGGGCTGGTCACCAGGATCGACATCTACCGCCATGCCGGCTACTTTCCGCCGGAATCCGCGGAGGAACTCATGGAGAGCGCCCGTCAGTTCACTGTCACCGAACCCACCAATATCCTCAAGAACTTTGTGGCCCGGTACGGCGCCTGAMKPFLLLASRAEDAAAEDEYAAYLRYGGLEPEQLRRIRLEAGPLPDLDLADYSGVIVGGSPFTSSDPDDGKSPTQHRVERELAGLLDRIVPADFPFLGACYGVGTLGMHQGALIDRTFGEPLGAAEIELTEAGLADPVLQGMPRRFTAFTGHKEACTLLPAHAVLLATSAACPVQMFRIRQNLYATQFHPELDVDGLVTRIDIYRHAGYFPPESAEELMESARQFTVTEPTNILKNFVARYGAPGPT0021580_6544DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
D1-29_01437456hypothetical proteinATGCTCGCACCCAGTTTTGAAGAAGAAGTAGACCGATACCACCTCGCTGTTCCGGAGATCACCCGGGGCAATCCCGGACCCGTCAAGGAGCTCTATTCCCGGCTTGACGATGTCACCCTGGCCAACCCCTTTGGCGGGATCGCCCGGGGATGGGCGCAGGTGGAGGCCCGCCTTGACCAGGCGTCCCGCAACTACCACGAGGGCGAGATGCTCGGTTTTGACACCATCACGTCGTACACGGCCAGGGACACCGCCTACCTCGTGGAGACTGAGCACTTCCGCGCACGCATGGCCGGTGCTGCCATGGTGGAGGAATTCGCGCTCCGCGTGACCAGCATCTTCCGCCGCGAGGAGGGCTACTGGAAGCTCGTCCACCGGCACGCGGACCCGGCTGCCCAGCCGCAATCGCGCCGGTCCCTGGCCCAGCCGTCATTGGCGGAGGGTTCCGTCTCCTGAMLAPSFEEEVDRYHLAVPEITRGNPGPVKELYSRLDDVTLANPFGGIARGWAQVEARLDQASRNYHEGEMLGFDTITSYTARDTAYLVETEHFRARMAGAAMVEEFALRVTSIFRREEGYWKLVHRHADPAAQPQSRRSLAQPSLAEGSVSNANANANANA
D1-29_014381818carB_2Carbamoyl-phosphate synthase large chainTTGTCAGCAAATTTGGAGCAGTCCGCAAGTCCCGTGCAGTCGAACCTCACAAAGGTGCTGATCGCCAACCGAGGCGAAATCGCAGTGCGGATCATCCGCGCGGCACGTGATGAAGGCATTGCCTCCGTGGCTGTCTACGCCGATCCTGACCGCGACGCACTCCACGTGCGCCTGGCCGACGAGGCTTACTCGCTGGGCGGTAACACCGCTGCGGAGTCCTACCTGGTGATGGATAAGATCATCGACGCCGCCCGCCAGTCCGGCGCGAACGCCATCCACCCCGGTTACGGCTTCCTGGCCGAGAACGCCCAGTTCGCCGCCAGGGTCATCGAAGCGGGCATCACCTGGATTGGCCCCTCCCCCGAAGCAATCTCTGCCCTGGGCGACAAAGTCCAGGCCAGGCACATCGCCGAGAAGGTGGGGGCACCACTGGTGCCCGGAACCGCCGACCCCGTCGAATCGGCAGAAGAAATCCTCGACTTCGTGGACAAGTTCGGCCTGCCGGTGGCTATCAAGGCGGCCTTCGGCGGTGGCGGCCGGGGCATCAAGGTAGCCCGCACCAGGGACGAGATTCCTGAACTGTTCGAATCCGCCGTGCGTGAAGCCACCGCTGCCTTCGGCCGTGGCGAGTGCTTTATCGAACGCTTCCTGGACGCCCCCCGGCATGTGGAAACCCAGTGCCTCGCGGACGCTTACGGAAATGTCGTTGTGGTCTCCACCCGCGACTGCTCGCTGCAGCGCCGCAACCAGAAACTTGTCGAAGAAGCCCCCGCTCCTTTCCTCACCGAAGACCAGAACCGGCGCCTGTACGAATCCTCCAAAGCAATCCTGAAGGAAGCCGGCTACCTCGGCGCAGGCACCTGCGAGTTCCTTGTGGGCCAGGATGGCACCATCTCCTTCCTGGAGGTCAACACCCGGCTCCAGGTGGAGCACTGCGTCTCCGAGGAAGTCACGGGAATCGACCTGGTCCGTGAACAGTTCCGGCTGGCCCGCGGCGAAAAGCTGGGCTACGGAGATCCTGAGGTCCGCGGCCACTCCTTCGAATTCCGCATCACCGGTGAAGACCCGGGCCGCAACTTCATGCCCGCGCCGGGCACCGTTCGCGTCCTGAAGAACCCCACCGGCCCCGGAATCAGGATTGATTCGGGGATCGAGCAGGGCGACGTCATCAGCGGCAACTTCGACTCCATGCTCTCCAAGCTGATTGTCACGGGCGCCAGCCGCCCGCAGGCCCTGCAGCGGGCCCGCCGGGCACTGTCGGAGATGGTGGTGGAAGGCATCCCCACCGTCATCCCCTTCGACCTGGCAGTCGTTTCAGATCCGGCATTCGCGCCCGAAGAGGGTCCATTCAGCGTCCACACCCGCTGGATCGAAACAGAATTCACCAACAACCTTCCCGCCTGGATTCCGGACGGGGCAGCCGATACAGACGACGACGCCGGCGCCCGGCAGCGCGTGGTGGTTGAAGTTGGCGGCAAGCGCCTGGAAGTGGTCATGCCCGCCTCCCTCGGCTCCTTTGGGGCCGGTTCAGCCGCGTCCGGAACCAAGACGGCCAAGTCGAAGAAGCGCGCCCGCTCGGGCGGCTCGGCAGCTGCCGCCACCGGGAACGCCCTCACCTCGCCGATGCAGGGCACCATCGTCAAGGTGGCAATTTCCGACGGCGACGTTGTGGCTGAAGGTGACCTGATTGTGGTGCTCGAGGCCATGAAAATGGAGCAGCCCCTGACCGCCCACCGCGCCGGCACCATCACAGGGCTCAGCGCCAAGGCCGGCGAGACGGTGTCGGCCGGCGCCGTCATCGCCACGATCGAAGACTAGMSANLEQSASPVQSNLTKVLIANRGEIAVRIIRAARDEGIASVAVYADPDRDALHVRLADEAYSLGGNTAAESYLVMDKIIDAARQSGANAIHPGYGFLAENAQFAARVIEAGITWIGPSPEAISALGDKVQARHIAEKVGAPLVPGTADPVESAEEILDFVDKFGLPVAIKAAFGGGGRGIKVARTRDEIPELFESAVREATAAFGRGECFIERFLDAPRHVETQCLADAYGNVVVVSTRDCSLQRRNQKLVEEAPAPFLTEDQNRRLYESSKAILKEAGYLGAGTCEFLVGQDGTISFLEVNTRLQVEHCVSEEVTGIDLVREQFRLARGEKLGYGDPEVRGHSFEFRITGEDPGRNFMPAPGTVRVLKNPTGPGIRIDSGIEQGDVISGNFDSMLSKLIVTGASRPQALQRARRALSEMVVEGIPTVIPFDLAVVSDPAFAPEEGPFSVHTRWIETEFTNNLPAWIPDGAADTDDDAGARQRVVVEVGGKRLEVVMPASLGSFGAGSAASGTKTAKSKKRARSGGSAAAATGNALTSPMQGTIVKVAISDGDVVAEGDLIVVLEAMKMEQPLTAHRAGTITGLSAKAGETVSAGAVIATIEDPGPT0001705_161DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
D1-29_01439660COG0424Nucleoside triphosphate pyrophosphataseGTGACCCGCCTGATCCTTGCCTCCCAATCCCCTGCCCGCACCAAGCTCCTGGCCGACGCCGGCATCCGCCACTCCGTGCTGGTGTCGGACGTGGATGAGGACGCCGTCCAGGCCCGCTACGGCATCACCGATCCCCACGACACCGCGCTCCTGCTGGCCCGGGCGAAAGCCGAGGCAGTTGCCGCGCTTCCCGACGCGGAGGGCGCGCTGGTGCTGGGCTGCGACTCCGTCTTTGAGTTCGACGGCGAGGCGCACGGAAAGCCGTACACGGCCGCCGTCGCCCGCGAGCGGATGCTCCGGATGAGCGGAAACACCGGAGTGCTGCATACGGGCCACTGGCTGGTGGACTGCCGGGACACAACGTCCGACGACGGCACAACCCCGCCGGGATCCGGCGCCACGCTGGGCACCGTCGCCTCCGCCGAAGTCCACTTCATGGAAATGGAACCAGAGGAAATCGACGCCTACATTGCCACCGGCGAGCCGCTGCACTGCGCGGGATCCTTCACCATCGACGGACTGGGCGGGGCATTCATCCGGAAAGTCAACGGGGACCCGCACGCCGTCGTCGGACTCTCCATTTCCACGCTCCGCACGCTCCTGGCGCAGGCCAATGTGCGCATCAACGAGCTCTGGCCGGCACAAGGACCTGCGTCGTAAMTRLILASQSPARTKLLADAGIRHSVLVSDVDEDAVQARYGITDPHDTALLLARAKAEAVAALPDAEGALVLGCDSVFEFDGEAHGKPYTAAVARERMLRMSGNTGVLHTGHWLVDCRDTTSDDGTTPPGSGATLGTVASAEVHFMEMEPEEIDAYIATGEPLHCAGSFTIDGLGGAFIRKVNGDPHAVVGLSISTLRTLLAQANVRINELWPAQGPASNANANANANA
D1-29_01440561hypothetical proteinATGTCACGCACAAAGAGAATCACCCTTGGCCTGACCGCCACGGCACTGGCCCTTAGTGCCGGAATCGGAGTCGCCGGCATGGCCTCCGCCACCACCCCGGCTCCCACCCCCAGCGCCAGCTCCAGCGCCTCGGCTGACGGCAGCGCCAGCACCCCGGCTGACGGCAAGGGCCGGCACGGCGGCCGGGGCGGTGAGCGTGGAATGGCGCAGGCGTCAGCGCTGGCCGCGAAGCTCGGCGTCGAGGAGAGCAAGGTCACGGAGGCGCTGCAGGCTTTCAGGGAGGCGAACAGGCCCACCACCCCGCCGGCTGAGGGCACCAAGCCGGATGCCGCGGCCAGGGACGCTGCCCTGGCCAAGTCCCTGGCGGACACGCTGGGGATTGACGAGGCCAAGGTGGCTACGGCGCTGCAGGAACTCCGCAGCGAGGCCCAGGCCCAGAGGGCGGCTGCGCTCAAGACAAAGCTGGACCAGGCAGTTACCGACGGCAAACTGACGCAGGCTGAAGCGGACGCCGTCACCAAGGCCGTCGAAAGCGGTGTGATCGGGGGCGGAGGCCGCTAAMSRTKRITLGLTATALALSAGIGVAGMASATTPAPTPSASSSASADGSASTPADGKGRHGGRGGERGMAQASALAAKLGVEESKVTEALQAFREANRPTTPPAEGTKPDAAARDAALAKSLADTLGIDEAKVATALQELRSEAQAQRAAALKTKLDQAVTDGKLTQAEADAVTKAVESGVIGGGGRNANANANANA
D1-29_014411449dctA_1COG1301C4-dicarboxylate transport proteinGTGAGCACTCAAACCCGCACCCCCGAATCCGCAGGAAAGACCGGCTTCCAGCTGCCCACGTGGGCAGGCTCGTTCGGCTTCCAAATCATCGCAGCCCTGATCGTTGGCCTGGGCCTGGGCCTCCTGGCCAAGTACACCGGCAGCACCCAGGACAGCCCCAACGGCCTCGGTGCCACGCTGCAGACCATTGGCTCCAGCTACGTGTCGCTGCTGCAAACCGCCGTGGTCCCGCTGATCTTCACGGCAGTGGTCAGCTCCATCTCCAACCTGCGGCAGGTGTCCAACGCCGCCAAGCTGGCCTGGAACACCCTGCTCTGGTTCGCCATCACGTCCCTGATCGCCGTCCTGATCGGCATCGGCCTGGGCGTCCTCCTGCAGCCGGGCAGCAACACCGGCATCACCGGAGAAGGTGAAGCCCCCGGCAAGGTGGGCAGCTGGTGGGCCTTCCTCACCGGACTCTTCCCCAAGAACTTCCTGGGTCTTGGCGCCAGCTCCACCGTGGCGGAATCGGGCGCGGTCACCACCGCCGTCAGCTTCAACGTGCTCCAGATCCTGGTGATCGCCATCGCCGTCGGTGTGGCGGCACTGAAGGTCGGCAAGGCCGCTGAGCCGTTCCTGAACCTCAACGCCTCAGCCCTGGCCGTCATCCAGAAGGTCCTCTGGTGGATCATCCGCATTGCCCCACTGGGCACTGTTGGCCTGATCGGCAACGCCGTTGCCATCTACGGCTGGGACACCATCGGCTCGCTGGGCAAGTTCACTCTTGCCATCTATGTGGGCCTGGCCCTTGTGCTGTTCGTCGTTTACCCGGTGCTGGTCCGCACCCATGGCCTCTCCGTGAAGCAGTACTTCTCCGGTGTGTGGCCCGCCGTCCAGCTGGCGTTCGTTTCCAGGTCCTCAGTGGGGACGCTGCCCCTGACGCAGCGGGTCACCGAACGCAGCCTGGGCGTACCCCGTGCGTACGCATCCTTCGCCGTGCCCCTGGGCGCCACCACCAAGATGGATGGCTGCGCCGCAATCTACCCGGCCATCTCGGCAATCTTCGTGGCCCAGTTCTTTGGCGTCCAGCTGGACTTCACCCAGTACCTGCTGATCGCCCTGGTCTCGGTGCTCGGGTCGGCAGCGACAGCCGGAACCACCGGCGCCGTGGTGATGCTCACCCTGACGCTCTCCACGCTGGGACTCCCGCTGGCCGGCGTCGGACTGCTGCTGGCCATCGATCCGATCCTGGATATGGGACGTACGGCAGTCAACGTCGCCGGGCAGGCGCTGGTCCCCACCATCGTGGCCAAGCGCCAGGGCATCCTGAACGAGGCGCTGTACAACGCGCCACGGAACGGCACCCCCTTTGTGGATGACGACGCCGACTCCGCCACCACTGACCCGTCCAGCACCGGGGCATCCACGGATCCGGCGGGCAGCCGCATACGTGAGGACGCAAAGGTCTAAMSTQTRTPESAGKTGFQLPTWAGSFGFQIIAALIVGLGLGLLAKYTGSTQDSPNGLGATLQTIGSSYVSLLQTAVVPLIFTAVVSSISNLRQVSNAAKLAWNTLLWFAITSLIAVLIGIGLGVLLQPGSNTGITGEGEAPGKVGSWWAFLTGLFPKNFLGLGASSTVAESGAVTTAVSFNVLQILVIAIAVGVAALKVGKAAEPFLNLNASALAVIQKVLWWIIRIAPLGTVGLIGNAVAIYGWDTIGSLGKFTLAIYVGLALVLFVVYPVLVRTHGLSVKQYFSGVWPAVQLAFVSRSSVGTLPLTQRVTERSLGVPRAYASFAVPLGATTKMDGCAAIYPAISAIFVAQFFGVQLDFTQYLLIALVSVLGSAATAGTTGAVVMLTLTLSTLGLPLAGVGLLLAIDPILDMGRTAVNVAGQALVPTIVAKRQGILNEALYNAPRNGTPFVDDDADSATTDPSSTGASTDPAGSRIREDAKVNANANANANA
D1-29_014421632hypothetical proteinGTGGCCGATGACTACACAGACACCCTCATCCGGCTTAACCCGTCGTTCGCCACTACCCTTGGGCTGCCAGGACACGAGACCGAATATCCGGACTATTCGCCGCAGGGGATCGCGGAGTTCGCCGCGGAAGCCCGCAAGGCCCTTACCGCCCTTGACGGACTCGAGCCCCAGGATGACATTGACGCTGTCACCCTCGACGCCATGCGGGAACGGCTGGGCCTCCAGCTGGAAATCCATGCGTCAGGCTGGGACGAAGCGGAACTGAACAACCTGGCATCACCGGCTCAGGACATCCGCGCCATCTTTGACCTGATGCCCACGGAGACCGGACAGCACTGGGAACACATAGCGGGCCGCGCCCTCAATGTACCGGGCGCCATCCACGGCTACATCAGCTCCTTGCGGCAGTCGCGGGACGCCGGGCGGGTAGCGGCAGCTCGGCAGGTAACCACTGTGATCGAGCAGGCCGGCAAGTACGCGGCCGAGGACGGATTCTTTGCCAAGCTGGCCGCCGGGGCCAAGACGCCCGAGGGCCCGCTGGACCACGCAGTGCAGGAAAAGCTCGACGCCGGCGCAACGGCTGCCCGGAGTGCGTACGCGGAACTCGCGGAATTCCTCCGCCGTGAACTGCTGCCCGCTGCCCCGCAGAAGGACGCCGTCGGCAGGGAACGCTACGCCCTCGCCTCGCGTTCCTTCCTGGGTGCCGCCGTCGACCTCGAAGAAACGTACGCCTGGGGCGTCCAGGAGCTTGACCGCCTGATTGCCGAGCAGGAACAGGTGGCGGCCACCATCAAGGCCGGAGCCACCGTTGCCGAAGCCAAGGAAATCCTCAACAGCGATCCTGCCCGCCAGCTGAAAGGCACCGATGCCCTGAAAGCATGGATGCAGGAGCTCTCGGACAAAGCCGTAGGCGATCTTGCCGGCGTGCACTTCGAGATCCCGGACGTGATGAAAAGGCTGGAATGCCTGATCGCCCCCACCGACGAGGGCGGCATCTACTACACCGGCCCGTCCGACGATTTCAGCCGTCCCGGCCGCATGTGGTGGTCCGTCCCCGCGGGCGAGGACACCTTCACCACCTGGGCCGAAACCACCACGGTGTTCCATGAAGGGGTCCCCGGCCACCACCTCCAGGTGGCCACCGCAACGTACCGCAGGGAACTGCTCAACAACTGGCGGCGCAATGTCTGCTGGACCTCCGGCCACGGCGAAGGCTGGGCCCTGTATGCGGAGAAGCTCATGCAGGAACTCGGGTATCTGTCGGATCCCGGCGACTACATGGGCATGCTGGACGGGCAACGCATGCGTGCGGCCCGCGTGGTGTTCGACATCGGTGTGCACCTGGAACTCGACGTACCCGAACGCTGGGGGTCCGGAACCTGGACGCCGGACAAGGGCTACGAATTCCTGAAGGAGAACCTGCCCATCAGCGAAGGACAGCTCAATTTCGAATTCACCCGCTACCTCGGCTGGCCGGGCCAGGCCCCCTCCTACAAGGTGGGCCAGCGCCTGTGGGAGCAGATCCGCGCCGAACTCGAATCCCGCCCCCGCTTTGACCTCAAAGCCTTCCATACCAAGGCGCTGAACATCGGCTCAGTAGGCCTGGACACGCTGCGCCGGGCGCTGCTGTAAMADDYTDTLIRLNPSFATTLGLPGHETEYPDYSPQGIAEFAAEARKALTALDGLEPQDDIDAVTLDAMRERLGLQLEIHASGWDEAELNNLASPAQDIRAIFDLMPTETGQHWEHIAGRALNVPGAIHGYISSLRQSRDAGRVAAARQVTTVIEQAGKYAAEDGFFAKLAAGAKTPEGPLDHAVQEKLDAGATAARSAYAELAEFLRRELLPAAPQKDAVGRERYALASRSFLGAAVDLEETYAWGVQELDRLIAEQEQVAATIKAGATVAEAKEILNSDPARQLKGTDALKAWMQELSDKAVGDLAGVHFEIPDVMKRLECLIAPTDEGGIYYTGPSDDFSRPGRMWWSVPAGEDTFTTWAETTTVFHEGVPGHHLQVATATYRRELLNNWRRNVCWTSGHGEGWALYAEKLMQELGYLSDPGDYMGMLDGQRMRAARVVFDIGVHLELDVPERWGSGTWTPDKGYEFLKENLPISEGQLNFEFTRYLGWPGQAPSYKVGQRLWEQIRAELESRPRFDLKAFHTKALNIGSVGLDTLRRALLNANANANANA
D1-29_01443231hypothetical proteinGTGAGCGAGCCACTGGACCACGTGAATCCGCCGGCCGCGCCCCTGATCTCTGTGGTCAAAGGACAGCCGACGGCCGAGGAGCTCGCCGCCCTGACCGCCGTCGTACTTTCCCTGGGAGGCGCCGAAACGGCGGACAGCAGGAAGCCCACCGTCCGCCATTGGGTGCGCCGTCAGCAGCTGCGGCTGGCGCCCACCCCGGGGCCCGGTGCCTGGAAGCGGAGCCGCGGCTAAMSEPLDHVNPPAAPLISVVKGQPTAEELAALTAVVLSLGGAETADSRKPTVRHWVRRQQLRLAPTPGPGAWKRSRGNANANANANA
D1-29_014441584accD5COG4799putative propionyl-CoA carboxylase beta chain 5ATGAGCCACGATCTGACAACGACAGCGGGAAAGATCGCCGATTTCCGCGACCGCCAGGCGCGTGCAGAACAGCCCTCCGGCCCCGAGGCCATCGAAAAGCAGCACGCCCGCGGCAAGAACACCGCCCGCGAGCGCATCGACCTCCTGCTCGACGAAGGCTCCTTTGTGGAGTTCGACGCGCTGGCGGTACACCGTTCCACCGCTTTTGGCATGGAGAAAAAGAAGCCGCTCGGTGATGGCCTGGTCTCCGGCTACGGCACCGTGGACGGCCGCCCGGTAGCCGTCTACAGCCAGGACTTCTCTGTTTACGGCGGTTCCCTCAGCCAGGTTAACGGCGAGAAGATCGTCAAGGTCCAGGAATTCGCCCTGCGCAACGGCTGCCCCGTGGTGGGAATCCTCGACGGCGGGGGCGCCCGCATCCAGGAAGGCGTCGCCTCGCTGGCCATGTTCGCTGACATCTTCCGGAACAATGTCCACGCCTCCGGTGTGGTCCCCCAGATCTCCCTGATCATGGGCCCGTCCGCCGGCGGCGCAGCCTACTCCCCTGCACTCACGGACTACGTGGTCATGGTGGACAAAACGTCCCACATGTTCATCACCGGCCCCGACGTCATCAAGACAGTCACGGGTGAAGACGTGGACATGGAAACCCTGGGCGGCGCGCGCCAGCACAACGCCACCACCGGAACCTCCACCTACCTGGCGTCCGACGAGACCGACGCCATTGAGTTTGTTCGCGAGCTGCTGGACTTCCTGCCTTCCAACAATCTCTCGGAAGCACCCGTGCAGGAGCACCAGCAGGAATTGGATATTGACGACGACGACCTGGCGCTGGACACACTCATTCCGGACTCCGCGAACCAGCCCTACGACATGCGCCGTGTCATTGAGCAGATCGTTGACGACGCCCATTTCCTGGAGATGCAGGCGCTCTATGCCCCCAACGTGATCATCGGCTACGGCAGGGTCGAAGGACACACCGTGGGAATCGTGGCCAACCAGCCCATCCAGTTTGCCGGCACGCTGGACATCGCCGCTTCGGAAAAGGCTGCCCGCTTTGTCCGGAACTGCGATGCGTTCAACATCCCCATCATCACGCTGGTCGACGTGCCCGGGTTCCTGCCCGGAAAGGACCAGGAATTCCAGGGCATCATCCGCCGCGGCGCCAAGCTCCTGTACGCCTATGCCGAGGCGACAGTTCCCAAAGTCACCGTCATCACCCGCAAGGCTTACGGCGGGGCGTACATCGTGATGGGTTCCAAGAAGCTGGGTGCGGACCTGAACTTGGCGTGGCCCACGGCCCAGATCGGTGTCATGGGAGCCCAGGGCGCCGTGAACATCCTCTACCGCCGTGACCTGGCCGCCGTAGCCGAGACGGGCGGCGATGTGGAAGCCCGGCGCGCCGAGGTCATCCGGCAGTATGAGGAAGAGCTGCTGAACCCCTACCAGGCGGCCCAGCTGGGGTATGTTGACGCAGTCATCGCTCCGTCTGAGACCCGTGTGCAGATCATTAAGGGCCTCCGGGCCCTGCGCGACAAACGGGCCAGCCTGCCCACCAAAAAGCACGGGAACATTCCGCTGTGAMSHDLTTTAGKIADFRDRQARAEQPSGPEAIEKQHARGKNTARERIDLLLDEGSFVEFDALAVHRSTAFGMEKKKPLGDGLVSGYGTVDGRPVAVYSQDFSVYGGSLSQVNGEKIVKVQEFALRNGCPVVGILDGGGARIQEGVASLAMFADIFRNNVHASGVVPQISLIMGPSAGGAAYSPALTDYVVMVDKTSHMFITGPDVIKTVTGEDVDMETLGGARQHNATTGTSTYLASDETDAIEFVRELLDFLPSNNLSEAPVQEHQQELDIDDDDLALDTLIPDSANQPYDMRRVIEQIVDDAHFLEMQALYAPNVIIGYGRVEGHTVGIVANQPIQFAGTLDIAASEKAARFVRNCDAFNIPIITLVDVPGFLPGKDQEFQGIIRRGAKLLYAYAEATVPKVTVITRKAYGGAYIVMGSKKLGADLNLAWPTAQIGVMGAQGAVNILYRRDLAAVAETGGDVEARRAEVIRQYEEELLNPYQAAQLGYVDAVIAPSETRVQIIKGLRALRDKRASLPTKKHGNIPLPGPT0001712_851DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0001712-pccB-K01966NANA
D1-29_01445906hcaB_13-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGACTTCGAGCAACGATGCTTTGGGTGCCGCCGCAGCGCCGTACCAGGCCGCCGGTTCCCTTCAGGGCCGCACTATCCTGATCTCCGGCGGGAGCCGCGGAATCGGGCTGGCCATAGCCACCCGGGCGGCACAGGACGGGGCCAATATCGTGTTGATGGCCAAGACCGGCCAGGCGCACCCGAAGCTGGCCGGCACTGTCTTTACCGCCGCCGAGCAACTGGAGGCCGTCGGCGGGCAGGCGTTGCCGCTGGTTGGGGATGTCCGCAATGACGACGACGTCGCCGGCACTGTCGCCGCTGCAATGGACCGCTTTGGCGGAATCGACGTGGTTATCAACAATGCTTCGGCCATCGATCTCTCAAAGACCGACGACGTGGACATGAAGCGCTACGACCTGATGCAGGACATCAACGTCCGTGGTACGTTCCTGCTGTCCAAGCTGGCGCTGCCCGCGCTCCGGAAATCGACGCAAGGCCATATCCTCACACTGTCACCGCCGCTGAATCTCGATCCCCACTGGGCAGGCAGGCACCTTGCCTACACCATGGCGAAGTACGGGATGAGCCTGACTACCCTGGGGCTTGCTGAAGAACTCAAGACTGACGGGATCCGCGTCAATTCCCTGTGGCCGTGCACGCTCATCGACACCGCCGCCATCCGGAACATGCCGGGGGGCCAGGCCATGGTGAAGGCCGCTCGCGGGCCACAGATTATGGCGGATGCCGCGCACGCGGTGCTGACCGGCAGTAATCTGACAGCAGAGGGGCAGCAAGGGGCGGAGGCCTCGCCAACCGGAAACTTCTACACCGACGAACAGGTGCTGACTGCAGCGGGGGTCACGGATTTCCGGGCATACAGCCTTGGAGCAGCCGAGGACCAGCTGGTTCCCGACATTTTCCTCTGAMTSSNDALGAAAAPYQAAGSLQGRTILISGGSRGIGLAIATRAAQDGANIVLMAKTGQAHPKLAGTVFTAAEQLEAVGGQALPLVGDVRNDDDVAGTVAAAMDRFGGIDVVINNASAIDLSKTDDVDMKRYDLMQDINVRGTFLLSKLALPALRKSTQGHILTLSPPLNLDPHWAGRHLAYTMAKYGMSLTTLGLAEELKTDGIRVNSLWPCTLIDTAAIRNMPGGQAMVKAARGPQIMADAAHAVLTGSNLTAEGQQGAEASPTGNFYTDEQVLTAAGVTDFRAYSLGAAEDQLVPDIFLPGPT0019830_44DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019830-atuH-K13775NANA
D1-29_01446936birACOG0340Bifunctional ligase/repressor BirAATGGATGATGCATACGCCCCAGGGTCGCCTTTAAACCGGACCCCCCTGAATCGCGGAGCCCTGGCGGACCAGGACTTCCTCTCTGCCACCGGCATCTCCAGGCTTGACGTGGTGGACACCACCGGTTCCACCAATGCCGACCTGCTGCGCAATGTCAGCGTTGAGCCCGCGCTGTGGCCGGATCTGTCCGTGCTGACGGCGGAATACCAGACAGCTGCCCGGGGCCGCCTTGACCGGCGGTGGGAGTCGCCTCCCCTCAGCTCGCTTTCAGTCTCCGTAGTCCTGCGTCCCGCCAACGCCGAGGGCCGGCCGCTTCCCACCCAGACCTACTCCTGGCTGTCGCTGCTGGCCGCCCTGGCGCTGCGCGAGACGCTCCTGGAGACGGCCGGGATTCCGGCGGAACTCAAATGGCCGAATGACGTTCTGGTCCGCGGCCGCAAGATCGCCGGCATCCTTGCGCAGCTGGGCCCCATGACCGGGGGTTCGGTGCCTCCGGTGATCCTTGGCACAGGACTGAACGTGAGCCTTAGCGCGAACGAGCTGCCAGTCCCCACCGCCACCTCTGTGACGTTGGAGCAGCCGCGAACCGCGGACCGAACACTGCTGCTGAAGAGTTACCTCGCCCGTTTCGCCGTTCTGTACCGCAGTTTTTGCCATGCCGACGGCGACCCCGCCGCAGGCCTGGCCGGCGGGGCCTCCCTCCACAAGAGAGTGGAGTCGGCCATGGTGACCATAGGCAAACACGTGCGCGCCCAGCTGCCCGGGGACCACGAGATTATCGGCCGCGCCTCCCGGCTTGATGACTATGGTTCCCTCCTTGTGGTGGACCGCGATGCCCGCGAACACGTGGTGACCGCCGGCGACGTCGTCCACCTCCGCCCCTGGACGCCGCCGGGCCAGGCTGCTCCGCCTGGCAGTGAAGGCGGCTATGCGTAAMDDAYAPGSPLNRTPLNRGALADQDFLSATGISRLDVVDTTGSTNADLLRNVSVEPALWPDLSVLTAEYQTAARGRLDRRWESPPLSSLSVSVVLRPANAEGRPLPTQTYSWLSLLAALALRETLLETAGIPAELKWPNDVLVRGRKIAGILAQLGPMTGGSVPPVILGTGLNVSLSANELPVPTATSVTLEQPRTADRTLLLKSYLARFAVLYRSFCHADGDPAAGLAGGASLHKRVESAMVTIGKHVRAQLPGDHEIIGRASRLDDYGSLLVVDRDAREHVVTAGDVVHLRPWTPPGQAAPPGSEGGYAPGPT0022055_2261DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022055-birA|bpr-K03524NANA
D1-29_01447600hypothetical proteinATGCGTAAAGACCTCGTGCCGGGCGAGCAGGTTATAGTCACCACCCGCCCACAGCCGAGGCAGTTGGCCGGACCAGCGGCAGCCTTCATCGCGGCTCCCGCCGCGGCTGCTTTTGCCAGTGCGTGGATCAGTCGCGGCGAGGCCACCCGCCTGCTGCCGGACATTTCCCCGGAATGGTCGCCGTGGCTCGTCACGGGATGCGTCCTGGCCGCCGCATGGATATGGTTGGGATACTGCCTGCCGCGCTTTCTGCGGTGGCAGGCCACGCGTTATACGCTGACCAGCCGCAGGATAGTTGCCAGATACGGCATGTTGAGACGGAGGGACCAGCAGGTGAATCTGGCGGCCGTGCGCGACCTGACGTTGAGGCAGTCGGTCCTGCAGCGCATATTGCGGTCAGGGAATATATTCTTGGAGACCGGATACCACGGCAGCATGGCCATTCAGGATGTGCCTGAAGCGGCGCGGTTCCGGGACTTTGTGCTGGATGCCATCGACGGGCTGCCCCGGGACGGGGAACCGTGGATGGACGGAACACTTGACGATACGGGCCACGTGCTGCCATGGGAACTGAGAGAAGGTGGACAGGATGAACGATGAMRKDLVPGEQVIVTTRPQPRQLAGPAAAFIAAPAAAAFASAWISRGEATRLLPDISPEWSPWLVTGCVLAAAWIWLGYCLPRFLRWQATRYTLTSRRIVARYGMLRRRDQQVNLAAVRDLTLRQSVLQRILRSGNIFLETGYHGSMAIQDVPEAARFRDFVLDAIDGLPRDGEPWMDGTLDDTGHVLPWELREGGQDERNANANANANA
D1-29_014481170hypothetical proteinATGAACGATGAGGATCAGCAGGAACAGCAGGACACCGCTGCTCCCACCGCTCCCGAATCCGCCCGGCCTGACACCGCTCCTCCCGTTCCTGGATTCTCCGTGGCCGCGAACCCTCCCACGGGTACGCTGTCGGCCGAGCGGCTGGCAGCGAAGGCCCTTGAAACCCGGCTGCTGGGCGGTGAACGGAAGCTCCGCCGCCGTGAGGTGGCCGCCGGCGCGGGGCTCTCGCTGCTGTCGGCGCGGAAACTCTGGCGTGCCCTTGGCTTCCCCAATTTTGGCGACGACGATGTAGCCTTCACCGAGCGCGACCAGGCCGCCCTCTCCACAGTGGTGGATCTGGTCAGGTCCGGAATGCTGACGGAAGAGGCGGCGATCTCGGTCACCAGGTCGATCGGCCAGATGACGGACCGGATGGTGGTCTGGCAGATCGAGGCCCTGGTCGAGGACATGGTCCACGAGCAAGGCGTCACCGATGCCGTTGCCCGCAAACAGTTGGTCAACGATCTTCCTGCCCTGGTGGATGCGCTCGAGGAGATGCTGGTGTACTCGTGGCGGCGGCAACTGAACGCAGGCGTCCAGCGGCTTGCGGTCCGGGCCGAAGCCGGCCTGCAGGCCAGCGAGGAGGGCCGCGAAGGCGACGAGGACGACGCGCCCCTGCCGCTGGCTCGTGCCGTGGGCTTTGCCGACCTGGTGTCCTATACCAGCCTGTCCCGCAGGATGAATGAAAAGACGCTGGCACGGCTGGTCCAGCGCTTCGAAAACAAGTGCGCCGAGATCATCTCAGTGGGCGGCGGCCGCTTGGTAAAGACCGTCGGCGACGAAGTGCTCTACATCGCCGAGACCCCGGCCGCCGGAGCCGAGATCTCCCTTGCATTGGCGCAGGCCTTTACAGAGGATGAGATCCTTCCGGAGGCACGTGTGGCCATGGTCTGGGGCCGGATACTGTCCCGGCTCGGAGACATTTACGGCCCTACCGTGAATCTGGCGGCCCGGCTCACCACCTTGGCCGATCCTGGAACTGTCCTGGTGGATTCCATGACGGCCTCGGCATTGGACCGGGATGAACGCTTTGTCCTGGTACCGCAGCCGGCCGAAAATGTCCGCGGCTTCGGAGAAATCCATCCTGTCCTGCTCAGCAGGGGACTCGGCAAGGGCCTGATCCTGGACTGAMNDEDQQEQQDTAAPTAPESARPDTAPPVPGFSVAANPPTGTLSAERLAAKALETRLLGGERKLRRREVAAGAGLSLLSARKLWRALGFPNFGDDDVAFTERDQAALSTVVDLVRSGMLTEEAAISVTRSIGQMTDRMVVWQIEALVEDMVHEQGVTDAVARKQLVNDLPALVDALEEMLVYSWRRQLNAGVQRLAVRAEAGLQASEEGREGDEDDAPLPLARAVGFADLVSYTSLSRRMNEKTLARLVQRFENKCAEIISVGGGRLVKTVGDEVLYIAETPAAGAEISLALAQAFTEDEILPEARVAMVWGRILSRLGDIYGPTVNLAARLTTLADPGTVLVDSMTASALDRDERFVLVPQPAENVRGFGEIHPVLLSRGLGKGLILDPGPT0021560_5652DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021560-cyaB|gidA-K01768NANA
D1-29_014496165hypothetical proteinGTGAATCTTCGCCGAGCCGCGCGCCAAAAGGCAGCAGGGGAATCCGGGCCCCGCTTCCACCTGCCACGCTGGTTTCCTGCCATTGCTTTTTCCGTTGCTGGAGTGGTGTTGGTCACGGGTGCTGTGTTGTATCCGGGGTTTAAGACCACTGAGGTGGAGTTGAACGATGGTGGTGTGTGGGTTGTTTCGAAGTCCAAGAATGCTGTGGGGCGGCTGAATTATCCGTCGCGTGTTCTTGATGGGGCGGTGACGCCGGCGAGTACTACGTTTGATGTTTTGCAGCATGCGGGGGATGTGTTTGTTGATGATGAGACGGGTTCGACGCTGAACCAGGTTTCTCCGGCGAATATGCGCCTGGGCGGGGACAAGCAGCTGCCCGGTGCCGCCGAAGTGAGCTTTGGCGCGCAGGTCATCTCCGTCACGGACGCAGCGAAGGGCAAGGTCTGGGCGCTGTCACCGTCCACAGTGAACGGCTTCGAAGCGGACTCGACGGAACCGGCGCTCACCGCTTCACAGGGCCTGGTGTCCGCCGTGGGGTCTGATGACCGTATTTACAGTGCGGATCCGAAGTCCGGGGTGGTCACTGTTACCGGCGTGGATGCCAATGGTGAGGTGTCGTCGTCGGAGTCCAGTACGTGGGGCGAGCTGAAGGGCTCGGGGGATTTGCAGATCACGGTGGTGGGGGACCGGCCGGTGGTTCTTGATGCCGGGGCCGGGAAGCTGTTTTTGCCGGGCGGGAAGCGTTTGCAGCTGGATAATGCGCGGGATGCGAAGCTGCAGCAGACTGGTCCGGCGAGTGATGTTGTGGCGATTTCGACGCAGAAGGCGTTGTTGAAGCAGCCGTTGGATGGTTCCACCGCGAAGACTGTGACCTTTGATGGTGAGGGGGTGCCGGCGGCCCCTGTGCAGTTGGCGGGGTGTGTGCACGCGGCGTGGTCTGGTGCGAACAAGTATGTGCGGGACTGCGTGAACGATGTTGATGACAAGAACGTGGACGTGCCGAAGGCGAGTGCGTCGCCGTCGTATGTGTTCCGGGTGAACCGGGACGTGGTGGTCCTGAACGATGTGAACTCCGGGAATGTGTGGCTGGTGAACCAGAACATGCAGCTGGTGAACAACTGGGACGACGTCATCCCGCCGCAGCAGACCTCCGACGACGCAGACAAGGACTCCGCGGACGAAGTCCAGCAGACTGTCCTGCCGGACCGGACCAAACCCAACAGCGCACCGGTGGCCAAACCGGACACGTTCGGCATACGCGCGGGAAGGACGGCCATCCTCCCCGTTCTGGACAACGACACCGACCCCGACGGCGATATCCTCACTGTCCGCGCCCCCGATCCCATCGGGTCAGGGCCCGTCGCCCCGATCTACGGCTCCACCGGATTCCAGGTCAGTGTCCCCGCAGACAAGACGGGGTCCGAGACCTTTAAGTACAGCGTGGACGACGGCCGCGGCCTCACGGCATCTTCCGACATCACGCTCAATATCATCCCGCCGGGGGAGAACTCCGCTCCCCGGCAGAAGCCCAACCGGAACACCACGCTGATAGTGCAGGCCGGCAAGATCGTCAGCCAGAACATCCTCAGCGACTGGATCGACCCCGACGGCGATGACCTCTACGTGGTGAATGCCACGGCCAGTGATCCCCGGGACCAGGTCAAGGTCCGGCCCGACGGACTGCTGACGTTCCAGGACGCGGGTACGGAGCCTGGGCGGAAAGTCATCACCCTGACAGTGTCCGACGGCCAGTCAACTGCCGAGGGCAAGGTCACGGTGGACGTGCGCGCGCCGGGAGCGCTGCCGCCCCTCGCCAATGCAGACCACTTGGTTGCCGTGGCCGGCGTGGATACCGTGATCGCGCCGCTGAAAAACGACTCCGACCCGCTGGGCGGTGCCCTCCGCCTCGCCCAGGTCACGCCGGACGGGAACTCCACCGCCACCATGGGTGCGGACCAGCAGACGTTCACGTTCAACTCCACGGCCGAGGGCGCCCACTACGTGGCGTACCTCGTCACCAATGGTCCCGCCAGCGCGCAACAGCTTGTTCGCGTGGACGTGGTGTCCGGGGGCAACGACGGCGCCCCTGTCGCCGTGCGCGACACCGCCTTGCTGCCCAGCGGCGGCAGCGTCCTGGTGGACGTTCTGGGCAACGACTCGGACCCCTCCGGCGGCGTGCTTGTGGTCCAGTCCGTCACTGCTGCCGACGGCCTGCCGGTCAGCGTCTCCGTCCTGGACCACTCCGTTGTGCGGATCACGGACATCCGGGCGCAGGGTCAGCTCAGCGTCAAATACACGATCTCCAACGGCAAGTCTTCCGCCGGCGGTGACATTGCAGTCCTCGTGGTACCCGCGCCCGCGAAGCTGCAGGCACCCCAGGCCAAACCGGACGAAGTGTCGGTCCGGATAGGCGACGTCGTCACCATACCGGTCCTGGCCAACGACACCGACCCCAACGGCGGCCAGCTCTCGCTTGAGCCTGAGCTGCCACAGAAACCGGATGACGCCGACGGCCGGATGTTCCGGGCCGGGAACACGTTGCGCTTTATCGCCGGAGACGTGCCCAAGACCGTCTACGCGATCTATAAGGTCACCAACGACTCGGGCCAGGCGGACTCCCAGCAGGTCACCATCCGGGTCCGGGCCCGCGACGACGAACGCAACACCCGCCCGGAGCCCAAGAACCTGACAGCCCGTGTGGTCTCAGGAATGGTGGTGCGGATCCCGGTGCCCCTGGATGGTATCGACTCCGACGGCGACTCCGTCCAGCTGATCGGCGTGGACAAGGCCCCCGCGATGGGAACGGCTGTGGTCAGGGACGGCTACCTGGAGTTCACGGCGACAGGAACGGCCGCCGGCACGGACACCTTCACTTACCGCGTGCGGGACCGGATCGGCGCCGAGAACACCGGGACCGTGATTGTGGGGATCGCTCCGCCCGAGCCGAACAACCAGAAACCCATCGCCGTTGACGACGCCGTGGATGTACGGCCGGGACGCAACATCGCCGTGGACGCGTTAACTAACGACTCGGATCCGGACGGGGACCCGATCGGGCTGGTGTCCAACGCCTTCGAGGCACGCCCGGAACTGCGCGTCGAGACGGCCGACGGCGGCAGGATACTGCTCACGGCGCCGGATACCGCCGGCAACGAGAGCGTCGGCTACAAAATACAGGACGACAAGAAAGCCCAGGGCGGTGCTGTCATCCGGGTCAGGGTCAGCCCAGACGCAACGCTTAAGGCACCGATCGCCAAGGACGACGTCATCACGCCCGCCGAGACACTGGGCAAATCCGCGGTGGACGTGCCGGTCCTGAAAAATGACTCCGATCCCGACGGGGTGGCTTCCGAACTCAAGCTCACCCTGCCGGACGGCAACCCGAACGCGCGCGTCGGCGGCGATGGCAACGTGGTGGTCAGCCTTGCGCCGGCGGACCAGTTGGTTCCTTACACTGTCACGGACGTCGACGGCCAGAGCGCTACCGCTGTCATCTGGGTTCCCGGGCAGGGCGAAGAGCACCCCACCCTGGCCCGCACCGACGTCGTGGAAGTGATGGCCGGGCAGGAAATCACCCTGGACCTGAACGAGTATGTCCGCGTCAGGGAGGGGCGCGAACCGCAGATCACCCAGGCGGACAAAGTCCGGGTTCAGGGCGCCGATCCGCAGAACATCATCGGCGGGGACGCCAGGACGCTGCGTTACTCCGCGCTGAAAGACTACGTCGGTCCGGGTTCAGTCACCTTTGAAGTGACAGACGGCTCCGGTCCGGAAGATCCCCAGGGCCTGAAATCGACCCTGACCATCGTCACCCGGGTCACCCCTGACCCGAACGCGAACCACCAGCCCACGTTCAGCGGCAGCGACCTTGAGGTGCCGACGGCCGAAACAGCCAGCCTTGACCTGGGCAACCTGGCCAGGGATGTGGACGCCGGGGACCAGGAGAAGCTCACCTTCGAGCTGGACGGGACCACCCCCGAAGGCTTCACCGCAACCATTGACGGGCAGACACTTAACGTCCGCTCCGCAGACGGCATCGCCGCCGGCCGCAAGGGGACCATTCCGCTGAAGGTCACGGACGGCCGCTCGGAACCTGCCAAGGCCCAGGTGACGGCCACCGTCGTTGCGTCCAACCGGCCGCTGGCCACCGCCAACGAGGACGTCCTGGACAAGGCCAACGCGGGGCGGACCGAAACCATTAACGTCCTTGCCAATGACTTCAATCCCTTTGACGGCAGCCCGCTGAAAATCGTTTCGATCGCGGTGGAAACCGGATCCGCCGCCGGGCAACCCGTCATCAGCGGAGAATCTGTCACGGTGACGCCGGCGGAAGGATTCAAGGGCGTGATGGTGCTCAGATACACCGTCGCGGACAAAACCGGGGATGCGTCACGCCAGGTGAGCGGGCGGGTCCGCATCACCGTCCGGGACGAACCGGACGCACCCTCGGCCCCCGCCGCAACCGACGTGCGCAGCCGGACGGCGGTACTCAAGTGGGCCCCGCCGTCGGACAACGGTGCACCGATCACCGGCTACACCGTCAGGTCCACCAACGGCTTCGAACAACGTTGTGCCACCACGACCTGCACCCTCAGCGGGCTGACCAACGACGTGAAGTATGTCTTCACCGTGACCGCCACCAACGAGGTGGGAGACTCTCCGGCGTCCCCGCAGTCGAACGAAATCCGGCCGGACGAAAAGCCTTCTCCACCGGAAGCGCCCACCGTGAAGGCGGGTGACAAGGACATGGTCATCAACTGGCCGCCGGCCAAGACCGAGGGCTCGGCCGTCAAAAGCTACAACCTCGAGATTTCACCGCCTCCCGCCGGTGGCGTTGCAGTCAAAAACGGCGTGACCGGCCTGACCTACACCTGGACCGGCCTGACCAACGGGGTCCGTTACAAGGTGCGCGCCCAGGCCGTCAATGAGCTGGGGGCCTCGGACTGGGGCATCTACTCCTCCGAAGACAACCCTGCCGGAGTGCCCGCCGCGCCGGCGGCACCGACCTCCGCCGTGGCCTCCGCCGTGGGAACCACCAATCAGTTGCGTGTTAACTGGACGGAACCGAACACCAACGGCGACGCGATCAGGAACTATTACGTCACCATGAGCGGAGGCGGCGCCACGCCGCAGACCCAGACGATCGCAGGTACCGTTCGCACCGCCAACTTCAGTGCGAACAATTCCGAAACCGAATACACCTTCACCGTGCAGGCCGAGAACAAGGCAGGAAAAGGTGCAGTCAGTCCGCCGTCGGCACCCCGGCGCGCCACCGGCAAACTGGGCCAGGTCTCAGGCGTCACTGTCGCTGCGGCAGACACCGGGGGAGCCGGACGGAAGGTGGCCATCGATTTCAAGGAACTCACGGCTGCCGAACGGAACGGCTCGTCGGTGAATGAGGTCAGCTACAGCTACAACGCCAGCAGCGGTGAAAGCGGTCCCATTACACGGGGGCAGACGGTTGGTGGTTTCACCAACGGCGTCCAGACCACCATCACGGTGATCGCGCACTCAACGGTTGCGCCGAGCTCCAATTCCAGCGCCGGAGCATCAACTACCCCCTATGGGTCACCCGGGACGCCGACAGCCGCAGGCGAAAACGGCCCCATGAACCAAAAGTACGCGACCATGAGCTGGTCCTCACCATCCACCAGCACCAACGATGTCGCCCAGACCAAGATCAACATCAACAACCGCGGCTGGGAGGTGGTGGCGCCCTCCGGGAGCCGGGTGGTCAACACCGAGGGCTACGGCGAGCTGGTGTCCATACAGGTCCAGACGTTCAACTCACTGGGCACCGGGGGCACGGCCCCCGCTGCGATCGCCGCATCCGGCAAACGGGGCGAGTGGATCACCACCGTTGTGAAGGGAACTGACCTGGTCCGCACATGCACGTTCGAATATGGCAAAGCCAGCTACCGGCCCGCGCCCTACTTTGACTGCCAGGGCATCAACAAGGGGGATACCCCGCCCTGGTACTACGTCAACAGTGGCGAGCACATCGTGGTCCGCTGCTACGTGATGATGAACGACCAGTGGACCAACACACCGGACCAGCCCTTCTACCGGATTGAGCCCGGCTCCAACCGGAACGTTGGCTTCTACATGGTGGCAAGGCATTCGCAGCTTGACCTGCCTTACTCCCACGGTATTCCGCTGTGTTGAMNLRRAARQKAAGESGPRFHLPRWFPAIAFSVAGVVLVTGAVLYPGFKTTEVELNDGGVWVVSKSKNAVGRLNYPSRVLDGAVTPASTTFDVLQHAGDVFVDDETGSTLNQVSPANMRLGGDKQLPGAAEVSFGAQVISVTDAAKGKVWALSPSTVNGFEADSTEPALTASQGLVSAVGSDDRIYSADPKSGVVTVTGVDANGEVSSSESSTWGELKGSGDLQITVVGDRPVVLDAGAGKLFLPGGKRLQLDNARDAKLQQTGPASDVVAISTQKALLKQPLDGSTAKTVTFDGEGVPAAPVQLAGCVHAAWSGANKYVRDCVNDVDDKNVDVPKASASPSYVFRVNRDVVVLNDVNSGNVWLVNQNMQLVNNWDDVIPPQQTSDDADKDSADEVQQTVLPDRTKPNSAPVAKPDTFGIRAGRTAILPVLDNDTDPDGDILTVRAPDPIGSGPVAPIYGSTGFQVSVPADKTGSETFKYSVDDGRGLTASSDITLNIIPPGENSAPRQKPNRNTTLIVQAGKIVSQNILSDWIDPDGDDLYVVNATASDPRDQVKVRPDGLLTFQDAGTEPGRKVITLTVSDGQSTAEGKVTVDVRAPGALPPLANADHLVAVAGVDTVIAPLKNDSDPLGGALRLAQVTPDGNSTATMGADQQTFTFNSTAEGAHYVAYLVTNGPASAQQLVRVDVVSGGNDGAPVAVRDTALLPSGGSVLVDVLGNDSDPSGGVLVVQSVTAADGLPVSVSVLDHSVVRITDIRAQGQLSVKYTISNGKSSAGGDIAVLVVPAPAKLQAPQAKPDEVSVRIGDVVTIPVLANDTDPNGGQLSLEPELPQKPDDADGRMFRAGNTLRFIAGDVPKTVYAIYKVTNDSGQADSQQVTIRVRARDDERNTRPEPKNLTARVVSGMVVRIPVPLDGIDSDGDSVQLIGVDKAPAMGTAVVRDGYLEFTATGTAAGTDTFTYRVRDRIGAENTGTVIVGIAPPEPNNQKPIAVDDAVDVRPGRNIAVDALTNDSDPDGDPIGLVSNAFEARPELRVETADGGRILLTAPDTAGNESVGYKIQDDKKAQGGAVIRVRVSPDATLKAPIAKDDVITPAETLGKSAVDVPVLKNDSDPDGVASELKLTLPDGNPNARVGGDGNVVVSLAPADQLVPYTVTDVDGQSATAVIWVPGQGEEHPTLARTDVVEVMAGQEITLDLNEYVRVREGREPQITQADKVRVQGADPQNIIGGDARTLRYSALKDYVGPGSVTFEVTDGSGPEDPQGLKSTLTIVTRVTPDPNANHQPTFSGSDLEVPTAETASLDLGNLARDVDAGDQEKLTFELDGTTPEGFTATIDGQTLNVRSADGIAAGRKGTIPLKVTDGRSEPAKAQVTATVVASNRPLATANEDVLDKANAGRTETINVLANDFNPFDGSPLKIVSIAVETGSAAGQPVISGESVTVTPAEGFKGVMVLRYTVADKTGDASRQVSGRVRITVRDEPDAPSAPAATDVRSRTAVLKWAPPSDNGAPITGYTVRSTNGFEQRCATTTCTLSGLTNDVKYVFTVTATNEVGDSPASPQSNEIRPDEKPSPPEAPTVKAGDKDMVINWPPAKTEGSAVKSYNLEISPPPAGGVAVKNGVTGLTYTWTGLTNGVRYKVRAQAVNELGASDWGIYSSEDNPAGVPAAPAAPTSAVASAVGTTNQLRVNWTEPNTNGDAIRNYYVTMSGGGATPQTQTIAGTVRTANFSANNSETEYTFTVQAENKAGKGAVSPPSAPRRATGKLGQVSGVTVAAADTGGAGRKVAIDFKELTAAERNGSSVNEVSYSYNASSGESGPITRGQTVGGFTNGVQTTITVIAHSTVAPSSNSSAGASTTPYGSPGTPTAAGENGPMNQKYATMSWSSPSTSTNDVAQTKININNRGWEVVAPSGSRVVNTEGYGELVSIQVQTFNSLGTGGTAPAAIAASGKRGEWITTVVKGTDLVRTCTFEYGKASYRPAPYFDCQGINKGDTPPWYYVNSGEHIVVRCYVMMNDQWTNTPDQPFYRIEPGSNRNVGFYMVARHSQLDLPYSHGIPLCNANANANANA
D1-29_014506147hypothetical proteinGTGACAACTCTGCTGGGGAAGCTTGGGCTGAAAAAGCGCCGGAACAAACTCGCCAACCGCCACAAGCGGCTGATCGCCGGAACGGCGTTTGGAGCCGCCGTGGTGGTGTTGGTCACGGGTGCTGTGTTGTATCCGGGGTTTAAGACCACTGAGGTGGAGTTGAACGATGGTGGTGTGTGGGTTGTTTCGAAGTCCAAGAATGCTGTGGGGCGGCTGAATTATCCGTCGCGTGTTCTTGATGGGGCGGTGACGCCGGCGAGTACTACGTTTGATGTTTTGCAGCATGCGGGGGATGTGTTTGTTGATGATGAGACGGGTTCGACGCTGAACCAGGTTTCTCCGGCGAACATGCGCCTGGGCGGGGACAAGCAGCTGCCCGGTGCCGCCGAGGTGAGTTTTGGCGCGCAGGTGATCTCGGTGACTGATCCGGCGTCAGGCAAGGTGTGGGCAGTGTCGCCGTCCACGGTCAATGGTTTTGATGAGGAAGCCACGGAACCGGTGATGGTGGGTTCGGAGGGCCTGGTGTCCGCCGTGGGGTCTGATGACCGTATTTACAGTGCGGATCCGAAGTCCGGGGTGGTCACTGTTACCGGCGTGGATGCCAATGGTGAGGTGTCGTCGTCGGAGTCCAGTACGTGGGGCGAGCTGAAGGGCTCGGGGGATTTGCAGATCACGGTGGTGGGGGACCGGCCGGTGGTTCTTGATGCCGGGGCCGGGAAGCTGTTTTTGCCGGGCGGGAAGCGTTTGCAGCTGGATAATGCGCGGGATGCGAAGCTGCAGCAGACTGGTCCGGCGAGTGATGTTGTGGCGATTTCGACGCAGAAGGCGTTGTTGAAGCAGCCGTTGGATGGTTCCACGGCGAAGACTGTGACCTTTGATGGTGAGGGGGTGCCGGCGGCGCCTGTGCAGTTGGCGGGGTGTGTGCATGCGGCGTGGTCTGGTGCGAACAAGTATGTGCGGGACTGCGTGAACGATGTTGATGACAAGAACGTGGATGTGCCGAAGGCGAGTGCGTCGCCGTCGTATGTGTTCCGGGTGAACCGGGATGTGGTGGTCCTGAACGATGTGAACTCCGGGAATGTGTGGCTGGTGAACCAGAACATGCAGCTGGTGAACAACTGGGACGACGTTGTCCCGCCCAAAAACGAGTCCGACGAACAGGACCAGGATTCGGCAGACAACAACACCATCAACGTGCTCCCTGACCGCACCAAACCCAACCGGCCGCCGGAAACAAAACCGGATATTGTCGGCGTGCGCCCCGGCCGTACCACCGTCCTGAGCGTCCTGGACAATGACTCCGATCCCGACGGCGACGTGCTGACCGCCGCCGTCGGAAATGCCGGTCCCAAGGCCGGAAGCCTGGAGAGCATCTATGGCGGCACCGCCTTCCAGATCTCTGTCCCGGCCACGGCAAACCCGGGCACCGAATCCTTCGACTACAACGCGGCGGACGGCCGGGGGCTGTCCGCCGGCGGCCAGGTGACGTTGAGCGTGGTGGGCCCGGACGAAAACCGGCCGCCCCAGTTCAAACGGGGCGGGGACGCCACCACCATGCTCGTCGAACAGGGCAAAACCGTCAGCCAGAACATTCTCACCGACTGGGCAGATCCCGACGGCGACGACCTGGTCCTGATGGATGCCAAGGCTGACAACGACCAGGACCAGGTCAAGGTCCGCCGTGACGGGCTGCTGACGTTCCAGGATTCCGGCGCCACGGCCGGCAAGAAGAACGTCACCGTCACCATCTGGGACGGCCGGGCAACAGTCACCGGAAAAGTAGTGGTCAACGTCCAGCCGCCCGGAGCCCTCGCACCCGTGGTCAATGCCGACCATGTCACAGCAGTGGTGGGCCAGGACCTGGTGATCGCCCCGCTGAAGAACGACGTGGACCCCAACGGTGGTGCCCTGCGGCTGGCCCAGGTGGAGGCCAATGGCCCTGCCGAACTCGGTCCTGTCACAGACGGCGGCACCTTCACGTTCCGCAGCACCACCCCGGGCCCGGTCTACCTTACGTACATTGCCAGCAACGGTCCACAGAGCAGCCAGGGACTCATCCGGGTTGACGTGGAATCGGGCAAGGACGGCGGCGACCCCGTGGCCGTCCACGACGTTGCGCTGATGCCTGTTGGAGGAAGCGTCCTGCTGGATCCGTTGGCCAACGACTCGGACCCCTCCGGCGGCGTCCTGGTCCTGCAGTCCGTCAAGCTTCCGGAGAACACCACCGCGTCCGTCAGCGTGATCGACCACAGCGTCCTGCGGATCACGGACATCCTGGGCACCAAAGACCCGTTCCTCTTTGAGTACACCATGTCCAACGGAAAGAAGTCCGCCACCGGAAGCGTCTCTGTTGTTCCGGTTCCGGCCCCCGCCATCGTGGAAGCGCCCCAGCCTAAACCTGATGAGGTGAACGTCCGCATCAACGACGTCGTCACCATTCCGGTGCTGGATAACGACACCCACCCGCAGGGCGAAAAACTGACGGTTGATCCCGTCCTTCCGCAGGGAGTGGACCAAGCTGACGGCAAGAGCTTCGTTTCGGAGAACACCCTCCGGTTCATCGCCGGACCGCAGCCGAAAACGGTCCGCGCGATTTACAACGCCGTGGATCCGCAGGGGCAGAAGAGCGCCGCGGCCGTCACCATCCATATCCTTCCGCTGGAAGGCGCCGAAAACTCCCGGCCGCAGCCCCGGAACCTGACGGCCCGGGTGGTGGCTGCGGGCACCGTGCGCATCCCCGTTCCGCTGGATGGGATAGATCCCGACGGCGACTCCGTGCAGCTGACGGGCATCGACAGCACCCCGGCCATGGGGACGGCAGCCGTGGGCAGTAATTTCATTGACTTTACGGCTGCCGGCGACGGCGCCGGAACCGACACTTTCCGCTACAAGGTGGTGGACCGGCAGGGCGCCGTCAATACCGGCACCGTAACTGTGGGAATAGCACCGCGGGGGGAAACCAACCAGAATCCCACTCCCGTGGACGACGAGGTCAAGGTCCGGCCCGGGCGGCAGATTGCCGTTGACGCCGCCGGCAACGACACCGATCCCGACGGTGACCTCATCCGGGTCCTCACCGACGGCATCGAGGCCGATCCTGCCCTCCAGGCCACCGTGAGCAAGCAGAGCGGGCGGATTATCCTGTTGGCGCCCAATGCCGCGGGAACGGTCAACGTCCGCTACTCCGTCGCCGATGACAGGGATGCGTCCGCGCAGGCGACCATCCGCATGGTGGTGGACAATGACGTGCCCCTGCAGGCACCCATTGCCCGCGACGACAGGGTGACGTCCGCCCAAACAATGGGAAAGACCGCCGTGGACGTGCCGGTCCTCAAGAACGATGAAGACCCCGACGGCGTGGGGGAGAACCTGAAAATCAGCACGGAGTTGCCGACTGCCCGCCCCGGCGCTGACGGCAACATGATCGTTGACCTGACCGAGCAGCCGCAGCTCATTCCGTACACCGTGGAAGACGTGGACGGCCAGAAGTCGACGGCCATCATCTGGGTACCGGGCATCGGGCAGCAAGTGCCCACGCTCGCGAAGGACGAAGTGATCGAGGTCATCGCCGGTCAGTCGGTCACGGTGGACCTGGACGAATGGGTGAAGGTCCGGGAAGGACGCTCGCCGCGCCTGACCCAGACGGACCGGGTCAAGCTCATTGGCTCCGACGGCAGCGACCCCGGATCCGGAGACGGTACCCAGCTTAAGTACACCGCCGGCGTTGACTATGTGGGCCCCGGCTCGATCAGCTTCGAGGTCACAGACGGAAGCGGCGTGGATGATCCCGCCGGCCTCAAGTCCACCCTGAGCATCCGCACCAAGGTGCTGCCGGACCCCAACCGCAACAACCCGCCGGAACTGCTGGGTGCCAACGTTGACGTTCCCAAGGGGGACGCAGCTACCGTTGACCTGGGCAAGCTGACGGCGGACCCGGACCGCGATGATCTCGAGAAAATGACATACGAGCTGGTGGGAGCCAGCCCCGGCGGATTCGAAGCCGGCATCGACGGCAAATCGCTTAAGGTTTCTGCCGCTGACAACAGCACCTCCGGCACTACTGGCTCAGTCCAGGTCAAGGCCAAGGATTCGCGCGGCCTGGAAGCCACCGCCACCTTCCAGCTGACAGTAACGGCCTCCAACCGGCCAAAGCCGGTGGCCAATGACGATGTGGAGCCCAGCGCCGCGGCGGGGAAGCCGGTAACCGTCAAGGTCCTGGACAACGACGCAAACCCCTTCCCGGAATCACCGCTGAAGATCCTTTCCGCCATCACCGAAACGGGCCAGGGAACTGCCGGGATTTCGGGAGATTCCGTCACGGTCACACCGTCGTCCGGATTCACCGGAACCATGGTTGTGGCCTACACGGTGGCGGACAAGACAGGGGACGATTCCCGCAACGCCACGGCACGTATACGGCTGACGGTGAAGGACGCTCCGATGGCTCCGACGACTCCCCAGGCGCAGAGCGTGGGGGACCAGACTGCACTGCTGACCTGGGGCGCCCCCGCAGACCGCGGCGCCCCGATCACCAAGTACACGGTCTTTGGCGAAAACGGCTTCCAGCAGGAATGCCCGGCGAACACGTGCACCCTGACAGGTCTTACCAACGACACCAAGTACCACTTCCAGGTCACGGCCACGAACGAATTCGGCGACTCCGACAAGTCTCCGGCTTCTGCTGAGGTCCGTCCGGACGTGAAGCCGGATACCCCCCTGGCTCCTGCCCTGAAATTCGGCGATAAGGAGCTCGCCGTCACCTGGGTGGCACCTGCCAGCAAGGGGTCACCGGTCAAGTCCTACGACCTTGAAATCTCTCCGGCTCCCGCCGGACAGAATGCGCAGATCCAGAACCTGACAGCCGTCAGCTATGTCTGGAAGGGGCTACAGAACGGTGTGGCCTACAAGGTGCGCGTGCTGGCCCGCAACGATGCCAAGGACCCGTCCGAGTGGAGCCCGTACTCCGCAGCGGAGGTGCCGGCAGGTCCGCCCGCAACGCCGGCGCCGCCCACCGCATCTGATGCGGGCTCCGTCGGGGCCCAAAGCCAGCTGAAAGTCAGCTGGACCGCACCGAACAACAATGGTGACGGAGTGTCCTCCTACACCCTCACCACGTTGCGTGGCGGAGCTGTGGTCAACAGCCAGCCGGTGACCGTCGGAACCTCGCAGAACGTCACGGTGGATAACTCCGAGGCCAACTACACCTTCACGGTATCTGCCACCAACAAGGCAGGGACCAGCGGGACCAGCAGCCCGTCGGCGGCTATCCGCGCTGCGGGCAAGCCGGGCCAGGTGAGCAGCGGAACGGTGGCGGACACCGGCAACAGCGGCCAGCTGCGTGTGACCTTCGCTCCGCTCACCCAGGCCCAGCGGAACGGATCCACCGAAAGTGAAATCCAGTACACGTACAACGCCGACGGCAGGTCGGGCACTATCCCCGCAGGCGGCGGCCCCATTAATGGACTTACCAACGGCCGCGACATCACGGTCACCATCATCGCCACGTCCACCAAGAACAACGTCTCGGGCGACGCCCAGGCTATAGGTACCGGCAACCCCTATGGACCGCCGAACGCTCCGAGCGTGGACGGCAGGACTTCGGCCACCGGCGACGGCCAGGTTCACTGGACCTGGAACAACCCCAACACGAACGGCCGTCCGCTCAGCCACTACGAGGTGAGTGTGGACGGGGGCGGCTGGCAGAACGTGGGCAAGGCCAACAGCTTTGATGCCCCCGGCGGTGGCTGGAGCAACAGCCGTAACCTGCGTGTCCGGGCCGTGTCCGTGGTGGCCGGTGGCATCGGCGGCCCGGTGAGTTCGACGTCGGGCGCAAATCCCGCTCCGCCGGCAACAACGGTCCGGGTCAAGCCCGCGGACAATAACAGCTGCCCGGGCAAGCCCGGAGTCGCGGACCGCTACAGCAATGTGGGTGGCGACGCCCGCTGCGGTTCGAGTGACGCGAACTGGGTCTCGACGTCCGACGGCTGGATTGTGAGCCAATGCTGGATGAACATCTACGGGTCCAGCGAATCATCCAACCCGCCCAGCTACTACAAGTGGTACCGGATGGAGAACGGCCCGCACCCCGGCTGGTACGTCAAGCTCGCCACCATCGACATCAATGGACCCGACGTTCCCCGGTGCTGAMTTLLGKLGLKKRRNKLANRHKRLIAGTAFGAAVVVLVTGAVLYPGFKTTEVELNDGGVWVVSKSKNAVGRLNYPSRVLDGAVTPASTTFDVLQHAGDVFVDDETGSTLNQVSPANMRLGGDKQLPGAAEVSFGAQVISVTDPASGKVWAVSPSTVNGFDEEATEPVMVGSEGLVSAVGSDDRIYSADPKSGVVTVTGVDANGEVSSSESSTWGELKGSGDLQITVVGDRPVVLDAGAGKLFLPGGKRLQLDNARDAKLQQTGPASDVVAISTQKALLKQPLDGSTAKTVTFDGEGVPAAPVQLAGCVHAAWSGANKYVRDCVNDVDDKNVDVPKASASPSYVFRVNRDVVVLNDVNSGNVWLVNQNMQLVNNWDDVVPPKNESDEQDQDSADNNTINVLPDRTKPNRPPETKPDIVGVRPGRTTVLSVLDNDSDPDGDVLTAAVGNAGPKAGSLESIYGGTAFQISVPATANPGTESFDYNAADGRGLSAGGQVTLSVVGPDENRPPQFKRGGDATTMLVEQGKTVSQNILTDWADPDGDDLVLMDAKADNDQDQVKVRRDGLLTFQDSGATAGKKNVTVTIWDGRATVTGKVVVNVQPPGALAPVVNADHVTAVVGQDLVIAPLKNDVDPNGGALRLAQVEANGPAELGPVTDGGTFTFRSTTPGPVYLTYIASNGPQSSQGLIRVDVESGKDGGDPVAVHDVALMPVGGSVLLDPLANDSDPSGGVLVLQSVKLPENTTASVSVIDHSVLRITDILGTKDPFLFEYTMSNGKKSATGSVSVVPVPAPAIVEAPQPKPDEVNVRINDVVTIPVLDNDTHPQGEKLTVDPVLPQGVDQADGKSFVSENTLRFIAGPQPKTVRAIYNAVDPQGQKSAAAVTIHILPLEGAENSRPQPRNLTARVVAAGTVRIPVPLDGIDPDGDSVQLTGIDSTPAMGTAAVGSNFIDFTAAGDGAGTDTFRYKVVDRQGAVNTGTVTVGIAPRGETNQNPTPVDDEVKVRPGRQIAVDAAGNDTDPDGDLIRVLTDGIEADPALQATVSKQSGRIILLAPNAAGTVNVRYSVADDRDASAQATIRMVVDNDVPLQAPIARDDRVTSAQTMGKTAVDVPVLKNDEDPDGVGENLKISTELPTARPGADGNMIVDLTEQPQLIPYTVEDVDGQKSTAIIWVPGIGQQVPTLAKDEVIEVIAGQSVTVDLDEWVKVREGRSPRLTQTDRVKLIGSDGSDPGSGDGTQLKYTAGVDYVGPGSISFEVTDGSGVDDPAGLKSTLSIRTKVLPDPNRNNPPELLGANVDVPKGDAATVDLGKLTADPDRDDLEKMTYELVGASPGGFEAGIDGKSLKVSAADNSTSGTTGSVQVKAKDSRGLEATATFQLTVTASNRPKPVANDDVEPSAAAGKPVTVKVLDNDANPFPESPLKILSAITETGQGTAGISGDSVTVTPSSGFTGTMVVAYTVADKTGDDSRNATARIRLTVKDAPMAPTTPQAQSVGDQTALLTWGAPADRGAPITKYTVFGENGFQQECPANTCTLTGLTNDTKYHFQVTATNEFGDSDKSPASAEVRPDVKPDTPLAPALKFGDKELAVTWVAPASKGSPVKSYDLEISPAPAGQNAQIQNLTAVSYVWKGLQNGVAYKVRVLARNDAKDPSEWSPYSAAEVPAGPPATPAPPTASDAGSVGAQSQLKVSWTAPNNNGDGVSSYTLTTLRGGAVVNSQPVTVGTSQNVTVDNSEANYTFTVSATNKAGTSGTSSPSAAIRAAGKPGQVSSGTVADTGNSGQLRVTFAPLTQAQRNGSTESEIQYTYNADGRSGTIPAGGGPINGLTNGRDITVTIIATSTKNNVSGDAQAIGTGNPYGPPNAPSVDGRTSATGDGQVHWTWNNPNTNGRPLSHYEVSVDGGGWQNVGKANSFDAPGGGWSNSRNLRVRAVSVVAGGIGGPVSSTSGANPAPPATTVRVKPADNNSCPGKPGVADRYSNVGGDARCGSSDANWVSTSDGWIVSQCWMNIYGSSESSNPPSYYKWYRMENGPHPGWYVKLATIDINGPDVPRCNANANANANA
D1-29_01451972hypothetical proteinATGACAATGACCACCGAGCAGGCCGAATGGTTTGCAGCCACCTTTGAAAAGCTCGTTGCCAACGTTGGACAGGCGGTCCTAGGCAAGGAACACGTCATCCGGCTGACCTTCACAGCCATGCTTGCAGAAGGCCACGTGTTGTTCGAGGATGCGCCGGGGACAGGCAAGACGTCATTGGCCCGCGCATTGGCCGCCACCGTCCAGGGGTCCAACAACCGCATCCAGTTCACCCCCGACCTGCTGCCCTCTGACGTCACCGGTGTGACCATCTACGACCAGAAGACGCAGAAGTTCGAGTTCCACAAGGGCCCCATCTTCAACAACATCGTGCTTGCCGACGAAATCAACCGTGCGTCGCCGAAGACCCAGTCAGCCCTCCTTGAGGTGATGGAGGAATCGCGCGTCACTGTGGACGGTGTCACGTATGAAGCGGGCAGGCCGTTTATGGTTATGGCAACCCAGAACCCGATTGAACAGGCAGGTACCTACCGGCTCCCGGAAGCCCAGCTGGACCGGTTCCTGATCAAGACATCCATCGGCTACCCGGACCACGCCTCCACGGTGAGGCTCCTGGGCGGAGCAAACTTGAAGGACCGGTCCAAGGAACTGTCGCCGGTCATCACCACCCAGGCCGTGGCCGACATGGCTGATCTCGCCGCAACCGTGCACGTGGATACCGCAGTCCTTGAGTACATCTCGCGGCTCTGCGAAGAAACCCGCAACGCACCGGAGACCCGGTTGGGCGTCTCCGTGCGTGGAGCCCTGGCGATGGTCCGCGCCGCAAAGGTGTGGGCTGCCGGACAGGGCCGGAACTTTGTCCTGCCCGACGATATCAAGGAGCTGGCAGCCGTGGTGTGGACACACCGTTTTGTCATGGACCCTGAGGCCGAGTTCTCCGGCGCCACGGCGGAAGCCGTCCTGGTCCGTGTACTTTCTGAGGTTGCTGCCCCGCAGCAGCGCGCCAGCGCCTGAMTMTTEQAEWFAATFEKLVANVGQAVLGKEHVIRLTFTAMLAEGHVLFEDAPGTGKTSLARALAATVQGSNNRIQFTPDLLPSDVTGVTIYDQKTQKFEFHKGPIFNNIVLADEINRASPKTQSALLEVMEESRVTVDGVTYEAGRPFMVMATQNPIEQAGTYRLPEAQLDRFLIKTSIGYPDHASTVRLLGGANLKDRSKELSPVITTQAVADMADLAATVHVDTAVLEYISRLCEETRNAPETRLGVSVRGALAMVRAAKVWAAGQGRNFVLPDDIKELAAVVWTHRFVMDPEAEFSGATAEAVLVRVLSEVAAPQQRASANANANANANA
D1-29_014521332hypothetical proteinATGTCCAGCGGCCATCCGTTGACCCGGCTCCTTGACCGGCTCCGGCAGCCCTTCCGTAAGGACGGCAGTCCCGGCAGGCTCCACCCCTCGTCCCTGTGGGCAGAAGCAACCGGCACCGCGGGGCTGGCGCTGGCTCCGCTGTGGCAGAGTGTCCGCGGCCACTGGCTGCGGTTCGTGTGGCCAGTCCTGTCGGTGGTGAGCGTCCTCGGCTGGTCGGTGCTTGCCGCCAGCATCGTGCTCTGGATGGCCGGCCAGGCTTTTGGCTGGCAGGAAGCAAAGGCCGCGGCGATAGCGGCCTTTGTCCTGTTTATCATCGCCATCGGCTTTATCCTGGGCCGATCTTCCTACGGAGTTGTCCTGGATCTGTCGCGGACCCGCGTTGCGGTGGGGGACACTGCCGTAGGCAGCATCGCCGTCTCCAACACCTCCGCCCGCCCCCTGCTGCCCGCGGCCCTGGAACTGCCGGTGGGCGCAGCCACAGCTGTCTTCCACCTGCCCAGGATGAAGCCGCAACAGGTCCACGAGGACCTTTTCACCATTCCAACAGCCCGCCGCGCGGTCATTGTGGTGGGACCGGTCCGTTCCGTCCGCGCCGACCCCCTGCACCTGCTGCGGCGCCAGGTGTTGTGGACCGAGCCCGAGGATCTCTATGTCCACCCGCGGACTGTCGCCTTGGCCGGCTCCGCCGCCGGCTTCATCCGCGACCTCGAAGGCATGCCAACAACAGACCTCTCCAGCGCCGATGTGTCCTTCCACGCCCTGCGTGACTACGTACCGGGGGATGACCGCAGGCATATCCACTGGAAGACCACGGCCAGGACCAACAAGCTCATGGTCCGCCAGTTTGAGGAGACCAGGCGGGCCCACCTGGCCATCTCGCTCTCCATCAACACCGATGAGTACGCCTCGGAGCAGGAATTCGAAATGGGCATCTCGGCGGCGGCCTCCATCGGCCGGCAGGCGATCCGCGAGCAGCGCGAGCTGGATGTCCTGACGCAGAAGGGTCCGCTGCGCTGTGAAACGGGCCGGAACATGCTCGATGACATGACAAGGATTGTTGGCGCGCCCATGCGCCGGAACGCCGTCGACCTTGCCCGGACCCTGGCGGACACCGTCCCGAACGCCTCGGTGGTCTTCTTTATCGTGGGCAGCAATGTGACTCCCACCCAGCTCCGCTCCGCCTCGGCATCCGTGCCGCCCGGCGTCCGCAGCCTTGCTGTGCGGCTCCAGACCGGAGCTGCACCGTCGCGGGCCAACATCGCAGACCTGACAGTACTGACCCTGGGCGATCTTTCCGATCTTGCCATCGTCCTGAGAAAGGCGGCCGCATGAMSSGHPLTRLLDRLRQPFRKDGSPGRLHPSSLWAEATGTAGLALAPLWQSVRGHWLRFVWPVLSVVSVLGWSVLAASIVLWMAGQAFGWQEAKAAAIAAFVLFIIAIGFILGRSSYGVVLDLSRTRVAVGDTAVGSIAVSNTSARPLLPAALELPVGAATAVFHLPRMKPQQVHEDLFTIPTARRAVIVVGPVRSVRADPLHLLRRQVLWTEPEDLYVHPRTVALAGSAAGFIRDLEGMPTTDLSSADVSFHALRDYVPGDDRRHIHWKTTARTNKLMVRQFEETRRAHLAISLSINTDEYASEQEFEMGISAAASIGRQAIREQRELDVLTQKGPLRCETGRNMLDDMTRIVGAPMRRNAVDLARTLADTVPNASVVFFIVGSNVTPTQLRSASASVPPGVRSLAVRLQTGAAPSRANIADLTVLTLGDLSDLAIVLRKAAANANANANANA
D1-29_014532625hypothetical proteinATGAGCACGGCGCAGGGCCTCCGCCCACGGACCCAGCGCACCCAGGAAGTGTCGGCCTTTGCCGACGGCCAGCCGGCCTGGCACTTTGTGCTCGACGCCGGTGCCCTCACCGTGCTGCTGGGGCTGGGGGTCCTCGGCTTCAGCCTCAGCTTCGGAGGTGATCCCTACTACCTCGTTTCAGGATTCGGGGGAATCATCCTGGGCCTGGCGATCGCCGCCTGCAATGCCCACCTCAGGCTGGGGCTGCTGATCACCGCAGCACTGACCCTTGCCGCATACCTTTTGTTCGGGACAGCCCTCGCGGTCCCCGGGTCGGCCATCGCCGGATTCATCCCCAGCCTGGACTCGTTGCGGACGCTTCTCCTCGGCGTGGTCTTCGCCTGGAAGGACATGCTCACGGTGGGCGTGCCGGTGGGTACTGCCGGCGGTGTCCTTATCGTCCCGTTCCTCAGTTCCATGGTGGCCGCGGCCGTTGCCGGAATCCTGATCTGGCGGGTCAAAGGCCCCTATTGGCCGCTGCTTCCGGTGCTGGCACTCTTCGTCACCGGCATTGCCTTCAGCACCAACGCCGCCTTCCTGACGGTGGAACGCGGCATCGCGCTCACCGTGGTTGCCATCGCCTGGGCAACTTTCAGGAGGGATGCGTTGCGGCGCAGCGACACGCGGAAGGTTTCGGTCAATCGTCCCGACGGCGACACCGCCACTGCCCGGCGGGCCAAGATCCGCCGGCTTGGCATGGCAGCCGCCGTCATCGCGGTGAGCGTGGCGGTCACCGCCGTGGCTGCGCCCCTGGTCACGGCAGCCGACGACAGGAAAGTCCTCCGCAACGTGGTGGTTCCGCCCTTCGACCCCAAGGACTACATCACCCCGCTTGCCAGTTTCCGGACGTTCGTCAAGGACAAAAAGGACGAAACCCTTTTTGTGGTCAAGGGCCTGCCACGCGACGGCCGCGTGCGGCTTGGTGCGCTGGACGCGTTCAACGGCACCAACTACAACATGGACCCCAACGGCTCCGGCAGCTTCAGCAAGGTGGGGGACACCAAGTCCATCAACACCCTGGCGGACACCTCGAGCGTTGTTCCCACGAACGACTACTCGATGAACATCACCATTGGGGAATACCAGGGGTACTTCGTCCCGGGCGGGCGAAAGACAACCGGCCTCAGTTTTGACGCCGGCGCCTCGGCGGCCGCCTCAGGCCTCTACTTCAACTCGGGCACGGACACCGCAGTGACCACCAAGGGACTGTCCAAGGGTGATTCCTACAGTGTCCAGGTGTCCGATCCCGTCAAGCTCGAGCACGGCCAGTTGACGCAGTACGATTTCGCCAGGGTCACCCTCCCCGATGCGCTGGAGGTCCCGCCCGTGGTGGGATCCCAGGCCAACGACCTCTCGGCAGACGCCCCCACCGCCATTGACCGCGTCCGGCAGATCGAAGCCCACTTCCAGAAAACCGGGGCCTTCAGCAACGGGCTGGTTACCGAGGGCCAGCTGCCCAGCGTGTCCGGGCATGGTTCGGCCCGGATCAGGAGCCTGCTGACCGCCAAGCAGATGCTCGGTGACGACGAACAGTACGCCGTCTCCATGTCGCTGATGCTGCGGCATCTTGGCATCCCCTCCCGGGTGGTGATGGGGTTCTACCCCGATCCCACCAGCCCGGAGAACGGTGCAGGAGAAGTGAAGATTACCGGCAAAGACGTCCACGCCTGGGTGGAGGTGGCGTTCGACCGGGTGGGCTGGGTCAGCTTTGATCCCACCCCGCCCAAGGACAACATCCCCATCCCGCCGGATCCGGAAAACAAGTCCAAGCCCAAGCCCCAGGTGCTTCAGCCGCCGCCGCCGCCGCAGGAACCTGCGGACCTGCCGCCGGACTCCTCCCCGGATGCCCTGGACGCCGACCAGAAGAAAAACAATCCATGGCTCTTTTGGGGAGCCCTGCTTGGCGCCCTGGGAATCGCCCTCATACCTTTGTCGATCCTTGCGCTGCCGCTGCTGCTCATCGCCCTGCTTAAGTCGCGGCGCCGGAAGGCCCGTTTCAGGGCGGGGCACCCGGCCGAGCGCGTCGGTGGAGGCTGGAATGAAGTGGTGAGCCTGGCCACTGACATGGGAGCCGGAATCAACACCCGCTCCACGCGCCGTGAAAGCGCAGTGGTGGTTGCTGAGGCCTTCCCCAAGTCTGCCTCCACCACCACCATGCTGGCCCACCGCGCCGATGCGTCGATCTTCGGGGCGGGGCAGCCGAGCGAGGAAGAAGTCCGGCAGTACTGGACCATCGTTGACGGTTCCCTGAAGGAAATGACCGGAACAGTAGGGTTCTGGCGCAGGCAGCAGGCCCGGTTCTCGCCGCGGTCACTGCTGGCCGATGGCCGCACTGCGCTTAAACTGCGTGGAACCCGGCCGGTCCTGGGCGGCCGAAAACTGCCCGCCGGGGCGGGTTCCGCGCTTGGTTCCGGGCCCGGTTCCGCCGCCAGGGGGCAGGCCGCCGGTAGGGTGGAGAACGGTCCGGAGGCCGCATCATCCAGCGGGTCCCGGGCTGTGGCCGAACAGGACACTGCAGGCTTTGTTGAACCTGATGAGTCCACAGTCCTCAGGAACCCTGGCAGAAAGAACAACACCGAGTCATGAMSTAQGLRPRTQRTQEVSAFADGQPAWHFVLDAGALTVLLGLGVLGFSLSFGGDPYYLVSGFGGIILGLAIAACNAHLRLGLLITAALTLAAYLLFGTALAVPGSAIAGFIPSLDSLRTLLLGVVFAWKDMLTVGVPVGTAGGVLIVPFLSSMVAAAVAGILIWRVKGPYWPLLPVLALFVTGIAFSTNAAFLTVERGIALTVVAIAWATFRRDALRRSDTRKVSVNRPDGDTATARRAKIRRLGMAAAVIAVSVAVTAVAAPLVTAADDRKVLRNVVVPPFDPKDYITPLASFRTFVKDKKDETLFVVKGLPRDGRVRLGALDAFNGTNYNMDPNGSGSFSKVGDTKSINTLADTSSVVPTNDYSMNITIGEYQGYFVPGGRKTTGLSFDAGASAAASGLYFNSGTDTAVTTKGLSKGDSYSVQVSDPVKLEHGQLTQYDFARVTLPDALEVPPVVGSQANDLSADAPTAIDRVRQIEAHFQKTGAFSNGLVTEGQLPSVSGHGSARIRSLLTAKQMLGDDEQYAVSMSLMLRHLGIPSRVVMGFYPDPTSPENGAGEVKITGKDVHAWVEVAFDRVGWVSFDPTPPKDNIPIPPDPENKSKPKPQVLQPPPPPQEPADLPPDSSPDALDADQKKNNPWLFWGALLGALGIALIPLSILALPLLLIALLKSRRRKARFRAGHPAERVGGGWNEVVSLATDMGAGINTRSTRRESAVVVAEAFPKSASTTTMLAHRADASIFGAGQPSEEEVRQYWTIVDGSLKEMTGTVGFWRRQQARFSPRSLLADGRTALKLRGTRPVLGGRKLPAGAGSALGSGPGSAARGQAAGRVENGPEAASSSGSRAVAEQDTAGFVEPDESTVLRNPGRKNNTESNANANANANA
D1-29_014541434hypothetical proteinATGGCAGTGAATCTTGAGCTCGTTCCGGCCAGCGCCGGAAAGCGGCTCGGTGCGGCCGTGCTCGACTGGCTTGGTCCGCTCGCCGTCCTTGTGGTGGCATTTGCCATCGGTTTCGCCGGCATCACCCGCACCCAAAGCGGTGGTTTCATCGTCTACGACACGGGCTCGGTGGTGTTGTTCGGTGGCATCGGCCTTGGACTGACCCTGGTCTACCTGTTTGTCCAGCTGGGCATGGAAGGCCGGTCCGGGACGACTATTGGAAACACGGTCATGGGCATCCGGAGCGCCGACAACGACGGTTATGGCCCGGGTGCAGGTGGCATTTTCCTCCGTGGTCTGATCACGGGCGCCGGGATCATCCTGGCCGCCCTCACGGCCATCGCTGTTGTCGTGTTTAAGTGGTTCGATGCCGCCCTCCTGATCCTTGGTCCGCTGCTGCTCATCGGCGCCGCGTGGGCGGTCCTGGTGGTGGTCTCCAACAGGTGGGACCGGAACGGCGGGCTCCGTGGCTGGCATGACAGGGCCGCCAAGACGCTTGTCTTCGACGTCAAGGCAGGACGCAACCCCATCACCTCAGGCGGCATCCAGGGCCCCTACAGTTTCGCGCCCCTGGACCTGCCGCCGGTCCAGCCAGTGGTGTCGCCCGTGGCAGGTGCCATCAAGTCACCCCAAGTCATTAACGCCCAGCTTCCCTTGAATCAGAACCAGAACCAGAACCAGAGCCAGAACCGGCAGCAAAACCCGACGCACAATCCCAACCCGTGGCAGTCGGCATCAGCGGAGCGGCCCGCCCCGTACCAGCCCATGGCCCAGCCTGCTGCACCGCAGCTGCCTGCATCAGTCCAACCGTCCGCGTCACCGCAGCCGTTCCAGCCGGCCCAGGGCGGCGTGGTTCCCCACTCCTCTCCACAGCAGCCCCCGTACCAGGCCACGCCGGCCCTGCCGCAATCTTTCCAGCCGCAGCCGGTCCAGCCGCAGTCCTTCCAGCCGCCCGCCGTCGTCGTTCCTTCGGCTCCAGCTGCCGGCCCCTCCGCCGGAGGGCATCCGGACGATGACCACGACCGCACGCAGATGCGCGGCGGAACCCTGGAGGCCGCCCCTGTGGCCGTCCTGCGGATAAAGCTCGACGACGGCCGCGACTTCCAGCTTGACCGCAACGTCCTGGTGGGACGGAACCCGGTGGGACAGACCGGCGAGCAGCAGGCCCAGCTTCTGGCCATCGACGACCCCAGCCGCTCGATTTCCAAAACGCACCTCCACGTCCTGACCGACGGCGCAGGGATCTGGGTGACTGACAGGAACTCCACAAACGGCAGCGCTGTCACCACCGCGGACGGCCTGCGCACACCACTTCAGCCGGGCGTGCCCGCGTTTGTCAGCCCGGGATCCATTGTTCATTTTGGTGACCGTTCCTTCCACCTAGGACAGGCATGAMAVNLELVPASAGKRLGAAVLDWLGPLAVLVVAFAIGFAGITRTQSGGFIVYDTGSVVLFGGIGLGLTLVYLFVQLGMEGRSGTTIGNTVMGIRSADNDGYGPGAGGIFLRGLITGAGIILAALTAIAVVVFKWFDAALLILGPLLLIGAAWAVLVVVSNRWDRNGGLRGWHDRAAKTLVFDVKAGRNPITSGGIQGPYSFAPLDLPPVQPVVSPVAGAIKSPQVINAQLPLNQNQNQNQSQNRQQNPTHNPNPWQSASAERPAPYQPMAQPAAPQLPASVQPSASPQPFQPAQGGVVPHSSPQQPPYQATPALPQSFQPQPVQPQSFQPPAVVVPSAPAAGPSAGGHPDDDHDRTQMRGGTLEAAPVAVLRIKLDDGRDFQLDRNVLVGRNPVGQTGEQQAQLLAIDDPSRSISKTHLHVLTDGAGIWVTDRNSTNGSAVTTADGLRTPLQPGVPAFVSPGSIVHFGDRSFHLGQANANANANANA
D1-29_01455918hypothetical proteinATGAATTCCCAGCCAGCCAGTATTTCCCCCGACGCCGACCAGGGGGCCGGGCTGAGCCTAAGCTATGGCTACGGGACGGACCGTGGCCTGCGGCGCGAACTGAATGAAGACTCCTTCATCGCGTCCGACCCCGTTTTCGCGGTCGCTGACGGAATGGGTGGCCATGAGGCCGGCGAAATTGCCAGCGGCATGTGCGTCCGTGCCTTGGCGGCGATGCCGCAGCTGGCCACCGGAGAGCGCAGCGTTACCGCGGCGGTCCTCCAGCAGTACCTGGTCCAGGCGGATGGCTCCATTCGCGAAGCCACCGGTGCACGCGCCGGAACCACCCTGACCGGGGCAGTTGTTGTTGAACAGATGGGCATGCCGTACTGGCTGGTCATGAACATCGGCGACTCCAGGACATACCGCCTGAGCCAGGGGCAGTTCGCCCAAATAAGCGTGGACCACTCCGAAGTGCAGGAACTTGTTGACGCGGGCGAAATCACGCCCGAGCAGGCAACAGTCCATCCCAGGCGCCACGTGGTCACGCGGGCGCTGGGAACGGGAACCGACACGGAAGCCGATTACTGGCTGTTGCCCGTCGAGGAGGGGGACCGCATGCTGATCTGTTCAGACGGACTCAATGCCGAACTGACCGATGAACACATGTTCCGCATCCTCAGCACCGTGGGGCATCCGCAGGACGCCGTCGACGCCCTCATCCAGGCCGCCCTCCGCAACGGCGGCAGGGACAACGTCACCGTCATAGTGGTCGACGCCAAGAACGTGATGAACGACGCCGGAATCGCCACCACCGCCCCCAGGCCGGTTGTCGATGCCGAAGACGAAATCACGTTGCCCCGTGCCCAGGTTGTTGACACGCAGGGGCCAGAGGGCGAGCAGAATGAAAGCGAGGAGCCAGCCGATGGCCGCAGGTAGMNSQPASISPDADQGAGLSLSYGYGTDRGLRRELNEDSFIASDPVFAVADGMGGHEAGEIASGMCVRALAAMPQLATGERSVTAAVLQQYLVQADGSIREATGARAGTTLTGAVVVEQMGMPYWLVMNIGDSRTYRLSQGQFAQISVDHSEVQELVDAGEITPEQATVHPRRHVVTRALGTGTDTEADYWLLPVEEGDRMLICSDGLNAELTDEHMFRILSTVGHPQDAVDALIQAALRNGGRDNVTVIVVDAKNVMNDAGIATTAPRPVVDAEDEITLPRAQVVDTQGPEGEQNESEEPADGRRPGPT0030420_523DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030420-ppa|prpA-K01090NANA
D1-29_014561896hypothetical proteinATGGCCGCAGGTAGTTACGCGCCGGGAACCTGGCTGGGAATTGTCCGGTCCCGGACGGCCGTCGTTCTGGGCCCCGATACGCAGCCGGCCCTGGTCCAGTCAATGTGGGAGCTGCTGGCGGACGGGCCGGAGGCGCACGAGGTGCTTCATGCCGTCACCAGCAGTTTTGGCGTTTCCCTGTCACAGATCCCTTCGTTCGGAATCGTTGACCTGCGGGACTCGCTCCATGTCTTCCTGCGCGGCGAGCTGGACCTGACCGTCCAGCTTCCAGGCGGCCCCATCGAAGTGAGCGGACGGGACGTGACCACGTGGAATGAGCGACGCTTTGGCGCCCCCGAGTGGTACCGGCTCACCCTTCCCGGCGTTGCTCCTTCAGCCCAGGAATTTCCCCTGGGGGAAGGCGTGGTGCTGCTGAAGTCATTGACGGTGGCCCTGGCCGGCGCTCCTGACGCAGCTGCCCCAAAGCCGGGCGTGGATGCACACACAGGTCTGGCTGGTACTGCGGCAACTGCGCTGGCTTCGCCTGTGCCAGCCTCGCCTGCACCACTCTTGCCTGGACCACTCTTGCCTGAGCCAGCGGCCCCTGAACTTGGCCTGTCTGAAAAGGGAACGGCTGCGGAATCCGATGCCGTTGATGAAGGACAACAGCCTGCTGCTGACGGTGGGGCCTTCGCTGAACCTACGTTGGCTGTGCCCGAAGAAAGTGACACGGTCCTGGAAACAGTCGCCCCGGAACATGGTGCGTCCGCTGAGACCGTCATGGGCGTCCTTGACGAGGATGGGTACTATTCCGCGGAGTTGGCGGATTCGGCCCATCCGGGAGCAGATCGGGTTTCCGCTGCGGAGGAACCGGCGTCCGAGCCAGACCCGGTCCCCGCGAACGAACTGACCGGCACGTACGACCACCTGTGGGAACGCACGGTGGTACGGAGCATTGAAGATGCCGCCGTCCGCGATGACCCTGAAGCGACGGAGGGCGTTGGCCCCGCTTCATCGGCGGGGAAGGTTGGCAGTGCCGCCCTGGAGCTGCCGGCGCAGATGCCGGCGGCACGGGGGCTCCAGGCCGCCGGAAAGCCTGCCCAGCCCGACGGCGCCGCTGCCCCGGAGGCCCGAAGCGCCTTGCCAGGAAATTCCACACCGCCCACCGGCGGCGGGCCGATCAGCAATGACCCGATGACGGGCGGGCTGATCGACTCGGTTCCCTGGCGCACCGGTGGGGCCAATACCAGGAAAGCCGAGGCCCCGCCAGCACTGGATATTCCTTCCGGCGGGCCAGGCCCGGAACTGGCCCCCGGCAGCCGGCAGGACTCCCCGGCGGAGGATCCGGCAGGCCTTCCCGCCGGATTCGACGGAGACCACGACGGCCACACGATCATGAAAAGCGATCTTGCCGGAATGGCTGCCCATCCTGCACCAACGGTTCTTCCGGATGCTGCCGGTCCGCTGGTGCTGGCCCGGGTCTGCAGCCGGGGCCACGCGAACCCACCCACGCATGCGCAGTGTGCCGCCTGCGGGCTGCCCCTGCCCTCCGACGGCGTCCAGGTGTCGCGGCCGCGGCTGGGCCGGATGCGGGTATCCACCGGTGAGGTGGTGGACCTTGACCATTCGTTGGTGATCGGCCGGCAGCCCTCAGTCTCCCGGGTCCAGGGTGGGGTAATGCCCCGGCTCGTCCAGGTGGCGAGCCCCGGCGGCGATATCTCCCGTTCGCACGTGGAAGTCCGGCTGGAAGGCTGGCACGTGATGCTTTGCGACCTCAAGGCCACCAACGGAACGGTCCTGGTCCGGGAAGGCCAGCAGCCGAGGAGGCTGGCCCAGAACGAGATGGCCATCGTGCTCGATGGCGATATTGCCGAACTGGGCGACAACATCTCATTGCGTTTTGAGGAGATTCTTTGAMAAGSYAPGTWLGIVRSRTAVVLGPDTQPALVQSMWELLADGPEAHEVLHAVTSSFGVSLSQIPSFGIVDLRDSLHVFLRGELDLTVQLPGGPIEVSGRDVTTWNERRFGAPEWYRLTLPGVAPSAQEFPLGEGVVLLKSLTVALAGAPDAAAPKPGVDAHTGLAGTAATALASPVPASPAPLLPGPLLPEPAAPELGLSEKGTAAESDAVDEGQQPAADGGAFAEPTLAVPEESDTVLETVAPEHGASAETVMGVLDEDGYYSAELADSAHPGADRVSAAEEPASEPDPVPANELTGTYDHLWERTVVRSIEDAAVRDDPEATEGVGPASSAGKVGSAALELPAQMPAARGLQAAGKPAQPDGAAAPEARSALPGNSTPPTGGGPISNDPMTGGLIDSVPWRTGGANTRKAEAPPALDIPSGGPGPELAPGSRQDSPAEDPAGLPAGFDGDHDGHTIMKSDLAGMAAHPAPTVLPDAAGPLVLARVCSRGHANPPTHAQCAACGLPLPSDGVQVSRPRLGRMRVSTGEVVDLDHSLVIGRQPSVSRVQGGVMPRLVQVASPGGDISRSHVEVRLEGWHVMLCDLKATNGTVLVREGQQPRRLAQNEMAIVLDGDIAELGDNISLRFEEILNANANANANA
D1-29_014571839pknD_3Serine/threonine-protein kinase PknDTTGAGTTCGAAACGGCCTGTTGCGCCGCCGCCCCACATCCCGGGGTTTAACTACATCAGTCTGCTGGGATCCGGCGGGTTCTCCGACGTCTACCTCTACGAGCAGGACCGGCCGCGGCGGAAAGTGGCTGTCAAGGTCCTGCTGTCCGACCTGAAAACGGACGGCGCGCGGCGGAGGTTCGAGTCTGAGGCCAACCTGATGGCCCAGCTCTCCTCCCACCCCTACATCGTGACCATCTATGAGGCTGAGGTAACCGAGGCAGGACATTCCTACCTGGCCATGGAATATTGCTCCAGGCCCAGCCTCGATGTCCGCTACCGGCGGCAGCGGTTCAGCGTGGACGAAGTCCTGGCCGTGGGCATCCAGGTGGCATCCGCCGTCGAAACCGCCCACCGGGCCGGCATCGCGCACCGGGACATCAAGCCGGCGAACATCCTGGTCACCGATTACAACCGCCCCGCGCTGACGGACTTCGGGATTTCCGGCACGCTGGGCAGCGATGCCGACGACGACGCCGGGATGTCAATCCCGTGGTCCCCACCGGAACAGTTCACCGACGGACCGATTGACGGCGTTTTGGTGGACGTCTGGGCCCTCGGGGCCACGCTGTACACCCTGCTGGCCGGCCGGTCTCCCTTCGTGATGCCCGGGGCCGATAATTCCCAGCGTGAACTGATTTCGCGCATCAGCACCATGGCACTGCCCAGGCTCGGCCGCGCCGACGTCCCGGAATCCCTGGAACTGGCACTCTCCACCGCCATGGCGAAGTCAGCGTCCTCCAGGTACTCCTCGGCCCACGCGTTCGCTCTTGCCCTGCAGCGGATCCAGGCTGAGCTGAACCTGTCAGTCACGCCCTTTGAAGTGCTCGAAGAACCCCACCAGGAGGACGGCCACCCGGACGACGGCTTCGAGGAAACCCGTGTCCGCAGCGTTGCCGCCATCGATCCGGAGCGGACCGGCAGTGCGCCCACCTTCCCGGCACGTACCCGTCCGCAGGGCCCCGGCCCATTCCCGGTGACTGGCCCGCCTGCTGTCAACCCGGCCGCTGCTGGTCCGTCTGCCCCCGTCCAAGCGGGGGACGCGGCCCGGCCCCAGGTCCCGGGCCACCTCTTTGCCGGCCAGCATCCCCAGGGAAACCCGGCGGGCGAGTGGTCGCACGCCACCATGCTCCGTGGCAGCGCCCCCGCCGCCTACGGCACACGCCAGGACGGCACACCGCAGTACGGCACCCCCCAGGACGCGACGGTCCACCGCCCTTCCCTCCTCTCGGCTGACGCAGGACAACATCCAGGACAACAGCACCCGGCAGGGCGGGCGCCGGGCCGGGGAGAACCTGAGCTTGACGCCACCGTGGGCCGGCCGGCCATGCCCCGGGGGGACGCCCCGGGTCCTGCCCCCGCCGACCACGGCAAACGCAACCTGTGGCTCGCGATCACCGGAGGGACCCTGCTGGCGGTCGCCGTCGTCGTGGGAATTGCCTTGTCAGCAACAGTCCCGCCGAAGCCGGTACCCACGGAGCAGGTCAGCAAGCCTCCGGTAGATCCCCTGGATAACGGGACTGTCCCGGACGTCGAGGCACTGGGCGGGTTCCTGGACAGTACAGGAACAGTAAGTTTCAGCTGGAACAATCCCCAGCCGAAACCCGGTGACGTCTTCAAGTGGCGGGTCTTCGCACCAGGGCAGACCGAGGGCGCCTACCAGTCCACTACCTCCTCCTCCGTCCAGGTGAAACCAAATCCCTCGGGAACCACCTGCATCGAGGTGATGTTGGTCCGCAGTGACGGGGCCTCCTCTCCCATGGAAGAAGAAGATTCGGTCCACTGCGTGCCCAACAGCTAGMSSKRPVAPPPHIPGFNYISLLGSGGFSDVYLYEQDRPRRKVAVKVLLSDLKTDGARRRFESEANLMAQLSSHPYIVTIYEAEVTEAGHSYLAMEYCSRPSLDVRYRRQRFSVDEVLAVGIQVASAVETAHRAGIAHRDIKPANILVTDYNRPALTDFGISGTLGSDADDDAGMSIPWSPPEQFTDGPIDGVLVDVWALGATLYTLLAGRSPFVMPGADNSQRELISRISTMALPRLGRADVPESLELALSTAMAKSASSRYSSAHAFALALQRIQAELNLSVTPFEVLEEPHQEDGHPDDGFEETRVRSVAAIDPERTGSAPTFPARTRPQGPGPFPVTGPPAVNPAAAGPSAPVQAGDAARPQVPGHLFAGQHPQGNPAGEWSHATMLRGSAPAAYGTRQDGTPQYGTPQDATVHRPSLLSADAGQHPGQQHPAGRAPGRGEPELDATVGRPAMPRGDAPGPAPADHGKRNLWLAITGGTLLAVAVVVGIALSATVPPKPVPTEQVSKPPVDPLDNGTVPDVEALGGFLDSTGTVSFSWNNPQPKPGDVFKWRVFAPGQTEGAYQSTTSSSVQVKPNPSGTTCIEVMLVRSDGASSPMEEEDSVHCVPNSNANANANANA
D1-29_01458705hypothetical proteinATGGGGGATCTAGCAATAGATTTCTGTGGTGAGTGGTACGAGCCGTCGGATGAGGATATTTTCAACATCGGGCGTGAAGGCGACCTTGAAGTGGACGACAACCCCTACCTGCATCGACAGTTCCTGCAGGTGGCCCGCTACGACGGAATGTGGTGGCTCAGCAACGTAGGCAGCATGCTCTCGGCCACGGTCGCCGACGCTTCCGGCGGCATGCAGGCCTGGCTGTCGCCCGGGGCCCGCATACCCCTCGTCTTCAGCCACACCAACATCATTTTTACCGCCGGACCCACCACCTATGAGTTCGCCGTTCACCTTAAGACGCCGTCGTTCCGCCAAGAGGCGCGGGACGAAGACAGCAATGGGGACACCACTATCGGCCCCGTGGTGTTCACCGACTCGCAGAAGGCGCTCATCGTGGCGCTCGCCGAACCGATGCTCCGCCGCGAGGGGACTGGATTCAGCGCCATCCCGTCCTCGGCTGCGGCGGCCAAGACGCTCGGCTGGGCCCTGACCCGGTTCAACCGCAAGCTGGACAACGTCTGCGACAAGCTGGACAGGGTTGGGGTGGTGGGACTCCGCGGCGGAGGCGGAAAACTGGCTACAAACCGGCGGGCCAGGCTTGTTGAACATGCTGTTACGTCCCATCTGGTGACCCCTGAAGACTTGTATCTGCTCGAAAAGATGAGGGGCGTGGACGAAGGATGAMGDLAIDFCGEWYEPSDEDIFNIGREGDLEVDDNPYLHRQFLQVARYDGMWWLSNVGSMLSATVADASGGMQAWLSPGARIPLVFSHTNIIFTAGPTTYEFAVHLKTPSFRQEARDEDSNGDTTIGPVVFTDSQKALIVALAEPMLRREGTGFSAIPSSAAAAKTLGWALTRFNRKLDNVCDKLDRVGVVGLRGGGGKLATNRRARLVEHAVTSHLVTPEDLYLLEKMRGVDEGNANANANANA
D1-29_014594446eccCCOG1674ESX secretion system protein EccCATGAGAATCCGGCTGACACTTCGCCGGGACCCGGCCGAGACCAAGGACCTCGCGGTCACCGTTGACGGCCTGGCCACCGTGGCGGACACCGCCACTCAGCTGTGGTCTGCAGACCCTGACCGCAAGGGGGTTCCGGCGCCGGAAAACCTTTCCCTGCGGATCGACGAGGCCTTTGTGGCCGGCGGGATGCGCGGCAACGTCCTGACCCGCACGGACAACCTGCTCGAATCAGGGCTGCGGCCGGGGTCGGTTGTTTCACTGACCCAGGTCAGCGCACAGTTTGACGCTCCGGGCGCCAACCGGGGGCCCGCCACGGCCACCCTGCGGATCCTGTCCGGCCCCGACGTCGGCCAGGAGTTTTCCCTCCCTTCAGGCACCAGTTACATTGGCCGGGACCGGGACGTTGACATCCGGCTGACCGATCCCATGACCTCAAAACGCCACGCCCGCATCACGGTAGGCGAAAGCGTCGAGATCGTGGACACCAATTCGGCCAACGGCCTCCTGATGGACGGCCTTCCGGTCACCAGGGCCACGCTTAATTCCTCAGACACGGTGACCCTTGGTGATACCACCGTCACGGTGGTTCCGCTGGGGCGGAACCAGGCGGCAGCGCCGACGTCGCCCCTTGTCGATTTCAACCGGTCACCGCGCGTGGTGCCCTGCTTTGAATCGCCCAAGCGGGTCCTGCCGGCGGGACCCAAACGGCCGGACAACCAGCCTTTCCCCTACATCATGCTGATGGCGCCGCTGCTGATGGGGGCCGTGATCTTCGCGACCACCCGGAACCTGATTTCTGTTGTGTTCATGCTGATGATGCCGCTGTTCGTGGTGGGCCACTACGTCGACCAGAAGATGCAGACCAAGCGCCGGCTCAAGGAACAGCTGAAGCACTTCCGGGAGTCCATGGCCGCGTTCCGCCAGGACATCACCGAACTGCAGCACGTTGAACGCTCCGTCCGGCTGCAGGAGGCGCCGTCCGTCAGCGACACCGTGGATTCCATCTACAAACTGGGGCCGCTGCTCTGGACCCACCGCCCTGAGCACAAGGGCTTCCTGGGCCTGAGGTTTGGGCTGGGCACGGCGCCGTCCCGGGTGGTCCTTGAGGAGTCGTCGAACAACGACACCGAAGTTGAATACATGCGCGAGATCCAGGACTGCCTCAAGCAGTTCAAGGACATCGAGGGCGTGCCGGTGGTCTCCCAGCTGCGGACGGCGGGATCCTTTGGCGTCGCGGGAGCACGCGGACTGGTTGATGACGTGGCCCGCGGCATGGTTTTGCAGCTGGCGGGCCTTCACTCGCCCGCCGAGGCCGTCATTACAGCCATCACGTCAGCCCAGTCCCGCGAGCGCTGGAACTGGCTGCAGTGGCTGCCGCACGTAGGTTCGGGCCACAGCCCGATCAGCGGCGACCATCTGGCTGCAGGCTCAGCGGGCGGTTCCTCCCTCCTGGCCCGGCTTGAGGACCTGGTGGACACCCGTGAGGCGTTGGCTCAGCGCTCCGGCGCTGATCTCCGCCCGGAGCTTGACCCTGCCAAGGTGGAGGTTCCCGTGCCGGTCCTGCCGGCTGTCCTGGTCATTGTGGAGGACGATGCCCCTGTTGACCGCGGACGGCTGACGCGGCTTGCCGAGCGCGGGCCTGATTCCGGGGTGCACGTCATGTGGGTGGCCACCGACATCCAGGCTCTCCCTGCAGCCTGCCGGGATTTTATGGTGGTGGACGGCGATCACGGCACCACCACCGGCCAGGTGCGGCTTGGCCAGCACACCTACCCCGTCAGCTGCGAAAGCCTTGACGCGGATCTCGCCGCCCAGCTGGCCAGGATGCTCTCCCCGGTAGTGGACGTGGGCAAGCCTATGAGTGACGACTCGGACCTGCCGCGCGCCGTTTCCTACGCCACCCTGATCGGCAAGGACTTCCTGGACAACCCGCAGGCCGTGGCGGAACGGTGGAAGGAGAACAACTCGGTCCACGCCACCGCCGTCCAGAACCGCAAGGACAACGGAACGCTCCGCGCGCTGGTGGGTTCAAAAGGCGTTGAACCGCTGTACCTTGACCTGAAGAACGAGGGGCCGCACGCCCTGGTGGGCGGAACCACCGGTGCTGGCAAGTCGGAGTTCCTGCAGTCCTGGGTCATGGGCATGGCCGCCGCCTACAGCCCTGACCGGGTGAGCTTTCTGTTTGTGGACTACAAGGGCGGGGCCGCTTTCGCCGATTGCCTGCACCTGCCGCACACCGTGGGCCTGGTCACCGATCTCTCCCAGCACCTGGTCCGCCGGGCCCTGACCTCCCTCCGGGCAGAACTCCACTACCGGGAGCACCTGCTGAACCGGAAAAAGGCGAAGGACCTGCTGGCACTTCAACGCGAAGCCGATCCTGATGCTCCGCCGTACCTGATCATCATCGTGGACGAATTCGCGGCGCTTGCCACCGAGGTGCCCGAGTTCGTGGACGGTGTTGTGGATGTGGCCGCCCGCGGGCGTTCACTGGGACTCCACCTGATCCTGGCCACCCAGCGGCCCGCCGGTGTGATCAAGGACAGCCTGCGGGCCAACACCAACCTCCGTGTGGCCCTGCGCATGGCGGACGAAGAGGACGCGACCGATATCCTCGGCGTCCCGGACGCCGCCTACTTTGACCCGTCCATCCCGGGCCGCGGCGCCGCAAAGACCGGTCCGGGCCGGATCCAGGGCTTCCAGACCGGTTATGCGGGTGGCTGGACCACGGAGAAGCCGCAGCGGCCCCAGATCGACATCGTTGAAATGGCCTTCGGCTCAGGTCCCAGCTGGGATCTGCCTGCCCCTGAACAGCCGGTGAAGGAAGACCCCGCCGGTCCGAACGATATCTCCCGGATGACCACCAACATCGTCCGGGCGGCCGAGCTCCTGGCCATCCGTCCGCCGCGCAAACCCTGGCTGGATGAGCTTGCCAAGACCTACGACTTCTCCAAGCTCCCCAATCCGCGGACGGACGAGCGGCTGCTCCTGGGAGTGGCGGACGATCCTTCCCGGCAGGACCAGCCCACGGTCTTCTACGAACCCGACAAAGACGGCAACATGGCCATCTACGGTACCGGCGGTTCCGGAAAGTCAGCGGCCCTGCGCGGTATTGCGATTGCCGCGGCCGTCACTCCGAGGGGAGGTCCCGTGCACCTCTACGGGATCGACTGCGGGTCCTCGGGACTGAAGATGCTCGAAGAGCTGCCGCACGTGGGGGAGATCATCAGCGGGGACGACGTGGAACGCGTCGGACGCCTGCTTCGCCTGCTGCGCGACATTGCTGATGAACGCTCCGCGCGCTTCGCCGAAGTCAGGGCTTCCACCATTGTTGAGTACCGGAGGCTGGCGAACCGTCCCGGTGAAAAGCGGATCTTTGTGCTGGTGGACGGAATGTCGGCGTTCCGCGAGACCTACGAGTACAGCAAACTTTCCGCACTGTGGGATATCTTCCTGCAACTGGCAACGGACGGACGTCCCCTGGGCATCCACCTGGTAGTGACCGGGGACCGCCCCAACTCGGTCCCGGCGTCGCTGCTGGCGTCCATTCAGCGCCGGCTGGTTCTGCGGCTCTCCTCCGAGGACGACTACCTGACCATGGCGGTTCCCAGGGACGTTCTCAGCAACACCTCGCCTCCGGGCCGGGGCCTGCTGGACGGCCTGGAGGTACAGCTCGCGGTCCTGGGAGGCAACTCCAACCTGGCCCTGCAGGCGAGGGAGGTCCATAAGCTCAGCCAGGCAATGCTCCGCCAGGGGCTCGACAAGGCGCCCAGGATCGAGCGGCTCCCGGAGCAGGTGGACCTCGATGTATTGCCCGCCGGCCGTCCGGACCTGCCCGTGATCGGTGTGGACAACGAAACACTGGAGCCGGCCGAGATCATGGCGAAGGGCCCGCTGCTGGTCTCCGGTCCGCCCGGCGCCGGAAGGACCGTGGCGCTGGTGACTCTCGCCTACGCGCTCAGGCGCTCCAACCCGGAGACGGAGCTCGTCTACATCGGCTCGAGGCGGTCCGCTGTGGCCTCGCTGCCCATCTGGAATCGGTCGATAGTAGGCGCGGATGACCTCGCCGAGGTGGCCGAAGACCTGATCGAGCATTCATCGGGAAATCCCGGCACGGTGGCCATCTTCATTGAGGGTCTGACAGAGTTCACCGACACGGTGGCGGAATCGCGGATAGGGCAACTGGTGACGGCGTCAATCAAAGCCGACCAGTGGGTCATCGGGGAGTCCGAAACGTCCACCTGGTCTTCAGCCTGGTCCCTTTCCCAGCCCTTCAAATCGGGGCGCCGCGGCCTGCTGATCAACCCCGGCGACATCGAAGGCGACAGCCTGCTCAACACCTCCCTGGGCAGGGTCAGCCCCGACTTCATCCCCGGCCGCGGGTACATTGTGGGCCGGGGCAAAGTGCGCAAACTGCAGATTGCGCTGCCGCCTGAAAACAGGGGCTGAMRIRLTLRRDPAETKDLAVTVDGLATVADTATQLWSADPDRKGVPAPENLSLRIDEAFVAGGMRGNVLTRTDNLLESGLRPGSVVSLTQVSAQFDAPGANRGPATATLRILSGPDVGQEFSLPSGTSYIGRDRDVDIRLTDPMTSKRHARITVGESVEIVDTNSANGLLMDGLPVTRATLNSSDTVTLGDTTVTVVPLGRNQAAAPTSPLVDFNRSPRVVPCFESPKRVLPAGPKRPDNQPFPYIMLMAPLLMGAVIFATTRNLISVVFMLMMPLFVVGHYVDQKMQTKRRLKEQLKHFRESMAAFRQDITELQHVERSVRLQEAPSVSDTVDSIYKLGPLLWTHRPEHKGFLGLRFGLGTAPSRVVLEESSNNDTEVEYMREIQDCLKQFKDIEGVPVVSQLRTAGSFGVAGARGLVDDVARGMVLQLAGLHSPAEAVITAITSAQSRERWNWLQWLPHVGSGHSPISGDHLAAGSAGGSSLLARLEDLVDTREALAQRSGADLRPELDPAKVEVPVPVLPAVLVIVEDDAPVDRGRLTRLAERGPDSGVHVMWVATDIQALPAACRDFMVVDGDHGTTTGQVRLGQHTYPVSCESLDADLAAQLARMLSPVVDVGKPMSDDSDLPRAVSYATLIGKDFLDNPQAVAERWKENNSVHATAVQNRKDNGTLRALVGSKGVEPLYLDLKNEGPHALVGGTTGAGKSEFLQSWVMGMAAAYSPDRVSFLFVDYKGGAAFADCLHLPHTVGLVTDLSQHLVRRALTSLRAELHYREHLLNRKKAKDLLALQREADPDAPPYLIIIVDEFAALATEVPEFVDGVVDVAARGRSLGLHLILATQRPAGVIKDSLRANTNLRVALRMADEEDATDILGVPDAAYFDPSIPGRGAAKTGPGRIQGFQTGYAGGWTTEKPQRPQIDIVEMAFGSGPSWDLPAPEQPVKEDPAGPNDISRMTTNIVRAAELLAIRPPRKPWLDELAKTYDFSKLPNPRTDERLLLGVADDPSRQDQPTVFYEPDKDGNMAIYGTGGSGKSAALRGIAIAAAVTPRGGPVHLYGIDCGSSGLKMLEELPHVGEIISGDDVERVGRLLRLLRDIADERSARFAEVRASTIVEYRRLANRPGEKRIFVLVDGMSAFRETYEYSKLSALWDIFLQLATDGRPLGIHLVVTGDRPNSVPASLLASIQRRLVLRLSSEDDYLTMAVPRDVLSNTSPPGRGLLDGLEVQLAVLGGNSNLALQAREVHKLSQAMLRQGLDKAPRIERLPEQVDLDVLPAGRPDLPVIGVDNETLEPAEIMAKGPLLVSGPPGAGRTVALVTLAYALRRSNPETELVYIGSRRSAVASLPIWNRSIVGADDLAEVAEDLIEHSSGNPGTVAIFIEGLTEFTDTVAESRIGQLVTASIKADQWVIGESETSTWSSAWSLSQPFKSGRRGLLINPGDIEGDSLLNTSLGRVSPDFIPGRGYIVGRGKVRKLQIALPPENRGPGPT0030468_412DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-29_01460588hypothetical proteinATGCCCCGATCCTCCACTGTGCTCCGCGCTGTTTCTGTGATGGGGGCAGCTGCGGTCCTGGCGTTCTCGACCGGACTCACCGCAGTTCCGCCTGCGGCAGCTGACACTCCTGAGCCTGCACCCACCTGCCGGCTCATCTGCCTCCCGGGCCCATCTGAACCGGAGCCCGAGGATCCGCCCGGTCCCCAACCGACTCCCACTTCCCCAAAACCCACCGCCACGGCAGCGCCGCCGGCCCCGGCCCCGGCACCGCCGGCTCAGCCGCAGCCCGCGGACCCGGCACCCGCCCCGGTTCCCACCCTCGCCCCCGAGCCGGAAGAGACTGCCGTTGAGGAGACACCCTCCGCTGAGGCCGCGGTCATATCCACCAGCGCCCCTCCGCCCAGCGGAGCACCCTCCACAGAACCAAACTGGAACAAGCCCATCACTGGGTCAGCGAAGTCCACGCAGGCTGCCGCTGTGTCGCCGGGGGACGGGCCTGGCTTCGGAGATCCGCGGCTGCTGACCATCATGGCTGGGGTGCTTCTGGTGGGTCTCGCCGGCCTGGCGTTTGCCTGGTGGAGCAGGAACCGGGTCTCGGCCCACTGAMPRSSTVLRAVSVMGAAAVLAFSTGLTAVPPAAADTPEPAPTCRLICLPGPSEPEPEDPPGPQPTPTSPKPTATAAPPAPAPAPPAQPQPADPAPAPVPTLAPEPEETAVEETPSAEAAVISTSAPPPSGAPSTEPNWNKPITGSAKSTQAAAVSPGDGPGFGDPRLLTIMAGVLLVGLAGLAFAWWSRNRVSAHNANANANANA
D1-29_01461582hypothetical proteinATGACCCCGTCCTGCGCTGCACTCAAAGCCGCCATCGCGGCGGCAGCAGCTGCAGTCCTCGCGCTGTCTGTTGGTCTTTCGGCCGTGGGGGCCGCCCATGCCGACTCACCTGAGCCCACGGCCACGGCCACCTGCGAGGAGTCCTGCGAACCCGCACCAGCGGAAGCTGCCCGGAAACCTGATCCGAAGCCGACGGCGGAAGAGCCCTCCGTCCCGGCGAAACCGCCCCAGGAACCCCCGGCGAAGCCCGCGCCCACTGCGCCACCCGCCGAGCCCACCCTGGAACCCGTGCCCACCCTGGAGCCCGAGCCAACTGAAACCATAGAGCCGGCACCGTCAACGGAACCACCCTCCAGCAGCGCTGCGGCAACCCCGTCTGCGGCAACCCCCAGCACTGAATCCAACTGGAACAAGCCGATCACCAAGTCCGCCAAACCTACCCAGGCCGCCGCCGTCTCCGGCACAGACGGCCCAGGTTTTGGAGATTCCGGCCTGCTGGCCATCCTGGCAGGGGTGCTGCTGGTGGGCATGGCCGGGGTGTCCTTCGCCTGGTGGGCCCGGCAGCGAGTCTCCAGCCACTGAMTPSCAALKAAIAAAAAAVLALSVGLSAVGAAHADSPEPTATATCEESCEPAPAEAARKPDPKPTAEEPSVPAKPPQEPPAKPAPTAPPAEPTLEPVPTLEPEPTETIEPAPSTEPPSSSAAATPSAATPSTESNWNKPITKSAKPTQAAAVSGTDGPGFGDSGLLAILAGVLLVGMAGVSFAWWARQRVSSHNANANANANA
D1-29_014622274ligACOG0272DNA ligase ATTGACGGAGCCGGAGGCGGTTCCGTCCGAGTCGGTCCGTGAGGAGTACGAGAACCTGGCCGACCTCGTCCGGAAGTACAGATTCGCGTACTACCAGGAGGACGAACCCCTGGTCTCGGACGCGGAGTTTGACGAACTTTTTCGGCGCCTCGAAGAGATCGAAGCGCTGCACCCTGAACTGGTGGCCAATGACTCGCCCACCCAGGAGGTTGGCGGCGAAGTCTCAGCCGCGTTTGCCGCCGTCGAACATTTGCAGCGCATGTACAGCCTGGAGGACGTTTTCTCCCTCGAGGAGCTGGAAGCATGGATCGATAAGGCAGCTGCCAGTATCGCCAAGGTGGGTAACGGCGGAATGCCGCCGGCCTGGCTGACGGAGCTGAAGATTGATGGCCTGGCAGTCAACCTGCTGTACCGGGACGGGAAACTCGTCCGGGCGGCCACCAGGGGTGACGGCCACACCGGCGAAGACATCACCCACAACGTGCTCACCATCAAGGAAATACCGCAGGAACTGAGCGGAACGGGCTACCCCGCCGAAATGGAAGTCCGCGGCGAGGTGTTTATCCCGTCAACGGCTTTTGCTGAATTCAATGAGGCCCTGATCGCGGCGGGCAAAGCACCGCTGGCCAACCCGCGCAACGCGGCAGCGGGCTCCCTGCGACAAAAGGACCCCGCCGAAACGGCCAAACGGCCGCTGAAGATGTTCGTCCACGGGATCGGGGCGCGGGAAGGACTTCAGGCCCAGAGCCAGTCCGGGACGTACCAGCTCATGAAGGAGTGGGGGCTGCCCGTCAGCCCTTATTTTGAAGTCCTGCGAAGCCTCCAGGAGATCCTCGAGTTCATCAAGCGGTACGGCGACAAACGGCACAGCCTGATGCATGAGATCGATGGCATCGTCATCAAAGTGGACGACTTCGCCACCCAGCGCGCACTGGGCTATACGTCACGGGTGCCCCGCTGGGCAGTCGCCTATAAGTATCCGCCGGAGGAAGTCCACACCAAACTGCTGGACATCGCCGTCAATGTTGGACGGACAGGGCGCGTCACGCCCTACGGAGTGATGCAGCCGGTCAAGGTTGCCGGCTCCACTGTCGAGATGGCCACGCTGCACAACCAGGACGTGGTGAAGGCCAAAGGCGTGAAAATCGGCGACATCGTGGTCCTGCGCAAGGCCGGCGATGTCATTCCGGAGATTGTCGGGCCTGTGCTTGCCCTGCGGGAACAGCAGCAGCCGCCGGTCCGGGACTTTGTCATGCCCACCGAATGCCCTTCCTGCGGAACACCGCTGGCGCCGGCGAAGGAAGGGGATGTGGACATCCGCTGCCCCAACGCCAGGTCCTGCCCCGCCCAGCTGCGTGAACGGGTCTTCCACCTGGCCGGCAGGGGAGGCTTCGATATCGAGGCGCTTGGCTGGGAGGCAGCCATTGCGCTGACCCAGCCTGCCGAACCGGCCGTGCCGCCCCTGACGTCGGAGGCGGCGCTGTTTGACCTCACCCCAGAGGACCTTGCGGATGTCCGGATCAGGCGTGAAAAGCGCGCCAAGGGGGTGCCCACGGGCGAGTTTGAGCTGGTGCCGTACTTCTACAGCAAGGGCACGGCGAAGTCCCCGTCCAAGCCCACAGCCAACACGGAAAGGCTGTTCAGGGAACTGGAAAAAGCCAAAACCCAGCCGCTGTGGCGTGTGCTGGTGGCGCTGTCCATCCGGCACGTCGGGCCGCGGGCCTCGCGGGCGCTGGCTAACGCTTTTGGCAGCATGGACGCAATCCGCCGGGCGTCGGAGGAGGAACTGGCCGGGGTGGACGGCGTGGGCCCCACCATCGCCGCGGCGCTCAAGGAATGGTTCGCCGAGGACTGGCACCTGGAGATCATCGACCGCTGGGCTGCCGCAGGAGTCCGGATGGAGGATGAGCGCGACGAATCCATGCCGCGGACCCTGGAGGGCCTGACCATCGTCGTCACGGGTTCGCTGCCGGACTTCAGCAGGGACGAGGCCAAGGAGGCCATCCTGATCCGGGGCGGCAAGGCGGCCGGCTCGGTGTCCAAGAACACCAGCTACGTGGTGGCTGGCGAGAACGCCGGAACCAAACTGGACAAAGCGGAGCAGCTGGGAGTGCCGGTGCTGGATGAGGACGGGTTCCGCGAACTCCTTGCCAACGGGCCCGCCAACCTGACGGCCAAGGCGCCCGCCACTACAGCCGCCAAGGCAGAAGACAACCAACCCGCCACTGAATCTGCCGGGGCGGACAGCGTGATTGAGCCGGAGGCTGCTGAATGAMTEPEAVPSESVREEYENLADLVRKYRFAYYQEDEPLVSDAEFDELFRRLEEIEALHPELVANDSPTQEVGGEVSAAFAAVEHLQRMYSLEDVFSLEELEAWIDKAAASIAKVGNGGMPPAWLTELKIDGLAVNLLYRDGKLVRAATRGDGHTGEDITHNVLTIKEIPQELSGTGYPAEMEVRGEVFIPSTAFAEFNEALIAAGKAPLANPRNAAAGSLRQKDPAETAKRPLKMFVHGIGAREGLQAQSQSGTYQLMKEWGLPVSPYFEVLRSLQEILEFIKRYGDKRHSLMHEIDGIVIKVDDFATQRALGYTSRVPRWAVAYKYPPEEVHTKLLDIAVNVGRTGRVTPYGVMQPVKVAGSTVEMATLHNQDVVKAKGVKIGDIVVLRKAGDVIPEIVGPVLALREQQQPPVRDFVMPTECPSCGTPLAPAKEGDVDIRCPNARSCPAQLRERVFHLAGRGGFDIEALGWEAAIALTQPAEPAVPPLTSEAALFDLTPEDLADVRIRREKRAKGVPTGEFELVPYFYSKGTAKSPSKPTANTERLFRELEKAKTQPLWRVLVALSIRHVGPRASRALANAFGSMDAIRRASEEELAGVDGVGPTIAAALKEWFAEDWHLEIIDRWAAAGVRMEDERDESMPRTLEGLTIVVTGSLPDFSRDEAKEAILIRGGKAAGSVSKNTSYVVAGENAGTKLDKAEQLGVPVLDEDGFRELLANGPANLTAKAPATTAAKAEDNQPATESAGADSVIEPEAAENANANANANA
D1-29_01463834suhB_2COG0483Inositol-1-monophosphataseATGAGCAGCGCGGATCTGTTGCCTCCGGATCACCCGGCAGTGCTCCTGGAGGTGGCAAAGCAAGCGGCCGCCGCAGGTGCTTCAGTGCTTGCCTCCCGGAACGGCGATGACCTTGGGACCAGCAACAAGGGAGCGGCGGGCGACTGGGTTACCGCTTTTGACGTCGCTGCGGAGGATGCCGTCCGGGGCGCCATCAACACGGCGCGGCCGCAGGACACCATCACGGGCGAGGAACACGGAACCACGCGCCCCGCCGAGCCCAGCGGCTACCGGTGGTCCATTGATCCGCTCGACGGCACCACCAACTTCATCCGAAACATCGTCTACTACGCCACCTCCGTGGCCGTGGCCGATGCCCGCGGTGTCTGGCTCGCCGGCGTCGTTAACGCCCCGGCACTGGGGCGCGTCTACTATGCCGCCCGCGGCCAGGGGGCCTGGCTGGAGGAGTCCGGCAGGCTCACCCGGCTGCAGGGGCCGGAGCCCGGCAGGAAGGGTCAAATCCTGGCTACCGGTTTCAGCTACGATCCCCGTGTCCGGGCCGAACAGGCCGCGCTCCTGGGCAGCCTGATGGAGGACTTCGCCGACGTCCGGCGCCTGGGCTCGGCAGCGCTGGACCTGTGCATGGTGGCCGACGGAACCCACGACGCCTTCGGTGAACGCGGACTGAACGAGCACGATTTCTCAGCCGGCGCCCTGATCGCCGAGGAGGCGGGCTGCTGGGTCAGGCGTCCCCGCCTGGTCAGCCCGCTCAACGGCGGGCCAACCGATGAGGACAGGCTGGCCGCCTGGACCTGTGCCGCAAGCCTGGAGCTGTCCGGCAAGTTCCCGCTCTGAMSSADLLPPDHPAVLLEVAKQAAAAGASVLASRNGDDLGTSNKGAAGDWVTAFDVAAEDAVRGAINTARPQDTITGEEHGTTRPAEPSGYRWSIDPLDGTTNFIRNIVYYATSVAVADARGVWLAGVVNAPALGRVYYAARGQGAWLEESGRLTRLQGPEPGRKGQILATGFSYDPRVRAEQAALLGSLMEDFADVRRLGSAALDLCMVADGTHDAFGERGLNEHDFSAGALIAEEAGCWVRRPRLVSPLNGGPTDEDRLAAWTCAASLELSGKFPLPGPT0018535_2807DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
D1-29_01464504hypothetical proteinGTGCATCCGCAGATAACCATCCGTCCCGCCACTGCGGAAGATTTCGACGACGTTGCCCGGATCACGCGGGACTCCTACCTCGCCGCGGGCTACTTCGACAGCCCTGACCACCCCTATATCCTGCAAATCCAGGACGTGGCCCGGCGTGCACAGAGCGCCACGATCTGGGTGGCCGAGCGCCGCGGGCAGGTCGTCGGCTCGGTGACGCTGGCCCGGGCCGGTGAACCGTATGCCGACATCGCCCTGGAGGACGAGCTGGAGTTCCGGATGCTCGTGGTGGACCCGCACGTGCAGCGCAGCGGAGCCGGGAAGGCCACTGTTGAGGCCATCATCCACCACGCCAAATCGCTCGCCGGCATCAGGGCAGTTGCCCTCACTACTGGAAAAACCTGGGAGAGCGCCCACGGTCTCTACCGGAAGTTCGGGTTCCAGCGTGTCCCGGAGCGGGACTGGTTTGTTCCCGGCACCGACATAAAGCTGCTGGTTTACCGGCTCGAGGTCTAGMHPQITIRPATAEDFDDVARITRDSYLAAGYFDSPDHPYILQIQDVARRAQSATIWVAERRGQVVGSVTLARAGEPYADIALEDELEFRMLVVDPHVQRSGAGKATVEAIIHHAKSLAGIRAVALTTGKTWESAHGLYRKFGFQRVPERDWFVPGTDIKLLVYRLEVPGPT0018535_62DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
D1-29_01465384yabJCOG02512-iminobutanoate/2-iminopropanoate deaminaseATGCGCAAAACCTTCGGCACTGGCTCCGTCTGGGAACAGACCCTCGGCTACTCACGGGCAGTCCAGGTGGACAATACGCTGTACATTTCAGCCACGGCCGCCAGCGGTGAAGACGGCATCGTGGGCAACGACTTTTACACCCAGACCCAGTACATTCTGCAGAAGCTCGGGGCCGTGCTCGAAGATGCGGGTTTCAGCTTCGCTGACGTTGTCCAGTCCAAGCTGTACGTGACCGACATCAGCAAGTGGGAAGAGGCCGGGCGCGCCCACGGCGAAGTCTTCGGCGAGATCCGACCCACCCTTTCCCTGGTCCACGTGCTGCCGTTCCTGGACCCGAAGATGCTCGTGGAAATCGAGCTCGTAGCCCAGAAGAGCGCCAGCTAGMRKTFGTGSVWEQTLGYSRAVQVDNTLYISATAASGEDGIVGNDFYTQTQYILQKLGAVLEDAGFSFADVVQSKLYVTDISKWEEAGRAHGEVFGEIRPTLSLVHVLPFLDPKMLVEIELVAQKSASPGPT0020030_1178DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-29_01466663citT_2COG4565Transcriptional regulatory protein CitTATGCCTGAGGATTTCAGGGTGCTGATTGTGGACGACGACTTCCATGTGGCGAAGCTGCACGCGACCTATGTCGACTCGGTGGCGGGGTTCCTGGCCCTGTCGCCGGTAGGAACGGCGTCGCTCGCTTTGCAGGCCATCCACAGCCTCCGGCCGGACCTGGTGCTCCTGGACGTCTATTTGCCGGACGCGTCCGGGCTGGACCTGTTGCAGCAGCTTGATGTGGACACCATGATCCTGAGTGCGGCGTCGGACGCGGCCTCGCTCCGCAAGGCATTTCGCCGGGGCGCCCTGGGCTACCTGCTTAAGCCGTTCACGGCGGATTCGCTCTCCCAGCAGCTGCGCTCCTACGCCCGGTACCGCCGCATCCTGGGCCAGCCCGGGGTGCTGGACCAGGAATCGGTGGAGCGCGCCAAACGGGCATTGATTCCCGGCGAGGTGGCAGCATCGGCGAAACCGCGGTCAGCCACCGAGGCTGCCGTGCTCGAATCGCTGGTTCCCGGCGAGCAGTACTCGGCCGTGGATGTGGCCACGCGGGTGGGCGTTTCCCGGGCCACAGCGCAGCGGTACCTGTCGTCGCTGGCTGATGATGGCGCCGTCGACATCCAGCTGCGCTACGGAACCACAGGCAGGCCGGAGCACCGCTACGGCCTGCCTTCCTCTTAAMPEDFRVLIVDDDFHVAKLHATYVDSVAGFLALSPVGTASLALQAIHSLRPDLVLLDVYLPDASGLDLLQQLDVDTMILSAASDAASLRKAFRRGALGYLLKPFTADSLSQQLRSYARYRRILGQPGVLDQESVERAKRALIPGEVAASAKPRSATEAAVLESLVPGEQYSAVDVATRVGVSRATAQRYLSSLADDGAVDIQLRYGTTGRPEHRYGLPSSNANANANANA
D1-29_014671779dcuS_2COG3290Sensor histidine kinase DcuSATGCAGCGTTCTGTGCCACGGCCGCCGCTGCGGTTCTCCACCCAGACCTTGCTCCTCCAACTGGGGGTTGTGCTGCTGGTGGCCCTCCTCAGCGCAGCCGTCCACGCCTGGCTGACGTACGACAGGGTGGGCCGCGAAGCCGAAAACCAGGCCCTGACGCTGGCACGCACCGTGGCGTCAGATCCTTCGGTGCGGGCGGATGTCCAGGCCATCAGCGAGCAGACAGGCACTCCCCCGCCCGCCGAGCTCAGGAACGGGCCGCTGATGGTGGAGGCGGAAAACGCCCGAATCCGCACCGGTGCCCTCTTTGTGGTCATCACCGACGAGACAGGCCTGCGGCTCGCCCACCCGGACCCTGACCGCCTGGGCGAAAAGGTCAGCACCGACCCCTCCGAAGCGCTCTCCGGCGAGGAAATCACCACCCGGAACACCGGGACCCTGGGTCCCTCGGCCGGCGCCAAAGTGCCTGTATATGCCCCGGGCACCGGCACCGTGGTGGGTGAAGTGAGCGTGGGCTACTCCATGGAGACAGTGGGCCAGAGCGTTGCCAGGGACATCGGGCCGGTAGCACTGACGGCGGCCGGCGCCCTGTTGGCGGGCGTGCTGGCATCGTTCCTGCTGCGGCGCCGGCTGCAGCGGCTCACGCTGGGCCTGGAGCCGGAAGAAATCAGCACCCTTGTCCACGATCAGGTGGCGGTGCTGCAGGGAGTGGACGACGGCGTCATCGGCATTTCGGCCGACGGCCGGATCAGCGTCTTCAATGCCGCAGCCCAACGGCTGCTTGGCCTGCCTGACCTTGCCGGGACGCTCTGGGAGGATGCACCGGTTCCGGCGCAGCTGAAGTCCCTGACCCGTCCGGCACCGGGCGGCGCCCAGGCCGAAACGGCCGAGGCGCTGGAACTTGTGGCGGCAGGACGGGTACTGGTGGCAAGCGCGCGCAAGGCCCTGCACCGGCGCGAAGACCTGGGCTGGGTGGTGATGCTTCGCGACCGCACCGAACTGCAGCACCTGACCCGGCAGCTCGACGCCGTGGGCACCATGTCTACTGCCCTGCGCGCCCAGCGCCACGAGTTCGCGAACCAGCTGCACACCCTCGCCGGTTTTATGGGCATGGGCCAGCACCAGCAAGCGCGGGAATACCTGGCCCGGCTTGCCGCTACGGGGCCGCTGAAGTTCCCTGTCGGCCAGGCCGAGCTGCTGCAGGACCCCTATCTGCAGGCCTTCGTCGGGGCGAAGGGCGTGGAAGCCGATGAACGCGGCGTCACCCTGCGGATCGGGCCGGAAACCCTGGTCCGCGGCCAGGTCATTGAGCCCCAGGATGTAACCACGGTGCTGGGCAACCTGATCGACAACGCGGTCAATGCAGCAGTGGCCGGCTCTTCAAAGGACCGCTGGGTTGAACTGGAGGTCCTGGATGAACCGGACGACGCCGGCGGGACCCTGCACATCGTCGTCGCGGATTCCGGCGACGGGCTGGGGGCCGGGGTAGATCCGGACATGGTGTTTGCGGAGGGCTTCACCACGGCTGCCGGCAGCGCAGGTCCCGTCCTGTCCAGCGGCGGCCACGGCCTGGGACTGGCCCTTGCGCGGCAGCTGGCCCGCCGCCGCGGCGGCGACGTCAAGGTGCTGGAACCCGGTTCCGACGGCGGACCGGGCGCAGTGTTTATGGCCACGCTGCCGCGAACAACCGCCGGCGCAGCCAAAGACTTCGCAGCCAAAGACCTCGCAGCCAAAGACCTCGCGGCCACGGATTTGGCAGGAAAGGACAACGATGCCTGAMQRSVPRPPLRFSTQTLLLQLGVVLLVALLSAAVHAWLTYDRVGREAENQALTLARTVASDPSVRADVQAISEQTGTPPPAELRNGPLMVEAENARIRTGALFVVITDETGLRLAHPDPDRLGEKVSTDPSEALSGEEITTRNTGTLGPSAGAKVPVYAPGTGTVVGEVSVGYSMETVGQSVARDIGPVALTAAGALLAGVLASFLLRRRLQRLTLGLEPEEISTLVHDQVAVLQGVDDGVIGISADGRISVFNAAAQRLLGLPDLAGTLWEDAPVPAQLKSLTRPAPGGAQAETAEALELVAAGRVLVASARKALHRREDLGWVVMLRDRTELQHLTRQLDAVGTMSTALRAQRHEFANQLHTLAGFMGMGQHQQAREYLARLAATGPLKFPVGQAELLQDPYLQAFVGAKGVEADERGVTLRIGPETLVRGQVIEPQDVTTVLGNLIDNAVNAAVAGSSKDRWVELEVLDEPDDAGGTLHIVVADSGDGLGAGVDPDMVFAEGFTTAAGSAGPVLSSGGHGLGLALARQLARRRGGDVKVLEPGSDGGPGAVFMATLPRTTAGAAKDFAAKDLAAKDLAATDLAGKDNDANANANANANA
D1-29_014681473citMCOG2851Mg(2+)/citrate complex secondary transporterGTGCTGGTATTACTTGGATTCGCCATGATCGCGGTATTCATGGTGCTGATCATGACGAAGAAGTTGACGCCAGTGCTGGCGCTGATCATCGTACCCACTGTTTTTGGACTGTTTGCGGGCGCCGGCCTGGGCATCGGGGACATGGTCCTGGACTCGATGAAGTCCATGACCTCCACCGCGGCCCTGCTGATGTTCGCCATCATCTATTTCGGCCTGATGATCGACGTCGGGCTGTTTGACCCGCTGGTGAAGTTCATCCTCCGCAAGCTGGGCAATGACCCCGCCAAGGTGGTGCTGGGCACTGCCATCCTGGCAGCTGCAGTATCCCTCGACGGGGACGGATCCACCACCTTCATCCTTACCACCGCAGCCATGCTGCCCATCTACCTCCGGCTGAAGATGAGCCCCGTGGTCCTCACCTGCGTGGCCGGCCTGGCTAACGGCACCATGAACATAGTGCCGTGGGGTGGCCCCACCGCCCGTGCCGCCACCGCCCTGAAGATCGACGTCAACGACGTTTTCGTCCCGATGATCCCGTCCCTCCTGGCCGGCGTCGCGGTGGTCCTCGCCTTCGCCTGGCTGCTCGGCCTGCAGGAGCGCAACCGCCTCCGCGCCACCCAGCCGGAGATCTGGGGCGTCCCCGAGACTTCCGAAGCGTTCGACGGCGGCACGCCGGCAGCTGGGAAAAGCACGCCGGGCCAGGGTCCACGGACTCCCGGAACCGGCACTCCCGCCGTCGCCAGCGACTTCCCGGGAGGTTCCTCGGTTGCCGTGCTGGAACGCACCGAAGACCTGGTGGATGACAGTGACACTGCCATGGCTGACACTGCCCTGGACCCCAACCGCAAGACTCTGCGTCCCAAGCTGCAGTGGTTCAACCTGGGCCTTACAATCGCCGTCATGGGCATGCTGATCGCCGACCTCGTGCCCCTGCCCTACGTCTTCATGGTGGGTTCGGCGATTGCCCTGCTGGTGAACTTCCCGCACGTGAAGGACCAGGCTGCGCAGATTGTGGCCCACGCACCCTCCGTTGTCGCGGTCGTCAGTATGGTCATGGCCGCCGCAGTCCTGACCGGCGTCCTCACCGGCACCGGCATGGTGGAAGCCATGTCCGCCTGGCTGGTACAGATCATTCCCACCTCTATGGGCCCGCTCCTGGCTGTCATCACCGGTGTCCTGAGCATCCCCATGACGTTCTTCATGAGCAACGACGCCTTTTACTTCGGAGTGCTTCCCGTCCTAAGCGAGACGGCCGGCCACTACGGCATCAGTGCCGCCGAAATGGCCCGCGCCTCCATCACCGGCCAGCCGTTCCACATGCAGAGCCCGTTGGTGCCGGCCATCCTGCTGCTGGTTTCACTCGCCAAAGTGGACCTGGGCGACCACCACAAGAAGGTCCTGTGGCGCAGCGCCGTGGTGTCCCTGGTCATGCTCGGAGTGGGCATGCTGACCGGAGCCATCGGTATCGGCTAGMLVLLGFAMIAVFMVLIMTKKLTPVLALIIVPTVFGLFAGAGLGIGDMVLDSMKSMTSTAALLMFAIIYFGLMIDVGLFDPLVKFILRKLGNDPAKVVLGTAILAAAVSLDGDGSTTFILTTAAMLPIYLRLKMSPVVLTCVAGLANGTMNIVPWGGPTARAATALKIDVNDVFVPMIPSLLAGVAVVLAFAWLLGLQERNRLRATQPEIWGVPETSEAFDGGTPAAGKSTPGQGPRTPGTGTPAVASDFPGGSSVAVLERTEDLVDDSDTAMADTALDPNRKTLRPKLQWFNLGLTIAVMGMLIADLVPLPYVFMVGSAIALLVNFPHVKDQAAQIVAHAPSVVAVVSMVMAAAVLTGVLTGTGMVEAMSAWLVQIIPTSMGPLLAVITGVLSIPMTFFMSNDAFYFGVLPVLSETAGHYGISAAEMARASITGQPFHMQSPLVPAILLLVSLAKVDLGDHHKKVLWRSAVVSLVMLGVGMLTGAIGIGPGPT0001500_93DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300NANA
D1-29_01469297gatCCOG0721Glutamyl-tRNA(Gln) amidotransferase subunit CATGGCTGCGATCAACCGTGACGACGTCGCGCACCTCGCGCGGCTCGCTCACATCGAGATGAATGCTGACGAGCTGGACAGGATGGCCGGCGAGCTCGCCGTCATCGTTGATGCCATCAAATCCGTCAGTGAAGCCGCCGGGGACGATGTCCCGGCGACGTCCCACCCGATTCCGCTGAACAACGTGTTCCGCGACGACGTGGTGGGCCACACCTTCACTGCGGAACAGGCAGTCTCGGGGGCGCCGGATTCCGATGAGAACCGTTTCAAGGTCCCCGCAATCCTGGATGAGGACTAAMAAINRDDVAHLARLAHIEMNADELDRMAGELAVIVDAIKSVSEAAGDDVPATSHPIPLNNVFRDDVVGHTFTAEQAVSGAPDSDENRFKVPAILDEDPGPT0023460_1638DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023460-gtaC-K02435NANA
D1-29_014701620gatACOG0154Glutamyl-tRNA(Gln) amidotransferase subunit AATGACTGAACAAAACTCCGCCGGCTCCAGCAGTTCAAACGGCGCGGACAGCCTGATCCGTTCCTCCGCCGCGCAGCTCGCCGCCAGGTTGGCCGCCCGCGAGGTCTCCGCCGTCGAGGTTACCCAGGCGCACCTGGACCGGATCGCCGCCGTGGACGGCGGCGAACGCGGCGTGCACGCCTTCCTCCACGTCAACACCGAGGAAGCACTCTCCGTGGCAGCCGAGGTTGACGTCATCCGTTCCGCCGGCGGCGCTGCTGCCGACGAGCTCCACGAGCTCGCGGGCGTCCCCATCGCGGTCAAGGACCTCATTGTGACCGTCGGCCAGCCCACCACGGCGGGTTCCAGGATCCTGGAGGGCTGGCACAGCCCCTACGACGCCACAGTGGTCAAGCGCCTGCGCGCAGCCAGGATGCCCATCCTGGGCAAGACCAACCTGGATGAATTCGCCATGGGCTCCTCCACCGAGCACTCCGCCTTTGGACCTACCCGGAACCCCTGGGACCTGGACCGGATCCCGGGCGGTTCCGGCGGCGGTTCCGCTGCTGCAGTGGCCGCGTTCGAGGCACCGCTGGCCCTGGGCACGGACACCGGCGGCTCCATCCGCCAGCCGGGTGCAGTCACCGGCACCGTGGGCGTCAAACCCACGTACGGCGGGGTTTCCCGCTACGGCGCCATCGCCATGGCTTCCTCGCTGGACCAGATCGGGCCGGTTTCGCGCACGGTCCTGGACTCTGCGCTGCTGCACCAGGTCATCGGCGGGCACGATCCGTTCGACTCCACCTCGCTGCCGGACCCCCTTGCCGACCTTGTGGCTGCCGCCAGGATCGGCAACGTCGAAGGCCTGCGGATTGGCATCATCAAGGAACTCCACGGCGAGGGCTACCAGGCCGGCGTCGAAAACCGCTTCCACGACTCGCTGGAGCTCCTCAAGGAGGCCGGAGCGCAGATCGTTGAGGTCTCCTGCCCCAACTTCAAGTACGCCCTGGGGGCCTACTACCTGATCATGCCGTCCGAGGCCTCCTCCAACCTGGCCAAGTTCGACGGCGTCCGGTACGGCCTCCGCGTCCTGCCCGAGGACGCACCCATGACCATCGAACGCGTGATGGGGGCCACCCGCGCCGCGGGCTTCGGCGACGAGGTCAAGCGCCGCATCATCCTGGGCACCTACGCCCTGAGCGCCGGCTACTACGACGCCTATTACGGCTCCGCCCAGAAGGTGCGCACTCTGGTGCAGCGCGACTTTGACGCAGCCTTCACCGTGGCCGACGTCCTGATCTCGCCCACGGCGCCCACCACGGCATTCAGGCTCGGGGAGAAGCTGGATGACCCGCTGGCCATGTACCTCAACGACGTCGCCACCATCCCGGCCAACCTCGCCGGTGTTCCGGGACTGTCCCTGCCCGGCGGTCTGGCCGACGAGGACGGACTGCCCGTGGGCATCCAGCTGCTGGCCCCGGCCCGGGAGGACGCCCGCCTGTACCGCGTCGGCGCGGTCCTGGAGTCACTGCTCGAAGCGAAGTGGGGCGGCCCGCTCCTGGACCGTGCACCCTCACTCACGGCCAACTCACTTACCGTTTCCGCGGCTGGCGCCGTTCCGAGCCATGGAGGTTCACTCTGAMTEQNSAGSSSSNGADSLIRSSAAQLAARLAAREVSAVEVTQAHLDRIAAVDGGERGVHAFLHVNTEEALSVAAEVDVIRSAGGAAADELHELAGVPIAVKDLIVTVGQPTTAGSRILEGWHSPYDATVVKRLRAARMPILGKTNLDEFAMGSSTEHSAFGPTRNPWDLDRIPGGSGGGSAAAVAAFEAPLALGTDTGGSIRQPGAVTGTVGVKPTYGGVSRYGAIAMASSLDQIGPVSRTVLDSALLHQVIGGHDPFDSTSLPDPLADLVAAARIGNVEGLRIGIIKELHGEGYQAGVENRFHDSLELLKEAGAQIVEVSCPNFKYALGAYYLIMPSEASSNLAKFDGVRYGLRVLPEDAPMTIERVMGATRAAGFGDEVKRRIILGTYALSAGYYDAYYGSAQKVRTLVQRDFDAAFTVADVLISPTAPTTAFRLGEKLDDPLAMYLNDVATIPANLAGVPGLSLPGGLADEDGLPVGIQLLAPAREDARLYRVGAVLESLLEAKWGGPLLDRAPSLTANSLTVSAAGAVPSHGGSLPGPT0001010_1DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATIONXENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457NANA
D1-29_014711506gatBCOG0064Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit BATGACTGACGCAATCCTGACCTTCGAAGAGGCCATGGAGAAGTACGATCCCGTGCTGGGGTTCGAGGTCCACGTGGAGCTCAACACCAAGAGCAAAATGTTCTCCTCGGCGCCCAACGTCTTTGGCGATGAGCCCAACACCAATGTCAACGAAGTGGACCTTGGCATGCCCGGCGTGCTGCCGGTGCTGAACAGGACCGCGGTGGAGTCCTCCATCAAGATCGGCCTGGCGCTCAACTGCAAGATCGCCGAGAACTGCCGGTTTGCGCGGAAGAACTACTTCTATCCGGACACGCCCAAGAACTTCCAGACCTCCCAGTACGACGAACCCATCGCCTACGACGGGTACCTGGACATCGAACTGTCGGACGGCACCGTTTTCCGGGTGGAGATCGAGCGTGCCCACATGGAGGAGGACGCCGGCAAGCTGACCCACATGGGCGGGGCCACCGGCCGCATCCAGGGCGCCGACTTCTCCCTGGTGGACTACAACCGCGCCGGCGTTCCGCTGGTGGAAATCGTGACCAAGCCGATCGAGGGAGCCGGTTCCAGGGCACCGGAACTGGCGAAGGCCTACGTGGCCGCCGTCCGCGAGATCGTCAAGAACCTCGGAGTTTCCGACGCCCGCATGGAGCGCGGAAATGTCCGTTGCGACGCCAACGTGTCGCTGCGGCCCCACGGCCGTGAACGCTTCGGCATCCGTTCTGAAACCAAGAACGTCAACTCGCTGCGCGCCGTCGAACACGCCGTCCGCTACGAAATCCAGCGGCACGCCGCCGTTCTTGATTCCGGCATCCCCGTGGTCCAGGAGACCCGGCACTGGCACGAGGACACCCGCACCACCACCTCGGGACGGCCGAAGTCCGACGCCGATGACTATCGCTACTTCCCGGAACCTGACCTGGTGCCGGTGGTTGCATCGCGTGAATGGGTCGAGGAACTTCGGGCCACCCTGCCCGAGCCGCCCGCCGCCCGCCGGAAACGGCTTCAGGCCGACTGGGGGTACTCGGACCTCGAGTTCCGCGACGTGGTCAACGCCGGCGTCCTGGTCGAGATCGAGGAAACCATTGCCGCCGGAGCCTCTGCCTCCGTGGCGCGGAAGTGGTGGATGGGCGAGATTGTGGGCCGCGCCAAGAACGCCGACGTCGATCCCGGCCAGCTGGGCGTCCAGCCGGCCACCATCGTGGAGCTGGCCAAGATGGTGGAAAAGGGCAAGATCAACAACAAGATGGCCACCGAGGTGCTGGACGGCGTCCTCGCCGGCGAAGGGACCCCGGCGGAAATCGTGGAGAAGCGCGGCCTTGCCGTGGTTTCGGACGATGGACCATTGCTGGAGGCCATCGATGCCGCCCTGGCCGCGCAGCCTGACATTGCGGACAAGATCCGCAACGGAAAGCTCCAGGCCGTCGGGGCTATCGTGGGCGGCGTGATGAAGGCAACCCGCGGGCAGGCCGACGCCGGACGGGTCAAGGAACTGATACTCGAAAAGCTCGGCGTCAACGCCTGAMTDAILTFEEAMEKYDPVLGFEVHVELNTKSKMFSSAPNVFGDEPNTNVNEVDLGMPGVLPVLNRTAVESSIKIGLALNCKIAENCRFARKNYFYPDTPKNFQTSQYDEPIAYDGYLDIELSDGTVFRVEIERAHMEEDAGKLTHMGGATGRIQGADFSLVDYNRAGVPLVEIVTKPIEGAGSRAPELAKAYVAAVREIVKNLGVSDARMERGNVRCDANVSLRPHGRERFGIRSETKNVNSLRAVEHAVRYEIQRHAAVLDSGIPVVQETRHWHEDTRTTTSGRPKSDADDYRYFPEPDLVPVVASREWVEELRATLPEPPAARRKRLQADWGYSDLEFRDVVNAGVLVEIEETIAAGASASVARKWWMGEIVGRAKNADVDPGQLGVQPATIVELAKMVEKGKINNKMATEVLDGVLAGEGTPAEIVEKRGLAVVSDDGPLLEAIDAALAAQPDIADKIRNGKLQAVGAIVGGVMKATRGQADAGRVKELILEKLGVNANANANANANA
D1-29_01472636hypothetical proteinATGTCTTTCCGTAAACCCCTGAGAATCCGCAAGGCGCTGCTGGCCGGGGTGGTGGCTTTGGCTCTGACCGGGACGGGAGCAGCACTCACCTGGGCAGCCTCGGACGAACCGTCCGGCACGCCGTCGGAATCCGCTCAGGGACAAGGCAAGAACAAGGCAGACAAGGCAGACAAGCCGGCCAAGGCCGGGAAAGGCCCCAAGGCTGACAAGGCCAACCGTCCGCAGGAACTGCACAGCGAGAGCGTGGTCAAGAAGGGCGACGGCACGTTCGAGGCGCAGGTGAGCCAGCGGGGCACGGTTGAGGCCGTGACTGAATCCTCGGTCACGGTCAAAAGTGAGGACGGCTTCACCCAAAACTACGCCGTGAACGCGGAGACCCGGATCATCAAGATCCCGGCTCCGGCAGCGGACGGCAGCCCGGCCAAGGGCCGGGATGGCAAGCGGCTGAAGCCCTCAGACGTCCCCATCTCCGAAATTGCTGTTGGTGAAGCCGTCAGGGTTTCCGGAGTCAGGACAGGCAATGACGTTACTGCCCACCAAGTGGTGGAGGGCGCAGGAACGGGACCCGGCAACGGATTGGGGCTGGGCAGGGGACAGGGCAGAGGCCTGGACAAGGGTGCATCCCCAAGTAAGTAGMSFRKPLRIRKALLAGVVALALTGTGAALTWAASDEPSGTPSESAQGQGKNKADKADKPAKAGKGPKADKANRPQELHSESVVKKGDGTFEAQVSQRGTVEAVTESSVTVKSEDGFTQNYAVNAETRIIKIPAPAADGSPAKGRDGKRLKPSDVPISEIAVGEAVRVSGVRTGNDVTAHQVVEGAGTGPGNGLGLGRGQGRGLDKGASPSKNANANANANA
D1-29_014731017hypothetical proteinATGTTGCCTGTCTCATTACAGCGAGGAAAAAACATTAGCACAACAGTTATCTTCTCAATCGACGATGTAGTGATTGCTAATGCATACAATGGCCTGATGGAAATTCATCAGCTGGAGATCCTTCGGGAACTCGGAGCACTCGGCAGCGTCAAGGCCGTGGCGGAGACCCTGATGGTCACGCCTTCCGCTGTGTCCCAGCAGCTGGCCCTGCTGCAGCGGAGCGTGGAGGTGCCGCTGACCAGGAAGGAAGGCCGGAACCTGGTGCTGACGGAGGCCGGGCAGGTACTCGCCGACGCCGGGGCCGCCGTGGTCAGCGCCATGGCGGACGCGAGAACCGCCATTGGCGCGTATCACGGTTCCTCAGTGGCCCCCGTGACCATCAGCGGCTTCCACAGCGCCGGGCAGGCACTGTTTGCTCCACTTGCCGGCATGCTTGATGAACCGGGACAGCCGCGGATCCAGCTTTCGGACGAAGACGTGGCGCAGCACGACTTTCCTGCCCTCACCGCGCGTTACGACCTTGTGCTTGCCCACCGGATGGACCACAGTCCCGGCTGGCCGGTGGAAAGGGTGGCCGTGATTCCGCTCGCCCATGAGCCGCTGGATGTGGCACTTCCGGCGGGCCACCATTTGGCCGGACAGGCCAGGGTCACGGCGGACGACGTCGTGGGCGAACCCTGGGTGACCAGCCACGCCGGCTACTCCCCCGCGGACGTGCTGTCCGCCGTCGCTGCCGTCGCCAGCAGGGAACTGAACATTGTCCACCGGATCAACGACTACTCCACCGTGGCCGCCCTGGTGGCGGCGGGCGGGGTGGTGGGCCTGCTGCCGCGGTACACGGCCCGCCCCGTGCTCAACCCGGACATTGTGCTGAGGCCCCTTGAAGGCATCAGCACGCGGCGGCGGATCGACATCCTGGCCCGCCCGGAGAACCTGAAACGCCGGTCCGTGATGATCGTCTGCGAGGCGCTCCAGGCGATCATGACAGGACTGGTGGAGCACCCCCGGCCCAACTGAMLPVSLQRGKNISTTVIFSIDDVVIANAYNGLMEIHQLEILRELGALGSVKAVAETLMVTPSAVSQQLALLQRSVEVPLTRKEGRNLVLTEAGQVLADAGAAVVSAMADARTAIGAYHGSSVAPVTISGFHSAGQALFAPLAGMLDEPGQPRIQLSDEDVAQHDFPALTARYDLVLAHRMDHSPGWPVERVAVIPLAHEPLDVALPAGHHLAGQARVTADDVVGEPWVTSHAGYSPADVLSAVAAVASRELNIVHRINDYSTVAALVAAGGVVGLLPRYTARPVLNPDIVLRPLEGISTRRRIDILARPENLKRRSVMIVCEALQAIMTGLVEHPRPNNANANANANA
D1-29_014741047tdh_2COG1063L-threonine 3-dehydrogenaseATGAAGGCTCTGTACAAGGCCGGACCCCAGGCCGGGTTCGAACTGGTGGACCGGCCTGAACCGGAAGCCGGCCCGGACGAGGTCAAGATCCGGGTCATCACCACGGGCATCTGCGGCACGGACCTGCACATCCAGGCCTGGGACGCCTGGGCCCAGGGCATCATTGAGGCACCCCTCATCCCCGGCCACGAGTTCTATGGCGAAGTAGTGGAGATCGGCGCCGACGTCCGTGACGTCAAGGTGGGCGACAGGGTGTCCGGCGAAGGCCATGTAGTCTGCGGAATCTGCCGCAATTGCCGGGCCGGCCGGAGGCAGATGTGCATCCACACAGTCAGCGTAGGTGTTCAGCGCGACGGTGCCTTCGCCGAGTTCGTCGTGATTCCGGAAACCAACGCCTGGGTCCACCACGATCCCTCGGTCACGCCGGAACTGGGCGCCATCTTCGACCCCTTCGGCAACGCCGTCCACACCGCCCTGAGCTTCCCCCTGGTGGGGGAGGACGTCCTCATTACCGGTGCAGGCCCGATCGGGCTGATGGCCATTGCAGTGGCCCGGCACGCCGGTGCCCGGAAGATCGCCATCACCGATGTCTCCCAGCCGCGCCTGGACCTTGCCCGCCACATGGGGGTGGACCTGGCCATCGACGTCTCCACCACCAGGATCAGGAACGCCCAGCAGGAACTTGGCATGCGCGAAGGCTTTGACATCGGCATGGAAATGTCCGGCCACCCCACCGCGCTTCCTGAGATGATCGACAACATGAACCATGGCGGCCGCATTGCCATGCTGGGGCTGCCCAGCCAGGGCATCACCATCGACTGGGGCAAGGTAGTGACGCACATGCTCACGCTGAAGGGCATCTACGGCCGCGAGATGTTCGAAACCTGGTACGCCATGAGCGCCATGCTGTCCTCCAACCCGGTGCTCCACGCCGCCATTTCGGCCGTGGTAACGGACAGGCTTCCTGCCCAGGAGTGGGAAAAAGGCTTTGATATTGCCCGCGCCGGCGTCGGCGGCAAAGTTGTCCTCGACTGGACCGAACTCTAAMKALYKAGPQAGFELVDRPEPEAGPDEVKIRVITTGICGTDLHIQAWDAWAQGIIEAPLIPGHEFYGEVVEIGADVRDVKVGDRVSGEGHVVCGICRNCRAGRRQMCIHTVSVGVQRDGAFAEFVVIPETNAWVHHDPSVTPELGAIFDPFGNAVHTALSFPLVGEDVLITGAGPIGLMAIAVARHAGARKIAITDVSQPRLDLARHMGVDLAIDVSTTRIRNAQQELGMREGFDIGMEMSGHPTALPEMIDNMNHGGRIAMLGLPSQGITIDWGKVVTHMLTLKGIYGREMFETWYAMSAMLSSNPVLHAAISAVVTDRLPAQEWEKGFDIARAGVGGKVVLDWTELPGPT0020460_221DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0020460-tdh-K00060NANA
D1-29_014751197kblCOG01562-amino-3-ketobutyrate coenzyme A ligaseATGTACACCTCGATCAAGGACCAGCTGCAGACTGAGCTGGAGGAGATCCGCACAGCGGGACTCTTCAAGACCGAACGAAGCATCAACTCACCGCAGTCCAGCCACATCACGGCAGGACAGGTGGGCCAGCCGGGGGCCGGCGTCCTGAACTTCTGCGCCAACAACTACCTTGGCCTGGCCGACCACCCCGACATCATTGCGGCCGCGAAGACCGCCATGGACAGCCGGGGCTTCGGGATGGCCAGTGTCCGCTTCATCTGCGGCACCCAGGACCTGCATCTGGAACTGGAAGCCCGGGTCTCCAGCTTCCTCGGCACCGAGGGCACCATCCTGTTCTCCAGCTGCTTCGACGCCAACGGCGGGGTCTTCGAGTCCCTGTTCGGTGCCGACGACGCCATCATCTCCGATGCCCTGAACCACGCGTCCATCATCGACGGCATCCGCCTGTGCAAGGCGCAGCGGTACCGCTACGCAAACCAGGACATGGCGGATCTGGAGGCCAAGCTCCTGGAAGCCAAGGATGCCAGGCGCAAGATCATCGTGACCGACGGCGTGTTCTCCATGGACGGCTACCTGGCGCCGCTGGAAGCCATCTGCGACCTCGCGGAGAAACACGATGCTCTGGTCATGGTTGACGATTCCCACGCCGTCGGCTTTATGGGCGCCACCGGCGCCGGGACCCCCGAGCACGCCGGCGTATCCCACCGTGTGGACATCTACACCGGAACGTTCGGCAAGGCGCTCGGAGGGGCCTCGGGCGGCTACGTTTCCGGCCGCCGCGAAGTAGTGGCAATGCTTCGCCAGAAAGCGCGCCCCTACCTCTTCTCCAACTCGCTGGCCCCCGCCATCGTGGCGGCCACGATCAAGGCGCTGGACCTCGTGGTGAACTCGGGCGAGCTGCGCACCAGGTTGTTCGAAAACGCCGGACTGTTCCGCCGCCGGATGACGGAGGAGGGCTTCGAACTGCTGGACGGCGAACATGCAATTGTTCCGGTCATGTTCGGGGATGCCGTGCTGGCCGCCAAAGTGGCGGACCAGATGCTGCAGCATGGCGTCTTTGTGACCGCCTTCAGCTTTCCCGTGGTTCCCCGCGGTGCCGCCCGTATCAGGGTCCAGCTTTCGGCGTCCCACTCGACGGACGACGTCGAAGCCTGCGTGCGTGCCTTCGTCGCCAGCCGTGCCGCGGTAGCCGCTTAGMYTSIKDQLQTELEEIRTAGLFKTERSINSPQSSHITAGQVGQPGAGVLNFCANNYLGLADHPDIIAAAKTAMDSRGFGMASVRFICGTQDLHLELEARVSSFLGTEGTILFSSCFDANGGVFESLFGADDAIISDALNHASIIDGIRLCKAQRYRYANQDMADLEAKLLEAKDARRKIIVTDGVFSMDGYLAPLEAICDLAEKHDALVMVDDSHAVGFMGATGAGTPEHAGVSHRVDIYTGTFGKALGGASGGYVSGRREVVAMLRQKARPYLFSNSLAPAIVAATIKALDLVVNSGELRTRLFENAGLFRRRMTEEGFELLDGEHAIVPVMFGDAVLAAKVADQMLQHGVFVTAFSFPVVPRGAARIRVQLSASHSTDDVEACVRAFVASRAAVAAPGPT0020495_1384DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020495-kbl-K00639NANA
D1-29_014761107dauA_2FAD-dependent catabolic D-arginine dehydrogenase DauAATGACAGCACAGTACGATGTCCTGATTGTGGGCGGCGGGATCGCCGGCCTGTCCCTTGCCTCGGCGCTCGCCGGCAAATGCAGCGTGGCACTGGTGGAAGCCGAGCAGGAACTGGCCTACCACACGTCCTCCCGCTCCGCCCGGAATCTGATTCCCAGCTACGGCCCTGCCGTGGTCCAGGAACTCACAGTCCGGACCCTGGAGCTGATGGCGGCCCGGGACAGTGAACTGCCTGAGCGCGTCCTGGCGCCCAGCAGTTTTATGCTCATCGGCAGCGAGGACAGCGTCAGGGCAGAGGCCAGCGGCCACATGCAGCCCATCCCGCATGCAAAAGCCCTGGAGCTTTGCCCCGCCCTGGCTCCGGACTCCTTCACGGCCGCCGGCCTGGATACCGGAGCCTTCGCCTGCAATGCGCCCCTGCTGCTGGCCGATCACCGACAGCGTGCCGAGGATGCCGGAGTCGACATCATCACGGGCGCCAGGGTGCACTCGGCCCAGCGACTGGGCTCCGGCTGGGAGATTGGTGCAGGGCAGGAAGCGTTCCAGGCCGGGGTTCTGGTCAATGCTGCAGGCGCCTGGGCGGATGAGCTGGCGGTGATCAGCGGCGTGGAAAAGCTCGGCCTGCAGCCGTACCGGCGCACCGCTGCGATAGTCGACGTCGAACACCCGCTTCCGGAGGCTTGTCCCATGGTGGCGGCAGCGGACAGCTCCTTCTACTTCCGCCGGGACGGCAGCGATGTCCTGGTCTCGCCGTCCGAGAAGGTGCCCAGCGGGCCGGAGGACTCCAAGCCCCGCCCCGGGGATGTGGAGCGGCTGATCGCCAGGCTCAACCAGGTGACCACGCTGGGGATCCGCGGTGTGCGGAGGGCCTGGACCGGGCTGCGGACCGAAGCGGCGGACGGCATCCCGGTGGCGGGATTCGATGCGGAGGCGCGGGGGTTCTACTGGCTGGCCGGGCAGGGCGGCTACGGCTTCCAGACGTCGTCGGCCATGGCGGAGCTTGCGGCGGAGCAGATCCTGGCCGGCCAGGGACCAGACGGGACGAACAGTCCGGCATCCCGGACAGCGCAGGCGCTTGCCGCCACCCGCTGGTCCATCCGGCGCTGAMTAQYDVLIVGGGIAGLSLASALAGKCSVALVEAEQELAYHTSSRSARNLIPSYGPAVVQELTVRTLELMAARDSELPERVLAPSSFMLIGSEDSVRAEASGHMQPIPHAKALELCPALAPDSFTAAGLDTGAFACNAPLLLADHRQRAEDAGVDIITGARVHSAQRLGSGWEIGAGQEAFQAGVLVNAAGAWADELAVISGVEKLGLQPYRRTAAIVDVEHPLPEACPMVAAADSSFYFRRDGSDVLVSPSEKVPSGPEDSKPRPGDVERLIARLNQVTTLGIRGVRRAWTGLRTEAADGIPVAGFDAEARGFYWLAGQGGYGFQTSSAMAELAAEQILAGQGPDGTNSPASRTAQALAATRWSIRRPGPT0020092_322DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020092-dauA-K19746NANA
D1-29_014771212hutI_1COG1228ImidazolonepropionaseATGAGCACCCTGATCACCAACATCGCCGAGCTGATGACCCAGGACCTGGAACACCGGGTCCTCAAGGACGCCGCCGTGGTGATCGACGGCGAACGCATCGAATGGATCGGCGCCGCTTCGTCCGCGCCCGCGGCGGATGAGGCCGTTGATGCAGGCGGCCGGGCGCTGCTCCCCGGCTGGGTGGATTCCCACACGCATATGGTGTTCGCGGGCGACCGGACTGCCGAGTTCGAGGCCCGCATGGCGGGGGAGGCGTACTCGGCCGGAGGCATCGCGGTGACCAGGGACGCGACCCGGCGCGCGTCGGATTTTGACCTCACCCGGCTGGCCATGGGGCGCGTGGCTGAGGCCGTCTCCCAGGGCAGCACCTACTTTGAGACCAAAACGGGCTACGGGCTGGACATCGAGCACGAGGCCCGGAGCGCCAGGGTGGCCTCCACCGTGGCCGATGAAGCGACCTACCTTGGAGCCCATCTGGTCCCGGCCGGCATGGAGGCCGACGAGTACACGAAGCTGGTCTGCGGGCCGATGCTGGAAGCGGTCCGCCCGTACGTCCGCTGGGCGGATGTGTTCTGCGAAGAGGGTGCCTTCACCGCCACGCAGTCCCGTGAGGTGCTGCAGGCCTGCCGGGACGCCGGCCTGGGCCTGCGCGTCCATGGAAACCAGTTGGGCGAAGGACCCGGCGTCCAGCTTGCCGTGGAGTTTGAAGCGGCCAGCGTGGACCACGTGAACTATCTGTCGGATGCCGACATCGCGGCGCTGGCCGGAACCTGGTCCGGCTGGGACGCCGGCCAAGGCAGCGGAAACCGGGGCACGGTGGCAACGTGCCTTCCCGCCTGCGATCTGTCCACCCGGCAGCCACTTGCCCCCGGGCGGCAGCTCCTGGATGCGGGAGTCCAGCTGGCGCTGGCCTCCAACTGTAACCCGGGGACCTCGTACACCAGTTCCATGGCGTTTTGTGTGGCCACCGCCGTGCTTCAGATGAAGCTGACAGTTCATGAGGCGGTCAGAGCCGCCACCTACGGCGGGGCGCTTGCGCTGCACCGGGACACCGGGAACGACGCCGACGGCGAGCGGGCGGTGGGCTCCATTGCGGTAGGACACAGGGCTGACCTGCACCTGCTGAACGCGCCTTCCGCCACCCACCTCGCCTACCGTCCGGGCATGCCGCTCACGTACGCTGTATGGCGGGCAGGAATCCGGCAACGTTAAMSTLITNIAELMTQDLEHRVLKDAAVVIDGERIEWIGAASSAPAADEAVDAGGRALLPGWVDSHTHMVFAGDRTAEFEARMAGEAYSAGGIAVTRDATRRASDFDLTRLAMGRVAEAVSQGSTYFETKTGYGLDIEHEARSARVASTVADEATYLGAHLVPAGMEADEYTKLVCGPMLEAVRPYVRWADVFCEEGAFTATQSREVLQACRDAGLGLRVHGNQLGEGPGVQLAVEFEAASVDHVNYLSDADIAALAGTWSGWDAGQGSGNRGTVATCLPACDLSTRQPLAPGRQLLDAGVQLALASNCNPGTSYTSSMAFCVATAVLQMKLTVHEAVRAATYGGALALHRDTGNDADGERAVGSIAVGHRADLHLLNAPSATHLAYRPGMPLTYAVWRAGIRQRPGPT0020235_1953DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020235-hutI-K01468NANA
D1-29_01478795glpR_2COG1349Glycerol-3-phosphate regulon repressorATGACCCGCAACGACAGACTGACCGCCATTCTGGACCTCCTTGCCGAGACCGGGCAAGTGGAGGTGGACGAAATTGTTGCCAAGCTTGGGGTTTCGCCCGCCACCGTCAGGCGGGACCTGGACAGCCTGGCCAAGCGGAGGCTCCTGACACGGACCAGGGGCGGAGCCACCACGGGCGCCCTCGCCTACGATCTTCCTGGCAGATATAACCGGGACGACCACGCACAGGCCAAGGAAGAAATCGCCCAGGCGGCCTCGGCCCTGATCAGCCCCGGTGCCGTGATCGGGCTCTGTGGCGGCACCACCAGCACGGCGCTGGCCCAGATCCTGGCAACCCGCGAAGACCTCAACGCTCCGTCGAACCAGCCCACCCTGACGGTGGTCACCAACGCCATCAATATCGCGGCGCAACTGGCCGTCCGGCCCAACATCAAGGTTATGGTGACCGGCGGCATCCTCAACCCGCGTTCCTACGAACTGGTGGGACCTTACACGGACATCATCATGCAGAAGGTGGTCCTGAACATCGCCTTCATCGGCGTCAACGGCATCGACCCCGTGGTGGGACCCACCAACACCGGCGAGGCCGAAGCGTCCGTCAACGCGCTCCTGGCCAGCAGGGCCCGGGTGTCCTACGTGCTGGCCGATTCCTCCAAGGTGGGCGTGCGCGCCTTCGCCACCATGGACGGCTACGAGTTCACCCGGCTTATCACCGATGCCGGTATTTCAGCCGAGGACAAAGCGGCCTTTGAGGCCACCGGCACGGAAGTCATTGTTGCGCCGCAACTCGCCTAGMTRNDRLTAILDLLAETGQVEVDEIVAKLGVSPATVRRDLDSLAKRRLLTRTRGGATTGALAYDLPGRYNRDDHAQAKEEIAQAASALISPGAVIGLCGGTTSTALAQILATREDLNAPSNQPTLTVVTNAINIAAQLAVRPNIKVMVTGGILNPRSYELVGPYTDIIMQKVVLNIAFIGVNGIDPVVGPTNTGEAEASVNALLASRARVSYVLADSSKVGVRAFATMDGYEFTRLITDAGISAEDKAAFEATGTEVIVAPQLAPGPT0017955_330DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017955-agaR-K02081NANA
D1-29_01479657gpmA_22,3-bisphosphoglycerate-dependent phosphoglycerate mutaseATGATCCGGCACGGCCAGTCTGCAGCCAACGCCGATACCTCGATCTACAACAGGGTCCCGGACTATCGGATTCCCCTGACCACCCTGGGTGTGGAGCAGGCGAGGGCAGCCGGCGAGCAGATCCGGGATGAGCTGGACGGCCGCCAGGTCTGCGTCTACGTCTCGCCCTACCTGAGGGCCCATCAGACCCTCGAGGCCCTCAACCTCGGAAGCCTCACGGAGCGGGTGATCGAGGAGCCGCGGCTGCGCGAGCAGGACTGGGCCAACTTCCAGATCAGCGGCGATATTGAAGACCAGAAGGAACTCCGCAACGCTTACGGCCATTTCTTCTACCGTTTCCGCGAAGGCGAATCCGGCTCGGACGTCTACGACCGGATTTCCTCGTTTATGGAAACGCTTTACCGCCACTGGTCCAAGCCGGACTATGCGCCCAATACCCTGCTGGTGACGCACGGGCTCACCATGCGCCTGTTCTGCATGCGGTGGTTCCACTGGTCAGTGGAGTACTTCGAGTCCCTCAACAACCCGGGCAACGCGGCGGTGCGGACGCTGGTGCGGACCGACCTGGACAAGTACGAACTCGACATCCCGTTCAGCCAGTGGGTGGACCGCAGGGTGGACGAGACGGTGCTGGACGCTCCGCCGGTCATCTTTTAGMIRHGQSAANADTSIYNRVPDYRIPLTTLGVEQARAAGEQIRDELDGRQVCVYVSPYLRAHQTLEALNLGSLTERVIEEPRLREQDWANFQISGDIEDQKELRNAYGHFFYRFREGESGSDVYDRISSFMETLYRHWSKPDYAPNTLLVTHGLTMRLFCMRWFHWSVEYFESLNNPGNAAVRTLVRTDLDKYELDIPFSQWVDRRVDETVLDAPPVIFNANANANANA
D1-29_01480780hypothetical proteinATGTTGGTTCCCTCCCGCCGTCGGCTGCGCCTTGAAGTCTGGATCGTCTTGGGGCTGTCCCTGGGCCAGTCCGCCGTCTACTCCGTGGTCCAGCTGCTGGATAAGATGACGCGCGCCCCGCTGGCGGAAGGCACCTCAACGCTCAACCGCTCGCAGAGCACCCGCGAATACTTCGATCTCACCTACCAGTTGCTGGACATCGTCTTCGCGCTGGTGCCGGTCCTGCTGGTGATCTACTTCCTGTCCGACCAGCGGCAACCGGGGGCGGGGGACGGCGCACATGCAGGTTCGGCCTTCCGGAAGCTTGGCTTCAACTTCGCCAGACCCGGAAGGGACATGCTGCAGGGTCTAGGACTTGCGGCCCTGATCGGTATCCCGTCACTTGGCCTCTACGCGGCAGGGCGGGCCTTGGGCATCACCACTGCCATCATTCCCAGCGCCCTGGATTCCTACTGGTGGACAGTGCCGGTGCTGATCCTGTCTGCCATGCGGCATGCTGTGGTGGAGGAAGTCATCGTGGTGGGCTACCTGATGGACCGTTTGGGGAAGTTTGGCTGGAGCATGCCATTGGCAATCTTCGCCAGTTCCATGCTGCGCGGCAGCTACCACCTCTACCAAGGCTTTGGGCCCTTCATCGGCAACGCGGTCATGGGTGTGGTGTTCGCCTGGCTCTACACCCGCACAAAGCGGGTGATGCCGCTGGTCATTGCGCACGCACTGTTGGACATTGTGGCGTTCGTTGGCTTCAGCCTCTTTGGGTCTGCCATAGGCCTCGGGTGAMLVPSRRRLRLEVWIVLGLSLGQSAVYSVVQLLDKMTRAPLAEGTSTLNRSQSTREYFDLTYQLLDIVFALVPVLLVIYFLSDQRQPGAGDGAHAGSAFRKLGFNFARPGRDMLQGLGLAALIGIPSLGLYAAGRALGITTAIIPSALDSYWWTVPVLILSAMRHAVVEEVIVVGYLMDRLGKFGWSMPLAIFASSMLRGSYHLYQGFGPFIGNAVMGVVFAWLYTRTKRVMPLVIAHALLDIVAFVGFSLFGSAIGLGNANANANANA
D1-29_01481633hypothetical proteinATGGATCACGTCTCTTACGCCTGTGAACACGATGGCCTGGCTGCCACAACCGAACGAATTTCGTCCGCCCTCGGCGTCGAAGCCGTGAAGGGTGGAGTGCACCCCCGTTTCGGAACCCGGAACATGATCATTCCACTCGCGGGCCACAAATACCTTGAAGTAGTGGAGGTCCTTGACCACCCGGCGTCGGATAAAGCGCCGTTCGGACAGGCCGTCCGGGCACGCTCTGCTGCCGGCGGCGGCTGGATGGGCTGGTGCGTCGAAGTGGACGACCTCGCCCCCTTCGAACGCCGGCTGGGACGCTCCGCCGTCAACGGCAACCGGAAGTTCCCCGACGGCCGCGAACTTGTATGGAAGCAGATCGGAATCCTGGGCCTCATCGCTGATCCCCAGGTCCCGTACATGCTCAAGTGGGAAGGCGATCCCGCCCTGCACCCGTCCAACGCCTACGAAAGCAATGTCAAGATGTCCTGCCTGACCATTGCAGGCTCGGCGGAGCGGGTGACCGAATGGCTCGGCGAACCTGTCGAAAAGCCGCTTGAGGATGTAGCGGTGGAATGGGTGGCTCCGCATGGAACCCCGGGAATCCTTTCCGTCACCTTCGAAACCGCCTCCGGGGCAGTCACCATCTAAMDHVSYACEHDGLAATTERISSALGVEAVKGGVHPRFGTRNMIIPLAGHKYLEVVEVLDHPASDKAPFGQAVRARSAAGGGWMGWCVEVDDLAPFERRLGRSAVNGNRKFPDGRELVWKQIGILGLIADPQVPYMLKWEGDPALHPSNAYESNVKMSCLTIAGSAERVTEWLGEPVEKPLEDVAVEWVAPHGTPGILSVTFETASGAVTINANANANANA
D1-29_0148299hypothetical proteinATGGCCTTGGGGAGGCAGCTGACGCCCCTCCTGCTTTCCATCGGTATTAGCGAAATGGCCGACGTCGTGGATGCAGCCGGGCAGTTGCGGGCACCGTAGMALGRQLTPLLLSIGISEMADVVDAAGQLRAPNANANANANA
D1-29_014841116metXACOG2021Homoserine O-acetyltransferaseATGACGATTACCGTCTCCCGCACCGCCGTACCTGAAAACGGAGTGGTCCAGTTCGCCACTATCGGCGGACTCGAGCTCGAAGCCGGAGGCTTCCTGCCGGATGTCACCCTGGCGTATGAAACCTGGGGCACACTCAACCATGATGCCTCCAACGCCATCCTGATCGAGCACGCCCTGACAGGCAGCACCCACGTCACGCGGGGCGACACCGATGAACCGGGCTGGTGGGAACAGCTGGCCGGGCCCGGTGCGCCGGTGGATACTGACAGGTTTTTTGTGGTCTCCGTGAATATCGTGGGCGGATGCTATGGCTCCACCGGACCTTCGTCGCCTGCCCCTGACGGAAAGCCGTGGGGCTCCCGCTTCCCCCTGGTCACCCTCCGGGACAGCACCGTTGCCGAAGCCCGGCTGGCTGACCTGCTGGGCATCCAGAGCTGGTTCGCCGTCCTGGGCGGCTCAATGGGCGGCGCGCGTGCCCTCGAATGGGCTCTGACCTACCCTGAGCGGGTAGAACGGTGTGCCGTAGTATCGGTCGGCGCCGCGAGCACGGCGGAGCAGATTGCCTTCGCCCAGGCCCAGACCCTGGCGATCCGCCAGGATGCCAACTTCAACAACGGCGATTACTATGGCGGTCCCTGTCCGGAGGACGGCCTGGCGCTGGCTCGCCGGATAGCCCACATCACCTACCGCTCGGCCCGGGAACTGGACGGCAGGTTCGGACGCCTGGCCCAGGCGCCGGAAACACCGTTCCAGGCACCGGCGCTGGGCGACCGCGGCCGCTATCAGGTGGAAAGCTACCTGGACCACCAGGGCAACAAGCTGGTTCGGCGCTTTGACGCCAACAGCTACATCGCCATCACAGAGGCCCTGATGAGCCACGATGTTTGCCGGGGGCGCGGCTCCCTGGACGAGGCCCTGGCCAAGGCGACAGCCCGGTTCTTTGTGGCGGCCGTGGACAGCGACAGGCTCTACTTCCCGTCCCAGTCACACGAGTTGGCGGCAGCCCTGCCGGGCGACGTTGATGTGCACATCATTGAATGCCCCATCGGCCACGACGGCTTCCTCACCGAAATCGGACAGCTGGGCAACCAGCTCAGGACGACATTCCTGGTTTGAMTITVSRTAVPENGVVQFATIGGLELEAGGFLPDVTLAYETWGTLNHDASNAILIEHALTGSTHVTRGDTDEPGWWEQLAGPGAPVDTDRFFVVSVNIVGGCYGSTGPSSPAPDGKPWGSRFPLVTLRDSTVAEARLADLLGIQSWFAVLGGSMGGARALEWALTYPERVERCAVVSVGAASTAEQIAFAQAQTLAIRQDANFNNGDYYGGPCPEDGLALARRIAHITYRSARELDGRFGRLAQAPETPFQAPALGDRGRYQVESYLDHQGNKLVRRFDANSYIAITEALMSHDVCRGRGSLDEALAKATARFFVAAVDSDRLYFPSQSHELAAALPGDVDVHIIECPIGHDGFLTEIGQLGNQLRTTFLVNANANANANA
D1-29_01485507hypothetical proteinGTGAACAACCTGTTTTTCTGGATCATCGTTTTGTCGTTCCTGATTCCGATGGGGATGCGGATGTACCGGAAATACGTCCACCGCCGGAACCAGGAACAGAGCTTCTCCGGGCGGTACCCGGACTACTTCCCCGGCCCGCGTCCGGGACCGCAGAGCAACCAGCCCCGCGACGGCTACACGCAGCAGGACTACATGAGCGGCGGCTTCCGCCAGATCAGCAGCCCGGAGCCTCTGCCGCCCAGCCAGCCCCTTCCCCCGTTCCAGCCACTGCCGGGCCAGCAGCTTCCGACGCCGGACCAGCAGCGCCCGCCGTACGGCCAGGCAGTGCCTCCCCGGGACCGGGGACAGGAACCGCAGAAGCCGGCGGCCCCCTCGACTCCCCCGCCGCCGTCGGCCCCGCAGGGCTACCGTGCCCGCAAGCTTGCAGAACTTGACCAGCAGTACAGCAACGGCGAAATGGCCATGGATGAGTACATGGCGCGCCGGGCCGAAATCATGAACGGCTGAMNNLFFWIIVLSFLIPMGMRMYRKYVHRRNQEQSFSGRYPDYFPGPRPGPQSNQPRDGYTQQDYMSGGFRQISSPEPLPPSQPLPPFQPLPGQQLPTPDQQRPPYGQAVPPRDRGQEPQKPAAPSTPPPPSAPQGYRARKLAELDQQYSNGEMAMDEYMARRAEIMNGNANANANANA
D1-29_014861290hypothetical proteinGTGGCCATAGACCCGGACGGCGTGGTGCGGAAGAGGCTGCACGCCCAGATGCTGCGCGGACCGGGCGCCGCTTCGCCCGAGGAAGCACTCCGGAACCTGCTGGCAGTGCAGGCCCAGGAGTTTCCCTATGCCCGCTGGAGTTTGGCGCAGCGTACTGCTTTCCCGCAGACTCAGCAGACTCAGGAAACAGCCCAGCAGGCTCCCCGGCAGTCAGCCAAGGAGACAGCCCAGGAGTCAGCCCGGCAGCCGCCAAGGGCCACAGCGGCCCAGGTGGAAGATGCCGTGGCCGACGGGCGGATCCTGCGGACCCATATCCTCCGGCCAACGTGGCATTTTGTCCATCGCGACGACCTCCGTTGGCTGATGGCCCTGTCCGCACCCAGGCTCCATCAGGGGAACGCCGGAATGTACCGGCAGACAGGCATCGATGCGGCGGCCGCGGCCCGGAGCGCAGACGTCCTGGCCGACGCTGTCCGGGGCGGCAAGCATCTGACCAGGGAGCAGCTAGCCGCCAGGCTGCAGGATGCCGGCTTCACGGCAAAGGGTGTGGAACTTGCCTACCTCATCATGCATGCGGAGATCAGCGCAGTTCTGGTCAGCGGCACACCTGTTCGCAGTCCAAGTGGGGCGCTCAAACAGACGTATGCCCTGTTCGACGAGCGCATTCCGGCCGCTCCCGAAGTGAGCCGGGCAGAAGCCCTTGCCGCGTTGGCCCGGCGCTATTTCAGTAGCCGCGGTCCGGCCACGGTCAGGGACTGCGCCGACTGGTCCGGGCTGACCATGGCTGACGTCCGGCAGGGCGTTCAGCACGTCCTGGAGAACGAACCGGACGCCCTGGAAACGCAGGAAATTGACGGCGTCGTCTTCTACTTCAGAGCCGGGCCGGGACCGGAGCCGGATTCGACGCTGGGAGGCCGCGGACCCGCTCAGGGGGCGGAGCCCCGGATCGATCTGATCCAGTGCTACGACGAATACGTGATGGGGTATTCCGCCACCAGGCATTACCTGGGAGGAAGCGCTCCCGCGATCCCCGCCGACGGCGCCCTGATACACGTGGTGCTGCTCAACGGAAGGATGGCCGGTTCCTGGCGGCACACCATGCTGCCCGGCCGGTGCGAGCTGGACATCCGTCTGTCCACACCGGCAGGGTCACACGCCGCTTTTGCCGGTGCGGGCGAAAACACTGACGTGGAGCAGGCGGTGGAGGCCGCCGTGGCTGGCTATGGAGCCTTTCTTGGCATCCCCACAGTCCGGAAGGCGTCCGGGGCTAAGCTGGAAGGACACATATGAMAIDPDGVVRKRLHAQMLRGPGAASPEEALRNLLAVQAQEFPYARWSLAQRTAFPQTQQTQETAQQAPRQSAKETAQESARQPPRATAAQVEDAVADGRILRTHILRPTWHFVHRDDLRWLMALSAPRLHQGNAGMYRQTGIDAAAAARSADVLADAVRGGKHLTREQLAARLQDAGFTAKGVELAYLIMHAEISAVLVSGTPVRSPSGALKQTYALFDERIPAAPEVSRAEALAALARRYFSSRGPATVRDCADWSGLTMADVRQGVQHVLENEPDALETQEIDGVVFYFRAGPGPEPDSTLGGRGPAQGAEPRIDLIQCYDEYVMGYSATRHYLGGSAPAIPADGALIHVVLLNGRMAGSWRHTMLPGRCELDIRLSTPAGSHAAFAGAGENTDVEQAVEAAVAGYGAFLGIPTVRKASGAKLEGHINANANANANA
D1-29_01487867hypothetical proteinGTGAGCGAAGCAAGAGCAATGCAGAACCCCGCGGCAACCGTGGAATCCCACCCTTGGAGCCGGTACGTGGCCATGGGGGATTCCTTTACCGAGGGCATCGGCGATCCCGAGCCCTCAAGCCCCGGCGGGTATCGTGGCTGGGCCGACAGGGTGGCCGAGGAACTTGGCCGCGGCCATACCGATTTCGCCTACGCGAACCTTGCCGTCCGCGGCCGGCTCCTGCAGCAGATCGTGGACCAGCAACTGGCACCGTGCCTGGCCCTGAAGCCTGACCTGGTGACACTGTCCGCCGGCGGCAACGATCTCATCCGGCCCGGCGGCGATCCTGACGCACTCGCCGAAAAGCTCGATTCCGTGGTGCAGATCCTGTCACTGAGCGGCGCCACGGTGGTGCTTTTCAACGGGCCCGACACCGGCTCTTCCGTGCTGGGCCGGGTCCGAAGCAAAGTAGCCATCTATAACGAGAACCTGCGGACCGTGGCGGCCCGCCACGACGCCATCATCGCCGACATGTGGTCACTGCGGCAGCTCAGCGATCCACAGATGTGGGACCAGGACCGGCTGCACTTTTCACCGCTGGGCCACCACACGATCGCCGCCATGGTCCTTGACTCCCTGAACGTCAGCCACAGCCTGGAACCGCTGATGCCCAAGCCGCTCCCGCCGCGCACCTGGCGGGAAGCACGCACCGGCGATCTCGTCTGGGCCCGCGAGTATTTTGTCCCGTGGGTGGTCAGGCGGCTCCGTCACCGCTCGTCGGGCGATGGCATCACGGCAAAACGTCCGACGGCGGGTCCCGTGTTCGGTCCTGGCGTCCCGCTGGGTTCCGGGGAGGGTCCGCTGGGAACCACTGAAGCGCGGCGCTGAMSEARAMQNPAATVESHPWSRYVAMGDSFTEGIGDPEPSSPGGYRGWADRVAEELGRGHTDFAYANLAVRGRLLQQIVDQQLAPCLALKPDLVTLSAGGNDLIRPGGDPDALAEKLDSVVQILSLSGATVVLFNGPDTGSSVLGRVRSKVAIYNENLRTVAARHDAIIADMWSLRQLSDPQMWDQDRLHFSPLGHHTIAAMVLDSLNVSHSLEPLMPKPLPPRTWREARTGDLVWAREYFVPWVVRRLRHRSSGDGITAKRPTAGPVFGPGVPLGSGEGPLGTTEARRPGPT0017895_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_MANNOSE_METABOLISM|DEGRADATION,PGPT0017895-mgtA-K12583NANA
D1-29_01488660hypothetical proteinATGGAAACCATGACTGACGCCCAAGTATTTCCTGCCCCCGTTATTTTGTGGTCCCAGCCGGAGGCCCAGCGCATCGGAAAGCCGCTGCTGGTCCTGCTTCACGGCTATGGCGCCAACGAGCGGGATCTCCTGAGCCTGGCGGACATGCTTCCCGGGGACTTTGCCGTGGCCTCCGTCCGTGCCCCTCTGGCGATGGGTGAGGGATTTACCTGGTTTCCGCTGACCGGGTCCGTTGAATACTCCGTCGACGCCGTCAAGAAGGCATCCGGTTACGTGCTGGAGTGGATCGACAGCATCAAAGAGGACCACCCGTCGGTCACACTGCTGGGCTTTTCCATGGGAATGGCCATGGCCACCACGCTGCTGCGGGAGCGCCCCGCTGACTTCGCCGCCGTCGTCGGGCTTTCCGGTTTTGTTGTGGACGGAGGCGACGATCCCGCGTTCCGGGACGACGAACTGGACGGGACTGTGCCGATGTTCTGGGGCCGGGACCAGCAGGACCCCGTGATCACACCGGACAAGATCGACTACACCATGGCGTGGGTCCGCAAGCACGTCAAGCTCACCAAGGTGCTCTATACCGGAATGTGGCATGGCATCAACCAGCAGGAAATCGGGCACGTGTCCGAGTTCCTCACCCATGAGGTCCTGAACAAGTAGMETMTDAQVFPAPVILWSQPEAQRIGKPLLVLLHGYGANERDLLSLADMLPGDFAVASVRAPLAMGEGFTWFPLTGSVEYSVDAVKKASGYVLEWIDSIKEDHPSVTLLGFSMGMAMATTLLRERPADFAAVVGLSGFVVDGGDDPAFRDDELDGTVPMFWGRDQQDPVITPDKIDYTMAWVRKHVKLTKVLYTGMWHGINQQEIGHVSEFLTHEVLNKPGPT0028515_2104DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999NANA
D1-29_01489237hypothetical proteinATGAGCAACCAGGACATCGAAGAGATCCCCATCCGCGACAGCATGATCCGCCTTGGCCAGCTCCTGAAGCTCGCAAACCTCGTGGAGGACGGCGTGGAAGCCGCGGAGCTCATCAAGAACGGCCTGGTCAAGGTCAACGGCGAGATCGATGACCGGCGTGGCCGCCAACTGCATAACGGTGACACCGTGACAGTGAACAACCAGACCGTGCGGGTGGTGGCGGCGGAAGCTTCCTGAMSNQDIEEIPIRDSMIRLGQLLKLANLVEDGVEAAELIKNGLVKVNGEIDDRRGRQLHNGDTVTVNNQTVRVVAAEASNANANANANA
D1-29_01490993hypothetical proteinATGACCCACCCTCCCCGGCTGCCCCTGCTCGCAGGGCTGCCGCTGGCAGTAGGAGCGGGCCTTGCCATCCCCGTCCAGGGCCGGATCAACGGCGCCCTGGGCGCCCGGCTCGACGACGGCTTCGCGGCTGCGCTGGTCAGTTTCGGTACCGGCCTGGTGCTGATGATCCTGATCTCCCTGGTTCTGCCGAAGGGCCGGGCCGGCCTGGTGAGGATCATCCCCGCCGTCCGCAACCGTGCCTTTCCCCGCCTCTACGTCATGGCCGGCGGGATCGGGGCACTGTTTGTGATCGCACAGTCCTCCACCATCGGTGTCCTGGGCGTGGCGCTGTTTACCGTGGCTGTCGTGACGGGCCAGACGCTGAGCGGTCTCCTGGTGGACCGGCTGGGGATCGGGCCTGCCGGCAAGCGGCCTGTGACAGGGATCAGGGTGATCGGCTGCATCCTGACCATTGCAGCTGTGGCCTGGGCCGTTTCGCCGAGGTTTGCCGGCGGCGGGGCTGCCGGCGCTGCCGGTGTGTCCGGCGGGCCGGAAACGCTCATCCTTCCCCTCCTGCTGCCCGTCCTGGCCGGCTTCCTGATGAGTTTCCAGCAGGCCATGAACGGAACCGCCACCGTCACCTACGGCACGCCCATCGCCGCCACCCTGGTGAATTTTGTGGCGGGCTCCTTAGTGCTCACCATCGTCTGGGGGCTCAAGGTTGCCTGGTGGGGGACCGGTAACCCGTTGCCGCCGGACTGGTGGTACTACCTTGGCGGGCCGATGGGCTGCATCTTCATTGGCCTGGGGGCGCTGCTGGTCCGCAGCCTGGGTGTGCTCATCACCGGCCTGGGCATGATCGCCGGGCAGCTCCTGGGTTCCCTTGGCCTTGACCTGCTGTTTCCCGCGCCGGGAACCGTGGTGGCCGCGGCCACCGTCCTGGGTACGCTGCTGACCCTTGCCGCCATCGTGCTGGCCACCCTGCCCTGGCCCCGGGGCGCCTTCCGGAGGTAGMTHPPRLPLLAGLPLAVGAGLAIPVQGRINGALGARLDDGFAAALVSFGTGLVLMILISLVLPKGRAGLVRIIPAVRNRAFPRLYVMAGGIGALFVIAQSSTIGVLGVALFTVAVVTGQTLSGLLVDRLGIGPAGKRPVTGIRVIGCILTIAAVAWAVSPRFAGGGAAGAAGVSGGPETLILPLLLPVLAGFLMSFQQAMNGTATVTYGTPIAATLVNFVAGSLVLTIVWGLKVAWWGTGNPLPPDWWYYLGGPMGCIFIGLGALLVRSLGVLITGLGMIAGQLLGSLGLDLLFPAPGTVVAAATVLGTLLTLAAIVLATLPWPRGAFRRPGPT0009795_56DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936NANA
D1-29_014911386glyQSCOG0423Glycine--tRNA ligaseATGGCAGCAAAATCCGTTCTCGACCAGGTCATTTCCCTTTCCAAGCGGAGGGGCTTTGTATTCCAGGCCGGTGAGATCTACGGAGGTTCCCGTTCTGCCTGGGACTATGGACCCCTCGGTGCCGAGCTGAAGGAAAACATCAAGCGCCAGTGGTGGCAGTCCGTGGTCCGCGGCCGCGAAGACGTGGTGGGCCTGGACTCCTCGGTCATCCTTCCCCGCCAGGTCTGGGAAGCCTCCGGCCACGTGGATGTCTTCTCCGATCCGCTGGTGGAGTGCCTGTCCTGCCACAAGCGCTACCGGGCGGACCACCTCGAGGAAGAGTACGAGGAGAAGAAGGGCCGCCCGGCGGAAAACGGCCTGAAGGACATTGCCTGCGCCAACTGCGGCACCCGCGGCGAGTGGACCGAACCGCAGGAATTCTCCGGCCTCCTGAAGACCTTCCTGGGTCCGGTAGCCAGCGAGGAAGGCCTGCATTACCTGCGCCCCGAGACGGCCCAGGGCATCTTTGTGAACTTCAGCAACGTCCTCACCACCTCCCGGAAGAAGCCGCCGTTCGGCATCGGCCAGATCGGCAAGTCCTTCCGCAACGAGATCACGCCCGGAAACTTCATTTTCCGCACCCGTGAATTCGAGCAGATGGAGATGGAGTTCTTCGTCGAGCCCGGCACGGATGAAGAGTGGCACCAGTACTGGATGAAGGAGCGGATGTCCTGGTACACCGGCCTTGGCATCCGGGAGGAGAACCTGCGCTTCTTCGAGCACCCGCTGGACAAGCTCAGCCACTACTCCAAGGGCACCACGGACATCGAATACCGCTTCGGCTTCCAGGGCTCGGAATGGGGCGAGCTTGAAGGCATCGCCAACCGCACCGACTTCGACCTCTCCACCCATGCCAAGGCCTCCGGTACGGACCTGAGCTACTTCAACCAGGCCACCAACGAGCGCTACACGCCCTACGTGATCGAGCCCGCTGCCGGCCTCACCCGTTCCTTTATGGCCTTCCTGGTGGACGCCTACACGGAGGACGAAGCCCCCAACGCCAAGGGCGGCGTGGACGTCCGCACGGTCCTGAAGCTCGATCCGCGCCTGGCCCCGGTCAAGGCCGCTGTGCTGCCGCTGAGCCGCAACGAGGACCTCTCACCCAAGGCCAAGGACCTGGGAGCCCAGCTGCGCAGGAACTGGAACATCGACTTCGACGACGCCGGTGCGATCGGCCGCCGCTACCGCCGCCAGGACGAGATCGGCACGCCGTTCTGCATCACCGTGGACTTCGACACCCTGGATGACCAGGCCGTGACCATCCGTGAGCGCGACACCATGACCCAGGAACGTGTGTCCCTGGACAAGGTGGAAGGCTACCTGGCCGCACGCCTGATCGGCGCCTAGMAAKSVLDQVISLSKRRGFVFQAGEIYGGSRSAWDYGPLGAELKENIKRQWWQSVVRGREDVVGLDSSVILPRQVWEASGHVDVFSDPLVECLSCHKRYRADHLEEEYEEKKGRPAENGLKDIACANCGTRGEWTEPQEFSGLLKTFLGPVASEEGLHYLRPETAQGIFVNFSNVLTTSRKKPPFGIGQIGKSFRNEITPGNFIFRTREFEQMEMEFFVEPGTDEEWHQYWMKERMSWYTGLGIREENLRFFEHPLDKLSHYSKGTTDIEYRFGFQGSEWGELEGIANRTDFDLSTHAKASGTDLSYFNQATNERYTPYVIEPAAGLTRSFMAFLVDAYTEDEAPNAKGGVDVRTVLKLDPRLAPVKAAVLPLSRNEDLSPKAKDLGAQLRRNWNIDFDDAGAIGRRYRRQDEIGTPFCITVDFDTLDDQAVTIRERDTMTQERVSLDKVEGYLAARLIGANANANANANA
D1-29_014921032hypothetical proteinATGGCCATCGAGTACCGCGAATGGCGCGACGGCGACGACCTGGCGCTGCTGGAAATCTGGGGTGATCCGGAAACGTTCCAGGCAGGCCAGTTCCGCGGCGCGCTTACAGTCTCCTCCGCCGGCACCGACGGCACGCCCTGGCGCCGCTGCATTGTGGCCGAGGACGTTGTGGACGGCGTTGGCATTCCCGTGGCCGCAGGTGTGGTTTACGAGGCGTCGCTGCATCCGGAGCGGTTGTGGACCTACATTGAAGTGGCACGGGACCACCGACGCGCGGGTATTGGGGCCACGCTCCTGACCATGCTGCGCCGGGAAGCGGAACAATCGCCGTCGGGCGTTTCCAGGCTCCGCGCCAAAGTCCAGCCGGACACTCCCGGGGCTGCCTTCGCCGGCGCGTTCGGGCTTTCGCCCATCCAGCGCTCGCGGCTGGTGGTAGTTGAGCCCGGCGCCCTGAAGCTGCCTGTGTTCCCCGGCAAGGACGACGCCGGCAGGCCCGCCAACGATGAAAACGCCGGCTCCGACGTGGTGATGGACCTCGCCACGGGTTCGGTGGAGCTGACCGATGTGGTGGGACGGTACTACTCGGCCATCCACGGCTGGGATTCGCCCGGGGTGCTTTCGGTGGGACAGGTCCAGAAGCTGTTCCTGGACGATCTGACGGGTGCGCACGGGGCCATCGTGCTGCGGGCCGAGCCGGAGTCGGCTTTTGGCGCCGGTGTGGCCCCCACCAGGAAGGGCCGGATCCGCGCCTTTGCCGTCAGCTATGCCGAGGCAGCCCAGGATCCGCTGGCTCCGGAGGGTGCCTCGCCGGGTGCGGCGGCCACGGACGTTTTCCTGGGCCACGAACCGGCCCTGGAACCGGAGGATGCCGCGGCAGCCGTCCGGGACCTGCTCGCACTCATCGCGTACCAGCACCCAGTCATGCTGGAACTGGACGATTCGATGACAGCCCTGCGTGCCGCCGTCGAGCCTTTGCTCGAAAGCGGCAAAGCACGCCTGGCCGGTGCGGAAACCCTCATCGTCTCGGACTGAMAIEYREWRDGDDLALLEIWGDPETFQAGQFRGALTVSSAGTDGTPWRRCIVAEDVVDGVGIPVAAGVVYEASLHPERLWTYIEVARDHRRAGIGATLLTMLRREAEQSPSGVSRLRAKVQPDTPGAAFAGAFGLSPIQRSRLVVVEPGALKLPVFPGKDDAGRPANDENAGSDVVMDLATGSVELTDVVGRYYSAIHGWDSPGVLSVGQVQKLFLDDLTGAHGAIVLRAEPESAFGAGVAPTRKGRIRAFAVSYAEAAQDPLAPEGASPGAAATDVFLGHEPALEPEDAAAAVRDLLALIAYQHPVMLELDDSMTALRAAVEPLLESGKARLAGAETLIVSDNANANANANA
D1-29_01493786hypothetical proteinATGGACCAAGAGGACCACGGGGAACTCGAAGAAGCCCGTATAACCGACCGCAGGAGCGGGCCAAACGATGGGAGTGCCGCCGCCATCCCGGCGAGGCAGGCTGTCCTCACCGTGCTCCCGGCCTCCGGACCCACGCTGGGCGTGGCGCTGGTGCTGCACGGCGGCAAGTCCCACAGCTATGAGCCCGTGCAGACCCACCACCTGAGCCCGGCCAGGATGGTTCCCTTCGCCAGGCACCTGCACCGGGCCGGTAAGAGCCACGGACTGGCGGTATGGTCGCTGCGGAACAGTGTGCGGGGCTGGAACGGTGAGGCCATGGTGCCCCTGCAGGATGCCCGCTGGGCCCTCAACCGGATCAGGGAGCAGCATCCCGGGGTCCCTGTCTACCTGCTGGGGCACTCGATGGGAGGGCTGACCGCCATCTGCGCCGCCGACGATCCCCAAGTGGCCGCCGTCGTGGCGCTCGCCCCCTGGCTGAACGCGGCGACCCCCGCCTCACGGGTTGCCGGCCGGCGGGTGCTCATCGTGCACGGCACCGGTGACCGCTGGACCAGCCCCTGGGAGTCCCTCCAATTCGCCCGCCGCGCCGCCCACGAGGCCGCCTCGATGCAGTACGTCTCCCTCAAGGGCGCAGGGCACTTCATGTTCCGCCGGGTCAGGTTCTGGCATGCTCTGGCCACCGGATTTGTGATGCAGGAGCTCGGCGCTCACACCGGCGCCGCCGTCCCCGCTTCCCGCGCCTTGGATCAACTGCTCCCGGCAACCGCAGTGGAGGTGACCCTGTAAMDQEDHGELEEARITDRRSGPNDGSAAAIPARQAVLTVLPASGPTLGVALVLHGGKSHSYEPVQTHHLSPARMVPFARHLHRAGKSHGLAVWSLRNSVRGWNGEAMVPLQDARWALNRIREQHPGVPVYLLGHSMGGLTAICAADDPQVAAVVALAPWLNAATPASRVAGRRVLIVHGTGDRWTSPWESLQFARRAAHEAASMQYVSLKGAGHFMFRRVRFWHALATGFVMQELGAHTGAAVPASRALDQLLPATAVEVTLNANANANANA
D1-29_014941506hypothetical proteinATGGGTTCCGGTCACTCCCACGCTTCCACAGGTCATTCGGAGCCGACGGCCCAGGCTGTTGCCGCCCGCCGCAAAGCCAACCGCATCCTCGCGGCCGTGCTGATTCCGCTGACACTGCTGACCCTCGCGGGAATGGCCATGCTGTGGCCCTCCGGGACCAAGGAAGGCATTTCCCTGGCCAACCCGTATTCGGCGGCGCCCGGCGTGACCTTCGACACCGGGAAGATCCAGAGCGTGGTGGTCGAAAGCTGCATGCAGGGCGCGCCGTCGTCAGGTTCTTCCGGCGGCGGCCAACCGGAGCCGGGCCAGCCGGGCCAACAGGCGCCGGGCCAGCAGGGCTCCGACTGCACCTTCGCCTTCACCGAGCCCGATCAGGGCGGCAGTCCCGTCAAGGTAGTCATTAACCCGGATGTGGCCAAGTCGCACGGTGTAAAGGCCGGGGACCAGATCAGGTACCTGAACCTTTCCAACGCCCAGGGCGCATCGGCGTCGCAGGGGTCTCCTGCCTACATCTTTGTGGACTTTGTCCGGACCATGCCCATTGTGTTTTTGGCGCTGCTGTACGCCCTTGTGGTGATAGCAGTGGCGCGTTGGCGCGGGCTCCGTGCCCTGATCGGACTGGTGGGCGCGTACTTTGTCCTGGTCAGCTTTATGCTGCCCGGCCTGGTGGAGGGAAAGCCGCCCCTGCTGCTGGCGTTGGTGGGGTCAACAGTGATCATGATCGGGGTCCTGTACTTTGCCCACGGCTTCTCGGCCAGGACGTCCACTGCGCTCCTGGGAACCATGTTCGGCCTGGGCATCACCGCACTGCTCGCGGCCTGGGCCACGGATGCCGCCAACCTTGCCGGGGTGGGCAGCCATGACGCCACCACGCTGGTCAATACGTCCGCCAGCATCTCCATCAGCGGCGTGATTCTTTGCGGGCTCATCATCTCCGGCCTGGGTGTCCTCAACGACGTCACCATCACGCAGTCCTCAGCCGTATGGGAACTCTACGAACTCGCCCCCGGCACCAGCGCCCGCAAACTCTTCACCTCAGCCATGCGGATCGGCCGCGACCACATTGCCTCCACTGTCTACACCATCGCCTTCGCCTACGCCGGTGCAGCCCTTCCCATCCTCATCATTGTGATGCTGTACAACCGTCCGCTGGGGGAAACCCTGACCAGCGCCGAGCTGTCCGAGGAGGTCATCCGGACCCTGGTGGGCTCCATTGGACTGGTCCTGGCCATTCCCGTCACCACCCTGATTGCCGTGCTGGTGGTCAAGGCCACCGGTATCCGGACGGCGGGCCAGCCGGAGGCTGCGCTTCCAGCCAACGGCGCAACGGGGGAGAAGGGCACTCCCAGCCCCGGTGCCATCAGCCCCGGCGCCATCAACCCCGACGATGTCGACGATACGGGCGCGCTTGCGGCGGCGGCAGCCAGCAGCCGCTCCAGGCGGGCACCGTCAGATCCTGCCGAGGCGGCCGGCACCCGCCGCGGCCGGCGGGCAGACCGCGGCTGAMGSGHSHASTGHSEPTAQAVAARRKANRILAAVLIPLTLLTLAGMAMLWPSGTKEGISLANPYSAAPGVTFDTGKIQSVVVESCMQGAPSSGSSGGGQPEPGQPGQQAPGQQGSDCTFAFTEPDQGGSPVKVVINPDVAKSHGVKAGDQIRYLNLSNAQGASASQGSPAYIFVDFVRTMPIVFLALLYALVVIAVARWRGLRALIGLVGAYFVLVSFMLPGLVEGKPPLLLALVGSTVIMIGVLYFAHGFSARTSTALLGTMFGLGITALLAAWATDAANLAGVGSHDATTLVNTSASISISGVILCGLIISGLGVLNDVTITQSSAVWELYELAPGTSARKLFTSAMRIGRDHIASTVYTIAFAYAGAALPILIIVMLYNRPLGETLTSAELSEEVIRTLVGSIGLVLAIPVTTLIAVLVVKATGIRTAGQPEAALPANGATGEKGTPSPGAISPGAINPDDVDDTGALAAAAASSRSRRAPSDPAEAAGTRRGRRADRGNANANANANA
D1-29_014951179dusCOG0042putative tRNA-dihydrouridine synthaseGTGACTGTTGTAGCAACGCCTCCCGCCCCCAAGCTGGAACTCCCGCCCCTGAAACTGGGTCCCATCACGGTGGATACCCCCGTGATCCTTGCCCCGATGGCCGGCATCACCAACTCCGCTTTCCGCAGGCTGTGCCGCGAGTACGGCGGCGGCCTGTATGTGGCAGAGATGGTCACCTCGCGCGCCCTGGTGGAGCGCACCCCGGAATCCCTGCGGATCATTTCGCACGACGACGACGAAAAGGTCCGCTCCGTCCAGCTGTACGGGGTGGACCCGGTCACCGTGGGCCAGGCTGTACGGATGCTGGTAGAGGAAGACCGTGCGGACCACATCGACCTGAACTTCGGCTGCCCGGTGCCCAAGGTCACCCGCCGCGGCGGAGGCTCTGCCCTGCCTTGGAAGATCGACCTTTTCACCTCAATCGTCCAGACCGCTGTCAGGGAGGCGTCGAAGGGCGGCGTGCCGTTGACCATCAAGATGCGCAAGGGCATTGACGAGGATCACCTGACGTACCTCGACGCCGGCCGGATCGCCCGTGATTCAGGAGTGGCCGCCGTCGCGCTTCACGGCCGCACGGCGGCGCAGTTCTACTCCGGCCAGGCCGACTGGGATGCCATCGCCCGGCTGCGGGAAGCGCTGCCGGACATCCCCGTCCTGGGCAACGGAGATATCTGGTCGGCCGAGGATGCTGTCCGCATGGTCCGTGAAACCGGCGTCGACGGCGTGGTGGTGGGCCGCGGCTGCCAGGGCCGTCCATGGCTGTTCGGGGATTTGATGGCCGCTTTCGAGGGCAGCGATGAACGCCACAAGCCTGCCCTGCGCCAGGTGGCGGAAGGCGTCTACCGTCATGCCCAGCTGATGATCGAAACCTTCGGCGACGAAGGCAAGGCGCTCCGTGAGATCCGCAAGCACATGGCCTGGTACTTCAAGGGCTACGTGGTGGGCAGCGAACTGCGGACCCGGCTTGCCATGGTGGCCACCCTTGAGGGCCTCAAGGAGACCCTGGACGAGCTGGACCTGGACTCGCCCTATCCCGGCGTTGACGCCGAAGGGCCCCGCGGCCGTGCGGGTTCACCCAAGAAGCCGGCACTGCCCAAGGACTGGCTTGACTCCCGTGCCCTCAACGACGCCCAGTCCCAGGACATCTCCGCCGCGGAACTGGACGTCTCCGGTGGCTGAMTVVATPPAPKLELPPLKLGPITVDTPVILAPMAGITNSAFRRLCREYGGGLYVAEMVTSRALVERTPESLRIISHDDDEKVRSVQLYGVDPVTVGQAVRMLVEEDRADHIDLNFGCPVPKVTRRGGGSALPWKIDLFTSIVQTAVREASKGGVPLTIKMRKGIDEDHLTYLDAGRIARDSGVAAVALHGRTAAQFYSGQADWDAIARLREALPDIPVLGNGDIWSAEDAVRMVRETGVDGVVVGRGCQGRPWLFGDLMAAFEGSDERHKPALRQVAEGVYRHAQLMIETFGDEGKALREIRKHMAWYFKGYVVGSELRTRLAMVATLEGLKETLDELDLDSPYPGVDAEGPRGRAGSPKKPALPKDWLDSRALNDAQSQDISAAELDVSGGNANANANANA
D1-29_014961290dgtCOG0232Deoxyguanosinetriphosphate triphosphohydrolase-like proteinGTGGCTGAAACCAGGACTACCGCACCTGTCCTGCCCGGCTATGAAGTCCATGACTTCGCCCGCTGGGTGGAGGAACCGCCCAAAAACACCTACCGATCTGACTTCGAGCGGGACCGCGCCCGGGTGCTGCACTCCTCCGCGCTGCGCCGCCTCGGCGCCAAGACTCAGGTGGTGGCACCGGACACCGATGACTTTGTCCGGACCCGGCTGACCCACAGCCTGGAGGTGGCGCAGGTGGGCCGGGAACTGGGCCGTGCCCTGGGCTGCGACCCGGACGTGGTGGACACTGCCTGCCTCAGCCACGACCTGGGCCATCCTCCCTTCGGGCACAACGGCGAGTCCGCCCTGAACGAGGTGGCCCACGGCATCGGCGGGTTCGAAGGGAACGCCCAGACGCTCCGGCTGCTGACGCGGCTGGAGCCCAAGGTCCTGGCCCTGGACGGCCGCCCCGCCGGACTCAACCTCACCCGCGCCAGCCTCGACGCGGCGGCCAAATACCCCTGGTCCGCTTTGGAGGCGCCCGTCATCCATGGGCAGCGCACCAGCAAGTTTGGCGCCTACGAGGACGACCTGCCCATCTTCAACTGGATCAGGGAGGGCGCCCCGGTACGGCGCTCCTGCCTGGAGGCCCAGGTCATGGACCTCGCCGACGACATCTCCTACTCCGTCCACGACGTCGAGGATGCGATCGTTGCCGGGCACTTCCAGCTGCGCTGGATGGATAACCCGGACCACCGGGCCCGAGTGGTGGGCTACGCCAAACAGTGGTACCTCCCGCACAATGACCCCGCGGCCATCGACGCCGCACTCGGCCGGCTGGAGGCAACCGAGGTCTGGGTACGGGAGGCCGATGGCAGCCGCAAATCCATGGCCGCACTGAAGAACATGACCAGCCAGCTCATTGGCCGGTTCTGCCAGAGCGCCCTGGAGACCACCCGCGCGGTATATGGTCCGGAAGACCTCACGCGGTACAACGCCGAGCTGATGGTCCCGGACGAGACCGTGATGGAAATCGCGGTGATGAAGGGCCTGGCCACCACCTTTGTGATGACCACCGAACACCGCCAGCCCATTTACGAGCGCCAGCGGGAAGTGCTGCATGCGCTTGTCACGGCGCTGAGCGCCACCGGCGACCGGCACCTGGAACCGATGTTCGCGGCGGACTGGCGGGACGCGGCCGACGACGGCGCACGGCTCAGGGTGATTATTGACCAGGTGGCTTCGCTGACCGACGGTTCCGCTCTGGCCATGTACGAACGGCTGGTGGGCAGCCTGCCCTCGCTGTGGTGAMAETRTTAPVLPGYEVHDFARWVEEPPKNTYRSDFERDRARVLHSSALRRLGAKTQVVAPDTDDFVRTRLTHSLEVAQVGRELGRALGCDPDVVDTACLSHDLGHPPFGHNGESALNEVAHGIGGFEGNAQTLRLLTRLEPKVLALDGRPAGLNLTRASLDAAAKYPWSALEAPVIHGQRTSKFGAYEDDLPIFNWIREGAPVRRSCLEAQVMDLADDISYSVHDVEDAIVAGHFQLRWMDNPDHRARVVGYAKQWYLPHNDPAAIDAALGRLEATEVWVREADGSRKSMAALKNMTSQLIGRFCQSALETTRAVYGPEDLTRYNAELMVPDETVMEIAVMKGLATTFVMTTEHRQPIYERQREVLHALVTALSATGDRHLEPMFAADWRDAADDGARLRVIIDQVASLTDGSALAMYERLVGSLPSLWPGPT0021495_1941DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129NANA
D1-29_014971935dnaGCOG0358DNA primaseGTGGCTGGCCTGATCAAACGTGAAGATATCGACGAAGTACGCCAGCGCACGGACATCAAGGAAGTGGTTGACGGCTACGTCACGCTCAAGAGTGCCGGCCTGGGAACGTTCAAAGGACTGTGCCCATTCCATGACGAGCGCTCGCCGTCGTTCACTGTCCGCCCGCAGGTAGGCAGGTACCACTGCTTTGGCTGCGGCGAGGACGGGGACGTCATTGCGTTTGTCCAAAAGCAGGACCACACCTCCTTCCACGAGGCCGTGGAAAAGCTGGCCGCGCGCATCGGCTACGAGCTCCGCTACGAAGACGGCGGCACCGGCCCCAACCGGGAGGAAGTGGGCAAGCGTCAGCGGCTCCTGGACGCGCACAAGATTGCCGACGAGTTCTTCCGCGCCCAGCTGCTCACCCCCGGCGCCGCAGAGGGCCGCAGCTTCCTGCACGGCCGCGGCTTTGACCGCGCCGCCGCCGAACAGTTCGGCGTCGGCTATGCGCCGCAGGGCTGGGACGCCCTGCTCAAGCACCTCCGCGGCCGCGGCTTTACGGACCAGGAACTGAAATTGACGGGGATGTTTTCCGAAGGAAACCGTGGCATCTATGACCGGTTCCGCGGCCGCCTGATCTGGCCCATCAGGGACATCGCGGGCGACACCATCGGCTTCGGCGCCCGCAAGCTCTACGAGGACGACCAGGGCCCCAAATACCTGAACACCCCGGAAACCACGCTCTACAAAAAGTCCCAGGTCCTCTACGGGATCGACCTCGCCAAGCGGAACATCGCCAAGGACCGCCAGTTGGTGGTGGTGGAGGGCTATACCGACGTCATGGCATGCCACTTGGCGGGAATCCCGACGGCGGTGGCCACCTGCGGTACAGCGTTCGGCACCGAACACATCAAGATCGCCCGCCGCCTGCTGTCTGACGACGGCACCGGCGGAGAAGTGGTCTTCACCTTCGATGGCGACGCTGCCGGGCAGAAGGCGGCCCTGCGGGCCTTCGACGAGGACCAGCGCTTTACCGCCCAGACCTACGTGGCCGTGGAGCCCACCGGTGCGGATCCCTGCGAGCTGCGCCAGAGCAAGGGTGACGCCGCGGTCCGGGACCTTATCAGCGCACGCCGTCCGCTGTTCGAGTTTGCCATCCGGGCAACCCTGAAGCGGCACAACCTGGACACCGTTGAGGGCCGCGTGGCGGCACTTCGTGAATCCGCTCCCGTGGTGGCCCAGATCCGGGATGCCGGCATCAGGCCCGCCTACGCGCGGGAACTTGCGGGTTGGCTCGGCATGTCCGTCGAGGATGTCAGCAGGGCGGTCGGCGTGGCTATGAAGCGGGCCACGGAGGCTCCGCCGGCCGCACCGGGAGCTTCGGCCGCCGCGGGAGGTGGCCAGGCCCAGGGGAGGCCGGCGCAACCCGGCGGCCCCGGCGTAGCTGCCGGACCGGCGTCGGGCGCTGTTCCTTCCTATCACCGTCCGGACCCGCGGGATCCCGTTGCCTCCATGGAGCGGCAGGCGCTGGAGGTGGCGCTGCAGGAGCCCGCGCACCTCGGCGGCGGCATCTGGGAGCGTTTCGCGGCCGTGAGGTTCGCCACACCGGCTTTCCAGGCAGTCCACGACGCCATGCGGGCAACGGGCCCTGGCCTCACGGAAGATCCCGTCCGCTGGGTGGAACAGATCATGCATGAAGTGCCTGAGCCGCTTCGAGGGCTGGTATCGGAGCTTGCCGTGGTTCCGCTGCCGGCCAGCACCGCGGAAGCCGTCCAGAAGTACTGCAAGGACATTCTGTCGAGGCTGTTCGAGCTGCAGATCACGCGGGTGAAGGCGGACAAGATGGGCCAGCTGCAGCGGCTCGATCCTGCCTCTGACCCGGAGGCATTCCAGCGCTTGAACCGGGAACTGATGATGCTTGAGATGGAGCGCCGGGCGCTGCGCTCGGATGCCTGAMAGLIKREDIDEVRQRTDIKEVVDGYVTLKSAGLGTFKGLCPFHDERSPSFTVRPQVGRYHCFGCGEDGDVIAFVQKQDHTSFHEAVEKLAARIGYELRYEDGGTGPNREEVGKRQRLLDAHKIADEFFRAQLLTPGAAEGRSFLHGRGFDRAAAEQFGVGYAPQGWDALLKHLRGRGFTDQELKLTGMFSEGNRGIYDRFRGRLIWPIRDIAGDTIGFGARKLYEDDQGPKYLNTPETTLYKKSQVLYGIDLAKRNIAKDRQLVVVEGYTDVMACHLAGIPTAVATCGTAFGTEHIKIARRLLSDDGTGGEVVFTFDGDAAGQKAALRAFDEDQRFTAQTYVAVEPTGADPCELRQSKGDAAVRDLISARRPLFEFAIRATLKRHNLDTVEGRVAALRESAPVVAQIRDAGIRPAYARELAGWLGMSVEDVSRAVGVAMKRATEAPPAAPGASAAAGGGQAQGRPAQPGGPGVAAGPASGAVPSYHRPDPRDPVASMERQALEVALQEPAHLGGGIWERFAAVRFATPAFQAVHDAMRATGPGLTEDPVRWVEQIMHEVPEPLRGLVSELAVVPLPASTAEAVQKYCKDILSRLFELQITRVKADKMGQLQRLDPASDPEAFQRLNRELMMLEMERRALRSDANANANANANA
D1-29_01500408hypothetical proteinGTGCCCAGCTGGCAGGACCAACCGCCACTCCCGGCCACGTGGCAACGGTGCGACTCCGGCATTTTGCCTCTGTGGTGGGAACGGTTGTGCGCCCAGACCGGCGAACAGTCAGCAGCGCTCTATGCGGCCGGGCTCTTCACCGAAGACCGGAGGCGGCCCATCGCCCAGTGGTACAACCCCGCCTTCAATGCCGCGCTCTTGGTGGCGCCTGAGACCTCGCCGGAGTGGCCTGTGCAGCGGTTCGGCATCTTTTACGCTCCCCCGGATTCCGGTTTTGTCCGGGTCCATTCTGCTCACCACGAATGGCATCCGCGCCAGCCGCGTAAGTCCCCCACCGAGCAGGAGGCTTTCCTGGCGGCAATAGCCGAGGCCGAGCGTTTCCTGCAGGTTGAAATGGACTTCGTCTGAMPSWQDQPPLPATWQRCDSGILPLWWERLCAQTGEQSAALYAAGLFTEDRRRPIAQWYNPAFNAALLVAPETSPEWPVQRFGIFYAPPDSGFVRVHSAHHEWHPRQPRKSPTEQEAFLAAIAEAERFLQVEMDFVNANANANANA
D1-29_01501180hypothetical proteinATGAAACACACACCGCACCGGAACCGAAGGGGACTCTTCCTCGGAGCGGTGCTGGGCGCCGTCGCAGGCTATTTTGCCGGCCGTGCCCTGGGCAACCCGGCCATCGGGATCATCCTGGGAATGCTGGCCGGCGCTGCCCTGCTGTACCGCGTCAACCCTGGCCCGTGGAACCGGCCCTGAMKHTPHRNRRGLFLGAVLGAVAGYFAGRALGNPAIGIILGMLAGAALLYRVNPGPWNRPNANANANANA
D1-29_015021224bcr_3Bicyclomycin resistance proteinGTGACCATTCCCACCAACCCGGGCGATTCGCTGAGCCGCCGGCGGAAACTTCTGTACATCCTTTTGCTCGGTGCACTCACCGCTTTGGGCCCCTTCACCATCGATCTGTATCTTCCGGCCTTTCCCGCGCTCGAGGCCAGCCTGGGGGTATCCGAGGCGGAGGTTCAGCTGACCCTCGCGGGTACTACGGTGGGCTTTGCCCTGGGCCAGCTGGTGGTGGGCCCCTTTAGCGACAAGTTTGGCCGGCGGTTTCCCCTGATCCTGGCCACAGCCGTGCACATCGCCGCCTCACTGGGGGCAGCCATCTCCACAGACATCGCCTCCTTGGGACTCTTCCGCGTCCTGATGGGGGTGGGCGCCGCCGGCGGTGGAGTTGTTGCCATGGCAATGGTCCGCGACCTGTTCTCCGGGTATGCGATGGTGCGGATGTTCTCCCGGATGGCACTTGTCAACGGGCTGGCACCCATCCTGGCTCCGGTCATCGGCTCCCAACTCCTCCTGGTGATGCCCTGGCCGGGGATTTTTGTGTTCCTGGCCGCCTACGGCACGCTGGTGGTCATCGCTGCCCTCTTCCTGGTCCGCGAAACCCTGCCGCCCGAAAAGCGCGGCCAGTCAGGCCTGACGGCCGGCCAACGCTACCGGGTCCTTTTCACGGACCGGATCTTTGTGGGCCTCCTGCTCCTGGGCGGAATGAACTTTGCCGGCCTGTTTACCTACCTCTCCGCCTCACCGTTCCTTTTCCAGGACATCTTCGGCTTCTCTCCCCAGCAGTACGGACTCCTCTTCGGCATCAACTCGCTGGGCATCGTGGCCGGCGTGCAGACAAGTTCCAGGCTGATCAGGCGAATCCCGCCGCAATGGATCCTCGCCTGTTCCACCGCCTGGATGTTCATAATGGCCCTGCTGATCGTGATTTTCGATCAAATGGGACTGGGGCTGTGGGGCGTGATGGTGCCGCTGTGGTTCTACATCCTCGGGACGGGTTTTACTTTTCCCTGTGTGCAGGTGCTGGCGCTGGCAAACCACGGCGACAAGGCCGGCACCGCGGCCTCCCTCCTGGGGGCCGCGACGTTCCTGATGGCCGGGCTGATCTCACCGGTGGTGGGCTGGCTGGGGATTGAAAGTTCCACTCCCATGGGCGCGGTCCAGGCCGCCTGCATCCTGCTCTCCATCGCCGCGCTGTGGCTGGTGGTCAGGCCCCGCACCGTCCCGTCCATCCACTGAMTIPTNPGDSLSRRRKLLYILLLGALTALGPFTIDLYLPAFPALEASLGVSEAEVQLTLAGTTVGFALGQLVVGPFSDKFGRRFPLILATAVHIAASLGAAISTDIASLGLFRVLMGVGAAGGGVVAMAMVRDLFSGYAMVRMFSRMALVNGLAPILAPVIGSQLLLVMPWPGIFVFLAAYGTLVVIAALFLVRETLPPEKRGQSGLTAGQRYRVLFTDRIFVGLLLLGGMNFAGLFTYLSASPFLFQDIFGFSPQQYGLLFGINSLGIVAGVQTSSRLIRRIPPQWILACSTAWMFIMALLIVIFDQMGLGLWGVMVPLWFYILGTGFTFPCVQVLALANHGDKAGTAASLLGAATFLMAGLISPVVGWLGIESSTPMGAVQAACILLSIAALWLVVRPRTVPSIHPGPT0029005_1758DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-29_01503855hypothetical proteinATGAGCGGACGTCACAGCGGGCGGACCAGCCAGGGGCTGCGCCTCACCGCGCTGCCCAAAACGCTAAAACTCCTCGTCCGGCTGGCGCCCCGCCAGCTCAATGATGAGATCGCCCTCGCCAAGGTGGAGATCAAGCGCAAGGGCGTGCAGCTCGGAGTTGCCGCGGCGTTTATGGCCGTTGCCGTTATTTTTGTCGCGTTCCTTGTGGTGGGGCTCATTGTTGCCGCCATCATGGGGCTGGCCACCATCATGCCCGCCTGGCTGGCCGCCCTGCTGGTCTGTGCAGCCTTCCTGCTGATTGCTGCGATCGGGGGCCTGATCGGCCTCCGCAAATTCAAGAAGGCCATGCCACTGATGCCCGAGGAAACCCTTCGCGGAATCCGGCATGACATCGGTGTAGCCAAGGAAGGGTCAGACTTCAATGCCGCCATCCTTGATCCCGCCAGCCCGGAGGCAAAGGCCGCCAAGGCGGCCAAGGATGAAGCCGCAGCCAAGGCCAAAGCAGAGAAGAAAGCCAAGGCAGAGGCCCACGACAAGGAATACCCGCACGCTTCCGAACCTGAATTGCACCGCCGCCTGCATCAGCGGCGCAACCACCTGGCCCAAGCCCGCGACGAGCTCGACACGGAGCTCGACGTCAAGACGCAGGCCAGCTTCCTCTTGGCCGCAGCGCAGGACAAGCTGAGGGAGGGCCAGTCGCTGGTTGACCACGGCAAGGACTTCGCCGGCCAGAAGTTGGCCGCACTTTCCGAAAAGACAGGCGGGGCCGCGCCCCGGTGGAAGCCCCTGGCAGCCTTTGCTGCCGCCGCCACTGTTTTTGCTGTGCTGCTCCGCAAGCTGCTGAAGGATTTGTAAMSGRHSGRTSQGLRLTALPKTLKLLVRLAPRQLNDEIALAKVEIKRKGVQLGVAAAFMAVAVIFVAFLVVGLIVAAIMGLATIMPAWLAALLVCAAFLLIAAIGGLIGLRKFKKAMPLMPEETLRGIRHDIGVAKEGSDFNAAILDPASPEAKAAKAAKDEAAAKAKAEKKAKAEAHDKEYPHASEPELHRRLHQRRNHLAQARDELDTELDVKTQASFLLAAAQDKLREGQSLVDHGKDFAGQKLAALSEKTGGAAPRWKPLAAFAAAATVFAVLLRKLLKDLNANANANANA
D1-29_01504624pgsA2_1COG0558Putative cardiolipin synthaseATGAGGATTATTGGCGCTGGCTCCCGTCCGGGCCGCCCGCACGTTGACCACGACCGCGTGTTGACCGTGCCCAACGTGCTCACCGTCCTGCGCTTTATGGGTGTGCCGATCTTCATTTGGCTGGTCCTGGCCCGGCAGGAGTACGGCTTCGCGGTCCTGGTGCTGGCGATCATGGCCGGCACGGACTGGGTGGATGGCTATGTGGCCCGCCGTTTTGACCAGGCTTCCAAGCTGGGCCGCGTGATGGATCCGATCGCTGACAGGCTGGCACTGATTGCAGTTGCCATCACGCTGGTGATCGCCGGCGTTGTCCACTGGCTTTACCTTGCCGCACTCGTGGTCCCGGATGCTGTTCTTCTGGTCCTGACGCTCTCCTACTTCCACGGCCACCCCGACCTGCCAGTGAGCCTGATCGGAAAGATCCGGACCGGCCTCCTGCTCCTGGGCACACCCCTGCTGGTCCTGTCCCGGCTGGACGTCCCGTTTGCAGATGCTCTTTTCGTTGCAGCCTGGGTCGTGCTGGGCCTGGGCCTGACCGGTCACTGGATTGCCGCGTACAACTATTTCTGGGCCATCCTGCGGAAGGGCAGAATGCAATCACATCACGACGGCGGCACCGCCTGAMRIIGAGSRPGRPHVDHDRVLTVPNVLTVLRFMGVPIFIWLVLARQEYGFAVLVLAIMAGTDWVDGYVARRFDQASKLGRVMDPIADRLALIAVAITLVIAGVVHWLYLAALVVPDAVLLVLTLSYFHGHPDLPVSLIGKIRTGLLLLGTPLLVLSRLDVPFADALFVAAWVVLGLGLTGHWIAAYNYFWAILRKGRMQSHHDGGTAPGPT0007735_844DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007735-pgsA-K08744NANA
D1-29_01505909hypothetical proteinATGGTCTGGGTAGCTGTCCTGCTCGCGGTGCTTGGCGCTTTTTTCCTTGCGTTCGGAGCCCAGAAACAGGGGAGTGCTGTCAAGGCCGATACGGGCGGCCTGGCGCTGAGCTCCAACGGTTTTCTTCGCCTGCTGCGCAATCCGCGGTGGATGCTGGGCCTGCTCCTGCTGTGCACCGGAATGGGCATGAACGCGATTGCCCTGGTGTCCGCACCGCTGACGGTTGTCCAGCCCATCGGCGCCATCGCACTGGTCATCACCACCGTTGTCAACGCCAGGGACCAGGACCTGACCATTAACCGCGCCACGGTGGTAGCCATCGCAGCCTGCGTCACGGGGTCCGCGCTCTTTGTGCTCCTTGCCGTGAATGCGACCCAGGAAAACCATCACGTCGGCCAGGCGGACGAGCTCACCATTGTGCTCCTGCTGGCACTGGCGGTCGGTCTGTTCGGCACGCTTGCGGTGATGTTCAGGCATCGGATGAGTGCCTTCATCTACATTATTGGCGCCGGCGTCCTGTTCGGCTTCGTGGCAGTGCTGACACGGATTATCGGCAAGCACCTCCTGGACCCCAACGGCCTGGCACTGCTTAACGTCCCTTGGTATTCGGTGGTGGCCATCGCCGCGGCCGGCGGGCTTGGTTCCTGGTTTGTGCAGAACGCCTATTCCGGCGGACCGCCGGACCTGGTCATTGCCGGGCTCACTGTCATCGATCCGATTGTGGGCATCGCGATAGGCATCGTTATCCTCGGTGAACTGCGTCCGGACGTCCATGCCGTAACGGCAATTGCGATGGCCGCTGCTGCTTCGCTTGCTATCGTTGGGGTAATCGCCCTCTCCAGGCACCACCCCGAGGTCACCAAGCGCAGGAAAGACGCGCGGAAGGCCGTGGGCAGGGCGTCCCGCTAGMVWVAVLLAVLGAFFLAFGAQKQGSAVKADTGGLALSSNGFLRLLRNPRWMLGLLLLCTGMGMNAIALVSAPLTVVQPIGAIALVITTVVNARDQDLTINRATVVAIAACVTGSALFVLLAVNATQENHHVGQADELTIVLLLALAVGLFGTLAVMFRHRMSAFIYIIGAGVLFGFVAVLTRIIGKHLLDPNGLALLNVPWYSVVAIAAAGGLGSWFVQNAYSGGPPDLVIAGLTVIDPIVGIAIGIVILGELRPDVHAVTAIAMAAAASLAIVGVIALSRHHPEVTKRRKDARKAVGRASRNANANANANA
D1-29_015061197mgsCOG0438Alpha-monoglucosyldiacylglycerol synthaseGTGACAACGCCCGCTGACCAGCCACCCCTGACTATCCTGATTGCCGCGGATACGTATCCGCCGCACATCAACGGAGCCGCCACCTTCGGCTATCGCCTGGCCAAGGGTATGACCGGGCGCGGGCACAACGTGCACGTACTGGCCTGCCGCGCTGACGACGGCAAGAGCTTCACGGAGTTCCGGTCTGAAGGCACCGTGCACCGGCTTCGCTCACACGGGGTGTGGACCCATGAGTACTTCCGCATCTGCTTTCCGTGGGAAATCAAGAAGGAAATCAGCCTCCTGTTTGACCGCATCAAGCCGGACGTTGTGCATATCCAAAGCCACTACATGATCGGCGAGCATGTTCTCTACGAGGCCAAAAAGCGTGGCATCAGGATCGTGGCCACCAACCACTTTATGCCGGAGAACCTGAATCCTTTCCTGCCCTTCCCGCAGTGGTTCAAAGACATCATCGGCCGCATCTCGTGGAAGGACATGGGCAAGGTCATGGAGAAGGCAGACGTCATCACCACGCCCACGCCGCTGGCGGCGAAGGCCATGCACCAGCACGCCTTCCTTCGTAAGGTCCTGCCGCTGTCCAACGGGATCGACTCTTCGGCCTATGAACTGAAGCCGGGGGAGGTCATCGAACGCAATCCCTACCCCACCGTGGTGTTTGTTGGACGTCTCGCCGAGGAAAAGCATGTGGATGTGCTGATCAAGGCTGTCTCCAAGACGCCGCCCGAGCTCAACGTCCACCTCGAAATCGTGGGCGGCGGCGAGGTGCGCCCGGCGCTTGAGGCCTTGGTTGACAGGCTGGGCCTGGGGGAGCGGGTGAAGTTCCTGGGGCTTGCCAGCGACGAGGAGCTTCGCGAGACCTACATCAAGGCGGACCTGTTCTGCATGCCCGGCACGGCCGAGCTGCAGTCACTGGTGACCCTGGAGGCGATGTCGGCGTCAACGCCTGTGCTGCTGGCGGATGCCATGGCGCTTCCACACCTGGTACGGGATGGGGAGAACGGCTTCCTGTTCACGCCCAACGACAGTGACGACCTCTCGGCCAAGGTCACCAAGATCCTCCAGCTGCCGCCCGAGCAGCTTGCCGCCATGGGCCGGGCCAGCCGCAGGATGGTGGAACCTCACAGCATGCAGGGCACCCTGCAGACCTTCGAGGATCTCTACCGGGGTGCCGGCTTCGAGGACAAAGTGGTCTAGMTTPADQPPLTILIAADTYPPHINGAATFGYRLAKGMTGRGHNVHVLACRADDGKSFTEFRSEGTVHRLRSHGVWTHEYFRICFPWEIKKEISLLFDRIKPDVVHIQSHYMIGEHVLYEAKKRGIRIVATNHFMPENLNPFLPFPQWFKDIIGRISWKDMGKVMEKADVITTPTPLAAKAMHQHAFLRKVLPLSNGIDSSAYELKPGEVIERNPYPTVVFVGRLAEEKHVDVLIKAVSKTPPELNVHLEIVGGGEVRPALEALVDRLGLGERVKFLGLASDEELRETYIKADLFCMPGTAELQSLVTLEAMSASTPVLLADAMALPHLVRDGENGFLFTPNDSDDLSAKVTKILQLPPEQLAAMGRASRRMVEPHSMQGTLQTFEDLYRGAGFEDKVVPGPT0023395_600DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-LIPOTEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023395-mgs|bgsB-K19002NANA
D1-29_015081191mmgC_2COG1960Acyl-CoA dehydrogenaseATGTCCAAAGCCGCTTTTGACATCAACAGCCTTCCGTACGCCGACGGTGACTTCTTCGCCTTCGAGCAGCTGCTCACCGCAAAGGAGCAGGACCGGCTCGCCGAGATCCGCGGGTTCCTGGAGCGTGAAGTCCGCCCCATTGCCGTGGACTGCTGGAACCTGGGCGAATTTCCGATGGAGCTCATTCCCAAGCTTGCCGAGATTGATCTCGTCAGTCCGGTCAGGCGGCAGGGGAATTCGAACCTCTTCGCCGGCCTGGTCCATGCCGAGGTCACCCGGGCTGATACGTCCATTGCTACCTTTATGGGTGTCCACGACGGCCTGTTCACGGGGTCCATTGAGGCGCTTGCCTCGCAGGAGCAGCAGGAAGCCTGGCTTCCGGACATCTATTCGTTGAAGAAGATCGGTGCATTCGGGCTCACTGAGCCGCTCGGTGGTTCCGACGTCGCCGGCGGTACCCGGACCACCGCGCAGAAGGACGGGGACACCTGGATCCTGAACGGTGCCAAACGCTGGATCGGCAACGCCACTTTCTCCGACTGGGTGGTCATCTATGCGCGGGACCTGGCCGACAATCAGGTCAAGGGCTTTCTGGTGGACACCTCGCTCGAAGGATTCAGCACAACAAAGATCGAGAACAAGATTTCCCTGCGGACCGTCCAGAACGCGGACATCGTCCTGGACAACGTGGTTGTTCCCGAATTCTTCAAGCTTGCCAACGCCAATAGCTTCCGCGACACCAACAAGGTACTCAAGGTCACCCGCCTGGGGGTTGGCTGGCAGGCCGTAGGGCAGCAGTTGGCCGCGTTCGACGTAGCCCGGCGCTATGCCGTGGAGCGCCATCAGTTTGGCCGTCCGCTGGCGTCCTTCCAGCTGGTCCAGAGCCAGCTGGTCCAGATTCTCGGCAACGCCGTGAGCTCCATGGGCATGATGGTGCGGCTTTCCCAGCTTGAGGACGCAGGCCTGGCGAAGGATGAACAGTCCGCGCTGGCCAAGGCCTTCACCACCGCCAGGATGCGCGAAAGCGTCGCGATCGGGCGGAGCCTGCTGGGTGGCAATGGCATTGTCACCGACTTTGAGATGGCCAAGATCTTTGCGGATGCGGAAGCCATCTACTCCTATGAGGGGACCCATGAGGTCAACACCCTGGTGACAGGCCGAGCCATCACCGGCATCTCCGCGATCGTCTAGMSKAAFDINSLPYADGDFFAFEQLLTAKEQDRLAEIRGFLEREVRPIAVDCWNLGEFPMELIPKLAEIDLVSPVRRQGNSNLFAGLVHAEVTRADTSIATFMGVHDGLFTGSIEALASQEQQEAWLPDIYSLKKIGAFGLTEPLGGSDVAGGTRTTAQKDGDTWILNGAKRWIGNATFSDWVVIYARDLADNQVKGFLVDTSLEGFSTTKIENKISLRTVQNADIVLDNVVVPEFFKLANANSFRDTNKVLKVTRLGVGWQAVGQQLAAFDVARRYAVERHQFGRPLASFQLVQSQLVQILGNAVSSMGMMVRLSQLEDAGLAKDEQSALAKAFTTARMRESVAIGRSLLGGNGIVTDFEMAKIFADAEAIYSYEGTHEVNTLVTGRAITGISAIVPGPT0021815_1519DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-29_01509564hypothetical proteinATGAAAGCACCAGCACTCCTCGCCGCCCTGCTTCTGCTGCCTGCATCGGTGGCGCCCTCCGGCGAAGTCCTTTCACCGGGCGGAATCACATCCGGAACGCAGTCCCCAGAGCTGCGTCAAGGTACCGGTCCGGGCGCGGCACGTCCCTCCTGGGCCTGGCCGCTCGCTCCGAAGCCGGAGGTGCTGCGGACCTTCGACCCACCGGACAAGCCGTGGATGAGCGGCCACCGGGGAGTGGACCTAGCCACAATCCACGACGGCGCCCAGCTCACCTCCCCGGCGCCCGGAACGGTCAGCTTTGTAGGTGTGGTGGTTGACCGCCCGGTCATCACCATCGATCACGGGAACGGATTGCGCAGCAGTTTTGAACCCGTGCAGAGCGATCTGGCCGCCGGGGCTGTAGTCGCCAAGGGCCAACCTATAGGCACCGTACTCCCGGGGCATTGCAGGTCCGGCCCGTGCGTCCATTGGGGCGTCAGGGAGGGGGATGAGTATGTCAATCCGCTGCAGTTCGTCATGGACCTCCGCCCATCCGTCCTGCTTCCCCGCAGCGGAGCTCCCTAAMKAPALLAALLLLPASVAPSGEVLSPGGITSGTQSPELRQGTGPGAARPSWAWPLAPKPEVLRTFDPPDKPWMSGHRGVDLATIHDGAQLTSPAPGTVSFVGVVVDRPVITIDHGNGLRSSFEPVQSDLAAGAVVAKGQPIGTVLPGHCRSGPCVHWGVREGDEYVNPLQFVMDLRPSVLLPRSGAPNANANANANA
D1-29_01510879rpsBCOG005230S ribosomal protein S2ATGCCCGTCGTAACTATGCGCCAGCTGCTTGACAGCGGCGTCCACTTTGGACACCAGACCCGCCGTTGGAACCCGAAGATGAAGCGATTCATCTTCACGGAGCGCAACGGCATCTACATCATTGACCTTCAGCAGTCGCTGTCCTACATCGACCGCGCCTACGAGTTCGTGAAGGCCACCGTTGCGCACGGTGGCACCGTACTCTTCGTCGGCACCAAGAAGCAGGCTCAGGAATCCATTGCTGAGCAGGCAACCCGTGTTGGCCAGCCCTACGTGAACCAGCGCTGGCTCGGCGGTATGCTGACCAACTTCCAGACCGTTTCCAAGCGCATCCAGCGCATGAAGGAACTGGAAGAGATCGACTTCGACGACGTCGCCGGCTCCGCGTACACCAAGAAGGAACTGCTGCTCCTTCGCCGTGAACTCACCAAGCTGGAGACCAACCTCGGCGGTATCCGCAACCTGACCAAGGCACCCTCCGTGCTGTGGATCGTGGACACCAAGAAGGAACACCTCGCCGTTGACGAGGCAAAGAAGCTGAACATCCCGGTTGTTGCCATCCTGGACACCAACTGCGATCCCGACGAAGTCGATTTCCCGATCCCGGGCAACGACGACGCCATCCGTTCCGTGAACCTGCTGACCCGCGTTGTTGCTGACGCTGTTGCCGAGGGCCTGATCGCCCGCAACCAGCGTGCAACCGGCACCACTGAAGCTCCGGAAGAGCCGCTGGCCGAGTGGGAGCGCGAGCTCCTCGAAGGCAGCAAGGCTGAAGAGGCCGCTCCGGCTGCTGAAGCTGCTCCCGCTGCCGAGGAAGCTCCGGCTGCCGAGGAAGCTCCGGCCGCTGCCGAAGCTCCCGCTGCCGACGCCGACAAGTAAMPVVTMRQLLDSGVHFGHQTRRWNPKMKRFIFTERNGIYIIDLQQSLSYIDRAYEFVKATVAHGGTVLFVGTKKQAQESIAEQATRVGQPYVNQRWLGGMLTNFQTVSKRIQRMKELEEIDFDDVAGSAYTKKELLLLRRELTKLETNLGGIRNLTKAPSVLWIVDTKKEHLAVDEAKKLNIPVVAILDTNCDPDEVDFPIPGNDDAIRSVNLLTRVVADAVAEGLIARNQRATGTTEAPEEPLAEWERELLEGSKAEEAAPAAEAAPAAEEAPAAEEAPAAAEAPAADADKNANANANANA
D1-29_01511837tsfCOG0264Elongation factor TsATGGCGAACTACACTGCCGCTGATATCAAGGCTCTGCGCGAGCGCACGGGCGCCGGCATGATGGATGTCAAGAAGGCTCTTGACGAGGCCAACGGTGACGCCGAGAAGGCCATCGAAATCATCCGCATCAAGGGCCTGAAGGGCGCTACCAAGCGCGAAGGCCGCTCCACCGCCGAAGGCCTGGTGGCCGCCAAGGTCAACAACGGCGTCGGCGTGATGATCGAAGTCAACTGCGAGACCGACTTCGTTGCCAAGGCTGACAAGTTCATCCAGCTGGCCGACCGCGTTCTGGCCGTTGCCGTTGAGTCCGGCGCTGCCGACCTCGACACCCTTCTGGCCACCGAAGTTGACGGCAAGCCGCTGTCCGAGGTCGTCGTCGAAGAGGGCGCAGTACTGGGCGAAAAGGTTGTTGTCCGCCGGATCTCCCGCATTGAGGGCGGCACGGTAGATGCTTACCTGCACAAGACCTCCAAGGACCTCCCGGCCCAGGTTGGCGTCCTGTTCGCTGTTGACGGCGAAGGCGAAGCTGCCACCACCGCAGCCCACGACGTTGCAGTCCACATCGCAGCCATGGCGCCGAACTACCTGACCCGCGAAGACGTTCCGTCCGAGCTGGTTGAGTCCGAGCGTCGCATCGCTGAAGAGACGGCCAAGGCCGAAGGCAAGCCCGAGGCTGCCCTCACCAAGATCGTGGAAGGCCGCGTGACCGGCTTCTACAAGGGCGAGGTCCTGGTTGACCAGGCATTCGCCAAGGATGCCAAGAAGTCTGTGGCCCAGGTCCTCGAAGAGGCCGGCGTCAAGGCAACTGCGTTCTCGCGTTTCCGCGTCGGCTCCTAGMANYTAADIKALRERTGAGMMDVKKALDEANGDAEKAIEIIRIKGLKGATKREGRSTAEGLVAAKVNNGVGVMIEVNCETDFVAKADKFIQLADRVLAVAVESGAADLDTLLATEVDGKPLSEVVVEEGAVLGEKVVVRRISRIEGGTVDAYLHKTSKDLPAQVGVLFAVDGEGEAATTAAHDVAVHIAAMAPNYLTREDVPSELVESERRIAEETAKAEGKPEAALTKIVEGRVTGFYKGEVLVDQAFAKDAKKSVAQVLEEAGVKATAFSRFRVGSNANANANANA
D1-29_01512738pyrHCOG0528Uridylate kinaseATGGAAGCCGTCAATAGTTCAATCCAGCCAGAGAAGAGCAGGCGACGCGTCCTGCTTAAGCTGTCCGGTGAGGTCTTCGGCGGCGGAAAGCTGGGCGTTGATCCCGAAACCGTCCGCGACGTCGCCAAGCAGATCGCTGCAGCCATCCCGGAAGTGGAGGTAGCCATCGTCGTTGGCGGCGGCAACTTTTTCCGCGGTGCCGAACTGTCCCAAAGCGGTATGGACCGGTCGCGGGCAGATTACATGGGCATGCTCGGCACAGTGATGAATTGCCTGGCCCTGCAGGATTTCCTGGAGCAGGCCGGCGTCGAAACCCGTGTGCAGAGCGCCATCACCATGGGCCAGGTCGCCGAGGCCTACATTCCCCGCCGCGCCATCAGGCACATGGAAAAGGACCGGGTAGTCATCTTCGGTGCGGGTGCCGGGCTTCCCTACTTCTCCACTGACACCGTGGCTGCCCAGCGCGCCCTGGAAGTCCACGCGGACGTGGTGCTGATGGCCAAGAGCGGCGTGGACGCCGTGTACACCGCCGATCCCAAAAAGGACCCCACCGCCGAGAAGCTGGACACCCTGAGCTACGACGACGCCCTCAGGCGCGACATCAGGGTCATGGACCAGACCGCCATGACCATGTGCAAGGACAACAATCTCTCCATGGTTGTCTTCGGAATGGAAGGCGAAGGGAACGTCACCCGCGCCATTCTCGGCGAAAAGCTGGGAACGCTGGTCACCCCCTAGMEAVNSSIQPEKSRRRVLLKLSGEVFGGGKLGVDPETVRDVAKQIAAAIPEVEVAIVVGGGNFFRGAELSQSGMDRSRADYMGMLGTVMNCLALQDFLEQAGVETRVQSAITMGQVAEAYIPRRAIRHMEKDRVVIFGAGAGLPYFSTDTVAAQRALEVHADVVLMAKSGVDAVYTADPKKDPTAEKLDTLSYDDALRRDIRVMDQTAMTMCKDNNLSMVVFGMEGEGNVTRAILGEKLGTLVTPPGPT0021205_1121DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903NANA
D1-29_01513558frrCOG0233Ribosome-recycling factorGTGATCGAAGATACCTTGCTCGAAGCCGAAGACAAGATGGACAAGGCTGTTGAGGTAGCCAAGGAAGATTTTGCCTCGATCCGCACCGGACGGGCCAACCCGGGACTCTACAACAAGGTGCTGGTGGACTACTACGGTGCACCCACCCCGCTGCAGCAACTGGCATCCTTCGCCATTCCTGACGCCCGCACCATCCTCATCACCCCGTTCGACAAGACTGCCCTCCGGGACATTGAACGTGCCCTGAGCGACTCCGAGGTGGGCGCTAACCCCTCCAACGACGGCAACGTCATCCGGATCACCATTCCGGACCTGACCCAGGAACGCCGCAAGGAGTACGTCAAGATCGTCAAGACCAAGGGCGAGGACGCGAAGATCTCCATCCGCAACATCCGGCGCAAGGCCAAGGAAACGCTTGACCGGCTGGTCAAGGACGGCGAAGCCGGCGAGGACGAGGGCAGCCGGGCCGAGAAGGAACTGGACGCTTTGACCAAGGCACACGTGGACGGCATCGACGAACTGCTCAAGCGCAAGGAAGCGGAGCTGCTCGAAGTCTAAMIEDTLLEAEDKMDKAVEVAKEDFASIRTGRANPGLYNKVLVDYYGAPTPLQQLASFAIPDARTILITPFDKTALRDIERALSDSEVGANPSNDGNVIRITIPDLTQERRKEYVKIVKTKGEDAKISIRNIRRKAKETLDRLVKDGEAGEDEGSRAEKELDALTKAHVDGIDELLKRKEAELLEVNANANANANA
D1-29_01514924cdsACOG0575Phosphatidate cytidylyltransferaseATGAGCCAGGCAGAGCAGGCTCCCGCTCAACGGGCGCGCATGAAGGGGAGGCAGCCCCGGAGGAACCCGACGCCCAAGGCTGGACGGAACCTCCCTGCGGCCACCGTGGTGGGGCTGGCAATGCTCTTTGGGGTCCTGGGCGGCCTCGTCTTCCTGCCGCTCGGCTTTGTGGCGGTGACCACCGGCTTCGCTGTTTTTGGGGTCTGGGAAATTTACCGCGCCCTGGAGGCAAACGGCACCAGGATGCCCATCGTGCCGGTGATGACGGGCACGCTGGCCATGCCTTTCGCTGCCTACTTCGGCGGGCTGGAGAGCCTTCTCTTCGCCATGCTGCTGAGTTGCGTGGCAGTGCTTCTTTGGCGGTCGGTGGAATCAGCAGCGGGATCGGCCAACAGCATCTTCGCCGGCGTCTTCACCCTGGGCTGGGTTCCGTTCTTCATCAGTTTCGCGGCCCTGCCCCTTCATGCTTCGGGCGGCGCGGCCACCGTGGGCCTGTGGCCGGGTGGAACTGTGCCGCACGGGGCCTGGCAGGTGGCAGTGATGCTCCTCCTGGTTGTCTCCAATGACACGTTTGGCTACCTCGTCGGCGCGTCGCTCGGAAAGCACCCCATGGCGCCAAAAATCAGTCCCAAAAAGTCCTGGGAAGGCTTCGCCGGATCCATTGCCGGCGCCATGCTGATCGGGATCCTGGCAAGCATCTTCCTGCTCGGCAAACCGTGGTGGGTAGGCGTGGTACTGGCGGTGGGCCTTGTTGCCGCCTCCACAGCGGGAGACCTGGCGGAATCCATGGTCAAACGCGAGCTGGGAATCAAGGATATGAGCAGCATCCTCCCCGGTCATGGCGGGGTGATGGACCGGCTGGATTCCATCGTTTTCGCAGCACCAGTGGCGTTTGTGCTCTACGGGCTGGTCGCAGCAGCCTGAMSQAEQAPAQRARMKGRQPRRNPTPKAGRNLPAATVVGLAMLFGVLGGLVFLPLGFVAVTTGFAVFGVWEIYRALEANGTRMPIVPVMTGTLAMPFAAYFGGLESLLFAMLLSCVAVLLWRSVESAAGSANSIFAGVFTLGWVPFFISFAALPLHASGGAATVGLWPGGTVPHGAWQVAVMLLLVVSNDTFGYLVGASLGKHPMAPKISPKKSWEGFAGSIAGAMLIGILASIFLLGKPWWVGVVLAVGLVAASTAGDLAESMVKRELGIKDMSSILPGHGGVMDRLDSIVFAAPVAFVLYGLVAAAPGPT0007685_1897DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
D1-29_01515585hypothetical proteinGTGGCAGTGGATTTTCAACGGCAGATTCCCGCGTCCTTTGAACGCGTGCAGCGCAACGACTACGGCTATAACGCCAAGCAGGTGGACCAGTTCCTCCAGCGCGCCCGCGTCTCGCTGGAATCGCCGAAGGCGGCCGTCCACGTCATTACGAGTTCCGATGTGCGTTCAGTCTCCTTTGACCCCGTCAAGGGCGGGTACTCTGCCGCCGTCGTGGATGCCGCCCTTGACCGGCTGGAAGACGCTTTCGCGCGCCGTGAACGCGACGAACTGATTGCCTCGAGTGGCGAAGAAGCCTGGCTGCGCCAGATCGGACGGCTCTCCGGGATCCTGCGCGGCAGGCTGCACCGGCCCGACGGCGACCGCTTCCGCCGGCCGTCGAAGAACAAGGCCCGCAGTTACAACATCGCGGACGTGGACAAGCTCTGCCACCAGCTGATCGGCTACCTGGAGGAGGACAAGCCGCTCAGCGTGGACAACGTCCGCCGGGCCGTCTTCCGGCCGGCAACAGGCCAGGACGGGTACGAGGAAAACCAGGTGGACGCGTTCCTGGACCGCGTGGTTGAACTGATGGCGGCCATCGACTGAMAVDFQRQIPASFERVQRNDYGYNAKQVDQFLQRARVSLESPKAAVHVITSSDVRSVSFDPVKGGYSAAVVDAALDRLEDAFARRERDELIASSGEEAWLRQIGRLSGILRGRLHRPDGDRFRRPSKNKARSYNIADVDKLCHQLIGYLEEDKPLSVDNVRRAVFRPATGQDGYEENQVDAFLDRVVELMAAIDPGPT0014806_11DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
D1-29_015161503actPCOG4147Cation/acetate symporter ActPGTGATTCCGGCCGCTGATCCTGCCGTAAATCCCGCCGTTAATCCTGCCGTTGGCGTGGTGGCCTTGGTGGTCGTTTCGCTGGCCACTGCGGTGATCGGCTTCTACGGCCTCCGGATCTCACGCACCACCGGCGATTTTTACGTCGCCTCCCGGACCGTGCCGCCATGGTGGAATGCCTCAGCGATCGGCGGCGAATACCTCTCCGCGGCCAGCTTCCTGGGCGTTGCCGGGCTGATCCTGCTGTCGGGAACCGATGCGCTGTGGTTCCCCGTGGGCTACACGGCCGGATACCTGATGCTGCTGCTTTTTGTGGCCGCCCCGCTGAGGCGTTCGGGAGCCTACACCATCCCCGACTTCACCGAGGCACGGCTGGATTCGCGGGCGGTCCGCAGGGTCACCAGCCTGGTGGTGGTTGTGGTGGGGTGGCTGTACATCGTTCCCCAGCTCCATGGCGCGGCCCTGACCATCCGGATTGCCACCGGCCTGCCATCCTGGGTGGGTTCGGTCTCCGTGGTGTTTGTTGTGTGCCTGACGGTTGTGGCCGGCGGCATGCGCTCCATCACGTTTGTGCAGGCCTTTCAGTACTGGCTCAAGCTCACGGCTCTGGCGGTGCCCGCCGTTTTCATCATGTTCGTCCTTGCCGGAAACGGGACGCCCGCTGTTGCCCAAGCCGCCGTCAACCCCACCGGGCTGTCACCCGCCGGCCCCTACCAGAACATCTCGCTCCTGGTGGCGCTCCTCTTTGGGACGCTGGGGCTGCCACACGTCCTGGTGCGCTTTTACACCAATCCTGACGGGCAGTCTGCCCGGCGGACCACCCTGATCGTGTTGGGCCTGCTCTCCGTCTTCTACCTGTTTCCCACCGTGTACGGTCTGGCGGGCCGGATGTTCGCCCCGGAGCTTGCCAGATCGGGACAGGCCGACGCCGTGGTGCTCCTCCTGCCGGGCCAGCTGGTGGGCGGAACGGCCGGCGATCTGCTGTCTGCACTCGTGGTGGGCGGCGCTTTTGCCGCCTTCCTCTCAACCACGTCCGGACTGGTGGTTTCGCTGGCCGGTGTCATCAGCCAGGACGTGCTCGGTGGCAATGTCCACGGGTTTCGGTTGGCCGCCGTCATTTCTGCAGTGGTCCCGTTGGGTTTCGCCCTGATGACGGACTCGTTTGCGCTCGCAGGCAGCGTTGGCCTGGTGTTCGCGTTCACCGCCTCCACCGTTTGCCCCGTCCTGCTGTTGGGCATTTGGTGGCGGGGTCTTACCGACGCCGGTGCCATCGCCGGGATGGTGACTGGCGCCCTGCTCTGCGGCGGTGCCATGATTTACGGCGCACTGGCGGGGGCTGCCGGCACTCCGTCCTGGCTGGCCCAGCCGGCGGCATGGACTGTGCCGGCCGCCTTTGCCGTGATGGTACTCGTCTCCCGCGCCACCAAGGGCCGCGTACCCCGGACGATGTCGCGGATCATGACCCGCCTGCACACCCCGGAGAGGCCTTTGGTCACCGAACGCTAGMIPAADPAVNPAVNPAVGVVALVVVSLATAVIGFYGLRISRTTGDFYVASRTVPPWWNASAIGGEYLSAASFLGVAGLILLSGTDALWFPVGYTAGYLMLLLFVAAPLRRSGAYTIPDFTEARLDSRAVRRVTSLVVVVVGWLYIVPQLHGAALTIRIATGLPSWVGSVSVVFVVCLTVVAGGMRSITFVQAFQYWLKLTALAVPAVFIMFVLAGNGTPAVAQAAVNPTGLSPAGPYQNISLLVALLFGTLGLPHVLVRFYTNPDGQSARRTTLIVLGLLSVFYLFPTVYGLAGRMFAPELARSGQADAVVLLLPGQLVGGTAGDLLSALVVGGAFAAFLSTTSGLVVSLAGVISQDVLGGNVHGFRLAAVISAVVPLGFALMTDSFALAGSVGLVFAFTASTVCPVLLLGIWWRGLTDAGAIAGMVTGALLCGGAMIYGALAGAAGTPSWLAQPAAWTVPAAFAVMVLVSRATKGRVPRTMSRIMTRLHTPERPLVTERPGPT0001400_3386DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
D1-29_01517351hypothetical proteinATGACGCGCATCCGGGTCACCGCGCCCCCATCAGCCGCCCGGCCGCCGCGTGAGACGCCCGAGGCCGCGCAGGAGTCAGAAGTGGGCCAGGTGTTTGTCAGGTCGCTCATCCGCTCCCAGCTGCGGCTGGCCCTGGTGGTGGGTTTGGGGTTCCTGCTGATCCTCTCCGCTTTTCCGTTGCTGCTGATTGCTGTTCCGGGCCTTGCAGAAATGCGGGTGGCCGGCATCCCGTTCGACTGGCTGCTGATCGGCGCCGGCATCTATCCGCTGATCGGCCTGAGCGCCTGGCTGTTCATCCGGTCAGCAGCCCGGAATGAAGCCAGGTACCGAGAGTTGGCCGAGGACGCGTGAMTRIRVTAPPSAARPPRETPEAAQESEVGQVFVRSLIRSQLRLALVVGLGFLLILSAFPLLLIAVPGLAEMRVAGIPFDWLLIGAGIYPLIGLSAWLFIRSAARNEARYRELAEDANANANANANA
D1-29_01518720btsRCOG3279Transcriptional regulatory protein BtsRATGATTAATGTCCTCGTCGCGGACGACGAGCTGCCGGCCATCGAGGAGTTGGCCTACCTCCTGGGCAGGGATGACCGGATTGGGGTCATCCACCGGGCCTCCTCCGGCAGCGAGGCCCTGCGCGCGCTCGCCACCCATGCCGTTGATGCGGTTTTCCTGGACATCCATATGCCTGCCGTTTCGGGCCTCGACATTGCCCGCGCCATCGCCCGCAGCAGCAACCCGCCGGTAGTGGTCTTTGTGACGGCGGATGAGGACTGTGCCCTGGAAGCCTTCGAGCTCGCCGCCGTGGACTACCTGCTCAAGCCGGTGCGCGCCGAACGGCTGGCCCGTTCGGTGGGCAGGATCAGTGAACTGATGCGCGACGGCGGCGAGGCACCTGAGATGATCACCGTGGACCAGGGCGGCACCACCCGGATGATCCGGCGGGACGATGTCACATATGTCCAGGCCCAGGGCGACTACGCCAGGCTGCACACGTCCGAGGCCAGCTTCCTGATCAGGATTCCGTTGGCCGACCTGGAGCAGCAGTGGGCCGAAGCCGGCTTTATCCGCACCCACAGGTCCTACCTGGTTGCACTGAAGCATGTCACCTCCATGAAGCTTGCCGCGGACAAGCCCAGCGTCACCGTGGCGGGCGCCGGGCTGCCCATCAGCCGCCGCCACCTTCCCACGGTCCGGGAAAAGCTGGAAGCTACCCGGCTCCGGCCACAGGCATGAMINVLVADDELPAIEELAYLLGRDDRIGVIHRASSGSEALRALATHAVDAVFLDIHMPAVSGLDIARAIARSSNPPVVVFVTADEDCALEAFELAAVDYLLKPVRAERLARSVGRISELMRDGGEAPEMITVDQGGTTRMIRRDDVTYVQAQGDYARLHTSEASFLIRIPLADLEQQWAEAGFIRTHRSYLVALKHVTSMKLAADKPSVTVAGAGLPISRRHLPTVREKLEATRLRPQAPGPT0026304_580DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026304-lytR|ypdB|yehT-K02477NANA
D1-29_015191254btsSCOG3275Sensor histidine kinase BtsSATGCTGCGGCAAACGGCGCCCGCCGCTACGCTGGGCAGCATGCCGGACTCCCCTCTCCTGACCGCCGCCGCCCTTGCCGTGATAGCGCTGGCGATTGCCGCCGTCGTCGGTGTGGGACTGAAGGTGCTGCGGTCATTCCGTGAGCTGGGTACCGACGCAGAACGCGCAACCTACACCACCCTTCACGCCGCGTCCCGGGCGGGGCAGCATCTGCGTGCCGGCCTCAACCCTGCGGGGGCAGCCAAGGCCGCACGCCAGCTGCGCAACCTGCTGGGCTGCGACGCCCTGGCCATCACCGACACTGCGGGGGTGCTGGCCTGGGACGGTTCCGCCGAGGACCTGAAGCCCCACCTGATGGACCTGGCGGCAGGCGTCCTTGCCGGCGGCAGGACAGCCATGGTCCAGGCGACAGCCATAGTCCAGGCTCGTGATGCGGATCCGGCGGCCGGCGGTCCCCCGGTCCGCCTGGAAGCCGTGATAGCCCCGATCCGGGCCAACGCACGGGTGGTTGGCGTGGTGGCGGCGTTTGCCCCGTCAGTGGGTGCCGGCCTGGTCCGGGCTGTCAGTGAGGTGGCCGACTGGGTTTCGGTACAGGTTGAACTGGCGGAGCTGGACGCATCCCGGACACTCCTGATGGAAGCCGAAGTCCGCGCCCTCCGGGCCCAGATCAGCCCGCACTTCATCTACAACTCGCTCAACGCCATCGCCTCGTTCATCAACACAGATCCGGCCCGGGCCCGGGAGCTGGTGGTCGAGTTTGCCGATTTCACCAGATACTCCTTCCGGCGGCACGGGGACTTCACCACGCTCGCCGAAGAACTCCGCTGCATCGACCGGTACCTGCTGCTGGAGCGTGCGCGCTTCGGGGACCGCGTGCAGGTCAGCCTCCGGATCGCACCGGAAGTCCTGAGCACTGTTATTCCGTTCCTGAGCCTCCAGCCGCTGGTGGAAAACGCCGTCCGCCACGGTCTGGAGGCGAAGGAAGGGCCGGGCCGGATCAGCATTGCGGCGCATGACTCCGGCGCCTACGCGGAAGTCACCATCGAGGACGACGGCGTAGGCATGGATCCGGCGCAGCTCAGGTCAGTGCTGGCGGGGCACAGCGACGGCGAGCATGTGGGACTGCGCAACGTGGACGCCCGCCTCCGGCAGGTTTACGGCGAAGGCCATGGCCTGGTCATCGAAACCGCCCCCGGCGAGGGGACCCTCATCACCATGCGTGTGCCCAAATCCCAGCCGGGCCATGACGCCTGAMLRQTAPAATLGSMPDSPLLTAAALAVIALAIAAVVGVGLKVLRSFRELGTDAERATYTTLHAASRAGQHLRAGLNPAGAAKAARQLRNLLGCDALAITDTAGVLAWDGSAEDLKPHLMDLAAGVLAGGRTAMVQATAIVQARDADPAAGGPPVRLEAVIAPIRANARVVGVVAAFAPSVGAGLVRAVSEVADWVSVQVELAELDASRTLLMEAEVRALRAQISPHFIYNSLNAIASFINTDPARARELVVEFADFTRYSFRRHGDFTTLAEELRCIDRYLLLERARFGDRVQVSLRIAPEVLSTVIPFLSLQPLVENAVRHGLEAKEGPGRISIAAHDSGAYAEVTIEDDGVGMDPAQLRSVLAGHSDGEHVGLRNVDARLRQVYGEGHGLVIETAPGEGTLITMRVPKSQPGHDAPGPT0026305_1379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026305-lytS|ypdA|yehU-K02478NANA
D1-29_01520381hypothetical proteinATGGGTCACGATGCCCACACCCCGGACGCTGCGGCGGCCGTGGACTTCGAACAGGTCCAGTCGACTGAGCGGTTCCAGGAACTGCGCAAACGTCACCGGAGCTTTGTTTTTCCCATGGCCATTGCATTTCTGCTGTGGTACTTCGCGTACGTCCTGCTGGCCGACTATGCCGTCGGCTTCATGTCCACCAAGGTGTGGGGCAACATCAACATCGGCCTCATTCTGGGGCTGCTGCAGTTCGTCTCCACGTTCGCGATCACCGGCTGGTACGTCAGCTACTCCAACCGGAGGCTTGACCCCATCGCCGCGGAGATCCGGAACGAAATTGAAGGCCATGAGTTCGACAGGCACGGCAACGTCATCGCAGGAGTGAGCAAATGAMGHDAHTPDAAAAVDFEQVQSTERFQELRKRHRSFVFPMAIAFLLWYFAYVLLADYAVGFMSTKVWGNINIGLILGLLQFVSTFAITGWYVSYSNRRLDPIAAEIRNEIEGHEFDRHGNVIAGVSKNANANANANA
D1-29_015211617mctCCOG4147Monocarboxylic acid transporterATGATCGGGATACCCGCGGCGGTTGATGTTGCCGCCCTCAAAGACACCACCCTTCTTAACATGGGGATCTTCGGACTGTTCGTCGCGGTGACCATGGTCATTGTGTTCAGGGCCAGCCGGAACAACAAAACCGCCGCCGACTACTACGCCGCGGGCCGCTCCTTCACCGGATCCCAGAACGGTACCGCTATCGCAGGCGATTATCTTTCCGCGGCATCGTTCCTGGGCATTACAGGCGCCATTGCCATCAACGGCTACGACGGCTTTATGTACTCCATCGGCTTCCTGGTGGCGTGGCTGGTGGCGCTGCTGCTGGTGGCTGAACTGCTCCGGAACACGGGCAAGTTCACCATGGCCGATGTGCTTTCCTTCCGGCTGAAGCAGCGGCCCGTCCGCATCACAGCAGCCATCTCCACGCTTGCCGTCTGCTTCTTCTACCTGCTGGCGCAGATGGCCGGAGCGGGCAGCCTGATTTCACTGCTTTTGGGTATCAGCGACTGGGGCGGCCAGGCCCTGGTGATCATGGTCGTCGGCGCCCTGATGATCATGTACGTGCTGATCGGCGGGATGAAGGGCACCACCTGGGTCCAGATCATCAAGGCGATCCTGCTTATTGCCGGCGCCGCAGTGATGACGTTCTGGGTGCTGGCCATCTACGGGTTCAACCTCTCCAGCCTCCTCGGGGCGGCAGTGGACACAGCCAACTACCCCGCTGTGCTGAATCCCGGACTGCAGTACGGCAAATCCGAAACCTCCAAGCTGGACTTTATGTCCCTGGGCCTCGCACTGGTCCTGGGCACTGCAGCCCTTCCGCACGTGCTGATGCGCTTCTACACCGTCCCCACGGCCAAGGAAGCCCGGAAGTCCGTGGTCTGGTCCATCTGGCTGATCGGCCTGTTCTACCTGTTCACACTGGTTCTCGGGTACGGCGCCGCAGCGCTGGTGGGTGCAGACACCATCAAGTCCGCTCCAGGCGGCGTAAATTCCGCCGCGCCGCTGCTGGCCTTCCACCTCGGCGGGCCGCTCCTGCTGGGCTTCATCTCGGCCGTCGCCTTCGCCACCATCCTGGCCGTGGTGGCCGGCCTGACCATCACCGCGGCAGCCTCCTTTGCCCACGACATTTACGCCAGTGTCATCTCCAAGGGCAAGGCCGACGCCGACACGGAAGTTAAGGTGGCCAGGCGCACCGTTGTGGTCATTGGAGTCATGGCTATCCTGGGCGGCATTCTTGCCAACGGGCAGAACGTTGCCTTCCTGGTGGCCCTGGCTTTCGCGGTGGCCGCCTCGGCGAACCTCCCCACCATCATCTACTCGCTCTTCTGGCGCCGGTTCACCACCCAGGGTGCGGTGTGGAGCATGTACGGCGGTTTGGGATCGGCCATTGTCCTGATCATCTTCTCGCCCGTGGTTTCGGGGGCGGCGACCTCCATGATCAAGGACGCCAACTTTGCCCTCTTCCCGTTGAGCAACCCCGGCATCGTTTCCATTCCGCTCGCCTTCCTGCTGGGCTGGCTTGGCACGGTGCTGGATAAGAAGCGCGAGGACAGCGGCAAGCAGGCCGAGATGGAAGTCAGGTCACTCACCGGGGTTGGGGCCGAGAAGGCCTCCAACCACTGAMIGIPAAVDVAALKDTTLLNMGIFGLFVAVTMVIVFRASRNNKTAADYYAAGRSFTGSQNGTAIAGDYLSAASFLGITGAIAINGYDGFMYSIGFLVAWLVALLLVAELLRNTGKFTMADVLSFRLKQRPVRITAAISTLAVCFFYLLAQMAGAGSLISLLLGISDWGGQALVIMVVGALMIMYVLIGGMKGTTWVQIIKAILLIAGAAVMTFWVLAIYGFNLSSLLGAAVDTANYPAVLNPGLQYGKSETSKLDFMSLGLALVLGTAALPHVLMRFYTVPTAKEARKSVVWSIWLIGLFYLFTLVLGYGAAALVGADTIKSAPGGVNSAAPLLAFHLGGPLLLGFISAVAFATILAVVAGLTITAAASFAHDIYASVISKGKADADTEVKVARRTVVVIGVMAILGGILANGQNVAFLVALAFAVAASANLPTIIYSLFWRRFTTQGAVWSMYGGLGSAIVLIIFSPVVSGAATSMIKDANFALFPLSNPGIVSIPLAFLLGWLGTVLDKKREDSGKQAEMEVRSLTGVGAEKASNHPGPT0001400_2699DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
D1-29_01522714hypothetical proteinATGGACACAGCTGCCGTTTCCCAGCCTGCAACGTCCCAGTCTGTGGCCAGGGAACCTGTGGCCTTCGATCCCGCCGCCGGTTCCACGGCCGTGGTCCGGCTCTTCGCGGGCTTTGCAGGTTTCGGGGCGGGTTCGGTAAATCTCGCCGTTTCCTCAAGCCTGCTTGCCGGTCCGGATGGATCCGGCGATTCGGGCCAGGTCCTCTTCGGAGTCCTGGCCGGGCTGTGGGGAACGGCACTGATCGGCGGGACGGTCCTCGCCCTGAGCCGGGGGCGGATCCCGGCGCCGGGCCTGTCGTTGATGATGCTGATGGTTGCCGCCGCAGTCCACGCGGTGGCCACTATCTGGCGAGGGGAGACCGGATCGAGCCTCAGCCTGAGCCATCTGACGGCGCTGCTGCTCACACTCATGATGGTTGGATCCCTCGCCTGGCTGCGCCGGCAGGATCGACGGCTGGGCCGCGGGAGGGTTAACGGCGCGGACGAGGGCGGGGCTCCCGTCGTCGTCCGGCCGGGACGCCTCCTGCTCGGTGCTTTCGCCGGTGCCGTGCTGGTGGCAGGAATCGCGACGCCGGGCCTTGCAGCCTCCACGGCTGGACAGTTTGCGGTCCCCCACGGTCAGCATGGTCAGGACAGCGGGCACGGTCAGCATGGTCAGGACAGCGGGCCTGCAGCCCCTGTCGACCACAATCAGCCAGGCCAGCATCAGCACTAAMDTAAVSQPATSQSVAREPVAFDPAAGSTAVVRLFAGFAGFGAGSVNLAVSSSLLAGPDGSGDSGQVLFGVLAGLWGTALIGGTVLALSRGRIPAPGLSLMMLMVAAAVHAVATIWRGETGSSLSLSHLTALLLTLMMVGSLAWLRRQDRRLGRGRVNGADEGGAPVVVRPGRLLLGAFAGAVLVAGIATPGLAASTAGQFAVPHGQHGQDSGHGQHGQDSGPAAPVDHNQPGQHQHNANANANANA
D1-29_01523405hypothetical proteinATGCGCACATCACCGAACCGCCTTATCGCCACCGTCTTCGGCGCTGTCTACCTCCTTGTTGGTCTCCTCGGCTTCGCCGTGACCTCCGGGATAGGCTTTTTCGCCACCGAAGGCGCCAACCTCATCATCTTCGAGGTCAACCCTCTGCACAACGTCATCCACCTGGCCATCGGTGCGGCTCTGCTTTATGCCGGGCTGAAGAGCACCACGCTCGCACGCACCGTGAACGCCGGCGTTGGGGCCGTGTACCTCCTGGTGGGCGTTCTTGGTTTGTTCCTGTTGAGTTCGCCATTGAACATCATTGCCCTTAACGGCGCGGACAATGTGCTGCACCTGGCCAGTGCCGTACTGCTCCTTGGCGTGGGCCTCTCGCTGGACAAGTCCCCCGCCACCGCCCGGGCCTAAMRTSPNRLIATVFGAVYLLVGLLGFAVTSGIGFFATEGANLIIFEVNPLHNVIHLAIGAALLYAGLKSTTLARTVNAGVGAVYLLVGVLGLFLLSSPLNIIALNGADNVLHLASAVLLLGVGLSLDKSPATARANANANANANA
D1-29_01524453hypothetical proteinATGATCGTTAGACCGGCCCGGCCCGGAGACGTTACGGGGCTGGCCGCATTGAAGGAGGCTTGGGCCCAACTGTCCCGCCCAGTATCCGAATCCGAGCGGCGAGAGTTTGCTGAAGACCTGGCCGCCTGGATGCGTTCACAAGGGCAGGCGCTAATGTGCCATGTGGCCGAGATCGACGGTCAGCTCGTCGGCATGGCGTGGCTGGTGCTCTTCGAACGGGTTCCCGACATTCATGATCGAACCCGCCTCACAGGTGACCTTCAGAGCGTGTACGTGCTTCCACAACACCGGGAACGAGGGATCGGCCGCGCGCTCGTGCGCTCATTGATCGACAGGGCGGATGAGCGAGGCGTTCCGAGAGTGACTGTGAGCGCGAATGCCGCCGCCGCTGGGATGTATTCAGCAGAGGGCTTTGGAACTGCACCCTACCTACTTGAACGTCCTCGTCGGTAAMIVRPARPGDVTGLAALKEAWAQLSRPVSESERREFAEDLAAWMRSQGQALMCHVAEIDGQLVGMAWLVLFERVPDIHDRTRLTGDLQSVYVLPQHRERGIGRALVRSLIDRADERGVPRVTVSANAAAAGMYSAEGFGTAPYLLERPRRNANANANANA
D1-29_01525648hypothetical proteinTTGAGCATTCCTCGGGAACCGTACCAGCCCGACGCCGGATCAGCGGCGGGGCAGGCAGCGCCGGCATCGCCGGCAGCTCCGGTGGCACCGGCATCGCCCCAGACGCAGCCTGCGCCTCCAGAGCATCAGCCTGGCGGCGGGTATCCGGCCACGGCTCAAAGCGGGATCGCGGGCCACGACTCTAACCCCTTCGGACTCCCCGGCCAGCAGCCTCCCGTCAAAAGCCGCAGGAAGCTGTGGATCATCCTGGGAAGCGCCGGCGGGGTCCTGCTGCTGGTCATCATTGGCCTGATCATTCTGGTCAACGTTGTGGGCAGTGCCACGAACCAGGCCCGGGGACTCGCAGACGACTTCACCAAGCTGGTCATTTCCGGCGACACCGACCAGGCGTATGGCTACCTTGATCCTGCCCTGCATGACCAGCTGACGAAGGAGTCCTTTATTGAGGGGATAGCCACCCTGGAACTGAATGACTCCTGCAAGCCTTCGTACAACGACGTCCAGGTTACGTCAGAGAACGGCACCAATTCTGCGGATATCGCCGGCCTCATCACCTGCGACAACGACAAAAAAATTGACCTGGCCTACCGCTTCGAAGGCCAGGACGAGCTCAAGATGATCAACATCAAACTGCGTCCCCAGGAATAGMSIPREPYQPDAGSAAGQAAPASPAAPVAPASPQTQPAPPEHQPGGGYPATAQSGIAGHDSNPFGLPGQQPPVKSRRKLWIILGSAGGVLLLVIIGLIILVNVVGSATNQARGLADDFTKLVISGDTDQAYGYLDPALHDQLTKESFIEGIATLELNDSCKPSYNDVQVTSENGTNSADIAGLITCDNDKKIDLAYRFEGQDELKMINIKLRPQENANANANANA
D1-29_01526474hypothetical proteinATGCAAGCTTTGGATGGCACAGACACTCGCCTGCTTTCAGCACTCGCGAACGACCCCCGCCGCACTGTTGTGGCACTCGCGCAGAAGCTGGGACTGTCCCGGAACACCGTGCAGGCGCGGATGGCGCAGTTGGAGAAAAAGCACGTCTTCCTCTCCTTCGAGCGGCGCATCAACCCGGCGTCACTGGGTTACCCCCTGATGGCCTTTATCTCAGTCCATGTCCAGCAGCAGAAGCTGGGTCAGCTGGCCCATGACCTTGCCGGCGTTCCCGAGATCTTGGAAGGGTATGGCCTCACCGGTTCCGCCGATCTTCTCCTCCGCGTTGTGGCCCTGGACGCCGAGGACCTGTTCAGGATCAATGGCAAGATCCTGGCCTGTGATGGCGTAGACCGTACGGACACTGCCCTGGCCATGGGCGAGCTCATTCCTTTCCGCATCCAGCCCCTGCTGGACCGGGGATCGGGCGAGGGGTGAMQALDGTDTRLLSALANDPRRTVVALAQKLGLSRNTVQARMAQLEKKHVFLSFERRINPASLGYPLMAFISVHVQQQKLGQLAHDLAGVPEILEGYGLTGSADLLLRVVALDAEDLFRINGKILACDGVDRTDTALAMGELIPFRIQPLLDRGSGEGNANANANANA
D1-29_015271281bkdA_1COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaATGGTCACAATTATCCGGGGCAACGGCGCCCGGGGGCCGGCTCCGGCGGGACCACAAGTTCACAAGGAGCGGGTCAAACGACGTGAGAAGGTGCGGGCGATCGTGTCTACAGACGAAGCGGGCCAGGGCGGACCAAGCTCCCGCGGCCAGGGCAGCAGTGCAGAACACCACGGCGGATCCGGCAGGAGTCTGATCCAGCTGATCACCCCGGCGGGGGAGCGGATCAGCCATCCGGAATTCGATCCCTGGGTACAGGACATCACGGACGAGCACTTGTGTTCCCTCTATGAGGACATGACGGTGATCCGCCGGATCGACGTCGAGGCCACCGCCCTCCAGCGGCAGGGTGAACTGGCCCTCTGGCCTCCGCTGCTGGGCCAGGAGGCATCGCAGATCGGTTCGGGCAGGGCCCTGCGCCAGGACGACTTTGTCTTTTCCAGTTACCGGGAGAACGGCGTGGCATATTGCCGGGGCGTTGACCTGACCAGCATCATCCGGGTGTGGCGGGGAAACGCGTCATCCGGGTGGGATCCGTACACCATCAACATGGCAACCCCACAGATCATCATCGGCGCCCAGACCCTTCACGCCACGGGGTATGCCATGGGGATCCAGAATGACGGCGCGGACGCCGTGGCTGTGACCTACTTTGGCGATGGCGCAACCAGCGAGGGCGACCTCAACGAGGCCATGGTTTTCGCTGCCAGCTTCCAGGCGCCGGTGGTCTTCTTCTGCCAGAACAACCACTGGGCCATCTCGGAACCCGTCCGGCTGCAGTCCCACGTACACCTTGCGGACAGGGCCACCGGCTTCGGCATTCCGAGCCTGCGGGTGGACGGAAATGATGTCCTGGCCGTGATGGCAGCGACACGCGTAGGCCTGGACCGGGCCAGGCGCGGGGGCGGGCCCACCTTCATTGAAGCCGTCACTTACCGCATGGGCCCGCACACCACCGCCGATGACCCCACTCGCTACCGGGATGCCAACGAGCTCGAGGACTGGGCCGCCAAAGATCCCATCAGACGGGTCAAATCCCTGCTGGAACGCAAGGGCCTCCTGACTGATGAACTGCAGCGGCAGGTCGAGGAAAAGGCCGACTCTGTGGCCCGCCAGATGCGCCTGGCCTGCACGTCCATGCCAGAACCGGAGCCCCTGGACGTCTTCAAGCACGTCTACAGCTCGCCCAACACGTGGCTCGACCGGCAGCAGGACCACTACTCCCGTTACCTGGCTTCCTTTGGCGACCCCGCAGGAGCCCCGTCAGAAGAAGGTGCACGCTGAMVTIIRGNGARGPAPAGPQVHKERVKRREKVRAIVSTDEAGQGGPSSRGQGSSAEHHGGSGRSLIQLITPAGERISHPEFDPWVQDITDEHLCSLYEDMTVIRRIDVEATALQRQGELALWPPLLGQEASQIGSGRALRQDDFVFSSYRENGVAYCRGVDLTSIIRVWRGNASSGWDPYTINMATPQIIIGAQTLHATGYAMGIQNDGADAVAVTYFGDGATSEGDLNEAMVFAASFQAPVVFFCQNNHWAISEPVRLQSHVHLADRATGFGIPSLRVDGNDVLAVMAATRVGLDRARRGGGPTFIEAVTYRMGPHTTADDPTRYRDANELEDWAAKDPIRRVKSLLERKGLLTDELQRQVEEKADSVARQMRLACTSMPEPEPLDVFKHVYSSPNTWLDRQQDHYSRYLASFGDPAGAPSEEGARPGPT0008861_1389DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
D1-29_015281011bkdB_1COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGACCCAGATGACCTTTGCCCGCGCCATTAATGCCGGCCTGCGCAAATCCCTCGAGAACGATCCCAAGGTCATCCTGATGGGGGAGGACATCGGTACCCTCGGTGGTGTTTTCAGGGTGACGGACGGGCTCCAAAAAGATTTTGGCAAGCATCGTGTGGTGGATACTCCGCTGGCCGAATCCGCGATCATCGGCACCGCCGTCGGCCTGGCCTACCGGGGCTACCGCCCGGTGGTGGAAATCCAGTTCGACGGTTTCATCTACCCGGCGTTCGACCAGATCGTGAGCCAGGTGGCCAAGCTGCATTACCGGACCCAGGGTGCGGTCAAAATGCCCATCACCATCCGCGTACCTTTTGGCGGCGGCATTGGCTCGCCCGAGCACCACTCGGAATCGCCGGAGGCGTACTTCACGCACACCTCCGGCCTGCGGGTGGTCAGCGTATCCAATCCGCAGGATGCGCACACGGTCATTCAGCAGGCCATTTCCTGCGATGATCCGGTGCTTTATTTCGAACCCAAGCGCCGCTACCACGACAAGGGCGAGGTGGATGAGTCCGTCGATCCGCGGACCGCGCTGCCGATGGACACGGCCCGGGTGCTCACGCAGGGCACGGATGTCACCCTGGTGGCCTACGGCCCCCTGGTCAAGACCGCGCTGGATGCCGCCATCGCCGCCGCGGACGAAGGAGTGTCCATCGAAGTCATCGACCTGCGCTCGCTTGCGCCCGTGGATTACGCCACGCTGGAGGCCTCGGTGCGGAAGACTGGCCACCTGGTCATTACCCATGAAGCAGGCCAATCTGGCGGGGTGGGGGCCGAGGTTGCGGCCAGTATCACCGAACGGTGTTTCTACCACCTGGAGGCAGCGCCGGTCCGGGTTACCGGCTTTGACATTCCCTACCCCTACTCCAAGCTGGAAATGCATCACCTTCCGGGGCTGGACAGGATTCTTGACGGTGTGGACCGCGCCCTGGGCCGCCCCAACTCGCTCAGCGGGCTGGAAGGGTGAMTQMTFARAINAGLRKSLENDPKVILMGEDIGTLGGVFRVTDGLQKDFGKHRVVDTPLAESAIIGTAVGLAYRGYRPVVEIQFDGFIYPAFDQIVSQVAKLHYRTQGAVKMPITIRVPFGGGIGSPEHHSESPEAYFTHTSGLRVVSVSNPQDAHTVIQQAISCDDPVLYFEPKRRYHDKGEVDESVDPRTALPMDTARVLTQGTDVTLVAYGPLVKTALDAAIAAADEGVSIEVIDLRSLAPVDYATLEASVRKTGHLVITHEAGQSGGVGAEVAASITERCFYHLEAAPVRVTGFDIPYPYSKLEMHHLPGLDRILDGVDRALGRPNSLSGLEGPGPT0008862_1180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
D1-29_015291506pdhC_1COG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGATCAAGGAATTCAGGCTTCCGGATCTCGGCGAAGGACTCACCGAATCCGAAATCCTTAGCTGGAAAGTCGGCGTTGGGGACACCGTCAAACTCAACCAGGTCATCGCCGAGGTTGAAACCGCCAAAGCCGTGGTTGAACTGCCTTCCCCGTTCGCCGGCGTCATCACCGCCCTCCACGAGCAACCCGGCACCATCGTGGAGGTGGGCAAGCCTATCGTCTCCTTTGAAGTACCGGACGACGCCGGTGGGTCACCTCCTGCGGGTACGCCCCCTCAGCGGGACACCGGGGGCGTACCTGCGGAATCGGGCGTCAATGGGAATCCCGGACCCAGGGTGACTGAACCTGCGACGGCGGGAACGGCTGAGGCGGGCCCCGCCAAGCGGCAGGCGAACCTGGTTGGCTACGGCGCCGTCGTCGAAAGTTCCAGCCGCCCGGCCCGGCGGCCACGGACCATGATTTCAAAACATCCGGTCGCCCACGTCCCCGCAGTTAACGCCCCTGTGCCCCCACAGCCTGCCGTTGAAACGTCGGCACCTGCGGCCGGTGCCCCCGGTGCAAGTGGCGAACGGCCCAAATCCACTCCTCCCGTCCGCAAGCTGGCCAAGGACCTCGGCGTTGAGCTGGACACTGTGACGGGAACCGGACCCGGCGGACTGATCACCCGGGAGGACGTGCAGAACTTTGTGGACGGCGGCGGTCTGGCGGCAGCCCACCATGCCGTCAGGGTCCCCGAGGGAGAAATCCGCGACGGAGAAGTTCGCCATGGCGAAGTAGCAGCGCGGCAGGCGGGTACACCAGGCGAGCGGGAAGTCCGGATGCCCATCAAGGGCGTCCGCAAGTTCACAGCCGCTGCAATGGTCTCCAGCGCATTCACAGCACCACACGTGACCGAGTTCCTGACGGTGGATGTGACGCCCGGCATGGAGCTGCTCGACAAGCTGAAGGCCAGCCGAACTTTTGCCGGGCACAAGCTCACGCCGCTCACGCTCGTCGCAAAGGCCGTGCTGATTGCGCTGCGGCGGAATCCCTCGCTGAACTCACGGTGGGACGAAGAACGCCAGGAGATCGTGCAGTTCAACTATGTAAACCTGGGAATCGCAGCCGCAACCCCGCGCGGCCTCACAGTTCCCAATATCAAGGATGCTGACAGGCTGTCCCTGCTGGAACTCTCGGAGGCCCTGACCGGATTGACCGAGACGGCGCGGGCGGGCAAGACAACGCCCGCTGAGCTGTCCGGGGGAACTGTCTCCATCACCAACATCGGGGTTTTTGGGATCGACGCCGGAACGCCCATCCTGAACCCGGGCGAGGCAGCCATCCTGGCCATGGGTGCCGTCCGGAAAACGCCGTGGGAGTACCAGGGGGAGGTTGCCCTCCGCCAGGTCATGACGCTGAGCCTGTCCTTTGACCACCGGCTGGTGGATGGGGAGCAGGGCTCCCGCTTCCTGGCCGACGTCGGCGCCATCCTGGCCGAGCCCGGTATGGTCCTCACCATGGTCTAGMIKEFRLPDLGEGLTESEILSWKVGVGDTVKLNQVIAEVETAKAVVELPSPFAGVITALHEQPGTIVEVGKPIVSFEVPDDAGGSPPAGTPPQRDTGGVPAESGVNGNPGPRVTEPATAGTAEAGPAKRQANLVGYGAVVESSSRPARRPRTMISKHPVAHVPAVNAPVPPQPAVETSAPAAGAPGASGERPKSTPPVRKLAKDLGVELDTVTGTGPGGLITREDVQNFVDGGGLAAAHHAVRVPEGEIRDGEVRHGEVAARQAGTPGEREVRMPIKGVRKFTAAAMVSSAFTAPHVTEFLTVDVTPGMELLDKLKASRTFAGHKLTPLTLVAKAVLIALRRNPSLNSRWDEERQEIVQFNYVNLGIAAATPRGLTVPNIKDADRLSLLELSEALTGLTETARAGKTTPAELSGGTVSITNIGVFGIDAGTPILNPGEAAILAMGAVRKTPWEYQGEVALRQVMTLSLSFDHRLVDGEQGSRFLADVGAILAEPGMVLTMVNANANANANA
D1-29_01530678mce3RTranscriptional repressor Mce3RGTGCCCACCACACAGGCCGCGCAATCTGTCCAGCTCACCCCGTCAAAGCAGCGCAGCCAGGCCAGCCAGCGCACCCAGGCCACCCAGCGGAGCCAGGCCAAGGAAAACCGGCGGCAGGCCCTGCTTTCCGCTGCCGCGTCCCTTTTTGCGCTGAACGGCTACAACCGAGTCTCCCTGGAGGACCTTGGTGCTGCGGCGGGGGTCAGCGGTCCGGCGGTGTACCGCCACTTCACCGGCAAGCAGGCAGTCCTGGGTGACCTGCTCCTTACTGTCAGCCGTGACCTCCTCGACGGCGGCCGGCATGTGCTGGCCGAGACCACGGATCCGCTGGCCGCCTTGGGCCGCCTGGTGGCCTTCCAGGTGGACTTTGCGCTGGGCAAGCCTGACGTCATCCGAGTCCAGGACCGGGACTTCAGCAGCCTCACCGAGCAGGACCAGGCGGAGGTCCGGGCCCTGCAGCGCAGCTACGTTGAGCTCTGGGTTGAGGTGCTCGCCGCGCTGCACCCCTCCACTGATGCCGCGGAGCTGCGGATGCGGGCCCATGCCACCTTCGGCCTCATCAACTCCACGCCGCACTCTGTTCGCAGCCACGGACGCCGGGTGGCCCCCAAGACCGCCCGCCCGCTCCTGGAGGGCATGGCACTGGCGGCTCTGACCGCGGACGTCCGGACTAACTAGMPTTQAAQSVQLTPSKQRSQASQRTQATQRSQAKENRRQALLSAAASLFALNGYNRVSLEDLGAAAGVSGPAVYRHFTGKQAVLGDLLLTVSRDLLDGGRHVLAETTDPLAALGRLVAFQVDFALGKPDVIRVQDRDFSSLTEQDQAEVRALQRSYVELWVEVLAALHPSTDAAELRMRAHATFGLINSTPHSVRSHGRRVAPKTARPLLEGMALAALTADVRTNNANANANANA
D1-29_015311608pccBCOG4799Propionyl-CoA carboxylase beta chainATGGAGACCCTCGTCAGCCGGCTAGATGCCAGCAGTGAAACGTTTGCCGCCAACCATGCCGCCCAGGCCGCGCTCGCTGCCGAACTGCGGGACACGCTGGCCCAAACGGCGTTGGGTGGTCCAGAGAAGTCGCGTGAGCGGCATGTGGCCAGGGGCAAGTTGTTGCCGCGTGAACGGATCGACCAGTTGCTGGATGATGGCAGCCCGTTTTTGGAGATTGCCCCGCTTGCGGCCAACGGCATGTATGACAATGAGTCGCCGGGGGCCGGGGTCATTGCCGGGATTGGTTTGGTGCATGGCCGGCAGGTGCTGGTGGTTTCCAATGACGCCACGGTCAAGGGCGGCACCTACTATCCCATGACGGTCAAGAAGCACCTCCGGGCCCAGGAGATCGCCCTCGAAAACCGGCTGCCGTGCATCTATCTGGTGGACTCCGGCGGGGCGTTTTTGCCGAAGCAGGATGAGGTGTTTCCGGATAAGGAGCATTTCGGCCGGATCTTCTACAACCAGGCCAGGCTGTCCGCCGCCAAGATCCCGCAGATCGCGTCGGTGATGGGGTCCTGCACTGCCGGGGGTGCGTATGTGCCGGCGATGAGTGATGAGACGGTGATCGTGCGGAACCAGGGGACTATTTTCCTGGGTGGGCCGCCGCTGGTGAAGGCGGCGATCGGGGAGATCGTGACCGCGGAGGAGCTTGGTGGCGGGGAGGTTCATTCGCGGGTTTCCGGGGTGACGGATCACTTGGCGGAGAACGACGAGCACGCGCTCCAGATTGTCCGTGACATTGTGGCCACACTGCCGAAGCCGGCGGCCCCGGCGTGGGACGTGGAGGCTTCCGTTGAGCCCGCGGCGGATCCGGAAGGACTCTACGGGGTGGTGCCTACGGATGTTAACGCCCCGTATGACGTCCACGAAGTGATTGCCCGGCTGGTGGACGGCAGCAGGTTCCATGAGTTCAAGAAGGAGTACGGCACCACCCTGGTGACGGGCTTTGCGAGACTGCATGGGCATCCGGTGGGGATTGTGGCCAATAACGGGGTGCTTTTCAGTGAGTCGTCGTTGAAGGGCGCGCATTTCATTGAGCTGTGTGACCAGCGCGGGATCCCGCTGGTGTTCTTGCAGAACATCTCCGGTTTTATGGTGGGCCGGGATTCGGAGCAGGGCGGGATCGCGAAGAACGGAGCGAAGATGGTCACGGCGGTGGCCACGGCGCGGGTGCCTAAGCTGACGGTGGTGATCGGCGGGTCCTTCGGTGCCGGGAATTATTCGATGTGCGGGCGGGCGTATTCGCCGCGGTTTTTGTGGATGTGGCCGGCGTCGCGGATCTCGGTGATGGGCGGGAACCAGGCCTCCAGTGTGCTTGCCACGGTGAAGCGGGACCAGTATGAGGCTGCCGGGCAGGACTGGTCCGAGGCGGATGAGGAGGCGTTTAAGGCTCCGATCCGGCAGCAGTACGAGGACCAGGGCAGCCCGTACTACTCCACCGCCCGCCTCTGGGACGATGGCGTGATTGACCCGGCCGATACCCGTACCGTGCTGGGTCTGGCGCTTGACGTCGTCTCCCGCACCCCGCTGCCGGAAACCTCCTTCGGCCTCTTCAGGATGTGAMETLVSRLDASSETFAANHAAQAALAAELRDTLAQTALGGPEKSRERHVARGKLLPRERIDQLLDDGSPFLEIAPLAANGMYDNESPGAGVIAGIGLVHGRQVLVVSNDATVKGGTYYPMTVKKHLRAQEIALENRLPCIYLVDSGGAFLPKQDEVFPDKEHFGRIFYNQARLSAAKIPQIASVMGSCTAGGAYVPAMSDETVIVRNQGTIFLGGPPLVKAAIGEIVTAEELGGGEVHSRVSGVTDHLAENDEHALQIVRDIVATLPKPAAPAWDVEASVEPAADPEGLYGVVPTDVNAPYDVHEVIARLVDGSRFHEFKKEYGTTLVTGFARLHGHPVGIVANNGVLFSESSLKGAHFIELCDQRGIPLVFLQNISGFMVGRDSEQGGIAKNGAKMVTAVATARVPKLTVVIGGSFGAGNYSMCGRAYSPRFLWMWPASRISVMGGNQASSVLATVKRDQYEAAGQDWSEADEEAFKAPIRQQYEDQGSPYYSTARLWDDGVIDPADTRTVLGLALDVVSRTPLPETSFGLFRMPGPT0008345_178DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008345-accD-K01970NANA
D1-29_015322247accA1COG4770Acetyl-/propionyl-coenzyme A carboxylase alpha chainATGACTGAAGCACCCCAACTGACTCAACCGGCCGTGAAGCAGGCTCTGTTCGATACCGTCCTGGTGGCGAACCGGGGCGAGATCGCCTGCCGGGTGATCCGGACCCTGCGTGCCCTGGGGATCCGCTCTGTGGCGGTTTACAGCGATGCCGACGCCGGTGCCCGGCACGTGCGCGATGCCGACGTTGCTGTCCGGATCGGTCCGGCCGCAGCGGCCGAGAGCTACCTGAAGATCGAGGCCATCATCCAGGCGTGCCGGGAGACCGGTGCGGAGGCGGTCCACCCCGGGTACGGGTTCCTGAGTGAGAATGTCGACTTCGCGCGTGCCCTTGAAGCCGCGGGCATCACGTTCATCGGGCCTGGGGTGGAGTCCCTGAACGTGATGGGGGACAAGATCCGGTCCAAGAACCACGTGTCCGGCTACGGCGTCCCCGTGGTTCCGGGAATCGCCAAACCGGGCATGACCGACGCCCAACTGGTCGAGGCCGCGGACGCCGTCGGGTTCCCCCTGCTGATCAAGCCGTCCGCGGGCGGCGGCGGGAAAGGCATGCATGTTGTGGAGCGGCAAGAGGAGCTGGCAGCAACGCTGGCTACTGCACGGCGCGTGGCCGCGAGTGCGTTCGGGGACGACACGCTGTTCCTGGAGCGGCTGATCCGGACGCCGCGGCATATCGAGGTCCAGGTCCTGGCGGACAACCACGGCAACGTGATCCATCTGGGGGAGCGTGAGTGCTCGCTGCAGCGCCGGCACCAAAAGGTCATCGAGGAGGCACCGTCGCCGCTGCTGGAATCCCTTCCCGACGGCGCCGCGGTGCGGGAACGGATCGGTTTGGCTGCCTGCCAGGCGGCCCGAAGCGTGAACTACAGCGGCGCCGGCACGGTGGAGTTCCTGGTCTCCGACGAGGCCCCGGACGAGTTCTTCTTTATGGAGATGAACACCCGCCTTCAGGTCGAACACCCCGTCACCGAAATGGTCACCGGCGTGGACCTGGTCGAGTGGCAGGTCCGGATCGCCGCCGGTGAGATGCTCACCGTAGCCCAGGCCGACGTCGAACTCACCGGCCACGCCGTCGAAGCCCGCGTCTACGCCGAAATCCCCGAACGTAACTTCCTGCCCTCCACCGGCACCGTCCTGCTGCTGGACGAACTGCCGGCCCGGCCGCAGCGCTCTGGCGCCCCGGCCCGGACGGAAGTGGCTACCGCCCAGGGCCGCGTCCGGGTGGATTCCTCCCTGCGCGAGGGCCTGGAAATCTCGTCGAACTACGATCCCATGATGTCCAAAGTGGTGGCCTGGGGCGGGGACCGGACGGCCGCCCTGGACACGCTGGATGGAGCACTTGCCGGCTATACGGCGCTCGGGCTGGAGACAAACCTTGAATACCTCCGGCTCCTGATCAACGATGACGACGTCCGCGCCGGGCACCTGGACACCGGCCTGATCGAGCGCAAGCTGCCGGGCTTCACCTTTCGGCGGGTGAACGACGCCGAACTGGTGGCCGCGGCCCTTTACGCCATGGCGAAGGAAGAAGAGGACACGGGCCAATCTCCATCGGATCTTTGGCATACCCGCAACGGCTGGCGCCTGGGCGCGCCGGCGCCCCGGCCGATCAGCCTCGGAACGCCCGACGGCGGTGCCGCAACAGTGCGCGTATCCGGCGGCCGGGTGCTGGATGGGCCAGTCATGGTCACCGTGGACAACGGGCCGGAGCGCGAAGCATCACTGGAGTTCCGCTCCCGCCGGGAAGCGGTGCTGACCCTTGCGGGGGAGACGGCGCTGTACTCGCTCGCGCCGGCCTACCGGGGTCCGGTAACTCCCACGTGGGACACGCCCGCTCCTGCCCGGCCCACCGAACTCTTCCTGGGAAACGGCGGCTGGTCGTGCCGCCTGGAGGTCCTGACCCGGGAGTCGCGGCTCGCCCGGGTGCTCGCGGCCATCCAACGCCAGGAAGGCGCCGCGGATCCGGCCGTGCGCTCCCCGATGCCTGGCACCGTGGTGTCCGTTTCCGTCGGCGAGGGAGAACACGTGGAGACCGGCCAGGTGCTGCTCTCGGTGGAAGCCATGAAGATGGAGCACCAACTGCTGGCGCCGCTGGCGGGCACTGTCCACCTCGGCGTGGGCCCGGGCGACCTGGTGAAGGTGGACCAGGTCCTCGCCACCATCCACCCGGACCCCGAGCAGGAGATTGAGCCACCGCCGGCCCCGGGGCAAACCCATCACGATTCCATGATTACTGGCAAGGGAGCCTAGMTEAPQLTQPAVKQALFDTVLVANRGEIACRVIRTLRALGIRSVAVYSDADAGARHVRDADVAVRIGPAAAAESYLKIEAIIQACRETGAEAVHPGYGFLSENVDFARALEAAGITFIGPGVESLNVMGDKIRSKNHVSGYGVPVVPGIAKPGMTDAQLVEAADAVGFPLLIKPSAGGGGKGMHVVERQEELAATLATARRVAASAFGDDTLFLERLIRTPRHIEVQVLADNHGNVIHLGERECSLQRRHQKVIEEAPSPLLESLPDGAAVRERIGLAACQAARSVNYSGAGTVEFLVSDEAPDEFFFMEMNTRLQVEHPVTEMVTGVDLVEWQVRIAAGEMLTVAQADVELTGHAVEARVYAEIPERNFLPSTGTVLLLDELPARPQRSGAPARTEVATAQGRVRVDSSLREGLEISSNYDPMMSKVVAWGGDRTAALDTLDGALAGYTALGLETNLEYLRLLINDDDVRAGHLDTGLIERKLPGFTFRRVNDAELVAAALYAMAKEEEDTGQSPSDLWHTRNGWRLGAPAPRPISLGTPDGGAATVRVSGGRVLDGPVMVTVDNGPEREASLEFRSRREAVLTLAGETALYSLAPAYRGPVTPTWDTPAPARPTELFLGNGGWSCRLEVLTRESRLARVLAAIQRQEGAADPAVRSPMPGTVVSVSVGEGEHVETGQVLLSVEAMKMEHQLLAPLAGTVHLGVGPGDLVKVDQVLATIHPDPEQEIEPPPAPGQTHHDSMITGKGAPGPT0019850_173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777NANA
D1-29_015331164acdA_1COG1960Acyl-CoA dehydrogenaseATGACAAATTTTGAACTCAGCGAGGAGTACCAGGACCTCAGCGACACCGTCCGGGACTTCGCGGACACGGTAGTGGCCCCGGTATCGGCAAAACACGACGAGGAGCACAGCTTTCCCTATGAAGTGGTGAAGCAGATGGCCGAGATGGGCCTGTTCGGATTGCCTTTCCCGGAGGAGTTCGGCGGGATGGGCGGGGACTACTTTGCCCTCGCCCTGGCGCTGGAGCAGCTGGGCAGGGTGGACCAGTCCGTGGCCATCACCCTGGAAGCCGGTGTCTCCCTGGGAGCCATGCCCGTGTACCGCTTCGGTACTGACGCCCAGAAGGAGGAATGGCTGCCCATCTTGGCATCGGGGCAGGCGCTCGCCGGCTTCGGGCTGACGGAACCGGAAGCCGGGTCCGACGCAGGCGGCACCAAGACCCACGCCCGGCGCGAGGGCGGACAGTGGGTGATCAACGGGAACAAGGAGTTCATCACCAATTCCGGGACGGACATCACCCGCCTGGTGACAGTCACGGCCGTGACCGGCCAGAAGGAACGCAAGGACGGGAGCGTCAAGAAGGAGATCTCCACCATCCTGGTGCCCACGGACACGCCCGGGTTCAAGGCCGAGAAGCCGTACAACAAGGTGGGCTGGAACGCCTCGGACACGCACCCGCTGACGCTGAAGGATGTCCGCGTTCCGGAAGAAAACCTGCTTGGGGCGGAGGGCCGCGGCTACGCGAACTTCCTGTCCATCCTGGACGAGGGCCGGATCGCGATCGCCGCGCTGGCCACCGGGGCGGCGCAGGGCTGCGTTGACCTGTCGGTCAAATATGCCAAGGAACGCAGCGCTTTTGGGCACCACATCGGCAAGTACCAGGCCATCTCGTTCAAGATCGCCCGGATGCAGGCCAGGGCCCACACAGCCCGGCTGGCCTACTACGACGCGGCCGCGAGGATGCTGGCGGGTAAGCCGTTCAAGACGGAGGCGGCCATCGCTAAGATGGTCGCAGGCGAGGCAGCCATGGACAACGCGCGGGATGCCACCCAGGTGTTCGGCGGCTATGGCTTCATCAACGAGTTCACCGTGGCACGCCACTACCGCGACTCCAAGATCCTTGAAGTGGGGGAGGGCACCACGGAAGTCCAGCTGATGCTGATCGCCCGCGAACTGGGACTGTAGMTNFELSEEYQDLSDTVRDFADTVVAPVSAKHDEEHSFPYEVVKQMAEMGLFGLPFPEEFGGMGGDYFALALALEQLGRVDQSVAITLEAGVSLGAMPVYRFGTDAQKEEWLPILASGQALAGFGLTEPEAGSDAGGTKTHARREGGQWVINGNKEFITNSGTDITRLVTVTAVTGQKERKDGSVKKEISTILVPTDTPGFKAEKPYNKVGWNASDTHPLTLKDVRVPEENLLGAEGRGYANFLSILDEGRIAIAALATGAAQGCVDLSVKYAKERSAFGHHIGKYQAISFKIARMQARAHTARLAYYDAAARMLAGKPFKTEAAIAKMVAGEAAMDNARDATQVFGGYGFINEFTVARHYRDSKILEVGEGTTEVQLMLIARELGLPGPT0002285_547DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-29_01534885scoA_2COG1788putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit AATGATTAACAAGGTTGTTGCCAGCGCGGAGGAAGCAGTTGCGGATATCCCCGACGGCGCGTCCCTGGCCGTGGGCGGGTTCGGCCTGTGCGGCATTCCGGTGGCCCTGATCGATGCCCTCCACCGCCGCGGCACCACGGACCTGGAAACGGTAAGCAACAACTGCGGGGTGGACGACTGGGGGCTTGGCATCCTGCTCCGCGACGGCAGGATCCGCCGCACCATCAGCTCCTATGTGGGTGAAAACAAGGAGTTTGCCCGCCAGTTCCTTGCCGGTGAGTTGGAGGTGGTGCTGACGCCGCAGGGAACCCTTGCTGAAAAACTCCGGGCCGGCGGCGCCGGCATCCCGGCCTTCTACACCAAGGCGGGAGTCGGCACCCAGGTGTCCGACGGCGGGCTGCCGCAGAAATACGACGCCGACGGCGGCATCTCCGTTGCGTCCGCTGCCAAGGAAGTGCGCACCTTCGACGACGTCGATTACGTCCTGGAGGAGTCACTCACGCCCGACTTCGGCCTGGTCCACGCCTGGAAGGGGGACCGCCACGGGAACCTGGTCTTCCACGCCACGGCCATGAACTTCAATCCGCTGTGTGCCATGGCGGGCCGGATCACCATTGCCGAGGTGGAGGAACTCGTGGAACCCGGAGAACTGGACCCCGAGCACGTCCACACGCCCGGCATTTTCGTCCAGCGCGTGGTTCTGGTGCCTGGCGTTGAGAAGCGCATTGAAAAGCGGACCGTGGCGCTGACTGCCCCGTCCGGATACGGTCCCGGCGCGTCAGGATCAGGACCAGCCCAGGCAGAACCGGGACAGCAACAGCAGCAACAGGCAGAACCGGGACAGAAGCAGCAGCAGCCACAACAGACACCACTGCAAGGAGCGTAGMINKVVASAEEAVADIPDGASLAVGGFGLCGIPVALIDALHRRGTTDLETVSNNCGVDDWGLGILLRDGRIRRTISSYVGENKEFARQFLAGELEVVLTPQGTLAEKLRAGGAGIPAFYTKAGVGTQVSDGGLPQKYDADGGISVASAAKEVRTFDDVDYVLEESLTPDFGLVHAWKGDRHGNLVFHATAMNFNPLCAMAGRITIAEVEELVEPGELDPEHVHTPGIFVQRVVLVPGVEKRIEKRTVALTAPSGYGPGASGSGPAQAEPGQQQQQQAEPGQKQQQPQQTPLQGAPGPT0008325_96DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028NANA
D1-29_01535762scoB_2COG2057putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit BATGGATCCGAACAGCCCGCAGGCTCCCCGTCCCGAAGGCGTCCGCCCCGAATACCGGCGGTCCGCTGCCGCGCAGCAGGACGAAACTGCTGCCGATACTAAGGGCTGGACGCGGAACCAGCTCGCGGCCCGCGTCGCACAGGAACTCAGCAACGGCCAGTACGTCAACCTCGGCATCGGCATGCCCACGCTCATTCCCAACTACATTCCGGCCGGTGTGGAAGTGGTGCTGCACTCAGAAAACGGGATCCTCGGCGTCGGTCCATATCCCGCGGAGGACCAGGTTGACCCGGACCTGATCAACGCAGGCAAGGAAACAGTCACGGTTAAGCCGGGTGCAGCTTTCTTTGACTCAGCGTCGTCCTTCGGCATGATCCGCGGCGGCCACGTGGACGTGGCCGTGCTGGGCGCCATGGAGGTGGCCGCCAACGGGGACCTGGCCAACTGGATGATCCCGGGAAAAATGGTCAAGGGCATGGGGGGTGCCATGGATCTGGTGTTCGGTGCCAAGAAAGTGATCGTGATGATGGAGCACGTGGACCGCAGCGGCAGGCCCAAGATCGTGCAGCAGTGCACGCTGCCGCTGACGGGAAAAGCGTGCGTGGACCGGATTATCACCGATCTGGCCGTGATCGACGTCGTGAATGAGGGAGGCGGGCCCCGGCTGGTGCTTCGCGAACTGGCGCCCAATGTTTCCCTTGAGGACGTGGCAGCTGCGACCGGCGCAGAGCTTTTTGAAGAGGACCGGGAACTGACCGTATGAMDPNSPQAPRPEGVRPEYRRSAAAQQDETAADTKGWTRNQLAARVAQELSNGQYVNLGIGMPTLIPNYIPAGVEVVLHSENGILGVGPYPAEDQVDPDLINAGKETVTVKPGAAFFDSASSFGMIRGGHVDVAVLGAMEVAANGDLANWMIPGKMVKGMGGAMDLVFGAKKVIVMMEHVDRSGRPKIVQQCTLPLTGKACVDRIITDLAVIDVVNEGGGPRLVLRELAPNVSLEDVAAATGAELFEEDRELTVPGPT0008330_8DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029NANA
D1-29_01536645hypothetical proteinATGAGCGATACTTCAGGGCCGGACCCCTACACGGCCGGCGGCTCTGACGCGCGCGTGATCCAGCAGCGCGGCCTCTACTTCGATGAAATCGAGGAAGGCGTGGTGTACGCCCACCGGCCTGGCCGGACGGTGACGGAAGCAGACAACGTCCTGTTCACCACCCTCACCATGAACACCCAGGCCCTGCACCTTGACGCCGCCTGGAGCGCCGGCCAACCGTTCGGCCAGCGGCTGGTCAACTCCATGTTCACCCTGGCCACGATGGTAGGCCAGTCTGTTTCCCAGCTGACCCAGGGCACCATCATTGCCCAGCTGGGACTGACCGATGTCTCCTTCCCGAACCCGCTCTATCACGGCGATACGCTCTATACGGAGACGGTGATTATCCTCAAGCGGGCTTCGGAATCACGGCCCGGACAAGGCATTGTCACCATGATGCACACAGGCAGGAACCAGGACGGAACGCCGGTGGCCCTGGCTACGCGGAGCTGCCTGATGTGGATGCGGGAAGCCCACGGCGCCAGCCAGCAGGAGCGCCTGCAGGAGCGCCTGCAGGAGCGCCGCGAGGAGCCTCCAAAGGGGGACCAAAAGGCTCCCGAAAAGGGGAGTCAGCAGGGGGACGAAAAGGGGACAATGTCCATATGAMSDTSGPDPYTAGGSDARVIQQRGLYFDEIEEGVVYAHRPGRTVTEADNVLFTTLTMNTQALHLDAAWSAGQPFGQRLVNSMFTLATMVGQSVSQLTQGTIIAQLGLTDVSFPNPLYHGDTLYTETVIILKRASESRPGQGIVTMMHTGRNQDGTPVALATRSCLMWMREAHGASQQERLQERLQERREEPPKGDQKAPEKGSQQGDEKGTMSINANANANANA
D1-29_01537840citECOG2301Citrate lyase subunit beta-like proteinATGAGCTTTGTGATGGGACCTGCCCTGCTGTTCTGCCCGGCCGACAGGCCCGAGCGCTACCAGAAGGCCGCCGAACGCGCGGATGCCGTCATCCTTGATCTGGAAGATGCGGTGGCCCCGGCTGACAAGCAAAGGGCCCGCGGCGCCATCCTTGCCCAACTGGGAGCGGGCGCCGACGTGCCCGAGCTGAATCCCAGCCGCACCATCATCCGGATCAATCCGGCCGGCACAGAAGAGTTCGAAAAGGACCTCCACTGCCTGGCCCACACGCCCTACCGGACCGTGATGCTGGCCAAGGCGGAGAGCGCCGCGCAGCTGGAAGCACTCCGGGATTACCACGTGGTGGCCCTGTGCGAGACTGCCGTCGGGGTCCTGAACGCCCCGGCCATCGCTGCTGCCCCCAATGTTGTGGCGCTGATGTGGGGGGCGGAGGATCTTTTGGCCTCCCTGGGCGGGACCTCCAGCCGGAAGGACGACGGCGGCTACCGGGCCGTCGCCCTGCACGCCCGCTCCGCGGTACTGCTGGCCGCACGGGCCCTTGGCAAGGAAGCAGTGGACGCCGTGTACGTCAATATTCCGGACCTCGCCGGGTTGGCAGTTGAAGCGGCAGATGCTGTGGCTTCAGGATTCAGCTCCAAGGCCTGCATCCACCCCACCCAGGCGAATGTTGTCAGGGGCGCCTACGCCCCTTCCGAGGCCGACGTTGCGGCGGCCACCAACCTGCTGCAGGCGGCTGCCTCGGCGGGATCAGGGGTCTTCCAATACAACGGCAAAATGATCGATGGCCCCATCCTCAAACATGCGGAAGCCACCATCCGCCGCGCCGGAGCCCACGCCTGAMSFVMGPALLFCPADRPERYQKAAERADAVILDLEDAVAPADKQRARGAILAQLGAGADVPELNPSRTIIRINPAGTEEFEKDLHCLAHTPYRTVMLAKAESAAQLEALRDYHVVALCETAVGVLNAPAIAAAPNVVALMWGAEDLLASLGGTSSRKDDGGYRAVALHARSAVLLAARALGKEAVDAVYVNIPDLAGLAVEAADAVASGFSSKACIHPTQANVVRGAYAPSEADVAAATNLLQAAASAGSGVFQYNGKMIDGPILKHAEATIRRAGAHAPGPT0019480_2768DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
D1-29_015381470hypothetical proteinATGGTGGACTGGGTTTCCTGGTTCGATGCGCCGGACTACGAATTCGCCCGGCAGGTGCTGCAGCGTGGCGTCGCGGCACTGTACTTTGTTGCGTTCCTGTCATCCCTCAACCAATTCCCGGCCCTCCTGGGCGAGCGGGGGCTTGTACCCGTTCCCGACTATTTGGAGAGATTTGGCACACGGGGGCGGCCTACCCTGTTCCGTTGGCGCTACTCAGACCGGTTGCTGCGTACAGTCTGCGCAACCGGCCTGGTGATCTCAGCACTGCTGGTGGCTGGACTTCCACAGCTGGGGCCACCCTGGTTGCCCCTGATTGCGTTCCTCTCGCTCTGGGTGCTGTACATGTCCATCGTGAACGTGGGGCAGACGTTCTACGGCTTCGGCTGGGAGATGCTGCTCCTGGAAGCAGGCTTCACCGTAGCCTTCCTGGGTTCGGACCAGACGGATCCGCCGCGCACCATCCTGATCCTGATTGCCTGGCTGGTGTTCCGGCTGGAGTTCGGCGCGGGAATGATCAAGATCCGTGGCGGCCAGGAGTGGCGGGACCTCACGGCCCTGTACTACCACCACGAGACCCAGCCGATGCCCGGGCCGTTGAGCCGGCAGGCGCACCTCCTGCCAAAGCCCTTCCATCGCCTGGAGGTCCTGGGCAACCACTTCGCCCAGCTGGTGGTGCCTTTCTTCCTTTTCGCCCCGCAGCCTCTCGCCAGCGCTGCCGCCGGGATCATCATCTTCACCCAGCTGTGGCTTGTAGCCAGCGGAAATTTCGCCTGGCTGAACTGGATTGCCATAGTGCTGGCCTTCGCAGCCGTCAGTGATCCGGTGGCCCATGCGGTATTTCCCGTCCTGCCCTTGGACTGGCATCCCGACAACGCGGGCCGGGAGACTCCCCTGTGGTGGCTCATCCTCACCCTGGCGGTAACGCTCCTGCTGGTGGTCCTCAGCTACTGGCCCGTGCGCAACCTGTTCTCCAGGCAGCAGCTGATGAATGCCAGCTTCAACCGCTGGCAACTCGTCAACACGTACGGCGCGTTTGGCACCGTCACGAAGCACCGGATCGAGATTGTGGTGGAAGGCACTTTGGACGAGGACCCGAACGACGGTGCGGAATGGCACGAGTACGGCTTCAAGGGAAAACCCGGGGACGTGCGCCGGCTGCCCCGGCAGTGGGCCCCGTACCACCTGCGCCTGGACTGGCTGATGTGGTTTCTGCCGCTCCGCACGGTCCACGAGGAATGGTTCTACGCCTTCCTCACCAGGCTGCTGGAAGCGGACCGGCAGACGCTGCGGCTGCTGCGGCACGATCCGTTCGACGGCGAACCGCCCCGGTGGGTACGCGCCCGCAGGTACCTCTACCGCTTCTCCACCCGGGCCGAGTTCCGTGAAACCGGCGAGCGCTGGGTACGGACTCCGCTCCCGCAAGCCATCCCCCCGCTCTCCCTCCGGCGCACACCCGGGCAAAAGAGGTAGMVDWVSWFDAPDYEFARQVLQRGVAALYFVAFLSSLNQFPALLGERGLVPVPDYLERFGTRGRPTLFRWRYSDRLLRTVCATGLVISALLVAGLPQLGPPWLPLIAFLSLWVLYMSIVNVGQTFYGFGWEMLLLEAGFTVAFLGSDQTDPPRTILILIAWLVFRLEFGAGMIKIRGGQEWRDLTALYYHHETQPMPGPLSRQAHLLPKPFHRLEVLGNHFAQLVVPFFLFAPQPLASAAAGIIIFTQLWLVASGNFAWLNWIAIVLAFAAVSDPVAHAVFPVLPLDWHPDNAGRETPLWWLILTLAVTLLLVVLSYWPVRNLFSRQQLMNASFNRWQLVNTYGAFGTVTKHRIEIVVEGTLDEDPNDGAEWHEYGFKGKPGDVRRLPRQWAPYHLRLDWLMWFLPLRTVHEEWFYAFLTRLLEADRQTLRLLRHDPFDGEPPRWVRARRYLYRFSTRAEFRETGERWVRTPLPQAIPPLSLRRTPGQKRNANANANANA
D1-29_01539744hypothetical proteinATGTTTGCTCTGGTGCTCATCGCCGTTGTAGCAGGGGCCCTGGCGCAACGCCTGGCGGGTCTTGGCTTCGGCCTGCTCGTGTCCCCTGTCCTGGTGGTGCTCCTGGGCCCGTTTGACGGCGTGCTGATCATCAACCTCTGCGGGGCTGTCTCCTCCCTGCTGATCCTGTCCCGGGTCTGGCGGTTTGTGGACTGGCAGCGATACTTCCGCCTGGCGCTCGCGGCCGTTGCAGGCGTGCTGCCCGGGGCGTGGCTGGCCAGCAACGTCCCCGAGGCGCCCCTGGAGATCTGCATCGGTGTGCTGCTCTTCATCGCTTTGCTGGCGTCGCAGCGGCTGACCCGCAGTTCGTGGCACGCCCGGGGGCCGGTTCCCTTGGTGTCGCTGGGATTCTCCAGCGGACTCATGAACGCCGCCGCCGGTGTGGGCGGACCGGCCATCACTGCCTATGCCATTGCCACGCGCTGGGACCAGAAGAGCTTCAGCGCCACCCTTCAGCCCTACTTCATGACCACCGGCTTGAGCTCCCTTGTGAGCAAGTACGTCCTGTCCGGCGGGCACGTCCCCGCCCTTGAGGGCTGGCAGTGGTTGGGAATCCTGGCGGCGATGGTGGCCGGCATCGTCGCCGGCGACCTGCTCTCGGGCCGGGTGCGTCCCGGCTCGGTCCGCAGGATTGTGGTGGGCATCGCGTATCTGGGAGCCGCCTCCACCCTGGTCAAGGGTGTTGTGGAACTGGCCGCAGCCTAAMFALVLIAVVAGALAQRLAGLGFGLLVSPVLVVLLGPFDGVLIINLCGAVSSLLILSRVWRFVDWQRYFRLALAAVAGVLPGAWLASNVPEAPLEICIGVLLFIALLASQRLTRSSWHARGPVPLVSLGFSSGLMNAAAGVGGPAITAYAIATRWDQKSFSATLQPYFMTTGLSSLVSKYVLSGGHVPALEGWQWLGILAAMVAGIVAGDLLSGRVRPGSVRRIVVGIAYLGAASTLVKGVVELAAANANANANANA
D1-29_015401185dxrCOG07431-deoxy-D-xylulose 5-phosphate reductoisomeraseATGCAGCCACGCAGAATCGTCCTCCTCGGATCCACCGGCTCCATTGGCACCCAGGCGATTGACGTCGTCGACGGCGCCCCGCACCTTTTTGAGGTCGTGGCGCTCAGCGCCGGTGGAGGGAACCTGGAGCTTCTGGCCCGGCAGGCCGTCCACACCGGGGCCCATGCTGTAGGTATTGCTGCCGGGGATCAACGGCGCCTGCGGGAGCTGATCGCCGCGGCGGCACAGGCCGCGGGACGGCCCGGGTACAGCCCGGAAATCATTGCCGGTCCGGATGCTTCCACCCGGATCGCCGAGGTGGAAGCTGACGTGGTGCTCAACGGCATCACCGGCTCCATCGGACTTGCCCCCACCCTGGCTGCACTGAGGTCGGGTGCGACGCTCGCCCTGGCCAACAAGGAATCCCTCATTGTGGGCGGCGCCCTGGTCAAGGCATCTGCACGGGAAGGCCAGATCGTACCGGTGGATTCTGAGCACTCAGCCATCGCCCAGTGCCTGCGCTCGGGCTCGGCTGAAGAAGTCGAAAAACTGATCCTGACAGCATCGGGCGGGCCATTCCGGGGCCGGAGCCGCGAAGAACTCCACCACGTCTCACCCCTGGAAGCGCTCGCGCACCCCACCTGGGACATGGGACTGATGGTGACCACCAACTCGGCAACCCTGGTGAATAAGGGCCTTGAGCTGATTGAAGCGCACCTGCTGTTCGACGTCCCGCTGGACCGGATCGATGTAGTGGTGCACCCGCAGTCCGTTGTCCATTCCATGGTCCAGTTTGTGGACGGCTCCATCATCGCCCAGGCCTCGCCGCCGGACATGCGGCTTCCGATCGCTCTGGGACTTGGCTGGCCGGACAGGGTGCCCAAGGCCGCATCGCCCTGTGACTGGACGCAGGCCACGAGCTGGACGTTCGAGCCCCTGGACACTGGAGCCTTTCCGGCCGTGTCCCTGGCCAAGGACGCCGCCAAGCAGGGGAGTACCTACCCGGCTGTGTTCAACGCCGCCAATGAGGAAGCGGTGACGGCCTTCCATGCCGGCCGGATCCGGTTCACGGAGATCGTGGATACGATCGACTCCGTACTCAGCGAACATTCAGGTTCCTCCGGGCTGACGGTTGAGTCAGTGTTGGATGCTGAGAGGTGGGCACGCGCCCGAGCCCATGAACGTTTAGCAGTCAGTAGCCTCTAGMQPRRIVLLGSTGSIGTQAIDVVDGAPHLFEVVALSAGGGNLELLARQAVHTGAHAVGIAAGDQRRLRELIAAAAQAAGRPGYSPEIIAGPDASTRIAEVEADVVLNGITGSIGLAPTLAALRSGATLALANKESLIVGGALVKASAREGQIVPVDSEHSAIAQCLRSGSAEEVEKLILTASGGPFRGRSREELHHVSPLEALAHPTWDMGLMVTTNSATLVNKGLELIEAHLLFDVPLDRIDVVVHPQSVVHSMVQFVDGSIIAQASPPDMRLPIALGLGWPDRVPKAASPCDWTQATSWTFEPLDTGAFPAVSLAKDAAKQGSTYPAVFNAANEEAVTAFHAGRIRFTEIVDTIDSVLSEHSGSSGLTVESVLDAERWARARAHERLAVSSLPGPT0007585_2073DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099NANA
D1-29_015411332rip1Zinc metalloprotease Rip1ATGAACCCCGTTCTCCTCTTTATCCTCGGTGTCGTCTTTGTGGCGATCGGCATAGCCGCGTCCATTGCACTGCACGAATTAGGGCATCTGGTTCCGGCCAAGCTGTTCAAGGTCCGTGTCACCAAGTACATGATCGGCTTCGGTCCCACGCTCTGGTCAAAGCGCAAAGGCGAAACCGAGTACGGGTTCAAAGCCATCCCGCTGGGCGGTTACGTGTCCATGATCGGCATGTACCCGCCCAACAGCCAGGATGGAACGGTCCGCCCCTCAAGCACCGGGATGTTCCAGACCCTTGCCAGTGAGGCACGATCCCTCGCCCATGAGGAGGTGGGGCCCGGAGACGGGAACAGGGTGTTCTACCGGCTGCCGGTGTGGAAAAAGATCATTGTCATGCTGGGCGGCCCGGCCATGAACCTCTTGATCGGACTGGTCCTCACTGCCGTTCTGCTGATGGGTTTTGGCATCGCCACAGCCACCACCACCATCTCCGACGTCTCCAAATGCCAGGTGGCAGCCGGCCAGACAGTGGATCCGGATTCCCCGGACTGCCAGCCAACCCCGGCCGCGGCGGCGGGACTGAAACCCAACGACGTCGTCACGTCCTTTGATGGAAAAGCCGTGACCGGCTGGGAGCAGCTGACCGAATGGATCCGGGCTTCGGCCGGCAGGGAAGTCAGCATCACCGTTGAACGGGATGGCACACCGGTCACCACTACCATCACACCGGTACTCTCGGCCCGGCCCATCGTGGGTGTGGACGGCCGCCAGGCAAAGGACGACGCCGGAAACCTGCTGTACCAGGACGTCGGCTTCCTGGGCATCGGCGCGCAGACTGAACTGGTGCCCCAACCGGCGTCGTCCGTGTTGCCCATGGCCGGAGAAAACATCAGCCAGGTGGCTGGCGTTGTCTTTAACCTTCCGGCCCGGGTGGCTGGGGTGGCCAAAGCAGCCTTCAGCGAGGAGCCCCGTGATCCGAATGGGCCCATTAGTGTGGTGGGGGTGGGACGCGTGGCCGGCGAGGTAGCCGCCATGGAGGAAGTGCCGGTGCAGTCCAGGCTGGCGGCCCTCGTGGGGCTCCTGGCCGGGCTTAACTTTGCGCTGGCAGTGTTCAATCTCATCCCGTTGCTTCCCCTTGATGGTGGCCACGTCGCGGGCGCGCTGTACGAAGGTGCCCGCCGCCGCGTGGCCAAGCTCTTCGGCAAGCCCGATCCAGGCGCGTTTGATATTGCCAAGCTCCTTCCGGTGACCTATGTTGTGGCGGCATTGCTCATGGGCATGGGTGCGCTCCTGATCTATGCAGACATCGTCAAACCGGTGAATCTCTTCGGCTAGMNPVLLFILGVVFVAIGIAASIALHELGHLVPAKLFKVRVTKYMIGFGPTLWSKRKGETEYGFKAIPLGGYVSMIGMYPPNSQDGTVRPSSTGMFQTLASEARSLAHEEVGPGDGNRVFYRLPVWKKIIVMLGGPAMNLLIGLVLTAVLLMGFGIATATTTISDVSKCQVAAGQTVDPDSPDCQPTPAAAAGLKPNDVVTSFDGKAVTGWEQLTEWIRASAGREVSITVERDGTPVTTTITPVLSARPIVGVDGRQAKDDAGNLLYQDVGFLGIGAQTELVPQPASSVLPMAGENISQVAGVVFNLPARVAGVAKAAFSEEPRDPNGPISVVGVGRVAGEVAAMEEVPVQSRLAALVGLLAGLNFALAVFNLIPLLPLDGGHVAGALYEGARRRVAKLFGKPDPGAFDIAKLLPVTYVVAALLMGMGALLIYADIVKPVNLFGNANANANANA
D1-29_01542705hypothetical proteinATGTACGTCATGACCATCGACCAGCGCGGAAGCAGAACGGACCTTGACCGGGTCCCCGGGCTCATCTCAGAGTTGATCGATTTGAGTTCGGCCCGCTTCGAGCGCTCGGTGGGCGATGAACTCCAGGGCGTGGTGGAACATGCCGCGGAAGTCGTAGACATCGCTTTGCATGCTCTCCGCAGCGGCTACTGGTACGTCGGAATTGGAATAGGCACGGTACACCTTGCCCCCGGCGCCGGGCCCCGGGAAGGAACGGGAACCGGGTTCGTGGCTGCCCGGAATGCGGTAGAGCAGGCCAAGAGTGCCGCTGGCCACGTTCCATTGTCAGTGGTGTCCGGCAGTATTGGGCGTGGAAGGGACATTCCCAGGCATGCAGTGGAAGGAGTCAACACCTGCGCCAACGCCGAGGCAGTCCTCCGCCTCATCGGCCGGCTCATCCAGGAACGCACCGAAGCCCAATGGAGAATTGTGGACCGGCTCCGGAGTATCCAGGGCAGCGGCGAAAGGCACGGCAGCCAAAAGCAGGTGGCCAAAGAACTGGGAATAACAGAACAGTCGGTGAGCCGCGCCGTGCTCAGATCCGCCTGGCAGGAAGAATGGGCTGCCAGACCCGCGGCGGCGATGCTGCTCGACTACGCCCATACCCGGATCCTGGCAGCGCCGGCTGCCGGGAAACAGGGAACACCTAACAAGGGAGACCGGTGAMYVMTIDQRGSRTDLDRVPGLISELIDLSSARFERSVGDELQGVVEHAAEVVDIALHALRSGYWYVGIGIGTVHLAPGAGPREGTGTGFVAARNAVEQAKSAAGHVPLSVVSGSIGRGRDIPRHAVEGVNTCANAEAVLRLIGRLIQERTEAQWRIVDRLRSIQGSGERHGSQKQVAKELGITEQSVSRAVLRSAWQEEWAARPAAAMLLDYAHTRILAAPAAGKQGTPNKGDRNANANANANA
D1-29_01543516hypothetical proteinGTGAACGCACTCTGGATTGCAGCTGCCTTACTGGTGGCAGGATTTGCCGGCTGGCCGGTGACAGCCCTCGTCTTCCGGCTGGCCAGGACCATCGACGACAAAGCCGATGCCGCTACCGCAAGCGACGAGGCAGCGAGGAGGGCGGCGGAGGATCCGTCCGCCGACGTCACGGTGGACACCGTGATTCCGGGCGCCGGTCAGACTGTCGACGGCGAGCTGACGGCGGAACCCGCGCACCCGACGTCGGGCGTTCCCGGTACTGAGCCCGCCCCCAGCCAGCGGATCCTGCGCGGCGGCGCCATCATCGGCGTCCTGGAGCGGCTGGGCGTATGCCTTGCCATCCTGACCGGTCAACCCGTGGCCATCGCCTATATCGTGGCCATCAAGGGCCTGGGCAGGTTCGCGGAGCTGAAGGAAACCCCGGTGGCTGCGGAACGCTTTATCATCGGAACGCTCACCTCGATGCTCTGGGCTGCGGGAATCGCGGCCACCGTCAAGGTGATGTTTCTTGGCTAGMNALWIAAALLVAGFAGWPVTALVFRLARTIDDKADAATASDEAARRAAEDPSADVTVDTVIPGAGQTVDGELTAEPAHPTSGVPGTEPAPSQRILRGGAIIGVLERLGVCLAILTGQPVAIAYIVAIKGLGRFAELKETPVAAERFIIGTLTSMLWAAGIAATVKVMFLGNANANANANA
D1-29_01544294hypothetical proteinATGACTGTTTTTGCCGTTGAGTACGTTTACGCCCCCGAATCCACCGCAGCCCGCGATGAAAACCGTCCCGCGCACCGCGCGTGGCTCTCAGATCTGGCCGAGGATGGCCGGCTGCTCACCAGCGGACCCTACGGTGACGGTGCAGGCGCACTGCTGATCTTCAAGGTCCAGGACGAATCACGGCTGAACGAACTGCTCAAACAGGATCCCTTTGCCGCCGCAGGCACCATCGCAGGCATCAGGACCACCGAATGGACTCCCGTGATCGGCATCCTGGCCGCCCACACGTCCTGAMTVFAVEYVYAPESTAARDENRPAHRAWLSDLAEDGRLLTSGPYGDGAGALLIFKVQDESRLNELLKQDPFAAAGTIAGIRTTEWTPVIGILAAHTSNANANANANA
D1-29_015451167ispGCOG08214-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)GTGACCTCGGTCAGCCTGGGAATGCCGTCAGCACCGCCGCCCGTCCTTGCACCCCGCCGCAAGACGCGCCAGATCAAGGTCGGTTCGGTGGGCGTCGGCTCGGACTCGCCCATCAGCGTTCAGTCGATGACCACCACGCCCACCACGGACATCAATGCCACGCTCCAGCAGATCGCGGAACTCACCGCGTCCGGCTGTGACATTGTCCGGGTGGCCTGCCCGTCTGCCGACGATGCCGAGGCACTGCCCATCATCGCCCGCAAGTCCCAGATCCCCGTGATCGCTGACATCCACTTTCAGCCCAAGTATGTGTTCGCGGCCATCGAAGCAGGCTGCGCCGCGGTCCGTGTCAACCCCGGCAATATCCGCAAGTTCGATGACCAGGTCAAGGAAATCGCCAAGGCGGCCAAGGACCACGGCACGTCCATCCGAATTGGTGTCAACGCCGGTTCCCTTGAACCCGGCATCATGAAAAAGTACGGCAAGGCCACGCCCGAAGCCCTGGTGGAATCTGCTGTCTGGGAGGCTTCCCTCTTCGAGGAACACGGCTTCCACGACTTCAAAATCTCTGTAAAGCACAACGACCCCGTCATCATGGTGGCTGCCTACGAAATGCTGGCAGAACAGGGTGACTGGCCGCTGCACCTCGGTGTCACCGAAGCCGGGCCGGCTTTCCAGGGAACCATCAAGTCTGCCGTAGCCTTCGGTGCCCTTCTCTCCAAGGGCATCGGGGATACCATCCGCGTTTCACTTTCGGCTCCTCCGGTAGAGGAAATCAAGGTGGGAAACCAGATCCTCCAATCCCTGAACCTGCGTCCGCGCAAGCTGGAGATTGTCTCCTGCCCCTCCTGCGGCCGCGCCCAGGTGGACGTCTACACCCTGGCCGAGCAGGTGACGGCAGGCCTTGAGGGGATGGAGATCCCGCTGCGCGTGGCGGTGATGGGTTGCGTCGTCAACGGGCCCGGGGAAGCCCGCGAAGCTGACCTCGGCGTAGCTTCAGGGAACGGCAAGGGGCAGATCTTTGTGAAGGGCGAAGTCATTAAGACTGTCCCTGAGAGCGAAATTGTTGAGACACTGATCGAAGAGGCCATGCGTATCGCGGAAGAGATGGGGGAGGCCGATGGCGAAGATGCTGTCAAAGGTAGCCCCGTGGTTAGCGTCTCGTAAMTSVSLGMPSAPPPVLAPRRKTRQIKVGSVGVGSDSPISVQSMTTTPTTDINATLQQIAELTASGCDIVRVACPSADDAEALPIIARKSQIPVIADIHFQPKYVFAAIEAGCAAVRVNPGNIRKFDDQVKEIAKAAKDHGTSIRIGVNAGSLEPGIMKKYGKATPEALVESAVWEASLFEEHGFHDFKISVKHNDPVIMVAAYEMLAEQGDWPLHLGVTEAGPAFQGTIKSAVAFGALLSKGIGDTIRVSLSAPPVEEIKVGNQILQSLNLRPRKLEIVSCPSCGRAQVDVYTLAEQVTAGLEGMEIPLRVAVMGCVVNGPGEAREADLGVASGNGKGQIFVKGEVIKTVPESEIVETLIEEAMRIAEEMGEADGEDAVKGSPVVSVSPGPT0007580_1640DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526NANA
D1-29_01546891hypothetical proteinATGCTGTCAAAGGTAGCCCCGTGGTTAGCGTCTCGTAAGGACGAAACCCCAGATGAGGGCATTACCGTCCGCACGTTGGGCGGATCGGACACCAACGCCCTGCGCAGCCTTGCCCTCCAGGACCCGGTAGCCAACGTCTTTATCCTCGCCCACCTGCGGGCAGCAGGGACCGTTGCGCCCACCAGCGGCGGAGCCGCTGTTCTGGGCGTCTTCGACGACGGTGTGCTGGTGGGTGCCTGCTGGACTGGGGCCAACCTGGTCCCGATCCAGCTGGACCCGGCCTTTGCCGGGCAGGTGGCTGCCGCGGCCAACAGGTCCGGGCGCCGTTATGCCTCGGCCTTTGGCCCTTCCGAGCCCGTCCTGGCGCTGTATGCAGAATTGGCGGAGCTGGGACACCTGGCGCACGAGGTCAGGGCGGAACAGCCCCTCATGACCCTGGCAGGTCCTCCCCTGGTGGAACCCAACAGGGACCTCGTGCTGGGCCGGCTGGCAGATTTTGACCGCATCCTCCCTGCCTGCGCCGCCATGTTCGAAGAGGAAGTGGGCTATTCGCCGTTCCTGGGCGGCCGGGAGTTCTACAGCCGGCGTGTGGAGGGCCTGATCAAGCAGGGCCATTCGCTCGTTCACCTCAACCCTGCGGGGGAGGTGGTGTTCAAAGCTGAGCTGGGAGCGGTCACTGCGGACGTCACCCAGATCCAGGGCGTGTGGATGAACCCCCTGTACCGCGGGCAGGGCCTGAGCGCAGGGTACATGGCTGCGGTGGTTGAGCACGCCAGGAAAATTGCGCCGGTCACCAGTCTTTACGTCAATGGCTTCAACTCGCGCGCCAGGGCTTCATATCAGCGGGTCGGATTCCGGGAAGTCGGAACATTCGCTACAGTTCTCTTTTAGMLSKVAPWLASRKDETPDEGITVRTLGGSDTNALRSLALQDPVANVFILAHLRAAGTVAPTSGGAAVLGVFDDGVLVGACWTGANLVPIQLDPAFAGQVAAAANRSGRRYASAFGPSEPVLALYAELAELGHLAHEVRAEQPLMTLAGPPLVEPNRDLVLGRLADFDRILPACAAMFEEEVGYSPFLGGREFYSRRVEGLIKQGHSLVHLNPAGEVVFKAELGAVTADVTQIQGVWMNPLYRGQGLSAGYMAAVVEHARKIAPVTSLYVNGFNSRARASYQRVGFREVGTFATVLFNANANANANA
D1-29_01547747hypothetical proteinTTGAACACGTCAGCGCTGCTCGGATTCTCGGCGTCAATACTTCTAGCGGCAGGGCTGACGGGCTGCGCCGGCGCACCTGGCGAGAGCGGGCCGCAAAGTGCAGTCAACTCCTCCACGCCGTCCCCGAGCGAGACGCCTTCGCCCACCAAAACCCCGGCAAAGTCCTATACGAGTGATGAACTGGCCGCTTTGGTGGGCCAGCTGACGGATGCAAAGGGAGTCAAGCTCGCGGTGATGTCCAGCACTGACCTGACCGGAGCCGCCGAGCAGGTCAAGACCCTTCTCTCCACCATGACTGTGGAGCCGGCAGTGTGCCAGGAAATGGCCATCTCCGGCGCTGCACCTTCGGTTGACGGCGCTACGGCTGCGATGGGGACAAGCCTTGACGCGGCTGAGGGAGCATCCACAGCAGTGGCCATGACTTCGGGGCTGGACCCCGCGTACCTGGCGCAGGCAATGGCCCAGTCGGATGAACTGTCCAAATGCGCGAACATGACCATTGGTATGGCAGGAACAAAGGTGGACGTCGCACTGACGCTGATCGATGGAGTGGGCACGCTTCCCGGAACGCTCGCGTACCGCACGGACAGCACGCTGCCTGATGGACAGAAGCAGTCAATGATCACGGCGCAGGCTGTAGTCCACGGCGTGCTTGTTACCGTGATTTCATCGGGTGGGACCACCGAGGAAGGAGCGTTGTCCCGGACGGGGGCAATGTTGGACCAGGCGGGTGCCCAGATTAAGTAGMNTSALLGFSASILLAAGLTGCAGAPGESGPQSAVNSSTPSPSETPSPTKTPAKSYTSDELAALVGQLTDAKGVKLAVMSSTDLTGAAEQVKTLLSTMTVEPAVCQEMAISGAAPSVDGATAAMGTSLDAAEGASTAVAMTSGLDPAYLAQAMAQSDELSKCANMTIGMAGTKVDVALTLIDGVGTLPGTLAYRTDSTLPDGQKQSMITAQAVVHGVLVTVISSGGTTEEGALSRTGAMLDQAGAQIKNANANANANA
D1-29_01548798hypothetical proteinATGACCGGGACGCCGCCCCTGACAAATCATCGGGCACATGGCGCAGGCCCACGGCGCAGCCAGGAAAAACCGGCCGACGGCGGCCCGGAGGCCGGTCCGGAACGCGGCCGGAAGGCCGGCCCGCACGCCAGCCAGCAAGCCGGTCCGGAGGCTGAAGGCCGGCGGGCCCACCCCGCGAGGAGGGGCCGGCGCGGTGGCGTGACGGCCTCCAGGGCCCACATCCTGAACACAGCCCGCAGGCTGTTCGCCGAGCACGGTTTCGAGGGCACCAGCCTGCGCCAGGTAGCCCGTGAGGCAGAAGTGGATCCGGCCATGATCCATCACTTCTTCAAGGGCAAGGACGAACTGTTTGCCCTCAGCGTCGCCCTTCCCGCCGACCGTGCAAAGGTGCTGGAAGGCGTGGACCGCCACGAACCCGGGCACCGGGCCGAAGCGATCGTCTGGGCCGTATTGCGGCTCTGGGAAAGCCCCGCCCAGCACAGCCTGGTGGCGTTCCTTCGCGGCACCATCGGTTCAAAGGCAAAGACGCTGCTGCTCAGGGAAATGGTGACCCGCACCATCCTGAGCAGGATTATGGCAGGCGTTCCCGGACCGCCCCAGGACGTCGCCCTGCGGGCAAACCTTGTGGCGACGCAAATGGTGGGTCTCATGCTGGTCCGCTACGTGGTGAGGCTGGAGCCCCTGGCCTCAGCCTCACCAGAGGACGTAGTGGCCCTCATCGCACCCAATATCCAGCACTATCTGACGGGCGAACTCACGGTGACGGAGCAGTCCCCTACTAAATCTGGCCCTACTTAAMTGTPPLTNHRAHGAGPRRSQEKPADGGPEAGPERGRKAGPHASQQAGPEAEGRRAHPARRGRRGGVTASRAHILNTARRLFAEHGFEGTSLRQVAREAEVDPAMIHHFFKGKDELFALSVALPADRAKVLEGVDRHEPGHRAEAIVWAVLRLWESPAQHSLVAFLRGTIGSKAKTLLLREMVTRTILSRIMAGVPGPPQDVALRANLVATQMVGLMLVRYVVRLEPLASASPEDVVALIAPNIQHYLTGELTVTEQSPTKSGPTNANANANANA
D1-29_01549756hypothetical proteinATGAATGTGCTGATGATGTTAGCTACCACCCGCCGCGTCCTGGAACAGCTGCGCCACGACCACCGCAGCGTTGCCCTCATCCTGGTTGTTCCGGCACTGCTGCTGACGGCCGTCTATTTTCTCTTCGAGAATGAGACGCTGCCGCCGGGCATGCCGCGAACCTTTGACCGGGTAGGCCTGATGATGCTGGCCATCTTCCCGTTTGTGGTCATGTTCCTGGTCACGTCCATCACCATGCTTCGCGAGCGGACGTCCGGCACCCTGGAGCGGCTGCTGACCACACCCGTCCACAAGGCCGATCTGCTTTTCGGCTACGGGCTGGCCTTTTCCATCATGGCCGCCCTTCAGTCACTGGTTGCCACCGCAGTGTCCTACTGGGTCTTCGAGCTGGACATCCAGGGCAGCCCGGCGCTGGTGGTCGTCATCGCCGTGATCAACGCCGTCCTGGGCGTCGCCCTGGGACTGCTCTGTTCCGCCTTTGCCCGGACAGAATTCCAGGCCGTCCAGTTCATGCCAGTTGTGGTGGTGCCGCAAATTTTGCTCTGCGGGCTCTTTGTTGCCCGCGACCGGATGAACGAGGTCCTGGAAGCGATCTCAAACGTTCTTCCGCTGACGTTCTCAGTCGAAGCGCTGCAGGAGATCGCAGCCAACGCGGACGCCACCGACCGGCTGTGGCAGGACGCCGGGATCATGGTTGCCATCGTCCTTGGGGTGTTGATCCTTGCCTCGCTGACCTTGCGCAGGCGAACGGCATGAMNVLMMLATTRRVLEQLRHDHRSVALILVVPALLLTAVYFLFENETLPPGMPRTFDRVGLMMLAIFPFVVMFLVTSITMLRERTSGTLERLLTTPVHKADLLFGYGLAFSIMAALQSLVATAVSYWVFELDIQGSPALVVVIAVINAVLGVALGLLCSAFARTEFQAVQFMPVVVVPQILLCGLFVARDRMNEVLEAISNVLPLTFSVEALQEIAANADATDRLWQDAGIMVAIVLGVLILASLTLRRRTAPGPT0006730_22467DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_01550852ybhFCOG1131putative multidrug ABC transporter ATP-binding protein YbhFATGTCACACTCAGCAGCAGCACCCGCCGTGGCGGAACACGGCCCGGCGGTGGTGGCACGCCACCTGCAGGTGACCAGGGGCAGGGTGCAAATTCTGCGGGGGCTGGATTTCTCCATTCCGCCGGGCCAGATCACGGGACTGCTGGGGCCATCCGGCAGCGGAAAGACAACCCTGATGCGGGCAATTGTCGGAGTCCAGCGGCTGACGTCGGGAACGGTCGAGGTCCTGGGCCTTCCCGCCGGGCATCCGACCCTGCGGCACAGCGTTGGCTATGTCACCCAGTCCCCCAGTGTCTACCCCGACCTGACCGTGGAGGCAAACGTCCGGTACTTCGGGGCCATGTACCGGAAAGGCCGGACCGATGCCGCAGCAGCAATTGCCGCCGTCGGACTGGAGCGGCAGGCCCGGCAGAAAACTGCTGACCTGTCCGGCGGAGAACTCAGCCGGGTGTCCCTCGCCTGCGCACTGGTCTCACATCCCAGGCTGCTGGTGCTGGACGAACCCACCGTCGGCCTTGACCCTGTGCTCCGGGCGGATCTTTGGGCCCGCTTCCGCGCCATGGCGCGGTCCGGAACAACACTGCTGGTCTCCAGCCATGTGATGGAGGAAGCGAGCCACTGTGCTTCGCTCCTGCTGTTGAGGGAGGGAGAGCTGCTTGCCCAGCTGACACCGCAGGAGCTGAGCCGGCGGGGCCGCAGCACGGACCTGGAAAAGGCCTTCCTCCAGGTCATCCGCGATGCAGGCAAAGCGCACGGCGCCGCGTCCGGTTCAGGTCACACGGCAGAAACCGGTCCGGTTCCGGACCTCCCGCCCGAAAGCGAAGCGACTCCCGAAAGCAGGGTTCGGTCATGAMSHSAAAPAVAEHGPAVVARHLQVTRGRVQILRGLDFSIPPGQITGLLGPSGSGKTTLMRAIVGVQRLTSGTVEVLGLPAGHPTLRHSVGYVTQSPSVYPDLTVEANVRYFGAMYRKGRTDAAAAIAAVGLERQARQKTADLSGGELSRVSLACALVSHPRLLVLDEPTVGLDPVLRADLWARFRAMARSGTTLLVSSHVMEEASHCASLLLLREGELLAQLTPQELSRRGRSTDLEKAFLQVIRDAGKAHGAASGSGHTAETGPVPDLPPESEATPESRVRSPGPT0006725_21725DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_015511812proSCOG0442Proline--tRNA ligaseTTGGTCCTCAGACTGTCCCAGCTTTTCCTGCGCACTCTTCGCGAAGATCCCGTTGATGCCGAGGTGGCCAGCCACCGCCTCCTGGTGCGGGCAGGCTATATCCGCCGCGCCGCCCCTGGAATCTACACCTGGCTGCCGCTGGGCCTCAGTGTCCTGCGGAAGGTGGAGGCCGTGGTCCGCGAGGAGATGAATGCCATCGGCGCCCAGGAGGTCCACTTCCCGGCGCTGCTGCCGCGTGAACCCTATGAGGCCACCAACCGCTGGACCGAGTACGGCGAAGGGCTCTTCCGCCTGCAGGACCGCAAGGGCGCGGACTACCTGCTGGCTCCGACGCACGAGGAAATGTTCACCCTCCTGGTCAAGGATCTCTACTCGTCCTACAAGGACCTGCCGCTGAGCCTCTACCAGATCCAGAACAAGTACCGTGACGAGGCGCGCCCCCGCGCGGGCCTCCTGCGCGGCCGCGAGTTCATCATGAAGGACTCCTATTCCTTTGATGTGGACGACGCCGGCCTGGACGCCAGCTACATGGCTCACCGCGGCGCCTACCTGAGGATCTTCGAGCGCCTGGGCCTGGAGGTCATTCCGGTAACGGCAACCGCGGGAGCCATGGGCGGATCAAAGAGCGAGGAATTCCTGCACCCCACCGAGATCGGCGAAGATACGTTTGTGCGCTCGGCAGGCGGCTACGCCGCCAACGTCGAGGCCGTCACCACCGTTGTCCCGGCCGGGATCGACTTCACCGATGCCCCGGCAGCGGAAGTCCTGGATACCCCGAACACGCCCACCATCGACACACTGGTGGCCGCCTCCAACGAACTGGCTCCCCGCAGCGAGGCCGACGGCGGCGCCTGGACTGCCGCTGACACCCTCAAGAATGTGGTGCTCGCCGTTACCCTGCCCACCGGTGAACGCCAGCTTGTGGTGATCGGCCTGCCCGGTGACCGGGGCGTTGACCTGAAGCGCGTGGAAGCCAATATCGGTTCCTTCCTGCCCATCGCAGGCGAGATCGGACTCGAAGCAGCCAACGACGAAGACCTCAAGAAGCAGCCCCTCATCGTCAAGGGCTACCTTGGCCCCGGCCTGACGCTGGAGGAGCCCCTGCTGGGCAGCGAAAGCTCAACCAAGCTCCTCTACCTCGTGGATCCCCGCGTTGTCAGCGGCACTGCCTGGGTCACCGGAGCCAACGAGGCGGGCAAGCACGTGTACGGCCTGGTGGCGGGGCGCGACTTCACCTGGGACGGCGTCATCGAATGCACCGACGTCCGCGAAGGTGATCCCGCCCCGGACGGCTCCGGCCCGCTGGAGATCGCGCGTGGAATTGAGATGGGCCACATTTTCCAGCTTGGGCGCAAATATGCCGAAGCCCTCGAGCTGAAGGTCCTGGACCAGAACGGCAAGCAGGTGGTGGTCACCATGGGTTCCTACGGCGTGGGGGTCACCCGGGCGGTGGCTGCCCTGGCCGAATCCAACCACGACGAAAAGGGCCTGGCCTGGCCGCGCGCCGTCGCCCCGGCCGATGTCCATATCGTGGCAGTTGGCCGCGGGGAGGAAATTTTCGCCACGGCCGAGCAGCTGGCCCTGGATCTTGAAGCGGCCGGCCTGGAAGTCATCTACGACGACCGACCCAAGGTGTCCCCGGGAGTGAAATTCGGCGATGCCGAATTGGTGGGTGTCCCCACCATCCTGGCCGTCGGGCGCGGCCTGGTGGACGGCGTGGTGGAGATCAAGGACCGCCGCAGCGGTGACGCCGAAAACGTGGCAGTGGACAAGGCAGTTGACTATGTGGTCAATGCCGTCCGCAACAGCTGAMVLRLSQLFLRTLREDPVDAEVASHRLLVRAGYIRRAAPGIYTWLPLGLSVLRKVEAVVREEMNAIGAQEVHFPALLPREPYEATNRWTEYGEGLFRLQDRKGADYLLAPTHEEMFTLLVKDLYSSYKDLPLSLYQIQNKYRDEARPRAGLLRGREFIMKDSYSFDVDDAGLDASYMAHRGAYLRIFERLGLEVIPVTATAGAMGGSKSEEFLHPTEIGEDTFVRSAGGYAANVEAVTTVVPAGIDFTDAPAAEVLDTPNTPTIDTLVAASNELAPRSEADGGAWTAADTLKNVVLAVTLPTGERQLVVIGLPGDRGVDLKRVEANIGSFLPIAGEIGLEAANDEDLKKQPLIVKGYLGPGLTLEEPLLGSESSTKLLYLVDPRVVSGTAWVTGANEAGKHVYGLVAGRDFTWDGVIECTDVREGDPAPDGSGPLEIARGIEMGHIFQLGRKYAEALELKVLDQNGKQVVVTMGSYGVGVTRAVAALAESNHDEKGLAWPRAVAPADVHIVAVGRGEEIFATAEQLALDLEAAGLEVIYDDRPKVSPGVKFGDAELVGVPTILAVGRGLVDGVVEIKDRRSGDAENVAVDKAVDYVVNAVRNSNANANANANA
D1-29_01552795yfcACOG0730putative membrane transporter protein YfcAGTGATTTCGGGTTTTGAGTCGATCGAGCTCACCACTCTCATCCTGATTGTGGTGGCTGGATTCGCTGCCGGCTGGGTGGACGCCGTGGTGGGCGGCGGCGGCCTGATCCAGCTTCCGGCGCTCCTGCTGGTGCCTGGCATCACGCCTGTCCAGGCCCTCGCCACGAACAAGATGGGGTCGATCTTCGGGACGTCCACCAGCGCCGTCACCTTTTACGGACGGGTGAAGCCGGACCTCTGGACCGCCGTCCCTATGGCTCTGATCGCCCTTGCCGGAAGCTTCGGAGGCGCTATCTTGGCGGCGAACCTGCCTTCAAGTGTCTTCAAGCCCATTATCGTGGTGGCGCTGGTCGCCGTCGCGCTCTTTACCGCCCTCAAGCCCAATGTCGGTGACATCACGCTGCTGCGGCACAACGGGCACAGGCACTACGTGGTGGCCTGCCTGATCGGGGGCGCCATCGGATTTTACGACGGCCTGATCGGGCCCGGCACCGGTTCGTTCCTGGTCATCGCGCTGGTCTCCGCCATGGGCTACGCCTTCCTCGAAGCCAGCGCGAAAGCCAAGATCGTGAACATGGCCACAAACGCCGGTGCGCTGCTGTTTTTCCTGCCGCACGGCTCCATCCTGTGGGGTGTTGGACTGGTGTTGGGTGCCGCTAACATGGCGGGCGGATACCTTGGAGCACGGGCTGCGGTGAAGCAGGGCAGCGGGTTCATCCGTGTTGTCTTCCTGCTGGTGGTGAGCGCCCTGATCCTCAAATTGGGGTACGACGTCTGGCAGGAAAACTTCGCCTGAMISGFESIELTTLILIVVAGFAAGWVDAVVGGGGLIQLPALLLVPGITPVQALATNKMGSIFGTSTSAVTFYGRVKPDLWTAVPMALIALAGSFGGAILAANLPSSVFKPIIVVALVAVALFTALKPNVGDITLLRHNGHRHYVVACLIGGAIGFYDGLIGPGTGSFLVIALVSAMGYAFLEASAKAKIVNMATNAGALLFFLPHGSILWGVGLVLGAANMAGGYLGARAAVKQGSGFIRVVFLLVVSALILKLGYDVWQENFAPGPT0027725_1572DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-AbrB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027725-antitoxin_abrB-K07120NANA
D1-29_015531398COG0076Tryptophan decarboxylaseATGTCCGCAGGCGCTGAAACCTATTCGGAAGCATTGGCAGCAGCGGCGCGCCTCGCCGCGGAGTGGCTTAAGAGCCTTCCCGACAGGCATGTCGGTCCTACGTTGACCGCACATGACCTTGTTGCTGATTTCGGAGGCCCGCTTCTTGCCGAGGGTATGCCGCCCGTTGACGTGGTGGAGTACTTGGCCGCCAAGGCTGATCCAGGCCTGATGGCCATGCCTTCGGGCCGTTTCTTTGGCTGGGTGATTGGCGGGACCCTGCCCGCCGCCCTGGCCGCGGACTGGTTGGTAAGTGCGTGGGACCAGAATTCGGGCCTGCGCTATGCCACGCCGGCGATCGCGGCGATTGAGGAAGCGGCCGGGCATTGGCTGCTCCAGCTCCTGCGGCTGCCGGAAGAGTCCGACGTCGGCTTCACCACCGGCGCAACCATGGCCAACTTCACCGGCATGGCAGCTGCACGGTGGCGGCTGATGGCAGATGCAGGCTGGGATATGGACCGGAACGGGCTGGCCGGCGGCCCGCGGATCAGGTGTTTCGTCGGACAGGAACGCCACGAAACCATCGATCTGGGCCTGCGCTACCTCGGCCTGGGCCAACCCACGGCAGTCCCTGTCGATGCGCAGGGGAGGCTGATTACGGGCGAGCTGGACAGGCTGCTCGCGGAGGGTTCCGGCCCTGCCCTTGTATGCCTCCAGGCAGGGAACCTCCATTCAGGAGCCTTCGATCCCTTCGACGCTGCCATCCAGGTTGCCCACAGGCACGGGGCCTGGGTTCATGTCGACGGTGCTTTCGGACTGTGGGCCGCGGCAGTTCCCGAATTCGCCCACCTTACAGCAGGCATGGACCTGGCCGACTCCTGGGGAACCGATGCCCATAAGACCCTCAATGTGCCGTACGACTGCGGCGTCGCAGTGGTGAAGGACTCCCGGGCACTGCGCAGCGCCATGGGATTGCACACCAGCTATCTGGTCCACGACGCAGAAGGCCCCGGCGATCCCTTCGAGAAAGCGCCCGAGCTTTCCCGGCGTGGCCGCGGAGTCCCCGTGTGGGCAGCCCTCCGTTCCCTGGGCAGCGACGGTGTGTCTGACCAGGTCCGCGGTCTGGCGCAGGCAGCGTTACTGATCGCGGAGCGGCTGATTGAAGTGGATGGCATCGAAGTGCTGAATCCGGTGGACTATACCCAGGTTTCCCTCGCCTTCGGGGACGACGCCACCACCCGTGCGGTGACAGCCAGGGTCATCCAGGACGGAAAAGTCTGGATGTCCGGATCACGCTGGCAGGGCCGGGACGTGTTGCGCGTCTCGGTCAGCAACTGGAGCACAGACATGAACGACGTCGATACTGCGGTGGACGCTGTCAGTTCGGCCTTCGCCGCTGTCAATGCCCAAACCGGCTGAMSAGAETYSEALAAAARLAAEWLKSLPDRHVGPTLTAHDLVADFGGPLLAEGMPPVDVVEYLAAKADPGLMAMPSGRFFGWVIGGTLPAALAADWLVSAWDQNSGLRYATPAIAAIEEAAGHWLLQLLRLPEESDVGFTTGATMANFTGMAAARWRLMADAGWDMDRNGLAGGPRIRCFVGQERHETIDLGLRYLGLGQPTAVPVDAQGRLITGELDRLLAEGSGPALVCLQAGNLHSGAFDPFDAAIQVAHRHGAWVHVDGAFGLWAAAVPEFAHLTAGMDLADSWGTDAHKTLNVPYDCGVAVVKDSRALRSAMGLHTSYLVHDAEGPGDPFEKAPELSRRGRGVPVWAALRSLGSDGVSDQVRGLAQAALLIAERLIEVDGIEVLNPVDYTQVSLAFGDDATTRAVTARVIQDGKVWMSGSRWQGRDVLRVSVSNWSTDMNDVDTAVDAVSSAFAAVNAQTGNANANANANA
D1-29_015541098hypothetical proteinATGAGCCAAAAGACCGGAGTGCCGATCCCTCCAGACCTCACCGCGCGGTACAGCCGCAGCAGTGCGGGCCGGGCGTGGCTGGCGTCCCTGCCGGGCCTGATGCACGGGCGCCTGGATCACTGGGAGCTGGAGGCAGAACTTGCCCCCGGCGAGCTTCCGTGGAACGGGCATGGCGGCGTCGTCATTCCGGTCCGGCGGCTGGACGGTACCCCCGCCGCCCTCAAGATTGCCTTCCCGCACGATGAGGCCCGCGTTGAACGCCACGCATTGGCGTTGTGGGCCGGACGCGGCGCGGTGCGGTTGCTGGAGTCCGACGCCGGAACTTGCGCCATGCTGCTGGAACGCCTGGACGCGGGCTGCTCTCTGCAGACAGTTCCGATGGACAATGCCGTCACGGTGTGGGGCGGACTGATGCGCCAACTGAGCCTGATACCGGATGATAGGCCCCAGTGGCAGGAGTTCGATCATATTGCCGGACGGGCCGAGCAGTGGAGCGATGACTTGCCGGCCGACTGGGAGCAGATGGGCCGGCCTTTTCCGCGCTGGCTGCTGGAGGCGGCCCTTGAAGTCTGCCAGACCCGGGGCGCGGTGGGCCGCCGCGCGGGACGGGATGTGCTGGTGCACACCGACTTCCATTTCCTGAACATCCTGGCGAGAACCGGAACGGGCAGAGCAGGCATCGTAGAGTCTATTGCGGAGCCAGGCATCGAGTCCGGTGAACAGGATGCCGCAGCCCTGACGGACGGCCGGGCGTTCGCCGCGATCGACCCCCAGCCCATGATTGGCGAGCCGGAGTTTGCTGTGGCGCCCCTGCTGTGGAACCGGATCGCGGACCTTCCAAGGAGCGGCCCGGAGGCCGGTCTGCGGCAGCGCTGCGTGGACTTCAGCTCCGCCGCCGGCCTGGATGCTGACGTTGCCCGGCAATGGGGTATTGCACGGGAGGTGGAGAATGCCCTCTCATACGCCGCCCGGCCGTACCATCAGGGCGATTTTGCGCGATCACTCTGGGTGGCCAGTACCTTGGCTGGACGGACGCTGGACGGACTTCCCGCCCCGCATTCGCTGCCAGAACCCGGCGAGGAACAGTCGGCCCTCTGAMSQKTGVPIPPDLTARYSRSSAGRAWLASLPGLMHGRLDHWELEAELAPGELPWNGHGGVVIPVRRLDGTPAALKIAFPHDEARVERHALALWAGRGAVRLLESDAGTCAMLLERLDAGCSLQTVPMDNAVTVWGGLMRQLSLIPDDRPQWQEFDHIAGRAEQWSDDLPADWEQMGRPFPRWLLEAALEVCQTRGAVGRRAGRDVLVHTDFHFLNILARTGTGRAGIVESIAEPGIESGEQDAAALTDGRAFAAIDPQPMIGEPEFAVAPLLWNRIADLPRSGPEAGLRQRCVDFSSAAGLDADVARQWGIAREVENALSYAARPYHQGDFARSLWVASTLAGRTLDGLPAPHSLPEPGEEQSALPGPT0028755_20DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028755-strB-K04343NANA
D1-29_01555774hypothetical proteinATGGACGCCCATAAGCCGCCTGACTCCCCCGACGCAGCCCCCAGCGCGGACAACACCGGATTGGAACGCCATCTGGAAACCGAGCCGCACGACAACGACATCGCCCAGCGCCTCAACTGGCTGCGGGCTGGCGTGCTTGGAGCGAATGACGGCATCGTCTCCGTTGCGGCCATCGTGGTGGGGGTCGCCGGGGCGACCGCCGCTACCGGCGCCATCCTCGCCGCCGGAGCAGCCGGACTGGTGGGCGGCGCAGTTTCCATGGCATTGGGCGAATACGTTTCCGTCAGCAGCCAAAGCGACAGCCAAAAGGCCCTGATCGACAAGGAACGGCGGGAACTTGCCGAAGAGCCGGAGGAAGAACTCGCAGAGCTGACCGCAATCTACCGGGACAAAGGCCTCAGCCCCGAAACCGCCCGCGCTGTAGCGGTGGAACTGACAAACCACGACGCCCTGGCGGCCCATCTATCCGCTGAACTCAACATCGACGAAGCCGATATCGTCAGCCCCTGGACCGCCGCCTTCGCATCCGCCGTCGCTTTTACCCTCGGCGCTGTCCTCCCGATGCTGGCCATCCTCCTGCCTCCGCCTGCCATCAGGGTTCCGACGACGTTTGCCGCAGTCCTGCTTGCCCTGGCCCTCACGGGGGCAGTGGGCGCGTGGATCGGGGGCGGGTCGAAGTGGCGGGCTGCGGCCAGGGTTGTGGTTGGCGGCGCCTTGGCCCTTGCGGCGACGTTCTCCATCGGCAATCTGCTCGGGGCCAGCGGCGTCGTGTGAMDAHKPPDSPDAAPSADNTGLERHLETEPHDNDIAQRLNWLRAGVLGANDGIVSVAAIVVGVAGATAATGAILAAGAAGLVGGAVSMALGEYVSVSSQSDSQKALIDKERRELAEEPEEELAELTAIYRDKGLSPETARAVAVELTNHDALAAHLSAELNIDEADIVSPWTAAFASAVAFTLGAVLPMLAILLPPPAIRVPTTFAAVLLALALTGAVGAWIGGGSKWRAAARVVVGGALALAATFSIGNLLGASGVVNANANANANA
D1-29_015561287hypothetical proteinGTGACACCATGGTCTGTTGTGAACGATGACAGTCAGGAAAAGAGGCCCCGTGGGCGCTATTTCCGCTACGCTGTTTTGTCGCTCACAGCCCTTCTGGTCCTCAGCCTGGGAATTGCCCTGATCCCCCATGAGCCGCCTCCGCCGCCGGAACCGCCGTTCTCCGAGCAGGCCAGGGCCGCGGCGTTCGCTGATGCCGTGTCATTGCGGTCATCAATCATGGAGCTGGCGGGCCCCGCCGCTGATCCCGGCACCCCTGGTTCCGGGACTCCTGACCCTGCATCCGGCCGAGCCTCCGGCCACGTGATCCTGGACCGCGTTGTGACTTTGCTGACGTTTCAGGCCAGGGCGCTGATGCTGCCTCCTGACGGATCCTCTGCAGAGGCAGGAGCAACAGCCGCAGAGGGAGCCGGACCCGGGACAGCGTCAGCAGAACCTTCCCCAACTGCCGCCGCGCCGGTGCCCCCTTCTCCTGCCGAACTTGTGGCCGCGCTCTCGGCCAGCGGGGCCAAGCGCCTCAGCGATGCGGGAATGGCCGACGGCGGAATGGCCCGGCTTCTTGCCGGCACCGGTGCCGCACAGCTCCTCGCCGCCACGGAACTTGCCGCGTTCGCCGGCGTTCCGGCCCCGGCACTTCCGTCCGCTGTTCCACACTCTGTACCTTCTCCCTCTGAGCTTTCTCCCTCAGCACTTCCTCCTTCCGAACTTTCTCCTTCCGCACTTCCGGGGGCCGGCGGAACGGAGGGAGCAGCTGAAGGCGCGCCTGATGAAGAGCCTGATGAAGAAGGGACGCCCGGCCGGGACAGTGCAGCGGGGCTGGCTGCCAATTGCGGAACTGCGGAGCCATCGGCAGGGACAGAGCTAGCGGCTGCCCTCACCTCAGCTGTGGAAGCCGAGCTGGAAGCGGTGTACGGATATCAGGCAGCGCTCACCCGGCTGGATCCGGCATTGGCGGCCGCGGCGTCGGACCTTCTGGAACAGCACCACGACCTGGTCGAACGGGGCGTGTACTACAGCAGGATCCACTGCGCTACGATTCCACCCCCACAGCCTGGCTACGTTCTCAGCCAGGCATTCCTTGACGCACCGGCGGCGGGGCTGGGGCGGATCGAGGCCAGTACTTTGCCGGTCTACGGTGACGTGGTGGCCATGAGCCAGGGTGCCACCCGCCAGTGGGCCATCTCCGCCCTACTGAATGCAGCGCGGAGGACAGTCCAGTGGGGAGCTGACCCGGGTCCCCTTCCGGGCCTTTCCTTGGATGAATCCCAGCTGCCGCAGCTACCGGCGTGAMTPWSVVNDDSQEKRPRGRYFRYAVLSLTALLVLSLGIALIPHEPPPPPEPPFSEQARAAAFADAVSLRSSIMELAGPAADPGTPGSGTPDPASGRASGHVILDRVVTLLTFQARALMLPPDGSSAEAGATAAEGAGPGTASAEPSPTAAAPVPPSPAELVAALSASGAKRLSDAGMADGGMARLLAGTGAAQLLAATELAAFAGVPAPALPSAVPHSVPSPSELSPSALPPSELSPSALPGAGGTEGAAEGAPDEEPDEEGTPGRDSAAGLAANCGTAEPSAGTELAAALTSAVEAELEAVYGYQAALTRLDPALAAAASDLLEQHHDLVERGVYYSRIHCATIPPPQPGYVLSQAFLDAPAAGLGRIEASTLPVYGDVVAMSQGATRQWAISALLNAARRTVQWGADPGPLPGLSLDESQLPQLPANANANANANA
D1-29_01557618rimPRibosome maturation factor RimPGTGAGTAATGCAGAAGCCACGACTTCATCAGACCGTACCGGAACGGGTAGGGCTGAAGCTGTGCCTGCCTACAATCCGGAAGCTGCCCGGCTTCGGGCATTGCTTGAACCCGCTGTGCAGGCCAACCGCCTGTACCTGGAGGACGTCACTATTAATGTGGCCGGATCCCACCGAGTGGTCCACGTTGTGGTGGACCTGCCGCAAGAGGAAACCGGCGGCGTGAACCTGGACGTCATCTCGGACATCTCCAAGGTCCTCTCGGACGTTATGGACAACGACCCCGGTGACGACGGACGTCCCTACGATCTCGAGGTTTCCTCCCCGGGAGTTGGGCGCCCGCTGACCGAACCGCGGCACTGGCACCGCGCCAGGGGCCGGATGGTCAAGGTCAACGTCATCCAGGGCGAGAACGTCACCGGCAGGGTCCAGTCCGTGGATGACTCCGGTGTGACCATCGTCCCCGAAATCGCCGTCAAGAAGGGCATGAAGCCCAAGCAGGGCGAGCCCGTGAAACTTCCTTTCGACAGGATCCGCAATGGAAAAGTCGAGATCGAATTCAGCCACCTCGAAGAAGCTGGTCTGGAACCTGAGCACAATGGACCTTCTGAGGAGGCCTGAMSNAEATTSSDRTGTGRAEAVPAYNPEAARLRALLEPAVQANRLYLEDVTINVAGSHRVVHVVVDLPQEETGGVNLDVISDISKVLSDVMDNDPGDDGRPYDLEVSSPGVGRPLTEPRHWHRARGRMVKVNVIQGENVTGRVQSVDDSGVTIVPEIAVKKGMKPKQGEPVKLPFDRIRNGKVEIEFSHLEEAGLEPEHNGPSEEANANANANANA
D1-29_01558981nusACOG0195Transcription termination/antitermination protein NusAATGGATATTGACATGAGCGCGCTGAGACTCCTGGAGCGTGAGCGCGAAATTCCGCTGGACCTCCTGATCCCTACCATCGAGCAGGCGCTTCTGGTGGCCTACCACAAGTCGCCGGGCGCCTTCGAGAAAGCCCGCGCCGAGTTGGACCGCAAGAGCGGTCACGTCACCATCTGGGCCGTGGAAATCGACGACGACGGTGCCCCCATCGGCGAGTTCGAGGACACCCCTGCCGGCTTTGGCCGCATTGCGGCGAGCACCGCCCGCCAGATCATCCTGCAGCGCCTGCGTGATGTTGAGGACGACAACGTCCTCGGCGAGTTCAAGGGCCGTGAGGGCGAGCTCGTTGCCGGCACCATCCAGCAGGGAAACAACCCCCACATGATCCAGGTCAACCTGGGCACTGTGGAGGCCCTGCTGCCGCCGCCGGAACAGGTGCCGGGGGAGAAGTACATCCACGGCAACCGGCTCCGCGCCTTCGTCATTGATGTTCACCGCGGCACCAAGGGTCCCTCCATCACGCTGTCCCGTTCGCACCCCGGCCTGGTCCGGAAACTGTTCGAACTGGAAGTGCCGGAAATCGCTGACCGCTCGGTGGAGATCGTTGCACTGGCACGCGAAGCCGGTCACCGTACCAAGATTGCGGTCAAGGCGAACACTCCGGGCATCAACGCCAAGGGCGCCTGCATCGGCGAAATGGGGTCCCGCGTCAGGGCGGTCATGACCGAGCTGAATGACGAAAAGATTGACATCGTGGACTACAGCGAGGATCCGGCGACGTTTATCGCCAGTGCCCTGTCTCCGTCCCGTGTGAATTCGGTCACCATCATCGATGAGGCCACCCGGTCTGCACGGGTTGTGGTTCCGGATTACCAGCTCTCGTTGGCCATCGGCAAAGAGGGGCAGAACGCCCGGCTTGCTGCCAAGCTCACCGGCTGGCGGATCGATATCGTCTCCGACGCCGCCGCGCAGCGCGACAGCTAAMDIDMSALRLLEREREIPLDLLIPTIEQALLVAYHKSPGAFEKARAELDRKSGHVTIWAVEIDDDGAPIGEFEDTPAGFGRIAASTARQIILQRLRDVEDDNVLGEFKGREGELVAGTIQQGNNPHMIQVNLGTVEALLPPPEQVPGEKYIHGNRLRAFVIDVHRGTKGPSITLSRSHPGLVRKLFELEVPEIADRSVEIVALAREAGHRTKIAVKANTPGINAKGACIGEMGSRVRAVMTELNDEKIDIVDYSEDPATFIASALSPSRVNSVTIIDEATRSARVVVPDYQLSLAIGKEGQNARLAAKLTGWRIDIVSDAAAQRDSNANANANANA
D1-29_01559432hypothetical proteinGTGCGCGTCCTGCGCCGAAGGCTGAGACTCCTGCCGCTCCCACCCGCTCTGGCGGATCAACACAGGGTGGATCCGGCCAGGGTGGCGCCCCGCGTCCGGGCGGTCCCCGTCCGGGCAACAACCCGTTTGCCACGTCGCAGGGCATGCCCCGCGGCCGCGGCGGCGACGGAGAACGTGCTCCGCGTCCGGGCAATAACCCGTTTGCTCCGTCGCAGGGTATGCCCCGCCCGGGTGGAAGCCGCACCGACGGCGACCGTCCCGGTGGTCCGCGTCCCGCAGCAGGTGCCGGTGGCCCCCGTCCGGGTGGTCCGCGTCCCGCAGCAGGTGCCGGTGGCCCCCGTCCCGGTGGTCCGCGTCCCGCCGCTGGCGCCGGCGCTGGTGGCCCCCGTCCCGCGGGTGGTGCCGGTGGAAACCGTCCTACTCCGGGCATGAMRVLRRRLRLLPLPPALADQHRVDPARVAPRVRAVPVRATTRLPRRRACPAAAAATENVLRVRAITRLLRRRVCPARVEAAPTATVPVVRVPQQVPVAPVRVVRVPQQVPVAPVPVVRVPPLAPALVAPVPRVVPVETVLLRANANANANANA
D1-29_015601851infBCOG0532Translation initiation factor IF-2ATGAGTGCTCCGTCGCTGGGTGGCGTGAGCGTACCCCGCGGCGACGGCAACACCGTAGTACGTCTTCGCCGTGGCTCGTCCATCACGGACTTCGCCGACAAGATCGAGGCAAACCCCGCCGCACTGGTGACCGTGCTGTTCCACCTTGGTGAAATGGCAACGGCTACCCAGTCGCTGGACGAGGAAACCTTTGCACTGTTGGGCGAAGAGCTCGGCTACAAGCTCCAGGTTGTGTCCCCGGAGGATGAGGAGCGCGAGCTGCTCTCCACCTTTGACATTGACTTCGAAGCAGAGCTCGAGGCCGAAGGCGACGAAGACCTCGAGGCTCGTCCTCCGGTTGTCACCGTTATGGGCCACGTCGACCACGGTAAAACCCGACTGCTCGATGCCATTCGTAAGTCCGACGTTATGGCGGGCGAGCACGGCGGCATCACGCAGCACATCGGTGCCTACCAGGTCACGCACACCCACGAGGGTGAAGACCGCAAGATCACGTTCATCGATACTCCGGGCCACGAGGCGTTCACCGCCATGCGTGCCCGTGGTGCCAAGGTGACTGACATTGCCATCCTGGTGGTCGCAGCGGACGACGGCGTGATGCCGCAGACCGTTGAGGCCCTCAACCACGCACAGGCAGCCAATGTGCCCATCGTGGTGGCCGTGAACAAGATCGACAAGGAAGGCGCCAACCCGGAGAAGGTCCGCGGCCAGCTGACCGAGTACGGACTGGTTCCCGAAGAGTACGGTGGCGACACCATGTTCGTTGAGGTCTCTGCACGCCAGAACCTGAACATCGACGAGCTGCTCGAGGCCGTCCTGCTGACCGCAGACGCTGCCCTGGACATGCGCGCCAACCCGAACAAGGACGCCCGCGGTATCGCTATCGAAGCCAACCTGGACAAGGGCCGCGGTTCCGTGGCCACCGTCCTGGTGCAGTCCGGTTCACTGCGTGTCGGTGACACGATCGTTGCCGGTACGGCCCACGGCCGCGTCCGCGCCATGTTCGACGACGACGGCAGCGCCCTGACCGAGGCCGGCCCGTCCCGCCCCGTGCAGGTACTGGGTCTGTCCAACGTGCCGCGCGCCGGCGACACCTTCTTCGTGACCGCCGACGAGCGCACCGCCCGTCAGATCGCCGAGAAGCGTGAAGCAGCAGACCGCAACGCAGCCCTGGCCAAGCGCCGCAAGCGCATCAGCCTGGAAGACTTCGACCAGGCCGTGGCAGATGGCAAGATCGACACCCTCAACCTCATCCTTAAGGGTGACGTGTCCGGTGCCGTGGAAGCCCTCGAAGACGCACTGCTCAAGATCGACGTCGGCGAAGGCGTGCAGCTGCGCGTCATCCACCGCGGCGTTGGTGCTATCACGCAGAACGACGTCAACCTGGCAACAGTGGACAGCGCCGTTATCATCGGGTTCAACGTCAAGCCGGCCGAGCGGGTTGCCGAACTGGCAGACCGCGAAGGCGTGGACATGCGCTTCTACTCCGTCATCTACGCAGCAATCGATGACATCGAGATGGCCCTCAAGGGCATGCTCAAGCCGGAGTACGAAGAGGTCCAGCTGGGCACCGCCGAGGTCCGTGAAGTGTTCCGTTCCTCCAAGTTCGGCAACATCGCCGGTTCCATCGTTCGCTCGGGTGTTATCCGACGCAACACGAAGGCCCGCATCAGCCGCGACGGCAAGATCATCGGTGACAACCTCACCGTTGAGACGCTCAAGCGCTTCAAGGACGACGCCACCGAGGTCCGCACGGACTTCGAGTGTGGTATCGGTCTTGGCTCGTTCAACGACATCACCGAAGGCGACATCATCGAGACCTTCGAGATGCGCGAGAAGCCTCGCGTCTAGMSAPSLGGVSVPRGDGNTVVRLRRGSSITDFADKIEANPAALVTVLFHLGEMATATQSLDEETFALLGEELGYKLQVVSPEDEERELLSTFDIDFEAELEAEGDEDLEARPPVVTVMGHVDHGKTRLLDAIRKSDVMAGEHGGITQHIGAYQVTHTHEGEDRKITFIDTPGHEAFTAMRARGAKVTDIAILVVAADDGVMPQTVEALNHAQAANVPIVVAVNKIDKEGANPEKVRGQLTEYGLVPEEYGGDTMFVEVSARQNLNIDELLEAVLLTADAALDMRANPNKDARGIAIEANLDKGRGSVATVLVQSGSLRVGDTIVAGTAHGRVRAMFDDDGSALTEAGPSRPVQVLGLSNVPRAGDTFFVTADERTARQIAEKREAADRNAALAKRRKRISLEDFDQAVADGKIDTLNLILKGDVSGAVEALEDALLKIDVGEGVQLRVIHRGVGAITQNDVNLATVDSAVIIGFNVKPAERVAELADREGVDMRFYSVIYAAIDDIEMALKGMLKPEYEEVQLGTAEVREVFRSSKFGNIAGSIVRSGVIRRNTKARISRDGKIIGDNLTVETLKRFKDDATEVRTDFECGIGLGSFNDITEGDIIETFEMREKPRVNANANANANA
D1-29_01561510rbfARibosome-binding factor AATGGCTGATCCCGCACGGGCTGCCAAGTTGGCGCAGCGGATCAAGGTTGTTGTTGCTGAGGCTTTGGGCCGGAAGGTTAAGGATCCTCGGCTCGAAGGCATCACTGTTACCGATGCCCGCGTGACCAACGATCTGCAGCATGCCACCATCTACTACACCGTTTTCGGCGATCAGGCTGTCCAGGCTGATGCTGCCAAGGGCCTGGAGAAGGCCAAGGGTGTGCTTCGTCAGGAAGTGGGGCGCAACGTGACTGTCCGGCTGACTCCCAGTCTTGAATTCGTGGCCGACCAGATTCCCGTGGTTGCATCCAACCTTGAGGAGCTGCTTCGCGAAGCCAAGAAGCGCGACGCCGCTGTGGCCGCCCTGGCTGAAAACGCCAAGCACGCCGGAGACCCCGACCCGTACAAGAGCGACATTCCTGCCGACGTCGAGATCGACGAGGACGACTTCGACGAAGAGGACCTTGACCTCAGCGAAGACGGCGAATTTGAAGAAGACAGCAACAAGTAAMADPARAAKLAQRIKVVVAEALGRKVKDPRLEGITVTDARVTNDLQHATIYYTVFGDQAVQADAAKGLEKAKGVLRQEVGRNVTVRLTPSLEFVADQIPVVASNLEELLREAKKRDAAVAALAENAKHAGDPDPYKSDIPADVEIDEDDFDEEDLDLSEDGEFEEDSNKNANANANANA
D1-29_01562549guaD_1COG0590Guanine deaminaseATGCCGGCGGCTGACTATGATCAGATCATGGCGGCGTCAGAGGCAGGGCCTGATCCTGTGGTGAATCCCGGTTTTGCCGGCAATCCCAGTCCCGAGGACTATCTCAACTTGGCTGTTCAGACTGCAGTCAGCAACGTGGCCGACGGCGGCGGTCCGTTCGGCGCCGTGGTTGTCACGCCCGACGGCGGGCTGCACTACGGCGTCAACAGGGTGACCCGCGACAACGATCCCACAGCCCACGCCGAGGTGGTGGCGATCCGCCGGGCCGCGGCTGACTCCGGGAACTTCGATCTCAAAGGCTCCGTGCTCTACACAAGCTGTGAGCCCTGCCCATTGTGCCTGGCCGCGGCACTCTGGGCACGCATTGACCGCGTCTACTATGCGGCGGACCGTCACGGCGCCGCCGCTGCCGGGTTCGACGACGCCCTGTTCTACGAATACTTCGGCGGAGCCCGGCCTGATCTCATGCCTGTCACCAGGGGTGATATTCCGACGTCGAACGCCCCGTTCCAGGCCTGGCGGGACTTCGGAGACCGGGTGGAGTACTGAMPAADYDQIMAASEAGPDPVVNPGFAGNPSPEDYLNLAVQTAVSNVADGGGPFGAVVVTPDGGLHYGVNRVTRDNDPTAHAEVVAIRRAAADSGNFDLKGSVLYTSCEPCPLCLAAALWARIDRVYYAADRHGAAAAGFDDALFYEYFGGARPDLMPVTRGDIPTSNAPFQAWRDFGDRVEYPGPT0021515_2238DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021515-guaD-K01487NANA
D1-29_01563444trxCCOG0526Thioredoxin 2ATGGCCCTGGAACCGACACTGATCACCTGCCCCAACTGCGGAAAGACCAACCGGATCCCCGCAGCGGCGTCCGGCCACCCGCGCTGTGGCAGTTGCCGTCAGGATCTCCCTTGGATTGTCAACGCCGGCGATGACGAGTTCGCGGTTGTCGCCGAGCAGTCGCCCGTTCCCGCCCTGATCGACTTCTGGGCTGCCTGGTGCGGTCCCTGCCGGATGGTCAGTCCCGTGCTGGACAAGTTGGCACGGGAAAAGGCGGGCCGCATCAAGCTGGTGAAGGTTGACGTGGACAGGTCCCCGGGCCTTTCCCGGCGGTTCGATGTGCAGGCGATTCCCACGCTGATGATCATTGTGGACGGCAAGGTGATCGCCCGCCAGGCCGGCGCCGCACCGGCCGGGGTGCTGCGTTCATGGCTGGATGACGCCTTGGCGGCCCATCGCACCTAGMALEPTLITCPNCGKTNRIPAAASGHPRCGSCRQDLPWIVNAGDDEFAVVAEQSPVPALIDFWAAWCGPCRMVSPVLDKLAREKAGRIKLVKVDVDRSPGLSRRFDVQAIPTLMIIVDGKVIARQAGAAPAGVLRSWLDDALAAHRTPGPT0013061_434DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013061-trxC-K03672NANA
D1-29_015641203dapX_1COG0436putative N-acetyl-LL-diaminopimelate aminotransferaseATGCCTGAGCTTGCTGCCCATGTGCGGAACGTCCCCGTCAACCAGATCCGCGAAATCACGGAGGCCGCCTGGCGTCATCCTGAAGCGATCGTCCTGAGCATCGGTGAACCCGGTTTCCCGCTGCCCCGCCATGTGCTGGACGCCGGAATGGCATGCCTGGACCGGGACGAGACCAACTACACACCAAACGCCGGTATTCCCGCGCTGCGGGAAGCCTTCGCTGACCGGTTCCGTGCCGGTCTAGGTGCCGGCCACCTGGCCGGTGCGGGCCACCTGACCGGCGCGGGCAACCAAAGCAGCATCGCCGCCGACCGCGTCTATGTGGTGGCCGGCGCCCAGCAGGGCCTGCACCTTGCCATGAGCCTCCTCCTCGCGCCGGGCGATGAAATCCTGATCCCGAATCCCGGTTACCCCACCTTCGCCATGACCAGCCGGCTCCTGAACGCTGTTCCGGTGGGGTACCCGTTGTATCCGGACCAGAATTTCCAGCCCCGGCTCCAGGACGTGGAGGCCCTCATCACGGACCGCACCAGGGTGCTGATGCTGAACTCCCCGTCCAACCCCCTCGGAGCAGTCCTCCGTGAGGACCTGACCCGCGACCTCGTTGACCTGGCCCGCCGGCACGATCTCTGGATCATCTCAGACGAATGCTATGAAGCCTTTACCTACGATGTTCCGCACGTCAGCGCCGCCCGGTTCGACAGCGACGTTCCGGGCGAGGCGAGGGTCTTCACCTCGTTGACCCTCTCCAAGACCTACGGCCTGACAGGGCTCAGGATCGGCGCCCTCGTCTGTCCGCCGGGCCTGGAGCAGAAGATGAACAATGTGATGGAAGCGATCGTTTCCTGTGTCGCCGCACCGTCCCAGTACGCCGCGCTGGCGGCGCTGACGGGTCCCCAGGACTATGTGGAGCAGGCACATAAGCATTACCGGGCCAACAGGGACGCCGCTTCCGCTGTCCTGGACGCCAAGGGGATCCCTTACCTCAGCGCGCAGGGTGCGTTCTATCTTTGGGCGGATGTCAGCCACGTCACCGACGGCGATGTCCGTGCCTGGACCCGCCGGTTCCTCGCCGAGTCCGGGGTGTCGTTTGCGCCGGGAACCGCCTTTGGGTCCATTGGCGAGGGCTGGGTACGCATTGCGCTCTGCGGTAAACAGCCGGAACTCGTGGAGGGTGTTGGCCGCCTGCCCGCGCGGTCCTGAMPELAAHVRNVPVNQIREITEAAWRHPEAIVLSIGEPGFPLPRHVLDAGMACLDRDETNYTPNAGIPALREAFADRFRAGLGAGHLAGAGHLTGAGNQSSIAADRVYVVAGAQQGLHLAMSLLLAPGDEILIPNPGYPTFAMTSRLLNAVPVGYPLYPDQNFQPRLQDVEALITDRTRVLMLNSPSNPLGAVLREDLTRDLVDLARRHDLWIISDECYEAFTYDVPHVSAARFDSDVPGEARVFTSLTLSKTYGLTGLRIGALVCPPGLEQKMNNVMEAIVSCVAAPSQYAALAALTGPQDYVEQAHKHYRANRDAASAVLDAKGIPYLSAQGAFYLWADVSHVTDGDVRAWTRRFLAESGVSFAPGTAFGSIGEGWVRIALCGKQPELVEGVGRLPARSPGPT0020110_3819DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_01565921truBCOG0130tRNA pseudouridine synthase BGTGGACAAACCGCAGGGATGGACCAGCCATGATGTGGTTGGCCGGATGCGGCGGCTCGCCGGTACCCGGAAAGTGGGGCATGCGGGAACCCTTGACCCCATGGCCACCGGTGTCCTGGTGGTGGGCATCAACAAGGCGACGCGGCTGCTCACCTACATCGTGGGCACGTCCAAGACGTACACGGCAACCATCCGTCTGGGCCAGTCCACCATTACCGACGACGCCGAAGGCGACGTGATCGCATCCATCAGCGCCGCCGCCGTCACCAATGAGGAAATCCACGACGGCGTGGCCGCCCTTACCGGGCAGATCCAGCAGGTGCCCAGCAGCGTCAGCGCCATCAAGGTCAACGGGGAACGGGCGTATGCACGCGTACGGTCCGGCGAAAACGTGAAACTCGCGGCGCGGCCCGTCACCATCCACCGGTTCGAAGTACACAGCATCCGGCGGGAGCCCGCGGGTGGCGTTGTGGACGTCGATGTCACGGTGGAGTGTTCCTCGGGTACCTACATCCGTGCCCTGGCACGGGACCTCGGCGATGCGCTGGGGGTGGGCGGGCATTTGACCGCGCTCCGGCGTACCCACGTGGGCCCGTATTCCCTGGACCAGGCCCGGACCCTGGAGCAGCTGGCCGAAGAACTTCAGGTACTCGAGATGTCCCAGGCCGCCCGCGCGCTGATGCCCAACAGGGAACTCACAGCGGACGAAACCACCGAGATCTCATTCGGCCGCCGGATCCCGGCCGGCTCACCGGCGGGAGATCCGCTGGCGGCAACAGTGGAGAACCCGGCCGCCGCCTTTGCTCCGGACGGGAGCCTGGTGGCGCTGTTGGCTGATTCCGGCAGCTTTGCCAAGCCAGTGCTGGTGTTCGCGCCAGGCAACGCCGCCGCGCCCGGCAATGCCACAAGCCAGGGGACATAGMDKPQGWTSHDVVGRMRRLAGTRKVGHAGTLDPMATGVLVVGINKATRLLTYIVGTSKTYTATIRLGQSTITDDAEGDVIASISAAAVTNEEIHDGVAALTGQIQQVPSSVSAIKVNGERAYARVRSGENVKLAARPVTIHRFEVHSIRREPAGGVVDVDVTVECSSGTYIRALARDLGDALGVGGHLTALRRTHVGPYSLDQARTLEQLAEELQVLEMSQAARALMPNRELTADETTEISFGRRIPAGSPAGDPLAATVENPAAAFAPDGSLVALLADSGSFAKPVLVFAPGNAAAPGNATSQGTNANANANANA
D1-29_01566354hypothetical proteinGTGGACGCATACTTTTACATCGTTCTTGTGGTCGGTCTTCTCTCGACCGGTATCTGCCTGGTGGCGGGGATCGCCAAAAAAGCCCCCAACGACATCACCATCCTGTCGGTGGCAGCAGTGGAAGCCGCCCTGGTGGTTTACCTCGTCGGATCCATCGTCAGGGTCATTGCGGGTGAGCCGATCGCGGGGGAGGCGTGGGAGTTCTGGGGCTACCTTGCCACCGCAATGCTCCTGCCGCCCGCCGCCGTCTACTGGTCCATCCTGGAACGGACCCGGTGGAGCAATTTTGTCCTGGCCGCCGTCGGCGTCACCGCCCTGGTGATGGCCGCCCGAATGAACCAGATCTGGTACTGAMDAYFYIVLVVGLLSTGICLVAGIAKKAPNDITILSVAAVEAALVVYLVGSIVRVIAGEPIAGEAWEFWGYLATAMLLPPAAVYWSILERTRWSNFVLAAVGVTALVMAARMNQIWYNANANANANA
D1-29_01567468hypothetical proteinGTGAAATCACAGCAGCAATCGACCCCGGGGAAAGTATCCGCAGCCGGCAAGGACACGCGCAACACCGGGCCCGGCCGCCTGCTGATTGCTGTCTACGCGGTGTTCGCCATTTCGGCCACCGCCCGCGCCGGCTACCAGATCCTGACGAAATTCTCTGAGGCTCCGCTGGCTTACCTGCTCTCTGCCTTCGCAGCCTTGGTGTACCTGGTGGCCACTGTGTCCCTGGCCAAGCCGGGCCGCACCTGGTTCAAAGTGTCCGTGGCGGCCGTCCTGGTGGAACTCGTGGGCGTGCTGGTGGTCGGCGCCCTGAGCCTCTTCGATCCCGTCCAGTTCCCGCACGAAACCGTCTGGTCCCTTTTCGGCCGCGGTTACGCCTTCATCCCGCTGCTGCTGCCCATCCTGGGCCTGGTATGGCTCTACCGGCGGCGGCCCGGCAGCCGCCCGTCCACAAGTCCCGTCCACCAGTAAMKSQQQSTPGKVSAAGKDTRNTGPGRLLIAVYAVFAISATARAGYQILTKFSEAPLAYLLSAFAALVYLVATVSLAKPGRTWFKVSVAAVLVELVGVLVVGALSLFDPVQFPHETVWSLFGRGYAFIPLLLPILGLVWLYRRRPGSRPSTSPVHQNANANANANA
D1-29_015681017ribFBifunctional riboflavin kinase/FMN adenylyltransferaseATGTCAATGTCAGGCAGTAAAAAGGCGAGGGTGATGGTCAACATCTGGAACGATCCGTCCGAGGTCCCGGCGGACTTCGGTCCCTCCGTTGTCACCTTCGGCAACTTCGATGGCGTCCACCGTGGCCACCAGCAGGTGCTGTCCCAGCTCATCCGCTCAGCCCGCCTGAACAGGACAAAAGCCGTCGCGGTGACGTTTGACCCGCACCCGGCAGTGGTTCACCGGCCTGAGTCTGCGCCGGAAATGATCATGGGCCTGGAGGACAAGCTGGAGGCGCTGGGGGAGCTGGGCCTTGACGCCATCCTGGTGATGAAATATTCGCTGGAACTCGCCAGCCTCACCCCCGAAGAGTTCGTACGCCAGGTGCTGGTGGACAGCCTTCACGCCAGCCACGTGGTCATCGGCCACGATGCCCGGTTCGGCCGTGGGAACTCCGGCGATCTTGACACCATGAAGAAGCTCGGCCAGCAGTTTGGCTTTGACGTCCAGGTCATCAGCGAATTCGGCTCCGAAGGCTTCCCACTGCACGACGACGACGGGACGGACAGGCGCTGCTCCTCCACCTGGGTGCGCGAGGCGCTGCGGGAGGGCGACGTGGCAACGGCCGGCGCCGTCCTGGGCCGACCGCACCGGATGCGCGGCGAAGTGGTGCACGGAGCTGCCCGCGGCCGTGCCCTGGGATTTCCCACAGCCAACCTGGCCCCGAACGCCAGCGGACTGATCCCCGCAGACGGGATTTACGCGGGCTGGCTTGTTGACCAGGCCGGCACCCGCTGGCCGGCTGCGATTTCCGTGGGGTCAAATCCCACGTTCGACGGCGTCAGCCGCCAGGTTGAGGCGCACGTGATCGACCGTCCGCATGAGGCCGTAGAGGACTTCGATCTGTACGGCCAGACAGTAGTTGTGGAGTTCGTGGCCCGGCTCCGTGGCATGGTGGCGTACCGTGGGCCTGAGGCGCTCGTTGACCAGATGCGCCTGGACGTGATCCAGGCGCACGATCTCCTGGTCCGGCGCTGAMSMSGSKKARVMVNIWNDPSEVPADFGPSVVTFGNFDGVHRGHQQVLSQLIRSARLNRTKAVAVTFDPHPAVVHRPESAPEMIMGLEDKLEALGELGLDAILVMKYSLELASLTPEEFVRQVLVDSLHASHVVIGHDARFGRGNSGDLDTMKKLGQQFGFDVQVISEFGSEGFPLHDDDGTDRRCSSTWVREALREGDVATAGAVLGRPHRMRGEVVHGAARGRALGFPTANLAPNASGLIPADGIYAGWLVDQAGTRWPAAISVGSNPTFDGVSRQVEAHVIDRPHEAVEDFDLYGQTVVVEFVARLRGMVAYRGPEALVDQMRLDVIQAHDLLVRRPGPT0008625_837DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008625-ribF-K11753NANA
D1-29_01569855kynACOG3483Tryptophan 2,3-dioxygenaseGTGTCCGTAGAGAAGAACACCAGGAAACTGGATAAAGGCATCGTGCGGGATTTCAGTTCCCGGATGAGCTACGCCTCCTATCTACAGCTGCCCACCCTTCTCAGTGCGCAGCAACCTGTCAGCCGTCCTGAACACCATGACGAGCTGCTGTTCATCATCCAGCACCAGACCACCGAGCTCTGGCTGAAACTGGTGCTGCACGAGCTCAGGAGCGCGGCCGCGTGGCTGCGGGAGGACGATCTCGGCGCCGCGCTGAAGGGCATCGCCAGGGTCAAGCACATCCAGAAGACACTAACCGAGCAGTGGTCCGTCCTGGCAACCCTGACCCCCACCGAGTACTCCCAGTTCCGGGGTTTCCTCGGCAACTCATCGGGCTTCCAGTCCAGCCAATACCGTGCGGTGGAGTTTGTCCTGGGGAACAAAAACCGGAAGATGCTTCCCGTCTTTGAGTCTGACCCGGAAGCACATCAGATGCTGGAAGGGCTGCTCCATGCCCCCAGTATCTACGACGAGTTCCTGGCCTACCTCGCACGGCAGGGCCTGGACGTGCCGCCGGCGGTCCTGGAACGCGACGTCACCCGCGCCCACGAATTCACTCCCGAGCTGGTGCCGCTGTTCAAGCACATCTACGAGAACCCCGCGGAGAACTGGGGTGCCTACGAGGCGTGCGAAGAACTCGTTGACCTGGAGGACAACTTCCAGCTCTGGCGGTTCCGCCACCTGCGCACGGTGCAGCGCACCATCGGCATGAAGACGGGCACCGGAGGTTCCACCGGCGCCGCCTTCCTGCAAAAGGCACTGGAACTGACGTTCTTCCCTGAACTCTTCGCCGTCCGGACGGAGATCGGCCAATGAMSVEKNTRKLDKGIVRDFSSRMSYASYLQLPTLLSAQQPVSRPEHHDELLFIIQHQTTELWLKLVLHELRSAAAWLREDDLGAALKGIARVKHIQKTLTEQWSVLATLTPTEYSQFRGFLGNSSGFQSSQYRAVEFVLGNKNRKMLPVFESDPEAHQMLEGLLHAPSIYDEFLAYLARQGLDVPPAVLERDVTRAHEFTPELVPLFKHIYENPAENWGAYEACEELVDLEDNFQLWRFRHLRTVQRTIGMKTGTGGSTGAAFLQKALELTFFPELFAVRTEIGQPGPT0020505_991DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TRYPTOPHANE_DEGRADATION,PGPT0020505-kynA-K00453NANA
D1-29_015701260kynUKynureninaseATGAGCACTGAATCGCAGGCAACGGTGGAAAATTCCGACGCCGGTGCCCTCCTTCGGCGGGCCGGGCAACTGGATGCCCAGGACCCGCTGGCACACTACCGGGACCTGTTCATCGGAACGGACACCGACCTCTCCTACCTGGACGGCAATTCCCTGGGACGCCCGCTCAAGCGGACGCCGGAGGACATCAGCGACTTCATCCATAAAGGCTGGGGCGGCCGGCTGATCCGCGGCTGGGACGAGGAATGGCTGGAGCTGCCGCAGGCCATCGGGGACCAACTGGGCAGGGCAGTGCTGGGCGCCGCTCCCGGGCAGACCATCATCGCCGATTCCACCACCGTGGTCCTGTACAAGCTCATCCGCGCCGCGCTGGCCGCGGTGACCGATCCTGGCCGCAGGGCGATTGTCCTGGACACGGACAACTTTCCCACCGACCGCTATCTCGTGGAGGGCATCGCCCGCGAGGAAGGCCTCTTGCTGCGGTGGATCGAAGCCAATCCGTCGTCCGGCGTGACCCCCGAACAGGTGAGGGAAGCGGCAGGGCCGGATACCGCCGTCGTACTTTTGAGCCATGTGGCGTACAGATCAGGGTTCCTGGCCGATCTTCCGGCAATCACGGAGGCCGCCCACAATGCCGGGGCGCTGGTGGTGTGGGACCTGTGCCACTCCGCCGGTTCGGTGGAGCTGGATCTTGACGGGGCAAACGTAGACTTTGCCGCCGGCTGCACGTACAAGTACCTCAACGGCGGGCCGGGCTCACCGGCATTCGCCTACATCAACAGCCGCCATTTGGCGTCACTCCGGCAGCCAATCTGGGGCTGGATGGGACGCAAGGACGCCTTCGAAATGGGGCCGGGTTATGAACCCGCGGCCGGGGTCCGGGGATTCCTCAGCGGAACCCCGGCAATCTTTGGGATGCTGGCCATGCGCGGCACCCTGGACCTCATTGAAGAAGCCGGAATGGCAGCCGTCCGGGAGAAGTCGCTCAAACTCACCGCCTATGCAGTGGAGCTGTTCGAACAATGGCTTGAACCGCTGGGCGTGCAGCTGGCCTCGCCACGGAATCCGGAGCGTCGGGGCAGCCACATCACGCTGGACCACCCTGAGTTCCGGAATGTCACGGCCACGCTATGGGAGCAGGACGTCATTCCGGATTTCCGGGCTCCGCACGGCATCCGGATCGGACTGTCTCCGCTGAGTACCAGCTATGGCGAAGTCTTCCGTGGCATGGCGGCCATCCGGGAGCAGCTGCGTTCCTAGMSTESQATVENSDAGALLRRAGQLDAQDPLAHYRDLFIGTDTDLSYLDGNSLGRPLKRTPEDISDFIHKGWGGRLIRGWDEEWLELPQAIGDQLGRAVLGAAPGQTIIADSTTVVLYKLIRAALAAVTDPGRRAIVLDTDNFPTDRYLVEGIAREEGLLLRWIEANPSSGVTPEQVREAAGPDTAVVLLSHVAYRSGFLADLPAITEAAHNAGALVVWDLCHSAGSVELDLDGANVDFAAGCTYKYLNGGPGSPAFAYINSRHLASLRQPIWGWMGRKDAFEMGPGYEPAAGVRGFLSGTPAIFGMLAMRGTLDLIEEAGMAAVREKSLKLTAYAVELFEQWLEPLGVQLASPRNPERRGSHITLDHPEFRNVTATLWEQDVIPDFRAPHGIRIGLSPLSTSYGEVFRGMAAIREQLRSNANANANANA
D1-29_01571270rpsO30S ribosomal protein S15GTGGCACTTGACGCCGCTGTAAAGCAGTCCATCATCAAGGATTTCGCAACATCCGAGGCCGACACCGGTTCGCCGGAGGTCCAGGTTGCAGTCCTGACCCAGCGGATCAAGGATCTGACTGAGCACATGAAGGAGCACAAGCACGATTACCACACCCAGCGCGGTCTGCTGGCCATGGTTGGTCGCCGCAAGCGCATGCTCACCTACCTCAAGAACACTGACATCGCCCGCTACCGTGCGCTCATCGAGCGCCTCGGCCTGCGCCGCTAGMALDAAVKQSIIKDFATSEADTGSPEVQVAVLTQRIKDLTEHMKEHKHDYHTQRGLLAMVGRRKRMLTYLKNTDIARYRALIERLGLRRNANANANANA
D1-29_015732304pnpCOG1185Polyribonucleotide nucleotidyltransferaseATGCGGCTGGACTTCCGTGAACCAGAAACGGAGGTGACTCTCTTGGAGGGTCCCGAAATCCAGTTCTCAGAAGCAGTCATTGATAATGGCCGCTTCGGCAAGCGTGTAATCCGCTTCGAAACAGGCCGTCTTGCCAAGCAGGCAGCCGGCGCAGCCATGGTGTACATCGATGACGACACCGCGCTGCTTTCCGCCACCACCGCGGGCAAGTACCCGCGTGAGGGCTTCGACTTCTTCCCGCTGACGGTTGACGTTGAAGAGCGTATGTATGCCGCAGGCCGCATCCCGGGCTCGTTCTTCCGCCGTGAAGGACGCCCGTCCACCGAAGCCATCCTGGCTTGCCGCCTGATGGACCGTCCGCTGCGTCCCGCCTTCGTTAAGGGCCTGCGCAACGAGGTCCAGATCGTGGTGACCGTCCTGGCCATCAACCCGGACGAGCTCTACGACGTGGTGGCCATCAACGCCTCCTCCATGTCCACCCAGCTCTCCGGCCTGCCCTTCTCCGGCCCCATCGGCGGCGTCCGCGTTGCCCTCGTTGCCGACGAGAACGGCTCCCAGTGGGTTGCCTTCCCGAAGCACTCCCAGCTGGAGAACTCGGTCTTCAACATGGTGGTGGCCGGCCGCATTGCAGGTGACGACGTCGCCATCATGATGGTTGAAGCCGAAGCCACAGACAACTCCTGGAACCTCATCAAGGAACAGGGCGCCACCGCACCCACCGAAGAGGTTGTCTCCGAGGGCCTCGAGGCTGCCAAGCCGTTCATCAAGGCACTCTGCGACGCACAGTCGGACCTCGCCGCACGCGCCGCGAAGCCCACCGTTGAGTTCCCCGTTTTCCTCGACTACGAGGACGACGTCTACGCAGCGGTTGAGTCCGCTGCCGCTGACAAGCTGGCTGCTGTCTTCCAGATCGCTGACAAGACCGAGCGCAACGACGCTTCCGACGCCCTGAAGGACGAGGTTGTTTCCTCCCTCGCCGGCCAGTTCGAAGGCCGCGAAAAGGAAGTTTCCGCAGCGTTCCGCTCGGTGACCAAGCAGGTTGTGCGCCAGCGCATCCTCAAGGACCAGATCCGCATTGACGGCCGTGGCCTGACGGACATCCGCCAGCTCACCGCCGAGGTTGAGGTTCTGCCCCGCGTGCACGGCTCGGCCATCTTCGAGCGCGGCGAGACCCAGATCATGGGTGTCACCACGCTGAACATGCTGAAGATGGAACAGCAGATCGACTCACTGTCTCCCGTAACGCGCAAGCGCTACATGCACAACTACAACTTCCCGCCGTACTCCACCGGTGAAACCGGCCGCGTGGGTTCGCCCAAGCGCCGCGAAATCGGCCACGGTGCCCTGGCAGAGCGCGCCCTCGTGCCGGTGCTGCCGTCCCGCGAGGAATTCCCCTACGCCATCCGCCAGGTGTCTGAAGCCCTCAGCTCCAACGGTTCGACGTCGATGGGTTCCGTTTGTGCCTCCACCCTCTCGATGCTGAACGCCGGTGTGCCCCTGAAGGCTGCCGTTGCCGGTATCGCCATGGGCCTGGTTTCTGACCAGGTTGACGGCCAGACCCGCTACGCGGCGCTGACCGACATCCTCGGCGCCGAAGATGCCTTTGGCGACATGGACTTCAAGGTTGCCGGTACGTCCGAGTTCGTCACGGCCATCCAGCTGGACACCAAGCTTGACGGCATCCCCGCCTCGGTGCTGGCAGCAGCACTGAAGCAGGCCCGCGAAGCCCGCCTGCACATCCTGGACGTCATCAACTCCGCGATCGACACCCCGGATGAGCTCTCCGAGTTCGCGCCGCGGGTCATCGCGGTCAAGATCCCGGTTGACAAGATCGGCGAGGTCATTGGGCCCAAGGGCAAGATGATCAACCAGATCCAGGAAGACACCGGCGCCGACATCTCCATCGAGGACGACGGCACGGTCTACATTGGCGCCACGAACGGTCCGTCTGCAGACGCAGCACGCTCCGCCATCAACGCCATTGCCAACCCGCAGGTTCCGGAAATCGGCGAGCGTTACCTGGGTACGGTCGTTAAGACCACCACCTTCGGTGCGTTCATTTCCCTGACTCCGGGCAAGGACGGCCTGCTGCACATCTCCGAGCTGCGCAAGCTGGCCAGCGGCAAGCGCGTGGACAACGTTGACGACGTTGTCTCCGTGGGCCAGAAGATCCAGGTGGAAATCACCAAGATCGATGACCGCGGAAAGCTGTCGCTGTCTCCCGTTGTGGCTGAAGAGGAAGGCGCCGGCGAACCCGAGCGCGTTCACGCTTCCGCCGGGGCAGAGGGCGCAGACTCCGAGTAAMRLDFREPETEVTLLEGPEIQFSEAVIDNGRFGKRVIRFETGRLAKQAAGAAMVYIDDDTALLSATTAGKYPREGFDFFPLTVDVEERMYAAGRIPGSFFRREGRPSTEAILACRLMDRPLRPAFVKGLRNEVQIVVTVLAINPDELYDVVAINASSMSTQLSGLPFSGPIGGVRVALVADENGSQWVAFPKHSQLENSVFNMVVAGRIAGDDVAIMMVEAEATDNSWNLIKEQGATAPTEEVVSEGLEAAKPFIKALCDAQSDLAARAAKPTVEFPVFLDYEDDVYAAVESAAADKLAAVFQIADKTERNDASDALKDEVVSSLAGQFEGREKEVSAAFRSVTKQVVRQRILKDQIRIDGRGLTDIRQLTAEVEVLPRVHGSAIFERGETQIMGVTTLNMLKMEQQIDSLSPVTRKRYMHNYNFPPYSTGETGRVGSPKRREIGHGALAERALVPVLPSREEFPYAIRQVSEALSSNGSTSMGSVCASTLSMLNAGVPLKAAVAGIAMGLVSDQVDGQTRYAALTDILGAEDAFGDMDFKVAGTSEFVTAIQLDTKLDGIPASVLAAALKQAREARLHILDVINSAIDTPDELSEFAPRVIAVKIPVDKIGEVIGPKGKMINQIQEDTGADISIEDDGTVYIGATNGPSADAARSAINAIANPQVPEIGERYLGTVVKTTTFGAFISLTPGKDGLLHISELRKLASGKRVDNVDDVVSVGQKIQVEITKIDDRGKLSLSPVVAEEEGAGEPERVHASAGAEGADSENANANANANA
D1-29_015741344COG0612putative zinc proteaseATGACTGTTGTACCCCTGCCGCTTGAGCAGAACCATGCCGGCGACACCCTGGTTCACGGATCCGAGGGCGGCTCCGTCGTCCGGCGGTCGGTGCTGCCCGGCGGCGTGCGTGTGCTCACCGAGGCCATGCCCGGGCAGCGCTCGGCCACCATCGGCTTCTGGGTAGGCGTGGGGTCCCGGGACGAAGCACCGGGCCAGCACGGTTCGACGCACTTCCTGGAGCACCTCCTGTTCAAGGGCACCAAACGGCGTACCGCACTGGAAATCGCTTCGGCATTCGACGAGGTGGGCGGGGAGTCCAACGCGGCCACTGCCAAGGAAAGCACCTGTTACTTCGCCCGGGTACTGGACACTGACCTGCCCATGGCGATCGACGTCATCGCCGACATGATCACCGGTGCCGTCCTGGACCCGACGGAGATGGAGCAGGAGCGCGATGTCATCCTGGAGGAAATCGCCATGGACAGCGATGACCCCACCGACGTCGCCCACGAAAAATTTGTGGCTGCCGTCCTGGGGACACATCCGCTGGGCCGCCCTATCGGCGGTACACCCGCCGCCATCAAGGCCGTGGCCAGGGATTCCGTCTGGGAGCATTACCGCCGCTACTACCGGCCGGATGAGCTTGTCATCACGGCCGCCGGAGGCTTGGAGCACGACGTCGTCTGCAACCTTGTGGTCGACGCTCTTAACGCAGCCGGCTGGTCGCTGGAGCCCGATGCGGCTCCCGTGGATCGCCGCTCGACGGAACGGGCTCAGATCACCGGCACAGCAGGATTGCACGTGGTCAAGCGGGCCGTGGAGCAGGCCAACATCATTATGGGCTGCCCCACGATCGTCGCCACGGATGAGCGGCGCTACGTCATGAGCGTGCTCAACGCTGTGTTGGGTGGGGGCATGTCCTCACGGCTGTTCCAGGAGATCCGTGAGAAGCGTGGACTGGTTTACTCCACGTACTCCTTTGCCTCCTCCTACGCTGACGCCGGCTATTTCGGTATGTATGCAGGCTGCACGCCCTCCAAGGTCCGCCAGGTTCTGGACCTGCTGGGTCTCGAGCTGGACAAGTTGGCCGAGGGCGGGATCTCCGACGACGAACTCCGCAAGGCGGTTGGCCAGCTCTGTGGCGGCATTGTGCTTGCACTTGAGGACACCGGTTCAAGGATGTCCCGTCTGGGCCGGGCCGAGCTGGTGTCCGGTGAATACCAGGACATCGACGAGACGCTGCGCCTGATCAAATCCGTCACGGCCCAGGAGGTCCAGGACCTTGCCAAGGAATTGGCAGCTGCACCGCGGACCGTGACAGTGGTGGGACCCTTTGAGGAATCCGAAACGTTCGGACTCTAAMTVVPLPLEQNHAGDTLVHGSEGGSVVRRSVLPGGVRVLTEAMPGQRSATIGFWVGVGSRDEAPGQHGSTHFLEHLLFKGTKRRTALEIASAFDEVGGESNAATAKESTCYFARVLDTDLPMAIDVIADMITGAVLDPTEMEQERDVILEEIAMDSDDPTDVAHEKFVAAVLGTHPLGRPIGGTPAAIKAVARDSVWEHYRRYYRPDELVITAAGGLEHDVVCNLVVDALNAAGWSLEPDAAPVDRRSTERAQITGTAGLHVVKRAVEQANIIMGCPTIVATDERRYVMSVLNAVLGGGMSSRLFQEIREKRGLVYSTYSFASSYADAGYFGMYAGCTPSKVRQVLDLLGLELDKLAEGGISDDELRKAVGQLCGGIVLALEDTGSRMSRLGRAELVSGEYQDIDETLRLIKSVTAQEVQDLAKELAAAPRTVTVVGPFEESETFGLNANANANANA
D1-29_01575465hypothetical proteinATGAACAATCCGTTGCCCGGCACCGTTCACACCGTGCTGGATAGCTTCCTGGGTCACTGGCGGGGCACCACACGCCTTGCCGCAGGTGCGTGGGGCCCGGAACACATCGCTGATGCCGAAGTGAGCTATACGAGGGCCGCGGGCGGCTACGCAGTAGTCCAAAGTTATCGGCATCAGGAAGCCGACGGTTCCCACTATGAAGGGCACGGCGTTTTTACTGTCGATCCCGATCATAAGGATGTTCTCTGGTACTACGTGGACAGCATGGCCGGCGCGTCACAAGGACCTCCCGCCCGCTGTACCTGCATTGACGGCGTCCTGCGCGTGGAACGGCACAGCGACCGGGGAACCGCCCGTCACGCTTTCCGCGTCGACGGCGGCATATTGACCCATACCGTCGAACTGCGCCTAGGCGATGCCGGCGGTTTTTCCCCTTTTATGTCCTCGGAGTTCCACCGCGCCTAAMNNPLPGTVHTVLDSFLGHWRGTTRLAAGAWGPEHIADAEVSYTRAAGGYAVVQSYRHQEADGSHYEGHGVFTVDPDHKDVLWYYVDSMAGASQGPPARCTCIDGVLRVERHSDRGTARHAFRVDGGILTHTVELRLGDAGGFSPFMSSEFHRANANANANANA
D1-29_01576282hypothetical proteinATGTATACGCTGCAGATCGAGCACGGCATCAGGGACTTCGACATGTGGAAAGCAGCCTTCGACCGGGATCCGGTGAACCGCGCCGCCTCAGGTGTGCTCTCGCACCGGATCTACCGGCCAGTGGACGACTCCCACTACGTGGTGGTTGAACTGGATTTCAATGAACGCGGGCAGGCCGAGAAACTGTTGGCGAATCTCAAGGACAGGGTGTGGAACTCTCCGACGGCTGCCCCTGCCCTGAACGGGTCGCCCCAGACCCGGATTATGGAATCAGCGGGCTGAMYTLQIEHGIRDFDMWKAAFDRDPVNRAASGVLSHRIYRPVDDSHYVVVELDFNERGQAEKLLANLKDRVWNSPTAAPALNGSPQTRIMESAGNANANANANA
D1-29_015771155hypothetical proteinATGACTACGGGCTGGGCAGTGCACCGGAGCCTCGAACGGGTTCGGCTTCTCGGCAATTCGTCACTGCATCATGCGCAGCTGCGCAGAGAGGTGCTCCGCGAGCTGGGCCGGATGTTGCCCTTCAGCGCCTGGGTTTGGCCCCTTTCCGATCCTGCAACGGCAACGGGTATTTCACCCATGGCATGGGTCCCGTGCCCGGAGGAATTGCCGCTCCTCATCCGGCTGAAGTATTTGACGCCTGTAGGCAGGTGGACCCAGTTGGCGGGGAGCGCGTCTCCGGTGGCTTCCTTGCTTGAGGTTAGCCAGGGAGACCCATCCAAGAGCGCGGTCTGGGATGGCGTGCTCAAGCGGTACGGTGTCTCCGATGTTCTGTTCACCGTGTTCGCGGACAAGCAAGGCTGCTGGGGTTGGCTTGACCTGTGGCGAAAACCCGACCAAGGTGCCTTCACTGCCAGTGAAGCGGCCTACCTCGAAGCTGTTACCCACAAAGTAACTCCGGCCCTGCGGCGGTCCATCGCCCGGCAGTTCGGGCTGGAAACATCAGCCGAAGCGGCCAGCCGGGCTGTACTACCGGAAATGCCGTCAGAAGAGCCAGTGCCTCGGAGGGTAGTGGAGAGCGGCAGGGCTGCAGTCATACTTCCACAGCAGGCCGTGCTCACGCTGGACGCGGACCTGGCGGTAGTGGGGGAGACGGCTTCTACACGGGACTGGCTTGAATTGTTGCAGCCCGGGCCGCGCCCGTATCAGGGGGTGCCTGCAGAGGTCCTGAACGTCGCTGCCCAGTTGTTGGCACGTGAGGCAGGCGTCGATGATCATCCCGCTGCCGCCCGGGTACATATTGGGTCTGGAAAGTGGGCGATGCTCCCGGCAAGCAGGATGGATTCGGCACCTTCCGGCGTTACCCCGCCGTTGGCCGTAACTATCCAGGAGTGTCCGCCCGAGGCGCGGCTGGACATCTTCGCCAGGAGCTTCGGATTGACGCCCCGCCAGCGGGAGTTGCTTGAGCTGGCCGCGAAGGGTGCGGACACGGCAGCGATGGCCGCGGCCCAGGGTGTGGCAGCCTATACCGTCCAGGATCAGTTCAAGCAGGTTTTCGACAACTGCGGTGTCCACAGTCGTGCGTCATTGCTGGCCATGGCATGGGGAACCGCGTAGMTTGWAVHRSLERVRLLGNSSLHHAQLRREVLRELGRMLPFSAWVWPLSDPATATGISPMAWVPCPEELPLLIRLKYLTPVGRWTQLAGSASPVASLLEVSQGDPSKSAVWDGVLKRYGVSDVLFTVFADKQGCWGWLDLWRKPDQGAFTASEAAYLEAVTHKVTPALRRSIARQFGLETSAEAASRAVLPEMPSEEPVPRRVVESGRAAVILPQQAVLTLDADLAVVGETASTRDWLELLQPGPRPYQGVPAEVLNVAAQLLAREAGVDDHPAAARVHIGSGKWAMLPASRMDSAPSGVTPPLAVTIQECPPEARLDIFARSFGLTPRQRELLELAAKGADTAAMAAAQGVAAYTVQDQFKQVFDNCGVHSRASLLAMAWGTANANANANANA
D1-29_01578435hypothetical proteinATGAGCAGCACACCCCATGAAATTGTCGAATCGTTTGTTCGGCTAACGGCCCGATGCCTGGACACTCTCATTACCCGACATGCGGGAACGGAGCGCCCAACCGTCTGGACCGGCCTTTTCTTGGTTCCACGAGACGGAAGCGGTCCCGTTCGGTCCGGCCAGTTGAACGGGTTGGGAACATTCGCTCTCCACGGCCGGGGCTGTCGCTTCGAACTTCACACAGGAGAAGCACTGGACGTTGACTGGGACGACAGTGGCCGCGCTGTGTTCGATTCATGGCGGATCCTCATGTTTGCCAAGTCGATAGGCGACCAAAAGACTAAAATAGAGGACCTTGAAACTGCGGCCGGCCAAACGTCGTCAATTATTCAGATCGCTCCCGACCAGTTCACGTGGCCGCATCGACGTTACGACCTCACATGGACGGACCCCTAAMSSTPHEIVESFVRLTARCLDTLITRHAGTERPTVWTGLFLVPRDGSGPVRSGQLNGLGTFALHGRGCRFELHTGEALDVDWDDSGRAVFDSWRILMFAKSIGDQKTKIEDLETAAGQTSSIIQIAPDQFTWPHRRYDLTWTDPNANANANANA
D1-29_01579627hypothetical proteinTTGGCAGCCCGATGCCAGGCGCTGACAACAGAAATCGAGGCTGCTGATACGGCACTCAAGGAAATCCTCGATAGCTATGCCCCGTTGCTCTGCGATTTACCAGGAGTCGGGACCGAAGTAGCCAGCCAGCTGTTGATCACCTTCGGGGACAACCCAGACCATCTGGGGAACGAAGCCCAATTCGCTTCGCTCGTCGGGGCCGCTCCGGTACCAGCCTCATCCGGCAAGACAACCCGCCACCGGCTCAGCAGAGGCGGGGACCGCAGCGCCAATAATGCCTTGCATCAGGTAGTCCTGGTCCGCATGGCCTCGTGCCAACGGACCAAGGACTACGTGCCTAAACGTACCTCCGAGGGCAAGGGCAAACGCGAAATCATGCGCTGCCTCAAACGCTACGCAGCCCGCGAAATCTACCGCCAAATCACCAACCCGCGGCCAGCACCTAACAACTCCGACCTCCGCCGCATGCGGACCGAACTCGAGCTCACCATCACGACGGTAGCCGGCGAACTTGGCCAATGGGTTTCCATCATTTCGAGACTGGAACGAGGCCACATCCGAAATGACGAGCTCGCTTCAACCTACCGCCATTGGTTGACCGACCAAACAGTCAGAATCTCGATTTGAMAARCQALTTEIEAADTALKEILDSYAPLLCDLPGVGTEVASQLLITFGDNPDHLGNEAQFASLVGAAPVPASSGKTTRHRLSRGGDRSANNALHQVVLVRMASCQRTKDYVPKRTSEGKGKREIMRCLKRYAAREIYRQITNPRPAPNNSDLRRMRTELELTITTVAGELGQWVSIISRLERGHIRNDELASTYRHWLTDQTVRISIPGPT0030635_664DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_01580330IS110 family transposase ISBli6GTGCTGGAGGTAAACCGCCCAAACCGGGCCGCCCGCCGACTCAAGGAGAAATCCGACCCGCTGGATGCCTACCAGGCGGCCAAGTCGGTACTCAAGGGACGGACGAAGGCGATCCCGAAGGCCAAGGACGGCCCCGTTGAATGCCTGCGGATCCTACGTTCCGGGCGTGCATCAGCAATCAAGGCCCGCACCGCGGCCATCAACCAGATCAAGGCACTCCTCGTTTCGGTCCAGGACAAAATCCGGGCGAAATATCGGACGCTGGGCACTTCCGCGCTGGTTACTGCCCTGCAGCGTACGAGACCCTTCGGGACATCTGGCGGACCCTGAMLEVNRPNRAARRLKEKSDPLDAYQAAKSVLKGRTKAIPKAKDGPVECLRILRSGRASAIKARTAAINQIKALLVSVQDKIRAKYRTLGTSALVTALQRTRPFGTSGGPPGPT0030635_664DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_015811713hypothetical proteinATGGAAAAGACGGCAGCGACAGAGGTAATAGAGGCCATCAAGACTTCCGTAACTGCGCTGAACAGGATTGTCCGCGGTAGGGAACTCGAGGGTGGTACCGTCACTGATCCGATGCGGCAAGAGGCTGATGACTGGCTGGATATTCTGGCAGAGGCTGCCCAGCTGCAAGCAAAGACGGCAGCGCTGACGGTCCGGGCCGCAGCCGGATTCACGGACACTACAAGGGCTATGGCGCCTCCGGTGGCATCCCTGCCGGAGCGAATGGCGATAGAGATGTCCATCGTCGCCGAGGTCGCGTGTGTCCTCACCATCAGTGAACGCGCGGCAGGCGCCCTGCTCGCCGAATCCCATGCCCTCACCAGGGCATTACCGCTGACCTTACAGGCATTACAGGCGGGGTCGATTTCTTGGCAGCACGCCCGCTGCATGGTGGACGAGACAGGCGCCCTTGACCCCGCCGGTGCGGCCGCCCTGGAAACCCACTTCCTGGACCCCGACACCGCCAATGCTGCCCGCGCCTGCCTCGCCGGGGACCTCACACCCTCCAGGTTCCGCGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATCGAAACCCGCCACGCCAACTGCGTCCTGGACCGCCGGGTCGAATACACCCCGGACCGCGACGGAATGGCCTGGCTCTCCGCCTACCTGCCCGCAGACCAGGCCGCCGGCATCTGGGAACACACCACCACCACAGCCCGGGCACTCCAAGGCCCCACCGAGCCCCGCACCCTCACCCAACTCCGCGCCGACACCCTCGCCAACGCACTCCTCTGCCGAGAGATCAGCAACCCCGGCAGCGACAGAGCCGGAGGCACCAGCGGCGCACTCCTTGATAGTGGGACTAACAGCGGCACTCTCATAGGCGCCGGAAGCACCAGCGGCCAAACCACCAGCTGGCGTAGCAGCAGCGGAGGGATCAACGGCGGCGGAAGCGCCAGCGAAGGAATCAACGGCGGCGGAATCAAGGGCGCAAATAGCCTCGGCGATGGCGGCGATGGCGGCGAAGGAGGCACTGCCGGGCAGGTCCGGCCGCCGCGGGCCCAGGTGCTGGTCACCGTGCCCGTGTTCTCGCTCCTGGGCCTGACCGACGAACCTGCCACCCTGGACGGCCACGGCCCCATCCCGGCCTCCATGGCAAGGAACCTGGTCACCAACGGAGCCCACTCCTTCCACCGCGTCCTGACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGGCTCACCACAGCAATGCGCCGCTGGCTCAGACTCCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTCGACAACGAAGCAGACCACCTCCTCGCCTGGGCAAACGGCGGCACCACCGGCATCAACAACCTCGGCCAACCCTGCCGCAAACACCACCACCTCAAACACAACACCACCTGGCAACCAACCCCGGCCAGCAAAAACGAACCACCCGGCTGGACCTCACCCACCGGCCGACACTACAAAAGCGAACACCAAGACTGGGAACCACCCACCTGGCCTGACCACGTCCTGAATGAACTCCAGGACACCGCCTTCACACTGGAGCGCGAGCCCGAGGCTGACCACGACTCGCACCCATGGCATCTAGTCCCTTCCGGAGGATCTGAAACCCACGAACTGGGACTCCAACACCAGAAATCCAAGACTTGAMEKTAATEVIEAIKTSVTALNRIVRGRELEGGTVTDPMRQEADDWLDILAEAAQLQAKTAALTVRAAAGFTDTTRAMAPPVASLPERMAIEMSIVAEVACVLTISERAAGALLAESHALTRALPLTLQALQAGSISWQHARCMVDETGALDPAGAAALETHFLDPDTANAARACLAGDLTPSRFRARARTWRERHHPVSIETRHANCVLDRRVEYTPDRDGMAWLSAYLPADQAAGIWEHTTTTARALQGPTEPRTLTQLRADTLANALLCREISNPGSDRAGGTSGALLDSGTNSGTLIGAGSTSGQTTSWRSSSGGINGGGSASEGINGGGIKGANSLGDGGDGGEGGTAGQVRPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVTNGAHSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWANGGTTGINNLGQPCRKHHHLKHNTTWQPTPASKNEPPGWTSPTGRHYKSEHQDWEPPTWPDHVLNELQDTAFTLEREPEADHDSHPWHLVPSGGSETHELGLQHQKSKTNANANANANA
D1-29_01582291hypothetical proteinATGGAAAGCAGAGCAGCCTGGGATGCTGAAAACAGAAAAGCTCTGGCGCAGATTATTGCGTCGCTCGCCGTAATTAAATGGAAATTCGCAGCACCCCTGAATGGTCCGGCGGCTTCAGGATATGGCTCGTACGTCGATGCGGTGGCCCGAAAGGGTGCCTGCTTGGCCGGGCTCGCCGAGATCGTCCGGGTGGAAGCCAAGGTCGCTGCGCTGAAGAAGCGGCTGGTCACAGGATATCCACATAACCCATCTGCTGCCCCATTAATGTCAGACGCTCCTGGGATGCTTTGAMESRAAWDAENRKALAQIIASLAVIKWKFAAPLNGPAASGYGSYVDAVARKGACLAGLAEIVRVEAKVAALKKRLVTGYPHNPSAAPLMSDAPGMLNANANANANA
D1-29_01583201hypothetical proteinATGGCCTATGTGGATATCATCCGACCAACCAGCCTTCGGCCCAATCGTCCGCTCTCCGGAGGGGTGGGAGCCCAAGTGTCCGTTCGCGCCGTGCAGCAGGGCCCTAAGCGTCCGTTCGCGCTCCAACGCCCGCCCCAGTTGGAGGGTGTCTTAGCCCCCGGCAAAAGGCGGCAGCACGTCCACCACATCGCCGGGATTTAAMAYVDIIRPTSLRPNRPLSGGVGAQVSVRAVQQGPKRPFALQRPPQLEGVLAPGKRRQHVHHIAGINANANANANA
D1-29_01584267hypothetical proteinTTGAACGTACGTTACTTCGCTGCCGCACGCGCCGCCGCGGGTGTGGAAGAGGAGCGCTTCGACCTGCCGGCAGGCTCCACCGTGGAGGATCTGCTGGCCGCGGTCCTGAGGGTGGAACGGTCACTGCCGCCTGCGGGCACTCCTCCCCTGCCGCGCATCCTGTCCCGGAGCAGCTTCCTGCTGAACGAGGTTGCCGTGCGGGACCGCACCACTGTGTTAAATCCCGGCGATGTGGTGGACGTGCTGCCGCCTTTTGCCGGGGGCTAAMNVRYFAAARAAAGVEEERFDLPAGSTVEDLLAAVLRVERSLPPAGTPPLPRILSRSSFLLNEVAVRDRTTVLNPGDVVDVLPPFAGGPGPT0008410_46DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
D1-29_015851128moaA_1GTP 3',8-cyclaseATGAGTGTTCAGCTAGGCATGCCGCAACCGCGGGAGGGGTCAGGTCCCGCCGGACAGCCGGAGCTTGCCATCCGGCCCGCCGGCACACCGCCTGGCCTCCTTGACCGCTACGGCCGCCGGGGCACCGATATGCGGCTGTCCCTCACGGACAAGTGCAACCTCCGGTGTACTTATTGCATGCCTGCCGAAGGGCTGGAGTGGCTGGCCAAGCAGGCAGTGATGTCCGCGGAGGAGATCGTTCGGATCGTACGGATCGGTGTGGACCTCCTCGGTGTTCGGGAACTCCGCCTTACCGGCGGTGAACCCCTTGTCCGGGCAGACCTGATAAGCATCATCGCGGCTATTCGGAGCAACCACCCGGAGCTCCCCATCTCCATGACCACCAACGGTGTTGGCCTGGACAAGAAGGCGGCGGCGCTCAAGGCCGCCGGCCTGACCCGGATCAATGTCTCGCTGGATTCCCTGCATGAGGAGACCTTCGCCAAGCTGACCCGGAGGCCCTTCCTCGACCGTGTCCTGGCCGGGGTTGACGCCGCCTGGGCAGCGGGGCTGGGACCGGTGAAGCTCAATGCTGTGCTAATGCGGGGCATCAATGATGCCGAATCGCCGTCTCTTCTCGCCTGGGCGCTGGACCGAGGCTACGAACTGCGGTTCATTGAGCAGATGCCGCTGGACGCGGACCACGGCTGGACCCGCCGGAATATGATTACTGCAGCCGAGATCCGCGGGCTGCTTTCCGTGGACTACGTCCTCAGCCCGGACCCCCGGGCCCGTGACGGCGCACCCGCGGAACGCTTTGAAGTACGACGCCGGGTGGCCGGGTCCGCGGACCCGCAGGGACCTGTGCTGGGCACCGTGGGGATTATCGCCTCCGTTACGGAGCCGTTCTGTTCGGATTGCCGCCGGACGCGCATCACCGCGGAAGGCAAAATCATGAGCTGCCTGTTCTCGCGGGAGGAGTTCGACCTGCTCGGACTCCTGCGCGAAGGCGTCACCGACCAGGCACTTGCTGAACGGTGGCAGGATGCCATGTGGGTTAAACCCAAAGCACACGGCATGGACCACGTAGGACTTGACGCCCCGGATTTCGTCCAGCCGGACCGCAGCATGAGCGCTATCGGAGGCTGAMSVQLGMPQPREGSGPAGQPELAIRPAGTPPGLLDRYGRRGTDMRLSLTDKCNLRCTYCMPAEGLEWLAKQAVMSAEEIVRIVRIGVDLLGVRELRLTGGEPLVRADLISIIAAIRSNHPELPISMTTNGVGLDKKAAALKAAGLTRINVSLDSLHEETFAKLTRRPFLDRVLAGVDAAWAAGLGPVKLNAVLMRGINDAESPSLLAWALDRGYELRFIEQMPLDADHGWTRRNMITAAEIRGLLSVDYVLSPDPRARDGAPAERFEVRRRVAGSADPQGPVLGTVGIIASVTEPFCSDCRRTRITAEGKIMSCLFSREEFDLLGLLREGVTDQALAERWQDAMWVKPKAHGMDHVGLDAPDFVQPDRSMSAIGGPGPT0008410_302DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
D1-29_01586750walR_1COG0745Transcriptional regulatory protein WalRGTGAACAGGTCCCTACCGCCGCAGGACACAGCCGACGTCGGCAATCGCCGCATCCTGCTGGTCGAGGATGAGCAGATCATCGCTGGCGTGGTGCGTGATTACCTGCTTCAGGCCGGCTTCCAGGTGGACCTCGCCAAGGATGGATTCACCGCCCTGGACCTGGCCGCCGCCCGGCAACCCGACCTGGTCATCCTCGACCGGATGTTGCCCGGACTGGACGGAGTGGAGGTCTGCCGCAGGCTGCGGAAGAGCACGTCCGTGCCAGTGATCATGCTGACGGCGCTCGGCACCGAGGACGACAGGATCCTGGGGCTTGAGGTGGGCGCCGATGACTACATCACCAAGCCGTTCTCGCCCCGGGAGCTGGTGCTGCGGGTCCGGTCCGTGCTGCGCCGCAGCCTGCAGGAATTCAGCCCGGAACCACCCGTGGAAGTGGCTGGTTTCCTGCTGGACCCCGGTGCCCGCACGGTAACCCACCACGGCGTCCAGCTGTCCCTGACGGCCCGCGAATTCGATCTCCTGGCCTTCCTGCTCCGACATCCAAACCAGGCGTTCAGCCGGGAGGATCTCATTAAGGCGGTGTGGGGGTGGGATTTCGGTGATCTTTCCACTGTCACCGTCCATGTCCGGCGGTTGCGGGAGAAGATCGAGGCCGACCCCAGGCACCCGGACCTCCTCAAAACCGTCTGGGGCGTGGGGTACCGGCTGGACGTGCATGCACTGAGCGAGGCGGCCGATGCAAGTCAATGAMNRSLPPQDTADVGNRRILLVEDEQIIAGVVRDYLLQAGFQVDLAKDGFTALDLAAARQPDLVILDRMLPGLDGVEVCRRLRKSTSVPVIMLTALGTEDDRILGLEVGADDYITKPFSPRELVLRVRSVLRRSLQEFSPEPPVEVAGFLLDPGARTVTHHGVQLSLTAREFDLLAFLLRHPNQAFSREDLIKAVWGWDFGDLSTVTVHVRRLREKIEADPRHPDLLKTVWGVGYRLDVHALSEAADASQPGPT0013765_29DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
D1-29_015871209sasA_6Adaptive-response sensory-kinase SasAATGCAAGTCAATGAGCTCGTTGTCATCGTTGGCCTGGCACTCCTCTGGGCGCTGGTCATCGGAGCGGGCGCCCTGCTGGTCCTCAAGGCCATGCAGCGTGCCACATTCGCTGTGCAGATCTGCGTCGTGGTCCTTGCCACGGTGGCCGTCCTGACCGCGGGGATGGTCAGCGCTTTCAACGCCATGGTCATTTCCGCCAGGGACCTTGAGGTCATGTGGTACATCCTGGCGATTGCCTCGGCAGTGGCGGTTGCCATCGCCTTGATCCTGGGAGCCAGAGTTTCCAGGAATGCCCGGGCGCTGGCCGAAGCCGCGCGCAGTATCGGCCGGGGCGAAACCTTGACGCTGACGGCCCCGCTGATGGGATCGGAACTCGCTGCCCTGGCGGACGAGCTGGAACTCAGCAGCCGCCGCCTGATGGAATCCCGGGAGCGGGAAGCCGCCGTCGAAAAGTCACGCCGCGAGTTGGTGTCCTGGATTTCACATGACCTGCGGACACCGCTGGCCAGCATGCGGGCGATGGCGGAAGCGTTGGAGGACGGCATGGCCGCTGATCCCTCCGCGTACCACCGCACCATCATTGCGCAGACGGAGCAGATGGCCGTGATGGTGAACGACCTGCTGGAACTCTCCAAAATCCAGGCCGGTACGCTGCACCTGAACGCCGAGCCGCTGGACCTTTACGATCTCGCCAGCGATGCCCTTACCGATCTGGCGCCCCTTGCCGCCCAAAGGAACATCAGGCTCGACGGCGGTGGGCACCGTGAGAGCCTGGCCATCGCCGATGGACCGTCTGTGGGCCGGGCGGTCCGAAACATGCTCCTGAACGCCATCCTCTACAGTCGCCCGGGATCGGACGTTATGGTCATGGTCGGCCGTGATGACGGGAGCGCCTCGGTCACCGTCACGGATGGCTGCGGCGGAATCCCGCCAGAGGACCTTCCGCATGTCTTCGAGACTGGCTGGCAGGGAAATCCGGCCCGCCTGCAGGCAGGGGACGGGGAGCACGCCGGAAGCTTCAGCTACAGCGGCGCGGGTGTGGGGTTGAGCATGGTGGCCGGGATAGCTCGCGCCCATGGCGGGGGCGTCAGCGTGGAAAACGTCGACGGCGGGTGCCGGTTTACACTCCGCCTCCCCGCTGAAGTGGCTCACTGGCTTGATTCGGATGGACCCGCACATTCTGCGAAGGGATCAGGGAACGCACCGTGAMQVNELVVIVGLALLWALVIGAGALLVLKAMQRATFAVQICVVVLATVAVLTAGMVSAFNAMVISARDLEVMWYILAIASAVAVAIALILGARVSRNARALAEAARSIGRGETLTLTAPLMGSELAALADELELSSRRLMESREREAAVEKSRRELVSWISHDLRTPLASMRAMAEALEDGMAADPSAYHRTIIAQTEQMAVMVNDLLELSKIQAGTLHLNAEPLDLYDLASDALTDLAPLAAQRNIRLDGGGHRESLAIADGPSVGRAVRNMLLNAILYSRPGSDVMVMVGRDDGSASVTVTDGCGGIPPEDLPHVFETGWQGNPARLQAGDGEHAGSFSYSGAGVGLSMVAGIARAHGGGVSVENVDGGCRFTLRLPAEVAHWLDSDGPAHSAKGSGNAPNANANANANA
D1-29_015881761msrP_1Protein-methionine-sulfoxide reductase catalytic subunit MsrPGTGACGGATAAGACACGCGATGGGCTGACAGAGGCAGCGTCGACGACAGCCGGGTCGACAGAGGCCGGGTCGACTGAGGCAGCGTCCACGAACGCCGGGTCGACAGAGGCAGCGTCCATCCAATCGCCATCGTCCACCCAGTCGCCGTCGAAAGCGCCAAGGAAAACATGGTGGGCTGCGGCCTCGGGGGTTACTGCCGCCGGAACCGGCGTGGTGCTGGGGGAACTGCTGGCAAGTCTTGTCAGCCCGTCAGTATCGCCGATGACAGCGGTGGGCGGGGCCGTGATCGACGCCGTTCCGCCGGCCGTGAAGGACTGGGCCATTGCCCTGTTCGGCACCGCGGACAAGATGGCTCTGCTGACGGGCATGGTGCTGGTCATCGGAGCCCTGGCCGCCCTGGCGGGAATAGTGGAACAGCGCAGGCGGTTTGCCGGCGTGGTGGTGATTGCCGTCTTTGCGCTTGCGGGACTGGCCGCGGTCCTGACCCGCGCACAGGTGACTCCGAACGCGATCGCCGTGCCTTTCGTGGCCGCATTGGTGGGGATGGTGCTGCTGCGCCTGCTGATCCGCCGGCTCCAGGCCTGGAACGCTTCGCCCTCTGACACAGGCGTATCTGACCCAGGCATACTTGACGCTGGCGTACCTGATGCAAACGAATCTGACGCACGTGGGATTCAGGGCGGCCACCCTCCTGCCAGACGGGCCTTCTTGCAGGTCTTTGCGGCCGGTGCCGCCGTTACCACCGTGGGAGGTGTCCTCGCGGCTCTGTGGCGAAGTGCTGCCGCAGGTATCAACGAGGCCCGTGAACGGCTGCGGCTTCCTGCCGCCCAATCGGCAGCGCCAGCCATTCCGGCCGGGGCTGAGGTTGGCCTCGACGGCATGCAGCCGCTCATCACCCCCAACCGCGACTTCTACCGTATCGACACAGCCCTCTCCGTTCCCGCCCTTGATCCGGGCTCCTGGGTTCTGCGGGTAACGGGCATGGTGGACCGGGAAATCGAGCTGGCCTTCGCTGAACTTTTGGCGAAACCCCTGATGGAGCGGCACATAACCATCGCGTGTGTTTCGAATGAGGTGGGCGGTGACCTGATAGGCAACGCCAGGTGGCTCGGCTGGCCGGTGCGGGAGCTGCTGGCGTTGGCAGGACCAAAACCCGGGGCGGACATGGTGCTCTCACGGAGCTCGGACGGCTGGACTGCCAGTACGCCGCTCGACGTCCTCACCGATACCAGGGACGCCTTACTTGCAGTGGGCATGAACGGGGAACCGCTGCCACTGGAACACGGGTTTCCCGTCCGGCTGGTTGTCCCGGGCCTCTACGGCTACGTCTCGGCCACCAAGTGGCTCACGGAGCTCAAGGTGACCACGTTTGCCGACGACACCGCCTACTGGACGCCGCGGGGCTGGTCGGCCCGCGGACCCATCAAGACGTCCTCACGGATCGACGTGCCCCGGAGCGGCCGTCCCGTAACGGCGGGAACTGTGATGTTCGGTGGTGTGGCCTGGGCCCAGCACACCGGGATCGGCACGGTGGAACTTCGGGTCAACCGCGGACCGTGGCAGGCGGCCGAGCTGGCCCCCGGGATCTCGTTGGATACGTGGTACCAGTGGAAGCTGGGCATCGACCTCACCCCCGGGCAGTACGAGGTCCAGGTCCGCGCCACAGATCTCGACGGCGAACCCCAGGACGAGGAACGCCGCCCCGTTGCACCCGACGGGGCTACAGGCTTCCACACGATTAGAGTTGACGTGAAACCCTGAMTDKTRDGLTEAASTTAGSTEAGSTEAASTNAGSTEAASIQSPSSTQSPSKAPRKTWWAAASGVTAAGTGVVLGELLASLVSPSVSPMTAVGGAVIDAVPPAVKDWAIALFGTADKMALLTGMVLVIGALAALAGIVEQRRRFAGVVVIAVFALAGLAAVLTRAQVTPNAIAVPFVAALVGMVLLRLLIRRLQAWNASPSDTGVSDPGILDAGVPDANESDARGIQGGHPPARRAFLQVFAAGAAVTTVGGVLAALWRSAAAGINEARERLRLPAAQSAAPAIPAGAEVGLDGMQPLITPNRDFYRIDTALSVPALDPGSWVLRVTGMVDREIELAFAELLAKPLMERHITIACVSNEVGGDLIGNARWLGWPVRELLALAGPKPGADMVLSRSSDGWTASTPLDVLTDTRDALLAVGMNGEPLPLEHGFPVRLVVPGLYGYVSATKWLTELKVTTFADDTAYWTPRGWSARGPIKTSSRIDVPRSGRPVTAGTVMFGGVAWAQHTGIGTVELRVNRGPWQAAELAPGISLDTWYQWKLGIDLTPGQYEVQVRATDLDGEPQDEERRPVAPDGATGFHTIRVDVKPNANANANANA
D1-29_015891368moaE2_1COG0303Molybdopterin molybdenumtransferase 2ATGGCAGCAACCGAAGGCAGGACCATGCACAGCCCTCCGCACCAGCACGGCCACGCCCCGACCCACACTTCGGCCAACCCTGACCAGACTGAACAAACCCAGGCTGAAACAGCCCACCCAGCATCAGCCCAAGCCGAACATGCCCACGCAGCACCAGCCCACACGCCCCGTTCCGTAGCCGGGCACCGCGCCGCCGTGGCACGGCTGCTCGCCGGATTGCGCTCCGCTGACCGGACGGAAACCGTGACCCTGCAGGCGGCCCTGGGCCGGGGGCTTGCCTACGACGTCACTGCTCCCATCAGCCTCCCGCCGTTTGCCAACTCCCAGATGGACGGCTTTGCCGTCAACAGCTCAGACATTCCCGACGACGGGGCGGAGCTGCGCGTGGTGGCCCCCGTCCCCGCAGGTGCCACCCCGGCCGCCCTGGAGCCCGGCACAGCTGCCCCCATCATGACCGGCGCCATGATTCCCGACGGAGCGGACGCCGTCGTCCCCATCGAAAGGGCGGTGCCGGACCGCTTCCCCGCCCCCGGGCAGCGGTCCACAGTCAGGCTTCCGGCAACCGGGGCCGGGACGTTTGTCCGGGCCGTGGGAAGCGATCTCCTCGCCGGAGAACGGGCGCTGGCCGCCGGGACGCACCTGGGTCCTGCGCAGCTGGGGCTCCTGGCCGCGCTGGGCATTGACACCGTGACGGTTCACCGGCAGGTAACTGTCCTGCTTGCCGCAACAGGGGACGAAGTGGTGGAACCCGGCCAGGCGCTGCCCGCCGGCAAGATCTACGATGCCAACGGGACGCTGCTTGAAGGCGCCATGCGGCAGGCTGGCCTGAACGTCATCCGCACGGCTATCTCCGCTGACCGGCCCGAAGAGCTGGAGCTCCTGTTGCGTGAACACGCGCCGGCTGTCGATCTGGTCGTCACCACCGGTGGGGTCAGCAAGGGCGCCTACGAAGTGGTGCGCCAAGCCATGGAAGGGCAGCAGGCCCAATTCCTGCATGTGGCCATGCAGCCCGGCGGGCCCCAGGGGATCGGCACGTTCGATGCCGTCCCTTTCCTGGGCTTTCCGGGCAACCCCGTCAGCTGCCTGGTTTCCTTCGAGATGTTCCTCCGCCCCGTGCTGGCCGGGCTGTTCGGCTCACCGGCACCACGCGTCCCGGTCCGGGCCCGGCTTGCCCACGGACTCAGGTCCCCGGAACATAAGCATCAGGTCCGCCGCGGCACTCTCCACCCGGACGGGACCGTTGGACTTGAAGGCGGCGAAAGTTCGCATCTGATGCACGCCCTGGCGGGTTCAAATGTGCTGGTGCATGTCCCGGAAGGGGTCTCGGCGCTCGCCGAGGGCGATGAAGTGGAAGTATGGATGCTGTGAMAATEGRTMHSPPHQHGHAPTHTSANPDQTEQTQAETAHPASAQAEHAHAAPAHTPRSVAGHRAAVARLLAGLRSADRTETVTLQAALGRGLAYDVTAPISLPPFANSQMDGFAVNSSDIPDDGAELRVVAPVPAGATPAALEPGTAAPIMTGAMIPDGADAVVPIERAVPDRFPAPGQRSTVRLPATGAGTFVRAVGSDLLAGERALAAGTHLGPAQLGLLAALGIDTVTVHRQVTVLLAATGDEVVEPGQALPAGKIYDANGTLLEGAMRQAGLNVIRTAISADRPEELELLLREHAPAVDLVVTTGGVSKGAYEVVRQAMEGQQAQFLHVAMQPGGPQGIGTFDAVPFLGFPGNPVSCLVSFEMFLRPVLAGLFGSPAPRVPVRARLAHGLRSPEHKHQVRRGTLHPDGTVGLEGGESSHLMHALAGSNVLVHVPEGVSALAEGDEVEVWMLPGPT0008430_2859DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-29_01590495moaC2COG0315Cyclic pyranopterin monophosphate synthase 2ATGGATGCTGTGAATGCAGAACAGAGCCCGCCTTCCCTCACCCACCTCCGGCAGGATGGCACCGCCCAGATGGTGGATGTTTCGGCAAAGGCCGAAACCACGCGCCAGGCCACCGCAACCGCCACCGTGACAAGCACCCGGGAGGTTCTGGACCTTCTGGGTTCCGGCGGCCTGCCCAAAGGGGATGCCCTGGCCGTGGCACGGGTGGCAGGCATTATGGCGGCTAAGAAGACTCCTGAACTGATCCCGCTGTGCCATCCACTGCCGCTGTCCAAAGTGACAGTGGACTTCGAACTGGCGGCAGATTCCGTAAACATCCTGGCCACGGTTAAGACGCGCGGCGTCACCGGCGTGGAAATGGAAGCCCTCACAGCGGTGTCCGTCGCCGCCCTGAGCGTGTACGACATGATCAAGGCCGTGGACAAGCACGCCGTGCTTACCGATATCAAAGTGCTGGCCAAAAGCGGCGGCAAGAGCGGGGACTGGACACTATGAMDAVNAEQSPPSLTHLRQDGTAQMVDVSAKAETTRQATATATVTSTREVLDLLGSGGLPKGDALAVARVAGIMAAKKTPELIPLCHPLPLSKVTVDFELAADSVNILATVKTRGVTGVEMEALTAVSVAALSVYDMIKAVDKHAVLTDIKVLAKSGGKSGDWTLPGPT0008405_1366DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
D1-29_01591537hypothetical proteinATGAGCAGCACCACCGAGAGCACACTGAACATGCCTGAACCGCACCGGCACGGGGAGGTACAGGGGCGGAAGGCCGGCGTGGTTATCGCCTCCACCCGGGCAGCAGCCGGTATTTACGACGACGAGACCGGTCCGGTGATCATCGACTGGCTCAAGGAGCACGGCTTTGAAGCCTTTCCGGCCATGGTGGTGCCGGACGGCGAACCCGTGGGCGCGGCCGTCCGGGCGCTGCTCACCCAGCACCCCGCCGTCGTCATCACCAGCGGCGGTACCGGGCTCAGCCCGGATGACCGCACACCAGAGGTCACGTTGCCCCTCCTTGATCGGGAAATTCCGGGCATCATGGAGGCTATCCGCCGTGCCGGAGCTGCCAAGACCCCGCTGGCAGCATTGAGCCGCGGTTATGCCGGGTCTTCCGGCAAGACTTTTATTGTTAACCTGCCCGGATCACCCAAAGGCGTCATGGACGGGCTGTCCGTCCTTGACCCGGTGATCGGGCACCTGTGCGACCAGTTGGAAGGCGGCCATGGACACTGAMSSTTESTLNMPEPHRHGEVQGRKAGVVIASTRAAAGIYDDETGPVIIDWLKEHGFEAFPAMVVPDGEPVGAAVRALLTQHPAVVITSGGTGLSPDDRTPEVTLPLLDREIPGIMEAIRRAGAAKTPLAALSRGYAGSSGKTFIVNLPGSPKGVMDGLSVLDPVIGHLCDQLEGGHGHPGPT0008405_59DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
D1-29_01592465moaE2_2COG0314Molybdopterin synthase catalytic subunit 2ATGGACACTGAATCAGTTTTTGAGGTGGTACGTGCGGTGTTGAGTGCGGAGCCCATCTCCGTGGACCAGGCCATTGCGGCAGTGGAGTCGGACACCGCCGGGGCTGTGGTCAGCTTCAGCGGAGTGGTCCGGAACCACGACGGCGGCAAGGCAGTTGAGCGGCTCAGTTACAGTGCGCACCCCACGGCGCATCAGGTGATGGCCGACGTCGTCGCGCAACTGGTGGCCGAACAGGAGCCGGGGGACGCCGGCGCCGGTCAGCCCGTGCGCATTTGGGCCGCCCACCGGATTGGCATGCTGGAAATCGGGGATCCGGCGCTTGTTTGCGCTGTATCCGCCGCTCACCGTGGCCAGGCTTTTGCGGTGTGTTCGGAACTGGTGGACCGGATCAAGGAACAGGTGCCGATCTGGAAGGAACAGTTCTTTGCCGACGGCTCTGTTGAATGGGTCGGCGCGGGCGCCTGAMDTESVFEVVRAVLSAEPISVDQAIAAVESDTAGAVVSFSGVVRNHDGGKAVERLSYSAHPTAHQVMADVVAQLVAEQEPGDAGAGQPVRIWAAHRIGMLEIGDPALVCAVSAAHRGQAFAVCSELVDRIKEQVPIWKEQFFADGSVEWVGAGAPGPT0008415_186DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008415-moaX-K21142NANA
D1-29_01593771dapBCOG02894-hydroxy-tetrahydrodipicolinate reductaseATGACCGAACAACACCCCGCCCCACTGCGCGTCGCCGTGCTGGGCGCCAATGGGCGCATGGGCGCCGAAGCCGTCAAGGCCGTCGAAGCCGCCGCCGATCTCAAGCTGGTGGCCGCCCTGGGCCGCGCTGATTCATTGGATCAGCTGGCCTCTTCCGGAGCCGAATATGTTGTGGACCTGACGGTTCCCGAAAGCACCGAAGCCAACGTCCGGTTCGCCGTCGAACACGGCATGCACGCCGTCGTGGGAACCACCGGCTGGGATGCCGAGCGACTCTCACGCCTGGAGGCTCTGCTGGCGGCTCACCCGGGGCAGGGCGTTTTGATTGCCCCCAACTTTGCCCTCGGATCCGTGCTGGCCTCTGCCTTCGCCGCCAAGGCAGCACGGTACTTCGAGTCCGTTGAAATCATTGAGCTGCACCACCCGGACAAAGTGGACGCGCCCTCCGGCACTGCCATCCGCACGGCCCAGCTCATCGCCGCGGAACGAGCCGACGCGGATGTTCCCCGCAGTCCTGACGCCACCACAACCGAGCGGGCCGGTGCCCGTGGGTCCGACGTGGACGGCGTCCGCGTGCACAGCGTCCGGCTCCGTGGCCTGGTGGCCCATCAGGAAGTCCTGCTGGGAGGCCCGGGGGAGCAGCTGACCCTTCGCCATGACTCGTTCGACCGCGCTTCCTTTATGCCCGGCGTACTGCTGGGCGTGCGCAACGTCGCGGCGCATCCCGGGCTCACCGTGGGGTTGGACGGCTACCTGGACCTGGGGTTCTAGMTEQHPAPLRVAVLGANGRMGAEAVKAVEAAADLKLVAALGRADSLDQLASSGAEYVVDLTVPESTEANVRFAVEHGMHAVVGTTGWDAERLSRLEALLAAHPGQGVLIAPNFALGSVLASAFAAKAARYFESVEIIELHHPDKVDAPSGTAIRTAQLIAAERADADVPRSPDATTTERAGARGSDVDGVRVHSVRLRGLVAHQEVLLGGPGEQLTLRHDSFDRASFMPGVLLGVRNVAAHPGLTVGLDGYLDLGFNANANANANA
D1-29_01594480hypothetical proteinATGGATAATTTCCTGGCCGCGTTCCGGAAGAACCGCACCAAAATCTGGGTGGGCGCCGTAACCCTCCTGCTGGTCTTCTACTTGGTGGTGTCCTTCCAGCGGTCCGTGTTGCTGCTTTTGGACAGCAACCTGACTGCCAAAGCCATCGGCGCGGCCTACCTGGTGCTGCCGGTTATCGGCGCCTGGGCCCTGATCCGCGAGCTGATGTTCGGCGCCCGCACCGAACAGATGGCAAAAGTCCTTGAAGCTGAGGGCGGCCTGCCCGTGGATGACCTGCCGCGCACCCCGGGCGGACGGATCGTTCGCTCTGCCGCGGATCAGGAATTCGAAAAATACCGTATCGAGGCTGAAGACGCCCCGGACGATTGGCGTTCATGGTTCCGGCTGAGCTGCGCCTACGACGCCGCAGGGGACCGCAAACGCGCACGCGCGTCCATGCGTGATGCCATCCGCCTTTTCCGTGGCAAGGTTCCGGCCTAGMDNFLAAFRKNRTKIWVGAVTLLLVFYLVVSFQRSVLLLLDSNLTAKAIGAAYLVLPVIGAWALIRELMFGARTEQMAKVLEAEGGLPVDDLPRTPGGRIVRSAADQEFEKYRIEAEDAPDDWRSWFRLSCAYDAAGDRKRARASMRDAIRLFRGKVPANANANANANA
D1-29_015951239hypothetical proteinATGACCTCCCGTGCCACCGCCAGACCTTCCAGGGCGCCCCGCAGCGCATCGCGGCCGGACCGGCTCAGGGGCATCGATGCGGCACGAGGCCTGGCCCTGTTGGGCATGATGGCCACCCATCTGCTGCCTACATTTGAGGCCAACGCCAACCTCACCCCTACCTGGATTGGCCTCACGTTCTCCGGCCGGTCTGCCGCCCTGTTTGCAGTGCTGGCCGGAGTTGGGCTGGCACTCTCCACGGGAAAGCAGGTGCCGCTGGAAGGCAAGGCTCTCGGTGCAGCCAGCCGCGGCGTGGCGCTGCGGGCGCTGGTGATTGCCGCCGTCGGCCTGACTCTTGGCGGCCTTGAAGTGAACCTGGCAATTATCCTGGTTCACTACGCGGTGCTGTTCCTGTGCGTCCTGCCATTCCTGGGGCTGAAGCTGAAAGCGTTGTGCATGTGGGCAGCCGGCTGGATCGTGGCGTCCCCGGTGCTTGCCTACCTGCTGCGCCCGTGGCTGATGGCATCGAACCCGCCCCTGAAGCTTGGCCACAATCCAAAGTGGGAAGACCTGTTGGTGCCTTCGCGGCTGCTGGGAGACTTATTCTTCACTGGCTACTACCCCGTTTTTCAGTGGGTGGCCTACCTGCTGGTGGGGCTGGCGATTGGCCGGCTGGCGCTTACCAAGGCCTTGGTTCCGGTGGTGCTGCTGGTCGGTGGAACGGTGGTGGCCGTCCTGACCAAGGCCCTTGGCACGGCCGCGATGGAGAACTGGGGTGGCAGGGAAGCCCTGCAGGACGTATTGAACGCCCCGAACTACCCCTTGGACAGTGTCCTGCAGGTCAACCTCACGGGCATCAACCAGGAAGGGTCCTGGTGGTGGCTGGCGTCCGCAGCGCCGCATTCTGCGACGACGCTGGACCTGGCCCATACGTCTGCCGTGGCGGCGGCCGTTGTGGGGGCCTGCCTTTTGCTCGGCAAACTGGCCGACTGGCTGAACCTGGATCTGTTGCTGCCCCTGCGCGGGGCGGGAGCCATGACCCTGACGCTGTACACGGTCCACATCTGGGTGGTGGCCGGCTTCTACCTGAAGCCATTGCCTGCCGGCTGGACAGAGGACGGGATGTATTTTGCCCACGCCGCAACCGCGATCATTGTGGGGATGGTGTTTGTCCTGCTCAAGTGGCGCGGCCCCCTTGAGTGGCTCGGGCACATGGCCAACCAGCTGGGCCGCCATGGAGTCATAACGGCCAAGCCGTAGMTSRATARPSRAPRSASRPDRLRGIDAARGLALLGMMATHLLPTFEANANLTPTWIGLTFSGRSAALFAVLAGVGLALSTGKQVPLEGKALGAASRGVALRALVIAAVGLTLGGLEVNLAIILVHYAVLFLCVLPFLGLKLKALCMWAAGWIVASPVLAYLLRPWLMASNPPLKLGHNPKWEDLLVPSRLLGDLFFTGYYPVFQWVAYLLVGLAIGRLALTKALVPVVLLVGGTVVAVLTKALGTAAMENWGGREALQDVLNAPNYPLDSVLQVNLTGINQEGSWWWLASAAPHSATTLDLAHTSAVAAAVVGACLLLGKLADWLNLDLLLPLRGAGAMTLTLYTVHIWVVAGFYLKPLPAGWTEDGMYFAHAATAIIVGMVFVLLKWRGPLEWLGHMANQLGRHGVITAKPNANANANANA
D1-29_01596393hypothetical proteinATGAAGGCCATGAGTCCGGGAGTCGTTGACTACCTTTTCAGGCAGCTCGTCGCAGGAGAGCCGCCAGAGGACGTCCAATGGCAGCGGGAGGGCATCACGCTCGCGGCACAGCCCCCGGGAGCGGAGCTGGCACGGCGGCTCAGCGAAACGGACCTCGAGGCCCTCACGCCCACCGAGCTGTTCCACTACGTCAGGGCCGCCCAGCGGTTGGCATCCTGGGCGGAGGGGCTGCGGGAGGCTGCGGTGGCCAGGTACTGCCAGCCCATGGCCGCGCCGGTCGGGCCATATGAAGCAGTGGATAGTGGGAGCGTCCGGCCCGGGGACCAGAATTGTCCCGAGGTGCCGCAGTTTGCGGAGGCAAAACTTCCTGAAATCCGGCGTGAGCTTCCCTAGMKAMSPGVVDYLFRQLVAGEPPEDVQWQREGITLAAQPPGAELARRLSETDLEALTPTELFHYVRAAQRLASWAEGLREAAVARYCQPMAAPVGPYEAVDSGSVRPGDQNCPEVPQFAEAKLPEIRRELPNANANANANA
D1-29_01597642hypothetical proteinGTGAGTGATGCCCTGACTGTTTCCACCGTCCAGTACCAGGCGCTGGACGGCGGCGTCGCCACCAATGCCATGGAGCATGTGCGCCTGATCGAAGATGCCGAGTCCCACGGCTCCAGGCTGGTGGTTTTTCCCGAACTGTCCCTGACGGGGTATGACCTGCCGCTGCTAAAGGACCCCGGGCAGTGGCTCCAACCGGAGGATCCGCGGCTTGGTGATGTCCGCGAGATCTGCCGCCGGACCGGGATCACGGCAGTTGTCGGGGGCGCCTACCGGGAAGCCGATGGCACGCCCAGGCTCGCTGCACTGGCCATTCATCCTGAAGGCGTCACGGACGTCGCCTTCAAGACGCATCTTCATGGCCAGGAGAAGGACATCTTCGCCCCCGGCGGGGGTGCCGTCGTTCTGGAGCTGGATGGCTGGAAGATTGCGCTGGCCATATGCTTCGATGCCGCCGTCCCCTCCCATTCGGTGCTGGCAGCCGGGTCCGGGGCGGACGCCTATGCGCCGTATCCGCCCTCTACACCCGTGAGGAAGAACACCGGCTCGCTCTTCACCTGGGCGCCCGGGCCATGGACAATCGAATGTTCGGCATCCTGGCGAACCTCGGCGGAACCACCACCCTGGGCCCTTCGTGCGGCCTGAMSDALTVSTVQYQALDGGVATNAMEHVRLIEDAESHGSRLVVFPELSLTGYDLPLLKDPGQWLQPEDPRLGDVREICRRTGITAVVGGAYREADGTPRLAALAIHPEGVTDVAFKTHLHGQEKDIFAPGGGAVVLELDGWKIALAICFDAAVPSHSVLAAGSGADAYAPYPPSTPVRKNTGSLFTWAPGPWTIECSASWRTSAEPPPWALRAANANANANANA
D1-29_01598168hypothetical proteinATGTTCGGCATCCTGGCGAACCTCGGCGGAACCACCACCCTGGGCCCTTCGTGCGGCCTGAGCGGATTTTGGGGGCCTGACGGCCTGCTGATGAAAAAGGCGGCGGGAACAGGCACGGAGGTGGTCACAGCCATTCTGCAGCGCAGTGCGTTGCGAAAGTTTCGGTGAMFGILANLGGTTTLGPSCGLSGFWGPDGLLMKKAAGTGTEVVTAILQRSALRKFRNANANANANA
D1-29_01599909dapACOG03294-hydroxy-tetrahydrodipicolinate synthaseATGGCTGATACATCCGCGAACATCCCTGCTCTTGGTACCCTGCTGACCGCAATGGTCACGCCCTTCACCAAGGACGGCGCTGTGGATTACAAGCAGGCCGCGGAGTTGGCGGTCAAGCTGGTTGATGACGGCTGCGACGGCCTCGTAGTCACCGGAACCACTGGCGAAACCTCCACCCTCACGGACGAGGAAAACCTCGGCATGTTCCGCGCCGTTAAGGAAGCTGTGGGAGGCCGGGCCGCCATCATTGCCGGCACCGGCACCAACGACACTGCTCACTCAGTACACCTTTCCCAGCAGGCCGCAGCGGTGGGCGTGGACGGACTCCTGCTGGTCACGCCTTACTACAACAAGCCAAGCCAGGCCGGCGTCCGGGCGCACTTCGAGACCATCGCGTCATCCGTTGACGTGCCCGTGATGCTCTACGACATCCCCGGCCGGTCGTCTATCCCGATCGAGCCCGAAACCATGATCCGGCTGGCGCAGCACCCGAACATCGTCGCCGTCAAGGACGCCAAGGCCGACTTCGTCGCCGCCACCCGCGTCATGGCAGAGACTGATCTGCTCTTCTACTCCGGCGACGACGGCCTGACACTTCCATGGATGGCCCTGGGCGCAGTAGGGCTCGTAGGTGTGACAACGCACGTCGCTACCCGCCGCTTCAGGGAACTGATCGACGCCATCAACGCGAACGACCTCGGAACGGCCCGCAAGATCAACTTCGAGCTCCAGCCTGTCGTGCGGGCAACGATGACCCGCGTGCAGGGGGCCGTTGCGGCCAAACAAATTCTTAAATGGCAGGGAGTCCTGCCCAACTCGATTGTCCGTTTGCCCCTCGTGGAGCCGGACGAAGCCGAGATCGAAACCATCCGCGAGGACTTGGCGGAAGGAGGGCTGGTCTTTTCCTGAMADTSANIPALGTLLTAMVTPFTKDGAVDYKQAAELAVKLVDDGCDGLVVTGTTGETSTLTDEENLGMFRAVKEAVGGRAAIIAGTGTNDTAHSVHLSQQAAAVGVDGLLLVTPYYNKPSQAGVRAHFETIASSVDVPVMLYDIPGRSSIPIEPETMIRLAQHPNIVAVKDAKADFVAATRVMAETDLLFYSGDDGLTLPWMALGAVGLVGVTTHVATRRFRELIDAINANDLGTARKINFELQPVVRATMTRVQGAVAAKQILKWQGVLPNSIVRLPLVEPDEAEIETIREDLAEGGLVFSPGPT0002080_2998DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-29_016001692rnjCOG0595Ribonuclease JATGACCCAAATCGCCCTTCCTGGCCTTGTCACGCCTCCACGCCTGCCGCAAGGCACCCTTCGGATCGTTCCGCTGGGTGGCCTGGGGGAGATCGGCCGGAACATGGCTGTGTTCGAAATCGACGGCAAACTGCTCGTCGTTGACTGCGGTGTCCTCTTCCCCGAGGAAACACAGCCCGGCGTTGACCTGATCCTGCCCGATTTCTCCTATATCGAGGACAGGGTCAACGACATTGTTGCCGTCGTCCTGACGCACGGCCATGAGGACCACATCGGCGCCGTTCCTTACCTCCTGCGGCTCCGCAGCGATATCCCGCTGGTGGGTTCACAGCTCACCCTGGCTCTCATCGAGGCCAAGCTGCAGGAACACCGGATCCGTCCGTATACCCTGACGGTGGCCGAGGGCCAGGTGGAGAAGTTCGGTCCCTTCGAATGTGAGTTCGTTGCCGTCAACCACTCCATCCCGGACGCCTTGGCAGTGTTCATCCGGACAGCAGGCGGCACCGTCCTGCACACCGGCGACTTCAAGATGGACCAGCTCCCGCTGGACGGCCGCATCACGGATCTCCGTCACTTCGCCAAGCTGGGCGAAGAGGGCGTGGACCTCTTTATGTCCGATTCCACCAACGCGGACGTGCCTGGCTTCACCACCGCGGAAAAGGAGATCGGCCCCACGCTGGAACGGCTCTTCGGGCAGGCAACAAAACGCATCATCGTCGCGTCGTTCTCTTCGCACGTCCACCGGGTCCAGCAGGTGCTCGACGCCGCAGCCAAGCACAACCGAAAAGTGGCCTTTGTGGGCCGGTCCATGGTCCGGAACATGGCCATCGCCGACAAGCTGGGCTACCTTGATGTTCCCGAGGGTCTCCTGGTGGACATCAAGAACATCGACAACCTGCCGGACAACCGCGTCGTCCTGATGTCCACAGGTTCCCAGGGCGAGCCCATGGCTGCACTGTCCCGCATGGCCAACGGTGACCACCGGGTGGTGGTGGGGGACGGCGATACCGTCATCCTCGCTTCCAGCCTGATTCCCGGCAACGAGAACGCCGTATTCCGCATCATCAACGGCCTGCTCAAGCTCGGTGCGGACGTTATCCACAAGGGCAACGCCAAGGTCCATGTGTCGGGCCACGCTGCCGCCGGTGAGCTGCTGTACTGCTACAACATCCTGGAGCCTCTCAACGCCATGCCTGTGCACGGTGAGACCCGCCACCTGATTGCCAATGGCAAGATCGCCATCGAGTCCGGCGTCCCCACGGCCAGCGTCATTCTGGCGGACAACGGCACGGTGATCGACCTGAAGGACCACCGCGCCGACGTGGTGGGCCAGGTGGAAGTGGGCTTCGTGTACGTGGACGGCTCCAGTGTCGGAGAAATCACCGACGCCGACCTCAAAGACCGTCGCGTCCTCGGAGACGAAGGCTTCATCTCCATCATCACAGTCATCAACAAGGCCACGGGCAAGGTGGTTTCCGGACCCGAAATCCACGCCCGCGGTGTCGCCGAGGACGATTCAGTCTTCGACGACATCATCCCCAAGATCAACGCGGCGCTGGAAGAGGCAGTGCTGAACCATGCAGACCACACCAGCCACCAGCTCCAGCAGGTTGTCCGCCGTGTTGTCGGCACCTGGGTCAACCGCAAGCTGCGCCGCCGGCCCATGATCATTCCCGTGGTGCTCGAAGCGTAGMTQIALPGLVTPPRLPQGTLRIVPLGGLGEIGRNMAVFEIDGKLLVVDCGVLFPEETQPGVDLILPDFSYIEDRVNDIVAVVLTHGHEDHIGAVPYLLRLRSDIPLVGSQLTLALIEAKLQEHRIRPYTLTVAEGQVEKFGPFECEFVAVNHSIPDALAVFIRTAGGTVLHTGDFKMDQLPLDGRITDLRHFAKLGEEGVDLFMSDSTNADVPGFTTAEKEIGPTLERLFGQATKRIIVASFSSHVHRVQQVLDAAAKHNRKVAFVGRSMVRNMAIADKLGYLDVPEGLLVDIKNIDNLPDNRVVLMSTGSQGEPMAALSRMANGDHRVVVGDGDTVILASSLIPGNENAVFRIINGLLKLGADVIHKGNAKVHVSGHAAAGELLYCYNILEPLNAMPVHGETRHLIANGKIAIESGVPTASVILADNGTVIDLKDHRADVVGQVEVGFVYVDGSSVGEITDADLKDRRVLGDEGFISIITVINKATGKVVSGPEIHARGVAEDDSVFDDIIPKINAALEEAVLNHADHTSHQLQQVVRRVVGTWVNRKLRRRPMIIPVVLEANANANANANA
D1-29_016013027hypothetical proteinGTGGTGGCAGGGGCGGCAACATGGAGGCCCCTGAAAGCGCGGAAATCCGCGGAAATCAGGCCCGGTTCGGGTACCGTGGCAGGTATGGCCACTCGTACTACGTCCGCGTCCAGAGGCAATTCTGGCGGCACTTCCGGCAGCAAAGCCGGCTCTGCCGCGGGCCGCGGGGCCGGCTCTGCGGCGTCCAAGACCGGCCGGACCACAGGTTCCTCCGGAAGCCCGCGCACCCGCCGGCTTCCCGCCGTCGAACAGCGCGATCCCTGGCTCCTGCGCGTTGTAGGCGGCGCTTGGCTGGGAATCGGCCACCTCGTGGGCGGCGGGGTCCGCAGGATTGGCCACGACGTCAGTGACGTGCCCCCGGAGGAACGCCGCGACGGAGCAGCCCTGTTCAACCTCGCGCTGGGGATCTTCATCGCCACCTTCGCATGGTGGGGGTTGACCGGTTGGTTCCCCGATGCGGTCTACAGCGTGGTCAACGGCACGTTCGGCTGGATGTCCCTGCTCCTCCCGCTCATGCTGTTTGTCTGTGCCTTCCGCCTGTTCCGGCAGCCGGCGGACGGCCGAGGAAACAACCGCGTGGGGATCGGCTTCCTCATCATGACGTTCGCGGGCTGCGGCCTCGCCCATGTCCTGGGCGGACAACCCACCGTTGCCGAGGGCTTCGACGGACTCCGCCAGGCGGGCGGCATGCTTGGTTTCCTGGCTGCATCGCCCTTAGCCGCCATCCATCCGGGGGTGCCACTGGGAATCTACGGCCTGCTGGCATTTGTGTCCCTGCTGATCATCACCGCCACACCATTCACGGCGATTCCGCGGCGTATCCGCGGCGCCTACGAGCACCTCATGGGCATTGACCTGCAGGAACAGGACGAGTCAGGGGACGGCCACGACCGCAGCTACCTCTATGAAACGCCGGCCGCCGCTGCACCCCAGAAGAAGAAGCGCAGGCGATTCTTCGGCAAGGATGAAGAGCCCGACGCCGGTCTGGAGGGGTATGTCGGGGATGAAGCCTTCGAGCATGCCGTCATCGATGACGAGGATGCAGCAGACGCCGCCAAGGGAAGCAAGGCAGCGCGTCCCGCACCCGGGGTACGGCGCCCCACGCAGGCGGAAATCGCCGTCGAAAAGATCAAGGCAGCGCAGGGGCTGGGCAGTGCCGCAGCTTCGGTGGGGGAGAACGCCACCGAGGCCATTCCCCTGGTGACTCCCGGGATGGTGGCAGCCGGCTCGCTCAACCCCGCCCAAACCAGCGTGCCGGCCGCCGTGCCGCACGTACCGGCAAACCCGGTGAGCCCCGCGCCGCCGCCCACGCCCATTCCGCAGCGCACTGAACAGCTTTCCCTCGCCGGCGACGTGACGTACACGTTGCCGTCGTCGGACGTTTTGACCCCCGGCTCCATTCCGAAGGAGCGTACGGAGGCAAACGACGCCATCGTCGCTTCGCTGACGGAAACGCTGAACCAGTTCAACGTGGAGGCCCAGGTTACCGGTTTCAGCCGTGGTCCCACAGTGACCCGGTACGAAATCGAGCTGTCGCCCGGCACCAAGGTGGAGCGGGTCACCGCGCTGTCCAAGAACATCTCCTACGCCGTGGCCAGCTCCGACGTCCGGATCCTCAGCCCCATCCCGGGCAAGTCCGCCATCGGCATCGAGATCCCCAACACAGACCGCGAAACAGTCTCCCTGGGCGACGTGCTGCGCAGCCAGAACGCCCGCCGGACGGACCACCCCATGGTGATGGGAGTAGGCAAGGACGTTGAAGGCGGCTACGTGGTGGCCAACCTGGCCAAGATGCCCCACCTCCTGGTGGCCGGTGCCACCGGTGCCGGTAAGTCCTCGTTCGTGAACTCGATGATCACCTCGATCCTCATGCGGGCGACGCCGGATGAGGTCCGCATGGTGATGGTGGACCCCAAGCGCGTGGAACTGACCGCCTACGAGGGTGTCCCGCACCTGATCACGCCCATCATCACCAACCCCAAGAAGGCCGCAGAGGCGCTGCAGTGGGTGGTCCGCGAGATGGACGCCCGTTATGACGACCTTGCCAATTACGGCTTTAAGCACATCGACGACTTCAACAAGGCGGTGCGGGCCGGCAAGGTCCATCCGCCGGTGGATTCCAAGCGCGTCATCCGGCCCTACCCGTACCTGCTGGTGATCGTGGACGAGCTCGCCGACCTCATGATGGTGGCCCCGCGTGACGTCGAAGACTCCATTGTCCGCATCACCCAGCTAGCCCGGGCCGCCGGCATCCACCTCGTGCTCGCCACCCAGCGCCCGTCCGTGGACGTCGTTACGGGCCTGATCAAGGCCAACGTCCCCTCCCGGATGGCGTTTGCCACGTCCTCCGTAACGGACTCCCGCGTGGTCCTGGACCAGCCCGGCGCCGAGAAGCTCATTGGCCAGGGTGATGCACTCTTCCTGCCCATGGGCGCCTCCAAGGCCATGCGCGTGCAGGGCGCCTGGGTCACGGAGTCCGAAATCCACAAGGTCGTGGAGCACGTCAAGGGCCAGCTTCAGGCCGTCTACCGCGACGACGTCGCCCCCGAGGCACAAAAGAAGCAGATCGACGACGACATTGGAGACGATCTCGAGGTCCTGCTGCAGGCCACTGAGCTGGTGGTCACCACCCAGTTCGGCTCCACGTCGATGCTGCAGCGCAAGCTGCGGGTCGGCTTCGCCAAGGCGGGGCGCCTGATGGACCTGCTGGAATCCCGCGGTGTGGTGGGCCCCTCGGAAGGATCCAAGGCCCGGGATGTGTTGGTGAAGCCTGATGACCTGGCGGCCGTGCTGGCTGCCATGAAGGGCCAGGAGGCGCCGTTGGTCGCTGATTCGCAGACCGCTGCCCTGAGCGAGAATGCCAACGCCAACATTGGGCAGGGCGGCTATGCCGAAGACCTGGTGGCGGCGGATCTTGAAAAGCGTACGCAGAACGTTGAATATTACGACGGCGCCGATTCGCCCCCAGGCTCCTATGGGGACGATGAAGACGGTTCCGAAGACGCCTGGTCGCTCACCGGGCGCTAGMVAGAATWRPLKARKSAEIRPGSGTVAGMATRTTSASRGNSGGTSGSKAGSAAGRGAGSAASKTGRTTGSSGSPRTRRLPAVEQRDPWLLRVVGGAWLGIGHLVGGGVRRIGHDVSDVPPEERRDGAALFNLALGIFIATFAWWGLTGWFPDAVYSVVNGTFGWMSLLLPLMLFVCAFRLFRQPADGRGNNRVGIGFLIMTFAGCGLAHVLGGQPTVAEGFDGLRQAGGMLGFLAASPLAAIHPGVPLGIYGLLAFVSLLIITATPFTAIPRRIRGAYEHLMGIDLQEQDESGDGHDRSYLYETPAAAAPQKKKRRRFFGKDEEPDAGLEGYVGDEAFEHAVIDDEDAADAAKGSKAARPAPGVRRPTQAEIAVEKIKAAQGLGSAAASVGENATEAIPLVTPGMVAAGSLNPAQTSVPAAVPHVPANPVSPAPPPTPIPQRTEQLSLAGDVTYTLPSSDVLTPGSIPKERTEANDAIVASLTETLNQFNVEAQVTGFSRGPTVTRYEIELSPGTKVERVTALSKNISYAVASSDVRILSPIPGKSAIGIEIPNTDRETVSLGDVLRSQNARRTDHPMVMGVGKDVEGGYVVANLAKMPHLLVAGATGAGKSSFVNSMITSILMRATPDEVRMVMVDPKRVELTAYEGVPHLITPIITNPKKAAEALQWVVREMDARYDDLANYGFKHIDDFNKAVRAGKVHPPVDSKRVIRPYPYLLVIVDELADLMMVAPRDVEDSIVRITQLARAAGIHLVLATQRPSVDVVTGLIKANVPSRMAFATSSVTDSRVVLDQPGAEKLIGQGDALFLPMGASKAMRVQGAWVTESEIHKVVEHVKGQLQAVYRDDVAPEAQKKQIDDDIGDDLEVLLQATELVVTTQFGSTSMLQRKLRVGFAKAGRLMDLLESRGVVGPSEGSKARDVLVKPDDLAAVLAAMKGQEAPLVADSQTAALSENANANIGQGGYAEDLVAADLEKRTQNVEYYDGADSPPGSYGDDEDGSEDAWSLTGRPGPT0030468_2661DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-29_01602639pgsACDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferaseGTGACTAGCACCGAAGCAACCGCCGCCGGCTCCAGCAGTTCCAGGATCTGGAATCTTCCCAACGTCCTGACCATGCTGCGCATCGCGCTGGTGCCTTTCTTCGTCTGGTTCCTTCTTGCGGACGCCCCCGGGCTGCAGAGTGAAGCGGGGCTGTGGCGCTGGGCAGCGGTACTGGCCTTCGCCGTCGCGATTTACACAGACAAGCTCGACGGCGATATCGCCAGGAGCCGTGGCCTTGTCACTGATTTCGGTAAAATCGCCGACCCCATCGCCGACAAACTGCTGATTGGCTCGGCGCTGGTCATGCTGTCCGTCCTGAATGAACTGCCCTGGTGGGTGACAATTCTCATCCTCGTCAGAGAATGGGGCATCACCGGCCTGCGTTTCTTTGTCATCCGCTACGGTGTCATTCCCGCATCGCGTGGCGGCAAGCTCAAGACCGTGGTGCAGACCGCAGCCATCTTCCTGTATCTCCTGCCGCTGGGGGCACTGGCGCCCTGGCTGGTATGGCTGGCCTTCACCGTCATGATGGCGGCGGTGCTGATTACCGTGTGGACCGGGGTGGAGTACGTGGTGGAGGCACTGCGGCTGCGGGCGCAGGGCAAGCGCGCCGGAACGAAAACCATCAACAACCAGTAAMTSTEATAAGSSSSRIWNLPNVLTMLRIALVPFFVWFLLADAPGLQSEAGLWRWAAVLAFAVAIYTDKLDGDIARSRGLVTDFGKIADPIADKLLIGSALVMLSVLNELPWWVTILILVREWGITGLRFFVIRYGVIPASRGGKLKTVVQTAAIFLYLLPLGALAPWLVWLAFTVMMAAVLITVWTGVEYVVEALRLRAQGKRAGTKTINNQPGPT0007705_1661DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
D1-29_01603495pncCCOG1546Nicotinamide-nucleotide amidohydrolase PncCGTGACAAACCTCCATCACCTCGCCGAACAGGCCGTTAAGACTGCACTGGATGGGGGAGTCACCGTAGCCACTGCCGAATCGTTGACCGCAGGGATGGTTTCCGCTGTTCTGGCCGACACTGCCGGTGCATCGGGAATGCTTCAGGGCGGGGTGGTCGCGTACCAGAACTCGGTAAAAATGGAGGTGCTGGGGGTTTCGCCTGAACTGCTCGAGGCCGCCGGTTCAGTAGACGGCGATGTGGCCGCGGCCATGGCAGCGGGGGCCCGCAGGCTGTGTGGTTCCGACGTCGGTGTGGCCACCACAGGCGTGGCCGGACCGGAGGAACACGACGGAAAAGCCGTAGGTACTGTCTACATTGGCATTGCGACTCCGGAAGGATCCGGTTCCTTCGAGTATGGCTTTACCGGCAGCCGGGCAGACATCCGCGGCCAGGCCTGCGGGGCTGCCTTGGAAAGACTGCTTGCTGCCCTGGCTTCCGGAAGCTACCGGGCGTAAMTNLHHLAEQAVKTALDGGVTVATAESLTAGMVSAVLADTAGASGMLQGGVVAYQNSVKMEVLGVSPELLEAAGSVDGDVAAAMAAGARRLCGSDVGVATTGVAGPEEHDGKAVGTVYIGIATPEGSGSFEYGFTGSRADIRGQACGAALERLLAALASGSYRAPGPT0013460_2934DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743NANA
D1-29_01604453hypothetical proteinATGGTAAAGCAGCCCGTATCCGTAAACGGCGTTGTCCGCTGGAAGGATGTGGGCCTCGCCGATCAGGGCAAGAGTGAACAGAAGGAGCGCAAAATGGTTGTACTTCGTCACGAAATTGGTGATGTCCTGCGCGATGTCCGCCAGCGCCAGGGCCGTACGCTCCGCGAAGTTTCGCACAGCGCCCGTGTTTCCTTGGGATACCTCAGTGAAGTCGAGCGGGGCCAGAAGGAGGCTTCCTCAGAGCTTCTGTCGTCCATCTGCTCTGCTTTGGATGTTCCGTTGTCCAGCATGCTCCGTGAAGTCAGTGACCGTGTTGCTGTCGCCGAGGGCGTTGCCGTTCCGGACACCGTGCCCCAGGAATTCTCCCAGCGTTATGGCCGTGACCTCGACCGCGACCTCAACGCTGAACTCAACAACGAACTCTCGAAGGGCCTGCTCTCCGGCGCACGCTAGMVKQPVSVNGVVRWKDVGLADQGKSEQKERKMVVLRHEIGDVLRDVRQRQGRTLREVSHSARVSLGYLSEVERGQKEASSELLSSICSALDVPLSSMLREVSDRVAVAEGVAVPDTVPQEFSQRYGRDLDRDLNAELNNELSKGLLSGARNANANANANA
D1-29_01605558hypothetical proteinATGAGCAACTCCCCTGACGTTCCTGTTGCTGCAGGTCCTGCAGACGACACCGTAGATGCGGCACTGAAGACCGTGGAGCATCAGATCAGCCTGTTCTGGCGTCGCGCGCGGTCTGTATCGCATCAGTTGTCCCGCCAGGTCCATCCAGACATGGAACCGGCCGCCTATGGCCTGCTGACAGTAATCCGCAGGGAGGGACCCATCAGGCTCACTGACCTCGCGCTCAGCATCGGCGTGGGTAAGCCGTCCATTAGCCGGCAGATCGCCTTCCTCGAAAGCGTTGGCCTGGTGTCCAAGGAAGCCGATCCCCTGGACGGGCGGGCCCAATCCATCCGCCTGACAGAAAAGGGCGAGGAAAAGATGCACCTGGTCCAGGACGCGCGGAGGCAGGTTTTCAGGGAGCGGCTGGGTGAATGGCCACTTGAGGAGCTGCAGACGCTCGCCGAATACATGGCAAAACTGAATGCGATCTACGAGCGGGACGGCTTCCCCAAAGACGATGCCGCCCCAACAAATGCCGCTCAGGCTGACGCCGTTCCGGCCAACGGCGGGAAGTAGMSNSPDVPVAAGPADDTVDAALKTVEHQISLFWRRARSVSHQLSRQVHPDMEPAAYGLLTVIRREGPIRLTDLALSIGVGKPSISRQIAFLESVGLVSKEADPLDGRAQSIRLTEKGEEKMHLVQDARRQVFRERLGEWPLEELQTLAEYMAKLNAIYERDGFPKDDAAPTNAAQADAVPANGGKNANANANANA
D1-29_01606225hypothetical proteinGTGCGAATTAGTGACTACTGGCGGCTCATGGACGACGAATTTGGCGCAGGCTATTCCAGGGTTCTGAGCAGCACGCTCGTGCTCGCCGGCGTCGGCGGACGCACCGCCGATCAGGCGTTGGCCGCTGGAATAAGTCCCAGGGCCGTGTGGCTGGCCATCTGCGACGTGCAGGATGTGCCGCCGGAGCGCCGCCTGGGACGCGACATCAAACCTCACCGCGACTAAMRISDYWRLMDDEFGAGYSRVLSSTLVLAGVGGRTADQALAAGISPRAVWLAICDVQDVPPERRLGRDIKPHRDNANANANANA
D1-29_016071059recACOG0468Protein RecAATGGCGGCAGCCCCGGATCGTGAAAAAGCGTTGGAAGCAGCGCTGGCCCAGATTGACAAGCAGTTCGGTAAGGGCTCGGTCATGCGGCTGGGCGATGAAGTCCGGGCCCCCATCGAGGTCATTCCCACCGGATCCATCGCCCTGGATGTTGCCTTGGGCATTGGTGGCCTGCCCCGTGGCCGTGTCGTCGAGATTTACGGCCCGGAATCCTCGGGTAAGACAACCGTTGCGCTGCACGCTGTGGCCAATGCCCAGCGCCAGGGTGGCATCGCGGCGTTTATCGACGCCGAGCACGCCCTGGATCCTGAATACGCCGCAAAGCTGGGGGTGGACACCGACGCACTCCTGGTTTCCCAGCCGGACACAGGCGAGCAGGCCCTCGAAATCATGGACATGCTGATCGGCTCGGGCTCCCTTGACGTTATCGTCATTGACTCTGTGGCTGCCTTGGTTCCCCGGGCGGAAATCGAAGGTGACATGGGAGACAGCCACGTTGGTCTCCAGGCCCGCCTGATGAGCCAGGCCCTGCGTAAGATCACCGGCCGCCTGAGCCAGACCAAAACCACCGCAATCTTCATCAACCAGCTCCGTGAAAAGATCGGCGTCTTCTTCGGCTCGCCGGAAACCACCACCGGTGGTAAGGCACTGAAGTTCTACGCCTCCATCCGCATCGACGTCCGCCGCATTCAGACTCTCAAAGAGGGCGCAGACTCCGTGGGTAACCGGACCAAGGCCAAGATCGTCAAGAACAAGATGGCACCGCCCTTCAAAATCGCCGAGTTCGACATCATCTACGGCCAGGGGATCTCCCGCGAGGGCGGCATTATCGACATGGGCGTCGAGCACGGCATCATCAAGAAGTCCGGTTCCTGGTTTACCTACGACGGCGATCAGCTCGGACAGGGTATGGAGAACTCCCGCAGGTTCCTTCGCGACAATCCTGAACTCGCAGCCGAACTTGAACGTTTGATCAAGGAAAAGCTCGGCGTGGGGGTCCCCAAGCCTGCGGCCGATGAATCCAAAGACACTCCGAAGCTGAAGGCCGTTGACGGGTTCTAGMAAAPDREKALEAALAQIDKQFGKGSVMRLGDEVRAPIEVIPTGSIALDVALGIGGLPRGRVVEIYGPESSGKTTVALHAVANAQRQGGIAAFIDAEHALDPEYAAKLGVDTDALLVSQPDTGEQALEIMDMLIGSGSLDVIVIDSVAALVPRAEIEGDMGDSHVGLQARLMSQALRKITGRLSQTKTTAIFINQLREKIGVFFGSPETTTGGKALKFYASIRIDVRRIQTLKEGADSVGNRTKAKIVKNKMAPPFKIAEFDIIYGQGISREGGIIDMGVEHGIIKKSGSWFTYDGDQLGQGMENSRRFLRDNPELAAELERLIKEKLGVGVPKPAADESKDTPKLKAVDGFPGPT0007235_2875DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553NANA
D1-29_01608468recXCOG2137Regulatory protein RecXGTGCTCCGGCAACTGACCAGCTCGGCGAAGAGCCGGCTGCAGCTGGCCCGGAAACTTGCCGAGCGGAACATCCCGGAGGATGTGGCCGAGGCTGTGCTGGACCGCTTCCAGGAAGTCCGTCTCATTGACGACGCCGAGTTCGCGGATATGTGGGTGCGCAGCCGTTCGCATTCACGCAAGCTGGCCAAAGGGGCTCTGCGCCGGGAACTTGAGGACAAGGGCGTCGCTCCGGAGACGGCAGCTGCCGCCTTGGAGCAACTCTCCGATGCCGACGAGGAAACGGCTGCCCGCCAACTCGTGGAGCGGAAACTTCGGCCGGGGACGGACCTCTCAGACCGTGCGGAACGAGACAAGGTCACGCGGCGTCTGGCTTCGATGCTGGCCCGGAAGGGTTACCAGCCGTCCCAGGCTTTCCGGATCGTCAGTGAAGTACTGGACGCCACTGCTGGCGGCCGGCAGGGCGGGTAAMLRQLTSSAKSRLQLARKLAERNIPEDVAEAVLDRFQEVRLIDDAEFADMWVRSRSHSRKLAKGALRRELEDKGVAPETAAAALEQLSDADEETAARQLVERKLRPGTDLSDRAERDKVTRRLASMLARKGYQPSQAFRIVSEVLDATAGGRQGGPGPT0007240_1707DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565NANA
D1-29_016091458miaBCOG0621tRNA-2-methylthio-N(6)-dimethylallyladenosine synthaseATGAACGTCCATGATTCGGAGCGGATGGCCGGCATGCTGGAATCTGCCGGTTACGTGCCGGCCGACGGTGAGCAGGCAGACGTGGTGGTGTTTAACACCTGCGCAGTCCGGGAAAATGCCGACAACAAGCTTTACGGCAACCTGGGGATGCTCGCACCCGTTAAGGCCGCCAACCCTGGGATGCAGATCGCCGTCGGTGGCTGCCTTGCCCAGAAGGACCGGGAGACCATCCTGAAGAAGGCGCCGTGGGTGGACGCCGTGTTTGGTACGCACAACGTCGGCGCACTCCCTGCGCTGCTGGACAGGGCGCGCCACAACAACGAAGCCCAGCTGGAGATCCTCGAATCGCTCGATGTCTTCCCGTCCACGCTGCCTACAAAGAGGGACTCTGTCTACTCGGGCTGGGTGTCGATCTCCGTGGGGTGCAACAACACCTGCACGTTCTGCATCGTGCCTGCCCTGCGGGGCAAGGAAAAGGACCGTCGGCCCGGCGACATCCTCGCCGAAATCCAGGCGCTGGTGGATGACGGTGCCATCGAAGTGACGCTCCTCGGGCAGAATGTCAACTCGTACGGTGTGGAGTTCGGGGACAGGCAGGCATTCTCCAAACTGCTCCGCGCGTGCGGCGAGATAGAAGGCCTGGAACGGGTTCGGTTTACCAGCCCGCATCCAGCGGCCTTCACCGATGATGTTATTGATGCCATGGCCGAAACGCCTAACGTGATGCCCCAGCTGCATATGCCACTGCAGTCAGGTTCAGACAAAGTTCTCAAGGACATGAAACGGTCCTACCGGTCCACCAAATTCCTTGGCATTCTGGACAAGGTCCGGGACAAGATCCCACATGCCGCCATCTCCACGGACATCATTGTCGGCTTCCCCGGCGAAACCGAAGAGGATTTCCAGGCCACGCTGGACGTTGTGGAGAAATCACGGTTCGCCACCGCGTTTACCTTCCAGTACTCGAAGCGGCCAGGCACTCCGGCCGCTGATCTTCCTGACCAGCTGCCCAAGGCCGTGGTGCAGGAGCGCTTCGAACGCCTCACCGCGCTCCAGGACAGGATCGCAGCAGAGGAGAACGCCAAACAGCTCGGCCGCCGCGTGGAAGTAATGGTGACAGCCCAGTCAGGCCGTAAAGCCGAAGAAACCCACCGGCTCTCCGGACGTTCCCAGGACCAGCGGCTGGTGCACTTCTCCGTACCTGTTGGTGCCCCGGCGCCCCGCCCTGGTGATCTCGTCACCGTCACCATTACCGAAGCCGCAGCTTTCCACCTTGTGGCCGATCCCGCTGCCGGTGACTACGTCCTTCGCCGGTCCCGTGCCGGCGACGCCTGGGACAGGTCGCAGGCAGATTCCTGCGGTGCCCCTGCACCAGGATCGATCGGGGGACAAGGCAACGGCGCCGGCCGCACGGGCGTTTCGCTGGGGATGCCGACGCTGCCGGTACGCAGCCGCTGAMNVHDSERMAGMLESAGYVPADGEQADVVVFNTCAVRENADNKLYGNLGMLAPVKAANPGMQIAVGGCLAQKDRETILKKAPWVDAVFGTHNVGALPALLDRARHNNEAQLEILESLDVFPSTLPTKRDSVYSGWVSISVGCNNTCTFCIVPALRGKEKDRRPGDILAEIQALVDDGAIEVTLLGQNVNSYGVEFGDRQAFSKLLRACGEIEGLERVRFTSPHPAAFTDDVIDAMAETPNVMPQLHMPLQSGSDKVLKDMKRSYRSTKFLGILDKVRDKIPHAAISTDIIVGFPGETEEDFQATLDVVEKSRFATAFTFQYSKRPGTPAADLPDQLPKAVVQERFERLTALQDRIAAEENAKQLGRRVEVMVTAQSGRKAEETHRLSGRSQDQRLVHFSVPVGAPAPRPGDLVTVTITEAAAFHLVADPAAGDYVLRRSRAGDAWDRSQADSCGAPAPGSIGGQGNGAGRTGVSLGMPTLPVRSRPGPT0007215_359DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168NANA
D1-29_01610912miaACOG0324tRNA dimethylallyltransferaseGTGGTTCACCCACCCGTTATCGCCGTCGTCGGTCCAACAGGGTCAGGGAAATCTGATCTTGCCGTCAGCCTTGCCCTCGAGCTGGACGGGGAGGTCATCAATGCCGACGCCATGCAGTTCTACCGCGGTATGGACATCGGGACTGCGAAGATCAGCATGGCGGAGCGCCGGGGCGTACCCCATCACCTCCTGGACACGATGGACGTCACTGAGGAAGCCAGCGTCTCTGACTTTCAGCGGCTCGCCCGGCAGCTCATTGAAAGCATCCATTCCCGCGGTAAACGGGCCATCCTGGCCGGCGGTTCCGGGCTCTACATCCGTGCTGCACTGGACATCCTGGAGTTCCCCGGCACCGATCCGCATATCCGGAAACAGCTGGAAGCCGAGCTCGAAGAGGAAGGCAGCGAGGCCCTTCTGGCACGCCTTCGCGAAGTGGATCCCGTGTCTGCCGCCCGCCTGTCCGACGCCCGCAGGATCGTCAGGGCACTTGAGGTCCACCAACTGACGGGCAGGCCCTTCAGCTCGTTTATGCCCCAGCGCGAGTACTTCCAGCCGGCTGTCCAGATCGGACTGGCTGTGGACAGGGAGGTGCTTCGTGACAGGCTTGCCCGGCGGGTCCACGGAATGGTGGAGGGAGGGCTGCTCGACGAGGTGCGCCGGCTCGATGCGGCTGGCCTGCGCCGCGGAAAGACCGCTCCTCGGGCATTGGGATACTCCCAGTTCCTCAAGGTGCTCGACGACGAAGCCACCGTGGAGGAGGCAACGGAGGAAACCATCGTGGCCACCCGGCAGTTCGCCAGGCGCCAACTCACGTGGTTCCGGGCCGATCCCCGGATCAGCTGGCTGGACTGGCAGGATCCTGAGCTTCTGCCCAAGGCCGTCCACATCGTCAAGACACAACCGGGCACCTGAMVHPPVIAVVGPTGSGKSDLAVSLALELDGEVINADAMQFYRGMDIGTAKISMAERRGVPHHLLDTMDVTEEASVSDFQRLARQLIESIHSRGKRAILAGGSGLYIRAALDILEFPGTDPHIRKQLEAELEEEGSEALLARLREVDPVSAARLSDARRIVRALEVHQLTGRPFSSFMPQREYFQPAVQIGLAVDREVLRDRLARRVHGMVEGGLLDEVRRLDAAGLRRGKTAPRALGYSQFLKVLDDEATVEEATEETIVATRQFARRQLTWFRADPRISWLDWQDPELLPKAVHIVKTQPGTPGPT0007210_5103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791NANA
D1-29_01611945dapFCOG0253Diaminopimelate epimeraseATGGACGCAACCCTTTCCGAGACCACTCAGCCCGCCCTCAGCTCACTGGGCGGACTGCGGTTCTCCAAGGGCCATGGCACCGGCAACGACTTTGTACTGATCGCCGATCCCGAGGGCGTCCAAGCAATCGATCCGGACCAGGTGGCCACCCTGTGCGACAGGCACCGTGGCATCGGGGGCGACGGACTGATCCGGGCCGTGCCCTCACGGTTCCTCCCCGAAGGCAGGGAACTGCTGGCCCAAGCCCCTGACGCCGAGTGGTTCATGGATTACCGCAACGGCGACGGTTCGCTGTCCGAGATGTGCGGCAACGGGGTCCGTGTCTTTGTGCACTTCCTCCTGGCCGAGGGCCTGGTGGACCTGCCCGAAGGCGGCGCACTGACCATCGGAACACGCGGTGGCGTCAAGACCGTGGTCCGGACGGGAAATGGCTACGCCGTTGACATGGGCCCGTGGGAGTTCATTTTTCCGGGGGATGCCACCGCCAAGGCCATGGATTCCCTGGTCAGCGCCGACGGCCTCGATGTACCCCGGCCTGCCCTCTCAGTCAGCATGGGCAACCCGCATACTGTCGTTGCGCTTGCTGAATTCTCGGAGCTTGAGGCAACCCGGCTTTTCACGCCTCCCCGCGTTGATCCGGTGCCTGCAAACGGGACCAACGTTGAGTTCGTCGTCCCCGCCGAACCCCTGGTTCATAACGGCGTGGGCATGGTGACCATGCGCGTCCACGAACGGGGTGTAGGCGAAACACAATCCTGCGGCACTGGCGCCTGCGCCGCCGCGGTGGCCATCAGGCACTGGGCCGGAGCCGAGGCGCCTGACACCTGGAACGTCAAGGTGCCCGGGGGCGTCGTCGGCGTTAAGTTCTTTATCGGACCGGGCGGGCACGAGCACGTAGAACTCAGCGGACCGGCCGTGATCGTAGCTAGCGGGACGCTTTCCTGAMDATLSETTQPALSSLGGLRFSKGHGTGNDFVLIADPEGVQAIDPDQVATLCDRHRGIGGDGLIRAVPSRFLPEGRELLAQAPDAEWFMDYRNGDGSLSEMCGNGVRVFVHFLLAEGLVDLPEGGALTIGTRGGVKTVVRTGNGYAVDMGPWEFIFPGDATAKAMDSLVSADGLDVPRPALSVSMGNPHTVVALAEFSELEATRLFTPPRVDPVPANGTNVEFVVPAEPLVHNGVGMVTMRVHERGVGETQSCGTGACAAAVAIRHWAGAEAPDTWNVKVPGGVVGVKFFIGPGGHEHVELSGPAVIVASGTLSPGPT0007230_501DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
D1-29_01612615rsmCCOG2813Ribosomal RNA small subunit methyltransferase CATGGAGTCCGCACACTATTTCAGCGCATCGCCCGCCGGGCCTTTCACCCGCAAACCGCTTACTGTGGAACTCGCCGGGGAGACGCGCAGGCTGCAGACTTCCGCGGGGATTTTCAGCCCGGAGGGTATCGATAAGGGAACTGCCGTGCTGCTCGCCGAAGTTCCGGCTCCCTCGCCCACAGGCAATCTCCTGGACATCGGCTGCGGATGGGGCCCGATAGCACTCACAATGGCTCTCCGTGCCCCGCACGCGCACGTTTATGCAGTGGACGTGAATGAACGCTGCATCACCCTGACGAACGAAAACGCCCGGATCCTTGGCCTGGACAATGTCACTGCCACCACGCCGGAAGGCGTGGACGCCGATGTGCGCTTCGATACAATCTGGTCCAATCCGCCCATCCGCATTGGTAAAGACGAACTCCATTCGCTGCTGAAGCTCTGGCTCCCGCGGCTGGCGCCAGGCGGCTCGGCCTGGCTGGTGGTCCAGAAAAACCTGGGCTCGGACTCCCTTCAGCGCTGGCTGTCCACAGAGCTTGATGAATCGTTCACGGTCAGCCGTGAGTCCACGTCCAAGTCCTTCCGGATCCTGCGTGTCAGGAAAGCGTCCCGCTAGMESAHYFSASPAGPFTRKPLTVELAGETRRLQTSAGIFSPEGIDKGTAVLLAEVPAPSPTGNLLDIGCGWGPIALTMALRAPHAHVYAVDVNERCITLTNENARILGLDNVTATTPEGVDADVRFDTIWSNPPIRIGKDELHSLLKLWLPRLAPGGSAWLVVQKNLGSDSLQRWLSTELDESFTVSRESTSKSFRILRVRKASRNANANANANA
D1-29_016131569hflXGTPase HflXATGACCAGCCAGCCCAACACCGGATCCGATCCAGCAGCCCAGGACATGAGTCCTGAGGAAATACAAGCTGTCATCGACCGGATTCTCTCCAAGGATGTACCGGCCAGGAACGCCGCTCCCGCAGACGGCGACACGAAGGCCGTTTTTGGCAAAGCCCAGGCAATATCGCGTCTGGACGAAGAGCACACCAGCTACGACGGCGACCAGCAGGACCTCGAGGAACGCCGGGCGCTCCGGCGTGTGGCGGGCCTGTCGACAGAACTCGAAGACGTCACCGAGGTCGAGTACCGGCAGCTCCGGCTGGAGCGGGTGGTACTGGCCGGGCTCTGGACGGAAGGGACCCTGGCTGATGCCGAGAATTCCCTCCGTGAACTTGCCGCGTTGGCTGAAACCGCCGGCTCGGAGGTCTTGGATGGCCTGGTGCAGCGCCGTGCCAAACCAGATCCAGGGACTTTCCTGGGCTCCGGAAAGGCGCTTGAGCTCAAGGACGTCGTGATGGCCACCGGCGCGGACACTGTGGTGGTGGACGCCGAGCTGGCCCCGTCACAGCGCCGTGGCCTGGAAGACATCGTCAAGGTTAAGGTCATTGACCGTACGGCGCTGATCCTGGACATCTTCGCCCAACATGCGAAGAGCCGCGAGGGCAAAGCCCAGGTGGAACTCGCCCAGCTCGAATACCTCCTGCCGCGCCTGCGTGGCTGGGGCGAATCGATGTCCCGCCAGGCCGGTGGCCAGGTGGGTGGGGCCGGTGCCGGCATGGGCTCGCGCGGTCCCGGCGAGACGAAGATCGAACTGGACCGCCGCCGAATCAGGACCCGCATGGCCAAACTGCGGCGTGAGATCAGCGCCATGAAGCCTGCGCGGGAAACCAAACGGGCCAACCGGCGTCGGAATTCTGTCCCGTCCGTTGCTATCGCCGGGTACACCAATGCCGGAAAGTCATCCCTGCTGAACAGGCTGACCGATGCCGGCGTCCTCGTGGAAAATGCTCTCTTCGCCACGCTGGATCCCACGGTGCGCAAGGCCGAAACCGCAGACGGGCTGGGCTACACCCTGGCCGATACTGTCGGCTTCGTCCGCTCGCTTCCGACTCAGCTGGTGGAGGCGTTCCGTTCCACGCTGGAGGAGGTGGCGGACGCAGACCTGATCCTGCACGTTGTGGACGTCTCGCACCCGGATCCGGAAGGCCAGATCGCGGCGGTCCGGAAGGTCTTCAGCGAGGTGGATGCCCGCAAGGTACCTGAAATCATCGTGCTCAATAAGGCCGACGCCGCCGATCCCTTTGTGGTGGAGCGCCTTAAACAGCGTGAACCCCGCCATGTGGTTGTCTCTGCGCGGACCGGCGAGGGGATCGCTGAGCTGCTCAAAGCCATCAGTGACGCCATTCCGCGCCCCAGCGTCAAGCTGGAGCTCCTCATCCCGTACAACCGGGGTGACCTGATCAGCAAACTGCACGAGACCGACGCCGAGATCCTGAGCCTGGATCACGGTGAGGACGGCACCCGTGCTGTGGTGATGGTCCGTGAAGGCCTCGCGGCTGAACTGGAATCATTCACCAGCAATGACTGAMTSQPNTGSDPAAQDMSPEEIQAVIDRILSKDVPARNAAPADGDTKAVFGKAQAISRLDEEHTSYDGDQQDLEERRALRRVAGLSTELEDVTEVEYRQLRLERVVLAGLWTEGTLADAENSLRELAALAETAGSEVLDGLVQRRAKPDPGTFLGSGKALELKDVVMATGADTVVVDAELAPSQRRGLEDIVKVKVIDRTALILDIFAQHAKSREGKAQVELAQLEYLLPRLRGWGESMSRQAGGQVGGAGAGMGSRGPGETKIELDRRRIRTRMAKLRREISAMKPARETKRANRRRNSVPSVAIAGYTNAGKSSLLNRLTDAGVLVENALFATLDPTVRKAETADGLGYTLADTVGFVRSLPTQLVEAFRSTLEEVADADLILHVVDVSHPDPEGQIAAVRKVFSEVDARKVPEIIVLNKADAADPFVVERLKQREPRHVVVSARTGEGIAELLKAISDAIPRPSVKLELLIPYNRGDLISKLHETDAEILSLDHGEDGTRAVVMVREGLAAELESFTSNDPGPT0007245_568DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665NANA
D1-29_016142064dinG_1COG1199putative ATP-dependent helicase DinGATGACTGAGCTGGTGGCGGGGGATATTTCGGAAACGGCCGGCGAGGAGTTCGTGATAGAACTCCTCGACCGCGCCGTTGCCGGCATGGGAGGGCAAAGCCGGACAGGCCAGCATGAGATGGCCCGTCAGGTGGCACGGGCCATCGAAACCGGCGACCATCTCCTGGTCCAGGCCGGAACCGGCACCGGGAAGTCGCTGGCGTACCTCATCCCGCTCATCGCGCATTCCCTGGTGAGTAGCAAGCCCACCCTGGTCTCCACCGCAACCCTGGCACTGCAGACCCAGATCGTGGGCCGTGACCTGCCCCGCCTGCTCAAGACCATCACGCCCGCCCTGGACCGCCCGGTCAAGGTGGCGTTGGTCAAGGGACGTTCCAACTACGTGTGCCGGCACAAGCTCGAAGGTGGGTTCCCTTCGGAAGAGCCCGCCGAAGGCCAGCTCTTCTCCCTCGGCGAGGACACCAGTGTGCCGCACTTCGCCGCAGCCCTGGGCGGTCCGGCATCCCAGCTGGGCAAGGAAGTGGTGCGCCTGCGTGAGTGGGCGGAAAAGACTGCCACGGGTGACCGTGACGAGCTGCTTCCCGGCGTCACCGATCGCGCCTGGCGTCAGGTGTCCGTCACCTCGATGGAGTGCCTGGGGGCGCAGAAATGCCCCCTGGCAGCGGAGTGCTTCAGCGAACTGGCGCGCCAGGACGCTGCCGAGGCCGACGTCGTGGTGACGAATCACGCCATGTTGGCAGTCAGTGCTTTCGAAGGACTGGCCGTCCTGCCCGAATACGACGTGGTGGTGGTGGATGAGGCCCACGAACTCCAGGACCGCGTTACCGGCGCAGTATCGGGGCAGCTTTCCGTTGCCATGGTTCACGCTGCCGCAGCCGGTGCCCGTAAGCACACTGCCATCACTGTCGATGCCCTGAATGCGGCGGCCGCCAATCTTGAAGTTGCCCTGGCCGGCGTCCCCAACGGGCTGCTCCCGAACGGCCTGAACGATGAACAGCTGGACTGCGTTGACCAGCTCCGTGAGGCTTGCCGGGCAGCCCTGTCGGATTCAAAAGGGGACAGCAGTACAACGGCCGACGGCGGGCGGCAGCTTGCCCGGTCCCGGCTCCTGCTGATTCTTGAACTTTGCGAACGGCTCATTGCGGCGAAGGACAACCGTGAAGTGGTGTGGTTTTCGCGCGCCAGCTCGTTTGATCCCCAGCAGGGCTATTCACAGCCTGATGAAAGTGCACCGGTTTTGGTCAACATCGCCCCGCTCAGTGTTGCCGGCAAGCTGCGCGAAGGACTCTTTGCCGGCCATACCGTTGTGCTCACGTCAGCCACGCTCGCCATCGGGTCCGCCTTCGAGCCGACGGCCGGGGGACTGGGGCTGATAGGGGAGGGTGCTCCCAGCTGGACAGGAGTGGACGTAGGGTCCCCCTTTGACTATCCAAAACAGGGGATCCTCTACGTTGCCGGGCACCTGCCCAAACCGGGCCGGGGTGCCGCGCCGGAGGCGCTGGATGAACTCGAAGCGCTGATCCGCGCTTCCGGAGGCGGCGCCCTCTGCCTCTTCTCATCACGCCGCGCGGCCGAAGAGGCCGCAGAAGCGTTGAGGCCACGGCTCGGCCTCAGCATCCTCTGCCAGGGTGATTCCACCATGACAGCCCTGGTTAAGCAGTTCGCCGACGAGCCCGATACCTGCCTCTTCGGAACGATGTCCCTGTGGCAGGGAGTTGATGTCCCGGGCGGATCCTGCCGGCTCGTGGTTATTGACCGGATACCGTTCCCGCGGCCGGACGATCCGCTGATGACGGCACGTTCACGTGCCGTAGCCCAGGCGGGCGGAAACGGATTTATGGCTGTCTCCGCGACACACGCCGCCATCCGCCTGGCCCAGGGGGCCGGCAGGTTGATCCGATCCACGGGAGACAAGGGTGTGGTGGCGGTGCTCGATTCCCGGCTGGCAACCGAGCGTTATGCCGGTTTCCTTCGGGCTGCGCTGCCCCCCTTCTGGCCGACGACAGACCGCAAGATAGCTTTCGCCGCCCTTGAAAGACTGGCCAAGGAAAGCCCACGGACCTGAMTELVAGDISETAGEEFVIELLDRAVAGMGGQSRTGQHEMARQVARAIETGDHLLVQAGTGTGKSLAYLIPLIAHSLVSSKPTLVSTATLALQTQIVGRDLPRLLKTITPALDRPVKVALVKGRSNYVCRHKLEGGFPSEEPAEGQLFSLGEDTSVPHFAAALGGPASQLGKEVVRLREWAEKTATGDRDELLPGVTDRAWRQVSVTSMECLGAQKCPLAAECFSELARQDAAEADVVVTNHAMLAVSAFEGLAVLPEYDVVVVDEAHELQDRVTGAVSGQLSVAMVHAAAAGARKHTAITVDALNAAAANLEVALAGVPNGLLPNGLNDEQLDCVDQLREACRAALSDSKGDSSTTADGGRQLARSRLLLILELCERLIAAKDNREVVWFSRASSFDPQQGYSQPDESAPVLVNIAPLSVAGKLREGLFAGHTVVLTSATLAIGSAFEPTAGGLGLIGEGAPSWTGVDVGSPFDYPKQGILYVAGHLPKPGRGAAPEALDELEALIRASGGGALCLFSSRRAAEEAAEALRPRLGLSILCQGDSTMTALVKQFADEPDTCLFGTMSLWQGVDVPGGSCRLVVIDRIPFPRPDDPLMTARSRAVAQAGGNGFMAVSATHAAIRLAQGAGRLIRSTGDKGVVAVLDSRLATERYAGFLRAALPPFWPTTDRKIAFAALERLAKESPRTNANANANANA
D1-29_01615756lexACOG1974LexA repressorATGGCAGCACCAGCCGCCGACGGCAGGGCGACCCAGAGGGGTCGGCAGCCCCAGAGGGTCCCGAAGGGGCTTACAGCACGCCAGAAAAAGATCCTGGAAACAATTCAGCGCTCGGTCAATGACAACGGGTATCCGCCATCCATGCGCGAGATCGGCGACACCGTGGGCCTGGCAAGCCTGTCCAGCGTCACGCACCAGTTGTCGCAGCTCGAGAAACTGGGCTACCTGCGGCGCGATCCCAAGCGGCCACGGGCCATGGAGGTCCTGATGCCGCTCACCCTGGACGGCGGCACGGCCAAACCGGCGGGATCAGCATCGGCCAAGCCTCCGGTTTTGCGCAGCGTTGATGGCGGGACGGTTATGGATCTGCCCACTGCCATGGACACCGCCATGGTGCCCCTTGTAGGCCGGATCGCAGCCGGTGGCCCGATTCTTGCCGACCAGCTGGTTGAGGACGTCATGCCGCTGCCGCGTCAGCTGGTGGGCCAGGGCGAACTGTTCATGCTGCGGGTTGCCGGGGACTCAATGGTTGACGCTGCGATCTGCGACGGCGATTGGGTAGTTGTCCGGCGCCAGGCGGACGCCGCCAACGGCGATATTGTCGCAGCCCTGCTGGACGACGAAGCCACGGTGAAGACTTTCCGCCAGCGGGACGGCCACACGTGGCTTCTCCCACAGAACACCCAGTACGAGCCCATTCTCGGAGACCACGCCACCATCATGGGCAAGGTCGTCTCAGTTTTGCGCTCTCTGTAGMAAPAADGRATQRGRQPQRVPKGLTARQKKILETIQRSVNDNGYPPSMREIGDTVGLASLSSVTHQLSQLEKLGYLRRDPKRPRAMEVLMPLTLDGGTAKPAGSASAKPPVLRSVDGGTVMDLPTAMDTAMVPLVGRIAAGGPILADQLVEDVMPLPRQLVGQGELFMLRVAGDSMVDAAICDGDWVVVRRQADAANGDIVAALLDDEATVKTFRQRDGHTWLLPQNTQYEPILGDHATIMGKVVSVLRSLPGPT0014895_342DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356NANA
D1-29_01616417hypothetical proteinATGTCAGCTATATCCGCTTCACAGGCTCGCCATCCGCAGCTCGTCTCCGTCCAGCAGCTCACGTCCCTGCTGGATGCGGAATCGCAGCCCCGTAAGGAACCCCTGCCGCCGCTCCGGCTCACGCGCCGGGGGCGGATCGTGCTCATTGGTATTCCCCTCATCCTCCTGGCTGCGCTGCTGCTGTCCCTGGTGGGCTTTCTTAACGCCCCGGCGAAGGCGGCAGACTCCACCGCCGGCCTGGCCCTGACGCCCACGGTGTCAGTTACCGTTCAGGGCGGGGAGTCGTTGTGGGGTATCGCCGCCACAGTTGCGCCGGATCGTGATCCCCGGGATGTCATCGCGGATATCGTTCAACTCAACAACCTCAGCGCGGGGACCGTTGTGCCGGGGCAGCAGCTGTTCGTCCCTACCAAATAGMSAISASQARHPQLVSVQQLTSLLDAESQPRKEPLPPLRLTRRGRIVLIGIPLILLAALLLSLVGFLNAPAKAADSTAGLALTPTVSVTVQGGESLWGIAATVAPDRDPRDVIADIVQLNNLSAGTVVPGQQLFVPTKNANANANANA
D1-29_016171119hisC_2COG0079Histidinol-phosphate aminotransferaseGTGAATGACCAGCTAGAGCGTCTGAACCGTCTTCCCCTCCGGAGCAACCTCCGCGGGCTGACCCCTTACGGTGCCCCGCAACTGGATGTGCCCATCCTGCTGAACGTGAACGAAAACACCCATGGTGTTCCCGCGGACGTGCGCGCCGCCATCACTGAAGCCGTGACGGAAGCCGCTGCCGGTTTGAACCGCTACCCGGACCGCGAATTCAGCGAACTCCGGGAGGCCCTGGCTGAATACCTGGGCCACGGCCTGAACTCCACCAACATCTGGGCGGCGAACGGCTCGAATGAAGTGCTCCAGCAGGTCCTTCAGGCCTTCGGTGGCCCGGGACGCAAGGCCCTCGGGTTCCCGCCCACGTATTCCATGTACCCGCTGCTGGCCAGCGGTACTGACACTGAGTACATTGTGGGCCAGCGCGCTGAAGGCTATGGGCTGAGCGCGGAATCGGCCGCCCTGCAGGTCAAGGAACTCCAGCCAAACATTGTTTTCCTCTGCTCACCCAACAACCCCACCGGCACCGGCCTTGGCCTGGATGTGGTGGAGGCGGTGTACTCCGCGGGTGAGGCCAGCCAGACCATAGTTATCGTTGACGAGGCCTACCACGAGTTTGCCCATGACGGTACTCCCAGTGCCCTGACGCTGCTGCCCGGCCGGGAACGCCTTATTGTCACCAGGACCATGAGCAAGGCCTTTGCACTGGCAGGCGCTCGCCTGGGCTACATGGCCGCGGCGCCCGAAGTGACAGATGCCCTCCGGCTGGTGCGGTTGCCGTACCACCTGTCGGCCGTCACCCAGGCCACCGCCCTCGCAGCCCTCCGCCACCGCGAGGCACTTATGGCAGACGTTGAGGACATCAAGAAACAGCGGGACCGGATCGTCGCCGAGCTGACCAGGATGGGCCTGACGCCGGCCGCCTCTGATTCCAACTACGTCTTTTTCGGGGGACTGGAACGGCCCCATGCTGTCTGGCAGGAACTGCTGGACGCCGGCGTGCTGATCAGGGACGTCGGCATCCCCGGCCATCTGCGTGTCACCGCAGGCACTGAGAGCGAGACCACAGCGTTCCTGACCTCCCTGGAAAGCATCCTGGCCAGCCAGGCCAAACTCCCCGCCTAAMNDQLERLNRLPLRSNLRGLTPYGAPQLDVPILLNVNENTHGVPADVRAAITEAVTEAAAGLNRYPDREFSELREALAEYLGHGLNSTNIWAANGSNEVLQQVLQAFGGPGRKALGFPPTYSMYPLLASGTDTEYIVGQRAEGYGLSAESAALQVKELQPNIVFLCSPNNPTGTGLGLDVVEAVYSAGEASQTIVIVDEAYHEFAHDGTPSALTLLPGRERLIVTRTMSKAFALAGARLGYMAAAPEVTDALRLVRLPYHLSAVTQATALAALRHREALMADVEDIKKQRDRIVAELTRMGLTPAASDSNYVFFGGLERPHAVWQELLDAGVLIRDVGIPGHLRVTAGTESETTAFLTSLESILASQAKLPAPGPT0020305_2008DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-29_01618627hisBCOG0131Imidazoleglycerol-phosphate dehydrataseATGAGTTCCACCGGATCGAACGCTGCCCAGGGCCGGACCGCCAGCATGGAGCGCGCCACCAGTGAATCGTCAGTGCTCGTGGAGATCAACCTTGACGGAACCGGCGTTTCGGACATCGACACATCGGTCCCGTTCTATGACCACATGCTGACGGCGCTGTGCAAGCACTCCCTCATCGACATGACAGTCAAGGCAACCGGTGACATCCACATCGACGTGCACCACACGGTAGAGGACGTGGCCATCACTTTCGGCGAGGTCCTTCGCACGGCACTGGGCAACAAGGCCGGGATCCGCCGCTTTGGTGAAGCCACGGTGCCGCTGGATGAGGCGCTGGCGCACGCGGTGGTGGACGTTTCCGGACGTCCGTACCTGGTGCACGGCGGTGAGCCGGCGGGACAGGAATATCACCTGATCGGCGGCCACTTCACCGGCTCGCTCACACGCCACGTGTTTGAGGCGATCACGCTTCACGCCGGCATTTGCCTCCACATGAACGTCATTGCCGGCCGGGACCCGCACCACATCGTGGAAGCGCAGTTCAAGGCATTCGCCCGGGCGCTGCGCGCAGCTGTCGAGCCTGATCCGCGCGTGGAGGGAATTCCTTCCACCAAGGGTGCGCTGTGAMSSTGSNAAQGRTASMERATSESSVLVEINLDGTGVSDIDTSVPFYDHMLTALCKHSLIDMTVKATGDIHIDVHHTVEDVAITFGEVLRTALGNKAGIRRFGEATVPLDEALAHAVVDVSGRPYLVHGGEPAGQEYHLIGGHFTGSLTRHVFEAITLHAGICLHMNVIAGRDPHHIVEAQFKAFARALRAAVEPDPRVEGIPSTKGALPGPT0020305_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-29_01619753hisHImidazole glycerol phosphate synthase subunit HisHGTGAGCGGGCAGATTCTTCGTGACGGTGCCGTGATCGATCCGGAGTTGTTGATCAAGCCCGCGTCGCCCGAAGGCAAGCCCACCGTTACGGTGCTGGACTACGGCTCCGGGAACATCCGCTCTGCGGTGCGCGCGCTCGAACGCGCAGGAGCAGAGGTCATCCTCAGCGCCAAACCGCAGGACGTGCTCAATGCCGACGGCCTGGTGGTGCCCGGCGTCGGCGCCTTTGAGACCGTCATGCGGGAATTGAAGGCCGTTGATGGCATCCGCCTGATTGGCAGGCGTGTCGCCGGTGGCCGGCCCGTCCTGGGCATTTGCGTGGGCCTGCAGGTCCTGTTCGAAGCCGGCGTTGAGCATGGAACTGAAGCTGAAGGCATGGGGGAGTGGCCGGGGAAAGTGGAGCTCCTCCCCGCCGACGTGGTGCCGCACATGGGCTGGAATACCGTGAAGGTTCCGGAAGGATCGAGGCTCTTCGCCGGTGTGGAGGAGGAGCGCTTCTACTTTGTCCACTCGTACGGCGTCCAGGAATGGAACTTCGACGTGGTGCAGCCGCGGATGGCGGCGCCGCTGGTGACGTGGTCCGAGCACGGTGCCCCCTTCATCGCCGCGGTGGAGAACGGGCCGCTCTGTGCCACCCAGTTCCACCCGGAAAAGTCCGGCGACGCCGGGGCACGTCTCCTGCGCAACTGGGTGGACGGACTCCGCAAGCCTGCGCGGCAAGACGGACCAGCACAACAAGACGGATCAGCCTAAMSGQILRDGAVIDPELLIKPASPEGKPTVTVLDYGSGNIRSAVRALERAGAEVILSAKPQDVLNADGLVVPGVGAFETVMRELKAVDGIRLIGRRVAGGRPVLGICVGLQVLFEAGVEHGTEAEGMGEWPGKVELLPADVVPHMGWNTVKVPEGSRLFAGVEEERFYFVHSYGVQEWNFDVVQPRMAAPLVTWSEHGAPFIAAVENGPLCATQFHPEKSGDAGARLLRNWVDGLRKPARQDGPAQQDGSANANANANANA
D1-29_01620159hypothetical proteinATGTGGTCCATCCTCCTGATGGGCCTCGCGGGGCTCCTCGTGGGCGGAGCCCTGTCCTTCAGGCAGCAGCACAAACCCCTCTGGACCCAGATCTGCTTCTACATCCTTGCGGGCATGTCACTTCTGACCGCCTACCTCCTTTCCCTGCCCGCCACCTAGMWSILLMGLAGLLVGGALSFRQQHKPLWTQICFYILAGMSLLTAYLLSLPATNANANANANA
D1-29_01621747hisACOG01061-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomeraseATGACCACCGCACATGATCTGCCGGTTCTTGAACTGCTGCCAGCCGTCGACGTCGTAAACGGCCAGGCCGTCCGGTTGGTGCAAGGCGAGGCAGGCAGCGAAACCAGTTACGGCACACCGCTGGAGGCGGCCCTGAACTGGCAGGAGCAAGGCGCCGAATGGGTGCACCTCGTGGACCTCGACGCGGCGTTCGGCCGTGGTTCGAATGCAGAACTGCTCCGCGAGGTGGTGGGCCGGCTGGACATCCATGTGGAGCTCTCAGGCGGACTTCGGGACGACGAGTCACTGGAGGCGGCCCTGGACCTGGGTGTGGCACGGGTGAACCTTGGTACTGCGGCGTTGGAAAACCCTGACTGGACCCGCCGGGCCATTGACCGCTTCGGCGACCGGATCGCCGTCGGCCTTGATGTCCGCGGGACCACCCTGGCAGGCAGGGGCTGGACAAAGGAAGGCGGGGACCTTTGGGAGGTCCTGGGCAGGCTTGAAGAGGCTGGGTGCTCACGCTACGTCGTGACGGATGTTACGAAGGATGGCACGCTGCAGGGGCCCAATGTTGAGCTGTTGCGCCAGATGGTGGAAAAGACGGGTAAGCCTGTGGTGGCATCCGGCGGCATCTCCAGCCTGGACGACCTGAAGGTCCTTCGCTCGCTGGTTCCGCTGGGCGTGGAAGGGGCCATCGTTGGCAAGGCCCTGTACGCGGGGGCCTTCACCCTGCCCGAGGCACTCGACGTCGCCGGCCGCCGCTAGMTTAHDLPVLELLPAVDVVNGQAVRLVQGEAGSETSYGTPLEAALNWQEQGAEWVHLVDLDAAFGRGSNAELLREVVGRLDIHVELSGGLRDDESLEAALDLGVARVNLGTAALENPDWTRRAIDRFGDRIAVGLDVRGTTLAGRGWTKEGGDLWEVLGRLEEAGCSRYVVTDVTKDGTLQGPNVELLRQMVEKTGKPVVASGGISSLDDLKVLRSLVPLGVEGAIVGKALYAGAFTLPEALDVAGRRNANANANANA
D1-29_01622897hypothetical proteinGTGGACTCCAGCAGCAACGGTCAGACCGCTGGCAGCAGTCCGGCACAGCGCCACCTCCCCGGGCACATAGCCGCAGCCCTTGCCGGCGCGGGCGGATCCACCGATTCCGCCGGCCAGCCCTGGGAGGGCCGGAGCCTGGCTGGGGACGATGCCAAGATCCACAGCTTCGAGGACGACGACGGAGCTCCCGACGCCGGCTACGTCGCCGCGGTCCGGGGACTCCTGGACGGCAGCGGCGATGAAGCGTCAGTGGTGGCTTCCCTTGCCACCGCCAGGGTCTTTATCCCCATCATTGCCCAGCTCGCTGAAGAAGCGCAGGCAGTGGATGGTTTGTCGGCAGACAAGCAGGCCGACATGGCGCTGGTAACTCTCAGGGCTGCCGACGGCAGGACGGCCCTGCCGGCTTTTACGTCGGCGCAAGCACTGGCCGCCTGGCACCCGGAGGCGCGGCCCGTGGCCGTATATGCGGCCCGTGCTGCCCTGTCCGCAGTGGCGGAAGGTGCCGAACTCCTGGTCCTTGACCCGGGCTCGGACGTCACCTTTGTGGTGCGCCGGCCGGCGGTGTGGGCACTGGCGCAGCAGCGTGACTGGGTTCCTTCCTACGCTGACGAAGCCCTCGCCGCGGAACTTTCCGAGGCCGCGGCCGCCTTTCCTGCTGTGCGCCGTGTGGGGCTCCTGCCAGGGGCAGGCATCGCCACAACCACACGCGCGGGAGCCGAACTGTCCGGCGGAGGGTCCGGGCCAGAGCTGCAGGTGGTGCTGTACCTCGAGGATGGCCTTGACGCTGCGGCCGTGCGGGAGCTGGTGGCGGACCTCCAGGCGGCGTGGTCCCGGAATGTATTGTTTGGTGAGCGGGTTGACTCCATCGAAATCAAGTTAAGGCGCGCAGCACACTAGMDSSSNGQTAGSSPAQRHLPGHIAAALAGAGGSTDSAGQPWEGRSLAGDDAKIHSFEDDDGAPDAGYVAAVRGLLDGSGDEASVVASLATARVFIPIIAQLAEEAQAVDGLSADKQADMALVTLRAADGRTALPAFTSAQALAAWHPEARPVAVYAARAALSAVAEGAELLVLDPGSDVTFVVRRPAVWALAQQRDWVPSYADEALAAELSEAAAAFPAVRRVGLLPGAGIATTTRAGAELSGGGSGPELQVVLYLEDGLDAAAVRELVADLQAAWSRNVLFGERVDSIEIKLRRAAHNANANANANA
D1-29_016231377hypothetical proteinGTGAATTTCGCTCTGTACCGGGATCTGTTGGCGGTGCGGCCCATCAGGCGGCTGCTGCTGGTCGGCATGATTGCCCGTATACCCCATTCAGCCGCAGGCGTGCTGCTGACCCTGCACATTGTCCTCACCCTGGATAAAGGCTATGCCGCGGCCGGAGCTGCGGCGGCGGTGATGACCATCGGCATCGCCGTGGGAGCCCCGTGGCGCGGCCGCCGCGTTGACATCGTGGGCCTGCGTAAAGCCCTCATCCCTTCCGTGGTGTCTGAAACTGTGATCTGGTCAGTTGTTCCCCATGTTTCCTATGAGTGGTTGCTGCCGCTGGTTTTCGTCGGAGGACTGCTCACCCTTCCGATCTTCAGTGTGGTGCGTCAGTCACTCGGAATCCTGGCCGACGGCGACCAGCGCCGCACAGCCTTTGCCCTGGATGCGATCACCACTGAAATGGTGTTTATGATCGGCCCGGCCGCCGGAGCCGTGGTGGCAACCAGCGGCTTCACTGTACTGGGGCTCACCGTCGTGGGCATATCAACATCCTTGGCCGGGTTGTTCCTGATGTGGTTCAACCCACCCACGCGAACCCCCGTCGGCACCCGGGAGGCCGATCAGCACCGTGCAGCTGATCAGCAACGCGCGGCCGATCAGCAACGCGCGGCCGAAGCTGCAGTGGTGGCAGCAGCCCCTGCCCACCTTCAGAAAGCAGCTCCAGATCTGGCACCGGCCGAACGGGCCGGAGTCAGTGGCGGATCCAAGGGAACGGCCGGAAAGCAGCCGGCGGCCGGGGGGCAGTCAGGGCTCCGGCACAAGGTGGCGCACAACTTCACCTGGTTTACGGCCACGGTAGCCTCGCTCTTCGCCGTGGCTGCCGGCGCCGGCATGGTCCTGAGCGGCACTGACGTTGGGATCGTGGCAGCCCTTGAAATCGGCGGCCACCAGGCGGAGATCGGGATCGTTTTCCTGTTCTGGTGCGCGGCCTCGGTGGTGGGCGGGGTGATCTATGGTGCCATGCACCGCCCTGTCTCTCCCATCGTGCTGTTGCTTGGGATGGCTGCCCTGACCATTCCGCTGGGATTCGCCCATGACACCTGGACCCTGGCCCTCCTGTCCATCCTGCCGGGCCTCCTCTGCGCCCCGGTCCTGTCCGCGGCCTCCGAAAAGGTGGCAGAGCTGGTGGACGAGCGGCGCCGGGGCGAGGCGATGGGCTGGTACGGCTCCGCCCTGACCGCAGGCGTTGCGCTGGGCGCGCCCCTTGCAGGGGTCTTTATCGACGGCGTGGGTTCATCAGGAGGGTTTGTATCAGTCGGCGTGGCCGGAGTGGCGCTGTGCCTCATCGGAATGCTCCTGCAGGCACGCAGGCGGCGCCGGGTGGCTTCCGCCTGAMNFALYRDLLAVRPIRRLLLVGMIARIPHSAAGVLLTLHIVLTLDKGYAAAGAAAAVMTIGIAVGAPWRGRRVDIVGLRKALIPSVVSETVIWSVVPHVSYEWLLPLVFVGGLLTLPIFSVVRQSLGILADGDQRRTAFALDAITTEMVFMIGPAAGAVVATSGFTVLGLTVVGISTSLAGLFLMWFNPPTRTPVGTREADQHRAADQQRAADQQRAAEAAVVAAAPAHLQKAAPDLAPAERAGVSGGSKGTAGKQPAAGGQSGLRHKVAHNFTWFTATVASLFAVAAGAGMVLSGTDVGIVAALEIGGHQAEIGIVFLFWCAASVVGGVIYGAMHRPVSPIVLLLGMAALTIPLGFAHDTWTLALLSILPGLLCAPVLSAASEKVAELVDERRRGEAMGWYGSALTAGVALGAPLAGVFIDGVGSSGGFVSVGVAGVALCLIGMLLQARRRRRVASANANANANANA
D1-29_01624387hypothetical proteinATGAGCACCCCAGACAGTAATTCATACGTTTTCGCCCCCGCCGACGCCGCCGACGACGTGAGCCAGCAAATCCGGGACATCTCCGAAGTGCCCGCCATCGAGGTCATCACCACAGCCGCAGTTCACCTCATGAGTGCTGCTGCCGTGAAGCTGGGGCTGGCTGCGGAGGACAACGCCGAGGAACTCAAGGACCTGGACGAGGCCCGGAAGCTCATCACGGCTCTCGCTGGACTGGTGACGGCGGCAGCACCCGAGATCGGCTCCCAGCATGCCGGTCCCTTGCGCGACGGCCTCCGGTCCCTGCAGCTCGCGTTCCGCGAGGAATCCATCATCCCGGACGCCCCGGGCAAAGGCCCGGGCGAGAAATACACCGGCGCCGTCAACTAAMSTPDSNSYVFAPADAADDVSQQIRDISEVPAIEVITTAAVHLMSAAAVKLGLAAEDNAEELKDLDEARKLITALAGLVTAAAPEIGSQHAGPLRDGLRSLQLAFREESIIPDAPGKGPGEKYTGAVNNANANANANA
D1-29_016251131infCTranslation initiation factor IF-3GTGGAATACCACAACAATCACAGGAGCTTTAACATTAGCGAGCCAAGAATCAATGAGCGTATCCGCGTCCCCGAGGTGCGGCTGGTCGGCCCTGCAGGTGAACAGGTAGGAATCGTCCGTATTGATGATGCCCTGCGTTTGGCTGCCGAGTCCGATCTTGATCTCGTTGAAGTAGCACCTCAGGCAAAGCCTCCGGTGTGCAAGCTGATGGACTTCGGCAAGTACAAGTACGAGGCCGCCGTCAAGGCACGTGAAGCCCGGAAGAACCAGACCAACACGGTTCTGAAGGAAATCCGCTTCCGCCTGAAGATCGACACCCATGACTACGAGACCAAGCGCGGGCATGCACTGCGCTTCCTCGGCGCCGGTGACAAGGTCAAGGCCATGATCCAGTTCCGCGGCCGTGAGCAGCAGCGTCCGGAGATGGGCATCCGCCTGCTCCAGCGCTTTGCGGATGACGTCGCCGAGGTTGGCGTTGTTGAATCCAGCCCGCGCATCGATGGCCGCAACATGGTGATGGTTGTGGGGCCGCTCAAGAACAAGGCCGAAGCCAAGGCAGAGGCACGCCGGGCAACCCAGCGTGCCGAAGCGAAGGCGCAGAACGAAGTCAGGGCATCGGGCGGACGAATCGACGTTTCCGGCGACGACCAGGCACCCCTGACGCAGTCGCTGGCAGATCTTCTGCCGGAAGGTTTCGCCATCACGACGGAACCGGAAACCGAAGCGCCGGAGACCGAGGCTGCAGCCGCCGCTGAGGCCGCCCCCGCTGAGGCCCCTGTTGCGGAGGTTCCCGTCAAGGAAGCCGCCACGCAGGACGCGCCCCGGCAGGAAACGTCACGGCAGGAAGCGCCCCAGCAGGCGGCTCCCAAGGCCGCCGCTCCCAGGCGCGAGGCTCCCAAGGCTGCGCCGGCCGCCGCCAAGGCACCGGCCCCTGCGGCCAAGCCTGCGGAAGCAGCAAAGCCCGCTGCGGCCGCTGAGACGCCCGCGTCGGCAGCTCCGGCCCCCGCTGCACCGAAGCCAGCCGCAGTTCCCTCGCCGCCGAAGCCGGTTGCCAGGCCTGCAGCCCCGAAGCCTGCAGCCAGGCCCGCCCCTAAAGCGGGTCCGAAGCCGGCCGGCAAGAAGACCACCTAGMEYHNNHRSFNISEPRINERIRVPEVRLVGPAGEQVGIVRIDDALRLAAESDLDLVEVAPQAKPPVCKLMDFGKYKYEAAVKAREARKNQTNTVLKEIRFRLKIDTHDYETKRGHALRFLGAGDKVKAMIQFRGREQQRPEMGIRLLQRFADDVAEVGVVESSPRIDGRNMVMVVGPLKNKAEAKAEARRATQRAEAKAQNEVRASGGRIDVSGDDQAPLTQSLADLLPEGFAITTEPETEAPETEAAAAAEAAPAEAPVAEVPVKEAATQDAPRQETSRQEAPQQAAPKAAAPRREAPKAAPAAAKAPAPAAKPAEAAKPAAAAETPASAAPAPAAPKPAAVPSPPKPVARPAAPKPAARPAPKAGPKPAGKKTTNANANANANA
D1-29_01626195rpmICOG029150S ribosomal protein L35ATGCCGAAGATGAAGACCCACAGTGGTGCTAAGAAGCGCTTCAAGCTGACAGGCAGCGGCAAGCTGCGCCGTCAGCAGGCCAACCGCCGCCACTACCTCGAGCACAAGTCCTCCAGGCTGACCCGTCGCCTTGCCGGCGACAAGATCGTCTTCAAGGGCGACGCCAAGGTCATCCGGAAGATGCTCGGCATCTAAMPKMKTHSGAKKRFKLTGSGKLRRQQANRRHYLEHKSSRLTRRLAGDKIVFKGDAKVIRKMLGINANANANANA
D1-29_01627456rplTCOG029250S ribosomal protein L20GTGGCACGTGTGAAGAGGGCGGTCAACGCCCACAAGAAGCGCAGGGTTATCCTCGAACGCGCAAAGGGCTACCGTGGACAGCGTTCACGCCTGTACCGCAAGGCCAAAGAGCAGCTGCTGCACTCGTTTGTGTACAGCTACGGTGACCGCAAGAAGAAGAAGGGCGACTTCCGCCGCCTGTGGATCCAGCGCATCAACGCTGCATCCCGCGCCAACGGCCTCACCTACAACCGACTGATCCAGGGCCTGAAGGCCGCTGAGGTTGAGGTTGACCGCCGTATGCTCGCCGAGCTGGCCGTTTCCGACGCCAACGCCTTCGCCGCGCTGGTGAAGATCGCCAAGGATTCCCTGCCTGCCGACACGTCCGCTCCGGCTGTCCAGGCTGAAGCCCCCAAGGCCAAGGCTCCCAAGGCAAAGGCCGCAAAGAAGCCTGCTGCTGACGAGGCCACTGTCTAGMARVKRAVNAHKKRRVILERAKGYRGQRSRLYRKAKEQLLHSFVYSYGDRKKKKGDFRRLWIQRINAASRANGLTYNRLIQGLKAAEVEVDRRMLAELAVSDANAFAALVKIAKDSLPADTSAPAVQAEAPKAKAPKAKAAKKPAADEATVNANANANANA
D1-29_01628912rlmB_123S rRNA (guanosine-2'-O-)-methyltransferase RlmBATGAACGAAACCGGGCGCCCGCAAGATTTTCCACTCTCCAATCCCCGAGCCGATCGGGTCAGGGAAGTGGCAAAACTTGCAGGGCGCCCGGCCCGTTTAAAGCGGGAACAGTTCCTCGTCGAGGGGCCACAGGCGGTACGCGAGGCCCTCAAGCTGCACCAGCAGAGGCTGGCAGCCGGGGCTCCTGGGGTTGTGCACGAGGTGTTCGCAAGCGAAGCATGCCTGGACCGCTACCCGGAATTTGATGATCTGGCTGCGGGGACCAACGCCCGGCTTGCCACCGAGGACGTGTTGGCAGCAATGGCCGATACCGTCAATCCCCAGGGCATCATCGCCGTGTGCGGCTTTGTGGACATCAGCCTGGAGGAAGTGCTCGACGCCGGTCCACGGCTGATCGCGGTCCTCTGCCAGGTCAGGGACCCAGGAAACGCAGGGACGGTACTGCGTGCCGCAGACGCCGCCGGTGCTGACGCCGTTGTTCTAACCGGCTCCAGCGTTGACATCTATAACCCCAAGGCAGTCCGTTCCACCGCCGGATCCCTGTTCCACCTTCCCGTGGTCCTGGGGGCGGACATCGAGGAACTGGCAGCCTCCTGCCGGGCCCGGGGGATCGGCGTCCTGGCAGCGGACGGCTATGGGGACCTCAACCTCGACACTTTGCAGGATGAAAACGCCGCCCGGCGAATGTCCGGGTCCAGCACGGCGTCCGCCTATCAGCTGGAGGGCCCAACTGCCTGGCTCTTCGGAAACGAAGCCCAGGGGCTCTCGGAAGCTGAACTCGCCCTGGCTGACCATCGGGTGGCAGTTCCCGTTTACGGCGCGGCGGAAAGCCTCAACCTTGGTACCGCAGCCACAGTGTGCCTATATGCCAGCGCCCGGTCCCAGCAGGGGAGCTCTCCGGCTTCCGTATAAMNETGRPQDFPLSNPRADRVREVAKLAGRPARLKREQFLVEGPQAVREALKLHQQRLAAGAPGVVHEVFASEACLDRYPEFDDLAAGTNARLATEDVLAAMADTVNPQGIIAVCGFVDISLEEVLDAGPRLIAVLCQVRDPGNAGTVLRAADAAGADAVVLTGSSVDIYNPKAVRSTAGSLFHLPVVLGADIEELAASCRARGIGVLAADGYGDLNLDTLQDENAARRMSGSSTASAYQLEGPTAWLFGNEAQGLSEAELALADHRVAVPVYGAAESLNLGTAATVCLYASARSQQGSSPASVNANANANANA
D1-29_01629276hypothetical proteinATGGGTTTTCTTGCTTGGATTATTCTGGGCCTCATCGTAGGGGCAATTGTTAAGGCCGTCATGCCCGGCAGAGTAGGCGGCGGCTGGGTCACCAGCCTGGTTCTCGGAGTGGTTGGTGCAATCGTAGGCGGCTGGATCGGAAGCCTTCTCTTCGCCAGAGGCGAGCTTGCTTTCTTCGATCTGGGAACGTGGATCCTGGCGATCATCGGCGGCCTGCTGGTGGCTGGCATCTACGGCGCCATTACGGGACGCAGCAAAACCACACGTGCGCCCTGAMGFLAWIILGLIVGAIVKAVMPGRVGGGWVTSLVLGVVGAIVGGWIGSLLFARGELAFFDLGTWILAIIGGLLVAGIYGAITGRSKTTRAPNANANANANA
D1-29_01630759lgt_1Phosphatidylglycerol--prolipoprotein diacylglyceryl transferaseATGATCGGGCTTCCCTTCGCGGGAGACGGGCCGGTGCACGCCGGCCTGTTAGGGCTGGGAATCCTCGCAGCCTTACTGTTCTACGCGTATGAGAAGCGCCGGCGTGGCCTGTCCGATCCACGGTTGTGGCCCATTGCCGGTTTCGCTGTCGCCTTCGGGGCCATCGGCTCAAGAGTGCTCACCTGGGATTTTTCCAGGCAGGTCTCCTTGGCGGACTGGTGGAGCGAAGGCGACCGCAGTATCCTCGCCGGCCTTGTGGGAGCGTGGCTGGGCGTCCACTTGGGTAAACGGCTGACAGGTTACCGCGAATCCACCGGCGATCTGCTTGCCCCCGCTGTGGCCCTGGCGCTGGTGATCGGGCGGGTGGGCTGTCTCCTCACGGAACTGCCCGGAACTCCCACCGGGGGAGCATGGGGGATATCGCTCACGCCCGGCGAGGCTGCGTTGTTGGGCGGACCGTCCGGGGTAGGGCTCCATCCGTCCTTCGCCTATGAAATTGTGTTCCATGCCGCCGCACTCGCGCTCTTGTGTCGCTACCGGGACCGACTGCCCCGTCCTGGCGACCTCTTCATCTGCTACGTGACTTCCTACGCCTTGTTCAGGTTCGGCGTCGAATTCGTCCGCGGCAACGAGGTGCTCTGGTTGGGTATGAGCCGTCCCCAATGGTTCCTCCTGATGATTCTCCCCCTGCTGTTCTGGCGGATGCTGCGGGTCTTCGGGAAACCACTCCGCCCGAAGGTGGAAGGAATAGTGGCATGAMIGLPFAGDGPVHAGLLGLGILAALLFYAYEKRRRGLSDPRLWPIAGFAVAFGAIGSRVLTWDFSRQVSLADWWSEGDRSILAGLVGAWLGVHLGKRLTGYRESTGDLLAPAVALALVIGRVGCLLTELPGTPTGGAWGISLTPGEAALLGGPSGVGLHPSFAYEIVFHAAALALLCRYRDRLPRPGDLFICYVTSYALFRFGVEFVRGNEVLWLGMSRPQWFLLMILPLLFWRMLRVFGKPLRPKVEGIVANANANANANA
D1-29_01631357hypothetical proteinATGAGCGAGGACAACCCACCGCCCCAAGAAGAAGAGGAGGAGCCGCCTGAACCAGCGCTTGGCCGCATGGGGGTCGGAATCCTGGTAGGGGCGAGTGCCCTCTACGCCCTCTATCTCTTGGGACCCAGTGCTTTCGGTCGTCTGCAGGCCGAGGCTGATCCAGGACCCACTTCCATGAGTTTCCTGACCGGGCCGTCCGCGTTCATTCCAATCGCCGTCTATCTGGCGATAGCCGTTCTGCTGGCGGTCCGGCCAAGCACATCGCGATGGGGTGCCGGGTTGCTGATTGGCCTGGGAATCTTCACCCTGCTCGGCGGCGGGCTCTGCGTCGGATACCTCGCGCAGGTGAGGGCCTGAMSEDNPPPQEEEEEPPEPALGRMGVGILVGASALYALYLLGPSAFGRLQAEADPGPTSMSFLTGPSAFIPIAVYLAIAVLLAVRPSTSRWGAGLLIGLGIFTLLGGGLCVGYLAQVRANANANANANA
D1-29_01632354hypothetical proteinATGAGCAAGGACAACCCACCGCCCCAAAAAGAAGGGGAGAACCCTGAACCAGGGCTCCGCCCCATGGGGTTCGGAATCCTGTTGGGAACGGCTGCCCTTTACGCCCTCTATATCTTGGGACCGGGTGCTTTCGGTCTTCTGCAAACACGGGCTGATCCAGGACCCTCTTCCATACGTTTCCTGACCGGGCCGGTTGCCTTCGTTCCAATCGCCGGATATCTAGCGATAGCTATTCTGCTGGCGGTCTGGCCACCCACATCCCGGTGGGGTGCGGGGCTGCTGATTGGCCTGGGGATCTTCACCCTGCTCGGCGGCGGGGTCTGCGTCGGAGCCCTCGCGCAGATGGGAGGTTGAMSKDNPPPQKEGENPEPGLRPMGFGILLGTAALYALYILGPGAFGLLQTRADPGPSSIRFLTGPVAFVPIAGYLAIAILLAVWPPTSRWGAGLLIGLGIFTLLGGGVCVGALAQMGGNANANANANA
D1-29_01633942hypothetical proteinATGAATCCGTCACCGTTCTCTTCACGGCAGGTGCTGCCCGGTCCCGGCCAGCCGCTGCGCGGGGACCGCATCCACCGCTACGTCACAGCTTTCTGTCCCCATTGCCACGAGACCAACCCACCGCTCGCGCAGGTGCGGCGCCTCTCCGGCGTGCTGCTAATCCGCGATGACCAGGTCTGGCTCGAACGCGGCTGCCCGGATCACGGACTCGTCAGCACCTTGTACGACCAATCTCCGGAAATCCTGCGCTACCTGGAGAAGTGGCAGGCGCCCACCAAGCAACACATCCCGGACCAGGCCGGCAATTACCGCCAGGTACCGGAGGCTTACGCCTACGGATTGCCCGCCATGCAGACGCAGCACACGTGCATCCTCCTGCAGGACATCATCGAGCACTGCAACCTGCGCTGCCCCACCTGCTTTACTGCCTCCGGCCCCCAGTTGCAGGGCGTGGCGCCGCTGAGCGAGGTGCTCGCGAATATCGACACCAGACTTGCCCGGGAGAACGGGCGGCTGGACGTGCTGATGCTCTCCGGCGGCGAACCGACGCTATATCCGTACCTGGCCGAACTTCTGGATGAGCTCGTCGCCCGGCCCATCGTCCGGATCATGGTGAACAGCAACGGCATGCTCATAGCCTCCGACGACGAACTCCTCGGGCTGCTGGCCCGGCACCGGGACCGGGTGGAGGTGTACCTCCAATACGATGGCCCGTCCAAAGAAGCGTCCATCCACCACCGGGGCGGTGACCTGACCCGCTACAAAGACCTGGCCATCTCGCGCCTGTCTGAGGCAGGTGTTTTCACCACCCTGACCATGACAGCGACACTCGGCGTCAACGACGGTGAGGTGGGCGCCGTCGTCATGAGGGCTTTGGAAACCCCGTTTGTGGGTGGGGTTGCGCTTCAGCCGGTGTTCGGTTCAGGGCGCGGCCACGCATAGMNPSPFSSRQVLPGPGQPLRGDRIHRYVTAFCPHCHETNPPLAQVRRLSGVLLIRDDQVWLERGCPDHGLVSTLYDQSPEILRYLEKWQAPTKQHIPDQAGNYRQVPEAYAYGLPAMQTQHTCILLQDIIEHCNLRCPTCFTASGPQLQGVAPLSEVLANIDTRLARENGRLDVLMLSGGEPTLYPYLAELLDELVARPIVRIMVNSNGMLIASDDELLGLLARHRDRVEVYLQYDGPSKEASIHHRGGDLTRYKDLAISRLSEAGVFTTLTMTATLGVNDGEVGAVVMRALETPFVGGVALQPVFGSGRGHANANANANANA
D1-29_01634534hypothetical proteinATGCTGAAGGACGACTCAGGGATTTGGCGTTCGCTGACAGCCCTCATCGGGCACGATCAGCTGCTCGCCTGGCTGGAACTCAATCCTGACAGCATCGCCAACCGCATCGCCGACAGCGCGATCCCGCTCGAGCTGCGCAACCTGATGAAGTCCTCGCTGCTGGACCTGCTGAGCGAGCAGTCCTCGCTGTCCCACCCCCGCACAATGGATCTTTGGAAGAACATCTGCACCCAATGCGACCTCGGCATCGGCACACTCACCACATTGGCAGCCGGCAAGCTTCCGGGGCAGCAACAGCGGCTGCGCAGGCTCCTCGGCGAACGGATCACCCGCATCATGGTCAAACCCTTTATGGACATCTCCACCATGATCGAGGAACGGCTCACGCAATGCTGCGTCCACGTGGGCACAAAGAGCGACGCCGGTGATCACCAGTGTGCCCCGTTCTGCGCTGTGCAGGCGTGGCCGGCCCTGGCCAGGCAACGAATGAGCACAGCTACGGGCACACGGCTACTCCCAGTCCGCCAGGTCTGAMLKDDSGIWRSLTALIGHDQLLAWLELNPDSIANRIADSAIPLELRNLMKSSLLDLLSEQSSLSHPRTMDLWKNICTQCDLGIGTLTTLAAGKLPGQQQRLRRLLGERITRIMVKPFMDISTMIEERLTQCCVHVGTKSDAGDHQCAPFCAVQAWPALARQRMSTATGTRLLPVRQVNANANANANA
D1-29_01635375hypothetical proteinATGAGTTCCGCTTCTGATGCCCGCCGTATCGCAGCCGGGCCATTGCCGTCGCAGCTGGTGCGCTCCAAGCAGGCGGGCCGGCACGGACACAGGCCTGACCCTGAAACGGATCCGCAGTCCCCGCCGCCCTTCGACCCGTTGCGGCTCTGCATCTTCGCGACCGTTGCCCTCCTCGGCTGGGCCGCCGGTCCGGTGGCACTGGCCGTGTTCGCTGCAGTCGGATTCGCAGGCTATTGGAAAGCGCGACGGCGGGGCCTGACAAGGTCGAAGTGTTACCTCCGGGATACGAGGCTGGTCTTGGCCTACCTGGGCATCCTGTTTGCGGCCGGGCTGTGGGGGATATATTCGATGGCCGCTCAACTGTTCGGCTTCTAAMSSASDARRIAAGPLPSQLVRSKQAGRHGHRPDPETDPQSPPPFDPLRLCIFATVALLGWAAGPVALAVFAAVGFAGYWKARRRGLTRSKCYLRDTRLVLAYLGILFAAGLWGIYSMAAQLFGFNANANANANA
D1-29_01636714hypothetical proteinATGCCCGTGACCGGCCGAGTCGTTTCCGCCGCGGTGCTGCTCGTCATTGGGGCAGGACTGGCGCTGCTGGCGGTGCTGGTCCACTACGGTTTTATGGCAATGTACGGCGGTGTCACCGATACCGCGTTCGAGGCGCTTGTCTGGGGGTTGACGGCCGGTCCCTCCGGATTGGGGCTTGCTCTGGTCGCGGTGTTTGCCGGGCTCGGCTTGATGCTCGCGACACGCAGGTGGATGCGGCTGACGGCCGTGGCCATCCCGGTCCTCATGCTGATCGGGATGTTCGCTGTCACCCCCTTGGCGCTGGGTCAGAAGATGGAGAAACAATTTGTTTCCGCTCCGCAATGCGTGATGGAGGGCACCGACGAGCCGACGGCCACTGCAGACCGTGAGTCCCAGCTGGCGTTCGATTCCATCGAGCACATCGGCCATTTCAAGGGTGGCGGCATGAGTGGTGTGGCCGGCTGTACGCGCTGGTTTGTGCTCCCGGAAGACGTCGATGTGTTGCAGCACTATCGTGGAGCGCTGCCAGCGGCGGGCTGGGAAGTGGTGGAGGATGACGGGCGCCACCTGCGGGCGCACCTTGATGGCCGGGCGTTCGATGTGATGACCTGCCCCGGAGGCGGAGTCATCTGGGCCGGAAGCGACGACGACCGCTCATACGGACAGGGAAGGCCTGAGCTGGCGGGCACTGAAATTTGCCCACACGACCTCTGAMPVTGRVVSAAVLLVIGAGLALLAVLVHYGFMAMYGGVTDTAFEALVWGLTAGPSGLGLALVAVFAGLGLMLATRRWMRLTAVAIPVLMLIGMFAVTPLALGQKMEKQFVSAPQCVMEGTDEPTATADRESQLAFDSIEHIGHFKGGGMSGVAGCTRWFVLPEDVDVLQHYRGALPAAGWEVVEDDGRHLRAHLDGRAFDVMTCPGGGVIWAGSDDDRSYGQGRPELAGTEICPHDLNANANANANA
D1-29_016371206ydhP_2COG2814Inner membrane transport protein YdhPATGAGCAGCGTCCTCCAGAAAACCCCACCTAAGGCCCGGACTGCGCACGTCGGGCGGGCCATTGTTGCCCTTGCGATGGGCGGCTTCGGCATCGGCGTGACGGAGTTCACCATGATGGGCCTCCTGAAGGAGGTGGAGCAGGGACTTGGCATCAGCACCCCGGAGGCCGGAAACCTGATCTCGGCCTACGCCCTCGGCGTCGTGGTGGGCGCGCCCTTGCTGGCCGCGGTCGGAGCCAGGCTGCCCCGCAAGTACCTCGCCCTGGGACTGATGCTGTTCTTCAGCCTTGCCAACCTGACCTCGTTCATCGCTCCCGACTACGGCAGCATGCTGGTTTCCCGCTTCGCAGCCGGGCTTCCGCATGGGGCGTTCTTCGGCGTCGCCGCTGTGATTGCTGCCTCCCTGGTGCCACCGACACGGCGCGGACGTGCCATTTCGATGGTGATGGCCGGCCTGACGGTTTCCAACGTTATTGGTGTCCCGCTTGCCACCTGGGTTGGCCAGGCCTACGGCTGGCGCCTGCTGTTCCTCCTGGTGGGTGCCATCGGGCTGCTCACCGTGGGGCTCTTATGGCGGTTTGTCCCTTTCCAGGAAGCCCACCCGGATGCGAGTATCCGGCGTGAGCTTGGCGCCCTCAAACGCCTGCAGGTTTGGCTTGCGATCCTCATAGGCATCGTCGGCTTCGGCGGTTTCTTCGCCACGTATACCTACATTGCCCACACCATGACACTGGTGGCCGGAATACCTTCCCAGCTGCTTCCGATCGTGGTGGCGCTGTATGGCCTGGGCATGGTGGCGGGCAATATCGTGGGCGGCAGGATCGCTGACAAATCCGTAATGGGAACCATCTACCGCATTCTGCCGGGCATCGCAGTTGCCCTGGTGGTTTATGCCGTTGCCGTGCATTGGCCGTGGTCGGCGTTGGTCATGGTGTTTGTGGTGGGCGCGGCCGGTTCCATGCTGGTACCGGCCCTGCAGACCCGCCTGCTGGATGCCTCCCCGGACGCTCCGTCGCTGGCGTCCTCGCTGAACCATGCTGCGCTTAACGTGGCAAATGCACTGGGCGCGTTCCTTGGCGGCGTGGTGATCGCCTGGGGCTGGGGCTATACGGCTCCCGCCCTCGTGGGTGCCGTGCTGGCCGTGCTGGGACTGGCGGTCGCCGTCGTCAGCGGACTATTGGAACGGAAAAAGCCCCTGGCCGCCTGAMSSVLQKTPPKARTAHVGRAIVALAMGGFGIGVTEFTMMGLLKEVEQGLGISTPEAGNLISAYALGVVVGAPLLAAVGARLPRKYLALGLMLFFSLANLTSFIAPDYGSMLVSRFAAGLPHGAFFGVAAVIAASLVPPTRRGRAISMVMAGLTVSNVIGVPLATWVGQAYGWRLLFLLVGAIGLLTVGLLWRFVPFQEAHPDASIRRELGALKRLQVWLAILIGIVGFGGFFATYTYIAHTMTLVAGIPSQLLPIVVALYGLGMVAGNIVGGRIADKSVMGTIYRILPGIAVALVVYAVAVHWPWSALVMVFVVGAAGSMLVPALQTRLLDASPDAPSLASSLNHAALNVANALGAFLGGVVIAWGWGYTAPALVGAVLAVLGLAVAVVSGLLERKKPLAAPGPT0028991_1348DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-29_01638453mutT2COG0494Putative 8-oxo-dGTP diphosphatase 2GTGACTGGACACATACTCGTAGTCGGCGGAGCCGTCCTTGACTCCCTTGAAGAGCCCACGAAGCTGCTGGTGGCGCGCCGGACAGCACCGGAACAGTTCGCCGGGCTTTGGGAATTTCCGGGGGGAAAGGTAGACGCGGGCGAGGCTCCCGAGGCCGCATTGCACCGGGAACTCAGGGAGGAACTGGGGATTGGCGTCCGGCTGGGGACCGAACTTGAGGCTCTCACAGCCGGCGGCTGGCCCCTGAATGAGCGGGCATCCATGCGGGTCTGGACGGCAGAAATTACAGAAGGGCACCCGCGCCCGCTTGAAGATCATGACGAATTGAAGTGGATCAGCGTGGCGGACAGTGATGAAGCTCTCAGCCTTCCCTGGATTCCTGCAGACTTCCCAATCGTCCGCGCGCTCCTGCAATCCCTCGCCGCCCACGCGGGCTCGCTCAGCGGCAACTGAMTGHILVVGGAVLDSLEEPTKLLVARRTAPEQFAGLWEFPGGKVDAGEAPEAALHRELREELGIGVRLGTELEALTAGGWPLNERASMRVWTAEITEGHPRPLEDHDELKWISVADSDEALSLPWIPADFPIVRALLQSLAAHAGSLSGNPGPT0021430_66DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021430-nudG-K08320NANA
D1-29_016391128hypothetical proteinATGAGATGGGATGCACAAGCACTGTTGGAGCGCCCCACAGAAGCAGCCGCGAGTGGTTCGACTCCTGCACTCCTGCCGCTCACCGGCCTGGTCAGGTCCGTGACCACCCCCGAGTTCGCCGGCATCACGTTCCACGAAGTCACCGCAAAGACTGTGCTGAACAAGGTGCCCGGCGGTTCACGCATGCCATTCGAATGGACCATCAACCCGTACAGGGGCTGCAGCCATGCCTGCGTCTACTGCTTTGCGCGGAAGAGCCACACCTACCTGGAGTTTGACGCCGGGAGGGATTTCGACAACCAGATCGTGGTCAAGGTCAATGTGGCGGAAGTATTGCGGAAAGAACTTGCCAAACCGTCCTGGGCCCACCATCAGGTGGCACTGGGCACCAACACCGATCCCTATCAGCGCGCCGAAGGCCGTTACAAGCTGATGCCGGGAATCATCTCGGCGCTGGCAGAATCCGGCACTCCCCTGTCCATCCTCACGAAGGGAACCCTGCTGGCACGGGACATCCCCCTGCTGAAGGAAGCGGCGCGGCAGGTGCCCGTTGGGGTGGGAATATCCCTCGCGATGACGGATGAGGCCCTTTCAGAAGCCGTGGAACCGGGGACTCCCGGGCCAAGGGCCAGGCTGAAACTCATTTCCCGGCTCCGCGAAGCAGGCCTGCCGTGCGGAGTCATGGCCATGCCGATCATGCCGTGGCTCACCGACAGCGACGAAGCACTGGACGCCCTGTTCGGTTCACTGGCCTCAGCCGGAGCCACGGGCGTCACCGCCGGTGCCCTGTACCTGAAGCCCGGCACCCGTGAGTGGTTTATGCAGTGGCTCACGGCTAACCATCCCGATCTGACAGGCCGCTATCAGGGGCTGTACGGCACTGGTTCGTACGCTCCCAAGGAGTACCGGACCTGGCTGGCGGGAAGGGTGCGCTATTTCAAGGAACGGCATGGCTTCTCCGGTTCCCACGGCTTCAGCCACCGCGATCTTGAAGATGATCCCCGGAGCGAAGAAGCACAGTACCCGGCCGGCATCATCCCTGTAGGCAAAGCCGGCAGTCCGGGACGGCGGGACGGAAACACCGGCCCCGGTCCCAGCGGACAGCCAGAGCAGCCCACCCTGTTCTAAMRWDAQALLERPTEAAASGSTPALLPLTGLVRSVTTPEFAGITFHEVTAKTVLNKVPGGSRMPFEWTINPYRGCSHACVYCFARKSHTYLEFDAGRDFDNQIVVKVNVAEVLRKELAKPSWAHHQVALGTNTDPYQRAEGRYKLMPGIISALAESGTPLSILTKGTLLARDIPLLKEAARQVPVGVGISLAMTDEALSEAVEPGTPGPRARLKLISRLREAGLPCGVMAMPIMPWLTDSDEALDALFGSLASAGATGVTAGALYLKPGTREWFMQWLTANHPDLTGRYQGLYGTGSYAPKEYRTWLAGRVRYFKERHGFSGSHGFSHRDLEDDPRSEEAQYPAGIIPVGKAGSPGRRDGNTGPGPSGQPEQPTLFNANANANANA
D1-29_01640636COG296826 kDa periplasmic immunogenic proteinATGACATCACGAAGAATCACCGTCACTGGGACAGGGGTAGCCGAGGCCGCCCCGGACCTGTTGACCCTGTCCGTAGGCGTGGAGTGCCGGAGCGGCAACGTGGGCGCAGCTTACGCAGAAGCGGGGACAACATCGTCCGCTGTCTCTGCTGCGCTCCGCCAACACGGCGTGACAAACGCGGACATCCGGACATCAGGACTGAACGTCCGGGCAGACCTTGTCTGGCGCGAGGGTGAGGGCCAGAAGGTGGCAGGGTATGTCGCCACCAGCAGCCTCACTGTCCGTCTTAGGGATGTGGCTGCTGCCTCCTCGGCCATCTCCGCCGCCGTCGAAGCAGGCGGCAACAACGTCAGGCTCAACGGCCTTGACCTCGGATTTTCAGATGAGGCCGCGGTGCGGGCACGTGCCCGTGAAGCTGCCTGGCAGGATGCGCTCCGATCGGCGGAACAGTTTGCTGCCCTGGCTTCTGCCCGGCTGGGCCGGGTGGTCTCGCTGGAGGAAGAGTCCAACCCTGGCATGCCGGTTCCGCTGCCCAGGATCGAACGGGCCGTTTCCTCTGACGCGTTCAGCGTGGAGCCGGGCCAAACAAGCATTGCCGGCAGGATCATTGTGGTGTGGGAGCTTGCCCGGCCTTGAMTSRRITVTGTGVAEAAPDLLTLSVGVECRSGNVGAAYAEAGTTSSAVSAALRQHGVTNADIRTSGLNVRADLVWREGEGQKVAGYVATSSLTVRLRDVAAASSAISAAVEAGGNNVRLNGLDLGFSDEAAVRARAREAAWQDALRSAEQFAALASARLGRVVSLEEESNPGMPVPLPRIERAVSSDAFSVEPGQTSIAGRIIVVWELARPPGPT0012980_2313DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012980-yggE-K09807NANA
D1-29_01641522hypothetical proteinATGACACAACGGCCGGGCCTGCCGAAGGCAGAAGGAAAAGCCGGGAAGGCACTGACGGCGGGCGTATTGACGGCGGGACAGCGGTTGCGGCAGCTGGCAAACCTGGCTAATGGCAGCACGGTCCTGGGCCTGGCCGTGGCTGTGTCGGCGGGCACCGCCCTCAGCCGCGGCCCGCGGGGGTTGATCATTGCAGCCAACTACCGGTGGCGGCTCCCCTTCGCCGGAGCGTTCGTCCTGGGCAACGTGGTGGTTTGCCGCAGCGATGCGAATGCCCTGATATCCACTCCCGCACTGCTGGGCCATGAAGAAAGACACGCCAGCCAGTATGCCTGGTGCTTGGGGCTGCCGTTCCTCCCGCTCTATTTCCTGGCCGCCGGCTGGTCGCAACTGCGTACCGGCGACCCCGCATCGGGGAACTTTTTTGAACGCCGGGCGGGTCTGGAAGCAGGCGGATATAGAGTACGCAGTCAGCGAAAGCCCGCCGCCCCCAGCGGCGGCGGCGGAACGGAGGCCAAGGCATGAMTQRPGLPKAEGKAGKALTAGVLTAGQRLRQLANLANGSTVLGLAVAVSAGTALSRGPRGLIIAANYRWRLPFAGAFVLGNVVVCRSDANALISTPALLGHEERHASQYAWCLGLPFLPLYFLAAGWSQLRTGDPASGNFFERRAGLEAGGYRVRSQRKPAAPSGGGGTEAKANANANANANA
D1-29_016421062pheSCOG0016Phenylalanine--tRNA ligase alpha subunitATGACTGAAACTTTGCCGGGCGCCGCCATCCCTAACCCTACGGATGAAGCCGCCATTAATGCCGCTGTAGACCAGGCCATCACCGCCATTGCCGGTGCTGCCACCCTTGACGAGCTAAAGGCGGTGAGGCTCGCGCACACGGGGGAGAAGTCCCCGCTGAGCCTGGCCAACCGTGAGATCGGCAAGCTGCCGAAAGACCAGAAGGCGCTCGCCGGAAAACTGATGGGCGCATCGCGCGGCCGGGTCAACCAGGCGCTCGCCGCCCGCACGGCAGAGCTTGAAGCGGAGAACGACGCACGGATCCTGATTGAGGAGACGGTGGACGTCACGGCCGCACCGCGCCGCCGTCGTGCCGGTGCCCGGCACCCGCTCTCCACCCTGCAGGACCGCGTCGCGGACATCTTCGTGGGCATGGGCTGGGAAATCGCCGAAGGCCCCGAGGTTGAATCCGAATGGTTCAACTTTGATGCCCTGAACTTCAAGCCGGACCACCCGGCCCGCGAAATGCAGGACACATTCTTCGTGGAGCCGCCCGAGGCCCATCTGCTGATGCGCACGCACACGTCCCCGGTCCAGGTCCGTTCCATGCTGGAACGCGAACTGCCTATCTACGTCCTGTGCCCGGGCAAGGTATTCCGCACTGACGAGCTGGACGCCACCCATACCCCGGTGTTCCACCAGTTTGAAGGCCTCGCCATCGACAAGCACCTGAGCATGGCGGACCTGCGGGGCACGCTGGAGCACTTCGCCCGGCAAATGTTCGGCGACGAAGCCCAGATCCGGCTGCGGCCCAACTATTTCCCCTTCACCGAACCGTCGGCGGAGCTGGATATCTGGCACCCTGGCGCCAAGGGCGGCCCGCGCTGGATCGAATGGGGCGGCTGCGGAATGGTCAACCCCAATGTCCTCCGGGCCGCCGGCATTGATCCGGATGTCTATTCAGGTTTTGCCTTCGGCATGGGCATCGAACGCACCCTTATGTTCCGCAACGAGGTGGGCGACATGCGCGACATGATCGAAGGCGATGTACGTTTCAGCGAGCACTTCGGGATGGAGATCTAAMTETLPGAAIPNPTDEAAINAAVDQAITAIAGAATLDELKAVRLAHTGEKSPLSLANREIGKLPKDQKALAGKLMGASRGRVNQALAARTAELEAENDARILIEETVDVTAAPRRRRAGARHPLSTLQDRVADIFVGMGWEIAEGPEVESEWFNFDALNFKPDHPAREMQDTFFVEPPEAHLLMRTHTSPVQVRSMLERELPIYVLCPGKVFRTDELDATHTPVFHQFEGLAIDKHLSMADLRGTLEHFARQMFGDEAQIRLRPNYFPFTEPSAELDIWHPGAKGGPRWIEWGGCGMVNPNVLRAAGIDPDVYSGFAFGMGIERTLMFRNEVGDMRDMIEGDVRFSEHFGMEINANANANANA
D1-29_016432544pheTCOG0072Phenylalanine--tRNA ligase beta subunitGTGCGTATCCCACTTTCCTGGCTGCGGGAATTCGCAGCAGTACCGGCCGGTGCCACGGCCGAAGACGTTATGGCCGAACTGGTTAAGGTCGGTTTTGAAGAAGAGGACGTCCACCGTCCCACTGACACCCTCAAGGGTCCGATTGTGGTGGGCCAGGTCCTGAGCCTGGTCAAGGAACCCCAGTCCAACGGCAAGACCATCAACTGGTGCCAGGTCCGTGTTGTCCCGGAAGGGCAGCCGCAGACCCTCACCGGTGACGGCATCGATCCCTCAGGTGTGCAGGGCATTATCTGCGGGGCCCACAACTTTGTTGAGGGTGACAAAGTGGTGGTCACCCTTCCCGGGGCAGTCCTGCCGGGCGACTTCCGCATCTCTGCACGCAAGACCTACGGCCACCTGTCTGCCGGCATGATCGCCTCGGTCCGTGAACTTGGCATCGGCGAGGACCACGACGGCATCCTGGTTCTGTCCCGGATCGGCCTGGATCCGGAAATCGGCACCGACGCCATGGACCTGCTGGGTCTCTACGACGAGGCCGCCGAGATCAATGTGACCCCGGACCGCGGCTACGCCTTCTCCATCCGCGGTGTCGCCCGCGAATACGCCCACGCCACCGGAACCTCCTTCACCGACCCGGCCTCCAAGGTCCAGGCTCCGGCTGAGCTTTCCGGCGGCTACGGCGTCAAACTCAACGACGACGCGCCCATCTACGGCAAGCCGGGCTGCGACCGCTTTGTGGCGCGCACCGTGCGCGGCGTGGACGCCACCCGGCCCACCCCGCCGTGGATGGTTTCCCGGCTGCGGCTGGCCGGCGTCCGTTCCATCTCGCTGCCGGTGGATATCTCCAACTACGTCATGTTCGAGCTGGGCCAGCCCACGCACTGCTATGACCTGGACAAGCTGTCCGGTGACATTGTGGTGCGCCGTGCCGTTCCCGCGGAGACAATCACCACACTGGACGGCAAGGAGCGCGCGCTCGACGTCGAAGACCTCCTGATCACCGACGGCTCAGGTGCGATCGGCATCGCCGGCGTCATGGGCGGCGCTGCCACCGAGGTGAGCGATTCGACGTCGAACGTCCTGGTGGAGGCGGCACACTTCGACGAGGTGTCCATTTCCCGGTCCCGCCGGCGCCACAAGCTGCCGTCGGAGGCGTCCAAGCGCTTCGAGCGCGGCGTGGACTGGCAGGTGGCGGGCGTCGCCGCGCAGCGTGTCGTGGACCTTCTGGTGGAACTGGCAGGAGGCGTCGCTGACGAGGCGGGGACCGACGTCGGGACCGCCCCTGACGCCGTCTCCATCCAGCTCCCGGCAGCGTTTGCCGCACAGCGGATAGGGATCGACTTCACTGACGAGCAGATCATCACCTCCCTGGAGGATCTGGGCGCCGTGGTGGAGCAGAATGACGGCGGCTGGACAGTGACCGCTCCGAGCTGGCGGCATGACCTGGAAACAAAAGAGGACCTTTCCGAGGAAATCGCCCGGCTGGTGGGGTATGACAACATCCCCGCCACCCTCCCGGTGGCCCCTCCCGGACGGGGACTGACGCGCACGCAGCAGCAGCGCCGTCGGCTCATCCAGGCACTGGCTGATGCCGGCCTGACCGAAGTCCTGGCCTACCCCTTTGTCTCCAAGGCTTCCAATGACACCTTCGGCGTGGCGGAGCAGGGGGCTCCGAGGCTTGCGGTCAAGCTGGCCAACCCCATCAGTGAGGAACACGGCTTCCTGCGCACCTCGATCCTTCCGGGGCTCATCGAGGTGGCGAAGCGCAACCATTCCCGCGGCTTCAGGGACCTGGCGCTTTTCGAGTCAGGGCTCGTTTTCCTGCCCAATGACACCTTGGGAACTGCCTCCATTCCGCCGCTGGGCGTCAAGCCCTCCGATGAGGTGCTGGATGCGCTGTACGACGGCGTCCCGGACCAGCCCCTGCATGTCGCCGCCATCCTGACGGGCCATGATTCACCGGCCGCCGCCGGACACACTCCGCGTTTCTGGGACTGGTCCGATGCGCTGGACATCGCCCGCCTGGCCGGTGACGTCCTGGGCGTGGAAGTGGTTGTCAGCCAAGGCGCCCACCAGGCGTTCCACCCGGGGCGTGCAGCACAGCTTTCGCTGCGTACCGGCGAAATCGTGGGCTATGCGGGCGAGCTCCACCCGAAGCTCCTGGCTGCGCAGGACATGCCGGCCCGGTCGGTCGCACTGGAGTTCAACGCGGACGCCCTGTTCGACGCCGCCGCCGACGTCATTGTTGCCAGGCACATCTCCACGTTCCCGGTGGCAACCCAGGACGTGGCGTTGGTGGTACCCGCGGAGATCCCGGCGGACGCCGTCCTCACCGCACTCCGCGAAGGCGCAGGCGAGCTCCTGGAGGACGTGGCACTCTTCGACGTGTACGCCGGCAAGGGCATCGAGGAGGGCAAGAAGTCCCTGGCGTTCGGGCTTCGGTTCCGGGCCAACGACCGCACTCTGACCGCGGATGAGGCAACGGCTGCCCGCGAAAGTGCCGTCGCGCTGGCAGCTGAACGGTTTGGTGCCGTCCAGCGCTAGMRIPLSWLREFAAVPAGATAEDVMAELVKVGFEEEDVHRPTDTLKGPIVVGQVLSLVKEPQSNGKTINWCQVRVVPEGQPQTLTGDGIDPSGVQGIICGAHNFVEGDKVVVTLPGAVLPGDFRISARKTYGHLSAGMIASVRELGIGEDHDGILVLSRIGLDPEIGTDAMDLLGLYDEAAEINVTPDRGYAFSIRGVAREYAHATGTSFTDPASKVQAPAELSGGYGVKLNDDAPIYGKPGCDRFVARTVRGVDATRPTPPWMVSRLRLAGVRSISLPVDISNYVMFELGQPTHCYDLDKLSGDIVVRRAVPAETITTLDGKERALDVEDLLITDGSGAIGIAGVMGGAATEVSDSTSNVLVEAAHFDEVSISRSRRRHKLPSEASKRFERGVDWQVAGVAAQRVVDLLVELAGGVADEAGTDVGTAPDAVSIQLPAAFAAQRIGIDFTDEQIITSLEDLGAVVEQNDGGWTVTAPSWRHDLETKEDLSEEIARLVGYDNIPATLPVAPPGRGLTRTQQQRRRLIQALADAGLTEVLAYPFVSKASNDTFGVAEQGAPRLAVKLANPISEEHGFLRTSILPGLIEVAKRNHSRGFRDLALFESGLVFLPNDTLGTASIPPLGVKPSDEVLDALYDGVPDQPLHVAAILTGHDSPAAAGHTPRFWDWSDALDIARLAGDVLGVEVVVSQGAHQAFHPGRAAQLSLRTGEIVGYAGELHPKLLAAQDMPARSVALEFNADALFDAAADVIVARHISTFPVATQDVALVVPAEIPADAVLTALREGAGELLEDVALFDVYAGKGIEEGKKSLAFGLRFRANDRTLTADEATAARESAVALAAERFGAVQRNANANANANA
D1-29_016449632-haloacrylate reductaseATGGATGCAATCGTCGCCGGCCAGCCCGGCGGACCCGAAGTCCTGGAGCTTGCGGATGCCGAGCGTCCCGCACCGGGGCCGGGCCAGCTGCTCATCAAGGTGGCAGCGGCCGGGGTCAATTTCATCGACACTTACCAGCGCAGCGGCACGTACAAAGTCGAATTTCCCTTCACACCCGGCTCGGAAGCATCAGGAACGGTCGAGGAAGTCGGCGAGGGCGTGGAGGATTTCGCGGCAGGCAGCAGGGTGGCCACCGCAGAGGGTAAGAAATGCTATGCGGGCTACATCGTGCTTGATGCTGCCAAAGCCCTCCCGGTGCCGGACGGCGTTGACGATCTGACGGCTGCCGCCCTTCCCCTGCAGGGCATGACGGCCCACTACCTGATCAACTCCTCGTTCAGGGTGGAACCGGGCCACACCGTGCTGACGCATGCAGGAGCCGGCGGCGTGGGACTGCTGCTGATCCAGCTTCTGAAGGAGCGCGGCGCCCGCGTCATCACCACGGTCTCCTCCGATGAAAAGGAAGAACTCGCCACGGAAGCTGGAGCGGACCATGTCCTCCGGTACGCCGGCTTTCCCCATCATGTCCGTGACCTGACCGGCGGCAAAGGCGTGGACGTGGTCTACGACGGCGTCGGCCGCAACACCTTCGACGGCTCGCTGTCCTGCCTGCGCACCAGGGGTGCGCTTGTCCTTTTCGGCGCAGCGTCGGGCCCCGTTCCACCCTTCGACCCGCAGCGGCTCAACGCGGGCGGCTCGCTTACGCTGACGCGGCCGTCCCTGGCGCATTTCCTCGGCAACCCGCAGGAACGCCGCTGGCGCTCTACCGAAGTATTTGACGCCGCAGCGAAGGGAAGCCTCAAGGTTCGGATCGGCGGCAACTACCCCTTGGCCAAGGCGCGCCAGGCCCATGAAGACCTGGAGGGCCGCCGCACCACTGGCAAGGTCCTGCTGGTCCCCTAAMDAIVAGQPGGPEVLELADAERPAPGPGQLLIKVAAAGVNFIDTYQRSGTYKVEFPFTPGSEASGTVEEVGEGVEDFAAGSRVATAEGKKCYAGYIVLDAAKALPVPDGVDDLTAAALPLQGMTAHYLINSSFRVEPGHTVLTHAGAGGVGLLLIQLLKERGARVITTVSSDEKEELATEAGADHVLRYAGFPHHVRDLTGGKGVDVVYDGVGRNTFDGSLSCLRTRGALVLFGAASGPVPPFDPQRLNAGGSLTLTRPSLAHFLGNPQERRWRSTEVFDAAAKGSLKVRIGGNYPLAKARQAHEDLEGRRTTGKVLLVPPGPT0013255_8796DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-29_016451095hypothetical proteinATGACCGCCACCCTCCTTACGCCTGAGCGCCCTAAATCGCGAGTCCGCCAGCCCAACACAGTGGTCCTGAGCTATTCGGAACTGCTCAAAACCGTCAAGGCCGCGGGTTTGCTGGAACGCCGGGTCGGTTTCTACGTCACTGTCTTTGCCAGCCTGGTGCTCCTGATGGCGGCCACATGGTTCGGTTTCGCCCTGATCGGTGACAGCTGGTTCCAGCTGCTGATCGCTGCGGCCCTGGGAGTCCTTTGCACCCAGCTGAGCTTCCTGGCCCATGAGGCCGGTCACCGCCAGATTTTCGCTTCCCGACGCGCCAACGACTGGTCGGCACGGCTGCTGGCAACGTCAGTGGCCGGGATGAGTTTCTCGTGGTGGGAGCAGAAGCACGGAGCCCACCACAACCACCCGAACGTGATCTCCAAGGACCCGGACATCATGGACAGCCCCATCGCCTTCCACACCGAAACCGCGGCCGCCCGTCAAGGATGGCTCTCGTCCCTCCTGACGCGAAAGCAGGGCTGGTTCTTCTTCCCGCTCCTCCTGGGCGTAGGCCTGGGCCTTCAGATCGATTCCGTGAAGTTCGTCTTCCGCCGCGCCAAGGTCACGCATCGCTGGGTTGAGCTGCCCATCCTCGTCGTCCGGCTCAGCATCTTGCCCATCCTCGCCTTTTCATTCCTGCCGCTCGGCATGGCCTTCGCCTTCATCGCCGTGCAGCTCGCCGTTTTTGGTTTCTACATGGGTGCCTCGTTTGCCCCGAACCACAAGGGCATGCCTGTCATTCCCGCCGACAGCCGGGTGGATTTCTTCAGCCGTCAGGTGCTGACGTCCCGGAACATCTCGGGCGGCTTTTTTATGGACATCCTCCTGGGCGGCCTGAACCGCCAGGCCGAGCACCACCTCTTCCCGGACATGGCCCGGCCGCAGCTGGACAAGGCTGCAAAGATCGTCCGTGAGTACTGCCACAAGCATCAGGTGCCCTACACGGAGACCACCCTGCTGCAGTCCTACGGCATCATCGTCCGCTACCTCAACGACGTGGGGCTGGCCGCAGGGCGCCACTTCGAGTGCCCGATGGCAACTGTCACGCGGCGCTACTAAMTATLLTPERPKSRVRQPNTVVLSYSELLKTVKAAGLLERRVGFYVTVFASLVLLMAATWFGFALIGDSWFQLLIAAALGVLCTQLSFLAHEAGHRQIFASRRANDWSARLLATSVAGMSFSWWEQKHGAHHNHPNVISKDPDIMDSPIAFHTETAAARQGWLSSLLTRKQGWFFFPLLLGVGLGLQIDSVKFVFRRAKVTHRWVELPILVVRLSILPILAFSFLPLGMAFAFIAVQLAVFGFYMGASFAPNHKGMPVIPADSRVDFFSRQVLTSRNISGGFFMDILLGGLNRQAEHHLFPDMARPQLDKAAKIVREYCHKHQVPYTETTLLQSYGIIVRYLNDVGLAAGRHFECPMATVTRRYNANANANANA
D1-29_016461032argCCOG0002N-acetyl-gamma-glutamyl-phosphate reductaseATGACTATTTCTGTTGCAGTCTCCGGGGCCAGCGGCTACGCCGGGGGAGAAGTGCTTCGCCTTCTCGCAAGCCACCCTGACGTGACCATTGGCGCCATCACAGCGCACAGCAATGCCGGATCCAGGCTCGGTGAACTGCAGCCCCACCTGCATGGGTTGGCCAGCAGGATCCTGGAAGAAACCACTGTGGAGAACCTCGCGGGCCACGACGTCGTGTTCCTGGCCCTCCCGCATGGCGCTTCCGCGGAGATCGCCGCACAGCTTCCCGAAGGCACCGTGGTGATCGACGCCGGTGCCGATCACCGGTTGGAGGACGCTGCGGCCTGGGAAAAGTTCTACGGCTCCGCCCACGCCGGAACCTGGCCCTACGGCCTGCCGGAACTTCCCGGGCAGCGCGAGGCCCTGAAGGGCGCCACGCGCATCGCCGTTCCCGGCTGCTACCCGACGTCGGCCCTGCTGGCTTTGACGCCTGGCTTCACCGCCCAGCTGCTTCAGTCCGAAGATGTGGTGATTGTGTCCGCCTCCGGTACGTCCGGGGCGGGCAAAGCCGCGAAGGTCAACCTGATTGGATCCGAAGTGATGGGTTCCATGAGCCCCTACGGGGTGGGGGGCGGACACCGCCACACCCCGGAAATCGAGCAGGGCCTGTCCAATGCCGCGGGCGAACGCGTGACTGTTTCCTTTACGCCCACGCTGGCACCCATGAGCCGCGGCATCCTGACCACGGCAACAGCCAGGGTGAAAGCCGGAACCACAGTAGCCGAGGTCCGCCAGACGTGGGCCGACGCGTACGACGACGAACCGTTTGTCCACCTCCTGCCCGAAGGGCAATGGCCCACCACCAAGTCCGTTGTTGGATCCAACCACGCCGCCATGCAGGTGGCATTGGACGAACACACTGGCCGTGTCATTGTCACGTGTGTCCTGGATAACCTCACCAAGGGCACAGCCGGCGGAGCCGTCCAATCCATGAATATTGCGCTCGGGCTGGCAGAAACCGCCGGCCTCAACCTGCAGGGAGTTGCCCCGTGAMTISVAVSGASGYAGGEVLRLLASHPDVTIGAITAHSNAGSRLGELQPHLHGLASRILEETTVENLAGHDVVFLALPHGASAEIAAQLPEGTVVIDAGADHRLEDAAAWEKFYGSAHAGTWPYGLPELPGQREALKGATRIAVPGCYPTSALLALTPGFTAQLLQSEDVVIVSASGTSGAGKAAKVNLIGSEVMGSMSPYGVGGGHRHTPEIEQGLSNAAGERVTVSFTPTLAPMSRGILTTATARVKAGTTVAEVRQTWADAYDDEPFVHLLPEGQWPTTKSVVGSNHAAMQVALDEHTGRVIVTCVLDNLTKGTAGGAVQSMNIALGLAETAGLNLQGVAPPGPT0014251_1968DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145NANA
D1-29_016471167argJCOG1364Arginine biosynthesis bifunctional protein ArgJGTGACCGTTACCGCCCCGCTGGGATTCCGAGCCTCCGGCATCACCGCAGGCCTGAAGGCTTCAGGCAACCCCGACCTCGCCCTGGTGGTCAACGACGGACCGTCCAAGTCCGCCGCCGCCGTCTTCACAAGCAACCGGGTGGCGGCCGCTCCCGTCCACTGGTCACGCCAGGTTGTCTCCGACGGCCGGGTGGACGCCGTTGTGCTCAATTCCGGTGGCGCCAACGCCTGCACCGGGCCCGAAGGATTCCAGAACACGCACAACACCGCCGAGAAAGTGGCCAAGGTGCTGGGGATTTCGGCGACCGACGTTTTTGTCTGCTCAACCGGCCTTATCGGCGAGCAGTTGCCGATGGACAAGATCCTGCCAGGCATCGAGGCAGCCTCAACGGCGCTCAGCACGGATGGCGGCCCCGAGGCGGCCCTTGCCATCATGACCACTGACTCCGTACCCAAGGCGGCCCTCTTCATCGGCACGGATACCGACGGCCAGGAGTTCAGCATCGGCGGCATCGCAAAGGGTGCAGGCATGCTGGCCCCCGGCCTGGCCACCATGCTGGTTGTGCTCACCACAGACGCCGAGGTGGCTCCTGAACTGCTCGACCTCGCCCTCCGGGACGCCGCTCGGGTCACCTTTGACCGTGCTGACTCTGACGGCTGCATGTCAACCAACGACACCGTTGTGCTGCTGGCTTCCGGTGCGTCCGGCTCTGTGCCCTCTGCCGAGGCTTTCGGTGCCGGCCTTACCCAGGTTTGTGCCGAACTGGCGCGCAAACTGATCGGCGACGCCGAAGGTGCCAGCCACGACATTGCCATCCGTACGTTCAACGCGGCAAGCGAGCGGGACGCCGAAATAGTCAGCCGTTCCGTGGCGCGGTCCAACCTCTTCAAGGCGGCAATCTTCGGCAAGGACCCCAACTGGGGCCGGGTTCTGTCGGCGGTAGGAACAACTGACGCCGCCTTTGACCCGGACAAACTTAACGTGGCCATGAACGGTGTCCAGATCTGCCGCAACGGCAGCATCGGCGATGACCGCAACCTGGTGGACCTGGAACCGCGGGAAGTGCATGTGGAGATAGACCTTCAGGCCGGCGACGCTGAGGCCACCATCTGGACCAACGATTTGACCCACGATTACGTGCACGAAAACAGCGCCTACTCCAGTTAGMTVTAPLGFRASGITAGLKASGNPDLALVVNDGPSKSAAAVFTSNRVAAAPVHWSRQVVSDGRVDAVVLNSGGANACTGPEGFQNTHNTAEKVAKVLGISATDVFVCSTGLIGEQLPMDKILPGIEAASTALSTDGGPEAALAIMTTDSVPKAALFIGTDTDGQEFSIGGIAKGAGMLAPGLATMLVVLTTDAEVAPELLDLALRDAARVTFDRADSDGCMSTNDTVVLLASGASGSVPSAEAFGAGLTQVCAELARKLIGDAEGASHDIAIRTFNAASERDAEIVSRSVARSNLFKAAIFGKDPNWGRVLSAVGTTDAAFDPDKLNVAMNGVQICRNGSIGDDRNLVDLEPREVHVEIDLQAGDAEATIWTNDLTHDYVHENSAYSSPGPT0014244_3177DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620NANA
D1-29_01648978argBCOG0548Acetylglutamate kinaseATGAATGCCCAGACGCGTGAAAACACGTCCATGCTCGACGCCCAAAGCAAGGCCGGAACCCTGATCGAGGCGCTGCCCTGGATCCAGCGCTTCGCGGGCACCACCATGGTGATCAAGTACGGCGGCAATGCCATGGTCAACGACGAACTGCGCCGCGCGTTCGCCGAGGACGTGGTGTTCCTGCACCATGTAGGCATCCATCCTGTGGTGGTCCACGGCGGCGGCCCCCAGATCAATTCGATGCTGGCCAGGCTTGGCATCGAGTCCGAATTCAAAGGCGGCCTGCGGGTCACCACTCCGGAAGCCATGGACGTGGTCCGTATGGTCCTCACCGGCCAGGTAGGCCGCGAGCTCGTGGGGCTGATCAATTCCCACGGACCCTATGCGGTGGGCATGTCCGGCGAAGACGGTGGGCTGCTGCGCGCCGTCCGGACGGGCACCGTGATCGACGGCGAGGAAGTTGACCTCGGCCTGGTGGGCGAAGTGGTGGGAGTGAACCCGGAAGGCATCCTGGACATCCTGGCGGCCGGGCGCATTCCCGTGATCTCCACCGTGGCGCCGGAGATCGAGGATGACGGCAGCGGCACAACCGGCCAGCGCGTACAGACAACCGGGCAGGTCCTGAATGTCAACGCGGACACCGCCGCCGCCGCACTGGCCGAGGCCCTCAGTGCCTCCAAGCTGGTCATCCTCACCGACGTGGAAGGCCTGTATGCCAACTGGCCGGACAGGTCCTCACTGATCTCGTCCATCACGGCGTCCGATCTTCGCCACCTGCTGCCATCGCTTGAATCCGGCATGATTCCCAAAATGGAAGCGTGCCTCAAGGCCGTTGACGGCGGAGTGGAACGCGCACACATTGTGGACGGCAGGCTGCCGCACTCCATGCTCCTGGAAACATTCACGACGGCGGGAATCGGCACCCAGGTGGTGCCCGACGAGGACCTGGATATTGACGTAAAGGAAGTAACCGCATGAMNAQTRENTSMLDAQSKAGTLIEALPWIQRFAGTTMVIKYGGNAMVNDELRRAFAEDVVFLHHVGIHPVVVHGGGPQINSMLARLGIESEFKGGLRVTTPEAMDVVRMVLTGQVGRELVGLINSHGPYAVGMSGEDGGLLRAVRTGTVIDGEEVDLGLVGEVVGVNPEGILDILAAGRIPVISTVAPEIEDDGSGTTGQRVQTTGQVLNVNADTAAAALAEALSASKLVILTDVEGLYANWPDRSSLISSITASDLRHLLPSLESGMIPKMEACLKAVDGGVERAHIVDGRLPHSMLLETFTTAGIGTQVVPDEDLDIDVKEVTAPGPT0014249_259DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930NANA
D1-29_016491305argDCOG4992Acetylornithine aminotransferaseATGAACCAGGTAGACACCGGGAACCAGGGTGGCCCCGCCTACAATTCGGCCCCCAGCACTGCGGCCGTTGAGAAGGCATCCGTTGGCGAACTCGTCGACGGGAAGGGCCACACCACGGGAGCTGACTGGCTTGCCCGCTATTCCAGTTCGCTGATGGGCGTCTTCGGAACGCCGCAGCGGGTGCTGGTCCGTGGCGCAGGATGCCTGGTCTGGGATGCCGACGGCAAGGAGTACCTTGACCTGCTCGGCGGGATCGCGGTCAACGCCCTGGGCCATGCCAACCCGTTTGTCACTTCGGTCATTTCCAGCCAGCTGGCCACCCTGGGGCACGTCTCAAACTTCTTCACCAGCCCCACACAAATAGCGCTCGCGGAAAAACTGCTCACCCTGGCAGGCGCGCCCGCCGCCTCCAAGGTGTTCTTTACCAACTCCGGCACGGAAGCGAATGAGGCAGCGTTTAAGCTCGCCCGGCGCAACTCCAGCGGTGCCCGGACCAAAATCATTGCCCTCGAGGGTGCCTTCCACGGCCGCACCATGGGAGCCCTTGCCCTCACGGCGAAGGAAGCGTACCGTGCTCCGTTCGAGCCGCTGCCCGGCGGTGTTGTGCACGTCCCCTTCGGCGACGTCGATGCCCTGGAAGCCGCCATTGACGAAACGGTGGCCGCGGTGTTCCTCGAGCCGATCCAAGGCGAAGCAGGCGTCCGGCCGCTGCCGCCGGGTTACCTGAGGGCCGCCCGCGAGGCGACCATCAGGGCCGGGGCCCTGCTCATCCTGGACGAGGTCCAGACCGGGATCGGCCGGACGGGGAAGTGGCTCGCCAGCGAGGACTCGGGAATTGCTCCGGACGCCGTCACCCTGGCCAAGGGACTCGGCGGCGGATTCCCCATTGGTGCGCTGATCACCTTCGGCGCCCAGACGTCGTCGCTGCTGAGTGCTGGCCAGCACGGCACCACTTTCGGCGGAAACCCGGTGGCCACGGCCGCCGCCCTGGCCACGCTGCACGCCATCGAGACCCAGCGTGTCCTGGAGAACGTGGCAGGCGTGGGAGAGCACCTGCGCGCCGGGCTGGCCGCCATCGAGGGTGTCACCGAGGTCCGTGGTGAAGGCCTCCTGATCGGCTTTGACCTCGATGCCGACGTCGCGCCTGCTGTTGTTACTGCGGGCCTTGATGCCGGTTTCATCGTCAACAGCCCCGGGCCCCGCACCATTCGGCTTGCCCCGCCGCTGGTACTCACTACCAGCCAGGCCGATACTTTCCTCGCCGCCTTCCCGGCAATCCTCTCCACAGCTAAGGACGCCCAGTGAMNQVDTGNQGGPAYNSAPSTAAVEKASVGELVDGKGHTTGADWLARYSSSLMGVFGTPQRVLVRGAGCLVWDADGKEYLDLLGGIAVNALGHANPFVTSVISSQLATLGHVSNFFTSPTQIALAEKLLTLAGAPAASKVFFTNSGTEANEAAFKLARRNSSGARTKIIALEGAFHGRTMGALALTAKEAYRAPFEPLPGGVVHVPFGDVDALEAAIDETVAAVFLEPIQGEAGVRPLPPGYLRAAREATIRAGALLILDEVQTGIGRTGKWLASEDSGIAPDAVTLAKGLGGGFPIGALITFGAQTSSLLSAGQHGTTFGGNPVATAAALATLHAIETQRVLENVAGVGEHLRAGLAAIEGVTEVRGEGLLIGFDLDADVAPAVVTAGLDAGFIVNSPGPRTIRLAPPLVLTTSQADTFLAAFPAILSTAKDAQPGPT0014253_101DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
D1-29_016501026argFCOG0078Ornithine carbamoyltransferaseGTGACTCCCGCAAGCAACTCAGCTTCAGCCGGCACCACCCGTCACTTCCTCAAGGACACTGACCTCAGCCCTGTTGAGCAGGCAGAGGTCCTGGAGCTGGCGCTCCGCCTCAAGGCGGAACCGTACAGCGTCCAGCCGTTCGCGGCGGAGGGGAGTGGCCGCAAGACGGTGGCAGTCATCTTCGACAAGACATCAACGCGCACCCGGGTGTCCTTTGCCACCGGCGTGGCTGACATGGGCGGCAACGCCCTGATCATCAACCCGGGTGAAGCGCAGATCGGCCACAAGGAATCGGTCGAGGACACCGCAAAGGTCCTCGAACGCATGGTCTCCACCATTGTTTGGCGGACCGGGGCACATGCAGGGCTGGTGGCCATGGCCGAAAACTCCAGGGTTCCGGTGATCAACGCCCTCTGCGACGACTACCACCCGTGCCAGCTGCTGGCAGACCTGCTGGCGGTCAAGGAGCACAAGGGCGAGCTCAAGGGACTCACCATGAGCTACCTGGGCGACGCTGCCAACAACATGGCCAACTCCTACCTGCTGGCCGGGGTGACAGCAGGCATGCACGTCCGCATCGCGGGGCCCGAAGGCTACCTGCCCGCGGAGGAAATCGTTGCCGCCGCCGAGGAACGTGCGGCCGAAACAGGCGGCTCGGTGCTGGTCACCACCGATGCGGCCGAGGCCCTCAAAGGTGCCGACGTCGTGGCCACTGACACGTGGGTGTCCATGGGACAGGAAGCCGAAAAGGAAGCCCGGATGCAACTGTTCCGGGACTATTCCGTCGATGAGGCGGCCATGGCACACGCGGCGGATGACGCCGTCGTCCTCCACTGCCTGCCCGCCTACCGTGGCTATGAGATCTCGGCAGGCGTCATCGACGGCCCGCAGTCGATCGTGTGGGACGAGGCCGAAAACAGGTTGCATGCCCAGAAAGCCCTGATGGCCTGGCTGATGCACCGCTCCGGGCTGGCATTCGTCGACGGTCTTGCTCCCGTCGAAGGCACCGGGGAGAGCACGTTCTAGMTPASNSASAGTTRHFLKDTDLSPVEQAEVLELALRLKAEPYSVQPFAAEGSGRKTVAVIFDKTSTRTRVSFATGVADMGGNALIINPGEAQIGHKESVEDTAKVLERMVSTIVWRTGAHAGLVAMAENSRVPVINALCDDYHPCQLLADLLAVKEHKGELKGLTMSYLGDAANNMANSYLLAGVTAGMHVRIAGPEGYLPAEEIVAAAEERAAETGGSVLVTTDAAEALKGADVVATDTWVSMGQEAEKEARMQLFRDYSVDEAAMAHAADDAVVLHCLPAYRGYEISAGVIDGPQSIVWDEAENRLHAQKALMAWLMHRSGLAFVDGLAPVEGTGESTFPGPT0020080_1030DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611NANA
D1-29_01651534argRCOG1438Arginine repressorGTGTCCAACAACGCGTCGGTGCCGGGCTCCAGCCCGGCCACCAAAACCGCCCGGCAGGCGCGTATCATCGCGATCCTGACGGGGGAGTCGGTGCGCTCCCAGGCGGAGCTCGCCGCGCTGCTGGCTGACGACGGCGTCCAGGTCACCCAGGCCACGCTGTCCAGGGACCTGGTGGAACTCGGCGCCGTCCGGGTTCGGGGCAAGGAAGGCGTCCTGGTCTACGCCGTTCCCGGCGAGGGCGGGGAACGGGCGGCCAAAAGCGGTGTCAGCCAGGAAATCCTGGACGCGAGGCTTGCCCGGCTGTGCAGCGAACTCCTGGTGACAGCGGAGGCGTCAGCCAACATCGCAGTCCTCAGAACACCCCCCGGCGCCGCGAACTTCCTGGCGCTGGCCATCGACCACTCGGTGATGCCCTCCATCCTGGGCACCATCGCCGGGGACGACACCGTACTCCTGGTCTCCCGGGACCCCCAGGGCGGCCAGGACCTCGCCGCCCGGTTCCTGCAGCTGGCAGAGGAAGCCGGCGGGCAGTAAMSNNASVPGSSPATKTARQARIIAILTGESVRSQAELAALLADDGVQVTQATLSRDLVELGAVRVRGKEGVLVYAVPGEGGERAAKSGVSQEILDARLARLCSELLVTAEASANIAVLRTPPGAANFLALAIDHSVMPSILGTIAGDDTVLLVSRDPQGGQDLAARFLQLAEEAGGQPGPT0020105_240DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020105-ahrC-K03402NANA
D1-29_016521206argGCOG0137Argininosuccinate synthaseGTGACTGAGCGCATTGTTCTGGCCTACTCCGGTGGCCTTGATACTTCCGTAGCCATCGGCTGGATCGGCGAAGCAACCGGGGCCGAGGTCATCGCCGTGGCCGTTGACGTCGGGCAGGGCGGCGAGTCGCTGGAGACCATCCGCCAGCGTGCACTGGGCTGCGGCGCAGTGGAGGCATACGTGGCAGACGCCAGCGACGAATTCGCCAACGAGTACTGCGTCCCCACGCTGAAGGCCAATGCCCTGTACCAGGGTCACTACCCGCTGGTGTCCGCCATCTCCCGGCCCGTCATCGTCAAGCACCTGGTCAAGGCCGCCCGCGAGTTCGGCGCCACCACCGTGGCCCACGGCTGCACCGGCAAGGGCAACGACCAGGTCCGCTTCGAAGTGGGCATCCAGACCCTCGGCCCGGACCTGAAGTGCATCGCCCCGGTCCGCGACCTCGCCCTGACCCGCGACAAGGCCATCGCCTTCGCCGAGGAAAAGGGACTGCCGATCGAAACCACCAAGAAGAACCCGTACTCCATCGACCAGAACGTCTGGGGCCGGGCCGTCGAAACCGGCTACCTCGAGGACATCTGGAACGCCCCCACCAAGGACATTTACGACTACACCGCCACCCCGGAGTTCCCCCCGGCCCCGGATGAGGTCACCATCTCCTTCGAAGCGGGAGTCCCGGTAGCCATCGACGGCATCAAGGTCACGCCGCTCCAGGCCATCAAGGAACTGAACCGCCGCGCCGGCGCCCAGGGCGTGGGCCGCATTGACGTCGTCGAGGACCGGCTCGTGGGCATCAAGTCCCGCGAAATCTACGAGGCCCCCGGCGCCATGGCGCTGATCACCGCCCACAAGCACCTCGAGGACATCACCATCGAGCGCGAGCAGGCCCGCTTCAAGGCAACGGTTGGCCAGCGCTGGGCCGAGCTGGTCTACGACGGCCAGTGGTTCTCCCCGCTCAAGCGCTCCCTGGACGCCTTTATCGAGGACACCCAGCGCTACGTCTCCGGCGACATCCGGATGGTCCTGCACGGCGGCCAGGCGATTGTTAACGGCCGCCGCTCCGACACCTCGCTGTACGACTTCGACCTCGCCACCTACGACACCGGGGACACCTTCGACCAGTCCATGGCGCGCGGCTTTATCGAGCTGTGGGGCATGTCCGCCAAGGTTGCCTCCGGCCGCGATATCCGCGTCGCAGGAAAGTAGMTERIVLAYSGGLDTSVAIGWIGEATGAEVIAVAVDVGQGGESLETIRQRALGCGAVEAYVADASDEFANEYCVPTLKANALYQGHYPLVSAISRPVIVKHLVKAAREFGATTVAHGCTGKGNDQVRFEVGIQTLGPDLKCIAPVRDLALTRDKAIAFAEEKGLPIETTKKNPYSIDQNVWGRAVETGYLEDIWNAPTKDIYDYTATPEFPPAPDEVTISFEAGVPVAIDGIKVTPLQAIKELNRRAGAQGVGRIDVVEDRLVGIKSREIYEAPGAMALITAHKHLEDITIEREQARFKATVGQRWAELVYDGQWFSPLKRSLDAFIEDTQRYVSGDIRMVLHGGQAIVNGRRSDTSLYDFDLATYDTGDTFDQSMARGFIELWGMSAKVASGRDIRVAGKPGPT0020130_3829DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940NANA
D1-29_016531428argHCOG0165Argininosuccinate lyaseGTGGCTGAGCCTAAGTCTGAAGCGACAAATACTGGAGCACTGTGGGGCGGCCGCTTTGCCGGCGGCCCCGCAGATGCCCTCGCCGCACTCAGCAAGTCCACCCACTTCGACTGGCGGCTGGCCCGCTACGACATTGCAGGCTCCGTGGCCCACGCCCGCGTCCTGCACAAAGCGGGGCTGCTGGATGACGCCGAGCTCAAAGGCATGCTGGCCGCCCTCGGCCAGCTGGATGACGATGTAGCCTCCGGCGCCTACCTGCCTGCTGAATCCGACGAGGACGTGCACGGCTCGCTGGAACGCGGCCTGATCGAACGCGCCGGCACCCAGCTCGGCGGCAAGCTCAGGGCGGGACGTTCGCGCAACGACCAGGTGGCTACGCTGGGCCGGATGTTCCTCCGGGACCATGCCCGCATCATCGCGCGCGGCGTTCTCGCCACGATCGAATCGCTGGTGGAGCAGGCCAAGGCCCATCAGGGGGTGGCCATGCCCGGCCGCACCCACCTGCAGCACGCCCAGCCGGTGCTGCTGAGCCATCATCTGCTGGCCCACGCCTGGGCGCTGCTCCGTGACGTGCAGCGGCTCCAGGACTGGGACAAGCGCGCCGGTGTATCGCCGTATGGCTCGGGTGCTTTGGCCGGATCCTCGCTTGGCCTGGATCCGGAAGCGGTGGCAGCGGAGCTTGGCTTCTTCTCCGCCACCCACAACTCCATCGACGGTACGGCTTCCCGCGACGTCTTCGCCGAGTTCGCCTGGGTGTGTTCCATGATCGGAGTGGACCTGTCCCGCGTCTCCGAGGAGGTCATCCTGTGGGCCACCAAGGAGTTCTCCTTTGTGACCCTGCACGATTCCTACTCCACGGGTTCGTCCATCATGCCGCAGAAGAAGAACCCCGACGTGGCCGAACTGGCGCGCGGCAAGGCGGGCCGTCTGATCGGGAACCTGACCGGCCTGCTGGCGACGCTCAAGGGCCTGCCGCTTGCCTACAACCGCGATCTGCAGGAGGACAAGGAACCGGTCTTTGATGCCGCCGACACCCTGGAGCTGCTGCTTCCGGCTGTCTCCGGCATGATCGCCACCCTGAAGTTCAACACGGAGCGGATGGAGTCCCTGGCGCCCCAGGGCTTCGCGCTGGCCACTGACATTGCCGAGTGGCTGGTACGCCAGGGTGTTCCGTTCCGGGAGGCCCACGAGCTGTCCGGTGCCGCCGTCAAGCAGGCCGAATCACGCGGCGTCGAGCTGTGGGACCTGACGGACGGGGAATATGCCGCCATCTCCGAGCACCTGACACCGGAAGTCCGCACGGTCCTGAGCACGGAGGGATCGCTCAACAGCCGCAACTCCCAGGGCGGCACCGCACCGGCCGCCGTCGAACGCCAGCTGGTGGCCCTCGAAAGCGAGCTCGCCGGAGTACGGGAGTACGCGGGGTAGMAEPKSEATNTGALWGGRFAGGPADALAALSKSTHFDWRLARYDIAGSVAHARVLHKAGLLDDAELKGMLAALGQLDDDVASGAYLPAESDEDVHGSLERGLIERAGTQLGGKLRAGRSRNDQVATLGRMFLRDHARIIARGVLATIESLVEQAKAHQGVAMPGRTHLQHAQPVLLSHHLLAHAWALLRDVQRLQDWDKRAGVSPYGSGALAGSSLGLDPEAVAAELGFFSATHNSIDGTASRDVFAEFAWVCSMIGVDLSRVSEEVILWATKEFSFVTLHDSYSTGSSIMPQKKNPDVAELARGKAGRLIGNLTGLLATLKGLPLAYNRDLQEDKEPVFDAADTLELLLPAVSGMIATLKFNTERMESLAPQGFALATDIAEWLVRQGVPFREAHELSGAAVKQAESRGVELWDLTDGEYAAISEHLTPEVRTVLSTEGSLNSRNSQGGTAPAAVERQLVALESELAGVREYAGPGPT0014242_81DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681NANA
D1-29_01654804hypothetical proteinATGACAGCTCCCGCACCGGATACCCTTCTCACCGAACTTCATAAAGCCGCCGACGCCGCCGCCTCGGCCGCCGGGAAGCTCACGGATGAGGACGTGCTGGCCCCGTCCACCCTTCCCGGCTGGACGCGCGGCCATGTGCTGGCGCACATTACCGGGATCTCCCATGCCATGGCCAGGCAACTGGAATACGCTGCCCGCGGCGAGACCGTTGAACTGTACGACGGCGGCCAGGATGGCCGGAACAACGCGATCAACACGGCAGCCGGCCATGATGCTGCCACCCACCGGAAAGACCTGCAGGCAGCCCTTGACCGGGTGCTGAAGGCCTTTGACTCCGTGGCTGGCCCGGAAGCCCCCGGAGCAGCAGGCCCCGGCAGTGACACGCCGGCATCCGGAACGGGAGAATCAGGCGTCACCTGGCAGACACCCATCGCCTACCGAGGGGGAGTGGTCCTGGACGGCGGCCTGGCCCTGTGGCGCGAACTGGTCATCCACACCTCGGACCTGGGAACAGGGCCCGGTCCGGAAGCCTGGAGCCGGCTCTTTTGCGAGCACCTGTTCGGCTTCCTGGCAGCCCGGGTTCCGCCTGGCGACAAGCTGGTGCTGCAGCCCCTGGGGTTGCCGCCGGTAACCATTGGCAGCGGCGGCCGCTCCATTGTCATCAGTGGAATGATCACCGACATTGCAGCCTGGCTTGCCGGCCGCGAACCATCCCTGGGCAGCCTGCGGGCCTCCGCGGCCGCCGACGGCGTGGACCTGCCGACTCTGCTGCCCTGGCCCTCCGGGGTGCCTGCGGCCAAGTAGMTAPAPDTLLTELHKAADAAASAAGKLTDEDVLAPSTLPGWTRGHVLAHITGISHAMARQLEYAARGETVELYDGGQDGRNNAINTAAGHDAATHRKDLQAALDRVLKAFDSVAGPEAPGAAGPGSDTPASGTGESGVTWQTPIAYRGGVVLDGGLALWRELVIHTSDLGTGPGPEAWSRLFCEHLFGFLAARVPPGDKLVLQPLGLPPVTIGSGGRSIVISGMITDIAAWLAGREPSLGSLRASAAADGVDLPTLLPWPSGVPAAKNANANANANA
D1-29_01655495ogtMethylated-DNA--protein-cysteine methyltransferaseATGAAAGCCCAGCTGTTAACGATGTCCACCCCGGATGGACCCTTCACCATCCTTGCCCGGGATGGAGCAGTGCTGGCCTCAGGCTGGACCGCGGAGCCCGGCGAGCTCACCGGCCAGATCCACCCAGCGCTTCGACCTGCCGGGGTGGAGACAGTAACGGAGCTGGGTCCTATCTCTCTGGCCGTGGAGGCGTTCTACCTTGGAGATCCCGGCCCTGCGATGAGCGTGGCCGTGCAGCAAAGGTCAGGCCCGTTCCGCAGCCATGCCTGGGATATGCTCCGGACAGTCCGGCCGGGCTTCCCGGTAACGTACACGGAGTACGCCGAGTTGTCCGGCAATCCGAAGGCCGTCAGGGCGGCCGCAAGTGCCTGCGCCTTCAACGCCGCGGCCCTTTTTGTGCCGTGCCACCGCGTGATCCGGACGGACGGCACCCTGGGCGGCTTCCGCTGGGGCCTGGCCATCAAGAGGAGTCTGCTGGACCGCGAGGCAGGCTGAMKAQLLTMSTPDGPFTILARDGAVLASGWTAEPGELTGQIHPALRPAGVETVTELGPISLAVEAFYLGDPGPAMSVAVQQRSGPFRSHAWDMLRTVRPGFPVTYTEYAELSGNPKAVRAAASACAFNAAALFVPCHRVIRTDGTLGGFRWGLAIKRSLLDREAGNANANANANA
D1-29_016561497alkACOG0122putative bifunctional transcriptional activator/DNA repair enzyme AlkAATGGACTTCTGGCAGCGCTACCGTGCGATCGACGCGCGGGACCCCCGGTTCGACGGACAGTTTTACACCGCTGTCCGCACCACGGGCATCTACTGCCGCCCCTCCTGCCCGGCCAGGACCCCCAAAGCCGGCAACGTGACGTTCTACGAGACCTCCGCCGCCGCCCATGAAGCCGGTTACCGCGCCTGCAAGCGCTGCCTCCCCGAAGCCGTACCCGGCACACCCGCCTGGAACATACGGCAGGACCTTGCGGGCCGGGCCATGCGCCTGATCAATGACGGCGTCATTAACCGGGACGGTGTGGGAGGCCTGGCGGCGCGGCTGGGCTACTCCTCCCGGCAGCTCAACCGGATCCTCAGCCAGGAGCTGGGCGCCGGGCCGCTCTCCCTGGCCCGCGCCAGCCGCGCCCAGACGGCCCGGACGCTGCTGGTATCCACCTCCATGAAGCTTGCCGACATCGCCTTCGCGTCAGGCTTCAGCAGTGTCCGACAGTTCAACGACACCATGGTGGAAGTCTTCGCGATGACACCTACGGCCCTGCGCGCTACGGCGAGGCACCATGGGCCAGCCACCGCCACTACCGCCCTGACGTTGAGCCTGCCCTACCGCGAGCCGTTCGATCCGGGCGTCTTTTCGTTCCTGGCAGTCAGGGCCATTCCCGGCATCGAAGCCGGGACTGCCACGTCCTACTCCCGCACCTTGCGGCTCCCCCACGGTGATGCCCGCTTCAGCGTCGAGTACGACGCCGGCACCCCCGGACGGCCCCTGACCCTCACCATCGGCGCGGTGGACCTCCGTGATTTGGCAGCGCTACTGAGCCGCGTTCGCCGCCTGTTTGACCTCGACGCCGATCCCGTAGCGATCGACAACGCCCTTGCCGCGGATGCAAGGTTGGCCTCCGCCGTGACCGGCGCCCCCGGCATAAGGATGCCCGGCGCCCTTGATCCGCAGGAACTGCTCATCAGGGCCATGATGGGCCAGCAGATCACCGTGGCTGCGGCCCGCACGGCTTTGACCCAGCTGTCGGCTGCCGGGAGCCCCACGCTGCTGCCCGGCAACGGGCTGGACCGGCTGTTTCCCACCGCTGCCGAGATCGCCGACCACGGATACACGCTGCTGCGCGGCCCACAGCGCCGAATCGACTCCCTCCGCACGGCGGCAGCAGCCCTCGCCGCCGGAGAACTGGACTTTGGCTACGGCGACGACCTTCCCGGCCTGGCCGCGAAACTGCTGCCACTTGCCGGCGTCGGTCCCTGGACGGTGGGTTACGTGGCCATGCGCGTGCTTGGAGCGCCCGATGTTTTCCTGGCGAACGACGCAGCTGTACGCAATGGGATCCGGGCGCTTGCCCTGGAGTGCCCGACGGGCGCGGCCAGTCCCGATTTCCGCGAAGTCAGTCCCTGGCGGTCCTACGCCACCATGCACTTGTGGCGCGCGGCCACCACGCAAGGTTCCCACCGTTCTGAGAAATCAGCTCCAGAGAAAGCGATGCGATGAMDFWQRYRAIDARDPRFDGQFYTAVRTTGIYCRPSCPARTPKAGNVTFYETSAAAHEAGYRACKRCLPEAVPGTPAWNIRQDLAGRAMRLINDGVINRDGVGGLAARLGYSSRQLNRILSQELGAGPLSLARASRAQTARTLLVSTSMKLADIAFASGFSSVRQFNDTMVEVFAMTPTALRATARHHGPATATTALTLSLPYREPFDPGVFSFLAVRAIPGIEAGTATSYSRTLRLPHGDARFSVEYDAGTPGRPLTLTIGAVDLRDLAALLSRVRRLFDLDADPVAIDNALAADARLASAVTGAPGIRMPGALDPQELLIRAMMGQQITVAAARTALTQLSAAGSPTLLPGNGLDRLFPTAAEIADHGYTLLRGPQRRIDSLRTAAAALAAGELDFGYGDDLPGLAAKLLPLAGVGPWTVGYVAMRVLGAPDVFLANDAAVRNGIRALALECPTGAASPDFREVSPWRSYATMHLWRAATTQGSHRSEKSAPEKAMRNANANANANA
D1-29_01657645COG2094Putative 3-methyladenine DNA glycosylaseATGAGCACCAACCCACGGGCGGAGGAAGACAAGCTCCGGGAGCTCCTGTCGGGCGACGCACGTGATGTTGCGCCCCTGCTCCTGGGTGCAGTCCTGACCCATGATTCCCGGGACGGCGCGGTGTCGGTCCGGCTGACGGAAATAGAGGCTTATCTGGGCCCGGAGGATTCGCTGCACCCGGACCCGGGTTCACACACGTACCGCGGCCCCACCGCCAGAAATGCGCCGATGTTCGGCCCGGCAGGTCACCTCTACGTCTATTTCACCTACGGGATGCATCACTGCGCCAATATCGTGTGCGGCCCAGCGGGAGTCGCGTCCGCGGTCCTGCTGCGGGCCGGAGAAGTAACGGCTGGGCACCAGCTTGCCCAGCGGCGCCGGCCTACGTCCCAGTCCACAGCCGATCTGGCCAGCGGGCCGGCGAGGCTGGCCAAAGCGCTGGGGCTGACCACCGCAGACAGTGGCCGTGACGCCCTGGCCGTTCCGTTTCGCCTGGAGCTGCCCGTAGAGCCTGTAGCCGCGATCAGTTCCGGCCCACGGGTGGGCGTGTCCGGCGCCGGCGGGTCAGACAGGTATGCGTGGCGGTTCTGGATCACGGGCGATCCCACGGTGTCGCGGTACAAGGCAGCAAAAGCGAGAAGGTGAMSTNPRAEEDKLRELLSGDARDVAPLLLGAVLTHDSRDGAVSVRLTEIEAYLGPEDSLHPDPGSHTYRGPTARNAPMFGPAGHLYVYFTYGMHHCANIVCGPAGVASAVLLRAGEVTAGHQLAQRRRPTSQSTADLASGPARLAKALGLTTADSGRDALAVPFRLELPVEPVAAISSGPRVGVSGAGGSDRYAWRFWITGDPTVSRYKAAKARRPGPT0014885_493DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652NANA
D1-29_016582229hypothetical proteinATGCTCGACGCCGATTTGGCCCACGAACGGGACTATGTTGCCGGCCTGTATGCGCGGCTTGAAGAGCTCCGCGAGGAAAAGCGCAAGCAACTGGCGCAGGTCCGGCGTGCCGGTGCCGTGGGCACCATGCAGAATGTTTCCGAACGTGACGCATTCGCTGCCCTCTATGAGGACCGCCTGGCCCAGCTGGATGCCGTGGACGACCGCCTCGTCTTTGGCCGCCTTGACCTGGACTCCGGCGAAGCCCAGTACATCGGGCGTATCGGCCTGACCACCGAGGATCTGCAGCGCCTGATGGTGGACTGGCGCGCGCCCGAAGCAGGCCATTTCTACCAGGCAACGGCATTCGACCGGCAGGGGGTCCGCCGCCGCCGCCACCTGATCCTGCAGGGCCGGGAAGTCAAGGCCATCGAGGATGATGTGCTGGACGCCGGCATGTTGGCGGACAATGCGTCCCTGCAGGGCGAAGGCGCCCTGCTGGCCGCGCTGGACTCCAAGCGGACCGGCCGGATGTCCGACATTGTCGGAACCATCCAGTCCGAGCAGGACCGCATCATCCGGTCCTCCATCTCCGGCGCCGTTGTGGTGCAGGGCGGCCCAGGCACCGGCAAGACCGCGGTTGCGCTGCATCGCGCCGCCTATCTGCTCTATACCCACCGGGACCGGCTTAAGACCGCCGGCGTACTGTTGGTGGGCCCGTCGTCGTCGTTCATGAAGTACATCGAACGGGTGTTGCCTTCCTTGGGCGAAACCGGTGTGGTGATGGCAAGCGTGGGGCGGCTGATGCCCGGTATCAACGCTGTTGCGGAGCCTGAAGCGGACGTCGCCGCCATCAAGGGCAGGCTGGACATGGCAGACGTCGTGGCCAACGCAGTGGCCAACCGGCAGCGGATTCCGGCAGAGAACCGCGTCCTGGAAGTTGACGGCCGCAAGCTGCTGCTGACGCCGCGGCAGGTCCGCCGCGCCCGCGAGCGTGCCCGTTCCACTGGTAAGCCACACAACGAGGCACGCCTCACCTTTGTGAAGATCCTGCTCCGGGAACTGACCGAACAGATGACGGAACTCGTGGAGGCCGGAAGCATCGGCAACAACGCCGACCGCTCCTATCTGGCTGAAGACGTCCGCACCGCCCGGGATGTGCGGATCGCACTGAACCTTTGCTGGATGCCCATGACTCCGGAGAAGCTGATCAACGAGCTCCTGAGCAAGCCCGCCGTGCTGGAGGCCTGCACCCCGCACCTCAGCCCGGCCGAGCGGGCCCTGCTGCTTCGTCCCGCGGGTGCCCCGTGGACGGAGGCCGATGTCCCTCTGCTTGACGAGGCTGCAGAGCTGCTCGGCGAGCTTGATCCGGCCGCGGGCAGGGGGCTGGCCCAGCAGGAGCACGACCGCGCCCGCGACCTCGCCAACGCCAAGCAGACCCTGGTCAACATGGAAACCGCAGGCGTGGACGTCCTGGTGTCCGCCGAGGAACTGGTGGACCAGAACCAGGAACGCGAAGGCAGGCTGACGGCTGCCGAGCGTGCCACCAGTGACAGGACCTGGGCGTTCGGGCACATTGTGGTGGACGAGGCCCAGGAGCTTTCCCCCATGCAATGGCGCCTGTTGGTCCGCCGGTGCCCGGTGAAGTCCTTCACCATTGTTGGCGACATCGCCCAGACCAGTTCCGTGGCGGGCGCCAACTCGTGGCAGGCCGCACTTGGTCCCATGTTCGGGGACCGCTGGCAACTCGAAGAGCTGACGGTCAACTACCGCACGCCCTCGCAGATCGCAGAAGCCGCAGCGCGGATGGCCAATGCCGCCGGGCTTGTGGTCTCGGCACCCAAGGCAGTCCGGGAGGGGCGCTGGTCGCCAATCATTGACCGCGTGGAGACAGGCAAAGTCGTCAGCCGGCTCGTTGAGGTCCTGCCAGAGGAACTGGAAGCGCTCGACGGCGGCCTGCTGGCCGTTATCGCCGACGGCCACTTGCTGCCGGAAGCCACAGCAGCCCTGCGCGCCATCTACGGCAGGCGCATTGGCAACGGTGCCGGAAGCTACGAACAGGACATTGTTGTCATCAGCCCCCGCGAGGCCAAGGGGCTGGAGTTCGATGGAGTAGTGGTGCTGGAACCGGCCATGATGCTTAACCACGAGCATGGCCGGGTCGGGGACCTCTACGTCGCCATGACGCGTCCCACGCAGCGGCTCAGACTGATCGCGGCAGGGACCGTTCCGGCGGGCATCGAACGCTGAMLDADLAHERDYVAGLYARLEELREEKRKQLAQVRRAGAVGTMQNVSERDAFAALYEDRLAQLDAVDDRLVFGRLDLDSGEAQYIGRIGLTTEDLQRLMVDWRAPEAGHFYQATAFDRQGVRRRRHLILQGREVKAIEDDVLDAGMLADNASLQGEGALLAALDSKRTGRMSDIVGTIQSEQDRIIRSSISGAVVVQGGPGTGKTAVALHRAAYLLYTHRDRLKTAGVLLVGPSSSFMKYIERVLPSLGETGVVMASVGRLMPGINAVAEPEADVAAIKGRLDMADVVANAVANRQRIPAENRVLEVDGRKLLLTPRQVRRARERARSTGKPHNEARLTFVKILLRELTEQMTELVEAGSIGNNADRSYLAEDVRTARDVRIALNLCWMPMTPEKLINELLSKPAVLEACTPHLSPAERALLLRPAGAPWTEADVPLLDEAAELLGELDPAAGRGLAQQEHDRARDLANAKQTLVNMETAGVDVLVSAEELVDQNQEREGRLTAAERATSDRTWAFGHIVVDEAQELSPMQWRLLVRRCPVKSFTIVGDIAQTSSVAGANSWQAALGPMFGDRWQLEELTVNYRTPSQIAEAAARMANAAGLVVSAPKAVREGRWSPIIDRVETGKVVSRLVEVLPEELEALDGGLLAVIADGHLLPEATAALRAIYGRRIGNGAGSYEQDIVVISPREAKGLEFDGVVVLEPAMMLNHEHGRVGDLYVAMTRPTQRLRLIAAGTVPAGIERNANANANANA
D1-29_016591371tyrSCOG0162Tyrosine--tRNA ligaseGTGAACGGTGCTGTGGATTCGGCGCCGGCGGCCTGCAATCCTGCTAACTTAGAAGGCGTGTCAGAACTCAACGATCTCGAATCCCAGCAGAACGACCCCTCCTTCGCCAATGTTTGGCAGGAGCTCAAATGGCGCGGCCTGGTCCATGTCTCCACTGATGAAGCGGAACTGGAAAAGCTCCTCGCCGGCGAGCCGGTCACCTATTACTGCGGCTTCGACCCCACTGCACCAAGCCTGCACCTGGGGAACCTTGTTCAGCTGCTGCTGATGCGGCGGCTGCAGCTTGCCGGCCACAAGCCGCTTGGCCTGGTGGGCGGTTCCACCGGCCTGATTGGTGATCCGCGGCCCACGGCCGAGCGCACGCTCAACACCAAGGACACCGTGACCGAGTGGGTGGGCTACCTGCAGGCACAGGTCCGCCGCTTCCTGAGCTTTGAAGGGGCCAATTCTGCCCGAATGGTCAACAACCTTGACTGGACAGCGCCGCTGAGTGCCATTGATTTCCTGCGCGAGATCGGCAAGCACTACCGGGTGGGGACCATGCTCCGCAAGGATGCCGTCGCCTCCAGGCTCAACTCCGAGGAAGGCATCAGCTACACGGAGTTCAGCTACCAGATCCTGCAGGGTATGGATTACCTCCAGCTTTTCCGTGACTACGGCTGCGTCCTGCAGACGGGTGGCTCGGACCAGTGGGGCAACCTCACCAGCGGCACGGAGCTGATCCGCAAGGTGGAGGGCAAGACCGTCCATGCCCTGGGCACGCCGCTGATCACCAATTCCGATGGCACCAAGTTCGGCAAGAGCGAAGGCAACGCGATCTGGCTCGACGCCGGCATGTGCAGCCCTTACGCCTTCTACCAGTTCTGGCTGAATACTGCCGACGCCGACGTTGTGGACAGGCTTAAAGTCTTCACGTTCCTGAGCAGGGCCGAGATCGAAGCCCTCGGTGCGGCAGTTGCGGAGCGCCCGTTCGCTCGCGAAGGCCAGCGGAAACTGGCGTTTGAGGTGACTTCGCTGGTCCACGGCGTGGAGGCGACCGAGAAGGTTATTGCCGCTTCCGCCGCTCTCTTCGGAAACGGGGACCTTACTGCGCTGGACAGGCAGACCCTCGAAGCGGCCACCTCTGAGCTTCCTTCCGCCAGGATCCAGGTGGACGGCATGGGCATCGTGGATCTGCTGGTTGCCTCAGGCCTTTCCGAGAGCAAGTCCGCAGCCCGCCGCACAGTGGGGGAAGGCGGAGCATATGTGAACAACGAGAAAGTCTCCGATCCGGAAGCTGTGATTTCCGAATCGGAACTGCTTCATGGCCAGTACCTGTTGCTGCGCCGGGGGAAGAAGAACCTGGCAACCGTGGAAGTCCTGGTTCCCTAGMNGAVDSAPAACNPANLEGVSELNDLESQQNDPSFANVWQELKWRGLVHVSTDEAELEKLLAGEPVTYYCGFDPTAPSLHLGNLVQLLLMRRLQLAGHKPLGLVGGSTGLIGDPRPTAERTLNTKDTVTEWVGYLQAQVRRFLSFEGANSARMVNNLDWTAPLSAIDFLREIGKHYRVGTMLRKDAVASRLNSEEGISYTEFSYQILQGMDYLQLFRDYGCVLQTGGSDQWGNLTSGTELIRKVEGKTVHALGTPLITNSDGTKFGKSEGNAIWLDAGMCSPYAFYQFWLNTADADVVDRLKVFTFLSRAEIEALGAAVAERPFAREGQRKLAFEVTSLVHGVEATEKVIAASAALFGNGDLTALDRQTLEAATSELPSARIQVDGMGIVDLLVASGLSESKSAARRTVGEGGAYVNNEKVSDPEAVISESELLHGQYLLLRRGKKNLATVEVLVPNANANANANA
D1-29_016632109hypothetical proteinATGGCTGAGCACAATGGCGGCAACCGCGGCGGAAATGACCGCGGTCCCTTCCGCGGCACGAACAACTCCGGCGGAGAACCGCGGGGATTCCGTTCCAGGGAAAACCGCGAAAGCACAGATGGTCCACGGCGCGGTGCCGGTTCCGGAGAGCGTAAGCCGTTCAGCGGTGGCGGCGACCGGAAGCCGTACGGTGACCGTGACAACAAGCCTTATGGTGACCGTCCGCGACGTGAGGGCGATGGTGAACGCAGCAGCTTCGGTGGCGGAGAGCGTAAGCCCTTCAGTGGTGGCGGCGAGCGGAAGCCGTACGGTGACCGTGACAACAAGCCTTATGGTGACCGTCCGCGCCGTGAAGGTGATGGTGAACGCCGCAGCTTCGGCGCCGGCGAGCGTAAGCCTTACGGCGGTGGCGCCGGTGGCGAACGCAAGCCTTACGGCGAGCGGAAGCCGTACGGTGACCGTGACAACAAGCCTTATGGTGACCGTCCGCGCCGCGAGGGCGATGGCGAACGCCGCAGCTTCGGTGGCGGCGAGCGTAAGCCCTTCAGCGGTGGCGGCGAGCGTAAGCCCTACGGTGACCGTGACAACAAGCCTTATGGTGACCGTCCGCGCCGCGAGGGCGATGGCGAACGCCGCAGCTTCGGCGCCGGCGACCGTAAGCCCTACGGCGGAGGCGCCGGCGGCGAACGCAAGCCCTACGGCGAGCGGAAGCCCTACGGTGACCGTGACAACAAGCCGTACGGTGACCGTCCGCGCCGCGAAGGTGATGGCGAACGCCGCAGCTATTCGGGGGGCGAAAACCGGAAGCCCTTTGGTGACCGCCAGGACAGGGCACCGCGCACTTTCGACCGCAGCGATTCAGGCCCGCGCCAGTTTGGACGCGACCGTCCGGAAGACCGTCCGGCACGTGTGCCCAACGCGCGCGACCTCCGCAGCGCCAACCGGCCGGACCGCGAACGCTCTCCGGAGATCGACGAGGACGTCACGGGCAAGGAGCTTGACCGCGCCACCCAGCATCAGATTAAGACCCTCGAAGACAAGAGCGCGGAGTGGGTGGCCCGTCACCTGGTGATGGCCGGCCGGCTGATCGACGACGAGCCGGAGCTTGCTTTCCAGCACGCCCTGGCCGCGAGCCGTCGTGGCGGCAGGCTTGCCGCCGTCCGCGAGGCTGTTGGCCTCACGGCCTATGCCGCAGGACACTACGGTGAAGCGTTGAGGGAATTCAGGACCTACCGCCGCATCAGCGGCTCAAACGTCCACTTGCCGGTGATGGCAGACTGTGAACGCGGCCTGGGCCGCCCGGACCGTGCCCTCGACGTGGTCCGATCCGAGGAAGCCAAGGACCTGGACGCTCCGGGTAAGGCTGAGCTGGCCATCGTGGCTGCCGGAGCACGCACCGATCTTGGCCAGCTGGATGCCGCCGTTGCTGAGCTGGAGATCCCGCAGCTTGATATCAACCGCGCTTTCTCGTACAGCCCCCGCCTGTTCCGTGCCTACGCCAATGCTCTGTCCGCAGTAGGCCGCGAGGCCGAGGCGGCCAAATGGGAGAAGCAGGCCGTTGTGGCCGAAAACGCCTTGGGCCTGGGCGCAGAGGAAGAGCCGGACATCCTGGACCTGGGCTGGGACGAGGAAGAAGAAGCCCGCGAGGATGCGGACCGCCGTCGCCTGATGGAACGCACTTCAAGCGAATCCAGCAGATCAACCGAATCCAGCAGATCAACCGAATCCAGCAGATCAACCGAATCCAGCACATCAACCGCAGCCGCCACGTCAACCGCAGCCGCCACCCTGTCCGAGGCAGTGGGGCCCGCTTCCGCTCCCGAAACAACCGGCGTGGACTCATCGGTTGATGACGCCGAATCAGACTTCTTCGAGTCGGATGACGCGGAATCGGATGAGGATTCCCTTGAACCAGACGAATTCGAGTCCGATGAACTCGAGTCCGATGAACTCGAGTCCGATGAACTCGAATCAGACGAACTCGAATCAGGTGAACCCAAGTCGGATGAACCTGCATTCGAGGGATCGGGATCTGACGAAGCTGAATCCATTGACGCCGGACAGGCCGACGACGAGGCTGCAGGTGACACCGAGAGCCGGGAACACTAGMAEHNGGNRGGNDRGPFRGTNNSGGEPRGFRSRENRESTDGPRRGAGSGERKPFSGGGDRKPYGDRDNKPYGDRPRREGDGERSSFGGGERKPFSGGGERKPYGDRDNKPYGDRPRREGDGERRSFGAGERKPYGGGAGGERKPYGERKPYGDRDNKPYGDRPRREGDGERRSFGGGERKPFSGGGERKPYGDRDNKPYGDRPRREGDGERRSFGAGDRKPYGGGAGGERKPYGERKPYGDRDNKPYGDRPRREGDGERRSYSGGENRKPFGDRQDRAPRTFDRSDSGPRQFGRDRPEDRPARVPNARDLRSANRPDRERSPEIDEDVTGKELDRATQHQIKTLEDKSAEWVARHLVMAGRLIDDEPELAFQHALAASRRGGRLAAVREAVGLTAYAAGHYGEALREFRTYRRISGSNVHLPVMADCERGLGRPDRALDVVRSEEAKDLDAPGKAELAIVAAGARTDLGQLDAAVAELEIPQLDINRAFSYSPRLFRAYANALSAVGREAEAAKWEKQAVVAENALGLGAEEEPDILDLGWDEEEEAREDADRRRLMERTSSESSRSTESSRSTESSRSTESSTSTAAATSTAAATLSEAVGPASAPETTGVDSSVDDAESDFFESDDAESDEDSLEPDEFESDELESDELESDELESDELESGEPKSDEPAFEGSGSDEAESIDAGQADDEAAGDTESREHNANANANANA
D1-29_01664990COG0647D,L-glycerol 3-phosphate phosphataseATGGCTGCCGCTTCTCTGATTTCCCGGTTCGACGCCTTGCTGGCCGACCTGGACGGGGTAGTCTACGCCGGTCCGCACGCGGTTCCGGGAGCTGTTGATTCGCTTCAGCAGCTGGCCGGACTGGGCGTGGGCCTGGGCTATGTCACCAACAACGCCTCGCGTACGCCTGCCCAGGTTGCCGCCCATCTCAGGGAGCTGGGCGCGCCTGCCGAAGACGAGCAGGTGGTCAGTTCCTCGCAGGCCGCCGCGGAATTGCTTGCCTCGGTGCTTGCCCCCGCTTCCCGCGTCCTGATCACGGGAAGCCCGGCGCTTGCCCAGGAAATTGAACTCGTGGGCCTGACCCCTGTCTGGAGCCAGGATGAGGACCCGGTGGCGGTGGTCCAGGGCTTCAACCCCGCGATCGGCTGGAAGGACCTCGCCGAGGCCGCCTACGTGGTTGCCGCCGGCGCCCTCTGGGTGGCGACCAACACTGACATGTCCATCCCGCAGGCACGCGGCATAGCTCCCGGAAACGGCACGCTGGTAGCCGCGGTAGCCGCTGCAACCGGACAGAAGCCAAGAGTCGCCGGAAAACCGGAGGCTCCGCTGTTCCACACCGCCGCGAAGCGGCTTGCCTCTGACCGCCCGCTGGTGGTGGGCGACCGGCTGGACACCGACATCCTGGGCGGGAACAACGCCGGCTTTGCCACGGTGGCCGTCCTGACCGGCGTCGATACCAGGGAGACCATCCTGGCCGCCAGGACTGCCGAACGCCCCAACTACCTGATCAACTCGCTTTCGGACCTGCACCAGCCTTATCCGGCGATCGAAAACGCCGATGGGGTCTACCGCTGCGGCGCCTCCAGCGCGGTGGCCCTCGACGGCACCGTGAGGGTTGAGGGTAACGAGGATGACCTGGACTCCTGGCGGGCCGCCTGCGCCGCCTGGTGGGCCGCCGTGCCGGAGACAGCAGAGGCATACGCGCCCAGGCTTGAGTGGCTGGGTCACTAGMAAASLISRFDALLADLDGVVYAGPHAVPGAVDSLQQLAGLGVGLGYVTNNASRTPAQVAAHLRELGAPAEDEQVVSSSQAAAELLASVLAPASRVLITGSPALAQEIELVGLTPVWSQDEDPVAVVQGFNPAIGWKDLAEAAYVVAAGALWVATNTDMSIPQARGIAPGNGTLVAAVAAATGQKPRVAGKPEAPLFHTAAKRLASDRPLVVGDRLDTDILGGNNAGFATVAVLTGVDTRETILAARTAERPNYLINSLSDLHQPYPAIENADGVYRCGASSAVALDGTVRVEGNEDDLDSWRAACAAWWAAVPETAEAYAPRLEWLGHPGPT0024450_586DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_PHOSPHATASE_ACTIVITY,PGPT0024450-yutF|nagD-K06117NANA
D1-29_01665225hypothetical proteinATGACTGAGCTGAACGAAGAGCACCAGGCAGCCCAGCCCACTCCGGAATGGCCCGAAACCACGCCGGGGGACATTGGGGATCCTTCCGTCGAAGCCATCGTGGCTCCGCTGGACAGCCTCAGGGACCAGCCGGTGGCCGATCATGACGCTGTCTACGCTGAACTCCATGATGCCCTGCTGGAATCCCTGAACGAGGATGCCCCGTCAGCGAATGGTGGACAGTGAMTELNEEHQAAQPTPEWPETTPGDIGDPSVEAIVAPLDSLRDQPVADHDAVYAELHDALLESLNEDAPSANGGQNANANANANA
D1-29_01666813tlyACOG118916S/23S rRNA (cytidine-2'-O)-methyltransferase TlyAATGGCACGGCTCGACCAGGCACTGGTGGCCCGGGGCCTGGCAAGGTCACGCACGCACGCCGCCGCTTTGATCGCTGAAGGAAAAGTCAGTTCCGCCGGGCAGGTGTTGTCCAAGGCATCAGTGCAGGTCTCCGAGGACAAGGACCTGGCGGTGGAGCACAGCGAAGAGGACACCTATGTGAGCAGGGCCGGGCACAAACTTGCCGGGGCACTGGATGCGTTCCCCGCGATCACTGTTGCAGGCAAGAGGTGCCTTGACGCCGGCGCCTCCACCGGCGGTTTCACGGAGGTCCTGCTTAGGCGCGGTGCAGCCCATGTAGTGGCCGTCGACGTCGGGCACGGGCAGTTGGTGCCGCAGCTCAGAAGCGACCCCCGGGTAGCAGTCCACGAGGGACTCAACGTCCGCTACATGTCTCCGGCGGATATCGGTGGGCCCGCCGCACTGACCGTCGCTGACCTCTCCTTCATTTCGTTGACCCTGGTGGTTCTCCCGCTGGCCCTGTGCACCGAGCCGGGCGGAGACCTGGTACTGATGGTCAAGCCCCAGTTCGAGATCGGCAAGGACCGCCTGGCCCGCACCGGGGTAGTGAATTCTGAACGTGAACGCCGGATGGCGGTGGAGAAAGTCGCCATCGCCGCGCTCGACGCCGGACTCGATTTATGCGGCTTGGCGGCCAGTCCCTTGCCGGGTCAGGACGGAAACGTCGAGTACTTCCTGTGGATAAGACGCAGGATCGGCCAAGACTTGCCTAAGATCGAAGAGCGCGACGCAGCCATTGCTGCTTTGCTTGGACGTCTTTGGCCGAACCACTAGMARLDQALVARGLARSRTHAAALIAEGKVSSAGQVLSKASVQVSEDKDLAVEHSEEDTYVSRAGHKLAGALDAFPAITVAGKRCLDAGASTGGFTEVLLRRGAAHVVAVDVGHGQLVPQLRSDPRVAVHEGLNVRYMSPADIGGPAALTVADLSFISLTLVVLPLALCTEPGGDLVLMVKPQFEIGKDRLARTGVVNSERERRMAVEKVAIAALDAGLDLCGLAASPLPGQDGNVEYFLWIRRRIGQDLPKIEERDAAIAALLGRLWPNHNANANANANA
D1-29_016671026ppnKCOG0061NAD kinaseATGAGCAGGCGAGTACTTGTCCTTGCCCACACTGGCCGCGAGGAATCACTGAAGGCCGCCTGGGAAGCCTGCGCCCAGCTGCACGCCTCGGGAATTGTGCCAGTGATGCAGGAGTCCGAGCACGGCGACATGGAACGCTTTTTCGGGCACCTGAGCCAACCGGTGGAAATCCTGCACGACCATGTGCAACTGCCTGATGTCGAGCTGGTCATGGTCCTCGGTGGTGACGGCACCATCCTGCGTGCCGCCGAACTGGTGCGGGAAGTGGATGTGCCCCTCCTGGGCGTTAACCTGGGCCACGTCGGATTCCTGGCCGAAAGCGAGCGTGCGGACCTCGCACAGACCGTTGAATGGATCGCGCGCCGGGATTACACGGTGGAAGAACGCATGACCATCGATGTGCAGGTCTGGGTCAGGGGTCAAAAGATTTGGCACACGTGGGCCCTGAACGAAGCCGCGATCGAAAAGGGAAACCGCGAACGCATGCTGGAGGTGGTCACGGAGGTGGACGAGCGCCCGCTGACTTCCTTTGGCTGTGACGGCGTGGTCATGGCCACCCCCACCGGCTCCACGGCCTATGCGTTCTCAGCCGGCGGCCCGGTGGTCTGGCCGGAGGTCGAAGCCTTGGTCATCGTTCCCATCAGTGCGCACGCCCTGTTCGCCAAACCGCTGGTGGTGTCGCCGCGGTCCAGGCTGGCGGTCGAGGTCCTCAACCGCACCGACGCGCAGGGGGTTCTGTGGTGCGACGGCCGCCGTTCCGTGGACCTGCCTCCCGGAGCACGCGTGGAAGTGACAAAATCGGCCACCCCGGTCCGTTTGGCCCGGACCCACCGCACGCCCTTCTCCGCAAGGCTGGTCCGGAAGTTCGAGCTTCCCATCCACGGCTGGCGGGGTCCCGTTCCACGGGCTGAAGCCATCCACACCGGGCCCATTCCCATCATCAGGACGCCCCGCCCCATGGCACCGCTCCAGGTTTCCCATGGGGAGCGCCCTGATGAAGAAACCGATCCGTCAACCGCAAAGTGAMSRRVLVLAHTGREESLKAAWEACAQLHASGIVPVMQESEHGDMERFFGHLSQPVEILHDHVQLPDVELVMVLGGDGTILRAAELVREVDVPLLGVNLGHVGFLAESERADLAQTVEWIARRDYTVEERMTIDVQVWVRGQKIWHTWALNEAAIEKGNRERMLEVVTEVDERPLTSFGCDGVVMATPTGSTAYAFSAGGPVVWPEVEALVIVPISAHALFAKPLVVSPRSRLAVEVLNRTDAQGVLWCDGRRSVDLPPGARVEVTKSATPVRLARTHRTPFSARLVRKFELPIHGWRGPVPRAEAIHTGPIPIIRTPRPMAPLQVSHGERPDEETDPSTAKPGPT0013490_1200DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858NANA
D1-29_016681740recNCOG0497DNA repair protein RecNATGCTTGAAGAACTGAGAATCCGCGATCTGGGCGTCATCACCGACGCCACGCTGCCGCTGGGCCCCGGTCTGAGCGTAGTGACCGGCGAGACAGGTGCCGGAAAAACAATGGTGGTCACCGCCGTCGGACTCCTGCTGGGGGCACGGTCCGACGCCGGTGCGGTCCGGAGCGGGGCGAAAAGTGCCACCGCCGAAGCAGTCATCAGGCTGGAATCCGGCCATCCGGCCGTTGCGCGTGCGGTCGACGCCGGCGCCGACGTCGAGGAGTTCGACGGCGGTGCTGAACTTCTCCTCGCCCGGCGCCTGGGCTCGGACGGCCGGAGCCGGGCATTCCTTGGCGGACGCGCCGCCCCGGTGGGCGTCCTGGCGGAGATAGGCGAAACCCTTGTGGTGGTCCATGGCCAGTCGGACCAGATCCGGCTGAAGGGCGCAGCCGCCCAACGGGGCGCCCTGGACAAGTTTGCCGGCCCGGGCCTCGCCGCGGAGCTGGGCACCTACCAAAGCCTGTACAGCCACTGGAAGTCCATCCAGGCGGAGCTGGACACGTTGCGCAGCGCCGCCCGCGACAGGCTCCGTGAAGCCGAATCCCTGGAGATCGCGCTGGTCGAAATTGACGAGGTGGACCCGCAGCCGGGGGAGGACGAGTCACTCAAGGCAGAGGCCGTGAAGCTGGCGAACGTGGAAGAGCTGAGGATCGCTGCAAGCACGGCCCACCAGGCCCTGATCGCCGAGGACTTTGGCGATGCCGGCGACGCCACCACCATGGTGGACGCCGCGAAACGCACCCTGGAGCACGTGGCTGAGCACGACGGTGAACTGGGCGCGGCCGCTGCCCGGCTGGCGGAAGTCGGCTTCCTGCTCAACGACATCGCCACGGAGCTGGCCAGCTATCAGGCCGGCCTGGATTCGGAGGGGCCCGAGCGGCTCGCCGAGATCGAGGACCGCCGGGCGGCCTTGGCCAAGCTGGTCCGCAAATACGCGCCCAGCATCGACGAAGTGCTGGTCTGGGCGGAAAACGCGCGGGTCCGGTTTGATGAGCTGCAGGACGACTCCACGCGGATCGAATCTCTCGACGCCGACGTTGTCCGGACTGAGGCGGACCTGCGGAAGCAGGCTGCAGCCATCAGCAAAATCCGGGCCAGGGCGGCAAAGGAACTCTCCGCCCGCGTCAGTTCAGAGCTGAAAGCGCTGGCCATGGCCGATGCCACCCTGGTGATCACCTTGGAAGCCACCGGTCAGCTGGGGCCGCACGGCGTTGATGAGATTTCGTTCCTGCTCCAGCCACACGCCGGAGCCCCCGCAAGGCCGCTCGGCAAGGGTGCCTCCGGCGGTGAACTTTCCCGCGTGATGCTTGCCATTGAAGTGGTCCTGGCGGCCGTGGACCCCGTCCCCACCTTCGTGTTCGACGAGGTGGACGCCGGTGTCGGCGGACGGGCCGCCGTCGAAATCGGCCGCCGGCTGGCCATGCTGGCACAGCACGTGCAGGTCCTGGTGGTCACCCACCTGCCGCAGGTGGCAGCCTTCGCCGACCAGCACATCACCGTCACCAAAACGTCCGTCCGGGGAGCCGACGGCGGCACGGCCTCCGGTTTCACCTCCAGTGACGTCAAACTCCTGGACGGCCCGGAACGGGTCCGCGAGCTCGCCCGGATGCTGGCTGGCCAGGAGGACTCCGAATCGGCCCAGGCGCACGCGCAGGAACTTCTCGACGACGCAAAACTGCTTCCACAGCGCGCCTAGMLEELRIRDLGVITDATLPLGPGLSVVTGETGAGKTMVVTAVGLLLGARSDAGAVRSGAKSATAEAVIRLESGHPAVARAVDAGADVEEFDGGAELLLARRLGSDGRSRAFLGGRAAPVGVLAEIGETLVVVHGQSDQIRLKGAAAQRGALDKFAGPGLAAELGTYQSLYSHWKSIQAELDTLRSAARDRLREAESLEIALVEIDEVDPQPGEDESLKAEAVKLANVEELRIAASTAHQALIAEDFGDAGDATTMVDAAKRTLEHVAEHDGELGAAAARLAEVGFLLNDIATELASYQAGLDSEGPERLAEIEDRRAALAKLVRKYAPSIDEVLVWAENARVRFDELQDDSTRIESLDADVVRTEADLRKQAAAISKIRARAAKELSARVSSELKALAMADATLVITLEATGQLGPHGVDEISFLLQPHAGAPARPLGKGASGGELSRVMLAIEVVLAAVDPVPTFVFDEVDAGVGGRAAVEIGRRLAMLAQHVQVLVVTHLPQVAAFADQHITVTKTSVRGADGGTASGFTSSDVKLLDGPERVRELARMLAGQEDSESAQAHAQELLDDAKLLPQRANANANANANA
D1-29_01669531hypothetical proteinGTGACCAACCTCCCTGACCCGAAAAACGCGCCGGCGCCTGAGCCAGGCCGCAACGGCGTCGAAATGAATCCGGTCTTCCGCTCGATGGCGTTCAGCTCCATCCCTGCACCGGACTACGCGGATGTGATTGTTCTCCCAGTCCCTGTTGGACAACGGGAATGCCCGTCCGATCCCCGAACGTGGGCGGAAACACTGTTCTCGTTGAAATCCATGCCCGCATGGGTGACAGCCCTCCTGGGCGTGCGGCAGGCCGTCGTCGGGCTGGTGGGTATCAACAGGGCCCCCGCCGGCGTCTTTGCCGTCTCGAAGGTTCAAGGCGAGGAGGCCCTGATCAGCGCGGATGACACGCACCTGGACTTCCGCTGCGGGGTGGCCTACGACGCCGGCGCGCGCCTTCTGCGGGTGACAACGGCCGTGCACCTGAAAGGCTGGCGGGGCCGCCTGTACTTTCTGCCGGTGCGGCTGCTCCATCCGCTGGTGGTGCACGCGATGATGGCGCGGGCCATCCGCCGCCTTACATCTGGTCCCTGAMTNLPDPKNAPAPEPGRNGVEMNPVFRSMAFSSIPAPDYADVIVLPVPVGQRECPSDPRTWAETLFSLKSMPAWVTALLGVRQAVVGLVGINRAPAGVFAVSKVQGEEALISADDTHLDFRCGVAYDAGARLLRVTTAVHLKGWRGRLYFLPVRLLHPLVVHAMMARAIRRLTSGPNANANANANA
D1-29_016701785pyrGCOG0504CTP synthaseATGATAGGCTCGAATTCCGTGGTGCAGCGATCAAATTCCCGTGTAAATTCCCGGTTCCCGGGCTCGTCCAAGACGACCAAACACATCTTCGTAACCGGTGGTGTGGCGTCCTCGCTCGGTAAGGGACTGACGGCCTCGAGCCTCGGTCACCTCCTGCGGGCACGCGGTTTGTCTGTAACTATGCAGAAGCTGGATCCCTACCTGAACGTGGATCCGGGCACGATGAACCCCTTCCAGCACGGCGAAGTCTTCGTCACGGACGACGGCGCCGAGACAGACCTGGACATCGGACACTACGAACGTTTCCTTGACGAAAACCTCGAGGGCTCGGCCAACGTAACTACCGGTCAAATCTATTCCACCGTCATCGCCAAGGAACGCCGCGGCGAATACCTGGGCGACACCGTTCAGGTCATCCCGCACATCACCGATGAAATCAAGCGCCGGATGCGGCTGCCCGCGGAGGGCAAGAATGCCCCGGACGTCATCATCACCGAGATCGGCGGCACGGTGGGAGACATCGAGTCCCAGCCGTTCCTCGAATCAGCCCGCCAGGTCCGCCAGGACGTGGGCCGCGGCAACGTCTTTTTCCTCCATGTCTCTCTGGTTCCCTACATCGGACCCTCCCAGGAGCTCAAGACCAAGCCCACGCAGCACTCCGTGGCGGCCCTGCGTTCCATCGGCATCCAGCCTGAAGCAATCGTGATCCGTTCGGACCGTGAAGTGCCCGACGCCATGCGCGAAAAGATCGGCCGCATGTGCGATGTTGACATCGACGCCGTGGTGAACGCTGCGGACGCGCCCAGCATCTACGACATCCCCAAGACCCTGCACTCCCAGGGCCTGGATTCCTACATCGTCCGGGCCCTGGACCTGCCGTTCAAGGACGTCGACTGGACCAGCTGGGACAAGCTGCTCGAGGCCGTGCACAATCCGAAACACCACGTGGAAATAGCGCTGGTGGGCAAGTACATCGACCTCCCGGACGCCTACCTCTCGGTGACGGAAGCCCTCCGTGCCGGCGGTTTTGCCAACGACACCAAAGTCAAGATCCGTTGGGTCCCGTCGGACGAGTGCGAAACGCACGAAGGTGCCATCGCCTCCCTGGGCGGTGTGGACGCCATCTGCGTGCCCGGCGGCTTCGGCATCCGTGGACTTGAAGGCAAACTCGGTGCCCTGAAATTCGCACGCGAAACCAAGCTGCCGGTCCTGGGCCTCTGCCTCGGCCTGCAGTGCATGGTGATCGAATATGCCCGGAACGTGGTGGGCCTGGACGGCGCATCCTCCAGCGAATTCGAACCCGACTCCAAGTACCCCGTGATTGCCACCATGGAGGAGCAGCTGGACATCGTCGAGGGCAAGGGTGACCTGGGCGGCACCATGCGCCTGGGGCTGTACGAGGCCAAACTCGACGCCGGTTCCGTGATCGCGGAGACCTACGGAAAGACCACCGTCAGCGAGCGGCACCGCCACCGCTACGAGGTCAACAACAAGTACCGCGACCAGATCGCCGCGGAGGGTCTGGTCTTCTCGGGGACGTCTCCCGATGGCAAGCTCGTTGAATACGTAGAGCTGCCCCGCGAGGTACACCCGTACTATGTGGCAACCCAGGCCCATCCTGAGCTGAGCTCGCGCCCCACCAGGCCGCATCCGCTCTTCTCCGGCCTGGTCAAGGCGGCGCTTGCCCACCAGGAGGGCCCGGACCTCACGGCCGCCACGCAGGCCACCGGGGCAGGCATTGACGCGCCTCCGGCCAAACCGTCACGTACGGTTGCTGCACAGTAGMIGSNSVVQRSNSRVNSRFPGSSKTTKHIFVTGGVASSLGKGLTASSLGHLLRARGLSVTMQKLDPYLNVDPGTMNPFQHGEVFVTDDGAETDLDIGHYERFLDENLEGSANVTTGQIYSTVIAKERRGEYLGDTVQVIPHITDEIKRRMRLPAEGKNAPDVIITEIGGTVGDIESQPFLESARQVRQDVGRGNVFFLHVSLVPYIGPSQELKTKPTQHSVAALRSIGIQPEAIVIRSDREVPDAMREKIGRMCDVDIDAVVNAADAPSIYDIPKTLHSQGLDSYIVRALDLPFKDVDWTSWDKLLEAVHNPKHHVEIALVGKYIDLPDAYLSVTEALRAGGFANDTKVKIRWVPSDECETHEGAIASLGGVDAICVPGGFGIRGLEGKLGALKFARETKLPVLGLCLGLQCMVIEYARNVVGLDGASSSEFEPDSKYPVIATMEEQLDIVEGKGDLGGTMRLGLYEAKLDAGSVIAETYGKTTVSERHRHRYEVNNKYRDQIAAEGLVFSGTSPDGKLVEYVELPREVHPYYVATQAHPELSSRPTRPHPLFSGLVKAALAHQEGPDLTAATQATGAGIDAPPAKPSRTVAAQPGPT0021215_765DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937NANA
D1-29_01671663hypothetical proteinATGCCCGGTAAGTCTGAAACCACCCATGCTGCACGGCAGGTTTCGGATGCACCGAGCCCGCGCCGTCTTCTGTCTACCGAGAAGGTCTACGAAGGCCGGATCTGGGACGTGGTCAGCGACAGCTTCCAGCTGAGCGAGAGCGGTGAGGCTCTGACCCGGGACTACATCGAGCATCCCGGCGCCGTGGCGGTACTGCCGATGAACGAAGCGGGCGAGATCCTGCTGCTGAAGCAGTACCGGCATCCTGTCGGGATGGATCTCTGGGAAATTCCGGCCGGCCTGCTGGACGTCGAGGGGGAGGACTTCGTGGTGGGGGCCGCCCGGGAGCTTGCGGAAGAAGCGGACCTCGCGGCCGGAACCTGGAACGTCCTTGCTGATTTCTTCAATTCGCCCGGTTCCTCCAGTGAAGCCATCAGGATCTACCTTGCCCGCGACCTTATCGAGGTGCCTCACCATGAGCGCCACGAGCGGATGGACGAGGAAGCGGAAATTGAGTTCCACTGGATCGCCCTCGACGACGCCGTGGCCGCAGTCCTGGCAGGGCAGCTCCATAACCCGTCCGCCGTCGTGGGCATCCTTGCAGCAGCGGCAGCGCGTGCTGCCGGCTTTGCCCGGCTCCGCCCCGCTGATTCACCCTGGCCTGCCCACCCCAGCCAGCGTTGAMPGKSETTHAARQVSDAPSPRRLLSTEKVYEGRIWDVVSDSFQLSESGEALTRDYIEHPGAVAVLPMNEAGEILLLKQYRHPVGMDLWEIPAGLLDVEGEDFVVGAARELAEEADLAAGTWNVLADFFNSPGSSSEAIRIYLARDLIEVPHHERHERMDEEAEIEFHWIALDDAVAAVLAGQLHNPSAVVGILAAAAARAAGFARLRPADSPWPAHPSQRNANANANANA
D1-29_016721014xerDCOG4974Tyrosine recombinase XerDATGCCGCAAAGCATCGCGGCGGACGCCGCCGCACCAGTCTCCCCGGTAGCTGATAAGGCGCCTGCACCGTCCAATCCGCAGACCGCCATCGACCGTGCCATCACGGAGTACCTGCAGCATATGAGCGTCGAACGGGGACTGGCGTCCAACACCCTTTCCGCCTACCGCCGGGACCTCACCCGGTACTCCCGCTACCTGGCGGGGGCGGGCTGCCAGAGCCCGGACCAGGTCACCCGGCATCATGTCACGGGGTATGTCCAGGCCCTCTCTGACGGTTCCGACGGCGGGACTGCCCTGGGCGTCAGGTCCGCCGCCAGGACAGTAGTGGCGGTTCGCGGCCTGCATAAGTTCTGGGCCCTGGAAGGACTGACCACCACGGACCCCGCGAGTGATGTCCATCCGCCCATGCCCGGCAAGAGGCTGCCCAAGGCGATCAGCGTGGATGAGGTCACCCGGATCCTTGAAGCAGCCGGCACGGACACCGCCACCGGCCTCCGGGACCGTGCCCTGCTGGAATTCCTGTACTCCACCGGGGCAAGGATCAGCGAGGCAGTTGGCCTTGATGTGGACGACATCTCACTCCAGGAGGCAGAGGCCGGCCCCGCGATCGTCCGGCTCTTTGGCAAGGGCTCGAAGGAACGGCTGGTGCCGCTGGGATCCTACGGCGCGCGAGCCCTGGACGCCTACCTGGTACGAGGCCGTCCGCTGCTGGCAGCAAAAGGCAAAGGCACACCGGCGCTGTTCCTGAACGCCCGGGGTGGAAGGATCAGCCGCCAGAGCGCCTGGACCATCCTCAAGGCAGCCGCGGACAAAGCCAACATCACCAAGGCTGTCTCGCCGCACACTCTCCGCCACTCGTTTGCCACCCACCTCCTGGAAGGCGGCGCGGATGTCAGGGTTGTCCAGGAACTGCTGGGCCACGCTTCAGTGACCACCACGCAGGTCTACACCCTGGTCACCGCCGATACGCTCCGCGAAATCTATGCGGCAGCGCACCCCCGCGCTTTGGGGTGAMPQSIAADAAAPVSPVADKAPAPSNPQTAIDRAITEYLQHMSVERGLASNTLSAYRRDLTRYSRYLAGAGCQSPDQVTRHHVTGYVQALSDGSDGGTALGVRSAARTVVAVRGLHKFWALEGLTTTDPASDVHPPMPGKRLPKAISVDEVTRILEAAGTDTATGLRDRALLEFLYSTGARISEAVGLDVDDISLQEAEAGPAIVRLFGKGSKERLVPLGSYGARALDAYLVRGRPLLAAKGKGTPALFLNARGGRISRQSAWTILKAAADKANITKAVSPHTLRHSFATHLLEGGADVRVVQELLGHASVTTTQVYTLVTADTLREIYAAAHPRALGPGPT0022000_1919DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763NANA
D1-29_01673273hypothetical proteinATGTTGGCAGCCAGTGAACATGACTTCATGGATCTGCACACTCAGCATTTCACGCGCGTCTACCGCTACATTGCCTACCGCATCAATGACCTGCCGCGCGCCGAGGAACTGGCGGCAGACGTCTTCAGGATCGCCTGGGAGAAGCAGCCGGTGGAACCGCCCGGCATCGGCTGGCTGCTCGCCACCGCCCGGAGAGTCCTCAGCAACGAGTACAAGGGCCGCCGTCGCCGCCTTGAACTCATCGATCGGCTGAAGGACCAGGCCCGCATCTAGMLAASEHDFMDLHTQHFTRVYRYIAYRINDLPRAEELAADVFRIAWEKQPVEPPGIGWLLATARRVLSNEYKGRRRRLELIDRLKDQARINANANANANA
D1-29_01674198hypothetical proteinGTGGCCGAGGTCCTGTTACAGCTCAAGGACCGGGACCGGGAGGTCCTGATGCTCAGCTACTGGGACGATCTGAGCACCGCCGAACTGGCCCAGACGCTGGGCTGTTCCCCCTCGGCGGCTGCCGTCCGCCTTCACCGGGCCCGCCGGGCATTCGCCAGCGCAGCCCCAGCGCAACTCATGACAGAACGGAAGGGCTAGMAEVLLQLKDRDREVLMLSYWDDLSTAELAQTLGCSPSAAAVRLHRARRAFASAAPAQLMTERKGPGPT0014960_11500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_01675789hypothetical proteinATGGACCGGATCGAACAGCTCATGAAGGATGCCAAGCCACTGGTGGGGGAGCCACGAACCGCTGCGGCAGCTGCAGCCGCCCGCTCCGCCGTCTTCACTGATGACCCCAATGTGGTTCCGCTGTCAGGGCACAGGGCCGCCCGCCGGGCAGGTATCCGCGCGGCAGTTGTCGCAGTCGCGGCCGCGTCGGTGGTCGGAGCCGTTGTCCTTGCCGGCGGAATGGGGGCGCCGCAGCCGGGCCCCGCGCCCGCAGCCACCACCAACGCCATAACTGCTCCAAGCACCGCCACCCCGCCCCCGTCGAGTCCCACCGCCACGGCCACAGCACCTCCTCCTGCCACAGCACTTCCGGGCGTTACAGCCCAGCCAGCGCTGACCACCGGCGGCGTCCCGTGCGTCGTTGCCAACATTGACCAGCCCGCGAATACGCCGGCCAGGACCATCGGGCCGATCGCCGAAACGGAGCAGGGCTATTACACCGTGCTGGGCTGCGCCGAAGGTTGGCTGGCCTACTCGGTTTCAGACGACGGCACCAGGGCACTTCAGCTCGACGGCGGAAACGCCTGGTACCGCATCGCCAAGCTGCAAAATGGCAGGTTTGTCTTTGACGTTCAGGCGCCCTGGTCCACGGTTTTCAGCTGGGAATTCCACGCCCTCAACAATGATGTCTCGCAAAACGGTCAACGGGTGACTGCGCAGGAAGCGATGGACCAGGAATTCGCTCAGAAAGGCATCCCCGTTGAGCTCCGCCCGCAACTTGTGGGACAAGGCCCGGCCGACGCCTCCTGAMDRIEQLMKDAKPLVGEPRTAAAAAAARSAVFTDDPNVVPLSGHRAARRAGIRAAVVAVAAASVVGAVVLAGGMGAPQPGPAPAATTNAITAPSTATPPPSSPTATATAPPPATALPGVTAQPALTTGGVPCVVANIDQPANTPARTIGPIAETEQGYYTVLGCAEGWLAYSVSDDGTRALQLDGGNAWYRIAKLQNGRFVFDVQAPWSTVFSWEFHALNNDVSQNGQRVTAQEAMDQEFAQKGIPVELRPQLVGQGPADASNANANANANA
D1-29_01676486hypothetical proteinATGACAGCAGTAGCCGTAACGCTGTGCTTCCTGACCCGGGATGTTGCCGGCGTGCCCCAGGTCCTGCTGGGTACCAAGAAGACCGGCTTTGGGCGGGGAAAGATCGTGGGCCTGGGCGGCCACGTTGAACCTGGCGAGACCGACGCCGAAGCCGCATGCCGGGAAGTGCACGAGGAATCCGGCGTTGTGGTCCTGCAGGAGGATCTGCGCGACGCCGGCGTGGTGGTGTTCGACTTCCCTGCGCGCCCGGAGTGGAACATGACCACCAGGCTGTTCGTTGCAGCCCGGTGGGCGGGGGAGCCGGCCGAAAGCGCCGAAATCCTGCCCGAATGGTTCGACGTCGGGTCCCTTCCCGTGGACAGGATGTGGCAGGATGCATCCCATTGGCTCCCATTGGCCCTTAACGGCTCGGTGCTGCACCTCGTGGTGGTGCTGAACGAGGACAACGAGACTGTGCGTGAAGTGCTCGATTACACAACCCGCTGAMTAVAVTLCFLTRDVAGVPQVLLGTKKTGFGRGKIVGLGGHVEPGETDAEAACREVHEESGVVVLQEDLRDAGVVVFDFPARPEWNMTTRLFVAARWAGEPAESAEILPEWFDVGSLPVDRMWQDASHWLPLALNGSVLHLVVVLNEDNETVREVLDYTTRNANANANANA
D1-29_01677510sigWCOG1595ECF RNA polymerase sigma factor SigWGTGCTTTCAGAGCGCGAGTTGGCGTTTATCGCCTTGTACAAGGACAGCTATCCACGGATCCACACGTTCGTACAACGGCGCGTGAATGATCCCGAACTGGCCCAGGAACTGGCGGCAGACGTCTTCCGGATCGCCTGGCAAAAGTGGGACGGCACTTCCGGGATCGAGATTGCGTGGCTGTTCACCGTTGCCCGCAACCTGATCGGCAACGCCTACCGGGGCCGGGACCGCCAGCGTGCGCTGCAGGAACGCCTGGTGGCGTCCGCAGCTGATGGGCCTGGATCGGTCAGCGACAACATGTCAGTGGAGCAAGCGCTGATGGCGCTGCGGGAAAAGGACCGGGACGTTCTCCAGCTGGCCTACTGGGACGGGCTGTCGGTGGTTGAGATCGCCCAGGTACTGCAGTGCACGCAGACTTCGGCCAAGGTGCGCCTGCACCGCGCCAGGGAAGCTTTCCGCAAGCTCCTGCCGGCTCTTTGTGAACCAATCGACCAGAAAGTGGGGGCCTAAMLSERELAFIALYKDSYPRIHTFVQRRVNDPELAQELAADVFRIAWQKWDGTSGIEIAWLFTVARNLIGNAYRGRDRQRALQERLVASAADGPGSVSDNMSVEQALMALREKDRDVLQLAYWDGLSVVEIAQVLQCTQTSAKVRLHRAREAFRKLLPALCEPIDQKVGAPGPT0014960_11500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_01678999hypothetical proteinATGGATATCATCAGGAATCTCGTTTCAGACGCTGACCCCGTTGCCAGCAAACCCGTTGCTTCGGACGGCGAAGAGGCCCTTCGCGCAATGTTTTCCCGGCCGGAGGTCTTCGCCGACAGGGTGTCCCCGAACGTTCCCACCCTGGCAGAGCGGAGGCAGCGCCGTCACAGGATCGCAGGACTGCTGAGCGTTGCCGCGGCCGCGGTTACGGCAGGGGTCCTGGTGTCGCTCAACCTTGGACCTCTTACCTCCGCACCGGCGCCGGCGGGCACCTCCACCGCCACTGCCTCACCCACCGTGAGCAGCAGCATCTCACCAACGCCAACGCCAACGCCAACGCCAACGCCTACTCCCAGCCCGGTCCCCTCTACCGGGGCTTCCGCTGCTGCGCCGGCGGCGCCTCCCGTGACCGCTTCCGCGCCGCCTGCGCAAGCGTGGAAGACGTACCTCAGTGCCGACGGCAGGATCTCCTTTGAGTATCCCGCCGACTGGAGCGTGCAGCAGCCCCACACGATCAACCCGGACTATCCTGCCGTGGACGCCGTGGTCAGGGACCAGGCCGGGAAGGAGATGGCCGCCCTTCACTACGGGGCCTCCGGTGGCATCGGTGGCGTTTGCTCAACGCCGCCCGTGCCCTATTCCGTCCTTGATTCGGTAGAACTCGCCCTGCCGTACAACCCGGCGGCGTCCAACGTCATCACACCCCGGTTTACCTTCCGCGCCCTGGTCGAGGGGGACAAAGTCACTGCCTCCTACGGGATCACCAGCAGCGCTGCCGGTGTGGATGGAAAGAGCTGCATGTTCTACAACGTGGTCAACGGCCCTGCGGAAGCCCCAATGTACTCCTTCGCCGACAACGTCCAGGTGAACGCCGGCGCGGCAGGCACCGCGAACAGCAAGACGTTCCGTTCGCTGGAGGAGGCACGCGCCTACATGCAGACTCCGGAGTACCTCAACGTCAAACGAATGATCACGTCGCTGGCAATCAAGGCGGACTAGMDIIRNLVSDADPVASKPVASDGEEALRAMFSRPEVFADRVSPNVPTLAERRQRRHRIAGLLSVAAAAVTAGVLVSLNLGPLTSAPAPAGTSTATASPTVSSSISPTPTPTPTPTPTPSPVPSTGASAAAPAAPPVTASAPPAQAWKTYLSADGRISFEYPADWSVQQPHTINPDYPAVDAVVRDQAGKEMAALHYGASGGIGGVCSTPPVPYSVLDSVELALPYNPAASNVITPRFTFRALVEGDKVTASYGITSSAAGVDGKSCMFYNVVNGPAEAPMYSFADNVQVNAGAAGTANSKTFRSLEEARAYMQTPEYLNVKRMITSLAIKADNANANANANA
D1-29_016791140gltA_12-methylcitrate synthaseGTGGCTGAACAGGACATCAAAAAGGGCCTCGCCGGCGTCGTGGTGGATTACACCTCCGTCTCGAAGGTCAACCCGGATACCAATTCGCTGCTGTACCGGGGCTATCCGGTGCAGGAGCTGGCTGCCAGGTGCAGTTTTGAGGAAGTGGCCTACCTGCTGTGGAACGGTGAGCTCCCCAACGCGGAGCAGCTGGCCGAATTCACCGCGCGGGAGCGCGCCGGCCGTGCCCTGGATCCGGTGGTCAAACAGGTCATCGATGCGCTGCCCGTGACCTCGCACCCGATGGACGTCTGCCGGACGGCGGCTTCCGTTATGGGTGCACGGCACCCACTTACCGAAGACTCCTCCCGGGAGGCCAACATGGCCAAGGCGGTGGATCTCTTCGCCGCCATGCCTGCCGTGGTGGCCTACGACCAACGACGCCGTCACGGTCAGGGAGCAGTTGAACCCCGCGATGACCTGGGCTATTCGGCCAACTTCCTGTGGATGGCCTTCGGCGAGGAGCAGGTCCCGGAGGTGGTGGAGGCCTTCAACGTCTCAATGATCCTGTACGCCGAGCACTCCTTCAATGCCTCGACGTTCACGGCACGGGTCATCACCTCAACGCTTTCAGACCTGCACTCCGCTGTCACCGGAGCCATCGGGGCGCTCAAGGGAGCACTGCATGGCGGAGCCAACGAGGCCGTGATGCACACCTTCGACGAAATCGGCATCCGGCCTGAAGAGTCAATGGAGGAGGCAGCCGCGAGGGCCAGGACCTGGATGGAGGACGCCCTGGCCAAGAAAAAGAAGGTCATGGGATTCGGCCACCGCGTCTACAAGCACGGCGATTCCCGCGTGCCCACCATGAAGGCCGCCCTGGATAAGATGATCGCGCACTACGGGCGGCCCGAGCTCCTGGGCCTGTACAACGGCCTGGAATCCGCCATGGAGGAGGCAAAGGCCATCAAGCCCAACCTCGACTATCCGGCCGGGCCCACGTACCACCTGATGGGGTTCGACACCCCCACCTTCACTCCCCTGTTCGTCGCCAGCCGGATCACCGGCTGGACGGCCCACATCATGGAGCAGCTGGACTCGAACTCCCTGATCCGTCCGCTGAGCGAATACAACGGCGCCGAAGAGCGGCACGTCCCGTAGMAEQDIKKGLAGVVVDYTSVSKVNPDTNSLLYRGYPVQELAARCSFEEVAYLLWNGELPNAEQLAEFTARERAGRALDPVVKQVIDALPVTSHPMDVCRTAASVMGARHPLTEDSSREANMAKAVDLFAAMPAVVAYDQRRRHGQGAVEPRDDLGYSANFLWMAFGEEQVPEVVEAFNVSMILYAEHSFNASTFTARVITSTLSDLHSAVTGAIGALKGALHGGANEAVMHTFDEIGIRPEESMEEAAARARTWMEDALAKKKKVMGFGHRVYKHGDSRVPTMKAALDKMIAHYGRPELLGLYNGLESAMEEAKAIKPNLDYPAGPTYHLMGFDTPTFTPLFVASRITGWTAHIMEQLDSNSLIRPLSEYNGAEERHVPPGPT0001480_753DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
D1-29_01680903prpB_2COG25132-methylisocitrate lyaseATGCTGTACTCGGCCGTCACCCCCGAGCAGAAGCGGATCACCCTGCGCGAACTCCTCGCCTCCGGAACCATCCAGCAGTTCCCCGGGGCGTTCAATCCGCTCTCCGCCCGGCTCATCGGGGAGAAGGGCTTCGCCGGTGTCTACATCTCCGGCGCAGTGCTCGCCAACGACCTGGGGCTGCCGGACATCGGCCTGACCACCCTGACCGAGGTAGCCACCCGCGCCGGGCAGATCGCCCGCATGACCGACCTGCCCTGCCTGGTGGACGCCGACACGGGCTTCGGTGAACCGATGAATGTGGCCCGCACAGTCCAGGAACTCGAAAATGCCGGCCTGGCGGGCCTGCACATCGAGGACCAGTTCAATCCCAAACGCTGCGGCCACCTGGACGGGAAGAACGTGGTGGACCTTGACACCGCCACCAAGCGGATCCGGGCTGCCGTGGACTCGCGCCGCGACCCGAACTTCCTCATCATGGCCAGGACCGACATCCGGGCAACCGACGGGCTGGAAGCCGCGCAGGACAGGGCCAAGGCCCTGGTGGACGCCGGAGCGGACGCGATCTTCCCCGAAGCCATGAAGGACCTTGCCGAATTCCAGGCGATCAGGGATGCGGTGGACGTTCCCATACTGGCCAACATGACGGAGTTTGGCCAAAGCGCGCTCTTCACGGTGGACCAGCTCGCTGCTGCCGGCGTCAACATGATCATTTATCCGGTGACGCTCCTCCGTAGTGCCATGGGCGCCGCGGAGCGTACGCTGGAATCGATCAAGGCTGACGGAACCCAGGAGGCGCAGGTCGGAACCATGCTGACGCGTGCGCGCTTGTATGACCTCGTTGACTACGAGGCCTACAACCGCTTCGATACCGGAATCTTTAACTTCCAGATACCCGGTAAGTGAMLYSAVTPEQKRITLRELLASGTIQQFPGAFNPLSARLIGEKGFAGVYISGAVLANDLGLPDIGLTTLTEVATRAGQIARMTDLPCLVDADTGFGEPMNVARTVQELENAGLAGLHIEDQFNPKRCGHLDGKNVVDLDTATKRIRAAVDSRRDPNFLIMARTDIRATDGLEAAQDRAKALVDAGADAIFPEAMKDLAEFQAIRDAVDVPILANMTEFGQSALFTVDQLAAAGVNMIIYPVTLLRSAMGAAERTLESIKADGTQEAQVGTMLTRARLYDLVDYEAYNRFDTGIFNFQIPGKPGPT0001555_525DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417NANA
D1-29_016811521prpD2_1COG20792-methylcitrate dehydratase 2ATGGTCAAGGAACACCACGTCCGTGTCTATAAAAGCGAGGAAAACCTGGCCCGGGAGGACCAGTTGGCGCACAAGATCGCCGTTGTCGCGGCGGATCCCGTCGAGGTGGGCGATGACGTCACCGAGATGGTGATTAACCGGATCATCGACAACGCTTCGGTAGCTGTCGCTTCCCTCAACCGTGCCCCCATCATCGCCGCCCGGGCGCAGGCGCTTAGCCATGGCCCCAGCACCGGCGGCAAAGGCGCCAAGGTCTTTGGCATCAGCGAGCGCGTCTCCCCCGAGTGGGCAGCCTGGGCAAACTGTGTGGCCGTCCGGGAGCTGGACTACCACGACACGTTCCTGGCAGCGGACTACTCCCACCCCGGGGACAATATCCCGCCCATCCTGGCGGCAGCGCAGCACAAGGGCTCCAGCGGCAGGGATCTGGTGCGCGCCATTGCCACCGGGTATGAAATCCAGGTCAACCTGGTGAAGGCCATCTGCCTGCACAAGCACAAAATCGACCACGTCGCCCACCTGGGACCATCTGCCGCCGCCGGCATCGGCACGCTCCTGGGGCTCGACGTCGAAACGATCTTCCAGTCTGTAGGCCAGGCACTGCACACGACAACCGCCACCCGTCAGTCGCGCAAGGGTGAAATCTCGACGTGGAAGGCCCACGCCCCCGCGTTCGCAGGAAAAATGGCCGTGGAAGCTGCCGACCGCGCCATGCGTGGCCAGACCTCCCCGGTGCCGATCTATGAAGGCGAAGACGGCGTGATCGCGTGGATGCTTGACGGCCCTGACGCCTCCTACACCGTTCCGCTGCCCACCCCCGGCGAGGCCAAGCGCGCCATCCTGGACACCTACACCAAGGAGCACTCCGCGGAGTACCAGGCTCAGGCATGGATCGACCTGGCCCGGAAACTGCATAAGGACCATCCTGAGGCCACCGACCCGGCGAACGTACAGTCCGTGTTGATCAAGACCAGCCACCACACCCACTACGTCATCGGATCCGGAGCCAACGACCCCCAGAAGTACAGCCCGACAGCCAGCCGCGAGACCCTTGATCACTCGATCCCGTACATTTTTGCTGTCGCCCTGCAGGACGGCGCCTGGCACCATGTGGACTCGTACTCACCGGAACGGGCAGCGCGGCCGGACACCGTGGAACTGTGGCATAAGGTCACCACCGAGGAAGACGCCGAGTGGACCCGCCGGTACCACTCCCTTGACATCAACGAAAAGGCGTTTGGCGGCTCGGTGGAAATCACCCTCGCCGACGGCACCGTCGTCACCGACGAAATCGCCGTCGCCGATGCCCACCCGCTGGGCGCCCGCCCGTTCGCCCGCGAGCAGTACATTCACAAGTTCCGTACCCTCGCCGCCGGCCTCGTGGAGGAGGCCGAAATCGAACGGTTCCTCGCCGCCGTCGAACGCCTCCCCGAACTGGCCGCCGGGGAACTGGACCAGTTGAACGTCACGGCCGCGGCCGGAGTCATTGATTTCGGTGCCGCCCCCAAGGGGCTGTTCTAAMVKEHHVRVYKSEENLAREDQLAHKIAVVAADPVEVGDDVTEMVINRIIDNASVAVASLNRAPIIAARAQALSHGPSTGGKGAKVFGISERVSPEWAAWANCVAVRELDYHDTFLAADYSHPGDNIPPILAAAQHKGSSGRDLVRAIATGYEIQVNLVKAICLHKHKIDHVAHLGPSAAAGIGTLLGLDVETIFQSVGQALHTTTATRQSRKGEISTWKAHAPAFAGKMAVEAADRAMRGQTSPVPIYEGEDGVIAWMLDGPDASYTVPLPTPGEAKRAILDTYTKEHSAEYQAQAWIDLARKLHKDHPEATDPANVQSVLIKTSHHTHYVIGSGANDPQKYSPTASRETLDHSIPYIFAVALQDGAWHHVDSYSPERAARPDTVELWHKVTTEEDAEWTRRYHSLDINEKAFGGSVEITLADGTVVTDEIAVADAHPLGARPFAREQYIHKFRTLAAGLVEEAEIERFLAAVERLPELAAGELDQLNVTAAAGVIDFGAAPKGLFNANANANANA
D1-29_01682642rspR_1COG1802HTH-type transcriptional repressor RspRATGCGTGCCAGCGACAGGGCCTACGCCGCCCTCCGTGAGGACATTGTGGAGTGGCGCCTTCGTCCCGGCACGCTTCTTGCGGAAGTGGAGCAGTCCGAGCGCCTGGGCGTCTCGCGCACTCCGCTGCGGGAGGCGCTGGGCCGGCTCACCGCAGAAGGACTTACGACGGCGGCGGGCGGCCGCGGCGTCGTCGTCACCGACATTTCCCTGGCGGACATCGACGAACTGTTCGAGCTCCGTGAAACCCTTGAAGGCAGGGCTGCGGCGCTGGCTGCGGAACGGGGCGATCCTGAAGAGTTCAGGCAACTGCACCGGGAACTGCTGGCGGGCAAGGACCTGATCCGCAGCGACGATCCTGCAAAGCATGAATACTACGGGCTCGTGGCGCGCCTTGACGCGGCCATCGATGCTGCAATTTCGAACTCCTACCTGGCCCAGGCCATGGGCAGCCTCAGGGTCCACCTGGTCCGGGTCCGCCGGCTGGCAGCCAACGACGCTCCACGCCTTGCCGCGGCAGCGTCCGAACACGCCGCCATTGCCGAGGCGATTGCCGAACGCAATCCCCGCCTGGCCGAGGCCGCCACCACCGTGCACCTGCACCGCAGTCTTTCCCACCTCAAAGCAACGCATACACCTCAATAGMRASDRAYAALREDIVEWRLRPGTLLAEVEQSERLGVSRTPLREALGRLTAEGLTTAAGGRGVVVTDISLADIDELFELRETLEGRAAALAAERGDPEEFRQLHRELLAGKDLIRSDDPAKHEYYGLVARLDAAIDAAISNSYLAQAMGSLRVHLVRVRRLAANDAPRLAAAASEHAAIAEAIAERNPRLAEAATTVHLHRSLSHLKATHTPQNANANANANA
D1-29_01683720dcuRCOG4565Transcriptional regulatory protein DcuRGTGAGCGAAATCCGCGTCCTCGTAGTGGAGGACGAGCCGGTTGCCTCAGCCGCGCATGCTGCATATGTGGGCAGGCTCGAGGGATTCACCCTGGCCGGCACCGCTCCGGACGGACAGTCCGCGCTCCGCCTGCTCTCCGACTTTGCAGCCTCCGGTGACCCTGTGGAACTCGTCCTGCTGGACATGAACCTTCCCGATCTTCATGGCCTGGACATCGCCCGGCGGATGCGCGCGGCCGGAATACTCGCCGACATCATTGCCATCACGGCTGTCAGGGAACTGGCCATCGTCCGGAGCGCCGTGGCCATCGGCGTTGTCCAGTACCTCATCAAGCCCTTCACCTACGCCACCTTCGCCGACAAACTGGCCAGCTACCGCCTCTTCCGGCAACAGCTCGCCTCCCCCGAACCCGGCTCTGGTTCGCGAAGGACCGGTGCCTCACAGAGCGAAGTGGACCAGGCCTTCGCAAGCCTCCGGGCGCCATCTGAGATGCCTTTGCCCAAAGGACTCTCCGTCTCAACACTGGAGTCCGTGCAGGACTACATGAAGCAACATTCCGAGGCAGTCTCAGCCGCGGAGGTCATGGATGCGCTGGGCATGTCCCGCGTCACCGCGCGGCGCTACCTGGAGTATTTGGCCGATGCCGGAACAGTCTCCCGAACGGCCCGGTACGGGACACCGGGGCGGCCGGAGAATGAATACAAGTGGAGTGGGCGCTAAMSEIRVLVVEDEPVASAAHAAYVGRLEGFTLAGTAPDGQSALRLLSDFAASGDPVELVLLDMNLPDLHGLDIARRMRAAGILADIIAITAVRELAIVRSAVAIGVVQYLIKPFTYATFADKLASYRLFRQQLASPEPGSGSRRTGASQSEVDQAFASLRAPSEMPLPKGLSVSTLESVQDYMKQHSEAVSAAEVMDALGMSRVTARRYLEYLADAGTVSRTARYGTPGRPENEYKWSGRNANANANANA
D1-29_016841641dcuS_3COG3290Sensor histidine kinase DcuSATGATCCACCGCTGGAGTATCGCCCGCCGGCTGTTTGTGGCCAACCTGCTGATTGTGCTGGCCTTCCTCGCGATCGTGGGCACCGCAACGTTCACCGACGCCAGGGACCGCGCCTACGAGGAAGCCGGGCGCCGCATGACGGGGGTGGCTGCCGCCATCGCCGCGAATCCCCTGGTGCTCCAGGCAGCGGATGCGCCTGATCCGACGGCGGTACTGCAGCCATATGCGCTCGATGTGATGGCGGGAGCGGGCGTGGACTTTGTCACGATCATGGCCCCGGACCGCACCCGCTGGACCCATCCACGGGACGAGGAGATCGGCAGGCCGTACATTGGTTCCATCGATGCCGCACTCCAGGGCGGCGTCCTGACAGAGGTCACGGCAGGCACCTTGGGACCGTCGGTGCGGACCATCGTGCCCGTCAAGGACGCGGGCGGCAACGTGAAGGCGCTGGTGGCGGCAGGCGTCACGGTCCGGACCGTCGATGTGGCCCTGTCCAGCAGGCTGCCGGCGCTGCTGGGCATCGGGCTGGCCTTGCTCGTGGGCGGATCGGTTGCTTCGTGGCTGTTGGGCCGTTACCTCCGCAGGGTCACCCGGGGCTGGGGACCGGAACAGCTCGCTCAGCTCTTTGCCTACTACGAATCCGTCCTGCACTCCGTCCGGGAAGGGCTCATCCTGATCGACACCAAAGGCAGGGTGGTCATGTATAACGACCAGGCTGCTGAACTGCTGGGACTCGAGCCGCGGGGATCCGGCGATGATCCGTCCCAGCCGCCGTCACTGGCCGACCTCCCCCTTGCCGACAGCCTGAAGGAACTTTTTGAATCGGGGCGCACCGCCCTCGATGAAATCCATCTGACAGGACCGCGCATTGTGGTGGTGAACCAGGGCCCCGCCCTTGGTCCCGAGGCACCGGGCGGGCGCCGCCCTGCCGTGTTCGGCACGGTGGCCACCATCCGCGACCGGACGGAAATTGAATCCCTGGGCAGCGAGCTCCAGACCATGAAGACGCTCTCTGACGCCCTTCGGGCCCAAACACACGAACATGCGAACCGGCTGCACACCATGGTGTCCCTCCTTGAACTGGGCAGGACCCGCGAGGCCCTGGAGTTCGCCACAAAGGATCTGGAGCTCAGCCAGCAGCTCACCGACGAAATGATCAGCTCCGTGGATGAACCCGTCCTCAGTGCCCTCATCATGGGCAAGGCGTCCGAAGCCAACGAACGGGGTGTGAAGCTGTCGCTGAGGACCCTGGGCTCCGCCTCCCTCACGGGATTGGCAGTCCAGGACCTCGTCACCATCCTGGGCAACCTCCTGGACAATGCCATTGACGCGGCTGCCGACGGCGAGGCGCCCCGGGAGGTGGAACTAACAGTGGAGTCCGACGCCGAGGGCCTGGACATCACCGTGCGGGATTCCGGCTCCGGGGTTGATCCCGAAGCGGTGGACCATATCTTCAAGCACGGCTTCAGCACCAAAAAGGCAGGCCCCTTCGGACGCGGCGTGGGCCTGGCCCTGGTCCGGCAGGCCGTGCAGCGCCTGGACGGTACGATGACCATCACAGGGACGGACGGAGCGCAGTTCCATGTCTTCCTGCCGGCCATGGCGCCCGGCGCCGACAAAGAGGAGCAGTACCAGTGAMIHRWSIARRLFVANLLIVLAFLAIVGTATFTDARDRAYEEAGRRMTGVAAAIAANPLVLQAADAPDPTAVLQPYALDVMAGAGVDFVTIMAPDRTRWTHPRDEEIGRPYIGSIDAALQGGVLTEVTAGTLGPSVRTIVPVKDAGGNVKALVAAGVTVRTVDVALSSRLPALLGIGLALLVGGSVASWLLGRYLRRVTRGWGPEQLAQLFAYYESVLHSVREGLILIDTKGRVVMYNDQAAELLGLEPRGSGDDPSQPPSLADLPLADSLKELFESGRTALDEIHLTGPRIVVVNQGPALGPEAPGGRRPAVFGTVATIRDRTEIESLGSELQTMKTLSDALRAQTHEHANRLHTMVSLLELGRTREALEFATKDLELSQQLTDEMISSVDEPVLSALIMGKASEANERGVKLSLRTLGSASLTGLAVQDLVTILGNLLDNAIDAAADGEAPREVELTVESDAEGLDITVRDSGSGVDPEAVDHIFKHGFSTKKAGPFGRGVGLALVRQAVQRLDGTMTITGTDGAQFHVFLPAMAPGADKEEQYQNANANANANA
D1-29_016851347dctA2COG1301C4-dicarboxylate transport protein 2ATGGCTTCTCAACGAGGAGAGTCAGCAGCGCCTGCAAAGGCCGCCCGCAAGGGGCTGGACAAATCCCACTACCTCTACATTGCCGTCATCGCCGCCGTGATCCTGGGCGCCCTTGTCGGTCTGATATTCCCCGAGGTCGGCAAATCGCTGAAACCGCTCGGCGACGGCTTCATCAAGCTCATCAAGATGATGATTGCACCGATCATCTTCTGCACCATCGTCCTGGGCATTGGCTCCATCGCCAAGGCAGCAACCGTTGGCAAGGTGGGCGGCCTGGCCCTGGGCTACTTCGTGCTCATGTCCACCTTCGCCCTGGGCATCGGCCTTGTGGTTGGTAACCTGATCCACCCGGGTGAAGGTTTGAAGCTGGCAGCATACGATCCCAACAAGAAGGCAGAAGTAGACAGCACCGTTGCCTTCCTCCTGGGCATCATTCCGGGCGACATTCCGGTTCTGCCCACACTCTTCGCCGCCATCCTCGTAGGCTTTGCCCTCCAGAAGATGGGCCCGCAGGGTGCTCCTGTCCTGAAGGCCATCAGCCACGGCCAGGTGCTGGTATTCCGGATCCTCATCATGATCATGTGGCTTGCTCCGGTGGGCGCCTTCGGTGCCATCGCCGCCGTCGTCGGTGCGACTGGTGTCGCTGCAATCGTCAGCATGTTCACCCTGATGGCCGCCTTCTACATCACCTGCGCCCTGTTCATCGTGGTGATCCTCGGTGGCCTGCTCCAGGTAGTGACCGGCGTGAACATCTTCAAGCTGATGAAGTACCTGGCCCGCGAATACCTCCTGATCTTCTCCACCTCTTCCTCCGAGGCAGCACTGCCCCGCCTCATCGCCAAGATGGAGCACCTGGGTGTGTCCAAGCCGGTTGTTGGCGTCACCGTACCCACCGGTTACTCCTTCAACCTGGACGGCACCGCCATCTACCTGACCATGGCGTCACTCTTCGTGGCCAACGCCATGGGAACCCCGCTGGATCTCGGCGCCCAGGTATCCCTGCTGATCTTCATGATCATCGCCTCCAAGGGTGCAGCCGGTGTCACCGGTGCAGGCCTGGCCACACTGGCCGCCGGCCTGCAGGCACACAAGCCGGAACTGCTCGGCGGCGTGGGCATGATCGTCGGAATCGACCGGTTCATGTCTGAAGCCCGCGCTCTGACCAACTTCACCGGCAACGCCGTAGCCACCCTCCTGATCGGTACCTGGGTCAAGGAAATCGACGGAGCGCAGGTCACCCGTGTCCTGTCCGGCGAGGAGCCCTTCGACGAGACGACCATGATCGCCGGCCACCATGAGGTCCAGGAAAGCCCGGCCCCCGGCAAGGCTGTTCCCGCCACCGTCTAGMASQRGESAAPAKAARKGLDKSHYLYIAVIAAVILGALVGLIFPEVGKSLKPLGDGFIKLIKMMIAPIIFCTIVLGIGSIAKAATVGKVGGLALGYFVLMSTFALGIGLVVGNLIHPGEGLKLAAYDPNKKAEVDSTVAFLLGIIPGDIPVLPTLFAAILVGFALQKMGPQGAPVLKAISHGQVLVFRILIMIMWLAPVGAFGAIAAVVGATGVAAIVSMFTLMAAFYITCALFIVVILGGLLQVVTGVNIFKLMKYLAREYLLIFSTSSSEAALPRLIAKMEHLGVSKPVVGVTVPTGYSFNLDGTAIYLTMASLFVANAMGTPLDLGAQVSLLIFMIIASKGAAGVTGAGLATLAAGLQAHKPELLGGVGMIVGIDRFMSEARALTNFTGNAVATLLIGTWVKEIDGAQVTRVLSGEEPFDETTMIAGHHEVQESPAPGKAVPATVPGPT0001450_863DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-29_01686960COG1192putative proteinATGGGCGCTGGAGAGTCAGCGGCAGAAAAAATCACCGTCATCGAAAGTGTGGATAGATACGTGAGCAGCGAACAGGGTTCAGCAACTCTGGAAGGCACGGAACTGGATCTGGAAGACGCCGTAATGGGTCCCACCGGGCGCCCGTACCGCGAATTCCCGGAACCTGCCCCTCTGTCGTCCCATGGTCCGGCCCGTGTCATCGCCATGGTCAACCAAAAAGGCGGCGTCGGCAAAACCACGTCCACCATCAACCTGGCCGCGGCCTTGGCAGAATACGGCCGCAGGGTCCTGCTGGTGGACTTCGACCCCCAGGGCGCTTTGTCCGCAGGCCTGGGCATCAATCCCCACGAACTCGACCTCACGATCTACAACGTCCTGATGGACCGCAAAGTGGACATCCGCGATGCCATTCACCAAACGGGCGTGGAGAATGTGGACCTGCTTCCGGCGAATATCGATCTGTCCGCTGCCGAAGTGCAGCTGGTCAACGAGGTAGCCAGGGAACAGGTCCTGGACCGTGCGCTGAAGAAGGTGGAGGACGACTACGACGTCGTGCTCATCGACTGCCAGCCTTCGCTGGGACTCCTGACAGTCAATGCCCTGACCGCCGCCCACGGCGTCATCATTCCCCTGATCTGCGAGTTCTTTGCGCTCCGCGCCGTCGCCCTGCTGGTGGAGACCATCGACAAAGTCCAGGACAGGCTGAACCCCCGCCTGCAGGTGGACGGCGTGCTTGCCACCATGTACGACGCCCGTACCCTGCACAGCCGTGAGGTCATCACCCGCCTGGTGGAGGCTTTCGGAGACAAGGTCTTCGAGACCGTCATCAAGCGCTCCATCAAGTTTGCCGACGCCACCGTCGCCGCGGAACCCATCACCAGCTATGCCGGCAACCACATCGGTGCCGATGCCTACCGCCGCCTGGCCAAAGAGCTGATCTCCCGCGGTGGCGCACCCTAGMGAGESAAEKITVIESVDRYVSSEQGSATLEGTELDLEDAVMGPTGRPYREFPEPAPLSSHGPARVIAMVNQKGGVGKTTSTINLAAALAEYGRRVLLVDFDPQGALSAGLGINPHELDLTIYNVLMDRKVDIRDAIHQTGVENVDLLPANIDLSAAEVQLVNEVAREQVLDRALKKVEDDYDVVLIDCQPSLGLLTVNALTAAHGVIIPLICEFFALRAVALLVETIDKVQDRLNPRLQVDGVLATMYDARTLHSREVITRLVEAFGDKVFETVIKRSIKFADATVAAEPITSYAGNHIGADAYRRLAKELISRGGAPNANANANANA
D1-29_01687834scpACOG1354Segregation and condensation protein AGTGGCGCACCCTAGCCAGGCCGTGCCTGAAACGAAACCCGGCTTTGAGGTCCGGCTGGCCAACTTCACCGGGCCTTTTGACCTCCTGCTTGGCCTGATCGCGAAGCACCAGCTGGACATCACCGAGGTGGCCATCGCAACGGTCACCGATGAATTCATTAAGTACATCAGGAAGCTCCAGAAGCTCGGCGAGGAATGGGCCCTGGATGAAGCCAGCGAGTTCCTGGTCATCGCCGCCACCCTTCTTGACCTGAAGGCCGCCCGGCTGCTTCCCGCCGGCGAAGTGGAGGACGATGAAGACATCGCACTGCTTGAGGCCCGCGATCTCCTTTTCGCCCGCCTGCTCCAATACAAGGCGTTCAAGCAGGTGGCGGGCCTGATCGGCGCCACGCTCGAGCAGGAGGCGCAGAGGTTCCCCCGCCAGGTGGCCCTCGAGGAGCACTTCGCCGCCATGCTTCCCGAACTGGTCTGGAAGCACACGCCGGACCAATTTGCCAGGCTGGCCGAGGCCGCCCTGAAGCCCAAGACGCCCAGGCCAACCGAGGTGGGCCTGGCGCATCTGCACGGCAGCACGGTCAGCGTCAGGGAACAGGCCGAAATCCTTGGCCTCCGGCTGCAGCTGGGGAAGCCGCTGTCCTTCCGGGCCCTGATTGCAGATGCAGACTCAACCCTGGTGGTGGTGGCCAGGTTCCTCGCCCTGCTGGAGATGTTCCGGGACAAGGTGGTGTCCTTCGACCAGCTTTCCCCGCTGGGGGACCTCACTGTGCATTGGACCGCTGACGGCCAGGACTGGTCCACGGAAAACCTGAGCGAAGAATATGAGGAGCAGCAGTGAMAHPSQAVPETKPGFEVRLANFTGPFDLLLGLIAKHQLDITEVAIATVTDEFIKYIRKLQKLGEEWALDEASEFLVIAATLLDLKAARLLPAGEVEDDEDIALLEARDLLFARLLQYKAFKQVAGLIGATLEQEAQRFPRQVALEEHFAAMLPELVWKHTPDQFARLAEAALKPKTPRPTEVGLAHLHGSTVSVREQAEILGLRLQLGKPLSFRALIADADSTLVVVARFLALLEMFRDKVVSFDQLSPLGDLTVHWTADGQDWSTENLSEEYEEQQNANANANANA
D1-29_01688735scpBSegregation and condensation protein BGTGAACGAGGACTTTCCGGATGCCGATTCACCTGTCAGTACCGATTCACCTGTCAGTACCGATTCAGCTGTCGGTACCGATCCGGCTGCCGGGTCCGGCGCGGAGCCAGGTACGGACGTTCGAAACCTGCCCGGCGGGGCCAAGGCCGCCATCGAAGCGGTACTGATGGTTCTTGATCAGCCGGCCACCGCCACCGAACTGGCAACGGGCCTGAACCTGACCGTCGCCGTCGTCGAACAGTTCCTGGCGGAACTGCAGCAGGAGTATAGCGGCTATACTGTTAAAGCCCCGGACACGGACGTTGCCAGCGACGCTGGCTTCAGCTCCAGCCCCCGGGGTTTTGAATTGCGGAATATCGCCGGTGGCTGGCGGATCTACTCACGCACGGAATTTGCCGACGTCGTTGGCAGGTTCGTGCTGGAAGGTCAGACAGCCAGGCTCACGCAGGCGGCGCTGGAAACACTTGCCGTCATCGCGTACCGGCAGCCCGTTTCCAGGGCAAGGGTGTCTGCAATTCGAGGAGTCAATGTTGATTCTGTCGTACGGACACTGACACAGCGCGGGCTGATCGAAGACTCGGGAACAGACCCCGAGTCGGGCGCCATCCTCTACCGGACCACGTCGTATTTCCTGGAACGGATGGGGATCGGCTCTGTGGCAGACCTGCCTCAGCTTTCCCCCCATCTTCCGGGGCTGGAAGGCATCGAGGAGTTCTACGACGCCGAAAGAATGTAGMNEDFPDADSPVSTDSPVSTDSAVGTDPAAGSGAEPGTDVRNLPGGAKAAIEAVLMVLDQPATATELATGLNLTVAVVEQFLAELQQEYSGYTVKAPDTDVASDAGFSSSPRGFELRNIAGGWRIYSRTEFADVVGRFVLEGQTARLTQAALETLAVIAYRQPVSRARVSAIRGVNVDSVVRTLTQRGLIEDSGTDPESGAILYRTTSYFLERMGIGSVADLPQLSPHLPGLEGIEEFYDAERMNANANANANA
D1-29_016891257hypothetical proteinATGACACAGGCGGGACGCCAGGGTTCACCACGTAACAGTTCGGGACGCAACAGTTCAGAACGCAACTCACCAGAGGGCGGCGCGAGCCGCAACACCGCCCAGGGCGGCGGGAGCCGCGGAGGTGCACAAGGCGGCGGGTTCCGCGGTGGTGCCGGCAAGCGCGGCGGCGGCTTCGGCGGTGCCGGCTTCAGCGGCGGCGACCGGCCCTTCAAGGCACCCAGGCCGCGCGAGGAGCGCTTCATTGATCCGGATGAAGCCCCGGCAGCCCAGGACGGGCGAGCTTCCTCGGATTGGAAGCCCAGCGCCAAGCCATCCTCGCGCAAACCGGCTGCCCGGAAGCCGGGCGCCAAAAAGGCCCCCGGAACGCCCGGGGCCCTCAAGCCGAAGCCGCGTACCGGTGCCCCTGGCGCTGCAGCATCCCGGGCCTTCGGCAGCGAACGTTTTGGCCAGAACCTGGGCCCCGTCCGCAAGCCGGCGCGCAAGCGCGGCCCCCGCGGCGCTGTTCCACAGTCCGAACTGCACGATGCCGACGGCGTCCGCCTGCAGAAGGTCATGGCCCAGGCCGGTGTGGCTTCCCGCCGCGTCTGTGAAGAAATGATCGCTGAAGGCCGGGTGGAAGTTGACGGCCAGGTGGTCACCGAACTCGGTGTGCGCGTGGACCCCAAAACTGCTGTTATCCACGTCGACGGCCTCCGTATCCAGCTCGATGACAACCTGGTCTACATGGTCTTCAACAAGCCCAAGGGCGTGGTGTCCACCATGGAGGACCCCGACGGACGTCCCTGCATCAGCGACTTCGTGCGGAAGACCCACCAGGGCGAACGCCTGTTCCATGTGGGCCGGCTGGACGTCGCCACCGAGGGCCTGCTGCTGCTGACGAACGACGGCGAACTGGCCAACCGGCTGACGCACCCTTCCTACGAGGTGCCCAAGACGTACCTCGTCCAGGTCCGAGGCCCCTTCCCCCAGGGTGTCGGCGCCCAGCTGAAGGCAGGTGTGGAGCTGGAGGACGGCATCGCATCCGTTGACTCCTTTAAACTGGTGGACTCCACCCCTGGCCACGTGCTGATCGAAGTGGTCCTGCACTCCGGCAAGAACCGCATTGTCCGGCGCCTCTTTGACGAGGTGGGCTTCCCGGTCCTGCGCCTGGTGCGCGTCAAGGTTGGACCCATCGGCCTGGGCGACCAGCGCCAGGGCAGCATCCGGAACCTCGGCAAGCAGGAAGTCGGTCACCTGCTGGCATCCGTAGGACTCTGAMTQAGRQGSPRNSSGRNSSERNSPEGGASRNTAQGGGSRGGAQGGGFRGGAGKRGGGFGGAGFSGGDRPFKAPRPREERFIDPDEAPAAQDGRASSDWKPSAKPSSRKPAARKPGAKKAPGTPGALKPKPRTGAPGAAASRAFGSERFGQNLGPVRKPARKRGPRGAVPQSELHDADGVRLQKVMAQAGVASRRVCEEMIAEGRVEVDGQVVTELGVRVDPKTAVIHVDGLRIQLDDNLVYMVFNKPKGVVSTMEDPDGRPCISDFVRKTHQGERLFHVGRLDVATEGLLLLTNDGELANRLTHPSYEVPKTYLVQVRGPFPQGVGAQLKAGVELEDGIASVDSFKLVDSTPGHVLIEVVLHSGKNRIVRRLFDEVGFPVLRLVRVKVGPIGLGDQRQGSIRNLGKQEVGHLLASVGLNANANANANA
D1-29_016901110hypothetical proteinATGTCCGCATTTCGCACGCACGGCCGCGGACACCTTAACGGGCCGGTAGTGGTGATTGGCACCGGGCTGCTCGGTGCCAGCATCGGGCTTGGCCTGCGTGGCCGCGGTGTGCCGGTGTTCCTGTCGGACACCTCTCCCACCAATCAGGCCGTCGCCGTTGATATCGGCGCCGGCCTGCCCCTGGGGGAGCTCGACGACGGGAAGCCGGAGCTTGTGGTGGTGGCTGCCCCGCCCGACGTGACTGCCGATGTGGTGGCAAAGGCGCTGGCTGACTACCCCGATTCCGTGGTGGTTGATATCGCCAGCGTTAAGGGTGCCATCCTGGACGAACTGCGCAGCCGCGGGGTGGACCTTGCCCGCTACGTGGGTACCCATCCCATGGCGGGCCGAGAGAAATCGGGGCCCGTCGCTGCCCGCGGCGAGCTCTTTACGTCCATGCCCTGGGTGCTCTGCCCGTCCGAGGAAACGTCAGCCGCCGCCGTGCAGACGGCGCATGCGCTGGCGACGGATCTTGGTGCGGTGGTATCCCAGTTCACCCCGGACGAGCACGACGAAGCGGTGGCACTGGTCTCGCACCTGCCCCAGGTGATGTCCTCTTTGCTGGCCAGCCGCCTGCAGGGCACGCCGCTCCACGCCCTCTCACTGGCCGGCAACGGCCTGCGCGACGTCACCAGGATCGCGGCCAGTGATCCCACCCTGTGGGTCCAGATCCTGGGCGGAAACGCACCGAAGGTTGTGGAGATCCTGTACAGCGTCCGCGAAGACCTCAACCGTCTCATCGGCACGCTGGAAGCACCCGCGGCGCCCGGTGCCAGGCTTGACCTTGCCCAGCTGATCAGTGAAGGCAACGCCGGCCAGGCCCGGATACCAGGCAAGCACGGCGGCCCTCCGCAGGCTTACTCCTGGCTCACAGTCCTGGTGGATGACAAGCCGGGGCAGATCGCGCTGCTCCTTACCGAAATCGGCGAGATCGGCGTGAACGTGGAGGACCTTCGGCTCGATCATTCTTCCGGCCAGAATGTTGGCATGGTGGAGCTTTCAGTACTGCCGAACAAGCATGACCACCTGATCGAAGCACTCAACGACCGCGGATGGCGGGTACTCCAGTAAMSAFRTHGRGHLNGPVVVIGTGLLGASIGLGLRGRGVPVFLSDTSPTNQAVAVDIGAGLPLGELDDGKPELVVVAAPPDVTADVVAKALADYPDSVVVDIASVKGAILDELRSRGVDLARYVGTHPMAGREKSGPVAARGELFTSMPWVLCPSEETSAAAVQTAHALATDLGAVVSQFTPDEHDEAVALVSHLPQVMSSLLASRLQGTPLHALSLAGNGLRDVTRIAASDPTLWVQILGGNAPKVVEILYSVREDLNRLIGTLEAPAAPGARLDLAQLISEGNAGQARIPGKHGGPPQAYSWLTVLVDDKPGQIALLLTEIGEIGVNVEDLRLDHSSGQNVGMVELSVLPNKHDHLIEALNDRGWRVLQNANANANANA
D1-29_01691714cmkCOG0283Cytidylate kinaseATGACACAGGAACTTCTTGATACCTTGCCTGCGCTGCGCGTCGGCAGGCCGCTCGTCGTTGCGATTGACGGTCCCTCCGGCTCCGGCAAGTCCAGCGTCAGCAAGGAAGTTGCCCGGCGGCTGCGGCTGGCGTACCTCGATACCGGTGCCATGTACCGTGCACTGACCTGGTTTTGCCTCAACGGCGGGATCGACCTTAATGAGGCAGCTGCCGTGGAGCAGGCCGCCAGGGACCTTGTCCTGGACGTGAGCACCAGCCCGCTGGAGGAATTCGTGCGGGTGGATGGCGTCGACGTCACCGAGGCCATCCGCGAACCGGAGATTTCCTCGGCGGTAAGCATTGTCGCCACGACGCTTGGCGCCAGGACCGAGCTGATCCGTCGCCAACGCGAACTGATCGAAAAGCATCACCGCCGGATGGTGGTGGAAGGACGGGACATTACCACCGTCGTCGCCCCCGGTGCGGAAGTCAGGATGCTGCTGACGGCGAGCGAAGAGGCCCGGCTCCGCCGCCGGGGCATCCAGCTGGGCGGGACCCAGAACGCGGACCAGTTGGCGGCCCAGGTGACCGGGCGCGACGCCAAGGATTCCACGGTGGTGAACTTCACCCAGGCTGCCGACGGCGTGGTCACTCTCGATTCCTCGGAGCTGGATTTCGCTGAAACGGTGGATGCCGCCCTTGTCATCGTCACAAAGGTCCTGAACCGTGACTGAMTQELLDTLPALRVGRPLVVAIDGPSGSGKSSVSKEVARRLRLAYLDTGAMYRALTWFCLNGGIDLNEAAAVEQAARDLVLDVSTSPLEEFVRVDGVDVTEAIREPEISSAVSIVATTLGARTELIRRQRELIEKHHRRMVVEGRDITTVVAPGAEVRMLLTASEEARLRRRGIQLGGTQNADQLAAQVTGRDAKDSTVVNFTQAADGVVTLDSSELDFAETVDAALVIVTKVLNRDPGPT0021220_343DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945NANA
D1-29_01692663hypothetical proteinGTGGGCTGGATTCTGGATCACCTGGTGTACAGGACGTCCGTCACGGGCAGGGACAACGTACCCACCGGTGGGCCCGTTATCTTCGCCGCGAACCACATCAGCTTCCTGGACGGCCCGGTGATGTTCGGCGCTTCACCGCGGCCCATGCACATCCTGGTTAAAAAGGAGATGTTCAACGGTTTCCTCGGACGGGTGCTTCATGCCTCCGGGCAGCTCCCGGTGGACCGCTCCGGGGACCGGGCGGCGCTGCTGCTGAGCAAGGACGTGCTCGACGCCGGCCGTTGCGTGGGCATCCTCCCTGAGGGAACGCGGGGGAGCGGGCAGGCAACGGACATCAGCAACGGTGTCGCGTGGCTGGCGCTGAACTCGGGAGCTCCCGTGGTGCCGGTCGCCATCCTGGGCACCCGGATAGAAGACGAACACCTCGACTCGGTCCCCAAACCCGGGCGGCGGTTCCACGTCAGTTTCGGCAATGCCCTGACGCTGAGCCGCAATACCGGCGAAACAGGCCGTGCTTCAATGGACAGGGCGGGAATGGAAATCCGCGCTGCGCTGGCAGGGCATGTCCTGGACACCATTCAATTCAGTGGGCAGCCTTTGCCCCACGCGGATATTCCGCAAGAACTTCACGCAGTAGCCGGGACGCCGGCAGATGACCACTAAMGWILDHLVYRTSVTGRDNVPTGGPVIFAANHISFLDGPVMFGASPRPMHILVKKEMFNGFLGRVLHASGQLPVDRSGDRAALLLSKDVLDAGRCVGILPEGTRGSGQATDISNGVAWLALNSGAPVVPVAILGTRIEDEHLDSVPKPGRRFHVSFGNALTLSRNTGETGRASMDRAGMEIRAALAGHVLDTIQFSGQPLPHADIPQELHAVAGTPADDHPGPT0024380_5693DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-29_016931551derCOG1160GTPase DerATGAGCGATACGACTCAAACCTCCGGCCACTCCGGCACCGGCGAAGACGAATACACGCCCACCGGCACCGACCAGGTGGCCGAACGGCTTGCTGCCCTGGACGACGACGAAGCGGAGATGCGCGCGGCGTCACTCCGTGCCGGCCTGGACGACTATGACCTTGATGCCGAGGATGCTGCCCTGCTCAGCGGGGAGTACGGCGACGAGGACTTCGACGGTCCCGTCAAGCTCGACCCGGTGCTTGCCATTATCGGCCGTCCCAATGTTGGCAAATCCACCCTGGTAAACAGGATCCTCGGCCGCCGTGAAGCCGTGGTGGAGGATACCCCCGGCGTTACCCGCGACCGCGTGATGTATTCGGCACACTGGAACGGGCGCAACTTCACCCTGGTGGACACCGGCGGCTGGGAGCACGATGCCCGCGGAATTCACGCGCGCGTTGCCGAACAGGCCGAAATGGCCGTGGAAATGGCTGACGCTGTGCTTTTTGTTGTTGACTCGGCCGTTGGCGCTACCGCCACGGATGAGGGCGTCATGAAGATGCTCCGCAAGAGCAAAAAGCCGGTCATCATGGTGGCCAACAAGGTGGACGACTTCGCCCAGGAAGCCGACTCAGCCACGCTCTGGGGCCTTGGCTTCGGTGAGCCCTACCCCGTCTCGGCGCTGCATGGCCGCGGCGTGGCGGATCTCCTGGACCACGTGATGGATACCCTCCCCGAGTTCTCCACCATCGAGGGCCTGGAGCGATCCGGTGGGCCGCGGCGCATCGCGCTGATCGGACGTCCGAACGTGGGCAAGTCCTCACTGCTGAACAAGCTGGCCGGCTCCGAGCGGGTTGTCGTTGACAACACCGCCGGCACCACCCGCGATCCCGTGGACGAATTCATCGAACTCGGTGGCCGGACCTGGCGCTTTGTTGACACCGCCGGTATCCGGCGCCGCCAGCACATGGCGCAGGGCGCAGACTACTACGCCTCCCTCCGTACCCAGGCCGCGCTGGAAAAGGCCGAGGTTGCCGTAGTGCTCCTGGCCGTTGACGAGGTACTGAGCGAGCAGGACGTCCGGATTCTTCAGCTGGCCATCGAATCCGGCCGGGCCCTGGTCCTGGCCTTCAACAAGTGGGACCTGCTGGACGACGAACGCCGCACCTACCTGGAGCGCGAAATCGAGCAGGACCTGGCCCACGTGGCCTGGGCCCCGCGGGTCAACATTTCGGCGCTGACGGGTTGGCACAAGGACCGCCTGGTTCCTGCCTTGGACCTGGCCCTGGAGAACTGGGACAAGCGTATTCCCACCGGCAGGCTCAACGCCTTCCTCGGCGAGCTCGTGGCTGCGCACCCGCACCCGGTCCGCGGCGGAAAGCAGCCGCGCATCCTCTTCGGCACCCAGGCATCAAGCCGGCCGCCTAAGTTTGTGCTCTTCACCACGGGTTTCCTGGACCCCGGCTACCGCCGGTTCATTACGCGCCGGCTTCGCGAGACCTTCGGTTTCGAGGGCACGCCCATCGAGGTCAACATGCGCGTACGTGAAAAGCGCGGCAAGAAGCGTTAAMSDTTQTSGHSGTGEDEYTPTGTDQVAERLAALDDDEAEMRAASLRAGLDDYDLDAEDAALLSGEYGDEDFDGPVKLDPVLAIIGRPNVGKSTLVNRILGRREAVVEDTPGVTRDRVMYSAHWNGRNFTLVDTGGWEHDARGIHARVAEQAEMAVEMADAVLFVVDSAVGATATDEGVMKMLRKSKKPVIMVANKVDDFAQEADSATLWGLGFGEPYPVSALHGRGVADLLDHVMDTLPEFSTIEGLERSGGPRRIALIGRPNVGKSSLLNKLAGSERVVVDNTAGTTRDPVDEFIELGGRTWRFVDTAGIRRRQHMAQGADYYASLRTQAALEKAEVAVVLLAVDEVLSEQDVRILQLAIESGRALVLAFNKWDLLDDERRTYLEREIEQDLAHVAWAPRVNISALTGWHKDRLVPALDLALENWDKRIPTGRLNAFLGELVAAHPHPVRGGKQPRILFGTQASSRPPKFVLFTTGFLDPGYRRFITRRLRETFGFEGTPIEVNMRVREKRGKKRNANANANANA
D1-29_016951620sdcSSodium-dependent dicarboxylate transporter SdcSATGAGCGAGCAGTCCAGGAGAATTGTGCCGGAACAGGGTGAGTTCGACCAGGAACCCGAGGACCGCCGGCCTTCCCGCCCACTACGCCGCACCTGGCTGGTCCGGGGCCTGGGAGTAGCGCTGGCCATAGTCGTCTACTTCCTTCTCGGCATGTCGGATCTTAACAATGACGCGCGTGTGGTGGGTGGCGTCGGCACCCTCATGGCGGTCTGGTGGATGACGGAGGCCGTGCCCTTGTCAGTGACTTCGCTGCTGCCGATCGCGCTGATGCCTGTGCTGACGGAACGTACAATCGCAGAGACCACTGCTCCGTACGCGAATCCGATAGTTTTCCTGTTCCTGGGTGGCTTCCTGATCGCGATTGCCATGCAGAAATGGAACCTGCACCGGAGGATCGCGCTGTTGACCTTGCGACGTGTCGGTACTCACCCACGCCGAATCATCCTTGGGCTGATGATCTCTACCGCCTTCCTTTCAATGTGGGTGTCCAACACAGCGACGACGCTGATGATGCTGCCGATCGCGCTGAGCGTGTTGGCCCTCGTGGCGGAAAACAGTGTCAAATCCGCTGGCGGCGCCGACTCAAAGGACCTGGGTGAGGGACTTCGGTCCGGCAGGGCAATCAGCGACCTGGTGGAGAACCGCGAGGTGCGCGTTTTCGGCGTTGCCCTGGTCCTGGCCATCGCTTGGTCCGCCACCATTGGCGGACTGGGAACCTTGCTGGGCAGCCCGCCGAATGCCATCGTAGCCGGCTACATCAGCGATGAACTCGGAGAAACTGTCGGGTTCGCCCAGTGGATGATGCTCGGCGTCCCTATCGTTATCGTCTTCCTCGCGCTCGCATGGCTGATCCTCACCAGGCTTATCTTCCGTGTCAACCTGGATGAGGTCCCCGGTGGTGAGCAGTTGATCAACGACGAAATCGCTGCCCTCGGCCCAATGAGCCATGGGGAAAAGATAGTGCGCGCTGTCTTCGCGGGCGCCGCATTCTTCTGGATCGTGCCTGGCCTGCTGTCCAATATCGGCGATCTCGGTCAGCAGCTGCCCTGGCTAGACCTTTTTGATGACACCGTGATCGCGATCGCAGCCGGTGCGGTGCTCTTTATTATCCCGGGTGACAAGCAGGGGCATATGACCCTCAACTGGAAGGACGCCGAGGAGGGATTGCCCTGGGGTGTCCTGCTGCTGTTCGGTGGTGGGCTCTCGCTGGCGTCAGCAGTGGCGGGCACGGGTCTGGACGCATGGTTCGGCGAGCGGGTCAGCGGCCTCGGAGCGCTGCCGATCATATTGCTGCTGGCCACGGTTGTCCTCATCGTCCTGTTCCTCACCGAGATCACCAGCAATACCGCGACGGCGGCGACCTTCATCCCCATTCTGGGCGGGGTTGCCATCGGCATAGGGATCGACCCCATGACCCTGCTTATTCCCGCGGCATTGGCAGCCACGTGTGCTTTTATGCTGCCCGTGGGAACACCTCCCAACGCCATCGTCTTCGCCACCGGCAACGTGAAGATCACCGAAATGGTTCGCGGCGGCATGGTGCTCAATGTCGTCGGCGTCCTTCTGATTACGATTTTCACGGTACTGATCGGCCCCTTCGCGTTGGGCCTGGTGATTTGAMSEQSRRIVPEQGEFDQEPEDRRPSRPLRRTWLVRGLGVALAIVVYFLLGMSDLNNDARVVGGVGTLMAVWWMTEAVPLSVTSLLPIALMPVLTERTIAETTAPYANPIVFLFLGGFLIAIAMQKWNLHRRIALLTLRRVGTHPRRIILGLMISTAFLSMWVSNTATTLMMLPIALSVLALVAENSVKSAGGADSKDLGEGLRSGRAISDLVENREVRVFGVALVLAIAWSATIGGLGTLLGSPPNAIVAGYISDELGETVGFAQWMMLGVPIVIVFLALAWLILTRLIFRVNLDEVPGGEQLINDEIAALGPMSHGEKIVRAVFAGAAFFWIVPGLLSNIGDLGQQLPWLDLFDDTVIAIAAGAVLFIIPGDKQGHMTLNWKDAEEGLPWGVLLLFGGGLSLASAVAGTGLDAWFGERVSGLGALPIILLLATVVLIVLFLTEITSNTATAATFIPILGGVAIGIGIDPMTLLIPAALAATCAFMLPVGTPPNAIVFATGNVKITEMVRGGMVLNVVGVLLITIFTVLIGPFALGLVINANANANANA
D1-29_01696870mutMFormamidopyrimidine-DNA glycosylaseATGCCGGAGCTTCCTGAAGTCGCAGGCCTGGCCGGTTTCCTTGATGAGCAACTGCGCGGAGCGACTGTGCGTAAAGTCCAGATCGTTTCGTTTGCCGTGCTGAAGACAGCGGATCCGCCGTACACCGCACTGCAGGACAGGGCTGTGACCGGCGTGCGGCGCTTTGGAAAATTCGTGAGCCTTGATACGGAGGGCCCGTCCTTTGTGTTCCATCTGGCCAGGGCTGGATGGGTCCGTTTCACGGACTCCCCCACTGATACCCAACTGCGGATGGGCAAGGGCCACATCGCCGCGCGGCTTGCCTTCGCCGGTACAGACGGTCCCCTGGGGATGGATCTGACTGAGGCAGGAACGAAAAAGAGCCTGGCTGTATACGTGGTCCGAGACCCCCTGGACGTACCGGGGATTGCAGCCCTGGGTCCTGATCCGTTCAGTCCGGCGTTCGACGTCGGCATGCTGGCAGAGATCATCGGATCCAGCTCACAGCAGATCAAGGGCCTCCTGCGCAGCCAGAGCGTGATCGCCGGAATAGGGAATGCGTACAGCGACGAGATCCTTCACGCGGCCAAGATCTCCCCCTTTGCGATCGCCAAGTCCTTGGACCGGGATGCCGTACAGGTCCTTTACGACGCCATACACAGCATCCTGGGCACCGCCATGGCGGAAGCAGAAGGCAAGCCGCCGAACGAACTCAAGGATGTGAAACGGAGTCACATGAGGGTCCACGCCCGGACCGGGCAGGCGTGCCCGGTGTGCGGCGACACTGTCCGTGAAGTCTCCTTCGCTGATACTGCCCTTCAGTACTGCCCCACCTGCCAGACCAAGGGCAAGATTCTGGCCGACCGCAGAACCTCGAAGTTTCTGAAGTAAMPELPEVAGLAGFLDEQLRGATVRKVQIVSFAVLKTADPPYTALQDRAVTGVRRFGKFVSLDTEGPSFVFHLARAGWVRFTDSPTDTQLRMGKGHIAARLAFAGTDGPLGMDLTEAGTKKSLAVYVVRDPLDVPGIAALGPDPFSPAFDVGMLAEIIGSSSQQIKGLLRSQSVIAGIGNAYSDEILHAAKISPFAIAKSLDRDAVQVLYDAIHSILGTAMAEAEGKPPNELKDVKRSHMRVHARTGQACPVCGDTVREVSFADTALQYCPTCQTKGKILADRRTSKFLKNANANANANA
D1-29_01697660hypothetical proteinATGATGGGACCCATGACAGAACAAGCGCAGGCAACACTCCGGAAAAAGGGCAACTGGGCTGCCAGGATCATCCTCGCCGGGGTGGCTGTGCTGGTCCTGGTTATCGCCTACTTCGCTCTGGCCGCCATTCTGCCGGTCTGGTGGGCAAACGTGATCAGGGACCAGGTCCGCGGCAATCTGGGAGCCGGGATCCTGCTGGGAATGTTCTATGGATTCACCTTCACGCTTATCCCGGTGATTGTCGCCTGGCAGGCGACCCGCAAGGCGGTCCGCTGGCCCTGGAAGCTCGCGTTGCTCCTTGTTGCCGTGGCGCTTGCCACCCCGAACCTCCTGACCGCCGCCATCATGATCAGCAACTCACCCGCAGCCCACAACGGCCAGCGCATCCTGGGCACCGACGCCACATGGTTTCCGCTGTGGACGCAGCTCTCGGCTGTGGCCGCCGTCGTAGTCTTTACCGCCGGCGGCCTGCTGTGGAGCAACTGGCGTCAGCGCGGCAGGAAAGTGAAGGCCTTCAAAAAGGCCGACTCCGAACGGTCACGTGCCGCGGCCTCCGCCGCTGTGGACTCCACGGCGGAGGCTGCGGCCGGCAAGCCTGCCGGGACCAGGACCGATGCGGGTACATCGGCCGCCCCAGCCGACCGGGCCAACCGCAGGTAAMMGPMTEQAQATLRKKGNWAARIILAGVAVLVLVIAYFALAAILPVWWANVIRDQVRGNLGAGILLGMFYGFTFTLIPVIVAWQATRKAVRWPWKLALLLVAVALATPNLLTAAIMISNSPAAHNGQRILGTDATWFPLWTQLSAVAAVVVFTAGGLLWSNWRQRGRKVKAFKKADSERSRAAASAAVDSTAEAAAGKPAGTRTDAGTSAAPADRANRRNANANANANA
D1-29_01698387gcvH_2COG0509Glycine cleavage system H proteinATGAGCAACATTCCCGAAGACCTGTCCTACACGGCCGAACACGAGTGGGTCACCACCCCCAACTCCGATGGCGTGGTTCGGGTGGGCATCACCGATTTTGCCCAGGACGCCCTGGGGGACGTTGTCTATGCACAGATGCCCGAGGTGGGCACAAAGATCACGGCAAACGAAGTGGTAGGCGAGGTCGAATCCACCAAAAGCGTGAGTGACATCTACGCACCGGTTAGCGGGGAAGTGGTGGCCCGGAACGATTCGCTGGACACCGATTCCGCCCTGATCAACAGTGATCCCTATGGCGACGGATGGCTCATTGAGGTCAAACTGGCAGAAGCTGACGCGGTGGAGTCATTGCTCAGTGCATCCGAGTACGAACAGCAGGTAGGCTAAMSNIPEDLSYTAEHEWVTTPNSDGVVRVGITDFAQDALGDVVYAQMPEVGTKITANEVVGEVESTKSVSDIYAPVSGEVVARNDSLDTDSALINSDPYGDGWLIEVKLAEADAVESLLSASEYEQQVGNANANANANA
D1-29_01699522hypothetical proteinATGGTGATTGCAGGCGTAGCAGCTGCAGCGGAAGAGGAGGAATCCATGGTTGGCCACAAAAAGAAACCTGCCGACAGGGATTACGGCGCTGGTGAGGCCAAGTCATCGGAGACCACCTCGATCCACCTCACACCCGTCACCGACGAACCCACCATTACGCCCAGGCTGTCGCCGGAAGAACGCTCCTCAGTGGAAGCTCTTCCCGCCGGATCAGCGCTCCTGATTGCCCACACCGGCCCGAACGCCGGCGCCCGCTTCCTGCTGGACTCGGACGTCACCACCGCCGGCCGGCACCCCGACGCCGATATCTTCCTGGACGATGTCACCGTTTCCCGCCGCCACGTGGAGTTCCGGCGCACCGAACGTGGCTTTGAAGTGGTGGACACCGGCAGCCTCAACGGCACCTACGTCAACCATGACCGCGTTGACAGCGTCGAGTTGAGGTCCGGCAGCGAAGTCCAGATCGGAAAATTCCGACTCACCTTCTACCTGAGCCCTGCCCGCGCTGCAGGCCGCGGCTGAMVIAGVAAAAEEEESMVGHKKKPADRDYGAGEAKSSETTSIHLTPVTDEPTITPRLSPEERSSVEALPAGSALLIAHTGPNAGARFLLDSDVTTAGRHPDADIFLDDVTVSRRHVEFRRTERGFEVVDTGSLNGTYVNHDRVDSVELRSGSEVQIGKFRLTFYLSPARAAGRGNANANANANA
D1-29_01700723COG0789putative HTH-type transcriptional regulatorGTGGCAATGGCACAACCGGAACGCCGCGGACCGCAGGTCCTGAACATCGGGGAAGTCCTCGCGCAGCTGAGCAGCGACTTTCCCGGAATGACTGCGTCCAAAATCAGGTTCCTCGAAGAAAAGGGACTGATTAACCCGCGCCGCACCCCGGCAGGCTACCGGCAGTACTCCGACGGGGATGTTGAACGCCTCCGTTTTGTGCTCGCCCTCCAGCGGGACCAATACCTGCCACTGAAAGTCATCAAGGACTACCTGGACGCCATCGACAGGGGCGAGCGCCCGGAGAACCTGCCTCCCGGCGTCGTGGTTTCCCCGCGCATTGTTTCCGATGAACTCGCGGCCGAACTCCAGAACCGCGGGCGGAAGCTGAGCGAAGAACAGCTGCGCACTGAATCAGGGGCAAGCGTGCCGCTGCTCCAGTCGCTGCTGAGCTTCGGGCTGATCAGCCACAGCAACGGCGCGTTTGACGAGCACGCCCTGCAGGTGGCCCGTGCCTGCGTCCAGCTGGAAAGCCACGGCCTGGAGCCCCGGCACTTCCGTCCGTTCCAGGCAGCGGCGGAACGCGAGTTCGGGCTGGTGGAGCGGGCGGTGGCACCCCTGGCTTCACGGAAGGATTCCGCGTCCCAGGCCCGGGCCGCCGAGGCCGCCCGGGAAATCAGCGACCTCTGCCTTACGCTGCACCGGGCCCTGGTGCAGGACCACATCTCACGCATGGACATCTGAMAMAQPERRGPQVLNIGEVLAQLSSDFPGMTASKIRFLEEKGLINPRRTPAGYRQYSDGDVERLRFVLALQRDQYLPLKVIKDYLDAIDRGERPENLPPGVVVSPRIVSDELAAELQNRGRKLSEEQLRTESGASVPLLQSLLSFGLISHSNGAFDEHALQVARACVQLESHGLEPRHFRPFQAAAEREFGLVERAVAPLASRKDSASQARAAEAAREISDLCLTLHRALVQDHISRMDINANANANANA
D1-29_01701504COG1259putative proteinATGATCGAAGTAGAGATCGTAGGCGTTCGGATCGAACTGCCTTCCAACCAGCCCCTGGTTCTTCTCCGCGAGATCCGCGGCGAACGCCACGTGCCAATCTGGATCGGAACCCCGGAGGCCAGCGCCATTGCCCTGGCCCAGCAGGGGGTGGTGCCGCCCAGGCCCATGACCCATGATCTCCTCGTGGACGTCGTCGAATCGCTGGGCCACTCGGTGGTCAGCGTCAATATCGTGGCGGTGGAAGACAACATCTTCTACGGCCAGCTCCAGTTCGAGAACGGCACCACTGTCAGCTCACGGGCGTCTGACGCCCTGGCCATCGCCCTGCGGGCCAAGTGCCGGATCTGGTGTGCCGACTCCGTGATGGATGAGGCTGGTGTGCGCATCACCGAGCACGACGAAGGCGAGGACACCGAGCCCGGGCCTACCGTGGACGAAGAGCGTGAACTGCGCCGCTTCCGGGAATTCCTCGACGACGTGGAGCCGGAAGACTTCGACGGCTGAMIEVEIVGVRIELPSNQPLVLLREIRGERHVPIWIGTPEASAIALAQQGVVPPRPMTHDLLVDVVESLGHSVVSVNIVAVEDNIFYGQLQFENGTTVSSRASDALAIALRAKCRIWCADSVMDEAGVRITEHDEGEDTEPGPTVDEERELRRFREFLDDVEPEDFDGNANANANANA
D1-29_01702597COG0789putative HTH-type transcriptional regulatorGTGAGTCCCAAAGGCGAAGCAGGCGAGCTGAAACAGCCCACAACGGCTGGTGCTGCTGTCCCCGCCAGCGGTGCCCAGGGCCTCCTGTTCACCGAAGACCTTCCCGTCCTGGACGAGGACGCCGGCTACCGCGGCCCCACTGCCTGCAAGGCCGCCGGAATTACCTACCGCCAGTTGGATTACTGGGCAAGGACCGGTCTGGTTGAACCGGCCGTCCGTGGTGCAGCCGGTTCAGGTTCCCAGCGGCTCTACGGGTTCCGGGACATCCTGGTCCTCAAGGTCGTCAAGAGGCTCCTGGATACCGGCGTTTCGCTGCAGCAGATCCGTTCGGCAGTTGAGCACCTCCGCGAACGCGGAGTGGAGGACCTGGCACAGATCACCCTCATGAGCGACGGCGCCAGTGTGTACGAATGCACCTCCGCTGACGAGGTCATCGACCTCGTCCAGGGCGGCCAGGGTGTGTTTGGCATTGCGGTGGGACGTGTCTGGCGCGAAGTTGAAGGCAGCCTCGCCTCCCTTCCCAGTGAGCACGCGGCGGTGCAGTCCTTTCCCGACGACGAGTTGAGCAAACGGCGGGCGGCCCGCAAGACCGGCTGAMSPKGEAGELKQPTTAGAAVPASGAQGLLFTEDLPVLDEDAGYRGPTACKAAGITYRQLDYWARTGLVEPAVRGAAGSGSQRLYGFRDILVLKVVKRLLDTGVSLQQIRSAVEHLRERGVEDLAQITLMSDGASVYECTSADEVIDLVQGGQGVFGIAVGRVWREVEGSLASLPSEHAAVQSFPDDELSKRRAARKTGNANANANANA
D1-29_01703822parAChromosome partitioning protein ParAGTGCAAGTAGTCAGCATCAGCAGCCTCAAGGGCGGGGTCGGCAAGACTTCCGTCACCACAGGATTGGCGTCTGCGGCGCTGGCCGCAGGCATCCCCACACTGGTGGTGGACCTGGATCCCCACGCGGACGCGACCACAGCCATGGGCGTGCAGCCAGGTGATCAGCTGGACATCGGCCGGATGCTGAAGAGCCCGCGACGGGCGAAGCTCGCCGAGAACGTCGTCGGCAGCAGCTGGACCGCCCATGCCCATTCGAACGGCTCCGGGCCCGCGGTCCTGGACGTCGCCGTCGGCTCCGCCTATACCGGAATCTACGACCGCCCTGATCTTGGCCGGCGCGATCTCCGCCGGTTGTCAGCTGTCCTGGCCGGCGCCGATAAATACCAGCTGGTCCTGATCGACTGCCCTCCCTCCCTTAACGGGCTGACAAGGATGGCCTGGTCCGCCAGCGACAAAGTTGCCCTCGTCGCAGAGCCAGGGCTCTTCTCCGTGGCAGGAACCGAACGGACCATGCGCGCCATCCAGCTTTTCCGGCAGGAATTCGCACCCAACCTTTCCCCGGCAGGCATTGTGGCCAACCGCGTCCGCAGCGGCTCGTCCGAGCACACGTACCGGCTGGCCGAAATGGAGTCGATGTTTGGTGAACTCCTCTTGAGCCCCAGGATCCCGGAGCAGGCAAACTGGCAGCAGATCCAGGGCGCCGCCCACCCCGTCCACCATTGGCCCGGGGATTCCGCCAAATCAGCCGCGGCCCTGTTCGACACCCTCCTGGCCAACCTTCTCGCCGTCGGCATCGGTTTACGGAGCCGCAGCCAGCGATAGMQVVSISSLKGGVGKTSVTTGLASAALAAGIPTLVVDLDPHADATTAMGVQPGDQLDIGRMLKSPRRAKLAENVVGSSWTAHAHSNGSGPAVLDVAVGSAYTGIYDRPDLGRRDLRRLSAVLAGADKYQLVLIDCPPSLNGLTRMAWSASDKVALVAEPGLFSVAGTERTMRAIQLFRQEFAPNLSPAGIVANRVRSGSSEHTYRLAEMESMFGELLLSPRIPEQANWQQIQGAAHPVHHWPGDSAKSAAALFDTLLANLLAVGIGLRSRSQRNANANANANA
D1-29_017043399pycAPyruvate carboxylaseATGTTTTCCAAGATTCTGGTGGCCAACCGCGGCGAAATCGCGATCAGGGCATTCCGCGCCAGCTACGAGCTGGGCGCCAAGACCGTTGCTGTTTTTCCGAACGAGGACCGTAACTCGATACACCGCCAGAAGGCCGATGAGGCTTATCTGATTGGTGAGGAAGGCCATCCGGTCAGGGCTTACCTTGACGTGGCCGAGGTGGTCCGGGTGGCCAAGGAGTCCGGTGCAGACGCCATCTACCCTGGCTACGGATTCCTCTCGGAGAACCCGGACCTGGCCCGTGCTGCGAAAGAAGCGGGCATCACGTTCGTTGGTCCGCCGGCTGAGGTCCTGGAGCTGGCGGGCAACAAGGTTGCCGCTTTGGAAGCTGCCCGAAAGGCCGGCGTCCCTGTCCTGAAGTCCAGCCAGCCGTCTAAGGACCTCGATGAGCTCATCGCTGCGGCTGACGAAATCGGGTTCCCAATCTTTGCCAAGGCGGTCGCCGGCGGCGGCGGGCGCGGCATGCGACGGGTGGACACCCGCGATGCCCTTCCGGAAGCCCTGCAGTCTGCCATGCGCGAAGCGGATGCGGCGTTCGGTGATCCCACCATGTTCCTGGAGCAGGCCGTGCTCCGCCCGCGGCACATCGAGGTCCAGATCCTCGCAGATGCCGAAGGCAACGTCATGCACCTCTTTGAGCGTGACTGTTCCATTCAGCGCCGCCACCAGAAGGTTATTGAGATCGCCCCCGCGCCCAACCTTGATGAGGGAATCCGCCAGTCGCTGTACCGGGATGCGGTCAAGTTCGCGAAGGCACTGAACTACGTCAACGCCGGTACGGTTGAGTTCCTGGTCGATACAGTCGGCGAACGGGCCGGCCAGCACGTGTTCATCGAAATGAATCCGCGCATCCAGGTGGAACACACTGTTACCGAAGAAGTCACGGACGTGGACCTGGTGCAGGCCCAGCTGCGGATCGCCGCCGGCGAAACGCTAGCGGACCTGGGGCTCTCCCAGGAGTCGGTCCAGCTCAAGGGCGCAGCCCTGCAGTGCCGCATCACCACCGAGGACCCTGCAAACGGGTTCCGCCCCGACGTCGGGAAGATCACCGGTTACCGTTCCGCTGGCGGCGCCGGTGTTAGGCTCGACGGCGGCACCGTGTACTCAGGTGCCGAAATCAGCCCCCACTTCGACTCCATGCTGGTGAAGCTCAGCTGCCGTGGCCGCGATTACCCTGCCGCCGTGGCCCGCGCCCGCCGTGCCCTCGCCGAGTTCCGAATCCGTGGCGTCTCCACCAACATTTCGTTCCTGCAGGCCGTCCTGGACGATCCCGATTTCATTGCCGGCAACGTGGCGACCAACTTCATCGACGAGCGTCCCCAGCTCCTGAAAGCCCGGGTTTCCGCTGACCGCGGCACCAAGCTGCTGACCTGGCTGGCCGAGGTCACGGTGAACAAGCCCAACGGCGAGCTCACCGTCCATTCCAACCCCGCAGCCAAGCTGCCTTCGGTTGCGGGCACGCAACCGAAGCCGGGATCCCGCCAACGGCTCCTGGAACTGGGCCCGGAGGGCTTCGCCAAGGCTCTTCGCGAGCAGACAGCCGTGGCTGTCACGGACACCACCTTCCGCGACGCCCACCAGTCCCTGCTCGCTACCCGGGTCCGGACCCGCGACCTGGTAGCTGCGGGCCCGGCCGTCACGGCCCTGCTCCCGGAACTGCTCTCCGTTGAGGCCTGGGGCGGCGCCACCTACGACGTCGCCCTGCGCTTCCTCGGCGAGGACCCGTGGGACCGCCTTGCCGCGCTCCGGAAGGCGCTGCCGAACGTGTGCATCCAGATGCTGCTCCGCGGCCGGAACACCGTGGGGTACACGCCGTACCCCGAGGAAGTCACGGAGGCCTTCGTCAACGAAGCAGCCGCCACGGGCATCGACATTTTCCGGATCTTCGATGCGCTCAACGACGTCAACCAGATGGCGCCTGCCATCCGTGCAGTCCGGGCCACCGGCACCGCTGTGGCCGAGGTGGCCCTCTGCTACACGGGCGACCTTCTGAACCCCGACGAGAAGCTGTACACGCTCGACTACTACCTTGAGCTGGCACAGAGGATTGTGGATGCCGGCGCGCACATCCTTGCCATCAAGGACATGGCGGGCCTGCTTCGTCCCGCTGCCGCCGCCAAGCTGGTTGCCGCGCTCCGTGAGCGCTTCGACCTTCCGGTCCACCTGCACACCCATGACACCGCAGGCGGCCAGCTGGCCACCCTGTTGGCTGCTGTGGACGCAGGCGTGGACGCGGTAGACGCAGCGTCTGCATCGCTGGCCGGAACCACCAGCCAGCCCTCGGCGTCGGCCCTCGTCGCGGCGTTGGCGCACACTCCGCGTGACACCGGGCTTAGCCTGGCTGCCGTGAGCTCCCTGGAGCCCTACTGGGAGGCCGTGCGGCGGGTCTACGCGCCGTTCGAGTCCGGCCTGCCGGGACCAACAGGCCGGGTTTACCAGCACGAAATCCCGGGCGGCCAGCTCTCCAACCTCCGTCAGCAGGCCATGGCGCTGGGCCTGGGAGAGCGCTTCGAAGCCATTGAGGACATGTACACCGCGGCAGACCGCATCCTGGGCCGGCTGGTGAAGGTCACCCCCTCCTCCAAGGTGGTAGGCGACCTCGCGCTCCACCTCGTGGGACTCAACGCGGACCCCGCGGACTTCAACGAAAACCCGCAGAACTACGACATCCCCGACTCCGTCATCGGCTTCCTCTCCGGTGAACTAGGCGACCCGCCCGGAGGCTGGCCGGAACCGTTCCGGACCAAGGCTCTCCAGGGCCGCAGCGTCAAGGTCCGCGACGTTGAGCTCAGCCCAGAGGACAGCGCCGCACTGCAGGGCGATTCCAAGACCCGCCAGCACACGCTGAACAGGCTGCTCTTCGACGGTCCCACCAAGGACTACCTCAAGAGCGTCGAAACCTACGGGAACATTTCTGTGCTTGACACCCGCGACTACCTTTACGGTCTTCAGCGGGGAGAAGAGCACGAGATCCAGCTGGAGAAGGGCGTCAGGCTGATCGCTTCCCTCGAGGCTGTCTCGGAGCCGGACGAAAAGGGAATGCGTACGGTGATGTGTACGCTGAACGGCCAATCCCGGCCTGTGGTGGTGCGGGACCGGTCGGTGGTCAGCAACGTCAAGGCCGCTGAGAAGGCTGATCCTGCCCAGCCGGGGCACGTGGCTGCGCCGTTCGCCGGTGCCGTCTCGGTCACCGTCGCCGTGGGTGACACCGTCAACGCGGGCGATACCGTAGCCACCATTGAGGCGATGAAGATGGAAGCGTCCATTACGACGCCGGTGGGCGGCAAAGTATCGCGGCTTGCCATCTCCTCGGTGGAACAGGTCCAGGGCGGGGACCTGCTCCTGGTCGTGGAGCAATAGMFSKILVANRGEIAIRAFRASYELGAKTVAVFPNEDRNSIHRQKADEAYLIGEEGHPVRAYLDVAEVVRVAKESGADAIYPGYGFLSENPDLARAAKEAGITFVGPPAEVLELAGNKVAALEAARKAGVPVLKSSQPSKDLDELIAAADEIGFPIFAKAVAGGGGRGMRRVDTRDALPEALQSAMREADAAFGDPTMFLEQAVLRPRHIEVQILADAEGNVMHLFERDCSIQRRHQKVIEIAPAPNLDEGIRQSLYRDAVKFAKALNYVNAGTVEFLVDTVGERAGQHVFIEMNPRIQVEHTVTEEVTDVDLVQAQLRIAAGETLADLGLSQESVQLKGAALQCRITTEDPANGFRPDVGKITGYRSAGGAGVRLDGGTVYSGAEISPHFDSMLVKLSCRGRDYPAAVARARRALAEFRIRGVSTNISFLQAVLDDPDFIAGNVATNFIDERPQLLKARVSADRGTKLLTWLAEVTVNKPNGELTVHSNPAAKLPSVAGTQPKPGSRQRLLELGPEGFAKALREQTAVAVTDTTFRDAHQSLLATRVRTRDLVAAGPAVTALLPELLSVEAWGGATYDVALRFLGEDPWDRLAALRKALPNVCIQMLLRGRNTVGYTPYPEEVTEAFVNEAAATGIDIFRIFDALNDVNQMAPAIRAVRATGTAVAEVALCYTGDLLNPDEKLYTLDYYLELAQRIVDAGAHILAIKDMAGLLRPAAAAKLVAALRERFDLPVHLHTHDTAGGQLATLLAAVDAGVDAVDAASASLAGTTSQPSASALVAALAHTPRDTGLSLAAVSSLEPYWEAVRRVYAPFESGLPGPTGRVYQHEIPGGQLSNLRQQAMALGLGERFEAIEDMYTAADRILGRLVKVTPSSKVVGDLALHLVGLNADPADFNENPQNYDIPDSVIGFLSGELGDPPGGWPEPFRTKALQGRSVKVRDVELSPEDSAALQGDSKTRQHTLNRLLFDGPTKDYLKSVETYGNISVLDTRDYLYGLQRGEEHEIQLEKGVRLIASLEAVSEPDEKGMRTVMCTLNGQSRPVVVRDRSVVSNVKAAEKADPAQPGHVAAPFAGAVSVTVAVGDTVNAGDTVATIEAMKMEASITTPVGGKVSRLAISSVEQVQGGDLLLVVEQPGPT0001420_1706DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001420-pyc-K01958NANA
D1-29_017051812COG1022Long-chain-fatty-acid--CoA ligase FadD15GTGCGCGAATTCAGTGTTCCGCCGCTGGTTGTTGTCCCACCTGAAACCAACATCACCGATCTGGTGCTGCGCCAGGCAGCGAAGCCCAGCAATCCGTCCCTGTTCTCGCGGCTGGATTCCTCAGGCACGTGGCAGAACGTGTCCGCCACCGACTTCCTGGCAGACGTCACGGCCCTGGCAAAGGGGCTGATGGCCAGCGGCGTAGGCGCCGGCGACCGGGTGGGAATCATGTCCCGCACCCGCTACGAGTGGGCCCTGGTGGACTTCGCCATCTGGTTCGCCGGCGGCATCTCCGTCCCCATCTACGAAACCTCATCGCCGTCACAGGTAGCCTGGAACCTGGGGGACTCCGGTGCCGTTGCAGCCTTTGGCGAAGCAGCCCATCATGAGGATGTCATCCGCCAGGCCGCCACTGCCGAGGGCCTGACCGCGCTCCAGCACGTCTGGCAGCTGGAGGGCGCAGGACTGGACACCCTTCGCGAAGCCGGCCGCGCCGTCAGCGACGACGAACTGGAGTCCCGCCGTACGTCGGCAAAGCTCACGGACCTCGCCACGATCATCTACACCTCCGGAACCACGGGCCGCCCCAAGGGCTGCGAACTGACCCACGGCAACTTCGTCGAACTGTCGGACAACGCACTTGCCATCATCGGCGAGATCGTTCACGAGAACGCCAAGACCATCATGTTCCTGCCCTTGGCGCACGTCTTTGCGCGGTTCATCTCCGTCCTGGCCATGGCGGCCGGAACAACGGTGGCGCACACTCCTGACATCAAGAACCTGCTCTCGGACCTGCAGAGCTACGAGCCCACCTTTATCCTTGCCGTGCCTCGTGTCTTCGAGAAGGTCTACAACTCGGCCCTGACCAAGGCAGAGGACGGCGGCAAGGGCGCCATCTTCCACAAGGCCGCCGATACCGCCATCGCCTTCTCCAAGGCACGCCAGGAGGGACGCGTGGGGCTGGGATTGAAACTCCGGCATGCCCTGTTCGACCGGCTGGTGTACGGCAAGCTGCGTGCCGCCATGGGCGGCCATGTTGCGCATGCAGTATCCGGCGGCGGTCCCCTGGGCGAACGGCTGGGCCACTTCTTCCAGGGCATCGGGCTGCAGGTGCTGGAAGGCTATGGGCTGACCGAAACCACGGCTCCCATATCCGTCAATACGCCGTCCCTGATCAAGATTGGTTCAGTCGGCAAGCCGCTGCCCGGCAATGCAGTCAAAATTGCCGACGACGGCGAGATCCTCGCCAAGGGAGCCTGCGTCATGCGCGGCTACTACAAGCGGGAGGACCTGACGGCGGAGACGTTCTCCGACGACGGCTGGTTCCGTACGGGTGACATCGGCCGGCTGGACGAGGACGGCTTCCTGTGGATCACCGGCCGGAAGAAGGAAATCATCGTTACTGCCGGCGGAAAGAACGTGATTCCCGCCCTGCTCGAAGACCAGATCCGGGCCGATGCCCTCGTGTCACAGGTCCTGGTGGTGGGCGACAACCGGCCGTTCATCGGCGCCCTGGTCACGCTGGACCAGGAGGCCCTGCCGGGCTGGCTCCAGCGCCATGGCCTCCCGTCCAGCACCTCCCTGGCCGACGCCGCCGCCAACCCGGTGGTCAAGGCAGCGGTCCAGGATCTGATCACCGCCGCCAATGGGTCTGTTTCCCAGGCGGAAGCCATCAAGTCGTTCCGGATCGTGCCGGCTGACTTCACCGAAACTTCCGGACACCTGACCCCCTCCATGAAGGTGAAGCGGGCCCAAGTGATGAAGGACTTCGAAACTGTCATCGAAGAGATGTACGCGGCGCCCAGGTCCTGAMREFSVPPLVVVPPETNITDLVLRQAAKPSNPSLFSRLDSSGTWQNVSATDFLADVTALAKGLMASGVGAGDRVGIMSRTRYEWALVDFAIWFAGGISVPIYETSSPSQVAWNLGDSGAVAAFGEAAHHEDVIRQAATAEGLTALQHVWQLEGAGLDTLREAGRAVSDDELESRRTSAKLTDLATIIYTSGTTGRPKGCELTHGNFVELSDNALAIIGEIVHENAKTIMFLPLAHVFARFISVLAMAAGTTVAHTPDIKNLLSDLQSYEPTFILAVPRVFEKVYNSALTKAEDGGKGAIFHKAADTAIAFSKARQEGRVGLGLKLRHALFDRLVYGKLRAAMGGHVAHAVSGGGPLGERLGHFFQGIGLQVLEGYGLTETTAPISVNTPSLIKIGSVGKPLPGNAVKIADDGEILAKGACVMRGYYKREDLTAETFSDDGWFRTGDIGRLDEDGFLWITGRKKEIIVTAGGKNVIPALLEDQIRADALVSQVLVVGDNRPFIGALVTLDQEALPGWLQRHGLPSSTSLADAAANPVVKAAVQDLITAANGSVSQAEAIKSFRIVPADFTETSGHLTPSMKVKRAQVMKDFETVIEEMYAAPRSPGPT0008380_5886DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_017061182nanK_1N-acetylmannosamine kinaseATGAGTAACTTAGCAGTCAACGAGTCAGCGCGCTGCCTCCGCCGAGTGCCTGCCGGAGCGCGCCGCCGGCCGCGCCTAGAATGGGAAATTATGTACGCACCGCCCCCCGGCGAACAGGCCGGTCCGCTCAGACGCCCTGCACCGTGGAGGCGGCGGCCACCCACCCTGCGGGCACGGTCCCGGCACGGGGAGGGCTTCCGGGAACACCTCCGGCTCGGCCGGAAAGGGCTGGCCATCGGCATAGACATCGGCGGAACGAAGGTCGCCGCCGGCGTGGTGGACGCGGACGGCAGGATTCTCAATGAAGCGCGGCGTTCCACGCCCGGGAACGATCCACGCGCCGTCGAACGCGTCATTGTCGAACTGGTCCAAGAGCTGGGCGCCGGTCACCGGGTGTGGTCAGTGGGCATCGGCGCTGCCGGGTGGATGGACCTGGAGGGCGGCACCGTGCTGTTCAGCCCGCACCTGGCCTGGCGCAACGAACCGCTGCGGGCCAACCTGCAACGGTTGCTGCGGCGGCCGGTACTCCTCACGAACGACGCCGATGCGGCGGCCTGGGCGGAATGGCGCTTCGGTGCGGGGCACGGTCAGGACAGGCTTGTCTGTATCACCCTGGGGACGGGCATAGGCGGTGCCATGGTGATGGATGGCCGCGTTGAACGCGGACGCTATGGCGTCGCCGGCGAATTCGGTCATCAGATCATCATGCCGGGCGGACACCGCTGCGAGTGCGGGAACAGGGGATGCTGGGAGCAGTACGCCTCCGGAAACGCGTTGGGACGGGAAGCGCGGATCCTGGCGCAGGCCAACTCGCCGGTTGCCCAGGATCTCCTGGCGGCCGTGGAAGGACAAACCGAAGCCATTACTGGAGCCATTGTGACCGAACTTGCCCTCGCAGGCGATCCGGCATCCCGGGAACTCCTGGTTGAGGTGGGCGAATGGCTGGGCCTGGGACTCGCCAACCTTGCCGCTGCCCTGGACCCCGGAATGTTTGTCATTGGCGGTGGGCTGTGCTCCGCCGGCGACCTGCTGGTGGAACCTGCGCGGAATGCGTTCGCCCGGAACCTGACAGGGCGTGGCTTCCGCCCGGCCGCAGGCATCGAGCTCGCCGCTTTGGGGCCAAGCGCCGGACTGATCGGGGCTGCGGACCTTTCCCGGGTCAGCAGCCGAATGCGCAGCTGAMSNLAVNESARCLRRVPAGARRRPRLEWEIMYAPPPGEQAGPLRRPAPWRRRPPTLRARSRHGEGFREHLRLGRKGLAIGIDIGGTKVAAGVVDADGRILNEARRSTPGNDPRAVERVIVELVQELGAGHRVWSVGIGAAGWMDLEGGTVLFSPHLAWRNEPLRANLQRLLRRPVLLTNDADAAAWAEWRFGAGHGQDRLVCITLGTGIGGAMVMDGRVERGRYGVAGEFGHQIIMPGGHRCECGNRGCWEQYASGNALGREARILAQANSPVAQDLLAAVEGQTEAITGAIVTELALAGDPASRELLVEVGEWLGLGLANLAAALDPGMFVIGGGLCSAGDLLVEPARNAFARNLTGRGFRPAAGIELAALGPSAGLIGAADLSRVSSRMRSNANANANANA
D1-29_01707624hypothetical proteinATGCCTAGGCCAGACTCGGGCTCAGCGGACCAAAGCGCAAACCAGGATGATGCCGTCTGGCTGGACCTGGTGGCACGTCTGGAAGGATCCACCTCCGACAATCAGAGCGGTCAGGAGACGGGGACTACAGACACAGCGGATATTTCCGGAACCACCCCCACCCCAAGCACAGATCCACGGGCGTCCACGGATTCCTCCGATAACCCCGCTGGCACAGGCAGGCACGTAGGATTCCGTGACTTTGATCCCCTTGGCCTGGCCGCACCTACAGAAATGTCTGCGTCGGAGCGCCAGGCCGCCGCTTCGCCGGCTCCGCCAAAGCATGCTGCCCCAACAGATGGCGACGCAGCAGGCGGCCCCCGGGACTATGGGGTGGAGGACGACGACGACGGTTTCGTTCCGGACGAGCCGCCGAGCCTGGCGGGAACAGACCCGCTCACCATGCTCGCGTGGCTTGGCGCAGTTGGCGGGCCCGTGGCCCTCCTGCTGTCGGCAATGTTCTGGCGGTCCGCTCCCCTGTTGGCCATACTGGGAATCCTTGCGGTATTTATCCTTGCCGTGGTGTACCTCATTATGAAGCTCCCGCAGGAAAAGGATGAGAACGACGACGGCGCCCGCGTCTGAMPRPDSGSADQSANQDDAVWLDLVARLEGSTSDNQSGQETGTTDTADISGTTPTPSTDPRASTDSSDNPAGTGRHVGFRDFDPLGLAAPTEMSASERQAAASPAPPKHAAPTDGDAAGGPRDYGVEDDDDGFVPDEPPSLAGTDPLTMLAWLGAVGGPVALLLSAMFWRSAPLLAILGILAVFILAVVYLIMKLPQEKDENDDGARVNANANANANA
D1-29_01708837Thermostable monoacylglycerol lipaseATGACCACCCTCCCGGACCACAGCCCGTTCAGCAGCACCTTCCACGGCGGCGATGGCCCCAGGATCGGGGTGGTCCTCTCGCACGGCTTCACCGGCAGCCCGCACGGGCTCCGGGCCTGGGCCCAGTCCCTCGCCGACGCGGGCTTCGCGGTCCGGATGCCGTTACTCCCTGGCCATGGCACCAGCTGGCAGGAACTCGCCCGCACCCGGTGGACGCAATGGCACACCGAGCTGGACAACGCATACCTGGAACTTGACGGATCCTGCGACTACGTTTTTGCCGCGGGGCTCAGCATGGGAGGCGCGCTGGCCCTCAGGATCGCCGCCACCAGGCCCGTTGCCGGTGTCATCCTGGTGAATCCGGGCCTGGTCATCGACGATCCCCGCGCTCCGCTGGCCGGAATCCTCAAGCTGGTGCTCAAAAGCACGCCGGCGATTGCAAATGACATTCTTAAGCCGGGAATGGACGAAGCCGCCTACGCACGTACCCCTGTGGCGGCCGCCCACGAATTGAACAAAATGTTCAAGGACACCATCCGGCTGCTCCCCCGGGTGACGGCACCGGTGCGGGTCTTCCGCTCGACTGTGGACCACGTTGTGTCGGACTCGAGCATAGTGGCCCTGCGCCGCGGCCTGACCCATGCGCCCCTCCACCTGACAAGCCTGAGCAACAGCTACCATGTGGCCACGCTGGACAACGATGCAGAGGAAATTTTCCAGGGCTCATCCGAATTCATCCGCTCTGTGGTTTCGGCGTTAGCTCCGCCCCCAAGCGGACAGACTCCCGCAGAGCGTCCAGCAGTCCTGGCAGACAGGGAGGGAACAGCCAATGCCTAGMTTLPDHSPFSSTFHGGDGPRIGVVLSHGFTGSPHGLRAWAQSLADAGFAVRMPLLPGHGTSWQELARTRWTQWHTELDNAYLELDGSCDYVFAAGLSMGGALALRIAATRPVAGVILVNPGLVIDDPRAPLAGILKLVLKSTPAIANDILKPGMDEAAYARTPVAAAHELNKMFKDTIRLLPRVTAPVRVFRSTVDHVVSDSSIVALRRGLTHAPLHLTSLSNSYHVATLDNDAEEIFQGSSEFIRSVVSALAPPPSGQTPAERPAVLADREGTANANANANANANA
D1-29_01709804Thermostable monoacylglycerol lipaseATGACAGAAAGCAGCATCCCCTCCCGGCCTGCTGCTTTCAGCTACCCCGGCCACGGACCCAATGCAAGGACCGGAATAGCCATTAGCCACGGTTTTACCGGCAGTCCGCTCAGCGTCCTGCCGTGGGCTGAGCACCTTGCCGCCCAGGGATTTGCCGTATCGGTGCCGCTGCTTCCCGGGCACGGCACGCACTGGAAGGAACTCGCACGCACGAACTGGCGCGACTGGCACGGGACCTTTGAGGCCGCATACCTGGACCTCGCGGCGCGCACAGACCAATGCTTTGTGGCTGGCCTGTCCATGGGCGGGGCCATCGCCTTGCTCACGGCATCCAGGCATCCTGTGGCCGGCGTGTCGGTGGTCAACCCGGGCCTGAGCTTCTATGACCGGCGCGTGAGGGTGGTCGGAGTCCTCAAATATTTCCAGCACACAACCCTGCCCATCCAGGAGGACGAACCCACCGCGGAGGCCACCGAGGACGGTGACTATTCAAGGACTCCGCTCGCCTCGGTGCACGAGCTCAAGAAGCTGTTCGGTGCGGCTGCCCGGGGCCTCCCCCGGGTGGCGGCTCCCGTGCAGGTCTTCAAGTCCAGGGCAGATGCCGTGGTGCCTCCCACGTCCCTGGCCGTACTGAGACGGCGCTTGGGCCCGCGCCTCGTGGAAGTCGTGGATCTCCACAACAGCGGCCACGTGGCTACTCTTGACGTTGACGCTCCTGAGATTTTTGCCCGATCCACCATGTTCTTCCTTCAGCATGCTGCCCCCAACAACCCGTCCCACAACATCACGTCGGAGACATCATGAMTESSIPSRPAAFSYPGHGPNARTGIAISHGFTGSPLSVLPWAEHLAAQGFAVSVPLLPGHGTHWKELARTNWRDWHGTFEAAYLDLAARTDQCFVAGLSMGGAIALLTASRHPVAGVSVVNPGLSFYDRRVRVVGVLKYFQHTTLPIQEDEPTAEATEDGDYSRTPLASVHELKKLFGAAARGLPRVAAPVQVFKSRADAVVPPTSLAVLRRRLGPRLVEVVDLHNSGHVATLDVDAPEIFARSTMFFLQHAAPNNPSHNITSETSNANANANANA
D1-29_01710810hypothetical proteinGTGTTCTATTGGGTCATGAAAAGGATCTTCCTGGGTCCGGTTTTGCGGCTGCTTTTCCGTCCCTGGGTCAAGGGTTTGGACAACGTTCCGTCGGAGGGCGCGGCGATCATCGCCTCCAACCACCTTTCCTTCTCGGATTCGATTTTTATGCCACTGATGGTGTCCAGGCCGGTTGTCTTCCTTGCCAAGTCTGAGTACTTCACCGGCACGGGACTCAAAGGCAGGCTCACCGCACTCTTCTTCAGGCTTACCAACCAGCTCCCCATGGACAGGTCCGGCGGTGCGGCTTCGGCTGTCTCACTAAGCGCCGGCATGGACGTGCTGACCTCCGGCGGCCTGTTGGGAATCTATCCGGAAGGCACACGGAGCCCCGATGGAAAGCTCTACCGGGGCAAGGTGGGGGTGGCACGGCTGGCCCTTCAGGCCGGGGTGCCTGTGATTCCCGTTGCAATGATCGGCACGGACAAAGTACAACCCATCGGCAAACGGATGCCCAATATCCGTCGGATCGGGATGATATTCGGTGAACCGCTCGACTTCAGCAAATATCAGGACCAGGCCGAGGACCGGTTGGTCCAGCGGAAGGTGACTGACGAGATTATGTTCGAGCTGATGCGGCTCTCCGGCCAGGAGTACGTGGACGAGTATGCGGCCGTGGTGAAGCTCCGGCTCGATGGAAAGCAAACGGAGCCGGCGCCCGAAGCGGATAGCGCCATGGCAAAGGAACCCCGGCAGGAACCCCGGCAGGACCTCGACCAGCAACGTACCGCGGAGCCGGAAGGCAATGGCGAGGCTTCCGCAACCGGATAAMFYWVMKRIFLGPVLRLLFRPWVKGLDNVPSEGAAIIASNHLSFSDSIFMPLMVSRPVVFLAKSEYFTGTGLKGRLTALFFRLTNQLPMDRSGGAASAVSLSAGMDVLTSGGLLGIYPEGTRSPDGKLYRGKVGVARLALQAGVPVIPVAMIGTDKVQPIGKRMPNIRRIGMIFGEPLDFSKYQDQAEDRLVQRKVTDEIMFELMRLSGQEYVDEYAAVVKLRLDGKQTEPAPEADSAMAKEPRQEPRQDLDQQRTAEPEGNGEASATGPGPT0024380_1354DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-29_017111392aroHCOG3200Phospho-2-dehydro-3-deoxyheptonate aldolaseGTGATTGAGCTATCCGCAAAACCTGCCTTCTCGCTTTCCAGCACCGCCCAGAGCGGAGCAGCCAACTATCCGGGCCTTGATGATTGGCGCGATCTTCCCGTATCACAGCAGCCCAGCTGGCAGGACAGTGATGTCTTCGACGCCTCAGTGAAGGAACTCTCCGTCCTTCCGCCGCTTGTTTTCGCTGGTGAGGTGGACATCCTGCGTGAGCGGCTTGCTGCCGCAGCGCAGGGCAAGGCGTTCCTGCTGCAGGGCGGTGACTGTGCCGAGACGTTCGAAGCCGCTACTGCGGACCGAATCAGCGCCCGCGTCAGGACCATCCTCCAGATGGCAGTGGTGCTCACCTATGGTGCAGCGATGCCGGTCATCAAAATGGGCCGGATGGCCGGCCAGTTCGCCAAGCCGCGTTCTTCCAATGACGAAACCCGCGACGGCGTGACCCTCCCCGCATACCGCGGCGACATCGTTAACGGCTACGACTTCACGCCCGAATCACGCGGGCACGATGCCTCCAGGATGCTCAAGGCGTACCACACCTCGGCTTCCACACTGAACCTGATCAGGGCGTTCACCCAGGGCGGCTTTGCCGATCTCCGCCTGGTGCACCACTGGAACAAGGGGTTCACCGAAAATCCCGCCCATGCCCGCTACGAGTCCCTCGCCCGGGACATTGACCGCGCAATCCAGTTCATGGCGTCCTGCGGTGCGGACTTCGAAGCCCTCAAGCGCGTGGAGTTCTTCGCCAGCCACGAGGCGCTGCTGCTGGACTACGAGCGTGCGCTGACCCGCATCGACTCACGGACGGGCTTTCCCTATGACACGTCGGCGCACTTCCTCTGGATCGGGGAGCGCACCCGCGAGCTTGACCACGCGCATGTCGATTTCCTCTCAAGGGTGCGGAATCCCATTGGCGTAAAGCTCGGCCCGTCCACCACAGGGGACGACGCCCTCCGCCTCATCGACAAGCTGGACCCCGAGCGGGAACCCGGCCGCCTGACCTTCATCACCCGCATGGGGGCCGGAAACATCCGTGAGAAACTGCCTGCCGTTGTGGAGAAGGTCACCGCCTCCGGCGCCCAGGTCCTCTGGGTCACCGACCCGATGCACGGCAACACGGTCACCTCGCCCAATGGCTACAAAACCCGCAATTTCGACGACGTCATTGACGAGGTGCGCGGATTCTTCGAGGTGCACCACGGCCTGGGAACAGTTCCGGGCGGACTGCACGTCGAGATGACCGGCGACGACGTCGCTGAGTGCCTCGGTGGTGCCGATCCGGTGGACCAGGAAGCCTTCCTGGACAGGTACGAGTCGGTCTGCGACCCGCGCCTGAACCACATGCAGTCCCTGGAAATGGCCTTCCTGGTGGCCGGCGCCCTCGCCAAGAACTGAMIELSAKPAFSLSSTAQSGAANYPGLDDWRDLPVSQQPSWQDSDVFDASVKELSVLPPLVFAGEVDILRERLAAAAQGKAFLLQGGDCAETFEAATADRISARVRTILQMAVVLTYGAAMPVIKMGRMAGQFAKPRSSNDETRDGVTLPAYRGDIVNGYDFTPESRGHDASRMLKAYHTSASTLNLIRAFTQGGFADLRLVHHWNKGFTENPAHARYESLARDIDRAIQFMASCGADFEALKRVEFFASHEALLLDYERALTRIDSRTGFPYDTSAHFLWIGERTRELDHAHVDFLSRVRNPIGVKLGPSTTGDDALRLIDKLDPEREPGRLTFITRMGAGNIREKLPAVVEKVTASGAQVLWVTDPMHGNTVTSPNGYKTRNFDDVIDEVRGFFEVHHGLGTVPGGLHVEMTGDDVAECLGGADPVDQEAFLDRYESVCDPRLNHMQSLEMAFLVAGALAKNPGPT0012920_739DIRECT 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
D1-29_017122067spk1Serine/threonine-protein kinase PK-1GTGCAGGAATACGTGTCTGACCGACTTGTTGGAACGCTGGTGGATAACCGCTACGCCGTCCAGTCCAAGCTGGCGCGCGGCGGTATGTCCACCGTTTACCTGGCCACGGACCAGCGGCTGGAACGGGATGTGGCGCTCAAGGTACTGCACCCGCACCTGGCCGATGATGATACCTTCCTGGGCAGGCTGGGACGTGAAGCGAAGTCTGCGGCGAGGCTCTCGCATGCCCACGTTGTGAGCGTGCTCGACCAGGGAAACGACGGTCACACCGCCTACCTGGTTATGGAGTACATCAAGGGACACACACTCCGGGACGTCATCAACGCCAAGGGTGCGCTCCCTCCCCGTCTTGCCCTTGCGCTCATCGACCCAGTGGTGGAGGGGCTTGGAGCCGCGCATGCCGCCGGGATGATCCACCGGGACGTCAAGCCTGAAAACGTCCTCATTGCCGACGACGGGCGGATCAAGATCGGCGACTTCGGCCTGGCGCGCGCAGTTACCACGTCCACCAGCACCGGCGCTCTCATCGGCACCGTCGCCTACCTCTCCCCCGAGCTGGTGCTCGGGAAGCAGGCTGACGCCCGCAGCGACATCTATTCCGTGGGGATCATGCTTTACGAGATGCTCACAGGCCAGCAGCCGTTCAACGGCGACGTGCCCATCCAGGTTGCCTACCAGCACGTGAACGGCACGGTGAGACCGCCCTCCGCCGTGGTGCCAGGCCTTGCAGCCGAGGTGGACGAACTGGTGCAGTGGTGCACGGCCAATGATCCGGAGAACCGCCCAGTGGACGGCAATGCGCTGCTCCAGGAGCTCCGCCATATCCGGACCAACCTCACAGACTTCGAGCTGGACCTCCAGCCGCCTGCGGCCATTGGCCCCGGCCAGCAAAACCCTACCGAAATCATTACCCGCAGCAGCAACCCCACGACGGTGATGTCGCCGTTCGGCCGGCCCCAGCCACAGCACCCCGCCGACTCCCACCCCTCGGACTCTCCAGCCACCTCGGTCTATCCCACAATGCCTCCGCCACAGAGGCCTCCTGCGGAGTACGGACCCTTGACTCCCCAGACGCCGGCACGGCTGAGCAAGCGAGCCCAGCGCAAAGCCGACAGGGAGGACGAGAAAGCCAGGTCCCGTGCCGCCGCCACGCCGCTGAAGACATTGAGGGAAGGCAATCCCCGCCGCCGGGGTGTCCTCTGGGCAGTCATCGTCATCATCGCCGCCCTTCTGGCAACCGGGGCCGGCTGGTTCTTCGGCATGGGACCCGGCTCCCCCGGAACCGTTCCACAGGTGGCCAACAAAACGGTGGCGCAGGCCCAGCAGCTGCTCAGCGAGGCAGGCTTCCAGTCACGCACCAGTGACGTGTTCCATGATGATGTCCCGTCCGGGCTGGTGGTGGGTTCCGAGCCCGGGGCCGGAACCGAAATCAGGAAGTTCCAGCCTGTCGCGTTATTCGTCTCCAAGGGACCCCAGCTGTTTGATTTGCCGAACCTCACGGCAAAGACATTGGAGCAGGCCAAGGAAGAACTCAACCAGGCTGAAATGGCGCTGGGCACCGTCGTCGAGCAGTTTGATGAGGCGGTGGCCGCGGGAGTGGTCCTGGCACAGGACCCTGCCCCCGGGACACCAAGCCGGCACGGCACGCCGGTGAGCCTGACTGTATCCAAAGGCCCCCAGCCCATCCCGGTACCGGTAGTCGTCGGCGAGGACGCCGAGGACGCGGTGGCCGCGATTGAAGCGGCAGGACTCAAGGCCGTCATTGCACCGGAAGAGGTAAACGACAGGAACGTGCCCAAGGGGGCAGTGTCCAGCCAGTCGCCGGCGTCCGGAACGCTCACCAGGGGCGGCACCGTGACGCTGACCGTGTCCAAGGGCCCCAAGCTTGTCAAAGTACCCAGCTACATCGGCAAGCAGGCAGATGACGCACAGGACGCACTGGAAGAGCTCGGGTTTGAGGTCAGGGTCAACGAAATCCTGGGCGGCTTCTTCGGAACGGTCCGCAGCCAGGACCCGGTCAACACGGAAGTACCTGAAGGCTCGGTCATCACCCTGACGGTGGTGTAGMQEYVSDRLVGTLVDNRYAVQSKLARGGMSTVYLATDQRLERDVALKVLHPHLADDDTFLGRLGREAKSAARLSHAHVVSVLDQGNDGHTAYLVMEYIKGHTLRDVINAKGALPPRLALALIDPVVEGLGAAHAAGMIHRDVKPENVLIADDGRIKIGDFGLARAVTTSTSTGALIGTVAYLSPELVLGKQADARSDIYSVGIMLYEMLTGQQPFNGDVPIQVAYQHVNGTVRPPSAVVPGLAAEVDELVQWCTANDPENRPVDGNALLQELRHIRTNLTDFELDLQPPAAIGPGQQNPTEIITRSSNPTTVMSPFGRPQPQHPADSHPSDSPATSVYPTMPPPQRPPAEYGPLTPQTPARLSKRAQRKADREDEKARSRAAATPLKTLREGNPRRRGVLWAVIVIIAALLATGAGWFFGMGPGSPGTVPQVANKTVAQAQQLLSEAGFQSRTSDVFHDDVPSGLVVGSEPGAGTEIRKFQPVALFVSKGPQLFDLPNLTAKTLEQAKEELNQAEMALGTVVEQFDEAVAAGVVLAQDPAPGTPSRHGTPVSLTVSKGPQPIPVPVVVGEDAEDAVAAIEAAGLKAVIAPEEVNDRNVPKGAVSSQSPASGTLTRGGTVTLTVSKGPKLVKVPSYIGKQADDAQDALEELGFEVRVNEILGGFFGTVRSQDPVNTEVPEGSVITLTVVNANANANANA
D1-29_017131413hypothetical proteinATGACGACGTCCCGCTCGCCGAAGCAGCACACCAGGCCAAGCCTGCCCATGATTGCCGCCACCACGGCAGCGTTGCCTGCGGTCGTTCTGTCCTCTCTTGCCCTCGCCCAGCCTGCTGCCGCGGAGCCGCGTCCCCGCGCCATCCCGGCCACCCTGTCCGCCGCCATGAAGGCACAGGTCGCTGCAGCGACGGCAGCTGTCATTCCGGCGGCATCAGTATCCACTACAGTTCCGGCAGCCTTCCGGCCGGCCCAGCCCTCAGCCCCTGCTGAATACACCATTGCCCGCGGGGATACGATCAGCGGAATCGCAGGGAAGTATGGACTCGACACGTACGAGATCCTGAAGCTGAATAACCTCCAGCCGAATACCATCATTTACCCGGGCCAAAAGATCAAACTCTCAGGCTCCGGATCCGCACCGGCGGCGCCCGCCGCGGCCCCTGCTCCAGCCGCCCCGGCGGCTCCTGCGAATGGTGGAGGCAGCTATACGGTCAAGCCCGGCGACACTCTCGGCGCCATAGCGTTCCGGCATGGCGTGGGCCTGTCCGAGGTGCTCAGCTGGAATGGCTTGAACATGCGCTCCATCATCTACCCGGGCCAGAAGATCAAGGTGACGGCCGGCGGTGGTGCGCCGGCGCCCGCAAGCGCCCCGCAGCCGGCCGCAGCTCCGGCGGCCCCGGCCCCTGCCCCGGCTCCTGCTTCAGCTCCTGTTTCCGCCCCGGCAGGCAGCTACACCGTCAAGGCCGGCGACACCTTGTCCGCCATCGCCTCACGGCACGGTGTCAAACTGTCCGACGTCCTCTCAGCAAACCAGCTCAGCATGACCAGCGTCATCTACCCCGGCAACAAGCTCGTTATCCCGGGCGCCGGTGCCGGATCCTCGCTGCAGCCGGCTTCGAGCCAGCCCGCCGCCAGCGTGACTCCGCTGGTGCCCAGCACCTTTCTTGGCTTCACCTATCCTGCGGCAGTTGTCAGCTCCGCCAATGAGAACAAGGCGCTGTTGAACGCGTCCCCCGTGCCGTCCCGCGAACAGATGCGGACCATCGTGGCAGACACCGCCCGTCAAATGGGGGTGGAACCGTCGCTGGCCCTCGCCTTCGCCCACCAGGAATCGGGGTTTGACCAGCGTGCGGTGTCCCCGGCGAATGCCATCGGGACCATGCAGGTCATTCCCGCCTCCGGGCAGTGGGCCTCAGACCTCGTGGGACGCAAACTCAACTTGCTGGATCCCTATGACAACGCGACCGCCGGCGTGGCAATCATCAGCCGTCTGATCGCCACAAGCAAGGACATGGACACCGCGATCGCCGGCTACTACCAGGGCCAGTACTCTGTGAGCAAGTACGGAATGTACGATGACACCAAAGCCTACGTGGCAGCTATCAAAGCCCACCAGAAGAACTTCGGCTGAMTTSRSPKQHTRPSLPMIAATTAALPAVVLSSLALAQPAAAEPRPRAIPATLSAAMKAQVAAATAAVIPAASVSTTVPAAFRPAQPSAPAEYTIARGDTISGIAGKYGLDTYEILKLNNLQPNTIIYPGQKIKLSGSGSAPAAPAAAPAPAAPAAPANGGGSYTVKPGDTLGAIAFRHGVGLSEVLSWNGLNMRSIIYPGQKIKVTAGGGAPAPASAPQPAAAPAAPAPAPAPASAPVSAPAGSYTVKAGDTLSAIASRHGVKLSDVLSANQLSMTSVIYPGNKLVIPGAGAGSSLQPASSQPAASVTPLVPSTFLGFTYPAAVVSSANENKALLNASPVPSREQMRTIVADTARQMGVEPSLALAFAHQESGFDQRAVSPANAIGTMQVIPASGQWASDLVGRKLNLLDPYDNATAGVAIISRLIATSKDMDTAIAGYYQGQYSVSKYGMYDDTKAYVAAIKAHQKNFGPGPT0019120_14DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0019120-sle1|yocH-K22409NANA
D1-29_01714354DNA-binding proteinGTGAGTAATGTAGAAAGCCTTGTGGGCGAATGGTTGCCCTTGCCCGATGTAGCAAAGTTGTTGGACGTTTCCATCACGAGAGTTCACAGCCTGATTGATGACCGCGCCTTGGCCGCGCTGCGCGTGGGAGAACGCCGGATACGGTCAGTTCCGGCCGAGTTCATCCAGGACGGACATGTAGTCGAAAGCCTTAAGGGCACCATCGTGGTCCTGGCGGACGCGGGCTATTCGGACGAGGACCTGATTGTCTGGCTGTTCACGGCAGACGAGTCGTTGCGGGGACGTCCCATAGATGCGCTGCGCGAAGGCCGGAAAACCGAAATTCGGCGCCGGGCTCAGACCCTGGCCTGGTAAMSNVESLVGEWLPLPDVAKLLDVSITRVHSLIDDRALAALRVGERRIRSVPAEFIQDGHVVESLKGTIVVLADAGYSDEDLIVWLFTADESLRGRPIDALREGRKTEIRRRAQTLAWNANANANANA
D1-29_017151095Farnesyl diphosphate synthaseGTGACGGTCGCCGAGCAGCTGCGGCTGGAACAGACAGCGTTCGTGGCTGCCGTTGCCGGTGAGCTGACCGATTTCCTCTCCACCCGGCAGGCAGTCATGGCCGGCATTTCTCCCGATATCGACCCGATCATGGGCTCCATCTCAAACCTGGTGACGGGAGGCAAAAGGCTGCGTGCCCTGATGTGTTACTGGGGCTGGCGGGGCGCGGGCGGGGACCCCGAGGCCCACAACATCGTGACGGCCGGATCAGCACTTGAGCTGTTCCAGGCTGCGGCACTGATCCACGACGACATCATCGACCGCTCCGACACCAGGCGGGGCGGCCCGAGCGTCCACCGGCGCTTCAGCCAGCTGCATCATGCCCAGGGATGGGCACTGGACAGCGAGAGGTTCGGGCATGCGGCCGCCATCCTGACGGGTGATCTCTGCCTGTCATTCAGCGAAGAAGCCTTCACCGACATCGGTGAACAGGCGGCGTCCGGGAGCCGCGCCCGGCTGATCTTCAACCTCATGCGCGCCGAAGTCATGGCCGGCCAATACCTGGACATCCTCGAGGAAGTGGCGGGACCGGTCAGGGACAGGGCCGGGGCGGTTAGCCGGGCCCAGTCAATCATCAGGTTCAAGTCGGCCAAGTACTCAACAGAACACCCCCTGGCCCTGGGCGGAGCGCTGGCCGGAGCCTCGGACGACCTGCTCAGGGGATATTCCGCCTTTGCGCTGCCACTGGGCGAAGCATTCCAGCTGCGCGACGACATCCTGGGGGTATTCGGCGATCCCGTCACCACAGGCAAGCCCGCCGGAGATGATCTCCGGGAAGGTAAAAGGACGGTGCTGGTGGCATTGGCCCTGGATCAGGCCTCTCCCGACGAGTCGGCTTTTATTGACGCCAAACTCGGCAGCCCGGATCTTGACGATGAGGACGTAGCTGAAATTCGCCGCATTATCGAGGAATCCGGAGCCCTTCAGGCAACCGAGGTGCTCATCGGGGAATTCGGCGCGGCTGCCTTTCATGCCCTGGACATGCTCCCGCTGGAAGAATTGCCTAAAACAGCTCTTCGCAGGCTTGCTGAAGCAACAGTCAGCCGCGCTTCCTGAMTVAEQLRLEQTAFVAAVAGELTDFLSTRQAVMAGISPDIDPIMGSISNLVTGGKRLRALMCYWGWRGAGGDPEAHNIVTAGSALELFQAAALIHDDIIDRSDTRRGGPSVHRRFSQLHHAQGWALDSERFGHAAAILTGDLCLSFSEEAFTDIGEQAASGSRARLIFNLMRAEVMAGQYLDILEEVAGPVRDRAGAVSRAQSIIRFKSAKYSTEHPLALGGALAGASDDLLRGYSAFALPLGEAFQLRDDILGVFGDPVTTGKPAGDDLREGKRTVLVALALDQASPDESAFIDAKLGSPDLDDEDVAEIRRIIEESGALQATEVLIGEFGAAAFHALDMLPLEELPKTALRRLAEATVSRASPGPT0007550_646DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007550-idsA-K13787NANA
D1-29_01716528hypothetical proteinGTGACGGTCATTGGAAATCTTAAGCCGGCAGCGTTGGCCGCCTTGGTGGCAGGCGCTGCGCTGGGACTCGCCGCCTGCAGTCCTGCGGGCCCGGGAGTGACCACGGCATCCTCCGGCACCACGTCGCAGACAACCAGCCAGCCCACTGCCACCGCCTCCCCAAGCCCCTCGGCTTCGCCGGGGACCTCGGCCACAGTGGGGGCACTCGTCGAAGGTTTTCCCGGGAAGCTCCTGCCCCTGATGCCCGGGGCAACGGTGGTTTCCAGCAGCTTTGACAAGTCAGCAACACCGGCCACCGTCGCACTGGTGGCAACCGTCGCGTCCCCTACTCCCGCCGTCGTCGATTTTTACACGAAGGAGCTGGAGGCCCAGGGCTTCAAGGCAGTGCCGGGCGAGGCCGTGGGCACCGTCGCGTCCAAGGATTTCGTCAGGGGCGACAACGAGACAGTCAATCTCGCAGTAGTGGAGGCCGCCGGGGTTTCCACCTTTACCATCGGCGCAAATGTGGCAGCCGAGTCGGCCCAGTGAMTVIGNLKPAALAALVAGAALGLAACSPAGPGVTTASSGTTSQTTSQPTATASPSPSASPGTSATVGALVEGFPGKLLPLMPGATVVSSSFDKSATPATVALVATVASPTPAVVDFYTKELEAQGFKAVPGEAVGTVASKDFVRGDNETVNLAVVEAAGVSTFTIGANVAAESAQNANANANANA
D1-29_017171227dinBCOG0389DNA polymerase IVGTGGGCCCGGAGCGGAACAACGATGAAAGCGAAGTGAGCCTTCGGGAGCTTCGACGCAGCTCTATTCTGCATGTGGACATGGACGCATTCTTTGTCTCCGTCGAGCTGCGGACCCGCCCGGAGCTCCGGGGCAGGCCCGTCATTGTCGGCTACCCGGCAGACCGGTCCGTGGTCCTCTCGGCGTCGTACGAAGCCAGGGCCTTCGGCGTAAAATCTGCCATGCCCATGGTGATGGCGGCCAGGATCTGTCCCAAGGCAGTCATCATAGAACCGCGGCACAGGCTGTACTACGAGGTCTCCGCGCAGATCATGGCTATTTTTGAATCCATCACCGAACTGGTGGAGCCCCTCAGCGTAGACGAGGCGTTCCTTGATGTTGGCGGTGCCATCCGCCGGCTGGGGGCTCCCCGGGAGATCGGGGAGCTGGTCCGCCGCCGGGTCTCGAATGAACTGGGGATCACGGCCTCTGTGGGTATCGCTGCCAGCAAGTTCGTAGCCAAGATCGCCTCAACACGCTGCAAGCCGGACGGGTTGCTGCTGATCACTCCGGAAGAGACTGTCCCGTATCTTCACAGCCTGCCTGTCGGTGCGTTGTGGGGGGTCGGAGCCAAAACGGCGGACGTGTTGGCCCGAATGGGCATCAGGACGGTCGCGGATGTTGCTGCCACTCCGGTGTCCTCCCTCAAGAAAGTCCTGGGCGCCACCGGTCAACATGTTTACCAGCTCTCGTGGGGGATTGATCCGCGTCCCGTTACGCCCGTCAGGCTTGAAAAGAGCATCGGGGCAGAAGAAACCTTCGCAGTGGATACCGGGGACGACGCCATTCTTCACCGCGAACTGCTGCGCCTCGCCCACCGGACAGCGGAGCGCCTTCGCAGTTCCGGGATGGTGGCCAGGACGGTCGCTTTGAAACTCCGCTACGCAGACTTTTCCACCATCACCCGGAGCCGTACAGTCCACACTCCGGTTGACAGCGCCCAGTTGATCTACGCGGTGGCCCTGCAGCTTCTGGAGTCGATCGGAAACCGGACAATGACGGTGCGCCTGGTGGGGATCCGCGCGGAGCAACTGGAGGATGCCGGGCAAACGTCCCTGCAGCTGAGCCTTGATCGCAGGGACGATAACTGGCGTGCAGCCGAGCAGGCACTGGACAGGGTGAGCCGGAAATTCGGGAGTAAATCCGTCCTTCCGGCCCGGTTGCTGGATTCCGGAAACGGGTCCGGGTAAMGPERNNDESEVSLRELRRSSILHVDMDAFFVSVELRTRPELRGRPVIVGYPADRSVVLSASYEARAFGVKSAMPMVMAARICPKAVIIEPRHRLYYEVSAQIMAIFESITELVEPLSVDEAFLDVGGAIRRLGAPREIGELVRRRVSNELGITASVGIAASKFVAKIASTRCKPDGLLLITPEETVPYLHSLPVGALWGVGAKTADVLARMGIRTVADVAATPVSSLKKVLGATGQHVYQLSWGIDPRPVTPVRLEKSIGAEETFAVDTGDDAILHRELLRLAHRTAERLRSSGMVARTVALKLRYADFSTITRSRTVHTPVDSAQLIYAVALQLLESIGNRTMTVRLVGIRAEQLEDAGQTSLQLSLDRRDDNWRAAEQALDRVSRKFGSKSVLPARLLDSGNGSGPGPT0014881_1872DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
D1-29_01718372hypothetical proteinATGCCCCTCTCGGAGCACGAACAGAAGCTGCTTGAGCAGTTGGAGAAGCAACTGCACGAGGACGATCCAAAGTTCGCTAATTCCATGGGTTCGGACCCGGGCCGTTCATGGTCCACCCGGCACGTGGTGATTGGAGTCCTGGGCGCGTTGGCGGGCATCTTCCTTCTGCTGGTCGGCGTCACGATGCAGAGCATACTTGTTGGCGTGCTTGGCTTCATCGTCATGGGCGGCGGGGTTTACTTCGCCACGATGCGCAGCTCCGGAGGCGGTAAGCAGCGCTCCGGCAGCCCCGCGAAGCCTGGCAAGTCAAGAAGTTCGTTCATGAGCAGCCTGGAAGAGCGCTGGGATGAAAGGCGCCGCGGAGAGTCCTGAMPLSEHEQKLLEQLEKQLHEDDPKFANSMGSDPGRSWSTRHVVIGVLGALAGIFLLLVGVTMQSILVGVLGFIVMGGGVYFATMRSSGGGKQRSGSPAKPGKSRSSFMSSLEERWDERRRGESNANANANANA
D1-29_01719429mraZTranscriptional regulator MraZGTGTTTTTGGGCACCCACTCACCACGTTTGGATGAAAAGGGCCGGATTATCCTCCCCGCCAAGTTTCGTGAGGAACTTGCCGGCGGGCTGGTGCTCACAAGGGGCCAAGAGCGTTGCATCTACGTCTTCAGTGAGCAGGAATTTGCGCGGGTCCACGAGCAAATGCGGGAGGCACCTATTTCCTCCAAGCAGGCGCGCGACTACATCCGTGTCTTTCTCTCTGGAGCCTCCGACGAGGTACCTGACAAGCAGGGGCGCGTGACGATTCCGCCGGCGCTCCGGGAGTATGCAGGCCTCGGCAGGGAACTGGCCGTTATCGGTGCAGGAACCCGTGCCGAGATCTGGGACGCCCAAGCCTGGAACGAGTACCTGGCAGAGAAGGAGACCGCCTTCTCTGAAACCGACGACGCCATTCCGGGGATCCTTTGAMFLGTHSPRLDEKGRIILPAKFREELAGGLVLTRGQERCIYVFSEQEFARVHEQMREAPISSKQARDYIRVFLSGASDEVPDKQGRVTIPPALREYAGLGRELAVIGAGTRAEIWDAQAWNEYLAEKETAFSETDDAIPGILNANANANANA
D1-29_01720993rsmHCOG0275Ribosomal RNA small subunit methyltransferase HATGAACGACCATCCCAAGCCGACGTCCGAACGCCATGTGCCGGTCCTGAGGGACCGGTGCATCAATTTGCTGGCCCCTGGTTTTGAAGCCGCACGCCTGCGGGGCGAAACCCCCGTGGCGATCGACGCCACACTCGGCATGGGAGGCCACTCGGAGGCCATGCTGCAGCGCTTTCCCGATCTGCACCTGATCGGCATCGACCGCGATGAAGAGGCCCTGGCCCTCTCCGGCGAACGGCTCGCTCCCTTCGCTGCCCGTACCGACCTGGTGCATGCCGTTTATGACGAAATCGGCGATGTCCTCGAGGACCTCGGCGTCAGTGAGGTCCACGGCATCCTGATGGACCTGGGGGTGTCATCGCTGCAGCTGGACGAGCGTGAGCGCGGCTTCGCCTACTCCTTTGATGCCCCGCTGGACATGCGGATGGACACCAGCCGCGGCCAGACCGCTGCTGACGTGGTGAACAACTACAGCGAAGAGGAACTCGTCAGGATCATCCGGAAATGGGGCGAAGAAAAGTTCGCCGGCCGAATCGCTAACAGGATCGTGGCAGCCAGGGCCGTCAAGCCGTTCACCACCACAGGGGAGCTTGTCGAACAGATCCGCTCGGTGGTTCCGGCCGGAGCTGCCAAGACTGGCGGGCATCCAGCCAAGCGGACATTCCAGGCCCTGCGGATCGAAGTCAACGAGGAACTGGACGTGCTGGAGCGAGCTGTACCCGGCGCCGTGGACGCTATAGCCCTGGGCGGACGCATAGTGGTGATGTCCTACCACTCCCTTGAGGACAAGATCGTCAAGAGCGTGTTCCAGGCCCGCTCCAAATCGTCCGCACCCCTCGGCTTCCCCGTGGAACTTGAAGAACACAAGGCCGAACTGAAAACCCTGACTAAAGGCACCGAGGTGCCCACCGCCGTCGAGATCGCTGAAAATCCGCGGGCAGCTTCCGCCAGGCTGCGTGCCGTGGAACGAATCAGAGCCAGGAGAGCAGCATGAMNDHPKPTSERHVPVLRDRCINLLAPGFEAARLRGETPVAIDATLGMGGHSEAMLQRFPDLHLIGIDRDEEALALSGERLAPFAARTDLVHAVYDEIGDVLEDLGVSEVHGILMDLGVSSLQLDERERGFAYSFDAPLDMRMDTSRGQTAADVVNNYSEEELVRIIRKWGEEKFAGRIANRIVAARAVKPFTTTGELVEQIRSVVPAGAAKTGGHPAKRTFQALRIEVNEELDVLERAVPGAVDAIALGGRIVVMSYHSLEDKIVKSVFQARSKSSAPLGFPVELEEHKAELKTLTKGTEVPTAVEIAENPRAASARLRAVERIRARRAANANANANANA
D1-29_01721702ftsLCell division protein FtsLATGAGCACCGCCGCCGTCAAGAACTTTCCGCTCGTCGCAGGCAGCTCTGCTCCGGCCCTTGGCACCAATCCGGCAGGGGCTCCCGGCGATGGCCGGAAGGTCCGCACTCCTCTGTCCGTGGTGCGCTCCGCGCCCAGGAAGCGCCGCGCGCCTTTTGTGGTGATGTGCTTTGCCTTGCTCGCCGTAGCCCTGGTGGCGGTGCTGGTGCTGAACATCTCGGTTTCCACAGCGCAATACCAGCTCGTGGAACTCAGGAGCAAGCAGAGTACCCTCACCAAGCAGAACCAGGATCTGGCCCAGCAAGTCCAGAACTTCCAGGCTCCACAGAACCTGGCTGCGAAGGCGTCGGACCTGGGCATGGTGGCTTCCACTGTCAAGGGGCAGATCGATCTCTCCACTCTTGCCGTTTCCGGGAAGGCAACTCCTGCCGTGAAGGGCGATGCGGCGGCAGGTGCCGTCATCCCTGCGCCTGCAGTTGCAGGCGTGATGACTGTTGTTCCGCCGGCAAGCACGGGCGAACCGCTCGCCAGCCGAAAGCCGGCTGAGGACTCGGCGGCGCCTCCTGCCGCACGGGCGGAAGCGCAGGCTCCCGCAGCAGCGGCAGCAGCCCCCGCCCCGGCGGCTCAGGCAGCTGCTCCGGCCGTGGAACTTCACGGTGGTTCCGTGCCGGCTCCCCAGCAGAAGGCGCCGGGCCGTAACTGAMSTAAVKNFPLVAGSSAPALGTNPAGAPGDGRKVRTPLSVVRSAPRKRRAPFVVMCFALLAVALVAVLVLNISVSTAQYQLVELRSKQSTLTKQNQDLAQQVQNFQAPQNLAAKASDLGMVASTVKGQIDLSTLAVSGKATPAVKGDAAAGAVIPAPAVAGVMTVVPPASTGEPLASRKPAEDSAAPPAARAEAQAPAAAAAAPAPAAQAAAPAVELHGGSVPAPQQKAPGRNNANANANANA
D1-29_017221797pbpBCOG0768Penicillin-binding protein PbpBGTGGCGCAAAGGACCGGCAAGGCGAAGATCGGCAAGGTGCCCAACGCCAGGCGGCGATTGCGGCTGGGCCTGGGGATCATGCTGACGCTCCTCCTGGTGGTGGGCGGAAAACTTTTCCTGGTCCAGGGCCTGGACGTCGGGGGAATGGCTGAGGCCGCACTGGACAAGCGAATGCGCGCAACAGTCCTCCCCGCTGAACGTGGCAGCATCCTCGACTCCGGCGGAACAGTCCTCGCCAACAGTGTCATCCGCTACAACGTGGTGGTGGACCAGACCGTGAACACCAAGACGGAGAAGTTCAAGCGCCTCGTAGAGGGCCAGGACAAACTGGAGGACGTCACCCGCGACCAGGCCATCAAAGAATTGGCCGCCGTCCTGGGGATGGAGACCGACGAACTCCGGAAAGCTGTTACAGGCGAATCGAAGTACCACATCATCGCCAAAGACCTCAAGCCCGACATGGAAGACGTGGTTTCAAGGCTTCAGGTACCGGGAATCGTCACTCAAGGCGTCAGCAAACGGGTCTACCCGAATGGCTCCGTTGCAGGCGGGATCATCGGCTTCCTTCACGACGGCACCACGGGCCAGGCCGGAATTGAGCAGACCCAGGATGAAATCCTCAGGGGGACGGACGGCAGGCGGCTCTTCGAAATCGGTGCCGACGGTCTCCGAATCCCCGTGGGTGTGGATGAACTGACGCCGCCGCAGGACGGCAAGGACGTCAAGCTCACCCTTAATTCCGACCTTCAGTATTTTGCCCAGCAGGCCATCCAAAGCCAGTCGGACAAGCTGGGAGCCGAGTGGGGCGTCATCATCGTGATGGACGCCAAGACGGGCGACCTGATCGCCATGGCCGACACAAATTCCCCGGACCCAAACGATCCTGGCAGGGTCGCTGCGAAGGACCGGGGCGTGCGGTCAGTCACGGCAGCCTACGAACCGGGGTCGGTGGAGAAGATGATTACCGCCGCGGCGCTGATCGAGGAAGGAAAGTCCAGCCCCCTGGACACCTTTACCCTCCCGCCGTCCTACACTGTGAATGGCCAGACCTTCAGTGATTCGTTTGCGCACGGGACCGAAGAGCGGACCCTCGCCGGTATCCTCGGCTGGTCAATGAACACCGGAACGGTGATGGCCGGGCAGCGCCTGACCAAGGATCAGCGCTACGACTGGCTGCAGAAGTTCGGCATTGGCGAGGCGCCGGATATCGGCCTGCCTGCCACAGCTTCGGGCATTCTGACTCCTCCGGAGCAATGGGACGGGCGGCAGGAGTACACGGTCCTGTTCGGACAGGGTGTGTCACAATCCACCCTGCAGACTGTGCGGGCGTTCCAGGCGGTGGCCAACAACGGCGTTATGCTCCAGCCCCGCCTTATTGACGCTTACGTCGCCCCGGACGGAACCGAGGAAAAGGTGGAGCCGAAGCCGTCCCGGCAGGTGGTGTCGGACAACACTGCACAGCAGGTCCAGGACATCCTCGAAAGTGCGGTAACGGAAGGCCAGATCAAGGACGCCGCCATTGACGGTTACCGCGTCGGCGCCAAGACCGGAACGTCCGAATCACCGTGCGACGACGGCAAATCGGGCTTCTGCGGCTACACCGCCTCCATCGTCGGCATGGCACCCATGGATGATCCGCGGTTTATTGTGGAGGTGGTACTGCAGCGGCCCAAGGGCAGCATCTATGGCATTACGCAGGGTCCTGTCTTCCGCTCGGTCATGAGCCAGGCCCTGCGGAGCTACAACGTTCAGCCGTCCACCGGTGAACCCGCCAGGTTGCCGCAGTACGCAAAATAGMAQRTGKAKIGKVPNARRRLRLGLGIMLTLLLVVGGKLFLVQGLDVGGMAEAALDKRMRATVLPAERGSILDSGGTVLANSVIRYNVVVDQTVNTKTEKFKRLVEGQDKLEDVTRDQAIKELAAVLGMETDELRKAVTGESKYHIIAKDLKPDMEDVVSRLQVPGIVTQGVSKRVYPNGSVAGGIIGFLHDGTTGQAGIEQTQDEILRGTDGRRLFEIGADGLRIPVGVDELTPPQDGKDVKLTLNSDLQYFAQQAIQSQSDKLGAEWGVIIVMDAKTGDLIAMADTNSPDPNDPGRVAAKDRGVRSVTAAYEPGSVEKMITAAALIEEGKSSPLDTFTLPPSYTVNGQTFSDSFAHGTEERTLAGILGWSMNTGTVMAGQRLTKDQRYDWLQKFGIGEAPDIGLPATASGILTPPEQWDGRQEYTVLFGQGVSQSTLQTVRAFQAVANNGVMLQPRLIDAYVAPDGTEEKVEPKPSRQVVSDNTAQQVQDILESAVTEGQIKDAAIDGYRVGAKTGTSESPCDDGKSGFCGYTASIVGMAPMDDPRFIVEVVLQRPKGSIYGITQGPVFRSVMSQALRSYNVQPSTGEPARLPQYAKPGPT0023865_1882DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587NANA
D1-29_017231641murECOG0769UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligaseTTGTCAGAGCACCATGTACCCGGCCCGCACTCTGCCCAGGCCGGGGGATCGGCCAACGGCCGCTTCCGCCCGGAAACGGTAGCCGCGGTCCGCCTGGACGCCATTGGTGAAGCAGTAGGGGTACCCGTTCCCGGCCATTCCGCCGCCGTCGATGTCACCGGAATTTCGCTGAACTCGCGGACGGTGGAACCGGGCGATCTGTACGTCGCCCTGCCGGGCGCTGCCCGTCATGGCGTGGATTTCGCGGAACAGGCCATTGCCGCCGGGGCAGTGGCGGTCCTGACTGACGACGCCGGGGCGCGCACCCTGGCACTGTCGGCAGAAACTGCCGTACCCGTGCTGGTGGTCGACCGGCCCCGGAACGTTGTGGGGCCCCTTTCTGCCCTGATCTTCCAAAGCCAGTCTTCAGCCGAGGGAAGTTTCCGGCTGTTCGGCGTCACCGGCACAAACGGCAAGACCACCACCACGTACTTCATCAACGCGCTGCTGCGTTCGCTGGGCATGAAGACCGGCCTGATCGGGACCATCGAGATTCTGGCAGGCGGCGAAGCGATTCCCAGCCTGCTGACCACCCCCGAGTCACCAGACGTCCACGGGCTGCTGGCCCTCATGCGGGAGCGGGGGCTGGATGCGGCCTCGATGGAGGTCTCCTCGCACGCCATTTCCTTCCAGCGCGTGGATGGCGTCGTTTTCGACGTTGCCGGCTTCTCCAACCTGACCCAGGACCATCTGGACCTGCACGGGACCATGGATGAATACTTCGACACCAAGGCCGCGCTTTTCACTCCGGCCCGTGCCCGGGCAGCAGTGGTGACTGTCGATGATTCATGGGGACGCCGGCTTGCCGGCACTGCTGACGTGCCCGTCACGACGCTCGCCACAGCTCCTTCCGCTGCACAGGCCGACTGGATGGTCACCTACACCACTGCCCGCGGCCTGGGAACCGACTTCACACTGCAGGGCCCCGATGGTGTGTCCCTGAATGTGCACACGGGCCTGCCCGGCAGCTTCAACGTTGCCAATGCAGCCCTTGCTGTTGTGATGGTGCTGACCAGCGGGGTGGCAGCAGACGTTGTTCAGTCGGCCCTGGACACTCATGATCCCTTCACCGTGCCGGTTCCCGGGCGGATGCAGCTTGTGTCGGAAGAGCCGGCAGCTGTGGTGGACTTTGCCCACAACACTGACGCGCTGGCGCGCGCCCTGGAGGCAGTACGGCCGCCGGTCCCGGGAGCGAAGCTGATTGTGGTGTTTGGCGCCACCGGGCAGCGGGATGAGGGTAAGCGCCCGGCCATGGGAGCCGTCGCAGCACGGCTCGCCGACACAGTGATCGTCACAGATGACGACCCCCACGACGAGGATGCAGCAGCCATCCGGGCAGACGTTCTTGCCGGCGCCAGGGCAGCCCAGGAACAGGACTCGCTGGAGTGCAGCATTGTGGAGGTGTTCCCGCGTGACGCCGCCATCCGGCATGCCGTGGAACTCGCCGGTACCCGGGACACCATCCTGGTGGCAGGCCGTGGCCATGAGGTCTGGCAGGAAGTCAAAGGCGTGAACCTGGCACTTGATGACCGGGTGGAGCTGAGGAATGCCTTGACAGCCAGGGGATTCACCGTTCTCCAAGACGACCGGATAGAGTCCTAAMSEHHVPGPHSAQAGGSANGRFRPETVAAVRLDAIGEAVGVPVPGHSAAVDVTGISLNSRTVEPGDLYVALPGAARHGVDFAEQAIAAGAVAVLTDDAGARTLALSAETAVPVLVVDRPRNVVGPLSALIFQSQSSAEGSFRLFGVTGTNGKTTTTYFINALLRSLGMKTGLIGTIEILAGGEAIPSLLTTPESPDVHGLLALMRERGLDAASMEVSSHAISFQRVDGVVFDVAGFSNLTQDHLDLHGTMDEYFDTKAALFTPARARAAVVTVDDSWGRRLAGTADVPVTTLATAPSAAQADWMVTYTTARGLGTDFTLQGPDGVSLNVHTGLPGSFNVANAALAVVMVLTSGVAADVVQSALDTHDPFTVPVPGRMQLVSEEPAAVVDFAHNTDALARALEAVRPPVPGAKLIVVFGATGQRDEGKRPAMGAVAARLADTVIVTDDDPHDEDAAAIRADVLAGARAAQEQDSLECSIVEVFPRDAAIRHAVELAGTRDTILVAGRGHEVWQEVKGVNLALDDRVELRNALTARGFTVLQDDRIESPGPT0024130_171DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928NANA
D1-29_017241467murFCOG0770UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligaseATGATTGCATTTACTGCGGCGGAAATCGCCGAAATCACACACGGCCGCCTGGACGCCGATCCCGGCATTACACCCCTTTCGGTGGTCACGGATTCGCGCGAAGCAACAACCGGGTCGCTCTACGTTGCGAAGCCGGGTGAGCACGCCGACGGCCACGACTTCGTTGGGGCTGCCTTCGACAGGGGCGCATCACTGGTACTTGCTGAGCGCCCTGTCGCGAACCCGAATGGAGCCGGGTACCCGGCCGTGGTGGTCAAGGACGCAGTCCTGGCCATGGGGGCACTGGCCGCGGAGGCGGTTCGCCGGATCCGTGCCGCCAGGCACGCCGAAGGCGAAGAGCTGACGGTCATCGGGATCACCGGCTCCGCCGGCAAAACCACCACCAAAGACCTGCTCGCCGGAATCCTGGAACAGCAGGGAACCACCATTGCGCCGCAAGGCTCGTACAACGGTGAAGTAGGTGTGCCCCTGACCGTATTCCGCGCCGATTCCACCACGCGCTTCCTGGTGATCGAAATGGGAGCCACCGGAATCGGACACATCCGTTACCTGGCCGACATGGTGAAACCCGACATTGGTGTGGTCCTTGGGGTCGGAACCGCCCATGCCGGTGAGTTCGGCGGGGTGGACAACATCGCCCGGGCCAAGGGGGAACTGCTGGAGGCGCTTCCCGCAACCGGCACCGCGATCGTTAATCTCGACGACCACCGGGTGGCGGCCATGCGTTCGCGGACCAGCGCCCCTGTCCTGGGCTTCACGGCCACCGGCCACAGCGACGCTGCCGTACTTGCTGCTTCTGCGGACACCAATGGCGCAGGCAATCCGGAATTCGACCTCATTCTCCCCAGCGGCGAACCCGGCCTGCATGTCAGCAGCCGGCTCATCGGTGCCCACCATCTCGGCAACCTGCTGGCCGCCGCGGCCGCAGCCTTTGCCGCGGGAGTGCCAGGCCGCGATATCGCAGCCTCACTGAGCACGCAGTCGGCGGCGAGCCGCTGGCGGATGGAACGCACTGAACGCCCCGACGGCGTCACTGTGATCAACGATGCCTACAACGCCAACCCGGAATCCATGCGCGCGGCGCTCCGCACCCTGGCGGACCTGGGCCGCGGCCGCCGTACCTGGGCAGTCCTGGGCGCCATGCTGGAACTTGGGCCCGATTCCATCCGGGAGCACACAGCCGTGGGCACCCAGGTGGTACGCCTGAACATCTCCAGGCTGCTGGTTGTGGGCCGAGAGGCCCGTGCCTTGTATGTTTCCGCCGTCCAGGAAGGCTCCTGGGGCGATGAATGCCTGTTCGCTGAAACCGCCGACGAAGCTTATGAACTGCTGAATGCCGAACTTGCACCGGGCGACCTGGTGCTCTTCAAGTCCTCCAACAGCGTTGGACTGCGCCATTTGGGCGATCGGATAGCATTACCCCCACACCCCCCGGTACCCGCCCATGAAAGGAGCGAGCAGCTGTGAMIAFTAAEIAEITHGRLDADPGITPLSVVTDSREATTGSLYVAKPGEHADGHDFVGAAFDRGASLVLAERPVANPNGAGYPAVVVKDAVLAMGALAAEAVRRIRAARHAEGEELTVIGITGSAGKTTTKDLLAGILEQQGTTIAPQGSYNGEVGVPLTVFRADSTTRFLVIEMGATGIGHIRYLADMVKPDIGVVLGVGTAHAGEFGGVDNIARAKGELLEALPATGTAIVNLDDHRVAAMRSRTSAPVLGFTATGHSDAAVLAASADTNGAGNPEFDLILPSGEPGLHVSSRLIGAHHLGNLLAAAAAAFAAGVPGRDIAASLSTQSAASRWRMERTERPDGVTVINDAYNANPESMRAALRTLADLGRGRRTWAVLGAMLELGPDSIREHTAVGTQVVRLNISRLLVVGREARALYVSAVQEGSWGDECLFAETADEAYELLNAELAPGDLVLFKSSNSVGLRHLGDRIALPPHPPVPAHERSEQLPGPT0024145_658DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024145-murF-K01929NANA
D1-29_017251110mraYCOG0472Phospho-N-acetylmuramoyl-pentapeptide-transferaseGTGATTGCACTTCTTATCGGCGCCGGACTGGCCCTGCTGTGCGCCCTGGTGGGAACCCCGTTGTTTATCCGCCTGCTCGTCCGCAGGAGTTACGGACAGTTCATCCGGGATGACGGACCAACCTCACACCACACCAAGCGCGGGACCCCCACCATGGGCGGAACCGTAGTGGTGGCTGCCGTACTGCTGAGCTACGGACTGACCCACCTGATCATGTGGATGATGAACCCGGAGTCCGCCGGTCCGTCGGCATCTGCCCTGATCCTGCTGTTCCTCATGGTGGGGATGGGCCTGGTGGGATTCCTGGACGACTACATCAAGATCTCCCGGCAGCGAAGCCTGGGCCTGAATGTCAAGGCCAAGCTTTTCGGTCAGGGCGCCGTGGGCGTGATCTTTGCCATCCTGGCCCTGAATTTTCCTGACGAAGACGGCCTCACACCAGCCTCCACCAAAGTCTCCCTGGTCCGCGACCTGCCCTGGCTGGACCTGGCGTTTGCCGGGACCGTGGTGGGCGCCATCCTCTTTGTCCTGTGGTCGAACCTGATCGTGACAGCTGCTACCAACGGCGTGAACCTCACTGACGGCCTTGACGGGCTGGCGGCCGGGGCTTCCATCATGGTGTTCGGGGCGTACACGCTGATGGGTATCTGGCAAAACAACCAGGCCTGCGGATCACCTCGGGAGGCCGGAAGCGGCTGCTACATGGTCCGCGATCCCCTCGACCTGGCACTGCTGGCTGCCATCATGAGCGCTGCCCTGGTGGGATTCCTTTGGTGGAACACATCGCCGGCCAAAATCTTTATGGGCGATACCGGCTCCCTCGCCATCGGCGGTGCCATTGCCGGTTTCGCAATCCTGTCCCGGACCGAGCTGCTCCTGGGCGCCATCGGCGGCCTTTTTGTGCTGATCACGTTGTCCGTGCTGATCCAGGTTGGCTACTTCAAAGCCACCGGTGGCAAACGCTTCTTCAAAATGGCACCGCTCCAGCATCACTTCGAGCTCAAGGGCTGGGCTGAAGTGACAGTCGTTGTCCGGTTCTGGATCCTGGGCGGGCTCTGCGTGGCCATGGGCCTGGGAGTTTTCTACGCTGAATGGGTTGTGCTGCTGTGAMIALLIGAGLALLCALVGTPLFIRLLVRRSYGQFIRDDGPTSHHTKRGTPTMGGTVVVAAVLLSYGLTHLIMWMMNPESAGPSASALILLFLMVGMGLVGFLDDYIKISRQRSLGLNVKAKLFGQGAVGVIFAILALNFPDEDGLTPASTKVSLVRDLPWLDLAFAGTVVGAILFVLWSNLIVTAATNGVNLTDGLDGLAAGASIMVFGAYTLMGIWQNNQACGSPREAGSGCYMVRDPLDLALLAAIMSAALVGFLWWNTSPAKIFMGDTGSLAIGGAIAGFAILSRTELLLGAIGGLFVLITLSVLIQVGYFKATGGKRFFKMAPLQHHFELKGWAEVTVVVRFWILGGLCVAMGLGVFYAEWVVLLPGPT0024105_963DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024105-mraY-K01000NANA
D1-29_017261578murDCOG0771UDP-N-acetylmuramoylalanine--D-glutamate ligaseATGGGTTGTGCTGCTGTGACTGTTTCCCCCCGCCTCGCGGGCCTCGTCAGCTGGGACTCGGACTGGGCGGGTTTACGCGTTGTTGTCACCGGCATCGGTGTTTCCGGCTTCGCCGCGGCGGACACACTGATAGAACTTGGCGCGCGGGTGGTGGTGGTTGACGCTGCCACCAGCGACAAAGCAAAAGCCCAGGCGGACACGCTGAAGATTGTCGGGGCCGTGGACGTCCTCCTGGGAGAAGCCGCCGTGCGGAATATCCCCAGGTTCGACGGCGCCCTGCCGGAACTCATCGTCACCTCGCCCGGCTGGCGGCCCGACCAGGCGTTGTTGGCAGCCGCAGCCCGCGCCCACATTCCGGTCTGGGGCGACGTCGAACTGGCGTGGCGCCTCCGGCAGCGCGCGGGACGGAAGACCGCCGACTGGCTGACGATCACGGGCACCAACGGCAAGACCACCACCGTGGGCCTCACCGAGGCCATGCTCCAGGCCGCCGGCCTGAAAGCCATTGCCGTGGGGAACGTAGGCACGCCCATCCTGGATGCCCTCCGTGACCCCGTCGACTACGACGTCTTCGCTGTTGAGCTTTCCAGCTTCCAGCTCCACTGGTCTGAGTCGATCTCACCTGTGGCCAGCGTCTGCCTGAACGTGGCCGAAGACCACGTGGACTGGCACGGCTCGTACAATTCCTACCTCGCGGACAAGGCAAAGGTTTACGCGGGAACCCAGAAGGCGTGCATCTACAACGCAGAGCAGATTGAAACCGAGCGGATGGTGGAAAACGCCGACGTGGTGGAAGGCTGCCGCGCAGTGGGCTTTACCACCCTTACGCCGGCCATCAGCATGCTCGGCGTGGTGGAAGGGCTGCTGGTGGACCGCGCGTTCATCGAAGAGCGGAAGGACAGCGCGGCCGAACTGGCGTCCATGGCAGACTTGGGGCCCTTCGCCCCACGCCACATGGTGGCCAACGCCCTGGCCGCAGCCGCCCTGGTACGCGCCTACGGCGTGGAAGCCAAAGCCGTACGCCGTGGAATCCAGGACTACGTGCCGGGAAACCACCGCATCCAGCCCGTTGCCCGGCAGGACGGCGTGCTCTGGGTGAACGATTCCAAGGCCACCAACCCGCATGCGGCAGCGGCGTCGCTGGCCACGTTCGAGAACGTGATCTGGATTGCCGGGGGCCTGTCCAAGGGTGTCAGCTACGACGACCTCGTCCGTGACCATGCCGCCAGGCTCAAGGCCGTGGTGCTGATTGGCAGTGACACCGCACCCCTGGCCGAGGCGCTCCGGCGACACGCACCGGATGTCCCGGTGATCCCGGCGGGGGAGGGCGACACTGAGAATATGCAGACTGCCGCAACGGGCGGAACCATTGCAGGAAGCCCTTCTGATTCCGGCGAGGCAGTAATGTTCCGGGCCGTAGCGTCGGCGGCACAGGTGGCCGCACCAGGCGACACTGTGCTGATGGCTCCGGCAGCTGCATCCATGGATCAGTTCTCCTCCTACGCTCACCGTGGCGACGCCTTCATCGAAGCTGTCCGCGAGCTGGTGGAAGGACAGGCCAAGACCGGCGAGGAGTAAMGCAAVTVSPRLAGLVSWDSDWAGLRVVVTGIGVSGFAAADTLIELGARVVVVDAATSDKAKAQADTLKIVGAVDVLLGEAAVRNIPRFDGALPELIVTSPGWRPDQALLAAAARAHIPVWGDVELAWRLRQRAGRKTADWLTITGTNGKTTTVGLTEAMLQAAGLKAIAVGNVGTPILDALRDPVDYDVFAVELSSFQLHWSESISPVASVCLNVAEDHVDWHGSYNSYLADKAKVYAGTQKACIYNAEQIETERMVENADVVEGCRAVGFTTLTPAISMLGVVEGLLVDRAFIEERKDSAAELASMADLGPFAPRHMVANALAAAALVRAYGVEAKAVRRGIQDYVPGNHRIQPVARQDGVLWVNDSKATNPHAAAASLATFENVIWIAGGLSKGVSYDDLVRDHAARLKAVVLIGSDTAPLAEALRRHAPDVPVIPAGEGDTENMQTAATGGTIAGSPSDSGEAVMFRAVASAAQVAAPGDTVLMAPAAASMDQFSSYAHRGDAFIEAVRELVEGQAKTGEEPGPT0024125_135DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925NANA
D1-29_017271389ftsWCOG0772putative peptidoglycan glycosyltransferase FtsWATGGCCAGCACGCCCACCCGGTCCCCGGCTTCCGGGCCGAGCCGCGGGAATCCGGCCGCTTCGAATTCCGCCTCGTCGAAGCGGGATTCGTCGAATTCCCCCTCGTCGAATCCGGCCTCATCCTCAACGCCAAAACCTCCGCTGCCTGCCAGGGTCCGCGGCTGGTACCGCGGCTTCTGGTCAGCACTGGAAGGCACGGGAACCTCCCGAAACGGTTCCACGTACTACCTCATCCTGGGCTCTACCCTGGCACTGACGGCCATTGGCATCATGATGGTGCTCTCCGCTTCCAGCGTGGAGTCGATCGCGGCAGGGAAGTCACCGTACGGGGATGCCCTGAAGCAGGGGATGTTCGCGGCGATCGGAATCTTCACCATGTTTGTGCTCTCCCGCATCAACGTGGTCTGGCTCAAACGCCTGGCCTGGCCGGGGCTGGGTGTGGCACTGGTTCTGCTGGTCCTGGTCCAGGTTATTGGTGACGAGGTCAACGGCAACAAGAACTGGATCGACCTGGGCGGCATCACCTTCCAGCCGTCGGAGGCCTCCAAGCTTGCACTGGCGCTCTGGATGGCCACAGTCCTGTCAGTCAAGGGGAAACTGCTTCGCCGCTGGCAGCACGCCCTGATCCCTGCGGTCCCCTTGGCGGGGGCGGTGATCGGGCTTGTTTTGCTTGGCAATGACCTCGGGACTGCCATGATCATCATGATGATCACGGCCGCCGCACTCTTCTTTGCAGGCGTACCTCTGTACCTTTTCGGATTTGCCGCCATTGTGGCCGCGGCCGGAACCGCCGTCATGGCCATCTCCAGTTCAAACCGGGTCTGCCGCATCACGTCCTGGTGGACGGGCCAATCCTGCGCCGACGGCGTTGATGCCAACTACCAGGCCACCCACGGACTCTACGGGCTGGCCTCCGGTGGCTGGTTTGGCGTTGGCCTTGGCCAAAGCCGGCAGAAGTACAGCTGGATTCCGGAAGCCCACAACGACTTCATTTTTGCCATCATCGGTGAGGAACTCGGCCTGGTGGGCACCGTCGTCGTCCTGATACTCTTCGCCATCCTCGGCGCTGCCATCTACCGCGTAGTGGTGGCGCAGGAGGCCATGTTCCACCGGGTCCTGGCCGGCACCATCATGGTGTGGCTGCTGGGGCAGGCCACCGTCAACATGGCCGTCGTCACGGGGCTGATGCCCGTGATCGGCGTCCCGTTGCCCTTTATCTCCTACGGCGGTTCCGCACTGCTGATGTCATTGTGTGCCGTTGGCGTGGTGTTATCCCTCGCCCGGGAGCAGATGGCCCCTGCCATGCGCCCCAAACGGATGCTGAAGTTTGGCTCCCGAAAACGCCGCAAATCAACCGGCGCCAAGAAAACCGCAAGAAAGCGTACCTAGMASTPTRSPASGPSRGNPAASNSASSKRDSSNSPSSNPASSSTPKPPLPARVRGWYRGFWSALEGTGTSRNGSTYYLILGSTLALTAIGIMMVLSASSVESIAAGKSPYGDALKQGMFAAIGIFTMFVLSRINVVWLKRLAWPGLGVALVLLVLVQVIGDEVNGNKNWIDLGGITFQPSEASKLALALWMATVLSVKGKLLRRWQHALIPAVPLAGAVIGLVLLGNDLGTAMIIMMITAAALFFAGVPLYLFGFAAIVAAAGTAVMAISSSNRVCRITSWWTGQSCADGVDANYQATHGLYGLASGGWFGVGLGQSRQKYSWIPEAHNDFIFAIIGEELGLVGTVVVLILFAILGAAIYRVVVAQEAMFHRVLAGTIMVWLLGQATVNMAVVTGLMPVIGVPLPFISYGGSALLMSLCAVGVVLSLAREQMAPAMRPKRMLKFGSRKRRKSTGAKKTARKRTPGPT0014810_368DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588NANA
D1-29_017281101murGCOG0707UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferaseATGACTTCCAAGAACCTTTCCATTGTCCTTGCGGGCGGCGGAACCGCAGGACACATCAGCCCCCTCCTGGCAATTGCGGCGGCGCTTCGCGCGGCTGCCCCGGAGGCGAGGCTCCTGGCCGTGGGCACGCCGTCGGGCATGGAGACCGCGCTGGTCCCCGCCGCCGGCGTGGAGCTGGCCACTATCGACCGCGTCCCGTTTCCCCGACGGCCCTCCCTGGACCTGGTGCGGCTGCCTGTCCGGCTGGCCGGCGCCGTGAGCCAGGCCGGCCGGATCCTGGACGAAGCCTCCGCAGATGTCCTGGTGGGAGTCGGAGGTTACGTCTGCACTCCCATGTACCTGGCAGCGCGGCGCCGGCGGATCCCCATCGTGATCCATGAAGCCAATGCCAGGCCAGGCCTGGCCAACCGGCTGGGGGCCCTGCTGACCCGGCACGTCGCAGTTGCTTTTGAGTCCACACGGCTGCGGCATGCCCGCCACGTGGGAATGCCCATGCGCGTGCAGATCTCCGCCTTGGACAGGGCAGCCGCACGCGCTGCTGCCCGCGAGGCCCTGGGCCTTGATGCCGCCAAGCCCACATTGGTGGTTACGGGCGGTTCCTCCGGTGCCCAGAGCATCAACCGCACCATTGCCGCCACTGTCCAGGACCTGGCGTCCGCCGGGATCCAGACGCTGCACATCACCGGCCGCGGGAAGTCGGTACCAGGCACGGACGGAGAACCGCTCGCCGCCGCCGGATACCGGCAGCTTGAGTATGTGGACGGCATGGAACTGGTCTACGCTGCGGCGGACGTGCTGCTGGCGAGGTCGGGGGCGGCCACGGTCTGTGAGGTGGCTGCTGTGGGGGTTCCCGCCGTTTTCGTCCCCCTGCCGATTGGCAACGGGGAACAGGCGCTCAATGCCGCCGGTGTTGTCAACGCGGGCGGCGCCGTCCTGGTCAGGGATGGCAGCTTTACCCCTGACTGGGTCCGGGCAGAGCTCATTCCCCTGGTGACCGACAGCGCCCGATTGGAAACGATGGCGGCCAACTCCCGTCGCCTTGGCATCAGAAACGCCGATCAGCGCATGGCTGGTCTTGTCCTGGAAGCGGTAACCGCATGAMTSKNLSIVLAGGGTAGHISPLLAIAAALRAAAPEARLLAVGTPSGMETALVPAAGVELATIDRVPFPRRPSLDLVRLPVRLAGAVSQAGRILDEASADVLVGVGGYVCTPMYLAARRRRIPIVIHEANARPGLANRLGALLTRHVAVAFESTRLRHARHVGMPMRVQISALDRAAARAAAREALGLDAAKPTLVVTGGSSGAQSINRTIAATVQDLASAGIQTLHITGRGKSVPGTDGEPLAAAGYRQLEYVDGMELVYAAADVLLARSGAATVCEVAAVGVPAVFVPLPIGNGEQALNAAGVVNAGGAVLVRDGSFTPDWVRAELIPLVTDSARLETMAANSRRLGIRNADQRMAGLVLEAVTAPGPT0024150_2000DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563NANA
D1-29_017291377murCCOG0773UDP-N-acetylmuramate--L-alanine ligaseATGACCTCCGTCAACAGCCCAAGCCAGGACTCCCTGGGCCGAGTCCATTTCATCGGCATCGGCGGGGTGGGAATGTCCGCCGTCGCCCGCATCATGGTTGCCCGCGGAGTTCCCGTCAGTGGCTCGGACGTCAAAGACCTTCCGGTGATGGCCGATCTCGCCGCGGCCGGCGCCGCCATTTCAGTGGGATACTCCGCTGAAAACCTCGCCGATGCCCAGACCGTAGTGGCCGGATCCGCGATCCGGGAGGACAACCCGGAACTGGTTGCGGCGCGCGCGGCAGGGCTGCCGGTGCTGCACCGTTCGCAGGCGCTTGCGGCCACCATGGGGGGGGACCTGGTGGTCACCGTGGCCGGTACCCACGGCAAGTCCACCACGACGTCGATGATCACCGTCCTGCTGCAGGGCGCCGGGCTGGATCCCTCCTTCGCCATCGGCGCCAACGTTCCTGCCCTGGGCGTCAACGCCGCCCATGGAACCTCAGGGGTATTTGTTGCCGAAGCTGACGAGTCTGACGGCTCCTTCCTGAACTACCGGCCGCGGATTGCCGTGGTCACCAACGTCGAACCTGACCATCTGGACCATTACGGCACCGCCGAAGCCGTCTATGAATCCTTCGACCGGTTCACTGCGCTGCTTCCGTCCGACGGTGTGCTGATTGCCTGTGCCGACGACGCCGGTGCCCTGGCCCTCGCCGACCGTACACGGGCGCGTGGAAACACCCGGGTGGTTCTGTACGGCACCTCTGACCGTTCAGACCTGGTGCTCCACGACGGCGGCCCCGGGGACGTTGCCATTTCCTCGCCGGCGGGGCGTTTCGGCCTTGCGCTCCAGGTTCCGGGCCGGCACAACGCCCTGAACGCGGCCGCTGCTTTTGCTGTTGCCCTGGAACTGGGGGTTGATCCTGACGCTGCTGCCCGGGCATTGGCCAACTTCTCGGGCGCCTCGAGGCGTTTTGAACTCAAGGGCGAAGCCCGCGGGGTCAGGGTCTTTGATGACTACGCCCACCATCCGACAGAGGTCCGGGCCGCCCTGGCTGCGGCCCGGTCCGTTGCGGGCGACCACAAGGTCCATGTCCTTTTCCAGCCTCACCTTTTTTCCCGCACCCGGGAATTCGCCGCAGAATTCGCGGACGCCCTGAACCAGGCCGACACCGCCCTGGTGCTGGACATCTACCCCGCCCGCGAGGACCCCATCCCGGGAGTCAGCAGCGATCTGATTGCACGCCACCTGAATCCCGGCGGCAGGCTCGTAGCCAGCGGCGAGGCCGTGGCGGCCATCACGGCCGCCGCGTCCGACGGCGACATTGTGCTGACAGCCGGAGCCGGTGACGTCACTGCCTTCGGACCACGGATCGTGGAGGCTCTGGGTGGCTAGMTSVNSPSQDSLGRVHFIGIGGVGMSAVARIMVARGVPVSGSDVKDLPVMADLAAAGAAISVGYSAENLADAQTVVAGSAIREDNPELVAARAAGLPVLHRSQALAATMGGDLVVTVAGTHGKSTTTSMITVLLQGAGLDPSFAIGANVPALGVNAAHGTSGVFVAEADESDGSFLNYRPRIAVVTNVEPDHLDHYGTAEAVYESFDRFTALLPSDGVLIACADDAGALALADRTRARGNTRVVLYGTSDRSDLVLHDGGPGDVAISSPAGRFGLALQVPGRHNALNAAAAFAVALELGVDPDAAARALANFSGASRRFELKGEARGVRVFDDYAHHPTEVRAALAAARSVAGDHKVHVLFQPHLFSRTREFAAEFADALNQADTALVLDIYPAREDPIPGVSSDLIARHLNPGGRLVASGEAVAAITAAASDGDIVLTAGAGDVTAFGPRIVEALGGPGPT0024120_3596DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924NANA
D1-29_01730885ftsQCOG1589Cell division protein FtsQGTGGCTAGCACCCGGCGTCCCACCTACACCGGGACGGGGCGCCGGCCGGCCACGGCCGACAAAGAGCCCGTTGTCATCACTGCCTCCAAGAGCGTGCCGGATCCAGAACCTGCCGAGCCCGGCGGCCGGAAGAAGCGGAAGGACCGGGAGTCCGCACCAGGCGGCAATGTGCTGGCCTTTCCCGAGCCCCGGGGACGGCGGCTCAAAAGAAACATTGTCATCGCAGCATGCATTACCGCCGCCATGGTGGCCGGGCTGCTGGCGGCCGCCATTTTCTCGCCGGTACTTGCTGTTGGCACCATCACTGTTTCGGGAACAAAAATCCTGACCGACGATCAGGTCAAGAGCGCCCTGGAGCCGCTGCGGGGCAAGCCGCTTCCGCAAATCAGTGACGAAGAGGTGGGGCGGCTCCTGGAACCACTGGTCCAGGTCAAGTCGGTCTCCAGTGAGGCGCGGCCGCCGTCGGAACTGGTGGTGAAGGTGCTGGAACGGGCACCGGTTGCCCTGGTAAAGCAGGGGGAACAGTATCAACTGGTGGACGTTGAGGGCGTGCAACTGGCTGCCACGGACGATCCTTCATCCGTTTCACTGCCGGTGATCGACGGCGGGGCCGGAGCCATCGGCAAGGATCTGTTCCAGGCCACCGCGGCCGTCCTGGGCGCCCTTCCTCCGGATGTCCTGGCAAAGCTGTCGAACGCCTCCGCGCAGTCCGTGGACGCCGTGGAACTGAAGCTGGTTGATGGCCAGACCATCGTCTGGGGCAACGCGGGGGAGCGGGAACTGAAGGCAAAGGTCCTTGAAGCGCTCCTGAAGGCTCCGGCAGATCCCAAGAACCCCGTGCGGGTGTACGACGTCAGCGTGCCGCGGCACCCCGTAACACGCTGAMASTRRPTYTGTGRRPATADKEPVVITASKSVPDPEPAEPGGRKKRKDRESAPGGNVLAFPEPRGRRLKRNIVIAACITAAMVAGLLAAAIFSPVLAVGTITVSGTKILTDDQVKSALEPLRGKPLPQISDEEVGRLLEPLVQVKSVSSEARPPSELVVKVLERAPVALVKQGEQYQLVDVEGVQLAATDDPSSVSLPVIDGGAGAIGKDLFQATAAVLGALPPDVLAKLSNASAQSVDAVELKLVDGQTIVWGNAGERELKAKVLEALLKAPADPKNPVRVYDVSVPRHPVTRNANANANANA
D1-29_017311242ftsZCell division protein FtsZGTGGCAGCTCCGCAGAATTACTTGGCCGTCATCAAGGTCGTCGGCATCGGCGGCGGTGGCGTGAACGCAGTCAACCGCATGATCGAGGTGGGCCTTCGGGGCGTTGAATTCATCGCCATCAACACCGACGCCCAGGCCCTGCTGATGAGTGATGCGGACGTCAAGCTTGACGTCGGGCGTGAGCTGACCCGCGGGCTGGGTGCCGGTGCCAACCCTGAAGTTGGCAAGCAGGCTGCCGAGGATCACGCTGACGAGATCGAAGAGGTCATCCGTGGCGCGGACATGGTGTTCGTGACTGCCGGTGAAGGTGGCGGAACCGGCACCGGCGGCGCCCCGGTGGTGGCGCGCATCGCCCGGTCCCTGGGTGCGCTGACCATCGGCGTGGTCACCAGGCCTTTCACTTTCGAAGGCCGCCGCCGCGCCGGCTCCGCCGAGGCGGGCATCGACGCCCTCCGCGACGAAGTGGACACCCTGATTGTCATTCCCAACGACCGGCTGCTGTCCATCAGCGACCGCAACGTCTCCGTTCTCGACGCCTTCCGCTCCGCGGACCAGGTCCTGCTGTCCGGTGTCCAGGGCATCACCGACCTCATCACCACGCCCGGCCTGATCAACCTTGACTTTGCGGACGTCAAGTCAGTCATGCAGGGCGCGGGCTCGGCCCTGATGGGCATCGGTTCGGCGCGGGGCGAGGACCGTGCCGTGAAGGCCGCGGAGCTGGCCATTGCCTCACCCCTTCTGGAAGCCTCCATCGACGGCGCCCACGGCGTGCTGCTTTCCATTCAGGGCGGATCGGATCTTGGCCTCTTCGAGATCAACGAAGCGGCCCGCCTTGTTCAGGAAGTCGCCCACCCGGAGGCAAACATCATCTTCGGCGCCGTTATCGACGATGCCCTCGGCGACGAGGCCCGCGTGACGGTCATCGCGGCGGGTTTCGACGACGTCAAGGCCACCTCGCCCTCCATGGACCAGTCCCAGCCGCAGGTTGCCCCGCAGCGTCCTGCCGCGCCGTCGGCTGCTCCTGCCCCCACCCAGGCGCCCTCGGCAGGCGGCAGCCACCAGATGAACGTACAGCCCGTCCACGCCGGGGTTGGCGCTTCGGGACTGAGCAACTGGGGCCAGCAGCGCCAGTCCACAGTCCCGGCGGATTCAGGCTTCGACGTCGACCTGCCCTCAGTGGTGGAACCCGATCTTTCCGGTCAGCACTCAGATGACCTGGATGTCCCCGATTTCCTGAAGTAGMAAPQNYLAVIKVVGIGGGGVNAVNRMIEVGLRGVEFIAINTDAQALLMSDADVKLDVGRELTRGLGAGANPEVGKQAAEDHADEIEEVIRGADMVFVTAGEGGGTGTGGAPVVARIARSLGALTIGVVTRPFTFEGRRRAGSAEAGIDALRDEVDTLIVIPNDRLLSISDRNVSVLDAFRSADQVLLSGVQGITDLITTPGLINLDFADVKSVMQGAGSALMGIGSARGEDRAVKAAELAIASPLLEASIDGAHGVLLSIQGGSDLGLFEINEAARLVQEVAHPEANIIFGAVIDDALGDEARVTVIAAGFDDVKATSPSMDQSQPQVAPQRPAAPSAAPAPTQAPSAGGSHQMNVQPVHAGVGASGLSNWGQQRQSTVPADSGFDVDLPSVVEPDLSGQHSDDLDVPDFLKPGPT0027695_2294DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027695-ftsZ-K03531NANA
D1-29_01732690COG1496Polyphenol oxidaseTTGTTCCATTGGCGTGCCGAGGTCCTTCCGGGGGTGTCGGTGGCATTCACCGACACCCATGCCGGAAACCTGGCGCTGCATGTGGGGGACAAACCCTCACAGGTGCTGCTGCGGCGTGAAGCCCTGGAGCGGGCAGCCGGCATAACGCCTGGTTCACTGCGGTTCATGGACCAGGTTCACGGCACGGCCGTGACCGTTATGGAACCGGGCAGCCCCGCGCCACAGTCCGATGCCATGGTCTCCACCGGCCTTCCGCTGGCGGTCATGGTTGCAGACTGCGTGCCGGCGATGCTGGTGGGCGAAGCTGCCGGCGGGCCCGTCCTGGCTGCGGTACACGCCGGACGCCCGGGAATAGCGGCGGGAATCATCCCGGCCGCGGTGGACAGGATGCGCTCCCTGGGCGCCTCCGGCATCCGGGCCTGGCTGGGACCGTCAATCTGTGGCGCCTGCTACGAAGTTCCGGCATCGCTGCGGGCAGAAGTGGCCGCCGACGTGCCGGCAACCTGGGCTACAACATCATGGGGGACGCCCGCGCTTGATCTTCCGGCCGGCGCCCGAAGCCAGCTGGAAGCCGCTGGGGTCGGCGTCGACTACGCCGGACCGTGCACCCTTGAAAATGCTGCCCTCTTTTCCCACCGCCGAAACAACCGCAGCGGCAGGTTTGCCGGATTGGTATGGCAGCATGGATGAMFHWRAEVLPGVSVAFTDTHAGNLALHVGDKPSQVLLRREALERAAGITPGSLRFMDQVHGTAVTVMEPGSPAPQSDAMVSTGLPLAVMVADCVPAMLVGEAAGGPVLAAVHAGRPGIAAGIIPAAVDRMRSLGASGIRAWLGPSICGACYEVPASLRAEVAADVPATWATTSWGTPALDLPAGARSQLEAAGVGVDYAGPCTLENAALFSHRRNNRSGRFAGLVWQHGPGPT0019965_4035DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-POLYPHENOL_OXIDASE,PGPT0019965-yfiH-K05810NANA
D1-29_01733723COG0325Pyridoxal phosphate homeostasis proteinATGGACGAGTCAGAACGCATGGCAGAGCTGACCGGGCGCCTCGCTGCTGTGCGCAAGCGCATAGCGTCCGCCGCAGAGGCGTCGGGCCGGACTGGGCAGCTGCCCACCCTGATTGTGGTCACCAAGTTCCATCCCGCCGAGGACATCAGGCGCCTTTCAGTGCTGGGCGTCAGGGATGTGGGGGAGAACCGGGACCAGGAGGCAGCGGCAAAATCCGCGGAACTGGAAGGGCTGGGCCTCAGATGGCACTTTGTCGGCCAGCTTCAAGGCAAAAAGGCCAAATCGGTGGTCCGCTACGCCCACTCTGTCCATTCGGTGGACCGTCTGCAGCTCGCGGACGGCCTGGCAAAGGCGATTGCCACCGAGCAGGACAGGACAGGACGCGGCCCCCTGGAGTGCTTCATCCAGGTCAGCCTGGACGACGACGCCGCCGCCCACCGCGGGGGCGCGGCGCCTGAGGAAATCCCGGCCTTGGCAGAACGCCTTGCTGCAACTGAGGGGCTGGTACTCGCAGGGGTGATGGCAGTGGCACCGCTGGGCACGGTGCCCGGGGAAGCCTTTGAAAAACTGGCATTAATTTCTGCCCGTCTCGTCCAGGATCACCCGTCCGCGACAGCCATTTCTGCCGGCATGAGCCAGGACCTGGAGGCGGCCATCCAGTTTGGTGCGACACACCTGCGAATCGGCTCGGATATTCTCGGATCGCGTCCAGCCGTGGGGTAGMDESERMAELTGRLAAVRKRIASAAEASGRTGQLPTLIVVTKFHPAEDIRRLSVLGVRDVGENRDQEAAAKSAELEGLGLRWHFVGQLQGKKAKSVVRYAHSVHSVDRLQLADGLAKAIATEQDRTGRGPLECFIQVSLDDDAAAHRGGAAPEEIPALAERLAATEGLVLAGVMAVAPLGTVPGEAFEKLALISARLVQDHPSATAISAGMSQDLEAAIQFGATHLRIGSDILGSRPAVGNANANANANA
D1-29_01734531sepFCell division protein SepFATGGCCGGCGCTCTGCGCAAGACAATGATCTATCTTGGGCTCGCCGATGGCGATGAACATTATGAGTCCGAGCACCACATCACACGTAAGGACGAGGACCATTCCATGGAATTTGACCGCGAGGAACGCCGTGCACCCGCACCCGTCCGCGAGGTTGGCCGCGACTCGTCCTACGCCCCTGAAGAGGAATATCGCGCACCAGTGACCCCCATCAAGCGTGCGGCCTCAAGCCGCGAAGAATCCACAGGGCTTCGGCAGATCACCACGATCCACCCACGCTCCTACAATGACGCGAAACTCATCGGCGAGAGCTTCCGGGACGGCATCCCCGTGATCATGAACGTCACTGACATGGGTGAGGCCGATGCCAAGCGCCTGGTCGATTTCTCCGCCGGCCTCGTTTTTGGGCTTCGGGGGAGCATTGAGCGGGTCACCAACAAGGTTTTCCTCCTGTCGCCGTCGTACGTTGAGGTCATCGGTGATGACAAAAAGGTCAGCGAGACGCAGGCCAGCTTCTTCAACCAAAGCTAGMAGALRKTMIYLGLADGDEHYESEHHITRKDEDHSMEFDREERRAPAPVREVGRDSSYAPEEEYRAPVTPIKRAASSREESTGLRQITTIHPRSYNDAKLIGESFRDGIPVIMNVTDMGEADAKRLVDFSAGLVFGLRGSIERVTNKVFLLSPSYVEVIGDDKKVSETQASFFNQSNANANANANA
D1-29_01735288hypothetical proteinATGGGAATTGTTTTCGGACTTGTCTATATCGCCCTTTTACTGTTCCTGGTGGCCCTGATTGTCCGGCTGGTCTTTGACTGGGTCCAGATGTTTGCCAGGGAGTGGCGGCCCCGCGGGGCTGCCCTCGTGACCGCGCATGCTGTGTACTCCATCAGCGATCCGCCACTCAGGGTACTGCGCAGGCTGGTCCCGCCCCTCAGGCTGGGCGGCATCACACTGGACCTGGGCTTCCTGATCTTGTTCATCGCCGTCAGCGTGGCGATGATGATCACCAGGGGCTTCGCATAAMGIVFGLVYIALLLFLVALIVRLVFDWVQMFAREWRPRGAALVTAHAVYSISDPPLRVLRRLVPPLRLGGITLDLGFLILFIAVSVAMMITRGFAPGPT0013730_2586DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IVa_PILUS_HOMOLOG_PROTEIN,PGPT0013730-yggT|ylmG-K02221NANA
D1-29_01736696COG3599Cell wall synthesis protein Wag31ATGGCTTTGACGCCAGAAGACGTTGTCAACAAGCGCTTTCAGCCGACCAAGTTCCGCGAAGGCTACGACCAGGATGAAGTTGATGACTTCCTGGACGAAATCGTCGTCGAGCTCCGGCGCCTGAACCAGGAGAACGACGAGCTCCGCAAGAAGCTTGCAGAAGCCGGTTCCGGCGTTCCTGCAAGCTCCGCGGCAGCGGCCCCTGTGGTCGAGAAGGTCCCCGCGCCCGTCAAGGCGGACAAGGACGAGGCCCGCGCCAAGGCTGAGGCCGAGGCAAAAGCCGCCGAGGCAAGCAAGAAGAAGGAAGCGGAGCAGGCTGCGCCGGTCGCGACCGTTCCTGCTGCTGCTCCGGCTCCGGCCGCCAGCACCACCTCTGCTGAATCCGCTGCCGGCCTGCTCGCCATGGCCCAGCAGATGCACGACCGCCACGTAGCCGAGGGCCAGGCGCAGAAGGACAAGATCATCGCCGAGGCCCAGATCGAAGCCAGCAGCCTGGTCAACGATGCCCAGGAGAAGTCGCGCAAGATCCTGGGCGCACTGGAGCAGCAGCGTTCGGTCCTGGAGCGCAAGGTGGAGCAGCTCCGCGGCTTCGAGCGCGACTACCGCTCACGTCTGAAGGCCTACATCGAAGGCCAGCTGCGCGACCTTGACGCCCGTGGTTCTGTTGCCGCTCCGGAAGTCGAAGCCAACAGCTAGMALTPEDVVNKRFQPTKFREGYDQDEVDDFLDEIVVELRRLNQENDELRKKLAEAGSGVPASSAAAAPVVEKVPAPVKADKDEARAKAEAEAKAAEASKKKEAEQAAPVATVPAAAPAPAASTTSAESAAGLLAMAQQMHDRHVAEGQAQKDKIIAEAQIEASSLVNDAQEKSRKILGALEQQRSVLERKVEQLRGFERDYRSRLKAYIEGQLRDLDARGSVAAPEVEANSPGPT0014806_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014806-gpsB-NANANA
D1-29_01737573lspACOG0597Lipoprotein signal peptidaseATGACTGACGAACTCGCCCCTGACGCCGCACGCCCGGTCCCGTCTGCACCACGGACCCGCCGCGCCGTCCTGCTGTCCCTCTTCGCAGGTTTTGCGGTCTTTGCCTATGTGTTCGACCAGCTGACTAAACTCTGGGTCACGTCCACCATGGTGGAAGGCGAACGGATCCCGGTTCTGCCGCCTCTGCTGCACTGGTACTTCATCCGTAACTCCGGCGCCGCGTTCTCCATCGGGGAAAATGTCACGTGGGTGTTCTCCATCATCATGGCCGGGGTGGCCATTGCCATTCTGTTCCAGGTACGGAAACTGGGCTCCGCCTGGTGGTCCCTGGCGCTTGGCCTGCTGCTGGGCGGGGCGCTGGGGAACCTGACGGACAGGCTGTTCCGTGAGCCCTCGTTCGGAATGGGCCATGTGGTGGATTTTATCCAGCTGCCAAATTTCGCGATCTTCAATATCGCCGATTCCGCGGTGGTGTCCGCCGTGGCAATCATCTGCATCCTGACACTGCGCGGTATTTCCCTCGACGGATCCCGGCATGTCGGAGCCCACCGTGAGAAGACCAGGGATGCCTGAMTDELAPDAARPVPSAPRTRRAVLLSLFAGFAVFAYVFDQLTKLWVTSTMVEGERIPVLPPLLHWYFIRNSGAAFSIGENVTWVFSIIMAGVAIAILFQVRKLGSAWWSLALGLLLGGALGNLTDRLFREPSFGMGHVVDFIQLPNFAIFNIADSAVVSAVAIICILTLRGISLDGSRHVGAHREKTRDAPGPT0004770_1146DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101NANA
D1-29_01738927COG0564putative RNA pseudouridine synthaseATGCCTGAGCGCCTTGTAGTGGCCGATGAACTCGGCGGGGTACGGGCCGACGCCGGACTGGCCAGGCTGATGGGGATCTCCCGGTCGCTTGCTGCCACCCTGATCGCCGAAGGCAATGTCGTGAGCCGGGGCAAGGCAGTGGGCAAGTCCGCGCGGCTGGTGGCCGGCGACGTCCTGGACGTCACGGTGCCTGAACGCCGGGACCCCCTTGAAGTGGTGGAGGAAGTTGTGGAAGGCCTGAAAATCCTGCTCGACGACGACGATTTTGTGGTCGTCGATAAGCCGGTGGGCGTCGCTGCGCATCCGTCGCCGGGCTGGGTGGGCCCCACCGTGGTGGGCGGCCTTGCCGGCGCCGGATACCGGATCTCGACGTCAGGCTCACCCGAACGGGCCGGCATCGTGCACAGGCTGGACGTCGGCACCTCCGGGGTGATGGTGGTGGCTAAAACCGAGCGTGCCTACACGGCCCTGAAGCGCGCCTTCAAGGAGCGCAGCGTGGACAAGGTCTACCACGCGGTGGTCCAGGGCCTCCCTGACCCGCTGGAAGGCACCATCGACGCCCCCATCGGCCGTCACCCCGGACACGATTGGCGCTTTGCCGTGATCGAGGACGGACGGCCGTCCATAACGCACTACGAGGTCCTTGAAGCATTCGGCAAGGCGACGCTCGTTGAGGTCCACCTCGAAACGGGGCGGACACACCAAATCCGCGTGCATTTCTCGGCGCTGCGGCACCCGTGCGCCGGCGACCTTACCTATGGGGCGGACCCCCGGCTGGCGGCAACACTGGGCCTCACCCGGCAATGGCTGCATGCGCGCGAGCTCGGTTTCGATCACCCGGTGACCGGCGAGCGTGTCACTGTCACCAGTGACTACCCGCAGGACCTGGCTTACGCCCTGGAAGTCCTCGAATCCGGACAGGCCTGAMPERLVVADELGGVRADAGLARLMGISRSLAATLIAEGNVVSRGKAVGKSARLVAGDVLDVTVPERRDPLEVVEEVVEGLKILLDDDDFVVVDKPVGVAAHPSPGWVGPTVVGGLAGAGYRISTSGSPERAGIVHRLDVGTSGVMVVAKTERAYTALKRAFKERSVDKVYHAVVQGLPDPLEGTIDAPIGRHPGHDWRFAVIEDGRPSITHYEVLEAFGKATLVEVHLETGRTHQIRVHFSALRHPCAGDLTYGADPRLAATLGLTRQWLHARELGFDHPVTGERVTVTSDYPQDLAYALEVLESGQANANANANANA
D1-29_017393558dnaE1COG0587DNA polymerase III subunit alphaGTGACTTCCAGCAATGCCTCGTTCGTCCACCTGCACAACCACACCGAATACTCCATGTTGGACGGCGCCGCCCGTCTGGGGGAGCTTTTCGACGAGACCGAACGCCTGGGCATGCCGGCACTCGCCACCACTGACCACGGGTACCTGTTCGGCGCCTTCGACTTTTGGAAACGCGCCACGGACCAGGGCATTAAGCCCATCATCGGCGTCGAAGCCTATGTCACGCCCGGTACGGCACGGACGGACAAAGGCCGTGTCCGCTGGGGCGAGGAACACCAGCGCAAGGACGACATCTCCGGCGGTGGTTCCTACACGCACATGACGCTGCTGAGCTACAACAACGCCGGCATGCGCAACCTCTTTCGGGCCTCGTCCATCGCGTCCCTGGACGCTGTCTTCGGCAAGTGGCCGCGGCTGGACCGCGAGCTGCTGAACACGTACTCGGAAGGGCTGATCGCCACCACCGGGTGCCCGTCAGGGGAAGTCCAGACCCGGCTGCGGCTGGGCCAGTACCGTGAGGCGCTGGAAGCGGCCTCAGAGTTCCGCGACATTTTCGGTGCCGAAAACTACTTCTGCGAACTGATGGACCACGGCCTGGACATCGAACGCCGGGTCACCGGGGACCTGCTGCGGCTCGCCAAGGAACTGAAGCTGCCGCTGGTGGCCACCAACGACCTCCACTACACGCACGAGCACGACGCCAAGGCGCACGAGGCCCTGTTGGCCATCCAGTCAGGTTCCACCCTGCTGGAGCCAACCTACGACAACGGCGGTTCCCGCTTCGCGTTCTCCGGCAGCGGCTACTACCTCAAGTCGCCGCAGGAGATGCGCGAGCTCTTCCGGGACCACCCCGACGCGTGCGATAACACACTGCTGATCGCGGAGCGCTGTGAAGTTTCCTTCAATACAGGGGCCAACTACATGCCGCGCTTTCCCTGCCCGCCGGGGGAGGACGAAACGTCCTGGCTGGTGAAGGAAGTTGCTGCCGGCCTCGAATACCGATACCCGGGCGGTGTTCCGGACAAAGTCCGCACCCAGGCTGACTACGAGCTGGAAGTCATCACCTCCATGGGGTTCCCCGGGTACTTCCTGGTGGTGGCCGACTTCATCAACTGGGCGAAGAACAACGGCATCCGGGTCGGACCCGGCCGTGGCTCGGGCGCCGGTTCCATGGTGGCCTACGCCATGCGCATCACCGACCTTGATCCGCTGCACCACGGCCTGATCTTCGAGCGCTTCCTCAACCCGGACCGCGTCTCCATGCCTGACTTCGACGTCGACTTCGATGACCGGCGCCGCTCCGAGGTGATCGACTATGTGACCCGCAAATACGGCGACGAGCGCGTCGCCATGATCGTCACCTACGGCACCATCAAGACCAAGCAGGCGCTCAAGGACTCGTCACGCGTGCTGGGCTATCCGTTCAGCATGGGCGAACAACTGACCAAGGCCCTGCCACCGGCGGTCATGGCCAAGGACATTCCGCTGGCGGACATCCAGAACAAGGACTCCAAGCGCTACAGCGAAGCCGGCGACTTCCGCCAGCTGATCGCCACGGACCCCGAAGCCGCCAAGGTCTTCGAGACGGCGCTGGGCATCGAAGGGCTGAAGCGCCAGTGGGGTGTACATGCCGCCGGCGTCATCATGTCATCGGACCCGATCATCGATGTCATCCCCATCATGCGGCGCATCCAGGACGGGCAGGTAATCACGCAGTTCGATTACCCCACCTGCGAGGGCCTGGGCCTGATCAAGATGGACTTCCTGGGGCTGCGGAACCTGACGATCATCTCTGACGCCCTGGAGAACATCAAGCTCAACCGTGGCCATGACCTGGACCTGGACAGCCTGGCCCTGGACGACGCCGCCTCCTACGAACTGCTGGCCCGGGGTGACACCCTGGGCGTCTTCCAGCTCGACGGCGGGCCCATGCGCTCCCTGCTCAAGCTGATGAAGCCTGACAACTTCGAAGACATCTCCGCCGTCCTGGCCCTCTACCGCCCGGGTCCGATGGGCGCCAACGCCCACACCGACTACGCCCTGCGCAAGAACGGGATCCAGGAAGTCATCCCGATCCACCCGGAGCTGAAGGAACCGCTCGCCGAAATCCTCGGCGGCACGTACGGCCTGATCGTGTACCAGGAACAGGTGATGGCCGTCGCGCAGAAGCTCGCCGGGTACTCCCTCGGGCAGGCGGACATCCTCCGCCGTGCCATGGGCAAAAAGAAGAAGTCAGAGCTGGACAAGCAGTTCGCCGGCTTCTCGCAGGGCATGCAGGACAACGGCTACTCCATGGAGGCCGTCAAGACCCTCTGGGACATCCTGCTGCCGTTCTCTGACTACGCGTTCAACAAGGCACACTCGGCCGCCTACGGCGTGATTTCGTATTGGACCGCTTACCTTAAGGCCCACTACGCACCGGAGTACATGGCGGCGCTGCTGACCTCCGTAGGCGACGACAAGGACAAGTCAGCGATTTACCTGAACGAGTGCCGCCGCATGGGCATCACGGTGCTCCCGCCGGACGTCAACGAATCCTCGCTGAACTTCACGCCGGTGGGGACGGACATCCGCTTCGGCATGGGCGCCATCCGGAACGTTGGTTCCAACGTGGTCCAGGCGATGGTGGCTGCCCGGGAGAGCGAGGGGGCCTACACGTCGTTCAAGGACTTCCTCATGAAGGTCCCGGCGGTTGTCTGCAACAAGCGGACCATCGAATCCCTGATCAAGGCCGGGGCCTTCGACTCGCTTAACCACCACCGCCGCGCCCTGGTCATGGTCCACGAGGAGGCCATCGACTCGGTCATTACCCTCAAGCGGAACGAGGCAATTGGCCAGTTCGACCTCTTCGCCGGATTTGAGGAGGCCGAGTCCGAGGCCTCCCTGAGCATCGAGATCCCCGAGCTTCCCGAGTGGGAGAAGAAGGACAAGCTGTCCTTCGAACGGGACATGCTGGGACTCTATGTCTCGGACCATCCCCTGCAGGGCCTGGAGGGGATACTCAGCCAGCACGCGGACCAGTCCATCACCTCCATCATTGCCGAAGACGGCCCGCACGACGGCGCCATCATCACCATCTCCGGAATGATCACCTCCTTGAGCCGCCGCATCGCCAAAGCCAGCGGCAACGCCTACGCCCGCGCCGAAATCGAAGACCTTGGCGGCTCCATGGAGGTCATGTTCTTTGGACAGGTGTACGGCCCCATCGCGTCGGTCCTGGCCGAGGACCTGATCGTGGTTGTCAAAGGCAGGCTGCAGCGGCGCGATGACGGCGCCGTGACATTGAACTGCATGGAGCTGTCCGTTCCAGACCTCAGTGAGGGAACCAACGGGCCGGTGCTCATTTCGATGCCCACGCACAAGGCCACCGAGGCCGTGGTCACCGAACTGGGGGACGTGCTGCGGAACCACCGGGGAAACTCGGAGGTCCGCTTGCACCTGCAGGGCGACACCAGGACCGAGGTCATGGGGCTGCCTGTCCACCTCAGGGTGAACCCCAGCCCGTCACTCTTCGGCGACCTCAAAGTGCTCCTCGGGCCTACCTGCCTGGACAACTGAMTSSNASFVHLHNHTEYSMLDGAARLGELFDETERLGMPALATTDHGYLFGAFDFWKRATDQGIKPIIGVEAYVTPGTARTDKGRVRWGEEHQRKDDISGGGSYTHMTLLSYNNAGMRNLFRASSIASLDAVFGKWPRLDRELLNTYSEGLIATTGCPSGEVQTRLRLGQYREALEAASEFRDIFGAENYFCELMDHGLDIERRVTGDLLRLAKELKLPLVATNDLHYTHEHDAKAHEALLAIQSGSTLLEPTYDNGGSRFAFSGSGYYLKSPQEMRELFRDHPDACDNTLLIAERCEVSFNTGANYMPRFPCPPGEDETSWLVKEVAAGLEYRYPGGVPDKVRTQADYELEVITSMGFPGYFLVVADFINWAKNNGIRVGPGRGSGAGSMVAYAMRITDLDPLHHGLIFERFLNPDRVSMPDFDVDFDDRRRSEVIDYVTRKYGDERVAMIVTYGTIKTKQALKDSSRVLGYPFSMGEQLTKALPPAVMAKDIPLADIQNKDSKRYSEAGDFRQLIATDPEAAKVFETALGIEGLKRQWGVHAAGVIMSSDPIIDVIPIMRRIQDGQVITQFDYPTCEGLGLIKMDFLGLRNLTIISDALENIKLNRGHDLDLDSLALDDAASYELLARGDTLGVFQLDGGPMRSLLKLMKPDNFEDISAVLALYRPGPMGANAHTDYALRKNGIQEVIPIHPELKEPLAEILGGTYGLIVYQEQVMAVAQKLAGYSLGQADILRRAMGKKKKSELDKQFAGFSQGMQDNGYSMEAVKTLWDILLPFSDYAFNKAHSAAYGVISYWTAYLKAHYAPEYMAALLTSVGDDKDKSAIYLNECRRMGITVLPPDVNESSLNFTPVGTDIRFGMGAIRNVGSNVVQAMVAARESEGAYTSFKDFLMKVPAVVCNKRTIESLIKAGAFDSLNHHRRALVMVHEEAIDSVITLKRNEAIGQFDLFAGFEEAESEASLSIEIPELPEWEKKDKLSFERDMLGLYVSDHPLQGLEGILSQHADQSITSIIAEDGPHDGAIITISGMITSLSRRIAKASGNAYARAEIEDLGGSMEVMFFGQVYGPIASVLAEDLIVVVKGRLQRRDDGAVTLNCMELSVPDLSEGTNGPVLISMPTHKATEAVVTELGDVLRNHRGNSEVRLHLQGDTRTEVMGLPVHLRVNPSPSLFGDLKVLLGPTCLDNNANANANANA
D1-29_01740501putative flavin reductaseGTGACCGCAGACCATGCACCGTTCGAGCGTACGTTCAGGGAAATGTTCCGGCGCCATGCCGCAGGCGTGGCCATTATCACCGTGAACTACCAGGGCGAGCCCTACGGTTTCACCGCCACCTCGGTGGCGTCGCTGTCGGCCCAGCCGCCACGGTTTACCTTCAACATGGCCCGCAGTTCCAGTTCATGGCCCGCCATAGCCAACACCACCCATATCGGCCTCCACATGCTGGGCCTCGAGAACCAGGCCCTGGCCGAACGCTTCGCCCGTACCAAGGACCGGTTCGGCGGTGACCACTGGGAACTGGGTCCGCACGAAGTTCCCGTGCTTAAGGATGTTGCCGGCTGGCTGATAGGCAAGATCCAGATGCGCTTGTCGTTCGAGAATAATGCGGTGGTGGTTGTTGAAGTGGTGGACGGTCTGGTGGGTGAAGACGGCTCGCCGCTCCTCTATCACGCCGGCGGCTACAGCCAGCCAGTTCCGCTGGACTACGAGATTTAGMTADHAPFERTFREMFRRHAAGVAIITVNYQGEPYGFTATSVASLSAQPPRFTFNMARSSSSWPAIANTTHIGLHMLGLENQALAERFARTKDRFGGDHWELGPHEVPVLKDVAGWLIGKIQMRLSFENNAVVVVEVVDGLVGEDGSPLLYHAGGYSQPVPLDYEINANANANANA
D1-29_01741564hypothetical proteinATGACACGACGCACCCATGGGCGCTCCTCCCGCCCGGCCTGGACCTGGTTTGCCGTGGCGTCCGCGGCTGGAATCCCCGTGGGCATGCTGTGGTGGATCCTGGCTCCCGGCGGCCTGAATCTGATGACCCGAAACCCTTCACTAGCGGAAGGGACAAATCCCGAGGTCTGGCTGCTGCGCGATCTGACCCTTGCCGGCCTCTTCGTTTTTGCCGGCTGCCTGGTGGGTGTTTTCCTGGCGGATAAAACCCGCAGGAATGGACAAAAGGACCTGCTTTTTGCCCTTGCCGGTGGCCTTATCGGAGCATTGATGGCGTGGCAGGCCGGTATCTTCGCTGGCAAGGTATGGGGTACCCCCGCAGACCCCTCGCTCCACGCGAATGTTGCCTTCTCACTCCGGTCCATGTCGGTGCTTCTGCTGTGGCCGGCGGCCACAGCGGTGGCTGTCTTTGCCATCAGCCTGCTGAACCTGCTGAAGCAGAAACCCTACCTTGAGGACGATGGCTACGAGGACAGGGACAGATACAGCGGACCTTTCGCGGGAAGCAAAGCCGCCGACGCGTAAMTRRTHGRSSRPAWTWFAVASAAGIPVGMLWWILAPGGLNLMTRNPSLAEGTNPEVWLLRDLTLAGLFVFAGCLVGVFLADKTRRNGQKDLLFALAGGLIGALMAWQAGIFAGKVWGTPADPSLHANVAFSLRSMSVLLLWPAATAVAVFAISLLNLLKQKPYLEDDGYEDRDRYSGPFAGSKAADANANANANANA
D1-29_017421383hisDCOG0141Histidinol dehydrogenaseGTGACCATTTCTCCTGACCTCCCTGCCGCCACACGTGCCCCAGCCGTAGACTTCCGAACGGTTGATCTCCGGGGCCGCCGCCTGACACTCGCCGGCTTGCGTGCCGCCGTCCCCAGGGCGCAGCACCACACGGTGGCGGATGCTGAGCAAAAGGTCCTGGACATCATCGCCGACGTCCGGTCACGGGGATTCCGTGCGCTCGGCGACCTTGCGTTGCGGCTGGACGGCGTGCAGCAGGAACACCCCCGGGTGCCTCCCGAGGCGCTCGCCCAGGCCCTGGAGGGTCTTGACCCGGCAGTACGCAGCGCCCTTGAAGAGTCCATCAGCCGTGCCCGGCGTTTCGCCGACGGGCAGCGCCCGCGGAATATCGACGTCGAACTTGGCGACGGCGCTCTGGTGAGCCAGAACTGGGTACCCGTCGCACGGGTGGGGCTGTATGTCCCGGGCGGACTGGCCGTCTATCCTTCCTCGGTGATCATGAACGTTGTGCCTGCACTGGCGGCAGGAGTGGAATCAATTGCCCTCGCCTCGCCGCCACAAAAGGATTTCGGTGGACTGCCGCACCCCACCATCCTCGCGGCGGCCGCACTCCTGGGCATAGAAGAGGTGTACGCCGTTGGCGGCGCCCAGGCGATTGCTGCCTTTGCCTATGGAATCGATGCAACAGACGCCGGACCTGCACTGGAACCCGTGGACGTGGTCACGGGCCCGGGAAACATCTTCGTGGCCACAGCCAAGCGGCTCGTCAAGGGTGTGGTGGGAATCGACTCGGAAGCGGGCACCACTGAGATAGCCATCCTGGCTGACGGCTCCGCCCAGCCCGCCCTGGTAGCCGCGGACCTGATCAGCCAGGCTGAGCACGATCCCAACGCTGCTTCGGTCCTCATCACCGACTCCGAGGAACTCGCCGCCGCGGTACGCATTGAACTCGACCGGCAGGCGGCGGCCACCAAACACTCCCAGCGGGTCCGCGAGGCGCTTTCCGGTCCCCAGTCGGGCGTAGTCCTGGTGGAGGACCTTGAACAGGGCATCGCCGCCTGTGACGCGTACGCCGCCGAACACCTGGAGATCATGACGGCGGACGCGGCCACCGTGGCGTCGCGGATACGCAACGCCGGAGCCATCTTTGTCGGAGACTACAGCCCGGTCAGCCTGGGGGATTACTGCGCAGGTTCAAACCACGTGCTGCCCACCAGCGGGACGGCGGCATTTTCCTCCGGCCTGAATGTCACTACCTTCCTTCGGGCCATCCAGGTGGTGAACTACAGCAGGGCCGCACTGCAGGAGGTCAGCGGACACATCGTCAGCCTGGCCGGGGCAGAGGACCTGCCGGCCCACGGCCAGGCGGTAACGGCACGCTTCGCGAACCCCGGAGCCCACTGAMTISPDLPAATRAPAVDFRTVDLRGRRLTLAGLRAAVPRAQHHTVADAEQKVLDIIADVRSRGFRALGDLALRLDGVQQEHPRVPPEALAQALEGLDPAVRSALEESISRARRFADGQRPRNIDVELGDGALVSQNWVPVARVGLYVPGGLAVYPSSVIMNVVPALAAGVESIALASPPQKDFGGLPHPTILAAAALLGIEEVYAVGGAQAIAAFAYGIDATDAGPALEPVDVVTGPGNIFVATAKRLVKGVVGIDSEAGTTEIAILADGSAQPALVAADLISQAEHDPNAASVLITDSEELAAAVRIELDRQAAATKHSQRVREALSGPQSGVVLVEDLEQGIAACDAYAAEHLEIMTADAATVASRIRNAGAIFVGDYSPVSLGDYCAGSNHVLPTSGTAAFSSGLNVTTFLRAIQVVNYSRAALQEVSGHIVSLAGAEDLPAHGQAVTARFANPGAHNANANANANA
D1-29_01743516nrdRCOG1327Transcriptional repressor NrdRATGTACTGTCCGTTCTGCCGCAATCCGGATTCCCGCGTTGTTGACAGCCGGATGGCTGACGACGGTTCCGCCATCAGGCGCCGCAGGCAATGCCCTGAATGCGGCCGCAGGTTCACCACCGTGGAAACCACCAGCCTCTCCGTTATCAAGCGTTCCGGTGTGGGGGAGCCCTTCAGCCGGAGCAAGGTCATCAACGGTGTGCGCAAAGCCTGCCAGGGCCGCCCGGTCAGCGAGGACGACCTTGCGCTCCTCGCCCAGGAAGTCGAGGAACAGATCCGGGCTTCGGGAGCAGCCGAAATCGACGCCCACGAGGTTGGCCTGGCCATCCTGGGGCCCCTTCAGAAGCTGGACAAGGTTGCCTATCTTCGCTTCGCGAGCGTCTACCAGGCCTTCGAGTCGCTGGAAGACTTCGAGACGGCCATTTCGCTGCTCCGCCATGAGTCCGAAGAGGAAGCCAAGAACCTCGTGGAAAAGGGCGCCAAGGGCGCCAAAAGCTCCGAAAAGAGCCCACTGTAAMYCPFCRNPDSRVVDSRMADDGSAIRRRRQCPECGRRFTTVETTSLSVIKRSGVGEPFSRSKVINGVRKACQGRPVSEDDLALLAQEVEEQIRASGAAEIDAHEVGLAILGPLQKLDKVAYLRFASVYQAFESLEDFETAISLLRHESEEEAKNLVEKGAKGAKSSEKSPLNANANANANA
D1-29_01744753ygfFputative oxidoreductase YgfFGTGGGCACCCCCGGCGTGATGGTCGTGACGGGTGCCAGCCGCGGGATCGGTGCGGCCATAGCCCGGCGGGCCGCCGTAGCTGGATACAGCGTGGTTCTGAACTATTCAGTGGATGCAGAGGGTGCGCGCTCGGTGGCGCAGGACATCATGAACGACGGCGGCACCGCCGTCGCCATTGAAGCGGATGTCAGCGATGCTGCCGCAGTGACAGCCCTGTTCGATGCCGCGACGCGTCTGGGCCGGCTCTCTGCGGTGGTGAACAATGCCGGCATTACGGGCAACCTGATCGGCAAACTTGCCGACGTTCCGGCCGAGACAGTCCGCCGCGTGATGGACGTCAACGTGTCTGGCCTGATCTTTGTCTGCCAGGAGGCCGTCCGCAGGCTGTGCACGGACGGCGGCGGCACCGGCGGTTCCATCATCAACATCTCCTCCACGGCCACCAAAGCCGGTTCCCCGGGAACCTGGGCCCACTATGCCGCGTCCAAGGGCGCGGTGGACGTCCTCACTGTGGGGCTGGCTGCAGAGGTGGCAGACCAGGGAATACGCGTCAACTGCGTCGCTCCGGGCAGCACGAATACAGGCCTGCATGCAGCCGCGGGCATGCCGGACCGAGTCGAGCGGCTGAATGCCACCATTCCGATGGGACGCGGGGCTGAACCGGATGAAGTGGCCGCGGCTGTTCTGTGGCTGATGTCGGCCGAGGCCGGCTACATCACCGGCGCCATTCTCCCTGTCTCGGGCGGGCGTTAGMGTPGVMVVTGASRGIGAAIARRAAVAGYSVVLNYSVDAEGARSVAQDIMNDGGTAVAIEADVSDAAAVTALFDAATRLGRLSAVVNNAGITGNLIGKLADVPAETVRRVMDVNVSGLIFVCQEAVRRLCTDGGGTGGSIINISSTATKAGSPGTWAHYAASKGAVDVLTVGLAAEVADQGIRVNCVAPGSTNTGLHAAAGMPDRVERLNATIPMGRGAEPDEVAAAVLWLMSAEAGYITGAILPVSGGRPGPT0003180_5138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_01745804ppgK_1COG1940Polyphosphate glucokinaseTTGGCCAAGAAGGACGAGAAGTCGCACAAGAACGCCCCGCTGATCGGCATCGACATCGGCGGCACGGGAATCAAGGGCGGCATTGTCGACCTGAAAAAGGGCAAGCTCCTGGGCGAACGGTTCCGTGTGCCCACGCCGCAGCCGGCCACTCCGGCGGCCGTCGCCGAAGTGGTGGCGCAGGTTGTGGCAGAGCTGTCCGCCAGGCCGGAGGCCCCGGAGCCGGACTCGCCCGTTGGTGTCACGTTCCCCGGCATCATCCAGCACGGCGTGGTCCTTTCCGCGGCCAACGTTGACAAGAGCTGGCTGAACACTGACCTGGATGCGCTGCTCACGCATCGGCTGGGCCGGCCGGTTGAGGTCATTAACGACGCCGACGCCGCGGGGCTGGCTGAGGCACGCTACGGTGCCGGTGAGGGCGTGAACGGCACGGTCCTGGTCATCACGCTGGGCACCGGAATTGGCTCAGCTTTTATCTTCGACGGCAGGCTGGTGCCCAACGCCGAACTCGGCCACCTGGAAATCGACGGCTTCGATGCCGAGACCAAAGCCTCGGCAGTTGCCCGTGAGCGTGACGGACTCAGCTGGGAGGAGTACAGCGTGCTGCTGCAGCGCTACTTCTCCCATGTGGAGTTCCTCTTCTCCCCTGAGCTGTTCATCGTGGGCGGCGGCATCTCCAAGCGCGCTGACGAATACCTGCCCAACCTCAAGCTCCGGACGCCAATCGTCCCGGCGGAGTTGAAGAATGAGGCGGGGATTGTCGGCGCCGCCCTCGAGATCGCCGTGAAGCACAAGCTCGTCAAGTAAMAKKDEKSHKNAPLIGIDIGGTGIKGGIVDLKKGKLLGERFRVPTPQPATPAAVAEVVAQVVAELSARPEAPEPDSPVGVTFPGIIQHGVVLSAANVDKSWLNTDLDALLTHRLGRPVEVINDADAAGLAEARYGAGEGVNGTVLVITLGTGIGSAFIFDGRLVPNAELGHLEIDGFDAETKASAVARERDGLSWEEYSVLLQRYFSHVEFLFSPELFIVGGGISKRADEYLPNLKLRTPIVPAELKNEAGIVGAALEIAVKHKLVKPGPT0017750_229DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
D1-29_01746879map_1COG0024Methionine aminopeptidase 2ATGCCTTCCCTAGCCTCGACTGCACCCACCGGCACCCTAACCCGGGGAACCGTCAGCCCGCAGCTCCCCGTTCCCGCTTCTATCCCGCGGCCGGAGTACGTGGGTAAGCCGGGTCCGGCTAAATTTACGGGCTCCGAGGTCAAGACTGCGGAAACCATCGAGAAGATCCGGGTGGCCAGCAGGATTGCGGCGCAGGCAATTGTTGAGGTGGGCAAGCACATAGCTCCGGGCGTTACCACGGACCAGCTGGACAAGGTGGGCCACGAGTTCCTGCTGGACCACCATGCCTATCCGTCCACCCTTGGCTACCGCGGATTCCCGAAGTCCCTGTGCTCTTCCCTGAACGAGGTCATCTGCCACGGCATTCCGGACAGCACGGTGGTCCAGGACGGCGACATCATCAATATCGACATCACCGCGTTCATCAATGGGGTGCACGGTGACACCAACTACACCTTCCTCGTCGGCGGCGTCGACGAGGAATCGCGCCTGCTGGTTGAACGCACCCGGGAATCCCTCAACAGGGCCATCAAAGCCGTGGCGCCCGGCAGGGAGATCAATGTGATCGGGCGCGCCATCGAGTCCTACGCCAAGCGTTTCGGCTACGGTGTGGTGCGGGACTTCACCGGCCACGGCGTGGGTGAAGCATTCCACACCGGCCTCATCATCCCCCATTACGACGCCGCTCCGGCCTACAACACCGTCATTGAGGCAGGCATGGTTTTCACCATCGAGCCGATGCTGACCCTCGGGACCGTGGAATGGGATATGTGGCCGGATGACTGGACGGTTGTCACCAGGGACCGCAAGCGGACAGCACAGTTCGAGCACACCCTGCTCGTGACCGAGTCCGGCGCCGAAGTCCTGACCCTGCCCTGAMPSLASTAPTGTLTRGTVSPQLPVPASIPRPEYVGKPGPAKFTGSEVKTAETIEKIRVASRIAAQAIVEVGKHIAPGVTTDQLDKVGHEFLLDHHAYPSTLGYRGFPKSLCSSLNEVICHGIPDSTVVQDGDIINIDITAFINGVHGDTNYTFLVGGVDEESRLLVERTRESLNRAIKAVAPGREINVIGRAIESYAKRFGYGVVRDFTGHGVGEAFHTGLIIPHYDAAPAYNTVIEAGMVFTIEPMLTLGTVEWDMWPDDWTVVTRDRKRTAQFEHTLLVTESGAEVLTLPPGPT0020010_2273DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-29_01747168hypothetical proteinATGACTGAGTACTGGTACAACGTAAACACCCACGAGGTGGAAGAGGACAAACTCTCCGACTGGAGCCAGCTGATCGGCCCGTACAAAACACGGGAAGAGGCCGAGCACGCCCTGGAGAAGGTGCGGGCGCGCAACGAGGCCTGGGAAAAGGGCGAGGAAGACGACTAGMTEYWYNVNTHEVEEDKLSDWSQLIGPYKTREEAEHALEKVRARNEAWEKGEEDDNANANANANA
D1-29_01748927panB_1COG04133-methyl-2-oxobutanoate hydroxymethyltransferaseGTGCCGCACTACGCTCTTGCCATGGCCTCAAGCAATAGTTCCGACTCCCGCGCGTCCGCTGAAGTACCCGCACCCTATGGAAACGGCCCTGCCTCCGTTCCCTCGGCGTCGTCGGAATCGGCTGCCAAGCCGGCAGCGAAAGTCCGCATCCACCATCTGCAGCAGGCCAAGCGGGACGGCACCCGCTTTGCCATGCTGACGGCCTATGAGCAGTACACCGCTGAGATCTTCGACCAGGCCGGCATCGAGGTGCTCCTGGTGGGCGATTCGGCGTCGAACAATGTCTTTGGCAATGAAACCAGCCTTCCCGTCACGGTGGACGAGCTCCTCCCGCTCTGCCGGGCCGTGGCGCGCGCCGCGAAGCGTGCCCTTGTAGTCGCGGACCTGCCCTTCGGCAGTTATGAGGTGTCGCCGGAGCAGGGTGTCGCCACCGGCGTCCGCTTCCTCAAGGAAGGACTGGCGCACGCCGTCAAGATCGAGGGCGGCAAGTACTACGCCGAAACTGTGCGCGCCATGGTGCAGGCCGGGATTCCGGTTATCGCGCACATCGGCTTCACCCCTCAGAGCGAGCACTCGCTGGGCGGCTATCGGGTACAGGGCCGCGGAGATGATGCCCAGCGGCTGATCGAAGACGCAGTGGCCCTGGCAGACGCCGGCGCGTTCTGCGTACTCATGGAGATGGTCCCGGCGGAGACCGCCGCCGCCGTTGACGCCGCGGTAAGCGTGCCCACCGTCGGAATAGGCGCGGGCAATTCCACCACGGGGCAGGTGCTGGTCTGGCAGGACATGGCGGGACTGCGCGGCGGGCGAATGGCGAAATTCGTCAAGCAATACGCGGACCTTCGCACCAGCCTCGGCGATGCAGCAAAAGCCTACGGCGACGACGTCCGTTCAGGCACCTTCCCCGGCCCGGAGCACTCCTTCTAAMPHYALAMASSNSSDSRASAEVPAPYGNGPASVPSASSESAAKPAAKVRIHHLQQAKRDGTRFAMLTAYEQYTAEIFDQAGIEVLLVGDSASNNVFGNETSLPVTVDELLPLCRAVARAAKRALVVADLPFGSYEVSPEQGVATGVRFLKEGLAHAVKIEGGKYYAETVRAMVQAGIPVIAHIGFTPQSEHSLGGYRVQGRGDDAQRLIEDAVALADAGAFCVLMEMVPAETAAAVDAAVSVPTVGIGAGNSTTGQVLVWQDMAGLRGGRMAKFVKQYADLRTSLGDAAKAYGDDVRSGTFPGPEHSFPGPT0008740_352DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606NANA
D1-29_017491341glnA_1COG0174Glutamine synthetaseATGGACCGCCAGCAAGAGTTTGTCCTGCGCACAATCGAAGAGCGCGACGTACGGTTCGTACGCCTGTGGTTCACCGACGTCGTGGGTTCGCTCAAATCGGTGGCTCTGGCACCGGCAGAGGTGGAGGGGGCCTTCGAGGAAGGCCTCGGCTTTGACGGCTCCGCCATTGAGGGTCTTGCGCGGGTCTTTGAGTCGGACATGCTGGCCCAGCCCGACCCCTCCACGTTCCAGATTTTGCCCTGGCGCGGTGAGACGGAGCAGACGTCCCGGATGTTCTGCGACATCCTGACGCCCGACGGCGAGCCCTCCGCGGCCGACCCCCGAAACGTCCTCAAGCGCACCCTGGCCAAGGCCGCGGACATGGGCTTTACCTGCTACACACACCCCGAAATCGAGTTTTACCTCCTCAAATCCCAGGAACCCGGCCCCGACGGCTCGCCGGTCCCGGTTGACGAGGGCGGCTACTTCGACCATGTGCCCGGCGGCGTAGCCCAGGATTTCCGCCGCACGGCAGTGACCATGCTGGAATCAGTCGGTATTTCGGTGGAGTTCAGCCACCATGAAGCCGGTCCGGGGCAAAACGAGATCGACCTTCGGTATGCGGATGCCCTCCAGACAGCGGACAACATCATGACGTTCCGCACGGTCATCAAGGAAGTTGCTTTGCAGCAGGGCACCTACGCAACGTTTATGCCCAAGCCCTTCACGGCGCACCCGGGCTCAGGGATGCACACGCATTTTTCGTTGTTCGAGGGGGACACCAACGCGTTCTACGAGGCCGGCGCCGAATTCCAATTGTCCAAAACCGCCCGCCAGTTCATCGCCGGTATCCTCAAGCACGCCCCGGAGTTCACGGCCGTGACGAACCAGTTCGTCAACTCCTACAAGCGACTCTGGGGCGGCGGTGAAGCGCCCAGTTACCTGAGCTGGGGACACAACAACCGCTCGGCGCTGGTCCGTGTGCCGCTGTACAAGCCAGGCAAGGGGCAGTCCGCGCGCATCGAATACCGCGGCATTGATTCCGCCGCCAACCCGTACCTCGCCTACGCCGTCCTGCTCGGCGCCGGCCTGAAGGGGATCGAGGAAGGGTATGAGCTGCCCGCCGCCGCCGAAGACGACGTCTGGTCATTGAGCTCAGCCGAACGCCGGGCCATGGGGCATGACCCGCTGCCAGCGAGCCTCCACGATGCCATCCGGTCCATGGAAGAGTCCGAGCTGCTGCCCCAGATTCTGGGGGAACAGGTCTTTGAGCACTTCCTGCGCAACAAACGGGCCGAATGGCAGGACTACCGGCTCCAGGTGACGCCGTACGAACTGCAGCGCAACCTGGGAATCCTTTAGMDRQQEFVLRTIEERDVRFVRLWFTDVVGSLKSVALAPAEVEGAFEEGLGFDGSAIEGLARVFESDMLAQPDPSTFQILPWRGETEQTSRMFCDILTPDGEPSAADPRNVLKRTLAKAADMGFTCYTHPEIEFYLLKSQEPGPDGSPVPVDEGGYFDHVPGGVAQDFRRTAVTMLESVGISVEFSHHEAGPGQNEIDLRYADALQTADNIMTFRTVIKEVALQQGTYATFMPKPFTAHPGSGMHTHFSLFEGDTNAFYEAGAEFQLSKTARQFIAGILKHAPEFTAVTNQFVNSYKRLWGGGEAPSYLSWGHNNRSALVRVPLYKPGKGQSARIEYRGIDSAANPYLAYAVLLGAGLKGIEEGYELPAAAEDDVWSLSSAERRAMGHDPLPASLHDAIRSMEESELLPQILGEQVFEHFLRNKRAEWQDYRLQVTPYELQRNLGILPGPT0000645_7873DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-29_017503012glnECOG1391Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzymeGTGAGCCTTGCCCGCCGTCTCATTTCGGCCGGCTTCAGTGACCTGGAGAAGGGCGAGCGGTTTCTGGCTGCCCGCGAACTGGATGGCCTGGACCAGGACAAGCTGTTCGCGGGCCTGCAGATGGCGGCGAATCCGGACACAGCCCTCCAGTCGTTGGTGCGGCTGATCGAAAAACATCCGGCCCTGCGGGACCTGGCCGGGGCAGATCCTGAAACAAGCGAGCCGCTTTACCGTGTCCTGGGGGCTTCGGAGGCGCTTGGCGAGTTCCTCATCCGGCATCCGGAGCATCTTGACGCGTTCGACGTGACCGCCAGCCCCGAGCCGCTCGGCGCGGACGCGGAACAGCTCCGCGCTGCCCTCCTGAGGTCCGTGCGGGCCGATCCCCGGGCAGCAAGGCCGGTGGCCGGACTGACCGGTACGGATGCCTACGTTGCGCTTCGGACGGCGTACCGCCGGGGAGTGGTGGATCTCGCCGTCAAGGATCTGTGCGCCGCGGACCCCCTGGACTTCATGCCGGCCGTCGGCGCCGAACTGGCTGATCTGGCCGGTGCCGCCATCGAAGCGGCCCTGGCAGTTTCGCGGGCGGAGGCGGCAGCGCAGTTCAGCGCAAGCGAGGTGGCTGACGTTGGCCTGGCAGTGATCGGCATGGGCAAATGCGGAGCGCGCGAGCTTAACTACATTTCCGACGTCGATGTCATCTACGTCATGGATGGCGGTGAACTGGACGATGCGCGCGGCAACACCATTGGAACGGCGCTGGCCACCGGAATCTCGCGGGCCATTTCCTCCATCGCCAGGGAACCCGGGCTCTGGGAGGTGGACGCGAACCTCCGGCCGGAAGGCAAGTCCGGCCCACTGGTGCGGACCCTGGCCTCACACGAGAGCTACTACGCGCGCTGGGCCGAAAGCTGGGAGTTCCAGGCGCTTCTGAAGGCCCGCACCATCGCGGGAGATACCGGACTGGGTGAACGCTACGAAAAGGCGGTGGCCCCGCTGATCTGGAGTTCGGCAGGTCGGGACGGCTTCGTTGAGTCGGTCCAGGCGATGCGGCGCAGGGTGACCGAACACATCCCCGCCACCGAGGAGCAGCGGCAGATCAAACTCGGCCGCGGCGGCCTCCGTGACGTTGAATTCACGGTTCAGCTGCTGCAATTGGTGCACGGAAAATCGGACGAGTCGCTTCGTTGCCGGGATACCACCTCAGCCATCGCGGCGCTGTCCGCAGGAGGCTACATTGGCCGCTCAGACGCCGCAGGGTTTGACCAGGCTTACCGGTACCTGAGGCTGCTGGAGCATCGGATCCAGCTGTTCCAGCTGCGGCGCACCCACCTGATGCCCGTCAGCGAGGCGGCCCTGCGCTCCCTGGCCAAGGCAGTCCTGGGTCCGTTCTCCAACGAGCGGCCCCATCCTGAATCCCTGCTGGCAGCATGGCAGAAGACGAAACGCTCCGTCCGTGAGCTGCACGAGCGGATCTTCTACCGTCCGCTGCTGAATACCGCGGCCAGGCTCAGCACCGAGGATGCACGGCTGACGCCGGAAGCCGCCCAGGGGCGCCTCGCCGCGCTGGGCTACCGTGATCCGCAGGGCGCCATGCGACACATTGAAGCGCTCACGGCAGGCGTCAGCAGGCGGGCGGCACTGCAGCGGCAGCTGCTGCCCATCCTCCTGGACTGGCTTGCCGAGGGCGTTGATCCCGACGCCGGGCTGCTGGCTTTCCGGCGCGTCAGTGAAACCCTTGGAACCACGCACTGGTACCTTGGCATGCTCCGCGATTCGACGGCGGCGGCGGAGCGGCTGTGCCATGTGCTCTCCAACTCGAGGCTGATAGCGGACCTGCTGGAAGTGTCGCCTGAATCTGTCAAATGGCTGGGCGACGACAAGGAGCTTGCGCCGCTGAGCTTTGAGGCGCAGTGGCAGGAAATAACGTCCAAGATGTCCCGGCACGCCAATCCGGAGAGCGCCATGCGGCTAATCCGGCTGATTCGGCGCCGGGAGATCCTCCGGATTGCCATCGCCGATTCGGCCGGGTTGCTGGGCCAGGAGCAGGTGGGTGCCGCCCTTGCCGACACTGACCGGGCCGCGGTGCTGGGCGCACTCCGGGTGGCTGAGGGAATCGTCTCCGCCAAGGAACCGCTGAAGACAGCCGTGCTGGTGGTGGCCATGGGGCGCCAGGGCGGACGGGAGATCGGGTACGGCTCCGACGCGGACGTGATGTACGTCCACCGTGCAGTGCCCGGTTACACCGAGGAGGAAGCCCAGCAACAGGCAGCCCGGATTGTGGCCAAAGTGTCCAGCCTGCTCACCCAGCCGCTCAAGCCTGCCATCATGGCCGAGCGGGTGCTGCAGGTGGATGCCGATCTGCGGCCGGAAGGAAAGAGCGGCGCCATGGTCCGCTCGCTGGATTCCTTCGCGGAGTATTACCGGCGATGGTCCCTCATTTGGGAGGCACAGGCCCTGCTGAGGGCACGGCCCATGGCCGGGGATGACCGGCTGGCCCAGGACTTCATTGACCTCATCGACCCGATCCGGTATCCGGAGTCGATTTCCGAGCAGGATGTCCGGGAGATCCGCAGGGTCAAGGCGCGGGTGGAAGCCGAACGGCTGCCGCGCGGAGCCGATCCGGCGCGGCACCTGAAACTGGGACGCGGAGGACTGAGCGACGTCGAATGGCTGGTGCAGCTCCTCCAGCTTCAGCACGCAGGAAAACACCCGGCCCTGCGGACAACGTCGACGGTGGAGGCACTTGAGGCGGCGGCTTCCCTGGACCTGCTTGCCAAGGCCGATGCCCGGCTGCTGGCGGACGCCTGGCGGCTGGCCAGCAGGATCAGGTCCGCCAACGTCATCTGGAGTGGCAGGGCTTCTGACCTGCTGCCGTCGTCCCGGCGGGATCTCGAAGCCGTAGCACGCTGGTGTGGCTACGAACCTGGCCAGGCGGCCGCCCTCGAGGAAGACTATCTTCGCCTTAGCCGGCGGGCCCGGGCCGTTTTCGAGAAGGTTTTCTACGGCCATTAGMSLARRLISAGFSDLEKGERFLAARELDGLDQDKLFAGLQMAANPDTALQSLVRLIEKHPALRDLAGADPETSEPLYRVLGASEALGEFLIRHPEHLDAFDVTASPEPLGADAEQLRAALLRSVRADPRAARPVAGLTGTDAYVALRTAYRRGVVDLAVKDLCAADPLDFMPAVGAELADLAGAAIEAALAVSRAEAAAQFSASEVADVGLAVIGMGKCGARELNYISDVDVIYVMDGGELDDARGNTIGTALATGISRAISSIAREPGLWEVDANLRPEGKSGPLVRTLASHESYYARWAESWEFQALLKARTIAGDTGLGERYEKAVAPLIWSSAGRDGFVESVQAMRRRVTEHIPATEEQRQIKLGRGGLRDVEFTVQLLQLVHGKSDESLRCRDTTSAIAALSAGGYIGRSDAAGFDQAYRYLRLLEHRIQLFQLRRTHLMPVSEAALRSLAKAVLGPFSNERPHPESLLAAWQKTKRSVRELHERIFYRPLLNTAARLSTEDARLTPEAAQGRLAALGYRDPQGAMRHIEALTAGVSRRAALQRQLLPILLDWLAEGVDPDAGLLAFRRVSETLGTTHWYLGMLRDSTAAAERLCHVLSNSRLIADLLEVSPESVKWLGDDKELAPLSFEAQWQEITSKMSRHANPESAMRLIRLIRRREILRIAIADSAGLLGQEQVGAALADTDRAAVLGALRVAEGIVSAKEPLKTAVLVVAMGRQGGREIGYGSDADVMYVHRAVPGYTEEEAQQQAARIVAKVSSLLTQPLKPAIMAERVLQVDADLRPEGKSGAMVRSLDSFAEYYRRWSLIWEAQALLRARPMAGDDRLAQDFIDLIDPIRYPESISEQDVREIRRVKARVEAERLPRGADPARHLKLGRGGLSDVEWLVQLLQLQHAGKHPALRTTSTVEALEAAASLDLLAKADARLLADAWRLASRIRSANVIWSGRASDLLPSSRRDLEAVARWCGYEPGQAAALEEDYLRLSRRARAVFEKVFYGHPGPT0000655_518DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982NANA
D1-29_01751444hypothetical proteinATGGCTACTCAAATCTACTTCAACCTGCCCGTGAAGGACCTTAAGAGGTCGGTGGATTTCTTCACCACCCTCGGCTTTTCCTTCAACCCGGACTACACGGACGAGAACGCAACGTGCATGATCGTCAACGACAATGCGTTCGTGATGCTTCTGGTGGAAGGATTCTTCAAGACCTTCACGTCCAAGGAGATCGCAGACGCCGCCACCTCCACCGAGGCGATCATGGCCTTCTCCGTTGACAGCAAGGAAGCTGTAGACGAGACAGTCCGGAAGGCGCTGGCCGCCGGGGGCACACCGTCCCAGGAAGTCCAGGACTATGGCTTTATGTACAACCACAGCTTCCAGGACCCGGACGGGCACCTCTGGGAGGTCATGTGGATGGACCCCGCCGGTCCGCCTCCCGAAAGCGCGCCTGCGGAAGACACCGCCGGCCCGCAGTCCTGAMATQIYFNLPVKDLKRSVDFFTTLGFSFNPDYTDENATCMIVNDNAFVMLLVEGFFKTFTSKEIADAATSTEAIMAFSVDSKEAVDETVRKALAAGGTPSQEVQDYGFMYNHSFQDPDGHLWEVMWMDPAGPPPESAPAEDTAGPQSPGPT0028555_168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-FOSFOMYCIN_RESISTANCE,PGPT0028555-putative_fosB-K07032NANA
D1-29_01752537hypothetical proteinGTGCAGCAGCCTGTCTGGCTGATTTCACTCCAGGACCTTGACGCTGACGCCCGCGCCATCCAGCTGGGTGCCGTCGCGGGCCTGGAACTCGCCGCAGGGCAGAACGATTTTGTTGGTGATCCCCTCCGCATGATGCTGGCTGGCCTGGCCGAGGATTCCCGGCGGCCCTATGTCATTGAGGCAGGAGGGGAAGCCGTCGGTGTTCTGACCCTGCAGTCCGGCGCGGCCCGGCTGGCCGGGTGGCCGGACGACGCGTCCGCCTGGCTGCTGCGGGGGTTCCTCATCGACAGAAGGTGGCAGGGACAGGGGCTGGGGCCTCTGGCTGCCGCCAAGGCCGTGGAAACCGCAGCAAAACTGACGGCGCGGCTGGAAGGCGGCGAGGCCGGCGTCGTACTCTCCGTCAACGTCCGCAATGCGGCAGGGCTTGCGGCCTACCGCCGGGCCGGGTTCGTGGACCACGGCGAGTATCTTGGCGGCGGGTCCGGGCCACAGCGGACCATGTACCGGAGTTTCGATTACCCGGGCAGCGCTGGATAAMQQPVWLISLQDLDADARAIQLGAVAGLELAAGQNDFVGDPLRMMLAGLAEDSRRPYVIEAGGEAVGVLTLQSGAARLAGWPDDASAWLLRGFLIDRRWQGQGLGPLAAAKAVETAAKLTARLEGGEAGVVLSVNVRNAAGLAAYRRAGFVDHGEYLGGGSGPQRTMYRSFDYPGSAGNANANANANA
D1-29_017531425glnA_2COG0174Glutamine synthetaseATGTTCAAGACTGCGGACGAAGTCCTCAAGTTCATCCAGGACGAAGATATTAAATTCGTCGATATCCGCTTCACGGACCTTCCGGGCGTCCAGCAGCACTTCAACGTGCCGGCCAAGAGCGTTGACGCAGACTTCTTCGTCAACGGACAGCTCTTCGACGGATCCTCCATCCGTGGTTTCCAGGGCATCGCCGAATCCGACATGCAGCTCATCCCGGACGTCACCACCGCATTCCTGGACACCTTCCGTATGGAAAAGACCCTTGCGCTGAACTTCTCCATCGTGAACCCCCGCACCGGGGACCCCTACCACCGCGACCCCCGCGGTGTGGCCGAGAAGGCTGAAGCCTACCTCGCGTCCACAGGCATCGCGGACACAGCGTTCTTCGCTCCCGAGGCCGAATTCTTCGTCTTCGACAACGTCCAGTACCAGTCCACCCCGCAGGGCAGCTTCTACAAGATCGACTCTGAAGAAGCACACTGGAACACCGGCCGCGAAGAAGAAGGCGGAAACCTCGGCTACAAGACCCCCGTCAAGGGCGGTTACTTCCCGGTTTCCCCCACCGACAAGCAGGCGGACCTCCGCGACGCGATGTGTGTCGCCCTGGACGAGGCCGGCCTTGAGGTCGAGCGCAGCCACCACGAGGTGGGCTCCGCCGGCCAGGCTGAAATCAACTACAAGTTCACCACGCTGACCCACGCGGCCGATGACCTGCAGAAGTTCAAGTACGTCGTCAAGAACACGGCCGACGCCTGGGGCAAGTCCGTAACCTTCATGCCGAAGCCGGTCTTCGCTGACAACGGTTCCGGCATGCACTGCCACCAGTCGCTGTGGAACGGTGGCGAGCCGCTGTTCTACGACGAGAAGGGCTACGCCGGCCTCTCTGACATGGCCCGCTGGTACATCGGTGGCCTGCTCAAGCACTCCTCCGCCGTACTCGCCTTCACCAACCCGACGGTGAACTCCTACCGCCGCCTGGTCAAGGGCTTCGAAGCTCCGGTCAACATGGTCTACTCGCAGGGCAACCGCTCCGCCGGTATCCGTATCCCCATCACGGGCACCAACCCCAAGGCCAAGCGCATCGAGTTCCGCGCTCCGGACCCGTCCTCCAACCCGTACCTGGCGTTCGCTGCCCAGCTGATGGCCGGCATCGACGGTATCCGCAACCGCATCGAACCCCCGGCTCCGATCGACAAGGACCTCTACGAGCTCCCGGCCGAAGAAGCCAAGGACATTCCGAAGGCTCCGGGCACGCTTGAGGAAGCGCTGACTGCACTGGCAGAGGACAACGAGTTCCTCCAGGCCGGCGGCGTCTTCACCCAGGACCTGATCGACACCTGGATCGAGTACAAGTACGAGAACGAGATCCGTCCGCTCTCCCTGCGCCCGAACCCGTACGAGTTCGAGCTGTACTACGGCGTCTAGMFKTADEVLKFIQDEDIKFVDIRFTDLPGVQQHFNVPAKSVDADFFVNGQLFDGSSIRGFQGIAESDMQLIPDVTTAFLDTFRMEKTLALNFSIVNPRTGDPYHRDPRGVAEKAEAYLASTGIADTAFFAPEAEFFVFDNVQYQSTPQGSFYKIDSEEAHWNTGREEEGGNLGYKTPVKGGYFPVSPTDKQADLRDAMCVALDEAGLEVERSHHEVGSAGQAEINYKFTTLTHAADDLQKFKYVVKNTADAWGKSVTFMPKPVFADNGSGMHCHQSLWNGGEPLFYDEKGYAGLSDMARWYIGGLLKHSSAVLAFTNPTVNSYRRLVKGFEAPVNMVYSQGNRSAGIRIPITGTNPKAKRIEFRAPDPSSNPYLAFAAQLMAGIDGIRNRIEPPAPIDKDLYELPAEEAKDIPKAPGTLEEALTALAEDNEFLQAGGVFTQDLIDTWIEYKYENEIRPLSLRPNPYEFELYYGVPGPT0000645_2515DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-29_01754438hypothetical proteinGTGGTAGATCGTAAAGACATTGGCTCCTGGCTCACCGGACCGGACACTTCAGGCATCTCCAAATACCCGGGGGAGCGGTTGGGCCTTCCCGAATCGGGACCGGGATCGATTGCCAGGGCAGGACGGCGCATCGTTGCCATCTTTATTGACTGGGGTGTGGCGCTGCTGATCAGCAACTTCGTCTTTGGCGGGGACTCGTGGGCAACCCTTGCCGTCTTTGCCGCGGAACAGATGCTGCTGGTGGGAACCCTCGGCTACACCATCGGACACCGCGTGGCCGGCATCCATGTGGTGCGTCTCGGCGGCGGAACGCCGGGGCCGCTGGCTGGCGTGGTCCGCGCTTTGCTGCTGTGTCTTGTGATCCCGGCCGTCATCTTCGATCCCGATCAGCGCGGCCTGCATGACAAGGCGATGAACACCGTCCTCATCCGGATGTAGMVDRKDIGSWLTGPDTSGISKYPGERLGLPESGPGSIARAGRRIVAIFIDWGVALLISNFVFGGDSWATLAVFAAEQMLLVGTLGYTIGHRVAGIHVVRLGGGTPGPLAGVVRALLLCLVIPAVIFDPDQRGLHDKAMNTVLIRMNANANANANA
D1-29_01755357hypothetical proteinATGAAGATGCCCCTGAAGACTGCAGTAATCCGCGCGTTCCGCATTCTGGCCATCGCAGAGGCAGTCAGTTGGGCGGCCCTGCTGGTGGGCATGTGGTTCAAATGGATCGCCAAGACCAGCGAGCTTGGGGTAGAGATTGCCGGCCCTGTCCACGGTGCACTGTTCGTGGGCTATGGCATCGCCGCTCTCGCCCTCTGGCGGCTCCAGCGCTGGTCCTTCCCCGTGGCCCTGTTCGCCGGGCTCTCGGCTGTTTTCCCGTTCGCCACAGTGGTTTTTGAGCGCTGGGCCGGAAAACGCGGACACCTCAGCGAAAACGAGACAGTTGCGGAAGACTCGCTGGAAACGGCCGGCGTCTAGMKMPLKTAVIRAFRILAIAEAVSWAALLVGMWFKWIAKTSELGVEIAGPVHGALFVGYGIAALALWRLQRWSFPVALFAGLSAVFPFATVVFERWAGKRGHLSENETVAEDSLETAGVNANANANANA
D1-29_01756753putative proteinATGGCGAAATCCCCTGATTCCAGCAGCAGCACTCCCGCGGCAAGTGACGCCCCGAAGCGTGGCCTTTTCTCGCGCAAGCCAAAAGAAGCAAAAGTCAAGAAGCCAAGCCGGCTAAAGCAGATCGGCGAAGTCTTCAACATGACCCGCCGCCACGATCCCATGGTCCCGTGGCTGATGCTGCTGGTGTTCCTCGGCGTTGTGGCCGTCAGCTTCCTGGTGGGTTTCTGGCTGGAGAACTGGATCACCGGCCTCATCATCGGCATCCCGCTGGGCCTGCTCGGCGCCACGCTGATCCTGTCCAGGCGGGCCGAACGTGCCGCGTTTGCCCAAATCGAGAACCAGCCCGGCGCCTCCGGTGCCGCCCTCGGCACGCTGAAGCGCGGCTGGATCACTGAGGATCAGCCCGTATCGGTGAACCCGCGCACCCAGGATGCCGTGTTCCGCGCCATCGGCCGCCCGGGAGTTGTCCTGGTCAGCGAAGGGCCCAGCCACCGGGTCAAGCCGCTCATTGAGGCGGAACGCAAGCGCCTCGCGCGGATCCTCCCCAACGTCACCATCCATGTGATCGAAAGCGGCCGTGGCGAGGGACAGGTCCCCATCAGCCAGGTAGCCAAGAAAATGGGCAAGCTGAACAAGGAACTCACCAAGCTCGAGGTCAACGCCGTCTCCAAGCGCATTTCCTCGCTGGGCAGCCGCCTCCCCATCCCCAAGGGCATCGACCCCTACAAAGCGCGTCCCAACCGCGGACGCTAGMAKSPDSSSSTPAASDAPKRGLFSRKPKEAKVKKPSRLKQIGEVFNMTRRHDPMVPWLMLLVFLGVVAVSFLVGFWLENWITGLIIGIPLGLLGATLILSRRAERAAFAQIENQPGASGAALGTLKRGWITEDQPVSVNPRTQDAVFRAIGRPGVVLVSEGPSHRVKPLIEAERKRLARILPNVTIHVIESGRGEGQVPISQVAKKMGKLNKELTKLEVNAVSKRISSLGSRLPIPKGIDPYKARPNRGRNANANANANA
D1-29_017571008lipA_1COG0320Lipoyl synthaseGTGACACTGGCACCAGAAGGCCGGAAGATGCTGCGCATCGAACAGCGCAACGCGGCCACCCCGGTGGAACGGAAGCCGGACTGGATCAAGGCCAAGGTCCAGATGGGTCCCGAGTTCGTCCAGCTGAAGAACCTGGTCAAGAAGGAAGGCCTGCACACCGTGTGTGAGGAGGCCGGCTGCCCGAACATTTTTGAGTGCTGGGAAGACAAGGAAGCCACGTTCCTGATCGGCGGGTCCGAGTGCACCAGGCGCTGTGACTTCTGCCAGATCGACACCGGCAAGCCCTCGCCGGTGGACATGTTCGAACCCACCAAGGTGGCCCGGTCCGTGCAGGCCATGCAACTGCGCTACGCCACCGTCACCGGCGTGGCCCGGGATGACCTCGCCGACGAAGGCGTCTGGCTGTACGCCGAGACGGTCCGCAAGATCCACGAACTGAACCCGGGCACCGGCGTCGAGCTTTTGATCCCGGACTTCTCCGGCAAGCCCGAGCACATCGAGGCGATCTGCGATTCAAAGCCTGAGGTGTTCGCGCACAACGTCGAAACCGTGCCGCGGATCTTCAAGCGCATCCGCCCGGCCTTCCGCTATGACCGGTCCCTGGATGTCATCACGCAGGGCCGGAACCTGGGCATGGTCACCAAGTCCAACCTGATCCTTGGCATGGGTGAAACCCGTGAGGAAATCTCCGAAGCCCTCCTTGACCTGCACGAGGCAGGCTGTGACCTGATCACCATCACCCAGTACCTGCGCCCGAGTGAACGGCACCTTCCGGTGGACCGCTGGGTCAAGCCGCAGGAATTCGTGGACCTCCAGGACGAAGCGATCGAGATGGGCTTCCTGGGTGTGATGTCCGGGCCGCTGGTCCGCTCCTCCTACCGTGCCGGCCGGCTCTGGGCCACAGCGATGCGCAAGAAAGGCTGGGAAGTCCCGGCCGAACTGGCGCACATCGAATCCTCGGGCAGCACCCGCCAGGAAGCCAGCTCACTGCTCGCAGCGCACTCCTGAMTLAPEGRKMLRIEQRNAATPVERKPDWIKAKVQMGPEFVQLKNLVKKEGLHTVCEEAGCPNIFECWEDKEATFLIGGSECTRRCDFCQIDTGKPSPVDMFEPTKVARSVQAMQLRYATVTGVARDDLADEGVWLYAETVRKIHELNPGTGVELLIPDFSGKPEHIEAICDSKPEVFAHNVETVPRIFKRIRPAFRYDRSLDVITQGRNLGMVTKSNLILGMGETREEISEALLDLHEAGCDLITITQYLRPSERHLPVDRWVKPQEFVDLQDEAIEMGFLGVMSGPLVRSSYRAGRLWATAMRKKGWEVPAELAHIESSGSTRQEASSLLAAHSPGPT0003935_1247DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644NANA
D1-29_01758669lipBCOG0321OctanoyltransferaseATGACTCTTGAGTTTTCCACGCTGGGTCTTGCACCGGATTTCGTTGATTACATGAAGGGCTGGGACATCCAGCGCGAACTCCATGACAAAGTCGTCGCAGCCGGGGCGCCCAGCACAGTCCTCATCCTTGAACATGCCGCCGTCTATACAGCCGGGAAGCTGACAGAAGAGCACGAACGTCCATTTGACGGGACGCCCGTGGTGGCCGTTGACCGTGGCGGCAAACTCACCTGGCACGGGCCTGGCCAGCTGGTGGCCTATCCAATCCTCAAGCTGAAAAACCGGTCCGGCATCCGTGACTACGTTGAGCGGCTGGAAGCCATGATGATCGCCGTCATGGCTGATTACGGCATCAACGCAGAGCGCATCAAGGGGCGCGCAGGCGTGTGGATTAAGGCTGACAGCAAGGGCCCGGACCGGAAGATCGCCGCCATTGGCATCCGCGTCCTGGACGGGGTCACAATGCACGGAATTGCCATCAACTGCAACAATGATCTGGCACCTTATGCCCAGATCATCGCCTGTGGCATCACCGACGCCGGCGTCACCACGATGTCCATCGAAGCCGGCAGGAACATCTCCCCGGGCGATATCGCGGACCGGCTCGTCGAAGAATTCCGCAAGCATGAAGAAGCACTCGTTTCAAGCCCCGAAGGAGCTCTACTGTGAMTLEFSTLGLAPDFVDYMKGWDIQRELHDKVVAAGAPSTVLILEHAAVYTAGKLTEEHERPFDGTPVVAVDRGGKLTWHGPGQLVAYPILKLKNRSGIRDYVERLEAMMIAVMADYGINAERIKGRAGVWIKADSKGPDRKIAAIGIRVLDGVTMHGIAINCNNDLAPYAQIIACGITDAGVTTMSIEAGRNISPGDIADRLVEEFRKHEEALVSSPEGALLPGPT0003925_2327DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801NANA
D1-29_017591956hypothetical proteinATGGATGATTTCAGTGTCCCCGATGTACCCGGCTTTACCGTGGGGCGGGAACTGGGCCGGGGCGCGAGTTCCAGTGTTTGGCTGGTTACCGAAGCACGCTCCGGCCGGGATTTTGCGCTGAAATGCCTGCTGGCAGAATCGCCCCCCGATGGCCTCTCCGAGGTTGCCACCCAGGAGGAGGCAGTCCGTCGTGAAATCCGCATCCTCTCCGTGCTCGATCACCAGCACCTCATCAAGGCCCACGACGTTGTGAGCCTTTCGCTGGAGCGCCCGCGCCCTGCTGCTCCGGCCACCCCTGGGGCTCCCGGCACTCCCGCTGCTCCTGACACTCCTGCTGGTCCCGGTGCAGGCGGCCCCGGCCCGGGCCTGGGACTGCTAATGGAATATGCCCCGGGGGGCTCCCTGGGCCAACTGGTGAGCAGCCGCGGAAAGCTCACAGTAGGCGAAACGGTGACGGTATTGACGCCCATTGCCCAGGCTCTTGGATATCTTCACGGCAGGGGTTTTACGCACTCCGATGTCTCACCCGGAAACGTGCTTTTCACAGGCCACGGCAAACCCATGCTCGCCGACTTGGGGGTTGCCCGGCTGGTGGGGGATGCCGCGGCCGTTGCCTGGGACGGAACGGACGGGTTTATGGATCCGGCCCCCATCGATACCATGCGGGCAGGTCTCCAGCCGGAGCGTGACGTGTATTCGGTGGCTGCGCTGGGGTGGTTTTGCCTCACCGGCGAGCCGCCCAGGAGAACTGCGGACCGGCCGCCACTGCCCCTCCTGCGCCCCGACGTCCCGGCAGAGCTTGCCGCGGCGTTGGAGTCCGGCCTCAGCGACGACCGGCGGCTGCGGCCCACGGCCTTTGAACTGGCCACGTCCATTTACCGCAGTGCCGCACCGCTGCCGGTTGACCTCGCCGGGTCGGTCCATGCGACCGTCATTCCTGAGCTGTTGACCAGGCGCCGCATCCCTGACCGTCCTGGCAGCGCGGCAGGCAAAACTCTCCGCTCCTGGCATCGAAGGCTCTCAACGTCGCGATGGTCCGGCCTGCTTGGTGCCCGGCAGGTCCTGCCCTTTCCCGTGGGAACCGAGCCTGCAGCCGCTCCTCCCATGGGAAAGGAACGGGTCGCTACTCGTCCAACAGACGAGCCGGCCGCCACTCCTCCAGCACGGGACGAGCCGGCCGGCACTCCTCGAACACGGGACGAGCCGGCCACCACTCCGCCGCAGCATGACCGAACTGCTCCGGCTGTGCGGGGAAGGCATTCCACGCGGGGAACCCAGAGCCGCCAGGAGTTTCAGGTGAGGACGGCTTTGCAGAACCGGTCGGTGATGCCCCGGGAAGGCCGCCCCCGGGGGATCCTGCAGCCGGCGGGGGCAGCCGTGGCGGTATTGGCGGGCGCCATTTGGGCCGCTGGTGCCTTTGGACCCGCCGGCGCAGGGCCATCGCTTACCGCCGGCAACAGTGCGCCCTCTGCGCGCCCGCAGCCAGCCGCGGATGGGTCCGATCCCACGGGGAGGACCGGAACCTCTGGGGACCTGGATATACCGGAAGACGTCGCCGCCCAGCTTCATTCGGCCAACCCGGCCGAAGCTGTGCATGCGCTTGCGTGGATCAGGGCCCGGGCCTTCAGTTCCGGGCGCCTGGAGCTTCTCGACCAGGTTAATGCCCCCGGTTCGGCCGCCTTTGCCGCAGATGAGCGGGTCAGGGTGCGGCTGAGGGATTCGGGCCATGTCCTGGCCGGTTTCACCAGCACGATCTCCCGTTCAGATGTCCAGCCGGGGCACTCGTCCAGCCGTGCCGTGGTTACTGTCACCTCCGCAACGTCCTCCTATCAGGAAACGGACGGAACGGGGGCGATCGTGGCCGCGGCGCCGGCGGGGGCGGCCCAGGAGCTACGGTTGGTGCTTGTATCCGCCAATGGGCGCTGGCGTCTTGCGGAAATTCTGCCCGGGCCCTGAMDDFSVPDVPGFTVGRELGRGASSSVWLVTEARSGRDFALKCLLAESPPDGLSEVATQEEAVRREIRILSVLDHQHLIKAHDVVSLSLERPRPAAPATPGAPGTPAAPDTPAGPGAGGPGPGLGLLMEYAPGGSLGQLVSSRGKLTVGETVTVLTPIAQALGYLHGRGFTHSDVSPGNVLFTGHGKPMLADLGVARLVGDAAAVAWDGTDGFMDPAPIDTMRAGLQPERDVYSVAALGWFCLTGEPPRRTADRPPLPLLRPDVPAELAAALESGLSDDRRLRPTAFELATSIYRSAAPLPVDLAGSVHATVIPELLTRRRIPDRPGSAAGKTLRSWHRRLSTSRWSGLLGARQVLPFPVGTEPAAAPPMGKERVATRPTDEPAATPPARDEPAGTPRTRDEPATTPPQHDRTAPAVRGRHSTRGTQSRQEFQVRTALQNRSVMPREGRPRGILQPAGAAVAVLAGAIWAAGAFGPAGAGPSLTAGNSAPSARPQPAADGSDPTGRTGTSGDLDIPEDVAAQLHSANPAEAVHALAWIRARAFSSGRLELLDQVNAPGSAAFAADERVRVRLRDSGHVLAGFTSTISRSDVQPGHSSSRAVVTVTSATSSYQETDGTGAIVAAAPAGAAQELRLVLVSANGRWRLAEILPGPNANANANANA
D1-29_01760921COG1090Epimerase family proteinGTGGCGCCCCGCATGGTGAGATGGTTTATGCGAATCGTGATTGCCGGCGCCTCCGGGCTGATCGGGACCCAGTTGTCCGTCTCCCTGCGTGAGGCCGGCCACGACGTCGTGCCGCTTGTCCGGCGGGCGCCGTCCTCGGCATCGGAGGTCCGCTGGGATCCCGACGCCGGCCGGCTGGATCCCAGCGTATTGGCCGCTTCCGATGCGGTGATCAACCTCGCGGGTGCCGGCATCGGCGACCGACCGTGGACGCGCCGCCGGGTAGAGGACCTGTTCAGTTCACGGCTGCAGGCTACCCGGACCCTGACCGGGGCGATGAAAAGTCTGGATGATCCGCCGCGGGTTTTCGTGAGCCAATCGGCATCCGGCTACTACGGTGACGCGGGTACGGCACTTCTTGGCGAAGGGTCATCCCCCGGTGCAGGCATCCTGGCCCGGTTGTGCCTCGAGTGGGAGGCAACTGCACACTCGGCACCGACAGGAGTGCGCGTCCTGACTCCCCGCACCGGTGTGGTTCTCAGCCCGTCAGGCGGAGCTCTGGGCAGGCTTCTGCCGCTGCTCCGGCTGGGGCTGGGCGGCCCGCTGGGACCCGGCAGGCAGTTCTGGCCCTGGATTACCCTCCCGGATGTCGCGGCCGCCTTCCTGTTCCTGATCCGCTCCACGCTGCACGGCCCGGTCAACGTCTGTGCACCGGAAACGGCTGATGTAAATTCTCTGGTGGCTTCACTTGCACAGGCCCTGCACCGGCCCGCCGCTCTCCGGGTGCCGGCACCCGCGCTGCGCCTTGTCATGGGAAAGCTCGCGGACGAACTGCTGCTGCCGAGCCAGCGGATGGAACCCCGGGTCCTGTCGGACGCCGGCTTCAAGTGGCAGCATCCGACGCTCCAGCAAGCCGCTGCCTGGGTGGCGGCCAAGGACTGAMAPRMVRWFMRIVIAGASGLIGTQLSVSLREAGHDVVPLVRRAPSSASEVRWDPDAGRLDPSVLAASDAVINLAGAGIGDRPWTRRRVEDLFSSRLQATRTLTGAMKSLDDPPRVFVSQSASGYYGDAGTALLGEGSSPGAGILARLCLEWEATAHSAPTGVRVLTPRTGVVLSPSGGALGRLLPLLRLGLGGPLGPGRQFWPWITLPDVAAAFLFLIRSTLHGPVNVCAPETADVNSLVASLAQALHRPAALRVPAPALRLVMGKLADELLLPSQRMEPRVLSDAGFKWQHPTLQQAAAWVAAKDPGPT0014730_2964DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCELOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071NANA
D1-29_017613498tri1COG0793Tricorn proteaseATGACCTCTTCGAGTTACCTCCGCTTTCCGCATGTCCACGGCGATCTGGTTACTTTCGTGGCCGAGGACGACGTCTGGATTGCGCCCCTGGGCGGCGGCCGTGCCTGGCGGGTTTCCTCGCTCCAGCTCCCCGCCCGCAACCCCCGTTTCACACCTGACGGCAAGCGGCTCGTCTGGACCGTGGTCCAGGGCACGGCGCCTGAAGTGGTCACGGCGGAGGTCGACGGCGGCGGTTACCGGCAGCTGACCTATTTCGGGCACAGCAGCACCCGGGTCAAGGGCTTCACCGCCAACGGCTCCGTTATCGTGACCAGCGCCTTCCGCCAGGCTGAAAGCCGGCATACCTATGCCTACAGCCTCCCGGTGGATGGCGGATGGGCTGAGGAGCTTCCTTTTGGCCCCGTTGAATCCGTCGCCTTTGGACCGGAAGTCGGCGACGAGCGCCCCGTAGTCCTGGGCAGCGTTCTCTCCCGCGAACCTGCCTGGTGGAAGCGCTACCGCGGCGGCACAGCCGGCAAGCTGTGGATCGACACCGACGGCAACGGGGAGTTTGAGCGCCTCGTTCCGGAACTGGACGGAAACCTCACGGACCCCATGTGGGTGGACGGCCGGATCGCGTTCCTCTCCGACCATGAAGGGTACGGAAACCTGTACTCCGTCAAGCCAGGCGGAGGGGACCTGCGCCGGCACACTGACCATGAGGACTTCTACGTCCGGCATGCCTCCACCGACGGCCAGCGGGTCATTTTCGAATCGGCCGGCGAGCTGTGGCTCCTCAACGACCTTGAGTCAGAAGCCGTACGGCTGGACATCTCACTGGGTTCGGCCTCCCAGTCCCGGCGGCCGGGCCTCCTGAAGGCCTCGCAGCATCTCGGTGCGGTGGTTCCGGATGCCACCGGGTCCGCCAGTGCCGTAGAGGCCCACGGGACGATCCACTGGATCAGGCACAAGGACGGCCCGTCCCGCATCGTGGAGGCCACCCCCGGTGTCCGGGCCAGGCTTCCCCGGCCGCTCGACGGCGGCCGGCTCGCCTATATAGCCGACCACGACGGCGTGGAGGCCCTCTACATCAGGGAGATCGCCGCCCGGCTCCCCGGCGTCGCAGCCCCTGCCGGGGCGCAGGCTCCCGCGCCGGTTACACCAGCAGCTCCGCCGCAGAGTACGGACGCTGCGCTTCCCCGTCCGGTCCCTGCGGCCGGCGGCACGGGCCAGGTCCACGCCAGCGCAGTTGCTCCCGTCCCTGACGATTCAAGGGCCGATGTCGCCCCCGACCCGGCAGAATCACCGGCGGATGCGCAGGAGGCGCCCGCGGCCGCCCGCATCGACTTTCCGAAGCCCTCACGAGCCAGCGCCATGGAATCCAGCCCGGATGGCCGTTGGCTTGCCGTGGGCACGTCCTTTGGCGACGTGTATGTTGCCGATACCGCTTCCGGAAAGCTGTCCCTGGTAGCCAGCATCGGCGAAGGCACCATTGCGGAACTGGGCTGGTCGCCGGACTCCTGCTGGCTGGCCTGGTCCGAGCCGGTAACGTCCTTCGGCTCCAGGAGCAGGCTGCGCCTTGTCAACGTCTCCGACGCCGACGGCGGCGTAGTTGACGTTACCGACGGCCGCTTCTGCGACACATCCCCGGCCTTCACCCCGGACGGAAAGTTCCTGGCCTTCCTGTCCAACAGAAGCTTCGATCCGGTTTACGACGGACATTCATTCGACCTGTCCTTCCCCAGTCCCATCAAGCCCTATCTGGTGGCCCTGGCAACAGACACTCCATCCCCGTTCGGTCCGGCCGTAGACCTGGACGAGTCTGAGAACGGTCCTGGCAACAGCGGGAGTGCTGACAGCAGTGAAGCGGAAACGGAAGCCGGGGAGGCCGCCGCAGTGCGGGTCGATCCTGAAGGCCTGGCCCACCGCGTGATCGGCGTCCCGGTGCCGCAGGGCAACTACACGGCGCTGAAGACCACTGAGGGTGCACTGCTCTGGCTGGACTGGGCGCTGGCCGGGGTGACGGGTGACGGCAAGGCAAGCCAGGACGACAAGGACGCCCGCCCCAGCCTGGTCCGGTTCGACCTCGCCCGGCGCAAGTCATCCACCTTGGTGGAGGCGTTGGCCAGCTACCGGCTGTCAGGGGACCGCAGGAAGGTGGTGCTGGTCCACGACAAGCAGGTGATTGTGGTGCCTGCCGACGCGAAAGCCGATGAAGACTCAGGTCAGGTGGTCAAGGTGGACCTTGGCCGGATCAGGGTGATGATGGAGCCGCTCAGTGTCTGGGGCCAGGCATTTGACGAGGCCTGGCGCCTGCAGCGGGACTTCTTCTGGGCTGAGGACATGGCCGGCCAGGACTGGGAGTCAGTACACAAGCGCTACAGGCCCCTGGTGGACCGCCTCGGATCCCACGACGACCTCATCGACCTTCTGTGGGAACTCCACGGCGAGCTGGGGACTTCACACGCCTACGTCAAGCCTGCGCCGGTCACTGAAAATGGCAGCAACGGCCAGGGCAGGCTCGGTGCTGACCTCGCCTTGACGCCGGCAGGCTGGGAAATCACCCGCATCCTGGCCGGTGAATCCTCCGATCCGCTGGCAACCTCACCCTTGACCCGCCCGGGGGCGGGGGCCAAAGCCGGTGACGTGGTGCTGGCCATCGACGGAGTGCCCCTCTCGGATTCCGTCACCCCGGCGATGTTGCTCGTGGGCGCGGCCGGCCGTGCCGTGGAGCTCACCCTCAGCAACGGAGCCGGGCATGGAACAGAGGCAGGCAGGCAACGGCGCATCGCTGTTGTCCCCATCAAGGATGAAGAACGCCTGCGCTACCAGGAGTGGGTTGCCGGCAACCGCCGCACGGTCCGGGAAGCATCACACGGAACGTTTGGATACCTGCACATCCCTGACATGATGGCCAACGGCTGGGCGCAGCTCCACCGGGACCTGGACACGGAGACGGCCCTGGATGGACTGATTGTCGATGTCCGGCGGAACCGTGGCGGACACACCTCGCAGCTGGTGGCCGAACTGATTGGCCGGAAAGTGACGGGCTGGAGCATGCCCCGCGGAGAACGGCCCAGGACGTATCCGCATCACGCTCCCCGTGGCCCCGTAGTCATCCTCGCCGATGAGTTTGCCGGGTCCGACGGCGACATCATCACCCAGGTATCCAAGCTGCGGGGAATCGGACCCGTCATTGGTACCCGCACCTGGGGCGGTGTGGTGGGCATCGACAACCGGTTCTCGCTCGCTGACGGTACAGGGGTCACCCAGCCGAGGTACGCGAACTGGTTCACCGGCGGCGTTGGATGGAGCGTGGAGAACTATGGCGTGGACCCGGACATCGAGGTGACGTACCCGCCCCATGCGTACGCCGCCGGCCGTGACCCGCAGCTCGAATACGGGATCGGCGCACTCAAGGAAATGATCCAGGAACTGCCCACCGACAGGCCACCGGTCCGTGAGGGTTACCGCAGCCTCCGGCCCGCCCCGCTCCCGGCCCGCAAGCCAGTGGTCTAAMTSSSYLRFPHVHGDLVTFVAEDDVWIAPLGGGRAWRVSSLQLPARNPRFTPDGKRLVWTVVQGTAPEVVTAEVDGGGYRQLTYFGHSSTRVKGFTANGSVIVTSAFRQAESRHTYAYSLPVDGGWAEELPFGPVESVAFGPEVGDERPVVLGSVLSREPAWWKRYRGGTAGKLWIDTDGNGEFERLVPELDGNLTDPMWVDGRIAFLSDHEGYGNLYSVKPGGGDLRRHTDHEDFYVRHASTDGQRVIFESAGELWLLNDLESEAVRLDISLGSASQSRRPGLLKASQHLGAVVPDATGSASAVEAHGTIHWIRHKDGPSRIVEATPGVRARLPRPLDGGRLAYIADHDGVEALYIREIAARLPGVAAPAGAQAPAPVTPAAPPQSTDAALPRPVPAAGGTGQVHASAVAPVPDDSRADVAPDPAESPADAQEAPAAARIDFPKPSRASAMESSPDGRWLAVGTSFGDVYVADTASGKLSLVASIGEGTIAELGWSPDSCWLAWSEPVTSFGSRSRLRLVNVSDADGGVVDVTDGRFCDTSPAFTPDGKFLAFLSNRSFDPVYDGHSFDLSFPSPIKPYLVALATDTPSPFGPAVDLDESENGPGNSGSADSSEAETEAGEAAAVRVDPEGLAHRVIGVPVPQGNYTALKTTEGALLWLDWALAGVTGDGKASQDDKDARPSLVRFDLARRKSSTLVEALASYRLSGDRRKVVLVHDKQVIVVPADAKADEDSGQVVKVDLGRIRVMMEPLSVWGQAFDEAWRLQRDFFWAEDMAGQDWESVHKRYRPLVDRLGSHDDLIDLLWELHGELGTSHAYVKPAPVTENGSNGQGRLGADLALTPAGWEITRILAGESSDPLATSPLTRPGAGAKAGDVVLAIDGVPLSDSVTPAMLLVGAAGRAVELTLSNGAGHGTEAGRQRRIAVVPIKDEERLRYQEWVAGNRRTVREASHGTFGYLHIPDMMANGWAQLHRDLDTETALDGLIVDVRRNRGGHTSQLVAELIGRKVTGWSMPRGERPRTYPHHAPRGPVVILADEFAGSDGDIITQVSKLRGIGPVIGTRTWGGVVGIDNRFSLADGTGVTQPRYANWFTGGVGWSVENYGVDPDIEVTYPPHAYAAGRDPQLEYGIGALKEMIQELPTDRPPVREGYRSLRPAPLPARKPVVNANANANANA
D1-29_01762429osmCCOG1764Peroxiredoxin OsmCATGGCAGCAACACGCACCGCACACACAGTATGGAACGGCGACCTGATGAAGGGTTCCGGCCAGACCACGCTGGACAGCTCAGGCCTCGGCACCTTTGACGTCACCTGGAAGGCACGCACCGAAGCCGCCGAAGGAAAGACCAGCCCGGAGGAACTGATCGCCGCTGCGCATGCCAGCTGCTACTCCATGGCGTTCAGCAACATGCTGGCCCAGGCCGGCCACGCACCGGAAGAGGTCAACACCAAGGCTGACGTCACGTTCGTTCCCGGAACCGGTATTACGGGCAGCCACCTGACCGTGTCCGCGCGGATCCCCGGCATCGGCGAAGACGAATTCCAGAAGATCGCCGGTGAGGCGAAGACCGGCTGCCCTGTTTCGGGAGCACTCGCGAGCATCGACATCACCCTGGACGCAACACTGCAGTCCTGAMAATRTAHTVWNGDLMKGSGQTTLDSSGLGTFDVTWKARTEAAEGKTSPEELIAAAHASCYSMAFSNMLAQAGHAPEEVNTKADVTFVPGTGITGSHLTVSARIPGIGEDEFQKIAGEAKTGCPVSGALASIDITLDATLQSPGPT0013160_1414DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-29_01763351hypothetical proteinATGGACATCCTGTATAACGTCATGGTCTTCCTCCACATTGTCGGCGCTGCCATGGTTGTGGGGATCTGGATCGGCAACATGAAGAAGCCCACAGTCCACCCACGCCAGTTCGACGGCGCGGCAACCCAAGTCATCACGGGCGGCGCGATGATGGGACTGATCCCGGCCCTGGCCATGGACGCCAATTACACGAAGCTGGGGATCAAGTTGGCCATTGGCCTTGCCGTTGCGGTATTGGCCTTTATCGGCAGCCGCAAGTACAAGAAGGGTGAACCCATCAGCAAGGGCCTCGCCCACAGTGTAGGCGGCCTTGCCCTCCTCAACGTGGCCATTGCCACGCTCTGGAACTAAMDILYNVMVFLHIVGAAMVVGIWIGNMKKPTVHPRQFDGAATQVITGGAMMGLIPALAMDANYTKLGIKLAIGLAVAVLAFIGSRKYKKGEPISKGLAHSVGGLALLNVAIATLWNNANANANANA
D1-29_017641794aceFCOG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGTCTGAATCCGTTAACTTGCCCGCCCTCGGTGAGAGCGTCACCGAAGGAACCGTCACCCGCTGGCTCAAGCAGGTAGGTGACCGGGTAGAAGTGGACGAGCCGCTGCTCGAGGTTTCCACCGACAAAGTAGACACCGAAATCCCCTCTCCGATAGCCGGCGTCATCGAGGAAATCCTCGTTGCCGAAGACGAGACCGCCGAAGTGGGCGCTCCCCTGGTCCGCATCGGCGACGGTTCCGGATCCAACGGCACCAGCCCTGCTGCTGCAGCAGCCCCTGCTGCTCCGGCGGAAGAAGAAGCTCCAGCTGCTCCTGCAGAGGAGGCAGCCCCGACTGCTCCGGCTGAAGCAGCTGCCCCCGCCGCGCCTGCCGAAGAAGCAGCGCAGGCACCCGCAGCCGGTGGCGACAGCCACGAGGTCACCTTGCCCGCTCTCGGTGAGAGCGTCACGGAAGGCACCGTGACCCGCTGGCTCAAGGCCGTTGGCGACTCCGTTGAGGTTGATGAGCCGCTGCTTGAGGTATCAACTGACAAAGTAGACACCGAGATCCCGTCCCCCGTGGCCGGAACGCTCCAGGAAATCCGAGTCAACGAGGACGAAACCGCCGAGGTGGGCGCCGTTCTCGCCGTTATCGGCTCCGGTGCCTCAGCCCCCGCCGCCGCACCCGCCCCCGCTCCGGAAGCGCAGCAGGAGGCGCCCGCGGCTCCCGCAGCCCCGGCTGCAGCAACTGAGGCCGAAGCACCCCAGCAGGAGGCACCGAAGCAGGAAGCCGCACCGGCTGCTGCTCCCGCTCCGGCAGCCGCTCCGGCACCTGCTGCTGCTCCGGCACCTGCCGGCGCACCTGCTGCCAATGGCTCCGACTCCGGTTACGTCACTCCCCTGGTCCGCAAGCTGGCCAACCAGCAGGGTGTGGATATCTCCTCCCTGACCGGCACCGGTGTGGGTGGACGCATCCGCAAGCAGGACGTCCTCGCAGCCGCAGAAGCAAAGGCTGCGCCCGCTGCAGCCGCTGCCCCTGCTGCTCCGTCGGCACCCGCTGCTCCTGCCGCCGCCGCTCCCGCCGCTTCATCCCTGCGCGGCACCGTGCAGAAGGCCCCGCGCATCCGCCAGGTCATCGCCCGACGGATGCGCGAATCCCTTGAAATCTCGACGCAGCTGACGCAGGTGCACGAGGTGGACATGACCAAGATCGCCAAGCTGCGCCTCAAGGCCAAGAACTCGTTCCAGGCCCAGAACGGCGTCAAGCTCACCTTCCTGCCGTTTATTGCCAAGGCCGTTGCCGAGGCATTGAAGCAGCACCCGAAGCTTAACGCCGCCTACGACGAGGACAAGCAGGAGATCACGTACCACAACGCCGAGCACCTGGCGATCGCTGTGGACACGGACAAGGGACTCCTGGTGCCCGTGATCGCGGATGCCGGAAGCCTGAACCTGGCCGGCCTGGCCGGGAAGATCGCGGACGTTGCCGGCCGCACCCGCGGCGGGAAGATCGGACCGGACGAACTGTCCGGCGGAACGTTCAGCATCACCAACATCGGCTCAGTCGGGGCACTGTTCGACACCCCGATCATCAACCAGCCACAGGTGGGGATCCTGGGCACCGGCGCCATCGTCAAGCGAGCCGTCGTTGTTTCCGACGAAAACGGTGACGATTCCCTCGCCATCCGGTCCATGATGTACCTCTCCCTGACCTACGACCACCGCCTGGTGGACGGGGCCGATGCAGGCCGCTTCCTCCAGACGCTGAAGGCCCGCCTTGAAGAAGGTGCCTTCGAAAGCGACCTGGGCCTCTAGMSESVNLPALGESVTEGTVTRWLKQVGDRVEVDEPLLEVSTDKVDTEIPSPIAGVIEEILVAEDETAEVGAPLVRIGDGSGSNGTSPAAAAAPAAPAEEEAPAAPAEEAAPTAPAEAAAPAAPAEEAAQAPAAGGDSHEVTLPALGESVTEGTVTRWLKAVGDSVEVDEPLLEVSTDKVDTEIPSPVAGTLQEIRVNEDETAEVGAVLAVIGSGASAPAAAPAPAPEAQQEAPAAPAAPAAATEAEAPQQEAPKQEAAPAAAPAPAAAPAPAAAPAPAGAPAANGSDSGYVTPLVRKLANQQGVDISSLTGTGVGGRIRKQDVLAAAEAKAAPAAAAAPAAPSAPAAPAAAAPAASSLRGTVQKAPRIRQVIARRMRESLEISTQLTQVHEVDMTKIAKLRLKAKNSFQAQNGVKLTFLPFIAKAVAEALKQHPKLNAAYDEDKQEITYHNAEHLAIAVDTDKGLLVPVIADAGSLNLAGLAGKIADVAGRTRGGKIGPDELSGGTFSITNIGSVGALFDTPIINQPQVGILGTGAIVKRAVVVSDENGDDSLAIRSMMYLSLTYDHRLVDGADAGRFLQTLKARLEEGAFESDLGLPGPT0001390_1478DIRECT 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
D1-29_017651383pdhDDihydrolipoyl dehydrogenaseGTGGCCGATCAGGCAACTGCGCAAGAATTCGACATCCTGGTACTCGGTGGCGGCAGCGGCGGATACGCCACCGCCCTGCGGGCCGTACAGCTTGGCTTCACCGTGGGCCTCGTGGAGAAGGGCAAACTCGGTGGCACCTGCCTCCACAACGGCTGTATCCCCACCAAGGCCCTGCTTCACTCGGCCGAACTGGCCGACCACGCCCGTGACTCCGCCAAGTATGGCGTGAACGTCACCCTCGACGGCATCGACATCAACGCCGTCAACGCGTACAAAGACGGCATCGTCGCCGGCAAGTTCAAGGGCTTGCAGGGACTCATCAAGTCCAAGGGCATCACCGTCATCGAAGGTGAAGGCAAGCTTCAGGGCACCGACACCGTTGTAGTGAACGGCACCGCCTACAAGGGCAAGAACATCGTCCTCGCCACCGGCTCCTACTCCCGGTCCCTCCCCGGCCTGGAAATCGGCGGACGCGTCATCACCTCCGACGAAGCCCTCGTCATGGACTACATCCCCAAGAGCGCAATCGTGCTCGGCGGCGGCGTCATCGGCGTCGAATTCGCCTCAGTATGGAAGTCCTTCGGCGTAGACGTCACCATCGTCGAGGGCCTGCCCTCACTGGTTCCCAACGAGGACACCGCCATCGTGAAGAACCTGGAGCGCGCCTTCAAGAAGCGCGGCATCAAGTTCTCCACCGGTATCTTCTTCCAGGGCGTCGAGCAGAACGACTCCGGAGTCAAGGTCACCCTGGTGGACGGGCAGACGTTCGACGCCGAACTCCTCTTGGTAGCTGTTGGCCGCGGCCCCGTCACGGCCAACCTCGGTTACGAAGAGGCCGGCGTCACCATTGACCGCGGCTTCGTCATCACCAACGAGCGCCTGCACACCGGCGTGGGGAACATCTACGCCGTGGGTGACATCGTCCCCGGCGTCCAGCTCGCGCACCGCGGCTACCAGCAGGGCATCTTTGTTGCCGAGGAGATCGCGGGCCTTAAGCCCGTCATCGTTGAAGACGTCAACATCCCCAAGGTCACCTACTGCGAACCTGAAATCGCGACGGTGGGCTATACGGAGAAGGCCGCAAAGGAAAAGTTCGGCGACGACCAGATCCAGATCCAGGAATACAACCTGGCCGGCAACGGCAAGAGCTCCATCCTGGGCACCGGCGGCCTGGTCAAGCTGGTCCGCCAGAAGGACGGCCCCGTGGTGGGTGTGCACATGATCGGTTCCCGCATGGGCGAGCAGATCGGTGAAGCCCAGCTCATCGTGAACTGGGAAGCCTACCCGGAGGACGTGGCCCAGCTGGTCCACGCGCACCCCACGCAGAACGAGGCCCTGGGCGAAGCCCACCTGGCACTCGCGGGCAAAGCCCTCCACGGCTAAMADQATAQEFDILVLGGGSGGYATALRAVQLGFTVGLVEKGKLGGTCLHNGCIPTKALLHSAELADHARDSAKYGVNVTLDGIDINAVNAYKDGIVAGKFKGLQGLIKSKGITVIEGEGKLQGTDTVVVNGTAYKGKNIVLATGSYSRSLPGLEIGGRVITSDEALVMDYIPKSAIVLGGGVIGVEFASVWKSFGVDVTIVEGLPSLVPNEDTAIVKNLERAFKKRGIKFSTGIFFQGVEQNDSGVKVTLVDGQTFDAELLLVAVGRGPVTANLGYEEAGVTIDRGFVITNERLHTGVGNIYAVGDIVPGVQLAHRGYQQGIFVAEEIAGLKPVIVEDVNIPKVTYCEPEIATVGYTEKAAKEKFGDDQIQIQEYNLAGNGKSSILGTGGLVKLVRQKDGPVVGVHMIGSRMGEQIGEAQLIVNWEAYPEDVAQLVHAHPTQNEALGEAHLALAGKALHGPGPT0001380_8056DIRECT 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
D1-29_017661527pepACOG0260putative cytosol aminopeptidaseGTGGTCAAGAATACCGAAATTAACCTTAGTACCCTCTCACGGGACCTCAGGAAGGCGTCGTCCGACGCCGTTGTCATCGGCGTCGGACAGGGACCCGATGGACCCGTCCTCCTCGACAATCCCCTGGCAGCCAAGTCTGCCGAAGCGCTTGCTGATTCGCTGAAGGCACTCGGTGTCACGGGCGCAGCGGACCAGATCGTCAGGCTTCCCGGCCTGCCGGAGACCGGCGCCGGCGTCCTGGTTCTGGCCGGCGTGGGCAAAGTGGGCACGGACGGCACGCTGGAAGAGGAAGCACTCCGCCGGGCCGCAGGTTCCGCAGTGCGCCAGCTGGCCGGCCTGGCCACGGTTGTCATTGCGCTTCCGACGGCGGGAGTCGCCGACGTCGCGGCGCTCGCCGAAGGTGCCGCGCTGGGCGCCTATTCGTTTACGGAATACCGGACGTCCAAGAACGGCATGAAGGACCCCGTACGGAACGCGGTGATCTTTACCGAGGTTGCCGGGGACAAGGAACTCAATGCCGCCCTGACCCGCGCGGGACTGATCGGCAAGGCCGTCAATGCCACCCGGTCCCTGGTCAACCAGCCGCCGAGCCATCTCTACCCGGAGTCATTTGCCGAGGCCGCCAAGGAACTGGCCAAAGGCCTCCCCGTGAAGGTCACCGTGTGGGATGAACGGCGCCTCGAGAAGGAAGGCTTCGGCGGGATCATGGGCGTGGGCAAGGGTTCCACCCGCCAGCCCCGCCTGGTCAAGGTGGAATACGCCCCGGCCAAGGCAACGGCAAAGATCGCTTTGGTCGGAAAGGGCATCACCTTCGACACCGGAGGCATCTCCATCAAGCCGGCCCTGAACATGGGTGACATGAAGAGCGATATGGCGGGCGCCGCCGTCGTCCTCAACACTGTGCTGGCGCTCGCGGGCCTGGGACTGCCGGTCAAGGCCACCGCCTGGCTGTGCATCGCCGAAAACATGCCCTCAGGTGCCGCCTCCCGGCCGGCCGATGTGCTGACCATGTTCGGCGGCAAGACCGTCGAGGTCCTGAACACCGACGCCGAGGGACGCCTGGTGATGGCCGACGGCCTGGTGGCAGCGAGCAGGGAATACCCGGACGCGATCATCGACGTCGCCACCCTGACCGGAGCGCAGCTTATTGCCCTGGGTAACCGGACGGCCGGAGTGATGGGGTCTGACAGCGTCACGGGTCCGCTCAAGGCCGCGGCAGACCGGGCCGGTGAGCTGGTGTGGCCCATGCCCCTGCCGGAGGAACTGCGTCCCAGCCTTGACTCCCAGGTGGCCGACCTCGCCAACATCGGGGAACGCCACGGCGGCATGATGACCGCAGCCGTTTTCCTGCGCGAGTTTGTGGGCAAGGGCAAGGACGGGGAGCAGATCCCCTGGGCACACATAGACATTGCCGGCCCGTCCTTCAACAACGGCAGCCCCTACGGCTACACCCACAAGCAGGGAACGGGCAGCACAGTCCGCACCCTGGTGGCCTACGTGGAAGACCTCCTGGGCGCTGCCGCCTGAMVKNTEINLSTLSRDLRKASSDAVVIGVGQGPDGPVLLDNPLAAKSAEALADSLKALGVTGAADQIVRLPGLPETGAGVLVLAGVGKVGTDGTLEEEALRRAAGSAVRQLAGLATVVIALPTAGVADVAALAEGAALGAYSFTEYRTSKNGMKDPVRNAVIFTEVAGDKELNAALTRAGLIGKAVNATRSLVNQPPSHLYPESFAEAAKELAKGLPVKVTVWDERRLEKEGFGGIMGVGKGSTRQPRLVKVEYAPAKATAKIALVGKGITFDTGGISIKPALNMGDMKSDMAGAAVVLNTVLALAGLGLPVKATAWLCIAENMPSGAASRPADVLTMFGGKTVEVLNTDAEGRLVMADGLVAASREYPDAIIDVATLTGAQLIALGNRTAGVMGSDSVTGPLKAAADRAGELVWPMPLPEELRPSLDSQVADLANIGERHGGMMTAAVFLREFVGKGKDGEQIPWAHIDIAGPSFNNGSPYGYTHKQGTGSTVRTLVAYVEDLLGAAANANANANANA
D1-29_017671137hypothetical proteinATGGAAACCCGGCTGCCGTCGGCTTCGGACGCCGCCGGGATGTCTGCGAAGCCCGTTGCCGGGCCAGTTTCGATCGTAGCCGGTATGCGTGGCGGCGGGGGAATCTTTGGAGACCTGCGCCACACCACCACACGGAATGCCCGGGCGCCCGGCAACGTTGTAAAAGGTATCCACCCGAATCCACGAAAGGAACATCCCGTGCTTGAACGGATTTCCGGCTCCCTGCTGGACCCCGATGCGCTCTACGCGAGCAACATCGAGTTGTTCCACAGCCCGGCGCTCCGCGGGCTGAACCTGGTGATGGGCTTCACCGGGTTTGCCGATGCCGGCCATGTGGTCAAGCAGATCAATGCCGAGCTGCTGGACACCCTCGACGCCGAGCCGGTGGCGGTGTTCGATGCCGACCAGCTGATTGACTACCGGTCCAGGCGGCCCCACGTCTCCTTTGTGGAGGACCACCTGCAGGACTACCAGGCGCCCCGGCTGGCGCTGTATCGGCTGATCGACGGCCTCGGAAATCCGTTCCTTCTGCTGGCCGGGTTCGAACCGGACCTTCAATGGGAGCGGTTTGCCCGCGCTGTTGTGGGGATTGTGGAAAAGCTCGACGTGAACCTCGTGACCTGGATCCACTCCATTCCCATGCCTGTTCCGCATACCCGCCCGGTAGGCGTCACCGTCCACGGCAACAGGCCGGAACTGATCGAAGGCATCTCGGTGTGGAAGCCCACGGTGGAGGTCCCGGCGGCTGTCGGCCACATCCTGGAACTCCGGCTGGTTGAGGCCGGACGCAACGTCGCGGGCTACGTGATCCACGTTCCGCACTACCTGGCCGAGGCGGAATACCCCACGGCCGCAGTGGCGGGCCTGGAATACCTTGGTGCCGCAACGTCCCTGATGCTGCCGACTGACAGGCTCCGGGAAGCGGGCCGGGAAGTGGGACGCCAAATCGCTGAACAGATTGACGCCTCCGAAGACGTGCAGCAGGTGGTATCACGGCTCGAGTCCCGCTACGACGAGAAGGCTGAGGGCACGGTCCGGAGGTCGCTCCTTGCTGATGAAAACGACCAGCTGCCCAATGGGGACGTGCTGGGGGCTGCGGTTGAGGCATACCTCGCCAGGGAAAATCCTGCCCAGTAGMETRLPSASDAAGMSAKPVAGPVSIVAGMRGGGGIFGDLRHTTTRNARAPGNVVKGIHPNPRKEHPVLERISGSLLDPDALYASNIELFHSPALRGLNLVMGFTGFADAGHVVKQINAELLDTLDAEPVAVFDADQLIDYRSRRPHVSFVEDHLQDYQAPRLALYRLIDGLGNPFLLLAGFEPDLQWERFARAVVGIVEKLDVNLVTWIHSIPMPVPHTRPVGVTVHGNRPELIEGISVWKPTVEVPAAVGHILELRLVEAGRNVAGYVIHVPHYLAEAEYPTAAVAGLEYLGAATSLMLPTDRLREAGREVGRQIAEQIDASEDVQQVVSRLESRYDEKAEGTVRRSLLADENDQLPNGDVLGAAVEAYLARENPAQNANANANANA
D1-29_017681350hypothetical proteinGTGACTGCACCCCGGGCCTGGCTGATTTGGACCATCGGCATCTTCGCGTATCTGGTGGCCGTCACGCAGCGGACCTCGTTCGGTGTTGTAGGTCTTGAAGCCACCGAGCGGTTCCATGCCGGTGCGTCAGCGATCTCCTTCTTCACTGTTCTGCAGCTCCTGGTGTACGCCGGGCTGCAAATCCCGGTTGGCCTCCTGGTGGACAGGTTCGGCTCCCGGGCGATGATCGCCGGCGGCGCACTCCTCATGGGACTCGGCCAGCTCCAGCTTGCCTTTGCGGACAGTATCCCGGGCGGCGTTGCGGGGCGCGTACTGGTGGGTGCCGGGGACGCCATGACCTTTATTTCCGTGATCCGGCTGATTCCGCTGTGGTTTGCCCCGTCCCGCGTGCCTCTCGTGACGCAACTAACGGGTATGTCCGGCCAGCTCGGACAGCTGTTCAGCGTGGTTCCTTTTGCCCTGGTCCTTCATTTCTCCGGCTGGACTCCGGCTTTCCTGATGCTTGCCGGCATGTCCGGAGTCGCCGTCGTGCTGGTCCTGGTCCTGCTGCAGGACGTCCCGCCCGGAACACCGCGGCCCCAGGCGCAGCAGGGCCTGCGCGCCACCGGTGTGTCGCTTGCGCGGGCCTGGCGGCAGCCGGGCACCAGGCTGGGACTGTGGAGCCACTTCACCATCCAGTTCAGCGGCACCGTGTTTGCCATGACGTGGGGATATCCCTTCCTGATCTCCGCCCAGGGCCTGGATACCGGGACTGTCGCGGGACTCATGGGGCTTTACGTGGCGGGCGCCCTGGCCGTGGGCCCCTTCATCGGCCGGTTTGTCTCCAGGCACCCGCTGCGCCGGTCCACCCTGGTCCTGCTGATCGCGGCCGCCACTGCCGCTGCCTGGGCCGCGGTGCTGCTCACCCCTGGCCGTTCCCCGCTCTGGCTTCTTGCCGGGCTTGTGGTGGTGCTCGCCATCGGCGGGCCCGGCTCCATGATCGGCTTCGATTTCGCCCGGACCTTCAATCCCGCCCACCGGATCGGCACAGCCACCGGCATTGTGAACGTGGGCGGGTTCATCGCTGCCCTGATATCAATTTTCCTGATCGGGCTCGTACTGGACATTCTCCATGCCAGCGGGTTCTCCAACGGCGTTCTGTACGGCCTGGAACCGTTCCGGCTCGCGCTCAGCGTCCAGTTCCTGGTTCTGGGATTCGGTGCGGCCGCAACGCTGCTCTGCCGCCGGAAGGTGCGCCGGCAGATGGCGGCGCAGGGGGTTGTTGTCCCTCCGCTGCTCCGCAGCCTGGCCGAACAGCGGCGGGCAAGCCTGGCGCAGCGGCGCCAGGGCTCACGGCCTTCTGAGGACTGAMTAPRAWLIWTIGIFAYLVAVTQRTSFGVVGLEATERFHAGASAISFFTVLQLLVYAGLQIPVGLLVDRFGSRAMIAGGALLMGLGQLQLAFADSIPGGVAGRVLVGAGDAMTFISVIRLIPLWFAPSRVPLVTQLTGMSGQLGQLFSVVPFALVLHFSGWTPAFLMLAGMSGVAVVLVLVLLQDVPPGTPRPQAQQGLRATGVSLARAWRQPGTRLGLWSHFTIQFSGTVFAMTWGYPFLISAQGLDTGTVAGLMGLYVAGALAVGPFIGRFVSRHPLRRSTLVLLIAAATAAAWAAVLLTPGRSPLWLLAGLVVVLAIGGPGSMIGFDFARTFNPAHRIGTATGIVNVGGFIAALISIFLIGLVLDILHASGFSNGVLYGLEPFRLALSVQFLVLGFGAAATLLCRRKVRRQMAAQGVVVPPLLRSLAEQRRASLAQRRQGSRPSEDNANANANANA
D1-29_017691257hypothetical proteinATGACACCTCCGGAACACCTGACAGTCCAAGGCCCTGAAGACGTCCTGGGGTTTATCCCGCATTCCCTGGGGTATTGGCCGGCCGAAAGCCTGGTGGCCATGACGCTCCACGGCAAACGGCTGGGGGCAACCCTTCGGCTGGACCTGCCCGGACCTGGAACCCTCGCGGACCCGCGGGAGTTCGCGCGCACCGTACGGGATTATCTCCGGGCCGACCAGCACGCCGACGCCGCCTTGCTGGTGTTCTTCACCGACGACGGCTGGATGGAACTCCCTCATACCTGCACGTACACGGGCCTCCTGGCGGCGCTGCAGGCCGTTCTGGGCACATCCGGGATGCCCGTCCGGGATGCCTGGTACGTAGGGGACAGGTACTGGCGCGATGCCTACTGCCTGGACCAGTCGTGTTGCCCCTTGCCCGGCCGGCCCATCGAGGAGATCCGGGACAGCAGGCTCAACGCCGAAATGGTGTACCGCGGCAGCAGCGTGGGGCCCGCCCCCGATCAGCACGCCCAACAGCCTGGTTCCGTTTCTGCTGAAGCTGCCGCCTCACTCCTGGCGGCCGAAGAGGAGTGGTCCAGCCAACTGAACCCGCGGCGGGGGAGCCGCGCGCAGTTTGAGGCGCTCCTGGGCTTCTGGGCGGGATTACTCGACTCCCCGCCGGGTGATGCCCTTCCGGAAGGCCACCTGGCTTTCCTTCGCGCGTCACTCCGGGTGCCGGCCTGGCGGGACGCGGTGCTGGTGATGGCGGCTGCAGGCGCAGCCACCGCGCAGGAGGGGGCCGGACAGTTCGGAATTTTCGACGGCGGCTGCCTCCTTGCGCCGGTTGGCCCCTGTCCTGCCGGACCGTCCTCCCCACCAGGAAACGCCCGGCGGCCTGCCGGGACGCCAGCTGACGCTTCCACTCAAGGCTCTTCCGCTGCAGTTACTGATCTGCCCGGCTACGGCGAAGTCCTGCCCGGATTGAAGCCTGTCCTGCCGGACTGGGGCAGGCTCAACAGCCTGGACCGCATCCTGGCGAGCCTCTCGGTATATGGAGGGCAGGCAGCGGCTGCCGCACTGACGGGACGCGGGTGGATCGCCTGGTGCCGGGGCCGTGGATCGTATGCGGCCGCCTATCTTGGACAGGCGCTCCAGATGGAGGCGGAGTACAGGCTGGCGGAACTGATGCTGGAACTGGTGCGGCGGGGCACGCTCTGCGGCTGGGCGGCCCGGAAGGAGGCGGCCTGGCAACGGTTCGAACCGGACGCGGCCTAGMTPPEHLTVQGPEDVLGFIPHSLGYWPAESLVAMTLHGKRLGATLRLDLPGPGTLADPREFARTVRDYLRADQHADAALLVFFTDDGWMELPHTCTYTGLLAALQAVLGTSGMPVRDAWYVGDRYWRDAYCLDQSCCPLPGRPIEEIRDSRLNAEMVYRGSSVGPAPDQHAQQPGSVSAEAAASLLAAEEEWSSQLNPRRGSRAQFEALLGFWAGLLDSPPGDALPEGHLAFLRASLRVPAWRDAVLVMAAAGAATAQEGAGQFGIFDGGCLLAPVGPCPAGPSSPPGNARRPAGTPADASTQGSSAAVTDLPGYGEVLPGLKPVLPDWGRLNSLDRILASLSVYGGQAAAAALTGRGWIAWCRGRGSYAAAYLGQALQMEAEYRLAELMLELVRRGTLCGWAARKEAAWQRFEPDAANANANANANA
D1-29_017701329rpoDRNA polymerase sigma factor RpoDGTGACCCCGTCTTCCGCGAAGAAGGAACCCGCCGCCCAGGACGATTTGTCCTCTGAGGAGAAGCAGGCTGCAACGAACGCCAAGCGAGCAGCCACGCGGGCAGCCAACAATGCTGTCAAGGATGCCGCCTCCGGTGATGCCGGTATCGATGGCAGGCCTGAACCCAAGAAGCGCGGGCCCAAGCCCGGCGCCAAAGCCGCTGCCGCGGCCGCCGGAAAGTCTGCCCGCGGTGCCGACTCCGACGACGAGGATGAGGTTGAGGAAGACCTTGACGACATCATCCTTGAAGGCGCCGACGCCGGCGACGACGGCGAAATCGACGCCGCCAAGGCCGCTTCGGCAGCCACCGGTAAGGGATTTGTCTACTCGGACGCGGACGACGACGACGCCCCCGTCCAGCAGGTCATGTCAGCCGGTGCAACGGCTGACCCCGTCAAGGATTACCTGAAGCAGATCGGTAAGGTTGCGCTGCTCAACGCCGAGCAGGAAGTTGACCTGGCGCTGCGGATCGAAGCGGGCCTTTTTGCCGAAGAGAAGATCAATGCCGATGACGGCTCCATGGATCCGAAGTTCAAGCGCGAGCTGGAATTCGTCATCCACGACGGCAAGCGGGCCAAGAACCACCTGCTGGAAGCCAACCTCCGCCTCGTCGTCTCGCTGGCCAAGCGTTACACCGGCCGCGGCATGCTCTTCCTTGACCTCATCCAGGAAGGCAACCTGGGCCTGATCCGCGCCGTGGAGAAGTTTGACTACACCAAGGGCTTCAAGTTCTCCACCTACGCCACGTGGTGGATCCGCCAGGCCATCACCCGCGCCATGGCCGACCAGGCACGCACCATCCGAATCCCGGTGCACATGGTCGAAGTCATCAACAAGCTGGCCCGCGTCCAGCGGCAGATGCTCCAGGACCTTGGCCGCGAGCCCACGCCCGAAGAGCTTGCCCTGGAACTGGACATGACCCCGGAGAAGGTGGTGGAGGTCCAGAAGTACGGCCGCGAACCGATTTCCCTCCACACGCCGCTTGGCGAAGACGGCGACTCCGAGTTCGGTGACCTCATCGAGGACTCCGAGGCTGTTGTCCCTGCCGATGCCGTGAGCTTCACGCTTCTGCAGGAGCAGCTGCACTCCGTGCTGGACACCCTCTCCGAGCGTGAAGCCGGCGTGGTGGCCATGCGCTTCGGCCTCACCGACGGACAGCCGAAGACTTTAGACGAAATCGGCAAGGTCTACGGAGTCACGCGCGAGCGGATCCGCCAGATCGAATCCAAGACCATGTCCAAGCTCCGCCACCCGTCGCGGTCGCAGGTGCTGCGGGACTACCTGGACTAGMTPSSAKKEPAAQDDLSSEEKQAATNAKRAATRAANNAVKDAASGDAGIDGRPEPKKRGPKPGAKAAAAAAGKSARGADSDDEDEVEEDLDDIILEGADAGDDGEIDAAKAASAATGKGFVYSDADDDDAPVQQVMSAGATADPVKDYLKQIGKVALLNAEQEVDLALRIEAGLFAEEKINADDGSMDPKFKRELEFVIHDGKRAKNHLLEANLRLVVSLAKRYTGRGMLFLDLIQEGNLGLIRAVEKFDYTKGFKFSTYATWWIRQAITRAMADQARTIRIPVHMVEVINKLARVQRQMLQDLGREPTPEELALELDMTPEKVVEVQKYGREPISLHTPLGEDGDSEFGDLIEDSEAVVPADAVSFTLLQEQLHSVLDTLSEREAGVVAMRFGLTDGQPKTLDEIGKVYGVTRERIRQIESKTMSKLRHPSRSQVLRDYLDNANANANANA
D1-29_01771222hypothetical proteinATGACCACAGCAGTGGCAGCCCGCACACTCAACGCACTGGACCGGTGCGATCGTTGCGGAGCTCAGGCATATGTCCGGGTTGTACTCGAGTCCTCCGGCGGTGAGCTGCTCTTCTGCGGCCACCACTCGCGTGCGGTCGAGGCGACACTCAAGCCCTTGAGCTCCGACTGGCACGACGAGACGGGCCGGCTTCACGAGAAGGCACCCGTCGAAATCGACTGAMTTAVAARTLNALDRCDRCGAQAYVRVVLESSGGELLFCGHHSRAVEATLKPLSSDWHDETGRLHEKAPVEIDNANANANANA
D1-29_017722109gyrB_1COG0187DNA gyrase subunit BGTGGCACCAAGTTCTGATTACACCGCCCGGCACCTCTCGGTTCTGGAGGGCCTCGAGGCCGTCCGCAAGCGGCCGGGCATGTACATCGGATCCACAGATTCCCGCGGCCTGATGCACTGCCTCTGGGAGATCATCGACAACTCCGTGGACGAAGCCCTGGCCGGTTTCGGCCACGACATTAAGATCATCCTGCACGCGGACAACTCAGTGGAGATCCACGACGACGGCCGCGGCATCCCGGTGGACATGGAACCCAAGACTGGACTCACCGGGGTCGAGGTGGTGTTCACCAAGCTCCATGCGGGCGGCAAATTTGGTGGCGGTTCCTACACGGCCTCCGGCGGTCTCCACGGTGTTGGCGCCTCCGTGGTGAACGCCCTGTCCGCCCGCCTCGACGTTGAGGTGGACCGCGGCGGCAAAACGTACAAGATGTCCTTCCGGCGGGGAGAGCCAGGCCGGTTCAACGACCTGGGCAGCAGGCTGGACCCCTCGGCCACGTTTGCCCCTTTTGTGGACGGTTCCGTCCTTGACGTGGTGGGCAAAGCGAAGCGGGGGATCACCGGCACCCGGATCAGGTACTGGGCTGACCGCCAGATCTTCACCCAGGACGCCAAATTCTCCTATGACGAGCTGGCAGCCCGCGCCCGTCAGACGTCCTTCCTGGTGCCGGGACTGAAGCTCACCGTCCGTGATGAGCGCAGGCTCCCCGGCACGCCGGGTGAAGCAGCCCCGCACGAGGAAGTCTTCCACCACGACGGCGGCATCTCGGAGTTCGTTGATTTCCTGGCCGCCGATCCGGCCGTCACCGATATCTGGCGGCTTCACGGATCCGGCAAGTTCAAGGAAACCGTGCCGGTGCTGGATGAGCGGGGCCACAGCCAGCTGGCGGAGGTTGAGCGCGACTGCGAAGTGGACGTTGCCCTCCGTTGGGGCATCGGCTACGACAGCACTGTCCGCAGCTTTGTCAACATCATCTCCACGCCCAAGGGCGGAACACACCAGTCGGGCTTTGAACAGGCGCTGGTGAAGACTTTCCGCAAGGCCGTGGAAAGCAACGCCCGCAAGCTCAAGGCCGGCAACGACAAAATCGAGAAGGACGACATTTTCGCCGGCCTGACAGCGGTCCTGACAGTCCGCCTCGCCGAGCCACAGTTCGAGGGCCAGACAAAGGAAATCCTGGGTACATCTGCGGTCCGGGCCATCGTGGCCAAGGTGGTGGAGCACGAGATCAATGCCAAGCTCAATTCCGCCAACCGGAACGACAAGGCCCAGTCGGCCCTGCTGCTGGAAAAAATCGTCAGCGAAATGAAGTCGCGCATTTCCGCCCGGGTCCACAAGGAAACCCAGCGACGCAAAAATGCGCTGGAAACCTCATCGATGCCCACCAAGCTGGCAGACTGCCGGACTGACGACGTCGAACGGTCCGAACTGTTTATTGTGGAAGGCGACTCGGCGCTGGGTACCGCCAAACTGGCACGGTCCTCAGACTTCCAGGCGCTGCTGCCGATCCGCGGCAAAATCCTGAACGTGCAGAAGGCTTCGGTGGGGGACATGCTCTCCAACACCGAGTGCGCGGCCCTGATCCAGGTGGTTGGCGCCGGTTCGGGACGCAGCTTCGATCTTGCCGCGGCGCGGTACGGGAAGGTCATCCTGATGACCGACGCGGACGTGGATGGTGCCCACATCCGGACGCTGCTGCTGACCTTGTTCTTCCGGTACATGCGGCCGATGATCCTGGACGGCCGCGTGTTTGCTGCTGTCCCGCCTCTGCACCGGGTGGAGGTCATCAACGCCGGGCAGAAAGCCAACGAGATGATCTACACCTACTCCGAGGCTGAGCTTCATGTCCTGCTGGCGCGGCTGGCCAAGGAGGGCAAGCGCTACAAGGAGCCCATCCAGCGCTACAAGGGCCTGGGTGAAATGGACGCCGAACAGTTGGCCGAGACCACCATGGACCCGCGGCACCGCACGCTCCGGAAGGTGGGCATCGAGAACGCCCAACAGGCGGAGGACACCTTTGACCTGCTGATGGGCTCGGATGTGGCGCCGCGCAAGGACTTCATCATCGCTGGAGCGTCGAGCCTGGACAGGGAGCGGATCGACGCCTGAMAPSSDYTARHLSVLEGLEAVRKRPGMYIGSTDSRGLMHCLWEIIDNSVDEALAGFGHDIKIILHADNSVEIHDDGRGIPVDMEPKTGLTGVEVVFTKLHAGGKFGGGSYTASGGLHGVGASVVNALSARLDVEVDRGGKTYKMSFRRGEPGRFNDLGSRLDPSATFAPFVDGSVLDVVGKAKRGITGTRIRYWADRQIFTQDAKFSYDELAARARQTSFLVPGLKLTVRDERRLPGTPGEAAPHEEVFHHDGGISEFVDFLAADPAVTDIWRLHGSGKFKETVPVLDERGHSQLAEVERDCEVDVALRWGIGYDSTVRSFVNIISTPKGGTHQSGFEQALVKTFRKAVESNARKLKAGNDKIEKDDIFAGLTAVLTVRLAEPQFEGQTKEILGTSAVRAIVAKVVEHEINAKLNSANRNDKAQSALLLEKIVSEMKSRISARVHKETQRRKNALETSSMPTKLADCRTDDVERSELFIVEGDSALGTAKLARSSDFQALLPIRGKILNVQKASVGDMLSNTECAALIQVVGAGSGRSFDLAAARYGKVILMTDADVDGAHIRTLLLTLFFRYMRPMILDGRVFAAVPPLHRVEVINAGQKANEMIYTYSEAELHVLLARLAKEGKRYKEPIQRYKGLGEMDAEQLAETTMDPRHRTLRKVGIENAQQAEDTFDLLMGSDVAPRKDFIIAGASSLDRERIDAPGPT0027710_1183DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
D1-29_017731002hypothetical proteinATGTTCTGGACCTCATACCTGCTGGCGGTCCTTGCGATAGTCCTGGCTTGGCCGGTGCCTATCCTCCTTTCGCGTGCCCAATGGCCTGCGCGCTCCCCTTTTACGGCGATGCTTCTCTGGCAGGCCATCGCACTGGCCGGTGGCCTGTCCATGATTGGCGCCATGCTGGTGTATGGGCTGGAACCCATTGGCGACAACCTGATCGCGGGCCTGCGCGCGCTCGCCGGGATGGTGCTGTTCAATGCCCCCACCACGGCCCTGGGCTTCTGGCATATCTTTGCCCTGTCCGCGGCTGCGCTGTTGACGGCCCACCTGGTCTTTACCCTGCTGCTCACCTACTACAGGATCGAGCGGCAGCGCCGCCGGCACCGCGAGCTCCTGGCCCTGCTGGCCTCCCCCTCCGCTGAAGGTGCCGGGACGGTGGTCATCAGCCATGACTCGCCCGTGGCCTACTGCCTGCCCGGCGGGGCCCGTTCGGTCACCGTGCTTTCGGACGGCCTCATGGCGGCCCTGGAACCCGACGAGCTGCGGGCCGTCCTGATCCACGAGAACGCCCACCTGAGCCAGCGCCATCACCTCCTGCTGTGGGCCTTCGCCGCTTGGCGCCAGGCACTGCCCTGGCTTCCCACCACCCGGCTGGCCCAGGAGTCAGTGAACTCGCTCATCGAAATGCTGGCCGACGACGTTGCCCTGAAAACAGAAAGCAAGGCAACACTGATCAAGGCCATCGCGATCGTCGCGAGTGGCAGTGCCGGCAGCAGTGGCGACGCCGCTGCGTCTGCAGGCATACGTCCAGGGGACGCCAATCCGGGCCTGGCCGGGCTGGAGACGCCCGGAATTGCGGGCTCCGACTCTGCCCGCACCACGGCCTCGCGCGTCAGCCGCCTGCTGTCACCGCAGCCGGAGCTGCCCGCCGCCGCCCAGGGGGCCGTTCTGGCCGGCTGCGTGCTGCTCCTCGCCCTGCCTACAGCCCTTCTGATCGTTCCGGGCCTCCTGGGCTGAMFWTSYLLAVLAIVLAWPVPILLSRAQWPARSPFTAMLLWQAIALAGGLSMIGAMLVYGLEPIGDNLIAGLRALAGMVLFNAPTTALGFWHIFALSAAALLTAHLVFTLLLTYYRIERQRRRHRELLALLASPSAEGAGTVVISHDSPVAYCLPGGARSVTVLSDGLMAALEPDELRAVLIHENAHLSQRHHLLLWAFAAWRQALPWLPTTRLAQESVNSLIEMLADDVALKTESKATLIKAIAIVASGSAGSSGDAAASAGIRPGDANPGLAGLETPGIAGSDSARTTASRVSRLLSPQPELPAAAQGAVLAGCVLLLALPTALLIVPGLLGNANANANANA
D1-29_01774387blaICOG3682Transcriptional regulator BlaIATGGCCAGTCTTGGTGAACTTGAACGGGCAGTGATGGACCTGCTCTGGGCGGGCCAGGGAGCAGCCACCGCCAACACTTTGCGTGACAGGCTCGCGCACAGCACCGAGGCCCAGGGTGGCTCAGCAGGCCACGAAGGCAAGGAACTGGCCGTCACCACGGTGCTGACCGTGCTGTCGCGGCTGGAGAAAAAAGGCCTCGTCGAGCGCGAACGCGGCACCCGGCCGCACCGCTACCAGGCAATCTCCAGCCGGGAGGACCACACGGCCGAACTCATGCACGAGGTGCTGGGATCCGCACCCGACCGTGAAGCCGTGCTGGCACGCTTTATTGGGTCCGTGACTGAAAATGAAGCCGAAACACTGCGCAAACTGCTTGGCCACATCTAGMASLGELERAVMDLLWAGQGAATANTLRDRLAHSTEAQGGSAGHEGKELAVTTVLTVLSRLEKKGLVERERGTRPHRYQAISSREDHTAELMHEVLGSAPDREAVLARFIGSVTENEAETLRKLLGHINANANANANA
D1-29_017751824cydACOG1271Cytochrome bd ubiquinol oxidase subunit 1ATGACTGCAAACGAGCACTACAACTACAGAAACAAATTTACCCCGTTTCCGGCGCAGTTTCTACGTCAGGTAGAACACACGGCGGGCCCGGAGCCTTGTAGGGGCCCGCTGAGGGTGGAAAAGTTGGTTTACAGCGCCGGTCGCAGTGTTCTACACTCGGTAGAAGTCAAAGTTCTACGGATCGTAGAAAAGTTCGCCCCGCCAACAGTAGGGACTGCCTTGGACGCCTTGGAAATCGCACGCTGGCAATTCGGCATCACCACCGTTTACCACTTCATGATGGTGCCGCTCACCATCGGGCTTGGCCTGGTGGTGGCAGTCATCCAAACGGCCTGGCACCGCACGGGTAAGCCCGAATACCTGCGGATGACCAAGTTCTGGGGAAAGCTGTTCCTCATCAACTTCATCATGGGTGTGGCCACCGGGATCGTCCAGGAATTCCAGTTCGGCATGGCGTGGAGTGAGTACAGCCGGTTTGTTGGCGACGTGTTTGGGGCGCCGCTGGCACTGGAGGCACTGCTGGCGTTCTTCGTGGAGTCCACGTTCCTGGGGCTGTGGATCTTCGGCTGGAAGCAGCTGAAGCCCGGCATCCACCTGGCCTGCCTGTGGATCGCCGTGGTGGGTTCGGCCTTCTCCGCCTACTTCATCATTGTGGCGAACAGCTGGATGCAGCACCCCGTTGGCGTGGAGATGGTCAACGGCCGGCCGGTCATGACCGACGCGTGGGCGGTCTTCACCAACAACACCGCCCTCGTTGCCGTACCGCACACACTGTTTGGTGCCCTGGCCGTGGCCGGCGGCTTCCTGCTGGGCATCGCCTGGTACCACCTGTGGCGAAGGCGGCGCGACGGCGTTGACATCATCGGTGCCGACGGCAAGGTCATCCCCGGTGAAGCAGCGGACATCCCCGGCCGTGACCGCGCCGACCACAACGTCTGGATCCGCTCGCTGCGCATCGGCGCCGTCGTCGCCATGATCTCCTTTGCCGGGACCGCCATCACCGGCGACCTGCAGGGAAAACTGATGTTTGAACAGCAGCCCATGAAGATGGCTGCCGCGGAGGCCGCCTGCCACGACGGCACCGGCTTCTCCGTCCTCAGCGTGGGCAACGTCGGATCGAAGAACTGCGATGACATCGTGGCCGTGATCGAGGTTCCCGGAATCCTGTCCTTCCTGGCCAAGGGCGACTTCACCACGGAGGTCAAGGGCGTCAACAGCCTCCTGGACCAGTACAAGGCGGATTACGGAACCAACCTGCCGGACAACCCGATCTACGGCGACCGCGCGGGCCAGGAAATCGAATACGTTCCGGTCATGGAGGTCACCTACTGGGGCTTCCGGATGATGATCGGATTCGGCGGAATCGCGGCCCTGGCTGCGCTGATTGCGCTGTGGGTGACGCGCAGAGGCACGGTTCCGGAATCGCGCTGGCTCATGCGGCTGGCCGTGTTCGGCATCCTGGCGCCGTTCGGCGCCAACGCGGCCGGCTGGATCTTTACCGAAATGGGCCGGCAACCGTTTGTGGTGGCACCCAACCCGGACCTGAACGGCATCGACCAGGTGTTTATGTTCACTGCCGCCGCCGTGTCACCAGGCGTGTCGGCCGGGGAACTCCTCACCTCCCTGGTGGTGCTCACAGCCATCTACGCCGCCCTGCTGGTGGTGGAAGTGAAGCTGCTGGTCAGGTACGTCAGGGGCGGGGTGGTCTCGGCGATGCCGGAACTCGCCCATGCGCCGGTGGACGAAAACGAGGACGCCACCCCCGGGCCGGACGGTCCCGGCAACGGAAAGAACACCGACGACGTCCTGGCGTTCGCCTACTAAMTANEHYNYRNKFTPFPAQFLRQVEHTAGPEPCRGPLRVEKLVYSAGRSVLHSVEVKVLRIVEKFAPPTVGTALDALEIARWQFGITTVYHFMMVPLTIGLGLVVAVIQTAWHRTGKPEYLRMTKFWGKLFLINFIMGVATGIVQEFQFGMAWSEYSRFVGDVFGAPLALEALLAFFVESTFLGLWIFGWKQLKPGIHLACLWIAVVGSAFSAYFIIVANSWMQHPVGVEMVNGRPVMTDAWAVFTNNTALVAVPHTLFGALAVAGGFLLGIAWYHLWRRRRDGVDIIGADGKVIPGEAADIPGRDRADHNVWIRSLRIGAVVAMISFAGTAITGDLQGKLMFEQQPMKMAAAEAACHDGTGFSVLSVGNVGSKNCDDIVAVIEVPGILSFLAKGDFTTEVKGVNSLLDQYKADYGTNLPDNPIYGDRAGQEIEYVPVMEVTYWGFRMMIGFGGIAALAALIALWVTRRGTVPESRWLMRLAVFGILAPFGANAAGWIFTEMGRQPFVVAPNPDLNGIDQVFMFTAAAVSPGVSAGELLTSLVVLTAIYAALLVVEVKLLVRYVRGGVVSAMPELAHAPVDENEDATPGPDGPGNGKNTDDVLAFAYPGPT0026700_240DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026700-cydA-K00425NANA
D1-29_017761050cydBCOG1294Cytochrome bd-I ubiquinol oxidase subunit 2ATGGAACTGCTGCCCACTCTCTGGTTCATCATCATTGCGGTGCTGTGGACCGGATACCTTTTCCTTGAAGGCTTTGACCTTGGCGTGGGAATGCTGATAAAGCTGTTCGCCCGCAACAACACCGAGCGCCGGGTGCTGCTGAACACCATCGGGCCTGTCTGGGACGGCAACGAAGTCTGGCTGATCACGGCAGGCGCCGCAACCTTTGCCGCCTTCCCGCTCTGGTATGCCTCGCTCTTCTCCGCCCTGTACCTTCCGCTGCTGGTGGTGCTGGTGGCACTCATCTTCCGTGCTGTGGCCTTCGAGTACCGGGGGAAGGTGGACAACGACAGCTGGCGCGCCCGCTGGGACTGGGCCATCGCCCTGGGTTCATTCCTGGCAGCCTTCGGCGTCGGCGCCGCGCTGGCGCTCACCACCACCGGACTTCCGCTCAACGCCAACGGTGACCGCGAGGGCGGCCCGTTCGCCTGGTTCAGCTGGTACGCCGTGCTCGGCGGCCTGGCCGTGGTGTGCTTCTCCCTGCTGCACGCCCTCGCGTTCCTGGCACTGAAGACCGACGGCGACGTGCGGCACCGCGCGCGCCGCTGGTTCATCCGGATGCTTCCGCTGCTGCTGCTCCCGCTGGCGGGCTGGGCCGTCAGCATCCAGGTCCTGGACGGGAAGCCGTGGACCTGGGCCGCGGTCCTCCTTGCGGTAGCGGCAGCCGCCGCTGCCTGGATGATGGCCCGCAAGGGGAGTGAAGGCAGGGCTTTTGCAGCGCTTGGAGCCTTCCTGGTGCTGGGCAGCGCGTCCATCTTCGCCGCGGTTTTCCCGGTGGTCCTGCCGTCCACCCTCAACCCTGCGTTTGACCTGACCATCTCCAACGCGTCGTCCTCGGACTACACGCTCGGGCTGATGAGCGTTGTGGCCGCCGTCGGCCTGCCCTTGGTCATTGCGTACCAGGCCTGGACCTACTGGGTCTTCCGGCGGCGCGTCAGTGCCCAGCACATCCCGGAGGCGCACAGCTTCGTGCCGGCCATTGCGGCCAAGGCCTTCACCACGAAGGGCTGAMELLPTLWFIIIAVLWTGYLFLEGFDLGVGMLIKLFARNNTERRVLLNTIGPVWDGNEVWLITAGAATFAAFPLWYASLFSALYLPLLVVLVALIFRAVAFEYRGKVDNDSWRARWDWAIALGSFLAAFGVGAALALTTTGLPLNANGDREGGPFAWFSWYAVLGGLAVVCFSLLHALAFLALKTDGDVRHRARRWFIRMLPLLLLPLAGWAVSIQVLDGKPWTWAAVLLAVAAAAAAWMMARKGSEGRAFAALGAFLVLGSASIFAAVFPVVLPSTLNPAFDLTISNASSSDYTLGLMSVVAAVGLPLVIAYQAWTYWVFRRRVSAQHIPEAHSFVPAIAAKAFTTKGPGPT0026705_1764DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026705-cydB-K00426NANA
D1-29_017773531btuD_5Vitamin B12 import ATP-binding protein BtuDATGCGCCCGGACTTCCCGGCCGGACCGGCCACCCGCTCCGCCCTCTACTGGCTGGGCCTGCTTGCCGCCCTGAAGGCGCTGTCCCTGGTCCTGATGGGCCAGGCGGTGGCCGCCATGCTGGCAGGGCTGGCAACCGCAGATGCTGACTGGCAGGACCAGCTCCCCTGGGGGCTGGCCGGGGTTGTCCTGAGGTCCGGCACGGTATGGGCGCAGGGCATCGCTGCCCGCCGCGCCGCCCTGGGCATCAAGGAGGAACTGCGCTCGGCGCTGCTGCAGCGTGCCCTCCGCAACGGTGCGCGGAGCACAGGCCCGGCCGACGGCGGACTCGCCGTCCTGGCGACCCGCGGGCTGGACGCCCTGGACAGCTACTACACCCAGTTCCTGCCTGCGCTGGTGAACTGCGCTGCCATTCCGCTGCTTCTCGGCGCCCGGATCCTGTTCGCGGATTGGGTCAGTGCCGTGGTCATTGTCCTCACGGTTCCCCTGGTCCCCGTCTTCATGGTGCTGATCGGCCGGTACACCGAGGACAACGTCAGGGAGGCCCAGGCCGCCCTTGCCCGGCTGTCCGCGCACATGCTCGAGCTCGCCAAGGGACTGCCGGTTCTCGTGGGCCTCGGCCGGGCCACCGCCCAGCGCAAGGCCCTGGAGGAGATCTCGGAGGAATACCGTGCCAGGACCATGGGAACGCTGCGGACAGCCTTCCTGTCGGCACTGGCACTGGAACTGATAGCCACCATCTCCGTTGCAGTGGTGGCCGTTTTCATCGGCGTGCGCCTGGTCCACGGGGACATGGCCCTCGAGGCCGGGCTCCTGGCCCTGATCCTGGCCCCGGACTGCTACCTACCGCTGCGCGAACTGGGCATGGCCCACCACGCCAGCGACGACGGCCGTGCGGCGCTCGCGGAGACGAGGGCGGTCACCGGGGCGCCGGAGCCGCAGCCGCTGCCCGCTGGTGCGCCTGATGGCGGCTCTGACTCCGATCTCACCGTCACCAATCTCACCGTCACCTATGAGGGACGGTCCGTTCCCGCCGTCGGGCCCGTGAGCTTCACTGTCCCCCAAGGCCGGATTACTGCCCTGGACGGTCCCAGCGGGACGGGCAAGAGCACCATCCTCGGTGTACTGGCAGGGACGGTCGGCGACGGTGCCGGCACCCGGGTCACCGGCAGCATCACCAACCTCGACCGGGACAGCATTGCCTGGGTTCCGCAGCATCCGGTAATGGTGGCGGAGACCGTCCGGGATGAGGTTCTGCTGTACCTCACCCTGGGTGAGGCGGACCATGCCGGCGCCACGGCGGAGGCTGCGGCGTTGGAATGCCTGGCCGCGGCGGCGGCAGGCCATCTCGCCGGAAAACATCCCGCCGAACTGAGTCCCGGCGAGCTGCGGCGGGTGGCACTGGCGCGCGGCCTGGCCCGCCTCCGCGCCGGCGCATCCGTTCTCCTGCTCGACGAACCCACGGCCCACCTGGACAGGGTGTCGGCAGCGCGTGTACAGGAGGCGATCCTCAGCCTTCGCGGACGCGTCACTGTCATCTTGGTGGCCCACGACCGGCAGACGCGGGAGCTGGCCGACCACCTGGTTCCGGTCTCCGCCAATGGCGCAACGGAATCCGCACCGCCGGCCTTCGCAAACACTGTTGCACAGGGCGGCGACGCGGGAGCTCCACTGGCGCCTTCTCCGGCCGGTCCCGCGGCCAGTCCTCCGATTAGTCCTCCAGCAGGCCTGCCGGCTCTGCCAGAAAGGACAGATCCGTTGCCCCGGCAGCGGCAGTCCTCCTCAACCCGGCTTCTGATGGGGCTGCTGCAGCCTGTGGCCGGACTGTTTTCCGGCGCTGCAGCGGTGGGGACACTCGCCGCGATCTTCGCTGTGGCGCTCTCCGGACTGTCCGGGTGGCTCATCATCAGGGCAAGTGAGCAGCCGCCCATCCTGTATCTCCTGACAGCCATCGTCGGCGTGCGGTTCTTCGGGATCGGGCGCGCTGTCCTCCGCTACTGCGAACGGCTCCTGCTCCACGAAGCCGTGTTCGCCGCCCTGACCAGGCTCCGCGGCCGGCTGTGGGAATCCCTGAGCCGGAAGGCGCTCTCGCTCCGACGCCTGCTGCAGGGCGGCAACGTCCTCAGCACAGTGATTGACGACGTCGATAATGTCCGCGACCTCCTCCCGCGCGTGGTGCTTCCTCCGCTGACGGCGCTCGCTGTGGGTGTGGGCAGCCTGGTGGCCGCCGGACTCCTGGTCCCGGCAGCCTTTTGGGCCGCGGCAGCCGCGACGGGCGCAAGCATCCTGGTGGCCCCGGCCGCCGCGCTGTGGGGGGACCGGAAATCCGCCAGCGCCGAACAGAGCCTGCGCCGCGGTGTGCTCCGCCGTACTGCGGCAGCCCTGGATGCCAGGGCAGAGCTTCAGGTGAATGGAGCAGCTGCGGCGGTGCTTGCCGAACTTGCTGCCCAGGACCGTGCGGCCACACGGGCGTCCCAGCGGTCGGCCTGGGCGGAAGGAATTGGCCAGGCCATAACCGTGGCGGCCTGTGGCATTGCCGCCCTTGCCAGCGCTGTCCTGGCAGCACCGCAGGTACTGGCGGGGACCCTGCCTCCCGCCACCGCTGCTGTCCTGGTCCTGCTGCAGCTCGCGCTGGTGGAGCCCTACGCAGCTGTCACGACGGCGGTGCGCCAGTTCCCTGCCCTCAGGACGGTCCTGCGCCGGATAGGCCAGTCAGGGTCGCTGGAGAGCGCGCCGGAGGACAGCGGCAGCGGTGTCCCGAAAGACAGGGCCCTGAGAGAAGGTGTCCTGAAAGACGGTGTCCTGAAAAACGCTGAAGATGACGGCCGGGCGACTGTCCTGGAGCGCGCCGGCGGGGACGCAGGGATTGAGCTTGAGGACGTTGAGGCGGCCTGGCCGGGAGGGAGCCCCGTGTTCTCCGGGGTGTCAGTCACCGCCGCACCTGGCCGCTGGTTGACCCTGACAGGCCCGTCAGGTGCCGGCAAGTCGACCCTGCTGTCGGTCCTGCTGGGTTTCCTTCCGGCCGCCCGCGGACGTGTCCGGGTTACGGGGAGGGCCGCCTGGTGTCCACAGGAAGCACACTTGTTTGACTCCACGCTGCGGGGGAACCTGCTGCTGGGACGGCCAGCCACCGGTAAGCCTGCGGAGGGCGCCGCGGACAGCGGCGCGGACGACGCCGCAATGGCGGCGGCCCTTTCAGCGGTTGGACTCAGCGGCCTGGTGTCCCGGCTACCCGCCGGGCTGGACACCCGGATTGGTCCCGGAGGTTCCTTCTTCAGCGGTGGTGAACGCCAGCGGCTGGCCGTCGCCCGGACGCTCATGACGGGGGCGGAGGTGATCCTGCTGGATGAACCCACGGCCCACCTGGACGCCGAGGCAGGGCGCGCCATGCTGGCGGACCTGAGGGCCGGGTTGAAAGACCGCACAGTTGTCCTGGTCACCCACAACCCGGCGGACATCCATCCGGAGGACGCCTTGCTGGACCTGGCCCCTGCATCCTTCCGGGCCGGCGCCATTCTGGCAGCCGCCCCCTAGMRPDFPAGPATRSALYWLGLLAALKALSLVLMGQAVAAMLAGLATADADWQDQLPWGLAGVVLRSGTVWAQGIAARRAALGIKEELRSALLQRALRNGARSTGPADGGLAVLATRGLDALDSYYTQFLPALVNCAAIPLLLGARILFADWVSAVVIVLTVPLVPVFMVLIGRYTEDNVREAQAALARLSAHMLELAKGLPVLVGLGRATAQRKALEEISEEYRARTMGTLRTAFLSALALELIATISVAVVAVFIGVRLVHGDMALEAGLLALILAPDCYLPLRELGMAHHASDDGRAALAETRAVTGAPEPQPLPAGAPDGGSDSDLTVTNLTVTYEGRSVPAVGPVSFTVPQGRITALDGPSGTGKSTILGVLAGTVGDGAGTRVTGSITNLDRDSIAWVPQHPVMVAETVRDEVLLYLTLGEADHAGATAEAAALECLAAAAAGHLAGKHPAELSPGELRRVALARGLARLRAGASVLLLDEPTAHLDRVSAARVQEAILSLRGRVTVILVAHDRQTRELADHLVPVSANGATESAPPAFANTVAQGGDAGAPLAPSPAGPAASPPISPPAGLPALPERTDPLPRQRQSSSTRLLMGLLQPVAGLFSGAAAVGTLAAIFAVALSGLSGWLIIRASEQPPILYLLTAIVGVRFFGIGRAVLRYCERLLLHEAVFAALTRLRGRLWESLSRKALSLRRLLQGGNVLSTVIDDVDNVRDLLPRVVLPPLTALAVGVGSLVAAGLLVPAAFWAAAAATGASILVAPAAALWGDRKSASAEQSLRRGVLRRTAAALDARAELQVNGAAAAVLAELAAQDRAATRASQRSAWAEGIGQAITVAACGIAALASAVLAAPQVLAGTLPPATAAVLVLLQLALVEPYAAVTTAVRQFPALRTVLRRIGQSGSLESAPEDSGSGVPKDRALREGVLKDGVLKNAEDDGRATVLERAGGDAGIELEDVEAAWPGGSPVFSGVSVTAAPGRWLTLTGPSGAGKSTLLSVLLGFLPAARGRVRVTGRAAWCPQEAHLFDSTLRGNLLLGRPATGKPAEGAADSGADDAAMAAALSAVGLSGLVSRLPAGLDTRIGPGGSFFSGGERQRLAVARTLMTGAEVILLDEPTAHLDAEAGRAMLADLRAGLKDRTVVLVTHNPADIHPEDALLDLAPASFRAGAILAAAPNANANANANA
D1-29_01778519hypothetical proteinATGCCTATCATTCCTGATGAAAAAGACTGGACCTGGGTCCTTTCACGGCCCTGCCCCGAGTGCTCCTTTGATGCCTCCACGGTCACCCCGTCAACGGTTCCGGGCACTGTGCGCAACATGCTGCCCCGCTGGCGGTCGGTCCTTCGCCGGCCGGACGTGGGCGAGCGGCCGGATGAAAGTACCTGGTCCGCCCTGGAATACGCCTGCCATGTCCGCGATGTGTTCAGCCTTTTTGATCAGCGCCTTAACCTGATGCTCGACGGCGACGACGCCCGGTTCGAGAACTGGGACCAGGACAGGACCGCCGTGGACAAGGACTACGCCAGCGCCGATCCCGCAGTGGTCAGTGCGGAGCTGACGGCAGAAGGTGAGCAGGTCGCTGAATCCTTTGCCGGGGTCCGCCAGTCGGAGTGGGGCCGGAAGGGACTGCGGAGCAACGGTTCGGAGTTCACCGTCCTGACCTTGGCGCAGTACTTCCTGCACGACGTCGTCCACCACCTCCACGACGTGGATGGGTAAMPIIPDEKDWTWVLSRPCPECSFDASTVTPSTVPGTVRNMLPRWRSVLRRPDVGERPDESTWSALEYACHVRDVFSLFDQRLNLMLDGDDARFENWDQDRTAVDKDYASADPAVVSAELTAEGEQVAESFAGVRQSEWGRKGLRSNGSEFTVLTLAQYFLHDVVHHLHDVDGNANANANANA
D1-29_017792514gyrA_2COG0188DNA gyrase subunit AATGGCCCGCCGCCAAAGTTCAGCCCCAGCAGTGGATTCCAACCAGGATTACACCGAGAACATCGTGGACATAGATGTCACGTCCGAGATGGAAGGCTCCTTCCTGGAGTACGCCTATTCGGTGATCTACTCCAGGGCCCTGCCCGACGCCCGCGACGGCCTCAAGCCGGTCCAGCGCCGGATTCTCTACATGATGAGCGAGATGGGCCTGCGCCCGGACCGCGGCCACGTCAAGAGCGCGCGTGTGGTGGGCGAGGTCATGGGCAAGCTTCACCCCCATGGCGACACGGCCATCTACGACGCCCTGGTGCGCATGGCCCAGGACTTTTCGCTGCGGCTGCCGCTCATCGACGGGCACGGCAACTTCGGATCGCTCGACGACGGACCGGCGGCTCCGCGGTACACCGAAGCCCGCCTCGCGGCAGCTGCGCTGACGCTGACGGACCACCTTGACGAAGACGTGGTGGACTTTGTCCCCAACTACGACAACCAGCTGACCCAGCCTGATGTGCTGCCGGCGGCCTTCCCCAACCTGCTGGTCAACGGAGCCACAGGAATCGCCGTGGGCATGGCCACCAACATGGCCCCGCACAACCTGGTGGAGGTCATCTCGGCCGCACGGCACCTCATCGCGCACCCGGACGCCACCCTCGATGACCTCATGAGATTTGTGCCCGGGCCTGATCTTCCTACCGGCGGACGGATTGTGGGCCTGGACGGCATCCGCGATGCCTACGCCACCGGACGCGGTTCCTTCAAGACCCGCGCCAAGGTGGAAATCGAGCAGCTCTCGGCCCGCCGCACCGGCCTGGTGGTCACCGAGCTTCCGTACATGGTGGGGCCGGAGAAGGTGATCGAGAAGATCAAGGACGCCGTCAACGGCAAGAAGCTGACGGGGATCAGTGACATCGTTGACCTGACGGACCGCAAGCACGGCCTTCGGCTGGTCATTGAGCTGAAGAACGGCTTCAACCCGAACGCGGTGCTGCAGCAGCTGTACCGCTACTCGCCCATGGAAGACTCCTTCGGCATCAACAACGTCACGCTTGTGGACGGCCAGCCGCAGACCCTGGGACTCGTGGAGCTGCTTTCCGTTTACGTCGGCCACCGGATCAACGTGGTGCGGCGCCGCACCGCGTTCCGGCTGGGAAAGAAGCAGGACCGCCTGCACCTGGTGGAGGGCCTCCTCATCGCCATCGTGGACATCGACGAGGTCATCCAGATCATCCGTTCCTCGGATGAGGCCGCGGCAGCCCGGGTCCGGCTGATGTCCATTTACGACCTGTCCGAGATCCAGGCCAACTACATCCTTGAGCTGCGGCTCCGCCAGCTGACCAAGTATTCCCGGCTGGAGCTGGAGAAGGAACAGGACGAGCTGCGACGGGAGATCGCGGAACTCGAGGCCATCCTGGCGTCCGAGGAACGGCTCCGCGACCTGGTGTCCGGGGAGCTGGGCGAGATCGCCGAAAAGTACGGGACACCCCGGCGGACGGTCCTGCTGGAATCGGAGGCGGTCTCCCCCACGGTCGCCGCTGCCCTGGCCGCAACCAATGGCAAGGGAAAGCCTGCGCCCCTTGCCTTGGAGATCGCCGATGACCCCTGCTGGGCCATCCTCACCGCCTCCGGCCAGATCGCCCGCACCTCCAACCAGGACCCCCTCGCCGAATCGGGTCCGCGGTCCAAGCATGACGTGTTCCGCTCTGTGCTCAAGACGTCCGCCCGGGGCGAGATTGCCGCGGTCACGTCCCAGGGCCGGATGCTTCGCCTGCAGGTGATGGACATGCCGATGCTGCCTCCGATGTCAGGGCTGCCCAACCTTGCCGGCGGTGTGCAGGCCAAGGACTTCATTACGCTCCTGAAAGGCGAATCGCTGGTGGCGTTCGCGCCGCTGGACGAGGTCCTGGCCATCGGCACAGCCCAAGGCGTGGTCAAACGCGTGCAGCCTGACTATCCGCTGAACCGCGAGGACTGGGAGGTCATCGCGCTCAAGGACAAGGACTCGGTGGTGGGAGTGGCCGCGGCAGGATCGGAGGACACCGAGCTGGTGTTCCTGACCCGTCAGGCGCAGCTGCTCAGGTTCGGGGCCGGAAACGTCCGGCCCCAGGGCCGGACCGCCGGCGGGATGGCCGGGATCAAACTGGCCGCCGATGACGAGGTGGTGTTCTTCAATGCTGTGGCGCCGGACGACGGCGACGCTGTGGTGGTCACCATCGCGGGCACGAACGGCGCCCTCCCGGGGACCGCCCCGGGCACGGCGAAAGTCACCGCCTTCGCGGAATACCCGGCAAAGGGCCGTGCCACGGCCGGCGTCCGGGCCCACAGGTTCCTCAAGGGCGAGGACACGCTGCTGCTCGCCTGGGCAGGGCACGGGCCGGCCAAGGCCTCCTCCCTCGCAGGCGTAGCCAGGTCACTGCCGCAGGAGCACGGCCGTCGAGACGGGTCCGGCATTCCGCTGTCCCAGCCTGTTGATGTGATCGGCCCTGCCATGGCGTGGCCCGATCCTGATCCGGCCTAGMARRQSSAPAVDSNQDYTENIVDIDVTSEMEGSFLEYAYSVIYSRALPDARDGLKPVQRRILYMMSEMGLRPDRGHVKSARVVGEVMGKLHPHGDTAIYDALVRMAQDFSLRLPLIDGHGNFGSLDDGPAAPRYTEARLAAAALTLTDHLDEDVVDFVPNYDNQLTQPDVLPAAFPNLLVNGATGIAVGMATNMAPHNLVEVISAARHLIAHPDATLDDLMRFVPGPDLPTGGRIVGLDGIRDAYATGRGSFKTRAKVEIEQLSARRTGLVVTELPYMVGPEKVIEKIKDAVNGKKLTGISDIVDLTDRKHGLRLVIELKNGFNPNAVLQQLYRYSPMEDSFGINNVTLVDGQPQTLGLVELLSVYVGHRINVVRRRTAFRLGKKQDRLHLVEGLLIAIVDIDEVIQIIRSSDEAAAARVRLMSIYDLSEIQANYILELRLRQLTKYSRLELEKEQDELRREIAELEAILASEERLRDLVSGELGEIAEKYGTPRRTVLLESEAVSPTVAAALAATNGKGKPAPLALEIADDPCWAILTASGQIARTSNQDPLAESGPRSKHDVFRSVLKTSARGEIAAVTSQGRMLRLQVMDMPMLPPMSGLPNLAGGVQAKDFITLLKGESLVAFAPLDEVLAIGTAQGVVKRVQPDYPLNREDWEVIALKDKDSVVGVAAAGSEDTELVFLTRQAQLLRFGAGNVRPQGRTAGGMAGIKLAADDEVVFFNAVAPDDGDAVVVTIAGTNGALPGTAPGTAKVTAFAEYPAKGRATAGVRAHRFLKGEDTLLLAWAGHGPAKASSLAGVARSLPQEHGRRDGSGIPLSQPVDVIGPAMAWPDPDPANANANANANA
D1-29_017802724hypothetical proteinATGGTGGATCAGCCCGGGGACGGCATATATCCGGAACATTGGGAAGCCGATGTCGTCCTGCGGGACGGCGGAACCGCCCACTTGAGACCCATCCATCCTACCGATTCCGAGGCCGTCCAGACCTTTCACACCGGACAGTCCCAGAACTCGATCTATATGCGGTTCTTTGCGTTCAAGGCACGGCTGTCCAGCAAGGAACTCAGGCGATTCACCGAAGTGGACTACAAGGACCGGGTTGCCTTTGTGATTACCATCGGCGGCGAAATCATTGGCATCGGCCGTTACGACAGGCTCGATGATCCTGCCGAAGCCGAGGTCGCCTTCAACATCGCCGACGCACACCAGGGCCGCGGCATAGGATCGATCCTCCTGGAGCACCTCGCCGCCGCCGCCCACGAAAACGGCATCCGCCGGTTCAGCGCCGAGGTGCTGCCGGAAAACCGCAAGATGCTGATGGTGTTCTCCGACGCCGGATATGACGTCCGGCGCCATTTCGACGACGGCGTGGTGAGCCTGGAGTTCAACATCGACCCCACGGAGAAATCCCGTGCCGTGATGGAGTCCCGCGAGCACCGTGCGGAGGCGCGCAGCGTGCGGGACCTGCTGGCGCCGTCGTCGGTGGCCGTGATCGGCGCCAGCCGGAAATGGGGCACGGTGGGATACCAGCTGCTGGAGCACATTATTGAAGGCGGCTTTCCCGGGCCGGTCTACGCCATCAATCCGGAGGCCCTGGAGCTCGCCGGAATGCTGTCCTTTGCCAGCCTCGCCGACGTTCCGGACCCCGTCCAGCTGGCCATCATCGCCGTCCCCTACGAAGAAGTGGACTCCGTGGCGGACGACTGCGCCGCCGCGGGAGTCAAGGGGATGGTGGTTGCCTCCGCGGGGTTTGCCGACGACGGCGAACGCGGCCTCGCCCGCCAGCGGGAGCTGGTACGGAAGGCCCGCGCCAATGGCATGCGGGTCATCGGCCCGGCCTCGCTGGGAATCGTCAACACCCACCCGGACGTATCCCTGAACGCGTCGATGGCCCCCGCCCTCCCGCGGCGTGGCGGGCTGGGACTGTTCAGCCAGTCCGCGGCCATTGGTGTCTCGCTCTACGCAGCATCAAGCCGGCGCAGGATGGGCATCTCCACCTTCCTTTCGGCCGGCAACAGGGCCGACGTCTCCGGTAACGACATGATGCAGTTCTGGGAGGACGACGCCGGCACCGCCGCTGTGGGGCTCTACCTGGAGTCGATCGGCAACCCGCGCAAATTTTCCCGCCTCGCCCGGCGGCTGGCACGCATCAAGCCGGTGATTGTGGCCAAGTCCGAAACCATGGGCCTGAGGCTGCCGCCCGGCCACGCCGTCCGCACCACCCAGGCGCCGGCGGGCGCGCTTGACGCGATGATGCGGCAGGCGGGGGTGATCCGGGTGGAGACGATCGAACAGCTTATGGACGTGGCCCAGATCGTGTCAGGCCAGCCGTTGCCCGCTGGGCCGGAAGTTGCTGTCTTCAGCAATTCCCTGGCCCTGGGCAAGGTAGTGGCGGACAGCGCCTCCTCGCAGGGCCTCACGGTGGAGCGCATCATCACGGACGTGGATCTCGACGCCGGCATGTCCCTTGCGTTGCCGGCTCTCCGCCGGAGCCTGCAGGAAGCACTGGCATCCGAACAGGTCCACGCGGTGGTGGCCGCACTGCTTCCCGCCAGAGGACTCACCGTGGAAAATATCGCCGAGGTCCTGGCAGAGTGTTCGGCAGGGGCGGGGAAGCCGGTGGTGGCCGCCTTCACCGGCATACTGGACCCCTCTGTCTATGTCGAGGGCATGGTAGGAGGCGGACCCGGGGACGGCGCCGGCCCTGGGGACGCCACGGCGCCCGTTCAGGCTGTGCCCTGCTTCTCAAATGCCGGCGCGGCCGTGGCTGCGCTCGCCGCCGTGGTGAGGTACTCCGAATGGGTGGCGCGGGACCAGGGCCACTTTGTGGAACCTGACGGCTGCGACCCCGAAGCCGCACGGCTTCAGCTTGAGGTCCTGCTGCGGGACGTCCAGGGTGAGCAGCTCAAGAAGCTGGATCCGGACGAGGTGGCCACACTGCTGGGGCATTACGGCATTGAGGTTCTCCCGTCCGCAGGCTTTGACACGCCGGAGCAGGCCGTCGAAGCCGCCAACACGCTGGGCTGGCCGGTGGCACTGAAGACCACCGAACCGGCACTGCGCCACCGCCTGGACCTTGGCGGCGTCCGCCTGGACATTCAGGACCAGGAGTCCCTGCGGCTCAATATCCAGCAGATGCGCCGTGCACTCTCCGCATACGGTTCACCCGGGCTGGAGGTGCAGTCGATGGCACCGGTAGGCCAGGCCTGCACCTTCCGCGCCATCGAGGACCCGCTGCTCGGGCCGGTGATCTCCTTCGGGCTGGCCGGTGATGCCGTCAACCTGCTTGACGACTGGGCGCACCGTGTCCCGCCGCTGTCCGCAGCCGACGTGAAGGACTTCATTCGCGGCCCACGGGCGGCCCGCAAGCTTTTTGGCTACCAGGGTTTGCCCGCAGTGGATGTTGCGGCCCTGGAGGAGCTGGCCGGACGGCTGGCGTGGCTGAAGGACAACCATCCGGAGATTGCGCTGGTGGAGTTCAATCCGGTGCTGTGCGGGCCGCAGGGCGCGTCAATCCTTGCTGCGGACATTCGAATCGGGAACGCGGCGCACCGTACGGACAGCGCCCGCCGGGCCATGCTGGGGTAAMVDQPGDGIYPEHWEADVVLRDGGTAHLRPIHPTDSEAVQTFHTGQSQNSIYMRFFAFKARLSSKELRRFTEVDYKDRVAFVITIGGEIIGIGRYDRLDDPAEAEVAFNIADAHQGRGIGSILLEHLAAAAHENGIRRFSAEVLPENRKMLMVFSDAGYDVRRHFDDGVVSLEFNIDPTEKSRAVMESREHRAEARSVRDLLAPSSVAVIGASRKWGTVGYQLLEHIIEGGFPGPVYAINPEALELAGMLSFASLADVPDPVQLAIIAVPYEEVDSVADDCAAAGVKGMVVASAGFADDGERGLARQRELVRKARANGMRVIGPASLGIVNTHPDVSLNASMAPALPRRGGLGLFSQSAAIGVSLYAASSRRRMGISTFLSAGNRADVSGNDMMQFWEDDAGTAAVGLYLESIGNPRKFSRLARRLARIKPVIVAKSETMGLRLPPGHAVRTTQAPAGALDAMMRQAGVIRVETIEQLMDVAQIVSGQPLPAGPEVAVFSNSLALGKVVADSASSQGLTVERIITDVDLDAGMSLALPALRRSLQEALASEQVHAVVAALLPARGLTVENIAEVLAECSAGAGKPVVAAFTGILDPSVYVEGMVGGGPGDGAGPGDATAPVQAVPCFSNAGAAVAALAAVVRYSEWVARDQGHFVEPDGCDPEAARLQLEVLLRDVQGEQLKKLDPDEVATLLGHYGIEVLPSAGFDTPEQAVEAANTLGWPVALKTTEPALRHRLDLGGVRLDIQDQESLRLNIQQMRRALSAYGSPGLEVQSMAPVGQACTFRAIEDPLLGPVISFGLAGDAVNLLDDWAHRVPPLSAADVKDFIRGPRAARKLFGYQGLPAVDVAALEELAGRLAWLKDNHPEIALVEFNPVLCGPQGASILAADIRIGNAAHRTDSARRAMLGNANANANANA
D1-29_01781747hypothetical proteinATGAGCTCACAGCCTCCCACGTCGGCGCCTCAAACGCCCGGCAATGATAACCAGGCAGCCCACCACTCCAGCTCACACAGCCACAGCGCCCAGGGCCAAAGCCTGGAAGGGGCGCTCCAGAAGGCAGGTTTCTACCCGCGCCTGGTGTCCGACGTTGTGGATGACGCCCTCGACGGCCGCGACTGCGTTGCCCACCTGGTCCACCTGGAGACCCACTTTGACCGGGCAGAGGTCCGCCGCCACATCACCGTCCTGGTGCTCACCGCGGACATGCTGGTTATCACGCATGTGGACGACCAGCAGCTGGATGAGGCCGGCGAGCAAATCGTGGCCCAGATTTCCACCGAGTCCGTCCCGGTTGCCCAGATCCGCTCCGTGGTGCTTAGTTACATGTATTCCCAGCCGCAGGACTACAAGCCTTCCGATCCGGTGCGCGAGCTGACCTTGGCCATCGCCTGGTCCGGCGGCCAGCGGCTCGACATGGGCCCGGCCAGCTGCGGCGATCCGCAATGCGAGGCGGACCACGGCTACAGCGGCACCATAGCCCAGGAAGACATTGTCCTGCGGATCAGCGCCGAAGCCGATGGGCTGCAGGCAGTCCAGGACGCCAAGCTCTTCGCGAGGGCCCTGCGCGCTGTGAATACCGGTTCCACCGCTCCTGTCCAGCATGCACCGCAGACACTCCAGCCCCGGCCGCGGGCCGGCGTGTTTGGAAACCGCCTCAGCCGCGGACACCAGCAGCGCTGAMSSQPPTSAPQTPGNDNQAAHHSSSHSHSAQGQSLEGALQKAGFYPRLVSDVVDDALDGRDCVAHLVHLETHFDRAEVRRHITVLVLTADMLVITHVDDQQLDEAGEQIVAQISTESVPVAQIRSVVLSYMYSQPQDYKPSDPVRELTLAIAWSGGQRLDMGPASCGDPQCEADHGYSGTIAQEDIVLRISAEADGLQAVQDAKLFARALRAVNTGSTAPVQHAPQTLQPRPRAGVFGNRLSRGHQQRNANANANANA
D1-29_017821236hypothetical proteinATGCCGGACCACGGGAAAATTGCCGTCCCCCCAGCACCTTCTGAACGGAACCGTCCGGCCTTGAACACACCGCCGGCGCCCGCTTTCGGGCAGCGCTCCATCGCCGATGTGCTGACGAGTGCTGCAGCCAGCCTGGGCGTAGAAGGCTTCAGCAACACCCTCGGCCTTCCGCCGGCGTCGCGGGTCTGCGTGGTCCTGGCCGACGGCCTGGGCCGCAACCTCCTGAAGCAGAAGTCGGCCCACACCCCGTTCCTGCGCTCGGTCATGCAGGCCGGGCAGGGCGAGGTCCCGGTGTGGCTGGACTCCACGTTCCCCTCCACCACGGCAGCGGCACTGGCGAGCTTTGGGACCGGTCTGGTACCCGGCCAGCATGGCCTGGTGGGGTTCGATGTGCTGGACCCGGACCAGGACAAAGTGGTGAACATGCTCGGCAACTGGGACGCGGGCGTGGATCCGCTGGCATGGCAGCCGTTTCCCACCGTGTTTGAGCGTGCGGCCGCCTGGGTGGATGTGACAACGGTCAGCCTTCCGCAGTTCAGCACGTCGCCCATGACCCAGGCGGCGCTCCGGGGTGGCCGCTTCATCTCCGCCAACACGTCCCACGCCCGCACCGCAGCTGCCGCCGATGCGATGGCCGCTGCCGGGCCCGCGCTCATGTACTTCTATGTCAACGAGCTGGATAAGGCCGGGCACCGGCATGGGTGCCAGTCCGAACAGTGGGAACACCAGCTGGAGGAACTGGACGCCACGGTCAAGAGGCTCAACAGCTCGCTTCCTGCCGGCACCACCGTGCTGGTGACCGCGGACCACGGCATGCTGGACGTTCCCGAGGGCCAACGGATCGACTACGCCGCGGATCCTGCCCTGATCGAAGGGGTCCGGCACACAGCGGGGGAGCCCCGCATGGTCCACCTCTACCTTGAAGACTGGATGGATGCTTCCGGCCGGGACAGGCTGCTGGACGCCTGGCGTGGCCGCTTTGGCGAGAGGATCTGGGCCTTCACGAGGGAGGAAGCGCTGGCCGCCGGGCTGTTCGGGCCGCTTCGCCCCGCGGTCGGGCCCCGGATCGGGGACATCATGATCGCCGCACGGGATGCCCTTGCCCTCTATGACACCCGCCGCTCGAGGCCCACAGCCATGGAGGTCATCGGCCAGCACGGCTCGTTGACGAAGGCGGAACGGGAAGTGCCGCTGCTGTGCTTCGCTGCGGAGGGCAAGAAGGCCCGCCGTGGCTGAMPDHGKIAVPPAPSERNRPALNTPPAPAFGQRSIADVLTSAAASLGVEGFSNTLGLPPASRVCVVLADGLGRNLLKQKSAHTPFLRSVMQAGQGEVPVWLDSTFPSTTAAALASFGTGLVPGQHGLVGFDVLDPDQDKVVNMLGNWDAGVDPLAWQPFPTVFERAAAWVDVTTVSLPQFSTSPMTQAALRGGRFISANTSHARTAAAADAMAAAGPALMYFYVNELDKAGHRHGCQSEQWEHQLEELDATVKRLNSSLPAGTTVLVTADHGMLDVPEGQRIDYAADPALIEGVRHTAGEPRMVHLYLEDWMDASGRDRLLDAWRGRFGERIWAFTREEALAAGLFGPLRPAVGPRIGDIMIAARDALALYDTRRSRPTAMEVIGQHGSLTKAEREVPLLCFAAEGKKARRGNANANANANA
D1-29_01783717tdkThymidine kinaseGTGGCTGAGCTGGTGTTTTTCTCCGGAACCATGGACTGCGGGAAGTCGACGCTGGCCCTGCAGATGGACTATAACCACCGGGCGCGCGGGCGGGGCGGCGTTCGCTTCAGCCGCAATGACCGGGCCGGAGGGTTCCGGATTTCCAGCAGGCTTGGCCTTGAAACGGACGCGGTAGAGGTCCTGGACAGCACCGACTTCTGGGATGAAGTGGTCAGCCGCCGCACCAGGGGAGAGAAGGTGGATTTCCTGATTTGCGACGAAGCACAGTTCTATTCGCCGGACCAAGTGGAGCAGCTGGCCAGGGTGGTGGACGAGATCGACGTCGACGTTTTTGCTTTCGGAATCAGCGCGGACTTCCGCACCCGGCTCTTTCCCGGATCCCAGCGGCTCATTGAACTCGCCGACCGCGTCCAGGTTCTCCAGGTGGAAGCCCTGTGCTGGTGCGGACGGCGCGCCACCCAGAACGCCCGGACGGTGGACGGTGTGATGGTGGTGGAGGGCGCCCAGGTGGTCGTGGGAGATGTGGATATGGCGGTCGATCCCACGGCGTCCAAGGCTGAGGACCACGTCCCGCCGGTGGGCTATGAAACCCTGTGCCGGCGGCACTACATGCGGCGGGTTACGGCGCACGGCGCCAGCATTATGGCCCAGCGGGACCAACTGCTCCCGTTTGAGACGGATGCCTGCCTGTGGCGCGGGTCCGGCGGGGAAGGCTAAMAELVFFSGTMDCGKSTLALQMDYNHRARGRGGVRFSRNDRAGGFRISSRLGLETDAVEVLDSTDFWDEVVSRRTRGEKVDFLICDEAQFYSPDQVEQLARVVDEIDVDVFAFGISADFRTRLFPGSQRLIELADRVQVLQVEALCWCGRRATQNARTVDGVMVVEGAQVVVGDVDMAVDPTASKAEDHVPPVGYETLCRRHYMRRVTAHGASIMAQRDQLLPFETDACLWRGSGGEGPGPT0021390_438DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021390-tdk-K00857NANA
D1-29_017841440hypothetical proteinATGCAGGATCTACGGCTTGTAGGCGTACACGACGACGGGGAGCATCTCCTGTTGAGCGGTGCCGGCGGCGAGATGTTCCAGCTGCCGATCGACGAAGCTCTCCGGGCGGCCAGCCGGTCATCGGCGAAGGCATCGGCCGCCACAGCTCCCATCGCCATGTCGCCGCGGGATATCCAGGCAAGGATCCGCAGCGGCGCCACCGCGGCGGACGTGGCGGAGCTCTCCGGGCTGCCCCTCGCCAAAGTTGAGCGCTACGAGGGACCTGTCCTGGCTGAACGCGAGTACGTGGCCCAGCAGGCGCGCAAGATTGAGGTGGCCTCACCCTCCCCGGGCCATGACGCGTACCGTTCAGTTTTCGGCGACAACCCTGCCTCACTGGGTGACATGGTGGCCCACCGGCTTTCGGCGCACGGCATTGACCCCTCCTCGGTGGAGTGGGACTCCTGGCGGCGGCCCGACGGCAGCTGGACAGTGGTTGCGCGTTTCGCGCTGAAAAATGACGGCACGCCCGGCATCGGCGAAGAACCCCCCGCTCTGTGGACGTTCAGCCCGGCCCGCAAGGCGCTGCAAAACGCCAACCGCTGGGCCCAACAGCTCAGCGAACTGGAGCCGCTGGACGGCCCCGTTCCGGCCCGCCGTCTGACGGCCGTTTCGGACCGGCCCTTCGACTTTGAAACCGATGCCGGCGCGGCAGCAGCCCGGAACGCGGCTGCCACGCACAGCGGTCCGCAGCCGGTCAAGGAATCCGACGGACTGTTGGACATGCTGCGCTCGCGCCGCGGCCAGCGCCTGGGGGTGGATGAGGACGCCGACGACGCCCTGGCCCTGCTCCTGACCCATGGGGTCCCGGCTGCGCATCCACGTCCTTCCGAATTGAGCCAGCAGCAAAAGGAACACCAGCCACAAAAGGACAAGGATCAGGAACTCAGGGATTCTGAACCTGCCGGAACACTTGGATCCTCCGGATCCGAGCATGAGGCACCGGCGGTGCAGGCCGATCCGCTCACGCGGAAGCGCGAGGGAAGGCCTTCCATGCTGTCCAGGTTGAGTCTGATCCCCCCGCACCGGGACAACGTGGAGGACTTACTGAGACTGCACGACGGCGTCAGTACGGACACGCGGGAAATCACCATTGTGGCGTCCCCGCTCCGCCCCGCCGGGCAGGCGTACACACCACCGGCCTCCACCAAGAATCCTGCATCCACGTCCGAAGATCCACCGCCGCCGGACACCGGGAACACCACACCAAGCGTGGGCCTTGACGAACTGCTGGGCGGCGGGAGCCCGCGGCGCATGCATCGCTCCACTACGCCCGACGACCCGCCGGCCAGGGCGCACCACGAGCAGGATGCAGAGATGCCGGAACGGCAGCCCGCCAAACCGAAACGCTCAAGCATTCCTTCCTGGGACGAGATCGTCTTCGGGACCAGGGGCGACTGAMQDLRLVGVHDDGEHLLLSGAGGEMFQLPIDEALRAASRSSAKASAATAPIAMSPRDIQARIRSGATAADVAELSGLPLAKVERYEGPVLAEREYVAQQARKIEVASPSPGHDAYRSVFGDNPASLGDMVAHRLSAHGIDPSSVEWDSWRRPDGSWTVVARFALKNDGTPGIGEEPPALWTFSPARKALQNANRWAQQLSELEPLDGPVPARRLTAVSDRPFDFETDAGAAAARNAAATHSGPQPVKESDGLLDMLRSRRGQRLGVDEDADDALALLLTHGVPAAHPRPSELSQQQKEHQPQKDKDQELRDSEPAGTLGSSGSEHEAPAVQADPLTRKREGRPSMLSRLSLIPPHRDNVEDLLRLHDGVSTDTREITIVASPLRPAGQAYTPPASTKNPASTSEDPPPPDTGNTTPSVGLDELLGGGSPRRMHRSTTPDDPPARAHHEQDAEMPERQPAKPKRSSIPSWDEIVFGTRGDNANANANANA
D1-29_01785300hypothetical proteinATGGCCACCGACTATGACGCGCCGCGGAAGTCCGAAGAAGACCTCAATGAGGATTCACTGGAGGAATTGAAGACCCGAAGGTCGGACAAGCCCGCTGCAGTGGTGGAAGAGGATGAAAGTGAACTTGCCGCCGGCTACGAGCTCCCGGGAGCAGACCTCTCCGGCGAGGAACTCCTTGTCCAGATAGTCCCGCCCCAGGCGGACGAATTCACCTGCTCGTCATGCTTCCTGGTCAGGCACCGTTCCCAAATAGCCCTGGAAAAAGACGGCCGCCTTTATTGCAAGGAGTGCGAAGGCTGAMATDYDAPRKSEEDLNEDSLEELKTRRSDKPAAVVEEDESELAAGYELPGADLSGEELLVQIVPPQADEFTCSSCFLVRHRSQIALEKDGRLYCKECEGNANANANANA
D1-29_01786489hypothetical proteinATGCCCGAATCAAGCTCCACCCCCCCTGTTCCCAACACGCCTTCCGCCGGTACTGCGGTAATTTTCAAGGAGCGGCTGTGGCCCACCATCTGGGTCTGGGTCATTGCAGCGGGTATTGCCGGCGCCGGGATCCTGGTTTTTGCGCCCATCAGCATGGGTGCCGGCTACACGGCGGCGGCGGTGCTTTTTGGCATCATGGCCGTCCTGCTGGTGTTGTGGACTCCCGCCATTATTGTCACCGGGACGTCCCTCACGGTGGGCCGCGCCACGATCGAGCGCAGGTTTGTCGGCGAGGTACAGCCGTACCGCGGCAAGGAGGCCACCGCGGAACGCGGGACCCGGCTGAACGGGCTTGCCTACCTGTGCATCCGCGGCTGGATCGACCCCGTGGTCAGGATTGAGATAACCGACGCATCGGACCGGACGCCGTACTGGCTGACCTCCACGCGGCGGCCCGAAGAACTGACAGCGGCCCTGCAGAACACCTGAMPESSSTPPVPNTPSAGTAVIFKERLWPTIWVWVIAAGIAGAGILVFAPISMGAGYTAAAVLFGIMAVLLVLWTPAIIVTGTSLTVGRATIERRFVGEVQPYRGKEATAERGTRLNGLAYLCIRGWIDPVVRIEITDASDRTPYWLTSTRRPEELTAALQNTNANANANANA
D1-29_01787591dutDeoxyuridine 5'-triphosphate nucleotidohydrolaseGTGACTGATGAACTTGCCACTGTAGATTCCGCCCGTGACGAGACGCTGCCCGGCGCTGCACCAGATGGCGCAGCAGAAGCTGCGCCTGGCGCGGCCATTGGCGCCGCCACTGGTGCAGCCGCACCGTACGGTGCGCCAACGCTGCAGGTACAGCTGAAAATGCTGGATGCCTGGCTGGAGGCCCCGTCCTACGCCCACCCTGGTGACGCCGGGGCAGACCTGCGTGCCCGCGAAGACGTTGTACTGCAGCCGGGGGACCGGAAACTGGTCCCCACCGGAGTGGCCATTGCCCTGCCGGAAGGCTACGTGGCACTGATCCACCCCCGGTCGGGCCTTGCCACCAAACACGGGCTGACCATCGTTAACGCGCCCGGGACGGTGGACGCCGGGTACCGCGGTGAAATCTCGGTGACATTACTGAATACCGACAGGCACCAGGCCATTGAGCTGCGGCGCGGCGATAGAATTGCACAGATGGTGATCCAGCGGGTTGAGTATGCGCAATTCATCCCAGTCAACGAATTGAGCGGCTCGGTACGCGGTGCGGGCGGATTCGGTTCCACCGGCGGATTCACACAGCCCACCACCTGAMTDELATVDSARDETLPGAAPDGAAEAAPGAAIGAATGAAAPYGAPTLQVQLKMLDAWLEAPSYAHPGDAGADLRAREDVVLQPGDRKLVPTGVAIALPEGYVALIHPRSGLATKHGLTIVNAPGTVDAGYRGEISVTLLNTDRHQAIELRRGDRIAQMVIQRVEYAQFIPVNELSGSVRGAGGFGSTGGFTQPTTPGPT0021355_533DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520NANA
D1-29_01788726hypothetical proteinATGGTTTTTGGGCTCGGCAGGAAAGCCAAGAAGGATCAGGAAGCCGAACTGGACGATTCCCTGGCCACCACGGACGCGGCAGATTCGGAAGGTGCGGCCAACACCAAGGCACCGCGGGCCGCCGGGCCGTTTGACGTCTCCGAGATCTCCAGCCGTGACGGTTACGTGGACCTCGGTGCCCTGCTCATCACCCCCAGCGAAGGCCTGCAGTTGAGGCTGGAAGTTGAGGAAGCCACGCAGCGGGTAGTGGCGGTCACCATGGACCTGAACGGTTCAAGCCTGCAGCTCCAGGCCTTCGCGGCACCCAAGTCCGAGGGACTGTGGGACGAGATCCGGGAGCAGATTGGCCAGTCGGTGGGCAGCCAGGGCGGCCAGGTTGAAGAGGTCCCGGGCGAGTTCGGCCCTGAGCTGATTGCCAAGCTCCCCGCCGGTGCCGCAGACGGAAGCCAGGGATACCGCGTGGCGCGTTTTGTGGGGGTGGATGGCCCGCGGTGGTTCCTGCGCGGGGTACTGGGTGGCGCGGCAGCGTTGGACCGCGAAGCCGCGGCGCCGCTTGAGGCCCTGTTCCGCAAGATCGTGGTGATCCGCGGCGACAGCCCCATGCCGCCGCGCGACCTGCTGCAGCTTCGCCTGCCGAAGGACGCCGCACCGGCACCAACACCGGCACCGGCTGCGCCAGAGCTCCAGGAGCCCGAGCGCGGTCCGGAGATAACGCAGATTGGCTGAMVFGLGRKAKKDQEAELDDSLATTDAADSEGAANTKAPRAAGPFDVSEISSRDGYVDLGALLITPSEGLQLRLEVEEATQRVVAVTMDLNGSSLQLQAFAAPKSEGLWDEIREQIGQSVGSQGGQVEEVPGEFGPELIAKLPAGAADGSQGYRVARFVGVDGPRWFLRGVLGGAAALDREAAAPLEALFRKIVVIRGDSPMPPRDLLQLRLPKDAAPAPTPAPAAPELQEPERGPEITQIGNANANANANA
D1-29_01789279hypothetical proteinGTGTGCCACGGCCAGGTTGAATCCGTCACCTTTATGCCGGCGGACCAGACGGCAGCCTATACGGCGATAGTTTCAGACGTTGAACGTGAGCGGTCCGGTTTACGGACGGCGTCCGGGCAACGCGGCCGCCTCCGCGTGGTGTGGCTGGGACGGCGGCGCGTGCCAGGCATCGACGCCGGCACCGAAGTCCGGCTTGAAGGCATGGTCACACAGAGCCAGGGCCTGCCCACCATGTTCAATCCACGCTACGAGATACTGTCCAGCCAGGAGAATGAATGAMCHGQVESVTFMPADQTAAYTAIVSDVERERSGLRTASGQRGRLRVVWLGRRRVPGIDAGTEVRLEGMVTQSQGLPTMFNPRYEILSSQENENANANANANA
D1-29_01790756hypothetical proteinATGAGCTCGTCCCAGCAGCCGGAGCCGTCCCCGGGATCACCCCGCCCCGAGCCTGATCCTTCCACCATGGCCGGACTTGCCGAAGGCTACGCGGCCAAAGCCGGACTCCACCGGACCCATGACGGCCGTATCGATGTCCTGCGCAGCGCCGGCGGCGTCCAGGGAATCGCGGAAAGCATCCTTCCGGGCCTGGTTTTCCTCATTGCGTTCACCGTCACCCGGGACCTGACACCGTCACTGGTGGCCGCCCTGGCCTCGGCGGCCGTGTTTACGGTGGTGCGCCTGGTGCAGCGGCGTCCGCTGACCCAGGCGCTGGCCGGGGTTGTGGGCGTCGGAATCTCGGCGTGGCTGGCAAACACCACCGGAAAAGCCGAGGATTTCTACCTTCCCGGCTTCATCACCAACGCCTCCTACATCCTCGCCATGGTCATTTCGATCCTCATCAAATGGCCCGTGGCCGGGCTGCTGTTTGGCTTCATCCGCAATGAAGGCATCGAGTGGCGGAAGGACCCCGCCCGGCTGAAGGCGTACCGCCTTGGCACCTGGATCATCATCACGGTGCTGGTGCTCCGGCTGGTGGTCCAGGTTCCGCTGTATCTGATGGGCGAGGACGGGCTGGCAGGGCTGGCCACCACACGCCTCATCATGGGTGCCCCGCTGTACATCCTTGGCGTCTGGATCGCGTGGCTGATCACCCGGCCGGTTCCCGCGGCGGAACCAACTCAGCCGTCGAAGCCGTCGCCCTCCGCCACCTGAMSSSQQPEPSPGSPRPEPDPSTMAGLAEGYAAKAGLHRTHDGRIDVLRSAGGVQGIAESILPGLVFLIAFTVTRDLTPSLVAALASAAVFTVVRLVQRRPLTQALAGVVGVGISAWLANTTGKAEDFYLPGFITNASYILAMVISILIKWPVAGLLFGFIRNEGIEWRKDPARLKAYRLGTWIIITVLVLRLVVQVPLYLMGEDGLAGLATTRLIMGAPLYILGVWIAWLITRPVPAAEPTQPSKPSPSATNANANANANA
D1-29_01791774trkA_1COG0569Trk system potassium uptake protein TrkAGTGAAAGTAGTCATCGTAGGCGCCGGCAGTGTCGGTTCGTCGATTGCCAGGGAGTTGCTGGCCCACAAACATGAAATCCTGCTGATAGACCTCAAGCCGGAGGTCATTGGCCGCAGCGGACTCCGCGGCGCGCACTGGCTGGTAGGCGACGCCTGCGAACTGAGCACGCTGCAGGGCGCGAAGGTGGAAGACGCCGACGTCGTGGTTTCGGCCACCGGCGACGACAAGGTGAACCTGGTGGTCTCCCTCCTGGCCAAGACGGAATTCGGCGTGGGCCGTACTGTGGGCCGGGTCAACAACCCCAAGAACGACTGGATGTTCAACGATTCGTGGGGCGTTGACGTGGCCGTCAATACGCCGCAGTTGATGACCGCCCTGGTGGAAGAAGCCGTGGAGATCGGCGACCTGGTCAGGCTGCTCACGCTCCAGACAGGTGTCTCTTCCCTGGTTGAGTTCACGGTCCCCCATGATTCGCATGCCATTGGCCTGACCGTGGGAGAAATCCGCTGGCCCGAAGACTCGACGCTGGTGGCGATCCTGCGGGACCACGCCCCCATCACGCCCAGCCGGGATGACGTGATCGACGGCGGCGACGAACTCTTTTTTGTCACCACGATTGCTGCCGAGGATGAGCTCCGTGCCCTGCTCTCGCCGGAGTCGGTGGAGCCGGTGGAGCCTGCGGAGTCGTTAGCCGGGGCGGGGCAGCCTGGCGCTAACCCGGCCGCCCAGCCGGTAGAGGCTCAGGTGGCGGAGGGCGACGGCTTCGACGGCTGAMKVVIVGAGSVGSSIARELLAHKHEILLIDLKPEVIGRSGLRGAHWLVGDACELSTLQGAKVEDADVVVSATGDDKVNLVVSLLAKTEFGVGRTVGRVNNPKNDWMFNDSWGVDVAVNTPQLMTALVEEAVEIGDLVRLLTLQTGVSSLVEFTVPHDSHAIGLTVGEIRWPEDSTLVAILRDHAPITPSRDDVIDGGDELFFVTTIAAEDELRALLSPESVEPVEPAESLAGAGQPGANPAAQPVEAQVAEGDGFDGPGPT0002710_1981DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
D1-29_01792675trkA_2COG0569Trk system potassium uptake protein TrkAGTGGCGCATTTCGTGATCATGGGATGTGGCCGTGTGGGGGCGACGCTAGCGCATACGCTCGAGGATGCCGGCCACTCCGTGGCGATCATCGATCAGGACGACCGCGCTTTCCGCAGGCTGCGCCAGGGCTTCACGGGGCGCAAGGTCACCGGCGTCGGCTTTGACCGGGACACCCTCAAGCAGGCCGGAGTGGCCGACGCCTATGCTTTCGCCGCGGTGTCCAGCGGCGACAACTCCAACATCCTGGCTACCCGCGTTGCCCGGGAGACATTCCACGTCCCGCACGTTGTGGCCAGGATCTACGATCCCGGCCGGGCCGAGATCTACCAGCGCCTGGGCATCCCCACCGTGGCCGCGGTCCGCTGGAGCGCGGACCAGGTCCTGCGGCGCATCCTTCCGGAGCAGCATCTCGCCGGCGATTTCCGCGAGCCCTCCGGCCGCCTGGTGCTGGCCGAACTTGATCTCGACCCCGGCTGGGTGGGACACCGGGTCACCGCAATCGAGAAAGCCGCGGATGTCCGCGTGGCCTACCTCACGCGTTTCGGCGAGGGCCTGCTCCCCGACTCCGGCACTGCCTACCAGGACGGCGACACCCTGCACGCCATGCTGCAGGTGGACCGCAGTGCCCAGGTTGCGCATATCCTGGCCAAAGCCCCCGCGAAGGAACCGAAGTGAMAHFVIMGCGRVGATLAHTLEDAGHSVAIIDQDDRAFRRLRQGFTGRKVTGVGFDRDTLKQAGVADAYAFAAVSSGDNSNILATRVARETFHVPHVVARIYDPGRAEIYQRLGIPTVAAVRWSADQVLRRILPEQHLAGDFREPSGRLVLAELDLDPGWVGHRVTAIEKAADVRVAYLTRFGEGLLPDSGTAYQDGDTLHAMLQVDRSAQVAHILAKAPAKEPKPGPT0002710_3196DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
D1-29_017931956kimACOG0531Potassium transporter KimAATGAAACGGGTTCTGGTGGGCAGGCCCTTCAGGAATGACAGGCTGGCCCATACCCTGCTTCCCAAGCGGATCGCGCTTCCGGTTTTCGCCTCCGACGCGCTGTCCTCCGTAGCCTACGCACCGGATGAAATCCTGCTGACCCTGGCACTGGCCGGCGTGAGTGCGGTGGCCTTTTCACCGTGGGTTGGCCTCGCGGTCATGGTGGTGCTGCTGACGGTGGTGGCGTCCTACCGGCAGAACGTGCACGCCTACCCGTCCGGCGGAGGCGACTACGAGATCGCCAACGTGAACCTCGGAAAGCATGCCGGCCTGACGGTGGCGTCGGCGCTCCTGGTGGACTACGTCCTGACGGTGGCGGTTTCCATGTCGTCCGCAGCGACCTACCTGACCACCGCCATCCCTGACCTGCACGGGCAGCAGGCGCTCATCGCCACTATCGGCGTGGCCATCCTCGCCCTGGTCAACCTCCGCGGCGTTAAGGAAGCCGGCACAGTTTTTGCCGTCCCCACCTACATTTTTATGGCCTCGATCCTGGGGATGACCGCTGTGGGAATCTTCCAGGCCTCCACCGGCCAGCTGGGCGAGGCGCCGTCAGCCGCTTTCAGCATCGTGCCGGCTCCGGGATTCGACGAAGGGCTGGTGGGCCTGGCCGGCGCCTTCCTCCTGCTGAGGGCGTTCTCCTCCGGGGCCGCTGCCCTCACCGGGGTTGAAGCCATCAGTAACGGTGTGCCCAACTTCAAGGAGCCCAAAAGCAAGAATGCTGCCACCACACTGCTGCTGCTGGGCGTCATCGGGGCGTCGATGCTGGCCGGGATCATGTACCTGGCCAGCGCCACCAAGGTCCACATCGTGCTGGATCCGGCCCGGGAGTTCCTGCTCAACGGCATTCCGTTGCCCCCCGATTACATCCAGACCCCCGCCATCAGCCAGATCGCGCAGACCATCTTCGGCCCCGGTTCCATTCCCTTTTACATTGTGGTGGCAGCCACCGGCGTGATCCTGGTGTTTGCGGCCAATACCGCCTTCAACGGCTTTCCCGTCCTGGGCTCCATCCTGGCCCAGGACGGTTACCTTCCCCGGCAGCTGCGGACCAGGGGAGACCGGCTGGCCTTCAGCAACGGTGTATTGGCGCTGGCGGCCGGAGCCCTGGTGCTGATCCTTGCCTTCAACGCAGATGTCACCAGGCTCATCCAGCTGTACATTGTGGGCGTCTTTATTTCCTTCACCGCAAGCCAGCTGGGCATGATCAGGCACTGGGGACGGCAGCTCAAGCTCGCCAAGGACACAACAGTCCGGCTGCGGATGGTGAAGTCGCGCACCATCAACACCATCGGTTTCGGCATGACGGCGCTGGTCCTGGTCATCGTCCTGGTCACCAAATTCGAGCAGGGCGCCTGGATCGCCCTGCTGGCGATGTTCGTGCTCTACCTGATCATGTGGAGCATCCGGGCCCACTATGACAATGTGGCCAAGGAACTGGCCGTGGACGAGGATTCCTCGCCGCGGGCCCTTCCGTCCCGGGTGCATGCCGTGATTCTGGTGTCCCACGTGCGCAAGCCCGTGCTCCGGGCGCTGGCCTACGCCCGCGCCTCCCGGCCCTCGCGGCTGGATGCCGTTACCGTGGACATCAACGCCGAAGAGACGGCACGCACTGTTGCTGATTGGGAAAAGCTCGAGATTCCTGTGCCGCTGACCGTGCTGGCGAGCCCGTACCGGGAGACCGTCACCCCCATCATGGAGTACGTCAAGAACATGCGGCGCGATTCCCCGCGTGACCTGATCGTGGTGTACATCCCCGAGTACGTGGTGGGCAAATGGTGGGAGCAGCTGGTCCACAACCAGACTGCGCTGCGCATCAAGACCCGCCTGCATTTTGAACCTGGCGTGATGGTGGCCAGCGTTCCGTGGCAGTTGAAATCGTCCGAAGAAGCCAAGAACCTGCAGGATATCCAATGAMKRVLVGRPFRNDRLAHTLLPKRIALPVFASDALSSVAYAPDEILLTLALAGVSAVAFSPWVGLAVMVVLLTVVASYRQNVHAYPSGGGDYEIANVNLGKHAGLTVASALLVDYVLTVAVSMSSAATYLTTAIPDLHGQQALIATIGVAILALVNLRGVKEAGTVFAVPTYIFMASILGMTAVGIFQASTGQLGEAPSAAFSIVPAPGFDEGLVGLAGAFLLLRAFSSGAAALTGVEAISNGVPNFKEPKSKNAATTLLLLGVIGASMLAGIMYLASATKVHIVLDPAREFLLNGIPLPPDYIQTPAISQIAQTIFGPGSIPFYIVVAATGVILVFAANTAFNGFPVLGSILAQDGYLPRQLRTRGDRLAFSNGVLALAAGALVLILAFNADVTRLIQLYIVGVFISFTASQLGMIRHWGRQLKLAKDTTVRLRMVKSRTINTIGFGMTALVLVIVLVTKFEQGAWIALLAMFVLYLIMWSIRAHYDNVAKELAVDEDSSPRALPSRVHAVILVSHVRKPVLRALAYARASRPSRLDAVTVDINAEETARTVADWEKLEIPVPLTVLASPYRETVTPIMEYVKNMRRDSPRDLIVVYIPEYVVGKWWEQLVHNQTALRIKTRLHFEPGVMVASVPWQLKSSEEAKNLQDIQNANANANANA
D1-29_017941452COG2265putative RNA methyltransferaseATGAACACCAAGACCCAGACCGCTTCGCATTCAGCCAATTCCCATCCAGCCGCCTCCCATCCAGCCCCTGACGCGCTGACGGAGCTGGTGCTCGACGTCGGCCCCGTGGCCCACGGCGGGCACTGCGTGGCACGCCACGAAGGCAGGGTGATTTTTGTCCGCCACGGCATCCCCGGCGAGAAGGTCCGGGCCCGGGTGACGGAAGCGGGGGAGACGGCCAAGTTCTGGCGTGCCGACGTGGTGGAGGTCCTGGACGCCTCACCGGACCGGGTGGAGCACTTTTGGCACCTCGCTGACGCCCGGCGCGCGTGGGCAGCCGGGCACCCGCCCGTCGGCGGAGCTGAATTCGGCCACATCACGCTGTCCCGCCAGCGGGCCCTCAAGTCCGCAGTGCTGGCCGAACAGCTCAAGCGGCTCGCCGGCGTCGAACTTCCTCCGGCGGATGTCCCCGGCCACGAGAATGCCGAGAACAGCGGCACGCCGGTGGAGGCCGTGGGCAGCCGGTCAGGCGAAAACTCAACGCCCGACGCCGGCGCCGGCCTTGAGTGGCGGACCCGGGCCAGTTTTTCCGTCACCCCCGGCGGGAAACTGGGCATGCACGCCCACCGCTCCGACCAGATCATCCCCGTGCGGGGAATGCCGCTCGCCGTCGACGGCATTAACCGGCTGCGCCTGTGGGACATCGACCTGCAGGGCATCGACCGGGTGGAGGTGGCAGCACCGGCTAACGGATCACGGCCCCTGGTGCTGCTCTCCCCGGCGCCGGGCACCAAACCCAAGCGGCTCAGCGCCATCGTCGCCCAGCTCCCCGACGACGTTTCCGTGGCCAGCTTCGACCCTCTGAAGGACGAGGTCAGGCAACTGCGGGGCCGGACATGGGTGCAGGAGACCGCCGCAGGGCACGACTACCGCATCACGGGGGCCGGCTTCTGGCAGATTCACCGCGACGCGCCCGAAGCACTTGTGGGGGCCGTCACAGAATTCCTCCACGGCGGGGGCTTCCTGGAGCCAGGCTCAGTGGTGGCGGATCTGTACGCCGGGGCCGGCCTGTTCACCGCACCCCTGGCGGACGCGGTGGGGGAGACGGGCTCCGTTCTCTCAATCGAAGGCGCAGCGGGAACCAGCCGGGACGCGCGCAAAAACCTGCACAACGCGCCGCAGGTGGAGATTGTTCAGGGGAGGGTTGAGCGCGTCCTCCGCCAGAAACCGCGGGAATTTGACGCCGTGCTGCTGGATCCGCCCCGGGCAGGTGCCGGAAAAGCAGTGGTCAGCCAGCTGATCGCCGCCGGACCGCGTGCCATCGCCTATGTGTCCTGCGACCCCGCATCCTTTGCGCGTGATCTGGGTTACTTCCAGCAGGGGGGATGGTCCCTTGCCGGGCTGCGGGCGTTCGATCTGTACCCGCACACCCACCACCTGGAGACTGTGGCATTGCTGACACCAGCCCGCTGAMNTKTQTASHSANSHPAASHPAPDALTELVLDVGPVAHGGHCVARHEGRVIFVRHGIPGEKVRARVTEAGETAKFWRADVVEVLDASPDRVEHFWHLADARRAWAAGHPPVGGAEFGHITLSRQRALKSAVLAEQLKRLAGVELPPADVPGHENAENSGTPVEAVGSRSGENSTPDAGAGLEWRTRASFSVTPGGKLGMHAHRSDQIIPVRGMPLAVDGINRLRLWDIDLQGIDRVEVAAPANGSRPLVLLSPAPGTKPKRLSAIVAQLPDDVSVASFDPLKDEVRQLRGRTWVQETAAGHDYRITGAGFWQIHRDAPEALVGAVTEFLHGGGFLEPGSVVADLYAGAGLFTAPLADAVGETGSVLSIEGAAGTSRDARKNLHNAPQVEIVQGRVERVLRQKPREFDAVLLDPPRAGAGKAVVSQLIAAGPRAIAYVSCDPASFARDLGYFQQGGWSLAGLRAFDLYPHTHHLETVALLTPARNANANANANA
D1-29_017952811acnACOG1048Aconitate hydratase AATGAGCACTGTGGACAGCTTCGGTTCAAAAGGCAAACTTAATGTAGCCGGAACCGAATACGAAATTTTCCGGTTGAACTCCGTTGAAGGTGCAGAAAACCTTCCGTTCAGCCTCAAGGTATTGCTTGAAAACCTGTTGAGGACCGAGGACGGCGCGAACATCACTGCCGATCACGTCCGCGCCTTGGCGGGATGGGACCCCAACGCCCAGCCCGATACAGAAATCCAGTTCACGCCGGCGCGGGTGATCATGCAGGACTTCACCGGTGTTCCCTGCGTGGTTGACCTGGCGACGATGCGTGAAGCAGTCAAGGAACTCGGCGGTGACCCCAAGCGGGTCAACCCGCTGGCTCCGGCGGAAATGGTCATTGACCACTCCGTGCAGATTGACGCCTTCGGCAACTCCGGCGCGCTGGAGCGCAACATGGAGATCGAATACCAGCGCAACGGCGAGCGTTACCAGTTCCTGCGCTGGGGCCAGACCGCGTTCGACGACTTCAAGGTAGTTCCGCCGGGAACCGGCATCGTGCACCAGGTGAACATTGAATACCTGGCACGCACAGTGATGACCCGTGAAGTTGATGGCGCTCTCCGTGCTTACCCGGACACCTGCGTTGGCACCGACTCGCACACCACCATGGTCAACGGCCTGGGTGTCCTGGGCTGGGGCGTTGGCGGCATCGAAGCCGAGGCAGCCATGCTGGGACAGCCCGTCTCCATGCTGATCCCGCGCGTCGTGGGCTTCAAGCTGACCGGGTCCATCCCGGCCGGCGCCACCGCCACCGACGTTGTGCTGACCATCACCGAGCAGCTGCGCAAGCACGGTGTGGTGGGCAAATTCGTGGAATTCTACGGCGAAGGTGTTGCCGCGGTGCCGCTGGCCAACCGCGCCACCATCGGAAACATGAGCCCGGAGTTCGGCTCCACCGCCGCAATGTTCCCGATTGACGACGTCACATTGGACTACCTGCGCCTCACCGGCCGCTCGGACGAAAACGTGGCACTCGTGGAGTCCTACGCCAAGGAACAGGGCCTCTGGCACGATCCTTCCCGCGAGATCAAGTTCTCCGAGTACCTCGAGCTGGACCTGTCCACGGTTGTTCCCTCCATCTCCGGCCCCAAGCGTCCCCAGGACCGCATTGAGCTGACGGATGCCAAGGAGCAGTTCCGCAAGGACATCCACAACTACGTCGCCATCGAAGACGGCAGCGTGGACGAGTCCCTGGACGAATCGTTTCCCGCCTCCGACGCCCCGTCCTTCACCCACCCTGACTCGCACACCACCGAGACCAGCCGCGTTGTCTCGGCTGCCAACGGTGCCCAGGGGCGTCCGTCCAGCCCGGTCCACGTCGTGACCGAAGACGGCCGCGAGTTCGAGCTGGACCACGGTGCGGTGTCGATCGCCTCGATCACCTCCTGCACCAACACGTCCAACCCCTCCGTGATGCTTGCCGCCGCACTTCTGGCGCGCAACGCCGTCGACAAGGGCCTGACGTCCAAGCCGTGGGTCAAGACCTCCGTCGCCCCGGGTTCCAAGGTTGTCACCGACTACTACGAGAAGTCCGGCCTGACGCCGTACCTGGAGAAGCTCGGCTTCTACATCGTGGGCTACGGCTGCGCCACCTGCATCGGCAACTCCGGCCCGCTGGACGCCGAGATCTCCGAGGCCATCCAGGCCAACGACCTCTCCGTCACCGCAGTGCTTTCCGGTAACCGCAACTTCGAAGGCCGGATCAACCCGGACGTCAAGATGAACTACCTGGCCTCCCCGCCGCTGGTCATCGCGTACGCCCTGGCCGGTTCCATGGACTTCGACTTCGACACCGACTCCCTAGGCAAGGATGAAGCCGGCAACGACGTCTTCCTGAAGGACATCTGGCCCAACCCCGTGGAGGTCCAGCAGGTCATCGATTCCTCGATCGACAAGGACATGTTCGCCCGCGGCTACGAGGGCGTCTTCGATGGCGACGACCGCTGGAAGGCGCTCGACACGCCCGCCGGTGACACGTTCGCCTGGGATCCGAACTCCACTTACGTCCGGAAGCCCCCGTACTTCGAGGGCATGAAGGCGCAGCCGGAACCCGTACAGGACATCTCCGGTGCACGCGTACTGCTCAAGCTGGGCGATTCGGTCACCACCGACCACATCTCCCCGGCCGGTTCCTTCAAGTCGGACACCCCTGCCGGCCAGTACCTCCTGGCCAACGGTGTGGAGCGCAAGGACTTCAACTCCTACGGCTCGCGCCGTGGCAACCACGAGGTCATGATCCGCGGCACGTTCGCCAACATCCGCATCAAGAACCAGATCCTGGACGGCGTCGAAGGTGGCTTCACCCGCGACTTCAGCCAGGAAGGCGGACCGCAGGCCTACGTCTACGACGCCGCGCAGAACTACCAGGCAGCCGGCACTCCGCTGGTGGTCCTGGCAGGCAAGGAGTACGGCTCCGGTTCCTCCCGTGACTGGGCAGCCAAGGGCACGGCGCTGCTGGGCGTCAAGGCAGTCATCGCCGAAAGCTACGAGCGCATCCACCGCTCCAACCTGATCGGCATGGGCGTCCTGCCCCTGCAGTACCCGGCCGGAGAAAGCGCAGCAACCCTGGGCCTGACTGGCACCGAGGTCTTTGCGGTGGAAGGCGTCACCGGGCTGAACGAGGGCTTCACGCCCAAGACCCTCAAGGTCACGGCCACCGCTGAAGACGGCTCCGTCAAGTCGTTCGACGCTGTGCTGCGCATCGACACCCCGGGCGAGGCGGACTACTACCGCAACGGCGGGATCCTGCAGTACGTCCTGCGCCAGATTTCCGCCAACTAGMSTVDSFGSKGKLNVAGTEYEIFRLNSVEGAENLPFSLKVLLENLLRTEDGANITADHVRALAGWDPNAQPDTEIQFTPARVIMQDFTGVPCVVDLATMREAVKELGGDPKRVNPLAPAEMVIDHSVQIDAFGNSGALERNMEIEYQRNGERYQFLRWGQTAFDDFKVVPPGTGIVHQVNIEYLARTVMTREVDGALRAYPDTCVGTDSHTTMVNGLGVLGWGVGGIEAEAAMLGQPVSMLIPRVVGFKLTGSIPAGATATDVVLTITEQLRKHGVVGKFVEFYGEGVAAVPLANRATIGNMSPEFGSTAAMFPIDDVTLDYLRLTGRSDENVALVESYAKEQGLWHDPSREIKFSEYLELDLSTVVPSISGPKRPQDRIELTDAKEQFRKDIHNYVAIEDGSVDESLDESFPASDAPSFTHPDSHTTETSRVVSAANGAQGRPSSPVHVVTEDGREFELDHGAVSIASITSCTNTSNPSVMLAAALLARNAVDKGLTSKPWVKTSVAPGSKVVTDYYEKSGLTPYLEKLGFYIVGYGCATCIGNSGPLDAEISEAIQANDLSVTAVLSGNRNFEGRINPDVKMNYLASPPLVIAYALAGSMDFDFDTDSLGKDEAGNDVFLKDIWPNPVEVQQVIDSSIDKDMFARGYEGVFDGDDRWKALDTPAGDTFAWDPNSTYVRKPPYFEGMKAQPEPVQDISGARVLLKLGDSVTTDHISPAGSFKSDTPAGQYLLANGVERKDFNSYGSRRGNHEVMIRGTFANIRIKNQILDGVEGGFTRDFSQEGGPQAYVYDAAQNYQAAGTPLVVLAGKEYGSGSSRDWAAKGTALLGVKAVIAESYERIHRSNLIGMGVLPLQYPAGESAATLGLTGTEVFAVEGVTGLNEGFTPKTLKVTATAEDGSVKSFDAVLRIDTPGEADYYRNGGILQYVLRQISANPGPT0001465_669DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681NANA
D1-29_017961974dxsCOG11541-deoxy-D-xylulose-5-phosphate synthaseTTGGGAATCTTGGACACCATCCGGAATCCGCAGGACCTGAACGAGTTGTCCCCCCAGCAGCTGGAGGAACTGGCCGCTGAGATCAGGACTTTCCTGATCACCAACGTCTCCCAGACAGGCGGACACCTCGGCCCCAACCTCGGCGTTGTGGAGCTTACCCTCGCCGTGCACCGCATCTTTGACTCGCCGCACGACAGCCTGGTGTTCGACACCGGCCACCAGTCCTATGTGCACAAGCTCCTCACCGGCCGCCAGGATTTCAGCACCCTGCGCCAACAGGGCGGCATGTCCGGGTACCCGTCCCGCGCCGAGTCCGAACATGACATCCTGGAAAGTTCGCACGCCTCCTCGTCGCTGTCCTGGGCCGACGGCATCTCCCGGGCCCGCCAGCTCACCGGCGAGGGTGACCGCTTTGTTGTTGCCGTCGTCGGGGACGGTGCGCTGACCGGCGGGATGGCATGGGAAGCCATCAACAACATCGCTGCCGACAAGCGCCGCCGGGTGGTCATTGTGGTCAACGACAACGGACGCTCGTACGCGCCAACGGTGGGCGGATTCGCTGACTACCTCGCGTCCCTCCGTCCCACCATCGACTCCTTCCGCGCCGCGCCGGCCTACGAAGGCGTCATGGACTGGTGGAAGCGGAAGCTTCAAAGCGGCGGGCCCGTCGGCCAGTTCACGTACAAGAGCCTGCATGCCATGAAAAAGGGCATCAAGGACTGGTGGGCGCCGCAGGGAATGTTCGAAGACCTCGGCATGAAGTACATCGGCCCGGTGGACGGCCACAACCTCCAGGCCATGGAGCACGCGCTGGCCACCGCCAAGCACTATGCCGGCCCAGTGATTGTGCACGCCATGACCGAAAAGGGGCACGGCTACGCACCGGCCCGCGCCCACGAAGCGGACCAGTTCCACGCGGTGGGAATCATCGACCCGGAAACAGGGGAAGCCACCGGTGTCGCCGGTGCACAATCCTGGACCTCGGTGTTCGCCGACGAGATCGCCGCGATTGCCGATGAACGCCAGGACATTGTTGGCATCACGGGCGCCATGCTGATCCCGGTGGGGCTCCACAAGTTCGCGGCGAAGCACCCGGAGCGGGTGTTCGACGTCGGCATTGCCGAACAGCACGCTCTCACCTCCGCTGCGGGCATGGCCTTTGGCGGGCTCCACCCGGTGGTGGCCGTGTACGCCACCTTCCTGAACCGCGCCTTTGACCAGCTCCTGATGGATGTGGCTCTGCACAAGGCGGGCGTCACTATTGTTTTGGACCGGGCCGGTGTGACAGGGCCTGACGGCGCCAGCCACCACGGCATGTGGGACATGTCCATGGTCCAGATCGTCCCCGGACTGCACCTCGCCGCCCCCCGCGATGCGTCCCGCCTGCGGGAGGAACTCCGCGAGGCAGTCGCCATCAGCGGCGCGCCCAGCGTGGTGCGCTACTCCAAGGGGACAGTGGGAGCCGAAGTGGAAGCCATTGAACGGCTCAACGACGGCGTGGATGTCCTCGCCCGCAGGCCGTCGGGCTCCACCGAGAACGACGTCCTGATTGTCAGCGTTGGCGCCATGTCTGAACTCGCGCTGGACGTTTCCAACAGGCTTGGTGCCCAGGGAATCAGCACCACAGTGGTGGATCCGCGCTGGGTGCTGCCCGTGCGGCGTTCCATCATTGCGTTGGCCTCCCGCCACCGGCTGGTGATCTGCATCGAGGACGGCGTCCGTGCCGGGGGTGTGGGCTCGCGCATCCGCCAGGAAATGCGGGCAGCAGGAGTGGACACCGCCCTGAACGAAGTTGGGCTGCCCGCCGAGTTCCTTGACCACGGCACCCGCAGCCAGGTGCTGGAGCGCGCGGGCCTGACGGCCCAGCAGATCACGCACGACGTCGTGGCCCAGGTCCTGGGGACCAAGGTTCCCTTCGCGCGTCCCCTGCCCGGCCAGGAACACCCCACTACCGGCAGCCTGCCGATCCTGTGAMGILDTIRNPQDLNELSPQQLEELAAEIRTFLITNVSQTGGHLGPNLGVVELTLAVHRIFDSPHDSLVFDTGHQSYVHKLLTGRQDFSTLRQQGGMSGYPSRAESEHDILESSHASSSLSWADGISRARQLTGEGDRFVVAVVGDGALTGGMAWEAINNIAADKRRRVVIVVNDNGRSYAPTVGGFADYLASLRPTIDSFRAAPAYEGVMDWWKRKLQSGGPVGQFTYKSLHAMKKGIKDWWAPQGMFEDLGMKYIGPVDGHNLQAMEHALATAKHYAGPVIVHAMTEKGHGYAPARAHEADQFHAVGIIDPETGEATGVAGAQSWTSVFADEIAAIADERQDIVGITGAMLIPVGLHKFAAKHPERVFDVGIAEQHALTSAAGMAFGGLHPVVAVYATFLNRAFDQLLMDVALHKAGVTIVLDRAGVTGPDGASHHGMWDMSMVQIVPGLHLAAPRDASRLREELREAVAISGAPSVVRYSKGTVGAEVEAIERLNDGVDVLARRPSGSTENDVLIVSVGAMSELALDVSNRLGAQGISTTVVDPRWVLPVRRSIIALASRHRLVICIEDGVRAGGVGSRIRQEMRAAGVDTALNEVGLPAEFLDHGTRSQVLERAGLTAQQITHDVVAQVLGTKVPFARPLPGQEHPTTGSLPILPGPT0008960_681DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008960-dxs-K01662NANA
D1-29_01797618hypothetical proteinGTGAGGGAAGAGGACAGGCTTAAATATCCGGCCGCTTCCGGGGGCCGGGAGACTGAGCAGCATCACCGCACCACCCGTGTGCCTTCAGGTCTTGAACCCGGGCAGTTGGTGGTGGCGCGGAACAGGAAATGGAATGGCAAAGCCCACTGGGTGGTGCCGGGACGCTACCTGGGCGAGGACAGTTTCGGTTGGTGGATCTTCCAGGGGACCAACGAATTCTGCTCGCGGCCGGGGGCTGCCTTCTACGCGGAGTCCGATGCCGTCCTGCTCATTCCGCGCTCAGGCGACTGGGTGGCCACCTTCTACGATGACGCCCACCCGAACGGTGTCCGCGTGTACGTTGACCTGGCCGTTGCCCATGAGTGGGACACCATCCGCCCCGGGGTGACCGAGTTTCATGTGATCGACATGGACCTGGACGTGGTCCGCACGGCTGACCGCGGGGTCTACATCGACGACGAAGACGAATTTGCCGAGCACCGCCTCGCAATGAATTACCCGGCCCATCTGGTGGAATCCCTCCAGGCGGCCACCGACGAGCTCTATCAGGCCGTCAAGGCACAGCAGGCACCCTTCGACGGCACCGACGTCGAGTGGTTCACGAAGGGACGCGCATGAMREEDRLKYPAASGGRETEQHHRTTRVPSGLEPGQLVVARNRKWNGKAHWVVPGRYLGEDSFGWWIFQGTNEFCSRPGAAFYAESDAVLLIPRSGDWVATFYDDAHPNGVRVYVDLAVAHEWDTIRPGVTEFHVIDMDLDVVRTADRGVYIDDEDEFAEHRLAMNYPAHLVESLQAATDELYQAVKAQQAPFDGTDVEWFTKGRANANANANANA
D1-29_01798561hypothetical proteinATGAGCGGAATTATCAGGGTCTACAAACGCGACGACGAGGGAGTCCTGCACTTCCGGGAGGGCTGGTTCGACGAGGACTACAGCCAGTTCGTCATGAACTACGGCGTGGTGGGCCACCAGAGCAAGACCGAGGAGACGGACGTTGCCGACGCCGAAGCGGCGGAGGGCCTGATGGCTGCGTTCGCCGCACAGTGCGCCGAGGACGGCTACGCCGAGATTCCCGACGACGAGCAGTCCTGGGTGGTGGCCCAGTTCGCGCTGAAAACCAAGGACGGCACCGACCGGGACCGGTACCTTGAGGAAAAAGCGAAGGATGCCCTCATTAGCCATCTGGCCTGGCGCGGCCTGGGGACCGTGGAGCGCTCCGAATTCAGCGACTACAAGCTGAACATCTTCTGCCTCTGCCCGGACGTGAACAAGGCAGTCAACGCCATCAAAGTCTGTAGCCGCGGCGAGGACCTGGACTTCACCAAGCTCAGCATCGGTGCCGCGCCCTACAACGAGCCGGACAACTTCAAGCTCAAGCATTCGGCGAAGCCCGCCAACAGCTTCAGCCTCTAGMSGIIRVYKRDDEGVLHFREGWFDEDYSQFVMNYGVVGHQSKTEETDVADAEAAEGLMAAFAAQCAEDGYAEIPDDEQSWVVAQFALKTKDGTDRDRYLEEKAKDALISHLAWRGLGTVERSEFSDYKLNIFCLCPDVNKAVNAIKVCSRGEDLDFTKLSIGAAPYNEPDNFKLKHSAKPANSFSLNANANANANA
D1-29_01799978yajO_2COG06671-deoxyxylulose-5-phosphate synthase YajOGTGACTGAATACCGGCGACTTGGAAATTCCGGACTGACCGTCTCCGTAGTGGGGCTGGGCTGCAACAATCTGGGCCGTTCCCATACGGCAACGGAATCGCAGGAGGGGACGGACGCCGTCGTGCATGCGGCGCTCGACGCCGGCGTGACACTTTTCGACGTCGCGGACACGTACGGCCGCGAGCCCGGGCTCAGCGAAACCATGCTCGGCAAGGCCCTCGCCGGCAGGCGGAATGAGGCGGTGGTGGCCACCAAATTCGGGATGGACATGCGCGGGGCCAACGGCCCGGACTTCGGCGCCAGGGGCTCGCGCCGCTACATCATCCAGGCAGCGGAAGCATCACTGCGCCGGCTGGGGACGGAATGGATCGACCTTTACCAGTTCCACACCCCTGACCCACTGACCCCGATTGACGAAACGCTGTCCGCGCTGGACCACCTGGTGACCAGCGGCAAGGTCCGCTATATCGGGCACTCGAACCGCGCCGGCTGGCAAATCGCCGAGGCCGAGTTTGTGGCACGGGCCGGCGGCGGGACGCGCTTTATCTCCACCCAGAACCACTACAACCTGCTGGACCGGCGCGCGGAGCTGGAAGTCACCCCGGCCGCGGAGGCGTACGGCCTGGGCGTCCTGCCCTACTTCCCGCTGGCCAACGGGCTCCTGACCGGAAAGTACTCCCCGGATACTGCCCCCGCCGGATCACGGCTCAGCCATACCAGGACCCATCTGGTGCACAACGCGGATTGGGACCAACTGGGGCGCTTCACGGCGTTTGCTGCCGAGCGTGGCCTGACCGAAGTCCAGGTTGCCTTTTCGTGGCTCGCGGCCCAGCCGTCTGTTTCCAGCGTCATAGCCGGCGCCACCAGGCCTGAGCAGGTCCGGCAGAACGCCGGGGCCGTGGCTTGGATGCCGGGGCCGGAGGACCTGACGGAACTGGATGACATTTTCCCGGCTGTCCCCAAAGTGGCACTCTTCTAGMTEYRRLGNSGLTVSVVGLGCNNLGRSHTATESQEGTDAVVHAALDAGVTLFDVADTYGREPGLSETMLGKALAGRRNEAVVATKFGMDMRGANGPDFGARGSRRYIIQAAEASLRRLGTEWIDLYQFHTPDPLTPIDETLSALDHLVTSGKVRYIGHSNRAGWQIAEAEFVARAGGGTRFISTQNHYNLLDRRAELEVTPAAEAYGLGVLPYFPLANGLLTGKYSPDTAPAGSRLSHTRTHLVHNADWDQLGRFTAFAAERGLTEVQVAFSWLAAQPSVSSVIAGATRPEQVRQNAGAVAWMPGPEDLTELDDIFPAVPKVALFPGPT0017540_864DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017540-yajO|iolS-K23107NANA
D1-29_018001056rihA_3COG1957Pyrimidine-specific ribonucleoside hydrolase RihAGTGATCAGCCTCCTCCTGGACGTGGACACCGGAATCGATGACGCTGTGGCGCTGGCCTATCTGGCATCACTTCCCGATGTTGAGTTCGTGGCCGTCACGGCGTCGGCGGGCAATGCCGGTGTCCATCAGGTGGCCCGCAATACCCTGGCACTGCTGGAACTGTGCGGACGCCGTGGAGTGGAAGTGGCCGTTGGGGCGGAAGCGCCCCTTGAGATCCCGCTGGTGACCACGCCGGAGACCCATGGTCCACAAGGGCTGGGGCACGCGGTCCTGCCCCCGCCGTCGGGATCCGTTTCCGAACGGGACGCCGCGGACCTGTGGGTCCAGGCGGCCCGTGCGCGCCCAGGGGAGCTGACTGCCCTCATCACTGCACCGTTAACGAACTTCGCCCTGGCGATCCGGCGTGAGCCGCGCCTGCCGGAGCTCCTGCGCAAGACAGTCATCATGGGCGGCAGCTTCTACCACCAGGGAAACACCACGCCCCTGGCTGAGTGGAACACGCACGTGGACCCGCACGCCGCCAAGGAGGTGTACGCAGCCTACCGCGGCCTTCCGGCGGAGCAGCTGCCGATCGTCTGTTCCCTGGACACCACCGAGCGGATCGAGCTCCGGCCGGAGCATGTGCGCCGGCTGGCGGAGGCGGCAGGCTGCGCGGTGGAGGAATTGGTGCTGCCGGACCAGCCCGAGGGCCTTCGGAGCACCTCGGACAATGAACTGGTCCGCCACCTGTCCGACGCGCTGCGCTTCTACTTTGAATTCCACCGCCGGTACGATCAGGGCTACGTGGCACACATCCACGACTTTTTCGCCGCCGGCGTCGCGGCAGGGACCCTTGAATACTCCACCCGGCCGGCCACTGTGGACGTCGAGACGGAATCCCCACTCCTGATCGGGACCACGGTGGCGGACTTCCGCAACCTGTGGGGCCATCCGGCCAACGCCAGGATCGTGTCCGACAACAATCCGGCGGCAGCCTTCGATGAACTGGTGGCCTCTGTGGGCGGGCTGGCGCGCAGGCTGGCTGGCGGGCATGGCGCCCAGCGGGCCAGGCGCTAAMISLLLDVDTGIDDAVALAYLASLPDVEFVAVTASAGNAGVHQVARNTLALLELCGRRGVEVAVGAEAPLEIPLVTTPETHGPQGLGHAVLPPPSGSVSERDAADLWVQAARARPGELTALITAPLTNFALAIRREPRLPELLRKTVIMGGSFYHQGNTTPLAEWNTHVDPHAAKEVYAAYRGLPAEQLPIVCSLDTTERIELRPEHVRRLAEAAGCAVEELVLPDQPEGLRSTSDNELVRHLSDALRFYFEFHRRYDQGYVAHIHDFFAAGVAAGTLEYSTRPATVDVETESPLLIGTTVADFRNLWGHPANARIVSDNNPAAAFDELVASVGGLARRLAGGHGAQRARRPGPT0013465_450DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013465-iunH-K01239NANA
D1-29_01801810hypothetical proteinATGTCATCCTCGTCCCTGACGCTGCCCGAAACCACTGAGGCAGCCTCGCGAAAGCGCCGCGTCCTGGAGATCCTCGGCGCAGCCGCCATCGCGGGAACCTACATCTACCTGGTGATGAACCAGCCGGCGGACATCGCCTCGGGGCCCGGCAGTGCGTCGGCCCTGATTGCCCTGTCAGGTTTCCTGGTGGGCGCCATCCTGCTGGTGGTGGCCGTACTGCCTACCCTTCCCACCACCACCGTGGTGCTGATTCCTGTGGCGCTGGTGCTGAACATCGTGATGGGCCAGTTTGTGGGAAGCACCCTGGTGCCGTTCTACCTCGACGCGATCGGAACGGTGCTGATCGCCGTCCTGGCTGGGCCGGCGGCAGGAGCTGCCACCGGTGCATTGAGCAGCATCGTCTGGTCCTTCTTCAATCCCACGGTCCTGCCTTTTGCCGCGGGCGCCGCCCTGATCGGATTCCTTGCCGGCCTGGCCGCACGCCACGGCTTCTTCCGCCGGTTCTACCTTGCCCCGGTGGCCGGTTTTATCACCGGCGTCCTCGCGGGCGTGGTGTCGGCCCCCGTGGCGGCGTTCGTCTTTGGCGGCACGTCAGGGGTGGCCACCGGCGCCATCGTCAGCGCGTTCCGTGCCATGGGCGACACGCTCTTCGCCGCCGTCACCAAGCAGGCCCTGATCTCGGACCCCATGGACAAGGCCATCGTCTTCACGATCGTTGCCCTGCTGGTCTATGCGCTGCCGCGCAGGGTGACGTTCCAGTTCCCGTTTGTGCGGCAATTCCGGGTCCTGGCCGGACGCAAGGATTCCTAGMSSSSLTLPETTEAASRKRRVLEILGAAAIAGTYIYLVMNQPADIASGPGSASALIALSGFLVGAILLVVAVLPTLPTTTVVLIPVALVLNIVMGQFVGSTLVPFYLDAIGTVLIAVLAGPAAGAATGALSSIVWSFFNPTVLPFAAGAALIGFLAGLAARHGFFRRFYLAPVAGFITGVLAGVVSAPVAAFVFGGTSGVATGAIVSAFRAMGDTLFAAVTKQALISDPMDKAIVFTIVALLVYALPRRVTFQFPFVRQFRVLAGRKDSNANANANANA
D1-29_01802804ykoC_1Putative HMP/thiamine permease protein YkoCTTGTGCGGCAATTCCGGGTCCTGGCCGGACGCAAGGATTCCTAGGCTGGGCCGGATCAGCCCGCTGACCCAGCTCACCGCCGTCGTCACCGTTGTGGTGGTGACGACGGCGGTGGGCCAGTGGGTTGTTTCGCTTTCCGTGCTGCTTGCAGCGGCGGCGATCACGGCCTTCGCCGGGACGGCACGTGCCGTCTGGGCCGCGGCCGGCCTTGTCCTGCTGCCGCTCGCGGCGTCCCTGCTGCTGACCCATGGACTGTTCTTCCCTGAGGGCAGCACAGTCCTCTGGACATTCGGCCCTGCCAGGCTCACCGCGGAAGGGCTGGGCGTTGCCGGATCCCTGGTGTTGAGGGCAGCGGTGCTGGTGGTCCTCCTGCTGACGCTCTCCTTCAGCATCCAGCCCGCGGACATCATGGCACTGTGCGCGAAACACGGTGTCCCCGCGCAGTTGGGCTTTGTGCTCTGTTCCACCCTTACCATCGCGCCGCAGATCAGGCGGCGGGTCCAGCGGATCCGGGAGGCACAGCAGCTCCGGGGCCTGTACTCCGGGAGATCGCTTCCGGCCCGGCTGGCCTCCTTCCGTGTGCTGGCCCTTCCGCTGCTGCTCTCCCTGCTCCACGATGCCGGCCAGCGCGCCGCTGCCCTGGAGACCCGGGGCTTCGGGGGCACCGCCTCCCGGACCAGCCTGCGGGAGGTTCCTGATTCCAGGTTCCAGTCCGTTCTCCGCTGGTCCCTGCTGGCCGGGCTGGCGGTCTTCCTGGTCCTGTGGTTCGGACCGGCGGGAGGCAGCGGTGCGCCTCAGCCTTAGMCGNSGSWPDARIPRLGRISPLTQLTAVVTVVVVTTAVGQWVVSLSVLLAAAAITAFAGTARAVWAAAGLVLLPLAASLLLTHGLFFPEGSTVLWTFGPARLTAEGLGVAGSLVLRAAVLVVLLLTLSFSIQPADIMALCAKHGVPAQLGFVLCSTLTIAPQIRRRVQRIREAQQLRGLYSGRSLPARLASFRVLALPLLLSLLHDAGQRAAALETRGFGGTASRTSLREVPDSRFQSVLRWSLLAGLAVFLVLWFGPAGGSGAPQPPGPT0004015_2347DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
D1-29_018031671ykoD_1COG1122Putative HMP/thiamine import ATP-binding protein YkoDGTGCGCCTCAGCCTTAGATCGTTCAGCTACCCGGACAGTGCCCGGCCCGTCCTGGCGGACGTTGACCTGGCGGTGGGGCCGGGCGCGTACGTGCTGGTGGCGGGCGGCTCGGGCAGTGGGAAGACCACGCTGGGGCTCATCCTTGCCGGGGTGCTTCCCGGGCAACACCGCGGCACCCTGCACGGAAGCATCACGCTGGGCGCTCATTCCCTGGAGTTTCCGGCTGCCCAGGCGGCGCGGATCGACCATCAGTACTGGGGCACCCTGGTGGGCTACGCCGGCCAGGACGCCGCCGCGCAGCTTTCCACTGTCGCCCCGACGGTGGCCGAGGAGATAGCCTTTCCACTGGAAAACGCCGGCATGGCCCGGGAGGACATGCAGGCGCGCGTCCGTGAAGTGGCGGCGGACCTGGGCCTGACCCCGCTGTTGGAGCGGGACCCGGGCCTGCTGTCCGGCGGCCAGCAAAAGCTTGTGGCTCTCGCTGCCGCGATCGCACCGCGGCCACGCTTCCTGGTTCTCGACGAGCCACTTGCCAGCCTTGACCTCCAGGCGCGGACGCGTGTTAGTGCGGCAATAGCGGCCCTTTTGGGCGGCGGTATGGGTGTTGTTGTGCTCTCCCAGGACCTCGCCGCGGCAGGAAACGCCGGCGGCAACGGAGCCGGAAGCGGAACCGGAGCCGCGTGGGTCCCGGACCAGGTGGTGTTGCTGGCGGGCGGCCGGGCGGTCTTCACGGGCGCGGCTGCTGAAGCAGCGGGCGCCGCCACGGACCTCGGGCTGCCGGTGCTTGGTTTTGGCGCGCAGCCGGCGCCACAGGAACCTGCGCGGGCACCCGAACTCCCAGGACCTGGCGGACCCTTGCCGGCGGAACCTGCCGGATCCCTTCCTGAGGCTTTGCCTGTGGAAGCTCCTGTCGTGGCAGCTGAGGGGCTGCGCTTCGCATATAGTTGGCGGAAACCCCGTCCCTGGCGGCGCAGCCCCCAGGCGTCGCGGGTGCTTGAGAATGTGGGCCTCACCGTGGCCGCGGGGGAGTGTGTTGCGGTGGCCGGGGCCAACGGCTCCGGAAAATCCACTTTGCTGCGGCTGCTGACGGGACTGTCCACACCGCAGTCCGGAACAGTGCTGCTCAGGCCCCTCTCCGGCCCCGCGGCCGCCTCCACGGGCTCCGGCCCAGCGGTGGGCGCCCTGCTCCAGCATCCCCTCGAGCAGCTTTTTGAGCGGACCGTCCGGCGCGAAGTGGGCGCGGGCCTGCCCCGCAGCCTCGGCGACGCGGTTCGTGGGGAGCGTGTAGACACGGCACTGCGCCGTTCCAGGCTGCTGGAAGCCGGAGGCGTGCACCCTTACGAGTTGCCGGCGTCCGGCCAGCGACTGGCAGCCCTTGCGGCCCTGCTTGCCCAGGCGCCGCGGTTTATCGCCCTGGACGAGCCCACCGTCTCCCTGGACCGCCAGGGCTTGGACGTGCTGGCCGAAGCCATTGCCGCCGAGGCCGGCCGAGGGGCCGCCGTGGTGATGGTCACCCACGACCTTGATTTCGCCTACCGCACGTGCAGCAGGCTCCTGGTGCTGAATGAAGGACGGCTGGCAGCCGACGGCCCTTTCGGCGAGGTGCTGGAGTCACATTTCAGCTCGGGCGTCGCCTTCGGCGTCGCGGCACCGGGCGCCTGGCTGGCTTAAMRLSLRSFSYPDSARPVLADVDLAVGPGAYVLVAGGSGSGKTTLGLILAGVLPGQHRGTLHGSITLGAHSLEFPAAQAARIDHQYWGTLVGYAGQDAAAQLSTVAPTVAEEIAFPLENAGMAREDMQARVREVAADLGLTPLLERDPGLLSGGQQKLVALAAAIAPRPRFLVLDEPLASLDLQARTRVSAAIAALLGGGMGVVVLSQDLAAAGNAGGNGAGSGTGAAWVPDQVVLLAGGRAVFTGAAAEAAGAATDLGLPVLGFGAQPAPQEPARAPELPGPGGPLPAEPAGSLPEALPVEAPVVAAEGLRFAYSWRKPRPWRRSPQASRVLENVGLTVAAGECVAVAGANGSGKSTLLRLLTGLSTPQSGTVLLRPLSGPAAASTGSGPAVGALLQHPLEQLFERTVRREVGAGLPRSLGDAVRGERVDTALRRSRLLEAGGVHPYELPASGQRLAALAALLAQAPRFIALDEPTVSLDRQGLDVLAEAIAAEAGRGAAVVMVTHDLDFAYRTCSRLLVLNEGRLAADGPFGEVLESHFSSGVAFGVAAPGAWLANANANANANA
D1-29_018042187fadJ_2COG1024Fatty acid oxidation complex subunit alphaATGAGCGCCGCAGATTTCACCAAGCTCACCCAACTCTTCCCCGACGAGACAGTGACCCATTCGTACGTCCAGGACATCCAGCTTCCGTCGGCGCACGGGAATCCCAGTCCCGGCACCTTCGCCCTGATCACGCTGGACAACGGCCTGGACCATACCAAGCCCACCACCCTGGGACCGAACACCCTGGTGGAGCTCGGAACGGTACTGGAAGGGCTCCGCGACCGTGCAGCCCGTGGTGAAATCGTGGGCGTCGGCGTCACCGGGAAGCCGTACTTCCTCGTGGCCGGCGCTGACCTTTCTGCCGTCAAGTCCCTCGAGAAGCGAGACCAGGGGCTGTGGATGGCCCAGCTCGGCCACGACGTCTACGCCACGCTGGCCAACCTGGGCGTGCCCAGCTTTGCCTTCATCAATGGCGTGGCACTGGGCGGCGGCCTGGAGATCGCTTTGCAGGCCACGTACCGGACCGTCTCATCAGGGGCCGGTGCCCTGGGGCTGCCCGAGGCATTTATCGGCCTGGTGCCGGGCTGGGGCGGAGTCTATATCCTGCCCCGGCTGATCGGGCCCGAAAATGCCGTCCAGGTGATGATCGAAAATCCGCTCAGCAACAACCGCACCCTCAGCGGGCCACAGGCGTTCAAACTCGGCGTTGCGGACGCCCTGTTCGAGCCCGCAGATTTTCTTGAGCAGTCCCTCGCCTGGGCTGCCTGGGTTATCTCCGGTGAGGTTGTCCCGGAGCGGCCCAACGCCGTCGACCCTTCCGACCCTGCAGTGGTGCAGCGCTGGGGTTCCGCCGTGGCCGCCGGCCGTGCGTTCATCGAAGCCAAGACGTCCAACGCATCGCCGGCTCCGGCCAAGGTCCTGGACATCATGGAGGCGAACCGCACCCTGACCCAGGCGGAGTCCGCTGAGCTTGAGTGCGAAACTCTCGCCGGGCTGATGCAGACCGACGAGTTCCGTGCCACCGTCTACGCCTTCCTGGACCTGGTCCAGAAGCGTTCCAAGCGGCCGGCCGGAGCCCCTGACCGGAAACTGGCGCGACCCGTGACCAAGGTCGGTGTTGTGGGTGCCGGCCTGATGGCAAGCCAGCTGGCCCTGCTGTTCGCCCGCCAGCTCAAGGTCCCCGTGGTGATGACGGACATCGACCAGGCCCGCGTCGACAAGGGTGTGGGCTATGTCCACGCCGAGGTGGACAAGCTGCTGGGCAAGAAAAAGATGAGCCAGGACGCGGCCAACCGGACCAAGGCCCTGGTCAGCGGGTCGGTTTCCAAGGAGGTGTTCGCGGATGCCGACTTTGTGATTGAGGCCGTTTTTGAGGAGCTCAACGTCAAGAAGCAGGTGTTTGCCGAGGTGGAGGCCATTGTGTCGCCCGAGTGCATTCTGGCCACCAACACGTCATCCCTTTCCGTGACGGCGATGGCCCAGGACCTCCAGCATCCGGAACGTCTCGTCGGATTCCACTTCTTCAACCCGGTGGCGGTGATGCCGCTGGTGGAGATCGTCCGTGCGCCCCGGACGGACGACGCCGTCCTGGCCACCGCCTTTGAGCTTGCCAAGGGCCTGAAGAAGACCGGTGTGCTGGTCAAGGACGCCGCCGCGTTTGTGGTCAACCGGATCCTCCTGCGGCTGATGGGTGAGGTCACGGCAGCCTTCGACGAGGGGACTCCCGCGGAGGTCGCGGACAACGCGCTGCGGCCCATGGGGCTGCCCATGACCCCCTTCACCCTGGGCGCCATGGTGGGCCTTCCGGTGGCACAGCATGTCCAGGAGTCATTGCACGCCGCGTTCGGGGACCGGTTCGCTGTCTCCGCCAACCTGCAGAAACTGATCGACAACGGCGTGAAATCGCTCTGGGTGCCCACCCCCGACGGTTCGCAGGAGATCCCGGAGTCAACACTGGCGCTGATGTCCTTTGGCTCGTCCCCGTCCACCGGCGAGGAAGTGCTGCGCCGTACGCACGATGCCCTGGCCGAGGAGATCGGGCTGATGCTGGCCGAAGGAGTGGTTGCCGGGCCTGAGGACATCGATCTCTGCATGATCCTGGGCGCGGGCTGGCCCATGTTCCTGGGCGGCATCACTCCCTACCTGGACCGGGTGGGGGCATCCGAGCGGGTCAACGGCAAAAGGTTCCTGCCGGCAGGCGTCGCATCCCGTGCGTCACAGGAGAGCGTGGAAAGCGCCGTTTCCTAAMSAADFTKLTQLFPDETVTHSYVQDIQLPSAHGNPSPGTFALITLDNGLDHTKPTTLGPNTLVELGTVLEGLRDRAARGEIVGVGVTGKPYFLVAGADLSAVKSLEKRDQGLWMAQLGHDVYATLANLGVPSFAFINGVALGGGLEIALQATYRTVSSGAGALGLPEAFIGLVPGWGGVYILPRLIGPENAVQVMIENPLSNNRTLSGPQAFKLGVADALFEPADFLEQSLAWAAWVISGEVVPERPNAVDPSDPAVVQRWGSAVAAGRAFIEAKTSNASPAPAKVLDIMEANRTLTQAESAELECETLAGLMQTDEFRATVYAFLDLVQKRSKRPAGAPDRKLARPVTKVGVVGAGLMASQLALLFARQLKVPVVMTDIDQARVDKGVGYVHAEVDKLLGKKKMSQDAANRTKALVSGSVSKEVFADADFVIEAVFEELNVKKQVFAEVEAIVSPECILATNTSSLSVTAMAQDLQHPERLVGFHFFNPVAVMPLVEIVRAPRTDDAVLATAFELAKGLKKTGVLVKDAAAFVVNRILLRLMGEVTAAFDEGTPAEVADNALRPMGLPMTPFTLGAMVGLPVAQHVQESLHAAFGDRFAVSANLQKLIDNGVKSLWVPTPDGSQEIPESTLALMSFGSSPSTGEEVLRRTHDALAEEIGLMLAEGVVAGPEDIDLCMILGAGWPMFLGGITPYLDRVGASERVNGKRFLPAGVASRASQESVESAVSNANANANANA
D1-29_018051311paaJ_1COG01833-oxoadipyl-CoA/3-oxo-5,6-dehydrosuberyl-CoA thiolaseGTGAGCAACCACGGAAGCAGCGGATCTTCGCGCACTGTCCGCGACGTCGTTTTTGTCGACGGCATCCGCACCCCCTTTGGCCGCGCAGGTGAAAAGGGAATTTATGCAGGAACCCGTGCCGATGACCTGATGGTCAAATGCATCCGGGAGCTTCTGCGCCGCAACCCTTCCCTGCCGGCTGAGCGGATCGATGAAGTAGCGGTTGCTGCCACCACCCAGACGGGGGACCAGGGCCTTACCCTGGGACGTACCGCCGCCCTTCTGGCCGGACTCCCCCGCACTGTTCCTGGCTTCGCGATCGACAGGATGTGCGCGGGTGCCATGACTGCCGTGACCACAACGGCCAGCGGCATTGGTTTTGGCGCCTATGACGTTGTCATCGCCGGCGGAGTGGAGCACATGGGCAACCACCCCATGGGCTCCGGCGCGGACCCCAACCCACGGTTCATGTCCGAGCGCCTGGTGGATCCCGCGGCGCTGAACATGGGCAACACCGCCGAGAACCTGCACGACCGCTTCCCCGCCATCACCAAGGACCGGACCGATGCGTACGCCGTCGCCTCCCAGGACAAGCTGGCCGCGGCCTATGAGAAGGGCCAGATCCAGCCCGACCTGGTGCCGGTTGCCACCCTCAAACCGGGCCAGGGTTGGTCGCTCCAAACCGTTGACGAGCCGCCCCGTCCAGGCACCACACTGGAAGACCTTGCCGCCCTGCGCACCCCTTTCCGCGCGCACGGCCGCGTCACCGCGGGCAACGCCGCCGGATTGAACGACGGCGCCACCGCCGCCGTCCTGGCCTCCTCCGATGCCGCCGCAGAGCTGGGATTGCCGGTCAAGATGCGCCTGGTCAGTTACGCGTACGCAGGCGTTGAGCCTGAAGTCATGGGAATTGGCCCCGTGCCTGCCACCGAGAAGGCGCTGAAGAACGCGGGCCTGGATATCAGCGACATCGGGCTGTTCGAAATCAACGAGGCCTTTGCCGTGCAGGTGCTCAGTTTCCTGGACCACTTCGGAATCTCCGACGACGACCCCCGGGTTAACCGCTACGGAGGCGCCATCGCCGTGGGCCATCCGCTCGCGTCCTCAGGCGTGCGGCTCATGAACCAGCTGGCCCGGCAGTTCGAGGAGGACCCCTCCGTACGGTACGGAATGACCACCATGTGCATCGGACTCGGCATGGGAGCCACGGTGATCTGGGAAAACCCGCACCACGCCGATTACAGCGGCGCCGCGGCAACACCTGCCGCCGGCACCACAGCATCCCCCACCGCATCCGCCCCGACGGCAGACACTGAAGGAGCAGCAGCATGAMSNHGSSGSSRTVRDVVFVDGIRTPFGRAGEKGIYAGTRADDLMVKCIRELLRRNPSLPAERIDEVAVAATTQTGDQGLTLGRTAALLAGLPRTVPGFAIDRMCAGAMTAVTTTASGIGFGAYDVVIAGGVEHMGNHPMGSGADPNPRFMSERLVDPAALNMGNTAENLHDRFPAITKDRTDAYAVASQDKLAAAYEKGQIQPDLVPVATLKPGQGWSLQTVDEPPRPGTTLEDLAALRTPFRAHGRVTAGNAAGLNDGATAAVLASSDAAAELGLPVKMRLVSYAYAGVEPEVMGIGPVPATEKALKNAGLDISDIGLFEINEAFAVQVLSFLDHFGISDDDPRVNRYGGAIAVGHPLASSGVRLMNQLARQFEEDPSVRYGMTTMCIGLGMGATVIWENPHHADYSGAAATPAAGTTASPTASAPTADTEGAAAPGPT0001565_554DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-29_018061341rndRibonuclease DATGACCCCTCACATTCCGGATAACACCACAGCCGGCGCTCCGGCTGCTGACTCCACTCCCCACATCACAGTGGACGGCTTCGACAGCCCCATCCCCGTGGTCATTGATCTCGACACACCCCGTGAGGGTGTGCCACTGGTGATCGAAACCCAGTCCGGGCTGGAACGGTGCGCCGCCGCCATCGCCGCCGGCACCGGCCCGGCGGGGGTTGATGCCGAACGGGCGTCGGGCTTCCGGTACGGCCAGCGTGCCTTCCTGGTCCAGATCCGCCGCGAAGGCTCGGGGACCTGGCTCATCGACCCCGAGCCCTTCAACGACCTGGCCATCATTAACGACGCACTCAAAGGGGTTGAGTGGATCCTGCACGCGGCCAGCCAGGACCTGCCATGCCTGCTGGAACTGGGCATGTGGCCCGACAAACTGTTCGATACTGAGCTCGCGGCACGGCTCGCCGGACTCCCGCGGGTGGGCCTGGCGGCCGTCATTGAGCAGCTGCTCGGCTTCGGCCTGGCGAAGGAACATTCCGCCGCTGACTGGTCCACCCGGCCGCTGCCCGAGCCCTGGTTGCGGTATGCGGCCCTGGATGTGGAAGTTCTGACGGAACTGCGTGAGGAGCTCATCGAACTCCTGCAGGCGGACGGCAAACTCGAGTTCGCGGAGCAGGAATTTGCGGCCATCCTTGCCGCGGGCGTTGCGCCGCCGCGGATCGATCCGTGGCGCAAGACCTCGGGCCTGCATCAGATCCGGGACCGCCGCCAGCTGGCCGCAGTCCGTGAGATGTGGCTGGAGCGGGATTCCCTGGCGCAGAAACGGGACGTAGCCCCCGGCCGGCTCATTCCGGATTCCGCCCTGGTGGCCGCGGCCAAGGCCATGCCCTCCACCGTGCCCCAGTTGCTGGGAACCAAGGGCTTCCACGGGCGTGCGGCACAACGTGAGGCGCCGCGCTGGCTCCGCTGCATCGCCACGGCCAGGGATCTCGCAGATCTTCCTCCCCTGCACCTGCCCACCAATGCTCCGCCGCCACCGCGGGTCTGGGCTGACCGTGATCCTGAGGCGGCAGCACGCCTGTCCACCGCGCGCCCGCTCCTGCAGGAAAAAGCCGAGGCGCTGAACCTGCCTGTCGAGAACCTGCTGACTCCCGACTATCTGCGCCGCGTCGCGTGGCGCCCTCCCGCAGAGATCACCGAAGCGTCTGTCGCAGAGGAACTCCGTGTCCTCGGTGCCCGCGAGTGGCAGGTCGGCGTTGTCGCACCGCTCCTTGCCGAGGCATTCCTCAATCCCCAGCCGTTGCCTCCCAAAGAGCCGCGGGAGCCCAAAGCTGCGGCTGCTGCCACCGACTAGMTPHIPDNTTAGAPAADSTPHITVDGFDSPIPVVIDLDTPREGVPLVIETQSGLERCAAAIAAGTGPAGVDAERASGFRYGQRAFLVQIRREGSGTWLIDPEPFNDLAIINDALKGVEWILHAASQDLPCLLELGMWPDKLFDTELAARLAGLPRVGLAAVIEQLLGFGLAKEHSAADWSTRPLPEPWLRYAALDVEVLTELREELIELLQADGKLEFAEQEFAAILAAGVAPPRIDPWRKTSGLHQIRDRRQLAAVREMWLERDSLAQKRDVAPGRLIPDSALVAAAKAMPSTVPQLLGTKGFHGRAAQREAPRWLRCIATARDLADLPPLHLPTNAPPPPRVWADRDPEAAARLSTARPLLQEKAEALNLPVENLLTPDYLRRVAWRPPAEITEASVAEELRVLGAREWQVGVVAPLLAEAFLNPQPLPPKEPREPKAAAAATDNANANANANA
D1-29_01807651hypothetical proteinGTGAACGCACTCGCCCAGGTTCCCCCGGAGTTCCTCCACGCCTTGGGGACCCTCAGGAAAGCCCATTGCCGCAGTGAACTGCGGCTCGCAGAGATTCCTGCCCCGGCACGCCTGGCGCCCTACGCCGTGGCCCTGGGAGCCGAAGTCATGGCGTCCGGTCCGGGCAGCGGGACGGTGCCCGTCCACGGGCCTGCCGCCATGGCCCTGGCGGCAGCATCCGGGACGGAGGAGGATGACGACGCCGAACTCGCCACAGGCCGTTTTATCCTCCTGCACGACCCCGACGGGTCGGCCGTCTGGGACGGCGAATTCCGCATCGTCACGTACATCCGCGCCCAGCTTGAGCCGGAAATGGGCAATGACGAGATGCTGGGCACGGTGGCCTGGACCTGGCTCGTTGAGGCCCTCGAGAACCATAAGGCCCCGTACCGTGCCGCGGGAGGTACCGCCACCCGCGTACTTTCGGAAAGCTTTGGGACCCTATCCGACAGGCCCGGCTCGATCGACATCGAACTCCGCGCCTCCTGGACGCCGGCCTCCTCAGATGTCACGGCGCATCTGGAGGCGTGGTCCGACATGGTGTGCACCTTTGCCGGGCTTCCCCCTCTTCCTGACGGGGTTTCCGCCCTGCCGCGACGCCGTCGGAACTAGMNALAQVPPEFLHALGTLRKAHCRSELRLAEIPAPARLAPYAVALGAEVMASGPGSGTVPVHGPAAMALAAASGTEEDDDAELATGRFILLHDPDGSAVWDGEFRIVTYIRAQLEPEMGNDEMLGTVAWTWLVEALENHKAPYRAAGGTATRVLSESFGTLSDRPGSIDIELRASWTPASSDVTAHLEAWSDMVCTFAGLPPLPDGVSALPRRRRNNANANANANA
D1-29_018081110ltaE_2Low specificity L-threonine aldolaseATGACAAGCACCACTGCGGAAACTGTCCCGCGAACCGGGATCCGCCTGCATGATCCATCCGTCCGGGGCTTCGCGTCGGACAACTATTCGGGGGTCCATCCCGAAGTCCTGACCGCGCTGGCAGCGGCAAACGACGGCCACCAGGTCTCCTACGGCGAGGATGAGTACACCGCGCGGCTGCAGGAACTCATGGAGCAGCACTTTGGGCCCGGCATTGAATGTTTTCCCGTGTTCAACGGAACCGGAGCCAACGTCCTCTCCCTCCAGTCGCTGCTCCCGCGGTGGGGCGCGGTGGTCTGTGCCGCCACCGCCCACATCAACATGGACGAAAACGGTGCGCCTGAGCGGATCGGCGGCATCAAGCTCCTTTCCGTCCCCACGCCGGACGGGAAACTGACCCCGGAGCTGATCGACCGGGAGGCGTGGGGCTGGGGCGATGAGCACCGGGCCCAGCCCCTGGCCGTCTCCATCACCCAGACCACGGAACTGGGCACGTGCTACACACCGGAGGAGGTCAGGGCCATTGCGGAGCACGTCCACTCCAGGGGCATGAAACTCCACATGGACGGCGCACGGCTGGCCAATGCTGCCGCCCACCTGCAGGTGCCACTGAGGGCTTTCACGCGCGACGCCGGTGTGGACATCCTGTCCTTCGGCGGCACCAAGAACGGGCTGCTCTTCGGTGAGGTGGTGGTGGCCCTGAATCCCGAGGCCGCGCACGGCCTGGTTTACCTGCGCAAAATGAACATGCAGCTGGCGTCCAAGATGCGGTTTTTGTCGGCCCAGTTCATCGCGCTGCTGGAAGGTGACCTGTGGCTGCGCTCTGCCTCCCACGCCAACGCAATGGCGGCCCGGCTTCGCGCAGCCGTGGACACCATCGACGGCGTCGAGCCGACGCAGAAAACCGAATCCAACGGCGTTTTTGCGATCCTGCCCAAGGGTGTGGCAGACAGGCTGCGGAAATCCTTCCGCTTCTACGACTGGAACGAGGCGGCACACGAGGTCCGCTGGATGTGTTCCTTTGATACAAACGAGGATGATATTGATGCCTTTGTTGACGCGATCCGCCGGGAGCTTGCCCACCATCAGTCGGGCCAGGCCGCCACGTAGMTSTTAETVPRTGIRLHDPSVRGFASDNYSGVHPEVLTALAAANDGHQVSYGEDEYTARLQELMEQHFGPGIECFPVFNGTGANVLSLQSLLPRWGAVVCAATAHINMDENGAPERIGGIKLLSVPTPDGKLTPELIDREAWGWGDEHRAQPLAVSITQTTELGTCYTPEEVRAIAEHVHSRGMKLHMDGARLANAAAHLQVPLRAFTRDAGVDILSFGGTKNGLLFGEVVVALNPEAAHGLVYLRKMNMQLASKMRFLSAQFIALLEGDLWLRSASHANAMAARLRAAVDTIDGVEPTQKTESNGVFAILPKGVADRLRKSFRFYDWNEAAHEVRWMCSFDTNEDDIDAFVDAIRRELAHHQSGQAATPGPT0020465_421DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
D1-29_01809756hypothetical proteinGTGAATGAGGGCACAGCCCCTAACGTCCTGGTCACCGGGGGCAGCGGGGCGTCAGGGGTTGCCGTGGCCGGGGCGCTCCTGCAGGCCGGCTATCGGGTCTTCACCGTAGGTTCAGACAGGGCCCGCATCGAGGAAGCGGCGGCGAAGGCGGGCGACGGCGTTACCCCGCTGGTGTGCGATCTCGCCGGCCTGGCCGAAGTGCAGGAGCTGCAGGACTATCTTGCCAGCGCCGGCGTCAGCATTGATGCGGTCATCCACCTCGTGGGCGGCTGGCGCGGCGCAAAAGGCATCGCGGACCAAAGCGATGCCGACTGGGAATTCCTGGAGCGCGCAGCCATCACCACGCTCCGGAATGTCTCCCGCGTTTTCTATGACGACCTGGCCGCCTCGAGCTGTGGCAGGTTCGCGATGGTTTCCTCTACCTCGGTGGGAAAACCCACTGCTGCCGCCGCCAGCTATGTGGCGGCAAAAGCAGCCGCGGAAACGTGGACCATGGCCATGGCGGAGGGCTTCGCCCGCACCATCCGCGCTGGATCGGCAACAGAATCTGAAACTGAATCTGCGGGCGGTCCGCTCCGTTGTGCCGCCGTCGTCCTGGTGGTCAAGGCGCTGGTGGACGCTGACATGCGGAAGCAGCACCCGGAACGGAATTTTCCCGGAGCCACCGACGTCGAGGACCTGGCACGCGCCGTCGTCGAACTTTTCACAAAGCCTGCCGATGAGCTGAACGGCCAGCGCCTGCTGCTGGCCCCCTGAMNEGTAPNVLVTGGSGASGVAVAGALLQAGYRVFTVGSDRARIEEAAAKAGDGVTPLVCDLAGLAEVQELQDYLASAGVSIDAVIHLVGGWRGAKGIADQSDADWEFLERAAITTLRNVSRVFYDDLAASSCGRFAMVSSTSVGKPTAAAASYVAAKAAAETWTMAMAEGFARTIRAGSATESETESAGGPLRCAAVVLVVKALVDADMRKQHPERNFPGATDVEDLARAVVELFTKPADELNGQRLLLAPPGPT0003180_22272DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_018101404hypothetical proteinGTGACCGAGACTGTGATCAGTGCCCCCACCAGGATTTCTGCGGAGCACCCCGGCTGGCTTCGCCTCAAGGCCGCTGCCATTGCCCTGCAGGAGCTCCAGGTGCAGGAGGGATCCGTCCCTGCACCCGAGGATCACCCTGCTGCCGCTGCCCGGGTTGCGGCCATCGTTGAGGCGCTGGCCGGGCTTGCCCCGCTTTTCCCGCATGACGAGGCCTACCTGGCCGCCGCCGCCCGGGATTTCGAGGCGTGGGCCGGCGCCGGCTTCGGTGTGCCGGATTTCCTCTCCTCGCTCCTGGCGTTCCAGCCCCAGCAGCAGCGCCATGACGGCCTGCAGCATGTTGTGGTGTTCCCCATGTACACCCAAAACGGGAGCAGCAGCAGGCTCGTGGAAGCCGTGCTGATCGAGGTGGTCTGGCCGGATTTCATCGCCGGGCTGGAGGCCGGCGACTACTCCAACCAGCTGTTTGTGCCCATCCGCTTCCTGGATTTCACCCCCGGCTACAACACCAACTCTGCCGTCCTGTTCCCTGAAACAGTGGCGGTGCGCGAGACCCCCGCTTTCACGTGGGGCGCCATATTTGCGGACCGTGAAGCGGCCCGGTTCCGGCGCGTCCTGCGGGCGGCTGCGGAGATCACGTCGCTGGAACTGCCGCCCGGTGCTGCCGAGCTGCTGGAGGACCAGGAACTGACGGAAGCCACGTTTGTGATGTGGGACCTCATCCACGACCGCACCCACATGCGCGGGGACCTGCCATTTGACCCGTTCATGATCAAGCAGCGCATGCCGTTCTTCCTGTATTCACTGGAGGAACTCCGCTGCGATCTCACAGCCTTCCGGGAGTCTGTCCGGCTTGAAAAGGACGACGACGCCCAGCCTGAAGCCCGCCGGCACGCCAAATTGGTGCAGTACGCCATCATCTTCGACCGGATTTTCCGTTTTGCCATCACCGGCAGCCGGGTGCGTAACTATGACGGCCTGGGCGGCCAGCTGCTGTTCGCCTGGCTGCACCAACACCATGTCCTGCACTGGACGGACAGCAGGCTCAGGATCGACTGGGACCAGGTGGCGGACGCCGTCATCGCGCTGGGAGCTAAGATCGATGACCTGTACTGGCGCTCCATCGACCGGCCAAAAATGGCACACTGGCTTGCCGCCTATGAGCTGATTTCGGCCACCGTTACGCCCCACCCTGCTTCCGTATGGGCCAGGGGCACCGACGCACTGCCCCTCACCGGCCCTCCCCGTGGCCTCACGGACCAGGTGCTGGATGACGAATTCCCGCTGTCCATGTTCTATGAAGCATTGGAGAAGAAGATGCGTCCTGTCATCGAGTCAACAGCCGGCATTACCGGCAAGTCCAGCATCACCGGCAGTTCCAGCATCACCGGCAGTTCAGCGCAGTGAMTETVISAPTRISAEHPGWLRLKAAAIALQELQVQEGSVPAPEDHPAAAARVAAIVEALAGLAPLFPHDEAYLAAAARDFEAWAGAGFGVPDFLSSLLAFQPQQQRHDGLQHVVVFPMYTQNGSSSRLVEAVLIEVVWPDFIAGLEAGDYSNQLFVPIRFLDFTPGYNTNSAVLFPETVAVRETPAFTWGAIFADREAARFRRVLRAAAEITSLELPPGAAELLEDQELTEATFVMWDLIHDRTHMRGDLPFDPFMIKQRMPFFLYSLEELRCDLTAFRESVRLEKDDDAQPEARRHAKLVQYAIIFDRIFRFAITGSRVRNYDGLGGQLLFAWLHQHHVLHWTDSRLRIDWDQVADAVIALGAKIDDLYWRSIDRPKMAHWLAAYELISATVTPHPASVWARGTDALPLTGPPRGLTDQVLDDEFPLSMFYEALEKKMRPVIESTAGITGKSSITGSSSITGSSAQNANANANANA
D1-29_01811603msrBPeptide methionine sulfoxide reductase MsrBATGAGCATCTTCGGAAAAGACATTTTCGGCAACAGGGCCACCGGGTCCATTCCGGGCACCCTTGACGGGACGGAAAAAGGCAACGGCACGGAAAAAGGCGACAGCACGGAAAACACTCCTGAAAGCGCAGGCGGCGCTGTGAACGCCGACGGCCTTGCGAGCGGCCAGCAGAAGTCCGATGCCCAGTGGCGGCAGGAACTGACCCCGGAGGAGTACCACGTACTGCGGGAGGCAGGAACAGAACGCCCGTACACCGGCGAGTACTGGGACACCCACACGGCCGGCGTCTATCAGTGCCGTGCCTGTGGGGCCGAACTGTTCACGAGCAACGAAAAGTTCGACTCGCATTGCGGCTGGCCGTCCTTCTGGGCACCGCTGGCGGAGGGCACGGTCCGTTACATCCATGACCGCACCCTCGGGATGGAACGCGTGGAGGTCCGCTGCGCCAACTGCGATTCACACCTGGGCCATGTGTTCGACGGCGAGGGCTACGGAACCCCCACTGACCAGCGCTACTGCATCAATTCCGTCTCCCTGAAGCTGGTGCCCAGAGAAGAAGCCGGCACGGAACCGCGGACGGAAAGCTCCGGCACGGAAAGCTGAMSIFGKDIFGNRATGSIPGTLDGTEKGNGTEKGDSTENTPESAGGAVNADGLASGQQKSDAQWRQELTPEEYHVLREAGTERPYTGEYWDTHTAGVYQCRACGAELFTSNEKFDSHCGWPSFWAPLAEGTVRYIHDRTLGMERVEVRCANCDSHLGHVFDGEGYGTPTDQRYCINSVSLKLVPREEAGTEPRTESSGTESPGPT0013070_822DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305NANA
D1-29_01812492hypothetical proteinATGAGCGAGCCAATCGTCATCCTGACCGAAGAACCCCTGGGCGCGGACGACCGCCTGAATATTGAACGGCTGGTGGACGGCGCAGACACGCATCTTGTGTTGCTGGTCCCGGCGAATACCGAGCGCCATCTGCTGGTGGATTTCCTGGAGAATCTGTCCATGCTGGAGGTCGCGAAGGCGTTCCGCGAGCTGACTTCCCATGCCCCTGATCCCGCTGTTGAACGGGCGGAGGCGGCAGAGACACTGACAGTGTCGCTTGGAGCCCTCCAGGGTCTGGGCGGCGGGGTCACCGGCGAGGTGGTGGAAGGTGGCGCCGTCGACAGCCTGGTGGCGAAGGTCAAAGAGCTCGGTGCTGCCCAGGCCGTGGTGATCACCCGCCCGCATGCGGTGGCCGATACTTTCCATACGGATTGGGCCAACAAGGCGCAGGAACAGCTTGGCCTGCCCGTCCTGCACCTGTACGCCGGTTCGGGATTTATCGGTGACTCCTAGMSEPIVILTEEPLGADDRLNIERLVDGADTHLVLLVPANTERHLLVDFLENLSMLEVAKAFRELTSHAPDPAVERAEAAETLTVSLGALQGLGGGVTGEVVEGGAVDSLVAKVKELGAAQAVVITRPHAVADTFHTDWANKAQEQLGLPVLHLYAGSGFIGDSNANANANANA
D1-29_018131287hypothetical proteinATGGCACCTTCTTCACGCACTCCCACTTTGCCGGCCAAACTGACGCCCCAGCCCGACGCCGGGATGTCCCTGCGGGCCAAGTGGACGCTTGGTGGCGTCATCGGCGGTGGTGCATTGGCCGGCCTGCTGGCTACGGGCTCCTCCGCGCTGGCTTTGTATTTCGCCCGGCGCGTCATCACCCCCGCCCGGCAGCGGGTGGCAAACCAGGAAGTGCTGGCCGTGATCCGTGAAGGCCAGGGCCAGCAGATCATTCTGGCGGCCAACGAGGACACCACCGTGGAAGGCGTTTACGGCCTGTTTTTCGACGGCGGCAAGGGGCATGCGCGGATCGGCCGGATCGTCTCCTATTCGCCGGCGGAACGGACGGTGCTTCGGGAGGTGGAGGCCGTCTACTCCGGTGACATCAACACAGCCCACCGGGGATGGTGGAGCGGCGCCGTGTACCCCGATCCTGCCGCCGTCGGACTGCCTGCAGAGGACGTCCTGATCGAGGTGGAGGGCGGCCAGGCTCCTGCCTGGCTGGTAAGGGCAGCGGGGAAAAGCCGCACCTGGGCGATCATGGTGCACGGCCGGGGTGCCACCCGGCAGGAGGCCCTGAGGGCTGTTGGCCCCGCAATGGAACTAGGGCTGACCAGCCTGGTGGTCTCTTACCGCAATGACGGCCTGGCGCCGTCCGCGGACGACGGCCGGTACGGCCTGGGGTCTACGGAATGGCGGGACGTGGAAGCGGGCATCGAGTACGCCCTGGCCAACGGCGCGGAAGAAATTGTCCTCTTCGGCTGGTCCATGGGCGGTGCGATCTGCCTGCAGACGGCAGACCGGTCCCGCTTCCGGCACCTGATCCGCGCCCTGGTGCTGGACGCGCCTGTGATCGACTGGGTCAACGTGCTGGCCCACCATGCCGCGATGAACAGAATCCCCTCCCTGGTGGGGCGGTACGGACAGCTGATGCTGGGCCACCCGCTGGGCCGAAGGCTGACAGGACTGGCCGCACCGGTGGACCTGAAGGCCATGGACTGGGTCTCGCGTGCAGTGGAACTCCGGACACCCACCCTGATCCTGCACAGCGTCGACGACGAGTACGTGCCTTACGGTCCGTCTGCCATGCTCGCGGAGCGGAACCCGGAAATGGTGACCTTTGAAACTTTTAACCATGCCAGGCACACCAAGGAGTGGAACGTCGATCCCGAGCGCTGGGAACGCCTGGTCAAGGCGTGGCTGCGGCAGCAACTCGCGCCCCGGGCCAACCATCCGGGCCAGCCTGCTCAGGAGGCCCCCGAAGCGTGAMAPSSRTPTLPAKLTPQPDAGMSLRAKWTLGGVIGGGALAGLLATGSSALALYFARRVITPARQRVANQEVLAVIREGQGQQIILAANEDTTVEGVYGLFFDGGKGHARIGRIVSYSPAERTVLREVEAVYSGDINTAHRGWWSGAVYPDPAAVGLPAEDVLIEVEGGQAPAWLVRAAGKSRTWAIMVHGRGATRQEALRAVGPAMELGLTSLVVSYRNDGLAPSADDGRYGLGSTEWRDVEAGIEYALANGAEEIVLFGWSMGGAICLQTADRSRFRHLIRALVLDAPVIDWVNVLAHHAAMNRIPSLVGRYGQLMLGHPLGRRLTGLAAPVDLKAMDWVSRAVELRTPTLILHSVDDEYVPYGPSAMLAERNPEMVTFETFNHARHTKEWNVDPERWERLVKAWLRQQLAPRANHPGQPAQEAPEANANANANANA
D1-29_01814429ybaKCOG2606Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaKGTGCTGCATCCTTACAGCCACGATCCCTCGACGGCCAGCTACGGGACGGAGGCCGCCGTCGCCCTGGGCATTGAACCGGAGAGGGTCTTCAAGACCCTGATGGTGGAGGTGGAGGGGCGGCTGGCCGTGGGCGTGGTTCCGGTCAGCGGAAACCTTGACCTGAAAGCCTTCGCCGCGGCTATGGGCGCCAAAAAAGCCACCATGGCTGATCCTGCAGCAGCCGAAAGGCGCACCGGCTACGTTCTGGGCGGCATTTCACCCCTGGGCCAGCGACAGTCCTCCCCCACGGTCATTGACGGCAGCGCCCTGGCACAAGAGACCATGCTCGTCTCAGGGGGAAAGCGCGGACTCGACATCGAACTGGCGCCCGCGGATCTGATCCGGCTGACCGCCGCCGTCACAGCCGCCATCGGCACGACAAAAAGCTAGMLHPYSHDPSTASYGTEAAVALGIEPERVFKTLMVEVEGRLAVGVVPVSGNLDLKAFAAAMGAKKATMADPAAAERRTGYVLGGISPLGQRQSSPTVIDGSALAQETMLVSGGKRGLDIELAPADLIRLTAAVTAAIGTTKSNANANANANA
D1-29_01815465COG2166putative SufE-like proteinATGATGAACACACATGCCCTGCCCGCCGCACTGGCGGAAATCGTTGATGACTTCCAGGCCCTGTCCGAACCGGACCGGCTGCAGTTGCTGCTCGAGTTCTCGCGCGGGCTGCCTGAGCTTCCGGACAGGTTGAAGAACCATCCTGAACTCCTGGAGCAGGTGGTGGAATGCCAGTCGCCGCTGTTCCTCACCATCGAGACGCAGAAGAACGACGACGGCTCCGCGGACGCTGTCCGGCTGTACTTCAAAGCACCGCCGGAAGCGCCCACGACGCGTGGGTTCGCAGGTGTACTGCATGAAGGACTTGACGGTCTCACTGCGGCCGAGATCCTGGCGGTCCCCGACGACATGCCGGAACTGCTGGGCCTCACCCGCGCCATCACGCCGCTGCGGATGCGTGGCATGACGGCCATGCTGGGCCGCATCAAGCGCAAGGTTGCCGCCACCACGCGGCTTCACGCCTAAMMNTHALPAALAEIVDDFQALSEPDRLQLLLEFSRGLPELPDRLKNHPELLEQVVECQSPLFLTIETQKNDDGSADAVRLYFKAPPEAPTTRGFAGVLHEGLDGLTAAEILAVPDDMPELLGLTRAITPLRMRGMTAMLGRIKRKVAATTRLHANANANANANA
D1-29_01816918sseA_1COG2897Putative thiosulfate sulfurtransferase SseAATGTCCTACCCCGTTGAACAGAACGAGAAGTTCGCCGCCTATGCCCGCCCCGAGCGGCTGGTTTCCACCGAATGGCTCGCCGCCGCCCTTGAAACCGGCGCCGTTGCCGACGGAAAGCTTGTGGTGGTGGAGTCCGATGAAGACGTCCTCCTTTATGAGACGGGCCATATACCCGGCGCCGTCAAGATCGACTGGCACACAGACCTGAACGACGAAGTGACCCGGGACTACGTGGACGGCAAGGCGTTCGCAGCCCTCGTGGCTGCCAAGGGCATCTCCCGCGACAGCACCGTGGTGGTCTACGGCGACAAGTCCAACTGGTGGGCTGCCTATGCCCTGTGGGTTTTCACGCTCTTTGGCCACGAGGACGTCCGGCTGCTGGACGGCGGCAGGGACAAGTGGATTGCCGAAGGCCGGGAACTGACCACTGACACCTCCACGCCGGCCCCCGGCGAATACCCGGTGGTGGAGCGCAACGACGCCCCCATCCGCGCCTTCAAGGAAGACGTCCTGGCCCACTTCGGGAACCCCCTCATCGACGTACGCTCCCCCGAGGAATACACCGGGCAGCGGACCCACATGCCTGCCTACCCCGAGGAAGGCGCCCTCCGCGGCGGCCACATCCCGACGGCGGCATCCATTCCGTGGGCCCGCGCAGCCGCTGCGGACGGAACCTACCGCAGCCGCGAAGAACTTGAAGCCCTGTACCTCGGCGAGGCAGGCCTCAGCGAGGGCGACGACGTGGTGGCCTACTGCCGCATCGGTGAGCGGTCCAGCCACACCTGGTTTGCCCTCAAGTACCTGCTGGGCTTCGACACTGTCCGCAACTATGACGGTTCCTGGACCGAGTGGGGCAACGCCGTCCGTGTCCCCATCGTCAAGGGCGCCGAGCGCGGCACCGTGCCCGCGGCCAACTGAMSYPVEQNEKFAAYARPERLVSTEWLAAALETGAVADGKLVVVESDEDVLLYETGHIPGAVKIDWHTDLNDEVTRDYVDGKAFAALVAAKGISRDSTVVVYGDKSNWWAAYALWVFTLFGHEDVRLLDGGRDKWIAEGRELTTDTSTPAPGEYPVVERNDAPIRAFKEDVLAHFGNPLIDVRSPEEYTGQRTHMPAYPEEGALRGGHIPTAASIPWARAAAADGTYRSREELEALYLGEAGLSEGDDVVAYCRIGERSSHTWFALKYLLGFDTVRNYDGSWTEWGNAVRVPIVKGAERGTVPAANPGPT0002045_884DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
D1-29_018171038zapE_1COG1485Cell division protein ZapETTGGTACAGATCGAACAGCTTGCCGCCCGGACTCCCAAAGTTTCGGTGGATGAGCTCCTCAAGGGTTTCTTTCCCTCGCCGAGGTTTGGCCAGGTCTCTTTTGCCAGCTACCGTCCGGACCCCCAGCAGCCCAGCCAGGCTTCCGCGGTCAGGGCACTGGAAGGATTTGCGGGCAGTGTGGGTGCCGGCGAGGGCGCCGGCCTCTTCAAGAGGCTCTTTGCCAAGAAGGACGTATCCCGGGCGGGCATCTATCTGGACGGTGGATTCGGCGTCGGGAAAACCCACCTGCTGGCCTCGACGTGGCACGCTGTCCCCGGCCCGAAAGCCTTCGGCACCTTTGTGGAGTACACCAACCTGGTGGGCGCACTGTCCTTCCGCAAGACCGTGGAGGCCCTGAGCCACTACAAGCTGGTGTGCATCGATGAATTCGAGCTGGACGATCCCGGCGATACTGTCCTGATGTCCAGGCTGATGCGGGAACTCGCTGACGCCGGTGTCAAGCTCGCCGCGACGTCCAACACCCTTCCCGGCTCGCTGGGAGATGGCCGGTTTGCCGCCGTTGACTTCCAGCGTGAAATCCAGGTGCTGGCAGACCAGTTCGACGTCGTCCGGATCGACGGCGAGGACTACCGCCACCGCGGCCTGCCCGCCGCTCCCGCTCCGCTGAAGAACAGCCAGCTGACCGCGCACATGAAGGCCGAATTCGACGGCAAGACAGTGGCGCAGGACGAATTCAGCACCTTGATCAGCCACCTGGCCGGTGTGCACCCCAGCCGCTACCGGAAGCTCATTGACGGCATCGACGGCGTGGTGTGGCGCAACGTTGAGACCATTACCGAACAGGCTGTGGCGCTGCGTTTTGTGGTCCTCGCGGACCGGCTGTACGACAAGGACGTTCCCATCCTGGCCAGCGGCGTTCCCTTTGACCAGCTGTTCACCGACGAGATGATGCACGGCGGGTACAGCAAGAAGTACTTCCGCGCGGTTTCGCGGCTGACTGCCCTTGCCCGGGAGGGCCAGAACCACGAGCCGTCCTAAMVQIEQLAARTPKVSVDELLKGFFPSPRFGQVSFASYRPDPQQPSQASAVRALEGFAGSVGAGEGAGLFKRLFAKKDVSRAGIYLDGGFGVGKTHLLASTWHAVPGPKAFGTFVEYTNLVGALSFRKTVEALSHYKLVCIDEFELDDPGDTVLMSRLMRELADAGVKLAATSNTLPGSLGDGRFAAVDFQREIQVLADQFDVVRIDGEDYRHRGLPAAPAPLKNSQLTAHMKAEFDGKTVAQDEFSTLISHLAGVHPSRYRKLIDGIDGVVWRNVETITEQAVALRFVVLADRLYDKDVPILASGVPFDQLFTDEMMHGGYSKKYFRAVSRLTALAREGQNHEPSNANANANANA
D1-29_018181215ydcOCOG3135Inner membrane protein YdcOATGCCTGAGTCCCCCGCAGCCACCCCGGTATCAGCTTCCCGCAGTCTTCACCGCCTCTCCCAGCCCATCGTCGCCGGCATTGTCACCGCCCTGGTGGGCTTTACCTCATCCTTTGCCGTAGTGCTCGCCGGACTTCAGGCAGTTGGCGCCGATCCCCGGCAGGCGGCTTCAGGCCTGCTGGCCCTGACCCTGGTCTTCGGACTCGGGGTCCTGTGGCTTTCCTGGCGCTCCAAAGTCCCGGTGACCCTGGCGTGGTCCACCCCCGGAGCGGCACTCCTTGCCGGTTCCGGAGGAGTCGACGGCGGCTGGCCGGCCGCCGTCGGCGCTTTCCTCATCACGGGCGTCCTGATTGCCCTGACGGGCCTCATCCCGGCACTGGGCCGGCTGTTTACCCGTATTCCTGAGCCCCTGGCGCAGGCGATGCTGGCCGGCGTACTGCTGTCCCTGTGCCTGGCACCCTTCAAAGCACTGGGCAGCACCCCGGTACTGGTGGCCCCGGTAATCATCTGCTGGCTGCTCATGATGAAGTTCGCGCCCCGCTGGTCGGTACCGTCGTCGCTGCTGGTGGCACTGGCCGTCATCGGAATCCAGGTGGCCATTGACGGTCCAGCCCCCACCCAGGCGGGCCTGCTTCCGGAACTTATCTGGACCACACCGGCGTTCAGTCTGCAGGCAATTGCCGGAATTGCGTTGCCGCTTTTCATCGTGACCATGGCATCGCAGAACATCCCGGGGGTGGCCGTGCTCAAGTCCTTTGGCTACACCACGCCGTGGGCCCCGTCCATGCTGCTTACCGGAGCCGGCACCATGCTCAGTGCTCCGTTCGGCGGCCATGCCATCAACCTTGCCGCCCTCAGCGCAGCCCTTGCTGCCGGCCCCGAAGCGGGCCAGGACAGGAAGAAACGGTGGATTGCGGCTTTTACCTCCGGCCTTGCCTATACGGTGCTGGCGCTCTTCTCTGCCGCCCTCGTGGCGGTGGTGACGTCCGCTCCCCCGGGAATGCTGGAGGCAGTGGCAGGCCTGGCCCTGATCGGCACGCTGGCAGCTTCTGTTTCCTCCGCCCTGGCCGTACCCGAGGACCGGACCGCCGCGTCAATAACTTTCCTCATCGCGGCCTCCGGACTCAGCTTTGCCGGGATCGGGGCAGCATTCTGGGCACTGGCGGCCGGCCTGGCGGTGCGTTGGATTTTCAAGGACCGCAAGCCACAAGGCTGAMPESPAATPVSASRSLHRLSQPIVAGIVTALVGFTSSFAVVLAGLQAVGADPRQAASGLLALTLVFGLGVLWLSWRSKVPVTLAWSTPGAALLAGSGGVDGGWPAAVGAFLITGVLIALTGLIPALGRLFTRIPEPLAQAMLAGVLLSLCLAPFKALGSTPVLVAPVIICWLLMMKFAPRWSVPSSLLVALAVIGIQVAIDGPAPTQAGLLPELIWTTPAFSLQAIAGIALPLFIVTMASQNIPGVAVLKSFGYTTPWAPSMLLTGAGTMLSAPFGGHAINLAALSAALAAGPEAGQDRKKRWIAAFTSGLAYTVLALFSAALVAVVTSAPPGMLEAVAGLALIGTLAASVSSALAVPEDRTAASITFLIAASGLSFAGIGAAFWALAAGLAVRWIFKDRKPQGPGPT0005385_413DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_SYMPORTER,PGPT0005385-benE-K05782NANA
D1-29_01819249hypothetical proteinGTGGGACTGATTGACGATCTTAAGGGCAAGGCTCAAGGTCTCATCCATGGCAACGAGCAGGCCATCAAGGACGGCATCACCAAGGCCGGCGATTTTGTCGACACGAAAACCGGCGGCAAGTACGCAGGTCACGTGGACAAAATCCAGGATGGCGCTTCCAGATTCGTTGACAAAAACGACGGAACACCTGACCAGCCACCTGCCAGCGGGCAGGTACCGCCGGCTCCTCCGGCAGACAGGGCTCCGTAAMGLIDDLKGKAQGLIHGNEQAIKDGITKAGDFVDTKTGGKYAGHVDKIQDGASRFVDKNDGTPDQPPASGQVPPAPPADRAPNANANANANA
D1-29_01826819hypothetical proteinATGTATGCGCGGTCCACCACTGAGCAGTTCTCCGTTCCGTCCATCACCACTGTCATCGGCCAGCAGCCGCACGGCCTTGACGGCTGGTTCGGATACATGGGGGCCAGCAGCCTGGCGAAGGATCCGCTGCTGGCTGACTGCCTGGGCAGCCCCGCCAAGATCAGGCAGGCCGTCAACCGGGCCTCCAAGGCGGCCGAGACCTACCGTGATGAAGCAGCCCGGCGTGGTGACCGTGTCCACAGCTACTGCGAGCAGGTTGCCCTCCGCGCCCTGGGCCGGCCCCACACCATGAAGGAAACGCGGGAAGCACTCGCGGCTAACGGGGAGGAAGCCTTCGCCGTCCGCTTTGACGAATGGTGGGAGCTGTTTGGTGTGGAGCCCATAGCCCCGGAAATCACTGTCTGGAACAAGTCCGTTGGCTACGCCGGAACCCTGGACCTGGTGGCCCGGATCAATGGCCGCATCTGCCTCATCGACTACAAAACAAAAGGCACCACCCGTGAGGGCACCGTCAAACCGCTCGATGACAAGGTGGTCATGCAGCTGGTGGCCGGCATGAAGGCTGAAGAAAGCCTGGTGGATGCCGTCGCGGGGGAATGGGAGGCCTGGAAATACGGGGAGAACCCCGTCCTCCTGGCTGTGGCGATTGGTGAGACGGAAGTCCGCCCGGTCCGGGCCAACCCGGAAGTCCTCAAACACCACTGGTGGAAGTTCTGCGCGCTGAGGCGGGTTTGGGAGCTGTCGGCGGACACCATCAGCGCAGGCTCCGCCCTGCTTCCGGTTGCTCCACCACCCTTGGCGCAGGTCCGGATGGCCTAGMYARSTTEQFSVPSITTVIGQQPHGLDGWFGYMGASSLAKDPLLADCLGSPAKIRQAVNRASKAAETYRDEAARRGDRVHSYCEQVALRALGRPHTMKETREALAANGEEAFAVRFDEWWELFGVEPIAPEITVWNKSVGYAGTLDLVARINGRICLIDYKTKGTTREGTVKPLDDKVVMQLVAGMKAEESLVDAVAGEWEAWKYGENPVLLAVAIGETEVRPVRANPEVLKHHWWKFCALRRVWELSADTISAGSALLPVAPPPLAQVRMANANANANANA
D1-29_01827618def_1Peptide deformylaseATGGCCATTCTGAATATCCGCATCATCGGTGATCCTGTGCTGCGCACAGTCGCCGATCCCGTGACGGAATTCGGGCCGGAGCTGGCCAAGCTCGTAGCAGACATGACCGAAACCATGGAGGACGTGGACGGTGCGGGGCTCGCTGCCCCGCAAATAGGCGTAAGCCAGCGGGTCTTCACCTACCGCATCGACGGCGTCGAGGGCCACATCATCAACCCCGTCCTGGAAAACAGCGACGACTACCAGCCGGACCAGGTGGAAGGCTGCCTCTCCATCCCCGGGCTTGGTTTCCCGGTCCGCCGTTTCCGGGCCACCCGGGTCACGGGCGCTGACCTCCACGGCAATCCCGTCACCGTGGAGGGCGAAGGCATGCTGGCACGGTGCTTCCAGCATGAGACGGACCACCTGGACGGCATTCTCTACACTGACAGGCTGGAGGGCGAGGATCGGAAGGCAGCCCTGCGCTCCATCCGCAACGCCAACTATGACGCCGTCACGGAACGCACGACGGCGGAGCGCGCCAAATCTGTCGGGTCCAGTTTCGGCGGCGCAAGCTTTGGTGCCGCGGCAAGTTTTGGTGCCGCTGCCGGGACGAATCCGGCCGGCCGCAGCAAATGAMAILNIRIIGDPVLRTVADPVTEFGPELAKLVADMTETMEDVDGAGLAAPQIGVSQRVFTYRIDGVEGHIINPVLENSDDYQPDQVEGCLSIPGLGFPVRRFRATRVTGADLHGNPVTVEGEGMLARCFQHETDHLDGILYTDRLEGEDRKAALRSIRNANYDAVTERTTAERAKSVGSSFGGASFGAAASFGAAAGTNPAGRSKNANANANANA
D1-29_01828921fmtCOG0223Methionyl-tRNA formyltransferaseATGAGGGTACTTTTCGCCGGGACCCCTGCCGTGGCGGTCCCATCGCTGGACGCCCTCGTCCAGGCAGGTTTCGACGTCGTGGCGGTCCTGACCCGGCCGGACGCGCCGATCGGCCGTAAACGCGTGATGACGCCGTCGCCCGTTGCGGCGCGGGCCATGGAGCTGGGCATCGAGGTCATCCATGCCGCCCGCGTGGATGAGTCCGTCACGGCGAAGATCGCCGGGGTGAAACCGGACGTGGCCGCCATCGTGGCCTACGGCGGGCTGATTCCCCGCGCGGCCCTTGATATTCCCCGGCACGGTTGGATCAACCTGCACTTTTCGCTTCTTCCCGCCTGGCGCGGCGCAGCTCCCGTGCAGCGGGCCGTGATGGCCGGCGATGACATCACAGGGGCCGTCACCTTCCTTCTGGAGGAAGGGCTGGACACTGGTCCCGTCTTCGGGACACTCACGGAGCAGGTTGGCCCTGACGACACCGCAGGAGAGCTGCTCGAGCGGCTGTCCCACAGCGGTGCGGTCCTCCTGAGCCAGACGCTGTCAGCAGTGGAGGCAGGCAGGGCCGTTCCCGAGCCCCAGCAGGGCGATGTTTCGCTGGCTCCCAAGCTGACCCTCGACGACGGCCGGATCCATTGGAACCAGCCGGCACTGGCCATCGGCAGAAGGGCCCGCGGGGTTACCCCGGAGCCTGGCGCCTGGACCACCCTGGACGCCCAGCGCGTCAAACTCGAGCCGGTGCGGCTCCGGCCGGAAATCCAGGACCTGGCCCCCGGTGCTGTGGCGGTTGACGGGAAGAGCGTCCTGGTGGGGACGGGATCCCACGCCGTGGAGCTGACCCGGATCCAGCCCGCCGGCAAAAAGATGATGGCCGCCGCTGATTGGGCGCGCGGCATGGCTTCCCTTGAAAGCGTGGTGTTCGAATGAMRVLFAGTPAVAVPSLDALVQAGFDVVAVLTRPDAPIGRKRVMTPSPVAARAMELGIEVIHAARVDESVTAKIAGVKPDVAAIVAYGGLIPRAALDIPRHGWINLHFSLLPAWRGAAPVQRAVMAGDDITGAVTFLLEEGLDTGPVFGTLTEQVGPDDTAGELLERLSHSGAVLLSQTLSAVEAGRAVPEPQQGDVSLAPKLTLDDGRIHWNQPALAIGRRARGVTPEPGAWTTLDAQRVKLEPVRLRPEIQDLAPGAVAVDGKSVLVGTGSHAVELTRIQPAGKKMMAAADWARGMASLESVVFEPGPT0008125_5278DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
D1-29_018291617COG0144Putative methyltransferaseATGAGCGGGTCCGGCGGAAATCCAGGCGGCCGCGGCCAAAGTGGCCGCGGCCAAAGCGGCCGCAGCCAGGGCGGCAGTGGCGGACAAGGCAGTGGCGGACAACGCGGCGGCGGGGGGCCGCGGGACGGCAGCCAGCGCAACGCGCAGGGCCGGGAACGGAACCGCGGCCCGCAGCGCAGCTTCACGGAGAATGCCCCGGCACAGCGCACCCGGAGGGCAGATCCGGCTCGGCTGGTGGCCTTCGAAGTCCTGCGGGCTGTAGCGGCCGAGGACGCCTACGCCAACCTGGTGCTGCCTGCTCGGATCCGGCACCACGGGCTGGACAAACGCGACGCCGGCTTCGCCACCGAACTCAGCTACGGGGCACTCCGTGGCCAGGGGACGTATGACGCCATCCTGGCCCGGTGCGTCGACAGGCCGCTGGATCAGCTGGATCCCGCCATCCTGGACGCCCTTCGGATCGGCACCCACCAGCTGCTGGCCATGCGTGTCCCTGCCCATGCCGCGCTGGACCAGACTGTTGGCCTGGCCCGCGCTGTTATTGGAGCGGGCCCGTCCGCCCTCATCAACGCGGTGCTGCGCAAGGTGACAGCGCACACGCTCGAGGAATGGCTGGAGCTGCTGGTCGCCGGGGAAACCGATGAAACCAAGGTATCCTCCATTCGCTATGCCCACCCGGAATGGATTGTGCGCGCCATGCGCCAATCGCTGGTGGCGCATGGCCGCCCGGCCACCGAAATCAATGAACTGCTCGACGCCGATAACGCCGCTCCCGTAGTCAACCTGGTTGCGTTGCCGGGGCTGGGGAGCCTGGATGAGGCGCTCGAGAACGGTGCAACACCTGGCGGGCTTGTGGAAGGTTCCGCACTGTCCAGCGGCGGCGACCTTGGCCGCCTCGCATCAGTACGGGCCGGGAGCACCCGTGTCCAGGACGTGGGCTCCCAGCTGGTAGCCCGGGCCATGGCGGCTGCAGACGTTCTGCCGCGTGCCGCGGCTGGTACGGACGGCGGGGCCACGGACGAGTCATGGCTGGACCTGTGTGCAGGGCCCGGCGGCAAGGCTGCGCTTCTGGCCGCCCTCGCCAAACAGCAGGGCGCCACACTCCTGGCCAACGAACCTGCCCCGCACCGGGCCAAGCTGGTCAGCCAGGCCCTGGCCGCCGTGCCGAAGGACGTCTGGCAGGTGCGCACCGGCGACGGCCGCGAACTGGGCACCGAACAGCCGGAATCCTTCGACCGCGTCCTGGTGGATGTGCCCTGCAGCGGGCTCGGTGCGCTCCGCCGCCGCCCGGAATCCCGATGGCGCCGTACCCCCAAAGACCTTGCCGACCTGGGGCCGCTGCAGCGTGACCTCCTCAAGTCCGCCCTTGCCGCCGTCCGCCCGGGGGGAGTGGTGGCCTATGTGACCTGCTCACCGCATCCTGCCGAAACCACAGCCGTGGTCACCGATGCCCTCCGGAAGCGGGATGACTTTGAGCTGCTGGATGCCGGTGCCGCGCTGGATAAAGTGAGCCTCACCGGCAACCTCGGCGCGGGCAACGGGTCCACCGCCCAGCTGTGGCCGCACGTCCACAGCACTGACGCCATGTTCCTTGCCCTCATCCGCAAAAAAGCCTGAMSGSGGNPGGRGQSGRGQSGRSQGGSGGQGSGGQRGGGGPRDGSQRNAQGRERNRGPQRSFTENAPAQRTRRADPARLVAFEVLRAVAAEDAYANLVLPARIRHHGLDKRDAGFATELSYGALRGQGTYDAILARCVDRPLDQLDPAILDALRIGTHQLLAMRVPAHAALDQTVGLARAVIGAGPSALINAVLRKVTAHTLEEWLELLVAGETDETKVSSIRYAHPEWIVRAMRQSLVAHGRPATEINELLDADNAAPVVNLVALPGLGSLDEALENGATPGGLVEGSALSSGGDLGRLASVRAGSTRVQDVGSQLVARAMAAADVLPRAAAGTDGGATDESWLDLCAGPGGKAALLAALAKQQGATLLANEPAPHRAKLVSQALAAVPKDVWQVRTGDGRELGTEQPESFDRVLVDVPCSGLGALRRRPESRWRRTPKDLADLGPLQRDLLKSALAAVRPGGVVAYVTCSPHPAETTAVVTDALRKRDDFELLDAGAALDKVSLTGNLGAGNGSTAQLWPHVHSTDAMFLALIRKKANANANANANA
D1-29_01830681rpeCOG0036Ribulose-phosphate 3-epimeraseATGACCCAATGCTGCATCAACCCGAGCATCCTCTCCGCAGACTTCGTCAACCTCGAAGCCGAACTGCAGCGCATCGGCAATGCCGACGCCGTGCACGTTGACGTGATGGACAACCATTTTGTTCCCAACCTCACTATTGGCCTGCCCGTGGTCCAGCGGATCCAGGCTGTCAGCCCGGTGCCCCTGGACGCCCACCTGATGATTTCCGACGCCGACCGCTGGGCCCCCGGATTTGCCGAGGCCGGGCTTGCTTCGGTGACCTTCCATGCCGAGGCATCCATCGCACCGGTCAAGCTTGCCCGTGAGCTGCGTGCGCGCGGATCCAAGGCGGGGATGGCACTGCGGCCGGGAACGCCGGTGGAACCGTATCTTGACATGCTCTCCGAGCTGGACATGCTGCTGATCATGACGGTGGAGCCCGGCTTCGGCGGGCAGTCCTTCCTGGACCTGACGCTCCCCAAGATCCGCCGTGCCCGGGCGGCCATAGACGGATCGGGGATCGGGGTGGCCATCCAGGTGGACGGGGGCATCACGGAGGAAACCATCGTCCGGGCAGCCGAAGCCGGTGCCAACGTCTTTGTCGCGGGTTCCGCGGTTTACGGCGCAGAGGACCCCGCAGCTGCCATCGAGCGGCTGCGCGCTGCTGGCAGCCAAACATTAAGTGCTGTGTCGGCGGAATAGMTQCCINPSILSADFVNLEAELQRIGNADAVHVDVMDNHFVPNLTIGLPVVQRIQAVSPVPLDAHLMISDADRWAPGFAEAGLASVTFHAEASIAPVKLARELRARGSKAGMALRPGTPVEPYLDMLSELDMLLIMTVEPGFGGQSFLDLTLPKIRRARAAIDGSGIGVAIQVDGGITEETIVRAAEAGANVFVAGSAVYGAEDPAAAIERLRAAGSQTLSAVSAEPGPT0017425_2230DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017425-rpe|cbbE-K01783NANA
D1-29_018321215ribDCOG0117Riboflavin biosynthesis protein RibDGTGACGGCGGCACCCGAGCAGCGGATCGAAGCCCGGCCCGCCACACAGCCGGCTACCCAACAGCCAGCCACCCAACGCACAGTCACCCATCAGGCAGCGCCGCCCGACGGCGTCGTGACCGCTTTCACCGCTGCGGAAACGGCTGCCATGGATGCCGCCCTTGAAGAAGCCCTGCGGGGGCCGCGTGGTGCGAATCCGCTGGTGGGCGCCGTCGTCGTGGATGCCGAGGGCAAACAACTTGTCACCGGATACCACCGCGGCGCAGGTACCGCGCACGCGGAAGCTGACGCGATTGCACAGGCAGCGGCCGCCGGAGTTGACCTCCGCGGTTCAACCATGGTGGTCACGCTGGAACCCTGCAACCACTCCGGGCGCACGGGCCCCTGCGCCCAGGCGATCATCAGTGCTGGCATCACGGATGTTATTTACGCCGTCGATGACCCCCATGACCCCGCTGCCGGGGGCGCGGCCACGCTGCGGGAGGCAGGTGTTAGTGTCCGCAGCGGCCTTGCAGCCAGCGAGGCGCTGGAACTGAACCGACAGTGGTTCCAGGCAGTTGCCGCGAAACGTCCCTTCGTGACGCTTCACATCGCCCAGACCCTGGACAGCCGGATCGCGGCCGAGGATGGCACCAGCCAATGGATTTCGAGCCCCGAATCCCTGGCCGACAATCATGCCCTGAGGGCCCGGATCGATGCCATCCTGGTGGGAACCCAGACTGTCCTGGTGGACAACCCGCGGCTGACCGCCCGTGACGCGGGCGGGGCCCCCGCTGGAAAGCAGCCATTGCGGGCAGTCATGGGGCTGCGGGACATTCCTGCCGATGCCGCCGTCCGCGGCGACGACGGCCGCGTTCTTCATCTGCCCACGCGTGATCCACGGGAAGCGCTGTCGCTGCTTTATGCCGCGGGCGTCCGCCACCTGATGGTGGAGGGAGGATCGCGGATCCTCAGTGCGTTCCTCACCGCAGAACTCGTGGACGAACTCATCGTCTACCTCGCCCCCACGCTGCTCGGGTCCGGGACGCCTGCCCTGAACGGGCTGGGGGTCAGCACCCTCGCGGATGCCCAGCAGTGGGAATGGGACGCGTCCGACGGCGGCGCGGTGCGCACGCTTGGCCGCGACCTGAGACTTCACCTGCATCCGCAACGAATCGAAGCTTTGGCACCACAACCATCCCGCGCCGGCGCGGAACAAGCCTTGGGAGGCTACTGAMTAAPEQRIEARPATQPATQQPATQRTVTHQAAPPDGVVTAFTAAETAAMDAALEEALRGPRGANPLVGAVVVDAEGKQLVTGYHRGAGTAHAEADAIAQAAAAGVDLRGSTMVVTLEPCNHSGRTGPCAQAIISAGITDVIYAVDDPHDPAAGGAATLREAGVSVRSGLAASEALELNRQWFQAVAAKRPFVTLHIAQTLDSRIAAEDGTSQWISSPESLADNHALRARIDAILVGTQTVLVDNPRLTARDAGGAPAGKQPLRAVMGLRDIPADAAVRGDDGRVLHLPTRDPREALSLLYAAGVRHLMVEGGSRILSAFLTAELVDELIVYLAPTLLGSGTPALNGLGVSTLADAQQWEWDASDGGAVRTLGRDLRLHLHPQRIEALAPQPSRAGAEQALGGYPGPT0008555_1466DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008555-ribD-K11752NANA
D1-29_01833723ribECOG0307Riboflavin synthaseATGTTTACCGGAATTATTGCCGAACAGGGCCACGTGCTGTCCGTTGACAGGGACGGCGATGCCAGCGCCACCGTCAGGCTGCACGCCCCGGGCACCACGGAAGGGCTTGGCTTGGGCGGTTCCATCGCCGTGAACGGCGTCTGCCTGACTGCGACCGAGATCAACGGCAAGGAATTCAGCGTCGACGTGATGGGCGAAACCCTGGTCCGCACCACCATCGGCGAACTGGCCTCCGGCGACTCGGTCAACCTTGAGCGCTGCGTGCAGGCCGGGGGAAGGCTGGACGGGCACGTCGTCCAGGGGCATGTGGACGGCGTTGGACGGCTGCTGGAACGCGAAGCCCTGGGGAACTGGGAACGGCTCCGCTTCGGCGTGCCCGCCAACCTTGCCCGCTACATTGCAGAGAAGGGCTCCATCGCAATCGACGGCGTCTCCCTCACCGTGACGGCCGTCAGCCCCGCCCCCGAAGCTGAACCGTGGTTTGAAGTGGGGCTGATCCCCACCACTCTGGCCGAGACCGGACTGGGTGAAAAAACGGTAGGCAGCCGGGTCAACCTTGAAGTTGACGTCCTCGCCAAGTACACCGAGCGGCTCCTTGCTTTCAGTGCAGGCGCTTCCAGCAGCTTCGGCAGCGGCACCAGTGCCGCCACCAGCGCCAGCACTGTCAGCAGCGCCAGCGCATCCAGCAGCACGGTCACCAGCGGCGCAGGCGGTGCACGATGAMFTGIIAEQGHVLSVDRDGDASATVRLHAPGTTEGLGLGGSIAVNGVCLTATEINGKEFSVDVMGETLVRTTIGELASGDSVNLERCVQAGGRLDGHVVQGHVDGVGRLLEREALGNWERLRFGVPANLARYIAEKGSIAIDGVSLTVTAVSPAPEAEPWFEVGLIPTTLAETGLGEKTVGSRVNLEVDVLAKYTERLLAFSAGASSSFGSGTSAATSASTVSSASASSSTVTSGAGGARPGPT0008610_2287DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008610-ribE|RIB5|ribC-K00793NANA
D1-29_01834732ribBA_1COG0108Riboflavin biosynthesis protein RibBAATGAACGGGACGGCCCGGCTGGAGCCGATATCCGCGCCAGCCTTGAAAGTTGCTCCAGCCCTGGGACTTGATCCGGTCGAGGACGCAATCCGTGCCATTGCCAACGGCAGGCCCGTGCTGGTGGTGGACAACGAGGACCGCGAAAACGAAGGTGACATCATCTTCGCGGCCCAGCACGCCACACCGGCCCTGATGGGCTGGACGATCCGGTACAGCTCAGGGGTCATCTGCGTCCCGCTGTCAGGTGAACGCGCCGACGCCTTGGCGCTGCCGCCCATGGTGCTGGTCAACGAGGACGCCAAGGGTACGGCGTACACGGTTTCCTGCGATGCCGCAGTGGGCGTGAGCACCGGCATTTCTGCGACGGACCGCGCCCTGACGGCCAGGGTCCTGGCGGATCCGGCCGCCGGGCCTGCCTCCGTGACCAGGCCTGGGCATATTTTCCCCTTGCGGGCCGTTAATGGGGGAGTGCGTGAGCGTCCCGGCCACACCGAGGCCGCTGTTGACCTCTGCCGGCTCGCCGGACTGGAGCCGGTGGGCGTGATCGCGGAAGTTGTCTATGACGACGGAGAAATGATGCGCTTGGACGGACTGCGGAGCTTCGCTGCTGAACACGGCTGCCCCCTGATCTCGATCGAGGATCTGGTGGCTTACCTTGGAGCAGGGCCCGCGGCCACCGCGGAGAGAGGTACCCGGGCCACGAACCCGGGAGGAGAAGAGGAGATACGATGAMNGTARLEPISAPALKVAPALGLDPVEDAIRAIANGRPVLVVDNEDRENEGDIIFAAQHATPALMGWTIRYSSGVICVPLSGERADALALPPMVLVNEDAKGTAYTVSCDAAVGVSTGISATDRALTARVLADPAAGPASVTRPGHIFPLRAVNGGVRERPGHTEAAVDLCRLAGLEPVGVIAEVVYDDGEMMRLDGLRSFAAEHGCPLISIEDLVAYLGAGPAATAERGTRATNPGGEEEIRPGPT0008600_149DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008600-ribB|RIB3-K02858NANA
D1-29_01835792ribBA_2Riboflavin biosynthesis protein RibBAATGACGGCTTCCGGAGCTACTGACGACAGTCACCAGAACGGCCACCATGGGAACAGCCACCACAGTAATGGCCAGCACAGCAACGGCCACCACAGTAACGGCCACCACAAGGGACAAACCGGCAACACCAAAGTCCTCCACCCCGTTAGCGGCGGTCCCATCGTTCAGCTTCCCACGGCGTTCGGTGACTTTGTGGCGCAGGCGTGGACCGACCTGGTCACCGGTGCCGAGCACCTTGCCGTCAGTTCACCCAATCCGCCCAAAGACGGCAAGGCGCCGCTGGTCCGGCTGCACTCGGAATGCCTCACCGGGGATATCTTCGGGTCCTACCGGTGTGACTGCGGTGAGCAGCTGGCTTACGCCCTGGAGATGATCCAGGAGTTCGGCGGAACCCTGCTGTACCTGCGCGGCCAGGAGGGCCGGGGCATCGGATTGGCCAACAAGATCAAGGCCTACGCCCTCCAGGAAGCCGGTTTCGACACGGTGGAGGCCAATGAGCAGCTGGGGCTGCCGGTGGATGCCCGGTGCTACAACGCCGCGGCGCAGGTGTTGGCGGAGATGGGCCTCCACGAGGTCCGGCTGCTGAGCAACAACCCGGACAAGCAGAACAGGCTGGCCAAGGCCGGCGTGAAGGTGGTGGAGATGGTTCCCACGGAGGTGCCTTCCCGCGACCAGAACATCCGGTACCTGCAGACGAAAAAAGACCGGATGGAACACCGGCTCACGCTGGACACCCACATCGCCACAGTGCCTGCCATCGCGGCAGACACTTTCGACCACGAACAAGACTGAMTASGATDDSHQNGHHGNSHHSNGQHSNGHHSNGHHKGQTGNTKVLHPVSGGPIVQLPTAFGDFVAQAWTDLVTGAEHLAVSSPNPPKDGKAPLVRLHSECLTGDIFGSYRCDCGEQLAYALEMIQEFGGTLLYLRGQEGRGIGLANKIKAYALQEAGFDTVEANEQLGLPVDARCYNAAAQVLAEMGLHEVRLLSNNPDKQNRLAKAGVKVVEMVPTEVPSRDQNIRYLQTKKDRMEHRLTLDTHIATVPAIAADTFDHEQDPGPT0007985_661DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007985-ribA-K01497NANA
D1-29_01836486ribH6,7-dimethyl-8-ribityllumazine synthaseATGAGCGGACACGGCGCACCAGATATTGACCTCACCACCCTCAACCCGGCCGAGACGGCCCAGCTCCGGCTGGCCATTGTGGCCGCCAGCTGGCACACCCAGATTATGGACGGGCTCCTGGACGGTGCCCTCCGCGCCGCCAAGGACGCCGGCATCAGCGAACCCACAGTGGTGAGGGTTCCGGGCAGCTTCGAACTTCCGGTCGCTGCCGCGCGGCTGGCACCGCACTTCGACGCGGTGGTTGCCCTCGGCGTCGTCATCCGGGGCGGTACACCGCACTTTGAGTACGTCTGCCAGGCCGCGACGTCGGGACTGACCGATGTCAGCGTCTCCACAGGAGTGCCGGTGGGCTTCGGCGTCCTGACCTGCGACACAGAGCAGCAGGGCCTGGACCGGGCCGGGCTGCCGGGATCCAAGGAAGACAAGGGCCATGAGGCAGTTACCGCGGCGCTGGCCACCGCCGTCGTACTCAAGCAGTACCGCTAGMSGHGAPDIDLTTLNPAETAQLRLAIVAASWHTQIMDGLLDGALRAAKDAGISEPTVVRVPGSFELPVAAARLAPHFDAVVALGVVIRGGTPHFEYVCQAATSGLTDVSVSTGVPVGFGVLTCDTEQQGLDRAGLPGSKEDKGHEAVTAALATAVVLKQYRPGPT0008605_1644DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794NANA
D1-29_01837264hisECOG0140Phosphoribosyl-ATP pyrophosphataseGTGAAGAATTTCGAGACGCTGTTCGCTGAACTGAGTGAGAAGGCAGCCACCCGTCCGGCAGGCTCCCGCACCGTCGCTGAATTGGAGTCCGGAGTCCACGGCATTGGCAAGAAAGTCGTGGAGGAAGCGGCCGAAGTATGGATGGCCGCAGAGTATGAATCCGACGAGGCCGCGGCCGAGGAGATCTCCCAGTTGCTCTACCACCTGCAGGTCCTGATGCTCGCCAAAGGACTGACCCTGGAAGACGTCTACAAGCATCTGTAGMKNFETLFAELSEKAATRPAGSRTVAELESGVHGIGKKVVEEAAEVWMAAEYESDEAAAEEISQLLYHLQVLMLAKGLTLEDVYKHLNANANANANA
D1-29_01838861hisGCOG0040ATP phosphoribosyltransferaseATGCTGCGAGTAGCCGTACCCAACAAGGGCTCCCTGTCCGAAGCCGCCTCCGAAATGCTGTCCGAAGCCGGTTACCGCCAGCGCCGCGACACCCGCGAGCTGGTCATGGTGGACCCTGACAATGACATCGAATTCTTCTTCCTCCGCCCGCGCGACATCGCCGTCTATGTCGGCCAGGGAACGCTCGACGTCGGCATCACCGGCCGCGACCTGCTGCTGGACGCCGAAGTGGAAGCGGAGGAACTGCTCCCGCTCGGCTTTGCCGCCTCAACCTTCCGCTTCGCCGGCCCCGTGGGCGACTTCGCCAAGGTGGAGGAACTTGAAGGCAAACGGCTGGCCACCAGCTATGACGGCCTCCTGCGCGGCTACCTCGCCGGGCTGGGGATCAACGCCAGGGTTGTCCGCCTCGACGGGGCCGTGGAATCATCCGTACGCCTCGGCGTGGCTGACGCCATCGCCGACGTCGTGGAGACCGGCAGCACCCTCAAGGCGGCCGGAATGGAAATCTTCGGTGATCCCATCCTCAAATCCGAAGCCGTCCTGATCCGCCGCACCGGAGAGGGTGGAGCCGCCAACGGCACTGCCAAGGAGATCGAGGTCCTGATCCGCCGGCTCCAGGGTGTCCTGGTGGCGCGCCAGTATGTCCTGATGGACTACGACATCCGCAAGGAACTGGTGGAACGCGCCGCGGCCCTGACCCCCGGCCTTGAGTCACCCACCGTGTCGCCGCTGCGGGACTCCGACTGGGTGGCTGTCCGCTCAATGGTGCCCAAGAGGGAAACCAACCGGATCATGGACGAGCTCTACGACCTCGGCGCACGCGCCATCCTGGTCAGCAGCATCCACGCCTGCCGTATCTGAMLRVAVPNKGSLSEAASEMLSEAGYRQRRDTRELVMVDPDNDIEFFFLRPRDIAVYVGQGTLDVGITGRDLLLDAEVEAEELLPLGFAASTFRFAGPVGDFAKVEELEGKRLATSYDGLLRGYLAGLGINARVVRLDGAVESSVRLGVADAIADVVETGSTLKAAGMEIFGDPILKSEAVLIRRTGEGGAANGTAKEIEVLIRRLQGVLVARQYVLMDYDIRKELVERAAALTPGLESPTVSPLRDSDWVAVRSMVPKRETNRIMDELYDLGARAILVSSIHACRIPGPT0017400_1522DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017400-hisG-K00765NANA
D1-29_01839777hisFCOG0107Imidazole glycerol phosphate synthase subunit HisFATGGCTGTAGCCGTACGCGTCATTCCATGCCTCGACGTCGACGCCGGCCGCGTCGTTAAGGGCGTCAACTTCGAGGGCCTGCGGGACGCCGGAGACCCGGTGGAACTGGCGCACCGGTACGACAATGCCGGCGCGGATGAGCTGACCTTCCTGGACGTCACAGCATCCTCGGGCAACCGGGAAACCACCTTCGACGTGGTCCGCCGCACTGCCGAGGAAGTCTTCATTCCGCTGTGTGTCGGCGGCGGAGTGCGGGGCGTGGCCGAGGTGGACAAGCTGCTGCGGTTCGGGGCGGACAAGGCGTCCATCAACACCGCCGCCGTGGCACGCCCGGAGGTCATTGACGAGATCACGCGCCACTTTGGCTCGCAGGTGCTTGTCCTTTCCCTGGACGCACGCCGCACCCGCCCGGGGTCTGTCCCCACGCCGTCGGGCTTTGAGGTCACCACCCACGGCGGCCGTACCGGGACCGGCATCGACGCCATTGCCTGGGCGAAGGAAGCGGCGGAGCGCGGTGTTGGCGAGATCCTGCTGAACTCCATTGACGCCGACGGCACCAAGGATGGATTCGACCTCGAGCTCATCCGGCTGGTGCGTGCGGCGGTGAAGGTTCCCATCATCGCCTCAGGCGGAGCAGGGGAACCCGCGCACTTCCCGCCCGCGGTAGCTGCGGGCGCCGACGCCGTGCTGGCCGCGTCGATCTTCCACTGGGGGCCTGACGACATGATGTCCCAGGTCAAGGACGCCATCCGGAATGCAGGCTTCGAGGTCCGCTAGMAVAVRVIPCLDVDAGRVVKGVNFEGLRDAGDPVELAHRYDNAGADELTFLDVTASSGNRETTFDVVRRTAEEVFIPLCVGGGVRGVAEVDKLLRFGADKASINTAAVARPEVIDEITRHFGSQVLVLSLDARRTRPGSVPTPSGFEVTTHGGRTGTGIDAIAWAKEAAERGVGEILLNSIDADGTKDGFDLELIRLVRAAVKVPIIASGGAGEPAHFPPAVAAGADAVLAASIFHWGPDDMMSQVKDAIRNAGFEVRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-29_01840717hypothetical proteinGTGAACAAGAGCACGGCCCTGGTGGCGGTTCTGCTGCCCATCTCCCCGGGTGTCGTGCTAGTTTCACAAGTGATGCATTTCGTCGACCCGTCCCGAGAAGTCCTGGCCGAGACCCTGCTTGCGGCCGGTCCTGATGCCCCCACGCTCTGCAAAGGCTGGCGCACCAGGGACCTTGCCGCGCACCTTTACCTGCGCGAACGCAAGGCGGCCGTGGGATTGGGCCTCATCATCAAGAGGCTGTCCAAAGCCTCGGACAAGGCAACGGCGAAACTCGCCGCGAAGCTGAAAACGGCTGAGGACTACGCGGGGCTGGTCAACACGTTCCGCGCCGGTCCGCCTGCACTGTCACCCATGAACATCAAGGCCCTGGACGAGAGCTCCAACCTGATCGAATACTTCGTCCACACCGAGGACGTCCGCCGCGCTGTGGACCGCTGGGCACCCCGCGCGCTCGACGAGGCCTATTCGGAAGCGCTCTGGGATGAACTCATCAAGCGCGCCGCCATCCTTTATCGCGGGGTTGATCTTGGTATTGTGCTGGTCCGGCCCTCAGGTCCGCGCCACGTGGCCAAGCGCGCCCCGGTATCCGTGGCCATTGTGGGTGAGCCGGGCGAGCTGCTGATGCACGCCCACGGCCGGACCCGCCATGCGCTGGTCACCTTCGAAGGCCAGCCGGACGCCGTCGCGCTTCTCCAGTCAGCAGAAGTAGGCCTCTAAMNKSTALVAVLLPISPGVVLVSQVMHFVDPSREVLAETLLAAGPDAPTLCKGWRTRDLAAHLYLRERKAAVGLGLIIKRLSKASDKATAKLAAKLKTAEDYAGLVNTFRAGPPALSPMNIKALDESSNLIEYFVHTEDVRRAVDRWAPRALDEAYSEALWDELIKRAAILYRGVDLGIVLVRPSGPRHVAKRAPVSVAIVGEPGELLMHAHGRTRHALVTFEGQPDAVALLQSAEVGLNANANANANA
D1-29_01841393hisICOG0139Phosphoribosyl-AMP cyclohydrolaseATGGGAAGCCTGCCCGCCGGCCCGCTTCCGGAAGACGTTGCCGCTGCGCTGAAGCGGGACGGTGCCGGACTGGTGGCGGCCATAGTGCAGCAGTTCGACACCGATGAGGTGCTGATGCTCGGGTGGATGGATGACGAGGCATTGCACCGGACCATGACCAGCGGACGGGTAACGTTCTATTCCCGCTCCCGCCAGGAGTATTGGCGCAAGGGGGACACGTCCGGGCATGTCCAGTGGGTCAAGTCAGTGGCCCTCGACTGCGACGGCGACGCCCTGCTGGTTCGCGTGGACCAGGTGGGCGCCGCCTGCCACACCGGTACCCGCACCTGTTTCGACGGCAGGGAACTGCAGGTCAGTACAGTAAGCACCGACGGCGCAGGCCAGGCGGGCTGAMGSLPAGPLPEDVAAALKRDGAGLVAAIVQQFDTDEVLMLGWMDDEALHRTMTSGRVTFYSRSRQEYWRKGDTSGHVQWVKSVALDCDGDALLVRVDQVGAACHTGTRTCFDGRELQVSTVSTDGAGQAGPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-29_018421641trpECOG0147Anthranilate synthase component 1ATGCGGGCGCCCTACAAGAACAGGCGGAGAGCCATAGCCATGCAGGACCTTGGAATCATCAGCCCGGGCCTCGAGGAGTTCCGCGAACTCGCCGGCACCAGCCGTGTCATCCCCGTCCGGCTCAAGGTCCTGGCGGACGCCGAGACGCCCATCGGCCTGTACCGGAAGCTCGCCCAGGGGCAGCCCGGGACCTTCCTGATGGAGTCCGCGGCCGTGGGCGGGACCTGGTCCCGCTACTCCTTCATCGGCGCGAATTCCCGGGCAACGCTCACCACCAAGGACGGCGAGGCGCACTGGTTGGGCCAGCCGCCCGTGGGGGTGCCGGTGAACGGGAACCCGGTTGATGCCATCAGGGACACCATCGACGCGCTCCGCACCGACAGGTTCGAGGGGCTGCCGCCGTTTACCTCAGGCCTGGTGGGATTCCTGGGCTGGGAAACCGTCCGGCACTGGGAGCGGCTGACCAGCCCGCCGGAGGACGATCTCCAGCTGCCGGAAATGGCGCTGAACCTGGTGTCCGACATGGCCGTCCATGACAACGTGGACGGCACGGTGCTCCTGATCGCCAACGCGATCAATTTCGACGACAGCTCCGAACGGGTGGACGAGGCCTGGCACGACGCCGTAGCCCGGGTCAAGGCACTCCTCACCCAGATCAGCACGCCTGTGGCGCAGCCCGTGTCCGTCCTGGAGCCAGCTGCTTTGGATTTCGCTTCCAGCGTCCAGGAGCGCTGGGACGAGCCTGCCTACCTGGCGGCGCTGGACCGCGGCAAGGAAGCGATTGTCGACGGCGAGGTGTTCCAGGTGGTAATTTCGCGCCGCTTCGAGATGGAATGCGGAGCCTCTCCGCTTGACGTCTACCGCGTCCTGCGGAACACCAACCCCAGCCCCTACATGTACATCTTCAGCCTTGAGGACGCCGACGGCCGCGAGTACTCGATCGTTGGTTCCTCGCCCGAGGCCCTGGTGACAGTCACGGGCAAGGAAGTCATCACGCATCCCATCGCCGGTTCGCGGCCCAGGGGCAAGACGGTGGAGGGTGACAAAGCCCTGGCCGAGGAACTCCTGGCAGACCAAAAGGAACGCGCCGAGCACCTGATGCTGGTGGACCTGTCCCGCAACGATCTCTCCAAGGTCTGCGTGGCGGGAACCGTAGACGTGACGCAGTTTATGGAAGTGGAGCGCTTCAGCCACATCATGCACCTGGTGTCCACGGTGGTGGGCCAACTGGCGCCGGGGGCCAAGGCCTACGACGTCCTGAAGGCAACTTTCCCTGCCGGGACACTGTCCGGGGCCCCCAAGCCCCGCGCACTGCGCCTGTTGGACGAACTCGAACCCCACCGCCGCGGCATCTACGGCGGCGTGGTGGGCTACCTGGACTTCGCGGGGGACATGGACATGGCCATCGCCATCCGGTCCGCGCTGCTCCGCGAGGGACGCGCCTACGTGCAGGCGGGAGGCGGCATTGTTGCTGATTCTGTCAATCCTACGGAGGCGCTGGAAACCGTGAATAAGGCGGCCGCTCCGCTGCGGGCCGTCCACACCGCGGGATCGCTGCACAACATTTCGGCGGACACCATTTCCGCGGACACCGTTCCCGATGCCGGAAGCGCCGGCCATACCAGCCGGACGAACCACTGAMRAPYKNRRRAIAMQDLGIISPGLEEFRELAGTSRVIPVRLKVLADAETPIGLYRKLAQGQPGTFLMESAAVGGTWSRYSFIGANSRATLTTKDGEAHWLGQPPVGVPVNGNPVDAIRDTIDALRTDRFEGLPPFTSGLVGFLGWETVRHWERLTSPPEDDLQLPEMALNLVSDMAVHDNVDGTVLLIANAINFDDSSERVDEAWHDAVARVKALLTQISTPVAQPVSVLEPAALDFASSVQERWDEPAYLAALDRGKEAIVDGEVFQVVISRRFEMECGASPLDVYRVLRNTNPSPYMYIFSLEDADGREYSIVGSSPEALVTVTGKEVITHPIAGSRPRGKTVEGDKALAEELLADQKERAEHLMLVDLSRNDLSKVCVAGTVDVTQFMEVERFSHIMHLVSTVVGQLAPGAKAYDVLKATFPAGTLSGAPKPRALRLLDELEPHRRGIYGGVVGYLDFAGDMDMAIAIRSALLREGRAYVQAGGGIVADSVNPTEALETVNKAAAPLRAVHTAGSLHNISADTISADTVPDAGSAGHTSRTNHPGPT0007095_571DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-29_01843666hypothetical proteinATGCCCGTTCCCGAGACAGCGGCCGGCCGGACCGACAAAGCAGCAGGAGCCCCCGGCTGGGCACGGAAGTCCACGGTGGTCCTGCTGATCGCCGCGCTGGCCCTGGCTGTTTTCGGCACCACTACCCAGACGTGGATGACGGTCAGCCTGGATCCGGACCAGGTGGGCCAGGCCGGCAGTGCCCAAAGCACACTTCAGGTCCAGGGCAGCAAAGCCGCCACGGCGGTGACAGCACTGGCCCTTGTCGCGCTGGCAGGGGGACTGGCCGCATCCATCGCCGGCAGGATCGCCCGCTGGGTCGCCGCCGCCATCATCGTCCTGGCTGCAGCCGGCATTGTTGCTGCCGCAGCCACGGTGCTTGCGGACCCGCTGGCTGCGGCGCAGGGTTCCATCGCGGCCGCCACCGGCGTCACCGGCAGTGACGCGAAAGTGTCACTCACCGCCTTCCCGGCCATCGCCGTCGTGATCGGCATCCTGCTGGCGCTGGGAGCCATGCTGATCATTCCGGCAGGACGCTACTGGAAGTCACGGACAAAATATGACGCCGCCACCTATGACGCAGCCAAAGATGACGCCGCAGTCCCCGGCGGTGCAGCCACGCCGGCAGGCCCCGTAGACGATATTGACAGCTGGGACAGGCTCTCCCGCGGCGACGATCCCACCTGAMPVPETAAGRTDKAAGAPGWARKSTVVLLIAALALAVFGTTTQTWMTVSLDPDQVGQAGSAQSTLQVQGSKAATAVTALALVALAGGLAASIAGRIARWVAAAIIVLAAAGIVAAAATVLADPLAAAQGSIAAATGVTGSDAKVSLTAFPAIAVVIGILLALGAMLIIPAGRYWKSRTKYDAATYDAAKDDAAVPGGAATPAGPVDDIDSWDRLSRGDDPTPGPT0007095_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-29_01844288hypothetical proteinATGAGCAAAGCACCTGCGTCCGTTTCCAAGTCAGGCACCCGGACGGTTGCCCCCGGCGCCGTCGACCACAGCCAGGAACTTGGCCACGGCAACAGCCCGGCAGCCTGGACCTGCGTGATCGTTATGCTGGTAGGCGCCCTCGTTTCGTCCATCGCGTTTGTGATCAACAGCACCCCCATCTTCATCGCCGGCGCAGCCGTGATGGTCCTCGGCCTGATCCTCGGTTACATCATGCGCAAGGCAGGCTACGGCGTCGAAGGCAGCAAGCTGAAGAACTCCGGCCACTGAMSKAPASVSKSGTRTVAPGAVDHSQELGHGNSPAAWTCVIVMLVGALVSSIAFVINSTPIFIAGAAVMVLGLILGYIMRKAGYGVEGSKLKNSGHNANANANANA
D1-29_01845822trpCCOG0134Indole-3-glycerol phosphate synthaseATGGCGACTGTTCTCGATGACATCAATGCCGGTGTCAGGGAGGATATGGAGGCCAGGAAGCGCCTCGTTTCGATCACCGAACTGAAGGACCGGGCGGCGGCTGCGGCTCCGGCCCGGGATGCCTGGGCTGCGCTTGGCGGCCCCTCCGAACGGCGGGACCAGCTTAAAGTCATCGCGGAAATCAAGCGCCGCAGTCCCTCCAAGGGTGACCTCGCCGCGATCGTGGACCCGGCATCCCTGGCGGAACAGTATGCCGACGGCGGTGCGGCAGTCATCAGCGTCCTGACCGAACAGCGGCGCTTCAACGGCTCGCTCGCGGACCTGGACGCCGTCCGGGCCCGCGTTGATGTCCCGCTGCTGCGCAAGGACTTCACGCTGGACGAGTACCAGATCTGGGAAGCCCGCGCCCACGGCGCGGACCTGATCCTGCTGATCGTTGCCGCGCTTTCGGATTCCCAGCTCCAGGATTTCAGTGCACTCAGCCGGGAACTCGGCATGAACGTGCTGGTGGAGACGCACACGGAAGAGGAAATCGAACGCGCCGTGGCTGCGGAAGCGCGGATCATTGGCGTGAACGTGCGGAACCTGAAGACGCTCGACGTCGACCGTTCCGTTTTTGCCTCCCTCGCCGGGATGATTCCCGCCGGGGCGCTGGTCATCGCCGAATCCGGCGTGCGCGGCGTGGATGATGTTACCCATTACGCCGCCAGCGGCGCGAACGCCATCCTGGTGGGCGAGGCCCTGGTCAGCGATTCCACTCCCCGAGAGCGGATCGCAGAGTTTACGGCGGCGGGGGCTGCCGCGATCGCTGCACGGGCTTGAMATVLDDINAGVREDMEARKRLVSITELKDRAAAAAPARDAWAALGGPSERRDQLKVIAEIKRRSPSKGDLAAIVDPASLAEQYADGGAAVISVLTEQRRFNGSLADLDAVRARVDVPLLRKDFTLDEYQIWEARAHGADLILLIVAALSDSQLQDFSALSRELGMNVLVETHTEEEIERAVAAEARIIGVNVRNLKTLDVDRSVFASLAGMIPAGALVIAESGVRGVDDVTHYAASGANAILVGEALVSDSTPRERIAEFTAAGAAAIAARAPGPT0007080_840DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007080-trpC-K01609NANA
D1-29_018461416trpBCOG0133Tryptophan synthase beta chainATGGTTGACGCACCTTCAGGGAACGCTGACAACAACGCCGCGGATGCATTCCTGCAGGGCGGCTCCCTCAAGCACGCCCCTGGGCCCTACTTCGGCGGGTACGGCGGACGCTGGATGCCCGAGTCCCTCATCGCCGCCCTGGATGAACTGGAAGACACCTTCGAAAAGGCCAAGGCGGATCCTGACTTCCTCGCCCAGATCGCGGACCTGAACAAAAACTACTCGGGCCGGCCCTCCCTCCTGACCGAAGCCAAGCGCTTCTCCGAGCACGCCGGCGGCGCCAGGGTTTTCCTCAAGCGTGAGGACCTGAACCACACCGGATCGCACAAGATCAACAACGTGCTGGGGCAGGCCCTCCTGGCCAAGCGGATGGGCAAGACCCGTGTCATCGCCGAGACCGGGGCAGGACAGCACGGCGTGGCCAGCGCCACGGCCGCCGCCCTGCTGGGCCTTGAATGCGTTGTGTACATGGGTGCTGAAGACTGCCGCCGGCAGGCACTGAACGTGGCGCGGATGCAGCTGCTGGGTGCCACCGTGGTTCCTGTGGTCAACGGTTCCCAGACCCTCAAGGACGCCATCAACGACGCCCTCCGGGACTGGGTCAGCAACGTGGACACCACCCACTACCTCCTGGGCACCGCCGCCGGGGCGCATCCGTTCCCGGCCATGGTCCGGTTCTTCCACGAAGTGATCGGCGAGGAAGCCCGGGCGCAGATCCTGGACCAGGCCGGAAAGCTTCCGGACGCCGTCTGCGCCTGCATCGGCGGCGGCTCCAACGCCATCGGCATCTTCCACGGTTTCCTGGACGATCCCGAGGTCAAAATCTACGGCTTCGAGGCCGGCGGTGACGGGGTGGACACCGGACGCCACGCTGCCACCATTACGCTCGGCAAGCCGGGCGTCCTGCACGGCGCACGGTCCTACCTCATGCAGGACGACGACGGCCAGACCATCGAGTCCCACTCCATTTCGGCAGGCCTGGACTACCCGGGTGTGGGGCCGGAGCATGCCTACCTCGCCGACATCGGCCGGGTCAGCTATGAACCCATTACGGACAGCGAAGCGATGGACGCCTTCAAGCTGCTGTGCCAGACCGAGGGCATCATTCCGGCCATCGAGTCCTCGCACGCCCTGGCCGGCGCCATCAAGGTGGGCAAGCGGCTGACCGAAGGCAAGGCCAACCCTTCCGAGACAGTGGTCATCGTCAACCTCTCGGGCCGTGGCGACAAGGACGTGGAGACAGCCGCGGAATGGTTCGACATGCTGGATGAGGAGGGCAAGGTGAAGGGCACCAACCTCTCCACCCGCAAGCCCAAGGGCCCCTCGGACAGGGCAGCCACCGAAGCCGTTCCTGCCGCCAGCAATGCAGGGATCAAAGCGGGGATCAACGCGGACAATAGCGAGGACCAGAAGTGAMVDAPSGNADNNAADAFLQGGSLKHAPGPYFGGYGGRWMPESLIAALDELEDTFEKAKADPDFLAQIADLNKNYSGRPSLLTEAKRFSEHAGGARVFLKREDLNHTGSHKINNVLGQALLAKRMGKTRVIAETGAGQHGVASATAAALLGLECVVYMGAEDCRRQALNVARMQLLGATVVPVVNGSQTLKDAINDALRDWVSNVDTTHYLLGTAAGAHPFPAMVRFFHEVIGEEARAQILDQAGKLPDAVCACIGGGSNAIGIFHGFLDDPEVKIYGFEAGGDGVDTGRHAATITLGKPGVLHGARSYLMQDDDGQTIESHSISAGLDYPGVGPEHAYLADIGRVSYEPITDSEAMDAFKLLCQTEGIIPAIESSHALAGAIKVGKRLTEGKANPSETVVIVNLSGRGDKDVETAAEWFDMLDEEGKVKGTNLSTRKPKGPSDRAATEAVPAASNAGIKAGINADNSEDQKPGPT0007075_232DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007075-trpB-K01696NANA
D1-29_01847807trpACOG0159Tryptophan synthase alpha chainATGACTGAACAGACGGCCAGCAAGTCGGCAGCTGCCATCGACCGTGCCCGTGACGCCGGACGCTCAGCCCTGGTGTGCTACCTGCCCGCCGGTTACCCGGATGTCCAGTCCACCATCGACGCCGGCATCGCCATGGCGAAGAACGGCGCGGACCTGATCGAAATCGGCATTCCGTACTCAGACCCGGTGATGGACGGTCCTGTTATCCAGGCAGCCACCACAGAGGCCATCGCCAACGGCTTCCGGGTTGAAAGCGTGTTCGACGTCGTTGCGGGGATCACCGCGGCAACCGACGTCGCCGTGCTGGTGATGACCTACTGGAACCCTGTGGTCAGGATGGGCGTGGACGAGTTCTCCCGCCGGCTGGCCGAGGCCGGGGGAGCGGGACTTATTACGCCGGACCTCATCCCGGATGAAGCGTCTGAATGGTTCGCGGCCTCCGACAAGTACGGACTGGACCGGGTTTTCCTCGTGGCACCTTCCTCCTCTCCCGAGCGCCTGGCCATGACGGTCAAGGCCAGCCGCGGCTTCGTCTACGCAGTCTCCATCATGGGAGTCACCGGGACCCGGCAGGATGTCAGCAGCAGCGCCGAACAGCTCGTCGCGGACACGCATGCCGCAGGTGCCGAGCGTGTGTGCGTGGGGCTTGGCGTGTCCAACGCCGGCCACGTCCGCGAGATCGCCGCCTACGCGGACGGCGTGATTGTGGGCACCGCACTGGTGGCTGCCATCCGCGACGGCGGAGTCCCCGCAGTTGCCGATCTCACCAGGGAACTCAGCGCGGGACTCGTCAGGGAAGAAGCCTAAMTEQTASKSAAAIDRARDAGRSALVCYLPAGYPDVQSTIDAGIAMAKNGADLIEIGIPYSDPVMDGPVIQAATTEAIANGFRVESVFDVVAGITAATDVAVLVMTYWNPVVRMGVDEFSRRLAEAGGAGLITPDLIPDEASEWFAASDKYGLDRVFLVAPSSSPERLAMTVKASRGFVYAVSIMGVTGTRQDVSSSAEQLVADTHAAGAERVCVGLGVSNAGHVREIAAYADGVIVGTALVAAIRDGGVPAVADLTRELSAGLVREEAPGPT0007070_2488DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007070-trpA-K01695NANA
D1-29_018481155lgt_2Phosphatidylglycerol--prolipoprotein diacylglyceryl transferaseATGCAGACCCTCATTTACGCAGCAGGCATGGTGCCCGCCGCGATCCCCAGCCCGGACTGGTCCGGCTTCGACATCCCGCTGCCGTGGGGTTCGCTGCGCATCCACGCCTATGCCCTCTGCATCCTTGCCGGCATCATCGTTGGCCTTTGGCTCACGTCCATCCGGTGGGCCCGGCGGGGTGCGCCCGAAGGCAGCGTGTGGGACATCGTCATCTGGGCGATTCCGTTCGGCATCATCGGCGGCCGGCTTTACCACGTGGTGTCATCCCCGGACGCCTACTTCGGCCCGGGCTTCGACGGCACCGGTGACCTCTCGCTCATCCCGCAGATCCAGCGTGGCGGGCTGGGGATCTGGGGAGCGGTGGTGCTGGGAGTCCTCGGAGCCTGGATCGGCTGCCGGCGTTCCGGCGTCAAGCTCAGCGCGTTCCTGGACGCTGCCGCGCCCGGCCTGCTCCTGGCGCAGGCCGTGGGCCGCTGGGGAAACTACTTCAACCAGGAACTCTTCGGCGGGCCCACCACCCTCCCTTGGGGCCTGCAGATTGACGCTGACAACGCCAATTTCCCGGCCGGCATGCCAACAGACACCCTGTTCCACCCCACCTTCCTGTACGAGTCGCTGTGGAACATCGCCGGAGTGCTGATCCTGCTGGCTCTCGACCGGAGGTTCCACTTCCGGCGCGGACGGCTCTTCTGGCTCTACGCCGTGTACTACACGCTGGGCCGGGTCTGGATCGAAGCCATGCGCATCGATGAAGCCGAGCAGATCAGCCTCCTCGGGATCACGGCCAGGCTGAATGTCTGGACCAGCATTGTGGTCCTGCTGGTGGCGTTGGCCGCTTTCATCCTGCTCGGAATGAAGGGCCGTCCGGAGCCGGACAGCCCCTATCTGGCCGGTCAGGAACCCGCCGGGAACAAGGACGAGGACAACGAGGAGGAGGAAGGCAAACCGGTCCGGGATGCGGACTCTGTTGTCTCAGATAGTGAATCGCGTGATAATCTCCCTGATAACCAAAGCGGTTCCGGCCATTCATCCACCCCCAAGGAAGATGTGCCGGCATCTCCGGCGGGCACCACGTCCATACCGGAGTCGCCGGTGGCCGGAAGTTCCGGCCACAAAGCCACAGGATCCGCGCCGGAGGCTGGCACCAGCAAGTAGMQTLIYAAGMVPAAIPSPDWSGFDIPLPWGSLRIHAYALCILAGIIVGLWLTSIRWARRGAPEGSVWDIVIWAIPFGIIGGRLYHVVSSPDAYFGPGFDGTGDLSLIPQIQRGGLGIWGAVVLGVLGAWIGCRRSGVKLSAFLDAAAPGLLLAQAVGRWGNYFNQELFGGPTTLPWGLQIDADNANFPAGMPTDTLFHPTFLYESLWNIAGVLILLALDRRFHFRRGRLFWLYAVYYTLGRVWIEAMRIDEAEQISLLGITARLNVWTSIVVLLVALAAFILLGMKGRPEPDSPYLAGQEPAGNKDEDNEEEEGKPVRDADSVVSDSESRDNLPDNQSGSGHSSTPKEDVPASPAGTTSIPESPVAGSSGHKATGSAPEAGTSKNANANANANA
D1-29_018494617gltBCOG0067Glutamate synthase [NADPH] large chainATGACCCAAACTCTTCACACTCCCAGTTGGTCCGAACCGGACCAGCCTGTGTCCGCCATGTCGCCATTCAAGCGCTTCGCGGCCCTTCCGGAGGCACGTGGGCTCTACAACCCGGAGCAGGAGAAGGACGCCTGCGGTCTTGCAATTATCGCCACCCTCCGCGGTGAGCCCGGCTACGACATTGTTGATGCCGCCCTGACTGCCCTGCGCAACCTCGAGCACCGCGGTGCCGTGGGCGCGGACGAAGGAACCGGCGACGGCGCCGGACTCCTGATGCAGATCCCGGACGAGTTCTTCCGGGCAGTCACCGAATTTGAACTCCCGGCCCCCGGCCAGTACGTTGCGGGCACAGCTTTCCTCCCTTCCGAGCAGCGCGAAGCCGAGGCCGCAAAGGCCGGAATCGAAGGCCTGGCCGCGGACGAGGGCCTGGTGGTCCTTGGCTGGCGCGAAGTGCCTATCGTCGCAGACCTGGTCGGTGCCATGGCCCGTGCCTGCATGCCGTACTTCTCGCAGCCGTTCCTTACCTCGGCCACCGGCGAGGAACTGGACCGCAACGAGCTGGACTCCCGGGCCTGGCGCCTCCGCAAGCGCGCGCAGAACAAGTTCGGGGTGTACTTCCCGTCGCTGTCCTCCCGGACCATCGTCTACAAGGGCATGCTCACCACCGCCCAGCTGGAGCCGTTCTACCCGGACCTCTCGGACAAGCGGTTCAAGACCAAGCTGGCCATCGTCCACTCCCGGTTCTCCACCAACACGTTCCCGTCCTGGCCGCTGGCCCAGCCGTTCCGCACCATCGCGCACAACGGCGAAATCAACACGGTCAAGGGCAACCGGAACTGGATGCGTGCCCGCCAGTCGCAGCTTGCCAACCCGCTCCTGGGGGACTCCCCGGAGGAGCTGTACCCCATCTGCACGCCCGGCGCGTCAGACTCCGCGTCATTTGACGAGGTGGCGGAGTTGCTTTGGCTGTCCGGCCGGCCCATCACGCACTCGATCATGATGATGATCCCCGAGGCCTGGGAAAACCACGCCACCATGGATCCGGCACGGCGCGCGTTTTATGAATACCACTCCCTGCTGATGGAACCGTGGGACGGCCCTGCCGCCGTATCCTTCACCGACGGCAACCTGGTGGGTGCCACCCTTGACCGCAACGGACTGCGCCCCGGACGCTACTGGATCACCGAGGACGGCCTGATCGTCTTCGCCTCCGAAGTCGGCGTGATCGACGTCGAAGCTTCCAAGGTGGTCAAGAAGGGTCGCGTTTCGCCGGGCAAGATGTTCCTGGTGGACACCGACAGCGGCCGCATCATCGACGACGAAGAGGTCAAGGCCGAGGTCGCCGCGGCGAACCCGTGGGCCGAGTGGGTCAAGGACAACCTGATCGACCTCAACGAACTCCCCGAGCGCGAGCACGTGGTCCACACCGCCGCCTCGGTGAACATCCGCCAGCGCACCTTCGGCTACACCACCGAAGAGCTCAAGATCCTGCTCGGCCCGATGGCCCGCACCGGCGCAGAGCCGCTGGGTGCCATGGGTTCCGATACCCCCGTTGCCGTGCTGTCCAAGCGTCCGCGGCTGCTCTTTGACTACTTTGTACAGTCCTTCGCGCAGGTCACCAACCCGCCGCTGGACGCCATTCGCGAAGAGCTTGTCACGTCCCTGACCTGTGCCATCGGCCCCAACGGGAACCTGCTGGATACCAAGCAGGTCCGCCAGCCCCAGGTTTCGCTGCCGTTCCCGGTGATCAACAACGACCAGCTGGCCAAGATCGCCAACATCGAAAACGCCGACGGCGACAAGGTGGCCATGAAGGTCCGCGGCCTCTACCGCCCGGAAGGCGGCGAGAACGCGCTCCGCGCCCGGCTCACCGAGATCTGCGAGCAGGTCTCCGGTGCCATCAACCGCGGTGTGCAGTACGTGGTGCTGTCCGACCGTGACTCCAACGCGCAGTGGGCACCCATCCCATCGCTGCTGCTGGTCAGCGCCGTGCACCACCACCTGCTCCGCAGCGCCAACCGCACCAAGACCGCCCTGGTGGTTGAGGCCGGCGACGTCCGGGAAACGCACCACGTGGCCGTGCTGGTGGGCTACGGTGCTTCGGCCGTGAACCCGTACCTGGCCATGGAATCGGTGGAACAGCTCATCGCCTCCGGCGACGTTGTGGGCGTGACCCCGCAGGACGGCGTCTACAACCTCATCAAGGGCCTGGGCAAGGGTGTCCTGAAGATCATGTCCAAGATGGGCATCTCCACGGTCGCCTCCTACACCGGCGCGCAGACGTTCGAGGCCCTGGGCCTGGGGCAGGAACTGGTGGACGAATTCTTCGCCGGAACGCACTCCCAGCTTGGCGGTGTGGGCCTTGACGTCATCGCCGCTGAAGTTTCGGCGCGACACCAGATGGCCTACCCGGAAGGTGGCATCGAGCTGCCGCACCGGCCCCTGCTGGGCGGCGGCGAGTACCAGTGGCGCCGCGACGGCGAGCCGCACCTGTTCAACCCCGAGACGGTTTTCCGCCTGCAGCACGCCACGCGTGAGCGCCGGTACGACATCTTCAAGTCCTACACCAAGGGCGTGGACGACCAGTCCGAGAACCTGATGACCCTCCGCGGCCTGCTCAAGTTCAAGACCGGCGAGCGTCCCGCAGTTCCGCTGGAGGAAGTGGAGCCCGTCTCCAGCATCGTCAAGCGGTTCTCCACGGGTGCCATGAGCTACGGCTCCATCTCCCAGGAGGCGCACGAAACCCTGGCGATCGCCATGAACCAGTTGGGCGGCAAGTCCAACACCGGTGAAGGCGGCGAGGACGTGGACCGCCTGCTGGACCCGAAGCGCCGCTCCGCTGTGAAGCAGATCGCCTCCGGCCGGTTTGGTGTGACCAGCCTCTACCTGAGCAACGCCGACGACATCCAGATCAAGATGGCGCAGGGTGCCAAGCCCGGCGAAGGCGGTCAGCTGATGGCGCAGAAGGTCTACCCCTGGGTGGCCCGGACGCGGCACTCAACCCCCGGCGTCGGACTGATCTCCCCGCCTCCGCACCACGACATCTACTCGATCGAGGACCTCGCTCAGCTCATCTACGATGCGAAGCGCGCCAACCCCTCGGCCCGTGTACACGTCAAGCTGGTGTCGGAAGTCGGGATCGGCACTGTGGCGTCCGGCGTGACCAAGGCGAAGGCCGACGTCGTACTGGTTTCCGGCCATGACGGCGGGACCGGCGCGTCCCCGTTGAACTCGCTCAAGCATGCCGGTGTGCCGTGGGAGCTGGGGCTCGCAGAGACCCAGCAGACCCTGATGCTGAACGGTCTCCGTGACCGTGTGGTGGTGCAGGTGGACGGCCAGCTGAAGACCGGCCGCGACGTCGTGATCGCGGCGCTGCTGGGCGGCGAGGAGTTCGGTTTCGCCACCGCTCCGCTGGTGGTGTCAGGCTGCATCATGATGCGCGTCTGCCACCTGGACACCTGCCCCGTGGGCGTCGCGACGCAGAACCCTGAGCTGCGTTCACGCTTCAACGGCAAGCCCGAGTTCGTGGTCAACTTCTTCGAATTCCTTGCCGAGGAAGTCCGTGAAATCCTTGCCGAACTTGGCTTCCGCAGCCTGGAGGAGGCGATCGGCCACGCCGAAATGCTGGATGCCCGCGAGGCGATCAACCACTGGAAGGCCGATGGCCTGGACCTTGATCCGATCCTGCATGGCCTCGAGTTTGATGATGATGCGCCGCTGCGCAACCTCACGTCGCAGAACCACGAGCTGGACAAGCACTTTGACCAGCGCCTGATCACCATGGCCACCGAGGCGCTGACTGACCGCAGCCCGGTCAAGATCGCCGTCGATGTCATCAACACGGACCGCTCTGTGGGAACCATGCTGGGCCACGTTGTGACCAAGACGTTCAGCACTGACGTGCTGGCGACGGACACCATCGACATCACGCTGACCGGAACGGCCGGCCAGTCGCTGGGAGCCTTCCTGCCGGCCGGCATCACGCTGCGCCTGTTCGGTGACTCCAACGACTACGTGGGCAAGGGCCTTTCCGGCGGACGGATCATCGTCCGGCCGGACCGCACCAACGTGTTCAAGGCGGAAAGCAACGTCATTGCCGGAAACGTGATCGGCTACGGCGCCACCAGCGGCGAGATGTACCTCCGCGGCCAGGTGGGCGAACGCTTCCTGGTCCGCAACTCCGGCGCCACAGCCGTTGTTGAAGGCATCGGCGACCACGGCTGCGAGTACATGACGGGCGGCCAGACGCTGATTATTGGCCGCACCGGACGCAACTTCGGTGCCGGCATGTCCGGCGGCACGGCGTATGTCCTGGATCTGCAGACCACGCGCGTGAACAAGGACGCCCTGCAGAGCGGCGAACTCCAGCTCCTCGAACTCGACGCGGAGGACCGTGACATTGTCCACGGGCTCCTGGTCAAGCACCACGAAGAGACGGAATCCCTGCTGGCCGCGCGGCTGTTGGAGAACTTCGACGACACCGCTGCCCGTATTACCAAAGTGCTCCCGCGCGACTACGCGGCAGTCCTGCAAACCCGTCTTGACGCCATCGAAGAGGGCCTTGACCCCGACGGCGAAGAAGTATGGTCTCGAATCCTGGAGGTGACCGGTGGCTGAMTQTLHTPSWSEPDQPVSAMSPFKRFAALPEARGLYNPEQEKDACGLAIIATLRGEPGYDIVDAALTALRNLEHRGAVGADEGTGDGAGLLMQIPDEFFRAVTEFELPAPGQYVAGTAFLPSEQREAEAAKAGIEGLAADEGLVVLGWREVPIVADLVGAMARACMPYFSQPFLTSATGEELDRNELDSRAWRLRKRAQNKFGVYFPSLSSRTIVYKGMLTTAQLEPFYPDLSDKRFKTKLAIVHSRFSTNTFPSWPLAQPFRTIAHNGEINTVKGNRNWMRARQSQLANPLLGDSPEELYPICTPGASDSASFDEVAELLWLSGRPITHSIMMMIPEAWENHATMDPARRAFYEYHSLLMEPWDGPAAVSFTDGNLVGATLDRNGLRPGRYWITEDGLIVFASEVGVIDVEASKVVKKGRVSPGKMFLVDTDSGRIIDDEEVKAEVAAANPWAEWVKDNLIDLNELPEREHVVHTAASVNIRQRTFGYTTEELKILLGPMARTGAEPLGAMGSDTPVAVLSKRPRLLFDYFVQSFAQVTNPPLDAIREELVTSLTCAIGPNGNLLDTKQVRQPQVSLPFPVINNDQLAKIANIENADGDKVAMKVRGLYRPEGGENALRARLTEICEQVSGAINRGVQYVVLSDRDSNAQWAPIPSLLLVSAVHHHLLRSANRTKTALVVEAGDVRETHHVAVLVGYGASAVNPYLAMESVEQLIASGDVVGVTPQDGVYNLIKGLGKGVLKIMSKMGISTVASYTGAQTFEALGLGQELVDEFFAGTHSQLGGVGLDVIAAEVSARHQMAYPEGGIELPHRPLLGGGEYQWRRDGEPHLFNPETVFRLQHATRERRYDIFKSYTKGVDDQSENLMTLRGLLKFKTGERPAVPLEEVEPVSSIVKRFSTGAMSYGSISQEAHETLAIAMNQLGGKSNTGEGGEDVDRLLDPKRRSAVKQIASGRFGVTSLYLSNADDIQIKMAQGAKPGEGGQLMAQKVYPWVARTRHSTPGVGLISPPPHHDIYSIEDLAQLIYDAKRANPSARVHVKLVSEVGIGTVASGVTKAKADVVLVSGHDGGTGASPLNSLKHAGVPWELGLAETQQTLMLNGLRDRVVVQVDGQLKTGRDVVIAALLGGEEFGFATAPLVVSGCIMMRVCHLDTCPVGVATQNPELRSRFNGKPEFVVNFFEFLAEEVREILAELGFRSLEEAIGHAEMLDAREAINHWKADGLDLDPILHGLEFDDDAPLRNLTSQNHELDKHFDQRLITMATEALTDRSPVKIAVDVINTDRSVGTMLGHVVTKTFSTDVLATDTIDITLTGTAGQSLGAFLPAGITLRLFGDSNDYVGKGLSGGRIIVRPDRTNVFKAESNVIAGNVIGYGATSGEMYLRGQVGERFLVRNSGATAVVEGIGDHGCEYMTGGQTLIIGRTGRNFGAGMSGGTAYVLDLQTTRVNKDALQSGELQLLELDAEDRDIVHGLLVKHHEETESLLAARLLENFDDTAARITKVLPRDYAAVLQTRLDAIEEGLDPDGEEVWSRILEVTGGPGPT0000635_895DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265NANA
D1-29_018501458gltDCOG0493Glutamate synthase [NADPH] small chainGTGGCTGATCCACGCGGATTTCTGAAAGTACGACAGCGTGAAACCCAGCCACGGCGCCCCGTTCCGGTCCGCATCATGGACTGGAAGGAAGTCTACGAGGCCCAGGAAAAAGGTGTCCTGAAGGCCCAGGCTGGCCGCTGCATGGACTGCGGCGTGCCGTTTTGCCACCAGGGCTGCCCGCTGGGGAACCTGATTCCGGAATGGAACGACCTCACGTGGCGGGACAAGGGGGAGGAAGCGATTGAGCGGCTGCACGCCACCAACAACTTCCCCGAGTTCACCGGCCGGCTTTGCCCGGCGCCGTGCGAGGCCTCCTGTGTGCTGGGCATCAACCAGCCTGCAGTAACCATCAAGCAGGTTGAAGTCTCCATCATCGACGAAGCCTGGGACAACGGCTGGGTCAACGCGCTGCCTCCCGCGCGCCTTACCGGAAAGACCGTTGCCGTCGTCGGCTCCGGCCCCGCCGGCCTGGCGGTGGCGCAGCAGCTGACCCGAGTGGGCCACACCGTGGCCGTGTACGAACGCGACGACAAGATCGGCGGGCTCCTGCGCTACGGCATCCCCGATTTCAAGATGGAAAAAGAGCAGGTGGACCGCCGCATCGAGCAGATGAAGTCGGAGGGCACCCGCTTCCGCACCGGTGTCTCCGTGGGCACTGATGTGACCTGGGAGCAGCTCCGCCGCCGGTACGACGCCGTGGTGGTCTGCACCGGTGCCACCGTTCCGCGCGACCTGCCCATCCCGGGCCGGGAGCTGGACGGCGTCCACTTCGCGATGGACTACCTTGTCCCGGCCAACCGCGTAGTTGCGGGGGAGTCCGTGGAGAACCAGATCCACGCCCGGGGCAAGCACGTTGTCATCCTGGGTGGCGGCGATACCGGCGCGGACTGCCTCGGCACTGCGCACCGCCATGGGGCAGCCTCTGTCACCACCCTGGCCATCGGCAAGCAGCCTCCCATCGAGCGGGCCGGCCACCAGCCGTGGCCCACGTTCCCCACGCTGTTCGAGATGGCCAGCGCGCATGAGGAAGGCGGCGAACGCACGTACCTCGCCTCCACCGTGGAGTTTGTCGGCGAAAACGGCAAGCTGACAGGCGTCAAGGTTGCCGAAACGGAGTTCGTGGACGGCAAGCGGCTCCCGAAGGCCGGCACCGAGCGGGTCATCCCGGCCGACCTCGTGTTCCTGTCGCTGGGCTTCACCGGCGCTGAACCCGCGGGCATCACCGAGCAGGTCAGTGCCGAGTTTGACGGACGCGGCAACGTGTCCCGTGACGGTTACTACATGACCAACACCGAGGGAATCTTCGTGGCCGGGGACGCCGGCCGCGGGCAGTCGCTTATTGTCTGGGCCATCGCTGAAGGCAGGGCATGCGCTGCAGCCGTGGACAAGTTCCTGATGGGAAGCACCATCCTTCCTGCACCCGTGGCCCCGACCGACAGGGCAATCGCGGTTCTGTGAMADPRGFLKVRQRETQPRRPVPVRIMDWKEVYEAQEKGVLKAQAGRCMDCGVPFCHQGCPLGNLIPEWNDLTWRDKGEEAIERLHATNNFPEFTGRLCPAPCEASCVLGINQPAVTIKQVEVSIIDEAWDNGWVNALPPARLTGKTVAVVGSGPAGLAVAQQLTRVGHTVAVYERDDKIGGLLRYGIPDFKMEKEQVDRRIEQMKSEGTRFRTGVSVGTDVTWEQLRRRYDAVVVCTGATVPRDLPIPGRELDGVHFAMDYLVPANRVVAGESVENQIHARGKHVVILGGGDTGADCLGTAHRHGAASVTTLAIGKQPPIERAGHQPWPTFPTLFEMASAHEEGGERTYLASTVEFVGENGKLTGVKVAETEFVDGKRLPKAGTERVIPADLVFLSLGFTGAEPAGITEQVSAEFDGRGNVSRDGYYMTNTEGIFVAGDAGRGQSLIVWAIAEGRACAAAVDKFLMGSTILPAPVAPTDRAIAVLPGPT0000640_1953DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266NANA
D1-29_018511488pykCOG0469Pyruvate kinaseATGAGACGCGCTAAAATTGTGGCCACTTTCGGACCGGCAATTGCCAGCTTTGAAAACACCCTCGCGGTGTTGGAAGCCGGCGTTGATGTTGCCCGGATGAACATGAGCCACGGCGACTATTCCGTGCACGACAACACCTACGAGAACGTCCGCAAGGCTTCGGCCAAGCTGAGCAAGCCCGTTGCGATCATGGCAGACCTCCAGGGTCCCAAGATCCGCCTGGGCCGGTTTGTTGACGGCCCGCACGCGCTGGCCGTTGGCGACATCTTCACCATCACCACCGAAGACGTTCCCGGCACCAAGGAAATCTGCTCCACCACGCTCAAGAGCCTCACCGAGGACGTCAACCCGGGCGATGCCCTGCTGATCGACGACGGCAAGGTGGCACTGCGTGCCATCGAGGTTGACGACGTCAAGGTAGTGGCCGAAGTGACCGTGGGCGGCATGGTGTCCAACAATAAGGGCATCAACCTTCCCGGCGTGGCAGTCAACGTTCCCGCATTGAGCGAAAAAGACGAGGACGACCTCCGCTGGGCCATGCGCCGCGGCGTTGACCTCGTAGCTCTTTCGTTCGTCCGCGACGCCTCCGACATTGTCCGCGTTCACGAGATCATGGATGAGGAAGGCCGCCGTGTGCCGGTCATCGCCAAGATCGAAAAGCCGCAGGCAGTGGAGCAGCTCCACGAGATCATCGACGCGTTCGACGCCATCATGGTGGCCCGTGGCGACCTCGGCGTGGAACTTCCCCTGGAGGAAGTGCCCATCGTCCAGAAGCGCGCCATTGAACTGGCCCGCCGCTGGGCCAAGCCGGTCATCGTGGCAACCCAGGTGCTGGAATCCATGATCGACAACCCGCGGCCCACCCGTGCAGAGGCTTCTGACTGCGCCAACGCCGTGCTCGATGGTGCTGACGCTGTCATGCTCTCCGGCGAGACCAGCGTGGGCAAGTACCCCATCGAAACCGTCAAGGTCATGGCCCGGATCATCGAATCCACCGAGGTCCATGGCCTGGAGCGCGTCCCCCCGCTGGGGACCAAGCCCAAGACCCGTGGCGGCGCCATCACCCGTGCCGCCGTCGAAATCGCCGACCAGCTGGAAGCAAAGTACATCTGTACCTTCACCCAGTCCGGTGACTCTGCACGCCGCCTGTCCCGCCTGCGTCCCATCAAACCGGTCTTCGCGTTCACTCCGGTGGAGCACGTGTGGAACCAGCTGGCTCTCACGTGGGGAATCCAGCCGGTGCTGGTCCCCATGGTGGGCCACACCGACGAGATGACCGCCCAGGTTGACCGCAGTCTGCTGGAAATGGAACTGGTGGAAGACGGCGACCTGGTGGTCATCGCTGCCGGTTCCCCTCCCGGAAAGGCCGGTTCCACGAACTCGCTGAAGGTCCACAAGGTGGGCGACCTCGCCGATACCACCGGTCCTGGCGATACAGCCGGGAACAAGGAAAAGCTTGGCCCGTGGCCGGAAAAGAAGAAGAAGTAAMRRAKIVATFGPAIASFENTLAVLEAGVDVARMNMSHGDYSVHDNTYENVRKASAKLSKPVAIMADLQGPKIRLGRFVDGPHALAVGDIFTITTEDVPGTKEICSTTLKSLTEDVNPGDALLIDDGKVALRAIEVDDVKVVAEVTVGGMVSNNKGINLPGVAVNVPALSEKDEDDLRWAMRRGVDLVALSFVRDASDIVRVHEIMDEEGRRVPVIAKIEKPQAVEQLHEIIDAFDAIMVARGDLGVELPLEEVPIVQKRAIELARRWAKPVIVATQVLESMIDNPRPTRAEASDCANAVLDGADAVMLSGETSVGKYPIETVKVMARIIESTEVHGLERVPPLGTKPKTRGGAITRAAVEIADQLEAKYICTFTQSGDSARRLSRLRPIKPVFAFTPVEHVWNQLALTWGIQPVLVPMVGHTDEMTAQVDRSLLEMELVEDGDLVVIAAGSPPGKAGSTNSLKVHKVGDLADTTGPGDTAGNKEKLGPWPEKKKKPGPT0002020_3153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873NANA
D1-29_01852606pdtaRCOG3707putative transcriptional regulatory protein pdtaRGTGACTGAACCGACGGAGTCAAAATCCACGTCCCAGCCGGCGCGCCGCGTCATTGTGGCCGAGGATGAAACCCTCATCCGCCTCGACATCATCGAGATCCTGCGCGGCGAGGGCTACGACGTGGTGGGCGAGGCTGACAACGGCGAGAAGGCCGTGCAGCTCGCGGAGGAACTTAAGCCTGACCTCGTCCTGATGGACGTCAAGATGCCGGTTATGGACGGAATCTCCGCCGCCGAGAAGATCGTCAAGGCCCGCATCGCGCCCGTGGTCCTGCTGACGGCCTTCAGCCAGAAGGAGCTTGTGGAGCGGGCACGCGACGCCGGCGCCATGGCCTACGTGGTCAAGCCGTTTACGCCCGCCGACCTCATTCCGGCCCTGGAGATCGCCCTCTCCCGCCACGAGGAGATCAAGGCCCTCGAGAGCGAGGTGTCGGACCTGCAGGAGCAGTTCGCCACCCGCAAGCTTGTGGAGCGCGCCAAGAGCCTCCTGACCACCAAGATGGGCCTCACCGAGCCTGAGGCGTTCCGCTGGATCCAGAAGACCTCCATGGACCGCCGCCTGAGCATGCGTGAGGTGGCCGAAACCATCATCAACCAGGTCAACTGAMTEPTESKSTSQPARRVIVAEDETLIRLDIIEILRGEGYDVVGEADNGEKAVQLAEELKPDLVLMDVKMPVMDGISAAEKIVKARIAPVVLLTAFSQKELVERARDAGAMAYVVKPFTPADLIPALEIALSRHEEIKALESEVSDLQEQFATRKLVERAKSLLTTKMGLTEPEAFRWIQKTSMDRRLSMREVAETIINQVNNANANANANA
D1-29_018541083xerC_1Tyrosine recombinase XerCATGGTTCTCTGGCGGGATCCAAAGAGCCGCGAGCAGCAGGGCCTGACTGTCGCCACCGAAGCCGAAGCTGAAACCCTTAAACGACTTCTGGACGCCAACGGTCAGTCATTCGAAATCGCCCAGCACGCCATACTCTCCAACCAAGCTCGGGTTCCCACCGTAGCCGAGGTCGTCCAGGAACATATCGACCTGCTGATTCGTCCATCCAGCGGAACTGTCAGAACTTATCAAGTGATGCTCGATCGTCATATCCGAGACTCAATCGGCCACATTCCTGCGGACAAGCTCGACTATCGGCACCTGAATCATTGGGTGAAATCGATGATGGCCAAGGGTAAGGCCCCGAAGACGATCCACAATGTTCACGGCCTCATCTCGGCAGCGATGAATACTGCAGAAATGCTCCAGTACATCCCCAAGAATCCTTGCCGTGGCGTGCAATTGCCTAGCATCGACAAGGCTGAGGATGAAGCGATGTTCCTCACCCATACCGAGTTCAACATGATCCTGGAGGTGATGGGGGAGCGGTACAAAACCTTCACGAGCTTTCTGGTTATGACGGGAACCAGATTTGGGGAGGCTACCGCGCTGAAGGTGGCGGATGTCGATTTGCTCGCCAAGCCGCCCACGGTGCGGGTCAACAAGGCCTGGAAACGGGATGGCCAGTCCCAGTTCTACATTGGCGCCACAAAGACGGGTGCGGGAAAGCGGACGATCGGCCTCAACCCGGCGCTCGTGGATCTCCTCGTACCCCTGGTGGCGAGCCGCACCGGCGATGAGCTCCTCTTTACGACTCCCAAGGGGGAGCGTATTGTCCATAGGCTGTATTGGCACTATTACTGGGTTCCAGCCGTGCAGGCGGCGCAATCGCATGGACTTAAAAAGTCCCCGCGCATCCACGATCTGCGGCACACGCACGCATCATGGCTGATCCAAGATGGCGTAAACCTGTTCACCATCTCGCGGAGGCTCGGCCACACATCAACCAGAACCACCGAGCAGGTCTACGGACACCTGATGCCGGAAGCCCTGCAGGCGGGTGCGGATGCGACGGAGCGTTCGATTTCCGGGTTTGTTCGCTGAMVLWRDPKSREQQGLTVATEAEAETLKRLLDANGQSFEIAQHAILSNQARVPTVAEVVQEHIDLLIRPSSGTVRTYQVMLDRHIRDSIGHIPADKLDYRHLNHWVKSMMAKGKAPKTIHNVHGLISAAMNTAEMLQYIPKNPCRGVQLPSIDKAEDEAMFLTHTEFNMILEVMGERYKTFTSFLVMTGTRFGEATALKVADVDLLAKPPTVRVNKAWKRDGQSQFYIGATKTGAGKRTIGLNPALVDLLVPLVASRTGDELLFTTPKGERIVHRLYWHYYWVPAVQAAQSHGLKKSPRIHDLRHTHASWLIQDGVNLFTISRRLGHTSTRTTEQVYGHLMPEALQAGADATERSISGFVRNANANANANA
D1-29_01855279hypothetical proteinATGGATCTTGAATTCTTCGAGCCGGCCGAGGCAGCTGCCCTGATGCGGTGCACTGAGGCCTGGCTCCGGGATGGCGCCGCCAGCGGGCGGTTTCCCCATGCGTGCTGGGGAAAGGGGAAGATTATCTTCACCTCAGAGCACATCATGGAGATTGCCCGGCTGAGTGAGGTTCAACCCGGCAGCATGTCAAACCGTGCCCCTGCCGATGCAAAGACGGCGTCGAAGGAGCGGCTCATCGGAACCCGGGCGAGAGTACGACGACTCGCATCTGCCAAGTGAMDLEFFEPAEAAALMRCTEAWLRDGAASGRFPHACWGKGKIIFTSEHIMEIARLSEVQPGSMSNRAPADAKTASKERLIGTRARVRRLASAKNANANANANA
D1-29_01856495hypothetical proteinATGCTCATGGAAGTTCGTTCACACTTGGAAGCAGTTCCGGCAGTACGCGCAGAAGATGCCTTCAAAGTGCTTCTGCTGCCTGCACATCTAACGCTTGAGCGCCTTGTCGAAGTTGTCGAGGGGATCCGCAACCGGCGCATTGAGATTGAGGTTTCCGGAGCACTCACTGGAGGGTCTGTCTGCGGCCTATGGCTGTCGACGGACACGGCGGAGATCATCTTGCACGCCGCGACCCCATCAGCGCTTCACAGGCAGCAATTCATACTTCACGAGCTAGGCCACATGGTTCTCCGCCATGACGAGTTGGTTCTCCCCTCCGATTACGCCGACATCCTCTTTCCTGATCTGCCGCGTGAGCTGGTTTCGAGAGTGTTTGCTCGAAGCAGCTTCTTGGACGACTTCGAGGCCGCAGCCGAAACTCTGGCAGACCTCTTCGCGGCTGCAATCCGGGACAGTACCGTCGAACCACGATCGTTCGAGAGGATTTTCGGATGAMLMEVRSHLEAVPAVRAEDAFKVLLLPAHLTLERLVEVVEGIRNRRIEIEVSGALTGGSVCGLWLSTDTAEIILHAATPSALHRQQFILHELGHMVLRHDELVLPSDYADILFPDLPRELVSRVFARSSFLDDFEAAAETLADLFAAAIRDSTVEPRSFERIFGNANANANANA
D1-29_018571032hypothetical proteinATGATCCAGATCATCGTGGCCTCCCTGATCTGGGGGCTCGTCCTATGTTTGCTGCCCGGAATCCGATGGCGCGCTGACCAAAGTATCCTGGTGGCGGGTGTGACCATCGCGACGGCGCTCACGCTAAACATCGATCCGGTCTACATAGCCGGAGATGCGCTACTGGGCCGTCGTAATGTCCTGGATCTGCTCGCAAACATCCTGATGGTCGTCGGCATATATTTCCTATCCAGGGCAATCCTTCGTGCGGCCGATCCCGGCGAGCTCCCGGCACGGCAGGACCACGTCGGTCTCGCTGCATTGGGCCTTGTGATTGTTGGGCTTACTGCATGCTTCGCCAATGTGGCTGCCCCCTATTCCTCGACGAGTTTCATGAAAGACTTCGGCGACCAATGGTCAGCCGCCGCCTATTCCGCCGTCCAATTTGGCTACATTGGAGTCGTCGTATCCATTACCGGCTACACGTGTTTCAGATTCCTTGGCCATATGTCCAAGCCATACTTCCGTGTCGCCTTCGCCCTCATCGGTGTTGGCTGTTCGTTGGCGGTAGTACTAGTTCTGGCTGTTCTGGGAATGGACATCCTCCACCTGCAGGGTGACTTGGAAGGGATGACCGCCCTTTCGCTTGTTTACGATATTGCCTTGGTCGGAGCCATGGCCTTTCTGTGTGCAGGACTTGCATTGCCGCCCATGGCTCGCATGCTTTCCCGCAAGAGGGAATCCAAGATGGAGGCCACCTTCATTCCTCGCCTCGCTAAGGTTTGGGAAAAAACTACGGATCCGAGACCAGAGGTCCGCCTTCTGTCCTCAGCCCAAATTGCGGATCGCCGTGAGTCAGTGAGGTGGCGCCTCCACAGGATGCTGGTCGAAATCCAGGATGCCCTTCTGATCGATCCTGAGCTCTCGAGGTTGCTGGATGATCGGGACCGGCAGATCCTAAACCTGGTGGAGCGATATCTGGCCGCACCTCCTTCAGGGAAGGAAGACCGAAGGGGTCCCCACGCTGTCGGCCGGGGGGAGCACGCCCTATGAMIQIIVASLIWGLVLCLLPGIRWRADQSILVAGVTIATALTLNIDPVYIAGDALLGRRNVLDLLANILMVVGIYFLSRAILRAADPGELPARQDHVGLAALGLVIVGLTACFANVAAPYSSTSFMKDFGDQWSAAAYSAVQFGYIGVVVSITGYTCFRFLGHMSKPYFRVAFALIGVGCSLAVVLVLAVLGMDILHLQGDLEGMTALSLVYDIALVGAMAFLCAGLALPPMARMLSRKRESKMEATFIPRLAKVWEKTTDPRPEVRLLSSAQIADRRESVRWRLHRMLVEIQDALLIDPELSRLLDDRDRQILNLVERYLAAPPSGKEDRRGPHAVGRGEHALNANANANANA
D1-29_01858462hypothetical proteinATGACGGAATCAGAGGCCAACTCTTCGGAAACGCCACAAGCAAGACTCGCTCGAAAGCTGAACCTCCTGCTTGACCTCTTCGAGTCGAAAGGGGAAGATCCCGTCACCTATCGACAGATCAGCCATCACATGGCGCAGCGCGGAACACCGTTGTCACGCTCGCGCTGGGCGTACATGCGGAGCGGGGACAGCTCGCTGGCCACCGATGAGGCGCTCTTGCGGAATCTCGCTGTATTTTTCGGTGTCGACTCGGATTACCTGCTGGATGACTCAGGTGACGTTCCTCAACTCGTTGACGCCCAGCTTGAGTTGCTGCGCATTTTGCGTGAAGCTCGTGTGCGGAACTTTGCCGCACGGCAGCTACAGGGAATTTCCCCTGAAACCCTCATGCGGCTTCGTAAAGCAATCGATGAACGGCTGGGAGGTGGCCACCAGGGTGGCAAAGAAGACAGCACTTCGTAGMTESEANSSETPQARLARKLNLLLDLFESKGEDPVTYRQISHHMAQRGTPLSRSRWAYMRSGDSSLATDEALLRNLAVFFGVDSDYLLDDSGDVPQLVDAQLELLRILREARVRNFAARQLQGISPETLMRLRKAIDERLGGGHQGGKEDSTSNANANANANA
D1-29_018591260hypothetical proteinATGAACGGCTGGGAGGTGGCCACCAGGGTGGCAAAGAAGACAGCACTTCGTAGCCTTATTGGGCTGGCGACGGCGGCCACGGCCGGGAGCGCGGGAGCTTTTCTTGGCGCGGCGTATTTTGCCCGCCAGGTTGTCGTTCCAAAGACCACCCGCAGCGAGGACCTTCCCATCCGAAGGGTCTCTCGAGACGCCGAAGGCTCGCTGCAAATCGAGCTGCCTGCATCACCACAGACAAGGGCACCCGGGCGTTACAGCCTTTGGTTCGCCAACGGTTCCGGCCATGCCTGTCTTGGCAGGGTTACGAAGACGGACACTGAAGCAGGCACAGTTACACGTGTGGTGGAGCGGGTCGACTCCGGTGACTTGCCGTCCGCCAGGGCAGGAATCTGGAGCGGATATGTTTTCTCCAAACCGGACCAGCTAGACCTGCCTTATTCAGTAGTTCAGATCCCGACTGAGCACGGCACTGCGCCCGCATGGAAGTTCGTGCCGGCCACTGCTTCCCTCGTTCCTAACGTATGGGCGATACATATCCATGGGATGGGCGGAACCAGAGCAGGTGCTCTCCGTGGGGTCCCAGTTGCAAATCGGCTGGGCCACACATCGCTGGTCGTCTCATTTCGGAATGACCGCGAGGCGACAGAATCGACTGACGCTCGCTACATGTTGGGGCAAACTGAATGGCTCGACGTCGAAGCTGCGATCAGATTCGCCATTAGCGAGGGCGCCCAGAAGATACTGCTATTCGGCTGGTCCTTGGGCGGATCCATCGCCTTACAATTGGCAAATTTGTCGGCCTACTCCCGACATATCTCTGGGCTCATACTCGATGCCCCCGTTATGGACTGGAGTAGGACCTTGACTTCAAACGCGCAGGCAAGCGGGCTCCCGGTTCCCGTGGCAGCTTTAGGACTGCGCCTCATGCAGTCCAGGACGTTCCGGTGGGTCACGGGGCTAGAAGAGCCACTCAATTTTCAATCGTTGGACTGGGTGGAGCGCGCGTCTGAGCTCAAGAAACCGGTATTGCTTTTGCATGGAAAAGGGGACCTTTCAACGCCCTTCGAAGTGTCGGAGCTCGCTGCCAACCTTCGTCCTGACCTGATTCAATTGGTCCCTTTCGACGTCGAGGGTCATTCGCAGGAATGGAATGTTGATATTGAAAAGTGGGAAGGAGCAGTGGCTGACTGGATCGTGAGCCTGAACGGAGAAGTAAAGGAAGAGGACGAAGCCGGAGAGTTGGCGGACGCCTCGGCCGAGTAGMNGWEVATRVAKKTALRSLIGLATAATAGSAGAFLGAAYFARQVVVPKTTRSEDLPIRRVSRDAEGSLQIELPASPQTRAPGRYSLWFANGSGHACLGRVTKTDTEAGTVTRVVERVDSGDLPSARAGIWSGYVFSKPDQLDLPYSVVQIPTEHGTAPAWKFVPATASLVPNVWAIHIHGMGGTRAGALRGVPVANRLGHTSLVVSFRNDREATESTDARYMLGQTEWLDVEAAIRFAISEGAQKILLFGWSLGGSIALQLANLSAYSRHISGLILDAPVMDWSRTLTSNAQASGLPVPVAALGLRLMQSRTFRWVTGLEEPLNFQSLDWVERASELKKPVLLLHGKGDLSTPFEVSELAANLRPDLIQLVPFDVEGHSQEWNVDIEKWEGAVADWIVSLNGEVKEEDEAGELADASAENANANANANA
D1-29_01860507hypothetical proteinATGATTGCTGACGAGGCAAGCCTTGATGGGGGACTATCCCCACAAGCCAGGCTTGCCCGCCGTCTGAATCTGATGCTCGACGTCGTGGTCGCCGAGCGTGGAAAGCCAATTACTTTCCGCGAGGTTCAGGGAGAGCTGGCGGCCAGAGGCATCAAGCTCTCGCGCGCCCGCTGGTTCTACATGAAGGACGGCAGAGGTCGGCTGGTGAGTGATCCGGCGCTTCTCAAAGCTCTTTGCGACATCTTCAAAGTTGACGCCTCCTATCTCCAGATAGGCAATGATGCCGATCTGCCCGAGCGCATCGATTCCCAGCTCGAGTTCGTCAAATCCCTGCGGGCGGCTCGAGTGAAGTCCTTCGCCGTTCGAACTCTTGGCGACGTCTCCCCGGAAACGCTGCGCGCCATCTCCGAATACCTCAATGAGGACATCCGCCGCCACCCTGGTGGCGAACAGGCAGCAGCTAGCCCTCCAGCAGATACTGAAGATGAGCGTCAAGCAGCTCCTTGAMIADEASLDGGLSPQARLARRLNLMLDVVVAERGKPITFREVQGELAARGIKLSRARWFYMKDGRGRLVSDPALLKALCDIFKVDASYLQIGNDADLPERIDSQLEFVKSLRAARVKSFAVRTLGDVSPETLRAISEYLNEDIRRHPGGEQAAASPPADTEDERQAAPNANANANANA
D1-29_01861324hypothetical proteinATGCCACGTATCACCCAGCCGCACGACGACGCATGGTCGTCCGATGTTGAGGCTGCCGTGGCAACTTTTGGCAATCGGGCACGGAACGAGATCCTTCGGTACCTTTCAGCCCATGGACCAGCGACGCGTGGGGATATTGTTGCTTCCGTCAGCGCTGGGGAGCCCAGCGTGGCCAAGCATCTGTTGGCCCTGGAAGAAGCAGGCGCCATCATCGTGGACGTGGAAGCCGGCCGCCGGCACGGCCGCTCTCCCCGCTATTCAGCGAACACTCCCCGTATCAAGGAGCTGCTTGACGCTCATCTTCAGTATCTGCTGGAGGGCTAGMPRITQPHDDAWSSDVEAAVATFGNRARNEILRYLSAHGPATRGDIVASVSAGEPSVAKHLLALEEAGAIIVDVEAGRRHGRSPRYSANTPRIKELLDAHLQYLLEGPGPT0004735_4044DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
D1-29_01862999hypothetical proteinGTGGTTGAAAGCAACGCTGAGGCCACGTTCGAGGTGCCGAGCGTTTGTTGGCGCCGGAGGTATTGGAAACTGTCAGTCGAAGCGGTGAAGACCATGCGAGTCGAAACCAAGGCGAATCAAGCCGAACCAAACCAATCCAAGTCGACGAGCGTCGACGTCTCCCTGCTAAATCCCCTTGCATCTGAAGAAATCTCAGTCGGTGTTGACCAGATGATGGTTGCAGTCGAAGGGGTACGGCGCTATGTCGTATCGCACTTGTCGCGGATTGGGCGGCTGTGCGACGTCGACGATGTCATGCAGGACATTCGGGTGGCCGTCTGGGACGGAGTCTCCCGAGGTCGGTACCGACCATTCCCTGGTGTTCGGTTCGCCGCCTGGGTGCAGGGTGTAGCAATCAATATCTGTTCTGCACATATACGTCGCGAGCTAGCACATCAGACACTCCCACTGCTCCTTGACCCCGGGACTGCGGAGGACTCAACGACGTTCGATGCATTGACTGTTATCGCCAGGCACCGCCACGAGGACAGGAGCGCCGAAAGGGTTGTCGACCAAGAGTGGGCTCAGACGCTGCTTGGCCTAACACGCGCCGCTGTGTCCCCGGAAATCTGGGGCCTCGCGATGGACAGTCTTACAGAACCGCGCAAGTACGGCCCACCCTCGCCCCAAGATCGGCGCCGCTGGAATGCTGTGACCGTGGTGCGCCAGACAGCAAAGACGATCAACCAAGCGCTGGACGTTGATCCGGGAACCGTCCGGAATATGCAGGACCTGAGCCGGTGTGCCGTTGAATGCCTGCCCAGCCCGCTCCTGCGTGGAGTAGCCGACTCAATTGTGCGTCCTGATGTACGCGGACCAGAGCGTGGCAAGGCCATAGCCGCGTTGGCAGTCGAACTCGGCGTCACAGAACGCTATGTGGCCGTCCAGATTGGCTGCGCCAGGCGGCTGTATCAAACTGCGTGGCGGACCCTTCGTGGAGCAACGATTTCGACCCGCTAAMVESNAEATFEVPSVCWRRRYWKLSVEAVKTMRVETKANQAEPNQSKSTSVDVSLLNPLASEEISVGVDQMMVAVEGVRRYVVSHLSRIGRLCDVDDVMQDIRVAVWDGVSRGRYRPFPGVRFAAWVQGVAINICSAHIRRELAHQTLPLLLDPGTAEDSTTFDALTVIARHRHEDRSAERVVDQEWAQTLLGLTRAAVSPEIWGLAMDSLTEPRKYGPPSPQDRRRWNAVTVVRQTAKTINQALDVDPGTVRNMQDLSRCAVECLPSPLLRGVADSIVRPDVRGPERGKAIAALAVELGVTERYVAVQIGCARRLYQTAWRTLRGATISTRNANANANANA
D1-29_01863729hypothetical proteinATGTCTATGTCACGAGAAACGGTGAGAGGTCTACGTCGCCGCCGGCGCCTATGGATCTTTGCTGCGATCGTGGTGGCCGGTGTTGCTGCCACGTTCGTCTTGTTTGGGTCTCCGCGTCCGCCGTCAACGAGGACGACGACGGTTCCAATCCCACCGCCGCTAGCCTCCGCCACCGGTCGTCCGTCGCCATCCGCTCCGTCTGTTTCAACGGGCTCGACGACGACGCCAGCCACCGAGAAAACGAGCGCGATTGAGGTTCCACGCACCACGAACTATCGAGCGCTGGCAACAGCCGCTGCCGAGGCCATTTACAGCTGGGACACGCGAACGTCGTCGTACTCGGAGGTCTACACCCGCCTCCGTGGCTGGTGGGACGTCCTGCCGGACGGATCGAACCCACTGGCTGTCTTTGCTCAGGAATTTGAAGCCACGGGTATCAACGCCGGAACTTTTGCTTCTTTGGCCGGGCAGGGGGCCTTCCGTACGGCCACGGCCGAATCCATGACCTGTGACGAGGAGTTGGCGGAGGTGCGGCAGCGTCCGGCTCCGTGGTTGGGTATGCACGTCTGCACCGTCTCCCTGCGAGTGGTGGATCAGACGGCCAGTAGCCGTAACGCCTACACGGCACCAGTCAGCATCATGGTCAATTGTCCGCCGGCTGCAACTGCCCCGCCTGACCGATGCATGATGGTGGGCTTCTACGCGACCTCAAGCAGGATCGTGTACTGAMSMSRETVRGLRRRRRLWIFAAIVVAGVAATFVLFGSPRPPSTRTTTVPIPPPLASATGRPSPSAPSVSTGSTTTPATEKTSAIEVPRTTNYRALATAAAEAIYSWDTRTSSYSEVYTRLRGWWDVLPDGSNPLAVFAQEFEATGINAGTFASLAGQGAFRTATAESMTCDEELAEVRQRPAPWLGMHVCTVSLRVVDQTASSRNAYTAPVSIMVNCPPAATAPPDRCMMVGFYATSSRIVYNANANANANA
D1-29_018641131hypothetical proteinATGCCATTCCCTGCGATTTTGATGGCAGTGGCAAAGCGCCGTGCACTGCTCCACGCCGCGATAGCCATGGCAACGGTCGTGGCACTGATGTTAGGCGTAGTGTTCTGCGCATTCGTTACCGTGCTGGTCGCTAGTCGGTCGGGCGAGGCCTCCGTTTGCACGTCCATGGGTCCTGTGGGCGAGGGGCCTTCGAGCAGACGTGGTGGTGGGCTGGAAATCCACGTTGGCGGCCGGGAACCAGTCTGGCTCACTCCACGCCAGGTCACGGTAGCGAGCGGCTACATTTCGGTCGGGAAGCAACTTGGAATCCCTAGGGACGCCTGGATTATCGCAATCATGATGGCTCTTCAGGAATCGACTCTTAGGGTCCTCGCAAACTCGAATGTCCCGGCCTCGTTCCAGTTTCCGCACGATGGTGTCGGAAGCGATCATGACTCGATTGGGAGTGCTCAGCAGCGACCGGCTGCAGGCTGGGGGAGCGTTGAGCAGCTGATGGACCTTGGTTATAACGCACGTGCATTCTATGGCGGGCCGTCGGGGCCTAATCGTGGCAGCCCGCGGGGCTTGCTCGACGTTCCTGGTTGGCAATCGCTGGACAAAGGACAAGCTGCTCAGGCCGTCCAAGTTTCGGCTTTTCCCGAGCTGTACTCGCGGTGGGAGTCTCAGGCAACCGCTATAGTCAGCTCGCTCGAGGGTGCCACTGCGCCGGCAAAATGCGCGGATGCGGTGAAGGTTTCCGCGCCTTCCGTTGCACACGAGAACCTTACCCAGATCCGCAAGGATGTCTTGCGGTTTACGCAAGCCGGTGTGGGTGGAACGTACATCTGGGGTGGTGAACAGTTCAAAGCGTGGGACTGCTCTGGATACGTCCAGTGGATCTATAGTCAGGTCGGAATCAACCTTCCACGCGTGGAACAGTGGAGGGTGGGGGAGCGGACCGAGAGCCCGCAGCCCGGCGACTTGGTTGTCCAGAATCCCCAAGGGCCGGGCAACTGGGGCCATGTCGGCATCTATGCAGGTGACGGCATGATGTACAGTGCGCTGAATCCATCGGCAGGGACTTTGCTTCATCCCGTGGATTGGAACCCCGGCAGCGCGTATTTTGACTTGTTGGGTGGCCGATTGGCGTAGMPFPAILMAVAKRRALLHAAIAMATVVALMLGVVFCAFVTVLVASRSGEASVCTSMGPVGEGPSSRRGGGLEIHVGGREPVWLTPRQVTVASGYISVGKQLGIPRDAWIIAIMMALQESTLRVLANSNVPASFQFPHDGVGSDHDSIGSAQQRPAAGWGSVEQLMDLGYNARAFYGGPSGPNRGSPRGLLDVPGWQSLDKGQAAQAVQVSAFPELYSRWESQATAIVSSLEGATAPAKCADAVKVSAPSVAHENLTQIRKDVLRFTQAGVGGTYIWGGEQFKAWDCSGYVQWIYSQVGINLPRVEQWRVGERTESPQPGDLVVQNPQGPGNWGHVGIYAGDGMMYSALNPSAGTLLHPVDWNPGSAYFDLLGGRLAPGPT0023995_1560DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_01865648hypothetical proteinATGTCCAGCATCACGTCACCTCTTCCTAAGCTATGGACTGACTGGTGTGATGTCACCGGGACCCCACTTGAAGACCGCGACGAGACCGTTCTCTCTCGTTTCGCTCGGCAGGCTGGGCCATCGCAGCGATTGCTGGCTTCGCTCCGAACGGAAGAGACCAAAACCGAACCCCGGGTGACAGCTTGGCCTGCAGCACACCGCGCAGACTCCGGTGCGCTCGAATCGCTATTGCGACAGGGCGCTGCGCGAATCAACAACCCCGCGACGTTCTGGATAGATCGACTGCGTCTTCGTCGACTGATGTTCGCCGGCGTGCTGCTCGCACCGATCCATCAAGGCGGACTCGGCCTCACAAGGGATCAGGCGCTTGGGCTGACCCCTGCTTCGTTCAAAGAACTGCGCACCGGGATTGGAACCTCGGAAGAAGAGGCGGCCTGCCCAGCATGCGCTGTATGGTCGTGGCTCGAGGTGCTCGGCACGAACACTGGCTGGGCCTCGGCCACGGTCAGGTCGCTCGCGCACCGCCGTGATGAACCAGCAGGGGTACATCGCCATAGTCTCAAGGACCCGAGCCCTGAATGGTCTGACTGGCCAGACTGCCCAAACCTCTTGCCGGCGATCGATCGTTGGGGCTACTTGGACTTATAGMSSITSPLPKLWTDWCDVTGTPLEDRDETVLSRFARQAGPSQRLLASLRTEETKTEPRVTAWPAAHRADSGALESLLRQGAARINNPATFWIDRLRLRRLMFAGVLLAPIHQGGLGLTRDQALGLTPASFKELRTGIGTSEEEAACPACAVWSWLEVLGTNTGWASATVRSLAHRRDEPAGVHRHSLKDPSPEWSDWPDCPNLLPAIDRWGYLDLNANANANANA
D1-29_01866192hypothetical proteinGTGCAGTTTGAGGAAGCGAACAGACTTGAGGAGCGGTGGGCCAACAAGGGCAACCCGCCGTGCGACCATCCGCAGTTATCAAAGGAGTACCACGGAGGAATGGACAGTGGCGACTACCGCTGTACGACCTGCGGCGCGACATTCACCGGCAACGAGTTTCGTCAGTGGCGTGCAGGGAAGACAGATGTCTGAMQFEEANRLEERWANKGNPPCDHPQLSKEYHGGMDSGDYRCTTCGATFTGNEFRQWRAGKTDVNANANANANA
D1-29_018671821hypothetical proteinATGTGGGTTTCCAGACTCCGGATCAACGGAGGCTTTCTCAATGGGCTGAACGTTTCGTTCGTTCGGGGGCTGAACGTCGTCATCGGCTCCCGGGGCGTTGGTAAGACGACGTTTCTGGAATTGCTGCGGCACGCACTTGGAGCCGAGCACGCCGACAAGCATCGGCGACAGCAGCGTGAGCAGTTCCTATCCGCGGTATTGGGCGTAGGCGAGGTGATCGTCGATCTGGAAGACGAGACCGGCGCGACACAGGTCATTGTCGACGCGAAGGGGCGTGGGCGAGACCGCGATTTGTCTCACTCTTTGCTCGTCCTCGGACAGAGCGAGCTAGAAGAGATTGCTTCTGACGCGGCCAACCGGCTCAAGCTCCTGGACCTCCGTGCGGGAGAAGAAGCCACCGCAATGCCGCGAGACGAACTCGGCCAACTTTCTCGCGAGATGTTCGATCTTCGCGGCCAGTTGCAGAAGTGCGAAGAAGAGTCTCTCAAACGCGCGGGCCTTGAAGCTGACCTGCAGATCTATCGGTCACAAGAAGAATCATTGGTTGGCGATGCGCAGGGCCCGCTCGCTGCTCAGCGCGACACTCTCCGCGAGATCGAAGCGCGTTCGAGCGCGATAGTCCGGAAGAGTTCGAACCTTCGGAACGCGAAAGAACTCTTGGGTCGGATGAGTGCTGCTGTCGACACCGTGCACCAGATTCTCGCCAAACTCGACACGCTTGACAGCGAGTTCATCGCAGACGAAGTACCCCTCGCTGCGGCTCTTCACACGGTTCGCACAGACGCCGACAGTCTTCGAAACTCGGTCGGCGTCCTCGATGGAGATGTGTCCGGACACATCGCGAGGGCCACAGGCGAGGATTCAAAGCTTCGTGAAACCGCGGCACCCCTGCGGGAGAACCTCGAGCAGGCAGAGGCGGGGCTGGGACAGATCACCGCCCAGATTCGCAACGTTGATGCCCAGCTGCAAGAACTTGATGACAACGACAAGAAGATTGTAGTGCTGTCAGCAGAACTGCAGTCGCTTAAGGACCGGCGAGATGCCGCTTTCGCCCGCGTCGAAGCGAAAGAGGAACGTCTGTTTCGTGCACGGCAAGCCGTTGCTGAATCCACGTCACGCCAGATCGACCATCACATCGTGGTCGTAGTCGAGCATCTTGCGGACGCGTCCGAACTTCGTGAGGTCCTCACCGACAGCCTCAAAGGCACTCACACCAGAGCAACCCTCATCGACTCGCTTGCGGCGCGCGTACTTCCCAAGATGCTCCTGGAGATGGTCGAGGCGCACGATGTCGACGGACTCGCGTCGGCAGGGGATCTCTCTCAAGAGCAGGCCGCGCGCGTGATTGGTGGGCTCGACTCCGCCGACGGAGTCGAACGTCTCGCAAAGGTTTGTCTCAGGGACAGCGTCGACTTCCTTCTCCGCGACGGTGCCGTGGACAAGAGCGTCGACAATTTGTCCGCTGGGCAGAAGTGCGCCGTGACGCTGCCGATCGTGCTGTCCGAACGAGAACGGACATTGATCCTCGATCAGCCCGAAGATCATCTCGATAACGCGTACCTAGTAGATCACGTCGTGACGGCGATGAACCACCGCACGGGCGACCAGGTCCAGACGATCGTCGCAACGCACAACGCAAACATCCCTGTGCTCGGAGCGGCGGGGCGGGTGTTCGTCTTGGCGAGCGACGGGCAACACGGCGAAGTGCTCGACTCGGGGGCATTCGACTCGCCACCGGTTATCTCCGCAATCACAACCATCATGGAGGGCGGTCGCGAAGCCTTCGAGCGACGAGCCCGGTTCTACAGCAGCAATGACTAGMWVSRLRINGGFLNGLNVSFVRGLNVVIGSRGVGKTTFLELLRHALGAEHADKHRRQQREQFLSAVLGVGEVIVDLEDETGATQVIVDAKGRGRDRDLSHSLLVLGQSELEEIASDAANRLKLLDLRAGEEATAMPRDELGQLSREMFDLRGQLQKCEEESLKRAGLEADLQIYRSQEESLVGDAQGPLAAQRDTLREIEARSSAIVRKSSNLRNAKELLGRMSAAVDTVHQILAKLDTLDSEFIADEVPLAAALHTVRTDADSLRNSVGVLDGDVSGHIARATGEDSKLRETAAPLRENLEQAEAGLGQITAQIRNVDAQLQELDDNDKKIVVLSAELQSLKDRRDAAFARVEAKEERLFRARQAVAESTSRQIDHHIVVVVEHLADASELREVLTDSLKGTHTRATLIDSLAARVLPKMLLEMVEAHDVDGLASAGDLSQEQAARVIGGLDSADGVERLAKVCLRDSVDFLLRDGAVDKSVDNLSAGQKCAVTLPIVLSERERTLILDQPEDHLDNAYLVDHVVTAMNHRTGDQVQTIVATHNANIPVLGAAGRVFVLASDGQHGEVLDSGAFDSPPVISAITTIMEGGREAFERRARFYSSNDNANANANANA
D1-29_01868879hypothetical proteinATGACTAGCCACGGTGAGCCCGGGCTCGATTGGCTCGATGATTCTCTGAACTCGGAGTCGCCTTCCGCGAGGTTGCGCGCCGCCGCGTGGATCAAGGCAAACCCGGAAGCAGTTCCGGTGCGCGTACTCATGCGTGCGATGCAGCGAGAGTCTGTGCCGCAGATTCGTCAAATGTTCAATGACGTGCTCGCGACCCGAGAATCTCTGACGAATGCAGTGGGGCCAGATTCATCGGGCGAGGGAGTGCAGTCATCACATGGGAGTATCCCGGAACTAGCGCGACTGATCCGGCATGAGCTCTCGCCGCCGCTCGGTTGGATCCGCAAGGCAGCAAGCCACGAAGTCGCAGAATTTCAGCGAAGTGCGACGAGTGACGCGGTCAATCGATTGGAGCGCCGCATTGACGCCCTAGTCGCGCTTATACGTGAGGGGTCCGACTTGGAGCTTGTGGAGTGCGACCTAGAGCGGACACTGCGCGAATGCTGGCCCGACATGACTACCGAGCCGAGTTTCGTGCCAGCTCCGGACCTCGGCGATCGCCCAGCGCTCATCGTCACAGACATCGGTCTCTTCGAAATACTCTTGGCGAATGTCTATCAGAACGCAATAGACGCATCGCTGGAAACGGACGAAGAACGCCCCATCGAGGTGAGCTGGAGCGTGGTGGGCGAACGGTTCTGGGTACGCGTGTCCAACCCATTCGCAGGCACCCAGTTCGACATCCAAGACGTCGAGACAACGGGAATATCCACGAAAAGCGGGCACCAAGGGATCGGTATGGCCCTCATCAAGACGGCGACAGGGAAGCTCGGATACGGCTTCAGGATTGCAGGCCGAAGCGGAGCCGCAACTTTCACGCTCACTGGAGGACGAGGCTGAMTSHGEPGLDWLDDSLNSESPSARLRAAAWIKANPEAVPVRVLMRAMQRESVPQIRQMFNDVLATRESLTNAVGPDSSGEGVQSSHGSIPELARLIRHELSPPLGWIRKAASHEVAEFQRSATSDAVNRLERRIDALVALIREGSDLELVECDLERTLRECWPDMTTEPSFVPAPDLGDRPALIVTDIGLFEILLANVYQNAIDASLETDEERPIEVSWSVVGERFWVRVSNPFAGTQFDIQDVETTGISTKSGHQGIGMALIKTATGKLGYGFRIAGRSGAATFTLTGGRGNANANANANA
D1-29_018691404hypothetical proteinATGGCCAACCCGTGTGCCATATTGGTTGATGATGATCGGCAGCAGCTCGCGGAGGCATCTTCGACAATTGCTGACGCAGGCTACGAACTGATCACTTTCGAATCAGTCGAGAAAGCGCTTGCCTTCGTGGAAGAGACCGACCAGCTAATCGACCTCTTCGTACTGGATCGAAAGTTGCCCATGCGCGCAGGCGAGAACGCCGTGGATGAGCTTGGTGATGAGCTTTTTCGGATCGTCACGTCCACCCACCCCGACTCACGAGTCATCGTCTTCAGCGGATACACCGATTTCGACCATGCGCAGGAGACGATGGAAGGCGCGGGCTTCGTCTTCCAGAAAGGAGACGTGCGCATAGACCGAGTGTCTGTGCTTCGTAAGTCTCAGTTCGACAAGTTTGAACGCCTGATCAAGGATCTGCGGGAAGTCATCGCTGGCTTCGACCTCGTTGAAGTCACGGTGAATGGCGCGATCGACGCGCGTCAGAGGCGAGTACTCCGACGAATTGCACATCACTATGGCGCATCATCCATTTCCGCGAAACCGCTCGCTGGCGGTCTGACAGGCGCACCCGTCTGGCGCTGTGAACTGGTATCTCCAAGCGGTCCCATCGCGGACGTGGTGGCAAAGGTTGGCGGGGCGATCCCGGCTGCCGGGGGACTACAAGATCTGCTCGCGAAGGACGCAATAGCGCGTCGTGTCGATGTCATAGGCGGCCTCATGGGCGGCTCAATAGTCGCTATCTTGCAGCTTGCTGGCACGTCCCCAATTTCACTAATGCGCCTTATCGGTTCCCACGACATGGAAGCGGCGAGGATCACCGAAGTGCTTCGCGCGAGTCTCGATGCGCTTGAGCAATCGCCCGCGCGAACAGTGCCACTTCGAGACATCATCGGACAGATCATCGCCTGGGAGAACTTTGTCCGCGAGCTTTCCGTGCTCGGCCTAAGCCCTCCCACTCCTCAGCTGTGGGTCACCACGTCTTCGGTGATGAGCCACACCGATCTGCATGCAGCGAATATTCTAGTGTGCGGCGATCTACCTGTCATTATCGACTCGGACGAAAACGAATTCTCTAGCTCGCTCCGGGACCCCGTGGTTCTTATGATGTCTAGCTGGGTTCATCCTGACTCGCCGTTCCTTGGGGAGGACTGGCCCTCGGTAGACGACATTTCCGAGCGGTTTGGCGAGGCATCGTTCGCGCGTGGTTCTTTGTCTCCCGCCTGGTACGCCACGATCCTGAGCTGGATGGACTCTCGAAGCGCTTCGGCTCGCGAATATTGGTCGGTGGTGCTTGCCTATGGTGTTCGTCAACTGCGGTTCGAGAACGTTCGCACCAACCCAGACCTGAAGGCAAGGGTTGAGGCTGTGGTATCTCTGGCTCATAGGCGGCTCGAAGAGACTTAAMANPCAILVDDDRQQLAEASSTIADAGYELITFESVEKALAFVEETDQLIDLFVLDRKLPMRAGENAVDELGDELFRIVTSTHPDSRVIVFSGYTDFDHAQETMEGAGFVFQKGDVRIDRVSVLRKSQFDKFERLIKDLREVIAGFDLVEVTVNGAIDARQRRVLRRIAHHYGASSISAKPLAGGLTGAPVWRCELVSPSGPIADVVAKVGGAIPAAGGLQDLLAKDAIARRVDVIGGLMGGSIVAILQLAGTSPISLMRLIGSHDMEAARITEVLRASLDALEQSPARTVPLRDIIGQIIAWENFVRELSVLGLSPPTPQLWVTTSSVMSHTDLHAANILVCGDLPVIIDSDENEFSSSLRDPVVLMMSSWVHPDSPFLGEDWPSVDDISERFGEASFARGSLSPAWYATILSWMDSRSASAREYWSVVLAYGVRQLRFENVRTNPDLKARVEAVVSLAHRRLEETNANANANANA
D1-29_01870135hypothetical proteinATGCCAGGTCTGGCCGCAACAGCAGCGGCCTTCCTTGTGCTCCTGGATGACAAGGACCCGTTCCTCTCCGAGCCGGATGATGTCTTCGTAACTGAGCGTGGGTCCAGTGCAGCATCGGCGGCCGGCTGCCGGTAGMPGLAATAAAFLVLLDDKDPFLSEPDDVFVTERGSSAASAAGCRNANANANANA
D1-29_018711320hypothetical proteinATGACCGAACTCTGGATCGCGTTGGCAGTCGCAGTCGTCGTATCCGCTGGCGGGCTCCTTACTCTCACTCTTCGCAGGCACAGAAGTGCTCGCGGAGACAACGTGGCAAGAACCCCACTGGTGACTGAGCCTTCGCCCAGGGAGACCTTGGCACCCGTTCAGGTTCTCCCCGTTTCGGGGATCCTGGTTCCAGAGGCTGTCTTGTCTGCAACCGGCGCATCCACTTCGGTCGAGGAGGCACTTGAGGTCGCTTCAATTCCTATGGCGCTCGAGTACCACCCGATCACCGACATTGAGCTAACAAAGTACAAGTCGGTTCCAGTGAATGCTGCCATTCAGCAGGCACTCACCAACGTCGTCCGTGCAGTGGATCCGAAGAGTGCCACACTTTTCAAAGTAGTGCTGCCGAAGGGTGCCGAGCTTGTTCGCGCGGTTGGCACCAGCGGGTTCCGCGGATTCGCGCGCGGACCCGCCAGTATCTCAGCTCAGGCTGTTCTGTATCCGGTGGGGGTCGGAGGTGCCGCGGTTGCTGGTTGGCCGATCTTGGCAGTGGGTGCCTCGGTGATGGCTCTGGACATGCTCGCCCAGCGGGAACAGAGGGTTCATCAGCGGCGGGTCGAGACAATCCTTGGACGTCAGGAGAAGCGATATGTAGACATGCGTATTGCGGCCCAACGAACGACGGACAAACGACTGTCCAAAGCAATCAGTTCCATGCTCGACGGCGGGCTTCCTGATCTGGACGTTGTTCAGCAAAGTGCCGGCGAGGAGTTCCACAACGCGGACATATTCTTGGAGCAAACCTGGTCTGCCATCCAGTCACTCCCGGAGTCTGGTGTGGGCAGCGGTGCTGTTGACTATCGCAAACTGGAAAAAGCCCTCGGCGGCAAGACGAAAGATCTCGACCATTTCTTTCGCGAACTTCACTTCGCTCGTGCCGCTGTCGCCCTCGGACGAAAAGCGCTTCTCGCCGACGCCGCGAAAGCAGCGCTTGCCGATCCTGGCAACCCATACCTTGCCTTTCGAAAGTCTCTTGAGCGAGACGCAGCGGATGTGAGAAGGGCTGAGAGCCGCGAGGCTCAGGTCACCGAGGCACTCGCCACGCTGGAGCTCACTGGTCGTTGGCATAAGACCAAGAAGTCGATCGCTGGCCGGCAGACAGCTTTTCGTGAACGGGTGGCACCTCCACGCGTCGATCCGCCCGATACTGTGCAGTACCTCGCGCTTCCTTCGGGTGAGATCCATCAGCTCGTGCCAGTTGATGCCCAGTTCGACGAGGAGGCGGTGGAGGCTCAACACTCGAATGCCGTGTCATCATGAMTELWIALAVAVVVSAGGLLTLTLRRHRSARGDNVARTPLVTEPSPRETLAPVQVLPVSGILVPEAVLSATGASTSVEEALEVASIPMALEYHPITDIELTKYKSVPVNAAIQQALTNVVRAVDPKSATLFKVVLPKGAELVRAVGTSGFRGFARGPASISAQAVLYPVGVGGAAVAGWPILAVGASVMALDMLAQREQRVHQRRVETILGRQEKRYVDMRIAAQRTTDKRLSKAISSMLDGGLPDLDVVQQSAGEEFHNADIFLEQTWSAIQSLPESGVGSGAVDYRKLEKALGGKTKDLDHFFRELHFARAAVALGRKALLADAAKAALADPGNPYLAFRKSLERDAADVRRAESREAQVTEALATLELTGRWHKTKKSIAGRQTAFRERVAPPRVDPPDTVQYLALPSGEIHQLVPVDAQFDEEAVEAQHSNAVSSNANANANANA
D1-29_01872201hypothetical proteinGTGGCCGAACCATGGCTGTCCGCCGATGGCATTGCCGCGCACCTGGGGATCACGAAGGACACGGTCTACACATGGATCAGTGACAAACGCATGCCGGCCCACAAGGTCGGCAGGCTCTGGAAGTTCCAGGCAAGCGAGGTAGACGAGTGGGTCCGCAGCGGAGGCTCTGCAGCATCGAGCGACGACGAGACGCCGAGCTGAMAEPWLSADGIAAHLGITKDTVYTWISDKRMPAHKVGRLWKFQASEVDEWVRSGGSAASSDDETPSNANANANANA
D1-29_01873633hypothetical proteinGTGATCGAGCAGCATGCCGAGGCGCAGCGCTATGCACTCTCATTTACCAGTGGTGCCCTCCTCATGCGTGAGGCGGCGATCATTGCGCCCATTTACTTGCGTGAACGCGACTGGGCAAGAGTTCGAACGGTGGTCGCGGGGGAGAACCTGCTTCAGGCTCGTACAGTTGCCTCTGGGCTCAGGCTTGCGCGTGAGGTTATCCAACGGCTCACCGTGCTGACCGACGACGAAATCAAGCTACTCATCGAGGGGACCTCTACCGAGCGCGGACACTTGATGTGGGCGGCGGCCTGCCGTCGATATGACCTGATTGGTGAGTTCGCTGAGGAGATCGTACGCGAGCGGTTCCTCTTGCTTACGCCGTCGCTCGATCTCAACGATTTCGACAGCTTCACGCGAAGCAAGTCTTTGTGGCACACGGAGCTGTCTGAACTCAAGGACTCCACGCGGCGCAAGCTGCGTTCAAACTTGTTCCGGATGCTTAATGAGGCAGGGTTGCTTTCCAACAGCGGGCACATACAGCCGGCGATGATGTCTCAAAGGGTGGCCACCGCCTTGGCCGCGCGTGGTCCGAATGACCTGCGATTCTTCCCAACCAACGATGCTGTTACTTCTGGGAGGGCCCAACCGTGAMIEQHAEAQRYALSFTSGALLMREAAIIAPIYLRERDWARVRTVVAGENLLQARTVASGLRLAREVIQRLTVLTDDEIKLLIEGTSTERGHLMWAAACRRYDLIGEFAEEIVRERFLLLTPSLDLNDFDSFTRSKSLWHTELSELKDSTRRKLRSNLFRMLNEAGLLSNSGHIQPAMMSQRVATALAARGPNDLRFFPTNDAVTSGRAQPNANANANANA
D1-29_01874600hypothetical proteinGTGACACGGACCGACCTATCCAAACAGGAAGAGCACCTGTTCGCAGTTCTCAGTGGCAGACGATTTCTCCAGATGGAGGGCCTGAGCAACGAGGTACCGTTCTTCATTTACCCCTACGACCCTGAGGATGCACTCGCGGTTGCGGGGTCGAAGAAGCGCATCAAGAATCGCCTGGCGAACAAGGGCATCGTCGTGCGCGAGGTCAACCTCTACGATCTGTCCGTGGAGATTCTTAAGGAACGCGGAGTCTGGGATCGGCTGATCGCGCTTGAACCCGAGCAGGACAAGGCGGATTTCCGTGAGTTGCTCCAAGGGATGCTCGATCCGCAGCTACACATCGCGGCCGCCATCCGGGCCAAGCTCGGCGAGGCTGACTTCGACATCCTCTTCCTCACAGGCATTGGTGAGGTCTTCCCATACATCCGCTCCCACAACGTGCTGCACAACTTGCAGAGCGTCGTGACTGACAAGCCGATGCTTACGTTTTTCCCAGGCCGCTATGAGCAGTCCGACACGCTGGGGTCGTCCCTGGTGCTGTTCGGTCGACTCAAAGACGACCAGTTTTACCGAGCCAAGAACATCTTGGAACAGGAGGCTTGAMTRTDLSKQEEHLFAVLSGRRFLQMEGLSNEVPFFIYPYDPEDALAVAGSKKRIKNRLANKGIVVREVNLYDLSVEILKERGVWDRLIALEPEQDKADFRELLQGMLDPQLHIAAAIRAKLGEADFDILFLTGIGEVFPYIRSHNVLHNLQSVVTDKPMLTFFPGRYEQSDTLGSSLVLFGRLKDDQFYRAKNILEQEANANANANANA
D1-29_018753486hypothetical proteinATGAATCTGAACCAGATCTTCGCCAAGGACGTCCAGCGCCCGATAGAGGGAGTCATCAAGGCTGACGATGCCGCGCACCTGGGCACCGAAGTTGATGAGTACGTCTTGACCAACGAGGCGGCCAAGGGCATGGAGCTGTTGCTTGAGGCATACACGGACTACACCAACGCCAACGGCGTGTGGATCTCGGGCTTCTTTGGTTCCGGTAAGTCGCACTTGTTGAAGTTGCTTGCGCACCTCCTCGGCGACGTGGAAGGCCAGGACTTCCCTCGGGCACGTGTCTCCGAGAGTTTCCGGTCCAAGGCGCAGGATGCGTTTCTTCCGGCGCTTTTGACCAAGGCTGAGCGGATCCCGGCGAAGAGCCTCCTGTTCAACATCGACCAGAAGGCCACCCTTATTACTAAGGACCAGACCGATGCCTTGCTGAAGGTGTTCGTCAAGGTCTTCGATGAGAGCCGCGGCTACTTCGGTAACCAGGGGCACGTTGCCAGGTTCGAGAGGGACCTGGACAACCGAGGCCAGTACAAGGCGTTCAAAGCCGCATATGCCCGTATCTCCGGGCGCGACTGGACGCAGGGACGTGAAGAGGGCGTGCTCGAAGAGGTCAACGTGGCCAAGGCCTACGCCGAGATAAGCGGCCAAGCCGAGGGCACGCCGGCTAACATCCTCACCAAGTACCGCAACGAGTATTCGGTCTCCATCGAGGACTTCGCCGATGAGGTGAAAGCGTGGCTCGACAAGCAAGAAGACGGCTACCGGCTGAACTTCTACGTCGATGAGGTCGGCCAGTTCATCGGATCGAACACGCACCTGATGCTAAACCTCCAGACCATCGCCGAGTCGCTGAACACCAAGTGCCAGGGCCGGGCGTGGGTGTTCGTGACCTCCCAGGAAGACATGGACAAGGTCGTCGGTGACCGTACCAGGCAGCAGGGCAACGACTTCTCCAAGATCCAGGCCCGGTTCGCCACCCGTCTGAAGCTCACGAGCGCCGATGTGGAAGAGGTCATCCGCAAGCGACTGCTGGAGAAGAACGCGGCGGGCGAGGCCACGCTGAATTCGATCTATGCAGAGCAGCACGCCAACTTCAAGACCCTGTTCGACTTCGTAGACGGCGCGAAGACGTATCGCAATTACACCGACGAGGCGCACTTCGTCGGCACCTACCCGTTTGTGAGTTACCAGTTCCCGCTGTTCCAAGCGGCGATCGAGGGCATCTCCGACCACAATGTGTTCGAGGGGCGCAACAGCTCAGTTGGTGAGCGGTCGATGCTCGGCGTCGTGCAGCAGGTCGCTAAGGGCATCGGCGATGTCGAAGTGGGCAGACTGGCGACGTTCGATCACATGTTCGCGGGCATCCGCGCTTCGTTGAAGTCAGCCGCGCAGCGTTCGATCGACGTTGCCGAGCGCAACCTGGATAACGAACTGGCTGTGCGGCTGCTCAAGGCTCTGTTCCTGGTGAAGTACGTCGAGGGCTTCCACGCCACCCCACGCAACCTGACCGTGCTGGTTTACGACCGTTTCGGACTTGACCTGCCCGCCCTGGCCAAGCAGGTGCAGGAGGCACTGACACTGCTGGAGACGCAGACGTACGTGCAGCGCAACGGCAACCTATACGAGTACCTGACCAACGAAGAGCAGGTCATCGAGGAGGAGATCAAGAACGTCGATATCGATGCCTCGGATGTCAGCGGCCGGCTCTTCAAGATCATCTCCGGCGACGTGGTTCGCACGAGCAAGTTGCGCTACGCCAAGAACGGACAGGATTTCGGCTTCGGGTACAAGCTTGACGATCAGGTGTACGGGCAGCAGCGCGAACTGACCATGCACTTCATTACGCCGGAGTACCCATTCGGCCCCGAAGAGACCCGGATGCACAGTGCGGGCAAGGACGAGCTGCGCGTCATCCTGGAGCCCGATGAGCGCGCACTTTCGGACCTGCGCCTGCTGATCAAGACGGAGAAGTACACCAAGCGCAAGCAGACGACCTCGCTGTCCGCAATCGAGGACCAAATCCTGCGCTCGAAGGCGACGCAGAACGTCGAGCGGGAGAAGGAACTCATCGAGCGCATCCGCCGCGCAGTTGGCAAGGCGGACCTCGTGATCAACGCCGCTGGCGTAACCTCCTCCTCACAGGACGCCATCGCGCGCGTTACCGATGGCTTCCAGGACCTCATCAGCCGCACTTACACCCAGCTCAGCCTGCTTGGCGGTGTTGCGTACAGTGAGCAGCAGGTTGCTGCGTTCGCCAACCCCAACCAGTCAGGCATGATCGACGATTCGTCGCTGTCGATGCTTGCTGTACCAGGTGACGAGGTGCTTTCGTTCCTGCTGCAACGCGACCGGCTTGGCGAGCAGGTAACGGTCAAGACGATCGTGGATGCATTCCAGGCCAAGCCCTACGGATGGGATCTCGCCTCGATAGAGGTCGTCATCGCCTGGCTCGTTGGAAACTCGAAGATCACGGTTACCGTCGATGGAAACGTGCTGAAGCGGACCGAGGTAGCTGCCGTTCTGCGCAATACGCAGAAGCACTCGCATTCCGTGCTTGCCCCTCAAAAGCTCTTTGACGAGCGCAAGGTCGCGACGTTCCGCAAATTCTGCACCGACTTCTTCGACGAGGCCACCCCACCGAAAGACCCGCTGGAGCTGGCTCGGCACGGCAGCGAAAAGCTCGGGGCAAAGCTCGACGAGTTGAGAGCGCTGGTGAGCGGATCGAAATACCCATTCGTGGAGCAACTGGCTGCCCCCATCGCCCTGCTCGAACAGGCTGTGGGCAAATCTGACGAGTGGTACCTGACTGAATTCATTCTTGGCGACGAATTGCTCGACGCCAAGGAAAACGTAATCGACCCTATTCAGTCGTTCCTGGGCGGCGGCCAGAAAGTCATCTACGACGAGGCCGTAGTACTGCTCACCTCGAACACGAACAACCTCGGATACCTGCCCCCAGGAAGCGAGGCCGACGTGAGGCGACTCCTGGACGATCCCAACGCCTTCCGGGGCAATCGCATGACCCAACTCAAGCAGGCCGCAGACGCCCTTGGGGCGAAAGTCGAGGACACGCTCGCCACCCATCGCAGGACGGTCATCCAGGACATCGAGGGACGCAAGTCCGAGGTACTCGCCAGCGCCTACTACGGCAATGCCACAGAAGAAGCGCAGCAGCGGGTCACCCGTACAATCGACCAGATCATCACCCACTTAGGCAGTGAGCGGCAGATCGCGCTCATCCGCGAGCAGGGTAATGGCTTTGAGGAGCGGACCTATCCCGAGCTGCTCGACCAGCTCGCATCCTCTGCCCGGTCGACGGGCGGCACGGACAGTCCGGAGCCCACACCAAGGCAGACCGTCTCGGTCAAGACGATCACAGTGCCCGGTGCCCACGGTGTGCTCGAGAACCTGGACGACGTCGACCGCTACCTCGATGCGCTCCGCGGTGCGCTGCTGAACACGCTCAACGACGGAAAGAGAATCGCGCTCTGAMNLNQIFAKDVQRPIEGVIKADDAAHLGTEVDEYVLTNEAAKGMELLLEAYTDYTNANGVWISGFFGSGKSHLLKLLAHLLGDVEGQDFPRARVSESFRSKAQDAFLPALLTKAERIPAKSLLFNIDQKATLITKDQTDALLKVFVKVFDESRGYFGNQGHVARFERDLDNRGQYKAFKAAYARISGRDWTQGREEGVLEEVNVAKAYAEISGQAEGTPANILTKYRNEYSVSIEDFADEVKAWLDKQEDGYRLNFYVDEVGQFIGSNTHLMLNLQTIAESLNTKCQGRAWVFVTSQEDMDKVVGDRTRQQGNDFSKIQARFATRLKLTSADVEEVIRKRLLEKNAAGEATLNSIYAEQHANFKTLFDFVDGAKTYRNYTDEAHFVGTYPFVSYQFPLFQAAIEGISDHNVFEGRNSSVGERSMLGVVQQVAKGIGDVEVGRLATFDHMFAGIRASLKSAAQRSIDVAERNLDNELAVRLLKALFLVKYVEGFHATPRNLTVLVYDRFGLDLPALAKQVQEALTLLETQTYVQRNGNLYEYLTNEEQVIEEEIKNVDIDASDVSGRLFKIISGDVVRTSKLRYAKNGQDFGFGYKLDDQVYGQQRELTMHFITPEYPFGPEETRMHSAGKDELRVILEPDERALSDLRLLIKTEKYTKRKQTTSLSAIEDQILRSKATQNVEREKELIERIRRAVGKADLVINAAGVTSSSQDAIARVTDGFQDLISRTYTQLSLLGGVAYSEQQVAAFANPNQSGMIDDSSLSMLAVPGDEVLSFLLQRDRLGEQVTVKTIVDAFQAKPYGWDLASIEVVIAWLVGNSKITVTVDGNVLKRTEVAAVLRNTQKHSHSVLAPQKLFDERKVATFRKFCTDFFDEATPPKDPLELARHGSEKLGAKLDELRALVSGSKYPFVEQLAAPIALLEQAVGKSDEWYLTEFILGDELLDAKENVIDPIQSFLGGGQKVIYDEAVVLLTSNTNNLGYLPPGSEADVRRLLDDPNAFRGNRMTQLKQAADALGAKVEDTLATHRRTVIQDIEGRKSEVLASAYYGNATEEAQQRVTRTIDQIITHLGSERQIALIREQGNGFEERTYPELLDQLASSARSTGGTDSPEPTPRQTVSVKTITVPGAHGVLENLDDVDRYLDALRGALLNTLNDGKRIALNANANANANA
D1-29_018763450hypothetical proteinATGGAAACCGCACCGCTGAAATCGTTCGCCACATGGGCTCGCACTGCACTCATCCGAGAGGTGTCGGCCCGCATCTCGGTCGTCCTGGCTTCGCAAGAGCTGCGCCTGGAGCAGCCTAACGCCGTCGCTGCGCTGGAGAAGGCCGTCAACGCTGCTGGCGGTGGTGACAAGGGCCGTGACGTAGTAGCAGACAAGGTTGCCTACACATGGTTCAACCGCATCATAGCGCTGCGGTTCATGGACGCCAATGGCTACACAGGCATCGGTGTCGTCTCGCCCGAACGGGGCCGCGAAGGAGGGCAGCCCGAGGTTCTTGCCGAAGCCAAGCGCGGGAACATCGACAGCGCGGTGGTTACGAACAAGCGCACGGCGGAGACCGTCACTAGTTTGCTCAACGGCATGCGCCGCAGTGACGACCCGCAGGGCGAGGCGTATGCGCTGTTGCTCGCGGAGTACTGCCGCCATTGGAACCGCTCAATGCCGTTCATGTTCGAGCGGGAGGGTGATTACACCGAACTGCTCATCCCCGCGAACCTGCTTGCCGACGATTCGGTCATGGCACGCGCCGTCCACGTGCTCACCGAGGATGTCTGCCAGGATGTCGAAGTCATCGGCTGGCTATACCAGTTCTACATCTTGGAACGTAAAGAAGAGGTATTTGCCGGTTTCAAGAAGAGCACGAAGGCCGGCGCGGCTGAGATCCCTGCTGCCACCCAGCTCTTCACGCCGCACTGGATAGTCCGCTACCTCGTCGAGAACTCACTCGGAAACCTCTGGCTGCTCAACCGGCCCACCTCAGGCCTGGCCGACCAAATGGATTACTACATCGCCCCGGTCGAGGAGACGGATTACCTGAAGATCTCCAGCCCCGAAGAGCTGAAGATTATCGACCCCGCATGCGGCTCTGGCCATATGCTCACTTATGCGTTCGACCTGCTCTACGCCATTTACGAGGAGGAAGGCTACGCGCCATCCGACATTCCTGGTCTGATCCTTGCCAACAACCTCTACGGCACCGAGATCGATCCCCGCGCGGGAGCATTGGCCGCTTTTGCACTCACCATGAAGGCCCGCGCCTGCCAGCGGACGTTCTTTAGCAAGCAGGTCCAGCCGAATATCTGCGTGCTTCAAGCCCTCTCATTCACACCAAGTGAGCTGGAAACGCTCGCTATCCCCCGTGAAGGTGAGGAAGTGTTCTGGAACCAGTTCCAGTATGCCGACACATTTGGATCGCTAATCCGACCTCAAGAGGATCTACTCAATCAGATGTGCGCGCACATCGGCATAAAGGATCTTGGTGATCAAGACCTGTGGATGCGCGACCTTATGGAGCGCGCCCAGAGAGTCGTGCATCAGGCGCAATATCTGTCGAAGCGATACCACGTGGTTGTAGCGAATCCACCTTATATGGGATCGAAGAATATGAGCGCTGGATTATCTGACTGGATCAGAGCTGAGTACCCGGACGTTAAGTCAGACTTATTCTCGGCTTTTTTCTACCGGTGCTTAGACTTGGTCCTTGAGCAAGGACAGCTCGGCTTCATGAGCCCCTTTGTTTGGATGTTCATTTCCTCCTACGAGAAGCTTCGACGACGGTTTGTGCAGGACCAGACCATCACTTCGTTGATTCAGCTCGAGTATTCAGGGTTTGAAGGTGCGACGGTTCCTGTCTGTGCCTTCACCCTGGAGAAAGGGAATAAGGAATACCGTGCAGCATTCGTACGACTTAGCGATTTCGTTGGGTCAGCCCAGCAGGCACCTCGGGCACTCGAGATAATCAAAGCTGGCATAGCAAACGAACGGGGCGTGACGAGCGATACGAGCACCATGTCGCGGTACTTTTACCGGGCTACAGCTAAGGACTTCAACTCAAGCCCGGCTTGCTCAATAGTCTATTGGTTGTCGGATGATGCAAAAAAGCTCCTTCAAAGTGCTCGGACGGTCGGAGATGTCTTCGAGGTAAAAGCTGGAATTTCAACAGGGGAGAACGAAAAATCTTTCCGCCACTGGCATGAAGTATCACTTAGCAGGACCTCTCTGTCCGGAACGAAAACTTCGGAATGGTATCCGCACAACAAGGGTGGTGCCTTTCGCAAATGGTACGGGAACCTTCAATACGTTCTCCGATATTCACCTGCTGCAATTGCAGACATGCGAACACGGCCTGGTTTTCGCCATGACGGCCGTGAATATTACTTCCGGCCACATGTTGGTTGGTCACAGATAACTTCCATTGACTCCAGTTTTCGTATGTACCCGGCCGGGATGACGTTCGGCTCTGGTGGACTGGGAATTTTCCATGCGGACGAATCGGCTCTGTTGAAAGTTTTGGCATATCTCAACTCGCCAATAGCCCGGGAACTCATTGGTGCGCTAAACCCGACCCTTAACGTCTCGCCGGGGGCGCTGGCGTCGCTCCCCCTGCCGGAGCTCGGCGAGGTTGACCTCGAGTTAGTCAGTCAATTGGTGGACAGTCAGCGAGCTCTCTGGGACGCAAACGAGTCCTCCTGGAACTTCCAAACGTATGAACTCGTCCGCGCGCGCCGCTCTGATTCCCCGCTGAAAGATGTCGCTGTTGAGGCAGTGGAGGAACGATCCCGTCTACTCCTAAAGGTGTCGAAGCTCGAAAATGATCTGTTCGCATCTAGTGGGTTTGGTTTCGCCGAGCCCGTTGCTAATCCCGGTAGCGGCGTTCGGGAAAGCTCAGATACGACGGTTCTGCAGACCATGCGTGATCTTGTGTCATACGCCGTGGGTTGCATGTTTGGTCGCTACAGCATTGATGAGCCTGGCCTGATTCTCGTGAATCAGGGCGAAACGCTTCAGGACTACCTCGCCAGAGTCCCTGTCTCAACGTTCCTCCCAGATAAGGACAACGTGATCCCGGTCGTCGATGGGGACTGGTTTGAAGACGACATCGTGGAGAGGTTCCGGCACTTCCTGCGCCTTGGGTTCGGGGACGAGCATTTCGAGGACAACCTGCGGTTCGTTGAAGATACGTTGGGGAAGGACATCCGGAAGTACTTTGTGCAGGACTTCTATAAGGATCATGTGCAGCGGTATAAGAAGCGGCCTATTTATTGGATGTTCTCGTCTGCGAAGGGCAGCTTCAGCGCGCTCATCTACATGCACCGATACACGCCTTCGACCGTCTCAACCGTCCTGAACGAGTACTTGAGGGAGTTCAAAGCAAAGCTGGATGCCAGTCGCCAGCACCACGAGCGCCTCGCTGCAGGCACAGGTGCACCACGCCAGCAGGCCGCCGCCCAGAAAGAGGTCGACCGTCTGCGCAAGGTGATGCTCGAACTCGACGAGTACGAGCACGACGTGCTGTACCCGCTGGCGACTCAACAGGTGCAGATCGACCTCGATGACGGTGTGAAGGCGAACTATCCGAAGCTCGGTGCTGCCTTGAAGAAGATCCCCGGACTAGAGGCCAGCGATGAGTGAMETAPLKSFATWARTALIREVSARISVVLASQELRLEQPNAVAALEKAVNAAGGGDKGRDVVADKVAYTWFNRIIALRFMDANGYTGIGVVSPERGREGGQPEVLAEAKRGNIDSAVVTNKRTAETVTSLLNGMRRSDDPQGEAYALLLAEYCRHWNRSMPFMFEREGDYTELLIPANLLADDSVMARAVHVLTEDVCQDVEVIGWLYQFYILERKEEVFAGFKKSTKAGAAEIPAATQLFTPHWIVRYLVENSLGNLWLLNRPTSGLADQMDYYIAPVEETDYLKISSPEELKIIDPACGSGHMLTYAFDLLYAIYEEEGYAPSDIPGLILANNLYGTEIDPRAGALAAFALTMKARACQRTFFSKQVQPNICVLQALSFTPSELETLAIPREGEEVFWNQFQYADTFGSLIRPQEDLLNQMCAHIGIKDLGDQDLWMRDLMERAQRVVHQAQYLSKRYHVVVANPPYMGSKNMSAGLSDWIRAEYPDVKSDLFSAFFYRCLDLVLEQGQLGFMSPFVWMFISSYEKLRRRFVQDQTITSLIQLEYSGFEGATVPVCAFTLEKGNKEYRAAFVRLSDFVGSAQQAPRALEIIKAGIANERGVTSDTSTMSRYFYRATAKDFNSSPACSIVYWLSDDAKKLLQSARTVGDVFEVKAGISTGENEKSFRHWHEVSLSRTSLSGTKTSEWYPHNKGGAFRKWYGNLQYVLRYSPAAIADMRTRPGFRHDGREYYFRPHVGWSQITSIDSSFRMYPAGMTFGSGGLGIFHADESALLKVLAYLNSPIARELIGALNPTLNVSPGALASLPLPELGEVDLELVSQLVDSQRALWDANESSWNFQTYELVRARRSDSPLKDVAVEAVEERSRLLLKVSKLENDLFASSGFGFAEPVANPGSGVRESSDTTVLQTMRDLVSYAVGCMFGRYSIDEPGLILVNQGETLQDYLARVPVSTFLPDKDNVIPVVDGDWFEDDIVERFRHFLRLGFGDEHFEDNLRFVEDTLGKDIRKYFVQDFYKDHVQRYKKRPIYWMFSSAKGSFSALIYMHRYTPSTVSTVLNEYLREFKAKLDASRQHHERLAAGTGAPRQQAAAQKEVDRLRKVMLELDEYEHDVLYPLATQQVQIDLDDGVKANYPKLGAALKKIPGLEASDENANANANANA
D1-29_018772496hypothetical proteinATGAGTGAGACATCCGCCGTCAGGCCCCATCTGGAGCGTCGCTTTGAGGTGCAGCGTGTGGTGTTCTGGCACGACCCCGATGGTGAGTACGCCGCTGACCTCGACACGCTCGGCCTGGAGGACGTGCAGACTTTGCGCGTCAATAACGACGAGTATGCGGTAAAGAACCGGCTGCTCCACCAGGAGCCCAAGTCGAAGTTCCTTGTCTATCGTTCGGGTGCTGTGCCGACGGGGATCGGCAATTGGCTGTTGGACCTGGAGCTTGCGTACGGAGTGTTCACAGCAGACCGGACCTCGCTAGTGCAGCAGGAACTCGGGCTCCCCGCCGACGATATTGGCGAAGTCGTGCTGGCGCATGAGAGCTTCTTTCGCGCGGCCAAGCGCATTCAAGACCTGAAGAAGCTGCTGGACGCCGACGATGACGCCCGGCTGCTGCAAGCCAAGATGTCAGCAATTCTGCTCGGTCAAAGCGAGCACAGCCTACTGGAGATCACCCGCACTCTGCTGATCGAGAACGCCGGCGGTGCGGACGCCAAGTACGGTGCCCTTGCCGAGCACGGCCTCGACGAGTTCTACTGGCAAGGCGTGGAGTCGATCTATGGCTACATGTCACCAAGCCCGAGCATCGCCGATTTCGTTCTGTGGGTTTTCCGGCAGGCCAACGCCGGATTCAAGTCAGAACGACCCGGCGGCTTGCGCAACATCCAGCTCGACTTCGGGAGCTTTCGCTACGACAGGCGTAGCCAGGAGGCATTGACAACGCTCGCGAAACGCGCAGCGCGAGATCTGGACTATGCCAGCACCATCGAGGACGCAAGCTTCCGCGATCTGTTGGGCAACGACCTTTTCGAGGAGACTGACCGCAAGATCATCAGCGATCTGGCACGCGCGGTCGCTGAGCGAACGGTCACAGGCCGCGAGGTTACAGAGGTAATCCGCAGCCGTCAGAGCAGCATCTGGGTCGACGGGTACCGGAAGCTATACACAGCGATCGGCTGCGCCTCGGAACTCCTGACCGTGCTTGGCACGCTTAACCTGTCGATGCAGTCGCTCGATGAGGGATTGGAGCGATACCGGGGTGCCTGGTTCCGCATCGATCAGCTCTACCGACAGTTCACATATGCTGCCCGCACAGCAGAGTTCCCCGGCCCGCTGGAGACCCTGCGTACCCAAGTGGAGAAGTTCTACGCCAACAAGTTTCTCTACGAGCTCGGTAACACCTGGCAACAGCAGGTCGATGGCATCGACCAGTGGCGTTCCACATTGCTCCGGCCCCAAACCTCGTTCTTCACCGACCACGTTGCACCCATCACGCGAGACGGCCGGCGCAAGGCCGTCGTCATCATCTCGGACGCCCTGCGGTACGAGATCGCTGACGAACTTGGCTCACGCATCCGCCAGGAAGACCGCTACGATGCGGACCTGAAAGCCATGCTCGGCGTGCTGCCCAGCTACACCCAACTGGGCATGGCTGCACTGCTGCCACACAGCACGATCGGACACTCCAAGGACGGGGATCCTGTTCTGGCCGATGGTCAGCGCACAGACGGCACCGTGAACCGCAGCAAGCTCCTCGACGCCGTTGACGGGAAAGCGATTCAAGCTGAGAACGTCTTTTCCCTGACCCGGGACGAGCTGCGGGAGTTGTACCAGCAACATCAGGTGCTGTACGTCTATCACAACCGCATCGACGCGACGGGTGACAAGGCCGGCACGGAACGTCAGGTCTTTGAGGCCGCCGAGGACACGCTTCGCGAACTGGTCGATCTTGTTAAGCGATTGACCAACGCGAACGCGACGAACATCCTCATCACGGCGGACCACGGCTTCCTTTTCCAGGACACGGCACTCGATGACGCCTTCTATCTATCGACACTGCCGCAAGGCGACGATATCAAGGTGATCAACCGCCGTTACGTCCTCGGTCACGGCTTGAAGGAAGTCCCCGCGTTCAAGACTTTCACGTCAGGCCAACTCGGCCTCGATGGAGACCTGGATGTGCAGATACCAAAGTCGATTCATCGGCTGAGGCTTCCAGGCGCAGGGTCGCGATTCGTCCACGGCGGTGCGGCCTTGCAGGAGATCGTCGTCCCAGTACTGGCGATCAACAAGAAGCGCAAGAGCGACGTGCGAACGGTCAACGTCAAGATCATGCCCGAGTCGGACAAGATCACGACAGGCCAGCTGGTCATCAAGTTGTTTCAGGCTGAGCCGGTGAGCGAGAAGGTTCGCCCCCTTGTGTTGCGCGCAGGGCTGTATGTCGGCGAGATCCTCATATCGAATCATCTCTCGCTCACGTTCGACCAGGACTCGACAGACCAGCGTGACCGCTACCAGAACGCGCACATGCTGCTGAGCCAGGACGCAAACGACTACAACAACCGCCCGGTCGAGTTCCGGCTTGAAGAACTCATCCCGGGCACCAATCAATGGCGCGGCTACGCCAAGGCGTTCTACACGCTAAAGCGATCGTTCGCCTCGGACTTCGATTTCTAAMSETSAVRPHLERRFEVQRVVFWHDPDGEYAADLDTLGLEDVQTLRVNNDEYAVKNRLLHQEPKSKFLVYRSGAVPTGIGNWLLDLELAYGVFTADRTSLVQQELGLPADDIGEVVLAHESFFRAAKRIQDLKKLLDADDDARLLQAKMSAILLGQSEHSLLEITRTLLIENAGGADAKYGALAEHGLDEFYWQGVESIYGYMSPSPSIADFVLWVFRQANAGFKSERPGGLRNIQLDFGSFRYDRRSQEALTTLAKRAARDLDYASTIEDASFRDLLGNDLFEETDRKIISDLARAVAERTVTGREVTEVIRSRQSSIWVDGYRKLYTAIGCASELLTVLGTLNLSMQSLDEGLERYRGAWFRIDQLYRQFTYAARTAEFPGPLETLRTQVEKFYANKFLYELGNTWQQQVDGIDQWRSTLLRPQTSFFTDHVAPITRDGRRKAVVIISDALRYEIADELGSRIRQEDRYDADLKAMLGVLPSYTQLGMAALLPHSTIGHSKDGDPVLADGQRTDGTVNRSKLLDAVDGKAIQAENVFSLTRDELRELYQQHQVLYVYHNRIDATGDKAGTERQVFEAAEDTLRELVDLVKRLTNANATNILITADHGFLFQDTALDDAFYLSTLPQGDDIKVINRRYVLGHGLKEVPAFKTFTSGQLGLDGDLDVQIPKSIHRLRLPGAGSRFVHGGAALQEIVVPVLAINKKRKSDVRTVNVKIMPESDKITTGQLVIKLFQAEPVSEKVRPLVLRAGLYVGEILISNHLSLTFDQDSTDQRDRYQNAHMLLSQDANDYNNRPVEFRLEELIPGTNQWRGYAKAFYTLKRSFASDFDFNANANANANA
D1-29_018782145hypothetical proteinATGAGCGAAGTGAGCGAGGTAGGTCCAGAGATAACCGCTGGGATCAACACATCAGCAGATGCCACCCCACTGCAGAGCGACCTGGACCGAAAGATCAACCAGCTCTTCCCCGGGGTTGTAGTCCGCAAGGACCTGGTGAAGGCGGTCAAGGGCAACGCCATTGTGCCCTCCTACGTGCTGGAGTACCTGCTCGGCCAATACGCGGCATCTGACGACGAAGCCACCATCCAGGCAGGCATCGACACGGTGCGCAAGATCCTCGCCGAACACTATGTGAACCGGAACGAGTCCGAGCTCGTGAAGTCCACGATTCGAGAGCGCGGGCGGCATCGCATCATCGATAAGGTTACGGTCGCGCTCAACGAGAAAGATGACGTCTACCAAGCCGAGTTCGCCAACCTCGGCATCAAGGGCGTACTCGTCGAACCTGCAACGATCAAGGCTCACCCGAAGCTGCTCGTCGGCGGTGTGTGGTGCATCTGCGACATCGAGTATTTCCACAGTGACGATGCCCGCATGGTGCCGTGGATATTGGGGTCGATCAAGCCCATCCAGTTGTCCAGGTTCGACTTTGAGTCCTATCTCGCGGCACGGGGCGAGTTCACAACCGGCGAGTGGATCGACCTGCTCGTGCAGTCAATAGGGTTCAATCCCGAACTTTTCGGGCACCGCGCCAAGCTCATCCAGCTCGTGCGGCTCATCCCGTTCGTCGAGCGCAACTACAACCTCGTTGAACTCGGCCCCAAAGGGACCGGCAAGTCACACATCTTCTCTGAGTTCTCACCCCACGGCATGCTCATCTCCGGTGGCGAGGTCACGGTCCCGAAGCTGTTCGTCAACAACTCCAACGGCCGCATCGGGCTGGTCGGCTACTGGGATGTAGTCGCGTTCGACGAGTTCGCGGGTAAGAAGAAGCGTACCGACAAGGCACTCGTCGACATCATGAAGAACTACATGGCGAACAAATCGTTTTCCCGCGGCGTCGAGACGCTCGGCGCGGAGGCGTCAATGGTGTTCGTCGGCAACACTTCGCACACCGTGCCCTACATGCTCAAACACTCCGACCTGTTCGACGAGCTTCCCGAAAGCTACCACGACTCGGCGTACCTTGACCGCCTGCACCACTACATCCCCGGGTGGGAGGTCGACACCATCCGCGGCGAGATGTTCTCCAACGGGTACGGGTTCGTTGTCGACTACATCGCCGAGGTGCTCAAGTCGATGCGTTCGGCAGACTACTCCGACCGCTACCAGTCGCACTTCACACTCTCATCGGACATTTCGACGCGAGACCGCGACGGCATCCACAAGACCTTCTCCGGCCTGATGAAAATCCTTTACCCGCATGGGGAAGCGACACGCGAAGAGATCGAAGAGATCCTGCAGTTCGCCATCGAGGGCCGCAAGCGGGTCAAAGACCAGATCCTCCGCATCGACTCAACGATGGCAAACGTAAAGTTCGGCTACCTCGACAAGGCCGGTACATGGCATTCAGTCTCTACGCTTGAAGAGGATGAGTACCCGGCGTACTACTACCGTGAGCGCCGCGTAAGCACAGACGCGGAGGAGGCAACGGGCGATCCAACTGGGCACGCCGCGGCTTCTGCGGAAGACGGTCAACCAATTGCGCCCTCGCCAGCCACCATAAAACCGCTGTTTGAGGGTCACCAGGAGTTCCAGGAGAACCAGCGTGGAATCTCCTTCGAGACTCTCTTGGTCCCGTACCTGCGCGGAGCCACGCAGATCACCATAACTGACCCTTACATCCGGCAGTTCCACCAGGCCCGTAATCTCATGGAACTGATCGAGTGCATCGCGGCCACCAAGGACGCGGCCGACGAAGTGAGTGTCCGGCTCGTTACTTCTGAGAACACCGAGGGACAAGACAAGCTCCGCAAGCAGTACGAACTACTGCTGAAGGTCAAGCAGGGAGCCTCTGTCGCCGGCATCAACGTCGACATCGTCTTCGACGGAGCTATCCATGATCGGTCCATCCTCACCGACACCGGATGGAGGATCCTGCTCGGCCGCGGGTTGGACATCTTTCAGTACATCACGGGCGATGCCTTCGAACTTGCCACTAAGCTTCAGGAATATCGGCAAGTCAAGGCCTTTGGCATAACTTACATCCGAGACGACGCGTGAMSEVSEVGPEITAGINTSADATPLQSDLDRKINQLFPGVVVRKDLVKAVKGNAIVPSYVLEYLLGQYAASDDEATIQAGIDTVRKILAEHYVNRNESELVKSTIRERGRHRIIDKVTVALNEKDDVYQAEFANLGIKGVLVEPATIKAHPKLLVGGVWCICDIEYFHSDDARMVPWILGSIKPIQLSRFDFESYLAARGEFTTGEWIDLLVQSIGFNPELFGHRAKLIQLVRLIPFVERNYNLVELGPKGTGKSHIFSEFSPHGMLISGGEVTVPKLFVNNSNGRIGLVGYWDVVAFDEFAGKKKRTDKALVDIMKNYMANKSFSRGVETLGAEASMVFVGNTSHTVPYMLKHSDLFDELPESYHDSAYLDRLHHYIPGWEVDTIRGEMFSNGYGFVVDYIAEVLKSMRSADYSDRYQSHFTLSSDISTRDRDGIHKTFSGLMKILYPHGEATREEIEEILQFAIEGRKRVKDQILRIDSTMANVKFGYLDKAGTWHSVSTLEEDEYPAYYYRERRVSTDAEEATGDPTGHAAASAEDGQPIAPSPATIKPLFEGHQEFQENQRGISFETLLVPYLRGATQITITDPYIRQFHQARNLMELIECIAATKDAADEVSVRLVTSENTEGQDKLRKQYELLLKVKQGASVAGINVDIVFDGAIHDRSILTDTGWRILLGRGLDIFQYITGDAFELATKLQEYRQVKAFGITYIRDDAPGPT0014315_5027DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338NANA
D1-29_01879783hypothetical proteinATGGCGACCACGAAGAGCCCGGGTGACGGCGAAGAAGACAAAATCCTGGCGGACTTCAGAACAATGATCGAAAAGTTACCGCCGCTGCGTCCGACTCCGATTGATGACTGGAACCGAGATGACGAGGCCGCGGTCCGTGCCGTCGGCATCGCGTGGGGGTGGCTTATGCGAACCCTACGCACTGCCGAGGCCATCAGGCTCTTAGAACAGCGCGGATTCGGCGTCGAGTGCGCTCCGCTCCGACGCTCCGTCGTTGAACACGTCATCAGGCTCCACTGGGCCACCACCGTCGACACCCGCAGATTCGTCGAAGCAGCATTGAACAAGCGCAAACATAGCTTGGGCAACATCACACTTGCGGCAGAGGCCGGCACCCCTCTACCCGATGGCGCGCTGGATATCATCGAATTACTAAAGTCCGAAGCGGATCCCGGATCGGACAGCGTCTCCTTCAAAGACCTCAAGTCCTTGATGAACGACATCCCCGATTACCAGATTCTTTTCCAAATCTGGCTTACGGACACCCAAGAATCCCACGCAACGCTGACCCGTTCAGAAGCCTATGTCGAGTTCGACCCTGATGAGCCCGGAATGCATCTTCACATGGAACCAACCCCTCACAATCGCTTCGGCGCGATGCTGCCAAGCTTGATGCTGCTAGGCACCGAGGCCTTCGTGCATCTGGCCGGCATGGCAGACCAGTTGACGGAACCGCTTGCTGACATCCGGGATCGCGTAACGCAATTGGGAACTGCGCAAAACTCAGCCACCGGGCCTGGGTAAMATTKSPGDGEEDKILADFRTMIEKLPPLRPTPIDDWNRDDEAAVRAVGIAWGWLMRTLRTAEAIRLLEQRGFGVECAPLRRSVVEHVIRLHWATTVDTRRFVEAALNKRKHSLGNITLAAEAGTPLPDGALDIIELLKSEADPGSDSVSFKDLKSLMNDIPDYQILFQIWLTDTQESHATLTRSEAYVEFDPDEPGMHLHMEPTPHNRFGAMLPSLMLLGTEAFVHLAGMADQLTEPLADIRDRVTQLGTAQNSATGPGNANANANANA
D1-29_01880546hypothetical proteinATGCTGCCGAGCCAGACGGACAGGCTTGACGCCTGGTACGAGTACTCGCGTGGAGACCGGACACTTGCAGCCGAGAAGCCCCAACAGCCGATCCCAGCGGGCCTCGCGGGCCTACTTGACTCGCTCAACGAACACCGCCCCTACGGTTGGCTTTCAACCAGCATTGACCTTCTCGATCTCGACGGACCACTCCGGCGAGAAATTGGGGTTCTACTCCTCACGTTGCGTCGAGAGAGCCGTATGGACGGACAGATGCACAGCAAGTTTGTCGGATTCGGCATTGCGGGACCGGGCAAGCGCCGGGGCACGCTGTTCCTCAGCTTCGCTCGGGGCGTCACCCGGGACGCTGCCGTCCGGGAGGCCAGCTTGCGCATGCGATTGCGGAAACACGCCCTACGTCTCGACTACCTAGCGGCGATTGGCGTTTGGGATTCCATTGAGACCTTTAACATCTTCGTGTTCAACGACGAACCATGGCAGCCGAATCCCGGCCTCGATGAGCTCGCGAGGCGCGCAGGATACGAGATAGCCGAACCAGCTACATAGMLPSQTDRLDAWYEYSRGDRTLAAEKPQQPIPAGLAGLLDSLNEHRPYGWLSTSIDLLDLDGPLRREIGVLLLTLRRESRMDGQMHSKFVGFGIAGPGKRRGTLFLSFARGVTRDAAVREASLRMRLRKHALRLDYLAAIGVWDSIETFNIFVFNDEPWQPNPGLDELARRAGYEIAEPATNANANANANA
D1-29_01881198hypothetical proteinATGAAGCACTGGATGGGCATCGAGGTGGGGCAGTACAAGTCCATCAAGTCCATCAACCCGGGTAAGCACTGGGATGAGGCTGAGCTGCAGCAGTACCGCAGCAAGCTGGCAGGATTGAAGGACGAGTTCGCTTCCAGACCTGAATGGCACGAGGCGATCATGGGCAATATCGACAGAGTATTGGAGCACATGAAGTGAMKHWMGIEVGQYKSIKSINPGKHWDEAELQQYRSKLAGLKDEFASRPEWHEAIMGNIDRVLEHMKNANANANANA
D1-29_01882621hypothetical proteinGTGATCGAGTTCATTGAGGTTCAGTCCAAGGAGTCTCTTGGAACAGTAGAGCTCAAGGACGGGAAGCTGGTCGGACCGATCCATCTTCAGTCCATGATCCAGGCGTGGCTGCGCCAGGAGAAGAGCCCGGAAGAGTTCATGGAGTTTTACGGCGGGGATGGCTGGTCCAACGGCTACATCTACTCCCAGGTCGCCAGCGGTGAGGCCAAGGCTGCCGCCGAGGAAGTTCCGGTCGAGGAGATGCGTGCCCGTATCCGTACCTTCGCGCAGAACGACGAGGAGCTCTCACCGGTGACGGTGGTTGAGAAGCTGCGGGACATCGTGGCTGAGGACGTGAAGGCCCATCCGGAGGTGGGTGCCGCCGGAGCCGAAGTCATGCGGGAGATGGACAACTACGTCGAGCTGATCACTGAGGCGGAGACCGACGAGGACGTCAGGGACATCATCGAGGACATCCTCGAAGAGGTGCCTGTCGCGGATTACGATGGCGCTGAGGATATCGTGGATTTCCTGGAGGCTTTCCTCGAAGGCGGCGAGAAGCCCGTCAAGGAAGAGAAGCCTGCCAAGGAAGAGCCCGCCAAGACGCTCCGAGTTACGTTTCCGCGCCCTATCAAGAAGTAGMIEFIEVQSKESLGTVELKDGKLVGPIHLQSMIQAWLRQEKSPEEFMEFYGGDGWSNGYIYSQVASGEAKAAAEEVPVEEMRARIRTFAQNDEELSPVTVVEKLRDIVAEDVKAHPEVGAAGAEVMREMDNYVELITEAETDEDVRDIIEDILEEVPVADYDGAEDIVDFLEAFLEGGEKPVKEEKPAKEEPAKTLRVTFPRPIKKNANANANANA
D1-29_018831833hypothetical proteinATGTCGATCGCTACAGCGCTGCGACAGATCCAGGAGCGTAAGCTCATCCTTCCGGCGATCCAGCGAGAGTATGTCTGGAAACCTTCCCAGATCATCCGCGTGTTCGACTCCATCATGCGCGGCTACCCGGTTGGGAGCTTCCTCTCGTGGAGGGTGCGTCCGGAGACGGTCAGCAAGTTCAAGTTCTACGGATTCATGAAGGACTACAGCGCCTTCGATAACCGGCACAACCCGGTGATTGACATACCCACCGACCGTGAGGTCGTCGCCGTCCTTGACGGTCAGCAGAGATTGACCTCACTCAACATCGGACTTCGTGGTACCTACGCTTATAAGGTCCATGGCGGCTGGTCGAACAAGCCATGGTCCTACCCCGAGCGGCGTCTCTACCTGAACCTTCTGGGAGAAGCCCCCGAGAATGAGTTCGGCCTCAAGTACCACTTCCAATTCCTGACCAAGGACGACCTCGACGCAGCGGTGGCCGACGAGAGCAAGTCGTGGCTCCCGGTGTCCGAGATCTTCGGCGCAGCCGAACCAGCAGTCATGATGCGGATTCCTGCGAAGTACGGCGTCGGGAACAACGAGGCAGCAGTCGATCTCGCCGGGAAGCTCTGGCAGGAGATCCACCACAGCGCCAGCCTCCATTTCTATGAAGAAGACGTGCAGGACATCGAACGTGTCCTCGACATCTTCGTGCGAGTCAACTCCGGCGGCACCGTCCTGTCCTACAGCGACCTGCTCCTGTCCATCGCAACAGCGCAATGGGAGGGCGATGCTCGTGCCGCTGTCCACGGCCTGGTGGACTCCCTCAACCAGACAGGCAACGGCTTCAACTTCTCCCGGGACACGATCCTGAAGTCAGGGCTGGTGCTAGCGGACGTCGGCGACATCGGATTCAAGGTCAAGAACTTCACTACAGCCAATATGGCGAAGCTCGAGGCCGGCTGGGATGTCATGAGTACATCCCTTCACGTCGCGGTCGGGCTTCTCAGCGATTTCGGGCTGTCAGGCGGAGCACTCACCGCGGACAGCATCCTTATCCCGGTCGCCTGCTACGTGCACCGCCGGAGGCTCGGGCACGCATACCGCGAGTCGCCTACGTCCCGCGAGGATCGTGAAGCCCTTCGGTCATGGGTTCTGCGGTCCCTCATCGTGCGCGGTGTCTGGGGCTCTGGCCTGGACACTTTGCTCCGCGACCTGCGCGAGGTCATCAAGTCCCAGGGTAGCTCGGCGTTCCCGGTCGCGGCGATCGAACAGGCGATGGCACTTCGCGGCAAGTCGCTCGCGGTCACAGATGCCCTGGTCGACGACATCTTGAGCCTGGAGTACGGCAAAGCTCGAACCTTTGCAGTGCTTGCAGCCCTGTTCCCGCACGTCGACACGCGCAACATGTTCCACGTCGACCACGTGTTCCCAGCCGCACGGTTCGACAAGAAGGTACTGGCGAGCCACAGGAACGCCGACGGCACACCTCGATTCACCGCCGATTCTATCGACGAGCTCGTCTCGCTACGTGACCGCCTGCCGAACCTGCAACTGCTCCCAGGGCTCGAAAACATTGGCAAGTCTGACAAGGCACCGGACGACTGGCTTGCGGCGGAGTTTCCATCCCCAGATAACCGCAGCGCGTTCCTCGCACGGCATGCTCTGCCGTCGCCGCTACCGCACTCCGTGGACGAGTTCACCGCGTTCTTCGAGCAACGGCGCGCGAATCTCACGGCTCGTATGCTCGACATGTTCAAGATCCGTAGTCCGGAGCCAGTCGGGGCTTACACGGGCCCTCCGCCCGCTGACCTGGATGAGGAACTCGCTGAAGGCGACTACGAGGACTGAMSIATALRQIQERKLILPAIQREYVWKPSQIIRVFDSIMRGYPVGSFLSWRVRPETVSKFKFYGFMKDYSAFDNRHNPVIDIPTDREVVAVLDGQQRLTSLNIGLRGTYAYKVHGGWSNKPWSYPERRLYLNLLGEAPENEFGLKYHFQFLTKDDLDAAVADESKSWLPVSEIFGAAEPAVMMRIPAKYGVGNNEAAVDLAGKLWQEIHHSASLHFYEEDVQDIERVLDIFVRVNSGGTVLSYSDLLLSIATAQWEGDARAAVHGLVDSLNQTGNGFNFSRDTILKSGLVLADVGDIGFKVKNFTTANMAKLEAGWDVMSTSLHVAVGLLSDFGLSGGALTADSILIPVACYVHRRRLGHAYRESPTSREDREALRSWVLRSLIVRGVWGSGLDTLLRDLREVIKSQGSSAFPVAAIEQAMALRGKSLAVTDALVDDILSLEYGKARTFAVLAALFPHVDTRNMFHVDHVFPAARFDKKVLASHRNADGTPRFTADSIDELVSLRDRLPNLQLLPGLENIGKSDKAPDDWLAAEFPSPDNRSAFLARHALPSPLPHSVDEFTAFFEQRRANLTARMLDMFKIRSPEPVGAYTGPPPADLDEELAEGDYEDNANANANANA
D1-29_01884183hypothetical proteinATGACCATTGTTCTCCATGTGAAGTCCAATACTGGCCTCTCCATTTGGAACGCGGAAGTCGACTTCAATGACTATGGTCACCTAACGGGTACCTACTGGCTGAACACCGAAAATAGTAAATCTGCGGTCCCCAAGCATTTTGCCGATTTAGTTCAAGCAGAAATTAAGCAACGCATCCGTTAAMTIVLHVKSNTGLSIWNAEVDFNDYGHLTGTYWLNTENSKSAVPKHFADLVQAEIKQRIRNANANANANA
D1-29_01885249hypothetical proteinATGTTCGCCCGGATCCAAGCGGAAGAGAGCCGACCGATTGATGACCCGGCTCCCATCAGAGAGTTCCCGAAGTATGGCCGGCCCATGGTCTATGTGAGCGGCATCTATGGCAAAGCTGTGGGCTGGACCCGGAACTATGGCTTGATTGAATGGCTCGACTCATCCGGCAAATACCACGTGGGTTGGGCGCATTCGTCCAGCATCAAGCGGGTGAAGCCTGAAGAGTGGAAGGGCGGCGGCGGGCTGTAGMFARIQAEESRPIDDPAPIREFPKYGRPMVYVSGIYGKAVGWTRNYGLIEWLDSSGKYHVGWAHSSSIKRVKPEEWKGGGGLNANANANANA
D1-29_01886252hypothetical proteinGTGACCGAAGAACCCAAGAAGCACCGATTCCTGACCATCGAGCAGGCAGCCGAGGAACTCAACGTGTCCCACAGCCAGATCCGGGCACTGCTGAAGATAGGTGAGCTTCGCGCCATTCAGGTCGGCGGCAGGGGCATGTGGCGTATCGGCGTCGAGGACATGGAGGACTACATCGCCGAGGCGTACCGGCGCACTGCCGAACGGATCGCCGCCGGCGAGATCGTTGACGACGGGGATCAGGACAGCGAATAGMTEEPKKHRFLTIEQAAEELNVSHSQIRALLKIGELRAIQVGGRGMWRIGVEDMEDYIAEAYRRTAERIAAGEIVDDGDQDSENANANANANA
D1-29_01887285hypothetical proteinATGACGGCACCAACGGTGGAGGCGGCGATCCATGAGCTGATGGATTTCTGTTGGAATGTTGTCTACGACCTGCTGGAAGTGCGGGGCCTGCTCGGTGACGGCTTGTTCGTCGAGGAGTACACCGGAATCCACTCCTGGGTGGAGGAGTGCACCCGCTATACCGTGGTGCACTCCCGGACAGTTGCTGTCTTGTTTGTGGACACGCGGCCGGTGGACGCCATCGTGTTCCACCACGACCTCCTAGGCGCAGACGACCCAAAAAGCTACTTCAGCGTGCCTCAGTAAMTAPTVEAAIHELMDFCWNVVYDLLEVRGLLGDGLFVEEYTGIHSWVEECTRYTVVHSRTVAVLFVDTRPVDAIVFHHDLLGADDPKSYFSVPQNANANANANA
D1-29_01888648hypothetical proteinATGACCCAGACCAAGCGCACCGCGCCCGATCCTGAGTGGGTGCTGATGTACCGGCAAGGCATACCCACGCCGAAAATCGCAGCGGTCGCCGGCGTCGCTGAAACCACGGTCAGGTACCACCTGGCCATTGCCGCCAAGCTGGATACCCGCATCAGGGCTGAGCATCAGGCGGCGCTTCCCGCCGCACTCCCGCGTCTGACAGCAGCAGGCCGGCGGAATCTGGAGGACATCATCGCCTTCTACAAGACCGAAGGCCGGTTGCCGATCTTCAGCCGCTCGGCCCGCGAAAAGGCACTGGCGGTCTGGCTGCATCGACGCCGTAAGGAAGCAGCGCAGGGCACCCTCTCCCCTGCCTACGCTGACGCCCTGGACATGGTCCCTGACTGGCGGAAACCATCGACGAAACAGGCTGACGACGAAGCGCGCTGGAAACAGCGCCTTACTGAGGTCGCTGAGTACCGGGGAGCCGGCAACGATTGGCCCCGGCACAACAAAACCAACGATCCGTTAGAACGAATGCTTGGCGTATGGCTGCATGTCCAACGCATCAACGACCGCGCCGGCAAGCTTGATCCGGCGAAAAGGACCCAGCTGGATGCTGTGATCCCCGGATGGCGGCAGGGAAGGCAGAAGGCAGCAAAGAGGTGAMTQTKRTAPDPEWVLMYRQGIPTPKIAAVAGVAETTVRYHLAIAAKLDTRIRAEHQAALPAALPRLTAAGRRNLEDIIAFYKTEGRLPIFSRSAREKALAVWLHRRRKEAAQGTLSPAYADALDMVPDWRKPSTKQADDEARWKQRLTEVAEYRGAGNDWPRHNKTNDPLERMLGVWLHVQRINDRAGKLDPAKRTQLDAVIPGWRQGRQKAAKRNANANANANA
D1-29_01889168hypothetical proteinGTGAATGCAAGTCCGGCCTTCGGTGTTATTGGTGCTGTGTACGCGATCTTTACGGTCGTGCTGGCCGGACTGGCGGTATACGCCCTGGTCCTCGTCATCGTGTTCCTTCGGCTGCGGATCGCTGAGCTGAAGCAGGCTGGACGGACCAAGGACGACCCCCTGCGGTGAMNASPAFGVIGAVYAIFTVVLAGLAVYALVLVIVFLRLRIAELKQAGRTKDDPLRNANANANANA
D1-29_018902121hypothetical proteinGTGGAGACTTTTAAGCGGACGCCGCTTCAGCTGTTCAACCTGCCACAGCACTTCGTGATTCCGCTGTTCCAGCGCCCCTACGTCTGGAAAGAGGATGAGCAGTGGGAGCCACTGTGGAAAGACATTCGGCGCGTTGCAGAGCTGCGCATGAGCGAGCCCCACCTGGCACCACAACACTTCCTGGGAGCCGTCGTTCTCCAGGCACAGGAAGCCGAGAGCGCACGGCTCACCACATGGAATGTCATCGACGGCCAGCAGCGACTAACGACGCTTCAGCTGCTCGCCGACGCGACGTGCGCCATCTTCGCCCAGGCAGGGCTTTCGAAGCACGCCAGCCAGTTGGAAGGCCTGACGCATAACTCCGAGAGCTTCATCGAGGAAGATGAAAGCCCGCTCAAGGTTCTGCACCTCAACAATGATCACGACGCCTTCCTGGAAGTCATGACAGCGGAGCCACCGATCGACCACTCTGACCTCAAGCACCATGAATCCCGGATCGTCCATGCGCATCGGTATTTCACGACAGCAGTCACCCAGTGGCTCGGGAACCATGGCACAGACGAGTTTGCGGCGAAGGCCAAAGAACTCGCTCGCGTCCTGCTCGATGACCTGCAGCTGGTGACCATCGAGCTCAAAGCGTCCGAGAACTCGCAGGAGATCTTCGAGACGCTCAACGCCCGCGGGACTCCCCTGACGGCGGCGGATCTGATCCGGAACTTTGTGTTCCAGCGGCTTGAAGCTGAAGGCGGAGACACCAAGAAGGCCTACCGCGAGGACTGGCCCTTCGAGGCCAGGTTCTGGACGAAGGAGGTCAGCGTCGGTCGCTACCTCGTGAGCCGAAGCTCGCTCTTCTTCAACCAGTGGTTGATCTCTCGTACAGGTGAGGAGATCAGCCCGCAGTCAACGTTCACCAGATTCAAGTCGTACGTCGAGCACACAGCCGGGCACAAGATGGTTGACCTGCTCGCCGTGATCAAGCAGCAAGCTGCGCTATATGAGTCGTGGACTGAAGCCTCGCTCAGGCCTGACGGCAATCTCGGCGCTGTCGAGATGGCTTTCCACCGCATGAATGCCGCTGGCATAGAGCTTCTTAAGCCACTCATGCTCTGGCTGTACGAACCCGGCAGGGATCTTCCACAGCACGTTCTCGACGCCGTGATCCGTGTCGCAGAGAGCTGGGTCATCCGTCGGCAACTGCTTCGCCTCACGGGCTCCGATCTCGGCCGCATCGTCGCCGATGTTATCCACGCCAACTCCGATGTCGAAGCCAGCGAACTGGTCGAGCGCGTCACCGGGTACCTCGCCCGTCTCAATGTCTCCAGCACGTATTGGCCTGGGGACGACGAGATCAGGGTGGCGCTCAAGGATGAGCCCGTCTACCGCCGCTACCCACGCCCTCGCCTGCGCATGTTCCTGGAGGCGATCGAGAACCACTTCCGCGCCGAAACCAAGCAGGCACAAGTCGTGCGATCCGGGCTTCCTATCGAGCACATCCTTCCGCAGAAGTGGCAGGACAACTGGCCACTGGACACACCTGAAGAACAGCAGGACCGTCAAGCTCATGTGCACCGCCTCGGCAACCTGACACTCCTGACCTCTCCCCTCAACTCGAAGGTCTCCAATGGCCCGTGGCCGGCCAAACGCCACGCGATGCTCAAGCACAACACGATCAGTCTGACCGGACGCGTGGTCGCGGACACCGAAGGAGAGGTGTGGCGTGAATCGCTCATTGACCACCGGACAGAGGTCCTGGTCGAAACGCTTCTCAGGGTGTGGCCTGTCCCCGACGGACACAAAGGTCAGGTAGTCGACCCCCAGGCCAAGGCGGAAGATTGGGTCCAGCTCAAGCACCTGATTGCTGCTGGTCTCCTTTCCCCGGGCGACAAGCTCATCGCCACGCACCGCGACTTCAAGGGCGTCGAAGCGCTAGTCAGATCCGACGGATCGATCGAGCTTGATGGCAAGCGTTTCACCGCCCCGTCATCGGCCGGCCACCACCTGCGCAAGAAGGCCACGAACGGCTGGTACTTCTGGGCTGTCGCGGACGGGCGTCGGCTGCGGGACGTTCGGGCGCAATTCCAGAGCATGTCAACTTCAATACCGGCCGACGCAGAGTACTGAMETFKRTPLQLFNLPQHFVIPLFQRPYVWKEDEQWEPLWKDIRRVAELRMSEPHLAPQHFLGAVVLQAQEAESARLTTWNVIDGQQRLTTLQLLADATCAIFAQAGLSKHASQLEGLTHNSESFIEEDESPLKVLHLNNDHDAFLEVMTAEPPIDHSDLKHHESRIVHAHRYFTTAVTQWLGNHGTDEFAAKAKELARVLLDDLQLVTIELKASENSQEIFETLNARGTPLTAADLIRNFVFQRLEAEGGDTKKAYREDWPFEARFWTKEVSVGRYLVSRSSLFFNQWLISRTGEEISPQSTFTRFKSYVEHTAGHKMVDLLAVIKQQAALYESWTEASLRPDGNLGAVEMAFHRMNAAGIELLKPLMLWLYEPGRDLPQHVLDAVIRVAESWVIRRQLLRLTGSDLGRIVADVIHANSDVEASELVERVTGYLARLNVSSTYWPGDDEIRVALKDEPVYRRYPRPRLRMFLEAIENHFRAETKQAQVVRSGLPIEHILPQKWQDNWPLDTPEEQQDRQAHVHRLGNLTLLTSPLNSKVSNGPWPAKRHAMLKHNTISLTGRVVADTEGEVWRESLIDHRTEVLVETLLRVWPVPDGHKGQVVDPQAKAEDWVQLKHLIAAGLLSPGDKLIATHRDFKGVEALVRSDGSIELDGKRFTAPSSAGHHLRKKATNGWYFWAVADGRRLRDVRAQFQSMSTSIPADAEYNANANANANA
D1-29_01891288hypothetical proteinATGATTCTGGCAGCGGTGGATCCTGGGATCACCCCTAATGCGAACTTTCCCTTTCTTGAATCCCTTAAGCAGATCGGCGGAGGGATCCTCGTCGGCGCTTTCATTGTCATCGCCATCGTGGCGATCATCGGGGCCGCGATGCTCTTGGCCGGCAAGCTGAGTCAATCGTCGCGCCTCGCCTCAGGCGGTGGCTCCATCTTGCTGTGGACAGGCCCGGTGGCCGCGATCCTTGGCGGCATCAACGGCTACATTCTCTGGTCCCAGAGTGCGTTCCCGCTCGGGTTCTAGMILAAVDPGITPNANFPFLESLKQIGGGILVGAFIVIAIVAIIGAAMLLAGKLSQSSRLASGGGSILLWTGPVAAILGGINGYILWSQSAFPLGFPGPT0025410_672DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_IV_SECRETION_SYSTEMSCE-T4SS-TRB_SECRETION_SYSTEM,PGPT0025410-trbC-K20528NANA
D1-29_018921419hypothetical proteinATGCCAGTTCAATGTGACCTCAATGGCTGGTGGCCGCCCGGATGCGGACTCGTCTCGCAGGCCAACGATGGTGTTCAGGGCGCTATCACCTCCCTCTTCGCGAACATTCTTCAGAACATTGCGTCATGGATGTGGGCCTTCATCACAGGTGCTTTCAGTGCGTCGGAGATCGACGATTCGCAGTGGACGTCTATCCGGGGCCTGACTAACTGGTGGGTCATTGTGATGATGACCCCTTTGGTCGTCGCGATGATCCTCCAACTACTTTCGGGTCTGATTAGCCAACAACCGCGGCGTATAGTCAGGGCGTTGGTTGGTGGTGCAGCTGCGATACCCATGGTGGCCAGCGCCGTTTACCTGGTTCGTCAGCTCACAAGGGTCAGTGACTCCGCGTCGACGGCGCTTCTCGACTCGATGGGAACGGATCCCTATGTCGTGTTCATGCGGCTCTTTGGATTCGAGCGAGCGCCTGCCGGCTCCGACAGAGAGTGGAATGTCATCTCATTCGCCCCTGGGACAGCTGGGGGCGCCGCAGGAGGGGTGATTGTCACTGCGATGGCCGTCATCGTCGTGTGGATATTGGCCTTCATTCTCATGTGCTCCATGATCTTCCGATCGTTCGCACTCATTGTGCTGGCCGCCGTCGCGCCAGTCGCCTTAATGCTCATGCCGTGGGAGAAAACGAAGACATGGGCAAGGCGGTGGTGTGAGATTGCCGTTGCCCTGTTGCTCGCGAAACCACTCGCCGCGACTGTGCTGGCAGTAGCAATCAAACTCTTTGCGAATTCGACGTCGTTCGCCGGACTCGCTGCCGGCACTGTCGGAATGGTGCTGGCTTGTGGCGCACCGCTGATGGCCCTGAGGCTCGTCAGCTTTGCAGGCGGCGAGTTAGCGGCAGCGGCGCAAACTGCCGGCGGCGGGCACGTCCTATCACGGAGCAGTAGTGTTGCCGCCCGGCAGATAAGCCGCCAGACAGGCGGCCGGCTTACCCTCGCCTCAATGATTGGGCGCTCGTCAATGACTCGGCCGATCCAATCGAGCCGGGCACAGTTCCCAACGCGAGCGCTGCCGGCCGGCATGTCGGTGCCAGTGTCTTCGAAGGTTCCGACGCCGTCGTTACGGTCTGGCGGACCCGCTCCCACTTTCGACGACGTGGGTCCAAGTTCCCGCACGCTCTCTGCCCAGTCCCGGGAGGCCCCTGGTTCCGGCCGTCAGTCCGCTGGTAGCCACGCCCGGTCCGCATCAAGATCACCCACAGCGGTGAGCCTAGGGAACGCGGCCCTTGATACCGAGCGGCCGCAGCCATCTCATGTTCCCGACCGCGGGAATCCGGTGCTGAACCTGCCGGCGACGCCACCGCCTCCAGTCCACCCCCAACCAAAAACCGTACCTCCATCAGGTGATAAATCCGATGTCTGAMPVQCDLNGWWPPGCGLVSQANDGVQGAITSLFANILQNIASWMWAFITGAFSASEIDDSQWTSIRGLTNWWVIVMMTPLVVAMILQLLSGLISQQPRRIVRALVGGAAAIPMVASAVYLVRQLTRVSDSASTALLDSMGTDPYVVFMRLFGFERAPAGSDREWNVISFAPGTAGGAAGGVIVTAMAVIVVWILAFILMCSMIFRSFALIVLAAVAPVALMLMPWEKTKTWARRWCEIAVALLLAKPLAATVLAVAIKLFANSTSFAGLAAGTVGMVLACGAPLMALRLVSFAGGELAAAAQTAGGGHVLSRSSSVAARQISRQTGGRLTLASMIGRSSMTRPIQSSRAQFPTRALPAGMSVPVSSKVPTPSLRSGGPAPTFDDVGPSSRTLSAQSREAPGSGRQSAGSHARSASRSPTAVSLGNAALDTERPQPSHVPDRGNPVLNLPATPPPPVHPQPKTVPPSGDKSDVNANANANANA
D1-29_018931512hypothetical proteinATGTCTGAAAGATCACGGACTCTCGAAGCAGTCAAGTTTCCCCGGTATGAACGTCGCGGTCTGTTCATGGGATTGAAGTGGTACCAATTGCTGCTGCTCGCGGCCGGCGTTTTTACTGGGAGTGTGGCCTCTGCCACCGGTGGACTTAGCGCCCTGTTCACCTCAGGACCCATGTGGCTGTCGCTGATGCTGCTCGGTCTCCTGCAGTATTCGCGGATCCCTTATCCGGTCTGGGCCACGCAGATCATCGTGTTTTTCTACCGCTCTGCAATCAGGCAGACCCTCTTCCTGGCTCGGCCTGAAAGCGCAGTTCTCGCTGGGCGGCTCGTACTTCCTGGCGGCCTCGGGAATCTCGAGTTCCGTCGTGCGGCTAATGGCGAGTGCTTCATTGTGGATCCCAAGGGCAGGGAAGCGATAGCGGTGCTGCGCTGCACCACAAGGTCCTTCGCCCTCCTCGACGCCGATGACAAGGCCTGGGCCGTACAGGCCTGGTCGCGCGTGCAGGCTGGAATGGCCCAGCGGTCAAGCATCGCGAGAATCGCAGTGCAGGACTACACCGTTCCCTACCCTTCAACGGCCCTCCGTGACTTCTACGACCGTAGGATGCCAGGAAAGTCCCGCCCCGCGAGTGGGCGGACGTGGGGTGAACGGGCGTATGAGGACCTGATGGCCGCCGCCGGTTCCACCATGAGCCACGACCTTTTGGTCGCAGTTGTGCTGGACACGGCAAAGGCCCGACGGCGGATCAAGGAGTCGGGTGGCGGCCTGGCCGGTGTCGAGCGTGTGCTCCGACTGGAAGTCGAGGCCATGAGCACCGCCTTGGGAACGCACAGCGTGAAGGTGGAGGAGTGGCTGCCTGAAGACGGCATCCTCGACGTCGTTCACTGCGCATTCGATCCAGCTGCAGTGGCAGCGCCGCGCAGTGACGCGAGGACAGAACTCCCGGCCGCCCTCGCAGATCGCCAACCCGACGTCGATCCCCAACCGCGGGCTGTGGCGGCGGGCCCCATGGCGGTCGAGGAACACTGGACGTATGTTCGCACCGACTCTGGTTTTCATCAGACGTTCTGGATCGCGGAGTGGCCGAGGCAAAAGGTACTCCCCGGATTCCTCCATCCGCTGATTTATGTGGGCGAGTTCCGCCACACCGTTACCCAAGTGATCCGAACCGTTCCCACGGTGGAGGCTTTGAGGGACATCCGTTCCGCCCAGGAGGCCCATGAAACTCGACGACGGATCAACACTCGCTTTGACAGGCCGCTCACCCGCGAGCAAAAAGCCGAGGAAGAAGAGGTGGCCCAAAGAGAGGAGGAGATCGTCGCCGGACACGGTGATGTCCGCCCCGCTGCTTACGTGACCATTTCGGCCGCCACGCTAGACGATCTTGCCCGCCACAGGCAGGAACTGGAATCAGCGGCTGCAGGAGCTTTCGTTGAGCTGCGCCTGCTGGCTGGACAGCAGTGGGCGGCCTACGTAGCTGGTGCACTTCCCTTTGGAAGAGGATTGCGATGAMSERSRTLEAVKFPRYERRGLFMGLKWYQLLLLAAGVFTGSVASATGGLSALFTSGPMWLSLMLLGLLQYSRIPYPVWATQIIVFFYRSAIRQTLFLARPESAVLAGRLVLPGGLGNLEFRRAANGECFIVDPKGREAIAVLRCTTRSFALLDADDKAWAVQAWSRVQAGMAQRSSIARIAVQDYTVPYPSTALRDFYDRRMPGKSRPASGRTWGERAYEDLMAAAGSTMSHDLLVAVVLDTAKARRRIKESGGGLAGVERVLRLEVEAMSTALGTHSVKVEEWLPEDGILDVVHCAFDPAAVAAPRSDARTELPAALADRQPDVDPQPRAVAAGPMAVEEHWTYVRTDSGFHQTFWIAEWPRQKVLPGFLHPLIYVGEFRHTVTQVIRTVPTVEALRDIRSAQEAHETRRRINTRFDRPLTREQKAEEEEVAQREEEIVAGHGDVRPAAYVTISAATLDDLARHRQELESAAAGAFVELRLLAGQQWAAYVAGALPFGRGLRNANANANANA
D1-29_018941215hypothetical proteinATGACGTTTGCGGCCGCTTACCCCTTCATCACTGAATCAGGGCTGGGCCACGAAGGCACGTATATCGGCACTGACGTCTTCGGCTCCGGCGCATTCTCTTATGATCCGTGGATTCTCTATGACAAGGGCGTGATCAGTGGCCCCTCGATTGTTGTCATTGGGACTGTGGGCACAGGTAAATCCATGTGCGGAAAGTCGCTCGTGGCCCGATCGATCACGCTAGGTCGTAAGGCTGCTGTCGCATCTGACCCCAAAGGCGAGTGGGTCGCCGTCGCCAAAGCCGTTGGCGGCAAAGTTATCTCGGTGGGACCAGGACGCTCCGCACGGGTCAACCCTCTTGATGCCGGACCCAGACCTAGCGCCCTGAATGAAAGTCAGTGGCAGGCTGTGGTGCGTCAACGGCGCCGGCATCTGCTGGTTGCCTTAGTTTCCCTGATGCGGCAGGGCACGCCGCTGCGACCAGTTGAGCACACCGCCCTGGACATGGCGCTGATGGAGACTGTCGCCCAGAATTCGAATCCCACGCTGCCCATGGTCCTGGACCACCTCTTGAACCCGTCTAAGGAGACGATAGGGCTTGTCGGCAAAGACGGCGGCCTGGCTGTCAGCCACTCATTACGGCGCACGGTGTCGGGCGACTTGGAGGGCATGTTTGACGCTCCCTCGACCGTAGCCTTCGATGCAGACGCCCCAATGATGGTGATGGATACGTCTGCCCTGATAGGTGCTTCCGAACAGGCGCTATCCCTCGCAGCGGCGTGCGGCGCTACTTGGCTGGAGGCGGCGATCACCAACCCCGACGGCGGCAAGCGGCTCGTGGTCTACGACGAAGGTTGGCGAATGCTGGCCGACCCTTACATGCTGGCCAAAATGAGCGAGCAATGGCGACTCGCACGCACTTACGGGATCGCGAACCTGCTCATTATGCACAAGGTGGCTGACCTCAACGAGATTGGCGACAGCACCAGCGGTCACCGGCAAAAGGCCCTTGGCCTGCTTACCGAGGCAGACACCCGGATCATCTACCGGCAAAAACATGACGCCATGCGCCTGACCAAAGAAGCGCTGGGACTAACCGAGGCTGAATGCGAGCACGTGGAGAACCTCCCTAAGGGCGTTGGACTTTGGAAGGTCGGTAACCGTTCCTTCATCGTCGCGAACAGGGTCACCACTGACGAGCTGGAGGTCTTCGGCACTGACGATCGGATGATTTGAMTFAAAYPFITESGLGHEGTYIGTDVFGSGAFSYDPWILYDKGVISGPSIVVIGTVGTGKSMCGKSLVARSITLGRKAAVASDPKGEWVAVAKAVGGKVISVGPGRSARVNPLDAGPRPSALNESQWQAVVRQRRRHLLVALVSLMRQGTPLRPVEHTALDMALMETVAQNSNPTLPMVLDHLLNPSKETIGLVGKDGGLAVSHSLRRTVSGDLEGMFDAPSTVAFDADAPMMVMDTSALIGASEQALSLAAACGATWLEAAITNPDGGKRLVVYDEGWRMLADPYMLAKMSEQWRLARTYGIANLLIMHKVADLNEIGDSTSGHRQKALGLLTEADTRIIYRQKHDAMRLTKEALGLTEAECEHVENLPKGVGLWKVGNRSFIVANRVTTDELEVFGTDDRMINANANANANA
D1-29_018951782hypothetical proteinTTGGTGACCGCCGGGCTCGTGACGATGGCTGGCTACTTTTGCCTGTGCTTTCTCGTTCAGGCGTCAGCCACCATCGTGGTGAGTTGGCGCTGCGGCGCCGGGAAGCCTTCGCCCTTCAGTCCGGCAGCCGCCGTCGGGCTTGTTATGGACCGGATTGATTGGGTGTTGCTGGAAGCACCCACCTGCAGTATCGCCAGCGGCGATGTGTGGTGGCTGGTCGGCCCAGTTCTCGTCCTCCTCGGTGCGCTCGCGGTCGGTTGCATTCTGGGCTGGCGAAGATGGAAGCAATCCGGCGCATGGCTTCGTCAGGACATCTTGAAGCGAGACGGAATCGCCGGACGTGCCGAGATCCTTCACGATTTCGGTGCCAGAGCCGTCAGAAGACGGGGTAAGTTCACCCGGCCAGGACTCAGCAAACCCAAAATTGAAGACGTGTCATGGACGCTTGGTCGATCACATGGAGTCACCGTCCACGTCTCGACTGAAGAATCCATGGTGATTCAAGGCGCTCCGCGTTCAGGTAAGGGTCTATATGTGGTCATCAACGCCATACTCGACGCTCCGGGTGCCGTAGTAACGACGTCCACTCGTGCTGACAACCTGGTGGTGACCATGACGGCGCGAGCCAGCGGAGGAAGACCCGTTACGGTGTTCGACCCGCAGGGAATGTCTGGGCTGCCTTCCACACTCCGGTGGTCGCCGGTGCGCGGATGCGAGGATCCCGACATTGCTACCCGCCGGGCACTGGTCATCACGGCGGACACCGAAATGAAGGGTGAGAACGCGGCGTGGCAAAAGCGCTCGCTGATCGTTCTGCAATGTCTGCTGCACGCTGCAGCCCTGTCTGGGGAGGGCGTACGTGCGTTCCGCCGGTGGTCCTCGAGCCCAGTGTTGGCTCGGGAAGCCTTGGAAGTGCTGAGTAGTCCTGGGGCAGCGGTGGGATGGCAGGCCGACCTAATGGGGATCCTCGAGGACGACCCCAGGAACACGTCCAATTCGTGGATCGGTGTATCGGCTGCCGTGGCGCCGCTCTCATCGCCGAAGGTGCTGGCTGCTTTGGATCCCCACGAAGCGTCCGAGGAGTTCGATCCCAAGGCGTTTATCCGTGAGCGCGGCACCCTCTATTTGATCGGCACCCGGGCTGGAGCCGCCGCGGCGGGTCCGTACCTTTCCGCACTAATCGACGACATCGACAATGCCGCCCGTGAGATGGCCTTCGTGTCGCCAGGCGGCCGGCTTGATCCACCCCTGTCGCTCGTCCTCGACGAGATCGCCAATCTGGCCCCCTGGCCTGGCTTGCCTGTCGCCCTTTCCGACGGAGGCGGTATAGGAATCTCCACGCTGGTTGTGCTGCAGTCGCTTTCGCAGGCGCGTACCGGCTGGTCGATTGAGGAGGCAGCCACCATTTGGGACTCGGCCATCATCAAGGTGATTTTCGGAGGAGGTTCCGACGAACGTGACCTTCGTTCCATGGCCGGCCTGCTGGGGGAGAGAAGCCTCATCTTGAATACCCGTTCCTGGTCTTCTCAAGGCCGGCAGGACGGCGAGCAGATCAGGGAGAGTCCTGTCATTCGGCTCGATGAGATCCGTCGGCTGCCTATCGGCACGGCACTGATGCTGGGCAGGCGTACACGGCCGATACTCCTGGACCTCAGGGGGTGGCACAAGCGCAAGGACGCAGCCGAGCTCGGACGCTCAAAGATGGAAGTCGAACGAACGTTGGCAGATGGCCACAGGCTGCGCCAGCAGGCAACTGAGGGGACTGATGATGAGCAGTTATGAMVTAGLVTMAGYFCLCFLVQASATIVVSWRCGAGKPSPFSPAAAVGLVMDRIDWVLLEAPTCSIASGDVWWLVGPVLVLLGALAVGCILGWRRWKQSGAWLRQDILKRDGIAGRAEILHDFGARAVRRRGKFTRPGLSKPKIEDVSWTLGRSHGVTVHVSTEESMVIQGAPRSGKGLYVVINAILDAPGAVVTTSTRADNLVVTMTARASGGRPVTVFDPQGMSGLPSTLRWSPVRGCEDPDIATRRALVITADTEMKGENAAWQKRSLIVLQCLLHAAALSGEGVRAFRRWSSSPVLAREALEVLSSPGAAVGWQADLMGILEDDPRNTSNSWIGVSAAVAPLSSPKVLAALDPHEASEEFDPKAFIRERGTLYLIGTRAGAAAAGPYLSALIDDIDNAAREMAFVSPGGRLDPPLSLVLDEIANLAPWPGLPVALSDGGGIGISTLVVLQSLSQARTGWSIEEAATIWDSAIIKVIFGGGSDERDLRSMAGLLGERSLILNTRSWSSQGRQDGEQIRESPVIRLDEIRRLPIGTALMLGRRTRPILLDLRGWHKRKDAAELGRSKMEVERTLADGHRLRQQATEGTDDEQLPGPT0029925_1480DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_IV_SECRETION_SYSTEMSCE-T4SS-CONJUGAL_DNA-PROTEIN_TRANSFER,PGPT0029925-virD4|lvhD4-K03205NANA
D1-29_01896510hypothetical proteinATGAGCAGTTATGAGGATGCCGAACGCTTTGAGATCCCATCAGCTGGAGGGGACGACGACGAGCTGACCGCGCAACTGTTCCGCTCGGCTTTCCGTCCTCAGGGCGGAGGGTCTGGCGCGACATACCGATGGCGGGACATGGACGCCCAGCAGTCTGAAAGCGCCTGGCGTGCTTTGGCAGTGTGGGTGAGGTGGTTCGTCGCCACGTACCAGCTCACGACGTCGGTGGTTCCCGATTGCTGGTGGCGTCACCCTGAGATTGTGGCTGAGCTGTATGCCCTCCAGAGGGCTGAGCTCGCCTCTTACACAGCAGACGACTCCGGGTTCGGGCCGCTGGCCCTCCACGAGCGGCTGCCTCACGCCGTCGAGCGTCTCAGGACGCACTGCCGGGCGGCTGGTTGCGTTGGCCTTCAGGCGCACAAAGAGCCTTCTCGACGGATGCTCTCGACGAATGATGCTGGCTTTGTGGAGTGGCAGGCGGAACCGCATCAACTCGGGGCTGATTTCTGAMSSYEDAERFEIPSAGGDDDELTAQLFRSAFRPQGGGSGATYRWRDMDAQQSESAWRALAVWVRWFVATYQLTTSVVPDCWWRHPEIVAELYALQRAELASYTADDSGFGPLALHERLPHAVERLRTHCRAAGCVGLQAHKEPSRRMLSTNDAGFVEWQAEPHQLGADFNANANANANA
D1-29_018971308hypothetical proteinATGATGCTGGCTTTGTGGAGTGGCAGGCGGAACCGCATCAACTCGGGGCTGATTTCTGAAGTCATGCTGTTGGTGCACCTCTTCGACATGAAAAGGTATCCGCCGGTTTGGCGGAGCTTAGAAGCGTGGAAGGTGGCTGTCGTGGCTCCGATGTCTGAGGACGTGCTTGGCTCGTTTCTGCTCGGTTCTTCCCCTCGGCTGGAGGAACTTGGCAAGACGCGGATGACCCCCGAGGAGCGTATCGCTGCACTAACAGAAGGGCTTCACGCACACCTTGAGCAAGCTGTGGAGTCCCCGTCCCAGTGGCAGGTGCTCTTGGACGCTTCGGCAACTCTGTGGCGGTACTCGGGCGGGAACGTTGCCTTGCTCATGATGCAGATGGCCCAGCGTGGTACGGAGGAGCCCTCTCTGGTGGCCGGCTACAAGGAGTGGGAACGCCACGGCCGGAGGGTCTTGAAGGGGGAGCACGCCTTGTGGGTGATTGCGCCTCGCACAACTCGCGTCCAAGAGGTGGTCATGCCCGACGGCGCCCGGCAGCGTATTGCAGTAGGCGAGAGTTTGCCGCCGGGCGGTGTCGATGGTGGGAAGAAGACAATCATCACCGGGTGGCGTGGGCAGGCGGTTTTTGATGTCTCACAAACGCAGGGAAGGCCGCTCCTGGTGCCCCGCGGAGGAGCAGAGAGTGCAGCTGGTGCTCCGGAGTTGTGGGAGTCATTGGCTAACGTGGCTCGTCGACATGGTTTCGAGTTGCATCTCTCTGACGCCCAGCACGGTCTCGCGAGCGGATTCACGGACTTCGCGCAGCACCGCATCGAGGTGGGAACGTGGATGAACGCCGAAGACAGGGTCGCAGTACTGGCACACGAGCTAGGGCATGTGATGCTTCACGGCCCTGAGGACGAGACGGGCAAACTGTACGGCAGCAGCGCGAACCACCGTGGCCTTGCTGAGATCGAGGCCGAATCCGTGGCCTACACGATTCTGCGGGCCCACGGCATTGACCGCGGGGACCAATCGGCGCTCTACCTGTCGGGATGGGCAGAAACCGTGATTCAAGTTCAGCGCGCCGCATTCGAGCAGGACATGTACAGCATGCACCCTACGTCCCGGGTGGACGTAGCCAAGTCGGTCCTCGCCCGGGTTACCGCCGCGACCAAGGGGATCCTCGAACTGACGCATCCGCCGGGGTTCGGTGGGAAGATTGTCGGCCCTGATTTGAGGCCGCAGGTGGCTCCGGCGACGACTTATGTCGGTGCCTACCCTTCGGCCAAGCCCGATGGACCTGTGATGGCCGGCCCGCAGTCCTAAMMLALWSGRRNRINSGLISEVMLLVHLFDMKRYPPVWRSLEAWKVAVVAPMSEDVLGSFLLGSSPRLEELGKTRMTPEERIAALTEGLHAHLEQAVESPSQWQVLLDASATLWRYSGGNVALLMMQMAQRGTEEPSLVAGYKEWERHGRRVLKGEHALWVIAPRTTRVQEVVMPDGARQRIAVGESLPPGGVDGGKKTIITGWRGQAVFDVSQTQGRPLLVPRGGAESAAGAPELWESLANVARRHGFELHLSDAQHGLASGFTDFAQHRIEVGTWMNAEDRVAVLAHELGHVMLHGPEDETGKLYGSSANHRGLAEIEAESVAYTILRAHGIDRGDQSALYLSGWAETVIQVQRAAFEQDMYSMHPTSRVDVAKSVLARVTAATKGILELTHPPGFGGKIVGPDLRPQVAPATTYVGAYPSAKPDGPVMAGPQSNANANANANA
D1-29_01898513Single-stranded DNA-binding proteinATGAACACCAAGATCCCAGTAAGCATCACGGGCAACCTCGTCGCCGATCCTGAGCTAACTATCGGAGAAAGCGGCGTCGCCCATGCCAAGCTGCGCGTCGCCGTAAACCAGCGCGTCCAGGGAGCAGACGGCACCTGGCAAGACGGCGAACCCGTCTTCCATAACGTTTCGGCGTTCCGCGCGCTCGCAGAGAACGTTGCCAACTCTTTGAAGAAGGGCGACCCTGTCAACGTGGCGGGCGAGCTTGAATTCCGCGCCTACGAAAAAGACGGAGAACGACGCGAAGCGCGCCGGATCATTGCGGATACCATCGGGCCGGACCTTCGCTTCGGCACCGCCGTTTACCAGCGTTCATCACGCACGGCCGATGCCCGACCGGATGCAGAAGTTCACGCTGGCCCCCAAGCGTCAGTTGCTGGCGTGTCTTCTGCCCCCGCCTACAGCGTTGCGACAAAGGGCCCGGTTGTGATGCCCCCTTTTGGCCCGGCAACGGGGAATGAGATGAGCTGGTGAMNTKIPVSITGNLVADPELTIGESGVAHAKLRVAVNQRVQGADGTWQDGEPVFHNVSAFRALAENVANSLKKGDPVNVAGELEFRAYEKDGERREARRIIADTIGPDLRFGTAVYQRSSRTADARPDAEVHAGPQASVAGVSSAPAYSVATKGPVVMPPFGPATGNEMSWNANANANANA
D1-29_018994155hypothetical proteinATGACATCCCAAGCCCTCGGCCCCACCGCCGCCGCCACCCCTCTGGCCGAAATCGGCGTCGACATGTCTAAGCTCCCCACCCCGGGGGTAATTGTGTTCCTCGGCCGAAGTTTCCCCCGCATCAACTCCTCCGCAGGGAAAACCAGAACGGAACTCATCCACGTCCGGCAGCACGAACCTCTCGGCTACACCGTCACCCTCACCCGGCCGCCTAACACCAAAATGAACAGCAACACCTGGCGATCCATCCCCGACGCCTCAACATGCGCCCATCTAACGCACGTCATCTCACTTCGGACTCGACGCGACAGACACCCCAAGGGGTCCTCGGCAATGCTGCTGGGTGTTTCGGACGCTGGCCACGGATCCGGTCTGTCAGCTAGGTCGCCACCTTTGGGATCTCGTTCAGGAGGACGGGATAGGTTATGTTGTACGATCCGAGGACTAACAGCGTTGCCCTACCCGAGCCATTTCATTAGTGAACGGACCTCAATGACGAACCGCCCTCACGCTGCGAATTTCAGACCTTTCGTGTTCAAAGATGCTGTTGAGTTACTGGACGGGAAGTCATCCCAGATAATCGATGTGAGTGACCGCGTGGCGACGGCGGCGATCTTGACCGCAGGAGTTGCGGGTGCATCGGGTGCTTTTAGTCTTCTTGGGCCAAAGAATGCGCTAGTCAAGGCCTGCGAGCAGATTCAGGGACGCATCCCAAATGAAGTTTCTGGAAGCAGCGGAATCGATCGCACCCGCCTTCTCGTTGCGGCACATTCCATATTGGTTATCACGAGTTTCTTCGACGCCGCTTCTCTGATACAGGTCCGCATCCCGGATGCAGATGTGAAACTTACGGGCAAGGAAGAACTTCAAGTAGCTCTGCGGGACAAGGCCGGGGCAAAGTTGAACAATTTGGTCGATTTCCTGATGACCTCTGAAATTCCATATCCGAAGCCCGAACTGGCACCGGGTCAACTTCACGGCCATCTGGGGGATTTTTACGACAACTTGTCGGCCAGCCTCGCTAATTACTGCAAGGGCCTCCGGTTCTGGGACAGCCTGGACGACCGCATGCGCCGGGCGGTGGAGCGTTACTTCGAAGAGGACGTTCCTGGGCTGGCCTTAGTCGGCTACCAGGACTCTCTAAGGAAACTTGCATCCCAAGTCCACGAGTTTGAGATTTGGCTAAATCAACTTGCCGCGCAAGGAATTATCGGTTCCATTCGTGATCAGGGCGCGGTCGCATCGGAGAAACTTGACCTGCTACTAGCCGGACAACGTCAGGCTTCACAGCAGTTTGATGACCTTCAGAGCTTCCTTAGTCGGGTGGCCGCTGACCTCCCTGTCCCTTCAACAAGGACCTCTGACCTTGTCCGCAGAATTTACTCAGTAACCCAACTTTCACTTATACCTCCTGACGTTTCTCGGCTGAAGGAAGGGTCAGGTGCATCCATTCCTTCGTTATCAGAGCTGTATATAGAGCCACCTTTCAAGGTCATAACTGGCCGGAGCCAGGCAAACGTAAGCAAAGAGGAATGGTGGAGAACCGTCGAACCTCGACACAACATTGATGACTTCTTCAGCGCATACTTGACGACTTCGCCAGCCGCATTTACCAGTCCGCTTTTAGTACTTGGTCATCCCGGCTCGGGTAAGTCTTCCTTGACACGAGTTTTGGCTGCCCGGCTACCCGAGACAATGTATGTCCCAATCCGAGTGGAGCTGAGGAGAGTTACGCCATCGCATGGGATCGAGGTGCAGATCGAGGAGGGCCTATCTTCGCTTCTGGGCCGAACGACGACATGGAGTGAATTCAGGCAGGCTACCGACCTGACCCCTGTCATCTTTCTCGACGGGCTTGATGAATTGATACAGGCGAGCGAAGAAAGGCAAGCAGACTACCTCGAACAGGTTGAGCTTTTTCAGCAACGCGAGCTTGCATATGGTGGGGCTTACGTGATTGTTACCAGTAGGACCGTCGTAGCAGATCAGACAAGAATTCCTCCAAATGCAATTGTGCTGAAGATTGATGACTTCAGTTCTCCCGAAATATCAGCATTCATAGACACCTGGAATTATCTCAACCGTAAATACTTCGAAGAAGCCCGCTTACGGCCGCTTCCAAAAGAACTGCCCCGAGAGGTCGTTCAGCTAGCCGGACAGCCGCTACTGCTCTTGTTGCTCGCTCTACTTGACGCGGACAGCAACGCCTTGCAGAGCGATGTCGGTACAAGGACAAAAGCATCAACGTACCAGCAAATACTCACAACTTTCATACGTCGAGAAGTACTAAAGCATCGGCCGCAAATGGCCGACAATGAAACGCGCCAGGCGATTCAATCGGAGCTACTCAAGCTGTCATACATAGCACTCGGCATGTTCAACAGAGGTGTGCAAATGGTAAACACGAGGCAGGTGGCAGAAGACCTGACCGCACTATCTGCGGACTCTGTTCATGCTGAAGGCATCGAGAGTGTTCACAAACTGTTAGGCAGGTTTTTCTTCGTTCACCAAGCGCATTCGAATTCGTCGGAAGGCCTGCAAAACGCCTATGAGTTCCTGCATTCGACCTTTGGCGAGTATCTGGTGGCTCATCTAGCGCACGAAGTGCTCAAAGAGGTACACGATGACGTGAACCGTTTGTCACGCGCACGCTTTGCCGGTGCCCGTAATGCTGATCAATGGGCATCCACGCTCTTCGCCTTCCAACCTTTTAGTCAGAGACTGCAGGTCTTAGACTTTTTCGCGGAACTTTCAGCAGAGAGCCCGCCTCCTGGCGACATGTCTGACTTGTTGATCACGCTGGCAATTGAACGACTCGAGGCTGGAAGTAACCACATGTCACTTCAACGGCCATACAAACCTACGGACTTGACCCATTCAGCCATGCTCGCCACATACACTTGCAATCTGATCCTTCTGGCGTGCTGCATTCGTGGGGATGACAGCGCGGAATTGGTTGGGTCGCGGACATTGGTTCCGTCGGTCCAGAGATGGGACTCCCTCGTACACTTTTGGAAATCACAGTTGGACAGCTCCGCTTGGGGACAGCTTAGCCAAGTTCTATGGGCACGATCGAGCAATGTACTGCCTGAGAATCAGGGGTCATCTCAAGACGTCGAAATCGGCTTGGAGTTTCTGACGCCTGCAAGCAGCAGTATCTACTACCTGACCCCCATCTCGGAGAGTGTGGATACCTCAGTAGAGACTCTTCAGATGGTACTGACGGAGACCTCCACCGTGGAACAATCGAGGCAACTGCTGTCAGGCGATACCTCCTATGCGCTTAAGGGGGTCGTGTCCGCAGAGTTCAGAGTTTACTTCCTTGCATTCCAAAAGGTTCATCTTGTGTTCGACGTCGATGACCTGTTGGCTCAGCTCCAGAATTCCAGTCTCAAAATCGTGCCTATAGACTTGGTGGATCCAGCGCTGAGGTTCCTGATAAACGAGCCAGCCTGCACGGCATGGCTGACCCGACATCTTCGAGTCATCCTCACGTCGCCACTTATTGACCAATTTCAGCTTTCCACGTTGGAGCAACTCGTCGACGCCGTGTTTGTCAACCCGCCTGAAGACCTAGGGCTGCTAGCCCAAGTTATTGATGCCATAGTCGATGCGGATATGGGCTTCAACACTTATCGGCTGATTGACTTGGCAGTTCCGCGAAGAATTCGAACTGAATTCCTGAAGGAAAATCCTGGCTTTGCACTGCGATTTGCTGTAGCCCTCGCCAGAGGTGGTTACCATAATGAGCCAGAAAATAGCAATTGGGCTCAACTCGTTACCCATGTTCCATTGATCAGTCTCTATGACGAGGATGTTGTTGCACCAATCCTTGCTATGACCCTGGCCAGAAAACATAATCTCCACAACTGGGGCACGAGTAGGGGCATAATTGAAGCAAGTGAATTGCCCGCGACAGTGCTACGACAAATGCCTATAGATGATGCGCTGTTCCTTATTCGGTGCGGGGCTCGAGACCCTAAGAACGGGATCGACAAAGTGCAACGGTTCAGCCAATCTTGGGGCGATGCGCATCGAGGCGTCCGGGAGAAGCGAATCCGAGACCTTGCTGACGCGATACGTCGGCTTTCCGAGCGTCCAATAATCAGCTTGCAAGCAGCGATCGATACCCTTACGCGAACGCCGGCCGTTTGAMTSQALGPTAAATPLAEIGVDMSKLPTPGVIVFLGRSFPRINSSAGKTRTELIHVRQHEPLGYTVTLTRPPNTKMNSNTWRSIPDASTCAHLTHVISLRTRRDRHPKGSSAMLLGVSDAGHGSGLSARSPPLGSRSGGRDRLCCTIRGLTALPYPSHFISERTSMTNRPHAANFRPFVFKDAVELLDGKSSQIIDVSDRVATAAILTAGVAGASGAFSLLGPKNALVKACEQIQGRIPNEVSGSSGIDRTRLLVAAHSILVITSFFDAASLIQVRIPDADVKLTGKEELQVALRDKAGAKLNNLVDFLMTSEIPYPKPELAPGQLHGHLGDFYDNLSASLANYCKGLRFWDSLDDRMRRAVERYFEEDVPGLALVGYQDSLRKLASQVHEFEIWLNQLAAQGIIGSIRDQGAVASEKLDLLLAGQRQASQQFDDLQSFLSRVAADLPVPSTRTSDLVRRIYSVTQLSLIPPDVSRLKEGSGASIPSLSELYIEPPFKVITGRSQANVSKEEWWRTVEPRHNIDDFFSAYLTTSPAAFTSPLLVLGHPGSGKSSLTRVLAARLPETMYVPIRVELRRVTPSHGIEVQIEEGLSSLLGRTTTWSEFRQATDLTPVIFLDGLDELIQASEERQADYLEQVELFQQRELAYGGAYVIVTSRTVVADQTRIPPNAIVLKIDDFSSPEISAFIDTWNYLNRKYFEEARLRPLPKELPREVVQLAGQPLLLLLLALLDADSNALQSDVGTRTKASTYQQILTTFIRREVLKHRPQMADNETRQAIQSELLKLSYIALGMFNRGVQMVNTRQVAEDLTALSADSVHAEGIESVHKLLGRFFFVHQAHSNSSEGLQNAYEFLHSTFGEYLVAHLAHEVLKEVHDDVNRLSRARFAGARNADQWASTLFAFQPFSQRLQVLDFFAELSAESPPPGDMSDLLITLAIERLEAGSNHMSLQRPYKPTDLTHSAMLATYTCNLILLACCIRGDDSAELVGSRTLVPSVQRWDSLVHFWKSQLDSSAWGQLSQVLWARSSNVLPENQGSSQDVEIGLEFLTPASSSIYYLTPISESVDTSVETLQMVLTETSTVEQSRQLLSGDTSYALKGVVSAEFRVYFLAFQKVHLVFDVDDLLAQLQNSSLKIVPIDLVDPALRFLINEPACTAWLTRHLRVILTSPLIDQFQLSTLEQLVDAVFVNPPEDLGLLAQVIDAIVDADMGFNTYRLIDLAVPRRIRTEFLKENPGFALRFAVALARGGYHNEPENSNWAQLVTHVPLISLYDEDVVAPILAMTLARKHNLHNWGTSRGIIEASELPATVLRQMPIDDALFLIRCGARDPKNGIDKVQRFSQSWGDAHRGVREKRIRDLADAIRRLSERPIISLQAAIDTLTRTPAVNANANANANA
D1-29_01900180hypothetical proteinATGCGGAACAAGATCACCGAACTTGAGGAGGACTTCACCCGCCGCTTTGACGAGGACCACCGCTTCCTGCTCGCCGGAATGCTGGCCCGGTCCGATGGGATCGACGCCGACATCGCCGCGCTCGACGAGCAAGTGGAGGCGTACGCGGCCATTTCGCGTGGCAGTGGAACGCCTGGATGAMRNKITELEEDFTRRFDEDHRFLLAGMLARSDGIDADIAALDEQVEAYAAISRGSGTPGPGPT0030635_513DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_019011038hypothetical proteinATGCCTCGCAGTCTCGAAAGCCTCGCATCTCTGCGTGAGGGCTATCGCCGATATGACGAATACGTCGACGTAGTATCGTGCTTCGAATGGATGTTTGCGGGGGATGCGAAGGACCTTCCCGAAACCGTAAAACACTTCGAGCGGTATCCAAAGTGCATGGTTTCAAATGCAGGAGCTTCACCGCGCACCGTCACACCGGATTTCGTCGTTGTATTCCATGACGATTCAGTCCTAGTCGGAGAAATTGCTTCGATAGCGAGACACGAGAACTCCGTCGACAAGCTTTGCAGCCAGCTGCTGGCCTACGAAAACATAGCCGAAGTGTCGCTAGCTGATGGTTCCGCGGTGGCCCCGAGCAGGATAGACGTCATGTGGCTCGTGCCAGTTGAGCTGTCTAACGACGCTTGCACACGAGTCTTGGATGACCGGCTCCAGAACCCTGATCATTCCTATAAACCTCGAAAAGCGCCTTGCATCGTGCAATACGCAAGGCTCACCCACAAGTATACTTTCGCCCGGATACCTCGTCCGGATAACGGTGTGCTCCACAGCGGACTGCCAAGCATCAGCATCGCGACTTACCTAGACCGAAATCTGAACATCAAGCCCGAATACTTCGTGCACATCAAGACTTCACGGGGATTCATGAATGATCCCGCCGAACCTCTCTACCTAGCCACATACATGTACGTCCGTGTTTGGCCCCTGATCTTCGGTCCGGGCACATCCGAAGAGCGCGTCTCCAGCCAGAGCGTTTCGCAAGAACTGCAACGAACCTATAGGTACGGCAGACACAAAGAAGTCGTTACTGCACTTGAACTCCTTGCCGAGGCCGGCTTGGCGTCCAGACAATCCAATGGAACTTGGCTTGTAAAACGCAAAGTGCTGGGCAGCAAAGGTGACCGGGAAGTGCACGCCAAGATCTTGGAGCTCGTCGAATCAACCCAAGAACGCGCAAACAAACCGTCCCGCCGATCGCCTCGACAGCAGCAGATCCCGGCCCAGCTCAGCCTTTTCGATACCAACAGTCTTCCCTAAMPRSLESLASLREGYRRYDEYVDVVSCFEWMFAGDAKDLPETVKHFERYPKCMVSNAGASPRTVTPDFVVVFHDDSVLVGEIASIARHENSVDKLCSQLLAYENIAEVSLADGSAVAPSRIDVMWLVPVELSNDACTRVLDDRLQNPDHSYKPRKAPCIVQYARLTHKYTFARIPRPDNGVLHSGLPSISIATYLDRNLNIKPEYFVHIKTSRGFMNDPAEPLYLATYMYVRVWPLIFGPGTSEERVSSQSVSQELQRTYRYGRHKEVVTALELLAEAGLASRQSNGTWLVKRKVLGSKGDREVHAKILELVESTQERANKPSRRSPRQQQIPAQLSLFDTNSLPNANANANANA
D1-29_019021116hypothetical proteinATGGCGAACCTGTCGTCCGGCGGCGCTGCCGATCATATTTCAAGTTCCTTCGACAGGAGACTGTGGGCCCTTGCACTTAATAAGGGTGTGCCTGAATCCCTCCTTCGCGCTCATGACGGCGTGGGTTTGGAGCGCGGCGAGCAGCTAGCTTTTGAGACCGTGATGTGTGACGGCGACCCAGTCGACATGCTCTTTGGGCCTGATTCCGGTTTCCCAAAAGTGACCAACGGGACAAGCAGTCTCATGAAGATCTTCGACGATGATGGAGACTTCGTTGTTGCCAGTTGGGCGACAGCACAAATTGGTGTCTTCCACATCAGCGGGTCAGTTCCCACAAGCGATCGCCGTTGGAGCCGCGTCAATCGAGCCATTTCTCGTGCACCGGAAGTTATGCGGTGCTTCCTCAACGAGGATAAGTTCCGTCAGCTTGCCAGAAAGCTGGATTCCATAGGTCGCCCGGAAGTAGTTCGCATGGCCGCCTGGCGGCAGTCAGATGCTTCATCGCTCAACAGGGGATGGCCAGCCAAATCCGAATCTCTGAGATACACACCTGACGATGTGTTCGACCTTGCGAGCATGGAAGGCGCATCCGTTCGTTCATTGACAGTCTCCATCGAGAACGAACTGCATTGTCATCTTCGGCGTACGAGCGGGGCTACTTTCTATTCGGGACAATTCCGCGCGTTTACGGCCAATATTCTTGACGCCTTCGCTGAGTACTCGGCTGAACGGCTTGAGCTCCTGTCGAATCGACAACGTGCCGTCAACGGGCCCCTCGGACTCCCGCTTACCATCAACTTGGCCGAGCAGGTCTTCTCCGATGCCGGGGACACGGAGCGCCTACGCCGCCTAATGGAAGATGGGCAGCACACCTCGGTGGCCGTCCTACATGACAATCCCTACCTTCATCTGATGGTCGCCGATCATGCTGACGGATCCACTTTCGACGTTGTGGTTACTTCACCCGATGCGGTAGATATCTATCCCAGTTTCCGCTCGAGTGCGTCCTCCCTGGCCCGCCTTGTTCAGCGAATCGGAGAACACTTTTCCGCCGAAAGAATCGAAGAAGCAGCCCCGCGGGAGCGCGTTTCTCTCGATAACCTGGTGGGCGCATAAMANLSSGGAADHISSSFDRRLWALALNKGVPESLLRAHDGVGLERGEQLAFETVMCDGDPVDMLFGPDSGFPKVTNGTSSLMKIFDDDGDFVVASWATAQIGVFHISGSVPTSDRRWSRVNRAISRAPEVMRCFLNEDKFRQLARKLDSIGRPEVVRMAAWRQSDASSLNRGWPAKSESLRYTPDDVFDLASMEGASVRSLTVSIENELHCHLRRTSGATFYSGQFRAFTANILDAFAEYSAERLELLSNRQRAVNGPLGLPLTINLAEQVFSDAGDTERLRRLMEDGQHTSVAVLHDNPYLHLMVADHADGSTFDVVVTSPDAVDIYPSFRSSASSLARLVQRIGEHFSAERIEEAAPRERVSLDNLVGANANANANANA
D1-29_01903564hypothetical proteinATGACCTCGAACCCAGTCCTCAAGCCCAAGATTGCGACACCCGCGCTGATTTTGGCCACGGCGACGGTGTCGATTGCAGCTGGTTTCTTCTTGACAACCTTGACTGCCGGAGTATCCTCTGGCGGGATTCTCATGATTGTTGGCCTCGCAATACTCTTGGCGGTGGCCGCCTTGGGCGTCCTTTGGCTGACTCGTTTTCGCCGCCGCCGAGCTTGGGTGATGGCCGCCGAACGAAGGTGGCATCACTTCGAGGACGCAAGGCGGAATCATAGGACGACCACCGAAATCACGGTTCTCAGTGTCGACGCTCTGGAGCCGACTGGATCCTGGATCACTATCAACTGGAACCGTTTCGACCATGTTCAACCTGCATGGATCGAGGCTTTGCCAGACCCCATCTGGCCAGGATCCGTTCTGTTGATTTCGCCAGACCCCGCCCAAGTCCGGCCGGGTCTGCCATGGCCACAAACGTACTATATTAGCGGCCCGAACACATTTGCCTGGGCCCCGCAAGCAGAACCGATCAGGAAACCGCGGAAGTTCCCAGATCGGGCTCACCTTTAGMTSNPVLKPKIATPALILATATVSIAAGFFLTTLTAGVSSGGILMIVGLAILLAVAALGVLWLTRFRRRRAWVMAAERRWHHFEDARRNHRTTTEITVLSVDALEPTGSWITINWNRFDHVQPAWIEALPDPIWPGSVLLISPDPAQVRPGLPWPQTYYISGPNTFAWAPQAEPIRKPRKFPDRAHLNANANANANA
D1-29_019043576recD2ATP-dependent RecD-like DNA helicaseATGACCATGTCCATCGCCCGTCTCTCCGTTCAGTCGGGCCTGAAGTACCTCTTCAAAACGACGATGATGGACGACGTCACCGTCACTCCCCCGGACGCCACCAGCTATTACATGAAAGCGGGAACACCTCAGGGCAGATGGCTTGGCTCAGGCCTTAGCGGCATTGACCGCACTGCCGGAGATATCGTCACGGAGACCGATGCCAAGGCACTTTTCGACCACGCCGTCCATCCAGACACCGGAGCCCCGTTAGGTCGGCCACACGGCCAACCCACCCTCGTTCAGACCAGCCAAGGCCACACAACCAAGCGTCATGCCGTCGTCGGATTCGACCTTACGTTCAGCGTCCCGAAGTCAGTCTCGGTCCTCTGGGCCCTTAGCCCCCGCACCATGCAGGACCAGATCCTCCAAACGCACCATGAAGCCGTAACAGCCACCCTCCATTGGCTCGAGGAGAACGTCATCCACACACGAGCGGGGCGCAACGGCGTCGCCCGCATCGGCACGAATGGCGCCATCGCTGCTGCTTTCGACCACTGGGAGTCCCGGGCCGGAGACCCGCAGTTACACACCCACTTAGTCATAGCCAACCGCGTTCAGCGCATCACCGACGGCGCCTGGGTCACCTTGGACTCCCGGACCCTCTACAAAGCGGCCGTCGCTGCCAGCGAGCACTACAACGGACTCCTCTTCGATGCCCTGCACCGGAACCTCGCGACGGACGCCGAGATCCGGAAACCGGCAACCAACACACACAACCCAACCCAACAGCTCATCGGCGTCGACGACCAACTGATTCGCGAGTTCTCCAACCGATCCCGGCTCATCGACCTGGAAACCGACCGACTCGTCTCCCTCTGGACTGAGGAACATGGCAAACGTCCAAGCGCTACTACAACAGTGAAACTCAGGCAGCAGGCCACGCTCTCAACGCGAGCGCCTAAAGCTGAGTCAGTCGCTCCGCTTCGCGTGCTCTCTCGGCAGTGGCAGGCACGCGCAATCGCTAGGGGCTACGACCCTAGCCGCATTCTCCTCGAGACGGTCCGGCGCTCGCAAAGCTCCCCGTTCCGCAGCTGCGACTTCACCGTGAACTGGGTGGAAGCCGTTGCTTCCATTGCCAAGGACCGTGTGGCGGCCAAACGCTCCACCTGGAACCGGTGGAATCTGCTGGCCGAGGCAGAACGGGTCTGCGCCGCAGTCCGCTGCCAAGCGCCCGGGGACCGCAACAGCTTGATCGGTGCCATTGCTACCGCCGCCGAGAGGCAGTCCGTCCCACTCAATGAGTGCCGATACAGGGTCGATCCCGACGCGGCGCCTAAGCTGCGCCTCGGGAAGCAGAGCGTCTTTGATTTCCAAGGCGCACGACTTTACACCGACGCCACAACGCTCGCCGCTGAGGATGTCGTTATGGAAGCAAGGAACGACGACGGCGGCCCTGCCGTGCGTGCTACCGTCACCATGGAGTCGCTCGCCACCTACAGGCATCACGGCCGCTTTGAGCTATACGCGGACCAGCGCGGTGCCGCTGCCCAGGTTCTTCTAAGTGGCAACCGGCTCGACGCCGTCGTGGGGCCGGCCGGCACGGGTAAGACGACCACCCTTGGTGCGGTAAAGACGGCGTGGGAATCAGAGTTTGGGCCTGGAAGCGTTGTGGGACTGGCGCCGGCCGCGGCGAGCGCCGAGGTTCTCGGACGGGAGCTGACTATGGACACGGAGAACGTCGCCAAGTGGCTCTATGAGTCCGTGGGTCAAGGAGCCAGTTATCGAGCGTCGCGATTTTTCGAGATGGAGCGCCGCCTCGAGGCCGAGGCGAATCCCCTTAGCTTCCGACGAACGCGTCTGGCACAAGAAACAGCTCGGTTGGCCGCCGAACAGAACAGGTGGCGCTTTCATCCGAACCAGCTTGTCGTCGTCGATGAAGCCTCAATGGTGTCCACGATTCAGCTCTCCGCCTTGGTATCTCAGGCACGAGATGCGGGGGCCAAGATCCTCTTGGTAGGAGACCCTGCCCAGCTGGATGCCATCGACGCGGGCGGGGTCCTCGGGTGGCTGGACCGGCAAGGAAAGACGGCGAGGCTAAGTACGATTTGGCGGTTCGAGCAGGCGTGGGAACGGGAGGCGTCGCTAAAGCTCCGCTCAGGCGATTACGCTGCCATCGACGACTACGATCAGCACGAGCGTATCCGGCACGGCTCCTATGTCAACATGGTCGACCAGGCCTACGTGAACTGGCAATCCGATATCCAATCCGGAAACTCGTCCATCCTCATAGCGGCAGACAATGACACAGTCGGCATCCTCAACGAACGTGCCCAGGCCGATCTGGTGATCCAGGGGGTCGTGGACGCGGAGCAGACCGTCCTGCTCAGCGACGGGCTCCATGCCGGCCGCGGCGACACGATCATCGTCCGTCACAACGACCGCACCATCTGGGACAGTAACGGAGACTTCGTTCGCAACGGAACCATGTTCGATGTCGGACGCGTCGCCAAGCGCGACGGCTCCCTCGTAGCAGTTCGCAGGGACACAGGAGGCGTTGTTACCTTGCGCCGCGACTACGTTCAGTCCGCGGTTGAGTTGGGGTACGCCACAACCGCACACCGTTCCCAGGGCCTCACGGTGGACACCGGCCACACCGTCGTCACGCAGGGGCGGCTCACCCGTGAACTCCTGTATGTGAGCATGACCCGGGGGCGCATCGGTAATCACGCATACGTCAGCCAAAACGATCCGCTTGATCACGATCCTTTGGACCCGTCGGTGCAACCGTCGTGGCGCGAGATCTTGGGGGAGGTCCTCGCTGCAGAAGGTGCTGAGCGCACTGCCCATGAGGTCCGCGAGGCCGAACATTCCAAAGCCGATAGCTTGCAGCGGCTTAGCGCCGAGTACGACTACCTTGCCCAAATCGCAGCCGGTGAGGATCTGGCTGAGTTCCTTCAGTCCCGTGCGCCGGAGCGGACCAACGAGATCCAGCAATCTCCCTCGTGGGGTGCGACTGTTGCAGCCTGGCGCCGCTGCTCAGGAATCAGCCGCCCAAGCGCCCAGCGAGTTGTGCTCGAAACGTTGGAAACAAGCTTGTCGGCTAGAGATCTTGCGTCTGTCCTTCACTCCCGACTTCGGGGACTTCTCTCTCGCTTGCCTTCAGATGGATTCACAACGATTCCTGAGGTTCTTCACCCGAGCCGCTCCGATCTGAGAGACATGATTCGCCAAGTGGCAGAACGAATGCAGCGTCGGACAGACGATGTCGCGGAAGCCGCATTGCTGCAGGAGACCGAGTGGAAGCGAGACCTATTGCAGCGCCTCGGACGGGAGGCAGAGCCCGAAGAAGCTAGACGTCTTGTTCGCGAAGTCGCTATCTTCCGAGATAGGTGGGGGGTCGAAGACTCTCCGCTTGCGCTCGGCCCAGTGGCGCCGGACTACGAATCGGAACAGCAAGCGCAGCGGGCGAGCATCGAGCGTCAAATGTCTCAAGCCGCTCCCCTCGCTTCAGCCGGATCTCAGCAGCTGGGGGCATGGATGAAGGCGCCGAGTCAGCGCGAGGCAAGTCTTATCAATGTCGGATGGCAGCTCTAAMTMSIARLSVQSGLKYLFKTTMMDDVTVTPPDATSYYMKAGTPQGRWLGSGLSGIDRTAGDIVTETDAKALFDHAVHPDTGAPLGRPHGQPTLVQTSQGHTTKRHAVVGFDLTFSVPKSVSVLWALSPRTMQDQILQTHHEAVTATLHWLEENVIHTRAGRNGVARIGTNGAIAAAFDHWESRAGDPQLHTHLVIANRVQRITDGAWVTLDSRTLYKAAVAASEHYNGLLFDALHRNLATDAEIRKPATNTHNPTQQLIGVDDQLIREFSNRSRLIDLETDRLVSLWTEEHGKRPSATTTVKLRQQATLSTRAPKAESVAPLRVLSRQWQARAIARGYDPSRILLETVRRSQSSPFRSCDFTVNWVEAVASIAKDRVAAKRSTWNRWNLLAEAERVCAAVRCQAPGDRNSLIGAIATAAERQSVPLNECRYRVDPDAAPKLRLGKQSVFDFQGARLYTDATTLAAEDVVMEARNDDGGPAVRATVTMESLATYRHHGRFELYADQRGAAAQVLLSGNRLDAVVGPAGTGKTTTLGAVKTAWESEFGPGSVVGLAPAAASAEVLGRELTMDTENVAKWLYESVGQGASYRASRFFEMERRLEAEANPLSFRRTRLAQETARLAAEQNRWRFHPNQLVVVDEASMVSTIQLSALVSQARDAGAKILLVGDPAQLDAIDAGGVLGWLDRQGKTARLSTIWRFEQAWEREASLKLRSGDYAAIDDYDQHERIRHGSYVNMVDQAYVNWQSDIQSGNSSILIAADNDTVGILNERAQADLVIQGVVDAEQTVLLSDGLHAGRGDTIIVRHNDRTIWDSNGDFVRNGTMFDVGRVAKRDGSLVAVRRDTGGVVTLRRDYVQSAVELGYATTAHRSQGLTVDTGHTVVTQGRLTRELLYVSMTRGRIGNHAYVSQNDPLDHDPLDPSVQPSWREILGEVLAAEGAERTAHEVREAEHSKADSLQRLSAEYDYLAQIAAGEDLAEFLQSRAPERTNEIQQSPSWGATVAAWRRCSGISRPSAQRVVLETLETSLSARDLASVLHSRLRGLLSRLPSDGFTTIPEVLHPSRSDLRDMIRQVAERMQRRTDDVAEAALLQETEWKRDLLQRLGREAEPEEARRLVREVAIFRDRWGVEDSPLALGPVAPDYESEQQAQRASIERQMSQAAPLASAGSQQLGAWMKAPSQREASLINVGWQLNANANANANA
D1-29_019051035hypothetical proteinATGGAATCGCTCAGCATCAAAACCCCAGCCGATGTCCTCAGTTTCGTTGGACATACTCTCGGCTTCTGGCCCAAGGAGAGTCTGGTCTGCATCACATTGAATCAAAAGAATATGGTCGGGGCTACGCTGCGGGTGGATCTGCCCAAGAGCGAGGACGGGCTCTTCTCCTACGCCCAAACAGTCGCGGGCTACATCCAGAAGGACGCGAATGCCTCGACTGTCCTCTTCGCCGTCTACACCGAGAAGCCTTGGGAGATTGGTGAGGAGAAACCCCATGCTCACACCGTCGCGGCTCTGACTGGCGCCCTCGCCCAGCAAGGTATTTCCATTCGAGACGGACTGCTTGTGGGAAACGAGGCGTGCCTGCCCTACGACAGCGATCGCTTGAACGGCCCTTCAATCCCCCTGGCGGCAACGCAGTCCAGCGAAATCAATGCCGAGTTCGTGTACCGCGGGAGCCAAATCGAACCACAGGGGATCAGTTTACCTGCCTCAACCAAGGAGACCCTGACGACGGATGCAGTCCTGGACCGCATGGAGGAAATTCGACGACTTCCTGCTCAAGAAGCGTTAGACGAAGCCCGCGCACTCTGGGGGTCCATGCTGCAGGGGAAGACCTATCCCACGGACGAGGAGACCGTAAGTCTAATTGCGAGCTTCCAGTTCGCCGGTATCCGCGATCGGCTCATGGCAGACATCCCGGGAATAGACGAACCCATGGTCGAAGTCCTCCTGGCGCAGACCGAGGCGAAACCACAATGGTCAAGGGTTGAATGGGCGCAGCAACTGCTCCTACATGCCTACACGCACAGCAGCACCCAACACTCCGCAGCATTGTTGACCACAGTCGGGTACATCAACTGGTGGGAAGGCCGAGGCAGCAAGGCCCACCAATTCCTGCAGCTCGCACTCGAAGCAGACCCCGCCTATCGCCTGGCCCGGCTCAGTGACCATATGGTCGCACAGGGAATGCTCGCGCCCTGGAGCACAGACAGGAACAAGGCATACGGACCGAGGGGGCTCGAAGCTTCCTAAMESLSIKTPADVLSFVGHTLGFWPKESLVCITLNQKNMVGATLRVDLPKSEDGLFSYAQTVAGYIQKDANASTVLFAVYTEKPWEIGEEKPHAHTVAALTGALAQQGISIRDGLLVGNEACLPYDSDRLNGPSIPLAATQSSEINAEFVYRGSQIEPQGISLPASTKETLTTDAVLDRMEEIRRLPAQEALDEARALWGSMLQGKTYPTDEETVSLIASFQFAGIRDRLMADIPGIDEPMVEVLLAQTEAKPQWSRVEWAQQLLLHAYTHSSTQHSAALLTTVGYINWWEGRGSKAHQFLQLALEADPAYRLARLSDHMVAQGMLAPWSTDRNKAYGPRGLEASNANANANANA
D1-29_01906480hypothetical proteinATGGGATTCGAGTGGTCCTTATCGGTCATCCGGGACGCGAGATGGGGCGTTTCCTCCTCACCCCTGCCATGGCCATCGAGAATGAAGACCTGGCAAGAGGCCGCTAGCAGGCCCTCCAGGCGGGGACACGTCGTCTGGTTCAGGCTCGGAGACCTCTTCGTCCTAATCCCCGCGCACGGCCCCATGACAAAGTTACCCAGGAGGGCTCCAGGATTCTGCGCGCGCGAGCTCGTGATCATTGACGACATATGCCCCTGTCGGCGGCCCCAGACGCTACCGAGGGCCTATACCGTGTCCTGGACGCAGCTTACGAAAAACGTTGCGGGGCGATCAGATCCACTGCACCCGGCAGGCCTCGACGAACTCATGTCCAGAACCCTCGCCACCGCCACCGCTGACAGACTCTTTAGCCACGCCCACGTCTGTCAGACCAGTGGCGACTCCTTCTGCCTCACCCAGGCCCTCGCCGGAAGGGAATGAMGFEWSLSVIRDARWGVSSSPLPWPSRMKTWQEAASRPSRRGHVVWFRLGDLFVLIPAHGPMTKLPRRAPGFCARELVIIDDICPCRRPQTLPRAYTVSWTQLTKNVAGRSDPLHPAGLDELMSRTLATATADRLFSHAHVCQTSGDSFCLTQALAGRENANANANANA
D1-29_019072583hypothetical proteinATGGTCCAGTCGGACGCCGCGGGTACGAAGCTGTCCTCGCAGCTGCTCTCGGAGCTGAAGGTCCTGGCGCGCACACCGAACCTGCTCGTGGCCTGCAGTTATGACGGGACGCTCTCTGCCGCTGTGGGGACCTCCAGGGTGGCCCTGCCGTTGGGCAGCGCCTCGTTTGCCCTGCGTGCCCTGACCTCCTTGCCGAACACCCACGCGGCGGTGATCTCGGGCCGTTCTTTGCGGGATTTGGCTGCGGTGTCCCGGTTACCGGCCGAAGTCCATCTGGTGGGTTCTTATGGCGCGGAATTTGACATGAATTTCCTGTACGAGCAGCCAGCAACCACTCCACCGATCCTTCAGGAAGTCACTGACGCCCTGACCCAAGTAGTGAGCGCCGAAAAGGATTTCAGGATCGAGAGAATCCAGCGCAAACCCGCCGCGGTCTCAGTCCACCTTGTCGGGAAGCCGGCGGACCTCGCCGCCAGGGTGAGGGCCAAAGCCGAGCAGATCGCACGGGACCGCGGGATGTTTTTCATTGCGGACGGCACCGTCCTGGACCTGTCCCTGGTGGAGCCCGGCAAGGGCAAGGCACTCGAACGGCTGCGGTCCCAGCTGGGCATCAGCGCCGCGCTCTATGCCGGGGACGGTCCCAGCGACGAGGATGCCCTCGCCACGCTGCGGGGTCCTGACCTGGGCCTGCGCGTGGGAGACGGACCCGGGGACGGGCACCGGCTGCCGGATCCGGATGCCTTCGCCGTGGTCCTGGCGGTACTCTTTGAACTCCGCCGTGCCTGGCTGTTCGGCGAGGATGCCGTGGGCTTGGAGCGTCATTCGCTGTTGGGGAACGGTTCCACCACCGCTCTGGTAACCCCGGATGCCAAAATCTGCTGGATGACACACCCTTTGCCGGACTCCGGGTCCGTGTTCGCCCACATCCTCGGCGGAGATGCCGCAGGGCATTTCAGCGTTGAACCGGTCAAGGAATCCCCGGTGCTCGGGCAACGCTACGTCGACAACACCATGATCGTCGAGACCCGCTGGGCGGACATCACCGTCACCGACTACCTCGAACCCTCACCGGACGGGCTCACCAGCCTTGTCAGGGTGCTCACCGGCACGGGCACAGCCAGGATCACCTTCGCACCACGACCGGACTATACCAACGCCCCCTTCAATATGGAGGTCCGGAACCATGACCTCCACGTTCTCGGCACCGCTGACCGCATAATCCTGCACGCCCCCGGGGTCAGCTTCACGGTCACCACCGACAACCGTCACGCCACCGCCACAGCCGAGGCGGACCTGCGCCACGGCCCGGTCGTCCTGAACCTCCGCTGCGGAGAGACCGAAGCTTTTGTGCTCGACACCGCCGGAGAGCCCGTGCGGCGGGCCGAGGTCGCAGCAGCATCCCTGGCGTGGGTGCGCAAACTGAATCTCCCAACCATCAAACCCTCCCTCGTCAAACGCTCCGCACTGGCACTCCGGGCCATGGTGCACGAACCCACGGGCGGAGTCTTGGCAGCGCCCACCACCTCCCTGCCCGAAGGAATCGGCGGGATCCGCAATTGGGACTACCGCTACTGCTGGCTGCGGGACGGTTCCATGACCGTCAAAGCACTGGTCGATCTTGGATCCACCGCCGAAGCCGAGGGTTTCCTGCGCTGGCTCGGCCGGATTCTGGACCAGGCTCCAGGGCCTGAGTGGCTGCACCCGCTCTACTCAGTGACCGGGAACCCCATGGCCAGCGAAGCCACCATCGAAAGCCTGCCAGGATACGCAGGGTCACGCCCGGTGCGAATCGGCAACGCCGCAGACCACCAAGTGCAGCTGGACGTCTTCGGCCCCATCGCCGAGCTCGTCCACGCCCTGAGTAAACACCACGGCATCCTGACCGAATTCCAGTGGCAACTGCTCGAACAGATGGCCGCAGCCGTCCTGGCCCGCTGGCACGAACCTGACCACGGAATCTGGGAAGCCCGGCGCCCGCCCCGCCACCACGTCTACACAAAAGTGATGTGCTGGCTCACGCTGGACCGCGCCCTACGTACAGCCGAACGCCATGGTCGGGTCGCTGATCCGCTCTGGCGCCCCACGGCCGCGGCCATCCGCACCGAAGTCCTGCAGCAGGGCTGGGACGAGGAAACAGCGTCGTACACTGTGGCCTACGACAGCCCCGACGCGGACGCGGCAGTCCTGCACATCGGCCTCTCCGGCCTGCTCGACGTAACCGACCCCAGGTTCCTGGCCACCGTAAACGCTGTCGAGCGCGTTCTGCGCGTTGGACCCACAGTCTTCCGGTACCGCTACGACGACGGGCTGCCCGGACTCGAAGGAGGTTTCCACATCTGCACCACCTGGCTGATCGAGGCCTACCTCGCGATCGGCCGCACCGATGACGCCGAGGAACTCTTCGGGCAACTGGTCAACCTGGTCGGACCAACCGGGCTACTGTCCGAAGAATACGACCCCACAACCGAAACACACCTCGGTAACCACCCCCAGGCATACTCCCACCTAGGCCTGATCCGCTGCGCACAACTGCTGGACCGACAAAAGCCAAGAGAGCTGAACCGGCGCCCTGCACCCGCATAGMVQSDAAGTKLSSQLLSELKVLARTPNLLVACSYDGTLSAAVGTSRVALPLGSASFALRALTSLPNTHAAVISGRSLRDLAAVSRLPAEVHLVGSYGAEFDMNFLYEQPATTPPILQEVTDALTQVVSAEKDFRIERIQRKPAAVSVHLVGKPADLAARVRAKAEQIARDRGMFFIADGTVLDLSLVEPGKGKALERLRSQLGISAALYAGDGPSDEDALATLRGPDLGLRVGDGPGDGHRLPDPDAFAVVLAVLFELRRAWLFGEDAVGLERHSLLGNGSTTALVTPDAKICWMTHPLPDSGSVFAHILGGDAAGHFSVEPVKESPVLGQRYVDNTMIVETRWADITVTDYLEPSPDGLTSLVRVLTGTGTARITFAPRPDYTNAPFNMEVRNHDLHVLGTADRIILHAPGVSFTVTTDNRHATATAEADLRHGPVVLNLRCGETEAFVLDTAGEPVRRAEVAAASLAWVRKLNLPTIKPSLVKRSALALRAMVHEPTGGVLAAPTTSLPEGIGGIRNWDYRYCWLRDGSMTVKALVDLGSTAEAEGFLRWLGRILDQAPGPEWLHPLYSVTGNPMASEATIESLPGYAGSRPVRIGNAADHQVQLDVFGPIAELVHALSKHHGILTEFQWQLLEQMAAAVLARWHEPDHGIWEARRPPRHHVYTKVMCWLTLDRALRTAERHGRVADPLWRPTAAAIRTEVLQQGWDEETASYTVAYDSPDADAAVLHIGLSGLLDVTDPRFLATVNAVERVLRVGPTVFRYRYDDGLPGLEGGFHICTTWLIEAYLAIGRTDDAEELFGQLVNLVGPTGLLSEEYDPTTETHLGNHPQAYSHLGLIRCAQLLDRQKPRELNRRPAPAPGPT0014140_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087NANA
D1-29_01908804hypothetical proteinATGCCGAAGCCTGCCGCCGGGAAAGCAGGCGCCAGAAGCGTTTTCCTGTGGCAGTGCTCGGGGGACTCCTCGGAGCACATCAGGGCCAACGAGCCGGGCGACTTCCATGATTGTTTTTCCGAAGTCCTCGTTCTCTCCCAGGCCTCCCAGGTTCCGGCCCTTCCATTCGTACTGGATGCCCCACATCGGCAAAACGACTTCCAGCTCCGCGCGATTGTGCTGCGGCTTCCAGCGGCTGTACGGGCTCGCCCTGGCGTCTACGAGGACGGAGATGCGGGCTTTGTCCAGGATCTCCTTCAAACTGTCCAGGGAAGCGGTGCCGTGGCCGACGGTCCATATGATCGCGCTCATCGGCTCAGGTTAGCGGTAGCCGGAGGGTTCGGAGATGCGGAACATTCCGGCAAGGCGGGGGACGAGGAAGCATACGTCCCTGAGTTTGCGAAGCTCGATGGCCCTTTTGTCATCGAGGAGTTTCCTCCTGCACAGCATGGGAAGACCGGCTGGCAGCTTCGAGGACCTGGGTTCTCTAGTTCAGGGCGTGCGATAGTCAAAGAGAGTCTGGTCCTCACTGGAGAGGGCTCCCCAGTGGCCAACCTGATGCTGAGGCAGCCACTGTTTCATCCGCGGCGCTTGTCTATGCGGGTGCAGGGCGCCGGTTCAGCTCTCTTGGCTTTTGTCGGTCCAGCAGTTGTGCGCAGCGGATCAGGCCTAGGTGGGAGTATGCCTGGGGGTGGTTACCGAGGTGTGTTTCGGTTGTGGGGTCGTATTCTTCGGACAGTAGCCCGGTTGGTCCGACCAGGTTGAMPKPAAGKAGARSVFLWQCSGDSSEHIRANEPGDFHDCFSEVLVLSQASQVPALPFVLDAPHRQNDFQLRAIVLRLPAAVRARPGVYEDGDAGFVQDLLQTVQGSGAVADGPYDRAHRLRLAVAGGFGDAEHSGKAGDEEAYVPEFAKLDGPFVIEEFPPAQHGKTGWQLRGPGFSSSGRAIVKESLVLTGEGSPVANLMLRQPLFHPRRLSMRVQGAGSALLAFVGPAVVRSGSGLGGSMPGGGYRGVFRLWGRILRTVARLVRPGNANANANANA
D1-29_01909171hypothetical proteinATGGAAATCACCCGCGCCGCCGACATTTGCGAGCAGTTCAAGACCACCCGCAGACAGCTTGAGCAGCTCGCAGCGGAAGGCCGCATCGTGATGTCAACGGACGATCTCAACAGGTGGCGCAGCGCGAATGAGGCCATCACCGGACGGGGGACGCTGGCTCAGCAGTTCTGAMEITRAADICEQFKTTRRQLEQLAAEGRIVMSTDDLNRWRSANEAITGRGTLAQQFNANANANANA
D1-29_01910144hypothetical proteinATGTCAGCTTTGGGTGTGGCCCAACCTGACGAAGCCGCCCTACGTGAGCCGAGGGACCAGAGCGAGTTGGGGGAGGGAGACGGCAAGAAGTTGCTGTTCTTATATCGGGCGCTGGTTTTCCTCGTTAGGGGCTACGGCGCTTAGMSALGVAQPDEAALREPRDQSELGEGDGKKLLFLYRALVFLVRGYGANANANANANA
D1-29_01911315hypothetical proteinATGGCCAACCTCATGCTCTCCGTTATGGCGGCGTTCGCTGAATTCGAACGCTGCCTCATCAGGAAACGCCAAAGAGAAGGCATCGCCCTGGCCAAGCAACGCGGCGCCCACAGGGCGGAAAAATGGTTCGGTCAGAAAATTACCGCGACAGTGGGCGTATCCAAACTGGGCAGGACCTCAATGACCTACGTCTTTGAGGTCCACGGCCATCCGGTGGATGAAGTACCTGGAGGCCTCGCCGCGTACGGAAGCGTAACGGTGGCACACGTTCCACCCAAGTCTGCCAGAGCCCTGCCATGGCCCCCCGCCGTCTAAMANLMLSVMAAFAEFERCLIRKRQREGIALAKQRGAHRAEKWFGQKITATVGVSKLGRTSMTYVFEVHGHPVDEVPGGLAAYGSVTVAHVPPKSARALPWPPAVNANANANANA
D1-29_019121158cytR_4COG1609HTH-type transcriptional repressor CytRATGCGCCGACCTCACGAAGACCACAATCGTTGCTCTAGAAAGCACACGCGCGCGAACATATGCGCGTCCGTGTGCAACCGGTTGGAACATTGTCGTTATGATGAGGAAGTGAGTGAAGTCGAAAATGCTTCCGTAGCCACCAACAGGGTTAACAAACCCGCCCGCAGCGGGAAGCCCAGCCCAACGATTTACGACATCGCCAAGGTAGCCGGGGTCAATGCCTCAACGGTGTCGCGGGCGCTCAGTAAGCCGGGCCGTGTAAGTGTCAAGACTCGGAAGCTTGTTGAGGATGCGGCAGCCCAACTTCACTACCAGGTGAACCCCTTCGCGCGGGCGCTGCCAACCGGGCGAACCAGCACGCTTGGGTTGATTGTCGCTGATATCACCAACCCCATTTACTTGGACATCATCCGGGGTACCGAATCAACAGCCATCGGCCAGGACTATACACTGATGCTCGCTGAGTCTGCCGAAACCCCGGAGACCGAGTTCAGCGCGGCCCGGCGCATGATGCCCTCTGTCGACGGTCTCATCCTGGCCAGTCCATGTATGGACGACAGTCGAATTCAGGAACTCGCCGGGGAAAAACCTTTGGTTGTGATCAACCGCGAGGTCAATGATGTTACGTGCGTGGTCCCTGAGGTTAACAAAGGCATCGGTGAGGCCATCCGGAGTCTCGTTGTCAACGGTCACCGCAAAATCGCTTATCTGGCAGGACCTCCACAGTCCTGGATCTCCAAGCGTCACTGGCACGGAGTTCAAACCGCGTGTGACTGGTCGAAACTGGAGGCTGTTCGGCTGGAATCTGTCAGACCTACAGTGGACGGCGGCCGGCAGGTAGCCCGAGAAGTGGTTTCCAGCGGCGCCACCGCGGTGCTGACCTACAACGACATGCTGGCCATCGGACTGATGCAGGAGCTGCAGGCAGCGTCTGTAGTTGTTCCCGACGAGATCAGCATCGTGGGCTTCGACGACATTTTCGGGGCGGACTTCACAACTCCACCTCTTACAACCGTTCGGTCTCCAATGCTGACCTGCGGCAACGAAGCAGCAAGGCTTGTGCTCAACCTGCTCAACGGGGAAGTGCCCAGCACCCTAATACTCCATGTCGACACAGAACTTGTACTGCGCGGCTCCAGCGGAAGACTTCTGACTTAGMRRPHEDHNRCSRKHTRANICASVCNRLEHCRYDEEVSEVENASVATNRVNKPARSGKPSPTIYDIAKVAGVNASTVSRALSKPGRVSVKTRKLVEDAAAQLHYQVNPFARALPTGRTSTLGLIVADITNPIYLDIIRGTESTAIGQDYTLMLAESAETPETEFSAARRMMPSVDGLILASPCMDDSRIQELAGEKPLVVINREVNDVTCVVPEVNKGIGEAIRSLVVNGHRKIAYLAGPPQSWISKRHWHGVQTACDWSKLEAVRLESVRPTVDGGRQVAREVVSSGATAVLTYNDMLAIGLMQELQAASVVVPDEISIVGFDDIFGADFTTPPLTTVRSPMLTCGNEAARLVLNLLNGEVPSTLILHVDTELVLRGSSGRLLTPGPT0017992_2159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_01913516gntKCOG3265Thermoresistant gluconokinaseGTGAGCACACACCGCGTAGTCGTCATGGGCGTCTCCGGCTGCGGCAAGAGCACCGTCGGAGCGCTCCTGGCGCAGGAACTCGGTGCCGGATTCCTCGATGGGGACTCATTGCACCCCGGCGCCAACATCCAGAAGATGGCGGCCGGGATCCCGCTGGACGATAACGACCGCCGGCCTTGGCTCCAGGAAGTAGGACGGCGCCTCGCAGCTGAAGGCGACAATTCACTCGTCATTGCCTGCAGCGCCCTGAAGCGTTCCTACCGGGACTTGATCCGTTCCGGCGCTGCGGACGCGCGGTTCGTACACCTGCACGGCACCGCAAGTCTTCTTGCCGCCCGAATGGCAGCGCGCCCTGGGCACTTCATGCCGCCGTCGCTCCTGGCATCACAACTGGAGACACTGGAGCCACTCGGCGAGGGTGAGTCAGGGATTGTTCTCAACATCGGCGAATCCCCTGCTCATCTGGCGTCTGAAGCCGCGGCATGGCTCGAGTTCACAGAACGCGGCGTCCGCTGAMSTHRVVVMGVSGCGKSTVGALLAQELGAGFLDGDSLHPGANIQKMAAGIPLDDNDRRPWLQEVGRRLAAEGDNSLVIACSALKRSYRDLIRSGAADARFVHLHGTASLLAARMAARPGHFMPPSLLASQLETLEPLGEGESGIVLNIGESPAHLASEAAAWLEFTERGVRPGPT0018055_1716DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
D1-29_019141230rspA_1COG4948D-galactonate dehydratase family member RspAATGAAAATCATTGCCGCCGACGTCTTCGTGACAAGTCCCTCCCGGAACTTCGTGACCCTACGGATTACCACCGAGGACGGTGTGACCGGTATTGGTGACGCCACCCTGAACGGGCGTGAGCTCGCCGTCGCCGCCTACCTCAAGGAACACGTCGCGCAGCTGCTGATCGGCAAGGACCCGCACCGGATCGAGGACACCTGGCAGTTCCTGTACCGCTCCTCGTACTGGCGCCGCGGCCCGGTGACTATGGCGGCGATCGCCGCCGTCGACATGGCGCTGTGGGACATCAAGGGCAAAATCGCGGGCATGCCGGTGTACCAGCTTTTGGGCGGGGCGTCCCGGAACGGGTTGCGCGCGTACGGGCACGCCTCCGGGGCGGACCTTCCGGCTCTGTTCGATTCGGTCCGGGAGCACCTGGAACTCGGCTACAAATCCATTCGGATCCAGACCGCCGTCCCAGGCATCAAAGCCGTCTACGGTGTCGCGGCGCAGGCGCAGGCGTCGGGTGAGCGCTACGACTACGAACCCGCCGGCCGCGGTGCGTTCCCGGTGGAGGAGGACTGGGACACCCGCGCCTACCTGCGCCACCTGCCAACCGTGTTCGAGGCGGTCCGGAACGAGTTCGGTCCGGAACTGCCGCTGCTGCATGACGGTCACCACCGCATGACGCCCATCCAGGCCGCCAAGCTGGGCAAGGCGCTGGAACAGTACGACCTGTTCTGGCTCGAGGACTGCACCCCGGCCGAGAACCAGGAAGGACTCCGCCTGGTCCGCCAGCACACCACCACCCCGCTGGCCATCGGGGAAATCTTCAACACCGTGTTCGACTTCCAGACCCTGATCAAGGAACAGCTGATCGACTACGTCCGCGCGGCTTCCACCCACTTCGGCGGGATCTCGCCGCTGAAGAAGGTGATGGACTTCGCCGCGCAGTACCAGATCAAATCCGGCTTCCACGGCCCAACCGACATCTCCCCGGTGGGCTTTGCCGCGCAGCTGCATGTGGGCCTGGCCATCCACAACTACGGCATCCAGGAATACATGCCGCACTCGGACAAGACCAACGAGGTCTTCGAGCAGTCCATGACCTTCGTCGACGGTTACCTCCACCCAGGGGACAAGCCCGGCATCGGCGTCGAATTCAACGAAGAAGCCGCAGCAGCGTACCCCTACCAGCAGGCCTACCTGCCCTACAACCGCCTCATCGACGGAACGGTCCACGACTGGTGAMKIIAADVFVTSPSRNFVTLRITTEDGVTGIGDATLNGRELAVAAYLKEHVAQLLIGKDPHRIEDTWQFLYRSSYWRRGPVTMAAIAAVDMALWDIKGKIAGMPVYQLLGGASRNGLRAYGHASGADLPALFDSVREHLELGYKSIRIQTAVPGIKAVYGVAAQAQASGERYDYEPAGRGAFPVEEDWDTRAYLRHLPTVFEAVRNEFGPELPLLHDGHHRMTPIQAAKLGKALEQYDLFWLEDCTPAENQEGLRLVRQHTTTPLAIGEIFNTVFDFQTLIKEQLIDYVRAASTHFGGISPLKKVMDFAAQYQIKSGFHGPTDISPVGFAAQLHVGLAIHNYGIQEYMPHSDKTNEVFEQSMTFVDGYLHPGDKPGIGVEFNEEAAAAYPYQQAYLPYNRLIDGTVHDWPGPT0018285_251DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018285-rspA|manD-K08323NANA
D1-29_019151425mtlK_1COG0246Mannitol 2-dehydrogenaseATGACCGTCCGGAACGGCGTCCAGGCGTTGAACCGCACCAACGCTGAAGCCGGCCCCGCCGCTCCCGTGCAGATTGTGCACATCGGCCTGGGCGCCTTCCACCGCTCACACCAAGCCTGGTTTACCGAACAGGTTGACCCAGAACGCCAGTGGGGCATCGCGGCCTTCACCGGCCGCAGCCCGGAAGCGGCAGAGATCCTCGCCGCCCAGGACGGGCTCTACACCCTCGTCGAACGCGGCAACGAGGGCGATACGTTCAGCATCGTAGCCAGCATCAGTGCAGCATACGACGGCGCGGACCTCCCCCGGCTCACGACGGTACTGTCAGCACCTGGGACCGCACTGCTGACGATCACCGTCACTGAACCGGCCTACCATCTTGGCGCTGACGGGCTCCTCAACACCTCTTCCCCCGCCGTCACAGCCGATGCAGCAGCCCTGAAAAAGATGTGGGTACAGGACGGAAGCCTCAAGATACACCGTGACCATCCGCAGCTGGCCACAATGGGCGCGCGCGTCCTGCCGGGCCTGGATGCCAGGCGCCGGGCAGGTGCCGGCCCGATCACCGTCGTCCCCTGCGACAACCTCACGTCCAATGGTGCGGCGGCCGCACAGGCGATCCATGGCCTCGCCGCGCTGGTCTCTGCGGAGCTGGCCAACTGGATTGCCGGGAACGTGTCCTTCGTCAACACCTCGGTGGACCGTATCACTCCTCGTACCACCGGCACCGACATCGCTGCTGTTCGGGAGGCCACCGGGTTCGACGACGCCGCACCGGTCATCACCGAACCCTTCTCCAACTGGGTCCTCTGCGGTGAATTCCCGGCTGGGCGCCCGGCGTGGGAGAACGCCGGAGCGGTTTTCGTGGACGATATTGCTCCCTTTGAACAGCGCAAACTCTGGCTGCTCAACGGCGCTCATTCGCTCCTCGCCTACGCCGGCCAGCTCCGCGGCCTGCGCACAGTCGCGGATGCGGTGGCCGATCCCTCCTGCGCAGCCGAACTCGAAGTCTTCTGGAATGAAGCCGCCGCCCACCTGGACCAGCCCCAGCTCGACATTCCCGCCTACCGCGCCGCCCTGCTTAGCCGCTTCCGCAACCCGCGGATCGAGCACCTGCTCGAACAGATCGGTGCCGACGGCACTACAAAACTCCGCATGCGGGCTGTTCCGGTCCTCCTCGCCGAGCGCTCGGCAGGCCGGACCGGAGCTGGCGCTGCCCGCGTCATCGCTGCCTGGGCTGATTTCCTGGTCCAACAGCACGACCACGGCACGAAGCCAGTTGACGCTGAAGCCGACAATCTCCTCGGCATCCTGAAACTCTCCGGCAAGGACCTCATCCAGGCCCTCGTCACAACACTCAACACCGACCTCGGAGCTGATACCGCCGTCGTCGACCTCGTCCACCGCCTCCGGGGCAGCTGGTAAMTVRNGVQALNRTNAEAGPAAPVQIVHIGLGAFHRSHQAWFTEQVDPERQWGIAAFTGRSPEAAEILAAQDGLYTLVERGNEGDTFSIVASISAAYDGADLPRLTTVLSAPGTALLTITVTEPAYHLGADGLLNTSSPAVTADAAALKKMWVQDGSLKIHRDHPQLATMGARVLPGLDARRRAGAGPITVVPCDNLTSNGAAAAQAIHGLAALVSAELANWIAGNVSFVNTSVDRITPRTTGTDIAAVREATGFDDAAPVITEPFSNWVLCGEFPAGRPAWENAGAVFVDDIAPFEQRKLWLLNGAHSLLAYAGQLRGLRTVADAVADPSCAAELEVFWNEAAAHLDQPQLDIPAYRAALLSRFRNPRIEHLLEQIGADGTTKLRMRAVPVLLAERSAGRTGAGAARVIAAWADFLVQQHDHGTKPVDAEADNLLGILKLSGKDLIQALVTTLNTDLGADTAVVDLVHRLRGSWPGPT0018275_1155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040NANA
D1-29_019161416uxaC_1COG1904Uronate isomeraseATGCCCCCTTCACCTTCTTCCCTCGCAGCGGAGCCGGACCGGCTCCTGCCAGCTGAACCCGGAGTGCGTGCAATCGCCCGGGACCTGCTGGGCCTCGTTGACTCATTGCCCATCATCTCCCCACACGGCCACGTCGACGCCGCCGTGCTGGCCCAAGACACAGCCTTTCCGGATCCGGCAACGTTGCTGGTCACCCCGGACCACTACGTCGTCCGTCTCATCCACGCCAGCGGAGTCCCGCTCGACCGTCTCAACCAAGGCCCGATCGCCAACACCGACCCCCGCATCGTATGGCGCGAGTTCTGCAAGGCCTGGCCGCTGTTCGACGGCACCGCGTCGGGCTACTGGATCCGCTCTGAGCTCCAGCACGTCTTCAAGCTGCACGAGGAGATCTCCGAGGCTACGGCTGACAGCACGTTCGACACGCTTCAGTCCCGCCTGAGGGAACCCGCCTTCCGCCCGCGCCAGCTCTTCCACGATTTCAACATTGAGGTGCTCGCCACCACCGATGATCCGCTGGACGAGCTGCAGCACCACGCTGCCATCGCAGCAGACCATACCTTCCGCGGCCGCGTAATTCCCACGTTCCGCCCGGACGCGTACATCAACATCGGCCACCCCGACTGGGTGGAGAACGTTGGCCGCCTGATCGGCGTTGCCGGTGACGGCGCGGCCGGCTACACCGGGTACATCCGCGCGATGGAGAACCGCCGGCTCTACTTCGTGGAACACGGGGCCGTATCCGCGGACCACGGCGTGCGCACACCGCTGACCCTCAAGCTTGACCGGTCCGACGCCGAGAAGCTCTTCACCCGAGCACGATGCGGTGAATGGACAGCGGAGGACCGCGACGTCTTCGAAGCCCACATGATGTACGAGATGGCGCGCATGTCGGTCCAGGACGGCCTGGTCATGACAATCCACCCTGGCTCCTACCGTAACCACCACCTGCCCAGCTTCGAGAAGTTCGGCGGCGACACCGGCCACGACATCCCGTTCCCGATCAGCTACACCGAAGCCATCCGCCCGCTGCTGCAGGACTTCGGCACGGCACCCGGCTTCCACCTCGTGCTGTTCACCCTCGACGAGACCGTCTTCTCCCGTGAGCTGGCCCCGCTGGCCGGGTTCTACCCTTCCGTTTACATCGGGGCGCCCTGGTGGTTCCTCGATGCCCCCGACGCCATGCTCCGCTTCCGCTCGGCCATCACAGAAACCGCTGGATTCTCGCGATCCTCCGGCTTCATCGATGACACCCGCGCATTCTGCTCGATCCCCGCCCGCCATAACGCCTCACGCCGGATCGAAGCATCCTTCCTCGCACGGCTCGTGTCCGAGCACCGCATCACGCCCGCCCGGGCCGAGGAGCTGATTGTCGATGTCGTTGACCGGGCACCGCGACGGGTCTTCAAGCTATGAMPPSPSSLAAEPDRLLPAEPGVRAIARDLLGLVDSLPIISPHGHVDAAVLAQDTAFPDPATLLVTPDHYVVRLIHASGVPLDRLNQGPIANTDPRIVWREFCKAWPLFDGTASGYWIRSELQHVFKLHEEISEATADSTFDTLQSRLREPAFRPRQLFHDFNIEVLATTDDPLDELQHHAAIAADHTFRGRVIPTFRPDAYINIGHPDWVENVGRLIGVAGDGAAGYTGYIRAMENRRLYFVEHGAVSADHGVRTPLTLKLDRSDAEKLFTRARCGEWTAEDRDVFEAHMMYEMARMSVQDGLVMTIHPGSYRNHHLPSFEKFGGDTGHDIPFPISYTEAIRPLLQDFGTAPGFHLVLFTLDETVFSRELAPLAGFYPSVYIGAPWWFLDAPDAMLRFRSAITETAGFSRSSGFIDDTRAFCSIPARHNASRRIEASFLARLVSEHRITPARAEELIVDVVDRAPRRVFKLPGPT0018210_1059DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018210-uxaC-K01812NANA
D1-29_019171008degA_2COG1609HTH-type transcriptional regulator DegAATGGCTGATTCACAAGGCTTACCCTCGATCTACGACGTCGCTCGTGTCGCCGGGGTGTCGGCATCCACCGTTTCCCGTGCCTTCGCTCGCCCGGGGCGGGTCAGCCACCATACGGCACAGAAAATCTTCGCTGCGGCCATCGAGGTGGGCTACCGCTCAGCCCATGTGGCCGGCATCCAGCATCCTGGCGGGCAGCGCTCCTCAATGATCGCCCTGGTCATCGCGGACATCCGGAACCCTGTGTACGCGGAGATGGTGCGTGGGGCTGAAGCCGCGGCGGCAGAAGCGGGTTACACCATGCTGCTCGCCCACACACAGGAGTCGGAGCGGAAGGAACGCGAGGCGCTTGAGCGCGCTCTGCCCTCCGTGGACGGTATTGTCCTGTCAAGTTCGCGCATGTCCGATTCAGCAATCCGCATGATTGCCAAGCAGAAACCCCTTATCGTCATGAACCGCGCAGTCAAGGACGTGGCAAGTGTGGTGACCGATAACCCACGCGGCATCCGCCGCGCCGCCGAACACCTCGGCGAACTCGGACACCGCACCATCACCTACCTCGCAGGACCCGAAGCGTCCTGGGCCGACGGCATTCGGTGGCGCTCACTGCGCGAAGCAGCCATGGAGCTGGAGCTCTCGGTTCGCCGGACGGGATCGCATCTGCCGACCATTCAGGGCGGTGAGGAAGTCGCCGCCGAATGGCTGCACCACCGCACCCCCGGTGTCATCGCCTACAACGACCAAATGGCCATCGGCTTCATCCGCGCCCTGCAGCAAAAAGGGTTATCCGTTCCCGGCGACGTCAGCGTCGTCGGCCATGACAACAGCTATGGGGCCGCCCTCATTACCCCCTCGCTGACCACGATCGAGGCCCCCCTATACTCCCTCGGTGCTACGGCAGTGAACAACCTGCTGGCCTTCGCCGCCGGCGCCCGTTCCCGATCCAACCAGCCGGTGGTCCTCCCCACCCGACTGGTCGTCCGCGACTCCACCGGGCCGACAAACAGCTGAMADSQGLPSIYDVARVAGVSASTVSRAFARPGRVSHHTAQKIFAAAIEVGYRSAHVAGIQHPGGQRSSMIALVIADIRNPVYAEMVRGAEAAAAEAGYTMLLAHTQESERKEREALERALPSVDGIVLSSSRMSDSAIRMIAKQKPLIVMNRAVKDVASVVTDNPRGIRRAAEHLGELGHRTITYLAGPEASWADGIRWRSLREAAMELELSVRRTGSHLPTIQGGEEVAAEWLHHRTPGVIAYNDQMAIGFIRALQQKGLSVPGDVSVVGHDNSYGAALITPSLTTIEAPLYSLGATAVNNLLAFAAGARSRSNQPVVLPTRLVVRDSTGPTNSPGPT0017992_6231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_019181023COG1638Solute-binding proteinATGTTGCGCACAAAGATTTATTCCCTGATGGCTGTTGCCACTGCCACCGCGCTAGCCCTGACCGCCTGCGGCGGCGGTGAGGCGGGGGGAGGGAGCCCCGGTGGGGAAAGCGGCACCTTGCGGGTGGCGCTGAACCAGACCGAGGAGCACCCCTCGTTCATTGCCCTGGACAACTTCGGCAAGCGCCTTGAGGCCGCCACTGAGGGCCGCTGGAAGATGGACGTCTATCCGAACGAGACCCTCGGCGCCCAGCAGGAGGCCCTGCAGTTGGTCTCCCACGGCTCGGTGGACATGGCGATCGTCTCGGGCACTCAGCTGGAGAACCTTAACAAGGACTTTCGGGTCTTCAACCTCCCCAAGGTCTTCGATGACGTCGAGCACCAGATGAAGGTCATCCACGACCCGAAGGTCACCGGAGAGCTGTACGGCTCCCTCGAGGAGTCAAACAAGCTCACCGTCTTGGGTGGGTTCACCCAGGGGGCCCGCAGCATCTACACCACCGACGCCCCGGTGAAGACGCCGGCGGACCTGGCCGGCAAGAAGCTGCGCGTGCAGGAGTCGGACGTGATGATAGCGCTGGCCGAGGCGTTGGGTGCCTCCGCGACCCCGATGGCCTTCGGTGAGCTCTATACCGCCCTGCAGTCCGGGGTGGTAGACGCGGCTGAGAACAATGAGGTCTCCTACTTCACGCAGAAGCATTTCGAGGTCGCTCCGCACTTTTCCCAAACCAATCACCTGGTCGGTTTGGACTATCTGATCGTCAACTCCGATCTGCTCGCGAAGATGTCCGAGACTGACCGCGCCGCGTTCCAAAAGGAATGGACGGCCACGCACGAGGAGCACACCAAGCTCTGGACCACGGCCACGGAGGAGAATATCGCCAGCGCCAAGGCCGGTGGTGCGACCTTCAGTGAGGTCGATGAGGCCGCTTTCAACAAGGTGCTCGAACCGATCGCCGAAAAATTCATCGAGAACGACTCTCAGCAGGCCCTCTACGACGCCGCTCGCGCCGCCGTGAAGTGAMLRTKIYSLMAVATATALALTACGGGEAGGGSPGGESGTLRVALNQTEEHPSFIALDNFGKRLEAATEGRWKMDVYPNETLGAQQEALQLVSHGSVDMAIVSGTQLENLNKDFRVFNLPKVFDDVEHQMKVIHDPKVTGELYGSLEESNKLTVLGGFTQGARSIYTTDAPVKTPADLAGKKLRVQESDVMIALAEALGASATPMAFGELYTALQSGVVDAAENNEVSYFTQKHFEVAPHFSQTNHLVGLDYLIVNSDLLAKMSETDRAAFQKEWTATHEEHTKLWTTATEENIASAKAGGATFSEVDEAAFNKVLEPIAEKFIENDSQQALYDAARAAVKNANANANANA
D1-29_01919648hypothetical proteinATGACCAGCAAGAAGCCAACAGGGGCCAGCGGTGACGTCCCGGCCGTCCCCGGGCGGGACGGTGGTGCTTCAGCCGTGCCGGCACCGCCGGCAGTCGCCGGACAGCAGCGCCCCACCGGCGGTCCAGCCGTGGCCGCTTTGGAGGCAGTGCGACACATCATCGACCGGGTCCTGGCCCTGCTGTGCATGGTGATCTTTGCCGCACTGGTAGTCGTGGTCGCCTGGCAGGTGATCTCCCGGCAGGTGCTCGGCGCACCGGCATCCTGGACCGAGGAATCAGCCCGGTATGTCTTCGTCGTCCTGGCCCTGCTCGGCGCGGCGCTGGTGTTCTCCGAGCGTGGCCACATCGCAGTCGAGCTCCTTATGAAGAAGTTTCCCGAGCCGGTGCAGAGGGTCGTCGCCCTCGTTGTGGAAGTGACGATCGTATTCTTCGCCGTGTTCGTGATGATCTTCGGCGGATACGAAGTGGCGATGAACGCGTGGAACCAAAACATCTCCACCATGCCGGTGAGTGTGGGCCAGATCTACCTGGTCCTGCCAGTCGCCGGCGCGTTGATCACCTTCTTCGCGCTGTGTCACATAGTGGGCATGTTCGCTGGCACCGAGGAGCTCGTGCCTGAGATCGACGAGAACAACCAAGGAATCTGAMTSKKPTGASGDVPAVPGRDGGASAVPAPPAVAGQQRPTGGPAVAALEAVRHIIDRVLALLCMVIFAALVVVVAWQVISRQVLGAPASWTEESARYVFVVLALLGAALVFSERGHIAVELLMKKFPEPVQRVVALVVEVTIVFFAVFVMIFGGYEVAMNAWNQNISTMPVSVGQIYLVLPVAGALITFFALCHIVGMFAGTEELVPEIDENNQGINANANANANA
D1-29_019201311dctMCOG1593C4-dicarboxylate TRAP transporter large permease protein DctMATGGAACCCGTCACACTCGCCGCGCTCATACTGCTCGGCGGCATGATCATCGGCATTGCCCTGGGGGTCCCTGTTGCCGTCGCAATGGGCGTGCCCTCGGCCCTTGCCATCGTCGTCCTCCTCGGCTGGGACGGTGCGGCACTCACTTCGGCCCAACGCCTGTTCACCGCCAGCAACTCCTTCGCCTTGCTTGCGATCCCCTTCTTCATCCTTGCGGGCGGACTGATGAATACCGGAGGCATTGCCCAACGTCTCATCGACTTAGCGCAGGTCCTCGCAGGGCGCTTGCCTGCCTCCCTGGCCCAGACCACCGTAGTGGCCAACGCCATGTTCGGCGCGGTCTCAGGCGCCTCCGTCGCCTCCGCCGCCGCAGTCGGCTCGGTGCTCTCCCCGCCGATGCGTAAAGCTGGCTACGACCCGGCCTTCGCCGCCGCTGTCAACGCAGCGGCCTCGCCCGCAGGAATGCTGATCCCCCCGAGCAACACTTTCATCGTCTACTCTCTCGTCTCGAGCACCTCTGTCGCAGCGCTGTTCATGGCCGGCGTCGGCCCGGGCCTGCTGTGGGCGCTGGTCTGCGTCATCATGGTCGCGATCTACGCCCGCAAACACCCCGAGCTCGCCAGCGGGCAGCGCCCCACCGCCCGCGAGGCCGGGATCGTGTTCCTGCGCGCCGTCCCATCCCTGCTGATGATAGTCATCGTCATCGGCGGCATCCTCGCAGGGTACTTCACCGCCACAGAATCTGCCGTCATCGCCGTGCTCTACTCCCTCGCCCTCGGCCTGATCCAGAAGACGCTGCCGCTGCGCGCACTGCCCTCAATCACCATAGAAGCGGCCAAAACAACCGCGATCGTCATGCTGCTCATCGGCGTCTCGGGCATTCTCGCCTGGGTGATGTCCTTCGCCAAGGTGCCCGCGCTCGTCGGTGACGCCCTCCTGGGCCTGACCGACAACACCGTCGTGATACTCGTCCTTATCATGATCATCATGCTCCTGGCCGGCACCGTAATGGACCCCACGCCGGCCATCCTGATCTTCACGCCGATCTTCCTGCCGATCGTCACGCAGCTCGGTGTCGATCCGATCCACTTCGGCACGATGATGGTCTTCAACATGTGTCTGGGGAATATCTCCCCGCCCATAGGAAATAACCTCTTCGTAGCCGCGCGAGTAGCCAAGGTGAGCATCGAACCTATGATCAAGCGGATCATGCCCATCTTCTGGGCCCTGACCGTCGCCCTTTTCCTCGTCGCCTTCGTCCCACAGCTATCCATGTGGCTACCCACCGTCATGGGCCTGGTAAAGCCGTAAMEPVTLAALILLGGMIIGIALGVPVAVAMGVPSALAIVVLLGWDGAALTSAQRLFTASNSFALLAIPFFILAGGLMNTGGIAQRLIDLAQVLAGRLPASLAQTTVVANAMFGAVSGASVASAAAVGSVLSPPMRKAGYDPAFAAAVNAAASPAGMLIPPSNTFIVYSLVSSTSVAALFMAGVGPGLLWALVCVIMVAIYARKHPELASGQRPTAREAGIVFLRAVPSLLMIVIVIGGILAGYFTATESAVIAVLYSLALGLIQKTLPLRALPSITIEAAKTTAIVMLLIGVSGILAWVMSFAKVPALVGDALLGLTDNTVVILVLIMIIMLLAGTVMDPTPAILIFTPIFLPIVTQLGVDPIHFGTMMVFNMCLGNISPPIGNNLFVAARVAKVSIEPMIKRIMPIFWALTVALFLVAFVPQLSMWLPTVMGLVKPPGPT0017335_2518DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690NANA
D1-29_019211887hypothetical proteinATGATTTCTCATGGCAGGGCGCACGAAGCGGAGCCGGAAGGAAAGGTAAAACCCTTGGTAATCTCGAGGTTTGGTTATGCGAGCAGCCCACGTATACGGCGTATCACTTGGGCGGCTGTCTTGTCAGTGACCCTTCTTGCCGCCCTTAATCTACAGAGGGCTGCGACACCCACAGCGCTGCTCTATCAGGTCGCCCCGAAAGTCCACGACGCCAGCGCCTTGGGCAGTGCCGCTGTGCCCTATGACGAGGAACTTGTGGCGGCCAACCAACTGGGATCGAAGATGCTGCCTTCGGGCAGCCCCTTTGCGTCAATGCCGTCGCTTGGGGATTCCCCGCAGGAATATCTGGGAGCGCTCTGCTGGAGTTATCAGCCCCGGACCTCATCGTTTCCAAGCGGCAGGCATATGTCCGACGCCCAATTCAATAATGCTTCCAGCATTGTCGACGCCGCTGTGAGGCTTGCGCTGCCCGCCGAGGCTCAAGTGCTCGGCGTGCAAGCCGCGCTCGGCGAGTCTTCACTTGAGAACCTCGATCATGGGGATGCTGCCGGACCCGACTCCAGGGGACTCTTCCAGCAACGGGACAACGGGGCGTGGGGATCATTGAACGACCGCGTGGACCCATTTGTCAGTGCAACCCACTTCTTTCTGGCACTCAGAAATGTCGACGGTTGGGAACAACTCCCGCCCAGTGCTGCCATCCATCAGGTACAGCGGAACCAGGACCCGGAGCACTATACAAAATTCCGCCCGCAGGCACTGGAAGTTGTCCGCGCCCTGAGGGCTAAGAACGCTGCGGGGCTAAATGTGCACGACCGTGCCTGCAGCCCGGGCGGGACACAACAAAGCCAGGTTTCGCTGGCACCACTCTTGCAGCGCCCGGCAGCAGGGACGCTGATGTCTCCGCTGGCGAATCTCCGGCAGACGTCCCCGTTCGGACACCGATCCAGCCCAATCACGGGAACGGCCGGGGAATTCCATACGGGGCAGGATTACGCGAGCAGCTGCGGCACCCCTGTCCACTCCGCAGACGAGGGTTCAGTCAGGGAGGTCGGCTGGCACCCGTGGGGAGGAGGAAACCGGGTGGAAATTGACCACGGCAACGGCCTGGTCACCACGTACAACCATCTGCAAGGGATCGCTGTCCGCAAGGGGCAAAAAGTCGGCGCCGCAGAAGTCATCGCAACAGTCGGCACAACTGGTTCCTCTACCGGCTGCCACCTTCACTTTGAAACCATACTTAACGGTCATCATGCGGATCCAAACATGTGGCGGCTGATGCCGCTGCCGGCAGGATCCTCCCTTGGCGCGCTCATGCTGACAAGCTACGCGCCAGGATCAGCAGCAGGGCAGTCCACCGCAACACCTTTGTGGTCACTGCCGACTGTGCGAACCGCCGAGCCGGTGTCTCCGACCAGGGCCGCGCCATGGCCGAGGACCGCCGCCGTGCCGGGTCCCACTCCCGAGCCAACGCCGGCACCTTTGGTTCTTCCTGAGCCCACGCTCACAGCCGAGCCGGCGCCGACGCCCACCGTCGAGCCAACGCCGACAGCTGCTCCCAGCCCTGAACCAACACCAGTGCCGGAGCCGGAGCCAACACGGATGCCTACCCCGGAGCCGGCACTGACCGCCGAACCGGAGCCGGAGCCGACACGGATGCCTACCCCGGAGCCGGCACTGACCGCCGAACCGGAGCCAACACTGACCGCCGAACCGGAGCCGGAGCCGACACGGATGCCTACCCCGGAGCCGTCACTGACCGCCGAGCCGGAGCCAATACTGACCGGCGAACCGGAGCCGACGCCGATGACACCCGCCGACTCAACAGCGACGGCCGAGCCGGAACGTACTGTGTCTGGGGCATATCTCCCCGCCCGTAGGAAATAAMISHGRAHEAEPEGKVKPLVISRFGYASSPRIRRITWAAVLSVTLLAALNLQRAATPTALLYQVAPKVHDASALGSAAVPYDEELVAANQLGSKMLPSGSPFASMPSLGDSPQEYLGALCWSYQPRTSSFPSGRHMSDAQFNNASSIVDAAVRLALPAEAQVLGVQAALGESSLENLDHGDAAGPDSRGLFQQRDNGAWGSLNDRVDPFVSATHFFLALRNVDGWEQLPPSAAIHQVQRNQDPEHYTKFRPQALEVVRALRAKNAAGLNVHDRACSPGGTQQSQVSLAPLLQRPAAGTLMSPLANLRQTSPFGHRSSPITGTAGEFHTGQDYASSCGTPVHSADEGSVREVGWHPWGGGNRVEIDHGNGLVTTYNHLQGIAVRKGQKVGAAEVIATVGTTGSSTGCHLHFETILNGHHADPNMWRLMPLPAGSSLGALMLTSYAPGSAAGQSTATPLWSLPTVRTAEPVSPTRAAPWPRTAAVPGPTPEPTPAPLVLPEPTLTAEPAPTPTVEPTPTAAPSPEPTPVPEPEPTRMPTPEPALTAEPEPEPTRMPTPEPALTAEPEPTLTAEPEPEPTRMPTPEPSLTAEPEPILTGEPEPTPMTPADSTATAEPERTVSGAYLPARRKNANANANANA
D1-29_01922117hypothetical proteinATGATCAAGCGGATCATGCCCATCTTCTGGGCCCTGACCGTCGCCCTTTTCCTCGTCGCCTTCCTCCCTCAGCTATCCATGTGGCTACCCACCGTCATGGGCCTAGCGAAGCCGTAAMIKRIMPIFWALTVALFLVAFLPQLSMWLPTVMGLAKPNANANANANA
D1-29_01923198hypothetical proteinATGTACTTGGAAGTACTGAAAAGCTCCGGCCTGCCCCGGCGGTTAGCCCTCAATCCGTCCGTACCTGCTGATCACGTCGCCCTAGATGGTCTTGGGCTGGTCCTGAAGTACCAGCCGGGATACCGGGTCGCCGTCCTGGAGCAAGCGGCAGCCGCTACTCAACGTCTGGCTTCAGGGACGTCGATGCGAGAGGCCTGAMYLEVLKSSGLPRRLALNPSVPADHVALDGLGLVLKYQPGYRVAVLEQAAAATQRLASGTSMREANANANANANA
D1-29_01924333hypothetical proteinTTGTTCACTGCGGTCTCGCCTGCATCCCCGCTTGACGCCGCGACCAACTATGAGCTGGACGTGATCGCAGCGGTTGTCATTGGTGGCACTCGCCTCATCGGTGGGCACGTGTCTGTTGTGGGCACGCTCATTGGCGCCGCCTTGATGGCAGCTGTCCGCAACGGCATCAACGGCCTGAATGTCGACACGTTCTGGCGGCGGGTAGTCGTCGAAAGCATCATTCTTATCGCTATCGCTATCGCTATCGCTTACGACGGAGTCGCCGCCCGACGGGCACGACGCGCAGCACGTGTCGTCAGCAGCCCGGTTCACAACGAACTGGCCGTTAGATGAMFTAVSPASPLDAATNYELDVIAAVVIGGTRLIGGHVSVVGTLIGAALMAAVRNGINGLNVDTFWRRVVVESIILIAIAIAIAYDGVAARRARRAARVVSSPVHNELAVRNANANANANA
D1-29_019252511bglB_2COG1472Thermostable beta-glucosidase BATGATTGGCCGTTCAAGCCGAAAACACAGATTCCTTGCACTTGCTGTTGCCTTACCGCTCGCCCTATCCGGCATTGGCCTAGGATCTATGGGGGCCGCAACCGCAGAAAGCACGCAAGCCGTCGTTAATGACCTGCCGTGGATGAATACCGCGCTCACACCAGAAGAGCGCTCGAGCCTGCTGCTCAAGGCACTGAATCTTGACCAGAAGATACAGCAACTGAGCGGGGCACGTCCGGAGATCCTGCCCGACCTTCCCGAATGCTACGGAGGGCGCCATGTAACGGGTATTGCGGAACTGGGTATCCCGACGCTTCGCATCACCAACGGCCCCGTCGGCGTGGGACAGAACGACTGCGTCGACCCCGCACTGTTTGGAGACCCCAACGCACCGTCTGGCACGCCATACGTTCACCCTTCCTCGGCTAAGGCAACGGCGCTGCCGTCAGGCACGACGGTGGCTGCCTCCTTTGACCCTGAGGTCGCAGCCACTTTCGGCGGTGTCATTGCTGACGAGATGAACAACCTCGCGCTGCACGTGTTTGAGGCGCCGGGCCTGAACATGGCTCGGTTGCCGGTGCTGGGCCGGAACTTCGAGTATTTTGGTGAGGACCCCTTCCTTACGGGCACGATGGGTGTCGCGGAAATCCAGGCCGTGCAGGACAAGGGCCTGATCGCTATGGCGAAGCACTATGCCGCCAATGAGCAGGAAACCAACCGCAAGACTGTTCAGGAGACGGTCGACGAGCGAACCCTGCACGAAATGTATCTGTTGCCGTTCGAGATGGCTGTCAAGGACGGCGATGTTGCCTCGATTATGTGCGCATACAACTACGTCAACGCGGTTTCCTCCTGCGAGAACGAGTACCTTCTCACCGATGTGCTTCGCGAACAGTGGGGCTTCGAAGGCTACGTGCAGTCTGACTTTTTCGCTACAAAGAGCACGGTAGATACCCTGCGCAACGGTTTGGACAACATGATGCCGACCCCTCAGCAGTGGGAACCTCACCTGTTGAAGGCAGCGTTGGAATCCGGTGACATCGAAATCTCCCACATCGATACAGCACTCGATCGCCGCTATGTCCAAATGTTCAAATACGGCATCTTTGACCGGCCGCTGGTTCAGACCCCGATTGACTACGCCGCTGGCGGTGAGCGCGCCCGCGAGATCGGTGTCCAGGGCGGTGTGCTCCTGCAAAATAACGGTTCCCTGCCCATCAAGTCGACCGTCGAGGACGTCGTCGTGATCGGAAAGGCTTCCCAGGTCTACGCCCAACAAGCCGTTTCCGGCGGAGCCATACCAGGTAAAGCCGCCGGTTCGGACGGACGTGGCAGTTCGGTCGTTGTTCCGGCTTACGAAGTCGCCCCAGTCGAGGGCATCAAGAACGTTCTTTCCAACTTGGGCAACACCAACGCGAATGTGCGCCTTGTTCTGGTCGACGACGCGAACGAAACCGCGACCGTCGACGGTAAAGAGATCCCATTCGCAGAAGTGTTGGAGCAGGCCAAAGGCGCTGACGCAGTCGTCATGATGGCTGGCACCATTTCCACAGAGGGCGCTGACCGCGCTACTTTCACAGACTCTTCAGGAAAGACGCTGGTCGATGTTGGCAACAACCTTGACTGGTACGTTGACAACCTCGCTGCCGTGGCGACAGTAAATGGGCCTAATCAGGCAAAGAACAGTAACACTGTCGCGATGATCAAAGCAGTCATGGACGCTGCCCCTGAAATGGAGGACAAGACCACCCTGGTCCTCAAGGATAACGCCGGTGTCGAAATGGATCCTGCGCTCGTGGGTGAGCAAGGCCCGGCAATCCTGGAGGCGTGGTTCCCTGGCCAGGAGGACGGACATATCGTTGCCGACCTGCTCCTTGGTGCGGAGAACCCGTCGGGCAAATCGCCGGTGACCTTTCCCTACGCGGATAAAGGTTTTCTCGACCACGCTACAACTCGGCAGTTCCCCGGCGACATGGTCAACAACCAGCAGACTGTTGAGTACACGGAGAAACTGAACGTCGGCTACCGCTGGTATGACGCCAACGCAAGCGGGGAATGCGAGCAGGCCTCAGACGGATCCAATCCATGTGTCGCGTTCCCGTTCGGACACGGCCTGTCCTACACCGACTTCGAAATTTCGAAGATCAATGTTACCCCCAAGGTGTCGGACGGCACGAAGCCCTTCAAGGTGCAGTTCTTCGTCGAAAACACCGGCGATGTGGCTGGCGCTGAGGTGCCGCAGGTCTACATCAGCATGCCAGAGTCGGCGGGTGAGCCACCGAAGCGCTTGGTGGGATTCGATAAGGTGCAGCTCAATCCGGGCGAGAAGAAGAAGGTTGAGATCACCATCGACCCCTCTGCCACCAACCACCCGCTGTCCGTCTGGGATGCCGAAGCCGATAAGTGGACCACACCGGCAGGGGAATTTGACATACGGATCGGCAACTCCTCCGGTAGCACGTCGCTTTCGGACACGGTGACAGTCAAGGTGCCTGCCGGGCACACTCGCTAAMIGRSSRKHRFLALAVALPLALSGIGLGSMGAATAESTQAVVNDLPWMNTALTPEERSSLLLKALNLDQKIQQLSGARPEILPDLPECYGGRHVTGIAELGIPTLRITNGPVGVGQNDCVDPALFGDPNAPSGTPYVHPSSAKATALPSGTTVAASFDPEVAATFGGVIADEMNNLALHVFEAPGLNMARLPVLGRNFEYFGEDPFLTGTMGVAEIQAVQDKGLIAMAKHYAANEQETNRKTVQETVDERTLHEMYLLPFEMAVKDGDVASIMCAYNYVNAVSSCENEYLLTDVLREQWGFEGYVQSDFFATKSTVDTLRNGLDNMMPTPQQWEPHLLKAALESGDIEISHIDTALDRRYVQMFKYGIFDRPLVQTPIDYAAGGERAREIGVQGGVLLQNNGSLPIKSTVEDVVVIGKASQVYAQQAVSGGAIPGKAAGSDGRGSSVVVPAYEVAPVEGIKNVLSNLGNTNANVRLVLVDDANETATVDGKEIPFAEVLEQAKGADAVVMMAGTISTEGADRATFTDSSGKTLVDVGNNLDWYVDNLAAVATVNGPNQAKNSNTVAMIKAVMDAAPEMEDKTTLVLKDNAGVEMDPALVGEQGPAILEAWFPGQEDGHIVADLLLGAENPSGKSPVTFPYADKGFLDHATTRQFPGDMVNNQQTVEYTEKLNVGYRWYDANASGECEQASDGSNPCVAFPFGHGLSYTDFEISKINVTPKVSDGTKPFKVQFFVENTGDVAGAEVPQVYISMPESAGEPPKRLVGFDKVQLNPGEKKKVEITIDPSATNHPLSVWDAEADKWTTPAGEFDIRIGNSSGSTSLSDTVTVKVPAGHTRPGPT0019110_1459DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
D1-29_01926120hypothetical proteinATGTACCACCGAGTGCATGACGAGGCCAATGCGGTGGTGAGTGACTACGTGTGGGACTTTCTTTCTTTTCCGCAGCGCGACAACGGACACCGTGTCGACAGCAAGGCTAGGCAGCTCTGAMYHRVHDEANAVVSDYVWDFLSFPQRDNGHRVDSKARQLNANANANANA
D1-29_019272178hypothetical proteinATGGCTGGTTGGAATGCTGACACGGCGGCCGGGCCGTTAGGGGCCGGGACTGTCGTTTTGGTGGAGGGGACATCTTTCTGTATCTCGTTGTCGAACGGGGATATCCATCCGGGGTATCCGCACGGGGTTTTCTTCCAGGACACCCGTATCCTGTCCGGCTGGAATCTGACCATTAATGGCCAGCCGCTAGAGCCGCTGGCAGCGGAGACGAAGGAGCCGTACCGGGCGCTGTTCGCCTGTCGTGTTGCCCGATTGGATGGATATGCGGACAGCCCGCTGCTCGTGGAGCGTTTACGTGAAGTGGGAGCCGGGATCCAGGAGCAAATAACGGTACGCAACTATGGCCTGGATCCTGCCGAGTGCGTCGTTTCGCTGAGCGTGGAATCCGATTTCGCGGATCTGTTCGAAGTGAAGGAGGCCCGGATCCGCCGGCTCTGGGACGAGACCCGCCAGCCGGAGGATGGTTCGTTGGCCATACGTGCCGTCTGGAAGGATGTACGGAAGGGCGTCCTCGTCAAGGCCGACGGTGCCGAGATCACCGCTGAGGCCCTGACCTACCGGATGGTTGTTGCTCCCCAGGGCCAATGGACCACCGTGCTCAGCCTGGTGCCCCTCATTGAGGGCACCATCCTTAGAACGCCGTTTGTTCATCCAGGCGCCGGAGACTTGTCCGCGAGTGACCGGCGCCGGGAGGAATGGGTGGCGAAGATTCCGGTGCTGCAGATGGGAAACCGGTCCATCGAACGGACTTTACGGCGCAGCTACGACGACCTGGGTGCCCTGCGCATCGAGGACCCGAACCATCCTGACCGGGTCGTGGTGGCCGCGGGCGCGCCCTGGTTCATGACGCTGTTCGGCCGGGACTCACTGTTGGCCTCTGGCATGGCGTTGCCCGTGGATCCGTCCCTGGCCCTCGGGACACTGCAGACGCTGGCGGACCGCCAGGGCCGCGTGGTGGATCCGGTGAGCGAGGAGGAGCCGGGCAAGATCCTGCACGAGGTCAGGCTCGACGTCTCCAGCGGGTTGTCCCTGGGCGGCAAGTCCTCCTACTACGGGAGTGTGGATGCGACCCCGCTGTTTGTGGGCGTGCTCGGGGCGGTCAGCCGGTGGGGGTTCGCCGCGGATACCATCGCTGCGCTGCTGCCGCACGCGGACCGGGCGCTGGAGTGGATTAGTGACTATGGGGACAAGGACGGCGACGGGTTTGTCGAGTACGAGCGGCTCAACGACCAGGGGCTGATCAACCAGGGCTGGAAGGATTCCTGGGACGGCATCAACTTTGCCGATGGGCGCCTGGCGGAGCCGCCGATCGCACTCTGCGAGGTGCAGGCCTACGTCTACACCGCCTACATGGCCCGCGCCTGGATGGCTTACGACGCCGGTGACGTGCCTCTGGCGGCGGAGCTAACCGATCGGGCCGGCCGGCTGAAGAGACAGTTCAATGAGCAGTTCTGGATGCCCGACCGCGGATATTACGCCGTCGCCCTCGATGGCAAGAAACGGCAGGTCGACGCCTGCGCGTCCAACATGGGCCACTGCTTAACGAATGGCATTGTGGATGACGACAAGGCCGGGCAGGTGGCCGAGCGGCTGATGTCCCCGGAAATGTTCAGCGGCTGGGGCGTACGGACACTGGCAAGCGACATGCGCGCGTACAACCCCGCCAGCTACCACAACGGCTCAGTCTGGCCACATGACAATGCCATCATCGCGACAGGTTTGCTCCGCTACGGCTTCGTGGCTGAGGCACAGCGGATCTCGATCGCACTGCTGGAGGCGGCCGAGTACTCCGAGGGCCGGCTGCCCGAACTGTTCTGCGGCTTCAGCCGGGACCAGTTCGCCGCACCCGTTCCTTATCCAACGGCCTGCTCGCCGCAGGCCTGGGCGTCGACCACGCCGATTAATCTGGTGACGAGCCTGATGCGGTACGACGTGCATGTTTCCCGTGGCAGCCTTTGGATGGATCCCGTACTCCCTGATTCCTTTGGCGACGTGCATATTACCAATGCACCAGTGGCCGGTGGCCGGATCACCATCGACATCACCAATTCAGTACCGTCCGTCCAGGGCCTGCCCAGGGGCATGGCGTTCCACCACGGCCACCGGCCACCGCTGGCCAAACTCGTGCAGCAAGCCGGTCGGAAGCAGATGCCAAAGGGCGATTCCGCTGATACGTGAMAGWNADTAAGPLGAGTVVLVEGTSFCISLSNGDIHPGYPHGVFFQDTRILSGWNLTINGQPLEPLAAETKEPYRALFACRVARLDGYADSPLLVERLREVGAGIQEQITVRNYGLDPAECVVSLSVESDFADLFEVKEARIRRLWDETRQPEDGSLAIRAVWKDVRKGVLVKADGAEITAEALTYRMVVAPQGQWTTVLSLVPLIEGTILRTPFVHPGAGDLSASDRRREEWVAKIPVLQMGNRSIERTLRRSYDDLGALRIEDPNHPDRVVVAAGAPWFMTLFGRDSLLASGMALPVDPSLALGTLQTLADRQGRVVDPVSEEEPGKILHEVRLDVSSGLSLGGKSSYYGSVDATPLFVGVLGAVSRWGFAADTIAALLPHADRALEWISDYGDKDGDGFVEYERLNDQGLINQGWKDSWDGINFADGRLAEPPIALCEVQAYVYTAYMARAWMAYDAGDVPLAAELTDRAGRLKRQFNEQFWMPDRGYYAVALDGKKRQVDACASNMGHCLTNGIVDDDKAGQVAERLMSPEMFSGWGVRTLASDMRAYNPASYHNGSVWPHDNAIIATGLLRYGFVAEAQRISIALLEAAEYSEGRLPELFCGFSRDQFAAPVPYPTACSPQAWASTTPINLVTSLMRYDVHVSRGSLWMDPVLPDSFGDVHITNAPVAGGRITIDITNSVPSVQGLPRGMAFHHGHRPPLAKLVQQAGRKQMPKGDSADTNANANANANA
D1-29_01928288hypothetical proteinATGGAGGACGCTTTGCAGATCTTGACCGGTTTGGGTTCCATGTCCGTAATATCGGGCTTCTGGCCTCGGGCTTGGCGAGGCCGGGCGACCACTGCGACGGGAGTGGAAGCCTATCTGCAGTTAGCGATGAAGGCAGCGGCTCTCATGGAGTTGGTCGCGCGGTTTCACCCGCTGATCGGCGGCAATAGACGCACGGCGTGGACGCTGATGGTTCTGATGCTCTGGATCAATGGTTACCGGTATGACTTCAACACCGATTCGGCGTTCGATCTGGTCGTGGGCTTATAGMEDALQILTGLGSMSVISGFWPRAWRGRATTATGVEAYLQLAMKAAALMELVARFHPLIGGNRRTAWTLMVLMLWINGYRYDFNTDSAFDLVVGLPGPT0027560_1145DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-Doc-Phd_TOXIN-ANTITOXIN_SYSTEM,PGPT0027560-toxin_doc-K07341NANA
D1-29_019291017hypothetical proteinATGGCAGTGATGGACGCACGTGTGGGCATTGTCACCGGTGCCGCGGGAAGGCTGGGCCGCCATATTGCGATCCTCTTCGCCGCTGAGGGCGGCACTGTTGTCATTAACGACGTGAACCGTGAGGGATCCGAAGCACTGGCGGAGGAGATCCGCGCCGCAGGCGGCACCGTCTCGCTCGCCGTGGGCGACGCGACTACCCTCGCGAGCGCGAGCGAGCTGGTGGAGAAGACGGTGGACGAGTTCGGGCGCATTGACTCGATCATCCTTGCGGGCGCGAATATGGCGGGTCAGCGCATTCAGACGATCGAGGAGATGTCCGAGGACCACTTCAGAGAGATCACCCTTTCACACGTGGGCGGGCATTTTGCCATGTTCAAGGCCGTCATCCCTCACATGAAGCGGCAGCGGTACGGACGCATCGTCGCGTTCGCATCTGCGCATGGCATGGTGGGCGACTGGGGTCGCAGCCACTACGCGGCAGGCAAAGGAGCCATCACGTCGCTCATGCGCACGGCGGCGATCGAGCTCGATGCCTGGGGCATCAACGTCAACGCCCTCAGCCCCGCAGGAATCTCGAGCGACGGCGGGACTCGCATGCTGCGGGAACGGGCGGGAGACCCCGCGGGAGTCGCGCCTCTCGCGGTCTACCTCGCCTCTGAGGACGCTGGCTACATGAACGGGCACGTCTTCGAAGGCTCCGGCTCGGGTCGCATTGGCTTGTATGGTCCCTTCGTGCCCCAGCATTACATGCATAATCCGAGCGGGTGGACCCTCGACGAGCTGCGAGAGATCGTGCCAGGGCTCTTTGAGGCGAGTTACACCAATGAGCCGCGGCAGCGGCCGGCGATGCTGCCCCGTGACCCGCTGCTCGAGACGCAGCCGGGGGAGATGGTCGACCACTTGCCGACCGGTCTCTCCCCGATCGTCAGCGACGGGCTCGGACTGCAACTGCTCAATCAGCTCGGACTGCCCAGCTACAACGAACCCGGCCCGAAGGTCACTCCCGACGAAAGGTAGMAVMDARVGIVTGAAGRLGRHIAILFAAEGGTVVINDVNREGSEALAEEIRAAGGTVSLAVGDATTLASASELVEKTVDEFGRIDSIILAGANMAGQRIQTIEEMSEDHFREITLSHVGGHFAMFKAVIPHMKRQRYGRIVAFASAHGMVGDWGRSHYAAGKGAITSLMRTAAIELDAWGINVNALSPAGISSDGGTRMLRERAGDPAGVAPLAVYLASEDAGYMNGHVFEGSGSGRIGLYGPFVPQHYMHNPSGWTLDELREIVPGLFEASYTNEPRQRPAMLPRDPLLETQPGEMVDHLPTGLSPIVSDGLGLQLLNQLGLPSYNEPGPKVTPDERNANANANANA
D1-29_01930240hypothetical proteinGTGCCCGCCGCCATCGAGCGGCTTCTCTCCGACCCGCGGGTATCAGGCGTCAGTATCACTGGAAGTGTGCGGGCCTGTGCCAGCGTGGTGGCCCTGGCCGATCGGAAAATCAAGAATAGTTTGCTCGAGCTGGGCAGTCCTGTCCCGTTCGTCGTGCTCGATGACGTCGACCTGCAGGTTGCGGGCGCATGCGTTGAGAACACGCTTTATCAATACCGGACAAAGCTGCTTGCGGCCTAGMPAAIERLLSDPRVSGVSITGSVRACASVVALADRKIKNSLLELGSPVPFVVLDDVDLQVAGACVENTLYQYRTKLLAAPGPT0001580_5397DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_01931216hypothetical proteinATGCGGCTCCGGGACCATGTCGTGGACGCCGTCATCCGCTTGGGACAGGCAGTGTCCGAGACCGCCGCGGCGTTCAGGGTGTCATGGTGGCTGGTGCGTGCTGCGGTGAACGAAGCCTGCCTCCTGAGCCTGCCCGGTGTGGATGAACTCAGTCTTCGGATGCTGGGCATCGACGATGTCGGTGACGGTCGAAAAGTGAGCCATTGTGACGGTTGAMRLRDHVVDAVIRLGQAVSETAAAFRVSWWLVRAAVNEACLLSLPGVDELSLRMLGIDDVGDGRKVSHCDGPGPT0030630_551DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030630-tnpA-K07485NANA
D1-29_01932912hypothetical proteinATGAGGTCGATAGCGGCGCGGCTGGGTGTTTCCAGGAACACGGTCGCGAAGGCTGTCAGCGCCGATGGTCCGCCAACCTATGTGCGTTCTCCGCAGGACTCCGGGATCAAGGCGTTGGAACCGGCGATTCGTGCGCTGCTGAGGGAGAATCCGCGGATGCCGGCGACGGTGTTGGCCGAGCGCGTGGGCTGGTCCGGGTCCCCTGCGTGGTTCCGGGAGAACGTGGCCAGGATCCGGCCGGAGTACGCTCCAGCGGATCCTGCGGACCGGATCAGTTACGAACCCGGCGATCAGGCGCAGTGCGACCTGTGGTTCCCGGAGGCGCGGATACCTGTCGGGTCCGGGAAGCCAAGGGTTCTGCCGGTGCTGGTGATGGTGTCCTCGCATTCGCGGTTCATCATGGCCCGGATGCTTCCGTCACGGATGACCGGGGACCTGTTGGCCGGGATGTGGGAGCTGATCGGGTCCCTGGGAGCGGTGCCGCGGCGGCTGATCTGGGACAACGAAACCGGCATCGGCCGCCGGAACAGTTACGCCGCCGGAGTAGCTGCGTTCGCTGGGGTCCTCGCGACCAGGATCGTGCAGGTCAAACCCTACGATCCGGAGAGCAAGGGCGTGGTGGAGCGGGCTAACCAGTTCCTGGAAACCTCGTTCCTGCCCGGCCGGACCTTCACCTCACCGGCGGATTTCAACACACAACTCGGCCAGTGGCTGCCGAAGGCGAACAACCGGATGGTCCGGCGGACCGGGGCCCGGCCTGCGGAGCTGATCAAGCGGGACAAGGCGGCGATGCTGGGGCTGCCGCCGGTTTCGCCCGTGACCGGGTTCGCGGCGAGGGTCCGGCTGCCGCGGGACTACTACGTGCGGATGGGCTCCAATGACTACTCAGGTGCACCCGCAGGCCATCGGTAGMRSIAARLGVSRNTVAKAVSADGPPTYVRSPQDSGIKALEPAIRALLRENPRMPATVLAERVGWSGSPAWFRENVARIRPEYAPADPADRISYEPGDQAQCDLWFPEARIPVGSGKPRVLPVLVMVSSHSRFIMARMLPSRMTGDLLAGMWELIGSLGAVPRRLIWDNETGIGRRNSYAAGVAAFAGVLATRIVQVKPYDPESKGVVERANQFLETSFLPGRTFTSPADFNTQLGQWLPKANNRMVRRTGARPAELIKRDKAAMLGLPPVSPVTGFAARVRLPRDYYVRMGSNDYSGAPAGHRNANANANANA
D1-29_01933282hypothetical proteinATGACTACTCAGGTGCACCCGCAGGCCATCGGTAGGTTCGTCGACGTCACCGCAGACCTGGAAACGGTGAGGATCACCCTGGAGGGCCGCTGCGTCGGAAACCATGCAAGGTCCTGGGGCGCTGGCCTGACCATCACAGACCCGGACCATGTCGAGGCTGCCCGGACGATGCGGACAGCCTTCCAAAACCCCGCACCTCCAGCAGATGCATCCGGGTTGCGGGACCTGGCTGACTACGACCGGGCGTTCGGTGTCGTCCTTGATGATGGGCAGGTCGCCTGAMTTQVHPQAIGRFVDVTADLETVRITLEGRCVGNHARSWGAGLTITDPDHVEAARTMRTAFQNPAPPADASGLRDLADYDRAFGVVLDDGQVANANANANANA
D1-29_01934789IS21 family transposase ISMt3ATGACCGAAGCGAAGGAAACAACCGGTCAGATCGAGTACTACTCCCGGGCCATGAAGGCACCCCGGATCCGAGAAGGTGCAGCACGGCTCGCGGACCATGCGCGCGAGGCCGGCTGGACCCATGAGGAATACCTCGCCGCGGTCCTGTCCCGGGAAGTCGCCGCCAGAGAAGCCTCCGGAGCCGAAACCCGTGCCAGAGCAGCCGGGTTTCCGGCCCGCAAATCGCTCGAGGACTTCAGCTTCGACCACCAGCCCGGCCTCAAACGCGACACCATCGCGCACCTGGCCACCGGAGCGTTCCTCACCGAAGCGTCCAATATCGTCCTGCTCGGCCCGCCCGGAACCGGGAAAACCCATCTCGCGACCGGGCTGGGGCTGCGGGCCACCCAGCTGGGCCACCGCGTCCTGTTCGCAACAGCCATCGACTGGGTTGCCCGTCTCCAGGCAGCCCACCAGAGCGGGCGGCTGCCTCAGGAACTGATCAGACTGCGCCGCTACGGGCTGATCATCGTCGATGAGGTCGGCTACATTCCGTTCGAACAGGATGCCGCGAACCTGTTCTTCCAGCTCGTGTCCTCACGCTACGAACATGCCTCGTTGATCCTGACCTCGAACCTGCCATTCGCCCGCTGGGGAGACGTGTTCGGTGACCAGGTCGTCGCCTCAGCCATGATCGACCGCATCGTCCACCACGCCGAAGTTGTCACACTCAAAGGCTCAAGCTACCGGCTCAAATATGCCCAGGCGGACTCCCTGCCCTCGACAAGACCGGAAAATACGGCAGAATAAMTEAKETTGQIEYYSRAMKAPRIREGAARLADHAREAGWTHEEYLAAVLSREVAAREASGAETRARAAGFPARKSLEDFSFDHQPGLKRDTIAHLATGAFLTEASNIVLLGPPGTGKTHLATGLGLRATQLGHRVLFATAIDWVARLQAAHQSGRLPQELIRLRRYGLIIVDEVGYIPFEQDAANLFFQLVSSRYEHASLILTSNLPFARWGDVFGDQVVASAMIDRIVHHAEVVTLKGSSYRLKYAQADSLPSTRPENTAENANANANANA
D1-29_01935198hypothetical proteinATGACGCTCATCCGGAACAAGTTTCCCGACCAACCGGGCCGTGAAGTCCCGTCTGAGAAGGTCGGGCATGCGCTCCGCTGCTTCAGCGCCAGCCTTGGTGATGATGCGGAACTGCCGTGGTTGACAGGCCACCAGGCCGTGGCAGCGCATGATCTGTCGCATCCACTCGAGAGAGCACTGGGGCCGTTCCGCGGATAGMTLIRNKFPDQPGREVPSEKVGHALRCFSASLGDDAELPWLTGHQAVAAHDLSHPLERALGPFRGNANANANANA
D1-29_01936255hypothetical proteinATGCGAAGGGAAGCTCTGATGTACCAGTACCGCCGTGACGACTGGAGCCAATTGGTCGGCTTCTTCGTGGAAGTTCGCCACGATCAGCAAATACTCAGGTCAGGATTCGTCGACCGCGCCATGCCTGATTCGTCCGCCCTCTGGCTGGCGGCAGATGGGATAGAAAAGAGGACTCTCATAGCTAAAGTCGAAGGCTACGAGGTGTGGATTGACGCGCGCTGCTTAAGCAGGCTCAAAGACCGACTATCAACATGAMRREALMYQYRRDDWSQLVGFFVEVRHDQQILRSGFVDRAMPDSSALWLAADGIEKRTLIAKVEGYEVWIDARCLSRLKDRLSTNANANANANA
D1-29_019371137gltA_22-methylcitrate synthaseATGGCTGACACAGAGATCAAGAAGGGCCTCGCAGGTGTCGTGGTGGATTACACCGCCGTCTCCAAGGTCAATGCAGAAACCAACTCGCTGCTGTACCGGGGCTACCCGGTGCAGGAGCTTGCCGCTAAGTGCAGTTTTGAGGAGGTCGCGCTCCTGCTATGGAACGGAGAGCTGCCCACGGCGGAGCAGCTGGCGGAGTTCACGGCACGCGAACGGGCAGGACGCGCCCTGGACCCGGTGGTCAAACAGGTCATCGACGCGCTGCCCACCACCTCGCATCCCATGGATGTCTGCCGGACGGCCGCATCGGTCATGGGTGCCCGGCACGCCCTCACGGAGGACTCCTCGCATGAGGCGAACATGGCCAAGGCGATGGACCTCTTTGCTGCGATGCCGGCTGTGGTGGCCTACGACCAGCGCCGCCGTCACGGGCAGGAGGCCATGGAACCGCGTGACGACCTGGGGTACTCGGCCAACTTCCTCTGGATGGCCTTCGGCGAAGAACAGGTCCCCGAAGTGGTTGAGGCATTCAACGTCTCGATGATCCTCTACGCCGAGCACTCCTTCAACGCCTCCACCTTCACGGCCCGCGTCATCACGTCCACCCTCTCGGACCTGCATTCAGCCGTCACCGGAGCCATCGGTGCATTGAAGGGTCCGCTGCACGGCGGAGCCAACGAGGCCGTGATGCACACGTTCGATGAAATCGGGATACGTCAAGAAGAGTCCCTGGACGAAGCAGCCGCCCGTGCGAAAGCATGGATGGAGGACGCCCTGGCACACAAAAAGAAGGTCATGGGCTTCGGGCACCGCGTCTACAAGCACGGCGACTCCCGCGTGCCCACTATGAAGGCCTCCCTGGACAAGATGATCGCCCACTACGGCCGACCCGAACTGCTGGGACTCTACAACGGACTGGAAAGCGCCATGGACGAGGCCAAGGCCATCAAGCCCAACCTCGACTACCCCGCCGGCCCCACGTACCACCTCATGGGCTTCGATACGCAGACGTTCACTCCCCTGTTCGTCGCCAGCCGCATCACAGGATGGACCGCCCACATCATGGAACAGGCCTCCGACAACTCGCTGATCCGCCCCCTTAGCACCTACAACGGCGTGCAGGAACGTGCCTTCTAGMADTEIKKGLAGVVVDYTAVSKVNAETNSLLYRGYPVQELAAKCSFEEVALLLWNGELPTAEQLAEFTARERAGRALDPVVKQVIDALPTTSHPMDVCRTAASVMGARHALTEDSSHEANMAKAMDLFAAMPAVVAYDQRRRHGQEAMEPRDDLGYSANFLWMAFGEEQVPEVVEAFNVSMILYAEHSFNASTFTARVITSTLSDLHSAVTGAIGALKGPLHGGANEAVMHTFDEIGIRQEESLDEAAARAKAWMEDALAHKKKVMGFGHRVYKHGDSRVPTMKASLDKMIAHYGRPELLGLYNGLESAMDEAKAIKPNLDYPAGPTYHLMGFDTQTFTPLFVASRITGWTAHIMEQASDNSLIRPLSTYNGVQERAFPGPT0001480_753DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
D1-29_01938906mmgFCOG25132-methylisocitrate lyaseATGCTCTATTCCAACACAACGCCCGAAGAGAAGCGGGTCCTCCTCCGCGAACTCCTTGCCTCCGGAAGCATCCAGCAGTTCCCGGGGGCCTTCAACCCGCTCTCTGCCCGGCTGATCGAAGAAAAGGGCTTCGCCGGTGTCTACATCTCCGGCGCTGTCCTGGCCAACGACCTCGGGCTGCCGGACATCGGCCTGACCACCCTCACAGAGGTGGCCACTCGTGCAGGGCAGATCGCGAGGATGACCGGACTGCCGTGCATCGTGGACGCCGACACCGGGTTCGGCGAGCCCATGAATGTGGCCCGCACGGTCCAGGAACTCGAAAATGCCGGGCTGGCAGGCCTGCACATCGAGGACCAGTTCAATCCGAAACGCTGCGGCCACCTGGACGGCAAGAACGTAGTGGATCTAGACACCGCCACGAAACGGATCAGGGCTGCAGTGGATGCCCGGCGCGACCCGAACTTCCTCATCATGGCGAGGACGGACATCCGCGCCGTCGACGGTCTGGAAGCTGCCCAGGACCGGGCCAAGGCGCTCGTCGACGCCGGGGCGGACGCCATCTTCCCAGAGGCTATGCGGGACCTGAGCGAGTTCCGGGCCATCCGCGACGCCGTAGACGTGCCGATCCTCGCCAACATGACCGAGTTCGGGAAAAGCGAACTTTTCACGGTGGAGCAGCTCCAGGAAACCGGCGTGAACATGGTGATATATCCGGTGACCCTCCTCCGTAGTGCCATGGGCGCCGCCGAGCGTGTTTTAGACACGCTCAAGAGCCTGGGAAGCCAGCAGGAACGCGTGCCTGAAATGCTCACCAGAGCCCGCCTCTACGACCTGGTGGACTACGAGGCTTACAACAAATTCGATCGCGGCATCTTCAACTTCCAGATCCCCGACATTCACTAGMLYSNTTPEEKRVLLRELLASGSIQQFPGAFNPLSARLIEEKGFAGVYISGAVLANDLGLPDIGLTTLTEVATRAGQIARMTGLPCIVDADTGFGEPMNVARTVQELENAGLAGLHIEDQFNPKRCGHLDGKNVVDLDTATKRIRAAVDARRDPNFLIMARTDIRAVDGLEAAQDRAKALVDAGADAIFPEAMRDLSEFRAIRDAVDVPILANMTEFGKSELFTVEQLQETGVNMVIYPVTLLRSAMGAAERVLDTLKSLGSQQERVPEMLTRARLYDLVDYEAYNKFDRGIFNFQIPDIHPGPT0001555_450DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417NANA
D1-29_019391521prpD2_2COG20792-methylcitrate dehydratase 2ATGGTTAAGCTCAACCACGTCCGTGTCTACAAAAGTGAAGAGAACCTCACCCGCGAGGACCAGTTGGCCCACAAGATCGCCGTAGTTGCCGCTGATCCCGTGGAGGTGACCCCCGAGGTCACCGAAATGGTCATCAACCGGGTCATCGACAACGCGTCCGTCGCAATCGCATCGCTGAACCGCGGCCCGATCGTGGCTGCCCGCGCGCAGGCTATGACCCATGCGCCGACGACCAACGGCAAGGGCGCAAGCGTCTTCGGCATCACGGACCGTGTGTCCCCCGAATGGGGTGCCTGGGCCAACGGTGTGGCGGTGCGTGAGTTGGACTACCACGACACGTTCCTGGCAGCGGAGTACTCCCACCCCGGGGACAACATCCCGCCCGTCCTTGCCGTTGCCCAGCACGTCGGTGCCAGCGGCAAGGACCTGATCCGGGGCATTGTCACCGGCTATGAGATCCAGGTCAATCTGGTCAAGGCGATCTGCCTGCACAAGCACAAAATCGACCACGTGGCGCACCTCGGCCCGTCCGCCGCGGCCGGCATCGGGACGTTGCTGGGCCTCGACGTCGAGACCATCTTCCAGTCCGTCTGCCAGGCGCTGCATACCACCACCGCCACCCGCCAGTCCCGCAAGGGCGAAATCTCCACCTGGAAGGCACACGCGCCGGCGTTCGCGGGCAAGATGGCCGTAGAAGCCGTGGACCGCTCCATCCGCGGCCAGACCTCACCTGTGCCGATCTACGAAGGTGAAGACGGTGTCATCGCCTGGCTCCTGGACGGCCCCGACGCCTCCTACGAGGTCCCCCTGCCCGAGGCCGGCGAGGCCAAACGCGCCATCATGGACACCTACACCAAGGAACATTCTGCCGAATACCAGGCACAGGCCTGGATCGACCTGGCCCGGAAGCTCCACAGGGAACACCCGGAAACCACGGACCCGGCCAACGTGAAGTCTGTGCTGATCAAAACCAGCCATCACACCCACTACGTCATTGGCTCCGGCGCGAACGACCCGCAGAAGTACAGCCCCACCGCGAGCCGGGAGACCCTGGACCACTCGATCCCGTACATCTTCACGGTCGCGCTGCAGGACGGTGCCTGGCATCATGTGGATTCCTACACCCCCGAACGCGCCGGCCGGCCGGATACCGTGGAACTTTGGCACAAGGTCACCACCGATGAGGACCCGGAATGGACCCGCCGCTACCACTCCCTAGACATCATGGAGAAGGCCTACGGCGGGTCTGTGGAGATCGCTCTCAACGACGGCACGGTCGTCACCGACCAGATCGCCGTGGCTGACGCCCATCCGCTCGGTGCCCGGCCGTTCGCCCGGCACCAGTACTTGACCAAGTTCCGCACGCTCGCGGCCGGCCTGGTCGAGGATAAGGAAATTGAGCGTTTCCTGGCTGCCGCCGAGGACCTAGCCAACCTCGGTCCGGGCGAACTGGACCAGCTGAACATCACAGCCGCCCCGGGTGTCATCGACCTCAGCAACGCACCCCAGGGGCTGTTCTAAMVKLNHVRVYKSEENLTREDQLAHKIAVVAADPVEVTPEVTEMVINRVIDNASVAIASLNRGPIVAARAQAMTHAPTTNGKGASVFGITDRVSPEWGAWANGVAVRELDYHDTFLAAEYSHPGDNIPPVLAVAQHVGASGKDLIRGIVTGYEIQVNLVKAICLHKHKIDHVAHLGPSAAAGIGTLLGLDVETIFQSVCQALHTTTATRQSRKGEISTWKAHAPAFAGKMAVEAVDRSIRGQTSPVPIYEGEDGVIAWLLDGPDASYEVPLPEAGEAKRAIMDTYTKEHSAEYQAQAWIDLARKLHREHPETTDPANVKSVLIKTSHHTHYVIGSGANDPQKYSPTASRETLDHSIPYIFTVALQDGAWHHVDSYTPERAGRPDTVELWHKVTTDEDPEWTRRYHSLDIMEKAYGGSVEIALNDGTVVTDQIAVADAHPLGARPFARHQYLTKFRTLAAGLVEDKEIERFLAAAEDLANLGPGELDQLNITAAPGVIDLSNAPQGLFNANANANANA
D1-29_01940642gntR_3putative D-xylose utilization operon transcriptional repressorGTGCGGGCCAGCGATAGGGCCTACTCCGCGCTGCGTGATGACATCATCGAATGGCGCCTCCTCCCCGGCACAGTTCTTGCGGAAGTCGAGCAGTCTGAACGACTCGGGGTCTCGCGGACGCCTCTCCGCGAAGCGTTAAGCCGTCTGACGGCGGAGGGACTTACGACAGCGGCGGACGGGCGGGGTGTCGTCGTAACAGACATCTCTACAGAGGACATCGACGAACTGTTCGAGCTCCGCGAAACACTCGAGGGCAGGGCTGCCGCGTTAGCGGCTGAGCGGGGAGACGCAGGAGTCTTCCACCAACTCCTGAAAGAGTTTCTCGAAGCGGGGACCCTTATCCGCGGCTCTGATCCAGCCCGGCACGAATACTACGCCCTAGTGACCCGGCTCGATGATGCGATCGACGGCGCCATCTCCAACTCCTACTTGGCCCAGGCGATGCGCGGCCTGCGCGTCCATCTTGTCCGCGTGCGCCGCCTCGCGGCCGATGACGAGCGGCGCCTGCATGCTGCAGCCCTGGAGCATGCAGCGATCGCCGAAGCCATCGCTGCTGGCAACGCCAGGCTCGCCGAAGCGGCCACCATCCTTCATCTGCACCGCAGTCTTACCCACGTCAAAGCGACGCATACAGCGCAATAAMRASDRAYSALRDDIIEWRLLPGTVLAEVEQSERLGVSRTPLREALSRLTAEGLTTAADGRGVVVTDISTEDIDELFELRETLEGRAAALAAERGDAGVFHQLLKEFLEAGTLIRGSDPARHEYYALVTRLDDAIDGAISNSYLAQAMRGLRVHLVRVRRLAADDERRLHAAALEHAAIAEAIAAGNARLAEAATILHLHRSLTHVKATHTAQNANANANANA
D1-29_01941711hypothetical proteinATGGAAGCAAAGGACAAGGGTCTGCAGATCAACCCCCGCGACGGCAACCAGACGCTGAGGCGCGGCCTTCGTGTTCTCCTGGAAGTGGCCGATTCCAAGGATGGTCTCTCAGTTCAACAGGTCAGTGAGATGCTGGGCGTCCACCGGTCGATTGCCTACCGCCTTCTGCAGACCCTCGCTGACTACCGGATGGTGACTCGTAGTAGGGCGGGACTTTATATTCCGGGTGCTCGCCTGGCGACGCTCGCCGGGACGTACCTCCCGAACCTTCGGGACGTCGCCAGCCCGGCCATGCTCGCTCTCGCCGACCGACTCCAATCAACAATTGCGCTGTTCGTTGAAGAGGGAGAAGAAGTCGTGGCAGTCTCCATGGTGGAGCCAACAACACCCGTACACCATATTTCGTTCCAGCCCGGCATGCGCACACCACTAACGCTCGGCGCGGCGGGCTACGCGATTCTCGCGGGCGGCGCTCCCAGTGCGGACGAGCCCGCCAACGTCGCGGTCGCACGCGAAAAGGGCTACGCGCGTAGCCACTCAGAGGTTGAGGCCGGTGCGTTCGGTGTTGCAGCGTGGATTCCCATGGGCGGAGCTGGTGTGCGAGCCTGCCTGAACCTCATTACCCATCGAGAAGATATAGCAGATCAAGCCGGCCCTGAGATGCGGCGCGTGGCCGACGAGGTCGGGCATCTCCTACAGCAATCGGGATGAMEAKDKGLQINPRDGNQTLRRGLRVLLEVADSKDGLSVQQVSEMLGVHRSIAYRLLQTLADYRMVTRSRAGLYIPGARLATLAGTYLPNLRDVASPAMLALADRLQSTIALFVEEGEEVVAVSMVEPTTPVHHISFQPGMRTPLTLGAAGYAILAGGAPSADEPANVAVAREKGYARSHSEVEAGAFGVAAWIPMGGAGVRACLNLITHREDIADQAGPEMRRVADEVGHLLQQSGNANANANANA
D1-29_019421617pamO_1COG2072Phenylacetone monooxygenaseATGGGACCGGACAATGTACAAACGGCAGGGGATCATTCTCCAGACGTGGTCATCGTCGGAGCCGGCATCGCTGGCATTTACGGCATCAAGCGCCTTCGAGAGACGGGCATGTCAGTGCTCGGCATCGAGGCCGCTCCCGAGGTTGGCGGAGTCTGGTATCACAATGGGTACCCAGGCGCACGGGTCGACCTCGACAGTGACATGTTTAACTACTTCTTCGACGAAGAGTTGTACAAAACGTGGGACTGGGAAGACCGCTATGCCACCCAGCCGCAAGTGCTTGCCTATCTGAAGCACGTTGCGGACAAGTATGATGTCCGGCGAAGCATCCGCTTCAACACCCGGGTCATCGGCACCACGTGGCAGCCTAAGGAGAAGCGGTGGCTCGTTGAGACCGACGACGGCGCCACGCTGAGCCCCCGATACCTGGTCATGGCCACGGGACAGCTCTCCCGACCTCGCGACCCCCAGTTCGAAGGTCTCCACGATTTCGAGGGCGAGTGGTACCAGACCTCGCGATGGCCTCACGACGAAGTGGAACTCGCTGGAAAGCGTATCGCCGTCATCGGCACCGGGTCCTCAGGCGTTCAAGCCGCGACCGCGATCGCCGAGGTCGCAGACCACTTGACCGTCTTCCAGCGCACTCCCCACTACTCCATTCCTGCTCAGAACCGGCGGCCTGACGAGTCTCGTCGGCAACGGCTTCGCGGGCGATTTCCGGAACTGTGGAACGAGCTATCGCAGACGCATTTCGGGGGGTTCGCTCCCCCGCCTGCAGGACCCGCCTCGGCATTCTCCACCGAGGATCAGCAGTTGCTGTTGCAGCAGCGGTGGGATTTCGGCAGTCAGTCCATGGTGGGGGTCTTCTCTGATCAGGCAGTTGACTGGGACACGAACACACTCGTGGCCGAGTTCGTCCGTTCAAAGGTCCGCGACAAGGTAGAGGACCCCGCCATCCGGGCCGCCGTAGTGCCAGACGAGTACCCCATCGGAACCAAGCGGCTCATTCTCGACACCGGTTATTACGAAGCATTGAACCAAGACAACGTCAATCTTGTAGACATGCGTAGCGAGCCAATTGTCCGGCTGACCCCCCACGGCATCCAAACCACGGGGCGTGAGTATGAGTTCGATGTCATCGTCTTCGCCATGGGCTTCGAAGCCTTTACCGGCGCCTTGGACGACGCAAACATTCGCAACGCAGACGGGGTTACGCCCTCCCAGGCATGGGACCGCGGCCCACAGACTTACCTTGGACTTCAAACCCGAGGATTCCCCAATCTGTTCTTCCTTACCGGCGCTGGGAGTCCCTCCGTGCTGGCGAACATGTTCGTCGCGAACCAGCATCACGTGGACGTGCTGGCGGAACTCTTTACGCATATGAACGAGCACGGCTTCTCCGTCGTCCAGCCGCAGCAGAGGGATCAGGACGCCTGGGTCGCGCACTCGGCCGAGGTCGCCGAGAAGCTCATCCGCCGCGAGATTAACCAATACATGGTGAAGGTAACCGACGACGGTACCCGCGTGTTTATACCTTATGCCGGCGGTTTCAAGGCGTATTACGCAAAAGTCAAGGACGAGATCGATACCGGCTGGCCCGGATTCGAATTCGCCTGAMGPDNVQTAGDHSPDVVIVGAGIAGIYGIKRLRETGMSVLGIEAAPEVGGVWYHNGYPGARVDLDSDMFNYFFDEELYKTWDWEDRYATQPQVLAYLKHVADKYDVRRSIRFNTRVIGTTWQPKEKRWLVETDDGATLSPRYLVMATGQLSRPRDPQFEGLHDFEGEWYQTSRWPHDEVELAGKRIAVIGTGSSGVQAATAIAEVADHLTVFQRTPHYSIPAQNRRPDESRRQRLRGRFPELWNELSQTHFGGFAPPPAGPASAFSTEDQQLLLQQRWDFGSQSMVGVFSDQAVDWDTNTLVAEFVRSKVRDKVEDPAIRAAVVPDEYPIGTKRLILDTGYYEALNQDNVNLVDMRSEPIVRLTPHGIQTTGREYEFDVIVFAMGFEAFTGALDDANIRNADGVTPSQAWDRGPQTYLGLQTRGFPNLFFLTGAGSPSVLANMFVANQHHVDVLAELFTHMNEHGFSVVQPQQRDQDAWVAHSAEVAEKLIRREINQYMVKVTDDGTRVFIPYAGGFKAYYAKVKDEIDTGWPGFEFANANANANANA
D1-29_01943384hypothetical proteinATGCTGGGGAAGGTATTCGGGTCGCTCTACTCTCGCCGATGTTGTGGAGTCATCTGGGTCATTGCCCACAGCGAGATGGCACTGACCCGAAATGCCACGAAGCCGCTCTCGATTGCCCAGTTCATAGTCATCGCATTGACCGCTTTTGGTAGCACCGTAAGCGCTCATTCCAAGGATGCCATGTTGCGCGCCGGAGACGATGCTTACGGCCTGCCGCTGCGGCAAGCGGGCACTCTCCCTGTGATCTCGGCCCGCATCGGTTACGACGAAGGCCTTGTCGCTGAGGACGATATTGGACGTCAACGCTCACTCCCCCTCGAGTGTCCCTATCGAAGGGCATACTGCGAACAAATCAATGCGATATTTGAACTAGATGAACCATAGMLGKVFGSLYSRRCCGVIWVIAHSEMALTRNATKPLSIAQFIVIALTAFGSTVSAHSKDAMLRAGDDAYGLPLRQAGTLPVISARIGYDEGLVAEDDIGRQRSLPLECPYRRAYCEQINAIFELDEPNANANANANA
D1-29_01944177hypothetical proteinGTGGCGAACCGCGGGGCTAAATGGGTCTTCGACGCCCTCGAACACGTCATCCCGGTTTTCCCCTTCCCCATCATTTCCCCGCTGGCGAAGGTGAAGCTGTCCTTCTACAACCTGGGAGAATCTCGAATCCCGGCCAAGTTGGGGATTGACTCCTTTGCCCACTCACATGATACTTAGMANRGAKWVFDALEHVIPVFPFPIISPLAKVKLSFYNLGESRIPAKLGIDSFAHSHDTNANANANANA
D1-29_019451530gsiB_1COG0747Glutathione-binding protein GsiBATGACCCCGAAACACAAGCTCCCAGCGGTAGCGATTGCTGCCGCACTTGCCCTGTCCGGATGTGCACAGGGTGGTGAAACGGACCCTGCAGAAGGAATGGCGGCGGGCGACGCCGTCCTGCAGTTCGGCACGAGCACGACCCCGAACAATCTCGACCCCCACAGGACCTCGTTCCCCAGCGACTGCACTTACCTTTGTCCGGCCTACGACCGGCTGGTGCATGTCGATCCGGATGGCAGCCTGATCCCCGGACTCGCGGAGTCATGGGAGTTCAGTCAAGACGGCCTGAAGTTGACCTTTCACATTCGTAAGGGCGTGGCGTTCAAAGACGGCACCGTCCTGGACGGCGAGGCCGTGAAGGCGAGCCTGCTCCGGGCACGCGACCTCCCGGAATCTGCCGTGAAGAGTGACTTCGCCACGGTGGCCGACGTGACCGTGGACGATCCGCAGACGGTCACGCTAAGCCTGAGCGCTCCGAACGCGGCCATGCCCGCCATTCTCTCGGGTCTTGCTGGCGCCGTCATCAACCCGACCGCGCTGGCGATGGGCGTAAACCTCAGCGAAACATTGGACGGAGCCGGTGCATTCCGGTTCGTCTCGTACACAACCGGCAGCGAGCTCAAGTTGGAACGGAACCCCGATTACTGGGGCGAGGCGCCTGGGCTGGCCGGCATCGACTTCAAGATAGTCACGGATCCAGCTGCGCTCGCCAACGCACTGCTGGCGGGCCAAGTCGACACTGCTCTGGTGCTCTCGCAAAATATAGGTCCTTTCAAGGATAACGGGGACTTCACTGTCAAGGCGGAGACCGTGCTTTTCCAAACCGCTATGCTGGCGAACTTCAAAATTGCCGGGCTCACCGATGAGCGCGTGCGCCAGGCGCTCCTGCACGGTATCGACCGCGAGAGCATCTGCGAGACCCTCTATGCCGGGTTCTGCAAGGTGTCCGACCAGCCGTTCCCGCCCGGATATTTCGCATACGACGAGAGCCTCCCCGATGTCCTTTACCCCTATGACCCGGAGAAGGCCAAGGCCCTCCTAACCGAGGCAGGCGAGGCGGACCTGTCGATCACCGCGATTGTGCCCGGAGCGAATTACACCCAGCTCGCGCAGGTTATAAAGGAGCAGCTGAAGGAGATCGGGGTCAATATGGAGATTTTGCCCCTCGACAACTCGGCAATGGCGCAGAAGTTTATCGTCGACAAAACCGGTGAGATGGTCATCACCGGCGTCGTTGGTCGGTCGGACCCATCGCAGCTGTTCGCCTCACGCTTCTCTGAAAAAGGGGTCTTCAATCCGGGCGGATTCGTGACGCCCGAGCTGGATGAGCTGCTGGCCGACTCGCTCGCAGTGACCGATCCCGATGAGCGCAGGGCCGTCCTTCAGGCGGCGTCCCGGGAGGCCGCCGAATCAGCACTGTCCCTGATGCTGAACTTCCCGGCACGCATCTACGTGATGAAGAAGGGTGTTGACTTCGACGTCTATCTGAGCGGCCTGCAGGAGATCAGCGGAGCCACGAAGGTGGACTGAMTPKHKLPAVAIAAALALSGCAQGGETDPAEGMAAGDAVLQFGTSTTPNNLDPHRTSFPSDCTYLCPAYDRLVHVDPDGSLIPGLAESWEFSQDGLKLTFHIRKGVAFKDGTVLDGEAVKASLLRARDLPESAVKSDFATVADVTVDDPQTVTLSLSAPNAAMPAILSGLAGAVINPTALAMGVNLSETLDGAGAFRFVSYTTGSELKLERNPDYWGEAPGLAGIDFKIVTDPAALANALLAGQVDTALVLSQNIGPFKDNGDFTVKAETVLFQTAMLANFKIAGLTDERVRQALLHGIDRESICETLYAGFCKVSDQPFPPGYFAYDESLPDVLYPYDPEKAKALLTEAGEADLSITAIVPGANYTQLAQVIKEQLKEIGVNMEILPLDNSAMAQKFIVDKTGEMVITGVVGRSDPSQLFASRFSEKGVFNPGGFVTPELDELLADSLAVTDPDERRAVLQAASREAAESALSLMLNFPARIYVMKKGVDFDVYLSGLQEISGATKVDNANANANANA
D1-29_019461203hypothetical proteinGTGAAACGTTTTCTCATGAACATTGTGGCGACCGGCACCACCGCTCTGCTGCTCGCTGGATGTGCCTCTGCGGGCAGCGGACCTAGTGATGCGGACGCCGCAGATGAATCTGACGGCCCGATTAAGATCGCTATCGTGTATGGTCTCACCGGCGCATTCGCTGGAACGGGCAGCATCTTCATGACCGGCTTTGACGCTGCCGTCAAACACCTCAACGACGAAGGCGGCATCAAAGGGCGCCAGATTGAGGTAAAACTCCTCGACAGCAAGAGCGACCCGACGCACGCTGTCAGCGTGCTCACCGAACTCCTGGACTCCGGATACGACCCCGATGTCATCATCCCCGGTGGAGTTAGCAGTGAGGTCCTTGCCATGCTTCCGCTTGCAACGGACGCGAAGCTCTTCAGTGTCGCGCCCGGGACGAACTCGGCGATCAACGATCATGGTGCCTATCCCCACCACATCGGCAGTTTGACCCCGGCCAGCGCGAGTCTCTCAAGCGTGGCTAGGAGTTTCACCGACGACGGGATCAAGACGCTCGGAGTGGTTCTGCCTGGTGACGCGTTTGGCGATTCCCTGCTCAGCGGTATCACTGCGATCGCGAGCGATGCAGGCGTCAAGATCGTCCAGGTCGAGCGCCCGGATCCAGCCGCGCTCAACTTCGATGTTGAAGTGCAACGCGTGAAGTCTGCAGCGCCCGATGCGATGTTTTTCGACTTCGCGGGGCACGATTCCCTGGCACGGCTATTGAGCTCGCGCGTCGCAGTCGGAGCGACAGACATCCCGTTCTATGGAGGAACCGGAGCAGCAGCCGCGGTCCTGTCCAATCTCGCGGAACCCTCGGCACTGGAGAACTGCTCGCTCCCAGTCTACTCATTCACCGTCACACCAGACTCACCCGCTGACCACCTCAAGCCCTTGTATGCTGCCTTCGCCGATAGCGACGTCGGAATCCTGGCGGGGGCACTCGGTTGGGACGTCGTTCACCTCGCCGCGCTTGCCATCGAACGCACGGACGGTGACACGAGTGGAGATGCCCTTATCGCTGCAATACGGAACGAGCCTGTTCCCGGAGACTACCTGGCACTCTATCCCGGTGGCGTGACCTACAGCGAAGACGACGTTTTCCCGACTCCTGCGAAGGGTGCCTTCGGTCTTGTGGAGTGTGGCGCGAGCGTCAAAGACGGGCTTTGGGTGGAATAAMKRFLMNIVATGTTALLLAGCASAGSGPSDADAADESDGPIKIAIVYGLTGAFAGTGSIFMTGFDAAVKHLNDEGGIKGRQIEVKLLDSKSDPTHAVSVLTELLDSGYDPDVIIPGGVSSEVLAMLPLATDAKLFSVAPGTNSAINDHGAYPHHIGSLTPASASLSSVARSFTDDGIKTLGVVLPGDAFGDSLLSGITAIASDAGVKIVQVERPDPAALNFDVEVQRVKSAAPDAMFFDFAGHDSLARLLSSRVAVGATDIPFYGGTGAAAAVLSNLAEPSALENCSLPVYSFTVTPDSPADHLKPLYAAFADSDVGILAGALGWDVVHLAALAIERTDGDTSGDALIAAIRNEPVPGDYLALYPGGVTYSEDDVFPTPAKGAFGLVECGASVKDGLWVEPGPT0020765_5976DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-29_019471650kstD_13-oxosteroid 1-dehydrogenaseATGAAACAGTTCTACGACGTCGTCGTTCTGGGATCGGGAGCGGCGGGATTGACAGCAGCATTGGCCTCGGCCGTCGACGGCGCGACGGTAGCCGTCTACGAGAAGGCTGCGCTGCTCGGCGGAACGACCGCGTTGTCGGGCGCTGGGATTTGGATCCCCGACAATGGGCCCGCGCGGGAACTTGGAATCGAGGATTCGCACGAGAGCGGTCTTGAATATCTGCTGAGTCTTTCGAAGGGGATGATCCTCGAGGAACTGGCCGAAGCTCTCATTCAGGGTGGGCCTCGATTCGTCGAGTTCCTCGAAGAGCACACTGAGCTGCGAATGCAGGTTGTCGAAGGATACCCCGATTATCACCCCGAACAGCCAGGGGGACTTCCCGGCGGTGGACGAACACTGGAACCCGGCCTTGTCTCTACAAAAGGATTTGAGGATTGGGCGGTCCGTATCAGTGGCGACGTGAAGCGGATCGTCCTCGCGGAGATGCCACTAGGAGGGAGCTCTGGTGTGATTCCAGCGTCGGCAAATGCAGAACGGGAGGAAGGCAGTCTTGAGGGGCTCGGCCGCGCCCTGATCATTGGTCTTCTGCGTTCGTGCCTTGATCTGGGCGTCGACGTCGTCACCGAGGCCAGAGGTTTGCGCCTCTTGACTGAGCGAAGCGCCGTGACTGGAGTCGAGATAGAAACACCGGACGGTGTGGCGTCGGTACAGGCTGGCGCTGTCGTCCTGGCCACTGGCGGCTTCGAATGTGATCCTGCGCTGGTGCGCGACTTCCTTCGCGGCCCGATCTCGCGCACTGTAGGCGCCCCTTCGAATACGGGCGATGGCTTACGGATGGCGATGCGGGTGGGTGCCCAACTTGGCAATATGCGCGAGGCCTGGTGGGCCCCAGTCATCTCTCTACCAGGAGTTCGCCGCGACGGCGGCCGGAATGGTCTGCTCACAGCACGGGAGCGCGCGCTCCCCGGATCGCTGATGATCAACCGCCAGGGACGTCGGTTCGCTAACGAGGCCGCCAACTACAATGCCTTTGGCGGTGCGTACCATGAACTTGACGCCTCGAGGTTCGACTATCTGAACCTTCCAAGCTACCTCATCTTCGATCAGTCGGTGGTCGACCGATTCGGAGTATTCGGTGGCGGTCCAGGTGGCGGTGTGCCCGATTGGGTGACTCGTGCAGGCTCTCTCAACGATCTCGCCGAGGCGCTTGGTGTGCCGGCTGACAGCCTGCGGGAAACCGTGGCGCGGTTCAACGACCATGCGAGAACCGGCGTGGACCCAGACTTTGGTCGGGGCGAGAGCGCTTATGACCGGTTTCCTGGCGGTCGACTCCTGAACCCGGATTCCGTTTTCTCCACCTTGGGGCCGGTGGAGATAGGGCCGTTCTACGGCGTCGAAGTTGAGTCTTCGGCGCTGGGCACAAAAGGCGGTCCGCGAACCGATTCCGTCGGCCATGTGCTCGATGTCGATGGCGACATTATTCGGGGGCTGTACGCCGCAGGCAACGTCATGGCGAACCCGACAGGGATGGTCTACGGCGGGGCGGGGGCGACGCTCGCAGTCGCGGGTGTGTGGGGTATGAATGCAGGCCGCGCGGCAGCCGCTGACACCATGCTTGAGACAACTGGCGAAAGGAACGGCCCACGATGAMKQFYDVVVLGSGAAGLTAALASAVDGATVAVYEKAALLGGTTALSGAGIWIPDNGPARELGIEDSHESGLEYLLSLSKGMILEELAEALIQGGPRFVEFLEEHTELRMQVVEGYPDYHPEQPGGLPGGGRTLEPGLVSTKGFEDWAVRISGDVKRIVLAEMPLGGSSGVIPASANAEREEGSLEGLGRALIIGLLRSCLDLGVDVVTEARGLRLLTERSAVTGVEIETPDGVASVQAGAVVLATGGFECDPALVRDFLRGPISRTVGAPSNTGDGLRMAMRVGAQLGNMREAWWAPVISLPGVRRDGGRNGLLTARERALPGSLMINRQGRRFANEAANYNAFGGAYHELDASRFDYLNLPSYLIFDQSVVDRFGVFGGGPGGGVPDWVTRAGSLNDLAEALGVPADSLRETVARFNDHARTGVDPDFGRGESAYDRFPGGRLLNPDSVFSTLGPVEIGPFYGVEVESSALGTKGGPRTDSVGHVLDVDGDIIRGLYAAGNVMANPTGMVYGGAGATLAVAGVWGMNAGRAAAADTMLETTGERNGPRPGPT0006680_548DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
D1-29_01948858livH_1COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGACGATCGCTATCCTCGCTGGATTGTCGACGGGCGCGATCTATGCGCTGATTGCCATCGGGTACAACATCACCCTCACATCATCGGGGGTACTCAATTTTGCCTTTGCGAATATTCTTGTCTTCGGGGGATTCGTTGCCATAACGACGGTCGGGCTGGGTCTGTCCCTGCCGGTCACGCTGGTTATTTGTGCGGTGGTCTGCGCTCTAATGGCAGCTATCGTCCAGCTCATCGCTGTGCGATATCTGCCGGCTGGTAGCCATGCGGAACTCATCACCACCTTGGGGGCCGCGACCATCCTCACTGCAATCACGGCCATCATCTGGGGAACCGATCCGCAACGGCTCGTCCTCTTCGCGCAGGAGCCCATCGAACTCCTCGGAGGCAGGGTGCTCCCGAACACACTGATCCTGATCGCGCTTCCCATCGTCTTTGGGTTGACCATGCATCTGCTCATGCACGGTACGAGGTTCGGCCAGTCGAGTCGCGCCCAAGCCTTCGACCGGGAGGCAACGATGCTTCGCGGCGTCAATGTGCTCTGGCTGTCGGTCGGTTCCTTCGCCATCGCCGGCGTATTCGCAGGACTCGTCGGACCCTTCGTGCTCGTCTCAACGTCAGCGAGTCCTTACCTGGCGCTTAGCCTTGCGCTGAAAGGCTTTGTCGTACTGGCGCTCGGCGGGCTGGGCAGCCAACTAGGGGCAGTGATAGCCGGGTTCGCAATCGGCCTCATTGAGGCGCTGGTGGCACTGTTCGTCGGTCCGTTTTTCGGCGACTACGCGGTGTTTGTTGTCTTCGTGCTCGTGCTCCTGTTCCGCTCGGGCGGGCTGTTCGGCAATCGGAATCTGAGGCTCGTCTAAMTIAILAGLSTGAIYALIAIGYNITLTSSGVLNFAFANILVFGGFVAITTVGLGLSLPVTLVICAVVCALMAAIVQLIAVRYLPAGSHAELITTLGAATILTAITAIIWGTDPQRLVLFAQEPIELLGGRVLPNTLILIALPIVFGLTMHLLMHGTRFGQSSRAQAFDREATMLRGVNVLWLSVGSFAIAGVFAGLVGPFVLVSTSASPYLALSLALKGFVVLALGGLGSQLGAVIAGFAIGLIEALVALFVGPFFGDYAVFVVFVLVLLFRSGGLFGNRNLRLVPGPT0020770_9359DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-29_019491863btuD_6Vitamin B12 import ATP-binding protein BtuDATGGCAACATATCCCATCACCGCGGCAAGCCCGATTCGTCCCTTCCTGCTTCCCATTCTTTGGATCGGGATCACTGTACTTGTTGCCATCGCACCCCTCCTCGGGCTTCCAAACTTTTGGTCCCGACAGGTCCTTCTGATCTCCACGATGGCCCTTCTTGTCATCGGCCTGAACCTTAACCTTGGCTGGGCGGGCGAGCTGAACATGGGGCTTCCCGCTATGTACGCGGTGGGGGCCTACCTGACCGCCTATTTGGCCACCCGAGTCATCAATGACATTGCGCTCCTGCTGGCTCTTTCGGCGGGCGTCGCAGTCGTCGTCGGGCTTATAGCCGGCGCGCCGGGTATCCGGCTCGGCGGATGGATGCTAGCCGTGTGCTCGTTCCTTCTCGTCTTGCTCATCCCCAATACGCTCCAGGTGATCCCATACGAAATCCTCGGCGGACAATCCGGCTTTACCGGCATTCCGAGACCGATGCTCTTCGGAAACAAACTCGACGGAAGTGCGTTCTTCGTAGTTGTCGTCGTTGTCACCTCCACGTGGTTCGCGGTCTACCGCAGCGCTGTGAAGTCGCAGTTCGGCAACTGCCTCATGATCCTGCAGCAAGGTTCCGTGTTGGCTCCGTCACTGGGGATGTCGCGCTACCGGCTCAAACTGATGACGTATGCTTTTGCGTCCCTTCCAGTCGGGATGGCCGGCGCATTCTTCGCCTATACAGATCGCTTCATTGCCCCAGAAAGCGTTGGCCTGCACCTCATCATCAATGTGCTGGTTGCATCGATCGTCGCTGGCAGGCGCAGCATCTATGCAATCTTCATTGGAGTGGCGTTCGTGCAGATTATCAGCACTCAATCGACACGCTTCGGCGAGTTCGGTGAAGTGGCATTCGGCGCGTTTCTCGTCATAGGAGGGTTGGCATTTGGCTCAGGCATGTCCGGGCTGGGCAAGAAAATCGCCCGTCGCTTCACGCGTAACAAGTCGCCTGCATCCGTGGTCTCCCCTGGCGCAGGCCGATCACTCGACCTCCCCGCCCTGCCCGGCAAGGATCTCAGGCTCGAGTCCGTATCCAAGTCTTTCGGCGGGGTGGAAGCGGTGAGTGAGGCCACCTTTATCGCCGGCGCCGGTCAGATCACTGCATTGATTGGACCGAACGGCTCGGGGAAGACAACGACTCTCAACATCATCAACGGTTTCGAAAGGCCGACCAGTGGGAAAGTCTTTCTCGGAGATGAGGACGTCACAACCCTGTCCGCCATGGAAGTGGCACGTCGCGGTGTTCGGCGCACCTTTCAGACGCCAGCGATCCCCGGCGACCTTTCGGTGCTGGACGTCGTCGCGTCGGGTCGCATCCATACGCACGATGCGTCGCTCTTCGCGACTATTTTCCGGCTGCCTTCATACCGACGGAGTATCAGGGAGAATCGCGCGGCAGCCTCGCGCTGGCTCGACATCCTCGGACTAGGCAATGTAGCCCACGAGTCGGCGGCTGAGATGTCGCTCGGGACCCGCCGCATGATTGAACTCGCTCGCGCCCTGTGCGCCAGCCCGTCTGTCGTGCTATTGGACGAGGTCGCGTCCGGCCTCGATCGGGACGAAGTCCAGGAACTCACAGCAGTACTGCGGAGAGTGAGGGATGCGGGAGCGACTGTCATTCTCGTTGAACACAACTTCAGTCTTGTTCAATCCCTTGCGGACTACGTCGTGGTCCTTGCGGAAGGGAGGGTACTGACGGATGGCGATCCGCGCACGGTTGCCGAGCATCCTGAAGTGCTGGAGCGGTTCCTCGGGGTGGGTGCTGGGGTTACCGGAACGACTGTTGTTGTCGACGGCATAGAGGTTCCAGCGGAAGCAGTTCGACCATGAMATYPITAASPIRPFLLPILWIGITVLVAIAPLLGLPNFWSRQVLLISTMALLVIGLNLNLGWAGELNMGLPAMYAVGAYLTAYLATRVINDIALLLALSAGVAVVVGLIAGAPGIRLGGWMLAVCSFLLVLLIPNTLQVIPYEILGGQSGFTGIPRPMLFGNKLDGSAFFVVVVVVTSTWFAVYRSAVKSQFGNCLMILQQGSVLAPSLGMSRYRLKLMTYAFASLPVGMAGAFFAYTDRFIAPESVGLHLIINVLVASIVAGRRSIYAIFIGVAFVQIISTQSTRFGEFGEVAFGAFLVIGGLAFGSGMSGLGKKIARRFTRNKSPASVVSPGAGRSLDLPALPGKDLRLESVSKSFGGVEAVSEATFIAGAGQITALIGPNGSGKTTTLNIINGFERPTSGKVFLGDEDVTTLSAMEVARRGVRRTFQTPAIPGDLSVLDVVASGRIHTHDASLFATIFRLPSYRRSIRENRAAASRWLDILGLGNVAHESAAEMSLGTRRMIELARALCASPSVVLLDEVASGLDRDEVQELTAVLRRVRDAGATVILVEHNFSLVQSLADYVVVLAEGRVLTDGDPRTVAEHPEVLERFLGVGAGVTGTTVVVDGIEVPAEAVRPPGPT0020775_760DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-29_01950750livF_2COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGCACCATTCTGAACGTGTCCAGCCTGGCCACGGGCTATGGGGACCTGCGCGTAGTCTGGGATGTTAGCTTTTCCGTCCAGCAAGGGGAAGTGCTCGCCCTCCTCGGGCGCAACGGGGCAGGAAAGTCAACCATCCTTCGCACGGTGATGGGGCTTAATCCGGTGCAGTCGGGTCGGATCGAATATGAGGGCAAGGATCTGGGCCGGTCACCTGTCTACGATCGAGTGAAACAGGGTATCGGCTTTGTGCAAGAGGGGAAGCGCCTCATCGGAGACATGACCGTCGAGGAGAATCTGAAACTCGGAGCCCACTCCCGCCGCTGGACCCGCGCCGATCTTGCCCCGCGGCTTGAGTGGGCCTACGAGATGTTCCCCATTCTTCGCGATCGGCGAACGTCTCTTGCTGCGATGCTTTCGGGCGGTCAGCAGCAGATGCTTGCCATCGCCCAGGCGCTCATGCCCGAACCACGTCTTCTCCTCGTGGACGAGCCATCCGCGGGGCTGGCTCCCGCCGTTGTGGGAGATGTCCTGGCGGGCCTGGCCCGCCTGAGCGACAGCGGAATGTCGATCGTGCTGGTGGAGCAGTCCGTTGACTTCGCGCTCCAGTTGGCCACGCACGTGGTCGCCGTTGACCTTGGGCATGTGGTCTATTTCAGCCCCGCAGGTGATCCCGGCGTGAGGGAGGCCCTACGCGAGGCTTACCTAGGGCAGACCGAAGTCTCGCAGCACCCCTCCATACGACCATGAMSTILNVSSLATGYGDLRVVWDVSFSVQQGEVLALLGRNGAGKSTILRTVMGLNPVQSGRIEYEGKDLGRSPVYDRVKQGIGFVQEGKRLIGDMTVEENLKLGAHSRRWTRADLAPRLEWAYEMFPILRDRRTSLAAMLSGGQQQMLAIAQALMPEPRLLLVDEPSAGLAPAVVGDVLAGLARLSDSGMSIVLVEQSVDFALQLATHVVAVDLGHVVYFSPAGDPGVREALREAYLGQTEVSQHPSIRPPGPT0020785_2643DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-29_019511869hypothetical proteinATGACAAATACTATGCAGGCGCCACTCACAGGACTGACAGATCGGGAAACCGCTGACATCGTTGCGGAATGGGTAGCTGACTTCGCGTCCGCCCTTGAGCGAGGTTCTGTGGCCGAACTGGAAGTGCTCTTCACCGAGGACGCAACATGGCGTGACTTCATGGCGTTTCCCTGGGATTTTATGAACCGCATCGATCGCGACGTGCTTGTTCCTGAACTGATCCGACTCGCTCATGACTGGAACGCTCGGAACTTCGAGGCCAGCGCCGATCAGGCCCCTGTGGTTAGCGGAAATGTGATCAACGCATTTTTTGACTTTACAACAAAAGACCGGATCGACCGTGGCTACGTTTGCCTGGTGCAGGGCGAAGAAGGGCTCGTCGCAACAACCATGCAGACACAGGTGGTGGGCTTGCAGGACCACCCGGAAAGGATAGGTTCTAATCGTCCTGAGGGCAAGGTGTACGGTGTTGTGCCGGATCGCACGCGGTGGAGTAGCGAGCGTAAGAAGGCCGAAGCCTTCGAGGACAACGACCCCGCAGTGCTCGTGCTCGGCGCGGGACATAACGGACTGTCGGTCGCGGCTCGCCTCGGTGCCCTGGACGTGCCGACGCTGATCATTGATCGAGAGGCGCGTGTGGGCGATCAATGGCGCAAGCGTTACGCAGCACTCGCGCTGCACAGCAGTGTCTTCGGTGACCACCTTCCCTACATGCCGATGCCGTCGACCTGGACCGCCCACACCCCAAAGGACAAGTGGGCCGACTGGTTGGAGTCATATGCGAAGTTGCTTGATCTCAACGTATGGACGGGGACTGAGTATCTCAGCGGGGAATATGACGAGGAGGCCGGGCACTGGAATATTCGTGTCCGACGCGAAGACGGCTCGATTCGTGAATTGCGCCCGCGGCACTTCTTTGTTGCCGGCGGCATGTTTGCTGCACCGAAGATACCGCAGGTAAAAGGGCTTGACAGTTTCGCGGGAGAGGTGCTGCATTCCGACTCATTCCAGGACGGAGCGAATTTCGCTGGGCGGAAGGCGCTGGTCGTCGGCGCAGGAGTCAGCGGACATGAATTGGCGCACGACCTGTGGGAGCACCGCGCGGATGTCACCATTCTCCAGCGCAGTGCGACCTATGTTATCTCCTATGAGGCCTACCACAAGTTCTGGAACTCCCTCTTTTCCGAGGACATGCCTTACTCAGCGGAGTTCGCGGACCAGATCGCCTACGCGGTGCCGAATGCACGCACAGACCCGATCAATAAGAAGCTGGTGAAGGATGCCGCGGAGTTTGACAATGCGCTTCATACCCGACTGGAGGCGGCGGGGTTCAAACTTGAGTGGGGACCGGACGGCACCGGAATCCTCGGTGCGCACCAGTCCGGCCGCGACAGCTACCAGATTGACATCGGGGCGTCCCAACTCGTCGCAGACGGAAAAGTTCACCTCAAGCAAGGCGTTGAGCTGGCAGAGGTAAGAGGAAACACCGCTGTCTTCAGCGACGGATCTGAGCTTGACGTCGATCTCATCGTTTTCGCCACGGGCTATCACCAGTTCTGGGGGCACATTAAGCCTACGCTCGGCTCCGCTGCGTCGAAGATCGATAAGGCATATGGCCGCGCAGCCGACGGCGAATACGCAAATACCTGGCGGAGGTCTGCGCAGCCCGGCCTCTGGTTCGGCAGCGGGTTCATCCGGATGGCCCGGTTCTATTCGACGTTCAGTGCCCTCCTGATCAAAGCAATCGAAGAAGGAATCGAGCCCACGGATCCGACCAAGGCCGAAACCGGTAGCAAGCACGTTGGGCCTGGCGGCGGTGGCCTCGTAAGCGTCGCTGACGACAACCTTGCTGCCATCATCCATGACTAAMTNTMQAPLTGLTDRETADIVAEWVADFASALERGSVAELEVLFTEDATWRDFMAFPWDFMNRIDRDVLVPELIRLAHDWNARNFEASADQAPVVSGNVINAFFDFTTKDRIDRGYVCLVQGEEGLVATTMQTQVVGLQDHPERIGSNRPEGKVYGVVPDRTRWSSERKKAEAFEDNDPAVLVLGAGHNGLSVAARLGALDVPTLIIDREARVGDQWRKRYAALALHSSVFGDHLPYMPMPSTWTAHTPKDKWADWLESYAKLLDLNVWTGTEYLSGEYDEEAGHWNIRVRREDGSIRELRPRHFFVAGGMFAAPKIPQVKGLDSFAGEVLHSDSFQDGANFAGRKALVVGAGVSGHELAHDLWEHRADVTILQRSATYVISYEAYHKFWNSLFSEDMPYSAEFADQIAYAVPNARTDPINKKLVKDAAEFDNALHTRLEAAGFKLEWGPDGTGILGAHQSGRDSYQIDIGASQLVADGKVHLKQGVELAEVRGNTAVFSDGSELDVDLIVFATGYHQFWGHIKPTLGSAASKIDKAYGRAADGEYANTWRRSAQPGLWFGSGFIRMARFYSTFSALLIKAIEEGIEPTDPTKAETGSKHVGPGGGGLVSVADDNLAAIIHDPGPT0013865_166DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
D1-29_019521986aes_1Acetyl esteraseGTGGCCAATAACACCACACGCGGACCGCTTCAGGCGGACGCGGCTCGTTTCTTGAAACAGTTCGGAGCAGCCTTCACCGTGCCTCCCGAAGTGTTCGACGATGTGGTCGCCACTGCGCGCTACTTGGAGGGGGAGCGTGATCGGCTGGGAGCAGTCGCCGGAGCCAGCCTTCTCGGCGAACCGGAGCGAGCCGTCATTACAGCGGATCACACACTCCGCGACGGCGTCGCGGTCCGCAGCTATCTTCCGCGAGGGGACTCAGAGGTCCCGCGCCCGGTCGCCCTTTTCATCCATGGCGGTGGCTGGGTTACCGGGAGCATCGACCAGCACGATACAACCTGTCGCATTCTTGCGGTCGCGGCTGACATGGTTGTCGTCAACGTGGGATACCGGCTTGCGCCTGAACACCCATACCCCGGACCTCTGGACGACTGTGACCGAGCCCTCCAGTGGACGCGATCCGTTGCAGGTTCCCTGTTCGGGGCCGACCCATCGCGGATCGCTGTAGTGGGCGCCAGTTCCGGTGGCAATTTGGCGGCTGCACTCGCGATGCGAGCTAGGGACCGGCGTCTGAATGAGATCGACCTGCAGGTTCTTCTCTACCCTGCCCTGGATTCACAGATGTCCAGTGAATCATACGAGCCGGAGGTGAATGGTCGCGACTACTTCATTAACGCTAACCACATGCGTTGGTATTGGGATCTCTATCGAGCCGGCGGTGCGGACGACGATGACCCGTACTTCTCCCCCCTGGCCTCGACGGACTTGTCAGGCCTCCCTGCAGCAGTGATAGTCAGCGCAGAATTCGATCTGTTGCGCGATGACGCCATCAAATACGACAGCCGACTTCGGGCTGCGGGAGTCGCTTCTGAAAGACGGCATCACCAATCGATCCACGGATTTCTCGCGCTCTTTGACTTCGTCGCCGAGGCATATCCGGAAGTGGGCGAGCTAGGACGGGTGATGCGCGCGCGGCTCGACAAGATTGAGCGCGAGCGGCCCGTGAACACAATTACGTTGCCGCCGGCGATCGACGTTGCCGCGCGCGTGGAATCGGGAACGCTGGAGTCCCTGGACTTGCTTGCCCGATGGAATTCGACGAACGTCGAGACCATCCGCGCGAGTTATGAGAAGATTCCGCGACGAGCGGTTCCAGCCTCCGGGGACGTGTCGCGTGAAGACGGCATCGTCGTAGCCGGGGGCGGTCGGACGATTCCGGTCCGCTGGTACCGACCTCGGGACGTGAGTGGCCCGCTGCCGGTCATTGTCTATATACACGGCGGCGCGTACATCATGGGTACCTTGGACGAGAACGACGAACGACTGGAGGAGTTCGTGCGTCGGTTAGGGTGCGCAGTGGTCTCCGTCGACTACAGGCTCGCGCCGGAGAATCCCTACCCGGCGGGCCTCGATGACGTCGAGGCCGTATGGAGGGCACTTTCGTCAGCTCACGATCAGTACGACGTCGATCCCAATCGTATGGTAGTCGCCGGCTCAAGCGCTGGTGCTGGGCTCGCCGCATCTCTTTGCATTCGCCTGAAGGAATGTAACGAGCCACAGCCCCTGCTGCAGGTACTGGTCTACCCGATGTTGGACGATCGCGAATGGCCCAGCATCGCTATGCTCGAGGGCGGGCCCGGACACTGGGGGCTTTGGCAGATCCGGCAGGAGAGGCTTTCTTGGGAGGCGTACCTCGGTGACGCGGGAGTTCACCGTGAGCGGCTCGCGGCGTCGGCCATTCCCGGTCGGGCCGATCCCAAGATGCTCGTCGGTCTCGCGCCCGCGTTCATCGGCATTGGCGATGTCGACGCGCTTATCGATTCGAACCTACGGTTCGCGGCTAATTTGATTGCAGCGGGTGTTTCGACTGAGTTGCACACATATCCCGGCGTGATTCACGGTGGATTCCTGCCGCACCCTCGTACTCAGATGACCCGGAAATTCCTGGCCGACGTGTACGAGGCGCTCGCGCGAGCGCTCCGCTAAMANNTTRGPLQADAARFLKQFGAAFTVPPEVFDDVVATARYLEGERDRLGAVAGASLLGEPERAVITADHTLRDGVAVRSYLPRGDSEVPRPVALFIHGGGWVTGSIDQHDTTCRILAVAADMVVVNVGYRLAPEHPYPGPLDDCDRALQWTRSVAGSLFGADPSRIAVVGASSGGNLAAALAMRARDRRLNEIDLQVLLYPALDSQMSSESYEPEVNGRDYFINANHMRWYWDLYRAGGADDDDPYFSPLASTDLSGLPAAVIVSAEFDLLRDDAIKYDSRLRAAGVASERRHHQSIHGFLALFDFVAEAYPEVGELGRVMRARLDKIERERPVNTITLPPAIDVAARVESGTLESLDLLARWNSTNVETIRASYEKIPRRAVPASGDVSREDGIVVAGGGRTIPVRWYRPRDVSGPLPVIVYIHGGAYIMGTLDENDERLEEFVRRLGCAVVSVDYRLAPENPYPAGLDDVEAVWRALSSAHDQYDVDPNRMVVAGSSAGAGLAASLCIRLKECNEPQPLLQVLVYPMLDDREWPSIAMLEGGPGHWGLWQIRQERLSWEAYLGDAGVHRERLAASAIPGRADPKMLVGLAPAFIGIGDVDALIDSNLRFAANLIAAGVSTELHTYPGVIHGGFLPHPRTQMTRKFLADVYEALARALRNANANANANA
D1-29_019531662mhpACOG06543-(3-hydroxy-phenyl)propionate/3-hydroxycinnamic acid hydroxylaseGTGTCCGAAAACTTCGACTTAGATGATGCGATTGACGTCGCCGTGGTGGGAGCGGGTCCGACGGGTCTGATGCTCGCCAATTTGCTCGGCTCACACGGTCTCAAAGTCGCAGTATTCGAGGCTGGCGCTGAGCTCATCGATTTCCCCCGCGGGGTCGGTATCGATGACGAGAGCCTGCGAACATTCCAGTCGGCTGGTCTGGTGAGCAAGGTGCTCCCGCACACGATTGCAAATCAGTTGTTGGTCTTCATCGACGCCAAGGGCCGAGACCTCGCCCGGATCGCGCCCCCGTCGGCCGAGTTTGGATGGCCTCGCCGCAACGGTTTTGTGCAGCCTCTCGCCGACCGCGTTCTCCTGGACGGACTCGAACGCTACGACGCCGTGGACATCAACTGGTCCGCAGAGGTGACCGGATTCATCCAAGATGCGGATGGCGTCGACTTGACGGTCTCGTCACCCGGTGGGGAACGCAGTGTGCGGGCCCGCTACGTCGTCGGTGCAGACGGCGGCAGAAGTCAGACCCGCAAGACTCTTGGATTCGACTTTGTCGGCAGTTCATCCACAGCTGATTGGTTCGTTGTCGATATCCGCAACGACCCCTTGGGTCAGCCTGGCGCCTACGTGTGTGCAGACCCGCGCCGGCCCTATGCATCGATAAGCATCCCTCACGGCATTCGGCGCTTCGAGTTCATGTTGAAGCCCGGAGAGACCGAAGAGATTGCGATGACCGACGAGTTCCTCGCGCGCCTGCTCGAGCCTCTCGTGCCGTCGACAGCCAAGGTGGAGATTATTCGTCGCCGCGTCTACACGCACCACTCCAGGATCGCCACTCATTTCCGATCTGGCCGCGTCTTCCTTATCGGCGATGCGGCCCACGTGATGCCGGTGTGGCAAGGGCAAGGGTACAACAGCGGTATCCGTGACTCCCTGAACCTGTCCTGGAAGCTCGTGATGGTGCTCCGCGGCCTGGCCGGGGACAAGCTGCTTGACAGTTACGAGGCGGAGCGTCGGGAACACGTCCAGGCCATGACAAACCTCTCCACCCAGGTCGGTCGTGTTGTGTCCATGACGAATCGGCTCGGTGCCGCGCTGCGGGACGCGTTCTTCCGGGGAATCTCGATGCTGCCGAGTGCCAAGAATTACATCGTGCAGATGCGGTTCAAGCCCATGCCGACCATGTCACAGGGGGCGCTGACTACGATCGGCTCGCAGGGCGACCCGGCAGCCGTCGGGCGGCTCTTCATCCAGCCCACCGTGTGTACGCTCGATTCGGTATCAATCAAACTTGACGACGCCGTCGGACCATGGTTCGCGCTCATTGCCTGGAACAATGACCCGTGCGCCATCCTCGACGAGGACGCTCGGCAACGACTCGAGCGGGCAGGGGTTCGCCTGGTCGCGGCCCGCCCGGCTTCTCAGCTGCACTGGGTAGGTCCTGCGCCGGATGACTCGGTTCTCGTCATGGGCGATGTGGATGGGTCGCTGAAACGCTGGTTCGATTCACGGCCGGAATCGGTCATTCTCCTCCGTCCTGACCGAATTGTCGCGGGAGCGAGTGCCGCTCACGCCGCATCGGAGATGGTCCGGGGATTCGATCATGCCATTGGTGCTCCGGCAGTAGTTGCCGTGGCAACATCAGCACACCCATTACAAGGAGTTTGAMSENFDLDDAIDVAVVGAGPTGLMLANLLGSHGLKVAVFEAGAELIDFPRGVGIDDESLRTFQSAGLVSKVLPHTIANQLLVFIDAKGRDLARIAPPSAEFGWPRRNGFVQPLADRVLLDGLERYDAVDINWSAEVTGFIQDADGVDLTVSSPGGERSVRARYVVGADGGRSQTRKTLGFDFVGSSSTADWFVVDIRNDPLGQPGAYVCADPRRPYASISIPHGIRRFEFMLKPGETEEIAMTDEFLARLLEPLVPSTAKVEIIRRRVYTHHSRIATHFRSGRVFLIGDAAHVMPVWQGQGYNSGIRDSLNLSWKLVMVLRGLAGDKLLDSYEAERREHVQAMTNLSTQVGRVVSMTNRLGAALRDAFFRGISMLPSAKNYIVQMRFKPMPTMSQGALTTIGSQGDPAAVGRLFIQPTVCTLDSVSIKLDDAVGPWFALIAWNNDPCAILDEDARQRLERAGVRLVAARPASQLHWVGPAPDDSVLVMGDVDGSLKRWFDSRPESVILLRPDRIVAGASAAHAASEMVRGFDHAIGAPAVVAVATSAHPLQGVPGPT0019755_676DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019755-mhpA-K05712NANA
D1-29_01954852bphDCOG05962-hydroxy-6-oxo-6-phenylhexa-2,4-dienoate hydrolaseATGACCCTCTGGACCGAACTCACCGGGCTCGACTACTCGATCCGCCACGTTACTGTCGGGCCGTGGTCGACCCGCGTTCTTGAAAGCGGAGCGGGCACGCCGTTCATTCTCATGCATGGAACCGGTGGGCACCTCGAAGCTTTCACGAAGAACATCCGCGCCTTGGCAGCGAACTACCGGGTCATCGCTTATGACTACCCCGGACATGGATGGACCACCACCACGCAGAGCGACTTGGAGATTGACGACTACATCGAGCACCTTGTCGGCCTCATGGATGCGCTCGATATAGAAAGCGCCCACCTCAGTGGAGAATCGCTCGGTGGCTGGGTGGCTGTAAAGTTTGCCGCTCGGTATCCCGACCGCGTAAAGAAGCTTGTGCTCAATACGCCGGGAGGAACAATGGCTTCCCCTGATGTCATGGAGCGCGTTCGATCGCTCAGTCAGGCAGCGGCCGATGACCCAAGTAAGGACAAAATACGAACCCGGCTCGAATGGCTGATGGCCGACCCGGACTCGGTGACTGAGGAGCTTATTGCCGTCCGACGGGCGGTATACAGCCGGCCGGGATTCCCGGATTCGATGAGGCATATTCTCTGCCTTCAAGACCCGGAAATCCGGCAACGGAACTTGGTCTCCGATGAGGAACTCGCCGCAGTTGTCTCAGCCGCTCTCGTAATTTGGACGAGCGATGACCCCTCAGGCCCTGCAGGAGCCGGCATGGACATGGCAAACCGGATGCCAGCCGGCGAGTTCCAACTGATCGAGCAAGCCGGACACTGGCCGCAGTGGGAGCAGCAGGCGCTTTTTGACGCCACTGTACTTGAGTTTCTGGGACGTGCAGAGCAGTGAMTLWTELTGLDYSIRHVTVGPWSTRVLESGAGTPFILMHGTGGHLEAFTKNIRALAANYRVIAYDYPGHGWTTTTQSDLEIDDYIEHLVGLMDALDIESAHLSGESLGGWVAVKFAARYPDRVKKLVLNTPGGTMASPDVMERVRSLSQAAADDPSKDKIRTRLEWLMADPDSVTEELIAVRRAVYSRPGFPDSMRHILCLQDPEIRQRNLVSDEELAAVVSAALVIWTSDDPSGPAGAGMDMANRMPAGEFQLIEQAGHWPQWEQQALFDATVLEFLGRAEQPGPT0019765_452DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019765-mhpC-K05714NANA
D1-29_01955804mhpD2-keto-4-pentenoate hydrataseGTGATTGCGACTGAGGCGATTGAGGCTGCGGCTGACAGAATCGAGGCCGCTGCAATTAGCGGGATCGCGTGCGAGCCTGTTTCGGATCTCCTGGGGCATCATGATATCGACGCTGCGTACCGAACCCAGCGTCGATTGACTGAACGCCGCCTTGCCCGCGGTACCCGCCTAGTTGGACGGAAGATCGGCCTGACGTCTGAGGCGGTTCAGAGGCAGATCGGAGTCGCGAGACCTGACTTCGGGGTGCTCTTCGACGACATGAGATACGGTGACGGCGACGAGATCCCGATGGCGCGGCTCCTGCAGCCGAAAGCAGAGGCAGAGATCGCCTTTCTGCTCGAAGAGGACATTCTTGATGCCAGCGACGCCGTCGCCGTACGTGCCGCTGTAGCACTGGCCTTTCCCGCACTCGAAATCGTCGACAGCCGCATTGCCGACTGGCGCATCGGCATCACAGACACCATCGCTGACAACGCTTCATCCGGCGTCTTCGTGATCGGCGCGAACGGTTTTCCGCTCGACGCCTTTGAGCCCGCTGGCGTCGTGATGAGAATGCGCCGCGGCGACACGGTTGTCTCGGAGGGCACCGGCCGTGACTGTCTAGGGGATCCGCTCAACGCCCTGACATGGCTGGCGGCAACGGCCATCGAGGTCGGTTCCCCGCTCCGTGCCGGTGATTTCGTGCTTTCCGGTGCGCTGGGACCCATGGTCACTGTCTCCCCGGGGGACGAATTCAGCGCCTCGATAGAACCGCTCGGAAGTGTGAGCATCCGATTCTCAGAGAAGGAAGAAGAACACGTATGAMIATEAIEAAADRIEAAAISGIACEPVSDLLGHHDIDAAYRTQRRLTERRLARGTRLVGRKIGLTSEAVQRQIGVARPDFGVLFDDMRYGDGDEIPMARLLQPKAEAEIAFLLEEDILDASDAVAVRAAVALAFPALEIVDSRIADWRIGITDTIADNASSGVFVIGANGFPLDAFEPAGVVMRMRRGDTVVSEGTGRDCLGDPLNALTWLAATAIEVGSPLRAGDFVLSGALGPMVTVSPGDEFSASIEPLGSVSIRFSEKEEEHVPGPT0006005_245DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0006005-mhpD-K02554NANA
D1-29_01956939dmpFAcetaldehyde dehydrogenaseATGACGAACACAATGGGAGTCGCGATCATCGGCTCTGGAAACATCGGCACCGACTTGATGTTCAAGGTGATGCGCGGATCTGAGACCCTTCGGGTCGTTGCGATGGTGGGCATCGACCCAGACTCCGATGGACTCGCGAGAGCAGCCAGCCTAGGGGTCGCAACGACGTCGGACGGCGTCAGTGGCCTGATCGCGCTCCCCGACTTCGCCGACGTCGAGATCGTATTCGATGCGACAAGCGCTGGTGCGCACATTGCGAACGCACGCCTTCTTGAGCCATATGGTTGTCGCTTGATCGACCTGACGCCGGCGGCCATCGGCCCGTTCGTCATCCCGCCGGTGAATCTTGAGGAGCACCTGGACGCGCCGAACATCAACATGGTCACCTGTGGCGGCCAGGCCACGATTCCCATCGTGGCTGCAGTGTCGCGTGTCACAGAGGTTCCTTACGCGGAGATTGTCGCGTCAGTCTCTTCCAAATCTGCCGGGCCAGGTACCCGGGCCAACATCGACGAGTTCACCGAAACGACCTCCCATGCCATCGAGATCGTCGGCGGGGCCCGCCGAGGCAAAGCCATCATCATCCTGAACCCAGCGGAGCCGCCGCTTATCATGCGCGACACAGTCTACTGCCTGATTGGCAACGCAGACCATGATGCGGTCCGGAGAGCAGTCAAGGAAATGGTCGATAAAGTAGCCACATATGTGCCCGGGTACCGCCTTGTCCAGGACGTCCAGTTCACGGCCGTGGATCCCGCCGAAGTCTCGACACTCCTACCCGATGGAGCCGGGCCGGTCGACACGAAGGTCTCAGTCTTTCTTGAGGTCGAGGGCGCGGCCCACTATCTGCCGGCTTACGCGGGCAATCTGGACATCATGACATCAGCGGCCATGGCCGTCGCCGAACGAATCGCCATCCGCGGAACGGTGGCTGCGTGAMTNTMGVAIIGSGNIGTDLMFKVMRGSETLRVVAMVGIDPDSDGLARAASLGVATTSDGVSGLIALPDFADVEIVFDATSAGAHIANARLLEPYGCRLIDLTPAAIGPFVIPPVNLEEHLDAPNINMVTCGGQATIPIVAAVSRVTEVPYAEIVASVSSKSAGPGTRANIDEFTETTSHAIEIVGGARRGKAIIILNPAEPPLIMRDTVYCLIGNADHDAVRRAVKEMVDKVATYVPGYRLVQDVQFTAVDPAEVSTLLPDGAGPVDTKVSVFLEVEGAAHYLPAYAGNLDIMTSAAMAVAERIAIRGTVAAPGPT0006010_387DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0006010-mhpF-K04073NANA
D1-29_019571014mhpECOG01194-hydroxy-2-oxovalerate aldolaseATGGGCACCAAGATCTATGTTCAAGACGTCACTCTCCGGGACGGCATGCACGCCATCCGGCACCGGATAACACCAGAAAAAGTCGGCCAAATCGTCGGCGCCCTCGATCGGGCGGGCGTCTCAGCAATTGAGATCAGTCACGGCGACGGGCTCGCAGGATCGAGCCTAAACTACGGTCCGGGCAGCCACACTGACTGGGAATGGATCGAAGCTGCAGTCGCGAATGCGCAGAACGCCATCATCACCACGCTTCTTCTTCCTGGGCTGGGCACGATCGCAGAACTTCGACAAGCATTCGAACTCGGTGTCCGATCTGTACGAGTGGCCACCCACTGCACAGAAGCGGACGTCGCTGCACAACACATTGCCGAGGCTCGGTCACTGGGCATGGATGTATCCGGCTTTCTGATGATGAGCCACATGGTCCCTCCCGCGGAACTCGCTAAGCAGGCCCAACTCATGGAATCCTATGGCGCCCACTGCGTCTACATCACCGACTCAAGCGGTCGATTGACGACCGATGATGTTCGCGAGCGGGTGCGCGCCTACCGGGACGTACTCGACGACTCGACGCAGGTGGGAATCCATGCACACGAGAACCTGTCGCTCGCCGTCGCGAACTCGGTGGCAGCAGTCGAAGAAGGCGCGTACCGTGTCGACGCCTCTCTCGCGGGCCAGGGCGCTGCCGCCGGCAACGCCCAGCTTGAGGCGTTCATCGCCGTCGCGAATCTGCGTGGCTGGGAAACCGGATGCGACCTTTTCCCGCTGGAGGACGCTGCTGACGATTTGGTACGGCCGCTGCAGGACCGACCTGTCCGTGTGGACCGCGAGACACTCACGATCGGCTACGCCGGCGTCTATGGCAGTTTCCTCCGTCACGCAGAGATTGCGGCGTCGAACTACGGCGTGGACGCACGCGACATTCTTATCGAGGCCGGCCGCCGCAAGCTCGTCGGCGGTCAGGAAGACATGCTTACCGACATCGCGCTGAACCTCCAGGCACAGTCCAAGTGAMGTKIYVQDVTLRDGMHAIRHRITPEKVGQIVGALDRAGVSAIEISHGDGLAGSSLNYGPGSHTDWEWIEAAVANAQNAIITTLLLPGLGTIAELRQAFELGVRSVRVATHCTEADVAAQHIAEARSLGMDVSGFLMMSHMVPPAELAKQAQLMESYGAHCVYITDSSGRLTTDDVRERVRAYRDVLDDSTQVGIHAHENLSLAVANSVAAVEEGAYRVDASLAGQGAAAGNAQLEAFIAVANLRGWETGCDLFPLEDAADDLVRPLQDRPVRVDRETLTIGYAGVYGSFLRHAEIAASNYGVDARDILIEAGRRKLVGGQEDMLTDIALNLQAQSKPGPT0002050_794DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0002050-mhpE-K01666NANA
D1-29_019581005bphC_2Manganese-dependent 2,3-dihydroxybiphenyl 1,2-dioxygenaseATGTCCCCCCGCGACCAGTATGATCCAGGGCCCCAGATTGCCCAGGCAGGAAGCATCAACCTTGGTACGCCCGATCTTGACCGCTCGCTAGGATTCTTCCAGGACCTCCTGGGCATGGAGATCGTGGAACGGACCGATGATGGTGTGGCCTATCTGCGCGGCTATCAGGAGCTTATTCATCACTCTCTCGTTCTTACTGAGCAGGACGAGGCCCGCGTAAACGCCTACAGCTTCCGAGTGAAGCGCGCTCAGGACGTAGAACTCTTTCGTGACGAACTCGTGAAGCAGGACATCGAGGTGCTCGAAGTTCCGTCCGGAAGTGAATCTGGCCGCGGTACCGCGATTCGCTTCCTGGTGCCGTGGAGTGAGCATCCGTTCGAGTTTTACTATGACATCGAAAAGCCACTCGCGCCGGAGGAGCTCCGCTCGCGCCTTCCCAGCAGCAGCTCTCGTCGTCGCGGGCTCGGGGTGCGCCGTATCGATCACTTCAATGTTCAGACCAGCCCCGGCACCATCAACCAGGCAGAGCTATGGTTGCGCGAGAACATGGGTCTCAAACGCCGCGAGTTCATCATGATGCCTGACCATCCATCGACCGTCATGGCATCGTGGATGTCCGTGACCTCTCAGATGCATGACGTTGCTCTCGGCGTTAACCGCGACGAAAAAATGGGTCAGCTGCACCACGTCGCCTTCAACCTCGAGAACTACCACGACGTGCTGACCGCTGCGGATCAAATCCGTGACCTCGATATCGAATACGGAGTGGGGCCGGGAAAGCACGGCGTCGGTCAGGCCATGTATCTGTACGTGCACGACCCGGGTTCGGACCACCGGGTTGAAATCTACTCTGGCGGGTACCAGGTTTTCGATCCCGACTGGGAGCCGATTGAGTGGAAGGTTCCAGACGTCCCGCACGGCATGACATGGTACGGCGATGCCATCGATATTCAACAGGGGAGCCGCGGCCGGGAGACCACCTCGTCGGCTGGCCTCTGGCTGTAGMSPRDQYDPGPQIAQAGSINLGTPDLDRSLGFFQDLLGMEIVERTDDGVAYLRGYQELIHHSLVLTEQDEARVNAYSFRVKRAQDVELFRDELVKQDIEVLEVPSGSESGRGTAIRFLVPWSEHPFEFYYDIEKPLAPEELRSRLPSSSSRRRGLGVRRIDHFNVQTSPGTINQAELWLRENMGLKRREFIMMPDHPSTVMASWMSVTSQMHDVALGVNRDEKMGQLHHVAFNLENYHDVLTAADQIRDLDIEYGVGPGKHGVGQAMYLYVHDPGSDHRVEIYSGGYQVFDPDWEPIEWKVPDVPHGMTWYGDAIDIQQGSRGRETTSSAGLWLPGPT0005055_164DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-29_019591530oadACOG0511Oxaloacetate decarboxylase alpha chainGTGTCGTCGAATCAGCCAGAAACAATCACCTCAGTCATGAGTCTTGGAGGGCGTCCGGCAAACAGCCGCCGTGAAATCAAAATCATCGATACGACCTTGCGCGATGCTCATCAGAGCCTTTGGGCGACACGGATGCGCACTGATCACATCGTTTCCATGGCTGCAGAATTTGACAAGGTTGGATTCGAGCAGGTGGATCTTATGGCTCCGATCCAGTTTGACGTGGCGGTCCGCTACCTAAAGGAAGATCCTTGGGAGCGGGTCCGACTCGCACACGAGCATGCACCCAACACCAGGTTCCGGGCACTGATCCGCTCCAAGAACATCGCTTCGTTCGACTTCCTGGCGGACGATGTGATTGAGGCCTGGGTGGAGAACCTGTACGCAAACGGCTTTCGGGTCATCGGCTCGTTCGACGGGCTCAACGACGTCGACAACATCGCGCCAGGCCTGATCCGCGCGAAGGAGTTGGGGGCCTCCACTTTTGGTGCGGTCTCGTTCTGTGAAAGCCCGGTCCACACCGACGAGCTCTTCGTCGCCAAGGCGCGCGAGCTGATCGAGAAGGCCGATGTGGATGCGATCATGCTCAAGGACGCCGGCGGCCTCTTAACACCGGACCGCATTCGCACGCTGGTGCCCGCCCTCAAAGAGGTCATGGGGGACCGGACTCTCGAACTGCACAGCCACTGCCTAACGGGGCTGGCGCCGCTGGTCTACCTTGAGGCCGTGGAGCTGGGGTGCGATGCGCTGCACACCTCAATCGCGCCAATGGCCAACGGTGCTGCGCAGCCGGCGACGCAGGGCATCGTGCGGGATCTGAGGGCGCTCGGATATACAGTCAATGTCGACGACGTGCTGATCGATACGATCAGTGAGAAGCTCTCTGCGATCGCTGAGGCGGAGGACAAGCCGGTGGGCCATCCGGTCGCGTACAACGGCTTGCATTTCATGCATCAGCTTCCTGGCGGGATGCTGTCGAACTTCCATTCTCAGCTGGCGACGGCAGGCCTTTCGGACCGTTTCGATGAGCTGCTCCACGAAGTTGCCCGGGTGCGGTCGGAGCTGGCGTTTCCGATCATGATCACCCCCTTCGCTCAGTTTGTGGGCACTCAAGCGGTGATGAATGTGATCTCTGGTGAGCGGTACTCGATCGTGCCGAACGAAATCAAAAAGTACGTCCTCGGTTACTACGGCACTCTCCTGGCACCCATTGACGCGGAATTGCATGCTCGGATCGTGACCAACGGCGCTTCGGACATTGCTCTCGAGCCTGCCGCCATCGCTCCAATGCTCCCCGACCTGCGGGAGCGCCATCCCGACGAGAGCATCGACATGCTGCTCCTGCGGGCGATGTTCGCCGGTACGCAGGTCGACGAGATGAAGAAGACCGTGGCGGGTGGTAAAAATGCCAATGAATTCCGCCAGCCGCTTCTGGACCTCATCAAAACATTGCATCAGAAGAGCCAGGCCGGCAGGCAATCGCTGACAGCCGGAAATCTGCAAATCAGCCTCACAAAAGGAGAAAAATAAMSSNQPETITSVMSLGGRPANSRREIKIIDTTLRDAHQSLWATRMRTDHIVSMAAEFDKVGFEQVDLMAPIQFDVAVRYLKEDPWERVRLAHEHAPNTRFRALIRSKNIASFDFLADDVIEAWVENLYANGFRVIGSFDGLNDVDNIAPGLIRAKELGASTFGAVSFCESPVHTDELFVAKARELIEKADVDAIMLKDAGGLLTPDRIRTLVPALKEVMGDRTLELHSHCLTGLAPLVYLEAVELGCDALHTSIAPMANGAAQPATQGIVRDLRALGYTVNVDDVLIDTISEKLSAIAEAEDKPVGHPVAYNGLHFMHQLPGGMLSNFHSQLATAGLSDRFDELLHEVARVRSELAFPIMITPFAQFVGTQAVMNVISGERYSIVPNEIKKYVLGYYGTLLAPIDAELHARIVTNGASDIALEPAAIAPMLPDLRERHPDESIDMLLLRAMFAGTQVDEMKKTVAGGKNANEFRQPLLDLIKTLHQKSQAGRQSLTAGNLQISLTKGEKPGPT0001935_502DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001935-oadA-K01571NANA
D1-29_01960519accBCOG0511Biotin carboxyl carrier protein of acetyl-CoA carboxylaseATGTCGCTTACCCCGCCCGATATCAGGGAACTCAAGGCCATCCTCGATTGGGCGAATCTGACCGAGGACGTGCGCGAACTCTCGATCAAATTCGGCGATGTTGAGTTGTTCATCTCCCGCGACCGGCAGCCGTCCATAGGCCATCCCGTTGCCGCACAGGGGTCGGCAACAGCGACAGCCATTTCGCCTCCGGTCGCCCCAGTGCCGCTGCACCCGCCAGCCGCCGCACCTGTAGCCCTGAGCCAACTGCAGGCCTCCGACGCGCTGGCGTCCGACGAGGTGCTGATTAAAGCACCGATGGTCGGACTGTTCTATTCATCGCCGAAGCCCGGAGACCCCGCTTTCGTAGCTGTCGGTGACAAGGTTGGCGTCGAGACGGTGCTTTGCATCGTGGAGGTCATGAAGCTGATGAGCAACGTCGAGGCGCGGGTCGAGGGCACAGTCACGAAGATTCTGGTCGAGAACGAGCAAGCGGTCGAGTACGGCCAGCCCCTGATGGTGATTAAACGCGATGCCTGAMSLTPPDIRELKAILDWANLTEDVRELSIKFGDVELFISRDRQPSIGHPVAAQGSATATAISPPVAPVPLHPPAAAPVALSQLQASDALASDEVLIKAPMVGLFYSSPKPGDPAFVAVGDKVGVETVLCIVEVMKLMSNVEARVEGTVTKILVENEQAVEYGQPLMVIKRDAPGPT0001700_411DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0001700-accB|bccP-K02160NANA
D1-29_019611368accCCOG0439Biotin carboxylaseATGCCTGAACCCCTGAAGAGCGTGCTGATCGCCAACCGTGGCGAAATAGCGCTGCGCGTGGTCAGAGCGTGCAAGGAACTGGGTATCCGGAGCGTCCTGGCGTATTCGGAGGCCGACGCCGATTCCTTGCCGGTGAAGCTTGCCGACCAGGCCGTTTGCATCGGTCCCGCGCAAGCGAAGTCAAGCTATCGCGATCCCCGAGCAGTTATCAGTGCGGCGCTGGCATACAAGGTCGACGCCATCCACCCCGGCTATGGCTTTCTTTCCGAGAACGCGGACTTCGCCAAAATGTGCGAAGACGAGAATGTCGTCTTCATCGGCCCGGCCTCGGACGTCATCCGTTGCATGGGCGACAAGATCGAGGCGAAGAATATCGCACGCAGGGCCGGAGTGCCCACAGTGCCTGGTTCGCTGGGCGCAATAGCCGAGTACAACGAAGCCTTCGATGTGGCCGGCGAGGTCGGCTACCCCCTGCTGATCAAGGCTGCGGCCGGGGGTGGCGGACGTGGCATGCGTGTCGTGGAGTCGGCCGCAACGCTCGAGAAGGACCTAGCGGAGATCATGTCGGAAGCCGAAGTCGCGTTCGGTGACCCAGCCGTCTATATCGAGCGCTACCTCACCGACATCCGGCACATCGAGATACAGGTAATATCCGATGGCCAGACCGTATTGCACCTCGGAGAGCGGGACTGCACGGTACAGCGACGTAACCAAAAGCTGATCGAGGAGTCGCCGTCGCCAGTCCTTGACGCAGAACTCAGGCACGGCTTGGCACAGGCTGCGGTGGCGCTGTGCAGAGAAGTCGGATACACGAATGCCGGGACTGTCGAGTTCGTTTTCGACAACATCGATCGCAGGTACTACTTCATCGAGATGAACACCCGGATCCAGGTGGAGCACCCCGTCTCAGAGATGGTCACCGGCATCGACCTCATCAAGCTGCAGTTGCAGATCGCTGGCGGTTTGCCGCTAAGCCTGACCCAGCAGGATATCCATATCAGCGGCCACGCTATCGAATGTCGCATCAATGCTGAAGACCCGGACAATGGGTTTGCACCCAGCCCGGGCAGGGTCGCCGATTTCCGTGCGCCGGGCGGCTTCGGAGTAAGGATGGATACACATATCGAGTCGGGCTATTCCATCCCTCCCTACTACGACTCCATGATCGGCAAGCTCATCTGCTGGGGCAAAGATCGCGACGAGGCCATCGCCCGAGCCCTCCGCGCTCTCGACGAGCTCGTCGTGGAGGGAATTATCACCACAGCCCCCTTCCACAAGAGAATCCTTCAATGCTCGAAGTTCGAAACAGGTGATTTCAACACTGGGTTCGTTGCTGAGCTCTTGGCGGGTGAAACAATCATGGGGTGAMPEPLKSVLIANRGEIALRVVRACKELGIRSVLAYSEADADSLPVKLADQAVCIGPAQAKSSYRDPRAVISAALAYKVDAIHPGYGFLSENADFAKMCEDENVVFIGPASDVIRCMGDKIEAKNIARRAGVPTVPGSLGAIAEYNEAFDVAGEVGYPLLIKAAAGGGGRGMRVVESAATLEKDLAEIMSEAEVAFGDPAVYIERYLTDIRHIEIQVISDGQTVLHLGERDCTVQRRNQKLIEESPSPVLDAELRHGLAQAAVALCREVGYTNAGTVEFVFDNIDRRYYFIEMNTRIQVEHPVSEMVTGIDLIKLQLQIAGGLPLSLTQQDIHISGHAIECRINAEDPDNGFAPSPGRVADFRAPGGFGVRMDTHIESGYSIPPYYDSMIGKLICWGKDRDEAIARALRALDELVVEGIITTAPFHKRILQCSKFETGDFNTGFVAELLAGETIMGPGPT0001705_1562DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
D1-29_019621185COG0183putative acetyl-CoA acetyltransferaseATGGAGACATCCGTCATCGTCGCTGGCGCACGAACGCCTATAGGCAAATTACTCGGTGGGCTCTCAGGCTTTACCGCGACCGAGCTTGGAGGTATCGCTACTGCGGCGGCCATAGAGCGCGCTGGCATCGACCCTGGCTCTCTCGACGCCGTCACGCTCGGCAATGTTGTTCAGGCTGGGGTGGGTGCAGGCCCGGCCCGGCAAGCCGCAATAGCCGGCGGCGTCCCACTGTCGGTTCCCGCGACGACTGTGAACAAACTTTGCCTCTCTGGCCTGGCGGCTATTGGCCTCACCGACAACGCTATTCGAGCGGGTTTCTGGACGCGGGCGCTGGCAGGCGGGATGGAGTCCATGAGCAATGCCCCGCACGTGTTACGGCGCACGCGCGCCGGCTTTAAGTACGGGAGTGCCCCCCTTGAAGATTCCCTTGAACGTGATGCCTTGATCTGCTCCATTGAAAACACGACAATGGGCGCAGCAACCGACCGCTACCAACGACCGCTAAGCATCACACGTGAAGAGCAGGACGAATTCGCTGCCCGCTCGCACTCGAAGGCCTCAGCTGCCATTCAATCAGGCCGCTTCACTGCCGAGATTGTTCCGGTCAAGGCTGCCGGGCGCACCGGCGAGATGGTCTTCGACACGGATGAGGGTGTACGTCCGGGCACCACTGCAGAGACACTCGCAAGGCTCCGCCCGGCTTTCGATCCCGATGGCACAATAACGGCGGGATCGGCATCCCAACTATCGGATGGCGCTGCGGCCCTTGTTGTAATGAGCCGCTCCGAAGCTGATCGGTGCGGGCTCGATTGGATTGCCGAGATAGTCAGCTATGGCACTTTCTCCGGCCCCGACCCCTCGCTGCTCCTTCAGCCTGCCGGAGCAATCCGGGATGCGCTCCGTCGGCAGAACGAAGTGACTCTCGAAGATCTTGACGTTTTCGAGATGAATGAAGCCTTTGCGGGCGTGCCGATCGCCTCAGCTCGCGAACTTCGCATCGAACTCGAACGTGTCAACCCTAACGGCGGCGCCATCGCTCTCGGCCACCCCGTTGGAATGAGTGGTGCGCGACTCGTTCTGAGTCTTGCACTTGAACTCCGCCTTCGGGGTGGCGGGCTAGGTGCGGCGGCACTTTGCGGAGGCGGCGGACAAGGCGACGCTCTGATTATCCGAGTACGTCCTTAGMETSVIVAGARTPIGKLLGGLSGFTATELGGIATAAAIERAGIDPGSLDAVTLGNVVQAGVGAGPARQAAIAGGVPLSVPATTVNKLCLSGLAAIGLTDNAIRAGFWTRALAGGMESMSNAPHVLRRTRAGFKYGSAPLEDSLERDALICSIENTTMGAATDRYQRPLSITREEQDEFAARSHSKASAAIQSGRFTAEIVPVKAAGRTGEMVFDTDEGVRPGTTAETLARLRPAFDPDGTITAGSASQLSDGAAALVVMSRSEADRCGLDWIAEIVSYGTFSGPDPSLLLQPAGAIRDALRRQNEVTLEDLDVFEMNEAFAGVPIASARELRIELERVNPNGGAIALGHPVGMSGARLVLSLALELRLRGGGLGAAALCGGGGQGDALIIRVRPPGPT0008320_6221DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_019631500bauC_3COG1012Putative 3-oxopropanoate dehydrogenaseATGGTTCGCGAACTAATGCACTTTGTCGGCGGCAAGGCTGTTGCCGGAACTTCGGGCCGCTTCAGCGATGTCTATAATCCCAGCACGGGAGAAATTCAGGCCCGAGTGCCTCTGGCCACCACTGAAGAGGTCGAGGCCGCGATTAGCAACGCCGAAGAGGCACAGATTATATGGAGTTCATGGAATCCGCAGCGCCGTGCCCGGGTGCTGGCTAAGTTTCTTACCCTGGTCGAGCGTGACCTCGACAAGCTTGCCCGACTTCTTAGCTCCGAGCACGGCAAGACCGTAGCCGATGCCAAGGGTGATATTCAGCGCGGCGTCGAGGTCATTGAATTCGCTGTTGGCGGACCTCATTTGCTCAAGGGGGAGTACACGAGCGGCGCAGGTACGGGAATCGATGTCTATTCCATGCGCCAGCCCCTCGGGGTCGTAGCTGGCATAACGCCCTTTAATTTTCCCGCAATGATCCCTCTTTGGAAGTGCGGGCCTGCACTTGCCGCTGGCAACTCGTTCATCCTTAAGCCAAGCGAACGCGATCCGTCCGTTCCACTCGCCCTCGCCGAACTTTTCCTTGAGGCAGGCATGCCTCCGGGTGTGTTCAACGTCGTCAACGGCGACAAGGTAAGCGTGGATGCGTTACTGAATGATGAGCGCGTGAAAGCGATCGGCTTCGTTGGTTCAACCCCCATTGCGCAATATATCTATCAAACAGCGGCCGCCAACGGGAAGCGCGCACAGTGTTTTGGGGGAGCGAAAAACCACATGATCGTCATGCCCGACGCCGATCTCGACCAGGTCGCTGACGCTCTGATGGGCGCCGGCTACGGCTCAGCGGGGGAACGCTGCATGGCGATTTCGGTGGCCGTTCCCGTAGGTCAGGCAACAGCCGACGCCCTTGCGGCCAAACTGACTGAGCGCGTGAAGGAACTGAGAATCGGACCCGCCCTCGATGAGGCAAGCGACTACGGTCCCCTAGTGACCCAGGCCGCAGTAGACACAGTGTCAAAATACATCGGAATCGGCGTCGAGGAAGGTGCGACGCTTCTAGCTGACGGGCGTGGGCACATAGTCGAAGGATTCGAGCAGGGGTTCTACCTGGGCCCAACGTTGTTCGACCACGTCACCTCCGACATGACCATCTACCGTGAAGAAATCTTTGGCCCTGTCCTAATAATTACGCGGGCCAAGGACTACGAGGAGGCGCTGCGCCTGCCCTCTGAACACATCTACGGCAATGGAGTCTCGATCTTCACCCGTGATGGCGATACCGCCCGCGATTTCACCGCCCGGGTGAATGTCGGCATGGTCGGCGTCAACGTTCCGATTCCGGTACCAATCGCCTACCACACCTTTGGCGGGTGGAAAAAGTCGGGCTTCGGCGACCTGAATCAGCACGGACCCGACTCCTTCCGGTTCTACACGAAGACGAAGACGGTGACATCACGGTGGCCATCAGGGTTAAAAGAAGGCGCCAACTTCTCAATACCGACGATGGACTGAMVRELMHFVGGKAVAGTSGRFSDVYNPSTGEIQARVPLATTEEVEAAISNAEEAQIIWSSWNPQRRARVLAKFLTLVERDLDKLARLLSSEHGKTVADAKGDIQRGVEVIEFAVGGPHLLKGEYTSGAGTGIDVYSMRQPLGVVAGITPFNFPAMIPLWKCGPALAAGNSFILKPSERDPSVPLALAELFLEAGMPPGVFNVVNGDKVSVDALLNDERVKAIGFVGSTPIAQYIYQTAAANGKRAQCFGGAKNHMIVMPDADLDQVADALMGAGYGSAGERCMAISVAVPVGQATADALAAKLTERVKELRIGPALDEASDYGPLVTQAAVDTVSKYIGIGVEEGATLLADGRGHIVEGFEQGFYLGPTLFDHVTSDMTIYREEIFGPVLIITRAKDYEEALRLPSEHIYGNGVSIFTRDGDTARDFTARVNVGMVGVNVPIPVPIAYHTFGGWKKSGFGDLNQHGPDSFRFYTKTKTVTSRWPSGLKEGANFSIPTMDPGPT0002295_1688DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-29_019641143mmgC_3COG1960Acyl-CoA dehydrogenaseGTGTACCCCGTAACAGAAGACCAGCGGGCCCTCATCGAGGCCGTGCGAGACTTTTCACAGTCCGCGCTGGCGCCGAACGCCATCGAGTGGGACCAGACGAAGTTCTTTCCCGTCGACGTTCTCGAGCAGGCTGGTGAACTCGGCCTCGGAGGTATCTACACCAGCGAAGACGTAGGTGGCGCCGGGCTAACCCGCAGCGATGCCGTTCTGATATTCGAGGAGCTCGCAAAAGGCGACACCGCCATCGCAGCGTACATTTCGATCCACAACATGGTCGTGTGGATGATCGATACGTTCGGCGACGATGATCAACGCAAACGGTGGGTGCCCGAACTCGCCTCAATGCAGCAGCTGGGCAGCTACTGCCTCACGGAGCCGGGAGCAGGGTCCGACGCCGCATCGCTGCAGACGTCGGCCAGGCGCGATGGCGACGAATACGTACTGAATGGAACCAAGCAGTTCATCTCGGGTGCAGGTTCTTCGAGCATCTACATCGTCCTGGCTCGAACCGGTGGGGAGGGACCGCGGGGAATCAGCGCTATCGTGGTTCCCGCGGAAACACCAGGACTCTCATTCGGCTCGAACGAGAAGAAGATGGGCTGGAACGCCCAGCCTACTCGCCAAGTTGTCCTCGACGATGTGCGAGTTCCGGTGGCCAACCGTCTTGGCGACGAAGGCGCGGGCTTCCACATAGCTATGAAGGGCCTCAACGGCGGCCGGGTAAATATGGGAGCCTGTTCACTTGGTGGCGCGCAGTGGGCACTGGAACAAACCATCAAGCACCTGAACGAACGGGTTGCTTTTGGGAAGCCGCTGGCTGCACAGCAGTCACTTGTATTCACGCTTGCGGACATGGAAACCGAACTGCAGGCGGCTCGGGGGATGTTGCGGCAGGCTGCCCTCGCCATGGACACAGACGACCCCAATGTTGCAACAATTTGTGCCATGGCAAAACGCTTCGCAACTGATGCTGCGTTCACAGCAGCTAACTCCGCCCTGCAACTGCACGGCGGCTACGGGTACCTCGCTGACTATGGAATCGAGAAGGTTGTTCGGGACCTCCGTGTGCACCAAATCCTGGAGGGAACCAACGAAATCATGCGTCTGATTGTCGGACGCGCTCTGCTGGAGAAAGCGTCATGAMYPVTEDQRALIEAVRDFSQSALAPNAIEWDQTKFFPVDVLEQAGELGLGGIYTSEDVGGAGLTRSDAVLIFEELAKGDTAIAAYISIHNMVVWMIDTFGDDDQRKRWVPELASMQQLGSYCLTEPGAGSDAASLQTSARRDGDEYVLNGTKQFISGAGSSSIYIVLARTGGEGPRGISAIVVPAETPGLSFGSNEKKMGWNAQPTRQVVLDDVRVPVANRLGDEGAGFHIAMKGLNGGRVNMGACSLGGAQWALEQTIKHLNERVAFGKPLAAQQSLVFTLADMETELQAARGMLRQAALAMDTDDPNVATICAMAKRFATDAAFTAANSALQLHGGYGYLADYGIEKVVRDLRVHQILEGTNEIMRLIVGRALLEKASPGPT0002285_345DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-29_019651095menB_11,4-dihydroxy-2-naphthoyl-CoA synthaseATGAACCAGCAGCTCCCTCCCAATGCACAGGTGACGCCGGAACAGGAGGTCCTTTTCGAGGTACGAGGGCACCTTGGTCACATCACGCTCAACCGACCGCGAGCCATCAACGCGCTCAACCATGCGATGGTGAAGATGGTCCTCGCCCAGCTCGAGGCCTGGTCCATGGACCGACGGGTAAGCACCGTACTCGTCACCGGCAGTGGTGAACGTGGACTGTGCGCGGGAGGTGACATCGTGTCGCTTTACCGGGACGCACGCGAGGGCGACGGGCGGGCATCAGCCGACTTCTGGCGGGATGAATACCGGCTCAATGTTGAAATCGCTAACTACCCCAAGCCATATGTCGCTGTCCAGGACGGACTCGTCCTGGGCGGTGGCATTGGCATCTCGGCGCACGGCTCGCATCGAATCGTCACGGAAAGATCCAAGCTCGGGATGCCAGAGACCGGCATCGGCTTCATTCCCGATGTAGGAGGAACCCGTCTGCTTTCACGTGCTCCCGGCGAGCTCGGAACCTACCTTGCTCTGACAGCAGGTTCGGTCGGAGGCGCAGACGCCATCGCCCTAGGGCTATCCGACAGTTGGGTTCCATCAGCTCGCATCCCTGAGCTCATCGCCGCGCTCGAGAACCTGGCCGCGGACGACGCAGTGGCAGCAGTCGTCGGACAAGCCCCAGTGGCAGGCCTACTCGCGCACCGAGCCTGGATTGACCCAGCGTTCTCTGCCGACAGCGTCGCTGAGATCGTCGAGCGATTGCGCCATTCTGGCACAAAGGAGGCTCGTGAGGCCGCCACGGCCGTCACATCGAAGTCTCCGACTGCCCTGGCTGTAACGCTCGAGTCCCTGCGTCGCGCTCGCCACCTCGATTCGCTCGAAGACACCATGCAGCAAGAGTTTCGAGTTTCTCTTCGTGCACTGAGGGCCCACGACTTTGCAGAGGGCGTCAGGGCGCAGGTCGTCGATAAAGATCGCCTACCGAACTGGGATCCAGCAGGTCTTCACGACGTTACGACCGAGTTGATCAATGCCTACTTTGCCTCGCTCGGCGACGACGAACTGGAACTGAGGAGTTCCGGGCTCCAGACGCGCTAAMNQQLPPNAQVTPEQEVLFEVRGHLGHITLNRPRAINALNHAMVKMVLAQLEAWSMDRRVSTVLVTGSGERGLCAGGDIVSLYRDAREGDGRASADFWRDEYRLNVEIANYPKPYVAVQDGLVLGGGIGISAHGSHRIVTERSKLGMPETGIGFIPDVGGTRLLSRAPGELGTYLALTAGSVGGADAIALGLSDSWVPSARIPELIAALENLAADDAVAAVVGQAPVAGLLAHRAWIDPAFSADSVAEIVERLRHSGTKEAREAATAVTSKSPTALAVTLESLRRARHLDSLEDTMQQEFRVSLRALRAHDFAEGVRAQVVDKDRLPNWDPAGLHDVTTELINAYFASLGDDELELRSSGLQTRPGPT0001860_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_01966918mmsB_2COG2084putative 3-hydroxyisobutyrate dehydrogenaseATGACTACCTCAATAGCCTTCATCGGCCTCGGCCACATGGGCGGACCCATGGCCATCAATCTCGCGAAGGCAGGCTACAAGGTCGCCGGCTTCGATCTCTCCCAAGCTGCCGTGGACGCTGTCAACGGCCACGATATCACTACGGCCGCCAGTGCTGCTGAAGCCGTGGCCACAGCCGATGTTGTCATCACCATGTTGCCCGCGGGTCGTCACGTGATCGCCGCTTACAAGGGCGGCGGCGACGACAAGGGCCTGCTGTCTTATGCCAAACCGGGAACCCTCTTCATCGACTCATCAACCATCGCAGTCGACGACGCCCGGTCCGCTCACGACCTGGCGGTTGCCGCCGGACACCGCGCAATGGATGCCCCCGTGTCGGGCGGAACCGGAGGAGCGGAGGCCGGCACTCTGGCGTTCATGGTTGGAGGATCAGAGGAAGACTTCGCAGTAGCCGCGCCAATCTTGAAAGCCATGGGCCATCGAATTGTCCATTGCGGCGGTTCAGGACTCGGGCAAGCGGCCAAGGTCTGCAACAACCTGATACTTGGAATTTCAATGATTGCAGTAAGCGAAGCATTCGTTCTGGGGGAGAAACTTGGCCTCGAACATCAAGCGCTCTTTGATGTCGCATCCAACGCCTCGGGCCAGTGCTGGGCGCTTACCACTAACTGTCCAGTCCCGGGACCGGTACCTACGAGCCCGGCAAATCGTGGCTATCAGCCGGGTTTCTCGTCGGCTCTGATGGCAAAGGACCTCGGCCTCGCCGCCCAAGCCTTCGAGATGACCGGGATGCAGGCCGAGGTTGGCACGCTTGCGAACGAAATTTACCAGCGGTTCGCAGCCGGGGATGGTGACGGTGCCGACTTCTCGGGCATCATCAACCACATTCGTAAGGGCAGTGAGTCAAAGGGAGGCTAGMTTSIAFIGLGHMGGPMAINLAKAGYKVAGFDLSQAAVDAVNGHDITTAASAAEAVATADVVITMLPAGRHVIAAYKGGGDDKGLLSYAKPGTLFIDSSTIAVDDARSAHDLAVAAGHRAMDAPVSGGTGGAEAGTLAFMVGGSEEDFAVAAPILKAMGHRIVHCGGSGLGQAAKVCNNLILGISMIAVSEAFVLGEKLGLEHQALFDVASNASGQCWALTTNCPVPGPVPTSPANRGYQPGFSSALMAKDLGLAAQAFEMTGMQAEVGTLANEIYQRFAAGDGDGADFSGIINHIRKGSESKGGPGPT0018170_220DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-29_01967537hypothetical proteinGTGCCCGCGTCATCGCCATTACCTATTGATCCAATTGCGGAAGCAAAACGACAATGGCTCAAGCACGGCTGGGATGACGCTGCAGTCGGCATGGCTGCTGTCACTTCGATCATGCGGGCGCAGCAGATCATGCTTGCCCGGGTCGAATCGACGTTGAAGCCATTTAATTTGTCTTTCGCCCGGTTTGAACTGCTGCGCTTGCTTGCGTTCTCAAGAGGCGGGGCACTTCCAATGGCAAGTGCAACAGCGAGGCTTCAGGTTCATCCGACCAGCGTCACGAATACCGTCGCACGGCTCGAGCGTGCTGCTCTGGTCGAGCGCTCACCGCACCCTACCGATGGCAGGGCGACACTGGTTAAGCTGACCGATGCGGGTTTCGAAGTGGTCACGGCCGCCACTGACGCTCTCAACAATTCGGTATTTTCTCAGTTAGGCTTCCCGGACCAGGATCTTGCAGCCCTAGTAAGCATTATCGCGAAATTTCGGCGCGAATCAGGTGACTTCAACGACCCGCCACCCCTCCCTGATCCTTTGTAAMPASSPLPIDPIAEAKRQWLKHGWDDAAVGMAAVTSIMRAQQIMLARVESTLKPFNLSFARFELLRLLAFSRGGALPMASATARLQVHPTSVTNTVARLERAALVERSPHPTDGRATLVKLTDAGFEVVTAATDALNNSVFSQLGFPDQDLAALVSIIAKFRRESGDFNDPPPLPDPLNANANANANA
D1-29_019681374hypothetical proteinATGGCGAATCAAGAACCGCCCCAACGTCGGCAGGGCCTGCCGCGTCCAGGTGAGCCCGCAGCCCCGAGCGACTCAAGCCCGACGTTTTCTCCTGCTACGCCGGTGGCGACTTCCCCCATTGAATCCGTCGAGGCAACTGCGGTCCCCACCACAGGTGAACCCAAAAAACCTCAAAACGCGTCGAATGGGAGGCGGGGCTTACCCAGGCCCTCTGTCTCGCCGTCCCTGGCCCCCGAGAACACACAACAGCCGCCCCCGCGCACTGTGGCTGGCCGACAGGGCCTTCGAGCGACATCCCCGGACTCATCGGCGCCCGCCGCCTTGACTGCGGCAACTGTGCCCTCCGCCGCGGAGACGCCGGGGGCGCCGGGGGCGCGCGTGGCCTTGCTGTCTTCGCAAGGGGCAACCGGGGGGAATGGGGCTGCGGGGGAAGAGGCATCCAGCACTGTCCGTTCCAAAATCAAGTCGGCGGCAGGAAGCGGCACTGGGCGCTATGTCTTTGGAGCCGTCGGGCTTGTGATCGCCGCGGGTGTGGTGGCCATCATCGCCCGGATGCTTGTCTCCACAGGGGAAGTGCAGAATTTTCTCGTGACTTATCCTGGGGAAGTTCCTCTTCCGGAATCCGCTCCGGTCGGCTTCCCTGCATGGCTTGGCTGGCAGCATTTTCTCAATGCGTTCTTCATTGTCCTGATCATCCGTAGCGGCTGGTTGGTACGCACTACCAAGCGCCCTCCCGCGTCGTGGACGCGCAACAACACGGGGCTGATCAAGACTAAGGGAAGCCCGAATCGAATTAGTCTGGACCTCTGGTTCCATCTGAGTATGGACGCGCTGTGGTTACTGAACGGCGTGGTGTTCATCGTTCTTCTATTCAGCACCGGCCAGTGGACACGGATCGTGCCCACCAGCTGGGACATAGTACCGAACGCACTTTCGGCCGCACTTCAATATGCTTCGCTGCAATGGCCGACCGAGAATGGCTGGGTTAATTACAATAGCCTGCAGGTTTTGGCGTACTTTTTTACGGTTTTCGTCGCCGCTCCCCTAGCCGCTGTTACTGGTATCCGGATGTCGGGTGCGTGGCCTTCAAAGGCGACCGGTCTTAACCGCATCTACCCAATCGAGGTCGCGCGTTCCATCCATCTTCTCGTCATGTTGTACTTTGTGGTCTTCATCACCGTACATGTGGCTCTAGTACTAGCCACTGGTGCTCTCCGCAATCTGAACCACATGTACGGCGGGCAAGATGCAGTAAATTGGTGGGGTTTCACCATTTTTGTGCTGTCGCTTCTGGTCACCGCTGCAGCTGTGCTCGCGGCGCGCCCGCTCGTTCTCGCCCCTATAGCGGGATTGATGGGAAAGGTGGGCCGCTGAMANQEPPQRRQGLPRPGEPAAPSDSSPTFSPATPVATSPIESVEATAVPTTGEPKKPQNASNGRRGLPRPSVSPSLAPENTQQPPPRTVAGRQGLRATSPDSSAPAALTAATVPSAAETPGAPGARVALLSSQGATGGNGAAGEEASSTVRSKIKSAAGSGTGRYVFGAVGLVIAAGVVAIIARMLVSTGEVQNFLVTYPGEVPLPESAPVGFPAWLGWQHFLNAFFIVLIIRSGWLVRTTKRPPASWTRNNTGLIKTKGSPNRISLDLWFHLSMDALWLLNGVVFIVLLFSTGQWTRIVPTSWDIVPNALSAALQYASLQWPTENGWVNYNSLQVLAYFFTVFVAAPLAAVTGIRMSGAWPSKATGLNRIYPIEVARSIHLLVMLYFVVFITVHVALVLATGALRNLNHMYGGQDAVNWWGFTIFVLSLLVTAAAVLAARPLVLAPIAGLMGKVGRNANANANANA
D1-29_01969978etfA_1COG2025Electron transfer flavoprotein subunit alphaATGTCCCACAACCCCGTCTTGGTGTTCATTGAAATTTCCCCCGACGGCGCCATTCACAAAAGTGCTGCTGGCTTGCTTGGTGCCGCTGCGAACATCGGCGAGCCAACGGCACTCGTTGTTACCACCCCCGGGCGATCGATAGCGGCAGCGGAGGAGGTCTCGCGGCTCGGAGCTGAGCGGATTCTTATCGTTGAAGACGACAGTTTGTCAACGATGTTGACAGTACCTTTAGTTGATGCCCTCGCCTCGGCCTTCGACGCCGTCGCTCCTGATGCAGTCCTCATCTCCAACTCAGTCGAGGGCCGCGATGTGGCGGCTCGCTTCGCTGTCCGCTCAGCACTAGCGCTGGCTCTGGATGCCGTAAGCGTGAGCCGTGATGAAGAGGGAGTCGTCTCGACCCACTCCGTTTACGGCGGTGCATATGACGTCAATTCAGCGGCGACCGCAGGCGCGGTCGTGATTACGGTCCGTCAGGGGGCAGTCGATTTGCGTGCTGAGCCGAGAAATGCCGTTATTGAGCAACTCGCTGTGCCACCGTCGGGCAAGGCTGCAGCAACCATCACCGAATTCCACTCGCTTCCCGTTAGTACCACGCGTCCAGACCTTCGAGGAGCCGACAAGGTGGTAGCGGGCGGGCGAGGACTCCAGTCTGCTGAGAAGTTCGCCTTGGTGGAAGAGTTGGCGGACGCGCTTGGTGCGGCGGTCGGGGCATCGCGTGCCGCTGTGGACGCAGGCTATGTTTCGCACACTTTTCAAGTTGGACAGACTGGTGTGGCTGTTTCGCCCCAGCTTTACATCGCTCTCGGAATCTCCGGGGCGATTCAGCATCAGGCCGGCATGCAGACGGCGAAAACGATCGTGGCCATCAACAAGGATGCCGGCGCCCCCATCTTTGCGATTGCCGACTTCGGTGTGGTGGGAGACGTTTTTTCCGTCGTACCACAGCTGTTGGCGAGCCTGGATTCCAGGAGGGACTGAMSHNPVLVFIEISPDGAIHKSAAGLLGAAANIGEPTALVVTTPGRSIAAAEEVSRLGAERILIVEDDSLSTMLTVPLVDALASAFDAVAPDAVLISNSVEGRDVAARFAVRSALALALDAVSVSRDEEGVVSTHSVYGGAYDVNSAATAGAVVITVRQGAVDLRAEPRNAVIEQLAVPPSGKAAATITEFHSLPVSTTRPDLRGADKVVAGGRGLQSAEKFALVEELADALGAAVGASRAAVDAGYVSHTFQVGQTGVAVSPQLYIALGISGAIQHQAGMQTAKTIVAINKDAGAPIFAIADFGVVGDVFSVVPQLLASLDSRRDPGPT0001040_1659DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-29_01970777etfB_1COG2086Electron transfer flavoprotein subunit betaATGAAGATAGTCGTACTGCTGAAGGAGGTTCCCGACACCTACGGAAACCGAAAACTTAGCCTCGACAGCGGGCTGGCTGATCGAGCCGCCAGCGATGCGGTAGCGGATGAAGTTGGCGAACGCGCTCTGGAACTGGCTCTCAAATACGCTGACGCGAACCCCTCCACAGAAGTTGTCGTGGCTTCGATGGGGCCGAAGACCGCCGTTACGTCGTTGCGCAAAGCTCTAGCAATGGGAGCCGCTTCGGCTGTCCACATCGCTGATGACCTGTTGGCGGGAGCCGACGCTGGACTTACGGCAGAAGTGATTTCTGCCTCGCTTCGACGTACTGGATTCGATCTTGTAGTGGCTGGCAACGCCACAACGGACGGCAATGGCGGTGTCATTCCGGCCATGCTTGCCGAGTTACTCGACGTTCCCCATTTGACGAACCTCGAATCTGTTGAGATATCCGCTGTTCGGGTTAAAGGCAGCCGAACTACCGAGTCAGGAACTCTTGCCGTTCACGCTTCACTGCCGGCGGTTATCAGCGTTACAGAGAATCTGCCCGAAGGACGTCTTCCAGGCTTAAAGGGAATTATGTCCGCCAAAAAGAAGCCATACGAGACCTGGTCACTTGACGACCTGGGGATCGGCCTCGACAGCGACACGAAGGCACGCTCCATCGTCATTGCACTCTCCGAGCGACCGGCCAGGTCCGCGGGCGTCGTCGTAGTCGATGAGGGCGCGGCCGGCGAACGCCTCGCCGATTTTCTCATTCAAAACAGACTCGCCTAGMKIVVLLKEVPDTYGNRKLSLDSGLADRAASDAVADEVGERALELALKYADANPSTEVVVASMGPKTAVTSLRKALAMGAASAVHIADDLLAGADAGLTAEVISASLRRTGFDLVVAGNATTDGNGGVIPAMLAELLDVPHLTNLESVEISAVRVKGSRTTESGTLAVHASLPAVISVTENLPEGRLPGLKGIMSAKKKPYETWSLDDLGIGLDSDTKARSIVIALSERPARSAGVVVVDEGAAGERLADFLIQNRLAPGPT0001035_1865DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-29_019711557pntA_1COG3288NAD(P) transhydrogenase subunit alphaGTGACACGTATTGGCATTGTGGCCGAGTTGGGTCGCGAGAGGCGGGTGGCGGCTACGCCCGCCACGGTGAAGCAGTTGTTGGGGTTGGGCTACGAGGTTGTGGTCGAAAAGGGCGCCGGGGAGTCCGCGTCGTTCCGGGATGAGACGTATGTCGAGGCCGGTGCCGTGATTGTGGGTGCTGATGAGGCGTGGGGCAGTGAAGTGGTGTTGCGGATTAATCCGCCTACCGAGGATGAGATCGACAGGCTAGCTCCGGGTGCGACGCTGATTGGGTCGTTGAGCCCAGGCCTGCGTCCGGAGCTGGTGGAGGCTTTGGCCGCTCGTCCGATTACGGCGTTGGCGTTGGATGCGGTGCCGCGGATTTCCCGAGCGCAGTCGATGGATGTGTTGAGTTCGATGGCGAACATTGCCGGGTACCGGGCGGTGATTGAGGCCGCGCACGAGTTCGGCCGGTTCTTCACCGGCCAGGTGACCGCGGCGGGTAAGGTCCCGCCGGCGAAGGTCCTGGTCGCGGGTGCGGGGGTTGCTGGCCTGGCGGCGATCGGTGCGGCGTCCAGCCTGGGTGCGATTGTGCGGGCAACGGATCCGCGGCCTGAGGTTGCTGATCAGGTGAAGTCGATCGGCGGGACCTACCTCAAGGTTGAGGTGGGGGAGGAGATGAAGTCCTCCGATGGGTATGCGAAGGCCACGAGTGACGCGTATAACGCCCGGGCGGCGGAGATCTACACCGAGCAGGCAGCTGATGTGGACATCATCATCACTACGGCCCTGATCCCGGGCCGTCCTGCGCCGAAGCTGCTCACGGCCGAGGACGTGGCCGGGATGAAGTCCGGCAGCGTGATTGTTGACATGGCCGCCGGGCAGGGCGGGAACGTGGAAGGCTCCGTGGCCGGGGAACGGGTGGTGACGGAGAACGGTGTGGTCATCCTGGGCTATACAGATCTGCCGGCGCGTCTTCCGGCGCAGGCGTCCCAGCTGTACGGGACGAACATGCTGAACCTGCTCAAGCTCCTGACAAAGGACAAAGACGGGGTGCTGCGCATCGACTTTGACGATGTGGTGCAGCGTTCAGTGACGGTGGTGCGCGACGGTGAGAAGACCTGGCCGCCGCCCCCGGTCCAGGTCTCCGCCGCCCCCACGGCCAAAACCCAGTCCCCGGCCGCCGAAAGCACTGCATCGAAGAAGAAGCAGGGCATGAGCACCGCGGGCAAAGCGGGCTTGTTTGCCGCCGGCATCGCGGCGCTGTTCCTGGTCAATGCGGTTGCTCCGGCGCCGCTGCCGCAGCACTTCACGGTGCTGATGCTCTCAGTCGTGGTCGGGTTCTATGTTATCGGGAAGGTCCACCATGCCCTGCACACCCCGCTGATGTCCGTCACGAACGCGATCTCGGGGATCATCGTGGTCGGTGCACTGCTGCAGGTCACCTCGGACAACGCCGTGATGCAGGTCCTCGCCGCGGTCGCGGTGCTGCTAGCCAGCATTAACATCTTCGGCGGGTTCGCCGTGACCCGGCGAATGCTCGCAATGTTCTCCCGCGGAGACGGGGCACGTAAATGAMTRIGIVAELGRERRVAATPATVKQLLGLGYEVVVEKGAGESASFRDETYVEAGAVIVGADEAWGSEVVLRINPPTEDEIDRLAPGATLIGSLSPGLRPELVEALAARPITALALDAVPRISRAQSMDVLSSMANIAGYRAVIEAAHEFGRFFTGQVTAAGKVPPAKVLVAGAGVAGLAAIGAASSLGAIVRATDPRPEVADQVKSIGGTYLKVEVGEEMKSSDGYAKATSDAYNARAAEIYTEQAADVDIIITTALIPGRPAPKLLTAEDVAGMKSGSVIVDMAAGQGGNVEGSVAGERVVTENGVVILGYTDLPARLPAQASQLYGTNMLNLLKLLTKDKDGVLRIDFDDVVQRSVTVVRDGEKTWPPPPVQVSAAPTAKTQSPAAESTASKKKQGMSTAGKAGLFAAGIAALFLVNAVAPAPLPQHFTVLMLSVVVGFYVIGKVHHALHTPLMSVTNAISGIIVVGALLQVTSDNAVMQVLAAVAVLLASINIFGGFAVTRRMLAMFSRGDGARKPGPT0013500_406DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-29_019721479pntB_1COG1282NAD(P) transhydrogenase subunit betaATGATGAGCCCCGCCACCGAAGCAGCAGCCCGAATCGTCTCGAGGAGCCTTACCGTGTCTGACACCGTCTCCGGTCCGTTGACCGCCGACTCCATCGCAGGAGCCGCGTACATCGTCGCGGCCCTGCTGTTCATCCTCAGCCTCGCCGGGCTGAGCAAACACGAGAAAGCCCGCGCCGGCGTCGTCTACGGCATCACGGGCATGGTCATCGCCCTCGCCGCGACCGTATGGCTGACCGTGCAGGGCGCCTGGGGCACCGGCCACGGCGTGACCGGCCTTGTGCTGCTCCTGGCAGCGGTCCTGGTGGGCGGGGCCATCGGGCTCTGGCGCGCCCGGGTGGTCGAAATGACCGGCATGCCCGAACTGATCGCGCTGCTGCACAGCTTCGTTGGCCTCGCTGCCGTGCTCGTGGGCTGGAACGGGCACCTGGAAGCCCCGGACCTGTCCGGGGATCTGATGGCCATCCACCATGCCGAGGTGTTCATCGGAGTCTTCATCGGCGCGGTGACCTTCACCGGTTCGATCGTGGCGTTCCTGAAACTCTCCGCCAGGATGAAGTCCTCGCCCCTGATGCTGCCGGGCAAGAACGCGATCAACCTCGGCGCCCTCGCCGCATTCATCGCCCTGACCGTCTGGTATGTCAACGACTCTCAGCTCTGGCTCCTGGTCGTGGTCACCGTTCTTGCCCTGGGCCTGGGCTGGCACCTGGTGGCATCCATCGGCGGCGGCGACATGCCCGTCGTCGTGTCCATGCTCAACAGCTACTCCGGCTGGGCCGCGGCCGCGGCGGGCTTCCTGCTGAACAACGACCTGCTCATCATCACCGGCGCCCTGGTGGGCTCCTCCGGCGCGTACCTGTCCTACATCATGTGTAAGGCCATGAACCGGTCCTTCATCTCCGTGATCGCCGGCGGGTTCGGCATCGCCGCACCGGCCGCGGCGGACGCCGAACACGGCGAACACCGCGAAATCACTGCCGAGGCCACCGCGGACATGCTGACCAACGCCTCGTCGGTGGTCATCACCCCCGGCTACGGCATGGCAGTGGCCCAGGCCCAGTACCCCGTCGCTGAACTCGCCCACCAGCTCCGCGAGAAGGGTGTGAATGTCAGGTTCGGCATCCACCCCGTCGCCGGGCGCCTGCCCGGACACATGAACGTGCTCCTCGCCGAAGCCAAGGTCCCGTACGACATCGTCCTGGAAATGGATGAAATCAACGACGACCTCGGCGACACCTCCGTGGTCCTGGTCATCGGTGCGAACGACACCGTCAACCCCTCGGCCGCAGAAGACCCGGGAAGCCCCATCGCGGGCATGCCCGTCCTCCGGGTCTGGGAAGCCGAGAACGTCATCGTATTCAAACGCTCCATGGCAGCCGGCTACGCAGGCGTCCAAAACCCCCTGTTCTACCGCGACAACTCCCAAATGCTCTTCGGCGACGCCAAAACCCGCGTCGAAGACATCCTCCGCGCCTTCTAAMMSPATEAAARIVSRSLTVSDTVSGPLTADSIAGAAYIVAALLFILSLAGLSKHEKARAGVVYGITGMVIALAATVWLTVQGAWGTGHGVTGLVLLLAAVLVGGAIGLWRARVVEMTGMPELIALLHSFVGLAAVLVGWNGHLEAPDLSGDLMAIHHAEVFIGVFIGAVTFTGSIVAFLKLSARMKSSPLMLPGKNAINLGALAAFIALTVWYVNDSQLWLLVVVTVLALGLGWHLVASIGGGDMPVVVSMLNSYSGWAAAAAGFLLNNDLLIITGALVGSSGAYLSYIMCKAMNRSFISVIAGGFGIAAPAAADAEHGEHREITAEATADMLTNASSVVITPGYGMAVAQAQYPVAELAHQLREKGVNVRFGIHPVAGRLPGHMNVLLAEAKVPYDIVLEMDEINDDLGDTSVVLVIGANDTVNPSAAEDPGSPIAGMPVLRVWEAENVIVFKRSMAAGYAGVQNPLFYRDNSQMLFGDAKTRVEDILRAFPGPT0013505_647DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
D1-29_01973264hypothetical proteinGTGCTTCCGAAACTGGCCGAACAGCTGCTGTCCCTTCGCCATCAGCGCGACGAGATCGCCGCCCAGGGCGAGGCCCTCGTGGAGGCCCACCCGTCTCCCTTGGTCCTGACATCGGCGTCAGCGCCTGGCGCCCGCATCCGTTCCGAAGTGACAGGGAAGTACTTCGCGAACGCAGCCCATCTGGCCTCCTATGCCGGCATCGCACCGGTCACCCGCCGCTCCGGCACATCCATTCGTGGAGAACACACCAGCCGGCGGGAATAAMLPKLAEQLLSLRHQRDEIAAQGEALVEAHPSPLVLTSASAPGARIRSEVTGKYFANAAHLASYAGIAPVTRRSGTSIRGEHTSRREPGPT0030635_6485DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_019741377hypothetical proteinATGACGGACGTGTTCTGCGGCATCGACTGGGCAGAAGGACCTCACGACATCTCAGTCGTGGACCAACAAGGCCAGCTGTTGGCGTCGCGAAGGATTGAAGATACAGCTGCCAGCCTGACGGAACTGCTGGAAATGCTGGGCGCCTTGGGCGACCGTGCCGAAGATCCTATTCCAGTTGCCATTGAAACCACCCGCTGCCTGCTCGTCGCAGCACTGCGATCGAGCGGCCGGGATGTCTATGCCATCAACCCGATGGCTGCCTCCCGCTACCGGGACCGGCACACAGTCTCCAGCAAGAAATCCGATGCCCAGGACGCTGCCGCGCTGGCCAACATTCTGCGGACCGACAGGCACGCTCACCGCCCGATGCCCAAGGATTCCGAACTCGTTCAGGCCATCGCGGTACTTGCGCGGGCCCAGCAGGACGCAGTCTGGGAACGGCAGCAAGAGACCAACCGGATCCGGTCCCTGCTGCGGGAGTATTACCCCTCTGCGCTCAGGGCCTTCCCCAACAGCGCCGACCTCGCTTCCCCCGTCGCCAGGGCCCTGCTCGGTGCCGTTTCCAACCCCTGCGAAAGCTGCCAAGCTCAGTCGTGTCCAGCTCGGTCGAATCCTGCTAAAGCAGGGCGGACACGCAGCCTGGAGACCACCATCGACAAGCTCTACCGATCCTCCGCAGCACCAATCTCCGCCAGTCAACCGTGGTCGAAGCTGCGTTCGGACCCAGCTTCGACCATGCTTGGGCAGTTGGATGCCGTCTGCCAGGGCCTTGAGTCGCTGACCGCAGCCGTTGAAAAGGCCTTCCATGCACACCCGGACGCGCAGACCCTGGTGAGCTTTCCCGGCCTCGGGTCAATTGCCGGAGCACGGATCCTAGCCGAAATCGGCGACGACCGCACAAGATTCACAACCGCTTCGGCGCTGAAGGCCTACGCCGGCGCGGCGCCTGTCACCCGCGCCAACGGAAAGAGCCACACCGTCCTGGCCAGGCGGGTCAAGAACAACCGACTGGCAGCCGCCGGCTACATCTGGGCCTTTTCAGCACTCACCAACTCAGCCGGCGCCCGGGCGCACTACGACCGGCGCAAGAAGCTCGGCGACAGACACACCGCAGCCCAGCGCAACCTTTTCAACCGGCTCCTCCGCTGCCTCCACCACTGTCTGCAGGCCAGCCGGACCTACAACGAATCAGCCGCATTCCCGGTCCCCCAAGAGAGAGCCGCCTCTGAACTCCTTAGCCCCATCAGATGTCTTTTTCGTAGCCCCGGTCCTGTTGCGGATGAGGGTGTGTTGGCCGGTCGGTCCCGGCATGGTTTTTGCCCCCAGTCGTTCATGATCCGGGGGTGTTGTCACCGGAGCCGGGTTAGCGGCAGATGAMTDVFCGIDWAEGPHDISVVDQQGQLLASRRIEDTAASLTELLEMLGALGDRAEDPIPVAIETTRCLLVAALRSSGRDVYAINPMAASRYRDRHTVSSKKSDAQDAAALANILRTDRHAHRPMPKDSELVQAIAVLARAQQDAVWERQQETNRIRSLLREYYPSALRAFPNSADLASPVARALLGAVSNPCESCQAQSCPARSNPAKAGRTRSLETTIDKLYRSSAAPISASQPWSKLRSDPASTMLGQLDAVCQGLESLTAAVEKAFHAHPDAQTLVSFPGLGSIAGARILAEIGDDRTRFTTASALKAYAGAAPVTRANGKSHTVLARRVKNNRLAAAGYIWAFSALTNSAGARAHYDRRKKLGDRHTAAQRNLFNRLLRCLHHCLQASRTYNESAAFPVPQERAASELLSPIRCLFRSPGPVADEGVLAGRSRHGFCPQSFMIRGCCHRSRVSGRNANANANANA
D1-29_01975777echA8_2COG1024putative enoyl-CoA hydratase echA8ATGAACACCTATGACAACATCCAGATCAAAAGGTGCGGACGAGTCGGCATCATCACCCTCCACCGCGCGAAGGCTCTCAACGCCCTCAACAGCAAACTCATGCATGAGGTCGTAGCCGCCGCCACCGAGTTCGACAAGGATCCCGAAGTCGGAGCAATCATCCTCACCGGCTCGGAGCGGGCATTCGCTGCCGGCGCTGATATTTCGGAGATGGCTGGAAAGAGTTTCCAGGACGTCTCTCTCGGGGGCTTGTTCCAGGAATGGGATGAGTTTGCAGCCGTCCGCACACCCACCATCGCAGCTGTCGCCGGTTATGCACTCGGCGGGGGGTGCGAAATCGCCATGATGTGCGATCTTATCGTGGCCGCTGACAGCGCAGTGTTCGGCCAACCAGAAATTAACCTTGGAGTAATTCCCGGGCTCGGCGGAACGCAGAGACTCACCCGCGCGATCGGCAAAGCAAAAGCGATGGACATGATTCTAACCGGCAGGTACATGAAAGCAGACGAAGCTGAGCGGGCCGGGCTGGTCGCCCGAGTCGTGACCGCGGACGCGCTGCTCGACACCGCCCAAGAGATCGCTGAGACTATAGCGGCAAAATCCCTGCCCGTTGCAATAGCTGCCAAACAATCCGTCAATCGAGCGTTCGAAAGCAGCCTCGCTGAGGGACTCACCTTCGAAACCCGCAGTTTCCGCGCTCTCTTTGCCCTCGACGACCAGACAGAAGGCATGACGGCTTTCATTGAAAAGCGGACTCCCGTGTTCAATCACCGTTGAMNTYDNIQIKRCGRVGIITLHRAKALNALNSKLMHEVVAAATEFDKDPEVGAIILTGSERAFAAGADISEMAGKSFQDVSLGGLFQEWDEFAAVRTPTIAAVAGYALGGGCEIAMMCDLIVAADSAVFGQPEINLGVIPGLGGTQRLTRAIGKAKAMDMILTGRYMKADEAERAGLVARVVTADALLDTAQEIAETIAAKSLPVAIAAKQSVNRAFESSLAEGLTFETRSFRALFALDDQTEGMTAFIEKRTPVFNHRPGPT0001860_5161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_01976759putative oxidoreductaseATGGACATCAGCAAAGCAACGGCAATAGTTACGGGTGCTGCATCCGGTCTCGGTGCGGCGACCGCAGCCCGCTTGGCCGCCTCGGGAGCTTTGGTTGTGGGGATCGACCTCGCTAACAGTATTACATCCGCTCCCGCAATCGATGGGGTGACGTACGTCGCCGCCGACGTCAGTAGTGCAAACGAGATCGAGGCAGCCCTTGCAGTGGCCGCCGACCTCGGCAGGCCGCTGCGGCTCGTTATAAACTGCGCGGGCATAGCGCCTGCTGTGCGGATACTGTCGGGGAGAGGGGTGCATGACCTCGACCTGTTCCGGCGCACGATCGAGGTCAACTTGGTCGGCACCTTCAACGTGCTGCGCTTGGCGGCCGAAGTTATCGCTCGCGAGGAGCCCGACACAGATGGTCAACGCGGCCTGATCATCAACACCGCTTCTGTCGCCGCCTACGAGGGCCAGATCGGACAGGCCGCGTATGCGGCGTCAAAGGGCGGAGTCGTGAGTCTGACGATAGCGAGTGCGCGCGATCTGGCCCGGTCTGGTATCCGGGTGAATACCATCGCCCCAGGGATTGTTGAGACTCCAATGCTCGCTTCCCTTGGCGAGGACGTGGGTGCTGCCCTTGCTGCCTCAGTGCCATTCCCGAAGCGGCTAGGGCGCCCTTCAGAGTTTGCGGATCTGGTGATGATGATCACCGCGCATGACTATCTCAATGGCGAGACAATCCGCTTGGACGGAGCTCTGCGGCTGGCGCCGCAGTAGMDISKATAIVTGAASGLGAATAARLAASGALVVGIDLANSITSAPAIDGVTYVAADVSSANEIEAALAVAADLGRPLRLVINCAGIAPAVRILSGRGVHDLDLFRRTIEVNLVGTFNVLRLAAEVIAREEPDTDGQRGLIINTASVAAYEGQIGQAAYAASKGGVVSLTIASARDLARSGIRVNTIAPGIVETPMLASLGEDVGAALAASVPFPKRLGRPSEFADLVMMITAHDYLNGETIRLDGALRLAPQPGPT0002265_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-29_019771641pamO_2COG2072Phenylacetone monooxygenaseATGGGCACTGAACTCGAACACTCAGTTACGACGACCGATTCTGCTCCGGAAGTGCTCGATGCACTGATCGTGGGGGCCGGTTTCGCCGGGGTGCGGCAGCTGTATCAATTCCACTCGCAGGGACTTAATGTCCGCCTCGTGGAGCGCGGCGGCGGTGTTGGCGGTACATGGTATTGGAACCGGTATCCTGGTGCTCGAACAGACTCCGATGCGTACTCCTACTCGTTCTACTTCACACGTGAGCTGGGCGAGGAATGGGCCTGGCCCGATCACTTCTCGTCACAGGAAGACATCGAGAAGTACATGAACTGGGTCATCGACCGCTTTGGGTTGCGTGACAGCCTGCAGCTCAACACGACCGTCACGAGCGCTGTCTTCGATGAAGAAACCAGCCTTTGGACCGTTGGCTACGCCGACGGCACCGGAGTAAAGACGCGCTACCTCGCGCTCGCAACCGGCATGCTTTCGCACCCGGTCTTTCCCAACTTCCCCGGACTCGACAGTTTCACCGGCGCCGCCGTACACACGGGCCTCTGGCCAGAGGAAGGTATCGATCTCGAGGGAAAGCGGGTCGCTGTCTTCGGTGCAGGTTCCTCCGCCGTCCAGGTGGTGCCGAACATTGCCAAGGTCGCAAGGTCACTCACTGTGTTCCAGCGTGGCGGCCACTGGGCAACCCCGCTGAACAACAGCACATTGACCGCCGAGGAGCAGGAAGAATACCGCCAACGCTTCGACGATCTGCGCGATCAAATCCGCAAGGACTACGGCGGCCAGGCCGACCACACCCCGGACCTACGTTCCACACTTGAGGTCACCGAGGAAGAACGGCTCGCCAAGTACGAGTATCTCTACAACGAGGGGCGCGGGCTGCGCATCTTCTCCGAGAACTTCCAAGACATGATGTGGCACCCGGAGGCAAACAAACACTTCAGCGACTTCCTCGCCGACAAGATTCGCTCGCGTGTCACAAAGCCCGAAGTCGCCGAGATGCTCGTCCCCGATCACGGCTTCGGCCGGTTCCGCCCGCCCAAAGACGTGGACGGCTACTACGAGTGCTTCAACGAAGAGCATGTGCAGCTGGTGTCGACTAAGTACACGCCGGTCGTCGAGATCACCCCCACGAGCATCAAGACCACCGAAAGCGAGTATGAGGTCGACGTTATCGTGTTCGCGACCGGATTCGACGCTTGGATGGGTGCGCTACGTCAAATGGATATCCAAGGCCTCGGCGGGAAGACTCTCAGCGAGGCGTGGTCCAACGGTCCGCACACCTTCCTCGGCATGGTTACCCCTAACTTCCCCAACCTTCTGTTCGTCGGCGGCGCCCAAGGCGTCGGGGCAAACACGCCAGGTTACGTCGAAGTACACGCCGAGTGGCTCGGCGCACTCGTAGCCTATGCGGATGAGAACGGCATCAAGCGTATCGAGGCGACTGAGGAGGCCAGCAACGCGTGGTCCGAGCAAATTCACGAGATCGCTAAGACCGGTCTGGTGGGAGACTCAAAGGCCTGGTACTTCGGGGGCAACATCGAAGGCAGCGACGGCAAGCTGCGCGTATATCCCGCCGGGTTCCCCGCCTACCAGACCGCGATCGCGGCAAGTGCAGAGAACGGTTACGAGGGTCTCGTTCTTTCCAAGTAGMGTELEHSVTTTDSAPEVLDALIVGAGFAGVRQLYQFHSQGLNVRLVERGGGVGGTWYWNRYPGARTDSDAYSYSFYFTRELGEEWAWPDHFSSQEDIEKYMNWVIDRFGLRDSLQLNTTVTSAVFDEETSLWTVGYADGTGVKTRYLALATGMLSHPVFPNFPGLDSFTGAAVHTGLWPEEGIDLEGKRVAVFGAGSSAVQVVPNIAKVARSLTVFQRGGHWATPLNNSTLTAEEQEEYRQRFDDLRDQIRKDYGGQADHTPDLRSTLEVTEEERLAKYEYLYNEGRGLRIFSENFQDMMWHPEANKHFSDFLADKIRSRVTKPEVAEMLVPDHGFGRFRPPKDVDGYYECFNEEHVQLVSTKYTPVVEITPTSIKTTESEYEVDVIVFATGFDAWMGALRQMDIQGLGGKTLSEAWSNGPHTFLGMVTPNFPNLLFVGGAQGVGANTPGYVEVHAEWLGALVAYADENGIKRIEATEEASNAWSEQIHEIAKTGLVGDSKAWYFGGNIEGSDGKLRVYPAGFPAYQTAIAASAENGYEGLVLSKNANANANANA
D1-29_019781032caiD_1Carnitinyl-CoA dehydrataseATGATTGAACTCCCGCTGCGTGAGCTCATGGACAGCGCCCCGCTTCGGATGATCCCTGATGATGGTGGCATCCCCATGAATCCCCTCGTCGTCATCAATCTGGACGAGGCCACGGGGGATGATGTACCTGCCGCCGTTGCGGCGTTACAGGCCTATCCGCGGCCTGTGGTGGTCGGTATCTCCAACCGCATCATCCCCTCCGACGTACTGCCAATTGCAGAGGCCATGACGATCGTATTGGGCCCCGAGGAGAGCGGTCGATGCAGTGCGGGCTCGCCCAAGGACCTTGACGCAATCGCGCGAACAGTGGAGAGGTCGCCCATCGCGGCGGTCACTTACGCCGACGTCCTGCGGGCGTCCGAGCACGTTTCCTTCAACCAAGCCATTGTTACGGAATCCCTCGCCTACTCGACGTTGCTGTTCGGTCCGGAGTTCCTCCACTGGTTGCATACCCGCACCGTCCCCACCGCGGTGCCAGGTGGCGACGATCCGGACTGGGAGCCGGTGCAACTGCAACGATCGGGGGATACACTCTCGGTCGTGTTAAATGATCCGGAGCGCCACAATGCGTTCAGCAGCCCCATGAGAGCGGGTCTCCTCAACGCCCTCGCCATCGCCGCGGCCGATCCCGCACTCCGCGTGGAGATCAGCGGCGCGGGGGCTTCCTTCTGCACTGGCGGTGACCTTACCGAATTCGGACTTTCGACCGACCCGGCGACCGCACACATGAACAGAATGCGGAATCACCCGGGTCCGGCCATGCACTTGGTGCAATCGAGAACTTCGGTGCACGTACATGGACCCCTCATTGGCGCAGGCATAGAGTTCGCTGCGTGTGCCGGGCACATCTCGGCGGCCCCAGGCTCGTTCTTTCTCCTGCCGGAACTCGGCTACGGCCAAATACCGGGCGCTGGCGGGACAGTCGGCATCCCTCGCAGGATCGGCCGGTGGCGTGCGGCATACATGGGGCTAACGCGGTACCGCATAAATGTTGCCAGCGGACTTCGATGGGGACTCATCGATGATGCATGAMIELPLRELMDSAPLRMIPDDGGIPMNPLVVINLDEATGDDVPAAVAALQAYPRPVVVGISNRIIPSDVLPIAEAMTIVLGPEESGRCSAGSPKDLDAIARTVERSPIAAVTYADVLRASEHVSFNQAIVTESLAYSTLLFGPEFLHWLHTRTVPTAVPGGDDPDWEPVQLQRSGDTLSVVLNDPERHNAFSSPMRAGLLNALAIAAADPALRVEISGAGASFCTGGDLTEFGLSTDPATAHMNRMRNHPGPAMHLVQSRTSVHVHGPLIGAGIEFAACAGHISAAPGSFFLLPELGYGQIPGAGGTVGIPRRIGRWRAAYMGLTRYRINVASGLRWGLIDDAPGPT0001860_841DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_019791242hypothetical proteinATGATGCATGAGATGCAGGACCATGGGACCGATCCGGTGAGGGCGTGGGCAGCATCCGGGGCGATGGCACTTACGGGGCGAGCTGATGGGCCTCCCATGGTGGCTCCCGGCCGTCCTGCAACATTTTTGACAGATCAGTTGGTGCGCTTCGCTGACCTCGCCGGCGAGCGTACTGGTGTGCGACCAGTAGTCCCTGGCGCCGAGCTGCTCGGTGAGCGTGCGGCGATCGCAGGCCTTAAGCGGGCGGCTCCGATGTCCTGTGGCGGAGCTTTCCAAGCCGTGCCGGCGAATGATGGCTGGTTCGGCCTCTCGCTTGCCCGTGACACGGACCATCGGGCGGTTCCCGCTCTAGTCGAGGGTGACTCAGATGCCGAACCGTGGGCCGCGATCAAGGCCTGGGCGCGCACTCAAAGCAGGGGCGAGGCGATTGAGCGAGCCCGTCTGCTTGACCTGGCTGCCTGCGCCTGGCCACCGGAGCCCTCCAGCCGGGCTCCCGTGATCAGGGGGTCAGAGGGGGGACTGCACTTACGGATTGAACGACCCCTCGTCGTGGACTTCAGTGCGCTATGGGCCGGCCCGCTCTGCGCCCACCTTCTCTCGATGGCTGGTTGCGACGTCATCAAGGTTGAGAGCGCAAAGCGGCCGGATGGAGCCCGCCGGGGGGCGGCTATGTTCTACGATCTCCTTCATGCCGGGCACGCGGCTATTCACGTCGACTTTGAGGACGCTGCAGACCTCGACCGGTTGCGCACCCTGATGAGCACAGCGTCGGTGGTCATAGAAAGCTCGCGTGCTCGGTCGCTGCGCGGACTGGGGCTCGTGGCTGAGGAATTCGTCAGAGCGGGCGTGACCTGGCTCTCCATCACGGCCCGTGGGCGGGAATCGAATGCACCTGGCTTCGGCGATGATGTCGCGGTGGGGGCAGGACTCGCAATCGAGGAAGGTGGGCAGGTGCTGCCAGTAGGCGATGCCATAGCAGATCCGTTGACCGGCGCGGTTGCGGCCACCGCGGCGGCCGAAGCTCTGCTCTCGGAGCGCGCCTTGCTCGTCGACATATCCATGCACGATGTTGCAAGCGCGGCTGCGGCGGGAGGAATTGCAGCACACTCTGTCGAGTCGGTAGAAGGTGAGTGGTGGGTGGAGACTGAGCGTGGACGTTACCCGGTGGCCGCCCCTCGTGCGAGGCAAGCGGTTGGGTTGGCCCCGGAACTTGGAGCGGACACTGCACAATGGCTCCGATGAMMHEMQDHGTDPVRAWAASGAMALTGRADGPPMVAPGRPATFLTDQLVRFADLAGERTGVRPVVPGAELLGERAAIAGLKRAAPMSCGGAFQAVPANDGWFGLSLARDTDHRAVPALVEGDSDAEPWAAIKAWARTQSRGEAIERARLLDLAACAWPPEPSSRAPVIRGSEGGLHLRIERPLVVDFSALWAGPLCAHLLSMAGCDVIKVESAKRPDGARRGAAMFYDLLHAGHAAIHVDFEDAADLDRLRTLMSTASVVIESSRARSLRGLGLVAEEFVRAGVTWLSITARGRESNAPGFGDDVAVGAGLAIEEGGQVLPVGDAIADPLTGAVAATAAAEALLSERALLVDISMHDVASAAAAGGIAAHSVESVEGEWWVETERGRYPVAAPRARQAVGLAPELGADTAQWLRNANANANANA
D1-29_019801395nfdA_2N-substituted formamide deformylaseATGGCTCCGATGACCTCGACGATTCTCGCCGACGTGGAGGTGGAGGGCCGTCGAGTCGACGTCGCGATCAACGGGGGCCTGATCTCCAGGATCGATCCGGTGGGAGAGCGCCAGGGTGTCCTGGCAGGGTCGGTAATCGACTGCGGCGGCGCCACGCTCATCCCGGGTTTGCACGACCATCACGTGCACCTGATGGCGATGGCTGCGACGCAGGACTCAGTGGACTGTGCGGCGCTCTCAACAGTGGCGGAATTTACCGCCGCGATCAGGAACCGCAGCGGGTCCACGGTTCGGGCGGTTGGGTACCATGAGTCTCTCGCGGGAGTGCTGGACCGATTCGCTTTGGATGCAATCGAAGACCGTCGACCACTGCGGGTGCAGCATCGCACCGGGGGACTATGGATGCTGAATTCGCGCGCTCTCGCCCGACTCGGCCCTGCGACCGAGGGCGCGCTCGGCATCGAGAGAGACCCCAACGGCCGTCCAACGGGGCGGTTATGGCGATGTGACGACTTGGTCCGTCATGCGTTCCCTCGCGAGCCACCACACCTCGGCGCGGTCGGCCGCTCGCTCTCCTGCCTAGGCATCACCGGAGTCACCGATGCGACTCCGGACCTTGACGACGTCGCAATCGTCGCGATTGGGGAGGCAGTCCGGACCGGACAACTGCCCCAACGCGTCGTCCTTCTCGGCGCACCGGACGCCCACCCGCTACCCCTTGGCGTCCAATCGGGACCCCGTAAGATTCTTCTTCACGACCACAACCTCCCGGCCGCCTCAACGCTGCTTGACCTCATAGCCGGAAGCCATGCGGTCGGCCGCCCGGTGGCCATTCATTGTGTAACGGCCGACGCCTTGGTCCTGGTCCTCGGCGTCCTTGCTGAATGCGGCACTCTACCCGGAGACCGCCTCGAGCATGCCGCCGTCGTCCCGCCAGAGTTAGTTCAGGTTCTGGCGGCCTTCGACTTGGCGATCGTCACTCAGCCGGACTTCCTGCGGTCCAAAGGCGACGACTATCTCCGCGATGTACCGGAAGCCGAGCGAGACTGGCTCTATCCATATGCATCGCTCAAGGCCGCCGGGGTAAGCGTCGTACCATCCAGCGATGCACCCTTCGGAGACGTGGACCCTTGGCGCGTCGTCGCCACAGCGGGCACCCGGCGGACGCGGAGCGGGACGACTCTCAACGCGGACGAGGCGGTGTCCGCTGAGCTCGCTCTGTCGGGCTATTTGATGGATCCGCTTGACTTAGGCGGGACTCAGCGGCGGGTGCTTGCGGATTCACCAGCAGATCTGTGCCTGCTCACTCCGGACTACCTCGAGGTTGCTCACTCTGGAACATCGCCGGTTATTTTGACAATCATCTCCGGCGAGATTGCTTTCAGCTCAATCTGAMAPMTSTILADVEVEGRRVDVAINGGLISRIDPVGERQGVLAGSVIDCGGATLIPGLHDHHVHLMAMAATQDSVDCAALSTVAEFTAAIRNRSGSTVRAVGYHESLAGVLDRFALDAIEDRRPLRVQHRTGGLWMLNSRALARLGPATEGALGIERDPNGRPTGRLWRCDDLVRHAFPREPPHLGAVGRSLSCLGITGVTDATPDLDDVAIVAIGEAVRTGQLPQRVVLLGAPDAHPLPLGVQSGPRKILLHDHNLPAASTLLDLIAGSHAVGRPVAIHCVTADALVLVLGVLAECGTLPGDRLEHAAVVPPELVQVLAAFDLAIVTQPDFLRSKGDDYLRDVPEAERDWLYPYASLKAAGVSVVPSSDAPFGDVDPWRVVATAGTRRTRSGTTLNADEAVSAELALSGYLMDPLDLGGTQRRVLADSPADLCLLTPDYLEVAHSGTSPVILTIISGEIAFSSINANANANANA
D1-29_019811311ntaA_1Nitrilotriacetate monooxygenase component AATGTCAGACGGACGTCGGTTGCATTTGAATATTGTAGGCAACGAACTTAATCTTCATCAGGGTGCCCGTGCGTTCGAGCGGGACAACGGCGGTGGCCCGGACCGCACCAGTGCATTCGGTCCGATCCTTGAAATGGGAAAACTCGCTGACGAGGGCCTGTTCACGGCCATGTTCCTCGGCGATATCGCCGGATCGATCGGCAGTCCTGCGATCGACGACGGCGCCCCTGAGCCTCTCACCGCGATGGCTGCCCTGTCCCGGGAGACTAAAAACCTAGGATTTATTGCCACTGCGTCAACCTCGTTCTACGACCCATACAACATCGCGCGCCTCGTTGGCTCCCTCGATTTGATCTCCGAGGGCCGGGCTGGAATGAACGCCATCACAAGTGCTGCGGATTTCTGGGCGCTGAACTACAGCCAAACCCAACACCTCGACCGTGAGGCGCGGTACAAGCGCGCGGATGAATTCCTTGACGTCATCAAGGCTCTTTGGGACAACCGTGACTTCCGCACCGATCCCGACGGCATTCGCCGGTTCTACTCCGAGCCGATCAACCACACCGGCGAGAACTTCCAGGTCACCGGCCCGCTCAATGTGCACCCGAGCCGCCAGGGTCGTCCGCTCATTGCACAAGCCGGCGGCTCCGGTCCCGGTATCAACGTGGCGGCCAAGCACGCTGACATGGTGTTCACCAACGCCTACTCGCGAGAGAGCGCCAAGACCTACCGCGCCTCGCTCGACGAAGCGCTCGCCAAACACGGTCGTGCAGCAGGGTCCGCCCCGGCCATTCCCGGCCTCATCCCGTATATAGCGAAAACGGCGCGGGAAGCCGAAGAGCGGATGCACGCCCTTGATGATTACATCGATTGGGAAAGCATCGCTCCCTACGCCCTTATGGAGTTCGGCATCCAGTACACGTACAACAGCGTCAACGATCCCTTCCCGGTGGAAGTCCTGCCAAATCCCGAGGATGTCAAGGACACGCTCAAGAGTGTTTTCGGCAACTACGTCGGCCTCTGGAACCACGTGCAGGCCAATCCCGGCCTGACCGTTCGCGACCTCGTCGCCCACGCAATGGTGCGCGGCGGTGCCCAGCACCGTAAATTCGTCGGTTCGTATGACGACTTCGCCGACGAGCTCGTGGACTGGTTCGAAGACGGCAACATCGGAGGCTTCAACCTGATGTTCCCGACGGGCAGCATGTGGCTCCAGGAGTTTGTCGACGAGGCCGTGCCGCGTCTGATCGACCGTGGGATTTACCGCAGCACGCCGGATACCCGGGTGCTTCGGGAGCGTTTCCAGGCCTGAMSDGRRLHLNIVGNELNLHQGARAFERDNGGGPDRTSAFGPILEMGKLADEGLFTAMFLGDIAGSIGSPAIDDGAPEPLTAMAALSRETKNLGFIATASTSFYDPYNIARLVGSLDLISEGRAGMNAITSAADFWALNYSQTQHLDREARYKRADEFLDVIKALWDNRDFRTDPDGIRRFYSEPINHTGENFQVTGPLNVHPSRQGRPLIAQAGGSGPGINVAAKHADMVFTNAYSRESAKTYRASLDEALAKHGRAAGSAPAIPGLIPYIAKTAREAEERMHALDDYIDWESIAPYALMEFGIQYTYNSVNDPFPVEVLPNPEDVKDTLKSVFGNYVGLWNHVQANPGLTVRDLVAHAMVRGGAQHRKFVGSYDDFADELVDWFEDGNIGGFNLMFPTGSMWLQEFVDEAVPRLIDRGIYRSTPDTRVLRERFQANANANANANA
D1-29_01982828bacC_2Dihydroanticapsin 7-dehydrogenaseATGGCCGGAGAACTCACCGATAAGGTGGCCGTTGTCACCGGAGGAGCTGCTGGGCTCGGTCGGGCCGCGGCGCGCAAATTTGTCGCCGAGGGCGCGCACGTCGTCATCGCCGATCTGCAACGCGAAGAGGGCGAGGCTCTGGCATCCGAGCTCGGACCGCACGCTATCTACTCGCATACCGACGTTTCTGACCGGGAGCAGGTCGCGGACTTGGTAACGCTTGCGGTCAAGTCCTTCGGCGGTCTGCACATCATGTTCAATAACGCTGGAATTTCGGGGCCAATGTTTCCCCGATTCCTCGACGACGATCTGCTGGCGTTTGAACAAGTCCTCAAGGTGAACCTCCTCGGGGTCATGGCGGGTACCCAATCGGCCGCTCGCCACATGGCAGTCAACGGTGGCGGCTCGATCATCAATACCACTTCAATCGGCGGCATTCAGGCTGGCCGTAATGTGATGACCTATCGCGCGTCGAAGGCCGCTGTGATCCAGTTCACGAAGTCGGTCGCTATTGACCTCGGCGAGCACGGGGTCCGGGTCAATGCGCTTGCTCCGGGCAACATTCCGACCTCGCTCCTGGCCTCATCCGCGAGAGACTACGAGGAGGGCCCGGTCCGTGACGAATTCATTGCAGGCGTACGCAGGATGCAATCCGCGAGCCGGCCACTTAATCACGAGGGCACCCCGGAGGACGTCGCCGACGCCGCAGTCTTCCTCGCAAGCGATCGCTCGAAGTACATCACGGGCGCGGTGTTACGGGTTGATGGCGGTACGGCCGCCGGCAACACGACTAACTCCGCTATTACCAGCCAGAGCCCAAGGAAATAGMAGELTDKVAVVTGGAAGLGRAAARKFVAEGAHVVIADLQREEGEALASELGPHAIYSHTDVSDREQVADLVTLAVKSFGGLHIMFNNAGISGPMFPRFLDDDLLAFEQVLKVNLLGVMAGTQSAARHMAVNGGGSIINTTSIGGIQAGRNVMTYRASKAAVIQFTKSVAIDLGEHGVRVNALAPGNIPTSLLASSARDYEEGPVRDEFIAGVRRMQSASRPLNHEGTPEDVADAAVFLASDRSKYITGAVLRVDGGTAAGNTTNSAITSQSPRKPGPT0008190_366DIRECT 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
D1-29_019831185thcDRhodocoxin reductaseGTGACGGATACTGACGTACTCATCGTCGGAGCGTCCGCCGCCGGGCTGGGTGTCCTGGAGAGCCTACGCGGCGCGAATTACCGAGGTCGGATCACCCTTCTCGGTGCCGAAACTCACCTTCCTTACGACCGACCCCCGCTATCAAAACAGGTCCTGGGCGGTGAATGGGATGCCGAGCGCGCGCAACTGCGGTCGCGCGAACAGCTTGACGCACTCGACGCCCGGTTCATCCTCGGTGAAGCTGCAACGGGTCTCAACGCCTCGGCCCGACAGGTTCACACTGCGCAGCGAAAACTGACGGCGGGGAACATCGTCATCGCGACAGGAACCTCCGCACGCAAACTGAGGAGCCAGCCGGAGATCAAGGGTCTTCACACACTCCGCACTCTCGAAGACGCCCTCGCGCTTCGCGAGGACCTGTTGGCTGCATCCCGGCTTGTCGTGGTCGGTGAGGGGGTGCTCGGCTCTGAGATTGCGGCGACGGCGAGCCAGCTAGGCCTCGACGTGACCATCACCGGACCGTTGACCTCGCCTATGCAGCTTCAGCTCGGCGGCTATGTATCGGGTTTGCTAGCGGAGTTGCACTCTGAAGCCGGAGTGCAGCTCAGGCTCGGAGTCGGTGTAACCGGGTTCACTGAGCACGATGATCGGGTGACCGGTGTCCGCCTCGCAGACGGTATGGAACTCCCAGCCGACATCGTCGTTGTCGCAATCGGCGGCATACCCGCCACCGACTGGCTGGCCGACAGCGGGCTCACATTGGAAAACGGAGTAGTCTGCGACGAGCAGTGCCGCGCCGCAGAAGGGATCTACGCTGTCGGCGACGTCGCACGATGGTTCCACAGTGGGGCGGGTGACTTAGTACGCCTTGAGAACCGCACCAACGCCACGGAGCAGTCAGCGGTTGTCGCTGCTGCAATCCTCGGCGGCACGAGTGGCTATGAGCCTGTCCCGTACTTCTGGTCGGACCAGTACAAGACCAAGATCCAGGTGTACGGAACAATCAGGCCGGATGCGTACTTCGATGTGGTGGAAGGCAACATCGATAACAGGCGGTTCGTCATCCGTTATCACGTAGATGGCCTTGTCACCGCGGTGCTGGGCTGGAACATGCCAAAGCAAACTCGTCTCCGGGCACAGGAGATTGACAAGAGACACCCGATTCAGGAAGAGGTAGCGGTATGAMTDTDVLIVGASAAGLGVLESLRGANYRGRITLLGAETHLPYDRPPLSKQVLGGEWDAERAQLRSREQLDALDARFILGEAATGLNASARQVHTAQRKLTAGNIVIATGTSARKLRSQPEIKGLHTLRTLEDALALREDLLAASRLVVVGEGVLGSEIAATASQLGLDVTITGPLTSPMQLQLGGYVSGLLAELHSEAGVQLRLGVGVTGFTEHDDRVTGVRLADGMELPADIVVVAIGGIPATDWLADSGLTLENGVVCDEQCRAAEGIYAVGDVARWFHSGAGDLVRLENRTNATEQSAVVAAAILGGTSGYEPVPYFWSDQYKTKIQVYGTIRPDAYFDVVEGNIDNRRFVIRYHVDGLVTAVLGWNMPKQTRLRAQEIDKRHPIQEEVAVPGPT0019730_136DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
D1-29_01984210subBFerredoxin-2ATGAAGGTTGTCATAAACGAACACAAATGCGTCGCAGCAGGTCAGTGTGCCTCCTATGCGCAGGACGTATTTGACCAACGTGACGAGGACGGCATCGTCGTCCTCCTCAATGAGAACCCACCGGAAAGCCAGCACGCTGACACACGCCGCGCTGCGGGGGCATGCCCCGCAATGGCCATTGTGATAGAAGAAGGAGCCCAGCATGACTGAMKVVINEHKCVAAGQCASYAQDVFDQRDEDGIVVLLNENPPESQHADTRRAAGACPAMAIVIEEGAQHDPGPT0007360_1193DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-GIBBERELLINS_PRODUCTIONPHYTOHORMONE-GIBBERELLINS_METABOLISMPHYTOHORMONE-GIBBERELLINS_BIOSYNTHESIS,PGPT0007360-Uncharacterized_P450_system_3Fe_4S_ferredoxin-K05337NANA
D1-29_019851230Cytochrome P450-SU2ATGACTGATCCATCAAACAGCAGTGCCCCTGAGGTACTCGAATTTCCCGTGATGCGTGAGCCGAAGTGCCCGTTCAATCCGCCTCAGGTCCTCATCGACATGGCGGTTAAGGAACCGGTAAGCCGTGTGCGCATCTGGGATGGCAGCACGCCGTGGCTGGTGACGGGCAACGAAGAGTTGCGGGCATTGGCAGCCGATGAGCGCGTCAGCGTTAATCACCATCTGCCCGGGTATCCGGCCTGGAACGCAGGACAAGCCGCCGCTGCATCCGTCCGCCCGGACTCGCTCATCAACGTCGACGGTGCGGAGCACGTGCGTCTTCGCCGCATGGCGACGCGCGCGTTCTCATTCAAGCGGGTCAACGCGATGCGTCCGGTAATACAGCGGGTCACCGACGAGCACATAGACGCGATCCTCGCGGGACCCAAGTCGATTGATCTCGTGCCCGCCCTAGCGCTGCCCATCCCGTCCCTTATGATCTGTTCGCTGCTCGGGGTTCCGTATGAGGACCACGACTTCTTCGAGGAGTCCGCGAAAGGCATTTTGGATCGCTACTCGCAGCCGGAAGATCAGGCCCGGCACTTCTCAGGGTTGACGGAGTACATGCGGGGACTCGTTGAGCTCAGACTTGAGGAGCCGACTGAAGACGTCGTCTCCGAGTTCGCCGAGCTGGCCCGCACGGGGGAGATCACCGTCAACGAGGCTGTGCAGACTTGTATCGTCCTGCTGTTAGCCGGTCACGAGACCAGTGCTAATATGATCGGCCTCGGCACCCTCGCGGTGTTGGAGAACCCGGAACAGTTCGCGGCTCTTCGCGAGAGCGACGATCCGAAGGTTATCGCGAACGCTGTCGAAGAGCTCCTTCGCTATCTGTCGATCATCCACAATGGGCAGCGCCGCATCGCGGTTGGAGACATCGAGATCGCCGGCGAGTCCATCAAGGCGGGCGAGGGCATCATCCTCGACTTCTCCGCCGGAAATTGGGACACCCGGGTATTCGAGGAACCCGAGGTGCTCGACCTTACCCGGGATGCCTCGCAGCACGTCGCCTTCGGATACGGCCCGCACGTCTGCGTCGGGCAGCAACTGGCCCGCGCGGAACTCCAGATCGTGTTCAGCACACTGTTCCGGCGGATTCCCACGCTCAAGCTCGCCGTCCCGTTGGACGAAATCGAGTTCAAGCACGACCGCCTCGCGTACGGCGTCTACTCACTGCCCGTCACGTGGTGAMTDPSNSSAPEVLEFPVMREPKCPFNPPQVLIDMAVKEPVSRVRIWDGSTPWLVTGNEELRALAADERVSVNHHLPGYPAWNAGQAAAASVRPDSLINVDGAEHVRLRRMATRAFSFKRVNAMRPVIQRVTDEHIDAILAGPKSIDLVPALALPIPSLMICSLLGVPYEDHDFFEESAKGILDRYSQPEDQARHFSGLTEYMRGLVELRLEEPTEDVVSEFAELARTGEITVNEAVQTCIVLLLAGHETSANMIGLGTLAVLENPEQFAALRESDDPKVIANAVEELLRYLSIIHNGQRRIAVGDIEIAGESIKAGEGIILDFSAGNWDTRVFEEPEVLDLTRDASQHVAFGYGPHVCVGQQLARAELQIVFSTLFRRIPTLKLAVPLDEIEFKHDRLAYGVYSLPVTWPGPT0011505_29DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSANTIPROTOZOAN|ANTIPROTISTAL_ACTIVITYANTIPROTISTAL-PENTALENOLACTONE_METABOLISM,PGPT0011505-CYP105D-K17876NANA
D1-29_01986516ntaBFMN reductase (NADH) NtaBATGACGTCCGCCAAGTTCCGGGCGGCGTTCCGTAATCACCCCGGCGGTGTCTCGGTCATCACGGCTGACGCAGGGGATGGGCCGGTCGGTTTGACCGCAACCTCTGTCATCTCTGTCAGCCTCGAGCCGCCCCTGGTGGTCTTCTCGGTGTCGGAGCTGTCCTCAAGCACGCCTACGATCCTCAAGAGCGACACTGTCGTCATCCATATGCTCAGCGTTGGACAGCTCGACATCGCCAAGCTCTGTTCCACGAGCGGCATCGACCGATTCGCCGACACATCGATCTGGTCGCGCCTGGTAACCGGTGAGCCGTTTTTCCACGCGGCCCCGGCCTGGATCCGCGGCAAGATTGTCTCCACCATGGCTGCGGGCGGCTCGACCGTCATCGCCGTGCAGGCACTGCAAGCCCTAGCCCCTGACCCCGACACGGTGGGCGTCATCGACCAGGAATCCGAGCAGCCCCTTGTGTACCACAACCGCACCTGGCACACGCTGAGCCAAAGTTCGGTGGTCTGAMTSAKFRAAFRNHPGGVSVITADAGDGPVGLTATSVISVSLEPPLVVFSVSELSSSTPTILKSDTVVIHMLSVGQLDIAKLCSTSGIDRFADTSIWSRLVTGEPFFHAAPAWIRGKIVSTMAAGGSTVIAVQALQALAPDPDTVGVIDQESEQPLVYHNRTWHTLSQSSVVNANANANANA
D1-29_01987213hypothetical proteinATGCTGTGGCACCGAGTTACTCTCAATAGCACTCGCCAGTCGGCGTCTGATTCCAGCACCGCCGTTAGTGCGACCTGCCCAGACGGGCGCAACCAGATCTTGGCGTTCGACATTGATGAGTACAACGCGTCTCCGTGGGTTGGCCTTCACTACAGACATGAGTTCATGCTCCACCACAGACATGAACTATTGGAGCGCGACGTCGACTTGTGAMLWHRVTLNSTRQSASDSSTAVSATCPDGRNQILAFDIDEYNASPWVGLHYRHEFMLHHRHELLERDVDLNANANANANA
D1-29_019881041adhC2_2COG1064NADP-dependent alcohol dehydrogenase C 2ATGCCTACCGTCAATGCTTACGCAGCACTTTCAGCTACCGGCGACCTGGTCCCTACGACGATTCAACGCCGCGACGTCGGCGGGCATGATGTGCTGATTGAAATCAAGTATGCGGGCATCTGCCACTCAGACATCCACACCGCTAGAGGCGAATGGGGGTCCCAGCAGTACCCGCTGGTTCCCGGCCATGAGATCGCCGGGATCGTCACCACGGTGGGCGCCGGTGTCACCAAACACGCCATCGACGACCGAGTCGGTGTGGGTTGTATGGTCAATTCCTGCCGCGAGTGCGTGAACTGCACGAAAGGCGAGGAACAGTACTGCCGCCGGTGCATTGCCACGTACGGCGGTAAAGACAGCGATGGGACCGTCACTCAGGGCGGCTACTCCAGCTCTGTGGTGGTGAACGAGGACTTCGTGGTGGCCATCCCGGAAGGGATCGAGCTCGACGTCGCCGCCCCGCTGCTGTGCGCGGGCATCACCGCCTACTCGCCGCTGCGCCACTGGGATGCCGGGCCAGGCAAGAAGATCGCCGTCGTCGGCCTCGGAGGACTGGGCCACATGGCCGTCAAACTCGCTCACGCCATGGGCGCCGAGGTCACCGTGCTCTCACAGTCACTAAAAAAACGGGAAGACGGCCTGAATCTAGGGGCGGACCACTTCTATGCCACCAACGATGAAAACACCTTCAAGGATCTGGCCCGATACTTCGACCTGATCATTAACACCGTCAGCGCCAAGATCGACATCAGCGCCTACCTGCGGCTGCTGGCCCTCGACGGCGTCCTCGTGAACGTCGGTGCTCCTGCAGCACCACTCCCGGTAAACGTGTTCTCCCTTATTACGGGCCGCCGGTCCTTCGCTGGCTCCATGATCGGCGGTATTGGTGAAACTCAGGAAATGCTCGATTTCTGTGCCGAACATGGCATCGGCGCAGAAATTGAAGTCATCCCAGCCAGCAAGATCAATGACGCCTACCAGCGCGTCCTCGCCGCAGACGTGAGGTACCGGTTCGTCATCGACGCATCAACCCTGAGCTGAMPTVNAYAALSATGDLVPTTIQRRDVGGHDVLIEIKYAGICHSDIHTARGEWGSQQYPLVPGHEIAGIVTTVGAGVTKHAIDDRVGVGCMVNSCRECVNCTKGEEQYCRRCIATYGGKDSDGTVTQGGYSSSVVVNEDFVVAIPEGIELDVAAPLLCAGITAYSPLRHWDAGPGKKIAVVGLGGLGHMAVKLAHAMGAEVTVLSQSLKKREDGLNLGADHFYATNDENTFKDLARYFDLIINTVSAKIDISAYLRLLALDGVLVNVGAPAAPLPVNVFSLITGRRSFAGSMIGGIGETQEMLDFCAEHGIGAEIEVIPASKINDAYQRVLAADVRYRFVIDASTLSPGPT0024430_1744DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0024430-yahK-K13979NANA
D1-29_01989567hypothetical proteinGTGCAGGAATTTCTACCAAGCTCTCGACCTCCAGGCCCACGGCGGACTCAAACGCGAGGTCAAAGAAGCCCTGCGCACAGGAAGGACACGCCGCAAAAGGCAGAAAAGCCCTCAGGGACGCAACAGTCGATTCCGGGACCCGATGATCAACATTTCCGAACCACCCGCTACCTGATGCTGGTACACCTGCCGGTGGACCACACCGCCGAATCGGTCCGTGACGGGCTCATCAACACCATGGGTACCCTTCCGGCGCATCTGCGCGGTTCCCTGACCTGGGACCAAGCGTCGAAATGGCCAAACACAAGGCCTTCAGCATCGCCACCGACATGGACGTCTACTTCTGCCAACCGGCCAGCCCCTGGCAGCGCGGATCCAACGAAAACACCAAAGGACTACTGGAATGGTCCACTACTACGCCAGTACTTCCCCAAAAACACTGACCTGAACGCCTACGGGCCCGAGGACCTAGAACGCGTCGCACAGGGACTCAACGCCCGCCCCCGGAAAAATACTCAACTGGAAAACCCAGCCGAGTCACTTCGTGATTCACTGATAGCCAACTGAMQEFLPSSRPPGPRRTQTRGQRSPAHRKDTPQKAEKPSGTQQSIPGPDDQHFRTTRYLMLVHLPVDHTAESVRDGLINTMGTLPAHLRGSLTWDQASKWPNTRPSASPPTWTSTSANRPAPGSADPTKTPKDYWNGPLLRQYFPKNTDLNAYGPEDLERVAQGLNARPRKNTQLENPAESLRDSLIANPGPT0030610_518DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
D1-29_01990285hypothetical proteinATGGGCGTGCAGTTCAGTGTCTCCTACCCGGTCCCGGTGATGAAGGCCCGCATGGTCGCGTGGGTGGTCAACGCCCCCGACGTCCGCGCACTCACCGACTACCCGTCGGGCACGAGCCTCTATCTGCGTGCCGAGCCGCTGCACCCCGGCGCTCACGCGACGCTCCTGGATGTGGACGGGCACAGAGTCACGGCCTTTTTGACGAACGCACCGTCCTGGCACGGGCCGGTCTTGATGCCCGGCACCGGGGCCGGGGACGGTGCGAGAACCGGATTAAGACCCTGAMGVQFSVSYPVPVMKARMVAWVVNAPDVRALTDYPSGTSLYLRAEPLHPGAHATLLDVDGHRVTAFLTNAPSWHGPVLMPGTGAGDGARTGLRPNANANANANA
D1-29_01991243hypothetical proteinATGAATCTGGTTTCCCGGCTGCAACTTACCGCTCTGCCCACCGGCCACAAAGCCAGGGGATGGGACATGAAAAGGTGGCGCTACCGGCTTTTCGCGACCGCCGGGAAAATCATCACCCGGGCCCGGCGGACCCGGGTGCTGATCCCTGACAAAGCCCCGGAAGCCGCAAAGATAACCACAATCCTAACCGCCATCGCCGGGCTGACAAACAGCCTCCGACAACGGGACGGACTCCTGGCCTGAMNLVSRLQLTALPTGHKARGWDMKRWRYRLFATAGKIITRARRTRVLIPDKAPEAAKITTILTAIAGLTNSLRQRDGLLANANANANANA
D1-29_019921518gsiB_2COG0747Glutathione-binding protein GsiBATGACGCTAAAACTTAAGGTCGTGGTGCCGGTTATGGCGGCCGCGCTCGTTCTCACGGGTTGTGCGCAGGGCGGTGCTGCGACTCCTGCCAAGGAGGCCGGAAACTCCGTCTTTCGTTACGGGGGACACGCGGTGAACAACCTTGACCCGCACAAGAACGCGCAATTCACGGACTGCACTTATCTTTGCCCTGCCTACGACCGGCTGGTGCATGTCGATCCGGATGGCAGCCTAATCCCCGGTCTCGCAGAGTCATGGGAGTTCAGCGAAGGCGGCCTGAAGTTGACGTTTAAGATCCGCGAGGGCGTGAAGTTCAAGGACGGCACTGTCCTGGATGGCGAAGCCGTGAAGGCGAGCTTGCTTCGAGCACGGGACCTTCCGGGATCGGCCGTGAAGAACGACTTCGCCACCATGTCCGATGTGACCGTGGATAATCCGCAGACGGTAACGCTCAACCTGAGCGCGCCGAACGCGGCGATGCCTGCCATTCTCTCGGGTCTTGCCGGGGTTGTCATCAACCCGACTGCGCTCGCGCAGGGCGTAAACCTCAGTGAAACGCTGGACGGAGCCGGTGCCTTCCGGTTTGTCTCGTACACGACCGGCAGTGAGCTTAAGTTGGAACGCAACCCCGATTACTGGGGCGAGACGCCGGAATTCGCCGGCATCGACTTCCGATTCTTCACCGATGCAGCGGCGCTTGCGAACTCTGTGCTGGGGGGGCAGATAGACGCCGCCGCGATCGTGCCCCAGAACCTCAAGCCATTCGTCGACAACGACAAGTTCAAAATGGAAACGACGAGTTCGCTCACCCAGAACACGATGATCGTGAACCACAAACAAAACGGACTTGACGACGAGCGCGTGCGCAAGGCGATCCTTCATGGCCTCGATCGTGATGCCATCTGCGAAGCGGTGTACGACGGGTTCTGCGAGATCACGGATCAGCCCTTCCCGCCGGGGCACTACGCCCACAATGACTCTATCCCCGAGGTGCTTTACCCCTATGACCAGAAGAAGGCCAAGGAGCTCCTAGCAGAGGCCGGCGCCAGTGACTTGATCTTGAAGGCGATCATGGTCCCGGCGGCACGCAAGATGGCCGAGGTTGTGCAAGCTCAGCTTAAGGAGATCGGGGTTGACCTGCAGCTCGAAGCGATTGAACTCTCGACTATGGTGCAGCGACTGCTCATCGACAAGACGGACTCGATGCTGGTCCTTCCCTTCAGTGGCCGCATTGACCCGTCCCAGATGCTGGCGGCCCGGCACTCCGAAAAGGGTTTTTTCAATCCCGGCGGTTACACCACTCCCAAGATGCAGCAGCTGTACGTCGACTCCGTCGCTGAACTCGACCCCGAAGCCCGCACGAAGATTCTGAAGGAAGCATCCCGTGTCGCAGCGGAAGCCGCACTGCCCCTGACGCTGAGTTTCTCGGAGAAAATCTACGTCATGAGGAGCGGTGTGACGTTCCCCTTGTTCAGCACGGGCAGCCAAGAAATCACGTGGGCAACCGAAACCAAGTGAMTLKLKVVVPVMAAALVLTGCAQGGAATPAKEAGNSVFRYGGHAVNNLDPHKNAQFTDCTYLCPAYDRLVHVDPDGSLIPGLAESWEFSEGGLKLTFKIREGVKFKDGTVLDGEAVKASLLRARDLPGSAVKNDFATMSDVTVDNPQTVTLNLSAPNAAMPAILSGLAGVVINPTALAQGVNLSETLDGAGAFRFVSYTTGSELKLERNPDYWGETPEFAGIDFRFFTDAAALANSVLGGQIDAAAIVPQNLKPFVDNDKFKMETTSSLTQNTMIVNHKQNGLDDERVRKAILHGLDRDAICEAVYDGFCEITDQPFPPGHYAHNDSIPEVLYPYDQKKAKELLAEAGASDLILKAIMVPAARKMAEVVQAQLKEIGVDLQLEAIELSTMVQRLLIDKTDSMLVLPFSGRIDPSQMLAARHSEKGFFNPGGYTTPKMQQLYVDSVAELDPEARTKILKEASRVAAEAALPLTLSFSEKIYVMRSGVTFPLFSTGSQEITWATETKNANANANANA
D1-29_01993951dppB_2COG0601Dipeptide transport system permease protein DppBGTGCTGCTTCGTCTCATTTTGAACCGCCTCCTGTCGATGGCACCAGTGCTGTTACTGGTCTCCTTCGCGGTATTCATGCTGATCGCCTTGATTCCCGGTGATCCTGCCGTTACTCTCGCAGGCGGCGACAACGCCTCACCGGAATCCATCGCTGCGGTGCGGGAGCGCCTCAACATGGACGAGCCGCTGATCGTCCAGTACCTGATCTGGCTGGGCGGAATCATCCGGCTTGACCTCGGTACCTCGTTGCTGAGCGGGCAGAACATCGCTGCAGAAATCGCGGCCCGACTGCCCTTCACCCTCAGTCTCACGCTGGCTGCGGCAGTCGTCGCGATCCTGGTCGCCATCCCCCTCGGCGTGCTGTCCGGAATGTGGCCGGGCGGCCGTCTCGACGAAGGAGTCCGCCTCGTCGCAAGTGCCGGGATCGCAGTGCCGAACTTCTGGCTTGCGGTCATGCTCGTCTCGCTATTCGGGGTGCAGCTCAGACTGTTTCCACCGACGGGCTACGTTCTCCCCTCGCAATCGTTTGGCGGATGGCTCGAAACCGTCACTCTTCCTGCGATCGCACTCGGGGTTGTGGTTTCTGCAAACCTGGCGCGGCAGTTGCGTCGCAGTCTCATCGAAGTCCTCGACTCCAACTACATCCGGACGGCCTGGGCGAAGGGGGCCGGCAGCGCCCGTGTCGTGGGTGTCCACGCGCTCAAGAACGCGGCGATTCCGGCAGTCACGGTGTTTGGGGTTCAGCTCGGAAACCTGCTGGGAGGAGCAATCATCATCGAATCCATCTTCGCGATCCCGGGGCTCGGCACGTACATGCTTCAGGCGATCAGCAGCCAGGATCTGCCCGTGGTCCAGGGCGTCGTGCTGATTTTCGTCGTGTTCCAGCTGGTGCTGAGCCTCCTCGTCGACATAAGTTACGGATACCTCAACCCGAAGGTGCGCATCGCATGAMLLRLILNRLLSMAPVLLLVSFAVFMLIALIPGDPAVTLAGGDNASPESIAAVRERLNMDEPLIVQYLIWLGGIIRLDLGTSLLSGQNIAAEIAARLPFTLSLTLAAAVVAILVAIPLGVLSGMWPGGRLDEGVRLVASAGIAVPNFWLAVMLVSLFGVQLRLFPPTGYVLPSQSFGGWLETVTLPAIALGVVVSANLARQLRRSLIEVLDSNYIRTAWAKGAGSARVVGVHALKNAAIPAVTVFGVQLGNLLGGAIIIESIFAIPGLGTYMLQAISSQDLPVVQGVVLIFVVFQLVLSLLVDISYGYLNPKVRIAPGPT0004445_11959DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_019942022btuD_7Vitamin B12 import ATP-binding protein BtuDATGACCGGAATCGAACAGCCCACCAGCACTGTCGGCATGGCCATAGAGGCCACGGGGGAAGCCAAGCTTCCCCCGCGCTGGATCAGTCATCCATGGATTCGTGCTCTTAAAACATGGAGTGGAGCATTAGCGGCCGGATGGCTGATCCTGGTGGTCCTGGTTGCAGGCCTTGCGCCCTGGATCGCAGGGCATCCGCCCGGGCAGCAGGATCTGGGCAACGCGCTCGCTCCGTTCTCGCTCGAACACCCCCTGGGCACCGACGATCTGGGCAGAGATGTGTTGTCGCGGCTTATGTACGGTGCGCAGATCAGTCTGGCGGTCTCGGTCCAGGTTGTGGTTCTCGCACTGCTCGGCGCCATCCCGATCGGTCTGTACGCTGGTTATAAGGGCGGCCGGGCCGATCGCCTGCTGATGCGTTTCATGGACGCGGGTCTGAGCTTTCCGGCGCTCGTGCTCGCGCTGGCTGTGGTCAGCGTCCTCGGCCCTGGTGTCACCAATGCGGCGATCGCGCTGGCGATCGTATTCATGCCCCTGCTGGCCCGCCTGGTGCGCGCACAGACGTTGGCAGTCAAGGAAGAGTCCTTCATCGAGGCTTCGCAGTCGCTGGGGACGCGCCCCTTCCTCATCGTGGTGCGCCGTATCCTTCCCAACCTCGCTTCCGCTCTGATCGTCCAGGCGGCGATCGTGATGAGCGGCGCGCTCATCGCGGAGGCAACGCTGAGCTTCCTGGGCTTGGGCGCGCAGCCGCCCGCGCCGAGCTGGGGTGGCATGCTGCAGCAGGCGTACGCGTCCGCGCTGTTCATCAATCCGCTCAGCCTCGTCCCGCCGGGACTGGCTATCGCTCTCACCGTCGTTGCTTTCAACGGATTCGGCGACGCGCTGACGACCGCTTACGGCCTGGACCGGACGAAGGCTAAGCGGCGCCATCTGCCCCGCCGGGCCAGGGGGAGGCGAGGATTCACGGCGATCGACCGCCCCGCCGCCGTTCCCGGTGCTGAGCCGGCAGGGAGTAACATCTGCCTGCGCGTCCGCGGACTGAACGTCGCGGTGCAGACCCCGAATGGGACGGTTCCCGTCGTCGAAGACGTGAACCTCACAGTTGGGCAGGGGGAAATCGTCGGGCTCGTGGGCGAGAGCGGCTCCGGAAAGACGGTTACGTCGCTGTCCATCATGCGCCTAGCCCCGTCCCCGCCCTTCGTGATCACCGGGGGAGTCATCGAACTCGGCGGACGCGACCTGTTCGCAATGAACTACAAGGAGCTCCGCCGTACTCGAGGCTCGGAAATCGCCATGATCTTCCAGGATCCTATGTCGAGCCTGAATCCCTCGCAGACAGTGGGCGCCCAGATCGGCGAGTCGCTGCGCCTACATCGTGGGCTTTCCCGTAAGCAGGCCACGGCTAGAGCCGTCGAGATGCTGGAACGCGTCGGCATCCCGGATCCCGTGAACCGTGCGCGTTCCTACCCCCACGAGCTATCTGGCGGTATGCGTCAACGGGTGATGATCGCCATGGCACTCAGTTGCTCTCCCCGCTTGATCATCGCAGACGAGCCCACCACGGCACTGGATGTGACGATCCAGGCGCAGGTGCTGGATCTGCTGCGCAAGCTCGCCGTCGAGGACGGGGTCGCTGTCATCTTCGTCACCCACGACCTGGCGGTCGTTTCGGAACTGTGTGACTCGGTCGCGGTGATGTACGCGGGCCAAGTCGTCGAACGCGCGCGGACTGTTGATCTGTTCCGCTCACCGCAGCACCCCTACACGCAGGGGCTGATCGCCGCGAGTCGCCGGGGCGAGGGCGAGGAGCCTGAGCCGATCCCCGGCCAGGTCCCGCGCATCGGGCTCGTCCCGTCGGGTTGCCGGTTCGCTCCGCGCTGCCCATTCGCAGTGGAGGAGTGCCGTCAGTCGCCCCAAATTCTGGAACCGGTGCTGAGCGTCGTCACAACCGAGACGTCCCCGGAGGACGCACGCATGGCAAGGTGCCGGCGCAAAAATGAGCTTCAATTGGAAGGAGTGCGATGAMTGIEQPTSTVGMAIEATGEAKLPPRWISHPWIRALKTWSGALAAGWLILVVLVAGLAPWIAGHPPGQQDLGNALAPFSLEHPLGTDDLGRDVLSRLMYGAQISLAVSVQVVVLALLGAIPIGLYAGYKGGRADRLLMRFMDAGLSFPALVLALAVVSVLGPGVTNAAIALAIVFMPLLARLVRAQTLAVKEESFIEASQSLGTRPFLIVVRRILPNLASALIVQAAIVMSGALIAEATLSFLGLGAQPPAPSWGGMLQQAYASALFINPLSLVPPGLAIALTVVAFNGFGDALTTAYGLDRTKAKRRHLPRRARGRRGFTAIDRPAAVPGAEPAGSNICLRVRGLNVAVQTPNGTVPVVEDVNLTVGQGEIVGLVGESGSGKTVTSLSIMRLAPSPPFVITGGVIELGGRDLFAMNYKELRRTRGSEIAMIFQDPMSSLNPSQTVGAQIGESLRLHRGLSRKQATARAVEMLERVGIPDPVNRARSYPHELSGGMRQRVMIAMALSCSPRLIIADEPTTALDVTIQAQVLDLLRKLAVEDGVAVIFVTHDLAVVSELCDSVAVMYAGQVVERARTVDLFRSPQHPYTQGLIAASRRGEGEEPEPIPGQVPRIGLVPSGCRFAPRCPFAVEECRQSPQILEPVLSVVTTETSPEDARMARCRRKNELQLEGVRPGPT0004435_1040DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_019951047btuD_8Vitamin B12 import ATP-binding protein BtuDATGAGTACCATCGCGAGCGTGACCGCCCCCCCAGCCGTCAGCCAGCTTATTGGGGTCTCCAAGCACTATTCCGTCCGACTTGCAGGCGGCGGCAAGGGCGTTCTGCAGGCCGTGGACGGAGCCGATCTCACCGTGAGGCCGGGCAAAACCCTCGGTCTGGTGGGCGAGTCCGGCTCCGGAAAGTCCACCATCGCCCGGCTGATGCTCAAGCTTGTCGAGCCAACGGCCGGAAGCGTGTTCCTGGATGGCGAAGACATCACGGGTGTCCGCGGTAGCCGGCTGCGTGCGCTGCGATCCAAGATGCAATTGGTGTTTCAGGACCCCTATTCTTCTTTCGACCCGCGTGCGGACATCAACGACAGCCTGGGGGAGGCGCTGCGACCGCTCGGCCTGAACAGGACCGAACGCGCCCGGAAATCCGCCGAGTTGCTCGAAACGGTAGGACTTCCGAGCGCGTTGGGTGCCCGGCGGCCGCGCGATCTGTCCGGCGGACAGCTGCAGAGGGCTGCCATCGCGCGCGCTCTTTCGCTTAGCCCGAAACTCATCGCCCTTGACGAACCCGTAAGCAGCCTGGACGTCTCAAGCCAGGTGCACATCATTAATCTGCTCAACAAGCTCCAGGAGGAGCTGGGCGTGTCGATGCTGTTCATCAGCCACGACCTGACCGTGGTGCGCGATGTCAGCCACGACATCGCCGTGATGTACCTGGGGAAAGTCGTCGAGCGAGGCGCATCCGCGGCCGTCTATTCTTCTCCCCGACACCCGTATACAGAGGCGCTCCTGTCGGCCGCGCCGCGGATGACCGCAGCTTCCGACACCGTCAGAGTCCAGCGGATTCTGCTTCGTGGAGACATCCCATCACCTCTGCGCCCTCCGGCGGGCTGCAGGTTCCACACAAGGTGTCCGAAGGTGATGGACGTCTGCCGCACGATTGTTCCCGAGGTGGTGCGGACGCCGCTGGGGGATGAAGCGGCCTGCCATCTTCTGACCGACACGCAAATGGTGCCCAGCGGCGCAGGACGCGGTCGCTCCGAGGACCGCACGTGAMSTIASVTAPPAVSQLIGVSKHYSVRLAGGGKGVLQAVDGADLTVRPGKTLGLVGESGSGKSTIARLMLKLVEPTAGSVFLDGEDITGVRGSRLRALRSKMQLVFQDPYSSFDPRADINDSLGEALRPLGLNRTERARKSAELLETVGLPSALGARRPRDLSGGQLQRAAIARALSLSPKLIALDEPVSSLDVSSQVHIINLLNKLQEELGVSMLFISHDLTVVRDVSHDIAVMYLGKVVERGASAAVYSSPRHPYTEALLSAAPRMTAASDTVRVQRILLRGDIPSPLRPPAGCRFHTRCPKVMDVCRTIVPEVVRTPLGDEAACHLLTDTQMVPSGAGRGRSEDRTPGPT0021035_2064DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021035-oppF-K10823NANA
D1-29_019961239Cytochrome P450-SU2ATGACCAATCCTGCAACCACGACGAGCCATTCCGACGTCTTCGACTTCCCGGTCGGCCGGGAGCCCAAATGCCCGTTCAACCCGCCGGCCAAATTAGTGGAGTCCGCCGCCGAGTATCCCGTGCGGCGCGTCCGCATCTGGGACGGCACCATGCCGTGGGTCATCACTGGCAACGAGGAACTCCATCTGCTCGCAACCGATCCGCGCGTCCTCGCCGAGGACCGGGTGCCTGGCTTCCCTCACTGGAATGAGGGGAAGAAGGCCACAGCGCTGCTGCGCCCGCAGAGCATCTTCAACACCGATGGCCCCGAACACTCCCGATTCCGCCGCATGACGACGAGATCATTTGCCTTCAAACGGGTAGAGTCGCTCCGCCCGAGGATCCAGGAGATCACGGACGAACGCATAGACACAATCCTGACAAGCGCCAAGCCGGTGGATCTGGTAAGCGAGTTCGCGCTGCCCATTCCGTCGCTGATGATCTGCGAGATGCTCGGCGTGCCCTACGAGCACCACGAGTTCTTCCAGGAGCACACCAGTGTTTCGCTGGACCGCTACGGTACTGCGGAGGAGCAGGAACGCACCTACCTCGTCATCAACGACTTTATGCGGACCCTCATCGAGTCGCGGATTGCCGACCCGGTGGACCGTGGAGGTGTGATCGAGGAACTCGTAGGACATGTCCGCGCCGGTGACATCTCGGTGGCCGAGGCTGTGCAGCTCGCCCGCGGCCTGCTCGCGGCAGGGTTCGAGACGAGCGCGAATATGATCGGCCTCGGCACGCTCGCTCTGCTGCAGAACCCCGATCAGCTTGCCATCCTGCGCGACACTGACGACCCGAAGGTCATCGCGAACGCGGTAGAGGAGCTGCTGCGCTACCTGAGCATCGTCCACAACGGCCAGCGCCGCATCGCGGCTGCAGATATCGAGATCGCCGGCCAGTCCATAAAGGCGGGCGAGGGCATCATCCTGGACTTCTCGGCCGGGAACTGGGACGCGCGGACGTTCAAGCAGCCAGACGTGTTTGATATACAGCGGACCACGGACAATCATCTGGCATTCGGCTTCGGCTCGCACGGCTGCATCGGCCAACAGCTGGCCCGGGCCGAGCTTCAGATCGTCTTCAGCACGCTGTTTAGGCGGATTCCCACGCTTAAGCTCGCGGTCCCGTTGGATGACATCGAGTTCAAGCACGACCGCCTCGCCTACGGCGTCTACTCGCTGCCCGTCACGTGGTGAMTNPATTTSHSDVFDFPVGREPKCPFNPPAKLVESAAEYPVRRVRIWDGTMPWVITGNEELHLLATDPRVLAEDRVPGFPHWNEGKKATALLRPQSIFNTDGPEHSRFRRMTTRSFAFKRVESLRPRIQEITDERIDTILTSAKPVDLVSEFALPIPSLMICEMLGVPYEHHEFFQEHTSVSLDRYGTAEEQERTYLVINDFMRTLIESRIADPVDRGGVIEELVGHVRAGDISVAEAVQLARGLLAAGFETSANMIGLGTLALLQNPDQLAILRDTDDPKVIANAVEELLRYLSIVHNGQRRIAAADIEIAGQSIKAGEGIILDFSAGNWDARTFKQPDVFDIQRTTDNHLAFGFGSHGCIGQQLARAELQIVFSTLFRRIPTLKLAVPLDDIEFKHDRLAYGVYSLPVTWPGPT0011505_38DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSANTIPROTOZOAN|ANTIPROTISTAL_ACTIVITYANTIPROTISTAL-PENTALENOLACTONE_METABOLISM,PGPT0011505-CYP105D-K17876NANA
D1-29_01997657hypothetical proteinGTGCTCTCCAACAACTACTCCGTGGACCCGTCGTTCATTGGGCGGATCGTGGATGTCGTCGCTGATCTGGACACCGTTTGGGTCACTCACGAGGGTGTCATCATCGCCACGCACTTCCCGGCTTGGACCTGGCACCTGGTGGTGACCAATCCTATCCACGTGGCCCGCGCGGCGGTGATGCGCCGGGACTTCCGGACCCAAAGAGTGCACTGCCCCGAACTGAGGAAGGCGGTGCAGGTGCGGGATCTGGCCGCCTATGACGAGATCTTCGGCATCGACCTCGGGCCAGCAGCCGAAACTGGTCCTAGAGGCGGCGTCATGACCGGGACACCCTCACAGATCGAGTACTACGCCCGGGCCCTGCGCGCACCACGGATCAGCGACGGGTTCCGCCGGCTCGGGGAACAGGCCCGGGACGCCGGCTGGTCCCATGAGGAGTACCCGGCCGCGGTCCTCTCCCGGGAAGTCTCCGAACGCGATGCCTCCGGAGCGGCGACCCGGATCAACCGGCACCCGCATTCTTCGCCGTCGACACAACCGTCCGTGAGACCGCGCGTGCCCGGTTCCTGGCTATGGAAAACCCACTGGAAGAGCTCTTCCCACCCTCCGGGTCGAATCCGGCCAAAAAGGCCGCCGGAAACGGGCCAGGAACATTAAMLSNNYSVDPSFIGRIVDVVADLDTVWVTHEGVIIATHFPAWTWHLVVTNPIHVARAAVMRRDFRTQRVHCPELRKAVQVRDLAAYDEIFGIDLGPAAETGPRGGVMTGTPSQIEYYARALRAPRISDGFRRLGEQARDAGWSHEEYPAAVLSREVSERDASGAATRINRHPHSSPSTQPSVRPRVPGSWLWKTHWKSSSHPPGRIRPKRPPETGQEHNANANANANA
D1-29_01998816hypothetical proteinTTGGATGATTGGGCGGAGATACGCCACCTGTTTTCGACGGGCAAGCACTCGAAGCGGGTGATCGGCAGGATCGTGGGTGTTTCCCGCGGAACGGTGGATCGGGTGCTGGAGTCGGATTGGGCGCCGAAGTATCAGCGGGTGGCGGGTGTGTCGAGTTTTGATGCGTTTGCTCCCAGGGTTCCGGAGTTGTTGGTGAAGACGCCAACGATGCCGGCGGCGACGCTGGCGGAGCGGGTGGGCTGGTCTGATTTCGCGTCCTTGTTCCCGGCCGAGGTCGCGGCGATCCGGCCCGAATACGCGCCGCCGGACCCGGCTGACCGTTTGGTTCACGAGCCGGGGTTACAGGTCCAGTGCGATCTCTGGTTTCCGCACGAGCCGCTGGCTGTCGGTGAGGGCCAGTCCGACACGCCGCCGGTGCTGGTGATGACTTCTGCGTTCTCCGGATTTATCCAGGCCCGGATGCTGCCGTCACGGACGACGCCGGACCTTCTGGGCGGAATGTGGACTCTGCTGCAGAACGCGCAGGCGGTCCCGTCCCGGCTCTTGTGGGACAACGAGTCCGGCAACGGCAGGCGCAAACCGACCGAGCCGGTGGCCGCGTTCGCCGGTTCCCTCGGGCTGGAGATCAAGCTGCTTCCGCCGCGGGATCCGGAGTCCAAGGGCATGGTCGAGCGGATGGACCGCTACTTCCGGCAACGCTTCATGCCGGGCCGGGACTTCCGCTCCCAACGGACTTCAACGCCCAGCTGGAAGACTGGCTGCCCAAGGCCAATCACCGCTACTCCCGGTCCCGCCACGGCCGCCCTGACGAGCTGAMDDWAEIRHLFSTGKHSKRVIGRIVGVSRGTVDRVLESDWAPKYQRVAGVSSFDAFAPRVPELLVKTPTMPAATLAERVGWSDFASLFPAEVAAIRPEYAPPDPADRLVHEPGLQVQCDLWFPHEPLAVGEGQSDTPPVLVMTSAFSGFIQARMLPSRTTPDLLGGMWTLLQNAQAVPSRLLWDNESGNGRRKPTEPVAAFAGSLGLEIKLLPPRDPESKGMVERMDRYFRQRFMPGRDFRSQRTSTPSWKTGCPRPITATPGPATAALTSNANANANANA
D1-29_01999312hypothetical proteinATGGCATTAAAAGCGGGAAGTCGGCTGCGGAGTCAAGTCTGCAGCACGGAAGTCATAGTGGTCGGTGCACCCTCAACCAGTGTCACACTGACATGTGGCGGGTTTGACATGGTCGCGTTCGGCGACAGCCGCAATGATGCGCTTGCTCCCCTCACGGGCTGGGATGGCGGAAACAGTTTAGGAAAACGCTACACAGAAATCGAAGACAAAGCACTTGAGGTGCTGGTGACCAAGGCCGGCGTCGGCACTCTGGGCAACGGCCACGTTGCGCTCGTGGTCAAGGAATCCAAGCCGCTCCCTTCGAGCGACTGAMALKAGSRLRSQVCSTEVIVVGAPSTSVTLTCGGFDMVAFGDSRNDALAPLTGWDGGNSLGKRYTEIEDKALEVLVTKAGVGTLGNGHVALVVKESKPLPSSDNANANANANA
D1-29_020001497lcfB_1COG0318Long-chain-fatty-acid--CoA ligaseATGGATCTTGCATTACTGATTGATATGGCGTCAGGTCACGGAGACCGGGTTGTATTAGGTTCGGGGGAATCCGCCATCACAGCGTCGAGGCTCCGCGAACTTGCAGGGGGCGGCGCGGGCGTCCTCACGCAAGCCGGGGCGCAAAACGTAGTCCTGCTGGCACGCAACGGACCTATCGTACCCGTGCTCCTCTTCTCGGGCGCCCTGGCTGGAGTGCCGTTCTCCGCACTCAACTATCGACTGTCTGCCGACCAGATCCGCGAGCAGCTCGCGCGCTTGGACGCTCCCTTCGTGGTCGTCGACGAGGAATACAGGCGGATAGTTGAGGGCAGTGAACACGTCGTCACCGTCGCCGAGTTCTTCGCGCTCGCCGGATCCGCCGAACCTATCGCGACGAGCCCTGCCAGCGACTCCGTCGCTGCCAAGCTATTCACCAGCGGCACGACGTCTAAGCCAAAAATAGTGCCTCTTCGGCACGAGAATCTGTTCGCCTATGTCTCCCAGACAGTCGAGTTCGGCGGGGCTACCGAGAACGAGACTGCGCTGGTTTGCGTTCCTCCGTACCACGTCGCCGCACTCGGTTCCGTTCTGACTAATCTGTATGCCGGGCGACGCGTGGCCTACCTTCCCGACTTCGACGCGAACTCCTGGTTGTCCATGGTCAAGGAAGAAGGTGTGACCTCGGCCATGCTCGTACCCACGATGATCAGTCGCCTCGTGGAAACCCTCGCCGGCGAGCCCGCCGACGCCCCGACGCTGCGACAAATCACCTACGGCGGATCGAAGATGCCGACACCAGTACTGGAACGCGCGCTGCTGGCTTTCCCAGGTTGCGGGTTCGTCAACGCATACGGGCTCACCGAGACCAGCTCGACGATTGCGCTGCTCGGGCCGGATGATCACCGCACGGCACTCGCCAGCTCCGAAGCGCACGTGCGGGCACGCCTTTCGAGCGCAGGCCGTTCGATCCCCGGCATCGAACTTCAGATCCGCGACAGCAAAGACAGTGTGATTACGGACGACGCCACCGGAGAACTCTGGGTGCGCGGAGCGCAGGTCTCCGGCGAGTACCAGGACTCCGGTTCGGTCCTCGACGCGGCCGGCTGGTTTCCCACGAAGGACCGCGCGTGGATGGACAGTGAGGGCTACCTCTTCGTTGAGGGTCGCACCGACGATGTCATCATCCGCGGCGGCGAAAACATCGCTCCTGCTGAGATCGAAGATGTCCTTCTCCGCCACCCCGGCATCCTCGAGGCCGCGGTGGTCGGCACGCCTGACGACGAGTGGGGCGAACGCATCGTAGCTGTCGTTGTAGCGCGCGAAGGACACTTCCTGACTGAGAGCGACGTACGTGAGTGGGCGCGCGCCCGTATCCGTGGCTCTCGCACACCCGATGACGTGGTATGGCGGAACGAACTCCCACATACGGCAACTGGAAAGTTGCTCCGAAGGGAACTCGTCGCCGAAATTGCCAGCCGCTCGGCAGCCGGTGCGTAAMDLALLIDMASGHGDRVVLGSGESAITASRLRELAGGGAGVLTQAGAQNVVLLARNGPIVPVLLFSGALAGVPFSALNYRLSADQIREQLARLDAPFVVVDEEYRRIVEGSEHVVTVAEFFALAGSAEPIATSPASDSVAAKLFTSGTTSKPKIVPLRHENLFAYVSQTVEFGGATENETALVCVPPYHVAALGSVLTNLYAGRRVAYLPDFDANSWLSMVKEEGVTSAMLVPTMISRLVETLAGEPADAPTLRQITYGGSKMPTPVLERALLAFPGCGFVNAYGLTETSSTIALLGPDDHRTALASSEAHVRARLSSAGRSIPGIELQIRDSKDSVITDDATGELWVRGAQVSGEYQDSGSVLDAAGWFPTKDRAWMDSEGYLFVEGRTDDVIIRGGENIAPAEIEDVLLRHPGILEAAVVGTPDDEWGERIVAVVVAREGHFLTESDVREWARARIRGSRTPDDVVWRNELPHTATGKLLRRELVAEIASRSAAGAPGPT0008380_15075DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_020011098gloB_2Hydroxyacylglutathione hydrolaseATGCAAATGTTGCCCTTGTGTTCAAATAGTCAAATGAACGAATCCCACACAGCCATCCGTGACACACCTCTTCAGCGAACGGTGAGCGGGGGCGCTGTTCCGACCTCACGTCGTCAGGTCGAGGCATGGGTTGAGCGCCGACAGCCCCCAGTCGAACGGGTCGCGGAGCAGGTATGGAGCATCCCGGTGGACTGTGCAGAGTTCCCTGTGGCCTACACGCTCGCTTACGTCCTCGTCGGAAACGATGGTGGCTTCATCATCATCGACCCCGGATGGACCAGCGCTGCTGGGCGCGCCGACCTGCAGGCGGGACTTCGCATGGCCGGTCTCGCGGAGAACGACCTCCAAGGCATCGTCGTTACTCATTCGCACGCGGATCATTATGGACTGGCCCCTGAGCTGGCCGACCGTACTGGTTCTTGGATCGCCGGGCATCCGGCTGAGATTCCGGAGGACCAGTTCCACCGGGAGGTCACAAGGATCGTCCAGTCCAATCGGGACGTGATGCAGGCGCTCGGAGTGCCGCTCGTCGACCTGGATCGGGTGACCTTCGCTCCTGAGGACCTCAAAAGGTACGTTCCCGACCGTGTTGTAGACCGCGAGCTGCTCGATGGCGATCTCCTGCCGCTCGCTGGCCGGGAAGTGCGGGCTATCTGGACGCCGGGTCACACTCGCGGTCACCTGAGTTTCATCGACCTCGACAACTGCCTGCTGTTCACCGGTGACCACGTCCTGCCGCGAATCTCTCCGAACATTGGACTCCTGCAAGAATTCGAAGTCGAGCATGACCCTGTTGGTGACTACCTGGTGTCGCTTGAGCGGCTGCGCCCCTGGAGCGATTACGAGGCATGCCCGGCTCACGAGTACCGATTCACGGAACTGGCGCAACGGCTCGACGAACTTCGCGACCATACGCACGGGCGCTCGAACCAGGTCGCCGCCGTGCTTGCGGGTGACCCTGGGGCGAGCGTCTGGGAGGTCGCCCAGCGACTGACGTGGTCCCGGGGTTGGGACGCTCTCGACGGCTCAAACCTCCAGGCCGCGCTCGGTGAGACGAACGCGCACGTCCGTCATGTCAGACTTATCGCGGAGTCCTAGMQMLPLCSNSQMNESHTAIRDTPLQRTVSGGAVPTSRRQVEAWVERRQPPVERVAEQVWSIPVDCAEFPVAYTLAYVLVGNDGGFIIIDPGWTSAAGRADLQAGLRMAGLAENDLQGIVVTHSHADHYGLAPELADRTGSWIAGHPAEIPEDQFHREVTRIVQSNRDVMQALGVPLVDLDRVTFAPEDLKRYVPDRVVDRELLDGDLLPLAGREVRAIWTPGHTRGHLSFIDLDNCLLFTGDHVLPRISPNIGLLQEFEVEHDPVGDYLVSLERLRPWSDYEACPAHEYRFTELAQRLDELRDHTHGRSNQVAAVLAGDPGASVWEVAQRLTWSRGWDALDGSNLQAALGETNAHVRHVRLIAESNANANANANA
D1-29_02002756fcbB24-chlorobenzoyl coenzyme A dehalogenase-2ATGGCCGGCATCCGCGTGGAACGGGGTTCGTCGTTTTCGCGCATCGTGCTCAGTCGGCCCGACGAGGGCAATGCGCTCGACATCGCGCTGGCTCGCGATCTGCGGGACGCCGTACAGGAACTGTCGCGCGACAGCGGCCACATACTGGTTCTGTCAGCTGAGGGCCGGCTGTTCTGCGGCGGCGGCGATCTCGCAGCAACTAATGCTGCCCCCTCCCCCGCTGAGTACATCAATGAGCTTGCTGCGACCATGCACGAAGCCATCCTCGCCCTCGCCGAGTCCGATCTCATCGTCGTGGCCTCCGTTCAGGGTTCCGCCGCCGGCGGCGGACTCGGGCTCGTACTCAACGCCGACTACGTCGTTGCGAGCGAGAAGGCGAGCTTCCTCAGCGCCTACTCCGCCGTCGGTCTGAGCCCCGACTGTGGAGCCTCGTACCTCCTGCCGCGTGTCGTCGGCTTGCGGCGGGCAAGCGAGGTCCTCCTGGCGAAGCGCACGCTGGACGCGGCCACTGCCCTCGACTGGGGGCTCGTTAACCACGTAGCCTCTGCCGATGAGCTGGAGACAGCAACGATCCAAGCAGTCAATACGATCGCCACTCAGCCAGCGCCCGCACGTGCTGCTGCAAAGCGACTCCTGGCTCAGAACTGGATCGACGGCTACAGCACCCACCTCGATCGAGAGCAGACCTCCATCGCTCGGCTTACCGCATCCAAGGAGTCAACCGCTTTGCGGGACGCCTTCGTACGCAAGGGTTAAMAGIRVERGSSFSRIVLSRPDEGNALDIALARDLRDAVQELSRDSGHILVLSAEGRLFCGGGDLAATNAAPSPAEYINELAATMHEAILALAESDLIVVASVQGSAAGGGLGLVLNADYVVASEKASFLSAYSAVGLSPDCGASYLLPRVVGLRRASEVLLAKRTLDAATALDWGLVNHVASADELETATIQAVNTIATQPAPARAAAKRLLAQNWIDGYSTHLDREQTSIARLTASKESTALRDAFVRKGPGPT0006070_2952DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
D1-29_02003978COG2070NADH:quinone reductaseGTGATCACAAACGATTTCACTCGAACATTCGGGGTAAAGCACCCCATAACCTGCGGCGGCATGACCGGCGTAGGTACCGCACCGTTGATCGCGGCGGTGGCCAACGCGGGAGCCATGGGCTTCCTGACTGCCCTCACGCAGCCCACCCCCGAGGACCTTGTGCGAGAGATTCAGCGCACTCGCGATCTCACGGACGCTCCCTTCGGCGTCAACCTCACAATCCTCCCAACGATCCGCCCGGTGCCCTATGACGAATACCGTAGGGCGATCATTGAAAGCAAGATCCCCTTCGTCGAGACCGCAGGGAGCAACCCCGAGCCACATATGGCCGATTTCAAAGCTGCAGGGGTCAAGGTTCTGCACAAGGCCGTCTCCGTGCGCCACGCCGTCAAGGCGGAGGAGGTCGGGGTCGATGCACTCAGCATCGACGGGTTCGAGTGCGCCGGTCACCCGGGCGAGGACGATGTGCCTGGTCTGGTGCTGATCCCGGCCGCGGCCCGGGTGCTGAAGATCCCATTCATCGCATCCGGCGGTTTTGCCACCGGACGCGGTCTCGCGGCGGCACTCTCCCTCGGTGCCAGCGGCATCAACATGGGCACACGGTTTGTAGCGACCCACGAAGCCCCGGTCCACGAGAACGTCAAAAAACAGATCGTCGCGAACAACGAGCGCGACACAGTGCTCGTCTTCCGGATGTTCAAGAACACCGCCCGGGTCGCCCGCAACTCGATCTCTGAGGAGATCCTCGAAATCTCGTCGAAGCCAGGCGCGACCTTCGAGGACATCGCCCACCTAGCGTCCGGCGTCCGCGGTCGCGATCGCGTTCTCGGCGGCGGAGAAATGGAAGATGGTCTGTGGTGGGGAGGCCAGTCGCAGGGACTGATCGACGAGGTGCTCAGCGCCCGCGAGGTTGTAGACTCCATCGTCGCGGAGGCGGAGGACGTCATCACCCGCCTTCTGGCGAATCAGGTCGCCTGAMITNDFTRTFGVKHPITCGGMTGVGTAPLIAAVANAGAMGFLTALTQPTPEDLVREIQRTRDLTDAPFGVNLTILPTIRPVPYDEYRRAIIESKIPFVETAGSNPEPHMADFKAAGVKVLHKAVSVRHAVKAEEVGVDALSIDGFECAGHPGEDDVPGLVLIPAAARVLKIPFIASGGFATGRGLAAALSLGASGINMGTRFVATHEAPVHENVKKQIVANNERDTVLVFRMFKNTARVARNSISEEILEISSKPGATFEDIAHLASGVRGRDRVLGGGEMEDGLWWGGQSQGLIDEVLSAREVVDSIVAEAEDVITRLLANQVAPGPT0006800_3585DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
D1-29_02004636hypothetical proteinATGCGTGAGGCAACACTGCGAGCCGCCGGCTCTGGTAAAGTCGGCCCCAAGATGACTACCACGCCTAAGATCCTTCCCATCCGTCAGCGCCAGCGGGAGATGACGAGAGACGCTATTCTCGCAGCGGCCCTGGATGCATTTAGCGAGCAGGGCTTCTTCTTCGTGTCGATCGACGACATCGTTCAAAGAGCGGGAATCAGCCGGACGACGTTTTATTTGCACTTCACGGACAAATCCGCCGCACTTCGCGCACTGCGGGACAAGCGACTTGCGGAATGGGGGGAGTCTGACAGTTATGAATGGATAAAGGACCAAGAGTCGGCTGAAGCGTTCTTCACAAAGATGGTCGACTTCTATCTGGAAACGCCGGAACTGCACAAAACCCTCCACCAAGCTCGTGCGGCCGATCCTGAATTTGCAGCAGCGCATCAGCAGTCCATGGAGGAACAGCTGGCGCTGCTCGCAGAGAACCCGGCCATGCGGGATGCGACCGAGGAACAACGTCGGATGGCAATCGCAATGCTCTATTCGATGATCGATCACTTCCTCTACGTATGGTTGATCCAGGGTTGGAAACTCGATCGTTCGCAAGCCATCAAAGCTATGGCAAACGCGATGTCCGGAGTCCTGACCTAAMREATLRAAGSGKVGPKMTTTPKILPIRQRQREMTRDAILAAALDAFSEQGFFFVSIDDIVQRAGISRTTFYLHFTDKSAALRALRDKRLAEWGESDSYEWIKDQESAEAFFTKMVDFYLETPELHKTLHQARAADPEFAAAHQQSMEEQLALLAENPAMRDATEEQRRMAIAMLYSMIDHFLYVWLIQGWKLDRSQAIKAMANAMSGVLTNANANANANA
D1-29_02005954menB_21,4-dihydroxy-2-naphthoyl-CoA synthaseATGACCCAGGAATCACCCTCAGCAGAGGAAATTGTCCTCTATGACAAAGACCCCGCTACGAAGATAGCGACCATAACCTTGGCGCGGCCGGAGCGACTAAATGCTCCGACCGTCGCGGCCCGTCACCGCTATGCCGACCTTATCCACAAGGCCAACATCGACGACGACGTGAAAGTTCTCGTCATTCGTGGCCTTGGCGATGATTTTGGCAGCGGAGTCGATCTTCCCGACTTCATGGACGGCCTCAATGGCGATGATGCGGAGCGCCTGAAGGAATTCCGGATCGAGGACGATGACGTGCGGTACCCCCCGGTCGGCACCTACCGCAATCAAGGAAATTTCGGCCCCTGGCTTGCCAACCCGGCATCGGGTGCGCGCTCACTGCAGGAGTTCCAGAAAATCAGCATCGTCGAGGTCAAGGGCTATTGCTACGGATGGCACTTCTACCAGGCTGCCGACGCCGACCTTGTCATCTCCGCCGATGACGGTCTGTTCGGCCACGCGTCGTTCCGCTACGCCGGGTGGGGCCCGCGCATGTGGACGTGGGCCATGACCATGGGCCTCCGCAAGTTCCAGGAGATGGTCTTCACAGGCCGCCCGTTCACCGCCCAAGAAATGTACGACTGCGACTTCGTCAACAAGGTGGTGCCTCGCGACAAACTCGAGGAGGAGGTCGCCACCTACGCGTCAGCATGCGCCCGAACACGCCCAACCGACACAGTGCACATCCAGAAGATGTTTTTCCAGATATTCAAGCAGTACCAAGGCGAGTACATGGGCAGTCTCCTGACAGGAATGATTGAATCAATGGGCAGCATGGTCAAGCCTGACGCAGCCGACTTTAAGCTCGACGCCGATATGCTCGAGCGCGGCCTCGGCAACTCGGTGAAGGAGAACGATCTGCAGTTCCCACCCTCGTTCCGCATGAGCAAGAAAGGCCGTCAGCAGCCGTGAMTQESPSAEEIVLYDKDPATKIATITLARPERLNAPTVAARHRYADLIHKANIDDDVKVLVIRGLGDDFGSGVDLPDFMDGLNGDDAERLKEFRIEDDDVRYPPVGTYRNQGNFGPWLANPASGARSLQEFQKISIVEVKGYCYGWHFYQAADADLVISADDGLFGHASFRYAGWGPRMWTWAMTMGLRKFQEMVFTGRPFTAQEMYDCDFVNKVVPRDKLEEEVATYASACARTRPTDTVHIQKMFFQIFKQYQGEYMGSLLTGMIESMGSMVKPDAADFKLDADMLERGLGNSVKENDLQFPPSFRMSKKGRQQPPGPT0001860_1099DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_020062451frcFormyl-CoA:oxalate CoA-transferaseATGACGACCCAGAACACGGCTCCAGCCACCGAACCTTCGATCGGGCGGGGTCGGCCGCCGCTAACGGGCAGGGTCATCCTGGACCTCTCAGGGGGAATAGCAGGGGCATACTGCTCAAAACTGCTCAGCGATGCGGGAGCTACCGTCGTGAAGGTCGAAGCGCCAGAGGGTACCGCGTTGCGTCGCTGGAGCGCCTCGCGCACCAAAATCGAGCCAGGTAACGACGGCGTGCTGTTCTCATACCTTGCGCAGGGCGCGCAGAGCGTCATTATCGATCCTGATTCCCCCCAAGCACTCCACCTTCTCGACGCTCTGATCGGTCTGTCCGACGCCATCGTGTGGTCGCCGGGCTCACCCATCGCAGACCTCCGCGGTGCGTCGGCCAAAGAACTGCGCCAGCGGCACCCGGACTCCATAATCGCTTCGATCACGAATTTCGGTTTAGAAGGCCCTTGGCACGACCGGGCAGCGACAGAGTTTACCCTGCAGGCCTGGTCCGGCGCGATCATTGGCCTGGGTCGTGGTGCGAGCGATCGGGCACCTTTTTATGTCGGTGGACAAATCGGCGAGTGGGTCAGCGGAGCCTACGCCGCCGTCGCAATCATGAGCTCTTGGGCCGAGAAGAAGGTGACCGGACAAGGGTCGCTAATCGACCATTCGATCCTCGAGGCGCTCACGCTCTGCCTCACCTACTATCCGGTCACCTTCCTGGAGGTCATGGGCCGACCGTGGCGCGACAGCCGAACCCTCGTTGTGCCTGGAGTGTCTCAAGCGAAAGACGGGCTCATCGGAATCGCCTGCGGGACCCTTCAGCAGCGCAATGATTTGTACGTCATGGTGGACCACCCGGAGTGGATTATCGACGATGCCTTAATGACCCGGCAGGACGAAGTCAGTGCCATCTTCAATGATTGGATCGCGGAACGCACGGTAGCCGAGGTTCGAGAACTCGCTAGCGCATTCCGGATTCCGCACGCTCCCGTCGGCAACGGCGCAACGATTCCCGAGAGTGATCATTTCAGGGCGCGCAATGTGTTCGTTGACAGCCCGGACGGCCGTTTCGTACAGCCCCGCCCCTCGTACCGTCCATCGTCCTTCACCTTGCGCGAGCCTACGCTCGCCCCCGCGCTCGGTGCGGACACGGAGTACTGGCTGTCTCGTGCCAAACTGCCAACGGCCAGGTCCTCGCAAGCGGCCGATGGCTCGACGGCTCTTCCTTTCGCGGGCTTGCGCGTACTGGACCTGACCGCATTCTGGGCAGGACCTTCCTGCACCCACGCGCTCGCGCTGATGGGTGCCGAAGTCATTCACCTCGAATCCACGCGGCGTCCCGATGGTGGGCGCCTCGTCGCTGGTGTGCGCGAAGGCGGACCGTGGTGGGAGCACTCGCCCATCCATCTGGGCGGCAACGCGGGCAAGAAAAGCGTGACCATCAACTTCCAGACCGACGAAGGCCGGGATCTGCTCAGGGAACTTGTCGCCACCGCGGACGTGTTGGTCGAGAACTTCACTCCTCGGGTGCTCGACCACGCCGGCTTCGGCTTTGATGCCCTGCGCGAGATCAACCCAAGGCTCATCATGCTGCGCATGCCCGGATTCGGGCTTGAGGGCCCGTGGCGTGACGTTCCAGCGTTTGCATATGCAATCGAAGACGGTGGAGCGTTGACCTGGCTCACCGGGTACGAAGACCAGAAGCCGGTTGAGCCGTACTGCATCGGAGATCCCAACGCCGGCGTCCACGCACTATTCGCACTGCTGGTTGCCCTTGAAAACCGGGAACAGACCGGAGAGGGGGCCCTCGTAGAGGCAGCTATGATCGATGCTGCCGTGAATCTCGCCGCGGAGCAGTTCCTGGAGTACTCAGCAAACGGAATCCTCCTGACCAGGGCCGGCAATAAAGGCCCAGTGTCCGCGCCCCAGAATCTCTACCCAACATCGGAGATTGACGAGTTTGGGCGCCACGATGTTTGGATTGCCCTGGCGGTGAGCAATGACGGGCAGTGGCAGGCTCTTCGCACCGCCCTTGGTGACCCATCATGGGCGCAGGATCCAACATTTTCCACAGCAGCGGGTAGACACGCCGCTCACAAAGTGATCGACGAAGCCCTCACTGCCTGGTGCGAGACACAAACTGCTGCCGACATCGTAGACCTGCTCTGGCCCGCGGGTGTCCCCGTGGCACGCGTCATGCAGCCACACCGGCAGATCGAGATCCCTCAATACGAGGCGCGTCAGTTTTTCGAAGTCGTGGACCACCCTGTTGTCGGCACCTTCCACCAGAGCACCCTTCCGTTCCGATGGAGCAGCCGCCCGGATCAGCTGACCCTCAAGTCGGCGCCTCTTCTCGGCGAGGACAACGACTCCGTTTTCGCTTCTCTCGGCATCACAGAAACCAAGCTTGCCGAGCTCGAAGCTCTCGACGTCATCGGGCGGGCACCCGCCTCCGCCTAAMTTQNTAPATEPSIGRGRPPLTGRVILDLSGGIAGAYCSKLLSDAGATVVKVEAPEGTALRRWSASRTKIEPGNDGVLFSYLAQGAQSVIIDPDSPQALHLLDALIGLSDAIVWSPGSPIADLRGASAKELRQRHPDSIIASITNFGLEGPWHDRAATEFTLQAWSGAIIGLGRGASDRAPFYVGGQIGEWVSGAYAAVAIMSSWAEKKVTGQGSLIDHSILEALTLCLTYYPVTFLEVMGRPWRDSRTLVVPGVSQAKDGLIGIACGTLQQRNDLYVMVDHPEWIIDDALMTRQDEVSAIFNDWIAERTVAEVRELASAFRIPHAPVGNGATIPESDHFRARNVFVDSPDGRFVQPRPSYRPSSFTLREPTLAPALGADTEYWLSRAKLPTARSSQAADGSTALPFAGLRVLDLTAFWAGPSCTHALALMGAEVIHLESTRRPDGGRLVAGVREGGPWWEHSPIHLGGNAGKKSVTINFQTDEGRDLLRELVATADVLVENFTPRVLDHAGFGFDALREINPRLIMLRMPGFGLEGPWRDVPAFAYAIEDGGALTWLTGYEDQKPVEPYCIGDPNAGVHALFALLVALENREQTGEGALVEAAMIDAAVNLAAEQFLEYSANGILLTRAGNKGPVSAPQNLYPTSEIDEFGRHDVWIALAVSNDGQWQALRTALGDPSWAQDPTFSTAAGRHAAHKVIDEALTAWCETQTAADIVDLLWPAGVPVARVMQPHRQIEIPQYEARQFFEVVDHPVVGTFHQSTLPFRWSSRPDQLTLKSAPLLGEDNDSVFASLGITETKLAELEALDVIGRAPASANANANANANA
D1-29_020071521ddpA_1COG0747putative D,D-dipeptide-binding periplasmic protein DdpAGTGACTGCAAATAAAGGTGCCGCCGTGTTTTCGATGGTTGCTGCTTTGGCGCTGGCCGGATGTTCGGCCAGTCCTCAGCCGGAGGCGTCGTCGGGAGCAGGTGATCAGACACTGGTCTACGGTAATTCCGTCCCGCCGAATAACCTCGACCCCCACAAGTCGCTCTACAGCGCCGACTGCCTGATGCTATGCGCGATCTATGACCGACTGGTGCACGTGGATTCTGAAGGCAAGCTCATCCCGGGACTTGCCGAGTCGTGGACGTTCAGCGACGACGCACTCTCGCTTAATCTGAAGATCCGAGAGGGCGTGACGTTCGCCGACGGCATGAAGCTCGACGCGGTAGGTGTCAAGGCGAACCTCGACCGTATTCGCACTCTACCGGGCGCACCCGGCGGCCGTGACCTGGCCATGGTGACCGATGTAGCAGTGACTGACCCGCAGACAGTGACCCTGGCTCTGTCGCAGCCGTACGCGTCGCTGCCGGGCATCCTCTCGGGCCTTGCTGGCGCAATCATCAACCCGGCCGCTCTCGCTAAAGGAACCGACCTGAGCGCGACCCCTGATGGGGCTGGCGCATATCGCTTCCAGTCCTACACCCCGGGCAGCGAGCTCAATCTGGTCCGCAACGACGACTACTGGGGTAACACGCCGCAGCTCGCTGGTCTGAACTTCAAGTTCATCTCTGATTCCGCAGCTATCGCCAATTCCCTACAGGCCGGACAGATCGATGTGGCGCACATCGTGCCGCAGAACCTCAAACAGTTCGAAGACAACCCGTCGTTCACCGTGAAGGAGGTGACGACGCTGTACCAGTACGCGCTCATCACCAACTTTGCGTTGGCCGGTCTGGAGGACGTACGGGCGCGTCAGGCGGTGCTTCATGGCATTGACCGCGAGAGTATCTGCGCACAGATCGCCAAGGGCCAATGCGCGGTTTCGGACCAGCCCTTCCCGGAAGGCTACTTCGCCAACGACCCGTCGATCGACCAGGTACTCTACCCGTTCGATCCCGAAAAGGCGCGCTCCCTGCTGGCCGAGGCCGGCGTCAAGGATCTGAGCCTCAGTGCGGTCGTGCCCGGCCAACAGTTTATGGCGCTGGCCCAGGCCATTCAGGCTCAGCTGGGCGAAATCGGAGTTGAGCTCAAGCTCGAAATGGTCGATGGTAACGCGATGGCGCAGAGGGCGTTTGTTGATAAGACGTCGGACATGGTCATCACCGCCTTCGGTGGCCGCCCCGACCCCGCCCAGCTGTTCACGGTCCGATACAGTGCGGCCGGCTTCTACAACCCTGGTGGCTTCACGACGGACACGATGGAGAAGCTGCTCAAGGAGTCCCAGGCCACAACCGACAAGGGCAAGCGTGACTCGCTTCTTCAGGCCGGTTCGCGCGAAGCCGCCGAGTCCGCACTCAGCATGATGCTCTACGCGCCGACAGAAGCCTATGTGATGAAGAACGGCGTGGACTTCCAGCCGTACGTCACAGGCACTCACGAATTCCCCTCAGTCACGAAGAAGTAAMTANKGAAVFSMVAALALAGCSASPQPEASSGAGDQTLVYGNSVPPNNLDPHKSLYSADCLMLCAIYDRLVHVDSEGKLIPGLAESWTFSDDALSLNLKIREGVTFADGMKLDAVGVKANLDRIRTLPGAPGGRDLAMVTDVAVTDPQTVTLALSQPYASLPGILSGLAGAIINPAALAKGTDLSATPDGAGAYRFQSYTPGSELNLVRNDDYWGNTPQLAGLNFKFISDSAAIANSLQAGQIDVAHIVPQNLKQFEDNPSFTVKEVTTLYQYALITNFALAGLEDVRARQAVLHGIDRESICAQIAKGQCAVSDQPFPEGYFANDPSIDQVLYPFDPEKARSLLAEAGVKDLSLSAVVPGQQFMALAQAIQAQLGEIGVELKLEMVDGNAMAQRAFVDKTSDMVITAFGGRPDPAQLFTVRYSAAGFYNPGGFTTDTMEKLLKESQATTDKGKRDSLLQAGSREAAESALSMMLYAPTEAYVMKNGVDFQPYVTGTHEFPSVTKKNANANANANA
D1-29_02008420ohrBCOG1764Organic hydroperoxide resistance protein OhrBATGACAGCCATCTATACAGCAGAAGCTATTGCAACAGGAGCCGGTCGCAATGGACGTGCCCGGACGGACGACGGACTGCTGGACATCCAGCTGGCCGCTCCGCACGCCCTCGGCGGTTCTGGTGGCGGGCATAACCCTGAGCAGCTCTTTGCTGCCGGCTACGCTGCCTGCTTCCACTCCGCCCTCCATTTCGTAGCCCGAACCCTAAAGACCGACTTGGGCGACTCAAGCGTCGCCGCAAAAGTTGGTCTTGTCCGTGAAGGAAACGCTTTCGGGCTCGAGGTAGACCTTGAAGTTGTCATTCCGACTATGACCCAGAGCGAGGCGAAGTCCCTGGCCGAGGAAGCCCATCAGGTCTGCCCCTACAGCAATGCCATCCGCGGAAACATCGAGGTCAACATCACCGTCCCTGACGACTAAMTAIYTAEAIATGAGRNGRARTDDGLLDIQLAAPHALGGSGGGHNPEQLFAAGYAACFHSALHFVARTLKTDLGDSSVAAKVGLVREGNAFGLEVDLEVVIPTMTQSEAKSLAEEAHQVCPYSNAIRGNIEVNITVPDDPGPT0013160_2793DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-29_02009177hypothetical proteinGTGAGCGGCCCGAGTCACGACGCCGTCCGCCAACTCGCCGCTCACCTTTTTGGGGAACGGGGATACCGCACTGTCACGGTGCGCGATATCGCTTCAGAAGCAGGTGTTTCGGCGGCCTTGGTCATGAAACTTTTCGTTTCCAATGAGAAGCTCTTTGCTGCCGTGCAGCCAGGATGAMSGPSHDAVRQLAAHLFGERGYRTVTVRDIASEAGVSAALVMKLFVSNEKLFAAVQPGNANANANANA
D1-29_02010294hypothetical proteinGTGCGGGACCGGCTTGTGATGGGCGGCGCAGGCACCACCTCGGGCGGTGAGGAATTCGCCGCCGCCGTGATGACCCTGCTTGAAGCCAGCGGCGGGTATACGCCAGCGCCCGGACAGAGGACGACGGCGCGTTTGCCTTTCCGCTCCCCCGCAGGCCGCTCTTTAGTCATCATGTCCCATCCAATGATGGAGCAGGCGATCGCGCGGAAGCTAGCGGTGGACAACCGCCTGATTACCCTGGACCTCGACGCGCCAGGCGTCGAGCAAAGCTCCGAAGAGCCGGTGGGAGCGTGAMRDRLVMGGAGTTSGGEEFAAAVMTLLEASGGYTPAPGQRTTARLPFRSPAGRSLVIMSHPMMEQAIARKLAVDNRLITLDLDAPGVEQSSEEPVGANANANANANA
D1-29_020111803Ferredoxin--NADP reductaseATGCGAGATATCAACCACAGTGCCGGGATCTGGCTAGCCGAGCTTGAGAGGGCGCTTAAAGGGCGTAACAATGATCTCTTTGAAAGCCTGTTCGCGGAGAACGCCATGTGGCGCGACCTCCTGTCATTCACCTTCAACATCCGTCAGTTCCACGACAGGGACGCCATTGCGAATTATTTTTGGACAACCGCCGACGAGTTGGAGCCATCGAATTTCACGATCGACGCGAACTTTCCGGTTGAGCCCGTTTCCGAGGTTCCCTTCTCTTTGACGGAGACGTTCGAGATCGACTTCACATTCGAGACGACTGCAGGCTTCAGCGACGGCCTGGTGCACGTCGTTCCTGACCCGACGTCTCCAGGGGGCCTGCGGGCCGTGCTCCTTCTGACGCGTCTGCAGTCTCTTCGCGATCTTCCGCCGGTCTGGCCGAAGTTTGGTCGGTACAACCAGTTGGAGCTTGAGAACGAGAGGAAGGTACTCGAGCAGCGCAAAACTTATTCACAGGGTGAGCCCGAGGTACTTATCGTTGGGGCGGGTCACAACGGCGTATTCGTCGCTGCCGCGTTGGCGAGGCTTGGAATCGATGCGCTGATCGTCGACAAGCACGAGCGGGCGGGTGACAGTTGGCGAAAGCGTTACGACTCGCTGGTGTTACACATGCCGCACGGAATGATGCAGTTTCTTCACCTGCCCTTCCCGGACAGCTTTCCTGACTACATTTCAAAGGATCGTCTCGCCGATTGGTATGAGGTGTACGTCAATGCTCTTGACCTCAACCTCTGGACCTCGACTGAATTTGTGCATGGCGAGTACGATGAGGACGCGCAGCAGTGGTCTGCAACCGTCCGTCAGGCCGATGGCACCGACAGGACCTTCCGCCCCAAATATCTCGTCCTTGCCACGGGTGGTAGCGGGACACCCCGGATCCCCGACCTTCCCGGCCTGCAGGATTTCACGGGCCCCGTCACTCACAGCCACAGTTTCCGCTCCGGAGCGGACTTCGCCGGAAAGAACGTGTTGGTAGTGGGAACCGGAACCAGTGCGCACGACATCGCATTCGACATCGTCAACCACGATGGAAAGTCGACGTTGCTACAGCGCGGGGCAACCTTCGTCGTCGACCTTCCGTCGGCCAACCTCAACTACGGCCCTTTCAACACCAGGAGTGTGCCGACAGATGTGGTGGACAAGCGCTGGCTCGTGACCCAGATCAAGCCACTCATGCTCGAAAATTTCAAACGCGTCACCGCAATGGGCAATGAGCTGGACAAAGAATTACACGAGCAGGTTGAGAAGGCGGGTCTCGTTCTGGACAAGTCGGAGTACGGTTTCTTCGCGAAGTACTTCGAAGTCGCCGGCGGCTACTACATCAACGTCGGGGCGTCTCAGGCGATGATCCGCGGTGACATCAAGGTCGAGCAGTTCTCAAACGTAGATCGTTTCGTCGGCGACGGTATCCGGTTAAACAGTGGCGAAGTGCGCAAATTCGACGCGATAGTTCTCGCCACCGGCTATGAAAATCAGCGTGTTATCCTCGAGCGCTTCTTCGGTTCCGAGGTCGCCGAGCGAATCGGCGACGTCGCCGGCTATGACGCCGGAGGCGACCCCGAACGCAACCAGTACAAGCCGATCGCGGCCCAGCCGCGCCTGGCGATTGCCGGAAGCGGCATCTCGGCCGGGCGCTGGTATGCGCCGCTGGTGGCCCTGGAGATCCAAGCAGAGTTCGAGGGACGAATACCTGAGTCATTCAAGGCGGCAGGCCACCCCAGCCAGATCCCCACGGAGGCGCTAACTACAAGTTAGMRDINHSAGIWLAELERALKGRNNDLFESLFAENAMWRDLLSFTFNIRQFHDRDAIANYFWTTADELEPSNFTIDANFPVEPVSEVPFSLTETFEIDFTFETTAGFSDGLVHVVPDPTSPGGLRAVLLLTRLQSLRDLPPVWPKFGRYNQLELENERKVLEQRKTYSQGEPEVLIVGAGHNGVFVAAALARLGIDALIVDKHERAGDSWRKRYDSLVLHMPHGMMQFLHLPFPDSFPDYISKDRLADWYEVYVNALDLNLWTSTEFVHGEYDEDAQQWSATVRQADGTDRTFRPKYLVLATGGSGTPRIPDLPGLQDFTGPVTHSHSFRSGADFAGKNVLVVGTGTSAHDIAFDIVNHDGKSTLLQRGATFVVDLPSANLNYGPFNTRSVPTDVVDKRWLVTQIKPLMLENFKRVTAMGNELDKELHEQVEKAGLVLDKSEYGFFAKYFEVAGGYYINVGASQAMIRGDIKVEQFSNVDRFVGDGIRLNSGEVRKFDAIVLATGYENQRVILERFFGSEVAERIGDVAGYDAGGDPERNQYKPIAAQPRLAIAGSGISAGRWYAPLVALEIQAEFEGRIPESFKAAGHPSQIPTEALTTSNANANANANA
D1-29_02012933hypothetical proteinGTGAGGCCAGAGGCGACCGATTGCCTGAAATGGCAGTTTCGGCTGCTCGGACTCACTCGCCCTCCCTACACACAGATTGGAAAGCAATTGCGTATCGGCAACATTGAAGTTACCTCCGTAATCGACGGGGAGATCGTCATTCCGACGGAGCAATACTACGCCGGCCACACCAATGGCGAATGGGGCGATTTTTCCTTCAGCCTCTGTCATTCCACCAATAATCCCGTGCAGACGGTCGGGAGCTTTCTCATAGAGGGCATCGGGGATCGGTTGATACTCGTAGATGCAGGAGTCGGCAACAACCCCACCTTCCCTTTCTCCGGCGGCGCACTGCGCTCCGGATTACTGGCGAAGGGCGTCCGGCCCGACGACATCACTGATGTCTTGTTCACTCACCTGCATTTCGACCACATTGGCTGGGCGTCACTGAACGGCAAGCCCTTTTTCAAGAACGCAACCTATCGCTGTGATCAGCGAGACTGGGAGTACTTCATGGCGCCCGGGTACGAGATTCCTGAGTGGGAGCACGTGCTGGCGAAGCCGGAATTCGATGCCCCCCAGCCTCGCCTCGGACCGATCGCAGACAGGATGGAGTTCTGGAATGGAGACTCCGGGCTCTTTCCCGGGCTTGAAACCGTTGACGCGGCCGGCCACACGCCCGGGACCTCCTTGATTCGGCTCAAGGACGGCGGCGAAGAGGGTCTGATCCTCGGTGACCTCGTGCATGGCTACCCGGAACTACTTGAGGACCAGGAGTGGACGCTGTGGGCCCATAAGGATGGTGAGGCCGCAGCAGCCCAGATCGTCGACGTCCGCAAGGAATTAATCGACAACCGTACTCCATTCGTCGCGTCGCACGTACCGGGCATGCGGTGGGGGCGTTTCAGCAGAGATGAGTCGAGAAAGCAGACCTTCGAGCTCCTGCCAGCTTAGMRPEATDCLKWQFRLLGLTRPPYTQIGKQLRIGNIEVTSVIDGEIVIPTEQYYAGHTNGEWGDFSFSLCHSTNNPVQTVGSFLIEGIGDRLILVDAGVGNNPTFPFSGGALRSGLLAKGVRPDDITDVLFTHLHFDHIGWASLNGKPFFKNATYRCDQRDWEYFMAPGYEIPEWEHVLAKPEFDAPQPRLGPIADRMEFWNGDSGLFPGLETVDAAGHTPGTSLIRLKDGGEEGLILGDLVHGYPELLEDQEWTLWAHKDGEAAAAQIVDVRKELIDNRTPFVASHVPGMRWGRFSRDESRKQTFELLPANANANANANA
D1-29_02013738novJShort-chain reductase protein NovJATGGTCACGGGCGGCGGAGCCGGGATTGGGCGTTCTACCGCATTGATGCTGGCCCACCAGGGAGCTGATGTCGTGATCTGCGATATCCACGAAGAGAACGGCCGGATCGTGGCGTCCGAGATCGAGGCGATCGGTCGCAGGGCTGTCGTCATTCCCACCGACAGTGCTGACGAAGACCAGGTCGAGCGCCTAGTCGCTGAAGGAATTCGTGAGTTGGGCAAGATCGACATTCTTGTAAACAATGCCGGAATCATATCAACGGACCCGATTCTCGAGCTTACGGCGGAGACATGGGATCGGGTTGTTGCCGTGCACCTGCGTAGCACCTTCTTATCGGCCAGGGCGGTCGTCCGGGATATGAGTTCGCGTGATTGGGGTCGTATCGTTAACGTCACCTCCCGGGCGGCGTACCGCGGCCGAGCAGGTATCGGTCCATATGCCGCATCGAAGGGTGCCATTCTCGCGTACTCGCGGGTACTCGCGGCCGAGACGGCTCAGTGGGGCGTCACCGTCAACAATGTTGCGCCTGGCACCACGCTTACTCCGATGGTGGAACGCGCCTTCCCTCAACCTGAAGCACAAGCCGAAGAGGCACGCTCATCAGGCGTAATCACCTCCCCTGTACGTCTGGCCGAGGCCGACGAGATCGCCGGAGCCGTGCTCTATTTGTGCGGTCTGTATTCCGGGCATATCACCGGTACGACGATTCACGTCAACGGCGGCAGCTTCATGCCGTGAMVTGGGAGIGRSTALMLAHQGADVVICDIHEENGRIVASEIEAIGRRAVVIPTDSADEDQVERLVAEGIRELGKIDILVNNAGIISTDPILELTAETWDRVVAVHLRSTFLSARAVVRDMSSRDWGRIVNVTSRAAYRGRAGIGPYAASKGAILAYSRVLAAETAQWGVTVNNVAPGTTLTPMVERAFPQPEAQAEEARSSGVITSPVRLAEADEIAGAVLYLCGLYSGHITGTTIHVNGGSFMPPGPT0003180_10736DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_02014900hcaB_23-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGGGTAGGACAGAGAATGAAGGTAACGACGTCGGCGGGGTGGTGAATCGTTTCGCGAGTGCACCTTCTGCGCTCTCGGGAAAAGCGGTCATTGTCACCGGTGCGGGGCAGGGCCTTGGTCGGGCCTACGCACTGGCCTGCGGGCGAGCAGGCGCCAGCGTTGTTGTCAACGACGTCGACGGGTCCGCCGCAGAGGAAACGGCAGCTGCACTCCGCACGGAGGGTGTGGCGGCAATAAGTGTGGCAGGGTCGGTGGCCACGTGGGATGATGCCGAACGCACAGTCGCAGAGAGCATCGCCGCCTTCGGTCGCTTGGATGGGCTGGTGGCGAACGCGGCAATTATGCACATGGGTGCCCCGTGGGATGAAACCGAGGACCAGCTGCGCCTGATCAACCAGGTCAACGTTCTAGGGGTTCAGTTCACGGCCCGCCACGCGATGCGAGCCATGGTCGAAGCCGGTCGAGGCGGTTCAATCGTGACAATCGTCTCGGGTGCCCAGCATGGGATTCATGGTATGAGTGCTTACGGCGCGACCAAGGGCGCCGTCAATGCCATGACCGCCAACTGGGCTATTGAGGGTCAGGAGCATGGCATCCGCGTAAACGCAGTGTCGCCGTGGGCAATGACGCAGATGACACTTGACCACCTTGATGAGACTAAAGCCGACCGGAGTTCCTTCCCGGAACCAGCCCAAATATCTCCGCTGGTCGTCGCGCTTCTCTCGGACGAAACGAGCAGCGTGAGCGGTCACATCATCCGTTTCGACGGGATCACCCTCAGCCAGTACGAGACGTCATTGGTGCCGATCGCCGCCCAAGAGGAGGTGTGGTCGGCCAAGGAAATCTCTGCACTTCTCGTGCGCAAGCTGGGATCCCTTACAACTGATGTCAGCGTGTAGMGRTENEGNDVGGVVNRFASAPSALSGKAVIVTGAGQGLGRAYALACGRAGASVVVNDVDGSAAEETAAALRTEGVAAISVAGSVATWDDAERTVAESIAAFGRLDGLVANAAIMHMGAPWDETEDQLRLINQVNVLGVQFTARHAMRAMVEAGRGGSIVTIVSGAQHGIHGMSAYGATKGAVNAMTANWAIEGQEHGIRVNAVSPWAMTQMTLDHLDETKADRSSFPEPAQISPLVVALLSDETSSVSGHIIRFDGITLSQYETSLVPIAAQEEVWSAKEISALLVRKLGSLTTDVSVNANANANANA
D1-29_020151635kstD_2COG10533-oxosteroid 1-dehydrogenaseATGACAGTTGCGAGCTCGTTCGATGTGGTAGTGCTTGGCAGCGGGGCGACGGGGCTGACGGCCGCTTTTACCGCAGCCAACGAGGGTGCTCGGGTAGCGCTCTTCGAGAAGAACTCCAGAATCGGCGGGACGAGCGCGTGGTCGGGTGGCCATGTATGGATTGTTGCCAATGATCACCAATCCGAGCTCGGAGTCGATGACTCGGTTGAAGAAGGCGTGACGTATCTACACGCGGTCGGCCGGGGGTTCGTCGGCGAGCCGCACGTGAGAGCATTTGCCGATAACGGGCGACACATGATCCGATACCTCGAAGATCATGGCAACGCGCCCTTTTACGCCGTCTCTGGCATTCCTGACTATCACCCAGAGCATCCTGGCGGCAAAACAAAAGGCGGCCGCACCATGGGCACGCCACTTTTTGCTTTTGGTGAGCTCGGCGAATGGCACGACCGCGTGGAGGTCACTCCGTATTACTCGCCGTACTACCGCATGGACGAAACGGGAATCGGTTCCGGAGTTCCGAACCCCCCCAGTCCTGAGGAACTTGAACGCCGCGCCACTGCTGACGAGCGCGGCCAGGGCGGCAGTCTGGTCGGTCATCTTCTCCGTGCAGCACTCAAGGCGGGTGTGCACATCGAAACCTCGACCGGTGGGGTTGAGCTATGCCTACAGGACGGCCGGGTGACCGGCGTCGAGGTGGAAGGCCCGAACGGGCGCCGTGTCGTGCACGCGCGGCAGGGAGTCATCCTTGCCACGGGCGGGTTCGAGTGGAATGAAGAGTACCGAAAGACGTTCCTCCGGGGTGAAGTCTTTCAGCCGGCCTCCATTCCCACGAACACCGGTGACGGACTTCGAATGGCGCTCAAAGCTGGCGCGGCCCTCCAGAATATGCGTGAGGCATGGTGGATCCCGATCGCTGTGCTTCCGCCTGGAGTAAATTCTATGAACCTTGACATGATCAATGGTGACCGCACTCGCCCAGGAAGCATTATGGTGAACCGGTCGGGTCGGCGCTTTGCGAATGAGGCAGCGAACTACAACGCCTTCGGCGGGGCTTTCCAGCAGGAGGACGTCGCTGCCTTTGGCTATGCGAACGTGCCCGCTTGGGTGATTCACGACCACACATACATGAAGAAGTATGGCTCGCGAGGAGTTCCGTACACTGGCGTGACACCTCAGTGGCTGACGGAGGCGCCAACTCTTCATGCGTTGGGTGAAACACTGGGCATTGATGCAGATGAACTGGAGCGCACCGTCGCGCGGTGGAACGAACATGTAGCTGAGGGTGCCGATCCCGATTTTAATCGCGGCGAAAGTGCGCATGACCGCTGGTGGGGTGACCCGTGGAAAAAGGGCTTACCCGAGTCGACATTAGGTCCACTCAACGACGGGCCGTTCTATGCGATGGAACTGCAGCCCGGCACTATCGGCACGAAGGGTGGCCCCAAGGTGACGGTCAACTCGCAGGTCGTCAATCATGACGGCCTGACTGTGCCAGGGCTCTACGCCGCGGGAAACACCTCATCGCCGACCGGCACCGGTTACGGCGGGCCGGGTGGAACGCTCGGACCGAACATGACGTTCGGATGGCTGGCAGCAATGCACGCGGTGGGCACTCCGGTCATCGCGGAGTAGMTVASSFDVVVLGSGATGLTAAFTAANEGARVALFEKNSRIGGTSAWSGGHVWIVANDHQSELGVDDSVEEGVTYLHAVGRGFVGEPHVRAFADNGRHMIRYLEDHGNAPFYAVSGIPDYHPEHPGGKTKGGRTMGTPLFAFGELGEWHDRVEVTPYYSPYYRMDETGIGSGVPNPPSPEELERRATADERGQGGSLVGHLLRAALKAGVHIETSTGGVELCLQDGRVTGVEVEGPNGRRVVHARQGVILATGGFEWNEEYRKTFLRGEVFQPASIPTNTGDGLRMALKAGAALQNMREAWWIPIAVLPPGVNSMNLDMINGDRTRPGSIMVNRSGRRFANEAANYNAFGGAFQQEDVAAFGYANVPAWVIHDHTYMKKYGSRGVPYTGVTPQWLTEAPTLHALGETLGIDADELERTVARWNEHVAEGADPDFNRGESAHDRWWGDPWKKGLPESTLGPLNDGPFYAMELQPGTIGTKGGPKVTVNSQVVNHDGLTVPGLYAAGNTSSPTGTGYGGPGGTLGPNMTFGWLAAMHAVGTPVIAEPGPT0006680_688DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
D1-29_020161836Ferredoxin--NADP reductaseGTGACGTCCAGCATTGACACTATGATCGTCGACACCACCACGATCGCCCGCCAAGCAGCGGACGCATGGCTAAGCGCCTTCAACGAGGCCCTAGCAAGCGCCGACCGCGCAGCACTCGACGAACTCTTCCTCGACGATGTATACGTCAGAGATATGGGTGCGCTCACCTGGAATCTTCGGCAGGAATCCGTCAAGGAACGCGCCATCGATCTGATTGCGGGCAGCATCGATGGAACACACCCACGAGCCTTCAAGGTCGACGCAAACCGCCCCGTGGTCCCCGCGATTATTGCCGAGGCTCCGCGCGTGGTGGAAGCGTTCCTCGCTTTCGAAGTCGATGCCGGCAACGGTGACGGCATCGCCTATCTCGTCGAGGACGACACCTCACCGGTGGGCTGGAAGGCCCGCAACCTGCTCACTCGCCTACGCGACTTCCGGGATCACAAGAACGAGTGGCCCCGCCGCGATCGCTTCGATGACACACACCCCACTGAGCGCTGGAGCGAGTACCGGGACCGGCTGGCCGCTTTCGAAGACCGCGATCCCGAGGTGCTCATTGTCGGTGGCGGCCAGATGGGGGTCATGACGTCGGCTTCGCTGAACCGGTTCGGCGTTGATAATCTGGTCGTTGACAAAAATTCCTCGGTTGGAGGCAACTGGCGCAACCGGTACGCTTCCCTGTTGCTGCACCAGCCCCACGGCATGCTGAACTTCCCGTTTATGAGCTTCCCCGAAAGCTACCCGGAGTACATTCCGAAGGACAAGCTCGCCGACTGGTTCCAGGCCTACGTCGATGCCCTGGAAATTAACTTCTGGACCTCCACCGAATTCCTTGGCGGTACGTTTGACGAGGAATCCGAGACCTGGACGGTGAAGCTCCGGCGCGCCGACGGCAGCATCCGCGAGATGCACCCCAAGCACGTCGTCATCGCAACCGGCGGCGTCGAAAAGCCCAAGGTTCCAAACATTCCCGGGCTCTCGGAGTTCCAGGGTGAGATTGTGCACTCGAGCCGATTCTCCGACGGCGCTAACTACACGGACAAGAACGTGCTGGTCGTCGGGGTCGGAACAAGCGCGCACGACATCTCCCTGGACGTGTTCAAGCACGGCGGCAACTCCACGATCCTGCAACGCGGTAACGCTATCGTCGTCGACATTGAGACCGCAAACATGATGTACGGGGACTACAACCCCCGCATTGTGCCCACCGAACTCGTCGACGTCCGGTTCCTCTCGGGCTTGGTCTACCCACAGCTCAAAGGCAACTTCCTTGCAGGAACGGCGTACGGAAATACCCTCGACGCGGAGCTCCAGGCGAACCTGCGCAAGGCCGGAATGAAAGTGTGGTCCGGCGCAGAAGACTGCGGCTTCTTCTACGAGTACTTCAAGACCGGCGGCGGCTACTACCTTGACGTCGGCGCCTCCGCCGAAATCATCAAAGGCAACATCGGCGTGATCCAGATGGACACCGTCGAGAGCTTCACCACAGATGGAATAAAGCTCAATGACGGCAGCGAACGGCCCATCGACACAGTGGTGCTCGCGACCGGATACGAGAATATCTCCGTCGCCATCGGCGAATACTTCGGCCAGGAAGTTGTCGACAAGCTCGGCCCCATCTGGGGCTTCGGCACGGACGGTGAAATCAACAACACTTGGAAGCCCACCGCCCAAAAAGGACTCTGGATCGGGCTCGGCGCAATCCCCCAGGCCCGCTGGTACGCACCGCTGATCGCAACACTGATCCAAGGTGAGCTCAAGGGCCTGGTCCCGGCCTCCTTCCTCGAGCCGGGCCATCCGTCCCGGACCCCCCTCGAGCAGGTCGTGGACATCTAGMTSSIDTMIVDTTTIARQAADAWLSAFNEALASADRAALDELFLDDVYVRDMGALTWNLRQESVKERAIDLIAGSIDGTHPRAFKVDANRPVVPAIIAEAPRVVEAFLAFEVDAGNGDGIAYLVEDDTSPVGWKARNLLTRLRDFRDHKNEWPRRDRFDDTHPTERWSEYRDRLAAFEDRDPEVLIVGGGQMGVMTSASLNRFGVDNLVVDKNSSVGGNWRNRYASLLLHQPHGMLNFPFMSFPESYPEYIPKDKLADWFQAYVDALEINFWTSTEFLGGTFDEESETWTVKLRRADGSIREMHPKHVVIATGGVEKPKVPNIPGLSEFQGEIVHSSRFSDGANYTDKNVLVVGVGTSAHDISLDVFKHGGNSTILQRGNAIVVDIETANMMYGDYNPRIVPTELVDVRFLSGLVYPQLKGNFLAGTAYGNTLDAELQANLRKAGMKVWSGAEDCGFFYEYFKTGGGYYLDVGASAEIIKGNIGVIQMDTVESFTTDGIKLNDGSERPIDTVVLATGYENISVAIGEYFGQEVVDKLGPIWGFGTDGEINNTWKPTAQKGLWIGLGAIPQARWYAPLIATLIQGELKGLVPASFLEPGHPSRTPLEQVVDINANANANANA
D1-29_02017993hypothetical proteinATGAACACTATTGAGGACTTTTACGATGCTGCGAAGCGCGTGAGCAACACGGGGCGCTGGGGGGCTGAGGACGAACTCGGTACGCTGAACTTCATCACCGAGGCGAAGATTGCAGGCTCGGCGCAGCTTGTGCGCAGCGGAAAGCTATTTTCACTGGGTATCGACTTCGGTTCGGGCGGTCCTCAAGGCGACTTCTATATGCGAGGCAACCCGATTCACCTCATGACCATGGACGGTGGCGACGCCGACAACTTTGTCGAGCACTCACAGCACTGGCACGCGAACCCCACCGCCACGCAAATCAGCGGATTCTTTGCCGACAACCCGTTCCGGTTCAATGAAGACGTCATTATCATGCCGTTGCAGGCGGCCACCCAGTGGGATGCCCTTTCTCACTGCTACTACGACGGAAAGCTCTACAACGACTTTCCTGCCGCGGGGGTGACCAGCCAGGGTGCCACTCGGTGCGGCATTGACAAAGTCGGAAGCAAAGGTATCGCCTCGCGGGGGGTACTGCTCGACGTCGTGCGGCACCGAGGCAACGAGCTATGTCTCGGCATTGACCAGCCGATCACTCCCGATGAGCTCGATGAGATCGCGGCGAAGCAGGGGGTCACCATCGAATCAGGCGACATCGTGGTCATCCACACGGGGTGGTGGGCTAACTTCGTCGCCACTGGTGACCGGTCCGCGCCGGTCTCCGGCCTGAGCTGGCGGTGCGCCGAGTGGCTGCACGAGCACGAGGTGGCCGCTGTGGCCGCAGACAACATCACCGTAGAACACGCTGCGGGCGGTGAGGTGACGGGCGTCTTCCTTCCGTTCCACCTGCTCTGCCTTCGCGACATGGGCCTGATGCTTGGCGAGTACTGGAACACGACGCAACTGGCTGCCGATTGCGCCGAGGATGGAGTCTACGAGTTCCAGCTCGTCGCCCCACCGCTCAGCGTGATCGGTGGGGTCGGGTCCCCGGTCAACCCGATCGCTTTCAAGTAAMNTIEDFYDAAKRVSNTGRWGAEDELGTLNFITEAKIAGSAQLVRSGKLFSLGIDFGSGGPQGDFYMRGNPIHLMTMDGGDADNFVEHSQHWHANPTATQISGFFADNPFRFNEDVIIMPLQAATQWDALSHCYYDGKLYNDFPAAGVTSQGATRCGIDKVGSKGIASRGVLLDVVRHRGNELCLGIDQPITPDELDEIAAKQGVTIESGDIVVIHTGWWANFVATGDRSAPVSGLSWRCAEWLHEHEVAAVAADNITVEHAAGGEVTGVFLPFHLLCLRDMGLMLGEYWNTTQLAADCAEDGVYEFQLVAPPLSVIGGVGSPVNPIAFKNANANANANA
D1-29_02018198hypothetical proteinATGACCCCGAGCCCGGAGAATGACAGAGACGCCGAGGATCGATATCAGCCAGGGCAGCGGCGGCTCGCCCCAGCGTACAACCGGTTACGCGGCGATGCGCTTTTTCCGGCGCCCACGAGCCCCGAAATCACGACGGAGACCGCGAGCGGAAGCCTCGAGAGCACCATCGTCGCGCAGGCAAGCAGCGAGCCGATCTGAMTPSPENDRDAEDRYQPGQRRLAPAYNRLRGDALFPAPTSPEITTETASGSLESTIVAQASSEPINANANANANA
D1-29_02019747hypothetical proteinATGATTAGGACCATGAGCATTTCGACTCCAGTCAACACAACTCCACGGGTGCAGCCCGGAAGCCAGACCCTAGCCCGCGGCCTCACCGCGCTCATTGCGATCACCGACTCACGCTCGGGCATGACCATCCAGGAGGTCGCTGACCAACTCTCGGTCCACCGGTCAATTGCCTATCGGCTCCTCCAGACTTTTGTCGATTTTGGCTTCATTTCGCGCTCTGACGACAGCGTCTACCGACCGGGTGCCCGACTCGCAAGCCTCGCCACGTCGTATTACCCGAGCCTGCGAGAACTTGCGCTTCCAATTATGCGCCAGCTCGCTGAGGAGCTCGGCTCCACTATCGCCTTGTTCGTCGCCGAGGGCAAGGAGGCCGCGGCCATCTCGATGGTAGAGCCAACCACCACCCTTCACCACATCTCATTCAAGGCGGGGATGCGGACACCATTGGATCGCGGCAGTGCTGCGTACGCACTCGTTTCGGGCATGCCTCCGGTGGAGAATGAGCCGCCCGAGGCCACCAAGGCCCGCGAGGTGGGCTTCGCAAGGAGTTTTGGCGAGATCGAAGAGGGGGCATATGGCGTCGGTGCCTTCATTCCGACGCAATCTCCTGGACCGGTGGCGTGCGTACACCTCATCACTTATCGAGGCGATGTCGCCGAGATGGCCGGCCCAGTGATGAAACGAGCGGCTGCCGCAATCGGCACCCTGCTCTCAGACCACTCTCACAGCACACCCTCCGGAAGCTGAMIRTMSISTPVNTTPRVQPGSQTLARGLTALIAITDSRSGMTIQEVADQLSVHRSIAYRLLQTFVDFGFISRSDDSVYRPGARLASLATSYYPSLRELALPIMRQLAEELGSTIALFVAEGKEAAAISMVEPTTTLHHISFKAGMRTPLDRGSAAYALVSGMPPVENEPPEATKAREVGFARSFGEIEEGAYGVGAFIPTQSPGPVACVHLITYRGDVAEMAGPVMKRAAAAIGTLLSDHSHSTPSGSNANANANANA
D1-29_020201656kstD_33-oxosteroid 1-dehydrogenaseATGCCATTCAACACCAGCGCACGAGATGAGACGGTAGACGTCATCGTGCTCGGCACCGGGGCCGCCGGTCTCACCGCAGCCATCACGGCAACTCGGCTGGGACGATCGGTTGCCATTTTCGAGAAGGAAGCCACGGTGGGTGGCACCACGGCAGTCTCAGGCGGCGTGGTCTGGGTGCCCGCGCACGACCGGAGTTCGACCGGCAAGGATTTCTCGATCGACGATGCCCTCACCTACCTGGCCGCGCTCTCGAACGGGACAATGCGGGACGACCTCGTCCAGGCTTTTGTCCGCACCGGTCCCCGGATGCTCGACTTCATCGAGCAGGCAACCCAATTGAGGTTCCACCCGTACGAGGGCTTCCCCGATTACAAGCCCGAAAAGCCCGGCGGTCGCCCAGCCGGCGGCAGGTCGTTCAATCCTGCTCCATTCAACTTTGCTGAGCTGGGCGACTGGGCATCAGCAGTCACGGCCTTTCCTGCCGACTGGAGCGACGTCGGTTTCGATGCTGAGACGATGGCTCGCGTCGGCCAGTCCGCGGCGGAGTTCGGCTTCGACGATAACGCTAACGTGAAGTTCATGGGCAAGGCCCTTATAGGCGGGCTTCTGAAGGGGCTGCTGGACGCAGGGGTGGTGCCCCGAGTTAACTCCCCCGCCACCGAACTCATCGTCACGGATGGTCACGCTACCGGCGTCGTCGTGAACGGCCCCGATGGCGCGCGAACCGTGCACGCGAGAAATGGCGTGGTGCTCGCGACTGGTGGCTTCGAGTGGAACCCCGAACTGGTCGGCGCATTCTTGCGCGGACCTATGCTCGCCCCGGTCTCGCCCCCGGGAAAGAACGGCGATGGATTGAGAATGGCGATGAAGGCAGGCGCCGCGCTCGGCAACATGTCAGAGGCTTGGTGGGCGACCGGAATCAGAATCCCCGGCGATACGATCGACGGCCATCCTCGGAGCCGCTCCATCCGCTCGGAGCGCACACATCCGCGCTGCATCATCGTCAACGCCTCGGGCCGGCGCTTCGCCAACGAGGCGCAGGACTACAACTCGATGGGTGGAGCCTTCCACCAAATCGATCCCAGCGACTTCAGCTTTCCGAATACGCGAGCGTGGATGGTCTTCGACGAGCAGCACCTGCAGACCTATGGTTTCCTTGGAGTGAAGCCCGGAGAGATCCCGCCCGAGTGGTTCTCCCGGTCGGCAAGCATCACTGAGCTTGGCGAGCGATGCGGCATCGACACCGCAGGCCTCTCCTCGACCATCGACCGCTGGAACACCGCTGTCACCACCCATCAAAGCGACCCTGATTTTCGGCGCGGCAGCAGCGCCTACGACAGCTTCTGGGGCGACCTGAGCAAGCCTGTCGGGCCGGAACGCACACTCGGACCGATCGACTCAGGCCCGTACTACGCGGTGCCAATCTATGTCGGCACCATCGGAACCAAGGGCGGCCCGGCGACCGACGAAAACGGGCAGGTACGCAATGTCGATGGCGCACTCATCGGAGGGCTCTACGCTGCGGGCAACGCAATGGCCAACGCCCTCGGCATGGCCTACCCCGGGGCCGGGGCCACCATCGGTACCGCCATGGTCTTCGGCTATCGGGCCGGGCACCACGCTGCGACTGGCGCCGGCGCCACCATGAACATGTAGMPFNTSARDETVDVIVLGTGAAGLTAAITATRLGRSVAIFEKEATVGGTTAVSGGVVWVPAHDRSSTGKDFSIDDALTYLAALSNGTMRDDLVQAFVRTGPRMLDFIEQATQLRFHPYEGFPDYKPEKPGGRPAGGRSFNPAPFNFAELGDWASAVTAFPADWSDVGFDAETMARVGQSAAEFGFDDNANVKFMGKALIGGLLKGLLDAGVVPRVNSPATELIVTDGHATGVVVNGPDGARTVHARNGVVLATGGFEWNPELVGAFLRGPMLAPVSPPGKNGDGLRMAMKAGAALGNMSEAWWATGIRIPGDTIDGHPRSRSIRSERTHPRCIIVNASGRRFANEAQDYNSMGGAFHQIDPSDFSFPNTRAWMVFDEQHLQTYGFLGVKPGEIPPEWFSRSASITELGERCGIDTAGLSSTIDRWNTAVTTHQSDPDFRRGSSAYDSFWGDLSKPVGPERTLGPIDSGPYYAVPIYVGTIGTKGGPATDENGQVRNVDGALIGGLYAAGNAMANALGMAYPGAGATIGTAMVFGYRAGHHAATGAGATMNMPGPT0006680_697DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
D1-29_02021852carC_22-hydroxy-6-oxo-6-(2'-aminophenyl)hexa-2,4-dienoic acid hydrolaseGTGGCATCCAGCGCAGCATCCATGTCCGCGTTCATGCGGGCGCATCAACGCGAGACGACGATCGACGGAGCGAGGACGAACTACTTCGAGGCAGGATCCGGGACGCCCGTCGTGCTGCTTCACGGGGGCGAGTTCGGGGGGAGCGCAGAGCTCGCATGGGAAGACCTTATCGCTCCCCTCTCCCGGGACTTCCGCGTTCTGGCGCCCGACATGCTTGGCTTCGGGCACTCCGAGAAGGCGGTCAGTTTCGTCGACGGCCGCGGCTTCAGAACCCGGCACCTTGCCCGGTTCTGTGAGCACCTCGGCGTGGAATCGGCGCACTTCGTAGGTAATTCGATGGGTGCGATCCTGCTGCTCACCGACGGAATCGGCGAAGCCCCACGGCTTCCCGCCCGAACGATCACCGCCATCTGTGGGGGCGGCGAGATCCAGAAGAACGAGCACATGAGCGCCCTCATCGAATACGACGGCTCGTTCGAGGCGATGCGTGCCCTCGTACGTGCGCTGTTCCACTCGACCGCCTACGGCGACGACGACGCTTACGTATACCGCCGTCACGGAATGAGTCTTCTCCCTGGCGCATGGGAGTCCGTCGCGTCCGCGCGTTTTCGGCGCCCGCTCCAGGATGACACCACGATTGCCCCTGCGAAGCCGGTATTCGCCAACCTGCCCGTTCCGGCGCTCTTCATCGAGGGGCGAGACGACAAGCTACTTCCCGGAGGCTGGGCTGCCGCCATCGCCGCGCAGACACACGATGCCCGCTCGCTGGTGATTGATCAAGCGGGCCACTGTCCCCAAATCGAACAACCGGACGCCGTCCTCGGAGCACTCCGAGATTTTTTACTGAACTGAMASSAASMSAFMRAHQRETTIDGARTNYFEAGSGTPVVLLHGGEFGGSAELAWEDLIAPLSRDFRVLAPDMLGFGHSEKAVSFVDGRGFRTRHLARFCEHLGVESAHFVGNSMGAILLLTDGIGEAPRLPARTITAICGGGEIQKNEHMSALIEYDGSFEAMRALVRALFHSTAYGDDDAYVYRRHGMSLLPGAWESVASARFRRPLQDDTTIAPAKPVFANLPVPALFIEGRDDKLLPGGWAAAIAAQTHDARSLVIDQAGHCPQIEQPDAVLGALRDFLLNPGPT0005235_237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005235-dmpD|xylF-K10216NANA
D1-29_02022372hypothetical proteinATGCCAACATCCGTCTACGTCGTCCTCACTAATTCTGTCGAGGGAAGCGACCAAGAGTTCAACGACTGGTACACCAAGCAACACCTCGCGGATGTGACGAACGTGCCGGGCTACGTCCGGGCCAGGCGGTATAAACTCGCCGACGCGCAGTTCCTCGGGCCGCAGACCGACTTCAAGTACCTGGCGATCTACGAGGTCGAGGGCGAGACGCAGGACGCTGTCGATGCGATGGCGAACGCGATCAAGGACGGTATGTACCTCTCGCCGGCCTTGGCCGAGACCCTGCACTCCACGTTTTACGAGCCGCTCACCGATTGGGTGGCCGCGCCGAGCATGTCGGGACGCGCAAGCACCGACGCTCTCGCGAACTAGMPTSVYVVLTNSVEGSDQEFNDWYTKQHLADVTNVPGYVRARRYKLADAQFLGPQTDFKYLAIYEVEGETQDAVDAMANAIKDGMYLSPALAETLHSTFYEPLTDWVAAPSMSGRASTDALANNANANANANA
D1-29_02023819calAConiferyl-alcohol dehydrogenaseATGACCACAACTCGAGATGCCAATTGGTTCGAAGGACGCCGAGCCGTCGTCACGGGATGCGCCTCCGGCATCGGCCATGCGACTGCGGTGCAATTGAAGGAACGTGGTGCCTTCGTGATCGGGATGGACATCCAGCCCTGCACCGAATTCGACGAGTTCCACCGGATTGACCTCGGCGACTCGCAGTCGATCCGCGACGTGGCCGAGGCCATCGACGCTCCGATCGACGCGCTCATCAACGTGGCCGGAGTCTCGTCCGGATTCGGTGGCCCACTCACGGTCGTGGGAATAAACTTCATTGGTACCCGGGAACTCACCGAGGCACTCATGCCGCAGCTGCTGCCGGGGTCAGCAATCGTAAACACCTCCTCGCTGGCGGCGAAGGAATACCGCTCGAGGACCTCGGTCACCGCGGAACTCCTTGCGACCGCCACCAGAGACGAGGCGCTCGCCTGGTGCGCGGCGCACCCGGAGCAGGTCGAGCTTGGCTACAGCCTCTCCAAGGAGGCAATAATCCTGTATACCGCAGCGCAGGCCGTGCGCCTCGCCGCACGTGGGGTGCGAATCAACTGCATCGCTCCTGGAGTCACGCAGACGCCGATTCTTCACGACACGATTTCCCGCCTTGGCGAGGACTACCTCAACGCGATCCCGAAACCACTCGGCAGGCTCTCAACCCCGGATGAGCAGGCCTCGGTACTGCTGTTCCTCGCCAGTGACGCGGCCAGCTACATCACCGGGTCGACGATCTGGACTGACGGCGGCTACACAGCAGGAGAAGAAACCGGAACCCTGCAGGCATTCGTCGCCCAACGCTGAMTTTRDANWFEGRRAVVTGCASGIGHATAVQLKERGAFVIGMDIQPCTEFDEFHRIDLGDSQSIRDVAEAIDAPIDALINVAGVSSGFGGPLTVVGINFIGTRELTEALMPQLLPGSAIVNTSSLAAKEYRSRTSVTAELLATATRDEALAWCAAHPEQVELGYSLSKEAIILYTAAQAVRLAARGVRINCIAPGVTQTPILHDTISRLGEDYLNAIPKPLGRLSTPDEQASVLLFLASDAASYITGSTIWTDGGYTAGEETGTLQAFVAQRNANANANANA
D1-29_020241767kstD_43-oxosteroid 1-dehydrogenaseATGAATGATGCCCAGGCGCAAGAGTTCGACCGAGTCGTGGACACCCTTGTGGTGGGGAGCGGGGCAGGCGGGATGACTGCCGCGCTGGCCTCGAAGTCCCGAGGACTCGAAACACTTCTTATCGAAAAGGCGTCGCGGTTCGGTGGTTCGAGCGCACTGTCCGGCGGAGGACTGTGGATTCCAGGTGCACCCCCACAGATGCGCGAGGGGCACGAGATCGATCTCGACGAGGTATTTGAGTATCTCAAGCTGCTCACCGAGGGCTTGGTCTCAGACGAGCGGCTTCGCGCCTACGTCGACGAGGGCCCCAAGATGATGCGGTTTCTCGAGGAGCTCAGCCCTCAGATGCAATTCATCTGGAAGGCCGGATACCCAGATTACTACCCCGAACTCCGCGGCGGATCCACGGCAGGCAGCGTGATCAACGTGCCAGCGATTGACCTTCGGGAGTTGGGCGCCGACATCGACGCGCTTCTTCCCCCTCTCGCGCTCGCGCCCCGTGGCATGTGGATCGGTCCCAGCGAGCTTCGCGAGTTCTACCGCCTGCGCCAGTCGTGGAAGGCGAAGGCACTCTTCGTCAAACTCGTCTGGCGGATGGTGCGCGCCCGGCTCACCGGCGAACGGATCGTGACAGTTGGCCAGTCACTGATGGCGCGGCTTTGGCTAACGGCCAGGCAACACGAGCTTGAAATCTGGCTCGAATCCCCCATGATCTCGCTTATCACCGAGACGGACGGAAGGGTCATCGGTGCACGCGTCGTGCGGCACGGTGAGGAGCTCCGGGTAGGCGCCCGGGGCGGCGTCATTCTCGCCACCGGTGGATTCGACCACGACGCCGAACTGCGACGCCTGCATCAACCGTTCGCGGAGAAGGAATACAGTCTAGGTGCGCGCACCAATACCGGCGACGGCATCCGCGCCGGCGTCGAGGCTGGTGCAGCGACAACCCTGATGGAAGAGGCGTGGTGGTATCCTGCCGTGGCCTGGCCAACCGGCGGCGTGCAATTCAGCCTCAATGAGCGAATGATGCCGAGCCAGTTCATCGTGAACGGCGACGGCGAGCGCTATATCAACGAGGCCGCGCCTTACTCCGAGTTCGGGCAGGCGATGATACGCGGCCAGGCCGGGAGCACCCCCCACATTCCGTCATGGCTCATCACTGACATGGACTCCTGGCACAAGTACGTCATCTTCGGCCACCTCCCCGTGCCCAAGATCCCCCTTGCGCCCGTGCCCACCGGGTGGAAGATACCGAAGGCCTGGCTGAAGTCCGGCGTGGTCTTCACGGGGGACACCTGGCAGGACATTGCTAACCAGATTGGCGTTCCAGCCACCAACCTTGCCGAGACGGCACGCCGCTACAATGAGATTGCGCGTACCGGCGCTGACACCGATTTTCACCGCGGTGCCAGTGCTTACGACCACTACTACGGCGATGTCACACTCCCGAACCCGAACCTCGCTCCTCTGGGGAATGGCCCCTACATCGCGTTCCGGCTCATCCTCGCTGACCTAGGCACCAATGGCGGCGTCAACACAGACGAGGCCGCTCGCGTGCTGCGGGCCGACGGATCGCCGATCACCGGACTGTACGCGACGGGGAACACCTCGGCCGCGGTCATGGGCCGCAGCTACGCCGGCGCGGGGGCAACCCTAGGTCCCGCTATGACGTTCGGATACATCGCCGCACAGGACATTGCAAAACGAACCAGCGCGCGTGGTGCCCACGCCCCCCAACCCGCCACTGCAGTAGCCGGAGAGGAATGAMNDAQAQEFDRVVDTLVVGSGAGGMTAALASKSRGLETLLIEKASRFGGSSALSGGGLWIPGAPPQMREGHEIDLDEVFEYLKLLTEGLVSDERLRAYVDEGPKMMRFLEELSPQMQFIWKAGYPDYYPELRGGSTAGSVINVPAIDLRELGADIDALLPPLALAPRGMWIGPSELREFYRLRQSWKAKALFVKLVWRMVRARLTGERIVTVGQSLMARLWLTARQHELEIWLESPMISLITETDGRVIGARVVRHGEELRVGARGGVILATGGFDHDAELRRLHQPFAEKEYSLGARTNTGDGIRAGVEAGAATTLMEEAWWYPAVAWPTGGVQFSLNERMMPSQFIVNGDGERYINEAAPYSEFGQAMIRGQAGSTPHIPSWLITDMDSWHKYVIFGHLPVPKIPLAPVPTGWKIPKAWLKSGVVFTGDTWQDIANQIGVPATNLAETARRYNEIARTGADTDFHRGASAYDHYYGDVTLPNPNLAPLGNGPYIAFRLILADLGTNGGVNTDEAARVLRADGSPITGLYATGNTSAAVMGRSYAGAGATLGPAMTFGYIAAQDIAKRTSARGAHAPQPATAVAGEEPGPT0006680_148DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
D1-29_020251203hypothetical proteinTTGGTCGGCGTCGACACCCATGCCGATACTCACCACGTCGCCATCATCAACGAGTACGGCAAACCTCTGGCCGATCAGGAGTTCCTTGCTGTGGGCTCCGGATACCGCAAAATCCTGGACTTCATCGCCAGGCATGGAACAGTTGCCGCGGTAGGGGTCGAAGGAACCGGCTCATACGGCGCCGGGCTGTCCAAGGTGCTCCGCAGCGAAGGGCTAACTGTCCTGGAGGTCAACCGCCCAAACCGGGCTCAGCGTCGCCTGAAAGGAAAATCCGACCCCCTGGATGCCTACCAGGCAGCCCAGTCAGTACTGGCTCAACGAGGCCTCTCGACCCCGAAAGCCAAAGACGGACCCGTCAAATGCCTGCGGATCCTACGTAACGCTCGTTCTTCGGCAATGAAAGCCCGCACGGCAGCAATCAATCAGATCAAGGCTCTCCTCGTGTCGGCACCGGACGCTCTCCGGGCGAAATACAGGGGCATGGCCACTCCCGCCATAATCAGCGCCCTTCAGCGAAGCAGGCCCTCAGGCCATGTGGCCGACCCGGAAAACATGACGCTGCTGACCTTGAAAACCCTGGCCACCCGCTACCAGGCCTTGGCCGAAGAAATCACCGCAGCCGATACTGCCCTGCAAGAAATCCTCGATTCCTATGCGCCCTTCCTCTGCGACCTCCCAGGCGTAGGACCAGACGTTGCCAGCCAGCTCCTCATCACCGTAGGAGACAACCGGGAACGGATCGGAAACGAAGCCCAGTTCGCGGCACTCGCAGGGGTAGCACCCATCCCGGCATCGTCAGGAAAAACGACCCGCCACCGGCTCAGCCGAGGCGGTGACCGCAACGCAAACCGTGCCCTGCATCAAGTAGTGCTGACCCGCATGTCTTCATGTCCACGGACAAAAAACTATGTCAGTAAACGCACCACCGAAGGAAAAAACAAGCCAGAGATCATGCGTTGCCTCAAACGCTACGTATCCCGTCAAATATACCGACAGATACTCAACCCTGTACCGGCACCAGACATCACCGACCTACGACAGAAACGCAAAAGCCTTGGGCTAACCGTCAACGCGGTCGCCGGCGAACTCAACCAATGGCCCTCCATTATCTCCCGCCTCGAACGCGGCATCCTCCGCAACGACGACCTCGCAACAAGCTACCGGAAATGGCTCGCCGAGCAAGCGGCTCCAAAAACGAATTGAMVGVDTHADTHHVAIINEYGKPLADQEFLAVGSGYRKILDFIARHGTVAAVGVEGTGSYGAGLSKVLRSEGLTVLEVNRPNRAQRRLKGKSDPLDAYQAAQSVLAQRGLSTPKAKDGPVKCLRILRNARSSAMKARTAAINQIKALLVSAPDALRAKYRGMATPAIISALQRSRPSGHVADPENMTLLTLKTLATRYQALAEEITAADTALQEILDSYAPFLCDLPGVGPDVASQLLITVGDNRERIGNEAQFAALAGVAPIPASSGKTTRHRLSRGGDRNANRALHQVVLTRMSSCPRTKNYVSKRTTEGKNKPEIMRCLKRYVSRQIYRQILNPVPAPDITDLRQKRKSLGLTVNAVAGELNQWPSIISRLERGILRNDDLATSYRKWLAEQAAPKTNPGPT0030635_664DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_02026819COG1262Formylglycine-generating enzymeATGGGTGATGCCTTTGGGGAGGGCTATTCTTCCGATGGGGAGACTCCGCTGCATGACGTGCGGCTGGACCCTTTCCGCATTGATGCAGCTACTGTAACGAACAGCATTTTCGCTGCTTTCATCGCGGAAACCGGCTACCGGACCGATGCAGAACAGTACGGAACTTCCGCTGTGTTCCACAGCCTCGTCCGGGCCCATCCCCGCGACATCCTCGGTGCCGCTGCCGGCGCGCCCTGGTGGCTGAACGTGCGGGGTGCCGACTGGGCCCATCCAGCAGGCCCTTCATCCAACTGGGAAGACATCGCCGACCACCCGGTGGTCCACGTATCCCATCATGATGCCCTTACCTACTGCACCTGGGCCGGGCGCCGGCTGCCCACCGAGGCCGAGTGGGAGTATGCAGCCAGAGGAGGGGTAGAGGGAATGCGATACCCCTGGGGGAACGACCTTACGCCCGGCGGCGAGCACCGTTGCAATATCTGGCAAGGGACCTTCCCGAAAATCAACACGCGCGACGACGGGCATTCGGGCACCGCCCCGGTAAAGTCCTTCCGGCCAAACGGGTACGGGCTGTACCAGATGGCCGGTAACGTCTGGGAATGGTGCGGCGACTGGTTCTTGCCAAAGTACTACCGCAACTCACCCTCGGATAACCCACACGGGCCAAGCATCGGGGCTGGACGCGTCATGCGAGGCGGCTCTTATCTGTGCCACGATACCTACTGCAACCGCTACCGCGTCGCTGCCCGAACCTCCAACACACCGGAGTCCTCCTCGGGTAACTGCGGCTTCCGTACTGTTGCAGCGATCGCAGTGTGAMGDAFGEGYSSDGETPLHDVRLDPFRIDAATVTNSIFAAFIAETGYRTDAEQYGTSAVFHSLVRAHPRDILGAAAGAPWWLNVRGADWAHPAGPSSNWEDIADHPVVHVSHHDALTYCTWAGRRLPTEAEWEYAARGGVEGMRYPWGNDLTPGGEHRCNIWQGTFPKINTRDDGHSGTAPVKSFRPNGYGLYQMAGNVWEWCGDWFLPKYYRNSPSDNPHGPSIGAGRVMRGGSYLCHDTYCNRYRVAARTSNTPESSSGNCGFRTVAAIAVNANANANANA
D1-29_020271800hypothetical proteinATGCGCGCCATAGTTGTCATGTTCGACAGCTTGAACCGGGAATATCTTCCCGCTTACAACGCTGAGACTCCCGTCACCACGCCTAATTTTGCACGGCTGGCAGACCGGACTGTCACCATGGAAACGTCCTATGCGGGCAGCATGCCGTGTATGCCGGCAAGGAGGGAGCTCCATACCGGCCGGTACAACTTCCTGCATCGCGGGTGGGGGCCAATGGAACCTTTTGATGACTCTGTTCCCGAGATGCTAAGGACTGCGGGTGTACACACCCACCTCGCAACGGACCACATGCATTACTGGGAGGACGGCGGTGCTACTTACCACACACGTTACTCGACCTACTCCCTGATCCGCGGACAGCAGGGAGACCCCTGGAAAGGCGAGGTCGCTGATCCGCCTCCGGCGAACGATCTGCGTGTCAACCGGCTGGGCACGTGGCGGCAGGACCAGATCAACCGCAAGTACATGGCCGAACTCGGGGCCCACCCCCAAGTCCGTACCTTTGACGCCGCAGAGGAGTTCATTCGTACCAACCATTTCCAGGACCGATGGATGATCCAAGTAGAAACATTCGACCCCCATGAGCCGTTTTTCAGCACGCCGGACTTGAACGGGAAGTACGATGACCCCTCCTATGCCGGGCCCCAGTACGAATGGCCTGAATACATGGAAGACATCGAAGACGATGCGACGCGTGCACATGTCCGTGCCCGGTACTCGGCGCTGATTGGGCTATGCGACCAGTCGTTGGGCCGGGTCCTGGACCTGATGGATGAGTATTCGATGTGGGAGGACACGCTGCTTATTGTCTGCACCGACCACGGGTTTTTCCTGGGCGAACATGGATGGTGGGGCAAGAGCGTGCAGCCATGGTACGAGGAAGTCATCCATACCCCACTATTCATCTGGGATCCTCGATCCGGCATGGCAGGCTCCCGCCACGACGGCCTCGTCCAGACGATTGACATAGCACCCACGCTCCTGGAACATTTTGGCCTCCAGCCGACGGCGGACATGCAGGGTATCTCGCTGCCTCCGGTTTTACGGAATGAAAGGCCAGCCCACGATTTTGTGCTGTTCGGTGCTTTCGGCGGACAAGTCAATATCACGGACGGAAGGTACGTCTACATGCGTACATGCACCACTCCGGACAATTCGCCGCTTTTCGAACACACCCTCATGCCCACCCACATGCGTGGCTTCTTCACCTTGGAGGAGCTCTCAGGGGCCGAACTCGTAGAACCATTTACCTTCACCAAGGATGTACCCGTGCTGCGCTCCGCCGCTGCAACACTGGGAAACCCCCGATCACTGGGCACACTCCTGTTTGACCTCCAGACAGACCCCGGGCAAGAGAATCCGCTCTTGGACGAAGACCTGGAGATGCGGATGTGTAACGCCCTCGTGGATCTTCTGAAACGCAGCGATTCCCCCCGCAGCCAGTTCGAGCGACTGGACCTTCCTGAAGAAGGATCAGTGGGAAAAGAGCATTTAGCTTGCGCCAGGCAAAAACCGGAATCGACCTTTTTGCCGCCCGGTCACTTCCCCTCCGGAATGCCAAGTGTTCACACACCCCTTGCAGACCTGCTCGCCGACCCGAGAGCCCACTCCATTCTGGAACGACACTTGGACCACAAACTCCTCACGGGGCTCTTTCCTCGGATCTCCGGTCCAGTGTCCCTCTACCGTGCCACCCTCGCGCTCCGGGGAAGGATCAGCTGGCCAGCCCTGGAACAGGTGGCCAACGACCTGACATCGTCTGCATCCCCAGGAGACAAGCCGAAACAATCCAGCCTCTAGMRAIVVMFDSLNREYLPAYNAETPVTTPNFARLADRTVTMETSYAGSMPCMPARRELHTGRYNFLHRGWGPMEPFDDSVPEMLRTAGVHTHLATDHMHYWEDGGATYHTRYSTYSLIRGQQGDPWKGEVADPPPANDLRVNRLGTWRQDQINRKYMAELGAHPQVRTFDAAEEFIRTNHFQDRWMIQVETFDPHEPFFSTPDLNGKYDDPSYAGPQYEWPEYMEDIEDDATRAHVRARYSALIGLCDQSLGRVLDLMDEYSMWEDTLLIVCTDHGFFLGEHGWWGKSVQPWYEEVIHTPLFIWDPRSGMAGSRHDGLVQTIDIAPTLLEHFGLQPTADMQGISLPPVLRNERPAHDFVLFGAFGGQVNITDGRYVYMRTCTTPDNSPLFEHTLMPTHMRGFFTLEELSGAELVEPFTFTKDVPVLRSAAATLGNPRSLGTLLFDLQTDPGQENPLLDEDLEMRMCNALVDLLKRSDSPRSQFERLDLPEEGSVGKEHLACARQKPESTFLPPGHFPSGMPSVHTPLADLLADPRAHSILERHLDHKLLTGLFPRISGPVSLYRATLALRGRISWPALEQVANDLTSSASPGDKPKQSSLNANANANANA
D1-29_02028912hcaR_2Hca operon transcriptional activator HcaRATGCAGCTGCGGCAGCTGGAAATCTTTAGCGTCTTGGCGGATGAGCTCCACTTCGGAAGAGCTGCCGCCCGCTTGCGAATATCCCAGTCAGCGCTGAGCCAGCAGCTGCAAAAACTGGAGGCGTCCCTTGGTGCCCAGCTGGTGTTCCGCAGTAGCCGGGACATCAGCCTCACGGAAGCCGGCACCCTGTTTCTGGAACCAGCCAGACAAACCCTGGCAACAGCGGACAGGGCACAGCTACTCCTCCAGGACCATAAGGCAGGACGTACAGGTCGAATTGTCATCGGTTCTCTGGGGGCAGGTCTGAACGGACCGCTCCCTGAGATTATCCGGAAATTCCGCAGCAGGTCACCGGCGAGCATAATTGAGCTAAAGCATTTCCGCGATAGTGCATCCCAGGAACATGCCATCCTCACAGGTGCACTCGATGCCGGGATTCTGAGGCGCGTTGTGAACGACCGGTCAATCCGGGCGGTGAAGCTCCTGGATGAATCCTTCGTTGTATTCTTCCCAAACCAACATCGGCTGGCGGACCGCCGCATGGTGTCCCTCTCAGAGTTGACGGAAGAAAACTACGTCATCTGGCACCGGCACTTTGGTTCATCGTTTTACGACCTGATCATAGGTGCCTGCCATGAGCACGGCTTTCAGCCGAACATAGAGGGCTTGGGCGATACCCTGGAAGCACAGTTGGCGCTCGTTGCCGCAGGCGTGGGGATATGTATCCAGTCCGAGTCCCATGCCTCCATCACCCGTTTGGGGGTAACCTCGGTCCCTCTGGACCCTCGTGATCTTGGCGCTGCCCTCTGGTTCGGCTACCGTCGCTGGCAGGACTCCCCCGTCGTCGCCAAACTGATCGAAGTCATCGACGAGTGCAGCAGCCGGCTGAACTCCACCCATCCAACGCCTTGAMQLRQLEIFSVLADELHFGRAAARLRISQSALSQQLQKLEASLGAQLVFRSSRDISLTEAGTLFLEPARQTLATADRAQLLLQDHKAGRTGRIVIGSLGAGLNGPLPEIIRKFRSRSPASIIELKHFRDSASQEHAILTGALDAGILRRVVNDRSIRAVKLLDESFVVFFPNQHRLADRRMVSLSELTEENYVIWHRHFGSSFYDLIIGACHEHGFQPNIEGLGDTLEAQLALVAAGVGICIQSESHASITRLGVTSVPLDPRDLGAALWFGYRRWQDSPVVAKLIEVIDECSSRLNSTHPTPNANANANANA
D1-29_020291422hypothetical proteinATGCGGGCCCGGGAGCAGCTTTCACTCCCCAACATCGTCCTCATCCTGGCCGATGACATGGGCTATGGCGACTTTGGGTTTTTGAATAGTCAACTGACCTCGACGCCGGCACTCGATGAGTTGGCTTCTGAATCGCTCGTCTTCACTCAGCATTACTCGGCTTCCCCTGTTTGTGCCCCTGCCCGTGCGGCGCTCCTTACTGGCCGATATCCGCAGCGGACAGGAGTCATTGACACACTCGAGGCGCGGGGGACGGACAGGCTTTCCCTAGCGGAAGTAACCCTCGCTGATGCGCTTCGTGCCGGCGGTTATCGAACGGGACTTGTGGGCAAGTGGCATACCGGGGCAATCGGTGACGATTATGCCCCCCGCCAGCGAGGTTTTGATGAATTCGTTGGTTTCCGTGGGGGATGGCAGGACTACTGGCAATGGACCCTCGAAGTGCAGGGAGGACGCGCACGTTCAGACGGCAGATACCTCACTGACGTCCTTGCCGACGAATCGGTGGAGTTCATCCGGCGCCATGCCGGAGAGCCGTTTTTCCTTCACGTTGCCTTTAACGCCCCCCACTTTCCGTTCCAAGCCCCAAAGGAACTCATCAGACGGCACCAGTCAGCTGACCGGACCGATGTGGTCGCCACCATTTACGCCATGATCGAGGTGATGGACAGGGGGGTCGGACGAATACGGCAGGCGTTGGTTGACGCCGGCATTTCCGAGAACACCTTACTGCTGTTCACCAGCGATAACGGACCGGATCATGGCGGTGAAGGCACCCTCTCGGCCGCACGATTCAATGCCAGCCTGGCAGGGTCAAAGCAATACGTGTACGACGGCGGAATCCGGCTTCCGCTTATTCTGCATTGGCCTTCCGGCGTCTCTGTGGGCAGCACAAGCCAATTCGCCCATTTCACTGACTGGTATCCAACCCTGCTGGGAGTAGCGGGAGCAAAAAATCCTGGCCACATGCCGATCGATGGTCAGGATCTACGCCCAGTGTTTGCCGGTTCAAACGTAGACTCGGGGCCCCGGTTCTGGCAGTGGACCCGCTACCTGCCGATGCTTGCCTCGAATGCGGCGATGCGGGATGGGCCCTGGAAACTGGTTCACCCAGCCCTCGCCGGAACACTGGATCTGGATCCAGAAGATGAGAGAACCGACGCTGACATCAAGGTCCACCCCGAGCGGTACCCGGAACCTGTCAAATGGACGCCACCTGTTCATGCGATGCCAGAGGCAGCCCCCATCGAACTATTCAACATCAGCGACGACCAGGAGGAACGGCAGGACGTCGCGGACCAGCATCCCTCCGTCGTGTCTCGAATGGAAGCAGACCTGAGCCGTTGGTTCGAGTCCGTGGAGGCGGAGCGGAACATGTCTCGGCCAGCCCTGCGCGAAGGGAGGGAGAGGAGATACCCATGAMRAREQLSLPNIVLILADDMGYGDFGFLNSQLTSTPALDELASESLVFTQHYSASPVCAPARAALLTGRYPQRTGVIDTLEARGTDRLSLAEVTLADALRAGGYRTGLVGKWHTGAIGDDYAPRQRGFDEFVGFRGGWQDYWQWTLEVQGGRARSDGRYLTDVLADESVEFIRRHAGEPFFLHVAFNAPHFPFQAPKELIRRHQSADRTDVVATIYAMIEVMDRGVGRIRQALVDAGISENTLLLFTSDNGPDHGGEGTLSAARFNASLAGSKQYVYDGGIRLPLILHWPSGVSVGSTSQFAHFTDWYPTLLGVAGAKNPGHMPIDGQDLRPVFAGSNVDSGPRFWQWTRYLPMLASNAAMRDGPWKLVHPALAGTLDLDPEDERTDADIKVHPERYPEPVKWTPPVHAMPEAAPIELFNISDDQEERQDVADQHPSVVSRMEADLSRWFESVEAERNMSRPALREGRERRYPNANANANANA
D1-29_020301512COG3119N-acetylgalactosamine-6-O-sulfataseATGAACCGTTCGACCAGACCCAACATCGTCCTCGTCCTGGCCGATGATCTTGGCTGGGGGGATGTCAGCTGCTATGGAGCAACCAGGATCACGACGCCGAACATAGATTCACTTGCGGCTGAGGGGATCAGGCTGACTGACGCCCATGCAGCATCGGCGGTTTGCACTCCTAGCCGGTATGCACTCCTGACAGGGCGGTACAGTTGGCGCAGCCCCCTTAAGCAAGGCGTGCTCATGGGTCATGGCCCTGCCCTGATTGAGCCCTTCAGGGCCACCTTCGCATCAGTCCTGAAAGCCGCAGGGTACGCTACTGCGGCGATCGGTAAATGGCACTTGGGACTGGGATGGAAGCACCTCGACGGCAGCACGTGGGACGCCTTCAATGGAAAGGATCCGCTCGAATATCAGCTGGGGGATCCGCTGGTAAAGCACCGGGACATGGATGTGGACTCCGGAGTCGATATTGATTACTCCAAGCCGTTCGTCGGCGGTCCACTTGATCTGGGTTTCGATCGGTTCTTCGGCATTGCCGGTTCCCTCAACATGCCGCCTTATGCCTTCTTGGAGCAGGACCGCACCGTCGGGGTTCCGAGGCGGAAGAAGCGGCGCTTCCTGCCCAGTCAGCGGCCTGGCTTTGAATCCGATGATTGGGACGAACGGGAAGTGGACCTCCGTTTCACGGCGGAAGCGGTCCGCTTCATCCACCGTCTGGACAAGAACAATCCCTTCTTCCTGTATTTCTCGCCTTCCGCCCCGCACCGGCCCCAGGTCCCTCCGGCATTCCTTAAAGGGTCCTCGCAGGCCGGGGCACGGGGAGATTCTGTGGTGTTCGTTGACTGGATGGTTGGAGAACTGGCGCACGCCCTCCGCGAGGACGGGCTTTTTGATAACACCCTCTTTATATTCACCAGTGACAATGGAGCCCCGACTATCTTCCCGGACGACGGGGATACCACGGAGCACCGGGCCAATGGTCCATGGCGGGGGCAAAAAGGCGACGTCTGGGACGGCGGTCACCGTGAGCCCTTCGTAGCCCGCTGGCCAGGAACCATCGTTCCTGGAACAGTCAGCCACTCGGCCATTGGGCTCATCGATCTCTTGCCCAGCATTGCTGCTCTCCTGGACCTGGAGTTGCCCGACGCCGCGGCGCCCGACGGCGCCGACCGCTCAGGTGCCCTGCTTGACGCCGCCGCTGGTGAGGAGCGGCCCCTCGTTCTGCACAGCATGGGTGGGGCGTTCTCAATCGTTCGCGGTCGGTGGAAAGCAATTTTCGCCACGGGGTCCGGGGGAGGACTGTCAGAGCCCAGGGGCGAGAATCTCAGCCGGGAGCATCCAGTCGGACAACTGTACGACATGGCACTGGACCCTTACGAAACGACGAATGTCTGGAACGAGCACTTAAACGTCGTAACTGATCTCTATTCAGCCCTCGCCGGCATCGTCGAAGCGGACAACGGGTTGCCGTTGGACGTTAAGTTGACCGAGTTTTTTCCTGCTCAGAAGCCAACCTGAMNRSTRPNIVLVLADDLGWGDVSCYGATRITTPNIDSLAAEGIRLTDAHAASAVCTPSRYALLTGRYSWRSPLKQGVLMGHGPALIEPFRATFASVLKAAGYATAAIGKWHLGLGWKHLDGSTWDAFNGKDPLEYQLGDPLVKHRDMDVDSGVDIDYSKPFVGGPLDLGFDRFFGIAGSLNMPPYAFLEQDRTVGVPRRKKRRFLPSQRPGFESDDWDEREVDLRFTAEAVRFIHRLDKNNPFFLYFSPSAPHRPQVPPAFLKGSSQAGARGDSVVFVDWMVGELAHALREDGLFDNTLFIFTSDNGAPTIFPDDGDTTEHRANGPWRGQKGDVWDGGHREPFVARWPGTIVPGTVSHSAIGLIDLLPSIAALLDLELPDAAAPDGADRSGALLDAAAGEERPLVLHSMGGAFSIVRGRWKAIFATGSGGGLSEPRGENLSREHPVGQLYDMALDPYETTNVWNEHLNVVTDLYSALAGIVEADNGLPLDVKLTEFFPAQKPTNANANANANA
D1-29_020311281hypothetical proteinATGAAAACGTCAACGGCCAACGCGAGAAGGCTCGTCGCGGCCACCGCTGCGCTGGCTCTCGTCACTGGATGCTCGCCCGGGGGCGGGACGACAGATGAAGAGGTGACAGAACTTAACTTGCCGGCCGTCGAAGCGCCATGGTTGGACGGTTACAAGAAGATCATCGCCGATTACGAGAATGAAAAAGGCATCAAAATAAACCTCACCTCATTTCCGTTCGACGGGCTGCTGACTCAAGAGGCGAACGCCGCCCAAAGCGGGTCGAACGCCTTCGATCTATTCCTGATCAACGAACAGTGGGTCGGGCAGTTCTACGACAACGAGTGGGTGCAGCCGCTCGAAGAGGTGAACTCAGACTTCGAATGGGACGAGAACCTTATCGAATTTGATGGAATAGGGCGGTGGAATACGGACGCCCGCACGACCACTTTGGACGGAGCCCCTTATTCCCTGCCTATCAACGGCAACATTCACGAATTCATGTATCGAACCGACCTTTACCAACAGCTCGGTCTCAAGGTCCCGACAACATGGGATGAAGTGGTTGCCAATGGTAACGCAGCTAAGGCTGCAGGTGCTGTGGGTAGCGGCTACGTTGTGCGAGGCAAGACGCCCTCATACGACTTCAGTGCATTGCTCTACTCCTATGGCGGTAAGTGGTTCGAAGATGAGGCCGGCGGCAACTGGAAGCCAGCCATTGACTCACGGGAATTCAGGCAAGCCTTGACGAAGTTCAAGGAGTTGGCCGACATCGGGCCGGCAGCCCCGCAAACCATTGCCCAGGCCGAAGCGATTTCCCTCATGCAAAGCGGCGATGTTCTGCAAACATCCCTCGTGACAGCGAATGCCGTTCCGATTGAGAACCCGGCTGCCTCCCGGGTTGCTGGCAAGATCAGTTACGCCAAGTTGCCGGGCGGCACACCAGTCAGCGGCACGTGGACCATGGGTGTCCCGACGGGACTACCGGAGAACCGTTCTGCTGCCGCCTATGAGTTCCTGACCTGGCTCACCAGCAAAGACACCATGCAGAAGTGGGAGGGGTACGGCGGCGTGACGACGCGTGCGGACGTCACCAGCCAACGGCCCGAACTAAAAGTCCTCATCGAATCGGAGGAAGACATCCGCGGCGGTCTGCGGTATCCGTTCACGCCGGCCCTGCTTGACGTTACTGATCCGGCCATTGGCGAGTACCTCGCAGGAACAAAGAATCTGGAAGATTCAATCTCTACCATGCAGGACCGTCTCACCGAGGTCGTCGAAAAGGCAGGCTTCCTGAAATGAMKTSTANARRLVAATAALALVTGCSPGGGTTDEEVTELNLPAVEAPWLDGYKKIIADYENEKGIKINLTSFPFDGLLTQEANAAQSGSNAFDLFLINEQWVGQFYDNEWVQPLEEVNSDFEWDENLIEFDGIGRWNTDARTTTLDGAPYSLPINGNIHEFMYRTDLYQQLGLKVPTTWDEVVANGNAAKAAGAVGSGYVVRGKTPSYDFSALLYSYGGKWFEDEAGGNWKPAIDSREFRQALTKFKELADIGPAAPQTIAQAEAISLMQSGDVLQTSLVTANAVPIENPAASRVAGKISYAKLPGGTPVSGTWTMGVPTGLPENRSAAAYEFLTWLTSKDTMQKWEGYGGVTTRADVTSQRPELKVLIESEEDIRGGLRYPFTPALLDVTDPAIGEYLAGTKNLEDSISTMQDRLTEVVEKAGFLKPGPT0016545_7496DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02032960araP_1COG1175L-arabinose transport system permease protein AraPATGAGCACCACGATCAGGGCCGGTTCCACTTCCGGAGGACGGGATGTGGGCCGGCCCCCTGGACAACGTGAACATCGGCGGAAGCCGTTCCCCTGGTTTAAATACCTGGCTGTCCTTCCCCTCCTGCTCTTCTTCCTGGTACTGGTTGCATTTCCGGTCGGGCAGCTCGTCTGGATGGCCTTCGGAAGGGTCAGACTGGTTGCAGGTAACTTCCTGTGGAGGCCAGTTGGTTTCGACAACTTCACGGAGATGATGTCGGACAGAGTGTTCGGTATTTCACTATGGAATTCTGCTGTTTTCATCACCTCCACGGTTGTCCTCACGCTGGTGCTGGGCGTTCTACTGGCCTTGGCAACGGAGCGTCTCGTCCGAGGGCAACAGTTGGCCCAGAATGTCATAATCTGGCCTGCCATCATTGCCCCTGTTGTCATCAGTGTTATCTGGCTGCTCATCCTCAGTCCCCAGATCGGACTGCTGAACCGCATACTGATCAGCTTTGGAATAAGTCCCCAGGCCTGGTTGGGTGACAACTTTGGCGCGATGGCCAGCGTCATCGTGGTCGACGTGTGGCACTGGACGCCGATAGTTTTTCTGTTCGTCTATACGGCGCTGCGGGGTCTTGATACAGAGGTGCTTGAGGCAGCCAGCGTGGACGGCGCCAGCTATATGCAGCGGGTGCGGTTTGTCGTCCTGCCTCTCCTGGCACCGGCCATCCTTGGCGCTGCCGCAATCCGGATCATCATGGGTGTGAAGGTCTTCGATGAGATGTACCTCCTCACTTTTGGCGGGCCAGGTACAGCCACGACCGTCATCTCGATCTACCTGCGCTCCGTGTTCTTTGACGCCTTTGAATACGGCTACGGGGCTGCCCTGAGCGTCACGGTGGTGCTGCTGGTCCTGCTGGTACTCATCCTCGTGTTCGTTTCCCGGACACTTATCAGGAGGTTGTCCCGTGGCTGAMSTTIRAGSTSGGRDVGRPPGQREHRRKPFPWFKYLAVLPLLLFFLVLVAFPVGQLVWMAFGRVRLVAGNFLWRPVGFDNFTEMMSDRVFGISLWNSAVFITSTVVLTLVLGVLLALATERLVRGQQLAQNVIIWPAIIAPVVISVIWLLILSPQIGLLNRILISFGISPQAWLGDNFGAMASVIVVDVWHWTPIVFLFVYTALRGLDTEVLEAASVDGASYMQRVRFVVLPLLAPAILGAAAIRIIMGVKVFDEMYLLTFGGPGTATTVISIYLRSVFFDAFEYGYGAALSVTVVLLVLLVLILVFVSRTLIRRLSRGPGPT0016535_9682DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_02033885ngcG_3COG0395Diacetylchitobiose uptake system permease protein NgcGGTGGCTGAAGTCCGCACTGTTTCCCCCGGAACCGAAGCTCGGCAGCGAACTGGAGCTTCAAAACAGGGCGGCGGCCACTGGATCGCCCGCCTGATCGTTATCGGAGCGGCCATTATCACCATCGTTCCACTGATCTGGATGATCTTTATTTCACTCCAGAAACCACGGGTTATCATCTCCATGGGCTGGGGCGCTGAATTCGCCATTGATAGCTTCGCGGAGATTTTTGATCCCCGCGCGGTTTTCGGTCAGCAGGTCATCAACAGTATTCTGCTCGTCGTTTCAGCGACCGCGATCACACTGGTCGTCAGCGCGCTTGCCGGCTACAGTCTGAGCCAGTTGAGATGGTCCAACCGGGTTGTTGTAACGGTGCTTTCGGTCTCCGCCCTGCTCCAGGTTATCCCTCCGATGACTCTGGTCCCGGGGCTTTATGCGACGCTGACCAACTACGGTCTCGTTAACAGCCTTGGTGGGCTTATCCTGCTCAATACCGTGTTCAATCTCCCGTTCGCCACGATCATGACGAAGTTCTACTTCGACACCATCCCTGGTGAACTTCGCGAATCGGCGGCTATCGATGGGGCAAGTGAATTCGGCGCCTTCCGGACGGTTATGTTGCCTCTCGCGGCACCTGGGATCGCCGCGGTGGCGATCTTCACGGCTATCCAGGTCTGGAACGAGTTCCTCTTCGGCCTGGTCTTCACCACCGGTGGTTCACAGGCTCCCATCACAGTAGGCATCGCGGCGCTGATCCAACCCCAGGAAATAAAGTTCGGCGCAATGGCCGCTGTGGGAGTTGTCACCGCCGTTCCCATTATTCTGCTCGCCATCGTGGCTAACCGGCAGATCGTGGCCGGTCTCACCGGCGGCGCCGTGAAGGGATAGMAEVRTVSPGTEARQRTGASKQGGGHWIARLIVIGAAIITIVPLIWMIFISLQKPRVIISMGWGAEFAIDSFAEIFDPRAVFGQQVINSILLVVSATAITLVVSALAGYSLSQLRWSNRVVVTVLSVSALLQVIPPMTLVPGLYATLTNYGLVNSLGGLILLNTVFNLPFATIMTKFYFDTIPGELRESAAIDGASEFGAFRTVMLPLAAPGIAAVAIFTAIQVWNEFLFGLVFTTGGSQAPITVGIAALIQPQEIKFGAMAAVGVVTAVPIILLAIVANRQIVAGLTGGAVKGPGPT0016540_4700DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_020341305Ulvan-active sulfataseATGTCAGTACCTGGCGCACATGCGCAAGCTCAAGGGCAACCCAACATTGTGCTCATCCATTGCCACGACCTTGGGGATTGGCTAAGCACTTATGGGTACAGGGCAGTTCCAGACAGCCGCTTACGGGCCTTTGCGGAAGAGTCGCTGGTTTTCGATGCAGCATTTGCGACTGCTCCGTTGTGCACGCCTGCGCGTTCATCCCTCTTTACTGGTCAAATGCCGCACCAGAATGGCTTGATGGGGCTGACGCACCAGGGATGGCAATACGCGCCAGGGGTCAAGACACTGCCGGAGATGCTGTCACCGCTTGGCTACCATACGACGCTGATCGGCCTGCAACACGAAGATTTCGACGCGCGGGTGCTTGGCTTTGACGAGGTCCTGGGTCTTGGTTTCATTCCACGGGCTATGGAAATCGCCCGGCTGGTACAAAGGTGGCTCTCGCACAACCGGAACAGCAGCCCCTACTTCGCCACTATTGGGATGTGGGAAGTTCACCGGCCATGGCCTCTAGAGGACTACGTGCCTGCTGATCCCGATACTGTAGACGTGCCGCCGTACCTGCCTGATAACGGCTATACCCGTGCCGACATTGCAGGGTTCTATGGCGCGATCCGACAGATGGACGAAGCATTTGCTCTGATCCTGGCAGCCCTAGATGCCAGTCCGGATGCGGGCAACACCCTCGTCATCTTTACTACCGATCACGGTGCGGCATTTCCGAGGGCAAAGAGCACCCTCTACGATTCAGGCGTCAAAGTGACCCTGTTTGTTCGTCCGCCGCCTCAATGGAGTGTCCCTCCCACCCGGATCCAGGCTCTAGTGAGCCACTTGGATATCGCCCCAACACTTGTCGAGCTGGCTGGGGGACCAACAGAGCAGGAGGTCGCGGGCAGAAGCTTGGCCCCGTTGCTGCGGGGTATAGGACCTGAAGGCAACGAGAGGAGGGAGCTCTTTTTCGAGAAGACGTATCACGACAGGTACGACCCCATCCGGGCCATTCGCACACAGGACGCAAAGTACATCCGCAATTTCCTGGATGGACCGCTGCTTCCTCTTCCAGCCGACTTGGAGAACAGCGAAACGAGGGCCGGAATGGGAAACGCGCACCTTGGGCCCCGGCCAAAAGAGGAGCTTTATCTCTTGGGAAGCGACCCATGGGAGCTGACCAACGTCGCCCAATCGCCGGAGCACGCCGAGCTGAAGGATCGGCTCGCGGACCACTTGGCTCAATTCATGCAGGAAACATCCGATCCGCTGTTGGAGGCGGACGTGGATGAACCGCCGGCACCCCATAGGAGGTGAMSVPGAHAQAQGQPNIVLIHCHDLGDWLSTYGYRAVPDSRLRAFAEESLVFDAAFATAPLCTPARSSLFTGQMPHQNGLMGLTHQGWQYAPGVKTLPEMLSPLGYHTTLIGLQHEDFDARVLGFDEVLGLGFIPRAMEIARLVQRWLSHNRNSSPYFATIGMWEVHRPWPLEDYVPADPDTVDVPPYLPDNGYTRADIAGFYGAIRQMDEAFALILAALDASPDAGNTLVIFTTDHGAAFPRAKSTLYDSGVKVTLFVRPPPQWSVPPTRIQALVSHLDIAPTLVELAGGPTEQEVAGRSLAPLLRGIGPEGNERRELFFEKTYHDRYDPIRAIRTQDAKYIRNFLDGPLLPLPADLENSETRAGMGNAHLGPRPKEELYLLGSDPWELTNVAQSPEHAELKDRLADHLAQFMQETSDPLLEADVDEPPAPHRRNANANANANA
D1-29_020351407Ulvan-active sulfataseATGGCTGGAAGACCCAATATCTTGTTCATTCTGAGTGACGATCAGGGCCCGTGGGCGATGGGTTCCTCAGGCAATGCTGAGATACTCACTCCGCATCTGGACTTACTTGCCGAACATGGTGCCCGTTTGGAGAATTTTTTCTGTTCCTCGCCCGTCTGCTCGCCGGCCCGGGCGACCCTGCTCACTGGCGGCGTCCCATCGGGGCACGGGGTGCACGATTTTTTGGTGGGCCACGAAGCAGGCGAAGAGGGAATCGATTTTCTTGAGGGACAGCGCCTTTTCACTGGCGCCCTCGTGGATGACGGATATACCGTTGGACTGGTCGGAAAATGGCATCTTGGTGCCAGTGACCGGCCCCGGGAGGGGTTTAGCCACTGGTTCGCCTTGGAAGGGGGCAGCAGCGATTATCACAACGCCACCGTGTATAGAGGATCAGCCAAGGAAACTCCCACGTCCTATCTCACTGACGTCTTCGCTGACGAGGCAATCGCGTTTCTCGAGGAAGGTGCCAGCAACCCGCGCCCCTTCTTTTTGTCCCTTAATTTCACCGCCCCGCACAAGCCGTGGACGGGTCAGCACCCGGAGCGCTTTGAGCGGATGTACGAGGATTGTGCCTTCGAGTCCTGTCCCGAGGAAAAGCCACACCCCTGGCTTGCAACTAAGAATGGCATGCCAATTGCTGGTGAAGCCGACCTCAGGTCCGCCCTCATAGGATATTTTGCAGCAGTCAGCGCCATGGATCACGCGATTGGCCGGGTCCTGAACCGCCTGCAGGAACTGGGCCTGACTGAAAACACACTCGTGGTGTTCTCAAGCGATAACGGGTTCAATTGTGGCCACCATGGCGTCTGGGGAAAGGGCAACGGAACCTTTCCCTTGAACATGTACGACTCCTCGGTAAAGGTCCCGGCGATCTTCTCCTTCCCGGGCAAGATCCCGGCAGGACAGGTCGTGGATGACCTGCTTTCAGGCTATGACATGGCCGCGACTCTATTGGACCTGGCCGGTATTGGGCCATACGAGTTCGAGCAAGGGCCAGGCAGGAGCTTCGCCAGCGTGCTTCTAGGCCGTGGTCTCCATGCCGAGCAGCGGCCCGTAGTGGTGTTTGACGAATATGGACCGGTGCGCATGATTCGAACCCGTGAATGGAAGTACGTGCACAGGTATCCCCTCGGTCCACACGAGCTCTACAATCTTCAGTCCGATCCCGGTGAGAAGAGGAACGAGTTCAGCAATCCCATGAACTCAGCCCTCGTCGCTGATCTGAGCAGGCAGCTCCATTCATGGTTTTCGCTTCACGCAACGGCAAAGCGCGACGGCAGCTTCCTCCCAGTCTCTGGCGGCGGGCAATCAGGGATGGTCACAGAGGATCCCTTGAATGCGTTTATTCCCCGGCAAATCTCATAGMAGRPNILFILSDDQGPWAMGSSGNAEILTPHLDLLAEHGARLENFFCSSPVCSPARATLLTGGVPSGHGVHDFLVGHEAGEEGIDFLEGQRLFTGALVDDGYTVGLVGKWHLGASDRPREGFSHWFALEGGSSDYHNATVYRGSAKETPTSYLTDVFADEAIAFLEEGASNPRPFFLSLNFTAPHKPWTGQHPERFERMYEDCAFESCPEEKPHPWLATKNGMPIAGEADLRSALIGYFAAVSAMDHAIGRVLNRLQELGLTENTLVVFSSDNGFNCGHHGVWGKGNGTFPLNMYDSSVKVPAIFSFPGKIPAGQVVDDLLSGYDMAATLLDLAGIGPYEFEQGPGRSFASVLLGRGLHAEQRPVVVFDEYGPVRMIRTREWKYVHRYPLGPHELYNLQSDPGEKRNEFSNPMNSALVADLSRQLHSWFSLHATAKRDGSFLPVSGGGQSGMVTEDPLNAFIPRQISPGPT0013620_747DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_CHOLINE-O-SULFATE|PHOSPHORYLCHOLINE_UTILIZATION,PGPT0013620-betC-K01133NANA
D1-29_020361542hypothetical proteinATGGCGCTATTGCGATTGGGGTCTTCGCTGGAGGCCTATGCCGGAAAGTTGGCTTACGCGGGAGACATTCACAATCACTGTGACATCAGCTATGGCCACGGAACCATCGAAGATGCATACCGGAACGCGCGCCTGCAGCTTGACTTCGCAAGCGTCACCGGACACGCCAGCTGGCACGATATGCCTGACCATCCCTCCCATGTGCGCGACTACCACAGCAGGGGATTCGCACACCTCCGGGACGAATGGGATCACGTCCAGGACGTTACCGAGGACGTTCACGACGACGGCGAATTCGTCACACTGCTCTCCTTCGAGTGGCACAGCATGAAGTACGGCGACCACTGTATTTACTACAGAGCAGGGCGGGGTCCGCTGTCTCCCTCCGCCGCCGGCAGCTTGGAGCAGCTCCGCGATGAGCTGAGGAAAATAAAGAGGAACGGGCTGGACGCCTTGGCGATCCCTCACCACATCGGCTATCAGTCCGGCCGGCGCGGAATCAATTGGGAGACATACACCGAGGAGTTTTCCCCCGTGGTGGAGATTCTTTCCATGCACGGGTGCGGGGAATCCGACTTGGCGCCAAGGCCATATTTGCACACCATGGGCCCAAGGGATTCGCGCAGCACCGCGCACCATGGCCTTAAACTTGGGCACACTTTCGGCTTTCTTGGTTCGACCGACCATCATAGTGCCCACCCGGGAAGCCACGGTTATGGAAGGGCGATGGTCTGGGCAGACGAGCTCACACGAGATGGCATTTGGAATGCCATACGGGCCAGGCGGACGTACGCAATTACCGGAGACCGCATCATCCTGGCTACCAGTGTTAACGGTTCGCCCATGGGTGCGGAGATCCTGAGCAGCAGTCAAAGGGAAATCGCAATAGATGTGGTCGCCGGATACTCCATTGATTACGTGGAGCTGGTCCGCAACGGGGAAGTAATTGCGCGAACGTCGCCGCAGGAAGTGAAGGAGTCACATTTTGATGGAGTGCTCTCGGTGAGCGTCGGATGGGGAGAAGTCGGAGTCAGGGATGCATGGGATGTCGAACTCGAAGTCTTGGGCGGCCGCATCACGGCCGTGGAGCCACGTCTTCACGGCAATGACATCGTGGCACCGAGCGACTCAATTGAAGGCAGGTTCAGCTTTTCCGCATGGCGGCAAATAGACGAGCACCGAATAGTCTTCTCGACCGAAACGAGAGGCAATCCAACGGTCATGACCGACGCGACCCAGCAGCTTGCACTGCATGTGACGGGCGATGACGACACCGTACTGGTCGGGAGGTTCAACGGAGTCGAGATGAAGCACTCAGTCGCCGAGCTACTGCAGGGCTCCCGGGCCGCATATAAAGGAGGCTTTCTTTCCGGAGCCATGCTCATGCACCGCGCGTCGCCTCTGAGCAGTCGCCACGTGCCCCTCGAGCTCCTGGACTCCGGATCAGGAGGCCCTCATGACTGGTACTACGTAAGGGTCCGGCAACACAACGATCAGTACGCGTGGAGCTCCCCAACGTGGGTCAGTGCTACCGGGCAATGAMALLRLGSSLEAYAGKLAYAGDIHNHCDISYGHGTIEDAYRNARLQLDFASVTGHASWHDMPDHPSHVRDYHSRGFAHLRDEWDHVQDVTEDVHDDGEFVTLLSFEWHSMKYGDHCIYYRAGRGPLSPSAAGSLEQLRDELRKIKRNGLDALAIPHHIGYQSGRRGINWETYTEEFSPVVEILSMHGCGESDLAPRPYLHTMGPRDSRSTAHHGLKLGHTFGFLGSTDHHSAHPGSHGYGRAMVWADELTRDGIWNAIRARRTYAITGDRIILATSVNGSPMGAEILSSSQREIAIDVVAGYSIDYVELVRNGEVIARTSPQEVKESHFDGVLSVSVGWGEVGVRDAWDVELEVLGGRITAVEPRLHGNDIVAPSDSIEGRFSFSAWRQIDEHRIVFSTETRGNPTVMTDATQQLALHVTGDDDTVLVGRFNGVEMKHSVAELLQGSRAAYKGGFLSGAMLMHRASPLSSRHVPLELLDSGSGGPHDWYYVRVRQHNDQYAWSSPTWVSATGQNANANANANA
D1-29_02037564hypothetical proteinATGACCGGCGGAGAACTCACCGCCGCACAAATCCGGGCCCTCCTCCATGAACTCGGCAGGCGCCTACAGGCCGCCGGCGCTCACGGCGACATCAAGTTAGTGGGCGGCGCTGCCCTCGTCCTTCAGGGCATCGGCAACCGCCCCACCGCCGACATCGACGCCAGCTACGCCGACCCACACACCATTCACGCCGTCGTCGCCGACATGGCCACGGACTACGACCTCGCCCCCGACTGGCTCAACACCAACGCCTCAGCTTTCGTCCCCGACAACGCCACCTGGGTCAACCTTGAACAACTCGACGGACTCACCATCCAGGCCGCAGACACCGAAACGCTCCTGGCCATGAAAATCGCCGCCGAACGCGACAAAGACACACTCGACATCGCCCGTCTCCTACACCGGCTCAACATCACCAACGCCGCCGAAGCCGTCGACCTCGCCTACAACAAATACGGCAGCCACTCCATCCCCCTGGCCGCAGGCCGCGACAACTACCTCATTGTCGTCGGCGACGCCCTCGACGCAGCCACCGCCCTCGACGAGTCTGAAACAGACGAGTGAMTGGELTAAQIRALLHELGRRLQAAGAHGDIKLVGGAALVLQGIGNRPTADIDASYADPHTIHAVVADMATDYDLAPDWLNTNASAFVPDNATWVNLEQLDGLTIQAADTETLLAMKIAAERDKDTLDIARLLHRLNITNAAEAVDLAYNKYGSHSIPLAAGRDNYLIVVGDALDAATALDESETDENANANANANA
D1-29_02038621hypothetical proteinATGACACTGGAAAGCACCATCGAGACGCCCGCAGCAGCCGGCGCCATCATCCGCGCCCGCCGCACAGCCCGCGGACTGTCCCAGCAAACCCTTGCCGACATGGCCGGAGTGTCACGGAAGTTCCTCATCGATCTGGAAGCCGGCCACGACCGCGCCGAACTCGGCAAAACCCTAGCCGTCATGAGCGCTCTCGGCCTGACCTTGGCCGCCACAGATCCCATCCCCCGCGGCAGCGACTTCGACCCGGCACGGCGCGACTACGCGACAACCTTTACGCGGCTCATCGCCGAACGGGACTTTGAGTTCGCGATCAAAATGCTCGCGGATTACGCCAACGCATCCCTCATCGCCGGCAGACCGCTCCTCCAGCGCAGCCCCCGCCTCAAAGACCCGCGCTGGTCAGCAGCCCTCGCTGGAATCACCAACTACACTGCACACCGCCTCGGCCAACCAGCGCCATCCTGGACGCGACGGATCAAGCCCCTCGACGCGGCGTGGATGCCGGCAGAGTCCTACCGCAGCATCCGGGAACCTATGAAAGAACTCACCCGCGCCCAAACGCCGCCGGAACTCGCCGCCCTGAACGTCTTCATCCGCGAACGCAGCCTGGCCACCGCATGAMTLESTIETPAAAGAIIRARRTARGLSQQTLADMAGVSRKFLIDLEAGHDRAELGKTLAVMSALGLTLAATDPIPRGSDFDPARRDYATTFTRLIAERDFEFAIKMLADYANASLIAGRPLLQRSPRLKDPRWSAALAGITNYTAHRLGQPAPSWTRRIKPLDAAWMPAESYRSIREPMKELTRAQTPPELAALNVFIRERSLATANANANANANA
D1-29_02039759kdgR_1COG1414Transcriptional regulator KdgRGTGGCCAGCGACGGCGTGAGAAGCGTGTTGACGGCAATGCGCGTGCTGGAGAGGCTTACCGAGCCCGGTCTGGTTGGCGTATCGCAGCTGGCCAGAGACTTGGAACTCCCGAAGTCGTCCGTACAGCGGATGCTCCGCACGCTTCAGGAGGGAGGTTGGGCCGCCGAGGTCCATGGCCAAGTGACACGCTGGACGCTCACGCCGAAAATGTTCCAGTTGGGGCAGCGACACCAAGCTGGCAATGATCTCCGCACGATAGCGCTACCGGTGATGGAGCAGCTTCGGGAGGAGACCCGAGAGACCGTACATCTCGCGACGGTTAAGGGGGACTCTGTCTTTGTCCTAGAGACTCTCGACAGCCCTCAAGCGGTGCGCGCGCACGTCTCTCCAGGTATGTCGATACCACTGTTGGCCTCCGCCCACGGGCACGCCCTTCTGTCGACACGGTCTGACAACGAGGTCCAAGGAGTCCTGCTCCGGGGACTGACCGCCTACACACCATTTACCATCACGGATGTTGATACTCTTGCCTCTGCCATTCATCAAACCCGGGTGCGCGGCTACGCAGTGAACGACCAGCAGTGGCAAGAAGGCGTCCACGGTATTGCAGCGCCGATCGTTGTCGCGGGGGTAGGGGTCGCTGGGATAGGCATCTCAACCCCGGTTCATCGAATGTCTGCTGAGTTGCAAGACAAGTTCGGGGAAATACTGGTGAAGGCTGCCATGGCCATCGCCCATGGCCTGGGAGAAACGCTCTGAMASDGVRSVLTAMRVLERLTEPGLVGVSQLARDLELPKSSVQRMLRTLQEGGWAAEVHGQVTRWTLTPKMFQLGQRHQAGNDLRTIALPVMEQLREETRETVHLATVKGDSVFVLETLDSPQAVRAHVSPGMSIPLLASAHGHALLSTRSDNEVQGVLLRGLTAYTPFTITDVDTLASAIHQTRVRGYAVNDQQWQEGVHGIAAPIVVAGVGVAGIGISTPVHRMSAELQDKFGEILVKAAMAIAHGLGETLNANANANANA
D1-29_020401350ydfJ_2Putative transporter YdfJGTGACTTATACAACGCCGCCTGGTGCGGCTAATACGGAAGTAGCTAAGGCTGCTCATCGTCGCGTCGGACCCGCAGTTGTCGTGGGAACCGCCCTCGAATATTTCGATTTCTTTTTGTACTCGGCGATGGCCGGACTCGTGATAGGCCCCACGTTCTTCCCCTCATCGGACTCGACTGCAAGCGCAATGGCGGCCCTCGCAACGTTCGGCGTCGGGTTCCTAGCCCGGCCACTTGCGGGACTGGTGTTCGGCATTATCGGAGATAAGTTCGGACGCAAAGTGGTGTTGTCCTGGAGTCTCATCCTGATGGGCGGATCCACGGGACTGATGGGATTGATTCCTTCGTACGACTCCATCGGCGTGGCAGCGCCAATCCTGCTGGTCCTGCTTCGCATCTTTCAAGGTGTGGGCGCAGGCGCAGAGTTCAGTGCTGCTATAACGGTCTCCTACGAGCATGCCGGGGACGGCAAGCACGGGCGGTTCGGCTCTCTCCCTACACTAGGAGTCAACTTGGGTGTCTTCTTCGCCTCACTCGCGGTGGCCGGGTTGGCCCTGATCGGCGACGACTTTTTCTACTCCTGGGGTTGGCGAATCCCCTTTGTAATAAGCTTTCTCGTTGCCGTCGTGGGATATGTTATTCGCCTGAAGCTACCGGAAAGTCCCGATTTCGAGGCAATGCCAGTGGCAGAAACCCGGAGAAGCTGGCTTCGTGTTCTGGCCGACCTATTCAGGTCGGACTGGAGAGGCCTGGTCATCGTATTTGCTGCCTACGCTGGCTACGCACTCATCGCGACCCTGTGGAAGACATTCTCTATTTCTTACCTTGCTGAATTCAAAGACATAGGCGGTGCTGTCAGCAGCTTCGGCATAACCTTGGCCAGCGCGGTCGCAATTTTCTGGACGCCCATTTGCGGCCGACTTTGCGACATGATCCCTGTTCAGAGAGTCCTGGCGTTCGGCGGCCTGCTGGTCATCCTCTACGCGTTCCCTTTCTTCTGGCTACTCAACACAGGAGTCCCGCTGTACATCTGGATCGCCTTGATTCTCGGCACGGGCCTTCTTGCGCCACTTCTCTCCGTAGCCGCAAGCCCCTTTATGGCGCGCCAATTTGCGACCAAAACCCGTGTGACTGGAATAGGCGTGGGCAAGGAATCGAGCGGCGCAGTTGCCGCCGGATTCGGTCCGGTGCTGGCCCTGGCACTTATAACAGCCTCCGGGACCGGTAGCACGGCCGCCGTTTCTGGCATGTTCATCGTCGGAGGCATCTTGTTCGTGTTCGCTGCCTGGCGAGGCCGTACAACACCACCCTCCATCGCTAAAGCGGACCAATCGCTGTTGACTGAGGTTTGAMTYTTPPGAANTEVAKAAHRRVGPAVVVGTALEYFDFFLYSAMAGLVIGPTFFPSSDSTASAMAALATFGVGFLARPLAGLVFGIIGDKFGRKVVLSWSLILMGGSTGLMGLIPSYDSIGVAAPILLVLLRIFQGVGAGAEFSAAITVSYEHAGDGKHGRFGSLPTLGVNLGVFFASLAVAGLALIGDDFFYSWGWRIPFVISFLVAVVGYVIRLKLPESPDFEAMPVAETRRSWLRVLADLFRSDWRGLVIVFAAYAGYALIATLWKTFSISYLAEFKDIGGAVSSFGITLASAVAIFWTPICGRLCDMIPVQRVLAFGGLLVILYAFPFFWLLNTGVPLYIWIALILGTGLLAPLLSVAASPFMARQFATKTRVTGIGVGKESSGAVAAGFGPVLALALITASGTGSTAAVSGMFIVGGILFVFAAWRGRTTPPSIAKADQSLLTEVNANANANANA
D1-29_02041162hypothetical proteinATGGCGGGGCGTTCCAAGAACACCGATATCGAGGCTCACCCGAACCGCCTGGTCTTCCAAGCCACCCATATGGTCGTGGTGCTAGAGCACCTCAGGGAACGGCTCATCGACTCCTTCGACACCCAATTTATCTGGGAAACAAACTCTCAAAGAAAGTCATAGMAGRSKNTDIEAHPNRLVFQATHMVVVLEHLRERLIDSFDTQFIWETNSQRKSNANANANANA
D1-29_02042570hypothetical proteinATGTTTGCGCTGGCAGAAAGACCTATCAAGCGACCGTCACCGGGAATGATGGAGGTCACCATCGAAAGTCCCTCACTTGTGGACAGTGCTTTGGACGATGCGGTAGTTCAAACAGAGGACGCCGCAGTTCGTCATGCGACTGGGATCATGATTACTCAGACACGGCCCGGCCGATACATCGTTCGCCGCGCGTCCGGCCCTGCCGTGGGGGCTCATCCTACAAAGCCACGAATAGGCGCACCAGAGGCCCCCTCTGGAACTTCCGCCCAGGCACTGCCCTTCGTCGTCGCCGCATCGGACCTGCCGAAGCAGTGTTGTCCCACCTTGAGCGCGGATAGAGACTGGTCCAAACCTCCAACCCGAGAGCAGCATCTAAAAATTCCCGCTGGCATAAGGCCTCAGGAGCAATCCACAGGCCGCTACCGTCGAGCATGGCATCGTCAACTAATCCGCGGCGATACACCCCTCCATCCAGCCAGACCTCGACGATCAAGCCGTCGAAGGACCGCCATTTGTCCGTATGGTGCATGCCGCCCTGAGCTTCATACTTACGATGTCGCCCGTCTCTGAMFALAERPIKRPSPGMMEVTIESPSLVDSALDDAVVQTEDAAVRHATGIMITQTRPGRYIVRRASGPAVGAHPTKPRIGAPEAPSGTSAQALPFVVAASDLPKQCCPTLSADRDWSKPPTREQHLKIPAGIRPQEQSTGRYRRAWHRQLIRGDTPLHPARPRRSSRRRTAICPYGACRPELHTYDVARLNANANANANA
D1-29_02043906panB_2COG04133-methyl-2-oxobutanoate hydroxymethyltransferaseATGGGCACCAATAACAGACCTGAAGAAGACACCTCAGCTGAGGTTCCGGCCCCCTACGGGGCGGGTCTCTCGAGGATCGGGGTTCCGGCTCCTGGGACGCCTAGGCGGCCAGATGGCAGGATCCGGACCCATCATTTGCAGCTGGCGAAGTACAACGGTGAACGCTTTGCCATGCTCACCGCTTACGAACAGTACACGGCGGAAGTCTTCGACCAGGCCGGCATCGAGGTCCTCCTCGTGGGTGACTCGGCTTCCAACAATGTTTTCGGCAACGAAAACAGTCTGCCAGTTACCGTGGATGAGCTGCTGCCGTTATGCCGGGCAGTGGCGCGTGCTGCCAAGCGCGCCCTCGTTGTTGCCGACTTGCCATTTGGGAGTTATGAGGTGTCAGCGGGTCAGGCCGTGGCCACTGGTGTGCGGTTCCTTAAGGAAGGCCTCGCGCATGCGGTGAAAATTGAAGGGGGCAGCTTTTTCACGGAAACAGTGAGGGCAATGGTCCAGGCCGGTATCCCGGTCATGGCACACATCGGCTTCACCCCGCAAAGCGAACACGCCCTTGGCGGCTACCGGGTCCAGGGCCGTGGGGATGACGCCAACCGGCTGATCCAGGACGCGGTTGCCCTGGCGGAGGCTGGTGCCTTTTGCGTGCTCATGGAAATGGTGCCGGCCGAAACGGCAGCGGCAGTTGATGCCGCCGTTTCCGTTCCGACAGTCGGTATCGGTGCCGGAAACGGGACCACCGGGCAGGTCCTCGTGTGGCCTGACATGGCCGGACTGCGGGCCGGCAGGATGGCGAGATTCGTCAAGCAGTACGCGGACATCCGCACTGCACTCAGCGACGCGGCCAAAGCCTACGGCGACGAGGTCCGCTCCGGGCAATTCCCCGGCCCCGAACACACCTTCTGAMGTNNRPEEDTSAEVPAPYGAGLSRIGVPAPGTPRRPDGRIRTHHLQLAKYNGERFAMLTAYEQYTAEVFDQAGIEVLLVGDSASNNVFGNENSLPVTVDELLPLCRAVARAAKRALVVADLPFGSYEVSAGQAVATGVRFLKEGLAHAVKIEGGSFFTETVRAMVQAGIPVMAHIGFTPQSEHALGGYRVQGRGDDANRLIQDAVALAEAGAFCVLMEMVPAETAAAVDAAVSVPTVGIGAGNGTTGQVLVWPDMAGLRAGRMARFVKQYADIRTALSDAAKAYGDEVRSGQFPGPEHTFPGPT0008740_361DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606NANA
D1-29_02044438panD_1COG0853Aspartate 1-decarboxylaseATGCAAATGATGACTCGTATGATGTTCAAGTCCAAAATCCACCGCGCCACGGTCACGCACGCGGACCTGCACTACGTAGGCTCCGTCACCGTAGACCTGGACCTGCTGGAGGCAGCCGACATCCTCCCAGGCGAAGTCGTTGCGATTGTCGACGTCACTAACGGCGCACGTCTGGAAACTTACACCATCGCCGGCGAACGTGGCTCCGGCGTGATCGGCATCAACGGACCGGCCGCACACCTGGTCCACGAAAATGACATAGTCATTCTCATTACCTACGCGAATATGACCGCTGAAGAAGCCAAGGTTTACGACCCCAAGGTGGTCCATGTGGACCAGCACAATAGGATTCTCCGGCTCGGCAACGATCCCGCTGAAGGCATCACCCCGGGACTGACCCGCCCACCCTTCGCATTGAACAACAGCGAGGTGAGGTGAMQMMTRMMFKSKIHRATVTHADLHYVGSVTVDLDLLEAADILPGEVVAIVDVTNGARLETYTIAGERGSGVIGINGPAAHLVHENDIVILITYANMTAEEAKVYDPKVVHVDQHNRILRLGNDPAEGITPGLTRPPFALNNSEVRPGPT0008890_308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579NANA
D1-29_02045975hypothetical proteinATGATTCGCTTCGACGAACGGCCCGTTACAAGCGCAGGGCTCCGCAGCACAGTGCTGGGTTTTGGCGCCATGGAGTTACGGGGGGCCTCGCACCGTGTGCCTCGATTACTCGATGAGGGAGTTGCAGAGTTGCTCCTCAATACGGTGCTGGACGAGGGCATCCGATTCATAGATACTTCGATCGACTATGGAGAGAGTGAGGGGCTCATAGGGCGCTACATAAGTCATCGTCGGTCGGAGTATCTGCTGGCGTCCAAGGTTGGCTGCCCGCTGGACCACCAGCCTGATGGCCCGTCCAACGGCCCTCTTATCCATGACTATTCGCCTGCGAATATCCGCGCAGGAATCGAGCAAAGCCTCTCGCGTCTACGCACTGATTACTTGGACCTGGTACAGGTCCACATTGGGCCCTCTGTTGCGGTTCTTCAACGTGATGACGTGTTGGGGACACTGGAACGTGCCCGAGCGGAAGGCAAGGTTCGAGCGATTGGCATATCTTCCACTCTTCCGGACCTCTCTGACCACATCGACCTCGGCGTATTCGAGACTTTCCAAATCCCGTATTCCGCACTCGACCGTTCTCTCGAAAATTTTCTTCCGCTTATCAATGCCACCGGCGCGGGCGTCATAGTGCGGGGAGGAACGGCACGCGCGGCGCGAGCCAAATGGAAAGTGGACAGCGGGCATGTGTCACAGGCTGATCTTGCCTTGGACGATCTGATGGATGGCGACAACTTGCAGGGATTCCTCCTTCGCTTCGTGATGACCCGGGCGGAAGTGTCCACAGTGATCGTCGGAACAGCCTCTCCTGAGCATGTACGGGAGAATGCCAAGGCTGCAGCTCGAGGAATTCTGGCGGAGGACGTATACACAGAAGCACTACGGCGATTGGATACTGCTGGATTCCCCACTTCAAAGCGTTGCCCCGCTCCAAACGGTCAGAGACCGGCCGCACGAAGATTCGGGCGTCGGTAAMIRFDERPVTSAGLRSTVLGFGAMELRGASHRVPRLLDEGVAELLLNTVLDEGIRFIDTSIDYGESEGLIGRYISHRRSEYLLASKVGCPLDHQPDGPSNGPLIHDYSPANIRAGIEQSLSRLRTDYLDLVQVHIGPSVAVLQRDDVLGTLERARAEGKVRAIGISSTLPDLSDHIDLGVFETFQIPYSALDRSLENFLPLINATGAGVIVRGGTARAARAKWKVDSGHVSQADLALDDLMDGDNLQGFLLRFVMTRAEVSTVIVGTASPEHVRENAKAAARGILAEDVYTEALRRLDTAGFPTSKRCPAPNGQRPAARRFGRRNANANANANA
D1-29_02046954hypothetical proteinATGAACGATTCGCAGGCAGCCACGATCGACCTCGAACTTGTGGAGCTTGACCATTGGGGGATGTCACCGGATGCAATCCTCCTGGATGAGAGCGTAGCTTCGAGGAGGGACCTTGCCACTTTCGAGTTATCAGAAAACGACAGGGCGTCCGACTACCATCTGACGTCCGAGTCCCTTCCGCAGGACGGCGTTCCCGCCGGGAAGTACTACCATTTCCGCTGGACCAGTCATGCCGTCTACCCCGGCGTCACCAGCAGTGTCTACCTGTATCTGCCCCATGGCGCTGAGGAAGCTGAATCGGTCAACTTGATGATCTGCCTGGACGGCCTGGAGTACTCCGGAGAGAAGTGTCGTGCCACCACAGTGCTGGACAACCTCGTGCATAAGGGCGAGATCCCCATGACCGTGGGCCTCTTCCACAACCCGGGCGAGACCGGACCGGGCTACCCGCTCATGGGCGGGAGCACCAACCGTGCTGTTGAGTACGACACGGTCAATGAGGACTTCGCCCGCTATCTGGTGGAGGAGCTGTTTCCTGTCATCCGGACCAAGGTCAGGCTGACCGACGACCCCCGGGGCCGCGTCATCTGCGGCTTCAGCGCCGGCGGCGCAGGTGCCTTCACCGCTGCCTTTCATCGCCCGGACGAGTTCGGGAACGTCGTCTCGCACTGCGGCGGCTTCATCAACATCCTCGGTGCACACAATCTGCCCAGCATGGTCCGGCGCGCGCCGCGAAAGCCGATCCGGGTCTGGCACCAGTCAGGCAAGCGCGACGTCGACATCATCTACGGCAACATCCCCATCGCCAACCACGACCTCGACGCAGCCCTGAAGTATCGCCGCTACAATTCGATGTTCGTGTTCGGCAGCGGCGGACACACCCTCGCCCATGGCGGAGCAGTGTTTCCCGAGACACTCCGCTGGATCTTCCGCGACCAGATTGAAGACAAATGAMNDSQAATIDLELVELDHWGMSPDAILLDESVASRRDLATFELSENDRASDYHLTSESLPQDGVPAGKYYHFRWTSHAVYPGVTSSVYLYLPHGAEEAESVNLMICLDGLEYSGEKCRATTVLDNLVHKGEIPMTVGLFHNPGETGPGYPLMGGSTNRAVEYDTVNEDFARYLVEELFPVIRTKVRLTDDPRGRVICGFSAGGAGAFTAAFHRPDEFGNVVSHCGGFINILGAHNLPSMVRRAPRKPIRVWHQSGKRDVDIIYGNIPIANHDLDAALKYRRYNSMFVFGSGGHTLAHGGAVFPETLRWIFRDQIEDKNANANANANA
D1-29_020471515proP_3Proline/betaine transporterATGTCTACTGGAGACCAAAGATTTGGGAATGCCACCGGTGCCCATCATGGCAAGCGGCGTTTGAAATTAAGCGACATCCGCATAGTCAACAAGGCTGCCTTGAGGCGCGCTGTTGCCGGAACTGTCGTCGGAAACATTATCGAATGGTATGAGTTCGGTGTATTTGCCTACCTCATAACGGTAATGGGCCCGGTCTTCCTGCCGCAGGCCGACTCGACAGTTCAGGCTCTGTACCTATATGGCACATTCGCAGTAACTTTCGTTGCCCGACCGCTGGGGGGCGTATTCTTCGGATGGCTGGGAGACAGGATCGGGCGACGTAAGGTCCTGACCTTCACGCTGCTCCTGATGTCTGTCGCCACGTTTGCTACCGGTCTGCTCCCGGGCTACGCCGTCATCGGCCTCTGGGCTCCGGCACTTCTCGTGTTCCTGAAACTGCTGCAAGGGTTCTCCGCCAGCGGCGAATACACCGGTGGTGCGACTTTCTTGAGCGAATACGCCCCGGATAAGCGACGGGGTTTCTATGTTGGATTTATGGGCTCCAGCTACCTCGGATTCGCCTTTGGTGCCGGTTTGGTAGCTGTTCTTCAGCTAGGGCTTGGTCAGGATGCGATGCAGTCCTTCGGCTGGCGTATTCCGTTTCTCATCGCAGGGCCGCTTGCCGTCATAGCCCTGTACTTCCGCTATAGGATCGAAGAGTCGCCTACCTTCAGTGCCGTCTTGAAGGAGCGCGCTGAGGAATCCCGGAAAACCGGCGAGTTGGCCAAAAACCCGGGTATTGTGCAGGTCATTCGGGCCCACGGACGATTCATCCTGCCCGTCATGGGCGTCGCGGCCGCCGGCAATGTCATTGCCTACACCATGACGTCCTTCACTCCGACATATCTGAATCAGACGCTGGGCTTCCAAGGATCCCTCGGCACTCTTGTGATCTTTCCCTTGTTCGTCCTTGCGGCTTTCGCAACCCAGTTCTTTGCCTCGCTCTCGGACAAGATAGGCAGGAAGCGAATCCTGTTCAGCGGCGCAATCCTGGGCGTCGTGCTTCCTATTCCGGCGTTTATGATGATGGGGTCCGGCCAGCTTTGGGGTGCACAACTCGGGACACTTTTCATCATGATCTGCGCCACTCTCTTTTCGTCGAGCTACGCTTCTTCGCTGCCTGAACAGTTTCCTACGCCGTCGCGTTCCAGCGCTCTTGGGCTTGCATACAATGTGGGAAATGCTGCCTTTGGCGGTACGGCTCCACTGGTTGTTGCTGCGCTTATCGGAGTTACCGGGAACAAGATGGTGCCTGCCTACTACCTGATGGGCGCTGCCCTTCTGGGACTAATTTCCGTCTTTTTCCTCAAAGAAACAAGCAGGAAACCACTAGATGGGTCCATGCCCAACGTGGAAACAAGCGAAGAAGCCCAATACCTCATTGATACCCAGGACACCAACAACCTCCTCGATTCAACGGAACTGCCTCTCGCCCTGGTTGCTCATTCAGAGACCGAGGGCGGAGGTCGTATTTAGMSTGDQRFGNATGAHHGKRRLKLSDIRIVNKAALRRAVAGTVVGNIIEWYEFGVFAYLITVMGPVFLPQADSTVQALYLYGTFAVTFVARPLGGVFFGWLGDRIGRRKVLTFTLLLMSVATFATGLLPGYAVIGLWAPALLVFLKLLQGFSASGEYTGGATFLSEYAPDKRRGFYVGFMGSSYLGFAFGAGLVAVLQLGLGQDAMQSFGWRIPFLIAGPLAVIALYFRYRIEESPTFSAVLKERAEESRKTGELAKNPGIVQVIRAHGRFILPVMGVAAAGNVIAYTMTSFTPTYLNQTLGFQGSLGTLVIFPLFVLAAFATQFFASLSDKIGRKRILFSGAILGVVLPIPAFMMMGSGQLWGAQLGTLFIMICATLFSSSYASSLPEQFPTPSRSSALGLAYNVGNAAFGGTAPLVVAALIGVTGNKMVPAYYLMGAALLGLISVFFLKETSRKPLDGSMPNVETSEEAQYLIDTQDTNNLLDSTELPLALVAHSETEGGGRIPGPT0013645_59DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013645-proP-K03762NANA
D1-29_02048132hypothetical proteinGTGACTAAAACCATGCGCGCTATCCGACTGACCGGACCCGACACACCCAGCGAACTCACCGTTTCACAGGTGCCAATCCCCGACGTGGAGCCTGGACAGGGGCGCATCCGCGTGATGGCGCTCGGCGTTTAAMTKTMRAIRLTGPDTPSELTVSQVPIPDVEPGQGRIRVMALGVPGPT0013255_3700DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-29_02049591betI_3HTH-type transcriptional regulator BetIGTGCGGAAGGGCAAGCCGAACGATCCGGAGCGCCGGGCGCGAATCCTGCGCGCAGCCCTCGAAATCATTGGCATGGAAGGGGTTCACGCCGCCTCGTATCGGCGTATCGCCGCGCAGGCTGGTGTGCCGCTGGGGTCCACAACGTACTACTTCTCCGATCTGGAGGCTCTGATCGTCAGTGCGTTCGAGACACTCCGGGATGGCCTGGAGCCGCGATACGCGGCCCCACTGCGCGCCGCCCAGAACAATGCCGAAGCAGTTGATGTGCTCGTTGACGCCACGTGCGGCACGACAAGCCCGACCCTCGATGACATCCGGCTCTACGAGGAGATGCGCCACTACGGGGCACGAAGCTTTCAGGTGGCGGACCTCCTCCGCGACTTCCAGGAAGAATCCCTCGTGATCCTCCGTCGCTCCTTCCCCGACGGTTCCGCCCGAGCCGTCGACGCTCTCATGTGGGGGTGGTGGAGTTATCGCCTCTTCCACGAAGACCTGCCGCTCGACCAGAACATGGTCCGCCGCGCATACCAAGCCCTCGTCAACCTCCCCGTTACCGAATCCATAGCAGCACAGGAGACCCACCGTGACTAAMRKGKPNDPERRARILRAALEIIGMEGVHAASYRRIAAQAGVPLGSTTYYFSDLEALIVSAFETLRDGLEPRYAAPLRAAQNNAEAVDVLVDATCGTTSPTLDDIRLYEEMRHYGARSFQVADLLRDFQEESLVILRRSFPDGSARAVDALMWGWWSYRLFHEDLPLDQNMVRRAYQALVNLPVTESIAAQETHRDPGPT0014935_132DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014935-rcdA-K23778NANA
D1-29_02050384hypothetical proteinGTGAACGGTGACATGCTTCAACAGCGCGCCAGGGACCGCGTCGAAGAGCTGCCGGGCGCCGGACTCGCGCACCCATTCGGGCCCGACTGGGACGTGTTCAAGGTGGGGGAGAAGGTCTTCATGTTGATGACCGAGGTCACGGGCCAACCCATCGTGATCGTCAAGGCCCACCCTGAAGATGGAAAATCACTTCGCGAGGAACACGGTGACATCACGCCCGGCTATCACATGAACAAGAAACACTGGATCACGCTGCACCCCGGCGGAACCCTGACGAAGACCCTCGTTGATGAGCTGGTTACCGAGTCTTACCTGCTCGTCGTCGAAAATCTGCCCAAGGCGAAGCGCCCCGTTGACCCCGTCCTGTTTGGCAGGACAGGCTGAMNGDMLQQRARDRVEELPGAGLAHPFGPDWDVFKVGEKVFMLMTEVTGQPIVIVKAHPEDGKSLREEHGDITPGYHMNKKHWITLHPGGTLTKTLVDELVTESYLLVVENLPKAKRPVDPVLFGRTGNANANANANA
D1-29_02051360hypothetical proteinATGACCCTCTCCGGTGACCGGCTTCAACAGGCTGCCCGTAACACCGCAGCCGCACTGGGCGATGTCAGCAATGGGCGGCCGTTCACGCCCCACCTCGACGTGTGGAAGGTGCGTGGCAAAGTGTTCCTCATCATCACCGAAGACGACCCCGAACAGCAGATCATCACTGTCAAGGCCGACCCGCACCACAGCGACGCGCTCCGCCGCGACCACGACACGATCACCCCCGGTCAGTACCTCGACAAACGGCACTGGATCTCCGTCGGACCCGGCCCAGGTGTGACGAAGCGGCTTATCGAGAACCTGGTGGAGGACTCCTACGACCTCGCTTCCGGCCACCATCCGGAGCGGCGATCGTGAMTLSGDRLQQAARNTAAALGDVSNGRPFTPHLDVWKVRGKVFLIITEDDPEQQIITVKADPHHSDALRRDHDTITPGQYLDKRHWISVGPGPGVTKRLIENLVEDSYDLASGHHPERRSNANANANANA
D1-29_020521338rarACOG2256Replication-associated recombination protein AGTGAGCGAGCAACCCCTGTCGCTTTTCGACATGGATGACTCCTCCCGGCCCCTTGCCGACCGGCTGCGCCCGCGCATCCTGGCCGACGTCGTCGGCCAGGATCACCTCCTTGCCGCAGATGCCTCGATCGGGCGCATGGTCGGCGCGCAACGACTCGTATCGATGATCCTGTGGGGCCCACCCGGCTGCGGGAAGACCACCATCGCACGCCTCCTCGCAGAGCAAACCAACCTGGCGTTCGAACCGCTCTCCGCCACCTTCTCCGGTGTCGCGGACCTCCGGAAGGTGTTTCAGACGGCCCAGCGCCGGCGCGAGGTCGGGCAGGGCACGCTGCTCTTCGTCGACGAGATCCACCGCTTCAACCGCGCCCAACAGGACTCGTTCCTGCCCTACGTCGAAGACGGCACGATTGTCCTCGTCGGCGCAACCACCGAAAACCCCAGCTTCGAACTCAACGGTGCACTGCTGTCCCGCTGCCAGGTCTTCGTCCTGAAACGCCTCGACGACGTAGCGCTCAGCACCCTCATCAATCGCGCCCAACACATACTCGGTGCACCGCTGCCGTTGGATGAGGACGCCCGGCAGTCGCTCATCGCGATGGCAGACGGAGACGGCAGGTATCTGCTGAACATGATCGAACAGGTGCACGCCCTCCCCGCTCCCGTTGACTCGCCTGCCCTCGCTGCCGCGGTGCAAAAGCGTGCACCGTTATATGACAAGGCTCAAGAGGGCCACTACAACCTCATCTCGGCGCTCCACAAGTCGATGCGCGGCTCGGATCCGGATGCTGCCCTTTACTGGTTGGCTCGAATGCTCGACGGCGGCGAGGACCCGTTGTTCATCGCCCGCCGCATCACCCGGTTCGCCACCGAAGACATCGGCATGGCTGACCCCAACGCCGTACAGCAGGCCCTCGCCGCCTGGGACGTTTATGAACGTCTCGGTTCCCCGGAAGGCGAACTCGCGATCGCCCAAGCCGTGCTCTACCTCGCAACCGCGCCGAAGTCGATCGGCGTGTACCGCGGCTTCAACAGGGCCCGCGCCGCAGCACGAGGAACCGGGTCGCTGATGCCGCCTGCTCACATCCTCAATGCCCCCACCCGGCTGATGAAGGACCTCGGCTACGGCAAGGGCTACCAATACGACCCCGACACCGACACCGGGTTCTCCGGTGCCGACTACTTTCCCGACGGCATGCCTCGGCAGACCTTCTACGAACCCACCACCAATGGATACGAACGTGCCATCACCGAGCGGCTCCGCCACTGGGCACAACGGCGGACCGCCGGCCCAAGCGCTTCTACCCGCAACAACTCCACTACCTCCGAAACCGACTGAMSEQPLSLFDMDDSSRPLADRLRPRILADVVGQDHLLAADASIGRMVGAQRLVSMILWGPPGCGKTTIARLLAEQTNLAFEPLSATFSGVADLRKVFQTAQRRREVGQGTLLFVDEIHRFNRAQQDSFLPYVEDGTIVLVGATTENPSFELNGALLSRCQVFVLKRLDDVALSTLINRAQHILGAPLPLDEDARQSLIAMADGDGRYLLNMIEQVHALPAPVDSPALAAAVQKRAPLYDKAQEGHYNLISALHKSMRGSDPDAALYWLARMLDGGEDPLFIARRITRFATEDIGMADPNAVQQALAAWDVYERLGSPEGELAIAQAVLYLATAPKSIGVYRGFNRARAAARGTGSLMPPAHILNAPTRLMKDLGYGKGYQYDPDTDTGFSGADYFPDGMPRQTFYEPTTNGYERAITERLRHWAQRRTAGPSASTRNNSTTSETDNANANANANA
D1-29_020531440hypothetical proteinATGACCGACACCAGCAGCACCTCTACGAATGAAAACGCAGTTCGCTCTTGGCTGGGCATCCGGTACGCCAGCGCCGAACGGTTCCGCCGACCCACCCTGCTGCCCTTCAACCCCGATCTGCCCTACGACCAGAAAGGACCCGCACCGCTTCAAGCCGGCGACACCAGCTGGCTCGAAGCCAACAACGGGTTCAGTGAGGACTGCCTGAACCTCAACGTCTGGACACCCGAGGATGCTGGTGACGAGCCACTCCCCGTGGTCGTCTACATCTTCGGTGGCGGGTGGGAGCTTGGCGCGAACACCCAGACCACCTCGAACGCGTCAGGCCTCGCCGCCACCGGTCGAGCAATCGGCGTCTCGATCAACTACCGGCTCGGTCCGTTCGGCTGGCTCTCCCTCTCCCAATATGGCGGTGCACTCGAGGAGGCAACCAACCTTGGCCTGCAGGACATCATCACCGCGCTGCGATGGGTGCGGGAGAACATCGCCCGATTCGGCGGAAACCCGGAGAACGTCACCGTCACCGGCCACAGTGCCGGCGCCTTCTCCGCCCTTGGCCTTCTTGCCGCGCCATCAGCCGACGGCCTCTACCACCACATCGCCGCGTTCTCGGGCATGCCATCACGCCTGGTGCCGGCCTGGGGAGCGGAAGAGCGCGCGCTGAAAGTCCTCACCGAGCTGGGAATTCAGGACGATCCCGAACAGTTGCTGGACGTGGACGCGAAGCTGCTCGCCGAGACGATGAGCAAAACGCAACTGTCAGACCCTGGTGCAAGGCACGGCATCGACAACAACGTCATCGCAATCGTCGATGACCGCACTCAGCCCGGCGGCGTCATCGCCGATCATCCCCTGAGAGCCCTCGAGTCCGGACGCCACCGAGACGTCGACATATTGTTCAGCAGCACCACTCACGAGACCGATTGGTGGGTCCAGCACAAGACGCACGAGTTCGATCCCGGCAGCATCGGCGACCTCGTCGAGGAGTTCGCCACCCGGAACCGCATCCAACGCAGCCGCGCGCATAAAATCATAGCTGCGTACGACGTCGAAAGGCGCACCCCGGTCGAGGCCCGCGGCGCATTGCTCACAGACTTCTCCTTCACCCTGCCTCAGGTCCGTGGTGCGCTCGTGCACGCCGCGGCTGGAGGGAGCGCACATCTGCTCTCCGTCGGCCCTGTGGAAGGTGCGCATGCCGTTCACGGCACGGAGATGTACGGCATCGTTGGCCAAATGCGACCTGGCGCCAGCGACGAGCAGGTACTCCGCGACACCTTCGTTCGGGACGCTGTCCTCGCCCTTGCATCGGGCAAAACTGACCAAATGTGGGAACCCGTGACCGTCACACCCACCACGAAGGGCCTCGGCAACATGCCCTACGACGCCACCACCCACGCCAAGAACGTGCTCGAGATCTTCAGGGACATCGATCGCCCGTAGMTDTSSTSTNENAVRSWLGIRYASAERFRRPTLLPFNPDLPYDQKGPAPLQAGDTSWLEANNGFSEDCLNLNVWTPEDAGDEPLPVVVYIFGGGWELGANTQTTSNASGLAATGRAIGVSINYRLGPFGWLSLSQYGGALEEATNLGLQDIITALRWVRENIARFGGNPENVTVTGHSAGAFSALGLLAAPSADGLYHHIAAFSGMPSRLVPAWGAEERALKVLTELGIQDDPEQLLDVDAKLLAETMSKTQLSDPGARHGIDNNVIAIVDDRTQPGGVIADHPLRALESGRHRDVDILFSSTTHETDWWVQHKTHEFDPGSIGDLVEEFATRNRIQRSRAHKIIAAYDVERRTPVEARGALLTDFSFTLPQVRGALVHAAAGGSAHLLSVGPVEGAHAVHGTEMYGIVGQMRPGASDEQVLRDTFVRDAVLALASGKTDQMWEPVTVTPTTKGLGNMPYDATTHAKNVLEIFRDIDRPPGPT0030515_2430PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TANNIN_DEGRADATIONPUTATIVE-TANNIN_DEGRADATION-1,PGPT0030515-pnbA-K03929
D1-29_02054786crt_1COG1024Short-chain-enoyl-CoA hydrataseATGACAGAGCTCAGGATTGATCGCCCAGCACCGGGGGTGCTCCGCTGTCGGCTGGACGGACCGGACACTTTGAACGCGCTTGATGATCCAGTCAAGCGTGCCTTGGTGGAGCAGATTGTCCGGTCAGGAGCTGAACCTGAGGTGCGGGTGCTGATGTTGACAGGTGCTGGCCGCGCGTTTTGTTCCGGTGGCGATATTCAAAGCATGGGGCAACGCACTCCGGCTGAGATGAACCAAGTGCTGACCTACGGCCGCCAGATTACCGAAGGCCTGTACAACCTCCAGAAGCCGGTCGTGGCCGCCGTGAACGGCATTGCTTCGGGGGCTGGTTTCAACCTTGCCCTTGCCTGTGACCTCATCTTGGCCACTCCGCAGGCCTGGTTCCAACAGTCTTTCGTGAAAATGGGTCTCATGCCGGACATGGGGGGAACATATTTTCTCGCCCAATCCATCGGCCTACACCGCGCCAAGGAGGCGGTGCTAAACATGCGCAGGTTCTCGGCGCATGAAGGCAAACAGCTGGGTTTCGTTGCCGAGGTTCTGGAGGGCGAGTCTTTTGACGACCAAGCCGTGGCGTACTGTGCTGCGCTTTCCCGACGAGCCCCTCTGGCCCTCGGACTGACAAAGTTCCTTACCAACCGCTCTGTGGACGGCACCCTCCGAGATGCACTGGACCGTGAGGGCCTTGCGCAGGGAGTCCTGGCTGCAACTGCGGACCACAAACGTGCCGTTGCCGCTTTTCATAGCAAAGAAGACCTTGACGCCATCGAGTTCACCGGTAATTGAMTELRIDRPAPGVLRCRLDGPDTLNALDDPVKRALVEQIVRSGAEPEVRVLMLTGAGRAFCSGGDIQSMGQRTPAEMNQVLTYGRQITEGLYNLQKPVVAAVNGIASGAGFNLALACDLILATPQAWFQQSFVKMGLMPDMGGTYFLAQSIGLHRAKEAVLNMRRFSAHEGKQLGFVAEVLEGESFDDQAVAYCAALSRRAPLALGLTKFLTNRSVDGTLRDALDREGLAQGVLAATADHKRAVAAFHSKEDLDAIEFTGNPGPT0006070_2068DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
D1-29_020551002hypothetical proteinATGTCATTGGATCCAACACAACGTAACTCGCTCGTTCTGCCAGTTGTGTGCGCACCCATGGCAGGGGTGTCCGGGCCCGACTTGGTCCGCGAAGCGTGCAAATCGGGAATCATGGGCGTTTTGCCCCGACACAACGCCGCAGACCTTGCACAATTCGGGGACTGGCTCCGCCAGATCCGCCGCGACCTTGACGAGCATCACGAGTTGTATCCGTCCGCCATCATCGGTCCCCTTGCAGTAAATTTTTCTCGTCGCAGGACCGCTGATGAAATGAAAGAAGACCTTGATCTCTGCGCCCGGTACGGTGTGGACGTTATCGTGAGTGCGATGGGCGATCCGACCGAACTCACCCGAGTTGTCCAGGGATGGGGCGGCAAGGTCTTTCACGATGTCACGAGTATGCGTTTCGCTGAGAAGGCGATCTCCGCCGGCGTCGACGGTCTGACTTGCATCGTCGGCGGAGGAGGTGGCCACTCGGGGCTACTCAGCCCATTCGTCTTTATTCCGCAGGTGCGGAGTATGTTCGATGGCACAGTTCTCTTGGCCGGGACCATTTCAACCGGCGCCGCGATCAGGTCAGCAGAGATACTTGGGGCCGATCTTGCGTATCTGGGAACTCGGTTCATTGCGACGAAAGAGGCGAATGTTGCCCCCGCCTATCGGCGGATGCTTGTGGAGGCGAGATCGACTGATCTGATCTACACGAGCAGCGTAACTGCCGTTCCGGCCAATTGGTTGAGGCCCTCGCTCAGCTCAATTGGCTTAGATCCTGAAGATCTTCCGGTCTCATCCGGCCGCGGCAATTATGATCATCTGCCGCCCAAGACTCGACCATGGCGTGACATCTGGAGTGCCGGCCAAGGTATCGACCTCATCGACGATGTTCCTTCAGTATCGGACTTGGTTCAACGCCTACGTATTGAGTACCGCGCTGCTTGCCAAATTCCCGAATTTAGCCCGTTCCACGAGAACTCTGATTGCAGCGATGCTGTTGACGCCTAGMSLDPTQRNSLVLPVVCAPMAGVSGPDLVREACKSGIMGVLPRHNAADLAQFGDWLRQIRRDLDEHHELYPSAIIGPLAVNFSRRRTADEMKEDLDLCARYGVDVIVSAMGDPTELTRVVQGWGGKVFHDVTSMRFAEKAISAGVDGLTCIVGGGGGHSGLLSPFVFIPQVRSMFDGTVLLAGTISTGAAIRSAEILGADLAYLGTRFIATKEANVAPAYRRMLVEARSTDLIYTSSVTAVPANWLRPSLSSIGLDPEDLPVSSGRGNYDHLPPKTRPWRDIWSAGQGIDLIDDVPSVSDLVQRLRIEYRAACQIPEFSPFHENSDCSDAVDAPGPT0006800_3113DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
D1-29_020562154hypothetical proteinATGTCCGGTTGGAATGTTGATAACGCTGCGGGCCCTCTAGGGGCAGGCACGGTTACCCTGGTTGAGGGTTCGTCTTTCTGTATCTCCTTGGCGAATGGTGATATCCATCCTAAGCATCCGCATGGTCTTTTTGTCCAAGACACTCGTATCCTGTCGCACTGGAGCTTATCCGTTAACGGCCAGGTGGTAGAAGAGTTGGGGGCTGAAACGAAGGAGCCGTACCGCGCGCTATTTGCGGGACGTGTCCCCAGCCTTAATGGGCATGCCGATAGCCCCCTTATTGTGGAGCGGCTGCGTGAAGTGGGGTCCGGAATCCACGAGCAGATAACGGTTCGGAACTACTCGCCGGTGAGTGCGGAGTGCCTGGTTTCGCTGAGGGTTGCGGCTGATTTCGCTGATCTTTTCGAAGTGAAGGAGGCGCGACCCAAAAGGCGTTGGGACGAAACCCGCCAGAACCGGGGCGATGAGCTGGTTATTCAAGCCACCTGGCAAGATGTCCGTAAGGGCGTTGTTATTCGTGCCCCCGGAGCACAGGTCTCGCCCGAAACCCTGACATATAGGGTGACCATCCCACCGCACGGCCGGTGGAGCACAACCCTGACGGTGATGCCCGAAACCCAGGGCGGCAGTCGTCCACGGTCTTTCGTCCACACCGACGGCGAACTCTCGCCCAGCGACCTTCGCCGACAACAGTGGGTGGCCAAGATTCCGATCCTGCAGATGGGGAACCGGTCAATTGAACGGACCATGCGGCGTAGTTATGACGACCTGGGTGCACTCAGGATCGAAGATCCTAACCACCCGGATCGGGTTGTCGTGGCCGCCGGCGCGCCGTGGTTCATGACCCTTTTTGGCCGGGACTCATTATGGGCTTCGGAGATGTCGCTTCCAATTGATCCCTCCCTAGCACTGGGGACGCTGCAAACGCTCGCCGACCGCCAGGGCCGCGCAGTGGATCCAATTAGTGAAGAAGAACCCGGCAAGATTTTGCACGAGGTCAGGTTGGATGTCTCAAGCGCACTGGCGCTGGGAGGAAAGGCCACCTACTACGGCAGCGTTGATGCGACCCCTTTGTTCGTCATGGTTCTCGGATCGGTTAGCCGTTGGGGCTTCGCCGCGGACACCATTGCTGCTCTGCTGCCTCACGCAGACCGCGCGCTGGAATGGGTTCAGAAATACGGGGACAAAGACGGCGACGGTTTCGTCGAATATGAGCGACTGAACAATCGGGGGTTGATCAACCAAGGCTGGAAGGATTCCTGGGACGGTATTAATTTCGCAGATGGAAGTATGCCCGAGCCACCGATAGCCCTGTGTGAGGTCCAGGCGTATGTCTACGGAGCCTACGCGGCCCGCGCCTGGATGGCTTATGACGCCGGAGACGATGCCCTGGGGAACGAGTATGCCGATCTTATGGTGCAGTTAAAGAAGCGCTTCAACGAGGAATTCTGGATGCCGGAACGTGGCTATTACGCCGTGGCCTTGGACGGCAAGAAGCGCCAGGTCGACGCTTGCGCTTCGAACATGGGTCACTGCCTATGGCTCGGACTTGTGGATGAGGACAAGGCGCCGTCGGTGGTGAAGCACCTCATGTCCCCCGAAATGTTCAGCGGATGGGGCGTCCGAACCTTGGCCACGGACATGGGCGCCTATAACCCCGCCAGCTATCACAACGGTTCCGTATGGCCCCACGACAACGCCATCATTGCAGCCGGACTCCTGCGATACGGGTTTGTGGACGAGGCGCAACGGATCTCGACCGCCCTGCTGGAGGCCGCCGAGTTTTCCGGTGGCCGCCTCCCTGAGTTGTTTTGCGGTTTCAGCCGGGATCAATTCGCCGTGCCCCTTCCGTACCCGACGGCATGTTCACCCCAGGCCTGGGCATCAACAACGCCCATACTTCTGGTGACAGGCCTGATGCGATACGACGCACACGTTTCCCAAGGCGGCGTGTGGATGGACCCAGTCCTTCCCGCGTCTTTTGGCGACGTCCACATCACGAACGCACCCATGGCCGGCGGACGGATCACCATCGACATCTCAAACTCCGTCCCATCCGTCGATGGGTTGCCCAAACATTTGACTTTCCATCGGGGGCACAGGCCATGGATCACGGAGCTGGTAGACCAAGCCGATCGACGCCGAAAGGGCTAAMSGWNVDNAAGPLGAGTVTLVEGSSFCISLANGDIHPKHPHGLFVQDTRILSHWSLSVNGQVVEELGAETKEPYRALFAGRVPSLNGHADSPLIVERLREVGSGIHEQITVRNYSPVSAECLVSLRVAADFADLFEVKEARPKRRWDETRQNRGDELVIQATWQDVRKGVVIRAPGAQVSPETLTYRVTIPPHGRWSTTLTVMPETQGGSRPRSFVHTDGELSPSDLRRQQWVAKIPILQMGNRSIERTMRRSYDDLGALRIEDPNHPDRVVVAAGAPWFMTLFGRDSLWASEMSLPIDPSLALGTLQTLADRQGRAVDPISEEEPGKILHEVRLDVSSALALGGKATYYGSVDATPLFVMVLGSVSRWGFAADTIAALLPHADRALEWVQKYGDKDGDGFVEYERLNNRGLINQGWKDSWDGINFADGSMPEPPIALCEVQAYVYGAYAARAWMAYDAGDDALGNEYADLMVQLKKRFNEEFWMPERGYYAVALDGKKRQVDACASNMGHCLWLGLVDEDKAPSVVKHLMSPEMFSGWGVRTLATDMGAYNPASYHNGSVWPHDNAIIAAGLLRYGFVDEAQRISTALLEAAEFSGGRLPELFCGFSRDQFAVPLPYPTACSPQAWASTTPILLVTGLMRYDAHVSQGGVWMDPVLPASFGDVHITNAPMAGGRITIDISNSVPSVDGLPKHLTFHRGHRPWITELVDQADRRRKGNANANANANA
D1-29_020571026hypothetical proteinATGTCAGTTCAGCACTCTGCCGTCGGCCCCCTCCCTCCCTATGATCCAGAAATTGCGCGGTTCATGGCCAGCTTTCCAGCCTATGAAGACCAACAGGCTGCGCTCGAGGCGATGATTCAACAGAGGGAATGCGTTCTAGGTGAGGATCAGATTACTCGTAATGGGACGTTCACCGTTCGCGCGAAGGTCATACAGGGCCAGCAGGGACGCTCAGTGACCATGCATATCATAGGTCCGGCACACCAACCGGCACGTGGTGCCATCGTTTGGTTGCATAGCGGCGGGATGGTTTCCGGGGCGGCTCTCTCACTGGATCTTCCCCAAGTTTTGGACATCGCTGAAGACCAGTCCTTGCTAGTCGTTGCAGTGGAATACGCCCGGGCACCCGAGCATCCCGCCCCAGCCGGGATGCTGGATTCCCTTGATGCCTTTTATTGGGTCGCAGCTCATGCAGACGAGCTTAACTTTCCACGGAACGCCCTGTTCCTGCATGGACTCAGCGGTGGTGCCGGTCTGGCCGCTGCAGTGGCGTTTGAAGCGCGCGCGGCCGCCCTGGACTATGCCGGCTTGGTCATCGACGGGGCCATGATTGACGATCGGATGCGCTCGCTCTCCTATCAACAACTGGACAGCAGTTCTGAAGCCCTCGCCAGCATGTACCGCGTGATGTGGAACGCCGTCCTGGGAAAGGCCTCCCCCTCGATATTTGCGGATTATCCGCACCTCGCTGTTGGCCGACTGGTCGACCAAGATTTCTCCGGCTTCCCACCCGTATTTCTCATGTGCGGCGCCAGTGATGCCTTCCGGGACGACACAACGGCTTTGGCCCAGGCAATCTGGCGTTCCGGTGGCACAGCAGACCTGCACCAATGGGCGGGCACGATACATGGTTCCGACTTGATGGTGCCCGAAGCCCACGTCTCCAAGGAATCAGCAGCCGTCCGGAGAGGGTGGTACGACAGGAGAATGACGAGAATCGAACAAGACGCGAAACAGTCGCAGGACGAGAAAGTTCAGGCCATCTGAMSVQHSAVGPLPPYDPEIARFMASFPAYEDQQAALEAMIQQRECVLGEDQITRNGTFTVRAKVIQGQQGRSVTMHIIGPAHQPARGAIVWLHSGGMVSGAALSLDLPQVLDIAEDQSLLVVAVEYARAPEHPAPAGMLDSLDAFYWVAAHADELNFPRNALFLHGLSGGAGLAAAVAFEARAAALDYAGLVIDGAMIDDRMRSLSYQQLDSSSEALASMYRVMWNAVLGKASPSIFADYPHLAVGRLVDQDFSGFPPVFLMCGASDAFRDDTTALAQAIWRSGGTADLHQWAGTIHGSDLMVPEAHVSKESAAVRRGWYDRRMTRIEQDAKQSQDEKVQAINANANANANA
D1-29_020582067dorACOG0243Dimethyl sulfoxide/trimethylamine N-oxide reductaseGTGGAGGTGTCTTGGGAACGGGCCATAGAGCTGGTAAGTGCGGAACTCAGTCGGGTCTACACGGACTACGGCCCTATGGCTGTATACGGCTGCTCATATGGATGGGCCAGCGCCGGCCGTTTCCATCACACTCAAAGCCAAATCCACAGATTCCTGAACTCCCTCGGCGGATATGTTGCAGGTGTGACGGACTACAGTTACGGGGCCTCCGGCGTCCTGCTTCCGCACGTCATCGCTCCCCCGGTTGAAATTATGGCGAGGGCAACATCCTGGGACGTGGTCAGCCAGAACACGCAGCTGTTCGTTGCATTTGGTGGATTGTCAGAAAAAAACAGTGGAATAGGCCCAGGTGGAATTGGCCGTCACGTCGCCCGCAACGCAATCAAGGACGCGGTTGCGCGCGGCTGCCGCTTCATCGATGTATCACCAATCGCAGATGATACTTATGGGGAGGCCCAGGCCGAGTGGATCGCCCCCGTTCCCGGCAGTGATGCCGCTTTGATGCTGGCATTGGCCTTCGTCCTGGATGCAGAAAACCTCGCTGACTCGCAATTCCTGGACCGCTATTGCGTTGGGGCGAACAAATTCTTGTCCTACGTGCGCGGTGAAGTTGACGGAGCGCCCAAGAACCCCCAATGGGCAGAAAAACTGACATCGATACCTGCTGGACGAATCGTCCGGCTTGCACGCGAGATGGCAGCCTCACGGACGATGATCAACATCAGTTGGTCAATGCAGCGGCAGCAGCATGGCGAGCAACCTGTTTGGCTCGGTGTGACGCTGGCAGCCATGCTCGGCCAGATCGGGCTGCCTGGTGGTGGTTTCCAGCATGGATATGGCTCCTCAGCAGACGTCGGGTTGCCCTTGCGAGTCTCGAGCGCGCCCTCCTTTCCCCAAGGTCGAAACCAAGAACCGTCCTATATCCCGGTAGCTCGGATCTCGGACATGCTGCTCGACCCGGGTAGCCAGATCGACTTCAATGGCAATCGTTTGACTCTGCCAAAAATCGAGCTGATCTATTGGGCCGGGGGCAACCCCTTCCATCATCACCAAGACCTTGCCAAATTCCGTAAAGCATGGTCAAAACCCGCAACCGTTATCGTCAATGAGCAGTTCTGGACGAGTACCGCACGGCACGCCGATATAGTTCTGCCTGCAACCATGACGTTTGAGCGAAACGACTATGGGGCCGGCCGTAACGACCCTACGTTCTTTCCCATGCACGCTCTAACGGCACCCGCTGGAGAAGCACGCGACGATTTCGATATCTTCGCCGCTGTGGCGGAAAAGATGGGACGGGGTGATGTTTTCACCGAAAACCGGGACACTATGGGCTGGCTTCGCCATCTGTACGACGGGTGGCAAAAGAGGCTCGCTGACAAGGGAACTGTCGTCGTGGATTTCGACACATTCTGGGCGAGCGAGAAAATCGAGATCCCGGTGATAGAGCCGGATCAGGTTCTTTTTTCCGAATTCCGGCGCGATCCAATCGGGAATCCCCTCGCCACCCCTAGCGGCAAGATTGAGATTTTCTCCTCGACGATCGAAAGTTTCGGCTACCCTGATTGCCCCGGTCATCCCGTTTGGATTGAGCCCGACGAATGGCTTGGATCAGCTGGCGATTACCCGTTGCACCTGATAGCGAATCAACCTAAGACCAAGCTACACAGCCAACTGGACATAGGGACCACCAGTCAAAAATCCAAAATAGAGGGACGCGAACCCCTTCGAATGAATCCTGAAGATGCCGCTGCCCGGGGACTTTCGGACGGACAGGTTGTCCTGGTTCGAAACAACCGTGGAAGGTGCCTGGCCGGCCTGGTCATTTCCGCTGCCATACGTCCGCGAGTTGTACAGCTTTCAGCAGGGGCCTGGTACGACCCCGCACCCGATGATCCATCGTTCTGCCGCCACGGCAATCCGAATGTGCTGACATCCGACAGGCCGTCCTCAAGTCTTTCCCAGGCCACTACTGCCCAGCACGCGCTCGTGGAGGTCGAAGCATGGTCAGGCGATATTCCTGAGCTGGATGTGCTCACACCGCCCGTTCTGGTGCCGGACCACTAAMEVSWERAIELVSAELSRVYTDYGPMAVYGCSYGWASAGRFHHTQSQIHRFLNSLGGYVAGVTDYSYGASGVLLPHVIAPPVEIMARATSWDVVSQNTQLFVAFGGLSEKNSGIGPGGIGRHVARNAIKDAVARGCRFIDVSPIADDTYGEAQAEWIAPVPGSDAALMLALAFVLDAENLADSQFLDRYCVGANKFLSYVRGEVDGAPKNPQWAEKLTSIPAGRIVRLAREMAASRTMINISWSMQRQQHGEQPVWLGVTLAAMLGQIGLPGGGFQHGYGSSADVGLPLRVSSAPSFPQGRNQEPSYIPVARISDMLLDPGSQIDFNGNRLTLPKIELIYWAGGNPFHHHQDLAKFRKAWSKPATVIVNEQFWTSTARHADIVLPATMTFERNDYGAGRNDPTFFPMHALTAPAGEARDDFDIFAAVAEKMGRGDVFTENRDTMGWLRHLYDGWQKRLADKGTVVVDFDTFWASEKIEIPVIEPDQVLFSEFRRDPIGNPLATPSGKIEIFSSTIESFGYPDCPGHPVWIEPDEWLGSAGDYPLHLIANQPKTKLHSQLDIGTTSQKSKIEGREPLRMNPEDAAARGLSDGQVVLVRNNRGRCLAGLVISAAIRPRVVQLSAGAWYDPAPDDPSFCRHGNPNVLTSDRPSSSLSQATTAQHALVEVEAWSGDIPELDVLTPPVLVPDHPGPT0022135_426DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022135-bisC-K08351NANA
D1-29_020591164tdh_3L-threonine 3-dehydrogenaseATGACAGAGAGATCAGTGGCCACGATTACGAACATTCCCACAATGATGGCTGCGGTCCAGCTGGTTGGCCACGGCGGGCTCGACCAGCTGGTGTACCGGACTGATGTGCCGACCCCTGTTGCGGCGCCGGGAGGAGTGCTGGTCAGGGTTGGTGCGTGCGCGCTCAACAATACCGAGATCAACACGCGCACGGGATGGTACGACCGGGTGGTAGAGGAATCTGTCTCGGAGGAGCTTGGTCGGTCGGGGCGCGACGACGATGCCGGTGCCACTTGGAATAACACGAAAATGTCGTTTCCCCGGGTTCAGGGGGCCTCGGTAGCTGGAACGATCGTGGCAGTTGGGGAAGGAGTGGATGAGAGCCGGATAGGTACCCGAATCGTCGTCGACCCGTCTGTTCGGGATCCGAACCTCCCTCGCCGTGCACAGATTGTCGAATACTTGGGTGGTGACCGAGACGGAGGATTCGCGGAGTATGTGAATGTGCCGTCTGTGAACGCGCATCGGGTGAGCACCCACCTCAGTGACGCTGAGCTCGCCACTTTCCCCTGCTCTTACGACACTGCGGAGGAGATGCTGGCCCGGACGGAGCTGTGCGAGGGCGAGACAGTCGTTGTCACCGGCGCAGCCGGCGGTGTGGGCACGGCGACCATCCAGCTGGCACAGGCTCGCGGCGCCCGCGTTATCGCAATTGCGAGTGCTGGGAAAGAGGCGCGGCTGCGGGAACTCGGCGTCGACGGATTTGTCCCTCGAGACGAGCCGGACCTGGTGGCTGCTGTTGCAAATGTCATCGGTGAACGTGGCGCCGACGTCGTTATCGATGTTGTCGGTGGCAGCATGTTCGAGAGTTTGCTCCTCATGCTTCGGCGTGGAGGTCGATACGCGACAGCAGGAGCCATCGGCGGACCGGTGAGCCGTATCGACCTTCGGGAGCTTATCTATAAGGATCTGGAAATGCACGGGATCACTAACCCGACGCCCGAGACGTTCGCGCGTCTCGTCGGTCTCATAGAAGAGGGAAAGATCAAGCCTCTCGTGGAGGAAGTCTTTCCGCTCTCTGAGCTCGGCAAGGCTCAGGAGACGATGCTGAAGAGAGCCCATATCGGCAAGATTGTCGTCGTACCTGACGGTTCTATGGATTTCGGGTCAAGTACCCAGAACTGAMTERSVATITNIPTMMAAVQLVGHGGLDQLVYRTDVPTPVAAPGGVLVRVGACALNNTEINTRTGWYDRVVEESVSEELGRSGRDDDAGATWNNTKMSFPRVQGASVAGTIVAVGEGVDESRIGTRIVVDPSVRDPNLPRRAQIVEYLGGDRDGGFAEYVNVPSVNAHRVSTHLSDAELATFPCSYDTAEEMLARTELCEGETVVVTGAAGGVGTATIQLAQARGARVIAIASAGKEARLRELGVDGFVPRDEPDLVAAVANVIGERGADVVIDVVGGSMFESLLLMLRRGGRYATAGAIGGPVSRIDLRELIYKDLEMHGITNPTPETFARLVGLIEEGKIKPLVEEVFPLSELGKAQETMLKRAHIGKIVVVPDGSMDFGSSTQNPGPT0006375_793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_020601449prr_1COG1012Gamma-aminobutyraldehyde dehydrogenaseATGACTCTGGAAAGCACGGACTTTATGGCCTTTGCGGAAACGTACCTCGCTAGCGAGAACCGTGAAGACGCTTCGAAGGTATTCAACCCGGCGACCGGAGAAGTGATCGCCAGATTCCCGGTAGCCTCTGATTCGGACGTCGATGCGGCCGTGCAGCGAGCCTCGGACGCGTTCAAGACTTGGGGAAGCACTTCCCCAGCCGAGCGCGCGGCCGTTCTGCTCAAAATCGCTGATGCGGTCGAGCAGGAGATCGACGAGTTCGCACGGATCGAGAGCCTGAACGTGGGGCTTCCGATCGGAGATGTGCGCGACTTCGTGGTGCCGACGGTCGTGGATGTTCTTCGATTCTTCGCTGGTGCTGCTCGCATCTCGACGGCGCCCGCCGTCGACGAGTACGACAACGAGAGCACTTCATGGGTTCGGCGGGAGCCGCTCGGTGTCGTCGGACTCATCACGCCTTGGAACTACCCCCTACTGATGGGGGCCTGGAAGATCGCGCCGGCACTTGCAGCTGGCAACACTATGCTGCTCAAGCCGGCGACTGTGACACCGCTGAGTACCCTCAAGCTGGTCGAGATCGCTAACAGCTTCCTTCCTGAAGGCGTGATCAACCTCATCCTGGGTAGCGGATCGGCGGGCACCGCGATGGCCAAGCACCCCGGAATTCGAAAGATCGCGTTCACCGGCGCAACCTCGACCGGCAAATTTGTGGCAGCAACAGCTGCAGAGACCGTCAAGAAGGTGGGCCTCGAGCTGGGCGGCAAGGCACCGGTGCTGGTGTTCGCGGACAGTCCAATTCGCAAGACGGCAAAAGACCTCGTGGCTTTCGGGTATTCGGGCGCTGGCCAGGATTGCACGGCTGCTTGCCGCATCATCGTCGAAGAGTCTGTCTACGAGGAATTCGTCGAGGCGTACTGCAAGGAAGTTAGCGAGCTTGTCCTCGGCGACCCATCCGATCCCGCCACCACGTTGGGGCCGGTGATATCAGAAAAGCAACTGAGGTCCGTTCTCGGGTTTATCGAACGCGCGAGGGAAGCCGGCAACACGATCAAGGTGGGCGGACGACAGGCTGATCGTCCAGGCTGGTTCATCGAACCGACTGTGATCACCGACGTCAAGCAGACGGATGAGATAGTTCAGAGCGAGGTGTTCGGCCCGGTGGTGAGTATCCAGTCGGCACAAAGCGACGATGAAATGCTGCAGCTTGCCAATGACGTCAATTACGGCCTGTCGGCCAGCGTGTGGACGACCAGTCTGGCGCGCACGCTGCGCTTCACCAAAGAACTGCGCTTCGGCACGGTCTGGGTCAACCAGCACACGCCCAATGTGTCGGAGATGCCATTCGGCGGATACGGCGAGTCGGGCTACGGCCGGGAGCTATCGCTGCACGGTCTGGACGAGTACTCCCAGCTGAAGCACGTCATGGTCAAGCCTGGGCTCGATCTTTAGMTLESTDFMAFAETYLASENREDASKVFNPATGEVIARFPVASDSDVDAAVQRASDAFKTWGSTSPAERAAVLLKIADAVEQEIDEFARIESLNVGLPIGDVRDFVVPTVVDVLRFFAGAARISTAPAVDEYDNESTSWVRREPLGVVGLITPWNYPLLMGAWKIAPALAAGNTMLLKPATVTPLSTLKLVEIANSFLPEGVINLILGSGSAGTAMAKHPGIRKIAFTGATSTGKFVAATAAETVKKVGLELGGKAPVLVFADSPIRKTAKDLVAFGYSGAGQDCTAACRIIVEESVYEEFVEAYCKEVSELVLGDPSDPATTLGPVISEKQLRSVLGFIERAREAGNTIKVGGRQADRPGWFIEPTVITDVKQTDEIVQSEVFGPVVSIQSAQSDDEMLQLANDVNYGLSASVWTTSLARTLRFTKELRFGTVWVNQHTPNVSEMPFGGYGESGYGRELSLHGLDEYSQLKHVMVKPGLDLPGPT0007165_3169DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-29_020611683betA_4Oxygen-dependent choline dehydrogenaseATGAAGCTTGACGCTTATGACTACATCATTGTTGGGGGAGGTTCCGCAGGTTGCGTCCTCGCGAACCGTTTGAGCGAAGATCCACAAAACCGGGTATTGGTCCTTGAAGCCGGTCACAGATACTCCTCACTTGATGTCCCCGTGCGAGTGCCCGCAGCATTCCTCTTCCTCATGGGCCACCCCTTCTATGACTGGCGCACGAAGTCGGAGCCGGAGACAGGGCTTAAGGGTCGTCGAATTGACCACTATCACGGTAGGGTCATGGGCGGAAGCAGCTCGATTAACGGGATGTTTTATCAGCGCGCCAATCCACTCGTCTACGAGCGTTGGGCGCAAGAGACTGGAACCAAAGAATGGGACTACGCTCACGTTCTTCCGTATTTTAAGCGGATCGAGACGTTCAAGGGCTCGGATCCAACCGGTGCGTACCGAGGTCGATCGGGACCTATTCCGGTTAGCCAGCATCATCACAACGGATCGCGAAACCCGTTGTTCGGTGCGCTCTTTGAAGCGGCCAAGCAGTCGGGCTACGAGCTCGTCAACAACGTGAATGGCTACCGCCAGGAGGGCTTCTCTTCATTCGATTCAAACATCGACAACGGTGAACGCTACAACGCTGCGCGCACCTACTTTGCCCCAGTGAAGAAGCGGAAGAACCTCGATGTCATCACGGGCGCTCGAGCAACGCGGGTGGTCTTCGAGGGAACTCGCGCAGTCGGCGTCGAGTTTGCGACCCGGCTTCGCCGTCTAACCATCGCGCGAGGCGCTGAAGTTATTCTGAGCGGCGGTGCGTACAACTCGCCACAACTGCTGCAGCTTTCGGGTGTCGGTAACGCCGCTGAGCTAAGGCAGCACGGCATCGACGTCGTCGCCGATCTGCCTGGCGTCGGCGAGAACCTGCAGGATCACCTTGAAGCGTTCATCATGTACGAGTGCAAGCAGCCAGTCTCGAACCAGAGCATCGTCAAAAAGTACACCTATCCGATGACAGGGCTGAAGTGGTTGTTCAATAGGACCGGGCCAGGCGCGTCGAATCACTTCGAGGGCGGCGGCTTCATCCGCTCGTTCGATGACGCCACCATGCCGAACCTGATGCTCACCATGCTCACGCTCGGGGTGCGAAACGACGGCACCCCTGCGCCGACGCCTCACGCATATCAGATCAATCTCGGTCCGCAGCAGCCACAGTCGAAGGGGCACATCAAGTTGCGGAACAGCGATCCGTTCGAACAACCCGTTGCGACGTTCAATTATCTGTCCACCGAACGTGATCGCCAAGAATGGATTGACGGTGTTCGCACTACACGAGCCCTCATGAATCAGCCCGCCTTCGCAGCATTCAACGGCGGCGAGCTCTCGCCCGGCCCCGAAGTCCAGACGGACAAGGAGATCCTCGATTGGGTCTCCCAGGATGCCGAGACGACCTACCATCCGTGCGGGACCTGCAAGATGGGGAACGATGACCAGTCCGTCGTTGATCCCCACAGCTTCCGGGTGCACGGAGTTGAGGGCCTTCGAGTTGTCGATGCTTCGGTGATGCCGTCTATTCCGAATGCCAACCTCTATGCGCCGGTCATGATGATCGCCGAGAAGGCTGCCGACGTCATCCTTGACAAGGACCCGCTCCCCGCTGAGCACGTCGACTTCTACCGGCATGCGGCGGCAGAGGGTCTCAGCCTCTAGMKLDAYDYIIVGGGSAGCVLANRLSEDPQNRVLVLEAGHRYSSLDVPVRVPAAFLFLMGHPFYDWRTKSEPETGLKGRRIDHYHGRVMGGSSSINGMFYQRANPLVYERWAQETGTKEWDYAHVLPYFKRIETFKGSDPTGAYRGRSGPIPVSQHHHNGSRNPLFGALFEAAKQSGYELVNNVNGYRQEGFSSFDSNIDNGERYNAARTYFAPVKKRKNLDVITGARATRVVFEGTRAVGVEFATRLRRLTIARGAEVILSGGAYNSPQLLQLSGVGNAAELRQHGIDVVADLPGVGENLQDHLEAFIMYECKQPVSNQSIVKKYTYPMTGLKWLFNRTGPGASNHFEGGGFIRSFDDATMPNLMLTMLTLGVRNDGTPAPTPHAYQINLGPQQPQSKGHIKLRNSDPFEQPVATFNYLSTERDRQEWIDGVRTTRALMNQPAFAAFNGGELSPGPEVQTDKEILDWVSQDAETTYHPCGTCKMGNDDQSVVDPHSFRVHGVEGLRVVDASVMPSIPNANLYAPVMMIAEKAADVILDKDPLPAEHVDFYRHAAAEGLSLPGPT0013615_2060DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-29_020621395norBQuinolone resistance protein NorBGTGACTGACTCGGCTGCGCCCTCCCGCCTGGTTCCGGCGCTGATTTATGCAGCGCTTTCGACGTCGATCGTGAGTTCGCTCGGCATGTTGCTAGTGCCTGCCATCTCCCGCGAGATGAATGTTTCAGTCAGCAACGCGCAGTGGATGCTCACCGTCAACCTTTTGTTTGGAGCGATTTCAACACCAATAATGGGGCGTCTAAGTGATGGCCCGCACAAGAAGCGGCTTCTTCTAGTCTCCTTGACCGTTATCCTTATTGGCTCCGTGGTGGCGGCCTTGGCACCGAACTTTACGGTATTCCTCATCGGTCGGGCCCTTCAAGGATTGACCTACGGGATTGTGCCGGTCACCATTTCCCTTGCCCGTCGCTACGTTCCTGTCGACAAAGTGCAAGTTTCTATCTCCAGCTTGTCCGTGACCGTGGCAACCGGGCTGGGGTTAGGATACCCCTTGACGGGGGTAATCGCAGGCCTGACAGATTTTCGTATCGCGTTCTGGTTTGCCGTGCTTTTTGTGGTTTCCGCAATCGTGGTGGTCTTCGTTGCGGTTCCGGCAGGACCTGACACGCAAGCCGCGCTGTTACCGTTCGATTACTGCGGAGCCGCGTTGCTCAGCCTAGGCCTGGGTGGACTCCTGATCAGTGTTAGTGAGGCACCAACGTGGGGGTGGACGTCTCCGTGGACTATGGGCAGCTTTGCTTTGGCTGCTTTCCTTCTGTTCTTTTGGGTCAGGACGGGGCTACGACTGCGGGACCCCCTGATCAACCTACGAGTCTTCCGACACGGTGAGGTCTTGCTCGCCAACGCCGCTGGAACCGGGTTAGGCGCCGCACTGTACATCGGCCTCTCAATTTCAAGTCTCGTTGCACAAGCTCCCCTATCCACAAGGTATGGCATGGCCCTCCCAGTATTCTGGGCTGGATTCGTCATGCTGCCGCTCTCCGTAGGAAGCTTCGCGGCTAACCGTCTGGTCCGCTGGCTCTCACGCCGAATAAAGCTAACAACGCTGCTGCCGATTGGTGCCGGCATTATGACCGGGGCTGGAATGTTGCTGTGGTTTGCACACGATGAACTCTGGGAGATTCTGGTGGGGATGCTCACTTTCGGAGTCGGCATGGGGGCCAGCTACGCTGCAATGCCTGCTCTCATTGCGCGAAGCGTGGCCAGGACGGAATTGGGAAGCTCCGTGAGCTTCAACCAGGTCCTACGATCTGTTGGCGCATCCTTCGGCACCGCCGTTTCTGGCGCGGTGCTCGCGGCGAACATGGCACCTGATTTCCACGCGACCGGGGACGGTATCCGAGCGACCTTCGCGATCGGAGCGCTCCTCTGTACGGCGGTATTCATATCGTTGCTCATCCACGCATTCGCCAGTCGTCGTCGCATTATAGGCTAGMTDSAAPSRLVPALIYAALSTSIVSSLGMLLVPAISREMNVSVSNAQWMLTVNLLFGAISTPIMGRLSDGPHKKRLLLVSLTVILIGSVVAALAPNFTVFLIGRALQGLTYGIVPVTISLARRYVPVDKVQVSISSLSVTVATGLGLGYPLTGVIAGLTDFRIAFWFAVLFVVSAIVVVFVAVPAGPDTQAALLPFDYCGAALLSLGLGGLLISVSEAPTWGWTSPWTMGSFALAAFLLFFWVRTGLRLRDPLINLRVFRHGEVLLANAAGTGLGAALYIGLSISSLVAQAPLSTRYGMALPVFWAGFVMLPLSVGSFAANRLVRWLSRRIKLTTLLPIGAGIMTGAGMLLWFAHDELWEILVGMLTFGVGMGASYAAMPALIARSVARTELGSSVSFNQVLRSVGASFGTAVSGAVLAANMAPDFHATGDGIRATFAIGALLCTAVFISLLIHAFASRRRIIGNANANANANA
D1-29_02063477hypothetical proteinTTGAATGAGTGCCGCTGCCTCATTCTCGAGGACGGGGGCAGGTGTGAAGCGTCGCAGAGCAACGCGAACGCGGCTTCCAACTTCATCCAGACGGGGTTTGTCATTGGCAGACACGAGGAGCTGTCCGGTGACTTCGATGCCGATTCTGCCGTGTTCGAGGCATTGAGGTACAAGGGCTTCGATGCTGGGGTTGATGAGTTCGTCCAGATCCGCTATTTCGTCAGTAAGGTCCGGCGGGGCCAGCGACTTCGTCGCGACCCGATAGTCAATGACGGCATCGGTCGCTTAACACGTCCGGCCGCCAAGCAGCGAGGGTGCGGATCAGATGCATCCAGGCCAGGTGGCGGAGAGCTGGTCGTGAACTTCATAAGCAAACTGTCTAAACAGCTTGACCGGGGCAGGCTGCGGTCGCTTGGTGCAGCAGGCTTTGTGGGATACACCAACGGCGGTCTCCGTCTTATGAAAATCAACAATTAAMNECRCLILEDGGRCEASQSNANAASNFIQTGFVIGRHEELSGDFDADSAVFEALRYKGFDAGVDEFVQIRYFVSKVRRGQRLRRDPIVNDGIGRLTRPAAKQRGCGSDASRPGGGELVVNFISKLSKQLDRGRLRSLGAAGFVGYTNGGLRLMKINNNANANANANA
D1-29_020641605sgrR_2HTH-type transcriptional regulator SgrRATGGATCACAACATTCATCAGTCCTCAGCGGCAAGGCCCATCAGTACGTTCAAGCTTGAGGCTTCCCGGCGGCAGGTGCTGGCGGTTGGTGGCATCAGCCTCGGCGCACTTTTGCTGTCCGCTTGCACCAGTTCGCCTGGCACCGGTTCCGAGCAGTCCGGCGGAGCGCCCCAGAAGGGCGGTACCCTGCGCATGTCAATCAGTGACGGTGGCAGCTCGGACACCCTGGACCCTGGTACCGCTCTCACGGGGAATGCATCCACAGTCCTAAAAGCGGTTTATGACCCGCTTGTGGTCAACGACGACAATTTCGTGGCCCAGCCGGCTCTCGCGACCTCGTGGGAAGTCAATTCGGGTGCCACACAGTGGACGATCTCTCTTCGAGAAGGGGTCAAGTGGCATGACGGTAGCGACTTCACGTCAAAGGACGTCGTCTACACCATCAGCCGTTGGCTCGATCCAAAGACCGGGAGTTCGCTCAACGGATACCTGTCGCCCTACCTCGACATCGGCGGGGTTTCGGCGCCGGATGCCTCGACTATTGTGCTCACCCTTAAGCAGCCCAACAGCGTCCTGATGCAGACGCTGGGCGCTAACCCCACTAGTCAAATAATCAAGGACGGAGCCACCGACTTCAGCGGTGCGAACGTGGTAGGCACGGGGCCGTTCAAGTTAACATCATGGAACCCGGGCACAAGCTGGAAGGCCGTCCGAAACGACGCATACTGGGGTGAGGCGGCGTACCTGGATGGGATCGAGGCAACGATTACGCCGGATCAGGGCGCCAAGCTGCAAGCCGCCCTGTCAGGAGCAACTGATCTCACCGATTTGATACCGGTCTCACTCTGGACGGGGATTCAAGGCCGAAGCGACCTGGTACTCGAGACCCTCAAGAACCAGCGAACCTGGGTCTTCGCGTTCGACCAGCGGGTGGCGCCCTTCAGCGACCCCCGCGTGCTCGATGCCATCAAGCTTGCAACCGACCGCGACAAGATGGTCGAGACCGCACTGCAAGGCCACGGGACAACCGCAGCCGATGTGCCCATCCCCCCTAATTCTTCCTGGTATCCGTCCGCCCTCAAACCCGAGTACGCCCCTGACAAGGCGAGGACGCTGCTGGCCGAGGCGGGTTTCCCGGACGGACTCGATATCAAGTTGAGTGTGACTGATTCAGTGCCTGGGATGTTGGATGCTGCTCAAGCCTGGCAGCAGGCCGTCAAGAGCGCCGGGATCAACGTGACACTGGACCAGTTCTCGCCGGACACGTACTGGTCAAAGGGGTATATGGTCACCCCTGCTTACATGAGTTATATTCCCCAGATATTCCCCCCGTCCGCTTTCGACGCCTTCTACCGCAAGAGCGCCCCTTATCCTTACAGCCACTTCTCAGATCCAGCGCTGGACAAGATCGTCGATGAGCTTCTCGTCACCACAGATCAGAGCCGGCAGATCGAGTTGACCCAGGAGGCCTTCCTTCTGGCCCGGAAGTCCTACGGCATTCTGCTACCTATTTACTCGGACGCTGCTTATGCCCGGTCTTCCAAAGTCAATGGTCTCTTCATCACTATTGACACAGTCGATTTCAGGAAGACGTGGTTGGCCTGAMDHNIHQSSAARPISTFKLEASRRQVLAVGGISLGALLLSACTSSPGTGSEQSGGAPQKGGTLRMSISDGGSSDTLDPGTALTGNASTVLKAVYDPLVVNDDNFVAQPALATSWEVNSGATQWTISLREGVKWHDGSDFTSKDVVYTISRWLDPKTGSSLNGYLSPYLDIGGVSAPDASTIVLTLKQPNSVLMQTLGANPTSQIIKDGATDFSGANVVGTGPFKLTSWNPGTSWKAVRNDAYWGEAAYLDGIEATITPDQGAKLQAALSGATDLTDLIPVSLWTGIQGRSDLVLETLKNQRTWVFAFDQRVAPFSDPRVLDAIKLATDRDKMVETALQGHGTTAADVPIPPNSSWYPSALKPEYAPDKARTLLAEAGFPDGLDIKLSVTDSVPGMLDAAQAWQQAVKSAGINVTLDQFSPDTYWSKGYMVTPAYMSYIPQIFPPSAFDAFYRKSAPYPYSHFSDPALDKIVDELLVTTDQSRQIELTQEAFLLARKSYGILLPIYSDAAYARSSKVNGLFITIDTVDFRKTWLANANANANANA
D1-29_020651008gsiC_2COG0601Glutathione transport system permease protein GsiCATGACTATGGTGGCAGCGGAACCGGTAGCCGACCGGGTGGTAGATGGCGGTAAGAACAAGGCTCGCGTTTGGGCCTTGGTCCGTCAGCTTCTGATGTCGGTTCTGACGCTCTTGCTGATTTCGTTCATAGCGTTCATAGCAATGAATCGTTCAGGTGAGCAAATCGCGCGCAACGCCCTCGGAATCAACGTTACCGATGAGCAGTTGCAAGCGTTCATCACGACAAATGGACTTGACCGTCCTTTGCTCGTTCGATATTTCGACTGGCTAGGTCACTACATTCAGGGTGATTGGGGAACGACCCTGATCTCAAAGGTACCGATCCAACCTCTGGTACTTCCTGCTTTCGCCCACACGGCAGAGCTCGCCCTGGCATCTCTGGCGTGGTCCCTTCCCGTGGCCATCCTCCTCGGGGTGTTCATGGCTCGAAAAGGAGGGTTCTTTGATCGGGGTGCATTCGTGGTGATGACAGTGCTGGCCGCACTGCCGGAGTTCGTTATCGGATTGAGCCTAATGATCCTTCTTGCTGTTCAGGTTCGCTGGCTGCCTGTTGCCTCCTCGGCCGTCTCGGGGGAGCTTAGTATTGCCTGGCTTCAGGCCTTCGTCCTCCCTGCTTTGACTCTGGGACTGAGCGTCGTGCCTTACGTTTCACGAATAGCACGTGCGTCCGTCTCGGAAGCATTGAACGCACCCTTTACAAGGAACGCTGTTCTGCGGGGGTTGCCCAGGCGGCTAGTCGTCTGGCGACATGCGACCCGCTCCGCGGCCGTCCCGCTCGTTCATGCCGTAGCGCTCGTCATGACTTACCTGCTGGGAGGAGCCATCATCGTTGAGAACGTGTTCGGTTTCCCAGGGCTGGGACGCCTCTTGGTGCAAGCCATCAACCAGGGCGACACCAATTCCGCTCTCTCCATAACCGTGCTGCTGGGGGCGGTATTTATCGCACTTAGTTTTATCGCGGATATCTTCGTCACGTACCTCAACCCACGATTGAAGGCAGCCCGATGAMTMVAAEPVADRVVDGGKNKARVWALVRQLLMSVLTLLLISFIAFIAMNRSGEQIARNALGINVTDEQLQAFITTNGLDRPLLVRYFDWLGHYIQGDWGTTLISKVPIQPLVLPAFAHTAELALASLAWSLPVAILLGVFMARKGGFFDRGAFVVMTVLAALPEFVIGLSLMILLAVQVRWLPVASSAVSGELSIAWLQAFVLPALTLGLSVVPYVSRIARASVSEALNAPFTRNAVLRGLPRRLVVWRHATRSAAVPLVHAVALVMTYLLGGAIIVENVFGFPGLGRLLVQAINQGDTNSALSITVLLGAVFIALSFIADIFVTYLNPRLKAARPGPT0004445_13001DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_02066897ddpC_2COG1173putative D,D-dipeptide transport system permease protein DdpCATGAGTGTTGATTCCATACCTCAAGCGACAGCTATTCATCTTCAACCAGCACGTAAGTTTCGTCCGCTGAGACCCATCACCCACACCTGGTCGGGTCGCTGCGGACTGGCTATTGTCAGCGCCGTGCTGCTTGTGCTCATTCTCGGTCCGGCATTGGCTCCACATGCGTACGATCAGCTTGCTGTAGGACGCCCGCTCTCGCCGCCCAGCAGTGGTCTCCCGTTCGGAACGGACCACCTGGGGCGGGACGTTTTCAGCCGATTCCTACTGGGCGGCCAGATGGTGTTGCTGATTCCCCTCGCGGCCGTTGCACTGGCGACGATCACCGGGGGCTTGTTGGGGATGGTTGCTGCATATGTTGGGGGAGTGCTCGATAAGGTGGTTGCCCGAGTCTTCGACGTGCTCCTGACTCTTCCGCCCCTGCTTATTGCTCTTTCCGTGATAGCTGGATTCGGCTCGTCGCCGACAGTCCTGTTGATTACAGTGGCTGTAGTCTTCGTACCGCCAATCGGAAGAGTTGCCCGGGGAGCAACACTCGGAGTTGTCACGGCCGATTATGTCCAGGCCGCGCGAGCACGCGGGGAGCGTGCTGTTTCCATTGTCGTGCGGGAGATCGCCCCGAATATCGTCGGACCGCTCGTCTCGGATCTTGCCCTCCGGATCACCTACGGAGTGCTCTTCGTCGCAGCCCTCAATTTCCTTGGTCTTGGAGCTACGCCACCCTCGCCTGACTGGGCCCTCTCTATCGCGACCAGCCTGGGGTACGTGCAGATTCAGCCCTGGGCGGCTCTCGCGCCGGTAGTCGGCATCGCCGCTCTGTCGGTTGGCCTCAACCTGATCGCAGATTCGATCATCTCCCACGTCAACAACGACACCACTAAGGACTTCATGCTATGAMSVDSIPQATAIHLQPARKFRPLRPITHTWSGRCGLAIVSAVLLVLILGPALAPHAYDQLAVGRPLSPPSSGLPFGTDHLGRDVFSRFLLGGQMVLLIPLAAVALATITGGLLGMVAAYVGGVLDKVVARVFDVLLTLPPLLIALSVIAGFGSSPTVLLITVAVVFVPPIGRVARGATLGVVTADYVQAARARGERAVSIVVREIAPNIVGPLVSDLALRITYGVLFVAALNFLGLGATPPSPDWALSIATSLGYVQIQPWAALAPVVGIAALSVGLNLIADSIISHVNNDTTKDFMLPGPT0004450_11663DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-29_020671830COG1123putative ABC transporter ATP-binding proteinATGAGTACCTCGGTCGCACTGGAAGTGCGGGGCCTCTCAGTAGGGTACGGCCTGCGGAAAGGCGTCATTAAAGAGGTCGTGAGCGACGTCGATTTCGTGCTGGAGCGAGGAAAGATCCTCGGAATGGCGGGCGAATCCGGCTGCGGTAAGAGCACGACGGCCTTGGCGGCGATCGGCTATCGGCCCGGTGCCATGCAAGTGCCCGCTGGCGAGTCAAAGCTCGGGGACATTGATCTGCTGAACATCCCCCTTGCACAACTTCGGCGCATATGGGGCAGCAAGGTAGTCTACATGCCCCAAGCATCGTCGAATGGATTGACTCCAGCGTTGACAATTGGGCATCAGATGGCCGAGCCCATGAAGATCCACCTCGGGCTAACCGGACAAGCCAACCATGACAGGCAAGTCGAACTTTTGAAGGAGGTCGGCGTTCCTAATCCGGAGGCCGCCCTTCGACGTTATCCGCATCAGTTCAGTGGTGGTCAGCAACAGCGCATCAACCTGGCGATTGCTATCTCATGCAATCCCGAGGTGTTGATCCTCGACGAGCCGACGACTGGGTTGGACGTGACCACGCAGGCAAGAATCGTCAAACTTCTCAAGCGCGTGGTAGAGGAACACCAGACTGCTGCCCTGTTCGTGAGCCATGACCTGCCTCTCCTCGCGGAGGTCGCCGACCGAATCGCAATTATGTACGCAGGCCAAGTCATAGAGTCCGGTCCGGCGGGAGAATTGATGTCACGCCCAGAGCACCCATACACCAGGGCGCTGCTGGCGGCCGTTCCGGACGCAACCGGTACTCGTGCACTATCAGGGATCCCCGGGGCGCCGCCGTCGGGAGTTGTAGCTGGAGCCTGTCCTTTCGCACCGCGCTGCCAGTTCAGTATTAAGAGCTGCTCAGAATCCAACCCGAACCTCTTGCCGGTGCGACCATCCCACAACGTCAGGTGCCTGCGAGCCGGCAATTTCGAAAGTCTTGCGATCAGTGACCGAGCTGGAGTTCTAGGAGCGATCGAGGATTCGGCCTCGTTGCTTTCTGTTGATGATGTGTGGTGCGAGTACGGCTCGCGTGGTGGCGCGACGCCTGTAGTCAAGGGGGTCACTTTTAGCGTCGCTCCGGGCGAGACGCTCGCCTTGGTCGGTGAATCGGGCAGCGGAAAATCAACTCTTCTGCGTGCCATTGCGGGACTGCACCCTCGCAGCAGCGGAGAAATTCAGTTTGACGGCGCCGCACTGGCCCCGGACGTGGGAAAGAGGTCACGCTCGGCGCGGCGTGATGTACAAATAGTCTTCCAAAACCCCGACATGTCTCTGAACCCGCGGCACGACGTATTGAGCCTCGTCACAAGGCCACTGCAACTCTTTGAGCCCGAGCTATCCAAAGCCGACCGTGAAGAACGAGTGCGTAAAATTCTGGCGGACGTAAATCTTCCGGAATCAATGGTTCATCGCCGCCCAAGTGAGCTGTCTGGCGGGCAGAAGCAACGCATAGCAATCGCGCGGGCTTTCGTGACGAATCCACGGCTGATTCTTGCCGACGAAATCACCTCAGCACTTGATGTGTCTGTGCAGGCTGCGATACTCGATCTCCTTTCCGGGCTGTCTGCTGAGCATGGCACTTCTGTTGTGTTCGTTACCCATGACCTTGCGGTAGTGCGCGCAATAGCCCATCGTGCGCTCGTTTTGCAGAAGGGCATAGTCAGAGAGATCGGTCGGGTCGCCCAACTATTCGAGTCGCCTGCGGACGACTACACGCGTGAACTGGTTGACGCCATCCCGATGTTTAGGCCCCAAAGCTATGGAGTTGACGCAAGGAGCCCACATACCTGAMSTSVALEVRGLSVGYGLRKGVIKEVVSDVDFVLERGKILGMAGESGCGKSTTALAAIGYRPGAMQVPAGESKLGDIDLLNIPLAQLRRIWGSKVVYMPQASSNGLTPALTIGHQMAEPMKIHLGLTGQANHDRQVELLKEVGVPNPEAALRRYPHQFSGGQQQRINLAIAISCNPEVLILDEPTTGLDVTTQARIVKLLKRVVEEHQTAALFVSHDLPLLAEVADRIAIMYAGQVIESGPAGELMSRPEHPYTRALLAAVPDATGTRALSGIPGAPPSGVVAGACPFAPRCQFSIKSCSESNPNLLPVRPSHNVRCLRAGNFESLAISDRAGVLGAIEDSASLLSVDDVWCEYGSRGGATPVVKGVTFSVAPGETLALVGESGSGKSTLLRAIAGLHPRSSGEIQFDGAALAPDVGKRSRSARRDVQIVFQNPDMSLNPRHDVLSLVTRPLQLFEPELSKADREERVRKILADVNLPESMVHRRPSELSGGQKQRIAIARAFVTNPRLILADEITSALDVSVQAAILDLLSGLSAEHGTSVVFVTHDLAVVRAIAHRALVLQKGIVREIGRVAQLFESPADDYTRELVDAIPMFRPQSYGVDARSPHTPGPT0004435_2022DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_02068126hypothetical proteinATGGCCGAACGGAAAGAATCCGGGACCGGTCCGGCAGCGGCTGAGTCGGCCGAGGTGCGGGAGCTGAAGAAGCGCAACCGCTTGCTGGAGCAGGAGAATGAGATCCTGCGCCGCGCTGCTGCCTAAMAERKESGTGPAAAESAEVRELKKRNRLLEQENEILRRAAANANANANANA
D1-29_02069672hypothetical proteinATGACCTACCCGCTGGTCACGGATCTTGCCGCCGACGGTGTTCCTGTGGCGGTGACCTGCAGGTTGTTGGGATTCAGCAAGCAACCCTATTACCGGTGGAGAGCCAGCCCGGTCACGGAACGGGATTGGGTAGACGCGCACTTGGTTAACACCGCCCTGGACATCCATGCCGACGATCCTGCATTCGGGTATCGGTTCATCGCCGACGAACTCCCCGAGAAGGGCATCCTGGCAGGCGAGAACAAGGTCCAGCGCCTCTGCAGGGACCACGGCGTCTGGTCGGTCTTCTCCAAGAAGCGTGGACTGAACCGGCAACCCGGTCTACCGGTCCACAACGACCTGGTGGAGCGGGACTTCACCGCCGCTACGCCGAACGAGCTGTGGCTGACAGATATCACCGAACACCCCACGGCCGAGGGCAAGCTCTACCTCTGCGCGGTGAAGTACGTCTATTCCGCGAGGATCGTCGGGTATTCGATGGACTGGCGGATGAAGTCGTCCCTGGCGGTGTCCGCGCTGGAGAACGCGGTACGGGCACGCCGTCCGGCAGGGACCGTGGTGCATTCAGATCGTGGGTCCCTACTTCGACGGCAAAGAGGGCTGCTTGTCAGCGATGGTCGAAAAGTGAGCCATTTCGCGGGCTTGGCGTCTAGTTGTCGTTGCAACACCTGAMTYPLVTDLAADGVPVAVTCRLLGFSKQPYYRWRASPVTERDWVDAHLVNTALDIHADDPAFGYRFIADELPEKGILAGENKVQRLCRDHGVWSVFSKKRGLNRQPGLPVHNDLVERDFTAATPNELWLTDITEHPTAEGKLYLCAVKYVYSARIVGYSMDWRMKSSLAVSALENAVRARRPAGTVVHSDRGSLLRRQRGLLVSDGRKVSHFAGLASSCRCNTNANANANANA
D1-29_02070162hypothetical proteinATGATCCGGGACAGGCCTGCCGAAGTGATCGGCAGATTGGTACCAGGGCATTGGGAGGCGGATTTAATCATTGGAAAGGGCAGCCGTTCGTCCATCGCCACACTGGTCGAACGGACCACGCGCTTCATCATCCTCGTACATCAGGCGGGAAACCGCGGTTGAMIRDRPAEVIGRLVPGHWEADLIIGKGSRSSIATLVERTTRFIILVHQAGNRGPGPT0030610_364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
D1-29_02071102hypothetical proteinATGATTCCCATTTTCGAGAACCACGTTGTGCCCTTCTTCTACCAGACCCCTAGGGTGTGCTTGACGATGGTGTCCCAGTCCTTGGCGAGGCTCCCACATTGAMIPIFENHVVPFFYQTPRVCLTMVSQSLARLPHNANANANANA
D1-29_02072363hypothetical proteinATGACAACCGCTTTGAACCACAAACCCACTTTTGATCCAAGCAACGTTAACGACTTTGGTCCGGCAAAAATCGAACATCGAACGGCCGGAAGCGAGCTCAGGCAGCTTGGAACATACATTATGACCTTTCAGGAGAAGGGCTTCAGTGACCCGTGGACGGTTCAGTATGAAGAAACAATCTACGTGATTGAAGGTCAGGCTCGCCTGATCATAATCAACGGCGACCACAAGGAAGACCTAATTGGTGACGCGGACGAACTGCTTGTTCTTCCAAAAGGAACCACTGTCCAGTACAGCGCAACCCCTGGGACCCGGCTCTTGCTTTCCATCAGCCCAGTCCACTGGCGCCACGAAGTCGCTTAGMTTALNHKPTFDPSNVNDFGPAKIEHRTAGSELRQLGTYIMTFQEKGFSDPWTVQYEETIYVIEGQARLIIINGDHKEDLIGDADELLVLPKGTTVQYSATPGTRLLLSISPVHWRHEVANANANANANA
D1-29_02073402COG0824Putative esteraseATGCCGCTCTACCAGCATCGCGTCAGAAACCACGAGGTGGACTCGCAGGGGTTTCTCTTCAACAGCCGCTATCTTGAGCTCGCCGACGTAGCTATGACAGAGTTCTTCCGCAGTATTGGTTGGCCTTACCCGAAACTGGTCGCTGAAGGGACAGATCCGTCTGTTGTCAGCGCAGTTCTTTCTTTCAAATCCCCCGCTTACTTCGACGACAGTCTCGACGTTGACGTCGAGTGCCGAACCGTTGGAAACTCGAGCTTCAAGATTGACGTCTCGATTGCTCGCGATCGCACGGAGGTGGCGAAGGTGGAACTTGTTTACGTAAACGTGGACCCAGCTCAGGCCCGCTCTCGGCCACTTCCGGACGCCGTAGCGCAAGCACTTCTTGGCGCCATACAGGGCTGAMPLYQHRVRNHEVDSQGFLFNSRYLELADVAMTEFFRSIGWPYPKLVAEGTDPSVVSAVLSFKSPAYFDDSLDVDVECRTVGNSSFKIDVSIARDRTEVAKVELVYVNVDPAQARSRPLPDAVAQALLGAIQGPGPT0001850_5405DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-29_02074906hypothetical proteinATGACCAAGGCGTCACTCAAGGTAGCCACCATTCAGTTCGAGCTTCGGGCCGAGAGAACCCTCGAAGAGTATTTGGAACATATGGAGGGGCTGGTCAAGCGCGCGGCGCAGCAACAAGCCGAACTTGTGCTTTTCCCCGAGCTCGCAAGCACGGGGCTCCTCGGAGCAGTCACCGATCACGAAGTGACAACCAACACAATTACATCGGATTACTGGAAGTTCCTGCCCGAGTTTACAGATGGCCTCGTTCAAGGCATGCGCCGGATGGCTCGCGAGAATAACATCGTGGTTGCTGGTGGAAGTCACAACCGGGTCGCCGAGGACGGATCGTTGCGTAATACAGCGTTCATCGCCCACCCGGACGGTCGAATTGAGTCCCAAGACAAAATTCACCTCACACCACAGGAGCACGCGCTTGGCGCCCGCGGAGGCGATGAACTGTTAGTAACAAAGATTGGGCCGTTCACAGTAGGGCTCCTGATCTGCGCTGACATCCAGTTTCCTGAACTCTCACGCTACCTGGTCCATAAGGGCGTCGACCTAATCCTTTGTCCTTCCCTCACCTGGAACCGGCGAGGCGTCCACCGGGTACGCACCGGCTGCCAGGCGCGTGCAATCGAAAACCAACTGTACGTCGTAATGTCACCGTTGTTCGGCACAAGCGGCATTCCGACCGATTCCCCGATGTTCGCGGTGGGAAAGGCCCTGATCGCCGGGCCCGTGGACAAGACAGTGGGAGTCAACGACGGGATCCTAGCCACCACTGCATCAGCTGATGAGGAAGTGCTGGTGGCCGACTTGGACCATGACCTGTTGGTTGCCTCACGGGCGCAACCCGAAGCACCCGGCCTGGCACTGCGGAGGCTGGATCTGTACGCCAAGCTGCAGGCAGAAATGGGGGCCTGAMTKASLKVATIQFELRAERTLEEYLEHMEGLVKRAAQQQAELVLFPELASTGLLGAVTDHEVTTNTITSDYWKFLPEFTDGLVQGMRRMARENNIVVAGGSHNRVAEDGSLRNTAFIAHPDGRIESQDKIHLTPQEHALGARGGDELLVTKIGPFTVGLLICADIQFPELSRYLVHKGVDLILCPSLTWNRRGVHRVRTGCQARAIENQLYVVMSPLFGTSGIPTDSPMFAVGKALIAGPVDKTVGVNDGILATTASADEEVLVADLDHDLLVASRAQPEAPGLALRRLDLYAKLQAEMGANANANANANA
D1-29_020751239hcnC_1COG0665Hydrogen cyanide synthase subunit HcnCATGAGCGCGGACACACTTGCGACAGGTGACATTGTCGTCATAGGAGCAGGGATTGTGGGTCTTTGTACTGCTTGGGAGCTACGCAAACGGGGGTTCGACGTCGTCGTCGTTGAACAGCGGTTTCCTGCCTACGGTGCGTCAGGACGAAACCCTGGTTCAATATGGTTGCAGACACGGCGCGCAGGGGACGAACTGTCACTCGCTCAGGCCGGTAAGGACAAGTACCAAGACTATATAAGCGAACTTGGCGACGTGTTTGACTACCGCAATCAGGGTGGGCTTTTTTTCTTCGAGAATGACGTACAGGCTCGGGTTCTTGAAGATTATGCTGCCGATCGGCGGGCCGCCGGCCTGGACGCAACGATGATTAGTCGTGAAGAGGCTCAGAAGCATTCCTCCATCCTTCCGGAAAGTGCTCTCGGCGCCGTTTTTTGCGCCGATGATGCCCAAGTAGATGGTGTACAGTTTGTCAACGCACTCGCTAGCGCTTGTGTGCGGGCAGGTATCCGCACTTTTGAAAACACGTCCGTCCTTTCCACCCTGCGAACTGGCGAAACCGTAACAGGGGTCCGTACGGTCAGAGGCGAAATTCATGCATCAGGCGTGGTATGGGCAACGGGTGCATGGTCAACCAACCTTCGCGCCGAGGGGATCGATGTCCCCATCGCCACTGCAAGAGTGGGGCAGATGCTGACTCAACCCGTTGATACTCGGCTGAACGCGATTATGCATGGACCGAGGGGGGTCTATGGATGCGGAGCGCTTACTGACCTCCCCACTTATGACGCCAAGGTTTTTCCCGCACCAAACAGTTCCGGCGCGGGAACGAGCCCGACTGCGAAGTCCAGTGTCTCGTTCGTTGGATATGACGACTCGATCGCGCAAAACAGCGGAGGGTCGATATTCATCGGCAACAGTCTTGACGGCAGGGGTTCCCTCAATCCCCACATCAGCATGAACGCTACAAACGCGATGGTTTCAACAACCTTGGACAGATACAGAACCCTTGCTGAATTCGGCGTTACCGGTCTTTGGGCAGGCCTCGGAAGCGAAACAAGTGACCATATGCCAATCGTCGACCGAGCTGACGGTGCCTATATAAATACCGGTCATGCCTGGGGCATTACGAGCGGGCCTATATGCGGCCAGGTAATGGCGGAGATCATCGCTGGGGAATCCAGCAACTTTGCTGGTGCCTTGAAGATGGACAGGTCCTCACTCACAATCGCCGCAGACTAGMSADTLATGDIVVIGAGIVGLCTAWELRKRGFDVVVVEQRFPAYGASGRNPGSIWLQTRRAGDELSLAQAGKDKYQDYISELGDVFDYRNQGGLFFFENDVQARVLEDYAADRRAAGLDATMISREEAQKHSSILPESALGAVFCADDAQVDGVQFVNALASACVRAGIRTFENTSVLSTLRTGETVTGVRTVRGEIHASGVVWATGAWSTNLRAEGIDVPIATARVGQMLTQPVDTRLNAIMHGPRGVYGCGALTDLPTYDAKVFPAPNSSGAGTSPTAKSSVSFVGYDDSIAQNSGGSIFIGNSLDGRGSLNPHISMNATNAMVSTTLDRYRTLAEFGVTGLWAGLGSETSDHMPIVDRADGAYINTGHAWGITSGPICGQVMAEIIAGESSNFAGALKMDRSSLTIAADNANANANANA
D1-29_020761668hypothetical proteinATGATTCATGATCCGACTTCTATACCACTGGGAGCCGTCCTGGCGGACTTGGGTCCTGCTGCGAAGCTTGTCGCGGGGACCGCTTCGCAGCAGTCCAGGCAAGTTCGCGGCGCTGTTGTTTTACTGAAGCCGGAAGACTTGCCCGCCGACATCGATGCGGTCGTCATATGTCCGGGTGCCGACAGTTTTATTGAACTGGTCAGGCACCGCCTCGACGGGCCCGGACGGGTATTCTTCGTCATGTCGTCTGAATTAGCACTATCGGATTGGATTGAAGCTGTCGGGGAGCAGCATGTCGTCATCGCTGTTGATCCAGCCCTGAACGTCGCTAACGTCGTGATGTCCTTTTCCCGATCGATGCAGGTTCCGGAGGAGTCCGTTTCACGCAGATTGGCCTCCTTGCAGAGGGCGCTCAGTCAATCGATGACGGAGGCTGAGCCGATACCGGCGCTCCTTAGCCGGTTGGCGCATGTGTGTAATGCTACCGCCGTCTTAATCGATAGATTTGGTAGTACTGTCCAGGCCACCGGGCCGATACCCATGTCACTTCTGTTCGAAGAGATTGCCCGCACCGAGGCCGATTCCCAAAACGTGGACGTGGACGGTTGGCGTGGCGTGGCAGCTCGAATTTCGGCTCCTGACGAGGCTGACTCACACTTCGGCTGGCTCGTCATCACGGCTCGGCGGAAGAATTTTCCGGATAGCCATTCAACCTCGGCGGCTCACGTGGCGGCAACCCTGGTGGAGGCCAGCCAGCGAATGGCAGTGGCAGCGCGACAGCAAGAACGGGCCATACGCACTGCCGTGCTTGAGGAGGCGCTGGCATTGCGCCGCGAGCCTCACAATCCCGAATTGGCTGCCCGAATCACGGCTTTCGGTCTGTCTTTTGACGACGAGTTGAGGACCATTGTTTTTCGGCCCATTCGTCCTGCAGTTGCTTCGCGGTCGTTGCCAGCGACTGAGGACCTGTCGGAAATGTTAGGCAAAGCGCTGGAGTCGCAGTCCATCGCGTACCTAATGACCGCCAAGGACAAGACAATAACGATAGCGGCGCAGTGCAGTGTTCAGGCCTTCCGGCGAGTGATCGTGGCGGAAGGCTCCAAACTCCCAGGCGCTCTCATTGGAATCGGCCGCTGTGTGCACGCTCTAGGAGACATTCTGGACTCCTTCCAGGATGCGCACCTGGCGGTTCGGACGCTTCGCCGAAATTCGCGGGGTCCAAAGGTCATGGCCTACGAAGACTTCAACTATGCAACGAGGCTTTTCGCTGACGTCGGATTCGACAAGATGATTAAGTGGGCCCAGGAGTTCCTGAAGCCCTTGGAGGGGCGGGAGTTGCTGGTTGAAGGTCTTCAGACGTACTTTGAGCATGCTCAGAACATCAATGCCGCGGCAGACAATCTGGAGATCCACCACAACTCACTGCGGTATCGGATAGCTAAGGCTGAGGAAATCCTGGGCATCAATTTGAGGGAACCGGGTGCCGTCTCTTCCGTCTTCTTAGCACTGACAGCCCTTGAGCTGGGACAGATTCAACAGCCGCGACCCAGGTCGTCGGGCGATACAGGGAGAAGTCGTAGACCATCTGACGTCGAGGCAAGTGACGTCCTGCCCTACTCGAGGCCATCCACCGAAAGAGCCGGTGTAGTTCGTGCACCTGGCAGATGAMIHDPTSIPLGAVLADLGPAAKLVAGTASQQSRQVRGAVVLLKPEDLPADIDAVVICPGADSFIELVRHRLDGPGRVFFVMSSELALSDWIEAVGEQHVVIAVDPALNVANVVMSFSRSMQVPEESVSRRLASLQRALSQSMTEAEPIPALLSRLAHVCNATAVLIDRFGSTVQATGPIPMSLLFEEIARTEADSQNVDVDGWRGVAARISAPDEADSHFGWLVITARRKNFPDSHSTSAAHVAATLVEASQRMAVAARQQERAIRTAVLEEALALRREPHNPELAARITAFGLSFDDELRTIVFRPIRPAVASRSLPATEDLSEMLGKALESQSIAYLMTAKDKTITIAAQCSVQAFRRVIVAEGSKLPGALIGIGRCVHALGDILDSFQDAHLAVRTLRRNSRGPKVMAYEDFNYATRLFADVGFDKMIKWAQEFLKPLEGRELLVEGLQTYFEHAQNINAAADNLEIHHNSLRYRIAKAEEILGINLREPGAVSSVFLALTALELGQIQQPRPRSSGDTGRSRRPSDVEASDVLPYSRPSTERAGVVRAPGRNANANANANA
D1-29_02077756baiA3-alpha-hydroxycholanate dehydrogenase (NADP(+))ATGAATCGTCTTGCGGGCAAGCGCGCCCTCATCACCGGCGGCACGAGTGGGATCGGTCTGGAGACCGCGCAGCGTTTTGTTGCGGAGGGAGCTGAGGTGCTGGTCACAGGCATCACCCCAGCCAGCATCGACAGGGCGCGTCAGATCCTCGGGGACAACGTGCCGGTGGTGCAGGCCGATGCGCGCGATCTCGATGCGCAGCGTGGCCTGGCAGAGCGTGTTCGTGAGCACTTCGGGGAACTCGACATTGCCTTCCTGAACGCCGGCGTCTCGGACTGGCGGCCGTTCGAGGACCACACGGAGGATAGTTTCGGCCGGCTCTTCGACATCAACGTCAAGAGCGTCTTCTTTCTCACGCAGGCCCTGGTCCCCGTGCTGGCTAACCCTTCCTCAGTCATCCTCAACGCGTCCAACAGTGCTCACGGCGGCTATGGTCACTCGAACGCCTACGCCGCGACGAAGGCGGCAGTCAGCTCCCTGATGCGGTCCTGGAACGCGGATCTGCTCAGGTCGCACGGCATCCGGTTCAACGCGGTCAGTCCCGGCCCGGTGGACACCCCCCTGTACTCTAAACTTGGCATCGAGGACCCCGCGCAGCAGACTGCGGTTCTGGAGGCGATCAGCTCCGGCATCCCGCTGGGCCGCATGGGCAGGCCCGAGGAGGTCGCGGAAGCTGTCGTGTATCTGGCATCGGATGTCTCCGCCTTCGCTGTGGGGCAGGATCTTATCCTTGACGGTGGTCAGACCGTCCTCTGAMNRLAGKRALITGGTSGIGLETAQRFVAEGAEVLVTGITPASIDRARQILGDNVPVVQADARDLDAQRGLAERVREHFGELDIAFLNAGVSDWRPFEDHTEDSFGRLFDINVKSVFFLTQALVPVLANPSSVILNASNSAHGGYGHSNAYAATKAAVSSLMRSWNADLLRSHGIRFNAVSPGPVDTPLYSKLGIEDPAQQTAVLEAISSGIPLGRMGRPEEVAEAVVYLASDVSAFAVGQDLILDGGQTVLNANANANANA
D1-29_02078693hypothetical proteinATGACGGTGGCGGACCATAACCGAGCGGAAACCGGCGGCGATTCGTGCCAGGCCGGGTATCACGCGCAGATCAAAGCGGAGAATCGCGCGCGCATTATTCGCGCCGCCCGCGACCTCTTTCTCGCGAAGGGTTACGACAAAACCTCCCTGGCCCAAATCGCCGCGGAGGCCCGCGTCTCGACCGGTACCCTCTTCAAACGGTACCCCTCCAAGGCTGAGCTGTTCGGGGCCGTCACCGCGGAGCAGTGGCAGCTGGATGTAGAGTACGCCGACCCGCCTCCTCCCGGTGATCCCCGGTACGGTCTGGACCACATCGGCCGCGATTACGCTTGCTTGATCTCGCGGACCGGCACTGCGGCGCTGTGCCGTCTCATCATCACCGAACTTCCCCAGATGCCGGAGCTTGCCGACATCGTCGGCAACGGCTTCGCTATCGACCGCGGTCCCTTCTTCGACCGGCTCCGTGTCTATCTGGAGGCCGAAGCACAGGCTGGCACACTCGATTTCCGTTCGGCCGACGGCGAACATCAGTCTGCATCCGCAGTCGCCGAACAGTTCCTCGGCATGATCTGCGGCCAGCTCCTGTGGCCTCAACTTGTAAGGACAGACTTCATTCCGCCTGACCCCGCCGACACCACGATCGTGGACGAAGCCGTAGCCCTCATGCTCACCCGCTATCGCGCTGGATCCTGAMTVADHNRAETGGDSCQAGYHAQIKAENRARIIRAARDLFLAKGYDKTSLAQIAAEARVSTGTLFKRYPSKAELFGAVTAEQWQLDVEYADPPPPGDPRYGLDHIGRDYACLISRTGTAALCRLIITELPQMPELADIVGNGFAIDRGPFFDRLRVYLEAEAQAGTLDFRSADGEHQSASAVAEQFLGMICGQLLWPQLVRTDFIPPDPADTTIVDEAVALMLTRYRAGSNANANANANA
D1-29_02079495adk_1COG0563Adenylate kinaseATGGCAAAATCATATCTGGATGCTGGACAATTTGTACCGGATTCGGTCACGAACGGGATGATCCGTGAGCGACTGGGGCAGAACGACGCAGACAACGGATTTATATTGGATGGATATCCCCGCACTCTAGGTCAGGTTGACTATCTCGATGAGATCCTTGCAGATAAGGGCCACGAACTTGACCTCGTATTGCAGCTCTCTGTTGATACGGACGAACTGATCCAGCGCTTACTCTTGAGGGCCGAACGCGAAAACCGCTCGGACGACACAGCGGAAGTCATCAGAAACAGGATGGCACTGTTTTTCAATCAGACAACCGCCGTTACGTCCCGCTACCGCGAACGCGGCATCTTAGCGGAAGTGAAGGGGGTCGGCAGTATCTCGGACGTATTCAGCAGAGTTTCGACCGCCCTGGATCTGACGCTCGGGTCGTCGTTAAGGCAGACCACTACATTTGCGGCCGATGGCAGTCTCGAGCGGGCACTGCTGGTCTAGMAKSYLDAGQFVPDSVTNGMIRERLGQNDADNGFILDGYPRTLGQVDYLDEILADKGHELDLVLQLSVDTDELIQRLLLRAERENRSDDTAEVIRNRMALFFNQTTAVTSRYRERGILAEVKGVGSISDVFSRVSTALDLTLGSSLRQTTTFAADGSLERALLVPGPT0009040_6788DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
D1-29_02080816pgdAPeptidoglycan deacetylaseATGTCCCGAGGTGAATTCGGTGCCCTAGTCGGCGCCCCACGACTCCTTGACGTCTTCCGGCGCTACGGAATTACCACGACATGGTGTGTGCCCACACATACCATGCAAACATTCCGCAGCTCGGTGGATGCAATTGTCGAGTCCGGGCATGAGATCGGCGCTCACGGCGTCTACCACGAATACGTGCCGGCACTCGATAAAGCCGAGGAAGAACGGCTGCTGGAACTGCAAATAGCTCAGCACGAACGACTCCTGGGTACGCGTCCTCGCGGATACCGCTCGCCTGCACTGGACGTTACCGACAACACGCTCGATCTCCTTGCGAAATTCGAGTTTGACTGGGACTCGTCCTTGATGGGCAGGGACTTCGAGCCATACCGGCCCCGGATGGTGGTCGGCGTTAGCGAGGAAGAGGGAAACACCTTCGGCCCAGAGAGCAGCGTCCTCGAGTTCCCGGTGTCCTGGTTCCTCGACGATTTCCCCGAACTCGAGTCTTTCAAGGGAAACACGCTCATGCAGAGCAACGAGACGGTTCTGGCTCGCTGGATTGACAGCTTCAATTTCGCATATGAGCGATGTGCCGGGGGCGCGATGACGTGGACACTACACCCGCAGACCATTGGTCGGGCACACAACCTCGTAATGCTCGAAAAGTTCCTCGATCACGTCACTTCATTTGAAGATGTATGGTTTCCAACGCTCTCCGAGCTCTTCACTTGCTGGCAAGACGACACTGCGCCAGCGACGGCATCCTCCCCCGCAGTTTCCAGGCCCGCGCTGAATGACCTCGGTCCGCTAGACAGGATGCTTCCATGAMSRGEFGALVGAPRLLDVFRRYGITTTWCVPTHTMQTFRSSVDAIVESGHEIGAHGVYHEYVPALDKAEEERLLELQIAQHERLLGTRPRGYRSPALDVTDNTLDLLAKFEFDWDSSLMGRDFEPYRPRMVVGVSEEEGNTFGPESSVLEFPVSWFLDDFPELESFKGNTLMQSNETVLARWIDSFNFAYERCAGGAMTWTLHPQTIGRAHNLVMLEKFLDHVTSFEDVWFPTLSELFTCWQDDTAPATASSPAVSRPALNDLGPLDRMLPPGPT0018645_2325DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-29_02081486paaZ_1COG2030Bifunctional protein PaaZTTGACTACTCACACACTCGGCACGACCAATGAGTCAGCCGTACGCTACCTGGACGAGCTGGAACTTGGCCAGCAATGGACATCAGCAGGAAGAACCGTCACGGAGTTCGATGTCGTCACCTTCGCTACATGGTCAGGAGACATGCACCCGTTGCATACCAACGAGGAGTACGCCAAGACAACAGAATTCGGCACCAGGCTCTTCCATGGTCCCGGCGCACTTTCGATTGCCTTTGGGCTGGAAATGGCATTGGGATGGAAAAACGGCTCCGCGATCGCCTTTCTGGGAATCGACAACTGGAACCTCCGGGCCCCGATCCGCATTGGCGACACCATCAGTGTTCGTGAAGAAGTGATCGGCATCAAGCCGTCTGCCAGCAAGCCCGACCGTGGAGTTGTAACTACCCGCGTTCAAATTCTGAATCAGAACGGCGTGGTCTGCCAGGAAGGCGACTGGATTGTCCTCCTATCCCGTCGCCCGGCCTAGMTTHTLGTTNESAVRYLDELELGQQWTSAGRTVTEFDVVTFATWSGDMHPLHTNEEYAKTTEFGTRLFHGPGALSIAFGLEMALGWKNGSAIAFLGIDNWNLRAPIRIGDTISVREEVIGIKPSASKPDRGVVTTRVQILNQNGVVCQEGDWIVLLSRRPAPGPT0014741_104DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014741-phaJ|croR-K17865NANA
D1-29_020821227hcnC_2Hydrogen cyanide synthase subunit HcnCATGAACCTCGACAAGGCCGGTGTGGTTGTTGTAGGCGGCGGGATAGTAGGTGTAACAACCGCGTACTATCTTGCTTCAAAAGGGCACGATGTTGTGCTGCTCGAACAGCGGGAACTTGGCCACGGCGCTTCCGGGCGAAATCTCGGATTCCTCCACATGCAGAATCGTCATGGCGACTACGCCGTCGAACTGACCCGTGCGGGGAGGGCCCTGTACGACGACTTTGCAGACATCCTCGGGCCATCTTTTGAATACAGAAGCAACGGTGCCATGACGTTCTTCTATACGGACGATCAGCGGCGGGTCTATAAGGAATTCGTAGAAGCCAGGATCGCAGACGGATTCAAAGCCGAACTCCTTGACGACCAGGCCGCTCATGAAGCCGCCCCGATATTGCCGCCCGATGTTATTGGAGCCACGTTCAGCCCGGAAGATGGCCAAATTCGTACGCCGAAGTTCGTCCGTGCCTTGGCGCAGGAATGCCGCAGGCTCGGTGTTCGAATTCATGAAAACACGCCGGTCCTCGGACTCCTACGGAATGGCTCAAAAGTAGTCGGAGTACAAACAGTCGGCGGCAGCGTTTCAGCGGACAAGGTCGTTTGGGCAACTGGCGTCTGGTCTACAATGCTCGAATCAGAGGGTGTAACCGTACCCATCAAGCCACACAGGCTGGGTGCTGTCCTAATGGCTCCTGTAGAGGAGAAGCTCGATAAAATCCTGAATGGACCGCTTGCTGCGAAGCAATACGCCCACATCCGGAACCTCCCCAGTTACCGGGACGAGTACTTCACCTCCCCTTCAGAGGACCAATCACAGGGCCTCGAACACATGGAATGTGTGGCCAAGACCGAGGACGGGAATCTATTCATAGGCTGCCCGATGGACTACCCTGACCAACTCGACGACAGGATGCCTGCCGCCGCTCTAAAGTTGGCCATCGATTCATTGCTCACAACCTTCCCCAACTACAGGTCTCTCGGTATTGAACGTGCCTGGGCTGGCCTCGTCCCCGCCACAGCTGACTCCCTCCCGATCGTTGACGAGGTGGAGGAACTTCCCGGGCTGATTCTGGCCACCGGCCACGTCTACGGCAACTTGGCCGGCCCGATCACAGGGAAGCTGGTGGCCGAACTCATCTCAGGTGAGCGCCTCAGCCTCCCCCTGGACGAACTATCCCTCTACCGGCCGTCCCTGACCACCCCGGTAGACGGAGTCATTCGCTATTAGMNLDKAGVVVVGGGIVGVTTAYYLASKGHDVVLLEQRELGHGASGRNLGFLHMQNRHGDYAVELTRAGRALYDDFADILGPSFEYRSNGAMTFFYTDDQRRVYKEFVEARIADGFKAELLDDQAAHEAAPILPPDVIGATFSPEDGQIRTPKFVRALAQECRRLGVRIHENTPVLGLLRNGSKVVGVQTVGGSVSADKVVWATGVWSTMLESEGVTVPIKPHRLGAVLMAPVEEKLDKILNGPLAAKQYAHIRNLPSYRDEYFTSPSEDQSQGLEHMECVAKTEDGNLFIGCPMDYPDQLDDRMPAAALKLAIDSLLTTFPNYRSLGIERAWAGLVPATADSLPIVDEVEELPGLILATGHVYGNLAGPITGKLVAELISGERLSLPLDELSLYRPSLTTPVDGVIRYNANANANANA
D1-29_020831542lcfB_2COG0318Long-chain-fatty-acid--CoA ligaseATGAATGAAACGTCGCCGGAGCTAACGGATTGCGTCTCCGCGCTGGAATGCATCGCCGAACAATACCCAAATAATACAGCGATTGTCGACGGCGACACGTTCATGAGCTACAAAGATCTCCAGAGATCGATTGAGCATCGCTCAGCTGTGCTGCTTGCGGCCGGCCTCAAGTCGGGTTATCGCGTGGCCCTCGTCGCGGAAAGCTCAGCGGACTATCTCGCCACAGCCCTCGCTGTATGGCGCAGCGGCGGTGTCCTGGTTACTGTCTATCCTTCTTCTGGTCCAGAGGACCTGGAATATGCCATTGCCACAAGTGAACCTGCGCTGATAATCACCTCCGAAAGCGTTGATCCTGCGCATATCGCCCCTGCCGCGCGAAATGCCCCAATTGTCGATATCGTTGACTTCCACGTAACCAGTGTTCGGCACGACGCTCTACCCAACCCTGAGGGTCTTCGAGAACCCCTGTCCATGATCTGCTTCTCGTCCGGCACCACCAGCCGCCCGAAAGCGATCATGCTTTCTGCCACAGCCGTATATAACTGCGCAAACACCTACGGCGAAGTCTGGCACCTTTCACCCGAAGACAAGGCAATTATCTGTCTGCCGATGGCATGGCTCTATGGGCTTGCAAGCACATCTCTGGCCGTCCTGCTAAGCGGCGGGACAGTGGTGATAGTCCGGAGGGCTCGTCCAGACATGATTGCTCCCGCCATTGAGGAGCATTCCGCCACGTTCCTCGCCGGTGTGACGGCGACTTTCGGAAAGCTGGCCCAGTACGCTGAACTCCGAGCCGGGGATAAGCCGGCATTCCCATCACTTCGACTGTGCATCTCAGGCGGAGAGCCCAGGAACGAAGCAGCATTCAGCCGCTGGGAGGCCCAAACTGGACTGCCAGTTCTGGACGCGTACTGCGCGTCCGAATGCCTACCGCTGGTGACTTACGACCCCGTCGCGAACCCCACGCCCAAACCCGGGTCGGCAGGCAAGCTTGTGCCGCGGTCGAAGCTAAAGGTTCTCGACGCCGAGGGAGCGGAAGTACCAGCCGGGGAGGTTGGGGAAGCGTACTCGACTGGACCGGGGTTGATGCTCGGGTATTGGCGTGACGAAGAACAAACGAGGACTGTCATAACTGATGACGGCTGGTATCGCACAAAAGATCTTGTTCGGGTGGATGAGGACGGTTTCGTCTACGTCGTTGGTCGGCTCTCCGACGTCATCATCCGTGGCGGAACAAACATCTCGCCGGCAGAAGTTGAGCGTGTACTTCAGCAGCATGCCTCAGTTGGTGAAGTGGCAGTGGTTGGTCTTCCCGATGACGTCTACGGCCAGCGTGTTGTGGCCGCTGTCGTCCCCAGGGGCATAGCGCCTCTTGACGAAGCCGAACTGAAGGGATTCGCTGCGGCCCGCCTGTCGTCGTATAAGGTCCCCAGTGAGTTCGTCGCAGTCGACTCCCTCCCAGTGAATTCGACAACCGGCAAAGTCAATAGGCGGGACGTGGCGACGCTGCTGACAGCGGAGAAGAGCCAGGGCAGGGCATAAMNETSPELTDCVSALECIAEQYPNNTAIVDGDTFMSYKDLQRSIEHRSAVLLAAGLKSGYRVALVAESSADYLATALAVWRSGGVLVTVYPSSGPEDLEYAIATSEPALIITSESVDPAHIAPAARNAPIVDIVDFHVTSVRHDALPNPEGLREPLSMICFSSGTTSRPKAIMLSATAVYNCANTYGEVWHLSPEDKAIICLPMAWLYGLASTSLAVLLSGGTVVIVRRARPDMIAPAIEEHSATFLAGVTATFGKLAQYAELRAGDKPAFPSLRLCISGGEPRNEAAFSRWEAQTGLPVLDAYCASECLPLVTYDPVANPTPKPGSAGKLVPRSKLKVLDAEGAEVPAGEVGEAYSTGPGLMLGYWRDEEQTRTVITDDGWYRTKDLVRVDEDGFVYVVGRLSDVIIRGGTNISPAEVERVLQQHASVGEVAVVGLPDDVYGQRVVAAVVPRGIAPLDEAELKGFAAARLSSYKVPSEFVAVDSLPVNSTTGKVNRRDVATLLTAEKSQGRAPGPT0008380_14021DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_020841053COG2070Putative monooxygenaseGTGATCAAGACAGCATTGACGGAGGCCCTGAGCCTCAAATACCCCGTCTGCTCAGCCGGCATGGCGCGTGTCGCTCAGGCCGGACTCGTCACCGCGGTCAGTAACGCGGGCGGCTTGGGATGCCTGGGCGGCGTCAGCTTCATGCCGGATGACCTTCGGGCCGAAATCAAGAAGATCGAAGCTGGAACCGACAAGCCCTACGCGATTAATCTCCTGCTGCCGGACTCACTCACCACCGAAGATGAAACACAATGGGCGCCAGTGCGCGAACTGTGGAAATCACTTTCCGGAGCCGACCAAGAAAAGATGGCAGGTGTAGAAGCGCTTTTGACGCCGGGGGCCGTAGCAGACCAGGTGCAGATCGTCCTGGACGCGGCACCTTCCGCGGTTGTTTTGACGTTCGCTACACCGGATTGGTTCATCAAAGAGTGTAAGGATCGCGGAATCACGGTGTTCTCGCTTGTCGGCTCAGTGGGCAAGGCACAGGAAGCTAGTGCAGCGGGTGTTGACTTTATTGTCGCTCAGGGCAGTGAGGCCGGCGGGCACACAGGATACGCATCTACTATGACCCTCGTCCCTGCCGTTATTGATGTGGTGGATCAGCCAGTCCTGGCCGCTGGCGGCATCGCCGATGGCCGCGGGCTGGCCGCCTCACTCGCTTTAGGTGCAGCAGGAGTCTGGGTGGGAACGCGCTTCATTGCCAGCCCCGAAGCTTACGGGCACGACAATTTCAAGAACCGAGTGGTGGGAGGATCCTTCAAGGACAGCACCATCACCTACTCATACAGCGGTAAGCGTATGCGTGCATTCGAGAACAAATGGACCTCGGAATGGGAGTCTTCGGATAAAAAACCCGCAGGCTTCCCCGGACAATACGCCGTCGCCGGCACGCGCGTCGAAACAGGATATCTGGACGGAGACATGGACTTCGGAATGATGCCGGTGGGCCAGACCATGCAGCTTGTTCACGAAATTCTGCCTGCTGGTGAGATCGTCGAGAATATGGCATCAGATGCAGAAAAAATCCTGCGTGGACTTGCAGCCGGAAAATAGMIKTALTEALSLKYPVCSAGMARVAQAGLVTAVSNAGGLGCLGGVSFMPDDLRAEIKKIEAGTDKPYAINLLLPDSLTTEDETQWAPVRELWKSLSGADQEKMAGVEALLTPGAVADQVQIVLDAAPSAVVLTFATPDWFIKECKDRGITVFSLVGSVGKAQEASAAGVDFIVAQGSEAGGHTGYASTMTLVPAVIDVVDQPVLAAGGIADGRGLAASLALGAAGVWVGTRFIASPEAYGHDNFKNRVVGGSFKDSTITYSYSGKRMRAFENKWTSEWESSDKKPAGFPGQYAVAGTRVETGYLDGDMDFGMMPVGQTMQLVHEILPAGEIVENMASDAEKILRGLAAGKNANANANANA
D1-29_02085780COG10283-beta-hydroxycholanate 3-dehydrogenase (NAD(+)) 2ATGGGAAGCAAAAGCGTAATTATCACCGGATCCGGATCCGGCATCGGCCGGGCCATTGCCCAGGCATTCGTCGAAGCAGACTACGAAGTCTATGCGAGTGACGTTTCAGAGGAACGTCTGGCGGAGACTCGGCAAGAGCTCGGCTCTCCGGGCTCACTCCACACCAGGGTCGTAGACGTTAGCGACTACCAGTCTGTGTCTGCTTTGGTGGACGAGGTTGTGGAGAAGACAGGCAAACTGGACGTTATGGTCAATAGCGCGGGAGTCTTCGACGGGTATGCCGACGTGCTCGAAACGACGCCCGAGTTGTGGGCCAAGATTATTGGCGTCAACCTAACAGGAACGTTCTATGGCTGCCGTGCAGCAGCACAGGTGATGACGAAGCAGAACTGCGGTCGCATCATTACAATCGGCTCCGTCGCCGGCCAAAGGGGTGCAGCGGACGGCATCTCATACGTCGCATCCAAGGCGGGTATAGAGGGGCTGAATCGTCGTCTCGCCATCGATGTTGCCCCGCACGGGATAACAGCCAACGTTGTCGCCCCGGGAGTCATCAAGACAAACCTTCGCGCCACTTCCGAGGAGATCCTGGGTGATCTCGTTTCAACGCAGCAGCGCGGCATCGGGGTGTCGCCCGAGATCATGGACTTCCTCATTCCGGCAAAGCGATCCGGCGAACCCTCCGAGGTGGCGAGCGTAGTGCTGTTCCTCGCGTCCGACGCTGCTGGTTATGTCAACGGGCAAACTATCCAGGTCGATGGCGGCTGGAACGCGACGTAGMGSKSVIITGSGSGIGRAIAQAFVEADYEVYASDVSEERLAETRQELGSPGSLHTRVVDVSDYQSVSALVDEVVEKTGKLDVMVNSAGVFDGYADVLETTPELWAKIIGVNLTGTFYGCRAAAQVMTKQNCGRIITIGSVAGQRGAADGISYVASKAGIEGLNRRLAIDVAPHGITANVVAPGVIKTNLRATSEEILGDLVSTQQRGIGVSPEIMDFLIPAKRSGEPSEVASVVLFLASDAAGYVNGQTIQVDGGWNATPGPT0003180_5058DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_02086171hypothetical proteinATGCTCCAGGCTGGTCCGCAGTATCCGTTGGCAATGTTTCTCCCGAACCGTAAAGTTTCTCAAAAGGGCCTGCGGGGCTGGGCAACTAGACGAGCCAAGCTCCAAAGTATGTCGGCCATGTCCTTGAACTTTAGAATCAACCGCATCATCCTGGCATTGGAGATTTTCTGAMLQAGPQYPLAMFLPNRKVSQKGLRGWATRRAKLQSMSAMSLNFRINRIILALEIFNANANANANA
D1-29_02087663hypothetical proteinGTGCTGGACGCGGTCCTGAGCGGAGTCCTGGATTACGGTCTCGAAAAGCCGGGGACAGTAGCTGCGCGGTTTGCCGTATCCGCAAATCCAAGTATGGCTATCGGCATGTCAGCTGCCTGCCTATCAGTGGGAAAGCACACCCTGGCAACTGAGGACAGCGGACGTTTCATGCTGGCTACCCATGACGAGTTTCTGAGATCCGGCCTCACGCTCGAAGCTTTTGCCGAGGAAAAGGTGAACCGGATGCGTGCGGCAAAGGAGCGCATCCCCGGCTTGGGGCACCCTATTTTCAAGGTTGTCGATCCCCGCGCGGAACGGCTCCGGTCGATTGCCCGGCAAGAGGGTTTGTGGGGTCAGACGGCTGAGGTATACGAGGCAGTTCATAAGGCCTTCACAAAACTTCCAGGTAAGTCTGATGTTCCGATAAATGACGTTGGTGCTATGGCCGCCATTCTGCTGGGGCTTGGCTTCACACCCGAAGAAGGGACAGGGGTTGCCCTGCTCTCGACCCTGCCTGGGGTGATAGCACACGTGTCTGAGGAACTCTCCGCTGGCAAGCCAATCCGCATTGTCCCGAGAGGCTCCGCATCTTATGAGGGGACCACTGATCGGGACTTTGATGCCGACAGACTTCAGGCCGGCTGGAGCCCTTCCGGGTCCTAGMLDAVLSGVLDYGLEKPGTVAARFAVSANPSMAIGMSAACLSVGKHTLATEDSGRFMLATHDEFLRSGLTLEAFAEEKVNRMRAAKERIPGLGHPIFKVVDPRAERLRSIARQEGLWGQTAEVYEAVHKAFTKLPGKSDVPINDVGAMAAILLGLGFTPEEGTGVALLSTLPGVIAHVSEELSAGKPIRIVPRGSASYEGTTDRDFDADRLQAGWSPSGSPGPT0001355_5DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001355-ccl-K15234NANA
D1-29_02088495paaZ_2COG2030Bifunctional protein PaaZATGAGTGCAAGATCAGAGAATCGTCCGATTCCTTCAGCAACTCGATTCCTTGAGGATCTCCGGATCGGAAATTCGTGGTCGTCTCAAGGACGAACAATCACAGAGACGGATCTGCTCACCTTCGCTACCTGGTCCGGGGATATGCATCCGCTCCACACCAACGAAGAGTTTGCCCGTGGTACTCAGTTTCGAGAACGGGTTTTCCACGGTCAGGGGACTCTCGCCATAGCTTTTGGACTGGAAATGGGACTGGGCTGGAAGGAACGTTCGGCCATAGCATTTCTAGGCATTTACGACTGGAAACTTATTGCTCCCGTACGCATCGGCGACACAATCGCAATACGGGAAGAAGTAGTGGAGCTGCGGCCTTCTGCGAGTAAACCAGACCGGGGCATCGTGAAGACCAAACTCCAGATACTCAATCAGCGAGGCGAAGTTTGCCAGGAGGGCTTCTGGGTCGTTCTCCTGTATCGGTCTGCTGCCTACACACCATGAMSARSENRPIPSATRFLEDLRIGNSWSSQGRTITETDLLTFATWSGDMHPLHTNEEFARGTQFRERVFHGQGTLAIAFGLEMGLGWKERSAIAFLGIYDWKLIAPVRIGDTIAIREEVVELRPSASKPDRGIVKTKLQILNQRGEVCQEGFWVVLLYRSAAYTPPGPT0014741_104DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014741-phaJ|croR-K17865NANA
D1-29_02089708hypothetical proteinATGGAACCGCCGGTTCCACGGCTTGCGGTAAGCGTGGTTCTGATGCGGGATTCCCGGCACGGAGTAGAAGTATTTGTCCAATGCAGGGCACTTACTATGGATTTTGCTGCTGGTGTGGTTGCGTTCCCCGGGGGCCGAGTCGACGCCAGTGACTTCTCGTACGCGGCTGTCAGCGGAAGACTATTGGAGCACCACGCCAAGGCCTGGAGGCGGACCAGCGTTTGGGCCGATGTAACAAAGGCGCGGCACACGTCCGCTTGCCTCCTGTCTGCCGCCGTGCGTGAACTGGCAGAAGAATGCGATGTTGTCCTCCAACCGGAAGACTTGGTCCCGTGGGCAAACTGGATCACACCGGAGGGCTTTCCCAAACGTTTCGATACGTTCTTTTTTGTCACTGCTGTAGCGCCCGATCTGGAGCCCAAGCATGTCACGACGGAGGCAACATCGTCGCAATGGATGCCGGTGCGAAAGATCCTCCTGGACGAAGCTGCCGGAAGGCTTAGGCTCCTGCCCCCAACGGTGGCAATTCTAGATGAAATTGCGGAAGTGGATACCACCAACAAAGTGCTTTCGGGGAAACGGACAATCGAGTCGGTGTGCCTACGCCTTGATGAAATAGAGGAGTTCCATCGCCTGCGGCACCAGAGCACGGGGGACACCCGGAAGCAGCCTTGGTACAGGGCTGTCCGCGCTGGACATCAACGATGAMEPPVPRLAVSVVLMRDSRHGVEVFVQCRALTMDFAAGVVAFPGGRVDASDFSYAAVSGRLLEHHAKAWRRTSVWADVTKARHTSACLLSAAVRELAEECDVVLQPEDLVPWANWITPEGFPKRFDTFFFVTAVAPDLEPKHVTTEATSSQWMPVRKILLDEAAGRLRLLPPTVAILDEIAEVDTTNKVLSGKRTIESVCLRLDEIEEFHRLRHQSTGDTRKQPWYRAVRAGHQRNANANANANA
D1-29_020901722cocE_1Cocaine esteraseATGAGTGCAACTGAACTTGGATTGAGTAACGAGGCGGCAAAATCTGGTGAAGTCGTGGCCGCATCGGTGCTCACGGAGTTCGATGTGCCTGCGCGCATGCGCGACGGTGTTGTGTTGCGGGCCGACATTTACCGGCCTGTGGGTGAGGGACCATGGCCGACGTTGGTGATCCGCACGCCCTATGGAAAGGGCTCGATGTGGGAGAACGAGTGGAACGGCATATCGCCCACCGAGGCGGCCCGGCGTGGCTTCATTGTAGTCATCCAGGATGTCCGTGGCCGAAATGCGTCAGACGGAATGTGGGCGCCCGTCCTTAACGAGGGCCGCGACGGGGCCGACACTATCGCCTGGGCCGCCGATCTAGCGGGCTCAAGCGGTCGCGTGGGGTTGGTCGGCGGAAGCTACTGCGGCAACACGCAAATGATGGCGGCGCTTGAACAACCGCCCGCGCTCAAAGTAATTGCACCACTGATGACCTGGTCGGAGCCGCGTGATGGCCTGGTGGCCCGCGGAGGTGCAGTTGAGCTCGCCATTGGAATCGCCTGGCCCCTGGTTCAGGGCTTCGACTGGTTGACCCGCATTGGTCTGACGGGTGACGAGGCATCGGAGCGGGCCGGTGCACTCATCTCAGAGGTCGACAGGTTGCCCGAGGACGGGTACTGGGGCCTCCCGGTCACCGAGATGCCGGTGGTACGCCGGCACGAGATCCCAGGGTTCGTCGAACTGGGGGAGGCTAACGATGACGAAGCGACCCGACACATGCGCGTCGCAGGGCGGCACGAGCGGATTCAGGTTCCGGGCTTTTTTACCACCGGCTGGTTTGACACTCTCCAGCAGGGGACTCTTGACAACTACATGGCAATGCGGGCACTCGGACTCGAGACGCGCTTGATCGTCGGCCCATGGTCGCACAGCGACTTCATGAACGAAGTCGGCGAACAGGAGTTCGGCGTCATGTCGATGCGGGACGCGCACGCCTTTCCGAATGGTGCATGGAGCGACGAGGTACTGGCTTTCTTGCGGCATCATCTTGTCGATGACGCCCCCGCCGGGGATGCGTCGCCCGTGCAACTGTTTGTCATGGGCCGCAACGAGTGGCGCAACGAGGAATCCTGGCCTTTGGAGCGCGCCCGTATGGAGCAATGGAATCTGCACGCCGGGGGGAGCCTTAGCAAAGCGGCGCCGGCTGGCGACGCAGTGCCGACCGAGCTTGACTACGACCCTTCGGATCCGGTTCCCACGTACGGCGGGCCCCTCAACCTCCCCGCCATTGTGCGGGGTCCGGTTGACCAGGCGCGTATCGAAGCGCGGCCGGACGTCCTCGTCTTCACTTCGGACGTACTAAAGGAGGACCTTGAGGTAACGGGCCGCATCCGGGTTCGACTGCATGTCCAGAGCTCGGCGCCCTCGGCCGACTGGGTCGCGCGCCTGTGCGACGTCGACCCGGACGGCCGCTCGATGAACCTCACTGACGGAATCGTTCGCATCCATCAAGGCGCCGATGAAAGTCGCGAGATCGAGATTGATCTGTGGTCTACGAGCAACGTCTTCGTCGCTGGCCATCGCGTGCGGGTACAGATTACGAATAGCTGCTTCCCACGTTGGGATCGCAACCTAAGCACCGGGGACCAGAGCCAGCCTGGATTCACCACAGCGCGTCAGCGCCTTTACCACGACGGCGCCCGCCCGTCTTACATCGAGCTGCCTGTAATCCCTTCGTGAMSATELGLSNEAAKSGEVVAASVLTEFDVPARMRDGVVLRADIYRPVGEGPWPTLVIRTPYGKGSMWENEWNGISPTEAARRGFIVVIQDVRGRNASDGMWAPVLNEGRDGADTIAWAADLAGSSGRVGLVGGSYCGNTQMMAALEQPPALKVIAPLMTWSEPRDGLVARGGAVELAIGIAWPLVQGFDWLTRIGLTGDEASERAGALISEVDRLPEDGYWGLPVTEMPVVRRHEIPGFVELGEANDDEATRHMRVAGRHERIQVPGFFTTGWFDTLQQGTLDNYMAMRALGLETRLIVGPWSHSDFMNEVGEQEFGVMSMRDAHAFPNGAWSDEVLAFLRHHLVDDAPAGDASPVQLFVMGRNEWRNEESWPLERARMEQWNLHAGGSLSKAAPAGDAVPTELDYDPSDPVPTYGGPLNLPAIVRGPVDQARIEARPDVLVFTSDVLKEDLEVTGRIRVRLHVQSSAPSADWVARLCDVDPDGRSMNLTDGIVRIHQGADESREIEIDLWSTSNVFVAGHRVRVQITNSCFPRWDRNLSTGDQSQPGFTTARQRLYHDGARPSYIELPVIPSNANANANANA
D1-29_02091501hypothetical proteinATGACTCAAGATGTCCTCTCCACCCCGGGCCATGCAGCGGTGCTTGCCCGGCTGGAAGCGGCGGGCGTGCTTGCCGAAGTAACGGGCCACCGCATTGCCGCGTATTCCTATAATGCATCCAACTACAGGGTTCCGCCTGTTGCCGTGGTCTTCCCCCGAAGCGTCCAGGACGTCGTCGCTGCCGCAGCCGCATGTCGGGAAACCGGCACACCGCTGGTGAGCCGGGGTGGCGGGACATCCATTGCCGGCAACGCCATCGGCCCCGGCATTGTTCTGGACTTTTCCCGGTACATGAACCGGATCAATAGCGTCGATGAGGCAACCAAAACCGCCGACGTCGACCCCGGCGTGGTCCTCTCCCACCTCACCCTTGAGACCGAGAGGGTCAGGGGTGGGAGGCTCACGTTCGCGCCGGACCCTTCGTCAATGAACCGCGTCACCATCGGCGGCTCTCTCGGGAACGACGCGTGCGGGTGCACGCCAGGATGTGAAGTGCAGTGAMTQDVLSTPGHAAVLARLEAAGVLAEVTGHRIAAYSYNASNYRVPPVAVVFPRSVQDVVAAAAACRETGTPLVSRGGGTSIAGNAIGPGIVLDFSRYMNRINSVDEATKTADVDPGVVLSHLTLETERVRGGRLTFAPDPSSMNRVTIGGSLGNDACGCTPGCEVQNANANANANA
D1-29_020921740leuA_1COG01192-isopropylmalate synthaseATGCAAAACGCACAAAAGCCCTCAGGAATGCCCGCCCACCGCTACACGCCGTTCCAGGACCAGATTAAGGTGGAACTGCCAGACCGCACCTGGCCGGACAAGATCATCGCCAAAGCGCCCCGCTGGTGCGCGGTGGACCTGCGCGACGGCAACCAGTCACTGATCGATCCCATGAGCCCGGCGCGCAAGATGAAGATGTTCGACCTGCTGGTCCGCATGGGCTACAAGGAGATCGAGCTCGGGTTCCCTTCCGCCTCTCAGACCGACTTCGATTTCGTCCGGCAGCTCATCGAGGGCAACCATATCCCGGACGATGTGACCATCCAGGTCCTGACCCAGGCCCGTGAACACCTGATTGAGCGGACCTACGAATCCCTGGTGGGCGCCAAGCAGGCCATCGTCCACCTCTACAACGCTACCTCGGTGTTGCAGCGCCGCGTGGTGTTCAACCAGGACGAGGATGGGATTCTGGATATCGCCCTCCAAGGCGCGCGACTCTGCAAAAAATACGAGGAAACGCTCGTTGACACGCATGTCATCTATGAGTACTCACCGGAATCCTTTACGGGTACGGAACTGGAGTACGCGGCGCGGGTGTGCAATGCCGTGGCCGATGTTTTTGAAGCCTCCGCTGACCGGCAGGTCATCATTAACCTGCCTGCCACGGTGGAAATGGCCACGCCCAACGTGTACGCGGATTCGATCGAGTGGATGAGCCGGCATCTGCACCCTCGGGAGGGCATCATCCTGTCCATGCACCCGCACAACGACCGCGGAACGGGAGTTGCCGCCGCGGAACTGGGATACATGGCCGGCGCTGAGCGGATTGAAGGCTGCCTGTTCGGCAACGGCGAGCGGACCGGCAACGTTGACCTGGTGACCCTGGGCCTGAACCTTTTCGTCCAGGGCATCGATCCCATGATTGACTTCTCCAATATTGACGAGGTCCGCCGTACGGTGGAGTACTGCAACCAGCTGCCCGTCCCGGAGCGTTCCCCCTACGGTGGCGACCTGGTATTCACGGCGTTCTCCGGCTCGCACCAGGACGCCATCAAGAAGGGCTTCGAGGCACTGGAGCGGGACGCGGCCGCTGCCGGCAAGGACGTAGCCGACTTCACCTGGCAGGTGCCTTACCTGCCCATCGACCCCAAGGACCTGGGCCGCAGCTACGAAGCCGTCATCCGGGTAAACTCCCAGTCCGGCAAGGGCGGCGTAGCGTACCTGCTCAAGAACGAGCACAGCGTAGACCTGCCCCGCCGGGCCCAGATCGAATTCTCCGCGGTTATCCAGCGCCGCACGGACACGGTTGGCGGGGAGATCAGCGGCGCGCAGCTCTGGCAGATCTTCCAGGACGAATACCTGCCCTCCGGCGAGGCTGACGGGCAGTGGGGCCGCTACTCGCTGGGCGCGGTCAAGACGGAAACAGATGACGACGGCGGCATGACGCTTCACGCCTCACTCACTGTGGACGGCGTGCAGGTTCAGCGCACCGGCACCGGCAACGGCCCTATCGCTGCCCTGCTGAGCATCCTTCGGGAGGATGGCGTGGACGTCCGCGTGTTGGACTACAGCGAGCACGCACTCTCCGAGGGCGGCAACGCGATGGCTGCAGCATACGTTGAATGTGCCGTGGGGGAGCGCTTGCTGTGGGGCGTCGGCATCGACGCCAACACGAGCACGGCCGCGCTCAAGGCTGTGATCTCCGCGGTGAACCGAGCCATTCGGGACGCCCAGGCATGAMQNAQKPSGMPAHRYTPFQDQIKVELPDRTWPDKIIAKAPRWCAVDLRDGNQSLIDPMSPARKMKMFDLLVRMGYKEIELGFPSASQTDFDFVRQLIEGNHIPDDVTIQVLTQAREHLIERTYESLVGAKQAIVHLYNATSVLQRRVVFNQDEDGILDIALQGARLCKKYEETLVDTHVIYEYSPESFTGTELEYAARVCNAVADVFEASADRQVIINLPATVEMATPNVYADSIEWMSRHLHPREGIILSMHPHNDRGTGVAAAELGYMAGAERIEGCLFGNGERTGNVDLVTLGLNLFVQGIDPMIDFSNIDEVRRTVEYCNQLPVPERSPYGGDLVFTAFSGSHQDAIKKGFEALERDAAAAGKDVADFTWQVPYLPIDPKDLGRSYEAVIRVNSQSGKGGVAYLLKNEHSVDLPRRAQIEFSAVIQRRTDTVGGEISGAQLWQIFQDEYLPSGEADGQWGRYSLGAVKTETDDDGGMTLHASLTVDGVQVQRTGTGNGPIAALLSILREDGVDVRVLDYSEHALSEGGNAMAAAYVECAVGERLLWGVGIDANTSTAALKAVISAVNRAIRDAQANANANANANA
D1-29_020932145fadJ_3COG1024Fatty acid oxidation complex subunit alphaATGACAAACCCGACTCGCTCAGTAACTCAATCCGGTGATCCTGAGGCACACGCCGTTCGCGGCCTCTCTTCCTATGCACAACTGACAGAAGTCCAACTGCCTGGAGCAGGCACCTTCGCATTGATCACGCTTACGGGCGGTGAGGGCAAACCTGCCACCTTTAGCCCTGAGTCGCTGCTGGGACTCCAAGAGATGCTTGTGGAAGTCGCGAAGGGAGTCGAATCCGGACACGTGGCTGGGGTTGGCATCACCGGCCAGAACCGGTTTTTCGTGGCCGGCGCAGACCTAAAGGCTCTGAAAGGCCTGAAGGACCTGGAGTCGTCCCGAGCTGTTGCGCGCCTGGGTCACCAGGTGTTTGGCGCACTCGCAGCTATGGACGTTCCAACCTTCGCCTTCATCAATGGTGCGGCCATAGGCGGCGGGTTGGAAGTCGCGTTGGCAGCCCGCTACCGTACAATCTCAACGGACGCGACAGGGATCTCCCTGCCCGAGGCCTACCTCGGCCTGGTGCCCGGCTGGGGCGGAGTGTACCGACTTCCTCGGCTCATCGGGCCCGCTAATGCGGTGAAGGTGATGATCGAGAACCCGCTGGCCAACAACAAGGTTCTTGACGGCAGGTCAGCCAATGAGCTTGGTATTGCAGACACTATATTCGACAGTCCCGATTTCCTGAGTCAGTCCCTGGCCTGGGCGGACCGGATTATCACCGATACTGCACACCGGGAAGAACTTTATCAACGGCGGGCCTCGATTGCCGGCTCCTCTCAGGAAGAGTGGGACGCGGCCGTGGCTGCGGGTCGGGCCATCGTTAAGTCCAAGACGTCCAATGCTGCACCTGCCCCTGCTCGTCTGCTGGACCTGCTCGAACTGGGCAGGAGTCTAGACCAGGCACAATCCGCAGAGTTGGAAGTCGACGCACTCGGCGAACTGATCTTGACACCGCAGTTCAAGGATTCCGTGTACGCGTTTCTTGAACTTCTACAGCGTAGGGCCAAGAACCCGTCAGGCGCACCCGATCCCGCGCTGGCCCGCCCGATCAACAAGGTCGGAGTTGTCGGCGCGGGCCTGATGGCCGGCCAGCTAGCCCTGCTGTTTGCCCGACAACTGCAGGTGCCCGTTGTGATGACGGACATCGACCAAGGCCGCGTCGATAAAGGAGTAGGTCACGTCCACGCCCAGATCGACAAACTGTCTACCCGGAAACGCATCTCCCTGGACGACGCCGATCACCTTAAAACCCTTATTAGCGGCTCGGTGTCCACGACCGCCTTTGCCGACGCTGACTTCGTGATCGAGGCGGTCTTCGAAGAACTCTCCGTCAAGAAGCAGGTCCTCGCAGAAGTTGAGTCCGTCGTTTCGGAAAAGTGCATTATTGCCACCAACACGTCCTCGTTACTGGTGACGGAGATGGCCGCAGACCTACTGTACCCGGAACGCGTTATCGGATTTCACTTTTTTAATCCGGTGGCCGCTATGCCCTTGCTGGAGATCGTTTGGACCTCCAAGACCAGCGACGAAGTCCTGGCCGCAGCGTTTGTCCTCGGCAGGGCGCTGAAGAAGACTACGGTCCTCGTCCGTGATGCGCCGGCCTTCGTTGTCAACCGCGTGCTGCTGCGTTCGGTGGCGGAGGTTCTAAAGGCCTTTGACGAAGGGACTCCTCCTGAGATCGCGGACGGGGCACTCAAGCCCATGGGCCTGCCAATGACCCCATTCACGTTGTTGGCCATGATCGGGCTTCCAGTCGCGCAACACGTCATTGAATCTCTCCATCACGCCTTCGGCGATAGATTCCCCATCTCTACCAATCTACAAAAACTTATCGACCACGGCATAACGTCGCTCTGGGCTCCTGAACACGATGGCAGCCCGCGCATCCCACAGGCCACGATGGGCCTCCTGGAATTCGCTCACTGCCCGACCACCTCGGAGCAACTGCTCGAACGAATCCAGGACGCCTTGGCAGAAGAGATCGGGCTGCTGCTTGACGAGGGAGTGGTGGCTTCCGCGGAGGACGTGGACTTGTGCATGATGGCCGGCGCTGGCTGGCCGCTGCATCTGGGCGGCATCACCCCATACTTGGACCGAACGGGTGCCTCCGAGAGAGTCAACGGCAAGCCCTTTCACTTGGATAGCCGAAGGCCCTAAMTNPTRSVTQSGDPEAHAVRGLSSYAQLTEVQLPGAGTFALITLTGGEGKPATFSPESLLGLQEMLVEVAKGVESGHVAGVGITGQNRFFVAGADLKALKGLKDLESSRAVARLGHQVFGALAAMDVPTFAFINGAAIGGGLEVALAARYRTISTDATGISLPEAYLGLVPGWGGVYRLPRLIGPANAVKVMIENPLANNKVLDGRSANELGIADTIFDSPDFLSQSLAWADRIITDTAHREELYQRRASIAGSSQEEWDAAVAAGRAIVKSKTSNAAPAPARLLDLLELGRSLDQAQSAELEVDALGELILTPQFKDSVYAFLELLQRRAKNPSGAPDPALARPINKVGVVGAGLMAGQLALLFARQLQVPVVMTDIDQGRVDKGVGHVHAQIDKLSTRKRISLDDADHLKTLISGSVSTTAFADADFVIEAVFEELSVKKQVLAEVESVVSEKCIIATNTSSLLVTEMAADLLYPERVIGFHFFNPVAAMPLLEIVWTSKTSDEVLAAAFVLGRALKKTTVLVRDAPAFVVNRVLLRSVAEVLKAFDEGTPPEIADGALKPMGLPMTPFTLLAMIGLPVAQHVIESLHHAFGDRFPISTNLQKLIDHGITSLWAPEHDGSPRIPQATMGLLEFAHCPTTSEQLLERIQDALAEEIGLLLDEGVVASAEDVDLCMMAGAGWPLHLGGITPYLDRTGASERVNGKPFHLDSRRPNANANANANA
D1-29_02094786hypothetical proteinGTGGACAAAGGGCAAGCAGTCGACGAAGCGGCCGGATGGCTTTCACACAATGAGGCTGTTCCTAACAAGACCGAGCTGCAGCGACCAGCCGCCGCCCGGGGGAGTAACCGTCCAGCAGGCAGGGAAGAGCAGACGTCGGCGCCGAGGCGTCGCACGCAGCAGGAGCGGCGGGAGGAAGCCGAGACCCGGCTTCTTGCCGCCGCGCGGACCCTGCTTTCGCGCAAAGGTTGGGTGGGAATGACCCTGGCCGAAGTCGGCCAGACGGCAGGCTACAGCCGGGGACAGGCTGCTCATCACTTCGGCAGCAAGGGTGCGCTGTTGCGCGCCCTGACTCTGCACATCAATCGGTCGTTCGCCCAGGAGATGCAAGCTGCGCCAACGCCCCCCGCTGGCCTGCAGGCCGTACTCGGCTATGTCCGCGTCTACCTGGGCCGAAGCGACCCGAAGTGGACGAACACCCGCACGCTCCTACTACTGCTGGCGGAGTCCCTTCTCGAGAACTCGGAGACGGCCGAAGTTGTCGCTGTATATAACCGTGAGATGTTTGCGTGGCTGGAGGACAACCTGCGCATAGGAATTGCCCAGGGCGAGGTGCGTGGCGACATCGATCCAGCGATCGGGGCGGAGTTCGTCGTGGGCGCCCTTCGTGGCCTTGCATCCCAGCGTCTCATACAAGGATCGGCGGCAGACATACGTGGAATCAGGGATCAGGTCGTGCAATTAGTCGAACATACATTCGCGGCACCCACCGATCGCGAACGGAAGGAAGGAGCAAACGATGGATGAMDKGQAVDEAAGWLSHNEAVPNKTELQRPAAARGSNRPAGREEQTSAPRRRTQQERREEAETRLLAAARTLLSRKGWVGMTLAEVGQTAGYSRGQAAHHFGSKGALLRALTLHINRSFAQEMQAAPTPPAGLQAVLGYVRVYLGRSDPKWTNTRTLLLLLAESLLENSETAEVVAVYNREMFAWLEDNLRIGIAQGEVRGDIDPAIGAEFVVGALRGLASQRLIQGSAADIRGIRDQVVQLVEHTFAAPTDRERKEGANDGNANANANANA
D1-29_020951071caiA_1Crotonobetainyl-CoA reductaseATGGATGATGACACTCGAGAGATGCTCCATCAAACGGCGGCGAGCATTTTCGCCGATGGACCCCCTGACTTATGGGAGGTTCTGCGAAGCGTCGGTTTTGACAAGGCTTTGGTGCCTGAGAGCAATGGCGGCGTCGGCGTGAGCTGGGCGATTGCCTGCGAGCTCTTGGGGATCGCTGGCAAGCACGCCGCTGCTGTGCCGATGGCCGAAGCCATGATTGGGCATTGGCTCCTAGACCTTGCGGGCATTGAAGACGCAGAGTTGCCGACAATCGCCTTTTCTCCGCCCTTGGAACCGGTTCGGCTCAGCCGATCTGGCGACGAGTGGCACGTCGACGGCCCTCTCGTTCGTGTGCCTTGGGGCAGCGCATGCACGCACGTCGCGTTCATGAGTGAGGGCCCAGCGGCCCAGCTGATCGTTGTTGCCCGCCATGCATCCGGCGTCTCGATTACGCCCGGTCAAAACCTCGCAGGGGAGCCGCGCGACGACATGACGCTCGAAGGCGTCGTCCCGCTTGCCGTGGCGCCTGTGCCGTTTGAGTCCAATTCGCTGCTGGCGATCGCTGCAGTCATGCGCAGTGCTCTGATGGCGGGTGCCATCGAACGTGCCTTGGCTTTAACCGTGGATTACGCAAATATGCGGGTCCAATTCGGCCGGCCGATTGGCAAGTTTCAGGCGGTCCAGCAGAACATTGCCGTACTTGCGACGCAGGCAGCAGCCGCGCGCGCAGCGACCGAAGCCGGCGGTGAGGCGATTGACGGCTGGCTCGCTGGTGAGAACGCGTCCCTCACGCACAACGTTGCCGCGGTAAGTGCGAAGATCCGCACCGGTGAAGCGGCCGGACAAGCCTCCGCGATCGCTCACCAGGTATTCGGCGCGATCGGCTTCACTGAGGAACACGAATTGCATCGCTTCACGAAGCGGCTCTGGTCCTGGCGCGACGAATACGGCAACGAAGCGTTTTGGGCCGACGTCCTTGGGGAACGCATCCTGGCCAACGAATCTGAGAAAACCCTCTGGCGCACGCTGGCGCCGACGGGCATTGGCCTCGAAATAGGAGCGACGCGATGAMDDDTREMLHQTAASIFADGPPDLWEVLRSVGFDKALVPESNGGVGVSWAIACELLGIAGKHAAAVPMAEAMIGHWLLDLAGIEDAELPTIAFSPPLEPVRLSRSGDEWHVDGPLVRVPWGSACTHVAFMSEGPAAQLIVVARHASGVSITPGQNLAGEPRDDMTLEGVVPLAVAPVPFESNSLLAIAAVMRSALMAGAIERALALTVDYANMRVQFGRPIGKFQAVQQNIAVLATQAAAARAATEAGGEAIDGWLAGENASLTHNVAAVSAKIRTGEAAGQASAIAHQVFGAIGFTEEHELHRFTKRLWSWRDEYGNEAFWADVLGERILANESEKTLWRTLAPTGIGLEIGATRPGPT0008385_8944DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-29_020961146caiA_2Crotonobetainyl-CoA reductaseATGAGCAACCTGTCCTTTCCGCGCCCTCGGCAGTCCGAGGTCGGCGAGCGGCTGCGGGCAGAGGTACGCGAGTTCCTCGACGATTTTGATTGGCGGGGCGACCCACATGCAGCCAGCGTTTTTGGTGGCTACGATCCTGAGTTTAGCGAAGCGCTGGGCGCGCGCGGATGGATCGGCATGGGCTTTCCCCAGCGCTATGGCGGTGGCGGCTACGGCCTCGTTGAACGCTATGTGGTTATGGAGGAACTGCTCGCCGCCCGGGCTCCCATCACTGCACACTCTGTAGCCGACCGGCAGAGCGGCCAACTGCTGCTCCGGTTCGGCAGTGAGAGCCAACGCGAAGAAATCCTGCCCCGCATCGCCGCTGGCAAGTCCTACTTCTGTATTGGAATGAGCGAGCCGGACTCCGGGTCGGACTTGGCATCGGTTCGTACCCGCGCCACGAAAGTGGACGGAGGCTGGCTTGTAAACGGCGCGAAAATCTGGACCACGAATGCGCACCGCAGCCACTACATGATCCTGCTCTGCCGCACCTCGCCGGCAGGCCAGGAGCGCCACGCGGGCCTTAGCCAGTTCCTGGTCGATATGAAGACGCCCGGAATCGTGTGTCAGCCGATCGTCAACATCGCCGGAGTGCACGACTTCAATGAAGTGCACCTGCAAGATGCTTTTCTCCCCGACGAGGCGCTCATCGGGGTCGAAGGTGAAGGATGGAAACAGGTTACGAGTGAGCTGGCGTTCGAACGTAGCGGGCCGGAGCGCTTTCTGTCTCATCTCGGTGTGTTGGAAGAATTCGTCCGCGTCTTGAAGAGTCAACCGTCTGCTGTGGGAGCCAGGGCCCTCGGGCGCCTGGTTGCCCACCTCACCACGCTGCGGCGGATGTCGCGCAGTGTGGCTACGATGATCGCTGATGGTCAGGATGCCGCACTGCACGCCGCGCTGGTAAAAGACCTGGGCACCTGCTTCGAACAGGAAATTCCCGAGATCTTGCGGCTCGCGCTGCAAGCTGAGCCCGATCCCAACGCCTCCGACGCGTATCGGGCTGCCCTGGCCCACGTGGTCTTGAACGCGCCTTCCTCCACGATCCGCGGCGGAACCAAAGAGGTGCTGCGTGGCATCGTCGCGAAGGGTTTGGGACTGCGATGAMSNLSFPRPRQSEVGERLRAEVREFLDDFDWRGDPHAASVFGGYDPEFSEALGARGWIGMGFPQRYGGGGYGLVERYVVMEELLAARAPITAHSVADRQSGQLLLRFGSESQREEILPRIAAGKSYFCIGMSEPDSGSDLASVRTRATKVDGGWLVNGAKIWTTNAHRSHYMILLCRTSPAGQERHAGLSQFLVDMKTPGIVCQPIVNIAGVHDFNEVHLQDAFLPDEALIGVEGEGWKQVTSELAFERSGPERFLSHLGVLEEFVRVLKSQPSAVGARALGRLVAHLTTLRRMSRSVATMIADGQDAALHAALVKDLGTCFEQEIPEILRLALQAEPDPNASDAYRAALAHVVLNAPSSTIRGGTKEVLRGIVAKGLGLRPGPT0008385_7307DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-29_02097798paaFCOG10242,3-dehydroadipyl-CoA hydrataseATGTCAATAGAGCTGTCAACGGAGACGGACGAACTTCAACTGCAGCAGAGCGGGCACGTCCTGTGGCTCAGGCTTAACCGGCCGCAGGCGTTGAATGCGCTTACCGCGTCGCTGGTGGATGATCTGACCAGGGTCATAGGGGACGCCGAGGAAGATCCGGAGGTGCGGGTCATTGTCCTCACTGGTACCGGTAGGGCTTTCTGCGCGGGCGCAGATTTGAAGGACAGTGCAAAGCGCAGTCCCGAAAGCGGTGCCCGATTTGTAAAAAAAATTGGTGAACTCACGAATTTGATCGAGGAGTGCACTAAACCTGTGATCGCGGCGATTAACGGTATTGCTATCGCTGGTGGTCTGGAATTGGTGTTGGCTTGCGATGTCGTTATCGCGGCGGAGTCGGCGGTCCTCGGGGACGCTCATTCGAATTACGCGATGTTCCCTGGGGCGGGCGCCACGGTGCGTTTGCCGCGGAAGATTGGCCTCAACAATGCTAAGTATTTGATGTTCACGGGCGATATGCCGGCGGCCCGCGACTGGCTGGCGATGGGGCTGGTGAGCCAAGTGATCCCAGACGAGGGCCTCAACGACGCGGTGTCGGCGCTGGCCAGCAAGCTTGCCGGTAAGAGCCCGTTGGGGTTGGCAAGAATGAAGCAGGCCCTGAATGACTCACTGGATCAGCCGGCAAACATCGGACTGCGTTACGAACGGGCGTTGGTTAACCTCTATAGCCACTCTGCCGACCGTGTCGAGGGCCTGGCGGCCTTCCGGGAAAAACGCACCCCACATTTCCAGGGTAAATAGMSIELSTETDELQLQQSGHVLWLRLNRPQALNALTASLVDDLTRVIGDAEEDPEVRVIVLTGTGRAFCAGADLKDSAKRSPESGARFVKKIGELTNLIEECTKPVIAAINGIAIAGGLELVLACDVVIAAESAVLGDAHSNYAMFPGAGATVRLPRKIGLNNAKYLMFTGDMPAARDWLAMGLVSQVIPDEGLNDAVSALASKLAGKSPLGLARMKQALNDSLDQPANIGLRYERALVNLYSHSADRVEGLAAFREKRTPHFQGKPGPT0001860_3929DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-29_020981203smtBCOG1804Succinyl-CoA--L-malate CoA-transferase beta subunitATGGAACTGAATGACAAAGGGCCGTTGTCAGGTATACGAGTGATCGATGTGGGCACCATGGTCGCCGGGCCTGTCGCTGCAACTCTGATGGCCGATTTCGGCGCTGAGGTGATCAAGGTCGAGCAACCCGGCAAAGGAGACACTTTGCGTCATATCGGCCCGAGCTTGGGTGATGGTGAGAGCTTGTGGTGGAACGTCGAGGGGCGCAACAAGAAATCTATCACGCTCGATTTACGTCAACCCGAGGGGCAACGGATCCTGAAGGAGTTAGTGAAGGGCGCCGATGTCCTGGTAGAGAATTTTCGACCCGGAACCTTGGAACGCTGGAACCTTGCCTGGAAAGATTTAGAGCAGGTGAACCCCGGGCTGGTGATGCTCAGCGTCTCCGGATATGGGCAAACCGGCCCCTACGCACCCCGAGCGGGCTATGACCGGATGGGCCTTGCCTTGGGTGGGGTGTTGAACGCGACGGGATACCCTGACCGGGCTCCGGTGAAGGTCGGTGTTGCCATTGCTGATTATCAGACAGCGGTGCTTGCAGCCTTCGGGACGATGGTTGCCCTCTACAACAGGGACGTCAGCGGCGGGAAGGGTCAGCAGATCGATCTTTCGCTGTTTGAAACGGTCTTCCGATTCACTGACGTAATGGTGACCGCGTACGACAAGTTTGGCCACACGCGGGAGCGCACGGGGAACCTCCATTTCGCGGCCGCGCCGGGGGACCACTTCGAAACGATCGATGGGCGCCATATCGTCCTGACGGTATCGTCGGACCGCATGTTCCGCCGCCTGTGCGAAGCAATACCGGAGTTGATCGGTGATAAGCGGTTCACCACGCACACGGATCGCATCGCCAACATCGAGGAGATAAATCGACTCGTTGGGGTGTGGATCAAGTCTCTGCCGGTTCCGGAACTGTGCCAAATCCTGGACGACAAGGGCCTGGCCTACTCCCTCATCTACTCTATCGAGGATATCGTTGCCGACCCGCAGTACCAGTCGCGGGGCACCATCGCCACCGTCGAGAATCCAAGGCTCGGTCCCCTGAAAATGCCGGCACCGCAGCCAAGGTTCAGTCGGACGCCAGCGCCTGTGATGCGCCCAGCACCCGAGTTGGGCTTTCACACGGACGAGGTCCTGGGCGAACTCATAGGTCTCTCGGCCGAGCAGATCGCAGGACTGCGTAAGGCGGGCACCATCTAAMELNDKGPLSGIRVIDVGTMVAGPVAATLMADFGAEVIKVEQPGKGDTLRHIGPSLGDGESLWWNVEGRNKKSITLDLRQPEGQRILKELVKGADVLVENFRPGTLERWNLAWKDLEQVNPGLVMLSVSGYGQTGPYAPRAGYDRMGLALGGVLNATGYPDRAPVKVGVAIADYQTAVLAAFGTMVALYNRDVSGGKGQQIDLSLFETVFRFTDVMVTAYDKFGHTRERTGNLHFAAAPGDHFETIDGRHIVLTVSSDRMFRRLCEAIPELIGDKRFTTHTDRIANIEEINRLVGVWIKSLPVPELCQILDDKGLAYSLIYSIEDIVADPQYQSRGTIATVENPRLGPLKMPAPQPRFSRTPAPVMRPAPELGFHTDEVLGELIGLSAEQIAGLRKAGTIPGPT0002130_486DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0002130-frc|yfdW-K07749NANA
D1-29_02099726cnbAChloronitrobenzene nitroreductaseTTGATAGCATCACGCGTCACGGCCGAAGTGCAGGACCCGACAAGTGTGGAAGTCGCCATCGAGAGCCGCTTCTCATGCCGGGCGTTCCTTCCGGACAAGGCAGTTGCCCGAAGCGACATCCAGGAAATACTTCGCGTCGCTAGTCAAGCCGCATCTGGCACGAATACCCAACCGTGGAAGGTGTACGTACTACAGGGCAATCAACGGGACAACCTCGTGGACCAGGTCTGTGCGGTGGACGACGCTGTCTACTCTGATCCCGGCCTGGCAGAAAAGCACCGCGAGAAGGTCGACTACTACCCGGCAGAATGGGTCTCACCGTATATCGACCGGCGCCGTCAGAATGGCTGGAGCTTGTATGACCTTCTCGGCATCGGCAGGGGAGAGAAGGACAAGATGCATGCACAGCTACAGCGTAATTACCGCTTCTTTGATGCCCCCGTGGGGCTGATCTTTACGGTCGATAGGGTCATGGGGCGAGGATCACTCATCGATTACGGAATGTTCCTGCAGAACATCATGCTTATGGCCCGGGCGCGGGGGCTGCACACCTGCCCTCAGGCGGCATGGAACTACTATGCGAAGACCATCATGCCGATCATAGGTGCTGGTGCGGACGAAATGCTGGTTTGCGGTATGTCCCTTGGCTACGCCGATGAGTCAGCGCCAGTGAACACACTCGTTACCCCGAGGGAAACAGTGGACAGTTTCACGCAGTGGGTTTGAMIASRVTAEVQDPTSVEVAIESRFSCRAFLPDKAVARSDIQEILRVASQAASGTNTQPWKVYVLQGNQRDNLVDQVCAVDDAVYSDPGLAEKHREKVDYYPAEWVSPYIDRRRQNGWSLYDLLGIGRGEKDKMHAQLQRNYRFFDAPVGLIFTVDRVMGRGSLIDYGMFLQNIMLMARARGLHTCPQAAWNYYAKTIMPIIGAGADEMLVCGMSLGYADESAPVNTLVTPRETVDSFTQWVNANANANANA
D1-29_021001173bktBCOG0183Beta-ketothiolase BktBGTGGAGAAAATCATCGTCCTGGACGGTGCGCGCACCCCCACCGGCAGCTTCGGCGGCATCTTCAAGGATGTGCCCGGCCACGTGCTGGGGGCGACGGCCAGCAAAGCAGCCTTGGAACGGGCCGATGTTACGGGCGACGACATCGACGAAGTCGTCATGGGTTGCATCGGCCAGGTGGGGGCCGACGCGTACAACGCGCGGCGGGTCGCGGTGACGGCAGGACTGCCTACAGGGGTTCCCGCCTACAACGTGAACCGGCTGTGCGGCTCGGGCTTGCAGGCCATCTGGTCGGCAGCCATGGAAATGCAATGGAACCAGCTTGACTTCGCTCTGGCTGGCGGCAACGAGTCCATGACGAGGATGCCGTTCTACGACTTCGGCGCGCGCCAGGGCTACCGTCTTGGCGACCGTTCCCTTAGCGACGGCACTCTCATGATGCTCACAGACCCCTTCCACGGCATCCACATGGGGGTTACCGCCGAGAATGTAGCCAGCAAATACAATGTTTCACGCTTGGAACAGGACGAGTTCGCTGTCGAATCTCAACGCCGCGCCGCTGCGCCCGAGGCTCAGGCAGCGTTCGCTGAGGAAATAACGCCAGTTAATGTCGCAGGTCGAAAGCCTTTCACAGCTGAGAAGGATGAGCACCCCAAGCCGGAGACAAGCCTGGAGACCTTGGCGGGATTGCGTCCGGCCTTTGCCACTGGTGGGACCGTTACGGCCGGCAATGCATCGGGCATCAACGACGGCGCCGCCGCCGTCGTTCTGGCTCGCGAGTCAGCGGCCGCCGAGCGTGGCTTGAAGGGCTTGGTTAGTCTTGAGGCCGTTGCCACGGCCGCCATGGAACCGGAACTCATGGGATACGCACCCACGCTGGCTCTGAGGTCCTTGTTCGAGAAGACCGGCACGACCCCAAAGGATATCGGTTCGATTGAACTGAACGAGGCCTTCGCCTCGCAGGCTGTCGCTGTCATTCGGGACGCCGACCTCGATCCGGCCCAGGTCAATCCCTACGGCGGAGCTATTGCCCTTGGCCATCCAGTCGGTGCTACCGGGGCGATCCTGACGCTACGTCTTGCCAAGGACATGGCGCGCCGGGATCTTGAACTCGGAATTGTCACCATGTGCATCGGCGGAGGACAAGCACTGGCAGCACTCTTCCGGAGGATCTGAMEKIIVLDGARTPTGSFGGIFKDVPGHVLGATASKAALERADVTGDDIDEVVMGCIGQVGADAYNARRVAVTAGLPTGVPAYNVNRLCGSGLQAIWSAAMEMQWNQLDFALAGGNESMTRMPFYDFGARQGYRLGDRSLSDGTLMMLTDPFHGIHMGVTAENVASKYNVSRLEQDEFAVESQRRAAAPEAQAAFAEEITPVNVAGRKPFTAEKDEHPKPETSLETLAGLRPAFATGGTVTAGNASGINDGAAAVVLARESAAAERGLKGLVSLEAVATAAMEPELMGYAPTLALRSLFEKTGTTPKDIGSIELNEAFASQAVAVIRDADLDPAQVNPYGGAIALGHPVGATGAILTLRLAKDMARRDLELGIVTMCIGGGQALAALFRRIPGPT0008320_9268DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_02101753paaGCOG10241,2-epoxyphenylacetyl-CoA isomeraseATGCCAAAGCCGGTAACTCTAACTACTGCGGGCGGCGTCGGACACCTGCAGCTCAACCGCCCGGAGGCAGCCAACACGATAAATATGCCCTTAGCCGTGGCGCTCGGAGAGGCGGTTAACCGCGTTGCGGAGGACGACGCGGTTAAGGCGGTCTTGCTGACCGGTAACGGCAGGCGGTTCTGTGCCGGTGGAGACATTTCTGCGTTCGCTGAGTCCTCAGACCAAGGTCAATTCCTGACTGAGCTGGCGGCCACCGTTGATGGGGCTGTGCAGGCCCTCGAATCTCTGCAGAAGCCCGTGGTGGCGGCCGTCCACGGAGCCGTTGCAGGTGGTGGGCTTGGCATCATGCTGGCCGCCGACGTCATCATCGCAGCGGAAGGTACAAGTTTTGTGTTTGCCTACCCCTCCATCGGCCTGACTCCCGACTGTGGCACCTCCGTCAGCTTGCCCCGGGCCATGGGGCTACACCGCGCACTGGCCTTTGCCCTATCCGGGCGGCCATTGAACACCAGTCAAGCGCTTAATCAGGGACTTGTTACAGAAGTCGTTGTCGACCCAATGGCCCGCGCTCAAGAGGTGGTCGCAGCTTGGGTGGCCGGTGCGCCCGGTGCGCTCGGCGATGTCCGAAGGCTGCTGCGCCAGGGCCTCGGCCTTTCGCGCGGGGAGGTAGGCGCACGCGAGGCTGTGACCATCGGTGAGCGCATGGCCACGGACGAGGCTCAATTCCTCATTCCTGCATTCCTTAGTCGCTGAMPKPVTLTTAGGVGHLQLNRPEAANTINMPLAVALGEAVNRVAEDDAVKAVLLTGNGRRFCAGGDISAFAESSDQGQFLTELAATVDGAVQALESLQKPVVAAVHGAVAGGGLGIMLAADVIIAAEGTSFVFAYPSIGLTPDCGTSVSLPRAMGLHRALAFALSGRPLNTSQALNQGLVTEVVVDPMARAQEVVAAWVAGAPGALGDVRRLLRQGLGLSRGEVGAREAVTIGERMATDEAQFLIPAFLSRPGPT0006070_2979DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
D1-29_02102774etfB_2COG2086Electron transfer flavoprotein subunit betaATGAAGATTGTTGTGTTGGCGAAGCAGGTTCCGGACACATGGTCTGATCGTAAGATCGACTTGGAATCCGGAATGCTGGACCGCGGTGCGTCCGAGCCCGTGCCGGACGAGATCAATGAACGGGCTCTGGAGAATGCCCTTCAGCTCAAGGATTCGCGCAAAGATACCGAAATTGTGGTGATCGCAATGGGGCCGGAGGACGCGGGTAAGACCCTCCGGAAGCTGTTGTCCATGGGCGCGGATTCCGCCGTTTTGGTCTCGGACGAGTCCCTGGCGGGTTCCGACATGGTGCAGACAGCGCGGGTGCTGGCTGCCGCCGTCGCAAAGCTAGGAGGGGTGGATCTGGTCGTCGCCGGCAACGCGGCCACGGACGGACGGGGCGGAATGGTCCCAGCGATGATAGCCGAGATTCTGGGGTGGCCGGTACTGCCAGGCTTGGATGAGGTAGTAATCGCCCCGGATGCCGTGTCAGGTTGGGCCCAGGTGGACGGCGGCGCTTTGCGCTTGTCATCGGCTTTGCCAGCAGTGGTATCGGTCACGGAGAAGTCCGCGGATGCCCGCTTTCCAAACTTCAAGGGGATTATGGCGGCGAAGAAGAAGCCCTTGGCGAGTTGGTCGCTCGTTGATCTGGGGATCGCTGCCACTCCGGAAGTCGCATCGGTGATGGTCTCGGCATCGGCCCGCCCTGCCAAGCAGGCCGGACCGAAGGTTGTCGACGACGGCGCCGCGGCAGCACAGCTGGCCGAGTTCCTGGCCGCGAACCGCCTCATCTGAMKIVVLAKQVPDTWSDRKIDLESGMLDRGASEPVPDEINERALENALQLKDSRKDTEIVVIAMGPEDAGKTLRKLLSMGADSAVLVSDESLAGSDMVQTARVLAAAVAKLGGVDLVVAGNAATDGRGGMVPAMIAEILGWPVLPGLDEVVIAPDAVSGWAQVDGGALRLSSALPAVVSVTEKSADARFPNFKGIMAAKKKPLASWSLVDLGIAATPEVASVMVSASARPAKQAGPKVVDDGAAAAQLAEFLAANRLIPGPT0001035_1623DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-29_02103990etfA_2COG2025Electron transfer flavoprotein subunit alphaATGGCAAACACCGGAAACGTTCTGGTCCTGATCGAGACGACCCGCGAGGGATCGCCGAAGTCCACTGCGGCTGGCCTGCTCAGGCTGGCTGCCGACCTCGGCACGCCCGTAGCAGTGGCAGTTACTGCCCCAGGGCGGTCCGGGGACTTGGCCATTGACTTGGGGACCTTGGGCGCGGCCCAGGTGTACCTGGCCGAATCTGAGAGCGCCGCCACCGAATTGGGGTCCGCGCAGGTCGGTGCCATGGCAGATGCGGTACATATGTACGGGGCCGGCCTGGTGTTGATACCGGCGACGAACGATTCCAACGCTGTGGCAGGCAGACTCGCAATCGTGACTGGCGGTTCCGTAGCCGCTGATGCGGTCGCGGTTCGCTTTGACGAGGAGAGCCAGGAGATCATTGCTTGCCATTCAGTGTTCGGTGGCGACTTCACAACTGAGTCGACTGTGGAAGGCGGCCTGATGGTGGTTACAGTGCGTCCGGGCTCCATTGAGGGCTGGGCCGAGGCCGTCGCATCCCCTGAGGTCACGACCGCGCACATAGCAACCACGACGGCGACCGGAGCCAGGATCGATGAGGCCACCCAGTCCGCGGCGAAAGCAGGCCGACCCGTGTTGAGAGGGGCGAAGACCGTTGTCGCTGGCGGACGCGGCGTTGGTTCGAAGGAGGCGTTTAGGGTGGTGGAGGACCTTGCCGACGTGTTGGGCGCCGCGGTGGGTGCCTCGCGTGCTGCCGTTGATGCCGGGTACGTGCCGCAGTCCTACCAGGTGGGTCAGACTGGCGTGACGGTGACCCCGCAACTCTATGTGGCGCTGGGAATCTCCGGGGCGATCCAGCACCGGGCAGGGATGCAAACTTCCAAAACGATCGTTGCTATCAATAAGGACGAGGATGCTCCGATCTTCGACGTCGCCGATTTCGGCATCGTCGGTGACGTGTTCACTGTGGTCCCACAGCTGATCGAAGAGATCAACAACCGACGCAGCTGAMANTGNVLVLIETTREGSPKSTAAGLLRLAADLGTPVAVAVTAPGRSGDLAIDLGTLGAAQVYLAESESAATELGSAQVGAMADAVHMYGAGLVLIPATNDSNAVAGRLAIVTGGSVAADAVAVRFDEESQEIIACHSVFGGDFTTESTVEGGLMVVTVRPGSIEGWAEAVASPEVTTAHIATTTATGARIDEATQSAAKAGRPVLRGAKTVVAGGRGVGSKEAFRVVEDLADVLGAAVGASRAAVDAGYVPQSYQVGQTGVTVTPQLYVALGISGAIQHRAGMQTSKTIVAINKDEDAPIFDVADFGIVGDVFTVVPQLIEEINNRRSPGPT0001040_1785DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-29_021041398hypothetical proteinATGACTAGCGAGCGAAACCCCAGCCAGGCACCGAAACGGCGCCGCATGGCAGGATACACGCCGCTAGCCCCTGAGCGCACCGGCGCCGAGCCCGTGCCTGCGGAGCGAGTACAGACGCATTTGCAGCAACAGCAGCAGGGCGATCCGCCGGTTGCAAAGAAGGCCATAACGACGCCGGCGACCATCGATGACGTCACGGCGATGATCGACAAGACGCAGCTTCAGGGCATGGACTTACCAGCGGCGCGGGAACGCGAGCAACCGAAGTCAGCTGCTGAGCATGCTCCTGCACGCAAGCGCCGGATGGGCGCCGCCGCGCAGGCGGCCGAACAGCAGGAGGTCGAGCGGCCATCGACTAATTCTGCCGTAGAGGGTGGTTCTGGTGCCGCCCAGACAGGTTTGGTCACACCGACGGCCAAGGCGACCTCTTCGACTCGTCTCCTCGGCGCAAAGGGGGCGGCCGGGGGCGGCCCGGTAAGTAAGTCGCATACGGCCGGCCCGGCATGGCGGAAGCCCGCAGTGGTTATCGCCGTATTCTTGGTTCTGGGCCTACTGGTGGTGTTTGGCGCGCGCTGGCTACGCACCCTTGAGGGTGTGCAGCAGTTCGTTATGTCTTACAGCGGGCACGCGTGGCAGCCGGAAGGCGCTCCGGTCGGAATCCCGGCATGGCTGGGCTGGCAACACTTCTTCAACATGTTCTTCATCGTGCTGATCGTACGCACCGGTCTCCAGGTGCGTACGGAGCGTAAGCCTCCCGGCTACTGGACGGCGAAGAAGGACTCGTTCTTCTCCCCGAAGGGCAATAGCCCGAAAAAGGTATCACTGTCCCTATGGCTGCACCAGAGTCTGGACGTGCTCTGGGCGGCGAACGGGATGATCTTCGTCGCTCTACTACTTGTCAGCGGGCACTGGACGCGGATCGTACCGACGAGTTGGGACATCTTCCCAAACATGCTCTCAGCAGCAGTACAGTATGCGTCGCTGGACTGGCCTGCCGAAAACGGCTGGGTGCACTACAACGCACTGCAGGTGATGGCCTACTTCCTCACTGTGTTCATCGCCGCCCCCTTGGCGGTCCTGACCGGCGTCCGGATGTCGACTTGGTGGCCCGAACGCGCTAGGCGCCTCACAAAGATATACCCGGTCGAATGGGCGCGGGCATTGCACTTTCCGGTGATGCTCTACTTCGTTGCGTTTACGGTGGTGCATGTGTTCCTGGTCTTCTTCACCGGAGCTTTACAGAACCTAAACCACATGTACGGCTCCCGGAACGTGGTGGACTGGTGGGGCCTTGTCATCTTCCTGATCTCCCTGCTGGTCATCGCCGCGGCTTGGTTCCTGATCAAACCGCTGTTTACCACGCCCATAGCAAGCCGTATGGGCAAGGTCACCAAATAGMTSERNPSQAPKRRRMAGYTPLAPERTGAEPVPAERVQTHLQQQQQGDPPVAKKAITTPATIDDVTAMIDKTQLQGMDLPAAREREQPKSAAEHAPARKRRMGAAAQAAEQQEVERPSTNSAVEGGSGAAQTGLVTPTAKATSSTRLLGAKGAAGGGPVSKSHTAGPAWRKPAVVIAVFLVLGLLVVFGARWLRTLEGVQQFVMSYSGHAWQPEGAPVGIPAWLGWQHFFNMFFIVLIVRTGLQVRTERKPPGYWTAKKDSFFSPKGNSPKKVSLSLWLHQSLDVLWAANGMIFVALLLVSGHWTRIVPTSWDIFPNMLSAAVQYASLDWPAENGWVHYNALQVMAYFLTVFIAAPLAVLTGVRMSTWWPERARRLTKIYPVEWARALHFPVMLYFVAFTVVHVFLVFFTGALQNLNHMYGSRNVVDWWGLVIFLISLLVIAAAWFLIKPLFTTPIASRMGKVTKNANANANANA
D1-29_02105720hypothetical proteinATGGTCACGACGGAGCTGCAACTGAACTTCCTGGTGCCCCCACCTATTGACGGCGACGTGCTGGAGGCCTGGACCAGAAGCAGCTTCGTTGATCAAAGGGGAGGCGTGTCTCTTGGCACCCTACGTGGACCGGACGGAACGGAACACGTACACGCCGTTGGCTGGTTCCAAGCGGTGGGGCCGTCCCCAGCCGGGGCACTCGACCACTTCCACAGTATGGGCGCGTTACCATTAGGGCCCGAGTCCAACGTCTCTTTGGACAGGTTGCTAGGCATGCGCAGTCAGGCGTGGAGCGCTGCAGACGAGAAGCCAGCGAATGACGAGGGCTTCCTCAGGGGGCCTGATTTCCCGGTGATCCATGAGTTCATGAATCGCAACGGGACCGTTCACGGAGGGGCAATCACCATGATGGCGGGACTCGCTGCCAAGGCGGCCATTCCGACGCCTGAGAATTTCGATCTCCAGTCCTTGCGGATGGTGTTTCTTCGTCCGTCCACAGGACCAATTGCTACGCGGGCACGAATCCGACATGCGGGCCGCTCCCTGTACATCGTGGATTTGGAACTGTTCAGCAGCCGTACAACTCCAGGAAGCACGACATCACGTGCATCAGACACTGACATGCGGGAGGACCTTGACAAGGCCTTCGAAAGCAAGCCAATCGCGCAGGCCCACGCAATCTTCCGTCCGGCCGCTGAACGGCCCGGGGTCACGGCCTGAMVTTELQLNFLVPPPIDGDVLEAWTRSSFVDQRGGVSLGTLRGPDGTEHVHAVGWFQAVGPSPAGALDHFHSMGALPLGPESNVSLDRLLGMRSQAWSAADEKPANDEGFLRGPDFPVIHEFMNRNGTVHGGAITMMAGLAAKAAIPTPENFDLQSLRMVFLRPSTGPIATRARIRHAGRSLYIVDLELFSSRTTPGSTTSRASDTDMREDLDKAFESKPIAQAHAIFRPAAERPGVTANANANANANA
D1-29_02106789gltA_32-methylcitrate synthaseATGACTACACGGGATACCAACGCTTGGGAAACTGCCATAGGGGAGGTCGAGAAGGATGATGTAATTATTCGGGGGCACCGGCTGAGCCAGCTGATCGGGAATACTTCATATTCAGAGATGATGTACCTGGTCCTTACCGGGAATCGTGCAACACCTGGTCAGGCTCGAGTTCTTGATGCCCTACTTGTCTCGGTGATGGAACACGGAATATCGCCGTCGAGTACGGTCACCAGAATGCTCGCCTCGTACGGGGTTCCCCTTCAAGTGGGGATTGCAGCGGGAGTGACGACCTTCGGGGACATCCAGGGTGGCGCCGGTCAACAACTGGCATTGAAGTTGCAATCGGTTGTACATCAGATAGCCGAAGACGGTGAGGTCACCGACGAATCGCTGCAGCGAGCCGCCAAGGAGATTGTGGCTGACAGCAGGGCGCGGCGAGCCCCCCTTGAGGGGTTTGGTCATCCGCAACACGGTGCGGATCCGCGCTTTCCTATTCTGATGGGTATCGCCAAGGAGGAAGGGGTCTTCTCCCATCACTCGTCATTGCTGGCTCACCTGGAATACGAGTTGAGCCAAGCGGTTGGGCGCAAGATTCCTGCGAACGTCGATGGCGCGATTGCAGCCCTCATTCTGGATCTCGGGTTCACCTGGGAGACGACGCGAATCTTCCTGGTGGCACCTCGGTCGGTCGGCCTTGCAGCCCACTACTTGGAGGAGGTGGCACAGGGAAACACGTGGCGCCACGTTCCTGCCGACCAGGTAAATTACACGGGCCAAAACCCATCGTAAMTTRDTNAWETAIGEVEKDDVIIRGHRLSQLIGNTSYSEMMYLVLTGNRATPGQARVLDALLVSVMEHGISPSSTVTRMLASYGVPLQVGIAAGVTTFGDIQGGAGQQLALKLQSVVHQIAEDGEVTDESLQRAAKEIVADSRARRAPLEGFGHPQHGADPRFPILMGIAKEEGVFSHHSSLLAHLEYELSQAVGRKIPANVDGAIAALILDLGFTWETTRIFLVAPRSVGLAAHYLEEVAQGNTWRHVPADQVNYTGQNPSNANANANANA
D1-29_02107888COG1028Putative short-chain type dehydrogenase/reductaseATGGGTGTTCTGGATGGACGAGTTGCGATCGTGACGGGCGCCGGGAGAGGTCTCGGCCGCGAGCACGCCCTGCTGTTTGCGGCCGAAGGTGCGCGGGTAGTTGTAAATGACGTTGGGGGAGCAGGCGCGGACAATGGTCCGGCGCATGATGTGGTTGCTGAAATCATCTCTGCGGGCGGGGAAGCCGTGGCTAACACTGACAGCGTCAGTGACTGGCTCGGTGCGCAGCGGCTGGTCGAAACCGCAATACGCGAATTCGGCGACCTCCACGTGGTGGTGAACAACGCGGGCATCATGAGGGATCGGACGTTGATCAACATGACCGAGGAGGAGTTTGACTCGGTGGTGGACGTCAATCTTAAGGGCACTTTCGCTGTCAGCCGGCACGCGGCTGCGTATTGGCGTAACCAATCAAAATTGGGGTTGGACGCAGACAGGGCGATTATCAATACTTCCTCGGCCGCGGGGCTTCAGCCGGGGGCAGGTCAGACGAACTACGCGGCAGCGAAAGCTGGGATCGCTGCCATGACGCAGGTCGCGTCGAAGGAGCTAAAGAGGTACGGCGTACGGGTTAACTGTATTGCGCCAGCGGCGCGGACCCACTTGACTCTGTCCACTCCGGGGCTCAGTGAACGGGTGGCCGAGCCGGACTCCGACACGGATTTTGATAGCTGGCACCCGGGAAATATCTCGCCGCTGGTAGCGTTCCTGGCGGCCGAGCGCTGCGCCTTCTCCGGCCACATGTTCCGCGTGGTGGGTGATCTGATTGGAGTCTATGAAGGATGGCGGGTCGTGGATACATTCGAGAACGGTAGCCGCTGGAGTGTGCCGCAGATCGAGCAGGCACTTGTCGGCGTCGCAGCCGAGCCTCTCGTCCAGGATGCCTAAMGVLDGRVAIVTGAGRGLGREHALLFAAEGARVVVNDVGGAGADNGPAHDVVAEIISAGGEAVANTDSVSDWLGAQRLVETAIREFGDLHVVVNNAGIMRDRTLINMTEEEFDSVVDVNLKGTFAVSRHAAAYWRNQSKLGLDADRAIINTSSAAGLQPGAGQTNYAAAKAGIAAMTQVASKELKRYGVRVNCIAPAARTHLTLSTPGLSERVAEPDSDTDFDSWHPGNISPLVAFLAAERCAFSGHMFRVVGDLIGVYEGWRVVDTFENGSRWSVPQIEQALVGVAAEPLVQDAPGPT0003180_985DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_021081179thlA_1COG0183Acetyl-CoA acetyltransferaseATGACCGACCGCGTAGCGATCGCTGGAATTGGAATGACTTCTTTTGGGAAGTTTCTTGATCGATCGGTGAAGAGTCTCTCCGAAGAAGCTGTGAAAATAGCGCTGGAGGATGCCGGAATTGATGCGGACAAGGTAGACCGTATCTACTTCGGCAATTCGGCGTCCGGAGTCATCACCGGGCAGGAGATGATTCGAGGCCAAGCCGCGCTCAGGAACACCGGCCTCATGGGTAAGCCCATAATCAACGTGGAAAACGCTTGCGCCACGGGCAGCACAGCGTTCCACCTGGCGTGGCAAACGGTGGCAAGTGGCCAGGCGGATGTTGTGCTGGCAGTCGGAGCGGAGAAGCTGAGCCATGCAGACAAGGCCGTATCCATCGCAGCGTTCGGAGGGGCTGTAGACAAGGAAGAAGAACTTCCGTCGCACGTCGGCTCTGGCAGCGGTTCCATTTTTATGGACATCTATGCAGAACGCACTCGCAGGTACATGGACGCCACGGGAACGACGCCAGCTGATTTTGCGCGGATAACCGTCAAGAGTCGCCACGCTGCGTCGCTCAACCCGTACGCGCAGTTTCGTAAAGAGACGACGGTCGAGGAAGTGCTGGCAAGCCGGATGATCAGCGAACCATTGACGCTTCCTATGTGCTCTGCAATCGGCGATGGGGCAGCGGCGATAGTCCTGTGTTCCCCGCGTGTCGCATCCAAGCTGTCAAGGTCCAGGCCTGTTTGGGTGGCAAGCTCAGCGCTTGTTTCGGGCTCAGCGGATCCGACGAAGCCAAACGCTTCGTCTCGGGCCGCGAAAGCGGCCTACAAGGCAGCCTCGATTGGGCCCGAAGACGTTCACGTAGCTGAGGTGCACGACGCATCCGCCCCTGGTGAACTCATCAATTACGAAGTCATGCAGTTCTGCGCGCCGGGGGCGGCAGCGGAACTGTTGCGTAGTGGTGCAACGGACCTTGGCGGCAGGATCTCTGTAAACCCGAGCGGCGGTTTGCTCAGCAGAGGGCATCCGATTGGAGCTACAGGAACCGCTCAAATATTTGAACTGGTTCAACAGCTGCGCGGAGAAGCGGGCGAACGGCAACGGGAGTCTGCAAAGGTCGCGTTAGCGCAGAATTCTGGCGGGCAGGTTGGTGGAGATTCTGCTGCAGCGGTCGTCTCAATCCTTGTTTCTTAGMTDRVAIAGIGMTSFGKFLDRSVKSLSEEAVKIALEDAGIDADKVDRIYFGNSASGVITGQEMIRGQAALRNTGLMGKPIINVENACATGSTAFHLAWQTVASGQADVVLAVGAEKLSHADKAVSIAAFGGAVDKEEELPSHVGSGSGSIFMDIYAERTRRYMDATGTTPADFARITVKSRHAASLNPYAQFRKETTVEEVLASRMISEPLTLPMCSAIGDGAAAIVLCSPRVASKLSRSRPVWVASSALVSGSADPTKPNASSRAAKAAYKAASIGPEDVHVAEVHDASAPGELINYEVMQFCAPGAAAELLRSGATDLGGRISVNPSGGLLSRGHPIGATGTAQIFELVQQLRGEAGERQRESAKVALAQNSGGQVGGDSAAAVVSILVSPGPT0001565_3407DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-29_02109885IS3 family transposase ISAar26ATGGAGGCCGAGAAGGCTAACTACCCGGTCCAGCGCATGGCCCGGCTCCTGCGGGTGTCCCGGTCCGGGTTCTACGCCTGGCGCCGACGAAGCTCTGAGCAGGCGGAACGGGCAGCGGCCCGGGCGGAACTGGATGCGAAGGTCCGGCGGGCCCACACGGATTCGACCGGGATCTACGGGGCGCCCAGGGTGCAGGCCGCGCTGGCCAGGAACGGGACAGGGGTTGACCGGAAGACCGTGGCCGCCTCGATGCGCCGGCAGGGCCTGGAAGGGATCTCGCCGCGGCGGTTCCGGCCGATAGCGCCGATCGGTGAAGCGCAGGTCCATTCAATCCCTGATCTGGTCGAAAGGAAGGGGGACACCGGTGCTCTGGACGCGGTCTGGATCTCGGATACCACGTACCTGCGCACCGGTGAAGGCTGGGTGTATCTGTGTGCCGTCAGGGACGCGTGTTCCCGCCGTGTGATTGGGTGGGCGATGGACTCCTCCCAGACCAGCGCTCTGGTCGAGCGCGCGTTACGGATGGCTTACATCCTGCGCGGCGGAGGCCCGGCCGGGGTCGTATTCCACGCCGACCGCGGCACCCAATACACCTCTGCCCAGCTCAACGATGTCTGCAACGGACTGGGCATCAGGCAGTCGGTCGGGCGGACAGGGGTGTGCTGGGACAACGCGATGCAGGAATCTTTCTGGTCGACCCTGAAGACCGAGTTCTACGACCGGCGCCGGTGGGCAACCAGGCACGAAGCGATCCGGGCAACAGGACGCTGGATCGAGGAGTTCTACAACCGCTCCCGGCTCCACTCAGCCCTGGGCTACACCACGCCCGTGGAACACGAACAATTCCTCACCATCAATAAAACTCAGCCGGCACAAGCCGCCTGAMEAEKANYPVQRMARLLRVSRSGFYAWRRRSSEQAERAAARAELDAKVRRAHTDSTGIYGAPRVQAALARNGTGVDRKTVAASMRRQGLEGISPRRFRPIAPIGEAQVHSIPDLVERKGDTGALDAVWISDTTYLRTGEGWVYLCAVRDACSRRVIGWAMDSSQTSALVERALRMAYILRGGGPAGVVFHADRGTQYTSAQLNDVCNGLGIRQSVGRTGVCWDNAMQESFWSTLKTEFYDRRRWATRHEAIRATGRWIEEFYNRSRLHSALGYTTPVEHEQFLTINKTQPAQAAPGPT0030468_2306DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-29_02110312hypothetical proteinGTGAGCACGACACGACGAAAATTCACTCCGGAGTATCGGCGCGAGGCGGCGCGCCTTGTCATCGATACGGGCAGGCCGGTAGCGCCGGTGGCCCGGGAGTTGGGTTTGGGTGAGCAGTTGCTGGGCCGGTGGGTGGCTCAGGAGCGGGCCCGTCTGGAGGCTCCCGAGGAGTTCGCGGCGGCTGAGACGGAGAAGTCTGAACTGGAGCGTTTACGCCGGGAGAACGCGCAGTTGCGGATGGATAACGAGTTCCTGGGAAAAGCCGCAGCCTTCATCGCTTCCAAGCAGCAGAATCGGAATGCTTCGAGCTGAMSTTRRKFTPEYRREAARLVIDTGRPVAPVARELGLGEQLLGRWVAQERARLEAPEEFAAAETEKSELERLRRENAQLRMDNEFLGKAAAFIASKQQNRNASSNANANANANA
D1-29_021111746cocE_2Cocaine esteraseATGAGCGTGGACACGAAGGCACAGGAAATGAGCAGTGTAATGAAGGCGGAGATTGACGCGACGGCGTCTGTGACGGTGGAGTTCGATGTCCCTGCCCGCATGCGGGACGGCGTCGTGCTGAAGGCTGACGTCTACCGGCCGGCGGGGGCAGGTCCCTGGCCCATCCTGGCCGTGCGCACGCCCTACAACAAGGGCGGCGCTGCGGACAACGTCTGGAATGGCTTCTCCCCACAAGAAGTGGCCCGGAGGGGGTTCATCATGGTCATCCAGGATGTCCGTGGCCGCTATGCGTCCGACGGTGACTGGGAGCCGCTGCAGCACGAGGGTGCTGACGGCGCTGACACCATTGCTTGGGCCGCCCAGCTTGCCGGCTCCAACGGACGCGTCGGCATGCTCGGTGGCAGTTACTGCGGGAACACGCAATGGCAGGCCGCGCTTCAACAGCCGCCCGCATTGAAGGCGATCACGCCCCTGATGACGTGGACGGAGCCGCGTGAATCGCTGGTGGCCCGCGGTGGCGCCACCCAGATATCGGTCATCGCATCGTGGTCTTTGGCTGCCGGGTTCGACTGGTTGTCGCGTCAGGGCCTGACTGACGACGCGATGGCCGCCCGTCTCGCGGCCCTTATTGAAGACTTCGACAGTCTCGAGACGGACGGCTACTGGGGACTGCCCACCGCCGAGCTGCCCGTGCTACGTCGGCACGGCACTCCGGTCTTTGTAGAGCCGGGCGCAGCCACTGATGTGGAGGCCACGCAGCACATGCGTGTGACCGGAGGGCACTCGCGTGTCGAGATCCCCACCCTGCACACGGGAGGCTGGTACGACAGCTGCCTGCAGGGAACCATCGACAACTTCACAGCTATGCATGACCTTGGTCGGGAGTCGCGGCTGATCATCGGCCCATGGACCCACGTTGACTTTGGCAACCGGATCGGCGCTCAGGACTTCGGAATCATGTCCAGCCGGGACGCGGGGGCCCATCCGAATGGGCGCTGGAGCGATGAGGTGCTGGCGTTTCTCCGCGGTCACCTCACGGATGATGCACCTGTAAGTGCCTCGGCTCCGGTACGGATATTCGTGATGGGACGCAATGAATGGCGGGACGAGGAAGCCTGGCCTCTGCAACGCTCCCGCACCGAGCGCTGGCACCTGCATTCCGATGGTGGCCTGAGCACGACGGCTCTGCCCATCGAGGCAGGGCCGAGTGAGATCGACTATGACCCCGCCGACCCCGTCCCCACGTATGGTGGGCCAATTTCCCTCACACCAGGACGGGGCCCTCATGACCAGGCGCCGGTCGAGTCGCGACCCGACGTGCTCGTCTTCACCTCCGAGGTGCTTGAGGAAGACCTCGAGGTGACAGGGCCGATCCGGGTACGGCTGCACGTCCAGAGCTCAGCGCCCTCGACAGACTGGGTCGCCCGCCTGTGCGACGTGGACCCCGACGGGCGGTCTCTAAACCTCACCGATGGAATCCTCCGCATAGACAGCGGTGCAGACGAGGCTCAGGAGATCGAGATCGATCTATGGTCAACAAGCAACGTGTTCCTGGCCGGACACAGGATCAGAGTGCAGATCACCAATAGCTGCTTCCCCCGGTGGGACCGCAACCTCAACACCGGTGACCAAGCCGGGACGAAGTTTGTCACGGCACATCAGCGGCTTTACCACGACGCTATCCGTCAGTCGTACATCCAACTCCCCATCGTCCCAGCGGAAGAGAATCGAGTTTCCGGCACGTAGMSVDTKAQEMSSVMKAEIDATASVTVEFDVPARMRDGVVLKADVYRPAGAGPWPILAVRTPYNKGGAADNVWNGFSPQEVARRGFIMVIQDVRGRYASDGDWEPLQHEGADGADTIAWAAQLAGSNGRVGMLGGSYCGNTQWQAALQQPPALKAITPLMTWTEPRESLVARGGATQISVIASWSLAAGFDWLSRQGLTDDAMAARLAALIEDFDSLETDGYWGLPTAELPVLRRHGTPVFVEPGAATDVEATQHMRVTGGHSRVEIPTLHTGGWYDSCLQGTIDNFTAMHDLGRESRLIIGPWTHVDFGNRIGAQDFGIMSSRDAGAHPNGRWSDEVLAFLRGHLTDDAPVSASAPVRIFVMGRNEWRDEEAWPLQRSRTERWHLHSDGGLSTTALPIEAGPSEIDYDPADPVPTYGGPISLTPGRGPHDQAPVESRPDVLVFTSEVLEEDLEVTGPIRVRLHVQSSAPSTDWVARLCDVDPDGRSLNLTDGILRIDSGADEAQEIEIDLWSTSNVFLAGHRIRVQITNSCFPRWDRNLNTGDQAGTKFVTAHQRLYHDAIRQSYIQLPIVPAEENRVSGTNANANANANA
D1-29_02112954hypothetical proteinATGACCCATTCGCAGACAGCCACGATTGAGCTCGAACTTGTAGAGCTTGACCATTGGGGGATGTCACCTGATGTTGTCCTGTCGGAGGATAACCAGACTCCGAGCAAGGATCTCGCTACTTTCGAGTTGTCAGAAAACGACACAGCGTCCGAGTACCACCTGACGTCCGACTCGCTTCCTCAGGACGGCGTTCCAGCCGGAAAGTACTACCATTTCCGCTGGACCAGTCACACCGTCTACCCCGGCGTCACCAGCAGCGTCTACCTGTACCTGCCCCACGGTGCTGAGGAGGCCGAATCGGTCAACCTGATGGTCTGCCTGGACGGCCTGGAGTACTCCGGAGAGAAGTGTCGTGCCACCACCGTCCTGGACAACCTCGTGCACAGGGGCGAGATCCCCATGACCGTGGGCCTCTTCCACAACCCCGGCGAGATCGGACCGGGCTACCCGCTCTTCGGCGGGAGCACCAACCGTGCTGTTGAGTACGACACGGTCAATGAGGACTTCGCCCGCTACCTCGTGGAGGAGCTGTTTCCCGTCGTCCGGACCAAGGTCAGGCTGACCGACGACCCCCGGGGCCGCGTCATCTGCGGCATCAGCTCCGGCGGCGCCGGCGCCTTTAGCGCCGCATTCCACCGACCGGATCACTTCGGGAACGTGATCTCGCACTGCGGCAGCTTCATCAACATCCTCGGTGCGAACAACCTGCCCAGCATGGTCCGGCGCGCGCCGCGAAAGCCGATCCGGGTCTGGCACCAGTCAGGCAAGCGCGACGTCGACATCATCTACGGCAACATCCCCATCGCTAACCACGACCTCGACGCGGCCCTGAAGTACCGGCGCTACGATTCAATGTTCGTGTACGGCAGCGGCGGGCACACCCTCGCGCACGGCGGAGCAGTGTTTCCCGAGACACTCCGGTGGATGTTCCGCGACCAGATTGAAGACAAATGAMTHSQTATIELELVELDHWGMSPDVVLSEDNQTPSKDLATFELSENDTASEYHLTSDSLPQDGVPAGKYYHFRWTSHTVYPGVTSSVYLYLPHGAEEAESVNLMVCLDGLEYSGEKCRATTVLDNLVHRGEIPMTVGLFHNPGEIGPGYPLFGGSTNRAVEYDTVNEDFARYLVEELFPVVRTKVRLTDDPRGRVICGISSGGAGAFSAAFHRPDHFGNVISHCGSFINILGANNLPSMVRRAPRKPIRVWHQSGKRDVDIIYGNIPIANHDLDAALKYRRYDSMFVYGSGGHTLAHGGAVFPETLRWMFRDQIEDKNANANANANA
D1-29_02113792COG1028Glucose 1-dehydrogenaseATGAGAGCTTTGGTTAGTGGCGGAAGCAGCGGCATAGGCGCGTCTACCTGCCTGCGACTCGCAGAGTCGGCTCTTGCCCGGGGCGTGCACCCGATGATTGCCGTGTGTGGACACGAATCGAACAGTAGCCAAAAACAAGTTGTTCGTTCAATCCAGTCAATGGGCGGTACCGCCATCGCGTTAACGGGCGACCTCAGTGATCCCGACGTGCCAAGTCAACTGGTAGAAGCTGCGGTAGCCGAATTTGGTGGCCTGGACGCGTTGATAGCGAACGCCGGAACCGCCAACCCTGGCGCAATCTGTGACGTATCCATTGAGGACTGGGACGCCATGTTCTCCATTAACCTCCGCAGCGCGTGGCTTCTTGCCAAAGCAAGCCACGCGCACTTGCAGCAGAGCCGCGGTTCCGCCTGTTTTACCTCTTCAATGTCTGGCCAGCAACCACATGCCGGATCAGGTGCTTACAGCCCCAGCAAAGCTGCATTGACAATGCTCGCCCAAACACTCGCATTGGAATGGGCACCCGACGGCATCCGCGTGAACGTGGTATCCCCGGGCATGACTCATACACCTATGACCGAAAAAATGTATGCCGATCCCCAAATCAAGAAAGCAAGGGAAGATATTATCCCGCTGGCAAGAATTGGAGATCCCATGGACATTGCGAACGTGATCGAATTTCTCGTAGGCCCCCTATCGGGTTATGTCACCGGGCAGGACATCTGTGTCGATGGCGGCTTCTCTAAGTCTATTCTTAGCCATATTCCCGGACGGCCCAGCTCCAAATCCTGAMRALVSGGSSGIGASTCLRLAESALARGVHPMIAVCGHESNSSQKQVVRSIQSMGGTAIALTGDLSDPDVPSQLVEAAVAEFGGLDALIANAGTANPGAICDVSIEDWDAMFSINLRSAWLLAKASHAHLQQSRGSACFTSSMSGQQPHAGSGAYSPSKAALTMLAQTLALEWAPDGIRVNVVSPGMTHTPMTEKMYADPQIKKAREDIIPLARIGDPMDIANVIEFLVGPLSGYVTGQDICVDGGFSKSILSHIPGRPSSKSPGPT0014705_459DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034NANA
D1-29_02114822nfoendonuclease 4GTGAATCAAATGATTATTAACACATTTTCCTATCTATGGTCATCTACGGCAATTGATGCGATAGCTGAATTGGTCGACAATGGGTATAACACTTTTGAAGTTCCGGTCAGCTCGCCACATTGCTGGCCGGATGAAATATCCGGCTCGGAGCGCGCGGCAATTCATGCAAAACTCAATGAATACAGCGCCAAAATCAGGTCACTGAACGCCGGCGGATACGACATCAATTTGGCCAGCCCTGGCGCCAACATGCGTCGCAAAAGTGTTGAGCACGTTAAGTCGGTGATTGACCTGGCCGCAGCGTGGAATGTTCCCGAAGTCGTGATATCCCCCGGCACAAGACGCCCAATGATTTCACCCTCACTCGAAAAGACGTCCGGGTGGATGTACGAGAGCCTGGAGAGTCTGATCCCGCAGGCCAAACAGGCGGGCACACGACTACTTTTCGAAAACACTCCCTACTGCTTCACCCCCACCATTGAGGACCTCTCAGGCGTCGTAAGCACTATCAACGACGACGCAGTCAAGATCGTGTACGACGTCGCCAACGCTGCCTACATAGGAGAAGATCCCGTAGCGGGTTTGCTCGCCAACCACGAATCAATTGGACTTGTGCATATTTCTGACACAGGCACTGAAACCTGGGGCCATGATCCAATCGGCACTGGAGTGATCGACTGGAGTGCATTGGGCAATGCCGTAAGAGAAACCTGCGGAGTCAATAATGTAGTTCTTGAGATCATTCGCGAAGAGAACCCCGTGCAGGAATTCAAGAAGGCGATGCAGGATCTCAAAAATCACGGTTGGGAACTAGGCAATTAAMNQMIINTFSYLWSSTAIDAIAELVDNGYNTFEVPVSSPHCWPDEISGSERAAIHAKLNEYSAKIRSLNAGGYDINLASPGANMRRKSVEHVKSVIDLAAAWNVPEVVISPGTRRPMISPSLEKTSGWMYESLESLIPQAKQAGTRLLFENTPYCFTPTIEDLSGVVSTINDDAVKIVYDVANAAYIGEDPVAGLLANHESIGLVHISDTGTETWGHDPIGTGVIDWSALGNAVRETCGVNNVVLEIIREENPVQEFKKAMQDLKNHGWELGNPGPT0017530_1111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079NANA
D1-29_021151413proP_4Proline/betaine transporterATGAAGACCTCAGAAGACGTCCTCGACAGCCCGGGCCTTTCCGATCGTCTCAAGGCGCCCGATCGTAGCATCCGCAACATCGTGGCAGGCACGATCGGCCACTTCGTGGAGTGGTACGACTGGTACATCTACGGGCTGCTGGCAGCGGTGTTCTCATCACAGATATTTCCAAGTGATTCCCCGTTCGCCTCCCTTGTCGCAGCACTGCTCACCTACGCAGTCGGGTTTGTTGTGCGCCCGCTCAGCGGAATCATCATTTCTCCACTAGCCGACCGTTTCGGCCGAAGGCTCATCCTGACGCTGTCCGTTTCCGGGATGGCGCTCGGCTCACTCATCATCGGTCTCACACCTTCATTTGCGACCATCGGCTATGCAGCGCCTGTTCTCTTCCTGGTCGCACGGATCATCCAGGGCATCTCGGCCGGTAGCGAGGGGCAGAGCGCCATCGCATTCATGGTTGAACACGCTCCCGCGAACCGGAGGGGCCTGTTCGGTTCGTTCACCAACATGGCGAGCGGCCTGGCGACGCTCGCAGCGACCGGATCCGCTGCGATGGTGACATCATTCTTTGCTCCGGTGGACCTCGCCGCCTGGGGTTGGCGGATCCCGTTCGTAGTGGGGGGTATCCTCGGCGTCGTCGGCCTTATCTTGAGGGCCCGCGCAGAAGAGACACCTGAGTTTGAGGCGAGTGCCCTCGTCGATCAAAAGTCCGCCCCTGCCCGCCTGATGGACCTGCTTCGCGAACACCCGAAGGCGCTGCTGCAGGCAGCAGCCCTCTCCGCCCCGGCGGTGGCCTACTACACCTGGGCCACCTTCCTTCCCACCTACGCCAAGCTGACCACCGGCCGGGATCTCTCCTCCACCCTGGCCGGGAGCGTTATCGGGCTGGCCTTGCTGGTTATCATCGTGCCTGCTTGCGGCGCGCTTTCGGATCGACTCGGCCGACGCAAAATCTTCCCGATCATCGGTGCCATCGGCATGATCGTTCTCTTCTACCCCATGCTCCTGCTACTCAACCAGCCGGGCTTCTGGGTATACGTTCTGGTATCGGCGTCCGGGTGGGTGGTCCTCGGTATCTGGCAATCGGTGTATCCGACCATCCAGGCCGAACTGTTCCCAGCTGCGGTACGGGTATCGGGCATCGGCTTCGCACACCAAATCGTGATTGCCGTTTTCGGTGGTACCGCGCCGCTGATCGCCGCAGCGTTCGTCGGCGCCGGACAGCCCATGTACGTCGCGATCTACATGACAGTCATTGTCGCTCTCTGCCTCGCCGTCTACTTCACACTCCCGGAAACCGGCGACCGCGGTAACCGTGCCACCGTGGCGCCGGCTGACCCTGAGGTACTCGAAGGCGAACACCTGCTCATGAGCACTTCGCCGGCCACCGGCGGTGCGAAGCGTTCCAAGTAGMKTSEDVLDSPGLSDRLKAPDRSIRNIVAGTIGHFVEWYDWYIYGLLAAVFSSQIFPSDSPFASLVAALLTYAVGFVVRPLSGIIISPLADRFGRRLILTLSVSGMALGSLIIGLTPSFATIGYAAPVLFLVARIIQGISAGSEGQSAIAFMVEHAPANRRGLFGSFTNMASGLATLAATGSAAMVTSFFAPVDLAAWGWRIPFVVGGILGVVGLILRARAEETPEFEASALVDQKSAPARLMDLLREHPKALLQAAALSAPAVAYYTWATFLPTYAKLTTGRDLSSTLAGSVIGLALLVIIVPACGALSDRLGRRKIFPIIGAIGMIVLFYPMLLLLNQPGFWVYVLVSASGWVVLGIWQSVYPTIQAELFPAAVRVSGIGFAHQIVIAVFGGTAPLIAAAFVGAGQPMYVAIYMTVIVALCLAVYFTLPETGDRGNRATVAPADPEVLEGEHLLMSTSPATGGAKRSKPGPT0001525_134DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_KETO-|OXOGLUTARATE_TRANSPORT,PGPT0001525-kgtP-K03761NANA
D1-29_02116180hypothetical proteinTTGGAATATTCCCTGACCCCTGAAACGGTGTGCGGCTCCCGCCTGGCTGTAACGCGGCTCGACGGGACAGTCGACGGCCAAGGCCAAGAGCATGCGCAACGCATCAGCGCTGCCTGGCTTGCAGTGGGAAAGAAGCTGATCCAGCCTCTCCAGTATTTAATAAATGAGATCGATTGCTGAMEYSLTPETVCGSRLAVTRLDGTVDGQGQEHAQRISAAWLAVGKKLIQPLQYLINEIDCNANANANANA
D1-29_02117543hypothetical proteinATGTCCCCGCGCGTCTTCATTGTCATCGGCCCTGCCGGATCCGGAAAGACGACCATTGCCCAGCAAAAAGCACAACTGCATGGGGCTGCGTACCTGGACAAGGACCGGGTCAGCGGACGCTTCGTCGAATTCGCGCTGACCGCTACGGGGCATGATCCCACCGACCGAGAGTCCAACGACTACTATCGCGACAACTTGCTGCCCCTGGAGTACGAGACTCTTATGGATGTGGCGGGGATAAACCTGCGCCTCGGCCGTTCAGTGGTCCTTGATGCTCCTTTCGGAGCCTATTTCGGAGAATCAGACTATTTGACTCGCGTGGCACAAGACTTCCAATGGCCGCCGACCGCGATCACCGTGATACGGGTCCGGGTACCTCAAGACGTTCTACGGACGCGGCTGACCCGGCGCGGACTGGAACGAGACCAGTGGAAACTTGCCCACTGGGATGACTACTGGTCCGTATACGGCAGCTTGGAGTGCGCTTGGTCCGGAGTGGAATTCCAGGACTTCAACAATGAGGCGCCCCTTCCGGTCGATTAAMSPRVFIVIGPAGSGKTTIAQQKAQLHGAAYLDKDRVSGRFVEFALTATGHDPTDRESNDYYRDNLLPLEYETLMDVAGINLRLGRSVVLDAPFGAYFGESDYLTRVAQDFQWPPTAITVIRVRVPQDVLRTRLTRRGLERDQWKLAHWDDYWSVYGSLECAWSGVEFQDFNNEAPLPVDNANANANANA
D1-29_02118648kdgA_2COG0800KHG/KDPG aldolaseATGTACAAGAAACTTCGCACCCTGCAAACTATCGACGAGTCAGGGGCCATCCTCATAGTGCGGCTGGAGAACGCGGAGATTGCCGAGCGCGTTGCGGAAGCTGCCATCGCAGGAGGTTTCCGTGCACTCGAGATCACGCTTTCAATTCCCGGCGCTGTCGACGTGATCCGTCGGCTCTCCACCAAACACGGCTCCGCCGGCGTAGCAATCGGCGCCGGAACTGTGCTGGATGAGCACTCAGCGTACGAATGCATCCGGGCCGGCGCTCAGTTCTTGGTCAGTCCCCAGCTGAACCCCGCGATGATCCGGACCGCGAACCGGTACCAGATACCAACCATCAGCGGAGCCTACACACCCACTGAGCTGGTTAACTCCGCCGAGGCAGGCGCCGACATCCTTAAGCTCTTCCCCACCGAAGCCGGCGGCATCCCCTACGCCAAATCAGTCCTCGCCCCGCTCGCACATCTGCCGATCATGCCAGCTGGGGGCGTAACCGTAAAGAACGTGAGCGAATGGTTCGCGGCGGGTGTGGCGGGCGTCGGCGTCGGCAGCTACGTGACGAAAGCATGGCAACCCGACGGCGACTTCTCCCGCGTCACCGAGGCCGCCAGGGAATTTCTCTCAGCAGTAGCAGAGGCCCGCAAATAAMYKKLRTLQTIDESGAILIVRLENAEIAERVAEAAIAGGFRALEITLSIPGAVDVIRRLSTKHGSAGVAIGAGTVLDEHSAYECIRAGAQFLVSPQLNPAMIRTANRYQIPTISGAYTPTELVNSAEAGADILKLFPTEAGGIPYAKSVLAPLAHLPIMPAGGVTVKNVSEWFAAGVAGVGVGSYVTKAWQPDGDFSRVTEAAREFLSAVAEARKPGPT0002060_1424DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
D1-29_02119987hypothetical proteinTTGACTAATGTAGGCACAATCATTCTTGGCGCTTCCCATTGGCATGTTCCGCTCTGTGCGCCGGCCATTGCCGAAGAACACGCCGTGATCGGAGTCGGTGACGACGATGTATCCCGCGTGCAGGTGCAGTACCTGGCCGAAGGCTGGGGGGCACCGGTAGAAGCCGACTGGCACAAGCTGGTTGATCTCCCCGACGTCGGACTCGCATATGTCTTCGGTCCCCATGAGGGGATGGCCGAAAAGTGCCTTGCCCTGATCGAGCGCGGTATTCCGTTCGTCGTGGAAAAGCCGTTGGGCACTTCACTTGACGAGCTTTCCGCCGTGCGGCAAGCCGCCGAGGCAGCCGGCGTGCCTGCCACTGTCCCCCTGGTCCAGCGCGGCGGACCCACGGAGCAATGGCTGGCCAAGGCCGGCCGGCCCACTTACCAGCGAACCTCATTCATTGCTGGTCCACCATCCCGGTACCTCGACAATGCCAATCCCTGGATGCTCGATCCGATCAAGGCGGGCGGGGGTTGCCTAGCCAATCTGGGTCCACATTTTGTCGATCTGTTCCTCAGGGGCAGCGGTGAGACAGCAGCACATGTGGACTCCCGGCTCTCATCGGTTCTTCACAACCAGGCTGTTGAGGATCACGCCAGCCTCATCATCACGACACCGGAAGGACGCGAAGCCATTGTGGAAGTTGGCTACGCATTCCCTGGCTCGCCGCTCAAGCGCTACTGCAGCTTTACCTCGGTCGGTGAGGCAGGATTCGCCTCCGTTGATTCGGACGGCACAGCTACGTTCACGGCACTGGATGGCACCACGGAGGTCGACAAGATCAATGTGGATAGCGACCCTCTTTACGATCCGTTCGTACGACGAGTCGCCCAAACACTGGAAGATGGATTCCGGGGCCTGCCGACGCTGGCCCAGCTCGAAGACGTCATGCGCCCCATTTGGCAGGCCTATGACGACCAGCACGGAGGAAGAGAACATGCCTGAMTNVGTIILGASHWHVPLCAPAIAEEHAVIGVGDDDVSRVQVQYLAEGWGAPVEADWHKLVDLPDVGLAYVFGPHEGMAEKCLALIERGIPFVVEKPLGTSLDELSAVRQAAEAAGVPATVPLVQRGGPTEQWLAKAGRPTYQRTSFIAGPPSRYLDNANPWMLDPIKAGGGCLANLGPHFVDLFLRGSGETAAHVDSRLSSVLHNQAVEDHASLIITTPEGREAIVEVGYAFPGSPLKRYCSFTSVGEAGFASVDSDGTATFTALDGTTEVDKINVDSDPLYDPFVRRVAQTLEDGFRGLPTLAQLEDVMRPIWQAYDDQHGGREHANANANANANA
D1-29_02120996degA_3COG1609HTH-type transcriptional regulator DegAATGCCTGATCTGAGTATCGACGTCGTCGCGAAGGCTGCCGGCGTCCACCGATCCACCGTTTCCCGGGCATTCTCCCGGCCGGAAGCCGTCAAAAGCGAAACACGCGAACACATCCTCAAGGTTGCCGAAGAACTCGGCTACACAATGAGTCCACTCGCCCAGGCTCTTCGGACCAAGACCAGCACGTTCATCCCGCTGATCGTGCCTGACATCACCAACCCGTTCTTTGCAGAACTTGCCAAGACGATGACGCAGGCGGCCGACGAGCGCGGCTATCAGCTGCTGCTCTGTGTCACCAATGGGGACCCTGCCAAAACTGAGGGTTACTTCACCGCCATGCAGGCCATGTATGCCCCCTTCGGGATTGTCGCGCCGTCCACAAAGGTCGATACCGAGGCCATGAAACGCTTTGATTTCGGCCACAAGGTCGTGGTGATTGACCGGGTTGAGGGGGACAATGCCGTCCCAACGGTCACCGTCGACAGCCGCCGCGGAATCATGCTGGCCCTGGATCACCTGCATTCTTTGGGGCACAACTCGATCGGCTACGTTTCCGGCATCGCCGGGACGCACACTGCCCAAGACCGGATGGACGCCTATCTGGAGCTGTCCGCCGAGAGCGGCAGCGCACCTGTCGTGCTGGACAGCGGGTCGGATCTTGATGCGGGCACGCGTGGGGCAGAACATTACCTCGAGATGGACAATCCTCCAACGGCCATCATCGCGGCCAATGACATGGTGGCCTTTGCGGTCATCTCGGCACTCGGCCAACGTGGCGTTCGGGTACCGGAGGACGTGTCGGTCATTGGTTTCGACGGTCTCGCTCTCGGCGCCCGGTTCAGCCCTCCTCTGACCACCGTTCGCCAGCCGATCGCCGACATGGGTCACATTGCCATCGAACTGGCCGAGAAGCAGAATGCAGACGGCTCCGTGGACCACATCGTCCTCGAACCTGAGCTTCTGGTCCGTGCCTCGACCTCTGGACCACGCAAGTGAMPDLSIDVVAKAAGVHRSTVSRAFSRPEAVKSETREHILKVAEELGYTMSPLAQALRTKTSTFIPLIVPDITNPFFAELAKTMTQAADERGYQLLLCVTNGDPAKTEGYFTAMQAMYAPFGIVAPSTKVDTEAMKRFDFGHKVVVIDRVEGDNAVPTVTVDSRRGIMLALDHLHSLGHNSIGYVSGIAGTHTAQDRMDAYLELSAESGSAPVVLDSGSDLDAGTRGAEHYLEMDNPPTAIIAANDMVAFAVISALGQRGVRVPEDVSVIGFDGLALGARFSPPLTTVRQPIADMGHIAIELAEKQNADGSVDHIVLEPELLVRASTSGPRKPGPT0017992_13885DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_02121579cetB2-epi-5-epi-valiolone epimeraseGTGATCGCGCGAATGAGCAGGGGACAGGAGTCAACGCTCCGGCGTCTGACGGGGCTCCAGCACACAGACCACATCGGCCTGACGGTGCCAAACCTTGAGGACGGCATCCGGTTTTTCGTCGAAGTCCTCGGAGCTGAAGAGCTGTACCGCTCGGAACGCGGGCCCGACGCGGAATTCATGCCCACAAACTTCGACGTTCCGGCAGATGCCAAGCTCACGCTCGCCATGTTGCGCCTGCCACCGAACCTCAACATCGAGCTTTTCGAGTGGAGCAGCTCTGAACGGCGCGAGACGCCACCGCGGCACTGCGACGCCGGCGGGCATCACCTGTGCTTCGTCGTGGACGACGTGGATGAAGCGATCGCAGTGCTGCAGGAAATACCTGGGGTACGCGTGCTCGGTGAGCGCAAAGAAGTCGCGGGCGACAGCCCCCGAGTAGCCGGCAACCGCTGGACCTACTTCACAACCCCCTGGGGACTGCTGATGGAAATCGTGGATCGATCCCGCGTTCCAGCCCCGCCCCGGCTGGTCGGTCCCGCGGACTGGACAGCCCCTCCAAATACTTCAGAAAGGACTTGAMIARMSRGQESTLRRLTGLQHTDHIGLTVPNLEDGIRFFVEVLGAEELYRSERGPDAEFMPTNFDVPADAKLTLAMLRLPPNLNIELFEWSSSERRETPPRHCDAGGHHLCFVVDDVDEAIAVLQEIPGVRVLGERKEVAGDSPRVAGNRWTYFTTPWGLLMEIVDRSRVPAPPRLVGPADWTAPPNTSERTNANANANANA
D1-29_02122891iolE_3Inosose dehydrataseATGCGGCTAGCGGGTCACACACTAGGCACCCCGGACCACACGGTTCCCCAAGCACTTGATCTATTCCGAGCCGCAGGGCTCGATGCCGCCGAAGTCATCTACCAGAATGACTACAAATCAGGATTGCCATTAGGTGACCGGCGTGCCGCGAAGGAGGCAATGAAAGCCGCCGAAACCGCAGGGATACCCATCGTAGGTCTGACGCCTTACACGACCGCCATCAACTCACTGGACGACGCGGAATGGCGCACAGCAGTCGATGAATTCCGCGGCGCCATAGAAACCGCACACCTGCTGGGCGCTGACCGGGTCCGCGTCTATGCTGGTTCGTGGCACCCTGGGGACAACGACCACGCGGCGCGTTGGGGCAAACTGCGTAAGGCGCTGGAGGCCCTCGCGCCCGAAGCCGGCCAGGCCGGCGTTCGCCTTTGCGTGGAAAACCACTTCGGCACCATGACCCAGACCGCGGCAGACACCGCTGCCCTTGTCCGGGAAATTGCCCATCCGGCCGTCCGCGTTCTCTATGACCAGGCGAACCTGACATTCACGCACGACGAAACGTACGAACAGGCCTTCGCAGTTCAAGGTGACCTGATCGGTCACGTTCACGTGAAGGACCTCGTCTTCACGGATCCCAACGCGGCCTTCCGCGCCACGGAAACAGCCCGAGTCAACGCTTCCGAGCGGGCGGTCCGGTCGCGGGTCGTCGGAGGCGGCGTCGTTCCATGGTCGGACATCCTCGCCGCGTTGCTGCAGCATGGCTACGACGACGTGCTGAGCATCGAACTCGAGTACCGTTGGCACCCGCAAGACCTCCCCGCGCCCGAGGACGGATTCCGCGAATCCGCCGCCGTCCTGCGCTCAATGCTCTCTGAAGTGAGGAACGCCTGAMRLAGHTLGTPDHTVPQALDLFRAAGLDAAEVIYQNDYKSGLPLGDRRAAKEAMKAAETAGIPIVGLTPYTTAINSLDDAEWRTAVDEFRGAIETAHLLGADRVRVYAGSWHPGDNDHAARWGKLRKALEALAPEAGQAGVRLCVENHFGTMTQTAADTAALVREIAHPAVRVLYDQANLTFTHDETYEQAFAVQGDLIGHVHVKDLVFTDPNAAFRATETARVNASERAVRSRVVGGGVVPWSDILAALLQHGYDDVLSIELEYRWHPQDLPAPEDGFRESAAVLRSMLSEVRNAPGPT0017530_135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ACROBIC_ACID|VITAMIN_C_UTILIZATIONPLANT_DERIVED_VITAMIN_C_UTILIZATION,PGPT0017530-ulaE|sgaU|sgbU-K03079NANA
D1-29_02123993yceMCOG0673Putative oxidoreductase YceMATGACTACCAACCGTCTGCGCGTCGGAGTTGTCGGCGCGGGCAATATCGCCACCATTGCCCAATTGCCCACCCTCGTCCAACGCGATGATGTCGAGTTGGCCGCTCTGGTTTCCCGGCGTGAGAATCCAGGCAACCTGGTCCGGCGCTGGGGCTTCAACGCCGCCTACAAAACGGTGGAGGACATGTTGGATTCGCAGGAGCTGGATGCAGTATTCGTCCTTACGCCGCGGTCCGAGCACGCCCATGCCGTCCAGCTGTGCCTGAACCGTGAAGTCGACGTGTTCTGCGAAAAGCCGTTGGCTCCGGCAACCGATGAAGCAGAACGTCTTGCAGATCTCGCCGACGAGCGGGGCCGCATCCTGATGGTGGACTTCAACCGCCGCTATGCGCCGGTCTATACCGCCGGTCGGGAGGTCTTTGGTGCCAAAGGCGCCACCTTCTGCGTTGCCCAGAAAAATCGCCCTGGATCTGAATACCGTGCGACATTCGAGAACGCCATTCACATGGTCGATCTCCTCCGCTGGTACTGCGGCGGCGAACCGGAGGACGTCGCCGCCCACGCCGCCGGTGATGACCCGTGGGAAGAAGACGGCGTCGCAGCAACTATCCGCTTCAGTACCGGGAACACTGGCGTCCTGATGGCAGCCCGGACAGCGGGTGCATGGAATGAAAAGCTGGACGCCTACGGCGACGGAAAGACCGTCGAAGTCAGGGCACCGGAGACGGTTTCGACCACTATCAAGGGCGTCACCACCTCGCGGGAACTGAGCGCCGAGGCCTACGGCTGGGCTACAGCCACCGAAACCTTGGGGTTCTCGGCGGCCGTTCATCATTTTCTGGACCGGGTTGCTGACAGGGCGCAGCCACTTACTTCAGGCCGGGAAGCTGTCCATACCCAACGCCTGCTCGACCGGATTCTCGCTGCCGCCGGTTTGCCGACAGAAGAGCAAGCCGGCCGGGAATGGGCCAGCCACGCAGTAAACGGAAGCTAAMTTNRLRVGVVGAGNIATIAQLPTLVQRDDVELAALVSRRENPGNLVRRWGFNAAYKTVEDMLDSQELDAVFVLTPRSEHAHAVQLCLNREVDVFCEKPLAPATDEAERLADLADERGRILMVDFNRRYAPVYTAGREVFGAKGATFCVAQKNRPGSEYRATFENAIHMVDLLRWYCGGEPEDVAAHAAGDDPWEEDGVAATIRFSTGNTGVLMAARTAGAWNEKLDAYGDGKTVEVRAPETVSTTIKGVTTSRELSAEAYGWATATETLGFSAAVHHFLDRVADRAQPLTSGREAVHTQRLLDRILAAAGLPTEEQAGREWASHAVNGSPGPT0024195_37DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_MODIFICATION,PGPT0024195-mviM|yceM-K03810NANA
D1-29_021241287yycB_1COG2807putative transporter YycBATGGCTCGACTTCGCCTCCGTCAGGGCAGCCCACACATCGGGGGAGCGGGGAGACAACCGTTCCGCGGCCGGCTCACCGCGCTTGCCGGCATCCTGCTGGTCGCGTTCAGCGCCAGAGAAGCGGTTTCGGCGGTGTCCCCACTCCTTGGTCCAATCAGCGAGGACCTTCCCCTCGACGCGGTGACGACAGGGATCCTTGGGATGCTGCCGACCGCCGGCTTCGCAGTGATGGGCTTCCTGGCTCCGCCGCTCCTCCGGCGTATCCAGCTCGAACACCTGCTACTGGTTGCGATCCTGCTGACAACACTTGGTCAGGTCGGCCGTGCACTGGGATGGAACATCCCGGCATTTTTGGTGTTCACCTGGATCGCCATGCTCGGGATCGGGATGGTCAATGTCGTGATTCCGCCTCTGCTGATGAAGTACTTTCCCGACAAAACTGGGATCCTCGCAGCGCTCCACATAACCCTCCTGGGCGCCAGCACGGCCGTGGCCGCCCAATTCGCCATACCCTTGAGCAATCCTTATGGCTGGCGGTTCTCCATCGGCATTTGGGCGGCCCTCAGCGCGGTCGCTGCGATGCCTTGGCTGATTCTTCTTGCCAACAAGCGGACTGTTGCTCGCTCCAAGACATCACCAGCCAACGATAGGCCGCCTCCCCCTACGAACGCGATCAAACCCTGGAGATCATCAATTGGCTGGGGTGCAGCACTGATCTTCGCTGGTTTCTCGAGCAATACTTTTGCGGCGCTAACTTGGCTTCCGGCTGTTCTTATCGACAGAGGAATGAGTCAGGAAACCGCTGGATCCATGCTGGCGCTCTATTCAATCCTCACCGTGCCTGTCGCCCTGTTTGTGCCTCTGGTAGTGGTGAGAATGCCTCGCCCGCTACCCGTTGCAATCCTGTTTGTCCTCGCATTCGCCATCGGTTACGGAGGCATCCTCTTTGCTCCACCAGCCTCTGCAGTGGTCTGGGTCGTCATAGCCGGACTTGGCCAAGGCGCGTACTCCTTCGCGTTCACGATGATCAATAAGCGAACACGAACGCAATCCGGCTCAGGGATCCTGTCCGGGTTCGCCCACGGAGTCGGTTACGCCCTTGCAAGCGTTGGCCCGTTCTTTTTTGGTCTCCTGCATCATCCAGGGGACGGCTGGCTGCCCTCGTTCGGCATGCTCGGAGCGTGGCTCCTGGTGCTTTTGGCAGGAGCGATGATGGTCAACAAGCCGCGCTTGCTCGAAGACGCCTTCCTGGTGGTACAGCCAGGCACCAAAGAAGCAAGAAGCTGAMARLRLRQGSPHIGGAGRQPFRGRLTALAGILLVAFSAREAVSAVSPLLGPISEDLPLDAVTTGILGMLPTAGFAVMGFLAPPLLRRIQLEHLLLVAILLTTLGQVGRALGWNIPAFLVFTWIAMLGIGMVNVVIPPLLMKYFPDKTGILAALHITLLGASTAVAAQFAIPLSNPYGWRFSIGIWAALSAVAAMPWLILLANKRTVARSKTSPANDRPPPPTNAIKPWRSSIGWGAALIFAGFSSNTFAALTWLPAVLIDRGMSQETAGSMLALYSILTVPVALFVPLVVVRMPRPLPVAILFVLAFAIGYGGILFAPPASAVVWVVIAGLGQGAYSFAFTMINKRTRTQSGSGILSGFAHGVGYALASVGPFFFGLLHHPGDGWLPSFGMLGAWLLVLLAGAMMVNKPRLLEDAFLVVQPGTKEARSPGPT0005211_230DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
D1-29_02125987hypothetical proteinATGACCGCGACGGCACATGCCCCGCGCGTCGCCGTCGTGGGAGCGGCCGGCTGGGCCGGATCACGGCACGCCCGGGCATTCGCCGCGGCAGGTGCCCAGGTCTCCATCCTTGTGGAGAAGGACGAGCGCGGCCTCGCCCTCGCTCAGGAGCTCGGCGCACAGTTGGTGCCGAGTACAGCGGATCTCCATCCCGAACACCTTGACTTGGTAGTCGTAGCACTGCCCACCACGATGCAACCGGTCATATGCGCAGATCTGCTGAACAGGGGATTTCGAGTGTTGACTGAAAAGCCGGTGGCCGCAGATGCCGAAGGTGCTGCCGTCCTGGCTGCCGCTTCCGGGGTACACGACAGACTCATGGTCGGGTATACGCTCCACCACCATCCCGCCGCCGCGCTGGTCTCTCAATGGATCAGGAACAAGAACGTGATCGCCGTGTCTGTCCGTTCCGTCGCCCACAAACAGAACGTCCACTCATGGCGCGCTGACCCGAAAGAGGGCGGCGTCGCTGTAGTGAATGGTATTCACGCCATCGAATTAGTCTCATCATGGTTCAACGGCGATCCGAAAGTACTGGCCACCAGCGCCAGCAGCAACCTCTATGGGTCGCCGGTGCCGGAGCACGTCGTCTCCACCCTCGAATTTCCTGAGGGCGTCATATTCACCATGCAGAGCTATTGGTCTCCCTGGCAGGAGCCTCAAGGACTCAATCAGGGCGACTGGAGTCTCACCATTGACGTCCTGGCCACTGAGGGCCGGATGTTATGGTCCAACGACTCCCTTCACGTGTGGGAGCGTGACGGCGGCCAGTACGTAAAGACCTTTGACCCCTCCGACCTCTTCCTGCGCCAAGCAGAGACAGCGTTGAAGTTCTGCACGGGTGAAACCCCTGCAGTCACATTCGCCCAGGCACTCCGCGCGACAGTAATCGCCGATGCAGTCCTGGCAGCGGCAACATCCAGCGCGGAGGATGTGGTCTCCCCGTAAMTATAHAPRVAVVGAAGWAGSRHARAFAAAGAQVSILVEKDERGLALAQELGAQLVPSTADLHPEHLDLVVVALPTTMQPVICADLLNRGFRVLTEKPVAADAEGAAVLAAASGVHDRLMVGYTLHHHPAAALVSQWIRNKNVIAVSVRSVAHKQNVHSWRADPKEGGVAVVNGIHAIELVSSWFNGDPKVLATSASSNLYGSPVPEHVVSTLEFPEGVIFTMQSYWSPWQEPQGLNQGDWSLTIDVLATEGRMLWSNDSLHVWERDGGQYVKTFDPSDLFLRQAETALKFCTGETPAVTFAQALRATVIADAVLAAATSSAEDVVSPNANANANANA
D1-29_02126750bacC_3Dihydroanticapsin 7-dehydrogenaseATGAGCCTCAAAGACCAGGTGGTTCTGGTAACCGGATCGAGCGGGGGAATCGGCGATGCTGCTGTCAGCGCATTCGTAGCCGCAGGCGCCCTCGTCGTCGGCGCTGATCGTTCCCCCAAGGAGGACCAGGCGCTGGGGGCCTTCTATCCTCTCGACATCACGTCCGAGCAACAATGCGCAACGGTTATCCAGGACATCAAAGCCAGATTCGGCCGCACCGATGTCCTCGTCCATGCAGCAGGAGTGCTCGGCACCACGCCGGACATTATGGAGACAACCACAGAAGAGTTCGACTCCATTCTGAGGATCAATGCCTCTGCAACGTTCTCGATGGTACGAGAGACAGCAAAGTCAATGCTTGAGTCCGGCACGGCCGGCGCCATCGTGGTCTTATCCTCCGTCGCGGCCAAAGAAGCACGCCTGAACTACCTGCCTTATAACGCGAGCAAGCTTGCAGTCCTGCATATCATGTGGTCATTCGCAGAATTACTCGGGCCTCAGGGCATCTCCGTCAACGCCGTGGCACCAGGCCCGGTGAACACACCCATGTGGGCACAGTTTGCCAAAGATTCAGGCCCGGATGCGGCTGCCAACCGGGCGAAGAGGGCAGCGCAACTGCCGATGCGCCGGTTTGCCGAACCCGACGAAGTCGCCCGCGCCATCCTCTTTCTGACCGATCCCGACAACCGCTACATCACCGGAGTGTCTCTCGATGTGGCCGGCGGAGCACACCTGGGAATAGGAACCTGAMSLKDQVVLVTGSSGGIGDAAVSAFVAAGALVVGADRSPKEDQALGAFYPLDITSEQQCATVIQDIKARFGRTDVLVHAAGVLGTTPDIMETTTEEFDSILRINASATFSMVRETAKSMLESGTAGAIVVLSSVAAKEARLNYLPYNASKLAVLHIMWSFAELLGPQGISVNAVAPGPVNTPMWAQFAKDSGPDAAANRAKRAAQLPMRRFAEPDEVARAILFLTDPDNRYITGVSLDVAGGAHLGIGTNANANANANA
D1-29_02127465hypothetical proteinATGAAAACTGCGATTCGACATCATCACACTGCCCTGCACGTTACGGACATGGAGCGCAGCGCCCGGTTCTACGTGGAAGGGCTTGGCCTTGCCCGCTTGAAAGCGTGGACATCGGGCCCATACGTCGGCGAACTTTACGGCCGTCCGGACGTTAAGGTCAAAGCACTAATGCTCTCAACGGGTGACGGTACCTTCAACTTGGAGCTGGTCCAAGTTGAGGATCCGCCACCGGCCGTCAACCCATCAGAGGCGCAGCCGGGGACTGCACATCTTGCTTTTACCGATATTGACCTGCGCAAGGTTTACGCCAGAATGACAGCGCTCGGGTACAGCGCACTGTCCGAACCGGTCGCACCCACGTCGGGCCCGGTTGCAGGAGGCTTGCTGATCTACCTGCTCGATCCAGACGGAAATCGTGTGGAGCTAATTCAGCCGCCAGATTGGCCGCCAAGCGACAACTCTTGAMKTAIRHHHTALHVTDMERSARFYVEGLGLARLKAWTSGPYVGELYGRPDVKVKALMLSTGDGTFNLELVQVEDPPPAVNPSEAQPGTAHLAFTDIDLRKVYARMTALGYSALSEPVAPTSGPVAGGLLIYLLDPDGNRVELIQPPDWPPSDNSNANANANANA
D1-29_02128564hypothetical proteinTTGGCAAGTCCGTGGCACGGACTTGCTGCGCAAAAACGGTACACGGACGCGGACTGCGGTCTGGTCCTCGCCCTATTAAACGGTGAGCACGGTTTAAGAGGGCAAGGTAGTGGTCCCTGTTCGGGAGCCGCTTGTGGTGGGCGAGCAGGCTGGGCCTGTGTTCCGCATATCGACTGTTTGGTTCATGATTCAGCGCTTCGTTGGGTGAGGGGATATCCCCGACGCCGCGTCGCGAGGTCGCTGCGACACATGCAGGAATGGTCTAGGGGGAGCGCTGCTAGGCTTCGCGCAAGGTGTGGCTACCCCTTGCATGCCTGGGGCTCCTGCTATTCGGCCTGCGCCACCGCCCGGATGGCAGTTGGATCCCATGGTGTGGGGGTGAGATCTGGTTGCTCGTGGGGCCGTAGGAGCAGCCTTGAGAAGCCATCCCCGTATGCTCGGGTCCCTAATGAACTCTGCCGCTTCGTAGCGGTTCATCGATTGAGTTACGGGCTGCAGATGATCCTAACCTCAGCAGTGCGGGTGAGGTTAAGGCCTGCCGAAACAGCCGAACAGGGTTCATAGMASPWHGLAAQKRYTDADCGLVLALLNGEHGLRGQGSGPCSGAACGGRAGWACVPHIDCLVHDSALRWVRGYPRRRVARSLRHMQEWSRGSAARLRARCGYPLHAWGSCYSACATARMAVGSHGVGVRSGCSWGRRSSLEKPSPYARVPNELCRFVAVHRLSYGLQMILTSAVRVRLRPAETAEQGSNANANANANA
D1-29_02129219hypothetical proteinGTGGCCACGAGCTGGGAGTCGGGGTTGAAAAGACTGATGCAGGTCGTAATAACTTCCCCCAATATCGTTGCCGGCCTGGCGGAGAGCGCCTACGGCCGCGAGATTGCCGTTACCAGGCAGTTCAACAACGTAAGGGACTTTGCTATTGCCGATCCGCCACTCAAGGCAACGAGACACCCCCTGTTTCCGCAAATACACGGAAAATCTACGCTGCGTTGAMATSWESGLKRLMQVVITSPNIVAGLAESAYGREIAVTRQFNNVRDFAIADPPLKATRHPLFPQIHGKSTLRNANANANANA
D1-29_02130210hypothetical proteinATGTGGCGTGCCCTTCGCGACTCACCGGAACTGCAATTCCTAAACTCTGACAAGCCCCTCAGCCCGCGTCATAAGTACCGGCGGGGGCCGAATGCGCTGGAACTCACGGGCAAGAGCTCAACGTGTAGACGAGCCAGGCCCCACCGCCTGTCCCTTCATGGAATCTCGTTCAACACCAACATCAACACCAACGCCAACGAAGGAGCCTGAMWRALRDSPELQFLNSDKPLSPRHKYRRGPNALELTGKSSTCRRARPHRLSLHGISFNTNINTNANEGANANANANANA
D1-29_02131861dasC_2COG0395Diacetylchitobiose uptake system permease protein DasCGTGAGCACCACAACCTCGCGCCGCCAAGGCCGCGTCGGCGCCCTCCTTCGGGCGGTTCCGGCTTGGGCATACGTCTTCCTCTCAGCCGCGATCGTTCTACCGCCGGTCGCGTGGATCGTATCCACCTCGCTGAAAACCGGCTCGGACACCCTTGAGTTCCCGCCACGATGGATTCCGGACCCGATCTCATTCGAGGGCTTTGCAGGCATACTGACTTCGACGAACATTCGATTTTTTGTTAACTCCCTCATCTACGCCGGCGGTTCTATCGCCCTCGCGTTGGCGATTTCCATCCCGGCAGCATATGTCGCCACCAGGTACCGAAGCCGCCGCATGGAAACTCTGATGACCGGGATCCTGGTGCTGTCGATGGTTCCCGCGATCGTGGTCTTCATCGCCCTGTACTCCATGTTCGTGAGGACAGCCTTGATTAACACCTATCCGATGCTGATTCTTGTCTACACGGCCATCATCTGTGGGCAGACCATATTGTTCCTGCGCAACTTCATTGAGAACATTCCCGTTGAGATAGAGGAAGCGGCTGCGATCGATGGCTGCTCCCGGCCACAGATCCTGTGGCGCATCATCCTCCCGCTCATCCGTCCCGGCATTGCAGCCGTAGCCATCTTCATCTTCGTATTCGTCTGGAACGACTTCCTTGTAGGCACCGTCCTCGCCACCACAGAAGACATGAAGACCGTCCAGAACGGCATCGTGCGGTATATAACCACTGGCTTCGGTAGCTTCTGGGGACTCTTCGCTGCATTCATCGTCGTTGCTTTCATCCCCGTTCTCTCAATCTTCCTGGCCTTCCAGCGCTGGTTTGTTGCCGGCATGACGTCCGGTGGTGTCAAGGGATAAMSTTTSRRQGRVGALLRAVPAWAYVFLSAAIVLPPVAWIVSTSLKTGSDTLEFPPRWIPDPISFEGFAGILTSTNIRFFVNSLIYAGGSIALALAISIPAAYVATRYRSRRMETLMTGILVLSMVPAIVVFIALYSMFVRTALINTYPMLILVYTAIICGQTILFLRNFIENIPVEIEEAAAIDGCSRPQILWRIILPLIRPGIAAVAIFIFVFVWNDFLVGTVLATTEDMKTVQNGIVRYITTGFGSFWGLFAAFIVVAFIPVLSIFLAFQRWFVAGMTSGGVKGPGPT0016540_4384DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02132933melD_6COG1175Melibiose/raffinose/stachyose import permease protein MelDATGTCAACAAACAGCCCGACCCGCACTTCATCTCAGACGGCCACTGCACCCACAGGCATCCAGGCTTTCCGCCGGGCTCGTAAAGACCGCATGGTCTGGTTGTACGTCGTCCCCGTCACTGCCGTGTTTCTTTTTGTCTTCGTTGGACCGCTCATCTACACGGCCTGGACAGCGCTCCACGAGACTTCGTATTACCAGATCGGCAAATTCTCTGGTCTGAACTCTTTTACAAAGCTGTTCTCAGATTCCGACCTGCCCGCCCGCATCTGGACAACGCTTGTATTTTCGCTCGGGGCGCTGGTCATTGCATTGCCCGCGGGACTCTTGTCTGCGATTGTGCTGAACAACCTGCATCGATTCAAGCGCTCCGTCCGCAGCCTCTTCCTGTTGCCGTGGCTTATGTCCCAGGCCACGGCAGGAACAATCTGGCTTTGGTTCCTCAACCCTAATTACGGGCCAGCCTCAGCTATCACCCAAGCCCTTGGGTTCGGTCCTACTGATGTCTTCTCGTCCCCTAATAGTGCGCTCGTCGCCGTGACTCTGATGACGGCGTGGTGGTCCTACCCGCAAGCCATGCTTCTCTTTCTCGGCGCCCTTCAAACCATTCCAGTGGAATTGTACGAAAGCCTCAAAGTGGACGGCGGGGGCATTCGGCACGCATTTGTCAACGTCACGTTGCCTTACCTGCGCAACACCATCGTCTCCGTGGTGATCGTTCTGCTCATGCTCTACGTACAGATGGTCACCATCATCCTGGTAACGACACGAGGTGGCCCCATCGGATCGACCGAGACGCTGTCAATGCGGGTATACAACCAGATGTTCGACAAGTTCGATCTCTCCGGGGCATCAGCAACGGCTATCCTCCTTTTCGCCGTAAACATTCTCCTCACTCTTGTCGCCATTCGCTTCCGACGGAAGGAAAGCCTGTGAMSTNSPTRTSSQTATAPTGIQAFRRARKDRMVWLYVVPVTAVFLFVFVGPLIYTAWTALHETSYYQIGKFSGLNSFTKLFSDSDLPARIWTTLVFSLGALVIALPAGLLSAIVLNNLHRFKRSVRSLFLLPWLMSQATAGTIWLWFLNPNYGPASAITQALGFGPTDVFSSPNSALVAVTLMTAWWSYPQAMLLFLGALQTIPVELYESLKVDGGGIRHAFVNVTLPYLRNTIVSVVIVLLMLYVQMVTIILVTTRGGPIGSTETLSMRVYNQMFDKFDLSGASATAILLFAVNILLTLVAIRFRRKESLPGPT0016535_9461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_021331254hypothetical proteinATGATCAAGAAGCGATGGGGCTTGGCACTCGTAACAGCAGTCGTAGCTAGCCTTGCCCTCAGCGGCTGCTCCCCCTCAACTCCGGAATCTGGGGGGCCGGTGACGCTCAATTACTGGGACTTCCTCGATCCCAGTCAGGACAATCCGCGATCGAAGGCACTGAAGGAAAACATCGCCAACTTTGAGGCGGCAAACCCTGACATCAAGATCAATCTCTCGGTGGTTTCCCTGGGCGATATGCTGAACAGGCTGCCGCAGTCGGCAGCGGCCGGTCAGGCGCCGGATGTGTTTAAGATGTTCACCCCGATCGTGCCCCAGATGGCCGCGGCCGGTGTCTATTCGCCGCTGCCTGATGCTGCGTCCGAGGTCACTGACTGGCTCCGTCCCACGGACACTCTCGCGGGACCTGACGGCAAGCAGGTCGCGGTGCCCTATGAATACCGGACCTGCGCACTGTACTACAACCAGAAAATTCTTTCTCAGATCGGTGCGGCCACTCCGACCACCTACGAGGAAGTCGTGGACGTGGCACAGAAAGCTGCCGCAGCTGGATTCACCGGGTTCGGAACCGGGTTCTCGGACACTGACAATTCAGCCATCATCAGCACTTTCTTCAACTGCTTCATGACGCAGGTCGACCAGGAAATATGGACTGGGGACGGACAGGCAGATTTCGCCACAAAGAAGAGCGAGGAGTTTGGCAATTTCCTTGCCAAGCTCCGGGACGCAAAGGCACTGGGTAGCAACGTCGTTTCCGACACGTATGGCACCGTAGCAGACGGCATGGCCAGCGGCACTGTCGCAATGTCAGTCATGGGCACCGAACGTATCGTGTCGTTCGCATCCCAGAACCCGGACGTCAAGTGGACCAACTTGCCGAAGGCATCTACTGGAGACACCACGGGCACCACCATTGGATGGACACTCGGAATTGGCAACGGGAGCAAAAATACAGAGGCTGCCTGGAAGTTCATCGAATACATGACCGGACCCGAAGCCGGCGCAAAGATGGCCACCGGCGGCGAGGTTCCCACACGCGCTGCCACTTATGAGCAGCCATTCTTCTCCACGCCTGAAGCGAAGGTTGTGAACGATATCGCCGCCTATGTCAAGAGCAACAGCGAACCCCGCACATATTCCGATAACTGGACCTCGCTGGCCACCGGGCTCTCCCAGGCCGGACAGAAACTGACCCTCAACAATCTATCGGGCAGCGAGTTTATCCGTTCCGCCCAGGATGCGGCCAACAAGTAAMIKKRWGLALVTAVVASLALSGCSPSTPESGGPVTLNYWDFLDPSQDNPRSKALKENIANFEAANPDIKINLSVVSLGDMLNRLPQSAAAGQAPDVFKMFTPIVPQMAAAGVYSPLPDAASEVTDWLRPTDTLAGPDGKQVAVPYEYRTCALYYNQKILSQIGAATPTTYEEVVDVAQKAAAAGFTGFGTGFSDTDNSAIISTFFNCFMTQVDQEIWTGDGQADFATKKSEEFGNFLAKLRDAKALGSNVVSDTYGTVADGMASGTVAMSVMGTERIVSFASQNPDVKWTNLPKASTGDTTGTTIGWTLGIGNGSKNTEAAWKFIEYMTGPEAGAKMATGGEVPTRAATYEQPFFSTPEAKVVNDIAAYVKSNSEPRTYSDNWTSLATGLSQAGQKLTLNNLSGSEFIRSAQDAANKPGPT0016545_9299DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02134669glaRCOG1802HTH-type transcriptional repressor GlaRGTGGCAAACCCGGCCGTAGCACTGTCCAAAAACGCCTACGCCTACGAGGAGCTCCGCCGCCAGATCCTCAGCGGGGATATTCCTCAGGGCTCTGTCCTTAACCAAGCACAGCTCGCTCAGGAAATCGGCGTCAGTACCACCCCCTTGCGGGAAGCCCTTCGACGCCTCGCGGCGGAAGGACTCGTTCAACTCGAATCACACCGCGACGCCCGGGTCGCCTCGCTCACTGCAGATGAAGCACGAGACCTCTACGTCATCCGCGAAAACCTGGATCCGTTGGCAGCCGGCCTCGCGGCCGAAAGTAGAACACCAGCAGATGTCGCCCAGATCCGGACCGCCTTGGCGCAGCTGACACCCCTGCACGACGCGGCCGATCTCGGAGCCATGACCGTTCACCGCGAATTCCACCGCGCCATCTACACCGCATCGCACAACCCCCTCCTGATCGGCATCCTGGAAGGTCTGTGGGACAAGGCAGACCGCTACCGGCAAATCGGACTGCAAAGCCAGGAAGACTCCGAAAAAGACCGGATCCGCGTCCAGGAAGAACACATCAAAATCGCCGACGCCGTCGTTGCCGGCGACGCCCTCCGTGCCCGGGAAATCATGCACCGTCACGTCGTAGGCAGCCTCGGCCGAAGGGCCATCTCTGTGCTCTCGCCGAGCTAGMANPAVALSKNAYAYEELRRQILSGDIPQGSVLNQAQLAQEIGVSTTPLREALRRLAAEGLVQLESHRDARVASLTADEARDLYVIRENLDPLAAGLAAESRTPADVAQIRTALAQLTPLHDAADLGAMTVHREFHRAIYTASHNPLLIGILEGLWDKADRYRQIGLQSQEDSEKDRIRVQEEHIKIADAVVAGDALRAREIMHRHVVGSLGRRAISVLSPSNANANANANA
D1-29_021351176hypothetical proteinATGACGGCGTCCAAAACCCGCTGCACTTCCTCGTCCCGATCCAGAGTTTTCACCAGATATGCCGCAGCCTGCGTGGCCTCGGCCCTCGCCTTAACTTTGACTGCTTGCGGCGGAGCGGCCGTCCCCACACGGACTCCCGCTCCGGAGAACTCGATCACAACGGGCCAGTACCCCGACTATTACCCGGCCGAGTACAAGGACCTTGTCGCCGCGGCAGAGAAGGAGGGTGGCGAGCTCACCGTCTACTCGAACACGGACCAGGAAAACTGGGCGCCGGTGTTCCGTGATTTCAAGAAGAAGTACCCGTTCATCAAGGACATCTCCGCGAACAACCTCGGTTCCGACGAAGTTTTCCAGCGCGTTCTGAGCGAAAACGCCACCGGCGGCTCCCCGGCGGACATTCTGGTCACTAACGCTGCCGGCGCCTGGGCAGACTTCGCAGCCCGGGGAGATGTCCTGACCCAGTACACCTCCCCGGAATTGGTGAAGGTCCCTGAGTTCGCCAACCTGCTGCCCGGCGTGACCGCGATGTCGGCGGACGCGATGACGGTCACGTACAACACCGCCTTGATGACCGAAGCGCCGACCGGGCTCGCCTCACTCGCCGAGCAGGTCAAGGCCAACCCGTCCCAGTTCCAGGACAAGATCGGCATCCGCGACATCAAGAGCGCCTTTGGATTTACCGTCTTCCACGCCCTGACGAAGGACAAGCCCGAAGCCTGGGACGCCCTGGCAACCATCCTGCCGCTCTCCCGTCCGGAGAGTTCCTCTGCCACGGAGAAGGTCTTGGCCGGCGAGTACGTCGCCAGCGCACTGGTCAGCGCAGCTCCGGCATTCCCCGTGGTCAAGGACTCCGCCGGTCTGTTCAAGATCGCACTGCCCGACGACGGCACGGTCGTTCTGCCCCGCGGCGTCGGTATCGCAGCGAAGGCACCGCACGCTGCCACGGCAAAGCTCTTCATGGACTTCACCCTTTCGGCCGAAGGCCAGCAGGCTGTTCAGGAAGGCGGCCTGTCTTCCTTCCGCGAGGGCGTCAAGCCGGTCGAGTTCACCTACACGTACGCCGACATCGTCAAGGAAGTCGGGGAGGAGAACATCATCTCCGTTCCCTTCAAGAAGGTCTCCGAGGCAGAAACCGCTGCGTTCACCGAGCGCTGGAACAGCCTCAAAAAGTAAMTASKTRCTSSSRSRVFTRYAAACVASALALTLTACGGAAVPTRTPAPENSITTGQYPDYYPAEYKDLVAAAEKEGGELTVYSNTDQENWAPVFRDFKKKYPFIKDISANNLGSDEVFQRVLSENATGGSPADILVTNAAGAWADFAARGDVLTQYTSPELVKVPEFANLLPGVTAMSADAMTVTYNTALMTEAPTGLASLAEQVKANPSQFQDKIGIRDIKSAFGFTVFHALTKDKPEAWDALATILPLSRPESSSATEKVLAGEYVASALVSAAPAFPVVKDSAGLFKIALPDDGTVVLPRGVGIAAKAPHAATAKLFMDFTLSAEGQQAVQEGGLSSFREGVKPVEFTYTYADIVKEVGEENIISVPFKKVSEAETAAFTERWNSLKKPGPT0003725_432DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-29_021361773hypothetical proteinATGACAACAATCCCCGAAACCAAGCCGCCGGCCCAGGTGGCCCCGCCGCGGCCGGAATATCCGGCTCCGAAGTATCGCCGGATCCTCGGCGCGGACCGCAGTCAGCTGCTTTTCTGGGCAACCATCATTGTGCTGGCGCTCCTGGTTCTTGCACCTGTGGTCCCCACGCTTTACCAGTCGGTGATGGACCGTCCTCTGTACGAGGAGGGCGGTCTGTTCACCCCCGATAACTACATCCGGCTTTTCACCGAGGCCAACTTCGGCTCTGTGGCCCTGAACACCATTTTGTTCGCTGTGATGACAACGGTCATGACGCTCCTGATCGCCGTGCCTATGGCCATCGTCGTCATCCGCACCAACATCCCGGGCCGGAAGTTCTTTGGGGCGGCCATGCAGTGGCCGTTTTTCATCTCGTCGCTAATTTTGGGCTTCGGCTGGATAACCATGTATGGACCCGCAGGCTTCGCCAGCGTCGAGGTCCGCCGGGTCCTGGGCTTCCTGCCCTGGGACCTGTACACCCTCCCGGGCATGGCACTGACCGAAGCCGTGGCCCTCGCACCGATCGCCTACCTTTTCTGCGCCAACGCCCTTCGCAACTCCGACGCATCCCTCGAAGGCGCCGCCCAGACCGTGGGCGCCGGCCCGTTCCGGATCCTCTGGTCAGTCATTATGCCAATGCTGCGCCCGCCCATCGTTTACAGCTCGGTCCTGGTCTTCAGCATGTCCATCGAGACGCTCTCCATTCCGCTGCTCTACGGCCAGCCCGTGGACATCACCGTCTTTGCCACCTTCCTATACAAAAACGGACTGCAGTCCATCGACCCCGACTACGGGATCCTGGGTGCCGCATCCGTGATCATCCTGCTCGTGACGATCCTCCTCGTCGCCGTCCAGGCCAAACTCCTCAAGGACGCGAAGCGCTTCGTCTCGGTCCGCGGCAAGGCCACCAGGCCCCGTCTGCTGGATCTGGGCTGGATCAAATGGCTCGCGGTCGCCTTCATCACCAGCTACGTGGTCATCGGCGCGCTCGTTCCGATCCTCGGGTTGGTGATGCGGTCCTTCACCAAGATTTTCACCCCGCTGCAGAACCCGTTGCTGTCCCTGACGATGGGCAACTACCAGCGGATCTTCGAATTTCCCGCCTACGTCGGCTCGATCCGCAACAGCCTCATCGTGGCCGGCGTCGGTGCCGTCCTGGTCAGCGTCCTAGCCGTCGTCGCCGTCGTTGTCTCCAAACGCTCCAGCTTTCGCTACCGCAAGGTCATCGAGTACCTGGCTTTGGCCCCGCAGGCCATGCCCGGGTTGATCATCGGCATCGGTCTGTTCTGGGCCTTCGCTTTCATGCCGTTCAACATGGGCTCCCTGCTGCAGGGCACCATCTGGGCCATCATCATCGGTTTCGGCATCCGCGCCCTGCCCAGCGCGTTCGGCTCCATCTCCCCGGCGGTCATGCAGATCGGCGAGGAACTGGACAACGCGGCCCGCGTCAACGGTGCGGACTGGCTGCGGATGTTTCTCCGCATCCTGGTCAAGCTCCTCACCCCCGCTTTTGTCGCCGCGATGGTCCTGACTTTCGTGGTGATGATGAAGGAATACTCCCCGGCGATCTTCCTCGGCTCAGCCGATACCGCCGTCATCGGCACCACCATGCTCGAGCTCTGGGTCCAGGGCAACACCGGATCGGTCGCCGCCCTGGCCACCATTCAGATCGTTATCACCGCAGTCTTCGTCGGCGCCGCCGGCCTGCTTATGAAAGGTAAAAAAGATGCCTGAMTTIPETKPPAQVAPPRPEYPAPKYRRILGADRSQLLFWATIIVLALLVLAPVVPTLYQSVMDRPLYEEGGLFTPDNYIRLFTEANFGSVALNTILFAVMTTVMTLLIAVPMAIVVIRTNIPGRKFFGAAMQWPFFISSLILGFGWITMYGPAGFASVEVRRVLGFLPWDLYTLPGMALTEAVALAPIAYLFCANALRNSDASLEGAAQTVGAGPFRILWSVIMPMLRPPIVYSSVLVFSMSIETLSIPLLYGQPVDITVFATFLYKNGLQSIDPDYGILGAASVIILLVTILLVAVQAKLLKDAKRFVSVRGKATRPRLLDLGWIKWLAVAFITSYVVIGALVPILGLVMRSFTKIFTPLQNPLLSLTMGNYQRIFEFPAYVGSIRNSLIVAGVGAVLVSVLAVVAVVVSKRSSFRYRKVIEYLALAPQAMPGLIIGIGLFWAFAFMPFNMGSLLQGTIWAIIIGFGIRALPSAFGSISPAVMQIGEELDNAARVNGADWLRMFLRILVKLLTPAFVAAMVLTFVVMMKEYSPAIFLGSADTAVIGTTMLELWVQGNTGSVAALATIQIVITAVFVGAAGLLMKGKKDAPGPT0003730_929DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-29_021371131btuD_9Vitamin B12 import ATP-binding protein BtuDATGCCTGACGTCGTCGTCAAGAACCTCCGCAAAGACTTCGGAGGCAACACCGTCCTCCACGAGGTCAGCTTCACCATCAAGGACGGGGAGTTCTTCACCCTCCTGGGCCCGTCCGGTTGCGGAAAGTCCACCACCCTGTCCTGCCTCGCCGGCCTGGAGCAGCCCACTTCGGGCTCCATCGCCGTCGGAGACACCGTCCTGGTCGATGACTCCTCGAACAAGTTCGTCCCGCCCGAGGAGCGCAACCTCGGCATGGTGTTCCAGTCCTACGCCCTCTGGCCGCACATGACACTGGCGGAGAACCTGGCGATGCCGCTGAACATCCGCAAGGTCTCCAAGGCTGAGCAGAAGACCCTTATCCACGACGCGCTGGAGAAGGTAGGCCTGGCCCACCTGTCCCACCGATACCCGCACCAGCTCTCCGGCGGCCAGCAGCAGCGCGTCGCCCTCGCCCGGGCCCTGGTCTACTCGCCCAAGGTCCTGCTCCTGGACGAACCGCTCTCCAACCTGGACGCCAAACTCCGCGAACAGGCCCGGGTCTGGCTCAAACGGCTCCAGTCCGAACTGGGCATCACCACCGTCTACGTCACCCATGACCAGGAAGAAGCCCTGGCCATGAGCGACCGGATCGCGGTCATGTCCAACGGGCACATGCTCCAGGTCGCACCGCCCCATGAAATCTACGAACGTCCCGCCACTGCAGAAGTTGCCGCCTTCATCGGACGCTCCAACTTCATCGACGGTACGGTCATCTCCGCCCGCGACGGCGCAGCCACCGTCCGCCTCGACGAGAGCGGCGAAACCATCAACGTCGCCGTCAGCGAACAGGCCGCCAGCGGGGACCTCGTCACCGTGGCCTTCCGACCGGAAAAGGTCTTCCTGACCAACAGAGGCGCCGAACTCCCGGCAGACGCCATCGCCCTCAACGCCGACATCATCACCACCTCCTACGTCGGGTCCCGGTACGAGTACGACCTCAAATACGGCAGCAAAACCCTCCTGGTCGACAGCACAACCGGCGGGCTGACCGGCGCGGTCCGCCTGGTGGTCCCGGCCGAAGCCGTGCGACTCTACCCCCGGGCAAACGTCGTCTCCAAGGACGTCGCCGAACTGATGGCTGTCACCCACTAGMPDVVVKNLRKDFGGNTVLHEVSFTIKDGEFFTLLGPSGCGKSTTLSCLAGLEQPTSGSIAVGDTVLVDDSSNKFVPPEERNLGMVFQSYALWPHMTLAENLAMPLNIRKVSKAEQKTLIHDALEKVGLAHLSHRYPHQLSGGQQQRVALARALVYSPKVLLLDEPLSNLDAKLREQARVWLKRLQSELGITTVYVTHDQEEALAMSDRIAVMSNGHMLQVAPPHEIYERPATAEVAAFIGRSNFIDGTVISARDGAATVRLDESGETINVAVSEQAASGDLVTVAFRPEKVFLTNRGAELPADAIALNADIITTSYVGSRYEYDLKYGSKTLLVDSTTGGLTGAVRLVVPAEAVRLYPRANVVSKDVAELMAVTHPGPT0003735_395DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010NANA
D1-29_021382637citBCOG1048Aconitate/2-methylaconitate hydrataseATGAGCATCGCCACCGCCGCCGGTTCCCACCCCTCCCTTACCCCCCTCGAAGTCAACGGCGACGTGCTCCAAGCCGTGGACATCGTAGGCGCGTTCGGGCCGGACTACCCCCGCCTGCCCATCGTTCTTCGGCTCCTGGCGGAGAACGTCCAGCGGAACATGACCGGCCACGAGCGCGACCAGGCCATGGACGCCCTGCGCCGCTGGCTTGACACCGGGACGAGCACCGCCGAAATCGAGTTCCTTCCGACCAGGGTGCTGATGCACGACACCACCAGCACACCCGCCCTGGTGGACATCGCCGCCATGCGCGACACCCTGGCCGAATGCGGTGAGGACCCTATGGCATTGAACCCGCTGCTGCGCGTGGACGTTTCCATTGATCATTCACTGGCGGTGGAGGAATACGGGCGGGCCGACGCAGCCGCCCGGAACATCAAGCACGAGATACGGAGGAACCGGGAACGCTACCAGTTCCTGAAATGGGCGTCGAAGGCGATGAACGGCGTTCACATCAACCCGCCCGGAACCGGCATCATGCACACCATCAACCTCGAACAGCTCGCCACCGTGGTCACCACCATCGAAAAGGACGGGGTCCGCTGGGCTGTCCCGGACATGATGGTGGGCACCGACAGCCACACGCCGATGATTAACGGCCTCGGTGTTCTCGGCTGGGGCGTCGGCGGACTGGAAGCCCAGACGGTCATGTTTGGCATGCCCGCCACCCTGCGGATCCCCGACGTCGTCGGGGTCCGGCTCACCGGCGAACTGGGAACCGGCACCCTCGCCACTGACCTGGCCCTGACCGTTACCCACCGCCTTCGCGAAGTCGGCGTCACAGGTGAGTTTGTTGAGTTCTTCGGCCCCGGCGTCTCCACGCTGACGGTGGGGGAGCGGGCCGTCGTGGCGAACATGGCACCCGAGTACGGCGCTACCACCGGGTACTTCCCGATCGACGCTATGGCCCTGGACTACCTTGCCGGCACCGGCCGCACAGCGGAACAGACACGCCTTGTGGAGGCTTACGCCAGGCAGGCAGGGATCTGGTTCGACCCGGAAGCAACCCCCGTCTACACGCGGGTGATCGACGTCAACCTGTCCACGATCGCCATGCACGCCGCCGGCCCCCGCCGCCCCCAGGACCTCCTGCCCTACGGCGGCATCCGCAACGCCCTGGAACAGGAGGCCGGACCGAAACTCCCCGGAACCGGGCCGCTGCCGGAGTTCCCCGTTGCCCTGGCCGCGATCACCAGCTGCACCAACACCTCTGACCCGCGCCTGCTGATCGCTGCCGGACTGGTGGCCCGGAACGCCAGAAAGCGGGGCATGAGAGTCCCCGAATGGGTCAAGACATCCCTCGCTCCCGGTTCACCCGCGGCGGCCAGCTACCTCAAGCGCGCCGACCTGACTGAGGACCTCGCCTCCGTGGGATTCGACATCGTCGGTTTCGGCTGCACCACCTGCATCGGCAACCCCGGGCCCCTGACGCCGGTGGTTGCCCAGGCCCAGAATGACGGCGGGAGCGAACCTGTGGCTATCCTCTCCGGGAACCGGAATTTCCCGGGACGGGTGCATCCCGACGTCGAACTCAGCTTCATCATGTCCCCGCCCCTTGTCGTGGCCTTCGCCCTGGCCGGCGACGCCAAACGCGACCTCAGCGCCGAACCTCTCCAGTACCTGGAGGACGGTACACCTGTCTACCTCACGGACCTGTGGCCGACGCGCGAAGAGATCGACGCGCTGGTATTGAAAGCCAACGACCCCGCGGATTTCCGCCGCGACTTCGTGATCGCCAGCCGGGATCCGCAGTGGCGCCGAGTGGAAGCCCCGTACGGCGCACAGTATCCCTGGGATCCGGCGTCGACCATCCTGCGGAGGCCGCCGTTCGCGGCGATGACTGAGGGGAGCCTCTTGGGCGGGTTTACAGCCCACCCGCTGCTAGTCCTCGGCGACGACATCACCACGGACCACATCTCCCCGGCCAGTGCCATCCCGCCACATAGCGACGTGGCGGACTTCTTGGTGGCCAGAGGAGAGGACAGAGGTGACCTGAACGTCTTTGCCTCGCGCCGCGGCAACTGGGAGGTTATGGTCCGCGGTGCCTTCCACGCCAAGTCAGTCAAAAACCTCCTCCACCCCGAAGCGCCTGTCGCGCAGACTGTCCACTCGCCGTCGGGCGTCACCATGCCAATCTGGGACGCCGCTCAGCGGTACCGCAAGGAAGGCGAATCCGTGGTGATGGTGGCGGGGGAGCGGTACGGCATGGGATCCTCCCGGGACTGGGCGGCCAAGGCCCAGCGGCTGCTCGGCGTCAGGGCCGTCATCGCGGTCAGCTTCGAGCGGATTCACCGTTCCAACCTCGTCGGGATGGGCATCCTCCCGCTCGTTATGCCCGCCGATATGAGGGACAAGCTCCTCAGTCTCAAGCCTGGCGACAGGATCAGGCTCGACGCCTTCGAAGACTGCATCCACCCCCGCGCCGCCATCACGGCGGCCATTGTCCGCAGCGACGGAACACAAGAGCCCTTCACCGCCACGGCTGCCGTGGAAACCGGATTGGAATGCGAACTCCTTGCCGTGGGCGGCGTTATCCCCATGATCCTCCGCCGGACCCTGAACCACACGGACAGCTGAMSIATAAGSHPSLTPLEVNGDVLQAVDIVGAFGPDYPRLPIVLRLLAENVQRNMTGHERDQAMDALRRWLDTGTSTAEIEFLPTRVLMHDTTSTPALVDIAAMRDTLAECGEDPMALNPLLRVDVSIDHSLAVEEYGRADAAARNIKHEIRRNRERYQFLKWASKAMNGVHINPPGTGIMHTINLEQLATVVTTIEKDGVRWAVPDMMVGTDSHTPMINGLGVLGWGVGGLEAQTVMFGMPATLRIPDVVGVRLTGELGTGTLATDLALTVTHRLREVGVTGEFVEFFGPGVSTLTVGERAVVANMAPEYGATTGYFPIDAMALDYLAGTGRTAEQTRLVEAYARQAGIWFDPEATPVYTRVIDVNLSTIAMHAAGPRRPQDLLPYGGIRNALEQEAGPKLPGTGPLPEFPVALAAITSCTNTSDPRLLIAAGLVARNARKRGMRVPEWVKTSLAPGSPAAASYLKRADLTEDLASVGFDIVGFGCTTCIGNPGPLTPVVAQAQNDGGSEPVAILSGNRNFPGRVHPDVELSFIMSPPLVVAFALAGDAKRDLSAEPLQYLEDGTPVYLTDLWPTREEIDALVLKANDPADFRRDFVIASRDPQWRRVEAPYGAQYPWDPASTILRRPPFAAMTEGSLLGGFTAHPLLVLGDDITTDHISPASAIPPHSDVADFLVARGEDRGDLNVFASRRGNWEVMVRGAFHAKSVKNLLHPEAPVAQTVHSPSGVTMPIWDAAQRYRKEGESVVMVAGERYGMGSSRDWAAKAQRLLGVRAVIAVSFERIHRSNLVGMGILPLVMPADMRDKLLSLKPGDRIRLDAFEDCIHPRAAITAAIVRSDGTQEPFTATAAVETGLECELLAVGGVIPMILRRTLNHTDSPGPT0001465_3539DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681NANA
D1-29_02139273hypothetical proteinATGCCAAGCACTGATCGTCAAACGGCCAGTTTTCAATCAGGGCTGCCCCGCCATGCCCAGCTGGAACCGGTACTGAACTGGACAAAGCTCTCGCGCAAGAACGATTTGGAGCTCGTGCATCGAAACGGCAAGACCCTGACCTCAGGCAGGGTGGACATGCTCGCCGTGGACTGCAGCGTTTTCTGGCTGATCCAGGACAACGGCAAAGGCCGGGCAATGTTCCTTCCGGCCGACGACGCCATGGTCTTTAGGCACAACCGCGGCGGGCAATAAMPSTDRQTASFQSGLPRHAQLEPVLNWTKLSRKNDLELVHRNGKTLTSGRVDMLAVDCSVFWLIQDNGKGRAMFLPADDAMVFRHNRGGQNANANANANA
D1-29_021401239icd_2COG0538Isocitrate dehydrogenase [NADP]ATGAGTGCGTTCGAGAAAATTGAGGTTGTGGGTTCAGTGGTGGAGCTCGACGGCGACGAAATGACACACATCCTCTGGCAGTTCATCAAGGACCGCCTGATCACCCCCTACTTGAACATCAAGCTCGAGAGTTTTGATCTGTCCCTGGAGAACCGGGACGCGACCGATGACCGGGTGACGTTGGATGCCGCCCATGCTATCCGTGAGCAAAAGGTGGGCGTCAAGTGCGCCACCATCACTCCCGATGAAGCACGGGTGCGGGAATTCGGCCTCAAGAAGATGTGGCCCTCGCCCAACGGAACAGTCCGAAACGTCCTGGGCGGCGTCCTGTTCCGCGAGCCGATCATCATCTCCAACATCCCCCGTCTGGTTCCCGGCTGGAACAAACCCATCATCATTGGCCGGCACGCCTTCGGTGACCAATATCGGGCCACCAACTTCAAGGTCCCGGGGCCGGGGACTCTCACATTGACGTTTACCCCTTCCGACGGCGGGGAGGAGATCCGGCAGGAGGTGGTCACGTATCCGGAGGGAGGCGGCGTGGCAATGGGCATGTACAACTTCAACGACTCCATCCGCGACTTTGCCAGAGCGTCCTTCTCCTACGGGCTGCAGCGGAACTACCCCGTCTACCTCTCCACGAAGAACACCATCCTCAAGGCATACGACGGGCAGTTCAAGGACCTGTTCCGGCAGGTGTTCGAAACCGAATTTAAGGAAGCGTTCGACGCCGTCGGGCTGGGGTATGAACACCGGCTGATCGATGACATGGTTGCCTCAGCCATGAAGTGGGAGGGCGGCTATGTTTGGGCCTGCAAGAACTACGACGGTGACGTCCAGTCAGACATCGTCGCGCAGGGATTCGGCTCCCTGGGTTTGATGACGTCCGTGCTCATGACGCCGGATGGCAGCACCGTGGTCGCCGAAGCCGCCCATGGCACTGTCACGCGGCACTACCGCCAACACCAACAGGGTAAGCCCACCTCCACGAACCCCATCGCCTGCATCTTCGCATGGAGCGGCGCCCTGCGGCACCGCGGCAAGCTGGACCAGACACCGGATGTGGTCCGGTTCGCCGAAACCTTGGAAGACGTGGTCATCAAAACGGTCGTATCCGGAAAGATGACCAAAGACCTCGCACTTCTCATCGGGCCGGAACAGCCTTGGCTCACAACCGAAGAGTTCCTTGCAGCCGTTGATGCCCGCCTTGCCGTCTCACACCTGCCGGTCATTGTCTGAMSAFEKIEVVGSVVELDGDEMTHILWQFIKDRLITPYLNIKLESFDLSLENRDATDDRVTLDAAHAIREQKVGVKCATITPDEARVREFGLKKMWPSPNGTVRNVLGGVLFREPIIISNIPRLVPGWNKPIIIGRHAFGDQYRATNFKVPGPGTLTLTFTPSDGGEEIRQEVVTYPEGGGVAMGMYNFNDSIRDFARASFSYGLQRNYPVYLSTKNTILKAYDGQFKDLFRQVFETEFKEAFDAVGLGYEHRLIDDMVASAMKWEGGYVWACKNYDGDVQSDIVAQGFGSLGLMTSVLMTPDGSTVVAEAAHGTVTRHYRQHQQGKPTSTNPIACIFAWSGALRHRGKLDQTPDVVRFAETLEDVVIKTVVSGKMTKDLALLIGPEQPWLTTEEFLAAVDARLAVSHLPVIVPGPT0001170_5060DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
D1-29_02141465COG0183putative acetyl-CoA acetyltransferaseGTGCCGCGGCGCCGCGGGGAAGCCCAGCTGGCAGGCACAGACGAGGGGGTGCGGGCGGAGAGCAACGAGGAGACCCTTGCCAAACTCAGGCCTGCGTTCTCCCCGAGCGGCACTGTTACCGCAGGCAATGCGGCCGGCCCGGACACCACACTGCCCGATAAACCAGCCCATGCCATCGGCAAGGCACTGGAGACGGCCGGCTGGGGCGTTGACGATCTGGACTTCGTGGAGATCAATGAGGCGTTTGCCTCGGTCTCTGTCCACTCGGCCGCGCAGCTGGGGATCGGCATGGACCGTGTCAACGTCAACGGGGGAGCCATCGCGCTCGGCCATCCCATTGGCGCTTCCGGAGCACGTGTGGTGGTGGCTGCCGTCTATGAGCTCCAGAGGCGCGGTACCGGCAAGGCCGCTGTAGCGCTGTGCGGCGGCGGCGGCCAAGGCGAAGCATTGCTCCTGTCACGATGAMPRRRGEAQLAGTDEGVRAESNEETLAKLRPAFSPSGTVTAGNAAGPDTTLPDKPAHAIGKALETAGWGVDDLDFVEINEAFASVSVHSAAQLGIGMDRVNVNGGAIALGHPIGASGARVVVAAVYELQRRGTGKAAVALCGGGGQGEALLLSRPGPT0008320_7131DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_02142339COG1262Formylglycine-generating enzymeATGCAGTCAACGGCGAAACACCCGTCCACTAAGTGCATCTACCATCTCAGTACCTTTTGGAGCTTCATCCTACGGACCGGTGCTTCTACGACACCCCCCGTCGCCGGCAACGTGTGGGAATGGTGCGCCGACTGGTTCCTGCCCAAGTACTACCGCAAATCCCCTGCGAAAAATCCTCCTGGACCCACCATTGGCGCCGGCAGGGTAATGCGCGGAGGTTCCTACCTATGCCATGACTCGTACTGCAACCGCTACCGTGTCTCGGCCAGAACATCCAACACGCCCGAATCCTCCAGCGGCAACTCCGGCCTCCGCACTGCCGCCGCCATCTCGACCTAAMQSTAKHPSTKCIYHLSTFWSFILRTGASTTPPVAGNVWEWCADWFLPKYYRKSPAKNPPGPTIGAGRVMRGGSYLCHDSYCNRYRVSARTSNTPESSSGNSGLRTAAAISTNANANANANA
D1-29_02143444hypothetical proteinATGAACAAAACCGGATATTTGCACCCGACCGTGGCCAAGGCCAGCACGGCAGTGAAAGTGCTGCTTGCCGGTCTCCTGGCCTTTGTTCTTTCGGCAGGCACCATCTTCGACGCCAGCCAAGAGGCCGGCCTCATGATCGTCGCCACCGGCCCTATCCAAGCTAGCGGTGTCCTGGTCCAGTCTCAACAGTCCTCGATGAACACCCCCGACCTTACCGGGGAACCAGGTTCGCCGCTGTCCCCCCGGCGCGACTGTTCCCCTGAACGTCTCCTTCTCCAACCCCACCGACAAGAGTCTGGCGGCGACCAGGTTATCGGTCAGTATTATCGGCATCACCCAGACACAGGAAGCGGTAGCTGCCGCACTGCCCTGCAGTGCGCGGACCCGCGGACGGCCTCCCATCATCGGGGCCTCCACTTCCCCATAGAGTACGCCCCTGGGTAAMNKTGYLHPTVAKASTAVKVLLAGLLAFVLSAGTIFDASQEAGLMIVATGPIQASGVLVQSQQSSMNTPDLTGEPGSPLSPRRDCSPERLLLQPHRQESGGDQVIGQYYRHHPDTGSGSCRTALQCADPRTASHHRGLHFPIEYAPGNANANANANA
D1-29_02144384hypothetical proteinATGACCGTGTCGCATGAGACCGCATTGGCAGAGCTGGCAGGGCATTTGAAGCCGGTATTCGAGCAAAGCCCTGACGGCGTTTACCTCTGGCTCGACGAACAGCACAAGGTCTGCAACCAGCGGTTGGCCGGCATGTTTGGGTACGACGTCCGCGAGTGGCAGGAGGTCGACGACTTCGCCGACACGTTCATTGCGGACGAGAGTCGGTCACTGTATGTCTGGCACTACCAGCACCAAGTCGGCGGCCTGCAGTATCCGGTGTCCTTCCGCTTCCGTGGCAAGCGCAAGGACGGGTCAACTTTTGACGCGGAGACGGACATGATTCCGCTGACGTACGCCGGGTATGTCGTCGCCTACCACTTCGTCCGCCAAGTCGGCGCCTAGMTVSHETALAELAGHLKPVFEQSPDGVYLWLDEQHKVCNQRLAGMFGYDVREWQEVDDFADTFIADESRSLYVWHYQHQVGGLQYPVSFRFRGKRKDGSTFDAETDMIPLTYAGYVVAYHFVRQVGANANANANANA
D1-29_021451017hypothetical proteinATGAAACTTCAAACGACCAAGAATCGCCCGCTCCTGTTGAGTGCAGGGCTGGCCGCTGTTGTCCTGGCTCTGACAGCATGCGGAGGCACCGCGGCATCGACCGAGTCCGGCGCGTCAAAGAAACAAGTTGAGGTTCAAGGGGCGATGCCGGAACCAGCCGATCCCAAGTCCGTGAAGGAGTACACCAGCGTTGACGGAATCAAGGCCTACGAGCCTGCTGCCTCGCTGGTACCCAAGGACCTCCGCGAAAAAGGAGTTATCGTTTTCGGCGTAAGCCCAACGAATGCCCCCACCTCGTTTACCGGCTCAGACGGGAAGACGTTTGTCGGAATGGACGCGGACATATCACGCGCACTGGGAAAGATCCTCGACATCCAGATTGCCTACAAGAGCTCGACCTTCGATGCACTCATCCCAGGACTGCAGGCCAAACGCTTTGATGCTGTCATCGCCGACATGGGTGTGACCGTGGACCGTTTGAAAGTAATCGACATGGTCGGCTACGCCCGCGGCGGGTACGGCATTGCCACCAAGCCAGGAAACCCACTCAACATTGGTGAAAAGACCATGTGTGGGCGCAAGATCGCGGTGACTTTGGGAAGCATCCAGCAAGTAACAAAGGGACCGGCCTACAGCGCCGACTGTGTTGCACGAGGGGAAGCCCCCATCAACCTCATTTCCGTCCCCAATGGGCAAGAGATGTTTCTTCAGGTGCGCAGCGGCCAGGTAGACGCCGCCTACGCTGATGGACCGGGTGCGGCCTGGGCGAGCAAACAGAATCCGAATGAGATGGAACTGGGGGCCACTATCCCCGGAACCATTCTTTCCATGGCGCTGCCAGGTGGTTCTGAACTGACCCCGGCCCTGGTACAGGCCATAAAGCACCTCGCCAGCTCGCCCGAGTACAAGGAGATCCTTAATAAATGGGGCATGGACTACGCCATCCTCGACGCCCAGTACCTCGACTCCTACAAAGCCGTCCCGACACCTCCCCCCGCAGCGGTTCCCACTAAGTAAMKLQTTKNRPLLLSAGLAAVVLALTACGGTAASTESGASKKQVEVQGAMPEPADPKSVKEYTSVDGIKAYEPAASLVPKDLREKGVIVFGVSPTNAPTSFTGSDGKTFVGMDADISRALGKILDIQIAYKSSTFDALIPGLQAKRFDAVIADMGVTVDRLKVIDMVGYARGGYGIATKPGNPLNIGEKTMCGRKIAVTLGSIQQVTKGPAYSADCVARGEAPINLISVPNGQEMFLQVRSGQVDAAYADGPGAAWASKQNPNEMELGATIPGTILSMALPGGSELTPALVQAIKHLASSPEYKEILNKWGMDYAILDAQYLDSYKAVPTPPPAAVPTKNANANANANA
D1-29_02146768tcyC_1COG1126L-cystine import ATP-binding protein TcyCATGACTTACGATAAAGTTCTCGAAGTCAAGAATCTGCGCAAACACTTCGGTGACAATCCGGTATTGTCAGGAATCGACTTCTCAATGAACCGCGGAGATGTGGTCTGCCTTTTGGGACCCAGCGGCTCAGGCAAATCAACTCTTTTGCGCTGCGTGAATCTCTTGGAAAAACCTGACGGCGGAAGCATTTTCGTCAACGGTGAACGCATGGGTTACGAACTCAAAAATAACAAGTACTACGAACTGAATGAGAGCGGAATCGCCCGTCAACGGGCCCGAATCGGAATGGTGTTTCAAAAGTTCAACCTCTTCCCTCACATGACCGCTCTCGAAAATGTGTGCGTTGCCCCTGGCTGGGTTAAAAGGGAAAACAAGAGCGAGATAGTGAAACGCGCCCACGCTCTCCTGAAGCGGGTGGGCCTCGAAAACAAATCTGACTACTATCCAAGCCAGCTCTCCGGCGGGCAACAGCAAAGGGTCGCCATCGCCCGAGCCCTGGCCATGAACCCCGAAATGATGCTTTTCGACGAACCAACGTCCGCACTTGACCCCGAACTCGTCGGTGAGGTTCTGGAGGTCATGAAGGAACTGGCCACCGGAGGAACCAGCATGGTCGTCGTTACTCACGAAATCGGCTTCGCCCGGGAAGTGGGTGATGAAATCGTATTCCTCGACGGCGGAGTCGTCGTCGAAACCGGTAACCCGGCCGAAGTGCTGCTACATCCCAAAAATAGCCGGACCAAAGAATTTCTCAGTCAAGTTCTCTAAMTYDKVLEVKNLRKHFGDNPVLSGIDFSMNRGDVVCLLGPSGSGKSTLLRCVNLLEKPDGGSIFVNGERMGYELKNNKYYELNESGIARQRARIGMVFQKFNLFPHMTALENVCVAPGWVKRENKSEIVKRAHALLKRVGLENKSDYYPSQLSGGQQQRVAIARALAMNPEMMLFDEPTSALDPELVGEVLEVMKELATGGTSMVVVTHEIGFAREVGDEIVFLDGGVVVETGNPAEVLLHPKNSRTKEFLSQVLPGPT0020790_2568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_02147957hypothetical proteinATGCATAGTGTTCAAAGCAAAGAAAATAATCGCAGCCAGGAACCGGCGCATCGGAGCGAGGTTCCCGAAGACTCATTTCCCATTGTCCGTCAACGCCATGTCGGGAAAATTGTGGCTTCGATCATTGTGGCGGGGTTGGCCCTCGCAATGCTTATTTCCGTCCTGCTGAATGAGAATCTTCGCTGGGATGTAGTGGCTGAGTATTTCACCGCCCAGACTATTCTTGAGGGCATATTGCTGACTCTTTGGCTGACAGCGGTCTGCATGGTGCTGGGGACCGTGCTCGGTGGCGTCATCGGTGTTATGCGAATGTCAAAGAACAAGCTGCTCAATTCAATAGCAGGCTTTTACGTGTGGTTCTTTCGCGCCACGCCCGTTCTCGTTCAGCTGATTTTTTGGTTCAATTTGTCTGCACTCTACCCAACACTTGGCGTCGAGCTTCCGTTCGGTCTGACTTTCCTGCAGGTGGACACGAATGTGGTCATGACGCCCATTGTTGCTGCCATCCTGTGCCTGACCCTCAACGAGGCAGCCTACATGGCTGAAATTACCAGGGGCGGATTCCTGGGCGTCGATTCCGGCCAAACCGAAGCGGCGAAAGCCCTCGGCATGGGAAGGCTCAATACCCTCAGGATTCTCATACCTCAAGCCATGAGAATGATCATTCCCCCCACCGGTAACCAGGTCATTTCATTGCTCAAGGCCACCTCCCTCGTGAGTGTGGTGGGTATCGCTGATCTCCTGCACAGTGCGCAGCTGATCTACGCCTCCAACTACCAAACCATTCCGCTGTTGACCGTCGCCGGACTGTGGTACCTGATCATCACTTCGATCCTTAGCTATTTCCAGAGCCGAATCGAACAGCGTCTCGCACGAGGATTCACGCCCCGGAATGCTGTGTTGAAACGGGAAACAGCTCAGCCAATTGTGGCCCTACAAGAAAGCAACAACAACTGAMHSVQSKENNRSQEPAHRSEVPEDSFPIVRQRHVGKIVASIIVAGLALAMLISVLLNENLRWDVVAEYFTAQTILEGILLTLWLTAVCMVLGTVLGGVIGVMRMSKNKLLNSIAGFYVWFFRATPVLVQLIFWFNLSALYPTLGVELPFGLTFLQVDTNVVMTPIVAAILCLTLNEAAYMAEITRGGFLGVDSGQTEAAKALGMGRLNTLRILIPQAMRMIIPPTGNQVISLLKATSLVSVVGIADLLHSAQLIYASNYQTIPLLTVAGLWYLIITSILSYFQSRIEQRLARGFTPRNAVLKRETAQPIVALQESNNNPGPT0020795_1662DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_021481155soxA_3Monomeric sarcosine oxidaseATGCATACGGAATTCGACGTTGCCGTGATCGGCTTGGGGGCCATGGGGAGCATGGCGCTCTGGCAGCTCGCTGAGGACGGCTTAAATGTCGTCGGGTTTGAACAGTTCGGGATTGGCCATGATCGGGGTGCCGTTGGAGGCGAGTCACGATTGTTCCGGCGGATGCAGACCAGCGGTCCGGAGTACAACCCCGTGATAGATATGGCTCGCAGTCGCTGGGAGAACCTTCAGGAGTTCTCGGACGTCCAAATCCTGACCGAAACTGGAGGCCTCATGATTGGCCGTCCGGGTGATTCCCGGATGGTTGCCGCTCAAGTAGCAGCGGAAAAGGCCGGTCTTGAGATGGAGTACCTCAGCGGGCTGGACATGGAGAATCGCTTCCCCGAGCACCTGCTTGACCAGGGCGAGATTGGAATGTTTGATTCCACCCAGGGATACATTCGTTGCGAACAAGCAGTTCTGACGGCAGTCGCTCGCGCAAGACATCTCGGAGCCCAGGTCCGGGACTATTCAAAGATCTCCATTAAGCACGCTTCGGCGGAGGGTGTGGTGATGACGGATGGGCAAAACGAGTGGACTGCCAAAAAGGCAATCGTGACCACCGGTTCTTGGTCCGGGGACAATCTCCCCTCTGAGCTTCGGGACAAAAGCCGTGCCGGCCGTATCAAGTTGACTTGGTTCAGCCCCCTGCCCGGGCATGACTTCACCGCAGAAAACTTTCCTGTCTTTCAGCGTTTGGTTGATGACGGGACCCTTTATGGAGCGCCGAGCCTTGATGGTGGTGGTTCAGTAAAGATCGCTCCCGGCGGCGCGCCCACGGATATGGCCGGACCCGATGACTACTTCCGCGGCCAGACTGTGGATGAGATCCAAGACATGGAAAGACACGTCGCAAGGTATTTTCCGGGACTCAGCAAGAGTCCGATAAGGGCATGTGCCTGGACAGATTTCTATGTGGATGACTGGATTCCTTTCCTCGGCTTCCTGCCCCGCAGCGAAAGTGTTCTTCTGGCAAACGGCTTTGCGGGATTCGGGTTCAAGATGTGCCCGGGAATCGGACGAATCGCAGCGGACATGGTTCAGGGGAAAAAAGATAGAAAATTTCAATTCATGGAGCCCACGCGCTCGATCGGCTCCCACGCAGGTAAGGCATGAMHTEFDVAVIGLGAMGSMALWQLAEDGLNVVGFEQFGIGHDRGAVGGESRLFRRMQTSGPEYNPVIDMARSRWENLQEFSDVQILTETGGLMIGRPGDSRMVAAQVAAEKAGLEMEYLSGLDMENRFPEHLLDQGEIGMFDSTQGYIRCEQAVLTAVARARHLGAQVRDYSKISIKHASAEGVVMTDGQNEWTAKKAIVTTGSWSGDNLPSELRDKSRAGRIKLTWFSPLPGHDFTAENFPVFQRLVDDGTLYGAPSLDGGGSVKIAPGGAPTDMAGPDDYFRGQTVDEIQDMERHVARYFPGLSKSPIRACAWTDFYVDDWIPFLGFLPRSESVLLANGFAGFGFKMCPGIGRIAADMVQGKKDRKFQFMEPTRSIGSHAGKANANANANANA
D1-29_021492157hypothetical proteinATGGCCGGATGGAATGCTGATACTGCCGCCGGTGCGCTCGGGGTAGGTACTGTCACCTTGGTCGAGGGTTCGTCCTTCTGCATCTCCTTGCAGAACGGGGACATGCACTCCGAACAACCACACGGTCTTTTCGTCCAGGACACCCGTATCCTGTCCGGTTGGAGCCTGACCATCAACGGCCTGCCGCTTGAGCCGCTGACAGCCCTGACCCTGGAGCCCTATCGCGCGCTGTTTGCCGGGCGCGTTCACCGTTCCGACGGATATGCAGACAGCCCGCTGATCGTGGAGCGGCTGCGTGAGGTGGGGGCCGGCGTCCAGGAGCAGATCACCCTCCGCAACCACTCCCGCGAAGAGGCTGAATGCGTGATCGCCCTGAGAATCGAAGCGGACTTCGCGGACCTCTTCGAGGTAAAGGAGGCTCGGATCCAGCGGCGCTGGAACAAAACCAGCCAAGTCGACGCCGACAATCTCACCATCCGGGCCGCCTGGCAGGACGTCCGGAAGGGCATCACCGTCCACGCACCCGGAGCAAGCCTTGCACCGAGCACCCTCACGTACCGGCTGTCCATTCCGCCGCACGGTTACTGGAGCACGGTCCTGACCGTGGTGCCCAACAACGAGGGATCATTTTCCGCAGCGACGTTTGTCCACCCTGACGGGGACGGATTGTCCCCCCGCGATCTACGCCGACAGGAATGGGTGGCGAAGATTCCCGTGCTGCAGATGGGAAACCAGTCCATCCAACGGACACTGCGGCGCAGCTACGACGATCTGGGCTCCCTGCGAATAGAGGACCCGGACCACCCGGACCGCGTAGTGGTGGCCGCCGGAGCGCCCTGGTTCATGACCCTCTTCGGCAGGGACGCGCTGTGGGCATCCGAGATGGCGATGCCTGTCGATCCATCCCTGGCCCTGGGCACACTGCAGACGCTCGCTGACCGCCAGGGCAGCCTGGTGGATCCGATGAGCGAGGAGGAACCGGGCAAGATCCTGCACGAGGTACGGCTCGATGTTTCCAGCGGGTTGTCCCTGGGCGGGAAGTCCGTTTACTACGGAAGCGTCGACGCCACTCCCCTGTTCGTCTGCTTGCTCGGGGACGTCAGCCGCTGGGGGTTTGCCCCGGACACCATCGCCGCTCTCCTGCCCCACGCGGACAGGGCCATGGACTGGATCCGGGACTACGGGGACAAGGACGGAGACGGGTTCGTCGAGTACGAACGCCTAAACCCCCAGGGGCTGATCAACCAAGGTTGGAAGGACTCCTGGGACGGCATCAACTTCGCCGACGGCACCTTGGCCGAGCCGCCGATCGCCCTCTGCGAGGTGCAGGCCTACGTCTACACTGCCTACATGGCGCGGTCGTGGATGGCGTACGACGCCGGCGACACAGCTAGAGGCAATGAACTCGCCGCCAGCGCGGCGGAGCTGAAAAAGCGGTTCAACGAACAGTTCTGGATGCCGGACCGCGGATACTATGCAGTGGCCCTCGACGGGAAGAAGCGGCAGGTCGACGCGTGTGCGTCCAATATGGGCCATTGCCTGTGGCACGGCATCGTGGATGAGGACAAGGCACCGCTCGTCGCCGAACGGCTTATGTCTCAGGAAATGTTCAGCGGCTGGGGCGTCCGGACGTTGGCCAGCGACATGGGCGCGTACAACCCAGCCAGCTACCACAACGGCTCGGTCTGGCCACACGACAACGCAATCATCGCAGCCGGCCTGCTGCGCTGCGGCTTTGTCAAGGAGGCACAACGGATCTCCACCGCCTTGCTTGAGGCCGCCAATTTCTCCGACGGTCGGCTGCCCGAACTGTTCTGCGGATTCAGCCGGCACCAGTTTCCCGAGCCTGTGCCTTACCCAACGGCGTGCTCACCGCAGGCTTGGGCAGCGACAACACCGATCATGCTTGTAACCAGCCTCATGCGGTATGACGCAGATGTCTCCAAAGGGGGCCTATGGATGGACCCGGTCCTCCCGGAGTCCTATGGCGACCTCCACATCGGCAACGCTCCCATGGCAGGCGGCCGCATCACCATCGGCATCACAAATTCCGTGCCAGGAGTACAGGGGCTGCCTGACGGGATGGTGTTCCATCAGGGGCACCGCCCATGGCTGACCGAACTGGTAGATCAGGCGGGCCGGAGCCCCAAGCGCTAGMAGWNADTAAGALGVGTVTLVEGSSFCISLQNGDMHSEQPHGLFVQDTRILSGWSLTINGLPLEPLTALTLEPYRALFAGRVHRSDGYADSPLIVERLREVGAGVQEQITLRNHSREEAECVIALRIEADFADLFEVKEARIQRRWNKTSQVDADNLTIRAAWQDVRKGITVHAPGASLAPSTLTYRLSIPPHGYWSTVLTVVPNNEGSFSAATFVHPDGDGLSPRDLRRQEWVAKIPVLQMGNQSIQRTLRRSYDDLGSLRIEDPDHPDRVVVAAGAPWFMTLFGRDALWASEMAMPVDPSLALGTLQTLADRQGSLVDPMSEEEPGKILHEVRLDVSSGLSLGGKSVYYGSVDATPLFVCLLGDVSRWGFAPDTIAALLPHADRAMDWIRDYGDKDGDGFVEYERLNPQGLINQGWKDSWDGINFADGTLAEPPIALCEVQAYVYTAYMARSWMAYDAGDTARGNELAASAAELKKRFNEQFWMPDRGYYAVALDGKKRQVDACASNMGHCLWHGIVDEDKAPLVAERLMSQEMFSGWGVRTLASDMGAYNPASYHNGSVWPHDNAIIAAGLLRCGFVKEAQRISTALLEAANFSDGRLPELFCGFSRHQFPEPVPYPTACSPQAWAATTPIMLVTSLMRYDADVSKGGLWMDPVLPESYGDLHIGNAPMAGGRITIGITNSVPGVQGLPDGMVFHQGHRPWLTELVDQAGRSPKRNANANANANA
D1-29_02150705hypothetical proteinATGACCGACTTACTGCGTGCGGGAATAGACCGCACGGCTAAGCCCACCCGGGTTGAGGCGGTGGCTATCAGCCTTCGGACTGAGATCCTACTGGGGTTGAGGTATCCCCGCGAAAGGCTCGCGGAAGTCGCCCTGGCGGAAGAGCACAAGGTCTCCAGAGGGACCATCCGAGAGGCCCTGCAGCGCCTTGCCGCGATGGGATTCGTCGTTGGAGAACCTCACAGAGGATTCTCCGTGCGGGAATTCACTTATGACGATGTCATAGGGCTGGGCGAGGTGTTCGCCATGCTTGAACTCCAGGCCACAAAGAGCATTGAATTCCCAGTCAGCACCGCGACTCTGGACATCATGCGCGAAAGCGCTGAAGCGATGGAAGAGCTCGAGCTTCCTCGTGATTGGGACGCCCTCTGGGAACTCGATCGGAAGTTCCACGGCTCGCTCGTGGCTGAAAGCAAAAATCCCTGGCTTCTGGATACGTGGCAACGACTGCAGCCCTTTCTTAGTGTGATTACCGTCCCGCTCTTGCGTCCGGGCGTGCCGTACCCCGGCCAATTAGCCACCGCACGCCATCTTGAGCTCCTGGAAGCCATAGCGGGCGGTGATGTTTCGGTTGCACGACGAGCGATCGAGGACCATTACCACCAACACGACGAGCACATGATGGTCCCGGAACAGCGGGCGGTGACAGTCCCGAAGAGAGGCTGAMTDLLRAGIDRTAKPTRVEAVAISLRTEILLGLRYPRERLAEVALAEEHKVSRGTIREALQRLAAMGFVVGEPHRGFSVREFTYDDVIGLGEVFAMLELQATKSIEFPVSTATLDIMRESAEAMEELELPRDWDALWELDRKFHGSLVAESKNPWLLDTWQRLQPFLSVITVPLLRPGVPYPGQLATARHLELLEAIAGGDVSVARRAIEDHYHQHDEHMMVPEQRAVTVPKRGNANANANANA
D1-29_021511092hypothetical proteinATGAATAATGCACATGAGGCCTTCAGCGTAGGGGCCGTGGTTGCTGACCCAGGAACCACGGCGGCGGGCTACTGTTCAGTCGAGATCCACGGAAGGACACTTCGCCTTCCGGTAGTCATTGTGCATGGGGAACGGCCCGGCCCCGTCCTTGCTGTTACCGCAGGCATCCACGGGGGCGAGTACGTGTCCATGGTGGCCGTGCGGGAGTTCGTTTTTGGCTTAAATGCTTCCGCTATTCAAGGAACGGTAATCGCCTCGCTTCAGTCCAGTCCCCTCTCCTTTCAGGGCAGGAGTGCATTCGTCAACCCTATGGACGGCAAGAACCTCAACCGTGCTTTCCCCGGCAACCCGGACGGCGGCAGCACCGACCGTCTTGCCTACTGGCTGTGGTCCAACGTCATTTCCCGCGCAGACTACTACGTCGACTGCCACAGCGGCGATATTCCCGAGACTCTGGAAAGCTTTGCCGGCGTGAGCCCGGTGGGAACTGCGGATGTGGACGATCTGTCACGTGAACTGGCTGATCAGTTCGATGTGCCGCGCATTGTGCTGTTCGAAGCCGTGGGCTCGAGCATTTGGGCCGCTGCCAAAGCGGGGATCCCGTCCACACTGATTGAAGTGGGCGGAGAGGGCCGATGGTCTGCGGCAGAAGTGGCGATCCAGCAGGAGGGCCTGCGTCGAATTGCGGGCTTCGCGGGGTTGCTGGGCCTGGGCCGAGAAGAGAGGAAGCCTCTGCCTGTTTTCGAGAATCAAGCCGTGATGTGTGAGATCCCGGGCCTGTGGTACAGAAACGTCGAGCCAGGTTCATTCATCGACGCCGGGGCGTTACTTGGGGTCGTTGAGGATCCGTTCGGGACCGTACTTCAAGAGGCGCGGTCTCCCATTTCAGGCGTCCTCCTGTATGGGCTGTCGAGTCTCGCGGCGAACGAAGGGGATCTGATCGCATGTATTGCGCGGCCTAAGGATCTGGACGCGTCAGCGACGCCGTTAAGTTCCGATCAGGGGCGGGAACTCCCTTGGCCGGGAAATCCTCACGACTGCCTCAGCAACTGGGAGCAGGATGGAGAAGGGACAGCGAAACAACTGGTGTAAMNNAHEAFSVGAVVADPGTTAAGYCSVEIHGRTLRLPVVIVHGERPGPVLAVTAGIHGGEYVSMVAVREFVFGLNASAIQGTVIASLQSSPLSFQGRSAFVNPMDGKNLNRAFPGNPDGGSTDRLAYWLWSNVISRADYYVDCHSGDIPETLESFAGVSPVGTADVDDLSRELADQFDVPRIVLFEAVGSSIWAAAKAGIPSTLIEVGGEGRWSAAEVAIQQEGLRRIAGFAGLLGLGREERKPLPVFENQAVMCEIPGLWYRNVEPGSFIDAGALLGVVEDPFGTVLQEARSPISGVLLYGLSSLAANEGDLIACIARPKDLDASATPLSSDQGRELPWPGNPHDCLSNWEQDGEGTAKQLVNANANANANA
D1-29_021521167soxA_4Monomeric sarcosine oxidaseATGACTACCCTCGAAACGGACGTTGTCATTGTTGGAGTCGGTTCTGTGGGGAGCATGGCAAGCTGGCAGCTTGCCTCTCGCGGACTGAAGGTCATTGGCGTGGACCGGTTTTCGATACCCGGGCCCTTTTCTGCCTACGCCGGGGAATCGCGCCTTTTCCGCAAGGTGTACGCGGAAGGCGGGCATTACACACCGATTCTGCAGAGGTCGCAGGATTTGTGGCGCGACCTGGAAAAAATCGGCGGAATGCCCCTGCTCAACACCACAGGCTTCGTCACAATGCTTGATGAAGACCATCCTTTACTCGAATCGCTCATCGAGGCAGGGAAAACGAGTGGCCTAGATTATGAAACCCTCCGGGGCGATAAGGCGAGGGCAAAATATCCCGAACACGTGATCAGGGACACAGACGTGGCACTCTTTGACCCTGAGGGCGGCTACGTGTATTCCGAGAAAGCAGTGGCCACCGCGCTGGTGGAATCGGCCAGGCTCGGCGCGCAGTTCCTGGGAAACCGTAAGGCGCAGTCAGTTGAGCCGTATGGTGACCGGTACATCGTCCGGACCGATCAGGAAGAGATCGTTGCCTCCAGGGTGATTATCTCCCAGGGCACCGGAGCCGGAGCCGTATGCAAGGAACTTGGCGTTCATCTCTCAGTTCGGCCGCAGGTCCTGACATGGTTCCCCATCTCGGATCCGTCTAAATTCAGCCGGGAAGGTTTGCCGGTGTTCATGCGCAGAATCCACGACGTTGGTTTCTATGGGTTCCCAAGTGCAGACGGTTGGACGGTTAAAGTCGCCGGCAGCGTCTACATGGACGAAGTCGAGTCCATGGAGAAACCCCTCTCTTGGGACCCGAAGTATTTGGATACCATACGAGCATGGGTAGCAGAGTACATTCCGAGTCTCGTTCCGGAACCGGTACGGGTTGCCCTGTGTGCTGACGGCTATACTCCCGATGGGACAGGCCTGCTGGGGAAGGTGCCGGGAATGGAAGGTGTCATAGCGGCGGTAGGCTTCTCGGGCCACGGCTTCAAGATGGCCTCCGCGCTGGGTGCCATCGCCGCGGACCTGGTGATAGACGGAACGACTGCCACTGACGTCAGCTTCATGAATCCGGCCCGGTTCCTTGGACCAGATTCCCAACTAACCTCCTTGCCACTGAGCTAAMTTLETDVVIVGVGSVGSMASWQLASRGLKVIGVDRFSIPGPFSAYAGESRLFRKVYAEGGHYTPILQRSQDLWRDLEKIGGMPLLNTTGFVTMLDEDHPLLESLIEAGKTSGLDYETLRGDKARAKYPEHVIRDTDVALFDPEGGYVYSEKAVATALVESARLGAQFLGNRKAQSVEPYGDRYIVRTDQEEIVASRVIISQGTGAGAVCKELGVHLSVRPQVLTWFPISDPSKFSREGLPVFMRRIHDVGFYGFPSADGWTVKVAGSVYMDEVESMEKPLSWDPKYLDTIRAWVAEYIPSLVPEPVRVALCADGYTPDGTGLLGKVPGMEGVIAAVGFSGHGFKMASALGAIAADLVIDGTTATDVSFMNPARFLGPDSQLTSLPLSNANANANANA
D1-29_02153363hypothetical proteinATGGTCAAGGCGACAGTATTGAACGACACGACATCGGTAAATCTCGGAGAGCATGTAGCAAAAGCGACCAGTTCAACACCGGGACAGACCGAGGTGTCCTTCAAGTTTTGGGAAGACAATGGTCTTCGCACCGGGGTGTGGGAGGCCACGCCGGGCACATTCACCAGTACGCGCGAGGGATACAACGAGATCTGCCAGATCCTCAGTGGAACGGCAACCATCACCGACGAGAATGGCAGCTTCGACATCGGACCGGGCTCGCTGTTCGTCACTCCAGCCGGCTGGCGGGGCAGCTGGACTGTTCATGAAACCCTGCGCAAGATGGCGGTTGTTCAGGACCTCCCAGCCCAGCCGGCTGACTAGMVKATVLNDTTSVNLGEHVAKATSSTPGQTEVSFKFWEDNGLRTGVWEATPGTFTSTREGYNEICQILSGTATITDENGSFDIGPGSLFVTPAGWRGSWTVHETLRKMAVVQDLPAQPADNANANANANA
D1-29_021541581gapNCOG1012NADP-dependent glyceraldehyde-3-phosphate dehydrogenaseATGCTTTCATCAACCACCGTCTCCGGAGCGAACACTGAACCAGTGGCAGCACGCCCGGACAAACGCTCCAGATATGCCGACGTTCCCGGAGGAGCCTTCTTCGAAGGCAAGTGGCAGACCGCCGGCCTGACCCTTGAGGTCAGGGATCCGGAAGACGGCCGGTTGATCGGGCGGGTATGCGAATCGACGCCACAGGATGTGAGGCGTGCCATAGACCACATTCACCGCCACCTCCAGGCAGACGACTGGCCGTTGCGGTCCCGTCGACAGGCGCTTGAAAAGGCAACACAATTGCTGGCTGAACAGTCTGAGCGCTTCGCAAACATCATTGCGGCAGAGAGCAGCAAGACCATCACCGAAGCAGAGCATGAGGTCCGCCGCTGCACTGAAACCCTGCGGCTTTCCGCGGCGGCTTCGACCGAGCTGGCGGGCCGGACACTGGGCTTTGAGGACAGCGTGGCTGGGGGGAACAAGATCGGCTGGTACAGCCGGAAACCGGTAGGAATCATTGCGGCCATCACGCCGTTCAACGATCCCCTCAACCTGGTGGCGCACAAGCTGGGGCCTGCTCTCATCGGAGGCAACGGCGTCGTACTTAAACCCTCCGGCCGCACCCCCCTGACGGGGCTGGCCCTGGTCCAGTTGCTGCTCGAAGCTGGCGTGCCGTCAGGACGGATTGCCGCCATCGCCGGTGGTCCGGGCGTTGCCGAAGCACTCGTCACGGATAGCCAGGTGGACCTGATTTCCTTCACCGGTGGTCCCCAAACGGCGGAACGCATCGCCGCAGCCGCCGGCGCAAAAAAGATCCTCTCCGAGCTCGGCGGCAACAACGCCACCATCGTCTGCGCTGACGCGGACGTGATCCAGGCAGCGGACGCCATTGTTGCCGGAGCATTCGGGGTTGCAGGGCAGAACTGCCTTTCCGTGCAGCGTGTCTACGTGGACATCTCGCTGTTCGAGCAGGTCCTCAAGCACGTTGTCCGCCGGACCAAGTCCCTCAAAGCCGGACCGAAGCTGGACCGGAGCTCCGACCTGGGTCCGATGATTTGTGAGGAGGAGGCGGAACGGGTCGCGGAATGGGTGGAAGAGGCCAGGGCGGCGGGAGCGACTATCCACGCGGGAGGCCAGCGCAGGAATGCCTACTACGAGCCGACGATCCTGACCGATGTACCGGCAGAGTGCAGGGTGATCCGGGAAGAAGTATTCGGTCCCGTGGTCAGCATTATTCCGTTCATTGAGGTCTCAGATGCCATCTACGCGGCCAACCAATCTGACTATGGACTCCAAGCGGGCGTATTCACGCAATCCATGGACCTTGCGCTGGCGATCGCCGACAAGCTGCACGTGGGCGCAGTGGTCATCAACGAGACCAGCGACGTCCGAATCGACTCCATGCCCTTTGGCGGATTCAAGAAATCCGGTGTAGGGCGGGAAGGCGTACAGTACGCCGTCCACGAGATGACCGAACCCAAGAGCACAATCATCAATCTGCGCGAACCGCAGGCGCGCTGGCAAGAGCGGGTTGGGTTCCCCGATGCCTTGCACGCAGCCACTGCTACGACCGCAGGGCTTGCGTCATGAMLSSTTVSGANTEPVAARPDKRSRYADVPGGAFFEGKWQTAGLTLEVRDPEDGRLIGRVCESTPQDVRRAIDHIHRHLQADDWPLRSRRQALEKATQLLAEQSERFANIIAAESSKTITEAEHEVRRCTETLRLSAAASTELAGRTLGFEDSVAGGNKIGWYSRKPVGIIAAITPFNDPLNLVAHKLGPALIGGNGVVLKPSGRTPLTGLALVQLLLEAGVPSGRIAAIAGGPGVAEALVTDSQVDLISFTGGPQTAERIAAAAGAKKILSELGGNNATIVCADADVIQAADAIVAGAFGVAGQNCLSVQRVYVDISLFEQVLKHVVRRTKSLKAGPKLDRSSDLGPMICEEEAERVAEWVEEARAAGATIHAGGQRRNAYYEPTILTDVPAECRVIREEVFGPVVSIIPFIEVSDAIYAANQSDYGLQAGVFTQSMDLALAIADKLHVGAVVINETSDVRIDSMPFGGFKKSGVGREGVQYAVHEMTEPKSTIINLREPQARWQERVGFPDALHAATATTAGLASPGPT0018005_346DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131NANA
D1-29_02155984hpr_2COG1052Hydroxypyruvate reductaseATGACTGCCGCCCCGGAACGCACCAGGCCGGTAGTTGCGGTTCTCTACCGAGATGTCCTGCCGCCACGGCTGGCGGAAATCCAGGAGCTCGCCGACGTCCGCCTGACCAAGGCCGGCCCTCTGGCCCAAGCAATGGACGGCGCGGAGATCTTGTACCAATGGCACTCCTTCTCACCTGCCCTACAGGAGAACTGGAATGCCGCTGCGGGCCTGAAATGGGTCCACAACCGGGCAGCAGGAGTAAGCCAACTGCTTTTCGATGAACTGACCCGGAGCAACGTCGTGTACACGAACTCCCGCGGAGTGCTCAGCCGGGGGATCGCAGAGTTTGTGCTCGGTTTCGTCCTGGACATCGCCAAGGACATGCACGGGTCGTTCAGGCTGCAGCACCAACAGCGCTGGCAGCACAGGATCACGCGAAAGATCGAGGGCCAGACGGCGCTGGTAGTCGGCACAGGTTCTATCGGTCGTGAGATCGCGAGGGTTTTCCAGGCGGTTGGGATGAAGGTCAGTGGAGCAGGGCGGACAGCCCGGCCAGGCGACGCGGATTTCGAACAGATCTATTCCTCCAGGGATCTGGTGGACGCCGTTCACGACTACGACTACGTGGTGCTCGCCGCGCCGCTGACCCCGGAGACCAGCGGCTTGGTGAACGCCGAAGTGCTTGCTGCTATGAAATCTACCGCGCATCTGATCAACGTAGGGCGCGGGGAACTCGTTGATACCGAGGCTCTCACTGAGGCTCTGACGTCAGGATCCATTGCCGGAGCGGCGCTGGACGTTGTACATCCGGAGCCTCTGCCTGAAGGGCATGCTCTGTGGAGCATGAAGAATGTCATCATCACACCCCACATGAGCGGTGACACGGAAGACTACCACGACGATCTTGACCGACTTTTTATCGACAATCTTCAGCGGTTCTGCAAGGGCGAACCCTTACGGAATGTCGTAGACAAGGCCCTTGGATTCGTCCCCTCGGAGTAGMTAAPERTRPVVAVLYRDVLPPRLAEIQELADVRLTKAGPLAQAMDGAEILYQWHSFSPALQENWNAAAGLKWVHNRAAGVSQLLFDELTRSNVVYTNSRGVLSRGIAEFVLGFVLDIAKDMHGSFRLQHQQRWQHRITRKIEGQTALVVGTGSIGREIARVFQAVGMKVSGAGRTARPGDADFEQIYSSRDLVDAVHDYDYVVLAAPLTPETSGLVNAEVLAAMKSTAHLINVGRGELVDTEALTEALTSGSIAGAALDVVHPEPLPEGHALWSMKNVIITPHMSGDTEDYHDDLDRLFIDNLQRFCKGEPLRNVVDKALGFVPSENANANANANA
D1-29_02156903fdh_1D-threo-aldose 1-dehydrogenaseATGAAAAGAACGATATTGCCTGGCGTCGGTCGAGAGGTCACGCACTTGTGTGTGGGGACGAGCCCACTCGGCTCGGCGATGCCGTTGGTGTACGGGGGAACGGTGACCGACGTCAGTGCTCGGGCCACCATTGATGCAGTGCTCGACAGCGAAATCCGATTTCTAGACACATCGAATGCGTATGGGGAAGCCGAACGTCGCATTGGAGAAGTGCTGAAATCTAGAGGTTTGCCCGAGGACTTCGTCGTGTCTACTAAAGCAGACCCCTTGGGTAAGGACTTCAGCGGGGCCCGGGTGCGAGCGTCCCACACGGAAAGCACCGCCCGACTCGGAGTGGAAACGCTCGACCTGTTCTACCTGCATGACCCGGAGCTATTCTTGTTTGACGACCTCACAGCAAGTGGCGGTGCCGTCAACACAATGGTGGAACTCAAACGCGACGGTTTGGTGCGCGGCATTGGAGTTGCCGGAGGCGACCTCGATGCCATGCGTCGCTATGTCGACCTTGGCATATTCGATGTCGTCCTGAACCACAACCGCTACACCCTGCTCGATCGCACCGCCGAGCCGCTGATAAACCAGACTTTGGATGCTGGCGCTGCCTTCATTAATGCCGCCCCGTACGCTAGTGGCTTTCTGGCCAAAACATCCCGAGCAACCTACCAATATGGGGCACCCTCCAAGGATGTGGTCCGTGAAGTCCAACGTCTTCGGGCCGTGTGCGCCGAGTACGGCGTTTCGCTACCTGCGCTGGCATTGAGGTTCTCGACTCAAGACCCCCGCATAAGTGCAACTGTCGTCGGGGTTTCGCGCCCTGAGCGCATCGCCGAACTGACATTGAATGACGCCGCAGAGATTCCCAACGACATCTGGTCAGCGGTTGAGGACGCACTTGGCTTTTGAMKRTILPGVGREVTHLCVGTSPLGSAMPLVYGGTVTDVSARATIDAVLDSEIRFLDTSNAYGEAERRIGEVLKSRGLPEDFVVSTKADPLGKDFSGARVRASHTESTARLGVETLDLFYLHDPELFLFDDLTASGGAVNTMVELKRDGLVRGIGVAGGDLDAMRRYVDLGIFDVVLNHNRYTLLDRTAEPLINQTLDAGAAFINAAPYASGFLAKTSRATYQYGAPSKDVVREVQRLRAVCAEYGVSLPALALRFSTQDPRISATVVGVSRPERIAELTLNDAAEIPNDIWSAVEDALGFPGPT0017915_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064NANA
D1-29_021571539hypothetical proteinATGACTTCATCGCCCCGCCGTCTCTTCCTAGGTGGAGAACTACATAATTCGAGCGCGAGCACTGCCGCGTCGCTACGAGAGGCTTTCCGGCGTATCCGGGAACTTGGCGCAGATACGGTACTCGCGCCGGTGTCATGGGAGACGATCGAACTCCGCGAGGGAGTCTTTGATCTCTCGCTGGTAGACACCGCCCTGGAAACAGCCGAGACGTACGGGTTGGCTTGGGTTCCGCTGTGGTTTGGAGCCTGGAAGAACGGCGCGTCAACATACGTTCCAGGATGGGTCAAGCGAGACAGTGAGCGCTTCCCACGCGCTCACTCAACAGCGGGGGCGATGCACCATATTTCACCGTTCGGTGATGAGATTGCCGCGGCCGATGCCACCGCCTTCGCTCAGGTCCTGGCGCGGATCAAAGAGTCCGGCGCGGCCCACTTAGTGCCGTTCGTTCAGGTGGAAAATGAACCCGGGCTTCTGGGCGCTCGCCGGGATGAGAGCGACGTGGCTTCGGCATGCTGGTATCAGGATGTGCCGGATGCTGTGATTGCCGCGGTTCGAGACACCAGCGGACGCCTTCGCTCGGCGTGGGAGTCAAAAGGCAGGCAGGCCGAAGGCTCTTGGAGCCAGGTCTTCGGGCCCGAGGCGGACGAGGCTTTCATGGCATGGGCCTATGCCACCCACATTGAGAAGGTCGCGGCGCGCGGCAAAGCCGAACTGGGCGTCCCGCTTTACGTCAACGCTTGGCTCGACGCAGTCAACCCGATGACGCCCGCAGACGAGCTTGTCGCGGGCGGTGCCGAGCCAGGCAGTTATCCAAGTGGGGGTCCAGTTCCCCACTTGCTCCCGCTGTGGCGGGCGTTGACACCGTCCATCGACTTCTACTCTCCCGACATTTATTTCGGCGACTTCGACGCCACGTGCGGTGCGTACGCTGCGATATCCGACCGACTCGTCATCCCCGAAATGAGACGAGACCAGCTCGGCATCGCCCACATGTTCCGCGCCATCGGTGAGCACAACGCTGAGTTGGTGGCACCGTTCGGCCTGGACTCCCTTCACGCCGGCGCTCCCGACCACGACGAGATAGTGGACGCGTACGGGCTCTTGGCGGCAATGCGGGAAACCGTCGTCGGCGCACCCTCCGACTCGGTGAGGGGCTTCTTCGTCGACCGTGCGAACCCCGTCGCTCGTCTCACCATCGGTGAATTCGATCTCGTCGCTTCGCTCGATGATCCCCGCGGCATGCTCGACGAGGGTGAAATCGGCTTTGGTATCGCCGTCGACATGGGAAGCGCGCTGCGGGTGGCAGGTAGGGGCTTTCTACTCCAGCCAGCCGAGCCGGTTACCGGTCGCACGGGACTCGCGTCGGTCATAGAGAGAACGCGGGGGATCGAGGTCCACCGAGTACTGAACGGCGACGAGACCGGCGGTGGTAACGAGGTGCGCTTTCATCGCCTCTACTCCGGCCGCGGCCAGGGCGTCGTGCCCTTCAACACGCGCTTCACAGGCATCATTGATATCGAGCTGTATCACTTCGAATGAMTSSPRRLFLGGELHNSSASTAASLREAFRRIRELGADTVLAPVSWETIELREGVFDLSLVDTALETAETYGLAWVPLWFGAWKNGASTYVPGWVKRDSERFPRAHSTAGAMHHISPFGDEIAAADATAFAQVLARIKESGAAHLVPFVQVENEPGLLGARRDESDVASACWYQDVPDAVIAAVRDTSGRLRSAWESKGRQAEGSWSQVFGPEADEAFMAWAYATHIEKVAARGKAELGVPLYVNAWLDAVNPMTPADELVAGGAEPGSYPSGGPVPHLLPLWRALTPSIDFYSPDIYFGDFDATCGAYAAISDRLVIPEMRRDQLGIAHMFRAIGEHNAELVAPFGLDSLHAGAPDHDEIVDAYGLLAAMRETVVGAPSDSVRGFFVDRANPVARLTIGEFDLVASLDDPRGMLDEGEIGFGIAVDMGSALRVAGRGFLLQPAEPVTGRTGLASVIERTRGIEVHRVLNGDETGGGNEVRFHRLYSGRGQGVVPFNTRFTGIIDIELYHFENANANANANA
D1-29_021581029hypothetical proteinATGAATAAGCTGATCCGCCCCGGTGAGATCATGACCGACACTGAAGGCAAGCGCATCCACATTCACGGCGGCTCCGTACTTGCCGTGGACGGCGAGTACTACTGGTATGGCGAAGACAAGTCCCAGTCAACACCAGCCAGCGGTAGATGGCATAGTGGGGTTCGCGCCTATCGCTCCCCCGACCTCATGTCCTGGACTGACCTCGGGCCGATCCTGCCAGTCGAACCCAACGGCCCTGATTCACCCCTGCACCCTGCCAAGATGATGGACAGGCCGCACATTGTGCGTCACCCCTCTACTGGAAAATTCGTTTGTTGGATGAAGGTGATGCACGAGGACGGCAAGCAGCGCTCCTGGGTATACCAGGCTGATCGATTCGAAGGACCCTACCTTCTGGTCCGCACCGGTTTTGAACCCCTTGGCATGAGTGCCGGCGACTTTGACCTCGTGGTCGACCCAGAAACAGGCCGTGGCTACTACTTCTTCGAACGCGTTCACTCCGAGCTCATTTGCGCCGACCTTACAGAGGACCTGACGGATGTCACGGGCACATACTCCACGCACTTCCCCCACCCTCACCCACCCCTCGTTCGCGAAGCACCAGCATATTTTCGGCATGAAGGCCGCCATTACCTCATCACTTCAGGTACGAGCTGGTATTTTCCCAATCGTTCAGAGGTGGCCGTCGCTGACGACTACCACGGCCCATGGACAGTGATCGGGGACCCCCACCGCAATGATCCGAGCGGCACATCATTCCACTCCCAAATTTCCTCCGTGCTGACCCTTGAGGACGGCCGGCATATCGCGCTTGCAGACCGATGGCTCCCCGACGCGACAGACGACCTGATCCGTCGGGGTTGGCGGGCAACCGAAGCGCAGTTCACAGGGGGCGAACGAGATCCCGAAATTGACGCGTTCGTTCATGCCGGCGCTCCCGACACGTCTCGCGCTCGCCACGTATGGCTGGAAATTCGTTTCGAAAACGGTGTTCCAGTAATCGACTGGCAGGACGCGTGGCGGCCGTAGMNKLIRPGEIMTDTEGKRIHIHGGSVLAVDGEYYWYGEDKSQSTPASGRWHSGVRAYRSPDLMSWTDLGPILPVEPNGPDSPLHPAKMMDRPHIVRHPSTGKFVCWMKVMHEDGKQRSWVYQADRFEGPYLLVRTGFEPLGMSAGDFDLVVDPETGRGYYFFERVHSELICADLTEDLTDVTGTYSTHFPHPHPPLVREAPAYFRHEGRHYLITSGTSWYFPNRSEVAVADDYHGPWTVIGDPHRNDPSGTSFHSQISSVLTLEDGRHIALADRWLPDATDDLIRRGWRATEAQFTGGERDPEIDAFVHAGAPDTSRARHVWLEIRFENGVPVIDWQDAWRPNANANANANA
D1-29_021592412Beta-xylosidaseATGAGCGCCTTTGTGATAGACCCATGGATGGACGAGGGGCTGGCTTCCAACGAACGCGCCGCCCTGCTGCTGGAAAAGCTGAGCCTTGACGAGAAGATGGCCCAGGTTTCCTGCTACTTCCCCACCGACATCACGCAGACCGGCGATTTTGGTGAGCGTTTCCCGTACGGCATTGGTGAGGTTTCGTGCCTCGAGGCGCGTTCTGCGCTCACGCTGGATGAGGTCACCGCCTTTCAGCATCGGGTGCAGGCGCAGGCCATGGAGGGTTCCGGGCACGGGATTCCAGCAATATTTCACATGGAGGGGCTCTGCGGCGCGTACCTTCCAGAAGCGACGAGCTTCCCCTCCGGGCTCGGACGGGCCGCTGCATGGAATGTTGACCTGGAGCGGGAAGTCGGAAACATCGTGGGCCGGCAGGAACGGGCAGTTGGCATCACGCACACGTTGGCTCCTGTTCTGGATGTTTCCCGCGACCCTCGCCTGGGACGGCAGGGTGAGACCTACGGAGAAGACCCAACCCTCGCGTCCGCTCTCGGCGTCGCTTACACCCAGGGGCTGCAAGGCGAGGATGCAGCCGGCCGGCGCACAGAGGCGGTAGCAAAGCACTTTGTCGGTTCGCACCACACCGAAGGCGGCATTCACGGGGCCCACTGCAACATCCCCGACCGTCTGCTGTTGGAGGTGTACGCCAAGCCCTTCCAGGCCGCAATCACCCTTGGTGGGCTGCGGGGTGTGATGCCTTCCTACAACTCTGTGGGCGGCGAGCCGATGTCCGCCTCCGTCCGGCTGCTCAAGACACTGCTGCGGGAACAGATGGGCTTCGACGGCTTGATCGTCTCTGACTACGGCGCCGTGGGAAACCTTCACACCGTCCAGCATGTTGCAGAGTCCCCCGCACAGGCCGGCCTGGCGGCCCTGCGTGCGGGGATGGATGTCGAGCTCCACGTGCCGCAGGGATTCGGCCCCGAACTGCGGGAGTGGTTCGCGGACGGACGCGCCGACGTTGCCCTCCTCGACCGGGCGGTTCACCAGGTTCTCACCGCAAAGTTTCGCATGGGACTCTTTGAGCACCCCTTTGCACCGGACTCCGCCGACCGGGACACTTCATTTCAGTCACCTGCCGACAGGGCCGTGGCTGTACAGTCTGCCCGGGAATCGCTGGTCCTTCTGCACAATGACGGTGCCCTGCCGTTGCAGCCGGACATCCGGACACTCGCAGTTATCGGCTGCCACGCGGCGACTGCCCGGTACTTTTTTGGCGGCTACACCCACTACTCCATGGCAGAGGGAAAACTCGCCGTCAACACCTCGATGGCCGGCCTCACCACCAGCAGCGAAAACCATCAGAGCGTGACCAACACCGTTCCAGGCACCACCATCGAGGCGTCCGACGGTCCGGCGTTCGAGGAACTGCTGCTGCAGCAACAGCCAGGCATCCGCAGCCTCCTCGACGAGCTTCGCATCCGGCTACCCGAAACGGAGGTGAGCTGGGCGTACGGGTACCCAATTGCCGGCGGCGACGACTCCGGACACGACGAAGCCATCGCTCTCGCCGATAGGGCCGACGTTGTGCTCCTAACGCTCGGAGGCAAACACGGCACGGCCTCCATCGCGTCAATGGGCGAGGGCATTGATGCAACCAACATCAACCTGCCGTGCTGCCAGGACGACCTGATCGTCAAGCTCGCCAAACTGGGCAAGCCAATAATCGGCATCCACCTCGACGGCCGCCCGGTATCCAGCGACGCCGCCGACACACACCTGGCGGCACTCCTGGAAGCATGGAGCCCCGCCGAAGGCGGAGCCGAAGCTATCGTCGACATCCTCACCGGTGCCCACAACCCGAGCGGGCGGTTACCGGTCAGCGTCGCAGGCAACGCCGGCCAGGTTCCGGTCTACTACAACCACCCGCATGGGTCGGCTTGGAACCAAGGCGAGAGCATCGGGTTCCCCGATTACGTCGATGCGCCCCACACACCGCGATACTTCTTCGGCCACGGGCTCTCCTACACAACGTTCGACTATTCGGATCTTGAACTCTCGCAGCACGAAGTAGCCGCTGACGACACGATCACCATCTCACTCACCGTGACCAATAGCGGAGCGCGGCCCGGAACCGAGATTATCCAGCTCTACGTCAGTGACAAGTTCGCATCGGTCTCGAGGCCAGTGCTGGAGCTCGCCGGTTTCCGCCGGCTCGACCTTGAGCCGGGGCAGGCAGCCCGGGTCCGCTTCCAACTCGATATCAGCCAACTGGCCTTCCTCGACGCCGACATGCGCTGGCGGGTCGAATCAGGGGAAGTCGACATCATGATTGGCGCCTCCTCGAACGACCTGCGGCTGACGGAATCGGTATCCATCGTTTCAGGCGCCGTGATTGACGGCAAAAACAGAAGCTTCTATGCCGGCTAGMSAFVIDPWMDEGLASNERAALLLEKLSLDEKMAQVSCYFPTDITQTGDFGERFPYGIGEVSCLEARSALTLDEVTAFQHRVQAQAMEGSGHGIPAIFHMEGLCGAYLPEATSFPSGLGRAAAWNVDLEREVGNIVGRQERAVGITHTLAPVLDVSRDPRLGRQGETYGEDPTLASALGVAYTQGLQGEDAAGRRTEAVAKHFVGSHHTEGGIHGAHCNIPDRLLLEVYAKPFQAAITLGGLRGVMPSYNSVGGEPMSASVRLLKTLLREQMGFDGLIVSDYGAVGNLHTVQHVAESPAQAGLAALRAGMDVELHVPQGFGPELREWFADGRADVALLDRAVHQVLTAKFRMGLFEHPFAPDSADRDTSFQSPADRAVAVQSARESLVLLHNDGALPLQPDIRTLAVIGCHAATARYFFGGYTHYSMAEGKLAVNTSMAGLTTSSENHQSVTNTVPGTTIEASDGPAFEELLLQQQPGIRSLLDELRIRLPETEVSWAYGYPIAGGDDSGHDEAIALADRADVVLLTLGGKHGTASIASMGEGIDATNINLPCCQDDLIVKLAKLGKPIIGIHLDGRPVSSDAADTHLAALLEAWSPAEGGAEAIVDILTGAHNPSGRLPVSVAGNAGQVPVYYNHPHGSAWNQGESIGFPDYVDAPHTPRYFFGHGLSYTTFDYSDLELSQHEVAADDTITISLTVTNSGARPGTEIIQLYVSDKFASVSRPVLELAGFRRLDLEPGQAARVRFQLDISQLAFLDADMRWRVESGEVDIMIGASSNDLRLTESVSIVSGAVIDGKNRSFYAGPGPT0019110_2675DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
D1-29_021601854hypothetical proteinATGAAGATCCACTCCACCCTTGCCCGCCGCGGAGGGATTGGCACCCTTGCTGCCACCTTGCTCGTCAGTGCTGGACTCGGCACGGCGAGCCCGGGGCTTGCCGCACCACCTGTATGCGCGACCGTCGGCGGCGCCCTGCAAGTGACTGAGGGCTGCATCGACCCGACATATGCCACGCCCGTCATCGACAGCGAGACCGATGAAACAGCGCCCATGCCGCACCACCGCATCAGGGGCCACTTCGAGGGCACGAACATCCAGTTCACCGTTTACCTCCACGCCGAGGAGAACAAAGCGCAGTGGGAGGGCCGGTTCTTCCAGTTCACCTACCCCGTTGTGTTTCCTGCGGCACCGGACACCTCACGGGCGGATGACCGCGCCATCGGGTTTGCGCTCTCCAGTGGCGGTTACGCGGTGCAGGCCGGGAACACGTCTGTGTCATTGGGATATCGGCATGCGGCCGCCGCCGCGAAGTTCGCCGAGACGGTGGCCGCGAAGTACTACGGCAGTAACCGCCAGATTTCCGGTTACCTCTACGGGCCCAGCGGAGGTTCGTTCCAGACGGTCGGCGCCGCTGAAAACACCACCGGAGTGTGGCAGGGGTTCGTCCCTCTGGTTCAGGCAGTGCCCGCACCCACGTCCTACAATTTCCTTGGCCGGTCCGCAGCGGAACTCATCCTCGGTGACAAGGCTGACCAGATCCGAACCGCGTTGCTGCCGGGAGGCAGCGGTGACCCGTTTGCCGGCCTCGATGAGGCCGAGCAGGCCATGCTGAAAGAAGTTCACGCTCTTGGCATTCCCTGGCAGGGGTGGGAGTACCCCGATTACCTGTTGGGCCGCTCGGAGCAGTACCCCAACGGTCTCGCCAACAGCACCCCGCTTTCCTATGATCCGAGCTACGTCAACGACTTCTGGAGCGCGGACGGTTACCTTGGCACGGAGAATTCTCCGCTGGGTGAGCGTGTGCGGGCAGAGCTGGCCAATGCGGGCGACAACCTTGCGAACCGCTGGAACATCGCCAACCGCTTCTACTACCGGTACCAAATCCCCGCCGCGAGCGAAGGCTGGATCGGGCTTGACCAGTTCCGCGGATCCGATGGCACACCGCTCTATCCGCAACGGCCGGTGAAAGCCCCGGGCTTCGGAGGTGCCGTATCCGGCAACGCCGCTTTCGACGGCTCCATCAATGGGAAGGTCATCGCGGTGTCCAACCTCTACGACACCGATGCCTTGCCGTGGCACACCGACTGGTATCGCCATCGCGTCGCGGCCAGCCTGGGCGCCGCCGCCGCCGACACCTACCGAGTCTACTTCAATGACCACGCGGACCACCAGGACGCGCCTGTCACAGGCGAGCGGGCCAAGCACCTGGTGAACTGGTACGGGATGGCCGAGCAGGCACTCCGGGACGTCAGCGCGTGGGCAGAAAAGGGCATTGAACCGCCAGCGTCCACCAACTATCAGGTCACCGATGCCCAGATCGTCGTGCCCGACAACGCCGCCGCTCGCCGGGGGATTCAACCTACAGTCGACCTCACCACGCAAGGCAAGGAGACCGCCGCGGCCGAGGCTGGCCAGGCAGTTCCCCTCAGTGCCAAGGCGCAGGTACCCCCGGGCGCCGGCAAAATCGTCAAGGCCGAATGGGACCTCGACGGTGACGGGGTCTACACGGACGCACCGCTCACCCGAACAGGAAGTGTCATCACGCTTCAGACAACCGCCACGTTCGACAAGCCGGGGACGTACTTCGTCGCGCTGCGGGTCTCTTCAGAGCGCGACGGCGACCCGACGGCCAGGTTCGCGCTGGCGCAAAACCTCGACCGGGTCAAGATTATCGTCACAGCCGCCGACTGAMKIHSTLARRGGIGTLAATLLVSAGLGTASPGLAAPPVCATVGGALQVTEGCIDPTYATPVIDSETDETAPMPHHRIRGHFEGTNIQFTVYLHAEENKAQWEGRFFQFTYPVVFPAAPDTSRADDRAIGFALSSGGYAVQAGNTSVSLGYRHAAAAAKFAETVAAKYYGSNRQISGYLYGPSGGSFQTVGAAENTTGVWQGFVPLVQAVPAPTSYNFLGRSAAELILGDKADQIRTALLPGGSGDPFAGLDEAEQAMLKEVHALGIPWQGWEYPDYLLGRSEQYPNGLANSTPLSYDPSYVNDFWSADGYLGTENSPLGERVRAELANAGDNLANRWNIANRFYYRYQIPAASEGWIGLDQFRGSDGTPLYPQRPVKAPGFGGAVSGNAAFDGSINGKVIAVSNLYDTDALPWHTDWYRHRVAASLGAAAADTYRVYFNDHADHQDAPVTGERAKHLVNWYGMAEQALRDVSAWAEKGIEPPASTNYQVTDAQIVVPDNAAARRGIQPTVDLTTQGKETAAAEAGQAVPLSAKAQVPPGAGKIVKAEWDLDGDGVYTDAPLTRTGSVITLQTTATFDKPGTYFVALRVSSERDGDPTARFALAQNLDRVKIIVTAADNANANANANA
D1-29_021611032cytR_5COG1609HTH-type transcriptional repressor CytRATGAGCGAGGGCAATGACCAGCGTCGGCGCCGCGTCACGATTGTGGACGTGGCAAAGCACGCGGGAGTGTCTACGGCGGCCGCCTCCAGAGTCCTCCGCAACGCCTACGGCGCCAGCGAGTCGATGCGCGCCCGCGTTCAGGCCTCCATGGAGGAGCTCGATTACCGTCCCCACGGCCCCGCGCGCGGTATGCGGGGGCGCACGTTTACGATCGGCATAGTCGTGTCGGACGTTGAGAATCCGTTTTTCAGCCTCATTATCGACGGTATCTCCAGCGTGATCCGCCCCAAGTCGTATGAGCTGTTTGTCTCGCCTGGCGGTTTCGGAGTGCTCCCGCAAAAGTCAGTTGTCGAGGCGATGATCGACCATCACATGGACGGCCTCGTGCTGGTGGCCCCGCCGATGACCATCGCCGAACTCGAACAGATTGCCGTGAGGATCCCGCTCATGGTCGTCGGCCATCACAGCCACAGCCAGGCTTTCGACACGGTCGCGGCCGACGACGAGCAGGGCGCGCAGCTCGTCGTCGACCACCTCGTAGAGCTGGGTCACCGCCGCATCGCGTTCGTCATGCACGCGGATGGTCGAGGCGACGAAGCCAGGCCGGAGTCCCACCGCCTGCGCGGCTTCGAACGTGCCATGAACAAGCACGGCCTCGACAGTGACGCAATTGTCGTCGACTCGCGTTGGAGCCTCGACGGCGGACGAGACGCTGCCCGGCAGATCGATGCACTGGACTCGCCTCCGACGGCGGTGCATGCCGGCGCGGACATCGTCGCGTTGGGAATAATGAATGAGTTGTGGGCTGGCAACAGGTCAGTGCCCGAGGACTATTCCCTGGTGGGCTACGACAATTCGAGCACGTCGTCTCTCGGGCCGATCTGGCTCACGACAGTTGACCAGTCCGGTGTGGAGATGGGTAAGCGGGTCGGCCCCCTGCTGATCGAGCGCATCGAAGGCAGGTCCGAAGCACGCCATGAAGTGTTTGAACCGCGGCTGGTGGTACGCGGCACGACTGCTCGTCCGGCATGAMSEGNDQRRRRVTIVDVAKHAGVSTAAASRVLRNAYGASESMRARVQASMEELDYRPHGPARGMRGRTFTIGIVVSDVENPFFSLIIDGISSVIRPKSYELFVSPGGFGVLPQKSVVEAMIDHHMDGLVLVAPPMTIAELEQIAVRIPLMVVGHHSHSQAFDTVAADDEQGAQLVVDHLVELGHRRIAFVMHADGRGDEARPESHRLRGFERAMNKHGLDSDAIVVDSRWSLDGGRDAARQIDALDSPPTAVHAGADIVALGIMNELWAGNRSVPEDYSLVGYDNSSTSSLGPIWLTTVDQSGVEMGKRVGPLLIERIEGRSEARHEVFEPRLVVRGTTARPAPGPT0017992_5042DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_021621134ccpA_7COG1609Catabolite control protein ATTGTCCACCGGGTTACACTTGAATGCCATGAAGGACAAAGAACATGCGTCGCAGGAGTCGTCCCACGACGGCGCAATCAGTAGCAAGTCACGCCGAACCACGCTCCAGGACGTCGCGAGCGAGGCCGGGGTCTCATTCTCCGCAGTGTCCAAAGTCATCCGAGGTGCCAGCGGCGTCAGCCCGGAGATGCGCAGCAAAGTAACAGCGGCGATTCAGAAGCTCGGGTACCGGCCGCATGCAGGGGCGCGGGCAATGCGCGGCAAGTCCTTCACCATTGGCGTGGTCCTGATTGAGTTGACCTCCCCCTTCCAACCCGAAGTTGTGCAGGGGGTCAGCGACGAACTGGAAACCAGCCCCTACCAGGAAATCATCGTGGCAGCAGGAGTATCCCCTGAGCGCCAGCAACGCGCCGTCGAGGCCCTTATTGATCGACAGGTGGATGGCCTCATCCTCATCGCCCCGTGGACAACCTCGGAATGGCTCGAAGACATCGCGGCGAAGATCCCGACGGTCGTCGTCGCCCGGCACGGCGGCGCCCGAAACTTTGACACCGTAGTTGACGACGACTATGAGGGCGCACGCCTCATGGTTGATCACCTGGTCGGGCTTGGTCACCGACGCATCGTGCATACCAGCATGCCGTCCGGCGGACTCACTCGGCCTTTCGTTCTGTCACACACGGCCCGGCTTGACGGGTACGAGCAGGCGATGAAGCGGCACGGCCTTGAACCTGAGATTATCGTTACCTCCTACTCCGAAAAGGGCGGCTACGAAGCTGCGGTCCAGGTACTGGCAGAGACTCCGCGCCCCACGGCCATCTTCGCCGGAGCGGACGTTGCTGCCCTCGGCGTCCTCCGGGCAGCCGAAGAACAAGGACTGATGGTCCCGGAAGACCTCACCGTGACCGGCTACGACAACATCTACGTATCCACCATCGGACGGATTTCACTCACCACCGTCGACCAGTCCGGACAGCTCACCGGAGCCAACAGCGCCAAACTGCTCCTCGAACGCATTAACGGCCGAGAGCAGCCCAAGAACTACGTCGTTGCGCCACGGCTCATTCCCCGCGCCACGAGCGGGCCACCGGCTACCGCAACGCTGCAGTCCCAGGCTGAGCTCTCCTCCACCTAGMSTGLHLNAMKDKEHASQESSHDGAISSKSRRTTLQDVASEAGVSFSAVSKVIRGASGVSPEMRSKVTAAIQKLGYRPHAGARAMRGKSFTIGVVLIELTSPFQPEVVQGVSDELETSPYQEIIVAAGVSPERQQRAVEALIDRQVDGLILIAPWTTSEWLEDIAAKIPTVVVARHGGARNFDTVVDDDYEGARLMVDHLVGLGHRRIVHTSMPSGGLTRPFVLSHTARLDGYEQAMKRHGLEPEIIVTSYSEKGGYEAAVQVLAETPRPTAIFAGADVAALGVLRAAEEQGLMVPEDLTVTGYDNIYVSTIGRISLTTVDQSGQLTGANSAKLLLERINGREQPKNYVVAPRLIPRATSGPPATATLQSQAELSSTPGPT0017992_7427DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_021631533cntACOG0747Metal-staphylopine-binding protein CntAATGCGGCGCACACGACGACGTGCACTTGTCGCCTTGGCGGCCCCCCTGGCCCTTAGCCTCGCGGCGCTCACTGGTTGCACCAGTGGCGGCCAGGCTGGGGACACTGGCAGCTCAGACAACAAAGACGCTCTCACCCTGGCAATGACTGCAGACATCCAGGGGTGGGACCCAGGGGTCCAGCCTTCCTACCAGGGATGGTCGGCGGACGCGGTGTGGGATTCCCTGCTCCGCTGCGACAAGAACGGCAAGCCGGAGGCTTCCCTGGCAGACAAGTGGGAGTTCAGCCCTGACCAGAAGACGGCTACCCTCCACATTAGGGAGGGCGCGAAGTTCTCGGACGGTACCCCGGTGGATTCAGCGGCCGTGAAGGCCAACGCTGAGTACTACGCCACAGCCGGCGGTGCGTCGAGCCGCTGGGCGGGAATTACCGTCGAGACTCCTGACCCCCAAACCGTGGCAATCTCGTGGCCGACGGCCAACCCGTTGCTGGCCTTGCGGATGTGCGAATCCAAGATTGCAACCCCGGAATCCATTGCATCCAAGAAGTTTGACGTTCCAGTCGGTTCGGGCCCTTACACTCTCGATGAAGCAGCAACCACCCGGGGTTCGGTCTACACCTTTGTCAAGAACGACTCGTTCTGGGACAGCGCAAGATTCCCCTACAAGAAGCTCGTACTTAAGGTCCTCGAGGATGAGACCGCTGCAATTAACGCACTCAAGACCCAGCAAATCGATGGCACGATGGTTTCCTCGTCCACTCTCGAGGAGGCCAAGAGCGCTGGCCAGAACATCCAGACGTTGAAGGGCAGCAGCACCACCCGACTTCTTATCACCGACCACCTCGGCGAGAAGGTGCCCGCGCTGGGCAACCTCGATGTCCGTAAAGCGATGAACATGGTGTTCGATAGGGACGCGATCGCCAAGAATCTCTATCAGGGCCATGCAACCCCGGCCTACCAGATCTTCCGCGAGGGCAGTGACGCCTACATTGCCGACGCCAAGGACCCGTACCCGTTCAACGTCGACGAGGCCAAAGCCCTCATGGCCAAAGCTGGCTACGCGGACGGCTTTACGCTGCAGATTCCGACCATGACGGGGCAGAATCACGAAACGCTGATGCCTTACATCTCCCAGCAGTTGGCACTTCTCAACATCAAAGTTGAGCAGGTGGCACTTTCCGGGCCGAACGCGATCGCCGAACTTCTCAGCGGCAAGTTCCCCGTTCCGCTGTGGCAGCTTGGAAACTACGGCGAGTCGCTGCAGGACATCAGCGACTACGTCCTGAAGGACGGCATCTGGAATGTTTCCCACCAGCCGGATGCCAAGGTTGACGCTCTGTGGAACACCGTGTTGACCGGCTCCGAAGCGGAGCGTAAGCAGGCCCAGCAGGACATCAACCAGTACGTTACCGAGCAGGCATGGTTTGTCCCCATGGCCTACATGGACCGGTTCTACGCAACCAATCCCAACGTGGAGCTTCAGGAGTCCAGCGACTTCGCCGGCCTGCACCCGCTCCTGCGCGACTTCCAGTAAMRRTRRRALVALAAPLALSLAALTGCTSGGQAGDTGSSDNKDALTLAMTADIQGWDPGVQPSYQGWSADAVWDSLLRCDKNGKPEASLADKWEFSPDQKTATLHIREGAKFSDGTPVDSAAVKANAEYYATAGGASSRWAGITVETPDPQTVAISWPTANPLLALRMCESKIATPESIASKKFDVPVGSGPYTLDEAATTRGSVYTFVKNDSFWDSARFPYKKLVLKVLEDETAAINALKTQQIDGTMVSSSTLEEAKSAGQNIQTLKGSSTTRLLITDHLGEKVPALGNLDVRKAMNMVFDRDAIAKNLYQGHATPAYQIFREGSDAYIADAKDPYPFNVDEAKALMAKAGYADGFTLQIPTMTGQNHETLMPYISQQLALLNIKVEQVALSGPNAIAELLSGKFPVPLWQLGNYGESLQDISDYVLKDGIWNVSHQPDAKVDALWNTVLTGSEAERKQAQQDINQYVTEQAWFVPMAYMDRFYATNPNVELQESSDFAGLHPLLRDFQPGPT0004430_16098DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_02164897gsiC_3COG0601Glutathione transport system permease protein GsiCGTGTTAACCGTCAGCTTTGCAACGTTCTGTCTCATGTTCGGCAACGGCCCCGGAATCGCCCGCGCGATCCTCGGCTACCAAGCCAGCGAGAGTGATGTCCAGCGCAAGGTGGTCAGTCTGGGACTGGATCGTCCACTGCTTGTTCAATTCTGGGACTGGATCACCAAGGCAGTCACCGGCAACCTCGGAGAGTCGTTCTTCACGGGTCAAACTGTGACGTCGGCCCTTGCAACGAGGGTGCCGGTGACGCTGACCCTGGTGATCCTGACACTGATCCTCACGGTTGTCCTGAGCGTCCTTTTGGGCGTCGCGGCCGCGGTCTACGGCGGGTGGCTTGACCGGCTGCTCCAGTTCGTCTCCGTTGCCGGTGCAGCTGCCCCCGCGTTCGTTATCGCCATCGCTTTGGTGTTCAGCCTCGCCATCGCCGTACCCATCTTCCCGGCTACCGGCTACGTTTCACCGGACCGCAGTCTGAGCGGATGGATTCTCTCGGTGACGCTGCCGGTGCTGGCCCTGTTGATCGGGTCAGTTGCCAACGCTGCCAGCCAGTTCCGGGGAGCTGTGCTGGACACATTGTCCCGCGATTTCGTTCGGACACTGCGGGCACGCGGTATCCGCGAATCCCACGTGATCTTCCGCCACGTCTTAAGAAACGCGGGAGGGCCTGGACTGACGGTTCTGAGTCTACAAACCCTTGCGCTGTTCGGTGGCGCAATCTTCGTCGAGAAAGTCATGGCACTACCCGGCATCGGGCAGTTGGCCAACATGTCGGCACAGCAAGGCGACGTGCCCATGGTCATGGGAGCGGTCGTAGTGGCCATCCTCTTTGTTCTCATCGTCAATTTCCTTAGCGACCTCGCCAATTCCATGTTGAACCCGAAAGCGAGGACCCGATGAMLTVSFATFCLMFGNGPGIARAILGYQASESDVQRKVVSLGLDRPLLVQFWDWITKAVTGNLGESFFTGQTVTSALATRVPVTLTLVILTLILTVVLSVLLGVAAAVYGGWLDRLLQFVSVAGAAAPAFVIAIALVFSLAIAVPIFPATGYVSPDRSLSGWILSVTLPVLALLIGSVANAASQFRGAVLDTLSRDFVRTLRARGIRESHVIFRHVLRNAGGPGLTVLSLQTLALFGGAIFVEKVMALPGIGQLANMSAQQGDVPMVMGAVVVAILFVLIVNFLSDLANSMLNPKARTRPGPT0004445_12488DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_021651785btuD_10Vitamin B12 import ATP-binding protein BtuDATGAGCGAACAAAGCTTTGAGCTGGATTCCGAGACCATCACAGGCGCCGTGAGCCAGGCGCCCGCCGGCAAGGGCCGCTCGGTCCCTAGGCGGCTGCTCACCCATCCCGTGGGCGCCATCTGCATCACGTTTCTGCTCTTTGTTCTGATCTTCGGCATCAGCAGCCCGCTATTGGCCCCTTACCAGCCGAACCAGGCAGACCTCAACGCTGTCAACGCCGCCCCATTCGGCGAGGGACATATTCTGGGCGCTGACCGGGCCGGACGGGACATCCTCTCGCAACTGATGTGGGGAACCAACGGCACACTCATGGGATCAGCACTTATTCTTGCGATCTCACTCCTCATCGGCGTCACCAGCGGCCTGCTCGCCGGTTTCTACCGTGGCAAATTCGAAGCTGCGGCCAGTTGGGTCAACGACGTGATCATGTCCTTGCCGAGCATTGTCCTGCTCATCGCACTCTTTGCACTTACGGGCCCGAACATCATGGTCGCCATGGCAGTCTTCGGTGTCCTCGTCGCGCCGTCGTACTACCGGCTGGTCCGCTCCGTGGTCCTTGGAGTCAGGACAGAACTGTACGTCGACGCGGCCAAGGTAGTGGGCCTTTCAGACCAGCGCATCATCGGAAGGCATGTGCTGTGGGCAGTCCGTGCACCTGTCGTCATCCAAAGCTCCTTCATTCTCGCAGCAGGCATTGCCATCCAGGCCGGCGTGGAATTCCTTGGCTTGGGCGATCCCGAACAGCCATCCTGGGGCGGCACACTCGAGAATGCCAACAGCAACATTTACAACAATCCGTTCGGAGTCCTCTGGCCCGCCCTGCTCATCAGCCTGACAATCCTCGCGCTCGTTTTGCTCGGAAACGTCCTGCGCGATGTCCTGCAGTCCTCGGCACACAACAAGACGCTCAAGAGCGGCCGCCGTCGTGACCTAGCGGCAAAAGCGCAGCAGGAGAGAGGAAACGGGAAGACAGCGGCGCCCGACAACGACATTGTCCTCTCCATCCGCGGGCTCCGGGTGGGTTACCCCGACGGTCCGGAGAGCGTCCGGGAGGTAGTCCACGGAGTCGACCTGGACGTCAGGCGAGGCGAAATCCACGGCCTGGTGGGTGAATCAGGTTCAGGTAAATCCCAGATGGCTTTCTCCACACTCGGAATCCTGCCAAAAGAAGCCGTCATATTGGGCGGCAGCATCTTCCTTGACGGCGAAGACCTCTTGGCGGACGGCAAGGCAATGAAGCGGAACCGCGGGCACAGAATCGGCTACATCCCGCAGGAGCCGATGTCCAACCTGGACCCGTCCTTCACCATCGGTGCACAGCTGACGTACGGGTTGCGTGCCGTCAAGAAAATCAGTGCCAAGGACGCAAAGAAACAGCTGATGGAACTGTTGTCCAAGGTCGGGATTCGCGATGCTGAAGGTGTCATGAGCCTCTACCCCCACGAAATCTCCGGCGGTATGGCCCAGCGCGTCCTGATCTGCGGCGCCATCGCCGCAGATCCGGACCTGATCGTCGCCGACGAACCGACCACCGCGTTGGACGTGACAGTCCAGGCAGAGGTCCTGGAACTTCTGCGGGAACTGAGCATGGAACGCGGCCTGGCGATGGTCCTGGTCACGCACAATCTCGGTGTGGTCGCTGACCTTTGCGACAACGTCAGTGTGATGAAGGATGGACGGATTGTGGAACGCAGCGATGTTGACACGCTGTTCACAGATCCGCAGCAGGAGTACACCAAGGAACTCCTGGAATCCTCACGCCGTGTAGAACTGATGGAGGTCTGAMSEQSFELDSETITGAVSQAPAGKGRSVPRRLLTHPVGAICITFLLFVLIFGISSPLLAPYQPNQADLNAVNAAPFGEGHILGADRAGRDILSQLMWGTNGTLMGSALILAISLLIGVTSGLLAGFYRGKFEAAASWVNDVIMSLPSIVLLIALFALTGPNIMVAMAVFGVLVAPSYYRLVRSVVLGVRTELYVDAAKVVGLSDQRIIGRHVLWAVRAPVVIQSSFILAAGIAIQAGVEFLGLGDPEQPSWGGTLENANSNIYNNPFGVLWPALLISLTILALVLLGNVLRDVLQSSAHNKTLKSGRRRDLAAKAQQERGNGKTAAPDNDIVLSIRGLRVGYPDGPESVREVVHGVDLDVRRGEIHGLVGESGSGKSQMAFSTLGILPKEAVILGGSIFLDGEDLLADGKAMKRNRGHRIGYIPQEPMSNLDPSFTIGAQLTYGLRAVKKISAKDAKKQLMELLSKVGIRDAEGVMSLYPHEISGGMAQRVLICGAIAADPDLIVADEPTTALDVTVQAEVLELLRELSMERGLAMVLVTHNLGVVADLCDNVSVMKDGRIVERSDVDTLFTDPQQEYTKELLESSRRVELMEVPGPT0004435_1908DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_02166858oppF_2COG4608Oligopeptide transport ATP-binding protein OppFATGAACGAACCACTGCTCCGGGTGGAAAACCTCGTCGTCACTTACAAGGGACGGCACGGTCTCTCCAAGCGCGTGATCGACGACGTGAGCCTGAATCTCAGCGCCGGGGAGACCCTCAGCCTCGTGGGCGAATCGGGCTCGGGCAAAACGACAATAGGGCGGGCCATCCTTGGTCTCGCTCCGGTGACCGGGGGTTCCATCACGTTCCGCGGCGACACCATCAGCAACATCAGCCGGGCGCAGCGCCGCAAGGTGGCCCGCGGCATCCAAGTGGTGTTCCAGGATCCCTACTCGTCGCTGAACCCGTCCATGACGGTCGAAGACATCCTCGTCGAACCCATGGCCGCGGCCGGCGCCACCGGTGGAAGGCAACGCGTTCGCGAACTGCTGGACGCCGTCGGGCTCCCCGGAGACTCCGGAAGCCGGTACCCCAAGGAATTCTCGGGGGGACAGAGGCAGCGTATCGCCATCGCCCGGGCACTCGCCCTGGACCCCGCCGTCATCATCTGCGATGAACCCACCAGCGCACTCGATGTCACCACGCAGGCACGCGTACTGACGCTCTTCAAAGAGTTGCAGGAGCAGACCGGCGTCGCCTATCTGTTCATCAGCCACGATCTCGGCGTCGTAAACTCCATCAGCGACAGGATCGCCGTGCTCTACCACGGCAGCGTCGTTGAAATTGGCGAGGCTGACCAGGTTTCCCGGGCACCCCGTCATGAGTACACGCGCCGGCTGCAAATGGCTGCACCCGTGGCAGACCCCAAAAAGCAGCGTTCACGGCGGGCAGCCCGCCTCAAGCTCCTGGCAGATGAAAGCAACCTCAAAGGCTCCCCGGGAGTTTTGAGCCAGAGCTGAMNEPLLRVENLVVTYKGRHGLSKRVIDDVSLNLSAGETLSLVGESGSGKTTIGRAILGLAPVTGGSITFRGDTISNISRAQRRKVARGIQVVFQDPYSSLNPSMTVEDILVEPMAAAGATGGRQRVRELLDAVGLPGDSGSRYPKEFSGGQRQRIAIARALALDPAVIICDEPTSALDVTTQARVLTLFKELQEQTGVAYLFISHDLGVVNSISDRIAVLYHGSVVEIGEADQVSRAPRHEYTRRLQMAAPVADPKKQRSRRAARLKLLADESNLKGSPGVLSQSPGPT0004440_6562DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-29_021672817Alpha-L-rhamnosidaseATGGCAATGGCTGCCGCTCCCCACGCCCCACGCTTTGAACACCGCACAGAAACCGGTCCAATCCTCGGCATAGGTACCGGCACGCCCAGACTCTCATGGTCGGTTCCGACCGCTGACGAAGGCTACGCGCAGACCGCCTACGAACTGGAGGTCAGCCGGGGTGGGCTCATCCAGGTGTACAGGATCGAAAGCTCCGAGCAGGTATTGGTTCCGTGGCCTGCTCCCGCCCTGTCCTCCCGTGAGTCCGCCAGCGTGAGGGTTCGTGTCAGCCACAATTCGGACTGGAGCGAATGGAGTGAGCCGTCAGTCGTCGAAGCCGGCCTCCTCAACACCAGCGACTGGGTGGCCGACTTCATCAGCCCCGTCAACCTCGGAACGGAGGACATGCCCGCGCCGATCCTGATGGGGACCGTTGACGTGCCGGCTGCAGTGGCTAAAGCACGCCTCTATGCAACCGCCCACGGGATTTATGTCGCCACGCTGAACGGGCAGCGGGTCGATGACAGTGTCCTTGCCCCAGGCTGGACCTCGTACGAAAACCGGCTCCGCTACCATACCTACGACGTCACGGCACTGGTGCGCGAAGGTGCCAACACCCTGGACATGCTCTTGGGTAACGGCTGGTACCGCGGCCGTCTCGGTTTCGAAAACAAGCGTGCGCTCTACGGGGACAGGCTCGCCGTGCTCGCCCAGCTTGAGGTCACCACGGTCGACGGCGGCACGTACGTCCTGCTCTCCGACGGGTCCTGGACGGCCCGGGAGAGCAATATTCTGTCCGACGATCTGTACGACGGGCAACGGACCGACCTGCGGATCCTGAATGACGTCGCGGCGCCAGGGGCCGGTACGGTCGAAGTCATCAAGGCCGATATGTCCCGTCTTGTCGCCCCGGAAGGGCCCACTGTCCGGCCCACAGACGTAATACCTGCGCAGTCGGTCTTCACGTCGCCTTCCGGCAGGACGCTGGTGGACTTCGGCCAGAACCTGGTCGGCTGGGTCCGGTTGCGGGCGCGTAACCTGCCCGCCGGAAGTCAGGTTGTCATCAGGCATGCGGAAGTCCTCGAAAACGCCGAGCTTGGCACCGGGCCACTGCGTTCCGCCAAGGCAACGGATTCCTTCATCGTTGCCGGGTCCGCGGAGGAAACGTTGGAGCCCTGCTTCACCCTGCATGGCTTCCGCTATGCGGAGGTGGCCGGTGTGCACGGCCTCAAAGCAGAAGACATTGAGGCTGTTGTGATCGGATCGGACCTTCGACGCACCGGATGGTTTTCTTCGTCCAACCAACTGCTCAACCGGCTCCACGAGAACGTTGTCTGGAGCATCCGCGGCAACTTCGTGGATGTGCCCACTGACTGCCCGCAGCGGGACGAGCGCCTGGGCTGGACGGGGGACATCCAGGTCTTCGCGCCGACGGCGTCCTTCCTCTTCGATACCACAGGTTTCCTCAACTCCTGGCTGGCGGACCTTGCCGCCGAGCAGCTGCCGGACGGTTCAGTACCCCACGTCGTTCCCGACGTCATCCATTCGGAGTTCACTAATGCCCCCACGGCGGCCTGGGGTGACGCAGCAGTACTCGTTCCTTGGACGCTCTACCAGCGGACAGGCGACCAGCAGGTTCTTGAACGGCAGTTTCCCAGCATGTGCGCATGGCTGGACAAGGTTGCCACGCTGTCAGGCCCTGATCACCTGTGGACGGGCGGTTTCCAGTACGGCGACTGGCTGGACCCCAGCGCTCCACCCGAGGATGCCGCCCGCGCCCAAACGGATCCCGACGTCGTCGCAACGGCGCACTACGCCCGCTCGGCAGAAGTCCTCGGCAAGGCAGCGGCGGTTCTCGGACGGGACGAGGACGCCGCCCGGTATGCCAAGCTGGCCGCCGAGGTCCGTGCCGCCTTTGCCCGGGCGTTTGTGACCCCCTCAGGGAGGATTCTTTCTGACAGCCAGACTGCCTACGCGATGGCGCTGGAATGGGCCCTGTTGCCGACTGAAGAGCAGCGCGAGGAAGCAGGCAGGCGGCTTGCCGACCTTGTGCGTGTCAGCGGGTTCCGGATCAGCACCGGGTTCGTTGGCACGCCGCTGGTCTGTGATGCCCTCACCTCAGCGGGGCACGTGGATACTGCCTACCGGCTTCTCCTGCAAACAGGCTGCCCATCATGGCTCTACCCTGTCACCATGGGTGCCACGACCATCTGGGAACGCTGGGACAGCATGCGGCCGGACGGATCTGTCAACCCGGGCGGCATGACATCGTTCAACCACTATGCCTTGGGAGCAGTGGCCGACTGGATGCATCGCAGCCTGGCCGGACTCGCGCCGGCGGCTCCCGGCTACCGGGCACTTGAGGTGCGGCCGTATCCGACGGCGGCACTCACTTCAGCATCCGCACGGCACCTGACCCCGTACGGGGAGGCTGTCGTGGCGTGGGAGCGTTCCGACGGCCGACTCAAGCTGCACGTCAAAGTCCCGGTAGGCGCAACAGCCCAAGTACACGTCCCGGGCTTCCCGGCGGCGGAAACGGTGGCGCACGGCGAGCATTCATGGGACGTCGCAGACCCAACGGCAGCGGAAAATCACGCAGCTGACACGATCCGGGACGTGCTCGACTACATGCCGGCCGCCTGGTCGGCTGTCGTGGCTGCCGCCGTCGAAACAGGCATCACCCCCGAAGGCGAAGCCCAGGCAGCAGACAAAATCAGCAGGTATCTCAATGAGCCCGCCAGCAAACTGGCCACTGCGCTGGTTCCCGAACCGTGGGTCAGCGCGCATGTTCCCCTCCGCGAACGGGTGGCTGAGATCATCGCGGACTCCCGCTCATGAMAMAAAPHAPRFEHRTETGPILGIGTGTPRLSWSVPTADEGYAQTAYELEVSRGGLIQVYRIESSEQVLVPWPAPALSSRESASVRVRVSHNSDWSEWSEPSVVEAGLLNTSDWVADFISPVNLGTEDMPAPILMGTVDVPAAVAKARLYATAHGIYVATLNGQRVDDSVLAPGWTSYENRLRYHTYDVTALVREGANTLDMLLGNGWYRGRLGFENKRALYGDRLAVLAQLEVTTVDGGTYVLLSDGSWTARESNILSDDLYDGQRTDLRILNDVAAPGAGTVEVIKADMSRLVAPEGPTVRPTDVIPAQSVFTSPSGRTLVDFGQNLVGWVRLRARNLPAGSQVVIRHAEVLENAELGTGPLRSAKATDSFIVAGSAEETLEPCFTLHGFRYAEVAGVHGLKAEDIEAVVIGSDLRRTGWFSSSNQLLNRLHENVVWSIRGNFVDVPTDCPQRDERLGWTGDIQVFAPTASFLFDTTGFLNSWLADLAAEQLPDGSVPHVVPDVIHSEFTNAPTAAWGDAAVLVPWTLYQRTGDQQVLERQFPSMCAWLDKVATLSGPDHLWTGGFQYGDWLDPSAPPEDAARAQTDPDVVATAHYARSAEVLGKAAAVLGRDEDAARYAKLAAEVRAAFARAFVTPSGRILSDSQTAYAMALEWALLPTEEQREEAGRRLADLVRVSGFRISTGFVGTPLVCDALTSAGHVDTAYRLLLQTGCPSWLYPVTMGATTIWERWDSMRPDGSVNPGGMTSFNHYALGAVADWMHRSLAGLAPAAPGYRALEVRPYPTAALTSASARHLTPYGEAVVAWERSDGRLKLHVKVPVGATAQVHVPGFPAAETVAHGEHSWDVADPTAAENHAADTIRDVLDYMPAAWSAVVAAAVETGITPEGEAQAADKISRYLNEPASKLATALVPEPWVSAHVPLRERVAEIIADSRSPGPT0019195_347DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-RHAMNOSIDASE,PGPT0019195-ramA-K05989NANA
D1-29_021681500COG3507Non-reducing end alpha-L-arabinofuranosidase BoGH43AATGACCGCCCCCACAAAAGCCGGCAACTCCTCATTGCGACCCATCCTGCCCGGCTTCTATCCGGACCCGACAATTTGCCGCGTAGGCGGAGACTACTACCTGTCAACGTCCAGCTTTGAATACTTCCCCGGCGCCCCCATTTTTCACAGCACCGACCTGTTGACCTGGTCGCAGATCGGCCATGTTCTCGACCGCAGGAGCCAATTCAGGCTGGGGGACCCCCGCCCCTCGACAGGCATTTACGGAGCCACCCTGCGCCACCATAACGGCATGTTCTGGTTCATCACCACCAACGTCAGCGACTACGAATCCGGCCAAGTCCTGGTCCACGCAGAGGATGCGACGGGACCATGGAGCGACCCCGTCTTCGTTGACGGCGCAATCGGCATCGACCCGGATCTGTGCTGGGACGATGACGATAACTGCTTCCTCAGCTGGAAGGCGATGAGTTTTGGTGTGGGCGAGTTCGGCATCCAGCAGGCACGCCTGGACACCGCCAGTGGAAAACTGCTGGATGAGCCCTACCTGATCTGGCAGGGGAGCGGTCTCGGAGCCGTGGAAGCACCCCACCTCTACCGCATTGGCGAATATTGGTACTTGCTCCTCGCTGAGGGCGGCACCGAGCGTGGGCATTGCGTCACCGCAGCCCGCAGTCCCCATCCTTCCGGGCCCTTCGAGCCATGCCCGGCAAATCCCGTCTTCACTCATCGGAGCCTGGTCCATCCCGTGCAAAATGTGGGCCACGCCGACCTGATGCAGACGACCGACGGCGGCTGGGCAGCCGTCTATCTGGCAGTCCGCCCTCAAGGATCGACGCCTGGTTTCCACGTGCTGGGCCGAGAGACTTTTATTGCCGGCGTTGACTGGGTGGAGGGATGGCCCGTCTTCGACGAGGAACGCTTCACCGTGCCGCAGACCGATACGGCGTATGCGGAGGACTTTTCGGCGCAGCAGCTCGACCCCCGGTGGGTCGTTCCCGGCGGCGAACCTGACAACGTGGCGATGATGGATGACGACGGCGGCATCCGACTCAAGCCGCTGGCTGACGGAACGCCTGGGCTGCTCTGCACGCGGGTCCGGGACCTTCATTGGACCGCAGACGCCTCGATAGAGGGAAGCGGCAGCTTCGTGCTCCGCATCGACGACCGCTACTGCTTTGGCCTGACCTGCGGCAACGGGAAGGCGCGTGCGTGGGCTCAGCTCGGAGAGATTAGGCACGAAACCGGGTCGGTCGACGTCGCTGCAAACCATCCCGTGACACTCCGCATCCAAAGTGTGCCTGCCTCCTCGCCCACCGTGCCCCTGGGCCACGGCGGGCCGGACGAGGTGGTGCTCTCCGTCGTCGAGCATTCCCAGGCACGCGAGCTGGGCAGGCTGGACGGCCGTCACCTTTCCACGGAAGTCGCCTCAGGCTTCACGGGCCGGATGTTGGCCCTTCAGTCGGCAGGCCCCGAGGGCAAATTCATGTCCGTTAGCTATAAACCCCAACCCCCGCAGTAGMTAPTKAGNSSLRPILPGFYPDPTICRVGGDYYLSTSSFEYFPGAPIFHSTDLLTWSQIGHVLDRRSQFRLGDPRPSTGIYGATLRHHNGMFWFITTNVSDYESGQVLVHAEDATGPWSDPVFVDGAIGIDPDLCWDDDDNCFLSWKAMSFGVGEFGIQQARLDTASGKLLDEPYLIWQGSGLGAVEAPHLYRIGEYWYLLLAEGGTERGHCVTAARSPHPSGPFEPCPANPVFTHRSLVHPVQNVGHADLMQTTDGGWAAVYLAVRPQGSTPGFHVLGRETFIAGVDWVEGWPVFDEERFTVPQTDTAYAEDFSAQQLDPRWVVPGGEPDNVAMMDDDGGIRLKPLADGTPGLLCTRVRDLHWTADASIEGSGSFVLRIDDRYCFGLTCGNGKARAWAQLGEIRHETGSVDVAANHPVTLRIQSVPASSPTVPLGHGGPDEVVLSVVEHSQARELGRLDGRHLSTEVASGFTGRMLALQSAGPEGKFMSVSYKPQPPQPGPT0018665_1956DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198NANA
D1-29_021691749hypothetical proteinATGCCATTTACACAGAACGCGACCCTGGCAGACATCATGGCCAGCCCTGAAGCCTCCGCCGTCCTTGACCGACACTTTCCCGGTTTCCTGACCTGGAACGATTGGTCCCTCTCGCCCCTTGCGAAGCTGGCGGAGGTTGCCCATTGGGCCAGGGGAGTGGGAGCGACAGATCCTGACCTGACAGCACTGTGGGAGGACCTGGCAACTCTGGAATCCTCGCCCGGAGTGAAGGAGATTCCCGCGGCACCGGCCGGGCCCCAAGACGATTATGAAGAATCCGGTCAAGCACGTGCCCGGGCCGTCATCGACTCCATCCACTCCGCTCAGCAGTGGGGTGCCGCAGAAGTGATCCTGAACGGTCCGTCCCATGGCAATCCTTTCACTGACGTGGAGATCCAGGCGACGTTCCGATGCGACGGCACCTCGATAGAGGTCGGCGGCTTCTATGACGGGGACGGCGTCTACCGCATCCGGTTCATGCCGCCAAGCCCTGGTCAGTGGGCGTTCGAGAGCAGTTCCAACGCTTCCTCACTCAATGGCATCACCGGAACAGTTGACGTAACCGGGCCGGAAGAAGGCAACCATGGTCCGGTGGTGGTACGGGACACGTTCCATTTCGCTTATAAGGACGGCACTCCCTACCTTCCCTTCGGGACCACCGCCTATGCCTGGACCAACCAAACGCAGGAACTGCAGGACCAGACGCTTCGAACATTGGCAGAGTCTCCGTTCACGAAGATCCGCATGTGCGTTTTCCCGAAATCCTATTCCTACAACGCCAACGAACCCGACAACTACGCCTACACCCGGAACGCCGACGGCAGCTGGGACTTCACCCGCTTTGACGTAGCCTTTTTCCGCAATCTGGAGCAGAGAATCCTAAGCTTGCAGCGCTTGGGCGTCGAAGCAGATCTGATCCTGTTCCATCCTTACGACCGGTGGGGCTTCTCGGACATGCCGGCGTGGGCCGATGACCTGTATCTCAGCTACATCGTGCGAAGGCTCGGCGCCTTCCGCAACATCTGGTGGTCGCTGGCCAACGAATACGACTTTATGCAAACCAAAAGGGAAGAGGACTGGGAACGGTTCGCTGCCGTGATAGGCCGGGAAGACCACGCAGGGCACCTGATCTCCATCCACAACGGGGCCACGTTCTATGACTACTCCCGGCCGTGGATCACGCATTGCAGCATCCAGCGGACGGACAATTACGTATCGGCGGAGAACACGGATTCGTGGCGGAAGCAGTGGGGTAAGCCTGCAGTCATCGACGAGGTCGGCTATGAGGGCGACGTGGCGGAGGGCTGGGGGAACCTCAGTCCACAGGAGCTGCTCCGCCGTTGCTGGGAGGGCGCAGTCCGCGGCGGCTACGTCAACCACGGCGAAACTTACCTCGATGAGGACGACGTGATCTGGTGGGCCAAGGGGGGCACCCTCAAGGGCCGGTCGCCAGCCCGCATCGGCTTTCTCAGTCGGCTCGTTGCCGAATCACCCGGCGGACGGTGGGACCCGCTTCCGGGGGACTGGGACTCCCGGACCGGAGGTGACGACGATCACCGGGTAATCTACCTCGGGCTGGGCCGCCCCCGGTTCCGCTCGGTTCTTGTACCGGCCGCATCCCCCTGGCATGTGGACGTCATTGACACCTGGAATATGACGATCGATACGTTGCCGGATCCCGTGCAGGGGCGGGTGGTGGTCGACCTGCCAGGCCGGGAATACATCGCAATCCGTATTCGTCGCGCATAAMPFTQNATLADIMASPEASAVLDRHFPGFLTWNDWSLSPLAKLAEVAHWARGVGATDPDLTALWEDLATLESSPGVKEIPAAPAGPQDDYEESGQARARAVIDSIHSAQQWGAAEVILNGPSHGNPFTDVEIQATFRCDGTSIEVGGFYDGDGVYRIRFMPPSPGQWAFESSSNASSLNGITGTVDVTGPEEGNHGPVVVRDTFHFAYKDGTPYLPFGTTAYAWTNQTQELQDQTLRTLAESPFTKIRMCVFPKSYSYNANEPDNYAYTRNADGSWDFTRFDVAFFRNLEQRILSLQRLGVEADLILFHPYDRWGFSDMPAWADDLYLSYIVRRLGAFRNIWWSLANEYDFMQTKREEDWERFAAVIGREDHAGHLISIHNGATFYDYSRPWITHCSIQRTDNYVSAENTDSWRKQWGKPAVIDEVGYEGDVAEGWGNLSPQELLRRCWEGAVRGGYVNHGETYLDEDDVIWWAKGGTLKGRSPARIGFLSRLVAESPGGRWDPLPGDWDSRTGGDDDHRVIYLGLGRPRFRSVLVPAASPWHVDVIDTWNMTIDTLPDPVQGRVVVDLPGREYIAIRIRRANANANANANA
D1-29_021701302COG2814Chloramphenicol efflux pumpATGGCGCCAAATGTGAGCCGCAGCCAGGACGAAGGACAACTTCAGTCTCACCAAACCAAGGAGAACTTCCCCTTCGTCGGGCTTGTGGTCCTGTCCGCTGCCATCTTCATTTCGATGGCCACGGAGTTCCTGCCCGCCGGACTCATCCCACAGCTATCGGGAGATTTTGACCGGTCGGTGTCCGAAGTCGGGAACCTCATCACGGTCTTCGCTTTGACGGTCATTGTGACGGCCGCACCTCTGGCCGTCCTCACCCGCCGGATTCCGCGCAAGGGAATGGTCCTGGGCTCGTTTGCCGTCGTAGGAGTGGCGAATCTGATGACAGTAGTTTCGCCGACGTTTGAGGTGCTGCTTGTCGCGCGGGTGCTGGGTGCTGTAGCGCACGGCGCATTCTGGTCCGTTGTGGCGGCCTATCCAGCGCACCTCGTTCGTCCCTCACAGTTGGGAAAGGCCACCGCGATCACAGCGGCCGGTGGCTCTGTCTCCGGGGTAGTCGGCATCCCTCTCGGAAATGCCCTGGGGCAGGCCTTCGGATGGCGCGTGTCCTTCGCCGTGCTCGCCGCACTCGCGCTGATCGTTTTTGTGTTGATGATCCGACTCCTGCCAGCCGTACCCAGGCAATTGCCCGCCCCGGCCAGGAAAGCAAAGGTCCGTGACGGGCAGGACAGCACATTGCCCGCCGTCCTGATGGTTTGCCTGCTCATCCTCCTTGTTGTTGCGGCACAAAACGGCTTCGGAACCTTTCAGGTGGTGTGGTTGCTGGACGTCGCCCATTTCGCCCCCGGCGCCATCCCGGTTGTTCTCCTGGCCGGAGGAATCGCAAGCGCTGTCGGAGTTGCCTTGGTGGGCGGCCTCTACGGCCGGTTCCCGCGGAGGTTGTTCCTCGGGTCGCTGACAGTCATGGTTGTCATACTTTGCACAATTCCCGTGGCTGCGGCCTCCGGATCAGAGGCCAGTGTGTGGATCCTAATCATCCTGATGGGGGCCGTATTCGGAGGCATACCGGTCATGCTCCAAACACGGATGATGTGGTCGGCTTCTCCGCACAGCCGTAACCTGGCCGCGGCCCTTCAAACCACTGCATTCAATGTCGGCATCGGGGGAGGGGCCTTCTTCGGTGGGCTCGTCTTGGAGGGAACATCCTTGGCTTCTTTGTCTTACTGGGCTGCTGGCGCCATGTTCCTTGCCCTGCTCACTGCCGGCATCTGGGAGATCAGCAGGGGGCCTGGTCGCAGGAAGGCTCGCCGGGAACCTTCAACGGAACACACAGCGAACCGGATGCACCAGCCGGCCGATGAATAGMAPNVSRSQDEGQLQSHQTKENFPFVGLVVLSAAIFISMATEFLPAGLIPQLSGDFDRSVSEVGNLITVFALTVIVTAAPLAVLTRRIPRKGMVLGSFAVVGVANLMTVVSPTFEVLLVARVLGAVAHGAFWSVVAAYPAHLVRPSQLGKATAITAAGGSVSGVVGIPLGNALGQAFGWRVSFAVLAALALIVFVLMIRLLPAVPRQLPAPARKAKVRDGQDSTLPAVLMVCLLILLVVAAQNGFGTFQVVWLLDVAHFAPGAIPVVLLAGGIASAVGVALVGGLYGRFPRRLFLGSLTVMVVILCTIPVAAASGSEASVWILIILMGAVFGGIPVMLQTRMMWSASPHSRNLAAALQTTAFNVGIGGGAFFGGLVLEGTSLASLSYWAAGAMFLALLTAGIWEISRGPGRRKARREPSTEHTANRMHQPADEPGPT0028991_1657DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-29_021711761hypothetical proteinATGCTTTTCATGGACGATCAAACCAAGACCCGCGAGATCCTCGAGGACGAAGCAGGCCGGAACGCGCTCCGGATTGCGCTTCCGGAAGTGGTCGACAAGCCCGGGAAGTTCGGCGGTGCACTGGAGCTTCCCATCGGCGCCCTGGCCACTGTCTTCCGCGTGAAGGAAAGCATCCAGGCAGAGCTCTGGGAGCGGCTGGCGTGTATTCCTGCGAAAGAGCGCACCGAGGCCCTTCCCGTCGAGCCCAATCCGGACTACGAGGGGGCGGAAGTACCCGCCGGTTCGGCCGCCATCTCCGCCCCGATGGCAGGGAAAGTCAATGCCATGCTGGAAATCGTCCTTACGGGGCCGACGCATGGAAACCCCTTCACCGACGTCGACTTGCAGGCGAAGTTCAGGCTCGGTGACATCGAACTACGTGTAGGTGGCTTCTACGACGGTAACGGCAGGTACCTGATCCGATTCCTTCCGCCGAAACCCGGAACTTGGGAGTTCCGCACTCTATCAACGGCCCGTTCGCTGGATGGACACGCCGGCACCACGACGGTGGAGCCTTCCTCGGCAACCGGACCGGTCCGGGTAGCTGACACCTTTCACTTCGCCTACGACAATGGCGATGTCTACCGCCCGGTTGGTACCACTCTTTACGCTTGGACGCATCAGAGCCAGGAACTTCAGGAGCAGACGTTGGCGACGCTGGCGAAAAGCGCCTTCACTAAGGTGCGCATGTGCGTCTTCCCCAAGGCATTCATCTTCAACGACAACGAGCCCGAGCTTTATCCGTTCACTCGTGACGGCGACAACTGGGACAGCACACGATTAAACCCGGCGTACTTCCAGCACCTTGAGAACCGGATCCGTGACCTGGATGACCTTGGAATCCAGGCCGACGTAATTCTCTTCCACCCTTACGATCGCTGGGGCTTTCAGGATCTAGGCAAGGCCGCTGACGACCGCTACCTCCGCTACGTCGTCCGGAGGCTGGCCGCCTTTCCGAACGTATGGTGGTCACTGGCGAACGAATACGACTTCATGACCACCAAACGGCGCGAAGACTGGGAACGATTCGCACACATCGTTACCGAGGAAGACCACGCGGACCACCTGCTTTCCATCCACAATGGCACACGCATGTACGACTATTCTGCGGAGTGGGCAACCCATTGCAGCATCCAAAAGGTCGACTACTACAAGACCGCCGAACAGGTCACCGACATGCGTGAACAATGGGGCAAACCCGTAGTCCTCGATGAAATTGGCTACGAAGGCGACCTCGAATATGAGTGGGGAAGCCTCTCAGCACGCGAGGTTGTACGCCGGGCGTGGGAGACAACCCTCCGAGGCGGCTACTACACCCACGGCGAAACGTACTACGACGACAACGACGTTCTCTGGTGGGCCAAGGGCGGACAACTGGTAGGACAAAGCGCCGAGAGAATCGCATTCCTCGACCGGCTGATTGGAGAATCCCCGACCGGGCGGCTGGAGCCGATCCTACGGATGTCCCCAACACCTATTGGCGGCGTTGAAGGCAAATACGAAATCCATTACCAGGGCTATAGCCAGCACCGATTCCAGACGATTGATATCGCAGAGGCCCATATGGCGAAGGTCGACCTAATCGACACCTGGGCCATGACCATCGAGCCCCTTCCCGGGACTTTCAGCGGGGGACAACGGATTGAACTGCCCGTCCGTCCTTACATGGCGTACCGGCTGCGGATTGAAGCGACCGCACCTATAGACAAGGACGTTCAGTGAMLFMDDQTKTREILEDEAGRNALRIALPEVVDKPGKFGGALELPIGALATVFRVKESIQAELWERLACIPAKERTEALPVEPNPDYEGAEVPAGSAAISAPMAGKVNAMLEIVLTGPTHGNPFTDVDLQAKFRLGDIELRVGGFYDGNGRYLIRFLPPKPGTWEFRTLSTARSLDGHAGTTTVEPSSATGPVRVADTFHFAYDNGDVYRPVGTTLYAWTHQSQELQEQTLATLAKSAFTKVRMCVFPKAFIFNDNEPELYPFTRDGDNWDSTRLNPAYFQHLENRIRDLDDLGIQADVILFHPYDRWGFQDLGKAADDRYLRYVVRRLAAFPNVWWSLANEYDFMTTKRREDWERFAHIVTEEDHADHLLSIHNGTRMYDYSAEWATHCSIQKVDYYKTAEQVTDMREQWGKPVVLDEIGYEGDLEYEWGSLSAREVVRRAWETTLRGGYYTHGETYYDDNDVLWWAKGGQLVGQSAERIAFLDRLIGESPTGRLEPILRMSPTPIGGVEGKYEIHYQGYSQHRFQTIDIAEAHMAKVDLIDTWAMTIEPLPGTFSGGQRIELPVRPYMAYRLRIEATAPIDKDVQNANANANANA
D1-29_021721749apnL_1D-apionate lactonaseGTGACAATGCTTGCCGAGAACAAGGCCCGGCTCCTTGGCCCTACTCAGTCACTCGCCCACGGACCTTGGCGAGTTCTGTTACGCGGGGACGAATTCGCCGACATTTCATACCGGGGCCGCCCAGTCCTCAGGGCCATCCGGGCAGTTGTCCGGGACCATGACTGGAGAACCCTGACCCCCCAAGTCGAATCTGTCACCGGCTCCCAAGACGGGGCAACCTTCACCAAAACCCTCGAAGTCCGGTTCACAGGTTTCGGCGGTGAGTACACGGCAGGAGTGACTCTCCAGGCATCCGACAACGATCTTTCTGTGTCCTTCGACGGCAGGGCGACCCAGGATTTCAGCAGCAACCGCATAGGCCTCGTAGTGCTTCACAGACCCGATGACGCCGGCCGTGACATCACCGTCACGTCACCGGACCACACCGAGACCAAAAGCGCCTTCCCTACGGACATCAGCCCGCACCAGCCCTTTACAAATATCGCCGCCATGAGCTGGGAACGGGAAGGCACCGCCTTCCGGCTGGACTTCGCCGGAGACGTCTTCGAAACCGAAGACCAGCGAAACTGGACCGACGCTTCCTTCAAGACCTACAGCACGCCGCTTTCCCGGCCCTTCCCCGTCAAAGTGCAGGCCGGCGACCGAACCCAGCAGAGCATCCGGCTCAGCGCCCAACCCTCGACGGCAAACACAACCACCTCACCACCGCCGTCCATACCCGAGATGCTGACCGTGCGGAAGCATTCCCGTGGATGCGTGCCCGCCCTGGGCACTTCCGCATCCACGTCAGCGATCAAACTTCCCTTCGTGCCCGGACTTGCGGCCCTGACCGTGGAAGTTTCGGGCAATAATCCCGCCACGGCTGCAGAACTGCTGGCCCAGGCGGGACGACAGGCCCAGGAGCTGGGCACTGCGCTTGATGTGCGGATCGTCGCGGAAGCAAGCGAAGAGATCCGCTCGATCGTGGACCTGCTGCCTCTGGACAGGGTGGTTCGGGTAGGAGCCTTCAGCTCCCAAGGGCACGTTACCGAGCCAGAGTTATGGCAGCAGTTGAAAGCTACGGCAAAAAGCCGAGGATTCACCGGCGCTCTACTCGCCGGCGCACGTTCCCACTTCACAGAACTCAACCGTCGACCGGACTCCATCAAGCTCGACGCCGACGAGATCACCTACAGCATCACGCCGCAAATGCACGCCACCGAAGTGCCGCATATCGTTGAAAGCCTGCCCATTCAACGGCTGACAGCGTTGAACGCCCTCCGGCTCGGATCCGGAAAACCACTGCTCGTAGGCCCCGTGACGCTCAAGGCACGCTTCAACGCCGTCTCAACCCGAGGCGCCTACGACCCCGCCACCTTAGAAGTCATGACGACTGACCCGCTGCAGGCAGATGAGTTCACCGCTGCTTGGCTGCTGGGCAGCATTAACGCCCTCACCGTGCCAGGCGTCGAATCCGTCACCTACTTCGAAGCCAGCGGCCCCCGAGGTCTCATCACCGCGGAAGGAACCACTACACTCGCGTTCGAGATCCTGGCCAAACTGGCGACCCTGCGGGGTGCAGATGTCCTGCACGTCGACAGTGACGTTCCCGGCCTCGTGCTCTACCCGGTGGCATCAGGAACCGGCGTTGTGCTGTTCGCCGCCAACCTCACTGCACAGCCGCTGACCACCGCGGTCAAACTTGAAAACGGCTACCCGCGGACTCTTGAAATTTCACCGTGGTCGGCGATCACCCGGCCCCTCAGCTGAMTMLAENKARLLGPTQSLAHGPWRVLLRGDEFADISYRGRPVLRAIRAVVRDHDWRTLTPQVESVTGSQDGATFTKTLEVRFTGFGGEYTAGVTLQASDNDLSVSFDGRATQDFSSNRIGLVVLHRPDDAGRDITVTSPDHTETKSAFPTDISPHQPFTNIAAMSWEREGTAFRLDFAGDVFETEDQRNWTDASFKTYSTPLSRPFPVKVQAGDRTQQSIRLSAQPSTANTTTSPPPSIPEMLTVRKHSRGCVPALGTSASTSAIKLPFVPGLAALTVEVSGNNPATAAELLAQAGRQAQELGTALDVRIVAEASEEIRSIVDLLPLDRVVRVGAFSSQGHVTEPELWQQLKATAKSRGFTGALLAGARSHFTELNRRPDSIKLDADEITYSITPQMHATEVPHIVESLPIQRLTALNALRLGSGKPLLVGPVTLKARFNAVSTRGAYDPATLEVMTTDPLQADEFTAAWLLGSINALTVPGVESVTYFEASGPRGLITAEGTTTLAFEILAKLATLRGADVLHVDSDVPGLVLYPVASGTGVVLFAANLTAQPLTTAVKLENGYPRTLEISPWSAITRPLSPGPT0019151_98DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_APIOSE_CATBALIC_ENZYMES,PGPT0019151-apnL-K23246NANA
D1-29_02173759bacC_4Dihydroanticapsin 7-dehydrogenaseATGATGTCCAATAGGCTCGCAGGCAAAACCGCTCTGGTCACCGGCGCAGGATCCGGCATCGGCCTGGCGATAGCGCAGCGCTTCACTGCAGAAAGTGCCCGCGTTTACTTCGCCGATATCAACCTGGAAGCCGCCGCGAAAGCAGCCCGAGCCACAGGCAGCGACCTGGCGACCCCACTGGCAATTGATATATCCGACGAGAAGAGTGTGGAAGCCGCCTATGCCGTAGTCGCAGCCGACGGCGCCCTGGACATAGTTGTGGCCAACGCCGGCGTCCAACTTTTCGGTCAGGACGCCAAAGTGGGAGACCTGCCCTTGGAAGTCTGGGAAAAAACGGTTGCGGTCAACCACCGCGGATCCTTCCTGACCCTGAAGCACGCAGTGCGGGCCCTGAAAGGCAGGGGAGGGTCCATCATCTGCACCGGCAGCCCGACCGCAGTCGTAGCCTGCGGTCAAACCTTCACCGCATATTCCAGTTCGAAAGCCGGTGTTCACGGGCTGGCCCGGGTTGTAGCCGCGGACTACGCCAAAGAAGGCATCCGGGTGAACACCGTAGTCCCCGGATACACCGAGACACCCCTCGTGCAAACTATCGCCGACGACCCTGCCAGCCGCGCTGGCCTGGTCAACTCGACCATGCTTGGACGGGCAGGCACCGCCGCCGATGTCGAAGGCATCATGGTCTACCTCGCCAGCGACGAATCAGCCTACGCCACAGGCGGTCTCTTCACCGTCGACGGTGGACTCACGGCGCTATGAMMSNRLAGKTALVTGAGSGIGLAIAQRFTAESARVYFADINLEAAAKAARATGSDLATPLAIDISDEKSVEAAYAVVAADGALDIVVANAGVQLFGQDAKVGDLPLEVWEKTVAVNHRGSFLTLKHAVRALKGRGGSIICTGSPTAVVACGQTFTAYSSSKAGVHGLARVVAADYAKEGIRVNTVVPGYTETPLVQTIADDPASRAGLVNSTMLGRAGTAADVEGIMVYLASDESAYATGGLFTVDGGLTALPGPT0006670_180DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_TESTOSTERONE_DEGRADATION,PGPT0006670-beta_hydroxysteroid_dehydrogenase-K05296NANA
D1-29_02174675LRA52-dehydro-3-deoxy-L-rhamnonate dehydrogenase (NAD(+))ATGAAAACAGCACTCGTCACCGGTGGCGCCAGAGGCCTTGGCGCCGCAGTTGCAGATCGGCTCCGAGCAGACGGCATCCGCGTGATCACACTCGACATTGCTGGCGACGTAGACGTCGTCGTCGACATCACTGACGAAGACCGGCTCACCGAGGCGGCAGCAGCAATCGGCCCCGTAGACATCCTCATCAACTCTGCCGGCATTGTCGGCCCCGGCATTCCCCTCGTCACAACGACATCCACCGACTGGCGCACCGTCTTCGACGTCAACGTCCTCGGCGTCGTCGCCACCATGCGCGCCTTCGTGCCCGGAATGGTCGAACGCGGCTGGGGCCGAGTCATCAATTTCGCGAGCATGGCCGGCAAAGACGGAAACCCTAACCTGTCCATCTACTCCGCCTCAAAAGCAGCCGTCATCGCCCTCACCAAATCGGCCGGCAAAGAACTCGCGACCACCGGCGTCCTGGTCAACGCCATCGCACCCGCCGTGATTGCCACGCCAATGAACGACAACACATCACCAGAAGTGCTCGCCCACATCACCAGCCTCATCCCCATGAAACGAGTAGGCAAAGCGGAGGAAGTCGCCGAACTGGTCGCCTGGCTTTCCTCGGAGAAGGTCAGCTTCTCGACGGGAGCTGTCTACGACATCAGCGGCGGACGCGCCACATACTGAMKTALVTGGARGLGAAVADRLRADGIRVITLDIAGDVDVVVDITDEDRLTEAAAAIGPVDILINSAGIVGPGIPLVTTTSTDWRTVFDVNVLGVVATMRAFVPGMVERGWGRVINFASMAGKDGNPNLSIYSASKAAVIALTKSAGKELATTGVLVNAIAPAVIATPMNDNTSPEVLAHITSLIPMKRVGKAEEVAELVAWLSSEKVSFSTGAVYDISGGRATYPGPT0003180_17224DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_021751038ydjJCOG1063putative zinc-type alcohol dehydrogenase-like protein YdjJATGCGTGCACTTGTCGTCACCGGGCCCCGCCAGGCCCACGTGCAGGACGTTCCCGACCCCGTCGCCGCAGCCGGTCAGTTACTCGTTGACGTCGAACGCGTCGGCATCTGCGGCACCGATGTGGAGCTCTACACGGGCGAGATGGCCTACATCGACCAGTGCTTCACCAGCTTTCCCTTGCGGCTGGGCCACGAGTGGACCGGCCGGGTTGTGGCAGCAGGCTCACCGGAAGATGAGGGCTGGATTGGCAAGCGGGTGACAGGCGACACCATGCTGGGTTGCGGGCACTGCCAGTACTGCCAGTCAGGGCACCATCACGTCTGCCCCAACCGCTTTGAAGTCGGGGTTCGGGACGGTTGGGATGGGGCGCTTGCCGAACGTATGCTTGTCCCAAGCAAATTTGCGTACGAGATCCCGGAAAGCGTCAGTCTCACCTCCGCCGCCCTCGTCGAGCCCGCCGGTAATTCCCTCCGCGCCGTGCGCGGCGCAGCTCTGCTTCCAGGGCAAAAACTCCTCGTCCTCGGCTCAGGCACTATTGGGCTTCTGGCCGCACAGTTTGCACTCGCGGACGGCGTTGAGGTCCATGTCGGCGGCGTACGTGAAGGTTCGCTGGCCCTCGCCCGTTCACTGGGCGTACAGCACACTTGGCAGCTCGGTGAGCTCGCCGATGGCCGGGCCGACGAATTCGACGCCGTCATCGAAGCAACCAGTAACGCTGATATGCCGGCTCTCTCTGTTCGCCTGACTAAGCCAGCCGGACGTGTGGTGTACATCGGCTTGTCCTCGGGTCCGAGCTTCGTCGATACCCGGGAAATAGCACTGAAGGACATCACAGCAGTCGGAATCCTTTCGGCATCCCCTGGCCTATCCGGGGCGATTGCCGGCTTCGCCAGCGGAGCAGTGAACCCGGAGGCCATTGTCAGTGAAGTTATACCGCTTGAAGAAGTTCCCGCCCGGCTTGAAGGCCGGCGAGGCAGCAACGCCGGTCCAGGCCCGAAAGTCCACGTCGACCCCCGTCTTATCCAGGAGAAACCATGAMRALVVTGPRQAHVQDVPDPVAAAGQLLVDVERVGICGTDVELYTGEMAYIDQCFTSFPLRLGHEWTGRVVAAGSPEDEGWIGKRVTGDTMLGCGHCQYCQSGHHHVCPNRFEVGVRDGWDGALAERMLVPSKFAYEIPESVSLTSAALVEPAGNSLRAVRGAALLPGQKLLVLGSGTIGLLAAQFALADGVEVHVGGVREGSLALARSLGVQHTWQLGELADGRADEFDAVIEATSNADMPALSVRLTKPAGRVVYIGLSSGPSFVDTREIALKDITAVGILSASPGLSGAIAGFASGAVNPEAIVSEVIPLEEVPARLEGRRGSNAGPGPKVHVDPRLIQEKPPGPT0018265_347DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018265-rspB-K08322NANA
D1-29_02176858Ureidoglycolate lyaseATGAGACTCGTACGAGTTGGAGCCGGCGGCTCCGAGGCCCCTGGCGCACTGATTGACGACGACACCTTCATCGACCTCTCAGATATCGTCAGCGACTTCAACGAGGCGTTCTTCGCATCGGGCACAATCGCGACCCTGCCCGCCATCATCGCTGACCGGATCGCAGACGGGCGGGGTGAGTCACTCGACGGACGCCGCTTCGGTGCACCCATCGCCCGGCCCCACCAGATTCTCTGCATCGGCCTGAACTACAGCGACCACGCCGCCGAAACCGGCCAGGCCGTACCGACCGAGCCCATCCTCTTCACGAAATCGCCCAACACCCTCATCGGCCCCAATGACGACGTGCTCATCCCACGTAACTCGGAGAAAACAGACTGGGAGGTCGAACTCGGCATCGTCATTGGACAGCGCGCCTCCTATCTCGTGGACGAGACAGAAGCAGCCGCTGCCATCGCCGGCTACGTCCTGGTCAACGACGTCAGCGAGCGGGCCTGGCAGCTCGAACGAAACGGTCAATGGGCGAAAGGAAAGTCCGCACCCACCTTCAACCCCGCAGGGCCATACCTGGTGACACCGGACGAGATCGACGACGTACTGAACCTGGATATGTGGCTCGACATCGACGGCGTGCGCCGCCAGACCGGCTCGACTTCGACGATGATCTTCAGCCCAACCTTCATCGTCCATTACCTCAGCCAGTTCCTGGCACTCGAGCCCGGCGACCTCATCAACACCGGAACACCCCCCGGCGTCGGCATGGGAATGACACCCCAGGTCTTCCTGAAAGGCGGCGAAACCATGACGCTCGGCATCACCCGGCTGGGAAGCCAGACGCAGCAAGTGATCGCCAACTAAMRLVRVGAGGSEAPGALIDDDTFIDLSDIVSDFNEAFFASGTIATLPAIIADRIADGRGESLDGRRFGAPIARPHQILCIGLNYSDHAAETGQAVPTEPILFTKSPNTLIGPNDDVLIPRNSEKTDWEVELGIVIGQRASYLVDETEAAAAIAGYVLVNDVSERAWQLERNGQWAKGKSAPTFNPAGPYLVTPDEIDDVLNLDMWLDIDGVRRQTGSTSTMIFSPTFIVHYLSQFLALEPGDLINTGTPPGVGMGMTPQVFLKGGETMTLGITRLGSQTQQVIANPGPT0001745_254DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
D1-29_021779156-deoxy-6-sulfogluconolactonaseATGAGTGAGATTCCCAGCCTTGCAGCAGCGGCGGCGACGCCTGCTGACTACAACCTTGCCGAAGGCGTGCTGTGGGACGACCGTGCCAGTCTCGTCAGGTGGGTGGACATCTGGAAAGGCCGCGTACTCTCCGGCGCACTCGACAGCGGACGTATCTCCGACATCCACGAGGTCACCATTGGTGAAACCGCCGGAGCGGTCGCAATAGCGGAAGACGGCGGACTGCTGGTTGCCGCAGCCCGCGGCCTGGCAACAATCTCACCATTGGGCGACGTGTCCCTCGGGCCCGACCTGCTCGGCGGACGGACCGGCGTCCGTTTCAACGATGGGACAGTCGATCCCCACGGCGCCTTCGTCGTCGGCACCCTCTCGCTCACCGAGCGCACCGACGAAGAGGTCCTGCTTCGCGTCTGGCCCGATGGCCGGATGGAGACGTTGCGCGAAGGCATCGGCCTTTCCAACGGTGTCGCGTTTTCGCCCGACGGCGCCACGATCTACCATGTCGACACGTTTGCGGGCACGGTTTCACGGCACTCCTACGGCCCGGCCCCCTTCAACCCGGAAGAACCCTGGGTCACGGTCCTTGACGGCCTTCCCGCTTACCCGGACGGACTCACTGTAGATGCCGAGGGCGCGCTCTGGGTGGCGCAGTGGGGCGGATCGAGTGTTCGGCGGCACGCACCGACCGGTGAACTGCTTGCAGTCGTGGAAGTAGACGCCGCACAGGCCTCATGCCCAGGTTTCGTCGGACCGAACCTCGACACCCTGGCCATCACTACTGCCCAGGAAGGGCTTGACACCCTCACCGACCAGGCGGGAGCCATCTTCCTCGCCGACGTCGGAGTTTCAGGCCTGCCACCACACCGGTGGGCAGGCAGCACAACCACCCCCTATTGGAGAAAAGAAAAACTATGAMSEIPSLAAAAATPADYNLAEGVLWDDRASLVRWVDIWKGRVLSGALDSGRISDIHEVTIGETAGAVAIAEDGGLLVAAARGLATISPLGDVSLGPDLLGGRTGVRFNDGTVDPHGAFVVGTLSLTERTDEEVLLRVWPDGRMETLREGIGLSNGVAFSPDGATIYHVDTFAGTVSRHSYGPAPFNPEEPWVTVLDGLPAYPDGLTVDAEGALWVAQWGGSSVRRHAPTGELLAVVEVDAAQASCPGFVGPNLDTLAITTAQEGLDTLTDQAGAIFLADVGVSGLPPHRWAGSTTTPYWRKEKLNANANANANA
D1-29_021782877hypothetical proteinGTGAAAGCCACTAACTTAGCCTCCCGCTCCGTTCTCACTGGCCCGGAGACCGGGCTGGGTGCACGGCTTGGTGACGCCCTCCCCCGCGAGGGAGCCGTCTCCACCAGCCCCTTCGACAGGGTGATCGCCGCCGTCGACGCATCGCACTACCTGCTGACACCGCGTGCAGTCGTGACCCCCCAGAACGCGGGGGAAGTCGGGGCGCTGTTCGCCTATGCGACAGCCAACGGTGAAGCTCTGACGTTCCGGTCTGGTGGCACAAGCCTGTCCGGGCAAGCCTCAACGTCGAACATCCTCGTCGATACCCGCAAATTCTTCCGCTCCATCACCATCGAAGATGACGGGCGCATCGCCCGGGTAGGCCCCGGCGCAACCGTCCGCCAGGTCAACGCCCGACTCCTGCGCCACGGCCGCAAACTCGGGCCAGACCCTGCCAGCGAAATCGCCTGCACCATTGGCGGCGTCGTTGCCAACAACTCCTCCGGCATGGCCTGCGGAACACGCCAGAATACCTACCAGACGCTGCGCTCAGCGATCATCGTCCTGCCCAGCGGCAGCATCGTCGACACCAGCACCGGGGACGCTGATGACAGGCTTCGCGCCACAGATCCTGAGCTCTGGCATTCGCTCATGGCACTGCGGGAGCAAGTCCTCGCCGCACCGGAGCTCGTCGCAGAAATTGCACGTCAATACAGCATCAAAAACACCATGGGCTATGGGCTGAACTCGCTCGTCGACCACGACACGGCCGTGCAGATCCTCGCGCACCTCATGGTCGGCAGCGAGGGAACGCTTGGCTTTGTCGCGGAAGCCTCCTTCAACACCGTGCCGCTGCACAAGTTCGGGGCCACCACCCTGCTGGTGTTCGACACCCTGCGCTCCGCTACTGAAGCACTGGTGGATATCGTCGCCACCGGACCGGCAACCGTTGAGCTCATGGACGCCACATCGCTGCGTGCGGCCCGCATTGATCCAGCGTCCCGCGCCGCGCTCCCCCAGTTCGAGCCCGTCAACCATTGCGCGCTGCTCGTTGAGTACCAGGCCTCGACCGCATCTGAACTCGCCGAGCTGAGCCACGATGCAGAGACACTCTTCGCGCGCCTGCCGCTGACTGCTGCACCGGTCTTGTCCCGGGACGAGACGGCCCGGGCATCCCTCTGGCGGATACGCAAGGGGCTCTACGCAACAATTGCCGGCTCCCGCCCGTCCGGTACGACGGCTCTCCTGGAGGACATCGCGGTGCCGGTTGAGGCGCTCTCGGAGACCTGCGCGGGCCTCACACGCCTGTTCAAGGTCCACGGTTATGACGACGCCGTCATTTTTGGGCACGCCAAAGACGGCAACGTGCATTTCCTCATCAACGAAGACTTTGATGAAGAGTCCAATCTCGCCCGGTATGCGGCGTTCACCGAAGACATGGTCGAGCTCGTGCTTCGCGCCGGCGGCACCCTTAAAGCCGAGCATGGGACAGGGCGAATCATGGCACCGTTCGTCGCACGACAGTATGGCCCTGTGCTCTACGGGATCATGCTGGAGATCAAAAAGGCATTCGACCCGGCAGGGATCCTGAATCCGGACGCTGTCCTCACCACGGACCCCGACCTGCACCTCAAAGACCTCAAGTCCACACCCACCGTCGAAGCCGAAGTCGACCGGTGTGTCGAGTGCGGCTACTGCGAGCCGGTCTGCCCCAGCAAGGACCTCACGACCACACCCCGCCAGCGCATCGTTGTTCAACGAGCGATCGCCGAGGCAGAGCTGCGCGGCGACACAGCCCTCGCCAAGGAGCTGCGCCGTGAGCAGGAATACGAAGTCGTTGACACATGCGCCGTCGACGGAATGTGCCAGACGGCGTGTCCGGTGCTCATCAACACGGGCGACCTGGTGCGGCGTCTGCGGTCCGAAAAGGTCGGCGCGGTTGAGGCTGCCGTGTGGACGGCCGCGGGCAAGGCATGGAAACCCGTGATCCAGGCCGCCTCGGCCGCCCTCACTGTCGCTGCCGCTGTGCCCGCTCCACTGATCACGGGCCCGAACTCGGCCGCCAGGGCCCTGCTAGGCGCGGACACGCTTCCGCTGTGGTTCAAAGACCTGCCAAAAGGCGGCCGCAGACGCCGGTCAGGGGCGGACATCGACGTGGATGGCGTCTACTTCCAGGCCTGTGTGGGGACCATGTTCGGCCCGACCGAGGGAGGCGAGGGTGTCGCTGCCGCTTTCGAATCCCTCGCCGCGAAGGCCGGTCTCGGGCTCGTACGGCCGGATGGGATCGGCGGCTTGTGCTGCGGCACCCCGTGGAAGTCCAAGGGAATCCTCAGCGGATATCACAGCATGGTTGACCGCACCGCTGCCGCCTTATGGGAGGCATCTGATCACGGCCGGCTGCCCGTCGTCTGCGACAACTCCTCATGCTCGGAGGGCTTGGTGCTTGCGCTTGAAAAGGCGGTCGAGAGCAATCCGAATTATCGGGGACTGCGCATCATCGACGCCGTCGATTTCACCGCCGAGCACATCCTGCCCCGCCTCGATATCAGCACTAGGGTCAACAGCGTCGCCGTGCACCCGACCTGCTCGAGTACCCGGGCCGGTTCCAACACCAACCTCGTGAAGCTCGCCGCTGCCGTGGCATCGGCAGTAACAGTCCCGGACAGCTGGGGATGTTGCGCCTTCGCCGGTGACCGGGGCATGTTGCATCCCGAGCTCACAGCCAGCGCTACCGAGCGCGAGTCAGGCGAGATCGCCTCCGGCGAATTCGATGCCTACGTATCGTGCAACCGCACCTGCGAAATCGGCATGACACGGGCCACGGGCCAACCGTACGTCCATGTTCTTGAGGTACTGGACCGGGCTGCAGATCCACAATTAAAGGAAGCCCATGAGTGAMKATNLASRSVLTGPETGLGARLGDALPREGAVSTSPFDRVIAAVDASHYLLTPRAVVTPQNAGEVGALFAYATANGEALTFRSGGTSLSGQASTSNILVDTRKFFRSITIEDDGRIARVGPGATVRQVNARLLRHGRKLGPDPASEIACTIGGVVANNSSGMACGTRQNTYQTLRSAIIVLPSGSIVDTSTGDADDRLRATDPELWHSLMALREQVLAAPELVAEIARQYSIKNTMGYGLNSLVDHDTAVQILAHLMVGSEGTLGFVAEASFNTVPLHKFGATTLLVFDTLRSATEALVDIVATGPATVELMDATSLRAARIDPASRAALPQFEPVNHCALLVEYQASTASELAELSHDAETLFARLPLTAAPVLSRDETARASLWRIRKGLYATIAGSRPSGTTALLEDIAVPVEALSETCAGLTRLFKVHGYDDAVIFGHAKDGNVHFLINEDFDEESNLARYAAFTEDMVELVLRAGGTLKAEHGTGRIMAPFVARQYGPVLYGIMLEIKKAFDPAGILNPDAVLTTDPDLHLKDLKSTPTVEAEVDRCVECGYCEPVCPSKDLTTTPRQRIVVQRAIAEAELRGDTALAKELRREQEYEVVDTCAVDGMCQTACPVLINTGDLVRRLRSEKVGAVEAAVWTAAGKAWKPVIQAASAALTVAAAVPAPLITGPNSAARALLGADTLPLWFKDLPKGGRRRRSGADIDVDGVYFQACVGTMFGPTEGGEGVAAAFESLAAKAGLGLVRPDGIGGLCCGTPWKSKGILSGYHSMVDRTAAALWEASDHGRLPVVCDNSSCSEGLVLALEKAVESNPNYRGLRIIDAVDFTAEHILPRLDISTRVNSVAVHPTCSSTRAGSNTNLVKLAAAVASAVTVPDSWGCCAFAGDRGMLHPELTASATERESGEIASGEFDAYVSCNRTCEIGMTRATGQPYVHVLEVLDRAADPQLKEAHEPGPT0018110_125DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018110-dld2-K18930NANA
D1-29_021791719araCL-arabonate dehydrataseGTGGATCATCTAAGGAGCGCGGACTGGTACGCCGGTTCGGACCGGAATGCCTACATCCATCGTGCCTGGATGCGTCGCGGCCTTCCCGAGGACGCCCTCGAGTCCAAGAAGCCTCAGATTGCGATCGCCAACACCGCCTCGGACCTTACTCCCTGCAACATGCATCTCAATGAAGTTGCTGACTCGGTCAAGCAGGGCGTCTGGGCAGCAGGCGGAGTCCCGCTCAACCTGCCCGTCGTCTCCCTGGGTGAGACCCAAGTCAAACCCACCGCCATGCTCTGGCGGAATATGGCCGCCATGGCGATGGAGGAAATGTTCCGTGCCAACCCCATTGACGGACTTGTGCTGTTGGGCGGATGCGACAAGACAATCCCGGCACTGCTGATGGCCGCGGCGTCGGTCAACATTCCCGCAGTCGTCGTGCCTGGCGGGCCGATGCTGACCGGCCACTTCCGCGGCAAGGCCCTGGGATGCGGCACCGACGTCTGGCGCCTGAGCGAAGAAGCCAGGGCCGGCACCATCACCAACAGCCAGTTCACCCAGTCAGAGCAATCGATGATCCGCAGCAAGGGCCACTGCAACACGATGGGAACCGCCTCGACGATGGCCGTGGTGGCAGAAGCACTCGGGATGACAATTCCCGGGTTCGCCGGAATCCCAGCCCCGGACGCCCGACTGCTCTCCATGTCGCACGACACTGGCCGGCTCATCGTGGACATGGTCGCACAGGGCCGCCGGCCCAGCGACGTCATGACCAGGGAAGCATTCCTCAACGCAATCATCGCCGTCGCCGCCGTGGGCGGATCAACCAACTCTGTGGTGCACCTGCTCGCTATCGCCGGCCGGCTCGGAGTCGACCTGAGCCTTGAAGACTTCGATGCCGCCGGCGCTGGAGTGCCCGTCATGGCAAACCTGCAGCCCTCCGGCACTTTTCTTATGGATGACCTGTACCGTGCCGGTGGTGTGCTTGCCCTCCTGTCGCAGATAAAGGACCTCTTGCACCCCGCCCCCATCACCGTCACCGGTACCCCACTCGTCGAGTATCTCGTTGACCAGCCGGTCCACGACGAAACAGTCATCTACCCCCGTGAGGCCCCGTTCTTGGATGATGCGGGCATAGCGGTACTACGCGGCAACCTCGCCCCACGCGGAGCCATCATCAAGCCTGCGGCCGCGACAGCCGAACTGCTGCAGCACACCGGCCCCGCCGTTGTCTTCGACAGCATCGAGGACATGCGCGCACGCATCGACGACCCGGACCTGGACGTCACCGCCGACTCAGTTCTCGTCCTGCGCGGTTGCGGACCCCGCGGCTACCCGGGGTTCCCGGAAGTGGGCAACATGCCCCTCCCCCGCAAACTCCTGGAACAGGGCGTTCGGGACATGGTGCGTATCAGCGATGCCAGGATGAGTGGCACCGCCTACGGCACCGTCATCCTGCACGTCGCCCCCGAAGCCGCCGCCGGCGGGCCGCTCGCATTCGTCCGCACAGGGGACATCATCTCCCTGGATGTCGAAAACCGCACCCTCACCATGGACGTCTCGGATGAGGAGCTGCACGCGCGCACTCAGAGCCCGGCCAGTGAGGCCGGCTACGCCGCACCCGCCCGTGGCTGGGCGAAACTCTATGTCGACCACGTCATGCAGGCTGATCAGGGCGCCGACCTGGACTTCCTCGTGGGCTCCAGCGGGGAAGCGGTGGGCCGTGAAAGCCACTAAMDHLRSADWYAGSDRNAYIHRAWMRRGLPEDALESKKPQIAIANTASDLTPCNMHLNEVADSVKQGVWAAGGVPLNLPVVSLGETQVKPTAMLWRNMAAMAMEEMFRANPIDGLVLLGGCDKTIPALLMAAASVNIPAVVVPGGPMLTGHFRGKALGCGTDVWRLSEEARAGTITNSQFTQSEQSMIRSKGHCNTMGTASTMAVVAEALGMTIPGFAGIPAPDARLLSMSHDTGRLIVDMVAQGRRPSDVMTREAFLNAIIAVAAVGGSTNSVVHLLAIAGRLGVDLSLEDFDAAGAGVPVMANLQPSGTFLMDDLYRAGGVLALLSQIKDLLHPAPITVTGTPLVEYLVDQPVHDETVIYPREAPFLDDAGIAVLRGNLAPRGAIIKPAAATAELLQHTGPAVVFDSIEDMRARIDDPDLDVTADSVLVLRGCGPRGYPGFPEVGNMPLPRKLLEQGVRDMVRISDARMSGTAYGTVILHVAPEAAAGGPLAFVRTGDIISLDVENRTLTMDVSDEELHARTQSPASEAGYAAPARGWAKLYVDHVMQADQGADLDFLVGSSGEAVGRESHPGPT0017465_338DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017465-araC-K13875NANA
D1-29_02180780pcaR_1COG1414Pca regulon regulatory proteinATGACACACGATGCAGATCCAAGCCAAGGGGAGCGCCTCGTCGGCTCCGACCGCGTGCTCGCCGTTCTTGTTGAACTTGCAAAGCGTCCGGAGGGTGCGACACTGGAGGAGCTTGCAGGCGCCCTCGACAGTCCCAAGTCCACCGTGCACCGCGCCCTCGCGTCCTTGCGGAAAGCCTCACTGGCCGAACTGACCGCCCGCGGCGTCTACTCCCTGGGGGATGAATTCTTCAGGCTTGCCTTCAGCAATCACGCGGCCCGCCCCGAGACGGAAAGGCTCCAGCCACTCCTGAATGCACTGGCGGACGAATACGGCGAGACAGTGCACTACGCCGTGCTCGACGGCAAGGATGTTGTATACCGTGCGAAGGTCGACCCGACCCAAGGGTCGGTGAAGCTGACCTCGTACGTGGGCGGCCGCAACCCGGCCTACCGGACCGGCGTCGGGAAACTGCTTCTGTCCTACATCGTGGACACCGAAGCGCAGCTGGCTGCATGGCTCGACGGCGACAAGCTTGAAGCGAAGACGGCATCGACAATCACAGACCCGGCTGCCCTCCTGGCCGAACTGCAGGCAACCCGCTCCCGCGGCTACGGCATCGATGACCAGGAAAACGAACTCGGCATCAACTGCATCGCGGTACCGGTATTCGGCACCTCCTCCACCACGCCAACAGGTGCCATCAGCGTCAGCGCGCTGCGATTCAGATACCCCTTGGAGCAACTTGTTCAGACGGCTCCAACGCTCGCCGCCGGCGTTCGCTCCGCCTTGGCGGGCTGAMTHDADPSQGERLVGSDRVLAVLVELAKRPEGATLEELAGALDSPKSTVHRALASLRKASLAELTARGVYSLGDEFFRLAFSNHAARPETERLQPLLNALADEYGETVHYAVLDGKDVVYRAKVDPTQGSVKLTSYVGGRNPAYRTGVGKLLLSYIVDTEAQLAAWLDGDKLEAKTASTITDPAALLAELQATRSRGYGIDDQENELGINCIAVPVFGTSSTTPTGAISVSALRFRYPLEQLVQTAPTLAAGVRSALAGNANANANANA
D1-29_02181321hypothetical proteinGTGCTGGGATCAGGGGGAGGATTCTATGAGTACGACTTTGGTGACAGCTGGCTCCATCGTCTCGAGCTGGCATCCCGCCGACCCAGGGACGAGAACAGTTCGCCGGCCCAGCTGATCGACGGCGCCCGGCGTGGTCCGCTGGAAGACTCCGGCGGACTGCCTGGATTCGAGGACATCATCGACGCGCTGGAGGATTCGTCGCATCCTGACCATGACGAACACGCCGCGTGGGTGGCTGGCCTGACCGACTCAATTGCGCCCTTCAACCCTGCCTTCCTTGACATTCCCGCCGTGAATCGAGCGCCGGCTGAACAGTTCTAAMLGSGGGFYEYDFGDSWLHRLELASRRPRDENSSPAQLIDGARRGPLEDSGGLPGFEDIIDALEDSSHPDHDEHAAWVAGLTDSIAPFNPAFLDIPAVNRAPAEQFNANANANANA
D1-29_02182375hypothetical proteinATGAATCCCTACTGGAAGCTGGACCATCTCCAGGACGTTTACCTCGAAGACAGCTGGATTCTGTCGATGAACGCTTCGCCAGGACGCCTGGAAGTGCTCTTGGACTTCGTTCTCCGAGAAAGTCACCCGGACTACAGCAACCCCAAACCCGGAGAACAGTACTGCTACAAGAGGGGCAGCCTCGTGTTCTCGTCAGTGAGCGAACTGCACTGGACCGCGCAAAGCAGAATTACGCCCGTAACTGACGCCAGTGGTGAGATCGATTACGGATCACTCGATGTGCTGGAGTTCAAGGACAACGTCTGGTCGATGGACGGAGACTTCGGGCAGATCTCGTTGATCTCGACGCCACCACAAATCGAATGGCTACCCTAAMNPYWKLDHLQDVYLEDSWILSMNASPGRLEVLLDFVLRESHPDYSNPKPGEQYCYKRGSLVFSSVSELHWTAQSRITPVTDASGEIDYGSLDVLEFKDNVWSMDGDFGQISLISTPPQIEWLPNANANANANA
D1-29_021831467hypothetical proteinATGCCTAGATCACGAAAAGCCAGCAACCCCGAAACATGGCCCGAACCATGCGGGCGATGCGCCGAACACCACCAGATCGCGGTCCGCTGGCCAGACGCCGCCATCTGCGGCTACTGCTACCAACAAGCCAAAAGAACCCGAGGCACCTGCGCCTGCGGCCACGAGGGAGTCCTGCCCGGCCGCGTCGACGCGCTTCCGGCCTGCCGGAAATGCTCCGGCGTCCGACTCAACGTCGACTGCATCGGATGCGGCAACGAAGAGGAACTGCACTCCGGTAACCGATGCTGGCCATGCATTCTGTCAGCAACTGTCGACCGGCTCCTCAGCGCAGACAACCAGCCAACCTCACCCGCGCTCCAGGCAATCGCCACAGCCCTGAAATCCATGAAACGCGCCAACAGCGGACTCACTTGGATCCAACAACCACACGTCACAGCCTTCCTCAAACAACTGGCCGCCACACCAGTCATCAGGCACGCCGGCCTCGACGAGCTCCCACCTTCGCCAACCCGCGAATACGTCCGCGGCCTTCTCGTTGAACACGCCGCCCTGCCACGCCGCGACGAACTCAACGCCCGATTCACAGTCTGGGCAGACCAAGCCCTCGACCGGATCGCCACCCAAAGTCATCGCGACATCATCCGGCGCTACATTCGATGGCACCACCAACGCCGCATGAACCAGATGGACGAAGTCACCCAAGGCACGTTCCTCCGGGCCAAGCAATCGGTAACCGTCGCCATCGACCTGCTGAACTGGCTCACCGAGCACGACACTGAACTTACGGAAGTGAACCAAGCACACTTGGACCGTTGGCAGGCTGAAGGCCCAACGACGCGAGGCATCGCCTCACGCTTCCTCGACTGGGCAATCAGGACCAGCCTCATCGACCCGTCTTTGAAGCTGCAGCCTCACCGCCGCGGCACTAGCCCCCGGTTGGACGCCGCCAGGCAAACAGAAGTCGTGCACAGCCTGAGCCACACTACCGACATGAACCCCCGGGATCGCGCAGCAGCCATCCTGGTCATGGTCTTCGGCCAGCAGGTCTCCGACATCGTCCAACTGACGTGGGACAACGTCACGGTGACAGAGGAACTCGTCACGATAACCCTCGGAACAGTGGAGATAGCCCTCAGGGAACCGCTCGATGAGCCTTGGCGTGAACTAGCAGCTTCCCCAACCCACGACCAGACAGCTGCTCACCCCAATAGCAATTGGGTATTCCGCGGCGGCTCCCCGGGCAGACATCTCCAGGCCTCAACCCTCGCTCAAAGACTCAGCACCGCTTTCAGCAGCCGGGCGGCCAGGCTCGGAACCCTTCACGAACTCACCAAACTCGCCCCGGTAGCCATCATCGCCGAGGCCCTCGGCTACAGCCCCGCCACCATCGAGCGCCACGCCATCGACTCATCAGCCAATTACGCTCAATACATCGCCTCGACAGCGCTGGCGAGGAACCAACCATGAMPRSRKASNPETWPEPCGRCAEHHQIAVRWPDAAICGYCYQQAKRTRGTCACGHEGVLPGRVDALPACRKCSGVRLNVDCIGCGNEEELHSGNRCWPCILSATVDRLLSADNQPTSPALQAIATALKSMKRANSGLTWIQQPHVTAFLKQLAATPVIRHAGLDELPPSPTREYVRGLLVEHAALPRRDELNARFTVWADQALDRIATQSHRDIIRRYIRWHHQRRMNQMDEVTQGTFLRAKQSVTVAIDLLNWLTEHDTELTEVNQAHLDRWQAEGPTTRGIASRFLDWAIRTSLIDPSLKLQPHRRGTSPRLDAARQTEVVHSLSHTTDMNPRDRAAAILVMVFGQQVSDIVQLTWDNVTVTEELVTITLGTVEIALREPLDEPWRELAASPTHDQTAAHPNSNWVFRGGSPGRHLQASTLAQRLSTAFSSRAARLGTLHELTKLAPVAIIAEALGYSPATIERHAIDSSANYAQYIASTALARNQPNANANANANA
D1-29_02184351hypothetical proteinATGGCTGAACAGCGACGGATCGGATACCGCTGGAACCTTCGGCAGATGATGGCCCAACGAAACCTCTGGAAGACCACCGAGCTTCTCCCCCTGCTCAAAGCCCGTGGCATCAGCCTCTCTAACGCCCAGGTCCACCGCCTAGTCACCGGAACACCGGAACGCATCCCCGCCCAGACCTTCGCCGCTCTCTGCGACATTCTTGAGTGCACCCCGAACGACCTGTTCGAACCCTACGTCCAAATGCGCGCCAAGAGTGCCAATGCCCCGAAGATGCCAGAAGACCTGGGTATCCAGCCCGGTACGCCGATCGCACGCCGCATCCGCGTCCTGCCACCGGACGAAGATGCCTAGMAEQRRIGYRWNLRQMMAQRNLWKTTELLPLLKARGISLSNAQVHRLVTGTPERIPAQTFAALCDILECTPNDLFEPYVQMRAKSANAPKMPEDLGIQPGTPIARRIRVLPPDEDANANANANANA
D1-29_021851134xerC_2Tyrosine recombinase XerCGTGAATATTGAAGCCGGACGGATTCCGGCGTTTCTGACCACCGCGAACGTCGGGTTGCTGCGGGCTGAGGATCGCGCCTTTGAGGCGATGTTGGATGGCTGGCGTGCCCAGATGCTGGCCCGCGGCCTCTCGACGTCTTACATCAAGAGCTCTTGTGGGACGGTTCAGCGGTTCCAGGAACACTCCAATCAGTACCCTTGGACCTGGTCTGCGCATCATGTAGATGAGTTCCTGGCGGATCGACGCAGCTCGGAGAACGGCCTGGCGCTATCGACCCTCAGGGCCAATTCCGGCGCCATCAGGGCGTTCTGCTCCTACCTGACCGATGGGCGCTACGGGTGGGCAAACTTCTGCGAACGAGTCTTTGCGGACATTCCGGTGCAGGTCGTGTTCGAGTGGAACTCGCCCCGGCACACAACAGACGATGCCATGCCGGCACGCCGCCGGGCGTTCACGAAGGCTGAACTCCAGATGTTCTTCGATGCCGCCGATGACCTGGTCGACACCGAGTTCGCCAAGGGCTCGAAGCGCTGGCTTCCTGCACTGAGGGACTCGACGGCGTTCAAGGTCGCCTATGCCTACGGGCTCCGCCGGCGAGAGCTAACGATGCTGGAGTACGTCGATTTCGGACCGAACCCGCACGTTGAACAGTTCGGCCGATTCGGGGCGCTCCAGGTGCGCTGGGCGAAAGGAACCAAAGGCTCCGGACCGAGACGCCGGACCGTTCTGACCGTCCCGGAATTCGATTGGGTCGTAGGGCTGCTTGAGCACTGGCTCTCCCCCGACGGTCGGAAACGTTTCCCGACGGCGGACCGTTCGACCAGCCTGTGGCCCTCGGAACGCTCAGGCTCCACGGTTCACCGCAACTTCGACCGTTCCTTTCAGCGCGTCCGGGAGATCGCCGGGCTCCCCCAGGAATTGTCCTTGCATACCTTGAGGCATTCCTACGTCACTCATCTGATCGAAGCCGGCTACGACCCCTTGTTTATCCAGCAGCAGGTCGGGCACAGCTACTCCTCGACCACCGCCCTCTATACTTCCGTGTCGGCGGACTTCAAACAGAAGACCATCCAGACGATGATCGCGCAGCGCCTACGCAGCAGCGGCACTGACGAAGGGAACGGCCATGGCTGAMNIEAGRIPAFLTTANVGLLRAEDRAFEAMLDGWRAQMLARGLSTSYIKSSCGTVQRFQEHSNQYPWTWSAHHVDEFLADRRSSENGLALSTLRANSGAIRAFCSYLTDGRYGWANFCERVFADIPVQVVFEWNSPRHTTDDAMPARRRAFTKAELQMFFDAADDLVDTEFAKGSKRWLPALRDSTAFKVAYAYGLRRRELTMLEYVDFGPNPHVEQFGRFGALQVRWAKGTKGSGPRRRTVLTVPEFDWVVGLLEHWLSPDGRKRFPTADRSTSLWPSERSGSTVHRNFDRSFQRVREIAGLPQELSLHTLRHSYVTHLIEAGYDPLFIQQQVGHSYSSTTALYTSVSADFKQKTIQTMIAQRLRSSGTDEGNGHGPGPT0022000_885DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763NANA
D1-29_02186384hypothetical proteinATGACGAACGCAAGGGACAAGAGCGCCCGACTCGAGCCCCACGAGGACCTATATGGACAAGTTAGGGGCGACGTCGAAAGACTTGAGCGCCAACTATTGTTCGTGATGAAGCTCTGGAGTGATCGGGACGAGAACTACGAACGAATCGCAGCCGCCGTCCGAGTCGGGGCGGGGAAACTACGGACTAAAGCTAAGGGCATCAACCGTGCGCGAGACCGGCAGGACATGATGGGGAAGATCGAACGCGTCATTTCGGACATCTCGCGCCTCAACCGATACCCGCCCTATGTCCCAGGTTCCGGAGGGCAGCGCCCAGCCCCTCCCAGAGGCCGCATTAGCTCGATAAAACCCGGTGGGCTGCCAGGATTTGGGAAGCGGCGGTAGMTNARDKSARLEPHEDLYGQVRGDVERLERQLLFVMKLWSDRDENYERIAAAVRVGAGKLRTKAKGINRARDRQDMMGKIERVISDISRLNRYPPYVPGSGGQRPAPPRGRISSIKPGGLPGFGKRRNANANANANA
D1-29_021871029hypothetical proteinATGGAAAAGCTCACGATCACAACACCATCAGATGTCCTCAGCTTCATCGGCCACACCCTAGGCTTCTGGCCCCAGGAAAGCCTGGTCTGCATCACCCTGAACAACAACAGCATCGGCGCGACCCTGCGCATCGATCTCCCCCGCCAACCAGGCCAGGAACTCCCCTACGCGCGCACCGTCGCCCACTACCTCACCAGCGACACCACCGCCACATCAATCCTCTTCGCCGTCTACACCAGCGAAACAGCCCCGCAGGGACAAGCCAGACCCCACGCTGGCACCATCGCCGCTCTCACCGGGGTCCTGGCTGAACAGGGCATCACCATCCGGGACGGACTCTTCGTCGGCGAACAAACTTTCTCCCCCTACGACGGCGAACCCGGCACCAGTCTCGCCCTGCCCGTCAGCTCCACCCAGACCAGCGCGATCAACGCCGAATTCATCTACCGCGGCAGCTATATAGAATCCACCGACAGCGTCACCCTCCCCACCACCGGTCATGAAGAAGCGAAAGCGGCCGCCGTCGAACACCATATGGAAGCCATCGCCGCCCAACCAGCCGGCACCGCGCTCCAGCAAGGCAGGAAACTTTGGGGTGACATGCTCGGGTCCACGGCTTTTCCCAGCGACGATGATTGCCACGCCCTGGTCGCGAATCTTCAGTTCCCGGCGATCCGGGACCGGCTCATCGCGGACATCCCGGGAGTGGACGAGCCCATGCAGCACATCTTGTTTGCCCAAACCGACCAGGCCCCGAAGTGGTCACGCATCGAATGGGCCCAGCAGCTGCTCCTTCATGCCTACACCCGTACCAGTGCAGAACATGCAGCACCGGTCCTCACTGCAATCGGCTACATCAACTGGTGGGAAGGCAAAGGCAGCAAAGCCCACCAATTTCTCCAACTCGCCCTCGACAACGACCCCGCCTACCGCCTCGCCCGCCTCAGCGACCAAATGATCGGCTCCGGCCTTGTCGCCGGCTGGAACATGAACAAAGAAACCGCGTACAAGGCACTGCCCTTCGATTAGMEKLTITTPSDVLSFIGHTLGFWPQESLVCITLNNNSIGATLRIDLPRQPGQELPYARTVAHYLTSDTTATSILFAVYTSETAPQGQARPHAGTIAALTGVLAEQGITIRDGLFVGEQTFSPYDGEPGTSLALPVSSTQTSAINAEFIYRGSYIESTDSVTLPTTGHEEAKAAAVEHHMEAIAAQPAGTALQQGRKLWGDMLGSTAFPSDDDCHALVANLQFPAIRDRLIADIPGVDEPMQHILFAQTDQAPKWSRIEWAQQLLLHAYTRTSAEHAAPVLTAIGYINWWEGKGSKAHQFLQLALDNDPAYRLARLSDQMIGSGLVAGWNMNKETAYKALPFDNANANANANA
D1-29_02188573hypothetical proteinGTGGCTCGGCGCGCAAATCCTCCCAAGAAGGTGGGTCGTTGTCGGATTCTTGTACCGCAAAGGTCTGTTGAGGTGCGAGCCAAATCTGTCAGGACAAAGAAGAACCGCATTCCGTCGTTGCGGGGTGCAGTCGTAGGTCGAACGCTTCGGCGGGGGCGAAATCGGGGTGTGGACATTGTCCACAGTCTTGGCCTCGGACCGGGTAATACCGCCCTCGGAGTGCTTCCAATTCCGCATGTTTTCGGAAGTTCCCAGCGTTGGCAAGGCCGGGAATGCAGTTCGAGTCCCACCTCGGGCACAGGGTTTCCGCAGGTCAGTGGCTTTTGGCCTCTGACCCTGTTGACAGTGTCCACACACTGTCCGGGGGTCATTAATGACGGGTGGCAGTCACGCCGTTTTTGTCGGTGGGCCGTGCTTGTGGCCGGATCCTTCCTTTCGTTCTGTCGGCGAATTTTCGGCTTGCTACTCCTTCATTGCTGGGCCGGGTCTTGGCAACACGACTTGTTTCGACCCGGGGGAGTGACGCTGCGCCGGCTTGTGGTCTGTTTCTCGTCTCACGCATGTTCATGGTGAMARRANPPKKVGRCRILVPQRSVEVRAKSVRTKKNRIPSLRGAVVGRTLRRGRNRGVDIVHSLGLGPGNTALGVLPIPHVFGSSQRWQGRECSSSPTSGTGFPQVSGFWPLTLLTVSTHCPGVINDGWQSRRFCRWAVLVAGSFLSFCRRIFGLLLLHCWAGSWQHDLFRPGGVTLRRLVVCFSSHACSWNANANANANA
D1-29_02189531hypothetical proteinATGAAAACGCATGATCCATTTGCACCAACATCCGGGATCGAATCCTTCGAAGTCATCAGCGAATCCTTCGAGGATGGCCAGGTTCTTCCGAAATCCCAACGCAGCGCCGTCCTGGGAGCCGGCGGGCGGGACGAATCGCCCCAGCTCACCTGGTCGGGCGCGCCCGAGGGAACCAGGAGCTACGCAGTCACCGTCTTCGACCCCGATGCCCCAGGCTCGGGCTACTGGCATTGGGCTGTGGTGAACATCCCGGCAGACGTCACCTCCCTCCCGGCCGGTGCAGGTTCCCGGGACAACTCCCGGTTACCGTCTGGTGCAGTGCAATTGAAGAACGATGCCGGATTTGTCGGTTTCGTGGGAGCTGCCCCGCCTCCCGGGCACGGTCAGCACCGGTATTTGCTGGTGGTCCATGCCATGGATGTTGAGCGGCTGGACCTGCGCACTGATGACACCCCCGCCGCCCTGCAATCCGCGCTCTCCACCCACACCTTGGGCCGGGCGAGGCTGACGGGAACCTTCGAACGCCGCTAGMKTHDPFAPTSGIESFEVISESFEDGQVLPKSQRSAVLGAGGRDESPQLTWSGAPEGTRSYAVTVFDPDAPGSGYWHWAVVNIPADVTSLPAGAGSRDNSRLPSGAVQLKNDAGFVGFVGAAPPPGHGQHRYLLVVHAMDVERLDLRTDDTPAALQSALSTHTLGRARLTGTFERRNANANANANA
D1-29_02190369docCOG3654Toxin DocGTGACCGAGTACCTCGAGATTGAGGACGCTTTGCAGGTCGTTGACCGGTTTGGATTCCATGTCCGTGATATCGGGCTTCTGGGCTCGGCACTGGCGAGGCCGGCAACCACTGTGATGGGGGTGGAAGCCTATCCGCAGTTAGCGACGAAGGCAGCGGCGCTCATGGAGTCGGTGGCGCGGTTTCACCCCCTGATCGACGGAAATAAACGCACGGCCTGGACGCTGATGGTTCTGATGCTCTGGATCAACGGCTACCGGCATGACTTCAGCACTGACGAGGCCTTCAATCTCGTCGTGGGTGTGGCAGCCGGCGACATCACACTGCAGGACAGCGCGGGGACGATTGCGACCCACCTCGTCAGGCGGTAGMTEYLEIEDALQVVDRFGFHVRDIGLLGSALARPATTVMGVEAYPQLATKAAALMESVARFHPLIDGNKRTAWTLMVLMLWINGYRHDFSTDEAFNLVVGVAAGDITLQDSAGTIATHLVRRPGPT0027560_1150DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-Doc-Phd_TOXIN-ANTITOXIN_SYSTEM,PGPT0027560-toxin_doc-K07341NANA
D1-29_02191306hypothetical proteinATGTTGAATTGCGGCCTTACCTACATGGTGAGCACGTACTCCTTGGCCAGTCCATCCAGGTGGGTGCGAGCAGGCAGTTGGAAATACATCTGGTTCTCGAAGAATGGAAATGAGCAACTTTTCGACCTCCACAATGACCCCGAGGAGACCCGGAATCTCAGTAAAGATCCCGGTTGCCGGACTCAGCTCCTTAAACTTGGAGCTAACCTCATCGCCGAACTCTCCGGTCGCCCGGAGGAGTTCGTGCAGTCGGGCCAGCTAGTACCTGGACAGGCCGTCGTTACGCTGCTTCCAAAAGGATCGTAGMLNCGLTYMVSTYSLASPSRWVRAGSWKYIWFSKNGNEQLFDLHNDPEETRNLSKDPGCRTQLLKLGANLIAELSGRPEEFVQSGQLVPGQAVVTLLPKGSPGPT0006785_110DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-ORGANOPHOSPHATE_DEGRADTION,PGPT0006785-pehA-K01130NANA
D1-29_02192261hypothetical proteinATGATCGATATGCGTGACGTTGCCGTAATATCCGGCACGGGCTCGGTTCAAAGTCTGCTGATCGTATGTAGCAACGTGGGCGTCTGGCCGATGATCCGTTCCATAGCCCTCAAGGTCGGCAACCCAGTCGCCCACGGGTGGTTCATGGTCAGGAAGGTTCAAATACTGTTCGAAGGCCCATACTGGCGGATTGTATGGCGGGTGCGGGCGGTGGAAGGAGAGGTACAGGAAGAATGGAACGGTAGGGTCTCGGCGGTATAAMIDMRDVAVISGTGSVQSLLIVCSNVGVWPMIRSIALKVGNPVAHGWFMVRKVQILFEGPYWRIVWRVRAVEGEVQEEWNGRVSAVNANANANANA
D1-29_02193381COG3119ArylsulfataseATGACTCAAGCTAGTTCGACGGCGGGCACTCCTAATGTTGTTCTCATCTGTACCGATCAATGGAGAGGAGACTGTCTCTCCATCAACGGCCATCCAATTGTTAGGACGCCTTATCTCGACGCAATTGCCGCAGAGGGTGCAAATTTCTCGAATGCTTATTCATCCACGCCGACCTGTGTTCCTGCCCGCATGGCCCTGATGACCGGCCTTACCGCCCGTTCCCACAGAAGGGTTGGCTATACCGACGGCGTTGATTTCGACGTATCCGTTACACTCCCGGGAGAGTTCACGAAGGCGGGCTATCAAACACAGGCGATCGGGAAAATGCATTACTATCCTGAACGCGGACGCATTGGGTTTAACGACGTTAATTCTTCATGAMTQASSTAGTPNVVLICTDQWRGDCLSINGHPIVRTPYLDAIAAEGANFSNAYSSTPTCVPARMALMTGLTARSHRRVGYTDGVDFDVSVTLPGEFTKAGYQTQAIGKMHYYPERGRIGFNDVNSSPGPT0006785_45DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-ORGANOPHOSPHATE_DEGRADTION,PGPT0006785-pehA-K01130NANA
D1-29_021942436COG3250Beta-galactosidase BoGH2AATGAAACGCATTTCGTTCAACCGTGACTGGCAGTTCGGCCCACTCGTCTCGGTTCACGAAGCAATCCGAGTAGCACCGCCCAGCGACAACCTCGTCAACCTCCCCCACGATGCAATGCTTGCCAGCGGACGCACACCGGACGGGACAGGCGGGGCACCTAACGGTTACTTTGACGGAGGATCCTGGACATACGAAAAGCAGTTTGATGCCCCTGCTGACTGGGCGACCAAACGCATCACTTTCGAATTCGAAGGCGTCTACCGGGACCCCATGGTCTTCCTCAACGGAGCCTTCGCTGGCCAATGGAGCAACGGCTACTCCTCGTTCCACATCGAAGCTGATCCCTTCCTGAACTACGGTGAAACCAACACCATCCGCGTTGACGCACGTTCCCACCAAGACTCACGCTGGTACCCAGGCGGGGGGCTCTACCGCCCGGTACACCTCCTTATCGGTGAACTCGTCCACATAACGCCCACTGGACTGCGGGTATCCACCCCGGACGTCGATGAAGAACTCGCCACCGTCGTGGTCAGATCAACAATCGCAAATAAAGGGGCAACCACCCGAACCGTGGATGTCCTGCTCGAAATCCGTGACGACGCAGGCGCGGAAGTGGTCTCAGAAAGATCCCGTGTCACACTCCTGCCCAACGAAACACTGACTGCACATCAGCGGACATACGTGCCGCACCCGTCCCTGTGGAGCCCGGATAACCCCGCTCTGTACCACGCAACTGTTACCCTCCAGGACGAGAACGGACCCATCGACCGTGAATCAACGACGTTCGGCATCCGGAGCCTCGCAGTCGACCCCATCCGCGGGCTCCGCCTGAACGGAGAAAGCATCAAGCTTCGAGGCGCTGCGGTCCACCACGATCACGGCGTGCTCGGCGCAACGGAATTCCCCGACGCCGCAAGGCGGCGGGTTAGGCGGATGAAGGACGCGGGCTTCAATGCAATACGCTCAGCACACAACCCCATCAGTGTGGCGATGCTCGACGCATGTGACCGGCTGGGCATGCTGGTATTCGACGAGGCGTTCGACATGTGGTCGGTGTCCAAATCCACAGACGACTATTCCCGCTCGTTCCCGCAGTGGTGGGAGCGCGATATCGATTCGCTGGTAGCGAAGGACTTCAATCATCCGAGCGTCATCATGTATTCCATCGGAAACGAAATCATCGAAGCAGGAACCCGGCACGGCGCCCGGTGGGGTCGGTTGCTTGCAGAGCGCATCCGTGAGCAGGACCCAACCCGGATCGTGACGCACGCTCTCCAGGGTATGTACATGGCCCGGGACAAGGTCCCGGAACTCCGCGCCGAGGTAAACCAGGACAGCTCCACCATCCGCGGGCTCAACGACTACCTGGGCCAGGTAACCCACCTCATGAACCGGGTCATGGCCTCGGAGCTTCTCGGAGAGCGGCTGCTGGAGCCGGCATCCATGCTCGACATCGTTGGTCTAAATTACGGAGACGCACGCTATGAAGTCGACGCGGACGAATTCCCCAACCGCATCTACTTCAACTCGGAATCATTTCCAACACACATTGACCGCCTGTGGAAGTTGATTCTTGAGAAAAACAACGTGCTCGGTGATTTCACCTGGACCGGTTGGGACTTTCTGGGTGAGGTCGGTACGGGCCGGCACGTTTACCCCGAAGACTCCCAGGAACACCGAGCCCCCTACCCGTGGATCGCCGCCGTATGCGGAGACATCGACCTCATCGGTCAACGCAAGCCCATCTCCTACTATCGGCAAATCGTCTTTGGACTGACCGACGTCCCCTACGTCGCCGTACGAAAACCCCGCGATGACGGATACGTGATCGAACCCAAAGCCTGGACCTGGTCAGACGTTGCACCGTCCTGGACCTGGGACGTCGATCCAGGAACTCCCATGCACATCGAAGCCTATGCCTCCGGTGATGAAGTGCAGTTCCTCCTCAACGGAGCAGTCGTAGCCAGCGAAAAGGTCGGAGTGAACCGCGATTACCTCGTACAGGCGACGCTCCCATTCGAACCCGGGGTCCTCGAAGTCGTTTCATACCGCAATGGCAACGAATTGGGTCGCCGGGAGCTACAAACTGCCAGCAAGCCGGCCAAACTAAGGCTTTCGGCCGACCGGACCTCTATCACCGCCAACACGGTCGACCTCCTGCATCTGGAAATCACGCTCGTGGACGAGGAAAACCGCCCCAATCCGAACACAGACGTCGAAGTAGCCGTGACCGTCCACGGGCCCGCGACACTGCAAGGATTAGGATCAGCCAACCCTGCAGCCCCCTGCGGCTACCTTGGAACTGTCACATCCACCTACCACGGCCAAGCCCTCGCGGTCCTTCGCGCCGGAGCCCAGCCAGGTCCCGTTACCATCACTGTCAGAGCCGACGGGTATCCGGACGCGACGTTAGTAACCGCACAGGAGACATAGMKRISFNRDWQFGPLVSVHEAIRVAPPSDNLVNLPHDAMLASGRTPDGTGGAPNGYFDGGSWTYEKQFDAPADWATKRITFEFEGVYRDPMVFLNGAFAGQWSNGYSSFHIEADPFLNYGETNTIRVDARSHQDSRWYPGGGLYRPVHLLIGELVHITPTGLRVSTPDVDEELATVVVRSTIANKGATTRTVDVLLEIRDDAGAEVVSERSRVTLLPNETLTAHQRTYVPHPSLWSPDNPALYHATVTLQDENGPIDRESTTFGIRSLAVDPIRGLRLNGESIKLRGAAVHHDHGVLGATEFPDAARRRVRRMKDAGFNAIRSAHNPISVAMLDACDRLGMLVFDEAFDMWSVSKSTDDYSRSFPQWWERDIDSLVAKDFNHPSVIMYSIGNEIIEAGTRHGARWGRLLAERIREQDPTRIVTHALQGMYMARDKVPELRAEVNQDSSTIRGLNDYLGQVTHLMNRVMASELLGERLLEPASMLDIVGLNYGDARYEVDADEFPNRIYFNSESFPTHIDRLWKLILEKNNVLGDFTWTGWDFLGEVGTGRHVYPEDSQEHRAPYPWIAAVCGDIDLIGQRKPISYYRQIVFGLTDVPYVAVRKPRDDGYVIEPKAWTWSDVAPSWTWDVDPGTPMHIEAYASGDEVQFLLNGAVVASEKVGVNRDYLVQATLPFEPGVLEVVSYRNGNELGRRELQTASKPAKLRLSADRTSITANTVDLLHLEITLVDEENRPNPNTDVEVAVTVHGPATLQGLGSANPAAPCGYLGTVTSTYHGQALAVLRAGAQPGPVTITVRADGYPDATLVTAQETPGPT0017810_2763DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017810-lacZ-K01190NANA
D1-29_02195921araQ_7COG0395L-arabinose transport system permease protein AraQATGACTACCGCTCCCCCGCGCACTCACGCTGCAGCGCGGCCCCCGGTGCGACCCAAGCGGCCCAGCCGTATGCCGTGGCGGCAACAGCGCGTCCCTTTCTCGGCCCGCGCGTTCTCCTTCATTGTGATGGGCGCGTTCGCGTTCTATAGCCTGGTGCCCCTCTGGTGGCTCGTCGTCACAGCAACAAAGAACAGCCAGGACCTGTTCACCACCAACCCCATGTGGTTCGCCGATTTCAGCCTGTTGGCCAACATCGGAGATGTCTTCGGACAGCAGGACGGTATCTTCGCCGTATGGACCGGAAACACCATCATTTACTGTGTTGGCGGCGCCGCCATCAGCACCCTCCTCGCCGCAATGGCAGGCTACGCCCTGGGCAAATACGAGTTCCCGGGCCGAAAAATCGTTTCCAACGTCATCCTGGCCGCCGTGCTCGTACCCGCGATCCTCTTCGCACTCCCCCTGTACCTGATGTTCAGCGAGATAGAGCTGGTCAACACCTACTGGTCAGTTCTCCTGCCCAGCCTCGTAAGCCCCTTCGGAGTGTTCCTGGCATCCACGTACGCAGCACAATCCGTTCCCACCGAGCTCCTCGAAGCAGCCCGCATCGATGGTGCCAGCGAAGCGCGGATCTTCTGGCGGATCGGGTTCCCCATCATGACGCCGGCCCTGGTCACGGTGTTCCTGTACCAGTTTGTCGCGATCTGGAGCAACTACCTTCTGCCCGTGCTCATGCTCAACAACGATACTCTTCAGCCACTGTCAGTTGGCCTGGTCAACTGGCGCGAGCGTCTGAATGAAGGCATTCCATACCACGTGACAATCACAGGATCCCTCCTGGCCGTTATTCCATTGCTGATCGCGTTCTCCATTCTTCAGCGCTACTGGCGCTCCGACCTGACCGCCGGCGGCGTAAAGTAAMTTAPPRTHAAARPPVRPKRPSRMPWRQQRVPFSARAFSFIVMGAFAFYSLVPLWWLVVTATKNSQDLFTTNPMWFADFSLLANIGDVFGQQDGIFAVWTGNTIIYCVGGAAISTLLAAMAGYALGKYEFPGRKIVSNVILAAVLVPAILFALPLYLMFSEIELVNTYWSVLLPSLVSPFGVFLASTYAAQSVPTELLEAARIDGASEARIFWRIGFPIMTPALVTVFLYQFVAIWSNYLLPVLMLNNDTLQPLSVGLVNWRERLNEGIPYHVTITGSLLAVIPLLIAFSILQRYWRSDLTAGGVKPGPT0016540_2700DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02196960araP_2COG1175L-arabinose transport system permease protein AraPATGAAGGCACCCACTCTGTCTGCACAGCAACCAGTGCAACCAGGAACGACAACCACCAAGCCCCGCAAATCGCGGCTCAGCCGGAAGACAAAGCGGGCAGCGCTGCTCTTCCTGGTTCCGTTCATGATCATGTTTCTTTCCATGAAGGTGGCCCCCATCTTCTACGCGATCTACCAAAGCTTTTTCAAGACGGAACGCAGCGGCCTGGGCGTGGGAAGTGCCAAGAGTGTCTTCTCGGGCGTCGAGAACTATCTCGTGGCGCTGCAGAACAGCGACTTCATTGCCTCCTTCGGACGAGTGCTCCTGATCGGGATTGTGCAGGTCCCGCTTATGCTGACTATTGCTCTTTTCCTGGCGCTCCTTCTGGACTCCGCATTCTCACCCTTCAAACGCGGCTTCCGACTGATTTACTTCCTGCCTTACGCCTTCCCCGGGGTCATCGCAGCAATCATGTGGTCCTTCCTTTACCAACCTCAAATCGGGCCCTTCACTGGATGGCTGAGCGCCATCGGTATCGACGTCAATTTTCTTGCCAACAACACGGTCTTTTTTTCAATCGGCAACATGATGACGTGGGGCTATACGGGCTTCAACATGTTGGTCATCTACTCAGCCCTTCAGGCAGTACCCGAAGAACTCACTGAAGCGGCTAGCCTCGACGGCGCCGGATGGTGGGCCACAAACTGGCACATCAAGGTCCCGGCAGTGCGGCCAGCCATCATCCTCACCGCAGTGTTCTCAATCATCGGAACCGTGCAGCTCTACAACGACCCTGCAATTCTGGCCAAGGTGGCGCCGGGCATTTCCTCCACGTTCACCCCAATCATGGCCGCCCAGCAACAAGCCGCAGCGAACAACTACAACCTGGCCGCCGCGCAATCGGTCATCCTGGCCCTCGTTGCCCTGGTCCTGTCGTTCGGGTTCCTCAAGTTCACTCAGCGAAAGGGTGCCAACTCATGAMKAPTLSAQQPVQPGTTTTKPRKSRLSRKTKRAALLFLVPFMIMFLSMKVAPIFYAIYQSFFKTERSGLGVGSAKSVFSGVENYLVALQNSDFIASFGRVLLIGIVQVPLMLTIALFLALLLDSAFSPFKRGFRLIYFLPYAFPGVIAAIMWSFLYQPQIGPFTGWLSAIGIDVNFLANNTVFFSIGNMMTWGYTGFNMLVIYSALQAVPEELTEAASLDGAGWWATNWHIKVPAVRPAIILTAVFSIIGTVQLYNDPAILAKVAPGISSTFTPIMAAQQQAAANNYNLAAAQSVILALVALVLSFGFLKFTQRKGANSPGPT0016535_985DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_021971320hypothetical proteinATGGCACCTCGTTGGTTTACAAGCACGGCGGCAGGCGTCGCCCTTTTGAGTGCAGCCGCGCTAACCGGTTGTTCGAACAGCAGCCCTAGCCCGGCCGAGACCGGCCCTGCCGGGGAGCCAGTGACCGTCGAGTTCTGGGGGGCTGCAGTTGGCCAGGAGAAGGCAGTGGATGTCTTCAACGCGGCGCATAAAGATAAAAATGTTCAAATTAAGTACACCCAGATCTCTGCCGGATCTGCCGGCGGCTACTCCAAGATGCTGAACGCTGTAAATGCGGGGAATGCGCCATGCCTGGGCCAGATCAGCTACGACACCGTCCCCAGCTTTGCGGCATCGGGTTCCCTTGAGGACATTACCGAGCATGCGCAGGGCAGCAAAGACCAGTACTCAGCCGCGGCCTGGCAGCTATCCAGCTTGGGGGGAAACGTATACGGCATCCCGGGGGACCTCGGACCAATGGCGCTGTACTACCGCGCCGACCTGTTTGAGCAGTACGGTATCACGCCACCTAAAACCTGGGATGAGTACCGCGCTACCGCCAAAACCCTGAAGGAGAAGGATCCTGCCGCCTTCATGGGGACCTTCCCGTTGAGCACGTACGACCTCGGCGCGTTGTCACACCAAGCCAAAGGCCAGTGGTTTGGCACCGAAAATGACGCTTGGAAGGTGTCCATCAACGACCAGCCCTCGAAGCAGGTCGCTGACTACTGGCAGGGTCTGCTGGATGAAAAGCTTGTTGTTCCCGAACCGGCCTTTGCTCAGGCCTGGTACACCAACCTCCAGAATGGACAGATCGTTTCCTATGTTGGTGCTGCCTGGAGCGGTGCACTGCTTGAGAAGAACGCGCCGGGCCTCAAGGGCAAAATGGCCGTTGCTGAGCTCCCCCAGTGGAAGGAAGGCGAATATGTCTCGGGTAACCGCGGCGGTGGGGCCTACTCTGTTCTAAAGGGGTGCAAGAACCCGAAGGAGGCCACCGAAGCCGCAGTGTGGCTGACCACCAACGCCGACAGCGTGACCAGCCTGATCAAAGAGACGGGCATTTACCCCGCTGCCGTCAGTGGCCAGAAACTGCCTGCGCTTACAGCTGGATCGGACTTCTTCATTAACGCCGACAAGACTGCCGAGATCTTCACCTCGGCCGCGCAGAACACACCCGATAAGTGGGTGTGGGGTCCAAACATGACCAGCGTTCAGCCCAAGATGAATGACGGGCTAAAGGTTATCGGATCAGGACAGGGAACGGTCTCTGAACTGCTCGACACCGTCCAGGAATCCACGATCTCCGAACTGAAAAGCCAGGGTTTGAGCGTCAAGGAGTAAMAPRWFTSTAAGVALLSAAALTGCSNSSPSPAETGPAGEPVTVEFWGAAVGQEKAVDVFNAAHKDKNVQIKYTQISAGSAGGYSKMLNAVNAGNAPCLGQISYDTVPSFAASGSLEDITEHAQGSKDQYSAAAWQLSSLGGNVYGIPGDLGPMALYYRADLFEQYGITPPKTWDEYRATAKTLKEKDPAAFMGTFPLSTYDLGALSHQAKGQWFGTENDAWKVSINDQPSKQVADYWQGLLDEKLVVPEPAFAQAWYTNLQNGQIVSYVGAAWSGALLEKNAPGLKGKMAVAELPQWKEGEYVSGNRGGGAYSVLKGCKNPKEATEAAVWLTTNADSVTSLIKETGIYPAAVSGQKLPALTAGSDFFINADKTAEIFTSAAQNTPDKWVWGPNMTSVQPKMNDGLKVIGSGQGTVSELLDTVQESTISELKSQGLSVKEPGPT0016545_8141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_021981176aruHCOG0436Arginine--pyruvate transaminase AruHATGACTTCCACACCGGCCCTCGTTGACTACAGCCCTGACAGCTCAGACTCAGCCCAGCGCATAGTCCTGGCCTCCCGGCGGCCCGCATCCTTGGGATCGACACCCGATGGCGCCATTGCACTGTCCATGGGAGAACCGGACTCCGGGACACCGAATCCCATCGTCGAGGCCGCGGTTGAGGCCTTGCGTAGCGGCAGGACACGCTACACAAACCTCAGTGGAGCACCAGAACTACGCCGCTCCCTGGCCGAGAAACTGACACGTACGTCCGGTCAGAATCTCAGCCCGGAACAGCTTGTAGTCACTCACGGAGGAAGTGCAGGCCTGGCCGCCACGATACTTGCCCTTATTAATCCCGGAGACAAGGTTCTGATTCCGGAACCGACGTATTCCCTGTATGCAGACCACCTGGCCATGGTTGGTGCCGAGGGAATCTGGGTTGCTAACCGTGCAGACGGAACGTTGGATCTTGAGCGGCTGGCCCGCGAAGCGGCGGATAGCCGCATGATTATTCTCTGCAATCCAGGTAACCCAACAGGCCGGGTCTACAGCGAGGACGAACTCCGGCAACTGGCAGTAATTCTGGAGGCCCACCCTCATCTTCTGCTTCTTTCCGACGAGGCCTACGCCGACATTGTCTTTGATGGCATGAAGTTTCTATCCGCTTTGGAACTTCCAAATGTCGCAGATCAGGTCATCTGCTGCAGCACGTTTTCCAAGACCTACGCCATGACCGGGTGGCGGCTTGGTTACGTAGTCGCCTCCCTCAAACTGTCAGAGAAGATCAACCTGCTCCATCGAACGCTCAACGGCTCCATCAATACCTTCGTGCAGGACGCCGCCCTCGTCGCTTTGGAAACACCCGCTGAACACCTCCGAGCCATGGCCGAGTCATACCAGGCACGCCGCGACATCGTCGTCGACAAGCTTTCCGGCATCCCCGGACTTAGCATGCTCCCGCCCCAAGGCGCTTTCTATGCGTTCGTCAAAATCGACTCAGGCCTCACCTCGGATGAGATGACCGCCCGGTTCGCAGCGGCCGGAGTAATTGTCAGGTCCGGCAGCGAGTTCGGGCCATCCGGGGAAGGACACGTGCGCCTCTCATTCGCCACCGACCCCGGAAACCTTGAACTCGGCTTGGACCGGTTCATTGACGCAACGCGGAACCTCATGTGAMTSTPALVDYSPDSSDSAQRIVLASRRPASLGSTPDGAIALSMGEPDSGTPNPIVEAAVEALRSGRTRYTNLSGAPELRRSLAEKLTRTSGQNLSPEQLVVTHGGSAGLAATILALINPGDKVLIPEPTYSLYADHLAMVGAEGIWVANRADGTLDLERLAREAADSRMIILCNPGNPTGRVYSEDELRQLAVILEAHPHLLLLSDEAYADIVFDGMKFLSALELPNVADQVICCSTFSKTYAMTGWRLGYVVASLKLSEKINLLHRTLNGSINTFVQDAALVALETPAEHLRAMAESYQARRDIVVDKLSGIPGLSMLPPQGAFYAFVKIDSGLTSDEMTARFAAAGVIVRSGSEFGPSGEGHVRLSFATDPGNLELGLDRFIDATRNLMPGPT0020110_3910DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_02199681hypothetical proteinGTGACCGAGGAACTACCCGGCTGTCAACCTCTCAGCACCAGAAGTACATCTGCACACGCCGCGGACCGTACAGGGAAGACCACTCCGTTGCGCCGTGATACGAAAAGGAACCTGGTCCGGCTGCTTCGTGCAGTCTCGGAAGAAGTCCAGGAAAGCCCCGGCAACTTGTCGTTACAGGGAGTTGCTGCCAGGGCTGAAGTAGGTGTGGCCACTGCGTACCGCTACTTTTCGTCACTGGATGAGCTGCTCGAGGCTTACACCATCAACATCACCGAAGAACTCCGGGACTTCGCCCGGCAGTGCCCCCTGTCCGGGAGGGACCTGTACAACGCCGTGCTGTCCCGCTGGATCACCCTGGTACTCGAACACGGCAAAGTCATGGTCCAGCTGCGTTCCCGCTCCGGATACCTACATCGCCTCGACCAAGGCGACCCCGTCATAGCAACCTCCCGCGACATCTGGGAACAACCCCTGAGAGGACTCCTCCAGGATCTCAGCCTCCCCGACAGCCTGCTCAGGCACGCCCTCTTCCTGAACAACGCACTTTCAGACCCCCGCGAAATCCTCGAACTCTCTTCAGCCGACGCCATGACATCCAACGACATAGCCTCGGTCCTGGCAGGAGCCGTCGCCGGCGCACTTCGGAAAGATCCCCGTTCTACGGTGGCTTTCCGGCAATGAMTEELPGCQPLSTRSTSAHAADRTGKTTPLRRDTKRNLVRLLRAVSEEVQESPGNLSLQGVAARAEVGVATAYRYFSSLDELLEAYTINITEELRDFARQCPLSGRDLYNAVLSRWITLVLEHGKVMVQLRSRSGYLHRLDQGDPVIATSRDIWEQPLRGLLQDLSLPDSLLRHALFLNNALSDPREILELSSADAMTSNDIASVLAGAVAGALRKDPRSTVAFRQNANANANANA
D1-29_02200573hypothetical proteinATGAAAAGCCTCATGCTGGCAGTCGGTGAGGAGATCGCTGAGAACCCGGGCAACGTGACGATGCAAAGCGCGGCGGCCCGTGCGGGCATCGGGACGGCCACCGCGTACCGCTACTTTTCGTCACTGGACGAGCTGCTCGAGGCTTACACCATCAACATCACCGAAGAACTCCGGGACTTCGCCCGGCAGTGCCCCCTGTCCGGGAGGGACCTGTACAACGCCGTGCTGTCCCGCTGGATCACCCTGGTACTCGAACACGGCAAAGTCATGGTCCAGCTGCGTTCCCGCTCCGGATACCTACATCGCCTCGACCAAGGCGACCCCGTCATAGCAACCTCCCGCGACATCTGGGAACAACCCCTGAAGGGACTCCTCCAGGATCTCAGCCTCCCCGACAGCCTGCTCAGGCACGCCCTCTTCCTGAACAACGCACTCTCAGACCCCCGCGAAATCCTCGACTTGAGCGAAACAGAGAAGCTGAAGCCGGAGCAGATCGCTGGCCAATTGCTGGAAGCACTTTCCGGCTCTCTTCATGGATGGGCGGACGCTGCGGGTACCAGGGCCCCTGTATAGMKSLMLAVGEEIAENPGNVTMQSAAARAGIGTATAYRYFSSLDELLEAYTINITEELRDFARQCPLSGRDLYNAVLSRWITLVLEHGKVMVQLRSRSGYLHRLDQGDPVIATSRDIWEQPLKGLLQDLSLPDSLLRHALFLNNALSDPREILDLSETEKLKPEQIAGQLLEALSGSLHGWADAAGTRAPVNANANANANA
D1-29_02201603hypothetical proteinATGACTTCAACAAGCGAGGTTGGATCTTCGTCGGTGACAGTGTCGGTCACGAGAAAAGTAGACCCTGCGCGCACCGATGAGGTGACTGCTTGGGTCCAGTCCGGAGTAAGTCTTGCTAGCCGCTGGCCAGGCTTTCTCGGATCTGGATGGATACGGTCATCCAGGCGAAGCGATGAGTGGTACATGCTTTACCGGTTCGCAGACCCCTTTGCCCTGAGCGCCTGGGAAAGTTCAAGCACACGCAAAGGCTGGCTCGATCAGGGAAACGGGCTGGTGGAGGAACGTCGCGTCGAAAAACTGACCGGGATCGAGGGCTGGTTTGATTCCACTCAATCCCGTGAATTGCTCTCGTCTCCCCCACCTCGGCCGGCCCGATGGAAACAGGCGGTGAGCGTCTGGCTCGCATTTTTCCCTGTCAGTCTGGTTTTTGCTCTTCTCATGGAAGCCGTATATCCCGCATGGGGTGGTCTTTGGACAACTGCAAGAGTCTTTGTAACCACCACCGTACTTACTCCGATCATGACAGTATGGGTCCTGCCTGTGGTCACCCGGCTCCTCCGATCGTGGCTGATCCCGGACAATGCTTCTGTGTCGAAACAATAAMTSTSEVGSSSVTVSVTRKVDPARTDEVTAWVQSGVSLASRWPGFLGSGWIRSSRRSDEWYMLYRFADPFALSAWESSSTRKGWLDQGNGLVEERRVEKLTGIEGWFDSTQSRELLSSPPPRPARWKQAVSVWLAFFPVSLVFALLMEAVYPAWGGLWTTARVFVTTTVLTPIMTVWVLPVVTRLLRSWLIPDNASVSKQNANANANANA
D1-29_02202660ligK_1COG06844-carboxy-4-hydroxy-2-oxoadipate aldolaseATGTTCATCGACGCACCCACGAGCTCATTGACGGTTGGTCGCCGTGCAGGGGCTTCCTCCCGAGAGGTAGTCAAAAGTCTCCGGCAGTACGGAACAGCCAGCATTGGTGATGCCATGGACCGTCTCAATCTCATGGATTCTGGCATTGCTACCCAATGGACTGCCGGCCGGTGTGTCGGACCAGCGCTGACCGTGTTGACACGCGAGGGCGACAACCTGGCCATCCATCGTGCCCTTGATGACGCGGAACCTGGAGACGTCTTGGTCATCAACGCATTGGGCGGGACAACGCGGGCAGTGTTCGGAGATCTCCTCGCCGAGATCTGCCTTGCTGCAGGCATTGTCGGCGTCATCATCGACGGACTGGCCAGGGACCGGGCCGCCATAGGGGAAATGGGGCTGCCATTGTGGGCGCGGGGCGTATCCCCTGCCGGCCCAGCGAAGTATGGACCAGGAGCGGTAAATGTTCCTGTGGCTTGCGGAGGCGTTGTAGTCAATCCCGGCGATCTTGTCTCAGCGGACGACGACGGAGTCGCAGTCCTCCCAGCTGAAAGCTCCGGGATAGTTCTGAACAGGCTTAGGGACATCCACGACTCCGAACGCAAACTCCGCGCACGGATCCAGAACTCTGTCAGAAGTTCCCCTGCGGCGGCTCACTAAMFIDAPTSSLTVGRRAGASSREVVKSLRQYGTASIGDAMDRLNLMDSGIATQWTAGRCVGPALTVLTREGDNLAIHRALDDAEPGDVLVINALGGTTRAVFGDLLAEICLAAGIVGVIIDGLARDRAAIGEMGLPLWARGVSPAGPAKYGPGAVNVPVACGGVVVNPGDLVSADDDGVAVLPAESSGIVLNRLRDIHDSERKLRARIQNSVRSSPAAAHPGPT0002085_8DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
D1-29_022031101hypothetical proteinATGAGGGAGTTGATACTGGTGAGGCCAACCCCGCCCCGGTCGGGAATCGAGTACTACAGTGGATGTATGGCTCCCGGCCGTAATCCGCTTGACGACCTGCGCGAAACCATCGGCCATCTGGCCGATCAGCTCAAGCTGCCCGGTTCGGAGCGCGTCGATGACCTGGTCGGCGATCTCATCGGTGCGAGGCCCGGGCCGGCCCGGCCGCTGTCCGAGGTGCAGGCTGAACTCGACGCTCTGGTAGGACTGGAGACCGTGAAGGAACAGGTGCGGGCCCTCGTCGCACTCCTCCAGGTTCAGGCCCGCCGTAAGGCGCACGGCCTGCCTGAGGTGGCCACGTCACAGCATCTGGTGTTCCTCGGAAATCCGGGCACGGGCAAGACCACCGTGGCGCGGCTCCTGGCCGAAATGTACCGCGCGGTCGGTCTGCTGCAGAAAGGCCACCTGGTCGAGGTCGACCGTTCGGGCCTGGTGGGGCAGTACGTCGGAGCGACCGCCATCAAGACGGACCGGGTGATCCGGCGTGCGCTGGACGGCGTCCTGTTCATCGACGAGGCTTACGCGCTGGCGCCGGAGGACGGACGGATGGACTTCGGCCCCGAGGCGATCGAGGTCCTGCTCAAGCGGATGGAGGACCACCGCCACCGCCTGGTCGTGATCGTGGCCGGGTACCCGCGGCTGATGGAGTCCTTCTTGCTCTCGAACCCCGGACTGCGCTCCCGGTTCGCCCGCGAGATCACGTTCCCCGACTACTCCGTCGACGCACTCCAGGCGATCTTCCACCAGATGCTGGCCCAGCACGAGTACACACTGGAGCCGGGTGCGGACCAGACGCTGCGCCGCATCTTTACCGGGCTCCACGCGGGCGAGGACTCCGGCAACGCACGGTTCGCCCGCACGCTGTTCGAGCAGGCGCTCAACCGCCAGGCGCTGCGGCTGTCGCTCGACGAGGACCAAAGTCTGGACGCGCTCGATCGTGAGGCCGTCATGACGCTCACCGCGGACGACATCGTCGAGGCCGCGCTGGCCTTGGGCGAGGAGCCGGAGCCGGAACCGACGCCGGAACCGGAGCGGTCACGCTGGTGGCGCTGGCTGGTCTGAMRELILVRPTPPRSGIEYYSGCMAPGRNPLDDLRETIGHLADQLKLPGSERVDDLVGDLIGARPGPARPLSEVQAELDALVGLETVKEQVRALVALLQVQARRKAHGLPEVATSQHLVFLGNPGTGKTTVARLLAEMYRAVGLLQKGHLVEVDRSGLVGQYVGATAIKTDRVIRRALDGVLFIDEAYALAPEDGRMDFGPEAIEVLLKRMEDHRHRLVVIVAGYPRLMESFLLSNPGLRSRFAREITFPDYSVDALQAIFHQMLAQHEYTLEPGADQTLRRIFTGLHAGEDSGNARFARTLFEQALNRQALRLSLDEDQSLDALDREAVMTLTADDIVEAALALGEEPEPEPTPEPERSRWWRWLVPGPT0024835_84DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_V_SPORULATION,PGPT0024835-spoVK-K06413NANA
D1-29_02204921rhaR_1HTH-type transcriptional activator RhaRATGGGTGATGACGGCCGCGAGGGGGCCGCGGCGCGGCTCGCGGAGAGACTGGTTGGCATGCGCGCCAACCGGGAGGTGATCCCGGCTGACCCGAACCATTCCGTCCGCTGGAATGAGCATGACTATCCAAGTCCGTTGGCCCGGTGGAACTACCATCCTGAATATGAGATCCACCTGATCCGGAAGGGGTCCGGGAAATTCATCGTGGGCGACCATATCGGGACGTTCGAAGCCGGGCATGTTTCACTCGTTGGATCCGGATTGCCGCATGACTGGGTCAGCGACCTGGAACCCGGCGAAGTACTGGAAAAGCGCGACGCGGTCATTCAGTTTGACGGCAACTGGCTTCAGCAGTGCGTTGGCCTCATGCCTGAATTGGATGAGGTCCGGGTTCTTCTTCAGCAATCCTCGCGGGGAATCGAGTTTTTTGGACAAACCGCGCTGAGTGCAGCAGAGGCGATCGAAGCCATGGGCGCCACCAGCGGCCTGGCGCGCCTCCAGCACCTGATCCGGCTCTTTACGGTCCTGGCATGCGCGCCGCCGGAGGACCGGGAATACCTGGCTGATGAATGGTTCCGGCCCCAGCTGGACGGCCAGGCCGCCGCCGTCGTCGATCTTGTCCTTGAGTATGTTTTCAGCAATCACGCCGGAACTGTGAAAATGTCAGACGCCGCCGCGCTGGTAGGTATGCAGGAAGCCTCCTTTTCCAAGTACTTCAAGAGAGCTACAGGCCAGAATTTCAGCGACTTGGTCCGCAAACTCCGAATAACGCACGCCAAGCGTCTGCTCGAGCGCAGCGATAGGCCCATTTCCGACATTTGCTATGAGGTGGGCTTCTCTAACTTGTCCAACTTCAATCGACACTTCCTCAACGATGTCGGGGAAACGCCACGGCAGTTCCGACGGCGCGTACAGGCCTGAMGDDGREGAAARLAERLVGMRANREVIPADPNHSVRWNEHDYPSPLARWNYHPEYEIHLIRKGSGKFIVGDHIGTFEAGHVSLVGSGLPHDWVSDLEPGEVLEKRDAVIQFDGNWLQQCVGLMPELDEVRVLLQQSSRGIEFFGQTALSAAEAIEAMGATSGLARLQHLIRLFTVLACAPPEDREYLADEWFRPQLDGQAAAVVDLVLEYVFSNHAGTVKMSDAAALVGMQEASFSKYFKRATGQNFSDLVRKLRITHAKRLLERSDRPISDICYEVGFSNLSNFNRHFLNDVGETPRQFRRRVQANANANANANA
D1-29_022051350hypothetical proteinATGCGCCCGAAAATCCGCGCTGCCACCCTCACCGCAGGTGCCCTTGCGCTGGCCTTGGCTGCCTCAGCCTGTTCGGGGGCCGGCGGCGGCACCTCAGCAGGAGACCAGAACAGCATCAACGTGCTGATGGTGAACAACCCCCAGATGGAGGACCTGCAGAAGCTGACCGCTGACAACTTCACCAAGGACACCGGCATCAAGGTCAACTACACGATCCTCCCGGAGAACGACGTCCGAGCCAAGATCAGCCAGGAGTTCTCCAGCCAGGCCGGCCAGTACGATGTTGCATCCCTGTCGAACTACGAGATTCCGTTCTATTCTGCGAACAAATGGCTGGCGCCGCTGGACAGTGTGGCGAACGACGCCGAGTTCAACCAGGACGACATTCTTCCGGCCTACACGGCATCCCTGACGGGAGAGGACGGCAAGCTCTACGGCGAACCGTTCTACGGCGAGTCTTCCTTCCTGATGTACCGCAAGGACATCCTGGAAACCAAAGGCCTGACGATGCCGGAGAAGCCCACATGGGATCAGGTGGCCGAGCTGGCAGCCCAGGCTGATGGCGCGGAGCCAGGTATGAAGGGCATTTGCCTCCGGGGCCAGCCGGGCTGGGGCCAGGTCTTCGCCCCGTTGACCACCGTGGTGAACACCTATGGCGGCACATGGTTCGACAAGGACTGGAACGCCCAGGTCAACTCCCCGGAATTCGTCGAAGCCACCAAGTTCTACGTTGATCTGGTGCGGAAGCACGGTGAAGCCGGCGCCGCCCAGGCAGGGTTCACCGAATGCCTGAACAACATGAGCCAGAGCAAGGTGGCCATGTGGTACGACGCCACCTCTGCAGCCGGCGCTCTGGAAGCCGAAGGATCACCTGTGAAGGGAAAGATCGGCTACGCCCAGGCTCCCGTCAAGGAAACGGATTCCTCCGGTTGGCTCTGGACCTGGTCCTGGGGCGTGCAGGCCGCGTCCAAGAAGCAGGATGCTGCCGGCAAGTTCATCGCGTGGGCCAGCTCGAAGAAGTACGAAGAACTGGTGGCGTCGACGCTCGGTTGGGCCAAGGTTCCGTCCGGCAAGCGCATCTCCACCTACGAGAACGCCGAATTCCAGAAGGCAGCCCCGTTCTTCGAAGCAGAACGTTCCGCTATTGAAAACGCGGATCCGAAGAACCCGGGCGTGCAGGAACGGCCGGTTGTGGGCATCCAGTTTGTTGGGATTCCTGAGTTCGCCGACCTTGGCACCACTGTCTCCCAGGGAGTGAGCTCGGCCATCGCCGGACAGGGCACCGTGGAGGACGCGCTGGCCAAGGGCCAGGAAGCCGCTCAGAAAATCGGCGACAAGTACAAGAAGTAAMRPKIRAATLTAGALALALAASACSGAGGGTSAGDQNSINVLMVNNPQMEDLQKLTADNFTKDTGIKVNYTILPENDVRAKISQEFSSQAGQYDVASLSNYEIPFYSANKWLAPLDSVANDAEFNQDDILPAYTASLTGEDGKLYGEPFYGESSFLMYRKDILETKGLTMPEKPTWDQVAELAAQADGAEPGMKGICLRGQPGWGQVFAPLTTVVNTYGGTWFDKDWNAQVNSPEFVEATKFYVDLVRKHGEAGAAQAGFTECLNNMSQSKVAMWYDATSAAGALEAEGSPVKGKIGYAQAPVKETDSSGWLWTWSWGVQAASKKQDAAGKFIAWASSKKYEELVASTLGWAKVPSGKRISTYENAEFQKAAPFFEAERSAIENADPKNPGVQERPVVGIQFVGIPEFADLGTTVSQGVSSAIAGQGTVEDALAKGQEAAQKIGDKYKKPGPT0016380_198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016380-smoE|mtlE-K10227NANA
D1-29_02206969sugA_3COG1175Trehalose transport system permease protein SugAATGACTACCGCAACAGCGCGCGTCGCCCGTCAAGGACACGGCGCCCCCAAACCTTCAAAAGACGCCAGGGCCCGTGAACGCGCCACGGCATGGGCACGGCGTGCGCCGCTGCTGCCGGCCCTGATCTTCCTCATCATCGTCACGCAGCTTCCCTTCGCTGCCACCCTGATCATTTCGTTTATGAACTGGAACAGCCTGCGCCCGGACCAAACGGGGTTCGCCGGTTTGAGCAACTACGTCGAAGTCCTCACCAACGCGGACCTGCGCCAGGCCATCTTCACCACCATCGTCCTCACCGTCTCGGTTGTCTTGGCCAGCCTGCTCATCGGACTGGTCCTGGCATTGCTGCTGGATAAGAAGTTCATCGGCCGCGGACTGGCCCGCACCCTCCTGATCGCCCCGTTCCTGGTGGTTCCGGTGGCTGCAGCCCTGGTGTGGAAGCACGCCCTCCTGAACCCGACATATGGTCTGATCAACGGCATCCTGACCTGGATCTGGTCACTCTTTGGCAGCAGTACGCCGCCGCAGCCGGACCTGCTCTCGCAGGCTCCGCTGACGGCCGTCATCCTTTCCCTGGTCTGGCAGTGGACGCCGTTCATGATGCTCATCCTGCTGGCAGGCCTGCAGTCCCGCCCCATGGACACCGTGGAAGCTGCCCAGATGGACGGCGCAAGCCCTTGGGAAATCTTCCACCATTTGACGCTGCCGCACCTTCGCCAGTACCTGGAACTTGGCGGCCTGCTCGGCGCCATCTACATCGTGCAGAACTTCGACGCCGTCTTCACCCTCACGTCCGGCGGCCTGGGCACAGCGAACCTGCCGTACTCCATCTACCAGACCTTCTACTTCGCCAACGAATACGGCTTGGCCTCAGCTACCGGCGTCGTGGTGGTCATCGGCACGATCATCGTCGCCACCTTCGCGCTCCGCACCGTTTTCTCGCTCTTCAAGAAGGAGGCAGCACGATGAMTTATARVARQGHGAPKPSKDARARERATAWARRAPLLPALIFLIIVTQLPFAATLIISFMNWNSLRPDQTGFAGLSNYVEVLTNADLRQAIFTTIVLTVSVVLASLLIGLVLALLLDKKFIGRGLARTLLIAPFLVVPVAAALVWKHALLNPTYGLINGILTWIWSLFGSSTPPQPDLLSQAPLTAVILSLVWQWTPFMMLILLAGLQSRPMDTVEAAQMDGASPWEIFHHLTLPHLRQYLELGGLLGAIYIVQNFDAVFTLTSGGLGTANLPYSIYQTFYFANEYGLASATGVVVVIGTIIVATFALRTVFSLFKKEAARPGPT0016385_58DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016385-smoF|mtlF-K10228NANA
D1-29_02207951dasC_3COG0395Diacetylchitobiose uptake system permease protein DasCATGAGCATCCAAACTCCTGCCGTACCCAGCAAGTCGGGCAATGCCCGTTCCACATCGCCCACCGCCCTGAACACCCGCCCGGGCCGGCGCGGGTTGTTCAAGCCCGGCCGAGGCAAGTCGCGGATGGACCCCACCCGAAACAACACCGCCGCCGGCATGGCCGCCTGGCTGCTGGCCCTGCTGTTCGTTGCCCCGGTCCTGTGGATGGTCCTGACATCCTTCCACTCCGAGACGGATGCCGCCACCAACCCGCCTTCCCTCTTCGCGCCCCTGACCCTCGATGGCTACGAGGAGTTCTTCGGCGCCAGTTCCGGGGTCAGCCCCTGGCCCCCGCTGATCAACTCAGCCACCGCGTCGGTCCTGTCCACACTCCTGGTGCTGGTCCTGGCCATCCCGGCCGCCTACGCGCTTTCGATCAGGCCGATTAAAAAGTGGACAGACGTCATGTTCTTCTTCCTCTCCACCAAAATGCTGCCAATCGTCGCAGCCGTCCTGCCGCTGTTCCTGTTCGCCAAGACCATCGGCGGGCTGGACAACATCTGGTTCCTGATCCTGATGTACACCTCCATGAACCTGCCCATCGCAGTGTGGATGATGCGCTCATTCCTTGCTGAAGTGCCGGTGGAAATGCTTGAGGCATCTCAAATCGACGGAGCCGGCCTCCTTCTGACACTCCGCGCCGTGGTGGCGCCAGTTGCGATGCCCGGCATCGCGGCCACGGCCCTGATCTGCTTCATTTTCAGCTGGAACGAACTGCTCCTGGCCCGGGTCCTCACCGGTGTTATGGCCGGAACTGCGCCGGTCTTCCTGACCGGCTTCGTCTCCAGCCAGGGCCTGTTCCTGGCGAAAGTGTGCGCGGCGGCAGTCGTGATCTCCCTGCCCGTGCTGTTCGCCGGCTTTGCCGCCCAGGACAAACTCGTCCAGGGCCTCTCCCTCGGTGCGGTCAAGTAAMSIQTPAVPSKSGNARSTSPTALNTRPGRRGLFKPGRGKSRMDPTRNNTAAGMAAWLLALLFVAPVLWMVLTSFHSETDAATNPPSLFAPLTLDGYEEFFGASSGVSPWPPLINSATASVLSTLLVLVLAIPAAYALSIRPIKKWTDVMFFFLSTKMLPIVAAVLPLFLFAKTIGGLDNIWFLILMYTSMNLPIAVWMMRSFLAEVPVEMLEASQIDGAGLLLTLRAVVAPVAMPGIAATALICFIFSWNELLLARVLTGVMAGTAPVFLTGFVSSQGLFLAKVCAAAVVISLPVLFAGFAAQDKLVQGLSLGAVKPGPT0016390_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016390-smoG|mtlG-K10229NANA
D1-29_022081062gutBCOG1063Sorbitol dehydrogenaseATGACAACACCTACAACCCAAGCTCCGTCAACCGAAGGGGCAGCGCTTCCGCAGACCATGCGTGCGTCCGTCCTCAAGGGCCAAGGGGATATGGCGCTGGAAACCCTTAACGTTCCCGGGCTGGAAGCCGACCAGGTCCTGGTGGAGGTGGCCGCCGTCGGCGTCTGCGGCAGCGATGTCCACTACTACGAGCACGGCCGCATCGGCGACTACATCGTGGATCATCCGCTGATCCTCGGCCACGAACTCTCCGGCCGGATCGCCGCCGTCGGCAACGCTGTGGACCCTGCCCGCATCGGCCAGCGCGTCGCCGTCGAGCCTCAACGTCCCTGCCGGAAATGCAAGCAGTGCAAAGCCGGCCGGTACAACCTCTGCCCGGACATCGAGTTCTACGCGACTCCGCCGATCGACGGCGCGTTCGCTGAATACGTCACCATCCAATCCGACTTCGCCTACGACATCCCGGACAGCGTCAGTGATGAAGCCGCCGCGCTCATCGAGCCGCTCTCCGTCGGGCTGTGGGCCTGCGAACGGGCCGGAATCCGCCCCGGCAGCCGTGTGCTTATCGCCGGCGCAGGCCCCATCGGCATCATTGCCGCCCAGGCCGCCCGGGCCTTCGGCGCCACGGAAATCTATATTTCCGACATCGCCGAAGACCGCCTCGCGTTCGCCCTGCAGCACGGGGCAACGCATACGCTCAACGCTCGAACCGACAGCGTGGAAGGGCTCGACGTCGACGCGTTCATTGACGCCTCCGGCGCACCCCAAGCTGTCCGTTCAGGCATTGAGGCCGTGGCCCCCGCCGGGAGAGTCATCCTCGTCGGTCTGGGGGCGGACGACGTCGAGCTTCCCGTGTCCTTTATCCAGAACCGGGAAATCTGGCTCTCCGGCGTCTTCCGCTACACGAACACCTGGCCGCTGGCCATTCAGCTGCTGGCAGACGGCAAGGTGGACCTGGACGTCCTGGTCACCGGCAAGTTCACTCTTGCCGAATCAGAAGAAGCGCTCAAAGCGGGCAAACAGGCCGGCCAGCTCAAGGCTGTCGTCTACCCGGGCCGCTGAMTTPTTQAPSTEGAALPQTMRASVLKGQGDMALETLNVPGLEADQVLVEVAAVGVCGSDVHYYEHGRIGDYIVDHPLILGHELSGRIAAVGNAVDPARIGQRVAVEPQRPCRKCKQCKAGRYNLCPDIEFYATPPIDGAFAEYVTIQSDFAYDIPDSVSDEAAALIEPLSVGLWACERAGIRPGSRVLIAGAGPIGIIAAQAARAFGATEIYISDIAEDRLAFALQHGATHTLNARTDSVEGLDVDAFIDASGAPQAVRSGIEAVAPAGRVILVGLGADDVELPVSFIQNREIWLSGVFRYTNTWPLAIQLLADGKVDLDVLVTGKFTLAESEEALKAGKQAGQLKAVVYPGRPGPT0017541_1104DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017541-gutB-K00008NANA
D1-29_022091005RBKS_2RibokinaseATGTCATCACAAGGGAATGGTTATCAACCACAGCTCTCCGACGGCAAAGCCCTGGTAACCGTCATCGGCGAATCACTCGTCGACATCATTGACGATCCGCGCCAAGGAAACACCGCACGCGAGACCCATCCGGGCGGCAGCCCCCTGAACGTGGCCGTAGGCTGCGCCCGCCTGGGCCTTCAAACCAAACTCGTCACGCACTTCGCCGAGGACCCGTACGGCCAGCTGATCGCCGAGCATCTGGAAAACAACGGTGTCGAAAGCATCGTGGGCGGATCCCAACCCACGTCAACGGCACTGGCGACTTTGGATGGCACGGGAGCCGCCCGGTACACCTTCGGCGTCAACTGGGACATCAACGGGGCCTCCATCGCCGCCCTGGCAGCAGTGGAAAGCTCCGTTCACGTCCACACTGGATCCATCGCCACGGTTCTGCCCCCGGGCAGCACATCTGTGATGGGCCTGATCGAAGAGGCTAGCCAGCACGCCACCATCAGCTTTGACCCCAACTGCAGGCCGGCAATCAGCCCAGACAAGGCCGCCGCCCGGAAACAGGCAGAGGCTTTCGTTGCCTCCAGCGACATCGTCAAAGCCAGCGACGAGGACCTGCGCTGGCTTTACCCCGATAGGACCCTGGAGGAATCGATGAACGCTTGGCTGGCCCTGGGGCCTGCCATGGTCGCATTGACCCGCGGCGCCAACGGACCCGTCCTCCTCAGCCGGTCCGGCAGGGCTGACATCCCTGGTGAAGCGGTCAGCGTAACGGACACCGTCGGAGCCGGAGACTCCTTCATGGCGGCGCTGATTTCCGGGCTCGCGCAGCTCGACGCACTCGGAGCAGCAGCCCGGCAGCGCCTCCACGGGATTACCCAGGACCAGCTTGACGGCTTGGCCCGCTACGCAAAGAGGGCAGCCGGCATCACCTGCACCCGACCGGGCGCCAACCCACCGGAACTGGCCGACCTCGGTCCGCTGACCATCCCGTCGTCCACCTTCGAAGCGTAGMSSQGNGYQPQLSDGKALVTVIGESLVDIIDDPRQGNTARETHPGGSPLNVAVGCARLGLQTKLVTHFAEDPYGQLIAEHLENNGVESIVGGSQPTSTALATLDGTGAARYTFGVNWDINGASIAALAAVESSVHVHTGSIATVLPPGSTSVMGLIEEASQHATISFDPNCRPAISPDKAAARKQAEAFVASSDIVKASDEDLRWLYPDRTLEESMNAWLALGPAMVALTRGANGPVLLSRSGRADIPGEAVSVTDTVGAGDSFMAALISGLAQLDALGAAARQRLHGITQDQLDGLARYAKRAAGITCTRPGANPPELADLGPLTIPSSTFEAPGPT0017625_471DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
D1-29_022101479mtlK_2COG0246Mannitol 2-dehydrogenaseATGCCAATCCTGAGTAACTACACCTTGCACGACGTTCCCGGCCCGGTCAGCCCACCAAGCTACAACAGGTCAAAGTTGACGGAGGGCATCGTCCATTTCGGAGTGGGCGGGTTTCACCGCGCCCACCAGGCCATGTACCTGGACCGGCTCATGAATGCCGGAAAAGCCCTGGACTGGGCCATCTGCGGTGTCGGTGTCCTACCCGGCGACGCCCGGATGAAGAAGGTGATGGACAACCAGGACTGCCTTTACACCCTCACTGTGAAGCATGCCGATGGCACCCGACAGGCCAGAATTATTGGCTCCATCGTCAACTACCTCTTCGCCCCGGACAACCCCGAAGCGGTGATTGCGAAGATGGCCTCGCCCGCCATCCGTATCGTCTCACTTACTGTCACCGAAGGCGGCTACAACTTCCACCACGTCACCGGAGAATTCAACGCGGATAACCCCGACGTCGTCCACGACCTTCAACCGGGGGCTTCACCTCGGACAACTTTTGGTCTCATCACAGCAGCCCTCGCCCGCCGAAGGCAGCGCGGCCTGGCTCCCTTCACCATCTTGTCCTGCGACAACATCCAGGGCAACGGCGACGTTGCCCGCAAGATGTTTACAGCCTTTGCTTCACTCAAGGACCCCGAACTCGGCGCATGGGTAAGGGGAAATGTCCCTTTTCCCAACAGCATGGTCGATCGCATTACCCCCGCCACCACCGGCGAAGACCGCCTGACGGCATCCCGGGAATATGGCCTTGAGGACGCCTGGCCGGTGGTGTGCGAACCATTCGAGCAATGGGTCCTCGAAGACCATTTCAACCTCGGGCGCCCGCCGTTGGAGGACGCCGGCGTCCAACTCGTGACCGACGTAGGGCCGTATGAGCTCATGAAGCTCCGCCTCCTCAACGCCAGCCATCAAGGCATGTGTTACTTTGGCCACCTCGCCGGCTACACCTACGCCCACCAAGCCGCCCAGGACCCGCTGTTTGCCCGGTTCCTGCTGGATTACATGAACCTGGAAGGCACCCCCACGCTGAAGCCCGTGCCGGGAATAGACCTCGACAGCTACAAGCAAACTCTGATCGACCGCTTCTCCAATGAGCACATCCGGGACACCCTCGCCCGCCTGTGCGCCGAAAGTTCCGACCGCATCCCCAAATGGCTGCTGCCTGTCATCCACTCCAACCTGGAAGGGGGCGGGGAGGTTCAACGCTCCGCCGCCATCGTGGCCAGCTGGGCGCGTTACGCCGAAGGTGTTGATGAGCAGGGAAACAGCATTGACGTCGTCGACCGGCTCAAGGAACCGCTGATGGCAGCTGCGGCCCGCCAGCGCCGGGAGCCCTTGGCGTTCCTCGCCAACCACCAGATCTTCGGCGACCTGATCGACAACGAGCTGTTCGTCCAGGCCTACACCGAAGCGCTGAACCAACTGCACGACGGCGGGGCCAGGGCCACGCTGGAGTCTCTTATCTCCCAGCCCTAAMPILSNYTLHDVPGPVSPPSYNRSKLTEGIVHFGVGGFHRAHQAMYLDRLMNAGKALDWAICGVGVLPGDARMKKVMDNQDCLYTLTVKHADGTRQARIIGSIVNYLFAPDNPEAVIAKMASPAIRIVSLTVTEGGYNFHHVTGEFNADNPDVVHDLQPGASPRTTFGLITAALARRRQRGLAPFTILSCDNIQGNGDVARKMFTAFASLKDPELGAWVRGNVPFPNSMVDRITPATTGEDRLTASREYGLEDAWPVVCEPFEQWVLEDHFNLGRPPLEDAGVQLVTDVGPYELMKLRLLNASHQGMCYFGHLAGYTYAHQAAQDPLFARFLLDYMNLEGTPTLKPVPGIDLDSYKQTLIDRFSNEHIRDTLARLCAESSDRIPKWLLPVIHSNLEGGGEVQRSAAIVASWARYAEGVDEQGNSIDVVDRLKEPLMAAAARQRREPLAFLANHQIFGDLIDNELFVQAYTEALNQLHDGGARATLESLISQPPGPT0018400_441DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0018400-mtlK-K00045NANA
D1-29_022111821opuDCOG1292Glycine betaine transporter OpuDATGCCGGCCACACCAGGCATGAGGACCATCAAGGAACCACCGGGGAACCTTCCGCCTGCCCCCAAAGCAAGGGCGGGCAACCAGCCGCGAGACGGCAACCAAAAGCTCGCCCGATGGGTCTTCTGGCCCGCAGCCGCCACCATCATCGTGTTCGTCCTCTTCGCCACGATCTACCCGGCCGCCGCCACAGGCCTCTTCGGCGCGATCCAGGACAACGTCATCAGATGGTTCGGCTGGTACTACGTCGCAGTGATTGCCCTCTTCGTAGCATTCGCGCTTTGGATCGGCCTCGGCCACTACGGCAACATCAAACTCGGCAAAGACGAGGATGAACCCGAGTTCTCCGTTATGTCCTGGTTCGCCCTCCTGTTCGCTGCCGGCATGGGGATTGGCCTGGTCTTCTTCGGTGTGGCCGAGCCCCTGAACCACTTCGCCTCTCCCCGTCCGGGTGTGGAAGGTTCACCTCTGGAGCTCGCCCAGCAGGCGATGACGCAGACGTACCTCCACTGGGGTCTGCACGCGTGGGCCATCTACGTTGTGGTGGGGGTATCCATTGCCTACGCCGTGCATCGCAAGAACCACCCCATCTCCATTCGGTGGGCCTTGGAACCGCTTTTGGGCCACAGGCGTGTAGCCGGCGCGTGGGGCAACCTGATCGACGTTGTCGCCCTGGTGGGTACGCTCTTTGGCGTAGCTGCCTCACTGGGTCTCGGCGTCCTGCAGATTTCTGCCGGTCTGGAGCAGGTTAACATCGTTCAGGCCACCACTATGACGCAGATCGGCCTGATCCTCTCCATCATCACATTGACCATCGTTTCCGTGGTGTCAGGTGTGGCCAGGGGCATGAAGTGGCTGTCCAACACCAACCTGGTCCTGGCCGCATTGCTGATGCTCGTGGTGCTGTTCACGGGCCCCACACTGTTCCTGCTGCGAGAGTTCGTGCAGTCCATCGGCCATTACCTGCAGAACGTCGTAGGCCTCACGTTCAACACCTTGGCCTTCTCTGGTGCGGAGGGTGAAGCCTGGCAAGCAGCCTGGACCACCTTCTACTGGGGCTGGTGGATCTCTTGGGCACCTTTCGTCGGCATCTTTATTGCCCGCATTTCAAAGGGCCGCACCGTCCGGCAGTTCGTTGCCGGCGTCCTGCTGGTGCCTACCACCGTCGGATTCCTATGGTTCTCCGTCCTGGGCGGCGCGGCGATCCACCGCGAACTGTTCGGCGGCGGGGGCCTAATCAGTCAAGACGGCAGTGTGGATACCGAGGGCGCACTGTTCAACCTCCTGGGCAGCCTTCCCGGCGGAGCGGTCCTGACGGTGGGCGCCATCCTCCTGATAGCCATCTTCTTCATCACCTCGGCAGACTCCGGCTCACTGGTGATGGGCATGATTTCCACCGGAGGCGATGTGGAGCCGAAGAACTGGTTGCGAGTCTTCTGGGCACTGTCAGCCGCCGCCGTTGCCATCGCACTACTCCTGTCCAACGGTTTGCAAGCAATCCAAACGGCGGCCATTCTGACGGCAGTGCCTTTCAGTGTGGTCATCGTTCTGATGTGCATTTCCACAGCCAAGGCTTTCCATCGGGAACACGCCATCCTGATGAGAGCCCAACGCAAGCTTGCCCGCGACCAGATGACTGCCCACGTCACCGAACAGGTTCAGGACTCCGTGCATGACTCCGTTCAGGAGCATTACCAGGAGCACTTTGCAGGCCAGGTCAGCGAGGCTGTGGAGGCGCAGCTCAGTGAGCGGCTCGCTGCTGAGGACGTCGCTGAGCACAGCGCACCTAAGACGGGAACGTCCAGGGAGAAGCGCACCCCCTAGMPATPGMRTIKEPPGNLPPAPKARAGNQPRDGNQKLARWVFWPAAATIIVFVLFATIYPAAATGLFGAIQDNVIRWFGWYYVAVIALFVAFALWIGLGHYGNIKLGKDEDEPEFSVMSWFALLFAAGMGIGLVFFGVAEPLNHFASPRPGVEGSPLELAQQAMTQTYLHWGLHAWAIYVVVGVSIAYAVHRKNHPISIRWALEPLLGHRRVAGAWGNLIDVVALVGTLFGVAASLGLGVLQISAGLEQVNIVQATTMTQIGLILSIITLTIVSVVSGVARGMKWLSNTNLVLAALLMLVVLFTGPTLFLLREFVQSIGHYLQNVVGLTFNTLAFSGAEGEAWQAAWTTFYWGWWISWAPFVGIFIARISKGRTVRQFVAGVLLVPTTVGFLWFSVLGGAAIHRELFGGGGLISQDGSVDTEGALFNLLGSLPGGAVLTVGAILLIAIFFITSADSGSLVMGMISTGGDVEPKNWLRVFWALSAAAVAIALLLSNGLQAIQTAAILTAVPFSVVIVLMCISTAKAFHREHAILMRAQRKLARDQMTAHVTEQVQDSVHDSVQEHYQEHFAGQVSEAVEAQLSERLAAEDVAEHSAPKTGTSREKRTPPGPT0013600_1039DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
D1-29_022121509COG3119N-acetylglucosamine-6-O-sulfataseATGTCGAAGACGAACATCATCTTCATCATGTCCGACGACCATGCCGCACATGCCATCTCGGCCTACGGGAGCCGCGTAAATTCGACCCCGCATCTGGACCGCATCGCCGAGGGCGGCATGCGTCTGGACTCGGTGTACTGCACCAACTCGATCTGCAGCCCGTCGCGGGCAAGCATCCTCACCGGGACCTACAGCCACATCAATGGCGTGTCATCGATCTGGACGGAGATGGATTATCGGGTGCCCACTTTCGTGGATGTGCTGCAGGCGAACGGCTACAAGACCGCCCTGTTCGGGAAGTGGCATCTCGGAGAGCATGGGAAAGCTCTGCCCCGGGGGTTTGATGCATGGAAGATCTTTCCCGGGCAGGGCGACTACGTCGATCCGGAAATGATCGATGAGAGCGGCAGTGCGACCATGCCCGGGTACGCGACAGACATCGTCACGGACCTGTCCATCGACTGGCTGGATGGGCTGGACGGCGAGGAACCGTTCTGCATGCTGGTCCATCACAAGGCACCGCACCGCCCATGGATTCCCGACGAGAAGCACAAGCACCTCTACGCGGACGGGCAGATCCCGGAGCCGGAGACCTTCTTCGATGATTACGCCACCCGCAGCCAGGCCGTGCGCGGCGTACATATGACCATCGCGGACGATATGGGCGCCGACGACCTCAAGACAGAGGTCCCGGAAGAGTTGCGGGGGCCCGAGAACCGGGAAGCGCGGATGCGGTGGAAGTACCAGATTTACATGCGCGACTACCTGCAGTGCGTTCAGTCCATCGATGACAACGTCGGCCGTCTGCTGGACCACCTCGAGCAACGCGGACTCGCTGAGAACACATTGGTGGTCTACACCTCGGACCAGGGGTTCTTCCTCGGGGACCACGGCTGGTTCGATAAGCGGCTGATGTTTGATCAGTCCCTGCAGATGCCCATGCTGATGAGATGGCCAGCCGAAATCGCCGCCGGCAGCCGCTGTGAAGCAATCATCACCAACGTCGATTTCGCCGCCACGTTCCTGGACATCTGCGGCATCGGCTCAACGGACGCGCTTCCGACGTCGCAGGGCCGCAGCTTCCGGCCCCTCCTGCGCGGAGAGGAAGTCGACGACTGGCCGGATGCCGCTTACTACCGGTACTGGGAACACGACGACCCCATCCATGCAGCACCAGGCCACTACGGCATCCGCACCGCCGACTACAAGCTCATCCGATACTACGGCGGAGGTCTCGGCGTCCCCGGCGCCTCCGTGCGTGAATTCGAAGCCGAGTGGGAACTGTACGACCTCCGCAACGACCCCACCGAGATCCGGAACGTAGCCCAGGACCCCGGGTATGCGGAAATCCGTGCCGAGCTTGAACAAAAACTTGCCGAGTACCAGCGCCACTACCGGGATGAACCCTACGCCGGGCCCGGCACTCCGCACCCGGAGTGGGGTCCCCACGATGCCGGGATACTCGAGCGCGTCGAAAAGTACGCCCAAGCTCTCCGCGCATCCAGTTAAMSKTNIIFIMSDDHAAHAISAYGSRVNSTPHLDRIAEGGMRLDSVYCTNSICSPSRASILTGTYSHINGVSSIWTEMDYRVPTFVDVLQANGYKTALFGKWHLGEHGKALPRGFDAWKIFPGQGDYVDPEMIDESGSATMPGYATDIVTDLSIDWLDGLDGEEPFCMLVHHKAPHRPWIPDEKHKHLYADGQIPEPETFFDDYATRSQAVRGVHMTIADDMGADDLKTEVPEELRGPENREARMRWKYQIYMRDYLQCVQSIDDNVGRLLDHLEQRGLAENTLVVYTSDQGFFLGDHGWFDKRLMFDQSLQMPMLMRWPAEIAAGSRCEAIITNVDFAATFLDICGIGSTDALPTSQGRSFRPLLRGEEVDDWPDAAYYRYWEHDDPIHAAPGHYGIRTADYKLIRYYGGGLGVPGASVREFEAEWELYDLRNDPTEIRNVAQDPGYAEIRAELEQKLAEYQRHYRDEPYAGPGTPHPEWGPHDAGILERVEKYAQALRASSPGPT0013620_309DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_CHOLINE-O-SULFATE|PHOSPHORYLCHOLINE_UTILIZATION,PGPT0013620-betC-K01133NANA
D1-29_02213765hypothetical proteinATGGTTGCCCGCACCGATCAAACCACGGACCCGGTCCTGCTGGAGGGGCTCCTTCAGGCCCGCCGCGGGACCGCGTTTTTCGCCCGGAAACTCAACGAGCTCTCTGACGCGGACCTTGATGGGCCCTCGCTGCTGCCGGGCTGGACCCGCCGCCACCTCACCGCGCACATCGGCTACAACGCCCGCGCCCTGGCCCGGCTCATCGAATGGGCGGCCACCGGGATCGAAACCCCCATGTATGCCTCCCCGGAAGCCCGCAACCAAGAGATCGCGTTCGGTGCCACCCTGTCCCCGATCGCGCTGCGGAACCTCTTTGACCACTCCGCCGTGCACCTGAACGTCGAATGGCGCGACCTCCCCGCTGACGCCTGGCACCACAAGGTCAAAACCGCCCAGGGCCGGATCGTCCCGGCAAGCGAAACAGTATGGATGCGCACCCGCGAAGTCTGGATCCACGCCGTCGACCTGGACAACGGCGCCACCTTCGCCGACATCCCCGAACCCGTCCTCACCAGACTCCTCAAAGACATCACCAGCGCCTGGGCCACCCGCAGCACCGACACCGGACTGCTGGTCAGGGTGGATGATGCCGGGCGCGGGAGTGGCCTCACGTTCGGCGATACCAGCGCCGCCCACCCGACGATCATCACCGGGCCGCTGCCCGCCGTCGTCGCATGGGCCGCAGGCCGCGGCTCGCACGGCGTCACGGCCACCGGCCCGGGCGCAGTACACGGTACCGCTCCAGCGGCCCCGACATGGATCTAGMVARTDQTTDPVLLEGLLQARRGTAFFARKLNELSDADLDGPSLLPGWTRRHLTAHIGYNARALARLIEWAATGIETPMYASPEARNQEIAFGATLSPIALRNLFDHSAVHLNVEWRDLPADAWHHKVKTAQGRIVPASETVWMRTREVWIHAVDLDNGATFADIPEPVLTRLLKDITSAWATRSTDTGLLVRVDDAGRGSGLTFGDTSAAHPTIITGPLPAVVAWAAGRGSHGVTATGPGAVHGTAPAAPTWINANANANANA
D1-29_02214855hypothetical proteinATGAGACTCCTCACCCTCCGCACCGAAAACGGCAGCAACGGCGCCAGCACCAAAACAACCAGTACTGTGGCGGTCCGCCAGGACGGCGACACCCTCACCGAGATCGAAGGGTTCGCCGACGTCGGAGCCCTGCTGCAGGACCCCGCCTGGGAAACCACGGCCAAAGCCGCCAACGGCGCAACCCACGCGCTCGACGGCGCGGACCTCGCCGCCGTCGTGCCCTCCCCCGGGAAAATCATCTGCGTGGGCCATAACTACCGCAACCACATCAAGGAAATGGGCCGGGAAGTCCCCGAATACCCCACCCTGTTCGCCAAGTACGCCGAGTCCCTGATCGGGCCCAACGATGACCTGGCGCTGCCGCAGGAATCAGACGCGGTGGACTGGGAAGCTGAACTCGCCCTCATCATCGGCAAAACCGGCCGCCGCATCCCCGAGGCCGACGCCGCGAACCACATCGCCGGCTACGCGGTCCTGAACGACATCTCCATGCGCGATTACCAGTTCCGCACCGTCCAATGGCTCCAAGGCAAAACCTGGGAAAAGTCCACCCCGTTCGGCCCGGCCCTGGTCACCCAGGACGAATTCACCCCCGGCCCGCTGATGACCTCCGCCGTCGACGGGGACATCCAGCAGAGCACCCCCACCTCGGACCTGGTCTTCACCCCTGAGTTCCTGGTCTCCTACATTTCCACCATCATCACCCTGAACCCCGGCGACGTGATCGCCACCGGCACCCCCGGCGGCGTCGGCCACGCCCAAGACCCCAAAAAATACCTGCAGGAAGGCCAAGTCCTGGTCACCACCATCGAAGGCCTGGGACAACTGAAAAACCGCGTGGTCAAGGAAGTTTGAMRLLTLRTENGSNGASTKTTSTVAVRQDGDTLTEIEGFADVGALLQDPAWETTAKAANGATHALDGADLAAVVPSPGKIICVGHNYRNHIKEMGREVPEYPTLFAKYAESLIGPNDDLALPQESDAVDWEAELALIIGKTGRRIPEADAANHIAGYAVLNDISMRDYQFRTVQWLQGKTWEKSTPFGPALVTQDEFTPGPLMTSAVDGDIQQSTPTSDLVFTPEFLVSYISTIITLNPGDVIATGTPGGVGHAQDPKKYLQEGQVLVTTIEGLGQLKNRVVKEVPGPT0001630_241DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001630-hpaF-K16164NANA
D1-29_022151146sdgD_1Gentisate 1,2-dioxygenaseATGTCTGAGAACCCGACGCATGAATCGGTTGCCGCAGGGCACTCTGTTCCGGAGCCCACACCGGAGGAGGCTGCCCAGCTGGAGCAGCTGTACCGGGACTTTGATAAGGAGAACCTGATTCCGTTGTGGACCGAGATCGCGGACCTGATGCCCATGGTCCCGTCGCCGAAGGCGGTGCCGCACGTCTGGCGGTGGGACGATTTGTATCCGCTGGCTGCCCGTGCCGGTGATCTGGTGCCCGTGGGCCGGGGCGGGGAGCGCCGTGCTATTGCCCTGGCCAACCCGGGCCTGGCTGGTACCCCCTACGCCACGCCCACGCTGTGGGCCGCCATCCAGTACCTTGGCGCCCGCGAAACGGCACCGGAGCACCGCCACTCGCAGAACGCTTTCCGCTTTGTGGTGGAGGGCGAGGGCGTCTGGACCGTGGTCAACGGTGATCCGGTCCGGATGTCACGCGGCGATTTCCTGCTCACGCCGGGCTGGAACTTCCACGGCCACCATAACGACACGGATCAGCCGATGGCCTGGATTGACGGCCTGGACATCCCGTTTGTGCACTACGCTGACGCCGGCTTCTTTGAGTTCGGCACCGAACGCGTCACCGACGAGGCCACTCCTGACATCTCCCGCTCGGAGCGGCTCTGGGCCCACCCGGGCCTGCGCCCGCTCTCCGGCCTGGATGACACCACCAGCTCCCCGATCGCCGCCTACCGCTGGGAACACACTGACAGGGCACTGGCCGAGCAGCTGCTCCTGGAAGACGAGGGCCACCCGGCCACCGTGTCCCAGGGCCATGCCGCCGTCCGCTTCACGAACCCGACCACCGGCGGGGACGTGATGCCTACCATCAGGGCTGAGTTCCACCGGCTCCGCGCCGGAGCCCTGACCGATACCGTCCGCGAGGTTGGTTCCAGCGTCTGGCAGGTCTTCGAAGGCACCGGTTCCGTGACCCTGAACGGCGAAACAAGGCAGCTGGCCAAGGGCGACCTGTTTGTGGTCCCGTCCTGGGCAGCCTGGTCGCTGCAGGCCGACCCGCAGTCCGAGACACCGGCCGGCGCCGGCTTTGATTTGTTCCGTTTCAGTGACGCCCCCATTTTTGAGCGCCTGAGCTTCAACCGCACCTACATCGAAGGACGCACCAAGTAAMSENPTHESVAAGHSVPEPTPEEAAQLEQLYRDFDKENLIPLWTEIADLMPMVPSPKAVPHVWRWDDLYPLAARAGDLVPVGRGGERRAIALANPGLAGTPYATPTLWAAIQYLGARETAPEHRHSQNAFRFVVEGEGVWTVVNGDPVRMSRGDFLLTPGWNFHGHHNDTDQPMAWIDGLDIPFVHYADAGFFEFGTERVTDEATPDISRSERLWAHPGLRPLSGLDDTTSSPIAAYRWEHTDRALAEQLLLEDEGHPATVSQGHAAVRFTNPTTGGDVMPTIRAEFHRLRAGALTDTVREVGSSVWQVFEGTGSVTLNGETRQLAKGDLFVVPSWAAWSLQADPQSETPAGAGFDLFRFSDAPIFERLSFNRTYIEGRTKNANANANANA
D1-29_022161638Ulvan-active sulfataseTTGAAATTGCCGAACATCGTCTGGATTTCGACACATGACATAAATCCAGACCTGGGGTGCTATCAGGGGGTTTGGGCAGGAGCAGAATATGCCACGACACCGAACCTCGACCGTCTCGCCGCAGAGGGTGCCCGGTTTGACAACGCTTTTGCGTCCGCTCCTGTCTGTGCCCCGGCCCGTTCTGCGATCATAACCGGTTGCTTTCCTACGGCCATCGGCACAATGCACATGCGTACCAAAGCGGTGCCGCCGCCGGAAGTCCGGCTCCTGCCCGAGTACTTCAGACAAGCCGGTTACTACTGCACCAACAACGTCTTCACTGACTTCCAGGTGGTCACGCCGCCCACAACGTTCGACGACTGCAGCAGCACCGCGCACTGGCGAAACCGTCCTCACCCCGATACTCCGTTCTTTGCCGCCTTCCACGGCTTGACCACCCATGAATCCCGGATCTACCTGGACGAGGAGCTCTTCGCGGAGACCACGCGGAACGTCGGGTCGGAAGCCAGGCATCACCCCGATGAAGCACCCTTGCCGCCGTACTACCCGGACACTCCTGTGTTCCGGCGCGCATGGGCCAGGTACAGCGACCTCATCACCGAGATGGACCACTGGGTTGGTGACATTTTGGCCCAGCTGGAAGAGGACGGGCTGGCCGAATCCACCATCGTGGTGTTCTGGAGCGATCACGGCCGCGGCATGCCCCGGGCCAAACGATGGCCGAACGAAGCCGGGCTAAGGGAACCGTTAATCGTACGGTGGCCCGGCGCGATTCCTCCGGAGACAGTCCGGACGGAGCTCGTCCATACAATGGACCTCGCCCCCACCATGCTCAAGGCTTGCGGCCTTCCCATCCCTGCGCACATGCACGGCATTCCCCTCTTTAACGGCAATGGGGAATTCTCCGAGCAGCAGAACGACTTTGTATTTGGCAGCAGGGACCGTATGGACGAGTCCGAGGACACATCCCGGACCGTCAGGGACGCCCGCTACCGATATATCCGGCACTACCACCCGGACCGTTCTGGAATGCAGCATACCCAGTACCCGGATCACCTGGAAACGTGGGCCGAATTCCGGGAGTTGGCCGCGGAGGAGGCCAACCAGCTGGGCATCGGCACGCTACCAAACAGGCTAACGGAACTCCAGCGCAGCGTCGTGGCAGCTGGACGACCTCAGGAAGAGCTGTACGACCTCATTGCCGATCCGCATGAGACGGTCAACCTGGCGACGGACGCTGCTCATACCGCCGTCCTTCAACGGCTGCGCTCGGCACTCTTAGCGTGGCAGGACCGCTATGGAGACCTGGGGCTGGTGCGTGAGCCTGAATTGATCGAACAATGGAGGCCCGGGGGAAAGCTGCGTCCCACGGACACCCCCCATGTTTTTCGGACCCCAGAGGGCTTAGAAGCCAAATGCTCCACGGCAGGGGCATCAATCGGTTGGACGTTCGACCCGCCCGGCGACTGGATGATAGCTGGCAGCCCGTTGGAGCAGGTTAGCGGAGCTCCACAGAATGACGGACGCCGCTGGAACCTGTACAGCAGTCCCCTCACAGCAGAAAAGGGCGCAAGACTGTGGGTCCGCGCCTGGCGCCTCGGCTTTGAACCAAGCGATGAGGTCCCCATCACCATGTAAMKLPNIVWISTHDINPDLGCYQGVWAGAEYATTPNLDRLAAEGARFDNAFASAPVCAPARSAIITGCFPTAIGTMHMRTKAVPPPEVRLLPEYFRQAGYYCTNNVFTDFQVVTPPTTFDDCSSTAHWRNRPHPDTPFFAAFHGLTTHESRIYLDEELFAETTRNVGSEARHHPDEAPLPPYYPDTPVFRRAWARYSDLITEMDHWVGDILAQLEEDGLAESTIVVFWSDHGRGMPRAKRWPNEAGLREPLIVRWPGAIPPETVRTELVHTMDLAPTMLKACGLPIPAHMHGIPLFNGNGEFSEQQNDFVFGSRDRMDESEDTSRTVRDARYRYIRHYHPDRSGMQHTQYPDHLETWAEFRELAAEEANQLGIGTLPNRLTELQRSVVAAGRPQEELYDLIADPHETVNLATDAAHTAVLQRLRSALLAWQDRYGDLGLVREPELIEQWRPGGKLRPTDTPHVFRTPEGLEAKCSTAGASIGWTFDPPGDWMIAGSPLEQVSGAPQNDGRRWNLYSSPLTAEKGARLWVRAWRLGFEPSDEVPITMNANANANANA
D1-29_02217630hypothetical proteinATGGCCGCAAACACCGAAGTGCCTCCCCGGAGGCGTGGAACCTACGCGAAAGGCAGGGCAGCACGGGAACTAATCCTTGAAACAGCCCTGGAAGTTATCAGCAAAAAGGGCTACACCGCCACTTCGCTCCGCGACATCGCAGATCAGGCGGGCATGACCCAGGCCGGGCTGCTCCACCACTTCGACACCAAGGAAAACCTCCTGGCCGAGGTGCTGAGAAAACGTGACGAAGTGGACAGGCAGCATTTCAGCCCAGCCGACATCACTCAACTTCCGCTGATTATCCAGCTGGCACATCACAACATGGAGGTCCCAGGCCTCGTGCAGCTGTACGTCAGCCTCCAGGCAGCGGCCGTTAACCCTGAGCATCCCTGCCATGACTATTTCCGGGACCGGGACCTGGTGGTCCACGCCCGGATAAGCCGGGACATCGAAAAGCGCCAAAAGGCCGGGACGTTCAGCCCCGACGCTGACCCGAGGGTGATCGCCCGTATGCTTCTGGCACTCTCCGACGGGCTGCAGGCGGAATGGGCCATTAACCCTGACGTGGACCTGGCTGGCACGCTGGATGCTTTCTGGAACAGCTATGTTCGCACGAGCCCGACTGTTCCGGCCGCCACCGAGGGATGAMAANTEVPPRRRGTYAKGRAARELILETALEVISKKGYTATSLRDIADQAGMTQAGLLHHFDTKENLLAEVLRKRDEVDRQHFSPADITQLPLIIQLAHHNMEVPGLVQLYVSLQAAAVNPEHPCHDYFRDRDLVVHARISRDIEKRQKAGTFSPDADPRVIARMLLALSDGLQAEWAINPDVDLAGTLDAFWNSYVRTSPTVPAATEGNANANANANA
D1-29_022181860nagZ_1Beta-hexosaminidaseATGAGCGTTGATCTGGAGCCGGAATTCCAGCGCACTGCCGAGGGAACTGTCTTTCGGGACCTCAACGGCAACGGCATCATGGACCCCTACGAAAACCCGAAACTGCCCGCAGCCGACCGGGTTGAGGACCTCCTGGGCAGACTCTCCCTCGAGGAAAAGGCCGGACTGATGTTCCAAACAGTGGTCAGCGCCGCTGAGAACGGAAAGCTCGGAGACGAGAGCCCGCGGCCAAGCCAGGCCACTGTTCGGCAAGTCGTCGCCGACAAGTACATCAACCACCTCAATCTCCACTTCGTGCCCGAGCCAAAACTCGCAGCCCGTTGGGTGAACGAACTCCAGCGCATGGCCACCAGCTCCAGCCCGCACGGGATCCCGGTGACACTGTCCACGGACCCCCGCCACTCCTTCATCGAAAACTGGGGCGCATCCTTCACCGCCGCGTACTTCTCCGCCTGGCCCGAGCCGCTCGGCCTCGCCGCCGTGAGGGACGAACAGCTGGTCCGCGAATTCGCAGCCATCGCCAGAGCCGAATACACCGCGATCGGTATCCGCGCCGCCCTCCACCCCACCCTCGACCTCGCCACCGAACCCCGGTGGGCACGCCAATACAGCACTTTCGGCCAGGACAATGACCTTGTCGCCCGCCTCGCCCTGGCCTACCTGGACGGATTCGAAGACCAGCCTTTGGGCGCCGGCAGCGTCGCCTGCATGGCCAAACACTTCCCCGGCGGCGGCCCGCAACGGGACGGCGAAGACCCGCACTTCCCCTATGGGCGCGAACAGGTCTACCCCGGGGGCATGTTCGAGCATCACCTTGAGCCCTTTAAGCGCATCATCGCCCACGGCGTAACGGCCATCATGCCCTACTACGGCATGCCCATCGGCCTGGAACTGGACGGCGAACCTGTCGAAGAAGTCGGCTTCGGGTACAACCGGCAGATCATCACCGGACTCCTGCGGGAAAAACTGGGCTACCAGGGCGTTGTATGCACCGACTGGGGCCTGGTCACCGAATCCCGTCTCTTTGGACGCCAACTCCCGCCGCGCGCCTGGGGCGTGGAACACCTCTCCGAAACGGAACGCGTCCTGAAAATTATCGAAGCCGGCTGCGACCAGTTCGGCGGCGAAGAATGCCCCGAGCTAGTGGTAGCGCTGGTCCGGGACGGCCGGCTGAGCGAAGCGCTGATCGACACTTCGGTCCGCCGGCTGTTGAAGGTGAAGTTCGAACTGGGCTTGTTCGACAACCCGTACATTGACGAGGCACAGGCTGAAGAACGGACCGGCCTGCCCGAATATGTGGCGGCGGGCCAGCGGGCCCAGGCCCGCTCCGTGACAGTCCTGAAGAACGAAATAAGCGACGGCTCGGCTCTCTTGCCGCTGGCGTCCGGTCTCCGCGTATTTTCGGAGGAGCTAGGCCCGGACGCACTTACCGAAGCCGGTCTCATCCCAGCCGCAGATCCCGCCGATGCTGATGTGGCAATTGTTCGGGTAGCGGCCCCCTTTGAATTCCGCGACACCTACATGCTGGAAGCCAGCTTCCACGCAGGAAGCCTGGAATTCGACAGCGAGACCACTAACAGAGTCCAGCAGCTGGCTGCGGTCCTCCCGGTCATTCTTGTCCCGCACTTGGACCGCCCCGCAGTATTGACCCCACTGGAACCGAGCTGCGCCGCCATAGCGGCCGTGTACGGCGCATCCGACACCGCTGTCCTCCAGGCACTCACCAGCACTGTTCCGCCTGAAGGCCGCCTGCCGTTCCAGCTCCCCCGCTCGGAGGCTGCCGTGGTAGCCTCCCGACCTGACGTTCCTGGAGACACAAAGGACCCGCTGTACGAGTACGGGTTCGGATTGGAGCTTTAAMSVDLEPEFQRTAEGTVFRDLNGNGIMDPYENPKLPAADRVEDLLGRLSLEEKAGLMFQTVVSAAENGKLGDESPRPSQATVRQVVADKYINHLNLHFVPEPKLAARWVNELQRMATSSSPHGIPVTLSTDPRHSFIENWGASFTAAYFSAWPEPLGLAAVRDEQLVREFAAIARAEYTAIGIRAALHPTLDLATEPRWARQYSTFGQDNDLVARLALAYLDGFEDQPLGAGSVACMAKHFPGGGPQRDGEDPHFPYGREQVYPGGMFEHHLEPFKRIIAHGVTAIMPYYGMPIGLELDGEPVEEVGFGYNRQIITGLLREKLGYQGVVCTDWGLVTESRLFGRQLPPRAWGVEHLSETERVLKIIEAGCDQFGGEECPELVVALVRDGRLSEALIDTSVRRLLKVKFELGLFDNPYIDEAQAEERTGLPEYVAAGQRAQARSVTVLKNEISDGSALLPLASGLRVFSEELGPDALTEAGLIPAADPADADVAIVRVAAPFEFRDTYMLEASFHAGSLEFDSETTNRVQQLAAVLPVILVPHLDRPAVLTPLEPSCAAIAAVYGASDTAVLQALTSTVPPEGRLPFQLPRSEAAVVASRPDVPGDTKDPLYEYGFGLELPGPT0019110_6548DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
D1-29_02219849oppF_3COG4608Oligopeptide transport ATP-binding protein OppFATGACGAACACGAACCGGCTCCTGGAAGTCGAGAACCTCGCCGTGGAATACCCCGGCCACGGGCGTAAGCCGGCCTTCAAGGCCCTTGAGGACATTTCCTTCACCATCCGCGAAGGCGAAACCCTGGGCCTGGTCGGCGAATCCGGCTCAGGAAAAACCACTATAGGCAGGGCGATCCTTGGCCTGGTCAAACCCTCCGCTGGGCGCATCCTGTTCGACGGCAAAGACATCACCCACGCCGGACGCGGGGAGAGGCGGGCCCTGAGCCGGGACATCCAGGTGGTGTTCCAGGACCCGTATACGTCCATGAATCCGTCGATGACAGTGGAAGACATCCTCTCCGAGCCGCTCACCATCCAGGGCAACAGCAAAAAAGACTCCCTCGAACGCGTCCGCGGGCTCCTGGACCGGGTCCACCTTCCGGCCAACTCAGGTGGCCGGCTCCCGCGTGAGTTTTCCGGCGGACAGCGGCAACGCATCGCCATCGCCCGCGCCATCGCCGTCAAGCCACGCCTCATTGTCTGCGATGAACCCGTCTCCGCACTGGACCTCACCACCCAGGCCACGGTCCTGGACCTGCTGGTCGAGATCCAGGAAGCCACCAAAGTGGCCTACCTCTTCGTCTCCCACGATCTCAGCGTGATCCGCCACATCAGCCACAACGTCATCGTCCTGTACAAGGGACACATCGTGGAGCAGGGCCGCGCTGCCCAGGTCACCTCCCAACCAGTCCACCCCTACACGCAAAGGCTGTTCATGTCCGCTCCTGTCCCCCACCCCGCCCAGCAACGCGAACGCCGCGAAGCACGCCGCCAACTCGTCACCGCAACCGCGGAGCAGGCAGCATGAMTNTNRLLEVENLAVEYPGHGRKPAFKALEDISFTIREGETLGLVGESGSGKTTIGRAILGLVKPSAGRILFDGKDITHAGRGERRALSRDIQVVFQDPYTSMNPSMTVEDILSEPLTIQGNSKKDSLERVRGLLDRVHLPANSGGRLPREFSGGQRQRIAIARAIAVKPRLIVCDEPVSALDLTTQATVLDLLVEIQEATKVAYLFVSHDLSVIRHISHNVIVLYKGHIVEQGRAAQVTSQPVHPYTQRLFMSAPVPHPAQQRERREARRQLVTATAEQAAPGPT0004440_7201DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-29_022201797btuD_11Vitamin B12 import ATP-binding protein BtuDATGACTCTTGCGACAGAAGTCCCCACCGACGTCGAACCCGTCGCCGCCAGCTCTGGCCTGATTCGGCGCTTTGTCCGCAACCCCCTCGGACTGCTCTCCGCCCTGGTGCTCCTGGCCGTCATCACCATCGCCATCGTGGTGCCTTTCCTCGGGCTGCCTGACCCTAATGGCGTTAACCTGCGCGAGTCCACGCTTCCCCCGGGCCCCGGTCACCCACTCGGCACCGACGCCTCCGGTCGGGACATCTTCAGCCGCATCATGTGGGGCAGCCAGGTCAACCTCATCGGCGCCGGCATCGCCCTGGCCATCGCACTGGTCACCGGCGTGATCACGGGTCTGCTTGCCGGCTACTACGGCGGCTGGTTCGACAGCGCCGCGTCCTGGGTCAACAACCTCAACATGGCCCTTCCCGGCATCGTGGTCCTGCTCGCCGTCCGCGCCATCGTCGGGCCATCCGTCTACATCGCCATGGCTGTTTTCGGCGTCCTTCTGGCGCCCGCCTTCTTCCGGGTGGTCCGCGGAGCGGTGCAGGCTGTCCGTAATGAGCTGTACGTTGACGCCGCCCGCGTCTCCGGCCTGAGTGATGCCAGGATCATCGCCCGCCACATCCTCACCGTGGTGAGGGCACCGGTCATCATCCAGGCCGCCCGTGTGGCCAGCATCGCCATCGCCATCCAGGCAGGACTGGAGTTCCTCGGCGTCACGGACCCCTCCGTTCCGTCCTGGGGCAACATGCTCAATGAAGGCTTCCGCAGGATCGCCCTCAGCCCGGGACTGATCCTCTGGCCCAGCGTCGCAATCGGATTGGTCTCCATGGCACTCATTCTTTTCGGCAACGCCCTGCGCGACGCCTTGGAAGACCGCAGCCACGGCATGACCCGCGCCGTCCGGCTCCCGGCCAAAAGCACTGCAGCAACCGCCGCCACGGCGGCACCGGCACCCGCTCACCCGGAAAACGCGCTCCTGTCCGTCCATAACCTCAAAGTCGCCTACGGCACCGGCGGCGAAAAGGAAGTGGTGCACGGAGTCACCCTCCACATCGCACCCGGCGAAGTACTCGGTCTGGTGGGCGAGTCCGGATCCGGCAAAACCCAGACCGCTTTCGCCATACTGGGCCTCCTGCCTGAAGGCGGACGCGTCTCGGAAGGCTCCATTCTCTTCGACGGCAAAGAACTCACCACCCTCGGAAACAAGGAACGCACCGCCCTGCGCGGCACCGACATCGCTTACATCCCCCAGGAGCCCATGAGCAACCTGGACCCATCCTTCCGGATCGGCCACCAGCTCACCGTCCCCTTGCGGACAAAACTCGGGCTCTCCAAACAGGACGCCACCAAACGCGCCCTTGAACTGCTGGCCAGGGTCGGCATCACGGACCCGGAAAAAACCTTCAAATCCTACCCCCACGAGATATCCGGCGGGATGGCCCAGCGCGTCCTCATTGCCGGCGCCGTCTCCTGCAACCCCCGCCTGCTCATCGCCGATGAGCCCACCACCGCCCTGGACGTCACCGTTCAGGCCGAAGTCCTGGACCTGCTCCGGGACCTCCAGCGCGAAACCGGGATGGCGGTGATTATGGTCACCCACAACTTCGGTGTGGTGGCCGACATCTGCGACCGCGTAGCCGTCATGCAGGCCGGGCGCCTGGTGGAAGTGGACACCGTGGAGAAGATCCTCACCTCACCGTCACAGGCCTACACCCAGAAACTCCTCGATTCCATGCTTGAAGACAGCCCGGCCCGGCCCTACCCCTTCGACGACGACGATCTCGCCGCGCCCACGAAAGCCAAGGAGTAAMTLATEVPTDVEPVAASSGLIRRFVRNPLGLLSALVLLAVITIAIVVPFLGLPDPNGVNLRESTLPPGPGHPLGTDASGRDIFSRIMWGSQVNLIGAGIALAIALVTGVITGLLAGYYGGWFDSAASWVNNLNMALPGIVVLLAVRAIVGPSVYIAMAVFGVLLAPAFFRVVRGAVQAVRNELYVDAARVSGLSDARIIARHILTVVRAPVIIQAARVASIAIAIQAGLEFLGVTDPSVPSWGNMLNEGFRRIALSPGLILWPSVAIGLVSMALILFGNALRDALEDRSHGMTRAVRLPAKSTAATAATAAPAPAHPENALLSVHNLKVAYGTGGEKEVVHGVTLHIAPGEVLGLVGESGSGKTQTAFAILGLLPEGGRVSEGSILFDGKELTTLGNKERTALRGTDIAYIPQEPMSNLDPSFRIGHQLTVPLRTKLGLSKQDATKRALELLARVGITDPEKTFKSYPHEISGGMAQRVLIAGAVSCNPRLLIADEPTTALDVTVQAEVLDLLRDLQRETGMAVIMVTHNFGVVADICDRVAVMQAGRLVEVDTVEKILTSPSQAYTQKLLDSMLEDSPARPYPFDDDDLAAPTKAKEPGPT0004435_1241DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_02221942gsiC_4COG0601Glutathione transport system permease protein GsiCGTGACTATTTTTCTGCTGCGGCGCTTATTCTCAGCCGTTGTCCTGCTCGTGGCCGTGTCTTTCCTGGCCTACGTGCTGCTCTACCCCGGCGCAGGGGACATTGCCCGGAACATCCTCGGCGAGAACGCCACCGAGGAACAGGTCGCACTGAAGAACCAGGCGCTCGGCCTGGATCAGCCCCTCCTGGTCCAGTATTTCGCCTGGTTCACCAAAGCAATTTCGGGGGACCTTGGCGTCTCCTACTTCACCAGCCAGCCGGTGTGGGACACGCTCATGATCCGGCTCCCGGTCACCCTCAGCCTGGTGGTCGTGGTGACCGTGCTGACCGGCGTCCTGGCATTCGCGGCCGGCATCTGGGCCGCGGTGCGCAAAGGCTGGGTGGACCGCACCCTGCAGCTCCTCGCCACCCTGGGGGATGCCCTTCCCTCGTTCATCGTGGCGCTGTTCCTGGTCACGTACTTCGCGATCCAGCTGAAAATGTTCCCGGCAACAGGCTACATACCATTGACTGAATCACCAGCCGGCTGGGCAAGAACCATCACCCTGCCCGTGATCGCTCTCGCGATCGGCGGTGTCGCAGGCGTTGCCCAGCAGGTCCGTTCAGCCACCCTTGGGGTGCTGCGCAATGATTACATCCGGACGGTCCGCAGCCGCGGGTTATCGGAGCGCCGGATCATCCTCACGTCCGTCCTGCGCAATGCCTCGACGAACGGCCTGACCAGCCTGGCAGTTCAGGTGGTGGGAATTCTCGGCGGCGCCGTCGTCATCGAAACGATCTTTGCGCTCCCCGGGCTGGGCTCCCTCGCCGTGGAGGCAACGAGCCGTACTGACCTGCCCCTCATCGTCGGCGTGATCCTTGCCGTCGTGCTGATCGTCGTCATCGTCAACCTGGCCGTCGACGTCCTCGTCGCCTGGCTCAACCCGAAAGTGCGCCTGTCATGAMTIFLLRRLFSAVVLLVAVSFLAYVLLYPGAGDIARNILGENATEEQVALKNQALGLDQPLLVQYFAWFTKAISGDLGVSYFTSQPVWDTLMIRLPVTLSLVVVVTVLTGVLAFAAGIWAAVRKGWVDRTLQLLATLGDALPSFIVALFLVTYFAIQLKMFPATGYIPLTESPAGWARTITLPVIALAIGGVAGVAQQVRSATLGVLRNDYIRTVRSRGLSERRIILTSVLRNASTNGLTSLAVQVVGILGGAVVIETIFALPGLGSLAVEATSRTDLPLIVGVILAVVLIVVIVNLAVDVLVAWLNPKVRLSPGPT0004445_12553DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_022221548sgrR_3HTH-type transcriptional regulator SgrRATGATGAGGATCAAGAACCGAATTTTCTCGACGGTGGTGACTGCCGTCGTCGCATCCTTGGCGTTTACTGCCTGCGGCGGGGGCGGCCCCGAGGGATCAACAACCACGCAGGGACCGGAAACCGCGCCCCTGCTGCGAATCGGCTCATTGCAGGAGCCGCAGAGTTATGACCCCGCGCAGGCCAACGAAGGACACCAGGCCCCTATCTACCAGGCCGTGTACGACACGCTTATCAAGCGGGAGCCGGATGGCAGCCTCAGCCCGATGCTGGCCACGTCCTGGGAGCCAAGCGACGGCAATACCACCTACACCCTGAAGCTGCGCGAAGGGGTTAAGTTTACCGATGGCGCCACTTTTGACTCGGCTGCAGTGAAGGCCAACCTGGAACACTTCATTAAGGCCAATGGACCTCTGGCCGGCACTGCAAGCAGCGTACAGTCGGTCGAAACCCCGGACGCCACCACCGCGGTGATCCGCCTCTCAGAACCTGACCCTGGACTTCCCTATTCCCTCGCCAACGCGGCAGGCTACATCGCCAGCCCCAGCGCTGTCGGTACCGAGGCAATCGCGACCAGGCCCGTAGGATCAGGCCCCTACACTCTGGATCCCGCCAACACGGTGTCTGGTTCGAAGATCACCTTTGTCCGTAACGCCGATTACTGGGGTGACAAGCTCCCCTATGACAAGGTTGAGTTCCAGGTCCTGACGGATGAGAACGCCCGCCTTAACGCACTCAAATCAGGCCAGATCGATGCCGCCGTCCTCAACCGTGCAGCAACTGCCGTGGAAGCGGAAGGTGCGGGACTTCAGCACAAGCCCAATGAGGTTAACTGGGAGGGCATCTTCTTCTTTGACCGCAACGGTACCAAGCTTCCGGAACTCGCCGACGTGCGGGTACGGGAAGCCCTGACGCTTGCGATCGACCGGGAAGCACTCCTGCAGGCCGTCCACCTCGGAAAAGGCACCCTGACCAGCCAGACGTTCCGGCCCGGCACTGAGGGCTATGATGAGGCCCTTGACGGCAAGTACACTTACGATCCTGACCGTGCCCGTGAGCTCCTCAAGGAAGCCGGTGCGGAGAACCTGACGTTCACCTTGCCGATCAGCCCGGTCTTCGATCCCTCGATCTACGATTCGATCATCCAGAACTGGCAGGATGTCGGGGTAACGGTGAACCGGCACCAGTGGGGCCCTGGCCAGGCAATCCCGTCCATGCTCCGCGCAGAGTACCCCATCGCTTACATGGCTCTCAGCCAGCGTGATGATTGGCGGCACACCACCTTCCAGCTGGCACCCAGCGCCCCCTGGAACCCCTTCAAGGTTGAGGACCCGGAACTGAACGGGTTTATCCAGAAGGCCCAATCAGGCGGTGAGGCTGAGCAGAAGGAAGCAGCCAAGTCGATCAACAACTTCATCGTGGACAACTACTGGTTCAGCCCGCTCTACCGGCTGCATTCCCACTTCTACTTCACCGGCTCCGTCGACGTGGAGCCGCAGACGGAACAGGCCGTGCCGTCCATCTATAACTACAGGCCCACCGGCAAGTAGMMRIKNRIFSTVVTAVVASLAFTACGGGGPEGSTTTQGPETAPLLRIGSLQEPQSYDPAQANEGHQAPIYQAVYDTLIKREPDGSLSPMLATSWEPSDGNTTYTLKLREGVKFTDGATFDSAAVKANLEHFIKANGPLAGTASSVQSVETPDATTAVIRLSEPDPGLPYSLANAAGYIASPSAVGTEAIATRPVGSGPYTLDPANTVSGSKITFVRNADYWGDKLPYDKVEFQVLTDENARLNALKSGQIDAAVLNRAATAVEAEGAGLQHKPNEVNWEGIFFFDRNGTKLPELADVRVREALTLAIDREALLQAVHLGKGTLTSQTFRPGTEGYDEALDGKYTYDPDRARELLKEAGAENLTFTLPISPVFDPSIYDSIIQNWQDVGVTVNRHQWGPGQAIPSMLRAEYPIAYMALSQRDDWRHTTFQLAPSAPWNPFKVEDPELNGFIQKAQSGGEAEQKEAAKSINNFIVDNYWFSPLYRLHSHFYFTGSVDVEPQTEQAVPSIYNYRPTGKPGPT0004430_15562DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_022231665Ulvan-active sulfataseATGACCCGTCCCAATGTCCTGTGGATTTCGACCCATGACATCAGCCCGCATCTCGGCGCCTATGCCGGTGTCTACCCTGGAGCAGAGTACGCAGTAACTCCGAACTTGGACCGCCTCGCTGCTGAAGGCATGCGCTTCGATCACGCCTTTGCTGCCGCTCCCATATGCGCACCCTCCCGTTCGGCCATCATGACCGGCTGCTTTCCGACGGCGATCGGCACGATGCATATGCGCACAAAGGCAGTGCCGCCGCCGGATGTACGGCTGTTCAGCGAGTACTTCCGGGAGGCCGGCTACTACGTCACTAATAACTCGTTCACGGATTTCCAGGTCACGACGCCGCCCAGCGCGTTCGATGACTGCAGCGCCACGGCCCATTGGCGGAACCGCCCGGACGCCGGGACGCCGTTTTTCGCTACGTTCCACGGGCTGATCACGCACGAGTCACAGATCTACCTCGACGACGACGCTTTCGCCGCACGTACCAGCCACGTCCACCCCTTCGACCGGCATGATCCCGCCACGGCTCCCCTGCCTCCCTACTACCCGGACACCGAGGTTTTCCGCCGGTCCTGGGCGCGCTACAGCGACCTGATCACAGAGATGGACCATTGGGTAGGTACCATCCTTGCTGAACTGGAAGAGGACGGACTGGCGGAGAACACAATTGTGGTGTTTTGGAGTGATCATGGCCCTGGCATGCCACGGGCCAAGCGTTGGGTCAATGATTCCGGCCTTCGCGAGCCACTGATCATCAAGTGGCCAGACCGCATTCCTGCCGGAAGCGCCAACCCAAACGTTGCCCACCTCATGGATCTTGCCCCGACCATGCTGCAGTTGTGCGGCCTGGACATCCTGCCCCACATGCATGCCAAGCCCTTGCTCAACCCCGACGGCGGCATTGTTGACTCGCCCAACACCTATGCCTTTGCCGGTCGGGACCGGATGGGTGAATTGGAGGACATGTCCCGCACGGCCCGTGATAGCCGTTTCCGTTACATCCGCCACTACCATCCTGACCGCGGTCCGATGCAGCACTGCGAATACCCTGACGGGCTGGCCACGTGGCGCGAATTGAGGCAGCTCGCCTCGGGCGAGGCAGGGCAGCGGGCGTTGGGTGAACGCCGAACCCTGCTTAGTCCGCTTCAGCGGGAGCTTGTGGCACCGACGAAAGCCCGTGAGGAACTGTTCGATGTTCCTAGCGATCCACACGAAACAACCAATCTCGCCGAGGACCCTGCCTATTCCGGCACCTTGGAAAGATTCCGCAGCGCAGTCGATCACTGGCAGGCCACCTACGGGGACGCGGGCTTCACACCCGAAGACGATCTGTCCGATCAGTGGCGCCCATCCGGCATCCAACCCGTCACAGCGCCGCCACTGGTCGAGGTGGAAGACGGGGCCATCACGGCGCGCTCCTCTACTGCCGGCGCGTGCGTGGTGTGGACAGCGGACCCGCCCACCCCGGAAGGAGCCGGAATGGCGACGGCCGCCAGGCCACGGATGGCAGAGGAGACAGGTGCGCCACTCTCGGATGGACGGGCCTGGTACATCGTCTGTAAGGCGACTCCGGCGCCTCCCGAAGTCGCGCTCTGGTTCAAGGCTTGCCGGCTCGGATACGCCGACAGCGCCGAGATTCATTTTGCCCCAATAGCGGCAACTTAGMTRPNVLWISTHDISPHLGAYAGVYPGAEYAVTPNLDRLAAEGMRFDHAFAAAPICAPSRSAIMTGCFPTAIGTMHMRTKAVPPPDVRLFSEYFREAGYYVTNNSFTDFQVTTPPSAFDDCSATAHWRNRPDAGTPFFATFHGLITHESQIYLDDDAFAARTSHVHPFDRHDPATAPLPPYYPDTEVFRRSWARYSDLITEMDHWVGTILAELEEDGLAENTIVVFWSDHGPGMPRAKRWVNDSGLREPLIIKWPDRIPAGSANPNVAHLMDLAPTMLQLCGLDILPHMHAKPLLNPDGGIVDSPNTYAFAGRDRMGELEDMSRTARDSRFRYIRHYHPDRGPMQHCEYPDGLATWRELRQLASGEAGQRALGERRTLLSPLQRELVAPTKAREELFDVPSDPHETTNLAEDPAYSGTLERFRSAVDHWQATYGDAGFTPEDDLSDQWRPSGIQPVTAPPLVEVEDGAITARSSTAGACVVWTADPPTPEGAGMATAARPRMAEETGAPLSDGRAWYIVCKATPAPPEVALWFKACRLGYADSAEIHFAPIAATNANANANANA
D1-29_022241818hypothetical proteinATGAGGGCCATTATCCTGATGTTCGACAGCCTCAACCGGCATATGCTCCCACCTTATGGCGACACCATAATTGATGCCCCCAATTTCGCCCGGCTGGCCGAGAAATCCGTCACCTTCGATAACTTCTATGCTGGATCCATGCCTTGCATGCCGGCCCGGCGCGAAATGCACACGGGCCGCTACAACTTCCTGCACCGCAGCTGGGGCCCCCTGGAACCGTTTGACGACTCCATGCCCGAAATACTGGGACAGGCCGGGATCCACACGCACCTGGTTTCAGACCACCCGCACTACTGGGAGGACGGCGGCGGCACGTATCACACGCGTTACACAACATGGGAATTCCTCCGGGGACAGGAAGGCGACCCGTGGAAGGGCGTAGTGACCCCCCGGGGCAGCGTAGGCACTGTACTGACCCGAATGCGTCGGCAGGACGCCGTCAACCGCAGCTACATGCCCACGGAGGCCGAACACCCGCAGACCAGGACGGTCGACGCCGGCATTGAGTTTATCGAGACGAACAGCGCCGCAGACGAATGGATGCTCCAGCTTGAGCTTTTCGATCCGCACGAACCCTTCTTCACCCACGACTCCTTCAAGGCAAAGTACCCCCACGAGTATTCGGGGCCGGAATTCGACTGGCCAGGCTACCAAAAGGTGGCGGAGCCCCAGGATCAGGTCAACCATGCCCGATACGAATACGCCGCGCTGGTCTCAATGTGTGACAAGTCGCTGGGCCGCGTCCTGGACGCAATGGACCAGCACGACATGTGGAAAGACACCATGCTGGTTGTCAACACAGACCACGGCTTCCTCCTGGGCGAGCATGGCTGGTGGGCCAAGTCAGTCATGCCCTGGTTCAACGAACTGGTGCATCTGCCAATGTTCCTGTGGGACCCAAGGACTGCAGAGCGGGGCACCCGTAGGGGCGCCCTTACGCAAACCATCGACATCGCACCCACCCTGCTGCGTTTCTTCGGGCACGAGCCAACCCCGGACATGCAGGGGCAGGACCTCGCCGCCGTACTCCACGACGATGCCGACGTCCATCAGGGCGTGCTGTTCGGCATCCATGGCGGGCACGTGAATGTAACTGACGGCAGGCATGTCTACATGCGGGCGGCCATAGAAGCTGCCAACGCGCCGCTGGAGGACTTCACGCTGATGCCGACCCATATGCGCTCCCGGTTCACGGTGGACGAACTTGCCAACTGGCAGCCTGCCGAACCGTTTTCGTTCACCAAGGCTCTTCGCAGCATCAAGATCCAGGCCAAGTCACTGATGAATCCATGGACCCACGGAACGCTGCTGTTCGACCTGGAAGCGGACCCCGGACAGAACACCCCCATCACCGACGACGAGGCAGAACTGCGGATGCTCCGGCTGCTGGCCGACATGATGCACGAGTCTGACGCGCCGCCCAGCCAGTTCATCCGTCTGGGAATCCCGTACGATGCAGTCCCGGGCAGGAATCATTTGCTGGTCGGCAAGCAGGCTGCCCGCGCGGCCGTCGCGTTGGAACCGTTGCCTCCGCTTTCGGACTTCCCTCATGGTGGTGCGGCGCTGGACATCCCCATCCTGGAACTCCGCCAGGACCCCCGATGCGAGGCCATTCTTGCCAGACACCTTCCGCAACTGGTATCCACCGAACTGATCAATATCCGGGCTCAGCTCAGCCTCTACCAGATGGCCAGGGTCACGCCGATTTCGAGTGCTGTGCTCACCCAGCTGGCAGAGGACCTTCGAGGCGTTCATGATATTCCCGCTGCCGGCCGGACACCCCCCGTCAATACGATGGCCGCGAGCGCAGAAACATGAMRAIILMFDSLNRHMLPPYGDTIIDAPNFARLAEKSVTFDNFYAGSMPCMPARREMHTGRYNFLHRSWGPLEPFDDSMPEILGQAGIHTHLVSDHPHYWEDGGGTYHTRYTTWEFLRGQEGDPWKGVVTPRGSVGTVLTRMRRQDAVNRSYMPTEAEHPQTRTVDAGIEFIETNSAADEWMLQLELFDPHEPFFTHDSFKAKYPHEYSGPEFDWPGYQKVAEPQDQVNHARYEYAALVSMCDKSLGRVLDAMDQHDMWKDTMLVVNTDHGFLLGEHGWWAKSVMPWFNELVHLPMFLWDPRTAERGTRRGALTQTIDIAPTLLRFFGHEPTPDMQGQDLAAVLHDDADVHQGVLFGIHGGHVNVTDGRHVYMRAAIEAANAPLEDFTLMPTHMRSRFTVDELANWQPAEPFSFTKALRSIKIQAKSLMNPWTHGTLLFDLEADPGQNTPITDDEAELRMLRLLADMMHESDAPPSQFIRLGIPYDAVPGRNHLLVGKQAARAAVALEPLPPLSDFPHGGAALDIPILELRQDPRCEAILARHLPQLVSTELINIRAQLSLYQMARVTPISSAVLTQLAEDLRGVHDIPAAGRTPPVNTMAASAETNANANANANA
D1-29_02225579hypothetical proteinATGAAGCTCGAGCACATTCTTTTGGGCGTTCTGCTGGAACATCCGAGCACCGGCTATGACCTTAAAAAGTTCCTTGATAACAGGGGACGATTCATGCGGTCCAACACCCAGATGAGCCAGGTCTACCGGTCGCTGGGGCTGATGGAGTCACAAGGACTGGTCACCCACAAGGTGGAACACAGGCCCGGGGCGCAGGATGCCAAAACATACCGGGTTACGGAAAAAGGTGCCTCAGTCTTCCTCGCCTGGTTGACCGGACCCTATACGCCACCCACCCGCTTTCAGGACCCGGAACTTAACGTTCGCCTGAGCTTCGCGGGGTTTATGGGCCGGGACCAGCTGGCCGCCTTGCTCGACGTCGAAATCCACCACCGGCAGGATGAGATCCGCCGCTACCGGCACCGGGACCGGCATGAAAATTGGGAACCATCCATCCCCTTCGACGAGGAACTGGCCGAATCCGTCAAGGAGCGGCTCCACCTGATGGGTTCTGCTGCCATGGACGCCCACGTCGCTGCGCTGACCGAACTCCGCGAGGAACTCCTCGGCACCCCGCATTCTATGGAAGGAACCCGATGAMKLEHILLGVLLEHPSTGYDLKKFLDNRGRFMRSNTQMSQVYRSLGLMESQGLVTHKVEHRPGAQDAKTYRVTEKGASVFLAWLTGPYTPPTRFQDPELNVRLSFAGFMGRDQLAALLDVEIHHRQDEIRRYRHRDRHENWEPSIPFDEELAESVKERLHLMGSAAMDAHVAALTELREELLGTPHSMEGTRPGPT0025575_76DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR|BF-CELL_DENSITY_REGULATIONCE-QSR|BF-BIOFILM-LOW_CELL_DENSITY_REGULATOR,PGPT0025575-aphA-K10917NANA
D1-29_02226966COG1262Formylglycine-generating enzymeATGGAGCCATCAGACCGCGCTGAACAATCCGGCTGCTGCGCCCCCTCCAGGGCCGCTGCCGTCACCGAGCAGCGTCAGCCGATGACCGACGTCGGTTCCGCATTCCATGACGACGTCTTACTGCCCGAGGGCACATTCCAGATGGGTGATGCCTTCGGCGAGGGATATCCCTCAGACGGTGAAGTGCCGGTTCATGAGGTCCGGGTTCCGGCGTTCCGCATGGACACGACGTCAGTGACGAACCGAATGTTCGCCAAGTTCGTGACGGAGACCGGTTACAGCACAGAGGCGGAGAAGTATGGAACTTCCGCAGTGTTCCACCTGCTGTTGAAGGCGCCATCAAAGGACGTGCTTGGGGCAGCCGAAAGAGCGCCATGGTGGCTTAACGTCCGCGGGGCGGACTGGGCGCACCCGGCTGGCGCCAGCTCCCACTGGACCGACGCGGCGGATCATCCGGTGGTTCACGTCTCCCACAATGACGCCTTGGCATACTGTTCGTGGGCTCAGCGGAGGCTTCCCACTGAAGCGGAATGGGAGTATGCGGCACGCGGAGGCCTGTCCGGAAAACGATATGCCTGGGGCAATGAACTAACGCCGGACGGAGAACACCGGTGCAATATCTGGCAGGGCACGTTCCCCCGCAGGAACACCGCGAAGGACGGGTTCCTCGGGACTGCGCCGGTTAAATCGTTCGCTCCGAACGGGTACGGCCTATATGAGACTGCGGGAAACGTCTGGGAGTGGTGCGCCGACTGGTTCCTCCCCAAGTACTATCGCAATTCACCAGTCGATAACCCGCAGGGTCCGACCATCGGCGCTGGACGGGTCATGCGAGGCGGCTCGTACCTTTGCCATGACTCCTATTGCAACAGGTACCGGGTGGCCGCCCGCACGTCCAACACCCCGGAATCCTCCAGCGGGAACTGCGGATTCCGGACCGTGTGCCTCGACGGATCAGGTGGTTAGMEPSDRAEQSGCCAPSRAAAVTEQRQPMTDVGSAFHDDVLLPEGTFQMGDAFGEGYPSDGEVPVHEVRVPAFRMDTTSVTNRMFAKFVTETGYSTEAEKYGTSAVFHLLLKAPSKDVLGAAERAPWWLNVRGADWAHPAGASSHWTDAADHPVVHVSHNDALAYCSWAQRRLPTEAEWEYAARGGLSGKRYAWGNELTPDGEHRCNIWQGTFPRRNTAKDGFLGTAPVKSFAPNGYGLYETAGNVWEWCADWFLPKYYRNSPVDNPQGPTIGAGRVMRGGSYLCHDSYCNRYRVAARTSNTPESSSGNCGFRTVCLDGSGGNANANANANA
D1-29_022271779hypothetical proteinATGACGCTAACTCCGGAAAGTCCCCTCAGCGATGTTCTGGCAAACCGGGCCGCTCGGGCAATGATCCAGAACTACCTGCCCGGCATCCTCAACTCCCCCATGCTGCATCAGCTCAAGGCGCTGCCGGTGGGCGTGGTCATCGGCCTTAACGCCGAGCTCAGCAGCCGGACTGATGAGCTCGAGAAGCTGTGGAAAGGGCTGGCCGCAGTTCCGGAAGTGGCCAGCGGCCAGTCTCCGCCAAGCGTCAGGGAAAAGCCCCGGGCAGATTACGAACCCGGGTCCGTGGCCCCCGGATCCGCTCCGTTCCGCCACGGCGGAGGCGCCGCCTGCTGGGATATGTTCGAAGTGGTCATTGATGGGCCGGAGCACGGCAACCCCTTCACTGAAGTGGAGCTGACCGCAGCCTTTGTCCACACGGATTCCGGCGCCGCCGCTTCATCAACGGGCGTTGCTGTACACCGGGTCGGTGGCTTCTATGACGGCCACGGGCTCTACAAAATCCGTTTCATGCCCGACAAACCCGGAGACTGGACCTTCCGGACCAGCTCGAATGCCCGATCCCTGGACGGGCTTGAAGGCCGCTTCCACTGCTCCGCTCCCAACCCTGGCAGCCATGGGCCGGTCAGGGTGGCTGACCAATTCCATTTCGCTCACGCTGACGGCCGCCGCTACCGTCCGATCGGCACCACCGCCTACGCCTGGACGCACCAGCCGGCAGAGGTGCAGGAGCGCACACTCCAGACATTGGCCGAGTCCCCTTTCAACAAAATCAGAATGTGCGTGTTCCCCAAGTCCTACCTGTTCAACACCAATGAACCGGACCTGTTTCCTTACGAGCGCACGGCAGACGGCTGGGATTTCACCCGGTTCAACCCCGCGTTCTTCCGGCACCTCGAGGGCCGGATCAAGCAGCTGGCCGGGCTGGGCATCGAAGCGGACCTCATCCTGTTCCACGCCTATGACCGATGGGGCTTTTCAGACATGGGCGCCTCCGCGGACGATCTCTTCGTCACCTACGTTTTGCGACGGCTGGCCGCCTTCGGCAACGTGTGGTGGTCCCTCGCCAATGAATACGACCTCCTCGGTACCAAGAGCCTGGACGACTGGGAGCGCATGGCGGAAGTCATCACTACCAATGACCCGGCCAGCCACCTTCTGTCCATCCACAACTGCTTCGGCTTTTACGACTACACCAAACCTTGGATAACCCACGCGAGCACGCAGCGGATTGATGTCTACCGCACAGCCGAGAACACTGACCAATGGCGGGAAGCCTGGGGCAAACCCGTGGTGATCGATGAATGCGCCTACGAGGGCGATATTGACCAGGGCTGGGGAAACATCACCGGCGAAGAGATGGTGCGCCGCTTCTGGGAAGGGGCGGTACGCGGCGGGTACGTCGGGCACGGTGAGACGTACCTGAATGAGACCGAGGAACTGTGGTGGTCCAAGGGCGGAAACCTGGTGGGAAGCAGCCCGGCACGGATCGGGTTCCTGGCCGGGATTCTCGCCCAGGCTCCCAACGGCGTGCTGGACCCTCTGCCGGGTGACTGGGACGCTCCCCGCGGGGGCGTCCCGGGCGTCCTCGAACTGATCTACTTTGGGTTCAACCGCCCCAGCTACCGGACTATCATGCTGCCGCCGGACACGGTGTGCACTGTGGACGTCATCGACACCTGGAACATGACAATCGAGCGCCTGGACGGGCGGCGGAGCGGAATTTTCCGCGTGGAGCTTCCCGCAAGACAATACATGGCCATCCGGTTGAATATGGTCTAAMTLTPESPLSDVLANRAARAMIQNYLPGILNSPMLHQLKALPVGVVIGLNAELSSRTDELEKLWKGLAAVPEVASGQSPPSVREKPRADYEPGSVAPGSAPFRHGGGAACWDMFEVVIDGPEHGNPFTEVELTAAFVHTDSGAAASSTGVAVHRVGGFYDGHGLYKIRFMPDKPGDWTFRTSSNARSLDGLEGRFHCSAPNPGSHGPVRVADQFHFAHADGRRYRPIGTTAYAWTHQPAEVQERTLQTLAESPFNKIRMCVFPKSYLFNTNEPDLFPYERTADGWDFTRFNPAFFRHLEGRIKQLAGLGIEADLILFHAYDRWGFSDMGASADDLFVTYVLRRLAAFGNVWWSLANEYDLLGTKSLDDWERMAEVITTNDPASHLLSIHNCFGFYDYTKPWITHASTQRIDVYRTAENTDQWREAWGKPVVIDECAYEGDIDQGWGNITGEEMVRRFWEGAVRGGYVGHGETYLNETEELWWSKGGNLVGSSPARIGFLAGILAQAPNGVLDPLPGDWDAPRGGVPGVLELIYFGFNRPSYRTIMLPPDTVCTVDVIDTWNMTIERLDGRRSGIFRVELPARQYMAIRLNMVNANANANANA
D1-29_02228861apnOD-apionate oxidoisomeraseATGTCAGCAGAAAAATTGACCGTCGCCGTCATCGGAGCCGGAGGCAAAATGGGGATGCGCGTTTCCCGGAACCTGCAGAAGAGCACCCACACCGTCTTCTACTCCGAGAACTCCCCCGCCGGCCAGGAACGCATCCAGGCCGAAGGCCGCACCATTACCTCCACCGACGAGGCCGTCAAGGGTGCCGACGTCGTGATCCTCGCCGTCCCGGACACCGCCCTTGGCGTCGTCTCCGAAGGCGTTGTTCCGCAGATGAAGGCCGGCGCAATCTTGCTCACCCTGGACCCCGCCGCCGCCTACGCGGGCCTGCTGGCCAAGCGCGACGACGTCGTCCAGGCAGTGGCCCACCCCTGCCACCCGTCCGTGTTCCTCGAGCGCACCACGAAGGAAGAATGGGCCGACACCTTCGGCGGCGAAGGCGCCCCGCAGAACGTCGTGGCCGCCATCGACGACGACGCCTCCGCGGAGACCAAGGCAGCCGCCGAGGCCGTCATCCGCACCATCTACGCCCCCGTCATCGACGTCCACTGGGTCACCGTCAAGCAACTCGCTGTCCTTGAGCCCACCTTGGTGGAAACCGTGGCCTGCATGATCGGCACCCTCCTCAACGAGGCGCTGCACGAGACGGTGCACACCGCCGGCGTCCCCGAGGACGCGGCCAAGGCCATGCTTTTCGGCCACGTCCAGATCGCCCTCACCAACGCGCTGCGCGGCTCCAACCCGTTCTCCGAGGCCTGCGAAATCGCCATCCAGTACGGCAAGGAGACCATCATCAAGGACGACTGGAAGAAGATCTTCGACGACTCCGAGCTGGACAGCGTTATCGCCAAGATGCTCAAGCTGGACGCCGTCCAACGCTGAMSAEKLTVAVIGAGGKMGMRVSRNLQKSTHTVFYSENSPAGQERIQAEGRTITSTDEAVKGADVVILAVPDTALGVVSEGVVPQMKAGAILLTLDPAAAYAGLLAKRDDVVQAVAHPCHPSVFLERTTKEEWADTFGGEGAPQNVVAAIDDDASAETKAAAEAVIRTIYAPVIDVHWVTVKQLAVLEPTLVETVACMIGTLLNEALHETVHTAGVPEDAAKAMLFGHVQIALTNALRGSNPFSEACEIAIQYGKETIIKDDWKKIFDDSELDSVIAKMLKLDAVQRPGPT0017515_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_APIOSE_CATBALIC_ENZYMES,PGPT0017515-apnO-K23245NANA
D1-29_02229825oiaC3-oxo-isoapionate decarboxylaseATGAACTCCAGCAACCGGACGGGCCAGGGCTCACGGATCGGTTTGAGCAGCTACGCCTTCTTCTGGCAGCTCTCGGACAAGGTTTCCGAACCGCTCAGCATCCACCAGGCGCTCGAGCGGACCGCCGCACTCGGTGTGGACCTTTTCCAGGTCTGCGACTACGCCCCGCTGGAAGCCATGACGGAATCCGAACTGGAAACCGTCCGGGCCACAGCTGACCGGCTGGGCGTCTCCTTGGAGCTCGGCACCAAAGGCATCCGCCCCGAGCACCTGCGGAAGTTCCTGCGTATTGCCCGCATCCTGGGCTCGCCCCTGCTGCGGACCATGTTCAACGTCCCCGGACACACCCCCACCGCGGAGGAAGCCGTGGCGATCTTCAAAGACGTCCTGCCTGATTTCGAGGCCACCGGAGTGAAGATCGCGGTGGAAACCTACGAGCAGGTGCCCACCTCCCGGATCCTGGACGTGATCCACGGAGTGGACAGCCCCTACCTGGGCATCTGCAGCGACCCGGCCAACACGGTCGCTGCGCTGGAAATGCCGCGCGAGGTGATTGACGCCGTCGCGCCCTACGTCCTGAACATGCACATCAAGGACTTCGCTTTCAGCCGCAAGGACGGGTGGGTCGGATTTACCTATGCCGGCGCACCGCTCGGCGAAGGCCTGCTCGACTACGACTACATGGTCAGCAAGTTCCAGCCCCACCAAAGAAACATCAACCAGATCGTCGAACACTGGCTGCCGTGGCAGGACTCCGAGGCGGAAACCATCCGGCTCGAAAACCAGTGGACCCAACACAGCATCGAATTCCTAAGGAGCAAGTGAMNSSNRTGQGSRIGLSSYAFFWQLSDKVSEPLSIHQALERTAALGVDLFQVCDYAPLEAMTESELETVRATADRLGVSLELGTKGIRPEHLRKFLRIARILGSPLLRTMFNVPGHTPTAEEAVAIFKDVLPDFEATGVKIAVETYEQVPTSRILDVIHGVDSPYLGICSDPANTVAALEMPREVIDAVAPYVLNMHIKDFAFSRKDGWVGFTYAGAPLGEGLLDYDYMVSKFQPHQRNINQIVEHWLPWQDSEAETIRLENQWTQHSIEFLRSKPGPT0017510_132DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_APIOSE_METABOLISM,PGPT0017510-oiaC-K23248NANA
D1-29_02230813lerICOG0149L-erythrulose-1-phosphate isomeraseGTGTCACTTCCTGCTAACCCCGCCGCACAACCGAAGGCCATCATCGGGGTCAGCCTCAAGATGTACTTCGGCTACCAGCGCTCCGTGGACTACTGCCGCGACGTTGCCGCCATCGCCTTGGGGCACCCGGCGGTCCAGAGCGGTGACATAGAACTCTTGGTTCTGCCCACCCTGCCCGCCTTGCCCGAGGCCGCCCGGATCCTGGGCTCAGCGGGAGCAGCCGCCGGTGCCCAGGACATCTTCTGGGAAGACGAAGGCGCGTTCACCGGTGAAGTCGGCGGCAGGACCGTGGCTGAACTAGGCGGCCGCTACGCCGAAGTGGGCCACGCCGAACGCCGCCGCATCTTCGGCGAGGACGAGTCGATCATCGGGCTGAAGACGGCCGCTGCCTACCGCAACGGCCTCACCCCCATCCTGTGCGTCGGGGAACTGCAGCAGGCATCCGTGGAGGCAGCCATCGCCCTGTGCACGGCCGAGATCGACGGCGCACTGAACCGCGCGCAGTCCCTTGCACCCACCGGCCGGACCATCGTGGCCTACGAGCCCCAGTGGGCCATCGGCGCCCCCGAACCCGCGACGCCGGAGTACATCAGCGCCGTTATCACCGGGCTGGACGCGCACCTGCGCGCCTTGCCCGGCCAGGCGGACAGCCGCGTCATTTACGGCGGCAGCGCCGGCCCCGGCCTCATCACCAAACTGGACTCCGCCGTCGCCGGCCTGTTCCTGGGCCGCTTCGCGCACGATCCGAAAGCGCTGAAGACCTTCCTGGACGAGACGGCCGCCCGGCTCGCCGCAGCCGAGGTGACAGTATGAMSLPANPAAQPKAIIGVSLKMYFGYQRSVDYCRDVAAIALGHPAVQSGDIELLVLPTLPALPEAARILGSAGAAAGAQDIFWEDEGAFTGEVGGRTVAELGGRYAEVGHAERRRIFGEDESIIGLKTAAAYRNGLTPILCVGELQQASVEAAIALCTAEIDGALNRAQSLAPTGRTIVAYEPQWAIGAPEPATPEYISAVITGLDAHLRALPGQADSRVIYGGSAGPGLITKLDSAVAGLFLGRFAHDPKALKTFLDETAARLAAAEVTVPGPT0018375_20DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0018375-eryH|lerI-K21910NANA
D1-29_02231471derI1COG0698D-erythrulose-4-phosphate isomerase 1ATGAGCGCCAAACTGCGCCTGATCGTTGGAGCTGACGACGCCGGTTTCGAGTACAAGGAAGCCTTGAAGGCTGACCTTGAAGCGTCCGAACTGGTCGAATCCGTAACCGACGTAGGGGTGGATGCCACCAGCCACACCCCCTACCCGTCCGTAGCCATCGCCGCCGCTGAACTCATCGCCGCCGGCAAGGCCGACCGCGCCCTGCTGGTATGCGGCACCGGGCTCGGCGTGGCCATCGCCGCCAACAAGGTTCCCGGCATCCGGGCCGTCACCGCGCACGACTCCTTCTCAGTGGAACGCTCCGTCCTGAGCAACAACGCCCAAGTCCTCACGTTCGGCCAGCGCGTCGTCGGCCTGGAACTGGCCCGACGGCTCGCCAAGGAATGGCTCACCTACACCTTCGATGAGACGTCCGCCTCGGCCGAAAAAGTCTCCCTGATTAAGGACTATGAAGGTGTCACTTCCTGCTAAMSAKLRLIVGADDAGFEYKEALKADLEASELVESVTDVGVDATSHTPYPSVAIAAAELIAAGKADRALLVCGTGLGVAIAANKVPGIRAVTAHDSFSVERSVLSNNAQVLTFGQRVVGLELARRLAKEWLTYTFDETSASAEKVSLIKDYEGVTSCPGPT0017395_936DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808NANA
D1-29_022321773lerKCOG2376L-erythrulose kinaseATGACCCGCCTGTTCAACGAACCCGCAGCCTTCGCTGACGAGATGATCGAAGGTTTTGTCGCCTCCCACGGACGCTGGGTAAAACGTGTCTCCGGCGGCGTGGTCCGCAACACCAGGAGCACACCGGAAACCGTGGCGCTCGTGATCGGCGGCGGCTCCGGCCACTACCCCGCCTTCGCCGGTCTGGTGGGCCAGGGGCTGGCTCACGGCGCGGCGATGGGCAACCTTTTCGCATCCCCATCCGCCCAGCAGGTCTACAACGTGGCGAAGGCCGCCAACAACGGCGGCGGCGTGCTCCTGGGATACGGCAACTACGCCGGCGACGTCCTGCACTTCAACCAGGCCCAGGACCGCCTCCGCAAGGAAGGCATTGACTGCCGCAGCATCGCCGTTACCGACGACGTCTCTTCTGCCCCGCTCGCCGAGCGCGCGAAACGCCGCGGCATTGCCGGTGACCTCACAGTATTCAAAGTCGCCGCCGGCGCCGCTGAAGCCGGCTACTCCCTGGATGCCACTGCCGATATCGCCGAGCGGGCCAATGACCGTACACGTTCCTTCGGTGTCGCCTTCACCGGCTGCACCCTGCCGGGCGCCAACCATCCGCTGTTCTCCGTCCCGGAGGGGCGCATGGCGGTGGGTATGGGCATCCACGGCGAACCCGGAATCGACGAAACGGAGATCCCGACGGCGGATGGGCTCGCCGAGCTTCTGGTCGCCAAGCTCCTCACCGAAGTCCCCGAGGGCGTGGCGCCGCCGCGCGACACCAACAAACGTGCCCGGGTAGTCCCCATCCTCAACGGCCTGGGCAGCGTCAAGTACGAGGAGCTCTTTGTGGTCTACCGCCGCGTCGCACAGCTCCTGGCCGAAGCCGGCCTGGAAGCGGTGGACCCGCAGGTGGGCGAACTCGTCACCAGCTTCGACATGGCAGGCACTTCCCTGACCCTCTTCTGGCTCGACGACGAACTCGAGACCCTCTGGAACGCACCCGCCGACGCGCCCGCGTTCCGCCGCGGCGCCGTCACCGCTGAGGCCCTCGAAGCAGGTTTTCCCGACCTTAGCCAAGCGGAGGTCTCCATCCCGGAAGCAACGCCGGAGTCCCGGGCCGGCGCCGCCCGTGTCCTCACCGCCCTTGGCGCCGCCAAAGCCGTGGTGGACGCCAACGCCGACGAACTGGGCCGGATCGATGCGATCGCCGGCGACGGCGACCACGGCATCGGCATGGAACGCGGCGTGCGCGCCGCCGTCGAAGCCGCAACCAACGCCGTCGAACGCGGGGCGGGTGCCGCCACCACTCTGTATTTCGCCGCAGACGCCTGGGCCGACAAAGCCGGCGGCACCTCCGGCGCCCTGTGGGGCATGGCCCTGCGGGCGGTGGGGGATGCCGTGGGAGACAGCCAAGCGCCCGACGCCGCCGCTTTCTCCGCGGGAGTGGCAGGTGCCGCGGCCGCGATTATGGACTTCGGCAAAGCCAAGCCCGGCGACAAGACCCTGGTGGACGTCCTGGTCCCGTTCCGCGATGCCCTGGCATCCGGCGTCGAGGCCGGCAAGTCCCTCACCGATGCCTGGGGCGCCGCCGCCTCGGCCGCAGAGCAGGCCGCCGAAGACACCGCCCAACTGCTGCCCCTCATGGGCCGCGCCCGCCCGCACGCCGAGAAGAGCCTGGGCACCCCAGATGCGGGCGCCGTGTCCATGGCCCTGATCATCCGAGCCATCCACAACACGCTCACCGACTCGAAAGCCGCTGAGCGGACCCCCATTAAGGAGAAAGCATGAMTRLFNEPAAFADEMIEGFVASHGRWVKRVSGGVVRNTRSTPETVALVIGGGSGHYPAFAGLVGQGLAHGAAMGNLFASPSAQQVYNVAKAANNGGGVLLGYGNYAGDVLHFNQAQDRLRKEGIDCRSIAVTDDVSSAPLAERAKRRGIAGDLTVFKVAAGAAEAGYSLDATADIAERANDRTRSFGVAFTGCTLPGANHPLFSVPEGRMAVGMGIHGEPGIDETEIPTADGLAELLVAKLLTEVPEGVAPPRDTNKRARVVPILNGLGSVKYEELFVVYRRVAQLLAEAGLEAVDPQVGELVTSFDMAGTSLTLFWLDDELETLWNAPADAPAFRRGAVTAEALEAGFPDLSQAEVSIPEATPESRAGAARVLTALGAAKAVVDANADELGRIDAIAGDGDHGIGMERGVRAAVEAATNAVERGAGAATTLYFAADAWADKAGGTSGALWGMALRAVGDAVGDSQAPDAAAFSAGVAGAAAAIMDFGKAKPGDKTLVDVLVPFRDALASGVEAGKSLTDAWGAAASAAEQAAEDTAQLLPLMGRARPHAEKSLGTPDAGAVSMALIIRAIHNTLTDSKAAERTPIKEKAPGPT0018355_10DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0018355-derK-K20902NANA
D1-29_022331365ttuBPutative tartrate transporterGTGGACACCACACAATTGGTGGTCGAAAAATCTGCAATCAGGAAAGTGGCGATCAGGCTTGTCCCTTTCGTGGCCCTGATGTTCTTCATCAACTATCTGGACCGTACGGCGATCTCCTTTGCCGGCCCCAACGGCATGAACGCCGACCTGGCCCTCTCCGCGGCGCAGTTCGGCTTCGCCTCGGGCGTCTTCTTCATCGGCTACATCCTGCTGGAGGTCCCCAGCAACCTGGCCCTGCACAAGTTCGGCGCCCGCCGCTGGCTCGCCCGCATCATGGTCAGCTGGGGCATCGTTTCCCTGCTCTTTACCTGGGTGGGGAACGTGGAGCAGCTCTACATCCTGCGGTTCATCCTGGGTGTGGCTGAGGCCGGCTTCTTCCCCGGCGCCATCCTCTTCCTGAGCCTCTGGGTCCCATCGCGGCACCGTAGCAAGATCCTTGCCCTCTTCTACCTGGCACAGCCGCTGACCACTGTGATCGGTGCCCCGTTTGCGGGCCTCCTCATCCAGCAGGACGGCCTCTTCGGCCTTGAGGGTTGGCGGGTCATGTTCTTCGGCGTTGCGCTCCCCGCCATCATCGTCGGCATCATCGCGTGGTTCTACCTGGCCGACTCCCCCGCAAAGGCCAAATGGCTGACCCAGGAAGAAAAGACCTGGCTGACAGGCGCCCTTGAGAAGGAAAAGAACGAAACCGTTTCCAGCAACAAGCACGTCAGCGTCCGGACGGTGTTCGGCAACGGCCGTGTCTGGATGCTCTCCGCCATCTACTTCGGCTTCATCTACGGCCTCTACGCACTCGGGTTCTTCCTGCCAACCATCATTGCCGGCTTCGAAGGCATCTACGGCACGAAGTTCGACGTGTTCCAGAAGGGCCTGATCACCGCGATCCCGTACCTGCCGGCAGCATTTGCCCTGTATTTCTGGTCAAAGGACGCCACCAAGCGAGGCGTGAAGACCTGGCACATTGCCCTTCCCGCCCTGACGGGCGCCCTCAGCATCCCGCTGGCCCTGTTCGCCAGTTCACCGGCCGCTACGATCGCCGTCATCACCATCACCGCAATGTCCATCTTCGCGGCGTTGCCCAACTTCTGGACGGTGCCCACCCAGTTCCTGACCGGTGCGGCAGCAGCGGCAGGCATCGCCCTGATCAACACTGTGGGCAACCTGGCCGGCTTCAGCGCAGGCTACATCACGGGCTGGCTCAAGGACCTCACCGGCAGTTACACGGTGCCGATGTTCGTCGTCGGCGGCTTCATGCTCCTGTCCTCCATCCTCATGGTCACGCTGAGCCGGGCCGGCAAGGTCAACGAGGGTGTACCTGCTGAAGCGCTGGACCCCGCCGGCGCAGGACACCACGCCGAGCCGTAAMDTTQLVVEKSAIRKVAIRLVPFVALMFFINYLDRTAISFAGPNGMNADLALSAAQFGFASGVFFIGYILLEVPSNLALHKFGARRWLARIMVSWGIVSLLFTWVGNVEQLYILRFILGVAEAGFFPGAILFLSLWVPSRHRSKILALFYLAQPLTTVIGAPFAGLLIQQDGLFGLEGWRVMFFGVALPAIIVGIIAWFYLADSPAKAKWLTQEEKTWLTGALEKEKNETVSSNKHVSVRTVFGNGRVWMLSAIYFGFIYGLYALGFFLPTIIAGFEGIYGTKFDVFQKGLITAIPYLPAAFALYFWSKDATKRGVKTWHIALPALTGALSIPLALFASSPAATIAVITITAMSIFAALPNFWTVPTQFLTGAAAAAGIALINTVGNLAGFSAGYITGWLKDLTGSYTVPMFVVGGFMLLSSILMVTLSRAGKVNEGVPAEALDPAGAGHHAEPPGPT0002325_143DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-29_02234837nanR_1HTH-type transcriptional repressor NanRATGAAATTGGTCAACCGGTTGACGTGTGCAGGTCCTTTTGGATGTCCTGTCGTCGAGGCGCCGGGCGCCGCGGCCCGTTGTTACGCTTGGGATGTGTCCATAAACTCAGCCGCGTCGGCGGCCAAGATCAGCGAGGCCCTCGGTTCAGTGGGTCAGGGGTCCGTTGTGTCCGAGGTCGCCGAGCGCCTGCTGGCCTACTTCACCAGCGGTGATATCGCCGTCGGGACCAGGCTCCCGGCAGAGCGCCAGCTCGCCGCGTCACTGGGAGTGGGCAGGTCTGCCGTGCGCGAAGCCCTCGCGGCCCTGGAAATCTTGGGCATCGTGATTGTCCGTCCGGGATCCGGCACGTATCTCCGTGACGGCATCTCCGAACTCCTGCCCCGCACGTTGAGCTGGGGCCTGATGCTTGGGGCGCCTCGAACCCGCGAGTTGGTGGAACTTCGGAGCGGCCTCGAAGTCCAGGCCGCACAGCTCGCCGCCGACCGCATCACCGATGAATCGCTGGAGCGCATGCGTGGGAACCTCGCCAGCATGGCCGAAACACTGGATGATCTGGCAGCGTTCGTCGAAGCGGACGCATTGTTCCACCGTGAGATTGCTGAAGCCTCGGGAAATCAGGTCCTGCAGGAACTGCTGCAGAGCATCCGGTCCCTGCTTCGGATCTGGGTGGACCGCGCTTTGACCGATGAAGGCCATGCCGCCGCCGCCCTCAAGGAGCACTCGGAAATTTTTGCAGCTTTGGAGGCGCGTGACCTGGAAGCCGTTACCAGGACCATGCGTTCGCACATGGAGACTGCGTCCCGCCGCCTTCTTGCCGGCTTTGATGCTTCGCAATAGMKLVNRLTCAGPFGCPVVEAPGAAARCYAWDVSINSAASAAKISEALGSVGQGSVVSEVAERLLAYFTSGDIAVGTRLPAERQLAASLGVGRSAVREALAALEILGIVIVRPGSGTYLRDGISELLPRTLSWGLMLGAPRTRELVELRSGLEVQAAQLAADRITDESLERMRGNLASMAETLDDLAAFVEADALFHREIAEASGNQVLQELLQSIRSLLRIWVDRALTDEGHAAAALKEHSEIFAALEARDLEAVTRTMRSHMETASRRLLAGFDASQNANANANANA
D1-29_022351908apnL_2D-apionate lactonaseGTGTCTGTCCAGCCCCCGAACAACCAACCACAAATCCCGTCTTCCCTCCGCGCCCGCCTTGCGCCGCCGGTACGGCTCCTGGCCGCCGGGCCGTGGTCTGCCCGGCTTGTAGGCGACGAACTGGCCCATCTCAGCTATGCGGGCCGGCCTGTACTGCGGGCTGTCAAGGCCGTGGTCCGCGACCAGGACTGGCGGACACCCCAACCTTCCGTCGCCACTGTGAATGTCACCCAGGGCGACGACGGGCTGCATGCGCGCTGGACAGTAAAGTATGCCGGTTATGGCGTGGAGTACGACGGCGTCCTGATGGCAACCTTTACCCCCGCCGCGGTGGAGATTACCTTCGAAGGCACTGCAGCCCACGCCTTCTGCAGAAACCGGATTGGGCTGGTGGTGCTCCATCCGCCGGCAGATGCGGGGCGGGACGTTGCTGTGGAGCATACGGGCGGCGACATCACGGCCGCACAATTCCCGCGGGACATCAGTCCGCACCAGCCCTTCATGGACATCGCTGCCCTGGAATGGGCCGACGCGGGCACCTCTTTCCGGCTTTCGTTCACCGGTGACATCTTTGAGACCGAGGACCAGCGGAACTGGACGGATGCCTCCTTCAAGACCTACTGCACGCCGCTGGAGCTGCCCTTTCCGGTGGATGTCGCGGCGGGGGACACCGTCCGGCAGTCCGTGCTCTTGGAGGCGGCGACCTTCGAGCCACAGGAAGCGGTGGAGATAGCGGCCGCGGGAACGTTGCGCGGCGTGCCCGATGACTTCCGCCGGTTCCGTGCCAGTGTGGGGGGTATCGTCGGCCAGGTTCCAGCCCTCGCCGTTGTGGCGGGGCAGTCCCCGGAAATACTCGCGCCGATCCCAGGCCTGGACGCCCTCGTGGTGGAACTCGTTGAGCAGCACGGTGATGCCCCTCGCTCCGGTTGGGGCGCCGAACTTGAGGCAGCCGCAGCTGCCGCTGCCCTCCACCCGGCCGCTCTGGACATCCGGGCAGTGACCCCGGACCCCGTCGGCGCCGTGGCGGACCTCGCACCCTACCTTCCCGATGCGAAGCGACTCGCGGTCTTCCACCCGGGCAGCCACCTCACGGAACCTGATGGCTGGCAGGAAGTCAGGGCAGCGGCGCAAACGGCCGGCTTCAGGGGTGGGCTACTGGCGGGCGTCCGGTCCCACTTCACGGAACTGAACCGCAACAGCGGCCGCACGCCGTCGGACTCCGACGCCCTCACGTTCAGCATCACGCCCCAGATGCACAGCACCGAAACTGCGCACATCATCGACAGCGTGCCCGTGCACCGGCTCGTTGCCCGGAACGCGCTGCGCCTGGGCGGTGGCCGGCCGCTCCATGTGGGGCCGGTGACGCTCCTGCCGCGCTTCAACGCGGTGGCGACGTCGGGCGATGGCGGCGAGGCGGAGGCCGACGAACTCCAAACCCACCCGTTCACTGCCGCCTGGACCCTTGCCAGCATCGGGGCGCTGACCATGGACGGTGTTGCGTGCATCAGCTACTTCGAGGCGTCCGGTCCGAGGGGCATCTGCGACCACGAGGGCCGGCTGAACCCTGCGGGCGAGCTCCTGAAGGAACTCGCTGCCCTCAGGGGCAACCCTGTCCTTGCGGTTGACGTACCGGCTGCCCCACCGACCGCGGACACTGCGGTGACTTTGTATGCCGTTCAGTCTCCGGGTGGCCTGATGATTTTCGCGGCCAACCTCTCCGGGGCAGCGGCTGAGATTGACCTCCAGTTGCCTGGGTCCGTCACTGCTGGTGCAAGTGAGTGCACGGCCTTCGGGCCCGGCGCCGGCTCCGTCATCACCTTCGATATCCAGGACGACGGCCCCCCGCGCGGACTGCTGACGCTCGGACCCTGGTCCGCCGGCGTCGTGCGTTTTCCGGCACCCAGCTGAMSVQPPNNQPQIPSSLRARLAPPVRLLAAGPWSARLVGDELAHLSYAGRPVLRAVKAVVRDQDWRTPQPSVATVNVTQGDDGLHARWTVKYAGYGVEYDGVLMATFTPAAVEITFEGTAAHAFCRNRIGLVVLHPPADAGRDVAVEHTGGDITAAQFPRDISPHQPFMDIAALEWADAGTSFRLSFTGDIFETEDQRNWTDASFKTYCTPLELPFPVDVAAGDTVRQSVLLEAATFEPQEAVEIAAAGTLRGVPDDFRRFRASVGGIVGQVPALAVVAGQSPEILAPIPGLDALVVELVEQHGDAPRSGWGAELEAAAAAAALHPAALDIRAVTPDPVGAVADLAPYLPDAKRLAVFHPGSHLTEPDGWQEVRAAAQTAGFRGGLLAGVRSHFTELNRNSGRTPSDSDALTFSITPQMHSTETAHIIDSVPVHRLVARNALRLGGGRPLHVGPVTLLPRFNAVATSGDGGEAEADELQTHPFTAAWTLASIGALTMDGVACISYFEASGPRGICDHEGRLNPAGELLKELAALRGNPVLAVDVPAAPPTADTAVTLYAVQSPGGLMIFAANLSGAAAEIDLQLPGSVTAGASECTAFGPGAGSVITFDIQDDGPPRGLLTLGPWSAGVVRFPAPSPGPT0019151_27DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_APIOSE_CATBALIC_ENZYMES,PGPT0019151-apnL-K23246NANA
D1-29_02236756bacC_5Dihydroanticapsin 7-dehydrogenaseATGGGTCTGCGTCTTGAAGGAAAAACTGCCCTGGTCACCGGAGCGGGTTCGGGGATCGGCCTCGCCGTTGCCCTGCGGTTCCTCGCCGAAGGGGCCGTTGTCTACTTCGCGGACATCAATGTGGAGGCTGCCGAAAAAGCCGCGGTGGCCACCGGGTCTGCCGGCGCCAGGTCCCTGCGTATGGACATCTCGGATGAAGAGAGCGTGGCCGCCGCGTACGCAGCCGTGGCCGAGGCCGGACACCTTGACGTGGTGGTGGCGAACGCCGGTGTGCAGCTCTTCGGGCAGGACGCCAAAGTGGGCGACCTGGAACTCGCGGTCTGGGAGAAAACAGTGAGCATCAACCAGCGTGGTACGTTCCTGACCCTCAAGCACGCCGTCCGGGCCTTGGAGGGGCGCGGTGGATCGATCATCTGCACCGGCAGCCCCACGGCCGTTGTGGCCTGCGGCCAGACGTTCACCGCCTACACCAGCTCGAAGGCAGGTGTGCATGGTTTGGCCCGGGTGGTTGCGGCCGATTATGCCCACTCAGGAATCCGCGTCAACATCGTGGTCCCTGGCTACACGGAAACCCCGCTGGTCCAGGCCATCGCGGATGACCCCGTCAGCCGCGCCGGCCTGGTGAATTCCACCATGCTGGGGCGTCCCGGGACGGCGGCCGACGTCGAGGGAATCATGGTGTTCCTCGCCAGCGACGACTCCTCCTACGCCACCGGGGGCATCTTCACCGTGGACGGTGGCCTGACGGCCCTGTAGMGLRLEGKTALVTGAGSGIGLAVALRFLAEGAVVYFADINVEAAEKAAVATGSAGARSLRMDISDEESVAAAYAAVAEAGHLDVVVANAGVQLFGQDAKVGDLELAVWEKTVSINQRGTFLTLKHAVRALEGRGGSIICTGSPTAVVACGQTFTAYTSSKAGVHGLARVVAADYAHSGIRVNIVVPGYTETPLVQAIADDPVSRAGLVNSTMLGRPGTAADVEGIMVFLASDDSSYATGGIFTVDGGLTALNANANANANA
D1-29_02237855menH_22-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGTTGCCTTCTGATAGGTTCATCGCTGTGAAGACGATGATGTTTGGCACTGGTAACGATGTTCAACTCGAAATGCTTGCCGCTGTTCCTGCTGGTCCGGCCGGGCTCCGTCCTGCGCTGCTCCTTGTGCATGGGCTCGGCCATGACGCCGCATGCTGGCGCAACTGGATGCAAGCGGCTTCCGCTGACGGCTATGCGGCTTACGCGATCTCCCTCAGAGGTCACGGCGCGAGTGGAGGAAGCCTGCGCTCGGCGTGGCTGAAGGACTATGTTGCTGATGTCCTTCGTGCAGTCGAAGCTGTCGATGCTAATGAGCTCGTCCTGATTGGGCACTCACTTGGTGGCTTGGTCGTGCAGCGGGTGTTGGCACTGAAGCCGGCAAAGGTAAGCGCGGGCGTGCTCGTTGGCTCTATCACTTCCGGTCCGGCCTTCGGGACGGTCATATCGGTGCTGCGACACCATCCTTGGCAAGCGATGCGGTTTCTCGCGGGTCGAAGCCTTCGGCTGCCACCAGGCATGCTGTTCGAGCGGATGGGCACTGAGGAGGCGGCGGAGGTTTCCCGATCGCTTTGTGGCGGGTCACCCTGGATCCAGTACCAGCTGCTTTTCCACCTGCCGTCGAGGATGTCTGCATATCCGCTCCTCTCCGTCTACAGCAAGCACGACCGAATGGTGCCCGTGCGGTCAGCGCGCGCAACCGCACGACGCTATGGTGCCGACATGCGGGAGATCGCCGGGATCGGGCACGACATGATGCTCGACGGCGGCTGGGAACACCCCTGGAGCGTGATCAGTCACTGGTTGAAGGCGCTGCGGATCGAAGCCTTCTCCCGTGAAGGAAAGCAAATCGGTTGAMLPSDRFIAVKTMMFGTGNDVQLEMLAAVPAGPAGLRPALLLVHGLGHDAACWRNWMQAASADGYAAYAISLRGHGASGGSLRSAWLKDYVADVLRAVEAVDANELVLIGHSLGGLVVQRVLALKPAKVSAGVLVGSITSGPAFGTVISVLRHHPWQAMRFLAGRSLRLPPGMLFERMGTEEAAEVSRSLCGGSPWIQYQLLFHLPSRMSAYPLLSVYSKHDRMVPVRSARATARRYGADMREIAGIGHDMMLDGGWEHPWSVISHWLKALRIEAFSREGKQIGNANANANANA
D1-29_022381467mhbT3-hydroxybenzoate transporter MhbTGTGCCCAGGATTCACCAGCACTACGAGCTATGCATCGGCTCACGCATGCCAATGACGGCTTGCATCAGAAAGGCGAACAACATGGCAATTGCCAACGAGGCGTCAAAGACGACCGACCTCCGGACCTCGGCTTCCCCCCGCTTGACCGTTCAGGAATTACTCAATCAGGCGCCGCTGGGCAACAGGCGGCGCGTGATCATCCTTCTCGGGTTCCTGACCATGACCCTGGAGGGAGTTGAAATCGGCCTGTGGGGATTCATCTACCCCCAAATAGTCACCCAGTGGGGTACGTCGCTGGCAACAGTGACAACCATGGTCACATTGGGAGTTGTTGGGCTCACCGTCGGTTCGATGGTTGCCGGCCCGCTGTCTGACCAGATTGGCCGCAGGCTCCCGATCATCGTGGGCACGGCAGGGTTCGGGCTCGCCACCTTAGGCGGCGCCCTGGCACCAAACGACCTGACATTAGGAATCTTCCGGGTAGTGGCGTGCCTGTTCCTGGGAGCCGTGATGCCCCTGGTCATCACGCTCGTGGCCGAGTTCGCACCTGAAAAGCGGAAGGCCGCCATTGTGGCGATCACGTTCACCGGATTCCCGCTGGGGACGGTCATCACCGGCTTCCTGGCATCAACCATCATTCCCACCCTGGGCTGGCAGTGGCTGCTCGGGACCGGAACTGTCCTCGCCTTGATCCTGCTGCCCGCACTGGTGTGGGGCCTGCCAGAATCCACCGTATTCATGATTCGACGGGGAGGCCGGACAGAAAACGTCACGAAGGTACTGGGCGCCATCATTCCCGGGTTCGACATGAAGACGGTGGACCTCACAGGAGCAGCACCTGCAGACGGTGCCAAGCCGGTTGGAGGAGTCAGGGCGGTGCTGTCCAGAAAACTTGTGGTGGTGTCGCTGCTGATCTGGCTTTGCTACTTCATCTGCGCCGCAGTGGTCTACATGTTCCTGAACTACCTGCCGCTCATCGTCAAGCAACTCAACATCGACGCCGCGGGCACGGGCAATGTGGTGTCGATGTTCGGCCTCGGCGGTGTGATTGGAGCTTTGGCCATCGGTTTTGCCATGGAGAAGCTGGGCAAATATGTTTCCCTCGGCGCCGCTTTCACGCTGGCCGCCGGAGCGGCTTGGATCCTGGCGTCAGTCAACCTGACCTTGCCACTGCTGCTTGTCCTGGGCTTCACCATAGGCGTGGTGCTGGTGGGAGCCAATAGCGGCATGAACGCACTGAGCACATCGGTCTTCCCCACAGAAGCGCGCGCCACCGGTGTGTCATGGATGCACAGCTTCGGCAAGGCCGGTTCCATCGTCAGTGGTGTGCTGGGTGGCGTGATGCTGGGCGCAGGATGGGGCGTCGACCAGATCTTCTTCGCCCTGGCCATTCCGCTCCTGGCGGGAGCTGCGGCCGTGGCTGCAGTCAGGGCGATGACCACACGGCGTTCACGCACAGCTGCATAGMPRIHQHYELCIGSRMPMTACIRKANNMAIANEASKTTDLRTSASPRLTVQELLNQAPLGNRRRVIILLGFLTMTLEGVEIGLWGFIYPQIVTQWGTSLATVTTMVTLGVVGLTVGSMVAGPLSDQIGRRLPIIVGTAGFGLATLGGALAPNDLTLGIFRVVACLFLGAVMPLVITLVAEFAPEKRKAAIVAITFTGFPLGTVITGFLASTIIPTLGWQWLLGTGTVLALILLPALVWGLPESTVFMIRRGGRTENVTKVLGAIIPGFDMKTVDLTGAAPADGAKPVGGVRAVLSRKLVVVSLLIWLCYFICAAVVYMFLNYLPLIVKQLNIDAAGTGNVVSMFGLGGVIGALAIGFAMEKLGKYVSLGAAFTLAAGAAWILASVNLTLPLLLVLGFTIGVVLVGANSGMNALSTSVFPTEARATGVSWMHSFGKAGSIVSGVLGGVMLGAGWGVDQIFFALAIPLLAGAAAVAAVRAMTTRRSRTAANANANANANA
D1-29_02239633hypothetical proteinATGGCTGGATTTGTAACACTCGGAGTGTATGGAGTCTCACAAGCACAAAGGCAGGATCCGCGCGGCGTCATCGTTCTTGTCCTGCTGGTGTGCGGACTCGTACTGATACTGACCCTTGCTTTACGGCAATATCGCAACATCCGAAACGGCCGCCGGATGTTGGCAGGAAAATCGTTCCGTGCGTACACCTTTCATACTTCTGCCGATGCAGAGTACGGACACGCACCCGCGACTGTCTGGGAGCTGATCCGACCTGCCGAGGCTGCCATCCTCCTCGATGGCGCTGCCAAGGCATTCACAGTCCCGGGCACCCCAGGCGGGGAAGGCGAGTTGCAATGCTTTATTTCAGCAGAGGGTCAGGTTTCGGCCATCGAAATTCTCAGCGAGGACGCTGGCCGTTCCGCCGTGACTAGGGCGGTCAATTCTTCCGAATACGCATCGGTTGAGACCCGCTACACCCTCGAACCCATCACGGCTGGTTGCCGGCTCACCATGGAAGTTCTTTATGAGTCCCCCGTTCCAATGCCCTCTGCACAGAAGCACGCGATCCGGGCGCATAGCCGAGGGTTTCTGGAAAAAGTACGGCATTTGCTGGACACGCAATCTGCGCAGAAGATCGAACAGGGCCTCTAAMAGFVTLGVYGVSQAQRQDPRGVIVLVLLVCGLVLILTLALRQYRNIRNGRRMLAGKSFRAYTFHTSADAEYGHAPATVWELIRPAEAAILLDGAAKAFTVPGTPGGEGELQCFISAEGQVSAIEILSEDAGRSAVTRAVNSSEYASVETRYTLEPITAGCRLTMEVLYESPVPMPSAQKHAIRAHSRGFLEKVRHLLDTQSAQKIEQGLNANANANANA
D1-29_02240975pip_2Proline iminopeptidaseGTGCCTTACCCGATCCCAGAGCCTTACGACGCCGGAATGCTCGATACGGGCGACGGCCACCGGATCTATTGGGAGGTTTGCGGAAACCCGCAGGGCAAGCCGGCCGTCGTCCTCCACGGTGGTCCGGGGTCCGGGGCTGCCCCGTGGTGGCGTCAGTACTTCGACCCGGACCGCTATCGTGTTGTCCTGTTCGATCAGAGAAGCTGTGGCCGCAGCCTGCCGAACGCCTGCGACGACCTTGCCGGTCTTGAAAATAACACGACCGCCCACCTGCTGACAGATATGGAGCAGCTGCGCGAGCACCTTGGCATCGATCAATGGCTGCTCTTCGGCGCCTCATGGGGATCGACCCTTGGCCTGGCCTACGCGGTGGAACATCCGCACCGTGTCTCGGAGCTCGTGCTCTGGGCGGTGGTGACCACCAGGGCGAGCGACGTGGCTTGGCTGACGCACACCATGGGGCAGATCTATCCGCAGGAGTACGACGAATTGCTGGCAGCCGTGCCCGCTGCTCAGCGGGACGGCAACATCACGGCGGCCCTCCAGGAGCTGCTTCGTTCAAGCGATCCGGACGTGAGTGGGCCTGCCGCTCTTGCCTGGTGCAAGTGGGAGGACCGCCTGGCCACCCTCAGTGGTCCGGTTCAGCCGAGCGCACGTTTCCGGGATCCGCGGCAGCGTCTTGGCTTCGCCAGGCTGGTCACGCACTACTTCGGCAACCACGCTTTCCTCGATGACGATGCGATCACCGGCCGCCTGGACCGGCTGAGCAACGTTCCAGCGTACTTTTTGAGGGGGCGGCTGGATATAGCGTCACCATTGAGAAGCGCCTACGAGGTTGCTGGCAGACTGCCGCTCGCAACGCTTGAGGTGGTGGAGGCTGACGCACACGGCGGTGGCGACAACACCCAGGCCAGGCTCGTCGAGGTGCTGGACAATTTCGCCGGACCCCGTCACAGGACTTCGAGCCGGCTTTGAMPYPIPEPYDAGMLDTGDGHRIYWEVCGNPQGKPAVVLHGGPGSGAAPWWRQYFDPDRYRVVLFDQRSCGRSLPNACDDLAGLENNTTAHLLTDMEQLREHLGIDQWLLFGASWGSTLGLAYAVEHPHRVSELVLWAVVTTRASDVAWLTHTMGQIYPQEYDELLAAVPAAQRDGNITAALQELLRSSDPDVSGPAALAWCKWEDRLATLSGPVQPSARFRDPRQRLGFARLVTHYFGNHAFLDDDAITGRLDRLSNVPAYFLRGRLDIASPLRSAYEVAGRLPLATLEVVEADAHGGGDNTQARLVEVLDNFAGPRHRTSSRLNANANANANA
D1-29_02241954tehACOG1275Tellurite resistance protein TehAATGCACCCCTTCAACCTGTTTGCCGTTCCGCTGGGCATCTCCGGGTTGGGGGGTGCCTGGCAGGCAGCCCGTGTGACTCTTCACGCCCCGGCGTGGCCGGCGGAAGTGTTCTATGGGATCAGTGCCGCCATCTGGTCGGTCCTGGTTGTCTGGTACCTGGCGAAAAGTTTCCGGAAGAGGTCCAAGGGACACTTCGACAAAGAGATAAGACATCCCGGAAATGGCCCGTCGGCGTCCTTCATTCCCTTGGTGGGCATCCTCCTGAGCAGCCACTACATCGAATACAACAAGGTGTTCTGGTCTGCCCTGTGCCTGTTCTTCGTCATCGCTCTCACGCTCCTCGGAGCCAGGCTCCTGGTCCATTGGGTGACCGGCGGAGTGACCCTGGAATGGGTCCACCCGGGTTACCTGCTTCCTGTCGCTGCAGGTCCATTCATCGCCAGCATCGGCTTCTCCATCATGGGTTGGCCCCAAGCGGCTGTCGCTGCCTGGGGAACCGGTGGATTTTTCTGGCTGATGATCGGGACTGTGGTGACTGTGCGTTTCATGGCGGGGATTGAAATGCCGGAGGACCTGAAGCCCGTCCTGGCCGGATACCTGGCCGCGCCCGCCACGGCCTGCGTTGCGTGGATAGTGATCCGCCCGGACGGTTCCGGAATCATCCAGCTGGGGCTTACAGGAGTCCTCTTCATGATGATTCTGATGCAGGTTTTCCTGATCCCCCAGTACGCCAGCCTGCCCTTTTCGCTGACGTTCTGGATCTTTACCTTCCCGGTGTCAACGTCGGCGAACTACGGCATCAGATGGCTCGGAACCCTCGGCGTCGCCGGCTCGGACCTGATCTCTTGGACCCTCGTAGGCCTTGCCACGGCTTTTGTCCTTGGTATCGGAATACGGACGCTCGTGCACGGCTCTTCGGCCACTAGACGTGCTGGGGCTTTGGCGCAGCCGTAAMHPFNLFAVPLGISGLGGAWQAARVTLHAPAWPAEVFYGISAAIWSVLVVWYLAKSFRKRSKGHFDKEIRHPGNGPSASFIPLVGILLSSHYIEYNKVFWSALCLFFVIALTLLGARLLVHWVTGGVTLEWVHPGYLLPVAAGPFIASIGFSIMGWPQAAVAAWGTGGFFWLMIGTVVTVRFMAGIEMPEDLKPVLAGYLAAPATACVAWIVIRPDGSGIIQLGLTGVLFMMILMQVFLIPQYASLPFSLTFWIFTFPVSTSANYGIRWLGTLGVAGSDLISWTLVGLATAFVLGIGIRTLVHGSSATRRAGALAQPPGPT0004920_606DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004920-tehA-K03304NANA
D1-29_02242852gloB_3Hydroxyacylglutathione hydrolaseATGGCACCCACAACCGAGCTGGCTTACGACGTCTTCGTCTCCGGCACCCTGCCTCAAACAGGACGAGGGACCCTCCCGAACGGGGACCCGCGCATCTGGTCCCCGCTGTCCGCAACGCTGATCTCCGGGCAGGAGAACGCGGTGCTGGTTGACCCGCCCATGACGGTGGAACAGACACAGAAGGTGGGCGACTGGATCGAGGCATCGGGGAAGAACCTCAGCCACATCTACATCACCCACGGCCACGGTGACCACTGGTTCGGCGCAGGCCCGCTGGTAGCGCGGTTTCCGAGCGTCACAGTACTCGCAACCCCGGGCACGCTCCAGGAGATGGAAATGCACGGCTCCCCCGGGTTCCGCTCCTCTTTCTGGGACTCGATTTTCCCGGACCAGATTCCGCCCACCACCACGGTGACCCAGCCGGTCGAAAATGGATCCTTTGAACTGGAGGGGCATGAACTGCGGATCGTTGAAGTGGGCCATACCGATACTGACAACACCACTATGCTGTTCGTTCCATCCATCGGGCTCCTGGTAGCCGGGGACGCCGTCTACAACGGGGTCCACCCCTACCTGACTGAATCTCAGGACGGAGGCATTGAATCCTGGCTGCGGGCGCTTGATATCGCGGAGAGCCTCGAGCCAAAGTTCGTGGTGGCCGGGCACAAGAACCCCGCATTGCCTGATCTGCCCGGGCAGATCCAGGAGACCCGCGGGTACCTGCAGGACGCGTCGAAGCTCCTTGCCGAAAAGCCGACGCCGGAGGAGTTCTTCTCGGCAATGCTTGCCCTGCATCCTGACCGGATCAACCCCGGCGCTTTGTGGGGTGCGGCCCTGAAACTGCTCAGTTGAMAPTTELAYDVFVSGTLPQTGRGTLPNGDPRIWSPLSATLISGQENAVLVDPPMTVEQTQKVGDWIEASGKNLSHIYITHGHGDHWFGAGPLVARFPSVTVLATPGTLQEMEMHGSPGFRSSFWDSIFPDQIPPTTTVTQPVENGSFELEGHELRIVEVGHTDTDNTTMLFVPSIGLLVAGDAVYNGVHPYLTESQDGGIESWLRALDIAESLEPKFVVAGHKNPALPDLPGQIQETRGYLQDASKLLAEKPTPEEFFSAMLALHPDRINPGALWGAALKLLSNANANANANA
D1-29_02243501hypothetical proteinGTGGTCTCCCAGGTACCCGCCATCAACGGCCATGTGGCCGGTTCCCGGCGTGCGATAGGCGATGCCAAGACGGCGCTGGAACAGTCCTTCGTGGACGACGAACGGGACCAGGCCGCCGGTAAGGCACCCAGAATGATCGCGGTGGTGAGCAGTGACCCAAGCCAGGCTGCCGCGTACCGGCTGCCCTCCGCCGTCGCCTTCTATACACAGCCCGGCCCGGAAGAATTCGGCTGGGACAACACCGTTACTCTGCAGTCCACCCGGGCAGCGCGCCTCTACGAGCCCGGGGTCTGGGCCTCACGGGTGTCACCCAAGCCGCTGCTTTTCATCGTGGCTGAGGATGACGAACTGACCGGCACTGACCTGGCCCTGGAAGCCTACGAACAGGCCCAGGAGCCCAAATCCCTGGTGATGCTTCCGGGCGGGCACTTCGAGCCGTACGTCGAGAACTTTGAAGACTCAAGTTCCGCCGCCCTCAGCTGGTTCTTGCAGCACCTCTAAMVSQVPAINGHVAGSRRAIGDAKTALEQSFVDDERDQAAGKAPRMIAVVSSDPSQAAAYRLPSAVAFYTQPGPEEFGWDNTVTLQSTRAARLYEPGVWASRVSPKPLLFIVAEDDELTGTDLALEAYEQAQEPKSLVMLPGGHFEPYVENFEDSSSAALSWFLQHLNANANANANA
D1-29_02244855IS3 family transposase ISBli34GTGAAGGTCCATGCTCTCATCGCCCTCAAGGCTGACTTCCCACTTCCGGTTCTGCTGCAGGTCTCAGGTCTTGCCCGATCGACATTCTTCTATCACCAGGCCCGTCTCCAAGCCCCTGACCCGCAAGCGGAACTCAAGAGCGCAACCACGGAGATCTTCACGACCAACCACGGCCGGTACGGGCACCGGCGCATCCACTCTGAACTGCTCAAGCAGGGCTGGGGGATCGCGAAGAAGACCGTGCTGAAGCTGATGCGTGTGCTGGGGCTGGTGTGTAAGGTCCGGCGGAAAAAGCGCTACAACTCCTACCAAGGCGGACAGGGCACTGTCGCGCCGAACCTGCTGAACCGCAAGTTTGACGCCACCGCCCCAAACCAGAAGTGGGTGACCGACGTGACCGAGTTCAGCGTCGGCGACCGGAAGCTTTACCTCTCACCAATCATGGACCTCTTCGACCGGCAGATCATTGCCCATTCAATCGGCACATCCCCGAGCCTGGCGCTCACCAACGCTGCGCTGCAGCAGGCCCTGGCCTGTCTTCAGCCCGGTCAGCAGCCACTCGTCCATTCCGACCAGGGCTTCCAGTACCAGCACACCTCGTGGCGGAACCTGCTCCAGGGCGCCGGCGCGGTCCAATCGATGTCCCGCAAGGGCAACTGCTACGACAACGCCGTGATGGAGAATTTCTTCGGCCACCTCAAGGAAGAGCTCTTCCACAGGGTCCGGTTTATCAGCACCGACGCACTGACCGCGCAACTGAACGAGTACATCCATTGGTACAACACCAAAAGGATCTCGACAAAGCTCGAGGGCCTGAGCCCGGTGCAATACCGTGCCCAGGCCCTCGCGGCTTAGMKVHALIALKADFPLPVLLQVSGLARSTFFYHQARLQAPDPQAELKSATTEIFTTNHGRYGHRRIHSELLKQGWGIAKKTVLKLMRVLGLVCKVRRKKRYNSYQGGQGTVAPNLLNRKFDATAPNQKWVTDVTEFSVGDRKLYLSPIMDLFDRQIIAHSIGTSPSLALTNAALQQALACLQPGQQPLVHSDQGFQYQHTSWRNLLQGAGAVQSMSRKGNCYDNAVMENFFGHLKEELFHRVRFISTDALTAQLNEYIHWYNTKRISTKLEGLSPVQYRAQALAANANANANANA
D1-29_02245489hypothetical proteinATGCGTGCAAGTAGTTCGTTATCCAAGGATCAGCGCGAGGCCGCTGTAGCGTGGTTTGAGAAGGGCATCGCCGATAGGGCCGCGGCGCGGTTACTGGGTGTGCCCCGATCGCCGGTCAGGGATCTCTATCGGCGGTGGAGGATCCATGGTCAAGGAGCGCTGGTGACTAAGCCGACAAAACAGTCGTACTCTTTCGACTTCAAGCTCGCCTTAGTGGAACGGTTCCTTGCGGGTGAGACTGCCCCGGATCTGGCGGCGGAGGCTGGCTTGTCTTCGCCTGTGTTACTGAAAACGTGGGTGCGTGCGTATCGTCGCGAGGGCGCGGACTCATTGCGCCCGAAGGCTAAAGGCAGACCCCGGAAGCCTGACGCCCCACCGCCCGCGGAGATATCCGAGCTGGAGCGGTTGCGCCGTGAGAACGAACGGTTGCGGGCAGAAGTGGCCTATCTGGGAAAATTGCGGGCCTTGAGGGCCCAAAAACAACGGTGAMRASSSLSKDQREAAVAWFEKGIADRAAARLLGVPRSPVRDLYRRWRIHGQGALVTKPTKQSYSFDFKLALVERFLAGETAPDLAAEAGLSSPVLLKTWVRAYRREGADSLRPKAKGRPRKPDAPPPAEISELERLRRENERLRAEVAYLGKLRALRAQKQRNANANANANA
D1-29_02246324aidAQuorum-quenching protein AidAATGGCAGAACGACTGGATGTTGAATTCACCGCCGAGGGTGGCATCAAGCTTCGTGCTTGGCTCTACCTCCCGGATGGGCCAGGGCCGCATCCCGCCATCACCATGGCCCATGGCTATGCCGGCACACGCGCCCACGGACTGGATGCCTATGCCTCCCGCTTTGCCGACAACGGATTTGTGGTCTTGGTCCACGACCACCGGAATTTCGGCGCCAGCGAGGGCGAACTCCGGCACGACATCAATCCCTGGCAGCAGATCAAGGACTGGCGCCGTGCGGTGACCTACCTTGAGGGCAGGCCGGAAGTAGACGCCTCCCGCATCTGAMAERLDVEFTAEGGIKLRAWLYLPDGPGPHPAITMAHGYAGTRAHGLDAYASRFADNGFVVLVHDHRNFGASEGELRHDINPWQQIKDWRRAVTYLEGRPEVDASRIPGPT0026245_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_QUENCHINGCE-QUORUM_QUENCHING-AHL-DEGRADATION,PGPT0026245-aidA-K24084NANA
D1-29_022471170paaJ_2COG01833-oxoadipyl-CoA/3-oxo-5,6-dehydrosuberyl-CoA thiolaseATGGCAAGCAGCTTCATCTACGACGGAATCCGTACCCCCTTCGGAAAATTCGGGAAGTCATTGGCGGGCATCCGCCCCGACGATTTGGCCTCCCATGTGATCCGCGAGGTGGTGGGCAGGCAGCCGGGGCTCGAAACGTACAGGATCGATGAGGTGATTCTGGGCAACGCGAACGGGGCTGGGGAAGATAACCGCAATGTGGCGCGCATGGCTGCGCTGCTGGCCGGGCTTCCGACGTCGGTGCCTGGCGTTACGGTCAATCGGTTGTGCGGTTCCGGCCTCGAGGCTGCCATCCAGGCGAGCCGGGCGGTGGAGATCGGCGATGCCGACCTGGTGGTCGCCGGCGGCGTCGAATCCATGAGCAGGGCGCCCTGGATCCTGGCAAAACCCGAGCGGCCCTTTCCTGCCGGCCCGGAAACCCTGCACAGTTCGACGGTGGGCTGGCGCATGGTCAACCCGAAAATGAACCAGGCCTGGACCATCTCCAATGGGGAAACGGCTGAAAACCTCGCCGACAAGTTCGGCATCTCAAGGACGGAACAGGACCAGTTTGCGGTCCGCAGCCATCGGTTGGCCGCCAAGGCTTGGTCCGAGGGCATCTACGACGACGAGGTTGTGGCCCCCCCTGATTCACAGCTCCTCACCGACGAGGGTGTCCGGCCGACCACCTCAGGGGAGGCCCTGGCCGGCCTGGTTCCGGCATTCCGGAACGGCGGTTCCGTCACTGCAGGCAATTCGTCTCCGCTCAATGACGGGGCAGCAGCCATGCTCATCGGCCGTGAGGGCGCCCTGGACACGGAACCCCTGGCGCGTGTCGTTTCACGTGGAGTGGCCGGCAACGATCCGGACATCTTCGGCATTGCGCCCGTGGAGGCTGCCAACCAGGCCTTGGCCCGGGCGGGGAAGACCTGGGCGGACGTGGATGTGGTGGAGCTCAATGAAGCGTTTGCGGCCCAAAGCCTGGCATGCCTGCGGCTGTGGCCTGATCTGGATCCGGAGAAGGTGAATATTCACGGTGGTGCGCTGGCTTTGGGGCACCCGCTGGGAGCATCCGGGGCCCGGGTTCTGATTCACCTGGCGCGGGAGCTGAAGCGCCGCGGGGGAGGGGTTGGAGTTGCTGCCATTTGCATCGGGGTGGGGCAGGGCCTCGCTGTTGTGCTGGAGCGCTAAMASSFIYDGIRTPFGKFGKSLAGIRPDDLASHVIREVVGRQPGLETYRIDEVILGNANGAGEDNRNVARMAALLAGLPTSVPGVTVNRLCGSGLEAAIQASRAVEIGDADLVVAGGVESMSRAPWILAKPERPFPAGPETLHSSTVGWRMVNPKMNQAWTISNGETAENLADKFGISRTEQDQFAVRSHRLAAKAWSEGIYDDEVVAPPDSQLLTDEGVRPTTSGEALAGLVPAFRNGGSVTAGNSSPLNDGAAAMLIGREGALDTEPLARVVSRGVAGNDPDIFGIAPVEAANQALARAGKTWADVDVVELNEAFAAQSLACLRLWPDLDPEKVNIHGGALALGHPLGASGARVLIHLARELKRRGGGVGVAAICIGVGQGLAVVLERPGPT0001565_3437DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-29_02248723hypothetical proteinATGATCATCAACAGTGCAGATCTCGACGCCGTCGACTCCTACAAACTCCTCATCGGAAGCATCATTCCCCGGGCGATCGCTTGGGTGAGCACCATCTCCGAAGACGGAGTGGCCAACCTCGCCCCCATTTCCTTCTTCACGGCGGTGGGACGAAAGCCGCCCATGGTGTCCATCTCGCTGCAGCCACGCTCAGACGGCAGGACCCTCAAGGACACGTTCGTCAACATCCGCGACACGGGGAACTTTGTGGTCAATGTGGCCACGCTTCCGCAGGCCCACGCCCTGCACTCCTCTGCCTTCGAATTCCCTTCGGGAATCGACGAGTTTGAGGCGGTAGGGCTCGAAAAAGAGGCGTCGCAGGCCGTGACGGCACCCAGGATCAAAGACGCACCTATCGCGATGGAATGCATCGTTAACCGCATCATTCCCGTGGGCGACATGAACGATCACGTCGTCTGGGGCGAAGTGGTCCGGTTCCACGTCAAGGATGAGCTTTACCTGGACCGAGGCCGGATTGACACTGCGGCGGTCACGGCCGTCGGCAGGTTGGCGGCTGAATACACCCTGGTTGAAAACGTGTTCACCACGCCCCTTGAGGAGGACCTCCTCAAGTCCAAGCACAAGCAGCGCATGGCACGCCTGGACGGCCAGCCGGATGACTGGTCGCCCATCAATACGGCAGCCTGGTCGGCGTCCGGATCCACCCTCACCAAGGAGCAGTAAMIINSADLDAVDSYKLLIGSIIPRAIAWVSTISEDGVANLAPISFFTAVGRKPPMVSISLQPRSDGRTLKDTFVNIRDTGNFVVNVATLPQAHALHSSAFEFPSGIDEFEAVGLEKEASQAVTAPRIKDAPIAMECIVNRIIPVGDMNDHVVWGEVVRFHVKDELYLDRGRIDTAAVTAVGRLAAEYTLVENVFTTPLEEDLLKSKHKQRMARLDGQPDDWSPINTAAWSASGSTLTKEQNANANANANA
D1-29_022491215menH_32-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGACCACCGTAATTGAGCACTTGCAGGAGCAGGATCCCTCCCTGAAGGTGACTGGCAGCGGCAATGTGGCCGTGCTCTTCATCCACGGATTCCTGGACGATCAGAGTGTCTGGGACGACGTCGTCTCCGAACTCGCCACCGCGGACGCCCAGTTGCTGAGGCTGGACCTGGCAGGGATGGGGGACCGGAGCGCGGATGCGGGCCCCTACAGCCTGCAGCGGTACGCCGACGACGTCGCTCGCGTCGTTGCCGGGCTGGACAGCCCCGTAGTACTCGTCGCGCAAAGCATGGGCACGCTCGTGGCCGAGCTCGTGGGTATCCGGCACCCGGACAAGGTGCTGGGCGCAGTCTTCCTCACGCCCGTGCCGCTGGCAGGGACACACCTTCCGGAGGAAGCCGTGGGTTCCTTCCGGCATCTTGGTGGGGATATACAAGCGCAGCGCGGGGTTCGGATGTACTTGGGCGGCGGGCTGAACGAATCCGGGCTGGACAAGCTCACACGCATAGGCAGCCGCATCCGCCCGGAAGTTGTTACCCACCTTGTTGACTGCTGGAACGAGGGGATTCCGGACGCCCCGGAGAAGAGTGAATTTAGCTCACCTGTCCTAATAATCCGCGGTGAAGCCGACGGTTTCGCCACCGCCGACCTGGTGTCCTCAGCAGTCAGGCCACGGTTCCAGCACGTGCAGGAGGAGGTACTCAGCGCGGCGGGCCACTGGCCCCACGTCCAGCAGCCCCAGAACGTGGCCGCACTCATCGGGCGGTTCCTCAACGAACTTTCGGAAGGATCTGCCAGTGCGCCTGGCGCAGCCGGCGCCCAAGGCTGGATCAACGCCTTTGCCAGCAAGTCCGCGGACGACTTTGGCGAGGCCTTCCACCGCGACGTTGTCCTTGAAGCGTCTGTCATCCGGTCACCGATCACGGGCCGGGAGAACGTCAAAACGGCGATGAGCGCAGCCAGCTCCATCTACGAGTCCCTCGAGTTCATGCACCAAACCACTAATGGTGCGCGAACCTATCTTGAGTGGCAGGCGACGGCTTTCGGAGGACTCAAGCTCTACGGAGTCACCGTCCTCACGAAGGACGAGAACGGTCAGATCGTCTCAGCCGCCATCCACCACCGCCCGCTCGACGCAGCACTCCGCTTTTCGGCTGAACTCGGCAAGCGGATCGGGAAGGCCGTGGGTGAATCCCGTTTCTACTCCGCCGACTGAMTTVIEHLQEQDPSLKVTGSGNVAVLFIHGFLDDQSVWDDVVSELATADAQLLRLDLAGMGDRSADAGPYSLQRYADDVARVVAGLDSPVVLVAQSMGTLVAELVGIRHPDKVLGAVFLTPVPLAGTHLPEEAVGSFRHLGGDIQAQRGVRMYLGGGLNESGLDKLTRIGSRIRPEVVTHLVDCWNEGIPDAPEKSEFSSPVLIIRGEADGFATADLVSSAVRPRFQHVQEEVLSAAGHWPHVQQPQNVAALIGRFLNELSEGSASAPGAAGAQGWINAFASKSADDFGEAFHRDVVLEASVIRSPITGRENVKTAMSAASSIYESLEFMHQTTNGARTYLEWQATAFGGLKLYGVTVLTKDENGQIVSAAIHHRPLDAALRFSAELGKRIGKAVGESRFYSADNANANANANA
D1-29_02250789caiD_2COG1024Carnitinyl-CoA dehydrataseATGACCCACCTGACGTTCACCGTCCAGGACCAGATTGCCACCATCGTCCTGGACAATCCGCCCCAGAACCGAATTGACCTTCAGATGGCGGACGAGCTTTCCGAAGCCATAACCGCCATCGGCAGCAGTGACGCCCGTGCGGTCATCATTCGGTCTGAAGGCCCGGACTTCAGCTTCGGCGGTGACATCATGACGTGGCCGGGCGCCGAAACAAGGGAACTGCGTGCCTTGTTTGAGCGCTACATGTCAGTCTTCAACCAGCTTGAATTGCTGCCGATGCCGGTCATTGCCGAAGTCCAGGGCCTTTGCTTCGGAGGCGGATTTGAACTGGCTCTGCGGGCCGACCTCATCTTTGCCGCAGAGTCAGCGGAGTTCGGGCATCCGGAGCAGACTCTTGGCATCGTTACCCTCCTGGGCGGCATCTACCGGGTGGCAGAAAGGGCAGGCAAGGCGCGGGCAGCAGAATGGGCCATGACCTCTGAGAAAGTACCGGCGTCGGAAATGAGCCGCGCCGGAGTGGTGAACCGCGTGGTCTCCGAGGACAAGCTCCGCGAGGAAGTCTTGGCGTTCGCGCAGCGGATCGCCACCGGCGCCACGCGGGCCTACGCCGCACACAAGGCGCTCCTGAGGACCTGGTCCCTGGGCGGCGTCGCTGCGGCAGACCAAGCGATGTTTGATATCGCCATGCCCTTGTTTGAGCGCGAAGACACCCAGGTGGGGCTGAATTCGGCAGTGGAAGCCATGAAAGCGGGACGGCCGCGGCCCGTGTTGGAATTTCAGGGACGCTGAMTHLTFTVQDQIATIVLDNPPQNRIDLQMADELSEAITAIGSSDARAVIIRSEGPDFSFGGDIMTWPGAETRELRALFERYMSVFNQLELLPMPVIAEVQGLCFGGGFELALRADLIFAAESAEFGHPEQTLGIVTLLGGIYRVAERAGKARAAEWAMTSEKVPASEMSRAGVVNRVVSEDKLREEVLAFAQRIATGATRAYAAHKALLRTWSLGGVAAADQAMFDIAMPLFEREDTQVGLNSAVEAMKAGRPRPVLEFQGRNANANANANA
D1-29_02251618hypothetical proteinGTGAGCGATTGGAACGCGACGCGGCGCTATGACATGGAAAGTGCTCCTGGCGGGCTCGCTTTTGTGCATGACCTGCTCAACACGAAATCCGCTGGAAAGCCGCGACGGTCCGATCTGTTGCTTGTCCTTGGGCCCGCCCAAGCCTGGGTGGATGCGGGGCTGAAACAGTGGGCACTGGCAACCGGCAGGCGCTATGTCGACGTCAAACTTACCGAACGCGACCTGGAACATCTGCGCTACTTTCGTGATGAACTTGCCAGCACGCTCAACGCCGAAGGCGACCCTGCCGCCGTCGTCAGTTCCGACGTCGACGCCCTCCCCACAGTCTGGACAACCGCCACGTCCTTAAAGCTCAAATCCAATGGAACGGTCCAGGCAGAACCGCAGGGAGCGGGAGCCGGGCACATTGAATCCCTGGCCATGACAGAGATTTTCCAGGCCCAGCTTGCAGGAACCTGGCACAGGCTCAAACTATGCCGCAGCGAAAAATGCAGGGTTGCGTTCTTTGACCGTTCACGCAACAACAGCGGCGTTTGGCATGACGTGAAAATCTGCGGCAACCCGGCGAATCTCCGAGCGCACCGGGCGCGAAAACATGAATCAAAGCTCGTGAATTGAMSDWNATRRYDMESAPGGLAFVHDLLNTKSAGKPRRSDLLLVLGPAQAWVDAGLKQWALATGRRYVDVKLTERDLEHLRYFRDELASTLNAEGDPAAVVSSDVDALPTVWTTATSLKLKSNGTVQAEPQGAGAGHIESLAMTEIFQAQLAGTWHRLKLCRSEKCRVAFFDRSRNNSGVWHDVKICGNPANLRAHRARKHESKLVNNANANANANA
D1-29_02252903sseA_2COG2897Putative thiosulfate sulfurtransferase SseAATGCACGCCTTACCTTCAGACAATTCTGACCGAATCGCAGAGTACGCACATTCCGACAGGCTGGTCACGGCCGAATGGCTTGTGCAGCAAATGGCCGACCCCAGGCTGGTCATCGTGGAGTCTGACGAGGATCCGCTGCTGTATGAAGTGGGCCATATACCGTCGGCCGTGAAAATTGATTGGCATACGGACCTGAACGACCAGGTGATGCGCGACTATTTGACGGGGCAGGAATTTGCCCATCTGATGACGTCCCGCGGTATTTCACGGGACAGCACCGTTGTCATTTATGGTGACAAGCACAACTGGTGGGCGGCTTATACGCTCTGGGTGTTCAGTCTCTTTGGCCATCCTGACGTCCGCTTGCTCGACGGCGGACGGGAAAAGTGGATCTCGGAAGGCCGGCCGCTCGAAACAGCGCCGGCGCCGGCCGGGAGCGCAGCGCTGTATCCGGTGGTCACTCGGGACGACTCCTCCATCCGGGCCTTCAAGAATGACGTCCAGCAACACATCGGGCTACCCCTGATAGACATCCGCAGCCCTGAGGAATACACGGGTGAGCGCACGTCGATTCCCGATTACCCGCAGGAAGGGGTCCTCCGCGGCGGCCATATCCCCGGGGCGCGCAACGTCCCGTGGGCGCGGGCCGTTTCCGACGACGGGACGTTCCGGCCGCGGAGGGAACTTGAGGAGATCTACTTCAGCGAAGTAGGCCTTCGAGCCGACGACGACGTCATCACCTACTGCCGCATCGGCGAGCGCTCAAGCCATTCGTGGTTCGCCCTGACTTTCCTGCTGGGCATGGACAGGGTGAGGAACTACGACGGCTCATGGACCGAATGGGGCAACGCTGTTCGGGCTCCCATAGCGGTAGGCAATGGAGTTTCCGGTTTGGGTGAGTAGMHALPSDNSDRIAEYAHSDRLVTAEWLVQQMADPRLVIVESDEDPLLYEVGHIPSAVKIDWHTDLNDQVMRDYLTGQEFAHLMTSRGISRDSTVVIYGDKHNWWAAYTLWVFSLFGHPDVRLLDGGREKWISEGRPLETAPAPAGSAALYPVVTRDDSSIRAFKNDVQQHIGLPLIDIRSPEEYTGERTSIPDYPQEGVLRGGHIPGARNVPWARAVSDDGTFRPRRELEEIYFSEVGLRADDDVITYCRIGERSSHSWFALTFLLGMDRVRNYDGSWTEWGNAVRAPIAVGNGVSGLGEPGPT0002045_909DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
D1-29_022531185ISNCY family transposase ISKol11ATGATCCAACGGCAGGCTGTGACGAAGAAGAAGGCTCTCGCTTACAAGACGGCGGATCGGGCGGGGAAGTCCCGGATCTTGAACGAGCTGGTCGAGCTGACCGGTTGGCACCGCGATTACGCCCGGGCGGCTCTGCGGGGCGCCTTGGTCCTGAAAGTTGTCAGGCCCAGGCCGGGCCGGAAGCCCGTGTACGGCCCTGATCTGCTGGACCCGCTGATCAGGTGCTGGGCTGTGTTGCGTGCCCCTGCCGGCAGGCTGCTGGCCCCGATGCTGCCGGTCCTGGTACCGCTGCTGCGCCGGGACAAAGAGCTGGTGATCACCGACAGGCAGGCTGATCTGCTGATGCGCATGAGCGCGGCGACGATCGACCGCAAACTCGTCGGTGAACGGGCGAAACTCTTCCCCCGGGGACGGTCCCATACCAAGCCCGGCACCCTCCTGAAATCCCAGATCCCGGTCCGGACCTGGGCCGAGTGGGACGACGCCGTCCCGGGATTCGTGGAGATTGATCTGGTTGGACATGAGGGCGGCAACAGCTTCGGGGAGTTCTGTTTCACCCTGACGGTGACCGATATTTCCACGGGCTGGACGGTGAACCGGTCGGTGCGGAACAAGGCGGCCAAATGGGTCTTCGAGGCCCTCGAACACGTCATCGCGGTGTTCCCTTTCCCGATCATCGGGATCGACTCGGACAACGGCTCCGAGTTCATCAATGAGCAACTGCTCGCTTACTGCCACGCACACCAGATCACCTTCACCCGGTCCCGCCAAGGCAACAAGAACGACGGCGCCCACGTGGAGCAAAAGAACTGGGCAAGGGTCCGGGAACTGGTCGGCTACCTCCGCTACGACACCACCGGGGAGCTCGGGAAACTCAACGAAATCTGGGAGCTGGACCGGCTCTTCACTAACTACCTGCTGCCCCAGCAAAAACTCATTCAGAAACAACGGCACGGCGCAAAAGTGACCAAGAAACACGACGCGCCGGCCACACCCCACCAGCGGGCGATCCGGCACGAGAAGATGCGTAAGCGCCCGATCATCCGGATGAATGCCGCCTTCAAACAGATCAAACCCGGCAGCCTCTCACGCCAGATCCTGGCACTCACCGCCCAGCTGGAGACCCTCTCCCGGGCAAAGAGTCCCGCCGCCGTCAAACCTGTCAACAGGGCTTGGAACAGCTAAMIQRQAVTKKKALAYKTADRAGKSRILNELVELTGWHRDYARAALRGALVLKVVRPRPGRKPVYGPDLLDPLIRCWAVLRAPAGRLLAPMLPVLVPLLRRDKELVITDRQADLLMRMSAATIDRKLVGERAKLFPRGRSHTKPGTLLKSQIPVRTWAEWDDAVPGFVEIDLVGHEGGNSFGEFCFTLTVTDISTGWTVNRSVRNKAAKWVFEALEHVIAVFPFPIIGIDSDNGSEFINEQLLAYCHAHQITFTRSRQGNKNDGAHVEQKNWARVRELVGYLRYDTTGELGKLNEIWELDRLFTNYLLPQQKLIQKQRHGAKVTKKHDAPATPHQRAIRHEKMRKRPIIRMNAAFKQIKPGSLSRQILALTAQLETLSRAKSPAAVKPVNRAWNSPGPT0030665_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_022541443puuCCOG1012NADP/NAD-dependent aldehyde dehydrogenase PuuCATGTCCGGTCTTTCGTTCGTCCCCCACCTCATCGCAGGACAGGAGCGCGCGTCGCACGACGACTCGACGCTCGAAAATGTCAACCCTTGGACACGGTCGCCGCAGGGAGCGCTCGCCTCCGGCGGCGCCAGGGAGGCCGAGGACGCCATCGCCGCGGCGAGGTCGTCGTTCGAGAGTGGCGCCTGGTCCCGGCTTGGGGAACGTCAGCGCGCCGCGCTCATGCACGCGCTCGCCGACCGGATGGAACTCCACGCCGAGGAGCTCGCGCAGGCCGAGACGGCCGACATAGGGCGTCCCTTGGCCGCCGCGCGGAGCTTCGACGTCCCGAGAGCGGTCGGGATGATCCGCTTCTTCGCGGATCACCTCTCGCTCTCTACGAGCGAGGTCTATCCGATGGGCTCCGACTTCCATGCGTTCACGGCCTACCGGCCCGCGGGTGTCGTCGTCGCGATTTCACCCTGGAACCATCCGCTCATGCTCGGCGTGTGGAAGATCGCGGCCGCGCTGGCTTGGGGAAACTCTGTCGTCTGGAAACCCGCGGAGGACAGCCCGACATCCGCCTACCTCGTGGCGAGATTTGCGCTCGAGGCGGGGTGGCCCACGGGAGTGCTCAACGTCGTCCAGGGCCGGGGAGCGGTGATCGGGGATGCACTCATCCACTCCTCGGAGATCGACCGCATCACCTTCACGGGATCGACCGCCGTCGGCCGCCTCGTTGGCGCAGCCGCCGGGCAGAATCTCGTGCCTGTCACACTCGAACTCGGCGGCAAAGGTGCGTCCGTCGTGTTCGACGACGCCGATCTCGACCTCGCTGCGGCTACCGCTGCCAGGGCAGTCTTCAACAACACCGGACAGGTATGCCTTGCCGGCACCCGCGTGCTCGTCCAACGCTCTGTGTATGACGAGTTCCTGCGCCGCTTCGCGCAACAGGCTGCACAACTGCGCGTAGGCGACCCGCTTGACCCGTCGACGGACCTCGGCCCGCTCGCCTCGGAGAAGCAGTTCGACCGAGTTTCCCGCTACTTCGCGCTCGCGCAGTCCGAAGGCGGGACGGTCCTCGGCGGCGGGCCGGGGGAGGGCTGGACGTTCAAGCCGACCATCGTCGCCGACGTCTCGCGCAAGGGCCGCGTCTGGCGCGAAGAGGTCTTCGGCCCGATGGCGACCGTCTCCACGTTCGACGATTTCGACCAGGGCATCGCACTTGCCAACGACACCGACTACGGGCTGACCTGCACGCTGTTCTCCGAGTCCGCGGCCCGCATCCACACCGCCGCGTCCCGGCTGAGGGCGGGGACCGTGTGGGCGAACTGCTACCAGGTCCGCGATCTACGCGCACCCATGGGAGGGTCCGGGTACTCTGGCATCGGGCGCGAGGGCGGAAACTTCAGCCGGGAGTTCTTCACCGAGCCGCAGGCCGTCTTCATCAAAACATCGCTGGACTGAMSGLSFVPHLIAGQERASHDDSTLENVNPWTRSPQGALASGGAREAEDAIAAARSSFESGAWSRLGERQRAALMHALADRMELHAEELAQAETADIGRPLAAARSFDVPRAVGMIRFFADHLSLSTSEVYPMGSDFHAFTAYRPAGVVVAISPWNHPLMLGVWKIAAALAWGNSVVWKPAEDSPTSAYLVARFALEAGWPTGVLNVVQGRGAVIGDALIHSSEIDRITFTGSTAVGRLVGAAAGQNLVPVTLELGGKGASVVFDDADLDLAAATAARAVFNNTGQVCLAGTRVLVQRSVYDEFLRRFAQQAAQLRVGDPLDPSTDLGPLASEKQFDRVSRYFALAQSEGGTVLGGGPGEGWTFKPTIVADVSRKGRVWREEVFGPMATVSTFDDFDQGIALANDTDYGLTCTLFSESAARIHTAASRLRAGTVWANCYQVRDLRAPMGGSGYSGIGREGGNFSREFFTEPQAVFIKTSLDPGPT0005060_351DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005060-dmpC|xylG|praB-K10217NANA
D1-29_022551170nahGSalicylate hydroxylaseATGCGCGTCGCGATCATAGGAGGCGGCATCGGCGGCCTGACGGCCGCGATAGCGCTTCGGGATGTCGGCATCGAGGCGGTCGTCTACGAGCAGGCGCAGCAGCTCGGCGAGGTGGGCGCCGGGATCGGGGTCGCGCCGAACGGGCTGCGCGTTTACGAGCGGCTCGGGCTCAGGGACGCGATCGAGTCCGTCGCCGCACGCTACGGGGACGGATCGGTCTACTACCGTGCCGATGGGACGCTCATCGGCGAGATGACCACCTCCGACAGCTCCGGCCGGTACTTCACTCTGGGACTTCATCGTGCCGATTTCGTCGGCGTCCTGATGTCCGCCCTGCCGGAGGGGGTGGTCCGTACGGGGCACCGCCTCATACGCCTCGAGGAAGGCGAGGAAGGTGTGCTTCTCGAGTTCGCTGGCGGCGTCACGGAGACAGCCGATCTCGTCGTCGGCGCAGACGGGATCCACTCGGTCGTGCGCGCGGCCGTGACCGAGCCCGCCGATCCCGTCGCCTCGGGCTCGATCGCCTACCGGGGGCTGGTGCGCGCGGACAGGCTCAGGTCCTGGACACCCGGCATTGCCCAGCTCTGGATGGGCGAAGGCAAGCACTTCCTGACGTATCCGGTGCGTTCAGGGGAGCTGATCAACTACGTTGGATTCGTGCCCAGCGGCGAGCGTCTGCGCGAATCCTGGTCGGCACCCGGCAACGTCGAAGCACTCCGCGCCGACTTCGCGGGATGGGATGACCGCGTTGAGGGGCTTCTTGAGAAGGTCGAGCAGACCTTCTGGTGGGGCCTGTACGATCGCGAGCCGCTCCAACGCTGGTCGACGGAACGAGTCACCCTCCTCGGTGATGCCGCCCATGCGATGCTCCCCCACCTGGGCCAGGGGGCGAACCAGGCGATCGAGGACGCGATGACGCTCGCGGTCCTGCTCGGGGCTGCGGCCGCCAGTTCGTTCCCGGAGGCGCTCGCTGAGTACGAGCGGCTCCGCCTTGATCGCACGACGCGTGTCCAGAGCGGCGCTCGCGACAACGGTCTGCGCTACGACTCCGGCTACGAGGACCTGAGGCAACGCGACGACGAGATCAAGAACTCTCAGGCGTTCCGCCGCTGGCTCTACGACTACGATGCGGAGGCAGTGGCGCGCGAGCGCGTGTTGACCGTCGATTAGMRVAIIGGGIGGLTAAIALRDVGIEAVVYEQAQQLGEVGAGIGVAPNGLRVYERLGLRDAIESVAARYGDGSVYYRADGTLIGEMTTSDSSGRYFTLGLHRADFVGVLMSALPEGVVRTGHRLIRLEEGEEGVLLEFAGGVTETADLVVGADGIHSVVRAAVTEPADPVASGSIAYRGLVRADRLRSWTPGIAQLWMGEGKHFLTYPVRSGELINYVGFVPSGERLRESWSAPGNVEALRADFAGWDDRVEGLLEKVEQTFWWGLYDREPLQRWSTERVTLLGDAAHAMLPHLGQGANQAIEDAMTLAVLLGAAAASSFPEALAEYERLRLDRTTRVQSGARDNGLRYDSGYEDLRQRDDEIKNSQAFRRWLYDYDAEAVARERVLTVDPGPT0006315_1748DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_NAPHTALENE|DERIVATE_DEGRADATIONXENOBIOTIC_NAPHTALENE_DEGRADATION,PGPT0006315-nahG-K00480NANA
D1-29_022561182nicC6-hydroxynicotinate 3-monooxygenaseATGACTTCAGGCAAGCGGGTTTTGATCGTCGGGGGTGGTGTCGGAGGGCTGTTCCTCGCCAACGCGTTGATGGCACAGGGCATCGAGGCGGTGCTGTACGAGCAGGCGTCTGCCTTCGGCGAGGTCGGGGCCGGCGTATATCTCACGCCTAACTCGGTCCGCCACCTTATCCGGGTCGGTCTCGGTCCCGCGGTCGAGGAGGTCGGCGCCCTCGTCAAAGAGGACTCGCGGTACTACCGGTTTGACGGCAGGGAGATCGCCCCAGTGCAGGTGGCGGATCCGAGCGGATGGAACGCCACCTATGGGATGCATCGGGCGGACCTCGTCGAGCTGCTCTGTCGCCGGCTGCCGTCGGGGGTCCTCCACACCGGGCACCGCGCGACGGGTTTCAAGCAAAACGGTGACGTCGCGCGGGTCAGCTTCGAGAACGGCGAGGCGGCAGAGGCCGACATCGTGGTCGGTGCGGACGGGATCCACTCCATCCTGCGGCCGATCGTCCATCCCGAGAGCAAGCCGGTGTTCTCCGGTACCGCCGTATACCGGGGCCTGGTCCCCCGCGAGCTGCTCGACGGATGGCGACCGGACGTCTGGCAGATGTGGCTCGGTGCAGGCAAGCACTTCCTGTCCTTCCCGGTGCGCCGCGGCGAGCTGATCAACTTCGTCGGCTTCGTGCCGGCGCGCGGCATCATGCGGGAGTCCTGGACGGCGCCCGGCGACCCGGACGAGCTGCGGCAGGAGTTCGAGGGCTGGGATCCAAGGATCGCCGGCCTCCTCGCACACGTCGAGTCCACGTTCCGGTGGTCGCTGTACGACCGCGATCCGATCCCGGTGTGGACCAAGGGGCGGCTCACGCTGCTCGGGGATGCCGCCCACCCGATGCTGCCCCATCTCGGCCAGGGCGCGAATCAGTCAATCGAGGATGGAATGGCGCTCTCGCTCCTTCTTGGGGGAAGCGACCCGGTGGACGCCCCCGCCGCGCTCCAGACCTACGAGTCGCTGCGCCGCACGCGAGTCGCGGAGGTCCAGATCGGCGCGAGACAGAACGGCATGCGGTACGACTCGATGGAGGGCGATCTTGAGCAGAGGGATGCGGAAATCAGGGCCCACGCGGAATTCCGACGCGAACTTTACGGCTTCGACGTCGTGCAGCAGGTGACCGAAGTGCTGCAGGCGCCACGATGAMTSGKRVLIVGGGVGGLFLANALMAQGIEAVLYEQASAFGEVGAGVYLTPNSVRHLIRVGLGPAVEEVGALVKEDSRYYRFDGREIAPVQVADPSGWNATYGMHRADLVELLCRRLPSGVLHTGHRATGFKQNGDVARVSFENGEAAEADIVVGADGIHSILRPIVHPESKPVFSGTAVYRGLVPRELLDGWRPDVWQMWLGAGKHFLSFPVRRGELINFVGFVPARGIMRESWTAPGDPDELRQEFEGWDPRIAGLLAHVESTFRWSLYDRDPIPVWTKGRLTLLGDAAHPMLPHLGQGANQSIEDGMALSLLLGGSDPVDAPAALQTYESLRRTRVAEVQIGARQNGMRYDSMEGDLEQRDAEIRAHAEFRRELYGFDVVQQVTEVLQAPRPGPT0006315_775DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_NAPHTALENE|DERIVATE_DEGRADATIONXENOBIOTIC_NAPHTALENE_DEGRADATION,PGPT0006315-nahG-K00480NANA
D1-29_022571470ifcACOG1053Fumarate reductase flavoprotein subunitATGGACGATGGAAGTTCGACTATGACCGCTCTCTCTCCCGACGGGCCTGCTGTCGACCAGCAGGCCGACGTCGTCGTGATCGGTGCCGGCGCCTCCGGCCTCTCCTGTGTGATCGAGGCCGCGGGGCGCGGTGCGCGCGTGACAGTCATCGACGCGGCGCCGAGCTTCGGCGGGACCGCGTCCGGTGCGGCCGGCGGCACCTGCATCGCCGGTTCCCCGCTCCAGGATCGGCTCGGCGTCGTGGACTCCGTCGGCCTTGCGCTCGAGGACTGGATCGCTTGGGGCGGCGACTCGGTCGACGTCGAATGGGCGCAGCGCTACCTCCTTGCCGGTCGGGATGTGTTCTTCGACCACCTGTCAGTGCTGGGGGTCAGGTGGATCTCCATCCACCCGCACGAGGGCAACCGCGTGCCGCGATGGCATCGTCCGGAGGGGGGAGGCAAACGCGTCATGTCGCTGCTCGCCCAGCATGCCCGTGCGCTGCCGAACATCACGTGGCGCTTCGGCTACCGTGCGAAGGAGCTCGTCCGCACCGGCGGGCGGATCACGGGCGTCATCGCCGTGAACGGGGATCGAACGGTCGAGCTCTCCGCGCCGGCGGTCGTCATGGCGACCGGCGGTTTCAACAACAGCGCCAAGCTCGTAGCGGTGCACGCCAAACAGGCGGCCGGAGCAGAGCGCGTGCTCCTCGGGGGCGGACCGGAAGCGAAGGGCGAGGGTCTTCGCATGCTCGAGGCAGTCGGCGCGCAGTTCACGGAGCTTGATTCGGTGTGGATGTACCCGTATGGGACACCCGACTACCTAAAGCCAGGAACCGATCGCGGCCTCGCTGTACGCGGGGCAGACGGCGAACTGTGGATCAACGACGAGGGCAACCGATTCCACGACGAAAGCCTGCGGGGCGGGGCGAGCGGGACCGTTGCGCTCCTCGCCCAGAAGGAGGGCCGGGCGTGGTCCGTATTCGACGCGGGCGTCGCGTCGGGGTTGATCCTAGCCGATCCGTACTACGTCGACGGCAACAAGGTCATCCGCGATCGCGTGGCGGAGTTCCTCCACTTATCGCCCTACGTCGAGTCAGCCCCGAGTGCCGCCGCGCTCGCTGACCGCATCGGCGTCGATCGGAGCAATCTGGAGGCCGCCGTCGACGACATGAATAAGGCCATCGCCGCCGGCCTGCACCGGGACCCCGACTTCGGCAAGCCGCTCGACGGCCTAGCCCCGCTTGACCGAGCCCCGTTCTATGCGGTGCGCCTGCACCCGATGGCGCGGAAGAACCTCGGCGGCGTGCACACCGACCTCCACTGCCGCGTCCTCGACAGCGAGGGTCAGCCAATCAACGGACTGTTCGCATCCGGTGAGGTCGCGGGGATGGCCGGCGGCCACATCAACGGTCACGCCGCGCTGGAAGGCACAGCCTTCGGGCCTAGCCTGTTCAGCGGCATCGTCGCCGGGCGGGCAGTCGCCGAATGAMDDGSSTMTALSPDGPAVDQQADVVVIGAGASGLSCVIEAAGRGARVTVIDAAPSFGGTASGAAGGTCIAGSPLQDRLGVVDSVGLALEDWIAWGGDSVDVEWAQRYLLAGRDVFFDHLSVLGVRWISIHPHEGNRVPRWHRPEGGGKRVMSLLAQHARALPNITWRFGYRAKELVRTGGRITGVIAVNGDRTVELSAPAVVMATGGFNNSAKLVAVHAKQAAGAERVLLGGGPEAKGEGLRMLEAVGAQFTELDSVWMYPYGTPDYLKPGTDRGLAVRGADGELWINDEGNRFHDESLRGGASGTVALLAQKEGRAWSVFDAGVASGLILADPYYVDGNKVIRDRVAEFLHLSPYVESAPSAAALADRIGVDRSNLEAAVDDMNKAIAAGLHRDPDFGKPLDGLAPLDRAPFYAVRLHPMARKNLGGVHTDLHCRVLDSEGQPINGLFASGEVAGMAGGHINGHAALEGTAFGPSLFSGIVAGRAVAENANANANANA
D1-29_022581185lldD_1COG1304Putative L-lactate dehydrogenaseATGAGAAACGGCACCGTACCGCCCCGCGGGCTCGAGCTCAGTCACGCCGTCAACGTTGAGGACGTCCGCGCGATCGCGAATCGGCGGCTGCCGGCGGCGGTCAGCGACTTCATCGATGGCGGTGGTGAAGGTGAAATCACGATGCACCGTAACCGGCACTCCCTGGATGCGATCATGTTCCGCCCACGCGCACTTTCCGACGCGTCCACCCGGACGCTCGCGACGACCATGCTCGGCACACCGGTGTCGGCGCCTCTCGCCCTCGCACCGGTCGGGCTCGCGGCGCTCGCGCACCCGCTTGGCGAGCGGGCGGCCGCACTGGCGGCCGCTGAGGCCGGGATCGTCTCGACCCTCAGCTCGAGCTCCTGCTGGAGCCTCGAAGAGGTGGCGGAGGCGACACCGGACGCGCCGAAGTGGTTCCAAATCTACGTCTGGCGAGATCGTGGCATCACCAGCGAGGTCGTCCAGCGGGCGAGGTCCACCGGATACAAGGCGCTCGTTGTCACCGTCGATGTGCCCGTCGGAGCACGGCGCGAGCGGGATCTCCGCAACGGCTTCACGATCCCCCCACGCCCCACCTGGCGGCACACCGGCGATGTGCTCGGGCACCTGCCGTGGGTCGCCCGCTTCGGCTGGGACGAGATGTTCGGGCATGGGCTGACGATGGGGAACTTCGGCGGCAAGACCGCGGTGACCCGGCGCATGGCATTCATGGAACGGGTCAATCAGCGGTTCGATCCCGGCATGACCTGGGACGACCTCGAATGGCTGCGATCGCTCTGGGACGGCCCGATGGTCGTCAAGGGAATCACGAATGAGCGTGACGCCGCCGAGGCGGTCGCTCGAGGCATCGACGCCGTGTGGGTCTCCAACCATGGCGGGCGCCAGCTCGATGGGCTTCCCGCGACGATCGACGTCTTGCCTGCTGTCGTCGACGCCGTGGACGGCAAGGCCGAGGTGTACATGGACGGCGGCATCCGCCGAGGCAGCGACATCGCCAAGGCACTCGCACGCGGCGCCAGGATCTGCATGATCGGACGACCGTACATCTACGGCCTCGCTGCGAAGGGACAGGCCGGCGTCACGAAAGTGATCGAGCTGTTGAAAGAGCAGCTCGACAACACCCTCGCGCTGCTCGGTTGCGCCTCCGTGGAAGCGCTCGACCAGGACTGGCTGCGCAGCTGAMRNGTVPPRGLELSHAVNVEDVRAIANRRLPAAVSDFIDGGGEGEITMHRNRHSLDAIMFRPRALSDASTRTLATTMLGTPVSAPLALAPVGLAALAHPLGERAAALAAAEAGIVSTLSSSSCWSLEEVAEATPDAPKWFQIYVWRDRGITSEVVQRARSTGYKALVVTVDVPVGARRERDLRNGFTIPPRPTWRHTGDVLGHLPWVARFGWDEMFGHGLTMGNFGGKTAVTRRMAFMERVNQRFDPGMTWDDLEWLRSLWDGPMVVKGITNERDAAEAVARGIDAVWVSNHGGRQLDGLPATIDVLPAVVDAVDGKAEVYMDGGIRRGSDIAKALARGARICMIGRPYIYGLAAKGQAGVTKVIELLKEQLDNTLALLGCASVEALDQDWLRSPGPT0001765_695DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0001765-lldD-K00101NANA
D1-29_022591689ilvBCOG0028Acetolactate synthase large subunitATGACATCGGCGGGGATCACCGGGAATCCGACGGACGCCGGCGGCGTGACAGTGGCCCGCAATACCGCCGGCGTTATCGCAGCCACGGCGGTTCGGCTTGGCGCCACGCACCTTTTCGAGGTGATGGGCGGGTCGAATATGCGCGTCGTGCACGCCTTCGAGGACGCTGGCGCCGCCCTCCACCACTTTCGGCATGAGAATGGCGCGGTCGGCGGTGCCGACGGCTACGCACGCGCAACCGGCCAGGTCGGCTGGACGAGCGTGGTGCACGGGCCCGGATTCACGAACGCGCTGACCGGGCTGCGGACCGCCGTCAAGGCGCGCAGCCCCGTCGTGCTCATCATGGGCGACGTGATGAGCACGCCGGCCCGCAATGCTCCTTTCGAGGTAGGAATTCAGGGACTCGCCCCCGATGCGCTGCTCGGCGAGATCGGCGTCGCAGTGGTCCGCGTAAGTGCCGCGACAGCCGCGCAGGACACCGTGTCCGCGTATCAGGCCTCCCTGCATGGGCGCGTCCCGGTCGCGCTTATCATCCCGCACGGCATCGAGTCACTGCCGAGCGAGTCCGACATCGAACCGGCCATCGCCAGGCTGTCAGGTCCCTCCGGTAAGGTGCAACCCAAGGCGGAGGACGTTGCCGCGGCGGAGCGCGCCATCCGCGGGGCTAGGCAGATTGTGCTTCTCGCCGGTCGGGGCGGCAGCGCCCCGGAGACGGCGAAGCTCCTCGAGCGCCTCGCGGAACTGACGGGGGCCTACCTCGCCACCTCGGTCAAGGGCATCGGCATCTTCAAGGACTCCCCGGCGAACCTCGGCATCTTCGGCGGCTTCACCTCCCCCGAAGGTGCGCGGATCATCCGCGAGGCGGACTGCGTCCTCGCCGTCGGTGCCAGCCTGAACTACATCCAGACCCGTCGCTCCACTCTCCTTTCCGGCTCCCAGGTGGTCCAGGTCGATGAGGACCCCCTGGCCTTCGGCAAGTACGACCGTGCGGACGTCCCGGTCCTCGGCGACGCCGCGATCGTCACCCGGGAACTCATCGCCCGCTTCGAGGCGGAGCCGATGGTGCCGGGGCGTCCGCTGCCCACCGCACCTGCGCAGACAGGATCCAGCTTTATCGATGTCTCCGCGCCGGCACAGATCGACCCCCGTGCGCTCGCGACCGAGCTCGACCGCCTCCTGCCTGCCGAGCGGGCCGCTGTCATTGACGGCGGCCACTTCACGGTCTGGCCGATCGCCTTCATGCATCATCCGAGCCCCGACTCGCTGATGTGGACCTGCGACTTCGGCGCGATGGGCTGCGGCCTCGGGCCAGCCATCGGTGCGTCCATCGGACGCCCTGATCGGCTGACAGCACTCTACATCGGCGACTGCGGCCTGTTCATGTCGCTGGGCGACCTCGAGGTCGCAGCCAGGGAACGGATACCGATCCTCGTCATCTGCTTCAACGACGGTGCCGCCGGGTCCGAGATCGTGCTCTCTGAGATCGCTGGCCTTCCCGCCGACGAAGCGATCTTCGGCGTCTCGGACCTCGCGAAAATCGCGGCGAGCCTCGGTACGGAAGCCGCCGTCATCTCAACGGTGGCTGACCTCGAACCGGCGCTCGCCGGCTGGGACCGCAGCGGCCCGCTCTTCCTCGACTGCCGGATCACGCGTGATGTCCGCTCACCGCTGTACGCGCAGTACATCTGAMTSAGITGNPTDAGGVTVARNTAGVIAATAVRLGATHLFEVMGGSNMRVVHAFEDAGAALHHFRHENGAVGGADGYARATGQVGWTSVVHGPGFTNALTGLRTAVKARSPVVLIMGDVMSTPARNAPFEVGIQGLAPDALLGEIGVAVVRVSAATAAQDTVSAYQASLHGRVPVALIIPHGIESLPSESDIEPAIARLSGPSGKVQPKAEDVAAAERAIRGARQIVLLAGRGGSAPETAKLLERLAELTGAYLATSVKGIGIFKDSPANLGIFGGFTSPEGARIIREADCVLAVGASLNYIQTRRSTLLSGSQVVQVDEDPLAFGKYDRADVPVLGDAAIVTRELIARFEAEPMVPGRPLPTAPAQTGSSFIDVSAPAQIDPRALATELDRLLPAERAAVIDGGHFTVWPIAFMHHPSPDSLMWTCDFGAMGCGLGPAIGASIGRPDRLTALYIGDCGLFMSLGDLEVAARERIPILVICFNDGAAGSEIVLSEIAGLPADEAIFGVSDLAKIAASLGTEAAVISTVADLEPALAGWDRSGPLFLDCRITRDVRSPLYAQYIPGPT0008185_5713DIRECT 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
D1-29_022601419ligM_1COG0404Vanillate/3-O-methylgallate O-demethylaseATGAGCGCTTCGCCCACAGTCCGCTCCCTGCAGGACCTGATCGACTCGAAGCCGGATCTGGTCGATTACCTGTACAACGACTCGCCCGGTGCGCACTCCCGCGGCCGGGCCGACCTCACGCCGGTACGGCAGGAGTTCACGAACTGGCGCGACGAGCAGCGTTCGTGGCTCGAGACGGCAGTCCTGTTCGACCAGTCGCACCATATGCCGGAGCTCGTCGTCAAAGGCGCGGACGCCAAGCGGCTGCTCAATCATGTCGGTGTCAACAGCCTCGCGAACCTCCAGCCGGGGCGCGCAAAGCAGTTCCTCGGGGTCAATGAGCGAGGGCAGATGATCGGCGACTGTATCCTCTACGCCCTCGAGGATGAGACCTATGAGCTCGTCAGCAGTATGCCGCTCCTGAACTGGGTCGAGTACCAGATCCTGACCGGCGGGTGGGACGTGACGTACGAGCGTGACAACAACACCTCCGACAATCCCACCGGAAGCCGCAAGCTCTTCCGCTACCAGCTCGACGGCCCGAACGCCGGCGCGATCTTCGACGAGGTCATCGAAGGCGGCGTGCCCGATATCGGCCCGTTCCGCACCGCCAGGGTCCGAATCGCCGGCGTCGACGTCCTCGTGCTGCGGCACAGCATGTCGGGTCACCGGGGCTATGAGGTCTCGGGCGCATACGAGCAGGGTGAAAGCGTCGTGTTAAAGGCGATCCTCGAGGCCGGCGTCCGGCACGGGCTTCTCCAGGCCGGAGCGAAGACGTACTTCAGTGCGAGCTTCGAGGGCGGTTGGATGGCTTATCCGCTGCCTGCTGTCTACACAGGCGAGGAGCTTCGCGCGTATCGCGAATGGCTGCCGGCCGATTCGTGGGAGGGGAGGTTCCAGCTCGCCGGCAGCTTCCGCCCCGAAAGCGTTGAGGACTACTACGTCACGCCGTTTGACATGGGCTATGGGAAGCTCGTGAGCTTCGATCACGACTTCATCGGCCGCGCGGCGCTTGAGGAGATCGCACAGCACAAGACCAGGTCCAAGGTGACGCTCGTCTGGAACAGGGATGACGTACTCAAGGTCGTAGGCTCGCTCTTCGATGAGGGTGAGCTGCCCTACAAGTACATCGAGCTGCCGGTCGCCGACTACGGCAACCTCACGCACCGCGACGAGGTCTACAACCTCGATGGCGAGATGATCGGCGTCGCGACGAAGGTCGGTTACACGATCAACGTTCGGAAGCTCATCTCGGTCGCCATGATCGATCTCGACCGTGTCGCGGCCGGCGACGAGGTCGAGATCGTCTGGGGTGAGGCGAATGGCGGCTCCCGCAAGCCGCGGGTCGAGCGTCACCGTCAGGTACGGGTCCGCGCAACGGTCGAGCCCGCACCGAACCCGGCGTCGGTGAAACCCGCGCCCGCGAAGGCCACGGGCTGAMSASPTVRSLQDLIDSKPDLVDYLYNDSPGAHSRGRADLTPVRQEFTNWRDEQRSWLETAVLFDQSHHMPELVVKGADAKRLLNHVGVNSLANLQPGRAKQFLGVNERGQMIGDCILYALEDETYELVSSMPLLNWVEYQILTGGWDVTYERDNNTSDNPTGSRKLFRYQLDGPNAGAIFDEVIEGGVPDIGPFRTARVRIAGVDVLVLRHSMSGHRGYEVSGAYEQGESVVLKAILEAGVRHGLLQAGAKTYFSASFEGGWMAYPLPAVYTGEELRAYREWLPADSWEGRFQLAGSFRPESVEDYYVTPFDMGYGKLVSFDHDFIGRAALEEIAQHKTRSKVTLVWNRDDVLKVVGSLFDEGELPYKYIELPVADYGNLTHRDEVYNLDGEMIGVATKVGYTINVRKLISVAMIDLDRVAAGDEVEIVWGEANGGSRKPRVERHRQVRVRATVEPAPNPASVKPAPAKATGPGPT0005520_20DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005520-ligM-K15066NANA
D1-29_022611542geoBGeranial dehydrogenaseATGACGACGACGGAACGCCTGCCTGCAGTGGAGGTCGAGCTCAAGCTCGCCGCGCGGCACGCCGCCGCCGCCGGGATGCTGCCGGCGCGCTACGTCGACGATCTTTTCATTGCCGGCGAGTACCGTCCGGCGAAAGGCGCCGAGCGGACCGAGCTCGTCGACCCCGCGACCGGGGACGTATGGGGAGCGGTGCCGGTGGCCGACGCGTCGGACGTTAATGCCGCGGTGGCGGCTGCGGCCCGCGGGCTTCCCGAGTGGAGCCGCCGCGGGCCATCGGAACGCGCGGAACTTCTGCTCGCGATGGCCGACGCGATCGAGCGTCGCGCCGAACCGCTCAGCATCACGAGTACGCTCGAGAACGGCTCGCCGTTGTCAGAGACAGCCCTGGCCGCAGGTAACGCGGCCGGGATCCTCCGCTACTTCGCCTCGCTGGCAGGCTGGCTCGCGCAACCCGATCTCCGTGGCTCGCCGAATGACCCAACCGTCGTGACGTCCGTACACCGCGATCCCATCGGTGTGTGCGCACTGATCGCACCCTGGAACTTCCCGATCAACCTGGTCCTCATCAAGCTCGCGCCGGCGCTCCTTGCAGGATGCACGGTGGTGGTGAAGCCGGCACCCTCGACGCCGTTGTCGGTCCGATACATCATCGATGCCGCGATAGAGGCGGGTATCCCCGCCGGCGTCGTCAACCTGGTGACCGGCGGCGGCACGGTGGGTGACCAACTCGTCCGGCACCCGCTGGTCGACAAGGTGGCGTTCACCGGCTCGACCTCGGTCGGCCGCCGGGTCGCGGCGGCGTGCGGGGAGCTGTTGCGCCCCGTCACGCTTGAGCTTGGCGGCAAGTCGGCCGCTATCGTGCTGCCGGACGTCGACCTCGACGTTCTCGGGAGTGCGCTGCTGCGCAGCTGCCTGCGGAACACCGGCCAGACCTGCTACAACTCGTCTCGGATCATCGTCACCCCGGAGCGCTATGACGATGTCGTCCAGCTCGCGGCGGCGGCGGTGTCCGCCGCGGCGGTCGGGGATCCTTTCGACTCGGCCACGGTGTTCGGCCCGGTGGCGACCGCCGCTCAGCGTGATGTCGTGCGGGGCTACGTCCGGTCAGGCATCCGAGAGGGTGCACGTGTTGCGGCCGGCGGCGACGTCGCGCCCGTCTTCGAACGCGGCTCGTGGGTGGTTCCGACGGTGTTCGCAGACGTCGATCCCGGAATGCGGATCGCGCGCGAGGAGATTTTCGGACCGGTGCTCTCCATCCTCAGCGCTGCGGACGTCGACGAGGCGGTGGCGATCGCCAATGCGACGGAATACGGACTCGGCGGCATCGTCTTCGGCCAGGACGAGGACCGCGCGTTCCAGGTGGCGCGCCGTGTCGACACGGGCAACATCGGCCTCAATTTCTTCACGTCGAACCCCGCCGCACCGCTCGCGGGCCGACACGATTCCGGTATCGGCGTCGAGTACGGCGTGGAGGGCCTCTCCCAGTACCTGACGTCACAGTCCGTGCACCGCAGGCAAGGCATCCAGGAGGCATCTATGTAAMTTTERLPAVEVELKLAARHAAAAGMLPARYVDDLFIAGEYRPAKGAERTELVDPATGDVWGAVPVADASDVNAAVAAAARGLPEWSRRGPSERAELLLAMADAIERRAEPLSITSTLENGSPLSETALAAGNAAGILRYFASLAGWLAQPDLRGSPNDPTVVTSVHRDPIGVCALIAPWNFPINLVLIKLAPALLAGCTVVVKPAPSTPLSVRYIIDAAIEAGIPAGVVNLVTGGGTVGDQLVRHPLVDKVAFTGSTSVGRRVAAACGELLRPVTLELGGKSAAIVLPDVDLDVLGSALLRSCLRNTGQTCYNSSRIIVTPERYDDVVQLAAAAVSAAAVGDPFDSATVFGPVATAAQRDVVRGYVRSGIREGARVAAGGDVAPVFERGSWVVPTVFADVDPGMRIAREEIFGPVLSILSAADVDEAVAIANATEYGLGGIVFGQDEDRAFQVARRVDTGNIGLNFFTSNPAAPLAGRHDSGIGVEYGVEGLSQYLTSQSVHRRQGIQEASMPGPT0006875_938DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-29_02262996hypothetical proteinATGTTCATTCAAAGGCGATTGAAGAGCATCTCGATAGTCGCGCTTGCACTCTCGGCGGCCCTCACCACGGTTGCCGGCTGCAGTCCCGGGCCCGGGTCGACGAACGGGACGGATGGTACCGGAGATACGGTGGACATCGTCGCCGGCGTCGCGGCGAGCATGAGCTCCCTGAACCTGCGCTTGGGCATGGAGCAGGGCTTCTTCGCTGAGGAGGGACTGAATGTCACCACCGTGCCGTCCGGCACCGGCGCCGGCGGTGTCACGGGGCTCATCAACGGTGAGATCCAGGTCGCGCTCGGCGGGCTCTCGGGGACCATCACCGCAGCCTCGCAGGGCATCCCGGTCGTCTTCGTCTCTGGCGGCATCGCCGACGCGGAGAGCCAGGAGGGCCCCTGGTACGCCACGCTCGTCTCGCCGGACAGCGGCATAAAAAGCTTCAAAGACCTCGAAGGCAAGACAGTCGCGATCAACTCGCTGAACTGTTGCTGGGACTTCTGGACCCGTGAATCGGTCATCGCCGACGGCGGCGACGATAGCAAGCTGAAGCTGGTGCAACTGCCGTTCGCCCAGCAGGCCACAGCGCTGGCCAACGGCCAAGTCGACGCGATCACGACGCAGCAACCCTTCGCCAAGCAGGCGGAGCTTGAGGGCTTTGTCAGCATCGGCGACCCGGCGGCGATCGCGTACGGCGACCCCGAGAACGGCAACACCAACTACTTCATGGCGAAGTCGTTCGTGGACGCCAACCCAGGTGTCGTTGAGCGGTGGCGTGCGGCACTACAGAAGTCGACTGACTACGCGAAGGCAAACCCCGATAAGGTGCGGGATGCCGCGATCTCGATGGTGTCGCTCGATCCTGATCTCGTCGCAGCTGCCCCGGTGCCAAACTTCGTCGTGGAGCTCGACCGCAACGCGATCGAGAAAGAAACCGGCTGGCTGCTGAAATACGGAGTGATCCAGAACGCGCCGTCGGTCGACAGCCTGATTGTTCCCTGAMFIQRRLKSISIVALALSAALTTVAGCSPGPGSTNGTDGTGDTVDIVAGVAASMSSLNLRLGMEQGFFAEEGLNVTTVPSGTGAGGVTGLINGEIQVALGGLSGTITAASQGIPVVFVSGGIADAESQEGPWYATLVSPDSGIKSFKDLEGKTVAINSLNCCWDFWTRESVIADGGDDSKLKLVQLPFAQQATALANGQVDAITTQQPFAKQAELEGFVSIGDPAAIAYGDPENGNTNYFMAKSFVDANPGVVERWRAALQKSTDYAKANPDKVRDAAISMVSLDPDLVAAAPVPNFVVELDRNAIEKETGWLLKYGVIQNAPSVDSLIVPNANANANANA
D1-29_02263774hypothetical proteinATGCGTCGTTCATGGCTCGTCCGGTCCCTTCCCTGGATCACGACCCTCGCCATCATCACGTTGCAGGAGATCCTCGCCCGAACGGGCGTGCTCCCCAACGTGATCCCCCCTTTCACGGAGGTTGTCGCGGCAGGTTGGATGATGCTGCCGACCGACGTTTTCCTTACGGGCCTCCGGGAGATGCTCCAGCAATTTGCGATCAGCCTTGCGCTAGGAATCGGTGCAGGCCTTGTGCTCGGCATTCTGATCGGCGTCGCGCCGGTGCTGAACCAGCTTTTTCGGTATGTGCTCGAGTTCCTCCGCTTCACCCCCAGCGTGGTGTACATCCCGATCCTCCTGCTCCTCATGGGAGCGAGGCCGCCTGTGGCGATCACTCTGGCGGCGATCGGGGCCACATGGCCGGTTCTCTACCAGACCTATTACGGAGTCGTTGGCGTATCGCCGATCCTGAAGGACACCGGACGCGTGTTCGGCCTGAGCCGCGCGCAGCAGATACGGAGCATCACCATCCCCAGCGTGTCGCCGTTCCTGGCGACCGGGATCCGGATCGCCGCGGCCCATGCGCTCATCATCGTGGTCGCGGTCCAGATCATCGCCGCGGTCCCGGGCACGGGACGTGACATCCAGAACTACGCCGAGAACGGCGTCTTTCCCCGGATGTATGCCCTCATCCTGGTGGTCGGCATCATCGGACTCATTATCAACGGGCTGCTCGAGTTGCTCGAGCGCCGTCAATTGCACTGGCATGCATCGTACCGGGAGAAGCAGGCATGAMRRSWLVRSLPWITTLAIITLQEILARTGVLPNVIPPFTEVVAAGWMMLPTDVFLTGLREMLQQFAISLALGIGAGLVLGILIGVAPVLNQLFRYVLEFLRFTPSVVYIPILLLLMGARPPVAITLAAIGATWPVLYQTYYGVVGVSPILKDTGRVFGLSRAQQIRSITIPSVSPFLATGIRIAAAHALIIVVAVQIIAAVPGTGRDIQNYAENGVFPRMYALILVVGIIGLIINGLLELLERRQLHWHASYREKQANANANANANA
D1-29_02264822ssuC_5COG0600Putative aliphatic sulfonates transport permease protein SsuCATGACGACCACCACAGCGACCAGCGCATCGACCACCACCGAAGCCACTGGACGGCGTTGGTCCTCGCGCTTGAGCGGTACGATCTTCTCGCTCATCCTTCCCGTGGTGATCCTTGTCATCTGGTGGTTCGTGTCGGCGAACAGCACCTCGCCGTTCTTCCCACCCCTCCAGTTGATCCTCGAGACGTTTGTCGAGGCCTGGCTGTCGGCGCGGGTTATGTCCGATATTGTGCCGAGCCTCACGCGCCTGGTGGTCGGATTCCTGATCGCCGCCGTCGTCGGCGTCTCGCTCGGTGCGCTCCTCGGGCGGCTGCGGATCGCGGCCTACGCACTGAACCCGGTCCTGCAGTTCTTCCGATCGCTCCCGGCGACGTCACTGATCCCGGTCGCGGTGGTGCTGTTCGGCATCGGCGACACCCCGAAGATCGTGCTGATCGCCTTCGTGAGCTCCTTCCCGATCCTGCTGAACACGATCGACGGAGTCAGGAACATCGACCCGGTGATCGAAGACGTCAGCAGGTCCTTCCGGCTGACCAAGATGCAGCGCTTGCGCTGGGTTCAACTCCACGCCGCCTCGCCTCAGGTGATCTCCGGGATGCGTATCGCGTTGAGCCTCGCCTTCGTGGTCATGGTTTCGTCGGAGATGCTTGGCGCGACGAACGGCATGGGCTATGTGACCCTGCTCGCGCAGCAGGGCTTCCAGATTCCGCTCATGTGGTCCGGACTTATCCTGCTCGGACTGATCGGGCTGCTCGTTAACGGCATCTTCATTCTGGTGGAGCGCAAGCTGCTCCACTGGTATACCCAAAATCAGGAGGACTGAMTTTTATSASTTTEATGRRWSSRLSGTIFSLILPVVILVIWWFVSANSTSPFFPPLQLILETFVEAWLSARVMSDIVPSLTRLVVGFLIAAVVGVSLGALLGRLRIAAYALNPVLQFFRSLPATSLIPVAVVLFGIGDTPKIVLIAFVSSFPILLNTIDGVRNIDPVIEDVSRSFRLTKMQRLRWVQLHAASPQVISGMRIALSLAFVVMVSSEMLGATNGMGYVTLLAQQGFQIPLMWSGLILLGLIGLLVNGIFILVERKLLHWYTQNQEDPGPT0001145_2549DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_02265825nrtCCOG0715Nitrate import ATP-binding protein NrtCGTGCTCAGCGTTGAACGACTGCAAAAGACCTATGCTACGGGCGGCAAGTCCCTTGAGGTGCTTCGAGACGTGAGCTTCACGGTCAAGGAGGGCGAGTTCGTCACTGTCGTGGGGCCGTCCGGAGCCGGGAAGACCACGCTGCTGCGCTGCATGGCCGGCCTGCTGCCGCCTTCCGGCGGGAAGGTGACGTTGACCGACACCGGCAGGGTCATCGACTCGCCGCCGAAAGAGATTGCCTGCGTGTTCCAGGACTACAGCCGTTCGCTGATGCCCTGGTACAAGGTCAGTCGCAACGTCGCCTTGCCGCTCGCCAACACCATCAAGGACCGGGACGAGCGCCGGCAGGCGGTCGAGCAGGCGTTGCAGAGTGTCGGGCTCGATGGTTTTGGGGACAGCTATCCGTGGCAGCTCTCCGGCGGCATGCAGCAGCGGGTGGCGATCGCCCGTGCCCTCGCCTACCGCCCCGAGTTCCTCATCATGGACGAGCCCTTCGCCTCCGTCGACGCACAGACCCGCGCCGACCTTGAAGACCTCATCCTTCGGGTCCGGCAGAGCGCGGGCGTCACCATCGTGCTCGTCACTCACGACATCGATGAAGCCGTCTACCTTGCCGACCGCGTTGTCGTCGTGTCCAACCGGCCGACAGTCGTGATGGACGTGATCGACATCGATCTGCCGCATCCGCGCAGCCAGGTCACGACGAAGGGTCTGCCACGATTCGGAGAGCTCCGCACCAAGGTGGCGAAGCTCATCACGCAAGCCAGCGCAGATGCGGCGGCAGCGCAAGCAGAGGCGGCAGCAGCGCAAGCGGAGGCGAAGGCCTGAMLSVERLQKTYATGGKSLEVLRDVSFTVKEGEFVTVVGPSGAGKTTLLRCMAGLLPPSGGKVTLTDTGRVIDSPPKEIACVFQDYSRSLMPWYKVSRNVALPLANTIKDRDERRQAVEQALQSVGLDGFGDSYPWQLSGGMQQRVAIARALAYRPEFLIMDEPFASVDAQTRADLEDLILRVRQSAGVTIVLVTHDIDEAVYLADRVVVVSNRPTVVMDVIDIDLPHPRSQVTTKGLPRFGELRTKVAKLITQASADAAAAQAEAAAAQAEAKAPGPT0001140_3128DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_022661701mdlCBenzoylformate decarboxylaseTTGACCACCACCGAGCAGGCTCTCTCCCGAACGACTCCGCGGCCGCTCTCCGGCGCGGAGCTCCTCCTCCGGGGCCTCATCGACCGGGGCGTCGACACGATTTACATCAATCCGGGTACCGACACCGCGCCGCTCGCCCGCGCGATCGAGATTGGAATCGCCGAGACACGCCCAGTTCCACGGCTTGTCCTGTGCCCGCACGAGACGGTCGCACTCGCTGCCGCCCACGCGCATTTCGCGGTGACCGGCCAGGTGTCTGCCGTCTTCGTCCACGTCGACGTCGGCACGCAGAATCTCGGCGCGATGGTGCACAACGCGGCTCGGGCGGGGGCAGGCGTCATCATCATGGCTGGCCTCACCCCCTACGACGAGTACGGCACCGTCCATGGCGGGCGCGACCACATCGTCCACTGGATGCAGGACGCACCCGACCAAGCAGGTATCGTCCGGCAGTACGTGAAGGCCACGTTCAACCCCTCCCACGCCAGCCTCGTCCATAAGACCGTGCAGCGGGCGATCGACATCGCAGGGGCCGCCCCGCCCGGGCCGGTTTACCTGACGTTCGGGCGTGAGATGCTCATCGAGACGGCACCGGAGCCAGAGGCCCCGCGGCTGGGCTCCTTGTTCCGCTCGGGCCCGAGCCCGGAGGCAACCGACGCGAGCCTTCGGGAGATCCGGGCGAGCAAGCACCCCGTGCTTGTCACCTCCCGGGTTGGGCAGGACCCTGAAGCAGTCGCACCGTTCACCCGGCTCGCGGAGCTCATTGGTGCGACCGTCATCGATCCGCTCAAGGAGCGGATGAACTTCCCCCCGACGCACCCGCTCGCCGCGACCAACGTCGCGGCAGCCTGGGCGGAGGCTGACCTAGCGATAGTCCTCGATGCGCCCGTTCCCTGGATCCTGGGAAAGGAAGGCCCCCGGCGGGACTGCCGGGTACTCCTCATCGACACCGATCCGCTCCAAGTCGCGATGCCGAACTGGGCGTTCCCGGCGGATGTGCGCGTCACGAGTTCGCCGCGCGTTTGGCTCGAAACGATACTCGCGCGGCTCGAGGCGGAGGGTGCGAGGCCCGTCCCGCTCGGGCGGCGGCCTTTGATGCCCAAACGCCCGACCCTCGGTGCATCGCTCACGGCGCAGGACGTCCTTGCCGTTCTCGCCGACCACATCACGGCGGAGGATCGGCTCATCGAGGAGTCGACGACCTCGGCGGGCTATGTCCGCCAGTGGCTCCCGCGGACAGTCCCGGGCACCTTGTTCCGCGCCGGCGGCGCCGGGCTCGGCTGGGCCCTCGGCGCGTTGCTCGGGGCGATGGCCGCCGAGCCGGAGCGGCCGACCTTCGTCGTCGTCGGGGATGGCTCCTTCATATTCAGTGCACCGGTTGCGGCGCTCATTGCGCTGCGGCGCGAGCGCGTCGACGGTCTCATCGTGGTACTCCAGAATGGTGGCTATGCGGCGAGCAGTCAGCCCGTCCACGACCTCTTTCCCGACGCCGAGCGGCCCCAGCCGCCAGCGACTGCCTTCCTTGCCGAGGTGGACATCGCCGGGATCGCCGCGGCGTGTGGCGCGACCGGCTTCACGGTGACCTCCCCGCAAGATCTCGCCGATGGGATAAAGCGCGCTGTCGCCGCTTGGCGACAGGGGGGCCTCGTGGTGCTCGCGGCAATGATCAGTTCGCCATGGATCAAGCCAGCGGACTACTGAMTTTEQALSRTTPRPLSGAELLLRGLIDRGVDTIYINPGTDTAPLARAIEIGIAETRPVPRLVLCPHETVALAAAHAHFAVTGQVSAVFVHVDVGTQNLGAMVHNAARAGAGVIIMAGLTPYDEYGTVHGGRDHIVHWMQDAPDQAGIVRQYVKATFNPSHASLVHKTVQRAIDIAGAAPPGPVYLTFGREMLIETAPEPEAPRLGSLFRSGPSPEATDASLREIRASKHPVLVTSRVGQDPEAVAPFTRLAELIGATVIDPLKERMNFPPTHPLAATNVAAAWAEADLAIVLDAPVPWILGKEGPRRDCRVLLIDTDPLQVAMPNWAFPADVRVTSSPRVWLETILARLEAEGARPVPLGRRPLMPKRPTLGASLTAQDVLAVLADHITAEDRLIEESTTSAGYVRQWLPRTVPGTLFRAGGAGLGWALGALLGAMAAEPERPTFVVVGDGSFIFSAPVAALIALRRERVDGLIVVLQNGGYAASSQPVHDLFPDAERPQPPATAFLAEVDIAGIAAACGATGFTVTSPQDLADGIKRAVAAWRQGGLVVLAAMISSPWIKPADYNANANANANA
D1-29_02267798pcaR_2COG1414Pca regulon regulatory proteinATGAGTAGGCGGCCTGAGGGTCTAGACCAACGCGACTATGTTCAGTCCCTCGAGCGGGGACTCGCGGTCATCTTGGCCTTCGCTGATCACCGTCCGCGGCTGACTCTGACAGAGGTCGCAGCCGCAGCGGGACTGAGCCGTCCCACCGCACGACGCCTTCTGATCACCCTCGAGGCACTCGGTTATGTCCGCGCCGACGGGCGCGGCTTCTTACTGACGCCGCGCGTCCTCACCATCGGATACGCCTATTTGAACTCGCTCGACCTCAGGGAGATCGCGCAGCCGGTGATGGAGCAGATCGTCGCCGAGGTGAGAGAGACCTGCACGCTGGCGACACTCGACGGATCGGACATCGTCTATATAAGCCGCATCTCGATGCGGCGGATTAGCAATCTCTCGCTTGTCATCGGCACCCGGCTCCCGGCCTATGCGAGCGCGATGGGACAGGTGATCCTCGCCGATCTCCCAGCGGCGGGCCTGCGCCACTATCTCGACACAACCGGACTTGAGGCGATCACGCCGCACACCATCACGAGCCCCGCCGCTCTCAAAGAGCGCCTCGCGAAGATACGCGAGCGCGGCTGGTCGGAAGTGGACCAGGAATTCGAAACCGGGCTGCGCGCGATTGCGGTGCCTGTCCGCGGCGGCGACGGACGGGTGTTCGCCGGGCTTGGCCTGTCGTCCACCGCCCTGACGACGCGCGAACTGCTGGAGCACCTCCCGCTGCTCCAGGACGCCGCCGCAAAGATCAGCGCCGGACTCGGCAGCGAGTTTTCGACCCGCGTAGAGCATCACTGAMSRRPEGLDQRDYVQSLERGLAVILAFADHRPRLTLTEVAAAAGLSRPTARRLLITLEALGYVRADGRGFLLTPRVLTIGYAYLNSLDLREIAQPVMEQIVAEVRETCTLATLDGSDIVYISRISMRRISNLSLVIGTRLPAYASAMGQVILADLPAAGLRHYLDTTGLEAITPHTITSPAALKERLAKIRERGWSEVDQEFETGLRAIAVPVRGGDGRVFAGLGLSSTALTTRELLEHLPLLQDAAAKISAGLGSEFSTRVEHHNANANANANA
D1-29_02269180hypothetical proteinATGAGCGCCAGCGCCAAGCCCCGGCTCGCTGGCCGGCAACCCTCCAACCGCGGTGGGGTGCCCCGGGTGAGGACCTGGCTGTCCGGCAACGGCCGGATGGCAAGCGCGGCCCGTGGTGCTCCCAACATGCCCCGGGCCCACGTCAAAGGAGCCTTGAATGTCCAACGGATGGTCTTTTGAMSASAKPRLAGRQPSNRGGVPRVRTWLSGNGRMASAARGAPNMPRAHVKGALNVQRMVFNANANANANA
D1-29_022701326metYCOG2873O-acetyl-L-homoserine sulfhydrylaseATGTCCAACGGATGGTCTTTTGAAACCCGCCAGATCCATGCCGGGCAGGAGCCGGATTCTGCCACCGGCGCCCGGGCACTGCCCATTTACCAGACCACGTCTTTCGTGTTTCCCAGTGCGGAAAGCGCTGCCAACCGCTTTGCACTGGCCGAGCTGGCGCCGATCTATACGCGCATCGGCAACCCCACGCAGGACGCGGTGGAGCAGCGTATTGCCAGCCTGGAAGGAGGCCTGGCAGCGCTGCTGCTCAGCTCCGGCCAGGCGGCGGAGACCTTCGCGGTCCTGAACATCGCCGAAGCCGGGGACCACATCGTGGCCAGCCCCAGCCTTTACGGCGGCACCTACAACCTCTTCGCCCACACGCTGAAGAAGTTCGGCATCAGCGTCACGTTCGTAGCGGACCCGGACAACCTGGACCAGTGGCGTGACGCGGTGCAGCCGAACACCAAGCTCTTCTTCGCCGAGGTGGTGTCCAACCCCCGCCAGGATGTCCTGGACATTGAGGGCGTATCCGGGGCTGCCCACGAGGCGGGCGTGCCGCTGATCGTGGACAACACGCTGTCCACGCCGTACCTGATCCGTCCGCTGGAATGGGGCGCGGACATTGTGGTGCATTCGGCCACAAAATACCTGGGCGGCCACGGCGCAGCGATCGCGGGCGTCATCGTGGATTCCGGCAAGTTCGATTTCGGCAAGGACCCGGAGCGGTTCCCCGGCTTCAACACCCCGGACCCCACCTACAACGGGCTGGTCTACGCCCGCGACCTCGGCGAGGGCGGCGCCCTGGGCGCCAACCTGTCCTACATCCTCAAGGCACGGGTCCAGCTCCTGCGGGACCTGGGCTCGGCGGTGTCCCCGTTCAACGCGTTCCTGATCTCGCAGGGCCTGGAGACCCTGAGCCTGCGGGTGGAACGCCACGTGGCCAACGCCGGCGAAGTGGCCCGCTGGCTGGAAGCGCGTGACGACGTCGAATCCGTCGCCTACGCGGGCCTGCCCTCAAGCCCCTGGTACGAGCGCGGGCGGAAATACGGCCCCAAGGGCACGGGTGCCATCGTGTCCTTCAATCTTTCCGGAGGCGCCGAGGCGGGCAAGCGGTTCGTGGACGCGCTGGAGCTGCACTCGCACGTGGCCAACATCGGGGACGTCCGGTCCCTGGTCATCCATCCGGCCTCCACCACGCACAGCCAGCTCTCCCCGGAGCAGCAGGCCGTGGCCGGCGTGACCCCGGGACTGGTCCGCCTCTCCGTGGGCATCGAGCACATCGATGACATCCTGGCAGACCTTGAAGCCGGCTTCCGTGCCGCCAAGGAGGCCAGCGGCGCCTGAMSNGWSFETRQIHAGQEPDSATGARALPIYQTTSFVFPSAESAANRFALAELAPIYTRIGNPTQDAVEQRIASLEGGLAALLLSSGQAAETFAVLNIAEAGDHIVASPSLYGGTYNLFAHTLKKFGISVTFVADPDNLDQWRDAVQPNTKLFFAEVVSNPRQDVLDIEGVSGAAHEAGVPLIVDNTLSTPYLIRPLEWGADIVVHSATKYLGGHGAAIAGVIVDSGKFDFGKDPERFPGFNTPDPTYNGLVYARDLGEGGALGANLSYILKARVQLLRDLGSAVSPFNAFLISQGLETLSLRVERHVANAGEVARWLEARDDVESVAYAGLPSSPWYERGRKYGPKGTGAIVSFNLSGGAEAGKRFVDALELHSHVANIGDVRSLVIHPASTTHSQLSPEQQAVAGVTPGLVRLSVGIEHIDDILADLEAGFRAAKEASGAPGPT0001995_267DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001995-metC-K01760NANA
D1-29_02271345hypothetical proteinATGGCGGTCATCGAGCAGGTGCGTGAAGGAATGCACGTTGTAGCGCCGGATGGCAAGAAGATCGGCAAAGTGGAAGCACTGAAGATGGGGGATCCGGAGGCAGTGACGGCGGAGGGTCAGACCGACCCTGAAACGGGAGGCCTCGTCGGCACAGCGATTCACGCATTCGCTGCCACCTCCTCGTTGCCCCATCACACGGCGGAAAGGCTGTTGCGGATCGGCTATGTGAAAGTGGACAGGTCAGGTCTGTTTGCCGGTCACGCATACTTCGCATCGGATGAGCTGGAGAGAGTCGACGGCGACACCCTATGGCTCAAAGAAGGCCCGCATACCGACCAATTGTGAMAVIEQVREGMHVVAPDGKKIGKVEALKMGDPEAVTAEGQTDPETGGLVGTAIHAFAATSSLPHHTAERLLRIGYVKVDRSGLFAGHAYFASDELERVDGDTLWLKEGPHTDQLNANANANANA
D1-29_02272804hypothetical proteinATGATTCTGTCTACAGTCACGGATGAAGTCATCGCTGACCGCTCCCCGGCCGCGTTCCCCCGAATTTTCGAAACAACCAAGGCCGAAGGAATCTCCGATGTTGAGATCCGCATGGTCGAAGCCAAGCGATTCCCTGTAGTGGATCCAGATGCCTGGGACCGCCTCAAATCAACATCACAAGAGTACGAAATCACCCTCTCCGCCGTTTCACCCGGCCTGTTCAAGGCTCCGCTGAACAGCGACCTGCTATCCCTGCACTCGAACGGCATCCTGGAGATGAGCCTTGATTTGGCAGAACGGCTGGAAATTAACACCCTGATCGTCTTCGGCGTGCAGCGCAGCCACCAGGACACCGCATCAGATCTCCAGCGCGTCATCGAGATTCTTGGACAGACGTCCGACCGTGCCGCTAAACGGGGCTTCACCGTGCAGCTGGAAAACATTCCAGGCTCCTGGGCTGACACGGGCGATAACTGCCTGGCCCTGCTCGAAGGCGTTGGCAGGGACAACTTCGGATACGTGTGGGACACCGGTAATCTCTACGAAGCTGAAGAGAAGCCCTTCCATCAAAGCTACGAAAAACTCAAGCCATACATCAAAAACGTTCACCTCAAAGACGGTCGCTTCATCGATGGCGTTATGACTTGGGAGCACTTCGGAACCGGGGTAACCGACATCGCCGGACAGGTCTCCGCCCTTAAAGCAGACGGCTACGAAGGCAAACTCACCATGGAAGCCAAGTGCGAACCCCATATGGACGAAGACTTCATTGCGTCCGTCCGCTACCTGAAGTCAGTGCTGTAAMILSTVTDEVIADRSPAAFPRIFETTKAEGISDVEIRMVEAKRFPVVDPDAWDRLKSTSQEYEITLSAVSPGLFKAPLNSDLLSLHSNGILEMSLDLAERLEINTLIVFGVQRSHQDTASDLQRVIEILGQTSDRAAKRGFTVQLENIPGSWADTGDNCLALLEGVGRDNFGYVWDTGNLYEAEEKPFHQSYEKLKPYIKNVHLKDGRFIDGVMTWEHFGTGVTDIAGQVSALKADGYEGKLTMEAKCEPHMDEDFIASVRYLKSVLPGPT0003570_91DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-PETROBACTIN_BIOSYNTHESIS,PGPT0003570-asbF-K15652NANA
D1-29_02273927dasC_4COG0395Diacetylchitobiose uptake system permease protein DasCATGTCAATTGACAACCCTGTTACCGCGGCCACCCGGCCCGCCCTGTTCCGCCGCAGCACGCCACAGGATGGCAGGTTTGAATCTGCTCTTGGATGGCAACCCGGCAAGAAGTCTTCACTCGTGTTGCGGACAGGGCTTGCCCTCCTGGCCGTCCTGATTTTCGCTGGCCCCATTCTGGCAATCATCGCCAGTGCGTTTGACCTGAATGCCGACCCTACCCGGTTGACCCTCATCCCCCAGAACCCCAGCCTTCGAAACTTCGAAGTGGCCACAGATCGCAATGTCTGGGGGTTCTTCTTGAATTCGGTCCTGATTGCCGGCTTTGGTCTGCTTCTGCAGACCATCGTTGCGGTCACCAGCGCATATGCTTTGGCCCGCCACAAGTTCCGGGGCCAGGCGATAATCCTGTGGCTCTTCCTCGCCACCATGATGTTGCCGGAGGAAGTGGTGGCAGTACCCCTGGCCGTTGTTTTGGGAGACGTACCCCTGACCGGCATCAACATGCGTGGAACCATCTGGGCCGTAGCCCTTCCGGTTGCCGCGTCCGCTTTCTCCATCCTGGTGATGACCGCATTCATGAAAGACATCCCGGACGAAATTGAAGAAGCGGCAAAGATCGACGGCGCCGGTGAGATCCGCATGCTGGTCCAGGTCATCCTTCCACTGTGCAAGCCCGCGCTGGGCGTTATTACCATCTTTGGCTTCATTGGCGTGTGGGACCAGTATCTGCTCCCGCTCATCGCCGCCAACAGCACATCGAATTACACCATCACGGTGGCCTTGGCCAGCCTGCGCGCAGACGTTCAAGTAGGCACTGGTGTCCTTCTCGCCGGCGCCTTCCTGGCTCTCATCCCTTCCCTCCTGGTGTACCTGCTCCTGCAAAACTCCTTGGTCCGAGGCATGACTACCGGCGCAGTCAAAGGCTAAMSIDNPVTAATRPALFRRSTPQDGRFESALGWQPGKKSSLVLRTGLALLAVLIFAGPILAIIASAFDLNADPTRLTLIPQNPSLRNFEVATDRNVWGFFLNSVLIAGFGLLLQTIVAVTSAYALARHKFRGQAIILWLFLATMMLPEEVVAVPLAVVLGDVPLTGINMRGTIWAVALPVAASAFSILVMTAFMKDIPDEIEEAAKIDGAGEIRMLVQVILPLCKPALGVITIFGFIGVWDQYLLPLIAANSTSNYTITVALASLRADVQVGTGVLLAGAFLALIPSLLVYLLLQNSLVRGMTTGAVKGPGPT0016540_1844DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_022741017melD_7COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACCGGTAAAACCGTTCACCCGGCGCCGTTAACCACGGCGTCGGGACCCAACTCCCGGGCACGCCGCACGCTGCGGCCGGCGCAAGGCGGGTTGGCCCAGGAGGGGTCGTCGCAAGTCGCATCGGCCCTGCGTATCAGGCCCCGACGGCGCAAAGCCTTCCCCTGGATGGTGTGGTTCCTGCTGTTCCCGGCCATGCTGCTATTCCTGTACTTCAAGTTCATCCCGATGTTCGCCGGGATCTCCATGAGCTTCCATGAGGTCCGTCCCTTCCTTGGTGACATCTGGGTGGGGATGGATAACTACCTCACGGTTTTGGCTGATCCCAAGTCCGGAAGCGCCATCTGGCACACCCTGGTGCTCGGAATTGGTCAGTCTGCCGGAGCAGTGATTGGCGGGCTGGCGCTGGCGATGATCCTCGAAGGTGCCAGCCGCAGCCTCGCGGTTGTACGCACTCTGGCCTTTCTGCCCGTTGTCACTGCCACTGCTGTGATCGGCGAAGTGTGGCGCATCATCTATTACCCGGCTCCCGACGGGCTCATCAATTCGATCCTCGGCGTCGTGGGAATCGGGCCGGTCCGCTTCCTCGAAGACCCGGACACGGCATTGGCATCGGTCATGGCCGTAGGCATCTGGCAAGGTGCCCCCTACAACATGGTCATCATCCTCGCCGGTCTGGCAGCCGTGGACCGTTCCCTCTACGAAGCGGGAGCAATCGATGGCGTCAACACCTGGCAACGACTGCGATACATCGTTATGCCTGCGCTCCGTCCTGCCATGACTATCGTGATCGTCCTCGCAGCGATCCGTAGCCTCAGGGTTTTCACCGACGTTTGGGTTCTCACAGGGGGTGGTCCCTCGGGCGCCACCGACGTTTGGATGACCCGGGTCTACTCGCTGGGTTTCGAGCGCAACGATATCGGTGTGGCGTCCGCCGCCTCGGTCCTGCTACTTGTCGCGACTCTGGTGCTGACCCTGGGTTCAGTGCTTGTCATGCGGCGGAGGAAGGATGCCTAAMTGKTVHPAPLTTASGPNSRARRTLRPAQGGLAQEGSSQVASALRIRPRRRKAFPWMVWFLLFPAMLLFLYFKFIPMFAGISMSFHEVRPFLGDIWVGMDNYLTVLADPKSGSAIWHTLVLGIGQSAGAVIGGLALAMILEGASRSLAVVRTLAFLPVVTATAVIGEVWRIIYYPAPDGLINSILGVVGIGPVRFLEDPDTALASVMAVGIWQGAPYNMVIILAGLAAVDRSLYEAGAIDGVNTWQRLRYIVMPALRPAMTIVIVLAAIRSLRVFTDVWVLTGGGPSGATDVWMTRVYSLGFERNDIGVASAASVLLLVATLVLTLGSVLVMRRRKDAPGPT0016535_3531DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_022751314hypothetical proteinATGACTAAATTGACACTTTTCCGCTCGCTTATTGCAGCAGGTTGCTCCGTCGCCATGATTTGCTCCGCGGGATGCTCGTCGTCCCAGCCAGTGAGCACCGCAGACGACGGCCAACCATTGGAAGTGTGGTCCCGCAGCGGACCGGAGGCTGCCAAGACGTACCAGGCGGTTCTCGACGCCTTCACGCAAAAGACCGGTATCAAGGTTGACTACCTGGCCACAGTGGAATTCGAAACACAGCTGCAGGCACGTGCCGCTGCCAAAGACCTCCCGGACGTCATGATCTACGACCAATCCAGCATGGCCAATTACGCCGAAAAAGGCATGCTCAGGACAATTGAACGCGATGACATCGCCGGGGCGGACCAGTTGAGTGACGATTCATGGGCGTCAGTCAAGACGGCAGATGGTACCCACTACGGCGTCCCCTTCAGCCAGCATGCCCAGGTCACCTTCATCCGGAAGGACTGGAGGGAGCGGCTCGGGATCGCAGTGCCGAAGAGCCATGACGAACTCCTTGCCCTCGCAACGGCCTTTGCCACAGGGGATCCCGACGGCAACGGTGTCAACGGCGACACCTACGGCATGACGGTGCCAGGCACAACCGACCGCGGATTCTTCACCTGGTGGGCTTCCTCCTACCTCTGGCAGCGCGACGCCGGCATCGTCAACGGCAGCGACGGAAAATACAGCGTCGAGGCGAACAGCCCCAAGACGGTGGAAGCAGTTTCCTGGCTGAAGACGTGGTTCTGCACGCCGAACATGGTCCAGCCTGGAGCACTGACCAACGCCAGTGCCACTCCATTCTTCGCCGAAGGCAAGTCAGGGATCTACCAGACAGGGCCTTATGCGTTCGCCAACTTCGACAAGTCCCCAGGGAAGGACAAGTACGAGGTCATCACCGCACCCAAGGGCCCGGGCGGAAGCACCACGCTGACCGAACGCACTAGCATCTACTTCGGCGCTTCGACCAACAAGCCTGACAAGCAAAAGGCCCTCGCGGAGTTCCTCATCTCCGCCGAGGCACAAAAGCTCGGCATGACCGCTCCGGGCCAGCCGGTGGTGCGGCTCCCCATCAACACATCGGTTGACGCAGCAGAAGTCTATGGGGACCCACGTTGGAAAGTGGCACAGGAACAGTTGGCCGATTCTGAGCTCTTGCCCTCAGATATCGACTTCACTGTCATCCGCCAAGATGTGGCTGAAACTCTCAACTCCATGTTCGGGCAGTGCAGCTCTGATGTTTCGAAAGAACTGAAAGCCCTTTCGGAGCGGATCACCGAGGACCTGAAAAGCAGGGATGCGCTCAAATGAMTKLTLFRSLIAAGCSVAMICSAGCSSSQPVSTADDGQPLEVWSRSGPEAAKTYQAVLDAFTQKTGIKVDYLATVEFETQLQARAAAKDLPDVMIYDQSSMANYAEKGMLRTIERDDIAGADQLSDDSWASVKTADGTHYGVPFSQHAQVTFIRKDWRERLGIAVPKSHDELLALATAFATGDPDGNGVNGDTYGMTVPGTTDRGFFTWWASSYLWQRDAGIVNGSDGKYSVEANSPKTVEAVSWLKTWFCTPNMVQPGALTNASATPFFAEGKSGIYQTGPYAFANFDKSPGKDKYEVITAPKGPGGSTTLTERTSIYFGASTNKPDKQKALAEFLISAEAQKLGMTAPGQPVVRLPINTSVDAAEVYGDPRWKVAQEQLADSELLPSDIDFTVIRQDVAETLNSMFGQCSSDVSKELKALSERITEDLKSRDALKPGPT0016545_7117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02276930argP_2HTH-type transcriptional regulator ArgPATGGACACCTGGAAGCTCGAGGCGTTCGTTAAGACGATAGATCTAGGCAGTATTTCCCGTGCGGCGGTGGCCCTGCACTTGGCACAGTCCGCACTCAGCCAACACCTCTCGAGTCTCGAAACGAAGCTCTCGGTGAAACTGCTCGTCCGGACCAAGCAGGGAGTAGAGCCCACCGCGGCAGGGCGGGTGCTGTACCGGCATGCCCAACTGATTCTGAGGGGTGTCGACAATGCCGTCCAGGAAGTCAAAGCGGTCTCCGAGGGGCCAAGTGGGCGTGTGTCGGTTGGTCTTGCCCCCTACAGCTTCGCTGCCGCCCTGGCAGTGCCACTCATAGAAGCAGTCCGTGCGGCAGCCCCGAAAATCGTTCTTCATGTTCGGGAGAACTTCGGCGGAATACTTAGCGAGGCCATTGCTACCGGGCAGATGGATCTGGGCGTCCTGTATACCCCAGTCCCGCTGCGTGCCGTACACGTAGAGCCGATCCACCGCGAACGGCTGTGGCTGGCAACCAGCAAGCGAGCCGGGCTACCCGACGTCGTGTCGTTTCCCACGCTGACCGATACTGGTGTCTTTCTGCCCTCGCGCCAGCACTCTATCCGGCTTGCTGTTGATGCCGCCTTCCAGCAGCACAATCTTTTCCCCCGGCTACTCGGTGAAGTCGAGTCTGTGCCGACTTTGATGGAGCTCATCAGCAGGGATCTCGGCGCCACCATACTGCCTTTTTCCGCTTTTCCTTCCCTTGGGAGCTATCCGGAAGTCCAGATTCATGAGCTTGACGACCCGGTAACGGACCTCGGGATTGCCCTGTGCACGGGCAGTCATCAGCCCTTGTCAGACCAGGCCCGCATCGTGGAATCCATCCTGAGGGATCTGCTGATGCGGAGCGTTAACAGTTCCGCCGACCACGCTGCATCAGCGCAGAGGGACTGAMDTWKLEAFVKTIDLGSISRAAVALHLAQSALSQHLSSLETKLSVKLLVRTKQGVEPTAAGRVLYRHAQLILRGVDNAVQEVKAVSEGPSGRVSVGLAPYSFAAALAVPLIEAVRAAAPKIVLHVRENFGGILSEAIATGQMDLGVLYTPVPLRAVHVEPIHRERLWLATSKRAGLPDVVSFPTLTDTGVFLPSRQHSIRLAVDAAFQQHNLFPRLLGEVESVPTLMELISRDLGATILPFSAFPSLGSYPEVQIHELDDPVTDLGIALCTGSHQPLSDQARIVESILRDLLMRSVNSSADHAASAQRDNANANANANA
D1-29_022771212aatBCOG0436Aspartate aminotransferaseATGCCTGAATTTGTGCCCGCGTCACGCGTATCCCGAATCAAATCCTCAGCCAGTGTCGCAGCTGCAGCACGTGTCCGGGAGTTGAAGGCGGAAGGCCGCCGAATATTGGACCTGACGGTTGGGGAACCAGACTTCGACACACCGGAAAGCATCAAAACGGCGGCGGTGGATGCCATCAATGCGGGTGACACAAAATACACCTCGGTCAACGGAACGCCGGCATTGCAGAAGGCCATTTTGCAAAGGCTGGAGGTCAGAACCGGGCTTCACTACCTTCCGAGCGAGATAACCATCGGCGGCGGCGCCAAACAGGTCATTTTCACGGCCTTCATGGCGTCCCTGGACTCGGGAGACGAGGTAATTGTCCCGGCCCCGTATTGGGTCTCCTACCCCGACATGGTGCTCGCCAATGAGGGCACCCCTGTGGTGGTGCCGTGTGCCGAAGATGCCGGGTTCAAACTGACCCCGGAAGCCTTAAGTGAATCCATCACTGGCCGGACCAAATGGCTGATCCTCAATACACCCTCGAATCCCACCGGCGCCGTCTACTCGCGAGGTGAGCTCCGCGCGTTGGCTGATGTCCTGGTGCGCTTCCCCCAGGTCCATGTGCTGACCGATGAGATCTACGACCAGATCTACTTCGGCGAGGGCCGCATTTCCAGCCTGGTTGAGGTGGCCCCGGAGCTGAAGGATCGGGTTCTGCTGGTGAACGGCGTTTCAAAAGCGTATGCCATGACGGGATGGAGGCTGGGGTATGCAGCCGGCCCCGCTGGCGTGATCGCTGCCATCAACAAGCTGCAGTCTCAAATCTCCTCCTGCCCATCGTCCATCAGTCAGGCTGCTGCTGCCGCTGCCCTCACCGGAGACCAGTCCTTCATTCAGTCCAACGCAGACGTCTACCGCAGCCGCAGGGACGCTGCTGTCTCAGGACTGAACAAGATCGAGGGACTTTCCTGTTCCACTCCAGAGGGCGCGTTCTATGCGTACGTGAACTGCAGTGACCTTATGGGCAAAAAGACCCCCGACGGGACACCGCTCACAAACGACCAGGACTTCGTCCTCTACCTTCTGAACAGCGCCTCCGTTGCCGCCATCCCCGGGTCGGCTTACGGGTTGGGGCCCTACTTCCGTATCTCGTACGCCACAAGCCTTTCGGTAGTCGAAGAGGCCATCGCCGCCATCGACAAAGCGGTAGAGGCCCTGAGCAATTGAMPEFVPASRVSRIKSSASVAAAARVRELKAEGRRILDLTVGEPDFDTPESIKTAAVDAINAGDTKYTSVNGTPALQKAILQRLEVRTGLHYLPSEITIGGGAKQVIFTAFMASLDSGDEVIVPAPYWVSYPDMVLANEGTPVVVPCAEDAGFKLTPEALSESITGRTKWLILNTPSNPTGAVYSRGELRALADVLVRFPQVHVLTDEIYDQIYFGEGRISSLVEVAPELKDRVLLVNGVSKAYAMTGWRLGYAAGPAGVIAAINKLQSQISSCPSSISQAAAAAALTGDQSFIQSNADVYRSRRDAAVSGLNKIEGLSCSTPEGAFYAYVNCSDLMGKKTPDGTPLTNDQDFVLYLLNSASVAAIPGSAYGLGPYFRISYATSLSVVEEAIAAIDKAVEALSNPGPT0020110_1191DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_02278681ligK_2COG06844-carboxy-4-hydroxy-2-oxoadipate aldolaseATGATTCACGTAAGAACAAATATCAATCGTCCGAGCGAAGACGTCGTCAGCAGGCTGAGCCAGTTCTCGTCTGCGACAATCCACGAGGCCCAAGGCAGGAAGGGGGCACTGAGCTCCAAAATCAAGCCGATTGACCGGGCCATGTCCTTCTGCGGACCGGCGGTCACGGTACGCTGCGCTCCGCGGGACAACCTGATGCTGCAGGTGGCAATCCACTACGCACAGGCTGGAGACGTGGTCCTTGTATCCGCCGGTGAATTCGAAGAGGCGGGCACCTTCGGGGACGTTCTCGGCAATGCCATGAAAGCCAAAGGCCTGGCCGCCATGGTCACGGACTCCGGCGTCCGTGACACCCAGGACCTCATTGAATTGGGCCTTCCTGTCTTCTCAGGCAGCATCAGCATCAAGGGCACGGTCAAGGAAACCATTGGGCCCATCAATCACCCGGTGGTCTTCGGGGACGAAATCATCTATCCGGGCGATATTCTCCGGGGAGATGCCGACGGCGTCGTCGTCATCCGTAAAGAGGAGGCTGAAGAGGTGGTCCGACTCTCGCAGGAACGCGATGACGCCGAGCGCGATCTCATCCGTCGGTACCACGAAGGCGGCACAACAATCGAGCTCTGCAACCTCACGGATGTGCTCAAAGAAAAAGGTCTTCTTGTGGAAAATGCCAGCTGAMIHVRTNINRPSEDVVSRLSQFSSATIHEAQGRKGALSSKIKPIDRAMSFCGPAVTVRCAPRDNLMLQVAIHYAQAGDVVLVSAGEFEEAGTFGDVLGNAMKAKGLAAMVTDSGVRDTQDLIELGLPVFSGSISIKGTVKETIGPINHPVVFGDEIIYPGDILRGDADGVVVIRKEEAEEVVRLSQERDDAERDLIRRYHEGGTTIELCNLTDVLKEKGLLVENASPGPT0002085_662DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
D1-29_02279918cynRHTH-type transcriptional regulator CynRATGGACACTAGGAAACTTGCCTACTTCGTGAAAATTGTGGACTCCGGAAGCATCACGCGCGCCGCGGCGGCATTACACGTTGCCCAGCCTGCCCTCAGCCAGCAGGTTTCAGCCCTGGAAAGTGAGTTGAAGCAACGTCTTCTGATTCGCAGTAAGCAGGGCGTGGTTCCTACAGCAGCCGGCCACACTCTCTACCGCCATGCCCAGACCATCCTGCGGCAGGTCGAACAGGCACGCGAGGATGTCGCCCGTTCAGGTGCCGCACCCTCCGGACGCGTGTCAATAGCGATCGCGCCGTACAGTATGGCCTCCAGCCTGACGCCCCAGATCATCAGTGAAGTGGGCCGCAGATATCCGGATATAGTGCTGCACCTGACTGAGATCTACGGAGGAGTCCTCAGTGAAGCCATCAAGAATGGCCGCCTGGACATGGCCCTTATCTATGAGCCGGGTCCCATTCGGGGGGTGCAGTTCACCACGATGATCGTGGAAGACCTGCATCTGGTGGTCAACCGCGCACGCGTGCCCTCATCGGACTCCACGGAGATCACCTTAGAAGAGGTGGAGCGTTTCGGGCTCTTCCTTCCCGAGCAAAACCACACCCTCCGTCAGATCGTGGAGGGTGGCATGCAAAAGAAGGGGCTGACTCTGCGTTTGGTTGGTGAAGTGGAATCCGTCCCTTCGTTGACCAGGCTCCTTCGGGCCGATCTGGGCGCAACCATTCTTCCGAAATCCGCCTCAGACGCGCTTTTCCATGAGGAAGATTTTCTGGTTCTGAGGATTACCGACCCTGAACTGCAATGCAAAATTGCTTTATGCACTCCAGATCACGAGCCCTTGTCGGAGGCTGCGTCCGCTGTTCTTCTCGTGTTGAAAGAAATGCTCCAGGAGATGCTCAGTGAGAAGTATGCCCGGTAGMDTRKLAYFVKIVDSGSITRAAAALHVAQPALSQQVSALESELKQRLLIRSKQGVVPTAAGHTLYRHAQTILRQVEQAREDVARSGAAPSGRVSIAIAPYSMASSLTPQIISEVGRRYPDIVLHLTEIYGGVLSEAIKNGRLDMALIYEPGPIRGVQFTTMIVEDLHLVVNRARVPSSDSTEITLEEVERFGLFLPEQNHTLRQIVEGGMQKKGLTLRLVGEVESVPSLTRLLRADLGATILPKSASDALFHEEDFLVLRITDPELQCKIALCTPDHEPLSEAASAVLLVLKEMLQEMLSEKYARNANANANANA
D1-29_022801107hypothetical proteinATGGAAAGATCCGACCAAATGAAAATCATAACAAAGGGCAAGATCGGTCTGGCTGCGGCCGCTGCTGCAACGCTGGTACTCACTGGTTGCGGCGGAGGCGCCTCCGGTTCCGGCTCTGACGGCGGCGGCAGCGCCACGTCAGGGGAAATTAACCTGATTGCCTACTCCGGCGTCTGGCAGGACCAATACACGGCTGCGGTCATCGAACCGTTCAAGGCCAAGTACCCGGACATTAAGATCAACTACGCCTCCAAGCGCTCCTCAGCAGAAATGCTTAGCGCCCTGCAGGGGCAGAAGAACAATCCGTCCACCGACGTGGCAATCATGGACAACTCTGTATCAACCACAGGTAACACGCAGGGACTGTTCGACAAGATTGATACCGCCGCCGTCCCCAACCTGGCGAACGTTCCAGACCAGTTCAAGAACAAGGATGGATTCGGTCCGGTGGTAATGCTCGACGCAGTCGGCCTGCTCTATGACACCGCAACTTTCCCCCAGGCACCTGAAAGCTGGGACGTGCTGTGGGATCCGGCGTATGCGGGCAAAATCAACGTTAACGCTCCGCCCTCCCTGCTGGGGCTCTCCCTGACCGCCATCACCTCGAAGATGGAGGGCGAGGATTACACCCAGAGCATCGACAAGGCGGTGGCACGCCTCAAAGAGATGGCGCCCGGCGTCCAGACGTTCGCGCCCAACCCCGATGAATACCAAAACGTGATCACCGGCCAGACGGTACTGGGACTTGGACAAAACGCCCGCGGTCAGTTCTACAGCGACCAGAGCAACAAGAAGATGGGCGTGACCTTCCCCAAAGAAGGCACCGTGTACCAGATCAACACAGTGAACGTTGTTAAGGATGCGCCCAACAAGGAGGCCGCCCAGACCTTCGTTGACTACGCGCTCTCAGCCGAGGCCCAGACCGCTTTCGCCAAGGCACTCTTCTACGCACCCTCTGTGACCAACGCTGAACTGCCGGCGGACGTGAAGGACCGCGTGGTTCCCACTGACGGCTCCCTGAACATCGTTCCCCTCGATGTTCAGTTCCTGTCTTCAGCCCGTGACAAGTGGACCGACACTTGGAAGCGCGAAATTATCACCAAGTAGMERSDQMKIITKGKIGLAAAAAATLVLTGCGGGASGSGSDGGGSATSGEINLIAYSGVWQDQYTAAVIEPFKAKYPDIKINYASKRSSAEMLSALQGQKNNPSTDVAIMDNSVSTTGNTQGLFDKIDTAAVPNLANVPDQFKNKDGFGPVVMLDAVGLLYDTATFPQAPESWDVLWDPAYAGKINVNAPPSLLGLSLTAITSKMEGEDYTQSIDKAVARLKEMAPGVQTFAPNPDEYQNVITGQTVLGLGQNARGQFYSDQSNKKMGVTFPKEGTVYQINTVNVVKDAPNKEAAQTFVDYALSAEAQTAFAKALFYAPSVTNAELPADVKDRVVPTDGSLNIVPLDVQFLSSARDKWTDTWKREIITKPGPT0007855_2384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-29_022811131cysACOG1118Sulfate/thiosulfate import ATP-binding protein CysAGTGACTGAAACAAAACTGTCGATCGTGGATCTGACCAAAAGATACGCTGCCGGTCTTGAACCGGCCGTCGACCGCCTGAACATGGAGGTGGAAGAGGGGCATCTGGTGGCGCTCCTCGGCCCCTCGGGCTGCGGCAAAACCACCACACTGCGGATGGTTGCCGGCCTGATGGATCCGACCGCCGGCTCCATTGTGGTTGACGGCAAGGAAATCACCCACACCCCCGTCAACAAGCGCGGCATGGGCATGGTCTTCCAGTCCTACGCCCTGTTTCCGCACATGAACGTCGAACAGAATGTGGCCTTCGGGCTGCAGATGCGCCAGGCCTCAAAGGCCGACCAGAAACGCCGGGTGGCTGGAGCGCTGGACATGGTGCAGCTGGGACACCTGTCCAAGCGGCAGGTGAGGGAACTCTCCGGCGGACAGCAGCAGCGCATTGCCCTGGCAAGGGCACTTGTTGTGGAGCCGACGCTCCTGCTCCTGGACGAGCCATTGTCCAACCTGGACGCCAAGCTCCGCGAAACCATGAGGACAGAGATTCGCTCCATCCAGCAACGGACCCGGGCCACCACGCTGTTCGTCACACACGACCAGGATGAGGCGCTGGACATGGCAGACCGGATCGCTGTGATGAATGGGGGACTGATCGAGCAGTTTGGTTCTCCCACCGACGTCTATGAACGGCCGCGGACCCGGTTCGTGGCAAATTTCATCGGCCAGGCCAACTTCCTCACCGCCCGCGTTTTGTCCGAAACAGGTTCGGCCGCCAAGGGCGAAACGCATTACCGGGTATCAGTGGACGAACTCGGCCAGTTCGGAGCCGTGGGGGAACCCGGGCTGACGGGGTCCACGCATGAACTGGTCATCCGGCCGCACCGCCTCAAGGTATTCCTGCACCCTGCCGGCACCGAGACGATCTCGGGCATCATCGAGCGTGTCAGCTACACGGGCGATGCCATCTCGGTGGCCGTCAGGGCTGGGGACCGCGTCTTGCAGGCACAGATGCCCACGTCCAGCGGGGACCTTCCCCGTCCGGGCGACGCAGCCTATCTTTCATGGAACGAGCAGGATGCATACTTGCTGCCTGCCGCAGTGGAAGCCCCTGCCGCCCTGGAAGCCCAAGTATCATGAMTETKLSIVDLTKRYAAGLEPAVDRLNMEVEEGHLVALLGPSGCGKTTTLRMVAGLMDPTAGSIVVDGKEITHTPVNKRGMGMVFQSYALFPHMNVEQNVAFGLQMRQASKADQKRRVAGALDMVQLGHLSKRQVRELSGGQQQRIALARALVVEPTLLLLDEPLSNLDAKLRETMRTEIRSIQQRTRATTLFVTHDQDEALDMADRIAVMNGGLIEQFGSPTDVYERPRTRFVANFIGQANFLTARVLSETGSAAKGETHYRVSVDELGQFGAVGEPGLTGSTHELVIRPHRLKVFLHPAGTETISGIIERVSYTGDAISVAVRAGDRVLQAQMPTSSGDLPRPGDAAYLSWNEQDAYLLPAAVEAPAALEAQVSPGPT0007860_700DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-29_02282921potBCOG1176Spermidine/putrescine transport system permease protein PotBATGACAACCACCCAACTGCAGTCCCCGTCTGTCCGCCGGGCCGGTGCCGCCGAAGGTGAGCTGGAAAAGGCCACAGGACGCCGAAACCGGCGGACCTACCTGGCCCTCCTCCTGCCTGGTCTCCTCGGGCTGCTGGTGAGCTTCGTCTTCCCGCTGGCCTACATGATTCGGATGTCCTTTAACAAGGGAGCACCGGACGGCGTCATCGAGGAAACGTTCACACTGGACACCTACATCCAGCCGTTAACTGACCCGTACTATTGGCGGGTCACCCTGGATACCTTCCAAATGGGCGTCACAGTGGGGTTGCTCTGCATTCTGGTGTCGTATCCCGTTGCCCTGTTCCTGGCCCGGAGCACCAGCAAGTACCGAGGGTTGCTTCTGGCCATCGCCATCGCACCCCTGCTGACGTCCGCCGTTGTGCGGACGTACGGGTGGATGGTCATCCTGGGCACGAACGGCCTTGTCAACTCTTCGCTGCAGGGCATGGGCGTGATCGAAACTCCGCTGAGGCTGACGAACAACATGACGGGTGTCACCATAGGCTTGGTTGAGATCTTCATGCCATATGCCATCCTCGCCATGATCTCCGGATTCGGCCGGCTCAGCCCGCAGCTGGAGGAAGCGGCTGGGTCCTTGGGTGCAAGCAAGCTGCAGGTGTTCACCCGGGTCACGCTTCCGTTGAGCCTCCCTGGAATCCTCACCGCGTTCCTTCTGGTCTTTGTGTTGTCCATCAGTACCTTCATCACCCCGCGCCTCCTGGGAGGCGGCAGCGTCCAGGTGCTGGCAACAGAAATCTACGATCAGACCACAGGCCTGCTCAACTGGCCGTTCGCAGCCGCACTCTCCGTGATCCTGCTGATCCTGTTCGGCCTGATCATTGCCGTCTACCAGCGCCTCACCAAGAAGATCGGAGGCTAGMTTTQLQSPSVRRAGAAEGELEKATGRRNRRTYLALLLPGLLGLLVSFVFPLAYMIRMSFNKGAPDGVIEETFTLDTYIQPLTDPYYWRVTLDTFQMGVTVGLLCILVSYPVALFLARSTSKYRGLLLAIAIAPLLTSAVVRTYGWMVILGTNGLVNSSLQGMGVIETPLRLTNNMTGVTIGLVEIFMPYAILAMISGFGRLSPQLEEAAGSLGASKLQVFTRVTLPLSLPGILTAFLLVFVLSISTFITPRLLGGGSVQVLATEIYDQTTGLLNWPFAAALSVILLILFGLIIAVYQRLTKKIGGPGPT0007850_1422DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-29_02283816ydcVInner membrane ABC transporter permease protein YdcVATGTCTGAAGCCCGCCTTTTCAAACCGCGGTTCAACCCGGCCAAGCCGGCGTTCGGGATCCTGGTGTTCCTGCTTTACCTGTTCCTGCTTGCCCCACTGCTGATCGTTTTTGTCGTCTCCTTCGCGTCGAACCAGTACCTGTCCTTCCCGCCTGAAGGGCTGACCTTCAAGTGGTACGAGATGCTGCCCGAGGAAAGCACGTTCATGAACGGCATGCGGGTCAGCCTCATCGTGGCCGTGGTTGTCACGGCCATCGTCCTGGCCCTCGGCGTACCGGTGGCACTGGCCCTGGACAGGTTTGAATTCAAGGCGAAGGCAGCGGTCCAGTCCTTTTTCCTCTCGCCGCTGCTGATCCCCAGCATCGTCCTGGCACTGGGGATGGTCCTGCTCTTCGGGCCGCTGGAACTGAACAACACCTACGCCGGAATCATCATCGGTCACGTAGCCATCACCATCCCGTTCGTGATCAGGACAACACTGATGAGCCTGGCAACCACTGACACGTCCTGCGAAGCGGCGGCGAGGATCCTCGGGGCAGGGTCCTGGACCGTCTTCCGGCGCATCACGCTTCCCATCATCCAACCCGGTGTCATTGCCGGCGGTGTCATAGCCTTCATCGTTTCCTTCGATGAAGCAGTCATCTCGCTCTTTGTTGCCGAATCAGGGCTGCCCACGCTGCCGGTGCAGGTCCTGCGGTACGTCGAGAACTCAGCCGACGCCGCCGTCGCTGCTTTGTCGGTCATCCTCATCCTGATCTCGCTCGTCGTTGTGGTCGTCGTCGAGCGGGCCATGGGCCTCCGCAAGGCCCTGCGCTAAMSEARLFKPRFNPAKPAFGILVFLLYLFLLAPLLIVFVVSFASNQYLSFPPEGLTFKWYEMLPEESTFMNGMRVSLIVAVVVTAIVLALGVPVALALDRFEFKAKAAVQSFFLSPLLIPSIVLALGMVLLFGPLELNNTYAGIIIGHVAITIPFVIRTTLMSLATTDTSCEAAARILGAGSWTVFRRITLPIIQPGVIAGGVIAFIVSFDEAVISLFVAESGLPTLPVQVLRYVENSADAAVAALSVILILISLVVVVVVERAMGLRKALRPGPT0007845_2222DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-29_02284789pxpA_3COG15405-oxoprolinase subunit AATGGGTCGCACAGTTGATCTCGTGGCAGATCTCGGTGAAGGCTTCGGTGCCTACTCCCTGGGCGACGACAACGCACTTCTCGAAATCGTTTCCAGCGCCAACATAGCCTGCGGTTTCCACGCAGGAGACCCGGACATCATGGACCGTACGGTGGCGGAATGCGTCAGGCGCGGAGTGAGCATCGGAGCTCACCCCAGCTTTCCGGACCTCCGGGGATTCGGGCGTCGCGCCATGGAGCTAACAGCAGACGAAGTCCGCAATGATGTCATTTACCAGATTGGCGCCCTGTCAGCCTTCGCCGCGTACCACGGAACCAGCGTTTCCCACGTCGCCCCCCATGGGCGGCTGGGCAACCTCGTCGCCACACGCCAGGACTATGCCGCCGCCGTCGCTGACGCCGCACACCGCGTAAATCCTGGCCTGATCGTCCTGGCCCAGGATGGTGAGCTCGCCGAGGCGGCCGCCGGGCGCGGCCTGCCTGTGGCCATTGTCGGCATCGCCGACCGTGCCTACGAAGAAGACGGAACCTTGGTGCCGCGCAGCCAGCCAGGGGCCGTCATCCACGATCCGGCAACCATCGTTGAGCGCACCATCCGCATGGTGTGTGAAGGCTTTATTGAATCTGTGTCTGGGCTGAAACTCCCCGTCGTCGCCGATACCGTCCTGCTGCACGGCGACAACCCCGGAGCCGTGGACCTGGCCCGGCTCATCCGCAAAGAACTGACTGCGGCCGGCGTGACCATTGCCTCGCTTGCCCAGGTGCTGGCGGCCAAAGCGGAAGCCGCCTGAMGRTVDLVADLGEGFGAYSLGDDNALLEIVSSANIACGFHAGDPDIMDRTVAECVRRGVSIGAHPSFPDLRGFGRRAMELTADEVRNDVIYQIGALSAFAAYHGTSVSHVAPHGRLGNLVATRQDYAAAVADAAHRVNPGLIVLAQDGELAEAAAGRGLPVAIVGIADRAYEEDGTLVPRSQPGAVIHDPATIVERTIRMVCEGFIESVSGLKLPVVADTVLLHGDNPGAVDLARLIRKELTAAGVTIASLAQVLAAKAEAANANANANANA
D1-29_02285720pxpBCOG20495-oxoprolinase subunit BATGGCTGACAACCCAACACCGGTGGAGGTGCACGAGTCGGGCGACGCCGCCCTCCGGGTCGTCGCCACGTCCCCCGACCGCGAGCGGAACTGGGCCGCGGTGCATGCGCTGGCGGCTTGGCTCGAGACGGCCGACGTCGACGGCGTCCACGGCGCGGTCCCCACCTATGATTCGGTGCTGGTTGAGTTCGACCCGTACATCACTTCCGCCCGCCAGATCCGGGCCTTTGTCCTGCTGGGCATGCGCCAGCTCGATTTCGTTGGTGCTCCAGCCCGCACGCCCCGGCAGTTCGAGGTACCTGTGGTCTACGGCGGTGAATACGGACCCGACCTGCAGAAGGTCGCGGACCACGAGGGTCTCCCGGTTTCCGAGGTCATCGCCCTCCACACGGCCAAGTCGTACGTCATCCGGTGCCTGGGTGCCCCGGCCGGGTCGCCCATGATGGATGGTCCGGACTTCCCGCTGCCCGTGCCCCGGCTGAAAGACCCACGGCTTTCGGTACCCGCCGGTGCAGTCTCCGTGGCAGGACGGCAGGCAGTGATTGCGCCGGCGGTGGCCCCGGGTGGCTGGTGCGTCATCGGACAAACACCTCTGACGGCGCTGAACGCCCACAACCAACCCTTGGTTCCGTACATGCCTGGAGACCTGCTCCGGTTCCACGAGATCCCGGCCGCCGACTTCGAGCGCTATGCAGGCCTTGAGCTGGAGGCATCGAAATGAMADNPTPVEVHESGDAALRVVATSPDRERNWAAVHALAAWLETADVDGVHGAVPTYDSVLVEFDPYITSARQIRAFVLLGMRQLDFVGAPARTPRQFEVPVVYGGEYGPDLQKVADHEGLPVSEVIALHTAKSYVIRCLGAPAGSPMMDGPDFPLPVPRLKDPRLSVPAGAVSVAGRQAVIAPAVAPGGWCVIGQTPLTALNAHNQPLVPYMPGDLLRFHEIPAADFERYAGLELEASKNANANANANA
D1-29_022861014pxpCCOG19845-oxoprolinase subunit CATGAGCGGCACCCTGACCATCCAGCAGCCAGGCCATTCCGTGGTCACGGATCTTGGCAGGTTCAAAGGGCCACGGTACGGACTCCCCGTCAATGGCGCCCTGGACCAGTTTTCCGCCCGCGCCGCCAACATCCTCGCCGGCAACCTGGACAACGATCCGCTGATCGAAGTCACTGCCCTGGACTTCCGGATGCGTGCCGACTCGGACCTGCTCATCGCTGTTACGGGTGCCCCGCTTACCCTGAGCGTCGGCGGACGCGAATGCCCGCAGTGGGAACCGGTGTCCGTCCTGGCCGGTGAAACTGTTGCCTTACGGGGTATGAAGACGGGGCTACGCGCCTACGTGGCGGTCCACGGCGCCCTGGACGCTCCGACCCTGCTGGGCAGCTGCGCGCCGGACACCGTCGTCGGATTCGGGTTGAAACTTAACCAAGGAACTGTCCTCGGCTGCCGAAAGACCGTTCCGCCCATCCGGCAGCCGTATTTTGACCTTCCGCTGTTCCGGCTGGGGCTTACCCGCCCCGGAATCAGCGCCTGCCCGGTCATCAATGTAACTGACGGGCCGGACCTCGCGGAGTTTGGTGACACTGCCGAACTCCTGTTTAGGACCAGTTACACCGTGAGCGGACGGAGCAACCACATCGGACTCCGCCTCGGCGGAGCGCTTCCGGAAAGGCAGTCGACGGCGGAAGTCCTGTCCAGGGGCGTTCCGGTGGGGGCGATCGAAGTCCCGTCCCGGGAGGAACTCCTGGTACTCCACCGCGGACGCGGCGTGACGGCCGGCTACCCGGTTCTCGGTGTGGTCACCAGCCGCTCGCTGGATGTCCTTGCCCAGACCAGGCCCGGCGATACCATCACCTTCCGTAAGACCACTGTGGCTGAGGCCACCGCGCGGCACCGGGCTGCCGTGCGTGAGCTGGAGGCCCTTCGCACGTCAGTAAATACAGTTTTTGGCCTGCTGGGTGTGGGAGCCCCCGCGAGCTGGCGGGAACTCATGCCTGCCTCCGGAAGCTGAMSGTLTIQQPGHSVVTDLGRFKGPRYGLPVNGALDQFSARAANILAGNLDNDPLIEVTALDFRMRADSDLLIAVTGAPLTLSVGGRECPQWEPVSVLAGETVALRGMKTGLRAYVAVHGALDAPTLLGSCAPDTVVGFGLKLNQGTVLGCRKTVPPIRQPYFDLPLFRLGLTRPGISACPVINVTDGPDLAEFGDTAELLFRTSYTVSGRSNHIGLRLGGALPERQSTAEVLSRGVPVGAIEVPSREELLVLHRGRGVTAGYPVLGVVTSRSLDVLAQTRPGDTITFRKTTVAEATARHRAAVRELEALRTSVNTVFGLLGVGAPASWRELMPASGSNANANANANA
D1-29_022871341proP_5Proline/betaine transporterATGTCAGCGTCAATACGAGCGGCTGGTCCGCAGAACGATCGGCTGGATGCCAAGCAGACCCGGAAGGTGGTCACCGCCGGCTGTGTGGGCATCTTCGTGGAACTTTACGACAACGGCATCTTCGCCTTTATGGCTGGAACGCTTGCGCTGGTGTTCCTGGCACCGGGCAACCCTGACAACGCCCTGTTGTTCGTCTTTGCCGGCTACGCCGTGTCCTTCTTCGTGCGCCCCCTTGGCGCTGTGGTCTGCGGTTACCTTGGGGACCGGATCGGGCGGCAAAAGCTGCTGGTCTTTGTCATCCTGCTGATCAGCGTTGCCACGGCGGGCATTGGCTTGCTGCCGGCCTATTCGGCCATCGGCATCGCCGCGCCGATTCTCCTGGTGCTGCTCCGCATGCTGCAGGGCTTCTCCGTTGGCGGCGAAGCCGCTGGCGCTATGACATTTCTCGCCGAACACGCCCCGGAAGGCAAGCGCGGCATCATCACCTCCTACGCACAGATCGCCTCCTTCGCAGCGCTGCTGACCGGCACGCTCGTTGCATTCTCCATGTCGCCCTGGCTCAGCCAGGCAGCGATCGACGGCGGCGGTTTCGGCGCGTTCGCCTGGCGCATCCCGTTCCTGGTCGCCATCCCCATGGGCGTCATCGGCTGGTACATCCGCAAGGCCATCGCGGACACCCCAAACTTCGTGAAGCTGAAAGAAGAGGGCGGCCTGTCCAAGAACCCGCTCAAGGAAGCCTTCAAGTCCGCCGAACACCGCCGTGCCATGCTGCTGGCCCTGTTCATCCCGCTCATGAACGGCTCCGGCTACTACGTCCTGTTCTCCTACATGCCCACCTTCCTCAAGGGCAAGCAACTGAACTTCACCATCGGCGAGGCGCTGATCGTCACCGCCTGCAGCCTTGTGGTTATCTGCATCGCCATCCCTTTTATGGGCGCCCTCTCAGACAGGGTGGGACGTAAGAAGGTCATCGCCGGCTCCGCGATCGCCATGGCAGTCGTCGGTGTCCCCGCGTACGCCCTGATCGCCACCGGTGAGATGGCGCTGGCCATCCTGGGCGCCTCCATCATGGCAGTGGTCTTCGCCGGCCACACCGCAGTGATCCACATCCTGATAGTTGAACTTTTCCCCACCCGGGTCCGATACTCGGCCTACGGCCTGGGCTACAACATCTCTTCGGCACTCTTCGGCGGCACCGCGCCGCTGCTGATGACCTGGCTGATCTCCTCCACCGGCAACATCTACATGCCCGCTTTCTACGCCGTCATCACCGCGCTGGGCACCCTCGCGGCCGTCAGCACCGTCAAGGACCGGGCGCACCTGCCACTCCGCGACGCCTAAMSASIRAAGPQNDRLDAKQTRKVVTAGCVGIFVELYDNGIFAFMAGTLALVFLAPGNPDNALLFVFAGYAVSFFVRPLGAVVCGYLGDRIGRQKLLVFVILLISVATAGIGLLPAYSAIGIAAPILLVLLRMLQGFSVGGEAAGAMTFLAEHAPEGKRGIITSYAQIASFAALLTGTLVAFSMSPWLSQAAIDGGGFGAFAWRIPFLVAIPMGVIGWYIRKAIADTPNFVKLKEEGGLSKNPLKEAFKSAEHRRAMLLALFIPLMNGSGYYVLFSYMPTFLKGKQLNFTIGEALIVTACSLVVICIAIPFMGALSDRVGRKKVIAGSAIAMAVVGVPAYALIATGEMALAILGASIMAVVFAGHTAVIHILIVELFPTRVRYSAYGLGYNISSALFGGTAPLLMTWLISSTGNIYMPAFYAVITALGTLAAVSTVKDRAHLPLRDAPGPT0013645_1439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013645-proP-K03762NANA
D1-29_02288750ydfGCOG4221NADP-dependent 3-hydroxy acid dehydrogenase YdfGATGCCATTTTCAGACTATTCAACCGCCCTGGTCACCGGCGCTTCCACCGGAATGGGTGCAGCGATCGCCGAACGCCTTACTAAACGCGGGCTCACGGTCCACGCCGTTGCGCGTAACGAGGATCGGCTGAAGGAGCTGGCCGACAAGACCGGCGCGATTCCCCAGGTGGTGGACTTGACCGACACCGCCGCAATCACAAAAACCCTGGATGGCCTAAAAGTGGACGTACTGGTGAACTGCGCTGGAGTTTCCCGGCCGGGGAACATCCTGGACTCCAGCGCGGACGACGTCGACGAACTGGTGGACGTGAACCTGCGCGCCTTGCTTCAGCTCACACGTCTGGTCCTGCCCGGCATGGTGGACCGGGACAACGGCCACGTCATCAACATCAGTTCAATCGCAGGTCTTTACAATTTTTACGGACACACGGTCTATCACGCCACCAAGGCAGCCGTGCACCAAGTTTCCAGGCAGCTTCGCAATGACACGGTGGGCAAACGGATCCGCGTTACGGAGATCTGCCCGGGGCGGGTTGAAACCGAGATCTTTGGCCGGAACATGGGCGGAACGCCGGAAGCCATGGAAGAGGCATGGAAGACCTACTACGAAGGTTATGAGTCCCTGACAACGGACGACATCGTCAATGCCCTTGACTATGCGGTGGAAACTCCCCGGCATGTAAACGTGGGCATGCTGGAACTGATGCCCACCTTCCAGGTCCCCGGCGGCCTCACCTTCGACAGGCGTTAAMPFSDYSTALVTGASTGMGAAIAERLTKRGLTVHAVARNEDRLKELADKTGAIPQVVDLTDTAAITKTLDGLKVDVLVNCAGVSRPGNILDSSADDVDELVDVNLRALLQLTRLVLPGMVDRDNGHVINISSIAGLYNFYGHTVYHATKAAVHQVSRQLRNDTVGKRIRVTEICPGRVETEIFGRNMGGTPEAMEEAWKTYYEGYESLTTDDIVNALDYAVETPRHVNVGMLELMPTFQVPGGLTFDRRPGPT0021285_781DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
D1-29_02289945Formate dehydrogenase, mitochondrialATGCAAACAGTCCGTACCGTCAGCTTCCCCGACCGCCAGCTCCTTGCCGACCTCTCGCCCCTGCCCGAAGGGCTGAAGGGAGTGGTATGGGACCTGAAAACGGATCCCGACGGCGGGACGCTCGGTGAGATCGACGGCGTCATCCTCCCATACATCGACGCCGCCGCCGTGCTGGGCTCGCTCGGCCAGGTCCAGGACCTGAAATTCGTCCAGACCCAGTCCACCGGTTATGACGGGGTTGTTGAGGCGGCTGGACCAGCCGCCGGAGTGGCCAACGCCTCCGGCGTCCACGCCGCCGCCACCGCGGAACTGGCTGTGGGCCTGATCCTGGCGAAGCTGCGTGGCATCGACCAGGCAGTCCGGGATCAGCAGTACGGCCTCTGGCGGCCAGAGCGTCGCCAGTCACTGGCCGACAGGCGTGTTCTGCTGCTGGGCGTCGGCGGGATAGGTCATGAAATCGCACGACGCCTGGAACCCTTTGAGGTTACTGTCACCCGGGTGGGAAGTTCGGCCCGTACGGACGAATACGGCGAAGTGCATTCCTCCGCCGGCCTGGCCGCGCTTGCCTCGACGCACGACATCCTGGTCTCGGTGCTGCCCCTGAGCCAGCAGACCCATCAGCTGGTGGGGGAGGAGGTCCTGGCTGCCCTGCCGGACGGCGCCCTGGTTGTCAACGTGGGCCGCGGCTCCGTGGTGGACACTGCCGCCTTGACCAAAGAAGTCGTCTCCGGGCGTCTGCAGTGCGCCATTGACGTCGTCGATCCTGAACCCCTGCCGCAGGACCACCCCCTGTGGTCCACGCCCAACGCGCTCATCACCCCGCACGTCGGCGGAAACGCGTCCGCGTTCCAGCCCAGGATCCTCAAACTCCTCCGGAAACAGCTGGAAGCCCTTGCCGCCGGTCAGGCTCCGTCCAACCTGGTGCAGGATGGCCCCTTCTCATGAMQTVRTVSFPDRQLLADLSPLPEGLKGVVWDLKTDPDGGTLGEIDGVILPYIDAAAVLGSLGQVQDLKFVQTQSTGYDGVVEAAGPAAGVANASGVHAAATAELAVGLILAKLRGIDQAVRDQQYGLWRPERRQSLADRRVLLLGVGGIGHEIARRLEPFEVTVTRVGSSARTDEYGEVHSSAGLAALASTHDILVSVLPLSQQTHQLVGEEVLAALPDGALVVNVGRGSVVDTAALTKEVVSGRLQCAIDVVDPEPLPQDHPLWSTPNALITPHVGGNASAFQPRILKLLRKQLEALAAGQAPSNLVQDGPFSNANANANANA
D1-29_02290771gno_1Gluconate 5-dehydrogenaseATGAGCGGACTTTTTGATTTGACGGGGCGGGTTGCCCTGGTAACGGGTTCGAGCCGGGGGATTGGCAATGCGCTGGCACGGGCTCTGGCCGACGCCGGTGCCACGGTGGTGCTGAACGGCGTCAATGCCGAGCGGCTCAAGGACGCCGCGGCGGCGATGGCCGCGGAGTATGCGCCGGGGCAGGTGCACAGCATCGCGTTTGATGTCACATCCGACGCAGAGGCGGCGAGGGGTGTGGCGTGGGTGGAAGAGAACGTCGGCCCGTTGGAGATTCTGGTGAACAACGCCGGGATCCAGCACCGGGTGCCGATGTTGGATTTGGACGTTGCGGACTGGGAGCGGGTGATTACCACGGACCTGACGAGTGCGTTCTTGGTGGGACGGGAAGCTGCCCGGCACATGATCCCGCGCGGGCACGGAAAGATCATCAACATCTGCTCAGTGCAGACGGACCTGGCCCGGCCCACGATCGCCCCGTATATCGCGGCGAAGGGCGGATTGCGGAACCTGACCCGCGCCATGACCGCGGAGTGGGCGGCCTCGGGGCTGCAGGTCAACGGGATCGCGCCCGGGTATATCCACACGGAGATGACGCAGAACCTGGTGGATGATGAGCAGTTCAACTCCTGGATCCTGGGCCGTACCCCGGCGCACCGTTGGGGCACCGTGCAGGACCTCGCCGGCCCGGCGGTATGGCTGGCCTCCAGCGGCTCAGACTTCGTGAACGGGCAGACGATCTTCATCGACGGCGGAATGACGGTGGTGGTCTGAMSGLFDLTGRVALVTGSSRGIGNALARALADAGATVVLNGVNAERLKDAAAAMAAEYAPGQVHSIAFDVTSDAEAARGVAWVEENVGPLEILVNNAGIQHRVPMLDLDVADWERVITTDLTSAFLVGREAARHMIPRGHGKIINICSVQTDLARPTIAPYIAAKGGLRNLTRAMTAEWAASGLQVNGIAPGYIHTEMTQNLVDDEQFNSWILGRTPAHRWGTVQDLAGPAVWLASSGSDFVNGQTIFIDGGMTVVVPGPT0018070_585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046NANA
D1-29_022911080idnD_1COG1063L-idonate 5-dehydrogenase (NAD(P)(+))ATGCCCACCTCAACTGAACTCCCTGAGTTCGGGCTGGCAGTAGTTGCGCATGCGGCCGGAGACCTGCGGATCGATACGGTTACATTGGGAACGCCCGAACGGGACGAAGCCGTCGTCGAAGTAGCCTATGGTGGCATCTGTGGTTCCGACCTTCATTACTGGATGCACGGCGCGGCAGGGGAGTCGATCCTAAGGGCCCCACTTGTTCTCGGGCACGAAATATCGGGAGTTGTTGTCCGTGCGGCAGCGGACGGCAGCGGACCCGCCACAGGGAGCCCCGTCACAGTTCACCCTGCCACCCCTGGCCCGGGGAAGGAGCGGTACCCCGTTGATCGGCCCAATCTCTCTCCGGGGTGCACCTATTTAGGGAGTGCCGCACGGTTTCCGCACAAGGACGGCGCCTTCAGCCGCTACGTGAAACTGCCAACCCGCATGCTGCGCGTCCTGCCAGATAACGTGGACCTGAGGACGGCTGCCCTGATCGAGCCGGCCAGCGTAGCGTGGCATGCCATTTCACGCGCAGGAGATGTTGAAGGCAAGACTGCGCTGGTCATAGGTTGCGGACCGATCGGCGCCCTGGTCGTCGCTGTCCTCAAACGCGCCGGCGCGGGCAGGATTGTCGCCGTCGACATGCACGCCAAACCGCTGGAGATCGCCACTGCTCTTGGAGCGGATGAAGTTATTACAGCTGCGGATGTCGACGCCATTAAAGCGGTGGAAGCGGACATCGTTATCGAGTCCTCGGGTAACCACCACGGGCTGGCTTCCGCCATCCGCGGTGCCGCCCGCGCGGGCACTGTGGTCATGGTCGGCCTCCTGCCCACAGGACCGCAGCCTGTTCTCATCTCCCTGGCCATCACCAGGGAGCTGCAGCTCCTAGGGTCTTTCCGTTTCAACGACGAGATCGATGAAGTGATAGCTGCCCTTGCCGATGGCACCTTGGACGTAGGACCTGTCATTACCCACCAGTTCGCCCTTGCCGATGCAGTCCAAGCCTTCGAAGTGGCGCGCAACTCGGCTGAATCGGGGAAGGTTCTCCTGGATTTTTCGGGGGCAGACACTGCGCGATCCAAGACGTGAMPTSTELPEFGLAVVAHAAGDLRIDTVTLGTPERDEAVVEVAYGGICGSDLHYWMHGAAGESILRAPLVLGHEISGVVVRAAADGSGPATGSPVTVHPATPGPGKERYPVDRPNLSPGCTYLGSAARFPHKDGAFSRYVKLPTRMLRVLPDNVDLRTAALIEPASVAWHAISRAGDVEGKTALVIGCGPIGALVVAVLKRAGAGRIVAVDMHAKPLEIATALGADEVITAADVDAIKAVEADIVIESSGNHHGLASAIRGAARAGTVVMVGLLPTGPQPVLISLAITRELQLLGSFRFNDEIDEVIAALADGTLDVGPVITHQFALADAVQAFEVARNSAESGKVLLDFSGADTARSKTPGPT0018190_28DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018190-idnD-K00098NANA
D1-29_02292615hypothetical proteinATGCCCCCGCCCAGAACAGCTGTATCGCGGAGTTCCGGAACAGCGCTGCAGGCCGGGGGCATCGGCGCAGGACCCGGTTATCGCTATCGGGGAGCATCGAAAACCGTACGCCCCGTGCAGAAAGCCGAGAAGGTTCGAGAGCTTCTAAAAGAGCAGCGACAGGCCCTGTCCTTCAAATCCAGCAGCCTTCGAGACGTGTCGGTGCGGATGAATGAGAGGATCGCCCAAGCTATCAAGGATGGCTTGAAGGTCACGGACCTTGCGGTCGTTACTCAGCTGTCGCGCCCCGAGGTGCGACGAATTGCGCTTTCTTTTGCGGATCTGGACAGGACATCAACGACGGAGAGAGAACATCTCGAGGCTATCCGAAAGCTTGGAGCGGAACTTCAGGCAATTGAGAAGGCCAGGGACATGCTTGAGGAGAAGCGTCTGCACGTCATCGCAGCGGCTCGGAAGACCCAGTTGATTGACGACTACGAACTCGCATCCCTGACGGGCCTCAATCCCGCTTACCTCGGGAAGATGACATGGGGCGTTCTCCCCGGAGCAGCAGGCCGTGGCTGGCGTGACCCCGGGACTGGTCCGCCTGTCCGTGGGCATCGAGCACATCGATGAMPPPRTAVSRSSGTALQAGGIGAGPGYRYRGASKTVRPVQKAEKVRELLKEQRQALSFKSSSLRDVSVRMNERIAQAIKDGLKVTDLAVVTQLSRPEVRRIALSFADLDRTSTTEREHLEAIRKLGAELQAIEKARDMLEEKRLHVIAAARKTQLIDDYELASLTGLNPAYLGKMTWGVLPGAAGRGWRDPGTGPPVRGHRAHRNANANANANA
D1-29_02293117hypothetical proteinGTGGCTGGCGTGACCCCGGGACTGGTCCGCCTGTCCGTGGGCATCGAGCACATCGATGACATCCTGGCAGACCTTGAAGCCGGCTTCCGTGCCGCCAAGGAGGCAAGTGGCGCCTGAMAGVTPGLVRLSVGIEHIDDILADLEAGFRAAKEASGAPGPT0020020_920DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761NANA
D1-29_022941020rbsR_6COG1609Ribose operon repressorATGGAAGTCCAACCAGCCGCAACGGCGCGGGACAAGGCCGCCACACTGGCGGATGTCGCGGCACGTGCCGGGGTCTCGCTCGCCACGGCTTCAAAGGCGCTCAGCAACCGTTACGACGTTGCCGACCGCACCAAACTGAGGGTTCTCCAGGCTGCCGAGGAGCTTTCCTTTTCACCGAACCTCCTGGCGCGGGGGCTGCTTGGAGGACGCACGCAGTCCGTAGGGGTCATCACAAACGACTCTGAGGGCAGGTTTTCACTCCCCATCATGATGGGGGCAGAAGACTCGCTGGGCGCGGACAGTTCGACCGTGCTGCTCTCGAACTCACGGGGAAATCCAGAGCTGGAGCTGCAGCACGCCAAAGCCCTCGTGAGCCGAAGGGTGGACGGTCTCCTCCTTGTGGGTGACATCCCCGAGCCACGGCCGTCCCTGCACCTGAACACCAACGTCCCGCTCGTCTACGTGTACGCGCCCTCGCTCGATCCGGCCGACACTTCCTTTGTCTGCGACAACACGGAATCCGCCAAACTCGTAACGGAGAGACTCATCAGTACCGGCCGCAAAATGATTGTCCATATCGGCGGGCCGCAGCGCGAGACGGCCGCCCGCGACCGTGCCGAGGGGACGCTTCTTGCCACCGCCGCAGCCGGGCTGGACCTGGTGGGCGGGATTCCCTCTCACGGCGAATGGCACGAGACCTGGGGATGGTCATCCGTACACCGTCTCCTCGACGACTCCGTAGCATTCGACGCTTTAGTGTGCGGCAACGACCAGATCGCGCGCGGAGCAATGGATGCGTTGGAAGCGCGCGGACTTCGCACACCCCAAGACGTTGCATTGGTTGGCTTCGACAACTGGTCGGTGGTCAGCAGGGACGTCCGCCGTCCCTTCTCCAGCGTGGACATGAACCTGGAGGAGCTGGGGCGCGCCGCCGCCCAGGCCCTCATGGAGTCCGGCGCGCTCGTACCCGGGGTCCACAAGCTCCCCGGAAGTATCGTTGACCGCGGAACAATAGGATGAMEVQPAATARDKAATLADVAARAGVSLATASKALSNRYDVADRTKLRVLQAAEELSFSPNLLARGLLGGRTQSVGVITNDSEGRFSLPIMMGAEDSLGADSSTVLLSNSRGNPELELQHAKALVSRRVDGLLLVGDIPEPRPSLHLNTNVPLVYVYAPSLDPADTSFVCDNTESAKLVTERLISTGRKMIVHIGGPQRETAARDRAEGTLLATAAAGLDLVGGIPSHGEWHETWGWSSVHRLLDDSVAFDALVCGNDQIARGAMDALEARGLRTPQDVALVGFDNWSVVSRDVRRPFSSVDMNLEELGRAAAQALMESGALVPGVHKLPGSIVDRGTIGPGPT0017992_6521DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_022951920hypBA1Non-reducing end beta-L-arabinofuranosidaseATGACTGCTCGAGCCATTGCACGGACCGATCGCGGTCTTTCCCCGCTGCCCTTGACTGACGTCGTCATTGATGACGCTTTCTGGGCGCCGCGCCGGGAACTTATCCGGACCCGTACGCTGCGCCAGCAGGAGGACCAGTTGCGTAGGGGCGGACAGTTCGAAGCCCTGAAACTGGGCTGGAAGCAGGGGGACCCGGAGCCTCACATCTTTTGGGAAAGCGACGTGGCGAAGTGGATCGAAGCGGCCAGCTACTGCCTGGCGACGACGCCGGACCCTGAGCTTGAGGCTTCAGTGGATGAGGCCATCGGACTGCTCGCCGCCGCCCAGCAGGAGGATGGCTACCTCAATGTCTACTTCACGGTGGTCCGTCCAGGTGAAAGATTCACAGACCTGCGCGATGCCCATGAACTCTACTGCGCCGGCCATCTGATCGAAGCCGGTGTCGCCCACCATCAGGCAACCGGCAAAACCAGGCTCCTAGAGGTGGTTCGACGCTATGCGGACCTTATCGAGACCACATTCGGCCCGGGCGGGCAGTGCGAGGGAGGTTACGACGGTCACCAGGAAATTGAACTGGCCCTGGTCAAGCTGTACCGCGAAACCGGTGAGCGCCGCTATCTTGAAGTGAGCCGGCGGCTGATCAGGAACCGCGGGCAGCAGCCTTTCTACTTCGATCTGGAAGAGGAACGGCGCGGTACTCCCGGCTATTTCGCCAGTTTCTTTCCACACCGTCACGAGCAGGTGCGGCGCTTCCGCGAATACAACCAAAGCCATCAGCCCGTCGTCGAACAGGCGTCGGCAGTAGGCCATTCGGTACGCGCCGTCTACATGTACTCCGCCATGACAGATCTCGCGGCGGAATACGATGACACGGAACTGGGCGAAGCCTGCGACACGCTGTGGGCGAACCTTACCGACAGGAAGCTTTACCTCACCGGCGGGATCGGCTCCGATCATTCCATTGAGGGATTCGGCCCTGACTATGATCTCCCGGACGAACACGGCTATGCGGAGACCTGCGCTGCCATCGGGCTTGTCCAGTGGTCCCAACGGATGGCCAACACACGGCGGCACGGACGCCATATCGATGTCCTGGAACGCGCCCTCTACAACGGTGTCCTCAGCGGCGCCTCTGCGGAAGGCACGCACTACTTTTACGGCAACCCTCTGGCCAGCAGCGGCAGTGTTCAGCGGCAGGAATGGTTTGGGGTGGCCTGCTGCCCGCCCAACCTGGCCCGCCTCCTGAGCGAGCTCGGACGGTACATTTATGCGCAAGGCCCCAACGAAGCTGTGGTCCACCTGTTCGTGGGCGGCGAAGCACGGTTCGCCCTGGACGCCGGCACCATCACGCTCCGTCAAACAACCGAATACCCTCGCCATGGCAAGACCGGGATTTCCGTCGGCACTACAAGGCCGGCAGATTTCACCCTCTCCATCCGCATCCCGGCGTGGAGCCAGCCATCAGTCAGCCTCAACGGCGAGACCCTCCAGAATCCAGAGTTCACCAACGGATACCTGTCGCTGAGGCGCACCTGGGGCGACGGCGATGTGGTGAGCCTGGACCTGAATCTTGCACCACGACGGATTTGGGCCAACCCCGGCGTCGCTTCAGCCAGAGGCAAGGTGGCGCTGGCCTGGGGACCGCTGGTGCATTGCCTGGAAGGCGTGGACCATAATGCCCCCGTCAGAGGCATCACTCTTCCGCGATCCAGTGAGCTGACCGTGGTCTCGGACCACCGCACAGGAACCGTCACACTCCACGCCGCAGCCGAGACTGCCGGCCCTGCTGCCAACGGGGAGCTCTACCCGACGGCACCGCCAACCTCCGTCAGCACGGCGCTGACCGCTGTGCCTTACTTTTCCTGGGCAAACCGGGGAATTGCAGACATGACCGTCTGGATTCACGAATCCGACCGATAGMTARAIARTDRGLSPLPLTDVVIDDAFWAPRRELIRTRTLRQQEDQLRRGGQFEALKLGWKQGDPEPHIFWESDVAKWIEAASYCLATTPDPELEASVDEAIGLLAAAQQEDGYLNVYFTVVRPGERFTDLRDAHELYCAGHLIEAGVAHHQATGKTRLLEVVRRYADLIETTFGPGGQCEGGYDGHQEIELALVKLYRETGERRYLEVSRRLIRNRGQQPFYFDLEEERRGTPGYFASFFPHRHEQVRRFREYNQSHQPVVEQASAVGHSVRAVYMYSAMTDLAAEYDDTELGEACDTLWANLTDRKLYLTGGIGSDHSIEGFGPDYDLPDEHGYAETCAAIGLVQWSQRMANTRRHGRHIDVLERALYNGVLSGASAEGTHYFYGNPLASSGSVQRQEWFGVACCPPNLARLLSELGRYIYAQGPNEAVVHLFVGGEARFALDAGTITLRQTTEYPRHGKTGISVGTTRPADFTLSIRIPAWSQPSVSLNGETLQNPEFTNGYLSLRRTWGDGDVVSLDLNLAPRRIWANPGVASARGKVALAWGPLVHCLEGVDHNAPVRGITLPRSSELTVVSDHRTGTVTLHAAAETAGPAANGELYPTAPPTSVSTALTAVPYFSWANRGIADMTVWIHESDRPGPT0019100_1395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
D1-29_02296927hypothetical proteinATGAAGACTGGAAAGAAGATCCAGACGGCGGCCGCCGGACTCGCAGTCCTGCTGGCCCTGAGTGCCTGCGGCGGCACGTCAACGGGCACTGAGGGCACAGAACTCTCCAAGACACAGAACACCCGGGACATCTCAGAAGGTGTCCAACCGGATCCGGCAGCGGTGGCGCTGCTGCCGGAGCCCTACAAGGCCAAGGGTGAACTGTCCGTGGCGATGGATCTTAGCTCCCCGCCGATGACGTTCCTGGCCGAGGACAACTCCACCCCGATCGGGGTGAACCCGGACCTCGCCCGGCTCGTGGCGAAGAAGCTGGGGCTGAAGCTGAAGTTTGAGAACACGGCGTTTGACACGATCATTCCCGGTATCGACGGCGGCCGGTATGACTTCACTGCCACCACCATGGCGGCGACGGAACAGCGGCTGAAGGTCCTGGACATGATCAACTACCTCAAGGGCGGCTCGGCCGTGGCCGTACACCATGGCAACCCGCTGAAGCTGACCAACGACACACTCTGCGGGAAGAACATTGGCGTAGCCAAGGGCTCCACCCAGCAGTTGAACCACTTGCCGAACGTCTCGAAGTGGACCTGTGAGGAAAAGGGCCAGCCAGCCATCAACGGCGTGACACTGCCCAACATCCAGGAGGCCCTGACGCAGCTGGACTCCAAGCGGATCGACGGGGTCTTCTACGACGCCAGTGCCCTGGCCTGGGCCATCGAGCAGCAGCCCAACCACTTCGCCGTTCTGGAACCGAGGATGGATACCCGCACGAACACCACCGTCGCCATGGCGCTGAAGAAGGGATCACCGTTTACACCGGCGCTGCAGCAGGCCATCCAGTCCGTTCTGGAATCCCCGGAGTACAAGGAGTGCCTGGAGTACTGGGGCCTGGAAGAATCAGCCATCACCGAAGCCGCCATCCGCTAGMKTGKKIQTAAAGLAVLLALSACGGTSTGTEGTELSKTQNTRDISEGVQPDPAAVALLPEPYKAKGELSVAMDLSSPPMTFLAEDNSTPIGVNPDLARLVAKKLGLKLKFENTAFDTIIPGIDGGRYDFTATTMAATEQRLKVLDMINYLKGGSAVAVHHGNPLKLTNDTLCGKNIGVAKGSTQQLNHLPNVSKWTCEEKGQPAINGVTLPNIQEALTQLDSKRIDGVFYDASALAWAIEQQPNHFAVLEPRMDTRTNTTVAMALKKGSPFTPALQQAIQSVLESPEYKECLEYWGLEESAITEAAIRPGPT0020800_2395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_022971374aldH1COG10124,4'-diaponeurosporen-aldehyde dehydrogenaseATGGCCACACCTGCTTCCGCGGCCTCCCGGGCCCGTTCAGTGTTCGACGGCGGTGCCAGCCGTCCGTTGGCGGCGCGGCTTCAACTCCTGCGTAATATGCGCAGGATGCTGGCCGAGCACGAGGAGGACTTCGTGCGCGCACTCCAGGAGGACCTCGGCAAACCGCGGAGTGAATCACTGGCAACAGATTTCGGTTTCACGCTTGCCGAGATCGGCAACTTGGAGCGCAATCTTGAGCGATGGCTCCGCCCGCGACCGGTTCCCGTACCGTCGATGTTACTGCCCGCGAAGGCATGGACTGAGCTGACCCCATTGGGTACGGTCCTGATCATCGGCCCCTGGAACTACCCGATAAACCTCACACTCGCGCCCATGGCGGGGGCTCTGGCAGCGGGAAACACTGTGGTCCTCAAGCCAAGCGAACATTCGCCTGCGACGTCGTCCGCCTTGGCCCGGTGGGTCCCGCAATACCTGGCTCCGTCTGTGGAAGTGGTGGAGGGTGCCGTCCCGGAGACGACCGCCCTGCTCAACGAGCGCTTTGACCATATCTTCTTCACGGGCGGCCGCAATGCTGCGCAGGCCGTGATGCGGGCAGCAGCCGAGAACCTGACTCCGGTAACCCTCGAGCTTGGCGGAAAGTGTCCGGCCTATGTCGATGACGGGAGGAACCTCAGGCAAACAGCCATGCGGATCGCGTGGACCAGGTTCATAAATGCAGGTCAGAGTTGTATCGCTCCGGACTATGTCATGGCTCAGCCTTCCCTCCTCGACTCCCTCGAACACGAACTCAAGCTGGCGATCACCCGCCTGTTTGGCAAGGACCCAACCTCCAGCTCCTCTTACGGACGGATCATCGACGGGCGGCATTTCGACAGGCTCACTGCCTTGGCTGACGGCACCACTGTTGTCCACGGAGGTCAACGGGATGCGGCCACCCGGTACTTCGCCCCCACCCTCCTGCGGCCGCATGAGGGCGACGCAGTCATGCAGGAAGAAATCTTCGGCCCCCTCCTGCCGCTGGTGCCGGTCAGCGGGAAGGATGAGGCTATCCGCCTTATCAACTCCGGCCCCAAACCGCTTGCCCTCTACGTCTTCGCGGCCACTGATGGAGTCCGGCAGGCCTTCGCCGAAAAGACATCCTCTGGAGCCTTGAATTTCGACATTCCTGCCGCCCACTTTTCGGTTCCCGGACTTCCCTTCGGCGGCGTAGGAGGCAGCGGCATGGGCGCCTACCACGGCGAGCATTCCCTGCGGACCTTTTCGCACGAACGGTCCACACTCGATAAGCCCCTGCGCCCCGACACTCTTCGGTTCGCGTACCCGCCCTACGGGGCCGTCAAGGAGAAGCTTCTGAGGTCCTTGACGCGCCGGTAAMATPASAASRARSVFDGGASRPLAARLQLLRNMRRMLAEHEEDFVRALQEDLGKPRSESLATDFGFTLAEIGNLERNLERWLRPRPVPVPSMLLPAKAWTELTPLGTVLIIGPWNYPINLTLAPMAGALAAGNTVVLKPSEHSPATSSALARWVPQYLAPSVEVVEGAVPETTALLNERFDHIFFTGGRNAAQAVMRAAAENLTPVTLELGGKCPAYVDDGRNLRQTAMRIAWTRFINAGQSCIAPDYVMAQPSLLDSLEHELKLAITRLFGKDPTSSSSYGRIIDGRHFDRLTALADGTTVVHGGQRDAATRYFAPTLLRPHEGDAVMQEEIFGPLLPLVPVSGKDEAIRLINSGPKPLALYVFAATDGVRQAFAEKTSSGALNFDIPAAHFSVPGLPFGGVGGSGMGAYHGEHSLRTFSHERSTLDKPLRPDTLRFAYPPYGAVKEKLLRSLTRRPGPT0006875_9123DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-29_02298708mntB_1COG1121Manganese transport system ATP-binding protein MntBATGACTTCTTCGCCGCGCCTCAACCCGACGTCCAGCAAGGCAACGCAGGCAGGCCTGCTTGTCTTAGAGGATGTATGGCTGGATCATGACGGCGTGGAGGCGCTGTGCGGCCTGTCGCTGCGGATCGAAGCCAACACCATCACCGCTGTTGCCGGCCCCAACGGGTCCGGAAAATCCACACTGCTCAACGTGCTGGCAGGCCTGCAGACCCCGCGCCACGGAAGAGTTGAGCTGCCCGTCAAAGGCAGCACCGCACTCGTGGTTCAACGCAGCGCGGTCCCCGAGCGAATGCCCCTGACGGTACGCGACGTCGTCAGCATGGGCAGGTGGGCACGCAAGGGGCTCCTGCGCCCCCTTCTCAAACATGACCAGAGGATCGTCGACGAATGCATCGGCCGTGTCGGTCTCTCAGGCTACGAGAAGCGGCAGCTGCACAGCCTCTCAGGCGGGCAGCGCCAGCGCGCCTTCCTTGGCCAAGGCCTCGCGCAAGACGCGGACATCCTGCTCCTGGATGAACCGACCACCGGGCTGGACTCGGAATCACAGGAACGGATCACCGAAATTCTTTTCGCTGAAAAAGAACGGGGAGCAACGGTTGTGTGCGCGTCACATGACACGGCGACCCTGGAGGCAGCCGACACTGTCATCACACTAAACCGCGGCCGCCTCTCTCGGCCCAAAGATATGCAGCCCTCAGAAACCTTCTAGMTSSPRLNPTSSKATQAGLLVLEDVWLDHDGVEALCGLSLRIEANTITAVAGPNGSGKSTLLNVLAGLQTPRHGRVELPVKGSTALVVQRSAVPERMPLTVRDVVSMGRWARKGLLRPLLKHDQRIVDECIGRVGLSGYEKRQLHSLSGGQRQRAFLGQGLAQDADILLLDEPTTGLDSESQERITEILFAEKERGATVVCASHDTATLEAADTVITLNRGRLSRPKDMQPSETFPGPT0004265_1311DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004265-ABC_ZM_A-K02074NANA
D1-29_02299942hypothetical proteinGTGCACCTGATCCTTGAACCTTTCGCTGCTGATTTCATGCTCTACGCCCTTCTGGGCGGTTCCTTATGTGCTGCCGTTTGCGCCGTCGTGGGGACGTGGGTGGTTATCAGGGGCATGGCATTCCTGGGCGAGGCGATGGCGCATGGCATGCTGCCCGGAGTTGCCGTCGCGACCCTTACCGGTGTTCCTGTCGTCTTAGGCGCTGCCGGAAGTGCCATTTTGATGAGCGTTGGGGTGAGTCTGCTGGCCCGCAGGGGCAGGTTGTCCCATGACACGAGCATCGGTCTCTTTTTCGTCGGAATGCTCGCCGCCGGCGTGATCATCATTTCGCATTCACGCAGTTTTGCCACCGATGCCACGGCCATCCTCTTTGGCGACATCCTCGCCATAGGGCAGGCAGATCTGTGGTTGCTGTTCTGGGCATTGCTGGCAACCGTAGTGGTGGCCAGAGTGTTCCACCGCTCCTTTGTGGCCCTGGTGTTTGACCAGCGGGTTGCCCAGGTCATGGGTCTTCGGCCCCGGCTGGCGCAGGTGCTGCTGGTTGGCCTGGTGACGTTGGCGGTGGTCGCTTCCTATCAGGCAGTGGGGGCATTGCTGGTCCTCGGTCTGTTGCTTGCCCCGTCCGTGGCCGCTGCGGCCTGGACCCGGCACATCCGGACCACCATGGTCCTGGCAGCGCTCATCGGTTGTACGTCGGTCTTCGTCGGCCTGCTGGTTTCCTGGTACTGGGGCACGGCAGCCGGCGCCTCCATCGCCCTCACCGCGGTTTCAGCCGCGGCGTGCTCAAACCTAGCCCGGGCCGCGTCATCTCCGCTGCGGCGCGGCCAGGCAGCCGGGCACGCCTCCCACCCTTCCGCAGCCCTGTCCTCCGGCATCACCGGCAGCCCTGTTGCCGGTTCCGCTAATCGCTCCACCAAGAAAGCAATTCGTGCGAACATCTAGMHLILEPFAADFMLYALLGGSLCAAVCAVVGTWVVIRGMAFLGEAMAHGMLPGVAVATLTGVPVVLGAAGSAILMSVGVSLLARRGRLSHDTSIGLFFVGMLAAGVIIISHSRSFATDATAILFGDILAIGQADLWLLFWALLATVVVARVFHRSFVALVFDQRVAQVMGLRPRLAQVLLVGLVTLAVVASYQAVGALLVLGLLLAPSVAAAAWTRHIRTTMVLAALIGCTSVFVGLLVSWYWGTAAGASIALTAVSAAACSNLARAASSPLRRGQAAGHASHPSAALSSGITGSPVAGSANRSTKKAIRANIPGPT0004270_141DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004270-ABC_ZM_P-K02075NANA
D1-29_023001275hypothetical proteinGTGCGAACATCTAGAACCCTCACACTTTCCGCCTTCGCGCTGACCCTGGCCCTTTCCGCATGTTCCGCCCCAGTGGCGGTCCCGGGATCAGGACCGGAAGCAGCTAAGGAAACCGCCGCTGCAGGGGGATCAGCAATCGGCGACGGGCATGGAGCCAAGGCAGGCGCCAGTGAGGTAGCTGAACCCCAGCTTCACTTGCTCACCGTTGGCCAGGCCGGCGAAGTGGGCATGCTGGACCTCGCGGATGAAACGTGGAGAAGTGCGGGAAGCCTGCCGGGCACAAAGAGCGGCATTACCGATGGCAGGTACATCTTCGCCTCATCCCCGGAACAAGGAACAGTCACGGTCCTGGACAGTGGCGTCTGGACCTGGGACCACGAGGATCACTTCCACTACTACCGCTCCGATCCCAGAACCGTCGGAACAATTACGGGGCAGGGGAAGGCAGTCGTTACACCCGGGGCATCGGCCACCGGGGTGTTCTTCCCTGAAACGGGAAAGGGCGTCCTCCTGAGCAACGACGCCCTGGCAGAAGGCCAGATCCGTGAAACAGCGCACCTAAACGATGCAGCCACACCCCACCAGGGAATGCTGGTGCCGCTGGGTGACTTCGCACTTGCCACGGTGCCCGGCGCTGACGGGAAAGCCCAGGCAGTACAGGCGTACGACGGCGAAGGGTCGGCTCTGGACGGAGCACAGGCGCCCTGCGCCGACGCGCAGGGCACCATCACCACACGCGTTGGTGTGGTCATCGGATGCACGGATGGCGCCCTCCTGGCAACCGTGGAAAACGGGAAAGTCGCGTTCGAGCACATCCCTTACCCGGCAGGCGCAGGGGCAGGACCCGCCACGGCGTTTCGGGCCCGCGAAGGCCGCCCCACTGTGGCGGCCGTGGCCGGTGACCAGGGTGCCTGGATCCTCGATACCCGCGAACGGAGCTGGCAGCTCATCAAAACTGATGTGCCCTTGCAGCAGGTAGCTGCCGTGGATGACAAGGAAGGGCACGCCGTCGCCCTCTCCATTGACGGGCGGGTCCTGGTGCTCTCCGCCGAGACTGGTGCCACGTTGTCCTCCACCGAACCCCTGCTGACCGAGACCCTGTCCGATCCCGGGCTCCTGGCCAGCGTGGAGCTGGTTGCCGATCAGCAGCGTGCCTACCTCAACGCGCCGGCCGAACAGAAGCTGTACGAGATTGATTTCGCTGATAACGCCCGTCTGGCCCGGACCTTCGCCACACCGTCCGTGCCGGTTGTTTTTGCCAGGACAGGACGGTGAMRTSRTLTLSAFALTLALSACSAPVAVPGSGPEAAKETAAAGGSAIGDGHGAKAGASEVAEPQLHLLTVGQAGEVGMLDLADETWRSAGSLPGTKSGITDGRYIFASSPEQGTVTVLDSGVWTWDHEDHFHYYRSDPRTVGTITGQGKAVVTPGASATGVFFPETGKGVLLSNDALAEGQIRETAHLNDAATPHQGMLVPLGDFALATVPGADGKAQAVQAYDGEGSALDGAQAPCADAQGTITTRVGVVIGCTDGALLATVENGKVAFEHIPYPAGAGAGPATAFRAREGRPTVAAVAGDQGAWILDTRERSWQLIKTDVPLQQVAAVDDKEGHAVALSIDGRVLVLSAETGATLSSTEPLLTETLSDPGLLASVELVADQQRAYLNAPAEQKLYEIDFADNARLARTFATPSVPVVFARTGRNANANANANA
D1-29_02301966psaACOG0803Manganese ABC transporter substrate-binding lipoproteinGTGACGAAGATGCTTCGACGCTTTAAGACTGCACGCCTTAAGAGTGCACGCCGCCCGCTGACGCTGCTTCTGGCGGCCGCGGCCTTGGCGGGTTCCGCTGGTTGCAGCCCGCTGGAAGCGGACCGGCCGCTGATTGTGGTCAGCACGAACATCCTCGGCGATGTAGTGGAGAACGTCATCGGGGACCAGGCCGAGGTCCTGACGCTTATGCAGCCCAATGCGGACCCGCACTCTTTCGAGATTTCCGCCCAGCAGGCAGCAACAATGCGGCAGGCGGACCTCATCGTTACCAATGGACTGGGGCTGGAGGAAGGCCTGCAGCAACACATCGACTCTGCCAACGCCGGTAAGGTCCCCCTGCTCGTCGCCGGCGACGTCATTGATGTCCTCAATTACGGCGACGACAGCACGGCAGGAAACTCCGCCGGAGCAGCCGATCCCCACTTCTGGACCGACCCGGAACGCATGATCACGGTAGTCAACGCCCTTCAGGAGCGGTTATCAACCATTGACGGAATCGACCCCGAAGTGGTCAAGGCAAAGGCAGAGTCCTATCGGGCAGAGCTGACGCAGCTGGACTCCGACATGACCGCAGCCTTCACCGCCATCCCCGCAGAGCGGCGGAACCTCGTGACCAACCACCACGTCTTCGGTTACCTGGCCGACCGGTACGGGTTCAACGTAATTGGTGCCGTGATCCCGGGCGGAACCACCCTTGCCTCCCCAAGCGCCTCCGACCTGCGTGACCTGGTCAGCGCCATCGAGGAAGCCAAGGTGCCCACAATCTTTGCCGAGTCTTCCCAACCGGACCGCCTCGTCCAGGTCCTGGCCGACGGCGCCAACATCGACGTTTCGGTCGTCGAACTCTTCACCGAATCGCTCACCGACCCCGACGGCGGGGCGGAGTCCTACCTGACCATGATGCGCACCAATACAGAGCGCATCTCCACCGGCCTCTCGCCATGAMTKMLRRFKTARLKSARRPLTLLLAAAALAGSAGCSPLEADRPLIVVSTNILGDVVENVIGDQAEVLTLMQPNADPHSFEISAQQAATMRQADLIVTNGLGLEEGLQQHIDSANAGKVPLLVAGDVIDVLNYGDDSTAGNSAGAADPHFWTDPERMITVVNALQERLSTIDGIDPEVVKAKAESYRAELTQLDSDMTAAFTAIPAERRNLVTNHHVFGYLADRYGFNVIGAVIPGGTTLASPSASDLRDLVSAIEEAKVPTIFAESSQPDRLVQVLADGANIDVSVVELFTESLTDPDGGAESYLTMMRTNTERISTGLSPPGPT0004275_1153DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004275-ABC_ZM_S-K02077NANA
D1-29_023021248hypothetical proteinATGAAAAACGCCATATCGCCGTTGCGCACCAGGCGCATTGTCCTCGCAGCAGCCGTCACCGCCTCTGCGCTCCTCCTATCCGCCTGCGGATCCGCCTCCGGACCGGCAGCGAGTACTGCCAGTACAGGTTCTGCCGGCGCCGGCACAACTGCTCCGGCCCCGCGTGTGGCCCTCACGTATGACGGGGGCATTGCCGTCCTTGACGGCAAAACACTCGAGCTCGAGGGCGACCTGCCTCTGGCAGGCTTCAACCGGCTCAACCCGGCAGGCGACGGACGGCACGCAATGGTCACCACCGCAGAAGGGTTCCAAGTCCTGGACATGGGGACCTGGACTGATGCCAGCGGCTCCCGGCAGGCCGAACCTCAACTCACCGATCTCGTCTTCAAGGCCGACAAAGCCGGACACGTGGTGCGACACGATGGCAAGACCGTCCTGTATGCAGACGGCACTGGTGAAACGACTATTTTCGAGACCGACGCACTGCTTGACGAACCTACCAAGTTGCCTGAAACCGAGGTGGTTCCCGCGGAGGAAGCACACCACGGCGTGTCAATCGTCCTGAAGGACGACACGCTGCTCACCACCGTAGGCAACTCGCAAAGCCGCTCAGGACTCCGGGTGCTGGACAAAGACCGCAAGGAAATCGCCAGGAACGGCGAATGCCCCTCTATCCACGGGGAGGGCACGGTAGCCGGCGAAATCGCGGTCTTCGGATGCAGCAACGGCGTGCTCGTCTACGAGGCCGGCACCATCACCAAAATCACCGCCCCGGACAAGTATGGCCGCATGGGCAACGCCTACGTAACGGACACCAGCCCCATCGCCGTTTTCGACTACAACGCCGATCCGGACGCCGAAGGCTACCTGCTCCACCAGCTCGGCCTCATCGATACAAAGGCTAAGACCATGAAAGTGGTGGACCTGCCTGACGGCGTCGAGTACACATGGCGGGACGTCGCACGCGGACCCAACGAAGAAATTCTCCTGCTCGGAACGGACGGATCCCTGCACACCCTCGATCCCGTCAGCGGGGAGACCACTTCTTCCCTCCCTGTCATCGGCGCCTGGGAAGGCCCTGCCGAGTGGCAGGACGCGCACCCGGCACTCACTGTGCTCGATGGCACCGCTTACGTAACCGACCCGGCCAAGAAAACACTCCACGCCATCGACCTCGCCACGGGTAAAATCACCACCTCCAAGGAACTTCCTGGCACACCCAACGAGATCACCGTCGTCGAAGGCTAAMKNAISPLRTRRIVLAAAVTASALLLSACGSASGPAASTASTGSAGAGTTAPAPRVALTYDGGIAVLDGKTLELEGDLPLAGFNRLNPAGDGRHAMVTTAEGFQVLDMGTWTDASGSRQAEPQLTDLVFKADKAGHVVRHDGKTVLYADGTGETTIFETDALLDEPTKLPETEVVPAEEAHHGVSIVLKDDTLLTTVGNSQSRSGLRVLDKDRKEIARNGECPSIHGEGTVAGEIAVFGCSNGVLVYEAGTITKITAPDKYGRMGNAYVTDTSPIAVFDYNADPDAEGYLLHQLGLIDTKAKTMKVVDLPDGVEYTWRDVARGPNEEILLLGTDGSLHTLDPVSGETTSSLPVIGAWEGPAEWQDAHPALTVLDGTAYVTDPAKKTLHAIDLATGKITTSKELPGTPNEITVVEGNANANANANA
D1-29_02303780kdgR_2Pectin degradation repressor protein KdgRGTGACCGCCGAACCCGGGCCTGCGGAGCCCCAGCTGTCCGCACTGATGAAAGGCCTCAAAGTGCTGGAGGCGGTGCCTGCGCACCACAGGATTTCTGACATTGCCTCCGAGACTGGCCTGTCCGTCAGCACCGTCCACCGTATCCTGAGTGACCTCGTGGAGTATGGCTGGGTGGAACAGGACCAGGAGAGGGCCTACCGCCCGGGCCGGCGGGTCCAAGGGCTTGTTTCGTTGCTGCACAATGACGAACAACTTGTCCGCACGGCACTGCCAGATCTTCAGGCGCTGCGGGACAGCGTTGGTTTCACTGTCCACATGGCGCGGTTCTCACACAACGAGTTGAGTTACGTTGCAAAAATTGACGGGCCGGCCGCCTATCAAATGCGCTCAAGGGTCGGCGACACCATTCCGCTGTGGTCCTCCGCCATCGGAAAGGCGATACTGGCCGCGCTCGACGAGCAAACAAGCCGCGAACTGTTGAAAGCCGCGCAGCTGAAGCGGAGAACCCGGTCCACCATCATGTCCAAGAGCCTGCTCTGGAACCAGGTGGAACTCATCCGCCGTCGGGGGTGGGCCGTTGACGACGAGGAAAACGAACTCCACATCAGGTGCGTTGGGGTTGCGCTCCAGGACGCGAGCGGAAGAGTCATCGGCGGACTCAGCACGTCCGCGCTTGACCACGAGATGACCCCCGCCACGATAGAGCGGATAGCGCCCCTTGTTGTGGAAACAGGGGCGCGGATCAACAAGCTGCTGGGCCGGGACAGCCAACGGAAGTGAMTAEPGPAEPQLSALMKGLKVLEAVPAHHRISDIASETGLSVSTVHRILSDLVEYGWVEQDQERAYRPGRRVQGLVSLLHNDEQLVRTALPDLQALRDSVGFTVHMARFSHNELSYVAKIDGPAAYQMRSRVGDTIPLWSSAIGKAILAALDEQTSRELLKAAQLKRRTRSTIMSKSLLWNQVELIRRRGWAVDDEENELHIRCVGVALQDASGRVIGGLSTSALDHEMTPATIERIAPLVVETGARINKLLGRDSQRKNANANANANA
D1-29_02304783kduD2-dehydro-3-deoxy-D-gluconate 5-dehydrogenaseATGAACGGCGGAGCCAGCATGGAATCATCCACCACCCTGTCCCGTCCACTTCAGGGTCAACGCGCCGTGGTTACCGGAGCGCGGACAGGCATCGGATTCGCGTGCGCGGAGCGGCTCGCCCGCGGGGGCGCCGATCTGGTCCTCTGGGGACACCGGGACATGGCGGAGACCGCAGAGCTGCTGTCCGGCCATGGTGTCACCATCGACGTTGTGACATCTGACCTTGGCGATCCCGCCGCGGCCCGTACCGATGCCGAACGCCTCGTGGCATCAGGACCGGTGGATATCCTGGTCAATAACGCGGGAACGATTCACCGCGAACCGGCCGCGGCTCATGCCAGCGAGGCCTGGGACCGGGTCCTGAACCTGAATCTGAACACCGTTTGGCACCTGAGCCAGGTCTTCGGCACCCATATGGTCAACCGGGGACACGGCAGGATCATTTCCATCGCCTCACTCCTCTCGTTCCAGGGAGGAATAAACGTTCCCTCCTACACGGCGTCAAAACACGCGGTGGTGGGCTTAACTAAAGCCCTCGCCAACGAGTGGGCATCGCACGGGGTAACGGTGAACGCTATTGCGCCCGGATACATTGCAACGAACAACACTGAAGCTTTGCGCGGAGACCCCGAACGGGAGCGCTCGATCCGTGAGCGGATCCCTGCAGGGCGGTGGGGTTCGCCGGAGGATATTGCCGGCAGTGTGGCCTTCCTTGCCGGGCCGGAGGCGGCATACGTCAATGGCCACGTTCTGGTTGTCGACGGCGGGTGGCTGGGCAGGTGAMNGGASMESSTTLSRPLQGQRAVVTGARTGIGFACAERLARGGADLVLWGHRDMAETAELLSGHGVTIDVVTSDLGDPAAARTDAERLVASGPVDILVNNAGTIHREPAAAHASEAWDRVLNLNLNTVWHLSQVFGTHMVNRGHGRIISIASLLSFQGGINVPSYTASKHAVVGLTKALANEWASHGVTVNAIAPGYIATNNTEALRGDPERERSIRERIPAGRWGSPEDIAGSVAFLAGPEAAYVNGHVLVVDGGWLGRPGPT0018065_536DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018065-kduD-K00065NANA
D1-29_02305813kduI_14-deoxy-L-threo-5-hexosulose-uronate ketol-isomeraseGTGAAACGCCTGTGGAGCACGCACCCTGATGACCTGGCCCGCCTCGATTCAAGGGAGCTGCACCAGCGCTTTGTCGTCTCAGACCTCTTCGCACCCGGGGAGGTCCGGCTCGCCTACGCCCACGACGACCGGATCATTGTGGGAGGAGCCATGCCAACAGGGGATCCGATCGAGCTTGAGGCTCCAGCCGAGGTACGCTCCCGGAACTTCCTTGATCGACGCGAACTGGCCCTCGTTGGCCTTGACGGCGCCGTCTCAGTGACCGCCGACGGGGAAACCTGGAAGGTGGGCCGGCACGACGTCCTCTACCTGCCGTGCGGAACGAAATCGGTGACTCTGTCCGATACAGGGGCCGTTTACCTCGTTTCGGCCCCCGCGCACCGGCGGACAGCAGCCCGGCTTGCTTCCCACGATGACGCAGCAGCCCTGCATCTGGGCTCGTCAGAAGAGGCCAATGAGCGCGTTATCCGCAAGTACGTTCACGCCGACGGAATTGAGTCCAATCAGCTGGTCCTTGGCATTACTACCCTGAAGCAGGGTTCTGTCTGGAATACCATGCCGGCCCACCTGCACGACCGCCGGACTGAAATCTATTTTTACGATGGACTGGGTGACGCCCTCCTTGTCCACCTCATGGGCCAGCCGGACAGCACACGTCACCTGTTGCTGCGGGACCGGGACGCTGTGGTTTCACCGCCGTGGTCCATTCATAGTGGCAGCGGAACCAGTGCGTATTCGTTTATCTGGGCGATGGCCGGAGAGAACATCGACTACAGTGACGTTGATTCCGTCAGCTCCGGAGACCTTCGATGAMKRLWSTHPDDLARLDSRELHQRFVVSDLFAPGEVRLAYAHDDRIIVGGAMPTGDPIELEAPAEVRSRNFLDRRELALVGLDGAVSVTADGETWKVGRHDVLYLPCGTKSVTLSDTGAVYLVSAPAHRRTAARLASHDDAAALHLGSSEEANERVIRKYVHADGIESNQLVLGITTLKQGSVWNTMPAHLHDRRTEIYFYDGLGDALLVHLMGQPDSTRHLLLRDRDAVVSPPWSIHSGSGTSAYSFIWAMAGENIDYSDVDSVSSGDLRPGPT0018245_1037DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018245-kduI-K01815NANA
D1-29_023061389hypothetical proteinGTGTTCGTGACGTTGCGCACATTGTCGCCCCGGCAGGGGGCGATCACCATCAAGGAGGATGAAGTGGCTAAAAAGAGTCGGATAACAGCGCGGTTGATGCTCGCTGTCACCGCCGTCACCCTGCTGGGCGCCTGTGCGCCAGGCCAGGTTGAAGGGGAGGGCGGCCCGGGACAGGAGCCGCTTACCGTCGAGAGCGTCGACCCCGCGGAGTTCAAGGGAAAGACCCTGAACTACGTCTACTTCACGGACGGGCCAGACGAGCAGGCGACCCGTTCCCTCATTGGGGACTTCGAAAAGAAATTCGACGTCACCGTCAATCTTGAGGTTCTTCCCTACAAAGATCTTGTGACTTCCGTTCAGGCACGCCTTTCCGGCGGAAATGTGCCCGACGTCGTTCGCCTCACCGGGCTCACTGATTTCAAGGCCGATCTCCTGGACCTGCGCCGCTACCTGGGTGAAAAGTATGCGGAGGAGTTCCTCCCCGGCCCGCTGGTCGGCGCTGCCGGCGACAATGACCAGCTTCTCGCAGTACCGTCGGACCTCACGCTCAACGGCCCGTTCGTCAACGTGGACATGTTCAAGAAAGCCGGTGTTGAGCTTCCCAATCCGGAAGATCCCTGGACCTGGGAGGAGATGATCGCCTCCGCCACCAAGGTGCAGCAGGCCACCGGATCGCAGTACGCCTTCGCCATGGATAAGTCCGGTCACCGGCTTTCCACCGTTCTCAACCAGTACGGCACGACGCTCGTCGCAGATGGCAAGGCAGTGCTGGACGCGGACAAAGCAGCAAAGGCCCTGACCCCACTTGTCGAGATGATGGGCGATAACCGGATGCCCCGGGACTTCTGGCTCGGCTCAGGCTCGCGCTATACCGGTGCCAACGAAATTTTCCTCGCCCAGGACGCGCCCGTCTACCTCTCGGGAAACTGGCAGGTGGGACAGTTCGCGGCCAACGCCAAATTTGAATGGGCCGCCGCCCCCAACCCCTGCGCAGAAAACTGCGGCGGCTTCCCGGGCGGCAAGTACATGGCGGCTTTGGCAGAAGGCAAGAATCCTGCGCTGGCCGCTGAGTTCATCCGGTTCATGAATACCGCGGAAAACCAGAAGACCTTCATCGTTGCCGGCGGCTTCCTGCCCACCCGGAAGGACCTTGCAGAAGAAGGCGTCGCCTATCCCGCCCGGCAATCCGATATGGACGTTTTCCTGAAGGATCTCTCACGCACTCCTGAGGTTGGGTACTCCGCAAATGCCGATCCGGCGTTCGCCGGCTCGGGGACCGAACTCGTCAATGCGGTCTCGGAAGTCGTTGCCGGAAAGACTGACCTGCCGGCTGCGCTGACGAAGGTCCAGGAGAAGTCACAAGCCCTCGTGGATGAACTGGACCGATGAMFVTLRTLSPRQGAITIKEDEVAKKSRITARLMLAVTAVTLLGACAPGQVEGEGGPGQEPLTVESVDPAEFKGKTLNYVYFTDGPDEQATRSLIGDFEKKFDVTVNLEVLPYKDLVTSVQARLSGGNVPDVVRLTGLTDFKADLLDLRRYLGEKYAEEFLPGPLVGAAGDNDQLLAVPSDLTLNGPFVNVDMFKKAGVELPNPEDPWTWEEMIASATKVQQATGSQYAFAMDKSGHRLSTVLNQYGTTLVADGKAVLDADKAAKALTPLVEMMGDNRMPRDFWLGSGSRYTGANEIFLAQDAPVYLSGNWQVGQFAANAKFEWAAAPNPCAENCGGFPGGKYMAALAEGKNPALAAEFIRFMNTAENQKTFIVAGGFLPTRKDLAEEGVAYPARQSDMDVFLKDLSRTPEVGYSANADPAFAGSGTELVNAVSEVVAGKTDLPAALTKVQEKSQALVDELDRPGPT0017260_4DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017260-aguE-K17241NANA
D1-29_02307909melD_8COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACAGCAGTCCGGACGGCTCCTCCCCGGAAGCGCAAGTCATCACTGAAGATGGGGTTGGTTCCATATCTCTTCCTCCTGCCGAACATGGCGATCTTCGGACTCTTCACCATCTGGCCGGCCATCAACGGCTTCAACATCTCCATGTACTCCTCCTCCAACGGCCGGACTTTCCGGTGGGAGGGGGCCGGGAATTACCAGAGCATCCTGACTGACGCTGATTTCTGGGGAATTGTCCGAAACACAGTGATCTATGCATTCGCGTTTGTGCTGCTCTCCGTGGTGATCGGGGTGATACTTGCGGTGCTTGTCGATCAGCAGCGGCGGGGCCGAACGTTCTTCCGCTCCGTCTTCTTTATCCCGGTCCTTATTTCGCCTGTCGTGGTGGGCCTGGTCTGGAACTGGATGCTTGAGCGGCAGGGAGGCCTGGTCAATACCTTTCTGGGCTGGTTCGGAATCCCGGAGATCCCGTGGCTGGTGGACAACAACCTCGCCACCATTGTGGTGATCGCCGTTGGCGTCTGGATGCAGGTGGGCTTCTACATGCTGATCCTCCTCGCCGGGCTCCAGAGCATCGATCCGTCTGTCTATGAGGCGGCGCGAGTGGACGGAGCAAACCGGTGGCGGCAGTTCATCAGCCTGACTTTTCCGCTGCTGCAGCCAAGCATCCTTGTGGTTGTTGTGCTTGCCACCATCCATGGCTTCCAGGCATTCGACTACATCTACACCCTGACCGGCGGTGGCCCCGTCGGCGCCACAACCCTCATCGTTCAATACATCTACGAAAACGGCTTCGTCTCCCCGATCAGGTATGGCATGGCATCGGCTGGCAGCGTCCTGCTGTTCTGCGCCATATTCGCGTTGACGATCATCAACTGGATGGTTGGCCGGAAAAGGGAAGCAGCATGAMTAVRTAPPRKRKSSLKMGLVPYLFLLPNMAIFGLFTIWPAINGFNISMYSSSNGRTFRWEGAGNYQSILTDADFWGIVRNTVIYAFAFVLLSVVIGVILAVLVDQQRRGRTFFRSVFFIPVLISPVVVGLVWNWMLERQGGLVNTFLGWFGIPEIPWLVDNNLATIVVIAVGVWMQVGFYMLILLAGLQSIDPSVYEAARVDGANRWRQFISLTFPLLQPSILVVVVLATIHGFQAFDYIYTLTGGGPVGATTLIVQYIYENGFVSPIRYGMASAGSVLLFCAIFALTIINWMVGRKREAAPGPT0017265_131DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017265-aguF-K17242NANA
D1-29_02308888araQ_8COG0395L-arabinose transport system permease protein AraQATGAGCAGCACTACAACTGAGGCCGCACCTGAAACGCTCCCGGGTAAAACCTGGACGTCGACAGGCAAAAACAACATAACCGCCACCGACGCCCTCCGGGTGGTCATCCTCGTTACCGCGGCGCTCGTTGCCCTGGTCCCCATCGTGTGGCTTGTGCTTGGGGCGTTCAAGACTCCCACCGAGCTGTCGGCACGGCCGCCGTTGCTGCTGCCGGAGTCGTGGGGACTCTCGAACTACACCGACGCACTGACGCGGTTCGACTTTACGACGTACCTCTTCAACAGCACCGTCGTGACGATCGCTGCGACCGCCCTGACCCTCGCGATCAACTCCATGGCCGCCTACGCCCTGGCGAAGTACAACTTCCGCGGAAAAAACGGCCTGTTCCTCCTCACACTGGCAACGATCATGATCCCGCTGCAAGTGATTCTGATTCCGGTTTACCAGGTGGTTGCGTCGCTGGGGATGGTGAATACCCTCTGGGGGCTCATCATCCCGGCGGCCGCCACACCCACTGGGGTCTTCATCCTGCGGCAGTACATGCTCTCCATCCCGGACGAGCTGATCGAAGCGGCGAGGGTGGACGGATCCGGGGAATTCCGGACCTTCATTCAGATAGTCCTCCCGATGTGCAGGCCCGCGCTGGCTGTGGTGGCCATCCTGTCCATCATGTGGCGCTGGAATGACTTCCTGTGGCCGCTCGTCGTCGCCCAAAGTGAAACCGTCTACACGCTGCCGGTTGCGTTGGCGCGCTTCACTGCTGAGGAAACCGTACCGTTCAACCTCATCATCGCCATGAGCGTGGTCAGCATCCTGCCTGTGATCATCCTGTTCCTCTTCTTCCAGAGGCAGATCGTCACAGGCATCGCGAACACCGGAATCAAGTGAMSSTTTEAAPETLPGKTWTSTGKNNITATDALRVVILVTAALVALVPIVWLVLGAFKTPTELSARPPLLLPESWGLSNYTDALTRFDFTTYLFNSTVVTIAATALTLAINSMAAYALAKYNFRGKNGLFLLTLATIMIPLQVILIPVYQVVASLGMVNTLWGLIIPAAATPTGVFILRQYMLSIPDELIEAARVDGSGEFRTFIQIVLPMCRPALAVVAILSIMWRWNDFLWPLVVAQSETVYTLPVALARFTAEETVPFNLIIAMSVVSILPVIILFLFFQRQIVTGIANTGIKPGPT0017270_198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017270-aguG-K17243NANA
D1-29_023092784hypothetical proteinATGAGTGAAATTTTTATGCCGACCAACAGGACCACCCACACCACCGACGCCGACGGTACCGTGCGCGACTGGCTGGTCTCGCCCGTATGGGCTTCCCCGTGCGGGGACCTGGAGAAGTTCCTTCCCGCCGAAGGTGAGCCCTGGGGGGATGGCCGGTGGGTCCTGACCAACGGGCCCGACGTCGGCGGGCTGAAGGAACGACTGGCGAAAGCACACCCCATCGATATCGGGCAGCACATCGAGCCGCCGGTCGAGGGCGGTGCCGTCAGCTGGCTGGCGGGAGGTTCCACGTACAAGGCTTCGTGGCGGCGGGTCCGCACGGGGGAGGACGGGTTCCTTGACTGGTCGGCCTTCTGCTTCACACCGGAATACAGGTATTCGTTGGCAAGCACCGTGCTGGAAATAGACCAGAGCGACTGGCGAACCATTGAACTCCATACCACCGGCCCGTTCGTCCTGTGGCTCAATGGCGAGGTGGTGCTCCAGGGCGGCAAGGTCTCCTACATGGAACCCGAAGTGCACACGGCGCGGGTCCGCCTCCCCTCACGAACCACCACTGTCCATTTGGCGACATGGCAGGTCGCCTTCCGCGAGTGCCGCCAGATTGCCCGGATGCGGGTAACAGGCCTGCCCGTACGGGTCGTCATCCCCTCACCGGGGGCAGATGAACACGCAGCCAGGCTGGCCCAGACCGTACTGGCGAAAATCGGCTCGCCGTCCTGGGCGCAGGACGCGGCCGAGGCCACCCTCTTAGCTCCTCCGGGCGCTGCCTTGAGGGTGCGCGTGGGGGAGAATTCGCCCTGGCAGCATATAACGGCCGACGCGGCCGGAAAAGCAACATACCGCCTGGATCATGCAACGGAGGAGGAGCAGGACGAAGGCGGCGACGTCGCCCGAACGGCAGGGGCATCGATGCTCTCCAGCGGAGAAAGCATCGTCGAAGTAGGCCTGGACGACGAGCGCTGCCCGCAGACGATGCGGATGCGGGTGGCTGTCCTGCCGCCCTTGAGTACCGAAAGCCCCACAGGTGACACCGCAGCCTGGCGCAACGATGTCCTTCGGCACGTCGCCGGACACGGCGAAGGCGCGATCCGCGAGCCAGGAGTCGCTGGCCTCCTCGCCCGTTACGCCCTGGATTCCCAGACCACCGTCCAGGTGGAGGACCTCAGATCTTCGCTGCACCGGATCCTGACGCGTGGCGACTGCGCCGACTTCGAGGTGGTGTCCCTTCTGCTTGCATGGCATTGGATTCCCGAGGACCGCTGGTCACCCGAGCTGCGGAAGGAAGTTTCCGTGGCAATCACCGGGATGAAGTACTGGATCACCCAGCCTGGCCTTGATGCCATGTGTTACTTCACGGAGAACCATCAGTTCGTCTGGCACGTGGCGGAGGCGCTCGCAGGAGAGGCCTTCCCTGACTCAGTCTTCACCGTTGACGGCCGTACCGGATCCGAGCACGGAGCGGAAGCCCGTTCCCGGGCTGCGGGCTGGCTGACGAGGAAACTGCGGGGCGGCTTCAGCGAGTTCGATTCCAACGCATACCTTGCCATCGACAGTTACGCTTTGTGCGCGCTCATCGAGCTGGGCGAAGACCAGGCGCTGATTACGGCAGCGCGCACCCTTTTGGACAAGGTCCTGGTGACGCTGGCGTCCAACTCCTGGCGCGGCACCCATGGTGCGGCTCATGGCCGCTCCTACGTGCACACCCTGCGCAGCTCACGATTCGAGGAAACCTCCCCGATCCTTCGGCTTGTGGCCGGCGTGGGAACCCTTAACGACGCCGTACTTCCGGTGACGGCCCTGGCGCTGGCGCAGAAGTACACGATTCCTGATGTTGTCCGCGAACTGGCCGGGAACGAACCAGAAGAATGGTGGGGCCGCCAGGTCTACCGCGGCGAACTTTCCTTCGAACGGGACCTCCTGGAGAGGCCCTACCGCTCCGACCTGCGGGTCTGGAGAACACCTGACGTCATGCTCTCCAGTGTGCAGGATTACCGGGCCGGCCTTCCCGGCCTTCAGGAACACATCTGGGGGGTCACCCTTGGGCGCGAGCTGCAGGTGTTCGTTACCCACCCGGCCAACTCCGACACCGGATCTTCTGCCCGCCCGAACGCCTGGGCAGGCCATCGGATTCTCCCTCGTGTACATCAGCATCGAAATGCGCTGATCCACCTGCAGAGGTTCACCACGACGGATCCAATCCGTTCCACACACCTGTGGCTTCCCCTGTCCCAAACGGATGAATACATCCAGCAGGGTGAATGGATCGCAGCACGCCGCGGCGAGGGCTATGTCGCTATCGCCACTCCCGGTGGCGTCCGCCCTGTCCTGGAAGGCGAGACAGCCTGGCAGGAGTGGCTCCCGGTGGAGGGAGGCGCCGCCTGGATTACCGTCGTCGGACGCAAACAGGCCGACGGCGACTTCCGGGCCTGGGTCAATTCGCTCGCATCCACCGAGGTGCAGTGGCACCCGCGCGGTGAAGCTGATCCCGGGGTCCGCTTCGCCAGGGAGAATGCAGCCGTCATGGAAGTGACTTTCGAAACCGCGTTCCTGCTGGACGGTACTCCCGTTGGCCTCGTCAATGGGGTCCCCGAGAATGAGCCGCACCTGGACAACCCGGCAGTCCATGCAGAGTTCGACGACGGCCGAATCGACGTCGCCTGGCGTGGAAAGACACTGGGTCTCGATGTCGCCGGTTCACTTTCCGCCCTCGCGGAGGCATACGCCGTGGAAGGCGTTTCAAGCGCCACCAAGCTGGTAGGGAGCATGTCCAATGGCCGGTGAMSEIFMPTNRTTHTTDADGTVRDWLVSPVWASPCGDLEKFLPAEGEPWGDGRWVLTNGPDVGGLKERLAKAHPIDIGQHIEPPVEGGAVSWLAGGSTYKASWRRVRTGEDGFLDWSAFCFTPEYRYSLASTVLEIDQSDWRTIELHTTGPFVLWLNGEVVLQGGKVSYMEPEVHTARVRLPSRTTTVHLATWQVAFRECRQIARMRVTGLPVRVVIPSPGADEHAARLAQTVLAKIGSPSWAQDAAEATLLAPPGAALRVRVGENSPWQHITADAAGKATYRLDHATEEEQDEGGDVARTAGASMLSSGESIVEVGLDDERCPQTMRMRVAVLPPLSTESPTGDTAAWRNDVLRHVAGHGEGAIREPGVAGLLARYALDSQTTVQVEDLRSSLHRILTRGDCADFEVVSLLLAWHWIPEDRWSPELRKEVSVAITGMKYWITQPGLDAMCYFTENHQFVWHVAEALAGEAFPDSVFTVDGRTGSEHGAEARSRAAGWLTRKLRGGFSEFDSNAYLAIDSYALCALIELGEDQALITAARTLLDKVLVTLASNSWRGTHGAAHGRSYVHTLRSSRFEETSPILRLVAGVGTLNDAVLPVTALALAQKYTIPDVVRELAGNEPEEWWGRQVYRGELSFERDLLERPYRSDLRVWRTPDVMLSSVQDYRAGLPGLQEHIWGVTLGRELQVFVTHPANSDTGSSARPNAWAGHRILPRVHQHRNALIHLQRFTTTDPIRSTHLWLPLSQTDEYIQQGEWIAARRGEGYVAIATPGGVRPVLEGETAWQEWLPVEGGAAWITVVGRKQADGDFRAWVNSLASTEVQWHPRGEADPGVRFARENAAVMEVTFETAFLLDGTPVGLVNGVPENEPHLDNPAVHAEFDDGRIDVAWRGKTLGLDVAGSLSALAEAYAVEGVSSATKLVGSMSNGRNANANANANA
D1-29_023101149yesRCOG4225Unsaturated rhamnogalacturonyl hydrolase YesRATGGCCGGTGAAGACACTTCCTCAGCTGAGCTCTCTGCTCCTCCTGTGCGTCCGTTGGAGCGGGCAGATCTGGTCACGGACCTTGATTCGATCGAGGCGGCACTGATTTCCCGGACGGCCAGCATGGGGGTGGAACGCTGGTTTTGGGGCGAAGGTGTGTGCCTGCTGGCAGCATGGCGGGCCGCGGCCGCGCGCGGAGCCGACATACCCGAACTGGTCACTGCCTTTACGCACAGGTTTCTGGCCAGCCCCCCGATCCTGGAACACGTTAATAACCTGGCACCGGGCGCCGCGGTGGCCGAGCTGTACCGCCGCGCCCCCGACCCTGCGATCAGGGCACTCCTGGAGGCTTGCCTGGAGTGGTATTTGCATGCCCCCGAAGCTACCCGCGCCCCGAACGGCGCGTTGGAACACTGGCCCGGCGGTGTGTGGGCTGACACCGTTTACATGGCCGGGGAGTTCCTCTTGCGCGCAGGGAACGTCCTGGACCGGCAGGACCTGGTTCAGGAGGCAGTAGACCAGTGGCTCGCGCACGCCGAACTGCTACAGGATTCGGATTCAGGTCTGTTCGTTCACGGTACGCACTCCGGCGCGCGCATCGACAGTTTCTGGGGCCGGGCCAACGCCTGGACTGCCCTGGCAGGGGCCGATCTTCTCGCCCTGGGAGGCACGGCCGAGCGGCTGGGAGAAGTGCGGGAACGTTTGGACCGCCAGCTGCAGACCCTCGCACAACTCCAGCCTGAGCACGGCGTCTGGGATGTTTTGGTTGACGGTCAGGTTGAGGTACGGGGCGTGCTCGAAACGTCCGCGGCCGCCGGAATCGGGGCAGCAATGCTGCGCGCCGATGCCCTCACAGCCGCCAGGGAAGCAACTTCAAAGCCGACGGCTGACCAAGCATCGCCGCGGTCAGCCCTGCGTGAGGCGGGGGAGCGGGCAGTCCGCGGTGCATTGGCATACGTCCATGAAGGCACCCTGACCCGGGTCAGCGCCGGAACCGTTCTGCAGCTCATTCCGTTCGGCTACTCAGTCATCAGGGACGACCGCATCCAGCCTTGGGGACAAGGCCTTGCGCTTGAGGCAATCGCCGCCTGGCGCGAGACGACAAAAAGCATGAATATGCCCGTGGGCCAACAGGGGGAAAACCTATGAMAGEDTSSAELSAPPVRPLERADLVTDLDSIEAALISRTASMGVERWFWGEGVCLLAAWRAAAARGADIPELVTAFTHRFLASPPILEHVNNLAPGAAVAELYRRAPDPAIRALLEACLEWYLHAPEATRAPNGALEHWPGGVWADTVYMAGEFLLRAGNVLDRQDLVQEAVDQWLAHAELLQDSDSGLFVHGTHSGARIDSFWGRANAWTALAGADLLALGGTAERLGEVRERLDRQLQTLAQLQPEHGVWDVLVDGQVEVRGVLETSAAAGIGAAMLRADALTAAREATSKPTADQASPRSALREAGERAVRGALAYVHEGTLTRVSAGTVLQLIPFGYSVIRDDRIQPWGQGLALEAIAAWRETTKSMNMPVGQQGENLPGPT0018255_1181DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0018255-yteR|yesR-K15532NANA
D1-29_02311834kduI_24-deoxy-L-threo-5-hexosulose-uronate ketol-isomeraseATGATTACCACTAAATACGCCCACAGCCCGGGGCACGTTGCCACCATGACCAGCCGGCAACTGAGGGATGCCTTCCTCGGCGAGAATCTGTTTCGGCCGGGCGAGGTTCATGGCCTGTACAGCCACCACGATAGGATCCTGGCCCTGGGAATCGTGCCCCTGGCGGAGCCGCTTGGGCTGCCGGTTCCGGACCAGATCAGAGCCGAGCACCTGCTGCAGCGCCGGGAAGCGGGAGTGATTAACGTTGGTGGCCCGGGCGTGGTTTCGGCTGACGGCCAGGCGTACAAGTTGAGCCATACTTCCACCATGTACTTGGGGCGCGGCGCCTCGGAAGTATCCTTTGCTTCCTCAGATCCAACGGATCCGGCTGCGTTTTACGTCTTCACCGCAACATCGCATCAGGCCCTGCCCACGGCCCTTATCGAGCCCGAAATGATGAACGTCGTGGAGTTGGGATCGCAGGACGGCGCCAACCGGCGCACCCTTCACCAGTGCATCTACGAAGGCGGGACCCGGAGCTCCCAGATCGCCTTCGGATACACCAGGGTTCACGCCGGAAGCACGTGGAATACGATGCCGGCCCACACCCATGACCGGCGCACGGAGTCCTACCTCTACTTTGATCTGGCTCCCAAGGATCGGGTCTTCCACATCATGGGCGAACCCAACGAAACCCGCCACCTGATTGTCGCTGACCGCCAGCTCGTAGTTTCCCCCAGCTGGTCACTTCATTTCGGCTCCGGCACGGGACCCTACACCTTCGTGTGGGCAACCGCGGGCGAAAACACCACCTACAACGACATGGACAGTGTCGACGTCACGGACATGCTGTGAMITTKYAHSPGHVATMTSRQLRDAFLGENLFRPGEVHGLYSHHDRILALGIVPLAEPLGLPVPDQIRAEHLLQRREAGVINVGGPGVVSADGQAYKLSHTSTMYLGRGASEVSFASSDPTDPAAFYVFTATSHQALPTALIEPEMMNVVELGSQDGANRRTLHQCIYEGGTRSSQIAFGYTRVHAGSTWNTMPAHTHDRRTESYLYFDLAPKDRVFHIMGEPNETRHLIVADRQLVVSPSWSLHFGSGTGPYTFVWATAGENTTYNDMDSVDVTDMLPGPT0018245_335DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_OLIGOGALACTURONIDE_DEGRADATION,PGPT0018245-kduI-K01815NANA
D1-29_02312666edaCOG0800Putative KHG/KDPG aldolaseGTGAAAGCCGAAACCGAAGTCATATCCACCTTTGGAAAGTGGGGGGTGATTCCTGTCGTTGTCATTGACGATGCAGAGAATGCAGTGCCCTTGTTGACTGCGCTCAGCCAGGCCGGACTGCCCGTGGCTGAAATTACGTTCCGAACACCTGCAGGAGCAGAAGCCATTCGAACCGCCGTAGACGCCGGGCTCACTGAAGGACCGGCCCCTGTCCTCATCGGCGCCGGCACAGTGACCACCGTTGAGGAGGTGGACAAAGCGGTCGACGCCGGCGCTCAGTTCATCGTCTCGCCAGGGTTTAGCCGGAGCGTAGTGGAACGCTGCCAAGAACATGGTGTCCCGATAGTGCCGGGGGCTGTCACGGCAACAGAGATTCTGGCATGCCTGGAAATGGGTCTGCAGACAGTGAAGTTTTTCCCGGCATCAGTTTCGGGAGGTCCGGCCGCCGTCCAAGCACTGGTGGAGCCCTTCGGTTCCCTGCAGGTGATCCCTACCGGCGGAATAAACCCGGACAACCTCGCCACCTACCTGAACATACCGAATGTCATGGCAGCAGGCGGCAGTTGGATGGTGCCCCGGGCCGCAATCCAGTCCAAGGACTTCGCGCGGATCGGTTCACTCAGCGAACAAGCGGTTGCCCTTGCCACGGCAATCCGGCAGGACTGAMKAETEVISTFGKWGVIPVVVIDDAENAVPLLTALSQAGLPVAEITFRTPAGAEAIRTAVDAGLTEGPAPVLIGAGTVTTVEEVDKAVDAGAQFIVSPGFSRSVVERCQEHGVPIVPGAVTATEILACLEMGLQTVKFFPASVSGGPAAVQALVEPFGSLQVIPTGGINPDNLATYLNIPNVMAAGGSWMVPRAAIQSKDFARIGSLSEQAVALATAIRQDPGPT0002060_378DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
D1-29_023131032kdgK_22-dehydro-3-deoxygluconokinaseATGACCCCACCTACCTGGAACACCGGGCCGGATGCTGAAGCCCCAGCGGCCGCAAGGACAACGGTGCCACGCGAGCGTGCAACAGGCGCCCCCGAAGTTGTGACGATGGGCGAGTCCATGGCTCTTTTCAATCCGGAAACTGTCGGTCCGTTGCCACACGCCGGGTCCTTTACGCTGGGCATCGGCGGTGCGGAAAGCAACGTGGCCATTGCCCTCAAACGGCTGGACACCTCCGTGGCCTGGGTGGGCAGGCTCGGGGATGACACGCTCGGAAACCTGGTCCGCCGGGAACTCCTGGCTGAGGGAGTGGAAGTTGTCTGCGCCCGGGACGGCGGGGCCCCCACGGGGCTCATGATCAAGGAGCGCCGCACATCGTCCAGCACCAGGGTGTCTTACTACCGGGCTAACAGTGCGGGCTCACGGCTCTGTGTGGAGGACGTCCCCAGCGACCTCATTGCCGGGGCACGGCTGTTGCACCTGACAGGCATCACGCCCGCATTGTCCAGATCGGCAGCCGAAGCGGTGCAGTACGCCATCGACTGCGCAAAAGCTGCTGGTGTCAAGGTCTCCTTTGACCTTAACTACCGCGCGTCTCTGTGGTCCATGCAGGAGGCGAAATCCGCCTACGAGAATCTGATCAGTCAGGCAGACGTGGTTTTCGCAGGCGAAGAGGAGGCGGCGATCGTGGTGGACTGCGCCGAAAATCCTCTTCAGTTGGCCGAGCGGCTGGCCAAACTCGGCCCCACCGAAGTGGTGATCAAGCTGGGCGCGGCGGGATGTGCCGCTCTTGTCGATGGCATTGAATATCATCAGCCCGCAATCCAGGTTGACGCCATCGACACGGTAGGAGCCGGGGATGCATTCGTCGCTGGCTACCTGGCGGAATGGCTCCGTGACGAGAGTGTTTCCCAGCGCCTGCTCACCGCAGTCCGCACCGGGGCGTTTGCCTGCCTGGTGCCAGGTGACTGGGAAGGCATGCCCTACCGCAACGAACTTTCGCTGCTGGATGCCACCGAACCCGTAACCAGGTAAMTPPTWNTGPDAEAPAAARTTVPRERATGAPEVVTMGESMALFNPETVGPLPHAGSFTLGIGGAESNVAIALKRLDTSVAWVGRLGDDTLGNLVRRELLAEGVEVVCARDGGAPTGLMIKERRTSSSTRVSYYRANSAGSRLCVEDVPSDLIAGARLLHLTGITPALSRSAAEAVQYAIDCAKAAGVKVSFDLNYRASLWSMQEAKSAYENLISQADVVFAGEEEAAIVVDCAENPLQLAERLAKLGPTEVVIKLGAAGCAALVDGIEYHQPAIQVDAIDTVGAGDAFVAGYLAEWLRDESVSQRLLTAVRTGAFACLVPGDWEGMPYRNELSLLDATEPVTRPGPT0018060_1332DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-29_02314387fosAGlutathione transferase FosAATGACAGTCGCATTCAACCACACCATTGTTTATGCAACAGACAAGCGCCGTTCGGCGGAGTTCCTGGCCAACGTGCTCGGACTGCCGAAACCCCAAGCCATGTGGTCCTTCATGACAGTTAGCCTCGAGCACGGAGTGGCCCTCGACTTCGCCACCGCAGACCGGCCCATCTCTCCGCAGCACTACGCCTTCCTGGTCAGCGAGGAGGACTTCGACGCAATCTTCGCAAGGATCCAGGCCCAGGGCATCCCCTACTGGGCTGACCCGGGACGGTCCCGCCCGCAGCAGATCAACCACAACGACGGCGGACGTGGCGTCTACTTCGCGGATCCTGACGGGCATTTCCTCGAGGCGATCACCCGCCCGTACGGATCGGGCGCTGCCTGAMTVAFNHTIVYATDKRRSAEFLANVLGLPKPQAMWSFMTVSLEHGVALDFATADRPISPQHYAFLVSEEDFDAIFARIQAQGIPYWADPGRSRPQQINHNDGGRGVYFADPDGHFLEAITRPYGSGAAPGPT0002935_20DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
D1-29_02315792mshB1D-myo-inositol 2-acetamido-2-deoxy-alpha-D-glucopyranoside deacetylaseATGGACGAGCCACATTCACTGGCGGTTGTGGTTGCGCATCCGGACGATGATGCGTACGGCTGCGCGGGCTCGATTGCCCTGCATGAGAACGACCCTGGATTCCGCTTCTGCCTGGTGCTTGCGACCGACGGCGGGGCCGGGCAGATTGCGGAGGGCGTCCCCACTACGCCGCAGGAGCTGGGCGCATGGCGGCGACGGGAAAGTGCCAGTGCCTGGCAGGCCCACGGCACAATTCCGGACCGGCACGAATGGCTGGACTACGAGGACGGGCACGTCGCAGACGTGGGCTTCGAGGAGCTGGTCGGGAGGATTCTGGCCATCCTTCTCCAGGAACGTCCGCAGGTAGTGGTGACTTTCGGACCCGATGGGATCACAGGACACCGGGACCATATCGCGGTGGGCAGGGCTACCGATGAAGCCTTTACACGGGCACGTCAGGTACCGGGCCCTGGTTTGAAACGACTCGTCCACGGCGCCTTGCGCGCGTCCACCTTTGAACGCTGGAACCAGAGGCGGCAACAACAGGGCCTGGAGCCTTGGGACCCTGCCCGTGAGTACCACCTGCGCCCGGTTCCCGACGAATGGATCGACATTGAAGTGGACACCAGCAAGGTGGCGCACCGAATAGTCGCAGGCCTCATGGAGCACAAATCCCAGCGGCACGTCATCGTCGACCCGGGGGTGACTGAGCGCCGGTGGGCCAGAATTGTGTCCCGCGAATCGTCGGTCCTGGCGTGGCCGGCCAGGACGCCCGGCAGTCCACTGCTGACAGACCTGTTTGAAGGACTCTGAMDEPHSLAVVVAHPDDDAYGCAGSIALHENDPGFRFCLVLATDGGAGQIAEGVPTTPQELGAWRRRESASAWQAHGTIPDRHEWLDYEDGHVADVGFEELVGRILAILLQERPQVVVTFGPDGITGHRDHIAVGRATDEAFTRARQVPGPGLKRLVHGALRASTFERWNQRRQQQGLEPWDPAREYHLRPVPDEWIDIEVDTSKVAHRIVAGLMEHKSQRHVIVDPGVTERRWARIVSRESSVLAWPARTPGSPLLTDLFEGLPGPT0019575_56DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0019575-bshB2-K22135NANA
D1-29_02316831hypothetical proteinGTGACCCGTGACGAGGACATCCCTCCGCACTTCTACGGCCAGCTGATCGAGACGACGGCCCGGATTGTCGCGTGGAATGTCTGGGGGCTGTACGGACCATGGCAGGAACGTGAGGCTGCCATCATCACCACCTTGGCGAATGCACGCCCTGACATCGTCGTTCTGGCGGAATCGTGGGCACAAGCCGAAGACAGCCAGTGCGCCAGGCTGGCCGGCCCGCTCGGGTTGCCACACCATGCCTTCAGCGGCGTGCAGGCGCAGGAAGACGCCTCCGCACTGTCCGGCGTCGCGGTGATGTCACGTTGGCCAATCACCTCCCAGGCCAGCACATCGTTCGGGGGCATGCGTGCGCAGCACGCCAGGCTGTCCGGGCCACGCGGCCCGATCCAGGTGTGTGGCGTGGTGATGGACGCATGGTGGTTCGATCAAAGCCAGGAACGCCAGGAAGCAGTGAGGGGCCTGCTCACGTACCTGCACGCGTCCCAGGACGATCGAACGCCGCTGGTGGTCTGCGGAGATTTCAACGCAGATCCCGACAGTGACGAAATGCGCATGATGACGGGCCGTGCAGCGGCGCCCGTCCCCGGAATGGCCTTCTATGACGCTTGGGAAGTGGCCGGCCCGGGGGGTCAAGGCTGCACATGGTCCAACAGCAACCCGTGGGCCACCCAACTGCTCTGGCCGGACCGCCGGATCGACTACATCTTAACGGCGGCACCACGGCGCGGCGGAGCCGGCCATCCGCTCTCCGCTGCGCTGCTTGGCACCGGCCCGGCGCAAGGCACGTACGCGTCGGACCACTTCGCGGTACAGGCCGACGTCCGCTATTGAMTRDEDIPPHFYGQLIETTARIVAWNVWGLYGPWQEREAAIITTLANARPDIVVLAESWAQAEDSQCARLAGPLGLPHHAFSGVQAQEDASALSGVAVMSRWPITSQASTSFGGMRAQHARLSGPRGPIQVCGVVMDAWWFDQSQERQEAVRGLLTYLHASQDDRTPLVVCGDFNADPDSDEMRMMTGRAAAPVPGMAFYDAWEVAGPGGQGCTWSNSNPWATQLLWPDRRIDYILTAAPRRGGAGHPLSAALLGTGPAQGTYASDHFAVQADVRYNANANANANA
D1-29_023171869hypothetical proteinATGGGCCGTCGACGCGCAGCAACTGACCCGAGCTATCCGCGCTGGGTCTGGATCACCGCAGGGGCCACCGTGGCCCTCCTCATTGTGGGCGGCGCATTCCTGCTGCGAACGTTCATCTTTCCCCCCGGGCCGGGACTCGGCGGACCTTCAGCCGGTCCTGGCAACATACCTCCGGCCGGCGAGCCCTTGGCGCAGGACAGCCCCGCCGCCGTCGCCGGGGCCTCTCCCTGCATTCCCCTGAACATCCTCACCTCGCTCGAGAACGCGGAGATGGTCAGGTCCATGGCGGCAGATTATACGGCGAAGCCCCGCAGCGTGGACGGCAAATGCGTGACACCGGCCGTTACCCAGGAAAAGTCGGGGATCGCAGCCGGCAAGGTTGCCGGGCAGTTCCCCGGGGTTCCGGCCGGCGAGAGGCCGGCCATCTGGCTGCCCGACTCCTCCGCGTGGTTACGCATCGCAAAGGAAGGCGCCGGCGGAGGCACAGTCCCGGCGGAGGGAGCAAGTGTCGCGCGGAGTGCGGTAGTGGTGGCCATGCCCGAAACGATGGCCAGTGCCCTCGGCTGGGACAGCAAACCGCCGTCGTGGTCTGAGGTGTTCAGGATGGCCGAGGACCGGGACGTCTGGGAGCGCCTCGGCCATGGCGACTGGGGGAAGTTCAAGTTCGGCAAGGCCAGTCCGCTCGTCTCGACGTCAGGCCTGATGGCCCTTGCTGCTTCCTACGGTGCCGCCGGAGGCAGCCTTGGGGGTGTGGACGGCATGGACCTGGACGCATCGTCCCTGGTGGAGAAAGTGCGCGCCGTGGAAATTGGCACCAGCCACTACATGGCCACGCCCGAGCATTTCCTGTGGCACGCCAGGGAGGCAGACGACGCCGGGAAGGTCTCGGAATTCCTCTCGGCCGTGATCGTGGATGAGAAGTCCGTCTGGGACTACAACCGGGGAGTGGTCAGCGAGGACGGAATAACGAAGCAATCCGGTCCCCCGCCCAAGGAGCCCCTCCGTGCCATCTATCCCCAGGACGGCGTGCATGTTGCGGACAATCCGGCAGTAATACTCGACGGGGATTGGGTGGGGAGCCAGCAACGCCTGGCGGCCCAGGATTTCCTCAAGTTCGCAGTGACGGAACAGGGCCAAAACGTTGTGAAGGCCTCCGGCTACCGGACAGTCCAGGGCATGCTGGATGCCGCAGTGGCCGGAACCGGACGGTACGCTGAGGCGCTCCAGCCGCTGCCACTGCCCAAGGCGGAAGCGCTTGTTGCCATGCAGGACAGCTTCCCCGAGGTCCGAAAGCGGGCCAGGGCCCTGTTCCTGCTGGATGTCTCGGAGTCCATGGTGCAGGAACCCGGCCTGACCAAGCTGCAGCGGGCCAAGGATGCCGTCCGGAAGGCACTGGATCACTTCACGGGTGACGACGAGGTTGGGCTGGCCGCTTTCTCCCACGTGGGCGACGGCCCCTTGCAGCCTGGCATCGTCAGCCCGGTAGCGCCTTTCAAGACCAACAAGGAAGACCTCATCGCCAAGCTCAACGAGCTTCAGGCAGTGGACGCAACGCCTCTCTTCGAAGCGGTGAGCCGCTTCACTGGCGAACAGGCCAAGGACTACAAAGACACCTTCATCAACACCATCGTGCTTTTGAGTGACGGCAAAAACGACACCACCCACCCGGGAGACCTGAGTGGGCTCTCCGAACAGTTGAGCCATCAGAACCACTCGACGCCCGTCCTGGTCTTTACGCTCGCTTACGGGCCCGACGCCGACGTCCCCACGCTGCTGGAAATCGCCCAGGCCAGCGGGGCGCACTACTATGACGCCACCGATCCGAACAGGCTCGAAGAGGTGCTCGGCGAACTGGTGACCAGTTTCTAGMGRRRAATDPSYPRWVWITAGATVALLIVGGAFLLRTFIFPPGPGLGGPSAGPGNIPPAGEPLAQDSPAAVAGASPCIPLNILTSLENAEMVRSMAADYTAKPRSVDGKCVTPAVTQEKSGIAAGKVAGQFPGVPAGERPAIWLPDSSAWLRIAKEGAGGGTVPAEGASVARSAVVVAMPETMASALGWDSKPPSWSEVFRMAEDRDVWERLGHGDWGKFKFGKASPLVSTSGLMALAASYGAAGGSLGGVDGMDLDASSLVEKVRAVEIGTSHYMATPEHFLWHAREADDAGKVSEFLSAVIVDEKSVWDYNRGVVSEDGITKQSGPPPKEPLRAIYPQDGVHVADNPAVILDGDWVGSQQRLAAQDFLKFAVTEQGQNVVKASGYRTVQGMLDAAVAGTGRYAEALQPLPLPKAEALVAMQDSFPEVRKRARALFLLDVSESMVQEPGLTKLQRAKDAVRKALDHFTGDDEVGLAAFSHVGDGPLQPGIVSPVAPFKTNKEDLIAKLNELQAVDATPLFEAVSRFTGEQAKDYKDTFINTIVLLSDGKNDTTHPGDLSGLSEQLSHQNHSTPVLVFTLAYGPDADVPTLLEIAQASGAHYYDATDPNRLEEVLGELVTSFPGPT0014015_1204DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-29_023181296acdA_2COG1960Acyl-CoA dehydrogenaseATGAGTATAAACAGCAAGGTGGACACCACCAGTACTACGGCGGGGCCCGGCTTGGGTGCCGCGCAACAGGCTCCAGCGGGACCGGCAATGTCCGGGCGGCTGTATGCGGTCTCGGATTTCTACGACGCCGAGGCTTTGCTCACCGCTGAGGAACGCCAGGTTTTGGCGCGGCTCCGGAACTTCCTCGACGAACAGGCCAAGCCGTTGCTGGCCGAGTACTGGGAGCGGGGCGAGTTCCCGGAGCAGCTGGCGCAGCCTTTGATCGATCTCGACATCATGGAGCCCGCGGACCTGACCGGCGCCGAAGGTGCAGAGCGTACCCCGGTGCGGGGGATTTACCATGGCTTCCGGGTCTTTGAACTCGCCCGCTCGGACGCATCGCTGGCCACCTGGTACACCGCCCAGGCCGGGCTCTTCCGCACAGCCATCCGCGTTGGCGCCTCCGAGGAACAGCAGCGCGAGTGGATGCCCCGGGTCATCGACTTCTCTCTCAAGGGCGTCTTCTCCCTGACCGAACCGGAGCACGGTTCGGACATCGCCGGCGGACTCTCCACGACGGCCCGTTTCGAAGCGGAGGCCGACGGCTGCAGTTGGGTTTTGGACGGTGCCAAACGCTGGATCGGGGGCGCGTCCACCGCTGACGTGCTGTGCGTGTTCGCCCGCGACATCATCGACGGTCAGGTCAAGGCGTTCCTCGTAGACCGGGCCGCGGCGGGGGTCACGCTGGAGAAGATCCACGGCAAGACCGCGCTGCGGATGATGCAGAACGCACACATCACCCTGGCCGGCGTCCGCGTTCCCGACGCCATGCGCCTGCAGAATGTGAACTCGTTCAAGGACGTCGCGGCCATGTTGCGGGCGATGCGCTCCGATGTTGCCTGGATCGCCACCGGGATCCAGGCCGGCGCGTTCGAGGCCGCACTGGCCTACGTGAAGGAACGCAGTCAGTTCGGCCGCAGCCTGGGTTCGTTTCAGCTGGTCCAGGAGAAACTGGCCCGGATGATAGGAAACATCACCGCCAGCCTGTCCTTGGTGGTCCGCCTGACCGAGCAGCAGGCCCGGGGCATCTACCGGGACCAGGACTCTGCCTTGGCCAAGATGCAAACCAGCCTGCTGATGCGTGAAACCGTGGCTCTGGCCCGTGAAGTAGTGGGCGGCAACGGCATCACGCTGGATACGGACGTAGCCCGTTTCCACGCGGACGCCGAGGCCGTCTACTCCTATGAGGGCACCCACGACATCAATGCCCTCGTCATCGGCCGCGCCCTGACAGGCGAGAGCGCCTTCACGCGCTGAMSINSKVDTTSTTAGPGLGAAQQAPAGPAMSGRLYAVSDFYDAEALLTAEERQVLARLRNFLDEQAKPLLAEYWERGEFPEQLAQPLIDLDIMEPADLTGAEGAERTPVRGIYHGFRVFELARSDASLATWYTAQAGLFRTAIRVGASEEQQREWMPRVIDFSLKGVFSLTEPEHGSDIAGGLSTTARFEAEADGCSWVLDGAKRWIGGASTADVLCVFARDIIDGQVKAFLVDRAAAGVTLEKIHGKTALRMMQNAHITLAGVRVPDAMRLQNVNSFKDVAAMLRAMRSDVAWIATGIQAGAFEAALAYVKERSQFGRSLGSFQLVQEKLARMIGNITASLSLVVRLTEQQARGIYRDQDSALAKMQTSLLMRETVALAREVVGGNGITLDTDVARFHADAEAVYSYEGTHDINALVIGRALTGESAFTRPGPT0021815_765DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-29_02319225hypothetical proteinATGAACAGCAAGGCTCTACTCACCAGTCAGCATTCCGACAGCCACTGGACCGCCAACGATGTGAGGGAAAAGCTTGGGCGGGGGCTGGAATCCGATCCGGGCCTGGCTGAATTCCTTGCCGCAGCCCCTGACATGGCACGCGCTCTCAAAGCCGTCCTGAACCTGGACCTTGGCGTCATTGCCGAGCGACTGGTGCGAGCTGAGATTGGCGCCATTCTGCACTAAMNSKALLTSQHSDSHWTANDVREKLGRGLESDPGLAEFLAAAPDMARALKAVLNLDLGVIAERLVRAEIGAILHNANANANANA
D1-29_02320837menH_42-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGCATCAGCGAATGACGGCAACCCCCGAAAGCGGGTACGCCCCCGTCAACGGCCTGCAGATGTACTACGAGCTGCATGGTGCCGGGGGCACACCGCTTTTGCTCCTGCACGGCGGGCTGTTCGATATCGAGCAGCAGTTTGGCGCATTAATCCCGGGCTTATCGGCCGGGCGCAGGGTCATCGCGGCCGACTTTCAGGGTCACGGCCGGACCAATGACATCGACCGTCCCCTGAACAGTCGCGACCTCGCATCCGATGTCACTGGTCTCCTTGAACACCTGGGTGTTCGCGAGGTCGATATATTCGGATTCAGCGTCGGCGGCGCGGTCGCGCTGCATCTGGCTGTCAACCGCCCTGAAATTGTCCGTAAGATCATCGTCTCCTCAGTGTCCTTCCGGCCCGACGGCGACCGGGGCGGGAACGCCGAAGCGGTTGCCGCCATGACCGTCGACATGATCGCCGGTACCCCCATGGAACAGCGCTATCTGGCGGTGTCGCCGCACCCCGACCGCGAGCACCTCCAGGGGTTGTTGGACAAGCTCGGACGCTACGACGCAGGCGCCACAGGGTGGAGTGACGACGAGATCCGCGGCATCGCCGCCCCGACACTGATCACCGTGGGCGATTGCGACATGGTCAAGCTCGAGCACGCGGTGCGGTTCCTTCAGCTGCGCGGGGGCGATGTAAACGGCGACTTTGAAGGTGTGCCCACTTCGCAGCTGGCAGTCTTTCCTGGCACAACACACTTCTTCGGGCTGGCGAGGACCGGCCTGGTGATGGATGTTGTCACAACCTTTCTGGACTCGCCCCCGCCTTCGGTGCAGCAGGACCGGTAAMHQRMTATPESGYAPVNGLQMYYELHGAGGTPLLLLHGGLFDIEQQFGALIPGLSAGRRVIAADFQGHGRTNDIDRPLNSRDLASDVTGLLEHLGVREVDIFGFSVGGAVALHLAVNRPEIVRKIIVSSVSFRPDGDRGGNAEAVAAMTVDMIAGTPMEQRYLAVSPHPDREHLQGLLDKLGRYDAGATGWSDDEIRGIAAPTLITVGDCDMVKLEHAVRFLQLRGGDVNGDFEGVPTSQLAVFPGTTHFFGLARTGLVMDVVTTFLDSPPPSVQQDRNANANANANA
D1-29_023211029lacI_3COG1609Lactose operon repressorATGGTGCAGACAACAATCGAGGGCGGCAAGCCGAAAGCCCCCACCATTTACGATGTGGCAGGGTTAGCCGGCGTCTCCCACCAAACCGTCTCCCGGTATTTGAGGGACAAAACTAAACTTAGGCCCGCGACGTTGGCGCGGGTGGAAAAGGCCCTTGCAGACCTGAACTACACCCCGAACCTTGCAGCCCGCTCCCTGAGGTCCCGGGCGCTCTACCGTGTGGTGGTTGTGGTTCCGGAAGCTTCGCTGTACTTCCCTATTAGGATGCTCAATGGGGCAGCGGCCGCGGCCCATGCAGCCGGATATCGGGTGGACGTCGTGGCTATGGAGGGAACAGTTGAAGCCCGGGCACAGCAACTTCGCTCCCTGCTGTCGGGAGAGGACATCGCGGGGATCCTATCCTTTGTCCCGCTGCCGAAGTCTGCGGCGGCCTTCCCAAATGCCACCGTCCCCCTGGTAGTAGCGGGCGAGTACCAAAACAGGATGCGCGCCCGGGGCAGCATCGCCGACGGCACGGCGGCTGCGAAAATTGTCCAACATCTGGCAGCACTTGGCCACCGAAACTTCTTCCATGTCGCCGGGCCCGCCAACTACCCCTCAGCCCGCAACCGGAAGAGCGCTTACTTGCAGGCTACAGCGGAACTCGGCCTCACATCCCTGGGCGTCGCCGCCGGCGATTGGTCCCCTGCCTCCGGATATGCCGCCGGACAGAAGATTATTGAGCTCAAGGAAGTCACAGCCGTCTTCGCTGCCAATGACCAAATGGCGCTGGGTGTCATCCGTGCCCTCCATGAAAACGGCATAACCGTACCCGACGATATAAGCGTGTTCGGCTGGGACGACATGGCCGACTCGGCATTCGTCATCCCATCACTGTCAACAGTTCATATGGACCTGGAACGCCTTGGCGCGCGAAGCCTCAGAGAGCTGATCACACTCATCCAGGGCGGACAAGGGACGCCCGAAGCCCTAACGCTGGATCCCATGGAGCTCGTCCTGCGCGAGTCGACAGGGCCGGCGCGCCAGTAAMVQTTIEGGKPKAPTIYDVAGLAGVSHQTVSRYLRDKTKLRPATLARVEKALADLNYTPNLAARSLRSRALYRVVVVVPEASLYFPIRMLNGAAAAAHAAGYRVDVVAMEGTVEARAQQLRSLLSGEDIAGILSFVPLPKSAAAFPNATVPLVVAGEYQNRMRARGSIADGTAAAKIVQHLAALGHRNFFHVAGPANYPSARNRKSAYLQATAELGLTSLGVAAGDWSPASGYAAGQKIIELKEVTAVFAANDQMALGVIRALHENGITVPDDISVFGWDDMADSAFVIPSLSTVHMDLERLGARSLRELITLIQGGQGTPEALTLDPMELVLRESTGPARQPGPT0021075_1708DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-29_02322735hypothetical proteinATGAAACAAGAACTGAATACATCGTTTCCGGGTGCCGTTGGCCTAAGCCGGCTGTCGGTCTATGACTGGGAATCAAGCGACGGTGTCTGCGGTGGATCTCCGCACATGCACACTGCCTCAACTGAGGCGTACCTTGTGCTTTCGGGCTCCGGCCGGGTCGAGACAATCCGGTCATCCGGGTACGAATCCTATGACCTCGCAGCCAACGACCTTTTATGGTTCAGCCCCGGAACCATCCATCGCCTGGTGAATGAGGACCACCTTGAAATCCTGGTGGTCATGCAGAACTCCGGATTGCCTGAAGCAGGGGATGCCGTACTCACGTTCGAAGCAGACATTGTTGCCAGCCCTGAACGTTACATGAAGGCAGCATCACTGATACCAGACGCGGGACTTGGTTCTGCCCAGGAAACGGCACGTATCAGGCGCGACGCAGCACTCGCCGGATACCAGAGGCTGAAGGAGGCCGCCATCGCGGGCCGGCATGACGCCGTCGAGCAGTTTCACCGTGATGCCGCCAATCTGGTCCAGTCCCGCATCCCCGAGTGGCAAGGCATTTGGGAACAGACCATTGCACCTGAAGCGGCCAGAACGGGGGCCTGGCTGAAGGAGCTCTCGGAGGGACGACTCGCTCATTTAGCCGAGGCGACTGTGGTCAGGTCGGAGGTTGGGGGGAACAAGATCTTTGGCATGTGCGGGATGCTGCAGAAGTGGGACACGGGGCAGTTGGTCTGAMKQELNTSFPGAVGLSRLSVYDWESSDGVCGGSPHMHTASTEAYLVLSGSGRVETIRSSGYESYDLAANDLLWFSPGTIHRLVNEDHLEILVVMQNSGLPEAGDAVLTFEADIVASPERYMKAASLIPDAGLGSAQETARIRRDAALAGYQRLKEAAIAGRHDAVEQFHRDAANLVQSRIPEWQGIWEQTIAPEAARTGAWLKELSEGRLAHLAEATVVRSEVGGNKIFGMCGMLQKWDTGQLVNANANANANA
D1-29_02323942hypothetical proteinATGAACACGCCACCAGCTCTTACATGGCGCGATGACAACCAGTCCCTGACCGTTTCGCTCGGGGCCGTGGACATCGCCGCGTATACCTACGACGCCACTGACGAACAGCGGGAATCGCCGCGGCCGTACTTCCATCCGCTGCGCACCACAGCCGGGGAAACCGTCACCGCCTACCGGCCCTGGGACCACGTGTGGCACAAGGGCATCGCCTGGTCCCTGCCGCACTTTGGTGAGGATAACTTCTGGGGCGGTCCCAGCTACCGCCGCGACGAAGACTACAAATGGCTCCCGAACAATGGAAGCATGCGCCACGAACGCGTCATAGAGGCCGGGCTCGACGGCGGTGCGTTTCGTTTCGCACACGCGCTGAGTTGGTGGACGCAGTCAGGCATACACGTGGCCGATGAAGCCCGCAGCATCCGGATCCTCCCCGGGCCTGACGATAACGCCTGGACTCTTGTCTTCGAAACGGCCATGACCAACGTCTCAGGCCGCGACATCCACATCGGTTCCCCCACCACCGAGGGCCGCGAAAATGCTGGCTATGGGGGCCTGTTTTGGCGGGGTCCCCGCGAGTTCGCCGGTGGCCGGATCGTGGGACCTGACGGAGCAACCGGCGAAGCGCTTCGCGGCACCCGGGCGCCATGGCTCGCCTTCATTGGCCAGCACGATGACACCTGCCGCCACTCGACTATTCTGATCGCGGACGATAGCGGCAATGCGCAGCACCCGCCGGAGTGGTTCGCCCGATCCGAGCCCTTCGCATGCTTCGGACCGGCACCGTTCTTCAGCCAGGAAGTCCTGTTCGCGGCCGGAGGCACTATGACCAACCGCTACGCCGTGGTGATCGCTGACGGCAACTCGGACCAGGAGCGGCTGGACCACCTTTCTTCCTTAGCTCTGGATGCCCTGCAGCACCAGCTGATGACGGCAGGAGCATGAMNTPPALTWRDDNQSLTVSLGAVDIAAYTYDATDEQRESPRPYFHPLRTTAGETVTAYRPWDHVWHKGIAWSLPHFGEDNFWGGPSYRRDEDYKWLPNNGSMRHERVIEAGLDGGAFRFAHALSWWTQSGIHVADEARSIRILPGPDDNAWTLVFETAMTNVSGRDIHIGSPTTEGRENAGYGGLFWRGPREFAGGRIVGPDGATGEALRGTRAPWLAFIGQHDDTCRHSTILIADDSGNAQHPPEWFARSEPFACFGPAPFFSQEVLFAAGGTMTNRYAVVIADGNSDQERLDHLSSLALDALQHQLMTAGANANANANANA
D1-29_023241113iolG_10Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACTGACCTGAACCATCCCAATAGAATCCGAGTGGGCTTCATCGGCACCGGAGGGATAGCCAATGCCCATGCCGATGCACTGCGGCAGCAGCCAGGCGTGGAACTCACTGCCGCAATCGATCTCGACACATCACGTGCGGAGGCCTTCGCCAGCAAGTGGGGAATTGCCCGCACCGCGGCGAACCTCAGGAAGGCGGTCGACGCCGGCGGGCTGGATCTCGTAGCCATCTGCACCCCTCCGTCCAGCCATTTTCCACTCGCCCTCGAGGCGCTCACGCACGGCCTGCACGCGGTCATAGAAAAGCCCCCCACACTGTCCCTCAGCCAGATGCGCGAGTTGGAATCAGCTGAAGCTGCATCCGCCGGGACGCTCAGCTGCGTTTTCCAGCACCGCTTCGGCTCGGGTGCCCGGAAGCTGCATTCCCTGCAGTCATCCGGAGTACTCGGCAAGCCGCTCGTTGGCACCTGCAACACCCTGTGGTTCCGCGACCAGGCATACTTCGATGTCCCGTGGCGAGGCCTCTGGGACGTCGAAGGCGGCGGACCGACCATGGGCCACGGCATCCACCAGTTCGACCTGCTGCTGCACTTGTGGGGTCCATGGGCCGAGGTGTCGGCCTTTGCCGGCAAACTGGCACGCCGGACTGATACTGAGGACGCTTCTGCGGCGGTGGTCCGGTTCGAATCCGGTGCGATCGCCACCATCATCAATTCGGTGATTTCGCCGCGGGAAACCTCGTACATGCGGCTGGACTTCGAAAACGCCACCGTCGAACTCGAGCATCTCTACGGCTACGCCGACCACAACTGGACGGTAACGCCGGCACCCGGCCAGGACGCCGTCGTCGAACTCTGGGCCCAGGGTGACGACTACGCAAGCGGGCACTCGGCCCAGTATCAAACCATCGTCCGCAGCCTGCAGGGAGGCGAGGCTGTTCCGGTTTCCATCAGCGATGCCTACGGAACCATGGAACTGGCCGCCGCCATCTACGCGTCGAGCGTCAGCGGAACAACCATCGCCCGCGGCCAGATCGACGAATCGAGCCCCTTCTTCACCCGTATGGACGGCCACCTGGAACCCTGGAAACAAGAAGAGGAACTCAAGGCATGAMTDLNHPNRIRVGFIGTGGIANAHADALRQQPGVELTAAIDLDTSRAEAFASKWGIARTAANLRKAVDAGGLDLVAICTPPSSHFPLALEALTHGLHAVIEKPPTLSLSQMRELESAEAASAGTLSCVFQHRFGSGARKLHSLQSSGVLGKPLVGTCNTLWFRDQAYFDVPWRGLWDVEGGGPTMGHGIHQFDLLLHLWGPWAEVSAFAGKLARRTDTEDASAAVVRFESGAIATIINSVISPRETSYMRLDFENATVELEHLYGYADHNWTVTPAPGQDAVVELWAQGDDYASGHSAQYQTIVRSLQGGEAVPVSISDAYGTMELAAAIYASSVSGTTIARGQIDESSPFFTRMDGHLEPWKQEEELKANANANANANA
D1-29_023251302yesO_4COG1653Putative ABC transporter substrate-binding protein YesOATGAACAACCAACCATCCCGTCGGAACGTACTGCAACTGTCTGTTGGCATAGCTGCATCCGCGCTGATGCTCAGCGGCTGCGGCACGGCCGGCACCCCCGCTGCGGAAGAAACCGGACCTGTGACAATCCGCTTTACCTGGTGGGGCGGGGACGCACGCCAGAAGCTGACCCAGCAGGTTATCGACGCCTTCCATGCCGAAAACCCGAACATCACCGTCGTCGGGGAATATGCCGACTGGAGTGGCTACTGGGATAAGCTCGCCACCCAGGTCGCAGCCAACGATGCACCGGACATCATCCAGATGGATGAGAAGTATGTCCGCGAATACGGTGACCGCGGAGCCCTGCTGGACATTCACAAACTCAACGGACTGGATACCTCTGGCATTGCAGAGGACACTCTCAAGAGCGGTGAAGTGGATGGCAAACTCGTCGGTCTGGTGACAGGCGTGGCTAACTATTGCATCGCTGCCAATCCCGCAGTTCTGGAAAAGGCAGGGGTTGCCATGCCGAACGACAAGACGTGGACCTGGGAAGACTACAAGAAGCTCGGTCAAAAGATCAGCGAGAGTGGAACGGGAGCCACCGGCGTCGGCGTCTTCTACCAGGACCACGATCTGTACATCTGGGCACGGCAACAGGGCGACCGTCTTTATGACGACTCCGGCAAAGTGGTCATCAAGCCCGGGACGCTTGCCTCGTTCTGGACCAACCTCCTGGACCTGTCCAAGTCCGGAGCAGCCGGCAAGCCCTCTGCCATCATCGAAAACGCCACAGCATCAATCAACCAGAACGCCCTTGCCAAGAACCAGATGGGCTTCTCCGGCGTCTTCCAAACCCAGCTGACCGCTTACGAGTCCGCCAGCGGCCAACAGCTGAAGTTGCTCCGGCTTCCTGGCGAGTCACAGGCCAAGGAACGGGGTGCCTACTACAAGGCCTCCATGTTCTGGTCCGTGTCCTCCCGCACCAAACACCAGCAGGCAGCGGCCAAGTTCCTCAACTTCCTGACAACGAGCCAGACCGCCGGAGACATCATGCTCACCGAGCGCGGAATCCCAGCCAACACCAAGACCCGCGAGGCCATCACCCCTAAGTTGAAGCCTTCCGATAAAGCTGCGATTGACTTCACCAATGCAATTGCGGATGACGTACGGCCCGCTCCGCCCATCACGCCGGCCGGCGGTAGTGGCATCCAGGACCTCCTGGCCCGGTACACCTCCGACGTTCTCTTTGAGCGCATCACCCCCGAAAAGGCCGCCCAACCCTTCATCGACGAACTCTCGTCTTCACTGCGGAAGTAGMNNQPSRRNVLQLSVGIAASALMLSGCGTAGTPAAEETGPVTIRFTWWGGDARQKLTQQVIDAFHAENPNITVVGEYADWSGYWDKLATQVAANDAPDIIQMDEKYVREYGDRGALLDIHKLNGLDTSGIAEDTLKSGEVDGKLVGLVTGVANYCIAANPAVLEKAGVAMPNDKTWTWEDYKKLGQKISESGTGATGVGVFYQDHDLYIWARQQGDRLYDDSGKVVIKPGTLASFWTNLLDLSKSGAAGKPSAIIENATASINQNALAKNQMGFSGVFQTQLTAYESASGQQLKLLRLPGESQAKERGAYYKASMFWSVSSRTKHQQAAAKFLNFLTTSQTAGDIMLTERGIPANTKTREAITPKLKPSDKAAIDFTNAIADDVRPAPPITPAGGSGIQDLLARYTSDVLFERITPEKAAQPFIDELSSSLRKPGPT0016545_7308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02326927araQ_9COG0395L-arabinose transport system permease protein AraQATGACGACTGAAATCCAGCCCCAACACACCGCTTCCGCCATGGCGCAGCAGGGCACCGTGCCCGGCCCGGCGATGCCGTCACGGCCAAAAAGTCCCGCTGCAGCCAGGTACCGCCCGCTCCTGAAGCATCTGATCCTGATCATCTCCGCGATGCTGATGATCTATCCGCTGCTGTGGATGATTGCTTCCTCCCTTCGGCCCAATGACCTCATCTTCCGGGAACCAGGCCTGTGGCTGACCACGTTCGAGGCAGGCAACTACGCTGACGGGTGGAACGCCCTGGCGCAGCCGTTCTCCACCTACCTGTTCAACTCGGCGGCCGTGGTCCTTGGCTGCATCATCGGCAACCTGGTGTCCTGCTCGATGGCAGCATATGCCTTCGCCCGGCTGAACTTCAAAGGCAAGAAATGGCTCTTTGCAGCCATGCTGCTGACCATCATGTTGCCGTTCCATGTGGTGATCGTGCCCCAGTACATACTGTTCTCGCAGATCGGATGGGTTAACACCTTCTGGCCCATCATCGTGCCGAAACTTCTGGCAACCGACGCTTTCTTCGTCTTCCTCATGGTCCAGTTCATTCGCGGCATTCCCAAGGACCTTGACGAGGCAGCGCGGATCGACGGTGCCGGCCACGCCAGAATCTTCCTCCAGGTGATGCTGCCCCTGATGGTTCCGGCGCTGGCCACCACCACAATCTTCACCTTCATCTGGACCTGGAATGACTTCTTCAGCCAGCTGATCTACCTCACAGACCCCGACATGTTCACAGTTCCCGTGGCGCTACGGGCATTCATCGATGCGACCGCCTCGACCTCCTGGGGATCCATGTTCGCCATGTCCATAGTGTCCCTGCTCCCCGTTTTCATTGCCTTCCTGCTCGGCCAGAAGTTCCTGGTCAAGGGCATCGCCACCACCGGTATCAAATAAMTTEIQPQHTASAMAQQGTVPGPAMPSRPKSPAAARYRPLLKHLILIISAMLMIYPLLWMIASSLRPNDLIFREPGLWLTTFEAGNYADGWNALAQPFSTYLFNSAAVVLGCIIGNLVSCSMAAYAFARLNFKGKKWLFAAMLLTIMLPFHVVIVPQYILFSQIGWVNTFWPIIVPKLLATDAFFVFLMVQFIRGIPKDLDEAARIDGAGHARIFLQVMLPLMVPALATTTIFTFIWTWNDFFSQLIYLTDPDMFTVPVALRAFIDATASTSWGSMFAMSIVSLLPVFIAFLLGQKFLVKGIATTGIKPGPT0016540_1145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02327924lacF_7Lactose transport system permease protein LacFATGAGCGCACTGTCAGAGCTGAGCAAGCTCAAAGGCCAGGGGTCAAAGACGGAAGGCCGGGACACCAAGGCGGCCCTGGTGTTCCTGGCCCCGTGGCTGGTGGGCTTGGTGGGCATCACCGTTGGTCCCATGCTCATCTCGCTCTACCTGTCCTTCACTGATTACAACCTCCTTCAGGAGCCCACTTTCATCGGCTTCGAGAACTTCACCAGGATGTTTGAAGACGCCCGGCTGTGGAACTCACTGAGGGTCACATTCATCTACGTACTGGTGGGCGTCCCCCTGCAGCTCGCCGTTGCCCTCCTCATCGCGATGGTCTTGGACCGGGGCATTCGGGGCTTGCCGTTCTACCGTTCGGTGTTCTATTTGCCATCCCTCCTTGGTGGCTCAGTTGCGGTGGCCATCCTGTGGAAGCAGATATTCGGCACCACCGGCCTCGTTAACCAGTTCCTGACCCTTCTGGGCATAGAGGGTCCGGGTTGGATATCGGACCCGAGCACAGCACTGAGCACCATCATCCTGCTGCACATCTGGACCTTCGGCAGCCCCATGATTATTTTCCTGGCTGGCCTGCGTCAGATCCCGCATATGTACTACGAAGCCGCGCAGGTGGATGGTGCCAGCAAAGTGGTTCAGTTCTTCCGTATCACGCTCCCCCTGCTGAGCCCCATCATCTTCTTCAACCTTGTGCTCCAGATCGTTGGCGCCTTCCAGTCATTCACCCAGGCCTTCATCGTCTCCGGCGGCACCGGCGGACCGTCAGACTCCACCATGTTCTTCACCCTGTACCTGTACCAGAAGGGGTTTGGCCAGTTCGACATGGGTTATGCCTCGGCCATGGCCTGGGTTCTCCTGCTGATCATCGGCGTCCTCACCGCCATCAACTTCTACGCCTCAAAGTTCTGGGTGTTCTATGACGACTGAMSALSELSKLKGQGSKTEGRDTKAALVFLAPWLVGLVGITVGPMLISLYLSFTDYNLLQEPTFIGFENFTRMFEDARLWNSLRVTFIYVLVGVPLQLAVALLIAMVLDRGIRGLPFYRSVFYLPSLLGGSVAVAILWKQIFGTTGLVNQFLTLLGIEGPGWISDPSTALSTIILLHIWTFGSPMIIFLAGLRQIPHMYYEAAQVDGASKVVQFFRITLPLLSPIIFFNLVLQIVGAFQSFTQAFIVSGGTGGPSDSTMFFTLYLYQKGFGQFDMGYASAMAWVLLLIIGVLTAINFYASKFWVFYDDPGPT0016535_3140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_023281128moaA_2GTP 3',8-cyclaseATGGCCGTTCAGCTGGGCATCCCGGTCCTGCGCCAGGGCAGCAACAACAACCACGGGTCCGCTCTCAAACCGCGCCCGATTGGACTCCCTGCCGGGCTCCTGGACCGTTTCGGGAGGCAGGCCACCGACATGCGCCTGTCCCTGACGGACAAATGCAACCTTCGCTGCACCTACTGCATGCCCGCCGACGGCCTTCAATGGCTGGCGAAGCAGGCCGTCATGACGGCCGGGGAGATCGTGCGGATCGTCCACCTGGGCGTGAACCGCCTGGGAGTCCGGGAGCTGCGCCTGACCGGCGGCGAACCCCTGGTCCGGGCCGATCTGGTGGACATCATCAGGTCCCTTCGCCAACAACATCCGGACCTGCCCATCTCCATGACAACCAATGCCGTGGGGTTGGACAAGAAGGCCGCTCAACTCAAACAGGCGGGCCTCACCCGCATCAACGTATCGCTGGACTCCCTGCATGCGGAGACCTTCGCGCAGCTGACCCGCCGCCCGTTCCTGGACCAGGTCCTGGCCGGTGTTGAGGCTGCCGATGCTGCTGGTCTTGGACCCATCAAACTCAATGCCGTGCTCATGCGCGGGATCAATGACACCGAATCCCCCAGCTTGTTGGCGTGGTCGCTGGAACGCGGCTACGAATTGCGCTTTATCGAACAGATGCCCCTCGACGCGGACCATGGCTGGACCCGTCAGGACATGATCACCGCGTCCGAGATCCGGGACCTCCTCGCCGATGACTTTGTGCTGTACCCGGACCCCAGGGAGCGTAGCGGCGCCCCCGCCGAACGATTCCAGGTCCAGCGGCGCGATCCCGCAACGGGCGAGCCCAGCGGCGCCGTGCTCGGTACTGTAGGCATCATTGCCTCTGTCACGGAACCGTTCTGCAGTGACTGCCGCCGGACCCGAATCACCGCCGACGGAAAGATCATGAGTTGCCTGTTCTCGCGCCAGGAATTCGATCTGTTGGGGCTGCTTCGCTCCGGAGCCGACGACGACGAGCTCACCACTCGCTGGCAGGACGCCATGTGGGCCAAGCCCAAGGCCCATGGGATGGACCACGCGGGATTGGAAGGGGACGACTTCGTCCAATCGGACCGCAGTATGAGCGCTATCGGGGGCTAAMAVQLGIPVLRQGSNNNHGSALKPRPIGLPAGLLDRFGRQATDMRLSLTDKCNLRCTYCMPADGLQWLAKQAVMTAGEIVRIVHLGVNRLGVRELRLTGGEPLVRADLVDIIRSLRQQHPDLPISMTTNAVGLDKKAAQLKQAGLTRINVSLDSLHAETFAQLTRRPFLDQVLAGVEAADAAGLGPIKLNAVLMRGINDTESPSLLAWSLERGYELRFIEQMPLDADHGWTRQDMITASEIRDLLADDFVLYPDPRERSGAPAERFQVQRRDPATGEPSGAVLGTVGIIASVTEPFCSDCRRTRITADGKIMSCLFSRQEFDLLGLLRSGADDDELTTRWQDAMWAKPKAHGMDHAGLEGDDFVQSDRSMSAIGGPGPT0008410_277DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
D1-29_023292106betPCOG1292Glycine betaine transporter BetPGTGGCCGACGGCGACATCATGGTCGTCGAGCTCACGGAAGCCCCCAACCTTCCTCCCGGCCGGACAGTCAACGGCCACATCTCAAAATACGCAGTCCATGACTCCCAAGCAAAGGACGAAATCATGGCTATAAACAGTGACATCAAACCCCCCAAGAAACCTCCCGTCAGCGAAAGCGATGGGGAGGGCCTAAGAATCGGGGAGCTGGCTTCAGACGATGGGGTCGAAGCAGTTCTCCTCATTCCTGAGGGCGGAGCTGCCGGCACTTTGCCGGATTCAGAAGAATACGATCAGATCCTGGAAGAGCTGCGCTCCGCCAAAACCGAGCACGCCGTTTCGGCACGCCGGAATACCAAACTCACCCTCGATAAGGTCACCTTCGGGATTACGGGAGTCTTCGCCATAGCCTTCGTGGTTTGGGGATTCGTGGGCCGGGACAGCCTCTCCGCATCCTCGACGGGCGCCCTGAACTGGGTGATGGAATACACAGGATGGCTCTTTATGGTCCTGGCGTCCCTGTTCGTGGTGTTCGTCCTGTGGCTTGCCCTGGGCAAGTTCGGCAACATCCCGCTGGGCAAGGACGGCGAGAAGCCTGAATTCCGCACTATCTCCTGGGTGGCAATGATGTTCGCTGCAGGCATGGGCATCGGGCTGATGTTCTACGGCGTGGCCGAGCCGCTCTACCACTACATTTCGCCGCCGCCGGGAACCGTTGACGGCAGCACGCCGGCTGCCATCCAGACTGCCATGGCTACCTCAATCTTCCACTGGACGCTGCACCCCTGGGCGATGTACGCCGTGGTGGGCATCGCCATGGCCTACGGAACCTACCGCCTGGGCCGCAAACAGCTGATCTCCGCCGCGTTTACCTCCCTGTTCGGCATCCGCGTAGTTGAAGGTCCGGCCGGCAAATTTATCAACATCCTTGCCATTTTCGCGACGCTTTTCGGCACGGCGGCATCGCTGGGCCTTGGCGCCCTGCAGATCGGCAGCGGCATGACGTCCAACGGCTGGATGGGAGAAATCGGCACTCCGGTGCTCGTGGCCATTGTGGCCGTCCTGACAACGTGTTTCGTGGCCTCCGCCGTTTCCGGCATCAGCCGCGGAATCCAGTGGCTGTCCAACATCAACATGGTCCTGGCCGTCGTCCTGGCCCTGATCGTCTTCGTGGCAGGGCCCACGCTGTTCATTCTCAACCTGATTCCTGCCGCCGTCGGTGACTACGCCAGGGACCTGGCGGAAATGTCTTCCCGGACTGAAGCCGTGGGCGACGAGGCGCTGCGCAGCTGGATGTCCGGCTGGACCATCTTCTACTGGGCCTGGTGGGTGTCCTGGACGCCGTTCGTGGGCATGTTCATTGCCCGCATCAGCCGTGGACGCACCATCCGCCAGTTTGTCACCGGCGTGCTGCTGGTGCCCAGCGTCGTCAGCGTGATCTGGTTCGGCATCTTCGGCGGCACTGCCTTCCATGTGCAGCAGGAAGCCGACAAGGCCGGCACTCCCGGCCTGGTCACCATGGTCGACGGCGTCCCGACCGTTAGCTTCGACGGAGCGCTTTTCGACCTGGTCAAGAACCTGGGCATGCCCGCATGGGCCGTCGGCGCAGTCATCGTCCTGGCGATGGTCCTGGTGGGAATCTTCTTTATCACCGGCGCAGACGCGGCCTCCATCGTGATGGGATCGCTCAGCTCCAACGGCGCCGAGGAACCCCGCCGGGGAGTCGTCATCTTCTGGGGCACGCTCACCGGAGCCGTCGCGGCCGTTATGCTCCTGGCGGGCGGAGACGTACCCTCCGAAGCCCTGTCCGGGCTCCAACGCATCACCATCGTCGCTGCCCTTCCCTTCGTGATCGTGATGCTGCTGCTCTGCTTTGCCTTGGTCAAGGACCTCCGCCGTGACCCGCTGGCACTGCGGCAGCGGCTGGCCACCAATGTCATGGAACGTGCAATCCGTACCGGCGTGGAGCAACACGGCCTTGTCCAGTTCGACCTCGTGACAAGGCACGAATGCGCGGAAAAGTGCTCGGACTCGGACTGCATTGGCAGGACTCCCACGGGGAGCGTTCCGACCGTCGGTGCCAAGCATGCGGACCGGGACAGTAACTAGMADGDIMVVELTEAPNLPPGRTVNGHISKYAVHDSQAKDEIMAINSDIKPPKKPPVSESDGEGLRIGELASDDGVEAVLLIPEGGAAGTLPDSEEYDQILEELRSAKTEHAVSARRNTKLTLDKVTFGITGVFAIAFVVWGFVGRDSLSASSTGALNWVMEYTGWLFMVLASLFVVFVLWLALGKFGNIPLGKDGEKPEFRTISWVAMMFAAGMGIGLMFYGVAEPLYHYISPPPGTVDGSTPAAIQTAMATSIFHWTLHPWAMYAVVGIAMAYGTYRLGRKQLISAAFTSLFGIRVVEGPAGKFINILAIFATLFGTAASLGLGALQIGSGMTSNGWMGEIGTPVLVAIVAVLTTCFVASAVSGISRGIQWLSNINMVLAVVLALIVFVAGPTLFILNLIPAAVGDYARDLAEMSSRTEAVGDEALRSWMSGWTIFYWAWWVSWTPFVGMFIARISRGRTIRQFVTGVLLVPSVVSVIWFGIFGGTAFHVQQEADKAGTPGLVTMVDGVPTVSFDGALFDLVKNLGMPAWAVGAVIVLAMVLVGIFFITGADAASIVMGSLSSNGAEEPRRGVVIFWGTLTGAVAAVMLLAGGDVPSEALSGLQRITIVAALPFVIVMLLLCFALVKDLRRDPLALRQRLATNVMERAIRTGVEQHGLVQFDLVTRHECAEKCSDSDCIGRTPTGSVPTVGAKHADRDSNPGPT0013600_324DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
D1-29_02330804kdgR_3COG1414Transcriptional regulator KdgRATGGCCACAAATGACCCTGACGCCCCAAAGGGTGCCAACGGGCAGGCCGGGGGCGTGCAGTCCGTTGACCGCGCCCTGCAGATCCTCGAGATCCTCTCCCGGGACGGACACGCGGGTGTCAGCGACATCGCGGAGGAAATGGGCGTTCACAAGTCCACCGTTTTCCGGCTGCTCGAATCACTGGTCGGCCCTGAGATGGTCCAGCAGAACACCGGACGTGGCAAGTATCAGCTGGGCTTTGGCATACTTCGCCTCGCCGCCTCAATCCCGGCGCGCCTCAGCCTGGTGCGGGAGGCCAGGCCAATCCTGGAGGACCTGGCGCAGCAGAGCAAGGAAACCGTTAACCTGGCAGTCCTGCGATCGGGCTATGCCGTCAATGTCGACCAGGCCCTGGGACCCTCCAGCCTCGCCACATACGACTGGGTGGGTGGACTGACCCCACTCCATGCCACGTCCAGTGGCAAGGTTTTTTTGGCCGCACTGCCGGCTGATGAGCGCCGGCGGATCCTGGATGAGGTCGGACTCTCTGCCCGGACGCCGTGCACCATCACGGACCGGGGCGTTCTGGAAAAGCAGCTGCTCGACGTAGCCCGCAACGGATATGCGGAGACACGAGAGGAACTCGAGATCGGCCTGAATGCGATCGCCGTCCCCGTGTTTAACCACGTTGGCGCAGTCATCGGATCAGTAAGCATTTCGGGACCGGCGTTCCGCTTCGACACCGAAAAACAGCCGGGGCTCATCGCGTCCCTCCGTGAGGCCGGACTGCAGATCAGCACGAAAATGGGCTACACGCAAAGGTAAMATNDPDAPKGANGQAGGVQSVDRALQILEILSRDGHAGVSDIAEEMGVHKSTVFRLLESLVGPEMVQQNTGRGKYQLGFGILRLAASIPARLSLVREARPILEDLAQQSKETVNLAVLRSGYAVNVDQALGPSSLATYDWVGGLTPLHATSSGKVFLAALPADERRRILDEVGLSARTPCTITDRGVLEKQLLDVARNGYAETREELEIGLNAIAVPVFNHVGAVIGSVSISGPAFRFDTEKQPGLIASLREAGLQISTKMGYTQRPGPT0018213_119DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
D1-29_02331882fdhD_2COG1526Sulfur carrier protein FdhDATGGCACGCATGACGCAGCGCCGCAAAATCCATCGCTTCCACCTGGACGGTTCCGGCACCGAATACCCGGTCCGGTTCAAGGAAGACGTACTCGCCGCCGAGGAGCCCCTGGAAATCCGTATCGGCGGCCGGTCTTTCGCGGTTACCATGAGGACCCCTGGGGACGACTTTGACCTGGTGGCGGGGTTCCTGGTCTCAGAAGGCATCATCAGCTCCCACTCCGAGCTGGTATCGATGCGCTTTTGCGCCGGAGATGCCGGCGGAGAACAAACATACAACGTCATCGAGACCCAGCTGGCGCCGGATGTGGCCATGCCTGACACGATGCGGCATGTCTACACGTCAAGCTCCTGCGGCATCTGCGGGACAGACTCAATCGAATCCGTCCGCAAGACCCTTCGCTTCGATCCTGCCCAGGACCCGCTGCGGATTCCTGTGGATGTCCTGGCCGAACTCCCGGAGCGGCTCCGCGAGGCCCAGGCAGTGTTCGACAAGACGGGCGGCGTCCATGCTGCAGGCCTGTTCAGAGTGGACGGCGCCAGCCCGGAGCTCCTCTGTCTCCGGGAGGATGTTGGACGCCATAATGCGGTGGACAAGGTTGTTGGTTGGGCGCTGCGCCAAAACCTGTTGCCATTGAGCGGCACCGTCCTCCAGGTTTCGGGGCGCGCTTCCTTCGAGCTTGTCCAGAAGGCCGCCATGGCCGGCATCCCCGTCCTGTCTGCCGTCAGCGCGCCCTCAAGCCTGGCCGCCGACCTCGCCGTGGAGACCGGAGTGACCCTGGTTGGATTCAGCCGTGGACACAGCCTGAATGTCTACGCGGGACGGGAACGGCTGGGCCGCCCGCAAAAGGGCGGCCAGGAGGAGGCCTATGCACGGCTCTAAMARMTQRRKIHRFHLDGSGTEYPVRFKEDVLAAEEPLEIRIGGRSFAVTMRTPGDDFDLVAGFLVSEGIISSHSELVSMRFCAGDAGGEQTYNVIETQLAPDVAMPDTMRHVYTSSSCGICGTDSIESVRKTLRFDPAQDPLRIPVDVLAELPERLREAQAVFDKTGGVHAAGLFRVDGASPELLCLREDVGRHNAVDKVVGWALRQNLLPLSGTVLQVSGRASFELVQKAAMAGIPVLSAVSAPSSLAADLAVETGVTLVGFSRGHSLNVYAGRERLGRPQKGGQEEAYARLNANANANANA
D1-29_023321317hypothetical proteinTTGCTCGCCAAAGACATCACCATGAGCGGTGGCACCTTGGAATTCTCCCCGGCTTGGAGCCCTTCCGGACAAGCCTCCCCCACATGGGCCGAAGCCCGCGAGCTGGCTTTCGATTGCGCTGTGCCACTCCCGCCGGTGGATGTTCCCCTCCCATCAGCAGTCGGCCACACCCTGACCCGCGATGTCGCCGCCCTGCAAGAACTCCCCCATTACCAGTCCTCCGCAATGGACGGCTGGGCCGTCAGCGGTTGCGGTCCCTGGCTCCTTACCGACGATGAGCACTTCCTGCCACCCGGGCGGGCCAGGGTCATAGCCACCGGCGGACTGGTGCCTGCCGGCGCCACATCGGTACTCCGCAAGGAAAGCGGAGCTGTCCACCAGAACGCTGAGGGCGGCCTTCTCCTGCAGGAAACCGAGAGTGCAGAACATGGCGGGTCGGGCCGCGGCCGGCATATTCGTCCCGCCGGGGAAGAAGCTGCGGCCGGTGAAGTGCTGATCCCCGCCGGCACAAGACTGAACCCTGGCCACATTGCGCTTGCCGCCGTGGCCGGGCATGACACGCTGCAGGTGCAGCGCAAGCCGGTGGTCGGCGTCGTACTGACCGGTTCCGAAGTAGTTACGGCGGGCGTTCCGGAACCAGGACGCGTCAGGGACACCTTTGGTCCCCAGCTGGGAACGGTCATTTCCCTTCTGGGCGGAACATCCGCCGGGTCGCTGCGGATCGGGGATTCCTACCACGAATGGCTGGCGGCACTAGATGGTTCTGGATCGTTCCTCGGACCCCTGCCGGACGTGACCATAACCACTGGCGGAACCGGGTGTTCCGGGACAGATCATTTCCGCGGTGCCATCGCCGCTCTCGGCGGACAGTTGCTGCTGGACGGCATCGCCATGCGGCCCGGCCACCCGGCTGTCCTGGCCGTGCTCCCGGACGGCCGTTTCGTCGTCGGGCTGCCCGGTAACCCCTTGGCAGCAATGATGGCCCTCATCACCATTGGTGCGCCGCTGCTGGAGGCACTCGGAGGACGGTCCCTGGGCGCTGTCGGGCAGGTGACATCGGCCGCTGACGTTGATCCCTCGCCCGGCCGGACCCGCCTGATTCCCTGCAGGTTCATCGAGGGCCTGGCCTTCCCCGCCCCGCATACCGGGCCCGGCATGGTCCGGGGGCTTGCCTGGGCAGATGGTGTCATGGCGGTTCCCCCTGCCGGGGTTCTGTCCGGCGAGCCGGTTCCTGTGCTCCCCCTCCCCTGGACGCAGTCCAACGAGACGATCCCGTCCGCCACCAACCACCTACGGAGCACCACATGGCACGCATGAMLAKDITMSGGTLEFSPAWSPSGQASPTWAEARELAFDCAVPLPPVDVPLPSAVGHTLTRDVAALQELPHYQSSAMDGWAVSGCGPWLLTDDEHFLPPGRARVIATGGLVPAGATSVLRKESGAVHQNAEGGLLLQETESAEHGGSGRGRHIRPAGEEAAAGEVLIPAGTRLNPGHIALAAVAGHDTLQVQRKPVVGVVLTGSEVVTAGVPEPGRVRDTFGPQLGTVISLLGGTSAGSLRIGDSYHEWLAALDGSGSFLGPLPDVTITTGGTGCSGTDHFRGAIAALGGQLLLDGIAMRPGHPAVLAVLPDGRFVVGLPGNPLAAMMALITIGAPLLEALGGRSLGAVGQVTSAADVDPSPGRTRLIPCRFIEGLAFPAPHTGPGMVRGLAWADGVMAVPPAGVLSGEPVPVLPLPWTQSNETIPSATNHLRSTTWHAPGPT0008430_1383DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-29_023331218fdhAGlutathione-independent formaldehyde dehydrogenaseATGTCAGGAAACAGAGCAGTCGCCTACAAAGAACCCGGTGTCGTCGAAATCATCAATACCGACTACCCGACGTTCGAACTCAAGGACGGGCCCGGCGTCAATCCGGAGAATGTGGGCCGGAAAGTGCCCCACGGTGCGATCCTGCGCACGGTGACCACCAACATCTGCGGTTCGGACCAGCACATGGTGAGGGGCCGGACCACCGCTCCCAAGGACCTCGTCCTCGGCCATGAAATCACCGGCGAAGTGGTGGAAGTCGGACCGGACGTTGAGTTCATCAAGGTGGGCGACATCGTCTCCGTACCGTTCAACATCTCCTGTGGTCGCTGCCGGAACTGCAAGGAGCGCAAGACGGGCATCTGCCTGAACGTTAATCCGGACCGCCCGGGGAGCGCTTACGGTTATGTGGACATGGGCGGCTGGGTGGGTGGCCAGGCAGAATTCGTGCTGGTCCCCTACGCTGACTGGAACCTGCTCAGGTTCCCGGACCGCGACCAGGCCCTGGAAAAGATCATGGACCTGACCATGCTTTCCGATATCTTCCCCACTGGCTTCCACGGAGCAGTGACCGCTGGAGTCGGTGTCGGCTCCACTGTCTACATCGCCGGGGCAGGACCTGTCGGCCTGGCGGCTGCCGTCGGTGCACAGCTGCTGGGCGCCGCGGTGGTCATTGTCGGTGACATGAACGAAGACCGCCTGGCCCAGGCCAAGTCCTTCGGTTGTGAAACAGTGAACGTGTCCCAGGGCGATCCGAAGGACCAGATTGAGCAGATCCTTGGTGTGCCGGAAGTGGACTGTGGCGTGGACGCCGTCGGTTTTGAAGCCCGCGGACACGGCAAGGACGCCTCGCACGAGGCGCCGGCCACTGTGCTGAACTCCCTCATGGACATCACCGCCGCAGGTGGCGCCCTGGGCATCCCGGGACTGTATGTGACCGGGGACCCCGGGGGAATCGACAAGGCAGCCCAGCACGGATCCCTCTCCCTTTCGCTGGGCACCGGATGGGCAAAATCCTTGTCCTTCACCACTGGACAGTGCCCTGTGATGAATTACAACCGCCAATTGATGATGGCCATCCTGCATGACAAGGTGCAGATCGCCAAGGCAGTGAACGCCAAGGCCATCCCGCTAGAAGATGCGCCGCGCGGCTACGCCGAATTCGACGCCGGTTCGGCAACAAAGTTCGTCCTGAACCCGAATGGATACGTCAAGGCGTAGMSGNRAVAYKEPGVVEIINTDYPTFELKDGPGVNPENVGRKVPHGAILRTVTTNICGSDQHMVRGRTTAPKDLVLGHEITGEVVEVGPDVEFIKVGDIVSVPFNISCGRCRNCKERKTGICLNVNPDRPGSAYGYVDMGGWVGGQAEFVLVPYADWNLLRFPDRDQALEKIMDLTMLSDIFPTGFHGAVTAGVGVGSTVYIAGAGPVGLAAAVGAQLLGAAVVIVGDMNEDRLAQAKSFGCETVNVSQGDPKDQIEQILGVPEVDCGVDAVGFEARGHGKDASHEAPATVLNSLMDITAAGGALGIPGLYVTGDPGGIDKAAQHGSLSLSLGTGWAKSLSFTTGQCPVMNYNRQLMMAILHDKVQIAKAVNAKAIPLEDAPRGYAEFDAGSATKFVLNPNGYVKAPGPT0002115_108DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROMETHANE_DEGRADATION,PGPT0002115-fdhA-K00148NANA
D1-29_02334672rspR_2COG1802HTH-type transcriptional repressor RspRTTGGGCACAGCAGGCTCTTATCTGTCGGAGAGGCTGGAGGACGAGTCCTTCGCCGACTTTGCCTACAGGGCGCTTTGCGATGAGCTGATCCTCCTGGACATCAAGCCTGGCGAGCCACTGAACGACGACGTGATTTCCCGGCGGCTCGGAGTGGGAAGGACCCCCATCCGCGAAGCCATGAAGCGCCTTGAAAGTGACCATCTGGTGGTAGCATATCCCCGCCGCGGAACGTTCGCGGCAGGGGTGGACATCACCGATTTGGCGGAAATCTCCGAAATCCGGCAGCTTCTGGAACCTGCTGCAGCAGCGCGGGCGGCCCGGATGGCGTCGCCGCAACTGCGGCAGGAGATCAAGGAATTCGCCAAGGAGGTGGGGGAGCTCCTGCCGCAGTTGCACTCCCAGCGGGACCTTATGCGCCTGGATATGCGCGTACACCGGATGATCTACCGGGCCACAGGAAGCAGGCACCTTGAAGATGTCCTCATCCGGTACGACAATCTGGCAACGCGTATCTGGAGCCTTGTGCTGGAGAAACTGCCTCCAGTCTCTGAGCATATTGCCCAGCACATTGAGCTTCTTGAATGCATTGCGGATGGAGATTCCGACGCTGCTGCCCGGCTGACCAGCAAGCACGTGGCGGACTTCGAGAACCTGATCAGGGCCGTCCTGTAGMGTAGSYLSERLEDESFADFAYRALCDELILLDIKPGEPLNDDVISRRLGVGRTPIREAMKRLESDHLVVAYPRRGTFAAGVDITDLAEISEIRQLLEPAAAARAARMASPQLRQEIKEFAKEVGELLPQLHSQRDLMRLDMRVHRMIYRATGSRHLEDVLIRYDNLATRIWSLVLEKLPPVSEHIAQHIELLECIADGDSDAAARLTSKHVADFENLIRAVLNANANANANA
D1-29_02335876folD_2Bifunctional protein FolD proteinTTGAGCACGACACTTCTCTCCGGACGGGCACTGGCCGGGCTAACGCAGCAAAAGGCCTCCGACGCCGCCAGGGCTCTCGAAATCGATGGCCTCCGCCCTACGCTTGCCGTGGTTGTGGCCACCGACGACGGCTCCACACACTGGTACGTGCGGTCCATCGAACGGGCCGCGGAAAGCGCCGGCATCATGTGCCGCATTGTGGACCTTGGCCATGATGCGACAGGACAGGTGTTGGCCTCTGTTCTGAAAGATCTCAGCGCCGAGCCATCGGTAAACGGCATCATCCTCCAGACACCGCTGCCTCCCGGCGTGGATGCAGATGCATTGGTTGGACACATCGCACCTGAAAAGGACATCGACGGCGCGAATCCACTGAGCCTGGGCCGGCTTGCAGTCGGCCAGCCATCGTTCGCCCCCGCAACGGCCCGGGCCGTAGTCGAGATCCTTGATCACTTCGACATCCCGGTGGCGGGCCGGAACGTCGTGGTGATTGGACGTTCAGCCGTTGTGGGAAAGCCGCTCTCCCTGCTGCTCATGGAACGTGATGCCGCGGTCACGGTCTGCCATTCGAGGTCGGGGCCGTTGGAGAAATACACCAGGACGGCCGACGTCGTGGTTGTCGCGGCCGGGCGCATCGGCCTGCTGACCGGCAGCCATATTTCGTCCGAGGCCGTAGTGATTGACGTCGGCACCAACGTCCTTTCCGACGGTTCGCTTGTGGGGGACGTGGACCAAGCCAGCGTTCGGGGCGTCGCGGCGGCACTGACACCAGTACCGGGCGGCGTTGGGTCGGTCACCACGTCCCTGCTTCTCCTGCACACCGTCGAGGCCGCGCGGGAACAGTCGCGGGCCTTGCTTACGGCAACGGCTGGGTAAMSTTLLSGRALAGLTQQKASDAARALEIDGLRPTLAVVVATDDGSTHWYVRSIERAAESAGIMCRIVDLGHDATGQVLASVLKDLSAEPSVNGIILQTPLPPGVDADALVGHIAPEKDIDGANPLSLGRLAVGQPSFAPATARAVVEILDHFDIPVAGRNVVVIGRSAVVGKPLSLLLMERDAAVTVCHSRSGPLEKYTRTADVVVVAAGRIGLLTGSHISSEAVVIDVGTNVLSDGSLVGDVDQASVRGVAAALTPVPGGVGSVTTSLLLLHTVEAAREQSRALLTATAGPGPT0008075_1971DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491NANA
D1-29_02336627fchACOG3404Methenyltetrahydrofolate cyclohydrolaseATGATCAGTTCAGAAACAATAGAGGGCTACCTCACCAGACTTTCCTCGCGCGAACCCACCCCAGGCGGCGGCGCAGCCGCAGCGCTCCACGCCGCCCAGGGGGCGGCACTGGTTTCCATGGTGGCCAGGTACTCCACCGGCACGAAGTACGAGCAGCACGCCGAACTCGTGACCAGGGTCATCGCCTCCGCCGACCAACTGGTGGTAGAGGCCTTGCGCCTCGCAGACGCGGACCAGCATGCGTTCCAGGGCGTCATCGATGCGTACAAACTTCCTGCCGGCACTGACCAACTCAAGGCCGCACGAACAGCATCCATCCAGGACGCGCTGATCCTGGCCGCCACTACGCCGGCACAGCTCATCCTTCTTGCCGGCGCCGTCGTGGATCTTGCCACCGAACTTTTCGAGGTGGCCAATGCCAACGTGATCAGTGACGTCGCCGCCGCCGTCGACGCAGCCCGGGCAGCCGCCACCACTGCACGGGTGAACATCGACATCAATGTGGTTGCCATCAAGGACACCGAAGCCCGCTCCCGGCTGGCTGTCCAGACTGACGGCCTTGAGGAAAAGGTCATCCTGGCAGCCGACTCACTCGCCAAGCGGGTTCGGGAAAGGATCCTCAGTTGAMISSETIEGYLTRLSSREPTPGGGAAAALHAAQGAALVSMVARYSTGTKYEQHAELVTRVIASADQLVVEALRLADADQHAFQGVIDAYKLPAGTDQLKAARTASIQDALILAATTPAQLILLAGAVVDLATELFEVANANVISDVAAAVDAARAAATTARVNIDINVVAIKDTEARSRLAVQTDGLEEKVILAADSLAKRVRERILSPGPT0008080_307DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008080-fchA-K01500NANA
D1-29_023372493dmgDimethylglycine oxidaseATGGCATCAACGCCAAGCATTGTCATTATTGGAGCTGGAATCGTCGGCACGAACCTTGCCGATGAACTGGTCGCACGGGGCTGGAACAACATCACTGTCCTGGACCAGGGCCCCCTCAACATGCCCGGTGGCTCCACGTCCCACGCCCCCGGCCTTGTCTTCCAGACCAACCCTTCAAAGTCCATGGCGCTCTTCGCCAAGTACACCGTGGAAAAGCTTTTGTCCCTCACCGAGGACGGCGTGAGCTGCTTCAACCAGGTCGGCGGGTTGGAAGTTGCCACCACCGAGACCCGCCTCACGGACCTCAAGCGGAAGCTCGGCTATGCCGCCGCATGGGGCATCGAAGGCAAGATCCTCTCCCGCGCCGAGTGCAAGGAGCTCTACCCGCTCCTGAACGAGGAAGACATCCTTGGCGGGCTCCACGTTCCCAGCGACGGCCTGGCCCGCGCTGCCCGCGCGGTCCAGCTGCTGATCAAGCGGACCGAAGCCGCAGGCGTCAAGTACCTGGGCAACACCACGGTGACGGGTATTGAACAGTCGGGCCACCGGGTCACCGGTGTCCAGACCTCCGAAGGCACCATCCCCGCCGACATCGTGGTCTCCTGCGCCGGATTCTGGGGCGCCAAGATTGGCGAGATGATCGGGATGTCCGTCCCGCTCCTGCCATTGGCGCACCAGTACGTCAAGACCACTCCCGTGCCGGCGCAGAAGGGCCGCAACGAACTGCCCAACGACGCCTCCCTGCCGATCCTGCGGCACCAGGACCAGGACCTCTATTACCGCGAGCACGGTGACCGCTACGGCATCGGTTCCTACGCGCACCGCCCCATGCCCGTGGACCTTGATGAACTGGGCTCCTACGACCCCAACAGCATCACCGAGCACAACATGCCTTCCCGCCTCGACTTCACGCTGGAGGACTTCCTCCCGGCGTGGGAGGCCACCAAGCAGCTGCTGCCGGCCCTGCGCGAAAGCGAGATTGAGGACGGCTTCAACGGCATCTTCTCCTTCACCCCGGACGGCGGCGCCCTGGTGGGTGAGTCCAAGGAGCTTGATGGCTTCTTCGTGGCCGAAGCCGTGTGGGTCACACACTCGGCCGGCATCGCCCGCGCTGTCGCGGAGCTCCTGACCACCGGCAAGTCGCAGATCGACCTTGGAGAATGCGACATCCACCGCTTCGAAGAGGTCCAGCTGACTCCCGAATACGTCAGCGAAACGTCCCAGCAGAACTTCGTGGAAATCTACGACGTCCTGCACCCGCTGCAGCCGAAGCTCTCGCCCCGGAACCTTCGCGTCAGCCCGTTCCACGCCCGCCATAAGCAGCTGGGCGGCTTCTTCCTGGAGGGCGGCGGATGGGAGCGCCCCTACTGGTTCGAAGCCAACGCCGAACTGCTCAAGGAGATGCCTGACGAATGGCAGCCGCCGGCACGTGACGCCTGGTCCGGGATGTTCAGCTCCCCCATCGCCGCCGCCGAAGCCTGGAAGACCCGCACCGCTGTGGCCATGTACGACATGACTCCGCTCAAGCGCCTTGAGGTCTCCGGCCCCGGAGCCATGAAGCTGCTGCAGGAGCTGACCACCGCCGACATGACCAAGAAGCCGGGGGCCGTCACCTACACCCTCCTGCTGGACCACGCAGGCGGGATCCGAAGCGACATCACCGTGGCCCGCCTGAGCGAAGACACCTTCCAGCTCGGAGCCAACGGAAACATCGACACCGCCTACTTTGAGCGGGCCGCACGCCACCAGACGGAAAACGGGACCGCCAGCGACTGGGTCCAGGTTCGCGACACCACCGGCGGCACATGCTGCATCGGCCTGTGGGGGCCCCTCGCCCGGGACCTCATCAGCACCGTCAGCAGCGACGACTTCACCAACGACGGCCTGAAATACTTCCGGTCCAAGAAGGTGGTCATCGGCGGCGTCACCGTCACGGCAATGCGCCTGTCCTATGTCGGCGAGCTGGGTTGGGAACTGTACACCAGCGCAGACAACGGCCAGCGCCTGTGGGATGCACTGTGGAAGGCCGGGCAGCCGTTCGGCGTTATCGCCGCGGGCCGCGCCGCGTTCAGCTCGCTGCGCCTTGAAAAGGGCTACCGCTCGTGGGGCACAGACATGACCACGGAGCATGACCCGCTGGAAGCAGGACTTGGTTTCGCCGTGAAGATGGCCAAGGAAAACTTCGTCGGAAAGGCAGCACTGGAAGGCAGGACCGAGGAAAACTCCGCCCGCCGCCTTCGCTGCCTGACCGTCGACGACGGCCGCAGCATTGTGCTGGGCAAGGAACCTGTCTTCTACAAGGACCAGGCAGTCGGCTATGTCACCAGTGCCGCATACGGCTATACCGTAGCCAAGCCCATCGCCTACGCATACCTCCCCGCCGCTGTGTCCATTGGTGACTCTGTCGAGATCGAATACTTTGGCCGGCGCGTCCAGGCCACGGTCACGGCCGATCCGCTGTACGACCCCACCATGACCAGGCTCCGCGGCTAAMASTPSIVIIGAGIVGTNLADELVARGWNNITVLDQGPLNMPGGSTSHAPGLVFQTNPSKSMALFAKYTVEKLLSLTEDGVSCFNQVGGLEVATTETRLTDLKRKLGYAAAWGIEGKILSRAECKELYPLLNEEDILGGLHVPSDGLARAARAVQLLIKRTEAAGVKYLGNTTVTGIEQSGHRVTGVQTSEGTIPADIVVSCAGFWGAKIGEMIGMSVPLLPLAHQYVKTTPVPAQKGRNELPNDASLPILRHQDQDLYYREHGDRYGIGSYAHRPMPVDLDELGSYDPNSITEHNMPSRLDFTLEDFLPAWEATKQLLPALRESEIEDGFNGIFSFTPDGGALVGESKELDGFFVAEAVWVTHSAGIARAVAELLTTGKSQIDLGECDIHRFEEVQLTPEYVSETSQQNFVEIYDVLHPLQPKLSPRNLRVSPFHARHKQLGGFFLEGGGWERPYWFEANAELLKEMPDEWQPPARDAWSGMFSSPIAAAEAWKTRTAVAMYDMTPLKRLEVSGPGAMKLLQELTTADMTKKPGAVTYTLLLDHAGGIRSDITVARLSEDTFQLGANGNIDTAYFERAARHQTENGTASDWVQVRDTTGGTCCIGLWGPLARDLISTVSSDDFTNDGLKYFRSKKVVIGGVTVTAMRLSYVGELGWELYTSADNGQRLWDALWKAGQPFGVIAAGRAAFSSLRLEKGYRSWGTDMTTEHDPLEAGLGFAVKMAKENFVGKAALEGRTEENSARRLRCLTVDDGRSIVLGKEPVFYKDQAVGYVTSAAYGYTVAKPIAYAYLPAAVSIGDSVEIEYFGRRVQATVTADPLYDPTMTRLRGPGPT0013545_95DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013545-dmg_like-K00309NANA
D1-29_02338918purU_2COG0788Formyltetrahydrofolate deformylaseATGTCCCTAGTGGCTACAGACTCATCAACCAGCACGCTGACTCAGACCGAGCCCCGCGTGGAAGAAGCCAAGGCCCAGAAGTTCGTACTCACACTGTCGTGCGTCGAACGTGCCGGGATTGTCCAGGCGGTCACCACTTTTCTCTTCGAACGTGGCTTCAACATCGAAGAGCACCAGCAGTTCGACGACGGGCTGCGCCAGACGCTGCATCTGCGCACCGCATTCTCGGGTTCCCCTGAGTACACGCCCGAGAGGCTCCAGGAGGAGTTCAAGGCGATCGCGGACCGTTTCGAGATGAAGTTCAGCTTCCATGACCAGACCAAGCAGCGCGTCCTGGTGATGGTGTCCAAGTTCGGGCACTGCCTCAATGACCTGCTCTTCCGTTGGCGCGGTGGCAGCCTGGGCGGGGACATTGTCCTGATAGTTTCCAATCACGAAACCCACCGGGCCATGGCCGAGGCAGCCGGCCTCCCCTTCCTCTACGTCCCGGTGACACCCGAGACCAAGGCAGATGCCGAACAGCGCCTGCTGGATCTCATCGACGAATATGACATCGACCTCGTGGTGCTGGCCCGCTACATGCAGGTGCTCTCCGACGACCTCTGCCGCTCCCTTGAGGGCCGCGCCATTAACATCCACCACTCGTTCCTGCCCGGATTCAAGGGAGCCCGTCCGTATCACCAGGCGTACGATCGTGGCGTCAAGCTGGTGGGCGCAACGGCCCACTACGTGACTGCGGAGCTTGATGAGGGTCCTATCATCGAACAGGAAGTCATCCGGGTCGACCACAGCTACGGACCCACCGCCCTGTCCACCGTCGGGCGGGATGCGGAAGCCCTGGCGCTGTCCCGTGCCGTGAGGTGGCACTGCGAGCACCGTGTGTTGCTGGATCAAACCAGCACTGTCGTGTTCCGGTAAMSLVATDSSTSTLTQTEPRVEEAKAQKFVLTLSCVERAGIVQAVTTFLFERGFNIEEHQQFDDGLRQTLHLRTAFSGSPEYTPERLQEEFKAIADRFEMKFSFHDQTKQRVLVMVSKFGHCLNDLLFRWRGGSLGGDIVLIVSNHETHRAMAEAAGLPFLYVPVTPETKADAEQRLLDLIDEYDIDLVVLARYMQVLSDDLCRSLEGRAINIHHSFLPGFKGARPYHQAYDRGVKLVGATAHYVTAELDEGPIIEQEVIRVDHSYGPTALSTVGRDAEALALSRAVRWHCEHRVLLDQTSTVVFRPGPT0008155_1217DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
D1-29_02339678hypothetical proteinATGGCGGTTGAAGTTTTGGCACCCGCAGGCGAGGCTGTCAGAAAGTCGTTGGCGGAATTGGCCTACGAGCGCATCCGAGATCGCCTGCTGATGCTGGACATCAAGCCGGGTGATCTTCTCAATGACGACCACCTCGCCAGGGATCTCGGTATGGGGCGCACTCCCGTACGCGAAGCTTTGAAGCGGCTTGAGTTGGACCGGCTGGTTGTTTCGTATCCGCGCAGGGGAACTTTTGCAACGCGGGTGGAGGTCACTGATCTTGCCTTTATTTCCGAAATCCGGACCCAGCTCGAACCGCTTGCAGCCTCCCGCGCTGCCCGGGTTGCCACTGAGCAGCAGCGCGAGCAGCTGCGCGCTGTGTTGCGGGCTGTTGAATCCTTCGATACACATGCTGCCTCCGTCGTGGAAACACTGCGGCTGGATGCACGGGTGCATCAGGGAATCTACGCTGCTGCAGCCAATCCCCACCTCGAAGACGTCCTGGTCCGCTATGACAACCTCGCCACCCGTATCTGGTGCATGGTGCTGGATCGCCTTCCTGACCTCTCGCACCACGTGCATGAGCATGTTGACCTGCTCGGCGCGGTGATTGACGGGGACGAGGCGCGCGCCGCCGATCTCGCAAGGATTCACGTCAGCGGCTTCGAGGATGCCGTCCGCAGGGCTCTCTTCGCCTAAMAVEVLAPAGEAVRKSLAELAYERIRDRLLMLDIKPGDLLNDDHLARDLGMGRTPVREALKRLELDRLVVSYPRRGTFATRVEVTDLAFISEIRTQLEPLAASRAARVATEQQREQLRAVLRAVESFDTHAASVVETLRLDARVHQGIYAAAANPHLEDVLVRYDNLATRIWCMVLDRLPDLSHHVHEHVDLLGAVIDGDEARAADLARIHVSGFEDAVRRALFANANANANANA
D1-29_023401299glyA2_1COG0112Serine hydroxymethyltransferase 2ATGGTCGACGTTCTGACCCGCACGCTTGCAGAGACGGATCCTGCTATCCACGCAGCCGTGCACCAGGAACTCCTGCGCCAGCAGGGCACGCTGGAGATGATCGCCTCCGAAAACTTTGCGCCCACTGCTGTCATGGAGGCGCAGGGATCCGTACTGACCAACAAGTACGCCGAGGGTTACCCGGGCAAGCGCTATTACGGCGGCTGCGAACACGTTGACGTGGTAGAGCAGCTGGCCATCGACCGCCTCAAGTCATTGTTCGGCTCCGAATTCGCCAATGTGCAGCCGCACTCCGGCGCCCAGGCCAACGCAGCGGCCATGTTCGCCCTGATCCAGCCCGGCGACACCATCCTGGGCCTGAACCTCGCCCACGGTGGCCACCTGACGCACGGCATGCGGATCAACTTCTCCGGAAAGCTCTACAAGGTGGTTCCGTATGGCGTCGATGAGGACTCCATGCTGATTGACATGGCCGAAGTGGAGCGCCTGGCGGTTGAGCACAAGCCCCGCCTGATCGTCGCCGGCTGGTCCGCTTACTCCCGCCAGCTGGACTTCGCCGAATTCCGCCGCATCGCGGACCTGGTAGGCGCCTACCTGATGGTGGACATGGCACATTTCGCCGGCTTGGTGGCAGCAGGACTGCACCCCAACCCCGTGCCTCACGCCCACATCGTTACCAGCACCACCCACAAGACCCTCGGCGGACCGCGCGGGGGAGTCATCCTGACCAACGACGCCGACATTGCCAAGAAGGTCAACTCCGCAGTGTTCCCCGGACAGCAGGGTGGCCCGCTGGAGCACGTCATTGCCGCGAAGGCTGTGGCGTTCAAGCTCGCTGCTGAGCCGGAGTTCCGCGATCGCCAGGAACGCACCCTGGAAGGCGCCCGCATCATCGCAGAACGCATTCTGGCTGCCGACGTTGCAGAATCCGGCGTGACCGTGGTCAGCGGTGGCACCGACGTGCACCTGGTCCTGGTGGACCTGCGCAATTCTGAACTGGACGGCCAGCAGGGCGAAGACCGCCTGCACCGGATCGGCATCACCGTCAACCGGAACGCGGTGCCCTTCGACCCGCGTCCGCCGATGGTCTCTTCCGGTCTTCGTATCGGCACGCCGGCACTGGCCACGCGTGGGTTCGGGAAGGCAGAATTCACCGAGGTCGCGGACATTATCGCCGCAGCACTCAAGCGCGAGTTCAGCGACGAGACTGCGACGGAACTGCGGCAGCGGGTTGAAATCCTGGCCGGAAAGTTCCCGCTCTACCCCAACCTCTCCTCTGACACGAACGAGGTGGCATGAMVDVLTRTLAETDPAIHAAVHQELLRQQGTLEMIASENFAPTAVMEAQGSVLTNKYAEGYPGKRYYGGCEHVDVVEQLAIDRLKSLFGSEFANVQPHSGAQANAAAMFALIQPGDTILGLNLAHGGHLTHGMRINFSGKLYKVVPYGVDEDSMLIDMAEVERLAVEHKPRLIVAGWSAYSRQLDFAEFRRIADLVGAYLMVDMAHFAGLVAAGLHPNPVPHAHIVTSTTHKTLGGPRGGVILTNDADIAKKVNSAVFPGQQGGPLEHVIAAKAVAFKLAAEPEFRDRQERTLEGARIIAERILAADVAESGVTVVSGGTDVHLVLVDLRNSELDGQQGEDRLHRIGITVNRNAVPFDPRPPMVSSGLRIGTPALATRGFGKAEFTEVADIIAAALKREFSDETATELRQRVEILAGKFPLYPNLSSDTNEVAPGPT0008090_2633DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
D1-29_023411218soxBSarcosine oxidase subunit betaATGGCAGATTTGCTTCCGGAGCACCCGGATTTCCTCTGGCGGAACCCCGAGCCCAAGTCCTCCTATGACGCCGTGATCGTTGGCGGCGGCGGACACGGGCTGGCCACCGCCTATTTCCTGGCCAAGAACCACGGCATGACCAACATTGCCGTGCTCGAAAAGGGCTGGCTGGCCGGCGGCAACATGGCCCGGAACACCACCATCATCCGGTCCAACTACCTCTGGGACGAGAGCGCTGCCATCTACGAGCACGCCCTCAAACTCTGGGAGATCCTGCCGGAGGAACTCGAATACGACTTCCTCTTCAGCCAGCGCGGCGTCATGAACCTCGCCCACACCCTGGGTGACGTGCGCGAAAGCATGCGCCGCGTGGGAGCCAACCAACTCAACGGCGTGGACGCCGAGTGGCTGGACCCGCAGCAGGTCAAAGAACTCTGCCCCATCCTGAACATCAGCGACAACATCCGCTACCCCGTCATGGGCGCCACGTACCAGCCTCGTGCAGGTATCGCCAAGCATGACCACGTGGCATGGGCTTTCGCCCGCAAATGCGACGAACTCGGCGTGGACATCATCCAGAACTGCGAAGTCACCGGCTTCATCAAGGACGGCAACCGCGTCACTGGCGTCAAGACCAACCAGGGCACCATCAACACCGAGAAGGTGGGCCTGTGCGCCGCCGGGCACAGCTCGGTGCTGGCTGAGATGGCGGGCTTCCGGCTTCCCATCCAGTCCCACCCGCTGCAGGCGCTGGTCTCCGAACTGCACGAACCGGTCCACCCCACCGTGGTGATGTCCAACCACGTGCACGTGTACGTTTCCCAGGCACACAAGGGCGAACTGGTCATGGGCGCCGGCGTGGACTCCTACAACGGCTACGGCCAGCGCGGGTCTTTCCATGTGATCGAGCACCAGATGGCAGCCGCCGTCGAGCTCTTCCCGATCTTTGCCCGTGCGCACGTACTCAGGACCTGGGGCGGCATCGTTGACACAACACTGGATGCTTCCCCGATCGTGGGCACCACTCCGGTGGAGAACATGTTCGTGAACTGTGGCTGGGGCACCGGCGGCTTCAAGGGTACGCCGGCCGCCGGCCTCACCTTTGCCCACACCATCGCCACAGGAACGCCGCACGAGCTGAACAAGCCGTTTGCGCTGGAGCGGTTCGAAACCGGCGCCCTGATCGACGAACACGGCGCAGCCGCCGTGGCCCACTAGMADLLPEHPDFLWRNPEPKSSYDAVIVGGGGHGLATAYFLAKNHGMTNIAVLEKGWLAGGNMARNTTIIRSNYLWDESAAIYEHALKLWEILPEELEYDFLFSQRGVMNLAHTLGDVRESMRRVGANQLNGVDAEWLDPQQVKELCPILNISDNIRYPVMGATYQPRAGIAKHDHVAWAFARKCDELGVDIIQNCEVTGFIKDGNRVTGVKTNQGTINTEKVGLCAAGHSSVLAEMAGFRLPIQSHPLQALVSELHEPVHPTVVMSNHVHVYVSQAHKGELVMGAGVDSYNGYGQRGSFHVIEHQMAAAVELFPIFARAHVLRTWGGIVDTTLDASPIVGTTPVENMFVNCGWGTGGFKGTPAAGLTFAHTIATGTPHELNKPFALERFETGALIDEHGAAAVAHPGPT0013510_790DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303NANA
D1-29_02342426hypothetical proteinATGCTCCTCATTTCATGCCCCAACTGCGGCTCCCGCGACGAGACCGAGTTCCACTACGGCGGCCAGGCCCACGTGGCCTATCCGGAAAACCCGAACGAACTGAACGACCGCGAATGGGCCGAGTTCCTGTTCTACCGGGACAACACCAAGGGCGCCTTCGCCGAACGCTGGCTCCACAGCACCGGCTGCCGCCAGTGGTTCAACATGCTCCGCGACACGGTCACCTACGAGATCCAGGCGGTTTACCCCATGGGCGCGCCCCGCCCGGACAAAGCCGCCCCGGCAGGCGGCGAATCCGGTACCGCCAGTACAGCTCCGGACAGCACTACTACAGGCAGCGCCGGGCCCAGCATCGCTGCAACCAGCATCGCAGGAACCAGCACCACATCTCCCAGCAGCACCGCCCCGGAAGGAGCAACCAAGTGAMLLISCPNCGSRDETEFHYGGQAHVAYPENPNELNDREWAEFLFYRDNTKGAFAERWLHSTGCRQWFNMLRDTVTYEIQAVYPMGAPRPDKAAPAGGESGTASTAPDSTTTGSAGPSIAATSIAGTSTTSPSSTAPEGATKPGPT0013520_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013520-soxD-K00304NANA
D1-29_023432958soxA_5Sarcosine oxidase subunit alphaGTGACTTCCCAGAACGCCCGCCTCGCCGCCGGCGGACGCATTGACCGCACCATCTCCTGGCGTTTCACCGTGGACGGCGAGGAATTCACGGGCCACCCCGGAGACACACTGGCCTCGGCCCTGCTTGCCAACGGCCGGATCGCCGTCGGCAACTCCCTCTACGAGGACCGGCCGCGCGGCATCATGTCAGCCGGCGTGGAAGAATCCAACGCCCTGGTCAAGGTGGCTCCCCGGTTCGCAGGCCACGTTGCCGAGTCCATGCTTCCCGCCACTACGGTCACCCTGGTGGACGGCCTCAAGGCGGAGCTGCTCAACGGCCTTGGCAAGCTGGATCCGGAAGAGGACCGCGCCGAATACGACAAGAAGTACGTCCACACCGACGTCCTGGTGATCGGCGGCGGGCCCGCCGGCCTGGCCGCTGCCCGTGAAGCTGTCCGCACCGGCGCCCGCGTCATGCTGCTGGATGACCAGCCAGAACTGGGCGGCTCCCTGCTGTCCGGTTCCACGGCGCCCGAACTGGCCCAGGTCATCGAAGGCAAACCGGCCCTCGAATGGGTGGCGGATGTCGAAGCCGAGCTCGTTTCCGGCGCCGAGTCCACCGTCCTGAACCGCACCACCGCCTTCGGCGCCTACGACGCCAACTACGTCATCGCCGTCCAGAACCGTACCGACCACCTGTCCACGCCGGCCGCCTCCGGCGTGTCCCGGCAGCGTATCTGGCACATCCGCGCCAACCAGGTGGTGCTGGCTCCCGGTGCCCACGAGCGCCCGCTGGTGTTCGAGAACAACGACCGCCCCGGCATCATGCTCGCCTCGGCCGTCCGCAGCTACCTCAACCGCTACGCGGTGGCCGCCGGGCAGCGCGTTGTCATCAGCACCACCAACGACAGCGCTTACGCCCTGGCAGCTGACCTGCGCGCCGCCGGCGTCAAAATCGCCGCCGTCGTCGACGCCCGCCCCCAGCTGACCGCGGTGGCTGCTGCCGCCGTCGAAGCCGGGACGCGCGTGCTGATCGGCAGTGCGGTGGCCAATACCGCCGCCGGAACCGATACAGGGTCTGCCGATGGCCGCCTGGGCGGCGTTACCGTCCGCAGCATCAACGACGACGGCGAACTCACCTCCGGCGTCGAAGAAATCGAGTGCGACCTGCTGGCCGTGTCCGGTGGCTGGAGCCCGCTGGTCCACCTCCACTCCCAGCGGCAGGGCAAGCTGCGCTGGGACGATGACCTGGCGGCTTTCGTGCCGAGCACTGTCGTCCCGAACCAGCAGACCATCGGTTCCGGCCGCGGCAGCTTCGAACTCGAGGATTGCCTCGCCGAAGGCATCTCCGCCGGTGCCGCTGCAGCCATCGCCGCCGGTTTCGAATCCACCGTCGAACCTTCTCCGATCGCCGATCCGAAGGCGTCCGCCCCCACCCGCCAGCTGTGGCTGGTACCGGGGGAGAATGGAACCCCGGACGACTGGCACCAGCACTTCGTGGACTTCCAGCGGGACCAGAGCGTTGCCGACGTCCTGCGCTCCACCGGCGCGGGGATGCGGTCCGTGGAGCACATCAAGCGCTACACCTCCATCAGCACCGCCAACGACCAGGGCAAGACCTCCGGTGTCAACGCGATCGGCGTCATCGCCGCCGCGCTGCGCCAGGCAGGCGAAGCGTCCCGGGGCATCGGCGACATCGGAACCACCACCTACCGGGCACCGTTCACCCCCGTGGCGTTCTCGGCACTGGCCGGACGCCAGCGCGGCGAACTCTTCGATCCGGCCCGCGTGACCTCCATCCACCCGTGGCACGTGGCCAAGGGCGCTCTGTTCGAGGACGTCGGACAGTGGAAGCGTCCCTGGTACTACCCGCAGGGCGGGGAGGACATGGACCAGGCCGTGCTGCGTGAATGCGCCGCCGTCCGCGAATCCGTTGGCTTTATGGACGCCACCACGCTCGGCAAGATTGAAATCCGCGGCAAGGACGCCGGCGAGTTCCTCAACCGGATCTACACCAACGCCTTCAAGAAGCTCGCGCCCGGTTCCGCACGCTACGGCGTGATGTGCCTGGCCGACGGCATGATCTTCGACGACGGCGTGACCCTGCGCCTGGACGAGGACCGCTTCTTTATGACCACCACCACCAGCGGCGCCGGCAAGGTGCTGGACTGGCTGGAGGAATGGCTGCAGACCGAGTGGCCGGAACTGGACGTGCACTGCACCTCGGTGACGGAACAGTGGAGCACCATTGCCGTCGTCGGGCCCAAATCCCGCGCGGTTCTGGCCAAGGTGGCACCGGAACTGGCCGCCAATGGTGGACTGGAAGCAGAAGCCTTCCCGTTCATGACCTTCCGCGAAACCACGCTGGCCTCCGGCGTCCGCGCCCGGGTCTGCCGCATCTCCTTCTCCGGTGAGCTCGCCTACGAGATCAACGTGCCGTCCTGGTACGGACTGAACACCTGGGAAGCCGTGGCCGCTGCGGGCGCCGAATTCAACATCACCCCGTACGGCACCGAGACCATGCATGTGCTCCGCGCCGAAAAGGGCTACCCGATCGTTGGCCAGGACACCGATGGCACCGTCACGCCGCAGGATGCCGGGATGGAATGGATCGTCTCCAAAGCCAAGGACTTTATCGGCAAGCGCTCCTACGCCCGTGCCGATGCCCGGCGCGAGGACCGTAAGCACTTGGTCAGCGTGCTGCCCGTCGACGGCAACATCCGGTTGCCGGAAGGCACCCAGCTGGTGGAAAAGGGCATCCCGGTGACGCCGGCCGACGGCCCCGTTCCCATGCAGGGTTTTGTCACCTCCAGCTACCAGAGCGCAGCCCTGGGCAGGTCCTTCGCCCTGGCACTGGTCAAGAACGGCCGCAACCGGATCGGCGAGACCCTGGTGGCTGCCGCCGGCAACCAGCTCGTTGACGTTGTTGTCGCAGAAACCGTACTTTTTGACCCTGAAGGGACCCGCAAAGATGGCTGAMTSQNARLAAGGRIDRTISWRFTVDGEEFTGHPGDTLASALLANGRIAVGNSLYEDRPRGIMSAGVEESNALVKVAPRFAGHVAESMLPATTVTLVDGLKAELLNGLGKLDPEEDRAEYDKKYVHTDVLVIGGGPAGLAAAREAVRTGARVMLLDDQPELGGSLLSGSTAPELAQVIEGKPALEWVADVEAELVSGAESTVLNRTTAFGAYDANYVIAVQNRTDHLSTPAASGVSRQRIWHIRANQVVLAPGAHERPLVFENNDRPGIMLASAVRSYLNRYAVAAGQRVVISTTNDSAYALAADLRAAGVKIAAVVDARPQLTAVAAAAVEAGTRVLIGSAVANTAAGTDTGSADGRLGGVTVRSINDDGELTSGVEEIECDLLAVSGGWSPLVHLHSQRQGKLRWDDDLAAFVPSTVVPNQQTIGSGRGSFELEDCLAEGISAGAAAAIAAGFESTVEPSPIADPKASAPTRQLWLVPGENGTPDDWHQHFVDFQRDQSVADVLRSTGAGMRSVEHIKRYTSISTANDQGKTSGVNAIGVIAAALRQAGEASRGIGDIGTTTYRAPFTPVAFSALAGRQRGELFDPARVTSIHPWHVAKGALFEDVGQWKRPWYYPQGGEDMDQAVLRECAAVRESVGFMDATTLGKIEIRGKDAGEFLNRIYTNAFKKLAPGSARYGVMCLADGMIFDDGVTLRLDEDRFFMTTTTSGAGKVLDWLEEWLQTEWPELDVHCTSVTEQWSTIAVVGPKSRAVLAKVAPELAANGGLEAEAFPFMTFRETTLASGVRARVCRISFSGELAYEINVPSWYGLNTWEAVAAAGAEFNITPYGTETMHVLRAEKGYPIVGQDTDGTVTPQDAGMEWIVSKAKDFIGKRSYARADARREDRKHLVSVLPVDGNIRLPEGTQLVEKGIPVTPADGPVPMQGFVTSSYQSAALGRSFALALVKNGRNRIGETLVAAAGNQLVDVVVAETVLFDPEGTRKDGPGPT0013515_585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0013515-soxA-K00302NANA
D1-29_02344639soxGSarcosine oxidase subunit gammaATGGCTGAAACAGCAGCACCCAAAACCTCCCACGAGACGAACCTGGCCCTGCGAACCAGCCCGGCTGCACTGCTCCGGACAGCCTTTGAAACCGGCTCCGTCCGCGGCATTGTGGAACTGAGCGAAATCACCTTCCTGACCATGGCGGGCCTCCGGGTTCGCCGGGACAGCGAGGCCGGGAACCGGATCGCGTCGGTCACCGGGGGCTTGCCCGCAACATGCGGGGCCGTCAGCGGTACCGGTGAAACCTCCGTCCTGTGGCTGGGGCCCGAGGAGTTCCTGGTGGTGGCACCCGTGGAAGCCCACGAATCGCTCGGCGGGGACCTGATCCAGGCACTGAAGGAAGCCCTCGGCGACGGTGAAGGCCAGGTAGTGGACCTTTCCGCCAACCGCACCACCTTCGAACTCACCGGGCCCCGGGCCCGGGCCGTCCTGGAAAAGGGCTGCTCCCTGGACCTGCACCCCCGCACGTTCAAGGCCGGCACGGCGCTGTCCACGGAGGTGGGCAACATCCCCGTGGTCCTATGGAAGACAGGCGATGAGAGCTACCGGATCTTCCCGCGCGCCTCGTTCGCCGAGTTCCTGGGCCGGTGGATCCTCGATGCCATGCGGGAGTATGCCTCCCCTGAGGTCCCCTAAMAETAAPKTSHETNLALRTSPAALLRTAFETGSVRGIVELSEITFLTMAGLRVRRDSEAGNRIASVTGGLPATCGAVSGTGETSVLWLGPEEFLVVAPVEAHESLGGDLIQALKEALGDGEGQVVDLSANRTTFELTGPRARAVLEKGCSLDLHPRTFKAGTALSTEVGNIPVVLWKTGDESYRIFPRASFAEFLGRWILDAMREYASPEVPPGPT0013525_127DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013525-soxG-K00305NANA
D1-29_023451374sdaA_2COG1760L-serine dehydratase 1ATGGCACTGAGCGTCCTGGACCTGTTTTCCGTTGGCATCGGGCCGTCGTCGTCACACACGGTCGGCCCGATGCGGGCAGCGAAGCTGTTCGCCGACGGGCTAAAAGACGACGGACACCTGAGCTCCACCACACGCGTGCAGGCCGAACTCTACGGCTCCCTCGGGGCCACCGGACGGGGCCACGGCTCGGACAAGGCCGTGGTTCTGGGCTTCAAGGGGCTGGATCCGGAAACCGTGGACACCTCCACAGCTGATGACCAGGTGGCCGCCGCCGCCCTCGACGCTGAACTGTGGGTGGGCGGGGACCACCGGGTGGACTTCAACTGGGACGAAGATGTGGTGCTGCACCGGCGCAAGTCCCTCCCTGCCCACCCCAACGGCATGACGTTCCGTGCCCTGGACCATTCAGGAGCCGTGCTCAGCGAGCGAAGCTTCTATTCAATTGGGGGCGGCTTCGTCGTTGACGGGGACGCCGACGCCGGCGACCGGGTGGTGGCTGACACCACCGTCCTGCCCTACCCCTTCACCACGGCGGACCAGCTTCTGGAGATTTGCAGCCGCGAAGGCATGTCCATCTCCGATGTGATGCTCGCCAACGAACTCACCTGGCGCAGCGAAGCGGAACTCCGGGAAAAGCTGCTTTCTCTCTGGGCCGTGATGCGCGAATGCGTGGACAACGGCTGCGCCGCGGAAGGGATCCTTCCCGGTGGGCTGAACGTCAGGCGGCGGGCGCCGTCGCTATTCAAGACCCTGACGGCGGACACCGGGGTAACCGACCCGCTCCGGGCGATGGAATGGGTAAACCTGTTCGCGCTGGCAGTCAACGAGGAGAACGCGGCCGGCGGCCGGATTGTGACCGCACCGACCAACGGCGCGGCCGGCATCGTCCCGGCGGTGCTGCATTACTACGTGAAGTTCGTTCCCGGCGCCAACGACGACGGCGTGGTCCGCTTCCTGCTGGCCGCGGCCGCCGTCGGAATTCTGTTCAAAATCAATGCCTCCATCTCCGGCGCCGAAGTGGGCTGCCAGGGTGAGGTGGGTTCTGCCTGCTCCATGGCAGCGGCCGGCCTTTGTGAAGTCCTCGGCGGAACGCCTGCACAGGTGGAAAACGCCGCCGAAGTGGGGATCGAACACAACCTCGGCCTGACCTGCGACCCTGTGGGCGGTCTGGTGCAGATCCCCTGCATTGAACGGAACGCCATCGCCAGCGTCAAAGCCATCAATGCCGCGCGCCTTGCCCTGCACGGCGACGGCAGCCACAAAGTGTCCCTGGACAAGGCCATCAAGACCATGAGGGAAACCGGCGCGGACATGAAGGACAAATACAAGGAAACCTCTCGGGGTGGCCTCGCGGTAAACGTGATCGAATGCTGAMALSVLDLFSVGIGPSSSHTVGPMRAAKLFADGLKDDGHLSSTTRVQAELYGSLGATGRGHGSDKAVVLGFKGLDPETVDTSTADDQVAAAALDAELWVGGDHRVDFNWDEDVVLHRRKSLPAHPNGMTFRALDHSGAVLSERSFYSIGGGFVVDGDADAGDRVVADTTVLPYPFTTADQLLEICSREGMSISDVMLANELTWRSEAELREKLLSLWAVMRECVDNGCAAEGILPGGLNVRRRAPSLFKTLTADTGVTDPLRAMEWVNLFALAVNEENAAGGRIVTAPTNGAAGIVPAVLHYYVKFVPGANDDGVVRFLLAAAAVGILFKINASISGAEVGCQGEVGSACSMAAAGLCEVLGGTPAQVENAAEVGIEHNLGLTCDPVGGLVQIPCIERNAIASVKAINAARLALHGDGSHKVSLDKAIKTMRETGADMKDKYKETSRGGLAVNVIECPGPT0001975_2027DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752NANA
D1-29_02346222hypothetical proteinATGGCAGGGTCCGCAATCAAGACTGAAGAGGGCCGCGGCCTCCGCGACGACTGGCATATGCTCGCCGGGCGCACCGTGGAGGTTTGGCTGCTGGGGGAGCACATCCTGACCGGGAGGGTGGAGCAGGCGGCTGATGATGATGCGATTCTTTGGATCGCGGCGGAAGGCAGCCGTACCCGAAAGCTCTTTGACAAGCGAAGCGGCTACCAGGTGTGGGCCTAAMAGSAIKTEEGRGLRDDWHMLAGRTVEVWLLGEHILTGRVEQAADDDAILWIAAEGSRTRKLFDKRSGYQVWANANANANANA
D1-29_023472160hypothetical proteinATGGCTGGTTGGAATGCCGACACGGCGGCTGGGCCGCTTGGGGCAGGGACAGTGACGTTGGTTGAGGGATCGTCCTTCTGTATTAGTTCAGCCAATGGGGACATCCAACCTGACCTTCCGCATGGAGTCTTCTACCGCGACACCCGCATACTGTCGCACTGGACCCTGACCGTTAATGGCCTGGCGCTGGAGCCCCTGGCTTCAGAATTGAAGGAGCCATACCGGGCTTTGTTCGCATGCCGGGTGCCCCGTTCGGACGGATATGCTGACAGCCCCCTGATTGTGGAACGCCTCCGCGAGGTGGGAGCCGGGATTCTGGAACGCATCACCATCCGCAACTATTCCGGCGCTCCTGCGGAGTGTGAGGTAGCCCTGGCCGTTGGTTCGGATTTCGCCGATCTGTTTGAGGTGAAGGAGGCAAGGGTTCAGCGGCGCTGGGACGAGAGCCGTCACCCGGAAGGCGATTCGCTGTCTGTTAGAGGCATGTGGGAAGGCGTCCAAAAGGCGGTCATGGTCAAAGCCGAAGGAGCCAGTGCTACAGCCGACGGCGTGACCTACCGGGTAACCGTCCCGGCCTACGATCAGTGGACAACGCAGCTGACAGTCGTTCCTGCAGTCGATGACGCAGATCCTGAACCCCCGGCCTTCGGCCATCCGACCCCGGGCGAAATGTCACCCCGGGACAGACGCCGCCAGGAATGGGTCGCCAAGATTCCGGTGCTGCAGATGGGCAACCGCTCCATCGAACGCACCCTGCGGCGCAGCTACGACGATCTGGGTGCGCTGAGAATCGAGGACCCCGAGCATCCGGAGCGGGTGGTGGTGGCGGCCGGTGCGCCATGGTTCATGACCCTGTTTGGCCGGGACTCGCTGTGGGCCTCTGAAATGGCTTTGCCCGTGGACCCTTCCCTGGCGCTGGGCACGCTGAAGACGCTAGCTGACCGGCAGGGCACTGTGGTGGACCCCATGAGCGAGGAAGAACCGGGCAAGATCCTGCACGAGGTCCGCCTCGGAGTTTCCAGCGGCCTGGCGTTGGGAGGCAAGTCCGCCTACTACGGCAGCGTTGACGCAACCCCGCTGTTCGTGCTTGCCGTGGGAGGTGTGAGCCGCTGGGGATTTGCCAAGGAGACGATTAACGCGCTGCTTCCTAACGCAGACCGGGCGCTGGAATGGATCAGGGACTACGGGGACCGGGATGGCGACGGCTTTGTTGAGTATGAGCGCCTGAACGAACACGGACTGATCAACCAGGGCTGGAAAGACTCTTGGGACGGGATCAACTTCGCCGATGGCCGAATGGCCGAACCTCCGATCGCGCTGTGCGAGGTGCAGGCTTACGTCCACGGGGCCTATGTGGCGCGGGCCTGGATGGCCTATGACGCCGGGGACCTGGACCTCGCGGCGGATCTTCGGGACCGCGCCGCGCGGCTGAAGCAACGCTTCAATGAACAATTCTGGCTTCCGGACAAGGGTTACTACGCCGTGGCCCTGGACCGGGACAAACGGCCGGTGGACGCGTGTGCATCGAATATGGGGCATTGCCTCTGGTTTGGACTCATTGACGAGGATAAGGCGCCGCAGGTTGTGGAGCGGTTGATGTCTCCGGAAATGTTTAGCGGCTGGGGTGTCCGGACGTTGGCCAGCGACATGCGCGCCTACAACCCCGCAAGCTACCACAACGGCTCAGTGTGGCCCCACGACAATGCCCTGATCGTGGCAGGGCTGATGCGGTACGGATTTGTGGAGGAAGCGCAGAAGATTGCCACGGCATTGTTGGAAGCGGCTGAATTCTCTGACGGCCGCCTCCCAGAGTTGTTCTGTGGCTTCAGCCGTGACCAGTTTGCACGGCCTGTCCCCTACCCGACCGCCTGCTCGCCGCAGGCATGGGCCGCCACCACACCGATCCTCCTGGTCACCAGCCTCATGCGCTACGACGCCCACATCTCGCAGGGCGGCCTGTGGCTTGACCCCGCACTCCCTGATTCCTATGGCGACGTCCATATCAGCAACGCCCCGATGGGAGCCGGCAGAATCACCATCGACATCTCCGGGTCCACAGCCTCAGTCCATGGGATGCCCGAAGGCGTTGAAGTTCACCACGGCCAAAGACCGTGGATCACTGACCTCGTGGAACAGGCTAAACTCCGCCCGGAGGATTAGMAGWNADTAAGPLGAGTVTLVEGSSFCISSANGDIQPDLPHGVFYRDTRILSHWTLTVNGLALEPLASELKEPYRALFACRVPRSDGYADSPLIVERLREVGAGILERITIRNYSGAPAECEVALAVGSDFADLFEVKEARVQRRWDESRHPEGDSLSVRGMWEGVQKAVMVKAEGASATADGVTYRVTVPAYDQWTTQLTVVPAVDDADPEPPAFGHPTPGEMSPRDRRRQEWVAKIPVLQMGNRSIERTLRRSYDDLGALRIEDPEHPERVVVAAGAPWFMTLFGRDSLWASEMALPVDPSLALGTLKTLADRQGTVVDPMSEEEPGKILHEVRLGVSSGLALGGKSAYYGSVDATPLFVLAVGGVSRWGFAKETINALLPNADRALEWIRDYGDRDGDGFVEYERLNEHGLINQGWKDSWDGINFADGRMAEPPIALCEVQAYVHGAYVARAWMAYDAGDLDLAADLRDRAARLKQRFNEQFWLPDKGYYAVALDRDKRPVDACASNMGHCLWFGLIDEDKAPQVVERLMSPEMFSGWGVRTLASDMRAYNPASYHNGSVWPHDNALIVAGLMRYGFVEEAQKIATALLEAAEFSDGRLPELFCGFSRDQFARPVPYPTACSPQAWAATTPILLVTSLMRYDAHISQGGLWLDPALPDSYGDVHISNAPMGAGRITIDISGSTASVHGMPEGVEVHHGQRPWITDLVEQAKLRPEDNANANANANA
D1-29_023482295katGCOG0376Catalase-peroxidaseATGACCGATCCGCAGGACCGCCCCCCGGTCCCCACCCCGGGAAGCGCCCAAGGCCTGGACCGCAAGGTTGAGGGTGGGTGCCCGGTTGACCACGACAGCGTCACCTCGCACGGCAGCGAGAGCGAAAATCCGGCGATCGATTCGCCGCAGCCCAAGGCGCACCGGCCCCGGACTGTGGCGGACTGGTGGCCCAACCAGCTGGACCTCTCGGTGCTCCATGCGCACAACCAGGCGGGCAACCCGCTGGGCCCCACCTTCAGGTACCGCGAGGCGTTCCAGCAGCTCGACGTCGAGGCGCTCAAGCAGGACATCGTTCAGGTCCTGACCACCTCGCAGGACTGGTGGCCCGCAGACTTCGGCCACTACGGCGGCCTGATGATCCGGATGAGCTGGCACGCCGCCGGCACCTACCGCGTCCACGATGGCCGCGGCGGTGCAGGGGACGGCAGCCAGCGGTTCGCTCCGCTCAACAGCTGGCCGGACAACGCAAACCTCGACAAGGCCCGCCGGCTCCTGTGGCCGGTGAAGCAGAAATATGGCCAAAAGCTCTCCTGGGCCGACCTGATCGTCCTCGCGGGCAACGTCGCCCTCGAATCGATGGGCTTCAAGACTTTCGGCTTCGCCTTCGGCCGGGAGGACGTGTGGGAGCCCGAGGAGATTTTCTGGGGGCCCGAGGACGCCTGGCTCGGCGACGAGAGGTACATCGGCGAAGGCAAGATGGCGGAGGATGTCGGCTCCACCGAAATGGGCCTGATCTACGTCAACCCCGAGGGGCCGATGGGCAACCCGGACCCCAAACTCGCCGCAGCGTATATACGCGAGACGTTCAAGCGGATGGCGATGAACGACGAGGAGACCTTCGCGCTGATCGCGGGCGGCCACACCTTTGGCAAGACCCACGGGGCCGGTGACGCCGACGCGCACGTAGGTCCCGAGCCGGAGGCCGGGGACCTCGAGGCGCAGGGACTGGGCTGGCTCAGCACGTACGGCAGCGGCAAGGGTGGCGACACGATCACCTCCGGCCTCGAGGTCACGTGGACGGACCGGCCCACCCAGTGGAGCAACCGCTTCCTGGAGATCCTGTTCGAGTACGAGTGGGAGCTTGTCAAGAGCCCCGCCGGCGCCCACCAGTGGGTTGCCAAGGATGCCCCGGAGATCATCCCGGACGCGCACGACCCCGAGAAAAAGCACCGGCCCACCATGCTGACGACGGACCTGTCGCTGCGGTTCGACCCGATCTATGGGGAAATAGGGCGGCGCTTCCTGGCAAACCCGGACGAGTTCGCGCTCGCGTTCGCGAAGGCCTGGTACAAGCTGCTGCACCGCGACATGGGTCCCGTCGGGCCGCACATGCTCGGCCCATGGGTCCCGGAGCCCCAGCTCTGGCAGGACCCTGTCCCGGAGGTAGACCACCAGCTGATCGACGAGCAGGACATCGCCTCGCTCAAGGCTCAGCTCCTGGACTCCGGCCTGTCCGTCTCACAGCTGGCCGGCACGGCCTGGGCCGCCGCATCCACCTTCCGCAAGACCGACAGGCGCGGCGGCGCCAACGGTGCGCGCATCCGGCTGGAACCCCAGCGCAGCTGGGAAATCAACGAAACCGAGCAGCTCTCGACGGCGGTGCAGGCGCTTGAGACGGTGCAGCAGCAGTTCAACTCCGGCCAGGCCGACGGCAAGAACGTCTCGCTGGCGGACCTGATCGTGCTCGGTGGCTGCGCCGCGGTGGAGAAGGCCGCGAACGACGCCGGCTTCGCCATCACCGTGCCGTTCCGGCCTGGCCGGACCGACGCCGCGCAAGAGCAGACCGACGTCGAGTCCTTCCAGTACCTGAAGCCGCGGGCGGACGGGTTCCGCAACTATGTGCGCCCCGGCGAGAAGCTCCAGCCGGAGACCCTCCTGCTGGACAAGGCGTACCTGCTGGACCTCTCGGCGCCGGAGATGACAGCGCTTATCGGCGGCATGCGTGCCCTCGGCACCAACGTTGGCGGTTCCAGCCACGGCGTCCTCACCGACAGGCCGCAGGTCCTGACGAACGATTTCTTCGTTAATCTGCTCTCGCCGGGGACAAAGTGGAAGGCATCCGAAGGCGAGGAGAACGTCTACGAGATCAGCGACGTCGCCACCGGTGAGCTGAAGTGGACCGCCACGCCGGTGGACCTGGTGTTCGGCTCCAATTCACAGCTCCGTGCACTGGCCGAGGTCTATGCGAGTGAGGACGCCAAGGAAAAGTTCGTCAGCGACTTCGTTGCGGCCTGGGTGAAGGTCATGGAGCTGGACCGCTTCGACCTGAACTGAMTDPQDRPPVPTPGSAQGLDRKVEGGCPVDHDSVTSHGSESENPAIDSPQPKAHRPRTVADWWPNQLDLSVLHAHNQAGNPLGPTFRYREAFQQLDVEALKQDIVQVLTTSQDWWPADFGHYGGLMIRMSWHAAGTYRVHDGRGGAGDGSQRFAPLNSWPDNANLDKARRLLWPVKQKYGQKLSWADLIVLAGNVALESMGFKTFGFAFGREDVWEPEEIFWGPEDAWLGDERYIGEGKMAEDVGSTEMGLIYVNPEGPMGNPDPKLAAAYIRETFKRMAMNDEETFALIAGGHTFGKTHGAGDADAHVGPEPEAGDLEAQGLGWLSTYGSGKGGDTITSGLEVTWTDRPTQWSNRFLEILFEYEWELVKSPAGAHQWVAKDAPEIIPDAHDPEKKHRPTMLTTDLSLRFDPIYGEIGRRFLANPDEFALAFAKAWYKLLHRDMGPVGPHMLGPWVPEPQLWQDPVPEVDHQLIDEQDIASLKAQLLDSGLSVSQLAGTAWAAASTFRKTDRRGGANGARIRLEPQRSWEINETEQLSTAVQALETVQQQFNSGQADGKNVSLADLIVLGGCAAVEKAANDAGFAITVPFRPGRTDAAQEQTDVESFQYLKPRADGFRNYVRPGEKLQPETLLLDKAYLLDLSAPEMTALIGGMRALGTNVGGSSHGVLTDRPQVLTNDFFVNLLSPGTKWKASEGEENVYEISDVATGELKWTATPVDLVFGSNSQLRALAEVYASEDAKEKFVSDFVAAWVKVMELDRFDLNPGPT0013165_102DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PHENYLALANINE_DEGRADATION,PGPT0013165-katG-K03782NANA
D1-29_023491329lacG_36-phospho-beta-galactosidaseGTGAGTAGAAATTTGAACTGGTACCAAGACGGGCGCCTGCACTTCGGCCTCGGCATCGAAGATACTTTCATCCCCCAGGAACGTGCAGGGGAACGCTCCCTTGACGAATATGAGCTCACCCAGCACTACAGGTTCTGGCACCAGGACCTGGGCCTGGCCAAAGAAGCCGGCGGCGAATTCCTTCGCTGGGGTATCCCCTGGTACCGGATCAACCCGGCGCCAGGAGTGTGGAAGTGGGAGTGGCTGGACCAGGTCATGGACCGCTTCGCGGAACTTGACCTCAGGCCGCTGGTGGACCTGATGCACTACGGGACACCCACCTGGCTGGACAATCAGTTCCTGAATTCCAGCTACCCGGAACTCGTTGCTGACTACTCCGCCCGGGTCGCGGCCCGCTACTCAGACAGGGTGGTGGACTACACCCCCGTCAACGAGCCGATGATCCACACCCTGTTCTCGGGCAAATTCGGGCATTGGCCACCCTACCTTTCCGGCGACGACGGACTGGTTGCCCTGGTGCGGAACCTGTCCAAAGGCTTTGCACTGGCCCAGCAGAACATGGCGGAAGTCCTTGGAGACCGCGGGATCTTCACCCACGTCGACGCCGGTTTCCGGTTCGTCAGTGACACCGCCGATGGCAGGCACGACGACGAAATCCGGCACCTCAGGGCCCGCTCCTACCTGGTTGAAGACCTGGTTACCGGCAAGGTGACTACCGATCACGAGCTTGCGCCGTGGCTCAGCCGCCACGGGATAACGGATGAAGATCTGAACTGGCACCAGCACAACATCGTGCTGCCCCACGTCATGGGCGTGAACTACTATCCCTTGCACTCCACGGAGCTGCTCGAAGCGGCAACACCCCGGCGGGGAGACATTGCCGATCCCCGCGCTGTCCGCAACGACTGGACAGAGGGACTGGCCGAGGTTCTGACCACTTACGGCCAGAGGTACGGCGCCCCGGTGGCCCTGACGGAAACCTGCCTCACCGGATCCTATGACCGGCGCCTGGAGTGGCTGGATGATTCAGTGGAATGCGTCCAGCAGCTGCGCGCCGCCGGGCAGGACATCGTCGGCTATACCTGGTGGCCGGTCACGGACATGTACGAATGGACCTACCGTTATGGGACCGAACCGCTGGAACACTACCGGCTGACCATGGGACTGTGGGACCTCATCCCGGACGAAATCGGTACCCTGAACCGTGTCAGGAACCCCGTCGCAGACCGCTTCCTGCACCACGCAAGCACAGGCGCCGGCGTCGAATCCACCCAAAACGCTCCTGCTGTCTCCGCCCAGGAAAGAAGACGGTGGCCACTGCACGCCTGAMSRNLNWYQDGRLHFGLGIEDTFIPQERAGERSLDEYELTQHYRFWHQDLGLAKEAGGEFLRWGIPWYRINPAPGVWKWEWLDQVMDRFAELDLRPLVDLMHYGTPTWLDNQFLNSSYPELVADYSARVAARYSDRVVDYTPVNEPMIHTLFSGKFGHWPPYLSGDDGLVALVRNLSKGFALAQQNMAEVLGDRGIFTHVDAGFRFVSDTADGRHDDEIRHLRARSYLVEDLVTGKVTTDHELAPWLSRHGITDEDLNWHQHNIVLPHVMGVNYYPLHSTELLEAATPRRGDIADPRAVRNDWTEGLAEVLTTYGQRYGAPVALTETCLTGSYDRRLEWLDDSVECVQQLRAAGQDIVGYTWWPVTDMYEWTYRYGTEPLEHYRLTMGLWDLIPDEIGTLNRVRNPVADRFLHHASTGAGVESTQNAPAVSAQERRRWPLHAPGPT0019165_2846DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
D1-29_02350885araQ_10COG0395L-arabinose transport system permease protein AraQATGTCCACAACACTCCCTCCACGCCTGGCCCCACGGTCAACCGGTGCCGGCGTTCGCCTGAACAAGCGAGCCAGGCTGAACCGGGCAGTGGTGGTCATGCTGCTGGCCCTGGCCACCGCGGTGATCCTGCTTCCCATTGCGATCATCATCTTCACAGCTTTCAAGCCGGCCGCTGAAGTAAATGCCTTCCCGCCCACCCTGGTTCCCGGACAGTGGACCCTGGATAACTTCGCCAGAATCTTCCAGGAACTCCCCTTTGTGCGTCTGATCGCCAACAGCTTCATCTTCGCCGGCGGCGTCACGCTGTTTGCCCTGCTGTTTGACTCGCTGGCCGCCTACGCCCTGGCAAGGATCGACTTCACGGGCAAGAAGTTCCTGCTGATCGCCATCATCGCCAGCCTGATGATCCCGTTCCAGGCCACCCTCGTGCCGGTCTATCAGCTCGCCAGCGACCTTGGCTGGGTGAATACGTTCGCCGCGCTGATCGTCCCCCGGGCGGCGGACGCCTTCGGGATCTTCTTCCTTCGTCAGTTCTTCCTTTCCCTTCCCCGGGACCTGGACAACGCAGCACGCATCGATGGCGCTTCCGAATGGCGGGTCTACTGGAACGTCATCCTGCCCAACGCCATGCCGGCCATCCTGACCCTGGGCGTCTTCGTGTTCGTGAACAACTGGAACGATCTGCTGTGGCCGCTCATCTTCACCACCGACAGGAACATGGGCACCCTGACCTCCGGACTGACCCTCCTGACCGGCCCGGGCGGCATTGTCCCCTACGGCGTGATGATGGCAGGGGCCCTGGTGGCCATCCTCCCCCTCGCCGCGATCTTTATGTTTGTCCAACGCCGCTTTATTGAAAGCGTCGCCACCACCGGATTGAAGTGAMSTTLPPRLAPRSTGAGVRLNKRARLNRAVVVMLLALATAVILLPIAIIIFTAFKPAAEVNAFPPTLVPGQWTLDNFARIFQELPFVRLIANSFIFAGGVTLFALLFDSLAAYALARIDFTGKKFLLIAIIASLMIPFQATLVPVYQLASDLGWVNTFAALIVPRAADAFGIFFLRQFFLSLPRDLDNAARIDGASEWRVYWNVILPNAMPAILTLGVFVFVNNWNDLLWPLIFTTDRNMGTLTSGLTLLTGPGGIVPYGVMMAGALVAILPLAAIFMFVQRRFIESVATTGLKPGPT0016540_2666DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_023511005lacF_8Lactose transport system permease protein LacFATGCGGCGCCTCCGGGCGCCGCATCCTTCGAAAGAAGCTCCCATGAGCACAACAGTGCACAAGAAACCGGCAGAAACCCGGCGGTACCGCGCTCCAGCGCCACTCGGCGGACGCCGGAACCCCGCCATCGGCCAGCGCCGCAAAAACTTCCAGGCCCTCGCGTTCCTTCTCCCGGCCCTCATAGTCCTGGGGGCCTTCACAGCCTGGCCCATGTTCTCCGCTCTCCGGCTGTCCTTTACCGACGCCAGCGGCTTTGGTAAAGAGGAATGGGTGGGCTTGGAGAACTACGCCCGCATCTTCACCGATCCCGTGATCATCAACGCCGTGGTCAACACAGCGCTCTACGCGCTGTTGTTTACACCGACGGCGGTGGCCCTGGCCTTGGCCCTGGCCCTGCTGCTGAATGATCCGAGACTGCCGTTCAGGGGCTTTTTCCGCACCGCCTTGTTCCTGCCGTTCATCATCAGCCTCGCCGTTGCAGCCATCGCCTGGGCGTACCTGATCGACCCACAGGTCGGGCTGCTGAACTACTGGCTGGGCAGTGCAGGGATCCGGATCGGCAATGTCCTGCAGGATCCCGTTCTGGCCATGCCGGCCGTCGCGTTCGTCGCCGTTTGGAAAAGCTTTGGCTTCTACATGGTGATCTTCCTGGCCGGACTCCAGGAAATCCCCGGAAGCCTCTATGAGGCAGCCCGCGTCGACGGCGCCGGGCCGTGGACGCGCTTCCGCCATGTGACCATGCCCATGCTCTCCAACACCACCGCTTTCGTCCTCATCTTTGCCCTCATCGCCGCATTGCAGGCCTTCGACCAGATTTACGTGATGACCGGCGGCGGCCCCTACGGCCATACCGAGACCGTCGTCATGCAGATCTACACGTCCGGTTTCCGCAAACTGGACGTCGGTTTCGCCTCCGCGCTGTCCTACGTACTGCTCGCCGCCACCTTGCTGCTGAGCGTTATCCAGTTCGTCTTCTTCGGAAAACGCGAACGGGAAGGTGACTGAMRRLRAPHPSKEAPMSTTVHKKPAETRRYRAPAPLGGRRNPAIGQRRKNFQALAFLLPALIVLGAFTAWPMFSALRLSFTDASGFGKEEWVGLENYARIFTDPVIINAVVNTALYALLFTPTAVALALALALLLNDPRLPFRGFFRTALFLPFIISLAVAAIAWAYLIDPQVGLLNYWLGSAGIRIGNVLQDPVLAMPAVAFVAVWKSFGFYMVIFLAGLQEIPGSLYEAARVDGAGPWTRFRHVTMPMLSNTTAFVLIFALIAALQAFDQIYVMTGGGPYGHTETVVMQIYTSGFRKLDVGFASALSYVLLAATLLLSVIQFVFFGKREREGDPGPT0016535_3480DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_023521362cycBCOG2182Cyclodextrin-binding proteinATGCTTGATACAACGTTTACCTACAACGTTTACCCAACAGTTGTATTCAGGTTCAGGGACACGGAAGTCCCACTCATTGAAAGGGCCGACATGAAAAGGTCGCTCACACTTCTTACTGCGGTTGCTGCCGCGTCGCTGGTCCTGACCTCCTGCTCCGGAGCAGGGGCAGGCTCGGACAAGCAGGAAGGCTCCAAGGCGGAGCTGACGTTCTGGCACGGCTACACCGAGGCGGACGGGAAGGTGCTGAATAAGATCGTGGAGGATTTCAACGCCTCCCAGGCCGAGGTCACCATCACCGTCCAGACCAATCCCTGGTCCGTCATCGACGACACCTTGCTGCCGGCGCTGTCCTCCGGAAATGGTCCGGACATCGTGGCCATGCCTGCTGAGCGCCTCCCCGTGTACGCGGACAAAGGCGCGTTCGTCGAACTCGACGACCTCTACAAAGACCCCAACAGCAATCTGGACAAGCTGGTCCCCGCCGCCGCAGACATGGAGACAGTGAACGGACACAAGTACGGCGTCCCCTCCGGCTTCGTGCCCCTGGCAATGTTCTACAACAAGGACCTCTTTGCCAAGGCCGGCATCACTTCCCCTCCCGCCACCTGGGATGAATGGATCGCAGCGGCCAAGAAACTTACGGTGGACGCCAACGGGGACGGCACCCCCGAGCAGTTCGGGCTCGGCCTTCCGGACCACGCCACCGTGGCGAACGGCGTCTGGCCCTCCCTCTTCTACGGAAATGGCGGCGACATCGTCAAGGACGGCAAGGCCGTCGTCGACTCCCCCGAGAACGCCGAGACCCTGAAGACCTGGGTGGAAGCCATCAGGAATGACAAGATCTCCCCCACCGGTTTGGACGGGATTGCCGGCGACAAGCTGTTCAGCAGCGGCAAGGCCGCCATGTACCTCGGAGGGCCGTGGATGTCCTCCATCGCCAAGGAAAACAACATCGATTACGGCATTGCCGCTGTCCCCGCCGGCCCGGAAGACCAGGCGGCGTCAGCGATCGGGGTCTCCATGGCCATCACTGAGCAGAAGGACGACTCCAAAGCCGCTGCCGCGAAGAAGTTCTTCAGCTACTTCCTGCAGAAGGAACAGGCCACGGCATGGTCCCTGGGTTCGGGGTGGCCGCCGCTGCGCTCGGACATTCCTGCCGCTGATGTTGCCGCGAATCCGGTGGTGGAAGCCCTGACAAAGCAGTCCGAGTTCGGCCGGCCCCTTCTGCCCGGCGTCGTGAACAGCACCGATGTCCTCACAGCAATTGACAAGCTCACCCAGCGGGCTGTGGCCGGTGAAAACATCCAGGACCTGCTGAAGGAGACACAGGGCTCTATCCAGAAGACCCTCGACGCCAAGTAAMLDTTFTYNVYPTVVFRFRDTEVPLIERADMKRSLTLLTAVAAASLVLTSCSGAGAGSDKQEGSKAELTFWHGYTEADGKVLNKIVEDFNASQAEVTITVQTNPWSVIDDTLLPALSSGNGPDIVAMPAERLPVYADKGAFVELDDLYKDPNSNLDKLVPAAADMETVNGHKYGVPSGFVPLAMFYNKDLFAKAGITSPPATWDEWIAAAKKLTVDANGDGTPEQFGLGLPDHATVANGVWPSLFYGNGGDIVKDGKAVVDSPENAETLKTWVEAIRNDKISPTGLDGIAGDKLFSSGKAAMYLGGPWMSSIAKENNIDYGIAAVPAGPEDQAASAIGVSMAITEQKDDSKAAAAKKFFSYFLQKEQATAWSLGSGWPPLRSDIPAADVAANPVVEALTKQSEFGRPLLPGVVNSTDVLTAIDKLTQRAVAGENIQDLLKETQGSIQKTLDAKPGPT0016545_9007DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_023531047ccpA_8COG1609Catabolite control protein AGTGTCGGTCACGATCAGGGATGTTGCACGGGTCAGCGGCTTTTCCATCAAGACGGTGTCCAATGTCATCAACGGGCATCCGCAGCTACGGCCCGAGACCCGGCAGCGGGTGGAAGATGCCATCGAGCAGCTCGGCTACCGTCCCAATCTGTCTGCACGGAACCTGAGGTCCGGCCGTTCCGGCGTCATCGGACTAATCATTCCTGACCTCACCACCGCCTATTTTGCCGAACTCGCAGACGCGGTCATGCGTGCGGCCAAGGCCAACGGTCTTGCGGTGCTGATCGAACCTATCGGGAGCGGCCGCGAAAACGAACTCGCAGCGCTTCGGGGCCAGCACAGGCACATGGTTGATGGGGTTATCTACAGCTCCCTCACGCTGGGTGCGGCGGATGCCGATCTCCTGAAGGCGGTTGACACGCCGCTGGTGGTTCTCGGAGATACATCGTTCGACGGCCAGGTGGACCGCATCACGATGGCCAACATCGCTGGTGCGCGCGCAGCAACAGATCATTTGCTGGCGGGAGGCCGGCGTCGCGTCCTGGCGCTTGCTGCCCATGAAGGCGACATCGTCGCTTCAGCTGAGCTCCGTTTGACCGGTTACCGGGAGGCCATCGAGGCCGCTGGCCTGGCGTTTGATCCCGAACTGGTCTGCTACGCAGAGTCCTGGCACCGGCGCGGAGGTGCCGAAGCAATGACGAGGTTGCTGAGTGACGGCGTATCGTTCGACGGCGTCTTCGCCTTTAGCGACACCCTGGCACTTGGCGCCATGCGTGTGCTCCAGGAATCAGGCCTGCGCATCCCCCAGGATGTTGCCATTGTTGGCTTCGATGACCTGGATGAAACCCGGTATACCCTGCCGGCCCTTTCAACCGTGAACCCGCGCAGGGACGAGATTGCCACGGCCGCCGTGGAGACCCTCCTTCGCCGGATCGCAGGCGGGCCGGAGCTGGAAGCAACCGAAATCGAGACGGGCTTCTCCCTCGAAATCCGCGAGTCCTCAGGCGGATCCGGGCACAAGGCTTCCGCCGCGACGAACGCCGCCTGAMSVTIRDVARVSGFSIKTVSNVINGHPQLRPETRQRVEDAIEQLGYRPNLSARNLRSGRSGVIGLIIPDLTTAYFAELADAVMRAAKANGLAVLIEPIGSGRENELAALRGQHRHMVDGVIYSSLTLGAADADLLKAVDTPLVVLGDTSFDGQVDRITMANIAGARAATDHLLAGGRRRVLALAAHEGDIVASAELRLTGYREAIEAAGLAFDPELVCYAESWHRRGGAEAMTRLLSDGVSFDGVFAFSDTLALGAMRVLQESGLRIPQDVAIVGFDDLDETRYTLPALSTVNPRRDEIATAAVETLLRRIAGGPELEATEIETGFSLEIRESSGGSGHKASAATNAAPGPT0017992_13697DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_023541371mdtHMultidrug resistance protein MdtHATGAGCCCGACGGCGGCGCGGAAGCCGCGCCCGAAACTCACCCGGCGACGTCCTGCCAGGGTTGAACCTGCGCCGCAGCTGCTGCTGGCCAGCCAGTTAATCTTCAATATCGGCTTCTATGCAGTAGTGCCGTTCCTCGCAGTAGCCATGCGGAACGACTTCGGGATGGGCGCGATGGCCATCGGCATCGTCCTTGGCGCGCGTACCTTCGCCCAGCAGGGTATGTTCCTGTTCGGCGGGGCACTGGCCGACCGGTGGGGAGCGCGGCAGTCGATGATCACGGGCTGCCTGGTCCGGATTGCCGGCTTTCTGTTGCTCGTTTGGGCCACGGACTTTCCGCTGTTCCTGCTCGGTGCCATCATCACGGGTATCGGCGGGGCACTGTTTTCGCCTGCCCTGCAAAGCCTGGTGGCCGCCGCCGCCGAGGGCGGCACCAGCCGGGCGGACGGCCAGGAACCGGGAACCGGGAACGACCGCGCGAACAGCGGCGCCGCACCGCAGAACAACAGAGCCACGCTCTTCGCCTTGCTGGTAATCTGCGGCGAAGTAGGCGTGGTTGTCGGGCCGCTGCTGGGATCCCTTTTGCTCCATACCGGCTTTGACACTTCCCTGCTGGCAGGGTCCGCTGTCTTTGCCGTCATGGCCCTGGTCTTCTGGCTCTTCCTGCCCAAGGCCCCTGCCCAGGCGCCCAAAACGTCAGCGGACCTGACGGGCCAGGCGCCGCCGTCGGGCCTTTGGTCCTGCCTCAAAGACAAAAGGTTCATCGGGTTCGCCGCCTTCTACAGCGTCAACCTCCTGGCCACCAACCAGCTCTATTTCGGGCTTCCGGTAGAGCTGGAACGCAGCGGGGCAGGGGTCCAGGCCCTGGCAGTCGTCTTCGCCTACGCGTCCGTCCTGACCATCACGCTTCAATGGCCCATAGCCCGGCTCATGCGCAAAGCCGGGCCGAAAACCGCGCTTCCCCTGGGCTTTGCCCTGCAGTCCATGGGCTTCGCCTCCCTGGGAGTCCTGGCAGTGGTCCCTCCGCCCAGCGAACTTCCCATCCTGCCTGCCCTCCTGCTGGTGACAGGCCTCGCCCTAGGCAACATGTGCGTCACACCCATGGCGATGGGACTGGTGCTGGAGTTCTCCGCCGGACGCCCCACCGGCGCCTACTACGGCCTGCTCGCCAGCGCCGGAGGGCTCGCCGTTGTGATCGGCAATGCAGCCCTGGCCCCGCTGTACGAACTCGCCTACACGCCGTCGGGCACTGCACTCGCTCCATGGCTCCTGCTGTCCCTGCTGGGGGCGATAACGGCCACCTTCATCCGCCGGTTCGTCCCCAAAACGCCCGCCAGGGTAAGCGTCCTGCGGGAAGCCCAAAATGCGTGAMSPTAARKPRPKLTRRRPARVEPAPQLLLASQLIFNIGFYAVVPFLAVAMRNDFGMGAMAIGIVLGARTFAQQGMFLFGGALADRWGARQSMITGCLVRIAGFLLLVWATDFPLFLLGAIITGIGGALFSPALQSLVAAAAEGGTSRADGQEPGTGNDRANSGAAPQNNRATLFALLVICGEVGVVVGPLLGSLLLHTGFDTSLLAGSAVFAVMALVFWLFLPKAPAQAPKTSADLTGQAPPSGLWSCLKDKRFIGFAAFYSVNLLATNQLYFGLPVELERSGAGVQALAVVFAYASVLTITLQWPIARLMRKAGPKTALPLGFALQSMGFASLGVLAVVPPPSELPILPALLLVTGLALGNMCVTPMAMGLVLEFSAGRPTGAYYGLLASAGGLAVVIGNAALAPLYELAYTPSGTALAPWLLLSLLGAITATFIRRFVPKTPARVSVLREAQNANANANANANA
D1-29_02355864hypothetical proteinATGAGGGCCAGAAAATTTCTCACACCCGAGTTCTGGCCCCAGGCTGAAAAGCTCTGCTACTACGTTCTCCTCCCCGCCCTGTTTGTCCATGGGACCGCTAACGCTGAACTCTCCCACCTGCCGATCGGTGCGATGGCCCCCGTACTGGCCGGATCAGTCATCCTGACTGCCATCGCACTGGTCCTGGTGCAGCAACGGCTCAGCTTCAACGGGCCAGCCTTCACCTCAGTGGTGCAGGGAAGCATCCGGTTCAACAACTACCTGGGACTTTCCATTGCCGTGGTCCTCTACGGGGAACAGGGGGTGGCCCTGGCAGCCGTCACGAATGCAATTCTCGTCCCGGTGGTCAATGTGCTGTGCACTATCGCCTTTGCCCGCTATGGCAGCAAACCGCTCTCGATCACGGGAACACTCCGGAGCCTGGGTACCAACCCGCTGATCCTTGCCTGTGCGGCCGGCTTGGTCCTCAACCTCTCAGGCGCCGGATTACCGGCCGGGATCCAGGACCTGGTCCGTGCACTGGGCAGCGCTTCGCTGCCCGTGGGCCTGCTCTGTGTCGGAGCGGCCCTCAAAATCAGCAGTATCGGACGCAATTTTCCACCCATTGCCTACGCCTCGGCCGTCAAATTCCTCGTCCTGCCCGGAATCGCCGCAGCAGCCTGCGTTTTCACCGGGCTGGCCGGGCCGCCGGCCGGCATCATCGTCCTGTTCCTGGCGCTCCCTACCGCGTCCTCTGCCTACGTCATGGCCCAGGCCCTCGGCGGGGACTCCACCCTCATGGCATCGACCGTCACCCTGCAAACGATCGCCGGCGTTGTCTACCTGCCCGGCCTGCTGTTACTCATCACGTCCTGCACGGGATAGMRARKFLTPEFWPQAEKLCYYVLLPALFVHGTANAELSHLPIGAMAPVLAGSVILTAIALVLVQQRLSFNGPAFTSVVQGSIRFNNYLGLSIAVVLYGEQGVALAAVTNAILVPVVNVLCTIAFARYGSKPLSITGTLRSLGTNPLILACAAGLVLNLSGAGLPAGIQDLVRALGSASLPVGLLCVGAALKISSIGRNFPPIAYASAVKFLVLPGIAAAACVFTGLAGPPAGIIVLFLALPTASSAYVMAQALGGDSTLMASTVTLQTIAGVVYLPGLLLLITSCTGPGPT0001720_2148DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936NANA
D1-29_02356567hypothetical proteinATGACGTTCAAGCATTACAATGAGGGGATGGTCTACAATCACGAAAACCAGGTGGGAGCTCAATTGGCAGCGGCCCTGGTGAATGCCCCGGAAGCTCAGGACCTGGAGGCTGTGCTGGAAGAATTCAGCATTCGGGAGCCCCGGCTGGATGACACGGCTGAACGAGGCCTGCGGGTATGGGCCGAGAAACTGAAGCCAACCTTTGCAGCCGAATCCGTGGAGGAACGATGTACCGCCATCAATGCGCTCCTCGACAGCGCCGCCGGGAGAGTGTCCCTCACCACCCATGACGGCTCGCGGCCGCACCTCCACCTTTTCCCCGAAGGTGATGACGTCCTGTCCCGGGTCAAGGCTGTCACGGCCGGCGGGCTCGCATTGTTTATTGCCTGGAGCGGTGGCGAACGGATCGGCATGTGCGCCCGGCCGAGCTGTTTCAACGCATTTGTTGACAACTCAAAGGCAGGCAGGCAGCGGTACTGCAGCGCCCGATGTGGAAACACCGACGCCGTCGCACGGCACCGTCAGCTGCAAAGGAAACCACGTGTCCGTGCCGATGCGGCATGGTGAMTFKHYNEGMVYNHENQVGAQLAAALVNAPEAQDLEAVLEEFSIREPRLDDTAERGLRVWAEKLKPTFAAESVEERCTAINALLDSAAGRVSLTTHDGSRPHLHLFPEGDDVLSRVKAVTAGGLALFIAWSGGERIGMCARPSCFNAFVDNSKAGRQRYCSARCGNTDAVARHRQLQRKPRVRADAAWNANANANANA
D1-29_02357573puuR_2HTH-type transcriptional regulator PuuRATGGCCAGCGAAACCGACCTTACTCAATCCCAGCTAGGTGAACGGGTCCTCCAGTTTCGCTCACTTCGGCGCATGTCGCTCAAGGAACTGGGCGAAGCGAGCGGGACCACCGCCGGCTTTCTTAGCCAGCTTGAACGTGGCCTGACAAATGCCAGCATCGGTGTCCTGCGGCGGATCGCGGCTGCTTTGGGCATGACCCTGGCGGACCTTTTCGAGGAACTGCCTGCGGGCTCTCCCCGTCTGTTGCGCCGCGAAGTCCGGCCGGAACTGCAGACTAACGCGGGGATCCACAAATTCCTTATCTCCCAGCGGCCGCTGAGGCACCTGGAAGTTTACGCGGGAGAGTTTGAGCCGGGATCATCAACCGGGGACGAGCCGTATACGCACGGTGACGCGCAGGAAATCCTTTATGTGACAGCCGGCGAAATTGTCATCGAGCTGGATGGGGAACCATACGCCATGCAGCAGGGCGACAGCATGGATTACATGTCCTCCTTGCCGCACAGAATCATCAACAACAGCAGCAAGCCTGCTGAGGTTCTTTGGATCGTGAGCCCACCAACAAGCATCTAGMASETDLTQSQLGERVLQFRSLRRMSLKELGEASGTTAGFLSQLERGLTNASIGVLRRIAAALGMTLADLFEELPAGSPRLLRREVRPELQTNAGIHKFLISQRPLRHLEVYAGEFEPGSSTGDEPYTHGDAQEILYVTAGEIVIELDGEPYAMQQGDSMDYMSSLPHRIINNSSKPAEVLWIVSPPTSINANANANANA
D1-29_023581512bauC_4COG1012Putative 3-oxopropanoate dehydrogenaseGTGACCCTGTCCACGACGACTACGCTGATCAACCATTTCATCAACGGTGCGGAAAGCGCGGGTGAAGGAGACCGCACGCGGCCGGTGTTCAACCCGGCGACGGGTGCGGTGTCGGGGGAGCTGCGGCTGGCGAGCCGGGCGGATCTTGATGCCACGGTGGCCGCCGCCCGTGCTGCCGCCGATTCCTGGGGTGACATCTCCCTGGCCAAACGCACGGCGGTGCTGTTCAGGTTCCGCGAACTCGTCGCCTCCCATGTGGATGAGCTCGCGGCGCTGATCACCGCCGAGCACGGCAAGGTCCTCTCCGATGCCAAGGGCGAGATCGCCCGCGGCCTGGAGGTGGTGGAGTTCGCCTGCGGCATCCCCACGCTGCTCAAGGGCGACTACTCGGACCAGGTCTCCACCGGCATCGATGTGTTCTCCTTCCGCGAGCCGCTCGGTGTGGTCGCAGGGATCACCCCGTTCAACTTTCCGGTGATGGTGCCGCTGTGGATGGCGCCGATGGCGATCGCCACCGGCAACGCGTTCATCCTCAAGCCCTCCGAACGCGATCCGTCCGCGTCCATGCTGCTGGCTAAGCTGTGGAAGGAGGCAGGTCTGCCGGATGGGGTGTTCCAGGTCCTGCACGGCGGCAAGGAAACCGTCGACGGGCTCCTGACCCACCCGGACGTGGACGGGATCTCCTTCGTCGGGTCCACCCCGATCGCCCAGTACGTCCAGGAGACCGCCACCAAGCACGGCAAACGCGTCCAGGCCCTGGGCGGGGCGAAGAACCACGCCATCGTCATGCCCGACGCTGACCTGGACAACGCCGCAGACCACCTCGCCGCCGCGGCGTTCGGCTCCGCCGGGGAACGCTGCATGGCCATCTCGGTCGCCGTCGCCGTCGGGGACGCAGCCGACCTTTTGGTCAAGAAGGTCGAAGAGCGCGCCCTGGCGGTGAAGGTGGACAACGGCACCGCGCCCGGCGCCGAGATGGGCCCGGTCATCACGCCCGAGTCCCGGGAACGGATCGTGCGGATCGTCACCGAAGCCGAAGCCGCGGGCGCGGCCATGGTCGTGGATGGCCGGGATCTCGTCGTCGAAGGCCATGAGGACGGCTTCTGGGTCGGACCCACCGTGATCGACCACGTCAAAACCGAAATGACCGCCTACACCGAGGAAATCTTCGGACCGGTCCTCGTCGTTGTCCGCGTTCAGGACCTGGAGGAGGGGATCAGGCTGATCAACGCCAACCCGTACGGCAACGGCACCGCGATCTTCACCTCCTCCGGCGCGCACGCCAGGAAGTTCCAGCGCTCCGTGGACGTCGGAATGATCGGCATCAACGTCCCGCTGCCCGTCCCCGTCGCGTACCACTCGTTCGGCGGCTGGAAAGCCTCGCTCTTCGGGGACAAGCACATCTACGGCCCCGAAGGCGTCTCCTTCTACACCCGCGGCAAAGTGGTCACCTCCCGCTGGCCAGAACCCACCCAAGCCTCCGGCGCCTCCTACAACTTCCCCTCCAACTAGMTLSTTTTLINHFINGAESAGEGDRTRPVFNPATGAVSGELRLASRADLDATVAAARAAADSWGDISLAKRTAVLFRFRELVASHVDELAALITAEHGKVLSDAKGEIARGLEVVEFACGIPTLLKGDYSDQVSTGIDVFSFREPLGVVAGITPFNFPVMVPLWMAPMAIATGNAFILKPSERDPSASMLLAKLWKEAGLPDGVFQVLHGGKETVDGLLTHPDVDGISFVGSTPIAQYVQETATKHGKRVQALGGAKNHAIVMPDADLDNAADHLAAAAFGSAGERCMAISVAVAVGDAADLLVKKVEERALAVKVDNGTAPGAEMGPVITPESRERIVRIVTEAEAAGAAMVVDGRDLVVEGHEDGFWVGPTVIDHVKTEMTAYTEEIFGPVLVVVRVQDLEEGIRLINANPYGNGTAIFTSSGAHARKFQRSVDVGMIGINVPLPVPVAYHSFGGWKASLFGDKHIYGPEGVSFYTRGKVVTSRWPEPTQASGASYNFPSNPGPT0002295_1526DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-29_02359996Zinc-type alcohol dehydrogenase-like proteinATGAAAGCGTTCGTCATCAGGAAGTACAAAGGCCCCCTCCAGGAAGCGGATGTCCCGGAGCCCACCCTGGGGGAGCACGATGTGCTGGTGCAGGTGCAGGCAGCAGGTTTGAACGTGCTTGATGAGAAGATCCGCGCGGGTGAGTTCAGGCAGATCCTGCCGTACAAGCTTCCTTTGATTCCGGGCAACGATGTGGCCGGGACCGTCATCCGTGTCGGCTCGAAAGTCCGTTCATTCACCGCCGGCGATGAGGTTTACGCACGGCCCCACCAGGACCGGATCGGCACCTTCGCCGAGCGGATCGCCGTCGCGGAGGCTGATCTGGCGCTCAAGCCGGAATCGATCAGCATGGAGGAGGCCGGCTCCCTGCCCCTGGTGGCGCTGACCGCGTGGCAAGCACTCGTTGAGCGCGGCCAGGTGAAGCCCGGACACAAGGTCCTGATCCACGCCGGCGCGGGCGGAGTGGGGTCCATCGCCATCCAGCTGGCCAAGCATCTCGGTGCCACAGTGGCCACCACAGCCAGCGCGGCCAATCTGGACTTCGCGCGGGAACTCGGCGCTGACACTGTCATCGATTACCGCAGCCAGGACTTCGAACAGCTCCTGAGCGGCTATGACCTGGTGCTGGACAGCCTCGGCGGAGAAAACCTTCAGAAGTCCCTGCGCGTGCTCAAGCCCGGCGGGAAGGCGATCGGGATCACCGGGCCTCCCGACCCGGCGTTTGCCCGTGAGGCAGGCCTGAATCCTGTGCTCCGCCTTGCCATCGCTGCCCTGAGCGCAGGCATCCGGCGTCAGGCCAGGAAGCTGGGCGTCAGCTACGAGTTCCTGTTCATGCGCGCCAGCGGCGACCAGTTGCGACTGATTACCGCATTGATCGACGACGGCACCTTGCGTCCCGTCGTCGGAAGGGTCTTCCCCTTCGACCGGACCATTGAAGCCCTTCATGGCCTGGAAAAGGGCGGCATCCGCGGCAAGGCCGTTATCAGCATCCCCTAAMKAFVIRKYKGPLQEADVPEPTLGEHDVLVQVQAAGLNVLDEKIRAGEFRQILPYKLPLIPGNDVAGTVIRVGSKVRSFTAGDEVYARPHQDRIGTFAERIAVAEADLALKPESISMEEAGSLPLVALTAWQALVERGQVKPGHKVLIHAGAGGVGSIAIQLAKHLGATVATTASAANLDFARELGADTVIDYRSQDFEQLLSGYDLVLDSLGGENLQKSLRVLKPGGKAIGITGPPDPAFAREAGLNPVLRLAIAALSAGIRRQARKLGVSYEFLFMRASGDQLRLITALIDDGTLRPVVGRVFPFDRTIEALHGLEKGGIRGKAVISIPPGPT0006375_1232DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_02360867cpoNon-heme chloroperoxidaseATGAATGCGCAGGAAACCCCTCAAGAGTCCGTCATCACCTCCTACGCCAAAGCGCCGGCCCGCACCATCAACGCCGGCGGCGTGAGCTACGCCTACCGCGAACTCGGGCCCAAGGGCGGCATTCCTGTCATCTTTTTCGTCCACCTCGCGGCGACCCTGGATAACTGGGACCCCCGCATCATCGATCCCATAGCCAAGAATCATCACGTGGTCACGTTCAACAACCAGGGTGTCGGCGCCTCCACCGGACAGGTGCCCGACAGCATCGAGGCAATGGCGGATGACGCCTACACGTTCATCAAAGCCCTCGGACACAAGAAGATCGATATCTTCTCCTTCTCCCTCGGCGGCATGGTGGCCCAGGCCCTGGTCCTCAAACACCCTGGCCTCGTCCGCAAGATCGTCCTCACCGGCACCGGCCCCAAGGGCGGAAAGGACATGGACAAGGTCATCGGGACCACCTACTTCGACATCCTCCGCGCAGCCCTGACCCGGGCCGACGCCAAGGAATTCCTCTTCTTCAACCGTGACGCCGAAGGCAAGCGGGCCGCGAAAGCATTTGTGAAACGGCTGGCGGAGCGCACCGAGCACCGCGACGCCCCCATCAAGGTCAAGGCCTTCCAGACCCAGCTCAAAGCGATCAGCAAATGGGGGCACGGGACGCCCGCTGACCTGTCCACGATCACCCAGCCCACCCTGATCGCCAACGGCGATAACGACCGCATGGTCCCCTCGGTTCTCTCGGAGGACCTGCACCGCCGCATTACAGGTTCCGAGCTGATCATCTACCCCGGCTCGGGCCACGGCGGCATCTTCCAGTTCCATGAGAAGTTCGCCCCCGTCGCGGTCGAGTTCCTCGCCCGCTGAMNAQETPQESVITSYAKAPARTINAGGVSYAYRELGPKGGIPVIFFVHLAATLDNWDPRIIDPIAKNHHVVTFNNQGVGASTGQVPDSIEAMADDAYTFIKALGHKKIDIFSFSLGGMVAQALVLKHPGLVRKIVLTGTGPKGGKDMDKVIGTTYFDILRAALTRADAKEFLFFNRDAEGKRAAKAFVKRLAERTEHRDAPIKVKAFQTQLKAISKWGHGTPADLSTITQPTLIANGDNDRMVPSVLSEDLHRRITGSELIIYPGSGHGGIFQFHEKFAPVAVEFLARNANANANANA
D1-29_02361831hypothetical proteinATGCACGCGAGACTTTTGTTTTTGACTATGCTCGCCATTGCGCTGGCGGGTTGTCAGTACATCGGCGAGGACGAAAAGCTAGTCAACTCGCCGACCCCGAGCGCAACGGCGCCGCCGCGGTCTGTCCAAGACAACATTGATGACGTGGCGCGTTTGCTTGAGGTATCCGAGGACGCTCCGGGAATGCCTTCGGAAGCAAAGCCCGCCGGCGAGCTGACGGTGGATCTCGCTCCGGGAGATTATGAGATCAAGGCTGCCTGTGCCGGCGTGCTTACGGCCAACCTCACCCTGGTGAAGGCCTGGGGCCCGCCGGAACCCATGGAATATCCGTGCGACACCACCCCCGTGAAGCGATTCGAGTCGCACGCCGGTGGTCCCCTCACGATCCGTGCGGAGCCGTTGACCGGCGACGCGGCTGTTGCCGGCGTAACCGACGCGGCTGTTGCCGGCGTAACCGTGGGGCCCAACGGTGACCCGCAGGGTCCAAGGTCGCTGGACCTGTTGAAGTGGTCACTACAGCAGCTGAAACCAGAGTTGCCCGGTGAAATATTCGGGGCCGGGGAGTCGAATACAGATGTCAGCTACGGAAGTGGAAGGTCGGCTGCACAGGGGACGTACGAACTGCATTTCCTCTGCGAAGGACCATCCGAGGCCGAGCTTTCAGTGTCGGCCTCGGATGGCGCCGAAGTTTTCGGGCCCGTACAGGTCTCATGCGATGGGGGCGTTTATAAGGCAACCGTGCAGCTGGCCACGCAAGGAGCCGACGTCAAGGTGACTCCCGCTGCTGGTCCAGACGTCCGCTACGCCTTCAGGCTTGTTCCCTCCACCTAGMHARLLFLTMLAIALAGCQYIGEDEKLVNSPTPSATAPPRSVQDNIDDVARLLEVSEDAPGMPSEAKPAGELTVDLAPGDYEIKAACAGVLTANLTLVKAWGPPEPMEYPCDTTPVKRFESHAGGPLTIRAEPLTGDAAVAGVTDAAVAGVTVGPNGDPQGPRSLDLLKWSLQQLKPELPGEIFGAGESNTDVSYGSGRSAAQGTYELHFLCEGPSEAELSVSASDGAEVFGPVQVSCDGGVYKATVQLATQGADVKVTPAAGPDVRYAFRLVPSTNANANANANA
D1-29_02362723putative oxidoreductaseATGCCCTCACTCAATGGAGCAGTTGTCCTCGTCACCGGAGCAAACGGCGGCATCGGAACCCACTTTGTGCACGATGCCCTCGCCCGAGGCGCCAGCAAGGTCTACGCCACCGCCCGCACGCCCCGAACCTGGGAGGACGAGCGCATCATCCCGCTCACCCTCGACGTCACCGATTCCGCCTCCATCCAGGCAGCCGTCTTGGCAGCCGGCGACGTCACGGTGCTGATTAACAATGCCGGAGCCAACGTCGCCAGCCCCGGGATCCTCAGCCACACCGATGAGGAAATCCACACCAACGTCGAGACCAACTTCCTCGGCCCGCTGTTCCTTGCCCGCGCCTTCGCGCCGATCCTCTCAGCGAAGGATGAATCGGCGATCATCAACATCCACTCCGCACTGAGCTGGTACGCCGTCGCCGGAATCTACAGCGCCACCAAGGCAGCCCTCTGGTCGGCCACCAACTCCCTGCGCCTCGAACTCGCGCCCGCGGGAGTCCATGTGGTGGGAGTTCACGTCGGGTGGGTGGACACTGCCATGGCTGCGCACGCCACCGATCCCAAGATGGACCCGGCCGACCTGGTCCGCACCGTCCTGGATGCCGTCGAAGCCGGCGACTACGAAGTTCTCGCGGACGAAACATCCGTCCAGCTCAAGGCCGGGCTCAGCGCTCCCATCGAGGCACTCTACCCGGAACTGCAGGGCACGAAGACGGGGAGCCAGTGAMPSLNGAVVLVTGANGGIGTHFVHDALARGASKVYATARTPRTWEDERIIPLTLDVTDSASIQAAVLAAGDVTVLINNAGANVASPGILSHTDEEIHTNVETNFLGPLFLARAFAPILSAKDESAIINIHSALSWYAVAGIYSATKAALWSATNSLRLELAPAGVHVVGVHVGWVDTAMAAHATDPKMDPADLVRTVLDAVEAGDYEVLADETSVQLKAGLSAPIEALYPELQGTKTGSQNANANANANA
D1-29_02363606hypothetical proteinATGTCTGTCGCCCCTCAATCGGTTGGCCGGCGTGAGCGGAACAAACAGGAGAAGCTGGACCGCATCACGGCCGCCGCACTGGAGCTCTTTTCCCAGCATGGTGTCGATGACGTCACCACCCAGCAGATTGCCGACAAGGCCGACATTGGCACCGGAACCCTGTTCCTGTACGCCAAGACCAAGGCTGAACTGCTCCTGCTGGTTCAGAACTCCGCCTACGCCGAAGCGCTGGTGAGTGGCAAAAAGGCCGCCGAGGGGACCGCCGATGTATTTCAGGCAGTCCTGGCCATCGTCCGCCCGGTGGTGGAGTGCAACCGCAAGCAGATCGACAATGGCCGGACATACCTTCGTGAAGTGGTGTTCGGAGACCCCGAGGAGCCACACCACCGCGACGCCCTCACCCTGACCGTTCAGACCGAAGAGGCCATTGCCGAAGTGTTGCGGCGGGACCCGCGCGTCGAGGCCGGGCATGCTGCCAAGCTCGCGCACCTCGTCGCCGCGGTCATGTTCATCAGCATGGCTGCCACCATCAACATCTCGGCTTCCGTCGAGGAGATCCTCTCGGAGATCTCAGACCACGTGAAGGCCCTGCTGCCGGCAGAGTAAMSVAPQSVGRRERNKQEKLDRITAAALELFSQHGVDDVTTQQIADKADIGTGTLFLYAKTKAELLLLVQNSAYAEALVSGKKAAEGTADVFQAVLAIVRPVVECNRKQIDNGRTYLREVVFGDPEEPHHRDALTLTVQTEEAIAEVLRRDPRVEAGHAAKLAHLVAAVMFISMAATINISASVEEILSEISDHVKALLPAENANANANANA
D1-29_023641410feaB_1COG1012Phenylacetaldehyde dehydrogenaseATGGAAACGTACGATGCCCTGCTGGCCTCGATCACCCCGGAGTCCGGAGAAACCCGGACCATCCTCGACCCCGCCACCGGCACCGTTGTCGGCGCTGCTCCCGTCCACACCATCGAGGATCTGGAGAACGCAGTTGCTGCCGCCCAGGCAGCGCAGCCGGCCTGGGCCGCACTGGGCCACGACGCCAGGTCCGCCGCCCTCCTTAAAGCGGCCGACGCCGTCGAACGCTCTGCCGAGGAACTCGCCCGGCTGCTCTCCCGCGAGCAAGGCAAACCCCTCAACGGCCCGAACGCCAGGTTCGAGGTGGGCGCCTGCGCCGCCTGGCTCCGGGCGGCCGCCACCATTCCACTGGAACCGGAAACGGTGGTGGACGACGGCGAAACGTACGCCGAACTCCATTACCGGCCCATCGGCGTCGTCGGTGCCATCGGCCCATGGAACTGGCCCATGATGATCACCGTCTGGCAGATCGCCCCGGCACTCCGGATGGGCAACGCCGTGGTGGTCAAACCATCCAAGATGACTCCGTTGTCCGTTATGGCCCTGATCAAGGTCATCAACGAGGAACTCCCGGAGGGTCTTCTCAACGTGGTCTCCGGTGACCGCGAGGTGGGTGCCCGCCTGGCCGAACACCCCGCCGTCGGAAAGATCATGTTCACCGGCTCCACCTCCGCCGGGCGGCAGATCATCAAATCCTCCGCGGACACCATCAAGCGGCTCACCCTTGAACTGGGAGGCAACGACGCCGGCATCGTCCTGCCCGACGCCGACCCCGCCGCGATTGCCGAGGGCCTCTTTTGGGGCGCCTTCATCAACACCGGCCAGACCTGCGCTGCGCTGAAGCGCCTCTACGTCCATGACGACATCTACGACGCCGTCTGCGACGAACTCACCAAGGTGGCCGCAGCGATGCCGATGGGCGTCGGGCTCGAGGAAGCCAACGTCCTGGGCCCGCTGCAGAACCGGGCGCAGTACGACATCGTTGCCGGCCTGGTGGAAGCCGCCCGCGGCTCCGGCGCACGGATCCTCCTGGGTGGGAACCCGCAACTGGACCAGCCCGGCCATTTCTACCCCACCACCCTGGTGGCCGACATCGACAACGACAACCCCCTGGTCGCCGAGGAACAGTTCGGCCCAGCCCTGCCGATCATCCGGTACAGCACGGTGGACGAGGCTGTGGAGATGGCCAACGGGCTCGACGTCGGACTCGGCGCCTCCGTCTGGTCCCCCAACCTCACCGAAGCCCGCAAGGTTGCCGCCCGCCTTGAAGCGGGCACTGTATGGATCAACAAACACGGCGCCGTGGACCCCCGAGTTCCGTTCGGCGGTGCCAAGCAGTCCGGCTACGGCCTGGAGTTCGGCGTCGAGGGCCTCAAAGCCCTCGGCGTCCCGCAGGCCATTAACGGTTAAMETYDALLASITPESGETRTILDPATGTVVGAAPVHTIEDLENAVAAAQAAQPAWAALGHDARSAALLKAADAVERSAEELARLLSREQGKPLNGPNARFEVGACAAWLRAAATIPLEPETVVDDGETYAELHYRPIGVVGAIGPWNWPMMITVWQIAPALRMGNAVVVKPSKMTPLSVMALIKVINEELPEGLLNVVSGDREVGARLAEHPAVGKIMFTGSTSAGRQIIKSSADTIKRLTLELGGNDAGIVLPDADPAAIAEGLFWGAFINTGQTCAALKRLYVHDDIYDAVCDELTKVAAAMPMGVGLEEANVLGPLQNRAQYDIVAGLVEAARGSGARILLGGNPQLDQPGHFYPTTLVADIDNDNPLVAEEQFGPALPIIRYSTVDEAVEMANGLDVGLGASVWSPNLTEARKVAARLEAGTVWINKHGAVDPRVPFGGAKQSGYGLEFGVEGLKALGVPQAINGNANANANANA
D1-29_02365588hypothetical proteinATGAAAAGCTCCGCCTCCCCTGCCCTTCCGTCCAAATACGGGACCGGCAAGGAAGCCCTGCTCCGTGCGGCCGTCGGAGTGGTAGCGGCCAAAGGCCTGCGTGGGCTCACATATCGTTCGGTGGCAGAAGCCGCGGGGGTGAACAACACACTGGTGGCCCACCATTTCGGGTCCCGCGACGCGTTGATCGCCGCAGCGCTGGACTGGGCGGCGGACCAGTCCATCAATGCGTCCCAGCTGCGGGAAGCGGCAGCAGTGGGGCATTCCTTCACGGAGTCACTCCTGGAGCTCTTGCTGGCCGAACCGGAACTGCAGGCCTTCCAGTACGAGATGATCCTCGAGGCCCGCCGCCGGCCTGAGCTGGCGGGCGCGGTCACCTCCCTCTACGAGAACTACGTCAACGCCCTGGCCGAGGGCCTCATTGCCTCCGGAGTCACGGAGAACGTGAGTGTTGTGGCCCGGACACTCTTCGCCGCGCTGGACGGCCTGGTACTCCAGTACCTTGCTGGTGTGGACCGCGCACTCATCGCGGCATCCCTTGAGGAAGTCCATGAAGTGCTGCTCCTCCGGACCGGCCCGCAACACTAAMKSSASPALPSKYGTGKEALLRAAVGVVAAKGLRGLTYRSVAEAAGVNNTLVAHHFGSRDALIAAALDWAADQSINASQLREAAAVGHSFTESLLELLLAEPELQAFQYEMILEARRRPELAGAVTSLYENYVNALAEGLIASGVTENVSVVARTLFAALDGLVLQYLAGVDRALIAASLEEVHEVLLLRTGPQHPGPT0014935_138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014935-rcdA-K23778NANA
D1-29_02366345hypothetical proteinGTGCCACAAACTCCTGCCTTCACCACTTCATCCGCCCTCGACCCCAACAAGAATGAACCCTTCGAACTTGGCCAGATCCAATGGGTCCGCCGCTTTGGAGAAGGCGGCCGCCCGGACCTCGCCTGCGGATACTGGCACGTCACGCCCGCGGAGGCGCCCCAGCCCTTCGACCTGGTGATCCACGCCGACGAGACCATTTCCCTTGTTGAAGGGCACCTCCGGATCGAGGTGGAGGGCGGGGACTCCTACGACCTCACCGCCGGGTGCGCAGCGTCCTTCAACAAGGGCGCCCGCACCAGGTGGGAAGTCCTGGCGCCCACCGTCGAATTCTTTGTGTACTCCTAGMPQTPAFTTSSALDPNKNEPFELGQIQWVRRFGEGGRPDLACGYWHVTPAEAPQPFDLVIHADETISLVEGHLRIEVEGGDSYDLTAGCAASFNKGARTRWEVLAPTVEFFVYSNANANANANA
D1-29_023671323paoPseudooxynicotine oxidaseATGGACGTTGAACTGTACGACGGCGTTGAACTCTACGACGCTGTGGTGGTCGGGGCCGGCTTCGCGGGGCTCACGGCTGCCCGCGAGCTCAGCAGGCAAGGACTGTCCGTCCGGATCGTGGAGGCCCGCGACCGGATCGGCGGACGCACGTGGCTGGACCGCCGGCTGGGGCGCGACCTGGAAATCGGCGGCACGTGGGTGCACTGGACCCAACCCTATGTCTGGGCCGAGCTGAAGCGCTACGGCCTGGACACCACGCCCAGCCCCGAGCCGGAACGGGCCTTCTGGTGGGCGGACGGGCGCCGCCATGAGGGCGGGCCGGAGGAGTTGCTCGGTCTCATCGGCGGGATGAACGGCGAATTCGTGAAGTACTCCCGCGAATACTTTCCCGAACCGTTCAGGCCCCTGTCCCGCGACAATTTCAAGGCCATCGACGATGTGTCCGTCCAGGACCGGATCCGCGCCCAGTTCCCCGCCTGCGCCCAGCGCGACATCCTGGAATCCTTTTGGACGTTGAACTTCAACGGTCCGCTGCAAAATGCTGCCCTGACCCAGGCCCTTCGCTGGGTGGCCCTGACCAACGGAGACTGGACGGTCAACTTCGAGGCCTGCGCCACCTACAAGATCGTCGGCGGCACAGCTGCCCTCGCCGACGCGATCCTCGCGGACTCGGGGGCCGGCGTCGAACACGGTTTCACCGTGGGCAGCGTGCACGACGCCGGCACCTCGGTGGCCATCCACAGTACCGATGGGCGGAGCATCAGCGGGCGGACCGCGATTATCACCGTGCCCCTGCATGCGATGCGCGCGGTGAGCTTCGAGCCGCCACTGTCCGCCGCCAAGAACGAAGGACTCAGCCTCGGCCAGGTGTCCAAGGGAGCCAAGGTCTGGATCAGGCTGAAGGGGGACCACCCACCCTTCGTGGCCTTGGGCGGCGCCGACTGGCCCCTGAATTTCTTCCAGGCGGAGTATGGCATCGACGGCGACACCATCGTGGTGGGCTTCGGTCCGGACGCCGCAGAAATCAACGTGGAGGACGCGGCGGCTGTCCAGGAGCAGCTGGTGCGCCTTGTCCCGGAGGCTGAGGTGATGGGCGTGGCCAGCCACAACTGGGTGGAGGATCCACTGTCCGGTGAAACGTGGCCCATGCACGCCACCGGATTCCTGTCCCGGCATCTGCCTGCCATGCAGGAGGCCCATGGCCTGGTCCGGTTTGCGGGCTCGGACATCGCCAACGGCTGGGGCGGTTTCATCGACGGCGCCATCGAGAGCGGCATGGAGGCCGCCCTCGCCACTGCTGCTGCGCTGAGGAACAACAACTGAMDVELYDGVELYDAVVVGAGFAGLTAARELSRQGLSVRIVEARDRIGGRTWLDRRLGRDLEIGGTWVHWTQPYVWAELKRYGLDTTPSPEPERAFWWADGRRHEGGPEELLGLIGGMNGEFVKYSREYFPEPFRPLSRDNFKAIDDVSVQDRIRAQFPACAQRDILESFWTLNFNGPLQNAALTQALRWVALTNGDWTVNFEACATYKIVGGTAALADAILADSGAGVEHGFTVGSVHDAGTSVAIHSTDGRSISGRTAIITVPLHAMRAVSFEPPLSAAKNEGLSLGQVSKGAKVWIRLKGDHPPFVALGGADWPLNFFQAEYGIDGDTIVVGFGPDAAEINVEDAAAVQEQLVRLVPEAEVMGVASHNWVEDPLSGETWPMHATGFLSRHLPAMQEAHGLVRFAGSDIANGWGGFIDGAIESGMEAALATAAALRNNNNANANANANA
D1-29_023681554hypothetical proteinATGCTGGATTTCACGCTGCCTTCCCCCTCGGGTGGCACCCTTTCCCCAACACTCATGACCGTTAAGAAGGATCCAATGAGTATTTCGAATTCCGAATCCCGGACCACCGAAGCCGCTCCGCGCGAGGAGCACTCCACCGCGCTCCGCGCCGGCAGCATCGGCGTGATGGGCATCCTGTTCTTTGTCCTGTCCGCCCAGGCGCCCCTCACGGGGATCGTCGGGGCTTCGCCGCTCGCGGCTGCACTCGGCAACGGCGCCGGTGCACCCGGTGCCTACCTGGTTGTTGGCATCGTGATCGTGATCTTCGCGGTGGGCTTCGTCGCGATGAGCCGCAAGATCCAGGCCAATGGCGCCTTCTACGCTTACGTCACCGCCGCGTTCGGGCGGAAGATCGGCGCTGGCGCGGCCTGGCTGGCGCTGCTCGCCTACAGCACCGTCCAGGCCGCCATGTACGGACTCTATGGCGCCGCGTTTTCCGGCCTGCTGGCGTCAATCGGAGTGGAAATTCCCTGGTGGCTGCTGGCTTTGGTGACGATGGCCGGCGTCCAGGTCCTGGGCTCCCTGAACATCGAACTTGGCGCCAAGGTCCTGGCCCTCCTGGTGGGACTGGAAGTGGCCGTCCTGCTGATGTTCGGCTTCACCGTCCTGTTCCGCGGTGGCGGTCCCGAAGGCCTCAGCCTTGCCGCGTCCTTCTCACCGGAGGCCATTTCGTCAGGCGCCCCCGGTGTAGCCATCATGTTCGCGGTGGCCTCCATGTTCGGCTTCGAATCCACGGCGATCTACTCAGCCGAAGCCAAGGACGCGCACAGGACGGTGGCGCGGGCAACCTATTTGTCGGTGGGTGTTATTGCCGTGTTCTTCTCCTTCATCTCGTGGATGCTGGTGAGCTACTACGGCCCGTCGCAGGTGATCGACGCCGCGGGTGCGGCCCTGGAGTCCGGCGACTCCACCGCCTTTGTCCTCACGCCGATGGTGGAGCTGTTCGGGCCGTGGGCAGGAGTCACCACCGGCATCCTGCTGGTCACGTCCCTGCTCGCCGGGATCATCGCCTTCCACAACGGCATCAACCGCTACCTCCATTCGCTGGCTCTTCGCGGTTCCCTGCCAGCAGTCGTTGCCCGGACCAACCGGCACCAGGCACCCGCCGCGGCTGCCTGGATCCAGACGGCCACCGCCGTCGTCCTGGTGGCGCCCTTCGCCGTCCTGGCACTGGACCCGGTCCTGACCCTTTTCTCGTGGTTCAGCGGGCTGGCTGTTGCGGCACTCCTGGTGTTGTACATCCTCTGCTCCCTCGCCGTCGTTGGCTTCTTCCGCCGGGAACGGGTTCCCGGGCAGCTCTGGCAGACCCTGCTGGCGCCGGCGCTTGCGTCACTGTTGCTGGCCTGGGTCCTGTACCTGGTGGTCAGCAACTTCACGTCGCTGATCGGCGGCAGCGCAGAGACGGCAGTTGCCCTGCTGGTGGCGGTCCCGGTGGTGTTCGCGGCCGGCCTGCTGGTGGAAGGCCAGGTGGAGCGCCGCCGGGTGGCTGCCACCCTGGGGCACTCCGTCAGCTAAMLDFTLPSPSGGTLSPTLMTVKKDPMSISNSESRTTEAAPREEHSTALRAGSIGVMGILFFVLSAQAPLTGIVGASPLAAALGNGAGAPGAYLVVGIVIVIFAVGFVAMSRKIQANGAFYAYVTAAFGRKIGAGAAWLALLAYSTVQAAMYGLYGAAFSGLLASIGVEIPWWLLALVTMAGVQVLGSLNIELGAKVLALLVGLEVAVLLMFGFTVLFRGGGPEGLSLAASFSPEAISSGAPGVAIMFAVASMFGFESTAIYSAEAKDAHRTVARATYLSVGVIAVFFSFISWMLVSYYGPSQVIDAAGAALESGDSTAFVLTPMVELFGPWAGVTTGILLVTSLLAGIIAFHNGINRYLHSLALRGSLPAVVARTNRHQAPAAAAWIQTATAVVLVAPFAVLALDPVLTLFSWFSGLAVAALLVLYILCSLAVVGFFRRERVPGQLWQTLLAPALASLLLAWVLYLVVSNFTSLIGGSAETAVALLVAVPVVFAAGLLVEGQVERRRVAATLGHSVSNANANANANA
D1-29_023691266hypothetical proteinATGACAAACCCATATCTGAAAGTCATCGCCGGGATCGACACACACGCCGACACCCATTACGTCGCAATCATCGACGAGACCGGCAGACACCTCATGGACAAAGAATTTCCCGCCGTTGGGTCCGGCTACCGGAATATTGTCGAGTTCATTACCGGGTTCGGCCCGGTGGTTGCCGCCGGAGTGGAAGGCACCGGCAGTTACGGCGCCGAACTCGCCCGTGTCCTGACCAGGGAGGGCTTCCGGGTTCTGGAAGTCATGCGCCCGAACCGGCAGGGACGCCGGCTGCGGGGCAAATCGGACGCTCTGGACGCCTACCAGGCGGCAGAAGCCGCGCTGGCCGGCCGGAACGTCGCAACACCCAAATCCCGGGACGGCGCGGTGGAATCCCTGCGGGTCCTGCGCGCCGAACGGGCGACGGCCATGCGCGCCAGGGTAGCGGTCATGGCGCAGATCAAAAGCATCCTTACGGCTGCACCCGAGGCGTTACGGGCCAAATACCGGCGGCTGACCCGCGCCCCGATGATGGCCGCCCTGGAGAAAACCCGGCCGGCCGGAAACATGTCTGACCCGTTGATCGCCACCGCGGCCGTGCTTAAACGCCTCGCGATCCGTTACCGCGCCCTGGATCAGGAACTGGCGGTCATTGATGCCGAGTTAGACGCGATCGTGACAACCCACGCGCCGATGCTCCGTGACCTGCACGGGGTCGGCACCGACGTGGCAAGCCAGCTCCTGGTCACCGTGGGCGACAACCCCGGACGGATCGGCACCGAAGCGCAGTTCGCAGCCCTCGTGGGCGTCGCGCCGATCCCCGCGTCCTCGGGAAAGACCATGCGGCACCGGCTCAGCCGTGGCGGCGACCGGCGGGCCAACAAAGCCATCCACCACGTTGCCCTGGTACGGATGATGAGCGACACCCGCACCAAAAATTACGTCGCCAGACGCCGGGCCGAAGGGAAAAGCACCAAGGAAATCATCCGCTGCGTCAAACGCTACATCGCCCGCGAAGTCTACGATCAGCTGATCCATCCACAACCAGCACCAGACGCCGGAGCCCTCCGCACCCTACGCCAAACGAAGAACATCACCCTCCAGGCCGCCGCGGACAGCCTCCATGTCTGGCCCACAGCACTGTCCCGGCTCGAACGCGGACTCACCCGCCACGACGACTTCTACCAACACTACGAAACCTGGCTCAACTCTCAATCCCAAAAACCGCGAAGAGGCACCCGGGAGGTTGCAGGACTGACCGGGCAGTTTGCCTAGMTNPYLKVIAGIDTHADTHYVAIIDETGRHLMDKEFPAVGSGYRNIVEFITGFGPVVAAGVEGTGSYGAELARVLTREGFRVLEVMRPNRQGRRLRGKSDALDAYQAAEAALAGRNVATPKSRDGAVESLRVLRAERATAMRARVAVMAQIKSILTAAPEALRAKYRRLTRAPMMAALEKTRPAGNMSDPLIATAAVLKRLAIRYRALDQELAVIDAELDAIVTTHAPMLRDLHGVGTDVASQLLVTVGDNPGRIGTEAQFAALVGVAPIPASSGKTMRHRLSRGGDRRANKAIHHVALVRMMSDTRTKNYVARRRAEGKSTKEIIRCVKRYIAREVYDQLIHPQPAPDAGALRTLRQTKNITLQAAADSLHVWPTALSRLERGLTRHDDFYQHYETWLNSQSQKPRRGTREVAGLTGQFAPGPT0030635_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_023701638hypothetical proteinATGGACAACGGGGAAGTCTTGGAGGCAGTCGAAGCACCTGGTGCTGCCCTGGTCCTGATCGAAGCGGCCTCCTCCGCTGCTGCCACAGGTTCTGATACTGACTCTGACTCGGGAGCCGCTTTTGATGCTGGCGCTGGTTCTGATCCGTTGCGGGATTTGGCGGAGGAGTGCCTGGCCGAGATGGCGGAGGCGGCCCGTGACGAGGCGCGGGCGGCAGCGCGGAAGGCCCGGGCGGCCGCCACCTACGCGGACACCTGCCGGCGCCTGCTTCCACCGTCGACGTCGCTGCACGAACAGTCCGTGGCGGAGATAGGCATGGTCGCCGAGGTCGCCTGTGCCCTGACCATCAGCGAAGGCGCCGCATCAGCGTTCCTGGTCCAGTCCCGCCAGCTGAGCACCGAACTGCCCCGCACCCTCGCGGCCCTGCAGGCCGGGACCCTGTCCTGGCAGCACGCCCGGATCCTCTGCGATGAAACCACCGGCCTGGGCCCCGACGGGGCGGCAGCCCTGGAAACACACTTCCTGGACCCCGACGCCGCCAAGGCTTCCCGCGCCTGCCTGGCCGGGGACCTTACACCCTCCCGGTTCCGCGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATTGAAACCCGCCACACCAAGTGCGTCCTGGACCGCCGGGTCGAATACACGCCGGACCGCGACGGGATGGCCTGGCTCTCCGCCTACCTCCCCGCAGATCAGGCCGCCGGCATCTGGGAACACACCACCACCACAGCCCGGGCACTCCAAGGCCCCACCGAATCCCGCACCCTCACCCAGCTCCGCGCCGACGCCCTCGCCGCCGCACTCCTCGGCGGAGAGACCACCAACCCCGGCAACATCAGCAGTTCAGCACTCATGGGTGGCGGGAGCGCCAATGGAGGGATAAGCGGCGGCGGCAGCCCGAACGGCCAAATCACCAGCTGGCGTACCGGCAGCGGAGGGACCAACGGCGGTGGAAGCGACAACTGCTGGATAAGCGGCGGGGGAAGCGGCAGCGGCGCTCTTCTCGGTGGCGGAAGCGACAGCGGCGCAAATAGCCGGCCCGATTGGGACGGAGAGCGCGCTGCCGGGCAGGTCCCGCCGCCCCGGGCCCAGGTGCTGGTCACCGTGCCCGTGTTCAGCCTCCTGGGCCTGACCGATGAACCTGCCACCCTGGACGGCCACGGCCCCATCCCCGCCTCCATGGCAAGGAACCTGGTCGCCAACGGAGCCCACTCCTTCCACCGCGTCCTGACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGGCTCACCACAGCAATGCGCCGCTGGCTCAGACTCCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTCGACAACGAAGCAGACCACCTCCTCGCCTGGGCAAACGGCGGCACCACCGGCATCAACAACCTCGGCCAGCCCTGCCGCAAACACCACCACCTCAAACACAACACCACCTGGCAACCAACCCCGGCCAGCAAAAACGAACCACCAGGCTGGACGTCACCCACCGGCCGACACTACAAAAGCGAACACCAAGACTGGGAACCACCCACCTGGCCGGACGGCACACCGAGCCGTCTCGAATGAMDNGEVLEAVEAPGAALVLIEAASSAAATGSDTDSDSGAAFDAGAGSDPLRDLAEECLAEMAEAARDEARAAARKARAAATYADTCRRLLPPSTSLHEQSVAEIGMVAEVACALTISEGAASAFLVQSRQLSTELPRTLAALQAGTLSWQHARILCDETTGLGPDGAAALETHFLDPDAAKASRACLAGDLTPSRFRARARTWRERHHPVSIETRHTKCVLDRRVEYTPDRDGMAWLSAYLPADQAAGIWEHTTTTARALQGPTESRTLTQLRADALAAALLGGETTNPGNISSSALMGGGSANGGISGGGSPNGQITSWRTGSGGTNGGGSDNCWISGGGSGSGALLGGGSDSGANSRPDWDGERAAGQVPPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVANGAHSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWANGGTTGINNLGQPCRKHHHLKHNTTWQPTPASKNEPPGWTSPTGRHYKSEHQDWEPPTWPDGTPSRLENANANANANA
D1-29_02371696hypothetical proteinATGACCTTACGGCTTGCCTACACCGAGATGCTGCCCAACGAGAAGAAGGAGACCGCAGCAGCGTTCTGGAAACGGGCCAACGAAGCCTTCGTAGCCGCCGGCATTACAGTGACCTGGGTTTTGACGGATAACGGCTCCTGCTACCGCTCCCGCCTCTTCGCCCAAGCCCTCGGCCCGCACATCAAACACAAACGGACCCGCCCCTACCGGCCCAAACAAATGGCAAGGTCGAACTGTTCAACCGCCCCCTGCTCGAAGAGTGGGCATACGCCCGGCCCTACACCTCAGAAGCGGAGCTGGTCGCCGCCTTTCCATCCTGGCTGCACCACTACAATCACACCCGAGGCCACACCTCACTCAAAGGTCAACCACCGGCCAGCCGCGTTACCAACCTCCGTGGTCAATACAGCTAGATGCCCCATGGGGAGGGGAAGCAAAACCGGCAGTGGCCCGGCGCGGAAGTACTCCGCGCCGGGCCATTTGCTTTGGGCGAGCTTTCCAATGCACGATATTTGCCGCCCGACGGGCGGCAGGTTGCTTAGCGCTCAGCGGCGCCGGTTACTGAGCTGGGGTAGGGCCGGTCAGGCGCCCCGGCGCCAGTCGCTGGGGGAGACGCCGAAGGAGTCGCGGAAAATGCGGCTGAAGTGCGCTGCGTCGAGGAAACCCCAACGGGCAGCCACAGCGCCTACCGACTGAMTLRLAYTEMLPNEKKETAAAFWKRANEAFVAAGITVTWVLTDNGSCYRSRLFAQALGPHIKHKRTRPYRPKQMARSNCSTAPCSKSGHTPGPTPQKRSWSPPFHPGCTTTITPEATPHSKVNHRPAALPTSVVNTARCPMGRGSKTGSGPARKYSAPGHLLWASFPMHDICRPTGGRLLSAQRRRLLSWGRAGQAPRRQSLGETPKESRKMRLKCAASRKPQRAATAPTDNANANANANA
D1-29_02372957nphRTranscriptional activator NphRATGCCAGCTGCAGTCCAGCCCGCCAGCCAGAACCTCACGTCCAGCGTTGCGCTGACGTTTGACCACTGGAAACACCTCGTCGCGGAGTCCTTTGTGCCGCTCGCGGCCAGGACAGCAGATGTTGACGGCTTCCGCGGCCAGATGCGTTCGCGCGTGCTGGACCGGATGTCCGTCGTCGAAGTCACCGCCACCTCCCACGAGGTCCACCGCACCCCTGCCCTGATCGCCCAGGCCAGCGAACGTTACTTCAAGCTCAACCTCCAGCTGGAGGGCACGGGACTGCTGATCCAGGACAACCGCGAGGCCCTGCTCCAGCCAGGTGACCTGGCCATCTACGACACCAACCGCCCCTATACCCTCGCTTTCGAGGAAGAGGCGCGGATGATGGTGGTGATGTTCCCTTGCGACGCCCTGTCGCTCCCCACCGACTACGTGGGCCAGCTTGCAGCGGTTCGAATGGCCGGCAGCACCGGCCTCAGCGGGATCGTGGGGCAGTTCATTCGGCAGCTCTCTGAGAACCTTGAGGTCCTGAGCGGTCCCAGCGGTTCGCGGCTGGCAACAAACGCCCTGGACCTCGTGTCCACCATGCTGCACGCCGAAATGGACATCGCCCCGGACCGGATGAAGCCGCAGGCCCTCCTGGCCGTGTCGGTGCGCGAATACATCGAGGCCAACTTGTCAGATCCACTGCTGTCACCGGCCAGCATTGCGGCTGCGCATTTCATCTCCACACGGCACCTGCACAACGTCTTCCATGAATCCGGGACCACCGTGGCCAGCTGGATCAGGAGCCAAAGGCTGGACGGCGCGCGCCGCGAACTGCGCGATCCTCTGCATGCCGGTCAGTCGGTAGGCGCTGTGGCTGCCCGTTGGGGTTTCCTCGACGCAGCGCACTTCAGCCGCATTTTCCGCGACTCCTTCGGCGTCTCCCCCAGCGACTGGCGCCGGGGCGCCTGAMPAAVQPASQNLTSSVALTFDHWKHLVAESFVPLAARTADVDGFRGQMRSRVLDRMSVVEVTATSHEVHRTPALIAQASERYFKLNLQLEGTGLLIQDNREALLQPGDLAIYDTNRPYTLAFEEEARMMVVMFPCDALSLPTDYVGQLAAVRMAGSTGLSGIVGQFIRQLSENLEVLSGPSGSRLATNALDLVSTMLHAEMDIAPDRMKPQALLAVSVREYIEANLSDPLLSPASIAAAHFISTRHLHNVFHESGTTVASWIRSQRLDGARRELRDPLHAGQSVGAVAARWGFLDAAHFSRIFRDSFGVSPSDWRRGANANANANANA
D1-29_023731098dthadhD-threo-3-hydroxyaspartate dehydrataseGTGACCATTCCCCCTGAGATCGATACTCCGGACATCATGATCGATCTCGACATCCTTGAACGGAATATCGAACGGATGGCTGCTGCTGTCCGGGACAGGGGCCTCACCCTTCGCCCCCATGCCAAGACCCACAAAATCATTGAGATCGCGGCCCGGCAGCTGGCCGCCGGAGCAGCCGGCCTGACCGTCGCAACCATTGGCGAGGCGGAGGTGTTCGCTGATGCGGGAATCGACGACATCTTCATCGCCTACCCGCTCTGGATTTCACCGCACAAGGCCGGGCGGCTCCGGCACCTGGCATCAGCCGTGAGGATCTCGGTAGGCGTGGACTCTGCAGCGGGGGCCGCCATGCTCGGATCAAGCCTCGGTCATGTGGCCGGGAGGGTCAGCGTCCTGGTCGAGATCGACAGCGGCCACCATCGCAGCGGCGTCAGGCCGGAGGCAGCGGCGGCGGTTGCCGAAGCCGCGTCCCGTGCCGGGCTGCAGGTTGCGGGCGTCTTCACCTTCCCGGGCCACAGCTACGCCCCTGGGATGCCGGCAGAGGCCGCCGCACAGGAGCATCAGGCGCTGCTCCTGGCAGCCGAATCACTGGAGGCGGCAGGGTTCGAGGCCACCTGCCGAAGCGGAGGATCCACCCCTACCGCTCTTTTGACGGAGGGGTCTGCGGCCACGGAAGTGCGGCCCGGGGTCTACGTCTTTGGCGATGCGCAGCAACTGGAGCTTGGCCGGTGCGCCGTGGAGGACATTGCGCTGACTGTCGCTGCCACCGTGGTGAGTCACCATGAGACCTCCCCGGACGCTCCGGCGCGTTTCATCATTGACGCCGGCAGCAAGATCCTGGGCAGCGACAGGCCGGCCTGGGCCACCGGATTTGGGCGCCTGATGGACCACCCGGATGCCCGAATCATTGCCCTCTCAGAACACCATGCCACCGTGGAATGGCCCGGTAGCTCAACCCGGCCGGCCCTCGGCGACCGGCTGCGCGTGATCCCCAACCACGTCTGCCTGGCGATCAACCTGGTGGACGACCTCGCGGTAACCAGCCGTGGCACCCTCGTGGAGCGTTGGAACGTCGTGGCGAGGGGCAGGAACAAGTAGMTIPPEIDTPDIMIDLDILERNIERMAAAVRDRGLTLRPHAKTHKIIEIAARQLAAGAAGLTVATIGEAEVFADAGIDDIFIAYPLWISPHKAGRLRHLASAVRISVGVDSAAGAAMLGSSLGHVAGRVSVLVEIDSGHHRSGVRPEAAAAVAEAASRAGLQVAGVFTFPGHSYAPGMPAEAAAQEHQALLLAAESLEAAGFEATCRSGGSTPTALLTEGSAATEVRPGVYVFGDAQQLELGRCAVEDIALTVAATVVSHHETSPDAPARFIIDAGSKILGSDRPAWATGFGRLMDHPDARIIALSEHHATVEWPGSSTRPALGDRLRVIPNHVCLAINLVDDLAVTSRGTLVERWNVVARGRNKNANANANANA
D1-29_02374597betI_4HTH-type transcriptional regulator BetIGTGCCAAAGATTGTTGACCATGACGAACGCCGGCTGGAACTGGTGGATGCCACGTGGCGGATCATCGCCCGCCTGGGCATTGAAGGCGCCACCATGAGGGAGATTGCGCTGGAGGCAGGCTTCGCCAATGGCGCGCTCAAGCCCTACTTCCCCACCAAGGACAACCTCTTGGAGTTCGCGTTCGGGCACGTCTTCAACCGGACCAACCAACGCATCGCCGCAGTGACAGAAGGCAAATCCGGGCTGTCCGCACTGCGGGCCTTTTGCCTGGAGGTGCTCCCCCTGGATGAGGAACGGGTGAACGAGGCGCGGATCGTCATCCCCTTTTGGCAGAAGGCGGTCAATGACCCGCAGAAGGCGGAGATCCACCAGCAGTCCATGGACGAGTGGCTTGCTGCCATCCGGCAATATCTCGCGGAGGCGCGGGGCGCGGGGGACGTCAAGGCCGCCGTCGACGACGACACCCTGGCGAGACAACTCCTGAACATGCTGCTGGGAGCACAGATCGGGGCAGCATTGGGAGCCGGTGCCGTTGCCAGTACTGGCGCCGGCCTTGCCGACCAGCTTGAAGGGTTTCTTGCCCTGCTTGCCCGATAAMPKIVDHDERRLELVDATWRIIARLGIEGATMREIALEAGFANGALKPYFPTKDNLLEFAFGHVFNRTNQRIAAVTEGKSGLSALRAFCLEVLPLDEERVNEARIVIPFWQKAVNDPQKAEIHQQSMDEWLAAIRQYLAEARGAGDVKAAVDDDTLARQLLNMLLGAQIGAALGAGAVASTGAGLADQLEGFLALLARNANANANANA
D1-29_023752049Phenylethylamine oxidaseATGATGCTTGCAGCAGCTGACACAGCAACTCCGTACCGCCTGGCATCAGCCAGCGAGGTCACCGAGGTCCAGGCCATCCTTCGCGCCGCCGGTCACCTGGGCCCGGAGAAGCGCGTCGCCTATCTGGGCCTGCTTGACCCCGCCCGCGGGGACGCCGCCAGTGCTGCCGTCGTGGGGACTGTCAACGGCGGGACGCCCGACGGCGGGACGCCCGACGGCGGTGCTGCCGCCAGTGCTGCGGTCGCCGTCGCGGTCCCTGCCGGGGACCGCCGGTTCCGGATCTTTATCCATGACATCTCTGGTGGAGCTCCCGCGGACGTGGTGGTTTCCGTGACCCGCCGGGAGGTACTGTCCGCCGTCGAACTTGATACCGGGATGACCGGTGAACTCCCGGTCCTGGAAGAGGAATTTGAGGTGGTGGAGTCGCTCCTGGCCACGGACGACCGCTGGCTGAAGGCGCTGGCGGACCGCGGACTCGACGTCACCAAGGTCCGTGTCGCCCCGCTCTCGGCAGGGGTGTTCGAGTACGCCGAAGAGAAGGGGCGGCGCATCCTGCGTGGCCTGGCGTTTGTGCAGGATTTCCCGGAGGACAGCGCCTGGGCGCATCCCGTCGATGGACTCGTGGCCTACGTCGATGTCGTCAGCAAGGAAGTCACCCAGGTCATCGACCTCGGTGCCATGCCCATCCCGTCCGAGCACGGAAACTACACGGATCCGGACCTGACCGGGCCCCTGCGCACCACCCAGAAGCCCATCAGCATCACCCAGCCTGAAGGCCCGAGTTTCACCGTGTCCGGGGGAAACCACGTGGAGTGGGAAAAATGGAGCGTGGACGTCGGCTTCGACGTCCGTGAAGGAGTTGTGCTGCACAACCTCGCCTTCCTGGACGGTGGGAGAAGGCGTCCCATCATCAACCGGGCCTCGATCGCCGAGATGGTGGTTCCGTACGGTGATCCGTCTCCCATCCGGTCCTGGCAGAACTACTTCGACACCGGCGAATATCTCGTGGGTCAGTACGCCAACTCGCTGGAGCTGGGCTGCGACTGCCTCGGTGACATCACGTACCTCAGCCCCGTGATCAGCGACGCCTTCGGCAACCCCCGGGAAATCCGCAACGGCATCTGCATGCACGAGGAGGACTGGGGCATTCTGTCCAAGCACTCCGACCTCTGGACAGGGATCAACTACACCCGCCGCAACCGCCGCCTGGTGATCTCCTTCTTCACCACCATCGGCAACTACGATTACGGCTTCTACTGGTACCTATACCTGGACGGCACCATCGAGTTCGAGGCCAAGGCCACCGGCGTCGTCTTCACCAGCGCCTTCCCGGAGGGAGGCTCGGACAACATCTCACAGCTCGCCCCCGGCCTGGGCGCACCCTTCCACCAGCACCTCTTCAGCGCCCGGCTGGATATGGCAATCGATGGCTTCACGAACAGGGTGGAAGAGGAGGACGTGGTCCGCCAGGCCATGGGACCGGGCAACGAACGCGGCAACGCCTTTTCCCGGAAGCGGACAGTGCTGACGAGTGAATCCGAAGGCAGCCGGGAGGCCGACGCCCGGGCAGGCCGGACCTGGATCATCTCCAACCCGGAGTCGAAGAACCGGCTGGGCGAGCCTGCGGGCTACAAACTGCACAGCCAGAACCAGCCCACCCTGCTGGCCGATCCGGAATCATCCATCGCCCGCCGCGCAGCCTTCGCCACCAAGGATCTGTGGGTCACCCGCTACTGCGACGAGGAACGCTACCCCACGGGGGACTTCGTGAACCAGCACTCCGGCGGGGCAGGACTGCCCGCCTACGTGGCACAGGACCGGGAGATCGACGGCCAGGACATCGTCCTCTGGCACACCTTTGGCCTCACCCACTTCCCCCGCGTGGAGGACTGGCCCATCATGCCCGTGGACACCGTCGGCTTCAAGCTCCGGCCCGAGGGCTTCTTTGACCGCAGCCCTGTCCTGGATGTTCCTGCCAACGCAAGCCAGTCCTTAGGCACCTGCCACAGAGCCGGCGGCAGTGACGCCGGCTCCGGCGCCTGCCACTAGMMLAAADTATPYRLASASEVTEVQAILRAAGHLGPEKRVAYLGLLDPARGDAASAAVVGTVNGGTPDGGTPDGGAAASAAVAVAVPAGDRRFRIFIHDISGGAPADVVVSVTRREVLSAVELDTGMTGELPVLEEEFEVVESLLATDDRWLKALADRGLDVTKVRVAPLSAGVFEYAEEKGRRILRGLAFVQDFPEDSAWAHPVDGLVAYVDVVSKEVTQVIDLGAMPIPSEHGNYTDPDLTGPLRTTQKPISITQPEGPSFTVSGGNHVEWEKWSVDVGFDVREGVVLHNLAFLDGGRRRPIINRASIAEMVVPYGDPSPIRSWQNYFDTGEYLVGQYANSLELGCDCLGDITYLSPVISDAFGNPREIRNGICMHEEDWGILSKHSDLWTGINYTRRNRRLVISFFTTIGNYDYGFYWYLYLDGTIEFEAKATGVVFTSAFPEGGSDNISQLAPGLGAPFHQHLFSARLDMAIDGFTNRVEEEDVVRQAMGPGNERGNAFSRKRTVLTSESEGSREADARAGRTWIISNPESKNRLGEPAGYKLHSQNQPTLLADPESSIARRAAFATKDLWVTRYCDEERYPTGDFVNQHSGGAGLPAYVAQDREIDGQDIVLWHTFGLTHFPRVEDWPIMPVDTVGFKLRPEGFFDRSPVLDVPANASQSLGTCHRAGGSDAGSGACHNANANANANA
D1-29_02376429hypothetical proteinATGACGACGACGGCGGGACTGGCCCGAGCCAGCAGGCCCGTCCTGCATCCGCGGTTATGCGCCGTGGTGGTGGCAGGCTCCAGTGCCGTGCATCTGTGGCTTGCCGCCACCAGCCGGCATGGCGCTTGGCTGGGTGCACTCATGCTGGTTCTTGCGGTGGTCTGCCTGCCCTGCGTTGTGCACATCTGGGAGCACAGCAGAGTGGCCGCCCTCCGCAGGGTGATGGCCTGTGCTGTCGGCATGGTTGCCCTCCACGGGCTGCTGCTGGCCGCAGGCGGCGCAGGCGGCCACGCGCACGGCGGTGTTCCGGCGTCGGACGCTCCAAGCGTCAATGGCGCCGCCGGACTCCTGCTGGTCATCGCCCTTGAAATCACGACGGCGTTGCTCGCCGCAACGCTGCTGGCCCGCCTTCGGCGCACATCGCCGTAGMTTTAGLARASRPVLHPRLCAVVVAGSSAVHLWLAATSRHGAWLGALMLVLAVVCLPCVVHIWEHSRVAALRRVMACAVGMVALHGLLLAAGGAGGHAHGGVPASDAPSVNGAAGLLLVIALEITTALLAATLLARLRRTSPNANANANANA
D1-29_023771548hypothetical proteinATGAGGGCCGGGCAACCCTGTCCGCACGTCCGGGTTCTCAGTACACTGGAACGCATGACCGAGCAGGAACCGGCCCCACGCAGGGCCGCTGCGGATTCAGAAAGCAGTGCAGGCCACCCCGAGGATTCGGCCTTCGCCTCCACATCTGTGGAGGACGGGGAGGCCCCCGGCCTGGTTGACCCGGACGCCGTCGACACGTCCTTGCGCAGTCCGCAGGAGCGGTCCCGGACCTTCACCGGGATCCTGGTGAATACCGCCCTGGCGAACATTACCACCAGCTATCTGTGGTTCGCCCTGACCTTCTGGGTATATCTGGAGACGCGGAACGTGATCGCCACCGGGGTGATCGGCGGGGCCTACATGCTGTTGATCGCCCTTTCCAGCATCAGCTTTGGCACCTTTGTGGACCGTTACCGCAAGCTGGCCGTGATGCGCTTCGCCGCCGCTTTCACGCTGGTGATGTTCGTGCTGTCCGGGGTCATGTTCCTGCTGACCCCCACCGCACAGCTGCTGGATCTGACCCAGCCGTGGTTCTGGATCTTCGCGCTGATCATCCTGGCGGGTGCCGTCGTGGAAAACATGCGCAACGTAGCCCTCTCCACCATTGTCACCATCCTTATCGAACCGGACCGGCGGGCCAACGCCAACGGCATGGTGGGAATGGTGCAGGGGCTGGCCTTCATCGTCACCTCAGTGCTCTCGGGGCTCTCGATCGGTCTGCTGGGCATGGGCTGGACCGTTGTTGTGGCCGTGGTGCTCACCGTACTGGCTTTCGCGCATCTGCTCTTTCTGCGCATGCCGGAAGAAGTACGGGTTGCCGCCACCGACGCCCACGGCGCCTTCGACCTGCGCGGTTCCATCGCCGCCGTGTTGGCCGTTACCGGGTTGTTCGCGCTGATCCTGTTCTCAACGTTCAACAACTTCATTGGCGGCGTCTACATGGCGCTGATGGATCCGTACGGGCTGGAGATGTTCCCCGTGGAGATATGGGGAGCCGTCTTCGCGCTGGGGTCAACCGGCTTCATCATTGGCGGCGCGTTGGTGGGCAAGTTCGGGCTGGGGCCCAACCCGTTGCGCACCATGCTTCTCGCGGTGGTGGTGATGGGGGTTCTCGGTGCTGTGTTTACGGTGCGCGAATGGGCGTGGCTGTACATCGCCGGTATCTGGCTGTACCTGGTCCTGATACCAGTTGTGGAGGCAGCCGAGCAGACCGTCATCCAGCAGGTGGTCCCGCTTCAGCGGCAGGGCAGGGTCTTCGGGTTCGCCATGGCATTCGAGTCGGCTGCAGCGCCGATTACCTCCTTCCTCATTGCGCCGATCGCCCAGTTCTGGATCATCCCGTACGCGCGGTCCGCTGACGGCGCGGCCCACCTGGCACCGCTGCTTGGCGAGGGCACCTCCCGCGGCATCGCCCTGGTGTTCCTGATTGCCGGGATCATCATGCTGGTGGCTGCGTTGCTTGCCTTCCTGACCCCGGTTTACCGCCGGGTTTCGGCGTCATATGCGCAGGCGGCCGCAGACGCGAAAGAGGCAACGGATACTGTTTGAMRAGQPCPHVRVLSTLERMTEQEPAPRRAAADSESSAGHPEDSAFASTSVEDGEAPGLVDPDAVDTSLRSPQERSRTFTGILVNTALANITTSYLWFALTFWVYLETRNVIATGVIGGAYMLLIALSSISFGTFVDRYRKLAVMRFAAAFTLVMFVLSGVMFLLTPTAQLLDLTQPWFWIFALIILAGAVVENMRNVALSTIVTILIEPDRRANANGMVGMVQGLAFIVTSVLSGLSIGLLGMGWTVVVAVVLTVLAFAHLLFLRMPEEVRVAATDAHGAFDLRGSIAAVLAVTGLFALILFSTFNNFIGGVYMALMDPYGLEMFPVEIWGAVFALGSTGFIIGGALVGKFGLGPNPLRTMLLAVVVMGVLGAVFTVREWAWLYIAGIWLYLVLIPVVEAAEQTVIQQVVPLQRQGRVFGFAMAFESAAAPITSFLIAPIAQFWIIPYARSADGAAHLAPLLGEGTSRGIALVFLIAGIIMLVAALLAFLTPVYRRVSASYAQAAADAKEATDTVPGPT0027970_7DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0027970-cmr-K18833NANA
D1-29_023781782hypothetical proteinATGCCCAAAACTTCCCGTGTCAGCTTCGACATTGACGACATCCCTTTCAGTACCCGCGGATCCTGGCTTAACCTGTCCCGGGTGGTTGGACTCCACAAGAGCGCGCCGGACATCCACCTCGTGACGCACCAAAACGGCCATCAGAATGGCCTCACGGGGATCCTGCGCCTCACGGCCCGCCGGAACGGCGCGAAGGTGGCCGCCTCTGTTGAAACCAACAGCTCCACGCTTTCGTGGATCGATGGAGACGCAAAGGTTGAGGCTGTCTTCGACGGGCCGGAAATCCTGCGGATCTCAGGCCAGGGACTGGCATTGCGCCTGGAAGACGCAGCGGCAAGCCTCACTCCTTTTACCGGAACGTTCTTCTACTACGATCCGGCCAGCAAGGGCTGGTGCTTCACCTCCTATGAAACCGGCTTGAGGTACAGGATCACCGTTCTCAGCGGCACACTGTCCGCCGTCGGGGCCGAAGCGCTGGGGCAGGCGGAGCGTTGGATCGAGGTCAGCGCCCCGGAGGGAACGTGGGAAATCGCCATCGACGAATTCCGCACCGCCCGCAAACCACTGGCGCTCCCGGAGACCTTCGAAGAATCACTCGACCGGGCTGACGCGGCATTTGCGGACTATCTGGACCGCCTTGCCCCCTGGCGGACCCAACGGACCCCGGCGGCTCCACTGGCGGCCTATGTTCTCTATTCGGCGACGGTCAGCCCCCTGGGATTCCTCCGGCGCGAATCGGTCCTCATGTCCAAACACTGGATGGACAAAGTCTGGAGCTGGGACCACTGCTTTAACGCCCTGGCCCTGGCAAACGGCCTCGCCGCCGAAGCCTGGGACCAGTTCCTGGCACCGTTCGATCACCAAACGCCCGAAGGAGCACTGCCGGACTCCATCTCGCACTCCGAGCTCCTGTACAACTACGTCAAGCCACCAATCCACGGGTGGGCGTATTCCAAACTCCGCCAAAACCAGCCAGTGGTGGAAGGCAAGCTGCTCACCGAGATCTACGGCGCCCTTTCCCAATGGACAAGTTTTTGGATCCACCACCGCACCAGCCCGGGACGCGATCTCCCCTACTACCAGCACGGAAATGACAGCGGGTGGGACAACTCCACCACGTTCGACCTGGACCGCCTCATAGAATCCCCCGATCTGGCCGCATTCCTTATTTATCAGCTCGACGTCCTGATCGACCTGGCGGCTGAGCTTGAAACCGAAGAAGAAGGCATGTGGCGCGGGCATAGGGACCGGATCTACCGGGGCCTCATGAGCCTCTGGGACGGCTCAGTGTTCCGGGCATACGCCCCCATCACGGGGAGGTGGAGTACGTCCACCAGCCTCCTGAACCTGCTTCCGCTGGTGATTTCGGACCGGCTTCCCGCGGAAGTCGGCCAAACCATGGCGGCGCGGCTGGCAGAACATCTCACTGAGTGGGGTCCGGCCACCCAGCCGCCGGCTTCGCCGCTGTATGAACCGGACGGGTACTGGCGCGGTCCCATCTGGGCGCCGTCCACCTACCTCATCGAAGACGGTCTGCGCAGGGGCGGATACCTGGAGATGGCGGATGCTGTCAGCAGCCGGTTCCGGCGCCTCTGCGAGACAAGCGGTTTCGCAGAGAACTTCGACGCACTCACCGGTGAAGGACTGCGGGACCGCGCTTACACGTGGACCGCAAGCACGTACCTGTCCCTGGCCGCTGATGCCGTTCGGCGTCAGGCTGACGGTGAAACCTTTGTGATGCCCGACGCTCAGGAGGCCTATGACGATGTGCCGGTCTCCTAGMPKTSRVSFDIDDIPFSTRGSWLNLSRVVGLHKSAPDIHLVTHQNGHQNGLTGILRLTARRNGAKVAASVETNSSTLSWIDGDAKVEAVFDGPEILRISGQGLALRLEDAAASLTPFTGTFFYYDPASKGWCFTSYETGLRYRITVLSGTLSAVGAEALGQAERWIEVSAPEGTWEIAIDEFRTARKPLALPETFEESLDRADAAFADYLDRLAPWRTQRTPAAPLAAYVLYSATVSPLGFLRRESVLMSKHWMDKVWSWDHCFNALALANGLAAEAWDQFLAPFDHQTPEGALPDSISHSELLYNYVKPPIHGWAYSKLRQNQPVVEGKLLTEIYGALSQWTSFWIHHRTSPGRDLPYYQHGNDSGWDNSTTFDLDRLIESPDLAAFLIYQLDVLIDLAAELETEEEGMWRGHRDRIYRGLMSLWDGSVFRAYAPITGRWSTSTSLLNLLPLVISDRLPAEVGQTMAARLAEHLTEWGPATQPPASPLYEPDGYWRGPIWAPSTYLIEDGLRRGGYLEMADAVSSRFRRLCETSGFAENFDALTGEGLRDRAYTWTASTYLSLAADAVRRQADGETFVMPDAQEAYDDVPVSNANANANANA
D1-29_02379819sugB_2COG0395Trehalose transport system permease protein SugBGTGAAGACCCGCCGCTTTTCCTTCAAGACCATTCTTGGAATCGTTCTGACAGCCATCATGCTGTTTCCGGTGTACTGGATGATCAACGTCTCGCTGACCCCCAGCACCGATATGAGGAAATCCCCGCCGAGCCTGTTCCCCGTCGACGTGACCTTCGAAGGCTACGCGGCTGTCCTGCAGCAGCAGATGCCATTCCTGGGAACCAGCCTCATCCTGGGCTTGGGCACCGTGATCCTGACGGTGGCGGTGGCAGCCCCCGCCGCTTATGCCCTAGCCAAGCTCCGACCGCGCGGCACGGGGCTGTTGAACTTCCTTATGCTGATCGCCCAGATGATCCCCGCCATCATCATCGCCATGGGCTTCTACGCCATCTATCTGGGCCTGGGAATCCTCAACACGCTCCCGGGGCTGATTGTGGCTGACTCAACCATCGCGGTGCCTTTTGCCGTGCTGATCTTTTCGGCCTTTATGTCCGGCATTCCTGACGAGTTGCTGAACGCGGCCAAGATCGACGGCGCCTCCCACTGGCGGACTTTTCGCTCCATTGTCATGCCGGTCAGCCGGAACTCCGTGGTCACCGTTTCGCTCTTCGCCTTCCTGTGGGCCTGGTCTGACTTCATCTTCGCCTCCACGTTGAATAACGGCGGTGCCATGCGCCCCATCACCTTGGGCATCTACGCGTACATCGGCAACAACAACCAGCAGTGGAACGCCATCATGGCAACGGCCGTCGTCGCATCCATTCCTGCCGCCGTCCTGCTTGTCGTAGCGCAGAAGTACGTCTCTGCCGGCGTCACCGCCGGCGCGGTCAAAGACTGAMKTRRFSFKTILGIVLTAIMLFPVYWMINVSLTPSTDMRKSPPSLFPVDVTFEGYAAVLQQQMPFLGTSLILGLGTVILTVAVAAPAAYALAKLRPRGTGLLNFLMLIAQMIPAIIIAMGFYAIYLGLGILNTLPGLIVADSTIAVPFAVLIFSAFMSGIPDELLNAAKIDGASHWRTFRSIVMPVSRNSVVTVSLFAFLWAWSDFIFASTLNNGGAMRPITLGIYAYIGNNNQQWNAIMATAVVASIPAAVLLVVAQKYVSAGVTAGAVKDPGPT0016540_8929DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02380972lacF_9Lactose transport system permease protein LacFATGTCACCCGTGAATATCGGGACTGCACAGCGGGAAGCACTCCCCGCCGTCGGGACGCTCGAGGCAGTGCCCGCCCGTGCGCGGCGGGCGGCGGCGTCAACGCGCTGGGCTGCGGCTGCCTTTCTGGCACCCCTGCTGGTGTACCTTGCCGTCTTTTATGCCTACCCGCTGTACCGCAACATCGAACTGAGCCTGAAGGCCTACACGGTCCGCAGCTTCGTCCAGGGAAACGCCCCCTTCGCGGGGTTGGACAACTATATCGAAGTCTTCACCTCGGCCACTTTTTGGCCGGCCGTCTCGCACACTGCCACCTTTACCGTTGTCTCCATCGTCTTCCAGTTCGGGATAGGCCTGGCGCTGGCAGTCTTTTTCCACTCCGGGTTCAGGCTCTCCGGGACTCTGCGGGCGCTGTTCCTGGTTCCGTGGCTGCTGCCGCTGATCGTTTCGGCATCCACCTGGTCGTGGATGCTCAACAGCGATTCGGGCATCGTCAACGCCGCACTCGCAGCGATGGGAATGCCGCAGATCAACTGGCTCACGTCGCCCGACTGGTCCCTTGCCGCCGTCCTCATCGCGAACATCTGGATCGGTGTGCCCTTCAACCTTGTGATCCTTTACAGCGGCCTGCAGGGCATCTCCACCGACGTGTATGAAGCCGCCTCCATCGACGGAGCCAACGCCTGGCAGAAATTCTGGCAGATTACACTTCCGCTGCTCCGGCCGGTTTCGGCGATCACCATCCTGCTGGGCCTGGTCTACACGCTGAAGGTTTTCGACATCATCTGGATCATGACCAAGGGCGGGCCGGCCGGGTCCTCCACCACTCTGGCCACCTGGACGTACCAGCTGGGTTTCGGCTCGGTCCTGCCCGATTTCGGCCCTGCAGCAGCCATCGGAAACCTCCTGATCGTGCTTGCGGTGGTCTTCGGCTTTATCTATATCCGTGTGCAGAGTAGACAGGAAAACCTGTGAMSPVNIGTAQREALPAVGTLEAVPARARRAAASTRWAAAAFLAPLLVYLAVFYAYPLYRNIELSLKAYTVRSFVQGNAPFAGLDNYIEVFTSATFWPAVSHTATFTVVSIVFQFGIGLALAVFFHSGFRLSGTLRALFLVPWLLPLIVSASTWSWMLNSDSGIVNAALAAMGMPQINWLTSPDWSLAAVLIANIWIGVPFNLVILYSGLQGISTDVYEAASIDGANAWQKFWQITLPLLRPVSAITILLGLVYTLKVFDIIWIMTKGGPAGSSTTLATWTYQLGFGSVLPDFGPAAAIGNLLIVLAVVFGFIYIRVQSRQENLPGPT0016535_1248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_023811251hypothetical proteinGTGTTTTACAAGAAATCAATCCAAGCCAGATCCGCTACAGTCCTTGCCTTGGCCGTTCTGGCCGGAGGCGGGCTGGCAGGCTGTTCTTCGGCGCCATCCCCGACAACGGCGGCCGGCACCAGCGAACTTACCTTCTGGGACCCGTACCCCCAGTACGATGCATCGTCCGCGTGGGCCGCATCGATCGACAAATGCGGTGCCGAGGCCGGAGCTACGATCAAGCGGACCGCCTACGACACCAGTGATCTGACCAGCAAGGCTCTCCTGGCCGGCCAGCAGGGTTCCTCGCCCGATGTTCTCCTCGTGGACAACCCGGTGGTTTCCACACTCGCGGAGGCCGGCGTGCTGACGTCCGCCAAGGACAGTGGCCTGGACGCTTCAGCCACCCAGGCGAACCTCCTGGCTGCAGGTGAAATAGATGGCGACACGTTTGGTGTACCCATCGGGGCAAACACCCTCGCCCTTTACTACAATCCCCAAATCCTGAAAGCAGCCGGGGTTGATCCGGCCTCCGTGACTGACTGGGCGTCCCTGAATGCGGCCCTCGAAAAGGTCAAGGCCTCCGGCAAGAAGGGCATTACCTTCTCGGCCGTCGGAACCGAAGAAGGAAGCTTCCAGTTCCTGCCCTGGTTCTGGGGTTCCGGCGCCGAACTTGATGATCTTTCCTCCGGCGACGCAGTCTCGGCATTGGCCCTGTGGAGCGACTGGATCGAGCAGGGACATGCTCCCAATTCGGTCATCAACAACACGCAGACCACCAGCTGGCAGGAGTTCATGGCCGGCGACTTTGCCTTCGCCGAGAACGGAACCTGGCAGAAGGCGGACGCTGCCAAGGCCGGATATGAGGTCATGCCGATCCCTGCGAAGTCCGGCGGTGCCGCAGCTGCCCCGACCGGCGGCGAGTTCCTGACCATCCCGGTACAGAAGGAGACCGGACGGTACGAAACGTCGAAAAAGGTCATCGCGTGCCTCACCAATGCCTCCAATGTGGTGGCTACGGACAACACGCTGAACTACATCGCTCCCACTGAGGAAGCGCAGAAGGCCCAGCTGGCGGCCGACGCAACCCTGAAGCCGTGGATCGACGCCGTCGCCGCTGCCAAGGGGCGCACCAGTGACAACCTGGGCACCAAGTATCCGAAAATCTCTGAACAGCTGTGGACAGCAGTCCAGGCTTCGGTGACCGGGTCCGCCACGCCCCAGGATGCGGCAAAAGCTGCACAGACGGCCGCGGCCGCGGCAACCAAGTAGMFYKKSIQARSATVLALAVLAGGGLAGCSSAPSPTTAAGTSELTFWDPYPQYDASSAWAASIDKCGAEAGATIKRTAYDTSDLTSKALLAGQQGSSPDVLLVDNPVVSTLAEAGVLTSAKDSGLDASATQANLLAAGEIDGDTFGVPIGANTLALYYNPQILKAAGVDPASVTDWASLNAALEKVKASGKKGITFSAVGTEEGSFQFLPWFWGSGAELDDLSSGDAVSALALWSDWIEQGHAPNSVINNTQTTSWQEFMAGDFAFAENGTWQKADAAKAGYEVMPIPAKSGGAAAAPTGGEFLTIPVQKETGRYETSKKVIACLTNASNVVATDNTLNYIAPTEEAQKAQLAADATLKPWIDAVAAAKGRTSDNLGTKYPKISEQLWTAVQASVTGSATPQDAAKAAQTAAAAATKPGPT0016545_9656DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_023821005galRCOG1609HTH-type transcriptional regulator GalRGTGGCAACCATTGGCGACGTGGCACGTGTGGCGGGCGTCTCCCGCAGCACTGTCTCTTATGCCCTGTCCGGGAAACGCACCATTTCCCCGGACACACAGGAACGCATACGCCTGGCAGTGGAAAGCCTGGGTTTCACGCCCAACGCCGGGGCCCGGGCTCTGGCGAGCCAGAAAACGATGGTTCTGGGGCTGCTGCTTCACTTCAATGCAGATGAGTTTGCTCCGGCGATGATGCAGTACGTGATGTCCGTGTCCAGCGCTGCCCGGGCGCACGGCTACGACATCCTCATGATTACCGAGGAGGACGGTGCAGCCGCCCTGCGCAGGGTGACGGAGTCGAACATGGTGGACGGGGTTGTCCTGCTTGATGTCCTCCATTCTGATCCGCGGGTTGAGGTGATGAGATCAGCACGGCAGCCAGGAGCAATGATCGGGCTGCCTGGTGACTTCAATGGCCTTGACGTCTTCGATCTCGACTTTGGCGAATCGGCACGGGTCATTGTGGACCATCTGTACGGGCTTGGTCATCGCGACATCATGCTGCTGTGTCCCCCAAAACACGTCTTCGAGAGAGGCGGAGCATATACGTGGCGTTTCCGGGACGCTGCCCAGGAACGTGCGGCCCGGTACGGCATCCACCTGCACACGTTCTACGGCGAATCCCGCCAGCCAGGAATCCAGACCAGCCTTGAACTGATGCTGGGCTCCCGGCCCGACGCTACGGCTTTGATCGTCCACAATGATGCGACCATCGCCGCCCTCCCCGCGTTCCTCAGCAACCGAGGCATCTCCGTCCCGTCGGACCTGTCCGTGGTGAGCCTTTATGCCAAGGAATTCGGGCGCGACTTCTCATTGCCCTACACCGCTGTCGAGACCACTCCGAGTGAGTTGGCCCGGATGGCAGTGGAACGGCTCGTTCAAAGGATCAATAACCCCGACCAGGCCGGCGAACCCCTCGTCCGCTTTGTCGCCCCCGAACTGGTGGACCGCGGCACGGTCAAGTAAMATIGDVARVAGVSRSTVSYALSGKRTISPDTQERIRLAVESLGFTPNAGARALASQKTMVLGLLLHFNADEFAPAMMQYVMSVSSAARAHGYDILMITEEDGAAALRRVTESNMVDGVVLLDVLHSDPRVEVMRSARQPGAMIGLPGDFNGLDVFDLDFGESARVIVDHLYGLGHRDIMLLCPPKHVFERGGAYTWRFRDAAQERAARYGIHLHTFYGESRQPGIQTSLELMLGSRPDATALIVHNDATIAALPAFLSNRGISVPSDLSVVSLYAKEFGRDFSLPYTAVETTPSELARMAVERLVQRINNPDQAGEPLVRFVAPELVDRGTVKNANANANANA
D1-29_023833339hypothetical proteinATGATGGTGGCCGCGGCTGATGTTCCTCTTCCTGATGAGAACCTGATCCTCCACTACGATTTCGAAGCCAACCAGGTGGCCGGCTCTACGGTTACGGACCTGTCCGCCAAACACCTCAACGGTGCGATCGCGAACGTAGCTAACGCCACGTTCGTGAACGGCCGCACAGCGGGGACGAGGGCCATCAGCCTCCCCGGCGGTGCGGCAGGTTCGACGACGGCGCCCTACGTCACAGTGCCGAACGGGCTCTTCCAGAGCGCGAAGGCTATGACGGTGTCATCGTGGATGAAGTGGGATGGCGGGGCTGATTTTCAGTGGCTGTACGGCCTCGGCAAGGACCTGAACAACGCGACGTTCCTGACGCCGTCGTTCGCCGGCGATTCCAAAACGCGCTCCTCCATCAAGCCTGTCAACGGGACAGCCGAGGTCGGGGTTTCGGGAAGCGGCAAGATCCCGATAGGCAGCTGGGTCAATGTGACCACCACTATCGACCAGCAGACCATCACGTACTACCTCAACGGCATCAGTCTCGGGACGAAACCGGCAACGGTGGACCTGGTTGCGAAGATGTACTCGGCGACTAACACCACATCCGGGGCCTTGGGTAAGGCGTTTTGGGGCGGGCACCCCTTCTTCGACGGCGCGATCGACGACTTCAGAGTCTACTCCCAGGCACTGACCGCGGAGCAGGTGCGGACACTGGCCGGCGACACCGTTCCGAGGGCCGACTTCACGGTGGACCTGGGAACCAGCACCGGCCCCTTCCACGGCGGAGCTTCAGGCACCCTTTACGGGGTGTACGGCGAGGGGCTGCCCTCCAGCAATCTCCTCGAGGCCATCAAACTCCGCACCGTCTCCACCAAGGCACAGGACGGACCCCAGCACCCCGGAGCCGACGCGCTGGAAGTGGTCAAGCCTTTGGTTGACGCCTCCAACGGTGACGTGTACATCTACATGACTGACATATACCGCGGGTTCCCGTATCAATGGCCCGGGAACACGCCGGAAGAACGCCTGAACGACTACAAAGCCAAGGTTGCTGCCCAGGTTGATCAGGTGCTGCAGCTTCCCGTCGAGTACCGGGACAACATCGTTTTTGTGCCGTACAACGAACCCGAGGGGAACATGTTCGGCACGAGCACCTGGAGCTACAACAACATCAGCTGGCTGAACGACCCGCAGTACTTCTTCAAGGCGTGGGACGACACGTACAAACTCATCAGGGCCAAGATGCCAACGGCCCGGATCGGCGGGCCAAATACCAGCACGCTTTACAACCAGGTGCAGGGTTTCCTCCAGCACACGGTGGCTGCCGGTACGGTGCCGGACGTGATGACCTGGCACGAACTGAGCGCACCCCAATCCATCCGCAGCAACGTTGCCCGCTACCGGGGCTGGGAAAACACTGCGTTCGCCGGCACCGCCCTGGCCGGAAAGCACTTGCCCATCAACCTCAACGAATACGCCTTCAACTACCACACCTCAGTGCCTGGGCAGATGATCCAGTGGTTCTCTGCCATCGAGGATTCAAAGGTCGACGGCGACATTGCCTACTGGAACATCGACGGCAACCTCAGCGACTCGGCGGTCCAGGCGAACCGCGCCAATGGCCAGTGGTGGCTCCTGAACTCCTATGCCCAGATGTCCGGGGATACAGTGAAGGTCACCCCGCCCAAGCCCAATGTCAGCTACACCCTTCAGGGCGTGGCAACCCTGGACAAGGCCAAGGCACAATCACGCATCCTCCTGGGTGGGGCAAGCGGCAGGCAGCATGTGCAAGTTAATGGAGTGGACCCGGCAGTTTTCGGCGGAACAGTGCATGCCCTGGTCACCGAGATCGGCTGGAGCGGGCAGTTGGGTGACTCGGCCCAGCCGTCAGTGGTCGGCCAGCTGAACCTCCCGGTGACGAACGGCTCGGTCGGCTTCGATTTCGGTGCGATCCTGCCTGCCCTCAACGCCGACTCCTCCTACGAGATCATCCTCACCCCCGGCGGGAAAGCCTCCACGGGCACCCCCGCAACCGCGCTGTGGAAGGGAACGTACGAGGCCGAGAACGCCGCCTTCACCGGAACCGGCTACACGAAGAACGGACCGGAAGGGACGCCGTCGAACGTCTCCAAGTTCTACACCTCAGGAAACTACAACGTCGGCGGCCTCCGCACGGGGTCAGATGTCAAGCTCAACTTCGATGTCACCGTGCCGCAGACCGGCGACTACGATCTCAGCGTCTTCGCCAACTCCCTGAACACTTATGCGGCAGTCCAGGAACAGGGGCCCACCAACGTGTTCCTCACCGTCGACGGTGGAGCCGAGCAGGAAATGTACCTGCCGCTGGGCTACAAGTGGGTGGTCTGGGACCACGCAGACACCAAGGTCAAACTGACTGCCGGAAAGCACACCATCTCCCTGTCTGCGAAGAATCTGGCCGGAAGCAAGGGGACGAAGGGTGATGCCATCGTGGACAAGATCGACCTCACGCTGAAAAACCCTGCCGCCGGACAGGCGATCCACGAAGGCGAAAACGCAACCCTCAAGGGGGCGGCGGCCGACTACACCCGGACCGGCGTGTCCGGTTCGGGAACGGCACGCATCACTCAAGGCCAAAGCGCGACGTTCTGGGTCTACGCAGCGTCCGACGGCGAGGCGGAGCTTTCCGTGGACGTCCTTGGCACCGGCACTGCGAACCTGAGCGTCAACGGCCAGAAACTGGCCGAAGGAATCACCGGGCCGCTCACCAAGGCGGTGTTCCTAGCAGGCGGCATCAACAAGGTCCAGGTAACAGGTGATTCGGGCACACTCTACGTGGACCGGGTCCGCACTGGGGCATCAACCGGGAAGCTCACCTCCACCACCTATGAAGCGGAGACGGCTACGCTCTCCGGTTCCGCCGCCATCACCAGCTATCTGCTGGCTTCAGGCGGCAAGGCTGTGACGAAAGTTGGCGGAGATCCCAACAACACCAACACCCTCACCTTCGGAAGCGTCCAGGCACCCGCGGCCGGTACGTACGCGCTGACTGTGCGCTACTCCAACCAGGAGCAGTCTCCCGCCACGCACTACAACCCCGACCCGCTGGCACGCCACGCGGAAATCCAGGTCAACGGAGGATCCACCAAGCGAGGCTGGTTCCCCCACACCTTCCACGCAGACAACTTCTGGGAACTCACAATTCCCGTGGAGCTGAAGGCTGGAACGAACACCATCAGGTTCTCCTCCCAGGAGCTGCCGAACTTCAACAGCACTGAACTGCTCTCAACGTCCGCTCCGGAACTGCTGAGGTCAAAATACGCACCGAACATCGACCGCATTCGGGTGACCGCCTTGAAGCGACCGAGCTGAMMVAAADVPLPDENLILHYDFEANQVAGSTVTDLSAKHLNGAIANVANATFVNGRTAGTRAISLPGGAAGSTTAPYVTVPNGLFQSAKAMTVSSWMKWDGGADFQWLYGLGKDLNNATFLTPSFAGDSKTRSSIKPVNGTAEVGVSGSGKIPIGSWVNVTTTIDQQTITYYLNGISLGTKPATVDLVAKMYSATNTTSGALGKAFWGGHPFFDGAIDDFRVYSQALTAEQVRTLAGDTVPRADFTVDLGTSTGPFHGGASGTLYGVYGEGLPSSNLLEAIKLRTVSTKAQDGPQHPGADALEVVKPLVDASNGDVYIYMTDIYRGFPYQWPGNTPEERLNDYKAKVAAQVDQVLQLPVEYRDNIVFVPYNEPEGNMFGTSTWSYNNISWLNDPQYFFKAWDDTYKLIRAKMPTARIGGPNTSTLYNQVQGFLQHTVAAGTVPDVMTWHELSAPQSIRSNVARYRGWENTAFAGTALAGKHLPINLNEYAFNYHTSVPGQMIQWFSAIEDSKVDGDIAYWNIDGNLSDSAVQANRANGQWWLLNSYAQMSGDTVKVTPPKPNVSYTLQGVATLDKAKAQSRILLGGASGRQHVQVNGVDPAVFGGTVHALVTEIGWSGQLGDSAQPSVVGQLNLPVTNGSVGFDFGAILPALNADSSYEIILTPGGKASTGTPATALWKGTYEAENAAFTGTGYTKNGPEGTPSNVSKFYTSGNYNVGGLRTGSDVKLNFDVTVPQTGDYDLSVFANSLNTYAAVQEQGPTNVFLTVDGGAEQEMYLPLGYKWVVWDHADTKVKLTAGKHTISLSAKNLAGSKGTKGDAIVDKIDLTLKNPAAGQAIHEGENATLKGAAADYTRTGVSGSGTARITQGQSATFWVYAASDGEAELSVDVLGTGTANLSVNGQKLAEGITGPLTKAVFLAGGINKVQVTGDSGTLYVDRVRTGASTGKLTSTTYEAETATLSGSAAITSYLLASGGKAVTKVGGDPNNTNTLTFGSVQAPAAGTYALTVRYSNQEQSPATHYNPDPLARHAEIQVNGGSTKRGWFPHTFHADNFWELTIPVELKAGTNTIRFSSQELPNFNSTELLSTSAPELLRSKYAPNIDRIRVTALKRPSNANANANANA
D1-29_023841551hypothetical proteinATGATCCCAACAACGCTCCGGCGTACTGACACAGACGCCGACGCGAGCCCAGACACCAAGTCGAGCCGACGCACCAGGTCGTCGTACGCCATCCACACCCTGATCGGGCTTGCCCTGATGGCGGTGATTTCGTTCCTCCCCGCGCCGGCTCCGATAACACCCACCGGCATGGCGGTGATGGGCGTTTTCGCCGGCACCCTCTACCTTTGGACATTCGTCGATCTGGTGTGGCCGAGCGTCCTTGGCGTCACACTGAGCGCCTTCTTTATCAACTCAGTGATGGAACCGGCGTCCCTCCACGGAATTTGGAAGTCACTCCAGGAGTCAACGGGCAGCTGGGTGGTGGCCTTTGTGATCGGCAGCCTCCTCCTGACGTATGCCCTCAATGAGTCCGGCCTCACCAGCAGGATCGCCGACTGGTTCCTCTCACGCCGGTGGGCGCAGCGAAGCCCCTGGGCCTTCACTTACACCCTGTTCGCCTGCGCCTTCTTCCTGGGCATGTTCCTGGACCTGATCCCCACCCTGGTCTTCATGATCGCCCTCCTTAACGCTGTTTTCCGCAAACTCGGCTACACCTACGGCGAGAAGTACCCCCTCGTTGTCATCATCGGCTGCACCTTCCTGATCAACATCGCTTTCGCCATCACCCCCATTTCCCATCCGATCACTCTCATCGGCTTCGGTGTATTCGCGGGCGCCTCCGGGGGCGGGTCGATCGGATTTGTCGAATACATGCTTGTCGGGATTCCAGTGGGAATCGTCGCCGCCGGCCTCATCGCACTGTTCCTCCGGTACGTCGCCAAGCCGAGCACTGAACGGTTCAAGGATGTGGACTACACCGAACTTGCGGCCGAGAACGCCACGCCGCTCAGCCGGCGGGAAATCGCGACGGCAACGATCTTCTCCCTCGTAGTCATCACCTGGGTCCTGCCAGGTCTCGTCAGCCTGTTCGCCCCTCAGTCGGGCATCGTCGCCTTCTTTGACGACATTACGTTGATTGTCCCGACACTCTTTGGCGTCATTCTCCTGATGCTCCTCCGGGTCGGGGGAAAACCGCTCCTCGATCACGGTCCGGCGCTGCGCACCATCCCGTGGGGCGTGATTTCACTGGTGGCGTGCGCCATGCTCTTCGGCACACTGCTCACCGAGGACGCCGTGGGGCTGAACACCTTCCTCGTTGTGGCCCTCGGCCCGCTGTTCGCCTCCAACCTGAGCCCGTTCATCATCATGCTCATCCTGGTACTTGCGATCGCACTCCTCACCAACGTGGCGAACAATGTCCCGGTGATCATTATGTTCGTGGCGGTCTGCGTTCCCCTGGCCGAAGCGCTCGGAGTGGACAACAGGCTGGTGGGCACCCTGGTGATCCTGGCCGCGCAGATGGGCTTCGCCTTGCCGTCGTCCCTCGCATCAGTTGCCCTGATCTTCGGTGACCCGTGGGTGAAGCCCGCAGCGGTCGTACGGTACGGCGCCTACGCCACACTGGTTTCCGCCCTCAGCATCGTTGTGGTCGGGTTCCCGCTCGCCACCCTGGTATTCGCAGGCGGATAGMIPTTLRRTDTDADASPDTKSSRRTRSSYAIHTLIGLALMAVISFLPAPAPITPTGMAVMGVFAGTLYLWTFVDLVWPSVLGVTLSAFFINSVMEPASLHGIWKSLQESTGSWVVAFVIGSLLLTYALNESGLTSRIADWFLSRRWAQRSPWAFTYTLFACAFFLGMFLDLIPTLVFMIALLNAVFRKLGYTYGEKYPLVVIIGCTFLINIAFAITPISHPITLIGFGVFAGASGGGSIGFVEYMLVGIPVGIVAAGLIALFLRYVAKPSTERFKDVDYTELAAENATPLSRREIATATIFSLVVITWVLPGLVSLFAPQSGIVAFFDDITLIVPTLFGVILLMLLRVGGKPLLDHGPALRTIPWGVISLVACAMLFGTLLTEDAVGLNTFLVVALGPLFASNLSPFIIMLILVLAIALLTNVANNVPVIIMFVAVCVPLAEALGVDNRLVGTLVILAAQMGFALPSSLASVALIFGDPWVKPAAVVRYGAYATLVSALSIVVVGFPLATLVFAGGNANANANANA
D1-29_023851116adhT_2Alcohol dehydrogenaseATGACTGAAACAACAACGATGTTGGCAGCCCGGATGCACGACGTCTCTGCCCCGATGACGCTCGAACGTGTACCTCTTCCGTCCCCGGGGCCCCTGGACGTACGCATCAGGATCAAGGCCTGCAACATAGTCCCCAACCTGGCCAATGTGCTGCGGAACTGGACCACGTGGTTCCCGCAGAATCCACTGCCCGCCCTGCCGGCCATCTTCGGTCTGGACCCAGCCGGCGTCGTGGATGAGGTTGGCCCCGGCGTGCAGGGCTTCAAGCCGGGAGACCGCGTTTATGTGAACCCCGGCCGCTACTGCGACTCCTGCCGCGAATGCCGGTCGAACAACCGGATGCACTGCCAGAACTTCGCGTTCGCCGGCTACTTTGGCCTGACGCCCACCAGCGGAATGATGCTGGACCGCTATCCCTACGGCGGACTGGCGGAGTACATGATTGCCCCCCAGTATTCGCTGGTAAAGCTTCCGGCAAACGTGAGCTTTGAAACAGGGGCACGGCTTGGGTACCTGGGCACCGGGTATGCGGCCCTCCGCAAGGCGGGAGTCGGTTCCACCACCACTGTGCTCATCAACGGAATCAGCGGAACCCTTGGCCTCGGCGTTGCATTGTTTGCCCTCGCCATGGGCGCGCCGGCCGTGCTGGGTACCGGGCGCAACCGGGAACTCCTGGAGAAGGTCCAAGCCCTGGCTCCGGATCGGATCCGGACTCATTCCCTGTCCGACGGGCCCGTCAGCGACTGGGTAAAGTCCGTCACCGGCGAAGGCGTCGACGTTCACATCGACGCGCTGGGTCCCGGCGCTGACCACGAAGTCTTCAATGAAGGGCTGAAATCGCTCCGGCGGGGCGGCATCGCCGTCAACATTGGGGCCACGGCCGGGCTGGTGCCCATTGATGTGCACCACATGATGGACCAGCAGTTGCGTTTGATCGGATCGTGCTGGTTCAGCGCCGGCGAGGGCCAGGCGATGGCTGACATGGCCGGCTCCGGCGCCGTGGACCTTTCAGTTTTTGAGCACGTCGTTTTCCCGCTTGAAAAAGTCAATGAGGCCATTTCCGGCATATCGGCCCGCAAGGGCGGGTTCAGCAACTTCATTATTTCCCCGTCTTAAMTETTTMLAARMHDVSAPMTLERVPLPSPGPLDVRIRIKACNIVPNLANVLRNWTTWFPQNPLPALPAIFGLDPAGVVDEVGPGVQGFKPGDRVYVNPGRYCDSCRECRSNNRMHCQNFAFAGYFGLTPTSGMMLDRYPYGGLAEYMIAPQYSLVKLPANVSFETGARLGYLGTGYAALRKAGVGSTTTVLINGISGTLGLGVALFALAMGAPAVLGTGRNRELLEKVQALAPDRIRTHSLSDGPVSDWVKSVTGEGVDVHIDALGPGADHEVFNEGLKSLRRGGIAVNIGATAGLVPIDVHHMMDQQLRLIGSCWFSAGEGQAMADMAGSGAVDLSVFEHVVFPLEKVNEAISGISARKGGFSNFIISPSPGPT0006375_672DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_023861482sad_3Succinate-semialdehyde dehydrogenaseATGTCTGTCCCCGTACTAAACGAACTCACATTGCTGGACACCGTGCCCACCGGCCTGCTGATCGGCGGGCAGTGGCGGGACGCGTCCGACGGCGGCACGTTTGACGTGCACGACCCCGCCACCGGGGAGGTGCTCGCCACCCTCGCCTCCGCCACCAGCGCGGACGCCGTCGCCGCCCTGGAGGCCGCCGACGCCGCCCAGGCCTCCTGGGCCAGGACCGCGCCCCGGGAACGGGCGGAGATCCTGCGCCGCGCCTTTGACCTGGTCACCGAACGTGCCGAGGACTTCGCCCTGCTGATGACCCTGGAGATGGGCAAGCCGCTGGCCGAGGCCCGCGGCGAAGTCACCTACGGTGCGGAGTTCCTGCGCTGGTTCTCGGAGGAAGCAGTCCGCGACTACGGCCGTTACCTCATCACCCCCGAGGGCAAAAACAAGATCCTGGTCCAGCACAAACCGGTCGGACCCTGCCTGCTCATTACCCCCTGGAACTTCCCGCTGGCGATGGCCACCCGCAAGGTCGCCCCCGCCGTGGCCGCCGGCTGCACCATGGTCCTCAAACCAGCCAAGCTCACCCCGCTGACCGCGCAGTACTTCGCGCAGACCATGCTCGACGCCGGCCTGCCCGCCGGCGTCCTGAACGTCGTGCCATCGTCGTCGGCGTCGGGGATATCCGGGCCCTTGTTGAAGGATTCCCGGCTCCGGAAAGTCTCGTTCACCGGCTCCACCCCCGTCGGCAAACGCCTCATCGCCGACGCCGCGCAGAACGTACTGCGCACCTCGATGGAACTCGGCGGAAACGCGCCCTTCATCGTGTTCGAAGACGCGGACCTGGACAAGGCCGTCGAAGGCGCCATGGCCGCCAAGATGCGCAACATGGGCGAGGCCTGCACCGCCGCCAACCGGTTCCTCGTCCACGAATCCATTGCCACCGAGTTCACCACCAAGTTCGCCGCCGCGATGGGAGCCCTGACCACAGGCCACGGAACCGACCCGGCAACCCAGGTGGGCCCGCTCATCGACGCCGGAGCCCGCAACGACGTCCACGCCCTCGTGACCGCCGCCGTCGACGCCGGAGCAACAGCCGTCACCGGAGGCGCCCCCGTGGACGGCCCCGGCTACTTCTACCAAGCCACCGTCCTCGCCAACGTCCCCAACGACGCCGAAATCCTCCGCCAGGAAATCTTCGGACCCGTCGCGCCCGTCACCACCTTCAGCACCGAAGAAGACGCCATCCGGCTCGCCAACGCATCCGAGTACGGGCTCGCGTCCTACCTCTACAGCCGCGACTTCAACAGGCTGCTGCGGGTGGCCGAACAGATCGAATTCGGCATGGTCGGGTTCAACGCCGGCATCATCTCCAACGCCGCCGCACCCTTCGGCGGCGTCAAGCAATCAGGACTCGGCCGCGAAGGCGGCTCCGAAGGCATCGCCGAATACACCACCACCCAATACATCGGCATCGCCGACCCCTACATCAGCTAGMSVPVLNELTLLDTVPTGLLIGGQWRDASDGGTFDVHDPATGEVLATLASATSADAVAALEAADAAQASWARTAPRERAEILRRAFDLVTERAEDFALLMTLEMGKPLAEARGEVTYGAEFLRWFSEEAVRDYGRYLITPEGKNKILVQHKPVGPCLLITPWNFPLAMATRKVAPAVAAGCTMVLKPAKLTPLTAQYFAQTMLDAGLPAGVLNVVPSSSASGISGPLLKDSRLRKVSFTGSTPVGKRLIADAAQNVLRTSMELGGNAPFIVFEDADLDKAVEGAMAAKMRNMGEACTAANRFLVHESIATEFTTKFAAAMGALTTGHGTDPATQVGPLIDAGARNDVHALVTAAVDAGATAVTGGAPVDGPGYFYQATVLANVPNDAEILRQEIFGPVAPVTTFSTEEDAIRLANASEYGLASYLYSRDFNRLLRVAEQIEFGMVGFNAGIISNAAAPFGGVKQSGLGREGGSEGIAEYTTTQYIGIADPYISPGPT0001580_741DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_023871758ilvG_2Acetolactate synthase isozyme 2 large subunitATGACATCACAGGTAGAAACCCCAAGCGGCGCTGTTGCGTCCCTATCCCCCGACCCGGCCCTGCCGGCCCAAACAGCGCCTCAAACAGCACCGGGCACAGGAAGCGCATCACCCCGCACGGCCGCCGCAACGAAGTCTGCTGGCCACGTCATCGTTGACGCCCTGGTGGCCCACGGCGTCAAGCGCACCCATATCGTTCCCGGCGAAAGCTTCCTTGACGTCCTGGACGGGCTGCATGGCGCGGACATCGAAACCATTGTTTGCCGCCACGAGGGCGGAGCCACTTACATGGCAGAAGCCGACGGCAAAATGAACCAGCTGCCGGGTGTGGCAATGGTCACCCGGGGACCCGGTGCCGCCAATGCCCACGTCGGCCTGCACACCGCGTGGCAGGATTCCACGCCCATGGTGCTGTTCGTGGGGCTGATCCCCTTCGCCCACCGGGACCGCGAGGCGTTCCAGGAATTCGACATCAAAGCCTGGTTCGATACCGGCGCCAAGCGCGTGATGGTCCTGGACCACGCCGAGCGTGCTTCCGAAATCGTCGCTGAGGCCTTCTTCGCCGCCATGAGCGGACGGCCAGGTCCCGTGGTCATCGGCCTGCCCGAGGACGTCATCCGCAAGCAGATCGATCCGACTCCGCACCCGCCGATCCCGGTGGCAACCGGCGGAATGACCGGCACTGATTCAGACGCCCTTTCGGCAGCCCTTGCCGCCTCAACCAAGCCACTGTTTGTCACCGGGGGCAACGACTGGACCCAGGAAGGCGCCGACCAGCTCACCGAATGGCTGGAAAAGCACCACATCCCTGCCGCCGCAGAGTGGCGCACGGAAGGTACCGTACCGTTCGATTCCCCCTCCTACGTTGGTCCTATAGGTTACGGCCGCCCCAGGCCCACCTACGACCTGCTGGAAGAAACGGACCTGCTGATCTTCGTTGGCACCGTCCCCGGCGACGTCATCACCGACGGATTCCTCTGCCGCCAGGACTGGAACAAAAAGAACTTCCTCGTCACCATCGATCCCTCCCTTCGGGGCCGTTCCGGGCCCGTTTCCTATCAGATCGTGGCCAAACCCGACGTCTTCATTCGCGACCTTGCCAAGATCCAGCTTCCGGTGAAAGAAGAGTGGAAAGCCTGGACAGGACGGATGCGGGCCGAGCAGGTTGCCTTCGCTGCGCTCCCGCCGGCAACGCCGTCGGCTGGTCCCGCCCGGATGGACACCCTGATGGCAAACCTGGTGCCCACGCTGCCTGCCGACGCGATGGTAACGCTTGGCGCAGGCGAGCACACCAACTGGGCACACCGCTATTTTCCTACGCAGCGCTACGCCTCAATGATCAGCGCCCGCAATGGCTCCATGGGGTACTCCGTTCCCTCCGCCATCGCCGCCTCCCTGGAGTACCCCGGCAGGCGGGTGGTGACCATCGCCGGTGACGGCGAATTCCTCATGAACGGCCAGGAACTGGCCACCGCAGCCCAGTACGGCGCCACTCCCCTGGTCATCGTGATGGACAACCAGGAATACGGAACCATCCGCACCCACCAGGAACGCCACTACCCCGAACGGGTCTCCGGTACACAGCTGAAAAACCCGGAATTCGCGCTCATGGCGCAGGCCTTCGGAGGCTTCGGAATCAAGGTCGAACGCGACGCCGATATCCCTGCCGCCATCGAAGCGGCCCTCAGCGCCATCGATGAAGAGCAGAGGTTCGCACTCATCCACCTGGTGGTTGAGCAGAGGGTCAGAGCCTACTAAMTSQVETPSGAVASLSPDPALPAQTAPQTAPGTGSASPRTAAATKSAGHVIVDALVAHGVKRTHIVPGESFLDVLDGLHGADIETIVCRHEGGATYMAEADGKMNQLPGVAMVTRGPGAANAHVGLHTAWQDSTPMVLFVGLIPFAHRDREAFQEFDIKAWFDTGAKRVMVLDHAERASEIVAEAFFAAMSGRPGPVVIGLPEDVIRKQIDPTPHPPIPVATGGMTGTDSDALSAALAASTKPLFVTGGNDWTQEGADQLTEWLEKHHIPAAAEWRTEGTVPFDSPSYVGPIGYGRPRPTYDLLEETDLLIFVGTVPGDVITDGFLCRQDWNKKNFLVTIDPSLRGRSGPVSYQIVAKPDVFIRDLAKIQLPVKEEWKAWTGRMRAEQVAFAALPPATPSAGPARMDTLMANLVPTLPADAMVTLGAGEHTNWAHRYFPTQRYASMISARNGSMGYSVPSAIAASLEYPGRRVVTIAGDGEFLMNGQELATAAQYGATPLVIVMDNQEYGTIRTHQERHYPERVSGTQLKNPEFALMAQAFGGFGIKVERDADIPAAIEAALSAIDEEQRFALIHLVVEQRVRAYPGPT0008185_6792DIRECT 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
D1-29_02388678ligK_3COG06844-carboxy-4-hydroxy-2-oxoadipate aldolaseATGGCCCGCGTCATCAACACCATCGTACGGACCCCCGCCGAGATCGCCTCGGCCTTCGCAGGGCTGGGAGTGGCCACCACGCACGAGGCCCAGGAGCGCTCCGGGCTTCTCCACTCACGATTGCAGCCCCGCCAGTCGGACGCCGCCATAGCCGGCACCGCTGTCACCTGCGAGGTGGCCCCGGGCGACAACTGGATGATCCACGTGGCACTCGAACAGGCCCAGCCGGGGGACATCCTCGTCGTGACACCCACATCGCCATGCGACGACGGGTATTTCGGAGATCTGCTCGCAACGTCCGCCATGGCGCGCGGCGTCCGCGGCCTCGTCATCGATGCGGGCGTGCGGGACCTCGCGATACTCAGGCGGATGGGTTTTCCCGTCTGGAGCAAGGCCATCAGCGCGCAAGGCACCGTCAAGGAGACCCTGGCCAACGTCCAGGTTCCCATTGTGTGCGGCGGCCAACTCATCTCACCAGGCGACGTCATCGTCGCGGACGACGACGGTATCTGCGTCGTCCGCCGGGAGGATGCCGCTGCTGTCCTTGAAGCCGGCCTGCGCCGGGAGGCCGCTGAAGAAGAGAAGCGCGCCCTCTATGCCCAAGGACTCTTGAGCCTGGATGTGGTGGACGGAATGCGCGCCCGCCTCGAGGCCAAAGGCCTGCAGTACCTTAGCTAGMARVINTIVRTPAEIASAFAGLGVATTHEAQERSGLLHSRLQPRQSDAAIAGTAVTCEVAPGDNWMIHVALEQAQPGDILVVTPTSPCDDGYFGDLLATSAMARGVRGLVIDAGVRDLAILRRMGFPVWSKAISAQGTVKETLANVQVPIVCGGQLISPGDVIVADDDGICVVRREDAAAVLEAGLRREAAEEEKRALYAQGLLSLDVVDGMRARLEAKGLQYLSPGPT0002085_852DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
D1-29_02389912hypothetical proteinATGAGCAATACATTTAAAAAAGTACGCTTCGCAGGTGCTGCCCAGGGATTCAACTGGCTGCCCGTCTTCGTCGCCGACGAGCAAGGAATCTTCGCCAGGCATGGAATCAGCATCGAATACATGCGGCTGGGTTCCGTCGATAAGGCGACGGCGGCCGTGCGTGAGGGAACAGCAGACCTTGCGATCACCCCTCCGGAAGGCGCCGTCGCCGATTTCGTGACCGGTGGCACGCTGCGCATCGTTGGCTCCAACTCGGAGCGGCTCCCCATGTCACTCGTGGCGCGGGCGGACATTGCGACGCTGGAGGAACTGCGCGGCAAGCGGATCGGCACGTCGTCGCTCACTGAAGGCACCGCCATCTACACGCAGCTGATGCTCCGCGAAGCCGGCCTCAGCTATCCGCAGGATTACAGCTTCGTCCTCGCGGGCGTGCACACCACCCGCTGGGCTGCCCTGCAGGAAGACGGGATCGACGCCGCCCCGCAGCCCGCACCCTGGAACTTCCTCGCCGAACGCTCCGGCTACAACCTGCTCGGCGAGGTTGCCGATGTTATCCCCGAAATCATCTTCGCCGCCATCGTTGGCAATGAAGACTGGCTGCGTGACAACAGTGAGCTGGTGCAGGACCTTGTCTCGGCCCTCTCCGAAGCCCATGACTTCGTCAACAACCCAGCCAACGACTCCGTCACGCTGCCCATTTACCAGCGCCTCACCACGCCGGATGACGCAGAGCTCGCCGCCCGCGGCCTGGCGTACACCCGCGACCTCGGCATGTGGCCGGCAGGACTCCGGGTCTCACCCGAGGCGTTGGCGGCAACCATTGACGTCATGATCGGCTCCGGCCTCCTACAGGACTCCGACAGGACCACCGCCGGCGGCGTCGTGGACAGCAACTTCGCGGTAGGGGCATAAMSNTFKKVRFAGAAQGFNWLPVFVADEQGIFARHGISIEYMRLGSVDKATAAVREGTADLAITPPEGAVADFVTGGTLRIVGSNSERLPMSLVARADIATLEELRGKRIGTSSLTEGTAIYTQLMLREAGLSYPQDYSFVLAGVHTTRWAALQEDGIDAAPQPAPWNFLAERSGYNLLGEVADVIPEIIFAAIVGNEDWLRDNSELVQDLVSALSEAHDFVNNPANDSVTLPIYQRLTTPDDAELAARGLAYTRDLGMWPAGLRVSPEALAATIDVMIGSGLLQDSDRTTAGGVVDSNFAVGANANANANANA
D1-29_023901032ligJ_12-keto-4-carboxy-3-hexenedioate hydrataseATGACACAAACACTGACCATAGACTGCCACGGCCACTTCACCACTGAACCCGCTGACTTCCACGCCTACCGCGCCGCGCAGATCGCCCACGCCGAGGGCCGGGGGGAAGCTCCCGGCCCCTATCGTGGAATTGCCGATGATGAACTGCGGGAGATCATTACGGCCAACCAGCTGAGGCTGCAGCGTGAACGCGGGTCAGACGTCACCATCCTTTCGCCCCGGGCATCCGGGATGGGCCACCACGTTCCCGGGCAGGACGCGGCCAACGACTGGGCCCGGCTGTCCAACGACACAATCGCGAGGATCTGCGATCTCTTCCCGGAGAACTTCGCAGGCGTGTGCCAGCTCCCGCAGACTGTCGAGGGAGGACTGCGGCCAGTCATCGCCGAACTGGAACGCTGTGTCGAAGCCGGCTTCGTGGGATGCAACCTCAACCCGGATCCCTCCGGCGGCCGATGGTCCGCCCCACCGCTGACCGACCGCTGGTGGGACCCGCTCTGGGATGCCATGGAACGACTCGACGTCCCTGCGATGATCCATGTTTCAGCTTCGTGTTCTCCGGCGCTCCACACCACCGGGGCACACTACCTGGCGGCCGACACCGCAGTGTTCATGCAGTTGCTCGCCGGGGACCTCTTCGAGCGGCATCCGGACCTGCGCCTGGTGATACCCCATGGTGGAGGCGCCGTTCCTTATCACTGGGGGCGCTACCGGGGTCTTTCAATCATGCTCGACAAGCCGCCATTGGCTGAGCACCTGATGCGCAACGTCTTCTTCGACACCTGCGTCTACCACCAGGAGGGTATCAATGCGCTGTTCTCGGTCATTGACCCCTCAAACATCCTGTTCGGCTCGGAATTGCTTGGTGCCGTCAAAGCTGACGATCCCGAGACGGGCCACCCCTTTGACGACACGAAGCGGTACGTGGAGGCGCTGAACCTGGACCAACAGGACCGGCATGCCGTCCTCAGCGGGAATGCACGCCGAGTCTACCCACGCCTCGACGCCCGACTCGCCGCCCAAGGGCGGTAAMTQTLTIDCHGHFTTEPADFHAYRAAQIAHAEGRGEAPGPYRGIADDELREIITANQLRLQRERGSDVTILSPRASGMGHHVPGQDAANDWARLSNDTIARICDLFPENFAGVCQLPQTVEGGLRPVIAELERCVEAGFVGCNLNPDPSGGRWSAPPLTDRWWDPLWDAMERLDVPAMIHVSASCSPALHTTGAHYLAADTAVFMQLLAGDLFERHPDLRLVIPHGGGAVPYHWGRYRGLSIMLDKPPLAEHLMRNVFFDTCVYHQEGINALFSVIDPSNILFGSELLGAVKADDPETGHPFDDTKRYVEALNLDQQDRHAVLSGNARRVYPRLDARLAAQGRPGPT0005260_138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005260-ligJ-K10220NANA
D1-29_023911584pchF_14-cresol dehydrogenase [hydroxylating] flavoprotein subunitATGAGCCAACCCGAGGCCCTGCCGACGATCCCCGATGCGATGGCGCAAGAGCTGGCCGCACTTCTGGGACAGGATGCCGTCCACGTCGAACGGACCCGCATCGATGACTTCAAGGACGATTATTGGCTCACCGGGGATGAAACCTACGCGGCGTCAGCCGTTGTACAGCCCACCACCACCGAACAGGTTCAGGGAATCCTGGAGATCGCACGGCGCTACGCCGTTCCGGTCTGGCCCCACAGCCAGGGGCGCAACCTGGGGCATGGCGGTGCCTCCCCGAAGGTCCGGGGGTCCATCCAGCTTGGTTTCCAGCGGATGAACCGGATCCTTGAGATTAACGAAGAGCTCGCCTATGCAGTGGTGGAGCCCGGAGTGACCTGGTTCGATCTGCACGACGCCGTACGCAACAAGGGTTACGACCTCGCCACTGCCTGCCCTGACCTTGGCTGGGGCTCCATCGTGGGCAACACCATGGACGGCGGCCACACGTACCAGCGGTACGGCGCGGACTACATGCTGGCCGCCGGCCTTGAAGTCGTGATGCCGGATGGTGCCATCCTGCGCACGGGGCAAGGTGCCATTCCTTCCAGCCCTGCCTGGCACACCTACAAGCGAAGCCTGGGACCAAACCTCGAACCGATGTTCGTCCAATCGAATTTCGGGATCGTTACCAGGATGGGCATCTGGCTGACGCGCCGGCCGGAATCCTTTGCACCCTTGCTCCTTGCCATCGACGACGAGGCGGACTTCGAGGCTGCCGTCGACACCATCCGTGAGCTCCGCCTTGCCGGGCACCTGGAAGGCATGCCGGCGCTGTACTCCACCCTGCGGGCATGCCATATGCTGCGCGATGCACCGGTTGCGGGGCAGGAGCATCCTTTCACGGACTCAGAGCTGCGGGACATTGGGATCCATGCGGGAGTTGGTGCCTGGGCGGCACGCGCGGCTGTCTGGGGTGCACCGGAAATCGTGGATGCGAAGGTGCGCCGGATCCGTGACGCGTGGGAGGCGATCCCCAGTGGCCGGGTGGAGGCCCGCCGCACTTACTCGCCCAATGAGTACAACCAACTTGAGTCTTCCGCCGAGCAAATCATGGCCGGCGAACCAACGCTGAAGGCCATTGAAAACACTCCACCCAACATCGCGCACGTTGATGTTTCCCCCGTGGTTCCCTTGCAGGGAACTGCGATGCGCGGCGTCATCGACGTGCTGCGTCGGGAGTTCAAGGCCGCCGGCCGCGACTTCGGCGCCGGCATCATGGTCACAGGAGAACGTTCTGCCGTGGTAATCGCCGGCGTTCGCTACGACAGGACGGATGAAAACTCCACCCGTTCCGCGTTCGCCCTGGCCCGCAGCCTGATCCTCGAACTCGGAAAGCTGGGGATTGCCGACAGCCGCCCCCACTTGGAATTCATGGACCTGGCCGCCGCGGAGTACAGCTTCAACGACAACATCTACCGGCGGGTGGCCACCCAGATCAAGGACGCCCTCGATCCCGACGGGATCCTCTCCCCCGGCAGGCACGGCATCTGGCCAACCACCCTCGGCCAGGCCCGAACCCATACCTCGAAGGACCCGAGATGAMSQPEALPTIPDAMAQELAALLGQDAVHVERTRIDDFKDDYWLTGDETYAASAVVQPTTTEQVQGILEIARRYAVPVWPHSQGRNLGHGGASPKVRGSIQLGFQRMNRILEINEELAYAVVEPGVTWFDLHDAVRNKGYDLATACPDLGWGSIVGNTMDGGHTYQRYGADYMLAAGLEVVMPDGAILRTGQGAIPSSPAWHTYKRSLGPNLEPMFVQSNFGIVTRMGIWLTRRPESFAPLLLAIDDEADFEAAVDTIRELRLAGHLEGMPALYSTLRACHMLRDAPVAGQEHPFTDSELRDIGIHAGVGAWAARAAVWGAPEIVDAKVRRIRDAWEAIPSGRVEARRTYSPNEYNQLESSAEQIMAGEPTLKAIENTPPNIAHVDVSPVVPLQGTAMRGVIDVLRREFKAAGRDFGAGIMVTGERSAVVIAGVRYDRTDENSTRSAFALARSLILELGKLGIADSRPHLEFMDLAAAEYSFNDNIYRRVATQIKDALDPDGILSPGRHGIWPTTLGQARTHTSKDPRPGPT0005880_69DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_TOLULENE-4-SULFONATE_DEGRADATION_PATHWAY_1,PGPT0005880-pchF-K05797NANA
D1-29_023921785tfdB2,4-dichlorophenol 6-monooxygenaseATGACACTCGAAAATTCGCCGTTTGACTCGGATGTGCTGGTCATCGGCACAGGACCGATGGGCGCGACTACCGCGCTTGCACTCGCGACCTACGGCATACGCACAGTGGCGGTCAGCAGGGAAAACTGGCTTGCCCACACCCCCCGCGCGCACATCACCAACCTCCGTGCCATGGAGGTGCTCCGCAGCCTGGGCATCGAGGAGGAGGTGAAGCAGCAGGCAACCCCATGGAACCTCATGGGCGAGACAAAGTTTACGACCAGTCTCGCGGGGAGGGAGATCGCGCGTCTGAGCAGCTACGGAACGGGAGACGGTCGGCAGGGAGACTACCGTCAATCCAGTCCCTGCTCCATGGTGGACATCCCCCAGTCGGACCTGGAGCCGATTATCCTCAACAGTGCGGCAAAGCGGCGGGCATCGTTCGAATTCAACACCCTCTACCGCTCCAGCGTGCAGGACGACGACGGGGTCACAGTTACGCTTGAACACCGCCCCAGCGGGCGCGTCTACCAGCACCGCACCCGCTACCTGGTGGGTGCCGACGGGGCGCGTTCCCAGGTGGCCCAGGACGCCGGAATTCCCATCGAGGGCGTCTTGGCGCGTGCTGGCACGGTGTACGCACAGTTCCGTGGCGACGTCTCCAAGTACGTGGCCCACCGGCCGGCAATCATGAACTGGATCGTCAACCAGGAGGCAGCCGTCGGTGAAATCGGCCTGGGGCTTCTGCGGGCCGTGCGGCCGTGGGACAACTGGATCGCGGGATGGGGGTTCGACATCTCGCAAGGCGATCCTGACCTGAGCTTTGAGACAGCACGGACCCGGATCAAGGCCTACATCGGCGACCCCGACTTCGAGCCGGAAATCACCTCGGTAGGGCCCTGGTACGTCAACGAGGCTTACGCGCCCTACTACTCAAACAACCGCATCTTCTGTGGAGGGGACGCCACCCACCGCCATCCCCCGACGAACGGTCTCGGTTCAAACACCTGCATCCAGGATGCCTTCAACCTGGCCTGGAAGCTTGCCTATGTCATCAAGGGCGACGCTGCCCCGTCACTGCTGGACTCCTACACAGAGGAGCGGGCACCGATCGGTCGGCAAATCGTTGAGCGCGCGAACCAGTCGAGGAGGGAGTTTGCTCCCCTGAAGCAGGCCTTTGCGGCAGAGCGTCCCGGCGGGCCGGCGGGCCTGGAAAAGCTCATTGCCCCTACCGCCGAAGGAGAAGCTGCCCGAGCAGAACTTGCACGCGCCCTTGAGCTCCGGAATTACGAGTTCAACGCCCAGGGTGTGGAGATGAACCACCGCTACGAATCCGGGGCAGTGGTTCCGGACTCCGATGAGCCCGAGGTGTGGGCACGCGACAAGGAACTTTACGCGCAGGCGTCAACCCGTCCAGGTGCAAAACTCCCTCACGCCTGGCTTGTGGACGCCTCCGGACACAAGGTCTCAACGCTCGATCTCGTGGGCGACGGCTACTTCACCCTATTGACCGGGCCGTCAGGTACGGCATGGGTGGAGGCAGTCGCCGGGCTCGGGCACGCCCGCGTGCGGGCGCGGGTGATCGGCGCACCGGATGCGCAAGACCTCTATTTCGCCTGGCACAAGCTCCGCGGGATGGATGAAGACGGGGCCCTGCTGGTGCGTCCCGACGGCGTCATCGCGTGGCGCTCCCTGCATTCAGCTGGAGACGGGGCCCAGCAGGCGCTGTCCGAGGCCCTGACGGCCATCCTCGGAGTGAACACCGCGGACTTAAGCCATCAGGCCCCCATGGTGAATGTCCCATGAMTLENSPFDSDVLVIGTGPMGATTALALATYGIRTVAVSRENWLAHTPRAHITNLRAMEVLRSLGIEEEVKQQATPWNLMGETKFTTSLAGREIARLSSYGTGDGRQGDYRQSSPCSMVDIPQSDLEPIILNSAAKRRASFEFNTLYRSSVQDDDGVTVTLEHRPSGRVYQHRTRYLVGADGARSQVAQDAGIPIEGVLARAGTVYAQFRGDVSKYVAHRPAIMNWIVNQEAAVGEIGLGLLRAVRPWDNWIAGWGFDISQGDPDLSFETARTRIKAYIGDPDFEPEITSVGPWYVNEAYAPYYSNNRIFCGGDATHRHPPTNGLGSNTCIQDAFNLAWKLAYVIKGDAAPSLLDSYTEERAPIGRQIVERANQSRREFAPLKQAFAAERPGGPAGLEKLIAPTAEGEAARAELARALELRNYEFNAQGVEMNHRYESGAVVPDSDEPEVWARDKELYAQASTRPGAKLPHAWLVDASGHKVSTLDLVGDGYFTLLTGPSGTAWVEAVAGLGHARVRARVIGAPDAQDLYFAWHKLRGMDEDGALLVRPDGVIAWRSLHSAGDGAQQALSEALTAILGVNTADLSHQAPMVNVPPGPT0006950_132DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_CHLORPHENOL_DERIVATE_DEGRADATION,PGPT0006950-tfdB-K10676NANA
D1-29_02393900hypothetical proteinGTGATTGAACTCAGTGAGGAGCATAACATCGGATTCGTTGAAAGGGGAAGAGAGACAGTGGAGACCTCGACTACCAGCAGCAGGGCTTATGTGGCAGGCGAGGCCGGGGAGGCAGCACCCCTTGGCACCCTCGAGCGTGGCCTTTACCTGTTGGGCCTCTTTTCAACGGAACGGCCGGAGTGGACGCTGCGTGAACTGCGGGAGGAATCGCAGTTGCCGAAGGCGACCGTACGGCGACTGATGCTCACGCTGGAGCGGCTGGGATGGGTGGAGCAGGACGTGGCGGGCAACTACGCCCTTGGCCCGCGAATGCTTCAAAGCCTGTACGCGAAGACGTCGGCCAGCGTGCTGGTCAGTGAAGCCCGGCCCTACCTGGAACGGCTCGCCCAGAGCACCACTGAATCCGCCCTCCTGTCGGTATGGGGCCACGAAGGAACACTGTCCCTGGACCTCGTCACAACGGAGCGGCACTTCAAACCGTTCACCTCGGCGGGCATGGTGGTCCATGGACTGATGTCGGCCGATGCGAAGGTGCTGGTGGCGTTCGCGCCCGAGATGCTTTGGGAGGCGCGGTATGCTTCCCTCTCACAAGCCATGCCGGCCGGAGTCACAGTGGATTCCATGCGGGCGAAATGGCGGGAGGTCCGCGCTGCAGGCGTCGCCTTCGATTACGAGGAATGGAAGCCAGGCGTCTGCGCAGTGGCGGCGCCGGTCCTCGGTGCCGACGGCTTTGTCCTCGCCTCCATCTCCCTGGTCATCCCCAGTGAGCGCGGCGGCAAGCAGGAGCTCGAACGCTACGCAGCAGCCGTCCGCGACGCTGCCGCAGCGCTCTCCCGGGTTCACATTGAGCGGAACCAATCATTGGGAATGACTCCTGATGATGGTGATTCACAGGGCTGAMIELSEEHNIGFVERGRETVETSTTSSRAYVAGEAGEAAPLGTLERGLYLLGLFSTERPEWTLRELREESQLPKATVRRLMLTLERLGWVEQDVAGNYALGPRMLQSLYAKTSASVLVSEARPYLERLAQSTTESALLSVWGHEGTLSLDLVTTERHFKPFTSAGMVVHGLMSADAKVLVAFAPEMLWEARYASLSQAMPAGVTVDSMRAKWREVRAAGVAFDYEEWKPGVCAVAAPVLGADGFVLASISLVIPSERGGKQELERYAAAVRDAAAALSRVHIERNQSLGMTPDDGDSQGNANANANANA
D1-29_023941134adhT_3Alcohol dehydrogenaseATGACAATGACTCAGACAATGACTGCGGCACGAATGCATGCCGTCGGCGAACCGATGGTGATTGAAGAAGTACCGCTGCCGATACCTACCGGCGCGGACGTTCGGGTCCGTGTTCACAGCTGCAACATCGTGCCCAACCTCGCTAACATCCTCGCGAATTGGACCACCTGGTTTCCGCAGAACCCGCTGCCGGCCCTTCCGGCCATCTTTGGCCTGGATCCCGCAGGCGTTGTGGAGGCCGTTGGCCCGGACGTCCGGGAGTTTGCGCCCGGCGACCGTGTTTACGTCAATCCGGGCCGGTCCTGCGGTGCCTGCAAGGAATGCCGGAGCGGGAAGATCATGCACTGCCAGCATTTTGCTTTTGCTGGCTACTTCGGGCTGACGCCCACCTCAGGGCAGATGCTGGACCGGTACCCCTATGGCGGCTTGGCCGAGGCCATGCTCGCTCCTGCAGGTTCGTTGGTCCGGTTGCCGGACAACCTCAGTTTCAACCGGGCGGCACGGTTTGGATACCTGGGCACTGGCTACGCAGCCTTGCAAAAGGCACGCCTGGAACCCGGCAGCAGCCTGCTGATCAACGGAATCAGCGGAACCCTCGGGCTCGGAACTGCCCTGTTTGCCCTCGCCCAGGGGGTAACCACCATCCTGGGGACGGGCAGGAACCGCGAGCTCCTCGAGCGGGTGCGTGCCATTTCCCCGGAACGGATCCAGGTGTTCTCCACAGACGATGGGCCCATTGATGAATGGGTCCGCCGGGTCACCGACGGTGGGGTGGACGGCTATATCAGCGCCCTCGGACCGAATACCCCGCATGCTCCCTTCCTCGAGGGTCTTCGGTCCTTGCGCAGGGGCGGCCGCGCCGTCAACGTCGGTGCAACAGCCGGCGACGTCCCCGTCGATGTTCATCACCTGATGGACCAGCAGCAATCCCTGATCGGATCCTGCTGGTTCTCGCCCGGCGAAGGCCAGGAGATGGCGGCCCTTGCCGGGTCAGGGGCTGTCGATCTGTCGGTGTTCGAAGATGTCGTCTTTGGCCTTGAGGACGTCAATGACGCCATCAACGGTTTGGAAAACCGCAATGGAGGCTTCAGCAACTACATCGTCTCGCCGACTGGCGGGCGGGAGTATGTCTGAMTMTQTMTAARMHAVGEPMVIEEVPLPIPTGADVRVRVHSCNIVPNLANILANWTTWFPQNPLPALPAIFGLDPAGVVEAVGPDVREFAPGDRVYVNPGRSCGACKECRSGKIMHCQHFAFAGYFGLTPTSGQMLDRYPYGGLAEAMLAPAGSLVRLPDNLSFNRAARFGYLGTGYAALQKARLEPGSSLLINGISGTLGLGTALFALAQGVTTILGTGRNRELLERVRAISPERIQVFSTDDGPIDEWVRRVTDGGVDGYISALGPNTPHAPFLEGLRSLRRGGRAVNVGATAGDVPVDVHHLMDQQQSLIGSCWFSPGEGQEMAALAGSGAVDLSVFEDVVFGLEDVNDAINGLENRNGGFSNYIVSPTGGREYVPGPT0006375_672DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_02395606hypothetical proteinATGTCTGAACAGCTTCGTGTTGACGCGATCCAGGGCAGGGACGACAACCATCTCCAGGGCACAGGCGGCCAGGCTTCGGCCGTGCGTCGTGTCGTGACGGGTGTCTCCACCCAGGGTGAGCCAAACATCGTGAGTGACGGTCCGCCGCCCCGCTCCCGGGCGCATCAGGCGATCCCGGGCATGGTCAATTCCGTCGTCTGGGCGACACCGGCTCCGCCGGAATCCGGGTATCGTGACCTCACGCCAGACCTCGTCACTCTTGTTCCGGGCGCCGGGGAAACCGTTGCCCTGCTGGTCACTTTTCCACCGGATACCGTGTTCGCGGACCCGCTGTTCGACGGCGCAAAAGCGGCGCGTGAACAGCTGGAGATCACGCCTGGTCTCGCTGAACTGTTCGAGCAGGACAATCCAGGCTTCCATACAACTCCCACCGTCGACTATGGCATCGTGGTCAGTGGTGAGGTTGTGCTTGACCTTGGATCCACAACAACTGTCCTGCGGCAGGGCGACACCATAGTGCAGAACGGAACCAGGCACGCTTGGCGGAACCCCACCGATCAGCCTGCGACTGTTTTCTTCGTGTTGATCGGAAGGAAGCCCGCGTAAMSEQLRVDAIQGRDDNHLQGTGGQASAVRRVVTGVSTQGEPNIVSDGPPPRSRAHQAIPGMVNSVVWATPAPPESGYRDLTPDLVTLVPGAGETVALLVTFPPDTVFADPLFDGAKAAREQLEITPGLAELFEQDNPGFHTTPTVDYGIVVSGEVVLDLGSTTTVLRQGDTIVQNGTRHAWRNPTDQPATVFFVLIGRKPANANANANANA
D1-29_023962172hypothetical proteinATGGCCGGATGGAATGCGGACAATGCTGCCGGTTCTACGGGATTGGGCGCTGTAACGCTGGTGGAGGGTTCGTCCTTTTGCATTTCGTTGCAGAATGGCGACATCTTCGCCCAACACCCTCATGGTGTTTTCCACAGGGACACCCGAATCCTGTCCCGCTGGTGCCTGACGGTTAACGGCCAGGAGCTTGAGCCGCTGGGTGCCTGGACTCCTTCACCCTTCCGCGCAACCTATATCGGCCGGGGAGTTCGTGCCGACGGCAGGGCCGACAGTCCACTCACGGTTCTCCGCAACCGGGAGCTGGGGGCAGGAATACTGGAGGACATCGCTATCTACAATTACTCCCCCCACCCGGCTGCCTGTGAGGTCGCGCTCTCCGTGGATGCGGATTTCGCCGACCTTTTTGAGGTGAAGGACGGGCGTTTCCACCGGCAGTGGGCACAAACACGCCAGGCAGAGGACGGGGCGCTGAGGATCGAGGCCCTCTGGCAGGGTGTGAAGAAGGATGTCATTGTGCGGGCACCCGGCTGCGAGGTCAGCACCGATGGTTTGCTGTTCAGCACCGTTATTCCTCCCCAAGGCGAGTGGAGCGTCCGTGCCTCGGTGATGCCTGAATTGGGGGAATCCGCGGATGGACAGCCTTTCCACCCCGCCGCGGATGCCGATTCCCCCCAAGACAGGCGGCAGCAGGCCTGGGCCAGGACAATCCCTGATGTCACCATGGGCAATCCTTCCGTACAGAGAACAATGCTGCGCAGCCACGCCGATCTGGGCGCCCTGCGAATCGTGGATCCGGATCATCCCGAGCGCATGGTTGCCGCCGCGGGTGCGCCCTGGTTCATGGCACTGTTCGGGCGGGACTCGCTGCTGTCCTCGTCCATGATCCTGCCGCTCGACGCGTCCCTGGCCCTTGGAACGCTGCAGACCCTGGCTGACCGGCAGGGGAAGGTGGAGGACGTGCTGACCGAAGAGCAGCCCGGGCGGATCCTGCACGAGGTGCGGTTCGGCGTCGGGACGGGCCTGGCACTTGGCGGCAAATCCGCCTATTACGGCAGCGCCGACGCAACGCCCCTGTTCGTGGCACTGATGGGCGAAGTCTCCCGCTGGGGAGTCTCTGCGGAGGACATCGCCGCGCTGCTTCCCCATGCGGACCGTGCCCTTGACTGGATCCGCGACTACGGCGACCGTGACGGTGACGGGTTCGTCGAGTACGAGCGGCTCAACGACCAAGGCCTCATTAACCAGGGCTGGAAGGACTCGTGGGACGGAATCAACTTTGCCGACGGCCGCCTCGCGGAGGCTCCCATTGCGCTGTGCGAAGTGCAGGGTTATGTCTACAGCGCCTACATCGCCCGGGCCTGGATGGCCCACGATGCCGGCGACAGCCAGATGGCCGCGGAGCTCCAGGACCGCGCGGCACTGCTGAAGCAGCGGTTCAATGAGGCGTTCTGGTTGCCCGACCGCGGGTATTATGCGATTGCCCTTGACCGGGATAAGCGGCCGGTTGATGCCTGCGCTTCCAATATGGGCCACTGCCTGTGGTCCGGCATCGTCGACGCCGACAAGGCGCAACAGGTTGCCGATCGGCTCATGTCTCCGGAGATGTTCAGCGGCTGGGGTGTACGTACCCTGGCGAGCGACATGAAGGCGTACAACCCGGTGAGCTACCATAACGGCTCCGTCTGGCCACACGACAATGCGCTGATCGTGGCCGGCCTCATGCGCTACGGTTTCGTCGAGGAGGCCCAGACCCTGTCCATTGCGTTGTTGGAGGCCGCCGAATATACGGACAACCGGCTTCCGGAACTGTTCTGCGGGTTCAGCCGTGACAAGTGCCCTGAGCCGCTCCCTTATCCGACGGCCTGCTCTCCCCAGGCATGGGCCTCTGCTGCCCCGGTGATGTTGCTCCGGAGCCTGCTGCGCTATGAGGCACACGTCTCCCTGGGTGGACTGTGGATGGACCCTGTTTTGCCGGAATCCTGGGGCGCCATGCACGGGTCAAACGCACCGGTGGGTACTGCCCGGGTTACGGTCGACATTTCGGGAAGGCAGGCAACGGTCATGGGATTGCCCGAAGGAATGGTGCACTACAGGGGAACACGCCCTCCGCTGGACAACTTTTCGGAGTTGGAAAACCTTCGCCGGAACAGGGTGCCCGGGCCCAACGGCTAGMAGWNADNAAGSTGLGAVTLVEGSSFCISLQNGDIFAQHPHGVFHRDTRILSRWCLTVNGQELEPLGAWTPSPFRATYIGRGVRADGRADSPLTVLRNRELGAGILEDIAIYNYSPHPAACEVALSVDADFADLFEVKDGRFHRQWAQTRQAEDGALRIEALWQGVKKDVIVRAPGCEVSTDGLLFSTVIPPQGEWSVRASVMPELGESADGQPFHPAADADSPQDRRQQAWARTIPDVTMGNPSVQRTMLRSHADLGALRIVDPDHPERMVAAAGAPWFMALFGRDSLLSSSMILPLDASLALGTLQTLADRQGKVEDVLTEEQPGRILHEVRFGVGTGLALGGKSAYYGSADATPLFVALMGEVSRWGVSAEDIAALLPHADRALDWIRDYGDRDGDGFVEYERLNDQGLINQGWKDSWDGINFADGRLAEAPIALCEVQGYVYSAYIARAWMAHDAGDSQMAAELQDRAALLKQRFNEAFWLPDRGYYAIALDRDKRPVDACASNMGHCLWSGIVDADKAQQVADRLMSPEMFSGWGVRTLASDMKAYNPVSYHNGSVWPHDNALIVAGLMRYGFVEEAQTLSIALLEAAEYTDNRLPELFCGFSRDKCPEPLPYPTACSPQAWASAAPVMLLRSLLRYEAHVSLGGLWMDPVLPESWGAMHGSNAPVGTARVTVDISGRQATVMGLPEGMVHYRGTRPPLDNFSELENLRRNRVPGPNGNANANANANA
D1-29_02397822xynR_2COG1414HTH-type transcriptional regulator XynRATGGCTGGAAACAGCACCCATCCCGGTCTTTCAGTGGTGAGCAAGGCCGTAAACATCTTGGGAGTCTTCTCGGAAGAGCGCACGGAGTTGGCGCTCTCAGACCTGGCAAGGGCAACCGCCATGCCCACCAGCACCGTCCACCGCCTGGTCCAGGAGCTGGTGGAATGCGGAGCGCTGGAGCGAACCGCTGCTGGCCGCTACGTGATCGGCCTGCGGCTGTGGGGAATTGCAGCCCGTTCACCGCACAATTACGCCTTGAGCGACGCTGCGACGCCCTACATGCAGCAGGTGCTGTCATCAACGCATGGCCATGTCCACCTGGCTGCGCTGCACGGACACGGCGCACTGGTCCTAGAAAAGCTGTCCTGGCCCCATGCCGAGAAGACCATCTCCCGGACCGGGAGCAAAATGCCGCTGCACGCCAGCGCCGCCGGACTGGTTTTGCTCGCCTATGCCCCCAGTGCGTTTCAGGAAACTGTGCTGGCAGCGCCCCTGAGTGCCTTTACGCCTCAGACCACAACAGATCCGCTTGTTCTCCGAAGACTGTTGGCTGTGATCCGGCAGGAGGGGATTTCCAGGAGCATGGAACAGCTGGTAGCGGGCATGGATGCCTGTGCGGCGCCGGTCTTCTGGCCTGATCAACGGGTGGCAGGAGCCATAGCCGGTATCGCGGCGACGGGAACCTACAAAATGGCGGACATGGAGCGTGCCGTCAGGAAGGCCGCCAGGGGTCTCACGGACTTCCTGGCTACCCCCGAATCTGCCGTTGGTTCACGGGCATCGTTCCATGCCGGGCTGCGGCCAATGGCCCAAACGGATTGAMAGNSTHPGLSVVSKAVNILGVFSEERTELALSDLARATAMPTSTVHRLVQELVECGALERTAAGRYVIGLRLWGIAARSPHNYALSDAATPYMQQVLSSTHGHVHLAALHGHGALVLEKLSWPHAEKTISRTGSKMPLHASAAGLVLLAYAPSAFQETVLAAPLSAFTPQTTTDPLVLRRLLAVIRQEGISRSMEQLVAGMDACAAPVFWPDQRVAGAIAGIAATGTYKMADMERAVRKAARGLTDFLATPESAVGSRASFHAGLRPMAQTDNANANANANA
D1-29_02398759yclPCOG4604Petrobactin import ATP-binding protein YclPATGATTGACATCCGGAACGTTTCCAAGGCGTACGGAGGGCGGTTGGTCCTCGACGACGTCAGCTGCCTTATTCCCCGCGGTGGCATCACCTCGATCATCGGCCCGAACGGTGCCGGAAAGTCCACTTTGCTTTCGCTGATCAGCCGGCTGCAGCCGCTGGAGAGTGGCACGGTTGAGGTGTCAGGCCTGGACGTGGCCAGCACGCCGGGCAGGGAGCTCGCCCGGACCATGGCCATCCTTCGCCAGGAAAACCACCTGACCATGCGGCTCACGGTCCGTGACCTGGTTGCCTTTGGCAGGTTCCCCCATACCGGGGGCCGCCCCACGGTGGAAGACCTGGCAATGGTGGAGGAATCGATCCGGCAGCTGGATCTGACCGCCATGGCAGACAGGTTCGTGGACGAACTCTCCGGAGGCCAGCGGCAGCGTGCCTACATCGCGATGGTCCTGGCGCAGGACACCGAATTTCTGCTCCTGGATGAACCGTTGAACAACCTGGACATGAAACATTCAGTGGAAATGATGCGGTTGCTGCGCCGGCTGGCGGATGAGCTGGGCAAGACCATTGTCCTGGTGGTGCACGACATCAATTTTGCGTCCTGCTACTCCGATACGATCCTGGCCATGAAGGACGGGCGCCTGATCCATCAGGGCAGCCCGGAGGAGATCATGCACGGCCCCATGCTCCAGGCTGTTTATGACATCGACATCAGGATCGAAGAGATCGACGGCAACCGCATCGGCGTCTATTTCGCCTGAMIDIRNVSKAYGGRLVLDDVSCLIPRGGITSIIGPNGAGKSTLLSLISRLQPLESGTVEVSGLDVASTPGRELARTMAILRQENHLTMRLTVRDLVAFGRFPHTGGRPTVEDLAMVEESIRQLDLTAMADRFVDELSGGQRQRAYIAMVLAQDTEFLLLDEPLNNLDMKHSVEMMRLLRRLADELGKTIVLVVHDINFASCYSDTILAMKDGRLIHQGSPEEIMHGPMLQAVYDIDIRIEEIDGNRIGVYFAPGPT0003760_7732DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_02399687yclOCOG4605Petrobactin import system permease protein YclOGTGGTGGCCCCCTCGCCTTCCCTGCGGTTCGGGCTGGAGGTGGTCCTCATGGTGGCCTTCAGTGCCGTGCTTTACCGGTGGATGTTCACCGGTGCAACGCGTTCCCTGCACCTGCTGCTCCTGGTGGGTGTGATCCTGGGTAGCCTCTTCCGTGGTCTTTCCTCGCTGCTTCAGCGGCTGATGGAGCCGAGCGAGTTCATCATTCTGCAGGATTTCTTTTTTGCCAGCTTCAACAACGTGGAGCCCTCGCTTTTGGGAGTCTCCGCCGTGATCATCGCCGTGGTGTGCGGGGGTGTCTGGAAGTCCCGCCATACCTTGGACGTGCTGGCCCTCGGGCGGGAGATCGCCATTAATGTAGGCGTGGACCACCGGCGCGCAGTCATGCGTATCCTGTTGGCCTGCTCACTCCTGGTGGCGGTCTCTACTGCCCTGGTTGGTCCTGTGACGTTCTTCGGCCTGCTGGTGGTCAGCCTTGCCTATCAGCTGTGCCGTGGCTTCAGCCACGCCCGCCTCTTCCCGATAGTGGCGCTCATCGGCGTCATCGCGCTGGTGGGTGGCCAGGTGGTGCTGGAGCGTGTGTTCGGCTTCGCCACCGCCCTGAGTGTTGTCATCGAATTCGCCGGCGGCATTCTGTTCCTCTTCCTCCTCCTCAAGGGCTCCCTGAAAATGACCGGGACACGCAAATGAMVAPSPSLRFGLEVVLMVAFSAVLYRWMFTGATRSLHLLLLVGVILGSLFRGLSSLLQRLMEPSEFIILQDFFFASFNNVEPSLLGVSAVIIAVVCGGVWKSRHTLDVLALGREIAINVGVDHRRAVMRILLACSLLVAVSTALVGPVTFFGLLVVSLAYQLCRGFSHARLFPIVALIGVIALVGGQVVLERVFGFATALSVVIEFAGGILFLFLLLKGSLKMTGTRKPGPT0003770_4505DIRECT 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
D1-29_02400603hypothetical proteinATGGCGCGGCTGACACGGGAACAGAGCCAGGCACTGACTCGGGAGAAGCTCCTCCGATCTGCTGGCGACGTGGTGGCACGTTACAGCTATGACGGCGCCTCCGTAGAGCGCATCGCCGAGGAAGCAGGGTTCTCCAAAGGCGCGTTCTACTCGAATTTCTCCTCCAAGGAGGACATTCTTCAACAGATGCTCGAAGGAAATGCCGGCTTCGATGTCAAGGATCTGGCCCAGCTGCTCGACGGGATCGACGATCCCGTCGAGGTGATCGACGTCGTCGCCCAGTGGAGCGATTCACGCGCGGGCGAAAAAAAGTGGGGCCTCATTGCCATCGAAATGCTGCGGCGGGCGCATCGCGACGGCACGCTGACTGACCGGCAGCGCCAGCTTTTTACCAGCCAGTGGGAACAGATAGGACATCTCCTCCGCAGTAAACTCTTCCCAAATGGCCATCCTGAAATAAGCGACACGGATCTCGGCGGAATGATCCTGGACCTGACGTACGGCGGCATCGCGGTCTACCTCGAGGTGAACACGGCCGGGCAAATGGTGCGGCACATCCTGTCCGCTCTTCGCGACTCAGCCCGGGTAACACCCGGCAAATAAMARLTREQSQALTREKLLRSAGDVVARYSYDGASVERIAEEAGFSKGAFYSNFSSKEDILQQMLEGNAGFDVKDLAQLLDGIDDPVEVIDVVAQWSDSRAGEKKWGLIAIEMLRRAHRDGTLTDRQRQLFTSQWEQIGHLLRSKLFPNGHPEISDTDLGGMILDLTYGGIAVYLEVNTAGQMVRHILSALRDSARVTPGKNANANANANA
D1-29_02401246hypothetical proteinATGTCGTTACGAGCAGCAGGCAACCCGGACCGGGACCTGAACAGCGGCCTCGGTCCGCACCCGCGGTTGCTTTCGCTGCCAAGCAAGTGGGTGGGCGGAATGACCCGCGAGGAGGCCTATTCGCTCTGCCCGGAGGACTCATATGTCGAGTACTACGGAAACCAGTGGCTGATTGTGCCTTTCGAACCGGTGGAACAGCCGCACTTCTTCGTCTGCCGGCCGGAGGACCATGTACTTGTCGCATGAMSLRAAGNPDRDLNSGLGPHPRLLSLPSKWVGGMTREEAYSLCPEDSYVEYYGNQWLIVPFEPVEQPHFFVCRPEDHVLVANANANANANA
D1-29_02402915hypothetical proteinATGATTGTTGATTTGCCGGACACCACCACCTCGAACGTGTCCAAGAAGATCATGGCCCTGCGCGAGCAGGGCGGCGTGATCGCCCTGGGCCGGGTCCTGACCCTGGTGGTCGTGACCACCTCAGGGCTCGAGGAAGAAGCGATCGAGGCCGCGAATGAGGCCAGCCGGGAACACCCCTGCCGGATCATCGTCCTCGCCGACGCCGGCAAGGACGCCCCGGACCGGCTGGACGCGCAGATCCGGGTCGGCGGGGACGCCGGCGCGTCCGAGGTGATCGTGCTGCGCGGCTACGGCCAGCTCGCGCACGAGTCCGAGTCCCTCGTCGCGGCTTTGCTGTTGCCGGACGCCCCGATCGTGGCGTGGTGGCCGCACGGCGCCCCGGAAAACGCCTGCGAAACCTCGATCGGGCGGATCGCGCACCGCCGGATCACCGATTCCGCGAACGAACCGGACCCGCAACAGGCCCTGGAAAACATCCGCGCCACCTACAAAGCCGGCGACACCGACCTGGCCTGGACCCGGCTGACGAACTGGCGGATCCAGCTCGCCGCGGTCCTGGACCAGGTAGACCCCTCCCCCGTAACAGCCGTCGCGGTCGAGGGCGCCTCCGACTCCCCCTCCACCATCCTCCTCGCGGCCTGGCTCACCCTGTCCCTGGAGGCCCCCGTGACCATCGTCGCGGACCCCGCCGGAACCGGGATCCGCCGCGTCCGCCTCAGCCGACCCGGCGGCGACGTCCAACTCTTCCGCCCCGGACTCTCCATCGCCGAACTCACCCAACCCGGCCAACCAGCCCAACGCATCTCACTCCCCCGACGCAGCCTCCGCGACTGCCTCGCCGAAGAACTCCGCCGCCTGGACCCCGACGAAGTCTTCGGCCAGGTTCTGCAGACGGCGACTCCCGCCGGCCGCTGAMIVDLPDTTTSNVSKKIMALREQGGVIALGRVLTLVVVTTSGLEEEAIEAANEASREHPCRIIVLADAGKDAPDRLDAQIRVGGDAGASEVIVLRGYGQLAHESESLVAALLLPDAPIVAWWPHGAPENACETSIGRIAHRRITDSANEPDPQQALENIRATYKAGDTDLAWTRLTNWRIQLAAVLDQVDPSPVTAVAVEGASDSPSTILLAAWLTLSLEAPVTIVADPAGTGIRRVRLSRPGGDVQLFRPGLSIAELTQPGQPAQRISLPRRSLRDCLAEELRRLDPDEVFGQVLQTATPAGRNANANANANA
D1-29_024031413zwf2_1COG0364Glucose-6-phosphate 1-dehydrogenase 2ATGCCGGCGGTGTATGACTTGGCGAATCGTGGGTTGTTGCCGCCGAGTTTCGCGTTGGTCGGGTTCGCGCGGCGGGAGTGGGACAAGGAGGATTTCGCTGCGGAGGTGAAGGCCTCGGTGCAGGCCTATGCCCGTACGCCGTTTGATGAGGCGGTGTGGAACCAGCTCGCGGAGGGGATCCGTTTTGTCCAGGGCGAGTTCGATGATGACGGCGCGTTTGAGCGGCTGGGCGAGACGATCAAGGAACTTGATGATGTCCGCGGCACGCGTGGGAATCACGCGTTTTATTTGTCGATCCCGCCGAAAGCGTTTGAGCAGGTGTGCCGGCAGCTGTCCAAGCATGGCCTGGCGCAGGCCGAGGGGGATAAGTGGCGGCGGGTGGTGATCGAGAAGCCGTTCGGTCATGACCTGGAATCGGCCCGGAAGCTGAACGACATTGTGGAGTCGGTGTTCCCGGCGGACGCGGTGTTCCGGATTGATCATTATTTGGGTAAGGAGACGGTGCAGAACATTCTGGCGTTGCGGTTCGCGAACCAGTTGTTTGAGCCGTTGTGGAACGCGAACTACGTGGACCATGTCCAGATCACGATGGCTGAGGATATCGGTACGGGCGGCCGGGCGGGGTATTACGACGGTGTGGGCGCGGCGCGGGATGTGATCCAGAACCACCTGCTGCAGCTGTTGGCGCTGACCGCGATGGAAGAGCCGATCTCGTTTAATGCTGATGATTTGCGGGCGGAGAAGGAAAAGGTCCTCGCCGCGGTCAAGCTCCCGGAGGACCTGTCGGCGCATTCGGCCAGGGGGCAGTTCGCCGGTGGCTGGCAGGGCGGGGAGCAGGTCCTGGGTTACCTGGAGGAAGAGGGGATCCCTGCTGATTCGATGACGGAGACGTTCGCGGCGATCCGGGTGGATATCCATACCCGGCGCTGGGCCGGGGTGCCGTTTTATCTGCGTGCGGGCAAGCGTTTGGGGAGGCGGGTGACGGAGATCGCGGTGGTGTTCAAACGCGCCCCGAACCTGCTCTTCCGGGATCATGGCGAGGATGATTTCGGGCAGAACGCTGTGGTGATCCGGGTCCAGCCCGATGAGGGCGTGACCATCAGGTTCGGCTCCAAGGTCCCGGGCACCCAGATGGAAGTGAGGGACGTGACGATGGACTTCGGCTACGGGCATTCGTTCACCGAATCCAGCCCCGAGGCGTATGAGCGTTTGATCCTGGACGTGCTGTTGGGTGAGCCGCCGTTGTTCCCGCGGCATGAGGAAGTGGAGCTGTCCTGGAAGATCCTTGACCCGTTCGAGGACTACTGGGCCGAACTGAACGAACAGCCCGAGCCCTATGCCCCGGGTTCCTGGGGCCCGGCCAGCGCCGATGAGTTGCTGGCCCGTGACGGACGAACCTGGAGAAGGCCATGAMPAVYDLANRGLLPPSFALVGFARREWDKEDFAAEVKASVQAYARTPFDEAVWNQLAEGIRFVQGEFDDDGAFERLGETIKELDDVRGTRGNHAFYLSIPPKAFEQVCRQLSKHGLAQAEGDKWRRVVIEKPFGHDLESARKLNDIVESVFPADAVFRIDHYLGKETVQNILALRFANQLFEPLWNANYVDHVQITMAEDIGTGGRAGYYDGVGAARDVIQNHLLQLLALTAMEEPISFNADDLRAEKEKVLAAVKLPEDLSAHSARGQFAGGWQGGEQVLGYLEEEGIPADSMTETFAAIRVDIHTRRWAGVPFYLRAGKRLGRRVTEIAVVFKRAPNLLFRDHGEDDFGQNAVVIRVQPDEGVTIRFGSKVPGTQMEVRDVTMDFGYGHSFTESSPEAYERLILDVLLGEPPLFPRHEEVELSWKILDPFEDYWAELNEQPEPYAPGSWGPASADELLARDGRTWRRPPGPT0017380_786DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
D1-29_02404606rmpA3-hexulose-6-phosphate synthaseATGGACCTTCTCACCGTCGAGGATGCCCTCGAACTGGCCGGCAAGGTTGCCGAATACGTTGACATCATTGAGCTCGGCACGCCCCTGATCAAAGCCGCCGGCCTGGGTGCCGTCACCGCCGTCAAGGCTGCCCACCCGGACAAGACCGTGTTTGCTGATATGAAGACGATGGATGCCGGCGAGCTTGAAGCCGACATTGCCTTCACAGCCGGCGCCGATCTGGTGTCCGTTCTCGGCAGCGCTGACGACTCCACTATCGCAGGTGCCGTCAAGGCCGCAAAAGCGCACAACAAGGGCATCGTGGTGGACCTCATCGGCGTTCCGAACAAGGTTGCCCGCGCCAAAGAGGTACGTGCACTCGGCGCAACCTTCGTGGAGTTCCACGCGGGCCTGGATGAGCAGGCGCAGCCCGGCTTTGACCTCAACGGGCTGCTCAGTGCAGGCGAAGAGGCCCGCGTTCCCTTCTCGGTTGCCGGTGGCGTCAACCTCAGCACCATTGAGGCTGTCCAGCGTGCAGGCGCTGACGTGGCCGTAGCAGGCGGTGCCATCTACGGCGCCGCAGATCCGGCCCTCGCAGCGAAAGAGCTGAAGGCCGCCATCATCTAGMDLLTVEDALELAGKVAEYVDIIELGTPLIKAAGLGAVTAVKAAHPDKTVFADMKTMDAGELEADIAFTAGADLVSVLGSADDSTIAGAVKAAKAHNKGIVVDLIGVPNKVARAKEVRALGATFVEFHAGLDEQAQPGFDLNGLLSAGEEARVPFSVAGGVNLSTIEAVQRAGADVAVAGGAIYGAADPALAAKELKAAIIPGPT0013295_499DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013295-hxlA|yckG-K08093NANA
D1-29_02405657rmpB3-hexulose-6-phosphate isomeraseATGAAAAGCTTCTCATCTGGCACAGTGTCGCTGATGACGAATGAAGGAACGCACACAGTGAATTCAACAACAGCCGGTGCATCGACAGTGGAAGACACTGTCGGCGCCATTGCTTACAACCTGTCACTCGTCCGGAACGAGATTGCTGACACAGCCGCACGGATCGATGACCGGCAACTGGCCGGACTGGCAGCGAAAATCGGCCAGGCAGACCGCGTCTTTGTCGCCGGGGCAGGCCGCAGCGGCCTCGTCCTGAGGATGGCGGCCATGCGCTTGATGCATCTGGGCCTGACTGTCCATGTGGCTGGTGATACCACCACCCCAGCGATCAGCTCCGGTGACCTGCTCCTGGTTGCTTCCGGCTCCGGCACCACTTCCGGTGTGGTGAAGGCAGCAGAAACTGCAGTCAGCGCGGGGGCAAGCGTCGCGGCGTTTACCACCAACCAGGGATCGCCGTTGGCAGGTCTCAGCGACGAGCTGGTGATTATCCCCGCCCAGCAAAAGACAGACCACGGATCAGGGGTCTCCCGTCAGTACTCCGGGAGCCTCTTCGAGCAGGTGCTTTTCCTGGCCACCGAAGCCGTCTTCCAAACGCTTTGGGGCAACGCAGATGTGCCGGCGGAGCAACTCTGGCTGCGGCACGCCAACCTCGAGTAAMKSFSSGTVSLMTNEGTHTVNSTTAGASTVEDTVGAIAYNLSLVRNEIADTAARIDDRQLAGLAAKIGQADRVFVAGAGRSGLVLRMAAMRLMHLGLTVHVAGDTTTPAISSGDLLLVASGSGTTSGVVKAAETAVSAGASVAAFTTNQGSPLAGLSDELVIIPAQQKTDHGSGVSRQYSGSLFEQVLFLATEAVFQTLWGNADVPAEQLWLRHANLEPGPT0013290_115DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-FORMALDEHYDE_FIXATION,PGPT0013290-hxlB|yckF-K08094NANA
D1-29_024061329hypothetical proteinATGAACACAGCCGGAAAGCCACTCGACACAGCGCCGGGCCCTGCTCTCCTGGATGCGACGTGGGCCCTCCTGAACGCGGTGTCGGCCGTGGCCCAGGCCCCCCTCACCTCCATCGCGGAGCGTTTGCGCGAGGCGCTGCTTCCCTTCGCGGCCGGAAGCGCACTGGTGATTTTCACAGAGGACTGCACGGGGCGTCCGCAAAAGAAGGCTGGTGAAGAAGGGATTATTTCCCGGGTGTCCATCGCCGAACTGCAGGGCCTGCGCGCGTCCCTGACTGATGGACGTCCCTGGCTGGGGGAGGCCGGGATAGCGGGGGAGCCACGGCCGGTACTCGCAGTTAGGCACGTGGCCAGCAACGCCCTGCTTGTTATTACTGATCCCTGCCTGGACGAGAATGATCTGGACAAGGATGCGGCGGCACTGGACGCGGCGCTGGAACTGGTGCAGTACTTTTGGCAGCTCGCAGCCCAAAGGATCCAGGAAAAGGTTAAGGACGCTCCGCCGTCGTACCTGCTGGAATCACGGGCGGCATCGGCCGAGCGGATCCGCGTCACGGCCGAACTGGTGGACCAGCATTCCACAACCCTGGAAACACAGCTGGCCGCCCTTCGATCTTCGTCCCTGGACGACGCCGCCGCGCGTTCGTCGGTTACTGCGCTGACGGCCAAGGCACTGGTGGGGCTACGGACTCTCAGTGACCGCACAGCCGACCTGGTGGAGGAGCCGGTTGCAAAGGCCTTCGAACGCCTGCGGGAGGACCTGCGGCCGCTGACCCGGTTCAGCGGCATCAACGTCCAGTTCATTGAACCGCCCCTGGGTGGGAGGGCGCTTCCCGGTGAGGTTGCCCACGCGGCGAGGGCGATAGTCAGGGGACTGCTGCTGGCGATGATGGAACAGCCGGAAGTCAGGCGGGTCCGGGCACAGTGGGACTGCGACGGGGAGAACCTGCTGATAAATGTACGCGACGACGGCCTCGGCGCGCTTTCAGCCGACGCCCCGAGTATTGGCCGGTTGGACCGCCGGGTCCAGGCGCTGTCCGGTCGCATGCAACTCGACGTCATGGCCGGCTGGGGTGCCGACGTCAGTGTCACGCTGCCGTTGGACCCTCCAGCTCTGCCTGCCGGTGATGTGACGGCCTGGAACCTTGCCGCCCGGGAACTGGAAGTCCTTCAGCACCTGGCTGCCGGGAAGCGGAACCGCACCATCGCGTCGGCCCTGGGCATTAGCGAGAACACCGTGAAATTCCATGTGCGGAATCTTTTCAGGAAGCTCGACGTCGGTTCACGCACCGAGGCAATTGCCCTGGCCAACAGCCACGGCCTGCGCTGAMNTAGKPLDTAPGPALLDATWALLNAVSAVAQAPLTSIAERLREALLPFAAGSALVIFTEDCTGRPQKKAGEEGIISRVSIAELQGLRASLTDGRPWLGEAGIAGEPRPVLAVRHVASNALLVITDPCLDENDLDKDAAALDAALELVQYFWQLAAQRIQEKVKDAPPSYLLESRAASAERIRVTAELVDQHSTTLETQLAALRSSSLDDAAARSSVTALTAKALVGLRTLSDRTADLVEEPVAKAFERLREDLRPLTRFSGINVQFIEPPLGGRALPGEVAHAARAIVRGLLLAMMEQPEVRRVRAQWDCDGENLLINVRDDGLGALSADAPSIGRLDRRVQALSGRMQLDVMAGWGADVSVTLPLDPPALPAGDVTAWNLAARELEVLQHLAAGKRNRTIASALGISENTVKFHVRNLFRKLDVGSRTEAIALANSHGLRNANANANANA
D1-29_02407600hypothetical proteinATGGCGCGGCTGACACGGGAACAGAGCCAGGCACTGACACGAAAGAAGCTCCTGAAATCGGCAGGCGACGTGGTGGCACGCTACAGCTATGACGGTGCGTCCGTTGAACGCATCGCCGAAGAAGCAGGCTTCTCCAAAGGTGCGTTCTATTCAAACTTCGCCTCCAAGGAGGACATTCTTCAACAGCTGCTGGAAGGGAACGCGGGCAACGACGTGCGGGACCTGACCCGGCGGCTAAAAGGTGTCCAAACGACTGAAGAAGCGATAGACGTCGTGGCCGAGTGGAGCGATTCACGCGCCGAGGAACAGAAGTGGGGCATCATCGCCATCGAAATGCTGCGCCGGGCGCAGCGCGATGGCACCCTGACTGACCGGCAAAGGCAGCTCTTTGCCAGCCAGTGGGAAGAGGTGGGTGAGCTCCTGCGCAGCAGGCTCTTTCCGGACAGGGACATCGACATCAGCGCTGTCGATCTCGGCGGCATAGTCCTGGACCTGACCTACGGCGGTATTGCCGTCTTCCTTAAGGTCAACACCGCCGGGCAGATGGTGCGCCAGGTCCTCACTGCACTTCACGGATCCGTACGCGTGCCCAGCGGGTGAMARLTREQSQALTRKKLLKSAGDVVARYSYDGASVERIAEEAGFSKGAFYSNFASKEDILQQLLEGNAGNDVRDLTRRLKGVQTTEEAIDVVAEWSDSRAEEQKWGIIAIEMLRRAQRDGTLTDRQRQLFASQWEEVGELLRSRLFPDRDIDISAVDLGGIVLDLTYGGIAVFLKVNTAGQMVRQVLTALHGSVRVPSGNANANANANA
D1-29_024081581pchF_24-cresol dehydrogenase [hydroxylating] flavoprotein subunitATGAACAACCTCGCGATGGACCTCCCGACCATCCCGGACGACATGATCCGTGAGCTTTCAGCGGTAGTTGGCAAGGAATCGGTCCACATTGAGCGCGCCAGGGTGGACGAGTTCAAGGACCCCTACTGGCTCCCCGGAGACGAGACGTACGCCGCGTCGGCGGTCCTGCAGCCGACGTCGACGGAACAGGTGCAGGAAATCATGCGGATCGCCAACAAGTACGGGATTCCCGTGTGGCCGCACAGCCAGGGCCGTAACGTCGGACACGGCGGCCCGTCGCCCAAGGTACGGGGGTCCATCCAAATCGGCTTCCAGAAGATGAACCGGATACTCGAGATCAATGACGAGCTCGCCTATGCGGTGGTTGAGCCGGGCGTACGGTGGTTCGACCTCTACGACGCAGTGAAAGCGGCCGGCTACAGCCTCATGGTGCCCTGTCCCGACCTCGGCTGGGGATCGGTCATCGGCAATTCGATGGACAGCGGGCACACCTACCAGTTCTACGGCGCGGACTACATGTTCCCGACGGGCTTCGAGGTGGTACTGCCGGACGGGGACCTGTTGCGGACCGGTGCCGGCGCGGTACCGGGCAGCAAGGTGTGGCACCTCTACAAGCGAAGCCTTGGGCCGTCCCTGGATCCGTTGTTTGTGCAGTCGAATCTGGGTATCGTCACCAGGATGGGTGTCTGGCTGAAGCGCCTGCCCGAGGCCTACGCCCCGGTGATGCTCTCGATCGGGGAGGACATGGACCTGGAGCTCGCGATAGATACGCTCCGGGAGTTGAAGATCGAGGGCCACCTGGAGGGGGTTCCGACATTGTATTCATCCCTGCGCGCCGCCGTTATGCTTCGCGATGAGCCGGGTGCTGGCGGCCTCACGCAGCTCACGGCCAACGAGGTCCGGGAGATCGGCGAACGGGCAGGAGTGGGCGCCTGGGCAACGCGGGCGGCGGTTTGGGGTGACGCCGAGATAGTCCGAATCAAGCTTCGCCGCATCCAGGACGCGTGGGCCAAGATCCCCAGTGGACGCGTTGACGCTCCCCGCACCTACGCCCCCCATGAGTACGACGAGATTGTCTATTCGGCTGACCAGATCATGGCGGGCATCCCCACACTGAAGGCCATTGAAAACACTCCCGACCATATTGCGCACGTCGACTTCTCCCCGATTGTGCCGATGCAGGGCACCGAGGTGCGCCTGGTCACTGACGAGATTCGCAGGCATCTCGAGGCGGCCGGCCTGAACTTCTCGGCAGCCATAATGCTGACCAGCGAGAGGTCAGGGATTGTCCTGGCGGGCGTTCGTTACGACAAAACGAACGCTGACGCGGTGCGCAACGCGTTCGACGTCGTCAAGCTGATGGTTTCCCGGCTCGGCAGTCTTGGTTACGGCGTCTGCCGCCCCCACCTCGATTTTATGGACCTTGCGGCAGACCAATATTCGTTCAATGGACATGCCTACCGGCGTTTCGTCGAGAAGCTGAAGGACGCCGTGGACCCAAACGGCATTCTGTCCCCGGGCCGCCATGGCATCTGGCCAGCTGCGTACCGCGACGGGGGCGAGCGGAGCAGCCGCACCTAGMNNLAMDLPTIPDDMIRELSAVVGKESVHIERARVDEFKDPYWLPGDETYAASAVLQPTSTEQVQEIMRIANKYGIPVWPHSQGRNVGHGGPSPKVRGSIQIGFQKMNRILEINDELAYAVVEPGVRWFDLYDAVKAAGYSLMVPCPDLGWGSVIGNSMDSGHTYQFYGADYMFPTGFEVVLPDGDLLRTGAGAVPGSKVWHLYKRSLGPSLDPLFVQSNLGIVTRMGVWLKRLPEAYAPVMLSIGEDMDLELAIDTLRELKIEGHLEGVPTLYSSLRAAVMLRDEPGAGGLTQLTANEVREIGERAGVGAWATRAAVWGDAEIVRIKLRRIQDAWAKIPSGRVDAPRTYAPHEYDEIVYSADQIMAGIPTLKAIENTPDHIAHVDFSPIVPMQGTEVRLVTDEIRRHLEAAGLNFSAAIMLTSERSGIVLAGVRYDKTNADAVRNAFDVVKLMVSRLGSLGYGVCRPHLDFMDLAADQYSFNGHAYRRFVEKLKDAVDPNGILSPGRHGIWPAAYRDGGERSSRTPGPT0005880_121DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_TOLULENE-4-SULFONATE_DEGRADATION_PATHWAY_1,PGPT0005880-pchF-K05797NANA
D1-29_024091182gcoAAromatic O-demethylase, cytochrome P450 subunitATGTCGACAGAATTAACAGGAGACAACCTGTACAGGGATCCCTATCCCGTCTATGCCCGGTTGCGCCGGGAAGAACCGGTGGCCTTCTTTGAGGGCACCAAGGAATACTTCATCACCCGTTTCGATGACTGCCGTGCAGCAGGATCCAATGACCGGGTTTTTGGCCCGTCGGCCAGCCCGGACAGGCCAGAGGCCCGTGTTATGGGTATGCCGAACGTGCTGAGCATGACGGGTGAAGAACACAGCGGTCTTCGTGAAGCGATCGACCAGAACCTGACCCAGGAGGCGGTGCGCCGTTTCGTTGACGCACTGACCCGGCCGGTGGTGAAGCGGTACCTTGCCGAGCTGTTGCCGCGCGGCGAGGCAAACCTCACGGCCGACCTCTTCGAACCGATTTCGGTCCGCTGCATCGGCGATGTCATTGGACTCACTGAAACGCCTAACGAGACGTTGGTGGAATGGTTCCACGCGATGAGCGCAGGCCTGCAGAACGTCAATGACGACCCCGCCGTATGGGGCCGGCTGGACCGGGCATTGGTCGATATCGATTCCCAGTTGGGGGATCTGTACGAGCGGGCGGTGTCAAAGCCCAACCACACGCTGATGAGCCATGTGATGCATGGCGGCATGCCGGAGGGCAAGGTGCGCAGCGTCGAAGAGATCATGCCCACCATGAAGGTCATCATTCTGGGTGGCCTTCAGGAGCCGGGCCACGCTGCTGCGAATGCTGCCGCAGGGCTCCTCCTGGATCCTGAGCAGACCCAGGCCATGGCTGCCGACCCCAAGGAACATGCCCTGCGCGCGTTCGATGAGGGCTTGCGCTGGGTCTCACCCATTGGCGTCACTCCACGCGTTGCCGCCAAAGACGTGCAGATCTCCGGCACACACATTCCGGCCGGCTCTTCAATCGCCATTGTCATGGCGTCGGCCAACCGCGACGAGAGCCGTTTCGAGGACCCGGACCGTTTCAACATGTTCCGGAAGAAGCGCCCGCACTTCTCCTTCGGCTTCCGGCCGCATTTCTGTTCCGGCCATGCGCTTTCCCGCGCCATGGGCGAGATCGCGCTGGAAGAAGCCTTCCTGCAGCTGCCAGGTCTTCGCCTCGATGACAGCCGCGAGATGAAGTTCAAGGGCTGGCGGTTCCGTGGTGTGTCAGACCTCCCCGGCACATGGAACGCCTGAMSTELTGDNLYRDPYPVYARLRREEPVAFFEGTKEYFITRFDDCRAAGSNDRVFGPSASPDRPEARVMGMPNVLSMTGEEHSGLREAIDQNLTQEAVRRFVDALTRPVVKRYLAELLPRGEANLTADLFEPISVRCIGDVIGLTETPNETLVEWFHAMSAGLQNVNDDPAVWGRLDRALVDIDSQLGDLYERAVSKPNHTLMSHVMHGGMPEGKVRSVEEIMPTMKVIILGGLQEPGHAAANAAAGLLLDPEQTQAMAADPKEHALRAFDEGLRWVSPIGVTPRVAAKDVQISGTHIPAGSSIAIVMASANRDESRFEDPDRFNMFRKKRPHFSFGFRPHFCSGHALSRAMGEIALEEAFLQLPGLRLDDSREMKFKGWRFRGVSDLPGTWNANANANANANA
D1-29_024101038ligJ_22-keto-4-carboxy-3-hexenedioate hydrataseATGGAACGCCTGAACACGCTGGCCATCGATTGCCATGGCCACTTCACCACGGAGCCGCCGGAGTTCCACGCGTTCCGGAAAGCCCAGATCGCCTTCGCTGAAGGACGATCAGAAGAACGGCCGCTGTATACGGGCATCCCGGACGACGAGCTGCGCAGGATCATCACGGACAACCAGCTTCGGATCCAGCAGGAAAGGGGATCGGATTTCACCATCCTCTCGCCGCGGGCGTCCGGAATGGGCCATCATGTACCCGGCCAGGAAACGGCGACGGACTGGGCCCGCCTGTCCAACGATACGATCCGGCGAATCTGTGAACTCTTTCCGCTAAACTTCGCCGCGGTCTGCCAGTTGCCGCAAACCGTCGACGGCGGCCTGGGCCCCGTCGTATCCGAACTCGAACGCTGCGTCTCCGCCGGCTTCATTGGATGCAACATCAACCCCGATCCCTCCGGCGGGCACTGGTCGGCTCCGCCGCTCTACGATCCGTGGTGGGACCCACTCTGGGAAGCCATGACCAGGCTCGACGTCCCGGGCATGATCCACGTCTCCGGCTCCTGTGAACGCGCACTGCACACCACAGGGGCGCACTATCTGGCTGCCGATACCGCCGTTTTTATGCAGTTGGTCGAAGGGGATCTCTTCGAACGTCACCCAAACCTGCGCCTGATCATCCCCCATGGCGGCGGCGCCGCTCCCTATCACTGGGGCCGCTACCGGGGCCTGTCCATGATGCTGGGTAAGCCGCCCCTTGCCGAGCACGTGATGCAGAATCTGTTCTTCGACACCTGCGTCTACCACCAGGCGGGGATCGACATGCTCTTCCGGGTGGTGGAGCCGAAGAACATCCTCTTCGGCTCGGAACTGCTGGGAGCGGTTCGCGCCGAGGACCCCGAAACTGGCCACAGCTTTGACGACACCAAACGCTACATCGACGCGCTGAACCTCGATCACAACATCCATCACGCTGTCCTGGGCGGAAATGCCCGGCAGGTCTACCCGCGGCTCGACGCACTGCTTACGGCACAGGGCCGCTAGMERLNTLAIDCHGHFTTEPPEFHAFRKAQIAFAEGRSEERPLYTGIPDDELRRIITDNQLRIQQERGSDFTILSPRASGMGHHVPGQETATDWARLSNDTIRRICELFPLNFAAVCQLPQTVDGGLGPVVSELERCVSAGFIGCNINPDPSGGHWSAPPLYDPWWDPLWEAMTRLDVPGMIHVSGSCERALHTTGAHYLAADTAVFMQLVEGDLFERHPNLRLIIPHGGGAAPYHWGRYRGLSMMLGKPPLAEHVMQNLFFDTCVYHQAGIDMLFRVVEPKNILFGSELLGAVRAEDPETGHSFDDTKRYIDALNLDHNIHHAVLGGNARQVYPRLDALLTAQGRPGPT0005260_138DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005260-ligJ-K10220NANA
D1-29_02411936hypothetical proteinATGACAACATCTTTGACTCAAGTGCGCCTTGCGGGAGGTGCCCAGGGCTTCAACTGGCTTCCCGTATTTGTCGCTGAAGAGCAGGGCCTGTTCGAACGGAACGGGCTGACGATCGAATATCTGAAGCTTGGATCCGTGGACAAGGCGACCACCGCAGTGCGTGAAGGCACAGCAGACCTTGCCATCACCCCGCCGGAAGGGGCCATCGCGGACTACGTCTCCGGCGGCAACCTTCGGATCATCGGCGCCAACGCCGTCCGCCTTCCGATGTCGCTGGTGGCACGGCCGGACATCGCCGGCATCCAGGACTTGCGCGGGAAGCGGATTGGAACATCTTCCCTGACCGAGGGAACCGCAATCTACACGCAGATGATGCTTCAGCAGGAGGGCCTGAGCTACCCGGCTGACTATGACTTTGTCCTTGCCGGTGTTCATACCACCAGGTGGACGGCGCTGAGGAACGGCGAGATCGATGCCGCACCCCAGCCTGCTCCATGGAACTTCCTTGCCGAACGCGAGGGGTACCGCCTGATCTGCGAGACGAATGACGTGATCCCTGAGCTTGTGTTCGCGGCCCTCATCGGCAATGCCGGCTGGGTCTCTGCGAACCCGGAGACGGTGGGCAAGCTCGTGGCAGCGCTGGCCGAGGCCCACGACTTCGTCAATGATCCCTCCAACGATGCCGTCACCCTGCCGATTTATCAGCGGCTGACGACACCCGGAGACGTGGAACTGGCCACCAAGGGACTCGCTTACACCCGTGACATGGGGATGTGGCCGGGCAATCTCCACATCCTGCCCACTGCGCTGCAGGCCACCTTTGACCTGATGATCCGCGTCGGGTTGCTGGGGTCCGAACACCGAACCACAGCGGAAGGCGCGTTCGATCCCGGCTTTGTCCGGCAGCTCACCGCACCGACGCCGACGACTGCCTAAMTTSLTQVRLAGGAQGFNWLPVFVAEEQGLFERNGLTIEYLKLGSVDKATTAVREGTADLAITPPEGAIADYVSGGNLRIIGANAVRLPMSLVARPDIAGIQDLRGKRIGTSSLTEGTAIYTQMMLQQEGLSYPADYDFVLAGVHTTRWTALRNGEIDAAPQPAPWNFLAEREGYRLICETNDVIPELVFAALIGNAGWVSANPETVGKLVAALAEAHDFVNDPSNDAVTLPIYQRLTTPGDVELATKGLAYTRDMGMWPGNLHILPTALQATFDLMIRVGLLGSEHRTTAEGAFDPGFVRQLTAPTPTTANANANANANA
D1-29_02412678ligK_4COG06844-carboxy-4-hydroxy-2-oxoadipate aldolaseATGGCAAAAGTAGTGACAGAAACCAAGCGGACCGGGGCCGGGATCTGCGAAGGATTCGCCGCCCTCGGTGTGGCCACCGCGCATGAAGCACAGAACCGGACCGGGCTGCTGGGCGCCCGGCTGCGCCCCCGGCAGTCAGGAACAACCATTGCGGGGCCGGCACTGACCTGCGAGGTGGCACCGGGAGACAACTGGATGATCCACGTCGCCCTGGAGCAGGCGCAGCCGGGAGACATCCTGGTGGTGACACCGACGTCCCCCTGCGATGACGGCTATTTCGGGGATCTCCTCGCCACCTCGGCGATGGCCAGGGGCATCCGGGGACTGGTCATCGACGCGGGAGTTCGCGACGTGGCCCAGTTGCGCGCCATGGGATTTCCTGTCTGGAGCAAGGCAGTCAGCGCCCAGGGAACAGTGAAGGAAACGCTCGCCGACGTTCAGGTGCCCATTGTTTGCGGCGGCGCCCTGATCACCCCGGGAGACGTGGTGATCGCTGACGACGACGGCATCTGCGTAGTGCCGCAGGGCAGCGCAGCCGCGGTGCTTGGGAAGGCCCGCGCCCGCGCCGCGATGGAGGAAGAGAAGCGGCAGCTCTATGAGGCCGGCCACCTGAGCCTGGACGTCAACGACATGCGGCCCCGACTAAAAGAGAAAGGCCTTTTCCATGAGCAAGCCTGAMAKVVTETKRTGAGICEGFAALGVATAHEAQNRTGLLGARLRPRQSGTTIAGPALTCEVAPGDNWMIHVALEQAQPGDILVVTPTSPCDDGYFGDLLATSAMARGIRGLVIDAGVRDVAQLRAMGFPVWSKAVSAQGTVKETLADVQVPIVCGGALITPGDVVIADDDGICVVPQGSAAAVLGKARARAAMEEEKRQLYEAGHLSLDVNDMRPRLKEKGLFHEQAPGPT0002085_852DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
D1-29_02413558hypothetical proteinATGAGCAAGCCTGATGCGCCCGCTGTCCCACGCCGGGTGGTGACCGGCGTCAGGAACGGCAGATCCGTCGTCGTCAGCGACGGCCCTGTTCCCAATGCCCACCACTACACGTCCATCCCGGGCATGATGACCTCCGTCCTCTACGCGACCGCCGCCTCACCAAGGCTTCCCCAGCAGGAGGTGGAGACCGCGCCGTTGCGGATGCACGTGCCTCCGCCACCTGGCGAGACCCGGCTGATGATCGTGACCTTTCCGCCGGATTCCTCGCTGGCCCTGCCCGGGTTTGATCCCGTCGCCGCCGATGCCGAACAGCGGGAATTCATCCCTGGCCTGGCCGAACTGTTCGAACAGGACGCCCCCGGAATGCACAGGAGCGAGACGGTGGACTACGGCGTCGTCCTCGACGGCGAAATCTGGCTTGAGCTGGACGAAGGAGACCGGACGCACCTGCGGACGGACGATGTGGTGGTTCAGTGCGGCACCAGGCACGCCTGGCGGAACGCCGGCGACCGCACCGCGAAGATGCTTTTTGTACTGATCGGCGGTGAGCGGAAATGAMSKPDAPAVPRRVVTGVRNGRSVVVSDGPVPNAHHYTSIPGMMTSVLYATAASPRLPQQEVETAPLRMHVPPPPGETRLMIVTFPPDSSLALPGFDPVAADAEQREFIPGLAELFEQDAPGMHRSETVDYGVVLDGEIWLELDEGDRTHLRTDDVVVQCGTRHAWRNAGDRTAKMLFVLIGGERKNANANANANA
D1-29_024141236ddmA2Dicamba O-demethylase 2, ferredoxin reductase componentATGACGATGGAACGTTTTGATTGCCTCATTATTGGGGCGGGACATGCCGGGGCAGAGGCCGCAATTACCCTTCGCCAAACAGGATTCGCGGGAACAATCGGCCTGGTGGGCAACGAGACCGTGCTCCCTTACGAGCGTCCGGCGCTGTCAAAGGAATATCTCGCCGGCAAAAAGACCTTCGACCAGCTTCTCCTGCGGCCGTCGGACTTTTGGGGCCAGCACAACGTCTCCGTCCGCCTCGGGCGGCAGGTGATCGGGATCGATGCTCCCGGCAAGACCGTGACCTGTGAAGACGGCAACGAGATGGGTTATGGCGTCCTGGTCTGGGCCACCGGGGGCAGCCCGCGCACTCTCACTTGCCCCGGTCATGACCTTGAAGGCATCCACGCGATCCGGGATCTGGCTGACTGTGACCGGCTGATGGCCGTACTTCCCGAAAGCCGGCGCATCGCAGTCATTGGCGGCGGTTTCATCGGGCTGGAGGCTGCTGCCGTCCTCCGGGAGCTCGGCAAGGAGGTGGTGATCATCGAAGCCCTTGACCGTTTTCTGGCCCGGGTGGCTGCGGAACCTGTGTCCCGGTTCTATGAGGCTGAGCACCGCAGCCGCGGCGTGGACATCCACCTTGGAACGGGTGTGTCGGAAATCGTGGGCCGCAATGGTGCCGTGAGTGGTGTCCGCCTTATTGATGGACGGGTCATTGACGCTGACCAGGTCATCGTGGGAATTGGGATTGTTCCGGCAATCCAGCCCCTTGTCCTCGCAGGGGCGGAGGCAACAGCGGGTGCCACCGGTGTGCTTGTTGACGACCACTGCCGCACCTCAGTGGCCGATATTTATTGCATTGGTGATTGCGCAGTCTTGAGCAGCGGACCCGGCATCCGCATTGAATCCAGGCAAAACGCCACCGAGCAGGCGCAAACCGCGGCCAAAGCGATCAGCGGCCAGGCTGAACCCCTGGATCTGCTCCCGTGGTTCTGGTCAAACCAGTACGATCTGCGGCTCAAGACCATTGGCCTGAGCCTCGGCTATGACCAGACGGTATTGCGCGGTGACCCGGAAAGCCGGAGCTTCTCGCTGATCTACCTGAAACAGGGCGCCGTCATTGCGCTGGACTGCATCAACGCCACGAAGGACTACATGCAGGGACGCAAGCTTGTCGAAGCGCGCTCACGCATCGATCCCGCCATCCTTGCGGACAAAGGGAAACCACTCAAAGAGATGGCCGCTGCCATCTGAMTMERFDCLIIGAGHAGAEAAITLRQTGFAGTIGLVGNETVLPYERPALSKEYLAGKKTFDQLLLRPSDFWGQHNVSVRLGRQVIGIDAPGKTVTCEDGNEMGYGVLVWATGGSPRTLTCPGHDLEGIHAIRDLADCDRLMAVLPESRRIAVIGGGFIGLEAAAVLRELGKEVVIIEALDRFLARVAAEPVSRFYEAEHRSRGVDIHLGTGVSEIVGRNGAVSGVRLIDGRVIDADQVIVGIGIVPAIQPLVLAGAEATAGATGVLVDDHCRTSVADIYCIGDCAVLSSGPGIRIESRQNATEQAQTAAKAISGQAEPLDLLPWFWSNQYDLRLKTIGLSLGYDQTVLRGDPESRSFSLIYLKQGAVIALDCINATKDYMQGRKLVEARSRIDPAILADKGKPLKEMAAAIPGPT0019730_739DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
D1-29_02415318cndB2Chloroacetanilide N-alkylformylase 2, ferredoxin componentATGGAATTCACTGTTACTACCCGGGACGACGTCGACCACACCATAGAGGCCCGCACTGGCATTTCGCTGATGCAGAATATCCGCAACGCCGGCATCGAGGAACTTGAGGCCATTTGTGGCGGCGCGCTGTCGTGCGCCACCTGCCACGTCTACGTGCAGAGCCTGCCCGCCGGTGCCGAACTGCCCGAAAAGTCCCGGGACGAGGAAGACCTCCTCGACGCCTCGGACTGCCTGACGTCCTATTCCCGGCTGTCCTGCCAACTGGTCTTTGACACACCCCTGAGCGGCATGCGGGTCACCGTAGCACCTGAGGACTGAMEFTVTTRDDVDHTIEARTGISLMQNIRNAGIEELEAICGGALSCATCHVYVQSLPAGAELPEKSRDEEDLLDASDCLTSYSRLSCQLVFDTPLSGMRVTVAPEDPGPT0006786_1891PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0006786-fdx|cndB-K04755
D1-29_024161110adhT_4Alcohol dehydrogenaseATGCAGCAAGTAATGCGTGCCGCGCGGCTCCACGCCGTCGGCGAAAAGATGGTCATTGAGGACGTCGAACGGCCCAGGGCAACCGGCACAGACGTAGTGGTTGAAGTCAAGGGATGCGGAATGGTGCCCAATCTGGGCAACGTCCTGGCGAATTGGGAAACCTGGTACCCGCAGATGCCGCTTCCGCCCCGTCCCGCGATCTTCGGGCTCGACCCGGTGGGCATCGTGCATGAGGTCGGGGAGATGGTGCTCAACGTGAAGCCCGGAGACCGGGTCTATGTCAATCCGGGGCGTTCGTGCGGGGCATGCCAGTCCTGTGCCGCCGGGACACCGCAAAAATGCGACTACTGGACGTTGAACGGGTACTTCGGCTACAACCCCAACAGCCTTGAGATGTTCAAGCGCTATCCCCACGGCGGCTTCTGCGAATACATGCGGGCTCCCCAGACCGCCATCGTGAAACTTCCGGACAACATAGAGTTCCGCCAGGCAACCCGGATGGGTTACCTGGGAACGTCCTACGCCGCAGTCAAGAAGATGGGCCCGCTGGCCGGAAAATCCCTCATCATCAACGGCGCGTCGGGAACGCTCGGAGTCGGTGTCACCTTGGTGGCCCTGGCACTTGGCATTTCCCGCATCTACGCAGTTGCCAGGGGACTGCCCTTGCTGGAGAGGCTCCAGGCCCTTGCCCCGGAGCGCATCGAGATCTTCTCCAACACCGAAGGCAGCACCGCAACCTGGGTCAGGTCCAGGACCGGGGGAGCCGGAGCGGATTTGATGGTGGATACCCTCGGTGCCGTTGCCTCGCTCGACTCGCTCAAGGATGCCATGCATGGGGTACGCCGCGGTGGACGCATCATCAACATCGGCGGAACCGCTGGCGACCTCAGCATTGACGTGAAGTGGTGGATGGACGAACAGATGGAACTCCTTGGCTCGGTCTGGTTCACGTCGGCTGAGGCGATCGAACTTGCGGAGTTGTTGCGTAACGGGACTATCGACATCTCTGTACTGACCCCTAAGAGTTGGCCATTGGATGACATCAATGAAGCCATCTCAGGGGTCGCCAGTGGTGACGGCGGTTTTACCAGCTACCTCGTCGAAATCTGAMQQVMRAARLHAVGEKMVIEDVERPRATGTDVVVEVKGCGMVPNLGNVLANWETWYPQMPLPPRPAIFGLDPVGIVHEVGEMVLNVKPGDRVYVNPGRSCGACQSCAAGTPQKCDYWTLNGYFGYNPNSLEMFKRYPHGGFCEYMRAPQTAIVKLPDNIEFRQATRMGYLGTSYAAVKKMGPLAGKSLIINGASGTLGVGVTLVALALGISRIYAVARGLPLLERLQALAPERIEIFSNTEGSTATWVRSRTGGAGADLMVDTLGAVASLDSLKDAMHGVRRGGRIINIGGTAGDLSIDVKWWMDEQMELLGSVWFTSAEAIELAELLRNGTIDISVLTPKSWPLDDINEAISGVASGDGGFTSYLVEIPGPT0006375_688DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-29_024171173hypothetical proteinATGCAACGACGCATTAAACGCGCCTTGAGCTCCGCCGCAGTCATCGCCTCCATCTCACTTGCCGCCGCAGGCTGCGCCACGGACGCCGGCAGTGACGGCCCGACGGCGGAAGTCACCTACCGTGACGCAAGCGACAATTGTGCCGCACCTCCGCTGGCGGGAGTCGATTTCGACGCTGCGCAGGCATTCCTCAAGCCGTTCGAGCAGAAGGCAACCGGGCTGCTTGTGACCCAGCCGCTGCCGCAGCCCATCAACCCCGGCACTACCGTCGCCTACCTGGACAATGGCTCAGCTGTCTCGGGACTTATCTGGGGGTTCATGGAGGCAGCAGGCAAGACGGCCGGCGTGACCATGCAGCGGGTAGCCACCGGGACGAATGCCCAAAGCATTAACACGGCGCTCAGCTCGGTTGTTGAAACAGCTCCTGACATCCTGGTGGCGGCCGCCACGGATGCCACGTTCTTCCAGGACCAGCTCAAGGCCCTTGAGGCAGCCGGCACAACCATTGTGTACGCCGGGTCTACCAACGCGGAGGACTTTGGCCTGCTCGACTCATTCTCCGGCCGCGGCGCTTCGATCGAGAACGGCAAGGTTCTTGCTGCCAGCGCAGTGAACTTTACCTGTGGCACTGGCACGGAATTCGTGTTCTATAACGTCCCTGAATTCACGTTCTCCCAGGTGCAGCTTGAGGCGATCCGGGAGTACCTGCCGACGCTGTGCCCTGACTGCAAGCTCCGCGTGGCGGAGATCCCGGTAGCCACGATGGACACCACTGCCGGTGACGCGATCGTGAGTGACCTGCAGGCGCATCCGGAAACGCAGTACTTCATGACGGTTGCAGACCAGATGCAGATCGGGCTGAAGGCAAAGCAGGAGCTCGCCGGAATCAACGTTCCCGGTATTGGTCATTCCTCGCTCCCGCCGAACGTCGAGCAGATCGCCAGCGGACTCCAGTCCGCCGGTTACGCAGCCGACTACAACATGTACGCCTGGCTGCTCATGGACGAGGGACTCCGCCGCCACATGGGTGAAACCGTGACCTACGACGATTGGGCCAACGCCACCCAGCACATGTCGCGAGTACTCACGGCGCAGAATGCCGGCGAGTACCCGCATGGTTTCGTTGCCTACCCCAACATGGTGGAGGACTTCAAGAAGCTCTGGGGCAAGTGAMQRRIKRALSSAAVIASISLAAAGCATDAGSDGPTAEVTYRDASDNCAAPPLAGVDFDAAQAFLKPFEQKATGLLVTQPLPQPINPGTTVAYLDNGSAVSGLIWGFMEAAGKTAGVTMQRVATGTNAQSINTALSSVVETAPDILVAAATDATFFQDQLKALEAAGTTIVYAGSTNAEDFGLLDSFSGRGASIENGKVLAASAVNFTCGTGTEFVFYNVPEFTFSQVQLEAIREYLPTLCPDCKLRVAEIPVATMDTTAGDAIVSDLQAHPETQYFMTVADQMQIGLKAKQELAGINVPGIGHSSLPPNVEQIASGLQSAGYAADYNMYAWLLMDEGLRRHMGETVTYDDWANATQHMSRVLTAQNAGEYPHGFVAYPNMVEDFKKLWGKPGPT0015740_279DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
D1-29_024181572rbsA_1COG1129Ribose import ATP-binding protein RbsAATGGACCGTGGCTCCGGGCCCCTGCTGAGGGTCCAGGGCGTTACCAAGGACTTCCCCGCGCTGCGGGCCCTGGATGACGTGTCCCTGGACCTTCACAGCGGCGAGGTTGTTGCGGTAGTGGGCCACAACGGCTCCGGCAAATCGACCCTTGTCAAGATTCTCGCGGGACTGTACGTCGCCGATGGTGGAACTGTTGAATTGGCGGCCACGGAGGGCCGGCAGACCGAACTGCACATCATCCACCAGGACCTGGGCCTCGTCTCAGAACTCAACGCCATCGAAAACCTGGGCATGACGCACTACAAAGGCGCGGCGGCGGTGACACCCTTCAACAGGAAGCAGGAGCGTGCCCGGGCGCTTGAGCTGATTCGCCGGTTCGGTGAGGAGTTCGACGTCGACGTGCCCATCAGCGGGCTGACTCCGGCCCAGCGGGCGATCATTGCGATCGCCCGCGCGCTGGACGGCTGGCAGCACAGCCACAACGTCCTCATTCTTGATGAGCCGACCGAGGCGCTCCACGCCAGTGAAGTCAAGATCCTCTTCGACGCCGTCAAGCGTGTGGCTGCAGACGGCGCCGGGGTCATCTTCATTTCCCACCGGCTTGACGAGGTACTGGAGATGGCGGACCGTGCCGTCGTCCTGCGCGACGGCAGGAAAGTCGCGGATGAGCAGCGGGAGACCCTGGACCATGACCAGCTCATTGCCCATGTCACGGGTGTGGCGAAGGGCGTTGCCCTGGCCCGGCAATCGAACCGGGAGAAGGGTGCCGTGATCCTGGAAATATCGGGACTCAGAGGGGCCGGTGTGGAGTCTGTGGACCTCACGCTCCGCGCCGGCGAAGTGGTTGGCGTCGCCGGTGTCCTGGGCTCGGGCCGGGAGGCACTTCCTGCCCTGATGTTCGGGGCCATTGATTCAACCGCTGACAGCTACATCCTGGGAGGGCAGCCGTACCGGAAGCGCCGGCCGGCGGAAAGTATCCGCCGCGGGATGGCGTTTGTGGCGGGGGACAGGGCCCGCTTTGGTGCTGTCCGCGCCCTGACGGCCCGCGAGAACATCACCCTCCCGGAGCTGGCGAGCCTGCGGAGCCGCTTCGGCGGCATCAAGAGGAAGAAGGAGCGCGCCCACACCGCCGCGCTCATGGAGCAGTTCGGCGTCAGGCCGCCGCGGCTGGAGCAGAAGTTTTCGCAGTTCAGCGGCGGTAACCAGCAGAAAATCGTGATGGCGAAATGGCTGCGCAACCGGCCGCAGGTTCTTCTCCTTGAGGAGCCGACCCAAGGGGTGGACATCGGCGCGAAGCAGGCCATCTACACCGCCATCGAAACCGCTGCAGGCCAGGGCGCCGCGGTTCTGGTGTGCTCCTCGGACGCCAAGGAACTGGTGCGGCTGTGTGACAGGGTCCTTGTCCTGCGGCACGGAACAGTGGCGGCCGAGCTGTCCGGGGACCGACTGACAGAGACCGATCTGGTGCTGGCGGGATACGGATTGGCCGACGCCGGCGCTGACGCCGACACCGGGGCTGAGCCCGCGCCCGCTGCCGGCGGAGCACGTGAAATAAGCAAAGGAAAGCAATGAMDRGSGPLLRVQGVTKDFPALRALDDVSLDLHSGEVVAVVGHNGSGKSTLVKILAGLYVADGGTVELAATEGRQTELHIIHQDLGLVSELNAIENLGMTHYKGAAAVTPFNRKQERARALELIRRFGEEFDVDVPISGLTPAQRAIIAIARALDGWQHSHNVLILDEPTEALHASEVKILFDAVKRVAADGAGVIFISHRLDEVLEMADRAVVLRDGRKVADEQRETLDHDQLIAHVTGVAKGVALARQSNREKGAVILEISGLRGAGVESVDLTLRAGEVVGVAGVLGSGREALPALMFGAIDSTADSYILGGQPYRKRRPAESIRRGMAFVAGDRARFGAVRALTARENITLPELASLRSRFGGIKRKKERAHTAALMEQFGVRPPRLEQKFSQFSGGNQQKIVMAKWLRNRPQVLLLEEPTQGVDIGAKQAIYTAIETAAGQGAAVLVCSSDAKELVRLCDRVLVLRHGTVAAELSGDRLTETDLVLAGYGLADAGADADTGAEPAPAAGGAREISKGKQPGPT0016600_1734DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
D1-29_024191173hypothetical proteinATGAGCACCATCGAAACCCCCAGCACCGCCGCGGGCGAGGCGAGCGCCGCCCCCTCCGGAGGTATGAATACTGCAGGTACGAGCACTGCAGGGAGGAACACTGCAGGTACGGACACGGCCGGGATGAAGCCGGCCGCTACGAAGCCGAGCGACCTGAAACCGGGTGGCTGGGCGAAGGCGCTCTCCTTCCGGAACATCAGCGCCATCTATATCTTCATCTCCATCTTTGTGATCTTCTCGCTGGTGACGCCGCAGACCTTTCTCCAGGCGGGTGTGTGGCGCACCTTGCTGGACGCTCAGGCGATTACTGTTATCGCGGCCATCGCCGTCCTCATCCCGCTGGTGACCGGCGCCTTCAACCTCGCCATTGGCGCGGAAATCGGGTTCGCCGGAATCCTCATCGCCACCCTGCAGGTGAAGGCAGGCATCCCCTTTGCAATAGCGATCCCGCTGGCCCTGCTTGTGGGCGCGCTGGTTGGGCTCGTCTCAGGCCTCCTTATCACCAAGGGCAAGATCGACTCATTCATCGCAACCCTGGGCCTGAGCTCAGTCCTGCTCGCCGCCCTTGCGTGGCTTTCGGCAAGCCAGCAGATTACTGGTCTTCAGGATGGTTTCCGGCTGGTGGCGACAGGGAAGTTCCTGGGGGTAACGAACTCCGCCTACATCATGATCGTCCTGGCGTTTGTCGTCTGGTACGTCCTGGAGCGGACGCCGGTGGGCCGGCGCATGTATGCAGCAGGCTATAACCCGGACGGGGCAAGGCTCGCGGGAGTTAATGTCGCACGGATCCAGATCTGTGCTCTGATGGCCGGCGGTGCCATCGCAGCCGTTGCCGGAGTGCTGCTCACGTCCAGGATCAATACCGGCGATCCGACGGTGGGCCCCAGCTTGCTGCTGCCGGCACTGACTGCCGTGTTCCTCGGTTCCACGCAGTTCAGCGGGGGCCGCCTTAACGTCTGGGGCACCCTGATCTCCGTCTACGTGCTTGCCACCGGGATCAAGGGCCTGCAGCTCATTGGTGCCGCGCCCTGGATCAACGACCTTTTCAACGGCGTCGCGCTGCTCGCCGCCGTCGGCCTCTCCCAATGGGAGGCGACGTCCAAGCGGACCTCAGCCATCCGGCGGGTCCTGCCGTTCGGCAAGGGCAAGAAGGAGAAGGCGGCCGCCCGCTAGMSTIETPSTAAGEASAAPSGGMNTAGTSTAGRNTAGTDTAGMKPAATKPSDLKPGGWAKALSFRNISAIYIFISIFVIFSLVTPQTFLQAGVWRTLLDAQAITVIAAIAVLIPLVTGAFNLAIGAEIGFAGILIATLQVKAGIPFAIAIPLALLVGALVGLVSGLLITKGKIDSFIATLGLSSVLLAALAWLSASQQITGLQDGFRLVATGKFLGVTNSAYIMIVLAFVVWYVLERTPVGRRMYAAGYNPDGARLAGVNVARIQICALMAGGAIAAVAGVLLTSRINTGDPTVGPSLLLPALTAVFLGSTQFSGGRLNVWGTLISVYVLATGIKGLQLIGAAPWINDLFNGVALLAAVGLSQWEATSKRTSAIRRVLPFGKGKKEKAAARPGPT0016590_541DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
D1-29_02420435mhqPCOG2259Putative oxidoreductase MhqPATGAACCAGTCCACCCTGACAAACACTGCCCTGACCATCCTGCGCGCCGCCGTCGGATTTATTTTCGCCGCCCATGGCCTGCAGAAATTCGTCGAGTTCACTATCCCCGGCACGCAGGCCGCTTTCGCCCAGATGGGTGTTCCTGCAGCCCAGATCGTGGCACCCGTTGTGGCCACTCTCGAGTTGCTGGGAGGGATCGCCCTGATTGCCGGTGTCCTGGCACGGGTTTTCGCCGCGCTCCTGGTCCTGGACATGCTCGGCGCCCTGGTGGTGGTGCACGCTCCGGCTGGCATCTTCGTGGAGAAGGGCGGTTTCGAATTCGTCCTGGCCCTCGCCGCCGCGGCCCTGGCAATTGTCCTGACCGGCGCTGGCCGCTTCTCTGCGGATGCCACACTTTTCGGCGGCAGGGGCTCGAAGCTGAGCGTCCTGGCCTGAMNQSTLTNTALTILRAAVGFIFAAHGLQKFVEFTIPGTQAAFAQMGVPAAQIVAPVVATLELLGGIALIAGVLARVFAALLVLDMLGALVVVHAPAGIFVEKGGFEFVLALAAAALAIVLTGAGRFSADATLFGGRGSKLSVLAPGPT0028505_3374DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-29_02421636hypothetical proteinATGGGCGAGACAACTTCTGAAGGGTCTTCAGCGGATCTGATGGTGGACCTGATCATCTCCCTGGACGGGTATGCCTCAGCTGAGGGATGGCCCGGCTGGTGGGGTCTGGAGGGCCCGGAGTACCTCGCGTGGCTCGGGGAGGAGGGGGAGAAGGGCTACACCTTCCTGCTCGGTGCCAACACATACCGGCTGATGTCCAACATGTCGGAGGAGGCCGCGGCGGAGGACTCCGAATTTTCCGAGGATGAGGGAGCCAGCCTGACAGGCCTTGCAGCCGTCCCCAAGGTTGTCTTCTCCTCCTCCCTTCCGGCGCCGCTGACATGGCCGAACTCCACCCTTGTCACCGGAGACGCGGTCCAGGCTGTCAGGGAGCTGAAACGGACAGCTGCCGGCCCCCTGAGCACCCTGGGCAGCTTGAGCCTCTGCCGTTCGCTCCTGAGTGCCGGCCTCGTGGACAGATTCCGGTTGGTTGTCTTCCCTGTGATCACAGGGAAGACCGGGCGGGAGCGGATCTACGACGGGTATCCGGACGTTGCCCTGGAGATGGTGGAGAGCCGGACCTTTGACGGCCGGCTCCAGCTGCTGGAGTACATTCCCACCGTGCTCAACGGTCCGCCGGGCAGCGGTCCGACATAAMGETTSEGSSADLMVDLIISLDGYASAEGWPGWWGLEGPEYLAWLGEEGEKGYTFLLGANTYRLMSNMSEEAAAEDSEFSEDEGASLTGLAAVPKVVFSSSLPAPLTWPNSTLVTGDAVQAVRELKRTAAGPLSTLGSLSLCRSLLSAGLVDRFRLVVFPVITGKTGRERIYDGYPDVALEMVESRTFDGRLQLLEYIPTVLNGPPGSGPTNANANANANA
D1-29_02422645gntR_4putative D-xylose utilization operon transcriptional repressorATGAACAGTGGACCCGCCCTGAATGCCATGACCCGCCAGTCAACACCCGTTAAAATCGCGGATCAGTTGCGTGAGCGGATGATTGACGGGCACTTCGCCCCAGGCCAGCAGATTAATGAAGTGCTCGTGGCAGGCCAGCTCAATCTTTCGCGTGGTCCGCTCCGGGAAGCCCTGCAGCGCCTGAGCCAGGAGGGGTTGCTGGTCAGCAGGCCCAACCGCGGCGTGTTTGTGGTTCAGCTGACACAAGAGGACGTCGACGAGATCTACCGCGTGCGGGAGATCCTTGAACTTGGCGCCGCCGAAATCATCGCTGCCCAGCCGGCCCAGCAGAGAAGGCAGACGTCCCGGAAGCTTCTTGACATTGCCGTAAGGCTCTCAGAAGCTGCCGAGGCCGATGACTGGGCCCAGGTGTTCAGGTTGGACCTTGAGTTTCACACCACCCTGGTGGCGGAGTCCGGAAAATCACGTTTGCTCCGCGCCTACACCACACTGGCAACTGAATCTCTGATGTGCATGACCAATCTGGACCAGGCGTATCCCGCCCTGAGCAGCGTGAGTAACCACACCGTTATGGCCGAGCTGATCGCGACAGGCACGTTCCCGGAGATCCGGGATGCATTCCACAGGCACCTGTCTGTGGAATAAMNSGPALNAMTRQSTPVKIADQLRERMIDGHFAPGQQINEVLVAGQLNLSRGPLREALQRLSQEGLLVSRPNRGVFVVQLTQEDVDEIYRVREILELGAAEIIAAQPAQQRRQTSRKLLDIAVRLSEAAEADDWAQVFRLDLEFHTTLVAESGKSRLLRAYTTLATESLMCMTNLDQAYPALSSVSNHTVMAELIATGTFPEIRDAFHRHLSVENANANANANA
D1-29_02423597yyaP_3COG0262putative protein YyaPATGGACAGTGTCACGTGCGATCTCACCATTTCCCTCGATGGATACCTCGCCGGGCCCAATCAGAGCCAGGAAAACCCGCTGGGCGAAGGCGGCGAAGACCTGCACCGGTGGATGTTCGAAGAGCCCGAGGCGAACGCGGCGGAGATTGCGGGCATCCTCTCGTCCGGCGCCTACATCATGGGCCGCAACATGTTCGCCGGCCCCGGGCCGGGGCCATGGGGTAAGGACTGGCGCGGCTGGTGGGGTGAGGACCCGCCCTATCACGCCCCCGTGTTTGTCCTCACCCATCATCCCCGCCCTCCCCTGCAGATGCAGGGCGGCACCACCTTCCACTTCGTGGCCGACGGGATCGGATCGGCACTGGACCAGGCCCGGGAAGCAGCCGCTGGTAAGGACGTTGCCGTAGCGGGGGGCGCAGAAACTGTCCGCCAGTTCCTTTCGGCAGGGCTGATCGACGAGTTGCGGCTGCATATCGCACCGATCCTGCTCGGAGCGGGTGAGCGGCTGCTCGATGGCGTCCAAAACTTCAACGTGGAGCCCAGAGACGTTAGCGGGACCCGCCTGGTGACGCACGTCCGCTACCGGTCGATCCGCTAAMDSVTCDLTISLDGYLAGPNQSQENPLGEGGEDLHRWMFEEPEANAAEIAGILSSGAYIMGRNMFAGPGPGPWGKDWRGWWGEDPPYHAPVFVLTHHPRPPLQMQGGTTFHFVADGIGSALDQAREAAAGKDVAVAGGAETVRQFLSAGLIDELRLHIAPILLGAGERLLDGVQNFNVEPRDVSGTRLVTHVRYRSIRNANANANANA
D1-29_02424423arfBCOG1186Peptidyl-tRNA hydrolase ArfBATGGATCTGGAGGTGTCACCCGCGCTGACCATTCCTGCCTCGGAACTAGGATGGCGGTTTTCGCGTTCGTCCGGGCCGGGCGGTCAACACGTCAACACAACGGACAGCCGCGTAGAGCTCCTCTGGAATATCGGCGACTCTGCGGCGCTTACTGAGGGCCAACGCCTGATACTGCTCACGCGTCTCGGACAACGCCTCGTCGACGGCATCATCACCGTGACCGCCTCCGAGCAGCGCTCCCAGCTGCGAAACCGCGAGATCGCCATGAGCAAGCTCCTTGACATTGTGGCAGAAGGCCTTGCTCCGCCGGCGGCTCCTCGCCGGGCGACCAAACCAACCCGGGGCTCGAACCGCCGCCGCCTGGCCGCGAAGGAACAACGGGCGGCGACGAAGCGGCAACGAAAGCGGCCGTCTGCAGAGTAGMDLEVSPALTIPASELGWRFSRSSGPGGQHVNTTDSRVELLWNIGDSAALTEGQRLILLTRLGQRLVDGIITVTASEQRSQLRNREIAMSKLLDIVAEGLAPPAAPRRATKPTRGSNRRRLAAKEQRAATKRQRKRPSAENANANANANA
D1-29_02425768hypothetical proteinATGGTTGCCCGCACCGACCAAACCACGGACCCGGCGATCCTGGACGCGCTCCTCCAGGCCCGCCGCGGGACCGCGTTCTTCGCCCGGAAACTCAACGAGCTCTCCGACGCGGACCTCGACGGGCCCTCGCTGCTGCCGGGCTGGACCCGCCGCCACGTCACCGCGCACATCGGCTACAACGCCCGCGCCCTGGCCCGGCTCATCGAATGGGCGGCCACCGGGATCGAAACCCCCATGTACCCCTCCCCGGAAGCCCGCAACCAGGAGATCGCGTTCGGTGCCACCCTGTCCCCGATCGCGCTGCGGAACCTCTTTGACCACTCCGCCGTGCACCTGAACGTCGAATGGCGCGACCTCCCCGCCCACGCCTGGCACCACAAAGTCAAAACCGCCCAAGGCCGGATCGTCCCGGCAAGCGAAACGGTATGGATGCGCACCCGCGAAGTCTGGATTCACGCCGTCGACCTCGACAACGGCGCCACCTTCGCCGACATCCCCGCACCCGTCCTCACCAGGCTCCTCAAAGACATCACCAGCGCCTGGGCCACCCGCGGCACCGACGCCGGGCTGCGCATCAGTGTCACAGGCACTGACCAGCCCGAGCAGCCGCCGGTGCTTTATGGAGACGCGGCAGCCGAATCACCGGTGGAAATAGCCGGTCCCCTGGCGGCCGTCGTCGAATGGGCCGCAGGCCGCGGCAGCACGGGGGTGACCGCCTCGGGCCCGGGTACAACGGAAGGTACGCCAGCCGCCCCCGCCTGGATTTAGMVARTDQTTDPAILDALLQARRGTAFFARKLNELSDADLDGPSLLPGWTRRHVTAHIGYNARALARLIEWAATGIETPMYPSPEARNQEIAFGATLSPIALRNLFDHSAVHLNVEWRDLPAHAWHHKVKTAQGRIVPASETVWMRTREVWIHAVDLDNGATFADIPAPVLTRLLKDITSAWATRGTDAGLRISVTGTDQPEQPPVLYGDAAAESPVEIAGPLAAVVEWAAGRGSTGVTASGPGTTEGTPAAPAWINANANANANA
D1-29_02426855hypothetical proteinATGAGACTCCTCACCCTCCGCACCGAAAACGGCAGCAACGGCGCCGGCACCAAAACAACCAGTACTGTGGCGGTCCGCCAGGACGGCGGCACCCTCACAGAGATTGAGGGGTTCGTCGACGTCGGAGCCCTCCTGCAGGATCCCGCCTGGGAAACCACTGCGAAGGCAGCCAACGGCGCAACGCACACGCTGGACGGCGCGGACCTTGTCGCCGTCGTGCCTTCCCCAGGCAAGATCATCTGCGTGGGCCATAACTACCGCAACCACATCAAGGAAATGGGCCGGGAAGTCCCCGAGTACCCCACCCTGTTCGCCAAGTACGCCGAGTCCCTGATCGGGCCCAACGATGACCTGGCGCTGCCGCAGGAATCAGACGCGGTGGACTGGGAAGCTGAACTCGCCCTCATCATCGGCAAAACCGGCCGCCGCATCCCCGAGGCCGACGCCGCGAACCACATCGCCGGCTACGCGGTCCTGAACGACATCTCCATGCGCGACTACCAGTTCCGCACCATCCAATGGCTCCAAGGCAAAACCTGGGAAAAATCCACCCCGTTCGGCCCGGCCCTGGTCACCAAAGACGAATTCACCCCCGGCCCACTGATGACCTCCGCCGTCGACGGGGACATCCAGCAGAGCACCCCCACCTCGGACCTGGTCTTCACCCCCGAGTTCCTGGTCTCCTACATCTCCACCATCATCACCCTGAACCCCGGCGACGTGATCGCCACCGGCACCCCCGGCGGCGTAGGCCACGCACAGGACCCCAAAAAATACCTGCAGGAAGGCCAGCTCCTGGTCACCACCATCGAAGGCCTGGGCCAACTGAAAAACCGTGTGGTCAAGGAAGCCTGAMRLLTLRTENGSNGAGTKTTSTVAVRQDGGTLTEIEGFVDVGALLQDPAWETTAKAANGATHTLDGADLVAVVPSPGKIICVGHNYRNHIKEMGREVPEYPTLFAKYAESLIGPNDDLALPQESDAVDWEAELALIIGKTGRRIPEADAANHIAGYAVLNDISMRDYQFRTIQWLQGKTWEKSTPFGPALVTKDEFTPGPLMTSAVDGDIQQSTPTSDLVFTPEFLVSYISTIITLNPGDVIATGTPGGVGHAQDPKKYLQEGQLLVTTIEGLGQLKNRVVKEAPGPT0001630_122DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001630-hpaF-K16164NANA
D1-29_024271146sdgD_2Gentisate 1,2-dioxygenaseGTGTCCATCAGCGCCGAGAACACGACCCATGAATCAGTTGCCGCAGGGCACTCTGTTCCGGAGCCCACGCCTGAGGAGGCTGCCCAGCTGGGGCAGTTGTACCGGGACTTTGATAAGGAGAACCTGATTCCGTTGTGGACCGAGATCGCGGACTTGATGCCGATGGTTCCGTCGCCGAAGGCGGTGCCGCATGTTTGGCGGTGGGACGATTTGTATCCGCTGGCTGCCCATGCCGGTGATCTGGTGCCCGTGGGCCGGGGCGGGGAGCGCCGTGCTATTGCCCTGGCCAACCCGGGCCTGGCTGGTACCCCCTACGCGACGCCCACGCTGTGGGCTGCGATCCAGTACCTTGGCGCCCGCGAAACTGCACCGGAGCACCGCCATTCGCAGAACGCTTTCCGCTTTGTGGTGGAGGGCGAGGGCGTCTGGACCGTGGTCAACGGTGACCCGGTCCGGATGTCCCGCGGCGATTTTCTGCTCACACCGGGCTGGAACTTCCACGGCCACCATAACGACACGGATCAGCCGATGGCCTGGATTGACGGCCTGGACATCCCGTTTGTGCACTACGCCGACGCCGGTTTCTTTGAGTTCGGCACCGAACGCGTCACCGACGAGGCCACTCCTGACATCTCCCGCTCGGAGCGGCTCTGGGCCCACCCCGGCCTGCGCCCGCTCTCCGGCCTGGATGACACCACCAGCTCCCCCATCGCCGCCTACCGCTGGGAACACACAGACAAGGCACTGGCCGAGCAGCTGCTCCTGGAAGACGAGGGCCACCCGGCCACCGTGTCCCAGGGCCATGCCGCCGTCCGCTTCACCAACCCGACCACCGGCGGGGACGTGATGCCCACCATCCGGGCCGAGTTCCACCGGCTCCGCGCCGGCGCCCTGACCGAAACCGTCCGCGAGGTTGGCTCCAGCGTCTGGCAGGTCTTCGAAGGCACCGGATCCGTGACTCTGAACGGCGAAACGAGGCAGCTGGCCAAGGGCGACCTGTTTGTGGTCCCGTCCTGGGCGGCCTGGTCGCTTCAGGCCGAGGCGGGGACAGACACAGACTTTGACTTGTTCCGTTTCAGTGACGCCCCCATTTTTGAGCGCCTGAGCTTTAACCGCACCTACATCGAAGGACGCAAGAACGCATGAMSISAENTTHESVAAGHSVPEPTPEEAAQLGQLYRDFDKENLIPLWTEIADLMPMVPSPKAVPHVWRWDDLYPLAAHAGDLVPVGRGGERRAIALANPGLAGTPYATPTLWAAIQYLGARETAPEHRHSQNAFRFVVEGEGVWTVVNGDPVRMSRGDFLLTPGWNFHGHHNDTDQPMAWIDGLDIPFVHYADAGFFEFGTERVTDEATPDISRSERLWAHPGLRPLSGLDDTTSSPIAAYRWEHTDKALAEQLLLEDEGHPATVSQGHAAVRFTNPTTGGDVMPTIRAEFHRLRAGALTETVREVGSSVWQVFEGTGSVTLNGETRQLAKGDLFVVPSWAAWSLQAEAGTDTDFDLFRFSDAPIFERLSFNRTYIEGRKNANANANANANA
D1-29_02428789allRCOG1414HTH-type transcriptional repressor AllRGTGCAAAAACGGCCGGCTTACTCCATCGAGGCGGTGGACAACGCGCTCCAGCTCCTCCAGCTGCTGCGCGACGGCGGGGCGCTTCGGCTCAAGGACGCCGCCATGGAACTGGGGGTTGCCCCCTCCACGGCCCACCGGCTCCTGGCCATGCTGGTCTACCGCGGGTTTGCCGTGCAGGATGAAAACCGGCGGTACGTCCCCGGCCCGGCCATGGGCGTCGGACCGGCGGGGCTGGGGTGGACCAGGCTCTTGCGCTCCCTCGCCCAGCCCCACATGGAGCTGCTCTCGGCGCAGCTCAACGAGACCGTCAACCTCATGGTGAGGGTGGGCACCAAAGTGCGTTTCCTGGCCACCGTGGAGGGAAACAACGTGTTACGTGTCGGTGACAGGCAGGGGACGGTCATGCCGGCCAACAGGACTTCTGGCGGCAAAGCCATGCTGGCAGAACTTGAAACCCCGTTGATCGGCCAGCTTTTTCGCAGCAATAACGCCGAAATCGGCGGGGACACCATCTCGGATGAGGAGTATCCGGCGTTCCTTCGCGAGCTGGAGACCATCCGCAGCAATGGCTTCGCCGCTAATTTCGAGGGCACTGAGGAAGGCGTGTGCGCCCTGGGGATGGCACTGCACAACCGCCACGGGCACGTGGTGGGGGCGCTGAGCGTTGCCACTCCCGCAACACGTTTTAGGAGGGTATTCGACGCCGGACTTGTTCCGGTCCTGCGTGAAAGCTGCCGGCAACTGGAGATCGACATAGCAGCGAACCCGGCCGAGCCCGACGCCGGCTGAMQKRPAYSIEAVDNALQLLQLLRDGGALRLKDAAMELGVAPSTAHRLLAMLVYRGFAVQDENRRYVPGPAMGVGPAGLGWTRLLRSLAQPHMELLSAQLNETVNLMVRVGTKVRFLATVEGNNVLRVGDRQGTVMPANRTSGGKAMLAELETPLIGQLFRSNNAEIGGDTISDEEYPAFLRELETIRSNGFAANFEGTEEGVCALGMALHNRHGHVVGALSVATPATRFRRVFDAGLVPVLRESCRQLEIDIAANPAEPDAGNANANANANA
D1-29_024291329genKCOG0477Gentisate transporterATGAACCACACACTTCCCGCTGCAGCGCCGCAACGGACCTCGCCAGAACAGTCCTCCACAAAGTTCACCAAAGCCTCGGCTGCGGCCGTCCTTGTCTGCTGGCTGTTGGTGGTCTTTGATGGCTATGACCTGATCGTCTACGGCACCGTCCAGTCCTCCCTGATCTCCGAAACCGGATGGGGACTCAGCAAGGCCACGGCCGGAACCATCGGGTCCATGGCCTTCGTGGGCATGATGATCGGAGCGATCTTCGCCGGCCGGATGGCCGACTCCTGGGGCCGGCGCCGCACCATCCTGGGGTGTGCCATTGTCTTTTCGGTCTTCACCGTCCTCTGCGCATTCGCGCCCAATGCCGCCATCTTCGGCATCCTGCGGCTCCTCGCCGGCATCGGGCTCGGCGGCCTGGTGCCGTCGGCAAATGCCCTGGTGGCCGAACTCGTCCCCAGCAAATGGCGGTCCATCGTGGCCACCCTGATGATGTCCGGTGTCCCCATCGGCGGATCCATCGCCGCCGTCGTCGGCATCCAAATGATTCCGGCCTTCGGCTGGGAGTCCATGTTCCTTGTTGCCGCGCTGGCCCTGGTGATCGTGGTGCCGCTCGGACTGAAGTACCTTCCTGAGACACTGGCCGCCGGAACGGTCGGCAACCAGGGTTCGGCGGATGGGGCCAGCACCACAGTCAGCAGGCCTGCCGGCTTTAAGTCACTGCTCCGCGCACCTTATCTGGGGATCAGCGTACTGTTCGCCGTGGCCACCATCGCCACACTTTTCGCCTGGTACGGGCTGGGGACCTGGCTGCCGAACCTTATGCAGCTGGCCGGCTACAACCTCGGTTCCGCCCTGACCTTCGCCCTTGCCTTGAATCTGGGAGCGGTGGCAGGCTCAGTCATCACTGCCTGGGCCGGCACCCGCTTCGGACCGATTCCGACGGCGATCGCCGCGGCCGCAGTTGCGGCCGGAGCGCTGCTGGTCCTGGTTACAGGACCGTCCGTCACCATCGTGTACCTGATGCTGGTCCTCGCCGGCGTCGGGACCCACGGCACGCAGTGCCTGATCATCGCGGCAGTGGCAAGCCACTATCCGGGACATCTGCGGGGGACGGCCCTCGGCTGGGCACTGGGGACAGGCCGCATCGGAGCGGTGGCTGCACCCCAGGTTGGCGGCCTTCTGCTGGCCGCCGGGCTGGGCGTCAATTCGAATTTCCTTGCCTTTGCCGGCGCAGCGGCAATCGCGGCGGTCCTGCTGGCCGCCGTCGGTCTCAAACTCACTTCAAAGCTCGCTATCACCCCCTCAATCCATCCCTCACCAACAGGAGCAAACAATGTCTGAMNHTLPAAAPQRTSPEQSSTKFTKASAAAVLVCWLLVVFDGYDLIVYGTVQSSLISETGWGLSKATAGTIGSMAFVGMMIGAIFAGRMADSWGRRRTILGCAIVFSVFTVLCAFAPNAAIFGILRLLAGIGLGGLVPSANALVAELVPSKWRSIVATLMMSGVPIGGSIAAVVGIQMIPAFGWESMFLVAALALVIVVPLGLKYLPETLAAGTVGNQGSADGASTTVSRPAGFKSLLRAPYLGISVLFAVATIATLFAWYGLGTWLPNLMQLAGYNLGSALTFALALNLGAVAGSVITAWAGTRFGPIPTAIAAAAVAAGALLVLVTGPSVTIVYLMLVLAGVGTHGTQCLIIAAVASHYPGHLRGTALGWALGTGRIGAVAAPQVGGLLLAAGLGVNSNFLAFAGAAAIAAVLLAAVGLKLTSKLAITPSIHPSPTGANNVPGPT0005390_364DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_BENZOATE|DERIVATE_DEGRADATIONXENOBIOTIC_BENZOATE-DEGREDATION-BENZOATE_TRANSPORT,PGPT0005390-benK-K05548NANA
D1-29_024301257COG06543-hydroxybenzoate 6-hydroxylaseATGTCTGAGCAGGCCACGTCCACTGATGTCCTTGTGATCGGAGGGGGAATGGCCAGCCTGGCCGGCGCCCTCGCGCTGCGTGAAAATGGGGCCGACGTCACGCTGGTGGAGCGGGCGCCCGAGTTCGGCGAAGTAGGCGCAGGGCTGCAGATGGCCCCCAACGCCTCCCGAGTCCTGCAGCGGTGGGGGCTGCTTGAAAAGGCGCTGGAAATCGGCGTCCAGCCCAAGCACCTGGTCTTCCGCGATGCCATCACCGGTGAGGAACTCACCCGGCAGACACTGGGTGGGGAATTCGCCGAACGCTACGGCGCACCGTACATAGTGATCCACCGTAGCGACCTGCACCGGGTCCTGCTCGAAGGGTGCGAGGCGGCCGGCGTCAAGCTTGTGAACGATGTGATGGTCGAAAGCGTGGAGACCGTGAACGGACGGGGAGTGGCGCACACCGCCGCCGGTGTTGACTACGAGGCCGACGTGGTGATCGGCGCAGACGGACTCAAATCCACACTGCGCCCGCTGGTTGCAACCGACGAACCGGTCTCCTCGGCCTACGTGGCCTACCGCGGCACAGTGCCGATCACGGAAGAGACGCCGCAGGCTGACCTTGAGGACGTCATCGTCTACCTCGGACCGGACTGCCACCTGGTCCAGTATCCGCTCCGCAAGGGCAAGCTGCTGAACACCGTGGCAGTTTTCAAGTCCGCCTCCTTTGAGCGCGGCGAAGAGCAGTACGGGGGCGTGGACGAGCTCGAAGCTGCGTACAAGGACTGTGTCCCGGCCGTGCGGGCAGCGTTGAAGAACCTGGGCACCGGCATGCGGTGGCCCATGTACGATCGCGACCCGATCGAAAACTGGGTTGCCGGCCGAATGGTGCTGATGGGCGATGCCGCCCACCCCATGCTGCAGTATCTGGCCCAGGGGGCCTGCCAGGCTCTTGAAGACGCAGCGGTCCTCCAGGATGTCAGCGCCGGCAGCGTTTTCACCGAAGACGGCGTCAACCCGGCCGCCTGGGACGTCGCCATCAAGGAATTCAACACCATCCGCGCGGGCCGTACCGCCCGGATTCAGCGCACCGCACGCGTCTGGGGCGAATCCTGGCACGTCTCCGGCCTGGCCAGGACACTCCGGAATCTGCTCTTCAAGAGCCGGAAGGACAACAACTTCCAGTACAACGACTGGCTGTACGGCCAGGATGGCGAGGGAGTTCCGGCTGTTGAAGCGGCCCGGTCCAGCCAGGCAAACGGGCTTACTGCCTGAMSEQATSTDVLVIGGGMASLAGALALRENGADVTLVERAPEFGEVGAGLQMAPNASRVLQRWGLLEKALEIGVQPKHLVFRDAITGEELTRQTLGGEFAERYGAPYIVIHRSDLHRVLLEGCEAAGVKLVNDVMVESVETVNGRGVAHTAAGVDYEADVVIGADGLKSTLRPLVATDEPVSSAYVAYRGTVPITEETPQADLEDVIVYLGPDCHLVQYPLRKGKLLNTVAVFKSASFERGEEQYGGVDELEAAYKDCVPAVRAALKNLGTGMRWPMYDRDPIENWVAGRMVLMGDAAHPMLQYLAQGACQALEDAAVLQDVSAGSVFTEDGVNPAAWDVAIKEFNTIRAGRTARIQRTARVWGESWHVSGLARTLRNLLFKSRKDNNFQYNDWLYGQDGEGVPAVEAARSSQANGLTAPGPT0005130_47DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0005130-nagX-K22270NANA
D1-29_024311293hypothetical proteinATGGAACGGGTACGCCTTCCGTTCGAGGACCTGCTGCGCACCCTCGCGCCGCAGGTCCTGGGCATGCTTGCCCGCCGCCACGGCCAGTTCGATGCGTGTGAGGACGCCGTCCAGGAAGCGCTCCTGGAAGCCTCCCTCAGATGGCCGCAGGATGGTGTTCCGGACAACCCCCGCAGCTGGCTGATGACGGTTGCCGGGCGGCGGCTGGTTGACCAGTGGCGCAGCGAGACCGCGCGGCGTCGCCGGGAGGAATCGTTTGCCCTGGCGACGTTCCCTTTGCAGGCGGGGCTGACTGTGACGGGTGCCGGGGAGCACGACGACGCGTTGGCGCCTGACGCCGATGACACCCTGACGCTCCTGTACTTGTGCTGCCACCCGGCGCTCTCTCCGCCGTCCCAACTGGCCCTGACGCTGCGGGCCGTGGGTGGCCTGACCACTGCGGAGATCGCCAGCGCCTTCCTGGTGCCCGAGGCCACCATGGCACAGCGGATCAGCCGGGCAAAGGGCAGCATCACCCGGGCGGGCGCCCGTTTCGAATCCCCCGCTCCCGAAGAGGCGATGGCGAGAACCGCCGTCGTACAGCAGGTTCTGTACCTGATTTTCAACGAAGGTTACGCCGCGAGTTCAGGGCCATCGCTGCAGCGCTCAGACCTGACCGGCGAGGCCACCCGGCTTGCCCGGCTGCTGCTGGACGTTACCCCGGCCGAATCTGCAGCAAGGGGAGAAACAGCCGGCCTCCTTGCCCTGATGCTGCTGACGGATGCCCGGCGGCAGGCCCGCACGCTGCCCGACGGCGCCCTGGTGCCGCTCGCTGAACAGGACCGGACCCTCTGGGATGCGGACCGGATCCGCGAAGGTGTCCTACTCCTGACCGGAACCTTGGGAAAATTTCCGGTAGGACCGTACCAACTGCAGGCGGCAGTAGCTGCCATCCATGACGAAGCTTTGACCGCCGCGGCTACCGACTGGCCCCAGATTCTGGCGCTTTACGACGTGCTGGAGCAGGTGGCACCCAGCCCGGTGGTGACTCTGAACCGGGCAGTCGCCGTCGCCATGGTCAAGGGACCCCTCGCCGGGTTGGCGGTGCTGGGGACAGTGGAAAACGATCCGCAGCTGGCCCGAAGTCACCGCCTGGATGCGGTGCGGGCGCACCTGCTGGAACTTTCCGGTGATACGGCGGCGGCCCGTGAGGCCTATCTCCGGGCTGCGGCCACAACTGCGAGCCTCCCCGAGCGCCGCTACCTCGCAGCACGGGCGGCCCGGCTGGGCCAGGTCCGCCAGGTCAGGCAGTAAMERVRLPFEDLLRTLAPQVLGMLARRHGQFDACEDAVQEALLEASLRWPQDGVPDNPRSWLMTVAGRRLVDQWRSETARRRREESFALATFPLQAGLTVTGAGEHDDALAPDADDTLTLLYLCCHPALSPPSQLALTLRAVGGLTTAEIASAFLVPEATMAQRISRAKGSITRAGARFESPAPEEAMARTAVVQQVLYLIFNEGYAASSGPSLQRSDLTGEATRLARLLLDVTPAESAARGETAGLLALMLLTDARRQARTLPDGALVPLAEQDRTLWDADRIREGVLLLTGTLGKFPVGPYQLQAAVAAIHDEALTAAATDWPQILALYDVLEQVAPSPVVTLNRAVAVAMVKGPLAGLAVLGTVENDPQLARSHRLDAVRAHLLELSGDTAAAREAYLRAAATTASLPERRYLAARAARLGQVRQVRQPGPT0014960_522DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_02432360hypothetical proteinATGAAATACATGATCATGATGTTCGGTTCGGCCGAAGGCATGATGGAGACTGCCGATCCGGCCTGGATCCAGGAAATGATCGGGTTCATGATCCAGATCGACAAGGATCTCACCGAATCCGGCGAACTGGTCTTCAATGCCGGTCTGGCCGACGGCAGCACCGCGAAAACCGTCAAACAGGCGGACGGCGGCGTGATCACCACTGACGGTCCCTACGCAGAGTCCAAGGAGTCGTTGATCGGGTACTGGGTGGTGGATGTGGCCAGCGAACAGCGGGCCATTGAGATCTGCTCCGGCATAGTCAAGTACGCCGGAACTGTGGAATTGAGGGCCGTTCAGGACGGGCCGCCGGACGTCTAGMKYMIMMFGSAEGMMETADPAWIQEMIGFMIQIDKDLTESGELVFNAGLADGSTAKTVKQADGGVITTDGPYAESKESLIGYWVVDVASEQRAIEICSGIVKYAGTVELRAVQDGPPDVNANANANANA
D1-29_02433117hypothetical proteinATGGCTGCGGGAATCCGGTTCCATGCGCTGCCGGGCGGTCGGCCGCCGTCGGACATTTTCTTCAGTTTTTTTCCGGACCGTGTAGAGAACCACCTGGCGGCTCCGACTTATCCATGAMAAGIRFHALPGGRPPSDIFFSFFPDRVENHLAAPTYPNANANANANA
D1-29_02434624hypothetical proteinATGCCCAACCAGAGTGCTCCCCAGAGGAAGCAGCCCTCCGGCTCCGCTGAAGACGACGTCCTGCGCGGTGCTGCCCTTGACGCCGCGGACCGCCTCTTCTACGCGAAAGGCATCCAGGGCGTGGGCATGGATGAGCTTCGCAGCGCCTCGGGAATTTCGCTCAAGCGGCTCTACCGGCTTTTTCCCTCCAAGGATGCGATCGTGGAGCAGGTCCTGCTGGCCCGTCACCGAAAGTGGACCGAAGGCGTGGCCGCAGCGGTGGCCCGTGAGACGGAACCACGGGAGCGGCTCCTGGCCGTCTACGATTTTCTTGCCGAGTGGTTTATCCAGGAGGACTTCCGCGGGTGCGCCTTCATCAACTCCTTTGGGGAACTCGGCGGTACGTCTCCGCGCATTGCTGAAATCGTGAGGACCCACAAAGAGGACTTCCAGCAGTACCTTTCGGCGCTGGCCGCGGAGATCGGGGCACCACCGGCGCTGGCGCCCCAACTCGCCATCCTGGCCGAAGGGGCCCAGACGACTGCCGCCATCTCGGGCAGTGCCGAGCCGGCAAGGCAAGCGCGTGAGGCCGCCGAAGTGCTGATTGGCTCTGCACTGACCCGCGCGCAGGCGGCTTCAAACTGAMPNQSAPQRKQPSGSAEDDVLRGAALDAADRLFYAKGIQGVGMDELRSASGISLKRLYRLFPSKDAIVEQVLLARHRKWTEGVAAAVARETEPRERLLAVYDFLAEWFIQEDFRGCAFINSFGELGGTSPRIAEIVRTHKEDFQQYLSALAAEIGAPPALAPQLAILAEGAQTTAAISGSAEPARQAREAAEVLIGSALTRAQAASNNANANANANA
D1-29_02435834bpoA2_1Non-haem bromoperoxidase BPO-A2GTGGCTTTCATTACGGTTGGAACAGAAAACAGCACCGACATCGAGCTCTACTACGAGGACCACGGAGCGGGACAGCCGGTTGTGCTGATCCATGGGTACCCACTCGACGGCCACTCCTGGGAAAAGCAGAGCGCGGCCCTGCTCAGCGCCGGGTACCGTGTCATCACCTATGACCGCCGGGGCTTTGGCCGCTCGAGCCAGCCCACCACGGGTTACGACTATGACACGTTCTCCGCTGACCTGAACGTCCTCCTGGAAACCCTTGATCTTAGCAACGTCGTCTTGGTGGGCTTCTCCATGGGAACCGGCGAGGTGGGCCGGTACCTTGGCACGTACGGATCCGGCCGCATTGCCAAGGCAGCCTTCCTGGCCGCCCTGGAACCATTCCTCCTGCAGACCGGGGACAACCCCCAGGGTGTCCCGCAGGAAGTATTCGACGGGATCCTCGACGCCGTCACCACCGACCGCTACGCCTACTTCGCAGACTTCTACAAGAGCTTCTACAACACCGACGACACCCTGGGAACCCGTCTGTCGGAAGAGGCGCTGCGCAACAGCTGGAACGTTGCCGCCGGCGCCTCCTGGTACGCCTCCAGTGCGGCCGTGCCCACCTGGACTACAGACTTCAGGGCTGACATTGCCAAGATTGACGTTCCCGCGCTCATCCTGCATGGAACCGCCGACAACATCCTGCCCATCGATGCAACCGGGCGGCCGTTCTACAAGGCCCTGCCCACAGCCGACTACGTAGAGGTTGAGGGGGCTCCGCACGGCCTGCTCTGGACCCATGCCGAGGAAGTCAACGAGGCACTGCTGGCCTTCCTCGCCAAGTAGMAFITVGTENSTDIELYYEDHGAGQPVVLIHGYPLDGHSWEKQSAALLSAGYRVITYDRRGFGRSSQPTTGYDYDTFSADLNVLLETLDLSNVVLVGFSMGTGEVGRYLGTYGSGRIAKAAFLAALEPFLLQTGDNPQGVPQEVFDGILDAVTTDRYAYFADFYKSFYNTDDTLGTRLSEEALRNSWNVAAGASWYASSAAVPTWTTDFRADIAKIDVPALILHGTADNILPIDATGRPFYKALPTADYVEVEGAPHGLLWTHAEEVNEALLAFLAKPGPT0013125_1256DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
D1-29_02436402rutCPutative aminoacrylate peracid reductase RutCATGACATCCATCCAGCGCATCCGTCCTGAAGGGCTTGTACCGAGCCCCGCCTTCAGCCACGTCGCCATTGTTCCGCCGGGCGCCACCACCATCTATGTCGGAGGCCAGAACGCCGTCGACGCCGATGGCTCCCTCGTCGGTGAGGGAGACGTTGCGGTGCAGTCTGCGCGCGCCCTGGCGAACGTCAAAACCGCGCTTGCCGCGGCCGGCGCAACGCTCAGCGACGTCGTCCAGTGGACGGTACTCTTTGTGGACGGCGCAGACCTCGCCGCGGGATATGGGGCGATAGCGCCGGAGCTGGCCTCCGACGAGCCGGCACTGGTCACCGCAGCCCGTGTAGCCGGGCTGGGGGTTCCAGGTGCGCTCGTGGAGATCAGCGCCGTCGCAGCCGTGATGCAGTAAMTSIQRIRPEGLVPSPAFSHVAIVPPGATTIYVGGQNAVDADGSLVGEGDVAVQSARALANVKTALAAAGATLSDVVQWTVLFVDGADLAAGYGAIAPELASDEPALVTAARVAGLGVPGALVEISAVAAVMQPGPT0020030_1364DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-29_02437369hypothetical proteinATGGCGTCAACAGAATCAAACAAGGAAGCCGTGGCTCGGCTTTTCGAAGCTTTCCGGGCGGGTGACACGGAGGCTTTCGATCAGTTGATTGTGGACGACTACAAGCAGCACAATCCGCTGGCTGGCAACGGACTGCAAGCTGTCAAGGGCTTTTTCGCCCAGTTCGGGCCAGTCGACGTCGAAGTCCACCGCGTGATCGCCGAAGGCGACTTCGTTGCCGTGCATTCGCACTACCGGACGTTGAATTCCGCTGCTGTTGATATCTTCCGCTTCAACGAAGCGGGCAAGATCATTGAGCATTGGGACGTTCTCCAGGAAGTCCCCACGGCGACGGCGAGCGGGAACGACATGTTCTCGCAACTCACCTAGMASTESNKEAVARLFEAFRAGDTEAFDQLIVDDYKQHNPLAGNGLQAVKGFFAQFGPVDVEVHRVIAEGDFVAVHSHYRTLNSAAVDIFRFNEAGKIIEHWDVLQEVPTATASGNDMFSQLTNANANANANA
D1-29_024381074lacI_4COG1609Lactose operon repressorATGGACAACGAGCGGGCTACACAAACGGTGGCTGCGGGCAGTGGGCCCGTTCCGCCGTCACCGGCGACCAGGCAGGCCACCATTTACGATGTCGCTGAAGCGGCAGGAGTTTCGCATCAGACGGTCAGCCGTTTCCTGCGCGGTTTCGAGGGCATCCGGCCTGAGACGAAACGGCGGGTGGTTGACGCCCTTGAGAAGCTCAACTACCGGCCCAACCTGTCGGCGCGCTCGCTGACAACAGGTCAGTCCCATCGGATCGGTGCCCTCACCCACGAGATCGCCCATTTCGGCCCAAGCAAGGTCCTGCAGGGCGCCAGTGCCGCGGCAAGGGAGGCCGGATACCTGCTCGATATCGTCACCCTGGATGTCAGCGACCGCCGTTCAATCGAAGAAGCACTGGCGCTGGTGATGCAACACGATCTTGCCGGTGTCCTGGCACTCGCCTCAACCGACGAGATGCGGGAGGCCTTCGAGAGAACCGAATTCCGCGTCCCCTCGTATATAGGTTCCGAGGAGGACGATGCCCTGACCGGCCGCCCCTCACAATTGACCACCATTGGTTTTCCGGCCCTCATCGGGTACCTGGCGTCCCTGGGCCACCGCCGGTTCCTTCACGTCGCAGGGCCCACCACGTTTCCTGCCGCCCGAAACCGCGCCCGGGCCTATGAGGCAGCGATCGCAGAACAGGGCCTCCGGTCCGAGGGAATCGTCTTTGGCGACTGGTCCGCCAGTTCCGGGTATGTGACAATCGCTGGAATGACCAGCACCCTCCAAGCCACGGCAGTGGTTTCTGCCAACGATCAAATGGCGCTCGGGGCCATGCTCGCCCTCTCCGAACGGGGACTCAGCGTCCCGGAAGACGTGAGCGTGACAGGGGTTGACGACATCCCCGAGGCCGCCTACTTCGCCCCGCCCCTCACCACGCTCCGCGTTGACTTTGCCGCCCAGGGGCGGACCGCTGTCCAGGAGCTTTTGGCGCAGGTCAACAGCACCCCGCCGCCGCCCGGTGATGTGCTGGCCTCTGAACTTGTCCCCCGTCGATCCACCGGGCCGGCGCCTGCATCGCTGCCGTAGMDNERATQTVAAGSGPVPPSPATRQATIYDVAEAAGVSHQTVSRFLRGFEGIRPETKRRVVDALEKLNYRPNLSARSLTTGQSHRIGALTHEIAHFGPSKVLQGASAAAREAGYLLDIVTLDVSDRRSIEEALALVMQHDLAGVLALASTDEMREAFERTEFRVPSYIGSEEDDALTGRPSQLTTIGFPALIGYLASLGHRRFLHVAGPTTFPAARNRARAYEAAIAEQGLRSEGIVFGDWSASSGYVTIAGMTSTLQATAVVSANDQMALGAMLALSERGLSVPEDVSVTGVDDIPEAAYFAPPLTTLRVDFAAQGRTAVQELLAQVNSTPPPPGDVLASELVPRRSTGPAPASLPPGPT0017992_8402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_024392109bgaACOG1874Beta-galactosidase BgaAATGGATTCGCCCGCCCCCGCCCACGTCCCCAACGGCATCCTCTTTGGTGCCGCCTACTACGCCGAATACCACATGAACGACCGGCTTAAAGTGGATCTCGACCTGATGAAGGATGCCGGGTTTACCGTCATCCGGGTGGGCGAGTCAGTCTGGTCCTCGTGGGAGCCGCAGGATGGAGAGTTCGACGTCGAATGGTTGGCCCCCGTTTTGGACGGCGCCCATGAACGCGGCATCAAAGTCATCCTGGGTACCCCCACCTATGCTGTCCCGCCATGGCTGCAGACTGCCTATCCTGAAATCGCCGCCGAACGAAGCACCGGAACCAGGATTCCCTGGGGCGCACGGCAGGAAGTGGACTACTCCCACCCCGCATTCCTCTTCCATGCAGAACGCGTTATCCGCAGGGTCATGGAACGGCATGCCAGCCACCCTGCGGTTATTGGATTCCAGGTAGACAACGAGCCCGGCCTGGAACTCATCCATAACCACGGCGCCTTCACACGGTTCGTGCGGCGGATCAAGAAGCAGTACGGCGACGTTGAGACCCTCAACCGGGAATGGGGCCTGACGTACTGGTCGCACCGGATCACCGACTGGGCCGAGCTCTGGCGGCCGGACGGCAACACCTTCCCGCAGTACGATCTGGCCTGGCGGCGCTACCAGGCGGACCTCACCACGGAGTTCATCACCTGGCAGGCGGGCCTGGTCTCCGAGTATCGGCGGGGCGATCAGTTTGTCACAACGTGTTTGCAGTTCCCGCGCCGCGGCCTGGACGACGAACAGCTTTTCAATGGACTCGATATTGCTGCCGGAAACCCCTATTACGGCATGCAGGACCACCTGGACGGGCTCGAAGAACTTGACCAGCCCAACTACTGGACCACCACGGGGGTGGCGGGTCTGTTCAGGCAGGCTGACCGGCTCTACGGAGCCAAGCAGGGACGTTACCTGGTCACAGAGACCAACGCCCAGGCCATAGGTGCCGCCGAGACAAACCTGCCACCCTACCCGGGCCAACTGAAGCAGGCGGCTTACGCTTTCATCTCCCGGGGTGCTGCGATGATCGAATACTGGCACTGGCACACTCTGCCTTACGGGGCGGAAACCTATTGGGGAGGAGTCCTGCCCCACAGCCTGGTCCCCGGGCGGGTCTACGCGGAACTGTCCGAACTGGGGTCCGAACTCGGCCAGATCGGAACGCTGCTGGACGGCTACGTGCCGGACGCCGACGTCGCGATTCTGTGGTCGAACCCCAGCCGGTTTGCCTTACAGTTCATGCCGCCCTTTGCTGCCGGCAGCCAGCCGGACGGAGAATCCTACGAGCACATCATTGACTCGTTCCACCGCGGGGTCATCGACGCCGGCCGGCAGTCCCGGGTCCTCCATCTCGCCCAGGCAGCGGCGCTCGGCGCCGCGCAACTGGTCGAGCAGTTCCCCGTACTGGTGGCGGCAGGCGTCTATGTGGCCTCGGACGAGGAACTTGTGCTGCTGCGGGAGTACGCCGAACTGGGCGGCCACCTCATCCTTGGCGTCCGCACAGGGTATGCCGATGAGGAAGCGCGAGCCCGCGTCGCCGTCGCGCCTGACTTCCTGCATGAGGCTGCCGGCGTGCGGTACGAGGAATTCTCCAACCTGGAGCGGGATGTTCCGGTAAGCGGCACGGCCGGCAGCGGCCTTGAACTCGAGGATGCGTCGTATGCCCGGCTGTGGGTGGACGGGCTCATCCTGCAGGGGGCAGAGACACTGGCCTCCTATGAGCACCCCCGGTTCGGGGACTTTCCCGCGGTCACCACGCGGATCCACGGTGCAGGCAGGGTGACGGCGGTTGGTTGCGTGCCCTCGCCGGGACTCGCCAAGTCGCTGATCCGCTGGGCCGTCCCGGAGGCGCCGGAGTCCCGGCTGGTGGGTGAAGTCCAGCGGCCCATCACCGTATCCTCTGGTTCGCTGCCGGACGGGCGCCGGGTGTGGTTTGTCTTCAACTGGGGCTGGGACCGTCAAACGGTCTCCCTCGCCGGACGCGTCACCGAGGTGGTCACCGGTACCGCCCACGAACCCGGTGCAGAGCTTTCCCTGAGCCCATGGTCAACACGAACTTTCGTCAGCCAGTGAMDSPAPAHVPNGILFGAAYYAEYHMNDRLKVDLDLMKDAGFTVIRVGESVWSSWEPQDGEFDVEWLAPVLDGAHERGIKVILGTPTYAVPPWLQTAYPEIAAERSTGTRIPWGARQEVDYSHPAFLFHAERVIRRVMERHASHPAVIGFQVDNEPGLELIHNHGAFTRFVRRIKKQYGDVETLNREWGLTYWSHRITDWAELWRPDGNTFPQYDLAWRRYQADLTTEFITWQAGLVSEYRRGDQFVTTCLQFPRRGLDDEQLFNGLDIAAGNPYYGMQDHLDGLEELDQPNYWTTTGVAGLFRQADRLYGAKQGRYLVTETNAQAIGAAETNLPPYPGQLKQAAYAFISRGAAMIEYWHWHTLPYGAETYWGGVLPHSLVPGRVYAELSELGSELGQIGTLLDGYVPDADVAILWSNPSRFALQFMPPFAAGSQPDGESYEHIIDSFHRGVIDAGRQSRVLHLAQAAALGAAQLVEQFPVLVAAGVYVASDEELVLLREYAELGGHLILGVRTGYADEEARARVAVAPDFLHEAAGVRYEEFSNLERDVPVSGTAGSGLELEDASYARLWVDGLILQGAETLASYEHPRFGDFPAVTTRIHGAGRVTAVGCVPSPGLAKSLIRWAVPEAPESRLVGEVQRPITVSSGSLPDGRRVWFVFNWGWDRQTVSLAGRVTEVVTGTAHEPGAELSLSPWSTRTFVSQPGPT0017815_436DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_024401353hypothetical proteinATGAAAAAGGCACCAAAAACAGCAATGGCGCTGGTGAGCAGCGCCGCGGTGGCCGCAATGCTCCTCTCCGGCTGCAGCAGCAGTACACCGGCCGGAACCACGGCACCGGAGAAAGTGTCGCAGGACCAGATCGACCAGGCGCTGAGCACACCTACCAAGCTGACGTTCTGGACCTGGGTGCCTGATATCGAAAAGGAAGTCGCCCTGTTCGAAAAGAAATACCCGGCGATCGATGTCACGGTCGAGAACGTCGGCCAGGGATTGGAGCACTACCAAAAGGTCCGCACGGCTCTCCAGTCCAAAGAGGGCGCCCCGGACGTAGTGCAGGTGGAGTACCAGTACATCCCTTCATTCACCCTGACCGATTCCCTTCTGGACCTCACTCCCTATGGTGCAGCGGACCTCTCCGGTGACTACGTGGACTGGGTCTGGAACCAGGTCTCCACCGATGACGGCGTTTGGGCCATTCCGCAGGACATCGGACCCCTGGGCAACGTCTACCGCAGGGACATCCTGAACCAGGCAGGCGTCACCGAGGCCCCGAAGACCTACGAGGAATACACCGCAGCAGCCCAAAAAGTAAAAGACTCAACGGGTTCGTACATCTCCAACCTTGCAACCAACGACCCCGCGCAGGTGGTCGGACTCCTCTGGCAGGCCGGTGTGAAGCCCTTCGGGTACGACGGCGACAAAACCGTCAGCATCAACGTCAACAGCCTCGAAGCCAAGCAGGTCCTCGGCTACTGGCAGGACCTGATCGAAAAGGACCTTGTATCCACGGACGCGGATTTCAATGACCAGTTCTACCAGGGCCTGGCCGGCGGCAAGTATGCCGGATGGCTGACGGCGGCCTGGGCTCCCATTTTCCTCCAGGGCACGGCCGCTGACACCTCAGGAAAGTGGAGCGCGGCACCACTTCCGCAATGGGAAACAGGCAAGGAAGTCTCGGGAAACTGGGGCGGCTCCTCGGACGCCGTGCTGTCAACCACCAAGAACCCCATCGCAGCCCAGGAACTGGCCAAATTCATCAACCACGATGAAGAATCCACCACGATGTTCGCCAACGAGCAGTTCCTCTTCCCGGCAGCGAAAAGCGTTCTCGAAAGTCCGGAATTCACTGACAAAGCGGTGCAGTTCTTTGGCGGCCAAAAGGTGAACGACCTCTTTGCCGAGATCTCAGGCACGGTGGATACCGAGTTCCAGTGGCTTCCGTTCACCGAGTACGCGTACTCGCAGTTCAACGAGATTGTCGGCACCGCCATCGGTGAGAAGAAGGACCTGGGCGCGGCACTTGACCAGTGGCAGGACGTCCTCGTCAAGTACGCGAAGGCCCAGGGATTCACCGTCACATAAMKKAPKTAMALVSSAAVAAMLLSGCSSSTPAGTTAPEKVSQDQIDQALSTPTKLTFWTWVPDIEKEVALFEKKYPAIDVTVENVGQGLEHYQKVRTALQSKEGAPDVVQVEYQYIPSFTLTDSLLDLTPYGAADLSGDYVDWVWNQVSTDDGVWAIPQDIGPLGNVYRRDILNQAGVTEAPKTYEEYTAAAQKVKDSTGSYISNLATNDPAQVVGLLWQAGVKPFGYDGDKTVSINVNSLEAKQVLGYWQDLIEKDLVSTDADFNDQFYQGLAGGKYAGWLTAAWAPIFLQGTAADTSGKWSAAPLPQWETGKEVSGNWGGSSDAVLSTTKNPIAAQELAKFINHDEESTTMFANEQFLFPAAKSVLESPEFTDKAVQFFGGQKVNDLFAEISGTVDTEFQWLPFTEYAYSQFNEIVGTAIGEKKDLGAALDQWQDVLVKYAKAQGFTVTPGPT0016545_2802DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02441957lacF_10Lactose transport system permease protein LacFGTGGCCATCAGGTCTATCTCCGCCGCGAAACCGGCCGGCACAAGCACCGCCAGACGTTCATCCGTCAGCAAGCGCAGACAAACGACCGCCGCCTACCTCTTTGTGCTGCCGTTCTTCGTGGTCTTCACCACCATGCTTGTCATCCCGCTCGGATACTCGGGCTACCTCAGTGTGTTCAAGAACCAGTTGGTCGGCGGACTCTCATTTATCGGACTGGACAACTACATCCAGGCTTTCTCGGACCCGGATTTCCTGGCTGGGATTGGCCGGATGCTGATTTTCCTGCTGGTCCAGGTGCCTATCATGCTCGGCGTAGCCCTGTTGCTCGCCCTCGGCCTCGACAGCGGCAGGGCACACGGTGCCAAGGCCCTGCGCCTCGTGTACTTCATGCCCTATGCCGTTCCCGGGGTCGTCGCGACGCTGATGTGGGGATACCTCTACGGCCCCGACTTCGGCCCCATCTCGCAGCTGTTCCGCGCCGTGGGCCTTGAGTCCCCGAATCTTCTCAACTCACAGAACATTCTCGGATCGATGATGAACATCGTCACATGGGAATTCGTGGGCTACAACATGATCATCCTGTACGCGGCCCTCCGCTCCATTCCTGCTGAACTCTATGAGGCGGCAGCCATCGACGGCGCCAGCCAGTACAGGATCGCCTGGAGCATCAAGATCCCGGCCATCCGGCCCGCCATCATGCTGACAGTCATCTTTTCGATCATTGGGACGTTCCAGCTGTTCAACGAGCCAAGCCTGCTGGACGCAATCGCCCCCAGTGCCATCACCAATGGGTTCACCCCGAACTTCTACGCGTACAACCTTGCGTTCGTCAACCAGGACGTCAACTACGCCGCTGCCGTGGCGTTCCTCCTCGGGGCGATCATCGCCGTCGTCTCCTACGTCGTCCAGTTGGGCACGCAGCGCAGCGAACGCAAACAGCGAAAGGCCACCCGATGAMAIRSISAAKPAGTSTARRSSVSKRRQTTAAYLFVLPFFVVFTTMLVIPLGYSGYLSVFKNQLVGGLSFIGLDNYIQAFSDPDFLAGIGRMLIFLLVQVPIMLGVALLLALGLDSGRAHGAKALRLVYFMPYAVPGVVATLMWGYLYGPDFGPISQLFRAVGLESPNLLNSQNILGSMMNIVTWEFVGYNMIILYAALRSIPAELYEAAAIDGASQYRIAWSIKIPAIRPAIMLTVIFSIIGTFQLFNEPSLLDAIAPSAITNGFTPNFYAYNLAFVNQDVNYAAAVAFLLGAIIAVVSYVVQLGTQRSERKQRKATRPGPT0016535_1919DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_02442918araQ_11COG0395L-arabinose transport system permease protein AraQATGACCTCCACCACGCTCGCTCCCAGCCCGAAAACCGAGACCGTTCCGAGCAGGCCGGCCGGCCGCCGCAACGGAAAAGAACGCAGCCTGCCGCTGACCATCGTTCTGTGGCTGTGCGCCCTCTATTTCCTTCTCCCGCTGTTCTGGCTGTTCATTGCCAGCACAAAAGACAACTCTGATCTATTCAGCAGCTTCGGGCTGTGGTTCGGCGACCGGTTTTCGCTCTGGGACAACATCGCCTCGGTGTTCACGGTCCGCGACGGCCTCTACCTCCGGTGGACGCTCAACACTGTCCTCTATGCCGGCGTGAGCGCTGTGGGAGCGTCACTGATTGCAACGATGGCCGGTTATGCCTTTGCGAAGTACACGTTCCCCGGGTCACGGGCCCTGTTCAGCCTCACCCTGGGGGCCATCATGATTCCGCTCACGGCCCTGGCATTGCCCACGTACCTGCTTTTCAACGCGGCCAGCCTCACCAACACGCCCTGGGCAATCATCCTGCCCTCTCTGGTGAGCCCGTTCGGGGTCTTCCTGATGCGCGTCTACGCAGCCGACGCTGTACCGGACTCCATGATCGAAGCCGCTCGCGTTGATGGGGCAGGTGAGTTCAGGATCTTCTGGCAGGTGTCCTTCCGGCTCCTGGGGCCCGGAGTGGTGACCGTCTTCCTCTTCGCGCTGGTGGCCACTTGGAACAACTACTTCCTGCCCCTGATCATGCTGAACAGCTCCTCCCTGTACCCGCTGACTGTCGGACTGGCGCAGCAACAGTCCGCGAGCGCCGCGGGAGGCGGCGCCCAAGCCCTCTTCTCGACGGTTATCACCGGCTCACTGGTCAGCGTTATACCGCTGATCATCGCCTTCCTGTTCCTCCAACGCTATTGGGAGACGGGTTTGGCGACTGGGGGAGTCAAGGAGTAGMTSTTLAPSPKTETVPSRPAGRRNGKERSLPLTIVLWLCALYFLLPLFWLFIASTKDNSDLFSSFGLWFGDRFSLWDNIASVFTVRDGLYLRWTLNTVLYAGVSAVGASLIATMAGYAFAKYTFPGSRALFSLTLGAIMIPLTALALPTYLLFNAASLTNTPWAIILPSLVSPFGVFLMRVYAADAVPDSMIEAARVDGAGEFRIFWQVSFRLLGPGVVTVFLFALVATWNNYFLPLIMLNSSSLYPLTVGLAQQQSASAAGGGAQALFSTVITGSLVSVIPLIIAFLFLQRYWETGLATGGVKEPGPT0016540_1095DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02443585gpmA_32,3-bisphosphoglycerate-dependent phosphoglycerate mutaseGTGACTCTTACGACTTTCGCCCTCGTCCGCCACGGTCAGACAGATTGGAATGCGCAGCGCCGGTTGCAGGGATCCACCGATATCCCACTGAACGACGTCGGCCGGGGCCAGGCGCGCGATGCCGTCGCCGTCCTGTCCGGCTACGAGTGGGACGCCATCGTGTCCTCGCCGCTGAGCCGAGCCGCGGAAACCGCCGATCTTATCGCCGCGGGGCTGGGGCTGGACGTGGTCCGGCGTGTGCAAGGGCTGACTGAGCGCAGCTTCGGATCCGCGGAGGGCCTTCAGGCCGGACCCGAACTGGACGCTTTGCGCATCCCCGGTGGCTACCTCGGCGCAGAAGGCGAGGACGACGCCGCGTGCCGCGGGCTGGCTGCATTGGAAGCACTGGCCGAGGAATTTCCGGGCGGCCGTATTCTTGCCATCGCCCACGGCACGCTCATCCGAGTCAGTCTCAGCCGCGCCATCGGCCGTGCCTTGCAGAAAATCGACAACGCCGCCCTCAACCTGGCCCACCACCATGCCGTTGATGGCTGGAAGCTCGAGTATTTCAACGGCGAACGGGTATCCGCCGACGTCCCAGGCTGAMTLTTFALVRHGQTDWNAQRRLQGSTDIPLNDVGRGQARDAVAVLSGYEWDAIVSSPLSRAAETADLIAAGLGLDVVRRVQGLTERSFGSAEGLQAGPELDALRIPGGYLGAEGEDDAACRGLAALEALAEEFPGGRILAIAHGTLIRVSLSRAIGRALQKIDNAALNLAHHHAVDGWKLEYFNGERVSADVPGPGPT0002590_153DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-UNCHARACTERIZED_PHOSPHATASE,PGPT0002590-phoE-K15640NANA
D1-29_02444912hypothetical proteinATGACTGACAATGGGCCCGTTCTGGTGGTGGGCGGCACTGGCATGCTGGGCGGCCAGGTTGTGGCCGAACTCCTGGCGCGCGGAAAACAAGTTCGTGCCCTCGTGCGCGTCGGTTCGGATGCGGCCCGCCTGAAAGCCGCCGGAGCCACTATCGCCCGGGGCGACATGATGGTCCCGGGGTCGCTGCGGCGGGCGATGGACGGCGTGGACTGTGTGATCACCACGGCGGCAGGCTATACCCGGCACCGGAAGGGGGACACACCAGAAACGGACATCGTTGGCAACGCCAACCTTGTCGATGCCGCGGCCGCCAGCAAGGTGCGCAGGTTCGTCCTGACAAGCATCCTGACGTGTGACCAGACGCCCGGGGTTCCGCACTTTTGGCACAAGAAGCTGACTGAGGACCGGCTCGAAAACCGGGGCGTGCCGTTCGTGGCGCTGCGGCCGGGCGCCTTTTTTGACCAGGTCACCCGTTTCGGCGGCGACCCCGTCAGCAAGGGCCGCTTCAGATGGCTCGGGGACCCTGGCGTCCCGCTGACGTTCGTGCTCACGCCCGACGTTGCAGGCTGTCTTGCCGCGGCAGTCGACGCACCCGGCGTCGAGGGTCAACGGATCGATATCGGGTGGGACCGGCCGGTAAGCATGCAGCAGGTGGCCGAGATCTCCGGCCGGCTCCTTGGCAGGCGCATGGGCGTACGGGCGGTCCCCGCGGGGCTCGTCCGCACCATGGGCACCGTGCTTGGGCCGGTTAACCCGATGCTGAAGGACCTGGGTGCGATGATCAACTATTTCCAGACCGGCGGCTACGTCGCCGACACCACCCGGCAACAGGAGGTCTTTGGCGCCGTGCCTACGGCCGAAGATTCCATCGGCCGCCTGATAACCAGCCTGGGACACTCCCCCGCCCGTTAGMTDNGPVLVVGGTGMLGGQVVAELLARGKQVRALVRVGSDAARLKAAGATIARGDMMVPGSLRRAMDGVDCVITTAAGYTRHRKGDTPETDIVGNANLVDAAAASKVRRFVLTSILTCDQTPGVPHFWHKKLTEDRLENRGVPFVALRPGAFFDQVTRFGGDPVSKGRFRWLGDPGVPLTFVLTPDVAGCLAAAVDAPGVEGQRIDIGWDRPVSMQQVAEISGRLLGRRMGVRAVPAGLVRTMGTVLGPVNPMLKDLGAMINYFQTGGYVADTTRQQEVFGAVPTAEDSIGRLITSLGHSPARNANANANANA
D1-29_02445426hypothetical proteinATGGCTGAAAACATAACCGTCCCCACTGGCGCCAGCGTGGAGGAGTTCCTCTCCTCCATTGACCATCCCACCCGCCGTGAGGATGGCTTCGCCCTGCTCCGGATCATGTCCGAGGCCACCGGGCAGCCCGCCGTCATGTGGGGCCCCAGCATCGTGGGCTTCGGAAGCTACCACTACAGGGGCGCCAGCCGCGAGGGCGACTTTGCCGCCGTCGGATATTCACCGAGAAAGGCCAATCTGGCGCTGTACGGGGTGATTTACCGCCCCGATGCGTCGTCGCTGCTGCCCAAGCTCGGAAAACACAAGCTGGGTGTCGGCTGCCTCTACATCAACAAGCTCGACGACGTGGACACCGACGTCCTCGAGCAGCTGGTACGCGAGGGCTATGAGTACGTCACGACGGAACTGGACGTGCCAAGGACTTGAMAENITVPTGASVEEFLSSIDHPTRREDGFALLRIMSEATGQPAVMWGPSIVGFGSYHYRGASREGDFAAVGYSPRKANLALYGVIYRPDASSLLPKLGKHKLGVGCLYINKLDDVDTDVLEQLVREGYEYVTTELDVPRTNANANANANA
D1-29_024461188hypothetical proteinGTGACCGAAACCAACGCTGAAGGCCGGGACAGGCTCAGCCGCTGGCGTCTGCTGCTCGGCGGTCACGAAGCGGACGGCGTCAGAACATCCGACGGCGAGAGTGTGGTCCTCTCAGCTGAGGACCACCTCCGGGACAAGGCGCTGGAAGACTTGTACGGGGCAGCAGGCAAGGGGGCGGGAGGCCTGGGCGCCTCCAGTCCCCGGGTGGCCAGGTGGCTCGGTGACATTCGTGGCTATTTCCCCTCCAGCGTGGTCCAGGTGATGCAGGCCGACGCCATGGACAGGCTGGCCCTGCGCCAACTGCTCCTGGAACCGGAGATGCTGCGCACCGTGCAGCCGGATATCGGCCTCGTCAGCACGCTCGTTGGGCTGGGCCGCGTGATCCCGGAGCGTTCGCGGGAGACAGCCAGGGCAGTGGTCCGCCAAGTGACGGATCAACTCGAGGACCGTTTGCGCGCCAAGACAGTCCAGGCAGTTTCCGGGGCATTGAACCGGGCAGCACGGACCAGGCGGCCGCGGCACCAGGACATCGATTGGAACCGCACCATCGCCGCGAACCTGAAGCACTATCAGCCCGAATACCGGACCATTGTGCCTGAACGGCTGGTGGGATATGCCCGGCGAAGCACCCAGGTCCAGCGTGAGATCATCCTGTGCATCGACCAGTCCGGGTCCATGGCCGAGTCGGTGGTGTACTCCAGCGTGTTCGGCGCGGTGCTCAGCTCGCTGCGGTCGGTGCGGACACGGCTGGTGGTCTTCGACACCGAAGTTGTGGACCTGTCGGACGAGCTGGAGGACCCCGTGGACGTGCTCTTCGGCGTGCAACTGGGCGGCGGCACGGACATCAACCGGGCACTGGCCTACTGTCAGGATCAGATCACGCAGCCAACGGAGACAATCCTGGTGCTCATCAGCGACCTCTATGAAGGTGGAATAGCTGAGGAGATGCTGCGCCGGGCCGCCTCGATCGTCGGAGCCGGGGCAACCATGATTGCCCTGCTGGCGTTAAGCGACAGCGGACATCCGACGTTCGACGTCAACCACGCCGCCGCCCTTGCCGGCATCGGCGTCCCGGCCTTCGCCTGCACGCCGGACCTGTTCCCTGAACTGATGGCCGCGGCCATCGAACGCAGGGACGTGGGCGAATGGGCCGCCTCCCACGACATTGTCACGACTCACGAAACCTAGMTETNAEGRDRLSRWRLLLGGHEADGVRTSDGESVVLSAEDHLRDKALEDLYGAAGKGAGGLGASSPRVARWLGDIRGYFPSSVVQVMQADAMDRLALRQLLLEPEMLRTVQPDIGLVSTLVGLGRVIPERSRETARAVVRQVTDQLEDRLRAKTVQAVSGALNRAARTRRPRHQDIDWNRTIAANLKHYQPEYRTIVPERLVGYARRSTQVQREIILCIDQSGSMAESVVYSSVFGAVLSSLRSVRTRLVVFDTEVVDLSDELEDPVDVLFGVQLGGGTDINRALAYCQDQITQPTETILVLISDLYEGGIAEEMLRRAASIVGAGATMIALLALSDSGHPTFDVNHAAALAGIGVPAFACTPDLFPELMAAAIERRDVGEWAASHDIVTTHETNANANANANA
D1-29_024472322hypothetical proteinGTGACAGACGTCCACGTCCTGGGCATCAGGCACCACGGACCCGGTTCGGCGCATTCGGTCGCGGAAGCCCTGGCAGCCCTCCGGCCGGACCTGGTGCTGGTGGAGGGCCCGCCGGAACTGGACCAGATCCTGCCGCTGCTTTCGGATCCCGGGATGACCCCTCCGGTGGCGGGGCTGATCTACGCAGCCGAGCAGCCGCGGCTGGCGTCGTTCTACCCGCTGGCAGGCTTCTCCCCTGAGTGGGTGGCCATCCGCTGGGCGCTGTCAACAGGAACGGGGGTCCGGGCCATCGACCTGCCCGCGGCCCACAGCTTCGCGCTGCACCTGGCCGCCCCGCCACGCGATGCTGGTTCCGATGCTGACTCGGACTCGGATTCAGCAGAGGCTGACCCGGCCACCCCCGTTGACCCCGCCGAACCAGCCCCGGACCTGCAGCAGCCCTACCGGCCGGATGCGGTTGCGATGCTGGCTGAGGCTGCCGGGTACAGCGACGCCGAACGCTGGTGGGAGGACGCCATCGAGCACCGGAATGAGGGCCCGCTGGACCAGTTTGCCGCCGTCATCGATGCCATCGCCGAAATTCGCGCCATCGACACCAGGCCCGCTGACCACCCGGACGTGGTGGAGAACAACCTCCGGGAGGCATCCATGCGGCGTCTCCTGCGGGCGGCGATCCGCGAAGGGCACGGACGGATCGCCGTAGTGTGCGGCGCCTATCACGCGCCGGCGCTGGTCACCGCTGCTTTTCCTCCTGTCTCGGCCGACAACAGGCTGCTGGCCGGCCTGCCCAAGATCAAGGTCACGGCCGCCTGGGTGCCCTGGACCTCCGATCGGCTCAGTCTCCGCAGCGGATATGGGGCGGGCGTGACCGCTCCGGGCTGGTACCAGCATCTCTTCACCCACCGCGCCGCCCAGGATCCCTCCCTGGATGTAGCAACCACCTGGCTGGTGCGGGTTGCCCGTACCTTGCGACGCGAGAACCTTGACGCGTCCACGGCGTCGGTGGTGGAGGCAAGCCGGATGGCGCGTGCCCTGGCCGCAGTCCGGGGACGGCCCAGCCCGGGACTATCCGAACTGGATGACGCCGCCCAGGCAGTGCTCTGCGACGGCTCGCCGCTGCCCCTGGCACTGGTGCACCGGGAACTGACCATCGGACGTGAACTGGGGAACGTGCCGGCGTCCGCGCCCACCGTTCCGCTGGCCGCTGACCTCGCTGCCGCCCAGCGCAGGCTGCGGCTGAAACCCAGCGCGATGGAAGAGGTCCTGACAATTGACCTGCGCAAGCCGAACCAGCTGGCCCGCTCGGTGCTGCTGCACAGGCTGGCGCTGCTCGGCGTGGACTGGGGCATCCCCAGCGAGACCGGCCGTACCACGGGCACGTTCAAAGAGGCGTGGATACTGCGTTGGGAGCCGGAGCTTGCCATCGCAGTGGTGGAAGCCAGCCGTTATGGCACCACCGTCGAATCGGCGGCAGCGGCATACGTGTCCGAACGGGCCCAGCTCGCCACCAGCCTGACGGACCTTAGTGATCTCCTGACGCGCTGCCTGCTTGCGGACCTGCCGGAGGGAATCAGTGGCGTGGTGTCGGTGCTGGCGGAGCGCACGGCCCTGCAGCATGACGTTCCGCCGCTCCTGGAAACCATTGCTCCGCTTGCCCGGACCTGCCGGTACGGCAACGTGCGCGGTGTGGACGTCACGGAAGTGCGGAAGATTCTCGATGCGACCGCAGTTCGGGCCTGTGTTGGCCTGCCGACAGCCTGCTCCGGGCTGGACGATGAGGCGGCAGCAGCGATGCGGCGGGCCATTGACTCGGCCCAGCATGGTTTGTCCCTGCTGCCGGACCTGCCCCTGGATGACTGGCACGGGGCCCTGGGTGCCGTTTCAGGTTCGGACGCCATTCACGGAGCGGTCGCAGGGCGGGCCACCAGGCTGCTGCTGGACGCCGGCCTGGTGGACAGGGACGACGTCGCGGCGCGGCTCAGCCGCCGGCTGTCCATCGCCACGCCGGCCCCGCAGGCCGCAGCCTGGCTCGACGGCGTTCTGTCAGGCGATGCTGTCCTGCTGATTCACGATCCGCGCCTCCTGCAGATCGTCGACGAGTGGGTGGCCGGTGTGCCAGACGGCGTCTTTGACGACGTTTTGCCGTTGCTGCGCAGGACGTTTTCGTTGTTCAGCCCTCCAGAGCGGCGGGAAATGGGTGAACAGGTGAGCCGCGGAAGTGCGCTCACCCGGACTTCGGATGCATTAGCGCTGCACTTCACGGGCGCGGACGAGGCGATCCGCACGATGGCCAGGTACCTGGGATGGGAGGCAGTGCAGTGAMTDVHVLGIRHHGPGSAHSVAEALAALRPDLVLVEGPPELDQILPLLSDPGMTPPVAGLIYAAEQPRLASFYPLAGFSPEWVAIRWALSTGTGVRAIDLPAAHSFALHLAAPPRDAGSDADSDSDSAEADPATPVDPAEPAPDLQQPYRPDAVAMLAEAAGYSDAERWWEDAIEHRNEGPLDQFAAVIDAIAEIRAIDTRPADHPDVVENNLREASMRRLLRAAIREGHGRIAVVCGAYHAPALVTAAFPPVSADNRLLAGLPKIKVTAAWVPWTSDRLSLRSGYGAGVTAPGWYQHLFTHRAAQDPSLDVATTWLVRVARTLRRENLDASTASVVEASRMARALAAVRGRPSPGLSELDDAAQAVLCDGSPLPLALVHRELTIGRELGNVPASAPTVPLAADLAAAQRRLRLKPSAMEEVLTIDLRKPNQLARSVLLHRLALLGVDWGIPSETGRTTGTFKEAWILRWEPELAIAVVEASRYGTTVESAAAAYVSERAQLATSLTDLSDLLTRCLLADLPEGISGVVSVLAERTALQHDVPPLLETIAPLARTCRYGNVRGVDVTEVRKILDATAVRACVGLPTACSGLDDEAAAAMRRAIDSAQHGLSLLPDLPLDDWHGALGAVSGSDAIHGAVAGRATRLLLDAGLVDRDDVAARLSRRLSIATPAPQAAAWLDGVLSGDAVLLIHDPRLLQIVDEWVAGVPDGVFDDVLPLLRRTFSLFSPPERREMGEQVSRGSALTRTSDALALHFTGADEAIRTMARYLGWEAVQNANANANANA
D1-29_024481107yehLCOG0714putative protein YehLATGACCGATGCCCAGTCCACCACTGATGTTCTGCGCGCCCATGCCGAAGACGCTTATGCGGCGGAACTCAGGGAGCTGGCAGCTTTGGATGACCGGCCCCGCCCGCCCAGCTGGCGCCTTTCACCCTGGGCAGTGGCCACCTATGTCCTTGGCGGCACCTTGCCCAACGGGACTGAGATCAGCGCGAAGTACCTTGGCTCGGCGCGGCTGGTGGAAATCGCCGTGGCATCCCTGGCCACTGACCGTGCGCTGTTGCTGCTCGGCGTTCCCGGCACCGCGAAAACCTGGCTCAGCGAGCACCTGGCCGCCGCCATCTCGGGCACATCCACGCTGGTAGTGCAGGGCACGGCCGGCACACCCGAGGAAGCACTGCGGTACGGCTGGAATTATGCCCGGCTGCTGGCCGAGGGCCCGTCCAGGGCGGCCATGGTTGCCGGGCCGGTGATGCGCGCGATGGAAAGCGGCAGCCTGGTCCGGGTGGAGGAGCTCACCCGCATCCCCTCGGATGTGCAGGATTCCCTCATCACCATCCTGAGTGAAAAAGTCCTGCCCATCCCTGAGCTGAACCAGGAAGTCCAGGCACGCAAGGGATTCAACGTCATCGCCACGGCCAACAACCGCGACAAAGGCGTCAATGACCTCTCCTCCGCCCTGCGCCGCCGTTTCAACACCGTGGTGCTGCCCCTCCCGGACAGCCTCGAGCAGGAGGTGGAGATTGTCAGCACCCGGGTTCGCAGCCTGGGCGCGGCCCTGGAACTGCCGGCTGATCTTGCGGCGCTGTCTGAAATCCGCCGCGTGGTCACTGTGATGCGCGAACTGCGCGCCGGCGTCACCCAGGATCAACGCACCACCATCAAGTCGCCGTCGGCAACCCTTTCGACGGCGGAAGCCATTTCCGTGATGACCAACGGGCTGTCCCTGGCAGCCCATTTTGGAGACGGAACGGTCCGGGCCCCCGACGTGGCGGCCAGCCTGGTGGGCGCGGTGGTAAAGGATCCCGTGCAGGACCGGGTGATTTGGCAGGAGTACCTGGAGACCATCGTCCGCAACCGCCCGGAGTGGAAGGACCTGTACCGGGCCTGCCGCGATCTTGATTCGTCCAACTGAMTDAQSTTDVLRAHAEDAYAAELRELAALDDRPRPPSWRLSPWAVATYVLGGTLPNGTEISAKYLGSARLVEIAVASLATDRALLLLGVPGTAKTWLSEHLAAAISGTSTLVVQGTAGTPEEALRYGWNYARLLAEGPSRAAMVAGPVMRAMESGSLVRVEELTRIPSDVQDSLITILSEKVLPIPELNQEVQARKGFNVIATANNRDKGVNDLSSALRRRFNTVVLPLPDSLEQEVEIVSTRVRSLGAALELPADLAALSEIRRVVTVMRELRAGVTQDQRTTIKSPSATLSTAEAISVMTNGLSLAAHFGDGTVRAPDVAASLVGAVVKDPVQDRVIWQEYLETIVRNRPEWKDLYRACRDLDSSNNANANANANA
D1-29_024491455hypothetical proteinGTGACCTGGCTGGCGGATCTCCGGACGTCGGCGCTTCTTGGCACCGGACGCCATGCGGCGCCCTTGCCGCCTGCGGAATTGGGGGTTCGGCCACCGGCCGGCCTGTCCCGGGAGGAGCTCTTGCTCGACCAGGCCGCCATGGCCGACGTCGCCACCCGTGCTGCCCGCCGCCCGGGCACCGGGGACACCGATCAGCTGCCGGCTCCGGCCCCGCCGGACGATGTTCCGGAAGCGTCCGGCGAATCCGCCCGGTTGCTGGACCTGCTGCTCAATCAGCCTCCGGTCAGTCAGGAGCTCCGGAGGCAGCTGGTGATTGATTGGCTGCAGCTCGCGGACGCGGCCCAAGGCCGGGTGCCCCACCGCTTGCTTCCGGCCCTGCTCACGCTGGCTGACACCCGGCCCGGCGTGGCGGAGCATCTTCATCCGGCCATCGGGGCCCGTGGCAGCTGGCTGCAGGACCTCGCCCGGCCCGGGGTTTCCGGCAGGCCTTCCACCGCCGGCACCGATTGGGCGGGGCTGGGGAGCGCCGACGCCACGGTGGAACTGGAACGGCTCCGGCGCAGCGACCCCGCGGCCGCCCGGGGCCTGCTGGCCAGCCAATGGGGCACCCTGGGCGCGCGGGAACGGGCCGCCCACCTGGGCACCTTCGCCGTCAACGTTCAATCCGACGACGACGAGCTGCTGGAACGGGCCCTGGATGACAAGGCAAAGAGCGTGCGGGAGGTTGCCGCCAACCTGCTGGACCGGCTCCCCGGCAGCGCCCGGGCCGGCCGCATGGCCGCACGGCTGCTCCCGCTGCTTCGCATCAAAGGGGTGCTGCGCAAACAGTTCGAGATCGAGCTGCCACCGGAACCGGACGAAGAGTCCGTGCGCGACGGCATCGCCGGGGATCCCCGCAGCGGCGAACCCCACAGGCTCGGCCGGCTGGAAACGATCATCCGGGGTGCCCCGCTCGACGTGTGGACAACGGTTTCTGGACGTGGCCCGGCGGCAACGCTGGCGCTGCTTGAGAGCGAACCCCGGATCGTTGCGGCCATTCTCGACGCCGCTGTGCTGCGCGCCGACCTTGACTGGGTGCGCGCGCTGGCAGAGCTCCGCCAGGACCCGCGGCTGCTGAGCTGCCTGCCCGCCGTCGAGCGCGAGTCCGCACTCGTCCGGCATCTCCGCAGCGGAGGCCGGAATCCGTTGACGCTGGCCCCGTTGCTGAGGGACCAGCCAAGGCCGTGGGGCCCGCGCCTGGCCGACGAAGTACTCAAGCTGATAACCGCCAAGAACGGCGGGCAGCTGGCAGCAATGCTGGCCGACATCCTGCCCACCGGGCTTCCGCTGGAAGCCGCCGACGAGTGCCGCCGCCTGCTCGAGCGTTCAGACGACGACGCCGCCCGGCGCCGCGTTCTGCGTGATGTCGTACAGTACCAATCATTCCGAAAATCGCTGACGGAGGCCTTCCGATGAMTWLADLRTSALLGTGRHAAPLPPAELGVRPPAGLSREELLLDQAAMADVATRAARRPGTGDTDQLPAPAPPDDVPEASGESARLLDLLLNQPPVSQELRRQLVIDWLQLADAAQGRVPHRLLPALLTLADTRPGVAEHLHPAIGARGSWLQDLARPGVSGRPSTAGTDWAGLGSADATVELERLRRSDPAAARGLLASQWGTLGARERAAHLGTFAVNVQSDDDELLERALDDKAKSVREVAANLLDRLPGSARAGRMAARLLPLLRIKGVLRKQFEIELPPEPDEESVRDGIAGDPRSGEPHRLGRLETIIRGAPLDVWTTVSGRGPAATLALLESEPRIVAAILDAAVLRADLDWVRALAELRQDPRLLSCLPAVERESALVRHLRSGGRNPLTLAPLLRDQPRPWGPRLADEVLKLITAKNGGQLAAMLADILPTGLPLEAADECRRLLERSDDDAARRRVLRDVVQYQSFRKSLTEAFRNANANANANA
D1-29_024501296hypothetical proteinGTGCGTTGGAGCGAGGAGAAGGTGATCAGCGCCGCCCCCGATGATTCTTCGATGGCGGCCGCCCGCAAGCTGGCTCGTCCCGGCCCGTGGTCCGAGACCGGCAGCAATGACGTCCTGGTATGGGGTAAATGCCAGGGCAGCGGCAAGACCCCGTACCAGGTCAGCGTTGACCTGGCCGCCCCGGCGTACCGGTGCTCGTGCCCCAGCCGGAAGTTCCCCTGCAAGCATGCGCTGGCCCTTCTCCTCCTGTGGTCCCGTGGCCAGGCGGCCGACGCCGGCGCGGAGACCGCCGACTTTGCCCGGGAATGGGCGGGCCAGCGGGAGGAACGGGCGGCAGCGCTGGAACGGCGCCAGACCGGCCAGCAGGCAGATCCGGTTGCGCAGGCCAAGCGGCGCGCGGACCGGTTGGCCCTGATGGATTCGGGGGTATCCGACTTCGCCCGGTGGCTGACGGACCTCGTGCGGACTGGCCTGGCTGCCGCCCGCGACCAGCCGTATGCCTGGTGGGACGCTGTAGCCGCGCGGTTGGTGGACGCCCAGCTTCCGGGCCTGGCCGAGCAAGTCCGGGCGATGGGGTCAGACGTGCACGCCCGCGGGGATTGGGCCGATCATCTTCTCCTGCACGCAGGCCGCTGGTGGGCGCTGACCAAAGCCTGGAACATGCGGGAGGAGCTGTCAGCCACCGAGTTTGCCGATCTCCGGGCGGCCGTCGGATGGGCGGTGGCCTCCGCCGATGTCCAGGGTACGGAGGAATTGCCGGGTCCTTGGCTGGTGCTGGGGGCTTACCGGACCGACGACGGACGGCTGCAGCAACAACGCACCTGGCTTCGCGGACCTGACGGTACGGTGGTGGTCGTGCTCGATTTTGCCGCCCAGGGGCAGGCACTCTCCGCGCCCCAATTGGCCGGTGCGGAGCTGGACACCAGCGTCGCACGGTATCCCGGCACCGCGCCGCAGCGGGCCATGTTCACAAACCCTGTCAACGCCCGCGGGCTGGCCCGCAGCCTCGGTGACGGGTGCAGCATTGCCCGGGCACTGGAATCGGAATCGGCCGCTGTTGCCGTCTCGCCATGGCGTGGGCGTCACCCGGTGCTGTTCGGCAAGGTCCGCGTCTCCCCTGGTGGTCACGGCTGGCTCCACGACAGCTCCGGCGATGCACTCCCCCTGGTGGACGCGCCGCTGGACTCGCTCCTGGCCCAGACCGGCGGGCATCCTGTGGACCTGTTTGGTGAGCTGGAGGAGGGCCGGGTGCGGCCCCTGTCCGTCGTCGTCGGGCAACGGGTGGTGACCCCGTGAMRWSEEKVISAAPDDSSMAAARKLARPGPWSETGSNDVLVWGKCQGSGKTPYQVSVDLAAPAYRCSCPSRKFPCKHALALLLLWSRGQAADAGAETADFAREWAGQREERAAALERRQTGQQADPVAQAKRRADRLALMDSGVSDFARWLTDLVRTGLAAARDQPYAWWDAVAARLVDAQLPGLAEQVRAMGSDVHARGDWADHLLLHAGRWWALTKAWNMREELSATEFADLRAAVGWAVASADVQGTEELPGPWLVLGAYRTDDGRLQQQRTWLRGPDGTVVVVLDFAAQGQALSAPQLAGAELDTSVARYPGTAPQRAMFTNPVNARGLARSLGDGCSIARALESESAAVAVSPWRGRHPVLFGKVRVSPGGHGWLHDSSGDALPLVDAPLDSLLAQTGGHPVDLFGELEEGRVRPLSVVVGQRVVTPNANANANANA
D1-29_02451282hypothetical proteinATGGGGTTATCCGATGAAGAGCGCAGGCGTCTCGAAAAGCTCGAACAGGAACTGGCCGCAACGGATCCGGATTTGGACCGGGAACTGCAGTCAGGAACGCCCCACGGCAGGGCCGCCGCCCGCACCGTCTACGGTGTCCTGGCCGTCATAGCCGGCTTGGTGCTGGTCATCGTGGGAATTATTACAGAGCTCGTTGTCATTGGCGCTGTCGGCTTCCTGCTGACGGTTGCAGGTGCTCACTGGTTCCTCAGCGGACTCCGCCTCCCGGACAAGCCCCGGTAAMGLSDEERRRLEKLEQELAATDPDLDRELQSGTPHGRAAARTVYGVLAVIAGLVLVIVGIITELVVIGAVGFLLTVAGAHWFLSGLRLPDKPRNANANANANA
D1-29_02452429COG0589Universal stress proteinATGAAGATTGTTGTGGGAGTCGACGGGTCGGATGCTTCCGTCGAAGCGCTGCGGCAGGCACAGCGGCTGGCGGTCCCGCTTAATTCAGAGATAGAGGCCTTGGCCTGCTGGGAGTACCCGAACACGTATGCCTCGTATGTGGCCGTCGGTATCGGAGGGTTCAAGGAACATGCAGAGGAATTACTGGAGGACGCCGTAGTCAAGGCCTTCGGCCCCCAGCGTCCAGAAAATGTACGGACCCGACTTATGGAAGGATTCGCACGCACGATACTTATCGAGGAGAGCAAATATGCCGATCTTCTCGTCCTCGGGCCCAGGGGCCATGGCGGCTTTGCGGGGCTGTTACTCGGGTCGGTCACCTCAGCCTGCATCGCCCACGCGCACTGTCCCGTGCTCATTGCACGTAGGCGCACCGCAGCAGACGGGTAAMKIVVGVDGSDASVEALRQAQRLAVPLNSEIEALACWEYPNTYASYVAVGIGGFKEHAEELLEDAVVKAFGPQRPENVRTRLMEGFARTILIEESKYADLLVLGPRGHGGFAGLLLGSVTSACIAHAHCPVLIARRRTAADGNANANANANA
D1-29_024531461yhdG_3COG0531putative amino acid permease YhdGATGAAAGTCTCTCAAGCTGTGCAAACGCAGGACACTTCACTTCTTAAGGTCTTGGGAAACTGGGACGCGTTAGCCCTTGGCTTCGGCGCAATGATCGGTTTTGGCTGGGTAGTCCTCACCGGTGGCTGGATATCTTCGGCGGGCACCATGGGGGCGGTCCTCGCCATGATTACCGGTGGCCTGATCATGGGCGTAGTGGGATTAACCTACGCTGAGTTGACCGCTGCGATGCCTAAGGCCGGCGGCGAGCACAACTTCTTGCTCCGCGGCATGGGTCCCCGTTGGTCTTTCATTGGGTCCTGGGCCATCACCGGAGGCTACATCACAATTGTTGCCTTTGAGGCTGTGGCGCTGCCGCGCACTGCCCAGTACCTCTTTCCTGACCTGAGCCAGGTCCCCCTGTGGGAAGTTGCCGGCTACCAGGTACACCTCACATGGGCCTTGGTGGGGGCTGTTGCCGCAGTCATTATCACGGGGATAAACATCCTCGGAGTCAAGCTTGCCGGCGTCGCCCAGACTTTCGTGGTCGTTTTCCTGCTGGTTATTGGCTTGATGCTTGTCTTCGGCTCCTTCACGGGAGGCTCAGCAGCGAACATGCAGCCTTTCTTCACGGGCGGCATGAACGGTTTCTTCGCCGTCCTCGTGGTAGTTCCGTTTCTGTTCGTTGGCTTCGACGTTATCCCCCAGTCTGCCGAGGAGGTAAACATCCCGGCGCGGCAGATAGGAAGGCTCGTCGTCATTGCGGTCCTGCTTGCCACGGTTTGGTACACCATGACTGTGCTGACTACCTCCTCCGCAATGCCTCCGGGAGACATCGCTCAAGCGGATATAGCAACGGCTGATGCCATGGGTGCACTGTTCGGCAGCGACGTAATGGCCAAGATCCTGATCGCCGGCGGCATTGCAGGCATTCTGACCTCATGGAACTCACTGCTTCTCGGCGCCTCACGCCTGATGTATTCAATGGCCCGCTCCGGCATGCTGCCTGTATGGTTTGCCAAGCTGCACCCCAAGTACCGGACTCCAGTCAACGCCCTGCTGTTCATTGGCGCACTGTCCTTTCTTGCACCGTTCTTCGGCGTTTCGATGCTGGGCTGGCTCGTGGACTCCGGCGCACCGAGCATCGTGATCGCCTACATCCTTGTTGCATTGGTGTTCGTGATCCTGCGCCGCCGCGAACCTCACATGGACAGGCCCCTCCGCATCGGCGGCAAGGGCAACGGAGGCATCATTATTGGCGTTCTGGCAGTGGTCCTGTGTATTGGACTTCTCAGCCTCTACCTGCCAGGCATGCCGGCATCCCTCACACCGCCGCCGTGGATTCTCTTTGGCTTGTGGTGGGTGCTCGGATTGGTCCTCTTCCTGCGCATTCCGGCCGGAATTGCTCCCGGCGAAGACGCTGAGCACCATCTGCTCGAACGCCTTGGGCAACGACGGCAGGAAGCGGTCAGGAACGGCTGAMKVSQAVQTQDTSLLKVLGNWDALALGFGAMIGFGWVVLTGGWISSAGTMGAVLAMITGGLIMGVVGLTYAELTAAMPKAGGEHNFLLRGMGPRWSFIGSWAITGGYITIVAFEAVALPRTAQYLFPDLSQVPLWEVAGYQVHLTWALVGAVAAVIITGINILGVKLAGVAQTFVVVFLLVIGLMLVFGSFTGGSAANMQPFFTGGMNGFFAVLVVVPFLFVGFDVIPQSAEEVNIPARQIGRLVVIAVLLATVWYTMTVLTTSSAMPPGDIAQADIATADAMGALFGSDVMAKILIAGGIAGILTSWNSLLLGASRLMYSMARSGMLPVWFAKLHPKYRTPVNALLFIGALSFLAPFFGVSMLGWLVDSGAPSIVIAYILVALVFVILRRREPHMDRPLRIGGKGNGGIIIGVLAVVLCIGLLSLYLPGMPASLTPPPWILFGLWWVLGLVLFLRIPAGIAPGEDAEHHLLERLGQRRQEAVRNGPGPT0020810_3810DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_02454477hypothetical proteinATGGAATCCGTCAAAGAGACCATCGATGTAGCAGTGCCGGTATCAACGGCCTACAACCAGTGGACGCAGTTTGAATCATTTCCGCAATTCATGTCCGGTGTTGAATCCGTGACACAGCTGACCGACACCACCAATCACTGGGTCACGAAGATCGGCGGCGTGGAGCGGGAATTCGATACCGAAATTGTGGACCAGACGCCGGACGAACGCATCGCCTGGCGCAGCGTCGACGGGAAGTCCCACGCCGGCCGGGTCCACTTCACGCCGCTGGATGCCGGGAACACAAGGATTTCTGTTCACTTCGAATGGGGACCGGAGACTTTCACCGAGAAGGCCGGGGCTGCCCTTAACCTCGACGACATGCGAGTCAAGGCGGACATGCGCAGGTTCAAGGAGTTCATCGAATCCCGGGGCGCCGAGACCGGTGCATGGCGCGGCGAAGTGAACGACACCCGACCCACCGGAGAGGCTTTGTAAMESVKETIDVAVPVSTAYNQWTQFESFPQFMSGVESVTQLTDTTNHWVTKIGGVEREFDTEIVDQTPDERIAWRSVDGKSHAGRVHFTPLDAGNTRISVHFEWGPETFTEKAGAALNLDDMRVKADMRRFKEFIESRGAETGAWRGEVNDTRPTGEALNANANANANA
D1-29_024551233thcBCytochrome P450 116ATGACCCCGGATCCATCAATCACGGGGATCCTCACGCCCCCATCCGAAACCCGTTGCCCATACATGGTGGTGCGCAACCCGGATGACGTCCGTGAAATCCTGCAAAGACCAGCCGACTTCAGTCCCGCCAACGCCCTGGTTGCCGTGACGCCTTTGACGGGGCCGGCCCTGCGTGCGCTCCAGCGCGTGCGGTTCGCGCTGCCGCCGGTTCTGGCCAGCAATGACACTGACACCCACGCCGGGATCCGCAAGGTGGTGGCGGGCTACTTCACCCCCGCCAAGGTTGCGGCGATGGAACCCCGCATCCGTGAACTTGCCCGGGTAGCAGCATTCAACGCTGCCGGACGGCTTTCCCGTGCCGAACCGGTTGACCTTGTCCAGTCCATTGCGGCGTTACCGCCGGCCATTGTCATGCTGGAGCTGCTGGGGCTGCCCGTGCGGGACCTGGTGAGCCTGAAGCGCTGGGGACTTGACTCGATGGAGCTGTTCTGGGGCTGGCCCGACGAAACCCGCCAGCTGGAGCTCGCCCGGAGCGCGGCCGATTTCTATGTGTGGATTCGCGAGCTGGTCACGGAATCCGTGCAGGTACCCGGGCGCAACCTGTTCAAATCGCTGGCGGAGCACGGTCTGTCCGTGCCGGAAATCTGCTCGCTTGGCTACTTCCTCCTGATTGCCGGGCAGGAAACAACAACTCAACTGATCAGCACCACCCTGTTCCGCCTCTTGGAGGGAAGCGCAGTCCAGAGCTGGCGGGATGCTGGGTCTGAGGCTGGCGCCCGTTCGATGGTCCGGCACGTGCTGGCCACGGAATCGTCCGTTCCGACGTGGCGGCGGGTGACCACCCAGGACACGGACCTCGGCGGGGAGCGTGTTCCGGCCGGAACCGAAATCCTCCTCGAGTTGAGCGGCAACTTCATCACAAGCCCCTTCAAGGCCGGGCCGGGCACCAAAACCGGTCCGGAAGGCAGGCCGCGGCCCTTGCCCGGGCAGCCGGACCGAGCGGCCAACTCAATGAGCAACGGTCTGGTTTTCGGCTTCGGCATCCACCGCTGCCTCGGAGCCAAACTGGCGGAACTCGAGGCCAGCATCGTTGTCCACGAAACAGCTTCGGCGCTGCCCGGGCTTCAGCTGGCGGACTCCGAACCGGCGTGGATCATGCTGTTGTCCTTCCAGGCCCCCAGGGCACTTCCGGTGAAATATTCGGTTCTGGACACCAATAGTCAGCAGGCTTAGMTPDPSITGILTPPSETRCPYMVVRNPDDVREILQRPADFSPANALVAVTPLTGPALRALQRVRFALPPVLASNDTDTHAGIRKVVAGYFTPAKVAAMEPRIRELARVAAFNAAGRLSRAEPVDLVQSIAALPPAIVMLELLGLPVRDLVSLKRWGLDSMELFWGWPDETRQLELARSAADFYVWIRELVTESVQVPGRNLFKSLAEHGLSVPEICSLGYFLLIAGQETTTQLISTTLFRLLEGSAVQSWRDAGSEAGARSMVRHVLATESSVPTWRRVTTQDTDLGGERVPAGTEILLELSGNFITSPFKAGPGTKTGPEGRPRPLPGQPDRAANSMSNGLVFGFGIHRCLGAKLAELEASIVVHETASALPGLQLADSEPAWIMLLSFQAPRALPVKYSVLDTNSQQANANANANANA
D1-29_02456678bioDCOG0132ATP-dependent dethiobiotin synthetase BioDATGAACCTGCCGCCCATCATCCTGATCACCGGAACAGACACCGGTGTCGGCAAGACAATAACGACGGCGGCGCTCGCCGCCGTCCTCGGCGGACTGGGACGCAGCGTTGCCGTCTACAAGCCGTGCCAGTCAGGAGCGTCGGCGGGCGACTCCGACACGGCCGAAATCCTCCGGCTGGCCGGTGCCGTGACAGCGGAAACGGGAGTCGTGCTGCGTGAGCCGCTGGCACCAATCGCCGCTGCCGCCGTCGACCGGATGCCCCTTCCCCCGCTGACAGCGCACGCGGACAGGATCCGTGAACTCGCAGGATCCCATGATCACGTCCTGGTTGAAGGTGCCGGCGGCCTGCTGGTGCAGCTCGATTCCTCAGGCGGCACCATGGCGGAGCTGGGCGGGCTCTTGGCTGCGGCCTTCGTTCTTGTGGCCCGTCCTGCCCTTGGCACGCTCAACCACACAGCACTGACGCTCGAGGCGCTGGCACTGCGCGGACTTCAAGTGCTGGGCATTGTGCTGGGCAGTTGGCCCGCTGAACCAGGGTTTCTGCACCACAGCAACCTTGAGGTCATGAGATCCCTGCCCGTTCCGTTTCTCGGCGCCCTTCCCGAGCAGGCGTCAACCCTGCCGCCGGTCCGCTTTCGGGCCGAAGCAGCGCACTGGCTGAACGGACTGCCGGCATGAMNLPPIILITGTDTGVGKTITTAALAAVLGGLGRSVAVYKPCQSGASAGDSDTAEILRLAGAVTAETGVVLREPLAPIAAAAVDRMPLPPLTAHADRIRELAGSHDHVLVEGAGGLLVQLDSSGGTMAELGGLLAAAFVLVARPALGTLNHTALTLEALALRGLQVLGIVLGSWPAEPGFLHHSNLEVMRSLPVPFLGALPEQASTLPPVRFRAEAAHWLNGLPAPGPT0022115_2182DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022115-bioD-K01935NANA
D1-29_024571149bioFCOG01568-amino-7-oxononanoate synthaseATGACGCAGTGGCTGGAGCGGCAGGCAGCCGTCCGGGACCGGCGCGGGCTGGTCCGCCGGCCCGCTCCCCGGTCTGCCGACGAACTGTTCATCGACCTCGCCAGCAACGACTACCTGGGGCTGTCAGCCGACTTGCGGCTGGCCAAGGCAGCCACCGAGGCCGTGTCCCGATGGGGTACGGGTGCCACGTCCTCACGGCTGGTGGCCGGGACAACCCGGCTCCACCTCGAATTGGAGCAGGAACTGGCGTTGTTGACGGGCATGGCCGCAGGGCTGGTGTTCTCCTCCGGCTACCTGGCCAACCTGGGCGTGATCACCGCGCTGGGCGGGCCGGGAACCCTGATCGTGGCCGATGAGCACTGCCACGCCTCGATGATCGACGGATTCCGGCTCAGCCGCTCCCGGACAGAGTTCTTTGAACACAACAATGCATGCGAAGCGGGCCGGCTGCTCGCGGAACGGACCGAACCGCGTGCACTCATCGCCGTCGAATCCGTCTACAGCGTGCTGGGCGATGAGGCGCCGCTCCAGGACCTTCTCTCTTTGGCGACGGAACACGACGCCACCCTGCTGATAGACGAGGCGCATAGTTTGGGAGTGGCCGGCTTTCAGGGACACGGCGCGGTGGCAGGAACCTCTCTTGCCGGGCATCCCAACGTGATTGTCACTGCCACCTTGTCCAAGGCCTTGGGCAGCCAGGGCGGTGTGGTTCTGGGCTCGGAGCTGTTGCGCGAACACCTGGTCAACCGTGCGCGCAGCTTTATGTTCGACACAGGACTGGCCCCGGCATCGGCGGCGGCGGCCCTTGCTGCGGTCCATGTCATTCGGGATGAACCGTGGCGCGCCGCATCCGTCCGGAGCAATGCAGCAGCCCTGGCCTCGGGCCTGGCCGGCGTGCTGGAGAACATGGGCACCACCATGGCGCCTTCGGCGGGGGCTGTTCAATCCATCGCCATGCCCTCCTCGGAGGCGGCCCTGAAGGTTGCTGAAGCTGCACGGGCCGCCGGCGTGCACATCGGCTGTTTCCGCCCGCCGTCGGTCCCTGACGGCATTTCACGGCTTCGGCTCACGGCCAGGGCCACCCTTAAGCCTAAGGACGTCGAACACAGTTGCGCGGTGTTGCGCACCCTTTTGGAGGATCACCCATGAMTQWLERQAAVRDRRGLVRRPAPRSADELFIDLASNDYLGLSADLRLAKAATEAVSRWGTGATSSRLVAGTTRLHLELEQELALLTGMAAGLVFSSGYLANLGVITALGGPGTLIVADEHCHASMIDGFRLSRSRTEFFEHNNACEAGRLLAERTEPRALIAVESVYSVLGDEAPLQDLLSLATEHDATLLIDEAHSLGVAGFQGHGAVAGTSLAGHPNVIVTATLSKALGSQGGVVLGSELLREHLVNRARSFMFDTGLAPASAAAALAAVHVIRDEPWRAASVRSNAAALASGLAGVLENMGTTMAPSAGAVQSIAMPSSEAALKVAEAARAAGVHIGCFRPPSVPDGISRLRLTARATLKPKDVEHSCAVLRTLLEDHPPGPT0022095_2663DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022095-bioF-K00652NANA
D1-29_024581383bioACOG0161Adenosylmethionine-8-amino-7-oxononanoate aminotransferaseGTGAGCGGCGAGGCTCAGCCGGGGCTGATCCAGCGGGACCGCGCGCGGTTATGGCATCCGTACGCCCCGGCGTCCGCGGACCTTCCGCTCTGGGAGGTCGAGGCGGCCGACGGCGTGCGGCTGCGGCTCAGGGGCGAGGACGGCAGCCGCCACGAGGTGGTGGATGCGATGTCATCGTGGTGGTCCGCCATCCACGGCTACCGCCACCCGGTGCTGGATGCCGCTGCGAGGGAGCAGCTGGACAGTTTCAGCCACGTGATGTTCGGCGGGCTCACGCATGCCCCGGCGGTGGAGCTCGCAGAGCGGCTGGTGGAGATGGCGCCGGCTGGCGGCGGAAGATCACCCCTGGAGCGGGTGTTCCTCGCCGACTCGGGCTCCGTCTCCGTGGAGGTCGCGCTGAAACTGGCGGTGCAGTTTCAGACAGCGCGCGGATTTCCCCAACGGCAGCGCTTCCTGAGCATTCGGGGCGGGTACCACGGGGACACTTTTGCGGCGATGGGCGTCTGCGATCCCGTGGACGGGATGCACTCTGCCTTCCCGGGTCTGCTGGCGGGCAACGTGTTTGCGCCCCGTCCCCCGGCGGGGTCCTCCGCCACCGGGGGCGCCACCGCAGACGCCACTACAGGCAACATCAAACAGTGGGCGGCGGCGGTCCGGGACATCGTGGCCGCCGGCTTCGAGGGGCTTGCGGCCATCATCGTGGAACCGGTCCTCCAGGGTGCGGGCGGCATGTTCGCGTACCCGCCCGAATGCCTGCATGAACTGCGGCTCATTGCGGACAGCTACGGCCTGCTGCTCATTTTCGACGAAATCGCCACCGGCTTTGGCCGGACCGGGGAGCTTTTCGCAGCCGATCATGCCGGCGTGGTTCCGGACATCATGTGCGTGGGAAAGGCGCTGACCGGCGGATACCTGACCCTTGCCGCCATGCTCTGCACCGCCGACGTGGCCAGCACGGTATCCAACGGCAAGGCCGGCGCCCTGCTGCACGGGCCCACGTTCATGGGCAACCCGCTGGCCTGCGCGGTGGCCAACGCGAGCCTGGGCATTCTCGACTCCGGAGGCTGGCGGGACGATGTGGCCCGGATCGGCGCCGGCCTTGAGTCAGGGCTCGCCCCCGCGCAGGACCTCGACGCCGTAGCCGGGGTCCGGACCATCGGCGCCGTCGGTGTCATCGAACTGCACGACGCCGTCGACGTGGCCGCCGTGACTGCGGCCGCCATCCGGCACGGTGTCTGGGTTCGCCCGTTCCGGAACCTCGTCTACACCATGCCCCCGTACATCAGCACCGCGGCGGACATTGAACAGATCACCGCGGGCATGAGGGCCGCCGTCGCGGAAGTCCACGACCTCGTCCCTGTACCCGTGGGCGGCCGGGCATGAMSGEAQPGLIQRDRARLWHPYAPASADLPLWEVEAADGVRLRLRGEDGSRHEVVDAMSSWWSAIHGYRHPVLDAAAREQLDSFSHVMFGGLTHAPAVELAERLVEMAPAGGGRSPLERVFLADSGSVSVEVALKLAVQFQTARGFPQRQRFLSIRGGYHGDTFAAMGVCDPVDGMHSAFPGLLAGNVFAPRPPAGSSATGGATADATTGNIKQWAAAVRDIVAAGFEGLAAIIVEPVLQGAGGMFAYPPECLHELRLIADSYGLLLIFDEIATGFGRTGELFAADHAGVVPDIMCVGKALTGGYLTLAAMLCTADVASTVSNGKAGALLHGPTFMGNPLACAVANASLGILDSGGWRDDVARIGAGLESGLAPAQDLDAVAGVRTIGAVGVIELHDAVDVAAVTAAAIRHGVWVRPFRNLVYTMPPYISTAADIEQITAGMRAAVAEVHDLVPVPVGGRAPGPT0022100_632DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022100-bioA-K00833NANA
D1-29_02459234hypothetical proteinATGATCCCCAACCGCTCACTCACCCCGCAAAACCCTGTCGGGTTCTGCGGGCACTGCGGCCAGCCGTCCGACGGCGGCGCCGGCCTGGCGCCGGACGTCCACCACCGCTGCGGCGAGCGCCTCGCGATGGAGCCGCCGCGCTATTGCGCGACGTGCAGGCGCCGCATGAAGGTCCAGGTGACTCCGCTGGGCTGGTCGGCCGAATGCTCGCGCCATGAGGTTTTGGCGCCGTGAMIPNRSLTPQNPVGFCGHCGQPSDGGAGLAPDVHHRCGERLAMEPPRYCATCRRRMKVQVTPLGWSAECSRHEVLAPNANANANANA
D1-29_024601071bioBCOG0502Biotin synthaseATGACGATTCAGGCAGATCCTCCGATGACCCCCGGCTCCACCCTTCAGGCACCGAACCTTGAGGCACCGGTGCCCGAGCCGTCCATACTCGGGATTGCAAGGAAACAGGTCCTGGAAGACGGCGTGGGGCTGACCGAAAGCCAGCTGGTGGAGATTCTCAGGCTCCCGGACGAGGCACTTCCGGCCGCCCTTCAGCTGGCGCACGAGGTGCGGCTCAAGCACTGTGGCGAGGACGTCGAGGTGGAAGGCATCATTTCGATCAAGACGGGAGGATGTCCCGAGGACTGCCATTTCTGCAGCCAGTCCGGTCTGTTCGACTCCCCCGTCCGGGGCGTCTGGCTCGACATTCCCGAACTCGTCAAGGCGGCCAAAGAAACAGCCGCCACCGGAGCCACTGAATTCTGCATCGTGGCGGCGGTTCGTGGGCCGGACATCAAACTCATGAACCAGATCAAGTTCGCGATCGATCGCATCAACGAAGCAGTTGAGATCAACATCGCCTGCTCCCTTGGCATGCTGACCCAGCGTCAGGTGGACCAACTTGCTGAGTGGGGCGTGCACCGCTACAACCACAACCTGGAAACGGCCCGCAGCTACTTCAGCGAGGTAGTGACCACGCACAGCTACGAAGAGCGCCTGGAGACCTGCAACATGGTTAAGGATGCCGGAATGGAACTGTGCTGCGGAGCGCTCATCGGCATGGGCGAATCCTTGGAGCAGCGCGCCGAACTGGCCGCCCAGCTCGCGGCCCTGGAACCGCACGAGGTCCCGCTGAACTTCCTCAACCCCCGGCCGGGAACGCCGCTGGAGAACCAGCAGATCATGGATGGAAAGGACGCCCTCAGGGCCATCGCCGCGTTCCGGCTGGCCATGCCCCGCACCGTCCTGCGCTATGCCGGCGGACGCGAACTGACACTCGGCGATCTGGGAACGCGGGAGGGGCTGATGGGCGGGATCAACGCCGTCATCGTGGGCAACTACCTCACCACGCTGGGCCGCCCGACCACAGCCGACCTAAACCTGCTGGTCGAGCTCAACATGCCCATCAAGGAACTCCAGAAGTCGCTATGAMTIQADPPMTPGSTLQAPNLEAPVPEPSILGIARKQVLEDGVGLTESQLVEILRLPDEALPAALQLAHEVRLKHCGEDVEVEGIISIKTGGCPEDCHFCSQSGLFDSPVRGVWLDIPELVKAAKETAATGATEFCIVAAVRGPDIKLMNQIKFAIDRINEAVEINIACSLGMLTQRQVDQLAEWGVHRYNHNLETARSYFSEVVTTHSYEERLETCNMVKDAGMELCCGALIGMGESLEQRAELAAQLAALEPHEVPLNFLNPRPGTPLENQQIMDGKDALRAIAAFRLAMPRTVLRYAGGRELTLGDLGTREGLMGGINAVIVGNYLTTLGRPTTADLNLLVELNMPIKELQKSLPGPT0022120_1479DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022120-bioB-K01012NANA
D1-29_02461939COG02585'-3' exonucleaseATGCCTGACCGCCTGATGCTGCTGGACACTGCCTCGCTGTACTTCCGCGCCTTCTATGGCGTCCCTGACACCATCCGCCGCTCCGACGGCACGCCGGTGAACGCTGTCCGCGGGCTGCTGGACATGATCGCCCGGCTCACCACCGATTACGGGCCAACGCATCTCATCGCGTGCTGGGACGACGATTGGCGTCCGCAGTGGCGCGTGGACCTTCTCCCAACTTATAAATCGCATAGGGTGGCTGAGGTGATGGTTGGTGCCGCCGACGTGGAGGTGGTGCCGGACGCCCTGGAGGCGCAGCTTCCGATGATCCGGCGGGTGCTTGACCTTGCCGGGATCGCCGTGGTGGGGGCTGCCGAGCACGAGGCCGACGACGTCGTGGGCACCTACGCCAGCCACGCCGCGTTGCCGGTGGACGTTGTCACGGGGGACAGGGATCTCTTCCAGGTTGTCGACGACGCCCGTCAGGTGCGGGTCATCTACACCGCGCGCGGGATGAGGAACCTTGAAGTCATCACAGAGATCGTGGTGGTGGGCAAGTACCGTGTGCTGCCGCAGCAGTATGCCGACTATGCAACCCTCCGCGGTGACGCTTCGGACGGGCTGCCGGGCGTTGCCGGCATCGGGGAGAAGACCGCGGCTTCGCTGCTCAAACAGTATGGGACGCTGGAGCGGCTCCTCGAAGCGGCGGCAGATCCGGGAAGCGGACTCTCCGCATCCGTGGGATCCAAGCTTGCTGCGGCCGAGGCATACCTCCGGGTCGCGCCCACCGTGGTGAGGCTGGTCCGCGACCTTGAGCTGCCCACCCTGGAGGAATCCGGCGCGCAGCTGCGTGCCGTGGCCGGCGAGCCTCGGGCAGAACTGCAACGTCTCGCGACGGAGTGGAACCTGGGCGGATCAGTAGCACGGCTCCTCGAGGCGCTCGACCGGCACGGCTGAMPDRLMLLDTASLYFRAFYGVPDTIRRSDGTPVNAVRGLLDMIARLTTDYGPTHLIACWDDDWRPQWRVDLLPTYKSHRVAEVMVGAADVEVVPDALEAQLPMIRRVLDLAGIAVVGAAEHEADDVVGTYASHAALPVDVVTGDRDLFQVVDDARQVRVIYTARGMRNLEVITEIVVVGKYRVLPQQYADYATLRGDASDGLPGVAGIGEKTAASLLKQYGTLERLLEAAADPGSGLSASVGSKLAAAEAYLRVAPTVVRLVRDLELPTLEESGAQLRAVAGEPRAELQRLATEWNLGGSVARLLEALDRHGNANANANANA
D1-29_024622157hypothetical proteinATGGCCGGATGGAATGCAGACAACGCCGCAGGATCCACCGGCCAGGGCGCGGTAACTCTCGTCGCAGGATCGTCCTTCTGCATCTCCCTTCCTAACGGTGACATTTTCCCGCACCACCCGCACGGCGTTTTCTACCGGGACACCAGGATCCTGTCGCGCTGGGCGCTCACGGTGAACGGTCAGCCGCTGGAGCCGCTGGGCGCGTGGACCCCGTCCCCGTACCAGGGCACCTATATCGGGAGGGCAGCCCGCTCCGACGGCCGGGCCGACAGCCCCCTGACCGTCGAGCGGAAGCGTGAGCTGGGTGCCGGCATCGTGGAGGACATCACCGTCAGCAACTATTCCCTCCAGCCTGCGGCCTGCGAGATTGCGCTGTCCCTGGACGCGGACTTCGCAGATCTGTTCGAGGTCAAGGACGGCCGGTTCCACCGCGTCTGGGAACAAAGCAGGCGCTTTAAGTCCGGTTCGGTGACGATCGAAGCGGCCTGGCAGGAGGCACGCAAAGGCATCGTTGTCCGCATGCGCGATGCCGAAGCAAGCGCTGAAGGCTTCGTGGTGGGGATGACTATCCCGCCGCATGGAAAGTGGACCGTGCGGGCCACCGTTCTGCCGCTGACCGCCGAAACTGAAGTGGATGCCGGCCTGCCGACCGTTTCCCTCTCTGCCGCCATGATCTCGGCGCAGGAGCGGCTTCAGCGGACTTGGGAGGCACGAATCCCGCTTCCCCGAGTGGGCAATCCGTCCATCGAGCGGAGCCTCCTGCGCAGCCATGACGACATCGGCGCACTCCGCATCGTTGACCCCGACCATCCGGACAGGATGGTGGTGGCGGCAGGAGCCCCGTGGTTTATGGCGCTGTTCGGGCGGGACTCGCTGTTGTCATCCTTTATGGTCCTGCCGGTCGACGCAACGCTGGCCCTGGGAACGCTGCAAACCCTTGCGGACCGCCAAGGTACCAAAGTGGATCCCCTGACCGAAGAGCAACCGGGACGGATTCTGCACGAGGTGCGGCTCGACGTCGGGACCGGCCTTGCGCTGGGCGGCAGATCCGCCTATTACGGCACTGCCGACGCCACTCCCCTTTTCGTGACCCTCCTTGGCGAAGCGAGCCACTGGGGGCTTGCCGCCGGGGACATCGCCGCCCTGGTGCCCCATGCCGACCGCGCCCTGGACTGGGTCCGGGACTACGGCGACCGTGACGGCGATGGGTTTGTCGAGTATGAGCGCCTGAACGAGCACGGCCTCATCAACCAGGGCTGGAAGGACTCCTGGGACGGGATCAATTTTGCCGACGGCCGCATTGCCGAGGCGCCCATCGCCCTGTGTGAGGTACAGGGCTACGTCTACAGTGCCTACATCGCCCGGGCGTGGATGGCGTACGACGCCGGTGACCTGGCGCTCGCTGCTGACTTCCGGTACCGGGCCGAGCGGCTGAAAAAGCAGTTCAACGAACAGTTCTGGTTGCCGGAACAGGGGTATTTCGCCATCGCACTGGACGGGGACAAACGGCCGGTTGACGCCTGCGCCTCCAACATGGGCCACTGCCTCTGGTCCGGCATCGTGGATGAGGACAAAGCACCATTGGTTGTCCGCCGGCTGATGTCCCCGGAGATGTTCAGCGGCTGGGGAATCCGGACCCTGGCAACAGACATGGGGGCCTACAACCCGGTCAGTTACCACAACGGATCCGTGTGGCCCCACGACAACGCGCTCATCGTGGCAGGTTTTATGAGGTACGGCTTCGTCAAGGAGGCGCAGCAGCTTTCCACGGCACTGATGGAGGCGGCCGAATACACGGACAACCGGCTTCCCGAACTGTTCTGCGGATTCAGCAGGTTCGAGTGTCCGGAACCCCTGCCCTACCCCACCGCCTGTTCCCCGCAGGCGTGGGCTTCGGCCACGCCGGTGATGATTATGCGCAGCCTCCTGCGCTATGAGGCGCACGTCTCCCGCGGCGCGCTGTGGATGGACCCCGTGCTGCCCAAATCCTGGGGAAGCCTGCACACCACCAACCTCCCCGTGGGCGGGGCACGGGTGACCATCGATGTGTCCGGATCACGCGTAGCAGTAGAGGGATTGCCGGAGGGGATGCTTTTCCGCAGGGGAACAAGGCCACCGCTGGCAGCCCTGCTGGATGCCCCTGACCAACGGGTCTAGMAGWNADNAAGSTGQGAVTLVAGSSFCISLPNGDIFPHHPHGVFYRDTRILSRWALTVNGQPLEPLGAWTPSPYQGTYIGRAARSDGRADSPLTVERKRELGAGIVEDITVSNYSLQPAACEIALSLDADFADLFEVKDGRFHRVWEQSRRFKSGSVTIEAAWQEARKGIVVRMRDAEASAEGFVVGMTIPPHGKWTVRATVLPLTAETEVDAGLPTVSLSAAMISAQERLQRTWEARIPLPRVGNPSIERSLLRSHDDIGALRIVDPDHPDRMVVAAGAPWFMALFGRDSLLSSFMVLPVDATLALGTLQTLADRQGTKVDPLTEEQPGRILHEVRLDVGTGLALGGRSAYYGTADATPLFVTLLGEASHWGLAAGDIAALVPHADRALDWVRDYGDRDGDGFVEYERLNEHGLINQGWKDSWDGINFADGRIAEAPIALCEVQGYVYSAYIARAWMAYDAGDLALAADFRYRAERLKKQFNEQFWLPEQGYFAIALDGDKRPVDACASNMGHCLWSGIVDEDKAPLVVRRLMSPEMFSGWGIRTLATDMGAYNPVSYHNGSVWPHDNALIVAGFMRYGFVKEAQQLSTALMEAAEYTDNRLPELFCGFSRFECPEPLPYPTACSPQAWASATPVMIMRSLLRYEAHVSRGALWMDPVLPKSWGSLHTTNLPVGGARVTIDVSGSRVAVEGLPEGMLFRRGTRPPLAALLDAPDQRVNANANANANA
D1-29_02463426hypothetical proteinATGCCCAAGACCGGCAAGAACAACCACGCCCGCAAGGAAGAGCTTCCCTCGACCCTGCAGCGCTCTGAGCAGAAGGCCCAGGACACGTTCGCCAAAACCTACGATGCCGCCCTTGAGACCTACGACAACGACGAGAGCAGGGCTGCCCGTGCCGCCTACGCCTCGCTGAAGCACAGCTATGAGAAGGTGGGCGACCACTGGGAGCCAAAAGAGAAGCGCGGCCCCTCAGACAAGCGCGCCGAAGGCGGAGTTGATTCATCGGCACCCACTGCCGGCGGCGTGGATGCGAACGCATCCAAGGAACACCTCTACAAGCGTGCGCAGGAACTGCACATCAACGGCCGCTCGAGGATGAATAAGGACGAGCTGGTCCAGGCACTGCAAAAGGCAAATGAAACCGCCACCAGGAAGGCGCGTGGCGGCTAAMPKTGKNNHARKEELPSTLQRSEQKAQDTFAKTYDAALETYDNDESRAARAAYASLKHSYEKVGDHWEPKEKRGPSDKRAEGGVDSSAPTAGGVDANASKEHLYKRAQELHINGRSRMNKDELVQALQKANETATRKARGGNANANANANA
D1-29_02464582hypothetical proteinATGCAATCACTCCCCCGGATCACCGTGGAGGTGCCGGTGCTGAGCGTGGGCTCCGGGCCATCCGACTACGAGCATCTGGGCAGCTACGTCCATGGGTTGCGCAGGCCGCAGGGGCTGCACCTGACCCTGCTGCACATCGGCATCCTGGAGGACTTCTCCCGGGACGTCGCTGATTGGACCAACGGCATCACCAGCCCCGACGCTGTTATCAGCAGCACGGTTGGCTGGTTGCGGTCCCTGCCGGTGCTGGAAGGCTTTTCCGGGCGGGCGGAAAGACTGATCCTGCTCGGAGGGGGAAGTATCTCCGGACTGGAAGTGGATGTGCCGGAACGGGTGCACGATTACCAGGCATCACTCCTGCAGGGGCTGCGCGAACTTCTCGACGGGCTGCTGGTGGACCACGTGGATGACTTCATCCTCAGCTCCAGGGCGCTCGGCTTCAGGCACCCCCGCTGGACTCCGCACGTAGCGGTGGGGCGCCCCAAAACCAAAGATCGCGGGCAGTGGCAGATTCCCCCGCTGACCGTCCATTGCGGCGAATCACGGATCAGGAACGCGCAGTCCCTGCCCGCCGTCGCCTAGMQSLPRITVEVPVLSVGSGPSDYEHLGSYVHGLRRPQGLHLTLLHIGILEDFSRDVADWTNGITSPDAVISSTVGWLRSLPVLEGFSGRAERLILLGGGSISGLEVDVPERVHDYQASLLQGLRELLDGLLVDHVDDFILSSRALGFRHPRWTPHVAVGRPKTKDRGQWQIPPLTVHCGESRIRNAQSLPAVANANANANANA
D1-29_02465660rspR_3COG1802HTH-type transcriptional repressor RspRATGACGATTATTGATGAGGCCACGCGGACCGGCCTTTCTGCGTCCGAGCTTGTCAGCGTACTCCGCCAGGCGATCATCACCGGTGAACTGGTACCCAAGCAGCGGCTTGTCGAAGCCGATCTTGCCGCCGAGTACGGTGCCAGCCGCGGAAACATCCGCGTCGCGCTGTCGGAACTGAGCGTTGAGGGCCTGGTGGAGCGTGTGCAGAACCGCGGGGCCAGGGTCCGGGCAGTCTCGGTGGAGGAAGCCGTTGAGATCACCGAAGTCCGCGGCGCCCTGGAAGCGCTGTGCGCGCGGAAAGCCGCCCAGCGAATTTCCGATCCTGAGTCCGAGGAGTTGCGGGAGCTTGCCAGGCAGATGGAAGACGCTGTGGCCCGGGGTGACCGGGAATCGTACTCCGACTGCAACCAGCGGCTTCACGCCAAGATCATTGCCATGAGCGGCCAGGAGACCGCCGCCACAACAATTCAGCGGCTGCGCGGCCAGGCAGTGCGGTTTCAGTTCCGGCTTGCGCGGCAGCCGGGGCGGCCGGCTATTTCCCTTCCACAGCACCTGGCCATCATTGATGCTGTTTGCCGGCACGATTCCGAAGGGGCGGCCGAGGCGATGAGGCTGCATCTGGAAAGCGTGGCAGACGCCATCCGTGGGCCCCAGGGCTGAMTIIDEATRTGLSASELVSVLRQAIITGELVPKQRLVEADLAAEYGASRGNIRVALSELSVEGLVERVQNRGARVRAVSVEEAVEITEVRGALEALCARKAAQRISDPESEELRELARQMEDAVARGDRESYSDCNQRLHAKIIAMSGQETAATTIQRLRGQAVRFQFRLARQPGRPAISLPQHLAIIDAVCRHDSEGAAEAMRLHLESVADAIRGPQGNANANANANA
D1-29_024661377garBGlutathione amide reductaseATGGACTACACGTACGATGTTCTGGTCATCGGCGGCGGGCCCGCTGGAATGGCAGCTGCGGAACGGGCGGCCGAACTGGGCGCCAGGACAGCGGTGGTGGAGAGTGCGGCGCTCGGCGGGACGTGCCTGAACTCAGGCTGCGTTCCCACGCGTGTGCTGGCCAAGACGGCAAGGCTGTACCGCGAGGTGAGGACAGCGTTTGACTACGGGATCGTGGTCCAGGAACCGGCCGTGGACTGGGAAAGGACAGTTGCCCGCGTCCGCGAGACTGTGCAGCGCGTGCTGGCGGCAAAGCAGTACGACGCCATGATGGAACGCCTTGGCATCCGCCTCATCTCAGGACGGGCCCTCTTTACCGACGACCACACCGTCAGCGTTGATGGACAGGAATTCACTGCGGCCTCCATCATTCTCTGTGTTGGCGGAGCCGCACGGCGGCTCCCGATCCCTGGAGCCGAGCACGCCATCCTTCCCGACGAAGTGCTGACCCTCAAAGAACTCCCCGGGAAGCTGGCCATCATTGGGGGCGGCCACACCGGTGCGCAGCTGGCCACCATCTTCAACGCGCTGGGATCCGAGGTGCTGCTCCTGGACGTGGCGCCCCGCCTGCTGCTGACCGAGGACCATGACGTTGCCGCCTATGTAGGGCAAAGCTTCGCCACCAAGGGAATCAGGCTGGAAACCGGAATTTCCGGCATCGAAGAGATCGCCAGGAACCATGATGGGGATCTCGAAATCTCCTGGACCAAGAACGGCGGGCGCTCCGCCGTCGATGTTGACACCGTGGTGATGGCCGCCGGGTGGCCGGCCAACATCCCGGGGCTGGGCCTGGAGGCCGCGGGGGTGGCGACGTCCGGCTCGTTCATTCCAGTGGACGGCTACCTGCGTACCAACGTGCCGCACATTTTTGTCGCCGGAGACGCGAACGGTACCAGCATGCTGGTGCAGGCCGCGGTGTTTGAAGGCGAAACGGCGGCAGGCAACGCGGTCCTGGGCGCCCACCGGACCACACCCCACCACCTGCTGCCGGAAGGCGGTTTCACTGACCCCGACTACGCCGGAGTGGGGCTCACCGAGGAACGGGCGCGGGAATGCGACCCGGAATGCCTCTCGGTGACCGTCCCCTACGGCACGGTAGAGCGTCCCATCATCGATGACCGGGAAGCGGGCTTCCTCAAACTTGTCACTGACCGGCACCAGGAACTGATCCTGGGCGCCCATGCAGTGGGGGAAAGCGCCGTCGAGGTGGTGCAGGCCGTGGCCTCAGCCATGGCGGCAGGTACAGACCTCGCCACCTTGGCAAGGGTCAAGTTCGCCTATCCAACGTACAGTGCCATCATTGGACAGGCCGCCCGCGCCGCAACGCGCACTGCCTGAMDYTYDVLVIGGGPAGMAAAERAAELGARTAVVESAALGGTCLNSGCVPTRVLAKTARLYREVRTAFDYGIVVQEPAVDWERTVARVRETVQRVLAAKQYDAMMERLGIRLISGRALFTDDHTVSVDGQEFTAASIILCVGGAARRLPIPGAEHAILPDEVLTLKELPGKLAIIGGGHTGAQLATIFNALGSEVLLLDVAPRLLLTEDHDVAAYVGQSFATKGIRLETGISGIEEIARNHDGDLEISWTKNGGRSAVDVDTVVMAAGWPANIPGLGLEAAGVATSGSFIPVDGYLRTNVPHIFVAGDANGTSMLVQAAVFEGETAAGNAVLGAHRTTPHHLLPEGGFTDPDYAGVGLTEERARECDPECLSVTVPYGTVERPIIDDREAGFLKLVTDRHQELILGAHAVGESAVEVVQAVASAMAAGTDLATLARVKFAYPTYSAIIGQAARAATRTANANANANANA
D1-29_024671845ggtCOG0405Glutathione hydrolase proenzymeATGCCACATGTGAGACGACGACTGGCTGCCGTAACGGCAGTCCTGGCCTTGAGCACGACGGCGGGCGGTGCTATCAGCCCCGCCTTCGCCGATCCCCGCGAAACTGAAAAGACGGCCACTGCCACCGGATACGGCGGAGCCGTAAGCACGGTGGATCCGGAGGCTTCCGCGGCCGCAATCGAAGTCCTGCGCAAGGGCGGCAACGCGGCGGACGCTGCCGTCGCAGCGGCAGCGACCCTTGGCGTGACCGAGCCCTACAGCGCCGGGATCGGCGGTGGCGGCTACTTCGTCTTCTACGATGCCAAAACCGGCAAGGTGAGCACCATCGACGGGCGCGAAACGGCACCCGCAGCAATGCCCCAGAATGCGTTCATCGACCCGGCCACCATTACCCCAGACAAGCCCGCAGGCGCGCCGTACACTTTTGCGCAGCTCGTGTCGAGCGGCGTCTCCGTTGGCGTCCCCGGCACACCCGCTACCTGGGAGCGGGCGCTGGAGCGTTGGGGAACCTTAAGCCTCGGCGATGCCCTGAAGCCGGCCATCAAGGTGGCGAACCGCGGTTTTGTGGTGGACGAAACATTCCGCCAGCAGACCTTGGAGAACAAGGTCCGCTTCGCGGCCTTCACCTCGACAAGCAGCCTTTTCCTCCCGGGCGGCGACGCACCCGCCGTCGGCAGTATCTTCCAGAACCACGACCTTGCCCAGACGTACCGGCTCCTCGCAAAGCAGGGCACGGACGGCTTCTACACGGGCCCTCTTGCAGAGGAGATCGCAACCACGGTCCAGGCGCCGCCGAAATCGCCCGATACCGAACTGCCGGTCCCTGTGGGGCACCTGACGGCGGCTGACCTGGCTGCCTATAAGGCCCTGGACCAAGATCCTACCCATGTGAAGTACCGCGACTATGACGTTTACGGCATGGCGCCCTCCAGCAGCGGCGGAACCACAGTGGGTGAAGCCCTGAACATTTTGGAGCCGTTCAACCTGGCCGAAATGCCAACCTCCGGGGCCCTGCACCACTATCTCGAGGCAAGTGCGCTTGCCTTCGCCGACAGGGCCAAGTACGTGGGCGACCCGGCTTTTGTGAACGTGCCCACCGCTGCGCTGACGGACCCGCTGTTCGGCAAGGAACGCTCCTGCCAGATCAACCCGGCGCAGGCGGCAACCAAGCCGGTACCAGCGGGGGACGTAACCAAGTACGACGGCGCGTGCCCGGGTGCCGTTGCCCCGCTCGCGGATGAAAAGGACACCGAAAACATCTCGACGACGAACCTGACAGTCGCCGATAAATGGGGCAACGTGGTGGAGTACACCCTGACCATTGAGCAGACCGGCGGGTCCGGGATTGTAGTGCCCGGCCGGGGGTTCATCCTCAACAACGAGCTGACCGACTTCTCCACCGTGTACGACCCTGCTGATCCCAACAGGATCGAGGCAGGGAAGCGGCCGCGTTCCTCGATGTCCCCAACCATCATCCTGAAGGAGGGCGAACCGTTCCTTGCGCTTGGCTCGCCCGGCGGATCCACGATTATCACCACCGTCCTGCAGACCATCCTGAACCGGGTGGACCTGGGGATGACCATCTCCGAGGCGCTAGCCGCACCGCGCGCAGCCCAGCGCAATACGGCCAAAATCAGCGCCGAGCAGGAGTTCATCGATACTTATGCGGGCGAACTCGAGCCTCTCGGCCATGTGTTCACCAAAGCAGGTGACTCGTTCACCTCGCTGCCCGAAATCGGAGCTGCCACCGCCATCGAGTTCGGACCCGGCAACCGGATGGTCGCCGCTGCCGAGCCGGAAAGGCGTGGCGGCGGCTCTGCCATGGTGGTCACGCCGGCGCCTTAGMPHVRRRLAAVTAVLALSTTAGGAISPAFADPRETEKTATATGYGGAVSTVDPEASAAAIEVLRKGGNAADAAVAAAATLGVTEPYSAGIGGGGYFVFYDAKTGKVSTIDGRETAPAAMPQNAFIDPATITPDKPAGAPYTFAQLVSSGVSVGVPGTPATWERALERWGTLSLGDALKPAIKVANRGFVVDETFRQQTLENKVRFAAFTSTSSLFLPGGDAPAVGSIFQNHDLAQTYRLLAKQGTDGFYTGPLAEEIATTVQAPPKSPDTELPVPVGHLTAADLAAYKALDQDPTHVKYRDYDVYGMAPSSSGGTTVGEALNILEPFNLAEMPTSGALHHYLEASALAFADRAKYVGDPAFVNVPTAALTDPLFGKERSCQINPAQAATKPVPAGDVTKYDGACPGAVAPLADEKDTENISTTNLTVADKWGNVVEYTLTIEQTGGSGIVVPGRGFILNNELTDFSTVYDPADPNRIEAGKRPRSSMSPTIILKEGEPFLALGSPGGSTIITTVLQTILNRVDLGMTISEALAAPRAAQRNTAKISAEQEFIDTYAGELEPLGHVFTKAGDSFTSLPEIGAATAIEFGPGNRMVAAAEPERRGGGSAMVVTPAPPGPT0002935_739DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
D1-29_024681938COG3387TrehalaseATGAAGGCCGCGAGCGTCAACCCGGCTGCTGAGCCTGCCGGCAGCCGGCCTCCCCGGCGGGTTGAGCGGCGGGTTGAGCGGCAGGGTGAGCGCGTGGCTGAGCGGCAGGCTGAGCGGCGGGCGGAGCGACGGCGCGAACTTCCCATCGCGGACTACGGGCTGCTGGGCGACACGCGGACAGCCGCGCTGGTGTCCGCCGAGGGCGGAGTGGATTGGTTTTGTGCCCCCACATTCGACGGCGAGCCTGTCTTCGGCGCGCTCCTGGGCGGCACCGAAGCCGGGACCTTCCTGATGGGACCGGCCGTGCCTTCCCGGCCCGTCAGCCGCCGTTACCTTCCCGGAACCGCCACGCTGGAAACAGTGTGGGCCTCAGATCAGGGAAGGCTTGTCCTCACCGAAGCCATGGTGGCAGAGGTAGCAGGCCAGTTGCTGCCGACGACAGTGCTGGTTCGGCGCCTGACGGCAGAAGGCGCGCCAGTGGCAGCATCGGTCTGCTTTGACCCCAAGCTCGGTGAACGTCACCGCCGCCCACGCGTCCGCAATGGCCGGAGCCTGGTGTGCGAATGGGGCCCACTGGCCCTTTCCCTCGGCTGCAGCCCCGCACTGGACCTGGAACCGGGCAAGCCGGAACCTGTCACTGTCATCCCCGGCCAACCCGTGACCCTGGTGCTTGCTGTGGCGTACGGCGAACCGCTCATCCACGTTGATCCGGCGGCGGCGTGGGAACTGGTGGAGGCTGACTCCGCCCGCTGGCGGATGTGGACTGAAGAGGTGGACAGGAGGATTCCGTTCCGCGAACCGGTCCTCCGTAGCCTGCTGACCCTGCGGCTTCTCACCTACTCCCCCTCGGGCGCGCCCGTGGCGGCGCCAACCACCTCACTGCCCGAGGACGTGGGCGGTATCCGCAACTGGGACTACAGGTATGCGTGGCCGCGGGACGCCAGCATCGGCGTCGGGTCCTTCCTGGCCGCAGGAAAATCGGCCGAAGCGCTCAACTTCCTCGGGTGGCTCCTGCATGCCAGCAGGCTGGAACGGCCCAGGCTGCCAGCCATCCTCAGCCTGTCCGGCCGGCACGTGCCACGGGAACGCACGCTGCAAGGCTGGCCGGGGTATGCCGGGAGTGCCCCCGTCCGTACCGGCAACGGCGCCGCCAACCAGCACCAGCTTGATGGCTACGGTTGGGTCCTGGATGCCGCCTGGGTGCTGGTGAAGGGTGGACATCCGCTGTTTTCGGAGACGTGGCGGGCCATGCGCGGCTTCACTGATCTGGTAGCTGGACGCTGGCAGGATCCGGACGCGGGAATTTGGGAGATCCGGGGCGATGAAGCGCAGCATGTCCACTCAAAAATCATGGGCTGGCTGACCCTGGACAGGGCGCTGCGCATCGCAGAGACCCACCGCCTCGGTGCCAGGCAAAGACGCCGCTGGCAGGAGGCAAGGGAGTCCCTGTCCGAAGAGATCAAGGCCAAGGGCTTTGACCCCGGGAAAAATTCCTACACACGCACCTACGGGTCCCAGGACCTGGACGCGGCTTTGCTCGTGCTGCCTCTTCTGGGCCTGGACGAACCGGGATCAGCCCGGGTGAGAGGCACGGTGGACGCTATTGGACGTGAACTGTCCGCCGGATATCCACTCCTTTACCGATACCCGCCGGGCCAGGACGGGCTGCCGGGGACAGAGGGCGCCTTCCTGCCCTGTTCCTTCTGGCTGGTCCAGGCCCTCGCCCATACCGGCCGTCATGCCGAAGCCACGGAACTCTTTGAAGCCCTGCTTGGAAAGGCCAACGAGCTGGGCCTCTACAGCGAAGAAATCGATCCGGCCAGCGGCATGTTGCTGGGGAACTTTCCCCAGGCCCTGACGCATGCGGCGCTTGTCCAGGCAGCCCTGGCGCTCCGCGATACCGGGCCCGGGGAAAGTGCCCCTATGCCATCACCCTAAMKAASVNPAAEPAGSRPPRRVERRVERQGERVAERQAERRAERRRELPIADYGLLGDTRTAALVSAEGGVDWFCAPTFDGEPVFGALLGGTEAGTFLMGPAVPSRPVSRRYLPGTATLETVWASDQGRLVLTEAMVAEVAGQLLPTTVLVRRLTAEGAPVAASVCFDPKLGERHRRPRVRNGRSLVCEWGPLALSLGCSPALDLEPGKPEPVTVIPGQPVTLVLAVAYGEPLIHVDPAAAWELVEADSARWRMWTEEVDRRIPFREPVLRSLLTLRLLTYSPSGAPVAAPTTSLPEDVGGIRNWDYRYAWPRDASIGVGSFLAAGKSAEALNFLGWLLHASRLERPRLPAILSLSGRHVPRERTLQGWPGYAGSAPVRTGNGAANQHQLDGYGWVLDAAWVLVKGGHPLFSETWRAMRGFTDLVAGRWQDPDAGIWEIRGDEAQHVHSKIMGWLTLDRALRIAETHRLGARQRRRWQEARESLSEEIKAKGFDPGKNSYTRTYGSQDLDAALLVLPLLGLDEPGSARVRGTVDAIGRELSAGYPLLYRYPPGQDGLPGTEGAFLPCSFWLVQALAHTGRHAEATELFEALLGKANELGLYSEEIDPASGMLLGNFPQALTHAALVQAALALRDTGPGESAPMPSPNANANANANA
D1-29_02469477hypothetical proteinATGGATTGGCAAGGTTGGGCCGTTTTCGGTCTGTTGGCCACCAGTGCCCTGACCGTTGTGATGATTGCCGCGCAAATGGCGGGCTGGACCCGTCTTGATCTGCCGCTGGTCCTGGGTACGGTCCTCACTCCGGACCCGGACAGGGCCCGGTTCGCGGGCTTTTTCATTCACCTGGCCGCCGGCCAGGTATTCGCCTTGGGGTACGCGGCAACGTTCGCCCTTCTGGGACAGGCCACGTGGTGGATCGGGGCGCTGCTCGGGCTCCTTCACGTTGCCGTTGCCCTGACGGTGATCCTGCCCCTTTTGCCCGGCGTCCATCCACGGATGGCATCCACCCGTGCGGGACCGGCCAACAGGGCCGCGCTGGAACCCCCGGGCCTGCTGGGCCTGAACTACGGAATCCAGACGCCAGCCGTGGCCGTCGTGGCCCACGTGATCTACGGCGCCGTCCTGGGACTGCTGCTGGGGGCGTCATGAMDWQGWAVFGLLATSALTVVMIAAQMAGWTRLDLPLVLGTVLTPDPDRARFAGFFIHLAAGQVFALGYAATFALLGQATWWIGALLGLLHVAVALTVILPLLPGVHPRMASTRAGPANRAALEPPGLLGLNYGIQTPAVAVVAHVIYGAVLGLLLGASNANANANANA
D1-29_02470270hypothetical proteinATGGTTCCTGCGCTCGCCGCCCTTGCGGTTGCCCTGCTGGGGGCGGCAGGCGCTGCGGGGCTGGATCAGATGGCAAACTCGAAAACGCAGAACTCTGCCCTGTTCGCCATCCAGGCATCAGCAGACGGCCAGCCATCCCTCCACCGGCTGGTGATGATCGGCCTTGCCGAAGGGTCACTTCCCGGAGGCTTCCCCAACGACGAGGCGCGGGAAGAAAAGTACGACGAGAACTTCCTGGAGACGCTGCACCTGCCCACGGCGCCTGCCTGAMVPALAALAVALLGAAGAAGLDQMANSKTQNSALFAIQASADGQPSLHRLVMIGLAEGSLPGGFPNDEAREEKYDENFLETLHLPTAPANANANANANA
D1-29_024711548ddpA_2COG0747putative D,D-dipeptide-binding periplasmic protein DdpATTGCGTGTACTCCATTGGTCCAAAGCAGCCCTGGGCCTGGCAGCCCTGCTTGCCCTCAGCGGCTGTGGAATGAGTGGCCAGGGCAGCCAGGCCGCCAGTTCTGTGGATCTGAATCAGCGGATTGTGGTGAACAACTTCCGGGCGCCGGTGGCGAACTGGGCACCGGAGTCCGATGCTGCCTATATCCTGTCGCTTTCAGGCTGCCTGGAGACCCTGACAAAGTACGATCACGAGCAAGGCAAGGTGGTTCCTTTCCTGGCCACCGAATGGAAGCAGGCCTCACCGCTGGAATGGGATTTCACCATCCGCAGCGGAGTGAAGTTCCAGGACGGCACGGACCTCACGGCCGAGGCCGTGGTTGCGTCGCTTCAGCATGTCCTTAACGCCCAGGTGCCGGCGAGGGCTTTCAACAAGACCACGGTCAGCGCAGTCACGGCGACCGACGCCAGCACAGTCCGCATCACCACCGCCACCGAAAGCCCGCTGGTGCCGTACCGGCTGGCCAGCGTCAACACCGGAATCCTCGCCCCGGCAGCCTACAAAGACGCTGTGGTCAACCCCTTTGGCCACTGCACCGGTCCCTTCACCCCCGTGTCGGAAAAACCCAAGCAGTCACTGACCTTGGACCGCAACGAAAACTACTGGGGAGGCAAAGTCCAGCTCGCCGGTGCCGAGGTCCGGTTCGTCACGAACGGGGCAACCCGTGCGGCCCAGGTCCAGACAGGCGAGGCCGACATTTCCCTCTCCATCCCGGTCTCGAGCCTCTCCGCGCTGGAGTCTGCCCCCAACGTCACCGTACTCAAGGCAGACTCTCCGCGGACCGCAACCCTCTACCTGAACAACGGCAGGGAGCCGCTGAACAACGCCGATTTCCGGAAGGCGCTCCGGTCAGCGCTTGACCTCGATGCACTGGCAGCCAGCGTTTACGAGGGCGCGGCGCTTCCGGCGTCGGGGCCCTTCGCTCCGTCAGAACCCTGGGCGTCCGGAAAAGCCGAGTCACCCAAGCAGAACCTTGATGAAGCCAAAAAACTGCTCGCCTCAGCCGGATACACGGCGGGCAGGCCGCTGGAAATCATCGCCATCGTGGAGCGTGCCGAGTTCGCAGACGTCGCTGCCGTGATCCAGGAGAACCTGAAGAACATTGGCGTCCCGCTGACCATCCAGACCAAGGAGTACGCGGCGGCCGAACCGGACGTGCTCGCCGGCAACTACGACATGCTGCTGAGCCAACGGAACCGCCTGATCGACATCGCTGATCCCATCGGCTTCCTCACGGCGGACTACACCTGCAAGGGATCGTACAACCTCAGCCACTTCTGCGACGAGAAGTACGACAATTTCATCCGCGAGGCCGCCCAGACCCAAAGCACGGAGGACCGGTACAGGCTCTATGAGCAGGCCGGAAACATTCTTGAATCCGAGGCCGTCAACATCTGGCTCGTCAACGAACAGGCAACCGACGCCATTGGCAGCAAGGTCCAGTCCTACGTCCAGGATCCGCTCTCACGCTATGTCCTGACCGCCCAGACCGCGAAGACCGGCTCCTAGMRVLHWSKAALGLAALLALSGCGMSGQGSQAASSVDLNQRIVVNNFRAPVANWAPESDAAYILSLSGCLETLTKYDHEQGKVVPFLATEWKQASPLEWDFTIRSGVKFQDGTDLTAEAVVASLQHVLNAQVPARAFNKTTVSAVTATDASTVRITTATESPLVPYRLASVNTGILAPAAYKDAVVNPFGHCTGPFTPVSEKPKQSLTLDRNENYWGGKVQLAGAEVRFVTNGATRAAQVQTGEADISLSIPVSSLSALESAPNVTVLKADSPRTATLYLNNGREPLNNADFRKALRSALDLDALAASVYEGAALPASGPFAPSEPWASGKAESPKQNLDEAKKLLASAGYTAGRPLEIIAIVERAEFADVAAVIQENLKNIGVPLTIQTKEYAAAEPDVLAGNYDMLLSQRNRLIDIADPIGFLTADYTCKGSYNLSHFCDEKYDNFIREAAQTQSTEDRYRLYEQAGNILESEAVNIWLVNEQATDAIGSKVQSYVQDPLSRYVLTAQTAKTGSPGPT0004430_13466DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_02472942gsiC_5COG0601Glutathione transport system permease protein GsiCATGATTGCCTTTCTGTCCAGAAGAACGGCGACCCTGACGGTCGCCGTTCTTCTGTCGTCCTTCGCAGTGTTCCTGATTCCCTATCTGACTCCTGGCGATGCTGTCCGCAAGATCATCCGCTCCCGGGTAGCCGGAGACGTGGTGGACGAAGCAACAGTTCAGGCCCTCAGCAGGAGCCTTGGCCTTGATGACCCGCTTCCGGTCCAGTACTTTCGGTGGCTGGGCTCATTCATCAGCGGCGATATGGGCCTCTCCCATGTGAGCCGGACCCCGGTGGCCGACCAGGTCATGCCGGCCCTCGCCGTCACTGTCAGCCTGGTTGTCCTGGCCCTTGCTACGGCCACCCTGATTGCCCTCCCATTGGGAATCGCGTCGGCACTCCGGCAAGGCGGCCGGACCGACAGGCTAATCACCACTGTCACGCAATCTTTTATAGCCATGCCGGAATACTGGCTGGCCCCGCTTCTGGTGCTGGTCTTCGCCCTGAAGCTGTCCCTGCTGCCGTCAGCAGGCTGGGCCAACGGCTGGTCGGCGGTCCTGCCCGCAGCCACCCTGGCCCTTCGCCCCATCAGTTACTTCACGGCAGCCGTCCGGTCGGGGATGATCGACGCACTGGAAGCCGATCACGTTCCGGCCGCCCGGGCCCGGGGGCTCAGCCAGTCCCAGGCTGTGCTCAGGCATGTGGTGCCAAACGGGCTTGTCCCCTTGGTGACGCTCGTCGCGGTCTGGTTTGCCGGCCTGTTGGGCGGTTCCGTCATTGTGGAGGTGATCTTTGCCGTTCCGGGGATGGGCCGGCTTCTCTACGACGCCGTGGTCAACGGTGACATACCCCTTGCCCAGGGAGGCGTTGTGGTGGTTGTCGCCCTCGCGGTGGGCATCACCACCCTGGCGGACTTTGTCCATCGTTTCCTGAGCCCGAAAGTAGGAGGCAAGTTTGCGTAGMIAFLSRRTATLTVAVLLSSFAVFLIPYLTPGDAVRKIIRSRVAGDVVDEATVQALSRSLGLDDPLPVQYFRWLGSFISGDMGLSHVSRTPVADQVMPALAVTVSLVVLALATATLIALPLGIASALRQGGRTDRLITTVTQSFIAMPEYWLAPLLVLVFALKLSLLPSAGWANGWSAVLPAATLALRPISYFTAAVRSGMIDALEADHVPAARARGLSQSQAVLRHVVPNGLVPLVTLVAVWFAGLLGGSVIVEVIFAVPGMGRLLYDAVVNGDIPLAQGGVVVVVALAVGITTLADFVHRFLSPKVGGKFAPGPT0004445_12354DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_02473831gsiD_1COG1173Glutathione transport system permease protein GsiDTTGCGTAGCTGGACACCTGTGGACAGGACCGCCGTGGTCATCCTGGGCTTTCTGGTGCTGGCTGTCGCCGCGGCCCCGTGGCTGGCTCCTTACCCGCCCGATGAGCAGAATCTCGTGGCCCGGCTTGCCCAGCCCCAACCGGGACACTGGCTCGGAACGGATCATCTCGGCAGGGATACCCTCAGCCGCCTGCTCGACGGCGGACGCTTTTCAATGCTGATGGCTGCCCTGGCAACACTGCTGACGGCCGTTCTGGGCATAACAGTCGGGGTCATCAGCGCCCGCCGCCGGGGTTGGCTGGACGAGTTCTTTACCCGCACGAATGACGTCCTGCTGGCTCTTCCGGAGATGGTGGTGGCCCTCTTTATCGTTGCTGCGATGGGCACAGGCTTCCAGTCCCTGCTGGTGGCTCTCACCGTAACCGGCTGGACGCCCTTCGCCAGGCTGGCCCGGACACTGGCGTATGACGTGTCCGCCCGGGGGTTCGTGGAGGCCGCGCGCGTTGTGGGATGCACGCCGTCGTTCATCATCTTCCGCCATATCCTCCCGCATCTGGCCGGTCCCATGCTGGGCCTGGCCACGCTGAGGTTCGGCCAGCTGCTTATCAGTGTCGGCGCGTTGTCGTACCTGGGTCTCGGCGTCCAGCCGCCCCAGTCCGACTGGGGTTCCATGCTGGCCGCGGCGCAGCCTTTCGCTGACAGGGCACCGTTGGGGATCATCGCGCCCGGCCTGGCCATCTTCACGGTGGCGCTGTGTGTCACCCTGATCGGGCAGCGCGCCGCGCACATGGCCGCCGCGCCGCTGCTCCTCCCGGTGGGAGCGCGCGGATAAMRSWTPVDRTAVVILGFLVLAVAAAPWLAPYPPDEQNLVARLAQPQPGHWLGTDHLGRDTLSRLLDGGRFSMLMAALATLLTAVLGITVGVISARRRGWLDEFFTRTNDVLLALPEMVVALFIVAAMGTGFQSLLVALTVTGWTPFARLARTLAYDVSARGFVEAARVVGCTPSFIIFRHILPHLAGPMLGLATLRFGQLLISVGALSYLGLGVQPPQSDWGSMLAAAQPFADRAPLGIIAPGLAIFTVALCVTLIGQRAAHMAAAPLLLPVGARGPGPT0004450_13268DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-29_024741659yejFCOG4172putative ABC transporter ATP-binding protein YejFATGCCCGAAGAGTTGGTCATCGAAGGCCTGCATGTCAGCAGCAGCGCCGCGCCCACAGGGAAAAAGGCGCCAGCCGCGGGCAAACGGGCGTCGCCCACGGCGGCTGCGTCCCGGCCCATCCTCGCCGGGGTCAGCCTATCCGTGGCCCCCGGGGAGTTCGTAGCGCTGGTGGGAGGATCAGGGTCAGGAAAAACCATGACGGCCATGTCGGCCCTCCGCCTGCTGCCCCCACAGCTGCGAATCGAGTCCGGTTCCATCCGCCTGGGCCCGCTGGACCTCACCGGCGCATCCGAGGCGGAACTCAACACAGTCCGCGGCGGCCGCCTGGGCATGCTGTTCCAGCAGCCGAAGCGGATGTTCAATCCCAACAAAACCATTGGCAGCCACCTCCGGGAGCCGTTGAAGCTGCACAGTGGTCTGCAGGGCAAGCAGGCCCGGGCCAAGGCGCTTGAACTGTTGGAAGAAGTAGGCTTCGAGGACCCCTCCTGGGGTGTCAGGGCCTACCCACACCAGCTGTCCGGCGGGATGGCACAGCGGGCCATGACTGCCGTTGCCCTGGCCGGCCGGCCAGCCATGCTGCTGGCGGACGAGCCGACGTCGGCCCTGGACAAGGTGCTGGAGAGCCAGATCCTGGACCTGCTGGACCGTGAGCGGGACGAACGTGGACTTGGCATTCTCTACATCACGCACAACCTTGCCTCGGTGGCAGCGTTTGCCGACCGTGTTGTAGTGATGGACGCCGGGCAGATAGTGGAGCAGGGCCCTGCCCGGGAAATCTTCGCCCGTCCCCGCGCCGCTTACACCCAACAGCTGCTGGAGGCTTCCAACCTCCTGCCCGCCACGATCCGCCGCTCCGCATCCGCGAGCCGGAGCGTCCTGAACCTGAACGGTGTCGTGAAGCGTTTCGGTAAGGCGGGCCGGGCGGCCCTGGACAGCGTTTCCCTGGACGTGAAGCGGGGCGAAATCCTGGGCGTCCTGGGCCAGTCAGGGTCAGGAAAGAGCACCCTGGCACGGTCCATTGTGGGGCTTGAGGCCATCGACGGCGGGAAGATCAGCAGGAACCTTGCCCAGGACGGCAAGGGCACGGCGCCTGGCACAGCTGTTCAACTGGTGTTCCAGGAACCGCATGACGCCTTCGATCCGCGCATGACACTGCGCACCAGCCTTGAGGCTCCGCTCCTGCGGCGCACTGACCTCACCCCCGCCGGCAGGTCCGGGCACCTTGATGCCGCCATGGAGGAAGTGGGGCTGGATCCCGCCATTCTGGACAGGCGTCCCGGGCAGTGCTCCGGGGGCCAGCTTCAACGCATCACCATCGCACGGGCCCTGCTGCTGGATCCCCAGGTGCTGATCTGCGACGAGGCAACCTCGGCTTTAGACACGCTGACCCAGCGGACAATCCTGAACCTGCTGAAGCGCCTGCACCGGGACAGGGGCCTGTCGTTGATCCTGATCACCCATGACATGGACGTCATCCGGCATATGTGCGACAGGGTGGCAGTCCTGTTCAAGGGCTGCCTGGTGGAAGTCGCCGGGACGTCCGAGTTCTTCGCCGATCCGAAGCACGAACACAGCAAGGACCTGGTTTCGGCCTCCATTCCCTGCCGGGGCCTGCACCTCAAGAAAATCACTCACGCCCAGGCCGCTGCCTCGGCGTAAMPEELVIEGLHVSSSAAPTGKKAPAAGKRASPTAAASRPILAGVSLSVAPGEFVALVGGSGSGKTMTAMSALRLLPPQLRIESGSIRLGPLDLTGASEAELNTVRGGRLGMLFQQPKRMFNPNKTIGSHLREPLKLHSGLQGKQARAKALELLEEVGFEDPSWGVRAYPHQLSGGMAQRAMTAVALAGRPAMLLADEPTSALDKVLESQILDLLDRERDERGLGILYITHNLASVAAFADRVVVMDAGQIVEQGPAREIFARPRAAYTQQLLEASNLLPATIRRSASASRSVLNLNGVVKRFGKAGRAALDSVSLDVKRGEILGVLGQSGSGKSTLARSIVGLEAIDGGKISRNLAQDGKGTAPGTAVQLVFQEPHDAFDPRMTLRTSLEAPLLRRTDLTPAGRSGHLDAAMEEVGLDPAILDRRPGQCSGGQLQRITIARALLLDPQVLICDEATSALDTLTQRTILNLLKRLHRDRGLSLILITHDMDVIRHMCDRVAVLFKGCLVEVAGTSEFFADPKHEHSKDLVSASIPCRGLHLKKITHAQAAASAPGPT0004435_5834DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_024755292hypothetical proteinATGCGACCCGTACGTTTGCTAACCAGGGCGGCTGCCGCTGGGGCCGTCGCCTCTGCCCTGGTCCTGACCCCGCTGGTCCCGGCACTGGCCGAGACCTCCCCTGATCCCCGGCTTGTGCTCCAATACGCGCTGGACCAGACCACCGGGAGCGTCGCCGTGGACACGTCCGGAAACGGGCGCAACGGGGCGGTCGTCAACGGCGGCACCTGGTCAGGCAGCGAAGGCCTGAAGCTGGACGGGGTCAATGACCACGTACGCCTTCCCGACAACATCATGCAGGGCCTGTCTGCCATCACTGTCAGCACTGAGGTGCTGATCTCGCCTGCCCAGTCCACGCCCTACTTCATCTACGGCATGGGCAACACCACGTCCAACGCCGGCAACGGGTACCTGTTCACTACAGGTGACAGCTACCGCACCTCCATTGCCTCCGGCAACTGGTCCACCGAACAGACACTTTCCCAGAACCAGCCCCTGGCCCGCGGTGTCTGGAAGACCATCACGTACACGCTGTCCAACGGGACAGCGACGCTCTTCCTGGACGGTGTGCAGGTGGGGCAGAAAACGGGCGTCACCATTACGCCCGCGAGCATCGGAAACGGCCTGACCACCGCGAACTACCTCGGCCGCTCGGTCTACACAGCGGACAGGTACCTGTCCGGATCGGTGCGCGATTTCCGGATCTACAACGCGGCCCTGACTCCAGGGGAGGTGGCGGCAACCATCGCGCCCAGCGACCAGCTCCGGAAAGACCGGGACGTCGCCGCCCTGAGCCTGGGTGACCTGTCAGCGGTGACAGCCAACCTGTCCCTGCCGGCAGGCGGCGCCAACGGTTCCACGGTGGCCTGGGCCTCCAGCGACCCATCGGTGGTCACCGCTGCCGGTGTTGTCACCCGCCCGAGTGCTGCGGAGGGCGCCGCAACCGTGACGCTGACGGCGACGGTTACCCGCGGTGAGGCGTCCGGAACCAAAGACTTCACCGTAACCGTGCTCCCCGCTGAATCCGACCAGGAGAAGCTGGCTGCCGCCACCGCTGCCCTGGTGCTTCCCGCCGTCGATGACGTCCGCGGAAACATCACCCTGCCGCCCAGCAGCGGCCAGGCAGCGGTCACGTGGCAGTCTTCAAACCCCATCATCGACCCCACCGGCATTGTTAACCGCCCCGCCGCGGACACCGACGTCGTCCTGACCGCAACCCTGACCGTCGGGGCGGCCAGCGGAACAAAAGAGTTCACGGCCCGGGTAAAGGCAAAGCCCGCAGTTGCCCCCTACGCCGGATACGCGTTCGCGTACTTCACGGGCAACAGCGTTGCCGGTGAGAACATCTATATGGCCGCCAGCCGCGGAAATGATGCCCTCCATTGGGACGAGACCAATGGCGGCAAGCCGATCCTGACTTCAACCATGGGAACCAAGGGCCTGCGGGATCCTTTTGTGATCCGCTCCCCCGAAGGCGACAAGTTCTACATGATCGCCACCGATCTTTCCATCGGCGGCGGCACGTCCTGGGATGCCTCGCAGCGCCAGGGCAGCCAATATCTTGAAGTGTGGGAATCCTATGACCTCAAGAACTGGTCGGAGCAGCGGCACGTCAAGGTGTCCCCGGCCACGGCAGGCAACACCTGGGCGCCGGAGGCCTACTATGACCAGGGCATCGGCGCGTACGTTGTGTTCTGGGCATCGAAAATCTACGCCGAGAATGATCCCGGCCACACCGCCGGCGTCGTCAACAAGATGATGTACTCCACAACGCGCGACTTCCGCACCTTCTCCGAAGCCAAGGTCTGGAATGACCCAGGCACGTCCGTCATTGATTCAACGGTCATCAAGGACAAGGACACGTTCTACCGCTTCACGAAGGACGAAGGCGGAGTTTCCGGCTGCGTGGACATCATGCAGGAAAAGTCCAACAACCTGCTCGCCGTAGACCTTCCCGGCAGCAACCCCAGGAACTGGGCACTCCAGAGTTCCTGCATTGGCAAGAACGCAGGAACGGCGGCGGTGGAGGGTCCTACCGTTTTCAAATCCAACATTGAGGAAAAGTTCTACCTCTTCCTCGATGAGTTCGGCGGGCGCGGCTACATCCCACTGGAGAGCACCAGCCTTCAAACACCCAACTGGAAGCTCTCCACCAACTACGATCTTCCCGCCAGCCCGCGCCACGGAACCGTTCTTCCGGTCACCCAAACCGAACTGGACGCGCTTCGGCAAACGCCCAAGCCCGTCCCGGCGAACGCAAACGGTGAGATTCTCCGCTATACCTTCGATCAGGGAACCGGAACGGACGTGGCCGATTCCTCCGGCAACGGCCTCAACGGAAAGATCGTGGGCGGCGGCAGCTGGCAGCCGGACGGTGCACTCAAGCTCGACGGCGCCACCGGTTACGTCGATGTCCCGGACAACATCCTCTCCGGCGTCCAGGACGTGACGGTGGAAGCGGACGTCCTGGTCAGCGGCGCCCAGAGTGGGGCCTACTTCATCTATGGATTCGGCCACACCGACGCCGCCGGTGTGGGCAACGGGTACATGTTCGCCACGGGAAATTCCGTGTACAAGACGGGAATCGCCTCGGGAAACTGGACTACGGAACAACTCGCCATCAGCACAGCAGCCCTCCCCCGGGATTCCTGGAAGCATCTGGTGTACACGCTCAAGGGCACCGTCGCCACCGTGTACCTTGACGGGAAAAAGGTGGGCGAGAACCTCAACGCCACCCTGAACCCCGGGGACATCGGATTCGGCAGCACGACGTCGAACTACCTGGGCAAGTCCGTCTACAACGCGGACAGGACCCTCAACGGCTCCTTCCGCGAATTCGCCATCTACAACCGGGCACTGTCAGCGGAGGAAGTAATGAAAATTTCAGGCGACCAGGCCGGCCTCGGAGAAGTTTCCCTCGCCGACCCCAGCCTCCTGAAAGTGGCGCCCATCGTGGACGGCACCAGCAGGAAAGTCACTTACCCTGTCAAGCCGGGAACGGATGTGGGCAAGCTGGCTCCCACCTTCAGCCTCTTCCCCGGGGCCGTCTCCAGCCCGGCTTCCGGAGCCGCCGTGGACCTGAGCAGTCCGGTCACCTACAAGGTGACAGGGCCAGATGGTTCGACGGCGGAATGGACCTTTGCCGCGCTCGAAATGAAGAGCCCTGTCCTGCCCGGCTACACCGCCGACCCAAACATTGTGGTGTACGGCGACACGTATTACATCTACCCCACCACCGATGGAATTGCCTCGTGGGGCAGCACAAAATTCTCCGTCTACTCCTCCAAGAACCTTGTGGACTGGACAGATGAAGGCGTGGTGCTGGACCTGGCGAACGTCAGCTGGACGCATTCCAACGCGTGGGCACCCACAGCAACGTCGAAGAATGGAAAGTACTACCTCTACTTCTCTGCGGGTCAAAGCATCGGTGTGGCCGTGGCTGACTCACCCAAGGGGCCGTTTGTGGACTCCGGCGCTCCCCTGGTGGACAAGGCCGCGTACGGTGGCGCCCAACAAATTGATCCGGCTGTTTTTACTGATAACGACGGCGTGTCCTACCTGTTCTGGGGCAACGGCACGGCGCGCTACGTGCCCCTGAACGCGGACATGGTGTCCTACACTGCTGCGAATGTGAAGACCATTTCCGGCCTGAGCCAGTTCAGGGAGGGCCCGTTTGTCCATCAGCGCAACGGCACCTATTACATGACCTACTCGATCGATGACACCCGGAGCGAGAACTATCGCGTCGGTTATGCCACGGCCAGCAGCATCGCCGGCCCGTGGACCTACAAGGGCGTCATTCTCGAGAAGAAGCCCGAACTGGGAATCCTTGGCACCGGCCATAACTCCGTTGTCCAGGTGCCGGGAACGGACGACTGGTACATCGTCTACCACCGTTTTGCCATTCCGGGCGGAGACGGGATGCACAGGGAGACCACCATCGACCGTCTGACCTACGCTCAGGATGGATCCATCAATCGGGTGGTCCCCACCCTTGAAAGCGTCGGGCCCCGGTTCGCGGACACGTCCGCCCCGGTGGTAGCCCTGGCCACTTCCCCTGCAGCACCCAACGGTGCTGACGGCTGGTACCTGGGTCCGGTGACCGTGAGCGCCACTGCCACCGACAATTCGGGCGCAGCCCCCATGGTGGAGGTAGCGGTCGACGGCGGCGCCTGGGTTCCGTACTCGTCCTCCTTCGAGGTGGCATCGGACGGTGCCCACACCATCAGGGCGCGGGCAACCGACGCGACGGGAAACATCTCGGCGGAAGCATCCGATGCCGTGAAGATTGACAGGACGGCACCCCAGGCAGGCGCAGGCCTGGATGAGGACCGGACGCTGACCCTCACCGCCACCGATCCGTACTCCGGTGTTGCTTCGCTGGACTACCGGGTGGGGACGGCCGAATGGGCGACTTACACCTCCCCCGTTCCCGCGGGGCGTACGGCGGCCACGGTGGAGTTCCGGGCCGTCGACAAGGCAGGCAACGCCACCACCGGCACGGTGGATGTGCCCGCTCCGGCCGGCCAATCCATCTCCTTTGGTGACATCACGCCCAAAACCCTTGGCGACTCTGACTTCACCATCAGTGCAGCGGCAACCTCCAACCTGCCCGTCAGCTTCGGTGCCGCGGGCGCGTGTACCCTGCTGGACACCTCGGTTCACCTGACGGGGGCGGGCACGTGCAGCATCACCGCCCGGCAAGAAGGCAGCGCGCGCTTCCTGGCGGCACCTGAGGTGGTTCGTTCATTCGAGGTCAAGGCGCCCGTCCTGGACAGCTTCGACCGGGCCAACGGCGGCGTCGGCAGTGCGTGGAGCGGCGACAACGGACGCCAGGCCTACGTCATCAAGGACAAAGCCCTCAACCCGCTCCTGGGCGGCGTCCTGCTCCATTCCGCGACCTTCGGATCAGACCAGACGGCTTCGCTGACGTTGAAGGCCATCGCGGCCAAGTCGGTCCAGGGCGTGGTTCTCAAGGGGCAGTCCGGCAAGTCCTTCCTGACGGCGGGTGTATCAGCGCTCTACGACGCATCCGCCAGGACCGTCCGGGTCTCCACGCTTGGCGTTGATAAGAACGCGTGGCACTCCTACGGCGACACTGCCGCCTCATTCGAGGCCGGCGACGTCCTGACGGCGAAATACGTGGATGGAACCGTGACGGTCTACCGCAATGCCGACGTCGTGGCTTCCGTTCCGCTGCGGGCAGCGGATGTCCAGTTGTTTGCCGGGAAGTCTGGAAAGACCGGGATCTCGTCGACGCTGGCAACGGGCAGCAGCCTGGACGATTTCCGGGCTGCGGCAATCACCAGGTAGMRPVRLLTRAAAAGAVASALVLTPLVPALAETSPDPRLVLQYALDQTTGSVAVDTSGNGRNGAVVNGGTWSGSEGLKLDGVNDHVRLPDNIMQGLSAITVSTEVLISPAQSTPYFIYGMGNTTSNAGNGYLFTTGDSYRTSIASGNWSTEQTLSQNQPLARGVWKTITYTLSNGTATLFLDGVQVGQKTGVTITPASIGNGLTTANYLGRSVYTADRYLSGSVRDFRIYNAALTPGEVAATIAPSDQLRKDRDVAALSLGDLSAVTANLSLPAGGANGSTVAWASSDPSVVTAAGVVTRPSAAEGAATVTLTATVTRGEASGTKDFTVTVLPAESDQEKLAAATAALVLPAVDDVRGNITLPPSSGQAAVTWQSSNPIIDPTGIVNRPAADTDVVLTATLTVGAASGTKEFTARVKAKPAVAPYAGYAFAYFTGNSVAGENIYMAASRGNDALHWDETNGGKPILTSTMGTKGLRDPFVIRSPEGDKFYMIATDLSIGGGTSWDASQRQGSQYLEVWESYDLKNWSEQRHVKVSPATAGNTWAPEAYYDQGIGAYVVFWASKIYAENDPGHTAGVVNKMMYSTTRDFRTFSEAKVWNDPGTSVIDSTVIKDKDTFYRFTKDEGGVSGCVDIMQEKSNNLLAVDLPGSNPRNWALQSSCIGKNAGTAAVEGPTVFKSNIEEKFYLFLDEFGGRGYIPLESTSLQTPNWKLSTNYDLPASPRHGTVLPVTQTELDALRQTPKPVPANANGEILRYTFDQGTGTDVADSSGNGLNGKIVGGGSWQPDGALKLDGATGYVDVPDNILSGVQDVTVEADVLVSGAQSGAYFIYGFGHTDAAGVGNGYMFATGNSVYKTGIASGNWTTEQLAISTAALPRDSWKHLVYTLKGTVATVYLDGKKVGENLNATLNPGDIGFGSTTSNYLGKSVYNADRTLNGSFREFAIYNRALSAEEVMKISGDQAGLGEVSLADPSLLKVAPIVDGTSRKVTYPVKPGTDVGKLAPTFSLFPGAVSSPASGAAVDLSSPVTYKVTGPDGSTAEWTFAALEMKSPVLPGYTADPNIVVYGDTYYIYPTTDGIASWGSTKFSVYSSKNLVDWTDEGVVLDLANVSWTHSNAWAPTATSKNGKYYLYFSAGQSIGVAVADSPKGPFVDSGAPLVDKAAYGGAQQIDPAVFTDNDGVSYLFWGNGTARYVPLNADMVSYTAANVKTISGLSQFREGPFVHQRNGTYYMTYSIDDTRSENYRVGYATASSIAGPWTYKGVILEKKPELGILGTGHNSVVQVPGTDDWYIVYHRFAIPGGDGMHRETTIDRLTYAQDGSINRVVPTLESVGPRFADTSAPVVALATSPAAPNGADGWYLGPVTVSATATDNSGAAPMVEVAVDGGAWVPYSSSFEVASDGAHTIRARATDATGNISAEASDAVKIDRTAPQAGAGLDEDRTLTLTATDPYSGVASLDYRVGTAEWATYTSPVPAGRTAATVEFRAVDKAGNATTGTVDVPAPAGQSISFGDITPKTLGDSDFTISAAATSNLPVSFGAAGACTLLDTSVHLTGAGTCSITARQEGSARFLAAPEVVRSFEVKAPVLDSFDRANGGVGSAWSGDNGRQAYVIKDKALNPLLGGVLLHSATFGSDQTASLTLKAIAAKSVQGVVLKGQSGKSFLTAGVSALYDASARTVRVSTLGVDKNAWHSYGDTAASFEAGDVLTAKYVDGTVTVYRNADVVASVPLRAADVQLFAGKSGKTGISSTLATGSSLDDFRAAAITRNANANANANA
D1-29_02476474hypothetical proteinATGAACGCTGCGGCGAGAAAACCAGACCGGATCCTCCTCGCCATCCTGGCCGCCATCGCGCTGCTGGTGGTCACCGCACTGGCCGTCGTTTTCTTCCGCGGCGCCCCGCAGGAGCTGGACGAATCGACGCCCGCAGGCGTAGTCCAGCGGTACAGCACAGCCGTCATCACCGGCGACACCGCCACAGCCGATACGTTCCTGACGGAAGAAGCCCGAGGCCGGTGCAACGGATACTTCGGGCCGCCCGAAGCCACCCGGGTGGTCCTGGTCTCCACCAGCGAGCGCGGCGACTCCGCCACCGTAAGAGTCTCCATCGTCCACTCCTCCCCCGGGGGACCCTTTGGGCCTTCCGAATTCGAGATGGAAGAGGCCTTCTCCCTCGTGAAGGACGGTGGCAGGTGGAAGGTGAACCAGGCGCCCTACCAGCTGATGTCCTGCGGGGCGCCTGCCAGGCCAGCAAGTCCAATGCCATGAMNAAARKPDRILLAILAAIALLVVTALAVVFFRGAPQELDESTPAGVVQRYSTAVITGDTATADTFLTEEARGRCNGYFGPPEATRVVLVSTSERGDSATVRVSIVHSSPGGPFGPSEFEMEEAFSLVKDGGRWKVNQAPYQLMSCGAPARPASPMPNANANANANA
D1-29_024771797hypothetical proteinATGAACAAGCCGGCAGCACCTGACGTCACACCCTCCGCTGTCCCGGTGGCAGGCACAGCCCAACAGGTGCTGCGGCGGCTGATCCTGTACATGCTGCTGTTTATCCTGGTGCTCGTGGCGGCCACAGGCCTCGCCGGCCTGTTGGAGCGCCTTTTCAGTTCAGGCTCAGAAATGGCGTCCACCGATGTCACCGGGCTTGCCCGCGCCCTGGCGTTCACCCTGATCGGTGGGCCGATGGCGCTTCTGCTCTGGTGGTTTGTCTGGAAAAGGCTCGACGACGGGGATGAACGCGGCACTGTGGGCTGGGGCCTCTACATTGCTGCCATGTACACGATCGCCCTCATCAGCTTCACCACGACGCTGCTGGGATGGGCCGCGTCCATAGTCGACGGCTCGGAGCCGAGGTGGTATGCGGCGCTGGCCACCGGGCTTGTCTGGGGCGCTGTTTGGGGATGGCACCGGTGGATGTGGCGGCATCCTGCCAGGGGACCGCGAAGCCTTGCGGACGTCCCGTCCGTTGTGGGTGCAGTTTTTGGGCTGGTAGTCGGCGCGGCCGGAGCGATTACCGCGCTGGGCAGGTTGCTGGACGATGCCCTCCGCGGCTTCACCTCACTCACAACTGCGGCGGAGCCGTGGTGGCAGCCTGTGCTCCAGGGCGCGGTGTGGGCCGCGGGCGGAAGTGCCGTGTGGTGGTGGCACTGGAAACGGGATCCCGGCAGCCGCCTCAAGTCCGGCCTGGCCGACGTCGCGGTTGTCGCCGTGGGTGTCTTCGCCGCCGCCATCACGGCGCTGGGCGGGGCCGGCGTCGCGCTGTTCGCCCTCCTGAGGCTGGCGTTCGACAGGACGGACCCTGACACGGAAATGCTCGCACCCCTCGGTCCGGCGCTGGCTGCCGCCGCCATCGGCGCCCTGGTCTGGCGGTACCACCGCACTCTCGCCGCTGACCGCGCCGCCGGAACCGTCCGTGCCAGCAGGCTGGTCACATCAGGCGTCGCCCTGGCGGCCGCTGCTTCGGGCATTGGGGTGGTGGTCAACGCCGCCCTGGCGCTGGCGGTCTCCCCGCTGGCAGGAGACGGCTCCCGATCTTTGCTGCTGGGGGGCCTCAGCTCCCTGATGGTGGGCGGCCCGGTCTGGTGGCTCGCGTGGAAGCCGGCACAACAACCAGAACCGGGCGCCGCCCATCCTCCCGGCAGGCGCGTGTACCTTGTGGCGTTCTTTGGAATCAGCGCAGTGGTGGCGCTCGTTGCCCTTTTGGTCATTGGATACCGGCTCTTCGAATTTTTCCTCGGCGACGTGTCTGGGGGCAGCGTCGTAGACCGGGTCCGGGGACCACTGGGCCTGCTGGTGGCCGCCGGCCTCGTGGCGGGCTATCACTATTCCCTCTGGAGGCATGAACACGCGCTGCCGGAGGCAGGGGCAGAGGCAGAGCCAGAGGTAGCGGCGGACGCGGCTGACCTGACGGAGAAGAAGCCAACCATCGGCCACGTCACGCTCGTCACCGGGACTCATCCCGAAGCCATATCCAGTGCCATTGCAGCAGCCACCGGCGCGCAGGTCACCGTCTGGAGACGGGCCGACGGCGTCAGTCACCAGCCAGCCAGTCCCCAGCCGCCCGCACCTTCAGGCCAGGGGGAGTCCACTGAGCAGGAAGCCCTCGCTGCGCGCGTGACCCAAGCACTCGAAGGCACCGTCGCCCGCAGTGTCCTTCTGGTCATTGGTCATGACACCGGAGCGGATGCACAGATACAGGTCATTCCCCTGGCCACTGATGGCCAGAAGGCGGGGCACCAGACTTGAMNKPAAPDVTPSAVPVAGTAQQVLRRLILYMLLFILVLVAATGLAGLLERLFSSGSEMASTDVTGLARALAFTLIGGPMALLLWWFVWKRLDDGDERGTVGWGLYIAAMYTIALISFTTTLLGWAASIVDGSEPRWYAALATGLVWGAVWGWHRWMWRHPARGPRSLADVPSVVGAVFGLVVGAAGAITALGRLLDDALRGFTSLTTAAEPWWQPVLQGAVWAAGGSAVWWWHWKRDPGSRLKSGLADVAVVAVGVFAAAITALGGAGVALFALLRLAFDRTDPDTEMLAPLGPALAAAAIGALVWRYHRTLAADRAAGTVRASRLVTSGVALAAAASGIGVVVNAALALAVSPLAGDGSRSLLLGGLSSLMVGGPVWWLAWKPAQQPEPGAAHPPGRRVYLVAFFGISAVVALVALLVIGYRLFEFFLGDVSGGSVVDRVRGPLGLLVAAGLVAGYHYSLWRHEHALPEAGAEAEPEVAADAADLTEKKPTIGHVTLVTGTHPEAISSAIAAATGAQVTVWRRADGVSHQPASPQPPAPSGQGESTEQEALAARVTQALEGTVARSVLLVIGHDTGADAQIQVIPLATDGQKAGHQTNANANANANA
D1-29_02478969aes_2Acetyl esteraseATGATTCCAACCCCCAAAGCCCCACCCTTCGATGTTGAGCTCGGTTCAACCCTCGCTGCGTTGGGAGATCTGCTCAATCCGACCCTGACGCCGGACATGATTTCCGGTATGCGCGGCGGTCCCTTGACCGCTTCCATCGAAGATCAACTGGCCGGCCATGCGGTGCGTCACGAGGAGCGGATTATCCCCGGCCCTGAAGGTGCTCCGGACATCGTCGTGTCGATCTTCACCAAAATCGGCCACGTGCCCGGTGGCCCCGGGATCTATCACACCCACGGCGGCGGGATGATCATCGGCGACCGCTTCCTCGGCGCTGACATGCTCATCGAGTGGGTCGAGCTGATGGACGCCGTCGCCGTGTCGGTTGAGTACCGCCTGGCGCCGGAAAACCCGGACCCGGCCCCCGTAGAGGATTGCTATGCGGGCCTCGTGTGGACAGCTGCGCATGCGGAAGAGCTTGGATTTGACCCGGAGCGGCTCATCATCGCCGGCGCGAGTGCCGGCGGCGGCCTGGCCGCAGGCGTGTCCCTGATGGCAAGGGACAGGGGTGGTCCGGCGCTCGCGGGCCAGGTCCTGATCTGCCCCATGCTGGATGACCGCAACGAAACAGTCTCCAGCTACCAGATTGACGGCTTCGGACTGTGGGATCGCACCAGCAACGACACCGGCTGGGATGCCTTGCTGGGTGACCGGCGCAAGACGCCCGAGGTGTCCATCTACGCCGCACCGGCACGTGCAACTGACCTTTCACGGCTGCCTCCCGCATTCATTGATGTGGCCACCGCAGAAGTTTTCCGCGATGAAGTGGTGGCCTACGCTTCCGGTATCTGGGCAGTAGGTGGCGTGGCGGAACTGCATGTGTGGGCCGGCGGATTCCACGGCTTCGACATGATCGTGCCCCAGGCCGCATTATCGATCCAGGCCCGCGATGTGCGGACGAAGTGGGTCCGCCGCATCCTGGGGGCCTGAMIPTPKAPPFDVELGSTLAALGDLLNPTLTPDMISGMRGGPLTASIEDQLAGHAVRHEERIIPGPEGAPDIVVSIFTKIGHVPGGPGIYHTHGGGMIIGDRFLGADMLIEWVELMDAVAVSVEYRLAPENPDPAPVEDCYAGLVWTAAHAEELGFDPERLIIAGASAGGGLAAGVSLMARDRGGPALAGQVLICPMLDDRNETVSSYQIDGFGLWDRTSNDTGWDALLGDRRKTPEVSIYAAPARATDLSRLPPAFIDVATAEVFRDEVVAYASGIWAVGGVAELHVWAGGFHGFDMIVPQAALSIQARDVRTKWVRRILGANANANANANA
D1-29_024791077hypothetical proteinATGCAGGGATTGGTATGGCGCCTCAAAGCGTTGGATCCTGAGGCGTCCGAAAGCCTCAAGGTCATCGCGTACTTCGACGCGCTCGTTGACGGCCATGCGAGCGCCCAGGTCCTGCTGAGCGGTGCTGCGGTCCTGAGCGGCTGTCCGGCAGGATATGCCAGTGACGGCAGCACCGTCCGGGTTGACGCCTCCGGAACGAAAACCGACGCCGGGGCTCCGGCTCCCGGAGCACCCGACGGCGGCTGGCCTTGGCACGCTTTCGGCGACGGCGGCCGGGTGTGGATCGAGCGTCCAGGCCCGGCTTTTGCCAACGACGAAATGATCCTTGAGCGGGTGGCGATCGCCCTGGGGATCTCCCTGGACCGCACCAGCCCGGTGGCCGCTTCCCGCCGGGCGGTCGAAACGCTCCTGGATGCCGCCGCGTCCCTCGACAGGCGGATGGATGCCGCCGCCATGCTCCACCTTGACCGTCACACGTCCTATCGCGTGGTTGCTGTTCCGGCGTCCACGGAGCTCGCAGGGCCAAGGACCGTCGTCTATACCGCCGTGGGTCCTGTGCGGGCAGCGGTACTCCGGTTCTCCGCAACAGAGTTGGCCGAAGGCCGGAATTCTGCCCCGAATACGGCCCGGAACACGCCGGACGCGTCCCCGGCGGGGATCGGCCTGGCTATGACCCCGGAGTCGCTCCACCGCTCGTGGGCAACTGCACTCCTGGCCCTCCGGCTGACGAGCCCGCGCCACCCGCGGCAGCTTGCAGACGATTTGGGGAGCCTGCTCGTCTTTGCGGAGGCGGCGGATGCCTCTTCGTATGAAACGCCTGACCTCACGGCGCTCAAACGCCTCGTGAAGCAACAGCCCAAGGCCCTCGGGTTACTGGAATCCGTTGCCTGCGCGAACAGCCTGCGCGCCGTCGCCGACGAGGCAGGCCTCCACCACTCCAGCGTCCAGGCCCGGGCCGCCGACTTTTCGGCGGAACTCAATTTTGACGTCCGCACAGCGCTGGGCCGGGTACGCCTGTCGCTGGCCCTCGCGCTGTACAGGCTCAACACGGCCACGTTCGGCGGGGACGGGCCGTAAMQGLVWRLKALDPEASESLKVIAYFDALVDGHASAQVLLSGAAVLSGCPAGYASDGSTVRVDASGTKTDAGAPAPGAPDGGWPWHAFGDGGRVWIERPGPAFANDEMILERVAIALGISLDRTSPVAASRRAVETLLDAAASLDRRMDAAAMLHLDRHTSYRVVAVPASTELAGPRTVVYTAVGPVRAAVLRFSATELAEGRNSAPNTARNTPDASPAGIGLAMTPESLHRSWATALLALRLTSPRHPRQLADDLGSLLVFAEAADASSYETPDLTALKRLVKQQPKALGLLESVACANSLRAVADEAGLHHSSVQARAADFSAELNFDVRTALGRVRLSLALALYRLNTATFGGDGPNANANANANA
D1-29_02480261hypothetical proteinATGATTAACCTGCAGCAGGATTCCGAAGGCTTTATCCGCATGAACAGGCACTTTCCGGGCAGCGCCGCCATCACCGTCGCCTTCACTGACGGGACACAGGAAGTATTGACCGGGCGCCGTCTCAACCAGGCGTACGACGACGCCCTGGCTGCCTACCGCGCCGGGAATCAGCTGGACGCCAAAGGCTTTTCGCGGGGTCCCACAAAGAAGGTAAACCCGGGGATTGAGTTCGTGCCGGTCCAGCCCGGGATGGCGGAGTAGMINLQQDSEGFIRMNRHFPGSAAITVAFTDGTQEVLTGRRLNQAYDDALAAYRAGNQLDAKGFSRGPTKKVNPGIEFVPVQPGMAENANANANANA
D1-29_024812823hrpBCOG1643ATP-dependent RNA helicase HrpBGTGACCTCCTCAAGTACCCCTCCCCGGCGGAACGCCCCGGCTGGTCCGGGCAGCGGATTCTTCCAGCTTTCCCGCATCGGTGAGGGCCTGGCCTTTGCGGAATCGCTGGCGGAGCTTGTGGCGGTGCTGCGGCGGGGCGGGGCAGCGGGAACGGCAGTGGTCCAGGCACCTCCCGGCACGGGGAAAACCACGCTGGTACCGCCGCTGCTCGCTAACCTTGCCGCAGAAACATCTCCTGCTCCTGTGCGGGTGGTGGTCACGCAGCCGCGGCGGGTGGCGGCCCGCGCGGCGGCCAGGCGCCTTGCCTCCCTCGACGGCAGCAGGCTGGGGGACAGGGTGGGATACACCGTCCGGGGCGAACGGCAGGTGAGCCAGGGGACCCTGGTGGAGTTCGTGACACCCGGGATCCTGCTGCGCCGCCTGCTCGGGGATCCGGGCTTGGAAACCACCTCAGCGGTGATCCTCGACGAAGTCCACGAACGCGGCCTGGAAACAGACCTGCTGCTGGGCATGCTCGCCGAGGTCCGCCAGTTACGCGGGGATCTCATGCTGGTGGCGATGTCCGCCACGCTGGATGCGCCCCGGTTCGCGGCGCTGCTGGGCGATGATCAGGACAACGGCGAGGACGACAGCGGGCGGGACAACGGCGAGGACGACGGCGGGCGCCCTGCCCCCGTCGTCGACTGTCCGTCCGCGCTGTACCCCCTGGAAATCGCCTGGTCACCGCCCGCGGCGCCACGGCTGGACAGCCGGGGCGTCACCCGCTCTTTCCTGGACCACGTTGCGGACACTGCCGCGACCTCGTACCTGCGGGCAGCTGTGGCCGACGGCGGCCTCGACGCCCTCGTTTTCGTCCCCGGCGCCTGGGAGGTGTCCTATGTTGCTGCCCGGGTGCGTGACCGGGTTGGCGCCGGCATTGAGGTCCTGGAGCTTCACGGGCAGGCAAGCCCTGCGGACCAGGACCGTGCTGTGTCCGGGCGGGGTCCCGGCGGCCGCCCACGCATCATCGTCTCCACGGATCTCGCGGAATCTTCCCTCACTGTTCCCGGCGTCCGCCTGGTCATCGACTCCGGGCTGACCCGGGAACCGCGGCGCGACGCCGGCCGCGGAATGTCCGGCCTCGTGACGGTTTCCTGCTCGCGGGCATCGGCCGAGCAGCGGGCAGGCCGTGCGGCACGGCAGGGGCCTGGCAAAGTGGTGCGCTGCTATGACCAAAGAACCTACGGTGCTGCCCCTGCCCACGTCACTCCCGAGATCGCCGTGGCGGACCTGACCGGGGCCGCCCTGGTTCTGGCCTGCTGGGGTTCACCCGGCGGGGAGGGCCTGGAGCTTCCTGACAGGCCACCCCGGCAGGCCATGGAGGACGCGGTTGAGGTGTTGCGGGAACTTGGTGCGGTGTGGGCGGACGGCACAGCCACCGACCACGGAAAGATCCTGGCCAGGATCCCTGCGGATCCGAGGCTCGCGCGGGCGCTGCTGGATGGCGCTGCCGTGACAGGACACCGGGCTGCGGCGGAGGCTGTTGCCATGGTCTCAGGTGACCAGCGCGCTCCCGGCGCAGACCTCACCCGGCTTCTGGCCATCCTGCGCGGGGGCAAGGACCCGGCGGCCCGGCGGTGGGCCGAGGAGGTCCGGCGGCTGGAAGCCATCGCACGCCAGGAGCGGGCCGGCGTCGTGCCTTCCATGTCCCCGGGAACGGTCGCTGCAGCGGAAGCTGTTGGCGCCGTCGTCGCCCTGGCGTTTCCGGACCGCGTGGCACGGCGTGTCCCGGGCGGAGGGCAGGAGCGTTACCTGCTGTCATCCGGCACGCGCGCCGGGCTGCCCGCGGGGAGCACTCTCTCCGGGCACGAATGGTTGGCGGTCGCTGAAGTTTCGCGGGCCCAAGGCCGCGACGCCGCCGGGACGGGTGCCGTTATCCGCTCCGCCGCGCCCATCACGGCGGACATAGCCCAGGCGGCGGCTTCCGGCCTGCTCGCTGAATCCGTGGCGGCAACATTCAGCAACGGCCGGATAACCGCCCGGCGCGAACGCAGGCTGGGCGCGATCGGCCTCGCCTCAACGCCGGTGCGCCCTTCCGCGGAAGAAGGACGAATGGCCGTGGCCACTGCGCTGGCAGAAGGAGGCCTGGGAATGATCGGCTGGTCGACGGCGGCGGACGCCCTGCGCCGTCGGCTCGCCCTCCTGCACCGGGAACTCGGAGATCCCTGGCCGGACGTTTCCGAGCCGGCCCTGCTGGCGAAGCTGACCACCTGGCTGGGTCCGGAGCTGGAGGCCCTGGCCGGTGGCGCGTCCGCCGGGGGAATAGACCTCACCGACCCACTCCGGCGGCTGCTGCCGTGGCCCGAGGCCTCACGGCTTGGGGAACTCGCGCCGGAGTGGCTGGAGGTGCCCAGCGGCTCCAGGGTGAAAATCGACTACCCGGACCTGTCGGAGTACGCGGTGACGGAGAATGCAGCGTCGGAGAATGCGGCGTCCGAGTACGCAGAGTCGGAGAATGCAGAGACAGGAAAGGCAACACCGGAACATCCGGTGCGGAACGGTGCGGCGCGGGAACAGGCCGGCAGCCCTGTTGTCGCCGTAAAGCTGCAGGAGTGCTTCGGTTGGGCGGAGACTCCACGGCTGGTGGAGGGGCGAGTGCCTGTGTTGTTCCACCTGCTCTCGCCCGCCAGACGTCCCCTTGCCGTGACCGGCGACCTTGCCTCCTTCTGGTCCGGGCCCTATGCCCAGGTCAGGGCTGAGATGCGGGGCCGCTACCCCAGGCATCCATGGCCTGAGGACCCGTGGTCAGCGCCGGCCACCGCACGGACCAAACGGAAAATGTGAMTSSSTPPRRNAPAGPGSGFFQLSRIGEGLAFAESLAELVAVLRRGGAAGTAVVQAPPGTGKTTLVPPLLANLAAETSPAPVRVVVTQPRRVAARAAARRLASLDGSRLGDRVGYTVRGERQVSQGTLVEFVTPGILLRRLLGDPGLETTSAVILDEVHERGLETDLLLGMLAEVRQLRGDLMLVAMSATLDAPRFAALLGDDQDNGEDDSGRDNGEDDGGRPAPVVDCPSALYPLEIAWSPPAAPRLDSRGVTRSFLDHVADTAATSYLRAAVADGGLDALVFVPGAWEVSYVAARVRDRVGAGIEVLELHGQASPADQDRAVSGRGPGGRPRIIVSTDLAESSLTVPGVRLVIDSGLTREPRRDAGRGMSGLVTVSCSRASAEQRAGRAARQGPGKVVRCYDQRTYGAAPAHVTPEIAVADLTGAALVLACWGSPGGEGLELPDRPPRQAMEDAVEVLRELGAVWADGTATDHGKILARIPADPRLARALLDGAAVTGHRAAAEAVAMVSGDQRAPGADLTRLLAILRGGKDPAARRWAEEVRRLEAIARQERAGVVPSMSPGTVAAAEAVGAVVALAFPDRVARRVPGGGQERYLLSSGTRAGLPAGSTLSGHEWLAVAEVSRAQGRDAAGTGAVIRSAAPITADIAQAAASGLLAESVAATFSNGRITARRERRLGAIGLASTPVRPSAEEGRMAVATALAEGGLGMIGWSTAADALRRRLALLHRELGDPWPDVSEPALLAKLTTWLGPELEALAGGASAGGIDLTDPLRRLLPWPEASRLGELAPEWLEVPSGSRVKIDYPDLSEYAVTENAASENAASEYAESENAETGKATPEHPVRNGAAREQAGSPVVAVKLQECFGWAETPRLVEGRVPVLFHLLSPARRPLAVTGDLASFWSGPYAQVRAEMRGRYPRHPWPEDPWSAPATARTKRKMNANANANANA
D1-29_02482150hypothetical proteinATGTTGCTTTTTACCAGCCTTAACTTCTTGCTCGATGCCCGCCGGAATGACGACAACCCTGCGCATGGGGCCGGAAGCGGCAAGACCGGGTTCCCTCATGGCCAGCTGACGTCCACTGCCTGGGAAGGGTGGTGGCACGACGAAGCCTAGMLLFTSLNFLLDARRNDDNPAHGAGSGKTGFPHGQLTSTAWEGWWHDEANANANANANA
D1-29_024831266hypothetical proteinATGACAAACCCATATCTGAAAGTCATCGCCGGGATCGACACACACGCCGACACCCATTACGTCGCAATCATCGACGAGACCGGCAGACACCTCATGGACAAAGAATTTCCCGCCGTTGGGTCCGGCTACCGGAATATTGTCGAGTTCATTACCGGGTTCGGCCCGGTGGTTGCCGCCGGAGTGGAAGGCACCGGCAGTTACGGCGCCGAACTCGCCCGTGTCCTGACCAGGGAGGGCTTCCGGGTTCTGGAAGTCATGCGCCCGAACCGGCAGGGACGCCGGCTGCGGGGCAAATCGGACGCTCTGGACGCCTACCAGGCGGCAGAAGCCGCGCTGGCCGGCCGGAACGTCGCAACACCCAAATCCCGGGACGGCGCGGTGGAATCCCTGCGGGTCCTGCGCGCCGAACGGGCGACGGCCATGCGCGCCAGGGTAGCGGTCATGGCGCAGATCAAAAGCATCCTTACGGCTGCACCCGAGGCGTTACGGGCCAAATACCGGCGGCTGACCCGCGCCCCGATGATGGCCGCCCTGGAGAAAACCCGGCCGGCCGGAAACATGTCTGACCCGTTGATCGCCACCGCGGCCGTGCTTAAACGCCTCGCGATCCGTTACCGCGCCCTGGATCAGGAACTGGCGGTCATTGATGCCGAGTTAGACGCGATCGTGACAACCCACGCGCCGATGCTCCGTGACCTGCACGGGGTCGGCACCGACGTGGCAAGCCAGCTCCTGGTCACCGTGGGCGACAACCCCGGACGGATCGGCACCGAAGCGCAGTTCGCAGCCCTCGTGGGCGTCGCGCCGATCCCCGCGTCCTCGGGAAAGACCATGCGGCACCGGCTCAGCCGTGGCGGCGACCGGCGGGCCAACAAAGCCATCCACCACGTTGCCCTGGTACGGATGATGAGCGACACCCGCACCAAAAATTACGTCGCCAGACGCCGGGCCGAAGGGAAAAGCACCAAGGAAATCATCCGCTGCGTCAAACGCTACATCGCCCGCGAAGTCTACGATCAGCTGATCCATCCACAACCAGCACCAGACGCCGGAGCCCTCCGCACCCTACGCCAAACGAAGAACATCACCCTCCAGGCCGCCGCGGACAGCCTCCATGTCTGGCCCACAGCACTGTCCCGGCTCGAACGCGGACTCACCCGCCACGACGACTTCTACCAACACTACGAAACCTGGCTCAACTCTCAATCCCAAAAACCGCGAAGAGGCACCCGGGAGGTTGCAGGACTGACCGGGCAGTTTGCCTAGMTNPYLKVIAGIDTHADTHYVAIIDETGRHLMDKEFPAVGSGYRNIVEFITGFGPVVAAGVEGTGSYGAELARVLTREGFRVLEVMRPNRQGRRLRGKSDALDAYQAAEAALAGRNVATPKSRDGAVESLRVLRAERATAMRARVAVMAQIKSILTAAPEALRAKYRRLTRAPMMAALEKTRPAGNMSDPLIATAAVLKRLAIRYRALDQELAVIDAELDAIVTTHAPMLRDLHGVGTDVASQLLVTVGDNPGRIGTEAQFAALVGVAPIPASSGKTMRHRLSRGGDRRANKAIHHVALVRMMSDTRTKNYVARRRAEGKSTKEIIRCVKRYIAREVYDQLIHPQPAPDAGALRTLRQTKNITLQAAADSLHVWPTALSRLERGLTRHDDFYQHYETWLNSQSQKPRRGTREVAGLTGQFAPGPT0030635_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_024841587hypothetical proteinATGGACAACGGGGAAGTCTTGGAGGCAGTCGAAGCACCTGATGCTGCCCTCGTCACAATCGAAGCGGCCTCCTCCGCTGCTGCCACAGGTTCTGATTCTGCTTCTGACTCAGTAGCCGAAATTGATACTGATACTGATCCGTCGCGGGATTTGGCGGAGGAGTGCCTGGCCGAGATGGCGGAGGCTGCCCGTGACGAAGCCCGGGCCGCCGCGCGGAAGGCCCGGGCGGCTGCCACGTACGCGGACACCTGCCGGCGCCTGCTTCCACCGTCGGCGTCGCTGCACGAACAGTCCGTGGCGGAGATGGGCATGGTCGCCGAGGTCGCCTGTACCCTGACCATCAGCGAAAGTGCCGCCTCGGCGTTCCTGGTCCAGTCACACCAGCTGAACACCGAACTGCCCCTCACCCTGGCTGCCCTGCAGGCCGGGGCCCTGTCCTGGCAGCACGCCCGGATCCTCTGCGATGAAACCACCGGCCTGGGCCCCGCCGGCGCGGCCGCCCTGGAAACCCACTTCCTGGACCCCGACGCCGCCAAGGCTTCCCGCGCCTGCCTTGCCGGGGACCTCACACCCTCCAGGTTCCGTGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATCGAAACACGCCACACCAAATGCGTCCTGGACCGCCGGGTCGAATACACCCCGGACCGCGACGGCATGGCCTGGCTCTCCGCCTACCTCCCCGCAGACCAGGCCGCCGGCATCTGGGAACACACCACCACCACAGCCCGGGCACTCCAAGGCCCCACCGAGCCCCGCACCCTCACCCAACTCCGCGCCGACACCCTCGCCGCCGCACTCCTCGGCGGAGAGAGCACCAACCCCGGCAACATCAGCAGTTCAGCACTCATGGGTGGCGGGAGCGCCAGCAGGGGAACCAGCAGTTGGCGTAGCGACAGCGGCGGAAGCGGCAGCGGCGGGATCAACGGCGGCGGAAGCGCAAGCGGCGCTCTCCCCGGTGGCGGAAGCGACAACGGCGTAAATAGCCGGCCCGATCGGGACGCAGAGCGCACTGCCGGGCAGGTCCCGCCGCCGCGGGCGCAAGTGCTGGTCACCGTGCCCGTGTTCTCGCTCCTGGGCCTCACCGACGAACCCGCCACCCTCGACGGCCACGGCCCCATCCCGGCCTCCATGGCCCGGAACCTGGTCGCCAACGGAGCCGACTCCTTCCACCGCGTCCTCACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGGCTCACCACAGCAATGCGCCGCTGGCTCAGACTTCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCGCTGGATAACGAAGCGGACCACCTCCTGGCCTGGGCAGGCGGCGGCACCACCGGCATCAGCAACCTCGGCCAGCCTTGCCGCAAACACCACCACCTGAAACACAACTCCGCCTGGCAACCGACCCCGGCCAGTAAAAACGAACCACCCGGCTGGACCTCACCCACCGGCCGAGAGTACAAAAGCGAACACCAAGACTGGGAACCACCCACCTGGCCTGACGGCACACCGAGCCGTCTCGAATGAMDNGEVLEAVEAPDAALVTIEAASSAAATGSDSASDSVAEIDTDTDPSRDLAEECLAEMAEAARDEARAAARKARAAATYADTCRRLLPPSASLHEQSVAEMGMVAEVACTLTISESAASAFLVQSHQLNTELPLTLAALQAGALSWQHARILCDETTGLGPAGAAALETHFLDPDAAKASRACLAGDLTPSRFRARARTWRERHHPVSIETRHTKCVLDRRVEYTPDRDGMAWLSAYLPADQAAGIWEHTTTTARALQGPTEPRTLTQLRADTLAAALLGGESTNPGNISSSALMGGGSASRGTSSWRSDSGGSGSGGINGGGSASGALPGGGSDNGVNSRPDRDAERTAGQVPPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVANGADSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWAGGGTTGISNLGQPCRKHHHLKHNSAWQPTPASKNEPPGWTSPTGREYKSEHQDWEPPTWPDGTPSRLENANANANANA
D1-29_024852181COG0480Elongation factor G-like proteinATGTCGGTGAAAGGCACCAACGGCCGGGGCAAGGCCCCCGGCCGCACTAATTCTGATCTCCGGCGGGCCGACGGGTCCGCGGGAGGGCCGGCAGATGCACCGGAAAAGGTCCGGAACGTTGCCCTCGTAGGGCACTCGGGCGCGGGAAAGACCCTGCTGCTTGAGGCTCTGCTGGCTGCCACGGGCGTGATATCCCGCAAGGGTTCCATCGAGGACGGCAACACGGTCAGCGACGCCGAGCCCTCGGAGATCCACCAGCAGCGGTCAGTGGTGTTATCTGTGGCCCCGCTGGTGTTCGACGGCATCAAGGTCAATGTGCTGGACACCCCGGGCTACGGGGACTTCACCGGCGAGCTGCGCGCGGGCCTCCGCGCGGCGGATGCGGCACTCTTTGTGGTGTCCGCCCTGGACGATATTGATGCGGCCACCACAGCGTTGTGGGCCGAATGCGACCAGGTTGATGTGCCCCGTGCAGTGGTGATCAGCCGGCTCGATCATCCCCGGGCGGACTTCGAAAGAACCGTGGACGCCTGCCGCCGGGCCTTCGGCGACGCCGTCGTCCCGGCTTATCTGCCGGTGCGTACGGGATCAGCCATCACGGGCCTGCTGGGGCTGCTCTCCGGGACTGTATCCGACTACAGCAGCGGCGGCCCTATGCCGGAAGTGCGGGCCGCCACACCGCATGAGCTTGCGGCTTCGGAGGGGGAACGCGGCGCACTCATCGAGGGGATCATCTCCGAGAGCGAAGACGAATCCCTGATGGACCGCTACCTCGGCGGCGAGGAGATCGACGTCGACGTCCTGGTGGATGACCTGGAGACTGCTGTGGCGCGCGGTTCATTTTTTCCCGTGCTGGCCACATCCGCGGAAACCGGACTGGGCATCACCGAACTGCTGGAAATGCTGACGCGGGCGTTTCCATCGCCGGTGGAACGCAGCCTGCCGGAAGCGACGGATCTCGCCGGCAAACCTGTGGCCCCGCTCACCTGCGACCCTGCGGGACCGTTGGCCGGGGAGGTTGTCCGGACCACCATCGATCCCTTCCTGGGCCGGGTCTGCCTGGTTCGCGTTTTCTCCGGCACGCTGCGGGAGGACTCAGCCGTGCATGTTGGCGGCCGCGGACTGGCCGAACGCGGCCATGAGGACCATGACAGCGATGAGCGCCTCACCCACCTCTACTCGCCTGTGGGGGCCAGCCTCAAGCCCGTGCCCTATTGCATTGCCGGGGACATCTGTGCCATCGCCAAACTGGCAAATGCCGAGACCGGCGACACGATATCGGCCAAGGAGAACCCGCTGCTGGTGGAATCGTGGGACATGCCGGAGCCGCTGATGCCGCTCGCCGTGGAAGGGGCCTCGCGAAGTGACGAAGACGCCCTTGCAAAGAGCATGGGGAAGGTGGCGGCCGGCGATCCGACCCTCCGGGTGGAACGTAACTCCGAAACCCATCAGTTGATTTTGTGGTGCATGGGGGAGGCGCACGGCGAGGTGGTCCTGGACCGGCTGCGGGACCAGGGCGTGAAACTGGAAACAGTTCCAGTGATCACTCCATTGCGCGAAACATTTGCTGCGCCCGCCGCGGGCCACGGCCGCCATGTCAAGCAGTCAGGAGGCCACGGGCAATACGCCATTTGCGATATTGAAGTCGAGCCCCTGGAACGGGGCGCCGGGTTCGAATTCCTCGACAAGACAGTTGGCGGCGTCGTTCCCGGCCACTACATCCCCTCCGTGGAGAAAGGCGTCCGGACTCAAATGCAGAAAGGCGTGTCGGCAGGATTCCCGGTAGTGGATATCCGCGTAACCCTGGTGGGCGGCAAGGCACACAGCGTTGACTCGTCGGACGCCGCGTTCCAGGCTGCGGGCGCGCTGGCGCTGCGAGAAGCGGCGGCCGCGGGCCGTATCCAGCTGCTCGAACCCGTCTCCTCAGTGGTCATCACCACTCCGGATGAGTACGTCGGCCCCGTTATGAGTGATATGTCTTCACGCCGGGGACGGGTGACAGGAACCACGTCGATAGGCGGCGAACGCACGGAAGTCATCGCGGAAGTGCCCGACGGCGAATTGTTGCGTTACGCCGTCCAGCTGCGGGCGCTTACCGCCGGGACAGGCCGCTTCCGGCGCAGCTACCTGCGTCACGAACCGGTGCCGGGCAACGTGGCCCCGGCGGGCAGCCATGCCTGAMSVKGTNGRGKAPGRTNSDLRRADGSAGGPADAPEKVRNVALVGHSGAGKTLLLEALLAATGVISRKGSIEDGNTVSDAEPSEIHQQRSVVLSVAPLVFDGIKVNVLDTPGYGDFTGELRAGLRAADAALFVVSALDDIDAATTALWAECDQVDVPRAVVISRLDHPRADFERTVDACRRAFGDAVVPAYLPVRTGSAITGLLGLLSGTVSDYSSGGPMPEVRAATPHELAASEGERGALIEGIISESEDESLMDRYLGGEEIDVDVLVDDLETAVARGSFFPVLATSAETGLGITELLEMLTRAFPSPVERSLPEATDLAGKPVAPLTCDPAGPLAGEVVRTTIDPFLGRVCLVRVFSGTLREDSAVHVGGRGLAERGHEDHDSDERLTHLYSPVGASLKPVPYCIAGDICAIAKLANAETGDTISAKENPLLVESWDMPEPLMPLAVEGASRSDEDALAKSMGKVAAGDPTLRVERNSETHQLILWCMGEAHGEVVLDRLRDQGVKLETVPVITPLRETFAAPAAGHGRHVKQSGGHGQYAICDIEVEPLERGAGFEFLDKTVGGVVPGHYIPSVEKGVRTQMQKGVSAGFPVVDIRVTLVGGKAHSVDSSDAAFQAAGALALREAAAAGRIQLLEPVSSVVITTPDEYVGPVMSDMSSRRGRVTGTTSIGGERTEVIAEVPDGELLRYAVQLRALTAGTGRFRRSYLRHEPVPGNVAPAGSHANANANANANA
D1-29_02486666hypothetical proteinATGTCCGTTCCAGAGTCCTCCCTCACCATTCCCACCGGCGAAACAGAAGTTTCGGGGGTCTATGCGCGTCCTGACAATCCCTTCGCCACGCTGGTGGTTGCCCATGGCGCCGGCGCCGGGATGGAGCACCCGTTCCTCCGAGGTTTCACCCGGGCACTGAACGACGACGGCGTGGCCACGTTGCGCTTCAACTTTCCCTACCGTGAAGCCGGCAGGAAGTTCCCCGACCGGCCGCCGGCCGCGATCGCCGCATGGCGCGCAGCCCTCGACGCTGCCCGGTCACGGTCCGACGGGGAGCCCGTTTGGGCGGCAGGCAAATCCTTTGGCGGCAGGATGGCCTCCATGGCCGTCGCAGAGGGCATGGACACGAAAGGCCTGGTTTACCTCGGATATCCGTTGCATCCGCCGGGCAAGCCGGAAAAGCTTCGGGACGAGCATCTGTACGGACTGGAACTTCCCATGCTGTTCCTGCAGGGAACCCGGGATACGTTCGCCACTCCCGAGCTTCTCGAGGGGGTTGCCGCCCGGATTGGTCCCGGCGCGACGCTTGAGTGGGTTGAAGGCGGCGACCATTCCTTCGCCGTGGCAGGCGCCAAGCGCAGCGCTGAAGAGATCGGAGCCTCACTGGCCGAGCGGGTGGCGGAGTTTATCCGGAAGCATCCTTGAMSVPESSLTIPTGETEVSGVYARPDNPFATLVVAHGAGAGMEHPFLRGFTRALNDDGVATLRFNFPYREAGRKFPDRPPAAIAAWRAALDAARSRSDGEPVWAAGKSFGGRMASMAVAEGMDTKGLVYLGYPLHPPGKPEKLRDEHLYGLELPMLFLQGTRDTFATPELLEGVAARIGPGATLEWVEGGDHSFAVAGAKRSAEEIGASLAERVAEFIRKHPNANANANANA
D1-29_024871023ligDCOG1793Multifunctional non-homologous end joining protein LigDATGGCCAGCGAACAGACCACCCTTTCCGTCCCGGGGCCCAGCGGCAGCCGCGAAATGCGCATCTCCAGTCCCAGCCGGGTCCTCTGGCCGGACCTGGGCCTGACCAAGCTGGACCTGGCCCGCTACATCGTCGAGGTGGGGGAAGCCTTCATAGCCGCAAACGGTGACAGGCCGGTCTCGCTGCAGCGGTATTCGGACAATATCGTGGGGGAAATGTTCTTCTCCAAGAACCCGCCCAAAGGGACCCCTGACTTTGTCCGGTCGGTGAAGGTGGTCTACCCAAGCGCCCGTTCGCATCCGCAGCTGGTCCTTGACGAGCCGGCAGCCGCCGTATGGGCGGTGCAGATGAACACAGTGGTCTTTCACCCCTGGCCATCCCGAACGGAGAACACGGACAATCCGGACCAGCTGCGGATCGACCTGGACCCTCAGCCCGGGACGGACTTCGATGACGCTGTTCCCGCCGCGCTGCTCCTGAAGGAAGTACTGGCGGAGGCAGGACTGGACTGCTTTATCAAGACGTCTGGAAACCGTGGGCTTCACGTGTACTCGCCCATCGAGCCGGCCCATGAATTCCTGGATGTCCGCCATGCGGTCATCGCCGCAGCCAGGGAGGTGGAGCGGCGCATTCCGGACAAGGTGACCACCGCGTGGTGGAAGGAGGAACGCGGCCAGCGGGTGTTCCTGGACTTTAATCAGGCCAACCGCGACCGGACCATCGCCGGTGCCTACAGCCCGCGCGCACTGCCGCATGCCCCGGTATCGTGCCCCATCACGTGGGATGAACTGGGCACCGCCGACCCCAAGAACTTCACCATCCTCACCGTCCCGGAACGCCTGAAGACTGTCGGCGACCCGTGGGCGGATATGGGTGCAAAGCCTGGAACCATCGACAAATTGCTGGAGTGGTGGGAACGCGACGTCGCGTCAGGACTCGGAGAGATGCCTTTCCCGCCCGACTACCCCAAGATGCCGGGTGAGCCGCCGCGTGTGCAGCCCAGCCGGGCGCGCAAACAGGACTAGMASEQTTLSVPGPSGSREMRISSPSRVLWPDLGLTKLDLARYIVEVGEAFIAANGDRPVSLQRYSDNIVGEMFFSKNPPKGTPDFVRSVKVVYPSARSHPQLVLDEPAAAVWAVQMNTVVFHPWPSRTENTDNPDQLRIDLDPQPGTDFDDAVPAALLLKEVLAEAGLDCFIKTSGNRGLHVYSPIEPAHEFLDVRHAVIAAAREVERRIPDKVTTAWWKEERGQRVFLDFNQANRDRTIAGAYSPRALPHAPVSCPITWDELGTADPKNFTILTVPERLKTVGDPWADMGAKPGTIDKLLEWWERDVASGLGEMPFPPDYPKMPGEPPRVQPSRARKQDPGPT0014910_1120DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-29_02488621yciOCOG0009putative protein YciOATGGCCAGATACTTCGACGTTCATCCCCAGGATCCGCAGCCGCGGGCCATCACCCAGGCCGTCCGCATGGTGCTCGACGGCGGCCTGATCGCCTACCCCACGGACTCCTGCTACGCGCTGGGCGCCCAGCTGGGCAACAAGGATGCCCTGGATCGTATCCGGACCATTCGAAAACTTGACGCCAAACACCATTTCACCCTGGTCTGCAAGGATTTCGCCCAGCTGGGCCAATTCGTGAACATCGGCAATGACGTCTTCCGCAGCATCAAGTCGGTGACACCCGGCAGCTACACGTTCATCCTGCCCGCCACCAAGGAAGTTCCCCGGCGGCTCCTCCACCCGAAGAAAAAGACCGTGGGCGTCCGCATCCCTGACAACCGGGTGGTGCAGGCCTTGCTGGCCGAACTCGGCGAACCGCTGCTCTCCAGCACGCTGCTGCTTCCGGATGAGGCAGATCCGCTCACCAACGGCTGGGAGATCAAGGAAAGGCTGGAGCATGAGGTGGACGCCGTGATCGATGCCGGCGACTGCGGGGCCGAACCGACCACGGTCATCGACTTCTCCGGCGGCGCGGCCGAGGTGGCCCGTTACGGCGCCGGAGATCCGTCCCGGTTCGAGTAGMARYFDVHPQDPQPRAITQAVRMVLDGGLIAYPTDSCYALGAQLGNKDALDRIRTIRKLDAKHHFTLVCKDFAQLGQFVNIGNDVFRSIKSVTPGSYTFILPATKEVPRRLLHPKKKTVGVRIPDNRVVQALLAELGEPLLSSTLLLPDEADPLTNGWEIKERLEHEVDAVIDAGDCGAEPTTVIDFSGGAAEVARYGAGDPSRFENANANANANA
D1-29_02489435hypothetical proteinATGCCCACAGTGCTCAACCCCTACCTTGGCTTCCGCGACAACGCCCGGGAGGCGATGAACTTCTACCAGAACGTCTTCGGCGGCGAATTGACACTCAGCACCTTCGGGGATTTCCAGGCGAGCGAGGACCCCGCCGAGGCGGACAAGATCATGCACGGCATGCTGACCACCCAGCAGGGGATGGTCCTGATGGGGGCCGACACCCCGAACTCGATGGAGTACACACCGGGCGGTTCGATTTCTGTCTCGGTCAGCGGCGACGATGAGGCCGAGCTGCGCGGCTATTGGGACAAACTGGCCGGCGACGGCGGCAGCGTGACTGTTCCGCTGGAGCAGGCGCCCTGGGGCGATATTTTTGGCATGTGCACCGACAAGTTCGGCGTGGCGTGGCTGGTCAACGTCAACGGCGCACAGCCGGGCGGTCCCGTGACTTAAMPTVLNPYLGFRDNAREAMNFYQNVFGGELTLSTFGDFQASEDPAEADKIMHGMLTTQQGMVLMGADTPNSMEYTPGGSISVSVSGDDEAELRGYWDKLAGDGGSVTVPLEQAPWGDIFGMCTDKFGVAWLVNVNGAQPGGPVTPGPT0030505_1639PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
D1-29_02490684hypothetical proteinGTGCAGCCCCTCTTCGATTTTCTCGCTCACTACTGGTGGTTGGTTTTCCCCCTCAGTGGTGTGATGGGCGGGTGGGCCAAGTCCTGGCAGATGTCCACGGAACGCCGGCATCAGCGGAGGGTGGAGCTGTACAAACTCCGGAACCAGTCACTGCAGGCCGAGCAGGTGGCCATCGCCGACATCGAGTCCCTCATGGCTGCCCATGATGCCGTTAACCGCCGCTGGCTGGACTACGAACTGGACGTCGGCAAGCTGATTGATTTTCCCCTGATGACCGATGTCCGCGAACCCCTCACGGTGGCCTTCCTGCGGGCCAAACGCGAGGCGGACGGGCTGCGGCCTTCCTCGGCCAAGGAGCTGACCGCACCGTCACGGCTCGAGGCTTACCGGGCGTCGGTCAATGCCTTTGAAGTGGCCTTCGCGGTCGCGGAGCGGGAAGCCAAACGGATCAGGGATACGAACTTTTCCGGGCCAGAGCGTGAGCGGCTGGCAACGGCCAGGAAGCTGCTGCGGCTCGCCGAGAATGACGCCGCCACCCCCGCTGAGCGGCAGGCCGCCTACAAGCGGGCCCGCCGCGAACTGGACGGCCTCATCGTGCTTCCGGATGCCGCGGTTGCCGCGCTGGAGGAAAAAGTGGCGCCCATGCTCGATTCCGGCCGCCCATCGGACTCTCCGCAGAGGTAGMQPLFDFLAHYWWLVFPLSGVMGGWAKSWQMSTERRHQRRVELYKLRNQSLQAEQVAIADIESLMAAHDAVNRRWLDYELDVGKLIDFPLMTDVREPLTVAFLRAKREADGLRPSSAKELTAPSRLEAYRASVNAFEVAFAVAEREAKRIRDTNFSGPERERLATARKLLRLAENDAATPAERQAAYKRARRELDGLIVLPDAAVAALEEKVAPMLDSGRPSDSPQRNANANANANA
D1-29_02491534hypothetical proteinGTGAAAAGAGTCTCCCTTTACCTCGACGTGGACGGGGTGATTTGTCCTTTCGGGCCAGCCGGGGTCAGTGAATGGGGCTCTCCCTGGCGGCACGCCAGTGCCGGCCTGCTGTCGGTCGCGTTTGCCCAGGAGCTCGTCGACGGACTGAACGGGCTCGCCGCCGTTGATGGACTCAGGTGCGTGTGGCTGACCAGCTGGGAGGACCTGGCACCCGAATACCTCTGCCCCTCCATTGGCCTCAACGCGGCGAATTGGCCCTATCTGACGGCGGCGGGAGCAGGCGCAGGAGGCGTCCCGGGTCAAGCGCTCGGGGAAGGCTGGTGGAAACTCCGTGCCATCCAGGATGACATGGACAGATTTGGCCCTGACGCCGTGGTGTGGATCGATGACCAACTCAGGTATGAGGAGGAGGCGCAGGCATGGGCGAGGATCCTGGGACGCCGCATCCTCCTGGTGTCACCTGACCCGCGCCGCGGAATCTCACCGGCCGAGTTCGGCGCCGTCAGGTCGTTTCTGGAACAGCCGGTGTTTTGAMKRVSLYLDVDGVICPFGPAGVSEWGSPWRHASAGLLSVAFAQELVDGLNGLAAVDGLRCVWLTSWEDLAPEYLCPSIGLNAANWPYLTAAGAGAGGVPGQALGEGWWKLRAIQDDMDRFGPDAVVWIDDQLRYEEEAQAWARILGRRILLVSPDPRRGISPAEFGAVRSFLEQPVFNANANANANA
D1-29_024921209hypothetical proteinATGGTGGCGCTGGTCATAGCACTGGCACTATTTTTCGACTTCACGAACGGCTTCCACGACACCGCCAACGCGATGGCAACACCAATCGCCACCGGCGCTATCAAACCGAAGGCTGCAGTGACTCTCGCGGCGATCCTGAACCTGGTGGGCGCATTCCTGTCAACGGAAGTGGCCAAGACAGTTTCCGGTGGCATCATCAGGGAAGGATCGGACGGGGTCCAGATCACTCCGGACATCATCTTTGCCGGTTTGATGGGCGCGATCCTGTGGAACATGATCACCTGGCTCAAAGGACTTCCGTCCAGTTCATCCCATGCCCTGTTCGGCGGACTGATCGGCGCGGCCATCGCAGGCATCGGCTTCAACTCGATCAACCTCGAGAGCCTTATGCAGAAGGTCATCCTCCCGGCCATCTTTGCGCCGCTCATCGCGGGCATTGTTGCTTACGCGTGCACCCGTCTCGCCTATGCCATGACCTCCCGGCATGATCCCGAGACCGGCAGCAAGCTGACGCAGAAGCGTGGCGGCTTCCGCACCGGACAGATCTTCACCTCCAGCCTGGTGGCGCTGGCTCACGGCACCAACGACGCCCAGAAGACCATGGGCATCATCACGCTGGTCCTGATCGCGGCCGGCACCCAGGCTCCCGGTTCCGGCCCCGAATTCTGGGTGATCGCCGCCTGTGCCTTCGCCATTGCCATCGGCACGTACGCTGGTGGCTGGCGCATCATCCGGACCATGGGATCCGGTCTGACCGAGGTCAAGCCGGCGCAGGGCTTCGCCGCCGAGACGAGCACCGCATCTGCCATCCTGGCGTCCTCGCACTTGGGCTTCGCCTTGTCCACCACGCAGGTGGCTTCCGGTTCTGTCATCGGTTCGGGAATGGGGCGGAAGGGGACCAGCGTGCGCTGGAGTATGGTGGGCAAGATCCTTGTGGGCTGGCTCTTCACCCTGCCGGCTGCGGGCATCGTTGGCGCGCTGACCGCCCTGCTCGTCAAGACGGGCGTCGTCGGTGTGGTGATCGCCGCCGTCGCCGGAACTGCTGCCGTGCTGTTTATGTTCTTCTATTCCCGCAAGTCCCATGTGGGCCACCACAATGCCGTGGAGGTCGAAGAAGCCGGGCAGGCCGTCCGCTTCGCCAAGAAGAAGAGCCTGGCCCGGGCCCAGGCCAGGGCCAAAGCCAACAATCCGAAGGATGTCCAGCGATGAMVALVIALALFFDFTNGFHDTANAMATPIATGAIKPKAAVTLAAILNLVGAFLSTEVAKTVSGGIIREGSDGVQITPDIIFAGLMGAILWNMITWLKGLPSSSSHALFGGLIGAAIAGIGFNSINLESLMQKVILPAIFAPLIAGIVAYACTRLAYAMTSRHDPETGSKLTQKRGGFRTGQIFTSSLVALAHGTNDAQKTMGIITLVLIAAGTQAPGSGPEFWVIAACAFAIAIGTYAGGWRIIRTMGSGLTEVKPAQGFAAETSTASAILASSHLGFALSTTQVASGSVIGSGMGRKGTSVRWSMVGKILVGWLFTLPAAGIVGALTALLVKTGVVGVVIAAVAGTAAVLFMFFYSRKSHVGHHNAVEVEEAGQAVRFAKKKSLARAQARAKANNPKDVQRPGPT0002655_1862DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002655-TC_PIT-K03306NANA
D1-29_02493222hypothetical proteinATGAAGTGGTTGGAACTGGTAACCGTAGGCGGCGCCACCCTGGTGTCTGCCGTGACAGTGGTGTTCCTGTACTCACTGGGTGTCCGCCTCACCGCCATCGCCGGCGATGCCGAGCAGGCCTCGCCCCGCATAAAGCGCTCCCTGGCGTACGTCTGCTTTGGCCTCTGCGGCCTTGCTGTCCTGTTCGGGCTCTACCTGATCATTCCTTACTTCAGCAAGTAGMKWLELVTVGGATLVSAVTVVFLYSLGVRLTAIAGDAEQASPRIKRSLAYVCFGLCGLAVLFGLYLIIPYFSKNANANANANA
D1-29_02494564yyaP_4COG0262putative protein YyaPATGTCACGGATCCAGTATTTTGTTGCTTCGTCCCTTGACGGTTTTATCGCAACGTCCACTGATGACCTCGGCTGGCTCCTGCAGTTTGACGGTTTCGAGGGCGGCAAGGAAAGCTACGAATCGTTCATGGACGGCGTGGGCTGCATTGTGATGGGCGGAGAAACGTTCGCCTGGCTGATGAAACACGAACCGGGAAACTGGCCCTATACCTCCACCCCCTCGTACGTTTTCACGCGCCACGAGTACGCCGCGCCGCCGGGGGCAGACGTCACCTTTATCCGGGGTGAGGTAGGGGAATTTGTCCAGGACTTCAAGGACGACGCCCGCGGCAAGAACGTCTGGGTGGTGGGCGGCGGAAACCTTGCGGCACAGTTCGCCGGCGCCGGCCTGCTGGACGAACTCATCGTGTCCATCATCCCCGTGGTCCTGGGGAACGGAAAGCGGCTGCTGCCTCTTGAAGGCCCGACGCCGCCGCTTCAGTTAACAGATTCGCGCACCCTTGGGCGGGGGGTCGTGGAGCTGCGTTACGGCTTCAGCCCTGCCGCCCGGCCGGGTGTGGCCTGAMSRIQYFVASSLDGFIATSTDDLGWLLQFDGFEGGKESYESFMDGVGCIVMGGETFAWLMKHEPGNWPYTSTPSYVFTRHEYAAPPGADVTFIRGEVGEFVQDFKDDARGKNVWVVGGGNLAAQFAGAGLLDELIVSIIPVVLGNGKRLLPLEGPTPPLQLTDSRTLGRGVVELRYGFSPAARPGVANANANANANA
D1-29_02495474entHProofreading thioesterase EntHATGATGGACAATTTCACGCCCGGCCCATTTACCGATGAGTTAGTGGCAGCCGGTATCCCGGAACACCTTCACGGCTGGCTTGGCGAGTACGGAGTAGGCGCCTTGGTGGTGAAGATGGGGATCCACTTCCTGGAGATGAGCCCCGAACGGACCGTGGCCACCATGCCGGTGGAAGGCAATACCCAGGTAGCAGGCATCCTGCACGGCGGCGCCCACGTGGTCCTCGCGGAAACTCTGGGATCCTTTGCGGCAGGGATGCACGCCGGGCCAGGCCGGCGGGCCCTGGGCATTGAGGTCAGTGCAACCCACCACCGCTCCATTGCCGCGGGGAGCGTCATCGGGACCTGCACCGCAATCCACCTGGGTCGCTCGCTGACTACGCACCAAATCGTGGTGACCGACGAAAAGGGACGGCGGCTTTCCACCGCCCGGATCACCAATATGCTGCGTGACAACGGCCCTGACGACAGCTGAMMDNFTPGPFTDELVAAGIPEHLHGWLGEYGVGALVVKMGIHFLEMSPERTVATMPVEGNTQVAGILHGGAHVVLAETLGSFAAGMHAGPGRRALGIEVSATHHRSIAAGSVIGTCTAIHLGRSLTTHQIVVTDEKGRRLSTARITNMLRDNGPDDSPGPT0001845_322DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222NANA
D1-29_024962838polACOG0258DNA polymerase IGTGAGTGAAACTACCAAACCGGCCCCTTTCCCGTCCCAGACCTCTGACCTTCGGGACGATGCTGCCCTGCCCGCCGACGCTGCTTTGCAGGACGTGGTGGTTCCGCCGCCGGCCAGCCAATCGGTGTCAGCCACGGTGGCTCCCGTCATCCCCATCACCGACCAGCCGCGCCTGCTGGTTCTGGACGGGCACTCCATGGCATTCCGGGCTTTCTTCGCCTTGCCCGCGGACAAGTTCTCCACGGCCAACGGACAGCACACCAACGCCATCCACGGGTTCACGTCCATGCTCATCAACCTGATCAAGGAACAGAAGCCCACGCACATCGCGGTCGCCTTCGACGTCTCCGACGACACCACCCACCGCAAGGCCGAGTACAGCGGATACAAGGGCGGCAGAAACGAAACGCCGCGGGAGATGAGCGGCCAGATCGACCTCATCGACAAAGTCATGGGTGCCTGGGGCATCAAGACCATCAAGATGCCCGGCTACGAAGCTGACGACATCCTCGCCACCCTCGCCGCCATGGGGGAGAAGGCCGGTTTCGAAGTACTCCTGGTAACAGGGGACCGCGACGCGTTCCAGCTCATCACGGACAACGTCTTTGTGCTTTATCCCAGGAAGGGCGTCAGCGACATCCCGCGCCTGGATGCTGCTGCCATCCAGGAGAAGTACTTCGTCACGCCTCCGCAGTACTCGGACCTCGCCGCGCTGGTGGGGGAATCGGCGGACAACCTGCCGGGCGTTCCCGGCGTCGGCCCCAAGACCGCGGCCAAGTGGATCAACCTCTACGGCGGGCTCGAAGGAGTGCTGGAGCACCTGGACGCGATCGGCGGGAAGGTGGGCGACGCCCTCCGGGAAAACGTCGAGGACGTCAAGCGCAACCGGCGGCTGAACAGGCTTCACACCGATCTGGAACTGCCGCTGACGCTGGACGACCTCGCCGAGCCGAGGCCTGACGAGGCCGCACTGGAGCAACTGTTCGACGAACTCGAATTCAAGACCATCCGCGCCCGGCTGTTCGCCCTTTACGGCAGCGACGAAGTGGAGTCAGCGGAACGCGAGACCATCGACACCCCCGCCTTTGTCACCCCGGCGAACGCCGCAGAGCTGGCTGCCTTCCTGGCTGCAGGGGCCGGGAAACGCTCCGCCATTGCCGTTGATCTGGTACCGGGCCGGATCGGCGAAGACGCTGCGGCACTGGCCATCGTCCGTGACGACGCCGCCGTCTACATCGACCTCGCCGGCCAGGACGCCGCAGCCGAAAACGTCCTCGCAGACTGGCTGCGGGATGACACCTCCGCCAAGGTCATGCACGGATACAAGGCTGCCCTCAAGGCACTGTCCAGCCGTGGGCTGGGACTCTCAGGAGTAGTGGACGACACCTCCATCTCCGGGTACCTCATCCAGCCGGACCGCCGCACCTACGAACTCGCGGAACTGGCGCAGCACCACCTGAACATCAGCATCTCGCCAGAGACGGCCAAGGCGGGCCAGCTTGAGCTGTCGTTCGACGGCGAGGATGCCGCCGCCGCGGATGCGCTGGTCCGGGTGGCGGCGGTGGTCCAGACGCTGAGCCGGCGGTTCGAGTCCGAGCTCAAGGAACGCCAGGCCGAGGACCTGCTGTCCACCCTTGAGTTGCCTGTCAGCCGGGTCCTGGCCGACATGGAGCTCGCCGGGATCGCCATCGACATGCCGCACCTGGATGAACAGCTGGCCGATTTGGCGAAGGTCATCGACAACGCGCAGGAACTCGCCTTCGCCGCCATTGGCCACGAGGTCAACCTCGGTTCCCCCAAGCAGCTGCAGACTGTCCTCTTCGACGAACTCCAGCTGCCGAAGACCAAGAAAATCAAGTCCGGCTACACCACCGACGCCGCATCCTTGAAGAACCTCCTGGAAAAGACGGGGCACGAGTTCCTGGTCCAGCTGATGGCGCACCGTGAGTCCGCGAAACTAAGCCAGATGCTCGAGACGCTCAAGAAATCCGTCACCGAGGATGGCCGCATCCACACCACCTACGCGCAGAACGTTGCCGCCACGGGCCGGATCTCCTCCAACAACCCCAACCTCCAGAACATCCCCATCCGCAGCGAGGAAGGCCGGCGCGTGCGCGGCATCTTCGTGGTCAGCGACGGCTACGAGTGCCTGCTCTCCGCTGACTACTCGCAGATCGAAATGCGGATCATGGCCCACCTGTCAGGCGACCCCGGGCTGATTGCGGCATACAAGGAAGGCGAAGACCTCCACCGCTTCGTTGGCTCGCACATCTTCCACGTGCCGCCGGCGGAAGTGACCAGCGCCATGCGCTCCAAGGTCAAGGCCATGTCCTACGGACTCGCCTACGGACTGACGTCCTTTGGGCTGTCCAAGCAACTGGAAATTTCGGTAGACGAGGCCCGGACCCTGATGAAGGACTACTTCGACAGGTTCGGGGCCGTCCGCGACTACCTCCGCGGAGTGGTGGACCAGGCACGGATCGACGGCTACACCGCCACCATCGAGGGCAGGCGCCGCTATCTGCCGGACCTTACCAGCACGGACCGGCAGCTGAGGGAAAACGCCGAGCGCATCGCACTGAACTCACCCATCCAGGGATCCGCAGCGGACATCATCAAGCGGGCAATGCTGGGCGTGCACGACGAACTGCAGGCCCAGGGACTCAAATCGCGCCTGCTCCTGCAGGTCCACGATGAACTGGTGCTTGAGGTGGCCATTGGCGAGCGGGAACTCGTGGAGAGGCTGGTCACCGAGCAGATGGGCTCCGCCGCCGATCTCACCGTCCCCCTCGAAGTCCAGATCGGCGTTGGCACCACCTGGTACGACGCCGGCCACTAGMSETTKPAPFPSQTSDLRDDAALPADAALQDVVVPPPASQSVSATVAPVIPITDQPRLLVLDGHSMAFRAFFALPADKFSTANGQHTNAIHGFTSMLINLIKEQKPTHIAVAFDVSDDTTHRKAEYSGYKGGRNETPREMSGQIDLIDKVMGAWGIKTIKMPGYEADDILATLAAMGEKAGFEVLLVTGDRDAFQLITDNVFVLYPRKGVSDIPRLDAAAIQEKYFVTPPQYSDLAALVGESADNLPGVPGVGPKTAAKWINLYGGLEGVLEHLDAIGGKVGDALRENVEDVKRNRRLNRLHTDLELPLTLDDLAEPRPDEAALEQLFDELEFKTIRARLFALYGSDEVESAERETIDTPAFVTPANAAELAAFLAAGAGKRSAIAVDLVPGRIGEDAAALAIVRDDAAVYIDLAGQDAAAENVLADWLRDDTSAKVMHGYKAALKALSSRGLGLSGVVDDTSISGYLIQPDRRTYELAELAQHHLNISISPETAKAGQLELSFDGEDAAAADALVRVAAVVQTLSRRFESELKERQAEDLLSTLELPVSRVLADMELAGIAIDMPHLDEQLADLAKVIDNAQELAFAAIGHEVNLGSPKQLQTVLFDELQLPKTKKIKSGYTTDAASLKNLLEKTGHEFLVQLMAHRESAKLSQMLETLKKSVTEDGRIHTTYAQNVAATGRISSNNPNLQNIPIRSEEGRRVRGIFVVSDGYECLLSADYSQIEMRIMAHLSGDPGLIAAYKEGEDLHRFVGSHIFHVPPAEVTSAMRSKVKAMSYGLAYGLTSFGLSKQLEISVDEARTLMKDYFDRFGAVRDYLRGVVDQARIDGYTATIEGRRRYLPDLTSTDRQLRENAERIALNSPIQGSAADIIKRAMLGVHDELQAQGLKSRLLLQVHDELVLEVAIGERELVERLVTEQMGSAADLTVPLEVQIGVGTTWYDAGHNANANANANA
D1-29_02497525hypothetical proteinATGGAACTTCAAACGTATGTCAACAGCCTCCAGGAACAGTTGGCCAATGCCGCCGGGGCAGGCGGTGAGCAGGCGCGCGAGGTGGCGCTCCGCCTCGCGGCGCCCCTTGAAACAGCAACAAGGCTTGTCCTGCTGGAAGCACTTGCAGCCGCCGCCGGGGAAATCACCGGGGAGCTGGCGCCAGGATCGGTGGAGGTGCGCCTGCGCGGCCGTAATCCCGAGTTCGTTGTTTCCCTTCCGCCGGCCCGGACGGACTTTGACGATACCGCTCAGGAGTTCCCTGTAACTGAACCCCAGCCGGCATCACCAGGGGAGGGGGACGACGGCGGGACGTCCCGGTTTACGCTGCGCCTGCCGGAACATCTTAAGCAGCGCATCGAGGCTGCGGCGGCAGCGGAGAAACTCTCGGTCAACTCGTGGCTGGTCCGCTCCCTTGCCGCTTCTTTGGAGCATCCCGGCCAAACCCCCCGGGGCAGTAAGAAAAGGTCCTCCGAGGGGCGGAGCTACAGCGGTTGGGTGCAGTGAMELQTYVNSLQEQLANAAGAGGEQAREVALRLAAPLETATRLVLLEALAAAAGEITGELAPGSVEVRLRGRNPEFVVSLPPARTDFDDTAQEFPVTEPQPASPGEGDDGGTSRFTLRLPEHLKQRIEAAAAAEKLSVNSWLVRSLAASLEHPGQTPRGSKKRSSEGRSYSGWVQNANANANANA
D1-29_02498882hypothetical proteinATGTTTAATTTCGCCACCCCGGAACCCATTTCCGTCACCATCGAATTGAACCTCGGAGACGTCCGGATGACAGCGAGCGACCGTGCCGACGCCGTGGTTGAGGTGCAGCCCACGGATGAATCAAAGGCCTCGGACATCCGGGCGGCCGAGCAGACAAGGGTGGAGTATTCCCATGGCCGGCTCGTCGTCAAGGGGTCCAGTGACTGGAGACGGTATGCCGTTTTCACTGGAAACGGATCCGTTGACGTCACCATCAAACTTCCCTCCCGTTCCGACGTCCGGGCAGAGGCAGGAATGGGCAAGTTCGAGTGCCAGGGTGAACTGGGCCGGTGTTCGCTCAAAACCGGCATGGGCAGGATCCGCCTGGACCGGACCGCTTCCGTCAAGGCTGAGACCGGCTACGGGGACATCACGCTGGAAGGTGCCGCCGGCGACGTCGAGATCAAAACGGGGTCGGGCGAGATCAGTGCCCGCCGTATTGAAGGCGCCGCCCACGTAAAGAGCTCAGATGGCCACGTCTATATCGGCTGGGTGGCCGGCGATGTCCAGGTTAAGGCAGCCAACGGCAAAATTTCCATTGGCCAGGCGCAAGGGTCCGTCACAGCCAAGTCCGCCAACGGCAGGATCCGGGTGGGCGGAGTGGCGCGCGGCTCGGTCCTGCTGGAAACCGCGATGGGTGACGTTCGGGTAGGCGTCCAGGAAGGAACGGCAGCCTGGCTCGACGTCAGCACGCAGTACGGAAGGGTGCTCAATTCCCTCAACGCTGCCGATGGGCCTGGCGGGCACAAGGAGACGGTGGAGATCCGCGCCCGGACATCCTACGGCGACGTCGAGATCCAGCGTTCACTGGACCCAATCCACGAGACGGGAAACCGCGGGTGAMFNFATPEPISVTIELNLGDVRMTASDRADAVVEVQPTDESKASDIRAAEQTRVEYSHGRLVVKGSSDWRRYAVFTGNGSVDVTIKLPSRSDVRAEAGMGKFECQGELGRCSLKTGMGRIRLDRTASVKAETGYGDITLEGAAGDVEIKTGSGEISARRIEGAAHVKSSDGHVYIGWVAGDVQVKAANGKISIGQAQGSVTAKSANGRIRVGGVARGSVLLETAMGDVRVGVQEGTAAWLDVSTQYGRVLNSLNAADGPGGHKETVEIRARTSYGDVEIQRSLDPIHETGNRGNANANANANA
D1-29_02499642hypothetical proteinATGGGTAGGGTTGATGTTGTGAAAAGTACGCGCGGAATCGAGATCGGGTCACTTCCCTTCCCCCTGGTCAGTGAAGGCCCGCCGTCTCTGGTTGCCCCGCTCCTTGAGGGGGAGAGGCTAGTCCTGACGGCGGACGCCGGCGCGGATATGTTCCTTGACCCCGGCGGACATCCGGACACGTCCGATGCTGAACGCTTCGTCTGGCCCGTCACGGGTGACTTTCGGTTCAGCGCATTCGTCAGCCCGGTGTTTGTCTCTGATTTCGACTCCGGCGTGCTGCTGGGCTACATCGATCCACTGAATTGGTTCAAAGTCTGCGCCGAACTGGATCCCAGCGGGACCACCAGGGTGGTGTCCGTTGTCACGCGGAACGGCAAGTCCGACGACTGTGACAGCTGGCCGATCGACGGAGCGGGGACTTACCTGCGAATCTCCCGCCTCGGCCAGGCTTTCGCGCTGCACGCCTCCATTGACGGCGAATGGTGGAACATGGTCCGCTACTTCGGCATGGGCGAGCCGGCACCTGATGCCGTCAAAATCGGATTCGCAGCGCAGTCCCCTTCCGGAGAGGGAACGACGGCGACATTCAGTGAGGTCAGGTTCGATACCCAGCGGCTGGCCGAAGTAAGGGACGGCACGTAGMGRVDVVKSTRGIEIGSLPFPLVSEGPPSLVAPLLEGERLVLTADAGADMFLDPGGHPDTSDAERFVWPVTGDFRFSAFVSPVFVSDFDSGVLLGYIDPLNWFKVCAELDPSGTTRVVSVVTRNGKSDDCDSWPIDGAGTYLRISRLGQAFALHASIDGEWWNMVRYFGMGEPAPDAVKIGFAAQSPSGEGTTATFSEVRFDTQRLAEVRDGTNANANANANA
D1-29_02500297hypothetical proteinATGCTTTACGCCGTGCGCGGCAAGGCGGGCCAGGACGTCGTCGAGGCCTTCCATTCCGAGGGTCAGCAGAGCCCTTCCGGCCCGATCGGCCCGCTCCTGGCGCGTAAGTTTCAGCTGACGTTTGCCGGGAGGTGCTCGCCAGCCGGGGGCGGCTACGTGCCGTCCCTTACTTCGGCCAGCCGCTGGGTATCGAACCTGACCTCACTGAATGTCGCCGTCGTTCCCTCTCCGGAAGGGGACTGCGCTGCGAATCCGATTTTGACGGCATCAGGTGCCGGCTCGCCCATGCCGAAGTAGMLYAVRGKAGQDVVEAFHSEGQQSPSGPIGPLLARKFQLTFAGRCSPAGGGYVPSLTSASRWVSNLTSLNVAVVPSPEGDCAANPILTASGAGSPMPKNANANANANA
D1-29_025011326eisN-acetyltransferase EisATGGATTTATTGGCTAGGCTCGGCGGTGTGGATGAACTGAGTGGGGACTATGAAATCCGGCGCTTTGGCGCGGCAACCAAAGGCGAGCAGGGCTATGCCGAGGCCGAATCGTGGATCAGGGCGGTGGCCTTCGGTTTCCATGAGGCCACCCGCGAGCCGGAGCGGATAGCGAGGTCCCTTGACAGCTACCGGGCAGACCAGCGCATCCTCACCGGCGCTTATCAGATCCGTGACGTGGCGCCGGGATCACTGCCGGCAGAAGTTCCCGTCGCCACCTTCGCTACTCTTCGCAAAACGCTCAACATCGGTTTCGGCCGCCAGCTGGAGACCCAGATGGTCACCGCCGTCACGGTGCGGACATCCCACCGGCGCCGGGGCCTGTTGCGCCGGATGATGTCAGAGGACCTGGACATGGCACGGCGGGATGGCATGGCTATGGCTGCCCTGACGGCATCCGAGGGATCGATCTATGGACGGTTCGGTTACGGGGTAGCCAGCTTCGAACGCAGCGTGAAAGTGGACACCACCGCGAGGTTCAAGCTGAACCACCAGCCTGTGGGCTACATTGAAGTCGCCGATCCGAAGGTGCTGCTGGACCTGGGTCCCCAGGTTTTCGACAAGGTGCACCGGTTGACTCCGGGCTCGATGGGCCGCCAGGACTGGTACCGTCTCCTGGCGTCGGGTTCCATGGGACCGGACGGCAAGGAGGATCCGGCCATCAAAGTAGCCCTGCACTACGGGCCGCACGGAGCTGTTGACGGGTACGTGTCCTACAAGTTCCTCGGTTGGGACAAGGAGCCCTACACCATGGAGATAGTGGACCTTGTTGCCGCCAGCAATGAGGCCTACCTTGAGCTCTGGCAGTTCCTGGGTGCCATCGACCTGGTGGAGCGGGTGACGTGGGAAGAAGCGCCGTTGGACGACCCGCTCACGTGGGCCCTGAACGACCCCCGCTGCATCGACTCCTCGAACAGCAGGGACATGCTGTGGCTCAGGATCCTGGACGTTCGGAAAGCACTGGAGGCGCGGTACTTTCCGGTGGAGGGCCGGCTGGTGCTGGAAGTCCTTGATCCGCTGGGGCTGACTGCAGGAACCTTTGCGCTGGAAGTTACGGGCGGTGAGGCCGCCGTCGTTCCCTGGGAAACACCGGAGCAGGCTGACCTGACGTTGGACGTGTCAGCGCTGTCGTCGATCTATCTGGGGGCTGTTTGCCCGGTGACCCTGACGGCGGCGGGCCGGATCCGCGAGAACACGAAGGGCGCGGCGTTCCAAGCCCGGCAGATGTTCACCGTGGAGCGGTCTACGCACTGCCTCACCCACTTCTGAMDLLARLGGVDELSGDYEIRRFGAATKGEQGYAEAESWIRAVAFGFHEATREPERIARSLDSYRADQRILTGAYQIRDVAPGSLPAEVPVATFATLRKTLNIGFGRQLETQMVTAVTVRTSHRRRGLLRRMMSEDLDMARRDGMAMAALTASEGSIYGRFGYGVASFERSVKVDTTARFKLNHQPVGYIEVADPKVLLDLGPQVFDKVHRLTPGSMGRQDWYRLLASGSMGPDGKEDPAIKVALHYGPHGAVDGYVSYKFLGWDKEPYTMEIVDLVAASNEAYLELWQFLGAIDLVERVTWEEAPLDDPLTWALNDPRCIDSSNSRDMLWLRILDVRKALEARYFPVEGRLVLEVLDPLGLTAGTFALEVTGGEAAVVPWETPEQADLTLDVSALSSIYLGAVCPVTLTAAGRIRENTKGAAFQARQMFTVERSTHCLTHFNANANANANA
D1-29_025021479rpsACOG053930S ribosomal protein S1ATGACCATCACCTCCACCGAGAAGCCCGGTACCCCCGTAGTCGCGATTAACGACATCGGTACCGCTGAGGACTTCCTCGCAGCAGTCGACGCCACCATCAAGTACTTCAACGACGGAGACCTCGTCGAAGGTACTGTCGTCAAGGTCGACCGCGATGAAGTTCTGCTCGACATCGGTTACAAGACCGAAGGTGTCATCCCCTCCCGCGAGCTTTCCATCAAGCACGATGTTGATCCCGGAGACGTCGTCTCCGTTGGCGATCAGGTCGAAGCCCTGGTGCTCACCAAGGAAGACAAAGAAGGCCGCCTGATCCTCTCCAAGAAGCGCGCTCAGTACGAGCGTGCCTGGGGCGACATCGAGAAGGTCAAGGAAGAAGACGGTGTTGTCACCGGTACCGTCATCGAGGTTGTCAAGGGTGGTCTTATCCTCGACATCGGTCTGCGCGGCTTCCTGCCCGCATCCCTCGTCGAGATGCGCCGTGTGCGCGACCTTGCTCCGTACATCGGTCAGCAGATCGAAGCCAAGATCATCGAGCTGGACAAGAACCGCAACAACGTTGTGCTGTCCCGCCGTGCATGGCTCGAGCAGACCCAGTCCGAGGTCCGCTCCACGTTCCTCAACAAGCTGGAAAAGGGCCAGGTCCGTCCCGGCGTCGTTTCCTCCATCGTCAACTTCGGTGCCTTCGTGGACCTTGGCGGCGTAGACGGTCTCGTCCACGTTTCCGAGCTGTCCTGGAAGCACATCGACCACCCGTCCGAGGTTGTCGAAGTTGGCCAGGAAGTCACCGTCGAGGTCCTCGAGGTCGACCTGGACCGCGAGCGTGTTTCCCTGTCGCTCAAGGCTACGCAGGAAGATCCGTGGCAGACCTTCGCCCGCACCCACGCCCTCGGCCAGGTTGTTCCGGGTAAGGTCACCAAGCTGGTTCCGTTCGGTGCGTTCGTCCGCGTCGAAGACGGCATCGAAGGCCTGGTCCACATCTCCGAGCTCGCCGTGCGCCACGTTGAGCTGGCTGAGCAGGTTGTCTCCGTTGGTGACGAGCTGTTCGTCAAGGTCATCGACATCGACCTCGAGCGCCGCCGGATCTCCCTCTCCCTCAAGCAGGCCAACGAGGGCGTCGACGCCGAAAGCACCGAATTCGATCCTGCTCTCTACGGCATGGCCGCTGAGTACGACGAAGAGGGCAACTACAAGTACCCGGAGGGCTTCGACCCGGAGTCCAACGAGTGGCTTGAGGGCTACGAGAACCAGCGTTCGGCCTGGGAGCAGCAGTACGCTGACGCCCAGACCCGCTGGGAAGCACACAAGAAGCAGGTTGCCCAGCACGCTGCCGACGACGCTGCAGCTGCAACGTCCGGTGAGAGCGACTCCGGCACCACCAGCTACTCCTCGGAGCCGGCTGCTGAGTCCAACACCGGAGCCGGCACGCTGGCTTCGGACGAGGCTCTTGCCGCTCTGCGCGAGAAGCTGACCGGCAACTAAMTITSTEKPGTPVVAINDIGTAEDFLAAVDATIKYFNDGDLVEGTVVKVDRDEVLLDIGYKTEGVIPSRELSIKHDVDPGDVVSVGDQVEALVLTKEDKEGRLILSKKRAQYERAWGDIEKVKEEDGVVTGTVIEVVKGGLILDIGLRGFLPASLVEMRRVRDLAPYIGQQIEAKIIELDKNRNNVVLSRRAWLEQTQSEVRSTFLNKLEKGQVRPGVVSSIVNFGAFVDLGGVDGLVHVSELSWKHIDHPSEVVEVGQEVTVEVLEVDLDRERVSLSLKATQEDPWQTFARTHALGQVVPGKVTKLVPFGAFVRVEDGIEGLVHISELAVRHVELAEQVVSVGDELFVKVIDIDLERRRISLSLKQANEGVDAESTEFDPALYGMAAEYDEEGNYKYPEGFDPESNEWLEGYENQRSAWEQQYADAQTRWEAHKKQVAQHAADDAAAATSGESDSGTTSYSSEPAAESNTGAGTLASDEALAALREKLTGNPGPT0007615_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
D1-29_02503495hypothetical proteinATGTCCCGCTCCCTTGACGTCCGGTTGGCAGACGTAGACGAGGCCATGTTGGAACAGCTCATGGCTCTGGCCATGACGGATGCCTCGCCTGACGAGGTCACACCCCCGCTTGGCTCCGGCGCGGGCTGGAACACCGAGCGGATTGACTGGTTCCGGGCCTACCACCGGGCGGCGGCGGCAGGCCTGGACGGAGCGGCGCAGGAGAAGTCATGGGCGGTACTTTGCGACGGCAGCGCCGCCGGTTCCGTCAGGCTGAAGCGGACAGGGCCGGCAACGGCGGAAACCGGCATCTGGCTGGGCCGCAGTTGGCGCGGCTCCGGCATCGGAACCGCAGCGCTGACCCTGGTCCTGGCGGAGGCGCGGCGGGCCGGCCTGCAACAGGTAACGGCCACCACCACGGACGCCAACATTGGCGCCCAGCGCCTCCTCACGGCGGCAGGTGCCCTGCTGACGTCCGACGACGGGGGCGCGGTGAGTGCCGCCGTCGTACTGTAGMSRSLDVRLADVDEAMLEQLMALAMTDASPDEVTPPLGSGAGWNTERIDWFRAYHRAAAAGLDGAAQEKSWAVLCDGSAAGSVRLKRTGPATAETGIWLGRSWRGSGIGTAALTLVLAEARRAGLQQVTATTTDANIGAQRLLTAAGALLTSDDGGAVSAAVVLNANANANANA
D1-29_02504726hypothetical proteinATGAGTTCAGGGGGCGGTGGGGCCTACACTGGGGCGGTGCAAGAGCAAGACAGCCGGACCACCGCCTACACCACGCTTGCCGCAGGAACCGATTCTCGGCACGAGATCGAGCTCAAGCGGTCCCGCTTCATCACTGTGCTCCGCCGCACCGCCACAGAAGAGGCCGCGAAGGACCTGGTATCCGGATTACGCCGCGAGTTCCACGACGCCCGCCACCACTGTTCCGCCTTTGTCCTAGGCCCGGACCGCGATGTTCAGCGTTCAAACGACGACGGTGAACCCTCCGGCACCGCCGGCACGCCCATGCTCGAGGCCCTTGTCAAAAGGGAAACCACGCCGGGGGTGACGGACCTCAGCGACGTGAGCGCCGTCGTCGTGCGCTATTTTGGCGGTATCCTGCTGGGTGCCGGCGGGCTGGTCCGGGCGTACTCGGAGTCGGTGTCCGCGGCTCTGGAGCAGGCGCCGCTGGTGCGCCGCCGCCGGCTGCGGATCTGCGAAGCGTCCGTGCCGCATGCCGCCGCCGGCCGGTTGGAGAATGACCTGCGGGCGGCCGGATTCGTCATGGCGGAAACGGGATACGGCGCCCAGGATACTATCCTGCGCCTGGCCATCCCCGATGAGCCGGCGGACATCTCCGCGGCCGCGGAGCGCGTCTTGTCGCTCACTGCAGGAAAGGCCATGCTCACGCCCGGTGGAACGGAGTGGATTGATGTCCCGCTCCCTTGAMSSGGGGAYTGAVQEQDSRTTAYTTLAAGTDSRHEIELKRSRFITVLRRTATEEAAKDLVSGLRREFHDARHHCSAFVLGPDRDVQRSNDDGEPSGTAGTPMLEALVKRETTPGVTDLSDVSAVVVRYFGGILLGAGGLVRAYSESVSAALEQAPLVRRRRLRICEASVPHAAAGRLENDLRAAGFVMAETGYGAQDTILRLAIPDEPADISAAAERVLSLTAGKAMLTPGGTEWIDVPLPNANANANANA
D1-29_025051233coaECOG0237Dephospho-CoA kinaseGTGCTGAAAATCGGTTTGACGGGCGGCATCGCCTCGGGGAAGTCAGTGGTCGCCTCCCGCCTCGCCCATCTTGGGGCGGTGCTGGTTGACGCTGACGCCCTGGCCCGGGAGGTGCTGGAGCCAGGCACGCCAGGACTGGCCGCCGTCGTTGAGGCCTTCGGCAGTGGAATGTTGAATGGCGGGGGACGGCTGGACCGGGCAAAACTTGGTGCCGTGGTCTTCGGCAACCCGGAGCGGCTGGCCGTATTGAACGGCATCGTCCATCCGTTGGTGCGCCAGGCGGCGGCGGGCCTCGTGGCGGCCGCTCCCGACGGTGCCGTAGTGGTCCAGGATATTCCGCTGCTGGTGGAGACCGGCCAGGGGAGCGACTTCCACCTGGTTATGGTGGTGGATGCCCCGGACGAGGTCCGGATCCGGCGGATGCTGGACCACCGCCGCATGTCAGCGGACGAGGCCAGGTCACGAATGGCCGCGCAGGCTCCGCGCGATGAACGGCTCGCCGCTGCCGACGTGGTGCTGGACAACTCCGGCTCCATGGACGGACTGCTGGCGCAGGTGGATGCACTCTGGGGGGAGCGGCTGGCCCCGTTCGCCCGCAATCTCCTGACGCAGACGCCCGCTGACCGCCCAGGCGGACCGGTCCTGCACGCGCCTACCTCCGAGTGGCCGCGGACCGCGGAACGGCTGATCACCAGGATCCTCGCCGCGCTCCGGAAGGACGCGCCGGATGGGACGCCTCCAGTCCTCGGGGTGGATCACATCGGCTCAACGTCGGTCCCTGGCCTGGACGCGAAGGATGTTCTGGATCTGCAGGTGACAGTACTGGCGTTGGCTGCGGCGGGACCGCTGGAGCCCGTCCTGGCCGCCGCCGGATATCCCCGCGTGCACGCCATCACGGCGGATACGCCCAAGCCAACCCTGCCGGACACCACTGCCTGGGCGAAACGGTTACACGCCAGCGCCGATCCCGGCCGGGCAGTCAACCTGCATATCAGGGCCGCCGGGTCTCCCGGCTGGCGCTTCACCCTCTGTTTCCGGGACTGGCTCCGGGCCGATCCGGACGCTGCGGCGGATTATGTCGCCCTGAAACGCCGCCTTGCGGATCTTCACGCCACCGACCCCTCCACGGCCGCCTACGCCGCCGCCAAAGAGGCTTGGTTCGCCGCGGCGGAAGAGCCAATGGAGCAGTGGGCCAAACGCTCGGGGTGGGCCCCGCCGTCGTACCCGTCCTGAMLKIGLTGGIASGKSVVASRLAHLGAVLVDADALAREVLEPGTPGLAAVVEAFGSGMLNGGGRLDRAKLGAVVFGNPERLAVLNGIVHPLVRQAAAGLVAAAPDGAVVVQDIPLLVETGQGSDFHLVMVVDAPDEVRIRRMLDHRRMSADEARSRMAAQAPRDERLAAADVVLDNSGSMDGLLAQVDALWGERLAPFARNLLTQTPADRPGGPVLHAPTSEWPRTAERLITRILAALRKDAPDGTPPVLGVDHIGSTSVPGLDAKDVLDLQVTVLALAAAGPLEPVLAAAGYPRVHAITADTPKPTLPDTTAWAKRLHASADPGRAVNLHIRAAGSPGWRFTLCFRDWLRADPDAAADYVALKRRLADLHATDPSTAAYAAAKEAWFAAAEEPMEQWAKRSGWAPPSYPSPGPT0008835_6DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008835-coaE-K00859NANA
D1-29_025062100uvrBCOG0556UvrABC system protein BATGAGCCTTGCCCAGGAGATCAACCGTGTCGTAGCGCCGTTTGAAGTCATCAGCGAGTTCCAGCCGGCGGGTGACCAGCCTGCCGCCATCGCCGAGCTGACGGACCGCATCAAGAACGGCGAAAAGGACGTGGTCCTGCTCGGCGCCACCGGTACCGGTAAGAGCGCCACCACGGCGTGGCTCATCGAACAGGTCCAGCGCCCCACCCTGGTGATGGTGCAGAACAAGACACTCGCCGCCCAGCTGGCCAATGAGTTCCGGGAACTGCTGCCCAACAATGCCGTGGAGTACTTCGTCTCCTACTACGACTACTACCAACCGGAAGCCTACGTTCCGCAGACGGACACCTTCATCGAGAAGGACTCCTCCGTCAATGAGGAGGTGGAGCGGCTGCGGCACTCGGCCACCAACGCCCTCCTGACCCGCAGGGACGTGATCGTTGTCGCCACCGTGTCCTGCATCTACGGCCTCGGTACGCCGGAGGAATACATCGCCGGTATGGTCACGCTCCGCAAAGGCCAGCAGATGAACCGGGACCATCTCCTGCGCAAGTTTGTGTCCATGCAGTACACCCGCAATGACATGGACTTCCACCGCGGGACCTTCCGCGTCCGCGGCGATACCGTAGAGATCATCCCCATGTATGAGGAACTGGCGCTGCGCATCGAGTTCTTCGGGGACGAAGTAGAGAACATCTACACCCTGCACCCTGTCACCGGGGAAGTCATCCGGGACGAAACCGAAATGTACGTCTTCCCTGCGTCCCACTACGTCGCGGGACCTGAACGGATGGGACGCGCCATCAAGGCCATCGAGGACGAGCTCGCCGAACGGCTGGCGGTGCTGGAAGGCCAAAACAAGCTTGTGGAGGCACAGCGCCTGCGGATGCGCACCACGTATGACCTCGAAATGATGCAGCAGATGGGCTTCTGCAACGGCATCGAAAACTATTCCCGGCACATCGACGGCCGGCCCGGAGGAAGCGCCCCGCACTGCCTCATCGATTACTTCCCCGATGACTTCCTGCTGGTCATCGACGAATCCCATGTGACGGTTCCGCAGATCGGAGCCATGTATGAAGGTGACATGTCCCGGAAGCGGACCCTCGTGGACCACGGCTTCAGGCTTCCCTCAGCCATGGACAACCGGCCGCTGAAGTGGGACGAGTTCCTGGAGCGCGTCGGCCAGACCGTCTACCTGTCCGCGACGCCTGGGAAGTACGAACTCGGCAAGGCTGACGGTTTCGTCCAGCAGATCATCCGGCCCACCGGCCTGATCGACCCCGAAGTGGTGGTCAAGCCCACCAAAGGACAGATCGATGACCTCCTGGGCGAGATCCGGACACGGGTGGAAAAGGACGAGCGCATCCTGGTCACCACGCTCACCAAGCGGATGGCGGAGGACCTCACCGATTACCTGCTGGGCCACGGCATCAAGGTGCAGTACCTGCACTCGGATGTGGATACCCTGCGGCGCGTGGAGTTGCTGCGTGAACTGCGGATGGGCAGTTTTGACGTGCTGGTGGGCATCAACCTGCTCCGTGAAGGCCTGGACCTGCCGGAGGTGTCACTGGTCAGTATCCTGGACGCCGACAAGGAAGGCTTCCTGCGTTCTGCCACCTCCCTGATCCAGACGATTGGCCGCGCAGCGCGAAACGTGTCCGGCCAGGTCCACATGTACGCTGACCGCATCACCGACTCCATGGCCAAGGCGATCGACGAAACCAACAGGCGCCGCGCCATCCAGGTGGCCTACAACACCGAAAACGGTGTGGATCCGCAGCCGCTCCGGAAGAAGATCGCGGACATCACGGACCAGCTGGCCCGGGAGGACGCCGATACCCAGGAACTGCTCAGCAACAACCGGCTGGCCAAGGGCGCCAAACGGGGGAAGTCCACAGCAAAGGGCGCTGCCCAGGTCCGCGCAGACGGCCTGGCAGCAGCTCCGGCCGAGGACCTTGTGGGCCTGATCGAACAGCTCACCGAGCAGATGCATGGCGCAGCCGCCGAACTTCAGTTCGAGGTGGCCGCCCGGATCCGTGATGAAGTCAGCGATCTGAAGAAGGAACTCCGCCAAATGCAGGCTGCCGGGCACGCCTGAMSLAQEINRVVAPFEVISEFQPAGDQPAAIAELTDRIKNGEKDVVLLGATGTGKSATTAWLIEQVQRPTLVMVQNKTLAAQLANEFRELLPNNAVEYFVSYYDYYQPEAYVPQTDTFIEKDSSVNEEVERLRHSATNALLTRRDVIVVATVSCIYGLGTPEEYIAGMVTLRKGQQMNRDHLLRKFVSMQYTRNDMDFHRGTFRVRGDTVEIIPMYEELALRIEFFGDEVENIYTLHPVTGEVIRDETEMYVFPASHYVAGPERMGRAIKAIEDELAERLAVLEGQNKLVEAQRLRMRTTYDLEMMQQMGFCNGIENYSRHIDGRPGGSAPHCLIDYFPDDFLLVIDESHVTVPQIGAMYEGDMSRKRTLVDHGFRLPSAMDNRPLKWDEFLERVGQTVYLSATPGKYELGKADGFVQQIIRPTGLIDPEVVVKPTKGQIDDLLGEIRTRVEKDERILVTTLTKRMAEDLTDYLLGHGIKVQYLHSDVDTLRRVELLRELRMGSFDVLVGINLLREGLDLPEVSLVSILDADKEGFLRSATSLIQTIGRAARNVSGQVHMYADRITDSMAKAIDETNRRRAIQVAYNTENGVDPQPLRKKIADITDQLAREDADTQELLSNNRLAKGAKRGKSTAKGAAQVRADGLAAAPAEDLVGLIEQLTEQMHGAAAELQFEVAARIRDEVSDLKKELRQMQAAGHAPGPT0014920_1264DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702NANA
D1-29_025071044COG0861putative membrane proteinGTGCTCGAACTTCCCGTCTGGTTCGAAGTCGGCTCATTCGTCGTCCTCGGCCTCATCCTCGCTCTTGACCTTCTACTGGTGCTCCGCCGCCCACATGAGCCTTCCATGAAGGAAGCCGGCCTGTGGGTGGCTTTTTACGTGGCTTTGGCCATGGTCTTTGCGGGCGCCATGTTCATGTTCACCGGCCCGGAGTATGGCGGGCAGTTCCTTGCCGGCTGGGTCACCGAGTACAGCCTCAGCATCGACAACCTTTTTGTTTTCATCATCATCATGGCCCGGTTCTCAGTACCCCGTAAGTACCAGCAGGAAGTGCTGATGGTGGGCATCATTATTGCGCTGATCCTCCGCGGAATCTTCATCCTGCTGGGCGCCATGGTCATCGAGCAGTTCAGCTGGGTCTTCTACATCTTCGGTGCCTTCCTGCTGTGGACAGCCTGGAAGCAGGCCCAGGATGAGGGCGAAGACGAAGAGGACCGGGAAAACCCGATCATCGAGAAGCTCCGCAAGGTGATTCCGATGTCGGAGAAGTTCGACGGCGGCAAGCTGCGCACGGTGGTGGACGGCAAAAAGGTCTTCACCCCGATGCTCATCGTTTTCGTCACTATCGGCATGACCGACCTGCTGTTCGCCGTGGACTCGATCCCCGCGATCTTCGGTCTGACCCAGAGTGCCTTCATTGTCTTCACCGCGAACATCTTCGCGCTCATGGGCCTCCGCCAGCTCTACTTCCTGCTGGGCGGACTGATGAACCGGCTCATCTACCTCAAGCACGCGCTCTCGGTGATCCTCGCCTTCATCGGGGTCAAGCTGGTCCTGCACGCGATGCACGTCAACGAACTCCCGTTCATCAATGGCGGCCAGCATATCGAGTGGGCTCCGGAGATCCCCACCTTTGTATCCCTGGGTGTGATCATCGGCACGATCGTCATCGCCGTGATTGCCAGCCTGGTCAGTTCCAAGGCAAAGGCGGCCCACCTGGATCCCCGCCTTGAGGAAGATGCCAAGAAGAGCCTCAGGGACTCTGACCTCACCGACGCCGAATAGMLELPVWFEVGSFVVLGLILALDLLLVLRRPHEPSMKEAGLWVAFYVALAMVFAGAMFMFTGPEYGGQFLAGWVTEYSLSIDNLFVFIIIMARFSVPRKYQQEVLMVGIIIALILRGIFILLGAMVIEQFSWVFYIFGAFLLWTAWKQAQDEGEDEEDRENPIIEKLRKVIPMSEKFDGGKLRTVVDGKKVFTPMLIVFVTIGMTDLLFAVDSIPAIFGLTQSAFIVFTANIFALMGLRQLYFLLGGLMNRLIYLKHALSVILAFIGVKLVLHAMHVNELPFINGGQHIEWAPEIPTFVSLGVIIGTIVIAVIASLVSSKAKAAHLDPRLEEDAKKSLRDSDLTDAEPGPT0004905_699DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004905-terC-K05794NANA
D1-29_025081365rfnT_1Riboflavin transporter RfnTATGGCCCGCACCCTGAATACCGAAATCGGAGTGCGCCAGGTGCAAAGGCGCACCGTGGCGCTGCTGAGCGCGGCCCAGGTCCTGGGCGGCATTGGAACGGGAGCAACGGTATCCGTCGGGTCCCTCCTTGCCGTGGACCTGTCGGGCTCCACTGCCTGGGCAGGGGCGGTGGCAACCATCATGACTCTGGGCGCTGCGCTGGTGGCGCTTCCCCTTGCCTCGCTGGCCGACCGCCGGGGGCGGCGGGTTGGCCAGGTCGCGGGGCTGTCTGCCGCTGTCGGAGGAGCTTTCCTGATCGTACTGTCGGTTGTGACCGGGCTTTTCGTCCTGCTGTTGGTGGGGGCAGCCGGCATCGGTGTGGGTGCCGCCGCCAGCCTGCAGGCACGCTTTGCCGCGGTGGACCTCGCCGATGCCGAACACCGCGGGCGGGCGTTGTCGTCAGTGGTGTGGGCGGTCACCGTGGGTGCGGTGGCCGGACCCAACCTGATCCAGCCCGGAGCCGTCGTCGGACAGGCCCTGGGCCTGCCCCCCATGGCTGGTCCGTTCGTGATTTCCGGTGCTGGTCTGGTGTTGGCCACCGTCCTGCTTTTTGCCGGGCTAAGGCCTGACCCCCTCCTGCTCGCACGCGAGCTCGCCGCCCGGCAGGCCAACGGTACTGACACTGGCACGCCGCAGCCGCCGGGAAACCTGCAGGCGGCTGCGCCCCGTCCTGCCTTCGGAAGTTCACTCGTCCGCGGGCTGCGGGCGATTCGGCAGTCCAGGGCGGCTGTCCTGGCACTGGCAGCTGTTGTGGGAGCCCACGCCATCATGGTGGGAGTCATGTCCATGACGCCGCTGCATCTGCAGGAACTCGTGGCAGGGCCGGGAGCCTCCCACGCCGGCCACACTGCCTCAGGCGATGTCCTGGTCATTATCGGCTTCACGATCTCCCTGCATATCGCAGGCATGTTTGCGCTGTCACCGGTCATGGGCTTGCTGACAGATAAAGCAGGCCGGACCGAGACCATCGTCCTGGGGTTTATCACGCTCATGGCTGCTGTTGCTGTTGCCGGGTTCGGGCAGGCATCAACGGCTGCCGTGGCCACCGGGCTGGTCCTGCTGGGAATAGGCTGGTCCGCGTCGACCATCGCCGGTTCCACCCTGCTGGCGGAAAGCGTGGGCCAGGAATCACGGGTTGTTGTCCAGGGCGTTTCCGACATGATGATGGGGATCGCAGGAGCGGTCGGCGGGGCCACCTCCGGGCTCATCCTCAGTTGGACGGGCTACCTCGGGCTGAACCTTGCCGGCGGCGTGGTGGGGGCGGCCGTGCTGGCTGCGGCCCTGGTGACACTTGTAGCACACCGCCGTCAGCCACTGGCCGGCTAGMARTLNTEIGVRQVQRRTVALLSAAQVLGGIGTGATVSVGSLLAVDLSGSTAWAGAVATIMTLGAALVALPLASLADRRGRRVGQVAGLSAAVGGAFLIVLSVVTGLFVLLLVGAAGIGVGAAASLQARFAAVDLADAEHRGRALSSVVWAVTVGAVAGPNLIQPGAVVGQALGLPPMAGPFVISGAGLVLATVLLFAGLRPDPLLLARELAARQANGTDTGTPQPPGNLQAAAPRPAFGSSLVRGLRAIRQSRAAVLALAAVVGAHAIMVGVMSMTPLHLQELVAGPGASHAGHTASGDVLVIIGFTISLHIAGMFALSPVMGLLTDKAGRTETIVLGFITLMAAVAVAGFGQASTAAVATGLVLLGIGWSASTIAGSTLLAESVGQESRVVVQGVSDMMMGIAGAVGGATSGLILSWTGYLGLNLAGGVVGAAVLAAALVTLVAHRRQPLAGPGPT0008460_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-29_025091344rfnT_2Riboflavin transporter RfnTGTGACTTCTTCTACCGCAGCGGCGCTGGACCCCCACCGGGTCCAGCGCCGTACTGTCCTGGTTCTTAGCCTTGCCCAGCTGCTTAGCGGGATCGGCAGTGGCGCAAGCCTGTCCGTCGGCTCCCTCCTCGCCGTCCAGCTCTCCGGCTCCAATGCCTGGGCAGGCTCGGTGACCACCGTGATGACCCTGGCGACTGCGCTTGCCGCCATGCCGCTGGCAGGACTTGCCGAACGGCGCGGCCGCCGGATTGGGCTCCTGACAGGTGTCCTGTCCGGAATGCTGGGGGCGATTCTGGTCATCGCGGCAACGGTGTCGGGGTTCTTTCCGGTGCTCCTGGCCGGAGCCGCCCTCCTGGGGCTGGCCACTGCGGCAAACCTCCAGGCCCGGTTTGCCGCGGTTGACCTGGCGGATCCGGAGCACCGGGGCCGTTCCCTTGCCATTGTTGTCTGGGCTGTCACCGCCGGAGCGGTGGCGGGCCCCAACCTGATCAGGCCTGGCGCTGTTGTGGGTGAGGCCATGGGACTGCCAGGCATCGCCGGCCCCTTTGTTTTCTCCACCGTGGGACTCGCGTTGGCGGCCCTCCTCCTGCTGGTTGCTCTGCGCCCGGATCCGTTGCTCCATGCCCTGGCCATCAGGCGGGCTGCTGGCGGCGGCGCCGATGCCGTCATCCCGGGCCCCCGCCGGGGTTCACTCCGCCGCGGGCTTGCCGCCATCCGGTCCTCGCCGCAGGCCGGCCTGGCGCTGCTGGCCGTCGTTGCAGCCCACGCCTGCATGGCAGCGGTGATGTCCATGACGCCGCTGCATCTTCAACTCCTGAGCGAAGGACCGCTGGCCTCCCATGGTGCCGGCCACGCCCACACCGCCAGTACGGACGTCTTTGTGCTGATAGGCTTCACCATTTCGCTGCACATCGCAGGGATGTATGCACTGTCTCCGGTGATGGGGTGGCTGACCGACCGTGCAGGCAGGGTTCCCGTCATCATCGGCGGGCACGGCCTGATCCTGGCGGCGGCATGCTGTGCAGGGTTTGGCGCCGGACAGCCCATCCTCGTCACCACCGGATTGGTGCTCCTGGGACTGGGCTGGTCTGCCGCCACCATCGCCGGCTCCACCATGCTGGCGGAGAGTGTCAGCGTCGATTCCCGGGTCCTGGTCCAGGGCGTTTCGGACACCCTGATGAGCGGGGCCGGAGCAATTGGTGCCGGTTTCTCGGGCGTGGTGATGAGCTGGATCGGCTACCAGGGGCTGAACATGTTTGCGGTGGCCGTTGCTGCCCTGGTGATGGCCGTGCTGGCTGCGGATTTCCGCAGCCGGGGGACGGCCAGCCCCTTAGCGGCGGGCTGAMTSSTAAALDPHRVQRRTVLVLSLAQLLSGIGSGASLSVGSLLAVQLSGSNAWAGSVTTVMTLATALAAMPLAGLAERRGRRIGLLTGVLSGMLGAILVIAATVSGFFPVLLAGAALLGLATAANLQARFAAVDLADPEHRGRSLAIVVWAVTAGAVAGPNLIRPGAVVGEAMGLPGIAGPFVFSTVGLALAALLLLVALRPDPLLHALAIRRAAGGGADAVIPGPRRGSLRRGLAAIRSSPQAGLALLAVVAAHACMAAVMSMTPLHLQLLSEGPLASHGAGHAHTASTDVFVLIGFTISLHIAGMYALSPVMGWLTDRAGRVPVIIGGHGLILAAACCAGFGAGQPILVTTGLVLLGLGWSAATIAGSTMLAESVSVDSRVLVQGVSDTLMSGAGAIGAGFSGVVMSWIGYQGLNMFAVAVAALVMAVLAADFRSRGTASPLAAGPGPT0008460_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-29_025101380pip_3Proline iminopeptidaseATGGCTAAGGCCGCACGGGCTGCGGTGCGGGCCGCCGGCCCTGTAGCCCACACGGTCCGGGCCCGCCACGAGTTCCGCGGCATGCGCACGGCAGAGCACTATTTCACCGTTCCCCTGGACCATTTCGGGCACGATGCGGTGCGCCCTGACCGGCAGACAGGGTCAGGTCCGGAAACCATCACTGTCTTCGCACGCGAGTACGTATCGGCTGCCCACACCGAGGCTGAGGCGCAGAGCCTGCCGTGGCTGCTGTTCCTCCAGGGCGGCCCGGGAGGCCGCGGGCCCAGGCTTGCCTCGCTGGGCGGCTGGAGCAAAGCGGCCGCCAAGGACTTCCGGATCCTGATGCTCGATCAGCGCGGGACCGGGCTCTCCTCGCCCATCGACCGGAATACCCTGCCGCTTCGGGGCACACCAGAGCAGCAGGCCGCGTACCTTGAGCACTTCCGGGCCGATTCCATCGTCGCCGACGCCGAGCTCATCCGCCTGGCCCTAGGCTCAGGACCCTGGACTATCTACGGCCAAAGCTACGGCGGTTTTTGCGCACTCAGTTACCTGTCCTTCGCCCCCGGGGGCGTTAAGGAGGCGCTCATCACGGGAGGCTTGGCGCCCCTCTCTGGCACGGCCGACGACGTCTACCGGGCCACCTTCCGGCGGGTAGCCGCGCGGAACGACGAGTACTTCACGTGGTATCCCGAGGACCGCACCACAGTGGAGCGGATCGCCGCCCACCTGCGTCAGGTACCCGAGGTCCTTCCCGACGGCGGGCAGCTCACCGTGGAGCGGTTCCAGATGGCCGGAGCCTTCCTGGGCGGAAACACCCGGGTGGACGGACTCCACTTTTTGCTGGAGGACGCTTTCACCGAGACACCAGATGGTACCCGGCTCTCGGACGCTTTCCTGGAACAGATGCAGGGAATCGTATCCCGGCAGTCGAACCCGCTCTATGCCCTGATGCACGAGTCAATCTATGGTCAGGGCCAGGCGACCGACTGGTCCGCCTGGCGGGTGCTCCAGGAGTATCCGGAATTCAGGCCGGAAGCAGAACCCCTGCTGCTGACCGGCGAAATGGTCTACCCGTGGTACTTCGACCAGGACCCGGCCTTGCGTCCGCTGCAAAAAGTGGCGGAACTGGTAGCGGCCAAGAAGGACTGGAAGCCGCTCTACAGTTCCTCCCGGCTTGCGGCCAACACGGTGCCCGTTGCCGCGGCCGTCTACCGTGACGACATCTACGTGGACCGCGACCTGTCGCTGGAGACCGCTGCAGCGGTCAGGGGACTGCAGGTCTGGGAGACGGCCGACTTCCACCACGACGGGATTTCGGACGACGGCGAGGCGATCTTCGGCCGCCTGCTGGGCATGGTCCGCTCAGCCCGCCGCTAAMAKAARAAVRAAGPVAHTVRARHEFRGMRTAEHYFTVPLDHFGHDAVRPDRQTGSGPETITVFAREYVSAAHTEAEAQSLPWLLFLQGGPGGRGPRLASLGGWSKAAAKDFRILMLDQRGTGLSSPIDRNTLPLRGTPEQQAAYLEHFRADSIVADAELIRLALGSGPWTIYGQSYGGFCALSYLSFAPGGVKEALITGGLAPLSGTADDVYRATFRRVAARNDEYFTWYPEDRTTVERIAAHLRQVPEVLPDGGQLTVERFQMAGAFLGGNTRVDGLHFLLEDAFTETPDGTRLSDAFLEQMQGIVSRQSNPLYALMHESIYGQGQATDWSAWRVLQEYPEFRPEAEPLLLTGEMVYPWYFDQDPALRPLQKVAELVAAKKDWKPLYSSSRLAANTVPVAAAVYRDDIYVDRDLSLETAAAVRGLQVWETADFHHDGISDDGEAIFGRLLGMVRSARRNANANANANA
D1-29_02511501hypothetical proteinATGAGTGTAATCCGCCCCGCAACAGTTCAAGACGTCCCCACGATCCTGCGCATGATCCATGATTTGGCCATCTATGAGAAGGAACCGGACGCCGTCCGGAACACCCCGGGGAAGCTTGCGGAGGCGCTGTTCGGCGAGAATCCGCGGGTGTTCGCCACGATGGCCGAGAATGAGGCCGGCGACGTCCAGGGATTCGCACTCTGGTTCCTGAACTACTCCACCTGGGAAGGCGTTCACGGCATCTACCTGGAGGACCTTTACGTCAGCCCGGAGGCGCGGGGCGAGGGCCATGGCAAGGCGCTGCTGCAGCACCTTGCGGCCACCGCCGTCGAAAACGGTTATGCACGGGTGGAGTGGAGCGTCCTGGACTGGAACGAACCGTCCATCAATTTCTACCGGAACCTCGGTGCGTTCCCCATGGACGGCTGGTCCACGTTCCGGCTGACCGGAGATGCGCTGGAACACTTCGGCAGCACCCGCCCCGTGTCTGTCCATGGCTAAMSVIRPATVQDVPTILRMIHDLAIYEKEPDAVRNTPGKLAEALFGENPRVFATMAENEAGDVQGFALWFLNYSTWEGVHGIYLEDLYVSPEARGEGHGKALLQHLAATAVENGYARVEWSVLDWNEPSINFYRNLGAFPMDGWSTFRLTGDALEHFGSTRPVSVHGPGPT0007790_685DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657NANA
D1-29_025122547hypothetical proteinATGAAACTCGTTGACCAGCTGCCCGTCCTGTCCGTTCCAAGCCTTTCCGGAGCGGGCATCGATCCTGACGCTTTGTACACACAATTCCTTGAGTGGACTGACAGCCGCGGACTTGCCCTGTATGCGGCACAGGACGAAGCCATTATGGAGTTGGCCACCGGCGCCAACGTCATCCTGGCTACCCCGACGGGCTCGGGGAAGTCGCTTGTTGCGATAGCCGCCCATTTCCAGGCCATGTCCCGCGGGCAGCGAAGCTACTACACGGCGCCCATCAAGGCCCTGGTGTCGGAGAAATTCTTTGCGCTGTGCGACATTTTCGGGGCTGAAAACGTCGGTATGATCACGGGCGATTCCGGGGTTAACCAGGATGCCCCGATCATCTGCTGTACAGCCGAGATCCTGGCCAACATAGCTCTCCGGGAAGGCGCCGGCGCCGACCTGGGAGCCGTCATTATGGACGAGTTCCACTTCTACTCCGATCCGCAGCGCGGCTGGGCGTGGCAGGTTCCGCTGCTGGAACTCCCGCAGGCCCAGTTCCTCCTGATGTCCGCGACGCTGGGCGACGTCAGCCGGTTCGAGGAAGGCATCACCGGGCTCACCGGCCGTCCCACCACAACCGTGAGTTCAGCGGAACGGCCCATCCCGCTGCACTACTACTACCACCAGACGCCTGTGCACGAGACGCTTGAAGAGCTCCTCTCGACGCGCCAGGTGCCGGTCTATGTGGTGCATTTCAGCCAGATCGAAGCCATTGACCGCGCCCAGAACCTGATGAGCATCAACGTCTGCACCCGTGAGGAAAAAGACAAGATCGCGGAGCTGATCGCCAACTTCCGTTTCGCCGCGGGGTTCGGGAAAACCCTCAACCGGCTGGTGCGGCACGGTATCGGCGTCCACCATGCAGGGATGCTTCCCAAATACCGGAGGCTGGTGGAGCAGCTCGCCCAGGCGGGCCTGCTGAAGGTTATCTGCGGGACCGACACCCTGGGCGTGGGTATCAACGTGCCCATCCGCACCGTCCTGCTCACGGCCCTGAGCAAGTACGACGGCGTCCGTACCCGCCTGCTTAACTCCCGGGAGTTCCACCAGATTGCGGGGCGCGCCGGCCGCGCCGGCTATGACACTGCCGGAACCGTTGTGGTCCAGGCCCCCGAGCACGTGACAGAGAACGTCAAAGCGATGGCCAAGGCCACGGCCAAATTCGGCGACGACCAGAAGAAGCTTCGCCAGGTGGTGAAGAAGAAACCTCCCGAAGGATTTGTCTCTTGGGGCGAACCGACTTTTAAGCGCCTGGTGGAATCGGTCCCGGATCCGCTGACTTCCAGCTTCAGCGTCACCCATTCGATGCTGATGAACCTGATGGAGCGGCCTGGTGACCCCTTCACCGCCGCACGGCGGCTGCTGACGGAGAACCATGAGCCACGGTCCTCCCAGCTGCAGCTGATGAAAAAGGCACTGGGGATCTATCGGGAACTGCTGGCGGCCGAAGTGGTGGAGCGCATCCCGCTGGAGCAGCAGGGCGCGGATGGCCGCAGCGTGCGGCTGACAGTCCATCTGCAACCGAACTTTGCGCTGAACCAGCCGCTTTCCCCGTTTGCGCTGGCAGCACTGGAACTGCTGGATCCGGACTCGGCGTCGTACGCATTGGACGTGGTGTCCGTGATCGAAGCGACCCTGGAAAAACCCCGGCAGATTCTCTCCGCCCAGCAGAAAAAGGCCCGCGGTGAGGCAATCGCTGCCATGAAGGCTGACGGTATCGAGTACGACCAGCGGATGGCGATGCTGGAGGAGGTGACGTATCCGCAGCCTCTGGCCGAAATCCTGGGCGAGGCCTTTGAGGTCTACCGCAAGGCCGCGCCCTGGGTGGGCGACTTCGAGCTGGCCCCCAAGTCCGTGGTCCGTGACATGTATGAACGGGCCATGAACTTTGGCGAATTCGTCCAGTTCTACGGCCTGGCCCGCTCCGAGGGAATTGTCCTGCGCTACCTCGCGGACTGTTTCAAGGCGCTCCGCCAGACAGTGCCGCAGGACCTGCTCCGGGAGGACCTCGAGGATCTGATCGCCTGGCTGGGTGAATTGGTGAGGCAGGTCGATTCGAGTTTGCTGGATGAATGGGAGGAACTGACCTCCGGCGCCGCGCCCACTCCGCATGACGCCCCGCCGCCTCCTCCCCCTTCACTGACGTCCAACGTCCGGGCCTTCCGGGTGATGGTCCGCAACGAGATGTTCCGGCGGGTGGAACTCTTCGCGGATGAGAACGCAACCGCCCTGGAAGAACTCGACGGCGGCGCCGGCTGGGACGCTGACCGCTGGGAGGACGTCCTGGACGACTACTTCGACGAACATAACGACATCGGCACCGGCCCTGACGCCCGCGGGCCGGAGCTGCTGATCATCACCGAAGAGCCCGGGCAGTGGAAAGTACGCCAGATCTTTGACGATCCCGGAAAGAACCATGACTGGGGAATTTCGGCTGTGGTGGATCTGGCCGCGTCTGACGAAACGGGTACGGCCGTAGTCCGCGTGACCGACGTCAACCGGCTCTGAMKLVDQLPVLSVPSLSGAGIDPDALYTQFLEWTDSRGLALYAAQDEAIMELATGANVILATPTGSGKSLVAIAAHFQAMSRGQRSYYTAPIKALVSEKFFALCDIFGAENVGMITGDSGVNQDAPIICCTAEILANIALREGAGADLGAVIMDEFHFYSDPQRGWAWQVPLLELPQAQFLLMSATLGDVSRFEEGITGLTGRPTTTVSSAERPIPLHYYYHQTPVHETLEELLSTRQVPVYVVHFSQIEAIDRAQNLMSINVCTREEKDKIAELIANFRFAAGFGKTLNRLVRHGIGVHHAGMLPKYRRLVEQLAQAGLLKVICGTDTLGVGINVPIRTVLLTALSKYDGVRTRLLNSREFHQIAGRAGRAGYDTAGTVVVQAPEHVTENVKAMAKATAKFGDDQKKLRQVVKKKPPEGFVSWGEPTFKRLVESVPDPLTSSFSVTHSMLMNLMERPGDPFTAARRLLTENHEPRSSQLQLMKKALGIYRELLAAEVVERIPLEQQGADGRSVRLTVHLQPNFALNQPLSPFALAALELLDPDSASYALDVVSVIEATLEKPRQILSAQQKKARGEAIAAMKADGIEYDQRMAMLEEVTYPQPLAEILGEAFEVYRKAAPWVGDFELAPKSVVRDMYERAMNFGEFVQFYGLARSEGIVLRYLADCFKALRQTVPQDLLREDLEDLIAWLGELVRQVDSSLLDEWEELTSGAAPTPHDAPPPPPPSLTSNVRAFRVMVRNEMFRRVELFADENATALEELDGGAGWDADRWEDVLDDYFDEHNDIGTGPDARGPELLIITEEPGQWKVRQIFDDPGKNHDWGISAVVDLAASDETGTAVVRVTDVNRLNANANANANA
D1-29_02513780tam_1COG4106putative trans-aconitate 2-methyltransferaseGTGAAGTGGGACCCTTCAAGGTATGTTCAGTTCGGCGACTACCGGGACCGGCCATTTTTTGATCTGACCGGCCGGATCCACACCCAGAACCCGCATGAGGTGGTGGACCTCGGATGCGGGCCGGGGAACCTCACCGCAACCCTGGCCCGCCGTTGGCCCCACGCCAAGGTGCTGGGGCTGGATTCGTCCGCCGAGATGCTGGCCAGGGCGGCAGCGGAAGCCCGTGAGGAACCCCGGCTGCGCTTCGAGTTCGAGGATATTGCCGAGTGGATGCCGTCGCCCACTACGGACGTGGTGGTCTCCAACGCGGCGCTGCAGTGGGTTCCCGGCCATCAGGACCTGCTGGCCCGGTGGCTTGACCGGCTGAAACCGGGCGCGTGGTTCGCCATGCAGGTCCCCGGCAACTTCAATGCACCGTCCCATGTCCTGATGCGGGAACTGGCTTCGACTCCCCGCTGGAAACCAAAGCTGGAAGGCGTGCTGCGTGGCGGGGAGTCGGTGGGGGAGCCCGCCGACTACCTCGAAATCATGCTTGACGCGAACTGTAGGGCTGACAGCTGGGAAACCAGTTACCTGCAACTCCTCACAGGCACTGATCCAGTACTGGCGTGGGTGCGGGGAACGGCTTTGCGGCCGGTCCTTGCTGCACTTCCTGCCGAGGAGGCACTCGCCTTCGAGGCCGAGTATGCAGCGGCGCTCTCGACGGCATACCCGGGAACCAAGCACGGCACTGTGTTTCCGTTCCGGAGGATTTTCGCCGTGGCACGGAAGAAAGGCTGAMKWDPSRYVQFGDYRDRPFFDLTGRIHTQNPHEVVDLGCGPGNLTATLARRWPHAKVLGLDSSAEMLARAAAEAREEPRLRFEFEDIAEWMPSPTTDVVVSNAALQWVPGHQDLLARWLDRLKPGAWFAMQVPGNFNAPSHVLMRELASTPRWKPKLEGVLRGGESVGEPADYLEIMLDANCRADSWETSYLQLLTGTDPVLAWVRGTALRPVLAALPAEEALAFEAEYAAALSTAYPGTKHGTVFPFRRIFAVARKKGNANANANANA
D1-29_025141740COG1132putative ABC transporter ATP-binding proteinGTGCTTTTCGGGATGATGATCCGGCTGTTGGCTGGCCACAAGGCAACCGTCATGGCGATTGTCCTCCTCCAGCTGCTCCAGACTGCCGGCAACCTCCTGCTTCCCACCGTGAATGCGGCCATCATTGACGATGGAATCGTGGCCGGGGACACGCCGGTGATCCTGCGCCTGGGCTCGGTGATGACTGCCATTGCGGCTGTCCAGGCGGGAGCGGCCATCGCCGCGGGATACCTCGGTGCCATGGTGGCCATGAAGCTCGGGCACCAGCTTCGTGCCGAGCTCTTTGGCAAAATCCAGACCCTGTCATCCCAGGAGGTGGCTGCGTTCGGCACCCAGAGCCTGGTCACGCGGGCCACCAACGATACCCAGCAGATCCAGTCATTCGCCGTTTTAGTGTTCACCATGCTTATTGCGGCGCCCGTCATGGGAGTGGGCGGTGTATTGCTGGCCCTGCATCAGGACGTAGTGCTCTCGGCGGTGGTCATCATCATCGTGCCGGTGCTGCTCCTGATCATGTACCTGATCGTTCGGCGCCTCGTGCCGCTGTACCGGGAAGGGCAGGACCTGCTTGACCGCACCGGGGCCGTGCTGCGTGAACAGATTATTGGAGCCAACGTGATCCGGGCCTTTGTCCGGCAGGATCATGAGACCCGGCGATTCGCCCGGACAAACGCCAGCCTTACAGGAAACAATCTGCAATCAGCCCTCGTGGTGGCTGGGATGTTGCCGCTGATCATGATCGTGGTGAACCTCTCATCGGTGGCAGTTGTGTGGTTTGGCGGACACCGGGTGCAGAACGGTGAGATGGAGATCGGCGCCTTAACGGCGTTTGTTGCCTACATCCTGCAGATTCTGCTGGCCATCATGATGGCAATGTATGTGCTCATGACGGCTCCCCGTGCCGCAGCCTGCGCCGAGCGGATCCGGACCGTCCTGGACGCCGAGCCCATGGTGAGGGACGGTGCCGACCGTCGGGACGGGGACCTGGTTTTCGACGGCGGCAGCGTTTCGTTCCGCAATGTCAGCTTCTCCTACCCCGGCGCGGAAGCCCCGGTTCTGGAAAACATCAGCTTCACTGCCCGGCCCGGCACCACCACTGCCATCGTGGGGTCCACGGGCAGCGGAAAATCGACCCTTCTGAACCTGATTCCCCGGTTTATGGATTCCACCGGCGGACTCATCACCGTAGGCGGCCGGGATGTCCGGGCCGTCCCCCTTGACTTGCTGCGCAGGCAGATGTCCGTAGTGCCGCAGCGCTCCCACCTGTTCACGGGCACAGTCGCCGACAACCTGCGGATCGCTGCACCGGCAGCGACGGATGCCGAATTATGGGAGGCGCTGGACATTGCCCAGGCATCGGGCTTTGTACGCCAACTGCCACTGGGCCTGCAGACGGCCGTGGGACAAGGCGGAACAAATCTCTCCGGCGGCCAGCGCCAACGGCTCTGCATTGCCCGGGCGCTGCTTCGTCCGGCTTCCCTGTACCTCTTCGACGACAGCTTCTCCGCCCTGGACTACGACACCGATGCCCGGCTGAGGGACGCACTGGAAGCCGCCCTGCACCTGGCGGTGGTCATCGTCGTGGCGGAACGCATCGCCACCGTGGAGGGCGCCGGGCTGATTCTGGTGCTCGACGACGGCCGCCTCGTGGCACAGGGCACCCACCTTGAGCTGCTGGCGGCCTCCGCCACATACCGCGAAATCGCGGAATCACAGCTTGCCCTGGAGGACACCCTGTGAMLFGMMIRLLAGHKATVMAIVLLQLLQTAGNLLLPTVNAAIIDDGIVAGDTPVILRLGSVMTAIAAVQAGAAIAAGYLGAMVAMKLGHQLRAELFGKIQTLSSQEVAAFGTQSLVTRATNDTQQIQSFAVLVFTMLIAAPVMGVGGVLLALHQDVVLSAVVIIIVPVLLLIMYLIVRRLVPLYREGQDLLDRTGAVLREQIIGANVIRAFVRQDHETRRFARTNASLTGNNLQSALVVAGMLPLIMIVVNLSSVAVVWFGGHRVQNGEMEIGALTAFVAYILQILLAIMMAMYVLMTAPRAAACAERIRTVLDAEPMVRDGADRRDGDLVFDGGSVSFRNVSFSYPGAEAPVLENISFTARPGTTTAIVGSTGSGKSTLLNLIPRFMDSTGGLITVGGRDVRAVPLDLLRRQMSVVPQRSHLFTGTVADNLRIAAPAATDAELWEALDIAQASGFVRQLPLGLQTAVGQGGTNLSGGQRQRLCIARALLRPASLYLFDDSFSALDYDTDARLRDALEAALHLAVVIVVAERIATVEGAGLILVLDDGRLVAQGTHLELLAASATYREIAESQLALEDTLPGPT0029025_1008DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887NANA
D1-29_025151824COG1132Fatty acid ABC transporter ATP-binding/permease proteinGTGAAGACTGTGACGGCGCCGGTGGCGGCAGACGCGGCTCCGGGATTGTTCTGGCCCACGTCCCGCCGCCTGCTCGGCCTGCTGACGCCGTACCGATGGCATATGCTGACAGCCATCGTGGCAACCTGCGGGTTTGCCGGCCTCAACGTTGCCGCACCAAAGTACCTGGGAGACGCCACCGACGTTGTGGTGGACGGCGTGTTTGACGGCGTCCTCAACGGGCAGAGGCTGGGGGGCCTGCTGACCGGCGTGGCGCTGATGTACGTCGGAGCGTCGCTGTTCAACTGGGTCCAGGGCTCGCTGACAGCGAGTTCAGTTCATGGCCTTATGTACCGCCTGCGGGCCTCCCTGGAGGACAAGCTGCACAGACTGCCGTCAACGTACTTCCAGGAACAGTCCCGCGGTGATGTCCTCAGCCGGGCCACGAATGACATCGACAACATTTCCCAGGCGCTCAACCAGATCCTGACCCAGTTGATCATGTCCGTCCTGATGCTCTGTGGTGCCTTGGCCATGATGCTCTGGATTTCCCCGCTCCTGGCCGGCCTCGCCCTGGCGTTTGTCCCGTTGTCCATGCTGATCACTGTCCTGGTGGCCCGCCGGTCCCAGGCGCAGTTCGCACGCCAATGGACCGAAACGGGGGAACTGAACGCGCACGTGGAGGAGTTCGTGAGCGGCCATGAGGTGATCAAGGCCTTCGGCTACCAGGAACAGGCAGCGGCAGTCTTTGCTGCGAGTAACGACAGGCTGGCCCGGGCGGCGGCGAAGGCGCAGTATTCATCCGGCATGGTGCAGCCGCTGATGGTGCTGGTGGGCAACCTTAATTACATCGCGGTGGCAGTGGTCGGCGCCCTGCAGGTTACCGCGGGCGCCATGACCATTGGCGGTATCCAGGCCTTCATCCAGTTCAGCCGGCTTTTTACCCAGCCCGTCGGACAGATTGGCGGCATGCTGAACGTTATCCAGTCGTGCGCGGCGTCGGCAGGACGGGTTTTCGCGCTCCTTGACGCGGACGAAATTCCGCCCGAACCACTGAGAATGCGCACACCACCGGAGGCGGGCGGACCCATTGTTTTTGACGACGTCACCTTTGGGTACCAGCCATCCGTCGCCGTCGTCCGTAACCTGTCGTTTACTGTGGCGCCCGGACAGACAGTGGCAATTGTCGGGCACACCGGAGCGGGCAAAACCACCGTCGTCAACCTTCTGATGCGTTTTTATGAAATCGACACGGGCCGGATCACCATGGGCGGGACGGATATTGCCACCATGCCACGGGACACCCTGCGGGCTGAATTCGGGGTGGTGCTCCAGGACGCCTGGCTGTTCGCCGGCAGCATCCGGGAGAACATCGCTTACGCCCGGCCAGGGGCAACTGACGCGGACATTGTGGCCGCAGCAGAAGGAAGCCACGTAGACCATTTCGTCAGGTCGCTCCCGGCAGGATATGACACCATGCTGGACAACGGCGGAGACCCGCTCAGCCAGGGTCAGCGCCAGCTGATCACTATTGCCCGGGCCCAGCTCGCGGGCCGCAGCGTCCTGGTCCTGGATGAGGCCACCAGCTCCGTGGACTCCCGGACCGAACTCCTGATCCGCCAGGCCATGCGCCGGCTGCGGCAGGGGAGGACCAGTTTTGTTATCGCCCACCGTTTGTCCACAGTCCGTGACGCTGATCTAATCTTGGTCATGGATCATGGACGCATCATGGAGCAGGGAACCCACACTGCGTTGCTGGCAGCCAACAGCTATTACTCCAGGCTTTACAACGCCCAGTTCGCCGGCCGTACGGAAAAACCAGATGTCCTGGAGGCCGGGCTATGAMKTVTAPVAADAAPGLFWPTSRRLLGLLTPYRWHMLTAIVATCGFAGLNVAAPKYLGDATDVVVDGVFDGVLNGQRLGGLLTGVALMYVGASLFNWVQGSLTASSVHGLMYRLRASLEDKLHRLPSTYFQEQSRGDVLSRATNDIDNISQALNQILTQLIMSVLMLCGALAMMLWISPLLAGLALAFVPLSMLITVLVARRSQAQFARQWTETGELNAHVEEFVSGHEVIKAFGYQEQAAAVFAASNDRLARAAAKAQYSSGMVQPLMVLVGNLNYIAVAVVGALQVTAGAMTIGGIQAFIQFSRLFTQPVGQIGGMLNVIQSCAASAGRVFALLDADEIPPEPLRMRTPPEAGGPIVFDDVTFGYQPSVAVVRNLSFTVAPGQTVAIVGHTGAGKTTVVNLLMRFYEIDTGRITMGGTDIATMPRDTLRAEFGVVLQDAWLFAGSIRENIAYARPGATDADIVAAAEGSHVDHFVRSLPAGYDTMLDNGGDPLSQGQRQLITIARAQLAGRSVLVLDEATSSVDSRTELLIRQAMRRLRQGRTSFVIAHRLSTVRDADLILVMDHGRIMEQGTHTALLAANSYYSRLYNAQFAGRTEKPDVLEAGLPGPT0029030_1776DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888NANA
D1-29_02516378hypothetical proteinATGAGTGCCGGGAACAGCTTTCCGGGGAGCTGGAAGCCCAACCAGGCCAGCACGGTGGCGCTGTTCGAACAGTTGCGGCTGCACGTCATCAAACTGGCGGACAGCGGAGTACTGCCACCGGGTACACGGCTTCCCGCAGTGCGGGCCCTGGCCGAACGGCTGGATGTGGCCCCGCACACTGTGGCCCGGGCCTACAAGGAACTTGAGGCGGCAGGCGTGGTGGCCACCCGCGGGAGAAACGGCACGGTGGTCTGCGCGCGGGATGAACGGTGGAACGCACTCTCCGCTGCGGCTGCGGCATACGCGGGAGCAGCCAAGGCCCAGGGTGCCTCGTTCGCCGAGGCGGTTCAGCTGCTGGCCGCGGCATACGACGACTAAMSAGNSFPGSWKPNQASTVALFEQLRLHVIKLADSGVLPPGTRLPAVRALAERLDVAPHTVARAYKELEAAGVVATRGRNGTVVCARDERWNALSAAAAAYAGAAKAQGASFAEAVQLLAAAYDDNANANANANA
D1-29_025172928uvrA_1COG0178UvrABC system protein AGTGCCTAAAGCCGTAGCTGAAGAAACAGCAGTCGAACCCGCTCCCGCCACCGCAGCCCGGATCCCCGTCAAGCCCGCGCGTCCGGACCTGTCACGCCTGGTTGTCAAGGGCGCGCGCGAGCACAATCTGCGCAACGTGGACCTCGACCTGCCCCGCGACGCCATGATCGTCTTCACAGGCCTGTCCGGTTCCGGCAAGTCTTCCCTTGCCTTTGACACCATCTTCGCCGAGGGACAGCGGCGCTACGTTGAGTCCCTTTCCGCCTACGCGCGTCAGTTCCTGGGCCAGGTGGATAAACCTGACGTTGACTTCATCGAGGGACTGTCCCCGGCCGTGTCCATCGACCAGAAATCAACCAGTAAGAACCCGCGTTCCACCGTTGGCACCATCACGGAAATTTACGACTACATGCGCCTGCTCTGGGCGCGCGTGGGGCGTCCGCACTGCCCGGTCTGTGGTGAGCCCGTGATCAAGCAGACCCCCCAGCAGATTGTGGACCAGCTGCTGGAGCTCGAGGAGGGAACACGTTTCCAGATCCTCGCCCCGGTGGTCCGGGGACGAAAAGGCGAATTCGTGGACCTCTTCAAGGAGCTGACCGCCAAGGGCTACTCCCGTGCCAGGGTGGATGGCGAGCTGGTCCAGCTCAGTGACGCCCCCAAGCTGGGCAAGCAGTTTAAGCACACCATTGAGGTGGTGGTTGACCGCCTGGTGGTTAAGGAAGGCATCAGCCAGCGCCTTACCGATTCCATCGAAACCGCGCTGTCCCTCGCCGAGGGCCGGGTGCTGGCAGATTTTGTCGACCTCGACGCCGACGATCCCGCCCGGCTGCGCGCTTTCTCCGAAAACCTTGCCTGCCCCAACGAACACCCGCTGGCCATCGATGAGATCGAGCCCCGCTCATTCTCCTTCAACAACCCCTTCGGCGCCTGTGCGGCCTGCAGCGGCATCGGCACCAAGCTGGAGGTGGACGAGGAACTGATTGTCCCTAATTCGGAGCTGTCACTGGCGGAAGGGGCCATTGCCCCCTGGTCCCTGGGGACCGCCACCACTGAGTACTGGAACAGGCTGCTCGAGGGCCTGGCGAAGGAACTTGGGTTTTCCATGGACACCCCCTGGGAGGAGCTGGGCAACGACGTCCGCCAGACCGTGCTGCACGGGAAGGATCACAAGGTGGTGGTCCAGTACCGTAACCGCTTTGGCCGGGAACGGAAGTACAGCACAGGCTTTGAAGGCGCCATCCAGTACGTCCACCGGAAACATGGCGAGACAGACTCCGACTGGGCCCGGGACCGCTACGAAGAATACATGCGGCAGATCCCTTGCCCCGCCTGCAACGGCGCCCGGCTGAACCCGGCGTCGCTGTCCGTCCTGATCAACGGAAAGTCGATTGCCGACGTCGCGGCCTTGCCCATGCGGACCTGCGCGGACTTCCTGAACAACCTGGTGCTTACCGGCCGGGAGGCCCAGATTGCGCACCAGGTCCTGAAGGAGATCCAGGCACGCCTGACGTTCCTCCTTGACGTGGGCCTGGAGTACCTGAACCTCGAACGGCCCTCCGCCACCCTGTCGGGGGGCGAGGCTCAGCGAATCCGGCTGGCAACCCAGATCGGTTCCGGCCTGGTGGGAGTCCTGTACGTCCTGGATGAGCCGTCCATCGGGCTGCACCAGCGCGATAACCGCCGGCTCATCGAGACACTCACCCGGCTCCGCGACATGGGAAACACCCTCATCGTGGTGGAGCACGACGAAGACACCATCCACGAGGCCGACTGGATTGTGGACATCGGACCGGGCGCAGGCGAGCACGGTGGGGAGGTAGTGCACTCGGGCTCCTACCAGGACCTGCTGAAGAACCGCGCCTCCCTGACCGGCGACTACCTGTCGGGACGAAAGAAAATCGACATCCCCAAGAAGCGGCGCAAATACGACAAAAAGCGTGAACTCAAAGTGGTGGGGGCCCGCGAGAACAACCTGATTAATGTCGATGCGGCTTTCCCGCTGGGGCTCTTCACGGCGGTGACCGGCGTGAGCGGCTCCGGTAAATCCACCCTTGTCAACGAAATCCTTTACAAGGTGCTGGCCAACAAGCTCAACGGTGCCAAGCAGGTCGCCGGACGGCACAAGTCCGTTCAGGGCCTTGAGCACCTGGACAAGGTGGTCCACGTTGACCAAAGCCCCATCGGGCGCACCCCCCGGTCCAACCCGGCCACGTACACAGGCGTCTTCGACAACATCCGTAAGCTCTTCGCCGAGACCACTGAAGCCAAGGTGCGCGGCTATCTGCCCGGCCGGTTCTCCTTCAACGTCAAGGGCGGGCGCTGCGAAGCCTGCTCCGGCGACGGCACACTGAAGATTGAGATGAACTTCCTCCCCGACGTCTACGTGCCCTGCGAGGTCTGCCATGGCGCGCGCTACAACCGGGAGACGCTTGAGGTGCACTACAAAGGCAAGACCATCGCCGATGTATTGAACATGCCCATCGAAGAGGGCGCCGAATTCTTCGCGGCCTTTTCGCCTATCGCCCGGCACCTGAACACCCTGGTGGACGTAGGGCTGGGCTATGTGCGCCTGGGACAGCCTGCCACCACCCTGTCCGGCGGAGAAGCCCAGCGCGTCAAGTTGGCGGCTGAACTCCAAAAGCGGTCCAACGGCCGCAGCGTCTACGTTCTGGACGAGCCAACCACCGGCCTCCACTTTGAGGACATCCGCAAGCTGCTGCTGGTCCTCCAGGGCCTGGTGGACAAGGGCAACACGGTCATCACCATCGAGCACAATCTCGACGTCATCAAGAGCGCTGACTGGATCGTGGATCTTGGTCCTGACGGCGGCTCCGGAGGCGGGCAGATTGTCGCCACGGGAACCCCTGAACAGGTGGCAAAATCCGAGGAAAGCCACACCGCCGCCTTCCTGGCCGAGATTCTGGGCTAGMPKAVAEETAVEPAPATAARIPVKPARPDLSRLVVKGAREHNLRNVDLDLPRDAMIVFTGLSGSGKSSLAFDTIFAEGQRRYVESLSAYARQFLGQVDKPDVDFIEGLSPAVSIDQKSTSKNPRSTVGTITEIYDYMRLLWARVGRPHCPVCGEPVIKQTPQQIVDQLLELEEGTRFQILAPVVRGRKGEFVDLFKELTAKGYSRARVDGELVQLSDAPKLGKQFKHTIEVVVDRLVVKEGISQRLTDSIETALSLAEGRVLADFVDLDADDPARLRAFSENLACPNEHPLAIDEIEPRSFSFNNPFGACAACSGIGTKLEVDEELIVPNSELSLAEGAIAPWSLGTATTEYWNRLLEGLAKELGFSMDTPWEELGNDVRQTVLHGKDHKVVVQYRNRFGRERKYSTGFEGAIQYVHRKHGETDSDWARDRYEEYMRQIPCPACNGARLNPASLSVLINGKSIADVAALPMRTCADFLNNLVLTGREAQIAHQVLKEIQARLTFLLDVGLEYLNLERPSATLSGGEAQRIRLATQIGSGLVGVLYVLDEPSIGLHQRDNRRLIETLTRLRDMGNTLIVVEHDEDTIHEADWIVDIGPGAGEHGGEVVHSGSYQDLLKNRASLTGDYLSGRKKIDIPKKRRKYDKKRELKVVGARENNLINVDAAFPLGLFTAVTGVSGSGKSTLVNEILYKVLANKLNGAKQVAGRHKSVQGLEHLDKVVHVDQSPIGRTPRSNPATYTGVFDNIRKLFAETTEAKVRGYLPGRFSFNVKGGRCEACSGDGTLKIEMNFLPDVYVPCEVCHGARYNRETLEVHYKGKTIADVLNMPIEEGAEFFAAFSPIARHLNTLVDVGLGYVRLGQPATTLSGGEAQRVKLAAELQKRSNGRSVYVLDEPTTGLHFEDIRKLLLVLQGLVDKGNTVITIEHNLDVIKSADWIVDLGPDGGSGGGQIVATGTPEQVAKSEESHTAAFLAEILGPGPT0014915_1411DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
D1-29_02518717COG05465'-nucleotidaseGTGACTCAAACAACAGTGCCCGTGATCTTTGACCTGGACGGCACTCTTGTCGATCCTGCAGGCGGAATTACAGACGGAATTGCAAGTGCCCTTCGGAAGCTGGCACTCCCCGTTCCCAGCCAGGACCTGCTGGACGCGATGATCGGCCCGAAACTGAGCGACTCCCTGTTGAACGTCGCCATGGTTCCAGCGGACCTGCTTGATGATGCCATCCGCCTCTACCGGCAGTACTACGTCACCACGGGCATCGGCCAGGGACGGCTGTACCCGGGAATCATGGACGTCCTGGACAGCTTCGCATCGGCAGGCCGGCCCGTAGCCGTGGCAACCCAGAAACCCGAAGGCCTGGCGCGGACGGTCCTTGAGCACCACGGGATAGCGGGCATGTTCCAGTCCATCCGGGGCTCCGCGCACGACGAATCCGCCGGGGCTGCCGGCCCCGTGGGGAAAACAGGCATTATTGCCGCCGCCCTCCGGGACCTTTCCACCCACCACGCGGTGATGGTGGGGGACCGCGCACAGGACGTGGCCGGCGCCATCGCCAACGGGCTTGACTGCATCGGCGTGAACTGGGGTTTCGCTCCAAACGGCGAACTGCAGGATGCGGGGGCCATCATGCTGGTGGATACCGCCGCGGACCTTGTGGCCGCCATCGAACGGTTGGAAGCCATCCACGCAGCAGCCATGAGCGAGGTGCAAAACGATGGCACTCTTTGAMTQTTVPVIFDLDGTLVDPAGGITDGIASALRKLALPVPSQDLLDAMIGPKLSDSLLNVAMVPADLLDDAIRLYRQYYVTTGIGQGRLYPGIMDVLDSFASAGRPVAVATQKPEGLARTVLEHHGIAGMFQSIRGSAHDESAGAAGPVGKTGIIAAALRDLSTHHAVMVGDRAQDVAGAIANGLDCIGVNWGFAPNGELQDAGAIMLVDTAADLVAAIERLEAIHAAAMSEVQNDGTLPGPT0001730_1160DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
D1-29_02519669aasBifunctional protein AasATGGCACTCTTTGATGCGGTCCGCTGGACCACCCGAACCCTGATCTCCGGCTCCTGCCGGCCCACCGTCGTCGGCCTTGAAAACGTGCCCACGGACGGCGCATTTATCGTCGCGCCCAATCACCTTTCGTTTTTTGACAGCGTTATTGTCCAGGCCCTGATGCCGCGCCCCGTGGCCTTCTTCGCGAAGGCAGAGTACTTCAACACCGGCGGCATCAAGGGCAAGGTCATGAAGTCCTTCTTCGAGTCCGTCGGCTCCATCCCGGTGGAACGCGGCGAGCAGGCGGCCAGCGTACAGGCCCTCAAGACGCTCCTGGACATCCTTGAATCGGGCAAGGGCATCGGCATCTACCCCGAGGGCACCCGCTCCCGCGACGGTATCCTCTACCGTGGCCGGACCGGCGTTGGCTGGCTGGCCCTGACCACGGGCGCCCCCGTGGTGCCCGTCGGGCTAATCGGCACCGAGAACCTGCAGCCTGCCGGGGAGAAGGGCTTCAAGCCGCAGCATTTCACCATGAAGGTGGGGTCACCCTTGTACTTCGACAAGACAGGCCCGGACCATTCCCTTCCGGCCCGGCGCGAGGTGACGGACCGGATCATGGACGCCATCGCTGAACTCAGCGGCCAGGACCGTTCCACGACCTACAACCAGAGCAAGGCATTGGACTAGMALFDAVRWTTRTLISGSCRPTVVGLENVPTDGAFIVAPNHLSFFDSVIVQALMPRPVAFFAKAEYFNTGGIKGKVMKSFFESVGSIPVERGEQAASVQALKTLLDILESGKGIGIYPEGTRSRDGILYRGRTGVGWLALTTGAPVVPVGLIGTENLQPAGEKGFKPQHFTMKVGSPLYFDKTGPDHSLPARREVTDRIMDAIAELSGQDRSTTYNQSKALDPGPT0024380_5984DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-29_025202007uvrCCOG0322UvrABC system protein CGTGGCAGATCCAGCAAGTTACAGGCCCCAGACGGGTGAGATTCCCATCAACCCCGGGGTATACCGGTTCCGCGATCCCCATGGACGGGTCATCTATGTAGGCAAGGCGAAAAGCCTCCGCTCACGCCTGAATTCCTATTTCGCGAATCCGGCCGGTCTGCTGCCTAAAACCCATGCCATGGTCCATGCCGCCAGCAGCGTTGAATGGACGGTGGTCAGCAGCGAGCTGGAATCGCTGCAGCTGGAGTACACCTGGATCAAGGAGTTCAAGCCACGCTTCAATGTTGTCTTCCGCGACGACAAAACGTATCCGTACCTTGCCCTGACCATGAGCGAGAAGCTCCCGCGGGTCCAGGTCATGCGGGGTGACCGCAGGAAGGGCACCCGCTATTTCGGCCCGTACACGGCCGGGGCCATCCGGGAAACCATGGATACGCTCCTGCGTGTCTTCCCCGTCCGCAGTTGCAGCGCAGGCGTGCTCAAACGGGCCCAGGCCAGCGGCAGGCCCTGCCTGCTTGGCTACATCGACAAATGCTCGGCACCCTGCGTCGGCCGGGTCACGCCGGAGGAACACCGGGCGCTGGCCGAGGATTTCTGCGCGTTTATGGGCGGCGAAGCCAAACGTTTTATCTCCAAGCTGGAAAAGCAGATGGCCGAGGCCGTGGCAGCCCTCGATTATGAGCGTGCGGCCAGGCTCCGCGACGACATCTCTGCCTTACGGAAAGTGTTCGAACGCAACGCCGTGGTCCTTGGCGAGGACACCGACGCCGACATCTTTGCCTTGCATGAAGACGAGCTGGAAGCAGCCGTGCAGGTATTCCACGTCCGCGGCGGCAGGGTCCGCGGCCAGCGGGGCTGGGTTGTGGAGAAGGTGGAAGACGCCACCACGCCGGACCTCGTGGAACACCTCCTCCAGCAGGTTTACGGCGAAGATGGGGACAGCCACGGCAGGCTGCCCAGGGAGGTGTTGGTGCCGGTTGCCCCGAGCAACGCCGCAGAGCTTGCCGAATGGCTCGGAGGCCTGCGGGGAGCCAAGGTGGACATCCGGGTGCCCCAGCGCGGCGACAAGGCGGCGCTGATGTCCACCGTCCGCGAGAACGCGGAGCACGCCCTGAAACTGCACAAGACGCGGCGGGCAGGTGACCTGACCGTCCGGTCGCAGGCCCTCCAGGAGCTCCAGGAAGCCCTGGACCTGCCGGTGGCGCTCCTCCGGATCGAGTGCTTTGACGTCTCCCATGTCCAGGGCACCAACGTGGTGGCGTCCATGGTGGTGGTGGAGGATGGCCTGCCGAAGAAGTCCGACTACCGCAAGTTCTCGGTTACCGGCGCAGCCGCTACTGACGATACCGCCGCCATGCATGATGTCCTGACGCGCCGTTTCCGCCATTATCTGCAGGACAAGACGGCCCAGGTGGAAGCGGCCGCCCTGGACGGACACCAGGCGGCCCTCGATGCTGCGGCCGACGCCGCAGTCCTTGACACCACCACGCCGGCCCCACGGGCAAAGTTCGCCTACCCGCCCAACCTGGTGGTGGTGGATGGCGGTAAACCGCAGGTCAACGCGGCTGCCAGGGCGCTGGCTGATCTCGGCATCGATGACGTGTACGTGGTGGGACTGGCCAAACGCCTCGAGGAAGTCTGGCTGCCGGACAGCGACTTCCCGGTCATCCTGCCCAGGACATCGCAGGGACTGTACCTCCTGCAGCGGATTCGTGACGAGGCGCACCGTTTTGCCATTTCCTTCCACCGGCAGAAGCGCGGCAAGGCCATGACGGTTTCGGCGCTGGACGGCGTGCCGGGCCTGGGGGAATCGAAGCGGAAAGCCCTGCTGGCGCACTTCGGTTCCGTCAAGGGAGTCAAGGCAGCGTCTGTGACTGAACTTTCGGCAGCCAAAGGCATCGGCCCCGCCCTGGCCACCGCCATCGTCAACCACTTCAGCTCTGATGATGCGGCGGGCGAAACCGCTCCGGCCATCAACATGAGCACCGGCGAAATCCTTGAAACTTAGMADPASYRPQTGEIPINPGVYRFRDPHGRVIYVGKAKSLRSRLNSYFANPAGLLPKTHAMVHAASSVEWTVVSSELESLQLEYTWIKEFKPRFNVVFRDDKTYPYLALTMSEKLPRVQVMRGDRRKGTRYFGPYTAGAIRETMDTLLRVFPVRSCSAGVLKRAQASGRPCLLGYIDKCSAPCVGRVTPEEHRALAEDFCAFMGGEAKRFISKLEKQMAEAVAALDYERAARLRDDISALRKVFERNAVVLGEDTDADIFALHEDELEAAVQVFHVRGGRVRGQRGWVVEKVEDATTPDLVEHLLQQVYGEDGDSHGRLPREVLVPVAPSNAAELAEWLGGLRGAKVDIRVPQRGDKAALMSTVRENAEHALKLHKTRRAGDLTVRSQALQELQEALDLPVALLRIECFDVSHVQGTNVVASMVVVEDGLPKKSDYRKFSVTGAAATDDTAAMHDVLTRRFRHYLQDKTAQVEAAALDGHQAALDAAADAAVLDTTTPAPRAKFAYPPNLVVVDGGKPQVNAAARALADLGIDDVYVVGLAKRLEEVWLPDSDFPVILPRTSQGLYLLQRIRDEAHRFAISFHRQKRGKAMTVSALDGVPGLGESKRKALLAHFGSVKGVKAASVTELSAAKGIGPALATAIVNHFSSDDAAGETAPAINMSTGEILETPGPT0014925_849DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703NANA
D1-29_02521924COG1660Nucleotide-binding proteinATGGCAGAGTCAACGGCGGAATCCGGGACGGAGCAGGACGGGCTGACGCCGGTCAAGCCCCTCGAAGCGGAACTGCTCGTGGTCACCGGGATGTCCGGGGCCGGACGCAGCACAGCCGCGGACGCGCTCGAGGACCACGGCTGGTATGTCGTGGAAAACCTCCCGCCGCAGATGCTCAGCACGCTCGCCGAACTGGTGTCACACGCACCGCAGTCCATTCCGCGGCTGGCCGTGGTCATGGACGTCCGCAGCAAGGGCCTCTTCGCCGACATCCGTGCGGCCCTCGGTGCCCTGGCCGCCAGCGGCGTGACCTTCCGGGTCCTGTTCCTCGACGCCAGTGACGACGTCCTGGTCCGCCGGTTTGAACAGGGCCGCAGGCCCCACCCGCTCCAGGAAGGCGGCCGGATCCTGGACGGGATAGCCGCAGAACGGGAGCTGCTGACAGAACTCCGCGACAGCGCCGACGTCGTCCTCGATACCTCCACGTACAACGTCCATGGCCTGGCCACAGCCATCACCGAACTCTTCAGCGAGACCGGACCTGTGGCGCTTCGGCTGAACGTCATGAGCTTCGGGTTCAAGTACGGCCTTCCGGTCGATTCGAACTACGTGGCGGATGTCCGCTTCATTCCCAACCCGCACTGGGTGCCGCAGCTGCGTCCGCATACAGGCCTGGACAAGGATGTCAGCGATTATGTCCTGGAGGCCGAAGGCGTGAAGAACTTCGTTGACCGCTTTGTACTGGCCCTCGAACCGGTCCTGGACGGCTACCGGCGCGAGAACAAGCACTATGCCACCATCGCGGTCGGGTGCACGGGCGGCAAGCACCGCTCGGTGGCAGTCGCCGTCGAGCTTTCCAAGAAACTGGCCCAATATCCCAGGGTCACAGTCACCACCAGCCACCGGGACCTGGGCCGCGAGTAAMAESTAESGTEQDGLTPVKPLEAELLVVTGMSGAGRSTAADALEDHGWYVVENLPPQMLSTLAELVSHAPQSIPRLAVVMDVRSKGLFADIRAALGALAASGVTFRVLFLDASDDVLVRRFEQGRRPHPLQEGGRILDGIAAERELLTELRDSADVVLDTSTYNVHGLATAITELFSETGPVALRLNVMSFGFKYGLPVDSNYVADVRFIPNPHWVPQLRPHTGLDKDVSDYVLEAEGVKNFVDRFVLALEPVLDGYRRENKHYATIAVGCTGGKHRSVAVAVELSKKLAQYPRVTVTTSHRDLGRENANANANANA
D1-29_025221020COG0391Putative gluconeogenesis factorATGGGATTGCTTACCGGGCCGATGCCCTTGATTCCGCCTTCGGGGGGAACAGGAGCAGGCCAGCAGGACAAGGGTCCCAACGTGGTGGCTCTCGGCGGCGGGCACGGCCTGTCCGCGTCGCTGTCAGCCCTGAGGCTGCTCACGTCGCAGCTCACCGCCGTGGTCACGGTAGCGGACGACGGCGGATCATCCGGTCGCCTGCGGGAAGAGTACGCTGTCCTCCCGCCAGGGGACCTGCGCATGGCGCTGTCCGCGCTCTGTGACGACACCGACTGGGGACGCACCTGGCGCGACGTGATGCAGCACCGGTTCCGGCCGGGGAAGGGTCCCGGCGGCTCCCTGGATGAACACGCGATGGGGAACCTGCTGATCGTCACGCTCTGGGAACTCCTGGGCGACACCGTGGCCGGACTCAAGTGGGCAGGGGCCCTGCTCGGCGCCCGCGGCGAGGTGCTGCCGATGTCCACTGTGCCGCTCACCATCGAGGGCGACGTCCGGATCACTGCGCCGGACGGCGCGTCCGCGCTTGAAACCATCCGCGGCCAGGCGCGCTGCGCGGTCGCCGGTTCGCTGGAACAGGTCCGCCTGCTGCCCGAGGACGCTCACGCGTGTGTTGAGGCCCTCACCGCGATCGAACTGGCCGACTGGGTCATCCTGGGTCCCGGTTCCTGGTACACCTCGGTGCTGCCGCACCTGCTGCTGCCCGAGATGCGGCAGGCGCTGTGCCATACTGCCGCCAAACGCTGCCTCACCATGAACCTCGCCACCGATACGAAAGAGACATCGGGGATGTCTGCGGCTGACCACCTGCATGCGCTGCGCCGCTACGCTCCGGGTTTCAGCGTGGACGTGGTCCTGGCCGATCCCGCCTCCGTTCCGGACCTGTCGGAGTTCGAGAAGGCGGCGGAGATGATCGGTGCCGAGGTTGTCTTGGGTAAAGTAGGGGCGTCGGGCCGCCGGCCCATCCATGACCCCCTGCGTCTGGCGACGGCGTACCAAGACATTTTCGGGAACAGTTAGMGLLTGPMPLIPPSGGTGAGQQDKGPNVVALGGGHGLSASLSALRLLTSQLTAVVTVADDGGSSGRLREEYAVLPPGDLRMALSALCDDTDWGRTWRDVMQHRFRPGKGPGGSLDEHAMGNLLIVTLWELLGDTVAGLKWAGALLGARGEVLPMSTVPLTIEGDVRITAPDGASALETIRGQARCAVAGSLEQVRLLPEDAHACVEALTAIELADWVILGPGSWYTSVLPHLLLPEMRQALCHTAAKRCLTMNLATDTKETSGMSAADHLHALRRYAPGFSVDVVLADPASVPDLSEFEKAAEMIGAEVVLGKVGASGRRPIHDPLRLATAYQDIFGNSNANANANANA
D1-29_02523981whiACOG1481putative cell division protein WhiAATGGCACTGACAGCATCGGTCAAGGAAGAACTGTCCCGTCTGGACATCAAGAAGTCATCAGTGCGCAAGGCTGAGGTCTCCGCCATGCTCCGGTTCGCCGGCGGCCTGCACATCATCTCGGGCCGGATTGTGATCGAGGCCGAAGTGGACCTCGCATCCACAGCACGCCGGCTGCGGGCGGCGGTAGCAGAGGTTTACGGGCACCAGAGCGAAATCATCGTGGTTTCCGGCGGCGGGCTGCGGCGGGGGAGCCGGTATGTGGTCCGCGTGGTTCGCGACGGCGAAGCGCTGGCGCGGCAAACCGGGCTGCTCGACGGCCGGGGCAGGCCTGTCCGCGGCCTTCCGTCGGCAGTGGTGAACGGCTCCGCGGCCGACGCCGAGGCCGTCTGGCGGGGTGCTTTCCTGGTCCACGGCTCGCTCACGGAGCCAGGCCGCTCGTCGTCCCTGGAGGTCACCTGCCCCGGCCCCGAATCCGCCCTCGCGCTGGTGGGGGCGGCCCGCCGCCTGGGCATCCAGGCGAAGGCCCGGGAAGTCAGGGGAGTGGACCGCGTGGTGATCCGCGACGGCGACACCATCGCAGCCCTGCTGACCCGCATGGGCGCCCACGACGCACTGATGGTCTGGGAAGAACGCCGGATGCGCAAGGAAGTCCGGGCCACGGCCAACCGGCTTGCCAACTTCGACGACGCCAACCTGCGCCGGTCTGCCCAGGCAGCAGTGGCAGCAGGTGCCCGCGTTGACCGCGCCCTCGAAATCCTCGGCGACGACGTCCCGGACCACCTTAAGTACGCCGGCGAGCTCCGGGTGGCCCACAAGCAGGCGAGCCTGGATGAGCTGGGCCGGCTGGCAGATCCCGTGATGACCAAGGACGCGATTGCCGGGCGCATCCGCCGGCTGCTCGCCATGGCGGACAAACGTGCCATCGACCTGGGGATCCCCGGCACGGACGCCAATGTGACGCCGGAAATGCTGGACGAGTAAMALTASVKEELSRLDIKKSSVRKAEVSAMLRFAGGLHIISGRIVIEAEVDLASTARRLRAAVAEVYGHQSEIIVVSGGGLRRGSRYVVRVVRDGEALARQTGLLDGRGRPVRGLPSAVVNGSAADAEAVWRGAFLVHGSLTEPGRSSSLEVTCPGPESALALVGAARRLGIQAKAREVRGVDRVVIRDGDTIAALLTRMGAHDALMVWEERRMRKEVRATANRLANFDDANLRRSAQAAVAAGARVDRALEILGDDVPDHLKYAGELRVAHKQASLDELGRLADPVMTKDAIAGRIRRLLAMADKRAIDLGIPGTDANVTPEMLDENANANANANA
D1-29_02524750sodACOG0605Superoxide dismutase [Mn]ATGCCCGGCGAACGGGCCCGGCCTCACCGGTTCCGTTACCGCAATTTTCCGGATGCCCGTCATCCGGATGCACAATCCGAGCGTTACCAACCGGACAGTCAGTCCACGATATTGGAGGATTTTGTGACCGAGTACGTACTGCCAGAACTCAGCTACGACTACGCAGCGCTTGAGCCGCACATTTCGGCGCGGATCATGGAGCTGCACCACAGCAAGCACCATGCAGCCTACGTGGCGGGCGCCAACAACGCCCTGGCCCAGCTGGCTGATGCCCGTGAAAAGGGCGACTTCGCCAACATCAACCGCCTGTCCAAGGACCTCGCGTTCCACACCGGCGGCCACGTCAACCACTCGGTGTTCTGGAACAACCTGTCGCCGGACGGCGGGGACAAGCCCGAGGGCGAGCTCGCTGCTGCCATCGATGACGCCTTCGGGTCCTTCGACGCTTTCCGTGCACAGTTCTCCGCAGCCGCCCTGGGCCTCCAGGGATCCGGCTGGGGCTTCCTGGCCTTCGAGCCGATCGGTGGCAACCTTGTCATCGAGCAGCTCTATGACCAGCAGGGCAACGTGGCGCTGGGCACCACCCCGCTGCTGATGCTCGACATGTGGGAGCACGCTTTCTACCTGGACTACGTCAACGTCAAGGCGGACTACGTCAAGGCATTCTGGAACATCGTCAACTGGGCTGACGTCGCCAAGCGCTTCGATGCTGCCCGCTCCAACGCGACGGGCCTCATCACCCTCCCGTAGMPGERARPHRFRYRNFPDARHPDAQSERYQPDSQSTILEDFVTEYVLPELSYDYAALEPHISARIMELHHSKHHAAYVAGANNALAQLADAREKGDFANINRLSKDLAFHTGGHVNHSVFWNNLSPDGGDKPEGELAAAIDDAFGSFDAFRAQFSAAALGLQGSGWGFLAFEPIGGNLVIEQLYDQQGNVALGTTPLLMLDMWEHAFYLDYVNVKADYVKAFWNIVNWADVAKRFDAARSNATGLITLPPGPT0004190_1403DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564NANA
D1-29_025251011gapCOG0057Glyceraldehyde-3-phosphate dehydrogenaseGTGACGACCCGTATTGGTATCAACGGCTTTGGCCGTATCGGCCGCAACTACTTCCGCGCAGCACTCGCACAGGGCGCGGACCTTGAGATCGTTGCCGTCAACGACCTCACCAGCCCCGAAGCCCTTGCCCATCTGCTGAAGTACGACTCCGTTGGTGGCCGCCTCAAGGAAACCGTTGAGGTCAAGGACGGCAACATCGTCGTCGACGGAAACGTCATCAAGGTTCTCGCCGAGCGCGATCCCGCAAACCTGCCCTGGGCCGATCTCGGCGTCGACATCGTCATCGAGTCCACCGGCTTCTTCACCAAGGCAGCCGCTGCCCAGAAGCACATCGACGCAGGGGCCAAGAAGGTCCTGATCTCGGCTCCGGCCTCCGATGAGGACATCACCATCGTGATGGGCGTTAACGACGGACTCTACGACTCCTCCGCGCACCACATCATCTCCAACGCTTCCTGCACCACCAACTGCCTCGGCCCGCTGGCTAAGGTCATCAACGACACCTTTGGCATCGAGCGTGGCCTTATGACCACCATCCACGCCTACACCGCCGACCAGAACCTCCAGGACGGCCCGCACAACGACCTCCGCCGCGCCCGCGCCGCAGGCATCAACATGGTCCCCACCTCCACGGGTGCCGCCAAGGCAATCGGCCTGGTCCTTCCCGAGCTCAAGGGCAAGCTGGACGGCTACGCCATCCGTGTTCCCGTGCCCACCGGCTCCGCCACCGACCTCACGGTCAACGTCTCCCGCGAAACCACCGTGGAAGAAGTCAACGCGGCGCTGAAGAAGGCTTCGGAGTCGGACGAGCTCCAGGGAATCCTGACCTACACGGACGCCCCGATCGTTTCCTCCGACATCGTGGGGGACCCGGCGTCTTCCATCTTTGATTCCGGCCTGACGAAGGTCATCGGCAACCAGGTCAAGGTTGTGTCCTGGTATGACAACGAATGGGGCTACTCCAACCGCCTGGTGGACCTGACGAAGCTCGTCGCATCCAAGCTGGGCTAGMTTRIGINGFGRIGRNYFRAALAQGADLEIVAVNDLTSPEALAHLLKYDSVGGRLKETVEVKDGNIVVDGNVIKVLAERDPANLPWADLGVDIVIESTGFFTKAAAAQKHIDAGAKKVLISAPASDEDITIVMGVNDGLYDSSAHHIISNASCTTNCLGPLAKVINDTFGIERGLMTTIHAYTADQNLQDGPHNDLRRARAAGINMVPTSTGAAKAIGLVLPELKGKLDGYAIRVPVPTGSATDLTVNVSRETTVEEVNAALKKASESDELQGILTYTDAPIVSSDIVGDPASSIFDSGLTKVIGNQVKVVSWYDNEWGYSNRLVDLTKLVASKLGPGPT0018000_4007DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
D1-29_025261227pgkCOG0126Phosphoglycerate kinaseATGACATTTCACACCCTCAACGAACTGATCGCTGAAGGTGTCCGCGGGCGGTACGTTCTTGTCAGAAGTGACCTGAACGTGCCGCTCGACGGCTTTACGGTGACTGACGACGGCCGCATCAAGGCCTCCCTGCCAGTGCTGGAAAAGCTCACGGACGCCGGTGCCCGCGTACTGGTCACAGCCCACCTCGGACGCCCGAAGGGCGCCCCCGAAGAAAAGTACTCCCTGAAGCCTGCCGTCGCACGGCTGGCGGAACTCGCGCCTTTCAAGGTGGTTCTCGCCGAGGACTCCGTCGGAAGCTCCGCGAAGGAGCTTTCTGCCTCACTGCAGGACGGTGAAGTACTCGTCCTGGAGAACGTGCGCTTCGATGCACGCGAAACCAGCAAGGACGATTCACAGCGAGCCCAGTTCGCCGATGAACTGGTGGCCCTGACGGGCAGCAACGGCGCGTTCGTGGATGACGCCTTTGGTGCTGTCCACCGCAAGCACGCCAGTGTCTACGACGTCGCCACCCGGCTTCCGTCCTACCAGGGCGATCTGGTGCACACGGAAGTGGAAGTCCTCAGGAAGCTAACAACTGACACGCAGCGCCCGTACGTGGTGGTTCTCGGCGGTTCCAAGGTTTCGGACAAGCTGGCCGTCATCGACAACCTGCTTGGCAAGGCTGACACCATCCTGGTGGGCGGCGGCATGCTGTTCACGTTCCTTGCTGCCGTTGGCCACCAAGTGGCCGGCAGCCTCCTGGAAGAAGACCAGATCCCGGTGGTCAAGGACTACCTCCAGCGGGCAGCAGCCGCCGGCACGGAATTCATTGTCCCCACCGACGTCGTCGTCGCCGAGAAGTTCAGCGCAGACGCCGCGCACGAAACCGTTCCTGCTGACGCCATCGAGAGCAGCAGCTTTGGAGCCAAGGGCATCGGCCTGGACATTGGCCCCGATTCGGCGGCCGCCTTCGCGGACCGGATCAAGGGTGCAAAAACCGTGTTCTGGAACGGCCCCATGGGAGTCTTCGAGTTTGAAGCCTTCTCCGGCGGCACCCGCGCCGTGGCGCAGGCACTCAGCGAAGCCGATGCGTTTACCGTTGTGGGCGGCGGAGACTCGGCCGCTGCTGTGCGGACGCTGGGCTTCGCTGACGACGCGTTCGGCCACATTTCAACAGGAGGCGGCGCCAGCCTGGAATACCTTGAAGGCAAGGAACTCCCGGGTCTGAGCGTCCTGGACCGCTAGMTFHTLNELIAEGVRGRYVLVRSDLNVPLDGFTVTDDGRIKASLPVLEKLTDAGARVLVTAHLGRPKGAPEEKYSLKPAVARLAELAPFKVVLAEDSVGSSAKELSASLQDGEVLVLENVRFDARETSKDDSQRAQFADELVALTGSNGAFVDDAFGAVHRKHASVYDVATRLPSYQGDLVHTEVEVLRKLTTDTQRPYVVVLGGSKVSDKLAVIDNLLGKADTILVGGGMLFTFLAAVGHQVAGSLLEEDQIPVVKDYLQRAAAAGTEFIVPTDVVVAEKFSADAAHETVPADAIESSSFGAKGIGLDIGPDSAAAFADRIKGAKTVFWNGPMGVFEFEAFSGGTRAVAQALSEADAFTVVGGGDSAAAVRTLGFADDAFGHISTGGGASLEYLEGKELPGLSVLDRPGPT0018015_1345DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018015-pgk-K00927NANA
D1-29_02527816tpiACOG0149Triosephosphate isomeraseGTGACTACGTCAACGAACGGCGCTTTTGACCGCACGCCCTTCATCGCGGGCAACTGGAAGATGAACATGGACCATGTCCAGGGCATCACACTCCTGCAGAAGCTGGCCTGGACCCTGTCCGACGCGAAGCATGACTACAACCGCGTTGAGGTTGCCGTCTTCCCGCCCTTCACCGACCTTCGCGGCGTGCAGACCCTGGTTCAGGGCGACGACCTCGATATTGCCTACGGCGGCCAGGACCTGTCGCAGTTCGACTCCGGAGCCTACACCGGCGACATCTCCGGCCAGTTCCTCAGCAAGCTGGGCTGCAAGTACGTGCTGGCGGGGCACAGCGAACGCCGCACCATCCACCAGGAATCCGACGAAGTACTCAACGCCAAGGTCAAGGCAGCGTTCAAGCATGGCGTGACCCCGGTCCTCTGCGTCGGAGAGGGACTTGAAATCCGCCAGGCCGGCACGCACGTGGAGCACACGCTGAACCAGCTCCGCGCAGACGTCGAGGGTCTCACTCCGGAACAGGCAGCCGAGCTGGTTGTTGCGTACGAACCCGTGTGGGCCATCGGTACGGGCGAAGTAGCGGGACCGGAAGACGCCCAGGAGATGTGTGCAGCCATCCGCGCCGAACTGGCCACACTGTTCGGCGACGACGTTGCAGCAAAAATCCGGCTGCTCTACGGTGGCTCAGTCAAGTCCAGCAACGTCGCTGCCATCCTGAACGAACGGGACGTCGACGGCGTGTTGGTGGGCGGGGCAAGCCTTGATCCGGCGGAGTTTGCTAATATTGTCAGGTTCGAGAGTCATTTGCTGACGGAGTAGMTTSTNGAFDRTPFIAGNWKMNMDHVQGITLLQKLAWTLSDAKHDYNRVEVAVFPPFTDLRGVQTLVQGDDLDIAYGGQDLSQFDSGAYTGDISGQFLSKLGCKYVLAGHSERRTIHQESDEVLNAKVKAAFKHGVTPVLCVGEGLEIRQAGTHVEHTLNQLRADVEGLTPEQAAELVVAYEPVWAIGTGEVAGPEDAQEMCAAIRAELATLFGDDVAAKIRLLYGGSVKSSNVAAILNERDVDGVLVGGASLDPAEFANIVRFESHLLTEPGPT0017995_437DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017995-tpiA-K01803NANA
D1-29_02528258secGCOG1314putative protein-export membrane protein SecGGTGGACGTTCTTCATGTCATTCTGCAGATCCTCCTGGGCATCACCAGCCTTCTGCTGACGTTGCTTATCCTCCTGCACAAGGGACGGGGCGGCGGGCTCTCGGACATGTTCGGTGGCGGTATGAGCTCCGGCCTCAGCTCTTCCGGTGTGGCGGAGCGCAACCTGAACAGGTTCACCGTAATCCTTGGTGTCACCTGGGGCGTCGTCATTATTGCCCTGGGCCTGATTATGCGCTTCAGCGGCGCGGGTGACTCCTAAMDVLHVILQILLGITSLLLTLLILLHKGRGGGLSDMFGGGMSSGLSSSGVAERNLNRFTVILGVTWGVVIIALGLIMRFSGAGDSPGPT0025720_2789DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025720-secG-K03075NANA
D1-29_02529396rbpA_1RNA polymerase-binding protein RbpAATGGTAAACACAGCGTCAGGATTCCGTGGCACCCGCGTGGGTGTCACGGAAGGAACCGGCCTCAAGAACCAGTCCGATGATTTTCCCGGTGACAGATTGCCGCGTATGCGTGTTTCCTATTGGTGCGCCAAGGGACATGAGACGCGGCCTGTTTTTATTAAGCTGCCGGAAGACCAGATTCCGCTGGTCTGGGACTGCCGCAGATGCGGGGCGACGGCGTCAAGGGACGGGCAGGAGGCTGCCCTTGACGAACCTGTGGAAGAGGGTTTCAAGAGCCATCTGGAATACGTTAAAGAACGGCGCTCCGACCAGGACGCCGAAGACGTCCTGGCCGGAGCGCTCGAACGGTTACGCGCCCGCGGCGTCCTTGCGGACCAGTTGCCCGGGGACCCGTGAMVNTASGFRGTRVGVTEGTGLKNQSDDFPGDRLPRMRVSYWCAKGHETRPVFIKLPEDQIPLVWDCRRCGATASRDGQEAALDEPVEEGFKSHLEYVKERRSDQDAEDVLAGALERLRARGVLADQLPGDPNANANANANA
D1-29_02530819pgl_2COG03636-phosphogluconolactonaseGTGAGCGTTGAGCCAAGAGTAAGCATTCATCCCGATTCGTCCGTCCTGATGGCTGCTATCGCAGCCCGCCTGATCACAAAACTTGTTGATGTGCAGGATAAGTACGGTGAGGCCACGGTGGTGCTTACTGGCGGCACGGTTGGCATCGGTACGCTGAAGGCTGTTGCTGACTCTCCGGCAGCGCCTGCCGTTGACTGGTCGCGGGTGAACTTCTGGTGGGGCGACGAACGTTTCGTGCCCGCCGGAGACGCCGACCGTAACACGAAGCAGGCTTTTGATGCTCTGCTGTCGCACATTCCGGTGGATCCCGCCAGGATCCACGAGCCTGCCTCGGCGGACGACTTTGACACCCCTGAGGAGGCGGCAGAGGACTACGCCCGCAGGCTTCGGGAGGCGGCAGAGGCCGAGCACGCTGCGGACATGTCAGATGACCGCCCGGACCAGCCTGGTGTCCTTCCGCGGCTGGACGTGGTTCTCCTGGGCGTTGGCCCCGACGCGCATGTGGCATCGCTGTTTCCGGAGCAGGGGGGCATTCGGGAGAAGTCGCTGACGGTTGTCGGCGTCCGCAACTCCCCCAAGCCCCCGCCCCTGCGCATTTCGCTGACGCTGCCGGCCATCAACACTGCCGCCGAAGTGTGGATGGTAGTGGCCGGCGAGGACAAGGCGGGAGCGGTGGGCCTGGCGCTTGCCGGCGCCAACCCGGTTCAGGTACCGGCGGCGGGCCCTCGAGGAACGTCCCGCACTCTCTGGCTTATTGACGAGAACGCCGCGTCACGGGTCCCCGGGCAACTGGTCCGCAAGGACGCCGCGGGCGCGTAAMSVEPRVSIHPDSSVLMAAIAARLITKLVDVQDKYGEATVVLTGGTVGIGTLKAVADSPAAPAVDWSRVNFWWGDERFVPAGDADRNTKQAFDALLSHIPVDPARIHEPASADDFDTPEEAAEDYARRLREAAEAEHAADMSDDRPDQPGVLPRLDVVLLGVGPDAHVASLFPEQGGIREKSLTVVGVRNSPKPPPLRISLTLPAINTAAEVWMVVAGEDKAGAVGLALAGANPVQVPAAGPRGTSRTLWLIDENAASRVPGQLVRKDAAGANANANANANA
D1-29_02531942hypothetical proteinATGATTGTTGATTTGCCGGACACCACCACCTCGAACGTGTCCAAGAAGATCATGGCCCTGCGTGAGCAGGGCGGCGTGATCGCGCTGGGCCGGGTCCTGACCCTGGTGGTCGTGACCACGTCCGGGCTCGAGGAAGAAGCGATCGAGGCCGCGAACGAGGCCAGCCGGGAACACCCCTGCCGGATCATCGTCCTCGCCGACGCCGGCAAGGACGCCCCGGACCGGCTGGACGCGCAGATCCGGGTCGGCGGGGACGCCGGCGCGTCCGAGGTGATCGTGCTGCGAGGCTACGGCCAGCTCGCGCACGAGTCCGAGTCCCTCGTCGCGGCGTTGCTGCTCCCGGACGCCCCGATCGTGGCGTGGTGGCCGCACGGCGCCCCGGAGAACGCCTGCGAAACCTCGATCGGGCGGATCGCGCACCGCCGGATCACCGATTCCGCGAACGAACCGGACCCGCAACAGGCCCTGGAAAACATACGCGCCACGTACAAAGCCGGGGATACCGATCTGGCCTGGACCCGGCTGACGAACTGGCGGATCCAGCTCGCCGCGGTCCTGGACCAGGTAGACCCCTCCCCCGTGACAGCCGTCGCGGTCGAGGGCGCCTCCGACTCCCCCTCCACCATCCTCCTCGCGGCCTGGCTCACCCTGTCCCTGGAGGCCCCCGTGACCATCGTCGCGGACCCCGCCGGCACCGGGATCCGCCGCGTCCGGCTGTCCCGTCCCGGCGGCGACGTCCAACTCTTCCGCCCCGGACTCTCCATCGCCGAACTCACCCAACCCGGCCAACCAGCCCAACGCATCTCACTCCCCCGACGCAGCCTCCGCGACTGCCTCGCCGAAGAACTCCGCCGCCTGGACCCCGACGAAGTCTTCGGAGAAGTGATTACTATTGGACTGCCACGTACCAATCTAAGGAGCGTCCGACCCAGTGAGCGTTGAMIVDLPDTTTSNVSKKIMALREQGGVIALGRVLTLVVVTTSGLEEEAIEAANEASREHPCRIIVLADAGKDAPDRLDAQIRVGGDAGASEVIVLRGYGQLAHESESLVAALLLPDAPIVAWWPHGAPENACETSIGRIAHRRITDSANEPDPQQALENIRATYKAGDTDLAWTRLTNWRIQLAAVLDQVDPSPVTAVAVEGASDSPSTILLAAWLTLSLEAPVTIVADPAGTGIRRVRLSRPGGDVQLFRPGLSIAELTQPGQPAQRISLPRRSLRDCLAEELRRLDPDEVFGEVITIGLPRTNLRSVRPSERNANANANANA
D1-29_025321572zwf2_2COG0364Glucose-6-phosphate 1-dehydrogenase 2ATGCCAGAAACTGAATACGGCAGGACATCCGGGTTGCGTCCGGGTAAATTGGGGCGGAATCCGTTGCGGGATCCGCGGGACCGCCGCCTGAACCGGATCGCCGGTCCGTCGTCGCTGGTGCTCTTTGGAGTTACCGGTGACCTTGCCCGCAAGAAGCTCATGCCGGCCGTGTATGACCTGGCGAACCGGGGGTTGCTGCCGCCGAGTTTCGCGCTGGTTGGTTTTGCCCGGCGCGAGTGGGACAAGGAGGATTTCGCCGCTGAGGTGAAGGCTTCCGTGCAGGCCTACGCGCGCACGCCTTTTGATGAGGCGGTGTGGAACCAGCTGTCCGAGGGCATCCGTTTTGTCCAGGGTGAGTTCGACGACGACGGCGCTTTCGAGCGGCTCGGCGAGACCATTAAGGAACTTGATGATGTCCGCGGGACCCGCGGGAACCATGCGTTCTACCTCTCGATCCCGCCGAAGGCGTTCGAGCAGGTCTGCCGGCAGCTGTCCAAGCACGGACTGGCGCAGGCTGAGGGGGATAAGTGGCGGCGGGTGGTGATCGAGAAGCCGTTCGGTCATGACCTGGAGTCGGCGCGGAAGCTCAATGACATTGTGGAGTCGGTGTTCCCTGCGGATGCGGTGTTCCGGATTGATCATTATTTGGGTAAGGAGACGGTGCAGAACATTCTGGCGTTGCGGTTCGCGAACCAGTTGTTTGAGCCGTTGTGGAACGCGAATTATGTGGATCATGTCCAGATCACGATGGCTGAGGACATCGGTACGGGCGGCCGGGCGGGGTATTACGACGGTGTGGGTGCTGCGCGGGATGTGATTCAGAACCATTTGCTGCAGTTGTTGGCTTTGACCGCGATGGAGGAGCCGATTTCGTTTAATGCTGATGATTTGCGGGCGGAGAAGGAAAAGGTCCTGGCCGCGGTGAAGCTCCCGGAGGATTTGTCGGCGCATTCGGCGCGGGGGCAGTTCGCTGGTGGCTGGCAGGGTGGGGAGCAGGTCCTGGGTTACCTGGAGGAAGAGGGGATCCCGGCTGATTCGATGACGGAGACGTTCGCGGCGATCCGGGTGGATATCCATACCCGGCGCTGGGCCGGGGTGCCGTTTTATCTGCGCGCGGGCAAGCGTTTGGGGAGGCGGGTGACGGAGATCGCGGTGGTGTTCAAACGCGCCCCGAACCTGCTCTTCCGGGATCATGGTGAGGATGACTTCGGGCAGAATGCTGTGGTGATCCGGGTCCAGCCCGATGAGGGCGTGACCATCAGGTTCGGGTCCAAGGTCCCGGGCACCCAGATGGAAGTCAGGGATGTGACGATGGACTTCGGTTACGGGCACTCCTTCACCGAATCGTCCCCGGAGGCGTATGAGCGTTTGATCCTGGACGTGCTGCTGGGTGAGCCGCCGTTGTTCCCGCGGCATGAGGAAGTGGAGCTGTCCTGGAAGATCCTTGACCCGTTCGAGGACTACTGGGCCGAACTGAACGAACAGCCCGAACCCTACGCCCCGGGTTCCTGGGGCCCGGCCAGCGCTGATGAGCTGCTGGCCCGTGACGGACGAACCTGGAGAAGGCCATGAMPETEYGRTSGLRPGKLGRNPLRDPRDRRLNRIAGPSSLVLFGVTGDLARKKLMPAVYDLANRGLLPPSFALVGFARREWDKEDFAAEVKASVQAYARTPFDEAVWNQLSEGIRFVQGEFDDDGAFERLGETIKELDDVRGTRGNHAFYLSIPPKAFEQVCRQLSKHGLAQAEGDKWRRVVIEKPFGHDLESARKLNDIVESVFPADAVFRIDHYLGKETVQNILALRFANQLFEPLWNANYVDHVQITMAEDIGTGGRAGYYDGVGAARDVIQNHLLQLLALTAMEEPISFNADDLRAEKEKVLAAVKLPEDLSAHSARGQFAGGWQGGEQVLGYLEEEGIPADSMTETFAAIRVDIHTRRWAGVPFYLRAGKRLGRRVTEIAVVFKRAPNLLFRDHGEDDFGQNAVVIRVQPDEGVTIRFGSKVPGTQMEVRDVTMDFGYGHSFTESSPEAYERLILDVLLGEPPLFPRHEEVELSWKILDPFEDYWAELNEQPEPYAPGSWGPASADELLARDGRTWRRPPGPT0017380_786DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
D1-29_025331635pgiGlucose-6-phosphate isomeraseATGAGTACTCTCAGCTACGACGCCACCGGTGCCGCACAGAAGGCACTTGAACAGCACCTGCCGGTCCTCGTTGAGGAGCGCAGTGCCACCCGGATCTTCGCCAAGGACCACACCCTGTGGGGTTCCGACGCCGAAGCCGAGTCGGCAGTCCGCCTCGGCTGGGTTGAGGCAGCCACCGTCTCGCAGCCCCTGGTTCCAGGCATCCTGGAACTGCGCGATGCCCTCAGGGCCGAAGGTGTCACCCGGATCGTGCTTTGCGGCATGGGCGGATCATCGCTTGCCCCCGAGGTGATCGCCGGCACCGCTGGCGTCGAGCTGACCGTATTGGACAGCACCGACCCCGACCAGGTCAGTGCAGCCCTCGCGGACCGGCTGGCCGAGACCGCCATTGTGGTTTCATCCAAGTCCGGTTCCACCCTGGAGACCGACTCACAGCGCAGGATCTTCGAACACGCCTTCAACGAGGCCGGCATCGATGCAAAGAGCCGGATCATCATTGTGACCGATCCCGGTTCCCCGCTGGACAAGGCGTCCCGCGAAGCCGGTTACCGGGCCGTCTTCAACGCCGACCCCAACGTCGGCGGTCGCTACTCCGCCCTCACCGCATTCGGCCTGGTGCCCTCGGGCCTGGCCGGCGTGGACATCCAGGCCTTCCTGGACGAGGCCGAGGAAGCTGCCGAAATTCTGAACGAGGACGCCCCGGAGAACATCGGGCTGGCCCTCGGAACGGCCCTGGGCGGCACCAGCCCGTTGCGGGACAAGATTGTCATCGCAGAGGACGGCTCCGGCATTGTGGGCTTCGCGGACTGGGCCGAACAGCTCATCGCCGAGTCCACCGGCAAGCTCGGGACCGGTGTCCTGCCGGTGGTGGCCGGCCCCTCCTCACCCGAGGTCACTTCCGGCGCCGAGGACGTCCTGGTGGTGCGGCTGGTAGCCGCTGACGCCGACGTCGAACTCGGTGAAAACGAGGTCGCCATTGCGGGCGGCCTGGCAACGCAGATGATGGTTTGGGAATTCGCCACGGCCGTCGCCGGACGGCTGCTGGGTATCAACCCGTTTGACCAGCCCGACGTCGAGGCTGCCAAGGTGGCTGCCCGCGGCCTGCTGGACGCCCAGCCGGAACCCACGCCCGCTGCGTTTGTTGACGGTGCCATCGAAGTACGCGGCGGTGACTGGCTCGGCGACGCCACCACTGCCGAGGACGCCGTGCACGCACTGCTGGGGACTCTTGCCGCGGACAGCTACCTCAGTGTCCAGGCATACTTTGACCGGCTCGCTTTCGCGCAGCTCGAGGGCATCCGGGACGAACTGGCAGCAGTCAGCGGCCGTCCCGTCACCTTCGGCTGGGGTCCGCGCTTCCTGCACTCCACCGGCCAATTCCACAAGGGGGGCCCCGCTATCGGCGTCTTCCTCCAGGTCACTGCGGCTCCCGCCGCCGATCTGGCCATCCCTGACCGTCCCTTTACGTTCGGGGAACTGATCTCTGCGCAGGCCGCGGGCGACGCCCAGGTCCTGGCTGGCCATGGACGGCCCGTACTGCGTCTGCACCTGACCGACCGCGCCGCCGGGGTGGCACAGCTGCAGGCAATTGTCGCAGCGCTTGCCGCACGGTCAGCATCCGTCACTGAAAGCTAAMSTLSYDATGAAQKALEQHLPVLVEERSATRIFAKDHTLWGSDAEAESAVRLGWVEAATVSQPLVPGILELRDALRAEGVTRIVLCGMGGSSLAPEVIAGTAGVELTVLDSTDPDQVSAALADRLAETAIVVSSKSGSTLETDSQRRIFEHAFNEAGIDAKSRIIIVTDPGSPLDKASREAGYRAVFNADPNVGGRYSALTAFGLVPSGLAGVDIQAFLDEAEEAAEILNEDAPENIGLALGTALGGTSPLRDKIVIAEDGSGIVGFADWAEQLIAESTGKLGTGVLPVVAGPSSPEVTSGAEDVLVVRLVAADADVELGENEVAIAGGLATQMMVWEFATAVAGRLLGINPFDQPDVEAAKVAARGLLDAQPEPTPAAFVDGAIEVRGGDWLGDATTAEDAVHALLGTLAADSYLSVQAYFDRLAFAQLEGIRDELAAVSGRPVTFGWGPRFLHSTGQFHKGGPAIGVFLQVTAAPAADLAIPDRPFTFGELISAQAAGDAQVLAGHGRPVLRLHLTDRAAGVAQLQAIVAALAARSASVTESPGPT0017735_2972DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810NANA
D1-29_025341116talCOG0176TransaldolaseATGACTACCCCCACACAGCAGCTGTCCGACGCCGGCGTTTCCATCTGGCTTGATGACCTTTCCCGCGGCCGCCTCAAGACCGGCACGCTCCGAAAGCTCATCGAAGAGAAGAACGTTGTTGGTGTCACCACCAACCCCTCTATCTTCCACGCCGCCATCACCACCGGCACTGACTACGACGCCACCATCGCAGCCCAGGCCGCCGCGGGCGCCAGCATCGAAGAGACCATCTTCGAAATCACCACCACCGACGTCGCTGATGCCTGCGACCTGTTCGCCCCCGTTGCCGCGGCAACCAAGGGAGTTGACGGCCGCGTTTCGATCGAGGTGGATCCCCGCCTCGCCTGGGACACCGCCGGAACCATCGCGGAAGCCAAGCACCTGTACAAGAAGGTGAACAAGGACAACGTCCACATCAAGATCCCGGCAACCCTTGAAGGCCTTGAGGCGATCACCGCCACCCTGGCCGAGGGAATCAGCGTGAACGTCACCCTGATCTTCTCGCTGGAGCGGTACCGCGCTGTGATCAACGCCTTCCAGTCAGGGCTTGAGCAGGCCAAGGAGAACGGGCACGACCTCTCCAAGATCCACTCGGTGGCCTCGTTCTTCGTTTCCCGCGTGGATTCCGAGATCGACAAGCGCCTCGACGCCATTGGCACCGATGAGGCCAAGGCCCTCAAGGGCAAGGCCGGCGTGGCAAACGCCCGCCTGGCCTACCAGGTCTACGAGGAGCTCTTCGCCACGGAGCGCTGGGCCCTGCTGGCCGACGCCGGCGCCCTCCCCCAGCGCCCGCTGTGGGCTTCCACCGGTGTGAAGGATCCGGCCTACCCGGACACCCTGTACGTGACCGAACTGGTTGCCCGCGGCGTGGTCAACACCATGCCGGAGAAGACGCTGGACGCCACGTTCGACCACGGTGTCGTCACCGGTGACACCATCACCGGCACCTACGCCGAGGCCAACGCAACCCTTGACGCGCTGGACGCCCTGGGCATTTCCTATAACGAGGTTGTTACGCTCCTCGAATCCGAGGGCCTGGACAAGTTCGTGGCCAGCTGGAAGGAACTTTTGGCTGACGTTGAAGGTGCCCTCGCCTCTGCACGGAAGGCTTCCTAGMTTPTQQLSDAGVSIWLDDLSRGRLKTGTLRKLIEEKNVVGVTTNPSIFHAAITTGTDYDATIAAQAAAGASIEETIFEITTTDVADACDLFAPVAAATKGVDGRVSIEVDPRLAWDTAGTIAEAKHLYKKVNKDNVHIKIPATLEGLEAITATLAEGISVNVTLIFSLERYRAVINAFQSGLEQAKENGHDLSKIHSVASFFVSRVDSEIDKRLDAIGTDEAKALKGKAGVANARLAYQVYEELFATERWALLADAGALPQRPLWASTGVKDPAYPDTLYVTELVARGVVNTMPEKTLDATFDHGVVTGDTITGTYAEANATLDALDALGISYNEVVTLLESEGLDKFVASWKELLADVEGALASARKASPGPT0017375_940DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0017375-talA|talB-K00616NANA
D1-29_025352127tktCOG0021TransketolaseGTGCCACATTTGGAAGAGCAAGAACTGTCATGGACCAGCTTGGACCAGCGCGCCGTGGATACCGTCCGGGTATTGGCTGCGGACGCTGTGGAGAAGGTGGGGAACGGCCACCCCGGCACGGCCATGAGCCTTGCGCCTGCCGCATACCTTCTCTTTCAGAAGCTCATGCGCCACGATCCGCGGAATCCCGATTGGCTGGGACGTGACCGTTTCATCCTGTCCCCCGGCCACACGTCACTGACGCTGTACATCCAGCTGTTCCTCTCCGGCTACGGCCTGGAGCTGAAGGACCTTGAGGCCCTTCGCACCTGGAATTCCCTCACCCCGGGGCACCCGGAGTACAAGCACACCGCCGGTGTGGAGATCACCACCGGCCCGCTGGGCCAGGGACTCGCCTCCTCAGTAGGCTTCGCCTACTCCCAGCGCCGCCAACGCGGACTGTTCGACGCCGATGCTGCCGCCGGCACCAGCCCGTTCGACCACACCATCTGGGTTATCGCCTCCGACGGCGACCTCCAGGAGGGCGTCACCGCCGAGGCTTCCTCACTGGCCGGCCACCAGGAGCTGGGCAACCTGGTAGTTATCTACGATGAGAACCACATCTCCATCGAGGACGATACGGACATCTCCTTCACCGAAGACGTCCTGAAGCGCTACGAAGCCTACGGCTGGCACACCCAGCGCGTGGACTGGACCAAGACCGGCGAATACAAGGAAGACGTGCAGGAGCTCTACTCCGCACTGCTCGCCGCCAAGGCTGAGACCTCCAAGCCTTCCATCGTCTCGCTGCGCACCATCATCGGTTACCCGGCCCCGAAGAAGCAGAACACCGGCAAGATCCACGGTTCCGCACTCGGCTCCGAGGAAGTAGCGGCACTGAAGGAGGTCCTGGGGTTCGATCCCGCGAAGTCTTTTGAGGTTGACCAGGACGTCCTGGCGCACGCCCGCGCCGTGGTGGACCGTGGAGCAGCCGCCCGCAAGGAATGGGAGGAATCCTTCAACTCCTGGCAGGCGTCCAACCCGGAAGGCGCCGCGCTCCTGCAGCGGATCGAAGCCCGTGAACTGCCGGAAGGCCTGGACGCAGCACTGCCGGTCTTCCCGGCGGGCAAGGACGTGTCCACCCGTGCAGCGTCCGGCAAGGTCCTCAACGGGCTGGGCCCGGTCATGCCGGAACTCTGGGGCGGCTCCGCTGACCTCGCCGAATCCAACAACACCACCATCGAGGGCTCGCCGTCGTTTGTGCCGGCATCCAAGCAGACTGACGCGTGGTCCGGCAACCCCTACGGCCGGGTGCTCCACTTTGGTATCCGTGAGCACGCGGCGGCTGCGATCGTGAACGGCATCAGCCTCCACGGCAACACCCGTTCCTTCTCCGGTACGTTCCTCATCTTCAGTGACTACCAGCGCCCCGCTATCCGGCTTGGTGCCCTGATGGGTGTCCCGTCGCTGTACGTCTGGACCCATGACTCCATTGGCCTGGGCGAAGACGGTCCCACCCACCAGCCCGTGGAACAGCTGGCGTCACTGCGTGCCATCGTGGGCCTGGACGTTGTCCGCCCCGGCGACGCCAACGAGGTGGCCATGGCATGGAAGACCATGCTGGAGAACCACGAGAACCCGGCCGGCATTGTGCTGACCCGCCAGAACATCCCCACCTACGCCCGTGGCGAGGGCAAGGCCGACGGCGACACCTTCGGTTCGGTTTCCGGTGTGGCCAAGGGCGGCTACGTGCTGGCTGAGGCGTCCCGGGACGGCGCCACGGTTCCGGCCGACGTCATCCTCATTGGCACCGGCTCCGAAGTCCAGCTTGCCGTCCAGGCCCGCGAAGCACTCCAGGCTGAAGGCATCGCTGCCCGCGTTGTCTCCATGCCGTGCGTGGAGTGGTTCAAGAAGCAGGACGCCGCGTACCGCGAATCCGTACTTCCGGCCGGCGTCAAAGCCCGTGTGTCCGTCGAAGCCGGGCTTGCCCTGGGCTGGCGGGAATTCGTCGGCGACGCCGGACGTTCCGTCTCGCTCGAGCACTACGGCGCTTCCGCTGACTACAAGCGCCTTTTCCAGGAGTTCGGCATTACCGCGGAGGCTGTCGCCGCCGCTGCCAAGGACTCCCTCGCTGGCCTGCAGGCCTGAMPHLEEQELSWTSLDQRAVDTVRVLAADAVEKVGNGHPGTAMSLAPAAYLLFQKLMRHDPRNPDWLGRDRFILSPGHTSLTLYIQLFLSGYGLELKDLEALRTWNSLTPGHPEYKHTAGVEITTGPLGQGLASSVGFAYSQRRQRGLFDADAAAGTSPFDHTIWVIASDGDLQEGVTAEASSLAGHQELGNLVVIYDENHISIEDDTDISFTEDVLKRYEAYGWHTQRVDWTKTGEYKEDVQELYSALLAAKAETSKPSIVSLRTIIGYPAPKKQNTGKIHGSALGSEEVAALKEVLGFDPAKSFEVDQDVLAHARAVVDRGAAARKEWEESFNSWQASNPEGAALLQRIEARELPEGLDAALPVFPAGKDVSTRAASGKVLNGLGPVMPELWGGSADLAESNNTTIEGSPSFVPASKQTDAWSGNPYGRVLHFGIREHAAAAIVNGISLHGNTRSFSGTFLIFSDYQRPAIRLGALMGVPSLYVWTHDSIGLGEDGPTHQPVEQLASLRAIVGLDVVRPGDANEVAMAWKTMLENHENPAGIVLTRQNIPTYARGEGKADGDTFGSVSGVAKGGYVLAEASRDGATVPADVILIGTGSEVQLAVQAREALQAEGIAARVVSMPCVEWFKKQDAAYRESVLPAGVKARVSVEAGLALGWREFVGDAGRSVSLEHYGASADYKRLFQEFGITAEAVAAAAKDSLAGLQAPGPT0011200_504DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
D1-29_02536960cyoECOG0109Protoheme IX farnesyltransferaseGTGACTGCCACCGTGAGCACAACCGATACGCCGCTGAACGCTTCCCGGGCCAGAGGGGGAGCAGGGCTGGCCCGCAAGGCCAAGGCGTATTTCGCCCTCACGAAGCCGCGGGTTATCGAACTGCTGTTGGTGAGCACGCTGCCCACCATGATCTATGCGGAGCGGGGTTTTCCCTCCGTCGGGCTCATCCTGGCCACGCTCGTGGGCGGTGCCTTTGCCGCCGGCAGCGCCGGTGCTTTCAACTGCTACATTGACCGGGACATCGACAAACTGATGCACCGGACCGAGAACCGGCCCCTGGTCACGGGCGAAGTGACCCCCCGTGAAGCGCTCATCTTCTCCTGGCTCCTGGGCGTCGCCGCGATCGTTATCCTCTGGTTCGGCGCCAACCCGCTGGCGGCATGGCTGGGACTGGCTGCCATCTTCTTCTACGTGGTCATCTACACCATCATCCTGAAGCGACGCACGGCGCAAAACATTGTGTGGGGCGGGGCCGCGGGCTGCTTTCCCGTCCTGATCGCCTGGGCTGCCGTCACCAACTCGGTGGAGTGGCCGGCGGTGATCCTCTTTATGGTCATCTTCCTGTGGACTCCGCCGCATTACTGGCCGCTGTCCATGCGCTACGGCGAGGATTACCGCAACGCCAACGTGCCCATGCTCGGTGCCATCGCCGGCGCCAAGGTGGTCTCGGTCCAGGTGGTCCTCTACGCGTGGGCCATGGTTGCATGCTCACTGCTGATGGTTCCGGCAGGCGGGGCAGGCTGGGTCTACACCGTGACCGCGGTGCTGGCCGGCGCCTGGTTCCTGTACGAATCACACTCCCTGTACATCCGCGCCCACCGCGAAGACATCCCGGACAAGCGGGCCATGAAGGTATTCCACGGATCCATCAGCTACCTGACACTGCTCTTCATCGCACTGGCCGTCGACCCGTTCGTCGGCTCCGCCATCGTGGGCTAAMTATVSTTDTPLNASRARGGAGLARKAKAYFALTKPRVIELLLVSTLPTMIYAERGFPSVGLILATLVGGAFAAGSAGAFNCYIDRDIDKLMHRTENRPLVTGEVTPREALIFSWLLGVAAIVILWFGANPLAAWLGLAAIFFYVVIYTIILKRRTAQNIVWGGAAGCFPVLIAWAAVTNSVEWPAVILFMVIFLWTPPHYWPLSMRYGEDYRNANVPMLGAIAGAKVVSVQVVLYAWAMVACSLLMVPAGGAGWVYTVTAVLAGAWFLYESHSLYIRAHREDIPDKRAMKVFHGSISYLTLLFIALAVDPFVGSAIVGPGPT0008520_1006DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257NANA
D1-29_02537945ctaAHeme A synthaseGTGAGCACGGCTTCACGCCTCCCCCAGTTCGCCGGCCGCCTCTTCGCAGGTTTGCCCCGTACCGTGGACACCCGGGTCCGCCGCCTCGCGGTGGCCTCCCTTATCGGCCAGACCCTCCTGGTGGTCACCGGCGGCGCTGTCCGGCTGACGGCGTCGGGCCTGGGCTGTCCCACCTGGCCCCGCTGCACTGACACGTCGCTGGTGAACACCCCGGAAATGGGGATCCATGGATTCATCGAGTTCGGCAACAGGCTGCTGACCTTTGCCCTCGCGGCAGTGGCGGCACTCATGCTGGTCTACCTGTGGAACCTTCGCAAGGAACGCCGGGACCTCTTCCTGCTGGCGCTTGGCCTGCTGGCGAGCATTCCGGCTCAGGCTGTGATCGGCGGCATCACGGTGCTGACCAACCTCAACCCGTGGGTTGTCGGGCTGCACTTCCTCGTCTCCATGGCCCTTGTGGTGTTCGCCACGCTGCTGGTGAACCGGGCCTACGGCCGGACCGGCCGCTTTGCCACTACCCGGCTCCCCGCGCTGCCGGGCGTCCTGCGTCCGGTGACGGCCGCCGTCGCGCTTTTCTCAGCCGTTGCGGTGATGCTGGGCGTGGTGGTGACCGGCGCGGGTCCGCATGCGGGCGACGCCGACGCGCCGCGGAACGGGCTGGACTGGGACCTCTTCTCCCACATCCACGCCGTTCCTGCCTACCTCATCACGGCCGGAACGCTCTTTGCGCTGGTGATGGTTTTCAGGGCGCGGATCTCCGGGCCCTTCAGGACGGCGGCCTTGATGCTCCTGGCCGTGACCCTGCTGCAGGCGGTCATCGGCTTTACGCAGTACTACAACGGAATTCCTGCCCTGCTGGTCGCGGCGCACATGCTCGGTGCGGCCCTGCTCATGAGCGCAGCAACCAACGCTGCCGACGTCGCCCGTTCGAGCCCGGTCAAGTAGMSTASRLPQFAGRLFAGLPRTVDTRVRRLAVASLIGQTLLVVTGGAVRLTASGLGCPTWPRCTDTSLVNTPEMGIHGFIEFGNRLLTFALAAVAALMLVYLWNLRKERRDLFLLALGLLASIPAQAVIGGITVLTNLNPWVVGLHFLVSMALVVFATLLVNRAYGRTGRFATTRLPALPGVLRPVTAAVALFSAVAVMLGVVVTGAGPHAGDADAPRNGLDWDLFSHIHAVPAYLITAGTLFALVMVFRARISGPFRTAALMLLAVTLLQAVIGFTQYYNGIPALLVAAHMLGAALLMSAATNAADVARSSPVKPGPT0008525_2854DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259NANA
D1-29_02538801hypothetical proteinATGAACGGTCTGCCCACGGTTTCCGTGCCGGCATCGCCGGGCAGCCGCTCGGCCTCGCCGCCGGCTGCCGCCCCTCTGCTGCGCCGCATCCTGCTGCAGGGCAAGTACGAGTCCCTGACCATGATCCGCAATGGCGAACAGCTCATCCTGGCCGTTGTGCTCCCACTCCTTGCGCTGGTTGGCCTGACGGTGACCCCGTTTCTCGACGGGCTGGGGGCGAGCCGGATCAACGTGGCAGTCCCGGGCATCCTGGCACTCTGTGCCATGTCCACGGCGTTTACGGGCCAGGGAATTTCCACCGGGTTCGACAGGCGTTACGGCGTGCTTCGGTTCCTTTCCACCACTCCGCTGGGGCGCGTGGGCCTCATCGCCGGCAAGGTGCTGGCGGTCCTGGTGGTTCTTACCCTGCAGATCGGCGTGGTCACAGCAGTTGCCGTACCGTTGGGCTGGCAGCCTCCCGCCGCTGGCTGGCTGCCCGGCATTTCCCTTCTTGTTCTGGGCGCCGCGGCCTTTACAGCTTTGGGACTTCTGGTGGCCGGGACGGTTCGGCCCGAGGCCACGCTGGCCATCACCAACCTGCTGTGGATCCTGCTCGGCGCCCTGGGCGGGATAGTTATCCCTGCCGTACGGCTCCCGGACGCGGCACAGGCAGTGGTGCATTACCTTCCTTCCGGTGCCCTGGGCGAAGCCTTGCGCGAAGCATTCCTGCACGGCACGCTCAATGGCGGCGCCGCGCTTATCCTGCTGGCCTGGACCATCCTTGGCGGGGCCGCAGCCATCCGTTGGTTCAAGTGGAATTGAMNGLPTVSVPASPGSRSASPPAAAPLLRRILLQGKYESLTMIRNGEQLILAVVLPLLALVGLTVTPFLDGLGASRINVAVPGILALCAMSTAFTGQGISTGFDRRYGVLRFLSTTPLGRVGLIAGKVLAVLVVLTLQIGVVTAVAVPLGWQPPAAGWLPGISLLVLGAAAFTALGLLVAGTVRPEATLAITNLLWILLGALGGIVIPAVRLPDAAQAVVHYLPSGALGEALREAFLHGTLNGGAALILLAWTILGGAAAIRWFKWNPGPT0006730_18900DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_02539888lnrL_2COG1131Linearmycin resistance ATP-binding protein LnrLATGCTCCGTGTGGTCAGCGGTGTTTCGCTGGTTGCTGAGCGGGGCCAGGTTACTGCCCTCCTTGGCGCGAATGGCGCCGGGAAAACCACCACCATTGAATGCGCCCAGGGCCTTCAAAAGCGCAGTGGCGGGACTATTTCCCTGCTGGGTGAGGATCCCGCCCGTGCGGGCGCAGAACTCCGCTCCCGGGTAGGGATCATGCTCCAGGACGGCGGCCTCCCGCCGTCGGCCCGTCCGATCCCCCTGCTGAAACACATCGCGGGTATGTATTCGCACCCGCGGCCTGTGCATGAGCTGGTGGAGCGGTTGGGGATCGACGGATTCAGCCGGACCACTGTCCGCCGTCTCTCCGGCGGACAGAAGCAGCGGCTGGCACTTGCAGCGGCGCTGATCGGAAACCCCGAGGTCCTGTTCCTCGATGAGCCCAGCGCAGGACTGGATCCCCAGTCCCGGCAGCTGGTGTTTGAACTGATCTCGGAGCTGCGGGACGCCGGGATGGGCATCGTCCTGACCACCCACCTGATGGACGACGCCCAACGGCTGGCCGACTACGTCTACATCATCGACGCCGGCAGGAACGTGGCGGAAGGCACCGTGTCCCAGCTGCTCCAGCGGGATCCCGCTGTCGAGGATGGCGTTGACCACGTCCGGACGCTTTTCTTTGAGGCCCCGGCGGGCCTGGACTTTTCCGGCGTCCTCCCCGAAGGCATCGCGGTCAGTGAGACGCGTGCGGGCAGTTACGTCGCCACCGGAGCCCTGACCCCCCAGGATCTTGCCTCGTTGGCAACCTGGTGGGCCGCCCACGGTGTGATGCCCGGTTCCATGAGCCTGGAGGCACGCAGCCTCGAGGACGTTTTCCTTGACATTTCCGGGAAGGAGATCCGATGAMLRVVSGVSLVAERGQVTALLGANGAGKTTTIECAQGLQKRSGGTISLLGEDPARAGAELRSRVGIMLQDGGLPPSARPIPLLKHIAGMYSHPRPVHELVERLGIDGFSRTTVRRLSGGQKQRLALAAALIGNPEVLFLDEPSAGLDPQSRQLVFELISELRDAGMGIVLTTHLMDDAQRLADYVYIIDAGRNVAEGTVSQLLQRDPAVEDGVDHVRTLFFEAPAGLDFSGVLPEGIAVSETRAGSYVATGALTPQDLASLATWWAAHGVMPGSMSLEARSLEDVFLDISGKEIRPGPT0006725_4915DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_02540831hypothetical proteinATGACCAATGCTTCTGCTGTGCCTTTTGCCGGGCACGGAGCGCCGCGCACCACCGAGGGCGGCCATCTCGCTGCCGTGCCGGTGGCTGACGCGGACGAGCGCACCCGGGACCGTGTCCTGGGCGCCGTCCTGGAGCACGGGCCCATCAGCGCGGCCGAACTCGGTGACATGCTCGGATTTACTCCGGCCGCCGTCCGCCGCCACCTGGATCACCTTTCCCGCAGCGGTGTCATCGAGGTCAAGCGCGTGGCCAGGGCCGGTGCCGGAGCGGGCCGCCCGGCCCGCCGGTACGTCCTCAGTTCCCAAGGGCAATCCACCCTTGGCAACGACTACCTGGACATCGCCACCCTTGCACTCAAGCAGCTCCAGCAAATGGGCGGCGAAGAAGCGGTGCGGGAATTCGCCGTCGAGCGTTTTGCTGACATGGAGCGCCGGTATGCGCCGGAGATCGAAAAGGCCGGTCCGGATATCACCGCACGGGCCCGCGCACTGTCCGCCGCCCTCAGCCGGGACGGTTTTGTGGCGTCTGCCGCCTCGATCGAGGCCAAAGCCCCTTTGCCCGCGGCGCTTTCCAGCGTCCAGCTCTGCCAGGGGCACTGCCCCATCCAGCAGCTTGCGGCGCATTTCCCCGTCTTCTGCGATGTCGAGACCGAGGTCTTTGCCCGGCTCGTAGGCGTGGACGTGCGCCGGCTGTCCACCCTGGCACGCGGCGGCCACGTCTGTACCACCCACATACCTACAGGCCGGCTGGCTGCTATGGGACCCCAAATCCCGGTAGCCGCCCCCGCCAGCCTGAATGAAGTAAACAACCATCAGCAAGAAAGGCCGTGAMTNASAVPFAGHGAPRTTEGGHLAAVPVADADERTRDRVLGAVLEHGPISAAELGDMLGFTPAAVRRHLDHLSRSGVIEVKRVARAGAGAGRPARRYVLSSQGQSTLGNDYLDIATLALKQLQQMGGEEAVREFAVERFADMERRYAPEIEKAGPDITARARALSAALSRDGFVASAASIEAKAPLPAALSSVQLCQGHCPIQQLAAHFPVFCDVETEVFARLVGVDVRRLSTLARGGHVCTTHIPTGRLAAMGPQIPVAAPASLNEVNNHQQERPNANANANANA
D1-29_025411464hypothetical proteinATGACGGACCAACTATCAGAGAAAGCGGTAGCCGAAGACACTGTGATCTCGGAGATTCTGGAAAAGAATCCTGAGCTTCACGGCATCGGCACGTACGAGTACGGATGGTCCGACAAGAACGACGTCGGTGCCAACGCCCGCCGCGGTATCAGCGACGAGGTTGTCCGCGATATTTCGGACAAGAAGAGCGAGCCGGAATGGATGCTGGACCTTCGCCTGAAGGGCCTGAAGTACTTCGACCGCAAGCCCATGCCCACCTGGGGTGCAGACCTCTCCGGCATCGACTTCGACAACATCAAGTACTTCGTCCGGTCCACCGAGAAGCAGGCCGCCACCTGGGAAGACCTGCCCGAGGACATCCGGAACACCTATGAAAAGCTGGGTATCCCGGAAGCTGAGCGCAGCCGCCTCGTCTCAGGTGTGGCCGCACAGTATGAGTCCGAAGTTGTGTACCACCAGATCCGTGAGGACCTGGAAGCACAGGGTGTCATCTTCCTGGACACCGATACGGCACTGCGCGAGCACCCGGAGATCTTCCAGGAGTACTTCGGCACGGTCATTCCGGTGGGCGACAACAAATTCGCTTCCCTGAACACGGCAGTCTGGTCCGGCGGCTCCTTTGTGTATGTCCCCAAGGGCGTCCACGTGGACATTCCGCTGCAGGCATACTTCCGCATCAACACGGAAAACATGGGCCAGTTCGAGCGGACCCTGATCATCGCCGACGAGGACTCCTACGTCCACTACATCGAAGGCTGCACCGCTCCGATCTACACCTCGGACTCGCTGCACTCCGCCGTGGTGGAAATCATTGTCAAGAAGGGCGCACGCGTCCGTTACACCACCATCCAGAACTGGTCCACCAACGTGTACAACCTGGTGACCAAGCGTGCCATCTGCGAAGAAGGCGCCACCATGGAATGGGTTGACGGCAACATCGGTTCCAAGGTCACCATGAAATACCCGGCTGTCTACCTGGTGGGCGAGCACGCCAAGGGCGAAACCCTGTCCATCGCCTTCGCCGGCGCCGGCCAGCACCAGGACACCGGATCCAAGATGGTGCACATCGCGCCGAACACCAAGAGCTCCATCATCTCCAAGTCTGTTGCCCGCGGCGGCGGACGTGCAGCATACCGCGGCCTGGTCCAGGTCCGCGAAGGTGCCAAGCACTCTGCCAACACCGTCCGCTGCGACGCCCTGCTGGTGGACACCATCAGCCGTTCGGACACCTACCCGTACATCGACATCCGCGAGGATGACGTTGTCATGGGCCACGAAGCAACCGTTTCACGGGTCAGCGAAGAGCAGCTCTTCTACCTGATGTCCCGCGGCATGCGCGAAGACGAAGCCATGGCGATGATCGTCCGCGGCTTCATCGAACCAATTGCCCGCGAACTCCCGATGGAGTACGCACTTGAGCTGAACCGCCTGATTGAACTGCAGATGGAAGGGTCCGTCGGATAAMTDQLSEKAVAEDTVISEILEKNPELHGIGTYEYGWSDKNDVGANARRGISDEVVRDISDKKSEPEWMLDLRLKGLKYFDRKPMPTWGADLSGIDFDNIKYFVRSTEKQAATWEDLPEDIRNTYEKLGIPEAERSRLVSGVAAQYESEVVYHQIREDLEAQGVIFLDTDTALREHPEIFQEYFGTVIPVGDNKFASLNTAVWSGGSFVYVPKGVHVDIPLQAYFRINTENMGQFERTLIIADEDSYVHYIEGCTAPIYTSDSLHSAVVEIIVKKGARVRYTTIQNWSTNVYNLVTKRAICEEGATMEWVDGNIGSKVTMKYPAVYLVGEHAKGETLSIAFAGAGQHQDTGSKMVHIAPNTKSSIISKSVARGGGRAAYRGLVQVREGAKHSANTVRCDALLVDTISRSDTYPYIDIREDDVVMGHEATVSRVSEEQLFYLMSRGMREDEAMAMIVRGFIEPIARELPMEYALELNRLIELQMEGSVGNANANANANA
D1-29_025421287hypothetical proteinATGACTGAAATCACTACCGAAAAGGCGCGCATCGGCGCGCCCTCAGCCCAGCCGTTTATCAACGGCTTCACCGAAGAGGGCGAAAGCCTGTCGCCGATCAACGCGGCCGCCTCCAAGGCCCCGCTTGCGGGAGAAGCGGTTAAGAGCCACTCCCATGGCGGCGGTGTCGGCATCCCGGACAGCTCACGCGCCGGCCGCCTGACCTCCTACAACCTGGCTGACTTCAAGCCCCTCACCGGCCTGGAAGAGGACTGGCGGTTCACGCCGCTCAAACGGCTGCGCGGACTTCACAGCGAGGTCCTCGCAGGGGCGGCTCCGGCCGTTACCGTCAGCGGCCCGGACCGGGTTCAGGTGGAAACGGTTGCCCGCGAGGACAAGCGCATTGGTACTGCCGGCATCCCGGAGGACCGAGTGTCCGCCAACGCCTGGGAGAACTTCAGCGAAGCCACCGTCATCACCGTCCCGGCCGAATTTGAGGCTGACACGGAAATCACCGTCCTCATCACCGGCCTGGCGACCGAAGCGGCCGCCCAGCACCTGGTGATCGTGGCAGAAAAGTTCTCCAAGTCAGTTGTGGTCCTGGACCACCAGGGCTCGGCTGTCGTCTCCGAAAACGTTGAAATCGTTGTTGAAGACGGCGCCGACCTCACCGTTGTCTCCCTCCAGGAATGGAACGACGACGCCGTCCACGCCTCCTCCCAGCAGGCGAAAATCGGCCGTGACGCCAAGCTCAAGCACGTGGTGGTCAGCCTCGGCGGAGACCTCGTCCGGGTAACCCCCTCGGCCCGCTTCACCGCCCCCGGCGGCGAGGCTGAAATGTTCGGCCTGTACTTCGCCGACGCCGGCCAGCACCTGGAGCAGCGGCTGTTCGTAGACCATGCCGTGGCCAACTGCACCTCCAACGTCCTGTACAAGGGCGCCCTGCAGGGCAGGAACGCCCACGCCGTGTGGGTTGGCGACGTCCTGATTCGCAAGGAAGCCGAAGGCACCGACAGCTACGAGGCCAACCGCAACCTGCTGCTCACCGACGGCGCGCGCGCCGACTCGGTTCCGAACCTGGAAATTGAAACAGGCCTGATCAAGGGTGCCGGCCACGCCAGTGCCACAGGGCGCCTGGACGACGAGCACCTGTTCTACCTCATGGCCCGCGGCATCCCCGAGGATGTTGCGCGCCGCCTGGTAGTCCGCGGCTTCCTCCACGAGATCATCCAGCAGATCAAGGTTCCGGCCCTCGAAGAGCGGCTCACGGACGCTGTTGAGCGCGAGCTCGCCGTGACCAACAACTAGMTEITTEKARIGAPSAQPFINGFTEEGESLSPINAAASKAPLAGEAVKSHSHGGGVGIPDSSRAGRLTSYNLADFKPLTGLEEDWRFTPLKRLRGLHSEVLAGAAPAVTVSGPDRVQVETVAREDKRIGTAGIPEDRVSANAWENFSEATVITVPAEFEADTEITVLITGLATEAAAQHLVIVAEKFSKSVVVLDHQGSAVVSENVEIVVEDGADLTVVSLQEWNDDAVHASSQQAKIGRDAKLKHVVVSLGGDLVRVTPSARFTAPGGEAEMFGLYFADAGQHLEQRLFVDHAVANCTSNVLYKGALQGRNAHAVWVGDVLIRKEAEGTDSYEANRNLLLTDGARADSVPNLEIETGLIKGAGHASATGRLDDEHLFYLMARGIPEDVARRLVVRGFLHEIIQQIKVPALEERLTDAVERELAVTNNNANANANANA
D1-29_02543360hcaCCOG21463-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunitATGACTGACAAGCCAAAGGGCGAATTCGTCTGCAAGGTGGATGAAATCCAGCTCAAGCAGGCGCTGCGGATCCTGATCGATGACTACCCCGTAGCCATCGTCAAGGACTCCATGGGCGAGATCCACGCCATCGGCGACACCTGCTCACACGCGGACATTTCCTTGTCCGAGGGCGAGGTGGAAGGCTGCATGATCGAGTGCTGGGGCCACGGCTCCCAGTTCGATCTGCGAAGCGGGGAACCGCTGCAGCTGCCGGCGTATGACCCGGTCCCGGTGTTCGCCGTCGAGATCGTCGGGGATGAGGTCTATGTGGACTTCACCAACGTGGTCAACGGTGCGGAAGCCCCCAACTTTGGCTAGMTDKPKGEFVCKVDEIQLKQALRILIDDYPVAIVKDSMGEIHAIGDTCSHADISLSEGEVEGCMIECWGHGSQFDLRSGEPLQLPAYDPVPVFAVEIVGDEVYVDFTNVVNGAEAPNFGPGPT0019745_106DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019745-hcaC-K05710NANA
D1-29_02544795sufCCOG0396Vegetative protein 296ATGTCTACTCTTGAGATCAAGGACCTGCACGTCAGCATTGACACTGAGCAGGGCACCAAGGAGATCCTGAAGGGCGTCAGCCTGACCATCAAGACCGGCCAGACCCACGCCATCATGGGACCCAACGGCTCCGGCAAGTCCACGCTGGCCTCCACCATCGCCGGCCACCCGCGCTACAACGTCACCAGCGGCTCCATCACCCTGGACGGCGAAGACGTCCTGGACATGAGCGTTGACGAGCGCGCCCGGGCCGGCCTCTTCCTGGCCATGCAGTACCCTGTGGAGGTCCCCGGCGTCAGCATGACCAACTTCCTGCGCACCGCCAAGACCGCCATCGACGGCGAGGCTCCCAAGCTGCGCACCTGGACCAAGGACGTCAAGGACGCCATGCAGAAGCTGCGCATCGACGCCGACTTCGCCCAGCGCAATGTCAACGAAGGTTTCTCGGGCGGCGAAAAGAAGCGCGTGGAGATCCTCCAGCTGGAGCTCTTCAAGCCGAAGTTCGCCATCCTGGACGAGACCGACTCCGGGCTGGACGTGGACGCGCTCAAGGTTGTCTCCGAGGGCGTCAATCGTGCGCACGCCGAAGGCAACATGGGCACCCTGCTGATCACCCACTACACCCGGATCCTGCGCTACATCAAGCCGGACTTCGTGCACGTGTTTGTTGACGGCCAGGTTGTCGAAGAAGGCGGCCCCGAGCTGGCTGACCGCCTTGAAGAAGAAGGCTACGACCGCTACGCCAAGGGCGCCGGCGCAGCCACCATCGCTGCCGCAGCGGCACAGGCTCAGTAAMSTLEIKDLHVSIDTEQGTKEILKGVSLTIKTGQTHAIMGPNGSGKSTLASTIAGHPRYNVTSGSITLDGEDVLDMSVDERARAGLFLAMQYPVEVPGVSMTNFLRTAKTAIDGEAPKLRTWTKDVKDAMQKLRIDADFAQRNVNEGFSGGEKKRVEILQLELFKPKFAILDETDSGLDVDALKVVSEGVNRAHAEGNMGTLLITHYTRILRYIKPDFVHVFVDGQVVEEGGPELADRLEEEGYDRYAKGAGAATIAAAAAQAQNANANANANA
D1-29_02545333hypothetical proteinATGACCGAAATCGATTCGGCCCGCACGGGCCTCGAAGACGTCGAAGAGGCACTCAAGGACGTCATCGACCCCGAGCTCGGCGTGAACATCGTTGACCTCGGGCTGCTGTACGGCCTCAAGTACTCAGACGACGACGGCGCCCTGCTGATCGACATGACGCTGACCACGGCCGCCTGCCCGCTCACCGATGTCATCGAGGAGCAGGTGGGCAAGGCCCTGGACGGCATCGTGGACGACTGGCGCCTGAACTGGGTGTGGATGCCGCCTTGGGGTCCCGAGCGGATCACCGACGACGGCAAGGACCAGATGCGGGCCCTCGGCTTCAACATCTGAMTEIDSARTGLEDVEEALKDVIDPELGVNIVDLGLLYGLKYSDDDGALLIDMTLTTAACPLTDVIEEQVGKALDGIVDDWRLNWVWMPPWGPERITDDGKDQMRALGFNINANANANANA
D1-29_02546822COG2321putative proteinATGGGCCGCGGGGCTAAAGTGGGCGGCGGCATCGGGGGCGGGCTCATCCTCCTGGTTGCCTTGCTTCTGGGCGTGAATCCGCAGCTGCTGGAGGGCCTGGGCGGCATCGCGCCCGATCCCCAGAGCCAGGGCACCGCACCCGCATGTGAAACCGGGGCCGACGCGGACGCACGCCTGGACTGCCGGATCACCGGGACCGTCAACAGCCTCAATGCATTCTGGCCCGCTTATCTCCGGAACTACAACGTTCAGTACCCGCAGCCGGAAACGGTCATCTTCGGCGACGCCGTCAGCACCGGATGCGGCACGGCGTCCAGCGCGGTGGGTCCGTTCTATTGCCCCGCGGACACCACTGCCTACTTTGATCCCGGATTCTTCCAGGACCTCGTGGACAGGTTTGGGTCCTCCGGCGGTCCCCTGGCCCAGGAGTATGTGGTTGCCCACGAGTTCGGCCACCACATCCAGAATGTGCTGGGATACCTTGACCGTGCCCAGCAGGATCCCCAGGGGCCGGAGTCAGGTGCTGTCCGCGTGGAACTCCAGGCCGACTGCTACGCCGGCCTCTGGGTCAGGCACGCCGCCACCCAACCAGGACCCGACGGCCAGCCGTTCCTGGAGCCCATTACCCAGCAGGACCTCAACGACGCCCTGTCAGCAGCATCGGCGGTGGGCGATGACCGGATCCAGCAGGCCGCCACCGGCAGGGTGACACCGGAAGCGTGGACCCACGGGTCCAGCGAGCAGCGGCAGAAGTGGTTCTACCTGGGGTATCAGACCGGAGACATCAACCAGTGCGACACGTTCTCGGCGGCCACCCTCTGAMGRGAKVGGGIGGGLILLVALLLGVNPQLLEGLGGIAPDPQSQGTAPACETGADADARLDCRITGTVNSLNAFWPAYLRNYNVQYPQPETVIFGDAVSTGCGTASSAVGPFYCPADTTAYFDPGFFQDLVDRFGSSGGPLAQEYVVAHEFGHHIQNVLGYLDRAQQDPQGPESGAVRVELQADCYAGLWVRHAATQPGPDGQPFLEPITQQDLNDALSAASAVGDDRIQQAATGRVTPEAWTHGSSEQRQKWFYLGYQTGDINQCDTFSAATLNANANANANA
D1-29_025471407menE_12-succinylbenzoate--CoA ligaseATGCCTTTCTTGAACAGAATCCAGCGCTGGGCCGACGAACGGCCGCACGACACCGCCGTGGTGGTCGAAGGCAAACGCCTGGACTGGCTGTCGCTCCGGGATGCCGCGGCAGCGGCCGTGGCCGGTTCTGCGGGCGTATCGGTCCTTACCGAGGCCAACTCTGTGGACTTCGCCGTCAGGTTCGCGGCGGGTGTAGCGGGGGAACGGCAATGTGCCGTCCTGGATCCGGCGTGGCCGGCCCTGCTGCGCGAGGAGATCCATCAGCGGCTCCGGGAAACCCAGCAACCGCCTGCCGTCTCCGAGGAAGACCCGCTGGCTGACGGTTCGCCCGACTCCACGTTCCTGATCGGGCTCACCTCGGGAACCACCTCGGTTCCCAAGGCCTTCACCAGGTCGCGGCGGTCCTGGCAGCAGTCCTTTGACGCCTCGATCGAGTTCTTTGGCCTCCAGCAGGACGACGTGACGCTGGCGCCCGGACCGCTCGCTGCCAGCCTCAACCTCTATGCCCTGGCCGAATGCCTTTACGCCGGTTCGGAATTCCAGACCCTCGAACACTTCGATGTGGGCGACGTGCACGCTGCCATCACCCACGACGGCGTGACCCGGCTGGTGCTGGTCCCCACCATGCTTCGGCTGCTGAGCGAGCGCGGGCTGACCGGTTGTGTTGATGCCTCCGGTGTCCGCACCATCATCTGTGCCGGCTCGAAACTGGACGCGCGTACGCTGGAAGCGGCCCGCCGCTGGGCTCCCCATGCCACCATCTTCGAATACTATGGCGCGTCCGAACTCAGCTTCGTTTCGGGGACAGGCCTTCCCGCGGGAGAGTTGCCCGATGCGGGCGGAACCGGAATCGGACGGCCTTTCCCCGGTGTGGAAGTCCGGATCCTGGACGATGCCGGAGCAGTCCTGGCGGATGGCTCCGCGGGGAACATCTGCGTGCGCAGCCCGATGGTGAGCAACGGCTACCTCTGGGGTGACGACGGCGAGGCATTGCGCTCTTTCGACGGCTGGTACACCGTGGGGGACCAGGGCTACCTGGCGGACGGAGAACTGCACATCCTGGGCCGCCGCGCAGACATGATCCTGACCTCCGGAAAGAACGTATATCCGCACGAGGTGGAGCTGGCACTGGCTTCCGTGCCGGGTGTCGCTGCCGCGGTCGCGGCCGGAATGCCTGATGACCTCAGGGGCCAGCGGGTGGTGGCCGGGGTCCTGCCCTCGCACGGCGGAATCACCGCCACACAGCTCAGGGCAGGACTCGAAAACATCCTGACCCGGGACAAACGCCCCCTGCAGTATTTTGCGTTGACCGAACTCCCCACCACCGACCGTGGCAAGGTCAGCCGGAACATGTTCCTTGAGTGGATCGGCTCGCAGGACCAGAGGGCCCGGCACCTTGGCCACTGAMPFLNRIQRWADERPHDTAVVVEGKRLDWLSLRDAAAAAVAGSAGVSVLTEANSVDFAVRFAAGVAGERQCAVLDPAWPALLREEIHQRLRETQQPPAVSEEDPLADGSPDSTFLIGLTSGTTSVPKAFTRSRRSWQQSFDASIEFFGLQQDDVTLAPGPLAASLNLYALAECLYAGSEFQTLEHFDVGDVHAAITHDGVTRLVLVPTMLRLLSERGLTGCVDASGVRTIICAGSKLDARTLEAARRWAPHATIFEYYGASELSFVSGTGLPAGELPDAGGTGIGRPFPGVEVRILDDAGAVLADGSAGNICVRSPMVSNGYLWGDDGEALRSFDGWYTVGDQGYLADGELHILGRRADMILTSGKNVYPHEVELALASVPGVAAAVAAGMPDDLRGQRVVAGVLPSHGGITATQLRAGLENILTRDKRPLQYFALTELPTTDRGKVSRNMFLEWIGSQDQRARHLGHPGPT0008380_15918DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_025481188thlA_2COG0183Acetyl-CoA acetyltransferaseTTGGCCACTGATCTGCTTCCCGCCGACCGGCAGCCGGTCATCATCGGTGCGCGCCGCACCCCTGTCTGCCGCGCCAATGGGCCCCTGAAGGAGCTGCGGGCGCACCAGCTGCTGGCGCCTGTCCTGGGTCAGCTGCTTGCTGACAGCGGCGTCCCGTCGGGGGCCGTCACCGATGTGGTGATCGGCAACGCGGTGGGCGGCGGCGGAAATGTGGCCCGGCTCGCCTTGCTGGAGGCCGGTCTCCCCGTCAGCGTCCCCGGGGTCACCGTGGACCGGCAGTGCGGTTCCGGGCTGGATGCCATCGTGCTGGCCTCCAAGCTCGTGGCGGCCGGCGGCGGTCCCGTGTATCTCGCCGGGGGAGTGGAAAGCATCAGCACCGCGCCGCTGCGCGCACACCGGAACGACGACGGCGGGCACGACTTCTTTTCCCGTGCCCAGTTTGTGCCGCACAGCTTTGGCGACCCCGACATGGGTGTGGCTGCCGAGAACGTCGCAGCCAAGTTCGCCGTCAGCAGGGAAAGCCAGGATGCTTTTGCCCTGCGGAGCCACCAACGGGCGGTCGCAGCAGTCCAGGCGGGCGCGTTCGCCGACGAAATCACGCCGCTGGAAACGCCTTCCGGGACCATCAGTACCGACGACGGCCCGCGTCCGCGGCTAACTGCCGGCGTCCTGGCCAGGTTCCCGGCAGCCTTCGTTGATCAGGGTACTGTCACCGCCGGGAACTCATGCTTCGACGCGGACGCCGCGTCCGCCGTCGTGATCACGTCCTTGGAGCGGGCACGGGAACTGGGCGTGCCGGACGGCCTGCTGGTCCTGGCCACCGAGACCGTTGGGGTGGAGCCGCGGCTGCTGGGGATCGGGGCCGCGATGGCCGCCGAGAAGCTTCTGGCCGCCCGGGGTTTGTCCGTCTCTGAGCTGGGCCTGGTGGAGTTCAACGAGGCTTTTGCGTCGCAGGCACTTGCGTGCCTTGACCACCTTGGCATTGATCCGCTCCTGGTGAATCTCGACGGCGGGGCGTTGGCTTTGGGCCACGCGTACGGGGCGTCAGGGGCCGTGCTCGTGACGCGCCTGCTGGCCCAGGCGAGGCGGAAAGCCGAGGCAGGCTGCCTTGCCCTGGCCATGATCAGCATCGCGGGTGGCATGGGTACTGCGGCGCTGCTGCAGTATGAAAGGTTCGCCGCCGGCTGAMATDLLPADRQPVIIGARRTPVCRANGPLKELRAHQLLAPVLGQLLADSGVPSGAVTDVVIGNAVGGGGNVARLALLEAGLPVSVPGVTVDRQCGSGLDAIVLASKLVAAGGGPVYLAGGVESISTAPLRAHRNDDGGHDFFSRAQFVPHSFGDPDMGVAAENVAAKFAVSRESQDAFALRSHQRAVAAVQAGAFADEITPLETPSGTISTDDGPRPRLTAGVLARFPAAFVDQGTVTAGNSCFDADAASAVVITSLERARELGVPDGLLVLATETVGVEPRLLGIGAAMAAEKLLAARGLSVSELGLVEFNEAFASQALACLDHLGIDPLLVNLDGGALALGHAYGASGAVLVTRLLAQARRKAEAGCLALAMISIAGGMGTAALLQYERFAAGPGPT0008320_5169DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_02549624bioNCOG0619Energy-coupling factor transporter transmembrane protein BioNGTGAGGGGGCATGGCTTCCTGCTGGCCAACTATGTTCCCGGCAACTCCGTCATCCACCGGGCACCGCTGGCAGCCAAGTTCCTGCTGGTCATCGGCTGTGGCCTGTCATCGTTCCTGGTAGGCGACTGGCTGGTGTCCGCGGCCGTCTTTGCCGTGATGTGCGGGCTGTTTCTCCTGACGGGCGCGGGTGTGCTCCGGCTCCTCGCCGCCGTCCGGCCGTTGATCCTGGTACTGCTGGTGATCGGCCTGTTCCAATGGTGGCAGCTGGGCGGCCCCACCGCCGCACGGATTGTCCTGAACATCCTGGTCTGCGTCGTTGCGGCGTCCTTGCTGACGGCCACCACCCCGATGCAGCGGCTGCTGGATGGTGTGGTGTCCCTGGCCAGGCCCTTCCGCCGCTTTGGTGCGGACCCGGAGCGCTTTGCCCTCACCATCGCCATCATGCTGCGGAGCATCCCCTACATCGCCGGCGCCTTCGCCGACGTCCGGGACTCCGCCCGGGCCCGCGGGTTGGAGCGCAACCCCCGTGCCCTCGTGCTGCCCGTCATCATTACCACCGTGGCGTTCGCAAGGCAGACCGGCGAGGCACTGGCGGCCCGAGGACTTGGCGAGCCCGAAGACTAAMRGHGFLLANYVPGNSVIHRAPLAAKFLLVIGCGLSSFLVGDWLVSAAVFAVMCGLFLLTGAGVLRLLAAVRPLILVLLVIGLFQWWQLGGPTAARIVLNILVCVVAASLLTATTPMQRLLDGVVSLARPFRRFGADPERFALTIAIMLRSIPYIAGAFADVRDSARARGLERNPRALVLPVIITTVAFARQTGEALAARGLGEPEDNANANANANA
D1-29_02550717bioMCOG1122Biotin transport ATP-binding protein BioMATGGCCACCATTTCATTCCACGATGCCTGCGTTGAGGTGGCTGTTGAAGGCCGGCACGAGGCCAAGGCACTCCTTCGGGACATCAACCTGGACCTGACCGAACAACGGATCGGCGTCATCGGGGCCAACGGCTCCGGCAAGTCCACATTGCTGCGACTGATCAATGGGCTGGTCCAGCCAAGCTCGGGCTCGGTCAGTGTGGACGGCGCCGATACTGTCCGTGCCGTTCGGTCTGTTCGCCGGCAGGTCGGGTTTGTTTTCACCGATCCGCTCTCGCAGTTGGTGATGCCCACAGGACGGGAGGACGTTGAACTGTCATTGCGCAGGCCGGTCCGCAACGGACAGGAGCGGCGCCGCCAGGCGGAAGCCGCCCTGGACCGGTTCGGCCTCCTCCCGCTCGCCGATCAGAGCATCTACGAGCTCTCCGGCGGAGAACGCCAACTGATGGCGCTCGCGGCCGTTCTGGCCGTGAATCCTTCGGTACTGGTGCTGGATGAGCCTTCAACGCTGCTGGACTTGCGGAACCGCGAGCTGTTACGGCGTACGCTCTCGGCTCTTGACCAGCAGATCATCATGTCCACCCATGACCTGGATCTGGCATTGGAAATGGACCGTGTGCTGGTGGTCGAAGCAGGCCGGGTGGTGTTCGACGGCGGCCCCGCCGAAGCGGTGGACGGGTACCGGGCGCTCTGCGCCAACGGCCTGGCATCCCCGTGAMATISFHDACVEVAVEGRHEAKALLRDINLDLTEQRIGVIGANGSGKSTLLRLINGLVQPSSGSVSVDGADTVRAVRSVRRQVGFVFTDPLSQLVMPTGREDVELSLRRPVRNGQERRRQAEAALDRFGLLPLADQSIYELSGGERQLMALAAVLAVNPSVLVLDEPSTLLDLRNRELLRRTLSALDQQIIMSTHDLDLALEMDRVLVVEAGRVVFDGGPAEAVDGYRALCANGLASPPGPT0022045_255DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022045-bioM-K16784NANA
D1-29_02551630bioYCOG1268Biotin transporter BioYATGAGCAAGACTGACACAGCTGTCACCGGCACCGCCGCCCGTGAACGCATCCGCTGGAACGCCACGGACCTTGGCCTGATCGCCGTTTTCGCCGCGCTGGTGGCAGCATCCGCCATGATCCCCGGCATCGCCGCCAACGTCTTCGGCGTTCCCATCACCTTCCAGACCCTCGCCGTAATGCTCACCGGACTGATGCTGGGCCCTGGACGCGGCTTCGCCGCCGTGGGCCTCTACACGGTTCTGGGGCTGGCGGGACTGCCCATCTTCAGCCAGGGCCGCAGCGGCCTGGGTATCCTCGCCGGGCCGTCGGCAGGTTATATTATCGCCTTCCCCATCGCGGCGGCCGTGGTGGGCTGGTTGGCAACAGTGGTTATCCGCCGCACGTCACGGGCCAGGGCGCTGTGGTTCTTCGCCGCAGCCACGGTAACCAGCATTGTTGTGGTGCACACCCTCGGGATTGCCGGGATCGCCCTGAACACCAAGGCAACCCTGGGAGAGGCTTTTCTTGCCGACCTGATCTTCTACCCTGGCGACGTCGTCAAGAACATCCTGGCGGCAGCGATCGCGGTTGCCCTGCACCGGGCCTTTCCTGACCTTCTGGTCCGCCGCGTGAAGCGGATCGCGGCCTAGMSKTDTAVTGTAARERIRWNATDLGLIAVFAALVAASAMIPGIAANVFGVPITFQTLAVMLTGLMLGPGRGFAAVGLYTVLGLAGLPIFSQGRSGLGILAGPSAGYIIAFPIAAAVVGWLATVVIRRTSRARALWFFAAATVTSIVVVHTLGIAGIALNTKATLGEAFLADLIFYPGDVVKNILAAAIAVALHRAFPDLLVRRVKRIAAPGPT0022050_214DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_TRANSPORT,PGPT0022050-bioY-K03523NANA
D1-29_02552210hypothetical proteinATGGAAGACCTGCGGCACACGGCGAGGATCCTGCTGCAGCGGGATGATGTGGCCTTGACTGACCTCTGGATCATGTACTGGAACCATGGTGGGGACTGCCATCCGTTTGATTTCGATGCCTTTATCCATGAACTGCTGCCCGTTGCCTGGTTCGACATGAACGCCCTGGCCTCAGCGGTTCATGAACTGGTTCTCGAAAGCACCGGCTGAMEDLRHTARILLQRDDVALTDLWIMYWNHGGDCHPFDFDAFIHELLPVAWFDMNALASAVHELVLESTGNANANANANA
D1-29_02553735hypothetical proteinATGGATACCCCTGAGGAGATGGACGATTTCGAACGGCTCCAGGATCTGGTAGCCGAAATGGAAGACATCAAAGGCTTCCTTGAGGGCATGACGGGCCTTGCCGCCGCCGCAATGACCCGGGCCTCTGAAGCACGTATTGAATGTGCCGTGACCCTTCAACGCCGCAAGCGCCCCGCCACGATCGCGGGAAGCAGTGACGACGCAATCCTCCTGGACGGGATCGAACAGCGCCTGGGGGACGGCCCGTGCCTTTTGGCGCTGCGCACGGGTGCAACAGTGCTGCTGGGCGATCTCTCATCCGATTCCCGGTGGCCGGAGTTCCGCCAGGAGCTGGCGGCTAAAGGCTTCCGCAGCGCACTGGGTGTTCCACTGGACCTGGGCAAGAATGCCTCGTCCGTCCTGAATTTCTTCGCCTCTGACACAGGTGTCTTCACCCAGGAGAGCATCGAAGAAGCTCAACGCTTCGCAGATGTGGCTGGCCGTGCCCTCCGCCTGGGCCTGAGGATTGCTGCCGCCGAGCTGCGGGCCGAGGACCTGGCCTCGGCCATGGAGTCCAGGACCACCATCGACATGGCACGTGGCATTATCATGGCGCAGAACCGCTGTACGGGCGAAGAAGCCTTCGATATCCTCCGCCGCGTTTCGAGCACTCGAAACGAGAAGCTGCACGATATTGCCGGTGGTGTCGTCGCCGGGGTTGCAGGACCGCCCAAGGCAATGCACTTCGAGCCGTGAMDTPEEMDDFERLQDLVAEMEDIKGFLEGMTGLAAAAMTRASEARIECAVTLQRRKRPATIAGSSDDAILLDGIEQRLGDGPCLLALRTGATVLLGDLSSDSRWPEFRQELAAKGFRSALGVPLDLGKNASSVLNFFASDTGVFTQESIEEAQRFADVAGRALRLGLRIAAAELRAEDLASAMESRTTIDMARGIIMAQNRCTGEEAFDILRRVSSTRNEKLHDIAGGVVAGVAGPPKAMHFEPNANANANANA
D1-29_025541782asnBCOG0367Asparagine synthetase [glutamine-hydrolyzing] 1ATGTGCGCAATTGCCGGCGAGATTGCCTTCAACGGAGAAAGGGCAGAGCGCGAACCTGTCCTGAAAATGATGGGAGCCATGACATCGCGCGGCCCGGATGGAGACGGAATCTGGGATTGCGGCTGGGCGGCCCTGGGCCACCAGCGATTGAGCATTATCGACCTTTCCGAAGCCGGCGCACAGCCCATGATCGATGAGGACGCCGGCCTTGCCCTCACCTTCAACGGATGCATCTACAACTACAGGGATCTGCGGCGGGAGCTTGGCAAGGAGTTCGTCTTCCAGTCCACGAGTGACACCGAGGTCATCCTCAAGGCATACCGGAAATGGGGAGAAGACTTCGTCCATCACCTGGTGGGGATGTTTGCCATCGCCATCGCCGACAAAAGACGCCGGAAGATCCTCCTGGTGCGGGACCGGCTGGGCATCAAGCCCCTGTATCTGGCCAAACTCCAGGGCCGAATCCGCTTTGCGTCAACCCTCCCGGCACTGGTCAGCGCGGGCGGCCTGGATACCAGCATCGACGAGACCGCACTGCACCACTACCTGAGCTGGCACTCCATCGTTCCTGCGCCAAGGACCATCCTGAAGGGAGTGGAAAAGCTTCCGGCGGCCACCATGAGGGTCCTCCAGGCGGATGGAACCTGGCACGACAGAGAGTACTGGAAGCCCGAATACACCCGGACGGCAGGGTTCGCGGACTGGACCACCCAGGACTGGCGGGATGCCATTGGCGAGTCGCTTCGGACAGCGGTGCGCCGGCGTATGGTGGCCGATGTGCCGGTGGGCGTGCTGCTGTCCGGAGGCCTGGATTCCAGCCTGCTGGTTGCCCTCCTGGCAGACGAGGGCCAGCAGGGGCTGGCCACTTTCAGTATTGGATTCGACGGTGCCGGCGGGGAAGCCGGTGATGAATTCGCCTATTCAAACCTGATCGCCAAGACCTTTGGGACGCAGCATGAGCGCCTCCACGTGGGAACGTCAGATTTAGCCCCCGCGGTTGCGGGAGCCGTCTCGGCCATGTCCGAGCCCATGTCCAGCCACGATGTCACGGCCTTCTACCTGCTGTCCCAGAGGGTATCGGAGAGACTCAAAGTAGTGCAGTGCGGCCAGGGCGCCGACGAAGTCTTCGCCGGTTACAGCTACCACCAGCCCGCCACAACGGTGTCACGGCGGGAAGCGAGGGCCGCCTTTGTCCCGGCTTTTGTTGACCACAGCCATAAGGAGCTCCTCGAGATCCTTGAGCCTGAATGGTGGTGTGGCAGGGACGTCAGCGGCGAGGTCCTGGCTTCGAACCTGGCGTGCCCCGGAGCGGATACTGCCCTGGATGCGGTGCTGAGGCTTGATACCCATCTCCTGATGATTGATGACCCGGTAAAACGGCTGGACAACATGTCCATGGCCTGGGGCCTCGAAGCCCGCGTCCCATTCCTTGACCATCACCTCGTGGAACTCGCCGCTTCCTGCCCGCCCGGGCTCAAGTCCGCCCACGGTGGTAAAGGCATACTCAAGGACCTGGGCCGCACCATCCTGCCTTCGGCCGTGATTGATCGCCCCAAGGGGTACTTTCCCGTGCCTGCGCTGCGGTACCTGGCGGAACCATTCCTGTCCATGGCGCATGATGCCCTGCATTCACCGGAGGCCAAGCAGCGGGGACTTTTCCGGTCAGACTATGTTGAGGGGCTCCTGGCCGATCCGAACAGCAGCCGTACTCCGGTCAACAGCAATGTCCTGTGGCAGCTGGCGCTACTGGAGATGTGGCTCCAGCAGCACGGTGTGGGCTGAMCAIAGEIAFNGERAEREPVLKMMGAMTSRGPDGDGIWDCGWAALGHQRLSIIDLSEAGAQPMIDEDAGLALTFNGCIYNYRDLRRELGKEFVFQSTSDTEVILKAYRKWGEDFVHHLVGMFAIAIADKRRRKILLVRDRLGIKPLYLAKLQGRIRFASTLPALVSAGGLDTSIDETALHHYLSWHSIVPAPRTILKGVEKLPAATMRVLQADGTWHDREYWKPEYTRTAGFADWTTQDWRDAIGESLRTAVRRRMVADVPVGVLLSGGLDSSLLVALLADEGQQGLATFSIGFDGAGGEAGDEFAYSNLIAKTFGTQHERLHVGTSDLAPAVAGAVSAMSEPMSSHDVTAFYLLSQRVSERLKVVQCGQGADEVFAGYSYHQPATTVSRREARAAFVPAFVDHSHKELLEILEPEWWCGRDVSGEVLASNLACPGADTALDAVLRLDTHLLMIDDPVKRLDNMSMAWGLEARVPFLDHHLVELAASCPPGLKSAHGGKGILKDLGRTILPSAVIDRPKGYFPVPALRYLAEPFLSMAHDALHSPEAKQRGLFRSDYVEGLLADPNSSRTPVNSNVLWQLALLEMWLQQHGVGPGPT0020150_4255DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020150-asnB-K01953NANA
D1-29_025551599ybiT_1COG0488putative ABC transporter ATP-binding protein YbiTGTGATTACCGTCCAGGATCTTGAATTGCGCGCCGGCGCCCGGCTCCTTATGGACCAGGTGAGCTTCCGCATCGACAAGGGAGACAAGATCGGCCTTGTGGGCCGGAACGGAGCAGGCAAGACCACCCTGACCCGCGTGCTGGCCGGTGAAGGACTTCCGGCCGCCGGCAAAGTGACCCGCACCGGAGAGATCGGTTACCTTCCGCAGGATCCCCGCACGCCGGACATGGAACAGCTTGCCCGCGACCGTATCCTGGCTGCCAGGGGGCTGGACATCGCGGTCGGCAAACTCCGGCTGGCGCACGATGAGATGGCGAGCGAGGACGCCGACGTCCAGCGCAAGGCGATGAACCGCTATGACCGGCTGGAATCGGAGTTCCTGGCAGCCGGCGGCTACGCGGCTGAGGCCGAGGCCGCCGCCATCTGCTCCAACCTGGCACTGCCGGACCGTATCCTGAACCAGCCGCTTAAGACGCTGTCCGGCGGGCAGCGCCGGCGTGTTGAACTGGCACGGATCCTGTACTCCGACGCCGAGACCATGCTGCTGGATGAACCTACCAACCACCTTGATGCGGACTCCATCGCGTGGCTCCGCGACTTCCTGAAAAACCATCAGGGCGGGCTCATTGTCATCAGCCACGATACCGAGCTCCTGGAAGCCACCGTCAACAAGGTCTTCCTGCTGGATGCCAACCGGGCCCAGATCGACTTCTACAACATGGACTGGAAGCGCTACCTCACCCAGCGGGAGACCGACGAACGCGCCCGCAAGCGGGAACGCGCCAACGCGGAAAAGAAGGCCCAGGTCCTGTTTGACCAGGCCAATAAGATGCGGGCCAAGGCCACCAAGGCAGTTGCAGCCCAGAACATGGCCAAGCGTGCCGAGCGGCTGCTCAGCGGGCTGGAAGCTGTCCGCGAAAACGACCGCGTGGCCGCCCTCCGCTTCCCGGATCCGTCACCCTGTGGCAAGACCCCGCTGACTGCCGAAGGCCTCAGCAAGTCCTACGGTTCGCTGGAAATCTTCACCGATGTTGATCTGGCGATCGACCGCGGTTCCAAGGTGGTGATCCTGGGCCTGAACGGCGCCGGAAAGACCACCCTCCTGCGTATGCTCGCCGGCGTGGACAAGCCCGACACCGGAGACATCATCCCTGGGCACGGGCTCAAGGTGGGCTACTACGCCCAGGAGCACGAAACCCTGGACGTGGACCGGACTGTCCTGCAGAACATGCGCTCTTCGGCGCCGGACATGCAGGACGCCGAAGTCCGCGGCATTCTTGGCTCGTTCCTGTTCTCCGGGGACGACGTCGACAAGCCGGCCGGCGTCCTTTCAGGTGGTGAGAAGACCCGCCTGGCCCTGGCCACCATTGTGGCTTCCAGCGCCAACGTGCTTCTGCTCGACGAACCCACGAACAACCTTGACCCTGCCAGCCGCGCCGAGATCCTGGGCGCCCTGCGCAACTACAGCGGCGCCGTGGTCCTTGTCAGCCACGACGAAGGCGCTGTGGAAGCCCTGAACCCGGAGCGGGTAGTCCTCCTGCCCGACGGCGTCGAGGACCTCTGGAACGAGGACTACCTGGACCTCATCACGCTGGCCTAGMITVQDLELRAGARLLMDQVSFRIDKGDKIGLVGRNGAGKTTLTRVLAGEGLPAAGKVTRTGEIGYLPQDPRTPDMEQLARDRILAARGLDIAVGKLRLAHDEMASEDADVQRKAMNRYDRLESEFLAAGGYAAEAEAAAICSNLALPDRILNQPLKTLSGGQRRRVELARILYSDAETMLLDEPTNHLDADSIAWLRDFLKNHQGGLIVISHDTELLEATVNKVFLLDANRAQIDFYNMDWKRYLTQRETDERARKRERANAEKKAQVLFDQANKMRAKATKAVAAQNMAKRAERLLSGLEAVRENDRVAALRFPDPSPCGKTPLTAEGLSKSYGSLEIFTDVDLAIDRGSKVVILGLNGAGKTTLLRMLAGVDKPDTGDIIPGHGLKVGYYAQEHETLDVDRTVLQNMRSSAPDMQDAEVRGILGSFLFSGDDVDKPAGVLSGGEKTRLALATIVASSANVLLLDEPTNNLDPASRAEILGALRNYSGAVVLVSHDEGAVEALNPERVVLLPDGVEDLWNEDYLDLITLANANANANANA
D1-29_02556396hypothetical proteinTTGACCGACAAGCTCAGTATTCTCGTTCGAGTAGACCTCGATTCCGCCCGCGCCCAGGTTTCCACCCGGGGCCATGTGACCACCAAAAGCATCCAGGCCCTTTACGTTGTGGTAAAGCGCGCCAACGCCCTCCGGGAAAATCTTGACCTGGAAATCGACATGACCCACGCCTGGGTTGAGCCGGACGCACTGGAGCAACTGAACAAGTGCTCCCGGACGCGTCACCTGCCCGTGCAGATCGATCCCTACCAGGCTGACTGCAGGTTCCGCGTGGTACCGCCAAGCGCTCCGGTGGTGACTGCACCGGCCATGATTGCGCAGGCTTCGGCCGGGACACTGCCAAAGAGGACGCCGGGCAGCACGGTACGAACGAAAGTGGCAGGCCTGGCTGCCTGAMTDKLSILVRVDLDSARAQVSTRGHVTTKSIQALYVVVKRANALRENLDLEIDMTHAWVEPDALEQLNKCSRTRHLPVQIDPYQADCRFRVVPPSAPVVTAPAMIAQASAGTLPKRTPGSTVRTKVAGLAANANANANANA
D1-29_02557885COG3346putative SURF1-like proteinATGTACCGGTTCCTCTTTTCCAGCAAGTGGCTGGGTTACCTCCTGCTTGCCGCCATTTTCGCGGCCGCGTGTGTTTTCCTGGGGCGGTGGCAGATGGACCGCAGGGCTGAAACCCTTGCAGAGATCAACCGGGTCGTCTCCAATTACTCGGCGGCCCCCATCCCCTTTGCTGAGGCGAGAGACGAGTTCATCCGTTTGGATCCGGAGAAGGAATGGACCCAGGTTGAGCTGAAGGGCCGTTACGACGTCGCAGGCGAGAGGATTGTCAGGAACCGTCCGCTGAACGGCCAACCGGGTTATGAGGTGGTGGTTCCGTTCAGGCTGGATTCCGGCGAGACAGTGGTCATCGACCGGGGATGGCTGCCCATTGGCAACAGCAATCCGGGCAGCCCCGACTCGGTCCCCGAACCGCCCTCCGGGGAAGTGACTGCTGTTGTCCGGCTCAAACCCGGTGAGCCGCAGCTGCAGCGCGGTGCCCCGGCCGGGCAACTGGCCTCCATTGACCTTCCCGCATACTCGGCTGAGCTCGGCTATCCCCTTCTAACCGGCGCCTACGGACAGCTGGCCAGCGAGTCGCCGGCAGTGGCTGACATGCCTTTCCCCTTCCCCATGCCTTCCACCGAGGAAGGGACGCATCTGTCCTACTCCCTGCAGTGGTTTGCCTTTGGTGTCCTGATGTTTGTCGGCTTCGGCTATGCCGCCAGGCAGCAGGCACGCAACGCGGCGATCGACGCGGAGGAGGAAGCGGAGAACGGAATTGACTCCGGCAGCACCGTTCACTCGACTGCTGCAGCGGCCCGCCGTCGTCCGGCTGTTGCCCGCAAACGCAGGCACGCGACGTCGGAGGAAGAGGAAGACGCCATCCTGGACGCGCGGGGCCTGTAAMYRFLFSSKWLGYLLLAAIFAAACVFLGRWQMDRRAETLAEINRVVSNYSAAPIPFAEARDEFIRLDPEKEWTQVELKGRYDVAGERIVRNRPLNGQPGYEVVVPFRLDSGETVVIDRGWLPIGNSNPGSPDSVPEPPSGEVTAVVRLKPGEPQLQRGAPAGQLASIDLPAYSAELGYPLLTGAYGQLASESPAVADMPFPFPMPSTEEGTHLSYSLQWFAFGVLMFVGFGYAARQQARNAAIDAEEEAENGIDSGSTVHSTAAAARRRPAVARKRRHATSEEEEDAILDARGLNANANANANA
D1-29_02558273hypothetical proteinATGAACATTTTCGACCTGGCTGCAGGGACGGATCCCGGGCCGGCCGGGGCTGCCATGTGCTCCCGGAAAGCCTGCCGTTCGGATGCCGCCTGGCAACTCCTGTGGAACAACCCCAAGATCCACACCCCGGAACGCCGGAAGATCTGGCTCGCCTGCAACGAGCACCGTGACTGGCTGGAGGACTATCTCCAGACGCGTGGGCTCTGGAAGGACACCGTAGCCCTGGCTCCCGACGCGGAGGCCGGGCATGCCCCTGCAAGGCAGGATGGCTGAMNIFDLAAGTDPGPAGAAMCSRKACRSDAAWQLLWNNPKIHTPERRKIWLACNEHRDWLEDYLQTRGLWKDTVALAPDAEAGHAPARQDGNANANANANA
D1-29_02559441hypothetical proteinGTGACCCTTGAAAACCATGCCGGACAGTCCGTGCCCGGAGATCGTGAAAGGTTCTCCGGGGACCCGGAAGTCCACAGCATCACGGATGCCGCTGCAGCCCATTCGGAGGACATGCACCAGCGTATGGTCAAGTACGCGCTGGCCATGGGAATCCGCATGGTGTGCCTCATCCTGATCTTTGTGGTGGATGGCTGGTTCAAGATCCTTATGGTCGCGGGAGCGGTCTTCCTGCCATGGATTGCAGTGGTCATCGCCAACGGCAGCGACAAAGCTGAAATCCACAGCGATTCGCTCCTCGATTCCGCTCCCCTCGCTGAGCTTGAGGGCGGCGCGGCAGCACCGGCCGCCGACGAAGACCCCGTCTCTGCAGTGCTCCAGGGCGAAGTCATTGATGATAACGACGACGAACCACACGACGGACAGGAACGGCGCGCTACATGAMTLENHAGQSVPGDRERFSGDPEVHSITDAAAAHSEDMHQRMVKYALAMGIRMVCLILIFVVDGWFKILMVAGAVFLPWIAVVIANGSDKAEIHSDSLLDSAPLAELEGGAAAPAADEDPVSAVLQGEVIDDNDDEPHDGQERRATNANANANANA
D1-29_02560726fabG_23-oxoacyl-[acyl-carrier-protein] reductase FabGATGTCTGAAGCAGTTACCGCGGCCCGCAGCGTCCTGATCACCGGAGGCAACCGCGGCATCGGGCTGGCCATCGCCGAGGCGTTCCTCGCCAACGGCGACAAAGTGGCCGTGACCTACCGGAGCGAGTCGGAGCTTCCGGCGGGGATCCTGGGCGTCAAAGCCGATGTGACGGACGAGGCCTCCGTGGATGTTGCCTTCTCCGAGGTGGAAGCCGCCCACGGTCCCGTGGAGGTCCTTGTGGCCAACGCAGGCATCACCAAGGACACGCTCCTGCTGCGTATGAGCGAGGACGATTTCACCTCAGTGATCGATACCAACCTCACCGGGGCGTTCCGCGTCATCAAGCGCGCCTCCAAGGGCATGATCCGGCTACGGAAGGGCCGCGTGGTCCTCATCTCATCCGTCTCCGGACTGTACGGAGCCCCGGGCCAGATCAATTATTCGGCGTCCAAGGCGGGGCTGGTGGGCATCGCCCGCTCGCTCACCCGTGAACTGGGCTCCCGCGGAATCACGGCCAACGTTGTGGCACCGGGGTTCATTAACACGGACATGACCGCGGAACTGAACGAAGCAACCCAGAAGGACTACCTTTCCAAGGTTCCGGCCGGACGCTTTGCCGACGCCTCCGAGGTTGCCAACGTTGTCCGCTGGATTTCCAGCGACGAGGCGGCGTACATTTCCGGGGCGGTCATTCCGGTGGACGGCGGACTGGGCATGGGCCACTAGMSEAVTAARSVLITGGNRGIGLAIAEAFLANGDKVAVTYRSESELPAGILGVKADVTDEASVDVAFSEVEAAHGPVEVLVANAGITKDTLLLRMSEDDFTSVIDTNLTGAFRVIKRASKGMIRLRKGRVVLISSVSGLYGAPGQINYSASKAGLVGIARSLTRELGSRGITANVVAPGFINTDMTAELNEATQKDYLSKVPAGRFADASEVANVVRWISSDEAAYISGAVIPVDGGLGMGHPGPT0003180_20679DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_02561753hypothetical proteinGTGGGACTGCTGGACAACAAGACAGCCATCGTGACCGGATCCTCGCGCGGAATCGGCGCCGAAGTGGCCAAAAACCTCGCTGCCGAGGGTGCCGCCGTCGTTGTTAATTACCGTCAGAAGGCGCCCCGCGCCAACAAGGTTGTGGCCGGCATCGAGGCGGCCGGCGGCCGCGCCGTGGCGGTGGGCGCCGATCTCACCACCCAGGAAGGCGTGCAGGCGCTGGCCAGCGCCGCCATGGAAAACTTCGGGTCACTCGATGTCCTGGTGCTCAATGCATCCGGCGGCATGGAGTCGGGTATGGAAGACGACTACGCGCTAAAGCTCAACCGCGACGCACAGGTCAACATGCTCAACGCCGCAGTGCCCCTGATGAAGGAAGGCTCCCGCGTGGTCTTCGTGACCAGCCACCAGGCCCACTTCATCAACTCCGTCCCCACCATGCCGGAATACGAGCCTGTCGCCCGCAGCAAGCGCGCCGGTGAAGATGCGCTCCGTGAGCTTCTGCCGAACCTGGCTGAAAAGGGCATCTCCCTGGTGGTGGTGTCAGGCGACATGATCGAGGGCACAGTGACCGCCACGCTCCTGGACCGTTCCAACCCGGGCGCCATCGAGGCTCGTCGGGCGGAGGCAGGCAAGCTCTACTCAGTGGAAGAGTTTGCTGAAGTGGTGGCAGGCATGGCCACGGCCGACGTCGAATCCGGACACACTGAATACGCCGGCGGCGCCGACTACTTCGGCAAGAGCGTCAAGTAAMGLLDNKTAIVTGSSRGIGAEVAKNLAAEGAAVVVNYRQKAPRANKVVAGIEAAGGRAVAVGADLTTQEGVQALASAAMENFGSLDVLVLNASGGMESGMEDDYALKLNRDAQVNMLNAAVPLMKEGSRVVFVTSHQAHFINSVPTMPEYEPVARSKRAGEDALRELLPNLAEKGISLVVVSGDMIEGTVTATLLDRSNPGAIEARRAEAGKLYSVEEFAEVVAGMATADVESGHTEYAGGADYFGKSVKPGPT0003180_11567DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_02562948hypothetical proteinATGAATTCGGGCAGGACTCCCCCGCTGGCTAAGATTGCAGCCATGACTTCGAACGTGACTGCGGTCAGCTATGGCCTCAAACTGACCTCCGGGGAGCTGGAACAGCTGCGTTCCCTCCTGATCGAAAACGGTGCATCCGTTCAAGACGAATCCCGTGCCGCGGACAGCCGTTATGAGGTTCACACCGCGGAACTTGGCCTTCCGGAGGCTACGGCCGCCGGCATCGCTGCCCTGCGGCGGGCCGTGGCGGGAGCCTCAGAGGATGGACCGGACAAAGCCATGGACACGGCGATTGTGCCGTCGGGGCTTCGGAAGGCTCCCCGCAAGCTGCTGATCATGGATGTTGACTCAACGCTGATCCAGCAGGAAGTGATTGAACTCCTTGCCGCCTACGCGGGCAAGCGGGAGGAAGTCGCCGCGGTGACAGAAGCCGCCATGCGCGGTGAACTCGATTTCGCACAGAGCCTCCACGCCAGGGTTGCCGTACTCGCAGGCCTCCCCGCGGACGTCGTCGGAGCCGTCCGCCGGGAAGTGAAGCTGAGCGAGGGTGCTGCCGAACTGGTGGCTGCCTTCAAGGCCGCCGGCCACGTGGTCGCCGTCGTTTCCGGCGGCTTCAACCAGATCCTGGAGCCGATCGCCGATGAACTGGGGCTGGACTACTGGATGGCCAATGAGCTCGAAATCGTTGACGGCGCCTTGACCGGCAAGGTGCTCGGGGCGGTCATAGACCGGGCCGCCAAGGAAAAGTACCTGCGCGAATGGGCCGCGGCCGAAGGCATCCCAATGGAACACACCATCGCCGTGGGCGATGGCGCCAACGACCTGGACATGCTGGGTGCTGCAGGAATAGGCGTTGCCTTCAACGCCAAGCCCGCAGTCCGAGCCGTCGCCGATTCGGCCATCAACATGCCCTACCTTGACGCTGTCCGCCACATCGCCGGGGTTTGAMNSGRTPPLAKIAAMTSNVTAVSYGLKLTSGELEQLRSLLIENGASVQDESRAADSRYEVHTAELGLPEATAAGIAALRRAVAGASEDGPDKAMDTAIVPSGLRKAPRKLLIMDVDSTLIQQEVIELLAAYAGKREEVAAVTEAAMRGELDFAQSLHARVAVLAGLPADVVGAVRREVKLSEGAAELVAAFKAAGHVVAVVSGGFNQILEPIADELGLDYWMANELEIVDGALTGKVLGAVIDRAAKEKYLREWAAAEGIPMEHTIAVGDGANDLDMLGAAGIGVAFNAKPAVRAVADSAINMPYLDAVRHIAGVNANANANANA
D1-29_02563786ylmACOG1119putative ABC transporter ATP-binding protein YlmAATGAGTGAAGTTCTTGAATTGGCCGCCGTCAGCGTTGTCCGTGGAGCCAAAACGCTTCTGAACAAGGTGGACTGGCAGGTCAAGGAGGGCGAGCGTTGGGTCATCCTTGGCCCCAACGGCGCCGGCAAGACCACGCTCCTTCAGATCGCTGCCGCGCGGCTTCATCCCACCAGCGGCATGGCCGGCATCCTGGAGGAAATCCTGGGTGCTGTGGACGTGTTTGAGCTCCGTCCCCGCATTGGCCTCTCCTCCGCCGCACTGGCCAACCAGATCCCCGAGCACGAAAAAGTCCTTAACGTTGTGGTGACAGCCGCCTATGGCGTGACCGGCCGCTGGCGTGAGGGGTATGAGCGCGACGACGAACGCCGGGCCTTCACCCTCCTGAACGAGTGGGGCATGGGACCGCTGCTCAACCGGCCCTTCGCCTCCCTGTCCGAAGGCGAGCGCAAGCGTGTGCAGATCGCCCGTGCCCTGATGACAGATCCGGAACTTCTGCTCCTCGACGAGCCGGCCGCCGGCCTGGACCTTGGTGGGCGCGAGGACCTGGTGCACCGCCTCAGTGAGCTGGCCCAGGACGAGTCGGCGCCGGCCATCGTCCTGGTCACCCACCACCTTGAGGAGGTCCCGCCCGGATTCACCCATGCCATGCTGCTCCGCGACGCGAATGTTGTGGCCGCCGGACCCATCGCCGACGTGCTGACCGCCGCCCACCTGAGCCAGACTTTCGGGCTCGACCTGGACGTCACCGTCACCGGAGGCCGCTACACCGCCACCGCCCGCCGCTAAMSEVLELAAVSVVRGAKTLLNKVDWQVKEGERWVILGPNGAGKTTLLQIAAARLHPTSGMAGILEEILGAVDVFELRPRIGLSSAALANQIPEHEKVLNVVVTAAYGVTGRWREGYERDDERRAFTLLNEWGMGPLLNRPFASLSEGERKRVQIARALMTDPELLLLDEPAAGLDLGGREDLVHRLSELAQDESAPAIVLVTHHLEEVPPGFTHAMLLRDANVVAAGPIADVLTAAHLSQTFGLDLDVTVTGGRYTATARRPGPT0003760_5190DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_02564786hypothetical proteinGTGGACCTTCTCAGCAGTACCTTTGTGACCTTCGCCGGCCTCTGGGCAGGCACCATCAACGCCGTCGTAGGGTCCGGCACCCTGGTGACCTTCCCGGTGCTGATCGCCCTCGGCGTCACCCCCGTTGTGGCATCCATGAGCAACGCCATGGGCCTCGTGGCGGGCACCGCAGCCGGCGCGTGGGGCTACCGCCGTGAACTCACGGGGCGCGGCAGGCAACTGCTCAGGCTCCTGCCGGCCTCGTTGCTGGGCGGCATCTCCGGAGCCTGGCTGCTTCTCCACCTCCCGGAGAGGGTCTTCCACTTCGTGGCCCCTGTGCTGCTGGTCCTGGCCCTGCTCATGGTCCTGTTCCAGCCGCGGCTGCAGTCCTGGGTGCTCAACCGCGAGGTGAATCCTGAGCATGCCATCCGGGACAAGCGCCATGGGATCCTCCTGGTGGTGCTGGTCTACCTCGCCGGCGTGTATGGCGGCTATTTCGTCGCGGCCCAGGGAATCCTGCTGGTTGGCATCCTGGGGATATTCCTGACCGGAACCATCCAGAACGCCAACGCCATGAAGAACATCCTGGTTCTGGGTGTGAACTTCGTCGCGGCCGTCTCCTACCTGCTGTTCGCCTTTGACCGGATCAACTGGCTGGTGGTGCTCCTGATCGCCGTCAGCTCCACGGTGGGGGGACTCCTGGGCTCGAGGGTCGGCAGGCGTCTGTCGCCCGCCGTGCTGCGGGGCATTATCTTCGCGCTCGGCCTGATGGCGCTGGGCTTTATGATCGCCAATCTGCTGAAATAAMDLLSSTFVTFAGLWAGTINAVVGSGTLVTFPVLIALGVTPVVASMSNAMGLVAGTAAGAWGYRRELTGRGRQLLRLLPASLLGGISGAWLLLHLPERVFHFVAPVLLVLALLMVLFQPRLQSWVLNREVNPEHAIRDKRHGILLVVLVYLAGVYGGYFVAAQGILLVGILGIFLTGTIQNANAMKNILVLGVNFVAAVSYLLFAFDRINWLVVLLIAVSSTVGGLLGSRVGRRLSPAVLRGIIFALGLMALGFMIANLLKNANANANANA
D1-29_02565810rlmB_223S rRNA (guanosine-2'-O-)-methyltransferase RlmBGTGACAATCCACTACCTAGAGTCCGCCGGGGATCCCCGTATCTCGGACTACACGCAGCTGACGGATGTGCACCTGCGAAAACTCCGCGAGCCCGCCGAGGGCATGTACATAGCGGAGTCCTCCCGCGTGCTGCGCCGGGCGCTGGCGGCAGGCCACACGCCGCGCTCCTTTTTCCTCGCGGAGAAGTGGCTTGATGACCTGCAGGACATCCTCGGTGCTTATCCGGACGTCCCGGCCTTCATCGGCAGTGCGGCACTGCTGGAGGAAATCACCGGCTTCCACCTCCACCGCGGCGCCATGGCGGCGATGCAACGGCCGGCGCCCGTCCCGCTGGCGGAACTGCTCGCAGGCGCGCGGCGGGTGGCCGTCCTGGAGGACATTGTGGACCACACCAACGTGGGCGCCATCTTCCGGTCCGCCGCGGCCCTGGACATTGATGCGGTGCTTATTTCGCCGCGGTGCGGGGATCCGCTCTACCGCCGGAGTGTTCGGGTCAGCATGGGCACCGTCTTCCAGGTGCCGTGGGCACGGCTGGATAGCTGGCCACATGATCTAAACGTTCTCCGGGACGCCGGCTTCACGGTGGCCGCCCTGGAATTAACCCCCGACGCCGTGGACGTGGACGAACTCGCCGCGCGCAATCCAGCCCGGCTCGCCCTGGTGCTGGGCACCGAAGGCGCGGGCATGAGCGCGGAGACTCTCGCCGCCGTCGACCTCGCCGTCAAGATACCCATGCGGGCAGGAGTCGACTCACTCAACGTCGCCGCGGCCTCCGCCGTGGCGTTTTGGGAGCTACGGCCCCGGCAGTAGMTIHYLESAGDPRISDYTQLTDVHLRKLREPAEGMYIAESSRVLRRALAAGHTPRSFFLAEKWLDDLQDILGAYPDVPAFIGSAALLEEITGFHLHRGAMAAMQRPAPVPLAELLAGARRVAVLEDIVDHTNVGAIFRSAAALDIDAVLISPRCGDPLYRRSVRVSMGTVFQVPWARLDSWPHDLNVLRDAGFTVAALELTPDAVDVDELAARNPARLALVLGTEGAGMSAETLAAVDLAVKIPMRAGVDSLNVAAASAVAFWELRPRQNANANANANA
D1-29_02566258rpmE2COG025450S ribosomal protein L31 type BATGAAGTCTGATATCCACCCGAAGTACGAAGCTGTTGTTTTCAACGACCTGGCTTCCGGCGTCAAGTTCCTGACCAAGTCCACCGTGTCTTCCAAGAAGACCATCGAGTGGGAAGACGGCAACACCTACCCGGTCATCGACGTCGAAATCTCCTCCGAGTCCCACCCGTTCTACACGGGTAAGCAGCGCATCATGGACTCTGCAGGCCGCGTCGAGCGCTTCAACGCTCGCTTCAAGGGCTTCGGCGGCAAGAAGTAAMKSDIHPKYEAVVFNDLASGVKFLTKSTVSSKKTIEWEDGNTYPVIDVEISSESHPFYTGKQRIMDSAGRVERFNARFKGFGGKKPGPT0014325_1319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
D1-29_025671104lipMOctanoyltransferase LipMATGACGCAGCCTATGCCCAGCCCGGTTCCCGCCTCTCCCGGAACGGCGGCCAACCACCACGGCGAGTACAAGGTGCCCGGCGGCAAGCTGGTGGTGGTGGATCTCGACGTCGTTGACGGTTTCCTGGCCAACGTCTCCCTCAGCGGCGATTTCTTCCTGGAGCCCGACGACGCCCTGCCGGCCATGAACCGGGCCCTGGCCGGGCTCCCGGAAACGACGACGGCGGCAGAGCTGTCCGCCGCCGTGTCTGCGTCGCTGCCGCCCGGCGCAGTCCTGTTCGGCTTCTCAGCGGATGCTGTGGCGGTCACTGTCCGCCGCGCCCTGGCAAAGGCAACGTCCTGGTCCGACCACCACTGGAACGTCATCGCTCCCTCCGTGCTGCCCACGCACATCAACGTCGCGTTGGACGAAGTACTGACCGAAGAGGTGGGCGCCGGCCGGCGCAACCCCACCCTGCGGTTCTGGGACTGGGCTGAACCGTCTGTGGTGATCGGCAGCTTCCAGTCGGTCCGCAATGAGATAGACCCCGACGGCGTTGCCCGGCACGGCATCACAGTGGTCCGCCGGATCAGCGGCGGGGGAGCGATGTTCATGGAAGCCGGCAACTGCATTACGTACTCCCTGTACCTTCCACAGACGCTGGTGGACGGCATCAGCTTCGCGGACTCCTACGCGTTCCTGGATGCCTGGGTGATGGCCGCCCTGGAGAAGCTCGGGATCAGCGCCTTCTACGTTCCGCTGAACGATATCGCCACGGACCAGGGGAAGATCGGCGGTGCAGCCCAGAAGCGCCTCGCCAACGGCGGCATGCTTCACCACGTGACCATGAGCTATGACATCGACGCCGACAAAATGGTGGAAGTGCTGCGCATCGGCAAGGAAAAGCTCTCGGACAAGGGAACGCGCAGCGCCAAAAAACGCGTCGATCCGCTCCGCCGGCAAACCGGGCTGGCCCGCACGGAGATCATCTCGGCCATGATGGAGGTGTTTACCGAAAGGTACGGTGCCACCCCTTCTGAGCTCACCGAGGCGGAACTTACGGCTGCCACGGAGCGCGTGGCGTCAAAGTTCGGCACCGGGGAATGGCTGAACCGAGTCCCCTAAMTQPMPSPVPASPGTAANHHGEYKVPGGKLVVVDLDVVDGFLANVSLSGDFFLEPDDALPAMNRALAGLPETTTAAELSAAVSASLPPGAVLFGFSADAVAVTVRRALAKATSWSDHHWNVIAPSVLPTHINVALDEVLTEEVGAGRRNPTLRFWDWAEPSVVIGSFQSVRNEIDPDGVARHGITVVRRISGGGAMFMEAGNCITYSLYLPQTLVDGISFADSYAFLDAWVMAALEKLGISAFYVPLNDIATDQGKIGGAAQKRLANGGMLHHVTMSYDIDADKMVEVLRIGKEKLSDKGTRSAKKRVDPLRRQTGLARTEIISAMMEVFTERYGATPSELTEAELTAATERVASKFGTGEWLNRVPPGPT0003945_234DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003945-lplA|lplJ|lipL1-K03800NANA
D1-29_025682649pepN_1Aminopeptidase NGTGCCACACGAGAATCTGCAGCGCGCCGAAGCCGCCGAACGTTCAGCCCTGATCAGAACCCACAGCTACGACATTTCCCTTGACGTGCGGCAGGTGGAGAACCCTGACGTGGCAGGGTACCCAAGCCGCAGTGTCATCAACTTCTCTGCAGCCGAGCCAGGCGGGACTACCTTCCTGGACTTCATAGGGAGCGACGTGCACAGCGTTTTCCTCAACGGCAAGGGGTTGCCTGTAACCGAAGTGCTGGACGGATCCCGGATCCGGCTGGAGAACCTGCAGGCAGAGAACCAGGTGACAGTGACCGGCACCGCCCTCTACAGCCGCTCAGGCGAAGGCATGCACCGCTTTGTGGATCCGGCCGACGGCCAGTGCTACCTGTACACGCAGTACGAACCGGCCGACGCCCGCCGCGTGTTTGCCAACTTTGAGCAGCCCGACCTCAAGGCCGAATTCACGTTCCACGTGATGGCGCCTTTCGGGTGGGAGGTCACCTCCAACGGTGCTGAGACGGCCCGAACCCAGCTGACCAGTGATCCCGCCACCAGCCGCTGGGATTTCGCACCAACCAAACCAATGTCCACCTACATCACTTCGATCCTTGCCGGTCCGTACTTCAAAGCGGAGGACAGGTGGCAGGCAACGCTGGATGACGGCAGCCAACTGGATGTTCCCCTGGCTCTTTACTGCCGGGCGTCCATGGCGGAGTCCTTTGATGCTCCCGAACTGTTCAGGCTGACAAAGAACGGGCTGGAGTTCTTCAACCGGCTCTTCGACTACCCCTATCCCTGGGGCAAATACGATCAGGCCTTTGTCCCGGAGTACAACCTTGGCGCCATGGAGAACCCTGGGCTGGTGACGTTCACCGAAAGCTACGTTTTCACCTCACGTGCCACCGACTCGCAGTACCAGGCGCGGGCCAACACCCTGATGCACGAAATGGCCCACATGTGGTTCGGTGACCTAGTCACCATGGAATGGTGGGACGATCTGTGGCTCAAGGAATCCTTCGCGGACTACATGGGGACCCTTGGCGTGGACCGGGCCACCGGCTGGGACACCGCCTGGGTGGACTTTGCGAACAAGCGCAAGGCGTGGGCCTACGTCCAGGACCAGCTGCCCACGACGCATCCCATCGTGGCCGACATCCCGGACCTGGAGGCGGCCAAGCAGAACTTTGACGGCATCACCTACGCCAAGGGCGCCTCGGTGCTCAAGCAATTGGTGGCCTACGTCGGCTTTGAAGCCTTCATCGCCGGCTCCCGGCAGTACTTCCACGACCACGCATACGGCAACACCACGCTCGCGGACCTGCTCGGGGCGCTCAGCGCCTCCTCCGGCCGTGACCTGGCCGGCTGGGCAGCGCAGTGGCTGCAGACCTCAGGCATCTCCACCCTGTCCGTGGAGACGGGGGCGCACGACGGCGTCCTCGGCACGGTGGCCATCGTCCAGGACGCTGAGGACCCCGTCAGCGGACGCCAGGAACTCCGCCCGCACCGGCTCCGGCTGGGATTCTACGACTTCGCCCCGGACGGCGCCCTGGTCCGGATGGACAGCGTGGAAACGGATGTTGCCGGCGCGCGGACGGAGCTTCCGGAACTCGCGGGCCGGCCGCAACCCGCCCTCCTGCTGGTCAACGACGATGACCTCAGCTATGCCAAGGTACGGCTGGATCCGTTGTCTGAGGCCACGGTGCTGGAGTCGCTTGACCGCCTCAGCGATCCGATGGCGCGCGCACTCTGCTGGACAGCGCTGTGGAACTCGGCGCGCGACGGTGAAAGCCCGGCGTCCCGGTACATTGAGGCGGTCCAGGCCTTCGGGCCCTCCGAAACGGGGATCGGCGTCCTGCTGAACATCCTCAATAACGCCTCGACCGCCGTCGAACGCTATGTTCCCGTGCAGGGAAGGGACGCCGTCCGGTCAGCCTTCCTCACGGCAGTCAAGACCCGGCTGGAGATTGCGGCACCGGGTTCGGACCACCAGCTTGCGTGGGCCCGCACCCTCGCGGCCGTCAGCCGGCATGACGCAGCCTTCCTTCCCACGCTCACCGGCCTCCTGGAGGGAACGGTTGTGGTGGAGGGCCTTGCAGTGGATGCAGAGCTGCGGTGGAACATCTGGCACGCCCTGGCGGCCAACGGACAGGCAACACAGGCCGGGCTTGACGAGGAACTGGCCCGGGACACCACAGCCTCAGGCCGTGCCGGCCACGCGACCGCGCTCGCCGCCCGCACCGATCCCGAGGTGAAGAAGTCCGCCTGGAACGCCGCCGTGCACGGCACGGAACTGTCCAACCAGCTCCTCAGTGCCACCATCGCAGGCTTTACAACGGCTCCTGTTGCGCTCCTCACGCCTTACGTGGAGCCCTATTTCGAATGCCTCCGCAGCGTCTGGGACGGACGGAGCATCGAGATCGCCAGCCGGATCGTCCGGGGACTGTTTCCCCTGGCCCAGGACATGCCGCTGGACGGGAGCCGCCCCGACCAGCATCCGGTGGTGATCCGCACTGACGCTTGGCTGGACGGGAATGCGGACGCTCCGCCTGCCCTCCGGCGGATCGTCATCGAGCAGCGCAGCCACCTGCTCCGGGCCCTCTCGGCGCAGGCCGCCGTCGTCAATTCACCTGAGCCTTTGCCGTACCCCGCTGCGCAGTGAMPHENLQRAEAAERSALIRTHSYDISLDVRQVENPDVAGYPSRSVINFSAAEPGGTTFLDFIGSDVHSVFLNGKGLPVTEVLDGSRIRLENLQAENQVTVTGTALYSRSGEGMHRFVDPADGQCYLYTQYEPADARRVFANFEQPDLKAEFTFHVMAPFGWEVTSNGAETARTQLTSDPATSRWDFAPTKPMSTYITSILAGPYFKAEDRWQATLDDGSQLDVPLALYCRASMAESFDAPELFRLTKNGLEFFNRLFDYPYPWGKYDQAFVPEYNLGAMENPGLVTFTESYVFTSRATDSQYQARANTLMHEMAHMWFGDLVTMEWWDDLWLKESFADYMGTLGVDRATGWDTAWVDFANKRKAWAYVQDQLPTTHPIVADIPDLEAAKQNFDGITYAKGASVLKQLVAYVGFEAFIAGSRQYFHDHAYGNTTLADLLGALSASSGRDLAGWAAQWLQTSGISTLSVETGAHDGVLGTVAIVQDAEDPVSGRQELRPHRLRLGFYDFAPDGALVRMDSVETDVAGARTELPELAGRPQPALLLVNDDDLSYAKVRLDPLSEATVLESLDRLSDPMARALCWTALWNSARDGESPASRYIEAVQAFGPSETGIGVLLNILNNASTAVERYVPVQGRDAVRSAFLTAVKTRLEIAAPGSDHQLAWARTLAAVSRHDAAFLPTLTGLLEGTVVVEGLAVDAELRWNIWHALAANGQATQAGLDEELARDTTASGRAGHATALAARTDPEVKKSAWNAAVHGTELSNQLLSATIAGFTTAPVALLTPYVEPYFECLRSVWDGRSIEIASRIVRGLFPLAQDMPLDGSRPDQHPVVIRTDAWLDGNADAPPALRRIVIEQRSHLLRALSAQAAVVNSPEPLPYPAAQNANANANANA
D1-29_025691116hypothetical proteinATGAACAGAAGCCGGCGGGAGTCCGGAAAGGGGCCGGGCATCAGACAGCCCGGACTGCCGCACGCCCGTGCAGACCGTCTCCTGCCGGGCCTGCTGACGGCTGCCGTTTCCCTGGCAGCCGTGTTCTCTGTGCATGCCCTGGTCCCTGTCCTGCCCGCCATGACCCTGGCAGTTGTCCTGGGCCTCCTCGCCGCCAACCTGCCCGGCACCGCTGTCTGGATCGCCGGCCGGGCCAGGCCGGGCCTTGACTTCGCCGGAAAACACTTCATGCGCGGCGGGATCGTCCTGCTGGGGCTCAAGGTCAGCATCATGGACATCCTGGGCCTGGGCTGGTTGGCCCTGGTCCTGATCGCCGGCGTGGTGCTGGTGAGTTTCTGGGGTACCTACCTCATAGCCCGCCTCTTCCGGCTGCCGGGGGACACTTCGTTGCTGGTTGCCACGGGCTTTTCAATCTGCGGAGCATCGGCGATCGGAGCCATGGCCGCCGTGCGGCGGATCCGGCATGTGGACACCGTCCTTCCGGTGGCGCTGGTGACGCTCTGCGGAACACTCGCCATCGGGGTGCTGCCGCTGCTGGTGCACCCGCTGGCCCTGACTCCCCTCGCGTTCGGCGCCTGGACGGGCGCCTCCGTGCACGACGTCGGCCAGGTGGTGGCCACAGCGCAAACGGCCGGAACAGCGGCCCTTGGCATCGCCGTCGTGGTCAAACTCACCAGGGTGCTGCTGCTGGCGCCCGTGGTGGCCGTCGCCGGACTGCAGCAGAGGGTGAGCACGGGGAGGATGCGCCGCAGTGTCGACGCGCAGAATCGGTCCGGGAGTGCTCCTGCAGGGCCGGTGTCACCGGAACTCGCCCTGCCGCCTGTAGTGCCCCTCTTCGTGGTGGGCTTCGTGGCCATGGTGGCGCTTCGCTCCAGCGGTTGGCTGACCCCCGGCTGGCTCGAGGCAGGTGCGGGACTTCAGGACATCCTCCTGGGCGCGGCGCTGTTCGGGCTTGGCTCTGCGGTGCGGATCCGAACGCTGCTGCACACCGGTGGACGGGCGTTGCTCGCCGCGCTTGCTGCCTGGCTCCTGATCGCGCTGCTGGGCCTCGGGGCTGCGCTGCTGATGACAGGCTAGMNRSRRESGKGPGIRQPGLPHARADRLLPGLLTAAVSLAAVFSVHALVPVLPAMTLAVVLGLLAANLPGTAVWIAGRARPGLDFAGKHFMRGGIVLLGLKVSIMDILGLGWLALVLIAGVVLVSFWGTYLIARLFRLPGDTSLLVATGFSICGASAIGAMAAVRRIRHVDTVLPVALVTLCGTLAIGVLPLLVHPLALTPLAFGAWTGASVHDVGQVVATAQTAGTAALGIAVVVKLTRVLLLAPVVAVAGLQQRVSTGRMRRSVDAQNRSGSAPAGPVSPELALPPVVPLFVVGFVAMVALRSSGWLTPGWLEAGAGLQDILLGAALFGLGSAVRIRTLLHTGGRALLAALAAWLLIALLGLGAALLMTGNANANANANA
D1-29_025701557COG2308putative proteinATGTCAGACCTATTCCAGGATTACTCCGAGGCCGCCGGGAGAACCGGCGCCTACGACGAGATGTTCACCCCCGGCCAGGAACCCCGTGACTCCTACGGCCAGGTGGCGGATGCCCTGCAGAAGCTGTCCCTCGCCGATGTCAGCGCACGGGCCGATTCCATGGCCCGGACGTTCCTGGACCGCGGTGTGACATTCGACTTCGCGGGGGAGGAGCGGCCGTTCCCGCTGGACATCGTTCCCCGCGTCATCCCCGCTGACGAATGGGACGTGCTGGAACGTGGCGTGGCCCAGCGGGTCCGGGCCCTCGAAGCCTTCCTTGATGACGTTTACGACAAGATGAACGTGGTGGCCGACGGCGTGATTCCCCGCCAGCTGGTGACCACCAGCGCCCACTTCCACCGTCAGGTGCAGGGTTTTGAGCCGGCCGGCGGGGTCCGGGTTCACATTTCGGGAATCGACGTCGTCCGCGATGCCGCGGGCACGTTCCGTGTCCTCGAGGACAACGTCCGCGTCCCCTCCGGCGTGAGCTACGTCCTGGAAAACCGCCGTGCCATGGCCAAGGGCCTGCCGGAGGCATTCGGGCAGCAACTCATCCGGCCCGTGGAGGAGTACCCCCGCCGGCTGCTGTCGGCCCTGCGAAAGACCGCCCCGTCCGGCGTCGACGATCCTACCGTCGTGGTCCTCACTCCCGGAGTCTTCAACAGCGCCTACTTTGAGCACACCCTCCTGGCCGGGCTGATGGGCGTGGAGCTGGTGGAGGGGCGCGACCTCATCTGCCGCGGCAACCGCGTCTATATGCGCACCACCGCCGGTGAACAGCGCGTGGACGTGATCTACAAGCGCATCGACGACGAATTCCTGGACCCGCTGCAGTTCCGGTCCGATTCCATGCTTGGCTGCCCCGGGCTGGTCAATGCCGCCCGCGCGGGCGGCGTGACCATCGCCAACGCCGTGGGTAACGGAGTGGCCGACGACAAGCTTGTGTACAGCTACGTCCCGGACCTGATCCGCTACTACCTGAATGAGGAACCTGTCATCGCGAACGTTGACACGTTCCGGCTGGAGGAAAAGGAAGCCCGCGAGTACGTCCTGGACAACCTCGCGGAACTTGTTGTTAAGCCGGTGGACGGGTCCGGCGGCAAGGGCCTGGTGATCGGGCCTGACGCGTCACGGGACGAACTCGATGCCCTCCGCAAGCGGGTCATCGCCGATCCCCGCGGCTGGATCGCGCAACCGGTGCTGCAGCTGTCTACCGTGCCTACGCTGAGCGGAGACAAGTTTGGTCCCCGCCACGTGGATCTTCGCCCCTTCGCCGTCAACGACGGCGACAACGTCTGGGTCCTGCCCGGCGGACTCACCCGGGTTGCCCTGAAAGAGGGCTCGCTGATCGTCAATTCCAGCCAGGGCGGCGGATCCAAGGACACCTGGGTCCTGGCCGGTTCGCCCCAGGTTCCCGTCGAAACCATTCCGCGGCCATCCATCACCATCCGCGAGCGTGTTTCCGTCTGGCCCGTGGAGAGCAATTGGCGCGACCGCCAGTCGGAGCAGCAGCAGTGAMSDLFQDYSEAAGRTGAYDEMFTPGQEPRDSYGQVADALQKLSLADVSARADSMARTFLDRGVTFDFAGEERPFPLDIVPRVIPADEWDVLERGVAQRVRALEAFLDDVYDKMNVVADGVIPRQLVTTSAHFHRQVQGFEPAGGVRVHISGIDVVRDAAGTFRVLEDNVRVPSGVSYVLENRRAMAKGLPEAFGQQLIRPVEEYPRRLLSALRKTAPSGVDDPTVVVLTPGVFNSAYFEHTLLAGLMGVELVEGRDLICRGNRVYMRTTAGEQRVDVIYKRIDDEFLDPLQFRSDSMLGCPGLVNAARAGGVTIANAVGNGVADDKLVYSYVPDLIRYYLNEEPVIANVDTFRLEEKEAREYVLDNLAELVVKPVDGSGGKGLVIGPDASRDELDALRKRVIADPRGWIAQPVLQLSTVPTLSGDKFGPRHVDLRPFAVNDGDNVWVLPGGLTRVALKEGSLIVNSSQGGGSKDTWVLAGSPQVPVETIPRPSITIRERVSVWPVESNWRDRQSEQQQPGPT0026300_18DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-29_02571927hypothetical proteinATGCTTAGCCGAATTGCTGAGTCCCTTTTTTGGATCGGACGCTATGTTGAGCGGGCGGACGGTACGGCCCGGATCCTGGATGTGCACCTCGAACGCCTGAACCACCTCCCCATGGATGAACGCCGCAGCGTCGCGCAGGAACTCCTGGCCGTGATGGGCGCCCGGCCGGACAGCGCAGACTTCGGCCTGCCGGAACTGCTCCATGCCCTGGCGTATGACAAGACAAGCGCCACGTCCATCGCGGGTTCCCTGGGCGCTGCGCGTGAGAATGCCCGCCGCGCCCGCGAAACAGTCTCGTCCGGCCTGTGGGAGAGCCTCAACACCACCTACTACGGGCTGAGCCAGCACCGCAAGGACGTGGTGGGTACTTACCGTTTCTGCAACTGGACCCTGGAACGGACCGCCATGGTCAGCGGACTGGCAGACACCACCGTGAGCCATGATGAAAGCTGGCTCTTCCTGGTGCTTGGCCGTTCCCTGGAGCGGGCAGACATGACGGCACGCATGCTCTCCACCCGGGACGTGCTGTCCGCCGGAATGTCATGGGTCAACATGCTGCGCTGCGCCGGAGCCTACGAATCGTTCCTGCGGACCCGCCGCGCCGCGTTCGGCGACCAGCACGCCGCCGAGTTCCTGCTGCTGGACCGCCTGTTTCCGCGTTCCATCGTCTATGCGCTGCGGGACGCCGACGAATGCCTGGCCAAACTGGACCCATCGGCCCAGCGCGTGGGCTTCATCAACGACGCCCGCCGCATCGTGGGCCAGGCCAGGACCTTCCTGGAATTCCACCGGACGGATGACCTGATGTCCGAACTGCCCGAGCACATGGAACGCGTGCAGAAGGCCGTTTCGCAGGCCTCGGACGCCATATCCCGTAAGTACTTCAATCAGGCGGACGAACTGGCCTGGGTGGGAGAAGTTTCATGAMLSRIAESLFWIGRYVERADGTARILDVHLERLNHLPMDERRSVAQELLAVMGARPDSADFGLPELLHALAYDKTSATSIAGSLGAARENARRARETVSSGLWESLNTTYYGLSQHRKDVVGTYRFCNWTLERTAMVSGLADTTVSHDESWLFLVLGRSLERADMTARMLSTRDVLSAGMSWVNMLRCAGAYESFLRTRRAAFGDQHAAEFLLLDRLFPRSIVYALRDADECLAKLDPSAQRVGFINDARRIVGQARTFLEFHRTDDLMSELPEHMERVQKAVSQASDAISRKYFNQADELAWVGEVSNANANANANA
D1-29_02572852COG1305putative proteinATGACCCGGCTCAACATCATCCACAAGACCGCGTACAAGTACAACAAGCGGGTCACCCTGTCCTACAACGAGGCCCGGGTGACACCCCTGACGGACCCCCAGCAGGTGGTCCTCGAATCGGTGCTCAAGGTCTCGCCGTCGCAGGCCGCCGTGAGCAGCTACCGGGACTACTGGGGCACTCGGGTCACAGCCTTTGACATGCAGATGCCGCATGACCACCTGGAGGTGGTCTCCAACAGTACTGTTGAGGTGCACCGGGCCGAAAGGATTCCGTCCGACGCCGACATTGCCGGCTGGGATGTGCTGTCCTCCGCGGAGACGCTGAACACGTACAGTGACTGGCTCCCGCAGTCTCAGCTGAGCGGCCCCGGCGCTGAGGTGTTGGGGATCATTCCGGCAGTGGCCGCCGGCAGGAACGCGCATGAGGCTGCCCTTGCCATCTTTGAATGGATGCGCGGCGAAATGACCTACGTGTCAGGCTCCACCGCCGTCACCACCAATGCTGAAGAGGCGTGGGGGCAGCGGCAGGGAGTTTGCCAGGACCTCGCCCACCTTGCCATCGGAGCCTTGCGCAGCTGCGGCATACCGGCACGTTACGTTTCCGGTTACCTGCATCCGCGGTCGACGGCGGACATTGGCGAAACGGTTGCCGGCCAGTCACATGCGTGGCTTGAGTGGTGGGACGGCCAATGGCGCAGCTGGGACCCCACCAACCACAAGCCGGCCGGCGATTACCATGTCACCGTGGCCAAGGGCCGGGATTACCGCGACGTACCGCCCTTGAAGGGCATTCTGTCCGGCGGCGGGGGATCGGCGCTGAGCGTCAGCGTGGAGATCACCCGGCTCGCCTAGMTRLNIIHKTAYKYNKRVTLSYNEARVTPLTDPQQVVLESVLKVSPSQAAVSSYRDYWGTRVTAFDMQMPHDHLEVVSNSTVEVHRAERIPSDADIAGWDVLSSAETLNTYSDWLPQSQLSGPGAEVLGIIPAVAAGRNAHEAALAIFEWMRGEMTYVSGSTAVTTNAEEAWGQRQGVCQDLAHLAIGALRSCGIPARYVSGYLHPRSTADIGETVAGQSHAWLEWWDGQWRSWDPTNHKPAGDYHVTVAKGRDYRDVPPLKGILSGGGGSALSVSVEITRLANANANANANA
D1-29_02573468hypothetical proteinATGAGCAGCGAGCCAACGTCAGACGTGCACACTTTGGACCACCGCGAGTGCTGGGACCTGTTGCGGACAGTCTCGGTCGGACGGCTGGCCCTCCTGGTGAACGGCCAGCCGGACATCTTTCCCATTAACTACACGGTCGACGGCGGCACACTCGTGTTCCGCACCGGCGAAGGAACCAAGCTGGCCGGTGCGTCCGGCGGCGCCCAGGTGGCACTGGAAGCCGATGGAGTGGATGCCGTGAGCGGGCTGGCCTGGAGCGTTGTGGTCAAGGGGCCGGCCGAGGTCATCACGGGCACAGAGGACATCCTGGATACAGCTGCCCTCTACCTGTTCCCATGGCAGGCTGGAAGGAAGGACGCCTTCATCCGGATAAACCCGGACTCGATCACGGGACGGCGGTTCAAGGTCACCGCACCCATGACCTGGTGGACACAACTCAGCGGCGCCGTCAGGACGGCCCCGGAGTAAMSSEPTSDVHTLDHRECWDLLRTVSVGRLALLVNGQPDIFPINYTVDGGTLVFRTGEGTKLAGASGGAQVALEADGVDAVSGLAWSVVVKGPAEVITGTEDILDTAALYLFPWQAGRKDAFIRINPDSITGRRFKVTAPMTWWTQLSGAVRTAPEPGPT0028780_2153DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-5-NITROIMIDAZOLE_ANTIBIOTIC_RESISTANCE-AZOMYZIN,PGPT0028780-nimD-K07005NANA
D1-29_025741452hypothetical proteinATGAGCTCCCCCGATTTAACGCCTGAGGAAATCCAGGCCTGCCTCAAGGTCTTGAACAGCATTCACGTCTACGACGAGGAACATCCGGACTTCGTGTCCGTGCGCCGTGCCACCGGGAAGATGTTCAAGGCCGTCAAGCGGCACCGCCGGGTGACCAAGCGCGACCTGATTTCCGAAGCCGACCGGGCGGTGCTGGCTCAGACTGCAACCGCGGCTCCGGACCGAATCGACGACGAAACCCGCGGAAACAAGCTGGAGACGTCTGCCACCGGCAAGGTCGCCGGGCACCTCATCCGTTCACGCCCGTGCTACATCTGCAAACAGCACTACACCCAGGTGGATGCGTTCTACCACCAGCTCTGCCCCGATTGCGCGGCGTTCAGCCACACCAAGCGTGACGCCCGCACCGACCTCACGGGCCGCCGCGCCCTGCTGACCGGCGGACGGGCAAAAATCGGCATGTACATCGCCCTGCGCCTGCTGCGGGACGGTGCGTACACCACCATCACCACCCGTTTCCCCAAAGACGCGGCCCGCCGGTTCGCCGCCATGGAAGACAGCGCCGAATGGCTGCACCGGCTCCGGATCGTAGGCATCGACCTCCGCGACCCCTCCCAGGTCATGGCCCTGACCGATTCGATCGACGCCGCCGGCCCCCTGGACATCATCATCAACAACGCTGCCCAGACCGTACGGCGCTCCGGCAACGCCTACAAGCCGCTGGTGGACGCAGAGGACGAGCCGCTTCCGGCAGCCCTGGAGCCTGGCAACGGCGGACCGGAACTGGTGACGTTTGGGCACGCCCATGACAAGCACCCCCTCGCGCTGGCCAGCAGCGTCACAGAGCACCCGGTACTGGCCGGAGACGCCATCACGTCCCTGGCTTTGTCCACCGGCTCCGCATCACTGGAGCGGATCGCGTCCGGAACCGCCATCGACGCCGGTGGACTCGTCCCGGACCTTGGCGCCATCAACAGCTGGACCCAGGTGGTGAACGAGGTAGACCCCCTGGAAATGCTCGAAGTGCAGCTCTGCAACGTAACGGCGCCGTTCCTACTGGTCAGCCGGCTGCGCCCGGCCATGAAGCGCTCCACCGCGCACCGGAAGTACATCGTCAACGTCTCCGCCATGGAAGGCCAGTTCTCGCGCGCCTACAAGGGGCCCGGGCATCCGCACACCAACATGGCCAAAGCCGCGCTGAACATGATGACCCGGACCAGCGCGCAGGAAATGCTGGAATCCGACGGGATCCTGATGACCGCGGTGGACACGGGCTGGATCACGGACGAGCGCCCCCACGTCACCAAGGTCCGGCTGATGGAGGAAGGCTTCCACGCCCCGCTGGACCTCGTTGACGGAGCCGCCCGCGTCTACGATCCCATCGTGATGGGCGAAAAGGGCGAGGACCAGTACGGCGTCTTCCTGAAGGACTATAAGCCCAGTCCCTGGTAGMSSPDLTPEEIQACLKVLNSIHVYDEEHPDFVSVRRATGKMFKAVKRHRRVTKRDLISEADRAVLAQTATAAPDRIDDETRGNKLETSATGKVAGHLIRSRPCYICKQHYTQVDAFYHQLCPDCAAFSHTKRDARTDLTGRRALLTGGRAKIGMYIALRLLRDGAYTTITTRFPKDAARRFAAMEDSAEWLHRLRIVGIDLRDPSQVMALTDSIDAAGPLDIIINNAAQTVRRSGNAYKPLVDAEDEPLPAALEPGNGGPELVTFGHAHDKHPLALASSVTEHPVLAGDAITSLALSTGSASLERIASGTAIDAGGLVPDLGAINSWTQVVNEVDPLEMLEVQLCNVTAPFLLVSRLRPAMKRSTAHRKYIVNVSAMEGQFSRAYKGPGHPHTNMAKAALNMMTRTSAQEMLESDGILMTAVDTGWITDERPHVTKVRLMEEGFHAPLDLVDGAARVYDPIVMGEKGEDQYGVFLKDYKPSPWNANANANANA
D1-29_025751410glgCCOG0448Glucose-1-phosphate adenylyltransferaseATGCCGTTGAACAAAAAAGTCCTGGCCATTGTCCTCGCTGGCGGCGAGGGAAACCGGCTCATGCCACTGACGGCAGACCGGGCAAAACCTGCTGTGCCCTTTGCCGGCAGCTACCGCCTGATCGACTTTGCCCTGTCCAACCTGGTGAATTCGCGCTACCTGCAGATCGTTGTGCTCACCCAGTACAAATCGCACAGCCTTGACCGACATATATCCGAGACCTGGCGGATGTCCACCCAACTGGGCAACTACGTGGCATCCGTCCCGGCCCAGCAGCGCGTGGGCAAGAGCTGGTTCCTGGGCAGCGCCAACGCCATCTACCAGTCCCTGAACCTGATCCACGACGCCAATCCCGACATCGTGGTGGTTGTTGGCGCGGACCACGTCTACCGCATGGACTTTTCCCAGATGGTGGAGCAGCATGTGGCCAGCGGTGCCAAAGCCACCGTTGCCGCGGTACGCCAGCCGTTGAGCATGGCCGACCAGTTCGGTGTGATCGAGGTGGACCAGGAAGATCCGCAGAAGATCGCAGCTTTCGTGGAGAAACCCGCCACCACACCGGGACTCGCCGCCGATCCCACCCAATTCCTCGCCTCCATGGGCAACTACGTCTTCGACGCCGACGCCCTGGTGGAAGCACTCCACGTCGACGCCGAACGACTGGACACCAAGCACGACATGGGCGGGGACATCATCCCGTACTTTGTTAACCAGGGCGAGGCAGGGGTCTACGACTTCACCCTCAACCAGATCCCGGGATCCACCGAACGCGACCGCACCTACTGGCGTGACGTCGGCACCATCGACTCGTTCTATGACGCCCACATTGACCTGATTTCCCCCCTTCCGGTCTTCAACCTGTACAACTCCGAGTGGCCCATCTACACCCGGCAGAGCATCTCCCCGCCGGCAAAGTTCGTCCGCGGGCAGAAAAACACCGTTGGAACGGCGCTGGATTCGATCGTGGCCAACGGCGTGGTCATTTCCGGCGGCGTGGTGGAGGGCTCGGTCCTTTCCAACGACGTCTTTGTGGGAACCAGCAGCCGCGTGATCGACTCGGTGCTGATGGACAAGGTGAACGTCGGCGAGGGCGCCGTGATCAACCGGGCCATCATCGACAAAAACGTCAAGATCCCGGCCGGTGCTGCGATTGGGCTGGATCCGGAGCTTGACCGCGCCAGGGGCTTTAAGGTGACCGAATCAGGAATCACTGTCCTGGCCAAGGGCCAGGAAGTGCCGGAACCCGGCGAGGAAGAACTTGCCCTCTCGGCCCGGAACCTGCGCCTGGTTCCCAACGCCGTCAAGGCTGCCACCGCCAACTATCCTGACCTGCGGGAATCCGTGGACCAGACGGCGGAGATCCACGCAAACACCGCAGCGGAGGTTTCGCCCGGCGCCCGTCGTTCCTGAMPLNKKVLAIVLAGGEGNRLMPLTADRAKPAVPFAGSYRLIDFALSNLVNSRYLQIVVLTQYKSHSLDRHISETWRMSTQLGNYVASVPAQQRVGKSWFLGSANAIYQSLNLIHDANPDIVVVVGADHVYRMDFSQMVEQHVASGAKATVAAVRQPLSMADQFGVIEVDQEDPQKIAAFVEKPATTPGLAADPTQFLASMGNYVFDADALVEALHVDAERLDTKHDMGGDIIPYFVNQGEAGVYDFTLNQIPGSTERDRTYWRDVGTIDSFYDAHIDLISPLPVFNLYNSEWPIYTRQSISPPAKFVRGQKNTVGTALDSIVANGVVISGGVVEGSVLSNDVFVGTSSRVIDSVLMDKVNVGEGAVINRAIIDKNVKIPAGAAIGLDPELDRARGFKVTESGITVLAKGQEVPEPGEEELALSARNLRLVPNAVKAATANYPDLRESVDQTAEIHANTAAEVSPGARRSPGPT0025885_651DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025885-glgC-K00975NANA
D1-29_025761197glgMCOG0438Alpha-maltose-1-phosphate synthaseGTGCGAATAGACATTGTGACTAAAGAGTTCCCGCCGGAGATCTACGGTGGCGCCGGAGTCCACGTGGCCGAATTGAGCAGGGTGCTGAGTAAGCACGTTGACCTGCAGGTTCGTGCTTTCGGGGCGCCCCGCGATGCCGATTACCACGGTGCCGGGGTGACTTCCTATACCGTGCCCGAGGATCTGGGATCGGCTAACGCAGCGGTCCAGACGCTCGGGGTGGATCTGCGGATCGTTCCTGACATCGAGGGCGCAGACGTCGTCCATTCCCACACCTGGTACGCCAATATGGCTGGGCACCTGGCGTCCCTGCTGCATGGCATCCCGCATGTGCTCAGCGCGCACAGCCTTGAACCGTTGAGGCCGTGGAAGGCCGAGCAGCTGGGTGGCGGCTACGCCCTGTCTTCGTGGGTGGAAAAGACCGCCTACGAGGCCGCTGCGGCCATCATCGCCGTTTCCGAAGGCATGCGCCAGGACATCCTGCGCAGCTACCCGGATGTTGACCCGTCCAAGGTGCGTGTGGTCCACAACGGCATCGACGTTGATCAGTGGCACCGTGATGAAGGCGAAGACGCAGTTCGTGCCCTAGGCATCGATCCGCAGAAGCCCAGTGTGGTCTTTGTGGGGCGCAACACCCGCCAAAAGGGTGTGCCGTACCTGCTGCGCGCAGCGGCCAAGCTGCCGGCGGATGTTCAGCTGGTGCTGTGCCTCGGGGCTGCAGACACGCCTGAACTCGCCGCGGAGACGGCGCGCCTGATTGAGGACCTCCAAAGCCAGAGGACAGGTGTGGTCCTCATCGAGCGGATGCTGCCGCGCAAGGAGCTCATCCAGGTTCTCAGCCATGCCACGGCCTTTGCGTGCCCGTCGATTTATGAACCCCTGGGCATTGTCAACCTTGAGGCGATGGCCTGCGGGGCCGCCGTTGTGGCCAGCGCCACGGGCGGGATCCCGGAGGTGGTCAAGCACGGCGAAACCGGCCTGCTGGTTGACATCGAACAGGTCGCCGACGGCACGGGCACACCCCTGGATCCGGAGAAGTTCGTCACCGAATTCGCGGCAGCACTGATCGAGGTTGTGTCCGATCCCGAGCGTGCCCGGGCCATGGGACAGGCCGGCCGCCGCCGCGCCGAGGAGCACTTCTCCTGGGAGTCCATCACCGAAACAACCCTTGAGGTATACCGTTCAGTCCTGAACTGAMRIDIVTKEFPPEIYGGAGVHVAELSRVLSKHVDLQVRAFGAPRDADYHGAGVTSYTVPEDLGSANAAVQTLGVDLRIVPDIEGADVVHSHTWYANMAGHLASLLHGIPHVLSAHSLEPLRPWKAEQLGGGYALSSWVEKTAYEAAAAIIAVSEGMRQDILRSYPDVDPSKVRVVHNGIDVDQWHRDEGEDAVRALGIDPQKPSVVFVGRNTRQKGVPYLLRAAAKLPADVQLVLCLGAADTPELAAETARLIEDLQSQRTGVVLIERMLPRKELIQVLSHATAFACPSIYEPLGIVNLEAMACGAAVVASATGGIPEVVKHGETGLLVDIEQVADGTGTPLDPEKFVTEFAAALIEVVSDPERARAMGQAGRRRAEEHFSWESITETTLEVYRSVLNPGPT0017715_303DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017715-glgM-K16148NANA
D1-29_025772127hypothetical proteinATGACCGAACTAGTGGACCGACCCGCGGGCCGGGGATCCCGGCCCGCCGCCGACACCCAGGGGGACGGTAAGCCAGGTTCAGGACAGCCAGCGGTAGACGTCGCGGGCCTTGGCCGGCTGCTCCTGGGCCGATGGGCCGAGATCCGTTTGCAGGCGCGGGACCTGGCCGCCCGTCCGGAGCTGCACAAGACCGAGGGCCTGACCCACACCGAACATCGGACCCGGACGTTCGGCCAGTTGAAGTACCTCGTGGAGAATGAAGCCGTTCACCGTGCCTTCCCCACCGCATTGGGCGGCTCTGATGACCATGGCGGCAACATCGCTGGCTTCGAGGAGCTGGTGACCGCGGATCCGTCCCTGCAGATCAAAGCCGGTGTCCAATGGGGCCTCTTTGGTTCGGCGGTGATGCACCTTGGCACTGAGGAACACCATGCCAAGTGGCTCCCGGGAATTATGAACCTTGACATCCCTGGCTGCTTTGCAATGACGGAAACAGGGCACGGCTCCGACGTCGCCAGCATTGCCACCACAGCCACATACGACCCCGGCACCCAGGAGTTCGTCGTCCATACGCCGTTCCGGGCCGCGTGGAAGGACTACATCGGCAATGCTGCCAATGACGGACTCGGCGCAGTGGTCTTTGCGCAGCTGGTCACTCAAGGGGTAAACCACGGAGTGCACGCCTTCTACGTGGACCTGCGCGATCCTCGCACCAAAGAGTTCCTGCCCGGCATCGGCGGCGAGGACGATGGTGTGAAGGGCGGCCTTAACGGCATCGACAACGGCCGGCTGCACTTCACCAACGTCCGCATCCCGCGGTCCAACCTCCTCAACCGGTACGGCAACGTGGATGTTGACGGCACTTACAGCTCGCCCATTGCCAGCCCCGGCCGGCGTTTCTTCACCATGCTGGGGACACTTGTCCAGGGCCGGGTTTCACTTGACGGAGCGGCAGTGGCCGCGTCCAAGGTCGCCCTCACCGCGGCCATCCGCTACGCCACGGAGCGGCGCCAGTTCAACGCCTCCTCCCACACGGAGGAGGAAGTACTCCTTGACTACCAGCGGCACCAGCGGCGGCTCTTCACCCGGCTGGCCACCACCTACGCCGCGGGCTTTGCCCATGAGCAGCTGCTCCAGAAGTTCGACGACGTCTTTTCCGGCGCCCACGACACGGACGAAGACCGGCAGGACCTCGAAACCCTCGCTGCGGCCCTCAAGCCGCTTAGCACCTGGCACGCCCTCGATACGCTGCAGGAGTGCCGCGAAGCGTGCGGCGGTGCAGGCTTCCTGATCGAAAACCGCTTCGCTTCCCTGCGGGCGGACCTGGACGTCTACGCCACGTTCGAAGGCGACAACACGGTGCTGCTTCAGCTCGTGGCCAAGCGGCTCCTGGCCGACTACGCCAAAGAGTTCAGGAATGTCGATTTTGGCGTCCTGGCACGCTACGTGGTGGGCCAGGCGACGGGCGTGGCCATCCACCGCACCGGCCTGCGGCAGGTGGCCCAGTTTGTGGCAGACACGGGGTCCGTGCAAAAGGCTGCCCTTGCCCTGAGGGACGAGGAAGGCCAGCGTGCCCTGCTGACGGACCGGGTCCAGACGATGGTGGCGGACGTCGGCGCCGCCCTCAACGGCGCCAACCGGCTGCCCCACGACAAAGGGGCCGCGCTGTTCAACAAGCACCAGAACGAGCTGATCGAGGCCGCGCAGGCACACGCCGAGCTCCTGCAGTGGGAGGCCTTCACGGAGGCGCTGAAGGACATCGCGGATCCGGGCACCAGGACGGTGCTGACGTGGATGCGTGACCTCTTTGGACTTTCACTGATTGAGAAGAACCTGGCCTGGTACCTCATGAACGGCAGGCTGTCCATGCAGCGCGGGCGCACCGTGGGTGAGTACATCAATCGGCTCCTGGTGAAGATTCGTCCGCACGCCCTCGATCTGGTGGAAGCTTTCGGCTACAGCCAGGACCACATCCGCGCCGCGGTTGCCGCCGGTGCAGAAAAGACCCGGCAGGATGAGGCACGCGCCTATTTCCGGAGCCAACGGGCCAGCGGCCAGGCCCCGGTGGACGAGAAAGTGCTGCTTGCCCGCACTTCCTCGCCAGGCAAGGGCCGGACCGGAGCCTGAMTELVDRPAGRGSRPAADTQGDGKPGSGQPAVDVAGLGRLLLGRWAEIRLQARDLAARPELHKTEGLTHTEHRTRTFGQLKYLVENEAVHRAFPTALGGSDDHGGNIAGFEELVTADPSLQIKAGVQWGLFGSAVMHLGTEEHHAKWLPGIMNLDIPGCFAMTETGHGSDVASIATTATYDPGTQEFVVHTPFRAAWKDYIGNAANDGLGAVVFAQLVTQGVNHGVHAFYVDLRDPRTKEFLPGIGGEDDGVKGGLNGIDNGRLHFTNVRIPRSNLLNRYGNVDVDGTYSSPIASPGRRFFTMLGTLVQGRVSLDGAAVAASKVALTAAIRYATERRQFNASSHTEEEVLLDYQRHQRRLFTRLATTYAAGFAHEQLLQKFDDVFSGAHDTDEDRQDLETLAAALKPLSTWHALDTLQECREACGGAGFLIENRFASLRADLDVYATFEGDNTVLLQLVAKRLLADYAKEFRNVDFGVLARYVVGQATGVAIHRTGLRQVAQFVADTGSVQKAALALRDEEGQRALLTDRVQTMVADVGAALNGANRLPHDKGAALFNKHQNELIEAAQAHAELLQWEAFTEALKDIADPGTRTVLTWMRDLFGLSLIEKNLAWYLMNGRLSMQRGRTVGEYINRLLVKIRPHALDLVEAFGYSQDHIRAAVAAGAEKTRQDEARAYFRSQRASGQAPVDEKVLLARTSSPGKGRTGAPGPT0002290_421DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002290-aco|acx-K00232NANA
D1-29_02578750betI_5HTH-type transcriptional regulator BetIATGACTCCTCTGGGTTGTCGGTTACCGATACTCAGCGTACCTGATACGCTGAGTATCGTGAACAAGCCCCTACCCGTGTCCCCTCCGGCCTTTGCCGGTGGCAGCGCAGACGGCCGCTCGGCCCGTTGGCAGACCCACCGCGAGGACCGCCGCCGCGAACTCATTAAGTCCGCCCGGCGGGCCGTGCATGCGCTGGGAAGCGACGCTTCCATGGAGGAAATTGCGGCCGCCGCAGGAACCTCCAAGTCAGTCTTTTACCGCTACTTCGGGGATAAGGCAGGCCTTCAGCAGGCCGTGGGCGAAGTGGTACTCAACCAGATGCAGCAGCGGATCCGCGAGGCTGCCCAGAGTGCCCAGACACCGCGCCAGGGCCTGTTTGCCATGGTTTCCGCCTATCTCCAGATGGCTGAGACAAGCCCGAACGTCTACAGCTTCGTGACCCGCTACTCCCCCGCTGACGCCGATACTTCGCACAATGCAGCGGCAATCTCAGGCGCGCTGGGCCACTTCTTCGAGTCCATTGGAGAAATGATCGCCACTCCCATGCGGACCCATCTCGGGGATGGCAAGGAAGCCGTAATCGGCTATTGGCCCATGGCTGCCATCGGTCTTGTCCGCAATGCCGGTGAGCAATGGCTGAAGACACCGGCATCGGCGTCCAAGCCGGACCAGGAAGCCATGGCCCGCCAGATCACGGCCTGGCTGTGTGTGGGGATCGCACCAGAGCTTGACCAGCCGAAATCACCGTAGMTPLGCRLPILSVPDTLSIVNKPLPVSPPAFAGGSADGRSARWQTHREDRRRELIKSARRAVHALGSDASMEEIAAAAGTSKSVFYRYFGDKAGLQQAVGEVVLNQMQQRIREAAQSAQTPRQGLFAMVSAYLQMAETSPNVYSFVTRYSPADADTSHNAAAISGALGHFFESIGEMIATPMRTHLGDGKEAVIGYWPMAAIGLVRNAGEQWLKTPASASKPDQEAMARQITAWLCVGIAPELDQPKSPNANANANANA
D1-29_025791368fadICOG01833-ketoacyl-CoA thiolase FadIATGTCCGTCGATGGACAGTCCGCAACCGGACCCCAGGATTTCAGCAACCCGGCTTCCCCTGGAGCCGGCGTAACCCTTCGCGATGCCGTCATCGTGGGCGGCAACAGGATTCCTTTTGCCCGATCAGGAGGCGCCTACACGAAGTCCTCGAACCAGGACATGCTGACGGCCGCGCTGGAGGGTCTCATCGCCAGGTTCGGGCTGCAGGATGAGCGGATTGGCGAGGTCGCCGCCGGGGCCGTCCTGAAGCACTCCAGGGACTTCAACCTGACCCGCGAGGCTGTCCTCGGCTCGTCATTGTCCGCCGAGACGCCTGCCTACGACGTGCAGCAGGCCTGCGCGACCGGGCTGGAGACCGTCCTGGGCCTTGCCAACAAAATCAAGCTTGGCCAGATTGATTCCGCCATTGCCGGTGGCGTGGATTCGGCGTCGGATGCGCCCATTGCGGTCAGCGAGGGGTTGCGGGCAGTGCTCCTGGACCTCAGCCGTGCCAAAACACTGCCGCAGCGCCTCCAGGCCCTTAGCCGGCTTCGCCCCAAGGACCTGGCCCCGGATGCGCCAAGCACCGGCGAGCCCCGCACCGGTCTCTCCATGGGGGAGCACCAGGCGCTGACGACGGCGCAGTGGAACATCACCCGCGAGGCGCAGGACGAGATAGCGCTGAACAGCCACCGCAACCTGGCGGCAGCCTACGGCGCCGGATTCTTTGACGACCTCCTGACCCCGTACCGCGGTCTGGCACGGGATTCGAATCTGCGGCCGGACACAACGCTGGAGAAGCTGGCATCACTGAAGCCGGTTTTCGGAAAGAGCCTGGGTGCCGAAGCCACCATGACGGCGGGGAATTCCACGCCGTTGACGGACGGCGCATCAACTGTCCTGCTGGCATCCGCCGAATGGGCGGATGCCCACGACCTGCCCAAACTGGCCAAGGTGGTGGACGGTGAAGCTGCCGCTGTGGATTTTGTGCACGGCAAGGACGGGCTCCTGATGGCTCCCGCATTCGCCGTCCCGCGGCTCCTGGCACGCCGGGGCCTGACCCTTGACGATTTTGATTTCTTTGAAATCCATGAGGCCTTTGCCGGTACTGTCCTCAGCACCCTTGCAGCGTGGGAGGACGAGGAGTTCGGCAAGACCAGGCTTGGCCTTGACGGGGCGTTTGGCAGTGTCGACCGCAGCAAACTCAACGTCAACGGCTCCTCACTCGCCGTGGGACACCCCTTTGCCGCCACGGGCGGCCGTATCGCTGCCTCGCTCGCCAAGATGCTGCATGAGAAGGGGACGGTCAACGGCCGGCCCGCCCGCGGGCTCATCTCGGTCTGCGCCGCCGGCGGCCAGGGCGTCGTTGCCATTCTCGAAGCGCTGTAGMSVDGQSATGPQDFSNPASPGAGVTLRDAVIVGGNRIPFARSGGAYTKSSNQDMLTAALEGLIARFGLQDERIGEVAAGAVLKHSRDFNLTREAVLGSSLSAETPAYDVQQACATGLETVLGLANKIKLGQIDSAIAGGVDSASDAPIAVSEGLRAVLLDLSRAKTLPQRLQALSRLRPKDLAPDAPSTGEPRTGLSMGEHQALTTAQWNITREAQDEIALNSHRNLAAAYGAGFFDDLLTPYRGLARDSNLRPDTTLEKLASLKPVFGKSLGAEATMTAGNSTPLTDGASTVLLASAEWADAHDLPKLAKVVDGEAAAVDFVHGKDGLLMAPAFAVPRLLARRGLTLDDFDFFEIHEAFAGTVLSTLAAWEDEEFGKTRLGLDGAFGSVDRSKLNVNGSSLAVGHPFAATGGRIAASLAKMLHEKGTVNGRPARGLISVCAAGGQGVVAILEALPGPT0008320_547DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_025801341hcaB_33-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGACAGACACATACACCCAACTCGTGAGCCACGGACCGGGCAGGAAGGTCGCCCGGAAGCTTGGCCTGCCCCAGCCGGCGCTGCTGCGCAGGTACCAGCCGGGCCAGCCGCTCATCACCGGGCCCATCCTGGTTCAGGGGACAACACACGGCGCCGACGAGTTGGCGGCCACCCTGCTCTCCTGGGACCTGGATGTCCGGCGCCACGCGGTGCCCCGCGAAAAGCTTGGTGCCATCATTCTTGTCCTGGACGACGTGTCCCGGCCCGGTGATCTCGAAAAACCAGTCCTGGCAGCAGCGTCCTCGCTGCGGGATCTCGGTTCAAGCGCCCGCTTCATCACCATCTCGCGGCCCGCCCATGAGGCCGGAACACCTTCCGAAGCCGCGGCGCGGCAGGGGGTAGACGGTTTCCTGCGTTCGCTCGCAAAGGAGCTCCGTGCCGGTGCCACGGCCAACGGGATCCTGCTCGCCGGCGAGACACCAGCTGCCAGCCCCAGCAGCGTGGCTGCGCTGAGGTTTTTCCTCTCCGGCCGCTCGGCCTTTGTGGATGGCCAGTTCCTGACCGTTACGACGCCGGCGGGGCAACTCCCTGCCGACGTTGAAAGGCCACTGGCCGGCAAGGTCGCCGTGGTCACCGGTGCAGCGCGTGGGATAGGCGCTGCCATCGCCAGGATCCTCCACCGGGACGGCGCCACCCTGGTCCTGGTTGACATACCGGCAGCGGGTGACCATCTGGCAACGGTGGCCAACGAGGTCCGTGGCACTGCCCTTCAGCTGGACATCAGCAGGGACGACGCCGGCCAGCGGATTATCGATCACGCCGTGCAACGCCACGGTCACTTGGACATTGTGGTCCACAACGCAGGCATTACCAGGGACAAACTGCTGGCCAACATGGATCATGCCCGCTGGAGTTCGGTGATCAACGTCAACATCGCCGCCCAGCTCCGGATCAATGAGGCGTTGCTCGACTCGGACAGCTTCAGCGGTTCACCCAGGATCGTGTCAGTGGCGTCCACCAGCGGAATAGCGGGGAACAGGGGCCAGACGAACTATGCTGCTTCCAAGGGCGGGGTCATGGGGATGGTTCGTGCCACCGCCCCGCTCATGGCAGCCAAAGGAGGCACCATCAACGCCGTTGCGCCAGGCTTCATCGAAACGGAAATGACTGCCCGGATCCCCCTCGCCATGAGGGAACTGGGCCGGCGGCTCAACTCCCTCCAGCAAGGCGGGGAGCCGGCCGACGTCGCCGAGGCCATCGCCTTCCTCGCCAGTGATGCAGCAGGGGGCATCAACGGGGACGTCCTGCGGGTCTGCGGACAGCACATGGTGGGGGCATGAMTDTYTQLVSHGPGRKVARKLGLPQPALLRRYQPGQPLITGPILVQGTTHGADELAATLLSWDLDVRRHAVPREKLGAIILVLDDVSRPGDLEKPVLAAASSLRDLGSSARFITISRPAHEAGTPSEAAARQGVDGFLRSLAKELRAGATANGILLAGETPAASPSSVAALRFFLSGRSAFVDGQFLTVTTPAGQLPADVERPLAGKVAVVTGAARGIGAAIARILHRDGATLVLVDIPAAGDHLATVANEVRGTALQLDISRDDAGQRIIDHAVQRHGHLDIVVHNAGITRDKLLANMDHARWSSVINVNIAAQLRINEALLDSDSFSGSPRIVSVASTSGIAGNRGQTNYAASKGGVMGMVRATAPLMAAKGGTINAVAPGFIETEMTARIPLAMRELGRRLNSLQQGGEPADVAEAIAFLASDAAGGINGDVLRVCGQHMVGAPGPT0003180_560DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_02581924hypothetical proteinATGACCACGGCTCAGCCAGCGCCACAGCCGGTCATCCTTGGCGAGATGCCATCGCTGTCCAAGCTTTACGTGAACGCGGCTGCCCAGGCGGCCCGCCGCCGCGTACTGGGCACAAACAACGGCTCCAGCCTCCCGGACGCCAGCCATGAAGTGCGCGGCGTCAGGGCCGACGTCGGCAACCTCACCGCTTACCAGCACCTCATCGGGGAAACCGCCAGCGACGTCCTGCCCGCCGGCTACATCCATGCCCTCACCTTCCCTCTTGCCATTAGCGTTATGAACCGGGACGACTTCCCGCTGCCCGTCCTGGGCATGATCCATCTGAGCAACTACGTGGAGCAGCGTTCCCCGCTGACGTTCACTGAACCGCTGGACATCACGGCAAGGGTGGAGAACCTGCGGGGGCACCGCGCCGGGACACAGCTGGATGTGGTAGCGGAGGTGCGGGGCACAGGCACGTCCGAGGTCCGCTGGACGGGTGTCTCCACGTACCTGGCCAAGGGTGTGTTCCTCCCGGGCATCGACAAGCCGTCCCCGTCCAGGGTCCTTGAGGAATTCACGCCACCGGACCCCACGGCGCTTTGGCACCTGGGCGTGGACACCGGGCGATCCTATGCTGCCGTTTCCGGCGACTTTAATCCCATCCACCTCAGCCTCCTCTCGGCTAAGGCATTGGGACTGCGCCGCTCCATCGCCCACGGAATGTACCTTGCCTCAAGGGCACTCGCCGACGTCGGAGCAGTCAAGGGCGATGCCTTCATCTGGAGCATTGCGTTTGAGGCGCCGGTGTTCCTGCCGGGCCGCGTCGGACTACACATCACTTCTGTGGAGGCTGCTGACGGGGCATGGAAACGGTCGGAGTTCGTAGGCTGGAACCGGCGGTCAGGCCGCCGGCACTTCACCGGCACCGTGGCCGGGCTCTAAMTTAQPAPQPVILGEMPSLSKLYVNAAAQAARRRVLGTNNGSSLPDASHEVRGVRADVGNLTAYQHLIGETASDVLPAGYIHALTFPLAISVMNRDDFPLPVLGMIHLSNYVEQRSPLTFTEPLDITARVENLRGHRAGTQLDVVAEVRGTGTSEVRWTGVSTYLAKGVFLPGIDKPSPSRVLEEFTPPDPTALWHLGVDTGRSYAAVSGDFNPIHLSLLSAKALGLRRSIAHGMYLASRALADVGAVKGDAFIWSIAFEAPVFLPGRVGLHITSVEAADGAWKRSEFVGWNRRSGRRHFTGTVAGLNANANANANA
D1-29_025821119hypothetical proteinGTGGATAATTCGAAAGTCCAGACGGCGGCCAGGTGGACCACGGGTACCCGTCTCTTGAAGAACGCAGCGGCCGGACTGTCGGCGGCCTTTACAGCACAGCGACTGCAGCTTGCCGCCAAGGCCGCGATCGCTGCCGGCCTCGCTTTTCTCGTCGCTCCCCTCATGCCCGGGGCGGCGGCGAACTACCCCTACTACGCGCCGCTGGGGGCTCTGGTGGCGATGTATCACAACGTGGCTGGCTCGGTGAAGCAGGGCCTGCAAACCCTGATCGGCTTAGCCATGGGAATCGGGCTGGCTTTTCTCCTGGTCAACATTACTGACCCTTCGCCGATTGCGGTGGCCATTTTCATGGGTATTGGAGTGTTGCTGGGCGGCCTTCCCCGCATCGGATCCGGCAGCGACTGGATTCCGACGGCGGCCCTGCTGGTGCTGCTGGTGGGCGGCAGCAATCCTGACGACTTTTCCTTCGGATACCTGCTCCAGATGGGCGCCGGAGTGGCCGTGGGCATTGCCGTCAACTTCCTGGTCTTTCCACCCCTGCATTTTGACGCTGCGGCGGCAAGCCTCGACGAACTCCGCGCCGCCCTGGGCAAGCAGTTGACTGACATGGGGGCGGCGCTTACGGAAAGCTGGCCGCCGGAACACGAGGACTGGTCCCGACGCTCGGATGAGCTGGCCTCAGCTGCCCGGGCCGTCCGCCACCTGGTCCGGGAGGCTGACATGAGCCGGCGGGCCAATCCGCGCCGAAAGCTGCATCCCCGCGACGTGGACCTTGACTACCGCAACCTGCGCGAACTTGAGCGTGTGACGTTCCATATCCAGGACATGACCGATGTCCTGTCCGACGTGATCTGGGAGGAGGACGCGCCCTATGCAGTTCCCCCGGAGGACAGCGGTCCCCTGGCCGATGCGCTGACAGCCACAGGCACGTTGCTCTCCTCGTTCCGTGACGGCGATCCGGACCTCCAGGCCGAGCGGTTTGCGGCCGCGGAATCGGCGGTGGAGGCATGTGTGGAGGCGACACCCGGAAATGCCCCGGAGACCGGCACCGTGCCCGCCTCCGAGTCCATCCTCCTGAGCCTTCACAGGATTCTCCGGGCCGTGCGTCCGGCGTCTTAGMDNSKVQTAARWTTGTRLLKNAAAGLSAAFTAQRLQLAAKAAIAAGLAFLVAPLMPGAAANYPYYAPLGALVAMYHNVAGSVKQGLQTLIGLAMGIGLAFLLVNITDPSPIAVAIFMGIGVLLGGLPRIGSGSDWIPTAALLVLLVGGSNPDDFSFGYLLQMGAGVAVGIAVNFLVFPPLHFDAAAASLDELRAALGKQLTDMGAALTESWPPEHEDWSRRSDELASAARAVRHLVREADMSRRANPRRKLHPRDVDLDYRNLRELERVTFHIQDMTDVLSDVIWEEDAPYAVPPEDSGPLADALTATGTLLSSFRDGDPDLQAERFAAAESAVEACVEATPGNAPETGTVPASESILLSLHRILRAVRPASNANANANANA
D1-29_025831116hypothetical proteinATGAGCATGCAGATTTCTCACGGCTATGCCGCGCCCGCGTATGAGGACGTCCTGGATCTTTTCGGGTCCTTCCTGGCTGACGACCCGCTGTACAGCGCCCAGGTTGCGGCGTACCGGAACGGCATCAAAGTGCTCGACCTGGCAGGCGGCCCGGAGATCACTGCAGATACCCTGACAGGCGCCTACTCCTGTTCCAAGGGCGTGGCTGCCGTGGTGGTGTCGCTGCTGGTCCAGGACGGGCTGCTGGATCTGGACCGCGCGGTGGCCCACTACTGGCCGGAGTTCGGGGTTCACGGAAAGGACCGGCTCCTGGTGCGGGAGGCCCTGTCACACCAGGCCGGCCTGATGGGAGTTGAAGGCGGCTTTGCCCTGGACGAATTCACTACTCAGGAGGCCGCCGCCCGTTTGGCTGCGGCCCAACCGGCATGGACCCCTGGAAGCTGCTTTGGCTACCATGCCCTGACCATCGGGATCCTGATGGAGGAACTGTGCAGGCGGGTGGCCGGGGACACCCTGCAAAGCCTTTATGACCGCCGCGTCAGGAAGCCTTACGGCGTGGACTTCTTTCTGGGACTGCCCGAGGAGTTGGAGGGGCGCTACCGGGACGTGCTTTACGACGCCGACGCCCGGCAGCCGTGGGTGGATCCCTTCAGTCTGGAAGGACTGAACGGCAACGCCCCGGTCAGCACCGTCATGGAGCTCCCCAACCACCGCACCATCCGGGCTGCCGGCATGAGCGCGGCCGGTGGGGTCGGATCTGCCGAAGGCATGGCCCGGCTCTACGCTGCAGCCACCACGGGCGTGGAAGGGGATCCACCCCTGCTTACCGCCGAGACGATCAGTGTGATGACCCAGGAACAGGTCTGGGGCCTGGACCGTTCTTCAGGACTGGACAATGCTTTTGCCGTGGTCTTTATGAAACCGCATCCCTCACGGAATTTCGGAAGCCACCGTGCCTTTGGCCATGAAGGCGCCAATGCCGCGTTGGGCTTTGCCGACCCCGCCTACGGACTTGGCTTTGGTTATATTCCCCGGCGTGCGGAGGATGGGCGCACCCCCGGCAAGGCGCACCGGCTGGCTGCGGCGGTCCGGCAGGCTGCATCCGCCTTGTCCTAGMSMQISHGYAAPAYEDVLDLFGSFLADDPLYSAQVAAYRNGIKVLDLAGGPEITADTLTGAYSCSKGVAAVVVSLLVQDGLLDLDRAVAHYWPEFGVHGKDRLLVREALSHQAGLMGVEGGFALDEFTTQEAAARLAAAQPAWTPGSCFGYHALTIGILMEELCRRVAGDTLQSLYDRRVRKPYGVDFFLGLPEELEGRYRDVLYDADARQPWVDPFSLEGLNGNAPVSTVMELPNHRTIRAAGMSAAGGVGSAEGMARLYAAATTGVEGDPPLLTAETISVMTQEQVWGLDRSSGLDNAFAVVFMKPHPSRNFGSHRAFGHEGANAALGFADPAYGLGFGYIPRRAEDGRTPGKAHRLAAAVRQAASALSNANANANANA
D1-29_025841110yqjGCOG0435Glutathionyl-hydroquinone reductase YqjGATGGGCAAGGAAACGCAAGCCGCGCCAGCGGCAACAGGAACAGCTGCAAAAGGAACGGCCGGATCAGCCGGCCACAGCACGAAGGGTGCCTATGTCGCGGACGGCGCCGAATTCAATCGGGACACCAACTACATTGAGGACCGGATCACCCGCGATGGTTCTCCTGGCAGCAACGGCGAGCCGGGCTGGCCGGTGGAAGCCGGACGTTACCGGCTGATCGCCGCAAGGGCATGTCCATGGGCGAACAGGGCAGTTATTGTCCGGCGGCTCCTTGGCCTTGAGGAGGCGATCTCCCTGGGCCAGCCGGGACCCACCCACGACGCCCGGTCCTGGACTTTTGACCTTGACCCGGGTGGCGTGGACCCCGTGCTGGTGATTGAGCGGCTTCAAAGTGCGTATTTCACCAGGTTCCCCGAGTATCCACGGGGCATCACCGTTCCGGCCATCGTGGATGTTGCCAGCGGTGCGGTGGTAACCAACAATTTTCCCCAGATCACCCTGGACTTCTCCACTGAGTGGACCGAATTCCATCGGCCGGGCGCCCCCCGGCTTTATCCTGAGGAGCTTCGGCCCGAAATTGACGAAGTCAACGAACGCGTCTTTACCGAGGTGAACAACGGAGTCTACCGCTGCGGTTTCGCGGGTTCGCAGGAGGCCTACGACGCCGCCTACGCGCGGCTTTGGACAGCACTGGACTGGCTTGAAGAGCGCCTGGCCACGCAGCGTTACCTGGTGGGAGAGACCATCACGGAGGCTGACGTGCGGCTGTTCACTACCCTGGCCAGGTTCGACGCCGTGTACCACGGCCATTTCAAATGCAACCGGCAGAAACTCAGCGAGATGCCCGCCCTGTGGGCATACGCGCGTGACCTGTTCCAGACTCCGGGCTTTGGCGACACCATCGATTTTGTCCAGATCAAGCAGCACTACTACATCGTCCACGAGGACATCAATCCCACCGGGATCGTCCCGCACGGCCCCGACCTGACGGGCTGGCTCAAGCCCCATGGCAGGGAGTCACTGGGTGGGCGCCCGTTTGGCGACGGTACTCCCCCGGGACCCGTCCGACCCGGCGAAGAGGTCGCTGCGGGGCACGGCGCAACAGCTTGAMGKETQAAPAATGTAAKGTAGSAGHSTKGAYVADGAEFNRDTNYIEDRITRDGSPGSNGEPGWPVEAGRYRLIAARACPWANRAVIVRRLLGLEEAISLGQPGPTHDARSWTFDLDPGGVDPVLVIERLQSAYFTRFPEYPRGITVPAIVDVASGAVVTNNFPQITLDFSTEWTEFHRPGAPRLYPEELRPEIDEVNERVFTEVNNGVYRCGFAGSQEAYDAAYARLWTALDWLEERLATQRYLVGETITEADVRLFTTLARFDAVYHGHFKCNRQKLSEMPALWAYARDLFQTPGFGDTIDFVQIKQHYYIVHEDINPTGIVPHGPDLTGWLKPHGRESLGGRPFGDGTPPGPVRPGEEVAAGHGATAPGPT0013050_189DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393NANA
D1-29_02585744hypothetical proteinATGACCTCCTTCCCTGGGCAACTGTGGCAACGCATCGTTGAAGCCTTCAGCCGCACCGACATCCCTCAGGTTTCCCTCCTCGAGTTGTCGTTGGTGCTGTTGATGGCCATTGCGCTGTCTGTCCCGCGGGTCACGTGGAGGTACTTTGGCCTTTTGGCCACCGCCACCCATGAGCTGGGCCACGCCTTCGCGGCGGTTGTCAGCGGCCAAAGACTGGGAGGGATCCGGCTCAGCCTGGACCACTCGGGAACCACCATCAGCTACAGCCGTGGCCGGCTGGCCACTGTCTGGTCCGGTTTTTGGGGCTATCCGGTTCCGGCGATGACAGGTGCCGCGCTGGTTTCCGCAGGTTTTGCCGGCTGGGGCCCCGCGGCACTGGCGACCGGCACCCTGATCCTGCTGGCATCGCTGCTGTTTATACGTAATATGGCAGGCATCCTGATCACCGCCGGGGCTGTCGCAGGCGGTGCCGCGCTCATCTTTTTTGTACCGCATGCGTTCACCGGCCATGTGGCGGTCATCCTCGGGCTCGCCCTGTTGGTGGCAGCAGTCCGGGACCTGCTGAAGCTTTCCCAGGTGCATCTGCGGCGCAGGGAGCGTCTGGCAAGTTCGGATGCTTACCTGCTGTACCGCGCCACGTCGGTGCCTTCCTTTATCTGGATTACCCTTTTTACGGCGATTGTGGCGGGGTCCTGGCTGGTTGCCTGGCAGCCCATCTCCACAATCCTTGCAGCCGGCACCTAGMTSFPGQLWQRIVEAFSRTDIPQVSLLELSLVLLMAIALSVPRVTWRYFGLLATATHELGHAFAAVVSGQRLGGIRLSLDHSGTTISYSRGRLATVWSGFWGYPVPAMTGAALVSAGFAGWGPAALATGTLILLASLLFIRNMAGILITAGAVAGGAALIFFVPHAFTGHVAVILGLALLVAAVRDLLKLSQVHLRRRERLASSDAYLLYRATSVPSFIWITLFTAIVAGSWLVAWQPISTILAAGTNANANANANA
D1-29_02586465yqeYCOG1610putative protein YqeYGTGACCACTTTGAAGGAACGCCTGCATGCTGACGTAGTTGCGCACATGAAGGACCGTAACAAGACCGCCCTGACAACGGTGCGAAACGTCCTAGGCGAGATCGAAACGCGCGAAAAATCAGGCAAGACACCCGTAGTGCTCGACGACGCCCAGGTAACGTCGCTGCTGCAAAAGGAAGCGGCCAAGCGCCGTGACACCGCCAGGATCTACTCTGAGGCTGGCGAACCCGAACGGGCAGCAGCCGAGATCGCTGAAGCTGAGGTCATTGAGGCCTATCTTCCGCAGACCCTGACACCAGCGGAAGTGGAAGCCATCGTGGACGAAACCATCGCCCAGCTCACAGCCGAAGGGCAAACGCCCACCATGCGCCAGATGGGCGCCGTTATGAAACCCGTTACCGCCAAGGTTGCAGGGCGCTTCGATGGCAAGGCCGTCAGCGAAATCGTCCGCAGCCGCCTCACCTAAMTTLKERLHADVVAHMKDRNKTALTTVRNVLGEIETREKSGKTPVVLDDAQVTSLLQKEAAKRRDTARIYSEAGEPERAAAEIAEAEVIEAYLPQTLTPAEVEAIVDETIAQLTAEGQTPTMRQMGAVMKPVTAKVAGRFDGKAVSEIVRSRLTPGPT0030490_350PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSAMIDASE_ACTIVITYPUTATIVE-TRANSAMIDASE_ACTIVITY-1,PGPT0030490-gatB|yqeY-K09117
D1-29_02587303hypothetical proteinGTGGCAACCGATTACGACGAACTCCGCTCCGACGTCAAGGAATCGCAGGACAACTCGCTGGAGGCGCTTCAGTCTGCCAATGCACCGGACGCACGCAGCGTCGTCCTCGAACTCGATGAGGCCGATGGGCTGGATGGCGCCGGCGTTCCGGGCGGCGAATTTGTCGCCGAGGAACTGGTCGTCCAGGTCATTCCCCAGGCTGACGACGAGTTCACCTGCTACTCCTGCTTCCTGGTCCGGCACCGGTCCCAGATTGCACGGCAAAAAGATGGACACAGCTACTGCACCGACTGCGAAGGCTGAMATDYDELRSDVKESQDNSLEALQSANAPDARSVVLELDEADGLDGAGVPGGEFVAEELVVQVIPQADDEFTCYSCFLVRHRSQIARQKDGHSYCTDCEGNANANANANA
D1-29_02588663hypothetical proteinTTGTCCCTGTTCGTTGCAGCCCTGCTGACCGGCGGCCTGACCGGTTGCGAACCCGCCTCAACGATGGGAACCGCCCACGCAGGGACTGAGGCGAAGGCCGGCGACGCCGCAGCCGCGCTGGCCCAATTGGAGACAATCCCCATTAAAGGCCGTGCACCCAAGACCGGCTACAGCCGGGGCGAGTTTGGTCCTGCCTGGGCGGACGTGGACCGGAACGGCTGCGACACCCGCAACGACATCCTGGCCCGTGACCTCGTCGAGGAGACATTTAAGGACGGGACCCACAACTGCGTTGTGCTGACAGGCACGCTTCCCGACAAATACACAGGCAAGACGATTACGTTCATCCGGGGAGCCGACACCAGTTCCGAGGTCCAGATCGACCATCTTGTCCCGCTGTCGCTGGCATGGCAGACCGGTGCCCAGCAAATCAGCGAAGAAGAACGAAAACAATTTGCCAACGATCCCCTTAACCTTATGGCAGCGGACGGCCCGGCAAACATGTCCAAATCCGACAAGGACGCCGCCACGTGGCTGCCGTCCAACAAATCGTTTCGCTGTGAGTACGTTGCCCGCCAGACGGCAGTCAAGGCCAAGTACAAGTTGTGGGTCACCCAGCCCGAACATGACGCCATCGCCGGAATCCTGAACACCTGCCAATAGMSLFVAALLTGGLTGCEPASTMGTAHAGTEAKAGDAAAALAQLETIPIKGRAPKTGYSRGEFGPAWADVDRNGCDTRNDILARDLVEETFKDGTHNCVVLTGTLPDKYTGKTITFIRGADTSSEVQIDHLVPLSLAWQTGAQQISEEERKQFANDPLNLMAADGPANMSKSDKDAATWLPSNKSFRCEYVARQTAVKAKYKLWVTQPEHDAIAGILNTCQNANANANANA
D1-29_02589894rbn_1COG1234Ribonuclease BNATGCGTGAATTCGTTGTCCTGGGAACTGCCTCGCAGGTCCCCACCCGGTCCCGAAACCACAACGGCTATTTCCTGTTGTGGGACGGCGAAGGATTCCTCTTCGACCCTGGTGAGGGATCGCAGCGCCAGATGATGTTTGCCGGTGTTTCGGCCCACCAGGTCAACCGGATCTGCCTGACCCATGTCCACGGCGACCATTGCCTTGGGCTTCCCGGCGTGCTTTCCCGGATGGTCCTGGACGGCGTGAAACATACCGTGCACCTGCATTTTCCGGCTTCAGGCGGGGACGCAGTTCGGGCCCTCGTTTCCCTTGCTCCACCGAGCCTTGATCTCCGGTTACACCCGCATGCCGGCAGCAGCACCGTGGCCCCCGGGTTGGAGATACGCCCGTTGAACCACAGGATCGAAACATACGGGTACCGGCTGGTGGAGCCGGATGGGCATACGCTGCTCGCTGAACGACTCGAAAAGGCAGGGATCAGCGGGCCCGACGTCGGCCGCCTGCAGCGCGAGGGCAGCCTCGGTTCCGTACATATCAAGGATGTGAGTGTGCCGCGGCGGGGCCAACGTTTCGCCTTCGTGATGGATACGGCACCCTGTGCCGGCGCTGAAGAACTTGCCGAAGGCGCCGACTTGCTCGTGGCAGAGTCCACGTTCAGTGACGCCGACGTTGACCTGGCCACGCAGTACCGGCACCTCACCGCCGGGCAGGCCGGCGCGTTGGCGGCCGCTGGCCGCGTCCGCACTCTGGTTCTGACCCACTTCTCCGCCCGCTACCCAGACGTTGGCTTACTGGCGGAACAGGCCAGGGCGCGTGCCGGGGAAGCAACAGTAGTGATTGCCAACGACCTTGACCGGATTGCTTTTCCGAAGCGGCAAAACCCGGCGGGTTGAMREFVVLGTASQVPTRSRNHNGYFLLWDGEGFLFDPGEGSQRQMMFAGVSAHQVNRICLTHVHGDHCLGLPGVLSRMVLDGVKHTVHLHFPASGGDAVRALVSLAPPSLDLRLHPHAGSSTVAPGLEIRPLNHRIETYGYRLVEPDGHTLLAERLEKAGISGPDVGRLQREGSLGSVHIKDVSVPRRGQRFAFVMDTAPCAGAEELAEGADLLVAESTFSDADVDLATQYRHLTAGQAGALAAAGRVRTLVLTHFSARYPDVGLLAEQARARAGEATVVIANDLDRIAFPKRQNPAGNANANANANA
D1-29_02590489hypothetical proteinTTGAGTTATCCGCAACAACAACAGCAACAGCCATTCCTGCAGGCCGGCGAGCCGCCGCTTTGGGCACCCTACTACGGTGCGCCGTTGCCGGTAGCTGTGAAGCGCTTCTTCAAGAAGTACGCAACGTTCTCCGGCCGTGCCAGCCGCAGCGAGTACTGGTGGTGGACTCTCGTCTCCGTCGGTGTCAGCATCATCCTGCAGATCGTCGCGGGCATTATGGGGGCTGCCGGAGCGACCGTTACGGCAGACGGGACGGCCGTCCCGGGGGCAGGAGCAGTTCCTGTCTACATCATCTTGGTAATCTGGGGCCTGGCCACCATCGTTCCGTCCTTGGCGCTGACCGCCCGCCGCCTGCACGACGTGAACCTCAGCGGATGGCTGATCCTCGTGGTGCTCGTTCCGTTCCTGGGCGCAATTGCCTTGCTCGTGATGACCATCCTGGCTTCCAAGCCTGAAGGCCAGCGGTTCGACCAGCCTGGCAGCATGTAGMSYPQQQQQQPFLQAGEPPLWAPYYGAPLPVAVKRFFKKYATFSGRASRSEYWWWTLVSVGVSIILQIVAGIMGAAGATVTADGTAVPGAGAVPVYIILVIWGLATIVPSLALTARRLHDVNLSGWLILVVLVPFLGAIALLVMTILASKPEGQRFDQPGSMNANANANANA
D1-29_025921305dapE_1COG0624Succinyl-diaminopimelate desuccinylaseATGTCTGACGTCCGTCCCGAGGATGAAGTTGTAGGGATCTGCCAGGACCTCATCCGGATAGATACTTCAAACTATGGCGACGGCTCAGGGCCGGGGGAGCGGGCAGCGGCGGAATATACCGCTGCATTGATCGAAGAAGTGGGCCTGACTGCTGATATCTTCGAATCCGCTCCCGGCCGCGCCAATGTGGTTACGCGGATGGCCGGCGAAGATCCGTCTGCAAGCGCACTGGTGGTGCACGGGCACCTGGACGTTGTTCCGGCACTAAGGGACCAGTGGTCGGTGGACCCTTTCGGCGCCGAGCTCAGGGACGGCCTGATCTGGGGCAGGGGTGCGGTGGACATGAAGGACATGGACGCCATGATCCTCTCGGTCATGCGGGGCTTGGCGCGCACAGGGCGAAAGCCGAAGAGGGACATAGTTTTCGCCTTTTTTGCCGATGAGGAAGCCGGCGGCGAGTACGGGGCCCGCTACGCCGTGGACAAGCGCCCCGAGCTCTTTGAGGGCGCCACCGAAGCCATCTCCGAAGTGGGCGGCTTCTCGGCAACCATTGGCGGACAGCGCACGTACCTGCTGCAGACCGCCGAGAAGGGTATTTCCTGGCTGCGCCTGGTGGCCCACGGACGCGCGGGGCACGGGTCCCAGATCAGCACGGACAATGCCATCACACGGCTGGCGGCAGCGGTGACCCGCATCGGGGAGTACAAGTGGCCAATTGAGCTGACCCCCACCACGCGCCAGTTCCTGGACGGCGTCACTGAACTCACAGGAGTCGAGTTCGACGCCGACAATCCGGATCTCCTGTTGAACCAACTCGGAACGGTGGCACGGTTCGTCGGTGCCACCCTGCAAAACACCACCAACCCCACCCTCCTGAAGGGGGGCTACAAGCACAATGTCATTCCCGAGTCGGCGGAGGCCCTGGTGGACTGCCGAACCCTGCCGGGACAGCAGGAACACGTTCTAGAGATCGTGCGCGACCTCGCCGGAGCCGGCGTCGATGTCAGCTATGTCCACTCGGACGTCTCCCTGGAGGTCCCCTTCGCGGGCAACCTCGTGGATTCCATGATCGACGCCCTGCACTCCGAGGATCCCGGTGCCAAGGTCCTCCCGTACACACTCTCCGGTGGAACGGACAACAAATCCCTGAGCAGGCTGGGGATCACCGGCTACGGTTTCGCGCCGCTGCAGCTGCCCGATGACCTGGACTTCACCGGGATGTTCCACGGGGTGGACGAGCGTGTCCCTGCCGATTCGCTCAAATTCGGCGCCCGGGTGCTTAACACCCTCCTCACGAACTACTGAMSDVRPEDEVVGICQDLIRIDTSNYGDGSGPGERAAAEYTAALIEEVGLTADIFESAPGRANVVTRMAGEDPSASALVVHGHLDVVPALRDQWSVDPFGAELRDGLIWGRGAVDMKDMDAMILSVMRGLARTGRKPKRDIVFAFFADEEAGGEYGARYAVDKRPELFEGATEAISEVGGFSATIGGQRTYLLQTAEKGISWLRLVAHGRAGHGSQISTDNAITRLAAAVTRIGEYKWPIELTPTTRQFLDGVTELTGVEFDADNPDLLLNQLGTVARFVGATLQNTTNPTLLKGGYKHNVIPESAEALVDCRTLPGQQEHVLEIVRDLAGAGVDVSYVHSDVSLEVPFAGNLVDSMIDALHSEDPGAKVLPYTLSGGTDNKSLSRLGITGYGFAPLQLPDDLDFTGMFHGVDERVPADSLKFGARVLNTLLTNYNANANANANA
D1-29_025931161ydbMPutative acyl-CoA dehydrogenase YdbMATGACGCCGGAAGAAATCCTTCCCGAGGCGCTGCTGGAGCGCATCCGCGGCCGGGCAGCCGGCTATGACCGGGATAACGCCTTTTTCCACGAGGATCTGGCGGAGCTGGCCGCAGCCGGGTACCTCAAGCTCTTTGTCCCTGCAGCCGACGGCGGTGCCGGGTTGGGGCTTGAAGCGGCGGCGCAGTGCCAGCGAAGGCTGGCAACGGCTGCGCCCGCCACTGCCCTCGCGGTCAACATGCATTTGGTGTGGACCGGCGTCGCGTACGTCCTGGCCGGGAGAGGCGACCAGTCCCTGGACTTCGTCCTCAAGGAGGCCGCGAACGGCGAAATCTTTGCCTTCGGCAATTCCGAAGCAGGCAACGATTCAGTCCTCTTCGATTCGCGGACAGTTGCCACGCCACTGTCCGGCGGCGGCTACAGCTTCACCGGGTCAAAGATCTTCACGAGCCTTTCCCCGGCATGGACCAGGCTGGGGATCTTCGGAAAGGATGAAGGCGCGAGGGGCGGAGAGGGGGAACTGATTCACGGTTTCATCACCCGCGAGACCCCGGGCTACACAATCCTGGACGACTGGAACACGCTGGGGATGCGGGCCAGCCAGTCCAACACAACAGTGCTGAACGCCGCCGAAGTCCCCGCCGACCGGATTTTCCGCAGGCTCCCCGTGGGGCCGAATGCGGACCCGTTGATCTTCGCCATTTTCGCCTGCTTTGAATCACTCCTCGCCGCCGTGTACACCGGTCTTGGGGAGCGCGCCCTGCACCTGGCCGTGGAGGCCGTCAAGCGCCGCACCTCCTTCAAGAACGGTGGCCGGAGCTACGCCCAGGATCCTGACATCCGCTGGAAAGTGGCAGAGGCGGCCATGGCCATGGACAATCTCTACCCCCAGCTCCTGATGGTGACGCGTGATGTTGACGGCGTTGTGGACCACGGTCCGCAGTGGTTCCCCAGGCTCGTCGGATTGAAAATCAATGCCACAGAGACCGCCCGCCGGGTGGTTGACCTTGCCATCAGGGTCAGCGGAGGCTCAAGTTACTTCCAAGGCAGCGAACTGGAGCGCCTGTACCGCGACGTACTGGCCGGGATGTTCCACCCCTCTGATGACGAATCAGCGCACAATACAGTGGCGAATGCCTGGCTCGGCCCCCTGGAACAATGAMTPEEILPEALLERIRGRAAGYDRDNAFFHEDLAELAAAGYLKLFVPAADGGAGLGLEAAAQCQRRLATAAPATALAVNMHLVWTGVAYVLAGRGDQSLDFVLKEAANGEIFAFGNSEAGNDSVLFDSRTVATPLSGGGYSFTGSKIFTSLSPAWTRLGIFGKDEGARGGEGELIHGFITRETPGYTILDDWNTLGMRASQSNTTVLNAAEVPADRIFRRLPVGPNADPLIFAIFACFESLLAAVYTGLGERALHLAVEAVKRRTSFKNGGRSYAQDPDIRWKVAEAAMAMDNLYPQLLMVTRDVDGVVDHGPQWFPRLVGLKINATETARRVVDLAIRVSGGSSYFQGSELERLYRDVLAGMFHPSDDESAHNTVANAWLGPLEQNANANANANA
D1-29_02594234hypothetical proteinATGAAGGAACAATTTCTCACCAGCTCCGTCCACCGGGAACGGGACTATTTGAGGCAGTACGAGTACCTCGTACTGACGGTAAGCCCTGACGATTCACTGCGTGAGGCGCGTCGCCGGCTCGTGGAGCACTCCGAGTACGGCAAGTGGGAACTGGAACGCAGCAAGCTCTACCTCGGTGGCGGACGCCGCTTTTGGCTCCGGCGCAGGGTCATGCAGGTCCAACGGACTGTCTAGMKEQFLTSSVHRERDYLRQYEYLVLTVSPDDSLREARRRLVEHSEYGKWELERSKLYLGGGRRFWLRRRVMQVQRTVNANANANANA
D1-29_02595267hypothetical proteinATGAGCATCGATCCGCGTGTCGCGCTTCAGTCCTTGACAGCTGCCTTGGAAGAACACCTTATCGCAGCCTCCAACCGGCGCGGCGATGGCGACCCCACGGTGGAAGCAGCTTTTTTTGCTGTTGCGGATGCCTTCGAAGTTTACGAGGACGCACTCTACGAGGCGTACAACGAAGTGACGCCGCTGCAGGTGTTTGACGACGAGGAAGATGAAGAGGAAGACAGCGTCCTGGACGACGATGAGGACCTGGAAATCGTCGAGGAGTAAMSIDPRVALQSLTAALEEHLIAASNRRGDGDPTVEAAFFAVADAFEVYEDALYEAYNEVTPLQVFDDEEDEEEDSVLDDDEDLEIVEENANANANANA
D1-29_02596960gpr_1COG0667L-glyceraldehyde 3-phosphate reductaseATGATTCCCCGTAAGCTTGCTGCTATGCAGCAGCGTTATGTCGGCAACAGTGGATTGCGGGTCTCCGCCCTTACCCTGGGCACCATGTCCTGGGCAGGCGATACCGATGAACAGGACGCAACGGACCTGCTGCGCGCTTTCGTCAACGCCGGCGGCAAGCACATCGACACTGCAGCGTCCTATGCGGACGGCCGCGCAGAGGCGATGATCGGATCGCTGCTGGGGGACGTCGTCTCCAGGACCGAAGTCTCCATTTCCACCAAAGCCGGGATGTCGACGTCGGACGGCCGGCGGACGGTGGACACCTCACGGAACGCGATGCTGTCCGGGCTGGACGCCAGCCTGGCGAGGCTCGGGACCGATTACGTGGATATTTGGTTTGCGCAGGCGTGGGATGCCAACGTCCCGTTGGAGGAAACCCTCTCGGCCCTTGAATTCGCCCTGCGGAGCGGGCGGGCCAGGTATGCAGGCGTCTCAAACTTCAGCGGCTGGCAAACTGCCAAGGCCGCCGCCGTGGCCGGGTTTCCGCTGGTGGCCGCGCAGGCAGAATATTCGCTCCTTCAGCGGAAGGCGGAAGCAGAACTCATTCCCGCTGTGGAGGACGCAGGGCTGGGCCTGATGGCATGGGCCCCGCTGGGCCGGGGTGTCCTCACCGGCAAGTACCGGGGCAACATCCCCGGCGATTCCCGGGCCGCACACCCGGTCCTTGCGCCCTACGTTGAACCGTACCTGGCGGAAAAGCCGTCCCGGGTGGTGGAGGCGGTGGCCATGGCTGCCAAGGGATTGGGCCGCACACCGCTGGATGTCTCCCTCAGTTGGCTGCTTTCCCAGCACGGGGTTGCCACGGCGATGGTGGGCCCCCGGACGCCTGTCCAGCTTAAAGAGATCCTGGATGCCCAGCTGACACCATTGCCGCCGGAGATTTCCCGCGCCCTTGAGGACGTTTCAGAAACGTCCTGAMIPRKLAAMQQRYVGNSGLRVSALTLGTMSWAGDTDEQDATDLLRAFVNAGGKHIDTAASYADGRAEAMIGSLLGDVVSRTEVSISTKAGMSTSDGRRTVDTSRNAMLSGLDASLARLGTDYVDIWFAQAWDANVPLEETLSALEFALRSGRARYAGVSNFSGWQTAKAAAVAGFPLVAAQAEYSLLQRKAEAELIPAVEDAGLGLMAWAPLGRGVLTGKYRGNIPGDSRAAHPVLAPYVEPYLAEKPSRVVEAVAMAAKGLGRTPLDVSLSWLLSQHGVATAMVGPRTPVQLKEILDAQLTPLPPEISRALEDVSETSNANANANANA
D1-29_02597834uppPCOG1968Undecaprenyl-diphosphataseGTGAACTGGTTTGAGGCGGCCCTGCTGGGCCTTGTGCAGGGACTGACCGAATTTCTACCGATTTCATCAAGTGCGCACCTGCGGATTGTGGGGGAGTTCCTGCCGAACGCCGCCGATCCCGGTGCCGCTTTTACCGCCATAACCCAGCTGGGGACCGAAACGGCCGTCCTTGTCTACTTCCGGCATGACATCGTCAGGATCTTCAGGGCGTGGGCCGGAGCACTCACCGGCAAAGTGTCCAGGCAGGACCCGGATGCGCGGATGGGATGGCTCGTTATTTTGGGAAGCCTGCCCATCATCGTCCTGGGGCTTCTGTTCCAGGACCAGATCGAATCAGTACTGCGGAGCCTGTGGATTGTAGCCACCACACTGATCGTCTTCGGGCTGGTCCTGGCGGTGGCCGATGCGGTGGGCCGGCAGGAACGCGAGCTGAGCCGGCTGACGTACAAGCACGGTGTATTTTATGGATTTGCCCAGGCAATGGCGCTTATTCCCGGGGTTTCGAGGTCGGGAGGGACCATCACGGCCGGCCTGCTGATGGGCTACACCAGGGAAGCCGCGGCGCGGTACTCGTTCCTTCTGGCCATTCCTGCTGTATTCGGCAGCGGCCTGTTCCAGCTCTACAAGACCGTCACCAAAGAGGGCATCAGTGGACCCTATGGGCTGCCGGAGACGGCGATGGCCACCGTCATTGCGTTTGCCGTGGGTTATGTGATCATCGGCTGGTTCCTGAAGTTCGTTTCCACCCGCAGCTACCGCCTCTTTGTCTGGTACCGGATCTTCCTGGGGATGGCGCTGTATCTGCTGCTCGGTTTCAATGTCATCAGCGCCTAGMNWFEAALLGLVQGLTEFLPISSSAHLRIVGEFLPNAADPGAAFTAITQLGTETAVLVYFRHDIVRIFRAWAGALTGKVSRQDPDARMGWLVILGSLPIIVLGLLFQDQIESVLRSLWIVATTLIVFGLVLAVADAVGRQERELSRLTYKHGVFYGFAQAMALIPGVSRSGGTITAGLLMGYTREAAARYSFLLAIPAVFGSGLFQLYKTVTKEGISGPYGLPETAMATVIAFAVGYVIIGWFLKFVSTRSYRLFVWYRIFLGMALYLLLGFNVISAPGPT0024165_1848DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153NANA
D1-29_025981239mshCCOG0215L-cysteine:1D-myo-inositol 2-amino-2-deoxy-alpha-D-glucopyranoside ligaseATGTCCGCCATACGGCTGTTCGACACAGCCCGCGGCATTGAAGTGACGCTTCCCAACGGCGGGGACCAGTCGATGTATGTCTGTGGAATCACGCCTTATGACGCCACGCACATGGGGCATGCTGCCAGCTACGTGGCCTTTGACCTGCTGAACAGGGCCTGGCGCGACGCCGGGCAGCGGGTTTCGTACGTCCAGAATGTCACCGACGTTGACGACCCCCTGCTGGAACGGGCCACAGCCACGGGAGTTGACTGGAGGGACCTTGCGGCCAGCCAGGTGGAGCTCTTCCGGACCGACATGGAAGCGCTGAACGTGCTGGCACCGGATAACTACGTTGGGGCTGTGGAATCCATTCCCCTCATCGTCCCGGCGATCGAGCATCTTGTCCGGCTGGGCCTTGCCTATCGCGTGCCGGGCACTGCGGGAGAACCGGATGGCGATGTGTATTACGACGTCGAGGCAGCCGGCAAGCATTCCGTCTCCGATGAACCGGACGCCTGGACCCTGGGCTCAATTTCGGGCCTGCCGGAAACTGAGATGCTGGAGCTCTTTGCTGAACGGGGCGGCGATCCCGGGCGGGCCGGCAAGCGTCAGGCCCTTGATCCGCTCCTTTGGCGGGTTGCACGGGACGGCGAGCCCAGCTGGCCCGGCGGCGAGCTTGGGCAGGGCAGGCCGGGCTGGCACATTGAGTGCACGGTCATCGCCCAGAAATACCTCCCGGCCCCCTTCACCGTCCAGGGCGGAGGCTCTGACCTGATCTTCCCCCATCATGAAATGGGTGCAGGGCACGCGTATTCACTGACCGGGGTGCCGTTGGCCCAGCATTTTGCCCACGCCGGAATGGTGGGCCTTGACGGTGAAAAGATGAGCAAGTCCAAGGGAAATCTGGTCCTGGTCTCCGCATTGCGGGCTGCAGGGGAGGAGCCCGCGGCCATCCGCCTGGCTATCCTGGCACACCACTACCGTACGGACTGGTCCTGGACAGAGTCCGGATTTGCCCAGGCGAAGGAACGGCTGGAGTCCTGGCGCGGCGCCCTTGCCAGCGCGCCCGCAGGATCTGCGGCTGGCCTTATTGCCGGGATGCGCGAGGCAATGGCCGCTGATTTGAACGCCCCGGCGGCGCTGGCGGCCGTGGACAAATGGGCTGCGATGGCTACCACTTCAGACACCGCGGGCAGCCAGCATGACCAGGCTCTTGCCAGCGACGCGATTGACGCACTTCTCGGGGTCCGGCTCTAAMSAIRLFDTARGIEVTLPNGGDQSMYVCGITPYDATHMGHAASYVAFDLLNRAWRDAGQRVSYVQNVTDVDDPLLERATATGVDWRDLAASQVELFRTDMEALNVLAPDNYVGAVESIPLIVPAIEHLVRLGLAYRVPGTAGEPDGDVYYDVEAAGKHSVSDEPDAWTLGSISGLPETEMLELFAERGGDPGRAGKRQALDPLLWRVARDGEPSWPGGELGQGRPGWHIECTVIAQKYLPAPFTVQGGGSDLIFPHHEMGAGHAYSLTGVPLAQHFAHAGMVGLDGEKMSKSKGNLVLVSALRAAGEEPAAIRLAILAHHYRTDWSWTESGFAQAKERLESWRGALASAPAGSAAGLIAGMREAMAADLNAPAALAAVDKWAAMATTSDTAGSQHDQALASDAIDALLGVRLNANANANANA
D1-29_02599906hypothetical proteinATGAATAGCTTCGATGGAGACACCACCGAACCGGATGCCGTGGACGAGCCAGAGCGGTTCCTGCTGCCAGTGGCGGACGGAGAGCGGGTGACCGTGATGTTGGCCGCCTTTGAGGGCTGGAACGACGCCGGCGAGGCCGCGAGCGATTCACTTCGCTACCTCAATAAGCTCTGGGGCGGTAAGAAGGTTGCCTCCATCGACGCCGATGAATACTACGACTTCCAGTTCACCCGTCCAACGGTACGGCGGAACGCGGCAGGCGAACGCAAGATCAAATGGCCCTCCACCCGCATCTACAAGGCGAGTGCGCCCGGCTCCAACGTGGATGTCATCTTTGTGCAGGGAACTGAGCCCTCCTACAAATGGCGTGCCTACACAGCCGAGCTGCTGGTGCATGCGGAGGCGTTGAAGGTGGATTACGTGGTGCTGGTGGGAGCCCTGCTCGCGGACGTTCCCCACAGCAGGCCTATCCCCGTCAGCACCTCCTCCGACGACGGACCGCTCCGGGAGCGTCTGAACCTGGAGGCCTCCCAGTATGAAGGTCCGGTGGGGATTGTGGGCGTACTGTCCGAAGTCTCGCTGCTGGCAGGCATTCCTACCGTGTCGTTGTGGGCGGCCGTACCGCACTACGTAGCCCAGGCGCCGTCACCCAAGGCGCAGCTGGCCCTCCTGCACCGGATTGAGGAGTTGCTGCAGGTGCCTTTGGATACCCACGAACTGGCAGAGGAAGCCGACGCCTGGGAGCGGGGCGTTGATGAGCTCGCCACCGAGGACCCGGAAATCGCTGCTTACGTGCGCCAGTTGGAAGAGGCCAAGGATACCGCCGACCTTCCTGAGGCGAGCGGGGAGTCCATCGCACGGGAGTTTGAGCGGTACCTCAAACGCCGCGGCCAGGACCGGCCCTAAMNSFDGDTTEPDAVDEPERFLLPVADGERVTVMLAAFEGWNDAGEAASDSLRYLNKLWGGKKVASIDADEYYDFQFTRPTVRRNAAGERKIKWPSTRIYKASAPGSNVDVIFVQGTEPSYKWRAYTAELLVHAEALKVDYVVLVGALLADVPHSRPIPVSTSSDDGPLRERLNLEASQYEGPVGIVGVLSEVSLLAGIPTVSLWAAVPHYVAQAPSPKAQLALLHRIEELLQVPLDTHELAEEADAWERGVDELATEDPEIAAYVRQLEEAKDTADLPEASGESIAREFERYLKRRGQDRPNANANANANA
D1-29_02600687gph_2Phosphoglycolate phosphataseGTGGACACGGAACCATACTGGATCGCCGCCGAACACGCGCTGGTCCAGGCTTACGGCGGGACCTGGTCGCACGAGCAGGCCATGCAGCTGGTGGGGCAGTCCCTGACGTTTTCCGCCGGCATTCTGCAGGAGGCCGGTGTCCGGCTGGAGATCCGGCAGATTATCGACACCCTGACTGCCGAAGTCATCCGCAATGTGCGGCGCAAGGTTCCTTGGCGCCCCGGTGCACGGGAACTGCTGGATGACCTCCACAGTGCCGGCATCCGCTGCGCCCTGGTCACCATGTCTGAAGGCCCGCTGGCACGCGAAATAGTTTCCAGTCTTCCCCGGCAGTACTTCGAATTCCTGGTCACCGGAGACAGTGTGGTCCGCGGCAAGCCGGACCCTGAGGCGTACCTGACGGCTGTTGAACTGCTGCGCCAGGATGATCCCGGCCTGACCGTGGACCACTGTGTGGCGCTGGAGGACTCGGCACCGGGCGTTGCGGCGGCGGTAGCCTCAGGTGTTGCCACCGTTGCCATTCCGCATATGGTCCCGCTGCCGCCTGACCCGCGGCACGTGACCTGGGAATCACTGGAGGGACGCACCGTGGCCGAACTGGAATCCATCGCTGCACGCCGGGGCGAACAGCAGGCCGGCACGTCGGCAATGCCGGCAACCGCTTCGAGGAGCCTTGCACTTGACTAAMDTEPYWIAAEHALVQAYGGTWSHEQAMQLVGQSLTFSAGILQEAGVRLEIRQIIDTLTAEVIRNVRRKVPWRPGARELLDDLHSAGIRCALVTMSEGPLAREIVSSLPRQYFEFLVTGDSVVRGKPDPEAYLTAVELLRQDDPGLTVDHCVALEDSAPGVAAAVASGVATVAIPHMVPLPPDPRHVTWESLEGRTVAELESIAARRGEQQAGTSAMPATASRSLALDNANANANANA
D1-29_026011167rip3COG0517Putative zinc metalloprotease Rip3TTGACTAAAACGAAAGCGCCCTCCCGCAGGGAGGGCATTCCGCTGGGCAGGATTGCGGGCATTCCCGTCATTCTGGCCTACTCCTGGTTTATCATCGCGGCCTTCACGGTGGTTGCCTTCGGACCAGCGCTCCTGGCGAGGAACCCCGCCCTGGGCTTCGCCGCCTACTTGGTGGCCTTTGCTTACGCCGTGCTTCTGCTGATCTCGGTCCTCGTCCACGAACTGGCTCATGCGCTGACCGCCAAGATCTATGGCTGGCCCACGCAGAAGATCGTCCTGAACCTTTGGGGCGGGCACACACAGTTCGAAAACTTCACGGCCACCCCGGGGCGCTCCGTGCTGGTGGCACTGGCCGGGCCGGCCGCCAACTTCGTGCTCGCCGGGGGGACGTGGCTGGTCCGTGCCTCGGCCGACCTTGGCGGAGTGGCGGACATCCTGACAAATATCTTTATGGTGGCCAACCTGCTGATCGGCATCTTCAACGTCCTGCCGGGACTCCCGCTCGACGGCGGGCGCCTGGTCGAGTCGGCGGTCTGGAAGGCAACGGGAAGCCAGGCAAAAGGCACAGTCGCCGCGGGCTGGGCCGGACGTGTCCTTGTGGTCGCCCTGGGATACTGGTTTATTGCCAGGCCGCTGCTCGCCGGTGAGCCGCCGGACCTCACCTTCCTAATGATTACCATCCTCGTCGCCGGATTCCTCTGGATGGGCGCTTCGGCCTCCATCCAGCAGGGGACACTGCGCGGCAGGCTCCACCTGGTGAGCGCTGCAGCGCTGTCCGAACCCGCCGTCGGAATTCCTGCTTCTGCAACAGTGGCGGAAATCCTGCGGCTCTCACCTGCCGGAACCCCTGCAGTTGTTGTCTGCGGCCCGGACGGCCGGCCGCAGGGAGTGGTGGACCCTTCGGCGGTTTCTGCCGTACCCCCTGCCGCCGCAGGAACCACCCCAGTGACGGCCGTGTCCTATGCCCTGGTTCCCGGCGCCTATGTGCCCGAATGGTCCAAGGGGCAGGAGCTCATCCAGTACCTCGCCCAGCTGGAGGGCCGCGAATATGCCGTGGTGGATCACCGGGGGACGGTGACCGGACTCCTGCGGCAGAACGCAGTGCTGGCTGCCATCACCGGCAAGGGTCTCCGGCCCAATGGCCATCGGCAGGACCAAAACCGGTAGMTKTKAPSRREGIPLGRIAGIPVILAYSWFIIAAFTVVAFGPALLARNPALGFAAYLVAFAYAVLLLISVLVHELAHALTAKIYGWPTQKIVLNLWGGHTQFENFTATPGRSVLVALAGPAANFVLAGGTWLVRASADLGGVADILTNIFMVANLLIGIFNVLPGLPLDGGRLVESAVWKATGSQAKGTVAAGWAGRVLVVALGYWFIARPLLAGEPPDLTFLMITILVAGFLWMGASASIQQGTLRGRLHLVSAAALSEPAVGIPASATVAEILRLSPAGTPAVVVCGPDGRPQGVVDPSAVSAVPPAAAGTTPVTAVSYALVPGAYVPEWSKGQELIQYLAQLEGREYAVVDHRGTVTGLLRQNAVLAAITGKGLRPNGHRQDQNRNANANANANA
D1-29_026021080hypothetical proteinATGAGCAGCGAAACTGCCGCCAACGAAGCCACAGCAACAACCCAAGACGGTGTTGTCGCCGGCGGCTTGCAGCCTGTAGGCGCTGCACGGCGCCGGGGTCCCTTCCGGGAGGGGGAGCGGGTCCAGCTGACCGACGAACGCGGCCGGATGAACACCATCACGCTGGAAACCGGCGGCGCGTTCCACACCCACCGCGGCTTCCTGAACCACGACGAGATCATCGGCAAGGTGGACGGTTCGGTAGTGGTGAACAACGTTGGCCAGCAGTACCAGACGCTGCGCCCGCTTCTCTCCGATTTTGTCCTGTCCATGCCCCGGGGTGCCGCCGTGGTTTACCCGAAGGATGCAGGGCAGATTGTCACCATGGCGGACATCTTTCCCGGCGCCAGGGTAGTGGAGGCCGGGGTCGGTTCCGGCGCGCTGTCCATCTCGCTGCTGCGGGCCGTGGGCGACAACGGCTACCTGCACTCCTTTGAACGCCGGGCGGAATTCGCGGACATTGCCCGGGGCAACGTGGAGACCATCTTTGGTGGCCCCCACCCCGCCTGGAAGGTCTCGCTCGGCGATTTCCAGGAAGAAGTGGTCCGCAGCGAAGCCCCCGGGTCCATTGACCGCGTGGTCCTGGACATGCTGGCGCCGTGGGAGTGCCTCGACGCCGTTGCCACGGTGCTTGCCCCAGGCGGCGTCTGGATCAATTACGTGGCCACCGTAACGCAGCTCTCCCGGACTGCCGAGGCCATCCGCGCCGACGGCCGTTTCACCGAGCCCGACGCTTGGGAATCCCTGGTGCGTGGCTGGCATCTGGAAGGCCTGGCGGTCCGCCCAGACCACCGCATGGTGGCCCACACCGGTTTCCTGCTGGTGACCCGCCGGCTGGCTGACGGTGTCACCGGGATTTCGGTCAAGCGCCGGCCGTCCAAAACGGATTTCAATGAAGAGGACGTCAATGCCTGGACGCCCGGCGCGGTGGGCGAACGGCTGGTCTCAGACAAGAAACTTCGCCGCGCAGCGAGGGACGCCATCGCCGGCACCAACGTTAAGGACGAACCCGTTAAAGACGAACCGGAGATCACGAACTAGMSSETAANEATATTQDGVVAGGLQPVGAARRRGPFREGERVQLTDERGRMNTITLETGGAFHTHRGFLNHDEIIGKVDGSVVVNNVGQQYQTLRPLLSDFVLSMPRGAAVVYPKDAGQIVTMADIFPGARVVEAGVGSGALSISLLRAVGDNGYLHSFERRAEFADIARGNVETIFGGPHPAWKVSLGDFQEEVVRSEAPGSIDRVVLDMLAPWECLDAVATVLAPGGVWINYVATVTQLSRTAEAIRADGRFTEPDAWESLVRGWHLEGLAVRPDHRMVAHTGFLLVTRRLADGVTGISVKRRPSKTDFNEEDVNAWTPGAVGERLVSDKKLRRAARDAIAGTNVKDEPVKDEPEITNNANANANANA
D1-29_026031755mpaCOG0464Proteasome-associated ATPaseATGATGGAGACGCCGAACCAGGACTCCGGACGCACACCGGCGGAGCAGTCTGCCGCCAACGATCTGTCCGTTGCCGACCGGCAGGTTAACATCCTCCGGGACAAACTCAGGCACATCGACCGCCAATTGGCAGCCGCGACACAAAACAACGCCAAGCTCGTCAGCATGCTGGAAACTGCGAAAGCGGAGATTCTTCGGCTGAAGAACGCGCTGGACCAGGAAGGGCAGCCGCCGTACAGCTTTGGCACCATCCTCCAGTTGAACCCAAAGCGGCAGCCGTCGGCCGGCAGCAGCGGGCAGGCCGCCACGGAGGAATCCGCTGACATCTTCAATGCCGGCCGAAAGATGCGGGTGGGGATCAGTCCACTGGTCAACATCAACCAGTTGGCAGTGGGCCAGGAGGTCCTGCTGAACGAGGCACTGCTGATCGTGGCCGGACTCGGCTACGAGCGTGCGGGAGAGCTTGCGACACTCAAGGAAATGCTCGGCGCAGACCGCGCCCTGGTAGTGGGACGGGCGGACGAAGAGCGCGTGATCCGGCTCTCCGGAGCACTGCTGTCCGAAAAACTCAGGGTGGGCGATGCACTGTCCATCGACTCCCGCACAGGATATGCCCTGGAGAAGGTACCCAGGTCCGAGGTGGAAAACCTCGTACTCGAGGAAGTCCCGGACATCACGTACGAGGACATCGGTGGCCTGGGGCCGCAGATCGAGCAGATCAGGGACGCCGTCGAATTGCCGTTCCTGCACCCTGACCTCTACCGTGAGCACGGCCTGAAGGCACCCAAGGGGATCCTGCTCTACGGTCCGCCGGGCTGCGGCAAGACCCTCATCGCCAAGGCAGTAGCCAACTCATTGGCCGCCCGGGCGGCAGAACGTTCAGGCAACGTAGATCTGAAGAGCTACTTCCTGAACATCAAAGGTCCTGAACTGCTGGACAAGTACGTGGGGGAGACCGAACGGCACATCCGCCTGATTTTCTCCCGCGCCCGGGAAAAGGCGTCCGACGGCAGCCCCGTAGTGGTGTTCTTCGACGAGATGGACTCCCTCTTCCGCACCCGCGGAACCGGGATCTCCTCAGACGTCGAAACCACCATCGTTCCCCAGCTGCTCAGTGAGATCGACGGCGTGGAGCGGCTTGACAACGTGATTGTGATCGGTGCCTCCAACCGCGAGGACATGATTGATCCGGCCATCCTGCGTCCGGGCCGTCTGGACGTCAAAGTCAAGATCCACCGCCCCGACGCCGAGGCCGCAGCCGACATCTTCAACAAGTACATCACCACTGACCTGCCGTTCCACGAGTCCGATCTCGCAGAGCATGACGGTGACGTCCAGGCAACCGTGGACGCCATGATCCAGCGCACGGTGGAAGCCATGTACTCCACAGACAAGTCCAACGAGTACCTGGAAGTCACCTACGCCAACGGCGACACGGAGATGCTCTACTTCAAGGACTTCAACTCCGGCGCAGTGGTGCAGAATGTGGTTGACCGGGCCAAGAAGTACGCCATCAAGGATTTGCTGACGCTGCACCAGAAGGGCCTGCGGATCGAGCACCTGCTCCGTGCCGTAGTGGATGAATTCCGCGAACACGAGGATATGCCCAACACCACCAACCCGGATGACTGGGCACGCATCTCCGGCAAGAAGGGCGAGCGGATCACCTACATCCGCACCATCGTCCAGGGCAAGGCCGGCCAGGAGCCAGGCAAGTCTATTGAGACGATGCCGAACACAGGGCAGTACCTGTGAMMETPNQDSGRTPAEQSAANDLSVADRQVNILRDKLRHIDRQLAAATQNNAKLVSMLETAKAEILRLKNALDQEGQPPYSFGTILQLNPKRQPSAGSSGQAATEESADIFNAGRKMRVGISPLVNINQLAVGQEVLLNEALLIVAGLGYERAGELATLKEMLGADRALVVGRADEERVIRLSGALLSEKLRVGDALSIDSRTGYALEKVPRSEVENLVLEEVPDITYEDIGGLGPQIEQIRDAVELPFLHPDLYREHGLKAPKGILLYGPPGCGKTLIAKAVANSLAARAAERSGNVDLKSYFLNIKGPELLDKYVGETERHIRLIFSRAREKASDGSPVVVFFDEMDSLFRTRGTGISSDVETTIVPQLLSEIDGVERLDNVIVIGASNREDMIDPAILRPGRLDVKVKIHRPDAEAAADIFNKYITTDLPFHESDLAEHDGDVQATVDAMIQRTVEAMYSTDKSNEYLEVTYANGDTEMLYFKDFNSGAVVQNVVDRAKKYAIKDLLTLHQKGLRIEHLLRAVVDEFREHEDMPNTTNPDDWARISGKKGERITYIRTIVQGKAGQEPGKSIETMPNTGQYLNANANANANA
D1-29_026041674dopDepupylaseGTGACGGCTGCACCGGAACCCGTCGTCGGAGGATCGCTCCCCGTCGGCGGGGCCATGCGCGTCATGGGGGCTGAGACCGAGTACGGTATCCATGCCCCCTCGGCCCCCGGCGCCAATGCCACCATGATGTCCGCCCGGGTAGTGCAGGCGTATGCGCAGGTGACACGCCAGCGCGCGGCCGGCGGAGCAGAGACGCGGTGGGACTACACCGACGAGGAGCCCCTGCACGACGCCCGCGGCTGGACCCTTGAGCGGGAATCGGCGCATCCCAGCCAACTGACTGACCAACCGCCGGTCCTTGACGCCGAAGCCGTGGCCCTTGCCTACGGGCGCGAGGAACTGGAACTGGACGGGCAGGACGAGTCAGGCACGCTGCTGATGAACATGGTCCTGGGCAACGGCGCGCGCCTGTACGTGGACCATGCGCACCCGGAGTATTCCAGCCCTGAGGTCACCAGTCCCCGTGACGCCGTGAAGTGGGACGCGGCAGGGGACCTCGTAGCCCTGGCCGCAGTCCGGCGGCTCGCGGCGGATCCCGAACTCCCCGCCGTCAACCTCTACAAAAACAACACGGACAACAAGTCCGTCTCCTACGGCTCCCATGAGAACTACCTCATGCCGCGCTCCGTCCCGTTTGGCGACATCGTGCGGGGCCTGACACCCTTCTTCGTTACCCGGCAAATCATGTGCGGTTCGGGCCGGGTGGGTTTGGGACAGGACAGCTCCACACCGGGTTACCAGATCAGCCAACGTGCGGATTTCTTCGAGGCCGAAGTGGGCCTGGAGACCACCATCCGCCGGCCCATCATCAACACCCGTGATGAACCGCATGCCACCGCGGACAAGTACCGCCGGCTGCATGTGATCATCGGGGACGCCAACCTGAGCCAGGTGTCCAATTACCTGAAATTTGGCGCCACAGCGCTGGTTCTCAGCCTCATCGAAGCAGGCCTTGCACCGAAAGTGGAAGTGCACGAGCCTGTCGCCGCACTGCAGGCCGTCAGCCACGACACGTCCCTGACTGCCAAACTCAGGCTGCTGGACGGGCGCAGGGTGACAGCCCTGGATCTTCAGTGGATGTATCACGAGGCCGCCGCAAAGCTTGCCCAGGACACAGGGGTTGGCGACGCCGTCGACGGGGACGGGCACACCCACGAGGTCCTGGAGCGCTGGGCGTCCACGCTCACGCAGCTGGACTCGGACAGGGCGGCTGCCGCCTCATCGGTGGAGTGGCTGGCAAAGCTTTCCCTTCTGGAGGGTTACCGGGACCGTGACGGGCTCGCCTGGGACGACGCCAGGCTTGGCCTCGTGGATCTGCAGTGGGCGGATATCCGTCCGGAGAAGGGCCTGTATTACAGGTTCCTCGCGCGGAACCGGATGCAACGGATCATCGACGACGCCGACATCGCCACTGCGGTCACCGAACCGCCGTCGGACACCCGTGCCTTTTTCCGCGGCCGCTGCATCAGCAGCTTCGGCAAGGATGTGGTGGGGGCAAGCTGGGACTCGGTCATCTTCGATGTACCGGGATACGGCCGGCTCCAGCGGGTGCCCACCAGGGAACCGCTGCGTGGCACCAAAGCACTCACCGGAGGGCTCTTTGCCCGCCACCGGACGGCCGGTCCTTTCCTGGCAGAGCTGCTGGGACACAAGACTGCTCCGCCTCCGGCGTAAMTAAPEPVVGGSLPVGGAMRVMGAETEYGIHAPSAPGANATMMSARVVQAYAQVTRQRAAGGAETRWDYTDEEPLHDARGWTLERESAHPSQLTDQPPVLDAEAVALAYGREELELDGQDESGTLLMNMVLGNGARLYVDHAHPEYSSPEVTSPRDAVKWDAAGDLVALAAVRRLAADPELPAVNLYKNNTDNKSVSYGSHENYLMPRSVPFGDIVRGLTPFFVTRQIMCGSGRVGLGQDSSTPGYQISQRADFFEAEVGLETTIRRPIINTRDEPHATADKYRRLHVIIGDANLSQVSNYLKFGATALVLSLIEAGLAPKVEVHEPVAALQAVSHDTSLTAKLRLLDGRRVTALDLQWMYHEAAAKLAQDTGVGDAVDGDGHTHEVLERWASTLTQLDSDRAAAASSVEWLAKLSLLEGYRDRDGLAWDDARLGLVDLQWADIRPEKGLYYRFLARNRMQRIIDDADIATAVTEPPSDTRAFFRGRCISSFGKDVVGASWDSVIFDVPGYGRLQRVPTREPLRGTKALTGGLFARHRTAGPFLAELLGHKTAPPPANANANANANA
D1-29_02605204pupProkaryotic ubiquitin-like protein PupATGGCAGGCCAGGAGCAGCAGCAGCCACAATCGCGCGACAGCCAGGTCGAGGAAGACGTGCCGGAGGCCCCTCCCGCGCCCCCTGAAGCCCAGGCATCGGCGTCCACCCAGGGCGTGGATGACCTCCTCGACGAAATCGACGGCGTCCTTGAATCCAACGCTGAAGAGTTTGTCCGCGCGTTCGTCCAAAAGGGCGGTCAGTAAMAGQEQQQPQSRDSQVEEDVPEAPPAPPEAQASASTQGVDDLLDEIDGVLESNAEEFVRAFVQKGGQNANANANANA
D1-29_02606822prcBCOG0638Proteasome subunit betaGTGCAGGAATCAACCGCCAATCAGGTAGCCGCCAGTGCGACGTCGTCATTTACCGAGCATCTGCAGCGGGACCGCCCGGAACTGCTTCCCTACGGCCGTGACCTTCCGGCCGGGGCAAATCCGGGCACACCCCTGCAGGTGCCGCATGCCACCACCATCGTGGCGATGAGCTACGGTGGCGGCGTACTGATGGCTGGTGATCGGCGTGCCACCATGGGCAACGTGATTGCCAGCCGGCACATTGAAAAGGTATTTCCGGCGGACCAGTATTCAGTCCTGGGGATAGCAGGAACAGCAGGCATCGCCATAGACCTGACCCGTCTCTTCCAGGTGGAGCTGGAACACTACGAAAAGATCGAGGGCACGCTGCTCAGCCTGGATGGCAAGGCCAACCGGCTGGGGGCCATGATCCGCAGCAACCTTCCCATGGCCATGCAGGGACTGGCCGTGGTTCCCCTCTTTGCAGGCTTTGACACCACGGCCGGCGTGGGCCGCCTCTTCTCCTACGATGTCACTGGCGGCCGGTACGAGGAACGGGAACACCACACGGTGGGGTCCGGTTCGGTCTTCGCCCGCGGCGCTCTGAAAAAGCTATGGCGGCCCAACCTCACGGAAGCCGAGGCAGTTTCGGTGGCCGTGGAATCGCTTTACGACGCTGCCGACGACGATTCCGCCACCGGCGGCCCCGATCCCGTCCGTCAGCTTTGGCCGATTGTCTACACTGTGAACAGGTCCGGTGCCAGGCGCGTGCCCGAGTCCGAGCTGGCCACGGTGGCAGGAAACATCATCGAAGCCCGTTCCAGCGCACGGCGGGAGGCCTGAMQESTANQVAASATSSFTEHLQRDRPELLPYGRDLPAGANPGTPLQVPHATTIVAMSYGGGVLMAGDRRATMGNVIASRHIEKVFPADQYSVLGIAGTAGIAIDLTRLFQVELEHYEKIEGTLLSLDGKANRLGAMIRSNLPMAMQGLAVVPLFAGFDTTAGVGRLFSYDVTGGRYEEREHHTVGSGSVFARGALKKLWRPNLTEAEAVSVAVESLYDAADDDSATGGPDPVRQLWPIVYTVNRSGARRVPESELATVAGNIIEARSSARREANANANANANA
D1-29_02607708prcACOG0638Proteasome subunit alphaATGACGCAGCAGTTTTATGTTTCGCCTGAGCAACTGATGAAGGACCGTGCGGACTTCGCACGGAAAGGCATCGCACGCGGCCGCTCTGTGGTGGTGGTCAGCTGTGAGGACGGCATCGCGCTGGTTGCCGAAAACCCGTCACCGTCGCTGCACAAGATCGGCGAGATCTACGACAAGATCGCGTTTGCCGCGGTGGGCAAGTACAACGAATTTGAAAGCCTTCGCCAGGCAGGTGTGAGGTATGCCGATGTCCGCGGGTACTCGTACGACCGCGAGGATGTCACGGCCCGCGGACTTGCCAGCGTTTACGCGCAAAGCCTTGGTGCCGTGTTCACGGCGGAACAGAAGCCCTTCGAAGTGGAGTTGGCAGTGGCCGAGGTGGGACCCACGCAGGAACGCGACCACCTCTACCGGCTGACTTTCGACGGTTCCATCGCAGATGAGCACGGCTTCATTGTCATGGGCGGCCAGGCTGAGAAGGTGTCATCCGCCATTGCGGCAGGCTGGCGCTCGTCCTTGCGGTTCCCCCATGCGATCCGTCTCGCGATGGAAGGCCTGGTCACTGACACGGAAGCAGGGGAACTGCCAGCCAAAGCCGTGGAAGTTGCCGTGCTGGACCGCGTTTCCGAGAGCTCCCGTGGCTCGCGGCGCGCCTTCCGGCGACTGAATGACGCCGATCTCACGGCGTTGCTTGCTGAGGAGGACTGAMTQQFYVSPEQLMKDRADFARKGIARGRSVVVVSCEDGIALVAENPSPSLHKIGEIYDKIAFAAVGKYNEFESLRQAGVRYADVRGYSYDREDVTARGLASVYAQSLGAVFTAEQKPFEVELAVAEVGPTQERDHLYRLTFDGSIADEHGFIVMGGQAEKVSSAIAAGWRSSLRFPHAIRLAMEGLVTDTEAGELPAKAVEVAVLDRVSESSRGSRRAFRRLNDADLTALLAEEDNANANANANA
D1-29_026081365pafAPup--protein ligaseATGGACAAGAGGATCTTCGGTATTGAAACCGAGTTCGGCATTTCGTACTCGAGCCCGGATTCACGGCCGTTGGCGCCCGAGGAAGTGGCCCGTTACCTTTTCCGCAAGGTGGTCAGCTGGGGGAGGTCATCCAACGTGTTCCTCACCAACGGTTCCCGCCTCTACCTCGACGTCGGATCGCACCCCGAGTATGCCACCGCTGAATGCGATGACCTTGCACAGCTCATCGCCCACGACCGGGCAGGCGAACTCATCCTTGATGACCTCGTGGACGAAGCACAGTCCAGGCTGGCGGCTGAGGGCTTCAACGGCACCGTGTACCTGTTCAAGAACAACACTGATTCGGCCGGCAACTCCTACGGCAGCCATGAAAACTACCTGATCCCGCGGCGGGGCGAGTTCTCCAGGCTGGCCGAAATCCTCATTCCCTTCCTTGTTACCCGGCAGCTCATCGCCGGGGCGGGAAAAATCCTCAAAACGCCGCACGGGGCCACCTACGCCTTTTCGCAGCGGGCCGACCATATCTGGGAGGGTGTCTCGTCCGCCACCACACGGTCCCGTCCCATCATCAACACCAGGGACGAACCACACGCCGATGCCGAGTTCTTCAGGCGGCTCCATGTCATTGTGGGCGATTCGAACATGTCCGAAACGACGGCCCTGCTGAAGGTGGGCACGGTGGACCTGATCCTGCGGATGATTGAGGCCGGCGTGATCATGCGCGACATGCGGATGGAAAACCCCATCCGCAGCATCCGGGAAATTTCCCACGACCTCACTGGCCGTGCCCTGGTCCGGCTGGCGAACGGCCGCCAACTGACGGCGCTGGAGATCCAGCAGGAGTACCTGACCAAGGTCATCGCTTTCGTTCAGGAGAACGGTGCGCACAACCCGCATGTCCCGCTCATCCTTGACCTGTGGGGCAGGACCCTGAGGGCCATTGAAAGCGGCGACACCAGCACCATCGAAACAGAAATCGACTGGGCTATTAAAAAGAAGCTGATGGACAACTACCGGGAACGGCATGGCCTGGGCCTGGACGCACCGCGGATTGCCCAGCTTGACCTCACTTACCATGACATTTCACGCAGCCGCGGACTCTACTATCTGCTCCAGTCCAGAGGCGTGGTGCGTCGCGTGGTGGATGACACCATAGTCAAGGATGCGGTGGACGCCCCGCCCCAGACCACCAGGGCCAAATTACGGGGAGATTTCGTCCGCCGCGCCCAGGAACTGGGCAGGGACTACACGGTGGACTGGGTGCATCTGAAGCTGAATGACCGCGCACACCAGACCATCCTGTGCAAGGATCCATTCCGCAGCGTGGACGACCGTGTGGATGCCCTGCTGGACTCTATGGGCTGAMDKRIFGIETEFGISYSSPDSRPLAPEEVARYLFRKVVSWGRSSNVFLTNGSRLYLDVGSHPEYATAECDDLAQLIAHDRAGELILDDLVDEAQSRLAAEGFNGTVYLFKNNTDSAGNSYGSHENYLIPRRGEFSRLAEILIPFLVTRQLIAGAGKILKTPHGATYAFSQRADHIWEGVSSATTRSRPIINTRDEPHADAEFFRRLHVIVGDSNMSETTALLKVGTVDLILRMIEAGVIMRDMRMENPIRSIREISHDLTGRALVRLANGRQLTALEIQQEYLTKVIAFVQENGAHNPHVPLILDLWGRTLRAIESGDTSTIETEIDWAIKKKLMDNYRERHGLGLDAPRIAQLDLTYHDISRSRGLYYLLQSRGVVRRVVDDTIVKDAVDAPPQTTRAKLRGDFVRRAQELGRDYTVDWVHLKLNDRAHQTILCKDPFRSVDDRVDALLDSMGNANANANANA
D1-29_02609933hypothetical proteinGTGCGCCGACTACTTGCAATTCTTATCCCCGGTCTGCTGTTGCTTACCGCCTGTGGCGGGTCGCCCGCAGCACCGGAACCCACCAGTCAGTCCGCTGGCGATACTGCGAAGTTCGACTCCCTGAAACTGACGGACAACGGGGACAAAAAAGCTCCCGGCGTCGAATTCACCAAGCCACTCGAAGTGACTGAACCCACTGTCAAGGTGGTCGCCGAGGGCAGCGGGGATCCCGTCAAACCGAACCAGGTTGCGAACATCTCAATCCTCGCCCTGAACGGAACCGACGGCTCCACGCTGGAGGACACCTTCGCCGGTGAGCCCGAGCCCCTGGAACTCAACGAGGACCTCAAGACCGGAAGCGCCTTCATTTACAACGCGTTTGTTGGCGCCAAAGTCGGTTCGAGCCTTGCCCTTGCCATTCCCGGCCAGGCTGCTGCCGCCTCCGGCGCCCCGGCCCAGCCCACACAGCTGCTGCTGATCAAGGTGCTCTCCGCCAAGGACGTCCCACCGGCGCTCGAAAAGCCAGAGGGCGATCCCGTCACTCCGCCTGCAGGCCTGCCCACCGTCAAGGAAAATGACCAGGGCGTTCCGGAGATCTCCGTGGATGGCGCTGCGGCGCCCACTGCCCTCGTGGCCCAGGACCTGATCAAGGGCAAGGGCGCCGAAGTCAAGGCAACAGACACCCTCACCGTCAACTACGTGGGCGTGAACCTCGTGGGCGGCACCAAGTTTGATTCAAGCTTCGACCGCGGAGAGCCCGCCAGCTTCCCGCTGACGGGTGTCATCAAGGGCTGGACGCAGGGGCTCGCCGGGAAGACAGTTGGCTCGCGTGTACTCTTGGTTGTCCCCAAAGACCTGGCCTATGGTGACGCCGGGCAGGGCGAAGCCAAGGGCGACCTCGTTTTCGTTGTCGACATCCTCGGCGTTAAGTAGMRRLLAILIPGLLLLTACGGSPAAPEPTSQSAGDTAKFDSLKLTDNGDKKAPGVEFTKPLEVTEPTVKVVAEGSGDPVKPNQVANISILALNGTDGSTLEDTFAGEPEPLELNEDLKTGSAFIYNAFVGAKVGSSLALAIPGQAAAASGAPAQPTQLLLIKVLSAKDVPPALEKPEGDPVTPPAGLPTVKENDQGVPEISVDGAAAPTALVAQDLIKGKGAEVKATDTLTVNYVGVNLVGGTKFDSSFDRGEPASFPLTGVIKGWTQGLAGKTVGSRVLLVVPKDLAYGDAGQGEAKGDLVFVVDILGVKNANANANANA
D1-29_02610396fkbPFK506-binding proteinATGTCATTTGGTCAGCGCAATTTCGACCGCCAGAAGCCGGAAATTGACTTCCCGGAAGGCGATGTCCCCACAGAGCTGGTCATCACTGACCTCATCGAGGGTGACGGCGCCGAGGCCAAGGCCGGCGACACCGTCTCCACCCACTATGTGGGCGTTGCCTGGTCCACCGGCGAAGAATTCGACGCATCCTGGGGCCGCGGCGCACCGCTGGACTTCCGCGTAGGCGTCGGCCAGGTCATCCAGGGCTGGGACCAGGGCCTGCTCGGCATGAAAGTGGGCGGACGCCGCCGCCTGGAGATCCCCTCTGAACTCGCCTATGGATCACGCGGTGCCGGCGGAGCCATCGGCCCCAACGAAGCCCTGATCTTTGTGGTCGACCTCGTGGGCGTCCGCTGAMSFGQRNFDRQKPEIDFPEGDVPTELVITDLIEGDGAEAKAGDTVSTHYVGVAWSTGEEFDASWGRGAPLDFRVGVGQVIQGWDQGLLGMKVGGRRRLEIPSELAYGSRGAGGAIGPNEALIFVVDLVGVRPGPT0015110_231DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
D1-29_026112040hypothetical proteinTTGTTGCCGCGCTTTCTGCTTTCCGGCACGGACTTTAGTAACGTAGCCTGCGTGTCCGCATCCCGTACAGAGCGCCTCCTGAATCTGCTGATCGCACTCCTCAACACCAAATACGGCCTCCGCCGCAGCGAACTGCGCGAAAAGGTCTACCACGACACGTCCGGCAATGACGTGGCCTTCGGCAGGATGTTCGAGCGTGACAAGAACGACCTGCGGCAGTTCGGCTTTGACGTGGAGACGGTTACGGACCTGGGCTGGAGTGAGGACGATCCCGCCACCACGCGCTACCGGATCGGCAAGGAGTCCAACAGGCTGCCGGACGTCCGGCTCAGCCCGGGGGAGTGGACGGTACTTCTGCTGGCCTCGCAGCTCTGGGAACGGGCGGCACTGGGCGCCGCCGCAGAGAACGCGCTGCGGAAGCTGCAGGCTTCCGGCGGCCTGTCTGACGTTGGACTTCCCGTCGGTGTTCAGCCAAGAATCAAACCCGCCGGCAGGGCGTTCGATGATCTCGTCGGAGCCATGCACGCCCAGCACCCTGTCACCTTCAGCTATCTGGCAGGCAGTACAGGCAACGAGGAACACCGGACGGTGGAACCCTGGGGCCTGGGAAGCCGCTTCGGCCAGTGGTACCTTGCCGGCTATGACCGCACGCGCCGGGCTGTGCGGCATTTCCGCCTCTCCCGGATCACCAGTGCCGTCTCGGTACTGGACAAGGAGCGCTATTCGCCGCCGGAGAACTTCAACATCCGGGAAGTGCTGGCAAGACTTCCGGAACTCCCGCTTCGGACCGCCGTCGTGGACGTCAGGGCGGGGCGGCTGGTGGGCTTGCGCCAGCGCGCCGCGGTCTCCGAGGAAGGCGGGGATATGGGAGCTCCCGACGCCGGGTACGACAGGCTTGAGCTTCAGTTCAGGGATGCGGAGGTGCTTGCCGAGGAACTGGCTTCCTACGGCCCGGATGCCCTGGCAGTCTCGCCTGACGAGCTCGTCACGGCCGTCCGGCGAAGGCTGCGTGCCGCCGCTGACTTCTGCGCGTCTCCGGTTCCGGAGTTCAGGTTTTCCGATGCCACAGCGGCCAGGACGGCCCGCAAGCGGACGTCTGAGGATCAGCTCAAACGGATGCTGCAGCTGGTGCCGTTCCTGGTGCACAACCAGGGGCTGCACATCCAGGACGTTGCGCGGCGGTTTGGGGTCACGCGCACTGAACTTGAAGATGACTTGCGGATCCTCATCTGTTCCGGCCTTCCCGAGGGGTATCCGGACGACCTCCTGGACATCCAGTGGGAGGACGACCACGTCTATATCACCCAGGATCTGGATCTCACCAGGCCGGTCCGCTTCACCGTGGAGGAGGCCTGTGCGCTCCTCACTGGTCTGGAGACGCTGAACGGCCTGCCGGAACTCGCTGAGGGCGGAGCGCTGGAATCCGTAACCCTGAAGCTCATGGCAGCAGCAGGTGAAGAGGGACTTCGCGCCGGCTCCCTCGCGGGGCCTGAGGTTGGTCCGGCGGATTCCGCGATTCTCGAACTGATCCATCAGGCGATCGATGACCGAGCCCAGCTGCATCTTGTGTATTTGTCCCCGCAGCGGGACAGGTTTTCAGAACGCGACGTTGACCCGCTCCGTCTTTATTCGCTGGACAACACGTGGTATTTCGAGGCGTACTGCCATTCTGTGCAGGGGTTGCGGAACTTCCGGCTGGACCGGGTCCAGGAGTTGCGGCGAAACGGCAAACAGGCGTCAAGCGACATGGAGCCCGCCGAAGGTTTCCCCGCCAAGCTCTTCACTCCCACCGACGACGACGTCACGGTGACGGTCCAGCTCACCAGGCAGGGCGCCGGGCTGGCTGACGACTACTACGCCGAACGCACGGCAGCCCTTCAGGACGGCGGCCTGGTGGCGGAGATCCGGTTCGGCAACACTGCCTGGCTGCCAATGTTCGTGGCCCAGCATGGGGGTGCGGTGCGCATTCTGGAGCCTGCGGAACTGGCGGAGTCTGCACGCAACTGGGTCAAGGCCTCGTTGGACCGGTACGGCGGCTAGMLPRFLLSGTDFSNVACVSASRTERLLNLLIALLNTKYGLRRSELREKVYHDTSGNDVAFGRMFERDKNDLRQFGFDVETVTDLGWSEDDPATTRYRIGKESNRLPDVRLSPGEWTVLLLASQLWERAALGAAAENALRKLQASGGLSDVGLPVGVQPRIKPAGRAFDDLVGAMHAQHPVTFSYLAGSTGNEEHRTVEPWGLGSRFGQWYLAGYDRTRRAVRHFRLSRITSAVSVLDKERYSPPENFNIREVLARLPELPLRTAVVDVRAGRLVGLRQRAAVSEEGGDMGAPDAGYDRLELQFRDAEVLAEELASYGPDALAVSPDELVTAVRRRLRAAADFCASPVPEFRFSDATAARTARKRTSEDQLKRMLQLVPFLVHNQGLHIQDVARRFGVTRTELEDDLRILICSGLPEGYPDDLLDIQWEDDHVYITQDLDLTRPVRFTVEEACALLTGLETLNGLPELAEGGALESVTLKLMAAAGEEGLRAGSLAGPEVGPADSAILELIHQAIDDRAQLHLVYLSPQRDRFSERDVDPLRLYSLDNTWYFEAYCHSVQGLRNFRLDRVQELRRNGKQASSDMEPAEGFPAKLFTPTDDDVTVTVQLTRQGAGLADDYYAERTAALQDGGLVAEIRFGNTAWLPMFVAQHGGAVRILEPAELAESARNWVKASLDRYGGNANANANANA
D1-29_02612351hypothetical proteinATGCCTTGGTGGTCCTGGATTCTGCTCTGGATAGCGCTTGTTGCGCTCTCCCTCCTGTTCTATGTCTTTTTGGGCATCCGCCTTTTCCGCCAGTTCATGGCAACGGTCAAGGATCTGGGTGCCGCAGGAGAGAAACTGGCGCGGCTGAATCCGGATCTTGCTCCGCCAGGGGACAGCCCGGCGGACAAGGCGGAGCAGCCCGGTTCAGCCGTTTTTGCCTCACCCGTGCGGATGCGGCATGATTACCACACATCCGCGTCATCACGCCGGGAACAGCGCCGCCAAAGGCGGGTTCAGCGTAGGACCGACCGGGGCCAGCCGCAGCTACTGGGCGATCTCGACTTCACTTAGMPWWSWILLWIALVALSLLFYVFLGIRLFRQFMATVKDLGAAGEKLARLNPDLAPPGDSPADKAEQPGSAVFASPVRMRHDYHTSASSRREQRRQRRVQRRTDRGQPQLLGDLDFTNANANANANA
D1-29_02613273tatASec-independent protein translocase protein TatAGTGGGAAGACTCTTTGATGGCCCGTGGCCAATCGTAATTATCATCGTCGTGGCCTTGCTGCTCTTTGCCGCGCCCAAGCTTCCGGCCATGGCGCGCAGCCTTGGGCAGTCGATGCGGATCATTAAATCCGAAGTCAAGGAAATGAAGAACGACGGCAAGACCGAGACCACCGATGCATCGGGGCCCGTAGAGGGTAAGGTCGTCAACCATCCGCAGGGCAAACCCGGTGAGCCGACCGACGGTACTGACGCTCCGCCGTCGAACCGCGCTTAAMGRLFDGPWPIVIIIVVALLLFAAPKLPAMARSLGQSMRIIKSEVKEMKNDGKTETTDASGPVEGKVVNHPQGKPGEPTDGTDAPPSNRAPGPT0029290_1399DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029290-tatA-K03116NANA
D1-29_02614795tatCCOG0805Sec-independent protein translocase protein TatCATGGCTCTTTGGGACCACCTCAGGGAGCTGAAGAACCGGCTGATCAAGTCCGCCATCGGCGTTGTCGTCGGCGGCGTGGGCGGCTGGTTCCTCTATGACCCGTTGCTCTCGGCCTTGGCCGAGCCGGTGAACCGCATTTCACAGCAAACCGGTGGGCTCTCCGCCATCAACTTTGGCACGATTGCTTCACCATTCGACTTCAAGTTGCAGATGTCGCTGCTGATCGGCCTGGTTATTTCCAGCCCGATCTGGATCTACCAGTTGTGGGCGTTCATCACCCCGGGCCTGACCTCGAAAGAGCGGCGCTACACCCTGGGTTACATGGCGGCAGCAGTGCCTTTGTTCCTGGCCGGAATCTACGCGGGCTGGCTGGTGGTCCCGCAGGTGGTCCGGGCACTGACGCAGTTCACCCCGACCGGGTCTTCCAGCGTTATCGATGCCCGCACCTACATCGAGTTTGTGACCCGGATGGTTCTGGTCCTGGGTATCGCCTTCCTGGTGCCGGTGGTCCTTGTCGGCATCAACATGGCCGGCGTCATCTCCGGCCAGACCATCCTCAAGGCTTGGCGCATCACAGTATTCCTCGTCTTTGTCCTGGCGGCCATCGCTGCCCCGGGTGCCGACGCAATCTCTATGTTTATGCTTGCTGGTCCGCTGCTGCTGCTCTTCTTTGCCGCCATAGGAATCTGTCTGATGAACGACAAACGGCGCAGCCGGCGGGCAGCCAAGCAGGCTGCCGAGACTGAGGCGAATGCGGATATCGCAACCCCGGGCACTGAGCTGAAGAACCTGTAGMALWDHLRELKNRLIKSAIGVVVGGVGGWFLYDPLLSALAEPVNRISQQTGGLSAINFGTIASPFDFKLQMSLLIGLVISSPIWIYQLWAFITPGLTSKERRYTLGYMAAAVPLFLAGIYAGWLVVPQVVRALTQFTPTGSSSVIDARTYIEFVTRMVLVLGIAFLVPVVLVGINMAGVISGQTILKAWRITVFLVFVLAAIAAPGADAISMFMLAGPLLLLFFAAIGICLMNDKRRSRRAAKQAAETEANADIATPGTELKNLPGPT0029295_2263DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029295-tatC-K03118NANA
D1-29_026152949helYCOG4581putative helicase HelYATGTCCTCCATTTCCGGGCCGCTCTCTTCGGGGCCATTTTCTACCGGGCCCACCGATCCAGATCCACTGTCGCCCGCAGATAGCTACCGGGCCAGCGCAGAGCGCACGGCCGAGGCAGCCACATACCTTGGCGGCTTCATCCGCACCCTGGACTTTGAGCTTGACGATTTCCAGCGGCAGGCCTGCCTTTCGCTCCAGGCCGGCAAGGGAGTGCTGGTGGCAGCCCCCACCGGAGCCGGCAAGACGATCGTGGGCGAGTTCGCCATCTACCTCGCGCTGGAGCGGAACCTCAAGGCCTTCTACACCACCCCCATCAAGGCGCTGAGCAACCAGAAGTTTACTGAGCTCGCCGAGAAATACGGGCCCGCGAACGTGGGCCTCCTTACGGGTGACACCAGCATCAACGGAGACGCCCCCGTGGTGGTGATGACCACCGAAGTCCTTCGGAACATGCTCTATGCCGATTCCGATACATTGGATGACCTGGGCTTTGTGGTGATGGACGAAGTGCACTACCTCGCGGACCGGTTCCGCGGCGCGGTGTGGGAGGAAGTCATCATCCATCTTCCCAGCGAGGTCCAGGTAGTGTCCCTGAGCGCCACGGTATCCAACGCGGAGGAGTTCGGTGCCTGGCTGGACACCGTTCGCGGGGATACGGACATCATCGTGTCCGAGCACCGGCCGGTGCCCCTCTGGCAGCACGTTATGGTCGGCCGGGAGATTGTGGACCTGTTCGCCGGCGAAACCACGTTTGATGAGATTGCGCCGCCGGCGGAGGCAGGCGATGGAATTGCCGTCGAAGTGATCCGGGATGAACCGGGGCGGCCTGCAGCCCAGCCACGGGGGTTTGAAGTCAACCCCGACTTGCTGGCCATGGCCAGAATAGAGAGCCGGCAGAACTTCAACGGCCGCTTCGGACACGGCGGACGCAGCCAGCGCCGCCAGCACAGGCAGCGGGGCGACGACGGGCCTCCCCAGGCCACGGGTGTGCGGCGGGCCAGCCGCCCACAGGTCATAGCCAGCCTGGACAAGCAGGACCTGCTGCCGGCCATCACTTTCATTTTTTCCAGGGCGGGCTGCGATGCTGCCGTGGCTCAGTGTGTTTCCTCGGGATTGTGGCTGACCACCGAGCGGGAGCAGCGCATTATTGCCCAGCGTGTCGACGAAGCCGGGCAGGACATTCCGTCGGATGATTTGGACGTCCTGGGCTTTTGGACATGGCGCGACGGCCTGCTCCGAGGCTTCGCCGCCCATCATGCCGGCATGCTCCCCACGTTCAAGGAAGTGGTGGAGAAACTGTTTGCCGAAGGGCTGGTGAAGGCTGTTTTCGCCACCGAAACCCTCGCCCTGGGCGTGAACATGCCGGCCCGTTCAGTGGTCCTGGAGAAGCTGGACAAGTTCAACGGCGAAGCCCACGTGGACATCACCGCAGGGGAGTACACCCAGCTCACCGGGCGGGCAGGACGCCGTGGCATCGACGTCGAGGGCCACGCTGTGGTGCTGTGGCAGCCGGGCACCGATCCGGCAGCGGTTGCGGGCCTGGCCTCCCGGCGGACCTACCCCCTGAACTCCAGCTTCCGGCCCACGTACAACATGAGCATCAACCTGCTGGCGCAGTTCGGCCGCGCCCGTGCCAGGGAGATCCTGGAGTCGTCCTTTGCGCAGTTCCAGGCGGACCGTTCGGTGGTAGGCCTGGCCAAACAGGTCCGCAGCCGCGAAGAATCCCTGGCCGGGTATGCGAAGTCCATGACATGCCATCTTGGCGACTTTACGGAGTACGCGCGCTTGCGCCGGGAACTGTCCGACGCCGAGAATGTCACCTCGCGTACCAAGTCACGGGCCCGGAAATCCCTCAGCGACGACTCCCTGGCGCGCCTGCTTCCGGGAGACGTGGTGGACGTGCCCGGCGGCCGCGCCCCGGGTCCGGCCATTGTGCTCAGCTCCGATCACAGCAGCCGGGAGCCGCGGCCAGCTGTGCTTACGCTGGACAACCAGCTGCGCAGGATCGGGACGGATGACCTTGAAGGGCCCATTGCACCCCTGACCCGCATCCGGATTCCAAAATCCTTCAATGCCAAGGTTCCCAAGTCCCGCCGGGACCTTGCGTCTTCCGCCCGGAATGCGCTTCGGGAAAACCGGCCGCCGGCCCCCACCAGCAACCGCAACAACGATTTTGGCCTGGCAACTGCGCTGCCCAACCAGGAAAAGCGCATCGCGGACCTGCGACGGGCGCTTCGGGCCCATCCCTGCCACGGCTGCAGCGAACGCGAAGACCATGCACGGTGGTCCGAACGCTGGTGGAAGCTTCGGCGCGAAACTGATGCGCTGGTCCGCCAGATCCAGGGCCGGACCAACACCATCGCCAAAACGTTCGACCGCGTTTGTGATGTGCTCTCCGCCTATGGCTACCTGGAAGCCGCCGGTGACGGCAGGCTGGCCATCAGCGCTGACGGCCAAAGGCTGCGGCGAATTTACGGTGAAAAAGACCTCCTGATCTCGCAGTCGCTCCGGCTGGGTGCGTTCGATGACCTGGACGCCGTTGAGGTAGCCGCCCTGGCGAGCGTCCTGGTGTACCAAGCCAAACGTGAGGACAGGGGGCTTCGGCCGAGGATGCCCAGCATCTCCCTGGAATCCTCGGTGGACCTGGTGATCCGGGAATGGTCGGCCCTGGAGGACGTGGAAGAACAGAACAAGCTGCCGCTCACCGGGGAACCTGAACTGGGACTCGTGTGGCCGATGTACAAATGGGCCCGCGGGAGGCATCTTCAGGAGGTGCTCAACGGCACCGACCTGGCCGCCGGCGACTTTGTCCGGTGGGTCAAGCAGGTTATTGACCTCCTGGACCAGATTGCCAAGATTCCCGGCCTTGAACCACGCCTGGCACGCCTGTGCGCCGAAGCGATCTCCCTGATCCGGCGTGGAGTGGTGGCCTACTCTTCAGTCCTCTGAMSSISGPLSSGPFSTGPTDPDPLSPADSYRASAERTAEAATYLGGFIRTLDFELDDFQRQACLSLQAGKGVLVAAPTGAGKTIVGEFAIYLALERNLKAFYTTPIKALSNQKFTELAEKYGPANVGLLTGDTSINGDAPVVVMTTEVLRNMLYADSDTLDDLGFVVMDEVHYLADRFRGAVWEEVIIHLPSEVQVVSLSATVSNAEEFGAWLDTVRGDTDIIVSEHRPVPLWQHVMVGREIVDLFAGETTFDEIAPPAEAGDGIAVEVIRDEPGRPAAQPRGFEVNPDLLAMARIESRQNFNGRFGHGGRSQRRQHRQRGDDGPPQATGVRRASRPQVIASLDKQDLLPAITFIFSRAGCDAAVAQCVSSGLWLTTEREQRIIAQRVDEAGQDIPSDDLDVLGFWTWRDGLLRGFAAHHAGMLPTFKEVVEKLFAEGLVKAVFATETLALGVNMPARSVVLEKLDKFNGEAHVDITAGEYTQLTGRAGRRGIDVEGHAVVLWQPGTDPAAVAGLASRRTYPLNSSFRPTYNMSINLLAQFGRARAREILESSFAQFQADRSVVGLAKQVRSREESLAGYAKSMTCHLGDFTEYARLRRELSDAENVTSRTKSRARKSLSDDSLARLLPGDVVDVPGGRAPGPAIVLSSDHSSREPRPAVLTLDNQLRRIGTDDLEGPIAPLTRIRIPKSFNAKVPKSRRDLASSARNALRENRPPAPTSNRNNDFGLATALPNQEKRIADLRRALRAHPCHGCSEREDHARWSERWWKLRRETDALVRQIQGRTNTIAKTFDRVCDVLSAYGYLEAAGDGRLAISADGQRLRRIYGEKDLLISQSLRLGAFDDLDAVEVAALASVLVYQAKREDRGLRPRMPSISLESSVDLVIREWSALEDVEEQNKLPLTGEPELGLVWPMYKWARGRHLQEVLNGTDLAAGDFVRWVKQVIDLLDQIAKIPGLEPRLARLCAEAISLIRRGVVAYSSVLNANANANANA
D1-29_026161659hutI_2ImidazolonepropionaseATGACCAGTACGCCTTCCCCGGAGCCGTCCCGCCGCGAACGCAAGGTTGTCCTCTACCGGAACGGATCCGTGTACACCGCCGCGGATCCCTTCGCCACAGCAATGCTGGTGGACGGTGACACCGTCGCGTGGGTGGGCTCAGAGCAGGCGGCCTCGTCCATCGCGGACGGCTCCATGGAAATCATCGACCTTCACGGAGCCCTCATCACGCCGGGATTTGTCGATTCACATATGCACCTGACCGAAACGGGCATTGCCCTGGGATCCCTCCAGCTCGGGGACGTCCGCTCAGCCGGGCAGCTCCTGCAGGCGGTTGCATCGTCACACGCCAACGGGCCTGTGCTTGGCCATGGCTGGGATGAGTCCACGTGGGCCGATCCTGCCCTGCCCACCGCTGATGAGCTGCAGCGGGCTGCCGGCGGCAGGGACGTCTATCTGTCCAGGGTGGACGTTCATTCTGCCCTTGTCTCTTCATCGCTGGCCGCATCCGCCGGGCTTGCCGGCCTGGATGGCTTTTCGGCAGGCAGCCAGGTCAAGAGGGCAGCCCATACGGCCGCACGCCAGGCCACGCGGCAACTTTCCGCGGAGTCGCTGCGGGCCTATCAAATGCAGGCTTTGAGGGAAGCCGCAGAGAACGGCTACGTCGCCCTGGCGGAGATGGCCGCGCCGCATATCGGAGGGGCGGATGATCTTCGGGTCGCCGCCTCCTGGACCACTGACCAGGAGGAACAGGCTGTTCCGAAAGTTCTCCCGTACTGGGGCGAACTGGCCACCTCGGAAGAACATGCCCGCGGAGTCCTGGACTCACTCGGCGTCCCGGTACGCGGCCTCGCCGGCGACTTGAACATTGACGGATCCATTGGCTCCCGGACTGCGGCGCTTCGGTCTGACTACGCTGACGCGCCCGGTGAGCGGGGCAGGCTGTACCTCTCCGCAGACCAGGCGGCCGCCCACGTCGCGGCCTGTTCGCTGTTGGGGATCCAGGGGGGATTCCACGTCATTGGCGATGCCGGGCTGGATGCGGTGCTGGCAGCATTTGACCTTGCCGCGGCGGAGGTGGGCGAACAGCGCATCCGTGCCGCCGGCCACCGGCTTGAGCACGTGGAAATGGCCGATTCCGACGCCGTCGCGCGGCTGGCGCACTACTCTGTCACGGTCAGCGCCCAGCCGGGATTTGATGGGGCCTGGGGCGCGGCAGGCGGCCTCTACGAACAGCGCCTGGGCGGCCGCAGCCGGACCATGAATTCCTTCGCGTCCTTCTATTCGGCGGGGGTCCCCATTTGCTTCGGCAGCGACAGCCCCGTCACGGCATTGCGGCCGTGGTCCAGTGTCCGTGCCTGCCTGGAGCATCACAACCAGGACGAACGGATTTCGGCGAGGGCTGCGTTCCTGGGCCATACCCGGGCAGGCTGGCGGGCGGCCAAGTACCGTAACCCCATGGCAGGACAACTTGTGCCGGGAGCGCCAGCCTCCTTCGCCGTGTGGGAGGTGGATGAACTGATGGTCCAGGTGGCCGATGGAAGGGTTCAGTCCTGGAGCACCGATCCGCGGGCCCGTACCCCGTTGTTGCCGGCTTTGGACACCGGCCGGGACCCCGTCTGCCTGCAGACTGTGAGGGACGGCCGCGAGCTGTACTCCAGTCCTGCGCTTCGATCCTGAMTSTPSPEPSRRERKVVLYRNGSVYTAADPFATAMLVDGDTVAWVGSEQAASSIADGSMEIIDLHGALITPGFVDSHMHLTETGIALGSLQLGDVRSAGQLLQAVASSHANGPVLGHGWDESTWADPALPTADELQRAAGGRDVYLSRVDVHSALVSSSLAASAGLAGLDGFSAGSQVKRAAHTAARQATRQLSAESLRAYQMQALREAAENGYVALAEMAAPHIGGADDLRVAASWTTDQEEQAVPKVLPYWGELATSEEHARGVLDSLGVPVRGLAGDLNIDGSIGSRTAALRSDYADAPGERGRLYLSADQAAAHVAACSLLGIQGGFHVIGDAGLDAVLAAFDLAAAEVGEQRIRAAGHRLEHVEMADSDAVARLAHYSVTVSAQPGFDGAWGAAGGLYEQRLGGRSRTMNSFASFYSAGVPICFGSDSPVTALRPWSSVRACLEHHNQDERISARAAFLGHTRAGWRAAKYRNPMAGQLVPGAPASFAVWEVDELMVQVADGRVQSWSTDPRARTPLLPALDTGRDPVCLQTVRDGRELYSSPALRSNANANANANA
D1-29_02617744Undecaprenyl-phosphate mannosyltransferaseGTGCGCGTCCTTACCATCATTCCCACCTACAACGAGCTGGAATCCCTGCCCAAAACACTCCAGCGCCTGCGCGCGGCAGTGCCGGAGTCGGATGTGCTTGTGGTGGACGACAACAGCCCGGACGGCACAGGCCAGCTTGCCGACAGCTTCGCTGCCGACGACCCCCAGGTCCACGTCCTGCACCGCAAGGGCAAGGAAGGCCTGGGCGCCGCTTACATTGCCGGTTTCCGCTGGGGCCTGGACGCCGGGTACGACGTCCTGGTGGAAATGGATGCTGACGGGTCCCACCAGCCCGAACAGCTTCCCCAGCTGCTGGAGGCAGTAGAACAGGGTGCGGACCTGGCCATGGGTTCCCGTTGGGTCTCCGGCGGCAAAGTGGTCAACTGGCCGCTGTACCGGCAGGCCATTTCGCGGACCGGCAGCACGTACGCCCGCATTATGCTCGGCCTCAAGATCAAGGACGTAACCGGCGGATACCGGGCCTTCAGGCGGACAACGCTGGAAAAGCTGAACCTGGACCAGATCGACTCGGTTGGTTACGGCTTCCAGGTGGACCTTGCTTGGCGCGTTGCCAAAATGGGGCTCCGGATCGAGGAACGCCCCATCACCTTTGTGGAGCGTGAGCTGGGCGCGTCCAAGATGAGCGGAAACATCGTGGTCGAAGCAATGATCAACGTCACCAAGTGGGGCCTGCAGGCCAGATGGAACAAACTGACCGGACGCGACACGGCGGACCAAAGCTAGMRVLTIIPTYNELESLPKTLQRLRAAVPESDVLVVDDNSPDGTGQLADSFAADDPQVHVLHRKGKEGLGAAYIAGFRWGLDAGYDVLVEMDADGSHQPEQLPQLLEAVEQGADLAMGSRWVSGGKVVNWPLYRQAISRTGSTYARIMLGLKIKDVTGGYRAFRRTTLEKLNLDQIDSVGYGFQVDLAWRVAKMGLRIEERPITFVERELGASKMSGNIVVEAMINVTKWGLQARWNKLTGRDTADQSPGPT0017834_2210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
D1-29_02618348rbpA_2RNA polymerase-binding protein RbpAATGAGCGATCGCAGCCTGCGGGGTATGCGCCTTGGTGCACAGAGCATGGAGACCGAGTCCGGCGTGGAGCCGGCCCCGCGTCAGCGTGTCGAATACAGGTGCGAGGACGGCGAGCAGGTCTTCGTTACGTTCTCCTCCGAAGCGGAGATTCCCCCCGTGTGGGTTTCCAAGACCGGCAAGGAAGCACTCCTGGTCGACGGCGAACGGCCGGACACCAGCAACGAAAAAGCTGTCCGCACCCACTGGGACATGCTGCTGGAACGCCGCTCGCTCCCAGAGCTGGAACAGATCCTTGAAGACCGGCTGACCATCCTGCGCGAACGGCGTGGCGAACGGCGCAGCGCCTAGMSDRSLRGMRLGAQSMETESGVEPAPRQRVEYRCEDGEQVFVTFSSEAEIPPVWVSKTGKEALLVDGERPDTSNEKAVRTHWDMLLERRSLPELEQILEDRLTILRERRGERRSANANANANANA
D1-29_02619948COG0330putative proteinATGGATAACGCAGGAGGAGCCGCCGTGGGCATTGTGTTGGTGGTCCTGATCGTATTCGTGATTATTGTTCTGGTCCGCTCGGTGCGAATCATCCCACAGGCGAGGGCAGGCGTCGTCGAGCGCCTTGGCAAGTACCAGCGGACACTCAACCCGGGCCTGACCATCCTGATCCCCTTCGTGGACCGGCTCCTGCCGCTCCTGGACCTGAGGGAACAGGTGGTCTCATTTCCTCCGCAGCCGGTTATCACCGAAGACAACCTGGTGGTGTCGATCGACACGGTGGTCTATTTCCAGGTCACGGATCCGCGTGCCGCCACGTACGAGATTGCCAACTACATCCAGGCCGTGGAGCAACTCACCACCACCACGTTGCGTAACGTCGTGGGCGGCCTGAACCTGGAAGAGGCCTTGACGTCCAGGGACCAGATCAACGGCCAACTGCGCGGAGTGCTCGATGAGGCCACAGGCCGGTGGGGCATCCGTGTTTCACGCGTGGAGCTCAAGGCCATCGATCCGCCGCACTCCATCCAGGACTCGATGGAAAAGCAGATGCGGGCCGAGCGTGACCGCCGGGCAGCCATCCTCACCGCTGAAGGTACCAAGCAGTCCGCCATCCTCACGGCCGAGGGCCAGCGGCAAGCCTCCATTCTGGCAGCAGAGGGTGATGCGAAGGCAGCCATCCTGAGGGCAGACGGTGAAGCCCAGGCCATCCAGAAGGTCTTCGACGCCATCCACAAGGGCAACCCCGACCAGAAGCTGCTTGCCTACCAGTATCTGCAGACGCTGCCCAAATTGGCTGAAGGATCATCCAACAAGCTGTGGATCATCCCCAGTGAAGTCGGCGAGGCCCTCAAGGGCATCGGAAATGCGCTCGGCGGCACCAACCCGGATCTCCAGTCAGGCCGCGGATTGTTCGATGAAGAGCCGGAGAAGCAGCCCCAGCCCTGAMDNAGGAAVGIVLVVLIVFVIIVLVRSVRIIPQARAGVVERLGKYQRTLNPGLTILIPFVDRLLPLLDLREQVVSFPPQPVITEDNLVVSIDTVVYFQVTDPRAATYEIANYIQAVEQLTTTTLRNVVGGLNLEEALTSRDQINGQLRGVLDEATGRWGIRVSRVELKAIDPPHSIQDSMEKQMRAERDRRAAILTAEGTKQSAILTAEGQRQASILAAEGDAKAAILRADGEAQAIQKVFDAIHKGNPDQKLLAYQYLQTLPKLAEGSSNKLWIIPSEVGEALKGIGNALGGTNPDLQSGRGLFDEEPEKQPQPNANANANANA
D1-29_02620507hypothetical proteinGTGGCTGCGTCAGGCTGCAGGATGCCGACAAAGGGGGACGGAATGTTCGAATGGCTGAGCGAGAATTGGTGGGCGCTGTGGCTCACCGTATTTCTTGCCTTCGCAGTGATCGAGATGATCACCCTTGACCTGTTCTTCATCATGCTTGGCGGTGGCACCCTCGCCGCCCTTGTCGCCGATTTCGCGGGCGCGGACCTATGGCTGCAGATCGTCGTCTTCTGCGTCGTTTCGCTGCTCATGATTGCATTTGTCCGGCCTGTAGCGCTCAAACACTTGAAAAAGGGACCCTCCGAGCAGCGCACCAACGTAGACCGGCTCATTGGCGAACAGGCCCTGGTGATGGAAGCGGTGACCTCCACAGGCGGCCTGGTGAAGATCGGCGGCGACGTGTGGAGTGCGCGCTCGGCCACAGGCGTGCTGGCCGCGGGGCAACGGGTGGTGGTGTCCGCCATCGACGGCGCAACGGCCGTCGTTGCCGCCCAGCCGGAGACCGCCAACCCATCCTGAMAASGCRMPTKGDGMFEWLSENWWALWLTVFLAFAVIEMITLDLFFIMLGGGTLAALVADFAGADLWLQIVVFCVVSLLMIAFVRPVALKHLKKGPSEQRTNVDRLIGEQALVMEAVTSTGGLVKIGGDVWSARSATGVLAAGQRVVVSAIDGATAVVAAQPETANPSNANANANANA
D1-29_02621900rlmAII23S rRNA (guanine(748)-N(1))-methyltransferaseATGGTGCCTATGCCAATCTCCGCTGACCCTCCGCTGCTGTGCCCTGTATGCCGGGCTCCGCTCAGCGCCACAGGCGACGTCAGGCCTGCCTCCCCCGGCGCAGCCTTGCGCTGCGATGCGGGGCACAGTTTTGATGCGGCGAAACAGGGCTACTTCAATCTGCTGGTCGGGAAGGGCACCGTTTTTGAATCGGATACAGCCGAGATGGTGGCTGCGCGCTTCAATTTCCTCGAAGGCGGCCACTACAGGCCCCTGGCTGAGGCTGTCGCGGCGGCCGCTGCCCCGCATCTGGCCGGCAGCGGCCGCGCCGTAGTCGATTCCGGAACGGGAACCGGCCACTATCTCAGGCAGTTGCTGGACACGGTAGCTCCCGCTGCTGCAACGGGTCTCCACGCCATCGCCCTGGACATTTCAAAATTCGCGCTCCGGAGGGCGGCCCGGCTCAACCCGGAAGCAGTCAACCTTGTCTGCGATGTCTGGCAGCCGCTTCCCGTGGCGGACTCCGCCGTCGACGTCGTCACGGTCATTTTCGCCCCGCGGAACGCGGCTGAATTCGCACGGATTCTCCGGCCGGCCGGCCGGCTGGTAGTGGTCACCCCGCGGGCGGGGCATCTCGCGGCAGTGAGGGCGGAAACGGGAATGCTGGCCATCGAGGCAGGCAAGGACGACAGGCTGGCCGAGGCGATGTCCGGGCATTTTGATGTCGAATCCGCCCATGACCTGGATATTTCCCTGAACCTGACACCAGTCGAAGTTGCCGACCTGGCATTCATGGGGCCTGCGGGACACCATCTGAACCGCGACGGCCTGATCCAGCGGCTCTCCGGCCTTGCCCCGACCACCGCAGTTGAGGCCCGCTTCCGAATCACGGTCCTTGGCCTGGCAGGGCGCCCAGGGTAAMVPMPISADPPLLCPVCRAPLSATGDVRPASPGAALRCDAGHSFDAAKQGYFNLLVGKGTVFESDTAEMVAARFNFLEGGHYRPLAEAVAAAAAPHLAGSGRAVVDSGTGTGHYLRQLLDTVAPAAATGLHAIALDISKFALRRAARLNPEAVNLVCDVWQPLPVADSAVDVVTVIFAPRNAAEFARILRPAGRLVVVTPRAGHLAAVRAETGMLAIEAGKDDRLAEAMSGHFDVESAHDLDISLNLTPVEVADLAFMGPAGHHLNRDGLIQRLSGLAPTTAVEARFRITVLGLAGRPGPGPT0027925_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027925-rlmA2-K14336NANA
D1-29_02622678def_2Peptide deformylaseATGAGCCCAGCATCACCGCCAACACCGTTCAGCCCGTCACAGATTCAGGAAACAGTGCAGGAGATCCTCGCTGCCGAATCGCTCCCGCAGATCGTCCAGGCCGGGCATCCAGTGCTGCGCCAGCAGGCAGCTGCCTTTGATGGCCAGATCAGCCCGGCAGAACTGGAGCAGCTGATCAGCCTGATGAGTCGCGTGATGCACGAAGCCCCGGGCGTGGGACTGGCGGCGCCGCAGCTGGGAATTCCCTTGCAGCTTGCGGTGCTGGAAGACCAGTTCGACGTCGATCCGGAGGCAGCCGCGCTCCGCCACCGGACACCGCTGGACTTCCTGAGCATCCTGAACCCACGCTTCAGCCCAGTCGGTTCACAGAATGCGGCCTTTTTTGAAGGCTGCCTGTCCCTGAATGGTTTGCAGGCCGTGGTGGTTCGCCCTGAACAGGTACTGCTCAGGTTCGAAACGCCGGACGGACTCTCCACTGAACGGCACTTTGAGGGCTGGCAGGCACGGATCGTCCAGCATGAGACCGATCACCTCCAGGGCATCCTGTACGTTGACCGCGCCGAGCTCAGGTCATTAAGCAGCAATGCCGAATATGCAGCCCATTGGGCCGAAGCGGGTATTGGCAAGGCACGTGCTGCGCTGGGTTTCCTTCCGGAAACCGCTGAGCCGCTCCCCTAAMSPASPPTPFSPSQIQETVQEILAAESLPQIVQAGHPVLRQQAAAFDGQISPAELEQLISLMSRVMHEAPGVGLAAPQLGIPLQLAVLEDQFDVDPEAAALRHRTPLDFLSILNPRFSPVGSQNAAFFEGCLSLNGLQAVVVRPEQVLLRFETPDGLSTERHFEGWQARIVQHETDHLQGILYVDRAELRSLSSNAEYAAHWAEAGIGKARAALGFLPETAEPLPNANANANANA
D1-29_02623420hypothetical proteinATGGCTGAACTGACCGCACCGGAGACCCTGCCCGTGGACGTCGTACTCGACTTTGTCCGGACCCTGGAGGCCGGAGGGGGCGGGGCGAAGATCCGCCGATTCCTCTCCGACGCGTTTGTGTTGGTGGAGGCGCCGCATTTGCTGGCGCCAAACGGTGCCACCCGCACCCTGGAGCAGGTACTCAGAGGCGCCGACCAGAGCTCACAGGTGGTTGCCAACCAGAAGTTCGACATCCGACGAACCACCAGCGAGGGTGGCCGCGTTGTGCTCGAAGCGGACTGGTCAGCTACGTCCGTCATGGACCTCCGGTATTGGGATTCGGGCGAGACGATCAGGGCCAGGACGTCATCGGTGTTTGAGGTCCGGGATGGACTCATCGTCAGCCAGGACAGCTACGACTGCTATTTCCCCGGTTCCTGAMAELTAPETLPVDVVLDFVRTLEAGGGGAKIRRFLSDAFVLVEAPHLLAPNGATRTLEQVLRGADQSSQVVANQKFDIRRTTSEGGRVVLEADWSATSVMDLRYWDSGETIRARTSSVFEVRDGLIVSQDSYDCYFPGSNANANANANA
D1-29_026241134otcCAnhydrotetracycline monooxygenaseATGGCTGACGTGGTCATCGTGGGTGGCGGCCCGGTGGGGCTTTATCTTGCCGTCCTGCTCCTGCAGGAGGGCGTGGCGGTGCAGGTCATGGAGCAGCGGCTCCACCGGGACCTGCACTCGCGCGCCATCGGCATCCACCCTCCCGCGCTGCAGGCCCTGGAGCGGGCAGGCGTCGCTTCGGAGATGGTCGGCGAGGGCGTGCCCATCCGCCGCGGCTTTGCCATCAGCGGCGGGAAGGCCGTCGGTTCCATGTCCTTTGCACCAGTGTCCGACCGGTTTCCGTTTGTCCTGGCGCTACCCCAGTTCCGGACCGAAGCACTCCTGGAGGAAAGAGTCCGTGAGCTTGATCCGGCGGCCCTGGTCAGGGGGATCCGGGCTACTGGAATAGAGGACGACGGCGGCCGGGTCACCATCAGCGCCGCCGCCGGCACCGCGCCGGTGCAGGTTTCGGCTGCCTTGGCGGTAGCCGCTGACGGCTCCAGGTCAATCGTGCGGACCCTGCTGGGCATCCCCGTCCAGACCCGAAGCTACCCCGACCACTACCTCATGGGCGACTTTGCGGACGCCGGAACCTTCGCCCAGGATGCCGTGCTTTTCCTTGCCGCCGGAGGAATCGTTGAATCCTTCCCGCTGCCCGGTGGCCTCCGCCGCTGGGTGGTCCGGGTCAGCGAGCCGGGTCCAGCCCCCAGCGCGGGGCACCTTGCCTGGCTTGTCCAGCAGCGCACGGGCATCGCGCTTGATCCAGGCACCAACTGCATGCTCAGCAGTTTCAGCGTCCGGTCAACCATCGCCCGCAGGCTGGTGGCAGGGCGGGTTGCGCTCATCGGGGACGCTGCCCACGAAATCAGCCCAATCGGCGGCCAGGGCATGAACCTGGGCTGGCTCGACGCTCAGGAACTGGCGCCGATTATCCTTGCCGCCCTGGGGGGCCAGCCGGTTGGACAGGCCCTCCGGACATTCGAACTGCGCCGCCGGAAGGCCGCCCGCACGGCTCGGCGGCAGTCCGAGGTGAACATGATGCTGGGCCGGCCGCTGCCGGAACCCTGGTTGGACCTGCGGAACGGTGTCATCGGGGCCATCGCCTCCGTCCCGCCGGTTAACAGGCTGGTGGCCAAGCGTTTCACTATGCAGTAAMADVVIVGGGPVGLYLAVLLLQEGVAVQVMEQRLHRDLHSRAIGIHPPALQALERAGVASEMVGEGVPIRRGFAISGGKAVGSMSFAPVSDRFPFVLALPQFRTEALLEERVRELDPAALVRGIRATGIEDDGGRVTISAAAGTAPVQVSAALAVAADGSRSIVRTLLGIPVQTRSYPDHYLMGDFADAGTFAQDAVLFLAAGGIVESFPLPGGLRRWVVRVSEPGPAPSAGHLAWLVQQRTGIALDPGTNCMLSSFSVRSTIARRLVAGRVALIGDAAHEISPIGGQGMNLGWLDAQELAPIILAALGGQPVGQALRTFELRRRKAARTARRQSEVNMMLGRPLPEPWLDLRNGVIGAIASVPPVNRLVAKRFTMQNANANANANA
D1-29_02625702COQ3_1Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGTTGCTGATGCGGCGGCGGGACTCCGACGCCGTGGAAATCATGGACCTGCCGGACTGCGATCCCCGGGGCTTGGACCGCACCTACCGGCAGTTCGCCATCATCAACCGGACGCTTTCGGGCTGGCGCCGGCTCTACTCCCGTGAGCTGAGGCCACTCCTGTCGGAGGAGTCAGGCACCACTCTCCTGGACATAGGATCAGGCGGCGGAGATCTTGCTCTGACGCTGTCCAGGTGGGCAGAACACGACAAGGTGAAGCTTCATGTCACCGGGATCGATCCCGACGGGCGGGCGTATTCATTCGCCGCTGCCAGGCCGAAGGTTCCGCACGTCGAATTCCGGCAGGCGCACAGCTCCGACCTGCTCGCTGAAGGCTGCACTTACGACGTAGTGATCTCCAACCATGTCCTGCACCACCTGCAGCCGCCTGAACTGCAGCAGCTGCTGCTGGACTCCCAGGCGCTCGCACGCCGCGCGGTGCTGCACAACGACCTGCGGCGGAGCGCGCTTGCCTACGCCCTGTTCTCTGTCGCAGCCCTTCCCTTCCGGGGTTCCTTCATCCGGGCTGATGGCCTGACCTCCATCAGGCGCAGTTACACCCCCGCGGAGCTGACTGACCTCGCTCCCCCGGGCTGGAGTGTGGAGCCGCACGCCCCTTTCCACCAGGTGCTGGTCCGCCATAAGGGCAGCGTTGATGGCTGAMLLMRRRDSDAVEIMDLPDCDPRGLDRTYRQFAIINRTLSGWRRLYSRELRPLLSEESGTTLLDIGSGGGDLALTLSRWAEHDKVKLHVTGIDPDGRAYSFAAARPKVPHVEFRQAHSSDLLAEGCTYDVVISNHVLHHLQPPELQQLLLDSQALARRAVLHNDLRRSALAYALFSVAALPFRGSFIRADGLTSIRRSYTPAELTDLAPPGWSVEPHAPFHQVLVRHKGSVDGNANANANANA
D1-29_026261206COG3424Alpha-pyrone synthesis polyketide synthase-like Pks18ATGACGGTCTATCTGCGTTCATTGGAAACTGCTGTCCCGCCGACGCTGCTGGTCCAGACAGAAGCCAGGGACGTTTTTGCGGCCCAGCCCGGGCTGTCCAGGCTTGGTTCGCGACTGCTAAGCACCTGTTTCGACTCTGCGGCGATCGATACGCGTTACACGGCGGTCGAGGAAATGACGATGGACTTCCGGGCGGACGATCCCCAGTTCTTTGACCCAACCACCGGACTGCTGCTTAACCCCAGCACAAAGGTGCGGAATGAAATCTTTGCCCGCGAGGCCACCAAGCTTTTTATCGACGCTGCGCAGGCGGCCCTGGACGCCTGCCCCGAACTGGATGCGCCGGACGTCACCCACCTCATCACCGTCTCCTGCACAGGCTTCTTCAACCCGGGTCCCGACTACAAAATAGTCCGGGCCCTCGGGCTGGACCCGGCCGTGCAGCGCTACCACCTTGGATTTATGGGCTGCTATGCAGCTTTCCCCGCCCTGCGGGCCGCAAAGTCCTTCTGCGAGGCCGATCCCGAAGCAGTTGTCCTGGTGGTCTGCGCGGAACTCTGTTCCCTGCACGTCCGTACGTCAAACGATCCGGACACCATCATGGGTTCGGCGCTGTTTGCCGACGGCGCGGCAGCCGCAGTCGTTACTGCCCGGGAGTTCCCTGAAGCGCCAGCGCTTTTGCAGCTGGATCACTTTGAAACCGTGCTGACCCCCGTCGGCGAGGAGTCCATGGCGTGGAACATCGGGGACCACGGTTTTGAAATGGTGCTGGGAAACTACGTACCGCACATTATCGATGACCATATTGTCGGCGCGCTCCAACCACTGTTGGCTCATGATCCCACGCTGCTGGGCCTCGCCTACAGCGGCATCCGCCATTGGGCCATCCATCCGGGCGGCCGGAGCATTTTGGACAAGGTCCAGTCAAGGCTGGAACTGACGGACCAGCAGCTTGTTCCTGCCCGTGAGACGCTGCGGAACTACGGAAACATGAGCAGTGCCACGGTCCTGTTTGTCCTGAGGTACATCCTGGAACAGCCGCCGGAGGATGGCGGCGAACGCATCTGTTCCATGGCTTTCGGGCCGGGCCTTACCGTTGAAACGGGCCTCTTCACCAAGCTTCGGCAGGCGCCCGAAGTTCAGCTGCAGGGCTCCCCGGCCAGCGGGCTGGCTCAGGGGCAGGCAGCTGCGGAATCACTGGCCTGAMTVYLRSLETAVPPTLLVQTEARDVFAAQPGLSRLGSRLLSTCFDSAAIDTRYTAVEEMTMDFRADDPQFFDPTTGLLLNPSTKVRNEIFAREATKLFIDAAQAALDACPELDAPDVTHLITVSCTGFFNPGPDYKIVRALGLDPAVQRYHLGFMGCYAAFPALRAAKSFCEADPEAVVLVVCAELCSLHVRTSNDPDTIMGSALFADGAAAAVVTAREFPEAPALLQLDHFETVLTPVGEESMAWNIGDHGFEMVLGNYVPHIIDDHIVGALQPLLAHDPTLLGLAYSGIRHWAIHPGGRSILDKVQSRLELTDQQLVPARETLRNYGNMSSATVLFVLRYILEQPPEDGGERICSMAFGPGLTVETGLFTKLRQAPEVQLQGSPASGLAQGQAAAESLANANANANANA
D1-29_02627450rhaR_2HTH-type transcriptional activator RhaRGTGACCAGCAAACCTGCCACGCCGCCGAACCTGCGCGACCTCGCCCTGCTGCGCCGCGTTCGGGACAGGATGGACCGGGAATACACGAAGCCGCTGGATGTGGAGGCCCTTGCCCGCGGGGTGAACATGTCCGCCGGGCACCTCAGCCGCCAGTTCCGTCTCGCCTACGGCGAGTCGCCTTATGCCTACCTGATGACCCGCCGCATCGAACGCGCCATGGCGCTGCTGCGTATCGGCGAGCTCAGCGTCACCGAAGTCTGCTTCGCCGTCGGGTGCTCGTCGCTGGGGACGTTCAGCACCCGCTTTACGGAGCTGGTGGGTGTGCCGCCCAGCGTCTATCGGCGCGAGAGCGCCCATGCAACCGCGGAAATCCCCTCCTGTGTGGCCAAACAGGTGACCAGACCGGTCAGGAATCGAGAAGCGCGGGCCCCGGAGCCGCAACTAGCATGAMTSKPATPPNLRDLALLRRVRDRMDREYTKPLDVEALARGVNMSAGHLSRQFRLAYGESPYAYLMTRRIERAMALLRIGELSVTEVCFAVGCSSLGTFSTRFTELVGVPPSVYRRESAHATAEIPSCVAKQVTRPVRNREARAPEPQLAPGPT0016790_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
D1-29_02628420hypothetical proteinATGACTGCCATGGACATCACCATTCACTCAAGCTTCCTTCCGCACAACGATCCCGAGGCCTCGCTGGCCTTCTACCGCGACACCCTTGGCTTTGAGGTCCGCAACGACGTCGGACACGGCACCATGCGATGGATCACGGTGGGCCCGGCCGGCCAGCCCGACACATCCATCGTTCTGCATCCGCCGGCCGTCGATCCCGGCATCACCGACGAGGAGCGCCGCACCATCACCGAGATGATGGCCAAGGGCACCTACGGCATCATCCTGTTGGCCACTCACGACCTCGACGGCGTCTTCTCCAAGGTGCAGGAAAGCGACGCTGAGGTTGTCCAGGAACCGACGTCCCAGCCGTACGGCGTTCGGGACTGCGCCTTCCGTGATCCAGCGGGAAGCCTGATCCGCATCCAGGAGCTGAACTGAMTAMDITIHSSFLPHNDPEASLAFYRDTLGFEVRNDVGHGTMRWITVGPAGQPDTSIVLHPPAVDPGITDEERRTITEMMAKGTYGIILLATHDLDGVFSKVQESDAEVVQEPTSQPYGVRDCAFRDPAGSLIRIQELNNANANANANA
D1-29_026292391uvrA_2UvrABC system protein AATGAGCACGGCCACGGGGACGGACACGCAATCGCCGGGACTTCACGTTGCAGACAGCCACGATCTGATCCGCGTGCAGGGGGCACGGGAAAACAACCTCAAGGATGTCAGCGTCGAGATCCCGAAGCGCCGGCTGACTGTGTTCACCGGCGTTTCCGGTTCGGGGAAGAGCTCGCTGGTATTTGCCACCATCGCTGCTGAGTCGCAGCGGATGATCAATGAAACCTACAGCGCCTTTGTGCAGGGGTTCATGCCGTCCCTGGCGCGTCCGGACGTGGACATGCTCGAGGGCCTCACGACGGCGATCATCGTCGACCAGGAGCGGATGGGCGCAAACCCCCGTTCCACCGTGGGAACTGCCACTGACGCGCACGCCATGCTCCGGATCCTGTTCAGCCGGCTCGGCAACCCGTACGTCGGGCCGCCCACAGCGTTCTCCTTTAACGTCCCGACGCGGAAGGCAAGCGGGGTGATGAGCACCGAGAAGAGTGGCCGGGTGGAGAAGAGCGTCGTCCAAAACGTCGTTTACCTTGGCGGCATGTGTCCGCGCTGCGAGGGCATGGGCTCGGTGTCCGACTTTGACCTCTCTGCGCTGTACGACGAGAGCAAGTCGCTCGCCGAGGGGGCGCTGACGGTGCCCGGCTACAGCATGGACGGCTGGTATGGCCGCATCTTCAGCGGGGCAGGCTTCAATATGGACAAGCCGATCGCAAAGTTCACCAAGAAGGAGATGCACGATCTCCTCTACAAGGAGCCAACGAAGATCAAGGTGGAGGGCATCAACCTCACCTACGAGGGGCTGATCCCGAAGATCCAGAAATCGATGCTTTCGAAGGACGTCGAGGCAATGCAGCCCCACATCCGGGCCTTCGTGGAACGCGCGATCACGTTTCAGACCTGCCCCGAATGCGACGGGACCCGGCTGAGCCCGGAGGCCCGCTCCTCGAAGATCCAGGGCAAGAACATCGCGGACCTGTGCGAGATGCAGATCAGCGACCTGGCTGGCTGGGTCCGCGAGCTGAAAGAGCCGTCGGTGGCGCCGCTGCTGAAAGGGCTGCGGCACCTGCTCGACTCGTTCGCCGAAATCGGGCTCGGCTACCTTTCACTTGACCGGCCGGCGGGCACGCTGTCCGGGGGAGAGGCCCAGCGGACCAAGATGATCCGGCACCTCGGGTCCTCCCTCACTGACGTCACCTATGTGTTCGACGAGCCCACCATCGGTCTGCATCCCCACGACATCGAGCGGATGAACCAGCTGCTGCTGCAGTTGCGCGATAAGGGCAACACCGTGCTCGTCGTAGAGCACAAGCCGGAAACAATCGCCATCGGTGATCACGTCGTCGACCTCGGTCCCGGGGCGGGCAGCGCCGGCGGTGAGGTGGTCTTCGAGGGCAGCGTCGAGGAACTCCGGCGCAGTGACACCATCACCGGGCGGCATCTTGACGACCGGGCTGCCCTCAAAAAGGCGGTGCGCACACCGAAGGGCGCGCTGGAGGTCCGCGGTGCGGGCACGCACAACCTGCAGAACGTGGACGTTGATGTGCCGCTGGGTGTGCTCTGCGTGGTGACCGGTGTTGCCGGCTCCGGGAAGAGCTCGCTGATCCACGGGTCGGTTGCCGGGCGCGAGGGCGTGGTGGTGGTGGACCAGGGCGCCATCAAGGGCTCACGCCGCAGCAACCCCGCGACCTATACCGGCCTGCTGGAACCGATCCGCAAGGCTTTCGCAAAAGCCAACGGCGTGAAGCCGGCTCTTTTCAGTTCCAACTCCGAGGGCGCCTGCCCCAACTGCAACGGCGCGGGGGTCATCTTCACGGAACTGGGGGTTATGGCTACTGTCGAGTCGACATGTGAGGTCTGCGAGGGCCGGCGGTTCCAGGCATCGGTCCTGGAATACACGATGGCCGGGCGGAACATCGCCGAGGTGCTGGCAATGTCCATGACCGAGGCGGAAAAGTTCTTCGGCGAAGGGGATGCCCGTACCCCCGCCGCCCATAAGATCCTGGACCGTATCGTGGATGTTGGGCTCGGGTATCTCACTCTCGGCCAGCCGCTGACCACGTTGTCCGGGGGAGAGCGGCAGCGTGTCAAGCTTGCCACCCAGATGGCTGAGAAGGGCGACGTCTACGTCCTCGATGAACCGACCACCGGGCTTCACCTTGCCGACGTCGAGAACCTGCTGGGCCTGCTCGACCGCCTGGTCGATTCCGGAAAGTCCGTCATTGTCATTGAGCATCACCAGGCCGTGATGGCGCACGCCGACTGGATTATCGACCTCGGCCCGGGAGCAGGCCACGACGGCGGCCGGATCGTTTTCGAGGGGACGCCAACGGATCTTGTGGCTAGCCGGCCAACACTCACCGGCGAGCACCTGGCGGCCTACGTCAGGAGTTGAMSTATGTDTQSPGLHVADSHDLIRVQGARENNLKDVSVEIPKRRLTVFTGVSGSGKSSLVFATIAAESQRMINETYSAFVQGFMPSLARPDVDMLEGLTTAIIVDQERMGANPRSTVGTATDAHAMLRILFSRLGNPYVGPPTAFSFNVPTRKASGVMSTEKSGRVEKSVVQNVVYLGGMCPRCEGMGSVSDFDLSALYDESKSLAEGALTVPGYSMDGWYGRIFSGAGFNMDKPIAKFTKKEMHDLLYKEPTKIKVEGINLTYEGLIPKIQKSMLSKDVEAMQPHIRAFVERAITFQTCPECDGTRLSPEARSSKIQGKNIADLCEMQISDLAGWVRELKEPSVAPLLKGLRHLLDSFAEIGLGYLSLDRPAGTLSGGEAQRTKMIRHLGSSLTDVTYVFDEPTIGLHPHDIERMNQLLLQLRDKGNTVLVVEHKPETIAIGDHVVDLGPGAGSAGGEVVFEGSVEELRRSDTITGRHLDDRAALKKAVRTPKGALEVRGAGTHNLQNVDVDVPLGVLCVVTGVAGSGKSSLIHGSVAGREGVVVVDQGAIKGSRRSNPATYTGLLEPIRKAFAKANGVKPALFSSNSEGACPNCNGAGVIFTELGVMATVESTCEVCEGRRFQASVLEYTMAGRNIAEVLAMSMTEAEKFFGEGDARTPAAHKILDRIVDVGLGYLTLGQPLTTLSGGERQRVKLATQMAEKGDVYVLDEPTTGLHLADVENLLGLLDRLVDSGKSVIVIEHHQAVMAHADWIIDLGPGAGHDGGRIVFEGTPTDLVASRPTLTGEHLAAYVRSNANANANANA
D1-29_026301518COG3940Extracellular exo-alpha-(1->5)-L-arabinofuranosidaseATGACGGCCCCATTTACCTCCACCGAAAGGATTGCCCCCATGAATGAGATCACTGACAGAATGCGCTTCGAGGCACTCATCGGCCGGCGGACCCTGCTATTGGGCGCCGCGGGTGCCGCTGCCCTCACCGCTGTCGGCCTCGCCGGCGGCCCGCTGGGTGTATCCACCGCGCAGGCGGCGGCGCTGACACTCACCAATCCGCTTGTTCAGCAGCGGGCGGATCCACACATCGCCCGTGGGTCAGACGGTACCTATTACCTCACCGCTTCCGTTCCAGCCTATGACCGGGTGGTACTCCGGGCATCCCAGACCCTGGCCGGGCTCGCTACCGCCGCAGAAAAGACAATCTGGCTGCGCCCGGCATCCGGAACCACAGGCGGCCACATTTGGGCACCCGAAATGCACCTGGTGGATGGGGTCTGGCACATCTACTTCGCGGCAGGTGACGCTGGAGACGTCTTCCATGTACGGCCCTACGTCCTGCGCGCCAACGGTCCCGATCCAATGACGGCGACGTGGAGCGTGCTGGGACGGATCACGACAGCTTGGGACACTTTCGCGCTCGATGCCACTACTTTTGTCCACAGCGGCACGCGTTATCTGGTGTGGGCCCAGGCGGAACCAGGCATCGACACCAACAGCAATCTCTACATCTCGGCCATGTCCGGGCCAGCCACCCTGACAGGACCGCAGGTCCGTATTGCTGTCCCAACCGCTGGCTGGGAGACCATCAAGTACAAGGTCAACGAGGGACCCTCCGTGATCCAGCGGAACGGCCGCGTGTTTATCTCGTTCTCGGCCAGCGCCACGGATGCGAGCTACTGCTTGGGGCTGCTCACCGCCTCGACAGGAGCGAATCTGCTTGACGCAGCATCATGGACGAAATCAAATGGTCCGGTTTTCCGCACCAATGACACCACTGGCCAGTACGGCCCGGGCCACAACTGCTTCACCACGGCGGAGGACGGCAGCGACGTGCTGATCTACCACGCCCGCCCCTACCGGGACGTCCGTGATCCCTTGACCGATCCGAACCGGCACGCACGTGCCCAGCCGCTGTACTGGCGCACGGACGGAACTCCCGATTTCGGGATCCCGGTACCGGACGGCGTACCGCCCATCCGCCTCAAGCCAGCGAACTTCCCCACACGCTACGTGCGGCACCAGGACTTTGCGGCCAGGATTGATGTGGATGTCACCCCGCTGGAAGATTCGCAGATACGTCTTGTTGCCGGGCCTGCCGGCAACGGGTCCGTGGCAATGGAATCGATCAACTGGCCCGGGTGGTTCCTGACCGAGTCCTCCGGCACGGTTGCCCTTGCACGGAACGACGGCACCACGGGGTTCGCGGCGCGGGCGTCGTTCCAGCGGCGGACGGGGCTCTCGGGCGCCGGAACGGTCTCCTTCGAATCGGTGGCGAAACCCGGGGCGTGGCTTCGCCACCGCAATTACGTGCTGTACGTGGAACCTGTGGCCGGCACGCTTGGCGCGGCCGACGCGTCCTTCACAGTCGTCTAGMTAPFTSTERIAPMNEITDRMRFEALIGRRTLLLGAAGAAALTAVGLAGGPLGVSTAQAAALTLTNPLVQQRADPHIARGSDGTYYLTASVPAYDRVVLRASQTLAGLATAAEKTIWLRPASGTTGGHIWAPEMHLVDGVWHIYFAAGDAGDVFHVRPYVLRANGPDPMTATWSVLGRITTAWDTFALDATTFVHSGTRYLVWAQAEPGIDTNSNLYISAMSGPATLTGPQVRIAVPTAGWETIKYKVNEGPSVIQRNGRVFISFSASATDASYCLGLLTASTGANLLDAASWTKSNGPVFRTNDTTGQYGPGHNCFTTAEDGSDVLIYHARPYRDVRDPLTDPNRHARAQPLYWRTDGTPDFGIPVPDGVPPIRLKPANFPTRYVRHQDFAARIDVDVTPLEDSQIRLVAGPAGNGSVAMESINWPGWFLTESSGTVALARNDGTTGFAARASFQRRTGLSGAGTVSFESVAKPGAWLRHRNYVLYVEPVAGTLGAADASFTVVPGPT0019091_418DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_026311890hypothetical proteinATGTTACGAGCCCGCCATCTTGCGCTATACGCGCTGGCGCTGGTGCTGCTGACCATTTCCGGTGTCCTCACAGTCCCGCCGCAGCAAGCGTCCGCCATCGGTGAAGCGCAATTCAGCAATCCGATCGTCGCTGACGGCGCAGACCCCACCATCGAGTTTTATCAAGGCAATTACTACATGGTGGCCACTACGTGGGACAACCACGTTGTGATGCGCAAGGCGCCCACTCTTGAAGGTCTCAAGACAGCCAAGCTCGTCACGGTGTACTCAGACAATACTCCGGGCCGCGACAACACTATGTGGGCCCCTGAACTCAAGCTCCTGAATGGGCCCAGCGGCCCGCGTTGGTACCTCATGTACACCATGGGCAGCAACGGGCTCCAGCAGATGCAGGTCATTGAAAGTGCTTCTACTGACCCGATGGGCCCTTACACGTACAAGGGCCGGCCCATCCCAACCAAAGAGTGGAACATTGACGGCTCCTACATGGAGCTAAACGGCGAGTTGTTCGTCACGTGGTCAATGTTCGCTCCTGACGGCTTGCAGAGCAACTACATTGCACGGATGTCAACGCCCTGGTCCACCACCGGTCCGCTGAACATCCTGTCCCAGCCCACCGCTGCCTGGGAGCGGACAGGCATGCCCGTGAACGAGGGCCCGGTCCCTCTGCAGAAAGACGGAAAAACCTGGGTTGTCTTCTCCGCAAGCTCATGCGCAACCGAGGACTACTCCTTGGGTACCTTGCGCTACACCGGCGGCGATCCCGTGCTCTCCGCATCCTGGAACAAGAGCTCAGGACCTGTGTTCTCCAAGGCAAACGGCGTCTTCGGGCCGGGCCACAACGACTTCTTCACCTCACCGGACGGCACACAGACCTGGAACCTGTACCACGGCAACGCCCGTGCTGACGGCGGATGTGGCCGCGAGCGTTCCGCCCGCGCCCAGCAGCTGACGTGGGATGCGGCCGGGGAACCAGTTTTCGGCCAGCCTGTGGCCACAGGAACCGCCCTGAGCGTGCCCTCCGGCGAACGCGGGCCCATCACGGCTGCCGTCGAAGGCGCTTCATTCGAGGTGGTCAACCGCAATAGCGGGCTCTGCTTGGGCGTGGCCGGCGGATCTACGGCAGACGGCGGAAACGTGGTCCAGGAGACGTGCGGCCCCGCTGGCGGAGCCACCACCTGGACCCTCGATTCCACTGCTGACGGGTACTACCGGTTGGTGAATGCTGCCACCAGGAAGGTGCTTGACTCCGCGAATTGCGGCACCACAGACGGAACTGATGCGCGGCAGTGGTCCTGGCTCGCCAACGCGTGCCAACAATGGCTGCCTACCGCAACGGCAGACGGATTCCTGACCCTCGGCAACCGCGCCAACGGCAAGGTGCTCGATGTTTCAAATTGCAGCACTGTGGCCGGCGGGGACGTCCGGCAGTGGCGTTCACTCGGCAACGCCTGCCAGCAGTGGTCCATTCGGCCCATAGGCCAGCGCGCTGTCCTCAGTGCGCACAGCGGAAAGTCCTTCGACATTCCCTTCTGTGCCACAACCACCGGGGCGGTCCTACAGCAGTGGCAGTACCTTGGCTCCAACTGCCAGACATATACGTTTTCAGCGGCCGCCGCCGGGGCAGTCCAAATCCGTCCCGGGTCCGCCCCCACCCTTTGCCTTGGCATCCGCGATGGATCCCCGGCAGATGGCGCCGCCGTCATCCAAGGGCCGTGCGACCAGACCGCGTCCTGGCGGTTGGTCCCCCTCGCAGATGGCACCACCCGCATTGTCTCGGCGCTCACCGGCAAGTCGCTCGACCTGGACGGCTGTCAAACCGCTGACGGTGCCAAGCTCCGCCAGTACAGCACCCTCCAGAACGACTGCCAGAAATTCCGGATCTCCTGAMLRARHLALYALALVLLTISGVLTVPPQQASAIGEAQFSNPIVADGADPTIEFYQGNYYMVATTWDNHVVMRKAPTLEGLKTAKLVTVYSDNTPGRDNTMWAPELKLLNGPSGPRWYLMYTMGSNGLQQMQVIESASTDPMGPYTYKGRPIPTKEWNIDGSYMELNGELFVTWSMFAPDGLQSNYIARMSTPWSTTGPLNILSQPTAAWERTGMPVNEGPVPLQKDGKTWVVFSASSCATEDYSLGTLRYTGGDPVLSASWNKSSGPVFSKANGVFGPGHNDFFTSPDGTQTWNLYHGNARADGGCGRERSARAQQLTWDAAGEPVFGQPVATGTALSVPSGERGPITAAVEGASFEVVNRNSGLCLGVAGGSTADGGNVVQETCGPAGGATTWTLDSTADGYYRLVNAATRKVLDSANCGTTDGTDARQWSWLANACQQWLPTATADGFLTLGNRANGKVLDVSNCSTVAGGDVRQWRSLGNACQQWSIRPIGQRAVLSAHSGKSFDIPFCATTTGAVLQQWQYLGSNCQTYTFSAAAAGAVQIRPGSAPTLCLGIRDGSPADGAAVIQGPCDQTASWRLVPLADGTTRIVSALTGKSLDLDGCQTADGAKLRQYSTLQNDCQKFRISPGPT0019091_269DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_026321272hypothetical proteinATGGGCTATTTCACCGAATCGCCACAGGGTCTGGGCAATGATTACGGCCTGCACCTGGCGGTCAGTTCTGACGGCCTGGAGTGGCAGCCCCTTAATCAGAACGCTGCGGTGGTCTATCCAACTGACGGCACCCGCGGTTTGCGGGATCCGTTCATTTTCCGCAAGCAGGACGGTACCTTCGTTGTGCTCGCTACCGACCTGAACGGACTTGATTTCACCCAACAGAACCAGTTCGTCCACATCTGGGATTCTGTCGACCTCCGCAGCTTCACGGGATACCGCCGTGTGAGGATGCACAGCCTCCCCACGCATTCCTGGGCCCCCGAAGCGTTTTGGGATCCAGCTCGCGGACAGTACGGCCTGGTCTACTCGGCACACGACGGAACACAGGACGTGATTCTCGTCAACTACACGTCGGATTTTCGCACGTTCTCCTCCCAACAGAAGTGGTTCGACGGCGGCGTCCCGGTCATCGATGCCACCTTGCACATGGACGGCTCCACGCCTTACCTCTACTACAAGCGGGACAACAAGCTCTACGGGGCGAAAGGAAATCTCGCTCCGCGCGGTTTTGAAGGCGGGACCTACACGCGAGGCTATGCAGGCCCCGGACTCACCGAAGCCCCTATCATCATTCGCTCGGCCACAAGCCGGACCTGGTACCTCTGGGGCGACGTGTACACACCGGTCAACGGAACGTTCATGGTGTGGTCGTCCCCAGACATCGCACAGGACCTGTGGACACCTCTCTCCCGCCGGCTGTACACGCAGCCGATCAATTCCAAGCACGCCACCATCCAGCCCATCTCGGCCGCCGAATACACCAGCCTCGTCGCCGCGTGGGGCCTTCCGCGTTGGAACCGCATAAAGTCGTACAACTTCCCTGACCGGTTCATCCGCCATCGTGATTCACTGGCACGCATCGACGCGTACCCTCTGGACCCGTTCACCGACTCCCAGTTTGTCCTCACTCCGGGGCTGGCCGACAGTTCCGCCGTATCCTTCCGCTCCGCCACTGACGCCGCCCTTTTTCTTCGCCACTCCGGATTTGGGCTGGTCCTGGCCCGCAACGACGGATCGTCACTGTTCGCCCGCGACGCCACCTTCACCAGACGTGCAGGGCTGGCAGATCCATCCTGGACCACGTTCGGATCTCTCAACTTTCCGGATCGTGTCATCCGGCACCGGAACTTCCAGCTGTACGTGGAGCCGGTTTCGGCGTCGTCATCCGTTGCAGAGCGCGAAGACGCTACTTTCCGCATAACTTCCTGAMGYFTESPQGLGNDYGLHLAVSSDGLEWQPLNQNAAVVYPTDGTRGLRDPFIFRKQDGTFVVLATDLNGLDFTQQNQFVHIWDSVDLRSFTGYRRVRMHSLPTHSWAPEAFWDPARGQYGLVYSAHDGTQDVILVNYTSDFRTFSSQQKWFDGGVPVIDATLHMDGSTPYLYYKRDNKLYGAKGNLAPRGFEGGTYTRGYAGPGLTEAPIIIRSATSRTWYLWGDVYTPVNGTFMVWSSPDIAQDLWTPLSRRLYTQPINSKHATIQPISAAEYTSLVAAWGLPRWNRIKSYNFPDRFIRHRDSLARIDAYPLDPFTDSQFVLTPGLADSSAVSFRSATDAALFLRHSGFGLVLARNDGSSLFARDATFTRRAGLADPSWTTFGSLNFPDRVIRHRNFQLYVEPVSASSSVAEREDATFRITSPGPT0019091_459DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019091-putative_arabinofuranosidase-NANANA
D1-29_02633645hypothetical proteinGTGGAGACGCCGAATCCGTTATGGGACGGGAGTTCTCGCACGTACTTCTACTCCCGTTGTTTTAACGCCGATAATCTACATTATGTAAAGTTGCAATGGTTGGTCGCATCAATATTCGCCCCAATCCCTCGGAGCCATCGGGATGGCTCACCCTCACCCCTCAGGCCACCACGGAGGGGTCATCGCGGGTATAGTCCGACCATGAACACACGGTGGTCAGGACCGGTCATTGTTGGATCAATATTGTCGTTGGTCGCATCGCTTGCTGCGTGTTCGGCCCCGTCTCCGAAACCTTCCCCGGGCTCGTCTTCGGCCCCCTACTTGCGCATCGTTACAGTCCCTGCACCGCAGAACAGCGCTATGGATGCGGCCTTTACGGGCACTTTAACAGTCGATGGCGACGGCTGTGTTCAGGCTCATTCAGGTGATGAATCTTCCGTCTACACTCTTGCCTGGCCGCAAGGCTATACAGTTCAAGGCGATTTGAAGGCGTTTGAAATCTTCGACGCGAACAAGAACGTCGTAGCCCGTTCAGGATCACCCTTTACGGTTGGCGGCGGACTTATCGACTCGCCACGTGAGAGTTGGACTGAACGAGACTGCTCCAAGGGCCACCTTTGGCTGGTTGCACCGCCCGATTTCTAGMETPNPLWDGSSRTYFYSRCFNADNLHYVKLQWLVASIFAPIPRSHRDGSPSPLRPPRRGHRGYSPTMNTRWSGPVIVGSILSLVASLAACSAPSPKPSPGSSSAPYLRIVTVPAPQNSAMDAAFTGTLTVDGDGCVQAHSGDESSVYTLAWPQGYTVQGDLKAFEIFDANKNVVARSGSPFTVGGGLIDSPRESWTERDCSKGHLWLVAPPDFNANANANANA
D1-29_02634135hypothetical proteinATGCCCTTTGCTCCGCAACGGACCGAACAGCGAATCCCTGCGGCGGGGATGCCGGTAGGGGAGACGGCAGTGACAGGCTCGTGGCCCTCTGCGGAGAACGAGTGCACCATCAACTACCGGTTTCTGAACCAGTAAMPFAPQRTEQRIPAAGMPVGETAVTGSWPSAENECTINYRFLNQNANANANANA
D1-29_02635660hypothetical proteinATGGATGATTCTCAAACAGTGACAACACAAACCTCGACGGTTGAGGAGTGGACGCGTGCGTTGGCGGAGTCCTCCGGTTCACCAGGCGGTGGGGCCGGGGCGGGAGTGATGCTAGCGGTAGCCGCGTCGTTGACGTCCATGGTTGCCGGGTACACGGAAGCTAAAGAGGAGCAGCGCAAGGAACTCGCGGATATTCATACGCGGGCGCACTCACTTCGAGAAGCCGCTCTGCGGTTGGCGGATGAGGACGCGTCGGCATCCCAGGCCTTTGGGGCCGCGTTTCGGCTGGATCCCGGGGCCGAACGCGAGGATGCAATACATCGGGCATCCGTGGACGCCGCCAAGGCATCCGCTGTACTTGGAGAGCGGGCAATGGATGCGATAGGAGATTTGGGGTGGCTTGCTTCCAACGGTAACCCGGCGCTTATTGCCGATGCTGTTGTCGCCTTCGGGGCCCTCAGGGCAGCGATAACAGGGGCGCGCACCAATGTGAGTTTCGATCTCGCGGCGCTCACGTCGGCGGGTTGCACACTCGAACAGGTTCGGGAACAGCACCCTGGCCTCTGGGCGACGGTTGAGCGGCTTAACGCCGCCCTTGAACGGATTGACGGATTGACTGCCAGTATCAATAACCGCGCCGCCCCAACCGACGCCGCCTGAMDDSQTVTTQTSTVEEWTRALAESSGSPGGGAGAGVMLAVAASLTSMVAGYTEAKEEQRKELADIHTRAHSLREAALRLADEDASASQAFGAAFRLDPGAEREDAIHRASVDAAKASAVLGERAMDAIGDLGWLASNGNPALIADAVVAFGALRAAITGARTNVSFDLAALTSAGCTLEQVREQHPGLWATVERLNAALERIDGLTASINNRAAPTDAANANANANANA
D1-29_026361110araR_1COG1609Arabinose metabolism transcriptional repressorTTGGCACGGAGCGTGACGGAGAGACGGCAGGCCATTCTCGAGATCGTCCAGAAGGAAGGCTCACAAGTCGTTCTGGAACTGGCCCAACGGCTAAAAATCTCAGCTGTGACGATCCGCCGGGACCTGGAGGAACTCGCTGCGCAGGGCCTGGTCCACCGGACCCATGGTTCAGTTGCCCCCGCTGCCGAACCGGCATCGACGGCATTGGACGGGCCAAAAACCATCGGTCTGGTAGTACCGCACAGCAACTACTACTTCGACGGGGTCATCGCCGGCGCCAAAGCCGCTGCAGCATCAGCAGGAGCAAGGCTGGTCCTTGGCGTCTCCGACTACGACAAGGCCACAGAAATGCACCAGGTCGCCCGACTCACGAACAAAGGCGTCGACGGGCTGCTCATTGCCCCCACCCCCGATTTCATCACCGGCGAACTCGACGCCGAGCAGCAGCAATGGCTAGTGTCCCTCTCCGTTCCAGTCGTCCTGGTCGAACGCCCGGTCGCTTCCACGGGTGTAGCGTCAATCCTGGACTCCGTCAGCTCCTCCCACTCTGCAGGAGCTGCCCTCGCAATCCGGCATCTTGCCGAACTGGGCCACCGCAAACTCGTCAGTGTCATGATCTCTGGCCCCAATACCCCGCAAGTACGGCAGGGATACCTATCCGCTGTGGAGTCGCTGGGCCTGGAATCCCTGGGAGTCATCGATGAAGGCGGGGCAGGTTCCGAGGACGCAGCCGAAGTCCTCCTGCAGTCCGTCCGCGACGGCGCCACGGGTATCTTCGTCCACAACGACCAGCTGGCTGTGCGCTGCATGATGTGGCTGGAAGACGCAGGCATCGACGTCCCCGGAGAGGTTTCCCTTGCCGGCTACGACGACGTCATCGCCGGCGTAGCCCACGTACCACTGACCGCCGTAGCGCCCTGGAAAAGCGTGGTCGGTCATCGGGCGGTCCAGCGGCTTCTCAGCCGCATCGCGGAAAGAGAACCAGCAGGAAATTTCGGCCGCCCAACCGAACACATGGCCACTGAACACCTCGAGTTTGTCCCGCGGCTGCATATACGTCAATCAACAACCGAGCCCTCATTTGAGACCAGCATCGCAAGCCGTGGATAGMARSVTERRQAILEIVQKEGSQVVLELAQRLKISAVTIRRDLEELAAQGLVHRTHGSVAPAAEPASTALDGPKTIGLVVPHSNYYFDGVIAGAKAAAASAGARLVLGVSDYDKATEMHQVARLTNKGVDGLLIAPTPDFITGELDAEQQQWLVSLSVPVVLVERPVASTGVASILDSVSSSHSAGAALAIRHLAELGHRKLVSVMISGPNTPQVRQGYLSAVESLGLESLGVIDEGGAGSEDAAEVLLQSVRDGATGIFVHNDQLAVRCMMWLEDAGIDVPGEVSLAGYDDVIAGVAHVPLTAVAPWKSVVGHRAVQRLLSRIAEREPAGNFGRPTEHMATEHLEFVPRLHIRQSTTEPSFETSIASRGNANANANANA
D1-29_02637432hypothetical proteinATGCACCACCTGCAGACCATGGACATCGACGACATCCAAATCTCCCCTTCGACTGTCACTGCCGGTCTAACAACGGCCACCACGGAGGCCGGCGACATCGGCCTGAACTGGACCGTTGCTGCCCCCGCAAAGACACCGGTAAGCTTTGCCATCCATCCAGGACCAGCCGGATCACCACTCACGGTCGACGCATCCACCCTGATCCGGACCGCCCTGGCCAGCCTCCTGCAGGCCACGGACGTGGAATGGCAACCTTCCAACGAGTACAAGCACGTTGTGGTCGCACGGTATGGCTCGGGCGCAGAAGTGGCCTGCACCAACGAAAGCAGGATCCTCTCCCCCGCCGCTGACACCATGACCACTGCAGTACGCATGGAAGAACATCAAGGCAAGGGTCGACGGCGGCATGGCCACCTTCGGCTCGTCGGCTGAMHHLQTMDIDDIQISPSTVTAGLTTATTEAGDIGLNWTVAAPAKTPVSFAIHPGPAGSPLTVDASTLIRTALASLLQATDVEWQPSNEYKHVVVARYGSGAEVACTNESRILSPAADTMTTAVRMEEHQGKGRRRHGHLRLVGNANANANANA
D1-29_026381314hypothetical proteinATGCCACGCAGTCGCAAACCAAGCATCGTCATCGCAGCGGGAATGCTCTCAGCAGCACTCCTCGCCGGCTGTTCGGGAACAGGAGCAGGAACAACCGCACCGCCTGCACCCACCCAGCAAGAGACGGTGGATATCACTTTCTCGTCATGGTTGAAGGGTTCAAAGCAGGTGGTTGACGCATTCAACGCCGCCCAGGACGAAGTCAACGTTACCTTCAACGAAGTAGCCAGTTCGAAGGACAACTACCCGCAGCTGACGAACCAGGTCAAGGCAGGAAACGCGCCGGACGTCATCACGGTGGAATATCCCCGGGTCGCGGAAATGGCCAGCCAGGGAGTTCTGAAGGACATCAGCAACGAAGCCGGTGACCTCGTCAAGGAGAATTTCTCCGAGTCCATCCAGTCCCTGGTCAACTTCGGCGGGTCCACCTGGTCGGTTCCGCTGGACGCAGGCGTCCTGCAGATGTATTACCGCGCAGACCTCTTCGAGCAGTACGGCATCACCGTGCCAAAGACCTGGGACGAGTACAAGGCCGCCGCCGAGAAGGTCGCGGCGGCCGATGGGAACGTCCGCATTGGGGCCAGCGCGGTGGGCGATCCCGCCATGTATGCCGCCCTCGCCTGGCAGAACGGCGCCAAGTGGGGAGGGCTCGACGGCGACTCGTGGAAGGTGGACATCGACACCGAGGAAACCAAGGAAGCGCTGAGGGTCCAGCAGGACCTTGTTGACGCCAAACTACTCTGGACCGAGGACGCCCCGGTGCTGCAGCAGAAGCAGGCAGCCGGCCAGCTCCTCTCCGTCATCAGCGGATCATGGTATGGCGCCGGGCTACAGTCCACTTATGCCGATCAAGCCGGCAAGTGGCGCGTCGCCCCGGTGCCGGCGCCGTCGTCAAAACCGGCCTCTGCGCTCTACGGCGGCTCAACCTTCGGCATCTCGGAGAACAGCACCAAGGCCGAAGCGGGCGTGAAGTTCATCAAGTGGATGACCACCAACCCTGAAGGCATCAAAGCACGCATCGCCGGCGGCACCTCCACAGTCTTCCCAGTGAACGAGGAAGCCCGCATGGCCGCCTCCGGTGCCTTCACGCCTGACTTCTTCGGCGGGCAGAACATCTACGACGTCGCCGCAGAGGGCCTGGCAGCAGTACCCGAAGGCTGGGTATGGGGACCGGGCACGGCCACCACGCTGGCCAAGCTCACCGACGAAAGCGCAAAGGTCAAGGCCGGTACCGCCAAGCTCACCGACATCTTTGCGCCGACCCAGGAAGCCACGGTTTCCGAGTTGAAGAACCGCGGAATCTCCGTCAAGTAAMPRSRKPSIVIAAGMLSAALLAGCSGTGAGTTAPPAPTQQETVDITFSSWLKGSKQVVDAFNAAQDEVNVTFNEVASSKDNYPQLTNQVKAGNAPDVITVEYPRVAEMASQGVLKDISNEAGDLVKENFSESIQSLVNFGGSTWSVPLDAGVLQMYYRADLFEQYGITVPKTWDEYKAAAEKVAAADGNVRIGASAVGDPAMYAALAWQNGAKWGGLDGDSWKVDIDTEETKEALRVQQDLVDAKLLWTEDAPVLQQKQAAGQLLSVISGSWYGAGLQSTYADQAGKWRVAPVPAPSSKPASALYGGSTFGISENSTKAEAGVKFIKWMTTNPEGIKARIAGGTSTVFPVNEEARMAASGAFTPDFFGGQNIYDVAAEGLAAVPEGWVWGPGTATTLAKLTDESAKVKAGTAKLTDIFAPTQEATVSELKNRGISVKPGPT0016545_6602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_02639927hypothetical proteinATGACAGGCGCCACCACAACGGCCCGCTCCACCGTCATACGCCGTTCACGCCGCCGGTCAGGCAGACACGCTTTCCTGTTCCTGGCGCCGTTTTTCGTGCTGTTCCTGGCGTTCACCATCGCCCCCATTGGATACTCCGGGTTCCTGAGCCTCTTCACGGAAAAGTCCAGCGGACTGGGCCTGGGCGGGACAGCACGGGTTTTCAACGGCCTGGCCAACTACGTCCGCGCCTTCCAGGACCAGGCGTTCCTTGCAGGCTTCTTGAACATCGCCGTTTACTGCCTCTTCTACATCCCGGTCATGATCGGCCTGTCCCTGGTGGTGGCGCTTCTGCTGGACTCTGCAGCCGCACGGGCAAAGTCCTTTTTCCGCCTGGCGTTCTACATGCCGAACATCGTCCCCGGCCTGATTGCCGCGGTCATCTGGGTCTACCTCTACACTCCCGGCGTGAGCCCACTGGTGGACGTCTACGAAAGCACCGGCGCCGGTTGGGACATGGGCAGCCACCTGGCCGCCCTGCTCTCCTTGTCCAACATCACCATCTGGCTGCACACCGGCTATAACGTCATCCTCTTCTACGCCGCCCTGCAGGCCGTTCCGCAGGAGGTCCTGGAGGCCGCCACCGTTGACGGCGCAGGACCCATCCGCACCGCCTACGCCATCAAGGCCCGCATGATCATGGGCGCCGTGAGCGTCGCGACCCTGTTCACCGTCGTCGGCGCCATGCAGCTTTTCGCCGAACCGCTGCTCCTGAAGAGCCGCGCAACGTCCATCGACAGCAATTGGACCCCGAACATGTTCATTTACCAAACGGCTTTCGACAAACACGACTTCGGCTATGCGGCAGCAACAGCACTGCTCTTCGCCGTCTTCATCGGAGCCTTCTCCTGGGGCGTCACCAAATTCGGATCAAAGGTGGAATCATGAMTGATTTARSTVIRRSRRRSGRHAFLFLAPFFVLFLAFTIAPIGYSGFLSLFTEKSSGLGLGGTARVFNGLANYVRAFQDQAFLAGFLNIAVYCLFYIPVMIGLSLVVALLLDSAAARAKSFFRLAFYMPNIVPGLIAAVIWVYLYTPGVSPLVDVYESTGAGWDMGSHLAALLSLSNITIWLHTGYNVILFYAALQAVPQEVLEAATVDGAGPIRTAYAIKARMIMGAVSVATLFTVVGAMQLFAEPLLLKSRATSIDSNWTPNMFIYQTAFDKHDFGYAAATALLFAVFIGAFSWGVTKFGSKVESPGPT0016535_9141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_02640924araQ_12COG0395L-arabinose transport system permease protein AraQATGAGCCCGCTGACCACACAACCTGCAGTAAGCGGACCCCCCATCCCCACTCCCCTGCCCCCAGCAGCCCCAAAACGGCGCCAGGCCAAGAGCGCCTGGTCCTCAAAGTTCGCAGTGAACATCGTGCTGGGCCTGTTCTGCCTCTACACACTGTTGCCGCTGACCTGGCTCATTGTCGCCTCGACGAAGAACACCTCAGACCTCTACGGCACAGCCGGATTCTCCTTCGCCGAGTTCAACCTCATCGAAAACCTCATCCAGCTGTTCACTTGGGAAAACGGAACGTTCCTGCGCTGGATGGCCAACACCGCCGCCTACGCCGGCCTCGGTGCCTGTGCCTCCGTGGCCGTATCCTTCCTTGCCGGCCACGCCTTCGACAAGTTCGACTTTCCCGGGAAGGAACGCTGGTTCGGCTTCGTCCTGGTCGGTGTCCTCGTACCCGCAGCAGTTACCACCATGCCGCTCTACCTGCTCGCCTCCAACCTCGGCCTGGTCAACAACTTTTGGGGCGTCTTCCTGCCCCAGGTCGCCAGTCCCTTCGGCGTCTACCTGGCCCGCATGTTCAGCGCCAGTTATGTGCCGAAGGAAATCATCGAGGCCGCCCGCCTGGACGGCGCCGGTGAATTCCGGGCCTTCCTGACCATTGCTGCGCCCCTCATGAAGCCCGGAATCGTCACCCTGTTCCTCATGACTTTCAGCGCCATCTGGAACAACTTCTTCCTCCCGCTGGTCATGCTTAGCGACACGAATCTGTTCCCGGCAGCGCTGGGCATCTACTCCTGGCACGGCAGGACGCTTGCCGACCCCGAGTACGCCCAGCTCGTCGTTGCCGGTTCTCTCGTCACCATCATCCCGGTCATCATCCTCTTCATGTCCCTGCAGAGGTTCTGGAAGGCCGGCATCGGGTCAGGAGCCCTGAAATAGMSPLTTQPAVSGPPIPTPLPPAAPKRRQAKSAWSSKFAVNIVLGLFCLYTLLPLTWLIVASTKNTSDLYGTAGFSFAEFNLIENLIQLFTWENGTFLRWMANTAAYAGLGACASVAVSFLAGHAFDKFDFPGKERWFGFVLVGVLVPAAVTTMPLYLLASNLGLVNNFWGVFLPQVASPFGVYLARMFSASYVPKEIIEAARLDGAGEFRAFLTIAAPLMKPGIVTLFLMTFSAIWNNFFLPLVMLSDTNLFPAALGIYSWHGRTLADPEYAQLVVAGSLVTIIPVIILFMSLQRFWKAGIGSGALKPGPT0016540_1337DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02641963Formate dehydrogenase, mitochondrialATGGAAAACGACCTTCCGGAAAGACTCTTCGCGCCGGCGGTGTTCCAGGACCTCAAAACCCTTGTGGATCTCCAACCGGCATTGCTCACCAAAGCCAACGCGGAGGATTACCCCCTGCAGGACATCGAACTCATCATTGGATGCTGGGGCTGCCCCCAGCTCGGTGAGGAGATCCTGTACCGGATGCCGCGACTCAAAGCCGTCATCTACACAGCCGGTTCGGTCAAGGAATTCGCCACGGACGAACTGTTCAAGCGCGGGATCGCCGTCACCTCGGGTGCGGTTACCAACGCCCTGCCGGTGGCCGAATACACGCTGGCGATGATCCTCCTCTCCGGCAAGCGTGTCCTGGAACTGGCCCGCGGCTACATGCACACCCGCAAATACCGTCCCTTTGAGGTTGAGCCCGTGCGCTGGGGCAACCACGGCCTCAAGGTCGGCATCGTCGGCGCTTCCCGCATCGGCCGGAGGGTCATTGACCTTCTCGCGCCCTTTGACATCGACGTCGTCTTCTACGACCCCTTCGTGCAGCACGGCATCCTCGACGCCCGCCCTGCCAGCTTGGAACACTTGCTGGAAACCTGCGACGTCGTCAGCCTCCACGCCCCGGAAGTCCCCGAAACCTTCCACATAATCGACAAAGACGCGCTATCCCTGATGCGGGACGGCGCCACGCTGATCAACACTGCCCGGGGATCACTGGTGGACACCGCGGCACTGACAGCGGAACTCGAGTCCGGGCGCCTGCACGCCGTCATCGACGTCACGGACCCGGACCCGCTGCCGGCGGAATCGCCCCTTTTCGATGCCCCAAACCTCGTGCTCACCCCGCACATCGCCGGCTCCCAAGGCAATGAACTCTACCGGCTCGGGGAAGCCGCATACCGGGAAGTCACACGGTTCGTCACCGGCAAGCCGCTCCTGAACCAGGTCAAAGCGGAAGTCCTCTCCCACACCGCCTAGMENDLPERLFAPAVFQDLKTLVDLQPALLTKANAEDYPLQDIELIIGCWGCPQLGEEILYRMPRLKAVIYTAGSVKEFATDELFKRGIAVTSGAVTNALPVAEYTLAMILLSGKRVLELARGYMHTRKYRPFEVEPVRWGNHGLKVGIVGASRIGRRVIDLLAPFDIDVVFYDPFVQHGILDARPASLEHLLETCDVVSLHAPEVPETFHIIDKDALSLMRDGATLINTARGSLVDTAALTAELESGRLHAVIDVTDPDPLPAESPLFDAPNLVLTPHIAGSQGNELYRLGEAAYREVTRFVTGKPLLNQVKAEVLSHTANANANANANA
D1-29_026421797bga_1Beta-galactosidaseTTGCCCGACCCCATCCTGAGCTACCAGAACTCCCAACTCTTCCGGTCCAACCAACCCCACCGTATCCTCGCCGGAGCCATCCACTATTTCCGCGTCCATCCCGATCAGTGGCGGGACCGGCTCCTCAAGCTCCGGGCGATGGGGGCCAACACCGTTGACACCTACGTCGCGTGGAACTTCCACCAGCGCCGGCAGGAAGACGAACCCGATTTCAGCGGCTGGCGTGACCTGGGGGCCTTTATCGATACCGCAGCCGGCATCGGCCTGGATGTCATCGTCCGTCCCGGGCCCTTCATTTGTGCCGAATGGGACAACGGCGGGCTCCCGGCCTGGCTGACCGGGCAGCCAGGAATCGGCGTCCGGTCCATGGACCCGGTGTTCACGGCCGCCGTCGAAACGTGGTTCGACCAACTCTTGCCCGTCATCGTGCCGAGGCAGGCCGCCCATGGCGGTCCCGTCGTCGCCGTTCAGATCGAGAACGAATACGGCAGCTACGGCGACGATAAGGAATACCTGCAATGGAACAGGCAGGCGCTTGGGCAGCGCGGCATCACCGAACTGCTGTTTACTGCCGACGGCGGGACGGACTACTTCCTGGACGGCGGCGCCCTGGACGGCACCTGGGCGGCCGCCACCCTGGGCAGCCGCGGCGACGAAGCGATAGAGACCTGGCAACGCCGCCGCCCCGGGGAACCCTTCTTCAACGTGGAATTCTGGGGAGGCTGGTTCGACCATTGGGGCGAAGAGAACCATCACGTCCGCGACATCACCGAAACCTGCACCGAAGTGCGGAAGATTCTGGACCTCGACGGCTCAATCTGCCTCTACATGGCGCACGGCGGCACCAACTTTGGCCTGTTTTCCGGCGCGAACCATGACGGCAGCAAACTGCAGCCAACCACCACCAGCTACGACTCGGACGCCCCCATCGCCGAGAACGGTTCCCTCACGGAGAAATTCCACGCGCTGCGGGCCGAATTCTTCCGCGCCCAGGGCATCACCGATCCTCCCCCGCTCCCGCCCGCACTCCTGGAACCGGCACCGGTACTTCCGGCGCAGTCCCTGCCCGTCGCCGCGGGCAAACCCCTTCTCCCGCTCCTGCGCGAAGCCGCCCGTCCCGTCAGCAGCGTCCTTCCCCTGACCTTTGAACAGCTGGGGCTGGACTCCGGAATGGTTCTGTACTCCTCCCACCCCGTCCTCCCGGGAAGGCCGGACGAACCAACGGAAACCCCGCTACGGATCCTGGGCCTCGCAGACCGCGCCTACATCTGGGTGGACGGCAGCTTCGCCGGAATCCTCGATGACCACAACGCCGCCGACGGGCTCATTCTCACAGGGACAGGAACCCCGGTGCAGTTGGAAATCCTGGTCGAGAACAGGGGCAGGATCAACTACGGGCCACTGATCGGCCAAGGCAAGGGAATCCTGCACGGGGTACTCGTCAATCAACGGCGCACCTTCAACTGGAACCAAACGCCCATTCCGCTGGCCGGGTGGGCAGCAGAGGAACTCGAACCCCTCCTCTCGGCAACCCTCGATATCGACGCACCTGCAGATACCTACCTCGCATTCCCTGGCTTCGGGCAAGGCTTTGTCTGGGTCAACGGATTCCTCCTGGGCCGCTACCAGGAGGCCGGGCCGCAGGTCACCCTCTACGTCCCCGCACCCCTCCTGCACGCAGGAACCAACCACATCCACATCCTGGACCTGGTCAAGCACGGCACGCAGGTTGAGCTTCGTCCCGAGCCTGAACTGGGTACCCCCAGTACGGGGAAAATCCTCGCCGCGGAACTGTAGMPDPILSYQNSQLFRSNQPHRILAGAIHYFRVHPDQWRDRLLKLRAMGANTVDTYVAWNFHQRRQEDEPDFSGWRDLGAFIDTAAGIGLDVIVRPGPFICAEWDNGGLPAWLTGQPGIGVRSMDPVFTAAVETWFDQLLPVIVPRQAAHGGPVVAVQIENEYGSYGDDKEYLQWNRQALGQRGITELLFTADGGTDYFLDGGALDGTWAAATLGSRGDEAIETWQRRRPGEPFFNVEFWGGWFDHWGEENHHVRDITETCTEVRKILDLDGSICLYMAHGGTNFGLFSGANHDGSKLQPTTTSYDSDAPIAENGSLTEKFHALRAEFFRAQGITDPPPLPPALLEPAPVLPAQSLPVAAGKPLLPLLREAARPVSSVLPLTFEQLGLDSGMVLYSSHPVLPGRPDEPTETPLRILGLADRAYIWVDGSFAGILDDHNAADGLILTGTGTPVQLEILVENRGRINYGPLIGQGKGILHGVLVNQRRTFNWNQTPIPLAGWAAEELEPLLSATLDIDAPADTYLAFPGFGQGFVWVNGFLLGRYQEAGPQVTLYVPAPLLHAGTNHIHILDLVKHGTQVELRPEPELGTPSTGKILAAELPGPT0017815_2173DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_026431062glkA_3GlucokinaseATGAGCACAGCAACAACACCATGGAACAGCCATGCGCCTTCACGGCAGGTGGCCCTTGCCCTGGACATCGGCGGAACCACGCTCAAGGGCGCGGCCGTCGATACCACCGGCCGCACCCTCATCACGCAAACCATCCCCACGGGCCGCCCTGGTAAAGGTGTCATGCACCGGGCACTGGCGATCCTCAAGGCACTGAAGGCCGAATCACTCCAACGGGGGCTGCATCCCGTTGGCATCGGCGTCGGGACTCCTGGACTGGTGAACTCCGGCACCGGCATGGTCGAATATGCCTCATCCCTGGGCTGGACCACCATGCCCGTCGCGGAGGTGCTCTCCGCGGAATTCGGTCTTCCCGTTCTCATCAGCCACGACGCGCGCGCCGCCGGGCTGGCAGAAGCCCGCCTCCTGCCACAGGCTCCAGGCCAAGATTCTGTCTTTGTCGCCATCGGCACCGGAGTCGGGGCAGCAGTCATCACCGACGGCACCGTCGTCAAAGGAGCGACCCACTCCGCCGGAGAACTAGGCCATATCCCCGTCATCCCCGGCGGCGAAACATGCACCTGCAGCCAGCGCGGCTGCCTCGAAGCCTACTTTTCCGGCGCGGGCCTCGTCCGCAGATACCGCGGCCGTGGAGGAGATCCTGGCATGACCACGGCAGATATCGCCTCCGGCCGGGCGGGCGAGACCGGTGCAAGCATCTGGGACGAAGGAATTAAGGCTCTTGCCCTGGCGCTGGCCACCGTCACCCTGCTCACCGACCCCAAAACGATCATCATCGGCGGCGGACTGTCCGAAGCCGGGGACACACTCCTGCACCCACTCGGGCAGAACATGGTATCGCTCCTGGGCTGGCGCCGCCCGCCGGAACTGCGGCGCTCACTGCTGGGACCACGCGCGGGACAAATCGGGGCCGCCATCCTTGGCTTCCGGGCGGCTGGTTCCCCGAACGCAGGCACCAGCTGGCGCCCTGAAGACGTCACCGCCGAAGCACCACGGCCGCTGGAAGAGCGCACAAGCCCGCCGCTGACACACAACCTCAGGAACCACCAAGGACACCCATGAMSTATTPWNSHAPSRQVALALDIGGTTLKGAAVDTTGRTLITQTIPTGRPGKGVMHRALAILKALKAESLQRGLHPVGIGVGTPGLVNSGTGMVEYASSLGWTTMPVAEVLSAEFGLPVLISHDARAAGLAEARLLPQAPGQDSVFVAIGTGVGAAVITDGTVVKGATHSAGELGHIPVIPGGETCTCSQRGCLEAYFSGAGLVRRYRGRGGDPGMTTADIASGRAGETGASIWDEGIKALALALATVTLLTDPKTIIIGGGLSEAGDTLLHPLGQNMVSLLGWRRPPELRRSLLGPRAGQIGAAILGFRAAGSPNAGTSWRPEDVTAEAPRPLEERTSPPLTHNLRNHQGHPNANANANANA
D1-29_02644771nagB_1COG0363Glucosamine-6-phosphate deaminaseATGAAAATCGCCATCGTTAAGACCACCGCCGACATCGGCGCCTACGCCGCAGACATCATCGAGAACCGCATCAGCAGCGGCCGCCTCAAAGTCCTCGGCGTCGCGACCGGATCCTCTCCGCTGCCCGTCTATCAGGAACTGGCCGCCCGGCGCCCGGAAGGCCTGTCGGCTTTGTCCGCCTTCGCACTGGACGAGTACGTGGGCCTCAGCCCCAGCCACCCCGAGAGCTACCACGCAGTCATCGACCGCGAAGTGACAAAGCCCCTCGGACTGGACCCGGAACGAGTCCACATGCCGGATGGGACTGCCACCGACCTGGAAGGGGCCTGCGCCGGCTATGAGGAACTCATCACTGCCTCCGGCGGAATCGACCTCCAACTACTGGGAATCGGTTCCACCGGCCACATCGGCTTCAACGAGCCAACCTCATCCCTGAGCTCACGCACCAGGATAAAAACCCTCACCCCTCAGACGCGCAAAGACAATGCCCGATTCTTCACCAGTCCGGACGAAGTCCCAACGCACTGCCTCACCCAAGGCCTCGGCACCATTATGGACGCGAAGGAAGTCGTACTGATCGCCCAGGGCCGCTCGAAGGCAAAGGCCATCGCCGGCCTCATTGAAGGCCCAGTCAGCGCCATGTGTCCCGGCTCGGTGCTGCAAATGCACCCCCAGGCCACGGTAATCCTGGATGAAGAGGCCTCCGCAGAACTTCAAGGCGCCGCCTACTACAAATACGTGGCAGAGAACCTGCCCCTCTGGCAGGGGTAAMKIAIVKTTADIGAYAADIIENRISSGRLKVLGVATGSSPLPVYQELAARRPEGLSALSAFALDEYVGLSPSHPESYHAVIDREVTKPLGLDPERVHMPDGTATDLEGACAGYEELITASGGIDLQLLGIGSTGHIGFNEPTSSLSSRTRIKTLTPQTRKDNARFFTSPDEVPTHCLTQGLGTIMDAKEVVLIAQGRSKAKAIAGLIEGPVSAMCPGSVLQMHPQATVILDEEASAELQGAAYYKYVAENLPLWQGPGPT0018865_1743DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564NANA
D1-29_026451137agaACOG1820N-acetylgalactosamine-6-phosphate deacetylaseGTGCACAGCGCGCGCCTCCTCGACGGCAACGGCACGGTAGAAAACGGATGGGTGGCAATCCAAGACCGCACGATTATCGCTACCGGCTCGGAAACCGGATGGCACACCTATGCCGCCCCGGACGTCGTCGACGGCAGCGGCGGGATCCTCGTACCCGGATTCATCGACCTGCACTGTCACGGAGCAGGCGGAGCAGCTTTTGACGCCGAACCCGAAGACATCCTGACGGCACTGGCGGTCCACAGGGCACACGGCACCACCCGCTCCGTTCTCAGCCTTGTCAGCGCCCCTCTCGATGAGCTCTGCCGCAGCCTGAACACCATTGCAGACCTGGCTGACACCAACCCCCTGATCCTCGGATCACACCTCGAAGGACCCTTCCTCGCCACCGCCCGGTGCGGTGCCCACAACCCGGATCACCTGATACATCCCACCCCCGCAGCGGTAGACCGGCTCCTCGACGCAGCCCGTGGGACCCTCCGCCAAATCACCATCGCCCCGGAACTGCCCGGAGCCCTTGACGCGATCGAAGAATTCGTCGCCGCAGGAGTCAGCGTGGCAGTAGGCCACACCGACGCGGACATGGCACTCACCAAAAAGGCCTTCGCCCGTGGCGCTACCCTGCTCACCCACGCCTTCAACGCGATGGCCGGAATCCATCACCGTGCACCCGGCCCTGTCGTAGCCGCATTCGGCGACCCGGCCGCATCCCTGGAAATCATTCTGGACGGCGTCCACCTAGACCCCGCCGTAGCAAAAATGGCCTTCGACGCGGCCCCGGGCCGAATCGCCCTGGTCACCGACGCCATGGCCGCAACAGGGGCGAAAGACGGGCACTACCGCCTGGGCAGCGCAGACGTCACCGTCGAGGCAGGGCGCGCCGTCCTGGCAGGAACCGGCACAATCGCCGGATCCACACTCACCCAGGACACCGCATTCAGGAATGCGGTCACCCTGCTCAAGCTCCCACTCACAGCAGCTGTGCAGGCATTGACGGCCACACCCGCCCACCTGGTTGGCCGCGAAGACCTCGGAAGCCTCAGTGTTGGGAAAGCAGCTGACTTTGTCCTGCTCGATCAGGGATACAACATACTCGTTGTATGGGCGGACGGGGAGAATCAAACACGCTCCACCTGAMHSARLLDGNGTVENGWVAIQDRTIIATGSETGWHTYAAPDVVDGSGGILVPGFIDLHCHGAGGAAFDAEPEDILTALAVHRAHGTTRSVLSLVSAPLDELCRSLNTIADLADTNPLILGSHLEGPFLATARCGAHNPDHLIHPTPAAVDRLLDAARGTLRQITIAPELPGALDAIEEFVAAGVSVAVGHTDADMALTKKAFARGATLLTHAFNAMAGIHHRAPGPVVAAFGDPAASLEIILDGVHLDPAVAKMAFDAAPGRIALVTDAMAATGAKDGHYRLGSADVTVEAGRAVLAGTGTIAGSTLTQDTAFRNAVTLLKLPLTAAVQALTATPAHLVGREDLGSLSVGKAADFVLLDQGYNILVVWADGENQTRSTPGPT0018860_995DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443NANA
D1-29_02646792hypothetical proteinATGCAACCTCCACGGGCGGTGTTTGCGGCATTCGGGGCTTCGGGGCCGCCGGAGCGGTTGGCCGGGGGCCGGGGACTCACCTGGCGGGCAGGGCACGTCGTGGTTCGCCCCACGGAGGATACCGAAGAGGCTGCCTGGAAGTCAGAGGTGCTGGCAGAGCTTGACGGTGCCGAATTGTTTACTGTTCCGCGCCCCATCCGCGACGATCGAGGCAAGTGGGTCCGCGATGGCTGGCAAGCCGCCGAGTGGATCCCTGGCGCCGCGGACGAGACCCGGGTTTCCGACGTCGTGCATGCAGGTGAGGTGTTTCACCGCGCCATTGCGGGGCTCCCGCGGCCAGCCTTCATCATGGCGTCGAACGATCCGTGGAGCAACGCGGACCGCATTGCCTGGGGTGAGGCGGCTTTGCCTGCCGATCAGCTTCTGGAGCTGTTGGTGGAGGAGTACCAGCCGGTGGGAACGCCGTCGCAGGTCATTCACGGTGATCTTCTGGGCAACGTCCTCTTTGCACAGGGGCGCCCGCCGGCGTTGATCGACTGGGCACCCTATTGGCGTCCGGCAGGACTGGGGGCGGCGATTGCAGTGGCCGATGCGGCGTGTTGGCATGGATACTCACTGGACGATTTGGCCGATCACCATGGTATTCCGGAATGGCGCCAGCTGCTGCTGAGGGCGTTGGTCTTCCGGATGACAACGCTTCACCTGCTCGGGTACTGGGATGACGTGCAGGCAGTACGGCATGGGCCGGTAGCAGCGGCTGTCATCGCCCTCTCTGATCCATGTGATTCGTGAMQPPRAVFAAFGASGPPERLAGGRGLTWRAGHVVVRPTEDTEEAAWKSEVLAELDGAELFTVPRPIRDDRGKWVRDGWQAAEWIPGAADETRVSDVVHAGEVFHRAIAGLPRPAFIMASNDPWSNADRIAWGEAALPADQLLELLVEEYQPVGTPSQVIHGDLLGNVLFAQGRPPALIDWAPYWRPAGLGAAIAVADAACWHGYSLDDLADHHGIPEWRQLLLRALVFRMTTLHLLGYWDDVQAVRHGPVAAAVIALSDPCDSNANANANANA
D1-29_02647852hypothetical proteinATGAGTGAAAAGCCGCTTGCGGTCGAATGGGAAGCTGCGCGTGCGAGCAACCGCGACAACTGGGAAGACCGTGTTCCGTTGCACGAAAAGGCGTATGGGATCAGGGCCTTGGACGATCCGGACTACTTGACCGAAATCGTCCGCACGGACTTGGCCGCGCTGCAGCCTTTCCTTGCAGGGGGCACGGTGGCGGGTCTGGATGTCTGCCACCTTCAGTGCCATATCGGGACGGATACGCTCTCCCTGGCCCGGGCCGGCGCCCAGGTCACGGGCGTCGATTTCTCCCCTGCCGCGCTGGAATCTGCCGCCAACCTGGCACGGCATCTGGGACTCGAATCAACGTGGATCGAGACGGACGTCCTCGAGGCCCGTGCCGCCGTCGAGGGCGACTTTGACCTCGTGTACACCAGTATCGGAACCATTACCTGGCTGCCTGACCTGGACCGGTGGGCAGCCCAGGTGTCGGGTCTGCTACGGGCAGGGGGGTTGTTTTACATCCGGGACGGGCATCCTGCCCTCTACGCCCTTGACGAGCACGCCGACGGACTGCAGTTGAGGTATCCATACTTTGGCAACGGCAGGGCACAGGTATGGGATGACGAGTCCACGTATGCCGGCGATGGAAAAGTTGCGCACTCCCGGACGTATCAGTGGGCCCACCCCCTGTCCGACATCCTCAACTCGCTCATCAGGGCAGGCTTGCAAATTCTCCGTTTCGACGAGGACAACACCATTCCATGGAAGTTCAGCCGGCGCATGCTGGAGGTGCCAGGTGGCTACGCGTGGCCGCTGCCCGAGCGGGACCTTGTGCCGTGCACCTACACGATCGTCGCTCGGAAAGCAGCCGAATAGMSEKPLAVEWEAARASNRDNWEDRVPLHEKAYGIRALDDPDYLTEIVRTDLAALQPFLAGGTVAGLDVCHLQCHIGTDTLSLARAGAQVTGVDFSPAALESAANLARHLGLESTWIETDVLEARAAVEGDFDLVYTSIGTITWLPDLDRWAAQVSGLLRAGGLFYIRDGHPALYALDEHADGLQLRYPYFGNGRAQVWDDESTYAGDGKVAHSRTYQWAHPLSDILNSLIRAGLQILRFDEDNTIPWKFSRRMLEVPGGYAWPLPERDLVPCTYTIVARKAAENANANANANA
D1-29_02648867putative proteinATGAATGAGCAGACAGATGCCATCGAAGCGGACCGGGCGCTGAAGCAAAAGCACCGGGCCATGTGGGCCCAGGGCGACTACCCAGCCCTCGCCAGCGAACTGATTCCGGACCTCGGGGCAATCCTCGTGGAGGCCTGCGGGGTCAAGCCCCGGCAGCGAGTCCTTGACGTGGCCGCCGGCGCCGGCAACGCGGCGATTCCCGCAGCCATGATGGGGGCGGAGGTGGTGGCCAGCGACCTCACCCCCGAACTCTTCGACGCCGGACGCCGGCAGGCAGCGGACCGGGGGGCTGAACTGGAATGGATGGAAGGCGACGCCGAGTCCCTGCCGTTTCCTGATGACGAATTCGATGTGGTGCTGTCCTGCCTGGGTGTGATGTTCGCACCGCACCACCAGTCGGCCGCGGATGAGTTGGTGCGGGTGTGCAAACCCGGCGGCACCATTGGGCTGCTGAGCTGGACGCCCGACGGGTTTATCGGCAGGATGTTCGCTGCCATGAAGCCGTTTGCTCCCCCGCCCCCGCCTGGTGCCCAGCCACCGCCACTCTGGGGCAGTGAAGCCCATGTGCGGGAGCTCCTGGGTGACAGGATTACCGATGTCCAGGCGCGGACGCAGACAGTCTCAATCACCAGCTTCCATAAGCCGGACGACTTTCTGCATTACTTCAAGTCCCATTACGGCCCCACCATCTCCGTCTACAAGTTCCTCGCCGGCGATGAGGAAAAGATCCAGGCGCTGGACAAGGCGCTCACGGAACTGGCCGACACGTTCAGCGATGCCCACGGTGATGCGCCATCGCAAATGGACTGGGAATACTTGCTGCTGACGGCCAGGAAGCAGGCACGGAAACCCGCCACTCCCGCGTAGMNEQTDAIEADRALKQKHRAMWAQGDYPALASELIPDLGAILVEACGVKPRQRVLDVAAGAGNAAIPAAMMGAEVVASDLTPELFDAGRRQAADRGAELEWMEGDAESLPFPDDEFDVVLSCLGVMFAPHHQSAADELVRVCKPGGTIGLLSWTPDGFIGRMFAAMKPFAPPPPPGAQPPPLWGSEAHVRELLGDRITDVQARTQTVSITSFHKPDDFLHYFKSHYGPTISVYKFLAGDEEKIQALDKALTELADTFSDAHGDAPSQMDWEYLLLTARKQARKPATPANANANANANA
D1-29_026491716hypothetical proteinATGACGACGAATTACCGCCACCCGCACTCATTCGGCAGCACGATTTCACGGAGGTCCCTGATAACAGGCGCCTCGTTGGCCATACCACTTGCAGCCTTCGGAACTTTGGGTGCCTCGGCGGCCAAGGACAAACCCCGTTCCGTGCCGCTTGCCACCGCAGCCGGAGCCGGAGCGTCCAACTACGCACACCCTGGCCTGGTGCACACGCTCTCGGACATCGAACAAGTATCGACACAGGTGGGCAGCGGCGCCCAGCCCTGGTTGGGAGGCTGGAACCGTCTCGTGGCGAATGGCCGCTCGAATTCGGGGTGGCAGCCGCGTCCGCTGGAGACAGTCGTCCGCGGCGGCGACGGCTCCAACTACGGGCAGCTGTTCCCTGACGTCCATGCCGCGTACCAGAACGCCCTGCGCTGGCGGATCTCCGGGGACGCCGCCCATGGAGCGGCTGCCGTGCGGATCCTCAACGCCTGGTCCGGAATGTTGACCACGGTCACCGGCAACGCAGACCGCTTCCTGGCTGCGGGCATCTACGGCTACCAGTTCGCCAACGCGGCGGAGCTAGTACGGGACCACCCGGACTTCGAGTTTGAGCGGTTCCGCGGCATGCTCCTCAACATTTTCCACCCGATGAACGAACACTTCCTCACCAATCACAACGGTGCCGTGATCACCAACTACTGGGCCAACTGGGACCTCTGCAACATGGCATCGATTCTGGCCATCGGCATCCTCGCGGACCGCGACGATCTCGTGGACCGCGCGGTCACTTACTTCCAGAGCGGTGCGGGCAACGGCTCCCTGCCCAATGCTGTGCCGTACGTTTACGAGGACGAGGGCCTGGCGCAGTGGCAGGAGAGCGGCCGCGACCAGGCGCACAGCATCATGGGCATCGGGCTGATGGGTGCCTTCTGTGAAATGGCCTGGAACCAAGGCATCGACTGCTACGGACACGATAACAACCGATTCCTCAAGGCGGCCGAGTACGTCGCCAAGTACAACCTCGGCCATGACGTCCCCTTCACCCCGTACACGTGGCAGTCCGGCCCATTGAGCACCGCCCCGCACGCCGGCTGGCAGACCCAGACTGTCCCGGGTGAGGGCGGGCGCGGGCAGGGCCGGCCGGTGTGGGATCAGGTTCTGGGACACTACTCCGGCCGCAAGGGCCTCAGCACCCCCTGGGTCAGCCAGATCGCTGCCACCCTTCGGCCTGATGGCGGAGGCGGCGACTATGGTTCCACGTCTGGAGGGTATGACGCACTGGGATTCGGCACCCTGATGCAGTACCCCGCCCAGACTGGCAGACGTTTCTCCCGCCTGCAAAGCTTCAACGTCCCGGACCGCTATGTCCGGCACTCCGGTTCGACAGTCCGCCTCGATCCCGTTACTTCGCCGGTCAAGGACTCACAGTTCCGGGTAGTTTCCGGGCTGGCAAGTGCGGCAGATGGCCGCATCTCCTTCGAATCCGTGGACATGCCCGGCTACTTCCTGCGCCACTGGAACTACCAATTCAGCCTGGTGCAGAATGATGGCTCCGCGGTCTTCAAGGCCGACACGACCTTCCTTCCTGTGTCCGGCTTGGGCCACAGCCGCCTGACATCCTTCCGGTCGCACAACTTCCCGGACCGGTATATCCGGCACCAGAACTACGCCCTGGTTCTGGCCCCAATGGTGAGCGATCTGGACCGTGCCGACGCAACATTCCGGATGGTCGACTAGMTTNYRHPHSFGSTISRRSLITGASLAIPLAAFGTLGASAAKDKPRSVPLATAAGAGASNYAHPGLVHTLSDIEQVSTQVGSGAQPWLGGWNRLVANGRSNSGWQPRPLETVVRGGDGSNYGQLFPDVHAAYQNALRWRISGDAAHGAAAVRILNAWSGMLTTVTGNADRFLAAGIYGYQFANAAELVRDHPDFEFERFRGMLLNIFHPMNEHFLTNHNGAVITNYWANWDLCNMASILAIGILADRDDLVDRAVTYFQSGAGNGSLPNAVPYVYEDEGLAQWQESGRDQAHSIMGIGLMGAFCEMAWNQGIDCYGHDNNRFLKAAEYVAKYNLGHDVPFTPYTWQSGPLSTAPHAGWQTQTVPGEGGRGQGRPVWDQVLGHYSGRKGLSTPWVSQIAATLRPDGGGGDYGSTSGGYDALGFGTLMQYPAQTGRRFSRLQSFNVPDRYVRHSGSTVRLDPVTSPVKDSQFRVVSGLASAADGRISFESVDMPGYFLRHWNYQFSLVQNDGSAVFKADTTFLPVSGLGHSRLTSFRSHNFPDRYIRHQNYALVLAPMVSDLDRADATFRMVDNANANANANA
D1-29_026501938menF_1Isochorismate synthase MenFATGACCTCGCTCCTCACCCGCATCGTTAACTCCTCCGCCGAGGCATCACTGCCCTTCGCCGTCATACGGCGCCAGCAGTCCGACGTCGTAGACGTCCTCACAGGCGATATTGTCGACGTCGAAAACCTGGCGGACATCCCCCTCGACTGGACGTCCAGCGGACAGGACGTGCTTACCTTGGTTCCGTTCCGCCAGGTCAGGGAGCGCGGATTTGCAGCAACCGACGACGGCGCGCCGCTCCGTTGCCTGCTGGTAACGGAACGTGAAACGGTCACCATCGCTGAAGCGCTGGCCACTCTCCCCGGCTACACGGTCCCCATCGAGTCTCTCGGATTTGAGACGTCCGACGCAGACTACGCCGGGATCGTACGGCGGGTTATCGACGACGAAATTGGACAAGGCGAAGGCGCCAACTTTGTCATCCGGCGCTCGTTCCGCGGAGGCATCGAAGCTTCCCCGGCGTCTGCGGTGCTTGCCTGGATGCGTGCCCTGCTCCTCTCAGAGCAGGGAGCCTACTGGACCTTTGCGGTGCACTCCCCCGGCCATTCACTTGTCGGAGCAACTCCGGAGCGCCACGTCTCGGTCAAGGACGGCATGGTGACGATGAATCCCATTTCCGGGACATACCGGCACCCAGCGGCAGGTCCCACCGCAGACGGCGTTCTGGAATTCCTCTCCGACATCAAGGAGAGCGGCGAACTCTTTATGGTGGTCGATGAGGAACTGAAAATGATGAGCGCCATCTGTCCGGACGGCGGGCGCATCCTGGGTCCGTACCTCAAGCAGATGTCCAGGCTCAGCCACACCGAGTATCTGCTGGAGGGACGAACCGGGCTGGATCTGCGGGAGGTCCTGCGTGCCACGATGTTCGCTCCCACCGTTACCGGCTCTCCCATGGAGAACGCCTGTTCCGTCATCGAACGCCATGAAGAGGGTGGCCGCGGATACTACTCAGGTGTCCTGGCGTTCTTTGAGTCCCGAATGGACGGGAACGGCTGCGTTTCCTATGAGCTGGACGCACCAATCCTCATCCGTACGGCGCATGTGGACGGGGCAGGCGGAGTCACCGTGTCAGCAGGCGCTACGCTCGTTCGGCTCTCGACGCCGGAAGGAGAGGCAGCAGAAACGCACGCAAAAGCGTCAGGAATACTCTCGGCGCTTGGGCTCCTCCCTTCGACGCCGGTCCCGCCTGCGGTGGACCTGAACTCACTGCCCGGCGTGGCTGAGGCGCTTCTGGATCGCAACAATCAACTGGCGCCGTTTTGGCTCCGCCCCCAGGGCTGGGAACAACACCCGCCCTTTTCCGGCAACACAGCGCTTGTCGTTGACTGCGAGGACCAGTTCACCGAGATGCTCGCCCATCAACTGCGGCACCTCGGTCTGGAAACCACCGTGGTCCGATGGGACGCCGCCGTGGATATCTCCAGCGCGGACCTGGTGGTCTTCGGGCCTGGCCCCGGGGACCCCCGGAGCGACACCAGCAGGCGGCTGGAAACCGTGCGGACCTTGATGCTTGCCAGGCTGGAGACGGGCCGGCCGCTGCTCGCCGTCTGCCTGAGCCACCAGCTCCTGTCGATCCTTGCGGGGCTTTCCGTTGAAGCATTGCCCATCCCCCGTCAGGGCACACGGCTTGACGCAGACGTTTTCGGTACCCGGGCCAGCCTCGGCTTTTACAACACCTTCGCCGCCATGGCTGAGCCGGACCAGCTGGCAACACCTCGCCTCAACCTGGAAATTTCCGCAGACAACGGCGTCGTGAACGCGTTACGCGGCGAAGGGGTCGCATCTATCCAGGGACACCTGGAATCTGTGCTCTCTACAGACGGCTTGGCCACGTTGGAGCGGCTCGTACATTCCGTGCTTTCCAGGCCCGCGGCCGGGCAAAGCTTCGCGGCGGACCTGTCGGTGCAGAGGCTGGAGGCCGGTCAGCCGTCGTAGMTSLLTRIVNSSAEASLPFAVIRRQQSDVVDVLTGDIVDVENLADIPLDWTSSGQDVLTLVPFRQVRERGFAATDDGAPLRCLLVTERETVTIAEALATLPGYTVPIESLGFETSDADYAGIVRRVIDDEIGQGEGANFVIRRSFRGGIEASPASAVLAWMRALLLSEQGAYWTFAVHSPGHSLVGATPERHVSVKDGMVTMNPISGTYRHPAAGPTADGVLEFLSDIKESGELFMVVDEELKMMSAICPDGGRILGPYLKQMSRLSHTEYLLEGRTGLDLREVLRATMFAPTVTGSPMENACSVIERHEEGGRGYYSGVLAFFESRMDGNGCVSYELDAPILIRTAHVDGAGGVTVSAGATLVRLSTPEGEAAETHAKASGILSALGLLPSTPVPPAVDLNSLPGVAEALLDRNNQLAPFWLRPQGWEQHPPFSGNTALVVDCEDQFTEMLAHQLRHLGLETTVVRWDAAVDISSADLVVFGPGPGDPRSDTSRRLETVRTLMLARLETGRPLLAVCLSHQLLSILAGLSVEALPIPRQGTRLDADVFGTRASLGFYNTFAAMAEPDQLATPRLNLEISADNGVVNALRGEGVASIQGHLESVLSTDGLATLERLVHSVLSRPAAGQSFAADLSVQRLEAGQPSPGPT0012800_241DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HHQ|PQS_PERCIPITATION|SIGNALLING,PGPT0012800-phzE-K13063NANA
D1-29_02651768hypothetical proteinGTGAAATTGCTGGCCGGGCCGCCATTGAGCGCCATAAACCTGCGCCCTTCGATCTCGAACTCCACCGTCATCGCCTGGCCCACGGGCCCCGGGCCGCCCTCCCCGAACCTGGCAACGTTGAGGATCCTGGAATCGCTAAAGACCGAAGTGTATAAGCCGGCGGCTTCCTCAGCCTGGTTTTCGAACCACAGGCATGTCGAAATTTTCTGCATCTGCTTCCTCTCCGAGCTGAGCCTAATCCGGCGGGACTACCTGCACAACGATTTCGGACGGATCGCCGTAGTGCGGCGGGCACCGGTCTTTGCTTTCCACTGTCAGCAAACCGCTAGGCTCGAAAGCGTGAATCCAGAGATCCAACAGACGAAACGGCCGGACGGCTCCGACGGCGCCGGGCGTCTTATCGTGGCCGGAGCGGCCCTGGCCGATGCCATCCTTATCCTGGTCTTCGCGGCCATCGGCCGGGACGCACACCAGCGCGGTGACGTTGTCACGGGGGTGCTGCTGACCGCCTGGCCCTTCCTTGCCGGTGCTGCGCTTGCGTGGGCTGCGGCAAGAGTGTGGCGCCGTCCGCTGTCTGTCCGGCCGGCAGGGCTGGCCGTCTGGCTCGGAACTGTCGCCGGCGGGATGCTCCTGCGTGCCCTGACCGGACAAACTGTGGTTATCGCGTTTGTCATCGTCGCCCTGGTGACCCTGGGCTTGTTCCTGGTGGGCTACCGTCTCCTGCTGGCCCTGCTCATCAGGTTGCGCAGCACGGCAAGCAAAGGTTGAMKLLAGPPLSAINLRPSISNSTVIAWPTGPGPPSPNLATLRILESLKTEVYKPAASSAWFSNHRHVEIFCICFLSELSLIRRDYLHNDFGRIAVVRRAPVFAFHCQQTARLESVNPEIQQTKRPDGSDGAGRLIVAGAALADAILILVFAAIGRDAHQRGDVVTGVLLTAWPFLAGAALAWAAARVWRRPLSVRPAGLAVWLGTVAGGMLLRALTGQTVVIAFVIVALVTLGLFLVGYRLLLALLIRLRSTASKGNANANANANA
D1-29_02652282hypothetical proteinGTGATCACCGCATTCGTTCTGATCAAAACAGATGCCGCCCGCATTCCCGAAACGGCGGAGGAGATTTCCGCCATCCAGGGCATCAGCGAGGTGTACTCCGTCACCGGGGAATGGGACCTCATTGCCGTGGCCCGGGTATCCCGCCACGAGGAACTGGCCGATGTCATCGCAGACAGGCTTTCGAAGGTTCCGGCTGTGGTGCATACCAGTACGCACATCGCTTTTCGCGCCTACTCCCAGCACGACCTGGATGCGGCGTTCGCTCTGGGCTTCGAACAGTAAMITAFVLIKTDAARIPETAEEISAIQGISEVYSVTGEWDLIAVARVSRHEELADVIADRLSKVPAVVHTSTHIAFRAYSQHDLDAAFALGFEQNANANANANA
D1-29_026531059trpDCOG0547Anthranilate phosphoribosyltransferaseGTGACTTCTCAGGCATCGGCACCGGCGGCCGGCAACTCGTGGCCGCGGCTCATCTCCGCACTCATTAATGGCACAGACCTGACAGCGGACAGTACCGCCTGGGCGATGGGGACCATTATGTCCGGCGAGGCGACCCCGGCACAGATTGCCGGCTTCCTCGTTGCCCTCCGCGCCAAGGGCGAAACAGTCGAAGAGATCTCAGGTTTGGTCGAAGCAATGCTGGGCCACGCCAGGCCAGTGAGTATTTCCGGGCAAAAGCTGGACATTGTTGGCACCGGAGGAGACCAGCTCAACACGGTGAACATTTCAACCATGGCAGCCCTGGTGGCTGCAGGAGCGGGCGCCAAGGTGGTGAAGCACGGCAACCGGGCGGCGTCGTCCTCCTCAGGTTCTGCGGATGTTCTGGAGGCTTTGGGCGTCAGGCTCGACCTCCCCATCGACCAGGTGGCCTCCAACGCCGAGGAAGCCGGCATCACCTTCTGTTTTGCGCAGGTATTCCATCCGTCGTTCCGTCACACCGCTGTGCCCCGGCGTGAACTCGCCATTCCCACAGCCTTCAACTTCCTGGGCCCGCTGACCAACCCGGCGCACGTCCAGGCCTCAGCCGTGGGAGTGGCCAACGCCAGGATGGCGCCCTTGGTTGCAGGTGTCCTGGCGCGCAGGGGGAGCAGGGGGCTGGTGTTCCGCGGAGACGACGGGCTGGACGAACTGACCACCACAGGACCTTCCACCGTCTGGGAGATCCGGGACGGTGCCGTCATCGAGTTGGCTTTCTCGCCGGCCGATCTTGGAATCCGTCCGGCGACGGTGGAGGAGCTCCGTGGCGGAGATGCGCAGGCCAATGCCGCCGTCGTACGCGACGTCCTCGCCGGCAAGGCGGGACCAGCCCGCGATGCGGTCCTGCTCAATGCGGCAGCAGGACTGGTGGCTTTCGATACAGAAGCCCACGGGCCTTTCCTCGAACGTATGCGCTCGGCGCTGGCGCGGGCCACTGCCTCAATCGACTCCGGCGCTGCCGCAGGAGTCCTTGATAAGTGGGTATCGCTCACCCAGGCATGAMTSQASAPAAGNSWPRLISALINGTDLTADSTAWAMGTIMSGEATPAQIAGFLVALRAKGETVEEISGLVEAMLGHARPVSISGQKLDIVGTGGDQLNTVNISTMAALVAAGAGAKVVKHGNRAASSSSGSADVLEALGVRLDLPIDQVASNAEEAGITFCFAQVFHPSFRHTAVPRRELAIPTAFNFLGPLTNPAHVQASAVGVANARMAPLVAGVLARRGSRGLVFRGDDGLDELTTTGPSTVWEIRDGAVIELAFSPADLGIRPATVEELRGGDAQANAAVVRDVLAGKAGPARDAVLLNAAAGLVAFDTEAHGPFLERMRSALARATASIDSGAAAGVLDKWVSLTQAPGPT0007090_1014DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
D1-29_02654579ctaECOG1845putative cytochrome c oxidase subunit 3ATGGTTTCCGTTGGAACCGTAGTGTGGCTGTCCAGCGAGTTGATGTTCTTCGCCGGTCTCTTCGCCATGTACTTCACGCTGCGCTCCACAAGCGGTGAGATGTGGGCGGACGAGACGGCCAAGCTCAACTTCCCCTTTGCGCTCGTCAACACGATTGTCCTTGTGGCCAGTTCCTTTACTTGCCAGATGGGCGTCTTCGCCGCCGAACGGCTGCAGCCCCGCAAGTCCGGTGGCCCGTTCCAGTTCTCCCGCTGGGGCATGAACGAGTGGTTCACCCTGACCTTCCTCATGGGCGCGTTCTTCGTCGCCGGCCAGGCCACGGAATACGCGATGCTGGTATCTGAGCATGTCTCGCTCTCCTCCAACGCCTACGGCTCGGCCTTCTACATCACCACCGGCTTCCACGGCCTGCACGTTATTGGTGGCCTGGTGGCCTTCCTCTTCATCATCGGCCGCTCGTTCGCCGCGAAGAAGTTTGGTCACTTTGAAGCAACCTCCGCGATTGTCACTTCCTACTACTGGCACTTCGTGGATGTCGTGTGGATCGGCCTCTTCCTGGTCATCTACGTACTCAAGTAGMVSVGTVVWLSSELMFFAGLFAMYFTLRSTSGEMWADETAKLNFPFALVNTIVLVASSFTCQMGVFAAERLQPRKSGGPFQFSRWGMNEWFTLTFLMGAFFVAGQATEYAMLVSEHVSLSSNAYGSAFYITTGFHGLHVIGGLVAFLFIIGRSFAAKKFGHFEATSAIVTSYYWHFVDVVWIGLFLVIYVLKPGPT0004035_2257DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
D1-29_02655789qcrCCOG2010Cytochrome bc1 complex cytochrome c subunitGTGAAGGCACTCTCGCAAAAGCGGCGTCACCCACTTGCAGCAATAGCGCTGCTCCTGATGGGGCTCCTCGTCACTGGTGGGCTTTATGCCGTTGCCACCACCGTCAACGAGGCGAAGGCTTCCACCACCAGCTACAGCGCCAATGATGTTGAGGAGGGCGGCAAGCTCTTCGCGGCCAACTGCGCCACCTGCCACGGCATGGGTGCCAGCGGAACCCAGGACGGTCCGTCCCTGGTTGGTGTCGGCGCCGCAGCGGTTGACTTCCAGGTTGGCACCGGCCGGATGCCCATGCAGATGAACGGCCCGCAGGCCGCCGAGAAGCCAGTCCAGTTCAACGACGAACAGACCCACCAGCTTGCAGCCTATGTCGCTTCCCTGGGAGCCGGCCCGGCAATCCCTGAAGAGCACCTGCTGGACGAAAAGGGTGACGCGGCAGCCGGCGGCGAGCTCTTCCGTACCAACTGCGCCATGTGCCACAACGCTGCTGCCGCCGGCGGTGCCCTGACGCGGGGTAAGTTCGCACCCGCTCTGGCCGACGTTTCGGGCAAGCACATTTACGAGGCGATGGTCACTGGCCCGCAGAACATGCCGGTATTCAGCGACGCCAACATCACCCCCGAGGGCAAGCGGGACATCATCACGTTCCTGAAGCAGATCGAGTCCAACGGCTCCCCCGGCGGCGCCGACCTCGGTGCACTGGGACCTGTCGCCGAAGGCCTGTTCGTCTGGGTCGCGGGGCTGGGTGTCATCATCGCTTTCACCATCTGGCTGACGTCGCGGACGTCTTAGMKALSQKRRHPLAAIALLLMGLLVTGGLYAVATTVNEAKASTTSYSANDVEEGGKLFAANCATCHGMGASGTQDGPSLVGVGAAAVDFQVGTGRMPMQMNGPQAAEKPVQFNDEQTHQLAAYVASLGAGPAIPEEHLLDEKGDAAAGGELFRTNCAMCHNAAAAGGALTRGKFAPALADVSGKHIYEAMVTGPQNMPVFSDANITPEGKRDIITFLKQIESNGSPGGADLGALGPVAEGLFVWVAGLGVIIAFTIWLTSRTSNANANANANA
D1-29_026561074qcrACOG0723Cytochrome bc1 complex Rieske iron-sulfur subunitATGGGCAACCATAGTGACGGCAGTCCGAGCCACTCGGGCACCGTAGCTACGGCTGGTCAGAATGAGGTGGAGAAGTTCCAGGATCCTGGACTTCCTCCGCATCGTTTGCGCCTGGCTGACACGGACCCGAAGGCCGCAAAGCGTGCAGAACGGCAGGTCGCCCTACTTTTTGGCACCTCTGTTATCGGCACAGTGATCTTCCTGGTGGCGTACTTCGCCATCGACCTTGGCGGCGACGATTCCAGCATTGCAACGGTCCGCCTGCAGAATGCCCTGCTGGGCATCGGCACTGCTTTTGCCATGCTTGGCATCGGTACCGGCATTGTCCATTGGGCCAAGGCCCTCATGCCGGACCATGAAGTCTCGGAAGAACGCCATGGCATCCGCACAGAAGAGGACCGCCTCGCCGCTGTCCGCATCGTAGATGACATTGTGGAAGAGACCGGAATCAAGCGCCGTCCGCTCATCCGCAACACCCTTCTCGGCGCTGTAGCCCTGGCGCCCCTTCCGGCAGTGGCAATATTCGGCGACCTGGGCCCGCGCCCCGACAAGGCACTGTCGCACACCATGTGGGCTCCCCAGGACGGCCAGTTCAAGCGTCTTGCCCGCGACCCTGATGGCACTCCCATCAAGGCTTCGGATGTCACCCTGGGCTCCGCCTTCCACGTCATCCCGGAAGGCCTGAACGAACTGCATGAAGGCAAGCTCAACGAAAAAGCCAAGGCTGTTGTGCTGCTGATGCGTCTGGATCCAGCATCGCTGAACCCTTCAGCGGGCCGCGAGGACTGGAGCTACAACGGAATCGTTGCCTACTCCAAGATCTGCACTCACGTCGGGTGCCCGGTTGCTCTTTACGAGCAGCAGACGCACCACCTGCTGTGCCCGTGCCACCAGTCCACCTTTGACCTCACCAACGAGTGCAAGGTGATCTTCGGCCCGGCCAGCCGGCCCCTCCCCCAGCTGCCCATCGCAGTGGATGACGAGGGCTACCTGGTCGCAACCAGCGACTTCAAAGAACCTGTAGGACCTAGTTACTGGGAGCGTGATGAGCATGAGCGCAGCATCAAGAGCTGAMGNHSDGSPSHSGTVATAGQNEVEKFQDPGLPPHRLRLADTDPKAAKRAERQVALLFGTSVIGTVIFLVAYFAIDLGGDDSSIATVRLQNALLGIGTAFAMLGIGTGIVHWAKALMPDHEVSEERHGIRTEEDRLAAVRIVDDIVEETGIKRRPLIRNTLLGAVALAPLPAVAIFGDLGPRPDKALSHTMWAPQDGQFKRLARDPDGTPIKASDVTLGSAFHVIPEGLNELHEGKLNEKAKAVVLLMRLDPASLNPSAGREDWSYNGIVAYSKICTHVGCPVALYEQQTHHLLCPCHQSTFDLTNECKVIFGPASRPLPQLPIAVDDEGYLVATSDFKEPVGPSYWERDEHERSIKSNANANANANA
D1-29_026571677qcrBCOG1290Cytochrome bc1 complex cytochrome b subunitATGAGCGCAGCATCAAGAGCTGAAGCCCCCGCCTTCGTCGCCAAGACCAAAGCCGGACGCATTACCGATTTCGTTGACGAGCGCGTCGGCGGCGCCGGGATCCTGCGCGAGTTCGGCCGAAAGGTCTTCCCCGACCACTGGTCGTTCATGTTCGGTGAAGTCGCGCTGTATTCCTTCGTTATCCTGCTGCTGTCAGGTACGTTCCTGACGTTCTTCTTTGATCCGTCCATGGCAGAAACACACTACGACGGCTCATACGTGCCCCTCAAGGGCGTCGAGATGTCAGTGGCCTACAGCTCATCGCTGGACATCTCCTTTGACGTCCGCGGCGGCCTGTTCATGCGTCAGGTGCACCACTGGGCGGCCCTGCTGTTCGTGGCGTCCATCGCCGTGCACATGCTCCGCGTCTTCTTCACCGGAGCCTTCCGGAAACCCCGCGAAATGAACTGGGTGGTGGGCGGCGTCCTGCTGATCCTGGCGATGGCAGCCGGCTTCACCGGCTACTCCCTCCCCGATGACCTGCTGTCCGGCAACGGCCTGCGCATCATCGACGGCGTCATGAAGGCAATCCCGGTGATCGGGACCTACGCTTCCTTCTTCTTCTTCGGAGGCGAGTTCCCCGGAACGATGGTCATTGGCCGCCTCTATATGCTGCACATCCTGCTGGTTCCGGCCCTGATCCTCCTGATGATCGTCCTGCACCTCTTTATGGTGGTCATCCACAAGCACACCCAGTACCCCGGCCCGGGACGCAACGACGGAAACGTCGTCGGCTACCCGCTGGGTCCCGTATACGCTGCCAAGGCAGGCGGATTCTTCTTCATCGTCTTCGGTGTCATCGCACTGATGGCAGGGTTCTTCACCATCAACCCGATCTGGAACTACGGCCCCTACGATCCTTCACCGGTGTCGGCAGGTACCCAGCCTGACTGGTACATCGGCTTCGTGGACGGCGCACTGCGCCTCATGCCCGGTGTGATCGGGGACTTCCACTTTGAGTACGTCGTCTTCGGATACACGCTCTCACTCAATGTCCTGCTGCCGGCGCTGGTTCCTGCGGGCATTCTCTTCACGGTGATGTTCATGTACCCGTGGATCGAACGGTGGATCACCAAGGACAACCGTGAGCACCATGTCCTGGACCGTCCGCGCAATGCACCAACGCGTACCGCCATCGGCATGGCCGGTTTCGTCTGGTACTGCGTGATGTGGGCAGCTGCAGGCTCGGACCTCATCGCCACGCACTTCCATGTGTCGCTGAATGATGTCACCTACTGGCTCCGCGCGCTCTTCTTCATCGGCCCAATCATCGCGTTCATCGTCACCAAACGCGTCGCGCTGGCACTTCAGCGCAAGGACCGCGAAATCGCGCTCCACGGCCGTGAGACCGGACGTATCGTGCGACTGCCGCACGGTGAGTTCATTGAGGTGCACGCACCGCTGGACGAATACAAGCGCTACAAGCTGGTTGGCTTCGAGTCACCGGCACCACTTCCGGCAGTGCCCAACGATCACGGCATTGTCACACGCAAGGAGAAGCAGCGTGCCTGGCTCTCCCGGTGGTTCTTTGAGGACCGGGTAGCCCCCGCCACACCCGCGGAGCTGGAGGCAGCACACGGCCACCACGCCCACCCGGCAGTTGAAGCAGCCGAGGAGAGCAAGAGCCTCAGCCACTAGMSAASRAEAPAFVAKTKAGRITDFVDERVGGAGILREFGRKVFPDHWSFMFGEVALYSFVILLLSGTFLTFFFDPSMAETHYDGSYVPLKGVEMSVAYSSSLDISFDVRGGLFMRQVHHWAALLFVASIAVHMLRVFFTGAFRKPREMNWVVGGVLLILAMAAGFTGYSLPDDLLSGNGLRIIDGVMKAIPVIGTYASFFFFGGEFPGTMVIGRLYMLHILLVPALILLMIVLHLFMVVIHKHTQYPGPGRNDGNVVGYPLGPVYAAKAGGFFFIVFGVIALMAGFFTINPIWNYGPYDPSPVSAGTQPDWYIGFVDGALRLMPGVIGDFHFEYVVFGYTLSLNVLLPALVPAGILFTVMFMYPWIERWITKDNREHHVLDRPRNAPTRTAIGMAGFVWYCVMWAAAGSDLIATHFHVSLNDVTYWLRALFFIGPIIAFIVTKRVALALQRKDREIALHGRETGRIVRLPHGEFIEVHAPLDEYKRYKLVGFESPAPLPAVPNDHGIVTRKEKQRAWLSRWFFEDRVAPATPAELEAAHGHHAHPAVEAAEESKSLSHNANANANANA
D1-29_02658792dasRCOG2188HTH-type transcriptional repressor DasRATGGCCGGTAGCGCAGGCGCCGTCAGCGGCGAGATAGACCGCAGCAACGGGACTGCCATCTACATTCAGCTGCGCGAGATCCTTCGTTCCTACATTGCGGACTCCTGCCCGCCTGGATCCGCACTCCCTTCGGAACGGGACCTTGCCGAACGCTTTGGCCTCGCTCGAATGACTGTGCGCCAGGCCATCGATGCACTGGTCGGCGAAGAAGTCATAGAACGAGTAGTGGGTCTTGGCACGTTCGTCCGCAAGCCAAAGCTTGACCTGCAGGTCAAGCTGACCTCGTACAGCGAGGAGATGCAGCGTCGCGGCATGGTGCCGGCCGCCAAGGTACTGAGCTTTGAGCAGATCGCCGCCAGTGCCTTCCTGGCCCGGGAGCTTCAGCTGGAGGAGGGAACGGCCCTGGTGCGTTTCCGCCGCCTTCTGCTGGCGGACGGGGAGCCCATGAGCGTGGATGAAAACTTCATTCCGGCGCACCGGGTCCCGGGGCTTTTGGACGGTGAACCGCCCACATCCCTCTACAACGTGCTCAGCGAGCAGTTCGGGCTCGTGATGGAGTGGGGCGAGGACATGATTGAAGCGACTGCGGCATCGCCCTCCACTGCCCGGCTACTCAACGTCGACGTTGGATCACCGCTGCTGAAAATCCAGCGGCATGCGTTCGTGGCCCGGGCCATGGTGGACTACTCCGTTTCGTACTACCGCGCTGACCGTTACAAGCTTTGGGTCCCGCTCCAGCGTCCGGGAGCGCGGCCGGCCCGAAATCATGCGTCGGGCTACCGGAACCCGTAGMAGSAGAVSGEIDRSNGTAIYIQLREILRSYIADSCPPGSALPSERDLAERFGLARMTVRQAIDALVGEEVIERVVGLGTFVRKPKLDLQVKLTSYSEEMQRRGMVPAAKVLSFEQIAASAFLARELQLEEGTALVRFRRLLLADGEPMSVDENFIPAHRVPGLLDGEPPTSLYNVLSEQFGLVMEWGEDMIEATAASPSTARLLNVDVGSPLLKIQRHAFVARAMVDYSVSYYRADRYKLWVPLQRPGARPARNHASGYRNPNANANANANA
D1-29_02659312hypothetical proteinGTGACAAAAGGAGTCCCGTTGCCCATTCACAAGGCCGTGGTGTCGGCGTCGATCGGCCTTCATGCCAGGCCAGCTGCTGTATTCGTCAGGGCCGTGACCGACACCGGGCTGCCGGTCACCATCAGCAAGGCAGGTATTGAAGGCGTAGATGCCCGCTCGCTGCTGGAAGTCATGACCGCAGACTTCCACTACGGCTGTGAAGTGGAGCTCTCCATCATGGATTCGGCCCTGGAGGGACCTTCAGGCCTCCAAACAGCAGAGGACGCTCTCCGTATGCTTGCCGAGCTGTTGGAGTCGCAGGGGGCCCGCTAGMTKGVPLPIHKAVVSASIGLHARPAAVFVRAVTDTGLPVTISKAGIEGVDARSLLEVMTADFHYGCEVELSIMDSALEGPSGLQTAEDALRMLAELLESQGARPGPT0016875_288DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0016875-ptsH-K02784NANA
D1-29_02660402hypothetical proteinGTGAAAATCGAATCTTGGATATTTGGAGCCGGAGTTTTCTTCTTCGTACCGGTCTCGATCGTTTACGGGTTCCTGACGGACTGGCATGAGTGGGTTGGCATCCTGGGAATCCTTCTCGTAGGCGGCCTGGCCGGCATGATCGGCGGCTACCTTGGATTCACCGGCAAGCGGATAGGTATGCGTCCTGAAGACCGCAATGACGCCGAAATCCATGAAGGTGCCGGCGAACAAGGGCACTTCAGCCCATGGAGCTGGTGGCCGCTGGTCCTGGGCCTGGCTTGCGCCGGGGGATTCCTGGGCATGGCAATAGGTTTCTGGATCGTCTTCATCAGTGCTGGACTCGCACTCATCGCCCTTGTGGGCTGGGTTTACGAGTACAGCCGCGGAGACCACGCCCACTAGMKIESWIFGAGVFFFVPVSIVYGFLTDWHEWVGILGILLVGGLAGMIGGYLGFTGKRIGMRPEDRNDAEIHEGAGEQGHFSPWSWWPLVLGLACAGGFLGMAIGFWIVFISAGLALIALVGWVYEYSRGDHAHPGPT0004025_23DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-29_026611728ctaD_2COG0843putative cytochrome c oxidase subunit 1GTGGCTACTTACACTCAATCCGCACCCGTGGGCGTCCTCGAGGCGCCCGTGGTTCCCAAGTCCAAGGGACGCATCGTCGTCAACTGGATCACTTCCACCGACCACAAGACCATCGGGTATATGTACCTGATCGCGTCGTTTGTGTTCTTCTGCCTCGGCGGCGTCATGGCGCTGCTTATCCGCGCCGAGCTCTTCGAGCCTGGCATGCAGATCCTGCAGACCAAGGAGCAGTACAACCAGCTGTTTACCATGCACGGCACGGTAATGCTGCTGATGTTCGCCACCCCGCTGTTTGCCGGGTTCACGAACGTCATCATGCCGCTGCAGATCGGCGCCCCGGACGTCGCCTTCCCGCGGCTGAACGCCCTGGCATTCTGGTTCTTCCTCTTTGGCTCAACCATTGCCGTCTCAGGGTTCATCACACCGCAGGGCGCTGCCTCCTTTGGCTGGTTCGCCTACGCGCCGCTCTCGAACACCACCTTCAGCCCCGGTATTGGCGGGGACCTGTGGGTGTTCGGCCTGGCGCTCTCCGGCTTCGGCACCATCCTGGGCGCGGTCAACTTCATCACCACGATTGTCTGCATGCGCGCTCCTGGCATGACCATGTGGCGGATGCCCATCTTCACCTGGAACGCCCTGGTCACGTCCATCCTGGTACTGATGGCATTCCCGCCGCTGGCCGCAGCCCTGTTCGCGCTTGGCGCTGACAGGCGGTTCGGTGCCCACATCTTTGACCCCGACAACGGCGGTGCCGTTCTCTGGCAGCACCTGTTCTGGTTCTTCGGCCACCCCGAGGTGTACATCATCGCGCTGCCGTTCTTCGGCATCGTGTCCGAGATCTTCCCGGTCTTCAGCCGCAAACCGATCTTCGGTTACAAGGGCCTGGTCTACGCGACCATCGCCATCGCTGCCCTGTCCGTCACCGTGTGGGCGCATCACATGTACGTGACCGGATCCGTGCTGCTGCCGTTCTTCGCCTTTATGACCATGCTGATCGCGGTGCCCACCGGGGTGAAGTTCTTCAACTGGATCGGCACCATGTGGCGCGGATCAATCACGTTTGAGACGCCCATGCTGTGGAGCATCGGCTTCCTCATCACCTTCCTGTTCGGCGGCCTGACCGGCATCATCCTGGCGTCGCCGCCGCTGGACTTCCACGTCTCTGACTCCTACTTCGTGGTGGCGCACTTCCACTACGTGGTGTTTGGGACCGTGGTGTTCGCGATGTTCGCCGGCTTCTACTTCTGGTGGCCAAAATTCACCGGCAAGATGCTCAACGAGCGCCTGGGCAAGATCCACTTCTGGCTGCTGTTCCTGGGCTTCCACGGCACCTTCCTGATCCAGCACTGGCTGGGTGTCGAGGGCATGCCCCGCCGGTACGCGGACTACCTGGTGGAGGACAACTTCACCTGGATGAACCAGTTCTCCACCATCGCCTCGTTTGTCCTGGGAGCGTCCCTGATTCCGTTCTTCTGGAATGTCTACATCACCTGGCGCGGTGCCGAAAAGGTGCAGGTGGATGACCCGTGGGGCTTCGGTGCCTCGCTGGAGTGGGCCACGTCCTGCCCTCCGCCGCGCCACAACTTCACCTCGCTGCCCCGGATCCGTTCCGAGCGCCCGGCCCTGGACCTGCACCACCCGGAGCTCTCCCAGGTCCACACAGTTCAGTCGCCTGCTGTGGCTGCTGCTGCTCTTGGTAACGCCGACCAGAAGGACACCAGCAAGTGAMATYTQSAPVGVLEAPVVPKSKGRIVVNWITSTDHKTIGYMYLIASFVFFCLGGVMALLIRAELFEPGMQILQTKEQYNQLFTMHGTVMLLMFATPLFAGFTNVIMPLQIGAPDVAFPRLNALAFWFFLFGSTIAVSGFITPQGAASFGWFAYAPLSNTTFSPGIGGDLWVFGLALSGFGTILGAVNFITTIVCMRAPGMTMWRMPIFTWNALVTSILVLMAFPPLAAALFALGADRRFGAHIFDPDNGGAVLWQHLFWFFGHPEVYIIALPFFGIVSEIFPVFSRKPIFGYKGLVYATIAIAALSVTVWAHHMYVTGSVLLPFFAFMTMLIAVPTGVKFFNWIGTMWRGSITFETPMLWSIGFLITFLFGGLTGIILASPPLDFHVSDSYFVVAHFHYVVFGTVVFAMFAGFYFWWPKFTGKMLNERLGKIHFWLLFLGFHGTFLIQHWLGVEGMPRRYADYLVEDNFTWMNQFSTIASFVLGASLIPFFWNVYITWRGAEKVQVDDPWGFGASLEWATSCPPPRHNFTSLPRIRSERPALDLHHPELSQVHTVQSPAVAAAALGNADQKDTSKPGPT0004025_1508DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-29_02662873ctaCCOG1622Cytochrome c oxidase subunit 2GTGAGTTCGCAGAACCGAACCGGCAGCCGACGCAAAACGATCACCTCGATCTCAGGCCTGGCAGTAGCCGGCGCGTTGGTTTTGACCGGATGTTCGCCAGAGGTAGAGAAGGGGTGGCTGCCCACCGAGCGTGGCACCACCAATCACACTGACCGCATCATGGACCTCTGGGTCAACTCATGGATTGCCGCACTTGTTGTGGGCATCATCACTTGGGGTTTGATCGTTTGGTGCATCGTTGCCTACCGCCGCCGCAAGGGCACCATTGGGTTTCCGCGGCAGACCAGCTTCAACCTCCCGCTTGAGGTCTTTTACCTGACTATCCCGCTCTTTATGGTGCTGGTGTTCTTCTACTTCACCGACCGGGACCAGCAGGCCATTGATGACCGCTCCCAGCCGGCTGACGTCGTTGTTGACGTCCGGGGCAAGCAGTGGGCATGGGACTTCAACTACAAGTCCGGTGACGTCATTCGCGAAGACGTCTATGAGGCCGGGGTGCAGGCGCACCTGACCGGCGAAACCCTGGACAAAGAGAAACTCCCCACGCTGTACCTGCCGGTTGGCAAGTCGGTTGATCTGGAGTTGAACTCACGCGACGTCATCCACTCCTTCTGGGTACCGGCGTTCCTGCAAAAGCGGGACATGATCCCCGGGAAGACCAACTACATCAGGTTCACCCCCACCAAAGAGGGAACCTATGACGGTAAGTGTGCTGAACTCTGCGGCGAGTACCACTCCGAGATGCTGTTCCGGGTCAAGGTGGTGTCCGAAGCTGAGTTCCAGGACCACATGAACCAGCTGCGTGATGAGGGCAACACCGGCCTCCTGGGCGAAGAGTACGACCGCAACCCGAACCTGAACGAAACAAACTAAMSSQNRTGSRRKTITSISGLAVAGALVLTGCSPEVEKGWLPTERGTTNHTDRIMDLWVNSWIAALVVGIITWGLIVWCIVAYRRRKGTIGFPRQTSFNLPLEVFYLTIPLFMVLVFFYFTDRDQQAIDDRSQPADVVVDVRGKQWAWDFNYKSGDVIREDVYEAGVQAHLTGETLDKEKLPTLYLPVGKSVDLELNSRDVIHSFWVPAFLQKRDMIPGKTNYIRFTPTKEGTYDGKCAELCGEYHSEMLFRVKVVSEAEFQDHMNQLRDEGNTGLLGEEYDRNPNLNETNPGPT0004030_3039DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275NANA
D1-29_02663390ProteinATGAGCACCGCAACCAATGAGAACAGCACCGAAACCACCAGCGCTGCCAGTGATGAACTGGCCGCCCACGAGGTCAAGCTGACCGACGTCGCAGCAGGCAAGGTACGCAGCCTCCTCGAACAGGAAGGCCGGACCGACCTCCGCCTCCGCGTTGCCGTCCAGCCCGGCGGCTGCTCGGGCCTCATTTACCAGCTTTACTTTGACGAGAGGCTCCTTGACGGAGACGCTGTCCGTGATTATGACGGAGTCGAAGTAGTAGTGGACAAGATGAGCGTGCCCTACCTCAGCGGCGCAAGCATCGATTTCGAGGACACCATCTCGAAGCAGGGCTTCACCATCGATAACCCGAACGCAGGCGGCTCGTGCGCCTGTGGCGACTCGTTCCACTAAMSTATNENSTETTSAASDELAAHEVKLTDVAAGKVRSLLEQEGRTDLRLRVAVQPGGCSGLIYQLYFDERLLDGDAVRDYDGVEVVVDKMSVPYLSGASIDFEDTISKQGFTIDNPNAGGSCACGDSFHNANANANANA
D1-29_026641461dapE_2Succinyl-diaminopimelate desuccinylaseATGACGCCCACTCCAGCGGCAACCCCGCGAAATTCAAGCAGCCCGTACTCCAGCAACCCTGCGCCGGGTACCACTTCCGGTGCCATCGATGCGCAGGAACTGCGCAGCGCAGTCAGCCGGTCCTTTGATGCCACCCTGGCCCAACTTGCCGGGCTGGTGGCCATTCCAGGCATCGCCTGGCCCAGTTTCGATCCCGCTCAGCTGGAACGCAGCGCCCAGGCCGTGGCGGACCTTCTCCGTGCCAGCGGCCTGGACGATGTTGTCGTCCTGCGGTCTGACAAGAAGGACGGCACCCCCGGTGGCCCCGCCGTCGTCGCCCGCCGGCCGGCGGCCGAAGGAAAACCGACCATACTCCTGTATGCCCACCACGACGTGCAACCCCCGGGTGACCCCGCCCTGTGGGATACCGAACCCTTTGCCGCCGTCGAAAAGGACGGCCGTCTTTACGGCCGCGGTGCCGCCGATGACAAGGCCGGGATCATGGCCCACGTGGCCGCCTACTCCGCTGTTGCGGAGGTTCTGGGGCCTGAGCTGGGCCTGGGAGTGACGTTCTTCTTTGAGGGGGAGGAGGAGGCAGGATCCCCCACGTTCCGAACCTTCCTGGAGGCACATCGTGACCTGCTCCGGGCGGATGTGATTGTGGTGGCGGACTCCAGCAACTGGAAGGTGGGTGTGCCTGCGCTGACTACCAGTCTTCGCGGCCTGGTGGATGGAACAGTCGAAGTGCAAGTACTCGAACATGCTGTCCACTCAGGAATGTTCGGCGGCCCGGTGCTGGATGCGCCCACCCTGCTCTCGCGGCTGATCGCCACCTTCCACGATGATGAAGGCAACGTTGCCATCCAAGGGCTCGTCTCCCAGGACAATGTGGCAGTGGATCTCACCGAAACCGAGTACCGCGCCGATGCTTCCGTGCTGGACGGGGTTCAGCTCGCGGGATCGGGCACCATCGCTTCACGGCTGTGGACCAAACCTGCCCTGTCCATCATTGGCATTGACGCGCCGGCAGTTGCGGTGGCTTCAAACACGCTGCTGCCGCGGGCCAAGGCGAAGTTCAGCCTGCGCCTGGCCCCCGGACAGGACCCGGCCGATGCCATGGAAGCTATGCGGGAGCACGTCCAGGCACATGCTCCGTTCGGCGCCAAGGTGGTGTTCACTCCGGGAGAAAGCGGAAGCTCATTCCGCACGGATACGTCATCCAAGGCTGCAACCTTGGCTTTGTGGGCACTGGGCGAGGCGTGGGGAGTCCCTGCTGTGGAGATGGGAATCGGCGGATCAATCCCGTTCATCGCGGACCTTACCGAGGTCTATCCTGACGTGCAGATCCTTGTCACGGGCGTGGAGGATCCTGATTCAAGGGCCCACAGCGCCAACGAGTCGCTCTACATCGAAGACTTCAGGAACGCTGTGGTGGCAGAGGCCTTGATGCTGGCGAGGCTGAATGCGGAGGGCCTCGCCTGAMTPTPAATPRNSSSPYSSNPAPGTTSGAIDAQELRSAVSRSFDATLAQLAGLVAIPGIAWPSFDPAQLERSAQAVADLLRASGLDDVVVLRSDKKDGTPGGPAVVARRPAAEGKPTILLYAHHDVQPPGDPALWDTEPFAAVEKDGRLYGRGAADDKAGIMAHVAAYSAVAEVLGPELGLGVTFFFEGEEEAGSPTFRTFLEAHRDLLRADVIVVADSSNWKVGVPALTTSLRGLVDGTVEVQVLEHAVHSGMFGGPVLDAPTLLSRLIATFHDDEGNVAIQGLVSQDNVAVDLTETEYRADASVLDGVQLAGSGTIASRLWTKPALSIIGIDAPAVAVASNTLLPRAKAKFSLRLAPGQDPADAMEAMREHVQAHAPFGAKVVFTPGESGSSFRTDTSSKAATLALWALGEAWGVPAVEMGIGGSIPFIADLTEVYPDVQILVTGVEDPDSRAHSANESLYIEDFRNAVVAEALMLARLNAEGLANANANANANA
D1-29_02665603putative proteinGTGTTCGGACGTAAAAAGGAAGCGCCCTCGGCGCAGGAAATAATAGACCAGCAGGCTGCCGATGCGGCTGCCCGGCAGGATGTGGCAGCGGGCAAGGGTGCGCCCACGCCCAAGCGCAAAGCCCAGGAAGCGGCCCGGAAGCGGCCCCTGGTGCCGGAGGACCGCAAGGCTTCCAAGGCTGCCGAACGCCAGGCCATCCAGGACCAGCGGCAGAAAATGCGCCAGGCCCTGGATACCGGCGACGAAAAGTTCCTGCCGCTGCGCGACAAGGGGCCGCAGAAGCGCTTCGCCCGGGACTACGTGGACGCGCGCTTCAGCCTGGGTGAATACCTGATGTTCGGCGCCCTGGTCTTTGTCATCATCTCCCTGCTTGTCCCGGCGTCCAGCGAACTGATGATCTACGTGCTGGGCGGGTTCTGGGTGATGTTCCTGGCAGTCTTCGTTGACGTGTTCATACTCTCCCGCAAACTCCGCAAGAAGCTGACGGAGAAATTCGGCGAGGTGGAGCGCGGCACCGTCTGGTACGGCTCCATGCGGTCACTGCAGTTCCGCAAACTCCGGCTGCCCAAGCCGCTGGTCAAACGCGGCGAATACCCCGCCTGAMFGRKKEAPSAQEIIDQQAADAAARQDVAAGKGAPTPKRKAQEAARKRPLVPEDRKASKAAERQAIQDQRQKMRQALDTGDEKFLPLRDKGPQKRFARDYVDARFSLGEYLMFGALVFVIISLLVPASSELMIYVLGGFWVMFLAVFVDVFILSRKLRKKLTEKFGEVERGTVWYGSMRSLQFRKLRLPKPLVKRGEYPANANANANANA
D1-29_026661095pyrDCOG0167Dihydroorotate dehydrogenase (quinone)ATGCGCGTATATCCCACATTTTTCAAACTGGCATTTTCATGGATGGACGCCGAACGCGCCCACAAGATCGGATTCAAGGGGATCAGGCTCGCGCATACCACCGGTGCCGGCCGGCTCCTGCAGCGTTTCACGGCTCCTGCGCCGTCACTTCAGACCACCGCCTTCGGCGTGACCTTTCCGTCGCCTTTCGGCCTCGCGGCCGGTTTCGATAAGGAAGGCCACAGCATCGAGGCACTCACCGACCTTGGCTTTGGCCATGTGGAGGTGGGGACCATTACGGGCCAGGCGCAGCCCGGCAACGAAAAGCCCCGCCTCTTTAGGCTGGTCCAGGACCGCGCTGTGATCAACCGGATGGGCTTTAACAACGACGGCGCGGCTGCGGTGGAGCCTCGTCTGAAGGCGGCCCGGGCCGCGCTGCGCCGCCGTTACCCTGCCGTGAGGCCGGTGATCGGCGTCAACATCGGAAAAAGCAAGGTGGTTGAACTCGACGACGCCGTCGGTGACTACCTCCTCAGCGCCCGGAGCCTCGCCCCGGCGGCAGATTACCTTGTAGTCAACGTCAGCTCGCCCAATACACCGGGCCTGCGCCTTCTGCAGGATGTTCAGACACTTCGCCCGCTGCTGGCCGCGGTGGGGGAGGAGGCTGACAGGGCCGCCGGCAGGCACGTTCCCCTGCTGGTGAAGATTGCACCTGACCTGAGCAACGAGGATATCGACGACGTCGCACGGCTGGCTTTGGACCTTAAACTCGACGGCATTATTGCCACCAACACCACCATTGCCCGGGCGGGACTTAAGTCGCCGGCGGAAACCATTGAAAAATGCGGACCGGGCGGATTGTCAGGGGCTCCGCTGAAGCAGCGCTCCCTGGAGGTGCTCCACAGGCTCAAGGACGCAACGGGGGACAGCATTGCCCTGGTGGCTGTGGGCGGCGTCGAGACCGCGCAGGATGTCCAGGAGCGGCTGGATGCCGGGGCAACGCTGGTGCAGGGCTACACGGCCTTCCTTTACGAGGGGCCTTTTTGGGCCGCCCGGATCAACCGGCAACTGGCGAAGAACCGCAGGCCTGACAAGGTGCCGAATAATAACTCCTGAMRVYPTFFKLAFSWMDAERAHKIGFKGIRLAHTTGAGRLLQRFTAPAPSLQTTAFGVTFPSPFGLAAGFDKEGHSIEALTDLGFGHVEVGTITGQAQPGNEKPRLFRLVQDRAVINRMGFNNDGAAAVEPRLKAARAALRRRYPAVRPVIGVNIGKSKVVELDDAVGDYLLSARSLAPAADYLVVNVSSPNTPGLRLLQDVQTLRPLLAAVGEEADRAAGRHVPLLVKIAPDLSNEDIDDVARLALDLKLDGIIATNTTIARAGLKSPAETIEKCGPGGLSGAPLKQRSLEVLHRLKDATGDSIALVAVGGVETAQDVQERLDAGATLVQGYTAFLYEGPFWAARINRQLAKNRRPDKVPNNNSPGPT0021190_1664DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254NANA
D1-29_026671080hypothetical proteinATGACCTGGGAAGCTGACATCCTCGGAGACGGCTTCGAGGCATATACGTTCCGGGCGGCAGGCGACGACGGCGTGGAGCGCACGGCCACACTGGTGCGCCACCGGCCGGGAAACGAAGATCCGGTCCCCCCGCCAGGTGAACGCCGGGCCGTGCTGTTCCTCCACGGCTGGAGCGATTATTTCTTCAACGTGGATTTGGCCCGGTTCTGGAGCAGCCGCGGCTACGACTTCTACGCACTGGACATGCACAACCACGGCAGGAGCCTGCGCCCGGAGACGCCGGGCGGATATGTGGCGGATCTGTCCGACTACGACGCCGAGATCGGCAGGGCAATCGGCATTATTGCCGCTGACAGCCACCACGCTGACAGCCAACACACTGACAGCCAACAGCGTGGGCAATCCCGGCCGGCCCCTCTCACCCTGATGGGACACTCCACCGGCGGCCTGGTTGCCGCCCTTTGGGTGAGCAACCATCCTGGCACCATCTCCGCGCTGGTACTGAACAGTCCATGGCTTGAAATGCACGGAAGTTCGCTGATCCGTCGGGCGGCATCGACCATGGTGGGGCCGGTGGCCCGCTTCCGCCCCGAAGCGGTCCTTCGCCTGCCTGAACGGGGATTCTATTGGCGGACCATCAGCAGCTCTGCGGACGGAGAATGGGCGCTTGATGACCGGTACAGGCCCCCTATGGCTTTCCCGCTGCGGGCCGGCTGGCTGCATGCCATCCTTGCCGGTCACGCCAAGGTGGCACGAGGGCTGGGCATTGACATTCCGATTCTGGTCCTGCTGTCCCGGGGCAGCGCCAACGGCCCGTTTTGGACCGAGGAAATGCGCCGGACAGATGCAGTCCTTGACGTTAATGTCATCGCGCTGCGGGCGCTGACTCTTGGACGCACGGTGACGGTGGAGCGCATCGACGGCGCCCTGCACGACGTTTTTCTTTCGCCGCCCAAGGTACGGGCGGACGCGTATGCACGGTTGTCGCGCTGGCTTCGGGGTTACGGTGAGCCGGACACAGGGGCTGGAGACACCGGCGGCACCCTCTGGGACGCCCCCGACGGCGGGGGCAGGAGATGAMTWEADILGDGFEAYTFRAAGDDGVERTATLVRHRPGNEDPVPPPGERRAVLFLHGWSDYFFNVDLARFWSSRGYDFYALDMHNHGRSLRPETPGGYVADLSDYDAEIGRAIGIIAADSHHADSQHTDSQQRGQSRPAPLTLMGHSTGGLVAALWVSNHPGTISALVLNSPWLEMHGSSLIRRAASTMVGPVARFRPEAVLRLPERGFYWRTISSSADGEWALDDRYRPPMAFPLRAGWLHAILAGHAKVARGLGIDIPILVLLSRGSANGPFWTEEMRRTDAVLDVNVIALRALTLGRTVTVERIDGALHDVFLSPPKVRADAYARLSRWLRGYGEPDTGAGDTGGTLWDAPDGGGRRNANANANANA
D1-29_02668744hypothetical proteinATGGTCTGTGGAACCAACACGGCCGCAGCAACGTACTTCAGGACTGCGAGAAAGTTGAGTCAATCACTCCCTGTCCATGTCTATGACCGCAGGGGCAGACCGGGCTCCAGCCCCCAGCCCGAGAATTATTCCATGTTAACCGAGATCTCGGACCTCCATTCTGTTATGGAGGCCACAGGCAGCACGGCCGTCTTCGGGCACAGCTACGGCGGGGCCGTTGCCCTCGAAGCCGCGCTTCAATTACCGGCCAGCCGCGTTGCTGTCTATGACCCTGTGCCCAATATCGGAGGCCTGGTGCCAACAGGGTTTCTTCCTGCCCTTGAAGATGCGGTGCAGCGCGGGGATGTGGCCCGTGCGGTTGGGGTCATAGGCAAGGGAATCTCCACAAGCCTTCGGGAAACACCACTCCCGGATCCTGTATTCCACATGTTGGTGTGGTGCATGTCCAGGGCAACCCGCAATGGGCGTTCATGGCGGGGCACCGTAGGCAGTTCGGTAAAGGAGATCGCTTGGCTGCACGCCAACCGGCCCAGCGCCAAGCGCTACGCAGACATCACAATTCCCGTACTTGTACTCTACGGAGCACGCAGCGACACTTTTTTCCGGCTCGTTGCCGAGTCGCTCGCGGGCACCCTTCCCTTAGGAAGATGCGCCGTAGTTCCCGGATCCGATCACGGGGCACCGGACTACGCTCCAGCTGCTCTTCTCGCCCAATTGGCGGAGTTCTTCACTGGGCAACGTTAGMVCGTNTAAATYFRTARKLSQSLPVHVYDRRGRPGSSPQPENYSMLTEISDLHSVMEATGSTAVFGHSYGGAVALEAALQLPASRVAVYDPVPNIGGLVPTGFLPALEDAVQRGDVARAVGVIGKGISTSLRETPLPDPVFHMLVWCMSRATRNGRSWRGTVGSSVKEIAWLHANRPSAKRYADITIPVLVLYGARSDTFFRLVAESLAGTLPLGRCAVVPGSDHGAPDYAPAALLAQLAEFFTGQRNANANANANA
D1-29_02669846COG0020Trans,polycis-polyprenyl diphosphate synthase ((2Z,6E)-farnesyl diphosphate specific)GTGGCCCTGGGAAAAAAGAACAACCCTTCACGGAAGCGGACTGCCCCCGTCGTGGCGCCCTATCCCCATCCTTCCGGCGCGACCGCTCCGGCCATCCCCGCTGAGTTCATTCCGCGGCACGTTGCCATTGTCATGGACGGCAACGGCCGGTGGGCAAACCAGCGCGGGCTGCCCAGGATCGAAGGACACAAGGCGGGGGAGCCCGCGCTGCTGGACGTCATGGCCGGCGCCATTGAGCTGGGCATCGAGTACGTCAGCGTTTACGCGTTCTCCACCGAGAACTGGCGCCGCTCACCGGAAGAGGTGCGGTTCCTGATGGGATTTAACAAGGATGTGCTCCGGCGGCAGCGGAACCAGCTCGATGAGTGGGGGGTCCGGGTGCGCTGGTCGGGCCGCCGTCCCAGGCTTTGGGGATCGGTGATCCGGGAACTTGAAGAAGCTGAGGCCTTTACCGTGGGCAACAGCACGTGCACATTGACCATGTGTGTGAATTACGGCGGACGGGCCGAAATTACGGATGCGGTATCAGCCATCGCCGAGGAAGTGGCGGCGGGACGCCTCAAGCCCGGGGCCATCACGGAGAAGACCATCCAGAAATACCTCGACGAGCCTGACCTGCCGGATGTGGACCTGTTCCTGCGGAGTTCGGGAGAGCAGAGGCTCTCCAACTTCCTCCTGTGGCAGTCAGCGTATGCGGAGTTCGTCTTTATGGACACGCTCTGGCCGGACGTGGACCGGCGCACTCTGTGGGAGGCCGTGGAGATCTACGCCCAGCGGGACCGGCGCTACGGCGGCGCCGTGGATGCCGCCCGGCCGGGCCTGCCTACAGGTGGCAGCTCCGCTTAGMALGKKNNPSRKRTAPVVAPYPHPSGATAPAIPAEFIPRHVAIVMDGNGRWANQRGLPRIEGHKAGEPALLDVMAGAIELGIEYVSVYAFSTENWRRSPEEVRFLMGFNKDVLRRQRNQLDEWGVRVRWSGRRPRLWGSVIRELEEAEAFTVGNSTCTLTMCVNYGGRAEITDAVSAIAEEVAAGRLKPGAITEKTIQKYLDEPDLPDVDLFLRSSGEQRLSNFLLWQSAYAEFVFMDTLWPDVDRRTLWEAVEIYAQRDRRYGGAVDAARPGLPTGGSSAPGPT0024180_204DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806NANA
D1-29_02670753recODNA repair protein RecOGTGGTCCAACAATCATTTGCCGCCCGCGCGTACCGGGATGACGCCGTTGTGCTGCGCACCCATAAACTCGGTGAGGCAGACCGCATCATCACCCTGCTGACCAAGCACCACGGCCAGGTCAGGGCGGTAGCGAAGGGTGTCCGGCGGACCAGCAGCCGCTTTGGCGCCCGACTGGAACCATTTATGGTCGCCGACCTCCAACTGGTGTCCGGCCGCTCCCTGGACATCGTCACCCAGGCCGTTGCCAAGGGTGCGTACGGCGGCAACATTGCCGCCGACTATGGGCGCTACACGGTGGCCGCGGCCATGACGGAGACAGCCGAAAAACTCACAGACGTCGACGGCGAAGCCGGAACGGCACAGTACAACCTGCTGGTGGGAGCGCTGGCGTCCCTGAGCCGGGAGGAACACGCCCCGGGGCTGATCCTGGACTCCTATCTTCTGCGCGCCTTGTCCACCGGCGGCTGGGCGCCCAGCTTTACGGTCTGTGCCAGGTGCGGGAGCCAGGGTCCCCACATCGCTTTCTCGGCGCCGCTGGGCGGTATGGTCTGCGGCGATTGCCGCCCGCCCGGCTCGCCAGCGCCGGCCGCCGAGACGGTGGTCCTGCTGGCTGCCCTCCTGACGGGCGACTGGCCGACGGCGGACGCGTCCTTGCCGGTTCACCGGCGGGAAGCGGCCGGGCTGGTGGCCGCCTACCTGCAGTGGCACCTTGAGCGTGTCCTTAAATCCCTCAAACATGTGGAGCGTACCTGAMVQQSFAARAYRDDAVVLRTHKLGEADRIITLLTKHHGQVRAVAKGVRRTSSRFGARLEPFMVADLQLVSGRSLDIVTQAVAKGAYGGNIAADYGRYTVAAAMTETAEKLTDVDGEAGTAQYNLLVGALASLSREEHAPGLILDSYLLRALSTGGWAPSFTVCARCGSQGPHIAFSAPLGGMVCGDCRPPGSPAPAAETVVLLAALLTGDWPTADASLPVHRREAAGLVAAYLQWHLERVLKSLKHVERTNANANANANA
D1-29_026711740leuA_2COG01192-isopropylmalate synthaseATGCAAAACGCACAAAAGCCCTCAGGAATGCCCGCCCACCGTTACCGCCCGTTCCAGGACCTGATCACTGTTGAACTGCCGGACCGGACTTGGCCGGACAAGGTCATCACCCACGCCCCGCGCTGGTGCGCCGTGGACCTGCGGGACGGTAACCAGGCACTCATCGATCCCATGAGCCCCGCCCGCAAGATGAAGATGTTCGACCTGCTGGTGCGCATGGGCTACAAGGAAATCGAGGTCGGCTTCCCTTCGGCCTCGCAGACCGACTTCGACTTCGTCCGCCAGCTCATCGAGGGCAACCACATCCCGGATGACGTGACCATCCAGGTTCTGACACAGGCCCGCGAGCACCTGATTGAGCGGACCTATGAGTCCCTGGTCGGCGCCAAGCAGGCCATCGTCCATTTGTACAACTCCACCTCGGTCCTGCAGCGCCGCGTGGTGTTCAACCAGGACGAGGACGGCATCCTGGACATCGCGCTCCAGGGCGCGCGGCTGTGCAAGAAGTACGAGGAAACGCTGGTGGATACCCACATCACCTACGAATACTCCCCGGAGTCCTTCACCGGCACGGAACTTGAGTATGCCGTGCGCGTATGCAACGCCGTCGCCAATGTTTTCGAGGCCTCCGCTGACAGCCAGGTCATCATCAACCTGCCCGCCACCGTGGAAATGGCCACGCCGAACGTTTACGCCGATTCCATTGAATGGATGAGCCGGCATCTGCACCCACGTGAGGGAATCATCCTCTCGCTGCACCCGCACAACGACCGCGGCACCGGAGTGGCAGCCGCCGAGCTCGGCTACATGGCAGGCGCGGACAGGATCGAAGGCTGCCTCTTTGGCAACGGCGAGCGGACCGGCAACGTGGACCTGGTCACGCTCGGCCTGAACCTGTTTGTGCAGGGCATCGATCCGATGATCGATTTCTCGGACATCGACGACATCCGCCGGACAGTGGAGTACTGCAACCAGCTGCCCGTGGCCGAGCGGGCCCCCTACGGCGGAGACCTCGTCTTTACCGCATTTTCCGGCTCGCACCAGGACGCCATCAAGAAGGGCTTCGAAGCCCTGGAGCGGGATGCCGCCGCGGCCGGGGTCAACGTGGCTGACTTCACGTGGCAGGTCCCGTACCTGCCTGTAGATCCCAAGGACCTGGGGCGCAGCTACGAAGCCGTCATCAGGGTCAACTCCCAGTCCGGCAAGGGCGGCGTTGCCTACCTGCTCAAGAACGAGCACAGCCTGGACCTGCCGCGGCGTGCGCAGATCGAATTCTCCGGTGTTATCCAGAAGCGGACAGACACCGTCGGCGGCGAAGTCAGCGGCACGCAGCTCTGGCAGGCATTCCAGGATGAATACCTTCCTTCCGGCGCCGCTGACGGCCAGTGGGGACGCTATTCGCTGGGTTCGGTCAGCACCGAAACGGACGACGACGGCGGCATGACGCTGCATGCTTCCCTCACCATTGATGGAGTGCAGGTCCGCCGCACGGGCACCGGAAACGGGCCGATTGCCGCGCTGCTGAACATCCTGCATGAAGACGGTGTGGACGTCCGTGTCCTGGACTACAGCGAGCATGCCCTGTCCGAGGGCGGCAACGCCATGGCGGCGGCGTACGTCGAATGCGCCGTGGGTGACCGCGTGCTCTGGGGAATCGGCATCGACTCCAACACCAGCATGTCATCGCTCAAAGCCGTGATCTCTGCGGTCAACCGCGCCATCCGGGATTCCCGCGCCTAGMQNAQKPSGMPAHRYRPFQDLITVELPDRTWPDKVITHAPRWCAVDLRDGNQALIDPMSPARKMKMFDLLVRMGYKEIEVGFPSASQTDFDFVRQLIEGNHIPDDVTIQVLTQAREHLIERTYESLVGAKQAIVHLYNSTSVLQRRVVFNQDEDGILDIALQGARLCKKYEETLVDTHITYEYSPESFTGTELEYAVRVCNAVANVFEASADSQVIINLPATVEMATPNVYADSIEWMSRHLHPREGIILSLHPHNDRGTGVAAAELGYMAGADRIEGCLFGNGERTGNVDLVTLGLNLFVQGIDPMIDFSDIDDIRRTVEYCNQLPVAERAPYGGDLVFTAFSGSHQDAIKKGFEALERDAAAAGVNVADFTWQVPYLPVDPKDLGRSYEAVIRVNSQSGKGGVAYLLKNEHSLDLPRRAQIEFSGVIQKRTDTVGGEVSGTQLWQAFQDEYLPSGAADGQWGRYSLGSVSTETDDDGGMTLHASLTIDGVQVRRTGTGNGPIAALLNILHEDGVDVRVLDYSEHALSEGGNAMAAAYVECAVGDRVLWGIGIDSNTSMSSLKAVISAVNRAIRDSRANANANANANA
D1-29_026721953pepOCOG3590Neutral endopeptidaseGTGCCCATCTCGGGGATCGACCTGTCCAACATTGATCACACCGTCCGGCCGCAGGATGACCTGTACCAGCACGTCAACGGGGCATGGCTCAAGGCCACCGAAATTCCCGACGACCGCCCGCTGGAAGGAACGTTTACGGCCCTCCGCGACGGCGCGGAGATTGCGGTCCGGGACATCATCGAGGAAGCCGCGGGGAAGGGTGAAGAGGCCAGCGGGATAGAACGGAAGGTGGGCGACCTTTACAACAGCTTCATGGACGAAGCCACGGTGGAGGCCAAGGGCATGGAGCCCATCCGGCACCGGCTTGCCGAGGTTTTTGCCGCCACCACGGTCGGCGAACTCGTCGCCCTTGTCGGGCGGCTGTTCCGGGCTGACGTTTCGGGCCTCTTTTACATCTACCCGGCACCCGACGCGGGCAACCCGGACAGGATCCTGCTATACACCGGCCAGGGAGGGCTGGGCCTGCCGGACGAATCCTATTACCGGGAAGAGAAATTCGCCCCCATGGTCACGGCGTACGGTAACCACGTGCGGACCATGTTCTCCCTGGCCGGCCTGGACAATGCTGAGGCCGCCGCCGGCCGGGTGATCGGGCTGGAGACCAAACTGGCTTCCCACCACTGGGACAACGTCACGCTCCGGGACCCGCAAAAGACCTACAACCTCAAGACGTCAGAAGAGGCCGTATCCCTGTTCCCGCTGATGGGCACCTGGTTCGAATCGGCCGGGATCGATGCGGACAAGCGGCAGGAAATCGTGGTCAGCACTCCGGATTTCTTCAGCGGCGCGGCGGGACTGCTTGAATCCGAGCCCCTGTCCGTCTGGCAGGAGTGGCTGGCCATGCGCGTGATCAGCGCCGCCGCACCCTACCTGTCCTCAGCTTTTGTGGATGCAAACTTCGCGTTCTACGGCACCACCATCAGCGGCACACCCCGAAACAAGGACCGCTGGAAGCGGGGCGTCGGCGTCGTCGAAGCAGCCCTGGGTGAAGCGGTGGGCCAGATTTATGTCGCACGTCATTTCCCCGAAACCCATAAGGCCCGGATGCAGTCCCTGGTGGCCAATCTCATTGAGGCGTACCGCCAGAGCATCACGGACCTTGAGTGGATGGGCGAGCAGACCAAGGAAGAGGCGCTCCGGAAACTGGGCGCCTTCCGCGCCAAGATCGGTTACCCGGACAAATGGATCGACTACTCCGCCGTGGAAATCGACCCAACCGACCTCCTGGGGAACGTTGAGCGCGCGCACAATGCCGACGTCGACCGGCACCTTGATGAGGTGGGCAAACCGGTGGACCTGGACAAGTGGCTGATGACTCCCCAGACCGTCAACGCGTACTACCACCCGATGCTCAACGAGATCGTCTTCCCGGCCGCCATCCTGCAGCCGCCGTTCTTCACCGCGGATGCCGATGACGCCGTCAACTATGGCGGGATCGGCGCTGTCATCGGCCACGAAATCGGTCACGGTTTTGACGACCAGGGTTCACAGTTCGACGGCGGCGGCGCCCTCCGGAACTGGTGGACGGAGGCGGACCGGACGGCGTTCGAGGCACTAACCGCGAAGCTTGTCGCCCAGTTCGAGGTCCTCTCCCCCTATGCCGCGCCGGGGCACTACGTCAACGGCAAACTCACCCTCGGCGAAAACATCGGCGACCTGGGCGGACTGACCATCGGCTACAAGGCCTACCTCCTCAGCCTGGACGGCAAGGAGCCCGAGGTACTGGACGGGCTGACCGGCCAGCAGCGCTTCTTTGCATCCTGGGCGGCCGGTTGGCGCCAGGTCATCCGGACCGAAGAGGCCATCCGGAGGCTGGCCACGGATCCGCACTCCCCCAACGAGTTCCGGACCAATGCCATCGCCAGCAACCTGGACGCCTTCCATGAGGCCTTCGGCGTCACGGACCAGGACGGCATGTGGAGGTCACCGGAGGAGCGCGTCAGCATCTGGTAGMPISGIDLSNIDHTVRPQDDLYQHVNGAWLKATEIPDDRPLEGTFTALRDGAEIAVRDIIEEAAGKGEEASGIERKVGDLYNSFMDEATVEAKGMEPIRHRLAEVFAATTVGELVALVGRLFRADVSGLFYIYPAPDAGNPDRILLYTGQGGLGLPDESYYREEKFAPMVTAYGNHVRTMFSLAGLDNAEAAAGRVIGLETKLASHHWDNVTLRDPQKTYNLKTSEEAVSLFPLMGTWFESAGIDADKRQEIVVSTPDFFSGAAGLLESEPLSVWQEWLAMRVISAAAPYLSSAFVDANFAFYGTTISGTPRNKDRWKRGVGVVEAALGEAVGQIYVARHFPETHKARMQSLVANLIEAYRQSITDLEWMGEQTKEEALRKLGAFRAKIGYPDKWIDYSAVEIDPTDLLGNVERAHNADVDRHLDEVGKPVDLDKWLMTPQTVNAYYHPMLNEIVFPAAILQPPFFTADADDAVNYGGIGAVIGHEIGHGFDDQGSQFDGGGALRNWWTEADRTAFEALTAKLVAQFEVLSPYAAPGHYVNGKLTLGENIGDLGGLTIGYKAYLLSLDGKEPEVLDGLTGQQRFFASWAAGWRQVIRTEEAIRRLATDPHSPNEFRTNAIASNLDAFHEAFGVTDQDGMWRSPEERVSIWNANANANANA
D1-29_026731578tagU_2Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUGTGGTGCAACGCCGCGACAAACGCGACAACGGAGCTGACCCGTCAGCCGGAACCGGGCCAGTTTCCCGTCACGCGGAAGGCACCGCCGTCGGCTCCGCCCGCCATCTCGGAGCACAGCCAGGGATGCCCGCGTGGCTTAAGGTGATCGCCGCCGTCGTCTCGGTCCTGGTAGTGGGAGGCCTTGCGTTTGCCGGGTTTTGGTTCTTCCGCCTGCAGTCGAACATTACCAAGGCACCGCTGACCGCCGGCTCGGGTACGGCGAACCCAGTGAACGACTCATCCGACAGGATGCAGATCCTCATTCTGGGCTCGGACACGCGGGACGGCAAGAACGCCGAGTACGGTACCGCAGAGGACTCCTCAGGCTACGGACAGTCGGATGTGATGATGCTGATGGACATCTCCGCCGACAACAAGCGCGTCAATGTCATCAGCTTCCCCCGGGACCTCCTGGTTGACATCCCCGAGTGCACGGACCAGAAGACCAAACAGGTCTATCCGGCCAGGAGTGGTGTCATGATCAATGAGGCCATGGCCGAGGCCGGCATCGGCTGCGCTGTGGACACCGTGAACAAGCTGACCGGTCTCGAAATCGACCACTTCATGATGGCGGACTTCAACGCCGTCAAGGAGCTTTCCAACACGGTGGGCGGTGTGGAGGTCTGTATCAGCGACGCCGTCTACGACCCCGATTCCCGTCTGAGGTTGCCGAAGGGGACGTCCTCCGTGGAGGGCGAACAGGCACTGGCCTTCCTGCGCACACGGCATGCCTTCGCCGACGGCGGGGACTTGGGCCGCATTAAGGCCCAGCAGGGATTCCTCTCGTCGCTCACACGGAAAATCAAGGACGAGGGTACGCTGTCCGATCCTGCGAAGATGCTCCGGATTGCCGATGTCGTCACCCAAAACCTCACAGTCGATGAGGGACTTGCATCCGTTCCGTCACTCCTGACTATCGGAAACCGGCTGAAGAATATCGACGTCAGCAAGGTGGCGTTTGTCGCCGTGCCCACCACCACAGCAGTGGCAGACCTTAACCGCCTCCAGATCGCCGAACCCGCAGGATCGCAGTTGTTCGCAGCCCTCCGCAAGGACGTCGATCTAACGGACCCCACGGCTCCAGCCGCCACTCCCACGGCCACTCCGTCGCCGACGGACAGTGCGCCTGCCCCTGCGCCGACTGAAACACCGGCGCCGCCTTACGACAAATCCGCGCAGCCCGTCACCGTGGCGAACGGAACAGGTGTCGCCGGCCGCACCCAGGAAATTGCGCAGGCGTTGATTTCCGGAGGCTTTACCCAGCTTGGGCAGCTGGAAGCGGTACCGGTGGCGCAGTCCGTGGTCTATTACGGGCCGAACCACGCCGATGTGGCCGCCGACGTGGCCGCGCTGCTCGGGATCCCGGCCGAGCAAATACAGCCCGCACCAGCGTTAATCGGTGTGCAGGTCTACCTTGGCGAAGATTTCTCCTCGGGCATCACTTATGGGGCCACGACTGTGCCCAAGGACATCGTGAACCAGACTGCAGGGGACGCCGTTTGCCAGCAGGCCAACCCGGCGCTCATCGTCCAGGGCTGAMVQRRDKRDNGADPSAGTGPVSRHAEGTAVGSARHLGAQPGMPAWLKVIAAVVSVLVVGGLAFAGFWFFRLQSNITKAPLTAGSGTANPVNDSSDRMQILILGSDTRDGKNAEYGTAEDSSGYGQSDVMMLMDISADNKRVNVISFPRDLLVDIPECTDQKTKQVYPARSGVMINEAMAEAGIGCAVDTVNKLTGLEIDHFMMADFNAVKELSNTVGGVEVCISDAVYDPDSRLRLPKGTSSVEGEQALAFLRTRHAFADGGDLGRIKAQQGFLSSLTRKIKDEGTLSDPAKMLRIADVVTQNLTVDEGLASVPSLLTIGNRLKNIDVSKVAFVAVPTTTAVADLNRLQIAEPAGSQLFAALRKDVDLTDPTAPAATPTATPSPTDSAPAPAPTETPAPPYDKSAQPVTVANGTGVAGRTQEIAQALISGGFTQLGQLEAVPVAQSVVYYGPNHADVAADVAALLGIPAEQIQPAPALIGVQVYLGEDFSSGITYGATTVPKDIVNQTAGDAVCQQANPALIVQGNANANANANA
D1-29_02674975era_1COG1159GTPase EraGTGAGCAAGAAAAATAGGCCGCTGGCTAACCAGGATTCTGCCAAGCCGGACTTCGGCGGCTTCCGCGCAGGCTTCTCGGTGCTCGTTGGCCGGCCCAACGCCGGCAAGTCCACCCTCACCAATGCGCTGGTGGGCAAGAAGGTGGCCATCACGTCTGCCAAGCCGCAGACCACCCGTCACACCATCCGCGGAATCGTCCACCGCGAGGACGCACAGCTGATCCTGGTGGACACGCCGGGCCTGCACCGCCCGCGCACGCTGCTGGGCAAACGCCTCAACGACCTGGTGGCTGACACACTGGCCGAAGTTGACGCTATCGGTTTCTGCCTGCCGGCCAACGAAAAAATCGGCCCCGGGGACAAGTACATCGCCGCCCAACTGGCTGCCGTTGGACGAACGCCGCTCATCGCGATTGTCACCAAGGCGGACCTTGTGGACCGCCAGGCGCTGACCGAACAGCTCCTCGCCGTCGCGGCCCTCGGCCGCGAAGTACTGGGGGAGGAAGGCTGGAAGGACATTGTTCCAGTTTCCGCTGCCGACGGCTTCCAGGTGGGCACTCTGGCCGATGTCCTGATCAGCCACATGCCGCCGTCGCCGCCGCTGTACCCGGACGGTGAACTGACCGACGAGCCCGAGGCCGTTATGGTGGCAGAACTTATCCGTGAAGCGGCCCTGGAAGGTGTCCGGGACGAACTACCGCACTCCCTGGCAGTGGTGGTGGACGAAATTGTGGCCCGCGAGGGCCGCGCAGAAGACAACCAGCTCCTTGACGTGAGGGTCAACCTGTATGTTGAGCGTCCCTCACAGAAGGCCATCATCATCGGAAAGGGTGGCAGCCGGCTGCGCGAAGTGGGCACCAACGCCCGGAAAGGCATCGAAGCGCTCCTGGGCACGCGTATCTACCTTGACCTTCATGTGAAGGTTGCCAAGGACTGGCAGCGGGATCCCAAACAACTGGTAAAACTCGGTTTCTGAMSKKNRPLANQDSAKPDFGGFRAGFSVLVGRPNAGKSTLTNALVGKKVAITSAKPQTTRHTIRGIVHREDAQLILVDTPGLHRPRTLLGKRLNDLVADTLAEVDAIGFCLPANEKIGPGDKYIAAQLAAVGRTPLIAIVTKADLVDRQALTEQLLAVAALGREVLGEEGWKDIVPVSAADGFQVGTLADVLISHMPPSPPLYPDGELTDEPEAVMVAELIREAALEGVRDELPHSLAVVVDEIVAREGRAEDNQLLDVRVNLYVERPSQKAIIIGKGGSRLREVGTNARKGIEALLGTRIYLDLHVKVAKDWQRDPKQLVKLGFNANANANANA
D1-29_026751332hypothetical proteinGTGACGCCCCTGCTCCTCGTTTTTATGGCTCTGGCCTTCCTCAGCATTGCCGCGCTTCTGACCGCGGCGGAGGCCGCTTTCAACTTCCTTCCGCGGCATGACGCCGAAGAAGCGCTCCTCAAGAGCCGCGGAAATGCCATGCAACGGATCCTCGCGCAGCCTGTGGCGCACATCCGCGCGCTGCGTTTTTGGCGGATCTGGTTCGAGATGGCCTCCGCCGTCGCCGTCGCCGTCCTGCTCCACAGCCTGCTGGACAACGTGTGGCTGGCCGGCCTGGCAGCCACCGGGATCATGGCACTCGTCGGATTTGTGATCGTGGGAGTGTCCCCGCGGCAGCTCGGCAGGCTCCATTCCGCGGCCGTGGTGCGCTTCACCGCACCGTTGATCCGGCTGCTCACCTGGGTGCTGGGCCCCATTCCTGCCTGGCTGGTGGCGTTGGGCAGCGCGGCAGCCCCTGGCGCGCCCGGCGGCGATGAGGCCTTCTTCAGCGAACAGGAGTTCCGGGAGCTGGTGGACAGGGCCAGCGAATCGGACATGATCGAAGACACCGAGGCGGAGATGATCCAGTCCGTCTTCGACTTCGGCGATACCCTGGTGCGTGCTGTGATGGTTCCGCGGACCGACATCCTCAGCATCGACGCCGGCTCCAGCCTCAGGAGGGCCATGTCCCTTTTCCTGCGCTCCGGCTACTCCCGCATCCCCGTGATCGGCGAAAGCACCGACCAGATCCTCGGCATTGTGTACCTCAAGGACGTTGCCGCAGCCCTTCACGAGCTGGGCCCCGACGCCGAGCCGCCGCCAGTGGAGGCCCTCGCGCGTGAAGTCCGCTATGTTCCGGAATCCAAACAGGTCAGTGACCTGCTGCGTGAACTGCAAAAGGAATCGACGCACGTTGCCATCGTTATCGATGAATACGGCGGTACCGCCGGCCTTGTCACGCTGGAGGACCTCATCGAAGAAATCGTCGGTGAGATCGTGGATGAATATGACACCGAAAGCGCCGAAGCAGTGGCACTGGGGGACGGCTCCTTCCGGGTAAGCGCGCGGATGAGCATCGATGATCTTGGCGAACTGTTCGATATTGAACTGGACGACGATGAGGTGGACACCGTGGGCGGGCTCCTTGCCAAAGCCCTGGGCCGCGTTCCCATCGTGGGGAGCACCGTTGAAGTAAGCGGTGTGTCCCTGCGGGCCGAACGGCTCGAAGGGCGCCGCAACCGCGTCAGCCACATCATTGCGGCGCCGGCACCAAAAGTAGACACTGACCTTGAAGACCTCCTCAATGAGGCGGAAACAACCCAGCAGGGAGTTCCACGTGAGCAAGAAAAATAGMTPLLLVFMALAFLSIAALLTAAEAAFNFLPRHDAEEALLKSRGNAMQRILAQPVAHIRALRFWRIWFEMASAVAVAVLLHSLLDNVWLAGLAATGIMALVGFVIVGVSPRQLGRLHSAAVVRFTAPLIRLLTWVLGPIPAWLVALGSAAAPGAPGGDEAFFSEQEFRELVDRASESDMIEDTEAEMIQSVFDFGDTLVRAVMVPRTDILSIDAGSSLRRAMSLFLRSGYSRIPVIGESTDQILGIVYLKDVAAALHELGPDAEPPPVEALAREVRYVPESKQVSDLLRELQKESTHVAIVIDEYGGTAGLVTLEDLIEEIVGEIVDEYDTESAEAVALGDGSFRVSARMSIDDLGELFDIELDDDEVDTVGGLLAKALGRVPIVGSTVEVSGVSLRAERLEGRRNRVSHIIAAPAPKVDTDLEDLLNEAETTQQGVPREQEKNANANANANA
D1-29_02676474ybeYCOG0319Endoribonuclease YbeYGTGAGCATTGAGGTTAACAACGAATCCGGCATCCAGGTGGATGAGGCGGAGCTGGTAGCCCTGTCCCGGTACATCTTCGAACAGCTGTATATCCATCCGCAGGCGGAACTGTCCATTCTCCTGGTGGACGAACCTGCGATGGAGAAGCTCCATATTGAGCTGATGGACGAGCCTGGCTCCACCGACGTGCTTTCAGTGCCCATGGACGAACTCACTCCCGGCACTCCGGACCGCCCCACCCCCCAGGGGATGCTCGGCGACATCGCGGTCTGCCCGCAGGTGGCCCAGGTCCAGGCAAAGAACGCCGGCCACGCGCTGCAGGATGAGATGCTCCTCCTGACTACGCACGGCATCCTCCATCTCCTCGGTTACGACCATGCCGAGCCTGAGGAGAAGGCCGAGATGTTCGGTCTGCAGCGCGAACTGCTTTCGGGCTTCACGGGCAAAGAAGCACCCGCCGAGACCACGCAGTGAMSIEVNNESGIQVDEAELVALSRYIFEQLYIHPQAELSILLVDEPAMEKLHIELMDEPGSTDVLSVPMDELTPGTPDRPTPQGMLGDIAVCPQVAQVQAKNAGHALQDEMLLLTTHGILHLLGYDHAEPEEKAEMFGLQRELLSGFTGKEAPAETTQPGPT0002700_49DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
D1-29_026771197hypothetical proteinGTGACCGTCGGCGGGCGGCAAACGCCCCGCCGCTCCAACCGCCATCGGCAGCGTTATCCGCAGTGTTTACTCGAAGTGAAGGGGACCTCAGGCCAGCGGGCCGGCACCATGACTGAATCAGCGAACGGAAAGCGCCGGTTGAACACCGGAGAGCGCGCCGCAGGAGAATTCCCGCACACCCTTCCTGGAATTCGGACGGAGGTGGTTCTCTTTGACAACTCCGATCAGATGGTTCAATCGCTCGGCAGCCACGATGAGGCCTTGCGCTTCATTGAGGAACAGTTCCCGGCCGTTAACTTCCACGTCCGCGGAAATGAACTCTCCATCAGCGGACCGGCCACGGACGTTCCCCGGATCATGCGGCTGCTGCACGAAGTGCGCGAACTGGTGGCCCGCGGTACCGTGATCAGCCCCGCCGTGCTTCAGCAGCTGGTTGTCTTACTGCGCAGCCAGTCACTGCAGAACCCGGTGGACGTCCTGACCCATGACATCCTTTCCAGCCGCGGCAAGACGATCCGGCCCAAGACGCTGAACCAGAAAAACTACGTTGACGCCATCGACGAAAACACCGTTATTTTCGGGATCGGCCCCGCAGGTACCGGCAAAACCTACCTGGCCATGGCCAAGGCGGTGCAGGCACTCCAGCAGAAGGAAGTCAGCCGCATCATCCTGACCAGGCCTGCCGTCGAGGCGGGTGAACGGCTGGGTTTCCTGCCCGGGACGCTGAGCGACAAGATCGACCCTTACCTGCGCCCGCTCTACGACGCCCTGCACGACATGATGGACCCCGAATCCATTCCGCGGCTGATGGCCGCGGGAACCATCGAGGTGGCGCCCCTGGCCTACATGCGCGGCCGGACGCTCAATGATGCGTTCATCATCCTCGACGAGGCCCAGAACACCACGCCGGAACAGATGAAGATGTTCCTGACCCGCCTGGGATTCGGTTCCAAGATGGTGGTCACCGGAGACGTAACGCAGGTTGACCTGCCTTTTGGCACGCGGTCGGGGCTGCGCATCGTTGAGGAGATCCTGCAGGGCATTGAGGACGTAAACTTCTCGGTCCTGGACTCCACCGACGTGGTCCGGCACCGTTTGGTGGGCGACATCGTCCGGGCCTACAGCCTCTGGGATGACGTCCAGCGGAACCGGGTCAAGCACTCGGTGGCCAGGGAGAAGCGGGCGGAACACGCGTGAMTVGGRQTPRRSNRHRQRYPQCLLEVKGTSGQRAGTMTESANGKRRLNTGERAAGEFPHTLPGIRTEVVLFDNSDQMVQSLGSHDEALRFIEEQFPAVNFHVRGNELSISGPATDVPRIMRLLHEVRELVARGTVISPAVLQQLVVLLRSQSLQNPVDVLTHDILSSRGKTIRPKTLNQKNYVDAIDENTVIFGIGPAGTGKTYLAMAKAVQALQQKEVSRIILTRPAVEAGERLGFLPGTLSDKIDPYLRPLYDALHDMMDPESIPRLMAAGTIEVAPLAYMRGRTLNDAFIILDEAQNTTPEQMKMFLTRLGFGSKMVVTGDVTQVDLPFGTRSGLRIVEEILQGIEDVNFSVLDSTDVVRHRLVGDIVRAYSLWDDVQRNRVKHSVAREKRAEHAPGPT0002700_513DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
D1-29_02678960hypothetical proteinGTGCCGGGAAGAGCGTCGCCCCTTGCCGCGGGACCACTCTGGAAACGGGTCCGCTCTGCAGGCCTCCTGGGTCTCCTGCCTGTTGTCCTTGTCCTCACGGGCTGCATCGCCGCCCCCGGCCCCGAGCCGACACTGGCGTCTCCCACCACCGGTGCGGAAAGCACCCTCCCTCCCGGCGCACCTACCACCAGTGCCCCGCTTGAAACCACGCAGTCATCCAACAAAGCGCCTGTCTACTGGATCGGCCGCAGCAACAGCAACGTTTTCCTGTACCGGGAGTTCAGGGATGTGCCCGAGCAGGAGAACCCGGTCACCCGAGCACTGCGTGCCATGATGTCGGACAAGCCACTTGATCCGGATTTCTTCACGCCCTGGCAGAACCCCAAGAAGCTGGCCACATCGATCTCCGGCAAGAACGTCATCACCGTCGACGTCTCCGAGGATGCCTTCAACAGCAACCTGGACGCCGACATGGCGGCCCGTGCCATCCAGCAACTCGTCTATACGGCCACGGCGGCAGGTGCGAGTTCGGGCCTTATCGACTCCGGCCAGCAGATCCAGGTAATGGTGCTGGTGGACGGCCACACGGACTACCTCGCCTTCAACCACATCCGGCTGGGAACACTGATGTCCCGTACGGCAGGCATGGTGGCACCGGTGTGGATCATTGACCCGCAGGAAGGTGTGGACGTGCCTGACGGCAGCGTCAAGATCACTGGACGCAGCACGGCTCCCGGCGGCAAGCTCCGTTGGCAGATCCTGGAGGTCCAGGACAACGGGGACATGACTCCTTTCCTGACAGGCGAGACAACCGCCGCCGCAGAGCCCGGTCAGTCAGGCGTGTTTACTTTGGCGCTGACCCTCACACCGGGCAACTATGAGCTGCGCGTGTCCCAGCTGGATACGGTGGGAAACCGGCAGGACCTGAATGTGGACACCCGGGGTTTCAGCGTCCGGTAGMPGRASPLAAGPLWKRVRSAGLLGLLPVVLVLTGCIAAPGPEPTLASPTTGAESTLPPGAPTTSAPLETTQSSNKAPVYWIGRSNSNVFLYREFRDVPEQENPVTRALRAMMSDKPLDPDFFTPWQNPKKLATSISGKNVITVDVSEDAFNSNLDADMAARAIQQLVYTATAAGASSGLIDSGQQIQVMVLVDGHTDYLAFNHIRLGTLMSRTAGMVAPVWIIDPQEGVDVPDGSVKITGRSTAPGGKLRWQILEVQDNGDMTPFLTGETTAAAEPGQSGVFTLALTLTPGNYELRVSQLDTVGNRQDLNVDTRGFSVRNANANANANA
D1-29_02679783rsmECOG1385Ribosomal RNA small subunit methyltransferase EGTGAGCAATCCGGTTTTCTTCAGCGCGGCCGGGTCCCTGGACCAGATGGAACCTGGCCGCCGATTTGTCCTTGAGGGGCCGGAGGCACGCCACGCGGTAACGGTCAAGCGCCTCGCCCCCGGGGAATCTGTGGATATCGCCGACGGCGCCGGTAAGCGGCTCACCGGAACTGTCATTTCGGCGCAGCCGGCTGAACTGACGGTGGAATGCTCGGGACTTGCGCTTGAAGAACGCCCCGACGTCCGGCTGGTCCTGGTCCAGGCGCTGGCCAAAGGTGACCGGGATGAACTTGCCGCCGAAACGGCAACAGAACTCGGCATCGACGCAGTGATCCCCTGGCAGTCCGAACGCTCCATTGTGCGTTGGAAGGGTGAGCGCGCAGTCAAATCCCACGCCAAATGGCAGTCGGTTGTTGCGGCGGCGGCCAAGCAGGCCCGGCGGGCATGGATCCCTGAGGTGCGGGCCGCCGTCGACACCCAGGGCCTGGCGGCCGCTGTGGCGTCAGCGGACCTGGCCGTGATTCTGCATGAGGATGCTGTCCGGCCGCTAAGGACTGTCCTGGAAGCCTGGCAGGATTCGGATACCGGAACCAGTCCCCGGGAAGTCCTCCTCATCGTTGGGCCGGAGGGCGGCATCAGCCCGCGCGAAGTCACACGGCTCTGTGATGTCGGCGCAGTGACGGCGCTCCTGGGACACCATGTGCTGCGTTCCTCCACGGCAGGCCCGGCAGCCGTGGTGCTGGCAAGTGATGTACTGGGCCGCTGGGCCGCACCTGCCGGCTAGMSNPVFFSAAGSLDQMEPGRRFVLEGPEARHAVTVKRLAPGESVDIADGAGKRLTGTVISAQPAELTVECSGLALEERPDVRLVLVQALAKGDRDELAAETATELGIDAVIPWQSERSIVRWKGERAVKSHAKWQSVVAAAAKQARRAWIPEVRAAVDTQGLAAAVASADLAVILHEDAVRPLRTVLEAWQDSDTGTSPREVLLIVGPEGGISPREVTRLCDVGAVTALLGHHVLRSSTAGPAAVVLASDVLGRWAAPAGNANANANANA
D1-29_026801128dnaJ2COG0484Chaperone protein DnaJ 2TTGAGCAGCCACTACGACGTCCTGGGAGTCTCGCCGGAAGCCACCGGAGAAGAGATCAAGAAGGCCTACCGGAAGCTTGCCCGCACCCTCCACCCGGACGTGAATCCCGGTGACGATGCGTCGGACCGCTTCAAGGCTGTGACGCACGCCTACGAGGTGCTTTCAGATCCACAGAAGCGCCGTGTTTACGACACCACCGGCAATGAAAACGGCACGGACAACGGTTTCGGTGGCGGTGGGTACGCCGGCCAGGGCTTTGCCTTCCAGGACATCTTCGACACCTTCTTCGGTGCCAGCGGTTCGTCGGGGCCTGCTTCACGCGTACGCCGGGGACAGGACGCGCTGATCAGCGTCCGGATTGAACTCCGTGACGCCGTCTTCGGCGTTAATAAGAAGCTCGAAGTGGACACGGCCGTCACCTGCCCCACCTGCAACGGTTCGTGCTGCCGCGAGGGAACCCACCCGGAGCGCTGCGACATCTGCGGCGGCAGTGGCCAGGTCCAGCGCGCAGTCCGTTCCATCCTTGGCCAGGTCATGACGGCGGCGCCGTGCGGTACCTGCGAAGGATTTGGAACTGTCATCAAGGACCCCTGCAACGAGTGCAGCGGGCAGGGACGGATCCGCAGCCGGCGCTCCCTGACTATCAAGGTACCGGCCGGAGTTGCCACCGGAACCCGTATCCAGCTCTCGGGCCAGGGCGAAGCGGGCCCCGCTGGAGGCCCCGCCGGAGACCTGTACGTCGAAATCCGGGTCAATAATGACGCCACTTATGTCCGCGATGGCGACGACCTGCACGCCACGCTCAACATTCCCATGACGGCGGCCGCGCTCGGAACGGAACTCGCGCTCGAGACCTTCGACGGGCTGCAGGAGATTGACGTCAAGGCCGGCACGCAGTCGGGCGAGATCATCACCCTCCGCGGCCTTGGCGTGACGCACCTGCGCGGCTACGGCCGCGGCGACCTGAAAGTGCATCTGCAGGTTGAGACGCCCTCCAAGCTTGATGCGGCCCAGGAAGACCTCCTGCGGCAGCTGGCAAAGATGCGTGGTGAGCAGTTTACCGAGGGGAAGCTGGCCGCCAGCGGCGGTGTCTTCGCCAAACTTCGGGACCGGCTCGGTAACCTGTAGMSSHYDVLGVSPEATGEEIKKAYRKLARTLHPDVNPGDDASDRFKAVTHAYEVLSDPQKRRVYDTTGNENGTDNGFGGGGYAGQGFAFQDIFDTFFGASGSSGPASRVRRGQDALISVRIELRDAVFGVNKKLEVDTAVTCPTCNGSCCREGTHPERCDICGGSGQVQRAVRSILGQVMTAAPCGTCEGFGTVIKDPCNECSGQGRIRSRRSLTIKVPAGVATGTRIQLSGQGEAGPAGGPAGDLYVEIRVNNDATYVRDGDDLHATLNIPMTAAALGTELALETFDGLQEIDVKAGTQSGEIITLRGLGVTHLRGYGRGDLKVHLQVETPSKLDAAQEDLLRQLAKMRGEQFTEGKLAASGGVFAKLRDRLGNLPGPT0014545_4328DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
D1-29_026811014hrcACOG1420Heat-inducible transcription repressor HrcAGTGAGCGAGCCACGCAAACTGGAAGTACTGCGTGCCATCGTGGAGGACTATGTGCACTCCCGGGAGCCCGTCGGTTCGAAGGCGCTTGTTGAGCGCCACCATCTGGGCGTGTCCAGCGCCACCATCCGAAACGACATGGCTGCCTTGGAGGACGAGGGGCTTATTACCGCCCCGCACACCAGCGCCGGTCGGATCCCCACGGACAAAGGCTACCGGCTGTTCGTGGACCAGATCTCGGCCGTGAAGCCGCTGTCCCCTGCCGAACGGCGTGCCATCCAGTCACTGCTGGAGGGCTCGGATGATCTTGACGATGTCCTGGACCGCACGGTCAGGCTTTTGTCCCAGCTGACCAACCAGGTAGCAGTGGTGCAGTATCCGCACTTGAGCCGCGCCTCCATCCGGCATATCGAATTTGTGCTCCTGGGGCCCCGGAAGGTCCTTGTGGTGCTGATCGCGAACACCGGCAAGGTGGAACAACGTGTGATCGACATCGGCCAGGACCTGGGCGATGATGCCATCGCCGGGCTCCGCGCCCGGTTCCTTGGCTCACTCTCTGGGACGCCTCTAAGCATGCTGACGCAGTCGCTGCCGGCGGTGGTCTCTGCTGTCAGCCCTGGCCAGCGGCAGGCAGCACAGGCCCTGGCGCACGGGCTGGAAAGCCTGGCGCACAACAGCCGTGAAGAGCGCATGGTCATGGCCGGCACGGCAAACCTGGCCAGGTCCAACGTGGATTTCCCGCTGAGTATCGGGCCGGTGCTCGAAGCCCTCGAGGAACAGGTGGTGATGCTGCGCCTGCTCAGCGAGATGGCGCAGGACCCCCGGGGGGTTACTGTAAGCATCGGCCGGGAAAATCCCTACGACGGCCTGGCCGAAGCATCGGTAGTGGCCACCAGTTACGGTCCGGACAGCACAGCAAAGATTGGTGTTCTCGGTCCCACCCGGATGGACTATCCCACCACCATGGCCGCCGTGCGGGCTGTAGCCCGCTACCTTTCACGAATTTTGGGCCCGTGAMSEPRKLEVLRAIVEDYVHSREPVGSKALVERHHLGVSSATIRNDMAALEDEGLITAPHTSAGRIPTDKGYRLFVDQISAVKPLSPAERRAIQSLLEGSDDLDDVLDRTVRLLSQLTNQVAVVQYPHLSRASIRHIEFVLLGPRKVLVVLIANTGKVEQRVIDIGQDLGDDAIAGLRARFLGSLSGTPLSMLTQSLPAVVSAVSPGQRQAAQALAHGLESLAHNSREERMVMAGTANLARSNVDFPLSIGPVLEALEEQVVMLRLLSEMAQDPRGVTVSIGRENPYDGLAEASVVATSYGPDSTAKIGVLGPTRMDYPTTMAAVRAVARYLSRILGPNANANANANA
D1-29_02682846hypothetical proteinATGCAATACCAGAACTGGGGACCGCAGGAGATAGCCACCCCCGCCCGAAACCAGCTGCCTGAAATCCCCGTGGAGCGCGGCATGGTCCTGGAGGACGTCCAGTCCGGCTGGGTGGGAGCTGTCACGCGGGTGGAGAAATCCGGCGGCATGCACGTTGTGGCGCTGGAGGACCGGCGCGGCAAATCGCGGTCCTTCCGCCTGGGTTTTGGGTTCCTCCTGGAGGGCCGGCCCATCCGGCTCATGCCGCCCGCTCCCCGGCAGGCCGCCCCTGCCGGCGGCCGGACTGCGTCCGGGTCGGTACGGGTCGCGGGCCAGCGGGCCCAGGTGGCCAAGGCGAGCAGGATTTGGGTGGAGGGAAAGCACGACGCCGAACTGGTGGAAAAGGTCTGGGGAGACGACCTCCGAGTGGAGGGCATCGTCGTCGAGCCTTTGCACGGCATCGATGATCTTGCGGGGGCTGTCGCCGATTTCAGTCCCGGGCCAGGCCGGCGGCTGGGAGTCCTGGTGGACCACCTCGTGCCGGACTCCAAGGAGTCCCGGATCGCCGATGCGGTGATGGCATCACCGGGTGCGGCCGGCAACGTCCTCATCGTCGGGCACCCCTATGTGGATGTATGGCAGGCCATCCGGCCCGCCGTGCTGGGCATTGATAAATGGCCGGTGGTTCCCCGCGGCCAGGACTGGAAGACGGGAATCCTGGCTGCCTTCGGCTGGCCGCACTCCACCAAGGAGGACATTGGCCTGGGCTGGCAGAAACTGCTGGGGGCGGTCCACAGCTACGCGGATCTGGAAGCATCGCTGCTTGGCCGAGTCGAGGAAGTCATCGACTTCCTGACAGTGCCTTAGMQYQNWGPQEIATPARNQLPEIPVERGMVLEDVQSGWVGAVTRVEKSGGMHVVALEDRRGKSRSFRLGFGFLLEGRPIRLMPPAPRQAAPAGGRTASGSVRVAGQRAQVAKASRIWVEGKHDAELVEKVWGDDLRVEGIVVEPLHGIDDLAGAVADFSPGPGRRLGVLVDHLVPDSKESRIADAVMASPGAAGNVLIVGHPYVDVWQAIRPAVLGIDKWPVVPRGQDWKTGILAAFGWPHSTKEDIGLGWQKLLGAVHSYADLEASLLGRVEEVIDFLTVPNANANANANA
D1-29_02683420hypothetical proteinGTGGCACAAAACGCACGTGAACACAGGGACAACCAGGATGGCCAGGGCCGTTCCGAGTACCATGGCGTTCCCGCAAATGCGCTGCCGCTCACGGCGAGCGAAGACCGCCAATGGGCCACCTTGGCCCACTTCGGCGGGATCCTGGGATGCGTCCCGTCCCTGCTGATTTACCTCATCTTTCGGGACCGGGGACCCTTCACCGCGCAGGAGTCCAAGGAGGCGCTGAATTTCAGCCTGCCGCCCACCATCGCAGCGGTGGTGGCCAACATCCTTGTTTTCCTCCCCCTGGTGGGCAACATTTTTGCCGTCATAGCCACCCTGATCTGGATCGCCCTGACCTGCTACTCCGTGGCGGCCGGAATCCATGTGAACCGCGGCCAGCCGCACCGCTACCAGTACAACCTCCGGTGGATTAAATAGMAQNAREHRDNQDGQGRSEYHGVPANALPLTASEDRQWATLAHFGGILGCVPSLLIYLIFRDRGPFTAQESKEALNFSLPPTIAAVVANILVFLPLVGNIFAVIATLIWIALTCYSVAAGIHVNRGQPHRYQYNLRWIKNANANANANA
D1-29_026841230hemWCOG0635Heme chaperone HemWATGCCTAGCGTTCTTCCCCTTGGCGACCCGGCGCCGTCGGACGGTCTGCTGCCTGCACAGGCGGTGGACGGTGCGGCGGACCGGGCCTTCGGCCTGTATGTGCACATTCCGTTTTGCGCCGTCCGCTGCGGATACTGCGACTTCAACACGTACACCGCAACCGAACTGGGCGGTGGAGCCTCCCAGGATGCCTACGCCGACACCGCCATCTCGGAGGTGCAGCTGGCGGCACGCGTGCTCCCGCAGTCGGGCCTTCCCGGCCGCACGCTGAGCACTGTCTTCTTCGGCGGCGGCACGCCCACGCTGCTTCCGGCGGAGGACCTTGCCCGCATCCTGCGCGCGGCCATCGGTGAGTGGGGGATAGAGCCCGGAGCCGAGGTGACCACCGAGGCGAACCCGGATTCCGTCACGCCGGAGTCCCTCGCCGTGCTGAAGGACGCCGGTTTCACCAGGGTCTCCTTCGGCATGCAGTCCGCGGTTCCTCACGTGCTCAAGGTCCTGGACCGTACCCACACCCCCAGCCGCGTGCCCCAGGTGGTTCAATGGGCGCGGGAAGCCGGGCTGGCTGTCAGCCTGGACCTGATCTACGGGACCCCGGGGGAGTCGCTGGAGGACTGGCGGCACACCCTGCTCACAGCCCTGTCCTACGAGCCGGACCACATCAGCGCCTACGCACTGATTGTGGAAGACGGAACCAAGCTGGCCGCCCAGATCCGCCGCGGTGAAGTTCCCGGCATCGACGACGACGACCACGCCGACAAATACGAACTCGCCGATCAGCTGATCGGCGAAGCGGGGCTGAGCTGGTATGAAGTGAGCAACTGGGCACGGACGCCCGGGCAGGCGTGCCGGCACAACCTGGCCTACTGGCGGGGTGACGACTGGTGGGGCATCGGCCCGGGAGCCCACTCGCACGTGGGCGGAGTGCGCTGGTGGAACGTCAAACACCCCACCGCCTACGCTGGCCGCCTCGCCCAGGGACTCTCACCGGCCGCCGGACGGGAAACACTCGACGACGCCACCCGGGACCTGGAGCGGATTATGCTCGGGGCGCGGCTTGAATCCGGGGTGGGCATCGGCTCGCTGGGGGAGTCGGGCAGGAAAGCAGTGGCCGGACTCATCGCGGACAGCCTGGTGGATCCCGCGGCGGCGTTCCGGGGACAGCTGGTGCTAACCCTGAAGGGCCGCCTGCTCGCCGACGCAGTGGTCCGCAGGATCCTTCCCGACTAGMPSVLPLGDPAPSDGLLPAQAVDGAADRAFGLYVHIPFCAVRCGYCDFNTYTATELGGGASQDAYADTAISEVQLAARVLPQSGLPGRTLSTVFFGGGTPTLLPAEDLARILRAAIGEWGIEPGAEVTTEANPDSVTPESLAVLKDAGFTRVSFGMQSAVPHVLKVLDRTHTPSRVPQVVQWAREAGLAVSLDLIYGTPGESLEDWRHTLLTALSYEPDHISAYALIVEDGTKLAAQIRRGEVPGIDDDDHADKYELADQLIGEAGLSWYEVSNWARTPGQACRHNLAYWRGDDWWGIGPGAHSHVGGVRWWNVKHPTAYAGRLAQGLSPAAGRETLDDATRDLERIMLGARLESGVGIGSLGESGRKAVAGLIADSLVDPAAAFRGQLVLTLKGRLLADAVVRRILPDNANANANANA
D1-29_026851854lepACOG0481Elongation factor 4GTGTCTCCCATGGCCCGCACCGCCCCGGTGCCCGCCGCGACAGATCCGGCCATCATTCGGAATTTCTGCATCATCGCGCACATTGACCACGGCAAGTCCACCCTGGCCGACCGCATGCTGCAGTACACCGGGGTCGTTCAGTCCCGCGACATGAAGGCGCAGTATCTGGACCGTATGGATATTGAGCGTGAACGCGGTATCACCATCAAGTCCCAGGCAGTCCGCATGCCCTGGGAACTCGACGGCATGAGCTACGCACTGAACATGATCGATACCCCCGGGCACGTCGACTTTACCTACGAGGTCTCCCGCTCGCTCGCGGCGTGCGAAGGAGCAATCCTCCTGGTGGATGCGGCGCAGGGCATCGAGGCCCAGACGCTCGCCAACCTGTACCTGGCGATGGAAAACAACCTCACGATCATCCCGGTCCTGAATAAAATCGACCTTCCGGCAGCGCAGCCGGAGAAGTACGCGGCCGAACTGGCCAGCCTGATTGGCGGTGACCCGGAGGACGTTCTGCGCGTTTCCGGGAAAACCGGCATGGGCGTTGAGGCGCTGCTGGACAAGATCGTCCGCGACCTGCCGGCCCCGCAGGGCGATGCCAACGCCCCTGCCCGGGCCATGATTTTCGACTCCGTCTATGACACCTACCGCGGCGTGGTCACCTACGTCCGGGTGGTGGACGGCATGCTGCACCCGCGCGAGAAGATCCAGATGATGTCCACCCGGGCCACGCACGAACTCCTCGAAATCGGTGTCAGCTCCCCGGAGCCCACCCCCTCTAAAGGCCTGGGCGTCGGCGAAGTGGGGTACCTCATCACCGGGGTAAAGGACGTCCGCCTGTCCAAGGTCGGCGATACCGTGACCAACATGGCCAAGCCCGCCTCGGATTCGCTTCCAGGCTACGCGGATGCAAAACCCATGGTCTTCTCCGGCCTGTATCCCCTGGACGGCACGGACTACCCGGTGCTGCGCGATGCGCTGGAGAAGCTGATGCTCAACGACGCCGCGCTGGTGTACGAGCCCGAGACGTCGGCGGCACTGGGCTTCGGGTTCCGGGTCGGCTTCCTGGGCCTGCTGCACCTGGAAATCACCCGGGAACGCCTGGAACGTGAATATAACCTGGACCTGATTTCCACCGCCCCCAACGTGGAATACGAGGTGACCCTGGAGGACAAGAAGGTAGTCCATGTCACCAACCCCAGTGAATACCCCACGGGCAAAGTAGCCGAGGTCCGCGAGCCCATGGTTTCGGCCACCATCCTGGCGCCCAACGAGTTCGTCGGCGCGATCATGGAGCTGTGCCAGAGCCGGCGCGGCGTGATGGGCGGCATGGACTACCTTTCCGAGGACAGGGTGGAAATCCGGTACCGCCTGCCGCTGGCCGAAATCGTCTTCGACTTCTTCGACATCCTTAAATCCAAGACCCGCGGCTACGGTTCGCTGGACTGGAAGGCCGACGGCGACCAGGTGGCTGACCTGGTCAAGGTGGACATCATGCTCCAGGGCGAGCAGGTGGATGCCTTTTCCGCCATCACCCACCGCGACAAGGCCTATGCCTACGGCGTCATGATGACCACCAAGCTGCGTGAGCTCATCCCGCGGCAGCAGTTTGAGGTCCCCATCCAGGCCGCTATTGGTTCCAGGATCATCGCGCGTGAAAGCATCCGGGCCATCCGCAAGGACGTGCTGGCCAAGTGTTACGGCGGTGACATTTCCCGTAAGCGCAAACTGCTGGAAAAGCAGAAGGAAGGCAAGAAGCGCATGAAGATGGTGGGCCGCGTGGAAGTGCCGCAGGAAGCCTTCATCGCCGCCCTGACCACAGACGAATCCAAGGACAAGGCCAAGAAGTAGMSPMARTAPVPAATDPAIIRNFCIIAHIDHGKSTLADRMLQYTGVVQSRDMKAQYLDRMDIERERGITIKSQAVRMPWELDGMSYALNMIDTPGHVDFTYEVSRSLAACEGAILLVDAAQGIEAQTLANLYLAMENNLTIIPVLNKIDLPAAQPEKYAAELASLIGGDPEDVLRVSGKTGMGVEALLDKIVRDLPAPQGDANAPARAMIFDSVYDTYRGVVTYVRVVDGMLHPREKIQMMSTRATHELLEIGVSSPEPTPSKGLGVGEVGYLITGVKDVRLSKVGDTVTNMAKPASDSLPGYADAKPMVFSGLYPLDGTDYPVLRDALEKLMLNDAALVYEPETSAALGFGFRVGFLGLLHLEITRERLEREYNLDLISTAPNVEYEVTLEDKKVVHVTNPSEYPTGKVAEVREPMVSATILAPNEFVGAIMELCQSRRGVMGGMDYLSEDRVEIRYRLPLAEIVFDFFDILKSKTRGYGSLDWKADGDQVADLVKVDIMLQGEQVDAFSAITHRDKAYAYGVMMTTKLRELIPRQQFEVPIQAAIGSRIIARESIRAIRKDVLAKCYGGDISRKRKLLEKQKEGKKRMKMVGRVEVPQEAFIAALTTDESKDKAKKPGPT0015105_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
D1-29_02686606hypothetical proteinATGCCAATTAACCTCCGCTCACTGGCCCAGGCCGTCCAGGCCTCCCTTCGGATTCTCGACCGGTTCCGCGCCGGCGCGGCCGGTCCGCCAGCCGATCGGGGAACCCGCCGGCAAGCTGCGGGGACGACTAAACCGCGGCGGCCAGCGGCACCGCGTTCCGCCGCCCGGCCGTCCGTGCCGCCGTCGCCGTCGGCCGCGGCACGGGCAGCGTACGCCGGGGATTTCAGCGGCACGTCCACCATCCGGTATGCGCCCCAAACGGATGGCGCCCCTGACCCCGGAGAAGTGGTGTGGGCGTGGGTGCCCTACGAGGAAGACCACAGCCGCGGGAAAGACCGCCCTGTTCTGCTGATCGGCCACAACGGGCCGTACTTACTGGCGCTCATGCTGACCAGCAAAGATCATGACCAGCACCCCACGGATGCCGACGACTATGTGGACGTGGGGACGGGAAACTGGGACCGGCAGTCCCGGCCGAGCGAAGCAAACATAGGAAGGGTGCTCCAGCTCAATCCTGAGAGTATCCGCCGGGAGGGTGCCGTGCTGGACAAGGCGCGCTTCGACCTGGTTGCCGCAGGACTGCGGCGGCGACACGGCTGGAAGTAGMPINLRSLAQAVQASLRILDRFRAGAAGPPADRGTRRQAAGTTKPRRPAAPRSAARPSVPPSPSAAARAAYAGDFSGTSTIRYAPQTDGAPDPGEVVWAWVPYEEDHSRGKDRPVLLIGHNGPYLLALMLTSKDHDQHPTDADDYVDVGTGNWDRQSRPSEANIGRVLQLNPESIRREGAVLDKARFDLVAAGLRRRHGWKNANANANANA
D1-29_02687261rpsTCOG026830S ribosomal protein S20GTGGCTAATATCAAGTCCCAGAAGAAGCGCATCCTCACCAACGAGAAGGCTCGCCTGCGCAACAACGCAGTCAAGTCTGAGCTGAAGACGGCCATCCGCGCCGTCAACACCGCCGTTGAGTCCACCGACAAGGATGCAGCTGCTGTTGCCCTGGTTGCTGCCAGCCGCAAGCTGGACAAGGCTGTCAGCAAGGGTGTTCTGCACAAGAACAACGCAGCGAACCGCAAGTCTGCGATCTCCAAGAAGGTCAACGCACTGTAAMANIKSQKKRILTNEKARLRNNAVKSELKTAIRAVNTAVESTDKDAAAVALVAASRKLDKAVSKGVLHKNNAANRKSAISKKVNALNANANANANA
D1-29_02688243hypothetical proteinATGTGGGCGATGAACGTTGGCGCCTACAACATCGCCTTTGGTCTGGGCATCGCCTCAGGACTGTGGATGGTTAACTTTTCGGGGAATGTGGCCGGTGGGTCAGCAATTGTGATTTTCTGCTGCGCGAGCCACGTCATCCTTGGCATCTGGCTGTGGGTCACAGAGAAGCGCCTGCTCACCAGCGCCATCGGACAGGCACTTGGTCCAGGACTGGCCCTGGTCTTTTACTTTTTCTTCCGGTAAMWAMNVGAYNIAFGLGIASGLWMVNFSGNVAGGSAIVIFCCASHVILGIWLWVTEKRLLTSAIGQALGPGLALVFYFFFRNANANANANA
D1-29_026891017hypothetical proteinATGGCCGCTGCGCCAACTGCCCGAACCCGCACGACGGCGTCCAACACGGCCACCTGGCGGGACGTAGCACCGGCCGCCGTGGTGCTCGTCGGTGGTCCGGAAGAGTATCTCGGGATCCGGGCAATGGACCACGTGCGGTCCCAGGTGCGGACCGCGTCTCCTGATGTGGAGGTGACACGGATGAACGCGGGCAGCTACGAGGCCGGAACACTGGCCATGAACGTCAGCCCCTCCCTGTTCGGCGAGAGCAAACTGATTGAAGTCGAAGGCGTCGAATCAATGAATGACGCCTTTCTGGCGGATGCCTTGGCATACCTGGCCCATCCCGAACCGGATGCCGTGCTGGTTCTCAGGCATGCCGGGGGAGTACGGGGCAAGAAGCTACTGGATGCTGTCAAAGCCGGCGGGTGGCCGGTGGTGGATTGCCAGCCACTGAAAAAGGAAGCAGACAAGGCGGCCTTCGTGGCTGCTGAGTTCCGGGCCGGCGGCCGCCGGATTGAGGCCGACGCGGTCCAGGCACTTGTTAATGCCGTCGGCGCCAATCTCTCCGAACTGGCAGCGGCGTGCAGCCAGCTGATCGCGGATGCCACCACAGCTGTCACCACTGACATGGTGGACCGCTATTACGGGGGCCGGATTGAAGCCACGGCGTTCAAAGTAGCCGACGCCGCGATGGCCGGAAACGGGCCGGCGGCTCTCTCCACGCTCCGCCACGCACTGGCCACGGGAGCTGATCCTGTTCCGCTCGTTGCGGCCCTGGCCGCCAAGCTCCGGACGGTAGCCAAGGTGGCCGGAGCCCAGGGATCTTCCGCGCAGATTGCCAGGGATCTGGGAATGCAGCCGTGGCTGGTGGAACAGGCCCAACGCGACGTCCGCCGCTGGACGCCAGAAGGATTGGTCCGTGCCATCCAGGCCACAGCCGAGGCGGATGCACAGGTCAAAGGGCTCTCCCGTGACCCTGTCTACGCCGTCGAACATGCCGTGACCGTGATCGCCATGTCGGCAAAGCAGCGTTGAMAAAPTARTRTTASNTATWRDVAPAAVVLVGGPEEYLGIRAMDHVRSQVRTASPDVEVTRMNAGSYEAGTLAMNVSPSLFGESKLIEVEGVESMNDAFLADALAYLAHPEPDAVLVLRHAGGVRGKKLLDAVKAGGWPVVDCQPLKKEADKAAFVAAEFRAGGRRIEADAVQALVNAVGANLSELAAACSQLIADATTAVTTDMVDRYYGGRIEATAFKVADAAMAGNGPAALSTLRHALATGADPVPLVAALAAKLRTVAKVAGAQGSSAQIARDLGMQPWLVEQAQRDVRRWTPEGLVRAIQATAEADAQVKGLSRDPVYAVEHAVTVIAMSAKQRNANANANANA
D1-29_02690444hypothetical proteinATGCGTCTTCCTGTTATGTATTCGTTCACGGCGGCAACGGCGGTTGCCGCCGGACTCATCCTCAGCGGATGTTCCATTGCCGCACCGGCTCCGGCACCCGACCCCACAACCGAAACCTCGTCCTCCGCCGCGCCGGCACCTGCTGGCGCCAACCTCGCCGACGCCGTATCGGGATGCGGACTTGACGGCGCCGACGGAGTAGAGCTGAACGCGTACGGGACAAAGCTCTCCATCGACACCAAGGGACCCCGGGAAACCTCCGGAGCAGCGATGGCAGACGTTCAATGCGTTCTGGGCGCCCTGGAGGTCCCGAAAGACATCACTTCGATGATGAAGCTCACCACCTCCACGGCAGAGCCCACCGACGCTGAGTGGGAAGATCTGGGCTTCGCCTGGAACTACAGCCCCGAGAATCATTTCCGGCTCGCCATCGTCCGAGTCTGAMRLPVMYSFTAATAVAAGLILSGCSIAAPAPAPDPTTETSSSAAPAPAGANLADAVSGCGLDGADGVELNAYGTKLSIDTKGPRETSGAAMADVQCVLGALEVPKDITSMMKLTTSTAEPTDAEWEDLGFAWNYSPENHFRLAIVRVNANANANANA
D1-29_026911158hypothetical proteinATGACCGACCATCAGCGATCTCATCACAGGCCGCTGGACGTACTGTTCCTCAGCGGTGACATTGGGGGGAACCTCCCGCCAACTTTCGCGATCGCCGGAGAGCTCGCGCGTCGCGGCCATCACGTGACCATTGCCGGCGTGCGTGCCCGCCCCCAGCACTCCGCTCCCGCAGATGTGAAGATGGTGGAGTTGCCCGCCCTGGCACAGATGGACGTCTCCCTGCCTACAGGGAAGTTCGGCCATGCGCCTGCGCTGATGCGGATGGCGCTCGGGCGAAGAACTACCCGGGATGTGCGCTTCCTGCTCACCAGCCAACGTGCCGACATTATCGTTGTCGACGGCGTCATGCTCACTTCGCTGCGGGAAGCCCTCAACACGGGAACCCCCACTGCTGCGCTGTTCCATTCGCTCGGGAAATTCTGGGAGCACGGCATGGGCAACCCTGCCCTGAACGCGCTGCTCCGGCCGTTTGGGCTTGGCCCCCTGGCTCTCCTTGAGCGTTGCGCCGCGCGGCTCCTGCCCACCGACTGGGACATAGATCCAGCCGGGCAAGGAAGCTGCCGGATCGCGTTCGACTGGATCGGCACCACCGAGCAGGCAACTCCCCCCGCGCCACGCGCGCCCGGGAGCCCGCCGCTGGTCCTGGTCAGCCTCAGCACCGCCTGGCAGAAGAACCAGGACGACGTGTATCAGAGAATCATCACCGCCCTGGGCCAACTGGCAAATGGCAGATCAGCAGTGCGGGCAATAGTGACCACCGGCGGAGTGCCTCTACAAATCGATCAGATACTTCCAGCCAATGTCGAGCTCCGCGGGCGCATCCCCCACGAACAGATCATGCCTCACGCCGACCTCGTCATCGGCCACGGTGGACACTCGACGACCCTCAAAGCCCTCGCCCACGGCATCCCCCTGCTGGTGCTGCCCTTGAACACTTCATCCGACCAACCTTTGATCGGCCACACCATCGAACGCAACAGACTCGGCCGCGCCCTCCCCGCAAATTCGCCCCCTGAAACCATCGGCAAAACCATCAACGACATTCTCACCGACCACGCGATCATCGCTGCAACCGCACGCACCGGCGAACGCCTCCGTGCCCAAAACGGAGCGCGGAACGGAGCCGACCGCATCGAAATGATCGGGCACGGTCCCTGAMTDHQRSHHRPLDVLFLSGDIGGNLPPTFAIAGELARRGHHVTIAGVRARPQHSAPADVKMVELPALAQMDVSLPTGKFGHAPALMRMALGRRTTRDVRFLLTSQRADIIVVDGVMLTSLREALNTGTPTAALFHSLGKFWEHGMGNPALNALLRPFGLGPLALLERCAARLLPTDWDIDPAGQGSCRIAFDWIGTTEQATPPAPRAPGSPPLVLVSLSTAWQKNQDDVYQRIITALGQLANGRSAVRAIVTTGGVPLQIDQILPANVELRGRIPHEQIMPHADLVIGHGGHSTTLKALAHGIPLLVLPLNTSSDQPLIGHTIERNRLGRALPANSPPETIGKTINDILTDHAIIAATARTGERLRAQNGARNGADRIEMIGHGPNANANANANA
D1-29_026921137sqrCOG0446Sulfide-quinone reductaseATGAGGTGCATGACAACAACCGTCATGATCCTCGGCGCCGGCTTCGGAGGGTTGGAACTCGCGAGCACACTGTCGGAGCGCCTTGCCGGCGAGGTCGACGTCACCCTCTTTGACCAGCACGACGCCTTCGTGTTCGGCTTCTCCAAGCTGGAGGTCCTCTTCGGGCACCAGAACGCGGAACAAGTGCGGATCCCTTACCGCGAGATCAGCACCCCGGGTGTGGAATTCCGCCAGGAGCGGGTGCTCGCGATCGACCCGGGGTCGCGGCACGTCGTCACCGAGGCTGCGGTTTACGATCCCGACATCATCGTCGTCGCCCTCGGTGCCGACTACGATATCGCCGCGACACCCGGCTTCGCCGACGGAGGGTTCGAGTACTACACTGTCGCAGGCGCCGAGCGGCTGCGCGACGAACTGGCGGCGTTCCGCGGCGGCCGGGTGATGCTGGCCGTGCTCTCCATCCCGTTCAAGTGCCCGCCCGCGCCATACGAGGCGATCCTGCTGCTCCACGACCTGCTCGTCGCAGGCGGCATACGCGAGGGCAGCGACCTTCACGTGGTCAGTCCGCAGCCGTCGCCCATCCCCGTATCGCCCCAGACATCGGCCGCGCTGGAACGCGCGATGGCCGAGCGTGGGATCGCATACACGAAACGCCACCGAATCCACGGGATCGACCCCGACGCGCAGGTCGCGCAGTTCAAGGACCACGACGAGCCGTACGACTTGTTCATCGGCATCCCGACCCACAAGGTGCCCGACGTGCTCGTCGAGGCGGGCCTGACGCAGGATGGCTGGGTCGCGGTCGACCCCGTTACGCTGCAGACGCCGTACGCCGGGGTGTACGCGATCGGCGACTGCGCCGAGACCGGGATCCCAAAGGCCGGCACCTTCGCCGAGAGCGCGGCCCACGTCGTCGCGGACAGCATCGTTCGCAGCATCCGTGGCGCCGGCGGACTTGCATCCGGGGGCACCGGGCTCTGCTATCTGGAGTTCGGCCACGGCGACGTCGGTCGCGTCGACGTCGACTTCCACGCTGACGGCGGGCCGACCGCCCCGCTCCTGGGGCCGTCGCCGGCGTATGCCGCTGAGAAGGCGGACTTCGGCGCCGTGCGACGCGCCCGCTGGTTCGGGGCCTGAMRCMTTTVMILGAGFGGLELASTLSERLAGEVDVTLFDQHDAFVFGFSKLEVLFGHQNAEQVRIPYREISTPGVEFRQERVLAIDPGSRHVVTEAAVYDPDIIVVALGADYDIAATPGFADGGFEYYTVAGAERLRDELAAFRGGRVMLAVLSIPFKCPPAPYEAILLLHDLLVAGGIREGSDLHVVSPQPSPIPVSPQTSAALERAMAERGIAYTKRHRIHGIDPDAQVAQFKDHDEPYDLFIGIPTHKVPDVLVEAGLTQDGWVAVDPVTLQTPYAGVYAIGDCAETGIPKAGTFAESAAHVVADSIVRSIRGAGGLASGGTGLCYLEFGHGDVGRVDVDFHADGGPTAPLLGPSPAYAAEKADFGAVRRARWFGANANANANANA
D1-29_02693525hypothetical proteinGTGGAGCTACTCCGGCGCCACGGGCTGCTGGTGATCATCGCCGCCCTGGTCTTTGCAGGAAACAATGCTGCAGGGTATATGGCGACCGGGGGCTTTATTCCAAGCTACGCGTCCAGTCCCGCCGTCGGTCACGAACGCACTGACGTGCTCGTCGCTATCGCATACGGCTCCCCCGTCTGGCAGACAGTCCGCCTGGATCACTGCCTTAAGGTTCTCAAGACCAGCCCCGGCGCCCTTCCGGTTCACCTCTCTGGCCCGGGCGAGGGAGTCCGGTGGTTCACCAGCGCCCATGAGTCATTTTGGGCTGCATCCAGCACCACTCCGACCGGGGCTACATCCCGTCACGTGGCAGTGTTGTGTTGGACCAGCGGCGAGGGCTCGGGGCCTCAGATCGTTTTACAACCCCATAATGGCGGCTACGGTGGCGGTGGTTTTCAACCAGCTCAAGCAGTTGCTCTGCGCGGCTATGCAGCGCCATCACCACGTGCAGCATGCGACGGGGCCGGACGACCATCCATACGATGAMELLRRHGLLVIIAALVFAGNNAAGYMATGGFIPSYASSPAVGHERTDVLVAIAYGSPVWQTVRLDHCLKVLKTSPGALPVHLSGPGEGVRWFTSAHESFWAASSTTPTGATSRHVAVLCWTSGEGSGPQIVLQPHNGGYGGGGFQPAQAVALRGYAAPSPRAACDGAGRPSIRNANANANANA
D1-29_026941632hypothetical proteinATGATCCTGTGCGGCACGCTCGTGTCCCTGGCTGGACTGCTGTTCGTGACGGCTGCCCGGAGGAGGGCTGCAGTCCGCCCTAATCAGGGCGGCGGTGCAGCTTGGCCAGTCCGGATCCTCGCCGGCCGCCGGCGGTCGGAAGGCATCCCGCGGAGCTTCATACTGACCACCTCAATCGCCTTGGTCCTGTGCGCCGCCGCGGCCGCTCATTCCGCCGTCGCGTCATCCCAACGCCACAACGGAGCACTTGCTGATGCCATCGCGGCCGGCAGCTCATCGGTTGCCGTCCTCGAAGTGTCAGGCTCCCCACGTGCCCTGGTTTCGGGCGGCTCGTCCGGGATGCCGGGCCGGTGGGCCGTCCCGGTCATGACTGTTGAAATCACCGCCGGCGGCCAAGTGATCCGCACCCGCGCGGAGCTTATTGCCATGGGCGGGAACGCCTGGGGAAGCCTGGTACCCGGCCGGGTCGTCAGGACCACCGGCAAACTGAAGCCCGCTGACCCAGGCCAGCCCGAGGCCGGCGTGCTGGCCGCGTCTTCGGCTCCGGCGGAGCTCTCCGAGGGTCTTGGCTGGCAGGAGGGCGCCAAGGACCTGCGCAGCCGCTATGTTTCGGCATCCTCCTTCCTCACGGCCGACGCCCGGGGACTCCTGCCCGGCATGGTCACCGGAGACACCAGCGCCCTGGATGAGGGGCTGAATGCCGCCATGAAAACCGTGGGGATGACTCACCTGACCGCCGTCAGCGGTGCCAACTGCAGCCTTGTGCTGGGTGCCCTCCTGTTGGCGGCCAGGAGCCTGCGGCTGCCGCGGCTGCCTGCTGCAGCTCTTGCCCTGTCCGGGCTTGCCCTGTTTGTTGTGATGGTTGGTCCTGATGCCAGTGTCCTGCGCGCCGCGCTGATGGGCTCAATCGCCCTCGCATCCTTGGCAGGCGGTCGCTCCGGGCGTGGCCTTAGTTTCCTCTGCCTGGCGGTCATCGGCCTCCTCCTGTTTGATCCAAGCCTTGGAACCAGCTTCGGGTTCCTGCTATCGGTGCTGGCTACGCTGGGAATCATTGTCCTCGGGCAGCGCATGGTGGACTGGACGCCGGCGGTCATTCCACGATGGGTGGCGGCCGCCGTCGCGGTGCCTCTGTCAGCCCAGCTGCTGTGCAGCCCGGCAATCGTGCTTTTGCAGCCGCAGTTCTCCACCTACTCGCTGCTGGCCAACGTCCTGGCCTCACCATTGGTGGCGCCGGTAACGCTGCTGGGTACGGCAGCGGTAGCGCTCGTGGTCCTGGCCCCTTGGGCGGCTATTGTGCTGATCGCGGTTGCCGGCACCTTCAGTGCCGGTGTGGCGTGGATCGCCAGGTTCACTGCCGGCCTGCCCGGGGCCTCGCTGGCGTGGCCCGAGGGAGCTTTTGGGCTTCTGACGATGGTGTTGCTGTCCGCGCTTACCCTTGTCATCGTATGGATGGTCGTCCGGCCCCGTCGCATGCTGCACGTGGTGATGGCGCTGCATAGCCGCGCAGAGCAACTGCTTGAGCTGGTTGAAAACCACCGCCACCGTAGCCGCCATTATGGGGTTGTAAAACGATCTGAGGCCCCGAGCCCTCGCCGCTGGTCCAACACAACACTGCCACGTGACGGGATGTAGMILCGTLVSLAGLLFVTAARRRAAVRPNQGGGAAWPVRILAGRRRSEGIPRSFILTTSIALVLCAAAAAHSAVASSQRHNGALADAIAAGSSSVAVLEVSGSPRALVSGGSSGMPGRWAVPVMTVEITAGGQVIRTRAELIAMGGNAWGSLVPGRVVRTTGKLKPADPGQPEAGVLAASSAPAELSEGLGWQEGAKDLRSRYVSASSFLTADARGLLPGMVTGDTSALDEGLNAAMKTVGMTHLTAVSGANCSLVLGALLLAARSLRLPRLPAAALALSGLALFVVMVGPDASVLRAALMGSIALASLAGGRSGRGLSFLCLAVIGLLLFDPSLGTSFGFLLSVLATLGIIVLGQRMVDWTPAVIPRWVAAAVAVPLSAQLLCSPAIVLLQPQFSTYSLLANVLASPLVAPVTLLGTAAVALVVLAPWAAIVLIAVAGTFSAGVAWIARFTAGLPGASLAWPEGAFGLLTMVLLSALTLVIVWMVVRPRRMLHVVMALHSRAEQLLELVENHRHRSRHYGVVKRSEAPSPRRWSNTTLPRDGMPGPT0029415_3782DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
D1-29_02695972hypothetical proteinGTGGGGCCTATGTCACGCCGGGATGCTGGAGCAGCAGCGAGTCAGGGGGCACGCCACGCCAGGGACCGGCTGCAATCCACCCTGGGCAGCCGGCCCCACGGGCTGCTCCTGACAGACGACGGCCAGGAAATCTTTGAGTACGACGGCGGCACGGACGTTCCTGCACAGGAAACCGGAGTCCATGGCGCCGGCTCCGGGCGCCATCCGACGATGGATTCAGGGGCAGGAAGCGTGGCCGGGATGGGCCCTGCCGGGATAGGGGGCGCGGCCAGGACGGGTCCCGCCCTCAGGTGGCGGCTTGGAGTCCGCGTGGCCGTGCTCATCTGCATGGCCGCACTACTTGCCGGCGCCTGGTTCTGGTGGCAGGTCTCCCAGGGACAGCCACACGTGATTCCGCTCAGTGACGTCAGTGCTACCGGGAGTCCATCGGCCACGCCCGGTGGGGTGACGGATGAGCCGCCCGAGGGCGATGTGCCTGCCGGTCCAGGCGATGGGGATCCTTCGGCCGGGATCCTCATTGTCCATGTCGCAGGGGCCGTCGCCAGCCCAGGGGTGGTTCAGTTGCCTTCCGGGAGCCGGGTACACGAGGCGCTTGCGGCGGCTGGTGGCAGTACCCCCGCCGCGGACCTGGATCGGCTCAACCTGGCTGCGCCTCTGGTGGACGGGCAGAAGGTCTATGTTCCACTGCCGGGCGAACCGCTGCCTTCCGATTCGTCCGGCACGGCCGCCGGACCGTCCGCAGGCGGCGCTGGCGCCGGCGGGGATGCAGGCGGCCCCGGTGGTACAACGAACCTGAACACCGCCGGTATCGAAGAGCTTGATGCGCTGCCCAAGGTGGGACCGGTCCTGGCCCAGCGCATCGTGGACTGGCGAAAGGAGCACGGACCATTCAAAACCGTTGAGGAACTCGATGCCGTGGATGGCGTGGGGCCCAAGATGCTCGAAACGCTTCTTCCCCTTGTGAGCGTCTAGMGPMSRRDAGAAASQGARHARDRLQSTLGSRPHGLLLTDDGQEIFEYDGGTDVPAQETGVHGAGSGRHPTMDSGAGSVAGMGPAGIGGAARTGPALRWRLGVRVAVLICMAALLAGAWFWWQVSQGQPHVIPLSDVSATGSPSATPGGVTDEPPEGDVPAGPGDGDPSAGILIVHVAGAVASPGVVQLPSGSRVHEALAAAGGSTPAADLDRLNLAAPLVDGQKVYVPLPGEPLPSDSSGTAAGPSAGGAGAGGDAGGPGGTTNLNTAGIEELDALPKVGPVLAQRIVDWRKEHGPFKTVEELDAVDGVGPKMLETLLPLVSVPGPT0029410_219DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029410-comEA-K02237NANA
D1-29_02696504hypothetical proteinGTGCAGCACTTCATTGCGGTGATTCCGCCTTCACGCGTCAGCGACACTCTGCGTGAGGTGGGCAACTACCTGATGGTTGGCCCGCACATCACCGTCAAAGCGCAGCCTGGCCTCAATGCGGAGGACAAACCTAAATGGATGGGTCGGCTGCGGCAATCCCTGGTGCACTTCGGCGAAGTGAAGGTGCAGCTAGGATCACTTGCGTCCTTCGGTGGTTCGGTCGCATACCTTGAAGTTGATTCCCCGCGTATCTACGATTTGTACGACGCGCTCTTGACGAGCATCAACCCAGCTCCGGAGGATGCAGAACGCTACTTCGAGCTCGACGGGTGGACTCCGCATCTGACACTGGAACAAGGCCGCTCGATTGACTTCGACAAGCTCCGCGCAGCGGTTGATCGGCTCGGACGTGTGTCGGCATTCACTGTCGACACACTATGGGTCTGTCGACAGGATCACCCCGGTCAGCCCTACTACCCGGAGACGCCGATCAATCTGGTGTAGMQHFIAVIPPSRVSDTLREVGNYLMVGPHITVKAQPGLNAEDKPKWMGRLRQSLVHFGEVKVQLGSLASFGGSVAYLEVDSPRIYDLYDALLTSINPAPEDAERYFELDGWTPHLTLEQGRSIDFDKLRAAVDRLGRVSAFTVDTLWVCRQDHPGQPYYPETPINLVNANANANANA
D1-29_02697573hypothetical proteinGTGAAGTTCGTCGTCATCTTTGGACCCCCTGCAGTTGGGAAAATGACAGTCGGTCACGAGCTTTCGAATATCACCGGCTTTAGACTTTTCCATAACCACATGACCATCGAACTGGTACTGAACTTCTTTGATTTCGGGGAGCCCCAATTCGAAGCTTTGGTGTCCGAGTTCCGCCAACGTGTGTTCGAAGAGGTTGCCATAAGCGATTTGCCAGGGCTTATTTTCACCTTCGTTTGGGCTGTGGAGGACGAATCTGACCGGGAGTTCGTGGAGCGGAGTTGCGACATCTTCAGAGACAAAGGTGCAGCCGTGTACTTCGTTGAGCTCCAGGCTGACTTGGAGGAGCGGCTGAGCCGGAACGAAACTGAATTCAGGTTGTTACACAAGGCGTCCAAGCGGGATATAGAGAGTTCCAGGAAGCGCTTGTTGGACGACGACGAGAAATTCAAGCTGAATTCTGACGGCGACGCTTTTATCAAAGATAACTACCTCAAAATTGATAACACGAACTTATCCGCAGCCGAAACTGCCCAGATAATTGCGGACGAATTCGCCTTCAGGCCGACTACCTGAMKFVVIFGPPAVGKMTVGHELSNITGFRLFHNHMTIELVLNFFDFGEPQFEALVSEFRQRVFEEVAISDLPGLIFTFVWAVEDESDREFVERSCDIFRDKGAAVYFVELQADLEERLSRNETEFRLLHKASKRDIESSRKRLLDDDEKFKLNSDGDAFIKDNYLKIDNTNLSAAETAQIIADEFAFRPTTNANANANANA
D1-29_02698489hypothetical proteinATGAAATCTCTGCCCGTCACGGACCGCTCCGGTAACCAACTAGTCGCGATAGATCTCGTCGACGAGAGCGAGCTGAACAACCCTCTGCCCGACATAACTCTTCCCTTGTCGCTGATCATAGTGATGCAGGCAGGAAAAGTCTTGATGATCTTCAATAGGTGGCGGCAAGAATGGGAGTTGCCGGGAGGAATGATTGACCCTCACGAGACACCCCGCGCGGCGGCGACCCGCGAACTAAACGAAGAAACCGGTATCGCTGCCACCTGCCTCGACTTCCAAGGACGGGCGCTCTTCGCCCTAAAGCGACCCGACCGACTTGAGCACGCTGCAGTCTTCTCTATCCGGCTCAATTACCTTCCGGATCTCAAGGTAAACGAGGAAGCTTCCGCCTTTCTCTGGTGGACGCCGAGCCCGTCCCCCAAAGAGAATATGAGCGCCTTGGATGCTGCCATTTCCCACTGGTGTGCCGGGGTAGTGAAGTTCATCTGAMKSLPVTDRSGNQLVAIDLVDESELNNPLPDITLPLSLIIVMQAGKVLMIFNRWRQEWELPGGMIDPHETPRAAATRELNEETGIAATCLDFQGRALFALKRPDRLEHAAVFSIRLNYLPDLKVNEEASAFLWWTPSPSPKENMSALDAAISHWCAGVVKFINANANANANA
D1-29_02699336hypothetical proteinATGCTCCAGAGAAACCTCCAGGCCCTGCTGGCAAACGCGAGTGCGGCCGGCGTGGATGTTGTGATCGTGACCTGGGTCTACCAAAACGGAGAATTTCACAAACTGGTGGCAGGCCTGGCGCCAATGAAATCGGATACGGTGACGATCCAGCTCAGAGCGAGTGCCTCGGTTTGGCACGAACGGTTCACGCTTGATTCAGCCCGTCCAGCCATTGACGATTTCTTTGAGCATCGCTATCTTGCCGCTCAGTCGACGCCCGCAGATTACATCATTGAGACTGACGAGTTGAGCGAGAGTCAGATAGCTACAAAGATTTTCAGGCTGTTGAACTTCTGAMLQRNLQALLANASAAGVDVVIVTWVYQNGEFHKLVAGLAPMKSDTVTIQLRASASVWHERFTLDSARPAIDDFFEHRYLAAQSTPADYIIETDELSESQIATKIFRLLNFNANANANANA
D1-29_02700192hypothetical proteinGTGGCGCAGGAACCCAAGGAATCCCTACCGGGCGGTTACTTCCCCGGTTTGAGTGGACTCGGCCGGAGCTATATGAAATTCGACGACGTCTACGAACGCGTCGACCGGCATAGCCGGGTAGTGCCGACGAAGACCTTCGAGGTAGCCCTCCACCGTTCCACCGTCCGAAAGGCGGAGTCGTTCTGGAGTTAGMAQEPKESLPGGYFPGLSGLGRSYMKFDDVYERVDRHSRVVPTKTFEVALHRSTVRKAESFWSNANANANANA
D1-29_02701231hypothetical proteinATGTCCGACGCTCTAAGACTCGCGGCTCTTGGGATGCTGATACCCATGGAACCCCTGGAGATGGAACGGCGGGTCATTGAGGCAGCAGAGGTGCTGGCTCGATCGCTCGGTAGCAACCCAAACCACACCGTGGCGGCCGCCGCCATGGACACCAACGGCCGGATACACACGGCTGTGAACGTCATCACTTCACCGGCGGCCCCTGCGCCGAGCTCGGCGCCCTGGGCGTAGMSDALRLAALGMLIPMEPLEMERRVIEAAEVLARSLGSNPNHTVAAAAMDTNGRIHTAVNVITSPAAPAPSSAPWANANANANANA
D1-29_02702282hypothetical proteinATGCAGCCCAGGGGTGACCTACGACTGGGCGTGGCTAGTCACCACGGCAGTGCCGGGTTGTTCCATTCGGAGATCTCGGCGTTTGCCACAGCGACCCTCTGCCTGCTGAACGTCCTGCTCCACCCTGACGCTCTTGTCATCACCGGGCTCATTGACGTTCACCGCCTGGGGTTGCGCGGACCGTTACGCAGACTCGCCCGGGCCACCAGGAGTATCGCCAGTGGCCAGAACCCTAGTTCAATGTTCATCACGCTGACCGTTACCTCACCCATTACGGGATAGMQPRGDLRLGVASHHGSAGLFHSEISAFATATLCLLNVLLHPDALVITGLIDVHRLGLRGPLRRLARATRSIASGQNPSSMFITLTVTSPITGNANANANANA
D1-29_02703399hypothetical proteinATGTTTGTCGCGAGGATCGCCACTGTCACAATGAAAACCAACAACGCCGGAGAAGTCGCTCGGTTTTGGCATGAAATGCTCGACTATCGAATCGCGCCCAACCACAGCACCTCTGTGAAGCTCGTTGGAGACGATGGGCCCGCACTGCTCATCCAGCCGTCGGACACACCGATCGAACAAGGGGCCATCCATTTGGATCTGCGGCCGGAAGATCAATCGGCCTGTGTGGGCCAAGCCCTCAAGCTCGGGGCCGTGCATGCGGACATCGGGCAAACCGGCGACGAAGGATGGGTCGTCATGGCCGACCCCGGCGGCAACCTCTTTTGTATTCTTCAGTCTCGCGCCGACTACCAAGCATTCCTGTTCAACGATCCTGGCACCCCAACGCCGATCGATTAGMFVARIATVTMKTNNAGEVARFWHEMLDYRIAPNHSTSVKLVGDDGPALLIQPSDTPIEQGAIHLDLRPEDQSACVGQALKLGAVHADIGQTGDEGWVVMADPGGNLFCILQSRADYQAFLFNDPGTPTPIDNANANANANA
D1-29_02704222hypothetical proteinATGGCGTATCGAGACCCGACCCACTATCCGGCCTCCTACTTCCGCAACCAAAAACGTCTCCGGAACCCAGGCCTCGGACAAACCGATGCCTTGACGAAGACGTTCCGTTCTGTCGAGAAAATCCAACCAGTCGATGTCCGGCTGATAGCCATGGAGGAACTCAAAGCCTTCACGTGCGAGTTCTTCATGAGCTCGCGTTGCCTCATGCACGTCGTGAAGTGAMAYRDPTHYPASYFRNQKRLRNPGLGQTDALTKTFRSVEKIQPVDVRLIAMEELKAFTCEFFMSSRCLMHVVKNANANANANA
D1-29_02705162hypothetical proteinGTGGAAGCACGGAACCTTGGGATCCGCGAGGCACTGCTCACCTGCGACGCCGGCAACGTTGCATCCCGGCGGGTGATCGAAAACCACGGGGGCGTTCCGGATGCCCTCAACAGTCTGGACACACTAACAACGTTCAAATTGAGGTATTGGATAACCACCTGAMEARNLGIREALLTCDAGNVASRRVIENHGGVPDALNSLDTLTTFKLRYWITTNANANANANA
D1-29_027061005degVCOG1307Protein DegVTTGCCAGACCATGATGCCGCCGCCTGGACCTGGCTCCGCGCCCGGCTGGGGGCCCTTCGTCCCGTACCCCGGCCGGAGACGGCCGCCGCGCCGTCCCCCGGCGGCGGTACTGCTGTGGTCACCGATTCAGCAGCGGCGCTTCCCGCAGAGTGGGTAGCGTCCTTCTCGGGCGACGGGCGGCTCACCGTGATCCCCATGCCCGTGATGGTGGGCGAGGAAATCTACGGTGAGGGCGAGGGCGACATCACCGAAACCATCTCGCTGGCACTGGCTACAGGCAAGTCGGTCAAGACCTCGCGCCCGTCTCCCGGGCAATTTGAGCAGGCGTTCCTCGCCGCTGAACGCCGGGGTTACCAGGCTGTGGTCTCACTCCACATCTCCGGCGGGTTGTCGGGGACTGCGGATGCGGCCCGGCTGGCGGCGGGCAGGGTTGGCATCCCCGTGGAGGTGATTGATTCCGGCACCGTGGGGATGGCCCAGGGCATGGGCGTGCAGGCCGCAGTGCTCGCCGCGGCCGAGGGGCAGGACGCTTCAGCCGTCAGGGCGGTGGCGGAGGAGCAGCTGGCACGGACCAAGGTCTACTTCTATGTCCCCAGCCTTGAGCAGCTGCGTCGCGGCGGAAGAATCGGGGCGGCGGCGTCCCTCCTGGGAACCATGCTTGCCATCAAGCCCATCCTCGCGGTCGACGACGGAAAAATCGTGCCGCTGGAAAAAGTCCGCTCAGCGGCCAGGGCCGTCGCCCGGCTGGAGGAGATAGCAGCGGCCGATGCTGCGTCCCGACCCGACGGTCAGGTGCGCCTCGCCGTCCATCACTTCGGCAATCCGGCGGAAGCGGAAGGGTTGGCTGCCAGGCTGGCGGCTGCGCTGCCTAACATCCCGCCCGCGCAGATCAGTTCACTGCCGGCGGTTCTCGCGGCGCACGCGGGGCTAGGGGTCCTTGCGGTGATCGTAGGGGAGACAGGTCCGCTGGCCCCACCTGAAAATCTGCCCGGGCTTTCCACGTAGMPDHDAAAWTWLRARLGALRPVPRPETAAAPSPGGGTAVVTDSAAALPAEWVASFSGDGRLTVIPMPVMVGEEIYGEGEGDITETISLALATGKSVKTSRPSPGQFEQAFLAAERRGYQAVVSLHISGGLSGTADAARLAAGRVGIPVEVIDSGTVGMAQGMGVQAAVLAAAEGQDASAVRAVAEEQLARTKVYFYVPSLEQLRRGGRIGAAASLLGTMLAIKPILAVDDGKIVPLEKVRSAARAVARLEEIAAADAASRPDGQVRLAVHHFGNPAEAEGLAARLAAALPNIPPAQISSLPAVLAAHAGLGVLAVIVGETGPLAPPENLPGLSTNANANANANA
D1-29_027072526leuSLeucine--tRNA ligaseGTGGGCGTTCAGCCGGAAACAGAGACCGGAACAGCAGCAGTGGCGGCGGAGGGACCCGACGAGGGTGCCTACAGCTTTGCCGCCATGGAGGCCAAATGGCCGCAGGTGTGGGAGGACCTCAAGGTCTTCACGCCCGTCGACGACGGTTCACGGGAGCGCCGCTATGTGCTGGACATGTTCCCGTACCCCTCAGGTGACCTTCACATGGGCCACGCCGAGGCGTTTGCCATGGGTGATGTTGTGGCCCGCTACCTGCGCCAGCAGGGTTATGACGTGCTGCACCCCATCGGCTGGGACTCCTTCGGCCTCCCGGCCGAGAATGCGGCCATCAAGCGCAATGCGCACCCCAGCGAATGGACCTATGCCAACATTGAAACGCAGGCGGCGTCCTTCAAGCGGTACGCCATCTCCGCTGACTGGTCCCGGCGGCTGCACACCTCCGATCCCGGGTACTACCGCTGGACGCAGTGGCTGTTCAAGCGTTTTTACGAGCGCGGTCTGGCCTACCGCAAGGATTCGCCGGTTAACTGGTGCCCGAAGGACCAGACCGTGCTGGCCAACGAACAGGTGGTCAACGGTGCCTGCGAACGCTGTGGAACGCCCGTCACCAAGAAGTCCCTGAACCAGTGGTACTTCAAGATCACCGACTATGCCGACCGGCTCCTGGATGACATGGACGAGCTCCGCGGCCACTGGCCCGAGCGTGTGCTGGCCATGCAGAAAAACTGGATAGGCAGGTCCGAAGGCGCGCACGTCAACTTTGTCATCGAGGCCGACGGCGGCAAGCCCGCCAAGGATGTCACCGTCTTCACTACCCGCCCGGACACCCTGTATGGTGCCACCTTCTTTGTGGTTGCCGCCGACGCCCCGCTCGCCGTCGAACTGGTCACGGAGGAGCACTCCGCCGCCCTGGATGCGTACCGCGAGCAGGTCAAGGCCCTCACCGAGATTGAACGCCAGTCCACGGAGCGGGAGAAGACGGGCGTCTTCACCGGCCGCTATGCCATCAACCCGCTCAACGGCGAGAAGCTGCAGGTCTGGGCTGCCGACTACGTCCTGGCCGATTACGGCACGGGTGCCATCATGGCAGTCCCGGCCCATGACCAGCGCGACCTCGACTTCGCCAGGACATTCGGCCTTCCGGTCAGGACTGTCCTGGACACCGGGGAGGAGGACCCCGCTGTTTCCGGCAAGGCGACGGCAGGCGAAGGCACCCTGATCAATTCCGGCGCCCTGGACGGGCTGCCCAAGGCCGAGGCCATCCCCCCCGCCATTGGCATCCTGGAAAAGCAGGGAACGGGCGAAAAGTTCGTCAACTTCCGCCTGCGCGACTGGCTGCTCAGCCGCCAGCGGTTCTGGGGCACGCCCATCCCCATCATCCACTGCGCCGAGTGCGGGGAAGTCCCGGTGCCGGACGACCAGCTGCCCGTTACGCTGCCTGACAACCTGCGCGGCGAGGACCTTTCCCCAAAGGGCACCTCTCCTCTGGCGGCGGCCGAAGCCTGGGTCAACGTGGAATGCCCCAATTGCCAGGGTCCGGCAAAGCGGGACACGGACACCATGGACACGTTCGTTGACTCTTCCTGGTACTTCCTGCGTTTTGTGTCCCCGGACTACACCGAAGGGCCCTTTGATCCCGAGAAGATCAATGACTGGATGCCGGTGGGGCAGTACGTGGGCGGCGTGGAGCACGCCATCCTGCACCTGCTCTACGCACGGTTCTTCACCAAAGTGATCCATGACCTCGGCATGATCGACGCCGATGAGCCGTTCAGTGCGCTGCTCAACCAAGGGCAGGTCCTCAACGGCGGCAAGGCCATGAGCAAGTCCCTGGGGAACGGCGTGGACCTCGGCGAGCAGCTGGACAAGTACGGCGTGGACGCCGTGCGCCTGACCATGATCTTCGCTTCCCCGCCCGAGGACGACGTGGACTGGGCTGACGTTTCGCCGTCGGGTTCTGCAAAGTTCCTGGCCCGCGCGTGGCGCCTGGCGCAGGACGTGGCCAGTGTTCCGGGCGTGGATGTTACTGCCGGTGACCGTGCCCTGAGGTCCGTGACGCACCGCAGCATTGCCGATGCAGCCGATCTGCTGGACAACAACAAGTTCAACGTTGTGGTGGCCAAGCTGATGGAGCTGGTGAACGCCACCCGGAAGGCGATCGATTCCGGTGCCGGGGCAGCCGATCCTGCCGTTCGCGAGGCCGCTGAAGCAGTGGCGGTTATCCTGAGCCTCTTCGCACCGTACACGGCAGAGGACATGTGGAACGCCCTGGGCCATCCGGCCTCGGTGGCGAACGCAGGCTGGCCTGCCCACGACGTATCGCTGCTGGTACAGGACACGGTCACCGCCGTCGTCCAGGTGCAGGGGAAAGTCAGGGACCGCCTGGAGGTGTCCCCGGACATCACTGAGGAGCGGCTGCGCGAGCTTGCGCTGGGCTCGGAGAACGTCCAGCGGGCGCTTGACGGCCGCGGCATCCGCACCGTGATCGTCCGCGCCCCTAAACTGGTGAACATCGTCCCGGCCTAGMGVQPETETGTAAVAAEGPDEGAYSFAAMEAKWPQVWEDLKVFTPVDDGSRERRYVLDMFPYPSGDLHMGHAEAFAMGDVVARYLRQQGYDVLHPIGWDSFGLPAENAAIKRNAHPSEWTYANIETQAASFKRYAISADWSRRLHTSDPGYYRWTQWLFKRFYERGLAYRKDSPVNWCPKDQTVLANEQVVNGACERCGTPVTKKSLNQWYFKITDYADRLLDDMDELRGHWPERVLAMQKNWIGRSEGAHVNFVIEADGGKPAKDVTVFTTRPDTLYGATFFVVAADAPLAVELVTEEHSAALDAYREQVKALTEIERQSTEREKTGVFTGRYAINPLNGEKLQVWAADYVLADYGTGAIMAVPAHDQRDLDFARTFGLPVRTVLDTGEEDPAVSGKATAGEGTLINSGALDGLPKAEAIPPAIGILEKQGTGEKFVNFRLRDWLLSRQRFWGTPIPIIHCAECGEVPVPDDQLPVTLPDNLRGEDLSPKGTSPLAAAEAWVNVECPNCQGPAKRDTDTMDTFVDSSWYFLRFVSPDYTEGPFDPEKINDWMPVGQYVGGVEHAILHLLYARFFTKVIHDLGMIDADEPFSALLNQGQVLNGGKAMSKSLGNGVDLGEQLDKYGVDAVRLTMIFASPPEDDVDWADVSPSGSAKFLARAWRLAQDVASVPGVDVTAGDRALRSVTHRSIADAADLLDNNKFNVVVAKLMELVNATRKAIDSGAGAADPAVREAAEAVAVILSLFAPYTAEDMWNALGHPASVANAGWPAHDVSLLVQDTVTAVVQVQGKVRDRLEVSPDITEERLRELALGSENVQRALDGRGIRTVIVRAPKLVNIVPANANANANANA
D1-29_027081515glpKCOG0554Glycerol kinaseATGAACCAGTACGTAATCGCCATCGACCAGGGCACCACCAGCTCCCGCGCCATCATCTTTGACCACAGCGGTAACATCGTCTCCTCCGGCCAGATGGAGCACGAACAGATTCTCCCCCAGGCGGGATGGGTTGAACACAATCCGGCCGAGATCTGGAACAACACCCGCGAGGTCATCGGCTCCGCGCTGTCCAAGGCGAACCTGACGCGGCACGACATCGCGGCCATCGGGATCACCAACCAGCGCGAGACTGCCGTGGTGTGGGACAAAACCACCGGTGAGGCTGTCTACAACGCCATCGTCTGGCAGGACACGCGCACGCAGGACATCGTGAACGAGCTGGCCAGGGACGGCGGGCCGGAGCGGTTCAAGCAGAAGGTGGGCCTTCCGCTTGCCACCTACTTTTCCGGGACAAAGATCAAATGGATCCTGGACAACGTCGAAGGCGCCCGGGCCAGGGCCGAGGCCGGTAGCCTGGTCTTCGGCAACACCGACGCCTGGGTCCTGTGGAACCTGACTGGCGGAGTGGACGGCGGCGTCCACGTCACTGACGTCACCAACGCCTCCCGCACGCTCTTTATGGACCTCGAAACACTCACCTGGGACGAGGAAATCCTCGAGATCTTCGGCGTTCCGCTGAGCATGATGCCGGCCATCAAGTCCTCTTCGGAGGTGTACGGGAAAGTCCACACTTCGCAGTTGCTGCGTGAGGTTCCCGTGGCGGGCATCCTCGGCGACCAGCAGGCTGCCACGTTTGGCCAGGCTGCGTTCCAGGCCGGCGAAGCGAAGAACACCTATGGCACCGGCTGCTTCCTGATCTTCAACACGGGCGAGGACATCGTCCACTCAAAAAATGGCCTGCTGACCACGGTGGGCTACAAGCTCGGCGACGCCGCCCCGCACTACGCCCTGGAAGGCTCCATCGCCGTCACGGGGTCACTCATCCAGTGGCTGCGCGACAACCTGGGCCTGATCAGCAGCGCGCCGGAAGTGGAAACCCTGGCGGCCTCCGTCAAGGACAACGGCGGCGTGTACATTGTTCCGGCGTTCTCCGGACTCTTTGCCCCGTACTGGCGCTCCGATGCCCGTGGTGCCATCGTGGGCCTGACCCGGTTCGTCAACAGGAACCACATTGCCCGGGCCGCGCTGGAGGCCACGGCGTTCCAGACCCGCGAGGTACTGGATGCCGTCAACGCAGACTCCGGCGTTCCACTGACCGAGTTGAAGGTCGACGGCGGCATGGTCGCCAACGATGCCCTGATGCAGTTCCAGGCGGACATCCTTGGAGTCCCGGTCATCCGGCCGAAGGTGGTGGAGACCACCGCCCTGGGGGCAGCCTACGCCGCGGGCCTCGCCGTCGGCTTCTGGAAGGACCTGGGCGAACTCTCGGCAAACTGGTCCGAGGACAAACGCTGGAAACCCCAGCTGGACCAGGCTGAGGCTGACCGCCAGCTGCGGCTGTGGAAGAAGGCAGTCACCAAGTCAATGGACTGGGTGGATGAGGACGTGAAGTAGMNQYVIAIDQGTTSSRAIIFDHSGNIVSSGQMEHEQILPQAGWVEHNPAEIWNNTREVIGSALSKANLTRHDIAAIGITNQRETAVVWDKTTGEAVYNAIVWQDTRTQDIVNELARDGGPERFKQKVGLPLATYFSGTKIKWILDNVEGARARAEAGSLVFGNTDAWVLWNLTGGVDGGVHVTDVTNASRTLFMDLETLTWDEEILEIFGVPLSMMPAIKSSSEVYGKVHTSQLLREVPVAGILGDQQAATFGQAAFQAGEAKNTYGTGCFLIFNTGEDIVHSKNGLLTTVGYKLGDAAPHYALEGSIAVTGSLIQWLRDNLGLISSAPEVETLAASVKDNGGVYIVPAFSGLFAPYWRSDARGAIVGLTRFVNRNHIARAALEATAFQTREVLDAVNADSGVPLTELKVDGGMVANDALMQFQADILGVPVIRPKVVETTALGAAYAAGLAVGFWKDLGELSANWSEDKRWKPQLDQAEADRQLRLWKKAVTKSMDWVDEDVKPGPT0018435_2244DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864NANA
D1-29_027091830hypothetical proteinTTGGCCTGCAAGGATTCATTGGCCGCGAGCGCCATCTCTGAACAGGCGGCTGGGCCGCGTGCTTCAGTGCAGGGCCTGCGCCGGCGCCCGCACGCGCGGGTGCTGATCGTCGGTGGAGGTATTAATGGTGTCGGCACATTCCGCGACCTTGCCCTGCAGGGCGTCGACGTGGCGCTGGTGGAACGCGGTGACTATTGCCAAGGGGCCAGCGGCGCGTCGTCCCACATGATCCATGGCGGCATCCGCTACCTGGAAAATGGGGAATTCCGCCTGGTCCGGGAGTCCGTGGTGGAGCGCAACCGGCTGCTCCGCATTGCACCCCACTATGTGAAGCCCCTGCAGACCACAATCCCCATCTTCAGCACCTTCTCCGGCGTGCTCTCGGCTCCCTTGCGGTTCCTCACGCACAAGCAGCAGGGCAAACCCAAAGAGCGCGGGGCGTTCCTGATCAAGCTTGGCCTCAGCCTGTACGATTCCTTTTCCCGTGACGGCGGCAGCGTGCCGCGGCACCAGTTCCGTGGACGCAGGAAATCCCTCGCGGACCTGCCGCACCTCCACCCCGGCATTAAGTACACGGCCACATACTTCGACGCCTCGGTGCATAACCCGGAACGCCTGACGCTGGATGTCCTGCAGGATGGCGAGAAGGCAGGGTTGGCCAGCACCGGCGCACCGAGCACTGCCCGGGCCAGCAACTACCTTTCGCTTCACACCGTGCAACCGCCAGCAGCTTCTGCCGGCGCAGGTTCAGGCGCTGTTTCTCCCAGCGCTGGCTCCACCGTCCAGCTGCGGGACGAACTGACCGGCGAGCTGTTCGATTTTACGGCGGACATCATCATCAACACCACCGGGGCATGGGTGGATCTGACCAACCAGGCGATGGGTGCCGCTTCGTCCTTTATGGGCGGCACCAAAGGCTCCCACATTGTCCTGGACCACCCGGGCCTCCTTGAAGCCTGCCAGGGCCGGGAGATCTTCTTCGAACACACGGACGGCCGGATCGTGCTGATCTACCCCATGGGGGACCGTGTCCTGGTGGGAACCACGGATGTAGACGCGGACATGGCCCAGGATGCGATCTGCACAGACGAGGAGATCGCCTACTTCATTGACCTGATCGGCCATGTCTTCCCGGCCATCACAGTCCGGCGGGACCACATCGTCTACACGTTCTCCGGCGTGCGTCCCCTGCCCAGGCACGACGAAACACAGCCCGGCTTTGTCTCCCGCGACTACCGGATCGAACGGCGCGGCCCTGAGCACAACGGGACGGGCGCCGTCGTCCTCAGCCTGGTGGGTGGCAAATGGACCACTTTCAGGGCCATGGCCGAGCACCTGGCAAACGATGTCCTCGCCGAGCTGGGCATGGAGCGGAAGGTGTCGACGGCGCAGCTTGCCATCGGGGGCGGCGCAGGCTTCCCGGCGGACGGGCATGGAGTCCAGAAATGGATCAAGGGCCATATGTCCGCAGGCCGCGATGCCCACCGGACCGAAGTGCTCCTGACGCGCTACGGAACCCGGGCGGAGGAAGTCATCGGCTTCCTCGATGCCGGCCCGGACCGGCTGCTCCACTCGAGCCGTGAACTCAGTGTCCGCGAGCTGGAGTTCATGGCCCGGCATGAGCACGTGGCCCACCTGACCGACGTCCTGATCCGCCGCACGTCCCTTGCCTTCAGGGGACTGGTCACCGGCGAACTGCTCAACGAGCTTGCCGACGTCCTGGCCGCGCCGCTGGTTTGGGATGCCGGAACGAAGGCAGCAGAAATCCGGCACGCACAGGAAGTGCTTGAACGCTTCCACCGCGTCCAGATTCACAGCCTGGTCGGATAGMACKDSLAASAISEQAAGPRASVQGLRRRPHARVLIVGGGINGVGTFRDLALQGVDVALVERGDYCQGASGASSHMIHGGIRYLENGEFRLVRESVVERNRLLRIAPHYVKPLQTTIPIFSTFSGVLSAPLRFLTHKQQGKPKERGAFLIKLGLSLYDSFSRDGGSVPRHQFRGRRKSLADLPHLHPGIKYTATYFDASVHNPERLTLDVLQDGEKAGLASTGAPSTARASNYLSLHTVQPPAASAGAGSGAVSPSAGSTVQLRDELTGELFDFTADIIINTTGAWVDLTNQAMGAASSFMGGTKGSHIVLDHPGLLEACQGREIFFEHTDGRIVLIYPMGDRVLVGTTDVDADMAQDAICTDEEIAYFIDLIGHVFPAITVRRDHIVYTFSGVRPLPRHDETQPGFVSRDYRIERRGPEHNGTGAVVLSLVGGKWTTFRAMAEHLANDVLAELGMERKVSTAQLAIGGGAGFPADGHGVQKWIKGHMSAGRDAHRTEVLLTRYGTRAEEVIGFLDAGPDRLLHSSRELSVRELEFMARHEHVAHLTDVLIRRTSLAFRGLVTGELLNELADVLAAPLVWDAGTKAAEIRHAQEVLERFHRVQIHSLVGPGPT0006775_625DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111NANA
D1-29_02710963deoRCOG2390Deoxyribonucleoside regulatorATGGCAACCAGCCGCCACTCGGATGCGCTCCGGGCCGCACAGATGTATTACCTCCAGGACCTGACCATGGATGCCATTGCACGGGAGCTGCGAACATCCCGGTCCACGGTTTCCCGCCTTCTCTCAACTGCCCGGAACTCGGGTCTTGTGCAGATCCAAATTCGAAACCCGATGGACATCGGCCCGGAACTTGAAGGAATGATCCGGAACGAGTTCAACGTGGACGTGCACGTTGTCCCGGTGCTGGAAACCCTTAATGAGGCGGAAACGCTCGACCGCGTGGCCAGGCAGGCTGCCCGCACCATTGGACCGCTGGTGGACTCCAACGCGATTATCGGCGTGGCGTGGGGATCGACCTTGAGTGCAGTAAGCCGTCACCTGACCCCGAAAATTACCCACGACAGTGTGATCGTCCAGCTCAACGGAGCCGGAAACATGCACACCACGGGCATCACTTACGCAAGCGACATCATGCGCCGCTTTGGCAACGCATACGGAGCGCGTGTGGAGCAGTTCCCCGTTCCGGCCTTTTTCGACCACGCCGGCACCAAAACGGCCATGTGGAATGAGCGCAGCGTGCAGCGGATCCTGGATCTCCAGTCCAGGATGAGCATGGCCATCTTCGGGGTGGGTTCCGTGGACGCCGACTTTCCCAGCCATGTCTACGCCGGTGGTTACCTTGATGAAAACGACCTGAAAATCCTGGCCAACTCAGATGTTGTGGGCGACGTTGCCACCGTTTTCTTCAGGGGTGATGGGTCCTCTGACGGCATCGTGCTGAACGAACGGTCCACCGGGCCGGCCCTGGACCAGCTGCGGCAGGTGCGGCGGCGGATCTGCGTGGTGTCCGGCGCCTCCAAGATCAATGGCCTGCGCGGGGCCCTCACTGCCGGCTTGGCGACCGACCTCATCCTGGATGAAGCCACAGCACGCCGACTCGTGGCATTCGACGGCGTCTCCTGAMATSRHSDALRAAQMYYLQDLTMDAIARELRTSRSTVSRLLSTARNSGLVQIQIRNPMDIGPELEGMIRNEFNVDVHVVPVLETLNEAETLDRVARQAARTIGPLVDSNAIIGVAWGSTLSAVSRHLTPKITHDSVIVQLNGAGNMHTTGITYASDIMRRFGNAYGARVEQFPVPAFFDHAGTKTAMWNERSVQRILDLQSRMSMAIFGVGSVDADFPSHVYAGGYLDENDLKILANSDVVGDVATVFFRGDGSSDGIVLNERSTGPALDQLRQVRRRICVVSGASKINGLRGALTAGLATDLILDEATARRLVAFDGVSNANANANANA
D1-29_02711867COG0656putative oxidoreductase/MSMEI_2347ATGAAAACCTCACCCCGGCTCAGCCTGAACAACGGCGTGCTGATCGACCAGCTGGGATACGGGCTGTACAAAGTCCCGACGACGGAAGCTGCGTCACTGGTGGCCATGGCACTGGGCGCGGGGTACCGCCACTTCGACACAGCGGCGATGTACAGGAACGAAACAGGGGTGGCGCGGGGCATCAGTTCGCTGTCCACGCTGGAGGAGACCGGCGGCTCAGGTGAGGCGTCGCCCGGCATGTCCCGGAACGATCTCTTCATCACCACGAAGGTGTGGAACGACGACCAAGGGTATGACGCAACCCTCCGCGCCTTCGATACATCCATGGTGAACCTCGGCCTTGACTACGTGGATATGTACCTCATCCATTGGCCCTGCCCCAGGCGGGGGCTCTTTACGGAAACCTACCGGGCCATGGAGACCCTCTACCGGGAAGGCAAGGTCCGCGCGATCGGAGTCTGCAACTTCCAGCCTGCCCACCTTGACCGGTTGCTCGACTCGGCCGAGGTGGTCCCGGCTGTCAACCAGATCGAGCTCCACCCCTGGCTGCAGCAAGCGGAGCTGAGGGAGAAGCACCAGGGCCTGGGGATCAGGACCGAGGCCTGGAGCCCCCTGGGCCGGGGAAGGGTGCTTGCGGATCCGGTGGTTCAGGCATGCGCAGCGGAGCACGGGCGCACCCCCGCGCAGGTCATCCTGAGGTGGCACATCCAGCTCGGCAACATCGCGATCCCCAAAGCAAGCTCCGAGGCCCGGATCCGGGAGAACATGGACATCTTCGGATTCAAACTCTCCGAGCGTGACATGGCCGCCCTTGCCGAACTTGAGCGCGGGCAACGCACCGGCTCCCACCCGGACAACGTCAACTAGMKTSPRLSLNNGVLIDQLGYGLYKVPTTEAASLVAMALGAGYRHFDTAAMYRNETGVARGISSLSTLEETGGSGEASPGMSRNDLFITTKVWNDDQGYDATLRAFDTSMVNLGLDYVDMYLIHWPCPRRGLFTETYRAMETLYREGKVRAIGVCNFQPAHLDRLLDSAEVVPAVNQIELHPWLQQAELREKHQGLGIRTEAWSPLGRGRVLADPVVQACAAEHGRTPAQVILRWHIQLGNIAIPKASSEARIRENMDIFGFKLSERDMAALAELERGQRTGSHPDNVNPGPT0001320_228DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001320-dkgA-K06221NANA
D1-29_02712930lip3Lipase 3ATGAAAACCGCCCACCCCCAGCCATCCAGCACGCCGTCCTACATCAGCCCGGAACTGGAAACCAGGGCCACCGCCTCGGTGATCGAACTGGACGGCACAGCAGTTGCCTACTGGACCTACGAGCCGGCCCGCGTGACGTCGGAGACCCGCACCATCCTGGTTATCCACGGCTTCCGCGGCGATCACCACGGCCTGCTCCGCGTGGCTGACCAGCTTCCAGGGATGCGGATCATCATGCCCGACCTCCCCGGCTTCGGCAGCTCGGACGCATTTGCAGCCGGCCCGCACACCGTGGAACGCTATGGCCGGTTCATCACTGACTTGATGGCTGCCCTGGACCTCGGCCCTGACACGGTGCTGCTGGGACACTCCTTCGGTTCGATCATCGCCGCGCACTTTGTGGCAGCCCATCCCGGTACCGTCAATCCCCTGATCCTGATCAACCCCATTGCCGCGCCGGCGCTGGAGGGGCCCAAGGGAATCATGACAAAACTTGCTGTCCTCTACTACCGGCTGGCGGCCCGGCTTCCCCGTGCACTGGGACTTTCCCTGCTGCGCAGCCCGCTGATCGTCCGGGTCATGAGCGAAGCCATGGCCAAAACCGGAGACAAGGATCTGCGGCGCTTCATCCACGGCCAGCACCACGCCTACTTCAGCGCCTTCGCCAACAGGGAAAGCCTCCTTGAGTCGTTCACCGCGTCCGTAGGCAGCCATGTGGCGGAGGTGGCCGGCAAACTGACGCTGCCGGTGCTGCTGATTGCCGGCGAAAAGGACGAAATCGCCACGCTCCCGGACCAGCACCGGCTGGCCGCGCTGTTGCCGGACTGCTCGCTCAAGGTGATTCCCGGCGTCGGACACCTGATCCATTACGAAACGCCCGGCCCTGCCGCCGGCTTTATCAGCAGCTTCCTGAAGGACCATCCCGCATGAMKTAHPQPSSTPSYISPELETRATASVIELDGTAVAYWTYEPARVTSETRTILVIHGFRGDHHGLLRVADQLPGMRIIMPDLPGFGSSDAFAAGPHTVERYGRFITDLMAALDLGPDTVLLGHSFGSIIAAHFVAAHPGTVNPLILINPIAAPALEGPKGIMTKLAVLYYRLAARLPRALGLSLLRSPLIVRVMSEAMAKTGDKDLRRFIHGQHHAYFSAFANRESLLESFTASVGSHVAEVAGKLTLPVLLIAGEKDEIATLPDQHRLAALLPDCSLKVIPGVGHLIHYETPGPAAGFISSFLKDHPANANANANANA
D1-29_027131092mshA_2D-inositol-3-phosphate glycosyltransferaseATGAAAATAGTCATCGATGCACGATTCACCCGCACCGACCACCATGACGGGATCAGCCGCTACGGAGCCAGCCTCATCGCGGCCACGGCAAAGATTGCCGACGTGTCCATGCTCATCAGCGACATCCGCCAACTGGCGCTGCTGCCGGACGTTCCCTACACGCTGATCAACAGCCCGCTGTCGCCACTCGAGCTGGTCGTGGCACGCAAGGTGAACCCGCTCGGTGCGGACGTTGTTGTCTGCCCCATGCAAACGATGGGCAGCTGGGGGCGAAAGTACGGCCTGGTACTCACGCTGCATGACCTCATCTACTACGAGCACTCCGCTCCGCCGGGCTTCCTCCCCGCACCGGTGCAGCTGCTGTGGCGCCTCTACCACAAGGCGTTCTGGCCGCAGCGGCTGCTCCTCAACCGGGCTGACATCGTCGCCACGGTCAGCAGGACCACCGAGGCCCTGATGGCCAAGTACCGGCTCACAGAGCGGCCGGTACGGATCATCAGCAACGCGCCGCAGCCGGCGCAGGAACATCGGGATCCGGCCGCCGGCGCAGACCATTCCCTGGTGTACATGGGCTCCTTTATGTCCTACAAGAACGTGGAAACCATGGTGGCCGGGATGGCCGAACTTCCGGATTTCACCCTTCATCTGCTGAGCAGGATTTCACCGCAACGCCGCGCGGAACTGGAAATCATGGTCCCGCCCGGGGCGAAGGTGGTCTTCCACAACGGTGTCACCGATGAGGAGTACTCCACCCTCCTCAAGCGGGCCACGGCGCTGGTTACGCTTTCCCAGGCTGAAGGGTATGGCCTCCCGCTGGTGGAGGCGATGTCCCTTGGCACGCCGGTGATCGCCAGCGACATTCCCATCTTCCGGGAAGTCGGCGGCGAGGCCGCCTCCTACGTGGATCCTGCCTCGCCCTCCGGCTTTGCCGCCGCCGTGGAAAAACTCCGCGACGACGGCCACTGGCAGGAAGTTTCCCGCCTTTCGGTGGCCCGTGCCCGGCAGTTCAGCTGGGAAGAATCCGCCCGGCAACTGGTGGACGTGGCCCACGATATTGTCACCATGCGTTCCCGCCGGGGACCGGCACGCTAAMKIVIDARFTRTDHHDGISRYGASLIAATAKIADVSMLISDIRQLALLPDVPYTLINSPLSPLELVVARKVNPLGADVVVCPMQTMGSWGRKYGLVLTLHDLIYYEHSAPPGFLPAPVQLLWRLYHKAFWPQRLLLNRADIVATVSRTTEALMAKYRLTERPVRIISNAPQPAQEHRDPAAGADHSLVYMGSFMSYKNVETMVAGMAELPDFTLHLLSRISPQRRAELEIMVPPGAKVVFHNGVTDEEYSTLLKRATALVTLSQAEGYGLPLVEAMSLGTPVIASDIPIFREVGGEAASYVDPASPSGFAAAVEKLRDDGHWQEVSRLSVARARQFSWEESARQLVDVAHDIVTMRSRRGPARNANANANANA
D1-29_027142139priACOG1198putative primosomal protein N'ATGACCGCCGAAGAGAATGGCGCTGTCCAGCTTTCCCTGCTGCAGGGATTCCCGTCCAGGGCGCCTCAGTCAGGCCCTGCTCTGGCCGCGAACCTGCCCGTGGCCAGGGTGCTCGTCGAATCCTCATTGCCGCATCTGGACCGTCCCTTTGATTACAGTGTGCCTGCAGGGCTGGATGCTGAGGCCCAGGCCGGCGTGAGGGTCAAGATCCGGTTCAACGGCCAGGACTTGTCCGGCTTCATCATTGAGCGCGTGGCCGAATCCGATGCGGGCCATACGTTGGTGCCCCTGCAGAAGGTGGTCTCGCCGCTATCCGTCCTCACACCAGAGGTCCGTGAGCTCATCACGGCAGTAGCCGCCCGCTATGCAGGGACAGTCAGCGACGTCCTTCGGGTCGCCATTCCGCCCAGGGTGGCCCGGCTCGAAAAGGAATTTTTGGCCGAAGCCAGCGGGCCCGATGTGGACAGCCGATCCGCTGTGGACGGTGGGCCCGGGGCGGACGCCGCGGCTGTTTCCGGCACCCTCCCTGCTTCCGCAGGCGGCTGGGCAAGCTACGCCAATGGCCAGCCCTTTATCCGGCACCTGCAGGATGGCGGCGCGCCACGTGCTGTCTTCAGCCCGCTGCAAGGGTTTGGGCCCTCCGCATGGCCCCGGCTCATTGCCGAAGCCGTGGCTGCTGTGCGAGGATCAGGCCGCGGCGCCGTGGTGGTGGTCCCTGACTACCGCGACCTGCAGCGGCTGGAAGACGCTCTCGCTGAACTCCTGCCTGCCGATGACATCGCACGCCTCACCGCCGACGACGGTCCCACACTCCGCTACCGGAACTTCCTGCGCATCCTCGACGGATCGGCACGCGTAGCCATCGGCACCAGGTCTGCGGCGTATGCTCCCGTGCGGGATCCGGGCCTGGTGGTCTGCTGGGATGACGGGGACGATCTCCACATCGAACAGCGGGCACCTTACGCGCACGCCCGCGAGGTCCTCCTGCTGCGGGCTGAGCAGCAAGGCCTGGCCTGCCTGATGGCGGCTCACACCCGAAGCACTGAGGCGCAGCGCCTGGTCGAGGCAGGATGGGCCATGCCCGTCGACGCCGGGAGGGCCGTGGTGCGCCGGACTGTACCCCGGGTCCTGAATACCGCCGACAGCTTTGAACAGGAAAGGGATCCCCTTGCGCGGATCGCGCGGCTGCCCGGCGCCGCCTGGCGCGCGGCCAAGGAAGGGCTTGAACGCGGACCTGTCCTGGTGCAGGTGGCGCGGGCAGGCTATGCCCCGTCCCTGGTGTGTGAAACCTGCCGCGAAGCTGCCCGCTGCGGCTCCTGCCAGGGGCCCCTGGCCGTTACGGGCGCCACGGGCAGTTCCGCCGTTCCCCAATGCCTCTGGTGCTCCACCCCGGCGCCTGACTGGAGTTGCACGCATTGCGGCGGCCGGGCGCTCCGCAAAGGGGCCACCGGAGTCATGCGCACAGCTGAAGAGCTGGGGCGGGCCTTTCCCGGCAAGACGGTGATTACCTCCTCCGGCGGCCACGTCAAGGCCAGCGTGGGCAGGGCCAAGGCCCTCGTGGTGGCCACTGTGGGTGCCGAACCCGTCGCTGACGGCGGATACGCCGCGGCGTTGCTCCTCGACGGCGACTCCCTCCTGCGCCGGGAGAACCTGCGCGCGGGGGAGGACACCGTGCGCCGCTGGTTTAATGCGGCAGCGCTGGTGCGTCCGGCGTCGGAGGAAGGCCTGGTGGTGATCACCGCGGCGGACACCGGCGCAGTCGGTGCATTGCTTCGCTGGGACCCAGCGGGCTTCGCCCAGCGGGAGCTGGCCCTCCGGGCTGAGTTGCGGCTGCCGCCCGCGGTCCGGGTCGCCTCTGTCACCGGACCGCGTGCCGCCGTCGAGCATTACACCGGAGGCGTGGAAAAGCAGCTGGAATCGTCGGGTGTGACGCTTCGGGTGGCAGGCCCGGCGCCGCTGCTCCTGACTGGTCCCGCAACGCCGCGGCGCTCCGGGGAGGATGTCCGTACCCTGCTGTTCTTTCCCTATGGGCAGGCGGCCACCGTCACCAGGACGTTGCGGGCAGCGCGGGCTGCGGCGGCGGCCAAGCGGAGCGAGGAACCGGTACAGGTCAGGCTGGACGGCGTGGACGTCCTCTAGMTAEENGAVQLSLLQGFPSRAPQSGPALAANLPVARVLVESSLPHLDRPFDYSVPAGLDAEAQAGVRVKIRFNGQDLSGFIIERVAESDAGHTLVPLQKVVSPLSVLTPEVRELITAVAARYAGTVSDVLRVAIPPRVARLEKEFLAEASGPDVDSRSAVDGGPGADAAAVSGTLPASAGGWASYANGQPFIRHLQDGGAPRAVFSPLQGFGPSAWPRLIAEAVAAVRGSGRGAVVVVPDYRDLQRLEDALAELLPADDIARLTADDGPTLRYRNFLRILDGSARVAIGTRSAAYAPVRDPGLVVCWDDGDDLHIEQRAPYAHAREVLLLRAEQQGLACLMAAHTRSTEAQRLVEAGWAMPVDAGRAVVRRTVPRVLNTADSFEQERDPLARIARLPGAAWRAAKEGLERGPVLVQVARAGYAPSLVCETCREAARCGSCQGPLAVTGATGSSAVPQCLWCSTPAPDWSCTHCGGRALRKGATGVMRTAEELGRAFPGKTVITSSGGHVKASVGRAKALVVATVGAEPVADGGYAAALLLDGDSLLRRENLRAGEDTVRRWFNAAALVRPASEEGLVVITAADTGAVGALLRWDPAGFAQRELALRAELRLPPAVRVASVTGPRAAVEHYTGGVEKQLESSGVTLRVAGPAPLLLTGPATPRRSGEDVRTLLFFPYGQAATVTRTLRAARAAAAAKRSEEPVQVRLDGVDVLNANANANANA
D1-29_027151236metKCOG0192S-adenosylmethionine synthaseGTGACTTTACCGCTGCACATTCCCCAGACCCACGGGGCTACGCCCTCCGCACTCCGGCTCTTCACCTCGGAGTCCGTCACTGAAGGCCACCCGGACAAGATCTGCGACCAGATCAGCGATGCCATCCTGGACGCGCTGCTTGCGGCAGACCCGGAGTCCCGCGTGGCCGTGGAGACGATGGCGACCACCGGCCTGGTCCATGTTGCCGGTGAGGTCACCACCGACGCCTATGTCGAAATTCCGCAGATCGTCCGCGAGACCATCCTCGGAATCGGCTACGACTCCTCGGCCAACGGCTTCGACGGTGCCCGTTGCGGCGTCTCCGTATCCATCGGGCAGCAGTCAAACGACATCGCCGGGGGAGTCTTCAACTCCCTCGAAGCCCGCGAAGGCCGCCAGGAGGACGACTACGACCTTCAGGGTGCCGGCGACCAGGGCCTGATGTTCGGCTACGCCAGCGACGAGACGGCGTCCTACATGCCGACGCCGATCTGGCTCGCCCACCGCCTTTCCGAACGCCTCACCGAAGTCCGCAAGTCAGGCGAACTCTCCTACCTTCGGCCCGACGGCAAGACCCAGGTCACAGTGGGATATGACCGCGACGTGCCCGTCTCGGTCGAAACCGTCGTGATTTCCAGCCAGCACGCCGAAGGCACCAGCCTGGACAGGCTGCGGGCGGACCTCGCAAAAATTGTGATCGAGCCGGTGCTCGCCGCCGCCAACCTGGATATCTCCCGCGCGGCCAACATCCTGAACCCGGCCGGCGAATTTGTCATCGGCGGGCCCGTAGGCGATGCCGGCCTGACCGGCCGCAAGATCATTGTTGATACGTACGGCGGCATGGCCCGGCACGGCGGCGGCGCCTTCTCCGGCAAGGACCCGTCCAAGGTGGACCGTTCCGCTGCATACGCCATGCGCTGGGTCGCCAAGAACGTTGTAGCGGCCGGGCTGGCCAAAAGGGCCGAAATCCAGATTGCGTACGCCATCGGCCAGGCCCGCCCCGTGGGCACCTACGTGGAAACCTTCGGCACTGAAACCGTGGACCCGCTGCGGATCAGCGAGGCCATCGCTGAGATCTTTGACCTCCGCCCGCGCGCCATCATCGACGCCCTGGACCTCAAGCGGCCCATCTATGCCAAAACGGCCGCTCATGGCCACTTCGGGCGGGATGACCCTGACTTCACTTGGGAGCGGCTGGACCGTGTGGACGACCTCAAGGCCTTCTTCAACGCCTAAMTLPLHIPQTHGATPSALRLFTSESVTEGHPDKICDQISDAILDALLAADPESRVAVETMATTGLVHVAGEVTTDAYVEIPQIVRETILGIGYDSSANGFDGARCGVSVSIGQQSNDIAGGVFNSLEAREGRQEDDYDLQGAGDQGLMFGYASDETASYMPTPIWLAHRLSERLTEVRKSGELSYLRPDGKTQVTVGYDRDVPVSVETVVISSQHAEGTSLDRLRADLAKIVIEPVLAAANLDISRAANILNPAGEFVIGGPVGDAGLTGRKIIVDTYGGMARHGGGAFSGKDPSKVDRSAAYAMRWVAKNVVAAGLAKRAEIQIAYAIGQARPVGTYVETFGTETVDPLRISEAIAEIFDLRPRAIIDALDLKRPIYAKTAAHGHFGRDDPDFTWERLDRVDDLKAFFNAPGPT0020000_854DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-2_BIOSYNTHESIS,PGPT0020000-metK-K00789NANA
D1-29_027161233coaBCCOG0452Coenzyme A biosynthesis bifunctional protein CoaBCGTGCGCATAGTCCTCGGAGTCGGGGGAGGGATTGCCGCCTACAAGGTGGCATCGCTCCTCCGGCTTTTTACTGAAGCGGGCCATAACGTGACGGTGGTTCCCACCGAGGCCGCCACGCGCTTTGTCGGCGTTGCCACCTGGGAGGCCCTGTCCGGCAACCCGGTCAGCAACAGCGTCTTCGATGACGTCCACCAGGTCAATCACGTGCGGCTGGGACATGAGGCGGACCTCGTTGTCGTGGCGCCGGCCACCGCGGACCTCATCGCCCGCGCGGCAGCCGGCCTGGCTGACGACCTCCTCACCAACACCCTGCTGATGGCCCGGGGACCCGTCCTTTTTGCCCCCGCCATGCACACGGAAATGTGGCACAACGCGGCCACCCGCGCCAACGTGGAGACGCTGCGCGGACGGGGCATCGCCGTGCTTGATCCTGCCAGCGGCCGCCTGACCGGCACCGACTCCGGGCCGGGCCGGCTGCCGGAGCCGCAGGACATCTTCGACGCCGCCATCGCCCTGACCCAGGGACAGTCGGACTACCAGCTTCCCCTGGCCGGGCGCACTGTCACCATCAGCGCGGGCGGAACCCGTGAACCGCTGGATCCCGTCCGCTTCCTGGGCAACCGCTCCTCAGGCAAGCAAGGCGTTGCCCTGGCCGTGGCTGCCCGCAACGCCGGCGCCACCGTGCGGCTGCTCGCTGCCCACATGGACGTTCCGGCGCCGGCCGGCGTCGAGGTCGTGACCTTGGAAACTGCCCTGCAGCTGCGCGAAGCGGTGCTGGCAGCGGCAGCCGATTCCGACGTCGTGATCATGGCGGCGGCTGTGGCGGATTTCCGTCCCGCCGAGATCTCCGACACAAAGATCAAAAAACGCGATGACACCGCGGACCCCGTCATTACGCTGATCCGGAACCCGGACATCCTCCAGGAGCTGGTAGAAGTCCGCGGGATGTCCCAGCGCAGCCAGCTGATCGTCGGGTTCGCTGCCGAAACCGGCGACGGCCACGGGGATGTGCTCGCCTATGCCGAGGCCAAACTGAAACGCAAAGGCTGCGACCTCCTGGTGGTGAACCATGTGGGAACCGACAAGGTCTTCGGCCAGGACACCAACTCCATCGTCATCCTGGCCCGTTCCGGCTCCGATCCGCAGCTTGCCTCGGGAACCAAGAGCGAGGTTTCGGCCGCCATTATTAGCCGGATCGGCCTCGAACTGAACCACGTTTCGCCCCGCGCCTGAMRIVLGVGGGIAAYKVASLLRLFTEAGHNVTVVPTEAATRFVGVATWEALSGNPVSNSVFDDVHQVNHVRLGHEADLVVVAPATADLIARAAAGLADDLLTNTLLMARGPVLFAPAMHTEMWHNAATRANVETLRGRGIAVLDPASGRLTGTDSGPGRLPEPQDIFDAAIALTQGQSDYQLPLAGRTVTISAGGTREPLDPVRFLGNRSSGKQGVALAVAARNAGATVRLLAAHMDVPAPAGVEVVTLETALQLREAVLAAAADSDVVIMAAAVADFRPAEISDTKIKKRDDTADPVITLIRNPDILQELVEVRGMSQRSQLIVGFAAETGDGHGDVLAYAEAKLKRKGCDLLVVNHVGTDKVFGQDTNSIVILARSGSDPQLASGTKSEVSAAIISRIGLELNHVSPRAPGPT0008815_905DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008815-coaBC|dfp-K13038NANA
D1-29_02717261rpoZCOG1758DNA-directed RNA polymerase subunit omegaGTGGCCACGAACCTTGAAGGCATCATCAACCCGCCGATCGACTCACTGCTTGAGGCAGCTGATTCCAAGTACGGCCTGGTGATCTTCGGCGCCAAGCGTGCACGTCAGATCAACGCTTACTACGCCCAGCTGCACGAGGGCCTGTTTGAATACGTCGGCCCGCTCGTTGACACCAAGCTCAACGAGAAGTCGCTGTCCATCGCCCTGCGCGAGATCAACGAAGGCAAGCTTGTATCCACGCCGATCGAAGCTGCGGAGTAAMATNLEGIINPPIDSLLEAADSKYGLVIFGAKRARQINAYYAQLHEGLFEYVGPLVDTKLNEKSLSIALREINEGKLVSTPIEAAENANANANANA
D1-29_02718573gmkCOG0194Guanylate kinaseGTGAGCAAGAAACCGGGACTGACAGTCCTCGCTGGTCCGACGGCTGTTGGCAAAGGCACCGTGTCCACCTATATCCGGGACAACTACCCCGGCGTCTGGCTGTCCGTATCAGCCACCACCCGTGAGCCGCGGCCCGGAGAGCGCGACGGAGTGCACTACTTTTTCAAGACCGCCGAGGAGTTTGACCGGCTGATCGAGGCAGGCGAACTCCTGGAGTGGGCAGTGGTCCACGGGAAGAACCGCTACGGCACGCTGCGGAGCACCGTTGACCGCGCCATCGCGGACGGCCGTTCCGTCCTGCTGGAGATCGACCTGCAGGGCGCCCGGCAGGTCAAGGAGGCCGTTCCGGACGCCCAATTCGTCTTCCTGGCGCCCCCCAGCTGGGACGAAATGGTGCGCCGGCTGGTGGGCCGGGGCACCGAAACGGCCGAGGAACAGCAGCAGCGGCTGGAAACCGCTAAACTAGAGCTTGCCGCTGAACCGGAGTTCGATCACACCGTCATCAATGATGACGTTCGCCGGGCAGCGGACGAGCTTGTTTCACTCATGGGGCTGACCCCGAACCCGCGCTAGMSKKPGLTVLAGPTAVGKGTVSTYIRDNYPGVWLSVSATTREPRPGERDGVHYFFKTAEEFDRLIEAGELLEWAVVHGKNRYGTLRSTVDRAIADGRSVLLEIDLQGARQVKEAVPDAQFVFLAPPSWDEMVRRLVGRGTETAEEQQQRLETAKLELAAEPEFDHTVINDDVRRAADELVSLMGLTPNPRPGPT0021475_4837DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
D1-29_02719318hypothetical proteinATGAGCCTGCGACCCTTATCCGAGTCGGAACGGGCTGACGCTCTCAACAAAGCCGCTGCCGCCCGCGCGGCCAGGGCTGAAGCGAAAGCGCGGCTGAAGAACGGCGAAACCTCGGCTGCGGACCTTATCAGCTCCGCTGCCCAGGACGACGCCCTTGCCCGGATGCGGGTGGTTGAGCTGTTGGAGGCACTGCCCGGCATCGGAAAAGTCAGGGCTGCGGCCATTATGGACCAGCTGGGCATAGCGGCCTCGCGGCGGGTCAGGGGCCTGGGCGTTCACCAGCGCCAGGCGCTGGTAGATTTTATAGACGAGAAGTAGMSLRPLSESERADALNKAAAARAARAEAKARLKNGETSAADLISSAAQDDALARMRVVELLEALPGIGKVRAAAIMDQLGIAASRRVRGLGVHQRQALVDFIDEKPGPT0021475_394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
D1-29_02720900pyrFCOG0284Orotidine 5'-phosphate decarboxylaseATGCGGCACGGGAGAATGCAGTCGCCCAGAATGCCTGAGGTTGCAGCCACCGCTGCCAACCCCGGCCGGGAGTCCTTTGGCTCCCGGCTGGGGGCGGCCATGGCCTCCCGTGGTCCCTTGTGCGTGGGCATTGACCCGCATCCGGCGCTGCTGCAGAGCTGGGGGCTGAACGACGACGCCGCCGGGCTGCGCCGCTTTTCGCTGACGGTCCTGGAGGCTGTGAGTTTCCTCGCTGCCGCGGTCAAACCGCAGGTGGCGCTCTACGAGCGCCACGGTTCCGCTGGAATGGCCGTACTTGAGGAGGTACTGGCCGTTGCCCGGGATGAAGGCGTCCTCACCATCGCCGACGCCAAGCGCGGCGACATCGGCTCCACCATGGCTGCCTACGCGGATGCCTGGCTGCGGGACGGCTCGTCGTTGGCCGCTGATTCGGTCACCTTAAGCCCATACCTTGGATTCGAGTCGCTCCGGCCTGCCCTGGACCTGGCAGCGGACCATGGCCGTGGTGTGTTTGTCCTGGCGCTGACCTCCAATCCGGAGGGCGCCTCGGTGCAGCACGTCGGCGGGGGCGATTCGGTGGCCCGCCGGATCATCGGGGCAGCCGCTGCTGAAAACCGCAGGTATGCGGATTCCCTCGGCTCCGTTGGCCTGGTGGTCGGGGCTACCGTTGGCAGCGCGCTGGCCGAACTCGACCTTGACCTGGAGGCTGTTCGCGGCGCCATCCTTGCCCCTGGCCTCGGCGCCCAGGGTGCCACCCCGGCGGATCTGCGCAGGACCTTCGGCCCCGCGTATCCGCAGGTTCTGGGCACGTCCAGCCGTGACATCCTGGCCGCCGGACCGGAAATCCAGGGGCTCCGCGATGCGTCGCGGCGCACCCTGGACGGCCTGCGCGGAGAATAGMRHGRMQSPRMPEVAATAANPGRESFGSRLGAAMASRGPLCVGIDPHPALLQSWGLNDDAAGLRRFSLTVLEAVSFLAAAVKPQVALYERHGSAGMAVLEEVLAVARDEGVLTIADAKRGDIGSTMAAYADAWLRDGSSLAADSVTLSPYLGFESLRPALDLAADHGRGVFVLALTSNPEGASVQHVGGGDSVARRIIGAAAAENRRYADSLGSVGLVVGATVGSALAELDLDLEAVRGAILAPGLGAQGATPADLRRTFGPAYPQVLGTSSRDILAAGPEIQGLRDASRRTLDGLRGEPGPT0014965_428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591NANA
D1-29_027213360carB_3COG0458Carbamoyl-phosphate synthase large chainATGCCCAAGAGAACTGACCTTAAGAGCGTCCTGGTCATCGGTTCCGGCCCGATCGTCATCGGCCAGGCCGCTGAATTCGACTACTCAGGCACCCAGGCACTTCGTGTCCTCAAGGAGGAGGGCCTCCGGGTCATCCTGGTGAACTCCAACCCGGCCACCATCATGACCGACCCCGAGTTCGCCGATGCCACCTACATCGAACCCATCACGCCTGAAGTGGTGGAGAAGATCATCGCCAAGGAGCGCCCGGACGCCGTCCTGCCCACCCTGGGCGGACAGACCGCGCTGAACACCGCCATCGCACTGGACAAGAACGGTGTGCTCGAGAAGTACAACGTGGAACTGATCGGTGCCAACATTGCCGCCATCGAACTCGGCGAGGACCGCGAGAAGTTCAAGGGCGTGGTGGAGCGCTGCGGTGCCGAATCAGCCCGCAGCCACATCATCCACACCATGGACGAGGCCCTCAAGGCCGCTGAGGACCTCGGCTACCCCATGGTGGTCCGCCCGTCCTTCACCATGGGCGGCCTGGGTTCCGGGCTGGCGTACACCGAGGATGACCTCCGCCGCATCGTGGGCCAGGGCCTGCAGTACAGCCCCACCAGCGAAGTATTGCTCGAAGAGAGCATCCTTGGCTGGAAGGAATACGAGCTTGAGATGATGCGGGACAAGAACGACAACGTGGTGGTTGTCTGTTCCATCGAGAACTTCGACCCCGTGGGCGTCCACACCGGCGACTCCATCACGGTGGCGCCCGCACTCACCCTCACCGACCGCGAATACCAGCGGCTGCGGGACATCTCCATTGCCGTGATCCGCGAAGTGGGCGTTGACACCGGCGGCTGCAACATCCAGTTCGCCATCGAGCCGGACACCGGACGTGTTGTGGTCATCGAGATGAACCCCCGCGTGTCCCGCTCCTCGGCGCTGGCATCGAAGGCCACGGGGTTTGCGATTGCCAAGATCGCCACCAAGCTCTCCCTCGGCTACACCCTGGACGAGATCCCCAACGACATCACGCAGAAGACACCGGCGTCGTTTGAGCCCACCCTGGACTACGTGGTGGTGAAGGTTCCGCGGTTCGCCTTCGAGAAGTTCCCGGCGGCGGACAACACGCTCACCACCACCATGAAGTCCGTGGGCGAGGCCATGGCCATGGGCCGCAACTTCACCGAGGCACTGCAGAAGGCCCTGCGTTCCCTGGAACAGAAGGGATCGCAGCTGGACTTCAGCTCCGTCCCCGAATGGGAAGTGCCGGAGCTCATCGAAAAGGCCAAGCGCCCCACTACTGAGCGCCTGCACCAGGTGCAGCGTGCCCTGCTGGGCGGCGCCACGGTCGAGGACCTCTACGAGGCCACCAAGATCGACCCCTGGTTCCTGGACCAGCTGCAGCTGCTGAACGAGATCTCCCGCGAGATCCGCCAGTCCGGTGCCCTGACCGTGGAGATGCTCCAGCGCGCCAAGCGCCACGGCTTCTCCGACGAACAGATCGGCGCCCTGACGCACAACTCCGAAGCCGTGGTCCGCGGTGTCCGCCAGGCCCTGGGCATCCGCCCGGTCTACAAGACCGTGGACACCTGCGCCGCCGAGTTTGCGGCCTACACCCCGTATCACTACTCGTCCTACGACGAGGAGGACGAGGTGGCGCTGCACTCCAAGCCGTCCATCCTGATCCTGGGCTCGGGCCCCAACCGCATCGGCCAGGGCATCGAGTTCGACTACTCCTGCGTCCACGCCTCCATGGCGCTGCGCAAGGCCGGCTACGAGACCGTGATGGTCAACTGCAACCCGGAAACCGTGTCCACCGACTACGACGTCTCCACCCGGCTGTACTTCGAGCCGCTGACGCTTGAGGACGTCCTGGAGGTCATCGCGGCCGAGGAACGTACCGGCGGCGTGATGGGCGTGTTCGTGCAGCTCGGCGGCCAGACTCCGCTGAAGCTGGCGCAGCAGCTGGCAGACGCCGGTGTTCCCATCCTGGGCACCTCTCCCGAAGCGATCGACCTTGCCGAACACCGCGGCGCGTTCTCGCGGGTCCTGGACAAAGCCGGCCTTGTCTCCCCGAAGAACGGCACCGCCGTATCCTTCGAGGACGCCAAGAAGATCGCCGACGAGATCGGCTACCCGGTCCTGGTGCGCCCGTCCTACGTGCTGGGCGGCCGTGGCATGGAAATCGTCTACGACGAGCCCAACCTCTCCCGCTACATCGCCAACGCCACGGAGATCACCCCGGACCACCCGGTGCTGATCGACCGCTTCCTGGAGGACGCCGTCGAAATCGACGTCGACGCGCTCTTTGACGGCACCGACATGTACCTGGGCGGCATCATGGAGCACATCGAGGAAGCCGGCATCCACTCCGGCGACTCCGCCTGCGTCCTGCCTCCCATCACGCTGGGCACCAACGTCCTGGAACGGGTCCGGACCGCAACCCGGGCCATCGCCGAAGGTGTGGGAGTGCGCGGCCTGATCAACATCCAGTTCGCCCTGGCCTCGGACGTCCTGTACGTCCTGGAAGCCAACCCGCGCGCTTCCCGGACCGTGCCCTTCGTGTCCAAGGCCACCGGTGTCCAAATGGCCAAGGCCGCCGCCCTGATCGGCACCGGGGTCACCATCGGCCAGCTCCGCAGCGCCTACAAGATGCTGCCGGAAACCGGCGACGGCTCCACCCTGCCCCTGGACGCGCCCGTATCCGTCAAGGAAGCCGTTTTGCCCTTCAGCCGCTTCCGCACACCCGAGGGCAAGGTAGTGGACTCGCTGCTCGGCCCCGAGATGCGCTCCACCGGCGAGGTCATGGGAATCGACAAGCACTTCGACACCGCGTTCGCCAAGAGCCAGGCGGCTGCCAACAACGCGCTGCCCACCGAGGGCAAGATCTTCGTCTCTGTCGCCAACCGGGACAAGCGTTCGGTCATCATGGGCGTCAAGCGCCTCTCCGACCTCGGCTTCGAGATCGTGTCCACCGGCGGAACCGCAGACGTCCTGCGCCGCAACGGCATCCAGGCCACCCCGGTGCGCAAGGTAGCCGAAGGCAGCAGCGCCGAGGGGGAGGGCACCATCGCAGACCTCGTCATTGCCGGTGAGATCGACATGGTCTTCAACACACCCTCAGGCGGCGAAGCCCGCAGCGACGGTTACGAACTCCGCGCCGCTGCCACCTCAATCGGTATCCCCTGCATCACCACGGTGGCCGAGTTCAACGCCGCCGTGCAGGCGATCGAGGCCATGCGCACGTACGAATGGTCCGTGACCAGCCTCCAGGAGCACGCTGCAGCGCTGACAGCCTCACAGGAGGCTGCGCTGGAGAAGGCCGCAGCACAGAATGCGGCACGGGAGAATGCAGTCGCCCAGAATGCCTGAMPKRTDLKSVLVIGSGPIVIGQAAEFDYSGTQALRVLKEEGLRVILVNSNPATIMTDPEFADATYIEPITPEVVEKIIAKERPDAVLPTLGGQTALNTAIALDKNGVLEKYNVELIGANIAAIELGEDREKFKGVVERCGAESARSHIIHTMDEALKAAEDLGYPMVVRPSFTMGGLGSGLAYTEDDLRRIVGQGLQYSPTSEVLLEESILGWKEYELEMMRDKNDNVVVVCSIENFDPVGVHTGDSITVAPALTLTDREYQRLRDISIAVIREVGVDTGGCNIQFAIEPDTGRVVVIEMNPRVSRSSALASKATGFAIAKIATKLSLGYTLDEIPNDITQKTPASFEPTLDYVVVKVPRFAFEKFPAADNTLTTTMKSVGEAMAMGRNFTEALQKALRSLEQKGSQLDFSSVPEWEVPELIEKAKRPTTERLHQVQRALLGGATVEDLYEATKIDPWFLDQLQLLNEISREIRQSGALTVEMLQRAKRHGFSDEQIGALTHNSEAVVRGVRQALGIRPVYKTVDTCAAEFAAYTPYHYSSYDEEDEVALHSKPSILILGSGPNRIGQGIEFDYSCVHASMALRKAGYETVMVNCNPETVSTDYDVSTRLYFEPLTLEDVLEVIAAEERTGGVMGVFVQLGGQTPLKLAQQLADAGVPILGTSPEAIDLAEHRGAFSRVLDKAGLVSPKNGTAVSFEDAKKIADEIGYPVLVRPSYVLGGRGMEIVYDEPNLSRYIANATEITPDHPVLIDRFLEDAVEIDVDALFDGTDMYLGGIMEHIEEAGIHSGDSACVLPPITLGTNVLERVRTATRAIAEGVGVRGLINIQFALASDVLYVLEANPRASRTVPFVSKATGVQMAKAAALIGTGVTIGQLRSAYKMLPETGDGSTLPLDAPVSVKEAVLPFSRFRTPEGKVVDSLLGPEMRSTGEVMGIDKHFDTAFAKSQAAANNALPTEGKIFVSVANRDKRSVIMGVKRLSDLGFEIVSTGGTADVLRRNGIQATPVRKVAEGSSAEGEGTIADLVIAGEIDMVFNTPSGGEARSDGYELRAAATSIGIPCITTVAEFNAAVQAIEAMRTYEWSVTSLQEHAAALTASQEAALEKAAAQNAARENAVAQNAPGPT0021150_1197DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955NANA
D1-29_027221305carACOG0505Carbamoyl-phosphate synthase small chainGTGACGAAAACAGAAGTGACAGCGAACCCCGTGCCTGCACGTCAAGCAACCATTTCCACCCCAGCGGCCCTCGTACTGGAAGATGGCCGCATCTTCCGCGGCAGCAGCTACGGGGCAACCGGAACCGCCTTGGGTGAAGCCGTCTTCGCCACAGGAATGACCGGCTACCAGGAGACCATTACCGATCCCTCCTACGCCCGCCAACTAGTGGTCCAGACGGCTCCGCACATCGGCAATACCGGTGTCAACAGCGAGGACGCCGAGTCCCGCCGCATCTGGGTGGCAGGCTACATCGTCCGTGACGCCGCCCGCCGTCCCTCCAACTGGCGCTCCGAGCGGTCCCTTGACTCCGAACTCATCGAGCAGGGCATCGTGGGCATCCAGGGCGTGGACACCAGGGCCATCACCCGGCACCTGCGCGAGCACAAGACGATGCGCGCCGGCATCTTCTCCGGCGACGCAGCCCAGGCCACGGACAAAGACCTCCTTGACGCCGTCCTGGCCAGCGCACCCATGGAAGGTGCCCGCCTGGCTGAAGAAGTCAGCGTGGACGAGGCCTACGTCGTTGAACCCAAGGACCACGGCTGGGACGGCGAACCGCGGTTCAGCATCGCCGCGATCGACCTCGGTATTAAGGCGATGACCCCCATCCGCTTCGCAGAACGCGGCGTCCGCGTCCACGTGCTCCCGGCCACCGCAACCCTGGCGGACGTCAAGGCCGTCAACCCGGACGGCTTCTTTATGTCCAACGGCCCGGGCGACCCCGCCACCGCGGATGCCCAGGTGAAGCTGCTGCGTTCGGTACTGGACGAGAAGCTGCCCTACTTTGGCATCTGCTTCGGCAACCAGATCCTGGGCCGCGCCCTGGGCTTTGGCACCTACAAGCTGCGTTACGGCCACCGCGGCATCAACCAGCCGGTCATGGACCGCCGCACGGGCAAGGTGGAGATCACCTCCCAGAACCACGGCTTTGCCGTGGACGCACCGCTCGACGGCGCCACGCAGGCCCCCGAGGAGCGCTACGGCCGTGTTGAGGTCAGCCACATCAGCCTGAATGACGACGTTGTTGAGGGCCTCGCGTGCCTGGACATTCCCGCTTTCTCCGTCCAGTACCACCCCGAAGCCGCTGCAGGCCCGCACGACGCCGCTTACCTGTTCGACCGCTTCATCGACCTGATGGAAGGCACCCGAGACGGCCGGACCGCCAACCTGTCCAAGGATGCCGTGGACTCCGCACACCCCGCAGACGCCGGTGCGCCGGACACAGCAGACAAAAATGACACCAAGACTGAGGACAAGAAGTAAMTKTEVTANPVPARQATISTPAALVLEDGRIFRGSSYGATGTALGEAVFATGMTGYQETITDPSYARQLVVQTAPHIGNTGVNSEDAESRRIWVAGYIVRDAARRPSNWRSERSLDSELIEQGIVGIQGVDTRAITRHLREHKTMRAGIFSGDAAQATDKDLLDAVLASAPMEGARLAEEVSVDEAYVVEPKDHGWDGEPRFSIAAIDLGIKAMTPIRFAERGVRVHVLPATATLADVKAVNPDGFFMSNGPGDPATADAQVKLLRSVLDEKLPYFGICFGNQILGRALGFGTYKLRYGHRGINQPVMDRRTGKVEITSQNHGFAVDAPLDGATQAPEERYGRVEVSHISLNDDVVEGLACLDIPAFSVQYHPEAAAGPHDAAYLFDRFIDLMEGTRDGRTANLSKDAVDSAHPADAGAPDTADKNDTKTEDKKPGPT0021155_337DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956NANA
D1-29_02723519hypothetical proteinATGGACAAAATCCTTCCCGGCCTGGCCATGCTGGCCATCATCGCCGTCGTTTTTGTCCTTATCTGGATCGGTTGGCGCAACCGGCTCAGGCGGCAGGCCGACGTCGAACCGTTGCCTGCCCTGCCCGCCACGCCCGGGACTCCGCTAACTAGCGCGGAAGGACAGTACGTCGCCTCCACCACCGCCGGTGACTGGCTGGACCGGATCGCCGTGCATGGCCTTGGCATCAGGACCAATGCCGTACTCAGCGTCTATCCCTCCGGTGTCTTCTTCGAGCGGTCCGGTGCTCCCGACGTCTTCATTCCGGTTGCGGACCTGAGTTCCGTCCGGCAGGACAGCGGCATGGCCGGCAAGTTCGTCGAAAAGGACGGGCTCCTGGTGGTCAGCTGGAAGCTGGGCGCGCACGAGCTCGACACCGGTTTCCGGACCCGCCATGCCGCCGACAAAGACGCCCTTTTTGAATCCCTTCAGCAATTGATCTCCGCAGCCCCCCAGGCAGATCCCCACAGTGGAAAGTAAMDKILPGLAMLAIIAVVFVLIWIGWRNRLRRQADVEPLPALPATPGTPLTSAEGQYVASTTAGDWLDRIAVHGLGIRTNAVLSVYPSGVFFERSGAPDVFIPVADLSSVRQDSGMAGKFVEKDGLLVVSWKLGAHELDTGFRTRHAADKDALFESLQQLISAAPQADPHSGKNANANANANA
D1-29_027241362pyrCCOG0044DihydroorotaseATGGCCGAGAACAACGGAACCTACCTGATCCGCGGCGCAGCGATCCTGGGCGCCGGCGCCGAGGACCTGCTCATTCGCGACGGCCTGATCGTTGAGCGCGGGACTGACCTATCGGCTGACGGAGCCACGGTCATCGAGGCGTCCGGCCTGGTGGCGCTGCCCGGCATGGTGGATGTGCACACGCACCTGCGCGAGCCGGGCCGTGAAGACGCCGAAACCGTGGAGACCGGCACGCGGGCCGCTGCCCTTGGCGGGTTCACCGCCGTCCATGCCATGGCCAACAGCATGCCGGTGGCAGACACCGCGGGTGTGGTGGAGCAGGTGCACTCCCTGGGGCGCGCCGCAGGCTGGGTTGATGTCCGCCCGGTCGGCGCCGTGACGGTGGGCCTGGCAGGGGAGCAGCTCGCCGAGCTCGGCGCCATGGCGGATTCCCGCGCGCAGGTCCGCATGTTTTCCGACGACGGCCTCTGCGTCCACGATCCGGTACTCATGCGCCGGGCCCTTGAATACGTCAAGGCGTTCGACGGCGTGGTGGCCCAGCATGCACAGGAACCCCGCCTCACAGCCGGCGCCCAGATGAATGAGGGCGAAGTTTCCGCCGTGCTCGGACTCACCGGCTGGCCGGCCGTGGCCGAGGAAAGCATCATTGCCCGCGACGTCCTGTTGACCCAGCACGTAGACTCCCGCCTGCACGTCTGCCATGTCTCCACGGCAGGTTCCGTGGAAATCGTCCGCTGGGCCAAGGAGCGGGGCATCAACGTCACCGCCGAAGTCACCCCGCACCACCTCCTGCTCACCGACGACCTGGTGCGGAGCTACGATCCTGTCTACAAGGTCAACCCGCCGCTGCGCACCGACGCGGACGTGCAGGCCCTGCGCGCCGGCCTGGCGGACGGCACCATCGACGTTGTGGGCACCGACCACGCCCCGCACCCCAGCGAGCACAAGGAATGCGAGTGGGCGCAGGCCGCCATGGGCATGACAGGCCTGGAGACGGCACTGTCCGTGGTCCAGCACACCATGATCGAAACCGGCCTCATGACGTGGGCCGACTTTGCCCGGGTCACCTCCACGGCGGCCGCGCAGATCGGCCGCCTGACCGACCAGGGCCGTCCCTTGGAAGCAGGCGAGCCCGCCAACATCATCCTTGTTGATCCCGCCGCGCGCTGGACGGTTGACCCCTCCAAGATGGCAACCATGGGCCGCAACTCGCCCTTCGCCGGCAGGGAACTTCCGGGCAAGGTGGTTGCCACCTTCTACAAAGGCCACCCCACCGTCCTGGACGGCAAGCTCAACACGCCTTACCGGGAACCGGCTGCCACCGCCCCAACAGTCACAGCCCCCGCCGGGACAGGCGCCTGAMAENNGTYLIRGAAILGAGAEDLLIRDGLIVERGTDLSADGATVIEASGLVALPGMVDVHTHLREPGREDAETVETGTRAAALGGFTAVHAMANSMPVADTAGVVEQVHSLGRAAGWVDVRPVGAVTVGLAGEQLAELGAMADSRAQVRMFSDDGLCVHDPVLMRRALEYVKAFDGVVAQHAQEPRLTAGAQMNEGEVSAVLGLTGWPAVAEESIIARDVLLTQHVDSRLHVCHVSTAGSVEIVRWAKERGINVTAEVTPHHLLLTDDLVRSYDPVYKVNPPLRTDADVQALRAGLADGTIDVVGTDHAPHPSEHKECEWAQAAMGMTGLETALSVVQHTMIETGLMTWADFARVTSTAAAQIGRLTDQGRPLEAGEPANIILVDPAARWTVDPSKMATMGRNSPFAGRELPGKVVATFYKGHPTVLDGKLNTPYREPAATAPTVTAPAGTGAPGPT0021145_576DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465NANA
D1-29_027251014pyrBCOG0540Aspartate carbamoyltransferaseGTGAAGCACCTGCTCTCCACCGAAGACCTCAGCCTCGCCAACGCCGTCCGCATCCTGGATACCGCTGAAGAAATGGCGGCAGTGGGGGAGCGGGAAGTCAAAAAGCTGCCGGCCCTGCGCGGACGAACCGTCGTCAACCTCTTCTTCGAGGATTCAACGAGGACCCGGATCTCCTTTGAGGCCGCAGCGAAGAGGCTGTCCGCCGACGTCATCAACTTTGCGGCGAAAGGTTCCTCTGTCTCCAAGGGAGAATCCCTCAAGGACACAGCCCAAACCCTTTCGGCGATGGGGGCCGACGCCGTCGTGATCCGCCACTGGGCCTCCGGCGCGCCGCACCGGCTCGCCGCCACGGACTGGATCGACGCCGCCGTCATCAATGCCGGCGACGGAACCCACGAGCACCCCACCCAGGCACTGCTGGACGCCTTCACGATGCGCCGGCACTGGGCGAAACTGTCCGGAAACGGATCCATCGGCGCCGACCTTAAGGGAATGCGCGTCGCCATCGCCGGCGACGTCCTCCACTCCCGTGTGGCGCGCTCCAACGTCTGGCTGCTGCGCACCCTGGGCGCTGACGTTACGCTCGTGGCCCCGCCCACCCTGCTGCCCATCGGCGTCGAAAAGTGGCCCTGCAAGGTGAGCTACAACATGGACGAAACCCTGGAACAGGGCGTGGACGCAGTGATGATGCTGCGTGTCCAGGGTGAGCGGATGAACGCTTCCTTCTTTCCCTCCACACGTGAATATTCACGCCGCTGGGGCTTTGATGACAACCGGCTCCTGGCGCTGGACGCCCTGGGAATGAAGGACACCATCATCATGCACCCCGGTCCCATGAACCGGGGGCTGGAAATTTCCGCTGCCGCCGCCGACTCGCCCCGGTCCACCGTGCTTGCACAGGTCCGCAACGGCGTGTCCGTCCGGATGGCCGCCCTGTACCTGCTGCTCTCCGGGGATACCCGCGAACCAGCCGTAAACACTGGCACCGCCCAGTCCACTAAGGAGAGCAACTGAMKHLLSTEDLSLANAVRILDTAEEMAAVGEREVKKLPALRGRTVVNLFFEDSTRTRISFEAAAKRLSADVINFAAKGSSVSKGESLKDTAQTLSAMGADAVVIRHWASGAPHRLAATDWIDAAVINAGDGTHEHPTQALLDAFTMRRHWAKLSGNGSIGADLKGMRVAIAGDVLHSRVARSNVWLLRTLGADVTLVAPPTLLPIGVEKWPCKVSYNMDETLEQGVDAVMMLRVQGERMNASFFPSTREYSRRWGFDDNRLLALDALGMKDTIIMHPGPMNRGLEISAAAADSPRSTVLAQVRNGVSVRMAALYLLLSGDTREPAVNTGTAQSTKESNPGPT0021160_581DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609NANA
D1-29_02726588pyrRBifunctional protein pyrRTTGACTTCTGTCACCAACGCACCGGTTCCAGCCAGGGTTGTCCTCAACCAGGCCGATATAGACCGTGCATTAACTCGTATCGCCCATGAGATCCTCGAGGCCAACAAGGGCTCCAAGGACCTGGTCCTGTTGGGCATTCCGCGCCGGGGCTACCCGCTGGCCGTCCGGCTTGCCCGAAAGATTGCCGCCACAGACCCCTCCGTGGACGCCGCCGCCATCGTCGGTCAGCTGGATGTGACCATGTTCCGCGATGACCTCTCCCACCAGCCCACCCGGCCGCCGTACCCCACGCAGCTGCCGCGCACGGGAATCGATAACAAGGTTGTGGTGCTCATCGATGACGTCCTGTATTCAGGCCGCACCATCCGCGCTGCCCTTGACGCCATCATCGACCTGGGCCGCCCCCGGATCGTCCGGCTTGCCGTCCTGATCGACCGCGGACACCGTGAGCTGCCCATTCGGGCGGACCACGTGGGAAAGAACCTGCCCACCTCCTCCGCCGAAAAGGTCCGCGTGCGCCTCGAAGAAACCGACACGAACGGAGACGGTTCAGCCGTCAACGAAGTGGTCATTGAGGGCGGCGCGTGAMTSVTNAPVPARVVLNQADIDRALTRIAHEILEANKGSKDLVLLGIPRRGYPLAVRLARKIAATDPSVDAAAIVGQLDVTMFRDDLSHQPTRPPYPTQLPRTGIDNKVVVLIDDVLYSGRTIRAALDAIIDLGRPRIVRLAVLIDRGHRELPIRADHVGKNLPTSSAEKVRVRLEETDTNGDGSAVNEVVIEGGAPGPT0021245_276DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825NANA
D1-29_027271293hypothetical proteinATGTCGATGCACCCTTTTCCGCCCGCCGACGGACAACCCGGCCGGCCCGCAGGACCCCCAGGCCCACTCCCCGGCCAGGCCAACCCCACCTGGATGGGCCACGTGGAGCCGCAGTACTACCGGCCGGCACCGGGAAATGCGGCCGGACCAGTCAATGCCGGCCAGGGTCATCCGCTGGTGCCGCCGCAAATGCGCAGCTCCGCCGGGAGCACCATCGGCACCCCGTCCCCCGGGTTGCTTGCGCTGACCATCGGCGGCGGTGTCCTGGCCTTCCTCAGCCTGTTCCTGGTGGTCCCGTTCCTGCTGGCGAACACGGGAACTGCCGGGTTCCTGGTGGGATTCGTTGCCTCCCTGATCCCGCTCTCCGCGGTGTTGCTGGCTGTTTATGTCATTGACCGCTGGGAACCGGAGCCCAAACGTCTTCTGCTCTTTGCCTTTACCTGGGGAGCGGCGGTGTCCATCGCCGTCACGCTCCTCATCCAGCCGTTTTTTGCGCTGGCCTTCCAGTTCGCTGACGAGGCCGATTTCCGGACCTACATGGCCACCATCCAGGCACCGGTGGTGGAGGAGTTCGCCAAGTCGCTGGGACTGCTGCTGCTCCTGCTGATGGCGCGAAAGCACTTCGACGGGCCGGTGGACGGGGTTGTTTTCGCCTTCACCATCGCCGGAGGCTTCGCTTTCACGGAAAATATCCTCTATTTCGGCCGGGCCATTGCCGAGTCCGCGAGTCCCGCGTCAGATCTGGCCCAGATCTTCCTGCTCCGAGGCGTGATGTCTCCCTTCGCGCACGCGATCTTCACGGGAACCACCGGCCTGATTATGGGGTTTGCCGCCCGCCGCTGGCACTCGGGCGCTTCGGTGGCGGCGTTTTTCATCGGGCTCCTGCCAGCCATGTTCCTGCACAACCGGTGGAACAGCATGGGGCAGGGCTTCCTGGTGGAATACATCCTGGTCCAGGTGCCGATCTTTGTGCTGGCCATCATCGGCATCATCCTGCTGCGCGTTGCCGAAAACCGGCTCACCCGGCAGAGGCTGCTGGAGTATGCCGCGGCGGGCTGGTTCACCCCGTCGGAGGTTGCCATGCTTGCCACTCCCAGCGGACGGCGGAGCGCCCTGAACTGGGCCGGCAGCTACAACCGAAGGCCCCAAATGAAGGCCTTCGTCAAGGCGGCAACGCAGCTCGCCTTCACCCGGCAGCGGATCCTCAGCGGCCGCGACGTCCAGTTGCACCAGGCTGAGGAACGGCAGCAGCTGCACAACATCCTGGCGCTGCGGACCGCGGTCGCCGGCTGAMSMHPFPPADGQPGRPAGPPGPLPGQANPTWMGHVEPQYYRPAPGNAAGPVNAGQGHPLVPPQMRSSAGSTIGTPSPGLLALTIGGGVLAFLSLFLVVPFLLANTGTAGFLVGFVASLIPLSAVLLAVYVIDRWEPEPKRLLLFAFTWGAAVSIAVTLLIQPFFALAFQFADEADFRTYMATIQAPVVEEFAKSLGLLLLLLMARKHFDGPVDGVVFAFTIAGGFAFTENILYFGRAIAESASPASDLAQIFLLRGVMSPFAHAIFTGTTGLIMGFAARRWHSGASVAAFFIGLLPAMFLHNRWNSMGQGFLVEYILVQVPIFVLAIIGIILLRVAENRLTRQRLLEYAAAGWFTPSEVAMLATPSGRRSALNWAGSYNRRPQMKAFVKAATQLAFTRQRILSGRDVQLHQAEERQQLHNILALRTAVAGNANANANANA
D1-29_02728444hypothetical proteinATGGTGTCAGAAACGTGGGATCCGGGCAGTCCCGGTGTGGTGGTCCTGCCCAGCGGACGCGCGGTGCGGGGCAGGGCGCTGAGGCAGGCCAGGCCAGAAGGGCAGCAACCGCAACACGGCCTGTACCTCTCGGCCCGCGAGCCGCTGACGGTTCCGTGGACGTCGCGGTGGCTCCGCTGGCCGGACTTCAGGCTGCCCAGCGATAAGGCCGAGGCCAGGATGCTGTTGGAGGAAGCCTGGGCCTGCGCCGTGGACATGCGGGTTGAAGTCGCCTGCTGGGGAGGGCGGGGACGCACCGGTACAGCGCTTGCCTGTATCGCAGTGCTCGACGGCGTTCCACCGGCAGAGGCCGTGGCCTACGTACGGGAGCGCTACGATCACCGTGCGGCGGAAACCCCTTGGCAGCGGAAGTATGTGGCCCGCTTCGGCCAGGGTAACGCCTGAMVSETWDPGSPGVVVLPSGRAVRGRALRQARPEGQQPQHGLYLSAREPLTVPWTSRWLRWPDFRLPSDKAEARMLLEEAWACAVDMRVEVACWGGRGRTGTALACIAVLDGVPPAEAVAYVRERYDHRAAETPWQRKYVARFGQGNANANANANANA
D1-29_02729795hypothetical proteinGTGGACGAAGTGCTAGTGACAGGAGGCTCGGGCCATCTGGGGACCGACGTCGTACGGCTGCTTCTGGAGCGGGGCGAGCGGGTGCGTGTTTTGTCGCGTACACCGCGCGCAGGAACCGATGTGAGAACGTTCGAGGGCGATCTCGCCACGGGCCGGGGAATCAGGGAGGCGGTATCCGGGGTCCGCGTGATCGTTCATGCCGCGACACTTTCACCGGCTGCCCGGAGGGGCCATTTCCTGCCGGTGGACTTTGTGACCAGCCCTCCTGACGTGGACGTGCACGGAACCCAACAGCTCCTGGACGAAGCACAGCGAGCCGGAGTGGAGCACTTCCTGCATGTCTCAATAGTGGGAGTCCAGCATTCCAAGGTTCCCTATCTCCGGCGGAAGGCGGAGGCGGAGAACATTGTCCGGAGCTCCGCGGTTCCGTGGACGATTGTTCCGGCCACGCCATTCTTTTGGCTATTGGCAAGGTTCCACGACCATATGAGGAAGCAGCGCGTCTGGGTTGCTCCGTCGAACCTTCGCATGCAGCCCGGTGATTCTGCCGAATTCGCTCCGTACGTCGTCGAGTCTCTGGGGGCGGGTCCGGCGGGTGACCGTCCGTGTTTTGCCGGGCCGGAAGTCTTGTCCCAGGCGGATATCGGGCGCCAGTACCAGGCGGCCCGGGACGTCCACCGGAAAATCCTGGAAATTCCGCTGCCTGGTTTTGCCGTCCGGGCAAGCGGTCCGCAAACCTGCCCCGACGGCCGGCTGGGAACAACCACCTGGGCCAAGTGGCTCGCGAAACATTAAMDEVLVTGGSGHLGTDVVRLLLERGERVRVLSRTPRAGTDVRTFEGDLATGRGIREAVSGVRVIVHAATLSPAARRGHFLPVDFVTSPPDVDVHGTQQLLDEAQRAGVEHFLHVSIVGVQHSKVPYLRRKAEAENIVRSSAVPWTIVPATPFFWLLARFHDHMRKQRVWVAPSNLRMQPGDSAEFAPYVVESLGAGPAGDRPCFAGPEVLSQADIGRQYQAARDVHRKILEIPLPGFAVRASGPQTCPDGRLGTTTWAKWLAKHNANANANANA
D1-29_02730411nusBCOG0781Transcription antitermination protein NusBGTGAGCGCACGCGGCAAGGCCCGTAACAGGGCACTGGATGTTCTCTTTGAAGCTGAGCAGCGCTCCGTTTCTGCGTTTGATGTACTGAGGGCGCGGCGGGAGAAGACCGACCAGATCGTGAACCCGTACACGCTGGAAATCGTCGAAGGCGTGATCTCACAGCAGACCGCCATTGATGAATTCCTCGAGACGTATTCGCAGGGCTGGACGCTGGACCGGATGCCTTCGGTGGACCGGATCATCCTGCGGATCGGCACCTGGGAACTGCTGTACAACGACGACGTCCCCGACGGCGTCGCCGTCAGCGAGGCAGTGGCACTGGCCAAGACGCTCTCAACTGATGAATCGCCGTCGTTCATCAACGGGCTCCTGGGCCGCCTGCAGCAGCTGAAACCGTCGCTGCTGGCCTGAMSARGKARNRALDVLFEAEQRSVSAFDVLRARREKTDQIVNPYTLEIVEGVISQQTAIDEFLETYSQGWTLDRMPSVDRIILRIGTWELLYNDDVPDGVAVSEAVALAKTLSTDESPSFINGLLGRLQQLKPSLLANANANANANA
D1-29_02731564efpCOG0231Elongation factor PGTGGCAACCACTAACGACATCAAGAACGGAACGGTCCTCAAGCTTGAGGGCCAGCTCTGGAACATCATCGAATTCCAGCACGTCAAGCCCGGCAAGGGCGGTGCGTTTGTACGGACCAAGATGCGGAATGTGATGTCCGGCAAGGTTGTGGACAAGACGTTCAACGCCGGCCTCAAGATTGAGACCGCAACTGTGGACCGGCGGGACTACCAGTACCTGTACCAGGACGGTTCCGACTTCGTGTTCATGGACACCTCCGACTACGACCAGATCACCGTGTCCGGTGCCACCGTGGGCGACGCCACCAACTTCATGCTCGAGAACCAGATGGTCAACATCGCCATCCACGAGGGAACCCCGCTGTACATCGAACTCCCTCCCAGCGTTGTCCTCGAAATCACCTACACCGAGCCGGGCCTTCAGGGCGACCGCTCCTCCGCCGGCACCAAGCCGGCCACCCTCGAAACCGGCTACGAGATCCAGGTACCCCTGTTCGTTGAGAACAACACCAAGGTCAAGGTCGACACCCGCGACGGCAGCTACCTCGGCCGGGTCAGCGAGTAGMATTNDIKNGTVLKLEGQLWNIIEFQHVKPGKGGAFVRTKMRNVMSGKVVDKTFNAGLKIETATVDRRDYQYLYQDGSDFVFMDTSDYDQITVSGATVGDATNFMLENQMVNIAIHEGTPLYIELPPSVVLEITYTEPGLQGDRSSAGTKPATLETGYEIQVPLFVENNTKVKVDTRDGSYLGRVSEPGPT0016205_2728DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356NANA
D1-29_02732519hypothetical proteinATGCAGGGCGCATTCGAGGGAACCACAGACTGGCCGGAGGCAGGCTTCCCGGGAATCCGGATCAACCCGCAGACGCTGCTGCCGCAGATCGTTAACGAGGAGGTCTGCCGTGCGGCCCTTGCCGCCTCTGCAGATCCCGCGGACCACATCTTTGTCCTGCTGGTGGAGGGCCATGCACCGGAGGCCGCGGAACTGCTGGCCGAGGCGCGCTTCAAGGACCCCGAGTCGTTCCGGCTGCGTGCCTTTGAAGCGGAGGTGCTGCGGGTCTCCAACCGCCTGGACCGGGCCGTGGAACTGTTCCGGCAGTTGCTCGCCGAAGTTCAGGGAACGCCCCGTGAAGCGCTGGTGCTCCAGTTCCTCGGAAAGACCCAGTACACCGCCGGACAAACGTCAGCGGCCGTTGAATCCTTTGCCCGGGCGCTGGACCTGCGGGTTGCCGAATCCGCCGACGCCGCGCAGATCTACTCGTCCACGGTGGCCCTGCAGCGCGCCCGCGAGGTCCTGGACCTCGCCTGCTGAMQGAFEGTTDWPEAGFPGIRINPQTLLPQIVNEEVCRAALAASADPADHIFVLLVEGHAPEAAELLAEARFKDPESFRLRAFEAEVLRVSNRLDRAVELFRQLLAEVQGTPREALVLQFLGKTQYTAGQTSAAVESFARALDLRVAESADAAQIYSSTVALQRAREVLDLACNANANANANA
D1-29_027331092aroBCOG03373-dehydroquinate synthaseTTGAGCGACGAATCAACAGTCATCAGTGTCACCGGCGAGGCCGCCAGCCAGAACTACGACGTCGTAGTGGGCCGCGGCCTCCTGGGGAGCGTTCCTGCCTTGCTGGGGGAGCGCGTCCGGCGGGTGCTGGTCATCCACCCCAGGGCCCTGCGGCTCACCGGGGACACTGTCAGGGACGAGCTCGCCGCTGCGGGCTTTACGTCCCTGACCGCGGAAATTCCCGACGCCGAAGAAGGCAAGCACATCCAGGTGGCCGCGTTCTGCTGGCAGGTCCTGGGCCAAAATGACTTCACCCGGTCCGACGCCATTGTGGCCGTGGGCGGCGGCGCAGTGACGGACCTTGCCGGCTTTGTGGCCGCCACCTGGCTGCGTGGCGTCAAGGTGATCCATATGCCCACCAGCCTGCTGGGCATGGTGGACGCCTCGGTAGGCGGCAAGACAGGAATCAACACTGCGGAGGGAAAGAACCTGGTGGGGTCCTTCCACCCGCCCGCCGGAGTGCTGGTGGATCTTGACACCCTGGACACGCTGCCCCGCAACGAACTGATTTCCGGAATGGCCGAAGTGGTTAAATGCGGCTTTATCGCCGATCCAACCATCCTGGACCTCGTCGAAAAGGACCCGGAGGCTGTGGTTGATCCGCAGTCCGCCGTGCTCCGGGAGCTTATTGAGCGGGCCATCGCTGTTAAGGCAAAGGTTGTTTCCGAAGACCTCAAGGAATCGGGACTCCGGGAAATCCTGAACTACGGCCACACCCTGGGCCACGCCATCGAACTGGTGGAGCGCTACTCCTGGCGGCACGGTGCTGCCGTCTCGGTGGGCATGATGTTCGCAGCCGAGCTTGCCCGCAGTGTGGGCCGGCTCAGTGACACCGACGCCGACAGGCACCGCAGCATCCTGGAAACCCTGGGCCTGCCCGTCACCTACCGGCGGGACCGCTGGCAGGGGCTGCTGGACGGAATGCGCCGGGATAAGAAGTCCCGCGGGGACCTGCTCCGGTTCGTTGTCCTGGACGGCATTGCCAAGCCCGGCATCCTGGACGTCCCGGATACCTCGCTGCTGTTCGCGGCCTACCAGGAGATCGCTTCCTGAMSDESTVISVTGEAASQNYDVVVGRGLLGSVPALLGERVRRVLVIHPRALRLTGDTVRDELAAAGFTSLTAEIPDAEEGKHIQVAAFCWQVLGQNDFTRSDAIVAVGGGAVTDLAGFVAATWLRGVKVIHMPTSLLGMVDASVGGKTGINTAEGKNLVGSFHPPAGVLVDLDTLDTLPRNELISGMAEVVKCGFIADPTILDLVEKDPEAVVDPQSAVLRELIERAIAVKAKVVSEDLKESGLREILNYGHTLGHAIELVERYSWRHGAAVSVGMMFAAELARSVGRLSDTDADRHRSILETLGLPVTYRRDRWQGLLDGMRRDKKSRGDLLRFVVLDGIAKPGILDVPDTSLLFAAYQEIASPGPT0012865_2122DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012865-aroA-K01735NANA
D1-29_02734570aroKShikimate kinaseGTGCCCTCCAGCAGCAAATCCGGTTCCGTTGGGAACCGGCCCATAGTGCTTATCGGCCCCATGGCCGTGGGCAAGTCGGCCATCGGCCAACAGCTTGCCCAGCAACTTGGTGTCCCCTTCGTGGACACCGATGCAGTCATCGTGGGAAACCATGGCTCCATAGCTGACATTTTTGCCGGCCGCGGGGAGCACGCGTTCCGGGAGATCGAGGCGCGGACGGTTGCAAGTGCCGTGGAGGACGCGGCAGGTTCGGCAGCGGTGATCTCCCTGGGTGGCGGCGCCGTGCTGGATTCGGGAACGCAACAACTGCTGGGCCGTTGCACCGTGGTCTACCTCGAATGCGATGCTGAGACAGTGGCAGGCCGGATCGCCCGCAATTCAGGCCGTCCGCTGCTCGCCGGCGATGCCATGGCCCGCTGGACCGCATTGTTTGCCACCCGTAAACCCGTCTACGAACGCCTGGCCGATTTGGTCCTGGACGTCCGCCACGGTTCGGTTGCCGAACTGGGACGCCGGCTCGAAGCTGCGCTGCGGGAACTCGCAGCTGCCAAACAGGAAGTTGAAAATTGAMPSSSKSGSVGNRPIVLIGPMAVGKSAIGQQLAQQLGVPFVDTDAVIVGNHGSIADIFAGRGEHAFREIEARTVASAVEDAAGSAAVISLGGGAVLDSGTQQLLGRCTVVYLECDAETVAGRIARNSGRPLLAGDAMARWTALFATRKPVYERLADLVLDVRHGSVAELGRRLEAALRELAAAKQEVENPGPT0012900_1372DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012900-aroL|aroK-K00891NANA
D1-29_027351200aroCCOG0082Chorismate synthaseATGTTGCGTTGGTTGACAGCCGGTGAATCCCATGGTCCGGCTCTGATGGGAATTATTGAAGGCGTCCCCGCCGGTGTGGAACTCACCAGCGGGCAGATCGCCGATTCATTGGCACGCCGCCGCCTCGGTTACGGCCGGGGCGCACGTATGAAGTTCGAACAGGACGTCGTCACCATCCTTGGCGGGGTGCGGCACGGCCTGACCCAGGGCGGCCCTGTTGCTATCCAGGTGGGCAACACCGAATGGCCCAAATGGGAGCAGATCATGTCCCCGGACCCCGTTGACGCTGAGGTCCTCGCCGACCAGGCACGCAACGCCCCGCTGACGCGTCCCCGCCCGGGCCACGCAGACTTTACCGGGATGCAAAAGTACGGCTTCGCGGAGGCCCGGCCCGTGCTTGAGCGCGCCAGTGCCCGCGAAACGGCCACGCGCGTTGCCATGGGCACGGTAGCGGCCCAATTCCTCAAGCACCTGGGCATCGAACTGGTCAGCCACACGGTCTCGATCGCCAGTGTCATGGTGCCGGAAGGCCGCCCCCTGCCGGTCCCAGGCAACGTGATTGCGCTGGACGCGGACCCGTTGCGTTGCTTTGACCGCGACACGTCCAACGCCATGGTGGCCGAGGTTGATGCGGCGCATAAGGAAGGCGAGACCCTGGGCGGTGTGGTGGAGGTCCTGGCCTACGGACTTCCGCCTGGACTTGGAAGCTACGTGCACTGGGACCGCAGGCTCGATTCCCGGCTGGCCGCAGCGCTCATGGGCATCCAGGCCATCAAGGGTGTGGAAGTTGGCGACGGCTTCCGTACCGCGGCACGCCGTGGTTCTGCAGCGCACGACGAGATCGTCAAGGACGCCGACGGCAGGATCATCCGCACCAGCAACCGCGCAGGCGGGATCGAAGGCGGCATGAGCATTGGCGACGTGCTCCGCGTCCGGGCGGCCATGAAACCGATCGCCACCGTACCGCGAGCACTGAAAACCATCGACGTCACCACGGGGGAGGCCGCCAAGGCACACCACCAGCGTTCTGACGTTTGCGCCGTGCCGGCAGCGGGCGTCGTCGCGGAAGCAATGGTGGCGCTGGTGCTGGCGGAGGCCATCACCGAAAAGTTCGGCGGCGATTCAGTCGCGGAAACTGCACGTAATATCAAGGGCTATCTGGACAACATTCCGGCATCCCTGGACTCGATCGGCCAGTAGMLRWLTAGESHGPALMGIIEGVPAGVELTSGQIADSLARRRLGYGRGARMKFEQDVVTILGGVRHGLTQGGPVAIQVGNTEWPKWEQIMSPDPVDAEVLADQARNAPLTRPRPGHADFTGMQKYGFAEARPVLERASARETATRVAMGTVAAQFLKHLGIELVSHTVSIASVMVPEGRPLPVPGNVIALDADPLRCFDRDTSNAMVAEVDAAHKEGETLGGVVEVLAYGLPPGLGSYVHWDRRLDSRLAAALMGIQAIKGVEVGDGFRTAARRGSAAHDEIVKDADGRIIRTSNRAGGIEGGMSIGDVLRVRAAMKPIATVPRALKTIDVTTGEAAKAHHQRSDVCAVPAAGVVAEAMVALVLAEAITEKFGGDSVAETARNIKGYLDNIPASLDSIGQPGPT0012875_670DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736NANA
D1-29_02736894aroE_1COG0169Shikimate dehydrogenase (NADP(+))ATGAGCCTGAGGGCCGCCGTCCTGGGTCATCCGATCAGCCATTCGAAGTCGCCCGCCCTGCATAAGGCTGCCTACGCCAAGCTGGGAATAGACATCAGTTACACCGCCATTGACGTCACCGAGGCCGGCTTGCCCGCGTTTATGCGCGACGTCCGTGGCCAGTCAGGCTGGCGGGGGCTTTCCGTCACGATGCCGCTCAAAACCGCTATGGTTCCCGAGGTGGACGAAGTCCGTGGCGTGGCCCGGGTCCTTGGCGTGGTCAATACGGTTGCCTTCGAGGATCAGGGCGACATCGTCAGGAGAATCGGTTACAACACCGACGTCGCCGGAATCGTCAATGCCGTGCGGAACGCAGGGGTGGCTGCCACGCCCGCTGCTGTAGTCCTGGGTGGCGGCGGAACGGCGGCATCTGCGGTGGCGGCACTCAGGGACCTTGGAACTGACCGGGTGCAGGTATTTGTGCGCGACACCGCCAGGGCAACCGAAGCCCTTGCGGCCGCGGCGGGAGTGGGTCTTGCCATCGACGTCAGTCCGCTGACGGAAGCGGCCAGCGCCATGGCGCGTGCCGACGTCGTGATTTCAACATTGCCGCCGCATGCGGCAGACGGACTGGCGGATGAACTGGCGGATGAACTGGCGAAGGGACCGGCCAAAGGACTGGCCTCCGCCGGCACCGGGACCGGCGTGCTGCTGGACGTGGCCTACGATCCCTGGCCCAGCCGGCTTGCTGCAGTGTGGCAGTCCGGCGGCGGTTCGGTGGTTCCCGGACTGGAGATGCTTCTCTATCAGGCCGTGGAACAGGTGCGCCTTTTTTCGCGCCGGGGCGAGGAAGTTAACGCAGCTGTCATAGATGTGATGTGTGACGCAGTCGGACTTCCCCGACGGGCGTTCTGAMSLRAAVLGHPISHSKSPALHKAAYAKLGIDISYTAIDVTEAGLPAFMRDVRGQSGWRGLSVTMPLKTAMVPEVDEVRGVARVLGVVNTVAFEDQGDIVRRIGYNTDVAGIVNAVRNAGVAATPAAVVLGGGGTAASAVAALRDLGTDRVQVFVRDTARATEALAAAAGVGLAIDVSPLTEAASAMARADVVISTLPPHAADGLADELADELAKGPAKGLASAGTGTGVLLDVAYDPWPSRLAAVWQSGGGSVVPGLEMLLYQAVEQVRLFSRRGEEVNAAVIDVMCDAVGLPRRAFPGPT0012890_1564DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-29_027371710mltGEndolytic murein transglycosylaseGTGAGCCCGGCCAATATTGACGACTCCTCCGGTAACACCAGCAGCGGTGCGGCCAGGGCGTTGACCCGTAAAGAGATCCGGGCACGGGAAAAGTCCCTGCATACGGATGGCAGCAGTGTGGTCCCGGAACAGGCGTACGAAACCGGCGACGTGTTCCCGGCAGCGGCAGAGGTTCCTGAACCCGTCATCGCGCCAACGGCCAGGCCCGCCGCCGAGACCCATGTAGAGCCGGTAATTCAGCCGGGGCCGGTGATTCAGCCTTGGACAGAGCCTGCTGCTCAGGCCGCTCCTGCAGCCCCCGCCAGTTCCCCGATCCCCGCCGCGCCGGATACGCCACCCTCAATCCAGGAAGTGGAACCGGCCTACGCCGTGGGAAGTCCGTATGACGACGTCGCCGCTGAGGAGCTTCATACCGCCGTCCACCCCGTTCCTGTCCAAGCGGCCGTCCACCATGAGACCGACGCACACGAGACTGAGGCGTACGGGCACTATTACGAACCCGACGGAACCCACCACGCGGACGGGCAGCATCATGACGCCTATCATTCTGCGGACTACTTCGAGGACCAGCACCACGATGAACACCACGACGGACACCACCAAGGGGGCGTCCTCGGCGGCGCAACAGCTGTCTCCGTAGTGGCCGGACCCTCGAAGAAGGTCCGTCGGCGGCGCCGCTTCCTTGCCCTGTTTTTGACCCTTGCCGTGTTTGTTGTTGCCGTCGCCGTCGGTGCGCAGTTCCTCAAGCCGCTGCTGGGAACTGACAAGCTTAGTGATTATCCGGGACCCGGTACGGGGGAAGTCCAGCTGACGGTGGAGCCCGGCCAGGGCCCGCGGGCTGTGGCCACCAACCTCGAAAGCCAGAAAGTGGTTGCCAACGCAGACACCTTCCTGCAGGCCTTTACGGCTTCCGGCGCCACCCTGGCCCCGGGTGACTACATATTCCGGACGGAGATGAAGAATTCCGACGCCGTTAATGTCCTGGTTGGAAAGGACAAGGGCAAGGTCATCTACTTCGCCCTGAGCGCCGGCCTGCGCATCGGTGAATCCCTGCAGGCCATCTCCGAGGGGTCCGGAGTGCCGTTGCAGGACCTGCAGGCGCTCAGCAACCAGCCGGCCCAGTTTGGACTGCCCGCCACTGCCAAGAACCTGGAAGGTTACCTGGCTCCGGGTGAGCACCGCTTCCCGCTCGGTACACCGGCCAAAGACATTCTGCAGGCGCTGGTCAAGATTACAGTCGATGAACTCGTGGCACAGGGCATTACTGACCCTGCAAAGCAGTATGAAGCCGTGATTGTGGCCAGCATTGTCCAGGCCGAGGGCGGCCAGGCGGAGTACGGTGATGTGGCCGGGGCCATCTACAACCGGCTGAAACCCAACGACCAAACCGGCGGCTTCCTGCAGGTGGATTCGGCCGTCACGTACGGTCTCGGCACCAAGAGCTACAATTTCACGGACGCCGAGCGCCAGGACAAGGGAAACCCATACAACACCTATGCCAACCCGGGCCTTCCGCCGGGACCGATCGGTTCTCCGGGCAAGACGGCCATCGATGCTGCGGCCCGGCCGAAGTCCAATGACTACCTCTACTGGGTGACCATCAACCTGGACACGAAGGAGACCAAGTTCTCCCGCACCCTGGCCGAACACAACAGTTACGTTGAGCAGTACAACGCCTGGTGCATGGCCAATGTGGGCCGTTGCGCATGAMSPANIDDSSGNTSSGAARALTRKEIRAREKSLHTDGSSVVPEQAYETGDVFPAAAEVPEPVIAPTARPAAETHVEPVIQPGPVIQPWTEPAAQAAPAAPASSPIPAAPDTPPSIQEVEPAYAVGSPYDDVAAEELHTAVHPVPVQAAVHHETDAHETEAYGHYYEPDGTHHADGQHHDAYHSADYFEDQHHDEHHDGHHQGGVLGGATAVSVVAGPSKKVRRRRRFLALFLTLAVFVVAVAVGAQFLKPLLGTDKLSDYPGPGTGEVQLTVEPGQGPRAVATNLESQKVVANADTFLQAFTASGATLAPGDYIFRTEMKNSDAVNVLVGKDKGKVIYFALSAGLRIGESLQAISEGSGVPLQDLQALSNQPAQFGLPATAKNLEGYLAPGEHRFPLGTPAKDILQALVKITVDELVAQGITDPAKQYEAVIVASIVQAEGGQAEYGDVAGAIYNRLKPNDQTGGFLQVDSAVTYGLGTKSYNFTDAERQDKGNPYNTYANPGLPPGPIGSPGKTAIDAAARPKSNDYLYWVTINLDTKETKFSRTLAEHNSYVEQYNAWCMANVGRCANANANANANA
D1-29_02738600yqgFPutative pre-16S rRNA nucleaseGTGACCAATCCTGCTGCATCCGGCGACTACCCCCAGGGCATCAAACTGGGGGTGGACGTCGGCACCGTCCGTGTGGGGGTGGCCATCTGCGACCGGGACTCAATTCTGGCAACGCCTTATAAAACCCTGGACCGCAACCCGAAGAAGAATTCGGACGTCAGGATCATCGGATCCCTGGTTGAGGAACTCGGCGCTGTCCAGGTCATTGTGGGCCTTCCCCGCACCATGAAGGGGGAGGAACATGCCTCCGCGAGGATGGCAACAGAGTACGCGCAGCTGGTCGCCACCGAGCTCGAAAACCGTGGCCTGGACGTGCCGGTCAACCTAGTGGACGAGCGCCTGAGCAGCGTCTCAGCCCACCGGAATCTTCACGAAGCTGGCATGAGCAGCCGAAACCACCGTAAAGTAGTGGATCAGGTTGCGGCGGCAGGAATACTCCAGCACGCCATCGAAATGCAAAAAGCCAGGGGAACGGATGTTGGCAGCCGCGTGACTGCGCCTGTCCGTCCGGGGCACTCCGGGTCGGTTAAGGCAGATCTGATTGCAGAAGCCGCCCCGGAGGACAAGACACGATCTTCAGAAAACGGAAGGCTACAGTGAMTNPAASGDYPQGIKLGVDVGTVRVGVAICDRDSILATPYKTLDRNPKKNSDVRIIGSLVEELGAVQVIVGLPRTMKGEEHASARMATEYAQLVATELENRGLDVPVNLVDERLSSVSAHRNLHEAGMSSRNHRKVVDQVAAAGILQHAIEMQKARGTDVGSRVTAPVRPGHSGSVKADLIAEAAPEDKTRSSENGRLQNANANANANA
D1-29_027392679alaSCOG0013Alanine--tRNA ligaseATGAAGTCGCAGGAGATCACAAAGCGCTGGGTGGACTTTTTTGTCAGCAAAGGCCACACCGCGGTTCCCTCCGCGTCCCTGGTGTCCAGCGACCCGTCCCTGCTGTTCACCGTTGCCGGCATGGTGCCCTTCATTCCTTATCTGACTGCGCGCGAAGAAGCGCCCTACTCCCGCGCCACCAGCGTGCAGAAGTGCATCCGCACCGGTGACATCGAAGAGGTGGGCAAGACCGCCCGCCACGGGACGTTCTTCCAAATGTGCGGCAACTTCTCCTTTGGCGACTACTTCAAGGAAGACGCCATCAAGTTCGCCTGGGAACTGCTCACCACCAGCGTGGACGACGGCGGCTACGGCCTTCCGCCCGAACTCCTCTGGGTGACCGTCTACGAAGAGGACGACGAAGCCAAGGACCTGTGGCTGAAGAACACCGGCGTCCCCGCTGACCGGATCCAGCGGATGGGCAAGGCGGACAACTACTGGCACACCGGCCAGCCCGGACCGGCGGGCCCCTGCTCCGAGATCTACTACGACCGTGGCCCGGCCTACGGCGTCGAAGGCGGCCCCCTCGCCGACGAGAACCGGTACGTCGAAATCTGGAACCTGGTGTTTATGCAGTACCAGATCGACAACGTCCGGTCCAAGGACGACTTCGACATTGTGGGTGAACTGCCGAAGAAGAACATTGACACCGGGCTCGGCATGGAGCGGCTCGCCATGATCCTTCAGGGCGTCGAAAACATGTACGAGACCGACCAGGTCCGGCCGGTCATCGACAAGGCCGCCGAACTCTCCGGCCGTGAATACACGTCTGCGGAAACGCCTGATGATCCGCACCACACGGACGACGTCAGGATGCGGGTCGTGGGGGACCACATCCGCTCCGCGCTGATGCTGATCGCCGACGGCGTGACGCCGTCCAACGAAGGCCGCGGGTACGTCCTGCGCCGCCTCATCCGCCGCGCCGTCCGCTCCATGCGCCTGCTCGGCGTCGAAAAGGCCTGCCTGCCTGACCTGCTGCCGGAATCCCGCGACGCCATGAAGGGCGTCTACCCGGTTGTGGAGACTGACTTCGACCGCATCAGCCGCATTGCCTATGCAGAAGAACGTGCCTTCCTCCGCACCATCGCCTCAGGCACCGCCCGGCTTGAAGATGCAGTCACGGAATCCAAGGCAGCCGGCCGTCCGCTGTCCGGTGCCGACGCGTTCGCGCTCCACGACACCTACGGCTTCCCGATCGACCTCACCCTGGAAATGGCTGAGGAAGCCGGGCTGAAGGTGGACGAACCTGAATTCCGCCGGCTTATGCTCGAACAGCGCCGGCGTGCCCAGGCGGACGCCAAGGGAAAGAAGGGCGGCCACGCGGATCTCAGCGCCTTCCAGGAACTGCTGGCGCAGGGCGAGACCGTCTTCACCGGTTACACGGACCTTGACGGCGAGTCCCGTGTCCGCGGCATCCTCAGCGGAGGCCAGAAGGTTGGCCAGGCCTCCACCGGCGACGAGATTGAGCTTGTCCTGGCAGAGACGCCGTTTTATGCCGAAGCCGGCGGCCAGGCAGCCGACACAGGCCTGATCACCGGCGACGGGTTCGTCGTCGAGGTCCTGGACGTCCAGCGCCCGCTCAAGGGACTCAGCGTCCACAAGGCGATCGTCCGCGAAGGCGAGATCGGCTCCGACGCCCTGGTGCGGGCAGCGGTGGACCGGGAACGGCGCCACGCCGCCGAGCAGGCGCACACAGGTACCCACATCGTCCATGCGGCGCTGCACCAGATCCTCGGCCCCGAAGCTACCCAGCGCGGTTCCTACAACAAGGCCGGCTACCTCCGCTTCGACTTCGCGTGGGGCGAAGGGCTCAGCCCTGCCACCCGGTCCGAGATCGAGGAAGTCTCCAACCTGGCCATCCGCAACAACCACCGCGTTGAAACCAAGGTGATGGGGCTGGCTGAAGCCAAAGCCCTGGGCGCCATGGCGCTGTTCGGTGAGAACTACGGAAGCGAAGTCCGCGTGGTGGAGATCGACGGCGCGTGGTCCCGTGAACTGTGCGGCGGGACACACGTGCCCAGCACGTCCCAGATTGGAAGCCTTTCGCTCCTCGGCGAACAGTCCGTAGGCTCAGGGAACCGCCGTGTTGAGGCGTTCGTGGGCATGGACGCCTTCCGCCACCTGGCTGCTGAGCGGGCCCTGGTGACCGAACTGACAGAAATGCTGAAAGTCCCCTCCGGCCAGCTGGCGGACAGGATCGCCGTCACCCTTGCGAAGCTGAAGTCGGCTGAGAAGGAACTTGAACGCCTCCGGAAGGAACAGCTGGCGGCAGCCGCCGGGCAGCTGGCCGGAACCGCCAAGGACGCGTCCGGTGTGAGTGTTATTGCCCATGACGCAGGCCAGGTCAACGGCGCGGATGACCTCCGCGGCCTTGCGCTGGACCTGCGGAACCGCCTCGGTTCGGCCCCGTCAACCGTGGCTGTGGCCGGGGTCAGCAACGACCGGCCCATGATCCTGGTGGCCACCAACGAGGCAGCCCGGGACGCCGGCGTCAAGGCCGGAGCCCTGGTCCGGCTCGCTGCCGGCATCCTGGGCGGCGGCGGTGGCGGCAAGGACGATGTTGCACAGGGCGGCGGGACCGACGCTGGCAAAATCACGCCGGCGCTTGCCGCCGTCGTGGATGCCATCTCCCGGCGATAAMKSQEITKRWVDFFVSKGHTAVPSASLVSSDPSLLFTVAGMVPFIPYLTAREEAPYSRATSVQKCIRTGDIEEVGKTARHGTFFQMCGNFSFGDYFKEDAIKFAWELLTTSVDDGGYGLPPELLWVTVYEEDDEAKDLWLKNTGVPADRIQRMGKADNYWHTGQPGPAGPCSEIYYDRGPAYGVEGGPLADENRYVEIWNLVFMQYQIDNVRSKDDFDIVGELPKKNIDTGLGMERLAMILQGVENMYETDQVRPVIDKAAELSGREYTSAETPDDPHHTDDVRMRVVGDHIRSALMLIADGVTPSNEGRGYVLRRLIRRAVRSMRLLGVEKACLPDLLPESRDAMKGVYPVVETDFDRISRIAYAEERAFLRTIASGTARLEDAVTESKAAGRPLSGADAFALHDTYGFPIDLTLEMAEEAGLKVDEPEFRRLMLEQRRRAQADAKGKKGGHADLSAFQELLAQGETVFTGYTDLDGESRVRGILSGGQKVGQASTGDEIELVLAETPFYAEAGGQAADTGLITGDGFVVEVLDVQRPLKGLSVHKAIVREGEIGSDALVRAAVDRERRHAAEQAHTGTHIVHAALHQILGPEATQRGSYNKAGYLRFDFAWGEGLSPATRSEIEEVSNLAIRNNHRVETKVMGLAEAKALGAMALFGENYGSEVRVVEIDGAWSRELCGGTHVPSTSQIGSLSLLGEQSVGSGNRRVEAFVGMDAFRHLAAERALVTELTEMLKVPSGQLADRIAVTLAKLKSAEKELERLRKEQLAAAAGQLAGTAKDASGVSVIAHDAGQVNGADDLRGLALDLRNRLGSAPSTVAVAGVSNDRPMILVATNEAARDAGVKAGALVRLAAGILGGGGGGKDDVAQGGGTDAGKITPALAAVVDAISRRNANANANANA
D1-29_02740243hypothetical proteinATGAAACGACTAGTTTGGATGGGAATCGGCGTCGCCATCGGCATCATCGCTTTCCGCAAGATTAGCGAAACGCAGTCCAATCTCCAGGCCAACCTGGGGCCGGAGGGCCTGAACCGTGCCGTGGGCAGGCTGACTGATGGCCTCTATGAGTTCGCCGACGCCGTCCGTTCCGGAATGCAAGAGCGCGAGACCGATCTGCGGACCGCCCTCGGCGTTGAGTCCCAGGACCTGGCCCGCCGCTGAMKRLVWMGIGVAIGIIAFRKISETQSNLQANLGPEGLNRAVGRLTDGLYEFADAVRSGMQERETDLRTALGVESQDLARRNANANANANA
D1-29_02741375hypothetical proteinATGTCTGGTGGCGATATTGCCGGCCTGATCGCTGCCGGGGTGTTTGCGCTCCTGGTGCTGCTGCTGGCCGTGCCGATCCTGAAGCTCGGGAGGGTGCTGGATGAGGTCCGCACCTCCATCCGTTCCATCAGCGACGGCGCCACTCCACTCATGGACGAAGTCACAGCCACGGTGTCCACCACCAACCAGCAGCTGAAAAAAGTGGACGGCATTGCCTCCAACGTTTCCGATGCCTCCGCGAACCTTTCAGCGCTGTCCTCCCTGGTTGCCGCTACGGTGGGGTCACCGCTGATCAAGGTGGCAGCCTTCAGCTATGGCGTCCGCACCGCCCTGGCCAACCGCAAGAAGCCCGCCGCCGGCCGTCGCAGCCGCTAAMSGGDIAGLIAAGVFALLVLLLAVPILKLGRVLDEVRTSIRSISDGATPLMDEVTATVSTTNQQLKKVDGIASNVSDASANLSALSSLVAATVGSPLIKVAAFSYGVRTALANRKKPAAGRRSRNANANANANA
D1-29_02742627rpsD30S ribosomal protein S4GTGGCTAACAACACTCGTGCTCGCCGTACAGCACGCCTCTCGCGTGCACTCGGCATCGCTCTGACCCCCAAGGCCGCCAAGTACATGGAGCGCCGTCCGTACGGCCCCGGTGAGCACGGCCGTGCCCGCAAGAAGCAGGACTCCGACTACGCCGTACGTCTGCGCGAAAAGCAGCGTCTGCGCGCCCAGTACGGCATCCGCGAAGCCCAGATGACCCGTGCCTTCGAAGAAGCACGCCGCACCAAGGGCCTGACCGGTGAAAACCTGATCGAACTGCTCGAAATGCGTCTTGACGCCCTCGTGCTGCGTGCAGGTTTCGCCCGCACCATCGCCCAGGCCCGCCAGCTCGTGGTGCACCGCCACATCCTGGTTGACGGCATCCGCGTTGACCGCCCGTCCTTCCGCGTAGGCGAAGGCCAGCTGGTCCACGTCCACAGCCGCAGCGAAACCATGGTTCCGCTCCAGGTTGCAGCAGCCGGCGCACACCGCGACGTCCTGCCCCAGGTTCCGGCCTACCTGGACGTCAAGCTTGACGCCCTGCAGGCACGCCTGGTCCGCCGCCCGAAGCGCTCTGAGGTTCCCGTAACCTGCGAAGAGCAGCTCGTCGTCGAATTCTACGCACGCTAGMANNTRARRTARLSRALGIALTPKAAKYMERRPYGPGEHGRARKKQDSDYAVRLREKQRLRAQYGIREAQMTRAFEEARRTKGLTGENLIELLEMRLDALVLRAGFARTIAQARQLVVHRHILVDGIRVDRPSFRVGEGQLVHVHSRSETMVPLQVAAAGAHRDVLPQVPAYLDVKLDALQARLVRRPKRSEVPVTCEEQLVVEFYARNANANANANA
D1-29_027431443COG2256putative AAA domain-containing proteinGTGGATGATCTCTTCGGCCAAGGGCCCGGTAATGACGACGACGAAGGCACTGAACCGTCGCCGGCCGGTGGAACGGCGGGCAGGTCCGCTTCGGGGTCCAAGGCCTCGCCGCGCAGCCCCCTTGCCGTCAGGATGCGGCCGCGTACATTGGATGACGTTGTTGGCCAGCAGCACCTGCTGGGGCAAGGGTCACCGCTGCGCCAGCTTGCCGCGGGCGCCAACGCAGCAGGGCCTGCCGGTCCCAGCTCGCTGATCCTCTGGGGCCCGCCCGGAACCGGGAAAACAACCCTGGCCCATGTGATCGCCAGGGGGCCGGGGCGGAAGTTCGTGGAGCTGTCCGCGATCACCGCCGGGGTCAAGGACGTGCGGCGCGTGATGGACGACGCTTTGACTGCCAGGGACCTGTACAAGACCACCACAGTCCTCTTCCTCGATGAGATCCACCGCTTCAACAAAGCCCAGCAGGATGCCCTGCTGCCGGGGGTGGAAAACCGGTGGGTAGTCCTGGTGGCGGCAACTACGGAGAATCCGTCCTTCTCTGTTGTCTCGCCGCTTCTGTCCAGGTCCATCCTGCTGACGCTCAAGCCCCTGACCGACGAGGATATCGAGGGGCTGCTCGTCCGGGCTGTCACTGACGTACGCGGGCTCAATGGGAAGGTGGAGCTCAGCGCGGAGGCGCTGGCCCACCTGGTGCGGCTTTCCGGCGGGGACGCTCGGCGGGCCCTGACCGCCCTGGAGGCCGCGGCAGGTGTTGCGTTTGGCGACGCCGACGACGCCGACAGCGCAGTGGGCGGAACGGAGGCGCCCATCATGGTGGAGCTGAAGCACACGGAACGGGCCCTGGACGTGGCAGCTGTCCGGTACGACCGGGCAGGCGACCAGCACTATGACGTGGCCAGCGCCTTCATCAAATCCATCCGCGGCTCCGATGTGGATGCGGCCCTGCACTATCTGGCCCGGATGCTGGAGGCGGGGGAGGACCCGCGGTTTGTGGCCCGCCGGATTGTGATCTCGGCCGCCGAAGACGTGGGCATGGCGGATCCCACCGCACTCCAGACTGCGGTGGCAGCTGCGCAGGCCGTCCAGCTGATCGGCATGCCGGAGGGTCGGATCGTCCTTGCCGAGGCTGTGGTGCACCTGGCCACCGCACCAAAATCCAACGCCGCCTACATGGGAATCAACAAAGCGGTTGCCGACATCCGGGCAGGACTGGGCAACGGGATACCCGCCCATCTGCGCGACGCCCACTATCCAGGGTCAAAACAACTGGGGCACGGGCTCGGCTACAAATACGCCCACGATGCCCCGCACTCGGTAGCCACCCAGCAGTATCCGCCCGATGACCTCGTGGACCGGAACTACTACGAACCCACGGCCAACGGCGCGGAACGGGATATTGCCGTACGGCTTGAACGGCTTCGAAAGATCGTCCGCGGCGACTGAMDDLFGQGPGNDDDEGTEPSPAGGTAGRSASGSKASPRSPLAVRMRPRTLDDVVGQQHLLGQGSPLRQLAAGANAAGPAGPSSLILWGPPGTGKTTLAHVIARGPGRKFVELSAITAGVKDVRRVMDDALTARDLYKTTTVLFLDEIHRFNKAQQDALLPGVENRWVVLVAATTENPSFSVVSPLLSRSILLTLKPLTDEDIEGLLVRAVTDVRGLNGKVELSAEALAHLVRLSGGDARRALTALEAAAGVAFGDADDADSAVGGTEAPIMVELKHTERALDVAAVRYDRAGDQHYDVASAFIKSIRGSDVDAALHYLARMLEAGEDPRFVARRIVISAAEDVGMADPTALQTAVAAAQAVQLIGMPEGRIVLAEAVVHLATAPKSNAAYMGINKAVADIRAGLGNGIPAHLRDAHYPGSKQLGHGLGYKYAHDAPHSVATQQYPPDDLVDRNYYEPTANGAERDIAVRLERLRKIVRGDNANANANANA
D1-29_02744675hypothetical proteinATGACCGCAAACGCCCCTACCGGTGGCGGACGTCCCGCGTCCGTCCGGACGGCCTTTGTGCCGGGGTCCAGATTGCTGGGCTGGGCAGGCCGCTTCAGTGCGGCCCACGGCGGTTTCGGACTCACGGAGGAGGATGACGGCGTCCGGCTCACCGCTGCAGACGGCGCCACTGCGCTCCTCCAGGCTCCCTGGCCGGTGGATGGCCGTCCGGGGCGCGGGGCGGACGAATTGGAACGGCTGGCGGCCCTTGCTTCCCAGCCGCGGCGGATCGCCCTTGTGCTGGTCCGACGTGGAGGTTACGGCCTTGCGGTGGCCAGCGAGGGCGTCCTCCTCGCCTCCAAAGTGGGTTCCAAGTATGTGCAGTCACGGACGGCCGCCGGAGGCCAGTCGCAGCAAAGGTTTGCCCGGCGCCGGTCCAACCAGGCTGATTCGCTGTTGCAGGCCGCCGCCGAGCAGGCCCGGCTGGTATTCTCCGGCCAGTCCTTTGAGTATGTTGTGCCGGGCGGAGACCGCACGTTGGTTGGCCTGGTGTTGGAGGATCCGCGCCTCTCGGCCTATGCCCGGCTGCCGCGGCTCGCCTATCTCGATGTGCCTGACCCCAAAGCAGCGGTGGTTCAGAAGGCGGCAGTGGATGCCTGCGCGGTGCGGATCCAGGTAACCGACCCGCCGTCGTAAMTANAPTGGGRPASVRTAFVPGSRLLGWAGRFSAAHGGFGLTEEDDGVRLTAADGATALLQAPWPVDGRPGRGADELERLAALASQPRRIALVLVRRGGYGLAVASEGVLLASKVGSKYVQSRTAAGGQSQQRFARRRSNQADSLLQAAAEQARLVFSGQSFEYVVPGGDRTLVGLVLEDPRLSAYARLPRLAYLDVPDPKAAVVQKAAVDACAVRIQVTDPPSNANANANANA
D1-29_027451188COG2826IS30 family transposase ISAcl1ATGCCGAAGTTGTTTCCTGCCAATGTCCGTGGTGATTTTCTTGATCTGGTGTGCTCCGGCGCGTCTGTGAGCGAGGCTGCACGGCGTGTCGCGGCCTCCCGCGGGACCGGGAAGAAGTGGTGGGCCGAGTCTGGTCAGATGAAAGTGAAGATGGGGGTCGTTGGCGGTCTGGCGGACCCGGCGCCGGGTGCGGAAGGCCCGGGCGGGCGGACGTTGACGGAAGCCGAGAGGGGGATGATCCAGATGGGCGTGGAGGCCGGGATGGGTTACGCCCAGATTGGCAAAGCGGTCGGCCGGGACAGGTCCGTCATCTGGCGGGAGGTGAAACGTAACTCCGACGCCGGCGGCAGGTATCACGCCAAAGTTGCGCACGCCAAGGCGCATCAGGCACGGCGCCGGCCCAAGCCCTTCAAGCTCATCGAGGACGAGGACCTGTGCCGGCTGATCGCCTTCTGGATGGATGAGGGGTGGAGCCCGAAACTGATCTCGTCGATGTTGGCGTTTTACTTCGCCGGTGACCAGACTATGCAGGTGAGCCACGAGACGATCTACCAGGCGCTGTACGTCCAAACCCGCGGAAGTCTGCGCAAAGACCTGGCCGAAAACCTCAGCCTGAAACGTAAACAGCGCGTCCCGCACATCGCTGACCGGCGCAAGAACAGCCCCTACAAAGAGGCGTTCAAGATCAGTGAACGACCCGCCGAAGTCCAGGACCGGGCCATCCCGGGGCATTGGGAAGGCGATCTGATCATCGGTTCTGACGGGACCGCTATCGGCACCCTCGTGGAACGCTCAACCCGGTTCACGATCCTGCTGCACCTGCCCGGGGACCACAGCGCCGAGACCGTCGCCGCAGCGATGATCCGGGAGATGGCGAACCTCCCGGATCATCTGCGCCGCTCCATCACCTGGGACCGCGGCTCCGAACTGGCAGGCTACGCGAAGATCCAGACAGCCTTGGAAACCACGCTGTATTTCTGCGACCCGCACTCGCCCTGGCAGCGCGGCACCAACGAAAACACCAACCGGCTCCTGAGGTTCTGGTTCGAGAAAGGCTCCGACCTCTCGGCCCACACACCGGAGGACCTCCGCCGCGTCGCCGCGACACTCAACCGCCGGCCCAGGCCGACCCTGAACCTACAAACCCCAGCCAACCGGCTAAACCAGCTGCTGCAAACAGCGGCATAAMPKLFPANVRGDFLDLVCSGASVSEAARRVAASRGTGKKWWAESGQMKVKMGVVGGLADPAPGAEGPGGRTLTEAERGMIQMGVEAGMGYAQIGKAVGRDRSVIWREVKRNSDAGGRYHAKVAHAKAHQARRRPKPFKLIEDEDLCRLIAFWMDEGWSPKLISSMLAFYFAGDQTMQVSHETIYQALYVQTRGSLRKDLAENLSLKRKQRVPHIADRRKNSPYKEAFKISERPAEVQDRAIPGHWEGDLIIGSDGTAIGTLVERSTRFTILLHLPGDHSAETVAAAMIREMANLPDHLRRSITWDRGSELAGYAKIQTALETTLYFCDPHSPWQRGTNENTNRLLRFWFEKGSDLSAHTPEDLRRVAATLNRRPRPTLNLQTPANRLNQLLQTAAPGPT0030610_273DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030610-IS30_family-K07482NANA
D1-29_02746795hypothetical proteinGTGCAGCCCACGATGGAAAAATACGAGGCCCTGATGGATGCGGCCTGGCCTGCCCCCGAGCGGCATGACACGGGGGAGTGGACGCTCCGGGCCGCGGGCGGTGTGACGCAAAGGGCCAATTCTGTGTGGCCCCAAACCGAAGCCCGGGACATTCCCGCTGCCGTCCGCGACGCTTCACTGTGGTACCGGCGCCGGAGGCTGCCCGCGATCTACCAGGTCACCGACACTCCGCGCAACGCAGCCCTGAACGCGGTGCTGGATGCGCAGGGCTACACGCACCAGTCGGAAACCCTGATCATGTCCCGCGGCTCCGGTTCGACGAGCCGAACGGCTCCAGTGACCCCGCCAGGCGGCCCGGCAGCGGAATTGTCGGACCAGCCCACCGCTGAGTGGCTTGACTTGTGGTGGGGCGTTGACGGCCGGGGCGGCGCGCCTGAACTGGAAACCGCCCGCACCATCCTGACCGGGTGTCCCTCCCTGTACTCACTGGTGAGGACCGACGACGGCGATCCGGCCGCCGTCGGACGCTTGGCCCTTCCTGCCGCAGGGGAGAGCGGTTATGGAGGCATCTACGGGATGGCTACCCGGCCTGGGTTGCGCCGCCAAGGGCTGGCGGGCCGGGTGCTGCATTCACTCATGGAAGGTGCAGCGGAAGCCGGCGCCGAAGAGCTGTGGCTGCTGGTGACGGCGGCGAACTCCGGGGCGCAGGCTCTTTACGCAAAAGCAGGCTTCCGGGAAACCGGCCGGTACGCGTACCGGCAGGAGCGGCCCAAACGGCACCTGACCGGCTGCTGAMQPTMEKYEALMDAAWPAPERHDTGEWTLRAAGGVTQRANSVWPQTEARDIPAAVRDASLWYRRRRLPAIYQVTDTPRNAALNAVLDAQGYTHQSETLIMSRGSGSTSRTAPVTPPGGPAAELSDQPTAEWLDLWWGVDGRGGAPELETARTILTGCPSLYSLVRTDDGDPAAVGRLALPAAGESGYGGIYGMATRPGLRRQGLAGRVLHSLMEGAAEAGAEELWLLVTAANSGAQALYAKAGFRETGRYAYRQERPKRHLTGCPGPT0014246_391DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014246-yobR-K22476NANA
D1-29_027471770aspSCOG0173Aspartate--tRNA(Asp/Asn) ligaseGTGCTGCGCACACATGACCTCGGATCCCTTCGCTCCGAGCACATTGGACAAACCGTAACCCTGGCCGGCTGGGTGGGCCGCCGTCGTGATCACGGTGGTGTCGCATTCGTGGACCTGCGCGATGCCTCCGGCGTTGCCCAGGTTGTGGTGCGTGAGGAAGAGGTCTTCCACGGTCTGCGCAATGAGTACGTCCTGCAGGTCACCGGCACCGTCTCCAAGCGGCCCGAGGGCAACGAGAACCCGGCGCTGGCCACCGGCGAGATCGAGGTCATGGCGGACAAGGTGGTCATTCTCAACACCTCTGAACCCCTGCCGTTCCAGATTGACGAACACGTTGAAGTGGGCGAGGAAGCACGCCTGAAGCACCGCTACCTGGACCTGCGCCGCCCTGGCCCCAGCCGCAACCTCCGGCTGCGCTCCGAAGCCAACCGGGTAGCCCGCGAGCTGCTTCACACCGAGGGCTACGTCGAGATCGAAACACCCACCCTGACGCGCTCGACGCCGGAAGGCGCCCGGGACTTCGTGGTTCCCGCCCGCCTGGCGCCGGGTTCCTGGTATGCGCTTCCGCAGTCACCGCAGCTTTTCAAGCAGCTGCTGCAGGTGGGCGGCTTCGAGAAGTACTACCAGATTGCCCGCTGCTACCGGGATGAGGACTTCCGCGCAGACCGCCAGCCGGAGTTCACCCAGTTGGACATCGAAGCCAGCTTCGTGGACCAGGACGACATCATTGCCCTGGGCGAAAACATCGTGAAGGCTGTGTGGAAGCTGATCGACGTCGAGATCCCCACGCCGATCCAGCGCATCACCTATGCGGACGCCATGGCGCGGTACGGCTCTGACAAGCCCGACCTTCGTTTCGGCGTGGAACTGACCGAGCTCACCGAATTCTTCAAGGACACCAACTTCGGCGTCTTCAAGGCCCCGTATGTCGGCGCCGTGGTGATGCCCGGCGGCGCCTCGCAGCCACGGCGAACCCTGGACGGCTGGCAGGAATTCGCCAAGCAGCGCGGGCACAAGGGTCTTGCCTACGTCCTCTTCAAGGAAGACGGGGAACTGGCCGGGCCGGTTGCCAAGAACCTGACCGACGCCGAGCGCGATGGCCTGGCGGATGCCGTGGGCGCCAAGCCCGGCGACTGCATCTTCTTTGCGGCCGGCGAGAAGTCTTCGGCGCGCGCCCTCCTCGGTGCTGCACGTGTGGAAATCGGCTACCGGACCGGACTGATCGACCCCAGCGCCTGGGCCTTCTGCTGGGTGGTTGACGCGCCGATGTTCGAACCGGCTGCTGCCGCCGTGGCCTCTGGCGACGTGGCTGTTGGTGCCGGCAAGTGGACAGCAGTCCACCACGCCTTCACCTCACCCAAGCCCGAGTTCCTGGCGACGTTCGACAAGGACCCGGAATCGGCTTTGTCCTACGCCTACGACATCGTCTGCAACGGCAACGAAATCGGCGGCGGATCCATCCGTATCCACGAGCGCGATGTCCAGGAACGTGTCTTTGAACTGATGGGCCTGGATAAGGAAGACGCCCAGACAAAGTTCGGCTTCCTGCTGGAGGGCTTCAAGTTCGGCGCTCCGCCGCACGGCGGCATCGCCTTTGGCTGGGACCGCGTGGTGGCACTTCTGGCCGGTGTCGAATCCATCCGCGATGTCATTGCCTTCCCGAAGACCGGCAACGGCTACGACCCGCTGACCCAGGCACCCGCTCCCATCACCGCGCAGCAGCGCAAGGAAGCCGGCGTGGACTTCAAGCCGGAAGCCAAAAAGGCGTAGMLRTHDLGSLRSEHIGQTVTLAGWVGRRRDHGGVAFVDLRDASGVAQVVVREEEVFHGLRNEYVLQVTGTVSKRPEGNENPALATGEIEVMADKVVILNTSEPLPFQIDEHVEVGEEARLKHRYLDLRRPGPSRNLRLRSEANRVARELLHTEGYVEIETPTLTRSTPEGARDFVVPARLAPGSWYALPQSPQLFKQLLQVGGFEKYYQIARCYRDEDFRADRQPEFTQLDIEASFVDQDDIIALGENIVKAVWKLIDVEIPTPIQRITYADAMARYGSDKPDLRFGVELTELTEFFKDTNFGVFKAPYVGAVVMPGGASQPRRTLDGWQEFAKQRGHKGLAYVLFKEDGELAGPVAKNLTDAERDGLADAVGAKPGDCIFFAAGEKSSARALLGAARVEIGYRTGLIDPSAWAFCWVVDAPMFEPAAAAVASGDVAVGAGKWTAVHHAFTSPKPEFLATFDKDPESALSYAYDIVCNGNEIGGGSIRIHERDVQERVFELMGLDKEDAQTKFGFLLEGFKFGAPPHGGIAFGWDRVVALLAGVESIRDVIAFPKTGNGYDPLTQAPAPITAQQRKEAGVDFKPEAKKANANANANANA
D1-29_027481245COG0531putative transporterATGACCGCGCATCAGCAACTTCAGCGCAGGCTCGGCGTCTTCGATGCCACCTCCATCGGCCTTGGTTCCATGCTGGGGGCTGGCGTGTTCGTTGTCTTCGCTCCGGCCACGGCCCTGGCGGGCAACTTCCTGGTGCTGTCGGTGCTGATCGCCGGGGCAGTGGCCTATTGCAACGCCGTCGCCTCGGCGGAACTTGCCGCCCGGTATCCGTCAAGCGGCGGCACGTACGTTTATGGCCGGGAGCGTCTGGGCGAATGGCCCGGCTTCCTGGCCGGCTGGGGTTTCGTGACAGGCAAGACCGCTTCGTGCGCAGCCATGGCCCTGACGTTCGGACACTACATCGCCCCGGCCTACGCCGTCCCGGTGGCGGTGGCTGCGGTAGTGGCCTTGACGGTGGTCAACCTGCTGGGGATCACCCGCACGGCGCTGCTGACCAGGATCCTCCTGTGTGTTGTGCTTGCAACCCTCATTTTTGTGGCGATCGCCAGTGTTGTTGGCCCGCACCCTGCCGTAACTGCAGCGGACACCGATGCCTTGGGTGGCGCCGGGGGTGTTCTGCCCGCCGCAGGCCTGATGTTCTTCGCCTTTGCCGGTTACGCGCGGATTGCGACGTTGGGCGAAGAGGTCAAGGATCCGGCCAAGACCATTCCCCGCGCCATTCTCGCGGCCCTTGCCGCTGCCTTTGCCATCTATCTGGCGCTGGCGCTGCTGCTGCTGAACCATCTGCCTGGCGGCCAGCTCGCTGCCTCACGAGCGCCCCTGCTGGATGCTGTTCTGCACTCCGGATTGGCTGCGGGCGCTCCCCTTGTTCAGGCCGGCGCGGCGGCGGCGTGCCTGGGCGCCCTCCTGGCGTTGATTACGGGAGTGGGCAGGACCACCCTGGCCATGGCCCGGGAACGCGACCTGCCCGGCCCGTTGGCGCGTGTTGGGGGCAAGCACACGGTTCCCTTTGTCGCGGAACTGACAGTGGGCGCCGTCGTAATTCTCCTGCTGCTGACCACGGACGTGATGACCGTGGTGGGATTCTCCAGCTTTGGCGTGCTGATCTACTACGCGGTGGCCAACGCTGCCGCCTACACCCTGGCCGAGCACCCCGGACACGCGCCACGGTGGCTCAATGGCGTGGGCTTCTTCAGCTGCCTGCTCCTGGCCTTCACCCTGCCGGCCATGTCGGTGCTGGGCATGGCCTTGGTGCTGGCTGCAGGGGTTGCTGGGCGTTTCCTGGTGCTCCGGCTGCGCCGCTGAMTAHQQLQRRLGVFDATSIGLGSMLGAGVFVVFAPATALAGNFLVLSVLIAGAVAYCNAVASAELAARYPSSGGTYVYGRERLGEWPGFLAGWGFVTGKTASCAAMALTFGHYIAPAYAVPVAVAAVVALTVVNLLGITRTALLTRILLCVVLATLIFVAIASVVGPHPAVTAADTDALGGAGGVLPAAGLMFFAFAGYARIATLGEEVKDPAKTIPRAILAALAAAFAIYLALALLLLNHLPGGQLAASRAPLLDAVLHSGLAAGAPLVQAGAAAACLGALLALITGVGRTTLAMARERDLPGPLARVGGKHTVPFVAELTVGAVVILLLLTTDVMTVVGFSSFGVLIYYAVANAAAYTLAEHPGHAPRWLNGVGFFSCLLLAFTLPAMSVLGMALVLAAGVAGRFLVLRLRRPGPT0020810_6476DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_027491359hisSCOG0124Histidine--tRNA ligaseATGGCACGCACCGCCTCCCTGTCCGGCTTCCCCGAGTGGCTTCCCGAGGAGCGGCTGGTGGAGCTGCACGTGCTGGATACGCTGCGCCGGGTTTTCGAGCTGCACGGCTTTGCCTCGATCGAGACGCGGGCCGTTGAAACTGTGGGCCAGCTGCTGCGGAAGGGCGAGATTGACAAGGAAGTCTATGGCCTGAGCCGTCTTCAGGATGATGAGGACGACTCCAAGGCGGGCAAACACGATCCCCACGCCCTGGCCCTGCACTTCGACCTCACGGTGCCCTTTGCCAGGTACGTGGTGGAAAATGCCGGTTACCTTGCCTTCCCGTTCCGGCGTTACCAGATCCAGAAGGTCTGGCGCGGCGAACGTCCCCAGGAGGGCCGCGCCCGGGAATTCACCCAGGCAGACATCGATGTAGTGGGCGACGGCGAGCTGCCGTTCCGCTATGACGTGGAGATCGCGCTGGTCATTGCCGAGGCGCTCAGTGCCCTGCCCATTCCGGACTTCCGGCTGCGCATCAACAACCGCAAACTGGCCGAAGGCTTCTACCGGGGCATTGGCCTCGATGACACCGCAGGGGTGCTGCGCAGCATCGACAAGCTGGAAAAGATCGGTCCCGCCAAGGTGGCCGAACTCCTGAAGACCGAGCTCGGCGCCACAGATGAACAGGCCCACGCCGCGCTGCAGCTGGCCGCAATCCGCACCGAAGACACGTCATTTGTGGCGCAGGTCCGCGCGCTTGGTGTCAGCAACGACCTGCTGGAAGAGGGCTTGAACGAACTTGAACAGGTGATCGAGGCGGCGGTGCAGCGTGCGCCCGGCAAGGTCGTGGCTGATCTCAGCATCGCCCGCGGCCTGGACTACTACACGGGAACGGTGGTGGAAACCGTGCTGGTGGGGCACGAGCAGCTGGGGTCCATCTGCTCCGGCGGCCGTTATGACGCACTGGCCAGCAAAGGCAACCGCAAGTTTCCCGGCGTCGGCCTGTCCATTGGAGTCACACGGCTGGTGTCGAGGATCCTCAGCCAGGACTTGGCCAAGGCGTCGCGTTCGGTACCCACAGTTGTCCTGGTCGCCCTCACCAACGACGACAGCTGGGGTGCGGCCCAGGACGTCGCGGCCCAGCTTCGGGAACGCGGAATCGCCACCGAGGTGGCGGCCAAGGCCGAGAAGTTCGGCAAGCAGATCAAGTTCGCTGACCGCCGCGGAATTCCATTCGTCTGGTTCACGGACGACGACGGCAATCACCAGGTCAAGGACATCCGTTCCGGAGACCAGGCCGACGCCGACCCCGCACGGTGGACTCCGCCGTCGGAAGACCTTTCTGTCCAGGTGAAAACGGTGGCGGCGCAGCCGGTCTGAMARTASLSGFPEWLPEERLVELHVLDTLRRVFELHGFASIETRAVETVGQLLRKGEIDKEVYGLSRLQDDEDDSKAGKHDPHALALHFDLTVPFARYVVENAGYLAFPFRRYQIQKVWRGERPQEGRAREFTQADIDVVGDGELPFRYDVEIALVIAEALSALPIPDFRLRINNRKLAEGFYRGIGLDDTAGVLRSIDKLEKIGPAKVAELLKTELGATDEQAHAALQLAAIRTEDTSFVAQVRALGVSNDLLEEGLNELEQVIEAAVQRAPGKVVADLSIARGLDYYTGTVVETVLVGHEQLGSICSGGRYDALASKGNRKFPGVGLSIGVTRLVSRILSQDLAKASRSVPTVVLVALTNDDSWGAAQDVAAQLRERGIATEVAAKAEKFGKQIKFADRRGIPFVWFTDDDGNHQVKDIRSGDQADADPARWTPPSEDLSVQVKTVAAQPVNANANANANA
D1-29_02750807hypothetical proteinTTGGCGGCCAGTTCACGCAGTGCCCGCGAAGCCAAACGGCGCATCCAGCAGATGGAGGCAAAGCGCGAGCTGCGGCGGGAGCAGGAGAAACGGCGCAAGCGGGACAATATCATCGCCGTCGGCGCGGGTACCGCCGCGGTGGTGCTCGCCGTCGTGCTTCAGCTCACCGCGTTTGCCGGCAATCCCACCGAAGAGGAGTTCGCGGCAGCTGAAGCCGGGCTCAAGACGCCGTCTGCCTCCCCCACGCCGTCCGCCCCACCCACCAACGCCGCCAACATTCCGGCACCCGACATCGCAGCCGACAAGGTATTTACCGGCGAGTTGATGCTGAACAGGGGGACGGTAGGGGTGGAACTCGACGGCACCAAGGCACCGCAGGCTGCTGCCGTTTTCAAGTCCTTGAGTGACCAGGGCTATTACAACGGGTCCAACTGCCACCGGCTGGCTACGGGCGAAACCTTCGGCCTGCTTCAGTGCGGGTCCAAGACCGGTGACGGCGCCTCGGACCCGGACTACAACTGGGGCCCGCTGGAAAACACGCCCGCGGACAACACCTATCCTGCCGGCACCATTGCCGTTGCCAGGTCCGGAAACAATGCCTATGGGAACGGGACCCAGTTCTTCATCGTCTACAAGGACACCGTCATACCGGCCGATACGGCCGGCGGTTACAGCGTCGTGGGCAGGGTGACATCAGGACTGGACGTGGTGACGAATATAGCCGCCGCCGGAATCGCGGAAGGCGGAAATCCCACAGACGGCGCACCCGCGGAACCAGTCACGATAGACTCGTTTTCTCTGAAGTAGMAASSRSAREAKRRIQQMEAKRELRREQEKRRKRDNIIAVGAGTAAVVLAVVLQLTAFAGNPTEEEFAAAEAGLKTPSASPTPSAPPTNAANIPAPDIAADKVFTGELMLNRGTVGVELDGTKAPQAAAVFKSLSDQGYYNGSNCHRLATGETFGLLQCGSKTGDGASDPDYNWGPLENTPADNTYPAGTIAVARSGNNAYGNGTQFFIVYKDTVIPADTAGGYSVVGRVTSGLDVVTNIAAAGIAEGGNPTDGAPAEPVTIDSFSLKPGPT0015111_891DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768NANA
D1-29_027511944hypothetical proteinGTGACAGACAGTCAGAAATCCGACGAAACAGCAGCAGACCTGACCGAGGCGACGGCGCCTGCGGTAGACGGGACCGCTGCTGGGCAGGCCGCGGCCGGCGACGCAGCACGTGACGAGACCGTGGCCGTCGTGCCTGCGGTCGACGAGGGAGCGGCTGACGAGGCTGTTGCCGAACCGGCAGCCGCGGAGTCCCCCGTGGAACAGGCCCCGGAAGCTAGCGAATCCGCAGCAGCCGAAGCCGAGCCGGCTGAATCCGAACAAGCTGAGTCAGAGCAAGCCGAATCAGAACAGGCTGAAGAGGCCGTGGTGCCGGACGCTGCACCCCAGGAGCCTGCCGCTGAAGAAGCCGCCGAATCCCCCGCGGAGGATGCACCCGCAGAGGACGCCGCCGCTGAGGCGCCGGCCATGGAGGACGCGCGTGCTGAGGCGCGTGCCGAATCCGAGGCACCAGCCGAATCTGAGGCGCCCGCGGAAGCCGGTGCACCTGCTCAGGGCCCCGCTGCTGAAGAATCAGCTGCAGAAGCCCCCGCTACAGAGGAATCAGCTGCAGAAGAAACAGCCGCGGCCGCAGCTGCGCCGGTGCCCGCTCCGGCACCGCGTCCGGCACCGTCGCCCGCAGCTTTCGCAGCCCGTCCCAAGCCGGCCGCCGCGGCACCCGCAGCAGCTCCGGCACCGGTGGCATCGGCAACCTCGCTGGCAGAAGCCGCACGCTGGGGCCGCGTCGAGGGCGACGGCCACGTCTTCCTGACCATCGACGGTGAAGAGCACCCCGTGGGCCAGTACCCCGGGGTCAGCGATGACGAGGCCCTGGCTTACTTCGCAAGGAAATACGACGACGTTGTAGCCCAGATCGTCCTCCTCGAGCAGCGCGTCAGTTCCAAGGCGCCCAGCACGGACATGCAGAAGACCGTGAACCACCTCCGCGAGCAGCTTGCCGAGCGGAACATGGTGGGTGACCTGCGTGCGGCAGAGGCGCGCCTGGACAGGCTCTCTGAACAGATTTCTGAACTGGAAAAGTCCGAAAAGGCAGAGCACGACGCCGTCCGCGCCTCAGAGCTGGCCGCTCGGGAAGCGATCGTGGCTGAGGCTGAGGAAATCTCCGGCCAGGACCCTTCCCAGATCCAGTGGAAGACCTCCAGCGCCCGGATGAACGAACTGTTCGAAAGCTGGAAGACGGCGCAGAAGAGCGGTGTACGGCTGGGCCGCAGCAACGAAGACGCCCTGTGGAAGCGCTTCCGTGCTGCGCGCACCGTTTTTGACCGCCACCGCAGGGCATACTTCTCCCAGCTGGACAGCAACAACTCGGCCGCGAAATCAGCCAAGGAAAAGCTCATCGCTGAGGCTGAGGCCCTCTCCACGTCAACGGACTGGGGGTACGCCGCGGGCGAATACCGCCGCCTGATGGATGAATGGAAAGCCTCCCCGCGTGCCAGCCGGAAGGACGACGACGCCCTGTGGGCCCGCTTCCGCGCTGCACAGGATGTTTTCTTCACATCACGGCAGGCCGCCAACGAGGAAATCGACCAGGAGTACGCGGCGAACCTTACCGTGAAGGAAGCGCTCCTGGTTGAAGCGAACGCCATCCTCCCCGTCAAGGATCTGGCCGCCGCCAAGAAGGCGCTCCAGTCGGTCCGTGACCGCTGGGAAGAGGCCGGCAAGGTCCCCCGTGCGGATATGGGACGGATCGAGGCGGGCCTCCGCAAGGTGGAAGACGCCGTCCGGCACGCCGAAGAGGAAAACTGGCAGCGGTCCAACCCTGAGACCAAGGCCCGCACCAACAGCGCCCTGTCCCAGCTGGAGGCAGCCATCGCCGGTCTGCAGGACGACCTGGCCAAGGCCGAGAAAGCCGGCGACCAGCACAAGATCAAGTCCGCCCGGGAAGCGCTCGAGGCACGGCAGGCCTGGTTGGACCAGATCCAGCGTTCAGCGAGCGAACTCTCCTAGMTDSQKSDETAADLTEATAPAVDGTAAGQAAAGDAARDETVAVVPAVDEGAADEAVAEPAAAESPVEQAPEASESAAAEAEPAESEQAESEQAESEQAEEAVVPDAAPQEPAAEEAAESPAEDAPAEDAAAEAPAMEDARAEARAESEAPAESEAPAEAGAPAQGPAAEESAAEAPATEESAAEETAAAAAAPVPAPAPRPAPSPAAFAARPKPAAAAPAAAPAPVASATSLAEAARWGRVEGDGHVFLTIDGEEHPVGQYPGVSDDEALAYFARKYDDVVAQIVLLEQRVSSKAPSTDMQKTVNHLREQLAERNMVGDLRAAEARLDRLSEQISELEKSEKAEHDAVRASELAAREAIVAEAEEISGQDPSQIQWKTSSARMNELFESWKTAQKSGVRLGRSNEDALWKRFRAARTVFDRHRRAYFSQLDSNNSAAKSAKEKLIAEAEALSTSTDWGYAAGEYRRLMDEWKASPRASRKDDDALWARFRAAQDVFFTSRQAANEEIDQEYAANLTVKEALLVEANAILPVKDLAAAKKALQSVRDRWEEAGKVPRADMGRIEAGLRKVEDAVRHAEEENWQRSNPETKARTNSALSQLEAAIAGLQDDLAKAEKAGDQHKIKSAREALEARQAWLDQIQRSASELSNANANANANA
D1-29_02752687hypothetical proteinATGGCAGCAGCGTCCCCACCCGAATACCCTGACCTCTATTCGCCGGGGCGGCCTTTTAGCTGGCCGGAACTCCAATCGCTTGCTGCGGACGGCGTGCTGGCCAGGTTCCACCAGCAGGGGTATTCACTTCCGGACGTTCACACTTCACCCCAGCTGCGCGCCAGGGCAGCGGCCAACTACGTGCCGGCAGCCATCAGGCAGCGGGTGGTTGCCGGGCGGATGACTGCTGCCTGGATCTACGGCTGTGCGGCGGAGCCGGACCGGCTGGCACTCCTGGTGGACGCGAAACGCCGGGTCTCCAGCCTGCGGAACACCCGCGGATGCACGCTCCACGAAGTCAGGCTCGGCCCGTTCGACGTCGTCAGTCTCGGTGGTCTGATGGTCTCCAGTCCCCTGCGGACAGCCCTGGACATTGCCCTGCATGTGGAACCCCAGCGGGCAATCCCGGCTTTGGAGGGGCTGCTTGCCCGGCCCGAAAAGGACGTGAGGCTGCGCCTCCTGATCCTGGCCATTGAATCGACGCCAAGGGTGCCCCATAAGAAGGCCGCGCTGGAAAAGCTTGCCCTGCTAGCTCCGGCGCTTGTTGCCTGTGGTCCTGTAAACGTCAAAGACGCCGTCGATCCGCCGGACAGCGCTGAGGACGTGGCTCAGGTACTTGGGGTCGCCCATCTCGAACGCGAACTTTGAMAAASPPEYPDLYSPGRPFSWPELQSLAADGVLARFHQQGYSLPDVHTSPQLRARAAANYVPAAIRQRVVAGRMTAAWIYGCAAEPDRLALLVDAKRRVSSLRNTRGCTLHEVRLGPFDVVSLGGLMVSSPLRTALDIALHVEPQRAIPALEGLLARPEKDVRLRLLILAIESTPRVPHKKAALEKLALLAPALVACGPVNVKDAVDPPDSAEDVAQVLGVAHLERELNANANANANA
D1-29_027532394relACOG0317Bifunctional (p)ppGpp synthase/hydrolase RelATTGGAAGAACGTTCGGCGTCGGCGCCAACGGCAAACGGGGATAACAGTCCAGGCTCCGGACCGCAGACCGGGCTGGCCGCTTCCGGCCGCCCCGGCCCGGTGATTCCCGTGGACAATTCCGGTTCGCGTGCCACCTTTCCCGGCCGCCGGGAACGGACCCGCTCCCGGCTCGCACGCCTCACAGGGCGCAGTGCGGTCAATTATTCACCCATCCTTGAGCCGCTGCTGCGGACCGTCCGGGCGAACAACCCCAAAGAAGACTTTGACCTCATCCAGCGCGCCTTCGACGTCGCCGAGCGCAGCCACCGCGGCCAGAAACGCAAGAGCGGCGACCCCTACATCACCCACCCCGTGGCTGTTGCGACCATTCTGGCTGAACTCGGGCTGAGCGGCACTACCCTCGCCGCCGCACTCCTCCATGACACGGTGGAGGACACCCCGTACACGCTGGCGGACCTGAAGCGGGACTTCGGGCCGGAAGTCGCCATGCTGGTGGACGGCGTGACAAAGCTGGACAAAGTCAGTTTCGGTGAAGCTGCCCAGTCAGAGACAGTGCGCAAGATGGTCGTGGCCATGGCCAAGGACATCCGCGTCCTAATGATCAAGCTGGCGGACAGGCTGCACAATGCCCGTACCTGGCGTTTCGTCTCGGCCGAATCCTCCGCCCGCAAGGCGCGCGAAACCCTGGAGATCTTCGCACCCCTGGCCCACCGCCTCGGGATGAACACCATCAAGTGGGAGTTGGAGGACCTGTCCTTCGCGGCCCTCTATCCCAAGGTCTATGAGGAAATCGTCCGGATGGTGGGGGACCGCACCCCGGAGCGGGAGAAGAGCCTGGGGGTCATCCGGGACCAGATCACCGAGGACCTCAGGACCGCGCGGATCAAGTCCACCATTACCGGCAGGCCCAAGCACTATTACTCGATTTACCAGAAGATGATCGTGCGGGACAAGGACTTCGACGACATCAACGACCTCATGGGTGTCCGGGTGCTGGTGGATTCGGTCCGGGACTGTTATGCCGCGCTGGGCACCATGCATTCGCGCTGGAATCCGCTGCCCGGACGGTTCAAGGACTACATCGCGATGCCCAAGTTCAACATGTACCAGTCCCTCCACACCACCGTGATCGGCCCGGGCGGAAAGCCTGTGGAGATCCAGATCCGGACTCACGAAATGCACCGGCGCGCAGAGTACGGCGTGGCGGCACACTGGAAGTACAAGGACCAGCCAAACCGGACGGCCACCGGACCGGGCAGCCCACGCGACGGCGACATGGGCTGGCTCAGGTCCCTGGTGGACTGGCAGCAGGAAACCTCCGATCCCGGCGAATTCCTGGACTCCCTGCGCTTTGAGATCAATGCCCGGGAGGTGTTTGTCTTTACCCCAAAGGGCGAGGTCATGGCCCTGCCTGCCGGATCCACCCCGGTGGACTTTGCCTACGCCGTGCATACCGAAGTGGGGCACCGCACCATCGGCGCCAGGGTGAACGGCAAGCTGGTTCCGCTGAACAGCGAGCTCAACCATGGCGACTGGGTAGAAATCTTCACGTCGAAAGCAGAAGGAGCCGGCCCCAGCCAGGACTGGCAGCACTTCGTTAAGAGCGCCAGGGCCCGGAACAAGATCCGTCAGTGGTTCAGCAAGGAACGCCGCGAAGAGGCGATTGACCGTGGCAAGGAACTGTTGACGCGGGCCATGCGGAAACAGAACCTTCCCCTCCAGCGCCTGATGACACATGAAGCCCTGGCGGCAGTGGCCGCTGACTTCAAATACGTGGACATCTCTGGCCTGTACGCCGGCGTGGGTGACGGACACACGTCAGCCCAGTCCGTGATGGAAAAGCTCGTCGAAAGCCTTGGCGGCAACGAGAGCACCGACGAAGACATCACCGAAGTCAGTATCCCCACGCAGGTCACCAAGGCCCGGTTCTCGGATTCCGGCGTGGTGGTCCGCGGCGTGGGGGACGTCTGGGTGAAGCTGGCCCGCTGCTGCACCCCGGTTCCGCCCGATCCGATCCTCGGGTTTGTTACCCGGGGCTCCGGTGTTTCAGTGCACCGTACGGACTGCACCAACATCTCGGACCTTAAGGACCAGCCGGACAGGATTGTTGATGTGGACTGGGCCCCCACGCAGTCCAGTGTTTTCCTGGTGGAGATCCAGGTTGAAGCCCTGGACCGTAAGTCGCTGCTGTCCGATGTGACCCGGGTCCTCTCTGACAACCATGTGAACATCCTCGCCGCCAGCGTGCATACCTCCACGGACCGGGTGGCAATCTCAAAGTTCGCGTTCGAGATGGGCGACCCCAAGTACCTGAGCCACGTCCTCAGCGCTGTCCGGCGGATCGACGGCGTCTTTGACGTTTACAGGACCACAGGCAACAAGCGCCGGAGCTAGMEERSASAPTANGDNSPGSGPQTGLAASGRPGPVIPVDNSGSRATFPGRRERTRSRLARLTGRSAVNYSPILEPLLRTVRANNPKEDFDLIQRAFDVAERSHRGQKRKSGDPYITHPVAVATILAELGLSGTTLAAALLHDTVEDTPYTLADLKRDFGPEVAMLVDGVTKLDKVSFGEAAQSETVRKMVVAMAKDIRVLMIKLADRLHNARTWRFVSAESSARKARETLEIFAPLAHRLGMNTIKWELEDLSFAALYPKVYEEIVRMVGDRTPEREKSLGVIRDQITEDLRTARIKSTITGRPKHYYSIYQKMIVRDKDFDDINDLMGVRVLVDSVRDCYAALGTMHSRWNPLPGRFKDYIAMPKFNMYQSLHTTVIGPGGKPVEIQIRTHEMHRRAEYGVAAHWKYKDQPNRTATGPGSPRDGDMGWLRSLVDWQQETSDPGEFLDSLRFEINAREVFVFTPKGEVMALPAGSTPVDFAYAVHTEVGHRTIGARVNGKLVPLNSELNHGDWVEIFTSKAEGAGPSQDWQHFVKSARARNKIRQWFSKERREEAIDRGKELLTRAMRKQNLPLQRLMTHEALAAVAADFKYVDISGLYAGVGDGHTSAQSVMEKLVESLGGNESTDEDITEVSIPTQVTKARFSDSGVVVRGVGDVWVKLARCCTPVPPDPILGFVTRGSGVSVHRTDCTNISDLKDQPDRIVDVDWAPTQSSVFLVEIQVEALDRKSLLSDVTRVLSDNHVNILAASVHTSTDRVAISKFAFEMGDPKYLSHVLSAVRRIDGVFDVYRTTGNKRRSPGPT0014310_260DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139NANA
D1-29_027541020secFCOG0341Protein translocase subunit SecFATGTCCAGCTTTGCCAATTTCGGTAACGAGCTCTACACCGGCAAGCGCTCCTACGACTTCGTGGGTGCCAAGAAAATCTGGTTCCTCATCGCGGCGGTTGCCGTTGCCCTGTCCATCCTGATCCCGGTCGCCAAGGGCGGGTTCAATCTGGGGATCGAGTTCCGTGGCGGTTCCGAGTTCACCGTCTCGAATGTCAAGACCACCGACGCTGCCGCCGGCGAAAAAGCGGTCCAGGACGTTGTGGCCGGCAGCATTCCCCGGGTGGCCAACGTGGCCGGCACCACCATGCGCATCCAGACTGACAAGCTCACGGATGAAGAGACCCTCAAGATCAAAGAGGGCCTCACCGCCGCCTATGGCGTGACCGACAACGAGGTGACATCCACCTTTGTGGGACCGACGTGGGGAGCTGACGTCACCAAACAGGCCCTGCTGGGGCTTGTGATCTTTGTGGTCTTGGCGGCCGTGCTGATGGCGCTGTACTTCAGGACCTGGAAAATGTCGCTCTCCGCGATTGCGGGCATGGCGGTGACCATGTTCATTACCGCCGGAGTTTACGCACTCAGTGACTTTGAAGTGACACCGTCAGCCATCATCGGCTTCCTGACTGTGCTCAGCTACTCGCTGTATGACACGGTGGTGGTGTTCGATAAGATCCGTGAGAACACGGCCGACATTGATGCCTCAACCCGCCGTACCTTTGGTGAAGAGGTCAACCTCGCCGTGAACCAGACCTTGGTGCGCTCCATCAACACCATGATGGTTGCCATCCTGCCCGTTGGTGCCATCCTCTTCATTGGTGCCGGGCTGCTGGGGGCGGGCACCCTTCGCGACCTTTCGCTGGCGCTGTTCGTCGGGATCCTGATCGGAACGGCCGCCACCATCTTCATCGCCGCACCGATGTACGCCTGGTTGCGCCAGAACGAACCAGAACTGGTGAAGCAGGCCAAACGCGTGGAGCACCGCCGGGCAGAGACGGCGTCACGGGCAGCTGCTCCGGCAGCGCCCGCCCAAGCCTGAMSSFANFGNELYTGKRSYDFVGAKKIWFLIAAVAVALSILIPVAKGGFNLGIEFRGGSEFTVSNVKTTDAAAGEKAVQDVVAGSIPRVANVAGTTMRIQTDKLTDEETLKIKEGLTAAYGVTDNEVTSTFVGPTWGADVTKQALLGLVIFVVLAAVLMALYFRTWKMSLSAIAGMAVTMFITAGVYALSDFEVTPSAIIGFLTVLSYSLYDTVVVFDKIRENTADIDASTRRTFGEEVNLAVNQTLVRSINTMMVAILPVGAILFIGAGLLGAGTLRDLSLALFVGILIGTAATIFIAAPMYAWLRQNEPELVKQAKRVEHRRAETASRAAAPAAPAQAPGPT0029265_730DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074NANA
D1-29_027551758secDProtein translocase subunit SecDATGGCACGAACTGGCCCCAAAAACTCAGCGCTCAGGGTGCTGGTCTGGCTCGGCGTAATTATCGCCGTGCTGACCGCAGTGCTGGCCGGCGGCACCATGTCCGGGCAGGCAAGCTGGGCTCCCAAGCTGGCGCTGGACCTTGAAGGCGGCACGCAGATGATCCTGGCGCCCAAGGTTGAGGGCAATTCGGACATTAATGAGGAGCAGCTCAACCAGGCGGTGTCCATCATTCGCCAGCGCGTTGATGGTTCCGGTGTGGCTGAGGCGGAAATCAGCACCCAGTCGGGCCGGAACGTTGTGGTCAGCCTTCCGGGCACCCCGTCATCCCAGACCCGGGCCCTGATCCAGGCGTCGGCGGACATGAACTTCCGCCCCGTCCTGCTGAATGGACCGGGCGCCGCTGTTCCCGCTGAGTCGCAGACGCCTGAGGAGCAGCTGCCCAAGCCCACGGCCGAGCCTGCCAACAGCAGCGACATCAACTGGATCACCCCTGAGCTCTACCGCCAGTTCGAGAGCCTTGACTGTGACAACCCGTCCCAGGACCGGCAGGAACGTTCAGACCCCACCAAGCCTCTGGTGACATGTGAGCCCGCCACGGCGTCGTCGCCCGCGGTCAAGTACATCCTCGGTCCCGTCGAGGTTAAGGGCACCAACATCGTGACGTCCTCGTTCCAGCTTCAGCAGGGCGCGCAGGGTGCTGTCACGAACGAATGGGCCGTCAACATCCAGTTCAACGATGAAGGCACCGCGAAGTTCAAAGAGGTCACAGAGCGCCTGAACCAGTTCTACGTCGCTGCCGGCGGTGACGCCGGAACCGACCCCAAGGCCCAGTTCGCCATTGTCCTGGATGACCAGGTCATCTCTGCTCCCCGCGCCCTTGCCGTCATCACCGACGGGCGGCCGCAGATCACCGGCGGATTCACCGAGCAGACAGCGAAGGCACTGTCCGACCAGCTCCGCTTTGGCGCGCTTCCCATCAGTTTCGAAATTCAGAGCGAGCAGCAGATTTCCGCAACCCTCGGTGGCGAACAGCTCCGTATGGGACTCCTCGCCGGTGTGATCGGCCTGCTCCTGGTGGTGGTGTACTCGCTGTTCCAGTACCGTGCGCTGGGCTTTGTCACCATTGCCTCCCTGGCGGTAGCCGGTGTGCTGACGTACCTCGCTATCGCAATCCTGGGCTGGACCGAGAACTATCGGCTCTCCCTGGCAGGCGTCGCCGGCATCATCGTGGCCATTGGCCAGACCGCTGACTCCTTCATTGTTTACTTCGAACGAATCCGTGATGAGCTTCGCGAGGGCCGCGGCCTGGTTTCCGCAGTCGAGAATGGCTGGAAGCGGGCCAAACGCACTGTGCTGGCCTCGAAGGCCGTGAACCTGCTGGCTGCCCTGGTGCTGTACTTCGTGGCTGTTGGCAACGTCCGCGGCTTCGCTTTCACCCTCGGGCTCACGGCCATCGCCGACCTCATCGTGGTGTTTATGTTCACCCACCCCACGCTGCGGTTGCTGGCACGCACCAAATTCTTCGGCGAGGGCCACCGTTTCTCCGGCCTTGACCCGAAGCGCCTTGGCGCAGTTCCGCTTTACCGTGGAGCCGGGCGCCTGCGCACCCCCGAGGCCAAGCCCTCGGTGGTCCGTGCCAAGAACAGCGGAGCAGCAGCGGAGGCAGAACGCAGGATGACCATCGCGGAACGCCGCCTAGCTGAAAAGCAGGAGCAGCTCGCTGGCTCCTCCAAGAGCGCAGCCAAGGAGAACAAGTAAMARTGPKNSALRVLVWLGVIIAVLTAVLAGGTMSGQASWAPKLALDLEGGTQMILAPKVEGNSDINEEQLNQAVSIIRQRVDGSGVAEAEISTQSGRNVVVSLPGTPSSQTRALIQASADMNFRPVLLNGPGAAVPAESQTPEEQLPKPTAEPANSSDINWITPELYRQFESLDCDNPSQDRQERSDPTKPLVTCEPATASSPAVKYILGPVEVKGTNIVTSSFQLQQGAQGAVTNEWAVNIQFNDEGTAKFKEVTERLNQFYVAAGGDAGTDPKAQFAIVLDDQVISAPRALAVITDGRPQITGGFTEQTAKALSDQLRFGALPISFEIQSEQQISATLGGEQLRMGLLAGVIGLLLVVVYSLFQYRALGFVTIASLAVAGVLTYLAIAILGWTENYRLSLAGVAGIIVAIGQTADSFIVYFERIRDELREGRGLVSAVENGWKRAKRTVLASKAVNLLAALVLYFVAVGNVRGFAFTLGLTAIADLIVVFMFTHPTLRLLARTKFFGEGHRFSGLDPKRLGAVPLYRGAGRLRTPEAKPSVVRAKNSGAAAEAERRMTIAERRLAEKQEQLAGSSKSAAKENKPGPT0029260_1999DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072NANA
D1-29_02756552hypothetical proteinATGACGCCCGGCACCTTCGGGTCTTTGTTCCCGCAGGCGGCATTACCAGCCGCCGGTGGACGGCACACAGTTTTCCGCCAGGCCACACGGTTCAAAGCGGACGCTGCCTACACCAAAAATACGCCAGTACAGAACGGAAACTTCCCTGTGGATCCAATGAACATCGTCTTGTTCGCCATGCTCGGAATCTTTGTCTTTATGATGTTCCGCCGCAACAAGAAGACCAAGGAGCAGCAGGCAACGCTGCAGTCCCAGTTCGCCCCTGGCGTTGAGGTCATGACGAGCTTCGGTCTCTTTGGCCGCATCGTCTCGATGGACGATGAAGAGAACAAGGTCGTCCTGGAGCTTTCACCCGGCAACCTTGCCACCGTTCACCGCCAGGCCGTCACCAAGATTGTTGAGCCGGCCGTCGTTACCGAGGATGAGCCGTCTGTCGTCCCCAATGATGCTTCGTCCCTGACTGCTGAGGAAACAGGGCCGACCGCACCTGCTGCCGAGACGCCGGACGAGACCCTCAAGCGCCTCAACGACGAAGGTAAAAAGGACAGCTAGMTPGTFGSLFPQAALPAAGGRHTVFRQATRFKADAAYTKNTPVQNGNFPVDPMNIVLFAMLGIFVFMMFRRNKKTKEQQATLQSQFAPGVEVMTSFGLFGRIVSMDDEENKVVLELSPGNLATVHRQAVTKIVEPAVVTEDEPSVVPNDASSLTAEETGPTAPAAETPDETLKRLNDEGKKDSPGPT0025730_697DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210NANA
D1-29_027571089ruvBCOG2255Holliday junction ATP-dependent DNA helicase RuvBGTGGCTGAGCCTTCGGTGGTGGCCGCGGTGGAAGAGCCTGAGGACCGCGCCATCGAGGCTGCGCTTCGGCCCAAGAACCTGGATGATTTTGTCGGCCAGCACAGGGTCCGCAAGCAGCTTTCGCTGGTCCTGCAGGCCTCAAGGATGCGCGGCCGGAGCGCCGACCACGTGCTCTTCTCCGGCCCGCCGGGGCTGGGTAAGACCACCTTGGCCATGATCGTGGCCGCCGAGATGAACGCGCCCCTGCGCATCAGCAGCGGTCCCGCCATCCAGCACGCGGGGGACCTGGCCGCCATTCTTTCCTCGCTCTCCGAGGGCGAGGTTCTGTTCCTCGACGAAATCCACCGCATGTCCCGGCCGGCCGAAGAAATGCTCTACATGGCCATGGAGGACTTCCGGGTGGACATCGTGGTGGGGAAGGGCGCCGGTGCCACCGCCATTCCGCTTGAGCTGCCGCCGTTCACCCTGGTGGGCGCCACCACGCGGGCCGGACTCCTGCCTGGCCCGCTGCGTGACAGGTTCGGGTTCACCGGGCACCTGGAGTTCTACTCCGTGGCCGAGCTGGAACTGGTCCTGAGACGGTCCGCCGGCCTGCTGGACCTCAAGGTCAACTCTGCCGGGTTCAGCGAAATCGCAGGACGGTCCCGTGGCACACCCCGTATAGCCAACCGCCTGCTCCGCCGTGTGCGCGACTGGGCCCTGGTGCATGGAATTGAGCAGATCGATGCCCGCGCTGCCTCCGCCGCGCTGGACATGTATGAAGTGGACAAGAAGGGCCTGGACCGGCTGGACCGTGCCGTCCTGGAAGCGCTTATCACCAAATTCGGCGGCGGGCCCGTGGGTCTGTCCACCCTGGCCATCGCCGTGGGGGAGGAGACAGAGACCGTCGAAACGGTAGCTGAGCCGTTCCTGGTCCGGGAAGGGCTGCTGGGACGAACTCCGCGTGGCCGTATCGCCATGGCCCCCGCGTGGACGCACCTTGGTTTTGCCGTCCCGGCCGGGGTGTTTGGGCAGGAGCCCCTGGATCTGTTCGAGACCGGTCCTGACGATGAAGAATCTGCGGCCGATTGGGCTCCGAACGGCCAATAGMAEPSVVAAVEEPEDRAIEAALRPKNLDDFVGQHRVRKQLSLVLQASRMRGRSADHVLFSGPPGLGKTTLAMIVAAEMNAPLRISSGPAIQHAGDLAAILSSLSEGEVLFLDEIHRMSRPAEEMLYMAMEDFRVDIVVGKGAGATAIPLELPPFTLVGATTRAGLLPGPLRDRFGFTGHLEFYSVAELELVLRRSAGLLDLKVNSAGFSEIAGRSRGTPRIANRLLRRVRDWALVHGIEQIDARAASAALDMYEVDKKGLDRLDRAVLEALITKFGGGPVGLSTLAIAVGEETETVETVAEPFLVREGLLGRTPRGRIAMAPAWTHLGFAVPAGVFGQEPLDLFETGPDDEESAADWAPNGQNANANANANA
D1-29_02758645ruvACOG0632Holliday junction ATP-dependent DNA helicase RuvATTGATCAGTTTCCTTCGCGGAACAGTAGCGCACGTAGGTCTTTCCACGGCCGTGATTGACCTTAACGGGGCGGGAATGAGCGTGAACGCCACCCCGCAGACCCTCAGCCGGCTCCGCACGGGCGAAGAAGGAAAACTGTTCACCTCGCTTATAGTGCGCGAGGATTCCCTGACACTTTTCGGGTTCGCGTCCGACGACGAACGTGAAGTTTTCGATGTCCTGCTCAGTGTCAGCGGGGTTGGCCCGCGCCTGGCCCTGGCGGTGCTGGCGGTCCACGAACCCGAAGCCATCCGGGTGGCTGCCCACACAGGGGACAGCAAGACCTTCACAAAGGTGCCCGGGATCGGCCCCAAGGTGGCTGGCAGGATCGTCCTTGAGCTCGCCGGAAAGCTGGTGCCGCACGGCACCGCGGGCGCCCAGGCCGCGGCCACCCCCGCTGAAGCCGCCTGGAAGCCGCAGGTTGTCGCAGCCATGACCAGCCTGGGCTGGTCCGAAAAGGACGCCGCGGCGAGTATCGAGAAGGCACTGGCGGATGAGCCCGAGGTTTCCTTCCGCGGCAATGTGGCAGAAATTCTCCGCACCACCCTTCGCTGGCTTGGCCAGGACGGCGCCCGGGCCGGCAACCGGGTAGGCAGCCGTGGCTGAMISFLRGTVAHVGLSTAVIDLNGAGMSVNATPQTLSRLRTGEEGKLFTSLIVREDSLTLFGFASDDEREVFDVLLSVSGVGPRLALAVLAVHEPEAIRVAAHTGDSKTFTKVPGIGPKVAGRIVLELAGKLVPHGTAGAQAAATPAEAAWKPQVVAAMTSLGWSEKDAAASIEKALADEPEVSFRGNVAEILRTTLRWLGQDGARAGNRVGSRGNANANANANA
D1-29_02759579ruvCCOG0817Crossover junction endodeoxyribonuclease RuvCGTGACGCTGCGCGTCCTGGGGGTTGACCCCGGGCTCACCCGCTGCGGCATCGGCGTCGTCGACGTCGAACGGAACAGGCGGGCCACCATGGTGGCCGTCGGGGTGGTGGGCACCTCCCCGGGAGAGACCCTCGACCAGCGGCTGTTGGTCATCGCCCTGGCCATTGATGACTGGCTGGACAGATACGAACCCCACGTCCTGGCCGTTGAGCGCGTTTTTTCGCAGCTCAACGTCAGCACGGTGATGGGGGTGGCCCAGGCATCGGGAGTGGTGATCGCCGCCGCGGCCCGGCGCGGGATCCCGGTGGCGCTGCACACGCCGTCGGAAGTCAAGGCTGCAGTCACCGGCAGCGGCACGTCCAATAAGGACGCCGTCACCAAGCTGGTCACCAAGATCCTTCGGCTCGACGCGCCGCCGCGCCCTGCCGACGCCGCCGACGCCCTGGCCCTTGCCATCACCCACGCCTGGCGTGCGGGCAGCGGCGCCGCTGTGGCCACCACCGGTCCCGGCAGTTCCTCCCTGACACCCGCCCAGCGGGCCTGGGCTGACGCGGAGGCGAAGGCGCGCCGCGCACGCTGAMTLRVLGVDPGLTRCGIGVVDVERNRRATMVAVGVVGTSPGETLDQRLLVIALAIDDWLDRYEPHVLAVERVFSQLNVSTVMGVAQASGVVIAAAARRGIPVALHTPSEVKAAVTGSGTSNKDAVTKLVTKILRLDAPPRPADAADALALAITHAWRAGSGAAVATTGPGSSSLTPAQRAWADAEAKARRARNANANANANA
D1-29_02760756COG0217putative transcriptional regulatory proteinATGTCAGGCCACTCCAAATGGGCGACGACCAAGCACAAGAAGGCCATCCTCGATAGCCGCCGCGCCAAGTCGTTCGCCAAACTGATCAAGAACATCGAAGTTGCCGCCCGCATGGGCGGACCGGACCTGGCCGGCAACCCCAGCCTGGAACTTGCCGTCACCAAGGCCAAGAAGACCTCCGTCCCAGCAGACAACATCGACCGTGCCATCAAGCGCGGCGCCGGCCTGACCGGTGAAGTGGTGGACTACACCGAGATCATGTACGAATGCCGCGGGCCGCAGGGTTCTGCCCTGCTCATCGAGTGCCTCACGGACAACAAGAACCGTGCCGCCTCAGAAGTGCGCCTGGCCATCTCCCGCAACGGTGGCACCATCGCCGATCCCGGTTCCGTCAGCTACCTCTTCAGCCGCAAAGGCGTTGTGTCCCTGCCCAAAAAGGACCTGACCGAGGACGACGTCCTGATGGCGGTCCTGGATGCCGGCGCCGAGGAAGTCAAGGACAACGGCGACAGCTTCGAAATCCACTCGGAGCCCACCGACCTGCAGGCCATCCGCGAAGCCCTCAAGGAAGCCGGGATCGAATACGACACCGATGAGGCCGAGTTCGTCCCCTCCATGCAGGTGCCGCTGGACCTCGACGCCGCCAAGAAGTTCATGAAGCTGGTGGATGCCCTGGAAGAGCTCGACGACGTCCAGAACGTCTACAGCAACGCCGACCTCAGCGACGAAGTCCAGGCCGCCCTGGAAGCCGAGTGAMSGHSKWATTKHKKAILDSRRAKSFAKLIKNIEVAARMGGPDLAGNPSLELAVTKAKKTSVPADNIDRAIKRGAGLTGEVVDYTEIMYECRGPQGSALLIECLTDNKNRAASEVRLAISRNGGTIADPGSVSYLFSRKGVVSLPKKDLTEDDVLMAVLDAGAEEVKDNGDSFEIHSEPTDLQAIREALKEAGIEYDTDEAEFVPSMQVPLDLDAAKKFMKLVDALEELDDVQNVYSNADLSDEVQAALEAENANANANANA
D1-29_02761711pdxTCOG0311Pyridoxal 5'-phosphate synthase subunit PdxTATGACAAACCCCCTTTCGGCTGCTCCTGCACGCGTGGGCTCAGGCCTGCGGATCGGCGTCCTGGCTCTTCAGGGCGACTTCCGCGAACACCTGCGCGCGGTAGAGGCCGCCGGTGCTGCCGGCGTCGGAATCCGTCGTGCTTCCGAACTCGAGGGCCTGGACGGTCTGATCATTCCCGGCGGCGAATCCACGGCGATCGATAAACTGGCTCGTGCCTTTGATCTGGCGGAGCCGCTGCGGGCCCGGATCAAGGACGGCCTGCCGGTCTACGGTTCCTGCGCCGGCATGATCCTGCTGGCGGACCACATCGCGGACCCCGCCACCGACCTTGCCGGCGAACCCCAGCAGACCTTCGGCGGCCTGGACATCACCGTGCGCCGCAACGCCTTCGGGCGCCAGCGGGAGTCGTTCGAGACCGACCTTGACTTTAAAGGGCTGGACTTCAGTGCCACCGGCGCCGGCACCCCGCCCGTCCACGCTGTCTTCATCCGCGGCCCCTGGGTGGAGCGGGTGGGCCCGGACGTGGAGGTCCTTGCCCAGGTAGAACCTGCCGACCCCGAGCACGCGTCCCACGCCGCGCCCCTGCCCGGGACGGCTAGAATTGTTGCCGTGCGCTCAGGCCAACTGCTGGCCACCTCCTTCCACCCGGAAGTGACTGGGGAAAAACGCGTACACGAACTTTTTATTCGAATGATCAGAGGAGAAGCGTAAMTNPLSAAPARVGSGLRIGVLALQGDFREHLRAVEAAGAAGVGIRRASELEGLDGLIIPGGESTAIDKLARAFDLAEPLRARIKDGLPVYGSCAGMILLADHIADPATDLAGEPQQTFGGLDITVRRNAFGRQRESFETDLDFKGLDFSATGAGTPPVHAVFIRGPWVERVGPDVEVLAQVEPADPEHASHAAPLPGTARIVAVRSGQLLATSFHPEVTGEKRVHELFIRMIRGEAPGPT0009185_238DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009185-pdxT|pdx2|yaaE-K08681NANA
D1-29_027621293murTCOG0769Lipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit MurTATGCTTTACATCAGTATTCCGCTCGGCAAGCTGGTCCGTCGGGTATCCCGGCTCAGGGGCGGAGGTTCCGCCCTGCCCGGCCTGGTGGTCGAAAAAATCGATCCGGGCTTTATGCAGCGGACGCTCTCAACCCTCCCTCACGGTGTGGCTGTGGTCAGCGGAACCAACGGTAAGACCACCACCACCAAGATGGTGGTGGAACTCCTGGAAAGCCAGGGCCTGAAGGTCTTCACCAACCGCACCGGAAGCAACTTCACCCGTGGTGTGGCTGCGGCCCTGCTGGGAGAGGTGGACTGGCGTGGACGGCTCAAGGCCGACGTCGCTGTCCTGGAACTGGACGAAGCCCACGCCGTGCACTTTGTGAACAGCGTTCCGCCGCGCTACAGCCTTCTGCTGAATGTGCTGCGTGACCAGCTTGACCGGTTCGGTGAGATCGACAAGACAGCCCAGCTCCTGCAGCATGTCGCCGCCAACACCACCGGAACAGTGGTGCTGAACCGTGAAGACCCGAGGGTGGCACGCATAGCGGATACGCTCACCGGCCAGGAGGTCCGTTACTTCGGCCTGGACGACTCCCTGCTCAGCACTTTTCCCAACGACGACGACATGCGGGCTGCGCCCGGAAGCCCCGCGCCCGCGCCGCTGCCTGACAAGCCGCCGGCCGACGTCGTGCTCCGCCGGGTGGGCCCGGACAGCGCCGATTTTGAGTACGACGGCGTCACAGTCAGCACCGCAATGCGGCTCCGCGGGGTCTATAACATCTTCAATGCCGCGGCCGCACTGGCCCTGGCCCGCAGCATCTGCGGAAGCGGCGCCGCCACTGCTGACCACAACACGCTGCTGACCGCGCTGTCGCAGGTGGAACCGGCATTTGGCCGGGGCGAAAGCCTCACCGTTGACGGGCAGCCGCTGGATCTGGTCCTGGTCAAGAACCCCAGCGGATTCCGCCTTGGCCTGAAATCGTTCCCGGCAGGCGGCTACGCCACCATGATCGCCATTAACGACAACTATGCCGACGGCAGGGACATGTCCTGGCTGTGGGATGTGGAGTTCGAATCACTGCGCGACGGCGGCGTGGACCAGCTGACCGGATCCCGCGCCTATGACATGGCGTTGCGGCTGCAGTATGACGAAGTGCCGATCGGCGCCGTGGAGCCGGACATCGCACCTGCACTGGCGGACTTCATCCGGGACGCGAAGGACAGGCCAAAAAGGATATTCTGCACTTATACGGCAATGCTGGCCATCCGCCGCGAGCTGTCCAAAATCACCACAGTGGAGGTTGTCTCATGAMLYISIPLGKLVRRVSRLRGGGSALPGLVVEKIDPGFMQRTLSTLPHGVAVVSGTNGKTTTTKMVVELLESQGLKVFTNRTGSNFTRGVAAALLGEVDWRGRLKADVAVLELDEAHAVHFVNSVPPRYSLLLNVLRDQLDRFGEIDKTAQLLQHVAANTTGTVVLNREDPRVARIADTLTGQEVRYFGLDDSLLSTFPNDDDMRAAPGSPAPAPLPDKPPADVVLRRVGPDSADFEYDGVTVSTAMRLRGVYNIFNAAAALALARSICGSGAATADHNTLLTALSQVEPAFGRGESLTVDGQPLDLVLVKNPSGFRLGLKSFPAGGYATMIAINDNYADGRDMSWLWDVEFESLRDGGVDQLTGSRAYDMALRLQYDEVPIGAVEPDIAPALADFIRDAKDRPKRIFCTYTAMLAIRRELSKITTVEVVSPGPT0023775_799DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-LIPID_II_ISOGLUTAMINYL_SYNTHASE,PGPT0023775-murT-K23393NANA
D1-29_02763756gatDLipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit GatDATGACTTCCGGACCCGATGGATCACAACAGGCAGGCAGCAAAGGCACTATCCGGGTTGTACTGCTGTACCCGCGTGACATGAACATTTACGGCGACTGGGGCAACGCCCTGGTTCTCCGCCAGCGCATCAGCTGGCACGGGTACACCCCCGAATTGGTGGAATACAACGTCGGGGACGAATTTCCGGATGACGTGGACATCATCGTGGGCGGCGGCGGCCAGGACAGCGGCCAGCTGGTCATCCAGGACGACCTGCAGTCCCGGGCCGGTGTCCTGACGGAACTGGCCGAGGACGGTGCACCCATGCTGGTCATCTGCGGGCTGTACCAGCTTTTCGGGCGCTTCTTCAAGACGCGCACCGGGGCAGTGATTCCGGGGATCGGGGTTCTGGACGTGGAAACGCATGGCACCGATGAACGGCTTATCGGCAACGTCAAAGTCTCCACCAGTGAGTTCGGCGAAGTGCTCGGGTACGAGAACCACAGCGGCCAGACCACCCTGGGCCCGGGCGTTCGTCCGCTGGGCACCGTGCCCAAGGGAATGGGAAACAACAGCAGCGACGGCCACGAAGGCGCCCGCTACCGCAACATTGTGGCAAGCTACCTGCACGGCTCCCTCTTGCCCAAGAACCCTGCGATCGCCGATTTCCTGATCAGGACGGCCGCCGAACGCAAGTACGGCACTTTCATCCCGGGCAACCCGGATGACCGCTACTCGGTGCTGGCCCGTGAGCACGCTGCCCGCCGGCCCCGCTGAMTSGPDGSQQAGSKGTIRVVLLYPRDMNIYGDWGNALVLRQRISWHGYTPELVEYNVGDEFPDDVDIIVGGGGQDSGQLVIQDDLQSRAGVLTELAEDGAPMLVICGLYQLFGRFFKTRTGAVIPGIGVLDVETHGTDERLIGNVKVSTSEFGEVLGYENHSGQTTLGPGVRPLGTVPKGMGNNSSDGHEGARYRNIVASYLHGSLLPKNPAIADFLIRTAAERKYGTFIPGNPDDRYSVLAREHAARRPRPGPT0023770_276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-LIPID_II_ISOGLUTAMINYL_SYNTHASE,PGPT0023770-gatD-K07009NANA
D1-29_027641251hypothetical proteinATGTGGCGTATGGGGAACTTGCTTGCCACTGGTGCTGTCCGCGTTCGCACCGCGGTTTTTGCTGCTGTGTTTACGGTGTTGCTGGCAGGCTGCGGCCTGGTGGCAGAGCAAAACACTCCCTCAACGTCAGCGGGCCCGGTTCCGGTCGAGGCAAGCCCCACGCCGTCACCGACGCCAACCCCTACTCCCACCCCGGGCGAAGGGCCGCCCTGCCCCACGATCCGGTGCACATCGATACTGGTCACAGGCGACATGCTGGTGCACACCCAGCTTTGGCAGCAGGCCACTGCGGATGCGGCGGCGGCAGGGAAGCCCGGCCTGGACTTCGTTCCGCTGCTGGAGGGTCAGCGCAGGTACATCCAGGCCAGCGACCTCGCCATCTGCCACCAGGAGACACCCGTGGCCGGCCCGGAGGGGCCATTCTCCGCCTACCCGTCCTTCAACGTTCCACCCCAGATCATCACCGCCGCCAAAGCTGTCGGGTACCAGGCCTGCACCACGGCCAGCAACCACACGATCGACAGGGGCACGGACGGCCTGCTCCGCACCCTTGATGCCCTGGACGCTGCGGGTTTGAAGCACACCGGTTCCTACCGCACCGAAGCGGAGTCCCAGGGAATCCTGATCATGCAGACCCAGGCCGCGAAGATCGCCATCATCGAGGCGACGTACGGGCTCAACGGCCAGTACCCGGATTACGCCTGGCAGGTGGACATGCTTGATGCACCAACCATGATCGCCAAGGCCCAAAAGGCGAGGGCAATGGGCGCGGACATTGTGCTTGGAGCCATGCACGCCGGTGATGAGTACGCCAGTGAAGCGAATGCCCAGCAACAGGAAGTTGCCCATGCGCTGGTGGACAGCGGACAGTTCACCATGATCTACGGGCACCACACACATTCCGTGCTGCCCATCGAGAATTACAAAGGCACCTGGATTGTGTACGGCCTGGGCAACGGCGTGACAGAACTCTCGCCCTGGTACGTGGTCAACAACGAAGGGCTCCTGGTTCGGGCACAATTCAGCCAGGACGAATCGGGTAAATGGTCGCCCGCAGACCTGGCCTGGGTGCCGTCAGTGATTGTCCGGGACCCCTACCGCTGGTGCCCGGTAGCCTCCGACGCGCCGCAGGGCACGTGTGCGTCACCGGAAGCAGATGCAGCCACCAGGCAGCGGACCGCCACCGTAGTGAACTCCATGGGCGCTGCCGCTGCCGGTGCACACGAACTCCTCATCACGCAGGAGCGCTAAMWRMGNLLATGAVRVRTAVFAAVFTVLLAGCGLVAEQNTPSTSAGPVPVEASPTPSPTPTPTPTPGEGPPCPTIRCTSILVTGDMLVHTQLWQQATADAAAAGKPGLDFVPLLEGQRRYIQASDLAICHQETPVAGPEGPFSAYPSFNVPPQIITAAKAVGYQACTTASNHTIDRGTDGLLRTLDALDAAGLKHTGSYRTEAESQGILIMQTQAAKIAIIEATYGLNGQYPDYAWQVDMLDAPTMIAKAQKARAMGADIVLGAMHAGDEYASEANAQQQEVAHALVDSGQFTMIYGHHTHSVLPIENYKGTWIVYGLGNGVTELSPWYVVNNEGLLVRAQFSQDESGKWSPADLAWVPSVIVRDPYRWCPVASDAPQGTCASPEADAATRQRTATVVNSMGAAAAGAHELLITQERNANANANANA
D1-29_027652013dcpCOG0339Dipeptidyl carboxypeptidaseATGACAAATCCCCTCCTGAGCTCAAGCACGCTGCCCTACGGGCTGCCGCCGTTCGCCGACATCCACTCCGGGCATTATGCCGAAGCCGTCGACGCCGGCCTGGCGGAACATCTCGAAGAGATCCGGGCCATCGTGGAGAACCCGGAGCCGGCGACCTTCCGGAACACCGCCGAGGCCATGGAGCGCGCCGGACAGCTCCTCAACCGGGCGTCTGCCTCCTTTTTCACGCTTGTGTCAGCAGATGCATCCGACGAAATACGCCATCTTGAAACCGAACTGTCCCCACGCTTCTCGGCGCACCAGGACGAAGTGTTCCTCAACCGCCGGCTCTTTGACCGGTTCGCCGCGATTGACATGACGGACTGCGATCCCGAGTCCACCCGGCTGGTGGAGGATTACCTCAAGGAATTCCGGCAGTCCGGCATCCAACTGGACGGCCCGGCCCAGGAGCGGCTGAAAGCGGTGAACGCGGAGCTGTCACGCCTGGGCACCGAATTCGGCCAGCGCGTGAAGGAGGGGATGAAATCCGCGGCGCTGCTGCTGGACAGTGAAGCCGAGCTGGTCGGCCTGCCGGCTGACGATATCGCCACGGCGGCGGAAGCTGCCCGCGCCGCCGGCCATCCAGGGAAGTTCCTGCTCACACTGATCCAGCCAACTAACCAGCCGGCCATTGCCGCGCTTGAGAACCGGGACATCCGCCGTCGGCTGTTTGAGGCCTCCGTCAGCAGGGGAAGCGATGGCGGGAGCTTTGATGTCCTGGAACTGGTCAGGTCACTGGCGGAACTCCGTGCCGAAAAGGCTGCCCTGCTCGGGTTTGCCAACTACGCGGAACTGGAAGTGGACCGGCAGACCGCTCCCGACTTTGAAGCGGTACAGGCCATGCTGAACAGGCTGGCACCGGCAGCAGTGAGGAATGCCGACGCCGAAGCGGCGGCCCTTGCGGAGATCGCGGGCCATCCGTTGGAGCCGTGGGACTGGGCTTTCTACTCCGCCAGGGTCCGCCGGGAGAAATATGCTGTCGATGAGCAGGCCCTCCGCCCCTATTTTGAGCTGGACCGGGTGCTCCGGGATGGCGTGTTCCATGCGGCTACGTCGCTTTATGGGATCACGTTCCACGAACGGAAGGATCTTGCAGGCTACCACCCCGACGTCCGCGTCTGGGAGGTCCGGAACGGGGACGGCAGCGGGCTGGGGCTGTTCCTGGGTGACTACTACACCCGGGAGTCCAAGCGGGGCGGGGCGTGGATGAATTCGCTGGTTGAACAGTCCGGCCTGCTGGGCACCCAGGCTGTGGTCATCAACAACCTGAACATTTCCAAGCCGCCGGCCGGAGAACCCACGCTGCTGACGCTGGATGAGCTGCGCACCATCTTCCACGAGTTCGGCCATGCGCTGCACGGCCTGTTCTCCGACGTAACGTATCCGCGCTTCTCCGGGACTTCAGTCCCCCGCGACTTCGTGGAGTACCCTTCGCAGGTCAACGAGATGTGGATCCTCTGGCCTGACGTGCTGGCCAGCTATGCCCGGCACCACGCCACGGGCGAACGCCTGCCGCAGGACATCGTGGACAGGCTCAACGAGTCCCGGCTCTGGGGCGAAGGGTTCGCCACCACCGAATACCTGGGCGCAGCACTGTTGGATCTTGCATGGCACGTGCTGGACAGCAACGGGATCCCGGAGGACGTCCTGGCGTTCGAAGCCAAATCGCTGGCTGCAGCCGGAGTGGCCCACGCCCTGATCCCGCCACGGTACCGGTCGGGCTACTTCCAGCACATCTTCGCCGGGGCTGGCTACGCTGCAGGCTACTACTCCTATATCTGGAGCGAAGTCCTGGATGCGGAAACGGTCGATTGGTTCACGGAGAACGGCGGCCTGACACGGGCAAACGGAGAGCGGTTCCGCCAGGAGCTGCTCTCCCGCGGCAACAGCCGGGATCCACTGGAATCTTTCCGCGCCCTCCGGGGCCGCGAAGCCAACCTGGAACCCCTGCTAAGGCGCCGCGGCCTGGAGTAGMTNPLLSSSTLPYGLPPFADIHSGHYAEAVDAGLAEHLEEIRAIVENPEPATFRNTAEAMERAGQLLNRASASFFTLVSADASDEIRHLETELSPRFSAHQDEVFLNRRLFDRFAAIDMTDCDPESTRLVEDYLKEFRQSGIQLDGPAQERLKAVNAELSRLGTEFGQRVKEGMKSAALLLDSEAELVGLPADDIATAAEAARAAGHPGKFLLTLIQPTNQPAIAALENRDIRRRLFEASVSRGSDGGSFDVLELVRSLAELRAEKAALLGFANYAELEVDRQTAPDFEAVQAMLNRLAPAAVRNADAEAAALAEIAGHPLEPWDWAFYSARVRREKYAVDEQALRPYFELDRVLRDGVFHAATSLYGITFHERKDLAGYHPDVRVWEVRNGDGSGLGLFLGDYYTRESKRGGAWMNSLVEQSGLLGTQAVVINNLNISKPPAGEPTLLTLDELRTIFHEFGHALHGLFSDVTYPRFSGTSVPRDFVEYPSQVNEMWILWPDVLASYARHHATGERLPQDIVDRLNESRLWGEGFATTEYLGAALLDLAWHVLDSNGIPEDVLAFEAKSLAAAGVAHALIPPRYRSGYFQHIFAGAGYAAGYYSYIWSEVLDAETVDWFTENGGLTRANGERFRQELLSRGNSRDPLESFRALRGREANLEPLLRRRGLENANANANANA
D1-29_02766978pdxSCOG0214Pyridoxal 5'-phosphate synthase subunit PdxSATGCCGCTTTCACGCCCGGCGAAGGTCATCTATCTACCCATAGGGGTTTTTGTGTCTACACCTGATGTAAGCAGCGAAGCCGGTTCGTCCGTGAACAGCGTCACGGGCAGCAAGCGCGTCAAGCGCGGCATGGCTGAGATGCTCAAGGGCGGCGTCATCATGGACGTCGTCAACGTCGAGCAGGCCCGCATCGCCGAAGACGCCGGTGCCGTTGCAGTGATGGCGCTGGAACGCGTGCCGGCTGATATCCGCGCCCAGGGCGGCGTTTCCCGGATGTCGGATCCGGACATGATCGACAAGATCATCGAGGCCGTGTCCGTGCCGGTCATGGCCAAGGCCCGGATCGGCCACTTTGTTGAGGCCCAGATCCTGCAGTCCCTGGGCGTTGACTACATTGACGAGTCCGAGGTCCTCACCCCGGCCGACTACGCCAACCACATCGACAAGTGGGAATTCACCGTTCCCTTCGTCTGTGGTGCCACCAACCTTGGTGAGGCGCTGCGCCGGATCAACGAGGGCGCGGCGATGATCCGGTCCAAGGGCGAGGCCGGCACCGGCGATGTTTCCAACGCCACCACGCACATGCGCCAGATCCGTGCCGAGCTCCGCCGGCTCTCCTCGCTGCCCGAGGACGAGCTGTACGTTGCCGCGAAGGAACTGCAGGCGCCGTACGAATTGGTCAAGGAAGTGGCGCTCACGGGCAAGCTTCCGGTGGTGCTGTTCACCGCCGGCGGCATCGCCACCCCGGCAGATGCTGCGATGATGATGCAGCTCGGCGCCGACGGCGTGTTCGTCGGCTCGGGCATCTTCAAGTCCGGCAACCCGGCCCAACGCGCCGCCGCCGTGGTCAAGGCCACCACGTTCTTCGATGACCCGGACGTCATCGCCAAGGCCTCCCGCGGCCTGGGCGAGGCCATGGTGGGCATCAATGTTGACGAGATCCCGCAGCCACACCGCCTGGCCGAGCGCGGCTGGTAAMPLSRPAKVIYLPIGVFVSTPDVSSEAGSSVNSVTGSKRVKRGMAEMLKGGVIMDVVNVEQARIAEDAGAVAVMALERVPADIRAQGGVSRMSDPDMIDKIIEAVSVPVMAKARIGHFVEAQILQSLGVDYIDESEVLTPADYANHIDKWEFTVPFVCGATNLGEALRRINEGAAMIRSKGEAGTGDVSNATTHMRQIRAELRRLSSLPEDELYVAAKELQAPYELVKEVALTGKLPVVLFTAGGIATPADAAMMMQLGADGVFVGSGIFKSGNPAQRAAAVVKATTFFDDPDVIAKASRGLGEAMVGINVDEIPQPHRLAERGWPGPT0009180_166DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009180-pdxS|pdx1|yaaD-K06215NANA
D1-29_02767624pgsA2_2COG0558Phosphatidylinositol phosphate synthaseATGCTGAATAGGCACGCGCGGGGTTTTTTTACGGCGCTGTTCACTCCGCTTGCCCGCTGGCTGCTGAAAATCGGCGTCTCTGCTGATGCCGTCACGGTGGTTGGAACGGCCGGCGTGGTGGTTGGCGCCCTGGTCTTTTACCCTCTGGGCCAGCTGTGGTGGGGGACCCTGTTCATTACCGCCTTCGTCTTTTCCGATGTGCTGGACGGCATCATGGCAAGGATGCGCGACTCCGGGGGCCGATGGGGCAACTTCCTGGACTCCACGCTGGACAGGATCGCCGACGGTGCCCTGTTTGCCGGCCTGTCCATCTGGTTCTTTACCGGTGGCGCCGATTTCGCCATTGGCGCCGCGGCCGTGATCTGCCTGGTCCTTGGCATGGTGGTTTCCTACGCCAGGGCCAAGGCAGAATCGCTGGGGTTCACGGCCAACGTGGGTATTGCCGAACGGGCTGAAAGGCTCGTCTCGGTGCTGGTTGTTACAGGGTTTACGGGCCTCGGCCTGCCAAGTGTCGTGCTGCTGGTGACACTGGGCCTGCTGGCCGTGGCCAGCCTGGTCACCGTGGTGCAGCGGATAGTGGGAGTTCACCGCCAGGCCCTGGCCGAGAGTGCCCCCTCGGATTAAMLNRHARGFFTALFTPLARWLLKIGVSADAVTVVGTAGVVVGALVFYPLGQLWWGTLFITAFVFSDVLDGIMARMRDSGGRWGNFLDSTLDRIADGALFAGLSIWFFTGGADFAIGAAAVICLVLGMVVSYARAKAESLGFTANVGIAERAERLVSVLVVTGFTGLGLPSVVLLVTLGLLAVASLVTVVQRIVGVHRQALAESAPSDPGPT0007705_1874DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
D1-29_02768588COG0537AP-4-A phosphorylaseGTGCAGGAGAATACAGGGGCGGGGTATCCAGGGGATTCCGGCGTCACCGACGATTTTGATCTCGCCGGCGTTCCGGATGCTTTCCAGCGCCTGTGGACTCCGCACCGGATGGCCTACATCAAGGGCGGCCAGCACCAGTTCAAGGACCAGAACGACTGCCCGTTCTGCGTAGGGCCGAGCCGGACCGACGAGGAAGCCCTCATCGTTTACCGGGGGAAAACCTGCTATGTGGTACTGAACCTCTTCCCCTACAATCCCGGCCACCTGCTGGTTTGCCCCTACCGCCACGTTCCCGACTACACGGACCTTACGCTCGAAGAGACCGGGGAATTCGCCGAGCTGACCCAGACGGCCATGAAGGTCCTGCGCAAAGTGGCGAACCCCGGCGGCTTCAATATCGGCATCAACCAGGGTGTTGTGGGCGGGGCAGGAATCGCCGCCCACCTTCACCAGCACATCGTTCCGCGGTGGGGCGGGGACGGCAACTTTTTCCCCATCATCGCCCAGACCAAGGCCATCACGCAGACGCTGGATGAGGTCCGCCAGCAGGTTGCCCAGGCCTGGCCCGGGGAGACGGATGCTGAATAGMQENTGAGYPGDSGVTDDFDLAGVPDAFQRLWTPHRMAYIKGGQHQFKDQNDCPFCVGPSRTDEEALIVYRGKTCYVVLNLFPYNPGHLLVCPYRHVPDYTDLTLEETGEFAELTQTAMKVLRKVANPGGFNIGINQGVVGGAGIAAHLHQHIVPRWGGDGNFFPIIAQTKAITQTLDEVRQQVAQAWPGETDAEPGPT0021690_184DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021690-hit-K19710NANA
D1-29_027692010thrSCOG0441Threonine--tRNA ligaseGTGTCAGATGCCCAGCAGATCACCCTCATCGTCGATGGCGAAGAGACCAAGGTGACTACCGGGACAACCGGGGCGGAACTCTTCTTTGAGCGTCGCGACGTCGTTGTAGCCCGTGTCAACGGCGAGTTGAAAGACCTGGACCAGGAACTGCCCGAAGGTGCAGACATCCAGGCCGTCACCATTGGTTCCCCCGACGGACTAAACGTGCTCCGCCACTCCACGGCCCACGTCATGGCCCAGGCTGTCCAGCAGCTGCGCCCGGATGCCAAGCTGGGCATCGGGCCCTACATCACTGACGGTTTCTACTTCGACTTTGACGTGGCCGAGCCGTTCACGCCGGAGGACCTGAAAACCCTCGAAAAGATGATGCTCAAGATCGTCAACCAGAACCAGAAATTCGTCCGCCGCGTGGTCAGCGAGGACGAGGCCCGTGAGGCCATGAAGAACGAACCTTACAAGCTGGAACTGCTGGGCAAAAAGAACGAGGCCGCTGAAGCGGGCGAAGGCGTCAACGTTGAAGTCGGCGCCGGGGACATTACCATCTACGACAACGTGGACCGGAAAAGCGGTGACAGCGTCTGGTGCGACCTCTGCCGGGGCCCGCACCTGCCCAACACCAAACTTATTTCCAACGCGTTCGCACTGACCCGTTCCTCCTCCGCCTACTGGCTGGGCAACCAGAAAAACCAGCAGCTGCAGCGGATCTACGGCACCGCCTGGCCCACCAAGGACGAGCTGAAGGCCTACCAGGAACGGATTGCCGAAGCGGAACGGCGCGATCACCGCAAGCTAGGCGTGGAGCTGGATCTGTTCTCGTTCCCGGATGAACTTGGTTCCGGCCTGCCTGTCTTCCACCCCAAGGGCGGCATCATCCGCAAGGAGATGGAGGACTACTCGCGGCAGCGCCACGTGGACGCCGGCTACGAGTTCGTCTACACGCCGCACATCACCAAGGGCCACCTGTACGAGGTATCGGGCCACCTCGACTGGTACAAGGACGGCATGTTCCCGCCCATGCGGGTGGATGAGGAACTCAACGCTGACGGAACCGTCCGCAAGCCGGCTCAGGACTACTACCTGAAGCCGATGAACTGCCCCATGCACAACCTGATCTTCCGCTCGCGTGGCCGTTCCTACCGTGAACTTCCCCTGCGGCTCTTCGAATTTGGCTCCGTCTACCGGTACGAAAAGTCCGGTGTGGTCCACGGACTCACGCGTGTGCGGGGCATGACCCAGGACGACGCCCACATCTACTGCACCCGCGAGCAGATGAAGGACGAGCTCACCAAGACCCTGAACTTTGTGCTGGGCCTGCTCCAGGACTACGGCCTGAACGACTTCTACCTCGAGCTGTCCACCAAGGACCCCGAAAAGTATGTGGGTGACGACGCCGCCTGGGAAGAAGCGACGAACACCCTCGCCGAAGTCGCGCAGGAATCAGGCCTTGAACTGGTGCCGGATCCGGGCGGAGCTGCCTTCTACGGCCCGAAAATCTCAGTGCAGGCGAAGGACGCCCTGGGCCGCACCTGGCAGATGTCCACTATCCAGCTGGACTTCAACCTCCCGGAACGGTTCGAACTGGAATTCCAGGCGGCCGACGGCACCCGCCAGCGCCCCGTGATGATCCACCGGGCCCTTTTCGGCTCGATCGAACGCTTCATGGGTGTCCTCACCGAGCACTACGCCGGAGCGTTCCCCGCCTGGCTTGCTCCCGTGCAGGTAGTGGGCATCCCGGTGGCCGAGACCTTCAATGACTACATGTTCGACGTCGTCGATCAGCTTAAGGCGGCGGGCATCCGCGCCGAGGTGGACATCTCCTCGGACAGGTTCCCCAAGAAGATCCGCACGGCAAGCAAGGACAAGATCCCGTTTGTCCTGATCGCCGGTGGTGACGACGCCGACGCCGGAGCGGTGTCCTTCCGTTTCCGCGACGGTAGCCAGGACAACGGCGTGCCGGTGGCCGAAGCGGTCAAGCGGATCACAGAAGCCGTCCGTAACCGGACCAGCTAGMSDAQQITLIVDGEETKVTTGTTGAELFFERRDVVVARVNGELKDLDQELPEGADIQAVTIGSPDGLNVLRHSTAHVMAQAVQQLRPDAKLGIGPYITDGFYFDFDVAEPFTPEDLKTLEKMMLKIVNQNQKFVRRVVSEDEAREAMKNEPYKLELLGKKNEAAEAGEGVNVEVGAGDITIYDNVDRKSGDSVWCDLCRGPHLPNTKLISNAFALTRSSSAYWLGNQKNQQLQRIYGTAWPTKDELKAYQERIAEAERRDHRKLGVELDLFSFPDELGSGLPVFHPKGGIIRKEMEDYSRQRHVDAGYEFVYTPHITKGHLYEVSGHLDWYKDGMFPPMRVDEELNADGTVRKPAQDYYLKPMNCPMHNLIFRSRGRSYRELPLRLFEFGSVYRYEKSGVVHGLTRVRGMTQDDAHIYCTREQMKDELTKTLNFVLGLLQDYGLNDFYLELSTKDPEKYVGDDAAWEEATNTLAEVAQESGLELVPDPGGAAFYGPKISVQAKDALGRTWQMSTIQLDFNLPERFELEFQAADGTRQRPVMIHRALFGSIERFMGVLTEHYAGAFPAWLAPVQVVGIPVAETFNDYMFDVVDQLKAAGIRAEVDISSDRFPKKIRTASKDKIPFVLIAGGDDADAGAVSFRFRDGSQDNGVPVAEAVKRITEAVRNRTSNANANANANA
D1-29_027703489dnaECOG0587DNA polymerase III subunit alphaATGACTTTCACGCACCTCCACGTTTCCACCGCCTTTAGCGCCCACTACGGCGTTTCCTGGCCTGATGAACTTGCCCAGGTTGCCGCCGCAGATGGTGCCACTGCGCTCGCCTGTACTGACAGGGACGGCCTGTATGGCACCATCAAACACCTCAAAGCCTGCATGGCTGCCGGGATAGACCCCATAGTGGGTGTTGACCTTGCGGTCCTTGACGACGACGGCGACCACCGCACCCAGGTTGCTGGCCGGGTGGTGGTGCTGGCCCGCGGAAACAACCGGGGAGCGGGCTACCGGGCCTTGTGCCGGCTGGTCTCGGATGCCCATGCCCGCACTTCCGGAAAGGCCGGGGGAGTGGTGCCTGTGGCAGTCACCCGGGCAGAGCTCGCATCCCGGACCTTGGACCCACTGACCCTCAAGCCAGTACTCACGGTCCTGATCGGACCCGATTCCGACGTCGGACTGGCCATCGGCGGACGGCGTTACCTGCGTCCGCGCACCCTGTTTAAACGCTGGCTGGAAGCCATGCCGGCAGGAACAATAGTGGCCGAGGTTGTCTCCCAGCTCAGCGCCCCCGGCTCACCGTTGAGCACCGCCCATGCAGTACGAATGCTCAAACTCGCAGAGGAGCACCACGTTCCGGCGGTTATCACCAACGCTGTGCGCTACTGCGCCGAGGATGGCGCCGCCACGGCTGACGTGCTGGATTCTGCTCGGACCCTAAAGTCTCTTCCTGAGCTTGCCGCCGAACCCCTGCTCCAGCCCAACGGCCAGGGCTGGCTGAAAACGTCAGGGCAGATGCTCCTGTTGGCCAGGGAGATCATCCACGCCGCAGGGTACGGCGCTGCTGACCTCAAACAGCTGATGACGCAGACCGAGGCGCTCGCCGATCTGTGCCGGATTGACCCGGTGACGGATATGGGCTGGAAGCAGCCGGTGGTGCCCGAAACATCAATCATCGGCATAGACCAGGACCCCCAGGTTGAACTTGTCCAGCGGTGTGAGGCCGGGATCGGCAGGCGGTTCCCGGGAATTTCCGGTACTGCCGAACAGGAGATGCGCCGTCGCCTCGACCACGAACTGGGAATCATCCAGAACCTTGGTTTCTCCTCTTACTTCCTCACAGTGGCTGAGGTTTCCAGGATGATCCTGGACATGGGAGTCAGGGCTGCGGCCCGCGGGTCTGGCGCTTCAAGCCTGGTCAATTACCTGATTGATATCAGCCAGGTGAACCCCCTCCAGCACGACCTCGTCTTTGAACGGTTCCTGTCCCGTGACAGGGGTACCCTTCCTGACATCGATATCGACGTCGAAAGCGCTGAGCGGCACAACGTCTACCGGAAGATCTTTGAACGCTTTGGCTCGGAGCGCGTCACGCTCATGAGCATGCAGAACGGATACCGTGCCCGCGGTGCGGTCCGTGATGCGGGGATGGCGCTGGGCATGGACGATGGCGATGTGGGGGAGATCGCCAAACAGCTGTGGCGCTTTTCTGCCCGGAAGTTCCGCGAGGCGCTCGCCGAAAAGCCGGAACTCCGGGAGTTCGCAGGGCGGGTGGAACAACGGGGATTTGCCGAAAACCAGCAACTGGACCTGCTCGTGGACCTCACTGAGCGGCTGGACCGGCTGCCCCGCCATATTTCCATGCACCCCTGCGGAGTGATCCTGGGCGACGCCACCCTGCTTGACCGGACCCCTGTCCAGCCCAGCGGGCTGGGGCTGCCCATGAGCCAGTTCGACAAACACGACATGGATCCCATGGGCATGCTCAAGCTCGACGTCCTGGGGGTCAGGATGCAGAGTGCCATGGCCTTTGCGGTCAGGGAAGTCATCCGAATCCACCCCTCCAAGGCAGAGGTGGTCGCCGCCGGAGCCCACCCCTCCGGTCCTGATGGTTCCGGGCCTGATTACATTGCCGAGAATGGCCACATCAACCTCAACGCCGTGCCGCTTGATGATGAGCCAACGTATGAGCTGATCCGCAGCACGCACACGCTGGGCTGTTTCCAGATCGAATCCCCTGGCCAGCGTGAGCTGGTGGGCAAGATGGCGCCGCGCGACTTCAACGACCTCATCATCGATATTTCACTTTTCCGGCCCGGACCCATGAAGTCGGACATGGTGCGGCCGTTCCTGGAGCACCGGCACGGGTTCGCGCCGGAAGTCTATCCGCACCCTGACCTGAAACCCGTGCTTCAGGAAACGCACGGCGTCACCGTATTCCACGAACAGATCCTGAAGACCTTCGATGTCATGACGGGCTGCGGCCTGGCCCGGGCCGACGAATTCCGCCGCGCACTTGGCAACGAGGCCCTTGAGCCTCAAGTGGAGGAATTCTTCCGCCGGGAAGCCCGCGCCAGCGGGTATGCCCCGGAGGTCGTGGACAAAGTCTGGGGAACCCTGAAATCCTTTGGAAGTTTCGGTTTCTGCAAGGCTCACGGAGCGGCGTTCGCCGTGCCCACTTACCAGTCTGCCTGGCTAAAGGCCCACCACCCCGAGGCGTTCCTGGCCGGATTGTGGGAGCACGATCCTGGCATGTACCCCAAACGCCTCCTGGTGGCAGAGGCCCGCAGGCTGGGCATCCCCATTCTGCCGTTGGACATCAACCGCAGCCAGGCGGAATACAGGGTGGAACGGGTCACCGAGGGGCCGGACCGGGGCAAGCTGGGGATCAGGCTGAGCCTGAAAGGGATTTACGGCGTATCCGGGGCTGAACTCAAACGGATCGTTGCCGGCCAGCCCTATGATTCCCTGGCGGACCTCAGGACACGGTCCCGGCTTAGCAAACCAAGCATCAGGAGGCTCGCCCAGCTTGGGGCCTTTGATTCCCTGCACCTGGAGTCCGGTGGGAGCGCCAACCGCGCGGACCTGGTCCACCACCTCCAAAAGCTTCAATCCACTGGTGCTGCCCGGAAGGGTATCGAGGTCATCGAGGGGCAGTTGGCCCTGCCGCTGGGCGACGTGGAACTGCGGAACGTCAAACCGGGCTTGCCCGCGCCCACGCTGGTGGACAACGTACGCGCGGAACTTGATCTGATGGCTATAGATGTCAGCGGGCACCTGATGGACAGCCACCGTCCCATGCTTGACCGGCTCGGCGTCACCACCGCGGATAAACTGCTGGGCCTGCGCAATGGAACTGAAGTGCTGGTGGCCGGAGTACGCATCGCCACCCAGACACCCCCCATGCGCGGCGGCCGGCGCGTGGTTTTCATCAGTATCGACGACGGCACGGGTTGCGTTGACTCCGTCTTCTTCCATGAGGCGCAGGAACAGGCCGGACTGCTGCTGTTCGGGACCAGGCTGCTCCTCATCCGGGGAACCACCCGGCGGACTGGTCCGCGGGGAATCAGCCTGAGTGCCAGCATGGCCTGGGACCTGAGCAGGGTTGAAACCCTGCCCTTCCCGCAGTCCAGCCCGGAGACCACCGACGTCCCGCATCCGTTGGACGGAATCAACAGGAGCCTTGCCATTACGGGGATGGGCGGCTGAMTFTHLHVSTAFSAHYGVSWPDELAQVAAADGATALACTDRDGLYGTIKHLKACMAAGIDPIVGVDLAVLDDDGDHRTQVAGRVVVLARGNNRGAGYRALCRLVSDAHARTSGKAGGVVPVAVTRAELASRTLDPLTLKPVLTVLIGPDSDVGLAIGGRRYLRPRTLFKRWLEAMPAGTIVAEVVSQLSAPGSPLSTAHAVRMLKLAEEHHVPAVITNAVRYCAEDGAATADVLDSARTLKSLPELAAEPLLQPNGQGWLKTSGQMLLLAREIIHAAGYGAADLKQLMTQTEALADLCRIDPVTDMGWKQPVVPETSIIGIDQDPQVELVQRCEAGIGRRFPGISGTAEQEMRRRLDHELGIIQNLGFSSYFLTVAEVSRMILDMGVRAAARGSGASSLVNYLIDISQVNPLQHDLVFERFLSRDRGTLPDIDIDVESAERHNVYRKIFERFGSERVTLMSMQNGYRARGAVRDAGMALGMDDGDVGEIAKQLWRFSARKFREALAEKPELREFAGRVEQRGFAENQQLDLLVDLTERLDRLPRHISMHPCGVILGDATLLDRTPVQPSGLGLPMSQFDKHDMDPMGMLKLDVLGVRMQSAMAFAVREVIRIHPSKAEVVAAGAHPSGPDGSGPDYIAENGHINLNAVPLDDEPTYELIRSTHTLGCFQIESPGQRELVGKMAPRDFNDLIIDISLFRPGPMKSDMVRPFLEHRHGFAPEVYPHPDLKPVLQETHGVTVFHEQILKTFDVMTGCGLARADEFRRALGNEALEPQVEEFFRREARASGYAPEVVDKVWGTLKSFGSFGFCKAHGAAFAVPTYQSAWLKAHHPEAFLAGLWEHDPGMYPKRLLVAEARRLGIPILPLDINRSQAEYRVERVTEGPDRGKLGIRLSLKGIYGVSGAELKRIVAGQPYDSLADLRTRSRLSKPSIRRLAQLGAFDSLHLESGGSANRADLVHHLQKLQSTGAARKGIEVIEGQLALPLGDVELRNVKPGLPAPTLVDNVRAELDLMAIDVSGHLMDSHRPMLDRLGVTTADKLLGLRNGTEVLVAGVRIATQTPPMRGGRRVVFISIDDGTGCVDSVFFHEAQEQAGLLLFGTRLLLIRGTTRRTGPRGISLSASMAWDLSRVETLPFPQSSPETTDVPHPLDGINRSLAITGMGGNANANANANA
D1-29_02771342hypothetical proteinATGGGCATGTTCAGCGAATCCGTTGACGTTACCTGCACCCCTTCCGGCCAGCCGCTGCAGCTTCAATGGGCAGGGCGCCAATATACGGTGTGCGCGGAACCTGTTCGATGGTACGAACGCAGGCAGTGGTGGGCCGAGGAAAAGCGTGCGCCGCTGGGAAGCGGGCCAGGCCTGGTGGACCATGAAATTTGGCGGGTCCAGGTTCTGGCTGCAGACAACCCAGATGCTTCGGGCGGCAGCCCTCCCGGTGAGCCCCTCACCCTTGATCTGACCAGGCACGTCGGCAGCGGCCGCTGGAGGCTGCTGCGAATCCATCACGGAATCCAGCCCAGAACAGCATGAMGMFSESVDVTCTPSGQPLQLQWAGRQYTVCAEPVRWYERRQWWAEEKRAPLGSGPGLVDHEIWRVQVLAADNPDASGGSPPGEPLTLDLTRHVGSGRWRLLRIHHGIQPRTANANANANANA
D1-29_02772390hypothetical proteinATGACCACCAATGACGCACTCCTCAAGCACGTAAGCATCAAGGCCCAAGACTCCACGCTTGTGGCCACTTTTGATATAGACGGCAATATCCCGGGATCGGGTGCTTATGTGGTGGGGCTCATGGCGGCCGATCCCGACTATTCATCACAAAGACGGCTCGGCATTGAGTTCATGAACGGGGAGGCTATTGCCTGCTACTCGTTCAGCCATGACCAGGGCATCGAAGAGAACTATGATCTCAGTGGTGTCACCCACTCCGGCAACACCATCACCGGCAGCTTTCCCTTGGACGTTATCCATGGGCTGGGCAAGGGCCACATTATGTCAGCCTTCAGCGAGGCCGACGGGCGGGAGTTCCAGTCCGGAGTCCCCGTTGAGGAAGCGATCTAGMTTNDALLKHVSIKAQDSTLVATFDIDGNIPGSGAYVVGLMAADPDYSSQRRLGIEFMNGEAIACYSFSHDQGIEENYDLSGVTHSGNTITGSFPLDVIHGLGKGHIMSAFSEADGREFQSGVPVEEAINANANANANA
D1-29_02773288hypothetical proteinTTGGCCGACAAGGAACAGCTTGCGGCAGTCCGCATTGCAGTCGATGAAGTGGACGAGCAGATCGTGGGCCTGATTGCCCGTCGGGAACGCCTGATCCGGATCGCGGGAACGCTGAAGGGGGACGACGCTGAAGTGCGCGCTCCCGGCCGCGTCGAGAGGATCATCGAACACGTCCGTTTAGCCGCGGAAAAGAAGGACATCGATCCTGACATTGTGGAATCGACGTACCGTGCCATGATCACGGGCTTCATCGAACTCGAAATGAAGGTCCACAAAGGAAACAGCTGAMADKEQLAAVRIAVDEVDEQIVGLIARRERLIRIAGTLKGDDAEVRAPGRVERIIEHVRLAAEKKDIDPDIVESTYRAMITGFIELEMKVHKGNSPGPT0003065_151DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-SALICYLIC_ACID_METABOLISMSAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003065-pchB|pmsB-K04782NANA
D1-29_02774423hypothetical proteinATGCAGCCAAGAGTCGACTTCATCTCACTGGGCGTTCGCAGCGTCGCAGAGTCCCGCCGCTTTTATGTGGAGGGACTTGGCTGGCCGGTCCGTAAGGAAATTCCAGGTGACGTGCTGTTTATCCAGGTTAACCATGGGCTGACGCTGTCCCTTTGGGATGCCGGGCAAATGCAGGCGGAGGCCGGGGTGAGTCCTCCGGGGCCGGTCCCCCACATCACCCTCAGCCACAATCTGGCCAGCCCTGAGGACGTGGACCGGGTCATGGGCGAGGCAGCCGCTGCCGGTGCCGTGATCGTTGCGGAGCCAGTCACGCAGCCCTGGGGCGGGTACAGCGGCTATTTCGCGGATCCGGACGGGTTTCGCTGGGAGGTTGCGTACAACCCCACTTGGTCAGTGGACGACGCCGGCAGCGTCACCATCTAGMQPRVDFISLGVRSVAESRRFYVEGLGWPVRKEIPGDVLFIQVNHGLTLSLWDAGQMQAEAGVSPPGPVPHITLSHNLASPEDVDRVMGEAAAAGAVIVAEPVTQPWGGYSGYFADPDGFRWEVAYNPTWSVDDAGSVTIPGPT0028555_840DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-FOSFOMYCIN_RESISTANCE,PGPT0028555-putative_fosB-K07032NANA
D1-29_02775732yedK_2COG2135SOS response-associated protein YedKATGGCACGTGCGGTGGGTGACCTGCTGGCAGAGTTTGAAGCCGGGCTTGAGGAAGAGGTGCACCTTCCGCCCTCCTGGAACGTGGCGCCAACCGATGATGTGCCCATCGTCCTGGAGCGGCTTATCGACGGCGGCCCGGTGCGGCAGCTGCATGTGGCACGCTGGGGGCTGGTTCCGTCGTGGGCGAAGGATCCCGGCATCGGAGCCAGGATGATCAATGCCCGGAGCGAGACGGTGCTGGAAAAGCCGGCATTCCGCAAAGCGATGAAGTCCAGGCGCTGCGCCGTTCCTGCTGACGGCTATTACGAATGGAAGCAGGGCGCAGGCAAGGCGAAGCAACCGTATTACGTGCACCCCGGAAACAGCGCGGGACTGGTGTTTGCCGGGCTGTACGAATGGTGGAAGGATCCGTATAAGGCGGAAGGGGAGCCCGGCCAGTGGATGCTCTCTACCTCCATCCTGACCGCGGACACTCCGCCGCCCGGGGCCGAGTCAACAGTATTTGGCAAGCTCACCGCCCTGCATGACCGGGTGCCGCTGCCGATGGATAAGGCCACCATGGAGTCCTGGCTCGACCCGCACGCCCAGGACCCCGCTGGCCTGGTGGACCTGGTCCGCGCCGGGGTGAAGGGCGTCGCTGCCGACTGGCACGTGGAGTCGGTGGGCCGGGACGTGGGAAACGTGCGCAACAACTCACCGGAGCTCATCCAGCCCGTGGAGGCATTGTTTTAGMARAVGDLLAEFEAGLEEEVHLPPSWNVAPTDDVPIVLERLIDGGPVRQLHVARWGLVPSWAKDPGIGARMINARSETVLEKPAFRKAMKSRRCAVPADGYYEWKQGAGKAKQPYYVHPGNSAGLVFAGLYEWWKDPYKAEGEPGQWMLSTSILTADTPPPGAESTVFGKLTALHDRVPLPMDKATMESWLDPHAQDPAGLVDLVRAGVKGVAADWHVESVGRDVGNVRNNSPELIQPVEALFNANANANANA
D1-29_02776258COG0695Putative glutaredoxin.1GTGGACTTCACCCCCGAATCCGGCACCATCACCATGTTTTCCACCACCTGGTGCGGCTACTGCAACCGGCTCAAGAAGCAGCTGGACGCGCAGGGCATCGGCTACACGGAAATTAACATCGAGGAAGTCGATGGGACAGCCGAACTCGTGGAGCAGATCAACGGCGGCAACCGCACCGTACCCACCGTGCTTTTCCCGGACGGCACAGCAGCCACCAACCCGTCTGCTGCCGAAGTCAAAAGCCGTCTCGCCGCATAGMDFTPESGTITMFSTTWCGYCNRLKKQLDAQGIGYTEINIEEVDGTAELVEQINGGNRTVPTVLFPDGTAATNPSAAEVKSRLAANANANANANA
D1-29_027772034hypothetical proteinATGATCGCGGACCGCATCAAGATTCCGGCGCCATACGCGCCGGCAGTGAACGAAACGACGAACACGATCTTCGTCACTAGCGAACAGTTCAACACTGTGACTGCAGTAGACATGGCCACAAAGTCAGTAAAGATAATTCCGGTCGGAACAAGGCCACGACACCTGGCAGTGAACGAGGTCACGAATAAGGTCTACGTTGCGAATTCCGGTTCTTCCTCATTGAGCGTCATCGACGCTGTCACCGGTACTACCAAGACGGTGCCCCTGCCTGGCAACCCTTCTGCCGTAGCTGTGAACGAAGTAACCAACAAGGTGTACGTCTCAAATGGCGGCCCTAACGGCCTTACTGTCATTGACGGCGCCACCGATGTCGCGACATCCTTCCCAGTGGCGGGCTCCTCTGTAGCCCTCAGCGACAAGCCTGTCGCCGTCAATGAGAAGACCAACAAAATCTACAGCGTCACACCTCTCAGCAATCAGGTGACGGTCCTGGACGGGGCTACAAACGCCATTACCACCGTCCCGGTTTGCTCGGGCACTCATGGTTTGGCAATCAACGACACCACCAACACGGTGTATGTGACCTGCGCTAAAGCGCAGACGATCGTAGCCATTGATGGCGCTACCCGGTCGACAACAAGCATCCCAACAGGCGGTGACACCAGTCCCAGGGAAGTGGTTGTAAATCGCACGAACAACAAGGTCTATGCCCTGAACAATTTCAGCATGACCATTCTGGACGCCAGCTTGAACACTTTGGTAACGGTTCCAACTGGTAATTTCCCACCCGCCCTCGCCGTAAACGAGACCACCGGCAAGGTCTACGTAGCTGAATACTACGCCGGGAGCATTAGGGTCTTCGACGGTGCAACCAACGCCTCGGGTGTCCTCCAGGAGCTCAGCATGCCCGGTCGAATGGCAGTGGATTCGAAAAGGAACAGGATCTACGTCCGCTTCTTGTCCTGGTCTGACGAGCTGTCCAGCGGGATAGTCGTTGTCGACGGCAAGAACGTGGCCCCGATACTCACGGCTTCTGTGCCACCGCCAGGTGGCAGGGTGGGCGTCCGTTATGAACACCTGTACAAGGCTACGGGTTCGCTTACTCCGAGTTTCACAGTTGCCAGTGGTTCGCTGCCGCCCGGCTTATCCCTTTTAGCGAAGGGCGTACTGGCAGGAGTCCCCACAACGTCCGGGACCTTTACGTTCCGCATCTCAGCCAGCAATGGTTACAGCCCTGACGCCATTAGCCCGACTCAAACGATCAGCATCGCCCCTCGCCAGCTCACCCATGATTTTAACGGCGATGGAAACCCTGACGTCCTTTCCCGCGATGGTGATGGTGCCTTGTGGCTGTATCCGGGCAATGGCAGCGGTGGTTGGCAAGCGCGGGTGCAAGTGGGCCAGGGCTGGAACGTCATGACCTCGGTCGTAGCTCCAGGGGACTTCAACGGTGACAGTAAGCCAGATCTGTTGGCCCGCGACTCCAACGGAAATTTGTGGTTGTACCCCGGAAACGGTAAGGGTGGCTGGATGGCCCGGTCCCAAGCTGGCTCGGGATGGAACGTCATGAAGGAGATCACCGCCATTGGCGATCTGGACCATGATGGAAGAGCCGACGTCGTGGCCCGGGACTCGGATGGTCAGCTGTTCCACTATGACGGCGATGGGCGAGGCTGGTGGCGTGGCCAGAGCATCATTGGTTCCGGCTGGAACATCATGACGGCGATGGCAGGCCCGGGCGACTTCAGCGGTGACGGCTTGGCGGATCTGCTTGCCCGCGACACTGGAGGCGCTCTTTACCTCTATGCGGGCACCGGATACTCCGTTGCCGACGCGGGTTACGCTGTCGGCTCCGGCTGGAATGTCATGACGGCGATGGTGGGGCCGGGCGACTTCAACGGGGACGGCAACGTGGACATCCTGAGCCGTGACACGGGAGGGGCCCTGTGGCTTTACCCGGGCAACGGCTCCGGCGGATGGCTACCGCGCACGTTGGTCGGCTCCGGCTGGAACGTCATGACCATGATCATTTAGMIADRIKIPAPYAPAVNETTNTIFVTSEQFNTVTAVDMATKSVKIIPVGTRPRHLAVNEVTNKVYVANSGSSSLSVIDAVTGTTKTVPLPGNPSAVAVNEVTNKVYVSNGGPNGLTVIDGATDVATSFPVAGSSVALSDKPVAVNEKTNKIYSVTPLSNQVTVLDGATNAITTVPVCSGTHGLAINDTTNTVYVTCAKAQTIVAIDGATRSTTSIPTGGDTSPREVVVNRTNNKVYALNNFSMTILDASLNTLVTVPTGNFPPALAVNETTGKVYVAEYYAGSIRVFDGATNASGVLQELSMPGRMAVDSKRNRIYVRFLSWSDELSSGIVVVDGKNVAPILTASVPPPGGRVGVRYEHLYKATGSLTPSFTVASGSLPPGLSLLAKGVLAGVPTTSGTFTFRISASNGYSPDAISPTQTISIAPRQLTHDFNGDGNPDVLSRDGDGALWLYPGNGSGGWQARVQVGQGWNVMTSVVAPGDFNGDSKPDLLARDSNGNLWLYPGNGKGGWMARSQAGSGWNVMKEITAIGDLDHDGRADVVARDSDGQLFHYDGDGRGWWRGQSIIGSGWNIMTAMAGPGDFSGDGLADLLARDTGGALYLYAGTGYSVADAGYAVGSGWNVMTAMVGPGDFNGDGNVDILSRDTGGALWLYPGNGSGGWLPRTLVGSGWNVMTMIINANANANANA
D1-29_02778144hypothetical proteinATGGAAAGAGAAGCATCCGGTGAACTGGAGGGGCAGAGCTCGATCAACGAACTGCTCAGTGAACCGGTCGGCGTGACTCATTTCCAGATGGTCCTGCCGCTGCATGTCCAGCTCCCGTCGGGGGAGTTCCGGCGCTTGTCGTGAMEREASGELEGQSSINELLSEPVGVTHFQMVLPLHVQLPSGEFRRLSNANANANANA
D1-29_02779552hypothetical proteinATGAAATACGCACGCACCTTAGCGGCAGTGGCGATGTTGCTCGGGTTTGCCCTGTCCGGGTGTCAGACCGCCGGAGGGTCACCTCCGGCGGGAGCTCCCGCTGCTGTGCCCAGCGGATCCCCGTCCGAGTTCGCCGTGATCATCCAGGCTGCCGTCGAGGATCGCAACGGCACCGCACTCGACACACTTCCAGCTCCGCGCCTAGCAGATGAGCAGGCCACGGACGCCTACCTCTCCAAGCGCGCACGGGATTTGCCTGCGGTGACGCGGTCGAAGGCCGGATTCAAGTCATCTGGTTTCTGGTACACGTCCTTTTCTACGAAGGTAACCGTGGACTCCATCAATGTGAGCGGATCGGAAGCGGTCATCCAATTCACGGAATTAACGGAGGAATACCTCGGATCGGCTGCGAATGGCCCGAGCAACGTCCCATCCGGCTACTCGTTACCGCAGACCGCGACGTTCCGGACATCCACGGATGGCTGGCAGCTAGACAGCATCGCCCCTTCCAAGCCCGGGTTCGGCTTGCCGATGTCCATCGTCGCAGATTGAMKYARTLAAVAMLLGFALSGCQTAGGSPPAGAPAAVPSGSPSEFAVIIQAAVEDRNGTALDTLPAPRLADEQATDAYLSKRARDLPAVTRSKAGFKSSGFWYTSFSTKVTVDSINVSGSEAVIQFTELTEEYLGSAANGPSNVPSGYSLPQTATFRTSTDGWQLDSIAPSKPGFGLPMSIVADNANANANANA
D1-29_02780213hypothetical proteinGTGCTTACGCTCCTGGCCCAGACAGTCATCGCAAATCTGGCCCTTATGTCTCTGGTCATAGTCGTCCTGGCGAGTCAGGTGATTTCTTATGACGGAATAGGCTCATTCATTGTCTGGGGGCTTGCGGCAATGATCCTCCCCGCCATGGCAGTCTGCCTTGCCCTCGTCTTAGGGCTCCCCGTTCGGCTTATCCCACCTGTGCGCCGGTGGTGAMLTLLAQTVIANLALMSLVIVVLASQVISYDGIGSFIVWGLAAMILPAMAVCLALVLGLPVRLIPPVRRWNANANANANA
D1-29_02781198hypothetical proteinGTGGCCGGCACCCTCGCCGGCTGGGGCCTTACCGTCTATGCGTTTCTGTCTGGCAAAGAAGAGTCCGGGACCGAAGAGGGCATCCATTACACGGTCCACGTCCCTAATTGGGATGCACTCCTGTGGGGCTGTGGGCTGCTCGCGTTCTTCACAACCCACCTCTGGATTCCAGCCAGATGGCGACGACGGGCCCGCTAGMAGTLAGWGLTVYAFLSGKEESGTEEGIHYTVHVPNWDALLWGCGLLAFFTTHLWIPARWRRRARNANANANANA
D1-29_02782645hypothetical proteinATGGTCTCGGGCTCTTTAGGCTCCGCTGCTCTCGATGACGGCCTTAACGCGTTCGACGTACTGCTGGCAGAAAAGCTTGTGGTGGTATTCGTAGTGGCTGAGATAAGCGGCCTCTCCTGGGGGCAAGGAAAAGTGCTCCCCATGCTCAAGGATGGTTGCGCCATTGTCGGTATCCTGCAAAGTGTTACGGCCTCGCGACGTTGGATCTGTGTGCCCAATGGGCCTGGTAATCGCTATTTCATAGGGGATCTCGTGGACCACTTCAATAGCCGACACGCGCTCTACACCGTTGCGTACTTCGATGAAGACTTGAATCTCTCCGGCCCCGTTGAAAGGTGGTGTGCTGAACCCCCGCACTATTTCTGGATCAACCAGGACTCCGTTTTCCGCTGGTTTGATGAGATCCCAGACCTGTTGCCGTGGAGCGTCGATCACTGCAGACGCGGACACGTAATGAACGGAAGTTTCAGATGGGGACCGCATTGGCTGACGGCGCTTAAACAAAGGACTCATGGCGCGAGCATGGCATCCGAACAAGTCACCAGCAAACCACCACACCGCAGCAACGCGGCTCGAGTCCTGTTGTCAGGCTGGTTACCGGATGCCAATATGCGTAGGTGGACGCAGTTACAGTGTCCGGCCTGAMVSGSLGSAALDDGLNAFDVLLAEKLVVVFVVAEISGLSWGQGKVLPMLKDGCAIVGILQSVTASRRWICVPNGPGNRYFIGDLVDHFNSRHALYTVAYFDEDLNLSGPVERWCAEPPHYFWINQDSVFRWFDEIPDLLPWSVDHCRRGHVMNGSFRWGPHWLTALKQRTHGASMASEQVTSKPPHRSNAARVLLSGWLPDANMRRWTQLQCPANANANANANA
D1-29_02783228hypothetical proteinGTGTCCGGCCTGAAAGTCACCTACCGGCGTGTGGGATCGGGCGATCCGCTCGTCCTTCTCCATGGCGGCTTTGGATTCGACAGCCGATCCTGGGGCCCGCAGCTCGACGCCCTCGATGACGAGTTCGATGTCGTCGCTTGGGACGCTCCAGGCTGCGGAGGATCCGACGATCCGCCCGAGTCCTTCTCCATGGAACACTATGCCAACAGCCTGGCCGAGTTGAGGTGAMSGLKVTYRRVGSGDPLVLLHGGFGFDSRSWGPQLDALDDEFDVVAWDAPGCGGSDDPPESFSMEHYANSLAELRNANANANANA
D1-29_02784579hypothetical proteinATGGATCAAAAGACTGACCTACTTGGATACCTTCGCCTTCGAAGGGCGGACCTTCTCGCGAAACTTGATGGCCTTGGTGAATACGATATTCGCCGGCCTATGACGCCCACGGGCACAAATCTCCTTGGCCTGGTGAAGCACGTCGGCGGTGTGCAATTGGAATACTTCAGCGGAGTATTCGGGAGGCCGCATAACCGGGAACTGCCTTGGCTAACTGGAGACTTGGGTGTTGATGCCGATATGTGGGCCACGGCAGATGAGAGTCGGGCAGATATCCTCGACTTCTACGACTTCTCTTGCCGGCATAGCGACGCGACGATAGAGCAACTCACCTTAAATTCTTTGGGTGAAGTACTTTGGTGGGCGCCCGAACGCCGCAGCGTAACCCTGCATCAGATCCTGGTCCACATGTGCGTTGAGGCAGCGAGGCACGCCGGGCACGCCGACATCCTGCGCGAGTTGATCGACGGCTCAGTTGGCAACGGTCCCCAAGATCCCAACGTGCCGGGCCGCACCTCCGAAGAATGGGCTGCCTTTCGAAGTCAGATCGAGACGGCAGCACGCCAGACAGAAGGCTAGMDQKTDLLGYLRLRRADLLAKLDGLGEYDIRRPMTPTGTNLLGLVKHVGGVQLEYFSGVFGRPHNRELPWLTGDLGVDADMWATADESRADILDFYDFSCRHSDATIEQLTLNSLGEVLWWAPERRSVTLHQILVHMCVEAARHAGHADILRELIDGSVGNGPQDPNVPGRTSEEWAAFRSQIETAARQTEGNANANANANA
D1-29_02785921argP_3HTH-type transcriptional regulator ArgPATGCATTCAACGGGCTTTTTATACGATGAACGTATGGATGTTGAACTCAGGTACCTTCGTGCTCTGGTAGCGGTAGTGGAAGCCCAAACGTTCACCGACGCCGCCATCGCCTTGGGAACGTCACAGGCCGCGGTTTCCCGGTCCGTAGCAGCACTGGAACGGGCGCTGCGTATGCGCATTCTGCAAAGGACAACGCGGAGCATCACACCCACTCCTGCCGGGGAACGGATCATTGAACATGCCCGGCGCGTCCTGGCCGAGGTCACGCTTCTTGAACGTGCGGCCAGGGATCAAAGCAGTGAACTGAAAATAGGGTATGCATGGTCGGCGCTGGGTGCCCGGACCGCAGCCCTGCAACGCGAATGGGCGCAGAGCCACCCGGACGTGAGCCTGGTGTGGGTCCAGACATATGCCGCATCGGGAGGGTTGGAGGACGGCTCTTCCGACGTTGCCATCATGCGGCGCCCGATCAGTGATAACCGCTTTGCTGCCATATTCATCGGCCAAGAAGGCCGCTATGCAGCCGTGGCCGCAGAGGATCCGCTGGCCCGGAGGCGTTTCCTCCGGATGGCAGACTTCGCCGGGCGTACGCTGGCCGTCGACCTGCGCACCGGAACTACCACGGAAGACCTCTGGACCGGATGGGCGCGGCCGGCATCGCTGCGCCAGGTGCAAGGCGTCGATGAATGGCTGATGCTCATCTCCACCGGGCAAGCCATCGGCATGTCCTCAGAGGCCACCGCTGCGCAGAATCCGCGGCCCGGCGTCGTGTACCGGCTCGTCCGTGATGCCCCGCCAATCTCGGTGTTCCTTGTCTCTCGGCGCGGGGATCCTTCGGCCCTTGCCGCGGATTTCACCAGGCTTGCCCGCAAGACGTTTGGGCCTGACGGCACTGCTGAGACGAGGCCGGGTTCGAATTAAMHSTGFLYDERMDVELRYLRALVAVVEAQTFTDAAIALGTSQAAVSRSVAALERALRMRILQRTTRSITPTPAGERIIEHARRVLAEVTLLERAARDQSSELKIGYAWSALGARTAALQREWAQSHPDVSLVWVQTYAASGGLEDGSSDVAIMRRPISDNRFAAIFIGQEGRYAAVAAEDPLARRRFLRMADFAGRTLAVDLRTGTTTEDLWTGWARPASLRQVQGVDEWLMLISTGQAIGMSSEATAAQNPRPGVVYRLVRDAPPISVFLVSRRGDPSALAADFTRLARKTFGPDGTAETRPGSNNANANANANA
D1-29_02786933rhtACOG5006Threonine/homoserine exporter RhtAATGGAAGCTCAACCGGTACAGGGTACGGCCCAGTCCCAGCAAGGCCAGGTTATTAGAGGGGCCCGCAGGTCGCTAACCCGTGGGGTCCTGGGCATGACAGGAAGCGGGCTCAGCAATCAGATTGGCGCCGGGATCGGTGCACATGCATTTCCAGTCATCGGACCGGCGGGGGTTGTGGCCGTTCGGCAGTTCGTGGCCGCCGCGGTGCTGCTCCCCGTTGCCCGCCCGGCCTTCCATCGGTTCACCTGGCAGCAGTGGTGGCCCATACTCCTGCTGGGAGCGGCCACCGCGCTGATGAACATCTGCCTGTATGTGGCCATTGACCGAATCGGGCTGGGGCTTGCCGTCACCCTGGAGTTCCTTGGACCATTGGCGGTTGCGCTTCTGTCTTCAAGGAGCCGTTGGGATCTGGCGTGCGGGCTCAGTGCCGGCTTGGGGGTATATGTTCTCGTGATGCCGGGTCCCAGCAGTGATTTCGTCGGCATTGCCATCGCCGTGGCTGCCGCGGTTTGCTGGGCAGCTTACATCCTGTTGAACAGAGTGGCCGGGCAGCGGCTGCCAGGTCTGCAGGCTCCGGCCGCGGGGACACTGGTATCCCTGGTTATCTACCTTCCCGTGGCGGGCTATCTCCTGATCCAGGGGGTGTTTACCGGTCCCGCGCTTCTGTACGCCGTCGCGGCAGGAGTCCTTTGCTCGGTCATTCCCTACGCCGCCGATCTCGTCGCCCTCCGCCACGTGCCTGCCGGATTCTTCGGCGTCTTCATGAGCATCAACCCCATCCTCGCCGCGCTCTCCGGAACGGTAATACTGGGGCAGGTCCTCCAACTCCACGAATGGCTTGGCATCGGGACGATCGTTGCCGCGAACGCCGTGGCTATCTGGTTGGCCGGGCGCAGGACCGGGACTGGCCGGCCCCCGGCTCAAGCGCCATGAMEAQPVQGTAQSQQGQVIRGARRSLTRGVLGMTGSGLSNQIGAGIGAHAFPVIGPAGVVAVRQFVAAAVLLPVARPAFHRFTWQQWWPILLLGAATALMNICLYVAIDRIGLGLAVTLEFLGPLAVALLSSRSRWDLACGLSAGLGVYVLVMPGPSSDFVGIAIAVAAAVCWAAYILLNRVAGQRLPGLQAPAAGTLVSLVIYLPVAGYLLIQGVFTGPALLYAVAAGVLCSVIPYAADLVALRHVPAGFFGVFMSINPILAALSGTVILGQVLQLHEWLGIGTIVAANAVAIWLAGRRTGTGRPPAQAPNANANANANA
D1-29_02787780hypothetical proteinATGACCATCAGGGAGTTCCGCCCCATGCAGGACGCAGAGCCCGGACCCCTTGCCCTCACTGTGGTGCGGCAGGAGCACTCGCTCGGCGCGGCGCGGGACCTTGAATTCGGGCTTGACGTGCTGGCCATGGCAAAGACCGGTAGGATTGGGCCCACCCTGAGGCTGTACCGCCCCCAACCAACCGTGGCATTCGGTCAACGGGACGCCCGCCTGCCCGGTTTCGAAGCGGCCGCCCGGGCGTGCCGGGATCATGGGTTTGAACCGTTGGTCCGCAAAGCCGGCGGTCGTGCCGCGGCCTACCATCAGGGGACCCTTGTGGTGGATCACGTGGAGCCCCACACCGACGCGATTGCCGGTTCCAAGGGCCGGTTCAGTTTCTTTGGCGAACTGCTGGCGCAGGCTCTGCGGGACGCGGGAGTCCAAGCCGCCGTCGGCGAAATCCCGGGGGAGTACTGCCCCGGCGAGTTCAGTGTCCATGGCACCGATCCGGACGACGGCGCCCGTCAGGTGAAGCTCATTGGCACCGCTCAGCGGGTGGTGGCCGGCGGGTGGCTGTTCAGTTCGGTGATTGTGGTGGAGGATTCTGCCCCCATCCGTGCGGTTTTGACTGACAGTTACGCTGCCCTTGGCCTCGATTGGGATCCGGCAACAGCCGGGGCGGTCAACGATCTTGTCCCTGGGCTGGACGTCCCGGCCATTGAGGCCGCCGTCCTTGCCACCTATGCCCGGCACGCCTCGCTCGGGTATGCCGAGTTCGGCAGCTATTTTCATGGCGCTTGAMTIREFRPMQDAEPGPLALTVVRQEHSLGAARDLEFGLDVLAMAKTGRIGPTLRLYRPQPTVAFGQRDARLPGFEAAARACRDHGFEPLVRKAGGRAAAYHQGTLVVDHVEPHTDAIAGSKGRFSFFGELLAQALRDAGVQAAVGEIPGEYCPGEFSVHGTDPDDGARQVKLIGTAQRVVAGGWLFSSVIVVEDSAPIRAVLTDSYAALGLDWDPATAGAVNDLVPGLDVPAIEAAVLATYARHASLGYAEFGSYFHGAPGPT0003940_453DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003940-lipL-K16869NANA
D1-29_02788804hypothetical proteinTTGACCAAAGAACTGCCCGAACTTGCCGAAGGCAACTTCTACTACCAGGTGCTTGGCGGCGGCCGCTTCCGCTCCACCATCCATGCCCAGGGGGCGTGGAACGAGCATGAACAGCACATGGCGCCCGCCTCGGGACTGATGGCTGATCTCCTGGAACGCCACCAACCGCGCGGGGACATGCGGCTTGCCCGGCTGAGCTACGAGATCCTTGGGCTCATTCCCGGCGGTGAATTCCAGATCGAAATCACCACGCTCCGCCCCGGACGCACCATTGAGCTACTCCAGGCTGAACTGGTCGCCGACGGCCGCGTTGCCATCCGTGCCACCGCCTGGCGGATGATCACCAGTGACACCAGCGCCGTTGCCGCCGTCGAGGATCCCGCCATCCAGGGTCCCGACGAGTGCAAGCCGTACGACGGCGCCAGCGTCTGGCCCGGCGGCTATATCCGCTCACTGGAGATGCGTGTGGCGGAAGGCCACCGGCCCGGAGCCGGCAAGGTCTGGCTGCGCACCGAACACCCGCTCACCGATCAGGACGACAGCGGTGACCTTGCCCGGCTGATGGGCATGGTGGACACCGCCAACGGTATAGCCGCCCGGGTCCCGCCCGGCAAGGACAGCTACGCCTTCCCCAACCTGGACCTGCAGATTCATATGTACCGCAGGCCCGACGGCGAGTGGCTGGGACTGGACAACGCGGTCACCTTTGGCGCGGACGGGATTGGCCTCACGTCCACGGTCCTGCACGATCTTCAAGGACCCTTTGGGCGTGCGGAACAAATTCTGACGCTGCGCAGATCGTGAMTKELPELAEGNFYYQVLGGGRFRSTIHAQGAWNEHEQHMAPASGLMADLLERHQPRGDMRLARLSYEILGLIPGGEFQIEITTLRPGRTIELLQAELVADGRVAIRATAWRMITSDTSAVAAVEDPAIQGPDECKPYDGASVWPGGYIRSLEMRVAEGHRPGAGKVWLRTEHPLTDQDDSGDLARLMGMVDTANGIAARVPPGKDSYAFPNLDLQIHMYRRPDGEWLGLDNAVTFGADGIGLTSTVLHDLQGPFGRAEQILTLRRSNANANANANA
D1-29_02789678hypothetical proteinATGCGCGTCATCAGTTACAACCTTCGCAAGCACAAAGCGAGCGGCGAGCTTCTCGCGCTCGCCCGGAATTTCGAGATCGATGCCTTGTGCCTGCAAGAGGTGGATTCCAGCGACCTGCCGGAAACCCTCGGGCCACTGCACCTGGCTGACACCACTAAGGGAAACCGCCTTGGCCTCGCCATCTACTACCGCACCAGCCGCTTTACGGCCTTGGATACCCAGTCGTTTGCGCTGAAGAAGTCCATGCATGATCGGGTGCTTGCGCCGGCGCACGAGCGCCTCATCGGCACCAGGGTGGTGGACAACGAGACGGAGCACGAATTGGTTATCGGTTCCTTCCACGCGGCACCGCTGACCGCCTCCAATTCGCTACGGCGGAAACAAATCCACGCCGCCCATGCGGAACTCCTGACCATGGGCAGCGGCCTGATGACACTGATGGTTGGCGACTTCAACTATCCGTTCTTCACCAAGAACCTTCACGCCCACATGAAGGACTCGGGATACGCGCTGTCCCTCAGTAACCGCCGGACATACACACGCTATAAAGTGTTCCACGGCCACTTCGACTTCGCCACGTCACTGGGATTGGACATCGCAAACGTGGAAACCCTGCCCCGGGGCAAGTCCGATCACCTGCCGATTCTTGTGACGGCCGAGTACGGCAAGGACTACTGAMRVISYNLRKHKASGELLALARNFEIDALCLQEVDSSDLPETLGPLHLADTTKGNRLGLAIYYRTSRFTALDTQSFALKKSMHDRVLAPAHERLIGTRVVDNETEHELVIGSFHAAPLTASNSLRRKQIHAAHAELLTMGSGLMTLMVGDFNYPFFTKNLHAHMKDSGYALSLSNRRTYTRYKVFHGHFDFATSLGLDIANVETLPRGKSDHLPILVTAEYGKDYNANANANANA
D1-29_02790708COQ5_22-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialGTGGAGCTGTACGACACCGATAACCCTGACGGTCCCGATCACGACTTCTTTCGGGCTCTGGCAAATGAGGCCGGCGCGCAGACCGTCGTCGATCTTGGATGTGGCACCGGGATTCTGACCGTGACCTTCTGCAGGGAGGACCGTAAAGTCATCGGGATTGATCCGTCTCCGACGATGCTCCGTTATGCACGCGCGCGGCCCCGAGCCAGCCAGGTGGCCTGGATCTTGGGCGATTCCTCGGCCATTGGGGATTCAGCGGCAGACGTGGTGGTCCTGAGCGGCAATGTTGCCCAACACATCACGGGCGCGGCCTGGCGGCGTGCCTTAAATGACATCCATCGCGGACTTCGGCCCGGCGGTGTACTGGCTTTCGAGCGGCGAAACCTTCTGGCCGGTTCCTGGGAGAACTGGACCAAGGAGAAGACCCTTACTACCCGCGATTCCATCATCGGCCCGCTGATGGAATGGAAGGAGGTTTCTTCAATGGATGGCGCAGGCATCGTGACCCTCACCTGCCACAACGTCCTGATGGAAACGGGGGAGGATATCGTGGAGACGCTGTCATTGTCCTTCCTGAGCCAGGCCCAGGTAGTCAGCGATTTGGATGCCGCCGGCTTTGACGTGTCCGGCGTCTGGCGGAACTGGACCCGGGAACCGGTGGAGGAAAAGAGCCCCCTGATGGTGTTCGAAGCCACGCGGCGTCACTAGMELYDTDNPDGPDHDFFRALANEAGAQTVVDLGCGTGILTVTFCREDRKVIGIDPSPTMLRYARARPRASQVAWILGDSSAIGDSAADVVVLSGNVAQHITGAAWRRALNDIHRGLRPGGVLAFERRNLLAGSWENWTKEKTLTTRDSIIGPLMEWKEVSSMDGAGIVTLTCHNVLMETGEDIVETLSLSFLSQAQVVSDLDAAGFDVSGVWRNWTREPVEEKSPLMVFEATRRHNANANANANA
D1-29_02791588hypothetical proteinATGGATCACTCATTGGCCGGCACGTCGCCAGCTGCGACCCCACCGAACACCGCGCTCCAGGCTTCGGACATCCAGAAGCCTGCGCTGCAGCGGCCGCCTGTGCGGACGGGCCCCCGGGACCCCGGTGATGCCTGGGTTGAGGGGGAACACGGACGTTTCTGGGGCAGGTTCGGCGCAGCCGGAGTCCTGGCGTTTGACCCCGGCAAGGGGGTGCTTCTCCAGCACAGGGCGGCCTGGAGCCACAACGGTGGAACCTGGGGGCTGCCGGGTGGAGCCCTGCACGAGGGCGAAGACGCCGTGGCGGGTGCCCTGCGGGAAGCGTATGAGGAAGCCGCGGTGCCTGCAGCGAGCGTGAGTGTCCTCTTTACCTCGGTCCTTGACCTCGGCTACTGGTCCTACACCACGGTGGTTCTGCTCGTGACGGACCCGTTTGATCCCGTGATCAGCGATCCGGAGAGCATCGAGCTGCAGTGGGTTCCGCTGGCTGAGGTGACCACAAAGGAGCTGCACCCTGGATTCGCGGCGTCCTGGCCCGCCCTGCGCCCCAGAATGCTGGACCTCACCGATGGCCGGCCGCAGCCGGAGTGAMDHSLAGTSPAATPPNTALQASDIQKPALQRPPVRTGPRDPGDAWVEGEHGRFWGRFGAAGVLAFDPGKGVLLQHRAAWSHNGGTWGLPGGALHEGEDAVAGALREAYEEAAVPAASVSVLFTSVLDLGYWSYTTVVLLVTDPFDPVISDPESIELQWVPLAEVTTKELHPGFAASWPALRPRMLDLTDGRPQPENANANANANA
D1-29_02792774hypothetical proteinGTGGCCGCCTTCGTGAACGCGTTCGACGGCGAAATCACCGCCGGGATACATCACGGTTTCGTGTCCGTCATCAAAACGGATCAGGTACGGCGGATGACCTCCCTCCCCACGGACCTCAACGATCACCCCGTGCCGGTCAGCTGCTCCAACAGTCCGGCCCCGAACGATGATGCGGTCGCCCTGCATTGCCTCCATGGCAATCACCTCCCAGCCCTAGGTTACGACTCACGCGGACCCGCGAACAGGTCCCCGTGCGAAGATTCAGCTATGCCACTGAACCTTCTGCTGGTCTCCGATACCCACGTCCCAAACCGCGCCCGGGCGCTCCCCCGGCAGGTGTGGGCCGCCGTCGAAAATGCCGATGTGGTATTCCATGCCGGTGACTGGGTCACAGCAGCGCTCCTGGACGAATTCGAGCAGCGAAGCCGCCGGCTGGTAGGTGTTTACGGCAACAACGACGGACCGGAACTACGCGGCAGGCTTCCCGAAAGCGCAGCGGTGACCCTTGAGGGGATTAATTTCGCGGTCATCCATGAGACGGGCCCAGCGAAGGGCAGGGAAGGACGCTGCGATGAGCAGTTCCCCACGGCCGACGTCCTGGTCTTTGGACACTCGCACATCCCTTGGGACACCACCTCGCCGGGCGGGCTGCGGCTGCTGAATCCGGGTTCGCCCACGGACCGCCGCCGGCAACCGGTGTGCACCTACATGACCGCTGTGGCCGATGCCGGCAATCTGCAGGACGTCCGCCTGGTGGAGGTTAGCAGGGACTGAMAAFVNAFDGEITAGIHHGFVSVIKTDQVRRMTSLPTDLNDHPVPVSCSNSPAPNDDAVALHCLHGNHLPALGYDSRGPANRSPCEDSAMPLNLLLVSDTHVPNRARALPRQVWAAVENADVVFHAGDWVTAALLDEFEQRSRRLVGVYGNNDGPELRGRLPESAAVTLEGINFAVIHETGPAKGREGRCDEQFPTADVLVFGHSHIPWDTTSPGGLRLLNPGSPTDRRRQPVCTYMTAVADAGNLQDVRLVEVSRDNANANANANA
D1-29_02793894yghA_2putative oxidoreductase YghAATGACGGACCAGTACACCTTCCGTAATCCAGTAACGGCATACGAAAAGATCTCCCCGCCGGAACAACATCAGCCAGAGCCCGGCCTGGACGCCGAGCTGCAGCCAAAAGCGGACCTGGGCGAGGAGACCTACCGCGGTACCGGACGCCTCGACGGCCGCAAGGCGATCGTCACGGGCGCTGACTCCGGGATCGGGGCTGCCGCGGCCATCGCGTTCGCCCGGGAAGGGGCCGACGTCGTTCTGTCCTATTTGCCCCAGGAGGAGACTGATGCGTCACGCATCGCCGCCCTGGTTGAGGCGGCAGGCCGCAAAGCGATTAAAGTCCCGGGTGACCTCAAGGACCCCGCCGCTTGCCGTGACTTGGTGGACACCGCCGTCGCCGTCCTGGGCAGCATAGACATCCTGGTCAACAATGCGGGAAAGCAGGTGGCCCAGGAGGACCTCACCCAGATCACCGACGAGCAGTTCGACCACACGCTGAAGACCAACGTTTATGCCATGTTCTGGCTCAGCAAGGCAGCCATCCCGCACATGCCGGCCGGGTCAACCATCATCAACACCACGTCAATCCAGGCGTACAACCCGTCGCCCACACTGGTGGACTACGCCACCACCAAAGCCAGCATTAACAACTTCACCAAGGGTCTGGCCCAGCAACTGGCTCCCAAGGGCATCCGCGTGAATGCCGTAGCCCCGGGACCTATCTGGACGCCGTTGCAGGTCAGCAGCGGCCAGCCGAAGGAAGCCCTGCCGGAGTTCGGGCAGTCCACTCCCCTGGGCCGTGCCGGTCAACCGGCCGAGCTGGCGCCGGCGTATGTATTCCTGGCATCTCCCGAGTCCAGCTTTGTGATCGGAGAAACGTTGAACGTCAACGGCGGCAATCCGACGCCGTAAMTDQYTFRNPVTAYEKISPPEQHQPEPGLDAELQPKADLGEETYRGTGRLDGRKAIVTGADSGIGAAAAIAFAREGADVVLSYLPQEETDASRIAALVEAAGRKAIKVPGDLKDPAACRDLVDTAVAVLGSIDILVNNAGKQVAQEDLTQITDEQFDHTLKTNVYAMFWLSKAAIPHMPAGSTIINTTSIQAYNPSPTLVDYATTKASINNFTKGLAQQLAPKGIRVNAVAPGPIWTPLQVSSGQPKEALPEFGQSTPLGRAGQPAELAPAYVFLASPESSFVIGETLNVNGGNPTPPGPT0014705_71DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034NANA
D1-29_02794441hypothetical proteinATGGCTGACCCGTTTAATCTGGAACGGTTCGTCGCCGCGCAGGACAGCGGCGGAACCTACGAGCAGGCCCTGTCCGAGCTCCAACTAGGCAAGAAGACCGGGCACTGGATGTGGTTCATCTTTCCGCAGCTCGCAGGCCTTGGCCACAGCGAAATGTCGCAGCGGTACGCCATCGGCTCGCTGGCCGAAGCCCGGGCCTATCTGGAGCACAGCGTGCTGGGCCCACGGCTGCTGGATTGTGCCCAGGCCCTCACCGACTTTGCAGACAGGACGCCCGAGGAAATCCTCGGCGCCATCGACGCGCGGAAGCTCCATTCCTCCATGACGCTGTTCCTGCGCGCAGCCCCGGGGGAGACAGTGTTCAAGGCTGTGCTGGCGCAGTTCTTCGACGGCCTGCCCGACGACGCCACCGATTCGCTGCTCCGTTCGGACGAACAGTAAMADPFNLERFVAAQDSGGTYEQALSELQLGKKTGHWMWFIFPQLAGLGHSEMSQRYAIGSLAEARAYLEHSVLGPRLLDCAQALTDFADRTPEEILGAIDARKLHSSMTLFLRAAPGETVFKAVLAQFFDGLPDDATDSLLRSDEQNANANANANA
D1-29_02795420hypothetical proteinATGAGCGATCCAGCCGAATTCATCGACGCGGCCCTGCAGCGTGAGGGTTCCTGGCGGCGGGCGGAGGAGGCCAGGGCCCGGTGGGGCAGCGCTGTGCAATCCTACGGCTCATCTGTCGGCGCTGTCCGGGGGACTGTGCGCGACGCCCTCAGGCGCTATCCGGATCTGCAGCACGACGACGTCACTGCCCTGAGCTCGGAACTTTGGGCGGTCCCGGTGTTCGAACGCCGTCTCGCGGCAGTGGTCCTGCTGCAAACCAAGGTCCGGCTGTTGAGGAATTCCGACCTGACCAGGATCGAAGGCTTCTTCCGATCCGCTCGGCTGGAGGCTTTGGTGGACCCGCTGGCCGTGGACGTTGTTGGGCCGCTGCTTGCCAACCTGGCCGCGGCGGGAACAGGCCCGCGGCCAAGCCGTCGTTGAMSDPAEFIDAALQREGSWRRAEEARARWGSAVQSYGSSVGAVRGTVRDALRRYPDLQHDDVTALSSELWAVPVFERRLAAVVLLQTKVRLLRNSDLTRIEGFFRSARLEALVDPLAVDVVGPLLANLAAAGTGPRPSRRNANANANANA
D1-29_02796363dksARNA polymerase-binding transcription factor DksAATGGTGGATTTTGAACGGTTTCGGATCCTGCTGGAGGAGGAGCGGGAGCGCAAGCTGGCGCTGCTTCCGGCCCTCCGCGCGGATATCACTTCGGCCAACGCAGCCCGGCAGGACTCCAACGTGGATGACGAACATGACCCCGAAGGGGCAACCATCGCGTTTGAACTTTCCCAGGCCTCGGCGCTGCTGAAGCAGAGCAGCGCCGGGCTGGCCGAGATCGAAGCTGCCCTGGAAAGGATTGCCCAGGGCAGTTACGGAACATGTGCCGTCTGTGGAGAACCGATAGCAGAGGGCCGGCTGGAGGCCCGTCCCTGGACTGCTGTGTGTATCGCCCACGCGAGCGGCAAGCGGACGGCGGGATGAMVDFERFRILLEEERERKLALLPALRADITSANAARQDSNVDDEHDPEGATIAFELSQASALLKQSSAGLAEIEAALERIAQGSYGTCAVCGEPIAEGRLEARPWTAVCIAHASGKRTAGPGPT0014560_3231DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
D1-29_02797387hypothetical proteinATGCCTGCCAATGTGGTCACGCAACTGGAAGTCAAATCCCACAATTCACCCGACGAAAAGAGGCGTCCGGACAAGACAGAAGTGGATGTTGTGACGGTCGGAGACTACACGCTGGGGCGGTTCACGTTCCCGCCGGGCTGGCGATGGTCTGAGTGCATCAAGCCCGTTGTTCACACGGAATCCTGCCAGAACAGCCATGTGGGTTTCTGCGTTTCCGGGGACCTTGTGGTCGAAACCACGGACGGCAACCGCATCAACATCAGTGCCGGTGATTCATACACCATTCCACCCGGCCACGATTCCTGGGTTGAAGGCGACCAGGACTTTGTTGCAGTTGAATTTATGAGCGCCGCCGAATTCGCCAAGGCACCCGTGGACTCCGCCTAGMPANVVTQLEVKSHNSPDEKRRPDKTEVDVVTVGDYTLGRFTFPPGWRWSECIKPVVHTESCQNSHVGFCVSGDLVVETTDGNRINISAGDSYTIPPGHDSWVEGDQDFVAVEFMSAAEFAKAPVDSANANANANANA
D1-29_027981311hypothetical proteinATGTCCCGGTTTGGTAGAAAGGTGAAGCGCCGCGCTGTTGCCGGCGTGCTGGCATTTGCCCTGGTGAGCTCACTTTCACTGCTGCCTGCCCATGCCGACAACCACGTTCCGCCGGACGGATATCCCTCCTGGCAGGACGTGCAGAATGCCAAGCAGAGCGAAGCCGGCAAGGCCGCCGAGATCTCCAGGATTGGCGACCTGCTGGGCGGCTTGCAGAGCCAGGCAGAGGCTCTGGGTGCTGCCGCCGTCACCTCAGCGGCGGATTACGCTGTAGCCGAGGCTGCGCTTTCGGCAGCCACGTCACGAATGGATGTCCTGACGACACAAACCGATCAGGCAAACTCAGAACTCGGCCAGTACAAGAAGGAAATCGGAGCCCTGGCCGTACAGTCCTACAAGACCGGCGGAACCAACATGGGCTTCTTCGTGGCCCTGGACGCGCTGCAGACCAACAGCATCCACGGCCTGAACATCGTTCAGATCGTGGGTGATAAGACGGCAGCCCTTGTGAACAAAGCAGCAGCCGCAGAGAAGTCCTCCCGTGCGCTGTCCGAGCAGCAGCAGACAGCCAAAGCCGAGCGTGAACGGTTGGCGGACGGGGCAAAGGTCAAGCTGGCGGCGGCGCAGGCAGCCCAGCAGGCCATGACCGTGCAAATTGCTGAACAGCAACAGAACAGCCAGGAACTGACGGCGCAGTTGGCCTCCCTCAAAGGAACAACGGCGGCGGTGGAAGGCGAATACCGCCAGGGCCAGGCAGCGCTTGCCGCCTATGAGGCAGCCCAGGCGGCAAAGCGTGCCGCGGCGGAGGAGCAGGCGCGCCGCCAGGCTGAGGATACGGCGAAAGCCGCAGCCCGCGCTGCCGCCCAGCGTCCTGCTAATCCCGGACCCCCTCCTGCCGGTCCAGCGGCTCCCGCGCCTGCCGCCCCGGCCCCGGCGCCGCCGCCAAGCCAAACACCGGCCCCGCCGCCCGTCGTCGTGCCTTCCGTTCCGGGCGGCGCCGTTAACGATCCGGCCGGAGCCAAGAGCTATGCCTCCTCAAGGCTGGGGGCCTATGGCTGGGGCCAGGATCAGTTTCAGTGCCTGGAGCGGCTGTGGACGAAGGAATCCAACTGGCTGACAACGGCTACCAACCCGTATTCAGGTGCCTATGGCATTGCCCAGGCGTTGCCGCCCGGAAAGTATGCAACTGCCGGGAGCGACTGGCTCACGAGTTACAGGACGCAGGTGGAGTGGGGGCTGAAGTATATTGCTGACCGTTATGGTTCACCGTGCGGCGCCTGGAACCACTCGGTGGCTTACAACTGGTACTGAMSRFGRKVKRRAVAGVLAFALVSSLSLLPAHADNHVPPDGYPSWQDVQNAKQSEAGKAAEISRIGDLLGGLQSQAEALGAAAVTSAADYAVAEAALSAATSRMDVLTTQTDQANSELGQYKKEIGALAVQSYKTGGTNMGFFVALDALQTNSIHGLNIVQIVGDKTAALVNKAAAAEKSSRALSEQQQTAKAERERLADGAKVKLAAAQAAQQAMTVQIAEQQQNSQELTAQLASLKGTTAAVEGEYRQGQAALAAYEAAQAAKRAAAEEQARRQAEDTAKAAARAAAQRPANPGPPPAGPAAPAPAAPAPAPPPSQTPAPPPVVVPSVPGGAVNDPAGAKSYASSRLGAYGWGQDQFQCLERLWTKESNWLTTATNPYSGAYGIAQALPPGKYATAGSDWLTSYRTQVEWGLKYIADRYGSPCGAWNHSVAYNWYPGPT0023995_760DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_02800825hypothetical proteinGTGTCAAAAAACTCCACCACCGCCCGTCATCGCGCGACCCCCAGCCGATCAATTGCACTCGAAGGCTTGTCAGCCACTGCCAAGTCAAATGCCATGAACATTGGAAGGTCCGGCCTGGTAGTTGCTGCCGCGTCTGGCCTCCTGTTCGGCATCGGGGCACCTGCCCAGGCCGGAACCCACGCACCAGATAACTCAGGCACTGCCAATGCTCAGGTCCAAGCACAGGCCGCAGCACCGGCCCCTGCGGCTGCGGCCCCGGCAGCAGCTGCAGCCAAGGTCCACACAGTCGTTTCCGGCGACACCCTTGGTGCAATTTCCGCCCGTTACGGAGTAAGCCTTAACTCGGTCTTCTCGGCTAACGGCATGTCCATGGCAACCATCATCTACCCGGGCAACCAGATCAAGATCCCCGGCGCCGGAACGGCTGCGCCCGCACCGGCACCTGCCCCGGCACCCGCCCCCGCCGTCCGCGTTGCGGCAGCTTCGGCACCGGCACCCGCTCCCCTGGCTGCTTCCGGCTCCAAGGGCGCTGCCATCCTGGCTTCCGCCTACTCCCAACTGGGTGTGACCCAGGACTGCACCGCCATGGTGGAGAAGGCACTGCGCTCCGTTGGCAAGAGTGTGGGCGACCTGGCCCCGGGTCAGTTCTTCCAGTACGGCAGCGTTGTGGGCACCCCCGCACCGGGTGACCTGGTCATCACTGCGGGCCACGTAGGTGTCTTCGCCGGCAACGGCCAGGTCGTCAGTGGTGGCGTGGACGGTTACAAGACCGAGGTCCACTCCCTCAGCTGGCTCTCCGGCGCTTCGTTCGTCCGAGTCGCGTAAMSKNSTTARHRATPSRSIALEGLSATAKSNAMNIGRSGLVVAAASGLLFGIGAPAQAGTHAPDNSGTANAQVQAQAAAPAPAAAAPAAAAAKVHTVVSGDTLGAISARYGVSLNSVFSANGMSMATIIYPGNQIKIPGAGTAAPAPAPAPAPAPAVRVAAASAPAPAPLAASGSKGAAILASAYSQLGVTQDCTAMVEKALRSVGKSVGDLAPGQFFQYGSVVGTPAPGDLVITAGHVGVFAGNGQVVSGGVDGYKTEVHSLSWLSGASFVRVAPGPT0023995_3268DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_DL-ENDOPEPTIDASE_ACTIVITY,PGPT0023995-cwlO-K21471NANA
D1-29_028011029hypothetical proteinATGATTGAACTTGGCAAGTTTGAGAGGTACCTGATCGAGGAATTCTTCGACGATTACCGAGCCGGGGCCATGACCCAACGAACGTTCACGCGGCGGGTGGCGTTCATTACGGGAAGCATGGCGGCGGCGTCCACTGCGATGCTGCTGGTCGGCTGCACCCCTGACGAGGTGCCGCGCAGCACCGACCCCATGCCGAGTCCCGAAGCGGCGACGCCGCCCCCCGAAGGGACCAGTACAGGGACGAGCACAGGGACCAGTGCAGCAACCGGAACTGGGTCAGCTGCGGCCGCGGAAGGTGCAGTACCCGGGGCGAAGAGCCCGCTGTCTGTTCCGGAGGGAGCACCGGGATTAACCACGGCGACTGTACGGTTCTCCTCCGGCGGTGCCGAAATCAGTGCCTATCTTGCCCGGCCGGAGTCGGGTGAAGCCGGACCGGCAGTGCTTATCTGCCATGAAAACCGCGGGCTGGTGCCGCATATCCAGGACGTGGCGCGCCGTTTTGCGCGGGAGGGCTATGCCGCCTTGGCCCCGGACCTCCTAAGCCGGGAGGGAGGGACTGCGAGCCTGAACGCGGATGCGGTTCCCGGCGCGCTGACGCGGGCCGGCGCCCAACGGCATGTGGCAGACTTCGCGTCGGCTTTCAGCTACCTGCAGTCCCAGGACTTCGTGGACCCTGGGCGGATCGCCATGAACGGTTATTGCTTTGGTGGCGGGATCACCTGGCAGGGGGCGACGGAGTTGCAAGGGCTGAAGGCCACCGCAGCCTTTTATGGACCTGCTCCTGATCTGGACAGGGTGTCCGCGATCAGGGCTGCGGTCTTTGGTGTGTACGCCGAACGTGATCAAAGGATCACCGGTGCCATGCCGGCTCTGAGGGACGCCCTGGAATCCCATAACATCCGCCACCAGCTAACCGTCTATCCGGGCGTCGACCATGCGTTCCACAACGATACGGGGAACCGCTACGACCAGGCGCAGGCTTCGGCGGCCTGGAACGACACACTGGCTTGGTTCCGCCAGCACGTCTGAMIELGKFERYLIEEFFDDYRAGAMTQRTFTRRVAFITGSMAAASTAMLLVGCTPDEVPRSTDPMPSPEAATPPPEGTSTGTSTGTSAATGTGSAAAAEGAVPGAKSPLSVPEGAPGLTTATVRFSSGGAEISAYLARPESGEAGPAVLICHENRGLVPHIQDVARRFAREGYAALAPDLLSREGGTASLNADAVPGALTRAGAQRHVADFASAFSYLQSQDFVDPGRIAMNGYCFGGGITWQGATELQGLKATAAFYGPAPDLDRVSAIRAAVFGVYAERDQRITGAMPALRDALESHNIRHQLTVYPGVDHAFHNDTGNRYDQAQASAAWNDTLAWFRQHVPGPT0005685_312DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005685-catA-K01061NANA
D1-29_02802474hypothetical proteinATGGACGAAGCAGACGCATTCCTGGCAGCGGTAATGCCGGCCCTCACAGCAGCCGATACAGCCATGCACAACGGCGATGCCGGACCCCGCACCGCCCTTTGGTCCCGTACCGATCCAGTGACACTTTTCGGTGCCGCCCGGACAGTTACCGGTGCAGACGAGGTGATCCCCTTCTTCGAGGTCCTGGCCGGCCGCTTTTCAAACTGCACCTCTTTCGAATACGAGGTCACGGCCGCCGAGGTCAGCGGGGACCTGGCGTATGTCGTGGGCATCGAGCACACCACAGCATCGGTGGCAGGGGCGAACCCGCTTCCCTACTCCCTGCGGGTCACAACAATCTTCAGGCGGGAGGACGGCAAGTGGAAGGTCGTGCATCGTCACGGGGACGCCTTGCCGGAAGGCGATGTTGAACTGACGCGCACCCAGCTGGGACGCCTTAAAGTGGCAGACACGACGCCGGACAGCGCCGGATAGMDEADAFLAAVMPALTAADTAMHNGDAGPRTALWSRTDPVTLFGAARTVTGADEVIPFFEVLAGRFSNCTSFEYEVTAAEVSGDLAYVVGIEHTTASVAGANPLPYSLRVTTIFRREDGKWKVVHRHGDALPEGDVELTRTQLGRLKVADTTPDSAGNANANANANA
D1-29_028031401selOCOG0397Protein adenylyltransferase SelOATGGCCATTCCCTGGCGGGCCGAGGAGGCTCCTGACCCGCGCCTTCTTGTCCTTAACGGGCCGCTCGCAACAGAGTTGGGCCTCGATCCTGCTTTCCTGGAAACCCCGGAAGGGCTTCTTCTGCTGATTGGAAACCGTGTCCCTGCGGGTGCCACGCCGGTGGCGCAGGCCTATGCAGGCCATCAGTTCGGCTGGTATGCCCCGCGCCTGGGTGACGGGCGGGCCCTTCTGCTCGGTGAAGTGGCGCACCCGGACGGCCGGCTCCGCGACCTCCACCTCAAAGGCTCCGGGCGCACACCGTTCGCACGCGGCGGTGACGGCCTCGCCGTCGTCGGGCCCATGCTGCGTGAGTACATCGTGAGCGAAGCTATGCACGCCCTGGGCATCCCCACCACCAGATCCCTCGCCGTGGTGGCAACCGGCCGGCCGGTCCAGCGGGAAACCGTGCTGCCGGGAGCCGTGCTGGCGCGGGTGGCCAGCAGCCATCTGCGCGTCGGCAGCTTCCAGTACGCCCGGGCCGCGGATGACATCGGCCTCCTGCGCCGCCTCGCCGATCACGCAATCAGCCGCCATCACCCGGCCGCTGCTGAGGCTGAGAATCCCTACCTTGCACTGCTTCAGGCGGTCATCGCAGCCCAGGCCTCGCTGATGGCGCAGTGGATGCTGGTGGGCTTTGTCCACGGTGTGATGAATACGGACAATATGACCATTTCCGGCGAGACCATAGACTACGGCCCGTGCGCCTTCCTGGATGCGTTCAACCCGGCCGCCGTCTACAGCTCCATCGACGAGGGCGGCCGTTACGCCTACCGCAACCAGCCGCTGGTGGCTGAGTGGAACCTTTCCCGGCTCGCCGAAACGCTCCTCCCGCTTATCCACAAGGACCAGGAGGAGGCGGTGGCGCTTGCTGTTGAAGCTCTGGAAGCCTTCCGCGGGCAGTACAGTGCAGCCTGGTCTGCAGGCATGAGGGAGAAGCTGGGACTGCACCACAACGCCGACGACGACGCCGCCTCACCTCTCGTCGATGAGCTGCTGGCGCTCCTCCAGGAAAGTCCGGTGGATTACACCTTGTTCTTCCGTAACCTTGCGATGGCAGCCCGCGGCCAGGCAGAGCCCGCGCGGCGAATGATCCTGGACCTGGCGGCGTTCGATGCGTGGACGGAGCGCTGGCGCGCCTTGAACCCCGACGCCGACCTCATGGACCGGGTTAATCCCGCCTACATCCCGCGCAACCACCTCGTGGAGGAGGCCCTGGCCGCCGCTACAGACGGGGACCTGGATCCGTTCAGGCGGCTTCTTGGCGCAGTGACCTCACCCTACGAAGAGCGCCCCGGCCTGGAGCGCTATGCTGCAGGCGCGCCGGAAGACTTCGGCCCCTACCGGACCTTCTGCGGCACCTGAMAIPWRAEEAPDPRLLVLNGPLATELGLDPAFLETPEGLLLLIGNRVPAGATPVAQAYAGHQFGWYAPRLGDGRALLLGEVAHPDGRLRDLHLKGSGRTPFARGGDGLAVVGPMLREYIVSEAMHALGIPTTRSLAVVATGRPVQRETVLPGAVLARVASSHLRVGSFQYARAADDIGLLRRLADHAISRHHPAAAEAENPYLALLQAVIAAQASLMAQWMLVGFVHGVMNTDNMTISGETIDYGPCAFLDAFNPAAVYSSIDEGGRYAYRNQPLVAEWNLSRLAETLLPLIHKDQEEAVALAVEALEAFRGQYSAAWSAGMREKLGLHHNADDDAASPLVDELLALLQESPVDYTLFFRNLAMAARGQAEPARRMILDLAAFDAWTERWRALNPDADLMDRVNPAYIPRNHLVEEALAAATDGDLDPFRRLLGAVTSPYEERPGLERYAAGAPEDFGPYRTFCGTNANANANANA
D1-29_028041146oatAO-acetyltransferase OatAGTGACCTTACTTATCGATAGACCCGCGGCAGTGGCTGCTCCACGAACCACGGTGCTGCCCCGGCTCGATGGCCTGGACGTTCTTCGCGGTGCCGCGGTTGGTGCCGTACTTTTGGGGCATTCCTGGCCCGGATTATTCCAGGGTGCCGGCATAGTCGGCGTCATTGCCTTCTTCGTATTGAGCGGTTACCTGATCACCGGCGTGCTGCTTAACGACGTGGAGAGGCATCGCAGGATCCGGTACGGACGCTTTTACGCCCACCGCGCCTTCCGGCTGCTCCCGGCCCTGGTGGCTTTCCTGGGCGTCTACGCCGTGGTGGAGTTGACTGCAGATGTCCTCGGGGACAGGTCAAAGGGAATCATTGGCTATACCCTGCTGGCAGGTTTCGGTTACCTGAAGGACCTGCCGTTGCCCTTCGATGTCAGCATGGCCATCGGACCGCTCTGGACCTTGGCGGTGGAAGAACAGTTCTACCTGATTTGGCCGGCGCTGCTGCTCTTCGCGATGCGGCGCCACCGCCAGGGAAGGCTGCTGGGCTGGTCTGCCGCCGTCGTCCTGTTGCTCATGACCGCGAGTGTGCTGGCGATGCTGATCCTCGCCCCGCAACTTCACTCCCTGGTCTATGCCCTGCCCACGACGTGGGGCCTGGGGCTGATCGTAGGGTCCGGCGTGCGGCTGTACCGTGTCCATGTATTCGGCTGGTTCTCCGGCCACCGTCTCCGGCAGGCGGCGCTGCTGAGCTCAGTTCTTGTCCTGGCCACGCTGATTTTCGTCCCGAAAGCCAACGAGTCGCCGGCCTTCTTCTTCCTTGGCGGGCCGCTGGCCATGGCCGCCGCCGCCATCCTGGTGGTGCTGGCAGCCTCGCGAACACAGATGATGCCGGTGTGGACCCGCGCGTTGCAGGCCCTGGGCACAATTTCGTACTCCGCGTACCTCTGGAACTACATCGTCATTCTCTGGCTCAACGGCGGCTCGACGGCGGATCTGCCGCCACTGGTGGCGGTGTCGGCCATCCTGCTGACCCTCCTGGTGGCGTTTATCAGCTGGCACACCGTTGAGAGGCTGGGACGGATGGCCCGGGCCCGCTTTGACAGCTACTACGAGGAACGATGGAACAGCTCGCATGCCGCTGAAATGCGGGGATGAMTLLIDRPAAVAAPRTTVLPRLDGLDVLRGAAVGAVLLGHSWPGLFQGAGIVGVIAFFVLSGYLITGVLLNDVERHRRIRYGRFYAHRAFRLLPALVAFLGVYAVVELTADVLGDRSKGIIGYTLLAGFGYLKDLPLPFDVSMAIGPLWTLAVEEQFYLIWPALLLFAMRRHRQGRLLGWSAAVVLLLMTASVLAMLILAPQLHSLVYALPTTWGLGLIVGSGVRLYRVHVFGWFSGHRLRQAALLSSVLVLATLIFVPKANESPAFFFLGGPLAMAAAAILVVLAASRTQMMPVWTRALQALGTISYSAYLWNYIVILWLNGGSTADLPPLVAVSAILLTLLVAFISWHTVERLGRMARARFDSYYEERWNSSHAAEMRGNANANANANA
D1-29_028061425hypothetical proteinATGTCCCGTTCGCTGGATCAGTCGCGCCCTTTTCGGGCCGGGCGACACCGCGCAGACGCTGCGCACGCCATCACCACTCCACTCACCCCAACGAGTTCCCAAGCGGAAAAGCCAGACGCCGGGTCCTCCCCCGCGGGACCGGCATCCGGGGCACTGCGACGAAGCAGGGACAGGCGCCCGGCCTTCGAGGTGCCGCCCACGCCGGAATCGGCACCGGAATCGGTACAGCCCTCAGCACAGGAATCAGCACCCCCAGCAGCGCCCAGGGTGGAGGCAGCACCTCCGGCAACCGAAGCATTTCCCGTCGTAGTGTCCGCGAGTCCCGTTCCGGAAAGCGGACTCACTGCGGCACCCGCAGCCATGGCTGCACCGCCGGCCACTGCTGCTCCCACGGCTGCTCCCACGACGCTCCGGCGTGGGAGGGCCCGACGCGAGGGTACTGGGAAGCCCGAGGACGTTGCATCTGGTGCAGCCGCTAAGGACGGGTCGGCCCCGGCACTGACCCCGCAGAGAGCTGCCGCCTTCAGTTCCGATCCCCAGGCCATCCTGAGGAAAGCTGCTTCGGTTCGGGTTATGGGCCACCGGATGGCAGTCGTTACCGGCGCCCTGGCCGTGGTGCTTGCCGTTGGTACGGCCAGCCAAGCCACCGAACTGCCCTTTTTCGGCAAGGAGGCGTCCGCCCAGGATGCCCCGGCTGGAAAGGACGCAACCCGAGCCACCATGGGATCGCGGCCTACTTACGTGAACGGACGCACCACCCATGCGCCGAGCAGCTCCACTCCCCCAGGCATAGCGGGCACTGGGCCCGCGAAGACTACCCCCGGCACGGATGATGTTCCGGCGGCCGGCGATTCTCTCGCCTCCTCGCTGCCAACCGTCGCCGACCTTCCCATGCCGGTTGACGCGCCCACCCTGGCGGGCATTGCAGCTGCTTCCCCCGCCGCAGTTCCACCGTCAGCAGGCCCGTCCGTGAACCTTCAGCCCCCGGCCATGGCACCGACGACCCCCGCCGCACCACCGGCAGCGCAGGCGCCGGCGGGCACACCGGCCCCGGCGACGACTGCACTACCCGCATCACCGGCGCCAGCCCCGGCAGTTCCAGCACCCGCCACACCGGCTCCGGCCACCACCGCTGCACCCGCCCCAACGACGGCATCTGCGGCTCCCTCCCCGACTGCAACCGCCGTGCCATCCGCAGCCGATGACGGCGCGGCAGAAGAAGCAGTGGACACCCGCTCCTACGCCAGCGGCCGCCTGGCATCGTATGGGTGGGGTCCGGAACAGATGAATGCCCTCAATACCCTCTGGGACACGTCAACCAAGTGGCGGCCAAGCCAGGTGGACAGAGGCTTGAGCTACATCAAACAGCGCCACGGCTCTCCCGCAAAAGCCCTTGAGTTCCGCGCCGCCAACAACTGGTACTGAMSRSLDQSRPFRAGRHRADAAHAITTPLTPTSSQAEKPDAGSSPAGPASGALRRSRDRRPAFEVPPTPESAPESVQPSAQESAPPAAPRVEAAPPATEAFPVVVSASPVPESGLTAAPAAMAAPPATAAPTAAPTTLRRGRARREGTGKPEDVASGAAAKDGSAPALTPQRAAAFSSDPQAILRKAASVRVMGHRMAVVTGALAVVLAVGTASQATELPFFGKEASAQDAPAGKDATRATMGSRPTYVNGRTTHAPSSSTPPGIAGTGPAKTTPGTDDVPAAGDSLASSLPTVADLPMPVDAPTLAGIAAASPAAVPPSAGPSVNLQPPAMAPTTPAAPPAAQAPAGTPAPATTALPASPAPAPAVPAPATPAPATTAAPAPTTASAAPSPTATAVPSAADDGAAEEAVDTRSYASGRLASYGWGPEQMNALNTLWDTSTKWRPSQVDRGLSYIKQRHGSPAKALEFRAANNWYNANANANANA
D1-29_02807738hypothetical proteinATGGCTGAACACCGTCCTTCGGACCCCGCACTCTTCCCGGTCACTGTCGACGTCGTCGCCCTCACCGTGGCCGATAACACGCTCAAGGTCCTGCTTATTACCCGGCTTATTGAGCCCTTCCGCGGCAGGCTCGCCTTCCCTGGCGGCTTTGTGCTTGCCGGTGAGGATCTGCCAACCGCAGCCGCCCGCGAATTGGCGGAGGAAACAGGCGTCGAACAGGTCCCTGGGCATTTGGAACAGCTGGGGAGCTACGGGCCCAAGGGGCGCGACCCCCGGGGTGATGTGCTAACAGTGGCTCATTTACTGCTCGCTCCGAACTTCCCGGTGCTGTCTGCCGGAAGCGACGCCGAGCATGCGGCTTGGTATCCTGTCAGCCGCGTCCTGGACGGCGACCTGAAGCTGGCCTTCGACCATGAACGAATCCTCGCTGACGCCGTAGAACGGGCCAAGTCAAAGCTCGAATACTCACCGTTGGCGGCCGTCTTTTGCGGTGAAGAATTCACCGTCGCCCAGCTGAGGGCCGTTTATGAGGCCGTGTGGGGCAGCCGGCTGGATCCCAGGAACTTCCATCGCAAAGCCACGGGGACGCCTGGTTTTCTGGAGGATACCGGGCGGATGACCACGGGCGACGCCGGCCGTCCTGCTGCGCTTTTCCGTCTGGCCGCGCCGTCCCGGCCAGCTGCAGGGCAGCCAACGCGCGCCGTTCTCAACCCGCCCCTCATGCGGCCGCGTGACTGAMAEHRPSDPALFPVTVDVVALTVADNTLKVLLITRLIEPFRGRLAFPGGFVLAGEDLPTAAARELAEETGVEQVPGHLEQLGSYGPKGRDPRGDVLTVAHLLLAPNFPVLSAGSDAEHAAWYPVSRVLDGDLKLAFDHERILADAVERAKSKLEYSPLAAVFCGEEFTVAQLRAVYEAVWGSRLDPRNFHRKATGTPGFLEDTGRMTTGDAGRPAALFRLAAPSRPAAGQPTRAVLNPPLMRPRDNANANANANA
D1-29_028081071hypothetical proteinATGGCCCACATCAAGCGCTACCCCTGGATCAACCATTTCCTTGGCAGCCCCACCGGCTACGTTGTCCACCTTCAGAAGGGCTCCGTCCGGCACCAGGGAGTCGGGCAGGCTTTCTGGTACCGGCCCGCGAACTCCGTACTGAGCGAGATTCCCGTCGATGATCAGGAACTGCCCACCCTCTTCCACGCCATTACCCGGGACCACCAGGACGTCAGCATTCAGGCGAACGTGACCTACCGCTTCATAGATCCGGTGGCTGTGTCCAGCCGGCTCGACTTCGGCCTGCAGCCAGCTGGCGCTGGGCTGGCTACCGGGAGGGAACAGGTGGCCACCATCATCGGCCAGCTGTGTCAAAGCCACGCCATCGACCAGATTGCCACCACCACGCTCGCGGAGGCCCTGGAGCGTGGGGTCAGCCAACTGCGCACGGTGCTTTCCGAGGCCCTGCGGGCGGACACCCGGCTCCTGTCCACCGGCATCGAAATCCTTGGAGTCCAGGTTCTGGCGGTCAGGCCCGAGTCGGACGTCGAAAGAGCGCTTCAGACGCCAGTCCGCGAACAGCTCCAAGCGGAAGCAGACCGCGCCGTCTACGAACGCCGCGCTGTCGCCGTCGAACGTGAACGGACCATTTCCGAGAACGAGATGGCCAGCCAGATCGAACTGGCCATCCGCCGGGAGCACCTGGTGGCCCAGGAAGGCGCCAATGCCCGGCGTGCGGCAGAGGAAAAGGCTGCGGCAGGACTGATAGACACGCACGCTTTGGCCGAGCGGCAAGGCATCAGCGCAGACGCGGAAGCAAACCAGATCCGGCTAGTGGGCGATGCAGCCGCGGCCCGTGAGGCCGCCACTATGGAGGTTTACCGGGGCATGGAGCAGGCTACGCTGCTGGCTTTGGCACTGCGGGAGGCGGCGGGATCGCTGCCGAACATCGGCAATCTCACCATCACTCCGGATTTGCTGAGCGGTGCGCTGGCCGGGCTTTTCCGGGAACCAGCCGGCGGCCCCGCCCCTGTTGCTGCAGGCCCTCTGGCCGCTGGCAGCGCCGGTAGCACCCGCAGCACCCGCAAGTAGMAHIKRYPWINHFLGSPTGYVVHLQKGSVRHQGVGQAFWYRPANSVLSEIPVDDQELPTLFHAITRDHQDVSIQANVTYRFIDPVAVSSRLDFGLQPAGAGLATGREQVATIIGQLCQSHAIDQIATTTLAEALERGVSQLRTVLSEALRADTRLLSTGIEILGVQVLAVRPESDVERALQTPVREQLQAEADRAVYERRAVAVERERTISENEMASQIELAIRREHLVAQEGANARRAAEEKAAAGLIDTHALAERQGISADAEANQIRLVGDAAAAREAATMEVYRGMEQATLLALALREAAGSLPNIGNLTITPDLLSGALAGLFREPAGGPAPVAAGPLAAGSAGSTRSTRKNANANANANA
D1-29_02809897nadKNAD kinaseATGGCAAAACCGCGTTTAGTCATCGTCCACCGGCGGACCGAGCTCCAGGAACTTCTGGATCGGCACGCCACCCGGGGCCAGGCAGAATTCTTCCTCCGCACCCGGGGCCGCAGCCTGCAGGATGTCCAGGAGCGCCACGATCGGATCACCGCAGCCCTGGCCACGGTAAGGGCCGCGATTCCATCGGAGTGGCGCCAAGCCGAGGTAGAGCGCTCGGACCTGAGCCGGTTCCTGCTGACGCCGGAAGACATCGTCGCCGTGGTGGGTCAGGACGGACTGGTGGCAAACGCGGCGAAGTACCTCAACGGCCAGCCAGTCATCGGCATTGATCCCGAGCCGGGAGCAAATCCCGGCATCCTGGTCCGGCACACGCCGGCTGCAGCGGCAAAGCTGCTGAACAAAGCTGCCAGAGCGGACCCGGTGCCATGGAACTGTGCCGAACTCGCCACCGTGACAGCAGTCCTCGACGACGGGCAGGAACTCTCAGCCCTGAACGAGGTCTTCATCGGGCACGCCTCCCACCAGTCGGCCCGGTACCAACTCACCACCCATCACGGCCAGACGGAACGGCAGTCCTCGTCCGGGCTGATTGTCTCCACCGGCACAGGCGCCACCGGATGGTGCGCATCCATCGCCGTCGAGCGTGGAGGACGTGCCCTGCCGGCTCCTACGGACCCCCGGCTCGCGTGGTTCGTGCGCGAGGCCTGGCCCTCCCCCATCAGTGGCACGTCGCTGACCGAGGGTGTGCTGCAGGCCGGCGAAGCTCTCCGGATTACCGTGGCGTCCGATCAGCTTGTGGTGTTCGGCGACGGCATGGAAGATGACCGCCTCAGCGCTTCATGGGGGCAGGAAATCACAGTCCGCCTAGGCGAAAGGCCGCTACGGCTTGTGGGTTAAMAKPRLVIVHRRTELQELLDRHATRGQAEFFLRTRGRSLQDVQERHDRITAALATVRAAIPSEWRQAEVERSDLSRFLLTPEDIVAVVGQDGLVANAAKYLNGQPVIGIDPEPGANPGILVRHTPAAAAKLLNKAARADPVPWNCAELATVTAVLDDGQELSALNEVFIGHASHQSARYQLTTHHGQTERQSSSGLIVSTGTGATGWCASIAVERGGRALPAPTDPRLAWFVREAWPSPISGTSLTEGVLQAGEALRITVASDQLVVFGDGMEDDRLSASWGQEITVRLGERPLRLVGNANANANANA
D1-29_02810822hypothetical proteinATGACTGAAAACCCGCAACCAAAGCTTCTGCGCGGGCGGATTCCCGCGCAGGCCGTGATCGAGGAACTACTGGACCAGCAGGGTCACGTACCGCCCCGCACCACTCTGCAGCGGATCTTTGGCGCCAGTCCGCTCAGCCCGGACACCTGGCCCTGGTACAAGGGAGCGCTGGGAGAAATCGCCGTCGGAAAGATTCTCGAACGGCTGGGTCGGGAGTGGCTGGTTCTGCATGCCGTCCCCGTAGGAACGGGTTCCTCGGACATCGACCACATTCTCGTGGGTCCGGCAGGGGTCTTTACCGTCAACACAAAAAACCACTCCGGCCAGTCCGTTTGGGTGGCCGGGCGGACCTTCATGGTGGCAGGCCAGAAGACGCGGCACCTCTATAACGCGGAGCATGAAGCCGAGCGCGCGTCCAGGCTGCTCAGCACTGCAGTGGGCACCGCCGTCGACGTCGTTGGAATTGTTGTGGTCGTGAACCCAAAGAGCCTGACCGTCAAAACGCGGCCGAAGCAGGTGGCCGTACTTACCGACACCCAGCTGCTGGGCTGGCTCAACCGGTGCAGGCGCGAGCTTCCCCCGGAAGAGGTGGCCCAGATAGCCTCCGCGGCAGTGCTGCCCGGGACGTGGCACCGGAAGCCCGCCCCGCAGGACGATCGGAGAGTTCTGGAACAGAACTTCGAGGCACTCCGGCAGCGAGTGAACCAGGCCCGACGGCGGCGGGCTGCCTGGGTGCTGGGCGTTCCGGCAGCCGGATTCGTGATGCTGGCCAACGGCACCCAGACGCTTTCAGCGATTCTGCATTCGCTGGGCGGACGGTAAMTENPQPKLLRGRIPAQAVIEELLDQQGHVPPRTTLQRIFGASPLSPDTWPWYKGALGEIAVGKILERLGREWLVLHAVPVGTGSSDIDHILVGPAGVFTVNTKNHSGQSVWVAGRTFMVAGQKTRHLYNAEHEAERASRLLSTAVGTAVDVVGIVVVVNPKSLTVKTRPKQVAVLTDTQLLGWLNRCRRELPPEEVAQIASAAVLPGTWHRKPAPQDDRRVLEQNFEALRQRVNQARRRRAAWVLGVPAAGFVMLANGTQTLSAILHSLGGRNANANANANA
D1-29_028111266hypothetical proteinATGACAAACCCATATCTGAAAGTCATCGCCGGGATCGACACACACGCCGACACCCATTACGTCGCAATCATCGACGAGACCGGCAGACACCTCATGGACAAAGAATTTCCCGCCGTTGGGTCCGGCTACCGGAATATTGTCGAGTTCATTACCGGGTTCGGCCCGGTGGTTGCCGCCGGAGTGGAAGGCACCGGCAGTTACGGCGCCGAACTCGCCCGTGTCCTGACCAGGGAGGGCTTCCGGGTTCTGGAAGTCATGCGCCCGAACCGGCAGGGACGCCGGCTGCGGGGCAAATCGGACGCTCTGGACGCCTACCAGGCGGCAGAAGCCGCGCTGGCCGGCCGGAACGTCGCAACACCCAAATCCCGGGACGGCACGGTGGAATCCCTGCGGGTCCTGCGCGCCGAACGGGCGACGGCCATGCGCGCCAGGGTAGCGGTCATGGCGCAGATCAAAAGCATCCTTACGGCTGCACCCGAGGCGTTACGGGCCAAATACCGGCGGCTGGCCCGCGCCCCGATGATGGCCGCCCTGGAGAAAACCCGGCCGGCCGGAAACATGTCTGACCCGTTGATCACCACCGCGGCCGTGCTTAAACGCCTCGCGATCCGTTACCGCGCCCTGGATCAGGAACTGGCGGTCATTGATGCCGAGTTAGACGCGATCGTGACAACCCACGCGCCGATGCTCCGTGACCTGCACGGGGTCGGCACCGACGTGGCAAGCCAGCTCCTGGTCACCGTGGGCGACAACCCCGGACGGATCGGCACCGAAGCGCAGTTCGCAGCCCTCGTGGGCGTCGCGCCGATCCCCGCGTCCTCGGGAAAGACCATGCGGCACCGGCTCAGCCGTGGCGGCGACCGGCGGGCCAACAAAGCCATCCACCACGTTGCCCTGGTACGGATGATGAGCGACACCCGCACCAAAAATTACGTCGCCAGACGCCGGGCCGAAGGGAAAAGCACCAAGGAAATCATCCGCTGCGTCAAACGCTACATCGCCCGCGAAGTCTACGATCAGCTGATCCATCCACAACCAGCACCAGACGCCGGAGCCCTCCGCACCCTACGCCAAACGAAGAACATCACCCTCCAGGCCGCCGCGGACAGCCTCCATGTCTGGCCCACAGCACTGTCCCGGCTCGAACGCGGACTCACCCGCCACGACGACTTCTACCAACACTACGAAACCTGGCTCAACTCTCAATCCCAAAAACCGCGAAGAGGCACCCGGGAGGTTGCAGGACTGACCGGGCAGTTTGCCTAGMTNPYLKVIAGIDTHADTHYVAIIDETGRHLMDKEFPAVGSGYRNIVEFITGFGPVVAAGVEGTGSYGAELARVLTREGFRVLEVMRPNRQGRRLRGKSDALDAYQAAEAALAGRNVATPKSRDGTVESLRVLRAERATAMRARVAVMAQIKSILTAAPEALRAKYRRLARAPMMAALEKTRPAGNMSDPLITTAAVLKRLAIRYRALDQELAVIDAELDAIVTTHAPMLRDLHGVGTDVASQLLVTVGDNPGRIGTEAQFAALVGVAPIPASSGKTMRHRLSRGGDRRANKAIHHVALVRMMSDTRTKNYVARRRAEGKSTKEIIRCVKRYIAREVYDQLIHPQPAPDAGALRTLRQTKNITLQAAADSLHVWPTALSRLERGLTRHDDFYQHYETWLNSQSQKPRRGTREVAGLTGQFAPGPT0030635_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-29_028121110yhcG_1COG4804Putative nuclease YhcGATGTCTTCCCCTGCGTCTTTCGAATCAACGCCAGCGGCTTCCGGAATGCCGGACTGGTACCCGGAGTTATTGCAGTCCGTTGCCCAGGAGATCAGCTCAGGCCGATACCGGGCAGTTTCGGCGGCCAACCAGGAGCTCGTGCACTCGTACTGGTCCGTTGGACGCGAGCTGCTGGAGCGTGAATCGAAAGAAGGCTGGGGTTCGAAGGTTGTCACCCGGCTGTCCGCGGACCTTCGGGCCAGGTTTCCTGACGCCCGCGGCTTCTCTCCCCGGAATCTTCGCTATATGAAGGCCTTTGCCAGCGCATGGCCGGACATCGCAATGTTGCAGATGGCGTCTGCAACATTGCCCTGGAGCCACCATGTGATGCTGCTGGAGAAGCTGGCCGTGCCTGAGGAAAGGCTCTGGTACATGGCCTGCGCCATAGAGGAAGGGTGGTCCCACAGCTTTCTGGGTCAGCAAATCGAAACGCGGCTGTATGAACGTTCCGGCAAGGCCATTACCAACTTTAAGTCAACGTTGCCGCCGTCGGACTCTCATCTGGCCCAGCAGTCGTTCAAGGACCCATACGTCTTTGACTTCGTCTCCATGACGGGCAACCGAAACGAACGCGAATTCGAGGGCCGACTTATTCTGCATGTGGAGAAATTCCTGCTGGAACTGGGCCAAGGCTTCGCGTTCGTGGGCCGGCAAGTGCGGCTGACCATTGGCGCCGACGAATTCTTCGCTGACCTGCTGTTCTACAACTTCAAGCTGCGTTGCTTCGTGGTGATCGAACTCAAAGCCACCGCATTCAAGCCCGAGTATCTGGGTCAGGTCAACATGTATATGTCGGCCGTTGATGATCTACTTGCACACGCCCAGGACCAGCCGACCATCGGGCTTTTGCTCTGCAAAACCAAGAACAATGTGGTGGCAGAGTATTCCCTGCGCGGCTTCTCCAAGCCCATTGGTATTGCCGAGTGGGAGTCCGAGATCGTGCGGGCTTTGTCTGAGGAGTTCACCGCAACACTGCCCAGCATCAGCGAACTTGAAGCGGAACTTTCGCAACAGCTATTGGGCGACGGCGGCTCCACGGTGGTCGCCCTGGGGGATGGAGCCCCAGCGTGAMSSPASFESTPAASGMPDWYPELLQSVAQEISSGRYRAVSAANQELVHSYWSVGRELLERESKEGWGSKVVTRLSADLRARFPDARGFSPRNLRYMKAFASAWPDIAMLQMASATLPWSHHVMLLEKLAVPEERLWYMACAIEEGWSHSFLGQQIETRLYERSGKAITNFKSTLPPSDSHLAQQSFKDPYVFDFVSMTGNRNEREFEGRLILHVEKFLLELGQGFAFVGRQVRLTIGADEFFADLLFYNFKLRCFVVIELKATAFKPEYLGQVNMYMSAVDDLLAHAQDQPTIGLLLCKTKNNVVAEYSLRGFSKPIGIAEWESEIVRALSEEFTATLPSISELEAELSQQLLGDGGSTVVALGDGAPANANANANANA
D1-29_02813648hypothetical proteinATGCTCGACGCTGAGGGACAATATTGGGGGACTATGCGAAGTGGAATCATCAGTGCGGCCGGTTTGATGTCGGCCGCGGCTATCCTCAGCGGGTGCTCAGGGCCGGTCGACGAGATGGGCTTTCAAGATGCTACGGCTGCGGAATCAAGCCTCTCGGCCCCCGCTGCTGCTGGCCCGGAGTCAAAGGCATACGCGGTAGCACCTGATGTGGATCCCTCTGCGGCCGAAGCCTGCGCTGCACTTAACGTGGGTCCCGAGGTTTATGCCGCTATCGGAAAATCCACCCTCAGCGCTGAAAGCACGACAAAGGACGTGGTCAAAGGCGTCGTCTGCTCCTTCGCCACGGTTGACCACTCCATGAGCACCCCGAACTCTCTCACAGTTGGTATGCGGAAAAACACGCGCAATTTATATAAGAAAATTGCTCCTGACTCCATCCCCGGCTGGACCAGGCGAGACATTCCCGGACTTGGCGACACGGCAAGGTTCTATGAATTCGGTCCTACCGCTGAGGACGCGAACCACATGCTGCACGTCCTCGAAGACAACCGGATAGTCGCTCTTACGGCAGTGTTCACCACCGCTCCCGACAGCGCCGACCTCTCGGCATCCCGCTATACGGCCATCGTCAAGAAAATCCTCGGCTAAMLDAEGQYWGTMRSGIISAAGLMSAAAILSGCSGPVDEMGFQDATAAESSLSAPAAAGPESKAYAVAPDVDPSAAEACAALNVGPEVYAAIGKSTLSAESTTKDVVKGVVCSFATVDHSMSTPNSLTVGMRKNTRNLYKKIAPDSIPGWTRRDIPGLGDTARFYEFGPTAEDANHMLHVLEDNRIVALTAVFTTAPDSADLSASRYTAIVKKILGNANANANANA
D1-29_02814642hypothetical proteinATGGATAAACCTGCAGCTTCCCCGAAACGCGCGCCGGCCGACCGGCCACTGCTGGTTGCGGACCGTCCCTGGGCAAATCCGCCCTCTGTGGACCGTGTGTCTCATCACAAGCATGTTCCGGCCACCTCTGAAAAGTTGGCTGCAACAACTTCCGATCGGAGTGATGTTAGGGCTTACGGTACAAGCATGACTACTGATACCCCTAAGGCCACCGTCCGCCAACTCCGCCTCGTCGTGGAGGCCCAGGACTATGAAGAGGCCCTGATCTTCTATCGCGATGTACTGGGCCTCCCCGAGCAGGAAGCCTATGAAGGAGAGGGCGACGCGCGGGTCACAATACTTGATGCCGGGCGTGCCACCCTTGAGCTGTCCAACCCGGCCCAGGTAAAACTCATCGACCGGGTGGAAGCTGATGGCCAGCCCAGTGCCAGGCTCCGGGTGGCCTTCGAAGTGGAGGACACAGCGGCTGTAACAACTGAGCTTGTGGAAGCGGGAGCTGAATTAATCGCCACGCCGCGGGAAACCCCGTGGCGGTCGTTGAACTCCCGGCTTTCGGCGCCGGCCGGCCTTCAGGTGACGCTGTTCCAGGAACTCGAACCGGCCACCGACCGTGTCCACAACCCAGGCTTCAAAAACCCCTGAMDKPAASPKRAPADRPLLVADRPWANPPSVDRVSHHKHVPATSEKLAATTSDRSDVRAYGTSMTTDTPKATVRQLRLVVEAQDYEEALIFYRDVLGLPEQEAYEGEGDARVTILDAGRATLELSNPAQVKLIDRVEADGQPSARLRVAFEVEDTAAVTTELVEAGAELIATPRETPWRSLNSRLSAPAGLQVTLFQELEPATDRVHNPGFKNPNANANANANA
D1-29_02815693gpmBphosphoglycerate mutase GpmBATGGCGACAGTTCTTCTCGTGCGGCACGGACGCACCACAGCCAATGCCACTGGACTGCTGGCCGGTCGAGCCGCCGGTGTCAGTCTGGACGAGATCGGGCGCGAGCAGGCGGCTTTGACCGGAGAGCGGGTCGCGGCAGTTCCCCTAGTTGGGGTGGTATCGAGCCCTCTGGAGCGTTGTCAGCAGACCGCCCAGATCATCGTCGATCGCCAGGCTGGAACTCCGTATGCGCCGTTGGAACCCGATCTTACCGAGTGCGATTACGGCCAGTGGCAGGGCCGCACGCTCAGTGACCTCGCAACCGAACATCTGTGGTCGGCTGTGCAATCGCAGCCGTCCGCCGTCATCTTTCCCGGCGGTGAATCCATGGCTGCCATGCAGGCCCGGGCGGTAGCAGCCATTCGACGCCATGATGCAGCCTTCGAAGCCGAGTACGGGCCAGGAGCCGTATGGATGGCGGTGAGTCACGGTGACGTCATCAAATCGATCATCGCCGACGCGCTAGGCATGCACCTCGACCTGTTCCAGCGCATTAACGTGGGCCCTGCCTCCGTATCGATCGTGCGCTACAGCGCCAGTCGGCCAAGCGTCTACGCGACCAACACCGACGCCGGGGATCTGTCCTGGCTGTCGAACGCCATCCACTCCGGCGATGCGCCGGTGGGCGGCGGTGCAGGGCAACAGGCACCGTGAMATVLLVRHGRTTANATGLLAGRAAGVSLDEIGREQAALTGERVAAVPLVGVVSSPLERCQQTAQIIVDRQAGTPYAPLEPDLTECDYGQWQGRTLSDLATEHLWSAVQSQPSAVIFPGGESMAAMQARAVAAIRRHDAAFEAEYGPGAVWMAVSHGDVIKSIIADALGMHLDLFQRINVGPASVSIVRYSASRPSVYATNTDAGDLSWLSNAIHSGDAPVGGGAGQQAPPGPT0018030_2398DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018030-gpmA-K01834NANA
D1-29_02816555hypothetical proteinATGCCTACACGTGTTCATGAATTTGCCTGGCCTGATCGGGTCGTCGTTGGAACCATCGGCGTTCCGGGGTCGCGTACGTTCTACCTGCAGGTGCGGGCAGGGACCCAGATCGTAAGTATTGCCATGGAGAAGCAGCAGTCGGCTCTGCTCGCAGATAAAATCGACGAAATTCTCGACCGGCTTCTCAGCGTCGAGGGAAACCCTCACAGCGTTCCCACAAGCACTCCCATCGAACTCGTCGACAATGACCAGCTCGAGGCGGTGGAGGAGCAGTTTCGAACCGGGACCATGACCTTACGTTGGGACCCGACGACGGCTCAGGTCGTCATCGAGGCCTACCCGATCGCCGAAGTCGACGCTGATAACGACGACGAATCGCTTGATGAGGATGACGCTGATGTGCCCGAAATGCTGCTGGTGCGGATGCCGGTTGGCACCGCCCGCGCATTTGCTAAGCGCACGCGTGAGGTTGTGGGCGCTGGGCGTCCCGCGTGCCCGCTCTGCGGTTACCCGGTGGACCCAGACGGACACGTCTGCACCCTTCCCGAGGTCTGAMPTRVHEFAWPDRVVVGTIGVPGSRTFYLQVRAGTQIVSIAMEKQQSALLADKIDEILDRLLSVEGNPHSVPTSTPIELVDNDQLEAVEEQFRTGTMTLRWDPTTAQVVIEAYPIAEVDADNDDESLDEDDADVPEMLLVRMPVGTARAFAKRTREVVGAGRPACPLCGYPVDPDGHVCTLPEVNANANANANA
D1-29_02817768hypothetical proteinATGCCGGCGCCCGACCTGCTGACTGCCGAGCTGACGCTCACCGGACGCATCACGACGGCGTCGAACGCCACCTTCCTGGGCAGCATCGGCGACACGACGGTCGTCTATAAGCCCATAGCTGGGGAAAAACCGCTTTGGGACTTTCCCGACGGCTTCCTTGCACACCGTGAGGTTGCCGCCTACCTGGTCTCGGAGGTTCTTGGCTGGAACGTGGTGCCACGCACCTGGCTGCGCGATGGTCCGTTCGGCATGGGAATGGTGCAGCTCTGGCAGGAGACAGACCCCGACCAGAACGCGGTGGACCTCATTGCGTCGGACGACGTACCGGAGACCGGTTGGAAACACGTCCTCGAGGGTCAGGATGAGAACGGACGGATGGTCGCCCTCATACACGAGGACTCTACGGCGCTCAGACGCATGGCGGTGTTCGACGTCGTCGTGAACAACGCCGACCGCAAAGGCGACCACATCCTTGCCATGACGGACGGACACCGGCACGGCGTTGACCATGGGCTTACCTTTCACCGCGACCACAAGCTGCGCACGGTGCTGTGGGGGTGGCTGGGAGACGTTCTGACCGTCGAGGAACTTGAGGGGCTCGACCGTGTCAGCGAAGGACTGGAGGGTGAGCTGGGCCGAAACCTGGCGGACCTGCTCAGCGCCGAAGAAATTGCGTCGGTCGCCGCACGCTGCGCCCGGTTGCGTTTGGCGGGTCGGTTCCCGGCTCCCAGCGGTGAAATGTCGGCGGTGCCCTGGCCGCTGTTCTGAMPAPDLLTAELTLTGRITTASNATFLGSIGDTTVVYKPIAGEKPLWDFPDGFLAHREVAAYLVSEVLGWNVVPRTWLRDGPFGMGMVQLWQETDPDQNAVDLIASDDVPETGWKHVLEGQDENGRMVALIHEDSTALRRMAVFDVVVNNADRKGDHILAMTDGHRHGVDHGLTFHRDHKLRTVLWGWLGDVLTVEELEGLDRVSEGLEGELGRNLADLLSAEEIASVAARCARLRLAGRFPAPSGEMSAVPWPLFNANANANANA
D1-29_02818975nrdF2COG0208Ribonucleoside-diphosphate reductase subunit beta nrdF2ATGACCGAGAAGGTCAAGCTGCTGACGCATGTCGAAGCAATCAACTGGAACCGCATCCAGGACGACAAAGATGTGGACGTCTGGAACCGCCTGGTCAACAACTTCTGGCTGCCGGAGAAGGTGCCGCTGTCCAACGACGTCCAGTCGTGGAACACGCTGACCCCGGCTGAGCAGCAGCTCACCATGCGTGTGTTCACTGGCCTGACACTGCTGGACACCATCCAGGGCACCGTCGGCGCTGTCTCTTTGATCCCCGATGCGCTTACCCCGCACGAGGAAGCCGTCTACACGAACATCGCGTTCATGGAGTCCGTACACGCCAAGAGCTACTCCTCCATCTTCTCCACGCTGGCTTCCACCAAGGAGATCGACGAGGCGTTCCGCTGGTCCACCGAGAACGAGAACCTTCAGAAGAAGGCCCAGATCGTCATGGACTACTACCAGGGCGATGACCCCCTGAAGCGCAAGGTGGCCTCCACCCTGCTGGAGTCCTTCCTGTTCTACTCGGGCTTCTACCTGCCCATGTACTGGTCCTCACGTGCCAAGCTGACGAACACGGCTGACCTGATCCGCCTGATCATCCGCGATGAGGCTGTGCACGGCTACTACATCGGCTACAAGTTCCAGAAGGGCCTCGAAGGCCTGTCTGAGGAGCGCAAGCAGGAGATCAAGGACTACACGTTCGAGCTGCTCTTCGAGCTGTACGAGAACGAAGTCCAGTACACGCATGACCTCTACGACTCCGTTGGCCTGGCCGAGGACGTCAAGAAGTTCCTGCACTACAACGCCAACAAGGCGCTGATGAACCTGGGCTACGAGGCCATGTTCCCGGCATCGGTGACCGACGTGAACCCGGCCATCCTCTCAGCGCTGTCCCCGAACGCCGACGAGAACCACGACTTCTTCTCCGGGTCCGGTTCTTCATACGTGATCGGCAAGGCCGTCAACACTGAAGACGAGGACTGGGACTTCTAGMTEKVKLLTHVEAINWNRIQDDKDVDVWNRLVNNFWLPEKVPLSNDVQSWNTLTPAEQQLTMRVFTGLTLLDTIQGTVGAVSLIPDALTPHEEAVYTNIAFMESVHAKSYSSIFSTLASTKEIDEAFRWSTENENLQKKAQIVMDYYQGDDPLKRKVASTLLESFLFYSGFYLPMYWSSRAKLTNTADLIRLIIRDEAVHGYYIGYKFQKGLEGLSEERKQEIKDYTFELLFELYENEVQYTHDLYDSVGLAEDVKKFLHYNANKALMNLGYEAMFPASVTDVNPAILSALSPNADENHDFFSGSGSSYVIGKAVNTEDEDWDFPGPT0021345_3249DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526NANA
D1-29_028192223nrdE2COG0209Ribonucleoside-diphosphate reductase subunit alpha 2TTGGACACGACTGTCTCAGACACAGAAGTAACCAGGGCCGAAGGCCAGGGCACCCGCGCCGGGGCCGAAAAAAAGCTGGGCGCCGTCGTCGAGAAGCCCGAGATGCCTGCCGCCTACAAGGGCCTGGGCTATCACGAGCTGAACGCGATGCTCAACCTGTATGGCCCTAACGGCGAGATCCAGTTTGAGGCTGACCGCGAAGCTGCGCACCAGTACTTCCTGCAGCACGTGAACAACAACACCGTGTTCTTCCATGACCTGGAGGAGAAGCTCGACTACCTGGTGAAGAACCAGTACTACGAGCGCGAGACCCTCGACCAGTACACGATGAACTTCATCCGTGAGCTTTACAACCGTGCCTACAAGAAGAAGTTCCGTTTCGAGACCTTCCTGGGCGCGTTCAAGTTCTACACGTCCTATACCTTGAAGACTTTCGACGGCAAGCGTTTCCTGGAGCGCTACGAGGACCGCGTCTGCATGGTGGCCCTGCACCTGGCCCGCGGTGACGAGCAGCTTGCCCTGCAGATGGTGGACGAGATCATCGAAGGCCGCTTCCAGCCGGCCACGCCCACCTTCTTGAACGCCGGCAAGAAGCAGCGCGGCGAGCTGGTCTCCTGCTTCCTGCTGCGCATCGAAGACAACATGGAGTCGATCGGGCGTTCCATCAACTCCGCCCTGCAGCTGTCAAAGCGCGGCGGCGGCGTGGCGTTCGCGCTGACCAATATCCGCGAGGTGGGCGCTCCGATCAAGCAGATCGAGAACCAGTCCTCCGGCGTTATCCCCGTGATGAAGCTCCTCGAGGACAGCTTCTCCTACGCCAACCAGCTTGGTGCCCGCCAGGGCGCCGGTGCCGTGTACCTGCACGCGCACCACCCGGACATCTACCGCTTCCTGGACACCAAGCGGGAGAACGCCGACGAGAAGATCCGGATCAAGACCCTCTCACTGGGCGTTGTGATCCCGGACATCACGTTCGAGCTGGCCAAGAAGGACGAGGACATGTACCTGTTCTCGCCGTATGACGTCGAGCGCGTCTACGGCATGCCTTTCTCCGACGTTTCGGTCACCGAGAAGTACTACGAGATGGTGGACGATTCCCGGATCAAGAAGACCAAGATCAAGGCGCGTGAGTTCTTCCAGACCCTCGCCGAGATCCAGTTCGAATCCGGCTACCCGTACATCATGTTCGAGGACACCGTAAACCGGGCCAACCCGATCGACGGCAAGATCATCATGTCCAACCTGTGCTCAGAAATCCTCCAGGTTTCCCAGCCCACCACGTACAACGATGACCTGTCGTACGCAGAGACCGGCAAGGACATCTCCTGCAACCTTGGCTCGCTGAACATCGCCAAGACCATGGACTCGCCTGACTTCGGCCTGACGATCGAGACGGCCATCCGGTCCCTCTCTGCCGTCTCGGACATGTCAAACATCACCTCGGTGCCGTCCATCGCCAAGGGCAACGACCAGAGCCGCGCCATCGGCCTGGGCCAGATGAACCTGCACGGTTACCTTGCACGTGAGCGGGTGCACTACGGGTCCGAAGAAGGCCTGGACTTCACCAACATCTACTTCTACTCGGTGGTTTACCACGCCATCCGCGCCTCCAATAAGCTGGCCATCCAGACCGGGCAGACCTTCGGCGGCTTTGAGAAGTCCAAGTACGCGTCGGGCGAGTTCTTCGACAAGTACACGGAGCAGGAGTGGGTGCCGCAGACCGAGAAGGTCGCGGAGCTGTTCAAGAACATCCACATCCCCACCCAGGATGATTGGCGCGAGCTGAAGGCTTCCGTCATGGAGCACGGCATCTACAACCAGAACCTGCAGGCTGTCCCGCCGACCGGTTCGATCTCCTACATCAACAACTCCACCTCCTCGATCCACCCGGTGGCATCCAAGATCGAGATCCGCAAGGAAGGCAAGCTGGGCCGTGTCTACTACCCGGCGCCGTACCTCACCAACGACAACCTGGAGTACTACCAGGACGCGTATGAGATCGGCTACGAGAAGGTCATTGACACCTACGCCGCTGCCACCCAGCACGTGGACCAGGGCCTGTCCCTGACGCTGTTCTTCAAGGACACCGCCACTACCCGTGACATCAACAAGGCCCAGATCTACGCCTGGCGCAAGGGCATCAAGACCATCTACTACATCCGTCTCCGCCAGCTCGCGCTGGAGGGAACTGAGGTGGAGGGCTGCGTCAGCTGCATGCTTTAAMDTTVSDTEVTRAEGQGTRAGAEKKLGAVVEKPEMPAAYKGLGYHELNAMLNLYGPNGEIQFEADREAAHQYFLQHVNNNTVFFHDLEEKLDYLVKNQYYERETLDQYTMNFIRELYNRAYKKKFRFETFLGAFKFYTSYTLKTFDGKRFLERYEDRVCMVALHLARGDEQLALQMVDEIIEGRFQPATPTFLNAGKKQRGELVSCFLLRIEDNMESIGRSINSALQLSKRGGGVAFALTNIREVGAPIKQIENQSSGVIPVMKLLEDSFSYANQLGARQGAGAVYLHAHHPDIYRFLDTKRENADEKIRIKTLSLGVVIPDITFELAKKDEDMYLFSPYDVERVYGMPFSDVSVTEKYYEMVDDSRIKKTKIKAREFFQTLAEIQFESGYPYIMFEDTVNRANPIDGKIIMSNLCSEILQVSQPTTYNDDLSYAETGKDISCNLGSLNIAKTMDSPDFGLTIETAIRSLSAVSDMSNITSVPSIAKGNDQSRAIGLGQMNLHGYLARERVHYGSEEGLDFTNIYFYSVVYHAIRASNKLAIQTGQTFGGFEKSKYASGEFFDKYTEQEWVPQTEKVAELFKNIHIPTQDDWRELKASVMEHGIYNQNLQAVPPTGSISYINNSTSSIHPVASKIEIRKEGKLGRVYYPAPYLTNDNLEYYQDAYEIGYEKVIDTYAAATQHVDQGLSLTLFFKDTATTRDINKAQIYAWRKGIKTIYYIRLRQLALEGTEVEGCVSCMLPGPT0021340_4599DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
D1-29_02820561nrdIProtein NrdIATGGCAGCACTGGCAACAGCCGGGGCCTCCGTCAAGGAGAGGCACGCCGGCCCGGCAAACCGTACAGGCTCTGCACCGCACATTGACCCGGCGCACCGCGAGGGCAAAGTCCTGCAGGGCGGTTCACACCAGCCCGTCACAACGCAGAGCCAGCTCATCTATTTCTCCTCTACGTCCGAGAACACCAGCCGCTTTGTTGCAAAGCTTGGCCGGGACTCGGCCCGGATCCCGCTCCATTCCAAGGACGCGCCCCTCCTCGCCACCAGGCCATTTGTCCTGGTGGTGCCCACCTACGGCGGTACAGGGGGAGAAGGGTCGGTGCCCAAACAGGTCATCCGCTTCCTGAACAACCCGCAGAACAGGGAACTGATCCGCGGCGTCATCGGTGCCGGCAACACAAATTTCGGGGACAACTACTGCATGGCTGCGGACATCATCGCCGCCAAATGCCAGGTCCCGCCCCTCTATCGATTTGAACTCATGGGAACGCCGGAAGACGTTACCCGGGTCAACCAAGGATTGGATAAGTTTTGGACACGACTGTCTCAGACACAGAAGTAAMAALATAGASVKERHAGPANRTGSAPHIDPAHREGKVLQGGSHQPVTTQSQLIYFSSTSENTSRFVAKLGRDSARIPLHSKDAPLLATRPFVLVVPTYGGTGGEGSVPKQVIRFLNNPQNRELIRGVIGAGNTNFGDNYCMAADIIAAKCQVPPLYRFELMGTPEDVTRVNQGLDKFWTRLSQTQKPGPT0021340_1491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
D1-29_02821246nrdHCOG0695Glutaredoxin-like protein NrdHATGACCGTAACGGTTTACACAAAGCCGGCTTGTGTTCAGTGCAACGCAACCTACCGTGCGCTGGACAAAAAGGGCATCAACTACCAGAGCGTTGACATCTCACAGGACGCCGATGCTTTGGAGCGCCTGAAGGCTTTGGGCTACATGCAGGCCCCTGTTGTCGTCACCGACCAGGACCACTGGTCAGGCTTCCGCCCGGACAAGATCGAGGAACTGGCACTGTCTGCTGTTCCCTCCGTGGCCTAGMTVTVYTKPACVQCNATYRALDKKGINYQSVDISQDADALERLKALGYMQAPVVVTDQDHWSGFRPDKIEELALSAVPSVANANANANANA
D1-29_028221752hypothetical proteinATGGTGCTGCGCCTTCGGCTGATCGGCAGATTGAGCCTGGACCGTGATGGCCAGCCGATTCCCGGGCCCAGGGGTCAAAAGACCTGGGCTGTGCTGGGCAGGCTGGTCCGGTCGCCGCAGCCAGTTTCCCGCCAGCTTCTGGTGGACGAACTGTTCGCTGACGCCGATGATCCCATGGGGGCGCTGCGGTGGTCGCTGGCTGAGCTGCGGCGCAAGACGGGATTTCCCAACGCCTTCAGGGGCAACCCTGTGTCACTGGGTCCTGCAGCGGAGATGATGGCCGACGTACACGACCTCCAGCGGAGTATTGCGCAAGGGGACATTCCGGAAGGGCACTTCCTGGAAGGGATAGACGTCAGGGGATCTCCGGGTTTCGACTCCTGGCTCCTTGTCGAGCGCCAGAGGGTGGACAGCGAGGTACTCAACGAACTGCGGCAAGCCACGCTGCGGGCTCTGGCCGGCCGGCAGTTCGACCGTGCCGTGGCATTCTCTTCTGCAATGATTCGGCGCGCGCCTCTTGAGGAAGGTCCACACATTCTCCTGGTCAAAGCGTTGGCCTCATCCGGCAAGGCAGAAGCAGCTATCCGGCAGGCCGAGGCGAGCGAGGCGATGTTCGCCGGCGAGCTTGGAGTCAAGGCCACGCCGGCCATCCGCGCAGCCGCAAGGCCCGCCGTCGCTTCACCCGTACCCGGTGTGTCCGCGCGGGCCACCGCCGAGTCCCTGTGCGAGGCTGGTCTCGCAGCCGTATCCGCAGGGGCCGCCGACGCCGGAATCGAGTGCCTCCGCGGGGCATCCGCCGCTGCGGAGACCTCCGGCGACAAGGAACTGCTGAGCCGTTGCCTGACAGAGCTCGGTACGGCGCTCGTGCATTCGATTCGTGGATATGACGACGAAGGCGCTGTCATCCTTACAGAGGCCGCCGGCCTGGCCACTGCAGCCGGAGCGGAGTTAATCACAGCCAAAGCGTTGTCGGAACTTGCTTATGTGGACGTGCTGGCCGGGCGCCGTGCCAGCGCTGCCCACTACCTCGAAACTGCCCGTGGCCTGGCCACCGGAAATCCGTCCCTTACGGCGGCAATAGCGGGATTTGAAGCCATGAACCTCAGCGATTGGGGCCGGCTTGAAGCTGGAGCGGAGCGGTTTGGTGAAGCCGTGGAGCTGAGCCGGAGCGCCAACGCCGTCCGGCGTGAATCATGGAACCTGGGCCTTGGAGCACGCAGCCTTTTCATCCTGGGGCGCCTGGATGAGGCAGGCGAGTGGGCACATCAATCCTGCGACGTGGCCAGGAAGGATAGGTGGACGGCGTTCCGGCCCTGGCCTGAAGCCTGGCTGGGCCACATCCGCCTTGCCGGCGGAGAACCTCCGGTTGCGGTGCGCGAGCAGGCGGAAGCGACATTCGCGCTCGCCCGTCAGCTGCAGGACCCTTGTTGGGAGGGCCTGGCTGCAAAGACTATAGGCCTCACGCACTTGGCAGAAGGGAAAGCCGACGCGGCGCTGGAATGGATGAAGAACGCAGGACTCCTCTGCGGCCGTGTGACAGATTCGTACGCCTGGATGCAGGTTGAAATCCTGCTGGCGGAGGCCCAGGCCGCTTTGGAATACGGAGACACGGTCCGTGCGGAGTCCGTGGCGCGGCAGGCGGTGGCGGGAGCTGCAAGGGGAAGCATGGATGACCTCCTGGAACGTGCCGTCGGGTTGGTGGCGTCGCTCTCCGGAGCCAAGGGTTCAAGAACGGGAACCCCCAATATGTAGMVLRLRLIGRLSLDRDGQPIPGPRGQKTWAVLGRLVRSPQPVSRQLLVDELFADADDPMGALRWSLAELRRKTGFPNAFRGNPVSLGPAAEMMADVHDLQRSIAQGDIPEGHFLEGIDVRGSPGFDSWLLVERQRVDSEVLNELRQATLRALAGRQFDRAVAFSSAMIRRAPLEEGPHILLVKALASSGKAEAAIRQAEASEAMFAGELGVKATPAIRAAARPAVASPVPGVSARATAESLCEAGLAAVSAGAADAGIECLRGASAAAETSGDKELLSRCLTELGTALVHSIRGYDDEGAVILTEAAGLATAAGAELITAKALSELAYVDVLAGRRASAAHYLETARGLATGNPSLTAAIAGFEAMNLSDWGRLEAGAERFGEAVELSRSANAVRRESWNLGLGARSLFILGRLDEAGEWAHQSCDVARKDRWTAFRPWPEAWLGHIRLAGGEPPVAVREQAEATFALARQLQDPCWEGLAAKTIGLTHLAEGKADAALEWMKNAGLLCGRVTDSYAWMQVEILLAEAQAALEYGDTVRAESVARQAVAGAARGSMDDLLERAVGLVASLSGAKGSRTGTPNMNANANANANA
D1-29_02823324hypothetical proteinATGGCGGTGGCGGAGACTCAAGTTACGGACACCAACAGGAGGGTCATCATGGAACTGAATGAGATTCTGAATCACACCGCCGATCGTGTTGTGGCGGAAGGAACATATGCCGCCGCACGGACACTTGAGGCAATGGCGTCGGCAGCCGGTACTCTCAGCCCCGGCGCTGCCGCTGCGCTGGTTGATTGGGCCGGTCCGGAAGTAGCGCGGCTGCGGGCGTTCGGCCTGGTCCATGGACTATTGCTGCGCGAACTTCCGGCGCCTGCGCAAGCCCAACTTGCCGCGCAGCTGGTGGCTCCGTCAGCACTGGTGCTGGCTGCCTGAMAVAETQVTDTNRRVIMELNEILNHTADRVVAEGTYAAARTLEAMASAAGTLSPGAAAALVDWAGPEVARLRAFGLVHGLLLRELPAPAQAQLAAQLVAPSALVLAANANANANANA
D1-29_02824918hypothetical proteinGTGGTAAATCCCGTACATCTGAAGACACTCCTCGAGGTCACCCGGCTGGGCTCCTTCGCGGCGGCCGCCGTCCGGCTGGGCTACACCGCGTCCGCCGTGTCCCAGCAGATGACCGCCCTGGAAAGAGATACGGGAGTGGTCCTCTTCCAGCGCTCCGCCCGGAGCGTTGTACCCACGGAGGCGGCCGTGGTGATGAGCCGGCACGCAGCCAAGGTACTGACAGACATCGAGGCCCTGATGGCTGCGGCGTCCAAAGCCCAAGACGCCACCCGCCAGGAACTCCGGCTGGGCATCTTTCCCAGCCTGGCCACGTACGTCCTCCCCCGGATCCTCAAGAACCCCGCGTGGAAGGAACTCGGCATCGACCTCAGGGTTTCCGTGGCGGAACCGGCCCAGACCATCCAGGGGCTCCGGACCGGCGGGGAACTGGACGTGGCGCTGGTGTTCCAGGTGGGCCAGTCCGGACTGGCCTGGCCGCACACCATCAACCGGCAGTGGATCGGCGACGACAATTTCCGGGTGGTTCTTCCGAAGGGCTGGGGCTTCGGCACCGACGCCAAGGTCGCGGCGGACCATTTGTCCGAGATGCCCTGGATCATGCATCACCCGGGAACCAGCGATGCCGTTGTCATCGAGCGCCTGTTCGCCAGCTGCAACCTGCATCCGCGCGTGGTGGCCTACAGTGACGACTTCCACGCCAGCCTGGAAATGGCGGCCGCCGGACTCGGTGCTGCCCTTGTCCCGGAACTCGCCCTGCTTCACCGCCCGGCCGGCGTTGTGGTGCTGGACGTCCCCGAAATCCGCCTCGCCCGCAACGTTTTCGCGCTCCTGATCAACGAAACGAAAACAGCCCGCGTCCAGCTTTTTGTTGACCTGTTGGCGGAAACTCTGGCTGGTTTGGGAACTGCAGGGAAATAAMVNPVHLKTLLEVTRLGSFAAAAVRLGYTASAVSQQMTALERDTGVVLFQRSARSVVPTEAAVVMSRHAAKVLTDIEALMAAASKAQDATRQELRLGIFPSLATYVLPRILKNPAWKELGIDLRVSVAEPAQTIQGLRTGGELDVALVFQVGQSGLAWPHTINRQWIGDDNFRVVLPKGWGFGTDAKVAADHLSEMPWIMHHPGTSDAVVIERLFASCNLHPRVVAYSDDFHASLEMAAAGLGAALVPELALLHRPAGVVVLDVPEIRLARNVFALLINETKTARVQLFVDLLAETLAGLGTAGKNANANANANA
D1-29_02825507hypothetical proteinATGAACAGGGTAGCGAGCCAGCACTTCGGCGAGATCGAGCTCAATCACGGCCGGGATCACAATATCGCCGCCAAACATGAACTGCGCGGCCATGAGCTGGAGCTCGACCTGAACATCAACGCGCATGACCACTTCGATGAAGCGGCCATGCACAAAGTGGACTACCGTCTCCGCTACCTTCCCGAGCTCGTTGACGAGGTCCGGGAAATGATTGCGGAGGAGCTGGAGCAGGAAGGCACCAGCCCGCAGGAGTACCTTCGTTTCCACTGCAACGCCCTCAAGGATGAACACCTGAAGAAGGTCTTCGGCGTCGAGGACCGCAGCCAGCTCACCAATGCTGTGTTCCTCAAAGCGCTCAAGCTTGGGCACGTGGGCATCTTCCCCGGCCAGCCCGAACGTTATTTCGTGCTTGATTTCACGCTTGGCGCGCATTTCACCGACGAGGTCCTGGTGGCCTCCGCGGATGAAGACGGCGTGGTGGACGACGAAATTCTCTGGGAGTCCTAAMNRVASQHFGEIELNHGRDHNIAAKHELRGHELELDLNINAHDHFDEAAMHKVDYRLRYLPELVDEVREMIAEELEQEGTSPQEYLRFHCNALKDEHLKKVFGVEDRSQLTNAVFLKALKLGHVGIFPGQPERYFVLDFTLGAHFTDEVLVASADEDGVVDDEILWESNANANANANA
D1-29_028262343metECOG06205-methyltetrahydropteroyltriglutamate--homocysteine methyltransferaseATGCCTGAACAGACCATTCCCGCCACCCCTTTTCCCGCCGCATCAATCCTCGGTTACCCGCGTATTGGCCGCCGCCGCGAACTGAAGAAGGCCATCGAAGCCTATTGGGCCGGCAAGATCGACGCCGCAGCACTGGACGCGGCTGCAAAGGACATCCAGCTGGGCACGGCCAAGCGCCTCCAGAGCCTTGGCCTGACTGAGGCTGCCGCCGTTCCGGGCACCTTCTCCTACTACGACCAGGTGCTCGACGCAGTTGCCCACCTGGGCGCGGTGCCGGCACGCTTCGGCAACCTGCTCAACGCAGAGGGCCAGCTGGACATCGACGGGTACTTCACCCTGGCCCGCGGCACCAAGGACGAGCAGCCGCTGGAAATGACCAAATGGTTCGATACCAACTACCACTACCTGGTCCCGGAGATCGGCCCGGAAACCAACTTCGCGCTGACCTCCAACCGGATCGTTGAAGAGTTCGGGTACGCGCTGGCCAACGGCGTGGAGACCCGCCCATACATCGTGGGCCCGGTCACCTTCCTGCTGCTGAGCAAGGCTTCCGACGACGCCCCCGCCGGCTTCAGCCCGCTGTCCCGCCTTGAGGATGTCCTGCCGGTCTACGCCGCGCTGCTGGAGAAGCTGGCTGCCGCCGGTGCAAGCTGGGTCCAGCTGGACGAGCCTGCCCTGGTTGTTGACCAGGACACCTCCGCCGCAGACATCCAGGCCGCAGTGGCCCGCAGCTACGAGGTTCTTTCCGCTGCTGCCAGCCGCCCGCAGCTGTTCGTTTCCACGCCGTACGGTGCGCTGAACGAGCAGTTCAGCACCCTTGCCGCTACCGGCATCAACGCCCTGCACATCGACGTCTTCAAGGGTGCTGTTCCTTCCGCCGCCGAGCTGGCTGCCCTGGGCGGCAAGACCCTGGTGGCAGGTGTAGTGGATGGCCACAACATCTGGCGCAACGACCTGCTGGCATCGGCGGACAAGATCGCCGAGCTGCAGAAGTCCGTGGCCACGCTGGCCATCAGCACCTCCACCTCCACCCAGCACGTCCCGCACGACGTCGACGAAGAGGTCCAGCTGTCCGAGCAGCTCCGCAGCTGGCTGGCGTTCGCTGACCAGAAGGCTGTGGAAGTTGCCACCCTGGCAGGGCTCCTGACAGACGCGGCTGCTGTCCAGCCCGCCATCGACGAGGCCACACGCATCATTGCCTCCCGCGCCACCGCCGAAGGCGTCCAGCGCGCCGACGTCCGTGCCCGCACAGCAGCCCTGACCCCGGCCGACTTCAACCGCTCCGAGTACTCGGTCCGCGAAGCCGCCCAGGAAGAGGCGCTGCAGCTGCCGCCGCTGCCCACCACCACCATCGGCTCGTTCCCGCAGACGTCCGAAATCCGTTCCGCCCGTGCCCGCAACAACAAGGGCGATCTCACCAACGAGCAGTACGGGCAGCTCATGAAGGACGAGATCAAGCGCGTTGTGGCGCTCCAGGAAGAGTTGGGCTACGACGTCCTGGTGCACGGCGAGCCCGAGCGGAACGACATGGTCCAGTACTTCGCCGAGAACCTTGAAGGCTTCGACGTCACGGTGCACGGCTGGGTGCAGTCCTACGGCTCACGCTGCACCCGTCCGTCCATCCTCTGGGGCGACGTGACCCGCAGCGCCCCTATCACTGTGGAGTGGGCAAAGTACGCGCAGTCACTGACCAGCAAGCCCATGAAGGGCATGCTCACCGGTCCGGTAACCATCCTGGCCTGGTCCTTCGTCCGTGATGACCAGCCGCTGGGCAAGACCGCCAACCAGGTTGGCCTGGCGCTGCGCGACGAAATCGCAGACCTCGAAGCCGCCGGCATTAAGGTCATCCAGGTGGACGAGCCCGCCCTGCGCGAGCTCCTGCCGCTGCGCAAGGCCGATCAGGCTGCCTACCTGGACTGGTCCGTGAACTCGTTCCGCCTGTCCACCGCCGGTGCCGCGGATGCCACCCAGATCCACACCCACCTGTGCTACTCGGAGTTCGGCGCCATCATCGACGCCATTGACGGGCTGGACGCCGACGTCACCTCCATCGAGGCCGCACGCTCACGCATGGAGGTTGTCCACGACCTCGAGTCCCACGGCTTCGGCCGCGGCGTTGGCCCGGGCGTCTACGACATCCACTCGCCGCGCGTCCCGGGCGAGCAGGAAGTCACGGAGCTGCTCAGCACTGCCGTGAAGCACGTCCCGTCCCGCCAGCTCTGGGTCAACCCGGACTGCGGCCTGAAGACCCGTGGCTACGCCGAGACCGAAGAGTCCCTGCGCAACCTGGTCAAGGCAACCCAGACGGTTCGCGCCGAACTGCTGCAAGCAGCAAAGCAGTAGMPEQTIPATPFPAASILGYPRIGRRRELKKAIEAYWAGKIDAAALDAAAKDIQLGTAKRLQSLGLTEAAAVPGTFSYYDQVLDAVAHLGAVPARFGNLLNAEGQLDIDGYFTLARGTKDEQPLEMTKWFDTNYHYLVPEIGPETNFALTSNRIVEEFGYALANGVETRPYIVGPVTFLLLSKASDDAPAGFSPLSRLEDVLPVYAALLEKLAAAGASWVQLDEPALVVDQDTSAADIQAAVARSYEVLSAAASRPQLFVSTPYGALNEQFSTLAATGINALHIDVFKGAVPSAAELAALGGKTLVAGVVDGHNIWRNDLLASADKIAELQKSVATLAISTSTSTQHVPHDVDEEVQLSEQLRSWLAFADQKAVEVATLAGLLTDAAAVQPAIDEATRIIASRATAEGVQRADVRARTAALTPADFNRSEYSVREAAQEEALQLPPLPTTTIGSFPQTSEIRSARARNNKGDLTNEQYGQLMKDEIKRVVALQEELGYDVLVHGEPERNDMVQYFAENLEGFDVTVHGWVQSYGSRCTRPSILWGDVTRSAPITVEWAKYAQSLTSKPMKGMLTGPVTILAWSFVRDDQPLGKTANQVGLALRDEIADLEAAGIKVIQVDEPALRELLPLRKADQAAYLDWSVNSFRLSTAGAADATQIHTHLCYSEFGAIIDAIDGLDADVTSIEAARSRMEVVHDLESHGFGRGVGPGVYDIHSPRVPGEQEVTELLSTAVKHVPSRQLWVNPDCGLKTRGYAETEESLRNLVKATQTVRAELLQAAKQNANANANANA
D1-29_02827969metFCOG06855,10-methylenetetrahydrofolate reductaseATGTCACCCCCAAGCCTTATTGAAGCGCATCCAAATCTATCGGACACCACCACCCCTGTTGCGCTCTCCTACGAACTCTTTCCGCCACGCTCTCCGGCCTCGGCAGAGTCCCTCTGGAACACCATCCGGGAACTGGAGACCACGGACCCGGACTACGTCTCCGTTACGTATGGTGCCGGTGGCTCAAACCGGGACACCGCCGTCCAACTCATCCACCGGCTCCTGCTGGAAACCACGCTCCGGCCGGTGGCCCACTTGACCTGCGTGGGCAACACGCCGCAGGAACTGGCGGAGATCATCGGTGACCTGCTGGACACCGGTGTGCGCGGCATTCTGGCTCTGCGCGGCGACCGTCCGCAGGATGGCTCACCGCCAGTTATCGGCTCGCTCCGCTACGCCCAGGACCTGATCGAACTCATCCGCCGGGTGGAGCAGCGCCGTTCAGCATTGCTGTGCGCCGGCAAAATCGCCGTGGGTGTGGCTGCCTACCCCACCCGCCACCCGGAATCGCCCACCGAGGACCACGACGTGGAGGTGTTGCTTGCCAAGCAGCGCTCAGGCGCCGACTTCGCCATCACCCAGGTCTTCTTCCGTGCTGAGCAGTATGCGGACCTCCTCACCCGGGCCCGCCGTGCCGGGGTCACCATCCCGATCATCCCGGGCGTAATGCCCTTCACCAGCCTGCGTCGGGTCAACCGCCTGGCTGAACTCAGCGGCGTAGAGCCCGCACCGGAGCTCCTTGGCCGCCTCGCTTCTGCGGACACCGACGCCGAAAGGCTTAAGGTCGGCGTCCGGGCCACCGTGGATCTGGCGAAAGCCGCCCTCGATGCCGGTGCACAGGGAATCCACCTGTACACGTTCAACGAACACCAAAGCTGCTTGGAGGTGCTGGACAAGCTGGATCTTCCACGCCATTCCCGCTCCGCCAGCCGCCGAAGCGCCATCGCCCGGCGCCAGCTGGCCAGCTAAMSPPSLIEAHPNLSDTTTPVALSYELFPPRSPASAESLWNTIRELETTDPDYVSVTYGAGGSNRDTAVQLIHRLLLETTLRPVAHLTCVGNTPQELAEIIGDLLDTGVRGILALRGDRPQDGSPPVIGSLRYAQDLIELIRRVEQRRSALLCAGKIAVGVAAYPTRHPESPTEDHDVEVLLAKQRSGADFAITQVFFRAEQYADLLTRARRAGVTIPIIPGVMPFTSLRRVNRLAELSGVEPAPELLGRLASADTDAERLKVGVRATVDLAKAALDAGAQGIHLYTFNEHQSCLEVLDKLDLPRHSRSASRRSAIARRQLASPGPT0008160_592DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
D1-29_02828816hypothetical proteinATGATCCCTGGGACTGGAACCCCTGGTGGCGAGCCGCTGGGGACTGGAAGCCCCCACGGCGAGTTGCGGCGGCGCAGGCGGCGGCTCCTGTTGTGGTCCGGATTGCCCGTTCTGTTGGGGCTGGGCCTTTCGGCCAAGCTCATTAGTGCCGGATACCTGGCCGGTGCTGCCGCCCACGATTTTGACGCCCGTGATGGCGCCGGAGTGGCGGCAGCCGCGGCAGGACTACGGACCGCCAACTTTTTTGAAACCCATAAGGCGCCCTTCGCCGAGGGTGACGCGCTTGTCCTGGCAGGGGATTACACCGGTGCACGTCAAGGCTTCGAAGAGGCCCTCGCCCAGGCGGCACCCGAGGACGAATGCGTCGTCCGGGTCAACCTCGTGCTGAGCATTGAACGGCTGGGTGATGCCCGGCTAGTGGCAGAGGATGCCAACGCGGCAGGAAAGCTGTTCGAGGAAGGACTTGCGGTAGTGGACGCTGCTCCGGAGGGCTGCTTTCCGGCCGCATCAGGGACCGGAGAAACTGGGGGAGAAGGTGCCGGGGACGCTGCCGCAGAGGCCGGGCAGAAGCTGGAACAGGCAGAGCAGCGGCTTAAACAGAAATCGGAGGAGGCGAACGCCGGGAACAGCCAGCCGCAACAGCCCGGGACGGACGCCGGCCAGCCACCGCCGGAGCCTGATGCGGGAAGCGAAACCCAACTCGAACAGCTCAAGGACAGCACCCGGGAATCCCAGCGCCAGCGCAGTGACGGCAGGGAACGGGACGAATATCTCCGCGACGATGATTACGGACCGGGACCGGACCGGCCATGGTAGMIPGTGTPGGEPLGTGSPHGELRRRRRRLLLWSGLPVLLGLGLSAKLISAGYLAGAAAHDFDARDGAGVAAAAAGLRTANFFETHKAPFAEGDALVLAGDYTGARQGFEEALAQAAPEDECVVRVNLVLSIERLGDARLVAEDANAAGKLFEEGLAVVDAAPEGCFPAASGTGETGGEGAGDAAAEAGQKLEQAEQRLKQKSEEANAGNSQPQQPGTDAGQPPPEPDAGSETQLEQLKDSTRESQRQRSDGRERDEYLRDDDYGPGPDRPWNANANANANA
D1-29_028291110hypothetical proteinATGACCCTGCAACCGATTTTGCCGTGGTGGATCCTGGGACCCGTTATCGCTGTGGCGTTGCTCTTCCTGGGCTGGAGGCTGGTCCTTGCCGGCAGGCAGCGGCCCGGTGCTGTCCGGGACAAACAGGCTCTCCGGGACAAACTGGCTGTCCGGGACAAACAGGCTGTCTGGGACAAACAGGCGCGCGTCCAGCTGCGCGATTGGCTGTTCAGGAGCGCCCTGGTGTTGTTGCTCCTGGCAGCTGCCCTGCGTCCCGGTGTCCCGGGCGGATCGGCAGGGGCGGCATCAACGGACGTCAACGTCTTCTTTGTTGTGGACACCACCAGCAGCATCGTGGCGGAGGACTACGGGGATTCGGCCCCGCGGCTGGACGGGGTGCGCCAGGACATCATGGCCATCGCCGAGGAACTGGCCGGGGCGCGCTTCGCCCTGATCACGTTCGACAACACCGCCACGGTCCAAATGCCGCTGACCACCGACACCACCGCCCTGGACACCCTGGTGTCTGTCCTGGAGCCGCAGGTGACTGACTATGCCAAGGGCAGCAGCGTCACGGTCGCCGGTACCCTCCTCACCGAACGGCTCCGGGCCGCCCGCGACAGCCACCCCCAGCGGCCACGGATCGTTTATTACCTGGGAGACGGCGAACAGACAAGCGCCAAGTCCCCCGCGCCCATGAGGGTGGAAGGGGGACTGATAAACGGGGGAGCGGTGCTGGGTTACGGCACACCTGAAGGAGGCCGGATGAAGGAGAACACCGGACGCGGCACCGGGCAGGACTCCGACGGCGGATCGGCCTACATCCAGGACCGCAGCGGGGACGCCAGGAAGGATGCGATGTCCATCATCGATGAGGACCGGCTGCGGGACATTGCGGGCCAGTTGGGTGTGCCGTACGTCCACCGTTCAGCAGGCGATCCTTCCGGTCCCATGATGACGGGGGCCGATCCCGGGACGCTGCAGCGGGCGCCGGAGGACGGCAGCCTGGAGGGGCGGACCGAACTCTATTGGGCCCTTGCCGCGCTCGCGGCGCTGCTGGCGCTCAGGGAGTCGGCGCTGGTGCTGCGGCAGTGGAGGCAACTGCGGCCGGCTGAGGCGGTCCGGACATGAMTLQPILPWWILGPVIAVALLFLGWRLVLAGRQRPGAVRDKQALRDKLAVRDKQAVWDKQARVQLRDWLFRSALVLLLLAAALRPGVPGGSAGAASTDVNVFFVVDTTSSIVAEDYGDSAPRLDGVRQDIMAIAEELAGARFALITFDNTATVQMPLTTDTTALDTLVSVLEPQVTDYAKGSSVTVAGTLLTERLRAARDSHPQRPRIVYYLGDGEQTSAKSPAPMRVEGGLINGGAVLGYGTPEGGRMKENTGRGTGQDSDGGSAYIQDRSGDARKDAMSIIDEDRLRDIAGQLGVPYVHRSAGDPSGPMMTGADPGTLQRAPEDGSLEGRTELYWALAALAALLALRESALVLRQWRQLRPAEAVRTPGPT0014015_4762DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-29_028301038hypothetical proteinGTGGAACTGATGTTCTGGTGGATGATCCCCATAGCGGTAGCTGCTGCCGCCGTCGGAGGCTGGCTGGCCTTCCGGGCCGGTTCAGGGGACAACGCACGACGGCGGCCTGTCGCCAACGCTGACCGCCTCACGGCACTGCCCGAGTATCAGGCCGCTCTCCGGCGGCACAGACGCTGGCTGATTGTCGCCGCCGTCGCCGGCATCACCCTGCTGGTTTCGGCCGTAACAGCAGCGGCCAGGCCGGTTGAACTGACCACCATCCGCCCGGAGCAGCGCAACCGCGACATCATGCTGTGCCTGGACGCATCAGGCTCGATGAGCAGCGCAGACGCGGCGGTGGTGGACGTCTTCGGTGAGCTGGCGCGGGAATTTGACGGCGAACGGATCGGGCTGACCATCTTTGACAGCAGCGCCATCCAGGTGTTTCCGCTGACGGACGACTACGCGTACGTCCAGGAGCAGCTGAAACTGGCCCGCGACGCCTTCGACGGCACATCCGGCAGCTCAACGTTCCTCGAGGGCACCTGGAACGGACGCGGCTCGTCGCTGATCGGGGACGGCCTGGCCTCCTGCGTCGAGAGCTTTCCCGGCGCCGGCAAGCCCGAGGATGGCACCGCGGCCAAGGATCCTGAATGGGGTTCCCAGGGGGCCCAGCAGCGCTCGCGGTCGGTGGTGCTGGCCACGGACAATTTCCTGTCCGGCGAGCCCATCTTCACCCTTGAACAGGCCGGTGCGCTGGCGCGGGAGAAAGGCGTCCGCGTGTACGCACTGAACCCCGGTGACTTCGATTACGGGACCGACCCCACACAGCCCGGTGCCCAGCTCAGGGCTGCCGCGGAGGCCAGCGGCGGCTCATATCACGCGCTGGACAGCCCCGAAGCCGTGGCGGACATCGTCCGGACAGTCCAGCAAACGGAAGCCGCAGCGATGCAGGGTGCGCCCCGTGCAGTGGTGACGGACCTGCCGGACGTTCCCCTGACGCTGGCCCTGCTGTCCGGCCTGGTGCTGGCCGGGGCATCCTGGAGGCTGAGGCCATGAMELMFWWMIPIAVAAAAVGGWLAFRAGSGDNARRRPVANADRLTALPEYQAALRRHRRWLIVAAVAGITLLVSAVTAAARPVELTTIRPEQRNRDIMLCLDASGSMSSADAAVVDVFGELAREFDGERIGLTIFDSSAIQVFPLTDDYAYVQEQLKLARDAFDGTSGSSTFLEGTWNGRGSSLIGDGLASCVESFPGAGKPEDGTAAKDPEWGSQGAQQRSRSVVLATDNFLSGEPIFTLEQAGALAREKGVRVYALNPGDFDYGTDPTQPGAQLRAAAEASGGSYHALDSPEAVADIVRTVQQTEAAAMQGAPRAVVTDLPDVPLTLALLSGLVLAGASWRLRPPGPT0014015_4721DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-29_02831471hypothetical proteinGTGCAGGATGACCCCGGCTTCTATCCGCCCCTCCAGTACAGCGCGGTGTGGATGTGGCTTGGTCTTGCACTGCTGGCACTCGTTATGGGCTGGTACGCCTGGGTCTTCCTCAGCACCCGGGAACCACGCCAACAGCCCGTAGCGCCCCGGTTCACGCCGCCGTCGGATGTTGCCGGGCTCAAGGAGGCATATCTGCGGCGGATCGATGCCGTGGCCGCCGACGCCGAGGCCGGCCTGCTGACCGCCAGGGAATCGCACCAGGAGCTCAGCCTGCTCGTACGGAAATTCGTGCGGGATGTCACGGGCGTGGACGCGCCCAGGATGACCCTTGCGGAGCTCCAGCGGCACCCGCTGCCCGTGGCCGCCCACGCCGTCAGCCGGATCTATCCGGGGGAGTTCGGGCCCGGGCCGCTGCCGCCTGTTGCCCGCTCTGCCGAGTCTGCCCGCGAGGCGGTGCGGTTGTGGAACTGAMQDDPGFYPPLQYSAVWMWLGLALLALVMGWYAWVFLSTREPRQQPVAPRFTPPSDVAGLKEAYLRRIDAVAADAEAGLLTARESHQELSLLVRKFVRDVTGVDAPRMTLAELQRHPLPVAAHAVSRIYPGEFGPGPLPPVARSAESAREAVRLWNNANANANANA
D1-29_02832885hypothetical proteinGTGGCAAGCCTCCTTCAGCGCGTGAAGGCGAAGATGGCCATCTTCGCCCACCGGAAAGCCCGCGGCATGCTCGACGGCGAGTACGGCTCGGTTTTCCGCGGCCGCAGCCTCGATTTCGATGACCTCCGGGCCTACATCCCCGGGGACGAGGTACGGGACATCGACTGGAAGGCCTCCGCCCGCTACGGGTCCCCGCTGATCAAGCGGTACGTGGCCGTCCGGCGGCAGACCGTGCTGCTGATTACCGATACCGGGCGGAACATGGCCGCGGAGTCCCGTGACGGTGAGCCGAAGAAAGACATTGCCGTGATGGCCCTGGGAGTCATTGGCTACCTGGCGCACCGGCACGGTGACGTGGTGGGTCTGGTGTGTGGTGACGCCGAGAGCACGCGCTCCATCCCGGACAAGGCGGGGGAGGCCCATCTGGAACGCCTCCTGGGCATGGTCCACTCCGGCCCCGGCCTGGACTCCGGTGCCAGCCGGATCGAGGCGCAGCTGGAGTATGTTGCCCGGAACGTCAAGGGCCGGTTCCTGCTGTTTGTGGTGGCGGATGAGATCGCCGCAGGCCCTGCTACCGAGCAGCTTCTGCGCCGGCTCAGGGCACAACACGAAATCCTCTGGCTCACCATTCGCGACGCCGAACTCGCCGGACCGGACCAGTCGGCGGAGGACTCCTTCAATGTGGCCGATTCATCGGTGCTGGCAGGACACCTGGCGGACTCCCCGTCTGTGGCAACGGCCTACGCCCGGGCCTCCGCCGAGCGCGACGCCGGCCGGCACGCCATGTTCCGCCGGACCGGAATTACCGAGGGCCATGTGGCCAGCAGCCACGGGGTTATGACGGAACTCTTCGCCCTCCTGGAGAGGCACCGGCGTGCAGGATGAMASLLQRVKAKMAIFAHRKARGMLDGEYGSVFRGRSLDFDDLRAYIPGDEVRDIDWKASARYGSPLIKRYVAVRRQTVLLITDTGRNMAAESRDGEPKKDIAVMALGVIGYLAHRHGDVVGLVCGDAESTRSIPDKAGEAHLERLLGMVHSGPGLDSGASRIEAQLEYVARNVKGRFLLFVVADEIAAGPATEQLLRRLRAQHEILWLTIRDAELAGPDQSAEDSFNVADSSVLAGHLADSPSVATAYARASAERDAGRHAMFRRTGITEGHVASSHGVMTELFALLERHRRAGNANANANANA
D1-29_028331008hypothetical proteinGTGCTTCAAACCAGCTTGTCCGCGAGAATAGAACCGGCGGCCCTGGCACGCGCACTGCAGGTCGTTGCCAACATCTCCCGCAGCTTTGAGGCCAAGATGGTGGGCCAGACCCGGCTTCGGGAATCGCTGCTGGTGGGCCTGCTGACCGGCGGGCACATCCTGCTGGAAAGCGTCCCGGGGCTCGCCAAGACCACTGCCGCGCAGACAGTGGCCGAAGCGGTCAGCGCAGAATTCCGCCGGATCCAGTGCACCCCTGACCTGCTGCCCAGCGACATCGTTGGTACGCAGATTTACGACGCGGCCAAAGGCACCTTCGTCACGCAGCTGGGGCCGGTGCACGCCAACATCGTCCTGCTCGACGAGATCAACCGGTCCAGCGCCAAAACCCAGAGCGCCATGCTGGAGGCCATGCAGGAGCGGCAGACCTCGATCGGAGGCGAGGAATACCGGCTGCCGTCCCCGTTCCTGGTGCTGGCCACGCAGAACCCGATCGAGCAGGAGGGAACCTACCAGCTGCCGGAAGCCCAGATGGACCGGTTTATGCTCAAGGACGTGTTGGACTACCCCTCCCCGGCGGAGGAAGCAGAGATCATCCGGCGAATTGACGCTGGCATCTTCACCCCCGAGCAGAAGCCGGCCGCCGCCGCCTCGCTGGAGGCCGTGACCGGGGTCCAGGACCTGGTCAAGCGGATTTACATCGACCCGGCCATTATCAACTACATCGTGGGCCTGGTGTACGTCACCCGGAACGCGGAGCAGTACATCGACCGCCGGCTGGCAGGCTTCATTGAATTTGGCGCCAGCCCGCGGGCAAGCATTGCCTTCAGCCAGGCGGCGCGGGCAGTGGCGCTGCTCAACGGACGGGACCACGTGGTCCCGGAGGACGTGAAATCCCTGGCCCACCGCGTGCTCCGGCACCGCCTCATCCTGGGCTTCGAAGCCGTGGCGGAGCAGGTGCCGGTGGAGAGCATCATCGACGCCGTCGTCGCCTCTGTCCAGACACCCTGAMLQTSLSARIEPAALARALQVVANISRSFEAKMVGQTRLRESLLVGLLTGGHILLESVPGLAKTTAAQTVAEAVSAEFRRIQCTPDLLPSDIVGTQIYDAAKGTFVTQLGPVHANIVLLDEINRSSAKTQSAMLEAMQERQTSIGGEEYRLPSPFLVLATQNPIEQEGTYQLPEAQMDRFMLKDVLDYPSPAEEAEIIRRIDAGIFTPEQKPAAAASLEAVTGVQDLVKRIYIDPAIINYIVGLVYVTRNAEQYIDRRLAGFIEFGASPRASIAFSQAARAVALLNGRDHVVPEDVKSLAHRVLRHRLILGFEAVAEQVPVESIIDAVVASVQTPNANANANANA
D1-29_02834324hypothetical proteinGTGACCGGCAGGCTTGGCCGGCCCGCATCACTCCGTCCGCCATCCTATCCAAGCCAGCTGCCGGGAAAGCGGCAATGGGCAGCCCTCCCCATTGCCGCAGGTCAGGTCTATCCTGTTGAAATGAGCGAGCTTCCAGCCAGTTACAAGAACTTCCTCAACGACAAGGACGAGATGTTCGTCCTCACGGTCAAGCCTGTTCTGCAGCAGTCAGCTGCCGACCAGCTTCATGGTGTCCGGGTCATCTACAACCCGGGGTCCACGGGCCACCAGGCCCACATTGATGAGAGCATTCCGTTTGGAGTGATCATTGAGGATATCGACTGAMTGRLGRPASLRPPSYPSQLPGKRQWAALPIAAGQVYPVEMSELPASYKNFLNDKDEMFVLTVKPVLQQSAADQLHGVRVIYNPGSTGHQAHIDESIPFGVIIEDIDNANANANANA
D1-29_02835882sugB_3COG0395Trehalose transport system permease protein SugBATGACGACGGCGGCACGGGCCTTGCGTACCCGACGCCAGGGCGCCCAAGGCTACCGTTCCGTGGCGCAGCAGCGTGCCCGGGTTCCGGCCGACGCCGCCCTGTTGCTGATCGGCGTCTGCTTTGTCCTGCCCTTGCTGTGGCTGCTGCTGGCTTCCCTGGACCCCGGGGCCGGACACCAGACCCGCCTGCCCGAAGAATTCTCCCTGGCAAACTTTTCCGCGATCATGACAACAGGGCTGCTCTTCCAGCCTTTGTGGAACAGCTTTGTGCTCTCTGCCGGGACAGCGGCCGTCACCCTCGTGGCAGCTGTCCTGGCCGCCTATCCGCTGTCCCGCTACCAGTCCAGGTTCAACAGGCCGTTTATGTACACCATCCTGTTCGGGACCTGCCTGCCGATTACGGCCATCATGGTGCCGGTGTACGGGTTGTTCGTCCAGCTGCGGCTGCTGGACTCGATGCCGGCCACTATCTTCTTTCTGGCCACCACCGCGCTGCCCATGGCCATCTGGATGACCAAGAACTTCATGGACGCAGTGCCCGTGTCCCTCGAAGAGGCAGCCTGGGTTGACGGCGCCTCAGGGCTGACAGCATTGCGCACCATCGTCCTTCCCCTGATGCGCCAGGGGCTGGGCGTCGTCTTCATTTTTGTGTTCATCCAGGCCTGGGGGAACTTCTTTGTTCCCTTTGTGCTGCTCCTGTCCGAGGCGAGGCAGCCTGCGGCCGTATCCATCTTCAGCTTCTTCGGACAGCATGGAGCGGTGGCCTACGGCCAGCTGGCCGCGTTCTCCATCCTGTATTCACTCCCGGTGCTGGCCCTCTATGTCATCGTGGCAAAGGGTGCCGGCAGTTCGTTCACGATGTCCGGCGCCGTTAAGGGCTAAMTTAARALRTRRQGAQGYRSVAQQRARVPADAALLLIGVCFVLPLLWLLLASLDPGAGHQTRLPEEFSLANFSAIMTTGLLFQPLWNSFVLSAGTAAVTLVAAVLAAYPLSRYQSRFNRPFMYTILFGTCLPITAIMVPVYGLFVQLRLLDSMPATIFFLATTALPMAIWMTKNFMDAVPVSLEEAAWVDGASGLTALRTIVLPLMRQGLGVVFIFVFIQAWGNFFVPFVLLLSEARQPAAVSIFSFFGQHGAVAYGQLAAFSILYSLPVLALYVIVAKGAGSSFTMSGAVKGPGPT0016540_2978DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_02836879melD_9COG1175Melibiose/raffinose/stachyose import permease protein MelDGTGCAGGTTCTCCGCAGCAGGGGGTGGGTCCGTCTCCTGCCGGTGGTTCCAGCGGTCCTCCTGCTGCTGGTCTTCCTGGCCGGCCCCATCCTTTGGGCGTTCCATGCGTCCTTTACCAACGCCGCCCTGACAGGACGCAACGCCCGCAGCCCGGCCTGGGTGGGACTCGAGAACTATGCGCGGCTGTTCGCGGATCCGGTCCTGCCGCTGTCCCTTGGCCTGACTGTCCTGTTCGTGGGCGGCTCTGCCATCCTCGGCCAGAACGTCCTGGGCCTGTCCCTCGCCGTGCTCATGCGGCGGGCCAGCCGGTTCGTGTCCGCCGTCGTCGGTACCGCCGTTGTGGCTGCCTGGGTGCTTCCGGAGATTGTGGCCGCCTTCGCGGCGTATGCATATTTCAGCCGCGACGGCACCCTGAACCAGCTGCTGGCCGGACTTGGAGTGGGGCAGCCGGACTGGCTCTATTCGTTCCCGATGGTGGCGATTATGCTCGCTAACGTCTGGCGCGGCACCGCGTTCTCCATGCTGGTGTACCGGGCCGCCCTTAACGATGTGCCAGGTGAGGTCACGGAAGCGGCCGTGATGGACGGCGCAGGCGGCTGGCAGCGGCTGGCCTATGTCACCCTTCCCATGATCCGCGGGAGCATAGCCACCAATCTGATGCTCGTCACGCTCCAGACCCTGGCTGTTTTCACCCTGATCTGGGTGATGACAGCCGGCGGGCCCTCCAACGCCAGCACCACCCTTCCCGTCCTGGCATACCAGGAGGCCTTCAAGTTCGGAGACATAGGCTACGGAACCGCTGTTGCCTCGGTGCTGATCCTCATCGGCGTGGTGTTCGGTGCGGCGTATATCCGGCTTCTCCGGGATCCCAAACCATGAMQVLRSRGWVRLLPVVPAVLLLLVFLAGPILWAFHASFTNAALTGRNARSPAWVGLENYARLFADPVLPLSLGLTVLFVGGSAILGQNVLGLSLAVLMRRASRFVSAVVGTAVVAAWVLPEIVAAFAAYAYFSRDGTLNQLLAGLGVGQPDWLYSFPMVAIMLANVWRGTAFSMLVYRAALNDVPGEVTEAAVMDGAGGWQRLAYVTLPMIRGSIATNLMLVTLQTLAVFTLIWVMTAGGPSNASTTLPVLAYQEAFKFGDIGYGTAVASVLILIGVVFGAAYIRLLRDPKPPGPT0016535_5259DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_028371353hypothetical proteinATGCGTCGCCGGGCACTGAAAATTACCTCCCTCATCGCTTCCGCAGCCTTTGCCTTGGCTGCCTGTTCCCCAGCTTCCCCCGAATCCGAGACGAAGACCCTGAAGGTGGTTTATCAAAAAACCGATTCCTTCACCGCCCTGGACGACATGTTCAAAGCGGCCAAGGCAGAGTTTGAGGCTGCCCACCAGGGCGTCACGGTTGAACTGGAGCCCATCCAGGCAAATGACGACGACTACGGCACCAAGCTTGCCCTCGCCCTGCGTTCCCCTTCCACCGCCCCGGACGTCTTCTACGAAGACACGTTCAAGGTCCGCTCCGACGTCGACGCCGGTTACCTGCTGAAACTGGACAGCCACCTCCAGGAGTGGAAGGACTGGGACAGTTTCGACGACGGCGCGAAGGCCGCCGGGCTGGGCGACGACGGCGGCACGTACGCAGTCCCGGTCGGCACCGATACCCGCGCCATCTGGTACAACAAGAAAGTTCTTTCAGCCGCCGGCGTCAGCGTCCCGTGGGAACCGCGCAGCTGGCAGGACATCCTGGACACCGCCAGGAAGATCAAGGCAAGCGACCCCTCGGTGGTGCCGTTCAACATGTATGCGGGCAAAGCCACCGGTGAGGGCACCGTGATGCAGAGCTTCTATGAACTGCTCTACGGGACCGGGTCCGAGCTGTACGACGCCGATGCCAAAAAGTGGGTTGTGGGCTCTGCGGGCTTTACTGACTCGCTGGCGTTCCTCAAGACCCTGTACGACGAGAAACTTGCCGTCTCCCCGGCCGAGGCCCTGGATGCGAACGTCTGGAAAAAGGTGTTCGGCGAATGGCTCCCGCAGGGAAAGATGGGCGCCACGGTGGAAGGATCCTACTCGCCGTCGTTCTGGCAGAAGGGCGGAAGCTACGAATGGCCCGGATATGAGCAGGATATGGGGGTGGCCGCTTTCCCCACGCAGAACGGCCAGGCACCCGGGGGAGTCAGCATGTCCGGCGGCTGGACACTGGCCATCGGTGCGGGCACCAAGGATCCGGATCTGGCTTTTGATTTCCTGAGCACTGCCCTGAACCAGAAGAACTCCCTCGCCTTTAATATCGCCAGCTCACAGATCGCCGTCCGGAAGGATGTTGCGGCAGATTCCGGCTACCAGGCCGCCAACCCGTTTGTGAAGGACGTGTCCGAGCTGGTGTCCGTTACCCGCTACCGGCCGGCAACTGCGGATTACCCCAGGATTTCAGCTGCCGTCCAGGAGGCCACGGAAGCCGTCATTACCGGCGCGAGGTCGCCGGAACAGGCAGCCGCGGACTACGACGCCGCCGTCAAAGGCATCGTGGGCGAAGACAAAACCGTCCGGAAGTAGMRRRALKITSLIASAAFALAACSPASPESETKTLKVVYQKTDSFTALDDMFKAAKAEFEAAHQGVTVELEPIQANDDDYGTKLALALRSPSTAPDVFYEDTFKVRSDVDAGYLLKLDSHLQEWKDWDSFDDGAKAAGLGDDGGTYAVPVGTDTRAIWYNKKVLSAAGVSVPWEPRSWQDILDTARKIKASDPSVVPFNMYAGKATGEGTVMQSFYELLYGTGSELYDADAKKWVVGSAGFTDSLAFLKTLYDEKLAVSPAEALDANVWKKVFGEWLPQGKMGATVEGSYSPSFWQKGGSYEWPGYEQDMGVAAFPTQNGQAPGGVSMSGGWTLAIGAGTKDPDLAFDFLSTALNQKNSLAFNIASSQIAVRKDVAADSGYQAANPFVKDVSELVSVTRYRPATADYPRISAAVQEATEAVITGARSPEQAAADYDAAVKGIVGEDKTVRKPGPT0016545_2811DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_028381254nagC_3COG1940N-acetylglucosamine repressorGTGTCCGAGATCCGCCAGCCCTCGCCAAGGCGCGGAACCAACCTGCCCAGGATGGGGGACTTCAACCTCACCGTCATCCTGGATGCCATCCGCCGGTCTTCCGGCGGGCTCAGCCGGGTGGAGCTCGCCCAGATCGTGGGCCTTTCACCCCAGACGATTTCCAACATCTCCCGCCGCCTGCTGGATCAGCACCTGATCATTGAAGCTGGCAAGGAAGGCAGTGGTCCGGGGAAGCCGCGCACCATCCTCCGCCTCAACCCCTCTGGCATGTACGCCATCGGTGTTCATCTGGACCCCGCCGTGACAACCTTTGTGGTCCTGGACCTGGTGGGAGCGGTGGTTCAGCACTCCAGGATCAAGACCCCCGGCGGCAACGATCCGGCCGCCGTCATCTCCACCATCGCTGCAGAAATCGGGCAGCTTGTGGCAGACTCCGGCGTGGACACCGCCAAGATCGCCGGCCTGGGGCTGGCGGCTCCCGGCCCCATAGACCTGGATAACGGAACAGTGGTGGAGCCGCCGCTCCTGCCCGGCTGGGACCGGGTGGAACTGCGCAACGCCCTGGCTGAGGCCACCGGTTATTCCGTGCTGGTGGACAAGGATGTCACCAGCGCCGCCGTCGCCGAAACCTGGGCGGGCGGCCCCAGCGGCGCCGGCAGTTTCATCTTTATGTACATGGGGACCGGCATCGGCTGCGGCATCGTGCTTAACGACGAGGTGGTCCGCGGAACGTCAGGCAACGCCGGCGAGATCGGCCACATCATCGTGGACCCGGACGGTCCCTCATGCGACTGCGGCCTGCGCGGCTGTGTGAAATCATCCTGCATCCCGCAGGTGCTGGTGGCCCAGGCAGAAGCCGCCGGAATCCTCGAGGGTACCCTGCCGGCCACCACGGGTGCCGAGGTGCAGGAGAGTTTTTCCCGGCTGTGCGACCTTGCCGATGCCGGCGACACGCGGGCGCTGGGCATCATCGACAAATCCGCCACCCTGGTGGCCCGCGCCGTCTCGGTGGTCACCAACACCCTGGACGTGGAACGGGTGGTGTTCGGCGGGCCTTTCTGGACCAGGATGTCCCAGCGCTACCTGGAGAAAGTGCCCGGCCTGCTGGACGCAAACAGTGCAGCACGCAAGATCCACACCATCGAAGTGGTTGGTACGGGGGTAGGTGAGGATGTGGGCGCCATCGGTGCAGCGTGCCTGGTCCTGGAACATATGCTGGCTCCCCGGGCCCAGCGGCTCCTTCTCGAAAGCTGAMSEIRQPSPRRGTNLPRMGDFNLTVILDAIRRSSGGLSRVELAQIVGLSPQTISNISRRLLDQHLIIEAGKEGSGPGKPRTILRLNPSGMYAIGVHLDPAVTTFVVLDLVGAVVQHSRIKTPGGNDPAAVISTIAAEIGQLVADSGVDTAKIAGLGLAAPGPIDLDNGTVVEPPLLPGWDRVELRNALAEATGYSVLVDKDVTSAAVAETWAGGPSGAGSFIFMYMGTGIGCGIVLNDEVVRGTSGNAGEIGHIIVDPDGPSCDCGLRGCVKSSCIPQVLVAQAEAAGILEGTLPATTGAEVQESFSRLCDLADAGDTRALGIIDKSATLVARAVSVVTNTLDVERVVFGGPFWTRMSQRYLEKVPGLLDANSAARKIHTIEVVGTGVGEDVGAIGAACLVLEHMLAPRAQRLLLESNANANANANA
D1-29_028391161rlmGCOG2813Ribosomal RNA large subunit methyltransferase GGTGGCACAGAACAGTCTCGAGGATGTCTTCGGAGCACTCCGGCGGCGCCCGGACGTGGAAGCGCCCAACCTCCAGGCATGGGACGCCACAGACAAGCTCCTCCTGGAAGCCGCTGCCGCACTGGCTGGCGCCGACAGTAAGGTCGCGGTCATAGGCGACCGCTATGGCGCACTGGCCCTCGGCTGCCTGTCGGTACTGGGCATCCGCACTGTCAGGGTGCACCAGGACCTCATCACGGGGGAGCGTGCGCTCCGGAACAATGCCCTGGCCCTGGGAGTGGGCTCCGAGGCCGGGGGAGCCGGAGCCGGGTTTGTCCAGTTGCCGCTTGGCGAGGAGCTGCTGTCCGGCGCCGGCATTGTCCTCCTGCAGTTGCCCAGAAGCCTTGCGGAGCTTGAAGAGATTGCCGATGCCGTGGCACGTTACGCAGCACCGGACGCCGTGCTGCTGGCCGGCGGTCGCGTCAAGCACATGTCACTGGGCATGAACGCGGTTCTGGAACGGCACTTCGGCACGGTCCAGCCGCAGCTTGCCCGGCACAAGTCCCGCGTCATCCTGGCCCGTGGCCCACAGCCGCCCTCGGGGCCGGTTCCTCTTCCCCCGGTGGAGCACCTGCCGGAGCTGGGCCTTGACGTTGCTGCGCACGGAGCCGTGTTCGCCGGACCGCGGCTGGACATCGGCACGAGGTTCCTGCTCACCTTCCTGCCGGAGATGCCTGCCGCCCGGAACGCCGTCGATCTGGGTTGCGGAACCGGCATCCTGGCTGCCATGTATGCCCGGGAATACCCTGATTCCACGGTGACGGCGACTGACCAGTCGGCGGCGGCCGTCGCCTCCGCCCTGGCCACTGCCCGAGCCAACGGACTCGGCCACAGGATCAGCGTCCTGCAGGATGATGCGATGAGCACCATGGCGGACGGAAGTGCGGACCTGATCCTGCTGAACCCGCCGTTCCACCTGGGATCCAGCGTCCATGCCGGCGCCGGAATCAAGCTGTTCGAGGCGGCTGGGAGGGTCCTGGCCCCCGGCGGTGAACTCTGGACGGTGTTCAACCGTCACCTGCACTACCTGCCGGCGCTGGACCGTCTGGTTGGGCCCACCACGGTCAAGGGGCAGAACCCCAAGTTCACGGTGGCGGCCAGCCGAAAGCTGCCGCTGGGATAAMAQNSLEDVFGALRRRPDVEAPNLQAWDATDKLLLEAAAALAGADSKVAVIGDRYGALALGCLSVLGIRTVRVHQDLITGERALRNNALALGVGSEAGGAGAGFVQLPLGEELLSGAGIVLLQLPRSLAELEEIADAVARYAAPDAVLLAGGRVKHMSLGMNAVLERHFGTVQPQLARHKSRVILARGPQPPSGPVPLPPVEHLPELGLDVAAHGAVFAGPRLDIGTRFLLTFLPEMPAARNAVDLGCGTGILAAMYAREYPDSTVTATDQSAAAVASALATARANGLGHRISVLQDDAMSTMADGSADLILLNPPFHLGSSVHAGAGIKLFEAAGRVLAPGGELWTVFNRHLHYLPALDRLVGPTTVKGQNPKFTVAASRKLPLGNANANANANA
D1-29_028401101Ferredoxin--NADP reductaseGTGAAAACTTCCTTTACTGACGTTGTGGTTGTCGGCGCCGGGCAGGCCGGGCTGTCGGCCGCCTATCACCTCCAGCGCCGGGGGCTGAAGTACATAGTGCTCGACGCCGAAGCAGGACCGGGAGGTGCCTGGCGGCACAGGTGGAAGAGCCTCCGGATGGCCACCGTTAACGGCATCAGCGACCTCCCCGGGATCGGCAAGCCTGCCGTGGATCCCGCGGAACCCAGCTCGGAGTTCCTGACCCGCTACTTTGATGCCTACGAACAGGAACTCGGGCTGGCGGTCCGGCGGCCAGTCAAAGTGGCCGCGGTTACCAGGGAGGATGCGGATCCGGCCGGCAGGCTCCGAATCAGCACCAATGCCGGTGACTGGTCGGCCAAAGCAATCATCAACGCCACCGGAACATGGACCAGGCCCTTCTGGCCCATCTATCCCGGCCAGTTCACCTTTCGTGGCAGGCAGCTCCACGTGGCTGACTACGTCTCTGCCGACGAGTTCCGCGGGCAGCACGTCATTGTGGTGGGAGGCGGGATTTCCGCCGTCGGCCTGTCGGATGAGATCTCCCAGGTCACCACCACCAGCTGGTTTACCCGGCGCGAGCCGGAGTGGCGCGACGTCGAATTCGATGCCCAGGCGGGGCACAACGCCGTCGCGCTGGTGGAAGAACGTGTCCGCCAGGGGCTTCCGCCCCAAAGCGTCGTGGCTGTCACCGGGCTGATCTGGACGCCTGCCCTGCGGGCGGCAGCACAGCGCGGCGCGCTCAACCGGCGTCCCATGTTTACCGCCATTGAGCCCGACGGCGTCCGGCTTGCGGACGGAGGCCTGGTCAAGGCGAATGTGATCCTGTGGGCCACGGGCTTCCGCGCCGAGCTGGAACACCTGGCCCCGCTTCATCTCCGCGGACCGGGCGGCGGCATTGCCATGGACGGAACCCAGGTGGCCGCCGAACCGCGGGTTCACCTTGTGGGCTATGGGCCGTCGTCGTCCACCATTGGTGCAAACAGGGCAGGCAGGGCAGCAGTGGCGGCTCTCCTGAAGCTTCCCGGCCTGCGGCCGCAGGCGGAGACGGTAGATTTGCCTGACCCCAACATTTTGGCTTGAMKTSFTDVVVVGAGQAGLSAAYHLQRRGLKYIVLDAEAGPGGAWRHRWKSLRMATVNGISDLPGIGKPAVDPAEPSSEFLTRYFDAYEQELGLAVRRPVKVAAVTREDADPAGRLRISTNAGDWSAKAIINATGTWTRPFWPIYPGQFTFRGRQLHVADYVSADEFRGQHVIVVGGGISAVGLSDEISQVTTTSWFTRREPEWRDVEFDAQAGHNAVALVEERVRQGLPPQSVVAVTGLIWTPALRAAAQRGALNRRPMFTAIEPDGVRLADGGLVKANVILWATGFRAELEHLAPLHLRGPGGGIAMDGTQVAAEPRVHLVGYGPSSSTIGANRAGRAAVAALLKLPGLRPQAETVDLPDPNILAPGPT0013865_1487DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
D1-29_028411305COG2230putative fatty acid methyltransferaseATGACGAAGACAAAGGGAGCTGCATCACGGCTGGCGAAGGCGCTTGCCATCGTACTGGGCACCGAGGAGATCCCGCTCCGGCTGCGGGCGTGGGATGGATCGGAAGCAGGCCCGCCGGATGCCCCGGTGATTGAATTCCGCTCCCGGCGTGCGCTGCGCCGGATTCTGTGGTCGCCCGGACAGCTGGGGCTGAGCCGGGCTTATGTCGCGGGGGAAGTGGATGCACCGGGCGACATTTTCGCCGCTTTCAAGGCGCTGAGCTCGGCCGGTAAATTTGCTGAACCAGGGCCATTCCGGCCCCTCACGCCGGCAGAACTCTTGACGCTTTTCAGGACAGCCGTCAGGCTCGGCGCGCTGGGGCCCAACCCGGCTCCCCCGCCGGAGGAAGCACGCATCTACCGTCAGGGCCAGCGGCATTCCAAGCGCCGGGACGCCGCCGCGATCTCACACCACTACGATGTCGGCAACGACTTTTACGCCCTGGTTCTGGGGCCGTCGATGGTCTACTCCTGCGCGGTGTGGGAAAACCCGGCCCACGACGAGGATGACCTGCCGGCAGGGCTGGACGCGGCCCAGCAGGCCAAGCTGGATCTGGTGTGCCGCAAGCTGGGCCTGAAGCCCGGGATGCGGGTACTGGACGTGGGCTGTGGCTGGGGAAGTTTCGCCCTGCATGCCGCCCAGCATTACGGCGTCACGGTGGTTGGCGTTACGCTCTCCAACGAGCAGGCGCTGCTGGCACGCAAGCGCGCAGCCGACGCCGGGCTGACGGAACACATCGACATCCGGGTCCAGGACTACCGCGATGTTGACGATGGGCCGTTCGACGCGATCAGTTCCATTGGCATGTCCGAGCACGTCGGCCGTGAACAGACGCCGCACTACGTCGCCCGGCTCCATGATCTGCTCCGCCCAGGCGGCCGGCTGCTCAACCACGCCATTTCCTGGAATGCCGGTCCCACCAGTCCTGATCCGGACTCCTTTATCCCGCGCTATGTCTTCCCGGATGGCGAAATGCTCAGCCTCGGCGAGATGGTCACGGCGCTGGAGTCCGGCGGGCTGGAGATCCTGGATGTCGAGGCATTGCGGCCGCACTATGCGCTGACACTGCGGGCCTGGGTACGGCGGCTCGAGGATCATTGGGATGAAGCCGTCAGGCTCACCAGTCTGGGCCGGGCCCGGGTCTGGAGGCTGTACATGGCATCGAGCGCCCTGGGATTTGAGGCTGGCCTGACGGGAGTGAACCAGGTGCTGGTGCAGCGGCACGGCGGAGCCCAACCTCCTCTGCGCCGGACGGAATGGGTCTGAMTKTKGAASRLAKALAIVLGTEEIPLRLRAWDGSEAGPPDAPVIEFRSRRALRRILWSPGQLGLSRAYVAGEVDAPGDIFAAFKALSSAGKFAEPGPFRPLTPAELLTLFRTAVRLGALGPNPAPPPEEARIYRQGQRHSKRRDAAAISHHYDVGNDFYALVLGPSMVYSCAVWENPAHDEDDLPAGLDAAQQAKLDLVCRKLGLKPGMRVLDVGCGWGSFALHAAQHYGVTVVGVTLSNEQALLARKRAADAGLTEHIDIRVQDYRDVDDGPFDAISSIGMSEHVGREQTPHYVARLHDLLRPGGRLLNHAISWNAGPTSPDPDSFIPRYVFPDGEMLSLGEMVTALESGGLEILDVEALRPHYALTLRAWVRRLEDHWDEAVRLTSLGRARVWRLYMASSALGFEAGLTGVNQVLVQRHGGAQPPLRRTEWVPGPT0007680_728DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-PHOSPHOLIPID_PRODUCTIONPLANT_SIGNAL-PHOSPOLIPID_METABOLISMPLANT_SIGNAL-CYCLOPROPANE-FATTY-ACYL-PHOSPHOLIPID_BIOSYNTHESIS,PGPT0007680-cfa-K00574NANA
D1-29_02844402rsfSCOG0799Ribosomal silencing factor RsfSGTGTCTGCATCAGCTTCATCCATATCCATAGCCCGCCAAGCCGCCAAGGCCGCCGCGGACAAGATTGCCCAGGACATCGTTGCCCTGGACGTCAGCGAACGCCTGGCCCTTGCCGACGTCTTCCTGATTGCCTCCGCCCCCAGCGAACGCCAGGTCAACGCCATCGTCGACGGCATAGAAGAGGAACTTTCCAAGCAGGACCTCCGCCCTGTCCGGCGCGAGGGACGTTCCGGCGGACGCTGGGTACTCCTGGACTACTCCGACATCGTCATCCACGTCCAGCACGAGGAAGACCGTGTTTTCTATGCACTGGAGCGCCTCTGGAAGGACTGCCCCGTAGTGGACCTGCAGCTGGGAGACGACGCCTCGGCCAAGGCAACAGCCTCCACAGAATCGGAATAAMSASASSISIARQAAKAAADKIAQDIVALDVSERLALADVFLIASAPSERQVNAIVDGIEEELSKQDLRPVRREGRSGGRWVLLDYSDIVIHVQHEEDRVFYALERLWKDCPVVDLQLGDDASAKATASTESEPGPT0013435_149DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
D1-29_028451302hypothetical proteinATGAGTCAGGAACAGCCCCCCGTCCGCAGCCGCCGCGAATTGCGGCAGGCCAGAGATGAGCAAAAGGCTACCGGGTCAACAGGCCCGGGCCAGGTTTCGCCTGCCTCAAAACAACCGCCTTCAAGGCCGGCAGACTCCCATGACCAGCTTCAGGCCGAGCGTTCCTCGCAAATTCGTGCGCGTGACCGTGCAACACTCCGCACGCTCAAGGAGCTGGAGGAAAAAGAGGAACAGCTGGCAGCCGGCGGACCGCCCACCCGCAGGCAGCGGCGGCTTCAGCAGCTCAAGGAGCAGGCCGTCACGTCGGCCAACCCGATAGTTCCACCCGCTCCGGGCCAGGCTCCCGACTCCCTGCGGGGTGCCGCTGCTGAAACAGCGGCGGTGCAGGCGGCTTCGCACCAACCTGCTGCGTCCCAACCTGCTCCCTCTCCGTCTGCTCCCTCTTCGTCTGCTCCCTCTTCGTCTGCTCCCTCTCCGTCTGCTCCCTCTCCGAGGGGGACCGGCATTCCGGATGGCATCAGCGTTGAGCAGGCACTGGCCGCGCGGTCGCTGATTGCCGAACAGGCCAAGAACCAACTCGCCAAAATGGAGCACATCGCTTCCCTGGATCCCGAGGCCGTTGACCCGGACGTTCTCGCGGAGCAGATTGCATTGGCGGAACGCGCCGCGGTGCTGAACCGCCGGGCCATGGCCAAGCAGAAGCTCGCCGAGCAGGCGTCCGCACCAGCGGCCCCGCAAACATCGTCGATGCAGGCCTCCGCGCCGGGCTCCCAGCCAGCCGTCACCCGGCCGGCCCCCTCGGCAACCACCAACCTCGCGATGGTCACGCCGCTGGAGTTTGTCCAGGTCCCGGGCGTGGACCGTCCGGTCATGAAGCCGCCCGCCACCTCCTACGTGCCGGTGGTCACGAACCCCGGGCCCATCCAGCCGTCCACCGGCAAGGGCCGCAAGCCCTCCACCACGGCCAGGCCGGCGGGCACCGGCACTGCGGCTGCCGCCAGCGGCCGTTCAGGGGTTATTGCACGCGCTGAAGCAGCTGCCCGGGCCGCCCAGCCCAGGCCCGCTGTATCCGTCCCGGCCTCCCGGCCTGCCGCGCCACAGGCCGGAAACCTGGACGACCTTTTTGATGACCTTCCCCGCATCCCCGCCCGGTCCGCCCACGGGCTGGAGCCATTGGATGCGGCCACCGCAGGGCTGGGCCGAGCCAAGCGGATGCGCCTCGTGCAGTTCGGGGTCCTGGCCTTCGGGATCATCGCTCTCATATCCGGCATCATCCTGATCATCAGCGGCATCACGCGCTGAMSQEQPPVRSRRELRQARDEQKATGSTGPGQVSPASKQPPSRPADSHDQLQAERSSQIRARDRATLRTLKELEEKEEQLAAGGPPTRRQRRLQQLKEQAVTSANPIVPPAPGQAPDSLRGAAAETAAVQAASHQPAASQPAPSPSAPSSSAPSSSAPSPSAPSPRGTGIPDGISVEQALAARSLIAEQAKNQLAKMEHIASLDPEAVDPDVLAEQIALAERAAVLNRRAMAKQKLAEQASAPAAPQTSSMQASAPGSQPAVTRPAPSATTNLAMVTPLEFVQVPGVDRPVMKPPATSYVPVVTNPGPIQPSTGKGRKPSTTARPAGTGTAAAASGRSGVIARAEAAARAAQPRPAVSVPASRPAAPQAGNLDDLFDDLPRIPARSAHGLEPLDAATAGLGRAKRMRLVQFGVLAFGIIALISGIILIISGITRNANANANANA
D1-29_02846726nadDnicotinate-nucleotide adenylyltransferaseATGCCGATCCGCACCGCCAGCACCCGAACAAGCACGACCACGGCCAGGGCCACTAACATTTCCCGCGTCCTGCACCATAACGGTGCTAAGGGCCGGCTGCGGCTGGGCGTGATGGGCGGGACATTTGATCCCATCCATCACGGCCACTTGGTCGCGGCCAGTGAAGTGGCTGCCAAGTTCGGCCTGGACGAAGTTGTTTTTGTTCCCACCGGGCAGCCTTGGCAAAAAACGCACAAACACGTCAGCGAGCCGGAGCACCGCTACCTGATGACGGTGATCGCCACCGCGTCGAACCCCCGCTTTACGGTCAGCCGGGTGGACGTTGACCGTCCCGGCCCCACCTACACGATTGATACGTTGCGTGACCTGCGGACCCAGCGTCCGGACGCTGATCTGTTCTTCATCACCGGCGCGGATGCGCTGGCCCAGATCCTGTCGTGGAAAGACATCGACGAACTCTGGTCCTTGGCGCACTTTGTCGGCGTGACCAGGCCAGGGCACATACTTGACGGCATGGGCCGGAAGGATGTGAGCCTGCTCGAGGTGCCCGCCATGGCCATTTCGTCGACGGACTGCCGCGCCAGGGTGGCCGAGCACAACCCTGTCTGGTATCTCGTGCCGGACGGCGTCGTGCAATACATTGCAAAATATGGACTGTACTCCAAGGGGACAACACCCGCGGACGTACCTGCTTCCGAAACAGCCGAACCAGCAAGCACTGAATGAMPIRTASTRTSTTTARATNISRVLHHNGAKGRLRLGVMGGTFDPIHHGHLVAASEVAAKFGLDEVVFVPTGQPWQKTHKHVSEPEHRYLMTVIATASNPRFTVSRVDVDRPGPTYTIDTLRDLRTQRPDADLFFITGADALAQILSWKDIDELWSLAHFVGVTRPGHILDGMGRKDVSLLEVPAMAISSTDCRARVAEHNPVWYLVPDGVVQYIAKYGLYSKGTTPADVPASETAEPASTEPGPT0013435_369DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
D1-29_02847225hypothetical proteinATGCTGCTCCAGCAGATAGCCACGTCCACTGCAGAACATGAGGAACTCGCCCCGCTGTGGGCCGAGCCGTGGGTGTTTGGTGCCGTGATTTTCGCCATCCTTCTGGTCATGATGTTCATCACCCTGTCCTACTCCAACCTCGGCAACCGCCACGCTGCCACGGAAGAGCATGCCGATCCGCACCGCCAGCACCCGAACAAGCACGACCACGGCCAGGGCCACTAAMLLQQIATSTAEHEELAPLWAEPWVFGAVIFAILLVMMFITLSYSNLGNRHAATEEHADPHRQHPNKHDHGQGHNANANANANA
D1-29_028481365proACOG0014Gamma-glutamyl phosphate reductaseATGACTGAGGCACTGATCCATAATTCTGCTGCGATTTCCGGGGACGACACTGCGGTCTCCGCTGCCCCGCAGACGCCGGATTCTTCTGCCGTCCCGCTGTCAGTTGAGGACGTCCAAGCGGCGGTACACGCTGTGGCTGACCGTTCCCGCCATGCGGCGCGCCGGATGGCGAGGGCCAACCGTGCCTGGAAGGACCGCGGTCTCAAGGCGATCGGTACCGCGCTGCTGGAGCGGAAGAACCTCATCCTTTCCGCGAATGCCAAGGATGTCGCCGCCGGCAAGGCAAACGGCACCTCTGCTGCCCTGCTGGACCGGCTTACGCTGACGGAAGCCAGGATCGATGGCCTCGTGTCCGCCCTGGAGAACCTGGCCACCCTGCCGGACCCGGTGGGCAACGTGGTCCGCGGCCAGACCCTTCCCAACGGGCTGCGCCTGCGCCAGGTCAACGTACCCATGGGCGTTGTGGCGGCTATTTATGAAGCCCGGCCCAACGTCACGGTGGACATCGCGGGGCTTGCCCTGAAGAGCGGCAACGCCGTTATCCTCCGGGGCGGCAGTGCCGCGGCAGCCACCAACGAGGCGTTGGTCCACGTGATCCGGGAAGCACTGGACTCCGTGGGGCTGCCGTCCGATGCCGTGCAGACCGTGGACCAGTACGGACGCGAGGGCGCCAATGCCCTGATGGGTGCCCGGGGCCGTGTGGATGTCCTGATTCCCCGGGGCGGACGCGAACTCATCCAGACTGTTGTCCAGAACTCCGCTGTGCCCGTCATCGAAACCGGTGAGGGCAACGTGCATATCTTCATCGACGAGTCGGCCACGGAGGAGATGGCGGTGGAGATCCTCCTGAACGCCAAAACACAGCGGCCCAGCGTCTGTAATACCGTGGAGACCCTGCTGGTCCATTCGCGGTCCACCGTGCTGCCCGCCGTTGCTGCTGCCTTGCGTGGCGCCAACGTCACCCTGCATGCCGACGACCGCGTCCGCGCGGCCCTGCCGGCTTCCATCGAGTCGGAGGCTGCCACCGACGAGGACTGGGCCACGGAGTACATGGACCTCGATCTCGCGGTGGCCATGGTGGACAGCCTGGATGAGGCAGTCCAGCACATCCGCACGTGGTCCACCGGCCATACCGAAGCCATCCTCACCAACGACCTCTCCAACGCCGAGCGGTTCATTGCCGAGGTGGATTCCGCGGCCGTCATCGTCAATGCCTCCACCCGCTTTACCGACGGCGGCGAGCTTGGCCTGGGTGCCGAGGTGGGTATCTCCACCCAGAAGCTGCATGCCAGGGGTCCGATGGGACTGACTGAACTGACCACCACCAAGTGGATCGTGCAGGGCGAGGGCCAAGTCCGCGGGTAGMTEALIHNSAAISGDDTAVSAAPQTPDSSAVPLSVEDVQAAVHAVADRSRHAARRMARANRAWKDRGLKAIGTALLERKNLILSANAKDVAAGKANGTSAALLDRLTLTEARIDGLVSALENLATLPDPVGNVVRGQTLPNGLRLRQVNVPMGVVAAIYEARPNVTVDIAGLALKSGNAVILRGGSAAAATNEALVHVIREALDSVGLPSDAVQTVDQYGREGANALMGARGRVDVLIPRGGRELIQTVVQNSAVPVIETGEGNVHIFIDESATEEMAVEILLNAKTQRPSVCNTVETLLVHSRSTVLPAVAAALRGANVTLHADDRVRAALPASIESEAATDEDWATEYMDLDLAVAMVDSLDEAVQHIRTWSTGHTEAILTNDLSNAERFIAEVDSAAVIVNASTRFTDGGELGLGAEVGISTQKLHARGPMGLTELTTTKWIVQGEGQVRGPGPT0014215_144DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147NANA
D1-29_028491137proBCOG0263Glutamate 5-kinaseATGGCCGCGGTACCGGCAGGCCGGTCCGCGGACAGAACCGTGCTTTCGGGCGCCCGCAGGATTGTTGTCAAGGTGGGCTCTTCGTCGCTGACCAGCATCAAAGGCGGCATCTCCGAAGAAGCCCTGACCGCGCTGGCGGACGCCCTGGCCGCCAAACGGAACGCCGGCACCGAGATCATCCTGGTGTCCTCCGGCGCCATTGCGGCCGGCCTTGCGCCCCTCGGACTGGCCAAACGCCCCCGCGACCTGGCCACCCAGCAGGCCGCCGCCAGCGTGGGGCAGGGCCTGCTGATGGCACGCTACACGCAGGCGTTTGGTGCCCATGGCGTAACTGTCAGCCAGGTCCTGCTCACCGCCGATGACCTGATGCGCCGAAGCCAGCACACCAACGCGTTCCGCGCCCTGGACCGCCTCCTCAACCTCGGTGTGGTGCCGGTGGTCAACGAGAACGACACCGTGGCCACCCACGAGATCCGCTTCGGTGACAACGACCGGCTGGCCGCCCTGGTCGCCCACCTCGTCAGGGCCGATGCGCTGGTACTGCTCTCCGACGTCGACTCCCTGTACGACGGCCCGCCGTCGCATGGTGCCAAGCGCATCCCCTTGGTGGAAGGCCCCCACGATCTCGACGGCGTTTCCATCGGCAAAGCCGGGAAAGCAGGTGTTGGTACCGGCGGGATGATGACCAAGGTGGAAGCCGCCACCATTGCGGCAGGCTCCGGAATCCACGCCCTGGTTACGTCGACGGCCAACGCGGCCGCCGCCCTGGCTGGCGAAGACGTGGGCACCTGGTTCACCGTCAACGGGGCGCGCAAGCCGGTCAGGCTGCTCTGGCTGGCGCACCTGGCCTCCGTGCACGGCCGGCTGATCCTCGACGACGGCGCCGTCAAGGCGGTCCGCCACCGCCGCACCTCGCTGCTCCCAGCCGGCATATCCGCCGTGGACGGGGACTTTGAAGCAGGCGACGCCGTGGAGATGGTCAGTTCCGACGGGACCGTCATAGCGCGCGGCCTTGTTAACTACTCCGCGGCCGAGCTGCCGCAGATGCTGGGCCGGTCCACCAAGGAACTGGGCAAGGCCCTGGGCCGCGGATATGACCGTGAAGTTGTTCACGTTGATGACCTGGTGCTGGTCTAAMAAVPAGRSADRTVLSGARRIVVKVGSSSLTSIKGGISEEALTALADALAAKRNAGTEIILVSSGAIAAGLAPLGLAKRPRDLATQQAAASVGQGLLMARYTQAFGAHGVTVSQVLLTADDLMRRSQHTNAFRALDRLLNLGVVPVVNENDTVATHEIRFGDNDRLAALVAHLVRADALVLLSDVDSLYDGPPSHGAKRIPLVEGPHDLDGVSIGKAGKAGVGTGGMMTKVEAATIAAGSGIHALVTSTANAAAALAGEDVGTWFTVNGARKPVRLLWLAHLASVHGRLILDDGAVKAVRHRRTSLLPAGISAVDGDFEAGDAVEMVSSDGTVIARGLVNYSAAELPQMLGRSTKELGKALGRGYDREVVHVDDLVLVPGPT0014220_732DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931NANA
D1-29_028501590obgCOG0536GTPase ObgGTGGCGAGCTTTGTAGACCGGGTAGTACTGCACGTATCCGGCGGTACCGGCGGTCACGGCTGTGTCTCCGTCCACCGTGAAAAGTTCAAGCCCCTGGGCGGACCCGACGGCGGCAACGGCGGCGACGGCGGCGACGTCATCCTGCGCGTTGACCACCAGACCACCACACTGCTGGACTACCACCACGCCCCGCACCGCCACGCCACCAATGGCGGCCCCGGCATGGGGGATTGGCGCGGCGGAAAGAAGGGCGAGACCCTCATCCTCCCTGTCCCTGACGGCACCGTGGTCAAGTCCAAGGACGGAACCGTCCTGGCCGACCTCGTCGGCGAAGGGACCGAGTACGTCGCGGCCGCGGGCGGACAGGGCGGGCTGGGAAACGCTTCGCTGTCATCCCAGAAGCGCCGCGCGCCGGGCTTTGCACTCCTGGGCATCGAAGGCGAATCAAGCGATGTTGTCCTGGAGCTCAAGTCCATCGCGGACATCGCCCTGGTTGGCTTCCCCTCTGCCGGGAAGTCCAGCCTTATCGCCGCTATGTCGGCCGCACGTCCCAAGATCGCCGACTACCCCTTCACCACGCTGATCCCCAACCTGGGTGTTGTCCAGGCCGGAGATGTCCGCTTCACCATTGCCGACGTCCCGGGCCTGATCGAAGGTGCCAGCGAAGGCAAGGGCCTGGGCCACAACTTCCTGCGCCATGTGGAACGCTGCGCCGCGCTGGTGCACGTGCTGGACTGCGGCACCCTGGAGTCGGACCGGGATCCGCTCTCGGACCTGGCCATCATCGAAGCGGAACTGGAGAAGTACGCCGTCGACATGAGCTACGCCGGCACCGATGGTGAGGTCGTTCCGCTGAACCACAGGCCGCGCCTGATTGCGCTGAACAAGGTGGACCTGCCGGACGGCAAGGACATGGCCGAATTCGTCCGCCCGGAACTGGAGTCACGCGGCTACCGTGTCTTCGAGATCTCGGCCACCAGCCACGCGGGCCTGCGCCAGCTCGGCTTCGCCATGGCCGAAATCGTCCAGGCGGCCCGCGACACCCTGGCTACCGCGCCGCCCAAGGTGCAGCCTCCGGTCCTCCGGCCCCGCGCCGTCAATGAGGCCGGGTTCAAGATCCGGCGCGAGGAAAAGAACCTCGAACCGCTGTTCCGCGTCCTGGGCGAAAAGCCGGTGCGCTGGGTCAAGCAGACAGACTTCACCAACGAGGAAGCCATCGGCTACCTGGCAGACCGCCTGGCAAAACTTGGCGTGGAGAACGAACTGTTCAAGCAGGGCGCCAAGCCCGGCGACACTGTGGTGATCGGCGAGGACGACGGCGTGGTCTTCGACTGGGAGCCCACCATGATGGCCGGAGCCGAGCTTCTGGCTTCCCCCCGCGGCACCGACGTCCGCTTTGCCGATATCGGCGACCGCCCCACCCGTGGCCAGAAGCGCGATGAGCAGCAGGAACGCAAGGATGCCAAGGCAGCTGCCCGGGCCGAGCTGGAAGCCGAGCGCAAGGCCGGCATCTGGACCGAATCTGTCAGCAGCCGCCGCATCGCCAAGCCTCTCAAGGAGAGTGGACTGGGCGCAGACGATGACCAGTAGMASFVDRVVLHVSGGTGGHGCVSVHREKFKPLGGPDGGNGGDGGDVILRVDHQTTTLLDYHHAPHRHATNGGPGMGDWRGGKKGETLILPVPDGTVVKSKDGTVLADLVGEGTEYVAAAGGQGGLGNASLSSQKRRAPGFALLGIEGESSDVVLELKSIADIALVGFPSAGKSSLIAAMSAARPKIADYPFTTLIPNLGVVQAGDVRFTIADVPGLIEGASEGKGLGHNFLRHVERCAALVHVLDCGTLESDRDPLSDLAIIEAELEKYAVDMSYAGTDGEVVPLNHRPRLIALNKVDLPDGKDMAEFVRPELESRGYRVFEISATSHAGLRQLGFAMAEIVQAARDTLATAPPKVQPPVLRPRAVNEAGFKIRREEKNLEPLFRVLGEKPVRWVKQTDFTNEEAIGYLADRLAKLGVENELFKQGAKPGDTVVIGEDDGVVFDWEPTMMAGAELLASPRGTDVRFADIGDRPTRGQKRDEQQERKDAKAAARAELEAERKAGIWTESVSSRRIAKPLKESGLGADDDQNANANANANA
D1-29_02851264rpmACOG021150S ribosomal protein L27ATGGCACATAAAAAAGGCGCGAGCTCCACTCGCAACGGTCGTGACTCCAACGCCCAGTACCTTGGCGTCAAGCGCTTCGGTGGCCAGGTAGTTTCGGCAGGCGAAATCATCGTCCGCCAGCGCGGCACCCACTTCCACCCGGGCGCCGGCGTAGGCCGTGGCGGCGACGACACCCTGTTCGCACTGACCCCGGGCGCTGTCGAATTCGGCACCCGCCGCGGTCGCCGCGTAGTCAACATCGTTGCTGCTGCAGCTGCAGAGTAAMAHKKGASSTRNGRDSNAQYLGVKRFGGQVVSAGEIIVRQRGTHFHPGAGVGRGGDDTLFALTPGAVEFGTRRGRRVVNIVAAAAAEPGPT0019510_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019510-icd2-K00030NANA
D1-29_02852309rplUCOG026150S ribosomal protein L21GTGGTGTACGCGATTGTCCGCGCAGGCGGCCGCCAAGAGAAGGTTTCCGTTGGAGACTTCGTTACCCTGAACCGCGTCACCGGTGGAGCCGGCAGCACCATTCAGCTGCCCGCACTGCTCCTGGTGGACGGCGACAAGATCACGTCCGCCGCTGCGGACTTGGCCAAGGTAACTGTTACGGCTGAGATCCTCCAGGACCTTCGTGGTCCTAAGATCGTCATCCAGAAGTTCAAGAACAAGACCGGTTACAAGAAGCGCCAGGGTCACCGTCAGGAACTGACCAAGGTCAAGATCACTGGCATCAAGTAAMVYAIVRAGGRQEKVSVGDFVTLNRVTGGAGSTIQLPALLLVDGDKITSAAADLAKVTVTAEILQDLRGPKIVIQKFKNKTGYKKRQGHRQELTKVKITGIKNANANANANA
D1-29_028531617pdxKPyridoxine/pyridoxal/pyridoxamine kinaseATGTCTTCTTTGTCGTCAACATCAGTCCTGCCTCCAGCAGCGCCCGCATCAGCAACAACACCAACATCAACGCAATCCACACTGACGCAGCCAAAAGCGGCCGGCGTCCTGCGGGACGTCCCACGCGTCCTGTCCATCGCCGGTTCCGATCCCTCCGGCGGCGCCGGCATCCAGGCCGACCTGAAAAGCATTGCGGCCCACGGGGGCTACGGCATGGCTGCCATCACCGCCCTCACGGTCCAAAACACGCAGGGTGTCCGTGCCGTGCATGTACCGCCGGCCTCGTTTCTGGCCTGGCAGCTGGATGCCATCAGTGACGACATCACCGTCGATGCCGTCAAGATCGGCATGCTCGGTGATGCTGACGTGATGGCGGCGGTGCGTAACTGGCTGGAGAAGGTGCGCCCCGCCGTCGTCGTCCTGGATCCTGTAATGGTGGCCACCAGCGGGGACCGGCTGCTCGCCGAGTCGGCTGAGGCAGCGCTTCAGGGGCTCTTGCCACTGGCGGACCTGATCACCCCCAACCTGGCGGAACTGGCGATTCTACTTGGCGAGCCGCAGGCGGGCAGCTGGCCCGAGGCGCTGGAGCAGGGCCGCAGGCTGGCGGCCGCGACGGGTGCCACGGTCCTCGTCAAGGGCGGCCATCTCGACGGCGGCGATTGCCCGGACGCCCTGGTCAACACCGGGGGAGTGCTCTCCGAGGACGTGGTAGTAGTGCCAGGCGCAAGGATCCGCACCCGCAACAGCCACGGCACCGGCTGCTCGCTGTCCTCGGCAATGGCCACCACGCAGGCACGGCTGGGCGATTGGGAAGCCTCCCTGCGCCAGGTCAAGCCCTGGCTTGCCGCCGCGCTGCAGGCTTCCGCCGGGCTCGAGGTGGGATCGGGCAACGGCCCCATCCATCATTTCCATCATCTCCAGCCAGCACAGCCGGGGACGTCGGACGCCGGATGGACACCACTGGCGGCGGCGGACTTCGCTGACGTCCTCTGGGCAGCAGCGGCGCCGGACCTTGAGGCCATCTACGGACTGGAGTTCATCCGGGACCTTGCAGACGGCAGCCTGGCCGAAAAGCACTTCGCCTACTATCTCGCACAGGACGCCACGTACCTGAACGGCTATTCCCGGGTGCTCGCCCGGGCCAGTGCCCTGGCCCCCACCGAGGCGGAGCAGCTGTTCTGGGCCAGGTCTGCCCAGCAGTGCCTGGAGGTTGAATCGGAGTTGCACCGCAGCTGGCTCAGCACCAGGACCACGGACACGGTTCTGGGCCCCGTCACCAAGTCCTATGTCGACCATCTGCTGGCCGCCTCTGCTTCTGGCAGTTATGCGGTGCTGGTGGCGGCAGTCCTTCCGTGCTTCTGGTTGTATGCCGAGGTGGGCAAAACGCTTCACGCGGAGTTCGTGGCAGCGGGCGAACCGGCTGCCCACCCGTACGCCGCCTGGCTGCGGACCTACGCCGACGAAGACTTTGCCGCCGCCACCCGGCAGGCAATAGCCATGACGGACGACGCCGGGCGGCGGGGATCGGAGGATGAGCGCGCAGCGATGATCCTGGCATTCCGGCAATCCTGCCGTTTCGAGGTCGAATTCTTCGACGCGCCGCGGCTGCATGCCTGAMSSLSSTSVLPPAAPASATTPTSTQSTLTQPKAAGVLRDVPRVLSIAGSDPSGGAGIQADLKSIAAHGGYGMAAITALTVQNTQGVRAVHVPPASFLAWQLDAISDDITVDAVKIGMLGDADVMAAVRNWLEKVRPAVVVLDPVMVATSGDRLLAESAEAALQGLLPLADLITPNLAELAILLGEPQAGSWPEALEQGRRLAAATGATVLVKGGHLDGGDCPDALVNTGGVLSEDVVVVPGARIRTRNSHGTGCSLSSAMATTQARLGDWEASLRQVKPWLAAALQASAGLEVGSGNGPIHHFHHLQPAQPGTSDAGWTPLAAADFADVLWAAAAPDLEAIYGLEFIRDLADGSLAEKHFAYYLAQDATYLNGYSRVLARASALAPTEAEQLFWARSAQQCLEVESELHRSWLSTRTTDTVLGPVTKSYVDHLLAASASGSYAVLVAAVLPCFWLYAEVGKTLHAEFVAAGEPAAHPYAAWLRTYADEDFAAATRQAIAMTDDAGRRGSEDERAAMILAFRQSCRFEVEFFDAPRLHAPGPT0008915_35DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008915-thiD-K00941NANA
D1-29_028553462rneRibonuclease EATGGAAAATGAACAAGTACTAGCCGTTAACGACAATGCAGCTGTTAGCGACCACCCGGGAGCGCCGGAAGCCCCCAAGAAAGCCCCCAGGACCCGCCGGAAAGCAGCCCCGGCAGCAAGTGACGCCGGGGAGACCGCAGGGGCGGATGCATCCGCTGCGGACGCCCCGCCTGCGGATGCCCCGGTCGCAGATGCCCCAGTCGCAGAGGCCCCTGTTGCAGACGCCCCGGAAGCCAAGGCGCCTGTCCGCCGCACACGCGCCCGCAAGAAGGCTGACACAGCAGAGCCACTGCCGGCCTTCGCTGTAGAAGAGGCCGGCACCGTCGTGGATGATCAGCCTGCCGCCGCCCAGCCTGAGCCGGAAGCTGCCGCTGCTGGTCCCGACGCCGAGGCCGAGGCGAAGCCTGTGCGCCGCCGCCGTGTTGCCACCCGCAAGATGTCTGCCGCCGAGCCAATGTCCGCAGCCGAGCCAATGTCCGCAGCCGAGCCACTGTCCGCCCCGGTGGCCGGGCCCGCTGCCGCGGAAGTGGAAACGCCCGCCGGTCAGGAAGGGACTGCTGTGGAGGCTGCTGCCCCCACGGCCACAGAGCCTGAAGCCGCACCGGCACCTGAAGCGGCACAGGCACCCGAGCCGGCGCCTGTTGCCAAAGCCGAGGAAGCAGCACCGGCTGAACCAGCCAGCCCCTTTGGATCGCTTTTCCTGGAGCCGTCGCCCACCTCAGTGCTGTTCCAGGCCCCCGACCTGAGCACGGTGGCCCGCCAGGCGCCTCCCGCTCCGGCCGCAGCTGTGGAAGAAGCAGAGGATGACGACACCGAGGACGGCTCCGGCGACGACGCCGGTGTCCGCGGCAGGCGCCGCAGCCGTGGCCGCCGCGGGCGGAGCCGCACCGGCGGCCGTGATCTTGAGGGTGATAGCGCCGAAGGCGGCCAGGACAGCGCCGCGGACGACGCCGATGAGGAGTCTGCCGGTCAGGCTGAAGAGGGCGTGACCTCCCGCCGTCGACGCCGCCGCCGCCGGGGCGAGCAGGACCTTGAACTTACCGGGGGCGGCGATGATGACCCGCCCAACACCGTGACCCGTGTCCGTGCCCCGCGCGCCGTCACCGAGCCGATAGTCAACAACCGGGTGACCAGCGTCAAGGGCTCCACGAGGCTGGAAGCCAAGAAGCAGCGCCGCCGGGAGTCCCGCGACACGGGCCGCCGCCGCACCGTCATCACCGAGGCCGAGTTCCTTGCCCGCCGCGAGTCGGTGGACCGGCAGATGATCGTCCGCCAGCGCGACGACAGAATCCAGATCGCAGTCCTGGAGGACGGCGTCCTGGCTGAGCACTTCGTCTCCAAGACCCAGCAGGATTCCCTGATCGGCAACGTCTACCTGGGCAAGGTCCAGAACGTCCTGCCGTCCATGGAAGCAGCCTTCGTTGACATCGGACGAGGCCGCAACGCCGTGCTCTACGCCGGCGAAGTGAACTGGGAGGCCGTCAACCTCGAAGGCAAGCAGCGCCGCATCGAGAATGCGCTGAAATCCGGAGATACGGTCCTGGTCCAGGTCACCAAGGACCCCGTGGGCCACAAGGGTGCACGCCTGACCAGCCAAATTTCCCTTCCGGGCCGCTACCTCGTGTACGTGCCCGGCGGTTCCATGACCGGAATCTCACGCAAGCTGCCCGACGTCGAACGTAACCGCCTCAAGCGCATCCTGAAGGACCGGCTCCCGGAGCACGCCGGCGTTATTGTCCGCACAGCGGCCGAGGGCGCTTCCGAGGAGGAGCTTACCCACGACATCAACCGGCTGCGGGCGCAGTGGGAGGGCATCGAAGGCCAATCCACGTCCACCAAGATCCTCGCCCCGGAACTGCTGTACGGCGAACCGGACCTCACCATCAAGGTGGTCCGCGACGTCTTCAATGAGGATTTCTCCAAGCTGATCGTCTCCGGCGAGGAGGCATGGGACACCATTGAGGCCTACGTCACGTATGTTGCGCCTGACCTGGTGGCCCGGCTGGAAAAGTGGACCAAGGATCAGGACATCTTCGCGGCCTGGCGGATCGATGAGCAGATTCACAAGGCCCTGGACCGCAAGGTGTTCCTGCCGTCCGGCGGCTCCCTCGTGATCGACCGCACCGAAGCCATGACAGTGGTGGACGTCAACACCGGCAAGTTCACCGGCAGCGGCGGAAACCTTGAGGAAACCGTCACCAAGAACAACCTGGAAGCGGCCGAGGAAGTTGTCCGCCAGCTCAGGCTCCGCGACATCGGTGGCATCATCGTCATCGACTTCATCGACATGGTGCTGGAGTCCAACAGGGACCTGGTGCTGCGCCGGATGGTGGAGTGCCTGGGCCGCGACCGTACCAAGCACCAGGTGGCTGAGGTCACCTCGCTGGGCCTTGTCCAGATGACCCGCAAGCGGATGGGAACCGGGCTTCTCGAAGTCTTCGGAGAGCAGTGCGAGGTCTGCGCCGGCCGCGGCATCGTCACCCACGATGATCCCGTGGAGCACCGCCGGGCCAACATCGTTGCCGCCGAGCACCACGTGCAGCGCTCTGACACCCGCCCGGACGCCCATCGCCAGGAGCGGACAGACAGCCAGCGGACGGACAGCCAGCGGACAGAAAGCCAGCCGGGCGCACGCACCGACCGCAAACGGCGCCGCGGACGGGGAGGCCAGCCGCTGGACGTCGCTCCGGCTGCGCCCATCCAGATCCACACGGTCCACCCCGACCCCAGCGACGCCGAGCGCCATGCCAAGGCTGAGGCCACCAGGGCAGCCCTTGCCAACATTGCGGCCGCAGCACACGCCGCGCACCTGCACGACGAGGAGGCGGCTCAGGCTGCCGCCCGCGGAGTCCAGGCCCCGGCTTCCCCGGAAGCAGAGCAGGCCACGCCTGCTGCAGTGCCCGAACGGCACCAGCCTGACACGTCCGGCCGTCCAGCGGCCGTGCTGACATTCGGCGGTGAGCAGGTGGTGCTGCCGTTTGTGGAGCACGTGGAGGACCAGGCACAGAAGCCTGCACTGACGCTGGACCGCCTCGCTGAGGCATTCGCCCACCTTGGCGAGCCGGCTCCTGCAGAGGAACGCCCGCAGGTTGCCCTTCCGCAGGCGGAGCCAGGACGTGTCCAGCCGGAGCAGGCTGGGCGAGAGCAGGCCGGACGTGAGCAGATCCAAGCAGGACGTCCTGCCCGCCAGCCGGAGCCCGCGGTGGAGGAAAAGGACTACTCCGACCACACGGCTGAGCAGTCGCGCTCCCGCCGCCCGCGCCGTAACAGGAGTGCCAGCCGGGCCCAGGGTGCTGCCAACGCCACCTCGGTGGAACACCACGAAGGTACGCACGCAGCGCCGGAAGGTCACTCGCATTCGGCCAAGGCCCCGGAGCCTGCGACGGTTGCCAAGGGTGACCGGTCGGCCGGAGCCGAGGCTCCGATCATCCTGGGCGTAGGAGTGCCGGCGTCCGAACTCTAAMENEQVLAVNDNAAVSDHPGAPEAPKKAPRTRRKAAPAASDAGETAGADASAADAPPADAPVADAPVAEAPVADAPEAKAPVRRTRARKKADTAEPLPAFAVEEAGTVVDDQPAAAQPEPEAAAAGPDAEAEAKPVRRRRVATRKMSAAEPMSAAEPMSAAEPLSAPVAGPAAAEVETPAGQEGTAVEAAAPTATEPEAAPAPEAAQAPEPAPVAKAEEAAPAEPASPFGSLFLEPSPTSVLFQAPDLSTVARQAPPAPAAAVEEAEDDDTEDGSGDDAGVRGRRRSRGRRGRSRTGGRDLEGDSAEGGQDSAADDADEESAGQAEEGVTSRRRRRRRRGEQDLELTGGGDDDPPNTVTRVRAPRAVTEPIVNNRVTSVKGSTRLEAKKQRRRESRDTGRRRTVITEAEFLARRESVDRQMIVRQRDDRIQIAVLEDGVLAEHFVSKTQQDSLIGNVYLGKVQNVLPSMEAAFVDIGRGRNAVLYAGEVNWEAVNLEGKQRRIENALKSGDTVLVQVTKDPVGHKGARLTSQISLPGRYLVYVPGGSMTGISRKLPDVERNRLKRILKDRLPEHAGVIVRTAAEGASEEELTHDINRLRAQWEGIEGQSTSTKILAPELLYGEPDLTIKVVRDVFNEDFSKLIVSGEEAWDTIEAYVTYVAPDLVARLEKWTKDQDIFAAWRIDEQIHKALDRKVFLPSGGSLVIDRTEAMTVVDVNTGKFTGSGGNLEETVTKNNLEAAEEVVRQLRLRDIGGIIVIDFIDMVLESNRDLVLRRMVECLGRDRTKHQVAEVTSLGLVQMTRKRMGTGLLEVFGEQCEVCAGRGIVTHDDPVEHRRANIVAAEHHVQRSDTRPDAHRQERTDSQRTDSQRTESQPGARTDRKRRRGRGGQPLDVAPAAPIQIHTVHPDPSDAERHAKAEATRAALANIAAAAHAAHLHDEEAAQAAARGVQAPASPEAEQATPAAVPERHQPDTSGRPAAVLTFGGEQVVLPFVEHVEDQAQKPALTLDRLAEAFAHLGEPAPAEERPQVALPQAEPGRVQPEQAGREQAGREQIQAGRPARQPEPAVEEKDYSDHTAEQSRSRRPRRNRSASRAQGAANATSVEHHEGTHAAPEGHSHSAKAPEPATVAKGDRSAGAEAPIILGVGVPASELNANANANANA
D1-29_02856699hypothetical proteinATGCAAAGGACGCAACGAACCATGCCCAGTATCTCCCCTGCCAGGGGCGCCGGCAGCCCGGCCGCAGCCCCGGTGTCCGCGCCGGAACCCATCACGGACGCCGGCGTACCGCGCATGGCGCGGAACCGGCCCTTTGGCTGGCTTTTGGTCATCACCGGGGCCATCGGCTGGCTGGCTTCGGGCATCCTTGTGCTGGAAAAGCTTGAGGTACTCAAGGATCCGAACCACACCACCGTCTGCGACGTTAACCCTTGGATCTCGTGCGGTCAGGTAATGCAGACGCCGCAAAGCTCCGTGTTCGGGTTCCCCAACATGTTCATTGGCATCGTGGCATTCGCGGTCATCATCACCACGGGCATGGCCCTGCTGGCTGGCGCCAATTTTGCCCGCTGGTACTGGCTGGGACTCCAGGCGGGCGTGACGCTGGGCTTTGCGTTTGTGGTGTGGCTGTGGTTCCAGGCCTTGTATGAAATCCACATCCTGTGCCCGTTCTGCATGGTGGTCTGGGCTGCCATGATCCCTCTGTTCGTCTGGGTAACGGTGAGGAACGTCGCGCAGGGTGCCATTCCGGTGCCCGCCGGTGCCGCGCGCGTCCTGGGCGACTCAGGCTGGATCGTGACCGCGCTGCTTTACGTGGCTGTCATCGCCACCATCTTCTTCGCCTTCATCCAGGTGTTCGTAGGAACCTCAGGATTCTAGMQRTQRTMPSISPARGAGSPAAAPVSAPEPITDAGVPRMARNRPFGWLLVITGAIGWLASGILVLEKLEVLKDPNHTTVCDVNPWISCGQVMQTPQSSVFGFPNMFIGIVAFAVIITTGMALLAGANFARWYWLGLQAGVTLGFAFVVWLWFQALYEIHILCPFCMVVWAAMIPLFVWVTVRNVAQGAIPVPAGAARVLGDSGWIVTALLYVAVIATIFFAFIQVFVGTSGFNANANANANA
D1-29_02857420ndkACOG0105Nucleoside diphosphate kinaseGTGAGCATTGAGCGCACCCTGGTTTTGATTAAGCCCGACGGCGTGGCCCGCAACCTGAGCGGCGCCATCCTGAGCCGCATCGAGGCCAAGGGCTACACCCTTGCCGAGCTGAAGAAGGTGGACGCAAGCCGTGAGCTGCTGGAGCAGCACTATGAGGAACACGTGGGCAAGCCGTTCTATGAACCGCTCGTGGAGTTTATGCTCAGCGGCCCGGTTGTCGCCGCAATCTTCGAAGGCCACCGTGTGATCGAAGGCTTCCGTTCCCTCGCTGGAACGACCGACCCCACAACGGCAGCTCCCGGTACCATTCGAGGCGACTTTGGCCGCGACTGGGGCCTGAAGGTGCAGCAGAACCTTGTCCACGGATCAGATTCGGTGGACTCCGCCGAGCGCGAAATCAAGATCTGGTTCCAGGACTAGMSIERTLVLIKPDGVARNLSGAILSRIEAKGYTLAELKKVDASRELLEQHYEEHVGKPFYEPLVEFMLSGPVVAAIFEGHRVIEGFRSLAGTTDPTTAAPGTIRGDFGRDWGLKVQQNLVHGSDSVDSAEREIKIWFQDPGPT0021210_4975DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940NANA
D1-29_02858498hypothetical proteinATGGCCAAGCTGACGAAGGCGCAGCGGGAGTGGCGCCCGGGAATGCCGAAAAAGCGCCGCTCAACCAAGGTGATGTTCGCCTCCACTGTCCTGCTGCTCGAAGCCTTTGTGGCATTCTTCGCCACACTGGCCGTCTTTGGGCTCAAGCGGGGAGAGTTTCCGCCGGCGCTGATCCTGGGTGTTGGCATCGCCCTCAGCGTGGTGATGATCCTTGCCTGTGCGGTGCTGTCAAAGCCCTGGGGGATTGCCCTGGGATGGATCCTGCAGATCGTGCTGATTCTTACCGGCATCGTGGAACCCATGATGTTCCTGGTGGGCGCGCTCTTCGGCCTGGCCTGGTGGTACGGCATCCGTACGGGCATCAGGATCGATTCCGAGGCGGCTCAACGGGAACGCGAGCAGGCGCAGTGGGATGCAGCCCACCCGGGCGGTCCCCAGCAGCCCCAGGATCAGAAACAGGATCCCAAGACTCAGGATCCCCAGACTCAGGATCCCTAAMAKLTKAQREWRPGMPKKRRSTKVMFASTVLLLEAFVAFFATLAVFGLKRGEFPPALILGVGIALSVVMILACAVLSKPWGIALGWILQIVLILTGIVEPMMFLVGALFGLAWWYGIRTGIRIDSEAAQREREQAQWDAAHPGGPQQPQDQKQDPKTQDPQTQDPNANANANANA
D1-29_028591359folCCOG0285Dihydrofolate synthase/folylpolyglutamate synthaseATGACCGACGAATTCTCCGTTGAGAGCGTCTACGCCGAGCTGCTCGGCCGGGCACCGGAAAACAAGATGGAGCCCCGGCTCGCACCGCTGTTCCGCGCCATGGACGTGCTGGGGGAGCCAAACAAGGCCTTCCCGATCATCCATGTGACCGGGACCAACGGCAAGACCTCCACGGCACGGATGATCGAAGCCGGCCTCCGCGCCCACGGACTGAGTACGGGCCGCTACACCAGCCCGCACCTGTCCAAGGTCACCGAGCGGATCAGCATTGACGGCCACCCGGTATCTGATGCCACCTTTGTCCGGATCTGGGACGAAATCCGCCCTTACCTGCAGATCGTGGACGATGAGCTGACGGCGGCCGGTGAACCCCGGCTGACCTACTTCGAATGCCTCACCATCCTTGGCTTTGCCATCTTTGCCGATCAGCCGGTCAACGTCGCGGTGATTGAAGTGGGCCTGGGCGGCATCACCGATGCCACCAACGTGGGGGATGGCCAAGTATCCGTCATCACGCCCATCTCCCTGGACCACACAGACCTGCTGGGCGATACCACCGAGGACATCGCGTATGAAAAGGCCGGAATCATCAAGCCCGGCGGCTACCTGATCAGCGCAGCCCAGCCCGTGGATGCTGCCCAGGTGCTGCTCGAAAAGGCCAAGGACGTGGGTGTCCCGTTCCGGTTCGAAGGCGTGGAGTTCGGCGTCGAATCCCGGACAGTTGCCGTGGGCGGCCAGGTGGTCAGCATCCAGGGGATCGCAGGCCGGTATCCGGAAGTACTGGTACCGCTGCACGGCGCACATCAGGCCCAGAATGCCGCTGTGGCCGTGGCCGCACTGGAAGCGTTCTTCGGCGGCGAAAAGGAACTCGACGCCGAGCTGCTCCAGGAAGCGTTCGCCAGCGTCACTTCACCCGGGCGCCTTGAGGTTGTCCGGACGGCGCCCACCATCATCGTGGACGCTGCGCACAATCCCGACGGCATCCGTGTTTCCGCCGAAGCCATCCAGGAGGCCTTCAGCTTCAGCAAGCTGGTGCCGGTGGTGGGCGTGCTGAAGGAAAAGGACGCCGAGGAAATCCTTCGCCAGCTCAAGGAATCCCTGGGCGAGGTGGCGGAGGAGTACTGCTTCACCCAGTCCAACTCCCCGCGGGCGGTGCCTGCCGCCGAGCTCGCGGAGCTTGCCGTGGAAATGGGCTTCGGCGAGGACAACGTCCACATTGCCGAGAAGCTCGACGACGCCCTGGAATGGGCCGTTGAACGTGCGGAAGCCAACGATGACCTCTCCGGCGGAGTGCTGGTGACAGGCTCCATCACTCTCGTGGCTGAAGCGCGGATCCTGCTGGGAAGGACGGAGGCTTAGMTDEFSVESVYAELLGRAPENKMEPRLAPLFRAMDVLGEPNKAFPIIHVTGTNGKTSTARMIEAGLRAHGLSTGRYTSPHLSKVTERISIDGHPVSDATFVRIWDEIRPYLQIVDDELTAAGEPRLTYFECLTILGFAIFADQPVNVAVIEVGLGGITDATNVGDGQVSVITPISLDHTDLLGDTTEDIAYEKAGIIKPGGYLISAAQPVDAAQVLLEKAKDVGVPFRFEGVEFGVESRTVAVGGQVVSIQGIAGRYPEVLVPLHGAHQAQNAAVAVAALEAFFGGEKELDAELLQEAFASVTSPGRLEVVRTAPTIIVDAAHNPDGIRVSAEAIQEAFSFSKLVPVVGVLKEKDAEEILRQLKESLGEVAEEYCFTQSNSPRAVPAAELAELAVEMGFGEDNVHIAEKLDDALEWAVERAEANDDLSGGVLVTGSITLVAEARILLGRTEAPGPT0007975_961DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754NANA
D1-29_028603330ileSCOG0060Isoleucine--tRNA ligaseATGACGTATTACCCCAAGGCCTCAGCCTCAGCTCCCGCCAGCGCGGCGGCCACCGTGCCCGCCTCCGTGAAGTTCCCGGAGATCGAAGAGCGCATCCTGAAGTACTGGGACCAGGATGGAACCTTCCAGGCCAGCATCGACCAGCGAAGCGCCGACGCCCCCGGCGGCGAGCCCGGCAGCAACGAATTCGTCTTCTACGACGGCCCGCCGTTCGCCAACGGCCTGCCGCACTACGGCCATCTGCTCACCGGGTACGCCAAGGACCTGGTGGGGCGCTACCAGACCCAGCGCGGCAAGCGCGTCGAACGCCGGTTCGGCTGGGACACCCACGGGCTGCCCGCCGAGCTGGAGGCCATGAAGCAGCTGGGCATGACGGACAAGACCCAGATCGAGGCCATGGGCATCGACAAGTTCAACGACGCCTGCCGCGCTTCGGTGATGAAGTACGCGGATGAATGGAAGAGCTACGTCACCCGCCAGGCACGCTGGGTTGACTTCGAGAACGACTACAAGACCCTCAACGTCGAGTACATGGAGTCCGTGCTCTGGGCTTTCAAGCAGCTGCACGAAAAAGGCCTGACGTACAACGGGTACCGCGTGCTGCCGTACTGCTGGAAGGACGAGACGCCGCTGTCCAACCATGAACTGCGCATGGATGACGACGTCTACAAGAACCGGCAGGACCAGACAGTCACCGTCACCTTCCCCATCACAGCCGGAGCGTCAGCGCTCTCGCAAGAGCTGGCAGGGGTCCAGGCGCTCGCCTGGACCACCACACCCTGGACGCTGCCCACCAACCTGGCGCTCGCCGTCGGACCTGGAATCACTTATGCGGTGCTTCCTGCCGGCCCGCACGGGATCAAGGCCGCTTCGCCGGAGGCTCCCGTCACCGGAAGCTTCCTGCTGGCCGCTGATCTGCTGGGCACCTACGCCAAGGATCTCGGCTACGACGATTTCGACGCCGCCGCAGCCGCTGTCACGTCCACGCACACCGGTGCGGAGCTTGAGGGTCTGCAGTACGAGCCGCTTTGGCACGATTTCAGCGACACCGAGAAGTTCGGTACCCAGAACGCCTGGCGCATCCTGCCGGCCGACTACGTAACCACCACCGACGGCACCGGCATCGTGCACCAGGCGCCGGCCTACGGTGAAGATGACCAAAAGATCTGTGAAGAGGCCGGTATCCCGGTGGTGCTGTCGGTGGACGAAGGAGCAAAGTTCCTGCCGCTGTTCAAGCACGGCGACCTGCATGACATCGCCGGCCTCCAGGTCTTTGAGGCGAACAAGCCCATCACCCAGGTCCTTCGGGCGCAGGGAAGGCTGGTCCGGCAGGCAAGCTACGAGCACAGCTACCCGCACTGCTGGCGCTGCCGCAATCCGCTGATCTACCGTGCCGTGTCCTCCTGGTACGTGGAGGTCACCAAGTTCAAGGACCGGATGTCCGAACTGAACCAGGAAATCAACTGGATCCCCGGCAACGTCAAGGAGGGCCAGTTCGGCAAGTGGCTGGCCAACGCCCGCGACTGGTCCATCAGCCGCAACCGCTACTGGGGCAGTCCCATCCCGGTGTGGCAGTCCTCCGACCCTGAGTTCCCCCGGACCGACGTCTACGGTTCCCTTGCAGAGATCGAGGCCGATTTCGGCCGCCTGCCGCTGAACAAGGACGGCCAGGTTGACCTGCACCGGCCCTTCATCGATGAGCTGACCCGGCCCAACCCGGACGATCCGCGCACCCCCGAGGAGGGGCAATCCGTGATGCGCCGGGTCGAGGACGTGCTGGATGTCTGGTTCGACTCCGGATCGATGCCCTACGGCCAGGTTCACTACCCCTTCGAGAACGAAGCCTGGTTCGATACCCACAACCCGGCCGACTTCATCGTGGAGTACATCGGCCAGACCCGCGGCTGGTTCTACATGCTGCATATCCTCTCCACCGCGCTGTTCGACAGGCCGGCCTTCCGCAACGTCATCAGCCACGGCATTGTGCTGGGCTCTGACGGGCAGAAGATGTCCAAGAGCCTGCGCAACTACCCGGACGTCTCAGAGGTCCTGGACCGTGACGGCTCGGACGCCATGCGCTGGTTCCTGATGGCCAGCCCCATCCTGCGCGGCGGTAACCTGGTGGTCACCGAGCAGGGAATCCGCGACGGCGTCCGTCAGGTCATCCTGCCGCTCTGGAACGTTTACAGCTTCTTCACGCTGTACACGAATGCCTCCAACGGCGGTCAAGGGTACGACGCCGCCCTGCGCTACGACGGTTACCAGGACACCCTTGACCAGTACCTGCTGGCCAACACCGGCGACCTGGTCCGCAACGTCACAGCGCATTTGGACAGCTACGACATCTCGGGGGCCTGCGACGAACTCCGCAGTTACCTGGACATGCTCACCAACTGGTACGTCCGCCGCAGCCGCCAGCGCTTCTTCGACGAGAATGCTGACGCTTTCGACGCCCTCTACACGGCGCTGGAAACCGTCTCACGCGTGGCTGCCTCGCTGCTGCCCCTGGTCTCCGAGGAAATCTGGCGGGGCCTGACCGGCGGGCGTTCCGTGCACCTCGCCGACTGGCCCGATGCGGACCTGTTCCCGGCCAACCCCGCCCTGGTCGAAGCAATGGACCGGGTGCAGCAGATCTGCTCCACCGGATCTTCGCTGCGCAAGGCTGCCAACCTCCGCGTCCGCCTCCCACTGCAGGAGCTGACCGTGGTGGCACCCGGCGCTGATGCGCTGGGAGGCTTCGCCGCCGTCGTCGCCGAAGAACTGAACATCCGTTCGGTCCGGCTGCTCGACGCCGAGAACGCCTCACCCGAGGAGTTCGGCATTGAGCAGAAGCTCGTGGTGAATGCCCGGGCAGCGGGTCCGCGCCTCGGGAAAAACGTCCAGCAGGCCATCAAGGGATCCAAGTCCGGCGACTGGTCAGTCTCAGAAGCAGGCGTTGTCACGGCCGGCGGACTGGAACTGGAACCGCAGGAATACACGCTGGAGACCGTGGTGGCGGAATCCGCCGCCGGTACTGGTCCTGCCACCAGGGCTGCCGCCGTGCTTCCCGGCGGAGGTTTTGTGGTCCTCAACACCGAGGTCACCCCGGAGCTTGAGGCTGAGGGCATCGCCCGCGACATGGTCCGCGCCATCCAGCAGGCACGCAAGGACGCCGGGCTGAACGTCAGCGACCGGATCCGGACGAGTATCCAGGCACCCAGGAACATGGTGGAAGCCATCAAGGCAAACGAAAACCTGGTCGTCGCCGAAACTCTCACCGTAGAACTCCACCTGTCCTCCAGCGGGGATGACACCGAACTGCAGATCACCGTCGAAAAAGTAGAGGCCTAGMTYYPKASASAPASAAATVPASVKFPEIEERILKYWDQDGTFQASIDQRSADAPGGEPGSNEFVFYDGPPFANGLPHYGHLLTGYAKDLVGRYQTQRGKRVERRFGWDTHGLPAELEAMKQLGMTDKTQIEAMGIDKFNDACRASVMKYADEWKSYVTRQARWVDFENDYKTLNVEYMESVLWAFKQLHEKGLTYNGYRVLPYCWKDETPLSNHELRMDDDVYKNRQDQTVTVTFPITAGASALSQELAGVQALAWTTTPWTLPTNLALAVGPGITYAVLPAGPHGIKAASPEAPVTGSFLLAADLLGTYAKDLGYDDFDAAAAAVTSTHTGAELEGLQYEPLWHDFSDTEKFGTQNAWRILPADYVTTTDGTGIVHQAPAYGEDDQKICEEAGIPVVLSVDEGAKFLPLFKHGDLHDIAGLQVFEANKPITQVLRAQGRLVRQASYEHSYPHCWRCRNPLIYRAVSSWYVEVTKFKDRMSELNQEINWIPGNVKEGQFGKWLANARDWSISRNRYWGSPIPVWQSSDPEFPRTDVYGSLAEIEADFGRLPLNKDGQVDLHRPFIDELTRPNPDDPRTPEEGQSVMRRVEDVLDVWFDSGSMPYGQVHYPFENEAWFDTHNPADFIVEYIGQTRGWFYMLHILSTALFDRPAFRNVISHGIVLGSDGQKMSKSLRNYPDVSEVLDRDGSDAMRWFLMASPILRGGNLVVTEQGIRDGVRQVILPLWNVYSFFTLYTNASNGGQGYDAALRYDGYQDTLDQYLLANTGDLVRNVTAHLDSYDISGACDELRSYLDMLTNWYVRRSRQRFFDENADAFDALYTALETVSRVAASLLPLVSEEIWRGLTGGRSVHLADWPDADLFPANPALVEAMDRVQQICSTGSSLRKAANLRVRLPLQELTVVAPGADALGGFAAVVAEELNIRSVRLLDAENASPEEFGIEQKLVVNARAAGPRLGKNVQQAIKGSKSGDWSVSEAGVVTAGGLELEPQEYTLETVVAESAAGTGPATRAAAVLPGGGFVVLNTEVTPELEAEGIARDMVRAIQQARKDAGLNVSDRIRTSIQAPRNMVEAIKANENLVVAETLTVELHLSSSGDDTELQITVEKVEANANANANANA
D1-29_02861399hypothetical proteinATGTTCCGTTCAGGATGCGAGGACGGCCTCGGTGCTGTCCTGGGACTGCACGCTGACCGCGGTACCACCTCACTTACCGGTAACCCCCCCACGAAAGGGGACTGCCTACCGGCCGCTCATTACTGCTGTGACGGGCTTACCCGTCCGGTTCTACTGACGCTGCGGGCCAAACCGGCCCGGAACGCGTTCTTCCGGAAGCTCACCGGTGATAGCCGGGTCATAGCCAAGTTCGAGTCTACTATCGCCGGGGCGTCCACCGCCATTCCTTGGCAGGGCTCAACTGTGACCGCGGAACCGTTGGAAGTGCGGGCCGGGCCACCAATAATGGGGGGATGGAGAGCGGCGGCACTCACAGGCGGCGACAGCACCGCCGCAGCAGTGCCTTCTGCTGGTTCATAGMFRSGCEDGLGAVLGLHADRGTTSLTGNPPTKGDCLPAAHYCCDGLTRPVLLTLRAKPARNAFFRKLTGDSRVIAKFESTIAGASTAIPWQGSTVTAEPLEVRAGPPIMGGWRAAALTGGDSTAAAVPSAGSNANANANANA
D1-29_02862942hypothetical proteinATGCGGCTGGTGCCATGGGACATCGGCACGCCATGGATCCAGCTCCTGTCCCTGCTTCCGGCAAGCGTGATGGTGACACTGACGGCCGCCATGCTCGCGCTGCTGGCCGTTTGGCTGGACTTTCGACGCAGCACGACCATTCTGGCTGCGGCGGTGGCTGGTGTGCTGGTGGTGCAGCTTGGCATGGTCCTGCCCCGGGTCCTTCCGGCGGGCGGAACAGGGGTGGAAGCGGCGGCGCAGGCTGCCAACGCGGACTCAGGCCGCGAGCTGACGGTGATGGCCCTCAATGTGGGGCCCCCGGGGGTTGACGCCAAAGGAGTCCTGGCCGAGGCCCGGGCCCGGAAAGTTGACGTGCTGGCCCTGCCCGAGCTGGCCCATGCCAGCCTTGAGGCCCTGGAACAGGCGGGCTTGGCAGCCGATTTCTCCCACCGCGCGCTGGACGTTGACTGGGCAGGCACGGGCAGCGGCATCTTCTCCCGCTTCCCATTGCAGACCGTGGAGCGTGTACCGGGCAGCGTCTTCTACCAAAGCCGGGCGGTGGCAACTGTTCCAGGTGGCGGGCAAGCCCTGCATCTCACGGCCGTGCACATCGACTCTCCGCGCCCGGGCCACACGCCCTACTGGCGCGCGGAACTGCGGCAGCTGGGCGAACTCCGGCGGGATCTGCAAGGGTCTCCGCCGATCATCCTGCTGGGTGACTTTAATGCCGGGCATGATCATCGCGAATTCCGCGAACTGCTGGATACGGGGCTGACGGACGCCGCCGCGTCCGCGGGCAAAGGACTGGCCCCCACCTGGCCGCAGAACAGCCGGGTTCCGCCGTTTGTGGCACTGGACCACGTGCTGGTCAGCCCGGGTATCTCGGTACTGTCGTTCGAGACCGTGAAGATTGCAGGAACCGATCACTCCGCTGTCGTGGCCACCTTGAGGCTCCCCCGGTGAMRLVPWDIGTPWIQLLSLLPASVMVTLTAAMLALLAVWLDFRRSTTILAAAVAGVLVVQLGMVLPRVLPAGGTGVEAAAQAANADSGRELTVMALNVGPPGVDAKGVLAEARARKVDVLALPELAHASLEALEQAGLAADFSHRALDVDWAGTGSGIFSRFPLQTVERVPGSVFYQSRAVATVPGGGQALHLTAVHIDSPRPGHTPYWRAELRQLGELRRDLQGSPPIILLGDFNAGHDHREFRELLDTGLTDAAASAGKGLAPTWPQNSRVPPFVALDHVLVSPGISVLSFETVKIAGTDHSAVVATLRLPRNANANANANA
D1-29_028631035hypothetical proteinATGACTGTTTCCACCCGGGTCCGGGCAAAAGCACGCCCCGCAGCGCTCTTCAGCTGGTTGTCGCTCGTGGCCGGTGTCCCCGTGGCGGTCCTCTCAGTCTTCCGGGCCGTTCCTGCCGAATGGCCGGTTCTGGTGGTCCAGGTGCTGTCCTTCACGCCCTGGCTGGCGCTTCCCGCTGCGGTATCGCTGCTCTTTGCTCTCCTGGGCAGGCGCCGCTGGCAGCAGGCGCTGGCGGCGCTGCTCCTTGGCTGCCAGGCGTTTTGGCTCTTCCCGTTGGATGCCGGCCGCCCCGCGGCCGAAGCAACCGGGGCCAGCGTTGAACTGAAGGCCATGACCATCAATTCCGAGTACGGCCAGGCCGACGCCGCCGCCATCGTGCGCCTTGTCCGGGAGCACGGCGTGGGCCTGCTGACTGTCCAGGAGCACTCCCAGGACCTGCAGGACCGGCTGTCAGCTGAGGGCCTGGACGTGCTCCTGCCGCACAGGATCAGCGACCCCACTGACGACGCAGCGGGCAGCGCGGTGTACTCGATCTTCCCCCTGGAGCAGGTGGGCCTGATTCCGGACACACCCTTCAAGATGCCAACGGTCCGCCTGACAGCCCGCAACGGCGCGTCCGTAGCGGTGCTGGAAGTGACAAATGTCCATACCCTGCCGCCGGTTGACCACCGGGTTGACCAATGGCGCAGTGATCTTGCGGCCTTGGGAAGGGCGGCGGAACGTCCCGGCAACAGGCTCCTGATCGGTGACTTCAACGCGACCTTTGACCATCCTGAGTTCCGTGAACTGCTGGCTGCCGGGCATCGCGGAAACGCCAGCCCCGGTGAAAATCAGTCCGGGCTCGTCGATGTTGGTGTCGCGGCCGGCTCAAGGCTGGTCCCCACGTGGCCCATGGACGGCCCCAAGCTTCCAGGCATCACCATCGACCACCTGGTGACCAGCCCGGGCATGGGCAGCTCCGGTTATGAGGTCCACCCGGTGGAGGGAACGGATCACGCGGCAGTCCTGGCCACTCTCGCCATCCCCGCCACCTGAMTVSTRVRAKARPAALFSWLSLVAGVPVAVLSVFRAVPAEWPVLVVQVLSFTPWLALPAAVSLLFALLGRRRWQQALAALLLGCQAFWLFPLDAGRPAAEATGASVELKAMTINSEYGQADAAAIVRLVREHGVGLLTVQEHSQDLQDRLSAEGLDVLLPHRISDPTDDAAGSAVYSIFPLEQVGLIPDTPFKMPTVRLTARNGASVAVLEVTNVHTLPPVDHRVDQWRSDLAALGRAAERPGNRLLIGDFNATFDHPEFRELLAAGHRGNASPGENQSGLVDVGVAAGSRLVPTWPMDGPKLPGITIDHLVTSPGMGSSGYEVHPVEGTDHAAVLATLAIPATNANANANANA
D1-29_02864768COG4221putative oxidoreductaseATGACAGCACAGGACAGGGCAGCGCAGAACAGGGCGGCCGTAGTCACGGGCGCCAGTACCGGCATCGGCGAGGCGACAGTGCAGGCGCTCAGGGCCGACGGCTGGACGGTCTTCGCCGTGGCACGCCGCGCCGAAAGGCTTGCCGCCCTGGAAACCGAAACAGGCGCCGTCGCGATTCCTGCTGACATCACCGAAGACGGTGACGTTGCGCAGTTGCTGGCCCGCGTGACGGAGGCAGGAGGCATCGGAACGCTGATCAACATCGCCGGCGGAGCAAGGGGTGCCGATCCCGTGGGTGCGGCCAGCAGTGAGGACTGGGAGTGGATGTACCGGGTCAACGTGCTGGGCACCATGAAACTCACCCGGGCGTTCCTGCCGATGCTGCGCGCCAATGGGGAAGGAACCGTCCTGAACCTGACGTCCACCGCCGGCCTGGTGGCCTACGAGGGCGGCGCCGGCTACAACGCAGCGAAGTTTGCCCAGCACGCCATGACAGGGGCGCTCCGTCTCGAGGAAGCAGAGCACAACGTCCGCGTCATCGAGGTGGCTCCCGGCCTTGTGCAGACAGAGGAATTCGCATTGAACCGGCTCGGTGACCGGCAGGCCGCCGAAAAGGTTTACCAAGGCGTGGAGAAACCCCTGACCGCCGCGGACGTAGCGGATGTGGTGCGGTACGCCGTGAGCGCCCCGCATCACGTCAATCTCGATCAGATCGTGATCAGGCCTGTTGCCCAGGCCGCCAACCACAAAATTATCCGCAGGGGCTGAMTAQDRAAQNRAAVVTGASTGIGEATVQALRADGWTVFAVARRAERLAALETETGAVAIPADITEDGDVAQLLARVTEAGGIGTLINIAGGARGADPVGAASSEDWEWMYRVNVLGTMKLTRAFLPMLRANGEGTVLNLTSTAGLVAYEGGAGYNAAKFAQHAMTGALRLEEAEHNVRVIEVAPGLVQTEEFALNRLGDRQAAEKVYQGVEKPLTAADVADVVRYAVSAPHHVNLDQIVIRPVAQAANHKIIRRGNANANANANA
D1-29_028652619valSCOG0525Valine--tRNA ligaseATGGCTGAAACACATCAGGGTACAGACACGCCCTCCACCGCCCCTATCAACGTTCCGGACAAGCCCGCCCTCGAAGGGCTCGAAGCTGCCCTCACGCAGCGCTGGCTTGCCGAAGGGACCTACAAGTTCGACCCGGACACCACCCGTGATCAGGTCTACTCCATCGACACTCCCCCGCCCACGGCGTCGGGATCGTTGCATGTAGGTCACATGTTCTCCTACACCCAGACCGACGTGCTGGCCCGTTACCAGCGGATGATCGGCAAGAACGTCTTCTACCCGATGGGCTGGGACGACAACGGCCTGCCCACGGAACGCCGTGTACAGAACTACTACGGCGTGCGGTGCGACCCAGCCATCGCCTACAACGCCGACTACCGTCCGCCGGCCCAGCCCGCCAAGAACCAGCGCGACTTCGACGTCGTCTCGCGCCGGAACTTCATCGAGCTGTGCGAGGAACTTGCCGTTGAGGACGAGAAAGTCTTCGAGAACCTGTTCCAGACGCTTGGCCTGTCCGTCGACTGGGCCCTCACGTACCGGACCATTGACGAGAACTCCCGGGCAGTCTCCCAGCGCGCCTTCCTGGCCAACCTGGCCGCCGGTGACGCCTACATGGCCGAAGCCCCCACGTTGTGGGATGTGACGTTCCGTACCGCGGTGGCCCAGGCAGAACTGGAAGACCGCGAAGTGGCCGGCGCCTACTACCGCTATCCGTTCTTCACAGAGGACGGCGAAAAGATCTACATCGAAACCACCCGCCCCGAGCTGCTGGCCGCCTGCGCCGCCCTGGTGGCCAACCCCGACGACGAACGGTACCAGGCGCTGTTCGGCAAGAAGGTCACGTCCCCAGTCTTCGGTGTTGCGGTTGAGGTCATGGCCCATCCGCTGGCCAAGGCAGACAAGGGCTCCGGCATCGCCATGGTGTGCACCTTCGGCGACCTGACCGACGTGACCTGGTGGCGTGAACTGCAACTTCCAACGCGGGCCATCGTGGGCCGCGACGGCAGGATCGTCGGCGAGACGCCTGACTGGATCACCACCGACGCCGGCCGCGAGGCCTTCGCCGCCATCGCAGGCAAGACCGCCTTCAGCGCCAAGGAAGCAGTGGTGGAGCGCCTTGCCGCGGAGGACCTGCTCGACGGCGAGCCCAAAAAGATCATGCACCCGGTGAACTTCTACGAAAAGGGCGACAAGCCCCTCGAAGTGGTCACGTCACGGCAGTGGTACATCCGCAACGGCGGCCGGGACGAAGACCGGCGCGAACGCCTGATCGCGCGTGGGCATGAGATCGACTTCCATCCTGCCTTTATGCGTTCGCGTTACGAGAACTGGATTGCAGGCCTGAACGGCGACTGGCTGGTCTCCCGCCAGCGCTTCTTTGGCGTGCCCATCCCCGTCTGGTACCCGCTGGACTCCGACGGCAACCCGAACTACGACGCCCCGATCGTGCCGTCGGACGAGCAGCTGCCGGTAGACCCGGCCGCTGATGCTGCGCCTGGCTTCGAGGAGGCGCAGCGTGATGTGCCGGGCGGCTTCACCGGCGACGCAGACATTCTGGATACCTGGGCCACGTCCTCGCTGACGCCAAAAATCGTGGGCGGCTGGAGCCGGGACGAGGAACTCTTCGCCAAGGTGTTCCCGTTCGACCTTCGTCCGCAGGGCCACGACATCATCCGCACCTGGCTGTTCTCTTCCGTGGTGCGCGCCGACGCCCTCGAGAACTCCGCGCCTTGGAAGCACGCAGCCATCTCCGGCTGGATCCTGGATCCGGACCGGAAGAAGATGTCCAAATCCAAGGGCAACGTGGTGGTACCCACCGACGTCCTGGAAGAGTACGGCTCAGATGCTGTGCGGTACTGGGCTGCCTCAGCCAAGCTTGGCGCCGACACGGCCTATGAGATTGCCCAGATGAAGATCGGCCGGCGCCTGGCCATCAAACTCCTGAACGCATCCAAGTTCGTCCTGAACCTCGGAGCCACGGAGGACTCAGTCCTCTCCGGCGACCTGTCGGTCCTGACCAACCCCCTGGACCGTGCGGTGCTGGCCCAGCTCGCGGACGTTGTGCGCCAGTCCACCAAGGCCTTTGAGAACTATGACTATGCCCGGGCCCTGCAGATCACGGAAAGCTTCTTCTGGCAGTTCACCGATGACTACGTGGAGCTCATCAAGGACCGCGCCTACGGTGCGGCGGGCGAGCAGGAGCAGGCATCAGTGCTGGCTGCCCTGGCCACCAGCCTGGACACCCTGCTCCGGCTGTTCGCCCCGTTCCTGCCCTTCGCTACAGAAGAGGTGTGGAGCTGGTGGCGCAACGGCTCCGTACACCGCGCCCAGTGGCCGGCTGCTGTGGAGATCGACGGCGACACCACCCTGCTGGCCACCGTCGGCACGGCGCTGAGCGGCGTGCGCAAGGCCAAGTCCGAGGCGAAGGTCAAGCAGCGCACGGAGGTCCTGTCGGCAACCATCACTGCCACGGAATCCCTGACCACCCAGCTCAAGGCCGGGCTGGGCGACCTGAAGGCTGCCTCCAATGCCCGCGAACTGACGCTTGTCGCCGGCGACGGGGAACTGACTGTCAGCGACGTTGTCCTGGCACCGGCCGAGGGAACCGTGCCCGCCTGAMAETHQGTDTPSTAPINVPDKPALEGLEAALTQRWLAEGTYKFDPDTTRDQVYSIDTPPPTASGSLHVGHMFSYTQTDVLARYQRMIGKNVFYPMGWDDNGLPTERRVQNYYGVRCDPAIAYNADYRPPAQPAKNQRDFDVVSRRNFIELCEELAVEDEKVFENLFQTLGLSVDWALTYRTIDENSRAVSQRAFLANLAAGDAYMAEAPTLWDVTFRTAVAQAELEDREVAGAYYRYPFFTEDGEKIYIETTRPELLAACAALVANPDDERYQALFGKKVTSPVFGVAVEVMAHPLAKADKGSGIAMVCTFGDLTDVTWWRELQLPTRAIVGRDGRIVGETPDWITTDAGREAFAAIAGKTAFSAKEAVVERLAAEDLLDGEPKKIMHPVNFYEKGDKPLEVVTSRQWYIRNGGRDEDRRERLIARGHEIDFHPAFMRSRYENWIAGLNGDWLVSRQRFFGVPIPVWYPLDSDGNPNYDAPIVPSDEQLPVDPAADAAPGFEEAQRDVPGGFTGDADILDTWATSSLTPKIVGGWSRDEELFAKVFPFDLRPQGHDIIRTWLFSSVVRADALENSAPWKHAAISGWILDPDRKKMSKSKGNVVVPTDVLEEYGSDAVRYWAASAKLGADTAYEIAQMKIGRRLAIKLLNASKFVLNLGATEDSVLSGDLSVLTNPLDRAVLAQLADVVRQSTKAFENYDYARALQITESFFWQFTDDYVELIKDRAYGAAGEQEQASVLAALATSLDTLLRLFAPFLPFATEEVWSWWRNGSVHRAQWPAAVEIDGDTTLLATVGTALSGVRKAKSEAKVKQRTEVLSATITATESLTTQLKAGLGDLKAASNARELTLVAGDGELTVSDVVLAPAEGTVPANANANANANA
D1-29_02866615Thioredoxin-like reductaseATGACTGAAACTGCCACCAACCAGGCTGACTTCTGGTTCGATCCGATCTGCCCCTTCGCCTGGATTACGTCCCGCTGGATCGGCGAAGTGGAAGACGTCCGCGACATCAGGACCGTCTGGCACGTCATGAGCCTTGCTGTCCTCAACGAAGGCCGCGAGCTGGACCCTGGGTACCGTGAAGCCATGGACAAGGCCTGGGGACCGGTTCGGGTCATCATCGCGGCCAAGGAACAGCACGGCGACAGCGTCATCAAAGAACTTTACGATGCCATGGGCACCCAGATCCATGAGGGTGGCGAGAAGGACTACGGCATCGTCATTAGCAAGGCGCTGGCTGAATGCGGCCTTCCCGCCGGGCTGGCCGAGGCTGCCGCGACAGATGCCTACGATGCCCAGCTCCGGGCCAGCCACGAAGAGGGCATCTCCCTGGTGGGCCAGGATGTCGGGACGCCGGTGGTGGCCTTCAACGGTACTGCCTTCTTTGGGCCGGTCCTGACCCGCATCCCGCGCGGCGAGCAAGCCGGCGGGCTGTGGGACGCCACGGTTGCCCTGGCCTCCTACCCGCATTTCTTTGAGATCAAGCGCAGCCGCACCGAGCGCCCCCAGTTCGACTGAMTETATNQADFWFDPICPFAWITSRWIGEVEDVRDIRTVWHVMSLAVLNEGRELDPGYREAMDKAWGPVRVIIAAKEQHGDSVIKELYDAMGTQIHEGGEKDYGIVISKALAECGLPAGLAEAAATDAYDAQLRASHEEGISLVGQDVGTPVVAFNGTAFFGPVLTRIPRGEQAGGLWDATVALASYPHFFEIKRSRTERPQFDNANANANANA
D1-29_028671281clpXCOG1219ATP-dependent Clp protease ATP-binding subunit ClpXATGGCTCGGATTGGCGAGAGCACGGATCTGCTGAAGTGTTCTTTCTGCGGAAAGAGCCAGAAGCAGGTGCGGAAGCTCATTGCCGGGCCCGGTGTCTACATCTGCGATGAATGCATTGAACTCTGCAACGAGATCATTGAGGAAGAACTCGCGGAAGTCGCCGATCTGGGAAGTTTTGAACTGCCCAAGCCCCGCGAGATCTTCGACTTCCTGCAGGAATACGTCATTGGCCAGGAACCTGCCAAGCGCTCCCTCGCCGTCGCCGTCTACAACCATTACAAAAGGATCCAGGCGGGCCACGCCCCGAAGAGCGGCAGCCTCGCCGACGGCGGCCACCACGACGACGTCGAAATCGCCAAATCCAACATCCTCCTGATCGGCCCCACCGGCTGCGGCAAGACGTATCTGGCGCAGACGCTTGCCCGCCGGCTCAACGTGCCGTTCGCGGTGGCCGACGCCACCGCACTGACCGAGGCCGGCTACGTGGGCGAGGATGTGGAGAACATCCTCCTCAAGCTCATCCAGGCCGCGGATTACGACGTCAAAAAGGCCGAACAGGGCATCATCTACATCGATGAGATCGACAAGATTTCCCGCAAGAGCGAAAACCCGTCCATCACCCGGGACGTTTCCGGGGAAGGCGTCCAGCAGGCGCTCCTGAAGATCCTCGAAGGCACCGTTGCGTCCGTACCGCCGCAGGGCGGCCGGAAGCATCCGCACCAGGAATTCATCCAGATCGACACCACCAACGTCCTGTTCATCGTGGCGGGAGCCTTCGCGGGCCTGGAAGAGATCATCGGATCCCGCTCCGGGCGCAAGGGCATCGGTTTCGGAGCCCCGCTCAACGATGCCAGCAACAAGGTGGACTCCTACGGTGAGGTAATGCCGGAGGACCTGCTGAAGTTCGGTCTCATTCCGGAGTTCATCGGCCGGCTGCCAGTGATCACCACGGTATCCAGCCTGGACCGCGAAGCCCTCATCCAGATCCTCTCCACACCCAAGAACGCCCTGGTCAAGCAATACCAGAAGATGTTTCAGATCGACGGCGTCGAGCTGCTATTCGACGACGACGCCCTTGACTCCATCGCCGATCAGGCCCTTGAGCGCGGCACCGGTGCCCGCGGCCTGCGTGCCATCATGGAGGAAGTCCTGCTGCCGGTCATGTTCGACCTTCCGAGCCGCGAGGACGTCGCCAGCGTCGTCATCACCGCTGACGTGGTGCTCAGCAAGGCTGAGCCCACCATGATTCCGCATGAAACGAAGCGCCGTAAATCAGCCTGAMARIGESTDLLKCSFCGKSQKQVRKLIAGPGVYICDECIELCNEIIEEELAEVADLGSFELPKPREIFDFLQEYVIGQEPAKRSLAVAVYNHYKRIQAGHAPKSGSLADGGHHDDVEIAKSNILLIGPTGCGKTYLAQTLARRLNVPFAVADATALTEAGYVGEDVENILLKLIQAADYDVKKAEQGIIYIDEIDKISRKSENPSITRDVSGEGVQQALLKILEGTVASVPPQGGRKHPHQEFIQIDTTNVLFIVAGAFAGLEEIIGSRSGRKGIGFGAPLNDASNKVDSYGEVMPEDLLKFGLIPEFIGRLPVITTVSSLDREALIQILSTPKNALVKQYQKMFQIDGVELLFDDDALDSIADQALERGTGARGLRAIMEEVLLPVMFDLPSREDVASVVITADVVLSKAEPTMIPHETKRRKSAPGPT0014600_2031DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544NANA
D1-29_02868660clpP2COG0740ATP-dependent Clp protease proteolytic subunit 2ATGACCTACAACTTCGGATCGACTGCCGGTAACCTTCCGACCAGCCGCTACGTACTTCCCCAGTTCGAGGAACGCACGCCCTACGGCTTCAAGCGCCAGGACCCCTACACCAAGCTCTTCGAGGACCGCATCATTTTCCTCGGTGTCCAGGTGGACGATGCCTCCGCTGACGACGTCATGGCCCAGCTGCTGGTCCTGGAGTCCACGGACCCGGACCGCGACATCACCCTCTACATCAACTCGCCGGGCGGTTCCTTCACCGCTATGACAGCGATTTACGACACCATGCAGTACATCCGCCCCGAGATCCAGACGGTCTGCCTGGGCCAGGCTGCCAGTGCTGCGGCGGTCCTCCTCGCGGCAGGAACGCCGGGCAAGCGCCTGGCCCTTCCGAACGCACGGGTGCTCATCCACCAGCCTGCCCTCTCCGGCGGCCAGGGCGGCCAGGCGTCAGACCTGGAGATCCAGGCTGCGGAAGTCATGCGGATGCGTTCCTGGCTTGAGGACACCCTGGCGCACCACTCGGGCCGGACCTCTGAGCAGGTCAACAACGACATCGAGCGCGACAAGATCCTGACGGCAGAGGAGGCCATGAACTACGGCCTGATTGACCAGGTGCTTGATTCACGCAAGATCAAGCCGCAGGCGATTACCAGGTAAMTYNFGSTAGNLPTSRYVLPQFEERTPYGFKRQDPYTKLFEDRIIFLGVQVDDASADDVMAQLLVLESTDPDRDITLYINSPGGSFTAMTAIYDTMQYIRPEIQTVCLGQAASAAAVLLAAGTPGKRLALPNARVLIHQPALSGGQGGQASDLEIQAAEVMRMRSWLEDTLAHHSGRTSEQVNNDIERDKILTAEEAMNYGLIDQVLDSRKIKPQAITRPGPT0014595_3122DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
D1-29_02869651clpP1COG0740ATP-dependent Clp protease proteolytic subunit 1ATGTCACAGCACCCCGAGGCCCCACGGATGGCCACTGTCGATCCGGCAACCCAGGATAACTACATCTACAACCGCCTCCTCAAGGAACGGATCATCTGGCTTGGCTCCGAGGTGCGCGATGACAACGCAAACGCCATCTGCTCCCAGCTGCTGCTCCTGTCCGCCGAGAATCCGGAAAAGGACATCTACCTCTACATCAACTCTCCCGGCGGTTCCGTCACGGCAGGCATGGCCATTTACGACACCATGCAGTTCATTCCCAACGACGTCGTGACAGTCGCCACCGGGCTTGCCGCATCCATGGGCCAGTTCCTGCTCTCCTCCGGCACCAAGGGCAAGCGCTATGCCACACCCAACGCCCGCGTCCTGATGCACCAGCCCTCCGGCGGGATCGGCGGTACCGCGTCGGACATCAAGATCCAGGCTGAACTGATCCTCCACATGAAGAAGGTCATGGCGGACCTTACCGCCGAGCAGACCGGCCAGACCGTGGAGACCATCCTCAAGGACAACGACCGTGACAAGTGGTTCACGGCCACCGAGGCCCTCGAATACGGCTTCTTTGACAAGATTGCGGCCCACGCCGGTTCCGTCTCCGGCGGCGGCGGAACCGCCAACGGATCATCAGGTGAATCGGCATCCGAGAAATAAMSQHPEAPRMATVDPATQDNYIYNRLLKERIIWLGSEVRDDNANAICSQLLLLSAENPEKDIYLYINSPGGSVTAGMAIYDTMQFIPNDVVTVATGLAASMGQFLLSSGTKGKRYATPNARVLMHQPSGGIGGTASDIKIQAELILHMKKVMADLTAEQTGQTVETILKDNDRDKWFTATEALEYGFFDKIAAHAGSVSGGGGTANGSSGESASEKPGPT0014595_4922DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
D1-29_028701398tigCOG0544Trigger factorGTGAAGAGCGCTGTCGAGAACCTCACCCCCACGCGGGTCAAGCTCAATGTTGAGGTCCCCTTTGAGGAATTGAAGCCCAGCATCGACGAGGCATACAAGACTGTTGCTTCGCAGATCCAGGTCCCTGGCTTCCGTAAGGGCAAGGTCCCCTCCAAGCTGATCGATCAGCGCGTTGGCCGCGGCTACGTCTTGGAGACCGCCATCAATGAAGGCCTCAACGGCTGGTACCAGGCCGCGGTGCAGGAATCAGGCATCCGCCCGCTGAGCCGTCCCGAGGTTGAGATCACGGAAGTACCTGACCCCACGTCCACCGACGGTGAGCTCAAGTTCCACGCCGAGGTTGACGTCCGCCCCGAGATCGAGCTGCCTGACTACGCCGGCATCAAGGTCGAGGTTGCTGCGGCTGAGTCCTCGGACGAAGACGTTGACAAGGCACTGGATGAACTGCGCGGCCGCTTTGGCACCCTCAAGTCCGTTGACCGCCCTGCAGCCGACGGCGACTTCCTGACCATCGACATCACTGCCACCGTTGACGGTGCAGAGGTTGACTCCGCTTCCGGCCTGTCCTACCAGGTAGGCGCCGGCACCATGCTCGAAGGCCTGGACGAAGCCGTCACCGGCCTCAGCGCCGACGAGGACGCCATCTTCGACACCACCCTGGTGGGCGGCGAGCATGCTGGTGAAGCCGCACAGGTCAAGGTTGTCCTGAAGGCCGTCAAGGAGCGCGAGCTCCCCGAGGCTGACGACGACTTCGCCCAGCTGGCGTCCGAATTCGACACCCTGGCCGAACTGCGCGAGGACCTGGCCAAGCAGGCCGCTGACTCCAAGATTGTTGAGCAGGGCGTCGAGGCACGTGACAAGGTCCTGGACAAGCTCGTTGAGCTGGTTGAGGTTCCGGTTCCGGACTCCGTCGTTGAAGAGCAGCTCGAGGCCCACTTCAAGGAGGGCAACGCCCACGGTGAAGGCGAGCACGACACCGAGGAGCACCGCGAAGAGGTCAAGGCCAACACGGCCCGCGCTTTCCAGAACGAAATCATCCTTGACGCCATTGCCGAAAAGGAAGAAGTCAACGTCAGCCAGAACGAGCTGATCGACTACATCGTCTCCACCGCCAGCCAGTACGGCATGGACCCGAACCAGTTTGCTCAGATCATCGACCAGAGCGGCCAGGTCCCCATGATGGTCTCTGAAGTCCGCCGCCGCAAGGCGCTGGCCGTGGTCCTGGGTCAGGCAACTGTCACCGACACCGACGGCAAGAACGTTGACCTCAGCGACTTCGTCCGCCCCGGCGGCGAGGAAGAAGCTCCTGTGGTCGAGGCTGAGGACGCCGGCGTCTCCGACGACGAGGCAAAGAGCGAAACTGTAGCAAACGACGATCCTGCTGCTGTGAAGTTCTAGMKSAVENLTPTRVKLNVEVPFEELKPSIDEAYKTVASQIQVPGFRKGKVPSKLIDQRVGRGYVLETAINEGLNGWYQAAVQESGIRPLSRPEVEITEVPDPTSTDGELKFHAEVDVRPEIELPDYAGIKVEVAAAESSDEDVDKALDELRGRFGTLKSVDRPAADGDFLTIDITATVDGAEVDSASGLSYQVGAGTMLEGLDEAVTGLSADEDAIFDTTLVGGEHAGEAAQVKVVLKAVKERELPEADDDFAQLASEFDTLAELREDLAKQAADSKIVEQGVEARDKVLDKLVELVEVPVPDSVVEEQLEAHFKEGNAHGEGEHDTEEHREEVKANTARAFQNEIILDAIAEKEEVNVSQNELIDYIVSTASQYGMDPNQFAQIIDQSGQVPMMVSEVRRRKALAVVLGQATVTDTDGKNVDLSDFVRPGGEEEAPVVEAEDAGVSDDEAKSETVANDDPAAVKFNANANANANA
D1-29_02873747hypothetical proteinGTGGCGGGGGACGCACGTAACGCACTTCGCCGGACAGAAAGGCCAGGCAACTCCGTGCCAAAACCAAGAAGGCAACCCAATCCGTTGATCCAGAAGTACTTCAAGATCAGCTCCGCGGATTCAGGGGCGGGGGGCCTGGGCGGGCTGAAGCCTGTGGAGCCGGCCTCACGGCATGACGGGGTGCCGGTCCTGGGCCGTGACCAGGCCTATGTGATGAAGCAAGGGACCACCTACCATACGGACTGGTGCCGGGCCGTGGCCGACAAATGGGACCACGCACCCAGGGGGTTGCTGGTGACACTGTTGGCGGATATCGGGGCGAGGACCCCGTGCACGGACTGCGACGAGCCCAGGAAGACACGAGGGGTGCCGTCTGCGCGGGCGGACCGGATGCAGCCCCCGCTCCCCGCGGCAGCCCCGCCGCCAGATGCTGTGATCCCCCTGAGGGTCGTCGGCGTTGCCCATGGAATCCTCTTCCTGGCGGCCGGTCTGGAGTATCAGGAGCTCCTCAGGAACACAGCTGTGGAGCCTGCCACTGTGCTGTCCGTGGACGGGCGGCGGGACGGCACGGTGGTGCGGCTGGACGCCGGTCACGGCGAACCGCGCGTGACAGTCCAATTGGACCCCCGGGCAACGTTCCGGAATGGACCGTATCAGCTGCGACTGCGTGGTCCGCTGCTCCGATCGGCCACCAAAGCCTACGCCGTGGATTCCGTTGAGCCGGCGATCCGAAGCAACTCCACCTAGMAGDARNALRRTERPGNSVPKPRRQPNPLIQKYFKISSADSGAGGLGGLKPVEPASRHDGVPVLGRDQAYVMKQGTTYHTDWCRAVADKWDHAPRGLLVTLLADIGARTPCTDCDEPRKTRGVPSARADRMQPPLPAAAPPPDAVIPLRVVGVAHGILFLAAGLEYQELLRNTAVEPATVLSVDGRRDGTVVRLDAGHGEPRVTVQLDPRATFRNGPYQLRLRGPLLRSATKAYAVDSVEPAIRSNSTNANANANANA
D1-29_02874891nei1_2COG0266Endonuclease 8 1GTGCCCGAAGGCCATTCCGTCCGCCGATTGGCCCGCCAGTTTGCTGACGTCTTCTGCGGTGAGCGCCTGGCCGTCAGCAGTCCGCAGGGACGCTTTGCAGCCGGAGCGGCCTTGCTGGACGGGCACACTTTGACGGATTCCCGGGCCCACGGCAAGCACCTTTTCCTGCATTTTGATCATGCAAGGGTGCTGCATGTGCATCTCGGCCTGTACGGTGCCTGGGATTTCGGCGGCGACGCCAGCTTCCGGGGCGCCTCCAGCATCGGCGCCCCCAGGAAAGTGGGGGAGCGGGAGATTTTCGACGACGGCGGCCCGGCGGAGTACTCCGGCCCGCCGGATCCCCGGGGTGCCGTGCGCGTCCGCCTGGTCAGCGCCCACGGCTGGGCGGACCTGCGCGGCGCAACCACATGCGCGGCCATCACCGAGGACGAGGCGGCCACGGTTCTGGCCAGGCTGGGGCCCGATCCGCTGCGGAACCTTCCGGCGGACAGGGAGCGCTTTGTTGCTGGCCTTCAGTCCCGTAAGGCACCCATCGCCGGACTGCTGATGGATCAAAAGGTGATCGCCGGCGTCGGAAATGTCTACCGGGCAGAGGTGCTGTTCCGCCAGCGCCTTAATCCATGGCGGGCGGGCAATGAGCTGTCCGTCCCGGCGGCGGGACAGCTGTGGGATGACACTGCCGCGGTGATGTCCGACGGCGTGCGTGACGGGCGCATCATCACCACGCCTGCGGCCTACTGGGGAGACGGTGACGGACTCCCGGCAGGCGATGCAGCGCACTACGTTTACAAACGCCAAGGGCTGCCGTGCAGGGTTTGCGGCGAGCCGGTTGCCCTCGCTGAACTGACCGGCCGCAAGCTTTATTGGTGCCCCGGCTGCCAGGTGGCCTAGMPEGHSVRRLARQFADVFCGERLAVSSPQGRFAAGAALLDGHTLTDSRAHGKHLFLHFDHARVLHVHLGLYGAWDFGGDASFRGASSIGAPRKVGEREIFDDGGPAEYSGPPDPRGAVRVRLVSAHGWADLRGATTCAAITEDEAATVLARLGPDPLRNLPADRERFVAGLQSRKAPIAGLLMDQKVIAGVGNVYRAEVLFRQRLNPWRAGNELSVPAAGQLWDDTAAVMSDGVRDGRIITTPAAYWGDGDGLPAGDAAHYVYKRQGLPCRVCGEPVALAELTGRKLYWCPGCQVANANANANANA
D1-29_02875495rpiBCOG0698Ribose-5-phosphate isomerase BGTGACTTCTTCCCCTGCCTTCCCGCGGGTCCACATCGCCACCGACCACGCAGGAATGGAACTCAGCGCCCACCTGGTCAGGCACCTCACGTCCAAGGGGTACGACGTGGTGGACCACGGGCCCAAGGTCTATGACGCCCAGGATGACTACCCGTCCTTCTGCATCAACGCCGCGCTCGCAGTGGTGGCTGACCAGAAAGCAGGGGTGCATGCCCTGGGCATCGTCCTGGGTGGCTCGGGCAACGGTGAGCAGATCGCCGCCAACAAAGTCAAGGGAGTGCGCGCCGCCCTGGCGTGGAACCACTCCACCGCCACGCTGGCCCGCGAGCACAATGACGCCAATGTGGTGGCCGTGGGCGGCCGCCAGCACACGGTGGAGGAAGCCACGGAACTGATCGAGGCCTTCCTGGCCGAGCCCTTCAGCAACGACGAACGCCACATCCGCAGGATCGGCAAGATCGCCGCCTATGAAGCCACCGGCGAGGTCATCGAGTAGMTSSPAFPRVHIATDHAGMELSAHLVRHLTSKGYDVVDHGPKVYDAQDDYPSFCINAALAVVADQKAGVHALGIVLGGSGNGEQIAANKVKGVRAALAWNHSTATLAREHNDANVVAVGGRQHTVEEATELIEAFLAEPFSNDERHIRRIGKIAAYEATGEVIEPGPT0017395_226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_D-ERYTHRULOSE|D-THREITOL_DEGRADATION,PGPT0017395-rpiB-K01808NANA
D1-29_028761035hypothetical proteinATGGGAAAGTTCAGGGATGCGGTAGACGTAAGGGCGCTGCGGTTCGCCGTGGGTTTTCCTCTGGTACTGGCCGCCGCCTTCGTGTTTTGCGCGTTCCTGCTGCGCCCCACCCTCCCCGAACCGCTCGCCATCAGCTGGAATGACGACGGCGGCGCCTCCTTCGCACCGTTCAGCGCCTACGCGGCGGGCAGCGCCGTGATCATCGTGGCCGTGGGCTGGCTGGTCCTTTTCCAGGCGGTGCCGGTCTCCCGGCCCACCGTGGTACGCCGGGTAATGATGGGCGGCGGGCTGTTCCTGAGCCTCTTCGCCGCGAGTGTCCTGGCTGCCGGCCTGATGGGGCAGACCGGCCTGGCCGACGCGCGGGAGTCCCGCCTGGACCTCACGGTGCTCGCGCTGGGCAGCGGCGCAGCAATGTGGCTCGGTGTGATTATGGGCTTTGTGTTTAAGGTGGACAGGCAGTGGACGCCCGAGGATGACCAGGCCTTTGAGCTTGCCGTCGCCCGGGAACTGGATCCGGATCTGACCCGGGATTCCATCCGCCTGTGGGTGCACGCCCGCAGCTCAGTCTTCGTCATGATCGCCGTGGCAAGTCTGTTCCCGGCGGCGCTCATTGCGATCGTGCTGCCCTGGTTGGGGGTGCTGCTGGTGGTTCTGGCCCTTGTTGGCGCAGGTTTCCTGTTCGCCCGCGTGAAGGCGGACCGAAGCGGCCTGCGGGTCCTCGTGGCAGGTGTGGTGCCAGTGATGGAGGTACCGGCGGGGGAAATTTCTGAGGCCAGCGCCTCGGATGTGCGGGCAGCCGACTACGGCGGATGGGGTTACCGCCACCATAGCGGTACCGAGGCGATGCTGGTCAGCAGCGGTCCCGCCGTCGTCCTGCGCACCACAGACGGCCACAACATGGCTGTCAGTGGCGGCAGCCCGGCGTCGGCGGCGCGGCTCGCAGAAGTTCTCACCCGCGTGGCAGCCCGGGCGCACGGCGGTGGTGCGCCGGGCGCAGCGGCCAGCGGCCCTGGTCCTGCTCCCGGTACGGGTTGAMGKFRDAVDVRALRFAVGFPLVLAAAFVFCAFLLRPTLPEPLAISWNDDGGASFAPFSAYAAGSAVIIVAVGWLVLFQAVPVSRPTVVRRVMMGGGLFLSLFAASVLAAGLMGQTGLADARESRLDLTVLALGSGAAMWLGVIMGFVFKVDRQWTPEDDQAFELAVARELDPDLTRDSIRLWVHARSSVFVMIAVASLFPAALIAIVLPWLGVLLVVLALVGAGFLFARVKADRSGLRVLVAGVVPVMEVPAGEISEASASDVRAADYGGWGYRHHSGTEAMLVSSGPAVVLRTTDGHNMAVSGGSPASAARLAEVLTRVAARAHGGGAPGAAASGPGPAPGTGNANANANANA
D1-29_028772577pepN_2Aminopeptidase NTTGCCAGGTATGAACCTGACGCGCGCCGAAGCCCGTGAGCGCGCCGAACTGATCGCCGTTGACTCCTACGATGTCAGCCTGGACCTGACCAAAGGCGACAAGGTCTTTGGGAGCACCACCACGGTAAGGTTCACGGCCCGACCGGAATCCTCCACCTTTATCGACGCCGTCACGCATGCCGTACACAGCGTGACCCTGAACGGCCGCAGCCTGGACCCGGAGGCCGTATCAGACGGGATTCGCATCCAGCTGACCGGCCTCGCCGCCGAGAATGAACTGACGGTGGTGGCCGACGCCCCGTACATGAACACCGGTGAGGGCCTGCACCGCTTTGTGGATCCCGTGGACAACGAGGTCTACCTGTACACCCAGTTTGAGGTGCCGGATTCGCGGCGGATGTTCGCAGTTTTTGAGCAGCCGGACCTCAAGGCCACATTCGCCTTCACGGTCACGGCGCCGTCGCACTGGGACCTCATCTCCAATTCCCCCACTCCGGCCGCGCAGGAAACCACTCCCGCGGCCGACGGCGGAGCCCGCTCGGTCTGGACGTTCGCGCCCACGCCGAGGCTGTCCTCCTACGTGACGGCCCTGATCGCGGGGCCGTACCAGTCGGTCCGCAGTGAGGTGGCCAGTTCCGATGGGCGGGTCATTCCGCTGGGCATCTTTGCCCGGAAGTCCCTGATGCAATACCTCGATGCAGACAACATCTTTGAATTGACCCGGCAGGGGTTCGAATTCTTCGAAGCCCAGTTCGGCTGCCCCTACCCGTTTGAGAAGTATGACCAGCTGTTTGTGCCTGAGTTCAATGCCGGCGCCATGGAAAACGCCGGCGCCGTGACCATTCTGGAAGGCTATGTGTTCCGGAGCAAGGTCACCGGGGCGCAGATCGAGCGCCGCGCCATTACTGTGCTCCACGAGCTCGCCCACATGTGGTTCGGGGACCTTGTCACCATGCGCTGGTGGAACGACCTGTGGCTCAACGAGTCCTTTGCCGAATACATGTCCCACCTGGCGGCAGTGGAGAACACGTCCTTCACAAGCGCCTGGACAACCTTCGCCTCCGTGGAGAAGTCCTGGGCGTACCGCCAGGACCAGCTGCCAACCACACATCCCATCTTTGCCGAGATCAACGACCTGCAGGATGTGGAAGTCAATTTCGACGGCATCACCTATGCCAAGGGCGCCTCGGTGCTCCGCCAGCTGGTGGCCTGGGTGGGCCCGGAGCAGTTTATGGCCGGTGTCCGCGAATACTTCGCCAAGCACGCCTGGCAAAACACCGAACTCAGTGACCTGATGGTGGAACTGGAGAAGGCCAGCGGCCGCGACCTGGACCTGTGGGGGCGGCTGTGGCTGGAGACTGCCGGAGTCAATACCCTCAAGCCGGAACTTAGCGTGGACGGAGACGGAAAACTGGCCTCCTTCGCCATTCTCCAATCCGCTGTCACGGAGTGGCCCACCATCCGTCCGCACCGGCTGGCGGTGGGGTTCTACAACCTCAACGGCGCCGGCAAGCTGGAACGGGTCCACCGTGAGGAACTTGACGTCGATGGCGAGCGTACCGAGGTTCCTGCCCTGGCCGGCATGGCGCAGCCTGACCTGATCCTGGTCAATGACGACGATCTTGCGTATGCAAAGGTCCGGCTGGATGAACGGTCGCTGGCTACCGCAACAGCCCACCTGAAGGATTTCAGCGCCAGCCTGCCCCGGACGCTGGTGTGGAACTCGGCATGGGATGCCGCCCGCGACGGGGAGACGCCGGCGCGGCGTTATGTGGAGCTGATCCTGGCCAACGTGGCGGCCGAGTCGGATTCGTCCGTGATCCTGGTGCAGTTGCGCCAGCTTGCCACCACACTGAACTTCTATGTTGCCGAGGAGCACCGCGAGGCCACCATTGTGGCCGCCGTGGACCGCCTCTGGGAGCTGGCGTCCTCCGTTCCCGGCGGGTCCGATGCACAGCTGCAGTTCATCAAGTCCTTTGCCCTGCTCGCCCGCAGCAGTTCGCAGCTGGACAAGGTGGCAGGCGTCCTGGACGGTTCCCTCATCCTGGACGGGCTGACGGTTGACCAGGATCTGCGCTGGGAGCTGCTGACGTCGCTGGTGGCGGGCGGACGGTTCGGCCAGGAACAGATCGACGCCGAGCTGGCACGGGACAACACCGCCAGCGGACAGAACGCCGCGGCCCAGGCCAAGGCAGCCATTCCCACGCCCGAAGCGAAGGCCGAGGCCTGGGAGTCGATCGTGGTCAAGGGTGAACTCTCCAACGCGCTCCAAAACTCGGCAGTTGCGGGCTTCTCCCGCGTCTTGGACCGCTCGCTGCTGGAGCCGTACTCGGAAAAGTACTTCGAGGCCGTTCCCGGGATCGTTGCCACCCGCACCCACGCGCTGGCCCAGCAAATCGTCGTCGGACTGTATCCGGCGCTCCTGACCACCCAGGCGACCATCGACCGCACCGATGGCTTCCTGGCGGCCCTGCCCGCCGAAAGCGCCGCCCTGCGGCGGATGATGCTGGAGAACCGCGACGGCGTTGCCCGGGCCCTGCGCGCACGGGCGGCAGATGTCCTGCCCGGCAGTGTCTAGMPGMNLTRAEARERAELIAVDSYDVSLDLTKGDKVFGSTTTVRFTARPESSTFIDAVTHAVHSVTLNGRSLDPEAVSDGIRIQLTGLAAENELTVVADAPYMNTGEGLHRFVDPVDNEVYLYTQFEVPDSRRMFAVFEQPDLKATFAFTVTAPSHWDLISNSPTPAAQETTPAADGGARSVWTFAPTPRLSSYVTALIAGPYQSVRSEVASSDGRVIPLGIFARKSLMQYLDADNIFELTRQGFEFFEAQFGCPYPFEKYDQLFVPEFNAGAMENAGAVTILEGYVFRSKVTGAQIERRAITVLHELAHMWFGDLVTMRWWNDLWLNESFAEYMSHLAAVENTSFTSAWTTFASVEKSWAYRQDQLPTTHPIFAEINDLQDVEVNFDGITYAKGASVLRQLVAWVGPEQFMAGVREYFAKHAWQNTELSDLMVELEKASGRDLDLWGRLWLETAGVNTLKPELSVDGDGKLASFAILQSAVTEWPTIRPHRLAVGFYNLNGAGKLERVHREELDVDGERTEVPALAGMAQPDLILVNDDDLAYAKVRLDERSLATATAHLKDFSASLPRTLVWNSAWDAARDGETPARRYVELILANVAAESDSSVILVQLRQLATTLNFYVAEEHREATIVAAVDRLWELASSVPGGSDAQLQFIKSFALLARSSSQLDKVAGVLDGSLILDGLTVDQDLRWELLTSLVAGGRFGQEQIDAELARDNTASGQNAAAQAKAAIPTPEAKAEAWESIVVKGELSNALQNSAVAGFSRVLDRSLLEPYSEKYFEAVPGIVATRTHALAQQIVVGLYPALLTTQATIDRTDGFLAALPAESAALRRMMLENRDGVARALRARAADVLPGSVNANANANANA
D1-29_02878474hypothetical proteinATGAGCCTGGGTGAACACCATTATTCCCTGACGGTCCGGTGGACCGGCAACCTGGGAGACGGCACGTCCTCCTACCGCGGGTATTCCCGCGACCACGACGTCCAGATCCCCGGGTTGCCGGTCCTTAAGGGCTCCGCCGACCCCACCTTCCATGGGGACCGGTCACGGTATAACCCCGAGCAACTGCTGTTGGCCGCGCTGGCCCAGTGCCACATGCTGTCCTTCCTTCACGTGGCCGTGCGGCACGGCGTGGTGGTCACGGATTACCAGGACGATGCCACGGGCGTGCTGCGGCTGAACAGGGACGGCAGCGGGCAGTTCGAATCCGTCACGCTGAACCCGCGGGTGGCGGTGGCGGACACGGCCCACGTGGCCCTCGCGGAGGAGCTGCACCGCGAGGCCAACCAGGTCTGCTTCATCGCCCGCAGCGTCAACTTCCCAGTGCACCATGAACCCGTGACGCTAACGGCCTGAMSLGEHHYSLTVRWTGNLGDGTSSYRGYSRDHDVQIPGLPVLKGSADPTFHGDRSRYNPEQLLLAALAQCHMLSFLHVAVRHGVVVTDYQDDATGVLRLNRDGSGQFESVTLNPRVAVADTAHVALAEELHREANQVCFIARSVNFPVHHEPVTLTANANANANANA
D1-29_02879993hypothetical proteinATGCGCATCCTGGTCTTGGGCGGAACCGCCTTCCTCTCTGCAGAAATCGCCCGGCAGGCCGTCGCCGCCGGCCATCAAACAGCGTGCCTGGCCCGTGGTTCCGCGGCGGAACCGCCGGCGGGTGTCCGGTGGCTGAAGGCAGACCGTTCACTGGGCGCGAACAGCTACACGGAGGCGGCAGGAGAGTGGGACGCCGTCATAGAAGTGGCACGGGATCCTGCCAAGGCCCGGGATGCCTTGGCGGCGCTGGCCGGCCGGGCCGCGCACTGGACGTTCGTTTCCAGCTGTTCCGTCTACGCCGACCATTCTGTGCCCTCTGCGGCCGAGGAAGCGGACCTCTTGCAGCCCCTGCCGGTGGGGACGCCGTCAACGCCGGAGAACTACGGGGAATCGAAGTCGGCCATTGAGCAGGCCACCCTGGAAGCTGCCTCAGGCACAGCCCACCTCTGCCGGGCCGGGCTGATCGGCGGTCCCGGCGACGCATCCGACAGGTACGGCTACTGGCCGGCCAGGTTCGCCCGGGATAGCCAGGCCGCACTTGTGCCGGACATTGCCGGCCATGCGACTCAGGTCATCGACGTCCGGGACCTTGCCGTGTGGATTCTCGACGCCGCGGGCCGCGGTGTCACAGGGCCGCTCAACGCGGTGGGGGAGCAGGTTCCGTTCGGCGAGTATATTTCCGCGTCCCGGAGCCTTGCCGGCCACCAGGGGGAGATCCTGCCCGCCGCTGAAGACTGGCTGGTGGAACATGGTGTCGGGTATTGGTCGGGAACGGATTCCCTGCCGCTGTGGTTGCCGCCGGGCTATGACGGCTTCTCTGCGCGCAGCAACGGGGCGGCAAAAGCGGCTGGCCTCACCCTGCGCCCGTGGCAGGAAACGCTGGAGGACACGCTCGAGGACGAACGCCGTCGGGGGCTCTCCCGCGAACGGAAAGCGGGCCTCATGCCCGCCACTGAAGCACGACTGGCCACGGAGCTGCGCGGAGCCGTCTAAMRILVLGGTAFLSAEIARQAVAAGHQTACLARGSAAEPPAGVRWLKADRSLGANSYTEAAGEWDAVIEVARDPAKARDALAALAGRAAHWTFVSSCSVYADHSVPSAAEEADLLQPLPVGTPSTPENYGESKSAIEQATLEAASGTAHLCRAGLIGGPGDASDRYGYWPARFARDSQAALVPDIAGHATQVIDVRDLAVWILDAAGRGVTGPLNAVGEQVPFGEYISASRSLAGHQGEILPAAEDWLVEHGVGYWSGTDSLPLWLPPGYDGFSARSNGAAKAAGLTLRPWQETLEDTLEDERRRGLSRERKAGLMPATEARLATELRGAVNANANANANA
D1-29_02880684hypothetical proteinATGTTCAGCACGTTGTCGATCACACCCCTTAACTCCCAATCCGATGGAATCAGCGTCCCGGGCATCGTCATCAGCCTTGGCATCGGTGTTGCCGTCTGGCTGGTGGCAACCTTTGTCATCTCCCGGATCAGCAGGCGGGTGGCCTCCGGCAGCAACCTCTTCAAGAAGCCGCACTTCAAATGGGTGGCACCGGCACTCCGGGCGCTGGACCACGAGCGTCGGGTACAGCGCGCGGAGACCATCGGCTCCCTGCTGAACAGCATCGTGGGGGTCCTGGTGGCCGTGATCACCATTATGTACGTGCTCCAGAACCTCGACATCAACATTGCACCGCTGCTGACCAGCGTAGGAATCCTGGGTGTTGCCATCGGTTTTGGTGCCCAGCAGCTCATCCGCGATTTCCTGGCCGGCATTTTTATCACCATTGAGGACCAGTACGGGATTGGTGATGTCATCGAGACCAGCGAGGTGGTGGGCGTTGTTGAATCCATGGGCCTTCGCATAACCCGGGTCCGTTCCGAGGACGGTGCCATCTGGTACCTCCGCAACGGCGAGATCCTGCGGGTCGGAAACCGTTCGCAGGGCAACTATGTCCCGCTGCCTGACGCCCCCGACGCCGGCACTGACGAGGCTGGGGCCGTGCACACCGCCGACAAAAAGTCTGAACAAAAGGCCGGAGAATAGMFSTLSITPLNSQSDGISVPGIVISLGIGVAVWLVATFVISRISRRVASGSNLFKKPHFKWVAPALRALDHERRVQRAETIGSLLNSIVGVLVAVITIMYVLQNLDINIAPLLTSVGILGVAIGFGAQQLIRDFLAGIFITIEDQYGIGDVIETSEVVGVVESMGLRITRVRSEDGAIWYLRNGEILRVGNRSQGNYVPLPDAPDAGTDEAGAVHTADKKSEQKAGEPGPT0013695_2843DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044NANA
D1-29_02881453glbOCOG2346Group 2 truncated hemoglobin GlbOATGACCACACCTGCCGAACCGCAACAGCCGCGCCAGCTGATGCAGAACGATCCGTTCAGCCAGCCCGGGTACACGGACAACTTCTACAATGCCGTGGGCGGCCACGAGACATTCGTACGGCTCATCGACGTTTTCTACGACGGCGTGGCAACGGATCCGTTGCTGCGGCCCATGTATCCGGAAGCGGACCTGGCCCCCGCAAAACGGCGGTTCCTCATGTTCCTGGAGCAGTACTGGGGCGGCCCCACCACGTACGGCGAGGAACGCGGCCACCCGCGACTGCGGATGCGCCACATGCCGTTCCAGGTCACACCGGAGGCCAAGGACCGCTGGCTGTTCCACATGCGGGCTGCCGTTGATGCACTTGAACTGCCCCCGCTGTATGAAACAACACTCTGGGACTACATGGAACGCGCCGCGCTGTCCATGGTCAACAGCGCATCGGGGGCCTGAMTTPAEPQQPRQLMQNDPFSQPGYTDNFYNAVGGHETFVRLIDVFYDGVATDPLLRPMYPEADLAPAKRRFLMFLEQYWGGPTTYGEERGHPRLRMRHMPFQVTPEAKDRWLFHMRAAVDALELPPLYETTLWDYMERAALSMVNSASGAPGPT0018560_1759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-29_02882675hypothetical proteinGTGTCTGATCTCCTTACCCAGTCCTTCCGGTTCTCAGATCCGCGCGATCTCGCGGACCTGCGCACCTTCGCCACGCGTGCCAAAGCAATCGACGACGGCGCCATCCGGCTCCAGGCGGCGGGTTCGGTACTGGCCGCCTACGTGTGTGTGCTGAGGCCACGGTTGCTGGGTGAAGCCACCCCCACCATCCTGGGCCTGCGCACCATGGGACTGGCGGAACGGTCCGCAGTGGATGTCACCGTTCCGCTTTCTGCGGTCCTGGACCGGCTGGCCCGGGCGGGGGAAGCCGACGTCGAACTTCCGGTTCCGCCGTCCACCGTCAGCGAATCCTGGACGGGAGTCAGCGCGCCCAGGACGGGCTGGGAGCTGGTCACTTCCGTTCCCGATGCCGATCTGCGGCGGGCCGCCGAAGCGGGCATCACCGAGGTGGCCGGGATTGTGCCGGATAAACCCGGGGCCTTAATCGTCAATAACGCGCGGGCAGCGGTTTGGGGCAGGGTCCTCGATGGATCGGGAGTGCCGGCGGGAGCTGCCTTCGCCGCGCTGACCCTGGGGTTCCTCGCGGACGGGGACCAGAAGCTGTACCGGGCGGGCCGCTGGTACCGCCTGACGGGAACACGCGGGCATGTCCTGGTGCGGACCGGCAACGGCCTTGTCCTGACCTCCGGAGCCTAAMSDLLTQSFRFSDPRDLADLRTFATRAKAIDDGAIRLQAAGSVLAAYVCVLRPRLLGEATPTILGLRTMGLAERSAVDVTVPLSAVLDRLARAGEADVELPVPPSTVSESWTGVSAPRTGWELVTSVPDADLRRAAEAGITEVAGIVPDKPGALIVNNARAAVWGRVLDGSGVPAGAAFAALTLGFLADGDQKLYRAGRWYRLTGTRGHVLVRTGNGLVLTSGANANANANANA
D1-29_02883981tesBCOG1946Acyl-CoA thioesterase 2ATGACTGAAGCCGAAGCCGGATTGCTGGCGCCGCCCAGCGGCGACCCCACCTCATCGCTCATCAAACTCCTGGATCTTGGCCAGCTTGAGGGCGCCCGGACGGACGAGGACATCTTTCTGGGACCGTCACAGCAGCAGCCCCATCAGCGGGTGTTCGGCGGCCAAGTGCTGGCGCAGTCCCTCATCGCCTCGATGCGGACGGTGGATGCTGACCGGTTTGTGCATTCCATGCACGGGTACTTCCTCCGGCCCGGGGATGCCAATCAGCCCATCACGTTCGGCGTCCAGCGGCTGCGCGACGGCCGTTCCTTCTCGGCACGCCGCGTCCACGCCTACCAGGACGGCGTGCCCATCCTGTCCATGATTGCTTCCTTCCAGGGCGAGGATGAAGGCATCGAGCACGAATCCACCATGCCCAAGGGCATCCCGGACCCCGAGTCGCTTCCCAGCACCGCAGACCTGCTGGGCAAGTTCGATCATCCGGTGGCACGGCACTGGTCCTACGAACGGCCGTTTGATATCCGGCATGTCGACCCGCCCCTTTACGTCTCCGCAAAGGGCAAAAAGGACGCACGGAACGCCGTCTGGATGAAAACCTTTGGCCCCATGCCCGACAATCCCAACCTCCACCGGGCGGCCCTGGCGTACGCGAGCGATTACACCATCCTGGAATCCATCCTGCGCCGGCACGGACTGAGCTGGATTACGCCGGGCATGAACGTGGCAAGCCTGGATCATGCCATGTGGTGGCACCGTCCGGCACGAGTGGACGAGTGGCTGCTCTACGTGCAGGAGTCCCCCAGCGCCCAGGGAGCCCGCGGCCTGGCAACCGGCAAAATCTTCAACCGGGACGGGCTGCATGTGGCGTCGGTGGCCCAGGAGGGGATGGTCCGGGTCCCCACGGATCTGAAGAACAAGGTGGTAGGTGCCTTCCAGTCCAAGGTTCTTGAACACCAGATCCGAAAAGCCGAGCGCGACTGAMTEAEAGLLAPPSGDPTSSLIKLLDLGQLEGARTDEDIFLGPSQQQPHQRVFGGQVLAQSLIASMRTVDADRFVHSMHGYFLRPGDANQPITFGVQRLRDGRSFSARRVHAYQDGVPILSMIASFQGEDEGIEHESTMPKGIPDPESLPSTADLLGKFDHPVARHWSYERPFDIRHVDPPLYVSAKGKKDARNAVWMKTFGPMPDNPNLHRAALAYASDYTILESILRRHGLSWITPGMNVASLDHAMWWHRPARVDEWLLYVQESPSAQGARGLATGKIFNRDGLHVASVAQEGMVRVPTDLKNKVVGAFQSKVLEHQIRKAERDPGPT0001835_39DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805NANA
D1-29_028841683ettA_3COG0488Energy-dependent translational throttle protein EttAATGGCGGAATTTATCTACACAATGACCAAGGCCCGTAAGGCTGTTGGCGAAAAACTTATTCTTGACGACGTAAGCATGTCCTTCTTCCCCGGCGCCAAAATTGGTGTTGTTGGCCCGAATGGTGCCGGTAAGTCCACCATCCTCAAAATCATGGCCGGACTGGACACCCCCTCCAACGGCGAAGCCCGGCTCAGCCCCGGCTACTCAGTGGGGATCCTGCTTCAGGAGCCGCCGCTGAACGAGGAAAAGACGGTCCTGGGCAACGTCCAGGAAGGCGTTGGCGAGATCTACGGCAAGATCCAGCGCTTCAACGAGATCTCCGAGGAAATGGCCAGCCCGGACGCTGACTACGACACACTGCTTGAAGAAATGGGACACCTGCAGGAGGCCATTGACGCCGCTGATGCCTGGGACCTGGACTCCCAGCTGGAGCAGGCCATGGACGCCCTCAGGTGCCCGCCGGCCGATGCCGATGTCACCATGCTTTCAGGCGGTGAGCGCCGCCGAGTGGCGCTCTGCAAGCTCCTTTTGCAGAAGCCTGACCTGCTCCTGCTGGATGAGCCCACCAACCACCTTGACGCCGAAAGCGTGTTGTGGCTGGAGCAGCACCTTTCCAGCTACGCGGGTGCAGTCCTGGCCGTTACCCACGACCGGTACTTCCTTGACCACGTGGCGGAATGGATTGCCGAGGTGGACCGCGGCCACCTGTACCCCTATGAGGGCAACTACTCCACCTACCTGGAGAAGAAGCGGGCGCGCCTGGAAATCCAGGGCAAAAAGGACGCCAAGCAGGCCAAACGCCTCACCGAGGAACTGGAATGGGTCCGCTCCAACGCCAAGGGCCGCCAGACCAAGTCCAAAGCCCGCCTTGCCCGCTATGAGGAAATGGCTGCCGAAGCGGACCGCACCCGCAAGCTTGATTTCGAAGAGATCCAGATTCCGCCGGGACCGCGCCTGGGCGGGCTCGTCCTGGAAGCGAAAAATCTGCAGAAGGGCTTCGACGACAGGATCCTGATCGACGGGCTGTCCTTCAGCCTTCCGCGGAACGGCATCGTGGGTGTTATCGGGCCCAACGGTGTGGGCAAGTCCACGCTGTTCAAGACCATCGTGGGGCTGGAACCGCTCGACGGCGGCGAGCTGAAGATTGGCGACTCCGTCAAGATCTCCTATGCCGACCAGAACCGTGGCGGCATCGACCCGAACAAGTCGCTGTGGGAGGTCGTCTCGGACGGCCTGGACTACATCCAGGTAGGCCACGTCGAAATGCCGTCCCGCGCCTACGTTGCCGCCTTCGGCTTCAAGGGTCCGGACCAGCAGAAAAAGGCAGGCGTGCTTTCCGGTGGTGAGCGCAACAGGCTGAACCTGGCATTGACCCTTAAGCAGGGCGGTAACCTGCTGCTACTTGACGAACCGACCAACGACCTCGACGTCGAGACCCTCAGCAGCCTGGAGAACGCGCTGCTTGAATTCCCCGGCTGCGCCGTGGTGGTCTCGCACGACCGGTGGTTCCTGGACCGGGTGGCAACCCACATCCTCGCCTACGAAGGCGACGACGAAAACCCGTCCAAGTGGTACTGGTTTGAGGGCAACTTCGAATCCTACGAAGAAAACAAGGTAGAGCGCCTTGGACCCGATGCGGCCAAGCCTCACCGCGTCACGCACCGCCGCCTGACCCGCGACTGAMAEFIYTMTKARKAVGEKLILDDVSMSFFPGAKIGVVGPNGAGKSTILKIMAGLDTPSNGEARLSPGYSVGILLQEPPLNEEKTVLGNVQEGVGEIYGKIQRFNEISEEMASPDADYDTLLEEMGHLQEAIDAADAWDLDSQLEQAMDALRCPPADADVTMLSGGERRRVALCKLLLQKPDLLLLDEPTNHLDAESVLWLEQHLSSYAGAVLAVTHDRYFLDHVAEWIAEVDRGHLYPYEGNYSTYLEKKRARLEIQGKKDAKQAKRLTEELEWVRSNAKGRQTKSKARLARYEEMAAEADRTRKLDFEEIQIPPGPRLGGLVLEAKNLQKGFDDRILIDGLSFSLPRNGIVGVIGPNGVGKSTLFKTIVGLEPLDGGELKIGDSVKISYADQNRGGIDPNKSLWEVVSDGLDYIQVGHVEMPSRAYVAAFGFKGPDQQKKAGVLSGGERNRLNLALTLKQGGNLLLLDEPTNDLDVETLSSLENALLEFPGCAVVVSHDRWFLDRVATHILAYEGDDENPSKWYWFEGNFESYEENKVERLGPDAAKPHRVTHRRLTRDNANANANANA
D1-29_02885660hypothetical proteinATGGTCCTGGCCATCCGTATCCTCAACGCGTGGCAGAATGGCCGCATGAAGCGCGCCACGGAACACCGCAAAAAGAATCACGTCGGTGTCCTGTTGGCAGTTCGCCAAGTCCCCACATCCTCCTTCAGCAGCGTATGGGCAGGATGCGTCCTTGTTGCGGTGTCATTGGCGGTTGCGGTGTCGCTGTCGGCCTGCACAGGCGGTGCCCAGTCCGGCGGTGACAAGCCGGGCGCGCCTGCCGCGACAACAACGCAGGCCGCGTCACCAGCAACTCCGTCATCATCCCCTTCCGAGGCTGCAAGTCCCGGCGGTGCCGCAGCAGGATCCTCCGCCGCAGCAGGGGGACGCGCTTCGGCGGAGGATCCTGCCACCGCCGCGCTCAGGCAGACCGTCACTGATGTGCTGAGCCGGCTCGCTGCCGGGACGCCGAAGCCGGCTAGTGCCCAGGTGACGGAGGCCCTGACCGGTGCCGGCATCGCGGCAGCTGCTCTGGAAGTGTCCGAAAGCAGCACGCCAACAGGGTTGGAAGCTGACGCTGTAGAAGCCGCTGTTCTGCAGGGGAGTGACTGTGTTGTGGGCCAGATTCGTGACGGTGGCGTAGCAGTGACCGTTCTTCCCGTCCTGTCCACCGGCAAGTGCTTTGTGGGCTCAGCCGTCTGAMVLAIRILNAWQNGRMKRATEHRKKNHVGVLLAVRQVPTSSFSSVWAGCVLVAVSLAVAVSLSACTGGAQSGGDKPGAPAATTTQAASPATPSSSPSEAASPGGAAAGSSAAAGGRASAEDPATAALRQTVTDVLSRLAAGTPKPASAQVTEALTGAGIAAAALEVSESSTPTGLEADAVEAAVLQGSDCVVGQIRDGGVAVTVLPVLSTGKCFVGSAVNANANANANA
D1-29_02886570Single-stranded DNA-binding proteinATGAGTGACAACATTACGGTCCGTGGCTTCGTCGCCACGGAAATCAAAAGCTCCACAACCCCAGGCGGCGTCGGCACGGCTTCCTTCCGCCTTGGATCCACGGACCGGCACTACGACCGCGCTTCGGGCGCCTGGGTCGATGGCAACACCAACTGGTTCACGGTTCAGGGCTACCGCCAGCTCGCGGGAAACATGGGCTGCAGCATCAAGAAGGGCCAGCGCGTGATCGTTGTGGGACGTTTGAAGCTCCGGAGCTGGGAGAAGGAGGGGCGGGTTTACTATGCCACCGAAATTGACGCGGAATCCGTAGGCCACGATTTGATGTGGGGCTCAGCAAACTACATCCGCACAGCGTCCAAAGGCCCGTACTTGGTTTCGGAACAGGGTGCAGAAGCCCAGTCCGTGGGCGCGTTCCCCGCAGATTCGGAGGATGCCCGCGACGCCGGCAATGGCGAGGCCGGGGAGGACCCGGACGGCGACGGATCCACAGCGATCTACCTGGAGGACACCAACGGAGAGCTCATCCCGGTCGATCCGGAAACGGGGGAACTCGCGGACGCAACTGCCTAGMSDNITVRGFVATEIKSSTTPGGVGTASFRLGSTDRHYDRASGAWVDGNTNWFTVQGYRQLAGNMGCSIKKGQRVIVVGRLKLRSWEKEGRVYYATEIDAESVGHDLMWGSANYIRTASKGPYLVSEQGAEAQSVGAFPADSEDARDAGNGEAGEDPDGDGSTAIYLEDTNGELIPVDPETGELADATANANANANANA
D1-29_02888135hypothetical proteinATGCATGTCACCGTGCCTACGGGCGATGAATCAGAACCCATGGATTGCCCGCATCAGTTTGTCGGCCGCTGCGACCTGTGCTCCGCGCCGGCGGGGGAGGTAAATTCCGAAAACAAAAGCGGCTCTGACACGTAAMHVTVPTGDESEPMDCPHQFVGRCDLCSAPAGEVNSENKSGSDTNANANANANA
D1-29_028901188xylA_1Xylose isomeraseATGACAGCTTTGCCCACACCCGAAGACAAATTCACTTTCGGCCTCTGGACTGTTGGCTGGACCGGCGCTGACCCCTTTGGCGTGGCAACCCGCCAGGCCCTGGATCCCGTAGAGGCCGTCCACAAGCTCAGCGAGCTGGGCGCCTATGGAATCACGTTCCACGACAACGACCTGGTCCCCTTCGACGCCACCGCCTCGGAGAGCGAACTGATCCTGAAGAACTTCCGCGCCGCCCTCACGGAGACCGGCCTCAAGGTCCCGATGGTCACCACCAACCTGTTCAGCCACCCCGTCTTCAAGGACGGCGGATTCACCTCCAATGACCGTTCCATCCGCCGCTTTGCCCTCAGCAAGGTGTTGCGCAACATCGACTCGGCCGCAGAATTCGGCGCCGAAACGTTTGTTATGTGGGGCGGCCGGGAAGGCAGCGAATACGACGGCTCCAAGGACCTCTCAGCCGCCCTGGACCGGATGAAGGAAGGCGTGGACACAGCCGCGGCCTACATCAAGGAAAAGGGCTACAACCTCCGCATCGCCCTGGAACCCAAACCGAACGAGCCCCGCGGCGACATCTTCCTCCCCACCGTCGGGCACGGCCTGGCCTTCATCGCCCAGCTCGAACACGGCGACATTGTGGGCCTGAACCCGGAAACGGGGCATGAGCAGATGGCCGGGCTGAACTTCACCCACGGCATCGCCCAGGCCCTGTGGGCGGGCAAGCTTTTCCACATCGACCTCAACGGCCAGCGCGGTATCAAGTACGACCAGGACCTCGTCTTCGGCCACGGCGACCTCACCAGCGCCTTCTTCACCGTGGACCTGCTCGAAAACGGCTTCCCCAACGGCGGACCGAAGTACAACGGCCCCCGCCACTTCGACTACAAGCCCTCACGCACTGACGGCTACGACGGCGTCTGGGAATCAGCCAAATCCAACATGTCCATGTACCTGCTGCTCAAGGAAAGGGCCCTCGCCTTCCGCGCCGACCCCCAGGTCCAGGAAGCACTCGCCGCCTCAGGCGTCTTCGAACTCGGCGAATCCACCCTGGCCGCCGGCGAATCCACGGCGGACCTCCTGGCGGACAGCAGCGCTTTCGAGGACTTCAACGCCGATAAGGCCGCCGAACGTTCCTTTGCCTTTGTGCGGCTGAACCAGCTGGCCATCGAGCACCTGCTTAACGCCCGCTGAMTALPTPEDKFTFGLWTVGWTGADPFGVATRQALDPVEAVHKLSELGAYGITFHDNDLVPFDATASESELILKNFRAALTETGLKVPMVTTNLFSHPVFKDGGFTSNDRSIRRFALSKVLRNIDSAAEFGAETFVMWGGREGSEYDGSKDLSAALDRMKEGVDTAAAYIKEKGYNLRIALEPKPNEPRGDIFLPTVGHGLAFIAQLEHGDIVGLNPETGHEQMAGLNFTHGIAQALWAGKLFHIDLNGQRGIKYDQDLVFGHGDLTSAFFTVDLLENGFPNGGPKYNGPRHFDYKPSRTDGYDGVWESAKSNMSMYLLLKERALAFRADPQVQEALAASGVFELGESTLAAGESTADLLADSSAFEDFNADKAAERSFAFVRLNQLAIEHLLNARPGPT0017550_1492DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017550-xylA-K01805NANA
D1-29_028911422xylB_1COG1070Xylulose kinaseATGGCACTCATAGCCGGCATCGACAGCTCCACCCAGTCCTGCAAGGTGGTGATCCGGGATGCGGACACCGGCCTCCTGGTCCGGCAGGGAAGGGCGGCCCACCCTGATGGCACCGAAGTCCATCCGGACGCCTGGTGGGACGCGCTGCAGCAGGCCATCGGCCAGGCCGGCGGGCTGTCCGACGTTGCCGCCGTGTCCGTGGGCGGCCAGCAGCATGGCATGGTGTGCCTGGACCGGGACGGCACCGTCATCAGGCCCGCACTGCTATGGAATGACATCCGCTCTGCCCAGGCCGCAGTGGACATCATCACCGAAGCGGGCAAGGGAGACCCCGCTGCCGGGGCAAGGCACTGGGTTGAAGCCACAGGCACCGTCCCGGTGGCTTCACTGACGCTGACCAAGCTGCGCTGGCTGGCGGAGAACGAGCCCGGAAACGCCGCCCTGGTGGCCGCCGTCTGCCTCCCCCATGACTGGCTCTCCTGGCGTCTGGCCGGGTTCGGGCCAGGAAGCGGTGAGGCAGGACTGGCCGCTCTTCGCACCGACCGCTCCGACGCTTCGGGTACCGGATACTACTCCGCTGCTGCGGGCGAGTACCTCACAGACGTCCTCGAAAAGGCGCTGGGCCACGTTCCCCGGCTTCCCGCCGTCGTTGGCCCGCTGGACATCGCCGGGAAGACGCCGGCAGGCGCGCTCATCGGTCCCGGCGCCGGGGACAACGCCGCCGCTGCCCTGGGTGTTGGCGCCGGAGTGGGTGACGTGGTGCTGTCCCTCGGCACCTCCGGGACAGTATTTGCCGTCTCCTCAACCCCGTCGGCTGATGCCTCCGGGCTGGTGGCAGGTTTCGCCGACGCCACGGGCAACTACCTGCCGCTGGCGTGCACCCTGAACGCAACGCGGATCTTCGATGCCACCGCTGCCCTGCTGGATGTCACCCTGGATGAGTTCAATGCCCTGGCACTGGCGGCCACCCCGGGAGCGGGAGGGCTCACCCTCGTTCCCTACTTCGACGGCGAGCGCACGCCGAACCTGCCCAACGCCACGGGATCGCTGCATGGCCTGACGCGTGAAAACTTTACGCCGGAGAACTTGGCCCGTGCCGCCGTCGAGGGTGTGGTCTGCTCCCTCGCCGATGGGCTTGCGGCACTGCAGGCACAAGGAGTCCAGGCCCGGCGCATCATCCTGATCGGCGGCGGGGCACAGTCGCCGGCCGTCCAGCAGGCTGCCAGCCAGCTGCTGGGCTTGCCAGGCATTGTTCCGGCACCGGGAGAATATGTTGCCGACGGCGCCGCACGCCAGGCCGCTGCTGTGCTCACCGGGGCTTTCCCCGGCTGGGGAACTAAAGCGGTGGAATTCAGCGCCCAGGCTTCCGACGGCGGCATCCTGGCCAGGTATCGCAGGCACGCCGGCGCTTACCTGGCCTAGMALIAGIDSSTQSCKVVIRDADTGLLVRQGRAAHPDGTEVHPDAWWDALQQAIGQAGGLSDVAAVSVGGQQHGMVCLDRDGTVIRPALLWNDIRSAQAAVDIITEAGKGDPAAGARHWVEATGTVPVASLTLTKLRWLAENEPGNAALVAAVCLPHDWLSWRLAGFGPGSGEAGLAALRTDRSDASGTGYYSAAAGEYLTDVLEKALGHVPRLPAVVGPLDIAGKTPAGALIGPGAGDNAAAALGVGAGVGDVVLSLGTSGTVFAVSSTPSADASGLVAGFADATGNYLPLACTLNATRIFDATAALLDVTLDEFNALALAATPGAGGLTLVPYFDGERTPNLPNATGSLHGLTRENFTPENLARAAVEGVVCSLADGLAALQAQGVQARRIILIGGGAQSPAVQQAASQLLGLPGIVPAPGEYVADGAARQAAAVLTGAFPGWGTKAVEFSAQASDGGILARYRRHAGAYLAPGPT0017535_3789DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017535-xylB-K00854NANA
D1-29_02892858hypothetical proteinATGACAGCGAACCCAGAACCGTCCCCTTTTGCACGCCTCTCCCTCAATACCGCCACCACCAAGAAGTGGACGCTCGCTGAAGCGGTGGAGGGGTGCGTCCGCGCCGGACTGCCCGCCATCGGTCCGTGGCGGGACCGCGTCGAGGAGGCAGGCCTGGACAAGGCAGCCAAGCTCATCAAGGATGCCGGCCTGCGGGTTTCTTCCCTATGCCGCGGCGGCTTCCTGACCGCTGCCGACGCGGAAGGCCAGGCCGCGGCGCTGGCGGACAACCGTGCCGCCGTCCTCGAGGCTGTTGCGCTGGACACGCAGGAACTGTTCCTGGTGGTTGGCGGGCTCGCGCCAGGGGAGAAGGATGTGGTCGCCGCCCGGCAGCGTGTGGCCGACCGCCTCGCTGACCTGGTGCCCTTCGCGGCAGGGAACGGCGTCCGCCTGGTCCTGGAGCCGCTGCATCCCATGTACGCCGCGGACCGTGCCCTGATCTCCACCCTGGGGCAGGCCCTGGACCTTGCCGCGCCGTATGACGCCAAGCATGTTGGCGTCGCCGTCGACACCTTCCACGTCTGGTGGGACCCGGAACTGAAGGCGCAGATAGAACGCGCCGGCCGGGAAAACCGGCTGGCCTCCTATCAGGTCTGCGACTTCAACATGCCCATCGCCGCGGACCCGCTGCTGTCCAGGGGCTTCATGGGCGACGGCGTCATCGACTTCGCGACAATTGGCACCTGGGTGCGCGATGCCGGGTACACCGGCGATATTGAAGTTGAAATCTTTAATCAGGAGATCTGGGATGCTGACGGCGACAGCGTCCTGCAGACCATCAAGCAGCGGTACGCAGACCTGGTGCTGCCGTACGCCTGAMTANPEPSPFARLSLNTATTKKWTLAEAVEGCVRAGLPAIGPWRDRVEEAGLDKAAKLIKDAGLRVSSLCRGGFLTAADAEGQAAALADNRAAVLEAVALDTQELFLVVGGLAPGEKDVVAARQRVADRLADLVPFAAGNGVRLVLEPLHPMYAADRALISTLGQALDLAAPYDAKHVGVAVDTFHVWWDPELKAQIERAGRENRLASYQVCDFNMPIAADPLLSRGFMGDGVIDFATIGTWVRDAGYTGDIEVEIFNQEIWDADGDSVLQTIKQRYADLVLPYANANANANANA
D1-29_028931215hypothetical proteinATGACCTCACTCATTCTTCCCTCCCACGACGGCGGAACCCGGGAGTACCGGCTTCAGGGCGGTACGTCCTGGGCACGGCCCATGGTCCCGCTCACCTCGCGCCGTGCCTACGCCGCCGCGCATGTGATTCCCGAAGTCCTGGCGGACAACACCCCGGGTGCGCCGGCACGCCTCGACTGGGATGCCACCATGGCATATCGGCATGAACTCTGGTCCTACGGGCTGGGTGTGGCCGATGCCATGGACACCGCCCAGCGCGGGATGGGCCTGGACTGGCCAGCCACCCAGCAGCTCATCAAGCGGACAGGTGTCGAAGCCGCAGCAGTGGTTTCGGCCGGGAACGCCGCCACGGCCGGCAAGACCGTGCGTGACCTCGTTTCCTGCGGCGCGGGCACGGATCAGCTGGACATCGCATCGCTGCCTGCCGGTGAAGCCGGCCTGAAAGCGGTTCTGGACGCCTACCGCGAGCAGATCGAAGTAGTGACGGAGGCGGGGCCGAAGGTCATCCTGATGGCGTCGCGGGCTTTGGCGAAGGTCGCATCGGGCCCGGAAGACTACCTCAGTGTCTATTCCACGCTGCTTCAGGAAGTGGAGCAGCCCGTTATCCTGCACTGGCTGGGCACCATGTTCGATCCCGCCCTGGCCGGCTACTGGGGGAACGGCGACGTCGCTGCTGCCACCGAAACCTTCCTGGGCCTTATCCGTGACAATGCGGACAAGGTGGACGGCGTCAAGGTCTCCCTTCTCGATGCCAGCCACGAAGTGGCGCTCCGCGCGGCCCTTCCCGAAGGCGTCCGCCTCTACACAGGCGACGACTTCAACTACCCGGAACTGATCGATGGCGACGGCAGCCACCACTCAGACGCCCTGCTGGGCATCTTTGCGGCCATCTACCCGGCAGCCTCGGTGGCACTGCAGGCCTACGACGCCGGTGACGCCGCCAAGGGCCGCGCCATCCTGGATTCCACGCGGGAACTGGGCAAGCACATCTTCAGTGCGCCCACTTTCTACTACAAAACAGGCATCGCCTTTATGTCCTGGCTCAACGGCAAGCAGCCGGGCTTCCAGATGGTGGGCGGCCTGCACTCCGGGCGTTCCGTATGCCACCTGGCCAAAACCTTCGAATTGGCCGATCAGGCCGGGCTGCTGAAGGATCCGGCACTCGCAGCCTTCAGGATGTCCGATTACCTGCGGATCAACGGAGTAGGCGTATGAMTSLILPSHDGGTREYRLQGGTSWARPMVPLTSRRAYAAAHVIPEVLADNTPGAPARLDWDATMAYRHELWSYGLGVADAMDTAQRGMGLDWPATQQLIKRTGVEAAAVVSAGNAATAGKTVRDLVSCGAGTDQLDIASLPAGEAGLKAVLDAYREQIEVVTEAGPKVILMASRALAKVASGPEDYLSVYSTLLQEVEQPVILHWLGTMFDPALAGYWGNGDVAAATETFLGLIRDNADKVDGVKVSLLDASHEVALRAALPEGVRLYTGDDFNYPELIDGDGSHHSDALLGIFAAIYPAASVALQAYDAGDAAKGRAILDSTRELGKHIFSAPTFYYKTGIAFMSWLNGKQPGFQMVGGLHSGRSVCHLAKTFELADQAGLLKDPALAAFRMSDYLRINGVGVNANANANANA
D1-29_028941170xdhD-xylose dehydrogenaseATGGGCTTCGAAACAAAGACGATCCGCATCGCCATGAACGGCATCACCGGACGGATGGGTTACCGGCAGCACCTGCTGCGTTCCATCCTTCCCATCCGCGACGCCGGAGGCTTCACCCTGGAGGACGGCACCAGGGTTCAGATCGAACCCATTCTGGTGGGCCGGAACGAAGCCAAGATCCGCGAGCTTGCCGAAAAGCACAAGGTGTCCGAGTGGAGTACCGACCTTGATGCTGTCATCAACGATCCCACCGTTGACATCGTGTTCGATGCCTCCATGACCAGCCTCCGGGCAGCCACCCTCAAGAAGGCCATGCTGGCCGGCAAGCACATCTTCACCGAGAAGCCCACGGCGGAAACCCTTGAGGAAGCCATCGAATTGGCCCGCATCGGCAAGGAAACCGGCGTCACGGCCGGCGTTGTCCACGACAAGCTGTACCTCCCGGGCCTGGTCAAGCTCCGCCGCCTGGTGGATGAAGGCTTCTTCGGCCGCATCCTCTCCATCCGCGGTGAGTTCGGGTACTGGGTCTTTGAAGGCGACATCCAGGCCGCCCAGCGCCCGTCCTGGAACTACCGCAAGGAAGACGGCGGCGGAATGACCACTGACATGTTCTGCCACTGGAACTACGTCCTCGAGGGCATTATCGGCAAGGTCAAGAGCGTCAACGCCAAGACCGCCACGCACATCCCGGCCCGCTGGGACGAAGCCGGCAAGGAATACAAGGCCACCGCCGACGACGCCTCCTACGGCATCTTCGAACTGGAAACCCCGGGCGGCGACGACGTCATCGGCCAGATCAACTCCTCTTGGGCCGTTCGCGTCTACCGGGACGAACTTGTGGAATTCCAGATCGACGGCACCCATGGCTCCGCCGTTGCAGGCCTGAACAAGTGTGTGGCCCAGCAGCGTGCCCACACGCCCAAGCCGGTCTGGAATCCGGACCTGCCCGTCACGGAATCCTTCCGCGACCAGTGGCAGGAAGTCCCGGCCAATGCTGAGCTGGACAACGGTTTCAAGCTGCAGTGGGAAGAGTTCCTCCGCGACGTTGTGGCAGGCCGCGAACACCGCTTTGGCCTCCTCTCAGCCGCCCGCGGCGTCCAGCTCGCCGAGCTCGGCCTGCAGTCCAACGACGAACGCCGCACCATCGACATCCCGGAGATCACGCTCTGAMGFETKTIRIAMNGITGRMGYRQHLLRSILPIRDAGGFTLEDGTRVQIEPILVGRNEAKIRELAEKHKVSEWSTDLDAVINDPTVDIVFDASMTSLRAATLKKAMLAGKHIFTEKPTAETLEEAIELARIGKETGVTAGVVHDKLYLPGLVKLRRLVDEGFFGRILSIRGEFGYWVFEGDIQAAQRPSWNYRKEDGGGMTTDMFCHWNYVLEGIIGKVKSVNAKTATHIPARWDEAGKEYKATADDASYGIFELETPGGDDVIGQINSSWAVRVYRDELVEFQIDGTHGSAVAGLNKCVAQQRAHTPKPVWNPDLPVTESFRDQWQEVPANAELDNGFKLQWEEFLRDVVAGREHRFGLLSAARGVQLAELGLQSNDERRTIDIPEITLNANANANANA
D1-29_028951095degA_4COG1609HTH-type transcriptional regulator DegAGTGGCTGCAAGTACCCTCACCGAGGTGGCCCGGCTTGCGGGCGTCTCGCCCGCCACGGCCTCCCGTGTTCTCAACGGCTCGGCACGGAAGCCGGGCAAAGACATCGCGGACCGGGTCCGGCAGGCGGCGGATTCGCTTGGCTACATTCCCAATGCCCAGGCGCAGGGCCTGGCAAAGTCAAGCTCAGGCCTGATCGGGCTCATTGTCCATGACATCGCCGATCCTTATTTTGCCGCGATTGCCCGCGGCGTGCAGGAAGCGGCGCGTGAGCAGCGAAAGATGGTGCTGCTGGCCAGCACTGAAGGCGCTCCCGCGGGTGAGAAGGAGGCGGTGGCGGCCTTCGCGGCCCGCCGGGCCGATTCCATCGTGATCGCGGGTTCGCGCTCGGCCCGGCCCGAGGACAGTGAGGGCAACGCCGAACTGGCCGCGGAACTGGACCGATACTGCCGCAACGGAGGCAGGGTGGCAGTGGTAGGCCACGCCGTGGTGGGCGCCACAGCAACCGACGGCTACCACGTGGTTCCGGTGCCGAATGAGGAACTGGCCGCCAACCTTGCCGTTGAGCTCGCCGCCTCGCAGGAAGACCACTTTGTCATCATCGGCGGCCCGGAAGGCCTTTTCACCTCCGATGACCGGGTACGCGGGTTTCAGCGAGGGCTTGCACAGGCAGGAAGGCCGGCCGCCGAAGTCCTGCGGACCGCCTTCAACCGTTCCGGGGGCTATGAAGCAGGCCTTGCACTGGCCGCCCGCATCAAGGCTGCACGGGACGGCAGCGGCACCGATCCCGGCAGCAGCCGGATGTGTATTTTCGCCGTGAACGATGTCATGGCCATCGGGGCCGCCGCGGCGCTGCGTTCCGAAGGCCTCCGCATTCCCCGCGACGCCACCATCGCCGGCTTTGACGACATCGAGACCCTGCGGGACTTCCGTCCTGCCCTTTCCACCGTGCACCTCCCCCTCGAGGAGATCGGGAGACTCGCCGCCCGCAGTGCCGCCGGCGCCCGCGCAGGCTCCGGCGCCGGAAAGGACGACGACGACGCGTGGTCCATCTCGGGCCATGTCACGCTTCGGCGCAGTACTGAAACGGCCGCCTAAMAASTLTEVARLAGVSPATASRVLNGSARKPGKDIADRVRQAADSLGYIPNAQAQGLAKSSSGLIGLIVHDIADPYFAAIARGVQEAAREQRKMVLLASTEGAPAGEKEAVAAFAARRADSIVIAGSRSARPEDSEGNAELAAELDRYCRNGGRVAVVGHAVVGATATDGYHVVPVPNEELAANLAVELAASQEDHFVIIGGPEGLFTSDDRVRGFQRGLAQAGRPAAEVLRTAFNRSGGYEAGLALAARIKAARDGSGTDPGSSRMCIFAVNDVMAIGAAAALRSEGLRIPRDATIAGFDDIETLRDFRPALSTVHLPLEEIGRLAARSAAGARAGSGAGKDDDDAWSISGHVTLRRSTETAAPGPT0017992_1499DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_02896690axeA1COG0657Acetylxylan esteraseATGCTCATCCTCCCCGGAGGAGGCTATGCGGGCCAGGCCGGCCATGAGGCGGAGCCTGTGGCGGAGTGGCTGGCATCCCTGGGAATCCATGCGTACGTGCTGCGGTACCGGGTGGCACCGCACCGTCATCCGGCGCCCTTGGAGGACGCCAAGGAGGCACTCCTCCAGATCCGCGAGGGGAGCCACGGGCTTGCGGTGGACAGCGCCCGGGTGGGCGTGCTGGGCTTTTCCGCCGGCGGCCATCTTGCCGCGACACTGTCGACGGCGGCGGCCACGGGAGATTCCACGCTGGATGTTCCGGGAGCCATACCCGACCTGACGGTACTTTGCTACCCGGTCATCTCGTACACAGATGCTGTCCATCAAGGCTCGGTGGACAACCTTCTCGGCGACTCTCCGTCGGCGGAACTGCTGGAGGCTGTCTCTGCAGACCGCCAGGTCACCTCCTCCACTCCCCCGGCCTTTCTGTGGCACACGGCGGATGACGCCGCCGTGCCGGCTCACCACAGCCTGGCCTACGCCACGGCACTGGTCCGGGCCGGCGTTCCGGCGGAGCTCCACGTCTTCCCGCACGGGCGCCATGGGCTGGGGCTTTCCCCTGATGACCGGGGGCCGGACCAGTGGACTTCCCTGTGCGCAAGCTGGCTGACGCGGTGGGGCTGGACTCAGTCCTCGCCCAACGTGATGTGAMLILPGGGYAGQAGHEAEPVAEWLASLGIHAYVLRYRVAPHRHPAPLEDAKEALLQIREGSHGLAVDSARVGVLGFSAGGHLAATLSTAAATGDSTLDVPGAIPDLTVLCYPVISYTDAVHQGSVDNLLGDSPSAELLEAVSADRQVTSSTPPAFLWHTADDAAVPAHHSLAYATALVRAGVPAELHVFPHGRHGLGLSPDDRGPDQWTSLCASWLTRWGWTQSSPNVMNANANANANA
D1-29_02897795hypothetical proteinATGACTCCTGAAGAGCACACCGGACTGGCGGACTGGAACAGGTCCCGCCTCACCCCCGGGATATGTTCCGTGACCCTGCGCCAGAGCAGTATCCGGGAAGTGGTGGAAACTGCCGCGGATGCCGGCCTGGCCGGCATCGAGTGGGGTACGGATGTCCACATTCGTGATGCAGGATCCGCGGCCGAGGCGCGGGAGGCAACTGCGGCGGCCGGGCTGGAAGTTTTGTCGCTGGGTTCGTACTACCGCGTGGGCAGCTTCGGCGATTTCTCCCTTCCCGCCGATCTCGCCGTCAGTCTCGGTGCCCCCAGGATCAGGGTCTGGGCGGGTGGGCAGGGTTCGGCCGACGCCGGCGCGGACGTGTGGGATCAGGTGGTCCAGGACGCCCGGCGGGTAGCGGACCTTGCCGGTGAACGAGGTCTGGACATCGCTTTTGAATACCATGGCGGAACCCTCACCGACACCCCGGGCACCGCACTGCAGCTGGTGAAGCAGGTGGACCGGGACAACGTGCGGACTTATTGGCAGCCCGCCGTCGGACTCTCAGACCAGGCGGCGCTGGCCTCCCTGCACACAGTCCTCCCGTACGTCTCGGGAGTGCACTGCTTCTCCTGGTGGCCCCAGCAGGAACGGCTGCCGCTCAGCGGCCGAAAACAGCTCTGGCAGTCAGTGGCCGACATCCTGCGCGAAGCCGGACGGCCTTGTGACATGATGCTCGAGTTCGTTGCGGAGGACCTTCCGGCGAACGTGGGCCGTGACGCCGATTTCCTGAATCACATCACGTTGGGCGAGGACTGAMTPEEHTGLADWNRSRLTPGICSVTLRQSSIREVVETAADAGLAGIEWGTDVHIRDAGSAAEAREATAAAGLEVLSLGSYYRVGSFGDFSLPADLAVSLGAPRIRVWAGGQGSADAGADVWDQVVQDARRVADLAGERGLDIAFEYHGGTLTDTPGTALQLVKQVDRDNVRTYWQPAVGLSDQAALASLHTVLPYVSGVHCFSWWPQQERLPLSGRKQLWQSVADILREAGRPCDMMLEFVAEDLPANVGRDADFLNHITLGEDPGPT0003570_123DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-PETROBACTIN_BIOSYNTHESIS,PGPT0003570-asbF-K15652NANA
D1-29_02898678hypothetical proteinATGAAAAATCAGCCAGCCGGACCACTGGCCACCACCGCGGCTGAGTGGGAAAGCGTGGAGCGGCTCTTCGGAACGCGCGGAGAGCCGTCCCGCTGCTGGTGCCGGTACTTCACGCTGACAGGCCCGGAATACTCGGCACTTGATCCGGCCGCCCGCAAGGCACAGTTGAAGGAGAGGTTCGACGCTGGCACCCCTGCACCAGGTGTCCTTGCCTACCGTGACGGGGAACCTGTGGGCTGGTGCGCGGTGGAACCCCGCGAATGCTACCCACGAGTCCTCAACTCGCAGTTGCTGCGGCGGGCGCACGCCGCGGCGGGCGACACCGGCGCGGACGCCGACGAAGCCACCGACGAACCCGTCACCGGCGAACAGGCCGCCGGAGGCGGGGCAGCAGCCGGGGGCCGGGTGTCCATCTGGGCCGTCACCTGCTTTGTGGTGGATCCCCGGCACCGCCGCAGCGGTGTGGCCGCCGCCCTGCTGGAGGCCGCCGTCGAGCACGCCAGGACTAACGGTGCCCGCATTCTGGAGGGCTACCCCGTGGATCCCTCGCTGAGGCCAAAGGCGGGAGCCTCGGATTTGTACCACGGAACCCTGAACCTGTTCCTGGCGGCCGGGTTCAAGGCTGTCAGCAGGGCTGTCCCGGGCCGGGCAGTGGTACGCCTCCAGCTGGATCGTTGAMKNQPAGPLATTAAEWESVERLFGTRGEPSRCWCRYFTLTGPEYSALDPAARKAQLKERFDAGTPAPGVLAYRDGEPVGWCAVEPRECYPRVLNSQLLRRAHAAAGDTGADADEATDEPVTGEQAAGGGAAAGGRVSIWAVTCFVVDPRHRRSGVAAALLEAAVEHARTNGARILEGYPVDPSLRPKAGASDLYHGTLNLFLAAGFKAVSRAVPGRAVVRLQLDRNANANANANA
D1-29_02899903yihR_2COG2017putative protein YihRATGCAGGATACGGAACACAGCATTTCATTCGGGCCGTATTCGGCCATCATCACCACCCGCGGCGGGGCGCTCCGAGAGCTCAGCCATGAAGGGCGCCACCTGGTGGTCACCTTCGGGCCGGAAGGGGCAATCCCGGACTATCGCGGCGTCGTCTGCGCGCCCTGGCCCAACCGCCTCGCTGATGGCTCCTACAGCTACGCCGGGCAGCGCTTCCAGGCAGAACTCAATGAGCCGGAACGTGGATCGGCCCTCCACGGCCTGGTCCCCGGAGCGCCTTGGGAGCTCCGGCAGAAGGACACCAGTTCGGTCACGCTCGGCTGCACGGTGGACGCCAGTGATGCCTACCCCACCGGCCTGGAGGTCACCGTCACCTACCGGCTCTCCGACGACGGACTTCGTTGCACCGTCCACACACTCAACGCGGGACTGGCTCCTGCACCCTACGGTGTTTGTCCGCACCCTTACCTGCTGGCCGGTTCCTCCCCGCTGGATGAATGGACCCTGGAGCTGCCGGCGCAGGAATTCATGGAAGTAACGCCGGACAGGCTCCTCCCGGTAGGCATCAAGGCCGTGGAAGGACACGAGTTCGATTTCCGGACCGCACGGCGCCTTGGCGCAGTAAAGATCGACCACGCCTTCACCGGCATCAGCTGGGACAACCAGGAACGCGCTGCCGTCCGCCTGCTTGATCCGGCGGGAACCGGAGTGGAGCTGGAATGGGACCGGAAATGGCCGTGGGTGCAGGTGCACACCGCAGACAAGCCGTCCGGCAAGGACAGGCTGGGCCTCGCCGTTGAACCGATGACGTGCCCGCCGGACGCCTTCAACTCGGGCACCGACGTCATCCACCTTCAGCCTGGCGAATCCCACGAAGCCAGCTGGACCATCCGGACGCTCAGCTAAMQDTEHSISFGPYSAIITTRGGALRELSHEGRHLVVTFGPEGAIPDYRGVVCAPWPNRLADGSYSYAGQRFQAELNEPERGSALHGLVPGAPWELRQKDTSSVTLGCTVDASDAYPTGLEVTVTYRLSDDGLRCTVHTLNAGLAPAPYGVCPHPYLLAGSSPLDEWTLELPAQEFMEVTPDRLLPVGIKAVEGHEFDFRTARRLGAVKIDHAFTGISWDNQERAAVRLLDPAGTGVELEWDRKWPWVQVHTADKPSGKDRLGLAVEPMTCPPDAFNSGTDVIHLQPGESHEASWTIRTLSPGPT0017825_5000DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-29_02900210map-1COG0024Methionine aminopeptidase 1ATGCAGTGGTGCACGGTATCCCCAACAGTCAAACTGACCGAAGGCCTGGTCATAGCCATTGAGCCCATGCTCATCCTGGGCGGCAAGGACGATTATTACCACGACGACGACGAATGGACCCTGCGCTCAGCCAACGGCCGCAGGGCGGCCCACAGTGAACACACTGTTGCCATTACGGCCGGGGGCCCGGTGGTCCTGACTCGCCCGTAGMQWCTVSPTVKLTEGLVIAIEPMLILGGKDDYYHDDDEWTLRSANGRRAAHSEHTVAITAGGPVVLTRPPGPT0020010_7609DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-29_02901444Methionine aminopeptidase 1, mitochondrialATGCTGCACAACCGGCCGTGGCCAGAGTGGTTACCGGGTGTTGCGGGTCCCTTGCCGCTCGCCGGCACAGTAGGCCCGGAGTACTGCAGCCTAGAGTGGGGGAAGGCAAACGCCGCGGCCCGCGCCGCCAACACCGGAGGTTTCCCCATGTCCATGATCAAAACCCCGGAGCAGATCGCCCTGATGCGTGAGGCGGGGCGCGTTGTCGCGAACGCCCTTGCGGCGGTCCGGGAGGCCGCCGGGGTCGGCGTGTCACTTGTTGACCTGGATGGGCTGGCTGCGGAAACCATCGCCAAGGCCGGGGCGAAGCCCGCGTTCCTGGGCTATCACCCGCGCTGGGCGTCCGTCCCGTTCCCAGGCGTTATCTGCACGAGCGTCAATGATGCAGTGGTGCACGGTATCCCCAACAGTCAAACTGACCGAAGGCCTGGTCATAGCCATTGAMLHNRPWPEWLPGVAGPLPLAGTVGPEYCSLEWGKANAAARAANTGGFPMSMIKTPEQIALMREAGRVVANALAAVREAAGVGVSLVDLDGLAAETIAKAGAKPAFLGYHPRWASVPFPGVICTSVNDAVVHGIPNSQTDRRPGHSHNANANANANA
D1-29_02902711hypothetical proteinATGATGAGCACAGCGATTAACGGGAGGCTGCTGGCCACGATCCGCAAGTCACTGGTGGAGCACGCTGATCCTGTACGCGCGGCTGGAGTGCAGGCGTATATGAAGTCCGCTGTTCCGTCCTTGGGCGTCAGGGTCCCCGATGTCAGGCGGCTGACGGCGGCAGCTGCTGCCGACTGCCCTTTCGACTCCGCGGAGCAACTGCGCTCCACCGTGCTGGAACTTTGGCGCAACGCTGCCTGGCGCGAGGAGCGCTATGCGGCGATCGACCTTACGGGCCTCCGCATCGCGGCCGGAGATCCCCTGATGCTGCCTGTCTATGAGGAAATCATCCGCAGCGGCGCCTGGTGGGACTTCGTTGACGGGGTGGCCCAGCGGATCTGTGACCTGCTGCAGGCGCACCGGCCGACGATGACCGAGGTGCTGCGGAGCTGGAGCAGGGACGGGGATTTCTGGATCAGGCGGGCTTCCATCACTGCCCAGCTGAAGGCCAAGGCCGCCACCGACATCGAACTGCTGCGTGACGTCATCGAGGCGAACCTGGCGGATCCGGAGTTCTTCGTCCGGAAGGCCATTGGCTGGTCGCTGCGGGAGTATGCCAAGACCAATCCGGAGTGGGTCAGGTCCTTTGTGGCTGAACACAGCACGGAGCTCAGCCCGTTGTCCCGCCGGGAAGCGTTGCGGAACCTGGAGCCTGCCGTCCAGCCCAAGTAAMMSTAINGRLLATIRKSLVEHADPVRAAGVQAYMKSAVPSLGVRVPDVRRLTAAAAADCPFDSAEQLRSTVLELWRNAAWREERYAAIDLTGLRIAAGDPLMLPVYEEIIRSGAWWDFVDGVAQRICDLLQAHRPTMTEVLRSWSRDGDFWIRRASITAQLKAKAATDIELLRDVIEANLADPEFFVRKAIGWSLREYAKTNPEWVRSFVAEHSTELSPLSRREALRNLEPAVQPKNANANANANA
D1-29_029031557hypothetical proteinATGACGGCGCCCGTGCCTGCGACAGAGGAGATGGACGTCACCACGATCCCCGGGACGGCTGCGGACGAGGTGGACAACGCCCTGTCGCCGCTCATTGCCGGTTTTATCGGTTCGGTCTTCATGATGATCGGCTCACTGGGGGTCGGGTGGCTCGCGCCGGTCTCTGAGCTGCGCCGAATGCCTCTGTTTATCTGGATGCGCACCGAGGCCGTCGGGGTTGCCCTCTCGATAGTGCTCCTGGCCATCGGCGGCATGCTTCTGGTCCGCGCCTGGCTCCGCTTAGGACAGCGCGTCAGGGTCTGGGGACTCCAAGCCCGCCGGGCAACACTCCAGGCTGTGGTGGCCTGGGGCCTGCCGATGATGTTCACCGTCCCGCTGTTCAGCCGGGACGTGTACGCGTACATCGGCCAGGGCCGCCTGATGGTGGAAGGCTTCAACCCGTACGAGAACGGCGTCTCGGCCCTGTCCAACTATTTCCAGCTGGGTGCGGACAAGATGTGGACCGAAGCCCCCGTGCCGTACGGGCAGCTGTTCCTCTGGATCGAGCAGTTCGTTGTCTGGTCCACCAATGTGCACCCCGAAGCCAGCATTATGCTCTTCAGGCTGGCTGCGCTGGTCGGCATTGTGCTGTGCATCATTTATGTTCCCAAGCTGGCGGACCTTCACGGCGTCAACCCGCACCGGGCCCTCTGGCTCACCGCAGCAAATCCGCTGTTCCTTACCAACTTCATCGCCAGCGTCCACAACGACGCACTAATGATTGGCCTTGCCCTCGCCGGCCTTTACTACTGCGCCACGAGGAGGGTGGTCTTTGGCATTGTCCTGGTCACCCTGTCCATCTCGGTCAAACCGATCACGATCGTTTTCCTGCCATTCATTGGCCTCCTCTGGGCAGGCAAGGGGGCCAGTTGGCCCCGAAAGTTCCTTTACTGGGGACTTACGGCCGGGTTGTCACTGGCGCTGCTTTTCGCGATGAGCCGTGTGAACGGCTTTGGATTCGGCTGGATTAATGGACTCTCGGCGCCGGGGAGCGTCTGGATCTGGTACGCCCCCGTGGGCCTGATGGGGCTGGTGGTCGCGTCCATTGCCAATGCGTTCAGCCTGGACGGCTGGGGACTCGCCAAATGGGTATACGACGCCGGCAAGGTGCTTGCCGTGGGCATCGTCGCCTGGCAGATTTTCAAGGGTGACCACGACCGCCTGATGCGGCGGCTGACCCTGGCTTTCGCGGCGATCGTGCTGCTGGCACCCATGATCCAGTCCTGGTATGTCGTGTGGCTCATTCCGCTGTTTGCAGTCACGGGCATTCGCGATGACTGGCAGGTCAAAGCCCTCTACTTCATCGTTTCCTTCTTTATGGTCTATGCCATCTCGGACCAGCTTGAAGTCTTCCCGTACCTGCAGACAGAGGACCTGGGTCTTGCCCTGACGCTGGCGCGGAACGCAGCAGCTATCATCGCGCTGATGTTCGCGCTGTACCTGATTTTCCTTGACCCGCGCACCAAGCACCTGTTCAGCAAGTCGGATCAGCCCGTTACCACGCGCCCCATCATCTGAMTAPVPATEEMDVTTIPGTAADEVDNALSPLIAGFIGSVFMMIGSLGVGWLAPVSELRRMPLFIWMRTEAVGVALSIVLLAIGGMLLVRAWLRLGQRVRVWGLQARRATLQAVVAWGLPMMFTVPLFSRDVYAYIGQGRLMVEGFNPYENGVSALSNYFQLGADKMWTEAPVPYGQLFLWIEQFVVWSTNVHPEASIMLFRLAALVGIVLCIIYVPKLADLHGVNPHRALWLTAANPLFLTNFIASVHNDALMIGLALAGLYYCATRRVVFGIVLVTLSISVKPITIVFLPFIGLLWAGKGASWPRKFLYWGLTAGLSLALLFAMSRVNGFGFGWINGLSAPGSVWIWYAPVGLMGLVVASIANAFSLDGWGLAKWVYDAGKVLAVGIVAWQIFKGDHDRLMRRLTLAFAAIVLLAPMIQSWYVVWLIPLFAVTGIRDDWQVKALYFIVSFFMVYAISDQLEVFPYLQTEDLGLALTLARNAAAIIALMFALYLIFLDPRTKHLFSKSDQPVTTRPIIPGPT0024280_158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLINGCE-REMODELLINGMANNOSYLTRANSFERASE_ACTIVITY,PGPT0024280-mptA-K14337NANA
D1-29_02904711ornCOG1949OligoribonucleaseGTGCCTATATCTAACGAACGCATCGTCTGGATCGACTGCGAAATGACCGGCTTGGACATCAAGAACGACGCCTTGATCGAGGTGGCGGCCCTGGTGACTGACTCCGAACTCAACGTCCTGGGTGAAGGAGTGGACGTGGTGATCAAGCCCGACGATGCCGCGCTGGCCCAGATGAACGACTTCGTCCGGGACATGCACACCCGCTCTGGGCTCCTGAAGGAACTGCCGTACGGCAAGACCATGGCCGAGGCCGAAGCAGCCGTGCTGGAATACATCGAAAAGTGGGTACCGGATCCCCGCAAGGCGCCGCTGGGCGGCAATTCGGTGGGAACGGACAGGGTCTTCCTCTCTCGTGACATGCCCGCGGTGGTGGAGCACCTGCACTACCGCGTGATCGATGTGAGCACCATTAAGGAGCTCTCCCGCCGCTGGTTCGCCAGGGCCTATTTCCAGTCGCCGGCCAAAAAGGGTGGCCACCGGGCGCTCGGTGACATCAAGGATTCGATCGACGAGCTGCGCTACTACCGGGAGGCAGTTTTTGTGCCTGCACCGGGTCCGGACAGCGCAACCGCCCAGCAGATTTCCAAGCGTATCGCCGCCGGCGGCGAGGCGGCCGCTCCTGTTCAAACCGCGGATGATCGCGTTGTTACAGCAGGTGAAGCAGCAGCTGAAGCCGCGTCCGGGAACATTGCAGGACTACCCGAAAGGTAAMPISNERIVWIDCEMTGLDIKNDALIEVAALVTDSELNVLGEGVDVVIKPDDAALAQMNDFVRDMHTRSGLLKELPYGKTMAEAEAAVLEYIEKWVPDPRKAPLGGNSVGTDRVFLSRDMPAVVEHLHYRVIDVSTIKELSRRWFARAYFQSPAKKGGHRALGDIKDSIDELRYYREAVFVPAPGPDSATAQQISKRIAAGGEAAAPVQTADDRVVTAGEAAAEAASGNIAGLPERPGPT0017710_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
D1-29_02906573def_3COG0242Peptide deformylaseATGACAGTTCTGCCAATCACCATTTGGGGGGAACCGGTGCTGCACCGCCGGGCCGCCGAAGTGGAAGAGTTCGACGACGATCTCCGGACCCTGATTGCCGACATGTTTGAAACCAACGACGCCGCAAACGGCGTCGGCCTCGCAGCACCGCAGGTCGGAGTGGGCAAGAGGATTTTCGTGTACAAATTCGCGAACGATGACGGCGCTCCCCCCACCGGTGTCCTGGTCAACCCCGTCCTGACCCTGTCAAAAATCTCCGGCGCCCTCCCCGATCCCGACGAAGAGGAAGAGGGCTGCCTGTCATTTCCGGGCGGCCAGTACCCCCTTAAGCGCGCAGAATGGGCCCGCGTGAAGGGCTTTGACGAACACGGGAAACCTGTCGAATTCGAAGCGACGGGCTGGTTCGCTCGTGTAATCCAGCACGAATACGACCATCTGGACGGCAAGCTCTACGTCGACCGGCTTCTGGCCCGGTATCAGCGGAAGGCCCACAAACAGGCCAAGAAAAGCGGCTGGGGGGTTCCGGGGCTCACCTGGATGCCCGGAGTGGATCCGGACCCGTTCGGCCACTAGMTVLPITIWGEPVLHRRAAEVEEFDDDLRTLIADMFETNDAANGVGLAAPQVGVGKRIFVYKFANDDGAPPTGVLVNPVLTLSKISGALPDPDEEEEGCLSFPGGQYPLKRAEWARVKGFDEHGKPVEFEATGWFARVIQHEYDHLDGKLYVDRLLARYQRKAHKQAKKSGWGVPGLTWMPGVDPDPFGHPGPT0008125_24DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
D1-29_029073387hypothetical proteinATGGAGGTACGCGTTCTTGGAGCGCTGACGCTCGATGAGGATCGGATTCCCTTGGCACCGCGCGATCGTGTGGTGTTGGGTGCGCTCACGGTCCGCTTGGGCGCTTCACTGTCGGTCGAATCCCTCGCCGAGGCGCTCTGGGGCGATGATCTGCCGGCCTCGTGGTCGAAGGTGATTCCGGGCTGCATCATGCGCTTGCGCCGGCTCATCGGGCCTGCACGCATCGAAACAACCCCGTTCGGGTATCGGCTGTCCGCGGACCACATCGAGGTCGACGCCGACCAGTTCGAGCGGCTCGTCAGCCGGGGTACCCAACAGCTGAAGCTTGGTGAGCCGGAACGTGCCGCACACTCATATTCGGAGGCCCTCGCGCTGTGGAGGGGTGAGGCGTTCGTCGAACTCATCGACTGGGGGCCTGCTCAGATCGCGTCCGGCCGTCTTGAGGAGATCCGCCTCGCGGCCGAGGAGTTGCTCCTCGATGCACGGCTGCGAGCCGGCGAGGTTCAGGAGGTCGCCGCCTTGGCGCGCACCCGCGTAGCCGAAGCTCCGTTGCGCGAGCGGCGATGGGTCATGCTGAGCGTGGCGCAGTACCGCCAGGGCCGGCAAGCCGAGGCGATAGCCACCGTGCGCAGGGCGCGGGGACTCCTTGTTGCCGATCTTGGACTGGATCCGTGCACAGAGCTCGCTGAGCTGGAGCAGGCCATTCTCCGGCAGGATCCCTCGTTACTGTCCGACCAGGTATTCCAGACCGGGAGCTCCGAGTGTCCGTACTTTGGCCTGCCTCCCGCGGGCGTGGCGGATGCCGAGCGGTACTTCGGTCGCGAGCAGGAGCTGAGCGGAGCACTGCGCGCGCTTGAAGAACACGGCGTGCTCCTCATCGCGGGCGCATCGGGCGTCGGCAAGTCCTCATTCGTTAGGGCCGGGATAGGCGCCCAGTTCACCGCACGCGGCACGCAGGTCGTCATAGTAACGCCCGGCGAGCGTCCTCTCGAAGCCCTTCGAGACGTAGTTCGACGCCCCGGGGATTCGCTGCTCATCGTCGACCAATGCGAACAGGCGTTCGCCGCGGACGACCCCGCCGAGATCATGAAGTTCTTCGACGCTCTGTCGCGAGAGGTTTTCCGCGGGATGCTCGTCGTCACCATCCGCGCGGACCGTCTCGGAGACCTGGCTGAACACAAAGGCTTCGCCGGGATCATCCAATCGCACATGCTCATGCTCACCGCGTTCGGCTTCGACGGACTCCGTGCCGTGATCGAGAAGCCTGCACAGCAGGCTGGACTCATCCTGGAACCAGGCCTCGTCGAGATCCTGGTCCGCGACGCCGATGGGCGAAACCTTCCACTGTTGTCCCACGCCCTGCACCAGGTGTGGTCACGCCGCGAGGGCCGCGTCATGACCGTAGACGGGTATCGGGCATCCGGTGAGATCGACGGTGCTGTCGCGAAGACCGCGGAAGAGGTCTTCGCCGAGCTCTCAGGGGAGGGCAAGCAGCTGCTGCGCGACATCCTTCTCCGTCTCGTCGAAGCATCTGCAGGCGGTGTGGTGATTTCCCGTCAGATCGAGCGCACGCGGATCGCAATCGACGAGGACCATGCCAAGATCGTCGATCGACTGGTCGATGCCCGCCTGCTCACGACCGACAAGGAAACGGTTCAGCTATCCCACGAAGCGGTTGCACGGGAATGGCCACGGTTGAAGGAGTGGCTCGCCGATGATATCGAGGGTCAACGGATCATGCGGCATCTTGGTTCCGCAGCCACCGCCTGGGATGCGATGGGACGCCCAAACAGCGAGCTCTATCGCGGCGGCCGTCAAACGGCGGCTCAGCAGTGGCGGGACGCGGCCAATCCCGCGCTCACAGTGGTTGAGCGGGAGTTCCTCGAAGCCTGCGCAGCGGCTGAAACCGCAGGACTGGCGGCCACCCAGAGACAGCTCAGTAAGGAGCGCAGCATGGTGCGCCGACTGTCCTGGGTGTCGGCCGGCGCAGCCGGTCTCGCGATCGTTGCTATCACAGCGAGTCTTGTGGCAGGGTTCCAGGCAAATCTCGCCGGCGAGCGTGCAACGGTCGCAGAGGCACGGCGCGTTGCCGCGACCGCGCTGGAGGATCCGGACTTCGACCGAGCGCTGCTGCTCGCGGTGGAGGCCATCCAGATCTGGGACAGCACCGAAACACGTACTAACCTCGTGCGGGTGTTCGCGCGGGCACCCCGGATCACGAGCATCACCCGCATCCAGGAAGACGGAGTGACGCCCGCGAGCATGTCGCTCGAAAAGAACGGAACCCGAGCATCAGTGATCGACAGTGACGACGATCTACGGCTATTCGATCTCGCCAATCGCTCCCAGCTCGGCGATTACTCACCCACCGGAGGAATGATGGCGGCAACCGCCGTCGACCCTGTCTCGGGCACCGTTGCATTCAGCCAGGCATTGGGACTCTGCGAGGCCCTCCCCTGTGTTCGCGGACGAACGGGAACGCTCGATCTGGCTAATGGGGGTCGCTCCGGCTTGGAGACCTACCAGGGCCTGGCTGGGGCGGCGGCAGACGTTGAATACTCGCCCGACGGATCCTTGTTTGCTGCACTGGCGACGACACTCTGGTTCGAACCGTCCGGGAGCGTCGCCCTTTGGCGGGGCGGGGGCGACCCGATGCTGCTGGATTTGAACGCGAGCGGTTCTGATCCCGGCGGTGCATCCGAGTGGGGTGGACAGTTCGGCGCAGTAAAATTTGCCCAGGACGGCTCGCGGCTGTACGCCAGCCGGCTCGGACCGACCGTAGTGTTTGACACCTCATCGGGCACCGAGATCGATCGGATAGCCGGCAACGGGCTCCTGGCCGTCAGCCCGGATGGCCATCGGATCCTGGTTCGGGACGGCCTGCTCGCGGTCCGGATGGTCGACTCTTCCGGAACCGCTGCGCCTATGACGGTCCCGTTGTCGGTGTTTCCATCGGTGGCCGACTTCAGTCCTGACGGCCATCATTTCGCCGTCGCCTCTGGTAACCGCGTCGTGGTGGTGAACACCGAGACTGGCGATATCGCGGAGACTCTCCGCAATCACGACGGCTCGGTCACCGCAGTCGAGTTCCGGTCGACCGGTGAGCTGGTGACGGCCGGAGCAGACGGCGCTATCATCACGTGGGACCTCGGCGACTGGTCGGCGAAGTTTCGCAACGATCCGTTCTCCGGATCGGTTCCGTTCGTAGGGGAGAACGATGAGCGTACCCTCGTGCTCGAACAGTCCGATGGGAGCACGCAGGTGGTTGTCGCCGAGCCGGCGGCATGGGAGGACCGTGCCTGCCGGATCGCCGGACGAGTGTTGACGGAGCAGGAGTGGGGGGATCTGTTGGGAGCACGGCCGTACTCCCCGGCATGCCGCGATTAGMEVRVLGALTLDEDRIPLAPRDRVVLGALTVRLGASLSVESLAEALWGDDLPASWSKVIPGCIMRLRRLIGPARIETTPFGYRLSADHIEVDADQFERLVSRGTQQLKLGEPERAAHSYSEALALWRGEAFVELIDWGPAQIASGRLEEIRLAAEELLLDARLRAGEVQEVAALARTRVAEAPLRERRWVMLSVAQYRQGRQAEAIATVRRARGLLVADLGLDPCTELAELEQAILRQDPSLLSDQVFQTGSSECPYFGLPPAGVADAERYFGREQELSGALRALEEHGVLLIAGASGVGKSSFVRAGIGAQFTARGTQVVIVTPGERPLEALRDVVRRPGDSLLIVDQCEQAFAADDPAEIMKFFDALSREVFRGMLVVTIRADRLGDLAEHKGFAGIIQSHMLMLTAFGFDGLRAVIEKPAQQAGLILEPGLVEILVRDADGRNLPLLSHALHQVWSRREGRVMTVDGYRASGEIDGAVAKTAEEVFAELSGEGKQLLRDILLRLVEASAGGVVISRQIERTRIAIDEDHAKIVDRLVDARLLTTDKETVQLSHEAVAREWPRLKEWLADDIEGQRIMRHLGSAATAWDAMGRPNSELYRGGRQTAAQQWRDAANPALTVVEREFLEACAAAETAGLAATQRQLSKERSMVRRLSWVSAGAAGLAIVAITASLVAGFQANLAGERATVAEARRVAATALEDPDFDRALLLAVEAIQIWDSTETRTNLVRVFARAPRITSITRIQEDGVTPASMSLEKNGTRASVIDSDDDLRLFDLANRSQLGDYSPTGGMMAATAVDPVSGTVAFSQALGLCEALPCVRGRTGTLDLANGGRSGLETYQGLAGAAADVEYSPDGSLFAALATTLWFEPSGSVALWRGGGDPMLLDLNASGSDPGGASEWGGQFGAVKFAQDGSRLYASRLGPTVVFDTSSGTEIDRIAGNGLLAVSPDGHRILVRDGLLAVRMVDSSGTAAPMTVPLSVFPSVADFSPDGHHFAVASGNRVVVVNTETGDIAETLRNHDGSVTAVEFRSTGELVTAGADGAIITWDLGDWSAKFRNDPFSGSVPFVGENDERTLVLEQSDGSTQVVVAEPAAWEDRACRIAGRVLTEQEWGDLLGARPYSPACRDNANANANANA
D1-29_02908777hypothetical proteinATGTGGACACCGGACCAGCGCTCGCCCACGGCTCACGCATCGCGCTCGTGGATGGCGGGTATAACCGTCGCAATGCTGGCATGTTTCGGGCTCTCGGGGTGCACCCCCACCGAAACACCATCCCCTCCACCCACGTCGGAGGCCAGCGACATCCCGCCGTTCCCGGAGAGCGGCGACATCGACGCCGGCGCATACCTCGTCACCGGCTATACGGTGCCTTTCGAGATCACCGTCCCAGACGGCTGGGAGACAGCCGACTGCGATAGCCTGGCCAAGGACGACCCGGATCACCCGGATGAAGGGGCGGTCGTCCTGATTTTTTGGCCCGCGGACTATGTGCCGACGGACGCATGCGCGTGGCGGGGCGCGCTCGTCGAGGTCGGCCCGTCGGCTGAGGCCTTCGTCGACGCGATGACGGCGCAGACGTCAACGGCGAGCACCCCTCCGGTCGAGGTCGTGGTGGGCGATTACTCCGGCTTCGAGTTCGAGCACTCCGTCGAGGGCGACGTGGACATCACAGCCTGTGACGGCGGCAAGTTTTGCGTCCGCTCAGAAATGTCGCACGAATGCACCCGCTGGTACTCGAGCGCCGCTGAGCGCGAAACCTACCGGGTGGTCGACTTGAACGGCGAACGCGCTGTGATTGCGATAACCCAATTCCACGAATCGATCAATCCGGAGCTGACGAGAGAGGCACGCGCCATCTTCGACTCAATTGCGTTCGGAACCGACCACACGGCAGATACACAGGGCTCGCCAAGCCCCGACCGCGGCTAGMWTPDQRSPTAHASRSWMAGITVAMLACFGLSGCTPTETPSPPPTSEASDIPPFPESGDIDAGAYLVTGYTVPFEITVPDGWETADCDSLAKDDPDHPDEGAVVLIFWPADYVPTDACAWRGALVEVGPSAEAFVDAMTAQTSTASTPPVEVVVGDYSGFEFEHSVEGDVDITACDGGKFCVRSEMSHECTRWYSSAAERETYRVVDLNGERAVIAITQFHESINPELTREARAIFDSIAFGTDHTADTQGSPSPDRGNANANANANA
D1-29_02909801hypothetical proteinATGACAGTCAGCTGGTCTGCCTATCGCCGTGCCCGCCGCCGCTCCCGGCAGGCGTGGGCGCTGCTGCTGGTCCTGGCTGTTTCGGCAGTCGCCGCGGGCGTCTGGTTTTTCACCGCGGGGCAGTTCGCAGCCACCGAACCGGCCATTGCAGGTCCCAGCGAAGCCCCGGTTTTCGACCCCAGCTGGATGAAGCCCGTAGCTCCGGTCCACCTGGTACCGTCCGGCCCCGCGGTTGCCGCCTTGGAAGCTTTGCCCGTCAAGGGGCGGGCGGCCCAGAACAATTACGAACGGGAAGCGTTCGGACAGGCCTGGCTGGATGTGGACCGGAACGGCTGCGATACGCGCAATGACATCCTTCGCAGGGACCTGGTGTCCGTGGGCTTTACCGAAGGATCAAAGTGCAGGGTGGCCGCCGGCTCCTTCCATGAGCCCTACACGGGGAAAATGGCCGACTTCCGGCGGGGACCGGAGTCCAGCAAGGAAGTCCAGATCGACCATGTTGTTGCACTCGCGGATGCCTGGCAGAAGGGCGCGCAGCAACTGACAATGCAGCAGCGCCAGAGCCTCGCCAACGATCCCCTGAACCTCATAGCCGCTGACGGGCCCGCCAACCAGGAAAAGGGCGCAGGGGACGCGGCCACATGGCTGCCGAAGAACAAGGCCTTCCGCTGCCACTACGTTGCCCGGCAGATTTCGGTCAAGGCCGCCTACGGTCTTTGGGTGACGCAGGCGGAGAAAGAGGCGATGAAACAGGTCCTGGGCTCCTGTCCCGGCCAGGCCACCATCCGCCCCTCACACTAGMTVSWSAYRRARRRSRQAWALLLVLAVSAVAAGVWFFTAGQFAATEPAIAGPSEAPVFDPSWMKPVAPVHLVPSGPAVAALEALPVKGRAAQNNYEREAFGQAWLDVDRNGCDTRNDILRRDLVSVGFTEGSKCRVAAGSFHEPYTGKMADFRRGPESSKEVQIDHVVALADAWQKGAQQLTMQQRQSLANDPLNLIAADGPANQEKGAGDAATWLPKNKAFRCHYVARQISVKAAYGLWVTQAEKEAMKQVLGSCPGQATIRPSHNANANANANA
D1-29_02910210hypothetical proteinATGGACAACGACGCAACCCTTCAGCACGAGACCACGCTCGAGCACGCCCTGGACGTGGCAAAGGCAAACCACAAGGAAGCCGCCCGGCTCCTTGAACAGGCCCGCGCAGCCTACAGTGCGGGCGATATCGGCGAGGACCGCGTGCGCCAGCTGGAAAATCTCCTGCAGTTGGCCGAGGAAGATCTCCGGCGGGTGATCCGGGAACAATAGMDNDATLQHETTLEHALDVAKANHKEAARLLEQARAAYSAGDIGEDRVRQLENLLQLAEEDLRRVIREQNANANANANA
D1-29_029111479gap2Glyceraldehyde-3-phosphate dehydrogenase-like proteinGTGAGCCAGACGTCAGATTCTTGTCTTGATACATGGATGGGCCGGGAGGCCCTCGCTGAGGCCATGATTCCGGTGATCGGCCGGCTGTACCGCGAGAATAACGTGGTGACCAGCATCCACGGCCGCAGCCTGATCAACAAGTCCACCATGAACATCCTCAAGGCGCACCGCTTCGCCCGCCGCATGAGCAAGGATGAGCTGCTGCTGGAGGAAACCGCGCCGCTGCTCAACACCCTCGCTGAGCTTGAGCTCGGCGCTGCTGCCATTGACATCGCCCGCCTCAACCAGAAGTTCAAGGCAGAGGCCAACGGCGCCACGCTGGAGGAATTCCTCCGCGCTGAGCTGGCGGAGATCGTTGGCAAGCGCGGCGGCGACGACCGCACCAGCACCGACGTCGTCCTGTACGGTTTCGGCCGCATCGGCCGCCTGCTGGCGCGCCTCCTGATCGAAAAGGCAGGCGGCGGGCACGGCCTGCGCCTGCGTGCCATCGTGGTCCGCCGCGGTTCGGACAAGGACCTCTCCAAGCGCGCCAGCCTGCTGCGCCGCGACTCTGTGCACGGCTCCTTTGAAGGAACCATCCGCGTGGACGAGGACGCCAACACCATTACCGCCAACGGTGTCCAGGTACAGGTCATCTACTCGGACAACCCTGCCACGATCGATTACACGGCCTACGGCATCAAGGACGCCCTGGTGGTGGACAACACGGGACGCTGGCGTGACGCCGAGGGCCTGTCCCAGCACCTGCAGAGCAAGGGAGTGGCCCGCGTCCTCCTCACGGCTCCGGGCAAGGGCGATCTGAAGAACATCGTTCACGGCATCAACCACGGCACCATCCAGGACTCGGACACGATCGTCTCCGCAGCCTCCTGCACCACCAACGCCATCACCCCGGTCCTGAAGGCCATCAACGACAAGTTCGGTGTGATCCACGGCCACGTGGAGACCGTCCACTCCTTCACGAATGACCAGAACCTGATCGACAACTTCCACAAGGGTGACCGCCGCGGCCGCTCCGCCGCCCTGAACATGGTCATCACGGAAACCGGTGCCGCCAAAGCAGTGGCCAAGGCCCTGCCCGAACTCCTGGGCAAGCTCACCGGCAGCTCCATCCGGGTCCCCACGCCGGACGTCTCCCTGGCGATCCTGAACCTCAGCCTGGAAAAGGGCACCACCAAGGACGAAATCAACGACTACCTTCGGGAGATGTCGCTGCACTCGGAGCTGCGCAAGCAGATCGACTACATCGATTCCCCCGAGGTGGTCTCGACAGACTTCGTTGGTTCCCGCCGCGCCGGCATCGTTGATGGCCTGGCCACGATCTCCAACGACAAAAACCTGGTCCTTTACGTCTGGTACGACAACGAGTTCGGCTACAGCTGCCAGGTAGTCCGAGTCATGGAAGAGATGGCAGGGGTCAACCCGCCGGCCTTCCCCGCCAAGGAAACTGCAGCAGCCCTGGCCGCTATCGCCGTCTAGMSQTSDSCLDTWMGREALAEAMIPVIGRLYRENNVVTSIHGRSLINKSTMNILKAHRFARRMSKDELLLEETAPLLNTLAELELGAAAIDIARLNQKFKAEANGATLEEFLRAELAEIVGKRGGDDRTSTDVVLYGFGRIGRLLARLLIEKAGGGHGLRLRAIVVRRGSDKDLSKRASLLRRDSVHGSFEGTIRVDEDANTITANGVQVQVIYSDNPATIDYTAYGIKDALVVDNTGRWRDAEGLSQHLQSKGVARVLLTAPGKGDLKNIVHGINHGTIQDSDTIVSAASCTTNAITPVLKAINDKFGVIHGHVETVHSFTNDQNLIDNFHKGDRRGRSAALNMVITETGAAKAVAKALPELLGKLTGSSIRVPTPDVSLAILNLSLEKGTTKDEINDYLREMSLHSELRKQIDYIDSPEVVSTDFVGSRRAGIVDGLATISNDKNLVLYVWYDNEFGYSCQVVRVMEEMAGVNPPAFPAKETAAALAAIAVPGPT0018000_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
D1-29_02913765hypothetical proteinGTGCTGATTCTGCTTCCCCCCTCTGAAGGCAAGACCCCCGCGGCAGCCGGATCCGCCGTCGACTGGCCTTCCCTGAGCTTTCCTGCACTCAACAGTTACCGGGCGAAAGTCCTGGAAGCACTGGGAACGGTAAGCGCGCACGAGGACGCGCTCGCGCTGCTGGGCGTGGGTGCTTCGTTAAAGAACGATGTCGACCGCAACACCCGGCTGCACGCTGAACCGGCGGCGCCCGCCCACCAGATCTATTCCGGGGTCCTTTATGACGCCCTGGGTTACCGGAGCCTGACGCCCGTGCAGCGCCGCAAGGCGGATGAATCAGTCCTGGTGGTTTCCGCCCTCTGGGGGGCCATCCGTTTTGCCGACCGGGTGCCCGCCTACCGGCTGTCCATGGGAACGTCACTGCCCGACGTCGGACGCCTCGCCACTTTCTGGAAGCCGCAGCTTGCGGAGGCCCTCAAGCCGCTGACCGCGGGGCAACTGCTGGTGGACTGCCGCTCCAGCACCTATGCCGCTGCCTGGACGCCGCCGCCGGCCCAGACCGTGGCGGTCAACGTCTTTACTGAGGTTAATGGCGTGCGGAAAGTGGTGAGCCACTTCGCGAAACATACCCGCGGCGAGCTCGCCCGGCACCTCCTGGCAAGGCGTGGCAGCGCGCCGCAGACCCCGGCACAGCTGCTGAACGCGGCCAGCGAGAAGTGGGATGCCGAACTGGTGGAGGGATCAGCCAGGAAACCGCACGCCCTGAACATCATCCTGCCCAACTAGMLILLPPSEGKTPAAAGSAVDWPSLSFPALNSYRAKVLEALGTVSAHEDALALLGVGASLKNDVDRNTRLHAEPAAPAHQIYSGVLYDALGYRSLTPVQRRKADESVLVVSALWGAIRFADRVPAYRLSMGTSLPDVGRLATFWKPQLAEALKPLTAGQLLVDCRSSTYAAAWTPPPAQTVAVNVFTEVNGVRKVVSHFAKHTRGELARHLLARRGSAPQTPAQLLNAASEKWDAELVEGSARKPHALNIILPNNANANANANA
D1-29_02914738COG1579putative proteinGTGGCTAAGGCAGCACCGGCAGAACAGTTGAAGTTGCTCGAACTGCAGGGCCTGGATGCCAGACTCAAGTCCTTGTCCAACCGTCGCCGTGCCCTTGAGTCCGATCCGCGGATCGAGGACCTGCAGTCTGCGCTTTCAGTAGCCAACGGCGAACTGGGCGCAGCAAAGATGGCCGTCCACGACGCCGAAGCCGAGCTCAAGCGGGCAGAGGCCGACGTCGAACAGGTGGCGTCCCGCATTGAACGCGACGAGGCCCGGCTCAACAGCGGCACCGGGCTGTCCAAGGACCTGGTGGCGCTGCAGAAGGACCTTGTCTCGCTCAACAAGCGGCGCTCCGACCTCGAGGACCTCGAACTGGAAGTGATGGAACGCCTTGATTCCCTCCGCGCCAAGCAGGCGGCCCAGCAGCTGATCGTGGACAACATCCAGGGTTCGTTCGGGGCCATCCGGGCCGAACTGGACCAGGAACTGGCCGAGGTGGAAGCCGAAGCCACCGTTCTCCGCGGCAAACGTGCCGAGTTCGCCGCCGGCCTGGACGCCGGAATGCTGGCGGTGTACGAAAAGACCCTGGCCAAGCGCGGCGTGGGCGCCGCCCGCCTGTTCCACGGAACCTCGGAGGCATCCGGGATGAAGCTGAGCCCCGGCGACCTCGCGGAAATCAAGGCAGCGGCGGAGGATGACATTGTCTTCTGCCCCGACTCCGGCTGCATCCTGGTCCGCTCCGCCGAATGGAACTGAMAKAAPAEQLKLLELQGLDARLKSLSNRRRALESDPRIEDLQSALSVANGELGAAKMAVHDAEAELKRAEADVEQVASRIERDEARLNSGTGLSKDLVALQKDLVSLNKRRSDLEDLELEVMERLDSLRAKQAAQQLIVDNIQGSFGAIRAELDQELAEVEAEATVLRGKRAEFAAGLDAGMLAVYEKTLAKRGVGAARLFHGTSEASGMKLSPGDLAEIKAAAEDDIVFCPDSGCILVRSAEWNNANANANANA
D1-29_029151002COG0327GTP cyclohydrolase 1 type 2ATGATTCCCCCTCCACCTTACGAGACTGTGACGCGTGCTGGGCAGGGGGCCGGATGGGGTAAAACTGAGTCTATGGAACCTGTAAACACCGGTGTTGCAGACGCTGGGAAGCGCAACACCGATGCCCCGGCCGGGGATGCTTCTGCCGAAGACACGACCGAGGCCCCCACCCTGGGCCAGCTGCTCTTGGCGGTGGAGGAGCTTTGGCCGGAGTCGCTCGCGGAGGACTGGGATGAAGTGGGGCTCGTAGCCGGGCATCCCTCCGCCCCCGTCTCCCGGGTGATGTTCGCCGTTGACCCCACCCTGGAGGTCATCGAGGAAGCCGTGGAGTGGGGCGCTGAATTGCTCATCACCCACCATCCGCTGCTGCTCAGGGGAGTCACGTCGGTGGCGGCCACCACAGCCAAAGGCAAAGCCATCCATCGCCTCATTGAGACTGGAACCGCCCTCCTGACCGTCCACACCAACGGTGATTCCGCCGTCGGAGGTGTCTCGGATGTGCTGGCGGACGCTCTTGGATTGGAGGACGTGGCCCCGCTGACGTCAGCCGCCAATGGGTTGCCGGAAGAAGGAATCGGGCGGGTGGGAGTGCTTGCCGATGTCATGACTCTGGGGGACTTCGCCGCGCGCGTGTTTGGCATCCTTCCTTCTGTAGCCGGGGGAGTGCGGGTGTCCGGCGACAAAGACGGCCTTGTCCGCCGCGTCGCGGTATGCGGCGGGGCGGGAGACTCGCTGTTCAGCCAGGTGCGCGCGAGCAACGCGGACGTCTACGTCACCGCGGACCTGCGGCACCACCCTGCGTCCGAAGCCAGGGAAGCAGCCGTGAACGACCGGCCATACCTTATCGACGTCTCGCACTTCGCCAGCGAATGGCTGTGGTTGCCTGCAGCCGCCTCTGCGCTGGGCAACGTGCTGGCAGACCAGGGCCACGACGTGGAGATCCAGGTAAGCACCACCAACAGCGACCCCTGGGACTTCATTCTGACTCCGGGCGGGGACTAGMIPPPPYETVTRAGQGAGWGKTESMEPVNTGVADAGKRNTDAPAGDASAEDTTEAPTLGQLLLAVEELWPESLAEDWDEVGLVAGHPSAPVSRVMFAVDPTLEVIEEAVEWGAELLITHHPLLLRGVTSVAATTAKGKAIHRLIETGTALLTVHTNGDSAVGGVSDVLADALGLEDVAPLTSAANGLPEEGIGRVGVLADVMTLGDFAARVFGILPSVAGGVRVSGDKDGLVRRVAVCGGAGDSLFSQVRASNADVYVTADLRHHPASEAREAAVNDRPYLIDVSHFASEWLWLPAAASALGNVLADQGHDVEIQVSTTNSDPWDFILTPGGDNANANANANA
D1-29_02916525msrABPeptide methionine sulfoxide reductase MsrA/MsrBATGAAAACTTTTGTACTTGGCGGGGGCTGCTTCTGGTGCCTCGACGCCGTTTACCAGAAAACCAAGGGCGTCAGTTCGGTGGTGTCAGGCTACACCGGCGGCCATGACCCGCACCCGGACTACTACTCCGTCTGCAACGGAACCACCGGACATGCCGAAGTGGTGGCCGTCACCTTTGACGAAACCGTCATTCCCGCCGAAGTCATCCTGGACATGTTCTTTGCGCTGCACGATCCCACCACGCTCAACCGCCAGGGATACGACGTCGGTACGCAGTACCGCTCGTCCATGTTCTACGAGACCACTGAGGAGAAGATCCTCTTCGAGGAAGCGATTGAACGGAACCAGGCGCTGTGGTCCAATCCGATCGTGACGGAGGTCAGCCGGCTCCCCCGCTTCCACGTAGCGGAGGATTTCCATCAGGACTACTACGGCAAGCACCCCGAGCAGGGCTACTGCCAGGTGATCATCAATCCCAAGCTCGCCAAGGCGAGGAAATATTACTCTGCGTGGCTTAATGCTTAGMKTFVLGGGCFWCLDAVYQKTKGVSSVVSGYTGGHDPHPDYYSVCNGTTGHAEVVAVTFDETVIPAEVILDMFFALHDPTTLNRQGYDVGTQYRSSMFYETTEEKILFEEAIERNQALWSNPIVTEVSRLPRFHVAEDFHQDYYGKHPEQGYCQVIINPKLAKARKYYSAWLNAPGPT0013065_5101DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304NANA
D1-29_02917936cysK1COG0031O-acetylserine sulfhydrylaseATGGCACGGATCTATGACGATGTAACGCAGCTTGTTGGCGGCACCCCCCTGGTCCGCCTGAACCGGCTGACCGAAGGGCTGGACGCCACCGTCGCCGTCAAGCTTGAGTTCTACAACCCTGCCAACAGCGTCAAGGACCGCATCGGCGTGGCCATCATTGACGCCGCCGAAAAGTCAGGCGCACTCAAGCCGGGCGGCACCATCGTGGAGGGCACGTCCGGCAACACCGGCATCGCCCTGGCCATGGTGGGCGCGGCCCGCGGCTACAAGGTCATCCTGACCATGCCTGAGACCATGTCCACCGAACGCCGCGTTATGCTGCGCGCTTTTGGCGCCGAGATTGTCCTCACCCCTGGCTCCGAGGGCATGCGGGGCGCCGTGGAGAAGGCCCAGGAAATCGTGGCCAACACGGAGAACTCCATTTGGGCCCAGCAGTTCGCCAATGAGGCCAACCCCCGGATCCACCGCGAAACCACCGCGGAGGAAGTCTGGAAGGACACGGACGGCAAGGTGGACATCTTTGTCTCCGGTGTGGGCACCGGCGGCACCATCACCGGCGTCGGACAGTTCCTGAAGGAGCGCAACCCGGACGTCCAGATTGTGGCTGTGGAACCCAAGGACTCCCCCATCCTGAACGGCGGCGCCCCGGGCCCGCACAAGATCCAGGGCCTGGGCGCCAACTTCATCCCCGAGCTGCTGGACACCAACATTTACGACGAGGTCCTGGACGCCACCCTGGAAGACTCCGTGGCAGTCGCCCGTGACCTGGGTATCCGCGAAGGCATCCTCGGCGGCATCTCCTCAGGCGCCATCGTCTGGGGCGCACTGGAACTGGCAAAGCGCCCGGAGAACGCGGGCAAGCTGATTGTGGCGATCGTTTGCGATTTCGGTGAGCGTTACATCTCCACCGTGCTCTATGACGACATCCGCGGCTGAMARIYDDVTQLVGGTPLVRLNRLTEGLDATVAVKLEFYNPANSVKDRIGVAIIDAAEKSGALKPGGTIVEGTSGNTGIALAMVGAARGYKVILTMPETMSTERRVMLRAFGAEIVLTPGSEGMRGAVEKAQEIVANTENSIWAQQFANEANPRIHRETTAEEVWKDTDGKVDIFVSGVGTGGTITGVGQFLKERNPDVQIVAVEPKDSPILNGGAPGPHKIQGLGANFIPELLDTNIYDEVLDATLEDSVAVARDLGIREGILGGISSGAIVWGALELAKRPENAGKLIVAIVCDFGERYISTVLYDDIRGPGPT0002810_5177DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
D1-29_02918585cysE_1COG1045Serine acetyltransferaseGTGGGCTTTATTGCAAGACTAAAAGAAGACCTCGACGCCGCCCGGTCCCATGACCCGGCGGCTCGAGGTTCTTTTGAGAACTTTTTCGCTTACTCCGGCCTGCATGCCATCTGGATCCACCGGCTGACGCATCGCCTCTGGCAAAATCCCGGCCTGCGGTTCCCCGCCCGCCTGGTTTCCCAGCTGGGCCGCTTTTTGACGGGTATCGAGATCCACCCGGGAGCCACCATCGGGCGGCGCTTTTTTATCGACCACGGCATGGGTGTCGTCATCGGAGAAACCGCCGAAATTGGCGAAGACGTCATGATTTATCACGGCGTGACCCTGGGTGGACGTTCCCTTGCCAAGGTCAAGAGGCATCCTACGATCGAGGACCGCGTGACCATTGGTGCGGGTGCCAAGATCCTGGGTCCCATCACCATCGGCCGGGACAGCGCCGTGGGGGCCAACGCCGTTGTGGTGAAGGACGCCCCGCCCGAATCGATTGTTACCGGCGTTCCTGCCAAGTGGCGCCACCGGGACGCGCAGCGGGAGACCAAGCCCGCCGTGGACCCGGCTGAATACGAGATCGAATACCATCTCTGAMGFIARLKEDLDAARSHDPAARGSFENFFAYSGLHAIWIHRLTHRLWQNPGLRFPARLVSQLGRFLTGIEIHPGATIGRRFFIDHGMGVVIGETAEIGEDVMIYHGVTLGGRSLAKVKRHPTIEDRVTIGAGAKILGPITIGRDSAVGANAVVVKDAPPESIVTGVPAKWRHRDAQRETKPAVDPAEYEIEYHLPGPT0020265_4850DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
D1-29_02919834COG4221putative oxidoreductaseATGCCAGGCCCAGTAGCGTTCATCACCGGAGCATCCGCCGGCATCGGGTTCGAAGCGGCAAAGAAGCTCAACAGCCGCGGATTTGTGGTCTACGCCGGGGCGCGCCGGGTGGACCGGATGGAACCGCTCACGGCGATCGGCGTCCACGTCCTTCCCCTCGACGTGACGGACGAGCATTCCATGAGGGCCGCCGTCGGCCGGGTCCTGGAAGAACGGGGCCGCATCGACGTCCTCGTTAATAATGCCGGCTACGGCTCCTTCGGGGCGCTGGAAGAAGTTGACCTGGCCGAAGGCCGCCGCCAGTTCGACGTCAACGTCTTTGGACTCGCCAGGATGACCCAGCTGGTCCTGCCCGCCATGCGCAAAGCAGGACGGGGAAGGATCATCAACGTCTCATCCATCGGCGGTAAATTCTATGAACCCCTTGGCTCCTGGTACCACGCCACCAAGTTTGCAGTCGAAGGGATGAGCGATGCCCTGCGGCTCGAACTGAAGCCCCACGGCATCACGGTGTCCATCATCGAGCCGGCCAGTACCCAGACAGAATGGGGAAGGATTTCCGCTGAAGGCCTGCTCGCCACCAGCGCGGATGGACCTTACGGCGCCCAGGCCCGGCGCATGGCCGCCGTCCTGGCCTCGACCGACAGGCCGGGCACATCAACGCCGCCGGACGTGATCGCGGAGGCGGTGGTGCGTGCCGCGGAATCCAGCCGGCCGCGGACGCGTTATCCGGTGGGCAGGGGTGCCAGCACCATTCTTGGCCTCAGGCGGCTCCTGCCGGACCGGCTTTACGATGCGCTGGTTATGGCAGTGCTGAAACGGGTGGCGGGCTAGMPGPVAFITGASAGIGFEAAKKLNSRGFVVYAGARRVDRMEPLTAIGVHVLPLDVTDEHSMRAAVGRVLEERGRIDVLVNNAGYGSFGALEEVDLAEGRRQFDVNVFGLARMTQLVLPAMRKAGRGRIINVSSIGGKFYEPLGSWYHATKFAVEGMSDALRLELKPHGITVSIIEPASTQTEWGRISAEGLLATSADGPYGAQARRMAAVLASTDRPGTSTPPDVIAEAVVRAAESSRPRTRYPVGRGASTILGLRRLLPDRLYDALVMAVLKRVAGNANANANANA
D1-29_029201437gndACOG03626-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylatingATGTCAGCACACATCGGTGTCACCGGCCTTGCGGTGATGGGGGCCAACCTGGCCCGCAACCTGGCCCGGAACGGCTTCACCGTCGCCCTGCACAACAGGTCGGTAGAGAAGACTGATGCACTGCTCGAGAAGCACGGCACGGACGGCGACTTCGTCCGGACCGAAACCCTTGAGGAACTGGTTAATTCCCTGGAGAAGCCCCGCCGCGTGCTGATCATGGTCAAGGCCGGCAAGCCGGTTGACTCCGTGATTGAGCAGCTTGAGCCCCTCCTTGAAGCAGGCGACATCATTATCGACGCAGGCAACTCGCACTATGAGGACACCCGTCGCCGCGAAGCAGCACTGGCCAAGAAGGACCTGCACTTCGTGGGCGTCGGAGTTTCCGGTGGCGAAGAAGGCGCCCTGAACGGACCGTCCATCATGCCCGGCGGCTCCAAGGAGTCCTACGACGCACTCGGCCCGCTGCTCGAAAAGATCGCCGCCAAGGTGGACGGCGAGCCCTGCTGTGCCTGGGTGGGCACCGATGGCGCCGGCCACTTCGTCAAGATGGTCCACAACGGCATCGAATACGCCGACATGCAGGTCATCGGTGAGGCATTCGACCTCCTGCGCTCAGGCGCCGGCATCGAGCCGGCCGAACAGGCCAAGATCTTCACCGAGTGGAACAAGGGCGACCTGTCCTCCTTCCTGATCGAGATCTCCGCCGAGGTCCTGGGCCACGTTGACGCCAAGACCGGCAAGCCCTTCGTCGACGTCGTAGTTGACGCCGCCGGCCAGAAGGGTACCGGACGCTGGACGGTCATCTCAGCCCTGGAGCTCGGTTCCCCGGTCTCCGGGATCGCGGAGTCCGTTTTCGCCCGAGGCCTCTCTTCCCAGGCTGAACAGCGCAGGCTCGGACAGGAGCTGCTGGCCGGCGAGGAAATCAACGTCGAGGTTCCGGAAACCTTCGTTGAAGACGTTCGCCAGGCACTGTACGCCTCCAAGCTTGTCTCCTACGCCCAGGGCATGGACATGCTGACGTCCTCTGCCAAGGAGTACGGCTGGGACCTCAAGCTGGACGAGATCGCCTCCCTTTGGCGCGCAGGCTGCATCATCCGCGCTGAACTGCTTAAGGACATCACCAAGGCATACGCCGCTGCCGAAAAGCCCGCTAACCTGCTGTTTGCGCCAGCCTTCACCAAGGCCATTGCCGAGGCACTGCCGGCCTGGCGCCGCGTGGTGGCCACCGCAGTGCAGCTGGGCATCCCGGTGCCGGTGTTCTCCTCCTCGCTCGCGTACTACGACGGCCTGCGCCGCAAGCGCGTCGCCGCCGCCCTGATCCAGGGTCAGCGGGACCTCTTCGGAGCCCACACCTACGGCCGTGTTGACGCCGAGGGCACGTTCCACACCCTGTGGGGCGAGGACAAGTCCGAGATCGAAGCCGTGGACACGCACTAAMSAHIGVTGLAVMGANLARNLARNGFTVALHNRSVEKTDALLEKHGTDGDFVRTETLEELVNSLEKPRRVLIMVKAGKPVDSVIEQLEPLLEAGDIIIDAGNSHYEDTRRREAALAKKDLHFVGVGVSGGEEGALNGPSIMPGGSKESYDALGPLLEKIAAKVDGEPCCAWVGTDGAGHFVKMVHNGIEYADMQVIGEAFDLLRSGAGIEPAEQAKIFTEWNKGDLSSFLIEISAEVLGHVDAKTGKPFVDVVVDAAGQKGTGRWTVISALELGSPVSGIAESVFARGLSSQAEQRRLGQELLAGEEINVEVPETFVEDVRQALYASKLVSYAQGMDMLTSSAKEYGWDLKLDEIASLWRAGCIIRAELLKDITKAYAAAEKPANLLFAPAFTKAIAEALPAWRRVVATAVQLGIPVPVFSSSLAYYDGLRRKRVAAALIQGQRDLFGAHTYGRVDAEGTFHTLWGEDKSEIEAVDTHPGPT0017385_1900DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
D1-29_02921732hypothetical proteinATGTCAAGCAGCCTCCACCACCGTGCCATCGAGAACCTTGGCACCCGGATCGTCGCCGGTGACCTTCCCACCGGACACGTGATGCTGGCGGAACAGCTTGAAGACGAACTGAAGGTTTCCCGCTCGGTCATCCGCGAGGCAGTGCGCGTGCTGCAGTCCCTGGGGCTGGTTGAAACCACCAAACGCGTGGGCATCAGGGTCCTGCCGTCAAGCAGTTGGAACCCCTTTGATGCGCAGGTGATCCGCTGGCGGCTCTCGAGTGACGCAAGGGGAGCCCAGCTGCGTTCACTGGCCGAGCTCCGCTCCGCCGTCGAACCGGCTGCCGCTGAGCTGGCCGCCCTCAATGCGCCGGAGCGCCTCCGCCGGGAGCTGGTGGACATTGCCCATGACATGCGCGACGCCGGCCTCGCCGGGGATGTGCCACGCTTCCTGGAACTCGACATCGCCTTCCACTCGGTCCTCCTGTCCGGATCAGGCAACGAGATGTTTGCCAACCTGATGGGACAGGTGGCCGAGACGCTGACCGGCCGGACAGTCCATGGCCTCATGCCGGATCATCCACACGAGGCGGCGCTGCAATGGCACGTTGATCTGGCGGAGGCGGTGGCCGCCGGGGACGCCGCTGCGGCCAGGGAAGCCTCGGAGCGGATAATGCGACGGACCATGACAAGGATGTCGGGAACCTGGACAGACCAGCCCCGGGTGTTCATCCCGGTTCGTCGCCCCACTTAAMSSSLHHRAIENLGTRIVAGDLPTGHVMLAEQLEDELKVSRSVIREAVRVLQSLGLVETTKRVGIRVLPSSSWNPFDAQVIRWRLSSDARGAQLRSLAELRSAVEPAAAELAALNAPERLRRELVDIAHDMRDAGLAGDVPRFLELDIAFHSVLLSGSGNEMFANLMGQVAETLTGRTVHGLMPDHPHEAALQWHVDLAEAVAAGDAAAAREASERIMRRTMTRMSGTWTDQPRVFIPVRRPTNANANANANA
D1-29_029221053ghrAGlyoxylate/hydroxypyruvate reductase AATGACGCTTACGACAACCGTCGCAGTCGCCGTCCCGCTCGAAGCAGAGCTGGTGGACCGCATCCGCGCCGTAGACCCTTCCATTACTGTTCTCTACGATTCGGAGCTCCTGCCCCCGGAACGCTTTCCGGCAGACCACTCCGGGGATCCCGACTTCAAGCGCACTCCTGAGCAGGAGGAACGCTACTGGGCCATGCTCAACCAGGCCCAGGTGCTGTATGGGCTGCCCAACGAAAGCCCTGCCGGCCTGGCACGGATTGCCCGTGAGAACCCGCAGCTGCAGTGGGTCCACGCCATGGCCGCCGGTGCCGGCGGCGCCGTCAAGGCCTCCGGCCTGGACCAGGAAACCCTGCAGAAGTTCAAGGTGACCACATCGGCCGGCGTCCATGCCCTGCCCCTTGCTGAGTTTGCCGCGCTGGGAATCCTCAATGGCTTCAAGCGCAGCGCGGAGCTGGCCCAGGATCAGTCCGCAAAAGTATGGCCGGAGCTGCGCACCCCCACGCGGCTGGTGAATGGTTCCACCCTGGTGGTGACAGGCCTCGGCGAAATCGGCCTTGAAACGGCGCGGATTGCCCGTGTACTGGGCATGAAGGTCAGCGGCACCAAACGCAGCGTGGAAGCGATCGAGGGAATTGAGCAGGTTGCCGGCAATGATGGCCTCGCCGGGCTGCTTTCCTCTGCCGACGCTGTAGTTAATACGCTGCCCGGCACGGAATTTACGGAAGGCCTCTTTAATCGGGAGGTCTTTGCTGCCATGAAGCCCGGGACGGTCTTTGTCAACGTCGGCCGCGGCACAGTGGTGGACGAAAGCGCCCTGCTGGAAGCGCTGGACAACGGCCAGGTCTCCTACGCGTGCCTGGACGTTTTCGCCATAGAGCCCCTCCCCCAGGACAGCCCGCTGTGGAACCACCCCAGGGTCATGGTCTCTCCCCACACCTCTGCCCTCAGCGCAGCCGAGAACCGCCTGATCGCAGAACGCTTCTGCGGCAACCTGAGGATTTTCCTCGACGGCGGGGACCTTCCCCACCTCGTGGATACTGTTCACTTCTACTAGMTLTTTVAVAVPLEAELVDRIRAVDPSITVLYDSELLPPERFPADHSGDPDFKRTPEQEERYWAMLNQAQVLYGLPNESPAGLARIARENPQLQWVHAMAAGAGGAVKASGLDQETLQKFKVTTSAGVHALPLAEFAALGILNGFKRSAELAQDQSAKVWPELRTPTRLVNGSTLVVTGLGEIGLETARIARVLGMKVSGTKRSVEAIEGIEQVAGNDGLAGLLSSADAVVNTLPGTEFTEGLFNREVFAAMKPGTVFVNVGRGTVVDESALLEALDNGQVSYACLDVFAIEPLPQDSPLWNHPRVMVSPHTSALSAAENRLIAERFCGNLRIFLDGGDLPHLVDTVHFYPGPT0019465_6DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0019465-ghrA-K12972NANA
D1-29_029231350abaF_2Fosfomycin resistance protein AbaFGTGACAACTCGTACTAAATCACCGCAGCCTGACCTGGACGGCGCCGTCGTCGAACCGGAGCAGCTGCGAAGGGCAACTCTTGCCAGCTCGGTAGGCTCCGCGCTTGAGTACTACGACTTCTATATCTATGGCCTGGCGTCCGCTCTCATCTTTGGTCCGCTTTTCTTTTCGCCCCTGGGTGAAAGCGGTGCCGTTATTGCGTCCTTCGCCACCTACGGTGTGGGCTTTGCCGCCAGGCCGTTCGGTGGTGTGGTGTTCGGCTACATCGGAGACCGCTTCGGCCGGAAGATGGTGCTGATCCTCACCATCGGCCTCATGGGAATGGCAAGTTGCGCCATCGGCCTCCTGCCCACCTTTGAGCAGGCAGGGATGCTCGGCGCCGTACTGCTGGTCGCCTTGCGCATCCTCCAGGGGCTGGGCGCCGGCGCCGAGCAGGCAGGCGCCACCACCCTGATCTCCGAGGTGGCCCCGCGCCGCCGTCGTGGTTTCTTTGCTGCCCTGCCTTTTGTCGGCATCCAGCTCGGAACCCTGCTCGGGGCCGGGACCTTCGCCCTGATGGCACTTGCCGACAAGGAAGTCCTGCAGGGCTGGCTCTGGCGGGTGCCCTTCCTGGCCAGCGTCATCCTGATCGTCATCGCCGTCTTTATCCGGCTCCGGCTCAAGGAGACTCCCGTCTTCCAGGAGCTGGAGAAGCATAAGGCCGTGGTCAAAAACCCGGTCGGCCAGATCTGGAAGCACTCCAAGAAGAACGTGCTCATCGGCATCGGCCTGCGGATGGGCGAGAACGGAAACTCCTCGATCTACTCCGCGCTCCTGGTCTCCTTTATCAGCCTGCCGGCCGGCATCTTTCCGGGCGACAAGTTCATTGGCCCCACGGGCCTCCTGATTGCCGCCGGCTGCGCAGCCGTCATGGTTGTCACGTTCGGTGCACTTTCCGACCGGTTTGGCAGGGTCCCTGTCTACCGCTATGGCGCACTTTTCCAGGCCGTCATTGCACTCCCGGCGTTCTACCTGGTCACGCTGGGCAACGTCACCCTGGTGTGGGCCGTTATGGTGGTGGGTATCGCACTCGGCGTGCAGTCAATGCTCGGCCCGCAGTGTGCCCTCTTGCCTGAACTCTTTGGCTCGCAGCACCGGTTCACCGGCGTGGCCCTGAGCCGCGAACTCTCGGCTGTTCTCGCCGGCGGCTTCGCGCCGATGATCGGTGTGGCCCTGCTGGCTGCCACCAACCACTCGTGGCTGGTGCCGGCGCTGTACTCCCTGGTCCTGGCGTCGATTTCCTTCGCCACCACGTTCTTTACTCCAGAGACCAATGGCCGCGACCTTGTCCTCGTGGAGGATGCACGATAGMTTRTKSPQPDLDGAVVEPEQLRRATLASSVGSALEYYDFYIYGLASALIFGPLFFSPLGESGAVIASFATYGVGFAARPFGGVVFGYIGDRFGRKMVLILTIGLMGMASCAIGLLPTFEQAGMLGAVLLVALRILQGLGAGAEQAGATTLISEVAPRRRRGFFAALPFVGIQLGTLLGAGTFALMALADKEVLQGWLWRVPFLASVILIVIAVFIRLRLKETPVFQELEKHKAVVKNPVGQIWKHSKKNVLIGIGLRMGENGNSSIYSALLVSFISLPAGIFPGDKFIGPTGLLIAAGCAAVMVVTFGALSDRFGRVPVYRYGALFQAVIALPAFYLVTLGNVTLVWAVMVVGIALGVQSMLGPQCALLPELFGSQHRFTGVALSRELSAVLAGGFAPMIGVALLAATNHSWLVPALYSLVLASISFATTFFTPETNGRDLVLVEDARPGPT0014425_301DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_SYMPORTER,PGPT0014425-ydfJ-K08173NANA
D1-29_02924798xynR_3COG1414HTH-type transcriptional regulator XynRATGGCCGATTCCCGTACCACCCGCACCTCCGAGGGATTGGGCAGCGCCTCACCCGCGCCGGCTGTCACACGTGCCGCGGCCGTGCTGGAGGCCCTTGCGGCGTCTCCCAGCGGGAGCCTGACGCTGAGTGATCTTGCCAGGGAGCTGGGGATCCCTAAATCATCGACGTCAAATCTTCTCCTGGCGCTGGAAGAGGCCCGCCTGATCAACCGCCAGGGAGCGGACTTCACGCTGGGCCGCAAGCTTGTGGAGCTCGGCGCTGCCTATCTCAGCAGGCTCGATGAGGTGCAGGAGTTCTACCGATATTGTGAACAGGCTCCCACTCTCTCTGGAGAGACAGTCAGGATAGCCATGCTTGACGGAACCAACGTGATCTACCTGGCGCGGTATGAGGGCCATCCGGCCGTTCGGCTGACGTCCAACATCGGGGACAAAATGCCGGTCTCGCTCTGTGCCGTGGGCAAGGTCCTGATCGCGCGCCTCCATGAGCACGATATTGATGCGCTGTTTCCTGACGATGCCGAACTGCCGGTGCTGACGCCCAAGTCGCTGCGCACAGGTGCAGAACTCAAAGCGGAGCTGCAGACTATCCGCGAACAGGGCTACGCGTTTGAGGACGAGGAATCCACGACGGGCGTGGTGTGTTTGGCAGTAGCCGTGCCCACCCACGGGGCGCACGGACCAAGCCTTGGGCTCTCAGTCACTGCGCTCAAGGCAACCTACTCCGACGAGCAGGGCGCCAGCATGGTCAAGGAGCTCAAGGAACTGGCCCGGTCGCTGGGCAATCCCATGGGCTGAMADSRTTRTSEGLGSASPAPAVTRAAAVLEALAASPSGSLTLSDLARELGIPKSSTSNLLLALEEARLINRQGADFTLGRKLVELGAAYLSRLDEVQEFYRYCEQAPTLSGETVRIAMLDGTNVIYLARYEGHPAVRLTSNIGDKMPVSLCAVGKVLIARLHEHDIDALFPDDAELPVLTPKSLRTGAELKAELQTIREQGYAFEDEESTTGVVCLAVAVPTHGAHGPSLGLSVTALKATYSDEQGASMVKELKELARSLGNPMGPGPT0025595_67DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0025595-blcR-K20539NANA
D1-29_02925366hypothetical proteinATGGACCGTACGGCCTTATCCGGCGTCCCCTATGGGCCCGCAACTCTGGCTGTCGGTGGCTGCCCCTACTCTTTCCCCATGGAACATGTGCTCTTAAAAAACGTGAAGGGGAAGCCGACGGCGGTGGTTGCCGGCGGCAGGGAGTGGACAGTTGGTGCCGAACCGGTCAGATGGTTTGAACGGGTCAGCTGGTGGGAGGGCCAGCGCCGCATGCCCAGGGGGCTCAGCCGGATGGACGTGGAGGTTCTGCAGTTACAGGTTCGGCTGGGAAGCAATGAGAATTCGGCCCTGACCACCATGCTGCTCGAACGGGACGGCCTGGGCGGTGGCTGGATGCTGAGGGAATCCATTGCTGATGCCGCCTGAMDRTALSGVPYGPATLAVGGCPYSFPMEHVLLKNVKGKPTAVVAGGREWTVGAEPVRWFERVSWWEGQRRMPRGLSRMDVEVLQLQVRLGSNENSALTTMLLERDGLGGGWMLRESIADAANANANANANA
D1-29_02927921cobBCOG0846NAD-dependent protein deacetylaseATGGATCAGCAGCGGCGCGGGATCGGCCTGACAGGCTTCGCCAGTATGCCGGTCCTGCAGCCCACGGCTCTCTCATCAGAAGACGTCCGGGTCCTTGGCAGTATCCGCGAACTTCTGGCGGGAAGGCGGCTGGCGCTCCTGACCGGTGCGGGCCTGAGTACAGATTCGGGGATCCCGGACTACCGCGGCCCCGGCGCGCCGGTGCGGTCACCCATGACTTACCAGGAGTTCATCCGCGACGCCGCCAATCGGCAGCGTTATTGGGCGCGGAACCACATCGGCTGGTCCCACCTGCGGCATGCAGATCCCAACCAGGGGCACCATGCAGCTGCAGAAATGGAGCGGCGGGGACTGCTCACCGGTTTGATTACACAGAATGTGGACAGGCTGCACGAGGATGCCGGCAGCTTCAACGTCGTGGACCTGCATGGGCGCTATGACCAGGTGGTGTGCCTGGACTGCGGGCGCAAGTATTCGCGGCGCCTCCTGGCCGCGGTGTTGGAGGAGCTCAACCCGGGCTTCCTGGAAAAGGCCACCGAATCCGGCCTCGTCGAGATGGCTCCCGATGCAGACGCCACGATGGACGACCAGGCCCTGATCAGCAGCTTTGTGGTAGCTGTCTGCCTGGCCTGCGGCGGAACCCTAAAACCGGATTTTGTGTATTTCGGCGAGAACGTCCCCAAGGAACGGGTGGAGCGGTCCTACTCCATGGTGGACGAGGCCGGCGCCCTCTTGGTGGCAGGATCTTCCCTCTCCGTGATGAGTGGACTGAGGTTCGTCCGGCACGCGTCCAAGAGCGGGAAGCCGGTGGTCATTATCAACCGGGGGCCAACCCGTGGGGATGAGTTGGCCACGATCAAACTTGTTGCCGGGGTCAGCGAATCACTGACGTGGCTTGCGGCCGAGCTGCCCCCGCTGTAAMDQQRRGIGLTGFASMPVLQPTALSSEDVRVLGSIRELLAGRRLALLTGAGLSTDSGIPDYRGPGAPVRSPMTYQEFIRDAANRQRYWARNHIGWSHLRHADPNQGHHAAAEMERRGLLTGLITQNVDRLHEDAGSFNVVDLHGRYDQVVCLDCGRKYSRRLLAAVLEELNPGFLEKATESGLVEMAPDADATMDDQALISSFVVAVCLACGGTLKPDFVYFGENVPKERVERSYSMVDEAGALLVAGSSLSVMSGLRFVRHASKSGKPVVIINRGPTRGDELATIKLVAGVSESLTWLAAELPPLNANANANANA
D1-29_02928504ahpECOG1225Alkyl hydroperoxide reductase EGTGACAGCATCCCTTGCCGGGACGGATGCCGGCCCCGAGGCCGTCCCTGCGATCGGTGCGGCCGCGCCTGACTTTGAGCTTCCCAACCAGTTCGGTGAGCCTGTCAGGCTGTCATCGTTCCGTGGGAAAAACGTGGTGCTGGTTTTCTACCCCTTCGCGTTCTCCGGCATTTGCACGGGTGAACTGTGTGAAATCCGGGACAACCTTGCCTCGTTCGAGGACAGCAATGCCATAGTCCTCGCCATCTCGGTGGACAGTAAGTTCAGTCTGAGGGCTTATGCGGAGAAGGAAGGATACGGCTTCGACCTGCTGGCAGACTTTTGGCCGCACGGGGCCGTGGCCGATGCCTATGGCGTCTTCGACCAGCAGAGCGGAATGGCGCGGCGGGGGACTTTCATCATCGACCCTGCCGGAATCATCCGGTACGTCGTGGTTAATCCACGCGGCCAGGCCCGTGAGCTGGCTGAGTACCGGGAAGCTTTGGCGGGCCTGGCCCAGGCCTGAMTASLAGTDAGPEAVPAIGAAAPDFELPNQFGEPVRLSSFRGKNVVLVFYPFAFSGICTGELCEIRDNLASFEDSNAIVLAISVDSKFSLRAYAEKEGYGFDLLADFWPHGAVADAYGVFDQQSGMARRGTFIIDPAGIIRYVVVNPRGQARELAEYREALAGLAQAPGPT0013145_37DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013145-ahpE-K24120NANA
D1-29_02929420putative proteinGTGAGCGAGGCCGACGCCGCCACTTCGGTAAATGTGGCGGAAAAATTGGGTTTCAAAAATGGGGATCTGATTCAGGAGTTCGGTTACGACGATGACGTCGATTTCGACTTACGTGACGATATTGAGGACCTCACGGGATCCGAACTCCTTGATGAGGACGACCACGACGTCGTAGACGCCGCCATCCTGTGGTGGCGGGCCGACGACGGCGACCTCGTGGATACGCTCGTGGAACCCCTGACCACCCTGCGAGAGGGCGGCGTCATCTGGGTCCTCACGCCAAAGTCCGGACGGCCAGGCTACGTGTCGCCGGCGGACATCCAGGACGCAGCCCCTACGGCCGGTCTTCACGTCACCACGTCGGCGGGTGTCTCCAAGGATTGGAGCGCAACGCGGTTGGTGCTCCGGAAGAACAAGTGAMSEADAATSVNVAEKLGFKNGDLIQEFGYDDDVDFDLRDDIEDLTGSELLDEDDHDVVDAAILWWRADDGDLVDTLVEPLTTLREGGVIWVLTPKSGRPGYVSPADIQDAAPTAGLHVTTSAGVSKDWSATRLVLRKNKNANANANANA
D1-29_029302769aceECOG2609Pyruvate dehydrogenase E1 componentATGCATGCGCGCAAAGAGAGGTTGGACGTGGCTGCAGGAGAAGATACCTCCCATATCCTCAGTGGGTTGACTAACCAGCTGCCTGATCGTGATCCGGAAGAGACCGCCGAATGGGTTGAGTCCCTGGATTCACTGATCAGGGAACAGGGCACCGAGCGTGCCCAATACATCATGCGGAGCCTGTTGCAGCGCGCCGGCGCGCAGAGCGTCGGGGTGCCGATGGTGACCACCACGGACTACGTGAACACCATCCCGGTGGATCAGGAAGCCGAATTCCCGGGCAATGAGGAGTTCGAGCGCCGCTACCGGGCATACATGCGCTGGAACGCGGCCGTGATGGTGCACCGGTCCCAGCGCCCGAACATCGGAGTGGGCGGGCACATCTCCACCTACGCCGGCGCCGCCACACTGTATGAAGTGGGCTTCAACCACTTCTTCCGTGGCAAGGACCACCCCGGCGGCGGCGACCAGGTCTTCTTCCAGGGCCACGCCTCCCCCGGCATGTACGCCCGTGCCTTTATGGAAGGACGCCTGTCCGAGGAGGACCTGGACGGGTTCCGGCAGGAAAAGTCCCGGGAGGGCCATGCCCTGTCCTCCTACCCGCACCCGCGGCTGATGCCGCACTTCTGGGAATTCCCCACTGTGTCCATGGGCATCGGTCCCATGAACGCCATTTACCAGGCCCAGTCCAACCGGTACCTGCATAACCGGGGCCTGAAAGATACCTCGGACCAGCAAGTCTGGGCCTTCCTGGGCGACGGCGAGATGGACGAGCCCGAATCCCGCGGCCTGCTGCAGCTCGCCGCGAACGAAAACCTCGACAACCTCAACTTCGTGATCAACTGCAACCTCCAGCGCCTTGATGGCCCGGTCCGCGGCAACGGCAAGATCATGCAGGAACTGGAGGCGTTCTTCCGCGGCGCGGGCTGGAACGTCATCAAGGTGGTCTGGGGCCGGGAGTGGGATGACCTGCTCACCAAGGACACCGACGGCTCGCTCGTGAAGATCATGAACGAAACGCCCGACGGCGACTACCAGACGTTTAAGGCCGAATCGGGCGGGTTCGTCCGCGAGCACTTCTTCGGCCGGACTCCGCGGACCAAGGACATGGTCGCAGACCTGACGGACGACCAGATCTGGAACCTCAAGCGGGGTGGCCACGATTACCGCAAGGTCTACGCGGCGTACAAGGCAGCCACCGAGTTCAAGGGCAAGCCAACCGTGATCCTGGCCAAAACGGTCAAGGGCTACGGGCTCGGTCCCCACTTCGAGGGCCGCAACGCCACGCACCAGATGAAGAAACTTACGCTGGATGACCTGAAGAAGTTCCGCGACCACCTGCGGATCCCTGTCACCGACGAGCAGCTGGAGAAGGATCCGTACCAGCCGCCGTACTACCACCCGGGTACTGATGCGCCGGAGATCCAGTACATGATGGAACGCCGCGCAGCCCTCGGCGGGGCCGTGCCGGAACGCCGTTCCAAGCACGCCGAGATCGCGTTGCCGGACGCGAGCACGTACGAGGTGGCCAAGCGCGGTTCCGGCAAGCAGCAGGCCGCCACCACCATGGCATTCGTCCGGCTGCTCAAGGACCTGATGCGGGACAAGAACTTCGGCAAGCACATCGCGCCGATCATTCCCGATGAAGCCCGGACCTTCGGCATGGACGCGTTCTTCCCCACGGCCAAGATCTACAACCCCAAGGGCCAGAACTACCTGTCCGTGGACCGGGACCTTGTCCTGGCGTACAAGGAATCCGCGCAGGGACAGCTCATCCACCCGGGCATCAACGAAGCCGGGGCTGTGGCAGCATTCACCGCCGCAGGCACAGCGTACGCAACCCATGGCGTACCGCTGGTTCCGGTGTACGTGTTCTATTCCATGTTCGGCTTCCAGCGCACCGGTGATGCCTTCTGGGCAGCCGCGGACCAGATGACCCGTGGCTTCATCATCGGCGCCACCGCAGGACGGACCACCCTCACCGGTGAAGGACTGCAGCACGCCGACGGGCACTCCCCGCTGCTTGCGTCAACGAACCCGGCCGTGGTCACCTACGACCCCGCGTACGGGTACGAAATGGGCCACATCATCCGCGACGGCATCGAACGGATGTACGGACCGGACTCGACGGACCGGAACCTGATGTATTACATCACCGTCTACAACGAGCCCATCAGCCAGCCCGCCGAACCTGACGAGCTGGACGTTGAAGGTGTCCTGAAGGGCATCTACCTGCTGGCACCGGCAAAGATCGACGGCCCGCGGACCCAGATCCTGGCTTCCGGCGTCTCCGTCCCTTGGGCTATCGAGGCCCAGCGGCTCCTCGCCGACGACTGGGGCGTCTCAGCCGACGTCTGGTCCGTCACGTCCTGGAACGAACTGCGCCGCGACGCCATGGCTGCAGAGGAAGAGGCCTTCCTCAACCCCGGACAGCCCGGACGCGTTCCGTTCGTCACCCAGCAGCTGGCCGGCGCCACCGGACCCATCGTGGCGGTTTCGGACTACATGAAGGCCATTCCGGACCAGATCCGCCAGTTCCTGCCGAACGAGTTCGCTTCGCTCGGTGCCGACGGGTTCGGGTTCTCCGATACCCGCGCCGCAGCGCGACGCTTCTTCAAGAACGACATCCACTCCATCGTGGTCCGTTCCCTCGAGATGCTCGCACGCCGTGGCGAGGTGGACGCCCAGGCTCCGATCAAGGCCATCGAAAAGTACCGGCTGCACAATGTGAATGCCGGTTCCACCGGCAACGCCGGCGGCGAGTCGTAAMHARKERLDVAAGEDTSHILSGLTNQLPDRDPEETAEWVESLDSLIREQGTERAQYIMRSLLQRAGAQSVGVPMVTTTDYVNTIPVDQEAEFPGNEEFERRYRAYMRWNAAVMVHRSQRPNIGVGGHISTYAGAATLYEVGFNHFFRGKDHPGGGDQVFFQGHASPGMYARAFMEGRLSEEDLDGFRQEKSREGHALSSYPHPRLMPHFWEFPTVSMGIGPMNAIYQAQSNRYLHNRGLKDTSDQQVWAFLGDGEMDEPESRGLLQLAANENLDNLNFVINCNLQRLDGPVRGNGKIMQELEAFFRGAGWNVIKVVWGREWDDLLTKDTDGSLVKIMNETPDGDYQTFKAESGGFVREHFFGRTPRTKDMVADLTDDQIWNLKRGGHDYRKVYAAYKAATEFKGKPTVILAKTVKGYGLGPHFEGRNATHQMKKLTLDDLKKFRDHLRIPVTDEQLEKDPYQPPYYHPGTDAPEIQYMMERRAALGGAVPERRSKHAEIALPDASTYEVAKRGSGKQQAATTMAFVRLLKDLMRDKNFGKHIAPIIPDEARTFGMDAFFPTAKIYNPKGQNYLSVDRDLVLAYKESAQGQLIHPGINEAGAVAAFTAAGTAYATHGVPLVPVYVFYSMFGFQRTGDAFWAAADQMTRGFIIGATAGRTTLTGEGLQHADGHSPLLASTNPAVVTYDPAYGYEMGHIIRDGIERMYGPDSTDRNLMYYITVYNEPISQPAEPDELDVEGVLKGIYLLAPAKIDGPRTQILASGVSVPWAIEAQRLLADDWGVSADVWSVTSWNELRRDAMAAEEEAFLNPGQPGRVPFVTQQLAGATGPIVAVSDYMKAIPDQIRQFLPNEFASLGADGFGFSDTRAAARRFFKNDIHSIVVRSLEMLARRGEVDAQAPIKAIEKYRLHNVNAGSTGNAGGESPGPT0001385_294DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
D1-29_029311245COG2508putative proteinATGCCAGAGCCAACCACCCCGTCTGCGAAGCGCAAGCCGTCCTCGCGCAGCATGACACCGGAGAAATCCGAAACCCTGAAAAAGCTGCGGGCGAGTGTGGGCCAACTGTCCACCACCACCCTGCGCCAGCTGGAAAAATCACTGCCGTGGTACAGCCGGCTGAGCTCCGACGAACGCTCTGCGCTGGGCATGGTGGCTCAGAACGGCATCGCTGCCTTCGTCACCTGGTATGAGCGCCCCAGCTCGCCGTCGTGGATCCTGACAGATGTCTTCGGCACTGCTCCCACAGAGCTGACCCGGTCCATTAGCCTGCAGAAAGCCCTCCAGCTGATCCGCATTGTCGTCGAGGTGGTTGAGGACCAGGTTCCTGTCATCGCCCCTGAGGCCGACCAGCCTTCGCTCCGGGAGGCTGTACTGCGCTACTCCCGGGAAGTGGCCTTCGCCGCAGCCGATGTCTACGCGAGGGCTGCAGAATCCCGTGGGTCATGGGACACGAGGCTTGAAGCACTGATCGTCGACGCCATCCTCCGCGGGGAGAACACCGACGCGCTGCGCTCCAGGATCGCCGCCCTTGGCTGGAAAGCCCAGGAACGGTTCACCGTTATGGTGGGAAATTCGCCGTCGGAGCCCAGCGCGAGCTACGTCAGCGAGCTGCGGCGCACCGCCGGGCGTTATGCCGAGGACGCCTTGGTGGGGATTCAGGGTGACCGCTTGATCCTGATCCTCGGCGGCGTGCAGGACCGTGAAACTGCCTACCTGAAGCTCAGCGAGATGTTCGCCCCCGGTCCCGTCGTCTACGGCCCGGAGGCAGGCTCGCTACTGGAAGCCAGTGGGTCAGCCCAGTCCGCTTTTGCCGGGCTGACAGCTGCCCGGGCCTGGCCGTCGGCTCCCCGGCCGGTGGCAGCGGACGACCTTCTGCCCGAACGCGTTATCTCCGGCGACGAAGCTGCCCGCCGTTCCCTGGTTAAGAACATTTACCGCCCGCTTGTGGCGGCCTCGAACGGGCTCGTTGAAACGCTCGGCACCTACCTTGAGCTGGGGCATTCCCTCGAGGCAACTGCGCGCGAACTCTTCGTCCATGCCAACACCGTCAGGTACCGCCTGAAGCGCGTCTGTGACGTCACCGGCTGGGATCCGCTCCTTCCCCGCGAGGCGTTTGTGCTGCAGGCAGCGCTGGTTGTGGGCCGGCTTTCGGCACCCCCGAAAGCTCCCGTGGAGCGTCATCCGGCGCGGAATCAGAGCTGAMPEPTTPSAKRKPSSRSMTPEKSETLKKLRASVGQLSTTTLRQLEKSLPWYSRLSSDERSALGMVAQNGIAAFVTWYERPSSPSWILTDVFGTAPTELTRSISLQKALQLIRIVVEVVEDQVPVIAPEADQPSLREAVLRYSREVAFAAADVYARAAESRGSWDTRLEALIVDAILRGENTDALRSRIAALGWKAQERFTVMVGNSPSEPSASYVSELRRTAGRYAEDALVGIQGDRLILILGGVQDRETAYLKLSEMFAPGPVVYGPEAGSLLEASGSAQSAFAGLTAARAWPSAPRPVAADDLLPERVISGDEAARRSLVKNIYRPLVAASNGLVETLGTYLELGHSLEATARELFVHANTVRYRLKRVCDVTGWDPLLPREAFVLQAALVVGRLSAPPKAPVERHPARNQSNANANANANA
D1-29_02932930fabDCOG0331Malonyl CoA-acyl carrier protein transacylaseGTGCTTGCAATAGTCTGCCCTGGACAGGGCTCACAGACCCCCGGATTTCTGGCCCCTTGGCTGGAACTTCCTTCGGTAGCAGGCCAGTTGGCCTCCCTCAGCGAGATCGCAGGCATCGACCTGACGGCTCATGGGACCACCTCTGACGAGGAAACCATCAAGGACACCGCGGTGGCGCAGCCCCTGATTGTCGCGGCAGGCCTGGTTGCTGCCAGCTCGCTGTTCGACGTCGAGCTCAGCTCGCTGCCCGTAATCCTGGCCGGCCACTCTGTCGGTGAGATCACGGCTTCCGCACTTGCGGGGGTACTTACCGAGCAGGAAGCCATGACCTTTGTTCGTGAGCGTGCCAACAGCATGGCCGCCGCCGCTGCTGTGACGCCCACCGGCATGAGTGCTGTGGTGGGCGGGGACCCGGCGGAGGTCCTCGCGGCAATCGAGGCCTCCGGGGCCACCCCGGCCAATGTCAACGGTGCTGGGCAGACCGTCGCCGCGGGAACCTTTGAGCAGCTTCAGTCCCTGGCTGACAACCCGCCGGCGAAAGCCCGCGTCATTCCGCTCAAGGTGGCCGGAGCCTTCCACACCAGCCACATGTCCCCCGCCGTCAGCGCGCTGGAAGCCCTCAAGCCGGAGCTCAAGCCGCAGAAACCGCAGGTTCCCCTGCTCTCCAACTTTGACGGCCGCGAAGTCACCGACGGCGACGCCGCCGTGGACAGCCTGATCGCCCAGGTATCCCGCCCCGTCCGCTGGGACCTGTGCATGGAATCATTGGTGGAGCGCGGCGTCACGGGTGTCATTGAACTGGCCCCCGCCGGAACCCTGGCCGGCCTTGCCAAGCGAGGGATGCCTGGCGTCAAAACAGTCGCCGTCAAAACCCCGGACGACCTCTCTGCCGCCCTGGCACTCTTCGCAGAATTGGAGGGAAAGGCATGAMLAIVCPGQGSQTPGFLAPWLELPSVAGQLASLSEIAGIDLTAHGTTSDEETIKDTAVAQPLIVAAGLVAASSLFDVELSSLPVILAGHSVGEITASALAGVLTEQEAMTFVRERANSMAAAAAVTPTGMSAVVGGDPAEVLAAIEASGATPANVNGAGQTVAAGTFEQLQSLADNPPAKARVIPLKVAGAFHTSHMSPAVSALEALKPELKPQKPQVPLLSNFDGREVTDGDAAVDSLIAQVSRPVRWDLCMESLVERGVTGVIELAPAGTLAGLAKRGMPGVKTVAVKTPDDLSAALALFAELEGKAPGPT0008350_1073DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008350-fabD|bmyD-K00645NANA
D1-29_029331062fabH3-oxoacyl-[acyl-carrier-protein] synthase 3ATGAGCGTTCCCACACTGAAACAGGCCCCGGTCAACGAGAACACCCGGGTCCTTGGAATTGGTGCCTACCGCCCGGACATCATCGTCACCAACGACGACGTATGCCAGTGGATCGATTCCTCCGATGAGTGGATCCGCCAGCGCACCGGCATTGTCACGCGGCACCGTGCGGCAGCCGACGTCAGCGTCATCGACATGGCAGAAGGCGCCGCGCGTGAGGCCCTGCAGCACGCCGGCATAGAGGCGTCCCAGCTGGGCGCGGTGATCGTGTCCACTGTTACGCACCCGTACGCCACGCCGTCGGCCGCCGCGAGCCTGGCCGACCGCCTGGGTGCCACCCCGGCGCCCGCCTTCGATATCTCGGCGGCATGCGCAGGGTACTGCTACGGAATCGCACAGGGCGATGCGCTGGTCCGTTCCGGGGCGGCCAACTACGTCCTGGTGGTGGGAGCCGAAAAGCTCTCCGACGTGATCGACAACCATGAGCGGACCATTTCGTTCCTGCTCGGCGACGGAGCCGGCGCAGTAGTGATCGGCCCCTCTGACACTCCCGGCATCGGTCCCTCCGTTTGGGGCTCTGACGGCAGCAAGTGGGATGCGATCGGCATGACACGCTCCATGCTGGACGTCCGCGACCTCAGCGCCTCCGCCCGCCAGGCGGACGAATCCGACGACCTCGCGATCATTTCCGCCGCGCAGGACCTCTGGCCCACGCTCCGCCAGGACGGGCAGACCGTCTTCCGCTGGGCAGTATGGGAAATGGCGAAAGTGGCCCAGCAGGCCCTGGACGCCGCCGGAATCAGGTCTGAGGACCTGGTGGCCTTCATCCCCCACCAGGCCAACATGCGCATCATCGACGAAATGGTGAAAAAGCTTCAGTTGCCCGAAACGGTCACCGTTGCCCGCGACATTGCTGACGCCGGAAACACCTCGGCCGCCTCCATCCCCCTGGCCACCCACCGCCTGCTCCAGGAGAACCCCGAGCTCAGCGGCGGACTTGCGCTCCAAATCGGCTTCGGCGCCGGTCTGGTCTTCGGCGCCCAGGTCATCGTCCTCCCCTAGMSVPTLKQAPVNENTRVLGIGAYRPDIIVTNDDVCQWIDSSDEWIRQRTGIVTRHRAAADVSVIDMAEGAAREALQHAGIEASQLGAVIVSTVTHPYATPSAAASLADRLGATPAPAFDISAACAGYCYGIAQGDALVRSGAANYVLVVGAEKLSDVIDNHERTISFLLGDGAGAVVIGPSDTPGIGPSVWGSDGSKWDAIGMTRSMLDVRDLSASARQADESDDLAIISAAQDLWPTLRQDGQTVFRWAVWEMAKVAQQALDAAGIRSEDLVAFIPHQANMRIIDEMVKKLQLPETVTVARDIADAGNTSAASIPLATHRLLQENPELSGGLALQIGFGAGLVFGAQVIVLPPGPT0008355_1100DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
D1-29_02934246acpPAcyl carrier proteinATGGCTAGCAACGAAGAGATCCTGGCCGGCTTGGCTGAAATCGTCAACGAAGAGACCGGCCTGGCCCCTGAGGCTGTGGAGCTGGACAAGTCCTTCACCGAGGACCTGGACATCGACTCCATCTCGATGATGACCATTGTGGTCAACGCTGAAGAGAAGTTCGGCGTGCGCATTCCGGACGAAGAGGTCAAGAACCTCAAGACCGTCGGTGACGCCGTGAGCTTCATCTCCGGCGCACAGGCCTAGMASNEEILAGLAEIVNEETGLAPEAVELDKSFTEDLDIDSISMMTIVVNAEEKFGVRIPDEEVKNLKTVGDAVSFISGAQAPGPT0011375_4456DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
D1-29_029351236fabF3-oxoacyl-[acyl-carrier-protein] synthase 2ATGACACGCAAAGTAGTCATTACCGGTCTGGGTGCCACCACGCCCATCGGCGGCGACGTACCCACAATGTGGAAGAACGCGCTGAAAGGGGTCTCAGGTGCCCGCACCCTGGAGGACGACTGGGTTTCCAAGTATGAACTTCCTGTCCACTTTGCCGCGCGCTGCAGCACTCCTGCCCTGGAGGTCCTGAGCCGCGTCGAAGCGAAACGGATGGATCCTTCCACGCAGTTCGGCGTGATCGCCTCCCGCGAGGCGTGGGCGGACTCGGGCATCACCGAAGTGGACCACGACCGCCTGGCGGTGGCCTTCGCCACCGGCATCGGCGGCGTCTGGACGCTCCTGGATGCCTGGGACACCCTGAAGGAAAAGGGACCCCGCCGCGTCCTGCCCATGACCGTGCCCATGCTGATGCCTAATGGCGTCGCCGCGGCCGTCAGCCTGGACCTGGGCGCCCGCGCCGGAGCCCACACCCCTGTATCGGCCTGCGCCTCCGGCACCGAAGCCCTGCACCTTGGCCTGGACCTGATCCGTTCCGGCAAGGCCGATGTAGTCATGTGTGGAGGCGCCGAGGCAGCAATCCACCCCATGCCACTGGCAGCATTCTCATCCATGCAGGCACTCTCCCGCCGCAACGACGAGCCCGAGCGCGCCTCCCGTCCCTACGATCTTGGCCGCGACGGCTTTGTCATGGGCGAAGGCGCCGGTGCCCTGGTCCTCGAAGCCGAGGAGCATGCCCTCGCCCGCGGTGCGCGCATCTACGGCGAGCTGGCCGGCACGTCCGTCACGGCGGACGCTTACCACATCACCGCCCCGGACCCCGAGGGCCTGGGTGCCACCCGCGCCCTTAAGGCAGCTATGTTCGACGGCCGGATCCAGGCCGAAGACGTGGTCCACGTTAATGCCCACGCCACGTCCACTCCCGTGGGTGACAAGCCGGAGTACACCGCCCTGCGCGCTGCCCTCGGCAACCACATCGACCGCGTGGCGGTCTCCGCCACCAAATCGCAGATGGGGCACCTCCTGGGCGCATCCGGCGCCGTGGAGGCCGTGCTCACGGTGCTGGCTGTTTACGAACGCAAGGCGCCGGTAACCATCAACCTGGAAAACCAGGACCCGGAGATCCCTCTCGACGTCGTCACCTCTGCCCGTGACCTGCCCGCGGGCAGCATTGTGGCACTGAGCAACTCCTTCGGCTTCGGCGGGCACAACGCCGTGATCGCGGTACGCAGCGTTTAGMTRKVVITGLGATTPIGGDVPTMWKNALKGVSGARTLEDDWVSKYELPVHFAARCSTPALEVLSRVEAKRMDPSTQFGVIASREAWADSGITEVDHDRLAVAFATGIGGVWTLLDAWDTLKEKGPRRVLPMTVPMLMPNGVAAAVSLDLGARAGAHTPVSACASGTEALHLGLDLIRSGKADVVMCGGAEAAIHPMPLAAFSSMQALSRRNDEPERASRPYDLGRDGFVMGEGAGALVLEAEEHALARGARIYGELAGTSVTADAYHITAPDPEGLGATRALKAAMFDGRIQAEDVVHVNAHATSTPVGDKPEYTALRAALGNHIDRVAVSATKSQMGHLLGASGAVEAVLTVLAVYERKAPVTINLENQDPEIPLDVVTSARDLPAGSIVALSNSFGFGGHNAVIAVRSVPGPT0008360_6300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-29_02936504hypothetical proteinATGTCTGTTGCAATGACCCGCGGTGTGCTGTTCGTTCACTCGGCCCCTACTGCACTGTGCCCGCATGTCGAGTGGGCCATCGGATCCGTCGTGGATAAGCGGACGGACCTTGAGTGGACCCCTCAGCCCGCTGCGCCCGGAATGTTCCGCGCCGAGCTCTCCTGGACGGGAACGCCCGGAACGGGAGCGCAGCTTGCCTCGGCCCTCCGCGGTTGGGCCCACCTCCGCTATGAGGTCACCGAGGAACCAAGCCAGGGGGTGGACGGCGGCCGCTGGTCCCATACTCCCGAGTTGGGTATCTTCCACGCTGTGACTGACGTGCACGGCAACATCATGGTCTCCGAGGACAGGATCCGTTACGCCTACGAGTCCGGCGCAGGCGACCCGTCAGCCGTTTACCATGAGCTCTCCCTCGCGCTCGGTGAGGCGTGGGACGAAGAGCTCGAACCCTTCCGCCACGCAGCCGAGGGTGCTCCTGTCCGCTGGCTGCACCAGGTGGGCTGAMSVAMTRGVLFVHSAPTALCPHVEWAIGSVVDKRTDLEWTPQPAAPGMFRAELSWTGTPGTGAQLASALRGWAHLRYEVTEEPSQGVDGGRWSHTPELGIFHAVTDVHGNIMVSEDRIRYAYESGAGDPSAVYHELSLALGEAWDEELEPFRHAAEGAPVRWLHQVGNANANANANA
D1-29_02937972xerC_3COG0582Tyrosine recombinase XerCGTGTCCGTACCCTGGTTTGGCGCCAAAGACTGGGAAAGTAGGAAGGTGGAGACTCAGGAACTGCCCCCCGCGCTCGAGCAGGCAATTGATGATTTTGCCAGGTATCTGGCGGGAGAGCGCGCCAGGTCCGCCCACACCCTTCGGGCTTACCTCTCGGATCTCCGAAGCCTGCTCCAGTATGCCGCGTCCGAAGGCGTGACCGACCTCCCCGGCCTCGAACTGGGAACACTCAGGCGGTGGCTGGGAGTCCAGAGCCAGGCCGGGATGTCCCGGTCCACCCTGGCCCGGAGATCGGCCACGGCCAGGTCCTTCACTACCTGGGCCATGCGGGAAGAGCTGATGGAAACAGATCCGGCGCTGCGCCTCAGGGCTCCGAAAACCGGAAAGTCCCTGCCCGGGGTGCTGCAGTCCCAACAGCTGGGGAGGCTGCTGGGCAACCTGGAGGAAGCCGCGTCCGGCGGTTCGCCCCTGGCTGTCCGCAACCGGGCCATGGTGGAGCTCCTGTATGCCACCGGGCTTCGGGTGGGGGAGCTCGCCGGCATGGACGTGGATGATCTCAACCCGGACCGCCGCACGCTGCGGGTGATCGGCAAAGGCAACAAGGAACGGACAGTCCCGTACGGCGTCCCTGCCGCAGTGGCCGTCGACGACTGGCTCCGCAGGGGCAGGCCCGTGCTGGCCAAGCCGCACAGCGGGCCGGCGCTCTTCCTCGGATCACGCGGCAACAGGGTGGACCAGCGCCAGGTCAGGGCAGTCGTGAAGGAGCTCTTTGAAGCGCTGGGGGACACCTCGGCCACCGGGCCTCACGCCCTGCGGCACACGGCCGCCACGCACCTGCTGGACGGGGGTGCGGATCTCCGCGCCGTCCAGGAGATCCTGGGGCACAGCAGCCTCGCCACCACGCAGATCTACACCCACGTCTCCGTGGACAGGCTGAGGAAGAGTTACCAGCAGGCACACCCAAGGGCGTAAMSVPWFGAKDWESRKVETQELPPALEQAIDDFARYLAGERARSAHTLRAYLSDLRSLLQYAASEGVTDLPGLELGTLRRWLGVQSQAGMSRSTLARRSATARSFTTWAMREELMETDPALRLRAPKTGKSLPGVLQSQQLGRLLGNLEEAASGGSPLAVRNRAMVELLYATGLRVGELAGMDVDDLNPDRRTLRVIGKGNKERTVPYGVPAAVAVDDWLRRGRPVLAKPHSGPALFLGSRGNRVDQRQVRAVVKELFEALGDTSATGPHALRHTAATHLLDGGADLRAVQEILGHSSLATTQIYTHVSVDRLRKSYQQAHPRAPGPT0021995_2086DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733NANA
D1-29_029381185dprACOG0758Putative DNA processing protein DprAATGGACAACGAACGGATCGCCCGCGCAGCGCTGTCGAGGCTTATGGAGCCCCAGGACGCGGCCGGCCTCGCGCTGGTGCGGGCTGCTGGAGCCACCGATTCGCTGAAGATCGCGACAGGCCAGCTGAAGGCAGGGCCGGCCTTGGAACAGGAAATTACGGGGCTGCTGGCGGACAACGGTGGCGGCCCCGGCTGGGGAGGCATGGCTGCAGCGCTCAAACGGTGGGCGCCGCGCATCCCCGATCTGGCACCCGAACGGGACCTTGCCACCATGGCACGCCTGGGTGGCCGGCTGATCATCCCCTCGGACCCACTGTGGCCTGCCCAGCTTGCCGATCTTGGCATCCACGAGCCTCTGTGCCTGTGGTGGCGGGGCCTGGAGCAGCCGTTGCCCGCCGCAGCACAATGTGTGGCTCTGGTGGGTTCCCGGGACAGTACCAGCTACGGTGCCTCCGTGACAGGAGACCTCGCCTATTCGCTGGCTCAGCGCGGCTTCACGGTGGTCTCCGGCGGTGCCTACGGTATTGATGCCCACGCCCACAGGGCAGCCCTGGCCGGCGGTGCAGGGCCGTTGCCCACCATCGCTGTTATGGCAGGCGGCGTGGACCGCTTCTATCCGTCCGGCAACGAGGACCTCCTGCGTGCGGTCTGCAACCAGGGCGCCGTCATAGCCGAGGTGCCGCCGGGGTCGGCACCAACCCGTTACCGCTTCCTGCAGCGGAACAGGCTTATCGCCGCCATGGCAGCCGTCACCGTGGTGGTGGAGGCGCGCTGGCGTTCAGGTGCACTCAACACCGCCCATCATGCCGAAACCCTGGGCCGAGCGGTGGGTGCTGTCCCTGGGTCCGTGCACAGTGCCAACTCGGCGGGGTGCCACAGGCTGCTCCGGGATGGAGGCGCAGTCTGTGTCACGGACGCCGCCGAGATCGCCGAACTGGCTGCACCCAGCGGTGAATCACTTATTGAGCCCAGGGCAGGCCAAGCGGCCGTCCACGATGGACTGACCTTGGAGGACCTCATCCTCCTGGATGCCCTTCCCCTGAGATCCACCAGTTCGGTGGACAAACTCAGTGCGGTGGCCGGACTCAGCCAGGACTCCGTGCGGGCAGGGCTTGGCCGCCTCGGCCTGCTGGGGCTTGCATTGTCGGAGAGGGGAGGCTGGAAACGGGCCAAGGAATCAGGCTAAMDNERIARAALSRLMEPQDAAGLALVRAAGATDSLKIATGQLKAGPALEQEITGLLADNGGGPGWGGMAAALKRWAPRIPDLAPERDLATMARLGGRLIIPSDPLWPAQLADLGIHEPLCLWWRGLEQPLPAAAQCVALVGSRDSTSYGASVTGDLAYSLAQRGFTVVSGGAYGIDAHAHRAALAGGAGPLPTIAVMAGGVDRFYPSGNEDLLRAVCNQGAVIAEVPPGSAPTRYRFLQRNRLIAAMAAVTVVVEARWRSGALNTAHHAETLGRAVGAVPGSVHSANSAGCHRLLRDGGAVCVTDAAEIAELAAPSGESLIEPRAGQAAVHDGLTLEDLILLDALPLRSTSSVDKLSAVAGLSQDSVRAGLGRLGLLGLALSERGGWKRAKESGNANANANANA
D1-29_029391545comMCOG0606Competence protein ComMATGGCGTTGGGCCGGACCTACTCGGTGGCGCTGGTGGGGCTGAACGGCTACATCGTCGAGGTTGAGGCGGACATCGGCCAGACGCTGCCGGCATTTGTGATCCTGGGCCTCCCGGATGCGGCGCTAAATGAAGCGAAGGAACGCATCCGCTCCGCTGCGAAGAACTCGGGGATTCCGCTGAGCCGGCGGAAAATCACCGCCAACCTGATTCCGGCCTCCCTCCCCAAGCGGGGTTCCGGGTTCGACCTTGCGGTGACAATGGCTGTCCTGCGGGCGGCGAATGACATTAAGCCCACCGGGCGGACCGTCTTTATGGCCGAATTGGGGCTGGATGGCCGGCTTCGGCCGGTGCGGGGCATTCTTCCTGCCGTGATGGCGGCAGTGCAGGCCGGATATCCAGAGATTGTGGTGGCACAGGCCAATCTGGCTGAGGCTTCACTGGTTCCGGGTGCAAGGGTCAGGGGCTACCGCACGCTGGCCCGGCTTGCCCTCGACTTTGGTGCGGACCCTCAAGAGCTCGCGCTGGACTTCGAGCCCCAGGACGAGGCCAGCCAGGGGGATGCCCCGGGCAGCATGCAGGCAGTGCCGGATATGGCAGACGTGTCCGGCCAGGGCGATGCCCGGCGTGCCCTGGAGGTGGCTGCGGCCGGCGCCCACCACCTCCTGCTCACCGGCCCTCCGGGCGCAGGCAAGACCATGCTGGCGGAAAGGCTGCCCGGCCTGCTCCCGGACTTGGCCGACAACGAGGCCATGGAGGTCACGGCCATCCACTCGCTCTGTGGCCTGCCGTCCTCGGCCGTCCAGCTCCTGCGGCGGCCGCCTTTTGAAAACCCCCATCACTCGGCCACAGCAGCCGCCATCATCGGCGGCGGCTCAGGGCTGCCGCGTCCGGGCGCGGCGTCCCGGGCACACCGCGGCGTGCTGTTCCTGGACGAGGCGCCGGAATATGAACGCCGGGTGCTGGATGCCCTCCGCCAGCCCCTGGAGAGCGGGGAACTGGTGATTCACCGGTCAGCCGGCACGGCGGCCTATCCGGCGCGGTTCCAACTGGTTCTCGCCGCCAACCCGTGTCCCTGCGGGAAGGCCTCCGGGAAAGGACTGGACTGCATCTGCACTCCCATGATGCGGCGGCGCTACCTCGCCCGGATGTCCGGCCCGCTCCTGGACCGGGTGGATATCCAGTTGCAGGTGGAGCGGGTTTCGCTGGCCGACTTCGGCCAGGCAGGCTGTGAAGAGGATACGGCTTCCGTGGCGCAGCGGGTGGATGACGCCCGCCGCCGCCAGGCCGACAGGCTGCAAGGCCTCGGACTGGAAACGAATTCCCAGGTTCCCGGGCGGATCCTTCGCGGCGGACTCCGCCTCCCGGCCGCGTCCACTCGGATTCTGGACCACTCACTGGAGCGGGGAGTCCTGACGGCCCGGGGCTACGACAGGGTGCTGCGGCTGGCGTGGACCTTGGCCGACCTGGCACACCGCGACAAACCCGACACCAACGACATCGGCCAGGCACTGGGCCTCCGGCAGGCTGCCTCGGCAGCCGCGTGAMALGRTYSVALVGLNGYIVEVEADIGQTLPAFVILGLPDAALNEAKERIRSAAKNSGIPLSRRKITANLIPASLPKRGSGFDLAVTMAVLRAANDIKPTGRTVFMAELGLDGRLRPVRGILPAVMAAVQAGYPEIVVAQANLAEASLVPGARVRGYRTLARLALDFGADPQELALDFEPQDEASQGDAPGSMQAVPDMADVSGQGDARRALEVAAAGAHHLLLTGPPGAGKTMLAERLPGLLPDLADNEAMEVTAIHSLCGLPSSAVQLLRRPPFENPHHSATAAAIIGGGSGLPRPGAASRAHRGVLFLDEAPEYERRVLDALRQPLESGELVIHRSAGTAAYPARFQLVLAANPCPCGKASGKGLDCICTPMMRRRYLARMSGPLLDRVDIQLQVERVSLADFGQAGCEEDTASVAQRVDDARRRQADRLQGLGLETNSQVPGRILRGGLRLPAASTRILDHSLERGVLTARGYDRVLRLAWTLADLAHRDKPDTNDIGQALGLRQAASAAANANANANANA
D1-29_02940357hypothetical proteinATGAAATCCAAAGACCTGTTGGGCCGGCGCGGCGAAGAGCTCGCTGCCGGATATCTTGAGTCAGTTGGCATGCTGGTGGTGGAGCGCAACTGGCGCTGCCCGGACGGCGAAATCGACATCGTGGCCTTGGACGCCGATGCCCTGGTCATAGCGGAGGTTAAAACCCGCCGCTCCCTGGACTACGGCCATCCCTTTGAAGCCGTGGGCCCGGAAAAACTCGCGCGCCTGCACCGGCTCGGTTCAGCATGGTGCCGGGACCGGGAGCTCCACATGCCGCTGCGCCGAGTGGATGTCATCTCGGTGCTGGACGACGGCGTTGCCGAACCGCTGGTGGAACACCTCAAAGGGGTGGGGTAGMKSKDLLGRRGEELAAGYLESVGMLVVERNWRCPDGEIDIVALDADALVIAEVKTRRSLDYGHPFEAVGPEKLARLHRLGSAWCRDRELHMPLRRVDVISVLDDGVAEPLVEHLKGVGNANANANANA
D1-29_02941327putative proteinATGAGCGCTGAGGATCTTGAAAACTATGAAACCGACATGGAGCTGCAGCTCTATCGTGAATACCGCGATGTCGTCGGGCTCTTTAGCTACGTTGTCGAGACAGAACGCCGCTTTTACCTGGCCAACCATGTTGACCTCCAGGCCCGCAGTGCCGACGGCGAGGTCTACTTCGACCTGACGCTGCAGGACGCGTGGGTTTGGGACGTCTACCGCTCGGCGAGGTTCGTGAAGAATGTCCGCGTCCTCACCTTCAAGGACGTCAACGTCGAAGAGCTTCCGCGTAATGAAGAACTTGCGATGCCCAAGGACGTTGACCTCGGCAACTGAMSAEDLENYETDMELQLYREYRDVVGLFSYVVETERRFYLANHVDLQARSADGEVYFDLTLQDAWVWDVYRSARFVKNVRVLTFKDVNVEELPRNEELAMPKDVDLGNNANANANANA
D1-29_02942747rnhBCOG0164Ribonuclease HIIATGTCCAGTGCTCTGCCTGCGACGTCCGCCAAGGCGACTCTCCGGCCCGCGACGGGCATCCACTCCAAAGCCCCCACGCTGCGTCATGAGCGGTCCTTCAAAGCGCAGGGAGTCCGCTACCTCGCCGGTGTTGACGAAGTGGGCCGCGGTGCGCTGGCAGGACCCGTGAGCGTCGGTATTGCCGTCGTGGACTTGGAAACGCAGAAGTCACTGCCCGGGGTCCGTGACAGCAAGCTGCTCAACCCGGCGGAGCGGGAACGCCTGGAACCACTGGTCCGCAAATGGAGCCTCGCGTCGGCGGTGGGACATGCCTCAGCAGCCGAAATCGACGCGCTTGGCATTATCGCTGCCCTGCGCCTGGCAGGAACCCGGGCCTGGTTTGAGGTCCTCGCCGCCGGGGTCACGCCGGATCTGGTGCTCCTGGACGGGAGCCATAACTGGCTGTCGCCCGCCGAGCAGCCCTCCCTGTTCGACGAGATGACGGTCGACGGGTCGGACCTGCGGTGCGACGCTCCGGTCCACACCCGCATCAAGGCTGACATGCAGTGCCTGAGTGTTGCGGCCGCCAGCGTGATCGCCAAGGTGGAACGTGACCAGCAGATGTGCGGGCTGCATGCTGAATACCCGGATTTTGGCTGGAACGAAAACAAGGGATACGCCACTCCCTTCCACCGGGACGTGCTGAGGGCCGCCGGACCCACGCCGTACCACCGCGTGAGCTGGAACCTCCTGGGTGGGGAACTCTGAMSSALPATSAKATLRPATGIHSKAPTLRHERSFKAQGVRYLAGVDEVGRGALAGPVSVGIAVVDLETQKSLPGVRDSKLLNPAERERLEPLVRKWSLASAVGHASAAEIDALGIIAALRLAGTRAWFEVLAAGVTPDLVLLDGSHNWLSPAEQPSLFDEMTVDGSDLRCDAPVHTRIKADMQCLSVAAASVIAKVERDQQMCGLHAEYPDFGWNENKGYATPFHRDVLRAAGPTPYHRVSWNLLGGELNANANANANA
D1-29_02943837hypothetical proteinATGCCCGAGAACCACCCACGGACACCTGAGCCGGGCCCTGACGGAGCCAGCCAGGCAAGTGCGGCCGGCGCTGCCCGTGCAGCTGACGCGACGGCGCCTGAGGAAGCCCCGGAGGCCCCGGTTTCCGGAAGGCGTTCTTCCGCCGCCCCGCAGCCGGAGGCCCCACGTCCCAGCCCGGTGTTCGTCTGGCTCAAAGAAGTTGCCACGGTGGTGGTCATCGCCGTGGTCCTGTCCTTCCTGATCAAAACCTTCCTGTTCCGGGCCTTCTGGATACCGTCAGAGTCGATGGTCAGCACCCTCGACATCGATGACCGCATCTTCGTCAACCTCCTTGTCCCGGAACCCTTTGCGCTTTCCCGCGGTGACGTCGTGGTGTTCCGGGATACAAAGGGCTGGCTGCCGCCGGTCCCGGAGAAGACCGATGGCCCGTTCACCTGGGTCCAGGACGGCCTGATCTTTGTTGGCCTCCTGCCGGACAATTCCCAGCAGCACCTCGTCAAGCGTGTCATTGGACTCCCGGGCGACCACGTGATCTGCTGCGACGCCGGCGGTAAACTGGCCATCAACGGATCAGCAATTGACGAACGCTACGTCAACAGCGCCGAGACCCCACAGATCCGCAACTTCGACGTTGTTGTTCCGGAAGGGAAGGTCTGGGTTATGGGAGACAACCGAAACCACTCCGCCGATTCCCGTGCCCATGTGGACTCCAACGGTGGCTTCATTGATCTCACAGACATCGAGGGCAAAGCCGCCGTCATTGCCTGGCCGCTGAACAGGATCACTGCCCTTGATAACTACCCGGACGTGTTCCGGAACGTGCCGCCGGCAGGCTAGMPENHPRTPEPGPDGASQASAAGAARAADATAPEEAPEAPVSGRRSSAAPQPEAPRPSPVFVWLKEVATVVVIAVVLSFLIKTFLFRAFWIPSESMVSTLDIDDRIFVNLLVPEPFALSRGDVVVFRDTKGWLPPVPEKTDGPFTWVQDGLIFVGLLPDNSQQHLVKRVIGLPGDHVICCDAGGKLAINGSAIDERYVNSAETPQIRNFDVVVPEGKVWVMGDNRNHSADSRAHVDSNGGFIDLTDIEGKAAVIAWPLNRITALDNYPDVFRNVPPAGPGPT0030468_59DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-29_02944678lepBCOG0681Signal peptidase IATGGACCAGACAAAACGCCAGCCCAGAAGAATGGGCTGGCGTTTTGCGTTCCTGGCTCTGGTCCTGGCGGTGGCCATCAGCGGACTGGTCCGCTCCCTGTGGCTGGATGTCTTCTTCATCCCGTCTGAGTCCATGGAACCTGTCCTGGAGGGCGGGGACCGGATCCTGGTGTCCAGAACAGCCTTTGACAGGGAGGCAATCCGTCGCGGCGACATTGTGGTCTTTGACGGCCGGGGTTCGTTCGCTCCGCTCAACAGCGGAAAAGGTCCGCTGGCCGATTCTCTGGCAGCTGCCGGACAATGGCTCGGGCTGGCCGGCTCTGACACCACGTTCGTCAAGCGGGTCATCGGTCTTCCCGGGGACGCTGTGGCCTGCTGTGACGCGGCAGGAAAAGTCACCGTGAACGGTCAGGCCATTGTTGAGCCTTACGTTTTCGACGGCGACAAACCCAGTACCCAGGCCTTCAACGTGATTGTGCCCGACGGAAGGCTGTGGCTGCTCGGCGACCACCGTTCGGCGTCGGCGGATTCACGCAGCCTGCTCGGCGCACCGGGCGGCGGAATGGTTCCGCTGGACCGGGTGTTTGGCAGACCCGTCCAGATCATCTGGCCGCTTGATAGATTTGCAGCAGTACCACGGCCGCCAGCGGCAGGACCAACAACAGAGGACGGACAGTAGMDQTKRQPRRMGWRFAFLALVLAVAISGLVRSLWLDVFFIPSESMEPVLEGGDRILVSRTAFDREAIRRGDIVVFDGRGSFAPLNSGKGPLADSLAAAGQWLGLAGSDTTFVKRVIGLPGDAVACCDAAGKVTVNGQAIVEPYVFDGDKPSTQAFNVIVPDGRLWLLGDHRSASADSRSLLGAPGGGMVPLDRVFGRPVQIIWPLDRFAAVPRPPAAGPTTEDGQNANANANANA
D1-29_02945360rplSCOG033550S ribosomal protein L19ATGCATATTCTCGATTCCGTAGACTCAGCCTCGCTGCGCACCGATGTTCCTGAGTTCCGCGCGGGCGACACCCTCAAGGTCCACGTGAACATCATCGAAGGCAAGAACTCCCGTGTCCAGGTTTTCCAGGGCTTCGTCCTGGGCCGCCAGGGTGACGGCATCCGCGAGACCTTCACGGTCCGCAAGGTCTCCTTCGGCGTCGGTGTGGAGCGTACCTTCCCGGTTCACTCCCCGATCATCGACAAGATCGAAGTAGTCACCAAGGGTGACGTCCGCCGCGCCAAGCTCTACTACATGCGTGCACTGCGCGGTAAGGCTGCCAAGATCAAGGAAAAGCGGGACTTCAGCACCGCCAAGTAGMHILDSVDSASLRTDVPEFRAGDTLKVHVNIIEGKNSRVQVFQGFVLGRQGDGIRETFTVRKVSFGVGVERTFPVHSPIIDKIEVVTKGDVRRAKLYYMRALRGKAAKIKEKRDFSTAKNANANANANA
D1-29_02946804trmDCOG0336tRNA (guanine-N(1)-)-methyltransferaseATGCGCATCGACGTCGTCAGCATTTTTCCGGAGTATCTGGCGCCCCTGGAACTGTCCCTTATCGGAAAGGCCCGGCAGGACGGCCTGCTGGACCTTCATGTCCATGACCTGCGGAACTTCACCACGGACAAGCACCGGTCGGTGGATGACACGCCCTACGGCGGCGGCGCCGGCATGGTGATGAAGGCAGAACCGTGGGCCCAGGCGCTGGCATCGGTGGCGGAAGCACGGCCGGCAGAGGGAGTGGGCAAGCCTGTCCTTATCGTGCCGTCCCCGGCCGGGGAACGTTTTACCCAGGCGCTGGCCCACGAGCTCGCGGGGGAGGACCAGTTGATCTTCGCCTGCGGCCGTTACGAAGGGATTGACGAGCGGGTTATCGAGTGGGCCGAGGAGCATTTTACAGTCCGGCCCATGAGCCTCGGTGACTACGTCCTGAACGGCGGCGAGGTCGCGGTGCTGGCCATGGTCGAAGCCATCGGCAGGCTGCTGCCGGGCGTTGTCGGCAACCCCGACTCCCTGGTGGAGGAATCCCATTCTGATGGTCTCCTCGAATACCCCGTGTACACGAAGCCGGCCAGCTGGCGCGAACGGGACGTTCCGGCCATCCTGCTGAGCGGCAATCACGGCAAAATCGCCCAATGGCGCCGCCACGAACAATACCGTCGGACGGCGGAACGCCGCCCGGACCTCCTGGAGACGTTCGACGCCGGAAAGCTGCCCCGCGCAGACCGGATATTTCTCGCTGAGCTGGGTTACGACGTCGTGGACGGACGCCTCCGTCCCCGCCCTGGCTCCGGCAGTTAAMRIDVVSIFPEYLAPLELSLIGKARQDGLLDLHVHDLRNFTTDKHRSVDDTPYGGGAGMVMKAEPWAQALASVAEARPAEGVGKPVLIVPSPAGERFTQALAHELAGEDQLIFACGRYEGIDERVIEWAEEHFTVRPMSLGDYVLNGGEVAVLAMVEAIGRLLPGVVGNPDSLVEESHSDGLLEYPVYTKPASWRERDVPAILLSGNHGKIAQWRRHEQYRRTAERRPDLLETFDAGKLPRADRIFLAELGYDVVDGRLRPRPGSGSPGPT0007595_13DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
D1-29_02947546rimMCOG0806Ribosome maturation factor RimMATGCAGCTTCAGGTGGCACGAATCGGCAAACCCCACGGCATCCGTGGGGAAGTGACGGTCCAGGTCTTGACTGACGCCCCGGCTGACCGGTTCGTGCCGGGAACCGAGTTCGTCGTGGAGCCCGCCTCCGTGGGCACGCTCACGGTGGAGAGCGCGCGCTGGAACAAGGACATCCTGCTGCTGGCATTCGACGGGATCGAAACCCGGAACCAGGCGGAAACCCTCCGCGGCGCCAAGCTCTTCATCGAGACCGAAGAATTGGACGAGGACGACGACGAAGGCTGGTACGAGCATGAACTTGTCGGACTGGAAGCGCGTGTAGGCTCCCGCGTGGTGGGAAAGGTCTCCGGCCTGCACACCATGCCCGTGCAGGATCTTCTGGTGGTCGAAACACCCGACGGCAAGGAGGTCCTCATCCCGTTTGTTGAGCAGATTGTCCCCGAGGTCAACGTCACCGAAGGATTCGTCCTGGTGACTCCGCCGGAAGGGCTCTTCGACGTCAACGCCGAGGACACCGAAGGCCGCGCGCCGGGGGAAAACGGCTAGMQLQVARIGKPHGIRGEVTVQVLTDAPADRFVPGTEFVVEPASVGTLTVESARWNKDILLLAFDGIETRNQAETLRGAKLFIETEELDEDDDEGWYEHELVGLEARVGSRVVGKVSGLHTMPVQDLLVVETPDGKEVLIPFVEQIVPEVNVTEGFVLVTPPEGLFDVNAEDTEGRAPGENGNANANANANA
D1-29_02948243hypothetical proteinTTGCTGGCAGAAGCGCTCGAACACCTGGTCCGCGGAATCGTTGATTCCCCGGAGGACGTCAAGGTCAGCTCGAAGAACAACCGCCGCGGGGACACCCTCGAGGTACGCGTTCATCAGGATGACCTCGGACGGGTGATCGGCCGCCAGGGCCGCACGGCACGCGCATTGCGCACCGTCGTGGCGGCATTGGCAGGCGGCGAACCGGTCAGGGTCGACGTCGTCGATACCGACCGCCGCCGCTAGMLAEALEHLVRGIVDSPEDVKVSSKNNRRGDTLEVRVHQDDLGRVIGRQGRTARALRTVVAALAGGEPVRVDVVDTDRRRNANANANANA
D1-29_02949414hypothetical proteinGTGGCCGTAAAGATTCGCCTTAAGCGCTTTGGCAAAATGCGCGCACCGTACTACCGCATCGTCGTCATGGACGCACGCTCCAAGCGTGATGGACGTGCCATCGAAGAAATCGGCAAGTACCACCCCACCGAAGAGCCCTCATACATCGAGGTCGACACGGACCGTGCCCAGTACTGGCTCGGCGTCGGCGCACAGCCGTCCGAGCAGGTTGCCGCGATCCTCAAGATCACCGGTGACTGGCAGAAGTTCAAGGGCCTGCCGGGCCAGGAGGGCACCTTGAAGACCAAGGTCGCCAAGCCTGCCTTCGTTACCCCTGAAAAGGGTTCTGTGATCATCCCGGAAGCCATCACCAAGAAGGCTAAGAAGGACGAAGCCCCGGCCGAGGCCGAAGCAGAGACCACCGAGGCTGAGTAGMAVKIRLKRFGKMRAPYYRIVVMDARSKRDGRAIEEIGKYHPTEEPSYIEVDTDRAQYWLGVGAQPSEQVAAILKITGDWQKFKGLPGQEGTLKTKVAKPAFVTPEKGSVIIPEAITKKAKKDEAPAEAEAETTEAENANANANANA
D1-29_02950450hypothetical proteinATGGGCTTTACCGAACTGTTTGTGGCAACCCACGACGCCGCGCTTAAGCGCGCGCGCGACCTGGACGAGCGGGGCGCCTCCACGGGTTCGCCCTCCGGGCAGGGCCTGCGGATTCCCGACATCAGCGATTTCGAAATCGAACAGCTGGGCGATCTCGCCGGAGCCGCCGTGCATGCCGGAGGGGCGGACTACGAACTGGCCATGGTGGACGTAGCCAGTGACTCGCTGCTGGGGGTTCCGCCGGCGATGGTACGGGCGCTCGCGGATCTGCTTAGTTACGAGACCGAAGGCGAGGGCAACGTCCTGGACGACGTCGCCGAAAAATGGGCGGCCCAGGACGACATGCCGTTCGGGGCCGACGACGCCCGCAAGTACGTTCAGCAGCTTGCCGAGCTGGCCAGCGGAATCGACGACACGGACCGCACCGGACTGTACGTCTGGTCCTCCTGAMGFTELFVATHDAALKRARDLDERGASTGSPSGQGLRIPDISDFEIEQLGDLAGAAVHAGGADYELAMVDVASDSLLGVPPAMVRALADLLSYETEGEGNVLDDVAEKWAAQDDMPFGADDARKYVQQLAELASGIDDTDRTGLYVWSSNANANANANA
D1-29_02951876catECOG2514Catechol-2,3-dioxygenaseATGACTGCAGAAGCCGCCAGCCAGGATCTTCTTCCTGCCAGCCTCACCATGGGCACCGTGATGCTCAAAGTGGGCGACATGAAACTCATGACCGACTACTACCAGCGTGCCCTCGGGCTTGAGGTGGTGGCCGAACAGGACGGCGGCCTTTACCTGGGCCGGCTCGGCAAGCCGCTGGTGCACCTCGCCCCCGCACCAGGCTTGAATCTTCCGGGCAGGGGAGAGGCCGGCCTGTTCCACACAGCGCTGCTCTTCGATGACCAGCCTTCGCTCGCTGCCACCGTGGCCACGGTGGCGCAGTATGACCCCCGGTCCTTCACCGGCAGCGCCGACCACCTGGTCAGTGAGGCCTTCTACTTCAACGACCCCGAAGGCAACGGCATCGAGCTTTACTGGGACCGCCCGCGTGAGCGGTGGTCCTGGAACGGCAAGGACGTGGTGATGGACAGCCTCGCCCTGCCGCCGCAGCGGTACCTGCAGGAGCACCTGACCCAGGAGTCAGTGGACAGCCAGCTGGGCGCCGCGGCGGGCGTGGGCCATGTCCACCTCCAGGTGGGGGACGTCCAGACGGCCCACAACTTCTACGTTGGTACCCTCGGATTTGAAAAGACCGCGGGCTGGCACGGCCAGGCACTGTTTGTCTCCGCCGGCCGCTACCACCATCACATGGCCATGAACGTGTGGAACAGCCGTGGCGCCGGTCCCCGGCGGGACACGCTGGGCCTGGGCGAAGTGCTGATCGAAGTCCCCGCAGGTGACGACGTCGGCGCCCTCGCCGACCGTCTCAAGGTTGCCGGAGTCGCCGCCCACCACACGGGCGCGGAGCTGCGCTTTGAGGACCCGTGGCGCAACAGGATCCGCGTCGGCGTCCGCTGAMTAEAASQDLLPASLTMGTVMLKVGDMKLMTDYYQRALGLEVVAEQDGGLYLGRLGKPLVHLAPAPGLNLPGRGEAGLFHTALLFDDQPSLAATVATVAQYDPRSFTGSADHLVSEAFYFNDPEGNGIELYWDRPRERWSWNGKDVVMDSLALPPQRYLQEHLTQESVDSQLGAAAGVGHVHLQVGDVQTAHNFYVGTLGFEKTAGWHGQALFVSAGRYHHHMAMNVWNSRGAGPRRDTLGLGEVLIEVPAGDDVGALADRLKVAGVAAHHTGAELRFEDPWRNRIRVGVRPGPT0005050_292DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-CATECHOL_RESISTANCE,PGPT0005050-catE-K07104NANA
D1-29_029521083COG1228putative proteinATGGCCGGAGTCATTGAATTCAGTGGAACCGTTCTCACCGGACCGCACCAGGAACGCCACGGATTGTGGTCGGTGGATGGCAGGCTGACCTTCCACCGTCCCCAGAGAGTTCCGGACACGGTCCGGCCAGGCTGGGTGCTTCCAGGGTTTGTGGACGCGCACTGCCATATCGGCTTGGGCGGGGGCGGTGCCGTGGCGGACGAAGTTGCCGAAGAACAGGCCCGCACCGACCGCGACGCCGGGACACTCCTGCTGAGGGATGCCGGCACCGTCAGTGATACGCGCTGGCTGCAGGGAAAGCCCGGCATGCCCAGGATTGTCCGGGCGGGCCGCCACATCGCACGGACAGGCCGCTATCTGCGGAACTTCGCCGTCGAAGTGGAGCCAGAAGGGCTTGCAGAGGCGGTCCGCAAGCAGGCCCGTGCCGGCGATGGCTGGGTCAAGCTGGTGGCGGACTGGATCGACCGTGGTGCAGGTGACCTGGCGGCGTCGTTCCCTCCCGCCGTCGTCAAACTTGCCGTTCAGGCGGCGCACGAGGAGGGCGCCCGGGTGACAGCACACTGCTTCGCGGAAGAGACCCTGGACCACCTGCTGGATGCAGGGATCGACTGCATCGAGCATGCCACCGGGCTCCTGCCAAGGCACCTCCCCAGGTTGGTTGAACAGGGCGTCCCCATCGTGCCGACGCTCATCAACATCGCCACCTTCCCGGGGATCGCTGACCAGGCTGAAGCAAAGTTTCCGCAGTATTCCGCCCACATGCGGGCCCTCTGGGAGCGAAGGGCAGAACGGGTCCTTGAAGCGTTCGAGGCCGGGGTCCGGATTTATGCGGGCACGGACGCCGGAAGCGTCATCAGGCACGGACGGATCGCGGACGAGATCCTGGCGCTCCATGCAGCGGGACTTCCCATGGCTTCCGCCCTCGACGCCGCCTGCTGGAGTGCCCGGACCTGGCTGGGGGCGAACGGTATTTCGGAGGGCGCGCCTGCGGACGTTGTGCTCTGCCGGGAGGATCCGCGGACCATGCCGGAAACTGTTGCCAGGCTCCAGAATGTGGTGCTGGGCGGGCATCTTATCCGCTGAMAGVIEFSGTVLTGPHQERHGLWSVDGRLTFHRPQRVPDTVRPGWVLPGFVDAHCHIGLGGGGAVADEVAEEQARTDRDAGTLLLRDAGTVSDTRWLQGKPGMPRIVRAGRHIARTGRYLRNFAVEVEPEGLAEAVRKQARAGDGWVKLVADWIDRGAGDLAASFPPAVVKLAVQAAHEEGARVTAHCFAEETLDHLLDAGIDCIEHATGLLPRHLPRLVEQGVPIVPTLINIATFPGIADQAEAKFPQYSAHMRALWERRAERVLEAFEAGVRIYAGTDAGSVIRHGRIADEILALHAAGLPMASALDAACWSARTWLGANGISEGAPADVVLCREDPRTMPETVARLQNVVLGGHLIRNANANANANA
D1-29_02953501hypothetical proteinGTGACTGACTCGAATGAGGCACACCGGATCAGGCCTGCGGAGCCAGATGATCTGGGTTGCTTGCCACAGCTGGAAGCCGCGGCCGATGCACAGCTTCAGGACGCGCTGGGCGGAGTTCTGCTTCCGGCGCCGCAGCCAACCCCGGCCGTTGTTTCGCTGTTTGTCCTAGTAGCGGGACGTCCGCCGGTTGGATTTGCCCGCATCGATATGGTGGATGGCCTGGCTCATCTCGAGCAGCTTTCGGTCCACCCGGCGGCTGGCAGGCGGGGCCTCGGCAGGGCATTGCTTGAAGCCGCCGCGGCTGAAGCACGGCGCCGGGGGTTCACGGCGATGACGCTGTGTACCTTCACTGACGTTCCCTTCAATGCCCCGTTCTACGCCAAGTGCGGCTTCATCGAATATCCTGCTCCAGGGCCCGGCCTTGCCGCTCTCCGGGCCCACGAAAAGCGACTCGGGCTTGACGCCCTGGGTCCGCGGCTCACCATGAGGAGGGAACTCTAGMTDSNEAHRIRPAEPDDLGCLPQLEAAADAQLQDALGGVLLPAPQPTPAVVSLFVLVAGRPPVGFARIDMVDGLAHLEQLSVHPAAGRRGLGRALLEAAAAEARRRGFTAMTLCTFTDVPFNAPFYAKCGFIEYPAPGPGLAALRAHEKRLGLDALGPRLTMRRELNANANANANA
D1-29_029551899thiCCOG0422Phosphomethylpyrimidine synthaseATGCCGGCGAAGGAAGTGAGTATTCCCGTGAATACGCAAGAAAAACTGCTGCCCCCTGCCCAAAACGAAACGGCCGGCCCCAAAACCGGCACGAAAGAGGGAGACCAATCCCGGCACGCTGACACGCAGTCGCTGAAGTCGCATTCGCTGGCTTTCATCAAGGACGAAGCCTCGGGAATCCAGGTTCCCGTGACGGAGATTGCCTTGGAGCCCTCCCCTAACGGCCAGGCGAACAGTCCGTTCAGGATCTACCGGACCGCCGGCCCGGGCAGCGATCCGGTGGTTGGCCTGGCGCCGTTCCGCTCCCCCTGGATCAGCGAACGGGGCGACACCGAGCCGTACAGCGGCCGGGAGCGGAACCTGCTCGACGACGGCCGTTCAGCCGTCCGCCGCGGAGCAGCTTCAGCGGAGTGGAAGGGAGCGCAGCCCGAGCCCCGCCGCGCCGTCGCCGGCCGGACGGTGACCCAGATGCATTATGCAAAACAGGGCACCATCACTCCGGAGATGCGGTTCATCGCCCTCCGCGAGAACTGCGATGTGGAGCTGGTGCGCAGCGAGGTTGCGGCCGGACGCGCGATTATCCCGAACAACATCAACCATCCGGAGTCCGAGCCGATGATCATCGGCAAGGCCTTCCTGGTGAAAATCAACGCCAACATCGGCAATTCCGCTGTCACCAGTTCCATCGCTGAGGAGGTGGACAAGCTGCAATGGGCCACCCAGTGGGGCGCAGACACCGTGATGGACCTGTCCACCGGGGATGACATCCACACCACCCGTGAATGGATCATCCGCAACTCTCCGGTTCCGATCGGCACGGTGCCGATTTACCAGGCGCTGGAGAAGGTCAACGGTGAAGCGAATGCACTGACGTGGGAGATCTTCCGCGACACCGTCATCGAGCAGTGCGAACAGGGGGTGGACTACATGACCATCCACGCCGGGGTTCTGCTGCGGTACGTTCCCCTGACCGCCAACCGCGTGACAGGGATTGTGTCCCGCGGCGGTGCCATCATGGCGGGCTGGTGCCTGGCACACCATCAGGAGAACTTCCTCTACACCCACTTTGACGAGCTCTGTGAGATTTTCGCGAAGTACGACGTCGCGTTCTCCCTGGGCGACGGCCTGCGGCCGGGAGCGACGGCGGACGCCAACGACGCGGCGCAGTTTGCCGAACTGGACACCCTGGCGGAGCTGACCCAGCGGGCCTGGGAGTTCGATGTGCAGGTGATGGTGGAGGGCCCCGGCCACGTGCCGTTCCACCTGGTCCGCGAGAACGTGGAACGCCAGCAGGAACTCTGCAACGGTGCGCCGTTCTATACCCTTGGCCCCTTGGTCACTGACGTTGCCCCGGGCTATGACCACATCACCTCAGCCATCGGGGCCACGGAAATTGCCCGCTACGGAACGGCAATGCTCTGCTACGTCACACCCAAGGAGCACCTGGGACTGCCGAACAAGGACGACGTCAAGACCGGCGTGATCACCTACAAGATCGCCGCCCACGCGGCAGACCTCGCCAAAGGGCACCCCGGCGCCCACGAACGGGACGATGCCCTGTCCAAAGCCAGGTTCGAGTTCCGTTGGCGTGATCAGTTTGCACTGTCGCTGGACCCCGTCACGGCGGAGGCTTTCCATGACGAGACCCTGCCGGCTGAACCGGCCAAAACGGCACACTTCTGCTCCATGTGCGGCCCCAAGTTCTGTTCCATGAGGATCAGCCAGGACATTCGGGATGAATACGGCAGCAGTGACTATGCTTCCGGCGACTCCCCGGACACCCCGCAGGCGGAGGCCGCGATTGCTGCCGGAATGCGGGAAAAGAGCCAGGAGCTCCTCGCCGCCGGAGGCAAGGTGTACCTGCCTGAGCTGCGGCTCCCCGAAAGCGCCCGCCACTAGMPAKEVSIPVNTQEKLLPPAQNETAGPKTGTKEGDQSRHADTQSLKSHSLAFIKDEASGIQVPVTEIALEPSPNGQANSPFRIYRTAGPGSDPVVGLAPFRSPWISERGDTEPYSGRERNLLDDGRSAVRRGAASAEWKGAQPEPRRAVAGRTVTQMHYAKQGTITPEMRFIALRENCDVELVRSEVAAGRAIIPNNINHPESEPMIIGKAFLVKINANIGNSAVTSSIAEEVDKLQWATQWGADTVMDLSTGDDIHTTREWIIRNSPVPIGTVPIYQALEKVNGEANALTWEIFRDTVIEQCEQGVDYMTIHAGVLLRYVPLTANRVTGIVSRGGAIMAGWCLAHHQENFLYTHFDELCEIFAKYDVAFSLGDGLRPGATADANDAAQFAELDTLAELTQRAWEFDVQVMVEGPGHVPFHLVRENVERQQELCNGAPFYTLGPLVTDVAPGYDHITSAIGATEIARYGTAMLCYVTPKEHLGLPNKDDVKTGVITYKIAAHAADLAKGHPGAHERDDALSKARFEFRWRDQFALSLDPVTAEAFHDETLPAEPAKTAHFCSMCGPKFCSMRISQDIRDEYGSSDYASGDSPDTPQAEAAIAAGMREKSQELLAAGGKVYLPELRLPESARHPGPT0008905_1943DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0008905-thiC-K03147NANA
D1-29_02956735hypothetical proteinATGTTCAAGCAGAGGGTAGTGTTCGTCCACGGCGCCGGAAGCTTCGGCGCGGCGGCATGGCCCCGCCAGCACGGCATGGCACTGACCTATGACGCCCTGTTCCTCCGCCGGCACGGATTCGATCCCGTGGCCGAACCTGTTGAATCGTCCTTCACAGCCGATGCCGCCATTGTCCTGCGCTCCCTGGCTGATGACGGCCGGGGCGCTGCCGGCGGCCACGTTGTGGCGCATGCCCAGGGCGCCATTTCAGCCATGCTGGCCGCCGTCGAACGCCCGGACCTGGTGTTATCGCTGACCCTCGTGGAGCCCGCCTGCCTGTCCCTCACCGCCGAACTGCCCGCCACTGCGGCACACCGCGAACTGATGCAGCCGCTCTTTGATGTCCGCCACCAGCTTGGGGATGAGGACTTCCAGCGGGAGTTCGTCCGGCGGGTGTACGCGGCGGATCTGCAGGAGCCTGCCACCGTGGAGGAAAAACGGTCGGCGCGCCGGCTCCGGCTGCAGGCCCCGGCCTGGGAAGCTCCGCTGCAGATTGTTCCCGGTGTTCCCACGCTGGTCCTGACCGGCGGCTGGGAACCCCTCTACGAAGAAATCGCCAGGTACCTCAGGGAGACCGGCGCCCTGCACCGCCATGCCGCGGGCGGGCACCGGCCACAGGATTCCGCCGAGGGTGACCACTGCATCCGTTCGTTCATTGCCGAGGCGAGCCGGCGCCTGCAGCCCCGGGCGTCTTAAMFKQRVVFVHGAGSFGAAAWPRQHGMALTYDALFLRRHGFDPVAEPVESSFTADAAIVLRSLADDGRGAAGGHVVAHAQGAISAMLAAVERPDLVLSLTLVEPACLSLTAELPATAAHRELMQPLFDVRHQLGDEDFQREFVRRVYAADLQEPATVEEKRSARRLRLQAPAWEAPLQIVPGVPTLVLTGGWEPLYEEIARYLRETGALHRHAAGGHRPQDSAEGDHCIRSFIAEASRRLQPRASNANANANANA
D1-29_029571581ffhCOG0541Signal recognition particle proteinGTGTTCAATTCACTCTCTGACCGGTTGACAGCAACCTTCAAGAATCTCCGTGGCAAGGGCCGCCTCACCGAGGCCGATGTCGACGCCACAGTTCGCGAGATCCGCCGCGCCCTCCTGGATGCCGACGTTGCCGTTCCGGTGGTGCGTGAATTCACCGGCCGGGTACGGGAACGCGCCCTGGGTGCAGAGGTTTCCGGGGCCCTGAACCCCAGCCAGCAGATCGTCAAGATCGTTAATGAGGAACTCGTTGAGATCCTCGGCGGCGAGACCCGCCGCATCCGGCTGGCCAAGAACGGGCCCACCATCATCATGCTCGCCGGCCTCCAGGGCGCCGGCAAGACCACCCTTGCCGGCAAGCTGTCCAAGTGGCTGAAGTCCCAGGGACACAGCCCCATCCTCGTGGCCTGCGACCTCCAGCGCCCCAATGCCGTCACCCAGCTCCAGGTAGTGGGCAAGCGCGCCGGCGTGCCGGTCTTCGCCCCGCACCCCGGCGCCACGTCCGAACTCGAGCATCCCGCGGGCGATCCTGTCGCCGTCGCCCGTGCAGGTGTTGAGGAAGCACGCCAGAAGCTGCACGACGTCGTGATCGTGGACACCGCCGGCCGTCTCGGTGTGGATGCCGAGATGATGGAGCAGGCGCGCCAGATCCGCAAGGCAATCGTCCCCAACGAAGTACTCTTCGTCATCGACGCCATGATCGGCCAGGACGCGGTCAACACCGCGATGGCCTTCGATGAAGGCGTCAACTTCACCGGCGTTGTGCTGTCAAAGCTCGACGGCGACGCCCGCGGCGGTGCCGCGCTCTCCGTTGCGTCCGTGACCGGCAAGCCCGTGATGTTTGCGTCCACCGGCGAAGGCGTGGACGACTTCGAACTCTTCCACCCGGACCGGATGGCCTCACGCATCCTGGACATGGGCGACGTCCTGACGCTCATCGAGCAGGCCGAGAAGTCCTGGGACAAGGACGAAGCCGCCCGGATGGCGAAGAAGTTCGCCGACCAGGAGGACTTCACCCTTGATGACTTCCTGGCCCAGATGCAGCAGATCCGCAACATGGGCTCCATGAAGAAGATGCTGATGATGATGCCTGGTGCGCAGAACATCCGCCAGCAGCTTGAGCAGTTCGACGAACGCGAGATCGACCGGGTCGAGGCCATCGTCCGCTCCATGACGCCGCACGAGCGCGTCGCCCCGAAGATCATCAACGGCTCCCGCCGCGCCCGCATCGCCCGCGGTTCGGGTGTGCATGTTTCAGAGGTCAACGGCCTCCTGGAACGCTTCGCCCAGGCCCAGAAGATGATGAAGAAGATGGCACAGGGCGGCGGCATGCCCGGAATGCCCGGTATGCCGGGAATGGGCGGTCCGGGCGGCGGCAAGAAGGCTGTCAAGAACGCACCGAAGAAGAAAGCCCGCTCCGGAAACCCGGCCAAGGCAGCCCAGGAACTCCGGGAAGCTGAAGCACGCCGGGCAGGTGCGGCGAAGGCGCTTCCCACCGGTGCGGCGTTCGGCCAGCAGTCCGGGGACTTCGATCCGTCCCAGCTCAACCTGCCCAAGGGCTTCGACAAGTTCCTCGGCAAGTAAMFNSLSDRLTATFKNLRGKGRLTEADVDATVREIRRALLDADVAVPVVREFTGRVRERALGAEVSGALNPSQQIVKIVNEELVEILGGETRRIRLAKNGPTIIMLAGLQGAGKTTLAGKLSKWLKSQGHSPILVACDLQRPNAVTQLQVVGKRAGVPVFAPHPGATSELEHPAGDPVAVARAGVEEARQKLHDVVIVDTAGRLGVDAEMMEQARQIRKAIVPNEVLFVIDAMIGQDAVNTAMAFDEGVNFTGVVLSKLDGDARGGAALSVASVTGKPVMFASTGEGVDDFELFHPDRMASRILDMGDVLTLIEQAEKSWDKDEAARMAKKFADQEDFTLDDFLAQMQQIRNMGSMKKMLMMMPGAQNIRQQLEQFDEREIDRVEAIVRSMTPHERVAPKIINGSRRARIARGSGVHVSEVNGLLERFAQAQKMMKKMAQGGGMPGMPGMPGMGGPGGGKKAVKNAPKKKARSGNPAKAAQELREAEARRAGAAKALPTGAAFGQQSGDFDPSQLNLPKGFDKFLGKPGPT0025750_564DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106NANA
D1-29_029581407zwfCOG0364Glucose-6-phosphate 1-dehydrogenaseGTGACGAGCCAAACAACTGTAAAAACCCTGCTCATCCTCGGCGCTTCAGGCGACCTGACCGGAAGGCTGCTCCTGCCCGGCCTCGCCCGCCTGCTGGCGAGCGGCCGTGCCGGAGGCCTGAACCTGGTGGGGGCCGGCTCCGACCCCTGGACTCCGGAACAGTGGCGGGACCGGGTCCACAACGCCTTCGCGGAGGCAGCGGGGTCCGCGGACGAGGCGGGGCAGAGGGCCCTGGCGGCCATCGAGAAAGAAACCACCTACCACCAGGTGGACGTCACCGCGGAGGGTCCGCTGGCCTCGCTGGTGGCGGGCCTGGACGGTCCCGCCGCAGTTTACTTCGCCCTGCCGCCGCGGGTCAGCCAGCTTGCCTGCGAGGCGCTGCGGCGCGGCGGCCGGCTGCCGGCAGGCACGCGCCTGGTCATGGAGAAGCCCTTCGGATCGGGTGAGGCATCGGCCCGTTCCCTCAACGAGACCCTGGCGTCCCTGGTGCCTGAAGACCACATCCACCGGGTGGACCACTTCCTGGGCAAAGCCACGGTGCTCAACATTCTGGGCCTTCGGTTTGCCAACAACTTCCTGGAGCCGGTCTGGAACAGGGAGCACGTAGAGAAGGTGGAAATCATCTTCGACGAAGACCTGGCCCTCGAAGGACGCGCCCGTTACTACGACGGCGCCGGGGCCTTGAGGGACATGATCCAGAGCCATCTCCTGCAAATCATGGCACTGATGGCCATTGAACCGCCGGCCACCATCGGCGAGCGGGACCTGCGGGACGCCATCTCCACCGTGCTCCGCGCCAGCAGTATCAGCGCCCCCTACGCAAAATCCACCCGCCGGGCAAGGTACACGGCGGGCACTGTCTCGGGGCGGAAAATCCCCGATTACGCCGACGAAGAGGGTGTGGACGCGGCCAGGGGCACCGAGACCCTGGCCGAAGTCCAGGTGGAAATCAACAACTGGCGCTGGAAAGGCGTTTCCTTCATCCTGCGCTCCGGGAAAGCCCTGGGCCGGAAGCGCAAGGAGGCAGTGGTCACCTTCCGCCCGGTCCCCCACCTGCCGGCCGGGTTCACGGGCGTGGACTCGCCCAACCAGCTGCGAATCGGCTTCGGCCCGGACACGCTGCAGTTCGACGTCGATGTGAACGGCCCCGGCGACATTTTCAGCCTGGGCCGCACCACCCTCAATGCCGAGCTCAGCGCCTCCGATCTCCTCCCCTATGGCGAAGTGCTGGAGGGCGTGCTGAGTGGAGACCCGCTGCTGTCCGTCCGCGGTGACACCGCAGAGGACTGCTGGCGGATCGTTGAGCCCGTCCTGAAGGCCTGGTCGCGGGGCACGGTACCGCTGGAGGAGTACGACGCCGGGTCCGCGGGGCCGGCGGGCTGGTCAGGTTCAGCAGAACAGGACTGAMTSQTTVKTLLILGASGDLTGRLLLPGLARLLASGRAGGLNLVGAGSDPWTPEQWRDRVHNAFAEAAGSADEAGQRALAAIEKETTYHQVDVTAEGPLASLVAGLDGPAAVYFALPPRVSQLACEALRRGGRLPAGTRLVMEKPFGSGEASARSLNETLASLVPEDHIHRVDHFLGKATVLNILGLRFANNFLEPVWNREHVEKVEIIFDEDLALEGRARYYDGAGALRDMIQSHLLQIMALMAIEPPATIGERDLRDAISTVLRASSISAPYAKSTRRARYTAGTVSGRKIPDYADEEGVDAARGTETLAEVQVEINNWRWKGVSFILRSGKALGRKRKEAVVTFRPVPHLPAGFTGVDSPNQLRIGFGPDTLQFDVDVNGPGDIFSLGRTTLNAELSASDLLPYGEVLEGVLSGDPLLSVRGDTAEDCWRIVEPVLKAWSRGTVPLEEYDAGSAGPAGWSGSAEQDPGPT0017380_5264DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
D1-29_02959339glnBCOG0347Nitrogen regulatory protein P-IIATGAAACTGATCACAGCAATCGTCAGGCCGGAGAAGCTCGAAGCCATCCGGGAAGGCCTGGAGGCATACGGCGTCCAGGGACTGACGGTCAGCGCGGCCAGCGGCTACGGCAGGCAGCGCGGCTACACGGAGGTTTACCGTGGAGCTGAATACAACGTGGACCTCCTGCCCAAGATCCGGGTCGAGGTGCTGGCCACCGACGAGCAGGCCGATGACATCCTGGATGTGATTATCGCCAGCTCCAACACCGGGCGTGCCGGCGACGGCAAGGTCTGGACCGTGGATGTTTTCGAAGCAGTGAGGGTGCGTACGGGAGAACGCGGCACCGCCGCCATCTAGMKLITAIVRPEKLEAIREGLEAYGVQGLTVSAASGYGRQRGYTEVYRGAEYNVDLLPKIRVEVLATDEQADDILDVIIASSNTGRAGDGKVWTVDVFEAVRVRTGERGTAAIPGPT0000650_716DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000650-glnB|glnY-K04751NANA
D1-29_029601365amt_1Ammonia channelATGGAACTTACCGCAGGTCACGTATGGCTCATGGTGGCGGCGGCACTCGTGCTGTTCATGACACCGGGTCTGGCATTTTTCTACGGCGGCATGACGCGCGCCAAAGCGGCACTGAACATGATGATGATGAGCTTCATCTCCATCGGCATCGTGAGTGTTGTCTGGGTGCTCTGGGGTTACTCCATGACTGGCGGTGAAGGCTTCCTGCAGATGGTCGGGAACCCCTTCGCGAGCTTCGGCCTTGAGGGCGTCAACACGGCAGAGTCGCCGGAAGGCCTCATCCTTGTGGGCTACGGCGCAACCTTCGCCATCATCACCGTGGCCCTCATCAGCGGTGCCATCGCGGACCGCGCCAAGTTCGGCGCCTGGACCGTGTTCGTGCCGGTATGGGTAACACTTGTCTACTGCCCGCTGGCCTACATGGTCTGGGGCGGCGGCCTCTTCGGTGCGGAAGGCGCTATCGGCCAGGCCCTCGGCCCGGCCATCGACTTCGCCGGCGGTACCGTGGTCCACATCAACGCTGGTGTGGCCGCGCTGATCCTCGTCCTGATCATTGGCAACCGTAAGGGCTTCGGCAAGGACCCGAACCACCGCCCGCACAACATCCCGTTCGTCATGCTCGGCGCGGCCATCCTCTGGTTCGGCTGGTTCGGCTTCAACGGCGGCCTGGCCGCTACCGCTGAGCAGGGTGGCCTGATCTGGGTCAACACCCTCGCAGCACCTGCCGCAGCCATGATCGGCTGGCTCATTACCGAACGAATCCGCGACGGCCACCCGACGTCCCTGGGCGCAGCCTCAGGTGTGGTCGCCGGTTTGGTTGCCATCACCCCCGCCTGTGCAAACGTCAGCCCCCTGGGTGCCCTCGGTCTGGGCCTCATCGCCGGTGCAGCATCGGCCCTCGCAGTCGGACTCAAGTTCCGCTGGGGCTTCGATGACTCCCTGGACGTTGTGGGTGTCCACCTTGTGTCCGGCATCATCGGCACCGTAGCCCTTGGCTTCATCGCACTGCCTGAGGAAGGCGTCGGCGGCGGCCTCTTCTACGGCGGCGGCTTCACCCAGCTCTGGGCCCAGCTCGCAGCAGCCGGCATCGCCATCGCGTACTCTGCGATCCTGACGGCCCTGATCGCCTACGCCATCCACAAGACCATGGGCTTCCGCGTTTCGCAGGAGCAGGAAGCGGTTGGCGTTGACCTTAGCCTGCACGCAGAGACCGCCTACGAGTTTGGTGTTGGCGGCCACGGCGGAAGCTTCCAGCCGCTGCACGAACTGATCACCGGCAAGGCACAAGAGGCCGCACCGTCTGAGGCCAAGACTGACGCCAACAAGACGGAGCCGGCAGCAGGCAAGGAAAGCGTGGGGGCATGAMELTAGHVWLMVAAALVLFMTPGLAFFYGGMTRAKAALNMMMMSFISIGIVSVVWVLWGYSMTGGEGFLQMVGNPFASFGLEGVNTAESPEGLILVGYGATFAIITVALISGAIADRAKFGAWTVFVPVWVTLVYCPLAYMVWGGGLFGAEGAIGQALGPAIDFAGGTVVHINAGVAALILVLIIGNRKGFGKDPNHRPHNIPFVMLGAAILWFGWFGFNGGLAATAEQGGLIWVNTLAAPAAAMIGWLITERIRDGHPTSLGAASGVVAGLVAITPACANVSPLGALGLGLIAGAASALAVGLKFRWGFDDSLDVVGVHLVSGIIGTVALGFIALPEEGVGGGLFYGGGFTQLWAQLAAAGIAIAYSAILTALIAYAIHKTMGFRVSQEQEAVGVDLSLHAETAYEFGVGGHGGSFQPLHELITGKAQEAAPSEAKTDANKTEPAAGKESVGAPGPT0000840_3203DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
D1-29_029611239tetATetracycline resistance protein, class BATGACTGCCACAGCCCGTGTGAGCGGCGCCACAGCGCGGATTTTCGCCATCCTGCGCCCGCAGCGGGCAAAGCTGCCGCGCGACATCAAGGTGATGCTGGTTGCAGCGTTCCTGATTGCCCTTGGATTCGGGCTTGTTGCACCCGTGTTGCCGCAATTCGCCACAACCTTTGATGTGGGTGCCACCGCAGCGGCGGTCATCGTGAGCATCTTTGCCATGATGCGCCTGGTGTTCGCGCCGGCCGGCGGGGCCCTGATCGGCCGGCTTGGCGAAAGGCCGGTCTACGTGGGCGGGCTGCTGATTGTGGCGGCTTCAACCGCGGCGTGCGCCTTTGCCCAGGACTACTGGCAGCTGCTGGTCTTCCGTGGCCTTGGCGGAGTGGGCTCGGTGATGTTTACCGTGGCCTCCATGGCGCTGGTGGTCCGGCTGGCTCCGCCTGAAAGCCGCGGCAGGGTGTCCGGGGCGTATGCGAGCGCCTTCCTGATCGGCAACGTGTGCGGTCCTATCGTGGGCGGCATGCTGGCAGGATTCGGCCTGCGCGTGCCTTTCCTGGCTTACGCGGCGGCCCTGGTGCTGGCGGCAGCCGTGGTCCAGACCCAGCTCAGCCACCGGCCCGCAGGTACCGGGGCTTCCGGGACCGGGGCGCCGGAGATGCGGTTCGGCGAGGCCCTGAGGGTGGGCGCCTACCGCTCGTCGCTGATCTCCAGCTTCGCCAACGGCTGGGCCACTTTTGGCGTGCGGATGGCCACGGTTCCGCTGTTTGCCGTTGCGGCGCTGGGGTCCGGCCCTGAAGCCGCCGGCCTGGCGCTGGCTGTGTTCGCGGCCGGCAACGCGGTAGCCCTGACGTTCTCCGGACGCCTGGCGGACAGCATGGGCCGCCGCCCCATGATGGTGTCAGGGCTGCTGGTCACCGGAATCTCCACAGCAGCCATCGGATTCACCTCTGACCTGGCGTACTTCCTGGCGGCCTCGGCTGTGGCCGGAATTGGCGCCGGCATCCTGGGTCCGGCGCAGCAGGCTGCCGTGGCCGACATCATCGGCTCCGAACGCTCGGGCGGGCGGGTGCTCGCTGCCTACCAGATGACTTCCGACATCGGCGCTATTGCCGGCCCTGTCCTGGCCGGCATTCTCGCGGACCAGTTGGGATACGGCTGGGCGTTCGGGGTGACCGGCGGCGTGCTGGTCCTTGCCGCTGCGGCGTGGACCGCCACACCGGAGACGCTGAAGCCCAAGCGCTGAMTATARVSGATARIFAILRPQRAKLPRDIKVMLVAAFLIALGFGLVAPVLPQFATTFDVGATAAAVIVSIFAMMRLVFAPAGGALIGRLGERPVYVGGLLIVAASTAACAFAQDYWQLLVFRGLGGVGSVMFTVASMALVVRLAPPESRGRVSGAYASAFLIGNVCGPIVGGMLAGFGLRVPFLAYAAALVLAAAVVQTQLSHRPAGTGASGTGAPEMRFGEALRVGAYRSSLISSFANGWATFGVRMATVPLFAVAALGSGPEAAGLALAVFAAGNAVALTFSGRLADSMGRRPMMVSGLLVTGISTAAIGFTSDLAYFLAASAVAGIGAGILGPAQQAAVADIIGSERSGGRVLAAYQMTSDIGAIAGPVLAGILADQLGYGWAFGVTGGVLVLAAAAWTATPETLKPKRPGPT0003185_140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003185-blt-K08153NANA
D1-29_029621209ftsYCOG0552Signal recognition particle receptor FtsYGTGAATGACATCCTCCCTATTATTCTGTCCATTGTTGCTGCCCTGGCGGTTCTTGGCGGGCTGATTCCTGTCCTGATGAAGACACGGAAGAACATCACCCAGTACCCCGGCACGCGCGACGCCAATGATCCCGCGACCCAGCAGGGCGGCGGCACGCTGCTGGAGGACGCGCCGCCGGCGACTGTCGAGCGCAAGGCGCCTGCCGGCGTCGACATTGAGGACCTGGAGACTGCTGACGTACCGGATGATGCAGCGGGCCTGGAAACCATCCAGGTTGAAACCCCCCTTCCGGTGGCCGGCCGGCTCACCCGCCTGCGCGAGCGGCTGGTCCGCTCCAACAACATCCTGGGCAAGGGACTCCTGGCCCTGCTGTCGAGCGACAAAATTGATGAAGACGTCTGGGACGAGGTGGAGGAGACGCTGCTGCTGGCGGATCTGGGAACCGAACCCACCATGCAGCTGGTCGACGCCCTGCGGGAGCGCGTGAAGGTGCTGGGCACCCGGACCCCCGAGCAGGTCAAGGCGCTGCTTCGAGAAGAGCTGATCAAGCTCGTGGATCCCACCATGGACCGCCGGCTGCACATTGACCGGCACGCCGCGACGCCCGCAGTCATGATGGTGGTGGGTGTTAACGGGGTTGGCAAAACAACCACCGTAGGCAAGCTCGCCCGCGTCCTGGTGGCTGAGGACAAGGACGTCCTCCTGGGCGCGGCGGACACCTTCCGCGCCGCCGCCGCCGAACAGTTGGCAACGTGGGGCCAGCGCGTCGGGGTCCCGACGGTGAAGTCCGACGTCGATGGCGCCGATCCGGCCTCTGTCGCCTATGAGGCTGTTAAGGCAGGCATCGAGCAGGAAGTCGACGTGGTGATGATCGACACCGCCGGCCGCCTGCAGAACAAGGTGGGCCTGATGGACGAGCTTGGCAAGGTCAAGCGGGTCATCGAAAAGCTCGCCGAAGTGGACGAGGTGCTGCTCGTTCTGGACGCCACCACAGGCCAGAACGGACTGAACCAGGCGCGTGTGTTCTCCGAGGTGGTCAACATCACTGGCATTGTGCTGACCAAGCTGGATGGCACGGCCAAGGGCGGAATCGTTGTTGCCATCCAGAACTCGCTGGGCGTTCCGGTGAAGCTGATTGGCCTGGGCGAGGGCGCCGACGACCTCGCTCCCTTCGAGGCGGAAAGCTTTGTGGACGCGCTGCTGAACTGAMNDILPIILSIVAALAVLGGLIPVLMKTRKNITQYPGTRDANDPATQQGGGTLLEDAPPATVERKAPAGVDIEDLETADVPDDAAGLETIQVETPLPVAGRLTRLRERLVRSNNILGKGLLALLSSDKIDEDVWDEVEETLLLADLGTEPTMQLVDALRERVKVLGTRTPEQVKALLREELIKLVDPTMDRRLHIDRHAATPAVMMVVGVNGVGKTTTVGKLARVLVAEDKDVLLGAADTFRAAAAEQLATWGQRVGVPTVKSDVDGADPASVAYEAVKAGIEQEVDVVMIDTAGRLQNKVGLMDELGKVKRVIEKLAEVDEVLLVLDATTGQNGLNQARVFSEVVNITGIVLTKLDGTAKGGIVVAIQNSLGVPVKLIGLGEGADDLAPFEAESFVDALLNPGPT0025740_2269DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110NANA
D1-29_029633621smc_2COG1196Chromosome partition protein SmcTTGCACCTCAAAAGCCTGACTGTCCGGGGGTTCAAGTCGTTTGCGTCCGCCACGACCTTCGACTTCGAACCCGGCGTCACCGCTGTGGTGGGACCCAACGGCTCAGGGAAGTCCAATGTAGTGGACGCCCTGTCCTGGGTGATGGGGGAGCAGGGGGCAAAGACTCTCCGCGGCGGCAAGATGGAAGACGTCATTTTCGCCGGGACGTCCGGACGCCCGCCCCTTGGCCGGGCCCATGTCTCGCTGACCATCGACAACACCGACGGCGCGCTTCCCATCGAATACAGCGAGGTCACCATCTCGCGCACCCTCTTCCGCACCGGCGGCTCGGAATACGCCATCAACGGGGCCAGCTGCCGGCTGCTGGATATCCAGGAACTGTTGTCCGATTCGGGGCTGGGCCGGGAGATGCACGTCATTGTTGGCCAGGGCCAGCTGGACAAGGTGCTCCATGCCACTCCGGAGGACCGCCGCGGATTCATCGAGGAAGCCGCCGGGATCCTCAAGCACCGGCGGCGCAAGGAAAAGACCGTCCGGAAACTGGAGGCGATGCAGGCCAACCTGCAGCGGCTCAGCGATCTCACCGGGGAAATCAGGCGCCAGCTCACTCCACTGGGAAAACAGGCGGAGGTGGCGCGCCGCGCCCAGCGGGTGCAGTTCGACGTGCGGGATGCCCGGGCCCGGCTTTTGGCCGATGACCTTGTCCAGCTGCAGGGTGCCCTTGACCAGGACGTGGCGGATGAGGCTGCGCTAAAGGCGCGCCGGGGTGTGGTGGAGCAGGAACTTGAGGCAGGGCGCAGGCGGCAAGCGGTCCTGGAACAGCTGGCAGCTGAGGCGACGCCGAGACTCAACGCTGCGCGGGACACCTGGTACCGGTTGTCTGCAGGCCGTGAACGGCTCCGATCCCTGGGTTCCCTTGCCCAGGAGCGGAGCAGATTGCTCGGCTCCGTCAACTCCGAACCCTACTCGGGCCGGGATCCGGAGCAGCTTGAACGGCAGGCTGCCCAGGTGCGGGCAGAATTGGCGGAACTCGAACGCCACATCCTGGACAAACGCAGCGCCCTTGATACGGCAACGGCAGCAAAAATGGAGGCGGAGCAGGCCGCCGTCGCGGAGGAGAAACGCCTCACTGCGGTCCTGCGCGCAGCGGCCGACCGCAGGGAAGGGCTCGCCCGGCTCGCAGGGCAGGTCGGTGCGGCAAGGTCACGGGTGGAATCCGCGCAGGCCGAGCTTGGCAGGTTGAGGGAATCCCTGGCGGCCGGAACCGAGCGCCGCCGGCGGGCGCAGGAGGAGTTCACGGCACTGGAGAGCCAGGTCGCAGGGGTCGAGGAAGGCGAGGAAACCCTCGACGCCGACTACGAGGACGCCAGTGAGGAACTCGACGCCGTGCTCCAGGAGATGAAGGACGCTGCCTCCGCCACGGCTGAGGACGTCCGCGAACGCGATGCCTTGGTGGCACGCAGGGACGCACTGCAGCTTGGACTAAGCCGGAAGGATGGTGCGGAGCATGCGTTGAACTCCGGGCTGTCGGGTGTCGCCGGAACGCTCGCCTCACGGCTCAGCGTTGAGCCGGGATTCGAAACTGCCATTGCTGCCGCACTCGGCGACGCCTCCGAGGCGATAGTGGTGAGGGACCCGGCGGCCGCCGCCGCCGTCGTTCAGCTCCTGAAGGACGACGACGCCGGACGCGCCTCGCTGCTGCTGGAATCGGCAGTTTCGTCCCCAGGACAGAGTGCGGCAGGACAGCGCGCTGAGCAGGAGAACGGCGCGGAGAACGGACCGTTGCCCGCTGGAGCCCAGTGGGCCCTCGACCTCGTCTCAATCTCCGGGGGCGGCGGCAACCCCATCGCTGCCCTGCTCACCGGCGTTGCCGTCGTCGAGGACCTCCAGGCGGCCGGGGCGCTGATTGAAGCCAGGCCGGCACTGACCGCAGTCACCATGGCCGGTGATATTTTCACCGCCCTCACCGTCACTGGTGGTTCCGCGAAGGCGCCCTCGCTCCTGGAGGTGCAGGCCGCCGTCGACGACGCCGAGACCCGGCTGGCCGACGTGACGGCCCGGATTGAACGGAACAGGTTCGCCCTGGCCGGTGCCGAGGCCAGGAAGGCCGCAGCGCAGGAGCGGACGGACGCCGCGCTGGACAGGCTGCACGAATCAGATGCCCGGCTCGCTGCGGTCGCTGAACGGCTCGGTCATCTGAATTCCGTCCTGCGCAGCGCCGTGGGCGAAAGTGACAGGCTGGCCGCCTCCCTGGCCAAGGCGGAGGCCAACGTGGCCACCGAGGAAGAGGCGCTCGCGGCCATCGCAGCGCGGCTCGCAGCCGCGCAGGAGGCTCCCCTGGAGGAGGAACCCTCCACCGGGCACAGGGATGCCCTGGCTGCAGCTGCCGCCCTGGCCCGCTCGGCCGAGATGGAGGAACGGCTGGCGCTGCGGAGCGCGGAGGAGCAGCTGACGGCCACCAGGAACCGGGCCGCCTCCCTGGAACGCGCGGCTGCCACCGAACGCCGCGCCCGGGAGGAGGCAGCAGAGCGGGCGCGCCGCCGCCAGGTCCAGGCGCGGCGGGCAGCGGCAGTGTCGGCTGCTGTCGGGCGAAGCCTCCGGTTCATCGACGTGTCTGTGGAGCTGGCCCGGCATGAACGCGACCTGGCAGAAGAGAACCGGGAAGAGCGGGACCGCGGGCTGGTGGAAACACGGACAGCCAATGACGCCCTCGCCGGCGAACTCGCGGAGCTGACCGACTCGGTCCACCGCGATGAACTTGCCCGTGCCCAACAGCGGGCCCGGATCGAAGCCCTGGAAACCCGCTCCGTCGAGGAACTGGGCATCACCCCGGACATGTTGGTGGCCGACTACGGACCAGACGTACCCGTGCCTGTTCCGGCGGAAGAAAACGCAGACAAGTGGGCGGCCCTCCGGGCGCCGGTTGACGACAGCGGCGCGCCCGTGGTTGAGGGCAGGCCCTTCGTCCGTGAGGAGCAGGAGAAGCGGCTCCGGAAGGCCGAGCGTGACCTCGCCAGCCTTGGCCGCGTGAATCCCCTGGCTCTGGAAGAATTTGCCGCCCTCGAGGAGAGGCACCAGTTCCTCAGCACCCAGCTGGAAGACCTGAAGGCCAGCCGCAAGGACCTGCTGGACATCATCAGGGAAGTTGATGACCGCGTCCAACGGGTCTTCGCCGAGGCGTTCGAGGACACCCAGACGCAGTTCGTCCGGGTCTTCGCGAGGCTCTTCCCCGGCGGGGAGGGCCGCCTTGTCCTGACTGACCCGTCGGATATGCTCACCACCGGCATCGAGGTGGAGGCGCGGCCCGCCGGCAAGAAGATCAAGCGGCTTTCACTGCTGTCCGGCGGGGAACGCTCCCTCACCGCCGTCGCGCTGCTGGTTGCCATTTTCAAGGCGAGACCCTCGCCTTTCTACGTCATGGACGAGGTAGAGGCTGCCCTTGACGACACCAATCTTGGCCGGCTGATCACCATCTTCGAGGAACTCAGGGAATCAAGCCAGCTGATTGTCATTACCCATCAGAAGCGGACCATGGAAGTCGCTGACGCGCTGTACGGCGTCACCATGCGCGGAGACGGTGTCTCCACGGTCATCAGCCAGCGGCTGGGCGCGGACGTGTAGMHLKSLTVRGFKSFASATTFDFEPGVTAVVGPNGSGKSNVVDALSWVMGEQGAKTLRGGKMEDVIFAGTSGRPPLGRAHVSLTIDNTDGALPIEYSEVTISRTLFRTGGSEYAINGASCRLLDIQELLSDSGLGREMHVIVGQGQLDKVLHATPEDRRGFIEEAAGILKHRRRKEKTVRKLEAMQANLQRLSDLTGEIRRQLTPLGKQAEVARRAQRVQFDVRDARARLLADDLVQLQGALDQDVADEAALKARRGVVEQELEAGRRRQAVLEQLAAEATPRLNAARDTWYRLSAGRERLRSLGSLAQERSRLLGSVNSEPYSGRDPEQLERQAAQVRAELAELERHILDKRSALDTATAAKMEAEQAAVAEEKRLTAVLRAAADRREGLARLAGQVGAARSRVESAQAELGRLRESLAAGTERRRRAQEEFTALESQVAGVEEGEETLDADYEDASEELDAVLQEMKDAASATAEDVRERDALVARRDALQLGLSRKDGAEHALNSGLSGVAGTLASRLSVEPGFETAIAAALGDASEAIVVRDPAAAAAVVQLLKDDDAGRASLLLESAVSSPGQSAAGQRAEQENGAENGPLPAGAQWALDLVSISGGGGNPIAALLTGVAVVEDLQAAGALIEARPALTAVTMAGDIFTALTVTGGSAKAPSLLEVQAAVDDAETRLADVTARIERNRFALAGAEARKAAAQERTDAALDRLHESDARLAAVAERLGHLNSVLRSAVGESDRLAASLAKAEANVATEEEALAAIAARLAAAQEAPLEEEPSTGHRDALAAAAALARSAEMEERLALRSAEEQLTATRNRAASLERAAATERRAREEAAERARRRQVQARRAAAVSAAVGRSLRFIDVSVELARHERDLAEENREERDRGLVETRTANDALAGELAELTDSVHRDELARAQQRARIEALETRSVEELGITPDMLVADYGPDVPVPVPAEENADKWAALRAPVDDSGAPVVEGRPFVREEQEKRLRKAERDLASLGRVNPLALEEFAALEERHQFLSTQLEDLKASRKDLLDIIREVDDRVQRVFAEAFEDTQTQFVRVFARLFPGGEGRLVLTDPSDMLTTGIEVEARPAGKKIKRLSLLSGGERSLTAVALLVAIFKARPSPFYVMDEVEAALDDTNLGRLITIFEELRESSQLIVITHQKRTMEVADALYGVTMRGDGVSTVISQRLGADVNANANANANA
D1-29_029641089hypothetical proteinATGAGCCGCAGTGCAGCGCCGCCTCAGGCAACAGCGGCCCCACCGGGTGAGCCCGCCGTCGCCCCTGCCGGCATGCGGCGGCAATGGCTGATTCTCCTGGCTGTGGTGCTGCTGGCACTTGGAGGTGCCGGTGTCTACGCTGTGTCGGCGCTCCAGGAAGCGAGGACCAGCCAGGACGCGGCGCCGGCCGTGGAAGTGGTCGCCGCCGACGCCCTTCCGGCTGAGCCGTTTGTGATGTTCCGCAACACGGCTGCGGGCCAGGGCTACGGGCAGGCTGCAACTGTCCTGCTGTCAGACCCGTCAGGCCGCCGGGCCCTCAGCGGACACAGTTGCGACAGGGTGTACGCCACCCGGGACCTGGTGAGCTGCCTGCGCACCAGGAACGAAGTGCCCACAAACTTTGAAGCCACCACGTACGACACCTCGTTGGACTCCATGGACTCCTGGGCACTGCCCGGCATCCCCAGCAGGACAAGGATCAGCCCGGATGGCTCCCTGCTCGCTTCCACCGTTTTCGTCACCGGGCATTCCTACGCTTCGGCAGGGTTTTCAACCGAAACCGTGATCCATGGGATGGACGACGGCACTCTCCATGGAAACCTTGAAGAATTCGCACTCATTTCCGGTGGCACGCAAATCAAGGCATCGGACCGCAACATTTGGGGCGTCACCTTTGTCCCTCTTCAGCCTGACGCCTTCTATGCCACAGCCTCCTCACAGGGCAAGATCTGGCTCGTGCGGGGAAGCCTGAAGGACAGGACGCTGATGGTCACCGCCTCAGGCATCGAATGTCCTTCTGTCTCGCCGGACGGTACGCGGATCGCTTACAAAAAAAGCGAGACCGGAACCCTCATGGGCCACCGCAACATAGCCATTCTGGACATTGCCACGGGCGCGGAAACGGTCCTCGCAGAACAACGGGACATCGACGACCAGCTGGAATGGCTCGATGAAAATACTGTTGCCTACGGGGTTCCGCGCGATGGCACAGGCCAGGACAGCGATATCTGGTCCCTTGCCATCGAACCAGGGGGGCAGCCAGCAGTGTTCATCGAACACGCTTGGTCACCGGCCGTGGTCCGCCAATAGMSRSAAPPQATAAPPGEPAVAPAGMRRQWLILLAVVLLALGGAGVYAVSALQEARTSQDAAPAVEVVAADALPAEPFVMFRNTAAGQGYGQAATVLLSDPSGRRALSGHSCDRVYATRDLVSCLRTRNEVPTNFEATTYDTSLDSMDSWALPGIPSRTRISPDGSLLASTVFVTGHSYASAGFSTETVIHGMDDGTLHGNLEEFALISGGTQIKASDRNIWGVTFVPLQPDAFYATASSQGKIWLVRGSLKDRTLMVTASGIECPSVSPDGTRIAYKKSETGTLMGHRNIAILDIATGAETVLAEQRDIDDQLEWLDENTVAYGVPRDGTGQDSDIWSLAIEPGGQPAVFIEHAWSPAVVRQNANANANANA
D1-29_029651317hypothetical proteinATGTCGGACCGCACCGGCGGCCAGAAGGACCGGCAGGACAGTGCGCCGCCCGCCGGGCCGAACGCCATGTTCCGGCTGTCCCCGGTAATCATCTGGCTGGGCATCGTCAGCATGGTGACGGACATTTCCTCCGAGTCTGTCTCAGCCATCCTGCCCCTCTACATCACCGGTTTCCTGGGACTGTCCACCATCGCCTTTGGCATTATCGATGGCATCAACCAAGGAGCCAGCGCCATTGTCCGGATCGGGGCGGGGTGGGTATCGGACCGGACAGGGCATCCCAAACGTGTTGCCGTGGCCGGCTACGGACTGTCCATGCTTGCCCGTATCGGGTTCCTCTTCGCGGGCGGGTTCTGGGCGATCGCCGGGATTGTCACAGGGGACAGGATCGGCAAGGGCATCAGGACGGCACCACGTGACGCCATGATCTCCGAAGCCGCACAATCGGACTACCTGGCACGGTCCTTTGGCGTCCATCGAATGCTGGACAACATCGGCGCGGCCGCCGGGCCCCTGATTGCTTTTCTGGTGCTTTTGGCCATTCCCAACGGCTTCAGCACCGTTTTTGTCGTTTCCCTGGCTTTTTCCGTGATCGGCGTTGCCATCCTGGTGCTGATGGTTCCAGGCCGGGAGCGGCGGGACCGGCGACGCGCCCAGGCCGGCGCCGGACGCCCGCCGCACTCTTTCCACAGGTCAGGACTCCGTTGGCCGGCGCTCCACTGGTCAGGGCTTCGGTGGTCACGGCTGAAGGAGCAGGGGCTGGCCCGGCTCCTGGTCACTGCGGGACTGCTGGGCATCCTGACCATCGGGGACGGCTTCATCTACCTGATCCTGCAGGACAGGGAGTCTTTCGCGGTGCAGTGGTTTCCGCTCCTCTATGTGGGGACCAACGCAGCCTTCCTGCTGTTTGCCGTGCCGCTGGGCAGGCTGGCTGACCGCTGGGGCCGCGTACCAGTGTTCCTGGCCGGCCATCTGGCCCTCCTGGCCTGCTACCTGCTGGCGGCGGTGCCTTTCGGCGGACTGGGGGCCACCGTGGGCTGCCTGATTCTGCTTGGTGTCTTTTACGCAGCGACGGACGGGGTCCTGGCCGCACTGGTCAGCCAGCTTTCTCCGCCTGAAAAGGTAGGCACTGCCCTGGGTGCGGCACAAACAGTGGTGGCATTGAGCCGAATGGCAGCAGCTGCAGGTTTCGGTGTGCTGTGGTTTGCCGTTGGACCGGTGACCGCCGTGGTGTGCGTGGCCGTCCTGCTGGTGGCGGCCTTGGGCGCGGCTGCGGTGCTGATGCGCGGGATGGTCAGGCAGGCTCCAGCATCATGAMSDRTGGQKDRQDSAPPAGPNAMFRLSPVIIWLGIVSMVTDISSESVSAILPLYITGFLGLSTIAFGIIDGINQGASAIVRIGAGWVSDRTGHPKRVAVAGYGLSMLARIGFLFAGGFWAIAGIVTGDRIGKGIRTAPRDAMISEAAQSDYLARSFGVHRMLDNIGAAAGPLIAFLVLLAIPNGFSTVFVVSLAFSVIGVAILVLMVPGRERRDRRRAQAGAGRPPHSFHRSGLRWPALHWSGLRWSRLKEQGLARLLVTAGLLGILTIGDGFIYLILQDRESFAVQWFPLLYVGTNAAFLLFAVPLGRLADRWGRVPVFLAGHLALLACYLLAAVPFGGLGATVGCLILLGVFYAATDGVLAALVSQLSPPEKVGTALGAAQTVVALSRMAAAAGFGVLWFAVGPVTAVVCVAVLLVAALGAAAVLMRGMVRQAPASNANANANANA
D1-29_02966990fpg1COG0266Formamidopyrimidine-DNA glycosylase 1GTGCCCGAACTGCCGGAGGTGGAAGTTGTCCGCCGCGGACTCGTGAACTGGGTCAGCGGCCGGACCATCACCGCAGTGGACGTTGTGGACCAGCGGTCCATCCGGCGGCACGCCCTCGGCCCGGAAGACTTTGCCGGCAATCTGGCGGGGGCCACTGTCCTGGACGTAGTGCGCCGCGGGAAATTCCTGTGGATGCCGCTCATCGACCCTGAATCGGCTCCCGCCGCTGCGGCTTCCCCGCATGCGGAGAGCGCACCTTCCGGCCCGCGTCCCGCCGTCGCCCTGATGGCACACCTGGGCATGAGCGGCCAGCTCCTGATGCAGGACAGCACGGTTCCTGACGAGAAGCACCTTAAGGTCAGGCTGCACCTCAGCCCGCGGGATGGCATGCCGGACCAGCTCCGGTTCGTGGACCAGCGCATTTTTGGCGGCCTGTTTGTCACGTCCATGATTCCCACGGATGACGGCGGCCCCGGAGGCCTCGCGGAATCCCCTCTTCCGCTGATTGCGGAGGAAGCCGCCCATATCGCCCGGGACCCGCTGGATCCGGCGTTCTCCTTCGACCTGTTCTACAGCAGGCTCAGGAAGCGGAAGACCGGGCTCAAACGTGCCATGCTGGATCAGGGCCTGGTGTCAGGCATTGGGAACATCTACGCCGATGAAGCGCTGTGGCGGGCAAAACTGCATTATGCCCGGCCCACTGACACCCTGCGGCGGGCCGAAGCCGAAAGAGTTCTCGCCTGCGCCCGGGAGGTCATGCTGGACGCCCTGGCCGCCGGCGGGACGAGCTTCGATTCGCTGTACGTCAACGTCAACGGCGCGTCGGGATACTTCGAACGTTCGCTGAATGCCTATGGCAGGGAAGGGCAGCCCTGTCCCCGCTGTGCGGCTTCGGGAATCAGGTCGACCATCCGCCGCGAACAGTTCATGAACCGCTCCTCCTATACATGTCCCGTGTGCCAGCCGCGCCCGCGGAACGGCCGCTGGTAGMPELPEVEVVRRGLVNWVSGRTITAVDVVDQRSIRRHALGPEDFAGNLAGATVLDVVRRGKFLWMPLIDPESAPAAAASPHAESAPSGPRPAVALMAHLGMSGQLLMQDSTVPDEKHLKVRLHLSPRDGMPDQLRFVDQRIFGGLFVTSMIPTDDGGPGGLAESPLPLIAEEAAHIARDPLDPAFSFDLFYSRLRKRKTGLKRAMLDQGLVSGIGNIYADEALWRAKLHYARPTDTLRRAEAERVLACAREVMLDALAAGGTSFDSLYVNVNGASGYFERSLNAYGREGQPCPRCAASGIRSTIRREQFMNRSSYTCPVCQPRPRNGRWNANANANANA
D1-29_02967741rncCOG0571Ribonuclease 3ATGATGTCTTCAACTGAAGAGCTTCTGAAGCGTCTCGGTGTCTCCATTGACGCCGGGACGCTTCGTCTTGCGCTCACACACCGTTCCTACGCCTACGAAAACGGCGGCATCCCCACCAATGAGCGCCTCGAATTCCTGGGCGACTCCATCCTGGGGTTCTCCGTCACGGATGCCCTGTACCGGGATAATCCAACGCTGCCCGAAGGTGACCTGGCAAAGCGTCGTTCCGCCGTGGTCAGCACCCGCGCCCTGGCCGGCATTGGCCGCAGCCTCGGCATCGGCGACTACATCTACCTCGGGCAGGGCGAAAAGCTCACTGAAGGCAAGAACAAGGCCTCGATCCTGGCAGACACCATGGAGGCGCTCATCGGCGCCACCTATGTCTCCAATGACATCGAAACCGCACGCCAGCTGGTGATGCGCCTGATCGGCCCGCTCCTGAAGGATGCCGGAGCCCTCGGCGCCGGGACGGACTGGAAGACCAGCATCCAGGAGCTGGCAGCCAGCCGGCAGCTTGGCAGCATCCACTATGGAGTGGAGGGATCCGGGCCGGACCACGCCCGCATCTTCACGGCAGTGCTGTCCATTGGGGGCACGGCGTACGGCAGGGGATCCGGCCATTCCAAGAAGGAAGCCGAACAGGTGGCTGCCGCCGACGCGTGGCAGACCCTTACCGGGGCTCCCGGTGCCGTGGTTTCAGGCGATTCCGCCGATTCCGCCGATTCCGCCGCCAGCGTCTAGMMSSTEELLKRLGVSIDAGTLRLALTHRSYAYENGGIPTNERLEFLGDSILGFSVTDALYRDNPTLPEGDLAKRRSAVVSTRALAGIGRSLGIGDYIYLGQGEKLTEGKNKASILADTMEALIGATYVSNDIETARQLVMRLIGPLLKDAGALGAGTDWKTSIQELAASRQLGSIHYGVEGSGPDHARIFTAVLSIGGTAYGRGSGHSKKEAEQVAAADAWQTLTGAPGAVVSGDSADSADSAASVNANANANANA
D1-29_02968204hypothetical proteinGTGGCTGTTCCCAAGCGGAAAATGTCTCGCTCGAATACCCGCGCCCGCCGCTCCCAGTGGAAGGCAACTGCCCCCCACCTGGTGAAGACCATTGAGAACGGCCAGGTTACCTACAGCCTGCCGCACCAGGCAAAGGTCGTTACCGACTCGGCTGGCACTGCGCTGTTCCTTGAGTACAAGGGCCGCAAGGTCGCGGACGTCTAAMAVPKRKMSRSNTRARRSQWKATAPHLVKTIENGQVTYSLPHQAKVVTDSAGTALFLEYKGRKVADVNANANANANA
D1-29_02969294hypothetical proteinGTGGTGGTGCCCCGGCTCGTCTTCCAGGCGAACTCCACATTCGGAGCAAAGGCCCTGGCAGTCTTCCCGGCACACCGGCTGGAACGGCAGCATGGTTATGACTGCGTCCCGCAACACCGGTTCAAGATCGATTACATCGTGCTCGACTCGACGTTGCTCTTCATCATCTTCTTCATCCGAAAGCAGGACGCCTTCATAGAAGAAAAGTTCTTGCACATTGACCTCAAGGTCATACGCAAGGGGATCCAGGCATCGTCCGCATTCGCCGGTTACATGGGCAATCACGGTTCCTGAMVVPRLVFQANSTFGAKALAVFPAHRLERQHGYDCVPQHRFKIDYIVLDSTLLFIIFFIRKQDAFIEEKFLHIDLKVIRKGIQASSAFAGYMGNHGSNANANANANA
D1-29_02970501coaDCOG0669Phosphopantetheine adenylyltransferaseATGAGACGTGCTGTCTGCCCCGGATCCTTTGACCCCATCCACAACGGCCATCTCGAGGTTATTGCGCGTGCCGCAGGCCTTTTCGATGAAGTCATCGTTGCCGTGTCCACCAATATTGCGAAGAAATACAGGTTCAGCCTGGAGGACCGGATCGACATGGCACGCGAAACGCTGGCGTCGCTGAAGGGCATCGTGGTGGAGCCCGTAGGGGAGGGGCTCCTGGCGGAATACTGCCGGCAGCGGGGTGTTTCCGCCATCGTAAAGGGACTGCGGTCATCTTCGGATTTCGATTATGAACTTCCCATGGCCACCATGAACCGCCAGCTCAGCGGAGTGGAAACTGTCTTCCTGCCGGCCGAATCCCACTACCTGCATCTGTCATCAACGCTGATCAAGGAAGTGGCGGGCCTGGGCGGCAGCGTGTCCGATTACGTGCCCCGCTCCGTACAAAAGAGGCTGCTGGGTGGCGAGTCGGCGCCCGATCAGCGGGCGAGAGGGTAGMRRAVCPGSFDPIHNGHLEVIARAAGLFDEVIVAVSTNIAKKYRFSLEDRIDMARETLASLKGIVVEPVGEGLLAEYCRQRGVSAIVKGLRSSSDFDYELPMATMNRQLSGVETVFLPAESHYLHLSSTLIKEVAGLGGSVSDYVPRSVQKRLLGGESAPDQRARGPGPT0008825_1105DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008825-coaD|kdtB-K00954NANA
D1-29_029711230dapCCOG0436putative N-succinyldiaminopimelate aminotransferase DapCATGCACGCACCAAGGGAAGTGTTCACCGCGACAGCCATGGCCCCCTGGCGGCGTGCTGCCGTGGGCGCCAACCTGCTGGGGCCGGACGGCGGGCTGGGCGTCACCATCTTTGAAGAGATGACCACGCTGGCCGTGCAGACGGGAGCCATCAACCTGGGCCAGGGCTTTCCGGACGAGGACGGCCCTGCGGAAATCAAGGCGGCGGTGCAGGCTGCCGTGGCCGCCGGCGCCAACCAGTACGCGCCCGGCAAGGGCCTGCTGGAACTCCGGGAGGCTGTGTCCGCGCATCAGCAGCGTTTCTACGGGCTGTCCCCGGACCCGCAGTCCGAGGTCATCATCACCACCGGCGCCACCGAAGGCATTGCGGCGTCCCTGCTGGCCTTTGCCGGGCCCGGCGACGAAGTACTGACCTTCGAACCCTTTTACGATTCGTACGGTGCCGTCATCGGGCTAACGGGCGCCACCCATGTCACCGCGCCGTTGCTGGCTCCGGAGTTCTTTCCCGACATGGACGCCCTTGAGGCGGCCTTCAGTGACCGCACCAAGGTGGTTTTGCTGAACAATCCACATAACCCCACCGGCGCGGTGTTCCCGCGCGAGGTCCTGCAGCGGGTGGTCGACCTTGCCCGGAAGCATGACTGCCTCATCGTCACCGATGAAGTGTATGAGCATCTCACTTTCGGCGTCAGCCATATACCGGTGGCAGGCCTGCCCGGCGCTGCGGACCGGACGGTGACCATTTCCTCGGCAGGGAAAACCTTCTCCTTCACCGGATGGAAGATCGGCTGGCTCAGCGGCCCTGAAGAGCTCGTCTCGGCGATCCGCACCGTAAAGCAATTCCTCACCTACAGCTCCGGGACGCCCTTCCAGGCAGCCATCGCCACCGGCCTGAACCTGCCTGACGAGTTCTATCACGGCATCTGGACCACACTCCGGCACAAGCGCGACATCCTCAGCGAAGGCCTGCGCGCCGCCGGTTTTGACGTATTTACACCGCAAGGGACGTACTTCGTCAACGTGGACACAGCACCCCTGGGCATCCATGACTCCGTTGACCTGGCCCGCAGGCTGCCGTCGCTGGTGGGGGTGGCCGCCATCCCGGTGCCCGTGTTCTGCCACCCGCAAGGCGCTGAACGCACCCGCAGCCTGCTCAGGTTCGCCTTCTGCAAAAAAGTGGAGGTGCTGGAGGAGGCAGCCGCCCGGCTGTCTACCCTGAGCGGAAAACTGTGAMHAPREVFTATAMAPWRRAAVGANLLGPDGGLGVTIFEEMTTLAVQTGAINLGQGFPDEDGPAEIKAAVQAAVAAGANQYAPGKGLLELREAVSAHQQRFYGLSPDPQSEVIITTGATEGIAASLLAFAGPGDEVLTFEPFYDSYGAVIGLTGATHVTAPLLAPEFFPDMDALEAAFSDRTKVVLLNNPHNPTGAVFPREVLQRVVDLARKHDCLIVTDEVYEHLTFGVSHIPVAGLPGAADRTVTISSAGKTFSFTGWKIGWLSGPEELVSAIRTVKQFLTYSSGTPFQAAIATGLNLPDEFYHGIWTTLRHKRDILSEGLRAAGFDVFTPQGTYFVNVDTAPLGIHDSVDLARRLPSLVGVAAIPVPVFCHPQGAERTRSLLRFAFCKKVEVLEEAAARLSTLSGKLPGPT0007145_108DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007145-yugH-K10907NANA
D1-29_02972795hypothetical proteinATGGCGGGCATCTTGGGACAGTCCAGACGGTCCACACGGTTCCTGCGGACCACGGGCCAGCACGCCACTATTGAGCCTGATGCCCTGGTGGAGGGTGCGTACATCCTCAGCATCGGAGGCGCAGAGCAGTCCCACGTGAACGTTGCCCGTCCCGAAGAAATTTTTTACGAGTACCTGCGCCGGATCGGCCATCTGGTGGACTTGGCAGCTCCGGAGGGGCAGCCAATCACCGCCCTGCACCTCGGGGCGGGCGCATTGACCCTGGCCCGCTACATCCAGGCCACCCGGCCCGGATCGCTCCAGTATGCGGTGGAGCTTGAGCGGGAACTGCTGGATTTTGTCCTGCAGCAGCTCCCCCTGCCGGAGGGAACGGTCCTGCACACCATCATCGGAGACGCCCGCGATGCCTTGACGGAACTGGAGCCGGGACTGCTCTTCGACGTCGTCATCCTGGATATCTTCTCTGGGCCGGAGGCGCCGGAACATATCGCCTGCATGGAATTTTACCTGGAGGCCCGTGCGCGGCTTGCTCCGCACGGACTGCTCATCGTGAACGTAGGCGACGAACCGGGGCTCACCCTGGTGCGGAGCCAGGTGGCCGCACTGCGCCTCGCCATGGCCGATGTTGCGGCCTTCGCCGAAGCCGGCATGTTTGCCGGCCGCCATCCCGGCAGCATCATCCTTGCCGGAACCCAGGAATCCTGGCCCGGCGCTTGGACCTCCGAACTGGCAGCCCGTGGCCCGCACCCGGGACGGGTCCTTGCCGGGGTGGACCTGGACGTTTTAGCCGGTTGAMAGILGQSRRSTRFLRTTGQHATIEPDALVEGAYILSIGGAEQSHVNVARPEEIFYEYLRRIGHLVDLAAPEGQPITALHLGAGALTLARYIQATRPGSLQYAVELERELLDFVLQQLPLPEGTVLHTIIGDARDALTELEPGLLFDVVILDIFSGPEAPEHIACMEFYLEARARLAPHGLLIVNVGDEPGLTLVRSQVAALRLAMADVAAFAEAGMFAGRHPGSIILAGTQESWPGAWTSELAARGPHPGRVLAGVDLDVLAGNANANANANA
D1-29_02973630hypothetical proteinGTGAGCCGGATCATCGCAGGCGCGGCCGGCGGAACACCGCTGGTGAATGTTCCAGGTTCGCTCACACGTCCCACCACGGACCGTGTGAAGGAGGCGCTGTTTTCCCGGCTTGACGCTTTCGGAATCATTGCCGGTTCCCGCGTCCTGGACCTTTACGCGGGGTCCGGGTCACTCGGCGTGGAAAGCGGCAGCAGGGGTGCCGCCGCGGTTGACCTGGTGGAGTTCGATGCCAAGGCCAGTTCCGTCTGCCAGCGCAATGCTGACCTGATCAACGGTGTGCTCGGGCGGAAGGCTGTGACGGTACACCGGTCCCGGGTTGAGTCCTTCCTCGAACGCGCCACACCTGACATGCATTGGGACCTCGTGTTCCTGGATCCCCCCTACCCGCTGGACGAAGCTGCCCTCTCAGGAGTCCTTGACAAGCTCTCCGTCCACCTGGCGCCGTCCGCCGTGGTGGTGGTGGAGCGGTCCTCCCGTTCGCCGGAACCAGGCTGGCCGGACGGCATGGAACGCTTTGCCGAGAAGAAGTACGGGGAGACCAGGCTTTGGTATGCCGAGCCCTCCGTGCCTGACGTTATTGAGCTGGACGAGCCCTTTGACGAGCTGAGGTCAGCAGACGGGGAAGGTTGAMSRIIAGAAGGTPLVNVPGSLTRPTTDRVKEALFSRLDAFGIIAGSRVLDLYAGSGSLGVESGSRGAAAVDLVEFDAKASSVCQRNADLINGVLGRKAVTVHRSRVESFLERATPDMHWDLVFLDPPYPLDEAALSGVLDKLSVHLAPSAVVVVERSSRSPEPGWPDGMERFAEKKYGETRLWYAEPSVPDVIELDEPFDELRSADGEGNANANANANA
D1-29_029742286recGCOG1200ATP-dependent DNA helicase RecGATGGGCATGAGCGCTGAACTTGACCTGGGCCTTGAACGCCGGATCGGGAAGCGGTCCGCTGCCGTCATAGAGAAGCATCTTGGCCTGACCACTGTGGGCGAGCTCCTGAACTACTTCCCGCGCCGCTACCTGAGCCGGGGTGAACTGACACCCATCAACGAGGTTCCGCTGGACGAGGAGGTCACGCTGATCGCCCGCGTGCTCTCCAACACCACCCGCTCCATGCGGGCACGGCGGGGAACAATTACCGACGTCGTTATTTCCGACGACGACGGTAAGGGAGGCCTCCGGCTGGTGGGAGGCAGTGACTACCGCGGCAAAGTCCCCGGAACCCTTAAGGTCAGCTTCTTCAACGGATACCGTGCCAAGGCTGAGCTCCTGCAGGGACGCCGGGCCTTGTTCTCCGGCAAGGTCACCCGGTTTGGGGGCTCCCTGGGGCTGACCAACCCCGATTTCCTCCTCCTGGACGAGGACCCTTTCACTCAGGGAAAGAATCCGGAGCAACTGGCGGCCATGCCCATCCCGATCTACCCGGCCACGGCAAAGCTAACCAGCTGGTCCATCCAAAAGGTCATTTCCACCCTGCTCGAAACAGTGGACCTGGGCACCCTCCCTGATCCCATCCCCTCCGCTGTTTCGGCCCGGGAGAAATTCCTGCCGGTGGCCGAGGCCTATCGGCTCATCCACGCACCAGAGACGGACAACGACTGGCAGCGGGCCCGGGACCGCTTCCGGTACCAGGAAGCCCTGGTCCTGCAGTCTGCCCTGGCCCGGCGGCGCGCGCAATGGGCAGCCGAGGAAGCCACAGCGAGGCGTCCCGTTCCCAACGGGTTGCTCACGGCGTTCGATGCCCAGCTGCCCTTTACCCTGACAGCAGGGCAGGCAGCCGTGGGAAAAACCCTCTCAGCTGAACTGGCGCAGGACCATCCCATGAACCGCCTGCTGCAGGGCGAAGTGGGTTCGGGAAAAACCATCGTGGCGCTCCGGGGCATGCTGCAGGTGGTGGATGCCGGCGGGCAAACAGCCCTGCTTGCACCCACTGAGGTGCTCGCGGCCCAGCACTTCGAATCGATCCGCCGCATCCTGGGCCCCCTGTCCCGGGACGGTCTGCTGGGTGGCTCCGGTACAGGTTCAGCCGGTGAGGCCGTGCAGGTCACACTGCTCACCGGGTCCCTCCCCACCGCACCCCGCAAGCAGGCCTTGCTGGACGCCGCCTCGGGCACGGCCGGGATTGTGATCGGAACCCACGCGCTGCTCAGCGACAACGTCTCCTTCTATGACCTGGGCCTGATTGTGGTGGACGAGCAGCACCGTTTCGGCGTGGAGCAGCGCGACGTCCTGCGGTCCAAGGCCAGCAAACCGCCGCACCTTCTGGTCATGACAGCCACCCCTATTCCGCGGACGGTGGCCATGACGGTCTTCGGCGACCTCGAAACGTCGGTGCTGGATGAGCTTCCGGCCGGCCGGGCGCCCATTTCCACCCATGTGGTGGGGCTCGCCGAAAATCCCGGCTGGGCGGGCCGTATCTGGTCCCGCTCCCGTGAAGAGATAGACGCCGGGCACCAGGTTTATGTGGTGTGCCCCAAGATCGGAACGGACGACGACGGCGACTTCAGCCCGGGGGAGGCCGAACCTTCCGCCGCTGACCTGGCCGGCGACGGAGCCGGGCGTGAACTCGCGTCGGTGACGTCCGTCGTCGAGCATCTCCTCCAGGAACCGTCCCTTGCAGGGGTGCCGGTGGCAGCGCTTCACGGCCGGCAGGACCCGGCGGTCAAATCGGCTGCCATGGCCGATTTCGCGGCGGATCGGACCAAACTGCTGGTGTCCACCACAGTGATCGAAGTGGGAGTTGACGTCCACAACGCCACCTTGATGGTCATTCTCGACGCCGACCGCTTTGGCATCTCCCAGCTGCACCAGCTGCGTGGCCGGGTTGGCCGCGGCGGCCTGCCTGGAACGTGCCTCCTGGTCACAACACTTGAACCCGGCCACCCGAGCCGGCGCAGGCTGGACGCCGTAGCGGCCACCACCGACGGGTTCGAGCTCTCGCAGGAAGACCTGAAACTCCGGCGCGAGGGCGACATCCTCGGCGCGTCGCAGTCAGGTGGCCGTTCCACGCTGAAACTGCTCCGGGTGCTCGAACATGAGGACATCATTGCCCGCGCCAGGGAGGACGCCCAGGAGATTGTGCGCTACGATCCGGCACTGTCACTTCACCTGCGGCTGGCCCAGGCCATCGACGAGTATTTGAACCCCGAGAAGGAGGCGTTCCTTGAACGTGGTTAGMGMSAELDLGLERRIGKRSAAVIEKHLGLTTVGELLNYFPRRYLSRGELTPINEVPLDEEVTLIARVLSNTTRSMRARRGTITDVVISDDDGKGGLRLVGGSDYRGKVPGTLKVSFFNGYRAKAELLQGRRALFSGKVTRFGGSLGLTNPDFLLLDEDPFTQGKNPEQLAAMPIPIYPATAKLTSWSIQKVISTLLETVDLGTLPDPIPSAVSAREKFLPVAEAYRLIHAPETDNDWQRARDRFRYQEALVLQSALARRRAQWAAEEATARRPVPNGLLTAFDAQLPFTLTAGQAAVGKTLSAELAQDHPMNRLLQGEVGSGKTIVALRGMLQVVDAGGQTALLAPTEVLAAQHFESIRRILGPLSRDGLLGGSGTGSAGEAVQVTLLTGSLPTAPRKQALLDAASGTAGIVIGTHALLSDNVSFYDLGLIVVDEQHRFGVEQRDVLRSKASKPPHLLVMTATPIPRTVAMTVFGDLETSVLDELPAGRAPISTHVVGLAENPGWAGRIWSRSREEIDAGHQVYVVCPKIGTDDDGDFSPGEAEPSAADLAGDGAGRELASVTSVVEHLLQEPSLAGVPVAALHGRQDPAVKSAAMADFAADRTKLLVSTTVIEVGVDVHNATLMVILDADRFGISQLHQLRGRVGRGGLPGTCLLVTTLEPGHPSRRRLDAVAATTDGFELSQEDLKLRREGDILGASQSGGRSTLKLLRVLEHEDIIARAREDAQEIVRYDPALSLHLRLAQAIDEYLNPEKEAFLERGNANANANANA
D1-29_029751074putative proteinTTGCAGACTAAGGTTGCAGCCAACGCCCAAGCGATGAAGCGGTGGTTGGGAAAGTCCGAAACAGCCATCGGCAACCACAGCGACCGCCTGAATGCCATCAATATTTTCCCTGTTGCCGACGGCGATACCGGTACCAATCTCTACCTCACCGTTCGGGCAGCAGCCCAGGCCGTCCATGCGTCTGGCGCTGGGCACGCCAGTGCCGGACAATCCGCCGCCGGGCACGCCAGTGCCGGGCAAGCTGCCGCCGGGCAGGCCGACGTCGGGGCTGTCCTTGCAGCGGCCGGGCAGGCTGCCATGGAGCAGGCCCGGGGAAACTCCGGCACGCTGTTCTCGGTTTTCCTGTGCGCCGCGGCTGAGCCGTTGGCAGGCCATACCCGGCTCACGTCCACCCTGCTCGCCGCAGCCCTGAACCGCGCACAGATCCGCGCCTGGTCCGCCCTCAGCGATCCCGTTCCCGGCACCATGCTCTCCGTGATGGAGGCGGCGGCCCGCGCCGCAGCCTCCGTCGATGCCGGTCAGAACGGCGACGACAGCAACCACGCCCTTGGCCTGGCGCTCGATGCCGCGGTTGAAGGGGCCCTGGCCGCGGTAATCCGCACTGAAGGGCAGCTGGACGCCCTGCAGGCCGCGCACGTTGTGGACGCCGGCGGGGTGGGCATGCTCCTGATCCTGGACTGCCTCCGGTCGGCTGTGCTGGGGGAGGAGCTGCAAAGCGAACTCCTGGACGGCCTGCACGGCTACGACGTCCAGGATCCGCACATCCACAATGACATGCCGGACGACGACGGCGTGGAAGTCATGTGCACCATCAGCCTCTCGCCCCTCAATGCGGCCACACTCCGGCAGCGCCTGGACGAGATCGGCGAGTCCGTCATCATGAGCCAGGTTGGCACTGCCGCTGATGCCGAGGGCAACTACCGCTGGCGGGTCCATGTCCACGTTCCGGACCCCGACCCTGCGGTCCGGCTCATCCGCTCCCTCGGGGACCCCAGCCACATCACGGTCAGCGAACTCGCCCTGCCCCGCGACTCCCAAGCAGACCCGGTGGACATCAATGGGCATGAGCGCTGAMQTKVAANAQAMKRWLGKSETAIGNHSDRLNAINIFPVADGDTGTNLYLTVRAAAQAVHASGAGHASAGQSAAGHASAGQAAAGQADVGAVLAAAGQAAMEQARGNSGTLFSVFLCAAAEPLAGHTRLTSTLLAAALNRAQIRAWSALSDPVPGTMLSVMEAAARAAASVDAGQNGDDSNHALGLALDAAVEGALAAVIRTEGQLDALQAAHVVDAGGVGMLLILDCLRSAVLGEELQSELLDGLHGYDVQDPHIHNDMPDDDGVEVMCTISLSPLNAATLRQRLDEIGESVIMSQVGTAADAEGNYRWRVHVHVPDPDPAVRLIRSLGDPSHITVSELALPRDSQADPVDINGHERNANANANANA
D1-29_029761029thiLCOG0611Thiamine-monophosphate kinaseGTGCCCGCAGAACATTTGACAGTCGCCGCGCTCTCCGAGTCCGAACTCCTTGCCCGGATCTTCCCACGTCTAAAAGTCGAGGGCGGCCATTCCAAAGCCATGATGCTTTTGGGACCAGGTGATGACGCCGCCATCATCGCTTCTCCGGACGGCAGGACGGTCATCAGCATAGACACGCAGGTACAGGACCAGGATTTCCGGCTGCTCTGGCCCAACGGGTACCGCACAACAGGCTACGACGTCGGCTGGAAGGCTGCGGCGCAGAACCTCAGCGACATCAACGCCATGGGAGCCACTGCCACGTCCATGGTGGTCAGCCTGACCCTGCCTCCGGAAACCCCGGTCGGCTGGGTGGAGGACCTGGCAGACGGCCTGACGGCGGGAATCCGCGAGCTGGGTGCGGTGGACTGCTCCGTGGCCGGCGGCGACCTGGGCCGCGGCCGGGAAATCTCCGTCTCCGTCGCCGTCCTTGGCACACTCGCAGGTGGAGACGCGGTGCTGCGTTCCGGTGCACGCCCGGGAGATGTCCTGGCATTTGCCGGCACAGCTGGCCGGGCAGCCGCTGGATTGGCGCTGCTGGAATCCGGCCGGGACGTCAGCACCATCAGCCCGGAACAGCGGGTACTCCTGGATGTCCAGTGCAGGCCCCTGCCGCCGTTGTCGGCCGGACCGACGGCCCGGCTGGCCGGCGCCACCGCCATGCTGGACGTTTCGGACGGGCTCGTCCGAGATGGCGCACGCCTGGCCAGCGCCAGCGGCGTTGTCCTGGACCTGGATCCGCAGGAGCTGAAGCGGCTGGCGGAGTGCCTGGTGCCGGCGTCGGACCTTCTGGGCACGGACCCGCTGGCCTGGGTCCTGGGTGGCGGAGAGGACCACGGACTCCTGGCCACATTTCCGCCGGACATACAGCTGCCTCCCGTATTCACTGCGATAGGCTCAGTACAAGCCTTGGGGATGAACGAAAGCCCGGGCGTCAAAATTTCAGGCCACACCGCTGACACCGGGGGATGGGATCACTTTGCAGACTAAMPAEHLTVAALSESELLARIFPRLKVEGGHSKAMMLLGPGDDAAIIASPDGRTVISIDTQVQDQDFRLLWPNGYRTTGYDVGWKAAAQNLSDINAMGATATSMVVSLTLPPETPVGWVEDLADGLTAGIRELGAVDCSVAGGDLGRGREISVSVAVLGTLAGGDAVLRSGARPGDVLAFAGTAGRAAAGLALLESGRDVSTISPEQRVLLDVQCRPLPPLSAGPTARLAGATAMLDVSDGLVRDGARLASASGVVLDLDPQELKRLAECLVPASDLLGTDPLAWVLGGGEDHGLLATFPPDIQLPPVFTAIGSVQALGMNESPGVKISGHTADTGGWDHFADPGPT0009010_643DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946NANA
D1-29_02977546hypothetical proteinATGGCTGCGAAGATCGCTACCTTCACCCTTCTCGTAGTCTTCGGTCTGTGGTTCACCGCATGTCTGCTGCTGTTCTGCCTCAACTCGCCGGCTTCGCCGACATCTCCCGTGGATGCTGTGATCGTTCTGGGCGGCAGCAGCGAAGAACGGTTGCCTGTTGCCCAGCGTTTTGCGGACGAAGGGGCCGCAGTACTGGTGGTGTCCTGGACGGACACGCCGGGAAACGCAACCGCGGACGCGCTCTGCCGTGGAGCTTCCCGCCCCAGTCCGTCGTTGATCTGTTTCCGGCCTACGGGCCTGGATACGCGTAGCGAGGCAGAGGTTATCGGTGATTTAGTCAAGACCAACGGCTGGACCTCCATAGCCGTGGTCACGTCCTCCTATCATGTGCCCAGGTCAGAAACCCTGATCCAGCAGTGCACGGACGCCACAGTGAACATGGTGGCGTCCAAACCCGACCTCGATTCAGTGGAGTGGCTGCGGCGGTTTGTCATCGAGACGGGCGGCCTGATTGACGTGAATCTGCACCCGGAATGTGGCTCATAGMAAKIATFTLLVVFGLWFTACLLLFCLNSPASPTSPVDAVIVLGGSSEERLPVAQRFADEGAAVLVVSWTDTPGNATADALCRGASRPSPSLICFRPTGLDTRSEAEVIGDLVKTNGWTSIAVVTSSYHVPRSETLIQQCTDATVNMVASKPDLDSVEWLRRFVIETGGLIDVNLHPECGSNANANANANA
D1-29_02978276hypothetical proteinATGGAGGAATCAGAGGACACTCCGCAGCTGATCGCCGCTCCGCGCCACCTGAGACGACGGGTCTTTCACCCCGAAATACCTGACAACCTCCTGGTCAGCGGTCTGGATCCACTGCCGCAACAAGCACCACGCGCCCTCCAACCCGAGCGACAGGGCGGAGTCGCGTCGGCTCGAGTCCGGGCATTCGGACGCAAACGGGCCGTCGCATTGTTAGTAGTGATATTTGTCACGATCAGCATTCCTGTGCTGGTTCTTGCTTTGATTTTTGCGGGCTAAMEESEDTPQLIAAPRHLRRRVFHPEIPDNLLVSGLDPLPQQAPRALQPERQGGVASARVRAFGRKRAVALLVVIFVTISIPVLVLALIFAGNANANANANA
D1-29_029791143wecBCOG0381UDP-N-acetylglucosamine 2-epimeraseATGCCCAGCATCATGCCTATCTTTGGCACACGACCGGAGGCCATCAAGATGGCTCCTATCGTCGCCGCGCTCCACGAGTCAGAGCTCTTTGACTGCGTTGTGACCGTCACCGGCCAGCACCGCGAAATGCTGGACCAGGTCAACGAACTCTTCGGTATTGTGCCGGATCATGACCTCAACATCCTTCAGCAGCGTCAAACACTCTCGGCGATCATGACGCGGACCATCGACGGCTTGGACAAGCTGTTCAGCAATAAGAAGCCTGACGCCGTCATTGTGCAAGGCGATACGACGACGTCGACAGCGGGTGCCATCGCGGCCTTCTATCACGGTATCCCGGTTGTGCACGTCGAAGCAGGGCTTCGCAGTGGCGATCTTTTCTCTCCATTCCCGGAGGAGGCCAACCGCAAGATAACGAGCCAAATTGCAAGCCTGCATCTTGCTCCTACAAGTGTCAGCCGTGCAAACCTCCTCGCCGAGGGCATCAACGCCAGCGACATAGTAGTCACCGGCAATTCGGTCATTGATGCACTCCTCACGACCGTCGGCAAGCAGATTCCCTTTACGGACCCTCAGCTCGAAGAACTCGCCGCCAGCGGCCGCAAGATTCTACTTGTGACCACTCACCGGCGTGAGAATCAAGGGGATGCGATGCGTGGGGTGGGCCGGGCCCTGGCACGAATTGCGGACGCCGAACCTGACATGATGATCGTTTTGCCGGCGCACAAGAATCCCGTTGTCCGTGAAGCCGTGCTGCCCGCGCTAGAAGGCAAGCCGAATGTTATTGTCACCGAGCCTCTGGCTTATGGAGAATTTACCCGTATGCTCTCTCTGGCACACATCGTCCTTACAGATTCGGGCGGAGTGCAGGAAGAGGCACCGAGCCTGGGCAAGCCTGTTCTTGTGATGCGCGATAACACTGAACGTCCAGAGGCGGTCGACGCCGGAACGGTGACTCTGATCGGAACCGACGAAGAGCGTATCTTTAAGGAGGTTGACCGGCTCCTGCATGACCAGGCGCACTTCGATTCCATGGCGAACGCTGTCAATCCCTATGGGGACGGCAAGGCCTCCGAACGCACCATAGCGGCGGTGGCGCACCTGCTGAAGGTCGGAGACAGAATCGCCGAATTCGGGCTGTGAMPSIMPIFGTRPEAIKMAPIVAALHESELFDCVVTVTGQHREMLDQVNELFGIVPDHDLNILQQRQTLSAIMTRTIDGLDKLFSNKKPDAVIVQGDTTTSTAGAIAAFYHGIPVVHVEAGLRSGDLFSPFPEEANRKITSQIASLHLAPTSVSRANLLAEGINASDIVVTGNSVIDALLTTVGKQIPFTDPQLEELAASGRKILLVTTHRRENQGDAMRGVGRALARIADAEPDMMIVLPAHKNPVVREAVLPALEGKPNVIVTEPLAYGEFTRMLSLAHIVLTDSGGVQEEAPSLGKPVLVMRDNTERPEAVDAGTVTLIGTDEERIFKEVDRLLHDQAHFDSMANAVNPYGDGKASERTIAAVAHLLKVGDRIAEFGLPGPT0018905_961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0018905-wecB-K01791NANA
D1-29_029802673hypothetical proteinGTGCCGATTGATTTTGACCTCATGCGGGAGGCTGTAGCACGCCAGCTCCCCGTCGCAGCAGATGAAACTGCCCGATCGCGCGCGGAAACGTTCCTTATAGACGGAAAAATCGTCAGCCCCAGATTTGGGAACCTAGCCTTCAATGGCGGCGAGATCTGGGCAGATACAACCCAACGTTCACAGGCGCGATTTGTTCACGGCTTCCTATTCTTTTCTGACTGGCACGGGACTGTACTCAATGACCCGCACTCGTCGCCGGAGTACGCCGCTTTCGCGATAGGGGTGGCCCGCAACTGGGCTGCAAACTACGCAGACGGCACACGGATCCCCGAAGTCTCGCACCATGACGAGACCACCGCCCAGCGACTTATCCAGCTGACGGCGCTGCTCGTGCGGCTGAAAGACGTCGTATCCTCCGACGATTACAATTGGCTGGCTGGCTTGGCACTGGACACAGCTCGGCTGTTGGCGACAAACGAATTTCATGCCACGGGCAACAACCACGGAATGTTCCAGGACATCTCCCTTGTCTATTTTTCGGTTATGTGTGACTTCGTCTCGCCGCACGAGCGCGAAGGGTTCTTTGAGACAGCCACGGCACGGCTGTATTCATACTTTTCGACATCGTTCACTTCCGACGGTGTTCATATCGAAAATACTCCGACATATCACCTCATGGTGTCCAAGTACGTCCACGGGGTATTGGAAATCCTGTCTCAGACAGGGCACGGCCATGCTGATTATTACAGGTCGCTGCTTCGGAATGCAGCCATGTATGCAACACATGCCGTCATGCCGAATGGAATGTACCCACCCATTAGCGACACGACCCAACAATTGGAAACTCGCGCCGCCCGCCAAAACATCTTTGGCAGTGCGGAATTTGCTTATGCTGCGTCCGCTGGACGCATGGGCTCAAAGCCCTTACAGAGAACATTGGTTTTGCCCGAATCGGGATATGCAATCTATCGAAGCGAATGGGGAAATCCCAAAGCAACCTTCGCCTTCTTCAGCGCGGCCTACAACGCGAACTACCACAAACATTCCGATGACCTGAGTCTGTTTTTGCGCAGCGGTGGCATCGATTTGCTGTCTGAGGCCGGCCCCTATGGATACGACTATAATGATCCACTGACGAAGTACGGCTATTCGTCCTATGCGCACAACTGCATCGTTGTCGACGGCATCTCCCTGCCGCGTACCGACGGATCGGCTCATTTGACCACCCTCGAGGCGCATGAGGTGCGCGAGGACGGCTACAGCGTGACTGGCCGCACTCAGCGCTGGAAGGATACATCTCACTCCAGAACCGTAAGCATTCAGGAGAGAGCAGGAATTCCCTACATTGATGTTTCGGACACCGTCGAAAGCCAGGAAGAACACACCTACGAATTGCTGTGGAACCTCGGCACGGATGTTGAAGCCGTTGTCCACGGGCAGGGCTTCGAGCTGTTCCATGGTGGCCGGAAGGTCATGGATTTGCACTTTGATGCGAATGTCGCCACCAAAGTCTCACTCCACAAAGGAGAGGAACGGCCTAAGCCCCTCGGCTGGCGCTTTCCTCGCTTCGGCGAAGCAATGCCTGCTCCGGTCGTAAAAATCTCATTTCAAGGAAGCCACGCTCAGCTTCGCACGCGCATCCGATTGGCAGAGTTCAACTATCTCGACCGCGGACTGAACGATAAATCGAATGGCTGGCTTCGCAGCAGTGGAAGCGTCAGTTTGAACTACCTCCAGGTACCGGCCAGCTCAGCGATGGGACAAAGCAAGCTTGCCGTCGTTTTTACTGCCATCCACCAGCCGGGCGACTTCACGTTCAACTACAAGAAGTCCGTTGATACAACCGGTGTTCATGCCCTGTATATCCTTGATGACTTCGGGGACCAGGGATCCTACTACTTGAGCGACCATGGCGACCTGTCCATTTTTGACGCTACACAAGCGCTCATTGCACGCGAGTTGGACCGCCTCGGCCTCACTGCCAGCGACCTCATTACGGCAGGTTCCTCGAAAGGCGGGACCGCAGCCATACTCCACGGCATCGCCGCCGGGGCCGGACACATTATCGTCGGAGCACCACAGGTCAAAATCGGTTCATTCCTGCAGGTCCCGCACCCCAACATGCTCGAATTCATGATGGGCGACACCAGCGACAGATCGGTGAACGTCCTCGATGCGGTCGTTTTCGAAGCCATCGACGATATGCTCGACAGCACCCGGCTATCGATATTGGTGGGCGAGGCAGACCACCACTACAAGAACCACGTCCTCCCGTTGAAATCCCACGCTGAGAACTGCCAAAAACAACTCGACCTCACAGTTCTGCCTGGGCTTCCCCACGCCGAGATCGGAGCTGTATATCGACAATTCCTCACCTCGAAGATTGAGCAAGAGATCTCTGAATCAGGCGAAGAGACAGTCCCGTTCACATTCCAAAAATCAGGCGGAGATCCGGCGGCAATAAGTCTTGACGTCTTTATGCCGGCCGGCTGGCAACTTGCATCGCGTCTGTACTGTGGCACGGAGTCCGTCGCCAGAAAGCCGTATAGCTCGGACAGCACCGCCCTATGGAGGGAGATGCCCGCAGGACGCTACCGGGCAAGGGTATTCGTGAGAAACCCCGAGGACGATGATGTCCGAGCTTTCACCACGCCCTGGGTGACGCTTCCGTGAMPIDFDLMREAVARQLPVAADETARSRAETFLIDGKIVSPRFGNLAFNGGEIWADTTQRSQARFVHGFLFFSDWHGTVLNDPHSSPEYAAFAIGVARNWAANYADGTRIPEVSHHDETTAQRLIQLTALLVRLKDVVSSDDYNWLAGLALDTARLLATNEFHATGNNHGMFQDISLVYFSVMCDFVSPHEREGFFETATARLYSYFSTSFTSDGVHIENTPTYHLMVSKYVHGVLEILSQTGHGHADYYRSLLRNAAMYATHAVMPNGMYPPISDTTQQLETRAARQNIFGSAEFAYAASAGRMGSKPLQRTLVLPESGYAIYRSEWGNPKATFAFFSAAYNANYHKHSDDLSLFLRSGGIDLLSEAGPYGYDYNDPLTKYGYSSYAHNCIVVDGISLPRTDGSAHLTTLEAHEVREDGYSVTGRTQRWKDTSHSRTVSIQERAGIPYIDVSDTVESQEEHTYELLWNLGTDVEAVVHGQGFELFHGGRKVMDLHFDANVATKVSLHKGEERPKPLGWRFPRFGEAMPAPVVKISFQGSHAQLRTRIRLAEFNYLDRGLNDKSNGWLRSSGSVSLNYLQVPASSAMGQSKLAVVFTAIHQPGDFTFNYKKSVDTTGVHALYILDDFGDQGSYYLSDHGDLSIFDATQALIARELDRLGLTASDLITAGSSKGGTAAILHGIAAGAGHIIVGAPQVKIGSFLQVPHPNMLEFMMGDTSDRSVNVLDAVVFEAIDDMLDSTRLSILVGEADHHYKNHVLPLKSHAENCQKQLDLTVLPGLPHAEIGAVYRQFLTSKIEQEISESGEETVPFTFQKSGGDPAAISLDVFMPAGWQLASRLYCGTESVARKPYSSDSTALWREMPAGRYRARVFVRNPEDDDVRAFTTPWVTLPNANANANANA
D1-29_029812298hypothetical proteinATGGAATCTCCGAACAAGCCGTTCTTGTTCCGTATGCTCCGTCGTGCTCCGAAGGGGTGGTTGAGGGCTGCGCTAAGCCCCGCTGCGACGGGCACGGCGCTAGCTATCCTGGCAAGTACGTTAGTTGCAGGCCCTGCAGCGGCTGCTACTTTGAGCGAGCAGCGTGCTGCCCTGCGCCAGATCACTTACGCTGCGGGCACGGACTACGCGAACGCCCGCCCGTTTGTGGCGGAGCTGGCCAGGAGGAATGCACTGACGGTCAAGGATGCAATAGCAGCAGGCACTGCATCCCTTAAGGCTGCTGGTGATGAGCTGACGTTGGCGAAGACTCAAGAGGCGATGGATGCAGTGGCCTCACGGATCAGGGAAGAGGCAACGAGGGCGGGGACAGTTCGGAAGGTTGCTGAACAGCTCTCCATTTTGGTTGATCTTCGAAGTGCCCAACAAGCCGTTGCCACAAAGGCCCTAAACGACTTATCGGCCGCCCGAATAACGCTCAGCACCTATGGGGGATCAAAGGACAGAACCAGCGCCTTCACCACGCAACTCGCGGCGGATCTCACCATCCAGTTAGGTGTTATCGGCAAACCCGTCCCGGCACCGGACCTGAAATCCGGGGCCTGGCTCTCGACGCTACAGAATGGGACAGGCCCAATCCCGGCCGTTCCAGGCTGGGTTGGATTCCCGGGCGGGTGCGCTTTGCCTTCTGCCAGCAGCACATTCGTCCCCGTTCTTCCGACAGATGGTCCTGGCGTTGGCACGTCGAAGCAACTGGTAGCCGATGCGAAATCCCGCCAGGGGGCAGACACCGCACTGGCGTCGGTCCATGCCCAGATGCTTCGGTCCGCGTCCGCGGAATCGGCCCGGACCATGCCATTGGCGGAACTTCGTGAGGCCTACGTTCCCCGCGTGGCCCGGTTGGGATATGGCTGGCTGTCCGGCGCCGACAGCGTATCCCGAAGCGTCCTTGCCGCGGAAGCCAACCAAATACTCGCAGCCGGCCCCGAGGACATGGACACTCTGTCGTCTTCCCATTTGCTGCTCGCTGCGGCGACAGCGACGGATTGGGCCAAGGCGAGCGGCATGGAGGAGAATGTACTCGTCCGATGGCTCGGGCCGCAGACTTGTCTGCAGGCCGACGGTGAAAACTTCGTGGATGCCGCAACTAACATCGCCGCGATCCATAACGCTGCTAATTTTGTAGCCGCGGCGGTTTTTCTCAAGAAGTCTCCGGCACGAGCTGCTGCGCTGGCTAAGGAGTCCCTTAGTTCAATCCAGCCGGCCCTTGGAATGATTACCACGGACGGTGGTACCCAGGAAGGCCCGGGGTATTGGACTTACCAAAGTCGGGCAATATCCGTGCTGTACTCCACATTGCCCAATGCATATTCAGCAATTCCAGTCTCGATGCCAACACTCGCCAGGGTTTCAGGCTACGCGATGAACAGCACGGATCCTGACAACCGGCCAACGCCATTCGCCGACGCTAGTCCAGCCGAACTGAGTCCGCTGATGCCCGCCTGGGATGCCCATGTTCGGAAGGACCCTGCGGTTGCGGCGTGGGTTGCCGAAAGGTTTAAGCAGAAGCCTGATGCCTATCTTATGTGGTGGAGTTCGCCGGCAGGTGTGCTGCCTGCAAAGAAGTCGTCGGTCTACCCGCAGACGGGACTGGCTGCCCTCCATCTGCCGGCAAGCACAGCGACGCTCAAGGGTGGTGTGAACAGCGCCAACCATGCTCATCTTGATCTGGGAACAGTTTCCTTCTATCGCCGCGGGGTTCAGTGGTCGGTGGATCCTGGCACTCCGGAAGGAGCTGCGCCGGGCTACTACTCGGACCCGACGCGCTGGACCTATTGGAAGCCAGGTACATCCGCCCACTCGACCTTGATGGTACAAGGCACAAACCAGCCAACAACTGCAACTGCGCCCGTGACTATGCCCACTACGTCCAGCGCTCTAGTGGACCTGCGGAAGGCGTTCCCGGGATCGACCCTGGCAACCCGCTCAGTTGACCACGGACAGTCCGCGATGGTGATCAAAGACACCATTCGATCGGACAAACCTGTGGACCTTGTTTGGCAGTGGGTGACTGATGCCTCGGTAAGTTTGGGCTCTGATCGCGCAGTTCTTCGGCGCAGCGGACAGACTCTGGTCCTCCGATTTGCTGGTATTCCTGCTGGCGCCTCACTCACTGCGGTACCTGCCCCGGAGAACGGACCGGGCGGTCAACCATTGACCATCGTCAAGCTAACCATGCCGCAGGTACAGAACCTGGCCCTTACCACCTCGGCATATTAGMESPNKPFLFRMLRRAPKGWLRAALSPAATGTALAILASTLVAGPAAAATLSEQRAALRQITYAAGTDYANARPFVAELARRNALTVKDAIAAGTASLKAAGDELTLAKTQEAMDAVASRIREEATRAGTVRKVAEQLSILVDLRSAQQAVATKALNDLSAARITLSTYGGSKDRTSAFTTQLAADLTIQLGVIGKPVPAPDLKSGAWLSTLQNGTGPIPAVPGWVGFPGGCALPSASSTFVPVLPTDGPGVGTSKQLVADAKSRQGADTALASVHAQMLRSASAESARTMPLAELREAYVPRVARLGYGWLSGADSVSRSVLAAEANQILAAGPEDMDTLSSSHLLLAAATATDWAKASGMEENVLVRWLGPQTCLQADGENFVDAATNIAAIHNAANFVAAAVFLKKSPARAAALAKESLSSIQPALGMITTDGGTQEGPGYWTYQSRAISVLYSTLPNAYSAIPVSMPTLARVSGYAMNSTDPDNRPTPFADASPAELSPLMPAWDAHVRKDPAVAAWVAERFKQKPDAYLMWWSSPAGVLPAKKSSVYPQTGLAALHLPASTATLKGGVNSANHAHLDLGTVSFYRRGVQWSVDPGTPEGAAPGYYSDPTRWTYWKPGTSAHSTLMVQGTNQPTTATAPVTMPTTSSALVDLRKAFPGSTLATRSVDHGQSAMVIKDTIRSDKPVDLVWQWVTDASVSLGSDRAVLRRSGQTLVLRFAGIPAGASLTAVPAPENGPGGQPLTIVKLTMPQVQNLALTTSAYNANANANANA
D1-29_029821011dapH2,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-acetyltransferaseATGAGAACATTGCAAAATACAGAAATTGAACTCAAAAATTTTTTTCAATTACAGGTAAAAGTAAATTTCAACGCGAGACTGTATGCTTTCTATCTATTCCGGAACGATGAAGTGATTGAGCGAACACCTTACACCGTTCAGCCCACTCATACTTTCCCGCTGGACAAAGCAGGAGTCTATCGCGTAAAGTCCTATGCCAAATCTGATTCCGGTGAGATCATCTCCGAGATATCAGAGCGCTTTCGTTTTGAAGGCTTCAGCGATGTTCCCCGGTTACCGGATACAAAAAATGTTGCAGTCTTCGGCGTAAACCGAACTTCCGGATTTGCTGCCCATGTTTTTGCAGCAAGAAATAACGTCCTCTGTTTCGTCGACCCAGTCGGGGAATACATCGGAGCAGATTTTTTTGGTCGCACAGTCGTCGGGATCGATGAGATGCCGGCGGAGGCCATCGCAGTCGGCCATGAGATGTATGAGCCTGAATACGCCGGACTGCACGATTTCACACTCGCCAATGGCGCTGTTGATATTCTATCCAAAGAGCTTCATCGGTTCAGCGTCATGGATTTATACCGATTGTCTCGCTCGGCTTATCTCGAAGGATTTAAGGAGGGTGCAATGCATATTCAGACGTTTATCTTCAATAAGTTCAATTGCCGCGTACCCTTTCTGGCCACCATTGGGGAAGGAACTCGGCTGGGGATAGGTGGTATCGGGACCGTAATCCACCCAGATTCAGTGATAGGCCGGGACTGCGTCATTGCGCAGAATGTGACGTTGGGTGGCCGAGTCCGAGGGAATGGGACGCCCATCATTGGCAACAATGTATTTATTGCCCCTGGCGCCAAGTGCTTCGGAGGGAAAATCGGTAATAACGTGGTTATCGGAGCCAATGCCGTAGTGCTGGATGAGGTTCCGGATAACTGCGTGGTCGCCGGCGTTCCTGCCCGGATAATCAGCAGGGACATGTCGCGCTACACGGATTACACCGCACGCCCCAGCCGGGCATGAMRTLQNTEIELKNFFQLQVKVNFNARLYAFYLFRNDEVIERTPYTVQPTHTFPLDKAGVYRVKSYAKSDSGEIISEISERFRFEGFSDVPRLPDTKNVAVFGVNRTSGFAAHVFAARNNVLCFVDPVGEYIGADFFGRTVVGIDEMPAEAIAVGHEMYEPEYAGLHDFTLANGAVDILSKELHRFSVMDLYRLSRSAYLEGFKEGAMHIQTFIFNKFNCRVPFLATIGEGTRLGIGGIGTVIHPDSVIGRDCVIAQNVTLGGRVRGNGTPIIGNNVFIAPGAKCFGGKIGNNVVIGANAVVLDEVPDNCVVAGVPARIISRDMSRYTDYTARPSRANANANANANA
D1-29_029834437mshA_3D-inositol-3-phosphate glycosyltransferaseTTGAAGTATGCAGATGAAGTTGCCCAGCTGGCAACGGTGAAATTGGCCAAACGTAAGAGGTATCTGCGGGATATTGACGCCGTCATCCAGGACTATGAGCGACTCTTGGCCCATGAAGCAAAAAGTCGACGACGGGTTGAAGTCCTTGAAAAGGACCTTCGGGCCATGCGACGGGCCCGGGACAACGCCATGGCTGAGCTGAAATCGGCGAACGATGACCGAAACAAACTCAAATCAACGCTAAAAGCCCTTCGCTCTTCCAAGAGCCTTCGATTGGGGCAGGCAATCCTTGCCCCCGCACGGAGTCTCTCGCGCGTCTTAAGTGACAAAGGAACGTCGGCTCAGATTAGTCCAAATTTGCCGGTGCGCTCGACAGCAGGAGGGCCCGTCCAGCCTGCGAAGCAGCCAGGCGGCTCTAAGGCGCCGCAAGCCGTTTCCAGACCCGTCAAGACCGCGGCACCTACCCCTGTCAGGCGCGAAGACCTCATCAGTGAGGTTGAGGCGAATCCGTCTAAGGCGGCCGCTCTGAAGCTGATTTCACACGACTACTTCACCAGGGGAGCGATCCTGGAACCCGCGGAGTTCATTCTGGAGAACTCCGCACTGCTGACAGACCTGACTGGTTCCGACCTCGCGCTTGTACAAAATGTTCTTGGGCAGCGCGAACTGCTGACCCGGGAGCAGTTTCTCTCCCCTCGGCAACCCAATGCAGGATACTTGGCGGAGCGCAACCGGATCATGTACTGCGCTCACAGCACCGGCCACTACAACAGCAACGGCTATGCGACACGAACCGGGGGTGTCGTCGCCGGGCTCAAAGCAAATGGCGAAGACGTGTTGGTCGTGGCGCGTCCCGGGTACCCCTGGGATTCGAAAGTCGATGTTGAGGTTTCATCCAAGGAACGCTTTGAACGTGAGATCAGTGGTGTCGCGCATATCTTTAATCCTGGACCAAGTTGGACCGCCGACCGTCTCGACTATTATCTGGCTGAGTCCGTCGACGTCTACGTTCGCGAAGCCCAGCGCAATCGGGTCTCGCTTATCCAATCTGCATCTAACTATGTGACGGCCCTCCCGGCTCTTATGGCGGCTCGAAGGCTTGGCATCCCATTCGCCTATGAAGTGCGCGGTCTTTGGGAGATCACACAGCTATCAAACAACCCCCTCTGGGCTGAAACAGACCGCTACAAGCTTGCCCTCAAACTTGAAACCCTCGTGGCCAGGGAAGCCGATCTCGTCCTGGCAATAACCAGCCAGGTGCGGGATGAACTGGTGGTGCGCGGGGTTGATTCAACCGCTATCAGCTTGATGCCTAATTCGGTCGACACGGACACGTTTGCTCCGATGCCTGCTCTTAAGTCGCTTCGTCGAGAACTTGGACTTGCGGAGACGACAACTGTCGTCGGCTACGCCGGGAGCCTCGTCGCCTATGAGGGCCTCGAGGATCTCCTGGAGGCGGCCCGGATAGTCCTGGCTGGCGGGCTTGATGTCACGTTTGTGATCGTGGGAGACGGCGTTCAGTTGCGTGAACTGAAACGGTTGGCCGTTGAACTCGGAATCGCTGAAAGCGTCAAGTTCACCGGTAGAGTGCCGGCCGGAGAAATTCCGAATTATGTCAGTCTTTTTGACATCATGCCTTGCCCCCGGAGGAGGTTGCCGGTTACCGAAATGGTTTCACCGCTAAAACCCCTCGAGGCCATGGCAAGCGCCAAGGCTTTGATTCTCAGCGACCTCGCACCTTTGCGCGATCTGGCCGGACCCGGGCAGGATCGAGCTTTGCTCTCCGAAGCCGGGAATCCGAGCTCTCTCGCTGAGGCCATCCAAGTTTTGGCCCGGGATCCCGAACGTCGGGCTGTCATGGGCAGACGGGCGCGCCTATGGGCTATCGACGAACGAACATGGAGGTTTACCGGCAGCAAGGCAGTTGAAGCCCACGTGCGTGCCGGCAAGCGCACGGCACCGCCCAAAGGACGGCGCTTGTCGGAGCTGACCGTCGGCATCATTGCCGATGAATTCACTCTGGAGGGGATGCGAGGCGAATCCAAAATGGTGGAGCTCCGTCCGGACTCTTGGCGCCAGCAGGTGGATGCGCAGCCGCTGGATGCTCTGCTGGTAGAGTCCGCGTGGGAGGGCATCGACGGCGAGTGGAAGCAAAAGGTCGGCTACTATGACGACGAGCGATTCTCCGCCCTGAGAGCTATCCTGGAACACTGCAATGCCGCGGGAGTCCCTACGATCTTCTGGAATAAGGAAGATCCTGTCCACTTCAACAGATTCAGCCATACCGCGTACCATTTTGACCACGTGTTCACGACAGATTCGGACTGCATCCGTCGGTACATGGCTCATGGCGGTCCCCGACAGCGAACGGTGGCCTCGCTTTCCTTCTATGCCCAGTCCCGGCTACATAATATCGTGCCATCTGGCCGGCCATATGATCACTCCGTCGCCTACGCCGGTTCGTTCTATGGCGAGAGGTATAAGGCACGGTCAGAAGAACTAGCCATGATCCTTGACGTTGCCAAAAACCACGGGTTGTCGATTTACGACAGGCAGCACCTAAACCCGGACAGTCCCTACCGGTTCCCTGAACATCTCGCCCGATACGTGCGTGGCGGTCTGACCTACGCCGAAATGGTTGATGCGTATAAAACGCATCCTGTGCACGTGAATGTGAACTCTGTCGACGGTTCACCGACCATGTTCTCGAGGCGCGTCATGGAGGTAGCGGCGTCCGGCTCGGCGGTCTTGAGCGGGAAAGGCATTGGTGTTAACCAGGTCATGAATGGACTTGTGCCGGTCATCGACGGCGCAGAAGACTTGGAGCTGCTTATTGGCGAATGGATGAATAATGAGTCAGCGCGGATAAGGGACGCTTGGCTCGCATACAGGCATGTCCACCGGGGGCATACCGCGGCTCATCGGTTGGCGTACATACTTCGAACTGCCGGGCTGGTCATTGAAGCACCAGAGATCCCCAGTTATTCGGTATTCGTTGATACCTATACCCCGGAAATTGCCTCGGTGATCGCTATGCAGACCGTGCAACCAGTCCGGATCTACTGCATCGAAAACAGAATGGTCCCGGAATTAGCCATAGAGATCGTGGCTAGTTTCGCCGAGGCCGCCGACATGGCGATGGCTGAGGGGGTCCAATTTATAGGTTCACCTGGAACAGGACATGGCGATCGAACGGTATTCGAGGACATGCTCACCGCCACCACGTTTGGTACGTGGAGTGCGGTCGGGATTGAGAGAGACAACCTGGACACGCCAGGTCTTGGGCTGGCCCGTCATGGTTCAGCGGCATCGGGCGGGCCGGTGCTCACGGCCCTCGTGGACCGGCAAAATGACGGCCCTCTCTGTCTCCGGCGTGAACTCGTACCCCAGGAGCACTTGTCCTCGGTGCGTTTGGTTAGCAAACCAAGAAGCGTACTGATTGCAGGGCACGACCTAAAATTCGCCGCGGGCATCGTTTCGGAGCTTGAGGCGTTGGGGCATAGCGTCATGATCGACAAATGGTCGGATCATAACAAACACGATGAAAGTGAAAGCCAGCGCATGCTGGCCCAGGCTGATGTTATTTTTTGTGAATGGACACTCGGGAATGCCGTTTGGTATTCAAAGAATAAGTCTTCGAATCAGCGTCTGGTCACTAGGCTTCATCTTCAAGAGATCTTTCGGCCCTTTGTTAAGGATGTTTCCTACGCGAGTGTGGATGACGTGGTCTTTGTTGGAAAGCATCTCCTCGAGGTGGCCGTCAGGGACCACGGTGTTCCGCGAAGTATCAGTCGTGTGATTCCGAACGCAGTAGACACGGTGGGGCTTCGCCAGGATAAAGTGGCCGACGCCAGGTTCAATCTCGGCTTTGTTGGAATTGTTCCTGCCCGCAAACGGCTGGATAAGGCCTTGGACGTTCTACGGCTTCTCCGCATGCAGGACGATCGTTACCAGCTTTTCATCAAGGGTAAGCGGCCGGAAGAGTTCGATTGGATGGCGAATCGACCGGAGGAGATGTCGTTTTACGATGAGCAGTACCGGCGTATCGAAACCGATCCGCTTCTTGTGGGCGCTGTCACATTTGATGGCCAGGGCGACGACATGGCAGCCTGGTACCGCAAGATCGGAGTGGTTCTGTCCCTGAGCGACTTCGAATCATTCCACCTCACCCTTCCCGATGGCGCTGCCTCCGGCGCGCTGCCTGCAAGCCTGGCATGGCCGGGCGCTGACCAGATTTACCCGACAAGCTGGCTTCATGCAGATGCGGGCGAACTCGCTGAGTTCCTCGGATCGTTGGACGACAGTTCGTGGGCCCATGCTTCGGCAATGGCACAGGACTACGTTGTCTCCCGATTCGACTCCAAAGATGTGCTTGCTGCGATGACTGGCGTCATCCTCGGTGAAAACTCGTCAGTGCCCGGCCGACCGCAGGGGTAAMKYADEVAQLATVKLAKRKRYLRDIDAVIQDYERLLAHEAKSRRRVEVLEKDLRAMRRARDNAMAELKSANDDRNKLKSTLKALRSSKSLRLGQAILAPARSLSRVLSDKGTSAQISPNLPVRSTAGGPVQPAKQPGGSKAPQAVSRPVKTAAPTPVRREDLISEVEANPSKAAALKLISHDYFTRGAILEPAEFILENSALLTDLTGSDLALVQNVLGQRELLTREQFLSPRQPNAGYLAERNRIMYCAHSTGHYNSNGYATRTGGVVAGLKANGEDVLVVARPGYPWDSKVDVEVSSKERFEREISGVAHIFNPGPSWTADRLDYYLAESVDVYVREAQRNRVSLIQSASNYVTALPALMAARRLGIPFAYEVRGLWEITQLSNNPLWAETDRYKLALKLETLVAREADLVLAITSQVRDELVVRGVDSTAISLMPNSVDTDTFAPMPALKSLRRELGLAETTTVVGYAGSLVAYEGLEDLLEAARIVLAGGLDVTFVIVGDGVQLRELKRLAVELGIAESVKFTGRVPAGEIPNYVSLFDIMPCPRRRLPVTEMVSPLKPLEAMASAKALILSDLAPLRDLAGPGQDRALLSEAGNPSSLAEAIQVLARDPERRAVMGRRARLWAIDERTWRFTGSKAVEAHVRAGKRTAPPKGRRLSELTVGIIADEFTLEGMRGESKMVELRPDSWRQQVDAQPLDALLVESAWEGIDGEWKQKVGYYDDERFSALRAILEHCNAAGVPTIFWNKEDPVHFNRFSHTAYHFDHVFTTDSDCIRRYMAHGGPRQRTVASLSFYAQSRLHNIVPSGRPYDHSVAYAGSFYGERYKARSEELAMILDVAKNHGLSIYDRQHLNPDSPYRFPEHLARYVRGGLTYAEMVDAYKTHPVHVNVNSVDGSPTMFSRRVMEVAASGSAVLSGKGIGVNQVMNGLVPVIDGAEDLELLIGEWMNNESARIRDAWLAYRHVHRGHTAAHRLAYILRTAGLVIEAPEIPSYSVFVDTYTPEIASVIAMQTVQPVRIYCIENRMVPELAIEIVASFAEAADMAMAEGVQFIGSPGTGHGDRTVFEDMLTATTFGTWSAVGIERDNLDTPGLGLARHGSAASGGPVLTALVDRQNDGPLCLRRELVPQEHLSSVRLVSKPRSVLIAGHDLKFAAGIVSELEALGHSVMIDKWSDHNKHDESESQRMLAQADVIFCEWTLGNAVWYSKNKSSNQRLVTRLHLQEIFRPFVKDVSYASVDDVVFVGKHLLEVAVRDHGVPRSISRVIPNAVDTVGLRQDKVADARFNLGFVGIVPARKRLDKALDVLRLLRMQDDRYQLFIKGKRPEEFDWMANRPEEMSFYDEQYRRIETDPLLVGAVTFDGQGDDMAAWYRKIGVVLSLSDFESFHLTLPDGAASGALPASLAWPGADQIYPTSWLHADAGELAEFLGSLDDSSWAHASAMAQDYVVSRFDSKDVLAAMTGVILGENSSVPGRPQGNANANANANA
D1-29_029841248wecCCOG0677UDP-N-acetyl-D-mannosamine dehydrogenaseTTGAATACGATTGAAACAGTAGCTGTCATTGGTTTGGGCTATATCGGTCTGCCGACGGCGGCGATCCTTGCCGGCAACGGCATCCACGTTATCGGGGTGGACGTCAACGCCAACACGGTCGAGTCCGTCAACCGAGGCGAAGTTCCTTTTGTAGAGCCAGACTTGGCTTCCTATGTCGCCGGCGCGGTGAGCCAGCACAAGCTGAGCGCGTCCACTGAAACGCCGGTTGCCCAAGCGTACATCGTTGCGGTGCCCACGCCATTCAACCCGGACCACACGGCAGACGTGACCTACATCAAGGCGGCCGCACGTGGTATCGCGCCGCAGCTTGTGGGCGGGGAACTAGTCATACTGGAGTCCACTTCGCCTCCGGGAACCACCCAGCTTCTGGGTGATTACCTCATCAGTCTCCGGCCGGACCTCAGCCTCGACGGAGCTGACGGCAGGCCGTCCATCCATGTGGCCCATTGTCCAGAGCGCGTCCTGCCTGGCCGAATCATGATTGAGCTTGTCACGAACGACCGAATCGTGGGTGGCCTCACCCCCGAAGCTGCCCAACTTGCCAAAGCACTCTACGCAGTCTTCTGCCAGGGAGAAATCCTGGTAACCGATGCGGCCACCGCGGAAATGGCAAAGCTGGTGGAGAATTCATATCGGGACGTCAATATCGCCTTTGCGAACGAGCTCTCGGTGATCAGCGACAAACTTGGTATTAACGTTTGGGAACTCATTAGGCTTGCCAACCACCATCCTCGCGTCAATATCCTGCAGCCAGGGCCGGGTGTTGGCGGTCACTGCATCGCCGTGGACCCCTGGTTCATTGTCGCTGCGGCCCCGGAGGAGGCGCAGCTCATCCGGCAGGCACGGGAGACAAACGACTCGAAGCCCGATTGGGTCGTACGAAAAGTGCAAGAGGCAGTAGGCGGTGTCGTCTCGCCAAAGATTGCTGTCCTCGGACTGGCGTTCAAAGCCAACATCGATGACCTCCGCGAGTCGCCGGCCGTTGCCATCGTCGAAAAGCTCAGCCTGAAGCTCGATGGCGCTGAACTCCTGGTTGTGGAACCTCATGTGGACCGCCTGCCGAAGCAGCTTTCCGGTCTGAACAATGTAATGCTGCAGGACTTGGACATGGCCGTTGGTGCGGCCGACGCAGTCGTGCTCCTCGTGGATCACGACGCATTTAGAGAAATGGACCGGCAGGTCATGCGCGGAAAGCCATTCTTGGACACGCGGGGAATCTGGCAGTAAMNTIETVAVIGLGYIGLPTAAILAGNGIHVIGVDVNANTVESVNRGEVPFVEPDLASYVAGAVSQHKLSASTETPVAQAYIVAVPTPFNPDHTADVTYIKAAARGIAPQLVGGELVILESTSPPGTTQLLGDYLISLRPDLSLDGADGRPSIHVAHCPERVLPGRIMIELVTNDRIVGGLTPEAAQLAKALYAVFCQGEILVTDAATAEMAKLVENSYRDVNIAFANELSVISDKLGINVWELIRLANHHPRVNILQPGPGVGGHCIAVDPWFIVAAAPEEAQLIRQARETNDSKPDWVVRKVQEAVGGVVSPKIAVLGLAFKANIDDLRESPAVAIVEKLSLKLDGAELLVVEPHVDRLPKQLSGLNNVMLQDLDMAVGAADAVVLLVDHDAFREMDRQVMRGKPFLDTRGIWQPGPT0022670_253DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-UDP-N-ACETYL-D-MANNOSAMINE_METABOLISMCE-EPS-UDP-N_ACETYL_D_MANNOSAMINE_MODIFICATION,PGPT0022670-wecC-K02472NANA
D1-29_029851860hypothetical proteinTTGCGGCAGGTCCGGACGTGGCGGGAGCGTGAAGCCTTCGAGGCCGGCCACCGTAAACTGGCGACCGTTCGCGGCGCTGAGGGTGTATGGGTTGGCCGCGGCAGAAAAAAGCAGCTGAAATTCCGGCCGTCTGTGGTGCCGCCCGCCCGCCTGAGTTCCCCGAAGATGGCTCGTGTAGGTGTGGTTTTCGATGATTTTTCTGCACTCGGCTTCGGCCTCGAGTGGGATTGCGTGCATCTCTCCCCAAAGACTTGGCGCGAGCAACTCTCCGAGCAAGATGTGGACATGGTGTTCATTGAGTCGGCTTGGAAGGGGCTACAAGGGCTGTGGGCAGGAAAGATTGCCCGTCAGGACCATATGGGACAATCACCATTGCGGGAGTTGACCGATTGGTGCCGGGAGCGATCTATTCCCACAGCATTCTGGAACAAGGAGGATCCTCCGCACTACGACGACTTTCTCGCGTCGGCAAAATTGTTCGACTTCGTGTTCACGAGCGACACCAACAGGGTTGAAGCGTACATTCGGGATCTGGGGCACGACCGGGTGGACGTGTTGTCCTTCGCAGCCCAGCCTGTCATTCACAATCCCGTTCGCCCCAAACACGGCTGGCACGAACGAGATGTGGCCTTCGGAGGGATGTATTTCACGGCGAAGTACCCAGACCGCCGCCGGCAGTTGGATACCTTGCTAAGTGCAGCTGATGCAGCCTCACCTGCGATGGAAACCGGGTTGGAGATCTTCTCGCGGCAGCTGGGCGGAGACCCTAGATACCAGTTCCCGGCTCCGTTCGATGCCAGGGTTGTGGGCAAGCTGGACTACTTGGAGATGGTTACGGCCTACAAGGCCTACAAAACTTTCCTCAACGTGAACTCGGTGGTGGACTCTCCCACCATGTGTTCCCGCCGGGTTTTTGAGATCATTGCCTCAGGATCAAACCTGTTGACGACCCCCAGCGCTGCCATAAACACTCACTTCTCCCCGGATGAAATCTTCACTGTTGACACCGAGGCTGAAGCCGAACACCTCCTGCGGGCCTTGCATCGAAATCCGGAATTGGGTGAGCGCCAACTGCACAAGGGTCAGCGGAGGATCTGGCGGGAACACACTTACCAGGCGAGGAGCAACCAAATACTGGCAGCCGTGGCACCGAAGCTGTTGGTTGAGGCCCGGCGCCCGACCGTATCCGTTCTTGTATCGACCATTCGTCCTTGGCAGCTTGAACACGTTTTCCAAACCGTTGGAAGCCAGCGCGGCGTCGACGCAGAGCTGGTGTTGTTGACGCACGGATTCACGGCCGACGCACTGACGATCCGTAATCTGAAAGATCAATACGGAGTTTCAGCTATAACACTGCTTGCAGCGGACGCTCAGGTTCCCTTGGGGGAGTGCCTCAATATGTGTGTATCGGCGGCCTCCGGAGAGGTCCTGACGAAGATGGATGACGACGACTTTTACGCCCCGGAATATCTCAGTGACCAGCTCTATTCGCTCGCCTTTTCCGGTTCGGATGTGGTCGGTAAACAGGCGCACTACATGTTTCTTGTGGACCGGAATGCAACGCTGCTTCGCTTTCCCGAGTGGGAACACCGATATACTCGGACGGTCATGGGTCCCACAATCATGGGCGCCGCGGACGTTTTCCGCAGCAGCCCTTTTGCCGCGGTGGGCAGCGGAGAAGATACACGTTTCCTCCGCCGTGTGGTTGGCGACGGTGGCGTGGTCTATGCATCTGACAGGTTTAATTACTGCCAGCAGCGGTCGTCAACAGGGCACACCTGGAAGGTCGGCGAGAACGAGCTGCTGGCCAGCAGTGCTTTGAAGTTTTTTGGAAATTACAGAGATCAAGTCTCTGTCTGAMRQVRTWREREAFEAGHRKLATVRGAEGVWVGRGRKKQLKFRPSVVPPARLSSPKMARVGVVFDDFSALGFGLEWDCVHLSPKTWREQLSEQDVDMVFIESAWKGLQGLWAGKIARQDHMGQSPLRELTDWCRERSIPTAFWNKEDPPHYDDFLASAKLFDFVFTSDTNRVEAYIRDLGHDRVDVLSFAAQPVIHNPVRPKHGWHERDVAFGGMYFTAKYPDRRRQLDTLLSAADAASPAMETGLEIFSRQLGGDPRYQFPAPFDARVVGKLDYLEMVTAYKAYKTFLNVNSVVDSPTMCSRRVFEIIASGSNLLTTPSAAINTHFSPDEIFTVDTEAEAEHLLRALHRNPELGERQLHKGQRRIWREHTYQARSNQILAAVAPKLLVEARRPTVSVLVSTIRPWQLEHVFQTVGSQRGVDAELVLLTHGFTADALTIRNLKDQYGVSAITLLAADAQVPLGECLNMCVSAASGEVLTKMDDDDFYAPEYLSDQLYSLAFSGSDVVGKQAHYMFLVDRNATLLRFPEWEHRYTRTVMGPTIMGAADVFRSSPFAAVGSGEDTRFLRRVVGDGGVVYASDRFNYCQQRSSTGHTWKVGENELLASSALKFFGNYRDQVSVNANANANANA
D1-29_02986891btuD_12Vitamin B12 import ATP-binding protein BtuDATGGGCGAGAACTCTGAGCTGAATTTTGTCGAAGGGACGCCGTCCGTCGTCATCGACAAGGTCAGCATGACCTACAAAACCACTTCCCGGTCCCGCGTTGAGGCCTCTTCTGCCGGCTCTACCTGGCAGATGATCAAACAGAACGTGGGGAAGACTACGGCTGTCAGTGTCACGGCACTAAAGGAGTTGTCCCTTGTCGTCGAGCACGGGGAGTCTGTCGGGATTATTGGCCGTAATGGTTCGGGCAAAAGTACCTTGCTCAAAGTGGTGGGCGGGCAGATTCCTCCGACATCCGGTGCGGTTTACGCCACATCCACGCCAGTTATGCTGGGCGTCAACGCAGCACTGATACCCGGATTGTCAGGCGACCAGAACATAGTTCTGGGCTGTCTGGCTATGGGCATGTCCCGGCATCAGATCGATGACAAGTACTCAGCGATTGTCGAGTTATCCGGGTTGGACGAAGCAATCCATATGCCGATGAAATCCTATTCCGCTGGCATGGCTTCCCGGCTCCGCTTTGCAATTGCTGCGGCAATCGATCCGGAAATTCTGATAATTGATGAAGCACTGAACACGGGCGATGCACAATTCAAGGACCGAACGCGCAAACGTATGTTGGAACTGCTTGGCCAGGCTGGCACGGTCTTCCTGGTCAGCCACAGCATGTCCACTGTGCTCGACTTGTGCAATAGAGCCATTTGGATCGATCAGGGAGAGTTGCTTGCTGACGGCACACCGGCGGACGTGGTCAAGTCGTACCGCCTGTTTACCCAGCGAATGGCCGACGGCGACCGGGTTGGCGCCCTCAAACTCCGCCGACGGATGATTAACGACCTCCAAGTAGCTGACGTAAGCGACCGCAATTCATTGAGGCGGTCCAGATCTTGAMGENSELNFVEGTPSVVIDKVSMTYKTTSRSRVEASSAGSTWQMIKQNVGKTTAVSVTALKELSLVVEHGESVGIIGRNGSGKSTLLKVVGGQIPPTSGAVYATSTPVMLGVNAALIPGLSGDQNIVLGCLAMGMSRHQIDDKYSAIVELSGLDEAIHMPMKSYSAGMASRLRFAIAAAIDPEILIIDEALNTGDAQFKDRTRKRMLELLGQAGTVFLVSHSMSTVLDLCNRAIWIDQGELLADGTPADVVKSYRLFTQRMADGDRVGALKLRRRMINDLQVADVSDRNSLRRSRSPGPT0023470_407DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023470-tagH-K09693NANA
D1-29_02987900hypothetical proteinTTGTTGAGCTCGAATACCACGCAGGCCTCCCGGGGGCCTCAGCCAACTCCGATAACAACTTCCGTCAACCTGCGCGGACTCCGCCGCGTGGGTGCCCGGCCCCCCTTCCTCGATTATCTTGTGTCGCTCTGGGACTACAGGCACTTCATCTTTTTCGATGCTCAGGCTCGTGTTCAGACCGGAAACGAACAGGACCATCTTGGCAGGGCTTGGCTGGTGTTGGGTCCCCTCTTGAACGGTCTGATGTTCTACCTGATCATGGGCGTCATATTGAAGTCAGGAAGCGGGATCGAGAACTTCGTTTCTTTTTTGATCATCGGCGTTTTCCTCTTTCAGATGTCGACCCGTGCCATCACGTCGTCGTCGCGCGTCATAACTGCGAACAAGAACGTAATCCATGCATTTCAGTTTCCGCGAGCCAGCCTGGTCCTTGCGGCCAACTTGCGGGAGCTTCTCTCCAATGTTCCGGTCCTGATCACGATGCTCATTCTGATCATTGTTCTGCCGCCCGCAGAAGAGATTACTTGGCGCTGGCTGCTGATCATACCGGTGGTGGCCCTGCAGTTCGTTTTCAACCTCGGCGTCGGCCTGATCCTTGCCCGGGTGGTGGCAGTGTTCAACGATGCGAGCCAGCTGATCTCCTATGCAATGCGCCTGTGGATGTACGGCTCCTGCATGTTTTACTCGATTGAAAGGTTCGACGATATGCCCGTCGTGAAGACGATCATGGAGTACAACCCTCTGTACAACGTCCTCGACTTGGCTAGGGAAACGTTGCTGTACGGAAATATCGGGGAATGGCGGTCTTGGGCAATCCTTGCGCTTTGGTCCATTTCGGCGCTGGCTATTGGAACCGTGGTCTTCTGGCGGGGGGAGGAGACGTATGGGCGAGAACTCTGAMLSSNTTQASRGPQPTPITTSVNLRGLRRVGARPPFLDYLVSLWDYRHFIFFDAQARVQTGNEQDHLGRAWLVLGPLLNGLMFYLIMGVILKSGSGIENFVSFLIIGVFLFQMSTRAITSSSRVITANKNVIHAFQFPRASLVLAANLRELLSNVPVLITMLILIIVLPPAEEITWRWLLIIPVVALQFVFNLGVGLILARVVAVFNDASQLISYAMRLWMYGSCMFYSIERFDDMPVVKTIMEYNPLYNVLDLARETLLYGNIGEWRSWAILALWSISALAIGTVVFWRGEETYGRELPGPT0023465_264DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_TRANSPORT,PGPT0023465-tagG-K09692NANA
D1-29_029881743mshA_4D-inositol-3-phosphate glycosyltransferaseATGTTTCAGCTCTTGAAGAACGTGCTGCTCGGCTTCACTACAGTTTGGCACCACCTGGGCGATGACCCGGTGGTGCTTTGCCTTCAGGTTTCGCGACGGCTCCCGATGCCTGCTGTTCTGTACGTTGCCCGCTGGACGTGCGCGGCCGCACCCCGCAACTCGGCGGCAGTGATCGTGCTCCTTGCAGCCCTTATTCTGGGTGACCATGCCGATGTTGCCAGGCGCTTGAATCTTGCTTTGGATGGCAAGGTTTCGGGAGTCAGAGCGCGACGACTGGCCGACATTGCCATCGCCGCCAGCCAGAGTGACCTGTCAGACCGCTTGCTGGATGCAGCAAAAAATGCATCGGGCGTCTACTCCACACAAGCTCGACGGCTTTGGCACCGGGGCCTGATGACTGATGCAGTTGCGGCCTTGGACACGGCTGGGGCGTCGCGGATGCACCGTGAACGGCTCTCCGGGGAACTCAGGGTGTTCCAGGGCTTTGCGCCAGCACTGCCCAACCAACCCGGCTACGTGCCGACCCCTGGTCGAGTGCTCCACCTCCTCACCAATTCCCTCCCTCATACGAGTAGCGGTTATGCCCAGCGTTCACATTCGATGCTGCTGGCCCAGCAAGAAGTTGGCTGGGACGTCTTAGCGGTCACAAGGCTGGGTTATCCCGTCCAAGTGGGGAAATTGCTGGCGCGGACCAGCGATATTGTTGATGGCGTTCGATATCGCCGGCTGCTTCCGGCCATCTTGGCTCCGTCAATGGACGCACGCTTGCAGCAGCAGGCAAATGAGCTTCTCCGAGTCGCTCTGGAGTTTAAGCCCGCGGTACTCCACACCACTACGCACTACGTCAACGGAATCGTAGTTCGTGCCGTCGCCGAGGCCTTGGGAATCCCTTGGGTTTATGAAGTCCGTGGACAACTCGCAGACACATGGGCGTCGGCGCGAGGTCCAGCTGCCCGCGACAGCGAGCGGTATCATTTGTTTCACAAGCGTGAAACCCAAATGATGCGGGACGCGGATCTAGTCGTCACGCTAGGTTCAGCCATGAAGGCGAACATTGTTTGCGGCGGTGTCCCGCCGGAAAAGGTGATTATCGCCCCAAACGCCGTCGGCGGGGTGTTCCTGAACGAGCCTGTGGATTCTGCTGCGGCCCGGCATAAGTTAGGGCTGCCGACCAATGGTCAATACATCGGCACTGTCAGTAGTCTCGTTCCGTATGAAGGACTAGACGACCTGATCGGAGCCTTCGAACTCCTGGCCCCCAAGCATCCTGACCTGCGGCTCCTGGTAGTCGGCGACGGTCAGTCGCTGCCATCGCTAAAGGGACAAGCCGAACGCACTGGCTTTATTGATCGCATAATCTTTACAGGCCGTGTGTCCAGAGACCAGGCAGCTTTGTACCACCAGGCCCTGGATGTCTTCGTTGTTCCCCGTAAGGATCTTGCGGTCACTCGATCCGTAACACCTTTGAAGCCGGTGGAGGCTCTGGCCTGCGGCAGACCTGTCGTCGCCAGCCGACTCGCCGCACTCGAAGAGATAGTCACCGACGGCAAAAACGGTCTCCTCGCGGTTCCCGAGGATCGACATGACTTCGCGGCTAAACTCGAACGGTTACTCAACTCCCAGGATCTCAGGATCCGTTTGGGGAACGCGGGACGACGGGAAGTGCTTGACTCTCGTACTTGGCGAGCGAACGCGGCTACTCTCAACACGGCATACAAGCAACTGATGGAGGCTCCTTGTTGAMFQLLKNVLLGFTTVWHHLGDDPVVLCLQVSRRLPMPAVLYVARWTCAAAPRNSAAVIVLLAALILGDHADVARRLNLALDGKVSGVRARRLADIAIAASQSDLSDRLLDAAKNASGVYSTQARRLWHRGLMTDAVAALDTAGASRMHRERLSGELRVFQGFAPALPNQPGYVPTPGRVLHLLTNSLPHTSSGYAQRSHSMLLAQQEVGWDVLAVTRLGYPVQVGKLLARTSDIVDGVRYRRLLPAILAPSMDARLQQQANELLRVALEFKPAVLHTTTHYVNGIVVRAVAEALGIPWVYEVRGQLADTWASARGPAARDSERYHLFHKRETQMMRDADLVVTLGSAMKANIVCGGVPPEKVIIAPNAVGGVFLNEPVDSAAARHKLGLPTNGQYIGTVSSLVPYEGLDDLIGAFELLAPKHPDLRLLVVGDGQSLPSLKGQAERTGFIDRIIFTGRVSRDQAALYHQALDVFVVPRKDLAVTRSVTPLKPVEALACGRPVVASRLAALEEIVTDGKNGLLAVPEDRHDFAAKLERLLNSQDLRIRLGNAGRREVLDSRTWRANAATLNTAYKQLMEAPCPGPT0024580_39DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
D1-29_029891251hypothetical proteinATGAAATACGGATCGCCGATAGATGGCGGGGCCTTGAACGAGGCTCCGCAGATCACCCTCATCACCCATTCGTACTGGCCTGAGCACAGCCCGCCTCAGCGCCGCTGGACAGCCATGATAAAGGAGTTTTCCCGCGCCGGGTGGGGGATTGACGTGGTCGCGCCAGTGGCTCATTATCCCTTCGGCAGGAGAAACCTGCCGCGCCTTACTGCCGGCCGCGGATTCCGTGTCCTCAACGGGCAGTTCACCGAAAAGATCATGCATGTGCCGTATTTGCGTCACGGTACATCGCGCGTTGCACGCTTATTGGATCAATGCTATTCCGCGGCGCTGTCTGTTCCGGCGGGCCTGCTCGTGAGGAAGCCTGACGTCGTAATTGTGACAGCCCCGGCTCTCCCCTCCCTGGCCGCTGGCTACCTCTTGGCAAAACTACGCAGGGTGCCGCTTATCGTTGAAATGCGGGATGCTTGGCCGGACCTGGCCCGGGATGCACGGATTGTTAAGGGCAAGGTCAAAGGCGTCATCGAGCACCTGGTGGACTTCGTCCAGCACCGTGCCGACCTCGTGATCACAGTGACCGAGGGATTTGCTGCAACCCTTCGGGCACGCGGTGTCCGGAATGTAGCCACCGTCAGTAACGGTGTTCATCTGGAGTCGATTCCAGTCATGAAACCACCGGATCTCATCCGCCCCATTTTTGAAGCCCTGTACCTCGGAAACCATGGCGAGAGTCAGAAGCTGGATGTTGCCATACGCGCCAGCGCACTTGTGGGCGAATCAATGCACCTGCATATGGTGGGTCATGGGACCCAGCGGCCGGCTCTGGAGAAGCTTGCACGACTTTTGAATGCCCCAGTTACTTTCCATGCGCCCCTGCACGCTGAAGCAGTTCTCGAGCGTTACGCATCGGCCGATACATGCTTGGTATCCCTTCGTGATGATTGGAAGTCCTTTGAAACGACGGTCCCGTCCAAGACCTACGAGGTACTGGCCGTAGGCCGCCACGTCACAGCGATCGTCCGTGGGGAGGCCGCCCGGATTATCAGGGAGGCTGAAGCGGGTGACATTGTGGAGAGCGATCCGAACAAACTTGCTGCCCTCTGGCGAGAACTTGCGGCGGACCGCGGGCGGCTCGTGCGGAACGGAACCAGCAGGGAGTGGGTGAAGGCCCACGCCGAATACGAACCATTGGCCAGCCAGTACATGGACCTCATATGTTCGCTTCTCGGCAAAGGATCCACCAGAATCTAAMKYGSPIDGGALNEAPQITLITHSYWPEHSPPQRRWTAMIKEFSRAGWGIDVVAPVAHYPFGRRNLPRLTAGRGFRVLNGQFTEKIMHVPYLRHGTSRVARLLDQCYSAALSVPAGLLVRKPDVVIVTAPALPSLAAGYLLAKLRRVPLIVEMRDAWPDLARDARIVKGKVKGVIEHLVDFVQHRADLVITVTEGFAATLRARGVRNVATVSNGVHLESIPVMKPPDLIRPIFEALYLGNHGESQKLDVAIRASALVGESMHLHMVGHGTQRPALEKLARLLNAPVTFHAPLHAEAVLERYASADTCLVSLRDDWKSFETTVPSKTYEVLAVGRHVTAIVRGEAARIIREAEAGDIVESDPNKLAALWRELAADRGRLVRNGTSREWVKAHAEYEPLASQYMDLICSLLGKGSTRIPGPT0023340_154DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_BIOSYNTHESIS,PGPT0023340-wcaI-K03208NANA
D1-29_02990648hypothetical proteinGTGATCGATCGCGGCTGGAGACATAAGTTTGCCAACATGGTTCTCAGTGCTGCGGTGACGTCCGCGCTGGTGCTCTGTCCGGTCGGGGTAGCCTTCGCCACGGAGACTCCTCCCATTAGTCCTCCGCCCCTGACAGTGCTTGAACCGGGGCCGACTGAATCACAAACACCACCACCAGCGGAACCCACAGAACCGGTCACCGATCCGGCGCCGGATCCGGATCCGGGTACGGTGCCTAACCAGCCATCGGATCCATTCCCCGGCACGCAGAACCCGGCGGCTCCGCCTTTGGTGGCCGAAGAGCCAGCCTTCAATCCGCCGGGATATGCTGCCCCTGTCGTCCTTCCTCCTGCACTGCCCATAGAGGTAACCGAGGAAACGGTCCCCCATACCGTGGCTACGGAGCCTGCCCCGGAGCCAGCAGTTATGACCCCAGCCCCTTTTGAATCTACCGCTGCCGCAGCGCCACCTGAAAAGCCCGCCGCCGTGGTTGAGTCCACGGTTCAGGCGGCAGTTGCGGCGGCGTCTGGCAGCCCCCTATGGCTACAGGCTGCTGTCGTTTGCGCCCTCTTGGGCCTGGGCTACGGTTACTTTCGCTTTCTTCGGTCGGCAAGGATGACAATTTCAGCCAGGGCGGGCAAGTCCTGAMIDRGWRHKFANMVLSAAVTSALVLCPVGVAFATETPPISPPPLTVLEPGPTESQTPPPAEPTEPVTDPAPDPDPGTVPNQPSDPFPGTQNPAAPPLVAEEPAFNPPGYAAPVVLPPALPIEVTEETVPHTVATEPAPEPAVMTPAPFESTAAAAPPEKPAAVVESTVQAAVAAASGSPLWLQAAVVCALLGLGYGYFRFLRSARMTISARAGKSNANANANANA
D1-29_02991507hypothetical proteinATGCATCCAGTTGTTCCCTTCGAGTCCACGCTTCGGCTCATTGCCCTCGCCGTTACGACTGGAGCCGCGTTCCTAGGACTGACTGCCTGCTCGCCCGTTGTGGACGTGGCTGCCGCAAAAGACGCCGCGAATCCAGCCTGCGCCCCGATGATGTTGGCGCTGCCGGACTCCATCGGTGACGCCAGGCTGCGGAAGACGAACAGCCAGGCCACTGCAGCCTGGGGGGATCCCTCCCTGGTGGTCCTGCGATGCGGCGTCAACGTGCCGGGGCCGACGACGGACCGTTGCGTTAGCGTGAACGGCATTGATTGGGTCATCAAGGAGGGCGACCCCATCTACACGCTGACCACGTTCGGGCGCGAGCCTGCCACCGAAATCCTGCTGGACCCGGAAAAGATCCCTTCCGCCACTGTCCTGGCCGATCTTTCCGGCGCGGCAGCGAAAATCCCCGCCACCCGAAACTGCGTGGGCCAGCAGGAGCTGCAGGACCTGCCCAAAAGCCAATAGMHPVVPFESTLRLIALAVTTGAAFLGLTACSPVVDVAAAKDAANPACAPMMLALPDSIGDARLRKTNSQATAAWGDPSLVVLRCGVNVPGPTTDRCVSVNGIDWVIKEGDPIYTLTTFGREPATEILLDPEKIPSATVLADLSGAAAKIPATRNCVGQQELQDLPKSQNANANANANA
D1-29_029921152ddlCOG1181D-alanine--D-alanine ligaseATGTCCGGTGAAGACAAACTGGCTGCAGAAGCTTCAGCCGCTCAACGGAAACCAAGAGTGGCGGTGCTGTTTGGCGGCCGTTCCAGCGAACATGCCGTGAGCTGTGTAACCGCCGCCGGCGTTCTCGGCGCCATCAACAAGGACAAGTACGACGTCATCCCCATCGGGATTGCCAAGTCGGGGCAATGGGTGCTCGCTGCCGCGGACACTGCCCAATGGTCCCTGTCCTCGGAGTCGCTGCCGGAGGTGCCGCCGTCGTCGAAAACAGTGACACTCGCCGAAATTGGTGGTGACCACCAGTTGATTGTCGCTTCCCCCAATGAAGTGCCGCAGGAACTAGGAACCGTTGATGTGGTCTTTCCCCTTCTCCATGGTCCCTTTGGTGAGGATGGCACCATCCAGGGGCTCCTGGAACTTTCTGACACCCGGTATGTGGGCGCCGGGGTCCTGGCGTCGGCGGTAGGCATGGACAAGCACTACATGAAGGTGGTGTTTGAGGCAGCCGGGCTCCATGTGGGGCCCTACGTTGCCGTTACTGACCGGCAATGGCTTAAGGACCCGGAAGCGGTCCGGAAGCAGGTGGACCTGCTTGGTTTTCCGGTGTTCGTCAAACCGGCCCGGGCCGGATCATCCATGGGGATTTCCAAGGTGGATTCCATGGAGGGGCTGGATGCCGCCGTCGAAGAAGCACGCAGGCACGACCTCAAGCTTGTTATCGAGGCAGGCATTACCGGCCGTGAAATCGAGTGCGCCGTATTGGAAGGCCGTGGAACGGATGCCCCACGCACCTCCATGCCGGGTGAAATCTCGGTAGCAGGCGGCAGCCACGAGTTCTACGATTTCAACGCCAAGTACGTCGAGGATGACGCCGCCGCCCTGAGCTGCCCGGCAGACATCCCGGAAGAAGCCATCGCCCGGGTGCGGGATCTGGCGGCTGCCGCCTTTGATGCGGTGGGGGCCGAAGGGCTCAGCCGCGTTGACTTCTTCTACACCCCCGACGGCGACGTGATCATTAACGAGATCAACACCATGCCGGGATTCACGCCCAAGAGCATGTATCCCCAGATGTGGGCGGCGTCCGGGCTGAGCTATGCGGAACTGATTGATGAACTGATCTACCTCGCGCTGAACCGGAAGACGGGGTTGCGCTAGMSGEDKLAAEASAAQRKPRVAVLFGGRSSEHAVSCVTAAGVLGAINKDKYDVIPIGIAKSGQWVLAAADTAQWSLSSESLPEVPPSSKTVTLAEIGGDHQLIVASPNEVPQELGTVDVVFPLLHGPFGEDGTIQGLLELSDTRYVGAGVLASAVGMDKHYMKVVFEAAGLHVGPYVAVTDRQWLKDPEAVRKQVDLLGFPVFVKPARAGSSMGISKVDSMEGLDAAVEEARRHDLKLVIEAGITGREIECAVLEGRGTDAPRTSMPGEISVAGGSHEFYDFNAKYVEDDAAALSCPADIPEEAIARVRDLAAAAFDAVGAEGLSRVDFFYTPDGDVIINEINTMPGFTPKSMYPQMWAASGLSYAELIDELIYLALNRKTGLRPGPT0020050_479DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
D1-29_029931053gpsACOG0240Glycerol-3-phosphate dehydrogenase [NAD(P)+]ATGAGGCCTGACGGAAGCCACCCGGGCGCTGCGAAGTCTGTCGCTGTCCTTGGCGCAGGCTCGTGGGGGACCACCTTCGCCAAAATCCTCGCCGATGCTGCCACCGCTGCCGGACACCACCGGAGCATCAGGTTATGGGGCAGGCGCAGCGAAGTGGTGGAGCAGATTAACAGCAGCCACCGCAACTTTCAGTACCTGAAAGACATCCCCTTGCCGGACGTCATCGTGGCGTCCACGAACGTCCGTGAAGTCCTTAATGGCGCAGACCTTGTTGTCCTGGCCGTGCCGGCACAATCGCTCCGGCTCCAGCTTCGCGAGTGGAAGTCCATGATTGCTCCGGACGCCATGGTGGTGTCCCTGATGAAGGGACTGGAACTAGGCACCGACGCTCGCATGAGCGAGGTCATCGGCGAAGAACTGGGAATCCCCGGCAGCCGCATTGCCGTGGTGTCCGGCCCCAACCTTGCCATGGAAATTGCCCGCGAAGAACCCACAGCTTCCGTGGTGGCATGCACGGACGCCGCAGCAGCCGGCTGGATCGCACGAAGCTGCACCGCTCCGTACTTCCGCCCCTACACCACCACAGATGTTGTGGGTGTGGAAATCGGCGGCATCGTCAAGAACGTCATCGCGCTTGCCGTGGGCATCTGCGAAGGAAAGCAGATGGGGGACAACACCAAGGCCTCAGTCATCACCCGCGGGCTGGCGGAAACCTCAAGGCTGGCGCTTGCCCTGGGCGGCGAGGCACAAACCATGGCGGGACTGGCGGGGCTGGGCGATCTTGTGGCCACGTGCTCGTCGCCGCTGTCCAGGAACCATACAGCGGGCCGGCTCCTGGGCCAGGGGCTCACGCTGGACGAAGTGGCCCAGAAGATGACCCAAACCGCGGAAGGCATCAAGTCCGGCCAGGCCGTGCACGAGCTCGCCGGAAAGCTGGGCGTGGAAATGCCCATTACTGCCGCCGTGGTTGCCGTCCTGGCGGGCAAACTGTCCGTTGACCAACTGGGGCCGCTGTTGCTGGCCCGGGACCTGAAACCCGAAGGCGATTATTGAMRPDGSHPGAAKSVAVLGAGSWGTTFAKILADAATAAGHHRSIRLWGRRSEVVEQINSSHRNFQYLKDIPLPDVIVASTNVREVLNGADLVVLAVPAQSLRLQLREWKSMIAPDAMVVSLMKGLELGTDARMSEVIGEELGIPGSRIAVVSGPNLAMEIAREEPTASVVACTDAAAAGWIARSCTAPYFRPYTTTDVVGVEIGGIVKNVIALAVGICEGKQMGDNTKASVITRGLAETSRLALALGGEAQTMAGLAGLGDLVATCSSPLSRNHTAGRLLGQGLTLDEVAQKMTQTAEGIKSGQAVHELAGKLGVEMPITAAVVAVLAGKLSVDQLGPLLLARDLKPEGDYPGPT0024330_498DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
D1-29_02994804hypothetical proteinGTGAAGGAAACGGCCAAAAGCCAGGCCACGTTTGTGGTCATCGCCGCGATAGCGCGCACCCTGCTGAACCTTATGATGGCCAAAAAATGGGAGGGCACCGAGAAGCTGCCACCCGGCGGCTTCATCGCCGCGCCCAACCACTGCACCGAAATCGATCCCCTTATCGTGGGGCACCTGCTCTACAACCAGAAGCGCGCGCCGCACTTCCTGGCGAAGGCCACCCTCTTTAGGGTCCCCGCGCTGGGCTGGATCCTGCGGGCCACCAAGCAGATCCCGGTGGAACGCTCGACGGCGGGAGCCAACCGGTCGCTCCAGCTCGCCCAGGAGATCGTGGCCGAGGGCGGTGCGATCATCATTTATCCAGAGGGCACGCTGACCCGCGACCCCGACCTGTGGCCCATGAAGGGCCACACCGGCGCAGCCAGGCTGGCTTTGGAAGCTGGAATCCCCGTGGTGCCCATAGCCCACTGGGGTGCCCACGAAGTGTTTCCCCGCTATGCCAAGGGGTTCCACCTGTTCCCGCGCAAAACGTCGCGGGTTGTGGTGGGTGACCCGGTGGACCTCAGCGCCTTTTCCGGCCGCCCGCTGGATAAGGCCACACTGACAGCTGCAACGGACGCCATTATGGATGCCGTGACGGCGCTGCTGGCCGGAATCAGGGGAGAGGAAGCTCCCGCCGAGCGCTGGGACCCCTCCAAGCACAACCAGGCCAAGCACGGGCGGTTTGTGGAAGGCGGCCCCCGGACAGGCGGCTCTGATAAACCTTCGGCTACCGGGACTGGCCGCGAGGCGGACGGCTCATGAMKETAKSQATFVVIAAIARTLLNLMMAKKWEGTEKLPPGGFIAAPNHCTEIDPLIVGHLLYNQKRAPHFLAKATLFRVPALGWILRATKQIPVERSTAGANRSLQLAQEIVAEGGAIIIYPEGTLTRDPDLWPMKGHTGAARLALEAGIPVVPIAHWGAHEVFPRYAKGFHLFPRKTSRVVVGDPVDLSAFSGRPLDKATLTAATDAIMDAVTALLAGIRGEEAPAERWDPSKHNQAKHGRFVEGGPRTGGSDKPSATGTGREADGSPGPT0024380_1497DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-29_029951326murAACOG0766UDP-N-acetylglucosamine 1-carboxyvinyltransferase 1ATGAGTAGTGTTCTGACAATCCGCGGCGGCGTCCCGCTGACAGGCCGCGTCACCGTCCGCGGGGCCAAGAATTTGGTCCCCAAGGCAATGGTGGCAGCGTTGCTGGGAAACGAACCGTCGGTGTTGCGGAACGTTCCGGAGATCAAGGACGTGGAGGTTGTCACCTCGCTCCTGCAGCTGCACGGAGTAACTGTGGTGAAGGATCCCGTCACCGGAGACCTCACCCTTGACCCGAAGGCTGCCAAGACTGCTCCCAGTACTGCCATCGACGCGCATGCAGGCGATTCCAGGATTCCCATCCTGCTGTGCGGGCCCCTCATCCACGCGATCGGGGAGGCTTTCATCCCTGATCTGGGCGGCTGCAAGATCGGCGACCGGCCCATCGACTACCACCTCAACGTCCTGCGCCAGTTCGGTGCCGTGGTCGAAAAGCGGCCTGGCGGCATCCACATCTCCGCGCCCAAAGGCCTGCACGGGGCAAAAATCTCCCTTCCCTACCCCTCCGTCGGCGCTACCGAACAGGTGCTGCTCAGCGCCACCCGTGCGGAAGGCATCACGGAACTCGAGGGCGCAGCCACCGAGCCGGAGATCATCGACCTCATCGCGGTGCTGCAGAAAATGGGCGCCATCATCAGCGTCCAGACGGACCGGACCATCCGCATCGAAGGCGTCAGGGACCTGGGCGGCTATAACCACCGTGCCCTCTCAGACCGCAACGAATCGGCTTCGTGGGCATCAGCTGCCCTGGTGACGCGCGGGGACATCTTTGTGGAAGGAGCTTCCCAGCGGGACATGATGACGTTCCTGAACACCTACCGCAAGGTGGGTGGCGGCATGGACATCGGTGAGGACGGCATTCGTTTCTACCACCGGGGCGGGAAGCTCAATCCACTGGTGCTGGAGACCGACGTACACCCGGGCTTCATGACCGACTGGCAGCAGCCGCTGGTGGTGGCCCTGACCCAGGCCGAGGGCGTCTCGATCGTGCACGAGACCGTCTATGAAAATCGCTTTGGGTTCACCGACGCCCTGATCAGGATGGGCGCCAGCATCCAGGTGCACCGCGAATGCCTGGGAAGCGTGCCCTGCAGGTTCGGCCAGCGCAACTTCCTCCACTCCGCTGTCATTTCCGGACCGATGCAGCTCAAGGGCACCGATATCGATGTCCCGGACCTGCGCGGCGGCTTCAGCCACCTGATTGCCGCCCTGGCGGCCACCGGCACCTCACGGGTCACCGGGATCGACATCATCAACCGGGGCTATGAGCGGTTCACGGAAAAGCTTGCCGGCCTCGGGGCCGATTTCGACATCACCTCAGCAAAGTAGMSSVLTIRGGVPLTGRVTVRGAKNLVPKAMVAALLGNEPSVLRNVPEIKDVEVVTSLLQLHGVTVVKDPVTGDLTLDPKAAKTAPSTAIDAHAGDSRIPILLCGPLIHAIGEAFIPDLGGCKIGDRPIDYHLNVLRQFGAVVEKRPGGIHISAPKGLHGAKISLPYPSVGATEQVLLSATRAEGITELEGAATEPEIIDLIAVLQKMGAIISVQTDRTIRIEGVRDLGGYNHRALSDRNESASWASAALVTRGDIFVEGASQRDMMTFLNTYRKVGGGMDIGEDGIRFYHRGGKLNPLVLETDVHPGFMTDWQQPLVVALTQAEGVSIVHETVYENRFGFTDALIRMGASIQVHRECLGSVPCRFGQRNFLHSAVISGPMQLKGTDIDVPDLRGGFSHLIAALAATGTSRVTGIDIINRGYERFTEKLAGLGADFDITSAKPGPT0024090_832DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790NANA
D1-29_02996132hypothetical proteinATGGGGATAGCCGATCATATGAGGGACGCTGTTACCGCAACCTCCGACGCCCAGGGAGGCCAGGAGGGGCGCCATGGTATTGGCCTCGTGGCCTCTGTATTTCGGTTCGGTAAAGCGACCTCCTATGCTTAGMGIADHMRDAVTATSDAQGGQEGRHGIGLVASVFRFGKATSYANANANANANA
D1-29_02997639hypothetical proteinATGCAGAAAAACGTGATGATCTATGGCAGTGACGTGTCAAGGCACACGTTCGATGGGCTCGGAACAGGGTACAAACTGCTGGCTCATGTGAGGCGTCAGTCGATGATCAGCGCGTTGTCCCGGCCTACAGATCTCCTCCAAATGGACGCAAATGAACGAACCTTTCAAGACCGTTCCCTGGAGGGCGATTTGAAATCGCACTTGTTGCCGACGCTGCGGAGGTTCGCGGCGAACATCGACCTACTTTTCATAGACCTGAGGGATGAACGGCTGGGCGTGATTCGGCTACCGGACGGCTGCTACGTCACACAGTCAAAGGAGCTGGAACGATCAGGGCGGCTGGAAAATGTGCAGGGAACTCAACGCCACATTGGCCCTGCCACGGAAGACCACTGGCGATTATGGGAGTCGGCGGCCACCAGGCTGTTCGGGGCGTTGACCACTATGGGCCTGCGTGAGAAGACCCTGGTGCTGAGTACGCCATTGAACCAGCTCCCCAAATCCGGAGAGCCCCTGGACAGCACCCACGTAACCAGTGATGCGGAGCTGAACGCCTACTTCGCCGAGTGCTGCGCGCACATTAAGAGTCTTGGCTACAAAGTGCTGACGGTGCCCGAGCAACTCTCCGTTGCATGCTGAMQKNVMIYGSDVSRHTFDGLGTGYKLLAHVRRQSMISALSRPTDLLQMDANERTFQDRSLEGDLKSHLLPTLRRFAANIDLLFIDLRDERLGVIRLPDGCYVTQSKELERSGRLENVQGTQRHIGPATEDHWRLWESAATRLFGALTTMGLREKTLVLSTPLNQLPKSGEPLDSTHVTSDAELNAYFAECCAHIKSLGYKVLTVPEQLSVACNANANANANA
D1-29_029981626hypothetical proteinTTGAGTTTTGGTAATAGGAAGTCGAATAACTTCAACATCTTCGCCGCTTTTTGCCTTGTAGTCATTCTGATGCCCCTACCGATCGTCATGGGGCCGGCGGCTTTGGCGGCCTCTGATGTGGCCGGGCCGGTGCTGGTTTCGTCCACGGTGACACCTCTTGACCTGAACATCGCCGCGGGCCCGGCCACCACCACAGTCACGGTACAAATCACTGACGCCACCGGCACAGCCGCCCCCACCCTGACCGTCGGCCATGACGCAACCGGGCAAAGCCAGGGATTCGGCAGCATGGCCCTAGTGTCCGGCACCCCCCAAGATGGCACCTGGGAACGATCCATAACCATCCCCCAAGGCGCCGCAACCGGCGCCTGGACGGTGACCCTCTATCCCCTCCGTGACACCATCGGCAACAACGGCACCGGCTTCCAAACCCTTGCCACCCTCAACGTCACAGGAACGGCCTCTGATGTGGCCGGGCCGGTGCTGGTTTCGTCCACGGTGACACCTCTTGACCTGAACATCGCCGCGGGCCCGGCCACCACCACAGTCACGGTACAAATCACTGACGCCACCGGCACAGCCGCCCCCACCCTGACCGTCGGCCATGACGCAACCGGGCAAAGCCAGGGATTCGGCAGCATGGCCCTAGTGTCCGGCACCCCCCAAGATGGCACCTGGGAACGATCCATAACCATCCCCCAAGGCGCCGCAACCGGCGCCTGGACGGTGACCCTCTATCCCCTCCGTGACACCATCGGCAACAACGGCACCGGCTTCCAAACCCTTGCCACCCTCAACGTCATGGCAAGCACCAGCCCTGCCACTTTGATCCCAGGGGTGCCGGTAATCAGCGGTAGCCCCAGAGCCGGGTACACCCTCACTGCCGCACCAGGGACCTGGTCCCCCGCGCCCGTCACGCTCAGCTACCAGTGGTATCGCACCGGAATCGCCATCCCAGGCGCCACCGCCAGCACCTACAAATTGACAACATCAGACATCGGCAAAACCATCACCGTTCGCGTCATCGGGCGCAAGACCGGCTACACAGCACTCGGAAAAACGTCCACCCCCACCGCAGCCATCACGGGCACACTGACTGCGCCGGTACCCACAATCACAGGCACCACCAAAGTCGGCTACACACTCACCGCCACCCCAGGAACATGGTCCCCAGCGCCCGTAACACTGACCTACCAGTGGTACCGCGCAGGAATCGCCATCACCGGGGCCGCCACAACCACCCATAAGCTGACGGCAACCGACGCCGGAAAACCCATCACCGTCCGCGTCATCGGGCGCAAGACCGGCTACACAGCACTCGGAAAAACCTCCACCCCCACCGCAGCCATCACGGGCACACTGACTGCGCCGGTACCCACAATCACAGGCACCACCAAAGTCGGCTACACACTCACCGCGACCCCAGGAACATGGTCCCCAGCGCCCGTAACACTGACCTACCAGTGGTACCGCGCAGGAATCGCCATCACCGGGGCCGCCACAACCACCCATAAGCTGACGGCAACCGACGCCGGAAAACCCATCACCGTCCGCGTCATCGGGCGCAAGACCGGCTACACAGCACTCGGAAAAACCTCCACCCCCAGCGCATCCGTGTCACCATAGMSFGNRKSNNFNIFAAFCLVVILMPLPIVMGPAALAASDVAGPVLVSSTVTPLDLNIAAGPATTTVTVQITDATGTAAPTLTVGHDATGQSQGFGSMALVSGTPQDGTWERSITIPQGAATGAWTVTLYPLRDTIGNNGTGFQTLATLNVTGTASDVAGPVLVSSTVTPLDLNIAAGPATTTVTVQITDATGTAAPTLTVGHDATGQSQGFGSMALVSGTPQDGTWERSITIPQGAATGAWTVTLYPLRDTIGNNGTGFQTLATLNVMASTSPATLIPGVPVISGSPRAGYTLTAAPGTWSPAPVTLSYQWYRTGIAIPGATASTYKLTTSDIGKTITVRVIGRKTGYTALGKTSTPTAAITGTLTAPVPTITGTTKVGYTLTATPGTWSPAPVTLTYQWYRAGIAITGAATTTHKLTATDAGKPITVRVIGRKTGYTALGKTSTPTAAITGTLTAPVPTITGTTKVGYTLTATPGTWSPAPVTLTYQWYRAGIAITGAATTTHKLTATDAGKPITVRVIGRKTGYTALGKTSTPSASVSPNANANANANA
D1-29_02999150hypothetical proteinATGGTTAAGTACAAGGTGGAGCCGAGTGCATTGGAGCACCGCTGCCAGTGCTGCGGCGAGATCACGGAAACGGTCTTCTGCGAGGACTGCCAGCAACACATGCGCTCCGACGCTTTGGCCACAAAAGCTGAAGACGGCGAGCCCACTTAGMVKYKVEPSALEHRCQCCGEITETVFCEDCQQHMRSDALATKAEDGEPTNANANANANA
D1-29_03000603leuDCOG00663-isopropylmalate dehydratase small subunitATGGAAAAGTTCACCACGCACACCGGAATCGGCGTCCCGCTGCGCCAAAGCAACGTTGACACGGACCAGATCATCCCTGCCGTCTACCTCAAGCGGATCACCCGCACCGGCTTTGAAGACGCACTGTTCTCGGCCTGGCGCAAAGACCCGTCCTTCATCCTGAACCAGGCGCCCTTCAATACCGGCTCCGTACTGGTTGCAGGACCGGACTTCGGCACAGGCTCGTCCCGTGAACACGCAGTCTGGGCGTTGAAGGACTACGGCTTCAAGACCGTCCTGTCCTCCCGGTTCGCAGACATCTTCCGCGGCAACTCGGGCAAACAGGGGCTGCTGGCCGCCGAGCTCGCCCAGGATGACATCGAGCTGATCTGGAAAGAGCTGGAGAACGCCCCCGGCACCGAAGTCACTGTTGACCTGGTGTCCAAGACAGTCATCTGCGGCAACATCGTGGCTCCGTTCGACATCGATGATTACACCCGCTGGCGCCTCCTCGAGGGCCTGGATGACATCGGGCTCACCCTTCAGCACGAAGCCGACATCACCGCCTACGAGGCCACCAGGCCGGCGTTCAAACCCACCACGTTGCCCGCGCGCCTTTCCTAGMEKFTTHTGIGVPLRQSNVDTDQIIPAVYLKRITRTGFEDALFSAWRKDPSFILNQAPFNTGSVLVAGPDFGTGSSREHAVWALKDYGFKTVLSSRFADIFRGNSGKQGLLAAELAQDDIELIWKELENAPGTEVTVDLVSKTVICGNIVAPFDIDDYTRWRLLEGLDDIGLTLQHEADITAYEATRPAFKPTTLPARLSPGPT0001443_2714DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704NANA
D1-29_030011461leuCCOG00653-isopropylmalate dehydratase large subunitATGGCCGTGGCAAAGACACTGGCCGAGAAAGTCTGGGACGCACATGTGGTGCGCAAAGGCGACGGCGAAGGAGTCAACGCCCAGCCAGACCTTCTCTTCATCGACCTGCACCTGGTGCACGAGGTCACGTCACCGCAGGCATTTGAAGGCCTGCGCCTGGCTGGCCGGAAGCTGCGGCGGCCGGACCTGACAATCGCCACCGAGGATCACAACACACCCACGCTGGACATCGACAAGCCCATTGCCGACCTGACCAGCCGCACCCAGATCCAGACCCTGCGCAACAACTGCGCCGAGTTCGGCGTCCGGCTGCACTCACTCGGCGACGCCGAGCAGGGGATTGTGCACGTTGTCGGCCCGCAGCTCGGCCTGACGCAGCCGGGCATGACAGTTGTCTGCGGTGATTCCCACACGTCCACGCACGGCGCATTCGGGGCGCTGGCCATGGGGATCGGCACGTCCGAAGTTGAGCATGTCATGGCCACGCAGACCCTGTCCCTCAAGCCATTCAAGACCATGGCGATCAACGTCGAGGGCACACTGCGCCCGGGTGTCAGCGCCAAGGACATCATCCTGGCCGTGATTGCCAAGATCGGCACCGGCGGCGGCCAGGGCTACGTCCTGGAGTACCGCGGTTCCGCCATCCGTGCATTGTCCATGGAAGCCCGGATGACCATCTGCAACATGTCCATTGAGGCGGGCGCCCGTGCGGGCCTCGTCGCGCCGGACCAGACCACCTACGATTACATGTTTGGCCGCCCGCATGCGCCCCAGGGCGCAGAGTGGGACGCCGCCGTCGAGTACTGGAACACGCTGCGGACCGACGACGAGGCAACGTTTGACGTTGAGGTGGACCTCGACGCCGATACCCTGGAGCCGTTCGTCACGTGGGGGACCAACCCGGGACAGGGTGTTTCGCTGTCCTCGAAAGTTCCCTCGCCGGAGGACTTCGGTGACGAAAACGCCAAGGCCGCCGCAGAGCGCGCCCTGCAGTACATGGGCTTGGAAGCCGGAACGCCCATGAAGGACATCCGCGTGGACACCGTGTTCCTGGGCTCGTGCACCAACTCCCGTATGGAGGACCTCCGGGCCGCCGCGGACATCATCCGCGGACGGCAGAAGGACCCGAACATCAGGATGCTGGTGGTTCCCGGTTCGGCCCGTGTGCGGCTCGAAGCCGAAGCTGAAGGCCTGGACAAGGTCTTCACGGACTTCGGCGCCGAATGGCGTTTCGCCGGGTGCTCCATGTGCCTTGGCATGAACCCGGACCAGCTTGAAGTGGGAGAGCGCTGCGCGTCCACCTCCAACCGCAACTTCGAGGGCCGCCAGGGCAAGGGCGGCCGCACCCACCTCGTTTCTCCGGTGGTGGCAGCAGCCACAGCTGTCCGCGGCACGCTGAGCTCGCCGTCGGATCTTGATCCCGCCCCGGAATCTGCCGCCATCCGCACCAACGCAGCCTAGMAVAKTLAEKVWDAHVVRKGDGEGVNAQPDLLFIDLHLVHEVTSPQAFEGLRLAGRKLRRPDLTIATEDHNTPTLDIDKPIADLTSRTQIQTLRNNCAEFGVRLHSLGDAEQGIVHVVGPQLGLTQPGMTVVCGDSHTSTHGAFGALAMGIGTSEVEHVMATQTLSLKPFKTMAINVEGTLRPGVSAKDIILAVIAKIGTGGGQGYVLEYRGSAIRALSMEARMTICNMSIEAGARAGLVAPDQTTYDYMFGRPHAPQGAEWDAAVEYWNTLRTDDEATFDVEVDLDADTLEPFVTWGTNPGQGVSLSSKVPSPEDFGDENAKAAAERALQYMGLEAGTPMKDIRVDTVFLGSCTNSRMEDLRAAADIIRGRQKDPNIRMLVVPGSARVRLEAEAEGLDKVFTDFGAEWRFAGCSMCLGMNPDQLEVGERCASTSNRNFEGRQGKGGRTHLVSPVVAAATAVRGTLSSPSDLDPAPESAAIRTNAAPGPT0001442_421DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703NANA
D1-29_03002720rhmRCOG1414putative HTH-type transcriptional regulator RhmRATGGACAATTCTAGTGGAGTCGGAGTCATTGATAAAGCGGCCCATGTGCTTGATGCACTTGAGGCGGGCCCCACCACCCTGGCACAGCTGGTGGCGGCGACAGGACTGGCCCGGCCAACCGTCCACAGGCTTGCCCTGGCTCTGGTCCATCACCGGCTGGTAAGCCGCGATATTCAGGGGCGTTTTGTGCTGGGCAGCAGGCTTGTGGAACTGGCATCCGCTGCCGGAGAGGACCGCCTGATCGCCTCCGCAGGCCCCGTCCTGATGCAGTTGCGCGACGCCACCGGTGAAAGCGCGCAAATCTTCCGCCGGCAGGGGGACTGGCGTGTATGCGTCGCCTCGGCCGAACGGCCCATTGGCCTGCGTGACACCATCCCCGTTGGTACCCAGCTGTCCATGAAGGCAGGATCTGCCGCGCAGGTCCTGCTGGCCTGGGAAGACCATGACCGCCTCCTGGAAGGCCTTCAGTCCGCAAGGTTCACGCCTACTGTGCTGGCAGGAGTACGACGGCGGGGTTGGGGCCAGAGCCTTGGCGAGCGTGAGCCGGGGGTCGCCTCCGTTTCAGCGCCGGTCCGTGGACCCTCCGGCCGCGTAATCGCTGCGGTCTCCATTTCCGGCCCTATCGAGCGCCTCACCCGCCAGCCTGGCAGGCTACACGCCGAAGTGGTCTGCAACGCCGGCAGGATTCTTACCGAAGCCCTGCGCAAGAACAACGACTGAMDNSSGVGVIDKAAHVLDALEAGPTTLAQLVAATGLARPTVHRLALALVHHRLVSRDIQGRFVLGSRLVELASAAGEDRLIASAGPVLMQLRDATGESAQIFRRQGDWRVCVASAERPIGLRDTIPVGTQLSMKAGSAAQVLLAWEDHDRLLEGLQSARFTPTVLAGVRRRGWGQSLGEREPGVASVSAPVRGPSGRVIAAVSISGPIERLTRQPGRLHAEVVCNAGRILTEALRKNNDPGPT0031315_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ERYTHROCHELIN_METABOLISM,PGPT0031315-etcH-NANANA
D1-29_03003540hypothetical proteinATGAGCGGTTACGCAGTGTTTCTCCATGGCATCAACGTGGGCGGAATCAACATCAGGATGGCAGACCTGAGGGACGCCCTCACGTCCTGCGGGTTCACGGACGTCAAGACCCTGCTGGCCAGCGGAAATGTGGTGCTCGCCAGTGAGCATGGCGCCGCCGCCGTCAAGCAGCAGATCGAGGACTGCCTTCGCGCCTCGTTTGGTTACGATGCCTGGGTGGTTGTCCTGGCCGCCGGGCGGGTGGCCGAGTTAGTGGACGCCTGCCCCTACCCGGAGGATGACAGGAAAACCCACACCTACATCACGCTGGCCTCCGACGCCGCCATGCTGGACGAGCTCGATGCCGCCGGCGCCGCCCTTGAGGGCTCGGAGCAGAAACGGCTTGGACCGGAGGCCCTGGCCTGGCTCGCCCCCGCGGGCGGGACACTGGACAGCCCCTTCAGCAAGATATCGTCCAAGGCACGATTCAAGGCAACCACCACCACCCGGAACCTCAGGACACTGATCAAGGTCCGTGACGCGGCCGCCGCGCTCGCATAGMSGYAVFLHGINVGGINIRMADLRDALTSCGFTDVKTLLASGNVVLASEHGAAAVKQQIEDCLRASFGYDAWVVVLAAGRVAELVDACPYPEDDRKTHTYITLASDAAMLDELDAAGAALEGSEQKRLGPEALAWLAPAGGTLDSPFSKISSKARFKATTTTRNLRTLIKVRDAAAALANANANANANA
D1-29_030041617era_2GTPase EraATGAGCCGCCACGGTGATGCCCGCGAATCGTTGCAGCTGGACCGCCGGCTTGATGCCTTGAACGATGCCCGCCAACTCGCGGACGGGGTGCTGCCTGATGAACCGCTTGAGGAAGTGCTCCAGCTCCTGGAGCGCGCGAGTTCCAGGCGTTCACTGTCCGCGGACCACACCGTGGTGGGGTTTTTCGGTGCCACAGGCAGCGGGAAGTCAACGCTTTTCAACACCGTCAGCGGCGCCGAAATCGCGACGGCGGCGGCGCGGCGGCCCACCACATCGGAACCTTTGGCAGGCGTATGGGGAGTGGAGGGCAGTGAACCGCTGCTGGACTGGCTGGAAGTCCGCAGCCGGCACCATGCCGCCCCCGTTGACGGATTCGCGGACGAAGGCACGGGCCTGATCCTGCTGGACCTCCCGGACTTCGATTCCACCAGGGCAGCTAACCGCGAGATCGTGCAGCGCATGGTGGGGCTGGTGGATGTCCTGGTCTGGGTGCTTGACCCGCAGAAGTACGCCGACGCCGCCGTCCACAATGACTTCCTGGCGCCCCTGGCCGCCCATGGTGCCGTGACCCTGGTGGTGCTTAACCAGGTGGACCGGCTGCCTGAAAAGGACGTGGGACCGGTCCTGGAATCACTGAAGGGGATCCTGGCCCGGGACGGGCTGGGCAACGTCCAGGTCCTGGCTGCGTCGGCGCTGCTCGGTACCGGAGTGGACAGGGTGCGCAGCGCCATCCGGAAGGTTGCGGTGCAGCGCCAGGCGTTGTCTCAACGGCTGGCCGCCGACGTGGGGAAGGCTGCCCGCCTGGTTCGGGAGGCGTCCGGCGACGGCGAAGCTGCCGGAGTCAGGCCAGCCACCACCTCACGCCTTACCGATGAGCTGGCTACCGCTGCCAATGTGCCCCTCGTGGTGCGGGCCGTGGCACGTTCCTACCGGCTGGAATCCACCCGCCGCACCGGGTGGCCGGTGACACGCTGGCTCTCGCGGTTCAGGCCCGATCCGCTGCGGCGGCTCAACCTCCGCAGCGACTCTCCGGCGGAATTGAGCCGGACCTCCCTGCCGCCGGCAGGGGCACCGGAAAGGGCCAGAACCGATGCGGCGGTCCGTGAATTCGCAGACCACGCCAGCGCGGGCGCCCCTGGCCCCTGGCGGGCGGCTATCCGGGGTGCAGCCCGGGAGGGGAGGGAACGTCTGCCGGACGCCCTGGACCAGGCCATCGCGGGCACCGACCTCCTGGCATCCCGGAAGTCATGGTGGTGGGGAGTGTTCAATGTTGTCCAATGGCTGGCGCTGCTGACTGTCCTGGGCGGCCTCGGCTGGCTCGGAGTGCTTGCCGCGCTGGGGTACTTCCAGATGCCGGTCCCGGAGGTCCCGCGCGTGGAGGGCTGGCCGGTTCCCACCCTGATGATTGCCGGCGGAGTGGTCCTTGGCATCTTCCTGGCCGTGACCGGGAAGTTTATTGCCGCGGCTGCAGCGAATGCCCGGTCTGGGAAGGCCCGGAAGCGCCTCAGGAATGCCGTGGCGGAGGTAGCGCAGGAACTGGTGGTGGAGCCGGTAGAAGTGGAGATCAGCCGGCTCAACGCGTTCAACGCGGCGCTCAAGACGGCCTTCGGCAAGTGAMSRHGDARESLQLDRRLDALNDARQLADGVLPDEPLEEVLQLLERASSRRSLSADHTVVGFFGATGSGKSTLFNTVSGAEIATAAARRPTTSEPLAGVWGVEGSEPLLDWLEVRSRHHAAPVDGFADEGTGLILLDLPDFDSTRAANREIVQRMVGLVDVLVWVLDPQKYADAAVHNDFLAPLAAHGAVTLVVLNQVDRLPEKDVGPVLESLKGILARDGLGNVQVLAASALLGTGVDRVRSAIRKVAVQRQALSQRLAADVGKAARLVREASGDGEAAGVRPATTSRLTDELATAANVPLVVRAVARSYRLESTRRTGWPVTRWLSRFRPDPLRRLNLRSDSPAELSRTSLPPAGAPERARTDAAVREFADHASAGAPGPWRAAIRGAAREGRERLPDALDQAIAGTDLLASRKSWWWGVFNVVQWLALLTVLGGLGWLGVLAALGYFQMPVPEVPRVEGWPVPTLMIAGGVVLGIFLAVTGKFIAAAAANARSGKARKRLRNAVAEVAQELVVEPVEVEISRLNAFNAALKTAFGKNANANANANA
D1-29_030051857hypothetical proteinATGGCTGGTGATCTCCACGGGGATATCGTGGTTGGTTGCGTTCCCGAAGTTTGTTACTGGCATGATGATGCTGTGAGCTCCAATGACCATCCTCCCGCCAGGGCTCCCGCCCAAGGCCCGGGCCAACCGGCGGCGGCTGCCCTCGCGCTGCTGGAAGCCGTGCGGCGGGACCTGTCGCACGTTTCCCTTCCGCTTGCCCTCCCGGCGGCCGGGCGCGCCCGGCAAGAGGCCCGGAATGCACTCGCACAGCTGGACGACTACATCCTGCCGCGTTACCGCAGCCTGGACGCACCGCTGCTTGCCGTCGTCGGAGGTTCCACTGGTGCAGGCAAATCGACCCTCGTCAACGCCCTGGTAGGCCATCCGGTTACGCGTTCCGGGGCCATCAGGCCAACCACGCGCCAGCCCATCCTGCTCCACCACCCTGCGGACGCGGGGTGGTTCGAAGACCAGCGCGTCCTGCCCACGCTGAGTCGGATCAGGGGCACGCTTGCCACTGATCCTGTCCCTGCCAGCCGCGCCGGAGTGACCCCGGACGCCGCCGCCATCTCCTCGCTGGTGCTGGTGGCGGACCGGGCCGTCCCGCAGGGAATTGCGGTGCTGGACGCTCCCGACGTCGACTCCATCTCCGACGACAACCGCAGACTCGCCGGTCAGCTGCTGGCTGCCGCTGACCTCTGGATCTTCGTGACCACGGCCAACCGCTATGCCGACGCCGTTCCCTGGCGGCTCCTGCTGGACGCGGCCTCGCGGGACATCATGGTGGCCGTGGTACTGGACCGGGTTCCGCCGGCAGCTGAGGCTGAAGTGAGTGCTGACCTCCTGGCTTTGCTGGACAAGGAAGGCCTCGGCGGAGCAGGACTGTTTATCGTGCAGGAGACGGAGCTAGATCCACTGGGGATGCTTCCTCCGCACGCGGTGGAGCCGCTGCGGCTGTGGCTTCAGGAGCTCGCTGCCGACGCGGCACGCCGCTCGGAGATCGCCCGCAGGACGCTCAATGGAACCGTCAGGGCACTGGCGGGACGCGTGGCCGGTGTCGCCGAAGCGCTGCAGGATCAGCAGCGCGCCGCGGCGACCCTTGAGTCAGACGCCCAGGGCGCCTACCGCGATGCTGCCGCACGCATCCTGGACGCCACCAAGGACGGCGCCCTGCTTCGCGGAGAAGTGCTTGCCCGCTGGCAGGACTTCGTGGGGACCGGCGAGTTCTTCCGGAACCTGGAACAGAACATTGGCCGTTTCCGGGACCGGGTGGGAGCATTCTTCCGGGGTGAGCCTGCTCCCGCCGTCCAGGTCGAAGTGGCCATTGAGACCGGGCTGCAGGCCGTCATCCTGGACGAGGCAGCCAACGCGGCGGAGCAAACCGACCAACGGTGGCGGGCAGACCCGGCCGGCCGGGAACTGCTCGGAACTGATGATCTTTCCGGGACCAGTCCCGGATTTGCGGACAGGACCGCCGAAGAGATCAGGGCCTGGCAGGCCAGCCTGATGGAACTGATCCGGACCGAGGGCCAAGGCAAACGGACGCAGGCCAGGTTGCTGTCCTTTGGCATCAACGGGCTGGGCGCCGCGCTGATGATTGTGGTGTTCTCCATGACGGCCGGCCTGACCGGGTTGGAGATCGGTGTGGCTGGAGGTACCGCCGTTGTAGGCCAGAAGCTGCTGGAGGCCGTTTTCGGTGAGGATGCCGTCCGCAGGCTCGCCCAGACGGCGCGCGAGGACCTCCACATCCGCTGCCAGCAGCTGCTCCGGGTGGAGCAACAGAAGTTCCTTGACCGGCTCCCGGAGTCAGACCCGGACGCTGCGCGTGTGCTGACAGGCCATTCCACCGCCTTGGCACAGCTGGCGGACTACGCATGAMAGDLHGDIVVGCVPEVCYWHDDAVSSNDHPPARAPAQGPGQPAAAALALLEAVRRDLSHVSLPLALPAAGRARQEARNALAQLDDYILPRYRSLDAPLLAVVGGSTGAGKSTLVNALVGHPVTRSGAIRPTTRQPILLHHPADAGWFEDQRVLPTLSRIRGTLATDPVPASRAGVTPDAAAISSLVLVADRAVPQGIAVLDAPDVDSISDDNRRLAGQLLAAADLWIFVTTANRYADAVPWRLLLDAASRDIMVAVVLDRVPPAAEAEVSADLLALLDKEGLGGAGLFIVQETELDPLGMLPPHAVEPLRLWLQELAADAARRSEIARRTLNGTVRALAGRVAGVAEALQDQQRAAATLESDAQGAYRDAAARILDATKDGALLRGEVLARWQDFVGTGEFFRNLEQNIGRFRDRVGAFFRGEPAPAVQVEVAIETGLQAVILDEAANAAEQTDQRWRADPAGRELLGTDDLSGTSPGFADRTAEEIRAWQASLMELIRTEGQGKRTQARLLSFGINGLGAALMIVVFSMTAGLTGLEIGVAGGTAVVGQKLLEAVFGEDAVRRLAQTAREDLHIRCQQLLRVEQQKFLDRLPESDPDAARVLTGHSTALAQLADYANANANANANA
D1-29_030061020hypothetical proteinGTGCAGAACAATCCAGGTTTTCTAAGCTTCGTCGTGGCTACTGCTCATGGAAAAAGCATAAAAATAGCAACGTCTTCTGAGGACGACCACATCAGCGCATCGATAAAGAACACCGGAAACTTTTACGAAAGCCAGTTCCTCGATGCGCTTGCCTCGATCCTCAAACCCGGTGATCTAGTGATCGATGTAGGTGCAAACGTAGGAAATCACACCCTGTACTTTTCTCAAGTTCTGGGCTGTCACGTCGTCGCCTATGAGCCGGTAGAAGAAGCGCTGCGATGCCTTCTCCATAGTGTTGAGCTCAACTTCGCAGACGAGCGGGTCGAGGTCCGCCCATTTGCCGTTGGGAGAACTTCCGGTCGAGCGCACGTACACTCCGTAAACAAGGGAAACCTCGGCGCAACTTCACTCATGCCCTCCATGAACGGCGATATTGTCCTGACTTCGCTCGACGAACAGGACATTGAAGGAAAGGTGGCGTTCATCAAGATTGATGTCGAGGGGATGGATTTAGATGTCATCTGTGGCGCAAAGACGCTGATCGAGCGTGATCGCCCGTTCATCTCTTGTGAAATTAACGACGGCAAGGACCTCGACAGACTCAGCGCAATTCTCGAAGAACTGGACTATGCTTCTCTCGGCCGTTTCAATGCTTCACCCACGTTCGTATTGGCTCCAGTCAGGACACACCAGGAACAAACCTCAATCATTAAGTTTCAGATGCAGCAAATGCAAACGCTGAGAGAGGCTCAAACTGAGTTAAACAACCGCTTGCTACGCTCCAACAGGTACACCGAGCGATTGCACCGGGAGGCTCTGCAGAAGATCGCGGCAGAGTGCTCCCTTGTGGACATCAATGCTGATGCGGACGGCTCCACCAACCGGGAAGACGCAATGGCTCAGCGAGTGAAGGAACTCTACTCGATGATGAAGAGTTCGAGAGCGGCCCAGGAGAAGAGCCAGTTGGCCATTGAAAGCCTTGAGAGGGAAGTTCGCTTGCTGAGGGGGGACGAGGCATGAMQNNPGFLSFVVATAHGKSIKIATSSEDDHISASIKNTGNFYESQFLDALASILKPGDLVIDVGANVGNHTLYFSQVLGCHVVAYEPVEEALRCLLHSVELNFADERVEVRPFAVGRTSGRAHVHSVNKGNLGATSLMPSMNGDIVLTSLDEQDIEGKVAFIKIDVEGMDLDVICGAKTLIERDRPFISCEINDGKDLDRLSAILEELDYASLGRFNASPTFVLAPVRTHQEQTSIIKFQMQQMQTLREAQTELNNRLLRSNRYTERLHREALQKIAAECSLVDINADADGSTNREDAMAQRVKELYSMMKSSRAAQEKSQLAIESLEREVRLLRGDEANANANANANA
D1-29_030072025hypothetical proteinATGAACGTGGTCCGCGATCGGGACTACTCGGCATGGCCCGATACTCACTTCCAGTGGAATTCGATCGAGGCGTACAGCAACGAAAGTAAGTGGCAGGACGGCGTCCATACAATCTCCCTAGATTCTGGGCCGAGCCTGGATCTTATTATCAGTGGCAGCCCGCTATACAGCGATAACAAGATCATTCCAATTTTCCTGTCAGGTGCCGTTCAATCACGTGAATTGAAAGCTGGGCCGTTCTTTTCTGGCAGCAACGTCTCTGCAAAAGGCGGCTTCCCGTACATCTCAATTTCTGACCCATCGCTGGAATTAGACCCAACCTTAGGTCTTGCTTGGTACGCCGGAAACGAACAACAGGACCTAACTCAAGGCCTGCTGAAGGTACTGAGGAACCTAATCGCCGCTTCAGGGAAAGAACTCCTTCTTATCGGAGGCTCAGGAGGAGGTTTCGCCGCCCTGCGGTTGGGGCAGAAGCTGGGGAATGCCGCTTCTGTATTTGTCTGGAATGCGCAAACAGATATTCTCGAATATAATGAGAAATTTGTTCGTAATTATTTGCGAGCCGCCTACCCGACCCTAACTGCGAATTTGCTGGAGTCGGCAGGTTGGAAGGAGGCAGTACGTCGCAAATTCGATGCTGCTGGTGTTGAACTGTCCCTTCTTCCAGACGCAAGGGCTGGCAGGAGTCCTCGCCGCCTCCTTTTTGTACAAAATGCAACCGATTGGCATGTGCCGATCCATACCGCTCCGTTTATTGAAGCCTTTAATCTCAAACACTTAGGCCGAGGAGTTTACTGGGCCAACCCCGACCAACTGCTTTGGGTCACGCAATTTGGCACGGATCATCAGCCACTGCATGCGGACGCCGTAACCCTAATAATCAAAGAGATGCTAGATCCGGTGAGGGCTGTGAGTGATATAGTTGCCAGCCTCAAACAATCCAAACTGGTTCCCCATCAGCAGCCGGGAACGGAGCCTCGCGACCTGAGGCACATCGAGTCCCTAATTGCGTTGAATTTATCACTCGAACTTGAGTTTCGTAAGAATGGGCAGTTATATGCGCAAGTGAATCTCGGAGACGTACCCGCCTCTTATGGTGGCATCACATTCGGTTTCTTTACAGTTGACAAAGGTGGCGGCGTCAGTAACGTCCGCTGGTTCTCTTCTGATACGGAGTGCCTCATGGAGGTAGACACCGAATCAACAGGAGCCGTGCAAGTTCGTGTTCGTGATGGATTCAACAATGAACTAACGACGCTTTCCAAGAAGATTACTCCTAAAACTGCCGTAGAGCATTTACCCTTACGCGTCTTCATATACGGGAGTTGCGTTTCCAGAGATGCCTTCCAATTCCCACACGCCTTGCACCTCGTGGACTATGTCGCGCGGTCGCCACTGGGGAGTGCCTTCGCGGAGATTCCATCCACAACTGACTTCCGCACTGCTGCTATCTCAAGCTCATTCCAGAGGCGCATGGTGGAAATCGACTTGAAAAAGGAGCTTTCGTCCATTCTTCGTCACTCGGAATATGACCTTCTGCTTTTGGATCTCATTGATGAAAGAATACCTCTAATGAACTATGGGCATTCCGTCGTGGCGTATTCATCCGAGCTTCAAAGCACTGGTCTCACCGTGGAAGAAAAGTCGCTAATTGGAATGGGAACCGACGAATATTTTGCTCGCTGGCTGGAAGGCCTGTCGAAACTGTTAGCAATCTGTCCAGCTTCGAAAATTGTCGTAAACAAGGTTTGGTGGGCGGTCACCGACAGCGCCGGCGCACTTCTTCCAAACCAAGGATATATCAAGACCAATAACGAAATTCTGGAACGCCTTTATGCCGAGCTCGGCCGGTACCCAGAGATTCGCTTCATTGAGTACCCGGCAAATGTTCTGGTTGCTGATGCTCGCCACAAATGGGGCGCAGCACCATACCACTTTATTACCAGGGCGTCTACGCACCTGCTCGGCATACTGGCTGAGTATTGCCCGCCTGCTGAAGTTCAGTCCACAACCTCAGACAACTGAMNVVRDRDYSAWPDTHFQWNSIEAYSNESKWQDGVHTISLDSGPSLDLIISGSPLYSDNKIIPIFLSGAVQSRELKAGPFFSGSNVSAKGGFPYISISDPSLELDPTLGLAWYAGNEQQDLTQGLLKVLRNLIAASGKELLLIGGSGGGFAALRLGQKLGNAASVFVWNAQTDILEYNEKFVRNYLRAAYPTLTANLLESAGWKEAVRRKFDAAGVELSLLPDARAGRSPRRLLFVQNATDWHVPIHTAPFIEAFNLKHLGRGVYWANPDQLLWVTQFGTDHQPLHADAVTLIIKEMLDPVRAVSDIVASLKQSKLVPHQQPGTEPRDLRHIESLIALNLSLELEFRKNGQLYAQVNLGDVPASYGGITFGFFTVDKGGGVSNVRWFSSDTECLMEVDTESTGAVQVRVRDGFNNELTTLSKKITPKTAVEHLPLRVFIYGSCVSRDAFQFPHALHLVDYVARSPLGSAFAEIPSTTDFRTAAISSSFQRRMVEIDLKKELSSILRHSEYDLLLLDLIDERIPLMNYGHSVVAYSSELQSTGLTVEEKSLIGMGTDEYFARWLEGLSKLLAICPASKIVVNKVWWAVTDSAGALLPNQGYIKTNNEILERLYAELGRYPEIRFIEYPANVLVADARHKWGAAPYHFITRASTHLLGILAEYCPPAEVQSTTSDNNANANANANA
D1-29_03008990hypothetical proteinGTGCCAGAGTTTGACGAGTTTTATAAAGCCCCAGTTGTCACCCTGAGTGAGCTGGATGCCTTCACTCCCAGTCTGGGTGATGACGAGACCATCTACGAGCTAGAAATCGGCGATGGCATGTTGCTGTCGTTTCTCGTAAATTGTCGTCCCAGCATCAGGGGGGAAATAAGGACCGGGTTTCATGCAGCAAAAGGACCGATAACCCCTGATGGCAGGTACTTCGCGCCGGTAGCACTCTCTCGGGCGTCAAATGCGCCCTTCGTGTTATTCTCTGATCCCACATTGTCACTGGCGCCAAAGAATCGACTGTCTTGGTATCTTGGTACCCCGGATGTTGACCCAGACAACTGGATGGAAGCGATCATCAGGAAGTTGATGGGCGTTGTAGGTGCTCGATACTTGATCCTTGAGGGCTCTTCGGCGGGCGGTTTCGTCGCCATGCGCCTAGGGGCAAGATTCGCAAACTCGGTCGCGATACCACGCATTCCGCAGACGGACATCTTCCGATATTCAATACGTCAGCCGGTGCGTGAAAGCCTCAACACGGCTTGGTCAGGGCTCTCGTACGTCGAGATTATGAAAGACTACTCACACAGATTTCGTATTGCCGACCTATATACGGACCCGTGTTGGAACCGTGGGAATCTCATATCCTATGTGCACAACGCGGGCGATACGTGGCATACGGAAGAGCATCTGAACCCCTTTCTCGAAGAAATCGGCGAGTCAGTCCATGCTTTTGTTGCACTCGAAGACAGAATGACCGTCTCAAGGCCGTACGTCGGGGTCGGCCATGTCGGCATTCCATCGTCCTTCTGGCCAGCGGAGACGGAGATGGCTTTTACGAGATTGAGAACCTGCAGGCCACTTGAAACTAACCACTCCGATGAGCCGATGTTCTCGTCACCGCGTGAAATGCGGCGTAGCTCTGCCGCAAACGAAGCGCGGCAGAGATCCATTTCACAGCATTGGGCGTCCATTCCTGGTTAGMPEFDEFYKAPVVTLSELDAFTPSLGDDETIYELEIGDGMLLSFLVNCRPSIRGEIRTGFHAAKGPITPDGRYFAPVALSRASNAPFVLFSDPTLSLAPKNRLSWYLGTPDVDPDNWMEAIIRKLMGVVGARYLILEGSSAGGFVAMRLGARFANSVAIPRIPQTDIFRYSIRQPVRESLNTAWSGLSYVEIMKDYSHRFRIADLYTDPCWNRGNLISYVHNAGDTWHTEEHLNPFLEEIGESVHAFVALEDRMTVSRPYVGVGHVGIPSSFWPAETEMAFTRLRTCRPLETNHSDEPMFSSPREMRRSSAANEARQRSISQHWASIPGNANANANANA
D1-29_030094380hypothetical proteinGTGAAAGTGCTTTTTTGTCGCATCAACCAAGCTATCGAGGACGTATATGCAGACCAGATCTACGCAGTCCTACGGTCAAATTATGATGTCGATGTGGTAACAGCCGCGACCGACGCTGCGGACAGGCCGACTCCAAATCCATACCCGTCGACCAATTTTGACTTTAGCCCCGTCGAAAACAGCGCGATAGTGGGTGCTGATGTGGTCACTTTTGCGGAAAAGATCGAACGCATCGTTCAGAACGAGGGTTATGACCTCGTCATCGCACTGGGTCTGGATTTGATTGCTCAACTAATCCAGCAGAACTCACTTAGGGGACGGGTTTGGTCTGTCCTATCCGAATCCGATTTTTCAATAATCGAAGCTCAAACTAGTTTTACTCCATCTCTCGATCAGGTGGTCGAGGAATCTGCGAGGACAGTAGTCTCGCACCCAAAACGGCAAAACCAGGTTCGCCTTGCCAAGCCGCGCTTTATTCACAGAATCATTACAGTTGATGACTGCAAGTCTGTCAGTACCTTCAACCTTGCCACCGCTCAGCGTCGTGTAATGATTTATCTTCGTCCCCATTCAAACGATCCTCGCTGGGCAGACCGCGGGTATGAAATGGCCGAGTCCCTGGCTTCCTCACGAGTCCACGTAGTCGTGCTGTGCCACAATGCGCATTCAGCTTTAGGGTCGGTTCTCAGACACGACAGCCCGTATACGACTGTGATCGAACCAGCAAGTGCGGCACATCAGCTCGTCGACGGTGAGCTGATGTCCAGGTTCGCAGCGTGGCATATCTTCGTTGCCGCAGCGGATCTGGACTGCTCAGTCGTTCTTACCGATGATCTCGAAGCTGTGGAGCACGGTTTCACGAATAGCGAGCTGAAACGGAAGCTATGGCCAATCATCGACTTCCCCAGCTATGACGAATATAGGTCAGCACTCTCGAGCTATGAGCGCATAGCTGAGGCGCTGCCTCGTTTGGTCTACTTGAATGATGAGTGCCGTGCCGTCGTAGAATCTCGAATTCCAGCGTCCACATCGAAAGGGGTTCTCTTGGCTGATCCCATTTCTCCGGGTCTAGCTGGAGCAACAAAGCCCAATGCAGATGTCTTTGAAGGCTATCTCGACAGGTTCGTGGCCGACTACAGGGCCGTCCCGTGCAACTCTACTAATCGCAAGATTCTGCTGGCTGGACATGACTTTAAGTTTGCTGGTGAGTTGATTGATGTCCTACAACAAAGAGTCGACGTTGAGCTTCGAGTTGATCACTGGAAAGCGCAAAACGTACAAGATGAGGATAAAAGTCAAAGCCTTCGGGATTGGGCCGATATCGTTCTCTGCGAATTCGCATCACACAATTCCGTTTGGTATTCATGGAACAAAAAGCCTAATCAGGTGCTAGTAATTCGGTTCCACGGATATGAACTACTTTCCCCTTGGATTCAAGATATCAATCTGAACAATGTCGACAAAGTTGTTTTTGTCTCGAATTTTTACATGGAGAAAGTCTGTAACGAACTCGGATGGTCTCGTGATAAAGCGGTCGTACTGCCAAATGTTGTAGACATTCTGGATCTCAAACGTCCAAAGAATGATGGTGCTCGTTTTCATCTTGGTATCGCTGGTATTGTGCCGATTTTGAAGCGGCCAGACCGAGCATTAGATATTCTTGAGCGGCTACTTGATCTTGACAACCGCTATGTTTTGCACATCCGAGGAAGAGCGCCGTGGGAATATGGCTGGATGTGGGAAAATGAGGAAATCCGAGAAGCCTATGATGCCTTTTACGAACGCATTTCGACCAACCCACTATTGAGGCGGAGAATAGCGTTCGATGAGTTCGGTCCGGACATGGGTCGGTGGTTCCAGAACGTCGGTTGGATGTTATCGCCGAGTTACCGCGAGACGTTCCATCTTGCGCCGGTGGAAGGTATGGCGTCTGGAGCAATCCCTGTTGTGTGGGAACGCGAAGGTGCCGTGGAGATTTTTGGCGACGAGTGGGTCCATGCCAATTTGGATGCAGCGGTTGAATATATTGCAAACGTGAACCGCAACGCAGATACGTATACCGAAGTTTCGTGTGCGGCGTCAAACTACGCAGCAAGATATGATCTTCTGGTCAATGGGCAACGGTGGCTGAAGATGTTGTTCTCAACAGAGGCAGAGCACTCTGACGCGCCGAGTACAAACATTTCAGTCGATGCAATGGAAGAGCGGTTCGTCCAAAAGCCAACTTCTGAGACACTGACAAGGCTCCTCAGCGTTTTACACCGAGAGGGAGATTTAGCGCGCATCGGAGAGCTGGCCGAAGGTCACCCTCAGCTTGTTGTCGGATCAGCTCTGAAGTACGTGGCGGCTCAGAGATGGGCAGCAGGTGTTGAACGTTTAAGGGCCGCGCCCCCTCTGGTGCCCAGAAGGTCTGAGGGAGCTGCATACCTCATCGAACATGGCAGTGTCCTGTTCGCAATAAATGAGTTCTGCGAGGCGTCCCTTCAACGTGCCTGGACAGCTCCACTACTGGAAAGCGTCCAAGACGGGAAGGTCAGTATTGTTAGTGTCACGTCCGCAACAATCAACACCGTATTCCTCGATTCAGACCAGAGCCGCGAAACCATCCATGTGCAAGAATTGCCGGTCACAAGGCTTCCACTCCGCAATTCTGATGACCTTCTCCTGCCCCAGTTCATAATTGCTGCCGCCGACGCCATTGTCAGAGAAGCAAGGGCGGTCCGGCCAGCAGGAATAGCCGCTCACTCGGACTTCTGGGTCGGGCTTCCCGCACTTCTTGCGGCGCGACGACTCGGTGTGCCCTTTATGCTTGCAGACTCACCTGGTGCGGTAGATGAGGAGCTTTCTCTGATTTGCCTGGAGCAAGCTGACGCGGTTTTCGCCGGGACACCCGTTGACTGTCTGGCGGATGCCACAAATTCCTACAGGGAAGCCACAAACCAGGATGAGCAAAAAAACCTGGCGGATTTACGCGTTGGTATCATCGCAGACAACTTCACCAGTACAACCATTGCGCATTCGTTTCACACATTCCCGCTCTCGCGAAATGAAGGCTACGTCGAAGTGGCTTCGCTAGACTTGGACGCAATTTTCGTTGAGTCGGCCTGGGAGGGCGCGCAAAATCAGTGGCGCCGAGGGGTTGCTTACTATCCAGATGAGATCAAAGACCTCGAAAAGATTATTAAGGTCGCTAGAGCGCGTGGTATCCCAGTGATCTTTTGGAATAAAGAAGACCCCGTGCACTTCCGAGCCTTTGAACGAACGGCTCGGATGATGGATCACGTCTTCACCACCGACGCTGATATGGTCGGAAGATACCTGCAGAGTGCAGATTCTGCAAACCAGAGCGTTTCGTCGCTGCCCTTCTACGCTGAACCGGTAATTCATAATCCACTGCCGACAGAGCGAAAGTATATGCACACAGTGAGCTATGCGGGGACATACTACGGCGATCGTTTCAGAGAACGCTCTGAAGAATTACATAGAATTCTTGATGCTGCCAAGGTTCATGGGCTCACTATCTATGACCGTCAAGTAAATGTTCCCAACTCGCCCTATCATTTCCCTGAGGAACTCGTTCCTTATGTTCGCGAAGGTGTTCCTTACAAAGAGGTTCTCGAGGTGTACAAAGCACACCCAGTCAACATCAATGTGAATTCAGCAAATGATTCACCCACCATGTTTTCGCGCCGAGTCGTAGAAATCGCAGCGAGCGGATCCTTGGTATTAAGTGGCCGTGGACGAGGCATTACTGAGCAAATCCGAGGGATTGAAGCCACCAACTCCGACTCGAGGTGGGCAGAACTGCTTTCCACCTGGATGTCTGACGAAACGGGGCGGGTGGCAGCCGTTTGGAGACAGATGCGCACCATCACGAGGTCCCATCTGGCGGAACACGCGCTGGCTATTGTCATGCGTACCGCTGGAATACCCGTCATGGCCAGGCCTCTTCCCTCCTATGCTCTAGCGAGGAAAGGAATTGACTCTGATCAAGTGGCTGCAATTCTGCGTCAAACGTGGCGGCCAGCTGTTGTCTTCACGGATATCATTAGTGCACCGAACCGCGCAGCGCTGGAAGAGGGAGGGATCTCTGTAGCACCCGCATCACAGATTGGCCAAGTAGAGCAAAGCTGGATCGCCTCTTGGGGCAAGGTTCCCACGGATTCATATTTTGAAGATCTTCTACACGCCACACGGTTCGGAACTTACAGTGTGCTGTCAGGTCGCATGTACAGGGCCGGCGATGGCGTTGGCAATCCAATCATCGAGCTGGGAAAAAACGGAGAATTTGCTGAGCTTCACCGCGTGCCCAACGGTATGCCGACTGAGGATTCTCCACTCACATGGATCCTACCGCGTGCGGATTTCGATGAATGCTAGMKVLFCRINQAIEDVYADQIYAVLRSNYDVDVVTAATDAADRPTPNPYPSTNFDFSPVENSAIVGADVVTFAEKIERIVQNEGYDLVIALGLDLIAQLIQQNSLRGRVWSVLSESDFSIIEAQTSFTPSLDQVVEESARTVVSHPKRQNQVRLAKPRFIHRIITVDDCKSVSTFNLATAQRRVMIYLRPHSNDPRWADRGYEMAESLASSRVHVVVLCHNAHSALGSVLRHDSPYTTVIEPASAAHQLVDGELMSRFAAWHIFVAAADLDCSVVLTDDLEAVEHGFTNSELKRKLWPIIDFPSYDEYRSALSSYERIAEALPRLVYLNDECRAVVESRIPASTSKGVLLADPISPGLAGATKPNADVFEGYLDRFVADYRAVPCNSTNRKILLAGHDFKFAGELIDVLQQRVDVELRVDHWKAQNVQDEDKSQSLRDWADIVLCEFASHNSVWYSWNKKPNQVLVIRFHGYELLSPWIQDINLNNVDKVVFVSNFYMEKVCNELGWSRDKAVVLPNVVDILDLKRPKNDGARFHLGIAGIVPILKRPDRALDILERLLDLDNRYVLHIRGRAPWEYGWMWENEEIREAYDAFYERISTNPLLRRRIAFDEFGPDMGRWFQNVGWMLSPSYRETFHLAPVEGMASGAIPVVWEREGAVEIFGDEWVHANLDAAVEYIANVNRNADTYTEVSCAASNYAARYDLLVNGQRWLKMLFSTEAEHSDAPSTNISVDAMEERFVQKPTSETLTRLLSVLHREGDLARIGELAEGHPQLVVGSALKYVAAQRWAAGVERLRAAPPLVPRRSEGAAYLIEHGSVLFAINEFCEASLQRAWTAPLLESVQDGKVSIVSVTSATINTVFLDSDQSRETIHVQELPVTRLPLRNSDDLLLPQFIIAAADAIVREARAVRPAGIAAHSDFWVGLPALLAARRLGVPFMLADSPGAVDEELSLICLEQADAVFAGTPVDCLADATNSYREATNQDEQKNLADLRVGIIADNFTSTTIAHSFHTFPLSRNEGYVEVASLDLDAIFVESAWEGAQNQWRRGVAYYPDEIKDLEKIIKVARARGIPVIFWNKEDPVHFRAFERTARMMDHVFTTDADMVGRYLQSADSANQSVSSLPFYAEPVIHNPLPTERKYMHTVSYAGTYYGDRFRERSEELHRILDAAKVHGLTIYDRQVNVPNSPYHFPEELVPYVREGVPYKEVLEVYKAHPVNINVNSANDSPTMFSRRVVEIAASGSLVLSGRGRGITEQIRGIEATNSDSRWAELLSTWMSDETGRVAAVWRQMRTITRSHLAEHALAIVMRTAGIPVMARPLPSYALARKGIDSDQVAAILRQTWRPAVVFTDIISAPNRAALEEGGISVAPASQIGQVEQSWIASWGKVPTDSYFEDLLHATRFGTYSVLSGRMYRAGDGVGNPIIELGKNGEFAELHRVPNGMPTEDSPLTWILPRADFDECNANANANANA
D1-29_03010648hypothetical proteinATGCTATGGAGTATGAGCATTAGTCGAAGTCTGGATAGGGGAAGCGTGAGCACCACAAAGCGAGTAGATCTCGACCCGAGCATCGGGAACATTAGCAGCCTTCTAGCCGCTCGCGGTCGATCGTCCACGCCCCCTCCGCCGAATCTTTCCAAGACCAAATTGGCGGACACCATCGGCATCGGGTATAAGTCGGCCACGGCACACCATCCCCAGTTGAAGATTGCCACAATAGTCCACGACGAACTATATGACGAACTTGAGAAATCGTACCTCCTTATGCCGCTTATGCCCTCGTGCTTGGTCAATTCTGTGGACGATGGACAGCCAAAAATGATCATCATCCATCGTTCGGCATTTGAAAGCGGTCCATGGTTCGGTGCTGAATACGCAACAGGTGGCGTAGCCGCAGATACAATTTCCCGTCTGCTCCCGTGGAGTCGGAAACGATCCGTCCCCGTTCTTTTCATAGAGAACGGCAAGCCTGATCTGTACTTCACGGCGCGACTCCGGAGGATTGGCACTGAAATTGTGCCGTCAGAAAATACTCTTAGTCGGGTTCCTGAACAAGCGCCACGCCCTCGGGTATTTTACATCGCACATAAGTTTTCGACCGCACCGCATGTATCGACTCAAGACGGAGACATCTGAMLWSMSISRSLDRGSVSTTKRVDLDPSIGNISSLLAARGRSSTPPPPNLSKTKLADTIGIGYKSATAHHPQLKIATIVHDELYDELEKSYLLMPLMPSCLVNSVDDGQPKMIIIHRSAFESGPWFGAEYATGGVAADTISRLLPWSRKRSVPVLFIENGKPDLYFTARLRRIGTEIVPSENTLSRVPEQAPRPRVFYIAHKFSTAPHVSTQDGDINANANANANA
D1-29_030132328hypothetical proteinATGTACGAGCAGTCATCCACCGAACAGCGAAAGAGCAGGGCCGCAAGGGGCGGCCGACGCGTTGCCCTCCTTTCCGCCGGAACGATTGCAAGCCTGGGCTTAAAATCCTGCCTGGCAGCGGGCACCGTCCTGATTATCATCCTGAGCAGCCTTCTGGCTCCGCCTGCATTGGCTGCCACGCTAAGCGAGCAAAGGGCGTTATTGCGGCAAGCCCAGTATTCTGCGGCACAGGATTATGTTGCATCGCGTGACTATGTTCCTATGTTGGCCCGGGCCAACGGGCTTGTGATCAAGGGAGCTATTGCGTCCGGGCTGGAGATGCTCAAAGTTGTGGGCGGCGAGCTGACGGCGGCGTCGACGCAAAGTTCAATGGATGCGGTAGCCGCGAAGATGAAGGCTGAGGTGCTCCGTGCTGCAACGGTAAAGAAAGGCGGATACCAGCTCACTTTGCTGAAAGACTTGCGCGGAAAGCAGCAGCAGGTAGCAACTACTGCTCTCGGGGATCTGATGGCCGGGAAGATCACGGCGTCAACGTATGAGGCGCAAAAAGCCCGCACCGCTGGTTTCAGCACACAGCTTTCGGCGGACACATCCAGGCAACTCGGAGCCGTGGGGCACGCTGTGCCCGCTCCGGCACTTGCGTCTCCGACCTACGTGGCAGCTTTGGAACAGGGGACTGGGAGCATTCCGACGGTATCGGGCCTGGTCGGATTTGCTGGTGGCTGTGCATTACCAGCGGCACCGCCTGCCTTCAGGCCCGCGCTCCCCACTGACGGTCCAGGGGTCGCAACGAACCGGCAGATCTTGCGGGATTCCCTCGCTGGCGCTTCAGCGGACACAGCTACCGGGGCAGTTCACAGGCAGCTCCTTCGTGCCGCAGTGAACGAGTCGGCAATTGAGATGAGCCTGGAGCAACTGCGATCGTCTTATGTGGTGCGTACTCCCAGACTTGCGTACGGATGGTTGTCAGGAAGTGATGGCAAAGCCCGGGATGTGCTGGCAGCAGACACTCAGCGCATCCTGCTGGCCGGGCCGGAAGGAATGAGTACCTTGGCGTCGTCGCATCTGTTGCTGGCAGCGTCGAGCGCCGCTGACTGGGTGAAGCTGCCGGCCTTGGACGAAACGGTCCTCGTGCGGTGGCTGGGACCGCAGACGTGCCTGCACGAGGACCGCGACACTTTTGTAAAAGGGCCCACGAACTTGGGGGCGATACACAACGCTGCTAATTTCACGGCTGCAGCGGTCTTCTTGAAGTCCTGGCCGGAGCTGGCGGCCTCCCTGGCGCAGGAATCCCTGAAGTCCGTCCAGCCGGCCCTGAGCATGATTACCACGGACGGAGGCACGCAGGAAGGGCCGGGGTACTGGACGTACCAAAGCCGGGCGATCGCGGTGCTCTATTCAACGCTTCCTAACGCTTACGCCACTCTGCCGGTGACCCTTCCGTCTCTGGAGAGCGTGTCCCATTATGCGATGAACAGCACGGGTCCGGACGGCCGGCCGAGTCCGTTTGCGGATGCCGAACCGAAGGAGCTCAGTGGACTGATGCCTGCTTGGGACGCTAAGGTGCGCGGTGATTCTACGGTCGCGGCATGGGTTGCTGGCCGCTTCGCGCAGAAGCCGGATGCATATCTGATGTGGTGGCGGATCCCACCTGGGACGCTTCCCGCCAAGCAGTCAACTGTCTATCCACAGACCGGACTTGCGGCGCTCCATGTCGTTGGCAGCACGGCGACCTTGAAGGGTGGCTCAAACGCGGCGAACCACGCACACCTGGACCTGGGTACTATCTCATTTTTCAGGAAAGGCATTGAATGGGCTGTTGACCCCGGACCGATGCCGCCGCTGACTCCTGGCTACTATTCTGAGAGTCAACGCCTTTCCTATTGGAATCCCAGCACTTCGGCCCATTCCACGATTGCCTACACGGACCTGAATCAGCCCACTAATGCGACGGCTCCGGTCCGTAGGGTCTCGTCTACTACAGCGATGGTGGATCTGCGACAGGCGCTTCCGGGCACGTCAACCGCAACCCGAACTGTTGCTCATGGGCCCACCAGTATGATCATCAAAGATGTGGTTCGTTCCTCCGTGGCAAAAGACTTCACCTGGCAGTGGGTCACTGATGCCACTGTCAGTCTCGGAACAAACAGGGCCGTGTTGCGGCGGGATGGACAGGCGATCACCATCGCTCTGACTGGAGTTCCAACGGGAGCTGTGCTGAGCGCGGAACCGGCGTCGGGAACCACGACGGACGGCAGGGCATTGACGGTCCTTAAGCTCACGATGCCCCGCGTCACCAGTTTGGATCTGACCACAACGGCGTACTGAMYEQSSTEQRKSRAARGGRRVALLSAGTIASLGLKSCLAAGTVLIIILSSLLAPPALAATLSEQRALLRQAQYSAAQDYVASRDYVPMLARANGLVIKGAIASGLEMLKVVGGELTAASTQSSMDAVAAKMKAEVLRAATVKKGGYQLTLLKDLRGKQQQVATTALGDLMAGKITASTYEAQKARTAGFSTQLSADTSRQLGAVGHAVPAPALASPTYVAALEQGTGSIPTVSGLVGFAGGCALPAAPPAFRPALPTDGPGVATNRQILRDSLAGASADTATGAVHRQLLRAAVNESAIEMSLEQLRSSYVVRTPRLAYGWLSGSDGKARDVLAADTQRILLAGPEGMSTLASSHLLLAASSAADWVKLPALDETVLVRWLGPQTCLHEDRDTFVKGPTNLGAIHNAANFTAAAVFLKSWPELAASLAQESLKSVQPALSMITTDGGTQEGPGYWTYQSRAIAVLYSTLPNAYATLPVTLPSLESVSHYAMNSTGPDGRPSPFADAEPKELSGLMPAWDAKVRGDSTVAAWVAGRFAQKPDAYLMWWRIPPGTLPAKQSTVYPQTGLAALHVVGSTATLKGGSNAANHAHLDLGTISFFRKGIEWAVDPGPMPPLTPGYYSESQRLSYWNPSTSAHSTIAYTDLNQPTNATAPVRRVSSTTAMVDLRQALPGTSTATRTVAHGPTSMIIKDVVRSSVAKDFTWQWVTDATVSLGTNRAVLRRDGQAITIALTGVPTGAVLSAEPASGTTTDGRALTVLKLTMPRVTSLDLTTTAYNANANANANA
D1-29_03014738hadL(S)-2-haloacid dehalogenaseATGAACGCAACCAATACGGCCGCCCAGGGAGTCTTGGCGACACGCTTCGGTACCATCCGGGGAGTCCTCTTCGACATCGATGACACCCTGGTTGACCTTGAATACTCCATGACCACCGCACTGCGCGAGGTCAGCGAACACCTCCTTCCCGGCCTGGACCAGGCCGGATGGGCGAGGTTCGGCAGGATCTTCACCCATGAAACCACGCACTACTACGACAGGTACCTGGCGGGGGAGCTGACCTTCAATGACCAGCGGCTGCTGCGTGGACGGGCCGCGCTGGGGCATTTCGGCGTGGAACTCGCTGACGGTGAGGAAGCGCACCAGTGGGTGAGCGCGTACGCCCGGTTGCAGCCGGGCTACGTCAGGGCCTTTGACGACGTTGCGCCGCTGCTGGATCTCCTGGATGAGGCAGGTATCCCCTACGGAGCCGTGAGCAACAACGTGCACGATTATCAGCGGGCCAAACTGGACGGCGCCGGTCTGGAACGCATCACGAGGCTCGTGGGCACCGATACCGTCGGTGTAGCCAAACCCCAGCCGGCGATTTACCTCGAGGGCGTGCGGCTCCTGGGTGTTGAACCGGGGGACACGTTATTTGTCGGCGATAATCGGCTGCTCGACGCCGAAGGGGCGACGGCGGCCGGTCTGCTGGGCGTTTGGCTCAACAGGGTGGGTGAACCGTCTCAGGGGTTCGAAGGCGACATGATCTCGTCATTGGAACAGATCAGGAGATAGMNATNTAAQGVLATRFGTIRGVLFDIDDTLVDLEYSMTTALREVSEHLLPGLDQAGWARFGRIFTHETTHYYDRYLAGELTFNDQRLLRGRAALGHFGVELADGEEAHQWVSAYARLQPGYVRAFDDVAPLLDLLDEAGIPYGAVSNNVHDYQRAKLDGAGLERITRLVGTDTVGVAKPQPAIYLEGVRLLGVEPGDTLFVGDNRLLDAEGATAAGLLGVWLNRVGEPSQGFEGDMISSLEQIRRNANANANANA
D1-29_030151536gltXCOG0008Glutamate--tRNA ligaseATGACTACTCCTTCTGCGCCCGACGCCGTTTCCAGCTCCGCTCTCCCTGAAGTCACCGGTGAAGTTACCGCCGATACCCCTGTCCGGGTCCGGTTCTGCCCGTCGCCCACAGGCACCCCCCACGTTGGCCTGATCCGTACCGCCCTCTTCAACTGGGCCTACGCCAAGCACACCAAGGGCACCTTTGTGTTCCGCATTGAGGACACGGACGCTGCGCGCGACTCGGAGGAGAGCTACCAGCAGCTGCTCGAGGCGCTGAAGTGGCTCGGCATCACGTGGGAAGAAGGCGTGGAAGTGGGCGGCCCGCACGAACCGTACCGCCAGTCGCAGCGGCTGGACCTGTACAAGGACGTCGTCGCGAAGCTGCTGGATGCAGGCTATGCCTACGAGTGCTATTCCTCCCCGGAGGAAGTGGAGGCCAGGCACCGGGCCGCAGGCCGGGACCCCAAGCTGGGCTATGACAACTTTGACCGCGAACTCACGGCGGAGCAGCTGGCCGCCTTCAAGGCCGAGGGCCGGCAGCCGGTGCTGCGCGTGCGGATGCCTGATGAGGATGTCACGTTCAACGACGTTGTCCGCGGCGAGATTACCTTCAAAGCCGGCAGCATCCCCGACTACGTGATCGTCCGCGCAGACGGCTCGCCGCTGTACACCCTGGTGAACCCGGTGGATGACGCCCTGATGGGAATCACTCACGTTCTGCGCGGCGAGGATCTGCTGTCCTCCACCCCGCGCCAGGTTGTCCTGATCCGCGCGCTGATGGAGATCGGCGTCGCCACCTACATGCCGGTCTTTGGCCACCTTCCGTACGTTATGGGCGAAGGCAACAAGAAGCTGTCCAAGCGCGATCCGCAGTCCAACCTCTTCCTGCTCCGTGACCGGGGCTTCATCCCGGAAGGGCTGCTGAACTACCTGTCGCTGCTCGGCTGGAGCCTGTCCGCCGACGAAGACATTTTCACGGTGGATCAGCTCATCGAGAACTTCGATGTCCATGACGTGCTGGCCAATCCTGCCCGCTTTGACATCAAGAAGGCCGAGGCCATCAACGGCACGCACATCCGTATGCTCGCCCCCGAGGATTTCCGGGCCCGGCTGGTTCCCTATCTGCGCGCGGCAGGCCTGGTGGGGGAGACCCTGACGGACCGCGAGGAGGATATCCTCTCGGAGGCCGCTCCGCTGGTCCAGGAACGGATCGCGCTCCTGGGGGAAGCGCCGGAGATGCTCGCGTTCCTCTTCAAGGCCGACGACGCCATCGACGTCGCGGACGACGCCCGCAAGGGGCTGCCGGAGAACCTCACCGAGGTCCTCGATGCCGCCATTGCCGCCCTGGAGCCGATCGAGGACTGGCAGCCGGAAAACATCCAGACCGCCCTCAAGCAGGCACTTGTGGAGGACCTCGGCATCAAGCCCCGGCTCGCCTTCGGTCCCGTCCGCACAGCAGTCTCAGGGCGCCGGATCTCCCCGCCGCTGTTCGAGTCCATGGTCATCCTGGGCAAGGGCCCGTCCCTGACCCGGCTCCGTTCCTTCCGCGGCTGAMTTPSAPDAVSSSALPEVTGEVTADTPVRVRFCPSPTGTPHVGLIRTALFNWAYAKHTKGTFVFRIEDTDAARDSEESYQQLLEALKWLGITWEEGVEVGGPHEPYRQSQRLDLYKDVVAKLLDAGYAYECYSSPEEVEARHRAAGRDPKLGYDNFDRELTAEQLAAFKAEGRQPVLRVRMPDEDVTFNDVVRGEITFKAGSIPDYVIVRADGSPLYTLVNPVDDALMGITHVLRGEDLLSSTPRQVVLIRALMEIGVATYMPVFGHLPYVMGEGNKKLSKRDPQSNLFLLRDRGFIPEGLLNYLSLLGWSLSADEDIFTVDQLIENFDVHDVLANPARFDIKKAEAINGTHIRMLAPEDFRARLVPYLRAAGLVGETLTDREEDILSEAAPLVQERIALLGEAPEMLAFLFKADDAIDVADDARKGLPENLTEVLDAAIAALEPIEDWQPENIQTALKQALVEDLGIKPRLAFGPVRTAVSGRRISPPLFESMVILGKGPSLTRLRSFRGPGPT0008460_1356DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-29_03016777yisKCOG0179putative protein YisKATGCGTATTGCCCGGTTTGTAGTCGATTCTGATCCCCTCTACGGCGTGGTTGAAGGCCAGCCCGGCAGTGAAGAAATCACTGTCATCAACGGCGACCCCTTCTTCAACGGAGTGGAGCGCACCGCTGTCCGCCACAAGCTGGAAGACGTGCGGCTCCTCGCTCCGATCATTCCCCGCAGCAAGGTCATCGGCGTCGGCCGGAACTTCGTGGAGCACGCCCGCGAGCTGGGCAACGAGGTACCCGCCCAGCCGTTGCTGTTCCTGAAGCCGAACACTTCAGTGGTGGGCCCGAACGACCCCATCGTGCTGCCTGAATTTTCCGAGGAGGTCTCCTTCGAGGCCGAACTGTGTGTGGTCATCGGCCGCATCTGCAAGGACGTTCCGGAGGAACGGGTGGATGACGTCATCTTCGGCTACACCTGCGGCAATGACCTCACCGCCCGGGACGTGCAGAAAACAGATCTGCAGTGGGCCAGGGCCAAGGGCTTTGACACCTCAGCACCGCTGGGGCCGTGGATCGAAACGGAGCTGGACACCGAGGACCTCCAGATCCAGGGCAGGCTGAACGGGGAGCTCCGCCAGGACGGGAGCACCAGCCAGATGATCCGCGGCGTCCGTGAGCTGGTATCCATCGTGTCGCAGGCCTTCACGCTGCTGCCCGGGGACGTCATCATGACCGGAACACCCGCCGGTGTGGGCCTGGTTGAGGCCGGAGACCGCTACGAGGTGGAAATCGAGGGCATCGGGCGCCTCTCCAACCCCGTGGTCCGCCGCTAAMRIARFVVDSDPLYGVVEGQPGSEEITVINGDPFFNGVERTAVRHKLEDVRLLAPIIPRSKVIGVGRNFVEHARELGNEVPAQPLLFLKPNTSVVGPNDPIVLPEFSEEVSFEAELCVVIGRICKDVPEERVDDVIFGYTCGNDLTARDVQKTDLQWARAKGFDTSAPLGPWIETELDTEDLQIQGRLNGELRQDGSTSQMIRGVRELVSIVSQAFTLLPGDVIMTGTPAGVGLVEAGDRYEVEIEGIGRLSNPVVRRPGPT0001625_429DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001625-ycgM-K01557NANA
D1-29_03017804gloB_4Hydroxyacylglutathione hydrolaseATGGTGACTTCAGCTTCCGGCCCTATCCTGCAGCGCAGCTCAGCCCTGACGCGGTTCATCCTGGCCCCCAATCCGGGACCCATGAGCCTGGAGGGAACCAACTCCTACGTCTTACGCGCGGCGGGCCAGGCCGGCGCGGTCGTCGTGGATCCCGGGCCGGCAGATGAAGCCCATCTTCTGGCGCTGGCCGCCGCCGGACCCGTTGAACTCGTCCTGGTCACCCACCGGCACGCCGATCACACGGCCGGCTCGGCGCGGTTGTCTGAACTGACGGGCGCCCCTGTTCGGGCGGCAGACCCGCGGCATTGCCACGGCGGTGGGCTGCCGCTGCAGGACGGTGAGGCCATCCGGGCGGCCGGGCTGGATATCCGGGTCCTGGCCACGCCCGGCCACACCTCAGATTCTGTGTGTTTCCAGCTCCCGGAGGACGGCCCAAACGGTAGTGTGCTGACCGGCGACACCATCCTGGGCCGCGGCACCACTATGCTGGACTACCCCGACGGAACGCTGGGAGACTATCTTGCCTCACTGGACAGGCTGGAGGCGCTGGGGGCAGCCGCGGTCCTTCCCGCCCACGGCCCCGTCCTTTCTTCCCTCGAAACGATCACCCGCGCTTACCGTGACCACCGCCAGGAACGGCTGGCGCAGATCCGCGCCGCATTGGACCGGCTGGGCCGGGACGCCGCCGTCGGTGCCGTGACCGACGCGGTGTATTCCGACGTCGAACCGTCCGTCCGGCGGGCAGCGGAAATGTCCGTTGCGGCGCAGCTGGACTACCTGCGGGGAGAATCCGGGCTCCTGTGAMVTSASGPILQRSSALTRFILAPNPGPMSLEGTNSYVLRAAGQAGAVVVDPGPADEAHLLALAAAGPVELVLVTHRHADHTAGSARLSELTGAPVRAADPRHCHGGGLPLQDGEAIRAAGLDIRVLATPGHTSDSVCFQLPEDGPNGSVLTGDTILGRGTTMLDYPDGTLGDYLASLDRLEALGAAAVLPAHGPVLSSLETITRAYRDHRQERLAQIRAALDRLGRDAAVGAVTDAVYSDVEPSVRRAAEMSVAAQLDYLRGESGLLNANANANANA
D1-29_03018600hypothetical proteinATGAGCGACACAACCCCCACCCTTGCAGATCTCCTCGCCGAAGCTGACTCGGCCGGCCATGACCACGCTGCGACGGAGAAGAGCAGCGGCCTGCAGCACATCCACAACCACGCGACCGGCGCCGTTGTGTGGTTCCCCACGTGGCGGAAGTTCCGCGAGACCTCCGATTGGCGCGAGGATGTGGATGCCTTCGCCGCGGACCTCAGGTCGGGTTCACAGTTGGTGGAAGAAGTGGCAGCCCGCTCCGTGGCCGAAGAGCTGGAGTCACTCCTGAAGCGCGCAGCTGCAGCGAATGATGCGAATGTCTTTGTCCAGGAAAACCTGACCAGGCATCTGACCCGGACCTGGGCCATTGCCGACGCTGTCGCCGAGGTAACAGGGAAAGATCTGCCCACCGGCAACACCACGCCGACCGTTTTTGCTGATTACCCGTATGACGTCTACGCACAGGACGGCGGCGCCTTTGCCACCACGCTGTGGAATGACATTATCGATGCCCGCCGCAACAGTGTCCTGGCCGAAGAAGCGGCACGGAAGGCGTTGAAACCCGTTTCCCGGAAGGCAATGAAAAATGCCGCCCGGAAGGCCGCCCGGCGCTGAMSDTTPTLADLLAEADSAGHDHAATEKSSGLQHIHNHATGAVVWFPTWRKFRETSDWREDVDAFAADLRSGSQLVEEVAARSVAEELESLLKRAAAANDANVFVQENLTRHLTRTWAIADAVAEVTGKDLPTGNTTPTVFADYPYDVYAQDGGAFATTLWNDIIDARRNSVLAEEAARKALKPVSRKAMKNAARKAARRNANANANANA
D1-29_030191113ilvECOG0115Branched-chain-amino-acid aminotransferaseATGACTCAGACTGCCCCTGGCGTCGAATTCACCCAGCAGCTCTCGGCAACCCCGAAGTCCGCTGAAGAGCGTAATGCCATCCTGGCCAACCCGGGATTTGGCGATTACTTCACCGACCACACCGCCATCGTCGACTACAGCGTGGACGCGGACGGCAACGGCGGCTGGCACAACCCACGCATCGAGGCGTATGGCCCGATCTCCCTGGACCCGTCGGCTGCTGTGTTCCACTACGGCCAGGAAATCTTCGAGGGGCTCAAGGCCTACCGGCATGCCGACGGCTCCGTCTGGACCTTCCGCCCGGAAGCCAACGCGGCACGCCTGAACAAATCCGCCCGCAGGCTTGCCCTTCCGGAACTGCCCGCGGATTACTTCCTGGGAGCCATCCGGGAGCTGGTGGCGGCCGACAAGGAATGGGTCCCCTCCGGTGACGGCGAGGCCCTCTACCTGCGTCCGTTCATGATCGCCACCGAAGCCTTCCTGGGTGTACGTGCGGCCCGCGAAGTCTCCTTCCGGGTGATCGCTTCCCCTGCGGGCAACTACTTCGGCCGGGAACTGAAGCCTGTCTCCATCTGGATCTCCCGCGAGTATGCCCGCGCCGGACGGGGCGGCACCGGTGACGCCAAATGCGGCGGCAACTACGCGGCTTCCCTCATCGCACAGCAGCAGGCCGAGGCCAACGGCTGCAAGCAGGTCCTCTTCCTGGACCAGTTCAATGACAATGCCATCGAGGAACTTGGCGGCATGAACGTTTTCTTCGTGCTGAAGGACGGCTCCCTCGTGACGCCGGCCCTGACCGGAACCATCCTGGAAGGCATCACCCGCATGTCAGTCATCCAGGTGGCCAAGGACATGGGCCGGGAAGTCACCGAGCGCAAGATCACGCTGGATGAATGGCGCGATGGTGTGGCAAGCGGTGAGATCGCCGAGGTCTTCGCATGCGGTACGGCAGCTGTCATCACTCCCATCGGGGTGCTGAAGGACGACACCGAGTTCATCGGTTCAGAGGACGCCAAGGCAGGGGAGACCACCATGGTCATCCGCGAGCAACTCCTGGGCATCCAGACAGGCACGGTTCCCGACACTCACGGCTGGCTGACGCGCCTGGCTTAGMTQTAPGVEFTQQLSATPKSAEERNAILANPGFGDYFTDHTAIVDYSVDADGNGGWHNPRIEAYGPISLDPSAAVFHYGQEIFEGLKAYRHADGSVWTFRPEANAARLNKSARRLALPELPADYFLGAIRELVAADKEWVPSGDGEALYLRPFMIATEAFLGVRAAREVSFRVIASPAGNYFGRELKPVSIWISREYARAGRGGTGDAKCGGNYAASLIAQQQAEANGCKQVLFLDQFNDNAIEELGGMNVFFVLKDGSLVTPALTGTILEGITRMSVIQVAKDMGREVTERKITLDEWRDGVASGEIAEVFACGTAAVITPIGVLKDDTEFIGSEDAKAGETTMVIREQLLGIQTGTVPDTHGWLTRLAPGPT0008860_1285DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
D1-29_030201101leuBCOG04733-isopropylmalate dehydrogenaseGTGAGACAGCTTGACCAGAATGTGGATGACTTGGCTACCCTAAAATACATGAGCGCATCCACTATTGATCTGGCTGTCATCCCGGGTGACGGCATCGGCCCCGAGGTCATTGCCGAGGCACTGAAGGTCCTCGAAAAGGCCGTGGCCGCAGAGGGCGTGGCCCTCCGGCAGACCCACTACAAGCTGGGCGCCGAGCACTGGCTGGCCACGGGTGAAACGCTGCCGGATGAAGTCCTTGCCGACCTCCGCACCAGGGATGCCATTCTCTTCGGCGCAGTGGGTGCCGCTCCCGGTGACACCAGGATTCCGTCCGGCATCATCGAACGCGAGATGCTCCTCAAGCTGCGCTTTAGCCTGGACCACTACGTCAACCTCCGGCCATCCAAGCTCTTCGGCACGGTGGGAAGCCCGCTGGCCAACCCGGGCGTCATCGATTTTATTGTGGTGCGTGAGGGGACCGAGGGCCCCTACGTCGGCAACGGAGGTACGCTGCGCGCCGGCACTCCCCATGAAGTAGCCACCGAGGTCTCGCTCAACACCGCCCACGGAGTTGAGCGGCTTGTCCGCGATGCCTTCCGGCGAGCCAGCGCCCGTGAGCGAAAGCATGTCACCCTGGTCCACAAGCACAATGTGCTTGTCTATGCGGGCCACCTGTGGAAGCGCACTGTTGAGGCCGTAGCGCAGGACTTCCCTGAGGTCACCCACGATTACCTGCATGTTGATGCCGCGACCATTTTTATGGTTACCAACCCCTCGCGCTTTGACGTCATTGTCACCGACAACCTCTTCGGCGATATCCTGACGGACCTCGCCGCTGCCGTCACCGGCGGCATCGGGCTGGCCGCGTCGGGCAACATCAACATGGACCGCACCGCTCCGTCCATGTTCGAACCGGTCCACGGCTCCGCCCCGGATATCGCGGGACAGCAGAAGGCGGATCCCACAGCCGCGATCCTCTCGGCTGCGCTCCTGCTGGACCACCTTGGCTACACTGCGGCGGCGCGGAAAATTGAAGCTGCCGTCACTGCCGACGTCGAAAACCGCGACGGCGGCGCCCGCAGTACCAGCGCCGTCGGGGATGCCATCACGGCAGCCCTCTAGMRQLDQNVDDLATLKYMSASTIDLAVIPGDGIGPEVIAEALKVLEKAVAAEGVALRQTHYKLGAEHWLATGETLPDEVLADLRTRDAILFGAVGAAPGDTRIPSGIIEREMLLKLRFSLDHYVNLRPSKLFGTVGSPLANPGVIDFIVVREGTEGPYVGNGGTLRAGTPHEVATEVSLNTAHGVERLVRDAFRRASARERKHVTLVHKHNVLVYAGHLWKRTVEAVAQDFPEVTHDYLHVDAATIFMVTNPSRFDVIVTDNLFGDILTDLAAAVTGGIGLAASGNINMDRTAPSMFEPVHGSAPDIAGQQKADPTAAILSAALLLDHLGYTAAARKIEAAVTADVENRDGGARSTSAVGDAITAALPGPT0001441_4009DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052NANA
D1-29_030211182hypothetical proteinGTGGATAAACGTCACGCCCTCTACAGCTGGATCCGCAGCAACCCCTGGAAAATGGACCTTGTGGCCACGGGGCTGCTGTTTGTGGCCTTTGGGCCGGTGTACCTCCTCGCGGGCCGCCTGGAACTCTTTGTGCTCTCCTGCGCGCTCCTGGTCCCGTTGGCCTGGCGCCGCGTCCGGCCGGCGGCTGCCGCTGCAGCCATCGCTTCGGTGTGCCTGGTGCAATGGGGCCTGGCCATCGAGCCGGTAGTGGGCCAGTTGGCCGTGCCGCTCATTATCTACGCCGTTGCCGCCTACGGGTCTCCGTGGGCCAGCCGGTCCGTGCTGATTCTGGGGCTTGTGGGCGGGGTGCTGCTGACCACCCGCTACTTCACCGGCCCGGCGGAATCCGGTGTGCTGGGGCTGACCACCGGGGCTGTCTACACGGTCCTCACCTGGTTGCTGGTTCTGTTCAGCTGGACGCTGGGTGACCTCACCAGGGTCAGGCGCCTCCAGCTGCAGACCCTGTCCGACCGGGCCCGGCGGCTGGAAGTCGAGCACCAGCAGGAAAGGTCCCTGGCGGCAGCTGACGAACGTTCCCACATTGCCCGCGAGATGCATGACATCGTGGCCCATTCACTCTCCGTGATCATCACGCAGGCCGACGGTGCACGGTACGCGGCTGCAGCCAGCCCGGAACTGGCTCCCCAGGCGCTGGAAACCATCGCCGCCGCGGGACGCAGCTCCCTGGCAGAGATGCGCAGGCTCCTGGGCGTCCTCCGGCGCGAGGATATGGCCTCCACCCGCCCCCTGCCGGGCCTGAATGACCTGGACGAGCTGTTTCTCAGTTTCCGGGCCGCCAGCCTGCAGCTGCGGTTTGAAGAGGCCGGGACAGCCCGGCGGCTGCTCCCGCCGGGAGCCGAGCTCACCGCCTATCGCGTCTTCCAGGAAGCCCTGACCAATGTGCTCAAGCACGCCGGGCCGCAGGCCCGGGCAAGGGCCACCATCGAGTGGCAGCCCCGTGGGCTCCGGATTGGCGTGCACGACGACGGCAGGGGCGCCAGCGCGGATCCCGTCCAGGGCGGGGGCAATGGGCTTCGTGGCATGGCCGAGCGCATCAGGCTTTACGATGGTTCGTTGACGGCCGGACCGGCCAGCGGCGGGGGCTTCCAGGTCTCGGCTTTTATCCCCTATACGGAAGCCTGAMDKRHALYSWIRSNPWKMDLVATGLLFVAFGPVYLLAGRLELFVLSCALLVPLAWRRVRPAAAAAAIASVCLVQWGLAIEPVVGQLAVPLIIYAVAAYGSPWASRSVLILGLVGGVLLTTRYFTGPAESGVLGLTTGAVYTVLTWLLVLFSWTLGDLTRVRRLQLQTLSDRARRLEVEHQQERSLAAADERSHIAREMHDIVAHSLSVIITQADGARYAAAASPELAPQALETIAAAGRSSLAEMRRLLGVLRREDMASTRPLPGLNDLDELFLSFRAASLQLRFEEAGTARRLLPPGAELTAYRVFQEALTNVLKHAGPQARARATIEWQPRGLRIGVHDDGRGASADPVQGGGNGLRGMAERIRLYDGSLTAGPASGGGFQVSAFIPYTEANANANANANA
D1-29_03022735nreC_2COG2197Oxygen regulatory protein NreCATGAGAACGCCAACAGTGGAACAGATCCGGGCAATTGAAACCATCAGGGTGGCCCTGGTGGACGACCAAAGGCTGGTCCGCTCCGGCTTCGGAATGCTGATCAACTCCCAGCCGGACCTTGACGTGGTGGTTGAGGCGGGAAACGGGCTCGAGGCCATCCAGGCGTTGAACGGAACCTCCGCCGACGTGGTGCTGATGGACGTCAGGATGCCCGGCATGGACGGGATCGAAGCCACCACGCGGCTGTTGGAGAGCGCCGCTGCCGCCCCTGCCGGCTCCCGCCGCGCTGACATCAAAATCATCGTGCTGACCACTTTCGACCTGGACGAATACGCCTTGGCTGCCATCCAGGCCGGTGCCAGTGGATTCCTCCTCAAGGATGCCCCGCCGGAGGAGCTGCTGGAGGCCATCCGCACCGTACACCGCGGTGATGCCGTGATCGCCCCCTCCACCACCAGGCGGCTCCTGGACCACGTCGCTCCGCTGCTTCGTGCCCAGGCTCCGGCCAGGCAGGAACACAGCGACGCCGTCGGACGCCTGACTGCCCGCGAGCGCCAAGTCTTCGAACTGATCGCCCAGGGTTGGTCCAATCCCGAGATCGCGGCCGGCCTGTTCGTGTCCGAGGCAACGGTGAAGACCCATGTAGGGCACATCCTGGCCAAGCTTGGCGCGCGGGACAGGGTGCACGCCGTAGTCATCGCCTACGAAACGGGCGTGGTTTCGCCCGGCACCTGAMRTPTVEQIRAIETIRVALVDDQRLVRSGFGMLINSQPDLDVVVEAGNGLEAIQALNGTSADVVLMDVRMPGMDGIEATTRLLESAAAAPAGSRRADIKIIVLTTFDLDEYALAAIQAGASGFLLKDAPPEELLEAIRTVHRGDAVIAPSTTRRLLDHVAPLLRAQAPARQEHSDAVGRLTARERQVFELIAQGWSNPEIAAGLFVSEATVKTHVGHILAKLGARDRVHAVVIAYETGVVSPGTPGPT0014870_122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_03023780bceACOG1136Bacitracin export ATP-binding protein BceAATGACAACTTCGGTACACCATCAGCACTCCCCGGATGACCGCAGCGCGGCTGCCGGGAACCTCGCCGTCCAGGCGACGTCACTGACCAAAAGTTATGGGCGGGGCGATACCCGCGTCACAGCGCTCAGGGACTTCAGCGTCGCCTTCGAGACCGGCCGCTTCACAGCCATCATGGGCCCCTCCGGCTCCGGCAAATCCACGTTGATGCACTGCCTGGCCGGTCTCGATTCCGCAGATTCAGGACGCATCCTGGTTGGCGGAACGGAGATCACCTCTCTCTCGGACAAACAGCTGACCGCACTCCGGCGCGAGCGCATTGGATTTGTGTTCCAGGCATTCAACCTGGTGCCCACACTGACGGCTGAACAGAACATCACCCTGCCGCTCGCCCTGGCGGGCACGAAGACTGACGCTGACTGGTTCGGCTTCATCGTGGCCACGCTGGGCCTCAAGGACCGCCTCAAACACCGCCCCCATGAGCTGTCCGGCGGACAGCAGCAGCGGGTGGCAGTGGCCAGGGCATTGCTGACCCGGCCCGACGTCATCTTCGGCGATGAGCCCACGGGCAACCTGGACTCCACCTCCGGCGGCGAGGTCCTCTCCTTACTGCGCCGGAGCAGTCAGGAGATGGGCCAGACCATCATCATGGTGACCCACGATCCCGTTGCCGCCAGCTATGCGGACCGTGTGGTGCTGATGAGCGACGGAAACCTCGTGGGCGAAATCATGGACCCCAGCGTTGATTCCGTGCTGGCCGCCCTCGGCAAGCTGGGAGGCTAGMTTSVHHQHSPDDRSAAAGNLAVQATSLTKSYGRGDTRVTALRDFSVAFETGRFTAIMGPSGSGKSTLMHCLAGLDSADSGRILVGGTEITSLSDKQLTALRRERIGFVFQAFNLVPTLTAEQNITLPLALAGTKTDADWFGFIVATLGLKDRLKHRPHELSGGQQQRVAVARALLTRPDVIFGDEPTGNLDSTSGGEVLSLLRRSSQEMGQTIIMVTHDPVAASYADRVVLMSDGNLVGEIMDPSVDSVLAALGKLGGPGPT0013345_2411DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-29_030242565hypothetical proteinGTGCTGCAGGTTGCCCTGTCCCAATTCCGGGTCCACAGCCGCCGGTTCATCGCAGTGGGGCTCGCCGTGATGCTGTCTGTGGCCTTCCTGGCGACCACGCTGATGGTGAGCGCCAGCACTCAGGCGTCGCTGGAAGCCAGCCTTGGCGAGGCCTACAGCAGGGCCGGCATTATCGCCACGCCTGCCGGGCAGGCCTTCGACGAGGCCGCCCTTAAAGCAGTGGCCGCAACCCCGGGAATTAAGGAAGTTTACGGACAGCAGTCCGCTGCCACCGTCTTTGGCGTCCGCGGCGAGCAGGTTTTCGGCAGGGTACGGAACCTGGCACCGGCAGGACTGGAACCATCCAGCATGGAGAGCGGGACGGTGCCGGCGCACCCCGGCGAGGTGGCGCTCGATGCCACGACGGCGGCCCGCTATGGGCTCTCAGCCGGAGACTCCCTGACGATCGCTTCCAGCGACGGCGGCACAAGCGTCACCATGACCGTTTCCGGGGTCATGGGCAGCAGTAATGACCCATTCGCCGCCGCCGTCCCGCAGCTCCTGGCCCTGGCTCCGGCGGTCAGTGCCCTGGCCGGCCAGGGCACCGGTTCATCCCTCGCGGGCGGATACGAGAGCATTCAGGTGGCCCTGGCCCCGGGGACGGATGGCGCCAAGGCCAAGCAGGACCTTGCGGCCGCGTTGTCGGAGTCTGGAGCCGGGAATGCTTACCTGAGGACGTCCACCGAGCAGGTGACAAGCCAGGTGGCCCTGATGACGGGGGGCCGGGATGAGCTCACCATCGTCCTGCTGGCCTTTGCCGGCGTGGCGCTGGTGGTGTCGGGGCTGGTCGTGTCGAACACCTTTCCAGTGCTTGTGGCCCAGCGAACCCGCGAACTTGCCTTGTTGCGGTGCCTGGGCGCTGGACGGAGCCAGGTCCGGAACTCGGTCCTGGCTGAGGCGCTGGTGGTTGGACTGGCTTCGTCGGTGCTCGGCGTCCTGGCCGGAACCGGCCTTATGGCGGCGCTCATCGGCTGGGCCAGGACCCAGCCGGACATGACGTTCACCACCCTCGCCGTACCGCCGTCGGCCCTTGCTGCGGGACTGGCAGTGGGGACGTTGCTCACGGTCATTGCTGCGCTGGTGCCCGCGCGGGCAGCTACCGCGGTGGCACCGCTGGCAGCGCTGCGCCCGTCGGACGACGCCAGCATCGGCAATGCCAAGGGCCGGCTCCGGCTGGTCCTGGGCCTCCTGGCTCTGGTGGCGGGTGTTCCACTGCTGGTGGTGGGCGCCCTGGGCGTGCAGTTGGTCATCGCGTTTGCCGGGGGCATGATCTCTTTCATCGGTGTGCTGCTGTGCTCCACGCTGTTCATTCCTCGGCTGGTAGCCCTGTTCGGAAAGCTCGCGGCGCCGGCCGGAGTGCCCGGAAGGCTGGCAGCGGTCAACGCCCTCAGAAACCCGGCGCGCACGTCCGTCACTGCCGCAGCCCTCCTGATCGGTGTCACCTTGGTGGCGCTGATGATGACAGGTGCCTCCACCGCCCGGCTGGCTTTCGACGACGCATTGGCGCAAAACTACCCGGTGGACATGGGCGTGATGGCCGGAACGCCTGGAGGGTCCGGGGCGTTGGGGGTTTCCGCGAAGGCGGATGTTACAGGAGTGCCGGAGGTTCCCGGGCTTGCCCAGGAATCCGTCCTGACAAAGGAGCAACGCCAGGCCGTACTGCAGATCGGCGGCGTGTCGGCGGCTGTCCTGGTTCCCATCAGTGGCCACGTTGATTTGGCCGGGGTGAACACCCCTGTCTTTGCCCTTACCGCGGCTGAAGCGCGGGAGGTGCTGCGGGACGATGCACTCAGGCTGGAACCGGGGAAAATCTATCTCCCGGAGGGGTCGGCTTCAGGTGCTGCCACCGTCAGTGGAAATGCCGGCGTACGTGAGCTGGATGCCGTGGTCCTGAAGACGCGGAACATGCCCCCGCTGGTCAGCAGTGAAACCGCGCAGTCCCTGGGTGTTCCTGCCGAAGGTGCCGCTTTGTGGGTCCGCCTTGCTGACGGGCCCCGCGGAGCCCAGCTGTCAGCCGACCAAATTCATGACATCCAGCGCTCGATCGCCGACGTACTGGACGTCGGGGAAAGCGCAGTCAGCGGCGCCGCGATTGAGCGTGTCGCTTTCAACGATGTCATTGACGTGCTGTTGCTGGTTGTCACGGGACTGCTGGGAGTGGCAGTACTGATTGCCCTGATAGGAGTGGCCAATACGCTGTCCCTGTCTGTCCTGGAACGGACGCAGGAGAACTCCCTCCTGCGTGCCCTTGGCCTGACCAGGGGCCAGCTCCGAGGCATGCTTGCGCTGGAGGCAGTCCTGGTGGCCGGGGTTGCGGCGTTGCTGGGGGCAGCGCTGGGAAGCATCTACGGCTGGCTGGGCGCGAAGTCCGCGCTGGGAAGCCTCGCTGAGGTGACACCCTCAATTCCCTGGCTGCAGCTCCTGGGCGTCCTGGCGGTAGCCATCCTGGCCGGACTGTTGGCCTCGGTGGTGCCGGCCAGGCGCGCGGCCCGGCTCTCGCCGGTGGAAGGGCTGGCAACGAGCTAAMLQVALSQFRVHSRRFIAVGLAVMLSVAFLATTLMVSASTQASLEASLGEAYSRAGIIATPAGQAFDEAALKAVAATPGIKEVYGQQSAATVFGVRGEQVFGRVRNLAPAGLEPSSMESGTVPAHPGEVALDATTAARYGLSAGDSLTIASSDGGTSVTMTVSGVMGSSNDPFAAAVPQLLALAPAVSALAGQGTGSSLAGGYESIQVALAPGTDGAKAKQDLAAALSESGAGNAYLRTSTEQVTSQVALMTGGRDELTIVLLAFAGVALVVSGLVVSNTFPVLVAQRTRELALLRCLGAGRSQVRNSVLAEALVVGLASSVLGVLAGTGLMAALIGWARTQPDMTFTTLAVPPSALAAGLAVGTLLTVIAALVPARAATAVAPLAALRPSDDASIGNAKGRLRLVLGLLALVAGVPLLVVGALGVQLVIAFAGGMISFIGVLLCSTLFIPRLVALFGKLAAPAGVPGRLAAVNALRNPARTSVTAAALLIGVTLVALMMTGASTARLAFDDALAQNYPVDMGVMAGTPGGSGALGVSAKADVTGVPEVPGLAQESVLTKEQRQAVLQIGGVSAAVLVPISGHVDLAGVNTPVFALTAAEAREVLRDDALRLEPGKIYLPEGSASGAATVSGNAGVRELDAVVLKTRNMPPLVSSETAQSLGVPAEGAALWVRLADGPRGAQLSADQIHDIQRSIADVLDVGESAVSGAAIERVAFNDVIDVLLLVVTGLLGVAVLIALIGVANTLSLSVLERTQENSLLRALGLTRGQLRGMLALEAVLVAGVAALLGAALGSIYGWLGAKSALGSLAEVTPSIPWLQLLGVLAVAILAGLLASVVPARRAARLSPVEGLATSPGPT0013350_3307DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-29_03025783hypothetical proteinATGGATACTGATCACCAGGCTGGAATTTCCAACGGGGATCCACCCGCCACAGTTCCGTCGGCCACTGTTCCGCCTGCCGCGCAAACGTCGACAGCTGCACGCAGCGGCCGTTGGCGCCGGGCGATGATCTTTGTGGTGCTGTGCGGTGTCCTGGGTTACCTGGTGGTGGCCCTCATCCCCCTTCTGGCCGGCGGCGGAGGCGGAACTGACCCGGCCACTGACCCGGCGCCGGCATCAGCCCCAGCCGCGGGCCAATGGACAGAAAGCCCCACTGCCTCCGGTCCGGCCCCTTCCAACCCGGTGCCTGCCAATCCGCCGGTGGCGCCCATCCCGGCTGGTCCCGCCGCGGCCCCGCCGCAACGGCTGGTCTACGCGGCGGCAGGGATTGATGTGGCCGTTCATCCCTTGGATCCAAATGGCGCGGACGTTGCTACCAGGACCATCATTCCGCCTTCCACGATCGACGGGTACTGGCTGACGCCGTTTGGCATGCCGGGGGAGGGGTCCGTCAACACCACCTACATCGTCGGCCACAGCTGGGCGGACAGGGAGGCACCCTTCAACAGGCTCAGCACCATGGCGGCGGCGGGGGACCGGTTGACGGTGGCCACCTCCACGGGCGAGGTGATGTACCAGGTGGATGAGGTCACCACGTACGTTAAGGACGGCCTCAAGGACAGTCCCGTGTGGGACGTGGCGCCCCACCGGCTGGTGCTGATTTCCTGTTACACCGATGACCTGTGGGGCACCAACGTTGTTGTTGTGGCTTCTCCCGTCGGATGAMDTDHQAGISNGDPPATVPSATVPPAAQTSTAARSGRWRRAMIFVVLCGVLGYLVVALIPLLAGGGGGTDPATDPAPASAPAAGQWTESPTASGPAPSNPVPANPPVAPIPAGPAAAPPQRLVYAAAGIDVAVHPLDPNGADVATRTIIPPSTIDGYWLTPFGMPGEGSVNTTYIVGHSWADREAPFNRLSTMAAAGDRLTVATSTGEVMYQVDEVTTYVKDGLKDSPVWDVAPHRLVLISCYTDDLWGTNVVVVASPVGNANANANANA
D1-29_03026819hypothetical proteinATGAAACGGATCCTTGCCGCACTAGGAGTCACAGGCCTTGCATTGCTGGGCGCCACCGCACCGGCAACCGCGTCGGATGACACCAAGGATGGTGGAGCCAAGATCACCATCTGCCACGCCACCGGGTCAGCGACGAACCCCTACGTGCCGATAACCATCAGCCTCAGCGGACTTAACGGGCACGTGGGCCACCAGCACAGCGAGGACATCATCCCCGCCAACTCCGGGAGCGTCCTGCCTGGCGGCCAGAACCTTCACAAGGTGGATTGGTGGAACGCGGGTTGCGTGAAACCGGGGGGAGCGGTCACACCGCCCAAAGGCAATGGCGACCACAAGATCACCATCTGCCACGCCACCGGCTCGGCGTCCAATCCGTTTGTGGTCATCACCATCTCCCTGAACGGCCTGAATGGACACGCAGGCGCGGGGCACCAGAACGGTGAGGACATCATCCCGCCGAACAGCGGCAACATTGTTCCTGGTGGACAGAACTGGACCGCTGAAGGGCAGGCAACGTTCAACAACGGCTGTGTTCCCGTCAAGCGGCCTGTTGTTCCTGAGGTGGTGCCTCCGGCAGGCAAAACGGTGGTGCCAGGTGCCGTTGTTCCCCGCGGGGCGGCAGCCGGACAGCCCGCCGGAGCAGGAGCAGTGGCGACTAACCAGGGGTTCAACGTCCAGACTGCCGTGACAGGCTCACCGGACACTGCCCTCGCCCCATGGTTGGGCGGCGTCGTGGCGATGTTGCTCGCTGCTGCCGGCGTGGCAGTTCACAGGAAACTGGCCATCAGTGCAGGCTCGGGAGGCCAGCGCCAGAAGTGAMKRILAALGVTGLALLGATAPATASDDTKDGGAKITICHATGSATNPYVPITISLSGLNGHVGHQHSEDIIPANSGSVLPGGQNLHKVDWWNAGCVKPGGAVTPPKGNGDHKITICHATGSASNPFVVITISLNGLNGHAGAGHQNGEDIIPPNSGNIVPGGQNWTAEGQATFNNGCVPVKRPVVPEVVPPAGKTVVPGAVVPRGAAAGQPAGAGAVATNQGFNVQTAVTGSPDTALAPWLGGVVAMLLAAAGVAVHRKLAISAGSGGQRQKNANANANANA
D1-29_030271560metGMethionine--tRNA ligaseGTGACTGCAACAGAAAAACCTCCGTTCTACATCACCACGGCCATCACCTACCCGAACGGTGTGCCGCACATCGGGCATGCGTATGAGTACATCGCCACTGATGCCATGGCGCGCTTCAAGCGGCTGGACGGCTATGACGTGATGTTCCTGACCGGCACGGACGAGCACGGCATGAAGATTGCCCAGACAGCCGAAAAGGAAGGCATCAGCCCCAAGGAGCTGGTGGACCGCAATGCTGAGGTCTACAAGGCTGCGCATTCCGCCCTGGGAATCACGTACAACCGGTTCATCCGCACCACGGACGCTGACCACTACGCGGCATCGCAGGCCATTTGGAAAAAGCTGGAAGCCAACGGCGATATCTATCTGTCGAAGTACGAAGGCTGGTATTCCGTCCGGGATGAAGCCTTCTACGTCGAGGACGACACGCTGGTTAAGGACGACGGCGTACGTTACTCCAAGGAGACGGACACCGAGGTGACCTGGACTGCCGAGGAGAGCTACTTCTTCAGGCTGTCCCAGTACCAGGACCGGCTCCTTGCCCTCTATGAGGCACAGCCGGAATTCGGTGCCCCGCAGTCCCGGTTCAACGAGGTCATCAGCTTCGTCAGGCGTGGCCTGGAGGACCTCTCCATCAGCCGCACCACCTTTGACTGGGGTGTTCCGGTTCCCGGCAATCCCAAGCACGTGATGTACGTCTGGGTTGATGCACTGACGAACTACCTCACGGGGGTTGGCTACCCGGACGTGGATTCGGCTTCATTCCGCAAGTTCTGGCCTGCCGACGTCCACATCATCGGCAAGGATATTTCCCGCTTCCACGCCATCTACTGGCCGGCTTTCCTGATGAGTGCCGGACTGGAACTGCCCAAGCGCGTAATGATCCATGGCTTCCTGCACAACAATGGCGTCAAGATGTCCAAGTCGCTGGGCAACGTGGTGGCCCCCGCGGACTTTGTGGCCCAGTACGGCCTTGACCAGGTGCGGTTCTTCTTCCTTCGTGAAGTTCCGTTTGGTGCCGACGGCAGCTACAACCACGAGGCCATTGTGGGACGCATGAACTCGGACCTGGCCAACAACTTCGGCAACCTGGCCCAGCGTTCGCTGTCCATGGTCGCCAAGAACTGTGCAGGCGTTGTTCCGGCACCGGGGGATTTCTCCGCCGCGGACTCCGCTCTGCTGGACCAGGCCAACGGGCTTCTTGAGACCGCGCGGACCGCTTTCGAAAAGCAGGAATTCAGCCGCGCCCTCGAAGCGATCTGGGGCGTACTGGGGGATACCAACGCCTACTTTGCAGACCAGGCGCCATGGGTGCTGCGGAAGACCGACGTCGAACGGATGAACACCGTCCTGTACGTCACGCTGGAGGTGCTGCGGATCGTGGCCATCCTTGCCCAGCCGGTGATGCCCACCGCAACCGCAAAACTCCTGGACACCCTTGGCCAGCGGGAAGGCCAGGCCCGGCAGTTTGCTGCGCTCACCACACCGATTGCCGCAGGGACCGCATTGCCGGCGCCGGCCCCCGTCTTCCCCAAGTACGAGGAACCTGCCGAGGCCTAGMTATEKPPFYITTAITYPNGVPHIGHAYEYIATDAMARFKRLDGYDVMFLTGTDEHGMKIAQTAEKEGISPKELVDRNAEVYKAAHSALGITYNRFIRTTDADHYAASQAIWKKLEANGDIYLSKYEGWYSVRDEAFYVEDDTLVKDDGVRYSKETDTEVTWTAEESYFFRLSQYQDRLLALYEAQPEFGAPQSRFNEVISFVRRGLEDLSISRTTFDWGVPVPGNPKHVMYVWVDALTNYLTGVGYPDVDSASFRKFWPADVHIIGKDISRFHAIYWPAFLMSAGLELPKRVMIHGFLHNNGVKMSKSLGNVVAPADFVAQYGLDQVRFFFLREVPFGADGSYNHEAIVGRMNSDLANNFGNLAQRSLSMVAKNCAGVVPAPGDFSAADSALLDQANGLLETARTAFEKQEFSRALEAIWGVLGDTNAYFADQAPWVLRKTDVERMNTVLYVTLEVLRIVAILAQPVMPTATAKLLDTLGQREGQARQFAALTTPIAAGTALPAPAPVFPKYEEPAEANANANANANA
D1-29_03028756ytrE_2COG1136ABC transporter ATP-binding protein YtrEATGACAAACCAGACGAACGTTCAACGGAGCCGCAGGGCCGACTCCGGTGGAGACCCTCTCCAGACGCGCGCCAATACCATCGTCAAGGCTGCAGACCACGGGACACCGCTGGAGCTCAGCGATGTCACCATCCGCTACGGCGGTGGCAAGGGCGGCGCCGAGGCAGTCAGCGTCGTGGAGGGCTTTGACCTCACCCTGCACGCCGGCGAGATGCACTGCGTTGCCGGCCGAAGCGGTTCCGGCAAGACCAGCATCCTGACAGTGGGCGCGGGACTGACACTGCCGACGTCGGGCCGTGTCTTCTGGGAGGGCGACTCCCTCGAAAGCATGGGCGACGACGAAATCGCTGACCGCCGTCGGGCCCTGATCGGCTACGTTGACCAGGGCGGCGCCCTGATTGACGGCATGAGCGCACTTGAGAACGTGCTCCTGCCGGCCGTCCCGGACGGCGAAGTGGACCAGCGCCGGGACATGGCAAAGGACCTGCTCGACCTTGTGGGGCTGGGCCGCCGGATGCGCCACCGTCCCGCCCAGCTGTCCGGTGGTGAACGCCAGCGCGTGGCCATTGCGCGTGCGCTGATCCTGGGCACCCGCGTGCTGGTGGTGGATGAGCCAACCGCAAGCCTGGACCGGGCCTCAGCGAACCGCATCATCAGCATCCTCAAGGACACCACCAACGACGGGATCGCCGTGCTGGTCGCTTCCCACGACCACGAACTGGTCCGTCTTAGCGATACGCTGACTGAACTCATCTAGMTNQTNVQRSRRADSGGDPLQTRANTIVKAADHGTPLELSDVTIRYGGGKGGAEAVSVVEGFDLTLHAGEMHCVAGRSGSGKTSILTVGAGLTLPTSGRVFWEGDSLESMGDDEIADRRRALIGYVDQGGALIDGMSALENVLLPAVPDGEVDQRRDMAKDLLDLVGLGRRMRHRPAQLSGGERQRVAIARALILGTRVLVVDEPTASLDRASANRIISILKDTTNDGIAVLVASHDHELVRLSDTLTELIPGPT0024515_150DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024515-lolD-K09810NANA
D1-29_030292796hypothetical proteinATGAACGCCGTCCAGAGGTTCATCAGAAGCAAAGTGCTGCTGCTGACCGCGGCCATCTTGATCGCAGCCATGTGCTTGTCGGTCCTCGTCCAAGGCCAGTCGCAGGCCGCGCTCAACCGGACCGTGGATGAGAATTCACGCGGACTTTATGACGTCCTGGTCCAGGCCAAGGCAGGATCCGGGGCGCTGATGCAGCCGGAAATCGCCAACGGCGGCGGCGGAATCAGTTTTGACCAGCTGGAGGGCATCCGCGACCTCACCGGCACGTCAGTGGCAGCTCCCATCAGCCTGGTCTCCCGTGTGACGCAGAACCTCGAGGCGCCCCGGCTTGATGCCATGGACTACCTCGGCTACAACGCAGGACTGGCAGGCACTGCCACAGCCGACCAGGCCGCGGGTGCCACCGAGCCCAGCAAGTGGCCGGCTGCGGAGTCCGTCCTGAGCGACACTCCCAAGACCTACCGGCTGACAGCCAGCGCTGTCAGCTCCGACGGCGTTTCTGAACAGACACTCTTCAAGTCCACCGCCGAAGGCACCCTGGGCAAAGGCAAGCTCGTGGAGGAGAAGGCCGCCGGCGGCAGCAGCATCCGGATTGCCCCGCCGGCCGGGGAAACCGGCATCAAGTTCCCAGCGCCTGCCGGCGGTTCGGAGCACAACCTCTTCAACCTTTCAGTCTCCCTGCCGCTGTCACCGGAGGTGACGGAGTCGGTGGTCGCTGTTGATCCCGTGGCAGAACGTGCGCTGCTCGGCTCCGCTGGCGACTTCCTGGCGCCGCTGGAAAAGGCGCCGCCGGCTGATGCCCGCAACGCCGGCGCCATCGGACGGCACTTTGAAACTCTCTTCACCAACGGCATCAGCATGCAGGAGCTGGCAGACGGTCCCGATTTCCTGGGCGTCAAGCTCAAGCACTGGGCACCGCTGATGACCCAGTACCAGCAGGCCAAACGCAACGGCCTGCTCACCGCGGATTCCCAGGCCATTCCCCTGATTGTGCGTTCAGGCACGTCCCTTGACCTGAAGTACAACGTCAAGATCGAGGAAATCGACGCGTCCGGCAAGGTGGTCAAGGACGTCGGCACAGCGACGCGTTCCCTGGACAAGGACTACCTGCCGTTCGTTTCCAAGGATCCCTTCGCACTGTCCTGGCCCGGCTCCAAGGACCACTCCGACCTGCTGGGCAACACCGGAAACTTCAACCAGGGCCTGTACACCCCTGCAGCCTGGAGCACCGACTTTGCGTCTGCCCCGAAGTACACGGATGGCAGCACGGCCGGCAACGGCGCAGTTGAAAAGTCAGCCGTTCCCGGCGACTGGGTCACCGTCAACCGGCTGCCCGAAAAGAGTGCCAGCGGTGCTTCGGTGGACCAGACCCAGCGCGATCCCGTAGATGAGCGTTCCTACCGTGAAAACCTGGCAACAGGGGAGAAGCTCGCGGCACCGCTTGCCATGGTCTACGGAACGTTTGACCCTTCCGCCGTCGAAAAGGCCGCCGGCGACGTCAACAGGCTGCCCCTGGGCGGCTATGACCCCACCCCGTTGACGCTGACCAAGGACGCCGAAGGAAAGGCCGTCACCGAAACCGAACTCAAGCCCTCGCTGAGCGCGACCGGGCTCGCCAGCCAGTCCGCCGGCGCCATCACCGACTACTACGGCCTGGCCGCCGCCCGAGGTTACAAGGACAACGCTGCGGTGATCGATGCCGTACGAGTCCGCGCCAAGGCCCCCGGCAGCTGGAAGCAGGCCCAGCCGGACGTCGAAAAGCTGGCGGGCGAGATCCGTGCCATGGGCTTGGAAGCCACCGTCGTGGCCGGTTCCGCCCGTGAGGACGCCAGCATCTTTGTTCCCGGCTACTCCAAGGACGACGCCGGCAAGGAATCCGACCTGGGCACAGTCCAGCAGTCATGGGTCCGGCAAAACGCCGCCGATGCCGTCTCCGGATCCCTCACCGGCACCAACGTCACACTGCTCTTCCTGACTCTGTGTGGGGCTGCACTGCTCACCGGGGCGTCCACTGTCAGCTACATCCGGAAACGCAAGCAGGAAGCCGGCACCCTCCGGGCCATGGGCTGGACGCAGGGCCGGATCCGGAACTGGGTCCTTGAGGAGTTCGCGGTGGGTGCTGCCCTGCTGGCAGTGGCGGGAATTGCCCTGAGCCTGCTCAGCTGGAGCCTGGCGACCGTGATCGTCTCGGCGTCGGTCCTGGTCCTGTATGCCGCAGCGGCGTTCTTCGCTGCCCAGCAGCTGCGCCACCGTGACGAGGTGGACCAGGAACCGCAGCACGACGAACGGCTGATCGCCGTTGACTCGCCGCTGACGTTCGCCAACCGGCAGCTGAGCACCAACAAGTTCAACACCCTGTCACTGGCGGTGGCGGTTGGAGTGTTTGGAGCAGCTGTCGGCGGGCTGGTTGCGCTGCTGATCGATATTCCCCGCGCGGCCGGGGCCAGTGCACTCAGCGGACTGGCGGCAGCCAGCATCGCTTTGCCCAGCATCCTCCTGGCGCTGGCCGGAGTGACGGTTGGCCTGGTGCTGACCCTGGTGACGGGCAGGTTTGAGCTCACCGCCAAACGCCAGTACCTTGGCATCCTCGAGGCCATGGGCTGGAACCCGGACATGCTCCGCCAGGTCCGTTTCTTCGAGAACGCGCTCGTGGGAACAGTGGCCCTGCCGCTGGGAGTCCTGGGCGCACTGGGCATAGGAATGCTCCTGGCCCCGTACGCCGCACTGTGGGCCGGAGTGGCCGGCCTTGTGGCTGTGATTTGCTGGATACCGATTGCAACGAAAGTGGTCCAATGAMNAVQRFIRSKVLLLTAAILIAAMCLSVLVQGQSQAALNRTVDENSRGLYDVLVQAKAGSGALMQPEIANGGGGISFDQLEGIRDLTGTSVAAPISLVSRVTQNLEAPRLDAMDYLGYNAGLAGTATADQAAGATEPSKWPAAESVLSDTPKTYRLTASAVSSDGVSEQTLFKSTAEGTLGKGKLVEEKAAGGSSIRIAPPAGETGIKFPAPAGGSEHNLFNLSVSLPLSPEVTESVVAVDPVAERALLGSAGDFLAPLEKAPPADARNAGAIGRHFETLFTNGISMQELADGPDFLGVKLKHWAPLMTQYQQAKRNGLLTADSQAIPLIVRSGTSLDLKYNVKIEEIDASGKVVKDVGTATRSLDKDYLPFVSKDPFALSWPGSKDHSDLLGNTGNFNQGLYTPAAWSTDFASAPKYTDGSTAGNGAVEKSAVPGDWVTVNRLPEKSASGASVDQTQRDPVDERSYRENLATGEKLAAPLAMVYGTFDPSAVEKAAGDVNRLPLGGYDPTPLTLTKDAEGKAVTETELKPSLSATGLASQSAGAITDYYGLAAARGYKDNAAVIDAVRVRAKAPGSWKQAQPDVEKLAGEIRAMGLEATVVAGSAREDASIFVPGYSKDDAGKESDLGTVQQSWVRQNAADAVSGSLTGTNVTLLFLTLCGAALLTGASTVSYIRKRKQEAGTLRAMGWTQGRIRNWVLEEFAVGAALLAVAGIALSLLSWSLATVIVSASVLVLYAAAAFFAAQQLRHRDEVDQEPQHDERLIAVDSPLTFANRQLSTNKFNTLSLAVAVGVFGAAVGGLVALLIDIPRAAGASALSGLAAASIALPSILLALAGVTVGLVLTLVTGRFELTAKRQYLGILEAMGWNPDMLRQVRFFENALVGTVALPLGVLGALGIGMLLAPYAALWAGVAGLVAVICWIPIATKVVQNANANANANA
D1-29_030301590serACOG0111D-3-phosphoglycerate dehydrogenaseGTGTCAAAACCCGTAGTACTGCTCGCCGAAGAACTTTCGCCCGCCACCGTCGAGGCCCTCGGCCCGGACTTTGAAATCCGCCAGACCGACGGCGCCGACCGTTCCCAGCTGCTGTCTGCGATCGCCGACGTCGACGCCATCCTGGTCCGCTCCGCCACACAGGTGGACGCCGAAGCCATTGCCGCGGCCAAGAACCTCAAGGTCATCGCCCGTGCCGGCGTGGGACTGGACAACGTGGACATCAAGGCCGCCACCCAGGCCGGGGTCATGGTGGTCAACGCCCCGACGTCGAACATTGTCTCTGCCGCGGAACTCACAGTTGGGCACATCCTCAGCCTGGCCCGCCACATCCCGCAGGCCAGCGCGGCACTGAAAAACGGTGAGTGGAAGCGCTCCAAGTACACCGGAATCGAACTCTTCGAAAAGAAGGTCGGCATCATCGGCCTGGGCCGGATCGGCGCCCTGGTGGCCGCCCGCCTGCAGGGTTTCGAAACCGAGATCCTCGCGTACGACCCCTACATCACGTCGGCCCGCGCTGCGCAGCTCGGCGTCAGGCTCGTCACCCTGGATGAACTCCTGAGCCAGGCTGACTTCGTCACCATCCACATGCCCAAGACGCCGGAGACAGTAGGCATGCTCGGGGCAGATGCATTCACCAAGATGAAGTCCACCGCCTACGTGGTCAACGTGGCCCGCGGTGGCCTTATCGATGAGGAAGCCCTCTACGCTGCCCTCCAGGACCGGCAGATCGCCGGTGCCGCGGTGGACGTTTTTGTCAAGGAGCCCAGCACGGACCTGCCGTTCTTCGCCCTCGACAACGTTGTGGTTACCCCGCACCTCGGTGCCTCCACCGATGAGGCCCAGGAAAAGGCAGGCGTCTCGGTGGCCAGGTCCGTACGCCTGGCCCTGGCCGGCGAGCTGGTTCCGGACGCGGTCAACGTCGCCGGTGGCGTGATCGCCCCCGACGTCAGGCCGGGCATCCCGCTGATCGAAAAGCTGGGCCGCATCTTCACCGCCCTGACGCACGCCTCCCTGACCCAGATCGATGTTGAAGTAGCCGGAGAGATCGCCGCCCTGGACGTCAAGGTCCTGGAACTGGCAGCCCTCAAGGGCATCTTCGCCGACGTTGTCACCGAGCAGGTTTCCTACGTCAACGCCCCCGTCATCGCGGAACAGCGCGGCATCAATGTCCGCCTGATCACGACGCCGGAGGCCGAGGACTACCGCAACGTCCTGACCATCCGGGGTGCTTTGAGCGACGGCTCCCAGATCTCAGTGGCCGGCACCCTGACGGGGCCCAAGCAGGTGGAGAAGCTGGTGGGCCTCAACGGCTATGACGTGGAGATCCCCATCAGCGAGCACCTTGTGGTGGTGGCCTACGCCGACCGACCCGGAGTGATCGGCACCATCGGCCACATCCTGGGCATGAACAACATCAACATCGCCGGAATGCAGGTGGCGCGGCAGGCTGAGGGCGGACAGGTACTGGCGCTGCTCACCATCGACAGCTCCGTTCCGCAGCAGGTCCTGGACGCCATCAAGGCGGGAATCGGCGCCGAGATGGTCCGCGAAGTGGACCTCGAGGACTAAMSKPVVLLAEELSPATVEALGPDFEIRQTDGADRSQLLSAIADVDAILVRSATQVDAEAIAAAKNLKVIARAGVGLDNVDIKAATQAGVMVVNAPTSNIVSAAELTVGHILSLARHIPQASAALKNGEWKRSKYTGIELFEKKVGIIGLGRIGALVAARLQGFETEILAYDPYITSARAAQLGVRLVTLDELLSQADFVTIHMPKTPETVGMLGADAFTKMKSTAYVVNVARGGLIDEEALYAALQDRQIAGAAVDVFVKEPSTDLPFFALDNVVVTPHLGASTDEAQEKAGVSVARSVRLALAGELVPDAVNVAGGVIAPDVRPGIPLIEKLGRIFTALTHASLTQIDVEVAGEIAALDVKVLELAALKGIFADVVTEQVSYVNAPVIAEQRGINVRLITTPEAEDYRNVLTIRGALSDGSQISVAGTLTGPKQVEKLVGLNGYDVEIPISEHLVVVAYADRPGVIGTIGHILGMNNINIAGMQVARQAEGGQVLALLTIDSSVPQQVLDAIKAGIGAEMVREVDLEDPGPT0009155_1556DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-29_030311026ilvCCOG0059Ketol-acid reductoisomerase (NADP(+))GTGACTGAAATGTTCTACGACGACGACGCCGACCTGTCGATCATCCAGGGCCGCACCGTTGCCGTCATCGGTTACGGATCCCAGGGCCACGCGCACGCCCTCAGCCTGCGCGATTCCGGCGTCGACGTCCGCGTTGGCCTGAAGGAAGGCTCCAAGTCCCGCGCCAAGGCCGAGGCCGAGGGCCTGCGGGTCCTGAACGTTGCCGACGCCGTTGCCGAGGCCGACCTCATCATGGTCCTCACCCCGGACCAGGTTCAGCGCCACGTGTACGCCGAAGACATCGCCCCCAACCTGCAGGCCGGCGACGCCCTGTTCTTCGGCCACGGCTTCAACATCCGCTATGGCTACATCAAGCCGCCGGCTGACGTTGACGTCGCCCTGGTTGCACCGAAGGGCCCGGGCCACATCGTGCGCCGCGAATTCGAGGCCGGCCGCGGCGTTCCCGACCTGATTGCCGTGGAGCAGAACGCTTCGGGCAAGGCCAAGGAACTGGCACTGTCCTACGCCAAGGCTATCGGCGGCACCCGTGCGGGCGTCATCGAGACCACCTTCACCGAAGAGACCGAAACGGACCTGTTCGGCGAGCAGGCTGTCCTTTGCGGCGGCGCCTCGCAGCTCATCCAGTACGGCTTCGAAACCCTCACCGAGGCCGGCTACAAGCCGGAGGTCGCCTACTTCGAGGTCCTCCACGAGCTCAAGCTCATCGTTGACCTGATGGTCGAGGGCGGCATCGCCAAGCAGCGCTGGAGCGTCTCCGACACCGCCGAATATGGCGACTACGTCTCCGGCCCGCGCGTCATCACCCCCGAGGTGAAGGAAAACATGAAGGCTGTCCTCGCGGACATCCAGAGCGGTGCCTTCGCCAAGCGCTTCATCGACGACCAGGATGCCGGAGCTCCGGAGTTCGCCGAGCTGCGCAAGAAGGGTGAGGACCACCCCATCGAGGCCACCGGCCGTGAACTGCGCAAGCTCTTCTCCTGGATCAAGACCAGCGACGACTACACCGAGGGCTCCGTAGCCCGCTAGMTEMFYDDDADLSIIQGRTVAVIGYGSQGHAHALSLRDSGVDVRVGLKEGSKSRAKAEAEGLRVLNVADAVAEADLIMVLTPDQVQRHVYAEDIAPNLQAGDALFFGHGFNIRYGYIKPPADVDVALVAPKGPGHIVRREFEAGRGVPDLIAVEQNASGKAKELALSYAKAIGGTRAGVIETTFTEETETDLFGEQAVLCGGASQLIQYGFETLTEAGYKPEVAYFEVLHELKLIVDLMVEGGIAKQRWSVSDTAEYGDYVSGPRVITPEVKENMKAVLADIQSGAFAKRFIDDQDAGAPEFAELRKKGEDHPIEATGRELRKLFSWIKTSDDYTEGSVARPGPT0008735_1725DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008735-ilvC-K00053NANA
D1-29_03032513ilvHCOG0440Acetolactate synthase small subunitATGAGCCGCCACACACTGTCCGTTCTGGTCGAAGACAAACCCGGTGTACTGACCCGCGTTGCGAGCCTTTTCGCCCGCCGTGCCTTTAACATCAACTCCCTGGCCGTTGGACCGACGGAAGTTCCGGGCATGTCCCGGATGACCGTCGTCGTCGACGCCGATGGTGACCTGATTGAACAGATCACCAAGCAGCTCAACAAACTGGTCAACGTGATCAAGATCGTTGAGCTGACCTCCGAATCTTCCGTACAGCGAGACCACATCCTGGTCAAGGTACGTGCGGATGCCGCAACTCGTCTGCAGGTGACCCAGGCTGCAGACCTGTTCCGTGCTTCAGTGGTTGACGTCTCCACAGACTCCGTAGTCATTGAAGCAACAGGCCACCCCGAAAAGCTCACGGCGCTGCTCTCAGTGCTCGAGCCCTTCGGCATCCGCGAAATTGTGCAGTCCGGCACCTTGGCCGTTGGACGGGGATCCCGCTCCATGAGTGACAGGGCATTGCGCTCCGCGTAGMSRHTLSVLVEDKPGVLTRVASLFARRAFNINSLAVGPTEVPGMSRMTVVVDADGDLIEQITKQLNKLVNVIKIVELTSESSVQRDHILVKVRADAATRLQVTQAADLFRASVVDVSTDSVVIEATGHPEKLTALLSVLEPFGIREIVQSGTLAVGRGSRSMSDRALRSAPGPT0008205_1915DIRECT 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
D1-29_030331908ilvB1COG0028Acetolactate synthase large subunit IlvB1ATGAGCAAAGGATCGCCGATCAGCCCCTCGCTGATGGCTACTAAGTCCGCTGGAGCCCACAAGGCTCCGGAACGTGCCGACCGATCGGCTGACGCCGTCGCTGTCGTCACCGACCTTGCTGCAGTCTCTCCTGTCCTTGGGCCGAACAACGTTGTACCCCCAACGGTGATGACCGGCTCAGAAGCTATTGTCCGCTCGCTCGAAGAACTCGGCGTCGACGATATTTTTGGTTTGCCCGGTGGCGCGATCCTGCCTACCTACGACCCCTTGATGGCCTCCAGTATGAATCACGTTCTGGTCCGTCACGAACAGGGAGCCGGCCACGCCGCGCAAGGCTACGCCATGGTCACGGGGAGGGTAGGTGTGTGCATTGCCACCTCCGGTCCCGGTGCCACCAACCTCGTTACCGCCATCATGGACGCCCACATGGACTCCGTGCCGCTCGTGGCCATCACCGGCCAGGTGTCCAGTGGCGTCATTGGCACTGACGCCTTCCAGGAAGCGGACATCGTCGGCATCACCATGCCGATCACGAAGCATTCCTTCCTGGTGACCAACCCCAACGACATCCCGCATGTGATGGCCGAGGCCTTCCACCTGGCTTCCAGCGGCCGGCCTGGCCCGGTACTGGTGGACGTTGCCAAGGACGCCCAGCAGGGACAGATGACGTTCTCCTGGCCCCCTAAGGTGGATCTGCCGGGCTACCGTCCCGTCACCCGCGGCCACAACAAGCAGGTCCGTGAAGCGGCAAAGCTGATCGCGGCGGCCACCAAGCCTGTCCTGTACGTGGGCGGCGGCGTGGTCAAGGCGCACGCTTCAGCGGAGCTGCGTGAACTGGCCGAACTGACCGGAGCGCCGGTGGTCACCACCCTGATGGCCCGGGGCGTGTTCCCCGACTCCCACCCGCAGCACGTGGGCATGCCGGGCATGCACGGCACCGTGTCCGCCGTGACCGCCCTGCAGCAGTCCGACCTCCTCATCACCTTGGGCGCCCGCTTTGACGACCGCGTGACAGGCATCCTGAAGACCTTCGCTCCGAACGCCAAGGTGATCCATGCCGATATCGATCCGGCGGAGATCTCCAAGAACCGTACGGCGGACGTGCCCATTGTGGGCTCGGTCAAGGAAATCATCCCCGAACTCACGGAAGCTGTCCGCACCCAGTTCGACACGTCAGGCGTCCCCGACCTCACCACCTGGTGGGCTTTCCTGAACAACCTCAAGGAAACCTATCCGCTGGGCTGGACGGAACCGGACGACGGACTGAGCGCCCCGCAGCGGGTCATCGAGCGGATCGGAGCCCTGACCGGGCCCGAGGGCATCTACGTTGCCGGCGTTGGCCAGCACCAGATGTGGGCTGCCCAGTTCATCAAGTACGAGCGTCCGCACGCGTGGCTCAACTCCGGCGGGGCCGGCACCATGGGCTATGCCGTTCCGGCCGCCATGGGTGCCAAGGTGGGGGACCCGGACCGGGTGGTGTGGGCAATCGACGGTGACGGCTGCTTCCAGATGACCAACCAGGAACTTGCCACGTGCGCGATCAACAAGATCCCGATCAAGGTCGCCATCATCAACAACTCGTCCCTGGGCATGGTCCGACAGTGGCAGACGCTCTTCTATGAAGGCCGCTACTCCAACACCGACCTGAACACAGGGCACGACACCGTCCGCATCCCGGACTTCGTCAAGCTGGCTGACGCCTACGGCTGCGCTTCCTTCCGCTGCGAACGCGACGAGGACATCGACGCCACCATCCAGAAGGCACTCGAGATCAACGACCGACCCGTGGTCATCGATTTTGTGGTGAGCCCCAACTCCATGGTGTGGCCGATGGTGCCCGCCGGAGTAAGCAACGACCAAATCCAGGTCGCCCGCAACATGACCCCGGAATGGGAAGAGGAGGACTGAMSKGSPISPSLMATKSAGAHKAPERADRSADAVAVVTDLAAVSPVLGPNNVVPPTVMTGSEAIVRSLEELGVDDIFGLPGGAILPTYDPLMASSMNHVLVRHEQGAGHAAQGYAMVTGRVGVCIATSGPGATNLVTAIMDAHMDSVPLVAITGQVSSGVIGTDAFQEADIVGITMPITKHSFLVTNPNDIPHVMAEAFHLASSGRPGPVLVDVAKDAQQGQMTFSWPPKVDLPGYRPVTRGHNKQVREAAKLIAAATKPVLYVGGGVVKAHASAELRELAELTGAPVVTTLMARGVFPDSHPQHVGMPGMHGTVSAVTALQQSDLLITLGARFDDRVTGILKTFAPNAKVIHADIDPAEISKNRTADVPIVGSVKEIIPELTEAVRTQFDTSGVPDLTTWWAFLNNLKETYPLGWTEPDDGLSAPQRVIERIGALTGPEGIYVAGVGQHQMWAAQFIKYERPHAWLNSGGAGTMGYAVPAAMGAKVGDPDRVVWAIDGDGCFQMTNQELATCAINKIPIKVAIINNSSLGMVRQWQTLFYEGRYSNTDLNTGHDTVRIPDFVKLADAYGCASFRCERDEDIDATIQKALEINDRPVVIDFVVSPNSMVWPMVPAGVSNDQIQVARNMTPEWEEEDPGPT0008185_474DIRECT 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
D1-29_030341722ilvDCOG0129Dihydroxy-acid dehydrataseATGAGTGAGGACACCCAGATCGCGACCCAGAACAAGCCAGATATCAAGCCCCGCAGCCGTGTGGTTACCGACGGAATCCACGCAGCGCCCGCGCGTGGCATGTTCCGCGCCGTGGGCATGGGTGACGATGACTTTGCCAAGCCGCAGATCGGCGTCGCGAGTTCCTGGAACGAAATTACTCCTTGCAACCTTTCCCTGAACCGGTTGGCCCAGGGCGCCAAGGAAGGCGTCCACGCCGGCGGCGGGTTCCCCATGCAGTTTGGCACCATCTCCGTTTCCGACGGCATCTCCATGGGCCATGAGGGCATGCACTTCTCCCTGGTGTCCCGCGAGGTCATCGCCGACTCAGTGGAAACCGTGATGCAGGCTGAGCGGATCGACGGCTCGGTGCTTCTGGCCGGCTGCGACAAGTCCCTGCCGGGCATGCTGATGGCGGCGGCCCGCCTGGACCTGGCCAGCGTCTTCCTTTACGCCGGCTCCATCATGCCGGGCTGGGTCAAGCTGGAGGACGGCTCCGAGAAGGAAGTCACGCTCATCGACGCCTTCGAGGCCGTGGGCGCCTGCGCTGCGGGCAAGATGAGCCTGGGCGACCTGGAGCGCATCGAAAAGGCCATCTGTCCGGGCGAGGGTGCCTGTGGCGGCATGTACACGGCCAACACCATGGCCTGCATCGGCGAAGCCCTGGGCATGTCCCTTCCCGGCTCCGCCGCGCCGCCCTCGGCAGACCGCCGTCGTGATGAATTCGCGCGTAAGTCCGGCGAGGCTGTGGTGAACCTGCTCCGCCTGGGCATCACCGCGCGGGACATCATGACCAAGAAGGCCTTCGAAAACGCCATCGCCGTGACCATGGCCTTCGGCGGCTCCACCAACGCCGTCCTGCACCTGCTGGCCATCGCCCGCGAGGCCGAGGTGGAGCTGAGCCTGGAGGACTTCAACCGCATCGGCGACAAGATCCCGCACCTGGGTGACCTGAAGCCGTTCGGGCGCTACGTCATGACCGACGTCGACAAGATCGGCGGCGTGCCGGTCATCATGCGTGCACTGCTCGACGCCGGCCTGCTGCACGGAGACTGCCTCACCGTCACCGGCAAAACCGTCGCCGAAAACCTCGAAGCGATCAACCCGCCGGACCTGGACGGCAAGATCCTGCGTGCACTGGACAACCCGATCCACAAGACCGGCGGCATCACCATCCTGCACGGCACCATGGCACCTGAAGGTGCGGTTGTGAAGAGCGCAGGCTTTGACGCCGACGTCTTCGAAGGCAGGGCGCGGGTGTTCGAGCGCGAGCAGGGCGCGCTGGATGCGCTGGACAAGGGCGACATCCAGAAGGGTGACGTTGTGGTCATCCGCTATGAAGGCCCCAAGGGCGGCCCGGGCATGCGCGAAATGCTCGCCATCACGGGTGCCATTAAGGGCGCGGGGCTGGGCAAGGACGTCCTGCTCCTTACCGACGGCCGGTTCTCCGGCGGCACTACCGGCCTGTGCATCGGCCACGTCGCCCCGGAAGCCGTCGACGGCGGCCCCATCGCCTTCGTCGAGGACGGGGACCGGATCCGCGTTGACATCGCGGCCCGCAGCTTCGACCTCCTCGTTGATGAGGCGGAACTGGTATCCCGGCGCGTCGGCTGGGAGCCGCTGCCGGCCAGGTACACCAAGGGCGTCCTGGCCAAGTATGCCAAGCTGGTGCACAGCGCCTCCACCGGCGCATACTGCGGGTAGMSEDTQIATQNKPDIKPRSRVVTDGIHAAPARGMFRAVGMGDDDFAKPQIGVASSWNEITPCNLSLNRLAQGAKEGVHAGGGFPMQFGTISVSDGISMGHEGMHFSLVSREVIADSVETVMQAERIDGSVLLAGCDKSLPGMLMAAARLDLASVFLYAGSIMPGWVKLEDGSEKEVTLIDAFEAVGACAAGKMSLGDLERIEKAICPGEGACGGMYTANTMACIGEALGMSLPGSAAPPSADRRRDEFARKSGEAVVNLLRLGITARDIMTKKAFENAIAVTMAFGGSTNAVLHLLAIAREAEVELSLEDFNRIGDKIPHLGDLKPFGRYVMTDVDKIGGVPVIMRALLDAGLLHGDCLTVTGKTVAENLEAINPPDLDGKILRALDNPIHKTGGITILHGTMAPEGAVVKSAGFDADVFEGRARVFEREQGALDALDKGDIQKGDVVVIRYEGPKGGPGMREMLAITGAIKGAGLGKDVLLLTDGRFSGGTTGLCIGHVAPEAVDGGPIAFVEDGDRIRVDIAARSFDLLVDEAELVSRRVGWEPLPARYTKGVLAKYAKLVHSASTGAYCGPGPT0001875_3087DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
D1-29_03035927gltC_1HTH-type transcriptional regulator GltCATGGACTTTAAACGGCTCCGGATCCTGCGTGAACTTGCCGACCGGGGTTCGGTGGGCGCCACAGCGGAAGCCATGCATGTCACCCCGTCCGCCGTGTCGCAACAACTCAGGACCCTGCAGGACGAACTCGGCGTGGTCCTGATGGAAAAGTCCGGCAGGGGAGTACGGCTGACCGAGGCCGGCCAGGCGATGGCAACCGCGGCCGCAGACGTCTCCACCGCCATGGCCAGGGCCGAAGCCACCATCGACACCTACAGGCAGGGCTGGCAGGCCCACATCAGGGCAGCCTTTTTCCCCAGTGCTGCTGAAATGTTCCTTCCCGGCCTCCTGCACCGGGTGAAGGCCATCGAGGGGATGCACTTTGAGGCCCATTTTGAGGATCCCGGAGTTGCCGGTTTTGCCGGCTTGGCAGCGGACTACGACATTGTCCTGGCCCACAGCGTGGACGGGCCAGAGGTCTTTTCCAGGCATGGGCTGGTGGTTGTTCCGCTGCTCAATGAACCGCTAGACGTTGCCATGCAGGCCGGCCATCCATTGGCGGGCAGGCCGCGGGTGACGGCCCGGGACGTGGTGGGTTACCCCTGGATGGGTGTCCCGGACGGCTTCCCGTTCGACGCTGTTCTTCGCCAGATCGAAAAACAGGCAGGCTCAACCGTTGTCAGGGCCCAGCTGTTCCCGGACCTCAGGGTTCTTGAAGCCCTCGTCAGCGCAGGCCATGGGCTCTCGCTCCTGCCGAGGTACACCTCCGCAGCCAATCAGGGCAGGGGCTTTGTGCTCCGTCCGTTGGTGGGCGTCCCCGCCAGGCGCACCATCGTGGCGCTTGCCCGCCCCGACGTTGCTGCCAGGACCACTGTCCGGGAGGTGCTGGAAATGCTCAAGCTTGAAGCGGCATCAGTGGCCGACGGCGCTGCCCCGGGTGATTCCTGAMDFKRLRILRELADRGSVGATAEAMHVTPSAVSQQLRTLQDELGVVLMEKSGRGVRLTEAGQAMATAAADVSTAMARAEATIDTYRQGWQAHIRAAFFPSAAEMFLPGLLHRVKAIEGMHFEAHFEDPGVAGFAGLAADYDIVLAHSVDGPEVFSRHGLVVVPLLNEPLDVAMQAGHPLAGRPRVTARDVVGYPWMGVPDGFPFDAVLRQIEKQAGSTVVRAQLFPDLRVLEALVSAGHGLSLLPRYTSAANQGRGFVLRPLVGVPARRTIVALARPDVAARTTVREVLEMLKLEAASVADGAAPGDSNANANANANA
D1-29_030361239hypothetical proteinATGGATTTTGTCTTCTGGATTATTCTCATTGTGCTGATCGTCGGTGTTGTCTGGTGGCTGCTGAACCGCAGCAGTTCCGCGAATACCAGTGACGCCGGGAGCCGTGCCGGAGGAATGCGGACCGACGGCGCCCTTGAGGGCGGCAGCGCCGCGGCCTCCGCCGACGCTGCAGCCACCACCGGAATCGCCGGCGCAGCCGGTTTTGGCCGGCCTGCGGAACCCACTCCCCCGACGACGGCGGATGAGGCGCCTGAACTGTCCACGTCCCCCGGTTGGAGCATGCGGGACGCGGAGCCCGTCCCGCATGCTCCAACCGGGGGACCCGCCGACTCCCCTTCCCACAGCCCGACAGTCCGCGGCAACGAGGAGACCGACGGCGGCAACGAGGAGATCGACGGCGGCACGCGCACCACCGGCGCCACCCCTGACGCTGAAGGTGAAACCTGGGCTGAAGCAGAAACCGGCAGCCCCGCCCAGGAGACCGGTCCCGGACTGGAGGATGCGCGCGTCGAGGAGGATGCGGGCCTCGAGGAAGATGCGCGGCTCCAGGAGGAGGCACGCCGGCAGGCTGAGAAACGCCGGGAGGAAGATGCTGCCGAGTGGGAGACCCAGTGGTCCGAGGCCAGCGGATCCACCGCAGTGCCGCGGACAGAGGCTCCGCAGGGAGATCTGTCCCCGGGAAGCGATGGAGAACCGTCAGGCGCCGCAGCCCCCGTCCATAACCCGGAATACACGGGCCCGCATTCCCCCACCCTTCCGGGTGCTGAAACTGCAGCCCTCGAGGATGCCGACGCCGGTGCCATGCCGGCTGAAAAGGCAGGCGCCGGCGTCGAAGGGCGCCGTGGCGAGGACACCGCCACGGCAGGGAGCATGGCACAACCGGAGGTGCCGGACAACGCAGCCGCGACGGAGACACTGGACCGGACGCAGTCCTCTGCAGCTGTTGAAACCTCAGCAAGCCACACAGCAGAACCGCCGGAGGCCGACGCCGAACGTGCACCAGGTTCTGAGCCTTCCAGCCATCTGGACGCGGAGGAGCCGTACGGCCAGGGTTCGGCATCACCGGCCCCCGACGGCAGTGGTCCAGCGGACTACACGGTCAAAGGGGACGCCGCGACCATGACCTACTACGAGGAGGGGCATCCGGACTATGAGCAAACCCGGGCCGGAGTCTGGTTCGAATCGCCGGCACATGCCGAGGCCGCCGGCTTCCGGGCTCCGCGGAGGAAACGGCTTTAGMDFVFWIILIVLIVGVVWWLLNRSSSANTSDAGSRAGGMRTDGALEGGSAAASADAAATTGIAGAAGFGRPAEPTPPTTADEAPELSTSPGWSMRDAEPVPHAPTGGPADSPSHSPTVRGNEETDGGNEEIDGGTRTTGATPDAEGETWAEAETGSPAQETGPGLEDARVEEDAGLEEDARLQEEARRQAEKRREEDAAEWETQWSEASGSTAVPRTEAPQGDLSPGSDGEPSGAAAPVHNPEYTGPHSPTLPGAETAALEDADAGAMPAEKAGAGVEGRRGEDTATAGSMAQPEVPDNAAATETLDRTQSSAAVETSASHTAEPPEADAERAPGSEPSSHLDAEEPYGQGSASPAPDGSGPADYTVKGDAATMTYYEEGHPDYEQTRAGVWFESPAHAEAAGFRAPRRKRLNANANANANA
D1-29_030371029yliICOG2133Aldose sugar dehydrogenase YliIATGCCCACCGGCAGCACCAGTACCAGCACAGGGACAGGCACCAGCACCAGCACAGGCGCAGGCACTCAGTCAGCACCGCGGATAGTTGAACAACTGGACCTCCAACTTGAGATCCCGTGGGCTGCGGTCTTTTTACCAAACGGAACAGCGGTCATTTCGGAGCGGGACTCAGCCCTACTGAAGGCTGTCCGTGAAGGCAGCGCGACCAGCATCGGGCAGGTCCCTGGCGTGGTGCCGGGCGGCGAGGGCGGCCTCCTGGGGCTCGCGGTGTCGCCCGCGTTCGCCACGGACAATTACCTTTACGTATATTTCACCGCCGACCAGGACAACCGGATTGCCCGCGTGGACCTCCGGGAAGAGACCGACGGAACCCTGGCGCTGGGCGAAACGGAGGTCATCTTTACCGGGATCCCCAAGGCCTCCACCCACAACGGTGGCAGGATCAGGTTTGGCCCCGATGGTTTCCTGTACGTGGGGACGGGTGACTCGCAGCGGCGGAATCAACCCCAGGACTCCAACGCCCTGGGCGGCAAGATCCTGAGGTTGACGCCCGACGGGGACCCCGCCCCCGGAAACCCGTTCGGCAACGCCGTCTACAGCCTGGGGCACCGGAACGTTCAGGGCTTGGCATGGGACAGTGCAGGGCGGTTCTGGGCCAGTGAATTTGGGCCGGACGTCAATGATGAACTCAACCTGATCCAGCCAGGTGGCAACTATGGATGGCCGGCGGTGACCGGCGCGCCGGGCAGGGAAGGCTTCATCGACGCAAAAGTTGTGTGGCCCTCCACGTCGGATTCCTCCCCCAGTGGCCTTGAGATTGTTGGTTCAACTGCCTACCTCGGGGCACTCCGGGGCCAGCGGCTCTGGACGGTTCCCCTGGACGGCGAGGACGCCGGCACACCTGTGGCCTACTTCACGCGCGAATATGGGCGGATCAGGGACGTCGTAAGGTCGCCGGAGGGTGGATTTTGGCTCCTGAGCAACAACCAAAACCCTGATTTTGTGCTGGTTGTGGCTCCTCCCGGGTGAMPTGSTSTSTGTGTSTSTGAGTQSAPRIVEQLDLQLEIPWAAVFLPNGTAVISERDSALLKAVREGSATSIGQVPGVVPGGEGGLLGLAVSPAFATDNYLYVYFTADQDNRIARVDLREETDGTLALGETEVIFTGIPKASTHNGGRIRFGPDGFLYVGTGDSQRRNQPQDSNALGGKILRLTPDGDPAPGNPFGNAVYSLGHRNVQGLAWDSAGRFWASEFGPDVNDELNLIQPGGNYGWPAVTGAPGREGFIDAKVVWPSTSDSSPSGLEIVGSTAYLGALRGQRLWTVPLDGEDAGTPVAYFTREYGRIRDVVRSPEGGFWLLSNNQNPDFVLVVAPPGPGPT0017700_901DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430NANA
D1-29_030391263hypothetical proteinATGAAGAAACTTGTAGTCTTGCTTGCCGTGTCGGCGCTCGCACTGGTTGGATGTCAGGCCCCGACAAATCCTGGGAGCTCGGTCCCGGACCTCCCTCGGGTGCCATGGGAGGGCGCGTCAGCGTTCTACGGGAAATATCCGATCACAAAAGCGGCCGGATGGGCTGACCCCAGCTTCTTCCCCATAGGAAGTTGGTGGAATAACTTCAGCACCGACGAGAACGTAAAGTTCGACAAGGCGCAGGGCCTGAACACGTATTTCGAAGTCAATCCGGACTCGGACCCCGACCTCCTGGCAGCGAACGGGATGACGTACATAGGCCACCTGAAAAGCGCTAAAGCCACGGCGGAAAGCACCAAGTCTGCCGACATGCTCCCCGACGAGATTGACGGCCGCTTCGACCCGCCGTCAGTTGGCATCGCTGAACTGCAACGGATCATAGACGAATACGGAGATACCGGAAGGATGAAGTACAACAACTTCACAGCCGTCGTCGCCAGCAACTACAACGGGGACCAGGTCACTGCCGGAAACACCTACGTGAATATGGTGGACGGGCCTGTTTCCGTTGACGGGTACTGGTACACCGACACGCATTGCAGCGACAGGCCGTACGTAGACTGGTCATTCGTTCCGGTCAATGAATCCCACTGCCGCACCGCCTCCAGCTACGGGAAAATGGTCAAATCAGTACGTGAGCGAGTCGCGTCGGACGGCATCCTTCAGCCGGTGTACGTCTTCGTTGAACTCATGGGCGGGGGCACGGAATCAACAGCCTCCAACGAGTACATCTCCCCGGGCGAGATCCAGGGCGCCGTCATGAACGGCATCATTAATGAGGCCCGTGGCGTCGTCTACTTTAACCAGTCATTCAACGGCCCCTGCACCGGGGGTAACCTCATCCGTCAGGTTCAGGTCGACCCCAACCACTGCATGGCGGACAACATCGCGGGCATGAGGGAAATAAACCTGAAAATCAAGTCCCTTGCACCCATCTTGAACACGCAATCGTATGTGCATACGTTCGGGCCAAACCTGGACACCATGCTGAAAACCCATGACGGCTCGGCCTACATTTTCGCGATGCCAAGTGGCGAGGAAACCTCAGTACCGGGCGACCGGACCTTCACCCTGCCGAAGGGTGTTACCGGGACATCGGCGGAGGTAGTGGGGGAAGGCCGCACATTGCCTGTAGTGGACGGCAGGTTCTCTGACAGCTTCTCAGCCGAATACACTCACCACGTCTATCGCGTCACGCTCTAAMKKLVVLLAVSALALVGCQAPTNPGSSVPDLPRVPWEGASAFYGKYPITKAAGWADPSFFPIGSWWNNFSTDENVKFDKAQGLNTYFEVNPDSDPDLLAANGMTYIGHLKSAKATAESTKSADMLPDEIDGRFDPPSVGIAELQRIIDEYGDTGRMKYNNFTAVVASNYNGDQVTAGNTYVNMVDGPVSVDGYWYTDTHCSDRPYVDWSFVPVNESHCRTASSYGKMVKSVRERVASDGILQPVYVFVELMGGGTESTASNEYISPGEIQGAVMNGIINEARGVVYFNQSFNGPCTGGNLIRQVQVDPNHCMADNIAGMREINLKIKSLAPILNTQSYVHTFGPNLDTMLKTHDGSAYIFAMPSGEETSVPGDRTFTLPKGVTGTSAEVVGEGRTLPVVDGRFSDSFSAEYTHHVYRVTLNANANANANA
D1-29_03040222hypothetical proteinATGCCTGCTGACGATGTTTCAGCCATTCATTGCAGGCTCGATGAATTGCTGGCCGAACGGGGGGTGACACTGACGGAACTAAGCAAGCGGGTAGGCGTGAGCCTCGTGAACCTTTCCATCCTCAAGAACGATCACGCCAAAGCCATCCGGTTTTCAACCCTGACTGCAATCTGTGAAGCGCTGGATTGCGAGGTGGGGGACCTGCTGGTCTGCCGGCGCTGAMPADDVSAIHCRLDELLAERGVTLTELSKRVGVSLVNLSILKNDHAKAIRFSTLTAICEALDCEVGDLLVCRRPGPT0014940_584DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014940-yozG-K07727NANA
D1-29_03041636hypothetical proteinATGAAAGCCAGCAGCCGCGCCGACCGTCCAGTGCGGACCAGGAGGATCGTGTCCAGGGCGGATGCGCTCTTCCTGATGACCGCCTCAGCAACTGCCGCCCTTGGTACCACTTTTTACACCGTAACAGGCATTGTGGGCCTGGGATCCGGCCCGGCAACCCTGACCGTTCCACTGGCTGCTGCCCGTCAGGACCCCGTGGGGCTGGTTCCAGGAGCGGAAGGCCGGTATACGGAAATGGAAGTAACGATTCCTGCCGTTCCGGTTGATGAGGCCGTGCTCCTGATGTGGTCTGCTGCGTTGAACCAGGTAGGCATCCTTGCCGTGGCGTTGCTGGTGTTTCTTCTTGCCATCCGGTTCCTGAAGGAGAATCTTTTCACCGCGGGCTCCGTCCTGGTGGTAGGCATTTCGGGATTGGCACTTGCCTTGGCCGGTACAGCAGGCCAGGTGCTCGGCTCCGCCGCCAGGCACCGGCTAGCGGAAGTTGTCGGCGCAAATCAACGAACGCCTGACGAGGCGATCGTGTTCATCGCTGAAATCAATCTGCTTCCTTCCGCGGCGGGCCTGATGTTGCTGGTGATCGCCGGGGTGTTCCAATTTGGCCGCCGCCTCCAAAAAGACACCGAGGGTTTGGTCTGAMKASSRADRPVRTRRIVSRADALFLMTASATAALGTTFYTVTGIVGLGSGPATLTVPLAAARQDPVGLVPGAEGRYTEMEVTIPAVPVDEAVLLMWSAALNQVGILAVALLVFLLAIRFLKENLFTAGSVLVVGISGLALALAGTAGQVLGSAARHRLAEVVGANQRTPDEAIVFIAEINLLPSAAGLMLLVIAGVFQFGRRLQKDTEGLVNANANANANA
D1-29_03042603cysE_2COG1045Serine acetyltransferaseGTGAAGATCATGCTGCTTCTGCGGGAGGACCTGCAGGCAGCCAAAGACCAGGATCCAGCGGCGTCGAGCCTCTTGGCAATGGCTTTCGTATATTCGGGTGTCCACGCTGTCTGGAGTCACCGCGTGGCGCATGCACTGTGGCAGCACCGGAAGCTCAAAGGAGCGGCCCGCCTCCTCTCCCAGCTATCGAGATCCCTCACAGGGATTGAGATCCATCCGGGCGCCACCATCGGCAGGCGGCTGTTCATCGACCATGGAACCGGCATAGTGGTGGGCGAAACCGCCGAAATAGGTGACGACGTCCTGATGTACCAGGGTGTGACCCTGGGTGGCCGGGCACTGAACAGGACGAAGCGGCACCCAACCATCGGCAACCGCGTCATGCTGGGTGCCGGAGCAAAGATCCTTGGCCCTGTGGTGGTGGGAGACGATGCCGCGGTCGGTGCCAACGCCGTCGTCGTGCGGGATGTCCCGGCGCAATCTGTTGCTGTGGGTATCCCGGCTGTGACGCGTCCGAAGGATCCTGCCGCGCCGGCTGAACCGCGCACGGACTTCCTTGATCCCGCACTGTTGATCGCGGCGGGATCACCTGCCGCTTCTTGAMKIMLLLREDLQAAKDQDPAASSLLAMAFVYSGVHAVWSHRVAHALWQHRKLKGAARLLSQLSRSLTGIEIHPGATIGRRLFIDHGTGIVVGETAEIGDDVLMYQGVTLGGRALNRTKRHPTIGNRVMLGAGAKILGPVVVGDDAAVGANAVVVRDVPAQSVAVGIPAVTRPKDPAAPAEPRTDFLDPALLIAAGSPAASPGPT0020265_4748DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
D1-29_03043318hypothetical proteinATGACCCAGGCACAGCTGGCCCAATATGTCCGCGTTCAGGCCCAAACTATGGGCAAAACCCTCAGCAGGCTGGAAGCTCACGGCCACATTGCCCGGGTCCGGAGCACTTCGGACCGCCGGAGCCACGTTGTTTCGCTGACTGAACGCGGCAAGGAGGCGGTAGCGGCGGCCGTGGAAATGGAGCGTTCCGTGCTTGCTGCCGCATCCATTGATCCCGATGCACTGCGCCAGGAGCTTAAGGCAGTAGTCCGTGAGCTGGCGAGTCAATTCGCTTCCCCCGCCACCAGGGCACTGGTGGACGGCGCACCGCTCGCGTAGMTQAQLAQYVRVQAQTMGKTLSRLEAHGHIARVRSTSDRRSHVVSLTERGKEAVAAAVEMERSVLAAASIDPDALRQELKAVVRELASQFASPATRALVDGAPLAPGPT0013155_2814DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_03044474bcp_1COG1225Putative peroxiredoxinTTGGCAGACAAACTTATGACCGGTGCTGAAGCACCCGGCTTCACCTTGAAGGACTCCTCCGGACAGGACGTCAGCCTTTCCTCGCGGCTCGGGCGCAACACCATCGTTTACTTCTATCCGGCCGCCTCCACGCCGGGGTGCACCAAGCAGGCCTGCGACTTCCGCGACAACCTGGCATCGTTCCAGTCTGCCGGTTACGAGGTCCTGGGAATCTCACCCGACCCCGTTGCCAAGCTGGCTGCCTTCGCCGCCAAGGAGACCCTCAGCTTCCCGGTGCTCTCGGATGAGGACCATATGGTGGCGGAGGCATACGGTGCGTGGGGTGAAAAGAAGAACTACGGCAGGACCTACCAGGGCCTCATCCGCTCCACGATCGTTGTCGATCCTGAGGGCAAGGTGAAGGTGGCGCAGTACAACGTCCGGGCTACCGGGCATGTCGCCAAACTGCGCCGCGACCTCAAGCTTGATGCGTAGMADKLMTGAEAPGFTLKDSSGQDVSLSSRLGRNTIVYFYPAASTPGCTKQACDFRDNLASFQSAGYEVLGISPDPVAKLAAFAAKETLSFPVLSDEDHMVAEAYGAWGEKKNYGRTYQGLIRSTIVVDPEGKVKVAQYNVRATGHVAKLRRDLKLDAPGPT0013120_2628DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564NANA
D1-29_03046675COG2335Cell surface glycolipoprotein MPT83ATGCAGTCATTCAAGCGCACAACCTTCACCGTCGCAGGCGTTGCAACTGCAGCCCTGCTCAGCCTGACCGCCTGTGGCGGAACTGCGGCAACGGCGCCGAACTCCTCGGCTCCCGCAGCCGCACCGTCAGAGTCCAGCATGGCGCCGTCTCCGTCGGCCAGTTCCTCAGCGGCCATGGATCCGGCAGCAAACCTGGTTGGTCCCGGTTGTGCAGGCTACGCGGAAAAGGTCCCCACCGGAGCAGGGTCGGTAGCCGGAATGGCTCTGGACCCCGTTGCGGTGGCTGCTTCAAACAACCCCATCCTGACCACCCTCACAGCTGCCGTCTCCGGCAAGCTGAACCCCAAGGTGGATCTGGTGGACACACTCAACGGCAGTGAATTCACGGTCTTCGCTCCCGTTGACGACGCCTTCGCTAAGATCGATGCAGCCACCATCGAAACGCTCAAGACTGATGACGCCCTCCTGAGCAAAATCCTGACCTACCACGTGGTCCCGGGCCAGATCACCCCTGACAAGATCGCTGGCACCCACGCCACGGTCCAGGGCGGAAGCGTCACCGTAACAGGCAGCAAGGACGCCCTGATGGTGGACGGTGCGAACGTGATCTGCGGCGGAGTCCAGACCGCCAACGCCACGGTCTACCTGATCGACTCTGTACTGATGCCCAAGTAAMQSFKRTTFTVAGVATAALLSLTACGGTAATAPNSSAPAAAPSESSMAPSPSASSSAAMDPAANLVGPGCAGYAEKVPTGAGSVAGMALDPVAVAASNNPILTTLTAAVSGKLNPKVDLVDTLNGSEFTVFAPVDDAFAKIDAATIETLKTDDALLSKILTYHVVPGQITPDKIAGTHATVQGGSVTVTGSKDALMVDGANVICGGVQTANATVYLIDSVLMPKNANANANANA
D1-29_030471674hbpA_1COG0747Heme-binding protein AGTGCCCAGCAGTACATCGCGGCGAACGGTGATCAAGACCGGCGCCGTTCTCCTGGCGTTGACCGTAACGTCATGCACGGGAGGCCCCGGGCCCGCTCCTTCGCCGACGTCTCCTACAGCCACCACCGGAGCTTCGGATCCTTCGGAGATTTTCAACTTTGGTACGGCATCGCAGCCGCTGGGCCTGGACCCCGCGCTCTCCAACGATGTGGAGTCCCACCGCATCACCCGGCAGATCCTGGAAGGCCTGGTCGGTGTGGACCAAACCACCGGCAAGCCCACACCGCTGCTCGCCACTGAGTGGAATGAATCCGACGAAGGCCGCAGTTACACGTTCAAGCTCCGAAGCGGCGTCACATTCCAGGACGGCACCCCCTTCAACGCCGACGCCGTCTGCGCCAACTTCAACCGGTGGTTCGCGTTCTCTGAAGGACTTCGGAAACAGGCGCCGGGAAGTTCCTTCAAAGGCGTCTTCAAGGCCCACTCCGATGAGGCATCACTGTCCATCTTCAAAAGCTGCACCGCGCTGTCCGCCGACACTGTACGCATCGATCTCACGCAGCGCTTCACGGCTTTCCTCCAGGCCCTGACGCTCCCCGCCTTTGCCATGGCTTCCCCGGCTGCCCTTGTGGCCGGCACCGCCGACGTCCTGGACCGGACCAAGGGCGGACAAGCCCTGTCCGCCTTCGCCACCAACCCGGTGGGAACAGGGCCGTTCAGCCTGGCAGCCTGGGATGAAGCCAGCGTCACGCTCATCAACAACCCAAACTATTGGGGGGACAAGGGCCAGATTGCCACCCTCAAATTTGTCACGTACGACCATCCGCAAACACGGCTCCAGGCACTCCTGGACGGCGCAATAGACGGATACGACGCCGTCACCGTGGGCAACTTCGATCAGCTGGTCAAACGTGGAAAGCAGATTGTCCAGCGGGACCCGTTCTCCGTGATGTATCTGGGCATGAACCAGGAGGTGCCTATCCTGCAGAACACCAAGATCAGGCAGGCCATCGAAATGGCGATCGACAAAGACACGCTGATCCGCAGGTTTTTCATCGACAACACAGCCCAGGCCACCCAGTTTGTTCCGCCCAAGATCAGCGGCTTCAACAACAATGCTCCGTCGCTGGGCCATGACCCTGTCAAGGCAAAGGCCTATCTGGCCGAGGCAGGCTACAACGGCGAGGAGCTGCGGTTCTACTACCCGCTCAACGCCACACGGCCGTACCTGCCCACGCCCGAAAAGGTTTATGCCGAAATCAGCCGCCAGCTGACCGCCGTCGGGCTGAACATCAAGCCGGTACCGGTGGAGTGGTCAGACGGGTATCTCCAGAAAGTCCAGTCCCCCGGCGACCACGCCCTCCACCTGCTCGGCTGGAACGGCGCGTACTCGGATGCCGACAACTTTGTGGGCCCGCTCTTCGGCGAGAAGAATGGCGAGTTCGGATACCAGGACGCCCAGGTCTTCTCCAAGATCAACAGGGCTCGCGGAATGCCGGAAGGCAAGGAACGCGACGAGCAGTACCACACCATCAACGCCCAGATAGCGGCCTCCGTCCCCGCTGTCCCCATCGCCTTCCCCATTTCGGCGCTGGCACTCTCGGACCGGGTGATCAGTTACCCTGCGTCCCCTGTCTTAAACGAAGTTTTCACGAAGGTGCAGCTAAAGCCTTGAMPSSTSRRTVIKTGAVLLALTVTSCTGGPGPAPSPTSPTATTGASDPSEIFNFGTASQPLGLDPALSNDVESHRITRQILEGLVGVDQTTGKPTPLLATEWNESDEGRSYTFKLRSGVTFQDGTPFNADAVCANFNRWFAFSEGLRKQAPGSSFKGVFKAHSDEASLSIFKSCTALSADTVRIDLTQRFTAFLQALTLPAFAMASPAALVAGTADVLDRTKGGQALSAFATNPVGTGPFSLAAWDEASVTLINNPNYWGDKGQIATLKFVTYDHPQTRLQALLDGAIDGYDAVTVGNFDQLVKRGKQIVQRDPFSVMYLGMNQEVPILQNTKIRQAIEMAIDKDTLIRRFFIDNTAQATQFVPPKISGFNNNAPSLGHDPVKAKAYLAEAGYNGEELRFYYPLNATRPYLPTPEKVYAEISRQLTAVGLNIKPVPVEWSDGYLQKVQSPGDHALHLLGWNGAYSDADNFVGPLFGEKNGEFGYQDAQVFSKINRARGMPEGKERDEQYHTINAQIAASVPAVPIAFPISALALSDRVISYPASPVLNEVFTKVQLKPPGPT0004430_8977DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_030481503mqoCOG0579Malate:quinone oxidoreductaseGTGACCTTCATTTCCAAGACCAAACATGCCGACGTTGTCCTGATTGGCGGCGGCATCATGAGCGCCACGCTGGGGGCGTTCATCAAGCAGCTTGAACCTGACTGGACGATTTCCCTCTTCGAGCGGCTGGACCAGCCCGGGCTGGAGAGCTCGGATCCGTGGAACAACGCCGGAACGGGGCATGCCGCCCTATGCGAGCTCAACTACTCCCCCGCAGCCAAAGACGGCTCGGTGGACCCTTCCAAGGCACTGCTGATCAATGAGCAGTTCCAGCTCTCCCGTCAGTTCTGGGCCCATCTTGTGGAACGGTCGCTGATCGGCTCACCCAAGGGCTTCATCAACACCGTCCCCCACATGAGCTTTGTCATCGGGGATGACAACACCAAATTCCTGCGGACACGCTATGAGGCACTGAAGTCCCATACCCTGTTCCGGGGCATGGAATATTCCGAGGACCAGGCCCAGATTGCCAAGTGGGCGCCGCTGATAGTCAAGGGCCGGGATCCGCGGCAGCGCGTCGCCGCCACCCGGGCAGCGGAAGGAACAGACGTCGACTTCGGTGCCCTCACCCGCGAGCTCGTCACGTACCTGGGAAACAACGGCGTCGAGACCAACTACGGCCACGAGGTCACCGGAATCTCCAAAGCGTCCGACGGCGGCTGGAACCTTTCGCTCAAGTACCCGGCTTCCGGGGAACACGGGAAGATTCACGCGAAGTTCGTCTTTGTGGGCGCCGGCGGCGGGGCACTGCATCTCCTCCAGGCCTCCGGCATCCCGGAAAGCAAGGGCTACGGCGGCTTCCCTGTTTCCGGACAGTTCTTCCGCTGCACCGATGAGAAGCTCGCGGCGCAGCACAGCGCCAAGGTCTACGGCCAGGCCTCCGTGGGCGCCCCGCCCATGTCCGTGCCGCACCTGGATACCCGCTACGTCCACGGGAAACGTTCCCTCCTGTTCGGACCGTATGCCGGCTTCTCCACCAACTTCCTGAAGAACGGCTCGTACCTGGACCTTCCGCTGTCCATCCGCCCCAGCAATGTCATCCCCATGCTGGCCGTGGCCAAGGACAACATGGACCTGACGGCGTACCTGATCAAGGAAGTGGCGAAGAACCACGGAGACAAGGTCGAAGCGCTCCGGGAGTACTACCCGGAGGCCAAGGACAGCGACTGGGAACTCATCACCGCCGGCCAGCGTGTACAGATCATCAAGAAAGACCCGAAGAAGGGCGGCGTGCTTCAGTTCGGTACCGAAGTAATTGCCGGCCGCGACGGTTCCATCGGTGCCCTCCTGGGGGCATCGCCCGGAGCTTCCACCGCGGTGCCCATCATGATCGAACTGCTGCAGAAGGCGTTCCCCAAGAACTTCAAGGGGTGGCAGTCCAAGCTCAAAGACATGATGCCCGGCTACGGCGTCAAGCTCGATGACAACCCGGAACTGGCGGAGGAGCTCGAGAGGGCAACGGCCAAGGCTCTTCAGCTGGAAGGCGTCTCGGCCTCACGCTGAMTFISKTKHADVVLIGGGIMSATLGAFIKQLEPDWTISLFERLDQPGLESSDPWNNAGTGHAALCELNYSPAAKDGSVDPSKALLINEQFQLSRQFWAHLVERSLIGSPKGFINTVPHMSFVIGDDNTKFLRTRYEALKSHTLFRGMEYSEDQAQIAKWAPLIVKGRDPRQRVAATRAAEGTDVDFGALTRELVTYLGNNGVETNYGHEVTGISKASDGGWNLSLKYPASGEHGKIHAKFVFVGAGGGALHLLQASGIPESKGYGGFPVSGQFFRCTDEKLAAQHSAKVYGQASVGAPPMSVPHLDTRYVHGKRSLLFGPYAGFSTNFLKNGSYLDLPLSIRPSNVIPMLAVAKDNMDLTAYLIKEVAKNHGDKVEALREYYPEAKDSDWELITAGQRVQIIKKDPKKGGVLQFGTEVIAGRDGSIGALLGASPGASTAVPIMIELLQKAFPKNFKGWQSKLKDMMPGYGVKLDDNPELAEELERATAKALQLEGVSASRPGPT0001440_1054DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
D1-29_030493228swrCCOG0841Swarming motility protein SwrCATGTTCCGGCTGGCACAACTCTCACTGGGGAACCGGGCCCTGATCGCTCTGGTCACAGTGTTCGCGTCCGTGTTCGGGGTGATCACCATGTCATCGCTGAAACAGGAACTCATACCCTCCATCGAGTTCCCCCAGATCACTGTCCTGACGGCCATGCCCGGCGCGTCCCCCGAAGTGGTGGACAAGCAGGTAAGCGCGCCGCTGGAGACTGCGCTGAACGGCGTCGAAGGCCTTGAGTCCACCTCCTCCACTTCACGCAACGGCGTTTCGCAGATCACCATGGTCTTCACCTACGGGTCCAACCTTGACCGGGCCCGGAACCAGATCGACCGCGCCATTTCAAATGCCAAGCGCACCCTGCCAGAGGACGTGCAGCCGCGGCCCATCGCCGGCAGCATCAGTGACTTCCCCATCGTGTTCCTGGCCGTGTCATCGGATAAACCGCTCAGCGACCTGAACGCCGATCTGCAGCGCCTCAGCGTTCCCGCGCTCCAGAAGATCGACGGCGTCCGGGGTGCCGATGTGACAGGCGGCGCCACCCAGCACATCGAAATCCTTCCCCGTGCTGACGCCATGGCGGCAAAAGGCGCCACCATCCAGTCCATCCGGGATGCGCTGGGCAATAACGGGGCATTGATCCCAGCGGGCACCATAGAAGAGCAGGGCAAAACGCTTTCGCTGCAGATTGGCAGCCCCGTGGATTCACTGGACGCCATCAAAGCCCTTCCCCTGGGCGGCGCCAAGGACTCCGCCACCATCGGCACGGTGGCAGAGGTCAGCCTCAAGGACGATCCACAGACATCCATCACGCGGACCAACGGCGAGGAAACCCTGGCTGTCTCCGTCACCAAAAAGCCCGAAGGCGACACTGTAGGGATCTCCCACTCGGTGAAGGACTCCCTGGCCCAGCTGGAAGCCGAACTCGGCTCGAACGCCAAGTTCACGGCAGTGTTCGACCAGGCGCCCTTTGTCGAGAAATCCATCAAGGACCTCACCACTGAGGGGCTGCTGGGACTGGGCTTCGCCGTCGGCGTGATCCTGGTGTTCCTGATGTCCGCCCGCTCCACCATGGTCACAGCAATCTCTATCCCGCTCTCGCTCCTGATCACCTTCATTGGGTTGTCTGCCACAGGTTATTCGTTAAATATCCTCACGCTGGGCGCACTCACCATTGCGATCGGGCGGGTGGTGGACGACTCGATTGTGGTGATCGAGAACATCAAGCGCCACCTCAGCTACGGCGAGGAAAAGGTGACCGCGATCCTGACGGCCATCCGCGAAGTCGCCGGCGCCATCACGGCCTCGACCCTGACCACGGTGGCAGTTTTCCTGCCGATTGCGTTTGTCGGGGAATTGGCAGGCGAGCTCTTCCGCCCGTTCGCCCTGACCGTCACCATGGCGCTCCTCGCTTCGCTGCTTGTGTCCCTGACGATCGTCCCTGTTCTCGCCTACTGGTTCCTGAAGTCCCCCACACGTGCAGGATCATCAAGGGACGGTGAAACGGCCAGCCGGGAAGCGGCGGCTGCCCGTGCCAAGGCGCAGGAAGCCGAACAGAGGAGTCTGCTGCAGCGTGGTTACCTGCCGATCCTCACCAAGACCCAGAAGCATCCTGTCGTGACCCTGGTGGCCGCTGCCCTGGTGCTGGGGGGCACCGCCGCCATGACACCCCTGATGGCAACCAACCTTTTGGGCGATTCCGGCCAGAACAGCATGACCGTCCGCCAAGTGCTGCCGGCCGGAACAAGCCTGGCAGACACGAGTGCTGCCGCCATCAGGCTTGAGGAAGTGATCCGCAGGATCGACGGCGTCAAAAACGTCCAGGTCACCTCAGGCAACGCGCAAACAGGCTTCGCTGCCCTGACATCATCCGGGGCGTCCAACTCCACCTTCACTGTGGTCACGGATGAGAAGGTCAACCAGGCCCGGCTGCAGCAGACTGTCCGGAATGAGTTGGCTAAGGTGCCGGACTCGGGGAAGGTTTCGGTGGGAACGCAGCAGGGCGGCTTCGGCACGTCCTCGACTGTTGATATCACTCTGAAAGCGGCAACGTCCGCGGATCTCCGGACAGCGAGCGATGCAATGGTTCAGGCCATGATGGGCGTGCCGGGAACCAGCGAAGTCACCACCAACCTTTCGGCCTCTCAGCCTGTTGTCCAGGTCAAGGTGGACCGCGGCAGGGCGGTAGCGGCCGGGCTCAACGAGGAGCAGGTTGCGGGTGTCCTGGCCTCAACCATCAGCCCCGTCCCTGCCGGCACTCTCCGGATCGAAACCAATGACTTTCCGGTGCAGATCGGGCAGGGTACGAAGTTCGCCAGCATAGATGCCGTGCGGGCCATCCCGCTTCCCGCCGCCGCAGGCCCCGTGACCCTGGGCAGCATCGCCTCCGTGGAGCAGGTGGATGTTCCGGTCTCCATCACCGCCAGCAATGGGCAGCGAACCGCCAAAGTGTCAGTGACGCCGTCGGGCTCCAATCTCGGCGCCGTCAACGCGGAGGTGCAGAAACGGCTCACGTCGGTGGCTCTGCCTCCCGGAGTCACGGCTGAGATCGGCGGCGCCACTACCCAGCAGGCGGAGTCCTTCCAGCAGCTGGGCCTGGCTCTGCTGGCAGCGATAGCGATCGTCTACGTCATCATGGTGGCGACGTTCAAGTCCCTTGTTCAGCCGCTGATCCTGCTGGTGTCCGTCCCGTTCGCGGCAACCGGTGCGGTTGCCCTTTTGCTCGTGACCGGTGTTCCCCTGGGACTGCCTTCCCTCATCGGCATGCTGATGCTGGTGGGAATCGTGGTGACGAACGCCATTGTGCTCATTGACCTCATCAACCAGTACCGCCAACCGCGCAACGGCCAGCCCGGCATGGGCGTGGCGGATGCCATTACGCATGGGGCACGCCAGCGCCTCCGGCCCATCCTGATGACTGCGCTCGCCACGGTCTTTGCCCTCACGCCCATGGCACTCGGCCTGACCGGGGGCGGCGGTTTCATCTCCCAGCCGCTGGCCGTAGTGGTGATCGGCGGCCTGATTTCCTCCACCGCCCTGACACTGGTGCTGGTTCCTGTGCTGTACCGGCTCGTGGAAGGGCGGCGCGAAAAGAAAGCACTGCTCAGCGCGATGCTCGGACGGCCGGAGTTTGCGCAGGCGAACGACGTCGACGCCGAGTTTCGTGACTGGACCACCGGGATGATCCCCAAGGCATCCGGCCGCCGCGCGGCTCCCGGGGAACCTGAATAGMFRLAQLSLGNRALIALVTVFASVFGVITMSSLKQELIPSIEFPQITVLTAMPGASPEVVDKQVSAPLETALNGVEGLESTSSTSRNGVSQITMVFTYGSNLDRARNQIDRAISNAKRTLPEDVQPRPIAGSISDFPIVFLAVSSDKPLSDLNADLQRLSVPALQKIDGVRGADVTGGATQHIEILPRADAMAAKGATIQSIRDALGNNGALIPAGTIEEQGKTLSLQIGSPVDSLDAIKALPLGGAKDSATIGTVAEVSLKDDPQTSITRTNGEETLAVSVTKKPEGDTVGISHSVKDSLAQLEAELGSNAKFTAVFDQAPFVEKSIKDLTTEGLLGLGFAVGVILVFLMSARSTMVTAISIPLSLLITFIGLSATGYSLNILTLGALTIAIGRVVDDSIVVIENIKRHLSYGEEKVTAILTAIREVAGAITASTLTTVAVFLPIAFVGELAGELFRPFALTVTMALLASLLVSLTIVPVLAYWFLKSPTRAGSSRDGETASREAAAARAKAQEAEQRSLLQRGYLPILTKTQKHPVVTLVAAALVLGGTAAMTPLMATNLLGDSGQNSMTVRQVLPAGTSLADTSAAAIRLEEVIRRIDGVKNVQVTSGNAQTGFAALTSSGASNSTFTVVTDEKVNQARLQQTVRNELAKVPDSGKVSVGTQQGGFGTSSTVDITLKAATSADLRTASDAMVQAMMGVPGTSEVTTNLSASQPVVQVKVDRGRAVAAGLNEEQVAGVLASTISPVPAGTLRIETNDFPVQIGQGTKFASIDAVRAIPLPAAAGPVTLGSIASVEQVDVPVSITASNGQRTAKVSVTPSGSNLGAVNAEVQKRLTSVALPPGVTAEIGGATTQQAESFQQLGLALLAAIAIVYVIMVATFKSLVQPLILLVSVPFAATGAVALLLVTGVPLGLPSLIGMLMLVGIVVTNAIVLIDLINQYRQPRNGQPGMGVADAITHGARQRLRPILMTALATVFALTPMALGLTGGGGFISQPLAVVVIGGLISSTALTLVLVPVLYRLVEGRREKKALLSAMLGRPEFAQANDVDAEFRDWTTGMIPKASGRRAAPGEPEPGPT0016195_233DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-SURFACTIN_RESISTANCE,PGPT0016195-swrC|yerP-K03296NANA
D1-29_030501446hypothetical proteinATGGTTGACGAAACCAACAATCTGAAACCCGCAGACGCGGCCGCGCTGGAGGCACATTTCCTGGACCCCGAGGCACCCGCCCCTGCCCGCGGAGTCGCGGCCGGGGAACTCGTGCCGTCCCGGTTCCGCGCCAAGGCCCGCACCTGGCGCGAACGCCACCACCCCGTCTCCATCGAGAAACGCCACGCCAAGGGCGTCCAGGACCGGCGGCTGGAGTACCAGCCGGACCGCGACGGCATGGCCTGGCTCGCCGCGTACCTCCCGGCCGACCAAGCCTCCGGGATCTGGGACCGGACCACCACCGCCGCCCGCGCCCTGCAGGGCCCGCACGAAAGCAGGACCCTCACCCAACTCCGCGCCGACCTGACCGCCACCTGGCTGCTCACCAACAACACCAGCGGCAGCCTCACCGCGCCTATGGCTGGTGGAGGAACCGATCGCAGACGAATTGCCGGCGATACTGGCGACCGCACGATGGGCGCCACCAGCACTAATAGCAGCATCGGCGGCACCGGAACGGGCAACGGCACCAGGCTCGAGACCGGCATCGCCGGTGCTGTGCCGTCGCCAACGGCGCAGGTCCTCATCACCGTGCCGGTCATGGCCCTCCTGGGCGCCACCGACGAACCAGCCACCCTGGACGGGTACGGGCCCATCCCGCCGTCCATGGCCCGCCGCCTCGTCAGCGACGGCGCCACCTCGTTCATGCGGGTCCTGACAGACCCCCGCGACGGCGCACCTCTGGAAATCGGCCGGACCAGCTACCGCATCACCAAAGCGATGCGCCAATGGCTGCGGCTCCGGGACGGCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTGGACAACGAAGCAGACCACATCCTCGCCTGGGCCCGCGGCGGCACCACCGGCATAGCCAACCTGGGACAGCCCTGCCCCAAACACCACCGACTCAGACACACCACACCCTGGACCCCAACCGGCGCCACCAAAAACAAACCACCCGGCTGGACCTCACCAACAGGACGAAGCTACCCCAGCGAACAACCCGACTGGGAACCACCCCGCTGGCCGGAGGAAATCACGGATACGCAGGCTGACCTGGACCTGATCGACGGAGTTGGTTCATTCCTCGATCTCGTTGGCGCCGGCCCGGCCTTCTTTAAGCCGGCTGGCCCATCCCTGCCCGACACTGATCCGCCCGACACTGATCCGCCGGGCACTGATCCGCCCGGCACCGATCCGCCCGGCACCGATCCGCCCGATACTCATCTGCCGGATACTCGTCCACCAGATACTCATCCGCCGCACGCTGACTCGAGGAATGCTGACCTGTTTGAAGGTTGTGGGCCAGACAGTGACGTGGACGACGCCCACCTGCCTATGGATCCGTTCCCGGAGTGGTACTCGTTCGTGGCCGCGGACGCCAGGTGCCTGACAGGTTTCGGTTTTGCCGGATGAMVDETNNLKPADAAALEAHFLDPEAPAPARGVAAGELVPSRFRAKARTWRERHHPVSIEKRHAKGVQDRRLEYQPDRDGMAWLAAYLPADQASGIWDRTTTAARALQGPHESRTLTQLRADLTATWLLTNNTSGSLTAPMAGGGTDRRRIAGDTGDRTMGATSTNSSIGGTGTGNGTRLETGIAGAVPSPTAQVLITVPVMALLGATDEPATLDGYGPIPPSMARRLVSDGATSFMRVLTDPRDGAPLEIGRTSYRITKAMRQWLRLRDGKCPFPGCNNHSLDNEADHILAWARGGTTGIANLGQPCPKHHRLRHTTPWTPTGATKNKPPGWTSPTGRSYPSEQPDWEPPRWPEEITDTQADLDLIDGVGSFLDLVGAGPAFFKPAGPSLPDTDPPDTDPPGTDPPGTDPPGTDPPDTHLPDTRPPDTHPPHADSRNADLFEGCGPDSDVDDAHLPMDPFPEWYSFVAADARCLTGFGFAGNANANANANA
D1-29_030511377IS256 family transposase ISAar6GTGGCTATGACTAGACCCCGTGAGGTGTCCCCGGAGGAGTTGGCCCGCAGGGCTGCGGCGGCCGGCAGCATGGAGGCGTTGAAGGCTTCGGGCGCGTTCGATGAGCTGATGAACCAGATCGATTCCGGACAGCTGGAACTCGACGGCAAGGACGGTTTCATCCAGCAGCTGATCAAGGCCTCGCTGGAACGCGGGCTCCAGGCCGAGCTGTCGGGGCATCTGGGCTATGACAAGGGCGATCCGATCGGGCGTTTCCTGCCTAACGCCCGCAATGGGTCTTATCCGAAGACGCTCGGGACCTCCGCGGGGGACGTGGATCTGGCCGTGCCTCGTGACCGTGCTGGGTCATTCACCCCGCATCTGGTCCCGAAGGGTGCGCGCCGGACAGGTGGCCTGGATGACATGATTATCAGCCTTTACGCCGGCGGGATGACGGTCCGGGACATCGCCCACCATCTGGAATCCACGCTGGGCACGGAGCTGTCCCACGAGACGATTTCCAAGATCACCGATGAGGTCCTGGACGAGGTGATGGAGTGGCAGAAACGCCCACTGGAGCCGCTGTATCCGATCCTGTATCTGGATGCGATCATCATCAAGGTCCGTGACGGGCACCAAGTGCAGAACCGTGCCGCGCACATTGCCGTGGGCGTGGACATGGACGGGATCAAGCACGTTCTGGGGATCTGGGTCGAAGCTACCGAGGGTGCGAAGTTCTGGGCAGGGGTCTGCGCCGAGCTCGCCAACCGCGGCGTGAAGGACGTTCTGATCGTCTGTTGCGACGGGCTCACCGGCTTCCCTGAGGCGATCGCCGCGACCTGGCCGGCCGCGACCGTCCAGACCTGTGTCGTGCACCTGATCCGTGCCTCGATGCGCTTCATCGGCTACCAGGACCGGAAGAAGGTCGCGTCCGCTCTGAGGCCGGTTTACACCGCCCCGACGGCCGACGCCGCGCAGGAGGCACTCGATGCATTCGAGGCCTCCGATCTGGGACGGAAGTATCCCGCAACTGTACGAACCTGGCGCAACGGTTGGGAGAGATTCATCCCCTTCCTGGCGTTCCCACCGCCGGTCAGACGGATTATTTACACCACGAACGCGATCGAGTCGCTGAATTACCAGCTGCGCAAGATCATCAAGAACCGCGGGCATTTCCCCAACGACCAGGCGGCCGTGAAGCTACTCTGGCTGGCGATCTGCAACATCGAGGACAAACGCACCAGTGCCCGGACCAAGCTTGAAGGCAGAGCCCGGGAAAACCGTGCCAAGACGGTGAACAAACTCATCGAGGGAACCTTCACACCTGGATGGAGCGAAGCCCTTGGCGTCCTCCTCCTGAACTATCCCGACAGACTCGGACCTTACCTAAACCGATGAMAMTRPREVSPEELARRAAAAGSMEALKASGAFDELMNQIDSGQLELDGKDGFIQQLIKASLERGLQAELSGHLGYDKGDPIGRFLPNARNGSYPKTLGTSAGDVDLAVPRDRAGSFTPHLVPKGARRTGGLDDMIISLYAGGMTVRDIAHHLESTLGTELSHETISKITDEVLDEVMEWQKRPLEPLYPILYLDAIIIKVRDGHQVQNRAAHIAVGVDMDGIKHVLGIWVEATEGAKFWAGVCAELANRGVKDVLIVCCDGLTGFPEAIAATWPAATVQTCVVHLIRASMRFIGYQDRKKVASALRPVYTAPTADAAQEALDAFEASDLGRKYPATVRTWRNGWERFIPFLAFPPPVRRIIYTTNAIESLNYQLRKIIKNRGHFPNDQAAVKLLWLAICNIEDKRTSARTKLEGRARENRAKTVNKLIEGTFTPGWSEALGVLLLNYPDRLGPYLNRPGPT0030665_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_03052579hypothetical proteinATGGACAGCACGGGGGCTTGGACGGCGGGGAGCGGGGCGGGCTTGGAGGCTGCCACCGGTGGTGGGATCGCGGGTGCCCTGGCTGCTGTTGAAGCCTCCACGGCTGCCTTTGGCCGAATCATCCGGCCCCATTTGGATGACAGCACGGCTGGCCCTGGCGCCGCTGGTGAGGTGGACGCCGATCCTGTTTCGGTGCTGGACGCCGATCCGATGCAGGATTCTGATCCGTTGCGCCGACGGCTGGACGCTTACCTGAATGCGCTGGCCGAGGTTGGCCGCGCTGAGGCAAAACATGCGGCGCTGAAGGTACATCTGGCCGCCGGAATCGCCGAGCTGGCAGAGGCCGTCGCCGCCCCGGCGGTGACCGCGCAGGACGCCACGGCGCAGGAAATGTCGGTGATCGCGGAGGTCGCGTGCGCCCTGACAGTCAGCGAACGCACCGCGGGTGCGCTGATCTCTGAATCCCAGGCCCTGACCAGAGGCCTGCCGCAGACCTTGTCTGCGCTGCAGGAAGGCAGCATTTCCTGGCAGCAGGGGGTGTCAGATTGTTTGTGTAGGAGGGCTGTAGTCGCTGGGTGAMDSTGAWTAGSGAGLEAATGGGIAGALAAVEASTAAFGRIIRPHLDDSTAGPGAAGEVDADPVSVLDADPMQDSDPLRRRLDAYLNALAEVGRAEAKHAALKVHLAAGIAELAEAVAAPAVTAQDATAQEMSVIAEVACALTVSERTAGALISESQALTRGLPQTLSALQEGSISWQQGVSDCLCRRAVVAGNANANANANA
D1-29_030531110fgdF420-dependent glucose-6-phosphate dehydrogenaseATGCAGATCGGCGTATTCAGCGTCAGCGACATCACCACTGACCCCACCACAGGCCGCACCCCCAGTGAGAATGAGCGCATCAAAGCCTCGGTGGCCATCGCCAAGAAGGTCGAAGAAATCGGCATGGATGTCTACGCCATCGGCGAGCACCACAACCGCCCCTTCTTCTCCTCCTCCCCCACCACGACGCTCGCCTACATCGCGGCGCAGACCGAGCGGATCATCCTGTCCACGGCCACCACGCTCATCACCACCAACGACCCCGTCAAAATCGCCGAAGACTTCGCGATGCTCCAGCACCTCGCGGACGGACGCGTGGACCTCGTCCTGGGCCGCGGCAACACCGCGCCGGTCTACCCCTGGTTTGGCAAGAACATCCAGGACGGCGTGGAACTGGCCATCGAGAACTACAGCCTGCTGCGCCGGCTCTGGGACGAAGACACCGTGAACTGGTCGGGGAAGTTCCGCACGCCGCTCCAGAACTTCACGTCCACGCCGCGGCCTCTCGACGGCGTCGCCCCCTTTGTCTGGCACGGTTCGATCCGCACACCTCAGATCGCGGAAGTGGCTGCTTACTACGGTGACGGGTTCTTCGCGAACAACATCTTCTGGCCCAAGGAGCACTACCAGCAGCTGATCGGCCTTTACCGTGAACGCTACGAACACTACGGACACGGCAAGGCAGACCAGGCAATTGTGGGCCTTGGTGGCCAGTTCTTCATGCGGAAGAACTCGCAGGATGCCGTGAAGGAGTTCCGTCCCTACTTCGACAACGCTCCTGTTTACGGCCACGGCCCATCGCTGGAGGATTTTACGTCACAGACACCGCTTACGGTGGGCAGCCCGCAGGAAGTCATCGAAAAGACCCTGACATTCCGGGAGTACTTCGGCGACTACCAGCGCCAGCTGTTCCTGATCGACCACGCGGGCCTGCCCTTGAAGACAGTCCTTGAGCAACTCGACCTGTTCGGCGAGGAAGTCCTCCCGGTGCTCCGCAAGGAATACGCAGCGCTGAAGCCGGCGCACGTTCCGGATCCGCCCACCCACGCGGGCCGGGTTGCCACCCTGATGGCTGCCCAGAGCGCCGAACCGGCACCGTCGGAGGCGTGAMQIGVFSVSDITTDPTTGRTPSENERIKASVAIAKKVEEIGMDVYAIGEHHNRPFFSSSPTTTLAYIAAQTERIILSTATTLITTNDPVKIAEDFAMLQHLADGRVDLVLGRGNTAPVYPWFGKNIQDGVELAIENYSLLRRLWDEDTVNWSGKFRTPLQNFTSTPRPLDGVAPFVWHGSIRTPQIAEVAAYYGDGFFANNIFWPKEHYQQLIGLYRERYEHYGHGKADQAIVGLGGQFFMRKNSQDAVKEFRPYFDNAPVYGHGPSLEDFTSQTPLTVGSPQEVIEKTLTFREYFGDYQRQLFLIDHAGLPLKTVLEQLDLFGEEVLPVLRKEYAALKPAHVPDPPTHAGRVATLMAAQSAEPAPSEANANANANANA
D1-29_03054483hypothetical proteinATGAGCCCCGGAGGATCTGAATCCCCTGTGCGCCTGGCCGCAGAAACATGGGAGTCCCTGTTCCGGGCGCAGGTAGCGGTGATGCGGAAGCTTCAGTCGGGTCCGGCTTTTCGAAAGCTGGCGCTCAATGAGTACGACGTCCTCTTCACGCTCTCCAGATGTCCTTCCGGCTGGCTCCGGCTCAACGAACTAAACGACCATGTCCTGCTGAGCCAGTCGAGCCTCAGCCGGCTGGTGGAGAGGCTGGAGAAGCGCGGGCTTGTGGCGCGGACACCTGCTCCCGACGACGGCCGCGGCGTGCTGCTGAAGCTGACCGAGGCGGGGGTGGAGTTGCAGAAGGAGATAGGCCGCGAGCACGTCCGCGACATCGCCGGCCTGATGGGGCCCGCCCTGACCCCTGCCGAGCAGAAGGAACTGAAGCGCCTCACCGAGAAGCTCAGGAATTCAGTGGGTGCGCGGCCGGCAAAACAGCCGGTGAAGTAGMSPGGSESPVRLAAETWESLFRAQVAVMRKLQSGPAFRKLALNEYDVLFTLSRCPSGWLRLNELNDHVLLSQSSLSRLVERLEKRGLVARTPAPDDGRGVLLKLTEAGVELQKEIGREHVRDIAGLMGPALTPAEQKELKRLTEKLRNSVGARPAKQPVKPGPT0013155_4520DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-29_03055807hypothetical proteinATGGAACGCACTGTTGCAGCACGCCTGGTATTCAAGACAGCGGCCGACACAAAGGCTGCCCTGGCCGTTGCCGTGGCCAAAAACCCCGGCTACTCGTCCTTTCAGGAATCCCTGGCCGTCACGGTGGCCGGCGAGGAGGTGCCGGTGACGGAGGTTCCGGACCACCATGGGGGCCGCATGCACTACATGGAGTTCGCCGACCCCTCTGAAGTAACCGTTGACTATTCAGCAACGGTGACAGGACAGGCCCTCCCGGAGGAAGCCTCACTGGCGGACCTTATCCGCTACGTCCGGCCCAGCCGGTATGCGGAATCGGACAAGCTCCTGCCTACGGCCTATGCGGAATTTGGCGGCCTGCACGGTGAGGAACTGCTGCACGGTGTCAGGAACTGGGTTTATGGCGAGCTGAGGTACATCAGCGGCTCCTCCAGGGGGACGGACGGGGCGGTGGAGACGCTCCTGAACCGCCGCGGGGTGTGCCGGGACTTCGCCCACCTGGCCATTGCGTTGCTCCGCTCGAAGGACATCCCGGCCCGGCTCGCGGCCGTGTACGCCCCGGGACTGAGCCCCATGGATTTCCATGCCGTGGCTGAAGCGCACGTGAATGGAGCCTGGCACATCATTGACCCCACTGGCCTGGCCCCCAGGGAGTCAATGCTGAGGATCACGGCGGGAAGGGATTCCTCCGACACCGCATTCCTGTCCACCATCGGCGGCAGCCTGACCCTGAACCAGATGCGTATCACCGCTGTGGTCAACGGAAACCTGCCGGTGGAAGACCCTGCCAGGCTGGTTGTGCTGGCCTGAMERTVAARLVFKTAADTKAALAVAVAKNPGYSSFQESLAVTVAGEEVPVTEVPDHHGGRMHYMEFADPSEVTVDYSATVTGQALPEEASLADLIRYVRPSRYAESDKLLPTAYAEFGGLHGEELLHGVRNWVYGELRYISGSSRGTDGAVETLLNRRGVCRDFAHLAIALLRSKDIPARLAAVYAPGLSPMDFHAVAEAHVNGAWHIIDPTGLAPRESMLRITAGRDSSDTAFLSTIGGSLTLNQMRITAVVNGNLPVEDPARLVVLANANANANANA
D1-29_03056834hypothetical proteinATGACAGGCAAGGCAACGATGGTCGGGCTGCGGATCGCGGCAGTACTGCTGGCAGGGGGCATCCTTGCCGGCTGCGGCGGGCAAGGCCAATCGGCGCCCTCCTGGACGGCTCAGCCGGACGCTTCCTCCACCGCCGGTTCTTCCGACGCCGGCACAGCCAGCCCTGCGGCCACAGAACCGGTGCCTGGTTCAGGTTCTTCGGCAGTAGGTTCAGCATCCCCGGACGCAGCGTCCCCCGATGCAGCAGCCCCGGCGACGGCGTCCGCGTGGAAGTCCTTCTCGGATCCAGGTAAGACGGTCAGCTTCGAGCTGCCGGAGGAATGGATCGCCCAGTCGGTTGCTCCTGAGGAAGGAACCCAGGCCGGAGCGCTGAAGATTGAGGTGAAAAAGCAGGACGGCACAGTGGTCGCCGTCCTGAAGACCGGGCTCCCGCCGTCGGCGCCCGATTGCCCGGAAGCGGCGCGCAGGCCGTACACCGTGATCAGCAGCCTTCCGGTGGACCTCCCGGCACTGGCCGGGGAAGGCACCATTGCTCCGCATGTGGTGTTCCGTGTCATCCAGGGCTACCGGTACTTCGGCTCGTACGGCATCACCAACATCGTGGGCGGAGCCGACGGGCAGGCCTGCGAGCTGCGGAACGTTGTCCGTGGACCAGCCGGGAAGGGCGACTATTCCTTCGGTGACCTGGGAACGCTCAAGGCTTTTGCCCCGGACGAAAAGGTGGCTCCCGCCAAGGCGTTTGACACTCTAGGGCAGGCGGCAAAATATGCCAAGGAGAGCCCTGAATTTGCCAATGTCCAACGGATGCTAATGTCTCTGGAGATCAAGAACTAAMTGKATMVGLRIAAVLLAGGILAGCGGQGQSAPSWTAQPDASSTAGSSDAGTASPAATEPVPGSGSSAVGSASPDAASPDAAAPATASAWKSFSDPGKTVSFELPEEWIAQSVAPEEGTQAGALKIEVKKQDGTVVAVLKTGLPPSAPDCPEAARRPYTVISSLPVDLPALAGEGTIAPHVVFRVIQGYRYFGSYGITNIVGGADGQACELRNVVRGPAGKGDYSFGDLGTLKAFAPDEKVAPAKAFDTLGQAAKYAKESPEFANVQRMLMSLEIKNNANANANANA
D1-29_03057660hypothetical proteinATGGCGGATCAGCAGTACGGCACGGCCGAAGGCAGCCTGGCGGACATCTCCGCCATCGATAGTGCAGACTGGCGGCTGCGGACCTTTGCCCTCTATGACACGGTACGGAAAATAGCCGTGGAAAACCCCGCCGAGGCGCACAGCTACTGGCGGCAGGAACGCGACCGCATGTTTGCGACCCACCCGGCATCAGCCTTGACTGAGCGGGACAAGGCACGCTTCTCCGGCCTGAAGACCGCCGACTACGATCCCATTTACCGCTTCCATGTGCCCCTGACCAAAGAGGGTGCGGGGCGGGAGCTGACAGTGGAAACCACCGAGGGAACAGCCAGTTTTGTCCGCCTGGGCACATTTGATCTTCCGGAGATGGGCCAGCTCGCAGTCTGGAAGCTGCACGGCTATGGCGGTGGCATCTTTGTCCCCTTCCGGGACGCCACGTCAGGCCAGCCCCGCGGCAGTTACGGCGAAGGTCGGTACCTCCTGGATACCAGCAAGGGTGCGTTTCTTGGCGTCCGCGGCTCGGGTTCGGGGGCCGAATTCATCCTGGACTTCAATTTCGCCTACAACCCGTCCTCCGCCTACAACGATGCCTGGACCTGCCCGCTCCCGGGGCCTTCCAACAGGCTTGCCGTGGACATCCCGGTGGGCGAGCTGTCCTGAMADQQYGTAEGSLADISAIDSADWRLRTFALYDTVRKIAVENPAEAHSYWRQERDRMFATHPASALTERDKARFSGLKTADYDPIYRFHVPLTKEGAGRELTVETTEGTASFVRLGTFDLPEMGQLAVWKLHGYGGGIFVPFRDATSGQPRGSYGEGRYLLDTSKGAFLGVRGSGSGAEFILDFNFAYNPSSAYNDAWTCPLPGPSNRLAVDIPVGELSNANANANANA
D1-29_03058852hypothetical proteinATGCCACTGACCACTGCCCCGCGCCGTCTGGCCCGGGTCCGTCCGCTCCCGGAAGCATCAGCCGGCGAACAGTTCTTTGTCACCAACGGCGAGACTGATTTCGCCAGCCCCGCAGGCACGGTCTGGACGGTGGCGGTCACCCCCTTTCCGGGTTCACCGGCCAACGCCGGCAGTGCCCCGCGTCCAGGGTGGGAACCTGGCGACGACGTGACCGAGGCGTCTTTTACCTTTCTGGCACCCTGCCTTCCGGCCAATGTCCTGGGCATGGCGCACAACACGGGCCAGGCCGGGCGCGACGTGCCGCCCCAGGCCTTTCACAAGGCCGCCACGAGCGTCATTGGCCCCGGCGAGGCCATTGAGCTGCCTGCCGGGTCCGGCCACGTGGACCCCGAGGCGGAACTGGCCATCGTTGTGGGCACAAAGGCCAAAGGCCTGACTCCCGCGAATGCGCGCAGCGCGGTCCTGGGGTTTACCATCGCCAACGATGTGACCTCCCGTGACCGGCAGAAAACGGATGAGCTGTGGATCAGCGCGAAGAGCCAGGACACTTTCACACCGGCCGGGCCATGGATTGTCACCGGCCTGGACGATTCAGACCTTGCCATCAGCATTGTCCATAACGGCACGCACCTGAAAGCGGCAAGCACAGCTGACCTGGGCTGGAAAGTGGATGAAATCCTGGTCTACCTGACATCGTTTATGACGCTCCATCCCGGCGACCTCGTCCTCACCGGCTTCCCGGCGGAGAGCGCCCCGATAGCTCCCGGTGACACCGTGACGTGCCGCGTGGAAGGAATAGGCCAACTCTCAAACCCGGTTAAGGCAGGTTCCGGGGAGGGTTTCAGCGCCTGAMPLTTAPRRLARVRPLPEASAGEQFFVTNGETDFASPAGTVWTVAVTPFPGSPANAGSAPRPGWEPGDDVTEASFTFLAPCLPANVLGMAHNTGQAGRDVPPQAFHKAATSVIGPGEAIELPAGSGHVDPEAELAIVVGTKAKGLTPANARSAVLGFTIANDVTSRDRQKTDELWISAKSQDTFTPAGPWIVTGLDDSDLAISIVHNGTHLKAASTADLGWKVDEILVYLTSFMTLHPGDLVLTGFPAESAPIAPGDTVTCRVEGIGQLSNPVKAGSGEGFSANANANANANA
D1-29_03059504hypothetical proteinATGGATTCCCCTGCTGCGCCCGCCCAACTGACGCAGCAGCCCGGCAGCCAACCCGCAGCCCGGCGGGCACCAGCCACGAGGCACTACCGCGGAATGCTGCGGTTTCCCGTGCTCCGACAGCTCATCCGCTTCACCGGCGTGGGCATCATCTGCACGGCCACGTCCCTGGGTTTGTACGCGATACTGCGTCCCTGGCTGGGTCCCCAGCTGGCCAACGCTGCCGCCCTTGTCCTGACGTCCATGATGAACACGGCCTTGAACCGGAGATTCACCTTCAAGATCGAGGGGCAGGGCCGGATGGCACGCGACCACCTGAGCGGCCTGCTGGTGATTGCCGTTGCCCTGGTCATCACCGGGGGAAGCCTGGGCGTCCTGCACTGGCTGCGCCCGGAAGCCACAGTGTCCGATGAACTCCTGATCACCACGCTGTCAGGTTTCCTGGCCACAGCAGTCCGCTTCACCATGTTGCGGCACTGGATCTTTCGCCGGGCCCGCCACCGCTAAMDSPAAPAQLTQQPGSQPAARRAPATRHYRGMLRFPVLRQLIRFTGVGIICTATSLGLYAILRPWLGPQLANAAALVLTSMMNTALNRRFTFKIEGQGRMARDHLSGLLVIAVALVITGGSLGVLHWLRPEATVSDELLITTLSGFLATAVRFTMLRHWIFRRARHRNANANANANA
D1-29_030601158iscS_1Cysteine desulfurase IscSATGATCTTCCTTGACGCGGCCGCCACCACCCCCGTGCGGCGCGAGGTACTGGATGCGATGTGGCCGTATCTCACCGGTGAGTTCGGCAACCCGTCCAGCCATCATTCTCTGGGGGAAACGGCCGCGGCCGCGCTCTCGGAGGCCCGGGCAGCCGTTGCCGGTGTGCTCGGCTGCAGGTCCGGCGAGGTGACGTTCACGTCCGGCGGCACCGAGGCGGACAACTTGGCCGTCAAAGGAATCGCCCTGGCCCGGCAGGCCGCAGATCGGGTGCTGAATCGGGTGGTGATCAGCGCCGTCGAACATCCTGCCGTGGAGGAATCGGCACGGTACCTGGAGCGGTTCCACGGTTTCGCCGTGGACGTGGTTCCCGTTGACGAGACAGGGCTGGTGAGCCCCGAAGCGCTCGAGTCGGTGCTCCGGCCGGAAACTGCCCTGGTCAGCGTGATGTACGCCAACAACGAAGTGGGGACTGTCCAGCCCATCACCGAGCTCGCTGCGCTGGTGCGTTCACACGGCATCCCGTTCCACACTGACGCGGTTCAGGCCGCCGGGTGGCTGTCAGTTGACGTCAAGGCGCTCGGTGTGGATGCCCTGAGCATCTCCGGCCACAAACTCGGTGCGCCCAAGGGGTGCGGTGTGCTCTACGTCCGGGGCCGCACGCGGATTGAGCCACTGGTCCACGGCGGCGGCCAGGAACGCGGGCGCCGCTCGGGGACCGAAAACGTCGCGGGCGCTGTGGGGCTTGCCACTGCCCTCACCATGGCGCAGGCCCAGCAGCTGCAGGCAGCGGGGCGGGTGGCGGCCCTCCGCGACGCCTTCATCGCTTCCGTGCTGGCCGGCGTTCCGGAGGCTGTCCTGACGGGCCACGCAACAGAGCGCCTTCCCTCCGTGGCCTCCTTTTGCTTCCCCGGTACCAGTGGTGAGTCGGTTCTGTTGGAGCTGGAGCGGCGGGGTGTTGTGTGTTCAAGCGGCTCGGCCTGCGCCGCCGGTTCCGATGCGCCGTCGCCTGTGCTGACGGCTCTGGGCATTGAGGCCGAGGTGGCACAGACAGCGGTACGGTTCAGTTTTGACTCGTCGGTGACCGCCCTGGACCTGGAGACTGCAGCGCAGGGCATCCGGGACGCCGTCGCAAGCGTCCGTTCCCTTGGCTTGGCCTGAMIFLDAAATTPVRREVLDAMWPYLTGEFGNPSSHHSLGETAAAALSEARAAVAGVLGCRSGEVTFTSGGTEADNLAVKGIALARQAADRVLNRVVISAVEHPAVEESARYLERFHGFAVDVVPVDETGLVSPEALESVLRPETALVSVMYANNEVGTVQPITELAALVRSHGIPFHTDAVQAAGWLSVDVKALGVDALSISGHKLGAPKGCGVLYVRGRTRIEPLVHGGGQERGRRSGTENVAGAVGLATALTMAQAQQLQAAGRVAALRDAFIASVLAGVPEAVLTGHATERLPSVASFCFPGTSGESVLLELERRGVVCSSGSACAAGSDAPSPVLTALGIEAEVAQTAVRFSFDSSVTALDLETAAQGIRDAVASVRSLGLAPGPT0000065_5347DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
D1-29_03061888nadCCOG0157putative nicotinate-nucleotide pyrophosphorylase [carboxylating]ATGACTAACGCCTCCCTGTTTGACCTGGCCCTCCCGGCGGCACCGGTGCGGGAGATCCTGGAGCGGGCTTTCGCGGAGGATGCCCCCGCAGGGGATATCACCTCACAGCTGCTGATTCCGGCAGAAGCCCGGGCCACGGCTGTGCTGAACGCCCGCGTCCCCGGCGTGCTCAGCGGCGCCACCGTGTTCCGGGATGCCATGCTGCTGGTCGATCCGGAGACCGAGGTGGAACTGCTGCTCACCGACGGTGAAACGTTCGACGCCGGTACCCCCCTTGCACGGGTCAGCGGCAACGCACGCTCTGTGCTGCTTGCCGAACGCGTGGCACTGAACCTGGTGCAGCGGATGTCTGCCATCGCCACGAAAACAGCCGAGTACGTCAAGCTGGCCGAAGGCACCGACGCCAGGATCACAGACACGCGAAAGACCACCCCGGGCCTGCGGATCCTGGAACGGTTCGCTGTCCGCTGCGGCGGCGGGGCCAACCACCGGTACAGCCTCTCCGACGCCGTGCTTGCCAAGGACAACCACCTTGCCGTGATGACCGGCGGGGACCCGGGCAGGCTCACCGGGCTGCTGGCGGCGGCAAAGGCCCGGCTCGGCCACACCACGCACTTCGAAGTTGAAGTGGACCGGATGGACCAGATCGAACCGGTCCTGGCGGCTGGGGTGGACACCATCATGCTGGACAACTTCACCCTGGATGAGCTCAAGGCAGGAGTGGCGCTTGTAGACGGCCGCGCAACGGTGGAGGCCAGCGGCAACGTCAACCTCCAGACGGTGGCCGGGATCGCAGATGCAGGTGTTGACGTCATCTCCGTCGGTGCCCTCACCCACAGCGTGGCCGCCCTGGACCTGGGCCTCGATGTGGAACTGACGGTGGGGTAAMTNASLFDLALPAAPVREILERAFAEDAPAGDITSQLLIPAEARATAVLNARVPGVLSGATVFRDAMLLVDPETEVELLLTDGETFDAGTPLARVSGNARSVLLAERVALNLVQRMSAIATKTAEYVKLAEGTDARITDTRKTTPGLRILERFAVRCGGGANHRYSLSDAVLAKDNHLAVMTGGDPGRLTGLLAAAKARLGHTTHFEVEVDRMDQIEPVLAAGVDTIMLDNFTLDELKAGVALVDGRATVEASGNVNLQTVAGIADAGVDVISVGALTHSVAALDLGLDVELTVGPGPT0013370_527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767NANA
D1-29_030621770nadBCOG0029L-aspartate oxidaseATGACCAGGGCCTCCGTGCACGGGACTTCGGAGCCCCAGCGGCTCATCGTCGTCGGAAGCGGCATCGCCGGGCTCTACGCCGCCCTCCTGGCCGCAGATGCGGGCGTGGAGGTTGTGCTGCTCACCAAGGGCGAGCTCGCTGAAAGCAATACCTACTACGCCCAGGGCGGCATCTCGGCAGTGCTTGCCGACCCGGCGCCGGGCGACACCGTGGCGGCCCACATCGCCGACACGCTCAATGCGGGTGCCGGCCACTGCAATACGGAGGCGGTGCGCGTCCTTTGCTCGGAAGCGCGGGAGGACATTGCAGGGCTGGGCCGTTTCGGCGTGCGTTTCGACCTGGCCCACGACGGCGGCCCCGCCCTGGGTCTTGAGGCTGCCCACTCCGCGCCGCGGATCCTGCACGCCGGCGGGGACGCCACGGGAGCCGGGGTTGCGAATGCCCTCATCCGAGCCGTGCTGTCACGCCGGGCCGACGCGAAGATCCAGCTGTACGGCCGAGCCCACGCCACAGCCCTGCACCAGGCCAATGGCAGGGTTTCAGGAGTTGAGTTCAGCCAGGGTGGCCGGAGCCTGAGCGTGACGGGCGACGCCGTGCTGCTGGCCACCGGCGGTGCCGGCCAGCTCTTCGCCCAGACCACCAACCCTGCCGTTGCCACGGCCGATGGACTGTCCCTTGCCTGGCGGGCCGGGGCTGCCGTGTCCGATCTGGAGTTCTTCCAGTTCCACCCCACCTGCCTCGTGCGCACAGGGGCCACAACGGATCCGGAAGTGGACCAGGACCCGTTGCTCATCTCTGAAGCGGTCCGTGGTGAAGGTGCCGTCCTGCTGGACACACGCGGCCTCAGGTTCATGCCGGACTATCATCCTGATGCCGAACTGGCACCCCGGGATGTGGTGTCCCGCAGCATTGCCCTCCACCTGGCAAAACTGGGCGACCCCAACGGCCATGTGTACCTTGACGCCCGCCTCGTTGAGGCCGCCAAGGGCCCCGGGTTTCTCGAACGGCGGTTCCCAACCCTCAGCCGAAAGACCCGCGAAGCCGGCCTCGACTGGACCCGCGAGCTTGTTCCGGTGGCACCTGCCGCGCACTACTGGATGGGCGGCGTCACCACCGACCTGCACGGCCGGACCAGTGTGCCCGGGCTCCTGGCCGCCGGCGAGGTTGCCTGCACGGGAGTTCAGGGCGCCAATCGGCTTGCAAGCAACTCGCTCCTCGAAGGTCTCGTCTTTGGCCGCCGCGCCGTTGAAGGGTTCCTGGCTGACTCACTGGTTGGCGCGTCGCTCGACGCTGTTCCTCCGCTCGCTGTCTCGGCCGCTGGCGGCCTCCCCTTGACGCTCGCTTCCGGAACAGCCTCGAACGACGAACGGAAGTGTGGCCTAGGTGTCTCCGCGGAGATGCCATCGGGGGAGACCAGGTTCTCGTTCGCTCCGGTTCCAGGACAGCCGTTCTCCCGGTCTGCTTTGCGCAGGCTGATGACTGCCAACGCCGGGGTGCTGCGGAATGGGGTGCTTTTGCGGGAGGCGGCGGAGACATTGGCGGGGTGGGCCGCCGTCATGCGTCCTGAAATGGTTCCTTTGTCCGCGGATCCGCGGGTGCATGAGGATGCCAGCCTCCTGCTCGCCGCGCAGCTGCTGGTGCGCGCTGCCGGGGAACGGCGGGCGTCCTTGGGGGCGCACTACCGGAGCGACAGCATTGAGGGCGCCGCCATCCATGAACTTGAAGAGACCTACCAGATGCGCCCGAAAGCGAGCCTTGTCCATGACTAAMTRASVHGTSEPQRLIVVGSGIAGLYAALLAADAGVEVVLLTKGELAESNTYYAQGGISAVLADPAPGDTVAAHIADTLNAGAGHCNTEAVRVLCSEAREDIAGLGRFGVRFDLAHDGGPALGLEAAHSAPRILHAGGDATGAGVANALIRAVLSRRADAKIQLYGRAHATALHQANGRVSGVEFSQGGRSLSVTGDAVLLATGGAGQLFAQTTNPAVATADGLSLAWRAGAAVSDLEFFQFHPTCLVRTGATTDPEVDQDPLLISEAVRGEGAVLLDTRGLRFMPDYHPDAELAPRDVVSRSIALHLAKLGDPNGHVYLDARLVEAAKGPGFLERRFPTLSRKTREAGLDWTRELVPVAPAAHYWMGGVTTDLHGRTSVPGLLAAGEVACTGVQGANRLASNSLLEGLVFGRRAVEGFLADSLVGASLDAVPPLAVSAAGGLPLTLASGTASNDERKCGLGVSAEMPSGETRFSFAPVPGQPFSRSALRRLMTANAGVLRNGVLLREAAETLAGWAAVMRPEMVPLSADPRVHEDASLLLAAQLLVRAAGERRASLGAHYRSDSIEGAAIHELEETYQMRPKASLVHDPGPT0013355_172DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278NANA
D1-29_030631314nadAQuinolinate synthase AATGAGCAGCGTCAACACAGCAATCCAGCTCATCACGCGGGAACAGGCCGAAAAGGCCGCCAGCGGCGCGGCCGGCAAGAGTACGTGCAGCCCCGCACTTGCCAAGGGTCCCTGGGACTATGACCTGGCCGAGGCGCTGGCGGGTATTCCCGCCTACGGCCCCGGCGCATCCAGTGCCGATGTTGCCCCGGCTGCCACCCCCCGCCAGGGCCAGCTTCCCGAACAGTACAAGCTGGCCAGCGACGCTGAACTGGACAGCCGGATCCGCGCGGCCAAGGCCGCCCTGGGTGACCGGGCCGTGATCCTGGGGCATTTCTACCAGCGTGACGAAGTAATCCAGTACGCGGACTTCGTGGGGGATTCGTTCCAGCTGGCCAATGCTGCCCTGACCAAACCCGACGCCGAAGCCATCATCTTCTGCGGTGTGCACTTCATGGCCGAGACGGCGGACATCCTCTCCACGCCGGAGCAGGCAGTCATCCTGCCCAACCTGGCGGCCGGCTGCTCCATGGCGGACATGGCGGACACGGACTCCGTGGAAGAGTGCTGGGAGCAGCTCGAAGAGATCTTCGGGACCGAGCCCGACGCCGACGGCCGGGTCCCGGTCATCCCGGTCACCTACATGAATTCCTCCGCCGCGCTGAAGGCCTTCTGCGGTGAACACGGGGGAATCGTCTGCACGTCGTCGAACGCCAAAACTGTCCTTGAATGGGCCTTCGAGCGCGGGCAGCGCGTTCTCTTCTTCCCGGACCAGCACCTGGGCCGCAACACCGCCAAGGCCATGGGCGTGCCGCTGGAGCAGATGCCCATGTGGAACCCGCGCAAGGAACTGGGCGGCAATGACGAGCAGGCGCTCCTGGATTCCCGGGTGATCCTGTGGCACGGTTTCTGCTCCGTCCACAAGCGCTTCAACGTGGCCCAGATCGAGAAGGCGCGGGCGGACTTTCGCGGCGTCCAGGTCATCGTCCACCCGGAATGCCCCATGGAGGTGGTGGACGCAGCCGATTCAGCAGGATCCACTGACTTCATCAAAAAGGCAATCGCTGCCGCCACCGAGCCCACGACGTTCGCGATCGGCACCGAGGTCAACATGGTGAACCGGCTGGCCGCGGAATACCCGCAGCACACCATCTTCTGCCTGGACCCGGTCATCTGCCCCTGCTCCACGATGTACCGGATCCACCCCGGATACCTCGCCTGGGTCCTTGAGGAACTCGTGGAAGGCCGCATCGTCAACCGCATCACCGTGGCAGACGCAGTCCAGTCGAACGCCAGGACCGCGCTCGAGCGCATGCTGGCCGCCAGGCCATCATGAMSSVNTAIQLITREQAEKAASGAAGKSTCSPALAKGPWDYDLAEALAGIPAYGPGASSADVAPAATPRQGQLPEQYKLASDAELDSRIRAAKAALGDRAVILGHFYQRDEVIQYADFVGDSFQLANAALTKPDAEAIIFCGVHFMAETADILSTPEQAVILPNLAAGCSMADMADTDSVEECWEQLEEIFGTEPDADGRVPVIPVTYMNSSAALKAFCGEHGGIVCTSSNAKTVLEWAFERGQRVLFFPDQHLGRNTAKAMGVPLEQMPMWNPRKELGGNDEQALLDSRVILWHGFCSVHKRFNVAQIEKARADFRGVQVIVHPECPMEVVDAADSAGSTDFIKKAIAAATEPTTFAIGTEVNMVNRLAAEYPQHTIFCLDPVICPCSTMYRIHPGYLAWVLEELVEGRIVNRITVADAVQSNARTALERMLAARPSPGPT0013365_224DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517NANA
D1-29_03064711hypothetical proteinATGTACGCCAGTTCAGCCAACGTCGCAGAGCGGCAGGCGGCGCCCCCTTCGCTCGCCATCTCCACTGTCATCTTCGCCCTTCGGCCCAGCGAAGCCTCGGGCCGGCCCACGCTCTGGATCCCGCTGGTCCGGAGGATCCGGGAGCCCTTCAAAGGGCTCTGGGCACTCCCAGGCGGACCGTTGTCGCACTCGGAGTCCCTGCAGGACGCGGCCTCAAGGAACCTGCAGGAGACCACCGGCCTGGCCCCCACCTACCTTGAGCAGCTCTACGCTTTTGGCGGCCTGCACCGCTCGCCCACCCAGCGCGTCGTCTCGATCGTCTACTGGGCGCTCGTGCAGCCCACGGAAGCGGCGCTCGCGGACGAATCCGAGAACGTCAAATGGTTCCGCGCAGACCGGCCCGGCGACCTTGCCTTTGATCACAACGCCATTGTCGAATACGCCCTGTGGCGCCTGCGCAACAAGCTTGCCTACGGCTCCGTCGCCTACCACCTGCTGGGGGAGTACTTCACCCTGGCGCAGGTCCGCGAAGTCTACGAGGCGGTGCTGGACCGTCAACTGGATCCGGCCAACTTCCGCCGGCAGCTCAAGTCCACACCGGAGATCGAAGACACCGGTGAATACCTCCAGGGCGGCAAACACCGCCCGCCACGCCTCTACCGCTTCACCGGCCGCCCCGGCCTTGACCCAGACAACAGGAGTACTCCATGAMYASSANVAERQAAPPSLAISTVIFALRPSEASGRPTLWIPLVRRIREPFKGLWALPGGPLSHSESLQDAASRNLQETTGLAPTYLEQLYAFGGLHRSPTQRVVSIVYWALVQPTEAALADESENVKWFRADRPGDLAFDHNAIVEYALWRLRNKLAYGSVAYHLLGEYFTLAQVREVYEAVLDRQLDPANFRRQLKSTPEIEDTGEYLQGGKHRPPRLYRFTGRPGLDPDNRSTPNANANANANA
D1-29_030651380gabP_4COG1113GABA permeaseATGACGATGAAGTCCACCCAGGTGCTTCCGCAGATCCAGCTGGGCCATAGCATGAAACCGCGCCAGCTGACCATGATGGGCCTGGGCAGTGCGATCGGCGCCGGACTGTTCCTTGGGTCCGGCGCCGGAGTCCAGGCAGCCGGCCCGGCAGTTCTCGTCTCCTACCTGGTGGCGGGCACCCTCATCATCCTGGTGATGTGGGCACTCGGCGAAATGGCCGCCGCCAACCCCACCAGCGGCGCTTTCTCGGTGTATGCCGAGCGGGCACTGGGAAAAACAGCAGGCGCAACCGTGGGCTGGCTGTGGTGGCTCCAGCTGGTGGTGGTGATCGCGGCCGAAGCCCTGGGCGCGGCCGGCCTGCTGTTCTCGGTCTGGCCGGTCGTACCCGTCTGGGCACTTGCCCTGATCTTTATGGTGGTGTTCACGGCCATCAACCTTGCCGGGGTACGCAACTTCGGCGAGTTCGAGTTTTGGTTCGCCATCCTCAAGGTTGCCGCCATCGTTCTCTTCCTCGCCGTCGGGCTTGCCCTTCTGCTCGGCCTCCTGCCAGACGTGGCATCGCCGGGGCTGGGGAACATCACCTCCGACTTCGCCCCGGCGGGACTGGGCGGCATCGCCACTGCACTCTTTGTGGTGATCTTTGCCTTCGGGGGAACAGAGATCGTTTCCGTGGCGGCCGCCGAAACCGAGGATCCTGAGCACAGCGTGGGCAAGGCGATCCGCACCGTGGTGTGGCGCATCCTGGTGTTCTACATCGGCTCCGTCTTTGTGATAGCAGCGGTCCTCCCGGCCACATCCGAAAGCCTTGCCTCCCCGTTTGCGGGGGTGCTCAACACCGCCCGCATACCCGGCGCCGGCACGGCGATCACCCTGGTGGCCGTCGTCGCACTCCTCTCGGCACTGAACGCAAACCTGTACGGTGCCTCACGGATGGTGTATTCGCTCTCCCAGCGTGGCGAAGCGCCCGCATTCCTGTCCCGGCTCAGCGGCGCCAGTGTGCCAATGCTGGCGGTAGGCATATCAGTGGCCTTCGGCTTTGTCGCCACCGTCCTGGAACTGATGTTCCCGGAGCGGATCCTGCCTGCCCTCTTCCAGCTGGTTGGCTCCACCTGCCTGGTGGTCTGGGGCACGGCGCTGGTTTCACAGCTGATTCTTCGGCGGCGCGCGGACAGCAGTGGCACTCCCCTCCCGCTGCGGATGAAGGGATTTCCGCGGCTCACGATTTTTGGCCTGGTGCTCCTGGGCCTCATCTTTGCAGTGGGCTTCAGTGCCGAAAGCAGCCGCGGCCAGCTGTTCAGCACGTTTGCCCTGGTTGCCGCGCTGGCAGCGGCGTGCTGGCTGGGAGCGCGCGTCACGTCCCGGGCCCGGCAGCCCAAGTAGMTMKSTQVLPQIQLGHSMKPRQLTMMGLGSAIGAGLFLGSGAGVQAAGPAVLVSYLVAGTLIILVMWALGEMAAANPTSGAFSVYAERALGKTAGATVGWLWWLQLVVVIAAEALGAAGLLFSVWPVVPVWALALIFMVVFTAINLAGVRNFGEFEFWFAILKVAAIVLFLAVGLALLLGLLPDVASPGLGNITSDFAPAGLGGIATALFVVIFAFGGTEIVSVAAAETEDPEHSVGKAIRTVVWRILVFYIGSVFVIAAVLPATSESLASPFAGVLNTARIPGAGTAITLVAVVALLSALNANLYGASRMVYSLSQRGEAPAFLSRLSGASVPMLAVGISVAFGFVATVLELMFPERILPALFQLVGSTCLVVWGTALVSQLILRRRADSSGTPLPLRMKGFPRLTIFGLVLLGLIFAVGFSAESSRGQLFSTFALVAALAAACWLGARVTSRARQPKPGPT0000815_1742DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_03066222hypothetical proteinGTGGAGGGGGAAACCAGCAAATCCGCTGTTGAACTGCCCGGTCCACAGGCAGGTAAAGTGGTGCGTACCTTCGGTGGGCCCGGTGACAGGATCAATGTTGGCGACGCCCTGATTGTGTTCGAGGTGCCGGGCGATACCGCCGGAATCGTGGGCACTGTGCCGAAGGACGAGGCACCGAAGCGCCGGGTCCGCCTGAGCGCCGTACTTGATGATGAGGACTGAMEGETSKSAVELPGPQAGKVVRTFGGPGDRINVGDALIVFEVPGDTAGIVGTVPKDEAPKRRVRLSAVLDDEDNANANANANA
D1-29_03067828menH_52-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGAGCGGCAGGCATACCGGGGCAATGCATTCCCACACAGTGGAAGGAACGGATCCGCAGCTTTACGTCGGGGTGCATGATCCGGAGCAGGACGCCGGGCTCAGGCCTGTACTGCTGCTGCATGGCTTCTCCTCGTCCAGCAAACTCAATTGGGAAGACACCGGCTGGCTGGCGGCCCTCCTTGAAGCCGGCAGGCGCGTCATCACCGTGGATCTGCCGGGCCACGGCCGCAGCGGCGCGCCGGAGGACCGGGATTCCTACTCCCCCAGCCGGATCCGGGCGGATCTTCTCCAGATAGCGTTCGACGCCGGTGTGCGGCCTTTGCAGGAAGGTGACCCTTCCAGCGGGCTGGATATCATTGGCTACTCCCTTGGTTCTCGGCTCGCCTGGGAGTTCGGGGCCACCCAGCCGGAGATTGTCCACCGGCTGGTTCTGGGCGGGCCCAATATCGCGGATCCCCTGGCCGCCTTCGACCTTGTGGCTGCGCAGCGTTACCTTGCAGATGGCACACCCATCGAGGACGAGTCCACGGCAGGCCTGCTGAAGATGGCCATGCTGTTGCCGAGCAACAATATCTTTGCGCTGCTTTCACTCGTCGAGGCGATCAAGGCCGAGCCGTATGATCCTGCCGAAGCCGTGCCGCACATGCCCATGCTCCTGGTGGCCGGGGACCAGGATGAGCGCGCCACCACCATGCCGCAGCTCGCTGAGCTGGGGATCAAGGCGGGATCAATGGCCGAGCAGCTGGTGCTGCCGGGCCGCACCCACACCAACGCCATCACCAGCAGGGCTTTCAAGCAGGGTGCCATAGACTTCCTCGGCGTTTAGMSGRHTGAMHSHTVEGTDPQLYVGVHDPEQDAGLRPVLLLHGFSSSSKLNWEDTGWLAALLEAGRRVITVDLPGHGRSGAPEDRDSYSPSRIRADLLQIAFDAGVRPLQEGDPSSGLDIIGYSLGSRLAWEFGATQPEIVHRLVLGGPNIADPLAAFDLVAAQRYLADGTPIEDESTAGLLKMAMLLPSNNIFALLSLVEAIKAEPYDPAEAVPHMPMLLVAGDQDERATTMPQLAELGIKAGSMAEQLVLPGRTHTNAITSRAFKQGAIDFLGVNANANANANA
D1-29_03068648COG1926putative proteinATGACCATGCGTTTTGAAGACCGCACAGATGCCGGCGAGCGCCTGGCGGCGGTGCTGACGCAGTTCAGGGAGCGTCCCGACGCAATCGTCCTGGGACTTGCGCGCGGCGGCATCCCTGTGGCGGCGGCGGCGGCCAAAGCCCTCTACCTGCCCCTGGGTGCCGTGCTGGTCCGCAAGCTCGGCATACCGGGTCATGACGAAACAGCCTACGGAGCCCTTTCCTGGTCCCGGGGCCGCATTGTCCGGCTCGTCAACAAACCACTCGTGGAACGCATCCTGGAGCACGGCGTCCGGCAGGAGTGGCTTGATGAAGTAGAGGGGCGGCAGCGGGCCGAGTTGGTCCGCCGCGCCGAAACCTATCCCGGAACGGATCAGGACCTCACTGGCAAGACTGTCCTGCTGGTTGATGACGGCCTGGCGACCGGCGCCACCATGCGGGCCGCCGTCGAAGCCGTCCGCGCGGCAGGTGCCTCCCACGTAGTGGCCGCCGCGCCGGTGGGTTCATTGGAGGCGGAGGCCTCCGTGTCGCGTGTGTGCGATGCCGTCCTGTGCCTGCACCTGCCGGGAAAGTTCCGCGCTGTGGGAAGCTTCTACCGGCATTTCGAGCAACTCACAGATGAGGACACCATCAGCCTGCTGAAGCAGTAGMTMRFEDRTDAGERLAAVLTQFRERPDAIVLGLARGGIPVAAAAAKALYLPLGAVLVRKLGIPGHDETAYGALSWSRGRIVRLVNKPLVERILEHGVRQEWLDEVEGRQRAELVRRAETYPGTDQDLTGKTVLLVDDGLATGATMRAAVEAVRAAGASHVVAAAPVGSLEAEASVSRVCDAVLCLHLPGKFRAVGSFYRHFEQLTDEDTISLLKQNANANANANA
D1-29_030691332abaF_3Fosfomycin resistance protein AbaFATGACCACACCATCCAAGGTGGACACCCTTGCCGGTCCCAGCACCCGGCAGGAGGAACGCAAGGTCCTGGCCGGCACCCTCGTCGGCACCACCATCGAGTGGTACGACTTCTTCATCTTCGCCCAGCTGACCGCAACGCTGCTGTCACCCCTTTTCCTGGCGCCGCTGAACGAGTCCAACCCCGGCCTGGCGCGGATCCTCTCCTTTGCGCTGATCGGCATCAGCTTCCTGTTCCGCCCGCTGGGCGCAGTGGTTGCCGGCCACCTCGGCGACCGGCTGGGACGCAAGGCAATGCTTGTCTTCACCCTGGTGATGATGGGGGCCGCAACCGCTCTGATCGGCATGCTGCCCACCTACGCGCAGATCGGCGCCTGGGCGCCCATCCTCCTGATCCTCCTGCGGATTGTCCAGGGCTTCTCCGCTGGAGGCGAATGGGGCGGAGCGGCGCTGATGGCGGTAGAACACGCGCCACTGAACAAGCGCGGCCTCTTCGGCGCCTACCCGCAAATCGGCGTACCGATCGGCATGATCCTCGCCACCGGCCTGCTGTTCTTCCTCAACAGCAACATGTCCAGGGAGGACTTCGCCGCCTGGGGCTGGCGCGTGCCGTTCCTGCTGTCCATTGTGCTGATCATTGTCGGTTACCTCATCCGCCGCGCCGTGGCCGAAAGCCCGGTCTTCCAGGAAATGGCTGCACGGAAGAAGGAAAGCAAGGCGCCGCTGGGCGAGCTGATCCGCAGCCACAAGAAGCCGGTTCTGTACTCCACCATGATCTTCATCGCGAACAACGCGGCGGGGTACCTGCTGATCGCCTTCTTCATCGCCTATGCCACCAGGACCCTGCAGATGCCCACGCCCCAAGTGCTCCTGGCCACCACCCTGGCATCCTTCGGCTGGCTGATCTTCACACTTGCCGGTGGCTGGCTCTCGGACCGAATTGGGCGGGTCAAGACCTTCCTGACAGGCTACGCGATCATCTTCGCCTGGATGATTCCGATGTTCGCTCTGATCGACACCAAGGACATTTGGCTCTACGGCCTGGCCCTCTTTGTCCTCACGATCGGCCTGGGCCTGTCCTACGGTCCGATGTCCGCGATGTACGCCGAGATGTTCCCGGCTAATGTCCGCTACTCGGGCATCTCCATCGGATACGCCTTTGGCGCCATCCTGGGCGGCGCCTTCGCCGCAACCATCGCCGAAACACTGCTGCAGGCAACCAGGTGGACCGGGTCCATTGGCATCTACATCATGATCCTGTGCGTGATCTCGGCAGTTGGCGTCCTGCTGGCCAAGGAAACCAAGGGCCGGCCGCTGGGGGTAAGCCACCACTAGMTTPSKVDTLAGPSTRQEERKVLAGTLVGTTIEWYDFFIFAQLTATLLSPLFLAPLNESNPGLARILSFALIGISFLFRPLGAVVAGHLGDRLGRKAMLVFTLVMMGAATALIGMLPTYAQIGAWAPILLILLRIVQGFSAGGEWGGAALMAVEHAPLNKRGLFGAYPQIGVPIGMILATGLLFFLNSNMSREDFAAWGWRVPFLLSIVLIIVGYLIRRAVAESPVFQEMAARKKESKAPLGELIRSHKKPVLYSTMIFIANNAAGYLLIAFFIAYATRTLQMPTPQVLLATTLASFGWLIFTLAGGWLSDRIGRVKTFLTGYAIIFAWMIPMFALIDTKDIWLYGLALFVLTIGLGLSYGPMSAMYAEMFPANVRYSGISIGYAFGAILGGAFAATIAETLLQATRWTGSIGIYIMILCVISAVGVLLAKETKGRPLGVSHHPGPT0002956_607DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_SHIKIMATE_TRANSPORT,PGPT0002956-shiA-K08172NANA
D1-29_030701455COG23684-hydroxyphenylacetate 3-monooxygenase oxygenase componentATGGGCATCCGCACCGGCCAGCAATACCTGGACAAGCTCAATTCCATGAAGCCCCACGTAGTGATCGGGGGCGAGGTGGTCACCGAAAACATCGCGGAGCACCCTGCCTTCGCCAACGTGGCGCGCACCTATGCGCGGCTCTTTGATATGCAGCACGAGCCCGAATATGCACCGGCCCTGACCTATGAATCGCCCAGCACAGGGGATCAGGTCAGTGCCTCCTTCCTGATTCCGCGGACCAGGGAGGACCTAGCCCACCGCAGGGCGGCCATCCGGACCTGGGCGGAATACTCCAACGGCTTCCTGGGCCGCACCGGGGACTACATGAACAGCGCACTCACCGCCCTGGCCGGAGCTGAAAAATGGTTCGCGCAGGCGGATCCGATGTTTGGCGAAAACATCCGCGCGTACTACGAACAGTGCCGCGAGAATGACTTGCTGGCCACCCATACCCTCATTCCGCCGCAGGCCAACCGGTCCGTCTCCGGATCGGAACAAATGGGCGGCCAGCTTTCCGCTCGGGTGGTGGAGGAGCACGACGACGGCATTGTGGTCAAGGGCGCCAGGATGCTGGCAACCATAGGCCCGATCGCCGATGAACTGCTGGTGTTCCCGTCCACGCTTCTGCGGGCCACACCGGAGGACGCCCCCTACTCGTACGCCTTTGCAGTTCCCAATGATGCCGACGGCGTGCGCTACCTCTGCAGGGCATCGCTCCATCACGGCGGAAGCACGCACGATGAACCGCTGGCCAGCCGGTTCGAGGAAATGGACGCCGTGGTGGTTTTTGACAACGTCTTTATCCCCAGCGAGCGGATCTTTATGCTCGGCCACCCCGAACTCTGTAACGGGTTTTACTCCGAAACCGGCGCGGGGGCCCTGATGACGCACCAGGTGGTCACCCGGACCATCGCCAAGAGTGAGTTTTATCTGGGCCTGGCCTCCGAAATTGCTGATTCGATCGGCATTGACGGTTTCCAGCACATCCAGGAGGACCTTGCCGAGCTGATCCAAACCGTTGAGATCGGCAAGGCGCTGATGACGGCGTCCGAAGCTGAAGCAGCAGTGAACGACGACGGCGTGATGCTGCCCAGGTGGGCCACGCTCAACGCTGCCCGCAACTGGTACCCCAAGGTGGCCCAGCGGTTCCCGCAGATCATCCGAAAGTTCTGCGCCTCCGGGCTGATGGCCCTTCCCGGTGAGGCGGATGTGGCCAGCGAAGCCCTTCCGGACATCGAAATGTACCTGCAGGCCAAAACACTCACCGGCCCGGAACGTATCCGGCTGTTCAAACTGGCATTCGACGCCTGCATCTCATCGTTCTCGGGCCGGCAGGGGCTCTACGAGTACTTCTTCTTTGGTGACCCAGTCCGCATGGCCGGAGCGCTGGTGAACTCCTATGACCGGGATCCTGCCCGCGCCAGGGTCCGAGAGTTCCTGGCCCGCACTGAATGAMGIRTGQQYLDKLNSMKPHVVIGGEVVTENIAEHPAFANVARTYARLFDMQHEPEYAPALTYESPSTGDQVSASFLIPRTREDLAHRRAAIRTWAEYSNGFLGRTGDYMNSALTALAGAEKWFAQADPMFGENIRAYYEQCRENDLLATHTLIPPQANRSVSGSEQMGGQLSARVVEEHDDGIVVKGARMLATIGPIADELLVFPSTLLRATPEDAPYSYAFAVPNDADGVRYLCRASLHHGGSTHDEPLASRFEEMDAVVVFDNVFIPSERIFMLGHPELCNGFYSETGAGALMTHQVVTRTIAKSEFYLGLASEIADSIGIDGFQHIQEDLAELIQTVEIGKALMTASEAEAAVNDDGVMLPRWATLNAARNWYPKVAQRFPQIIRKFCASGLMALPGEADVASEALPDIEMYLQAKTLTGPERIRLFKLAFDACISSFSGRQGLYEYFFFGDPVRMAGALVNSYDRDPARARVREFLARTEPGPT0020455_583DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020455-hpaB-K00483NANA
D1-29_03071537nphA2NADH-dependent flavin reductaseATGATGTCCAAGCCGCGGAGCCAGCCGGAGCGTCCCGTCGCAGGCCGTGCCTCAGCGCCGCGGTTCCATCACTTCCGGGGCAGCCTGGGCCGGTTCGCCACCGGTGTAGCCATTGTGACTTTCGATGGTGCCACCAAACGCCACGGCATAACGGTCAATTCCTTCACCTCAGTTTCCATGGAACCGCCCCTGGTGCTGGTGGGCATCGCGCGAAGCGCCAAGGCCCATGATGAACTTGCAGGCCGGCCGTTTGCCGTGAACATCCTGGGCGCCGAACAACGCCAGCTTGCCATGCACTTCGCTGGCTGGCCAGGAGCGGAGCCCGTGTGGGTGGAAGGCGGAACCGCGCCGCGGCTCGCCGGGGTCCTGGCTTACTTCGAATGCACACCTTGGGCCGCATACGACGGCGGCGACCACACGCTCTACGTGGGGGAGGTGTCCGACTTCAACTACCGCAGGGGCGATGCCCTGGCCTTCGCCAACAGCGGGTTCACCACCATTCCTGAGAGCCAGCTTGGGATCGAGGAGCTCCTCTGAMMSKPRSQPERPVAGRASAPRFHHFRGSLGRFATGVAIVTFDGATKRHGITVNSFTSVSMEPPLVLVGIARSAKAHDELAGRPFAVNILGAEQRQLAMHFAGWPGAEPVWVEGGTAPRLAGVLAYFECTPWAAYDGGDHTLYVGEVSDFNYRRGDALAFANSGFTTIPESQLGIEELLPGPT0008700_4DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008700-C1_hpah-K23470NANA
D1-29_03072735hypothetical proteinATGAACCCCACAGCCGCCGCTTCTGCCGGGACAGCGCCCCCGCCGGCCTCGCCCTCGCAGACCCTTTCCCGGGGTATTCGCGCCCTTGAAATCCTGGCTGCTGCCCAGAACCCGTTGACCATTGCGGAGCTGGCAGATGCCATGGGGGTGCATCGTTCGGTGGCCTACCGGATTCTGCGCACCCTGGAGGACCACTCACTGCTGGTGCGCGACGACGCCGGACGGGTGCAGCCCGGCCCGGGACTTGCCGTGTTGGCGAGGGGTGTTTCCCGGAACCTTCAGGCTGCGGCGTTGCCTGAACTCACCCACCTGGCCAACACCCTTGACATGACAGCCTTCGTCACGGTTTGGGACCATCACGAATGCATCACCCTGGTGACGGTTGAACCACGGCATTCAGGGGCAACGGTGGCCCAGCACCCAGGCACGCGGCACCCCATCAATGCAGGGGCCCCCGGCATCGCCATCCAGTCTGCGCTGACCGAAACGGAATGGAATCAGCTCTCAACGGGCATTCCCTACAGGCCCGAGGCCGCGGAAGCCCGGCTGGCTGGGTATTCGACGAGCCACGATGAAGTCATTGCCGGCGTGTCATCGCTGGCGGCCCCTGTCCGGGTTCCGGGCGGCCGGCCGGCTGCGCTCGCCGTCGTCTACATCCGCTCCGCCCATGATCCCGCCACACTAGGCAAGGCACTCGCCGAAAGCGCGGCCAGGATCGAACGCCAGCTGGCATAGMNPTAAASAGTAPPPASPSQTLSRGIRALEILAAAQNPLTIAELADAMGVHRSVAYRILRTLEDHSLLVRDDAGRVQPGPGLAVLARGVSRNLQAAALPELTHLANTLDMTAFVTVWDHHECITLVTVEPRHSGATVAQHPGTRHPINAGAPGIAIQSALTETEWNQLSTGIPYRPEAAEARLAGYSTSHDEVIAGVSSLAAPVRVPGGRPAALAVVYIRSAHDPATLGKALAESAARIERQLANANANANANA
D1-29_030731386hypothetical proteinTTGAACTCTTCAACCCTCCCTTCCCAGACCTCCTCCACGGCCGTCGCGGAGACTCACGTCCCCACGGCCCGCCGAAGCAATCGGTTTGCCAGGCTGCCGCTCCTCGCCGGCCGCAGCTTCATACCACTCGGTTTGTTTGCCCGGCTGCCTCTGGCCATGCTCACTGTGGGTGCCCTCACCCTCACCACCTCTGTCTCCGGCTCCTACGCACTGGGCGGCATCGTTGCTGGTGCTGTCGGAATCGGCTCAGCACTGGGTGCACCGTTGCTCGGGGCGCTCGCGGACCGGCGAGGCCAGCGCCCCGTCCTCCTGGCCGCCGCAGTACTTAACGCGCTCGCTGTTACGGCGCTCATTGCGGTGGCCTCCGCCCTGGGTGCAGCCGGGTCTTTTCCCCTGGGAGTGTTTGCTGCGGCCTTCCTTGCAGGTGCAAGCTGTCCGCAGGTGGGTCCATTGGCCCGCGTGCGGTGGATGGCACTCACCTCCGGCGGCGCCCGGGCGGGGAACACCGCTGATCTGGATACGGCACTGTCCTACGAGAGCACGGCAGACGAGCTCACTTTCGTTTTGGGGCCGGCGCTGGTGGGAATCCTTGCCAGCCTGGTGGCGCCGTGGCTCCCGCTGGCCGTCGCCGCTGCCCTGACCATTACCCTGGTCCCGGCCTTCGCTGTCCACAGGACGCACAATGCGGTTCCAGGGAGCAGGGCGGTTGCACGTGGCAGTGAAGTTTCAGGAAACAGGGCGGTTCCACCTAGCAGTACAGATTCAGGAAACAGGGCCGTTCCACGTGGCAGTGCAGTTTCAGCCGCAGGCACTACGTTCCCGGCAGTTGCTGCCTTGCCCGTTCTGGCCATGGTCTGCATGGGGACCTTCTTCGGATCCACCCAGACAGCACTCAGCGCGTTCGGGGCCAGCTTCGCCAGTTCTGAGGCGGCCGGGCTGCTGTATGCAGTGATGGGGCTGAGTTCAGCGGCAACGGCCTTGTCGGTGGCCTACTGGCCGCGCGGGTTTGCAGTCTCCGTGCGCTGGCTCGTGTCTGCTGCGCTGATGACAGCGCTGTCCTTCCTGCTGCTGGTGCCGGCATCCGCAGGCGGCATGGTGGCGGTCCTGCTCATCCTGGGGCTTCCAGTCGGACCGCTGATGGTCACGGTCTTTTCCATCGGTGGACTGGTGGCCCCGGTGGGGCGCCTTGGAACCGTGATGACCGCCCTTGCCAGCGGAATCGTTGCCGGTACTGCCCTGGGATCGTCGCTGGCCGGCCAGCTCGCGCAGGTGCACGGATATGCTGCTGCTTTTCTGGTGACTGTGGGCGCCGCAATGGCGCTGTTGCTCCTCGGCCTGGCCACCGCCGTCGTACTCCGACGCAGGGATGCCAGAAGCAGCGGCTGAMNSSTLPSQTSSTAVAETHVPTARRSNRFARLPLLAGRSFIPLGLFARLPLAMLTVGALTLTTSVSGSYALGGIVAGAVGIGSALGAPLLGALADRRGQRPVLLAAAVLNALAVTALIAVASALGAAGSFPLGVFAAAFLAGASCPQVGPLARVRWMALTSGGARAGNTADLDTALSYESTADELTFVLGPALVGILASLVAPWLPLAVAAALTITLVPAFAVHRTHNAVPGSRAVARGSEVSGNRAVPPSSTDSGNRAVPRGSAVSAAGTTFPAVAALPVLAMVCMGTFFGSTQTALSAFGASFASSEAAGLLYAVMGLSSAATALSVAYWPRGFAVSVRWLVSAALMTALSFLLLVPASAGGMVAVLLILGLPVGPLMVTVFSIGGLVAPVGRLGTVMTALASGIVAGTALGSSLAGQLAQVHGYAAAFLVTVGAAMALLLLGLATAVVLRRRDARSSGNANANANANA
D1-29_030743039hypothetical proteinGTGAGGATTCATCGCCTGACGGTGGCCGCATTCGGTCCCTTCGCCGGCACAGAGGAAGTCGACTTCGACAGGCTCAGCGGGCACGGCCTGTTCCTGCTCAACGGACCCACCGGTGCCGGCAAGACCAGCGTGCTGGATGCCATTTGCTTCGCCCTCTACGGATCGGTGCCCGGCACACGGCAGGACGGCAAACGCCTCCGGAGTGATCACGCGGAACCAACCCGGGAGCCGGCGGTCACCTGCGAGTTTTCCGCGCAGGGCCGTCACTTCGAGGTCACCCGGTCCCCGGCCTGGGACAAGCCCAGCGCCCGCGGAAAAAACGGCTTCACCACCCAACAGGCCAAGACCCTCCTGCGGGAGAAGGTAGGCGGAGCCTGGACGGAAAAGTCAGGGCGGAACGATGAAGCCGGCGCGGAAATCACAGCCCTCCTGGGGATGGACCGGGATCAATTCACGCGCGTAGTGATGCTGCCCCAGGGCGACTTCGCGGCCTTCCTCCGATCCAAGGCCACCGACCGGCTGGAGCTGCTGCAGAAGCTCTTCGGCACCCAACGCTTTGAAGCCGTCGAGCAGGAGCTGGTGCACCAGGCGCAGGCCTCAAGGAACGACGTCGCCCGTCACAACGGGGAACTGGATCTGCTGGCATCCCGTGCCTGGTCTGAGGCAGCCGCCGTTGGCATTGACACCTCTTCGGCGCCGCCAGCTGAAGACGCAACCGCCAGGTTGGGTTGGCTCCACGCAGCTGTCGCCGAACGCGCCACGGCACTCTCCGGGGTGGCGGAGGACGCGGAAGCTACAAGCCGGCTGAAGGCCGCGGAACTGGAGACTGAGGCCGCGCGGACGGAGCGGCAGCGACGGCTCGCTGCCGCGTCGGCCCGGAAAGCCGCAGCAGAGTCCGCCCTTGCCCGGCTGCAGGACCAGGCGGCCCGCCTTGAACGGCACCGCCAGGCAGAAGTCCTCAGCGGGCACTTCCAGGCAGTGGACAGCAGCGAGGCCCAGCTGCGCCATGCCACCGGTGCCATGGAGTCTGCTTTCACCCTGCTGCGCATGGCAGCCGAAGAGGACGCGGAGCTCTCTGCTGCGGGTACATGGACTGCCAATGCCCCCGACGCTGCAGCCGAACTCAGCCGCCTGCGTTCCCTCCTGGCAGTTGTCGAAGGCCGGCTTCCTGATGAAGAGCGGCTCCACTCCCTCTCGGCGAGAAGTGCTGCGCTGAAGAAACGGCAGGCGGAACTTGCCGTTGAAGCAGCTGAGCTCAGCACCCTCCTGGGATCGCTCCGGACCGAACATGCAGGACTGTCCGCAGTCCTTGAGCCGCTGGAGGAGGCGGCTTCAGGTGCCGTCCTTCATTCCAAGGAAGCAACCGCAGCTGACGAATTGCTTGACGTAGTACGCCGTTATGGCTCCGCCGTCGAAGCGAAGGACCTGGCGAAGGATCGCCACGAGGAATTCCGCGGTGTCCTCCTGGAGAAGAAGAGCCGTTGGCTTGACCTTCGGGAGGAAAGATTGGCGAACGCTGCGGCGGAACTCGCGGCCGGGCTGACTGAGGGAAAGCCCTGCGCTGTCTGCGGAAGCCTGACCCATCCGGACCCGGCGGAGGCTGCCGCCTCAGCCTTGGGACTGGGGCAGGCGGAAGAAGACGCCCGCCTGGCCGTGGAGGCCGCGGAAACACGTCTCGCCGGCCTTGCCGCCAAGCTGGGGGAGGCCAGTCAACTGGTGGCGGTGCTGGCCAGCCAGGGCGGGAACACGCCGGAAGACCAGGCCGTGCAGGCGGCAGACACGGCGCGCCGGGCCGCCGCTGCCTCGCAGGACGCCGCGGACAAGGTCGCCGCCATCCGCGGGCAGCTGGAGGCGCTCGAGGCAAGAATGGCAGCCACCGAATCGGCACGCACCAAAGCAGAATCAGAACGTGCACAGGGGGCGTCCACGTTGTCCGAGGTGCTGGACCAGATGGCCTCCCTGGACCAGGCGCTCGCAGGCCTGCGCTCGGGTCACCGAAGCCTGGGCCACCGCCTGCGCTCCCTGCAGGATGCTGCCCGCACGCTTGAGAAAGCCGTGGACGCCCAGGTTCAGCTGGACAAGGCCAAGGCAAGGGTGGCCGACGCGGGCCGGCAGCTGGAACTTGCCTTGCCGGATGCCGGATTCAGCAGCGCCGACGAGGCGCGCTCCCAGCTGTTGCCAGGCGGCCAGGCAGCGTCGCTGCAGGCCGAGGTACGGGCAGGCCACGATGAACAGGCACGGATCGCCGAGCTTTTCGCCTCCGAAGACCTGGTGCTGGCCGCGGAGGAACAGTCGGCAGGCATCACAGTGGACGGGGCACGGTTGGCAGAGCTCCGCGCCCAGGCTTTGCAGGCCGAACAGGGAGCCCGTGAGGCCCATCTTGCTGCCGGGTTGGCGCTCCGGTCCCTGGAGTCACTGACGGCCATCCGGCAGGAATACGAGGACCTTGCCAGCTCCGGATGCGGCCCCAGGGAGCGTGCAGAGCTTCTGACTTCGCTGGCAGAAACCGCAACTGGCCGCGGCGACAACAGTTACCGCATGAGCCTGAACAGCTACGTCCTTGCCGCCCGCCTGGAGCAGGTGGCTTTGGCGGCATCAGAGCGGCTCGTAGCCATGAGCGACGGCCGCTACCTGCTGCAGCACACAGATGCGAAGGCCGCCCGCGGCGCCAAGTCCGGGCTGGGCCTGGAAGTGGTGGACCAATGGACAGGGCACCGCCGGGACACTTCAACGTTGTCCGGCGGGGAATCATTTATGGCGTCCCTTTCGTTAGCGCTCGGGCTGGCCGACGTCGTCCAGCAGGAAGCGGGCGGCATCCAGATTGAAACACTGTTCGTGGATGAGGGTTTCGGCAGCCTGGACGAGCAGTCTTTGGAACAAGTGATGGACGCCCTGGAAGGGCTTCGCGACGGCGGACGGGTTGTAGGTCTGGTCAGCCATGTCGCCGAAATGAAGCAGCGTATTGGAACGCAGCTGCAGGTGGTCAAGGGCCGCAACGGGTCCACCCTTCGCATCTCGGACGCCGCGGAGCTGCCCTGAMRIHRLTVAAFGPFAGTEEVDFDRLSGHGLFLLNGPTGAGKTSVLDAICFALYGSVPGTRQDGKRLRSDHAEPTREPAVTCEFSAQGRHFEVTRSPAWDKPSARGKNGFTTQQAKTLLREKVGGAWTEKSGRNDEAGAEITALLGMDRDQFTRVVMLPQGDFAAFLRSKATDRLELLQKLFGTQRFEAVEQELVHQAQASRNDVARHNGELDLLASRAWSEAAAVGIDTSSAPPAEDATARLGWLHAAVAERATALSGVAEDAEATSRLKAAELETEAARTERQRRLAAASARKAAAESALARLQDQAARLERHRQAEVLSGHFQAVDSSEAQLRHATGAMESAFTLLRMAAEEDAELSAAGTWTANAPDAAAELSRLRSLLAVVEGRLPDEERLHSLSARSAALKKRQAELAVEAAELSTLLGSLRTEHAGLSAVLEPLEEAASGAVLHSKEATAADELLDVVRRYGSAVEAKDLAKDRHEEFRGVLLEKKSRWLDLREERLANAAAELAAGLTEGKPCAVCGSLTHPDPAEAAASALGLGQAEEDARLAVEAAETRLAGLAAKLGEASQLVAVLASQGGNTPEDQAVQAADTARRAAAASQDAADKVAAIRGQLEALEARMAATESARTKAESERAQGASTLSEVLDQMASLDQALAGLRSGHRSLGHRLRSLQDAARTLEKAVDAQVQLDKAKARVADAGRQLELALPDAGFSSADEARSQLLPGGQAASLQAEVRAGHDEQARIAELFASEDLVLAAEEQSAGITVDGARLAELRAQALQAEQGAREAHLAAGLALRSLESLTAIRQEYEDLASSGCGPRERAELLTSLAETATGRGDNSYRMSLNSYVLAARLEQVALAASERLVAMSDGRYLLQHTDAKAARGAKSGLGLEVVDQWTGHRRDTSTLSGGESFMASLSLALGLADVVQQEAGGIQIETLFVDEGFGSLDEQSLEQVMDALEGLRDGGRVVGLVSHVAEMKQRIGTQLQVVKGRNGSTLRISDAAELPNANANANANA
D1-29_030751209sbcDNuclease SbcCD subunit DATGCGGTTATTGCACACATCCGACTGGCACCTTGGCCGGTCCTTCTACGGGGTTGGAATGCTGGACGCCCAGCGGTCGTTCGTTGATCAGCTCGTCAGCGCTGTCTCGGAACAGGGCGTTGACGTCGTCCTGATTGCCGGCGATGTGTATGACCGCGCCCTCCCCGGCGTGGATGTGGTTGACCTGCTGGATGATGCCCTGGTGCGGATAGCCTCAGCAGGGGCCAAGGTAGTGCTTACCAGCGGCAACCATGACTCCGCCATCAGGCTGGGGTTTGCCTCACGGCTCCTGGAACAGGGCGGTGTGCACCTTCGGACCCGGCTGGCCGATCTTGACCAGCCGCTGCTGCTGCCGCTTGATGACCGCGCCCAGTTTGATAGCCGCGCCCAGTTTGATGACCATGCCCAGGGAGCCGTGCTTGCCATCTATGGCATCCCCTGGCTGGAGCCCCGGCTTGTTGCCGAACAGCTGGGTGTGGACACAGCCACCCATTTTGAGGTCACCAGGGCAGCCACCGCGCTGGTCCGCCAGGACCTTGAACGGCGGAGGTCAGGCGGCACGGTCCATGCAGTGGTCCTGGCGCATACGTTTGCCAGCGGCGGCATCAGCTCGGACAGCGAACGCGATCTCAGCATTGGGGGAGTGGGTGCCGTTCCGCTGGATCTGTTCGACGGCTTCAGCTACACGGCCCTGGGCCACCTGCATGGCCGGCAGTGCCTTTCGCCGGAAGTGCGGTATTCGGGGTCTCCGCTGGCCTACTCCTTCTCGGAGGCCCGGCACACCAAAGGGGCCTGGCTTATCGACGTCGGCCCTGAGGGCGTGACGGACGTCACCGAACTTCTGTGGGAAGCGCCGCGGAAGCTGGCGGTGCTGCGCGGGGAGCTGTCAGACCTGCTGGAATCCGCAGAACATGCCTGGGCGGAGGATGCCTACTGCCAGATCACCCTGACCGACGCCCATCGGCCGGCCCAGGCCATGGAGCGCCTCCGCGCCCGTTTTCCGGACACGCTGGTTCTGGGATTCGATCCACAGGGCGGGGCGGCCAAAGTTCCCGCAAGCTACAGCAGCAGGCTGGCGCAGGCCCAGGATGACCTGTCCGTCTGCTGCGGCTTCCTGGAGCACGTGCGCGGACGCGATGCCACGGAGCCCGAGCGCCAGGCGCTGACCTCCGCACTGGACAACGTGCGGCTCCAGGAGGCATCGCTGTGAMRLLHTSDWHLGRSFYGVGMLDAQRSFVDQLVSAVSEQGVDVVLIAGDVYDRALPGVDVVDLLDDALVRIASAGAKVVLTSGNHDSAIRLGFASRLLEQGGVHLRTRLADLDQPLLLPLDDRAQFDSRAQFDDHAQGAVLAIYGIPWLEPRLVAEQLGVDTATHFEVTRAATALVRQDLERRRSGGTVHAVVLAHTFASGGISSDSERDLSIGGVGAVPLDLFDGFSYTALGHLHGRQCLSPEVRYSGSPLAYSFSEARHTKGAWLIDVGPEGVTDVTELLWEAPRKLAVLRGELSDLLESAEHAWAEDAYCQITLTDAHRPAQAMERLRARFPDTLVLGFDPQGGAAKVPASYSSRLAQAQDDLSVCCGFLEHVRGRDATEPERQALTSALDNVRLQEASLNANANANANA
D1-29_030761104aqpZ_2Aquaporin ZATGACCATGCCTGTTCGCGCCCATCATGCTCCTGACACCGGCCTGCCAGGTGTCGGCGCTGCCGAAGGCCGGCACGGACTGCCGGCGAGGCTGTCGGCGGAGGCGTTCGGGAGTCTTTTCGTGGTGGTGGCCGGCCTGGGCGTACCGCTGTTTTCAATCCCGCAGTCCAGCCCCTTGCCGGCCGCGCTGGCGGCAGGCCTTGCCATCACCGCCGCCATGCTTGCCTTTGGCTATGTGTCGGGCGGGCATTTCAATCCTGCAGTGACAGTGGGCAACGCAATTGCAGGCCGGATCAGCCTTGGCGAGGCGGCAGCCTACGTCGGTGCCCAGCTGATGGGCGGCCTGGTTGGCGCCCTGGCCCTTTTCGGCATCCTCCGCACGCTTCCCGGGATCCAGGACAGCCGGACAGCGTTCGACACCGTCACAGCGGGATTTGGTGAGCATTCCATCGTCCAGGCCCCGCTGGCCGGAGTCCTGCTGCTCGAAGTTGTCGGCAGTGCCCTCCTTGTTGCCGTTTTCCTGAGCGCCACAGCCCGGAACAACCTGAACAAGGCCGCCGCCCCGGTTGCCGTGGGCCTCGCCTTCGCGGTGCTGCTGCAGCTGGGCCAGGCCGTGGGCAATGCCCCTTTCAACCCCGCCCGCGCCACTGCATCGGCGCTGTTCAGTTCAAGCTGGTCGCTCGAGCAGCTGTGGGTGTTCTGGGTTGCCCCGCTGGTGGGAGCTGCCATTGCCGGGCTTGCCTTCCGCGGGTTTGGCGCATCCCCGGATTCTGCAGCAGGGTTGGCCGGCGCATCCGCCTTTGGGGATCACCACGCCGGGGATGGGCAGGACGCTGATGATGACGACCTGGATGACGATGACACGGACGACGACGACACGGACGACGTGACCCCCGGGGGCCGGGAGGACCTGACTTCTGCGGCAGAAGACGGGCAAGCAGGGTCTGTTACGCGGGCTCCCGCAACGCCGGCTGTCGCAACGCCGTCTGCCGGGCAGGTTCCGCCTCAGAAAGATGGCACGGCAGACGCCACGCGTGCCGAAGCCGACGGCGGCCGCAACGGCCGGGATGAGGCGCAGGACTTCTTTGAGGGAAAGAGCAGCTAGMTMPVRAHHAPDTGLPGVGAAEGRHGLPARLSAEAFGSLFVVVAGLGVPLFSIPQSSPLPAALAAGLAITAAMLAFGYVSGGHFNPAVTVGNAIAGRISLGEAAAYVGAQLMGGLVGALALFGILRTLPGIQDSRTAFDTVTAGFGEHSIVQAPLAGVLLLEVVGSALLVAVFLSATARNNLNKAAAPVAVGLAFAVLLQLGQAVGNAPFNPARATASALFSSSWSLEQLWVFWVAPLVGAAIAGLAFRGFGASPDSAAGLAGASAFGDHHAGDGQDADDDDLDDDDTDDDDTDDVTPGGREDLTSAAEDGQAGSVTRAPATPAVATPSAGQVPPQKDGTADATRAEADGGRNGRDEAQDFFEGKSSNANANANANA
D1-29_030771218hypothetical proteinATGTTGGCTGGGTCCACACTGGGCGCCGGTTCGGGCGGTGCTCACCGCCACGGTAAATTTACTGTCATGAGCACAGATCCCGGCCCCTTTGGCGTGCCCCAGCTGGCCTCCCGCATCCATGGCTGTCTCCTGGGTGGAGCCCTGGGTGATTCCTTGGGCTACGCCGTCGAGTTCGACTCGATCGAAACGATCCGCCGCCGCTTTGGTGCGGACGGGCTCACGGACTTTTCAGCGCTCGACGGCAGCAGCCACTTTTCGGACGACACCCAAATGACGCTTTACACCGTGGACGGACTGGTGGAGGCCATCGAATGGGCCAACTCCGGGGTGGGTGCGGACGTCAACGCCTGCCTGTGGCTGGCCTATCTCCGCTGGCTGGCCACGCAGGGCGAGGCTGCTCCGCTGTCCGCCCCGGTCCCCCAGCCGCGGTGGATTGACGCGCAGGAGGCGCTCAAGCACCGCCGCGCCCCGGGGAACGCCTGCCTCACCGGACTGGCAACAGGGGAAATGGGAACAACTTTCCGTCCCGTGAATCCACAGTCAAAAGGTTGCGGCACGGTGATGCGGTCTGCACCGTTTGGGCTGATCCCGCACATCACCCCCGACGCCGTCTACAAACTCAGTGCCGACGCCGCCTGCCTGACCCACGGACATCCCTCAGCCCGGCAGAGTGCGGGCAGTTTCAGCCTTTTGATCCACCGGCTGGTTTCCGGCGACAGCCTTCGCGCGGCGGCCGACGCGGTCCTCGCCGGGGTACACAGCATTGACGGAGTGGCCCCCGAACTGGTGCAGAGGCTGGAGGCAGCTGTGCGCCTTGGCCGCTCGGCGGTACTGTCCCCCGAGGACCTGGTGATGGAACTGGGCGAAGGCTGGGTCGCCGAGGAGGCACTCGCCGTCGGGCTTTACGCCGTACTGGTGACCGACCCAGCGCGGGATGCCGGGCCTGCCAACGAGGCTGGCACGGGGAACAATACGGACACTGCGAACAATTCGGACTCTGTCCTCCCCACTGCCGATCCCCGGGAGCATTTCCGGGCCGCCATGGCGGTAGCCATCAACCACAGCGGGGACAGCGACTCCACGGGATCCATCGCCGGAAATATCCTGGGAGCGTACTACGGCGAGCCGTGCCTGCCGGCGCCGTGGCTGGACGCACTTGAGGCCCAGGACGTCATCCGCGGAATGGCTGATTTGCTGGCAGGGGTTACGACCGCCTGAMLAGSTLGAGSGGAHRHGKFTVMSTDPGPFGVPQLASRIHGCLLGGALGDSLGYAVEFDSIETIRRRFGADGLTDFSALDGSSHFSDDTQMTLYTVDGLVEAIEWANSGVGADVNACLWLAYLRWLATQGEAAPLSAPVPQPRWIDAQEALKHRRAPGNACLTGLATGEMGTTFRPVNPQSKGCGTVMRSAPFGLIPHITPDAVYKLSADAACLTHGHPSARQSAGSFSLLIHRLVSGDSLRAAADAVLAGVHSIDGVAPELVQRLEAAVRLGRSAVLSPEDLVMELGEGWVAEEALAVGLYAVLVTDPARDAGPANEAGTGNNTDTANNSDSVLPTADPREHFRAAMAVAINHSGDSDSTGSIAGNILGAYYGEPCLPAPWLDALEAQDVIRGMADLLAGVTTAPGPT0001065_95DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001065-draG-K05521NANA
D1-29_03078471hypothetical proteinGTGTTTGCGTTCCCCAACCCGGTCAACGAATACGCTGCCCGGATCACGGCAGGGCTGGTGGTGCTGCTCGCTGTCGCTACGCTGCTGGCAGGCTCTGGCTGGGGCCTGCTGGTGATCGCCGCGGGATTCTGGCTGCGGGTGCTGTTTGGGCCACGGATATCGCCGCTGGCGCTGCTTTCGGTCAAAGTCCTGGCTCCCCGCCTGGGGCCGGCAAAGCTTGTTCCCGGACCGCCCAAGCGCTTCGCCCAGGGATTGGGCGCTTTTGTTTCCACCACCGCCCTGGTTCTGTTCCTTGCCGGCGCCGCTCCTGCGGCGTGGGCCGTCCTGGCTGTGCTGGTCGCGGCGGCATCACTGGAGGCGTTTGCCGGATTCTGCCTGGGCTGCGTCATCTTCGGGTTGCTTCAGCGCCGCGGCCTCATTCCTGAGGACATTTGCGAGGCATGCAACAACATTCCGCTCAGGCGGTCGTAAMFAFPNPVNEYAARITAGLVVLLAVATLLAGSGWGLLVIAAGFWLRVLFGPRISPLALLSVKVLAPRLGPAKLVPGPPKRFAQGLGAFVSTTALVLFLAGAAPAAWAVLAVLVAAASLEAFAGFCLGCVIFGLLQRRGLIPEDICEACNNIPLRRSNANANANANA
D1-29_030791029dinG_23'-5' exonuclease DinGGTGTGGCGCGTGAGTTTGGACTTTACGGCGATCGACTTCGAGACTGCCAACGGCTTCCGAGGTTCGCCGTGCGCGGTGGGCCTTACAAAGGTACGTGGCGGGCAGGTGGTGGAGGAGGCGTCCTGGCTGATGCGCCCGCCCCGTAACCATGATCACTTTGACCACCACAACGTGAGGATCCACGGCATCCGTGCCCTGGATGTTGCAGGGCTTCCCCGATTCGGCGAGCTTTTTCCCGAAATCGGCGCCTTCATCGGTGATGACATCCTGGCCGCCCACAATGCCGCTTTTGACATGGGTGTCATCCGCTCCGGCCTTGAAGTTTCCGGCCTGCCCGGCCCGGCCTACGACTACGTCTGTACCGTGATGCTTTCCCGGCGCTGCTATTCCCTGGTTTCCAATTCCTTACCGTTTGCGGCAGAGGAAGCGGGAGTCCCGCTGGTCAACCATCACGATGCCGCCGAGGACGCGCGCGCCTGTGCCGGCATCCTGATCGACATCGCGTCGCGCAACGGCGCCAACAGCATCGCGGAGCTCTACCTGTCGCTGGGACTCTCCTTGCCCCATCAGCAGGCGTTCGATCCGGCAACGGAACCCCTGTCCAAATCAAGCCTCACAGCCATCGCCGGTGCCTCTCTTTCCGGCGGGTCCGGTGGGGCGTTGGTCCAGGGCTTCCGCTCCGGCTGGCCCGAGGAGGGAGCCAATCCCGTTCCCAATGCTGATGCCGAACCGGACCACCCGCTGTACGGCCAGACCGTCGTCTTCACGGGCCAGCTCGCCATGGGGCGGCCGCAGGCAAAGGTCCTCTCGGCGGAATTGGGCGCCCGGCCTGAAAGCCGGGTGACAGCCCGCACTACGGTGCTGGTGGTCGGAGACGGCTTTGTGGCATCTGACCTCCGCTCCGGCAGGCTGACAGGTAAGGCGCGGCGCGTCCTGGAGCTCCATGACCGCGGCCAGCTGATCGAGGTGCTGTCCGAAGGGGAGTTCCTGCAGATGGTGGGCGGTTACACGGCAGCGGCCAGTGCCTAGMWRVSLDFTAIDFETANGFRGSPCAVGLTKVRGGQVVEEASWLMRPPRNHDHFDHHNVRIHGIRALDVAGLPRFGELFPEIGAFIGDDILAAHNAAFDMGVIRSGLEVSGLPGPAYDYVCTVMLSRRCYSLVSNSLPFAAEEAGVPLVNHHDAAEDARACAGILIDIASRNGANSIAELYLSLGLSLPHQQAFDPATEPLSKSSLTAIAGASLSGGSGGALVQGFRSGWPEEGANPVPNADAEPDHPLYGQTVVFTGQLAMGRPQAKVLSAELGARPESRVTARTTVLVVGDGFVASDLRSGRLTGKARRVLELHDRGQLIEVLSEGEFLQMVGGYTAAASANANANANANA
D1-29_03080792COG0586putative membrane proteinGTGAACCTTCTTGCGATCAGTGACTTTGCCGTGCCCATGCTGGGCGGTGCGGGACCGGTCCAGCCACCGCTGGCCTCCTTCCTGCCCGACTGGCTGAACCCTCAAATTTTCCTTGCTGACCCAGCATTGGCCCCCTGGGTTGTGCTGCTGGTCTGCGGCATCGTCTTTGCCGAAACAGGCCTGCTGGTGGGCTTCTTCCTGCCGGGCGATTCGATGCTGTTCACGGCAGGACTGCTGGTTGCCACCGACACCATCAAGTTCAATGTCTGGCTGTTCTCGCTGCTGATTATTGTCGCGGCTATCATCGGCAACCAGACCGGCTACCTGATCGGGTCCAAGGCCGGCCCGGCCATCTTCAACAAGCCGAATTCCCGGCTGTTCAAGCGGGAAAACGTTGAAAATGCCCATGCTTTCTTCGAAAAGCACGGCGGCAAGGCGCTGATCCTCGCCCGCTTCGTCCCCATCATCCGCACGTTTGTGCCGGTCATCGTGGGCGTTGCCCAGATGAACAAGAAGAAGTTCTTCCTCTTCAACGTGATCGGCGCAGTCCTCTGGGGCGGCGGCGTCACGCTCCTCGGTTACCTTTTGGGCGACAGGATTCCCTGGGTCCGCGAGAACCTGGACATCATCTTCATCGTCATCGTGCTGGTCTCGGTGATTCCCATCGGCATTGAAGTGCTCCGGGGAATCTCGGCCAAGCGCCAGGCGACTGCCTTTGGAACCGATCCCGTTGATGAGTTCATCGAGGAACATGCTCCTGAGGACGAGCGGAAGACGAACCCCAAGCACTAAMNLLAISDFAVPMLGGAGPVQPPLASFLPDWLNPQIFLADPALAPWVVLLVCGIVFAETGLLVGFFLPGDSMLFTAGLLVATDTIKFNVWLFSLLIIVAAIIGNQTGYLIGSKAGPAIFNKPNSRLFKRENVENAHAFFEKHGGKALILARFVPIIRTFVPVIVGVAQMNKKKFFLFNVIGAVLWGGGVTLLGYLLGDRIPWVRENLDIIFIVIVLVSVIPIGIEVLRGISAKRQATAFGTDPVDEFIEEHAPEDERKTNPKHPGPT0004890_147DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
D1-29_03081678COG0127dITP/XTP pyrophosphataseGTGAGCCTGCCGGATCCCGGAACCGCTGGGCAGGGCGGGGCGGCTCCCCGTCTGGTCCTGGCAACCCACAACAAGGGCAAACTGAAGGAGCTGCGGGAGATCCTCCGCGGGCAGGTCCCCGGACTCGACGTAGACACCCAGGTGGTGGATGCCGCCGCGGCGGGTGCGCCGGACGTCGTCGAGACAGGAATCACCTTCGCCGAGAATTCGCTGTTAAAGGCACGCGCGGTTGCCGCCGCCACCGGACTGGTGGCCATCGCTGACGATTCAGGGCTGGCCGTGGACGTCCTGGGCGGCGCCCCGGGCATTTTCTCCGCAAGATGGGCCGGAAGGCACGGTGATGACGCAGCCAACCTCAGGCTCCTGCTGGACCAGCTCTCCGATGTGCCGGATGAGCACCGCGGTGCCGCCTTTGTCTGCGCCGCGGCGCTCGCCGTTCCAGGGGAGGTGGATGGCGGGGAACGCCGTGAAGTGGTGGAGTACGGCCAGCTTGAAGGCGTCCTCCTGCGCGAACCGCGGGGCGACGGCGGTTTTGGCTACGACCCCGTGCTGCAGCCGGCAGGTGAGGCCCGCAGTTGCGCCGAACTGTCGCCCGCTGAGAAGAACGCCATCAGCCACCGTGGAAAGGCCTTCAGGGCGCTGCTCCCGGCGATCGTCGAGGCACTGGGCGGGCGCTGAMSLPDPGTAGQGGAAPRLVLATHNKGKLKELREILRGQVPGLDVDTQVVDAAAAGAPDVVETGITFAENSLLKARAVAAATGLVAIADDSGLAVDVLGGAPGIFSARWAGRHGDDAANLRLLLDQLSDVPDEHRGAAFVCAAALAVPGEVDGGERREVVEYGQLEGVLLREPRGDGGFGYDPVLQPAGEARSCAELSPAEKNAISHRGKAFRALLPAIVEALGGRPGPT0021590_1201DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
D1-29_03082759rphCOG0689Ribonuclease PHATGACTTCTGAAGCAACCGCAGTTCCTGTCGTGCGCGCGGACGGCCGCGCTCCCGACCAGCTCCGTCCCATCAGCATCACCCGCGGATGGTCCAAGCAGGCCGAAGGATCGGCCCTGATCGAGTTCGGCAACACCCGGGTGCTGTGCACGGCTTCCCTCACCGCGGGTGTGCCCCGCTGGCTCAAAGGCGAAGGCCGCGGCTGGGTCACAGCTGAATACGCCATGCTGCCGCGTGCCACCAACACCCGTTCGGACCGTGAATCAGTCAAGGGGAAAATCGGCGGCCGCACCCATGAGATCTCCCGGCTGATCGGCCGTTCGCTGCGCTCCATTATTGACACCAAGGCCTTGGGCGAGAACACGATAGTGCTGGACTGCGATGTCCTCCAGGCCGACGGCGGTACGCGCACAGCCGCGATCACCGGGGCCTACGTTGCCCTCGCCGACGCCATCCGGTTTGCCCGGGACAACAAGCTGATCGCCAAGAACGCCCAGCCCCTGGTGGACACCATTGCCGCCGTATCGGTGGGCATCATCGACGGCATCCCCATGCTGGACCTGCCGTATGTTGAGGACGTCCGGGCCGAGACCGACATGAACGTCGTCGTCACGGGGTCGGGGAAGTTCGTGGAGGTCCAGGGCACCGCCGAGGGCGCACCGTTCGACCGTGATGAACTGAATAAGCTGCTGGATCTTGCGCTGCTGGGAACCACCCAGCTGGCCGCCATTCAGCGTGAGACGCTCGCGGACGCCCTGTGAMTSEATAVPVVRADGRAPDQLRPISITRGWSKQAEGSALIEFGNTRVLCTASLTAGVPRWLKGEGRGWVTAEYAMLPRATNTRSDRESVKGKIGGRTHEISRLIGRSLRSIIDTKALGENTIVLDCDVLQADGGTRTAAITGAYVALADAIRFARDNKLIAKNAQPLVDTIAAVSVGIIDGIPMLDLPYVEDVRAETDMNVVVTGSGKFVEVQGTAEGAPFDRDELNKLLDLALLGTTQLAAIQRETLADALPGPT0021590_9DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
D1-29_03083798COG1234putative proteinGTGAAGCTCACCATCGTCGGCTGTACAGGTTCCTTCCCCGGCCCCGGCTCGCCGGCGTCGTGCTACCTCCTGACGGCCCACGACGGCGAGCGGACCTGGAAGATCGTGATGGACCTCGGCAGCGGTGCGCTGGGCGCGATCCAGCGCTACACCGATCTTGAAGACATCGACGCCATCTTCCTGACTCACCTGCATCCGGACCACTGCATGGACCTGTGCGGGCTCCACGTTGCGGTGCGCTGGAAGCCCGGCGGATGGGGCCGCGGCCGAATCCCGGTCTGGGGACCGGCGGCGACGGCAGACCGGATGGCAACGGCGTACGGACTGGAACTGGATCCGGGCATGCATGAGGAATTCGACTTCACCAACTGGACCGAGAGGGAGTCCGTGAAGCTGGGACCGTTCACCGTGACTCCGTTTGCCGTCAACCATCCGGTGGAGGAGGCCTATGCCCTCCGGGTGGAGGCCACCGAACCGGATAAGGAGGGCAACCTGGTCTCACGGGTCCTGACGTACTCAGGGGACACTGACTCCTGTGCCGGGCTGGAGGAAGCCGCCAAGGACGCGGACCTGTTCCTCTGTGAAGCTGCCTTTGAGGAAGGCCGGGACGACGGCATCAAGGACGTGCACCTGACCGGAAAAAGGGCCGGTGAGGCGGCTGCCGTGGCCGGAGCCCGGCGGCTTCTGCTGACCCACATTCCCGTCTGGACTTCCCAGACAAAAGTCATGGCCGAGGCGAGGCCGGTTTTCGGCGGCGACGTGGCGGTCGCCGTGGCCGGGGTGCATTACACCATTTAGMKLTIVGCTGSFPGPGSPASCYLLTAHDGERTWKIVMDLGSGALGAIQRYTDLEDIDAIFLTHLHPDHCMDLCGLHVAVRWKPGGWGRGRIPVWGPAATADRMATAYGLELDPGMHEEFDFTNWTERESVKLGPFTVTPFAVNHPVEEAYALRVEATEPDKEGNLVSRVLTYSGDTDSCAGLEEAAKDADLFLCEAAFEEGRDDGIKDVHLTGKRAGEAAAVAGARRLLLTHIPVWTSQTKVMAEARPVFGGDVAVAVAGVHYTINANANANANA
D1-29_030841068murIGlutamate racemaseATGGCTGAGGGGTCCGGGAAGACCTATCCTCGAATAATCATGACAACAGCCTCGAGCATGGACCCGTCAGCAGCAGCTGCATCCGGGTCCCCAGCCAGCACCACCCCCGGCGGTCTCCTGGGATCCCGGCCCATCGGCGTCTTTGATTCCGGCGTGGGCGGACTGACAGTGGCACGGTCCATCATCGACCAGCTCCCCAACGAGTCCATCCTGTACGTCGGGGATACGGCGCACGGGCCGTACGGACCGCTGCCGATCGCCGAAGTCCGGGCGAACGCCCTTGGTGTGATGGACGAACTCGTGGATTCCGGCGTTAAGCTGCTCACCATAGCCTGCAATTCGGCGTCGGCCGCTGTCCTCCGTGATGCCCGCGAGCGGTATACGGCACGGTACGGAATTCCTGTCATCGAGGTGATCCAGCCAGCCGTCAGGCGTGCCGTGGCGGCCACACGCAGCGGCAGGATCGGCGTCATAGGCACGTCCGCGACGGTGGGCTCCCGGGCCTATGAGGATACTTTCGCGGCCGCGCCTGACCTGGACATCACCTCCGTTGCCTGTCCTGAATTCGTCAGCTATGTGGAGGCCGGCATCACCACGGGGCCGGCGCTGCTGGCTGTCGCGGAGGAATACCTGGCCCCGCTGAAGACTGCGGGGGTGGATACTCTGGTGCTGGGCTGCACACACTATCCATTGCTCACCGGTGTCATCTCCTACGTCATGGGCGAGGACGTCACCCTGGTTTCGAGCGCCGAGGAAACGGCCAAGGATGTGTACCGTGCCCTGGCCACCCACGATCTTCAGCGGACAACGCCAACACCGCCGGAGCACCACTTCATCGCTACCGGTGACGCCGGCCAATTCGAGGCATTGGCCCGCCGTTTCCTGGGACCTGAGGTCCTGTCTGTGCGCCACGTTGATCATGTGGCCGCGCAGTACCCCACTGGCAGCCTGGCCAGGATCACCCCCGAGATGATTGCCGCCGCGCAGGGGGCCTCGGCGGCACGCGCCACGCCGCGGCCCCGGATCTCCAATTTTGTGGGCAACGGAACCGGAGGTTCCGGCCTGTGAMAEGSGKTYPRIIMTTASSMDPSAAAASGSPASTTPGGLLGSRPIGVFDSGVGGLTVARSIIDQLPNESILYVGDTAHGPYGPLPIAEVRANALGVMDELVDSGVKLLTIACNSASAAVLRDARERYTARYGIPVIEVIQPAVRRAVAATRSGRIGVIGTSATVGSRAYEDTFAAAPDLDITSVACPEFVSYVEAGITTGPALLAVAEEYLAPLKTAGVDTLVLGCTHYPLLTGVISYVMGEDVTLVSSAEETAKDVYRALATHDLQRTTPTPPEHHFIATGDAGQFEALARRFLGPEVLSVRHVDHVAAQYPTGSLARITPEMIAAAQGASAARATPRPRISNFVGNGTGGSGLPGPT0020200_24DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776NANA
D1-29_03085567hypothetical proteinGTGGCTAAGGCATTCAAGTACGGACTCAAAGGCATCACAGGGTTCCTGGAGCCAGCCGAGCGCGAACTCCTCCGCAGCCTGATTGATGACGTCATCTCCATGCTTGAGCCGGAGGAACGGGCCAACCAGGATCCGCTGGCGGCAATGATCGGGCTGGACATGGACGTCCGTGAGCCCACGGACCGCGCCGTGAAGCGGCTCCTGCCCAACGTCATGAAAAACGACGACGGCGCGTCGCTGGAGTTCCGCCAGCTCACCGAGCGAGCGCTGCGCGAGACAAAGATCGGCGCCCTGCGGGCGGCCGCACTGGATCTTGACAAGGACGAAATCGTGCTGACTCCGGAAGGCGCCCGGCACTGGTCCATGGCGCTGAACGACGTCCGCCTGGTGCTGGCCGAGCGGCTGGACATCCGGGACGAGGAGGACGCCGAACACGTCCACCTGATGCAGGACTGGTCCCAGGCGGAGGACGTGGAGAGCTACCTCGCCCTGGTCTACAACTTCGCCACGTGGCTGCAGGAATCGCTGGTCCAGGCGATGCTCACGTCCATGGACGCCAGGGCGTAAMAKAFKYGLKGITGFLEPAERELLRSLIDDVISMLEPEERANQDPLAAMIGLDMDVREPTDRAVKRLLPNVMKNDDGASLEFRQLTERALRETKIGALRAAALDLDKDEIVLTPEGARHWSMALNDVRLVLAERLDIRDEEDAEHVHLMQDWSQAEDVESYLALVYNFATWLQESLVQAMLTSMDARANANANANANA
D1-29_03086384clpSATP-dependent Clp protease adapter protein ClpSATGACTTCAAGCGTTGCGCTCGGCCCTGAGACCCAGGAGGGCACCCGGACCGGAACAGAAACGTCCCAGGGTTCCCTGACCGCACCGGACATCCCGTGGAACCTGGTGATCTGGAACGATCCCGTAAACCTGATGAGTTACGTCAGCTACGTGTTCCAAAGCTATTTTGGCTACCCGGAGAGCAAGGCCAACAAGCTCATGATGGAAGTCCACAAGAAAGGCCGCTCCATTGTTGCCCACGGCAGCAAGGAGCAGGTTGAGCGGCACGCTGTCGCCATGCACGGCTTTGGCCTGTGGGCCACCGTTGAACAGGCAAGCGGCGGACGCGGCGGCAACCCGGGGAAACCGGGCGGCTCCGGGCAGGGCAAGGGAAAACGTGGCTAAMTSSVALGPETQEGTRTGTETSQGSLTAPDIPWNLVIWNDPVNLMSYVSYVFQSYFGYPESKANKLMMEVHKKGRSIVAHGSKEQVERHAVAMHGFGLWATVEQASGGRGGNPGKPGGSGQGKGKRGNANANANANA
D1-29_030871263pncB1COG1488Nicotinate phosphoribosyltransferase pncB1ATGCTGCAGGCGTCGCTTCATTCGGGCGCGGCGCACCGGAAATCCGTCTTCGAAGCTTTCACCCGGCGGCTGCCGGACGGGCGGCGGTATGGGATTGTTGCCGGAACGGGACGGCTGCTGGAAGGCATCGCCAGTTTCCGTTTTGGTGACAGCGAGCTGGAATTCCTTGAGCGGACCGGCGTAGTCAACCAGGACACGCTGGACTATCTGGCCGGTTACAGGTTCTCGGGGGACATCTGGGGATACCCCGAAGGCGAGGCGTACTTCCCCCACTCCCCCATCCTGATTGTGGAGTCGACGTTCGCCGAGGCCTGCATCCTGGAGACCTATCTGCTCTCGGTCCTGAACCATGACAGCGCCATCGCCTCGGCAGCCTCCCGGATGATTTCCGCAGCCGGCAACCGGCCATGTATTGAAATGGGTTCCCGCCGGACCCATGAGGAGGCGGCCCCGGCCGCCGCCCGCGCCGCTTTTATCGCCGGCTTCGACAGTACGTCCAACCTTGAGGCCGGCTTCCGGTATGGCATCAGGACAGTGGGCACGGCGGCGCACTCCTTCACGCTCCTGCACGACAGTGAGCAGGATGCCTTTGAGGCCCAGGTGGCCTCACTGGGCGCCGGGACGTCCCTCCTCGTGGACACGTACGACGTCGAAACGGCGGTCCGCGCGGCTGTGGACCTGGCAGGACCCAAGCTGGGGGCAGTACGCCTCGATTCCGGGGATCTCGTGGCGCAGGCCCAATGGGTCCGCCAACTGCTGGACGACCTGGGCAACGTGAACACCAAGATCGTCGTGACGTCTGACCTTGATGAATTCGCCATCGCAGCGCTGCAGTCCGCGCCCGTGGACTCCTACGGGGTGGGAACATCACTGGTGACCGGGTCCGGGGCACCCACCGCCAGTATGGTCTACAAGCTGGTCAGCCGCACCGACGGCGCCGGCAACTTCGTTTCGGTGGCGAAATCCGCCAAGAACAAGGCCAGCAAGGGCGGGCGCAAGTACGCCCTGCGCAGGCTCAATGAACACGGCATCGCAAGTGAGGAAATCGTAGGGATTGGGCACCGGCCCGAGGACGACGGCAACGACCGCCCGCTGCTGGAGCAATTCATGAAGAACGGCGAGCTGCTGCCGGGCTGGACCGGCCACGAGGGTGTGCTCCGCGCCCGTCAGCGGCACGCCGACACCATGGCCGAACTGCCGCCGGTGGTCAACCGGCTCCAGCGCGGCGAGCCCGCCATCCCCACCACTTATGAGGAGAACTAAMLQASLHSGAAHRKSVFEAFTRRLPDGRRYGIVAGTGRLLEGIASFRFGDSELEFLERTGVVNQDTLDYLAGYRFSGDIWGYPEGEAYFPHSPILIVESTFAEACILETYLLSVLNHDSAIASAASRMISAAGNRPCIEMGSRRTHEEAAPAAARAAFIAGFDSTSNLEAGFRYGIRTVGTAAHSFTLLHDSEQDAFEAQVASLGAGTSLLVDTYDVETAVRAAVDLAGPKLGAVRLDSGDLVAQAQWVRQLLDDLGNVNTKIVVTSDLDEFAIAALQSAPVDSYGVGTSLVTGSGAPTASMVYKLVSRTDGAGNFVSVAKSAKNKASKGGRKYALRRLNEHGIASEEIVGIGHRPEDDGNDRPLLEQFMKNGELLPGWTGHEGVLRARQRHADTMAELPPVVNRLQRGEPAIPTTYEENPGPT0013375_2379DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
D1-29_03088639pncACOG1335Nicotinamidase/pyrazinamidaseATGTCCCGGGCCCTGATCATCGTTGACGTCCAGAACGACTTTTGCGAAGGCGGTTCCCTTGCCGTTGCCGGCGGCGCCCACGTCGCCGGGGCAATCAGCGACTACGTCGACGCCCACCATCTTGAATTCGACCACATTGTTGCCACCCAGGACTGGCACATTGATCCCGGTGCGCACTTCTCGGACTTCCCCGACTTCAAGGACAGCTGGCCCCCGCACTGCGTGGCCGGAACCCGTGGCGCTGAACTCCATCCGGACCTGGACACCGAATACATCCAGGCCTATTTCCAGAAGGGACAGTTCGCGGCAGCCTACTCTGGATTCGAAGGCCTTCTGGCCCCTGAGGACGCCGTTCCCACCGGAGAGCGCCAGCCTGCGGCGGTCGCTGACGATATCAGCCCCGATAATTTCCCGCCCTCGGACGAAGCGATCGGCCTTGATGACTGGCTCCAGAGCCACGACGTCGAGGACGTTGTGGTGGTGGGGATCGCCACGGACTACTGCGTGATGGCCACATCCCTGGACGCCGTGCAGGCGGGCTACTCCGTCACTGTCATCCGCTCGCTCACCGCCGGAATCGCGGACGACCTGGAAGACGCTGTTGCCGAGATGGAGCTGGGCGGAGTCGACGTCCTCTGAMSRALIIVDVQNDFCEGGSLAVAGGAHVAGAISDYVDAHHLEFDHIVATQDWHIDPGAHFSDFPDFKDSWPPHCVAGTRGAELHPDLDTEYIQAYFQKGQFAAAYSGFEGLLAPEDAVPTGERQPAAVADDISPDNFPPSDEAIGLDDWLQSHDVEDVVVVGIATDYCVMATSLDAVQAGYSVTVIRSLTAGIADDLEDAVAEMELGGVDVLPGPT0013470_612DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281NANA
D1-29_030891794hypothetical proteinGTGACGGAAACACTCTTTGGCGGTCCCACCCTGCCTCCGGCCTATCCGGAACGCGCAGCCTGGGGAACCGCCCAGAAACTCCGTGCCTGGCAGCAGCAAGCGCTTGACCTCTACTTCCGGACCAGTCCCAGGGATTTCCTTGCAGTGGCGACGCCCGGGGCCGGCAAGACCACCTTCGCGTTGCGTGTTGCCTCCATGCTCATCGAATCCGGTGCCGTCAACAGGGTGACCATCGTCGCCCCCACCGATCACCTCAAAAGGCAATGGGCAGACGCTGCGGCCCGTGTGGGAATCGCCATCGATCCCAACTTCAAGAACTCCGACGGGCAGCACGGCCGCGGGTTTGTGGGAGTTGCTGTGACGTACGCGCAGGTTGCAAGCAAACCCCTGCTGCACCGTGCCAAGACTGAAGCTGCCCGCACCCTGGTGATCCTTGACGAGATCCATCACGGCGGCGAGGCACTGTCCTGGGGCGACGGACTTCGCGAGGCCTTCGATCCGGCCATTCGGCGCCTGTCCCTGACAGGTACCCCGTTCCGCTCTGATACCTCACCCATTCCCTTTGTGGAGTACGCGGAGGACCGGGACGGCATCCGGCGCTCCAAAGCCGATTACACCTACGGCTACGGCAACGCCCTCCGGGACCACGTGGTGCGTCCGGTGATGTTTATGGCTTATTCGGGCCAGATGCGCTGGCGTACCAGTGCTGGGGAGGAGATGGCGGCATCCCTCGGTGAAGCCGCGGTGACCAAGGACGTCACGTCGCAGGCGTGGCGGACGGCCCTGAATCCTACCGGAGAGTGGATTCCCGCTGTCCTGGCCGGTGCCGACAAGCGTCTCAGTGAGGTCCGCCGGACCGTCCCCGACGCCGGCGGCCTGGTCATCGCCACGGACCACGATGATGCCAGGGCCTACGCGGGCCAGCTGAAAAGGATCACCGGTGAATCACCCACCGTCATCCTTTCCGATGACGCGAAAGCCTCCAGCAAGATCGAGGAGTTCACGGCAAGCGAGAAACGCTGGATGGTGGCCGTCCGGATGGTGTCCGAAGGCGTCGACGTTCCCCGGCTGTCCGTGGGCGTCTATGCCACCTCCACCTCCACGCCGCTGTTCTTCGCCCAGGCAGTGGGCCGCTTTGTGCGTGCCCGCAAGCGGGGTGAAACGGCGTCTGTCTTCCTGCCGTCGGTGCCGCAGCTGATGGCTTTGGCCAACTCCATGGAGGCCGAGCGGGACCACGCATTGGACCGGCCGGAGAAAGAGGACGGCGACGGCCTTTTCAACCCCGAAGACTCGCTGATGGCCGAGGCCAACCGCGAAGACAAGGCCTCGGACAGCCTCACCAAGGGAAAATTCGAGGCCCTGGATTCGCAGGCATCGTTCGACCGGGTACTTTTCGACGGCGGCGAGTTCGGCACCGGGGGAGAAGTGGGCTCAGAGGATGAGCTGGATTTCCTCGGGATCCCCGGCCTGCTTGACGCCGAACAGGTGGGAACCCTCCTTCGCCAGCGCCAGCACGAGCAGCTGAACAGGAAGAACCGCAGGACACCACCGGCCTCGGCTGACGCTGCCCCCGGTGCAGCACCTGGCATACCCGACCACCGGATGCTGATGGACCTGCGCAATGAGCTGGCCAAGAATGTTGCGGCCTGGTCCGCCCGGACAGGAACCCCGCATGGCGTCGTCCACACGAAGCTCAGGACGGTCTGCGGCGGCCCCCCGGTGGCACAGGCAAACGAGGAGCAGCTGCAGTCCAGGCTGCGCAAGCTGCAGGACTGGTTTATCGGGCGGAAGTAAMTETLFGGPTLPPAYPERAAWGTAQKLRAWQQQALDLYFRTSPRDFLAVATPGAGKTTFALRVASMLIESGAVNRVTIVAPTDHLKRQWADAAARVGIAIDPNFKNSDGQHGRGFVGVAVTYAQVASKPLLHRAKTEAARTLVILDEIHHGGEALSWGDGLREAFDPAIRRLSLTGTPFRSDTSPIPFVEYAEDRDGIRRSKADYTYGYGNALRDHVVRPVMFMAYSGQMRWRTSAGEEMAASLGEAAVTKDVTSQAWRTALNPTGEWIPAVLAGADKRLSEVRRTVPDAGGLVIATDHDDARAYAGQLKRITGESPTVILSDDAKASSKIEEFTASEKRWMVAVRMVSEGVDVPRLSVGVYATSTSTPLFFAQAVGRFVRARKRGETASVFLPSVPQLMALANSMEAERDHALDRPEKEDGDGLFNPEDSLMAEANREDKASDSLTKGKFEALDSQASFDRVLFDGGEFGTGGEVGSEDELDFLGIPGLLDAEQVGTLLRQRQHEQLNRKNRRTPPASADAAPGAAPGIPDHRMLMDLRNELAKNVAAWSARTGTPHGVVHTKLRTVCGGPPVAQANEEQLQSRLRKLQDWFIGRKNANANANANA
D1-29_03090342hypothetical proteinATGGATGCCATGACTAGCATGACGGACCCTCTCGAAAACGACCCAATGCGCGAGCTTTCCGGGGCTGGAACGTCCACGGCCACCATTGAGCGCGAGGAACTGCGCCAGGAAGTGGAGCCCGGCGACCGGGAACGCTTCTCGCACTACGTTCGCAAAGAAAAGATCATGGAATCCGCGCTGACGGGCGAGCCTGTCATTGCCCTGTGTGGCAAAGTGTGGACGCCGGGCCGGGATCCGCAGAAGTTCCCGGTCTGCCCGATGTGCAAAGAGGTTTATGACGGCCTCCGCCCGGGCAACGACGGCGGCAAGGGTCCCGGAGGGGACTCGGGCAACAACAAGTAGMDAMTSMTDPLENDPMRELSGAGTSTATIEREELRQEVEPGDRERFSHYVRKEKIMESALTGEPVIALCGKVWTPGRDPQKFPVCPMCKEVYDGLRPGNDGGKGPGGDSGNNKNANANANANA
D1-29_03091783nagB_2COG0363Glucosamine-6-phosphate deaminaseATGGAAGTAGTTATCCTCCCTGGCGCCAGGCAGATCGGTCAGCTGGCAGCCGGGGCGATCGATGACCTGCTGCGGCGCAAGCCGCACGCGGTTTTGGGACTCGCCACCGGATCATCGCCGCTGCCCATCTACGACGAGCTGGCGGCGAGGCACGAACAGGACGGGCTGGATTTCGGCCAGGCGCACGCCTTTGCACTGGACGAATATGTCGGCCTGGAACCTGGCCACCCGGAATCCTATCGGGAGGTGATCCGCCGCGAGTTCACCAGCCGGGTCAACATTGCCCCGGAAAATGTCCACAGCCCGGACGGGACCGCCACGGACATCCTGGCAGCATGCAGCGCTTATGAGGAATCGATACAGGCCCTGGACGGCGTGGATCTCCAGATCCTGGGCGTCGGAACCGATGGCCACATCGGTTTCAACGAGCCTGGTTCGTCCTTGGCTTCCCGGACCCGCATCAAGAGCCTGATCGAGCAGACCCGGCGGGACAACGCCCGCTTCTTCAAGAGCATCGCCGACGTCCCACACCACGTGGTGACCCAGGGCCTGGGAACCATCATGGAGGCCAGGCACGTGGTCCTTGTGGCTACCGGGGCGCAGAAGGCGCAGGCAGTCCGCGACTTCGTGGAAGGACCGGTGTCAGCCATCTGCCCGGCTTCGGTCCTGCAGTTCCATCCGCACGCCACCGTCCTGCTTGATGAGGCGGCGGCGTCGTCCCTAAAACTGGCGGACTTTTACCGCCACACGTACGACAACAAACCGTCCTGGCAAGGGCTTTAGMEVVILPGARQIGQLAAGAIDDLLRRKPHAVLGLATGSSPLPIYDELAARHEQDGLDFGQAHAFALDEYVGLEPGHPESYREVIRREFTSRVNIAPENVHSPDGTATDILAACSAYEESIQALDGVDLQILGVGTDGHIGFNEPGSSLASRTRIKSLIEQTRRDNARFFKSIADVPHHVVTQGLGTIMEARHVVLVATGAQKAQAVRDFVEGPVSAICPASVLQFHPHATVLLDEAAASSLKLADFYRHTYDNKPSWQGLPGPT0018865_1739DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018865-nagB-K02564NANA
D1-29_030921572hypothetical proteinATGGTTGCGCACCTTCTAAGGCTCAAGCTGACCCTGCTCCATAACGGACTGAGGCGCAGTCCCTGGCAGCTGGTGGGCATGGCCTTCGGCGGGCTCTACGCGCTGGGACTGGTGGCCGCGCTGGTGGTGGCCCTGGTGGTGCTCCGCGGCGAAGACCCCGGGCTCGCCCACACCATCGTGGTGCTGGGCGGTTCGGCGGCGGTCCTGGGCTGGGGCATCATCCCGCTTGTAGCCTCGGCGGCGGACATGACTTTGGACCCGGCCCGTTTTACCACCTCAGCCATCCCGATGCGGGAGCTTTTGGCCGGCCTGGCCCTCGGAGGTCTGATAGGCATCCCCGGGCTGGCCACGGCGCTGGTGGCGCTTGCCACCGTGTGGACCTGGTCCCGCGGCCCCCTGCCCGCCATTGCGGCACTGGTGGGTGCCGCAGCCGGCGTCCTCACCTGCATCGTCCTGTCTAAGGTGGTGACCACAGCAACAGCCAGCCTTGCCGCCTCCCGCCGCTTCAAAGACGTCAGCGCCATCGTCTTTATGGTTCCGCTGGTCCTGATGGGCCCCATCGTGGCAGGAGTAACGCAGGGGATCGCCGCCTCTGCAGGCTTCCTTCAGGAGCTCGCCGGGACCCTGTCGTGGTCACCTCTCGGCGCGGCCTGGTCCCTGGGTGGAGACGTTGCCCTGGGACGGCCGGCTGATGCTGTGGCCAAGCTGTTCATCGCCGCTGCCACCCTGGCCGGGCTTTCCCTGTGCTGGAAACTCCTCCTGGAGCGGGCCCTTGTCAACCCGTCCTACTCCGGAAGCGGAAGCCGGAAGGGCGGGAAAATGGGGCTGTTCGCCCTCCTCCCCGCTACCCCTGCCGGGGCAGTGACCGCCAGGTGCCTCACCTATTGGATCCGGGATCCGCGGTACGCAGGGTCCCTGGTGGTCATCCCGTTGCTGCCCGTCCTGCTGTTGTTCCAGGGAAGCCAAACCGGTGACTACGGGAGCCTGGCCTTTGCAGCTCCCTTGGCTGCCTTCCTGCTTGCCTGGTCCATTTCGGCCGATGTCTCTTACGACAGCACGGCCTTTGCCCTGCACGTGGCCACGGGAGTGCGTGGCGTGCACGACAGGCTTGGCCGGGCCTTGGCCTGCCTGGCTTTCGCGCTGCCAGTGGTACTGATTTTCGCCGTCGGCCAGTTTGCGTTCACCGGCGCGTGGGAGGGACTGCCAGGACAGCTGGGCATGAGCCTGGGAATCCTGTTTACCGGGCTCGGCCTCTCATCAGTGGTATCTGCCCGCTACACCGTGGCGGTTCCGTTGCCAGGGGACAGCCCTTTCAAGAAGCCGCCGGGCAGCGTGGGGCAGACCATGGCCGTTCAGTTTGCCGGGATGGGAATCCTGGCACTCCTGGTCCTGCCGGAAGCTGCGCTCCTTGTCGCCCAATGGGTGACCGGCAACCCCCTGTTCGGATGGATCAACCTTGCAGCGGGCCTGATCCTCGGACTGGTGATTTTTGTGGCCGGCGTCAGGGTTGGGGGAAGATGGCTTGACGCCCGCGGGCCTGAGCTGCTGGCCCAGCTTGTTGTTAACCGCTGAMVAHLLRLKLTLLHNGLRRSPWQLVGMAFGGLYALGLVAALVVALVVLRGEDPGLAHTIVVLGGSAAVLGWGIIPLVASAADMTLDPARFTTSAIPMRELLAGLALGGLIGIPGLATALVALATVWTWSRGPLPAIAALVGAAAGVLTCIVLSKVVTTATASLAASRRFKDVSAIVFMVPLVLMGPIVAGVTQGIAASAGFLQELAGTLSWSPLGAAWSLGGDVALGRPADAVAKLFIAAATLAGLSLCWKLLLERALVNPSYSGSGSRKGGKMGLFALLPATPAGAVTARCLTYWIRDPRYAGSLVVIPLLPVLLLFQGSQTGDYGSLAFAAPLAAFLLAWSISADVSYDSTAFALHVATGVRGVHDRLGRALACLAFALPVVLIFAVGQFAFTGAWEGLPGQLGMSLGILFTGLGLSSVVSARYTVAVPLPGDSPFKKPPGSVGQTMAVQFAGMGILALLVLPEAALLVAQWVTGNPLFGWINLAAGLILGLVIFVAGVRVGGRWLDARGPELLAQLVVNRPGPT0006730_1530DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_03093795drrA_2Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGACTGCTCCGCATCCTGATCCGGTGGTGGGCGCCGGCCCTGTTCCCGCCCTCTCCATCCGTGGCCTCGCCAAAAGATTCGGCGGAAAGATCGCCGTCGACGGCCTCAGCCTGGACGTGCCTTCGGGATCCTTTTATGGAATCGTGGGCCCCAACGGCGCCGGCAAGACCACCACCCTCTCCATGGCAACCGGGCTGCTGCGTCCGGACTTCGGCACCGCCGTCGTTCACGGCGTGGATGTCTGGGCCCGGCCGCTGGAAGCCAAGAAGCTCATGGGCATCCTCCCTGACGGGGTCCGGCTCTTTGACCGGCTGACCGGGGAACAGCTGGTGACCTATGCTGGGCTGCTCCGCGGGATGGACAAGGACGTTGTGTCTGCCCGTGTGCCGGAACTCCTGGCGGCGCTGGATCTGGGCAAGGATGCGGGCACGCTCGTGGTGGACTACTCGGCAGGCATGACCAAAAAGATCGCGCTCGCGTCGGCCCTGATCCACGCTCCCCGCGTCCTGGTTCTGGATGAGCCCTTCGAATCGGTGGACCCCGTGTCGGCCTCGAATATCCGTGCCATCCTGGAGCGGTATGTGGCATCGGGCGGCACCGTCATAGTCTCCAGCCACGTCATGGACCTTGTCCAGCGTATGTGCGACCATGTGGCAGTAGTGGCTTCCGGACGGCTGCTGGCCGCCGGGACCGTGGATGAAGTGCGGGCGGGGGCCTCCCTTGAGGACAGGTTCGTCCAGCTTGTCGGCGGACGGACTGACGCGGAAGGCCTGGAATGGTTGCGCACCTTCTAAMTAPHPDPVVGAGPVPALSIRGLAKRFGGKIAVDGLSLDVPSGSFYGIVGPNGAGKTTTLSMATGLLRPDFGTAVVHGVDVWARPLEAKKLMGILPDGVRLFDRLTGEQLVTYAGLLRGMDKDVVSARVPELLAALDLGKDAGTLVVDYSAGMTKKIALASALIHAPRVLVLDEPFESVDPVSASNIRAILERYVASGGTVIVSSHVMDLVQRMCDHVAVVASGRLLAAGTVDEVRAGASLEDRFVQLVGGRTDAEGLEWLRTFPGPT0006725_21164DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_030941098namACOG1902NADPH dehydrogenaseGTGCCGGCGCTTTTCCAGCCGCTGAAGCTCCGGCAGCTGGAGCTCCCGCACCGCGGATGGGTCTCACCCATGTGCCAGTACAGCTGCGACCCCGACGACGGCCCCGGGGTGCCCAACGACTGGCACCTGATGCATTTGGGATCCTTCGCCGTGGGCGGTGCCGCCCTGATCCTGACCGAAGCGGCAGCCGTGAATGCCGAAGGACGGATCAGTCCCCGCGACGCGGGCCTCTACAGTGATGAACAGGCCGAGGCCTGGCAACGGATCACCTCATTCGTGCATAAGCACGGCGCCGTTAACGTGAGCATTGGTGCCCAGCTGGCCCACGCCGGCCGCAAAGCCTCCACGTACTGGCCATTTTCCGGGAAACGCGGCAGCGTGCCGGCGGCCGACGGCGGCTGGTCCACGGTGGGGCCGGTGCCCGCAGCATTTGACGGGTATGCCGAGCCCCAGGCAATGACCGAGGAACAGATCGGCAGTGTGATTTCTGATTTTGCTGCTGCCGCCGTCCGTGCGGTTGACGCAGGGTTCGACACCGTCGAGATCCATGGCGCCCACGGCTACCTGCTTCACCAGTTCCAGAGCCCGCTGATCAACACCCGGACAGATGGGTGGGGCGGGGACGAGGCTGGACGGAACCGCCTGATGCTGGCCGTGATCGACGCCGTCCGTGGGGTCATCCCGGATTCCATGCCGCTGTTGCTGAGGATATCGGCCACCGACTGGGCCCCTGGAGGGATCGACGTCGAGGCTTCTGTCCGGCTGGCCACGCTGGCAGCCGAGCACGGCGTGGACCTCGTGGACGTCTCCAGCGGTGGGGCCGTAGCCCACCAGCAGATCAAACCTGGCCCTGGCTACCAAAGCGGTTTTTCCGAACGGATCCGGCGGGAAGCGGGTGTGCCCACCGGGACCGTGGGACTGCTTACCTCCCCGGGGCAGGCGGAACATGCCGTGGCAACGGGGCAGGCGGACGGCGTCTTTATCGCCCGCGCAGCCCTGCGCGACCCGCACTGGTGGCTGCGGGCAGCCTTCGAGCTTGGCCACAACATCACGTGGCCGCCCCAGTACGAACGGGCGTTCCCCAAGCATTCGTTTTAGMPALFQPLKLRQLELPHRGWVSPMCQYSCDPDDGPGVPNDWHLMHLGSFAVGGAALILTEAAAVNAEGRISPRDAGLYSDEQAEAWQRITSFVHKHGAVNVSIGAQLAHAGRKASTYWPFSGKRGSVPAADGGWSTVGPVPAAFDGYAEPQAMTEEQIGSVISDFAAAAVRAVDAGFDTVEIHGAHGYLLHQFQSPLINTRTDGWGGDEAGRNRLMLAVIDAVRGVIPDSMPLLLRISATDWAPGGIDVEASVRLATLAAEHGVDLVDVSSGGAVAHQQIKPGPGYQSGFSERIRREAGVPTGTVGLLTSPGQAEHAVATGQADGVFIARAALRDPHWWLRAAFELGHNITWPPQYERAFPKHSFPGPT0005575_510DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0005575-namA-K09461NANA
D1-29_030951032COG3118putative proteinATGAGTTCGCCTGCTTCCCGTCCCGTCCCTCCGGCCGCTGCCAACCCGCTTAACCTGCGGGGCGCCGTCGATCTTTCCTCGCTGAAACAGCGCTCCGCCCCTCCTGCCTCCGCCCCTCCTGCCTCCGCTCCTCCCGCCGTCGCGGCGCAGCGTCCAGGTGCTGCTGCCTCCGGAGGTGGCGCCGCAGGCTCCGGCACCTCCGACGCCGGCCAACGCCCCCTGCGGGTCGATGTCACGGAGGGAAATTTCCAGGACCTGGTGGAGCTCTCCGCCCAGGTGCCGGTTGTGATCGCCCTGTGGGCCACCTATTCACCTGAGTCCGTGCAGATGCTGGAATCCCTTGAGCGGCTGGTGGATACGTACGCCGGCCGCCTGGTGCTGGGCGCAGCCGACATCGACGTTTTTCCGCAGCTGGCACAGGCCTTCCAGGTGCAGGCGGTACCCACCGCCGTGGCCGTCGTGAAAGGCCAGCCGGTGCCTTTGTTCCAGGGCGGCGCTGACGAAGCCCAGGTACGCAGCCTGCTGGACGAACTGCTGAAGGTGGCCGCGGCCAACGGGGTCACCGGCAGCCTGGGCGGCGCGGCCGCAGAGGAGGCCGGGCCGGCGCCGCTGCCCCCGCTGCACCAGGCAGCCTACGACGCCATCGAAGCCGGCGACTACGACGCCGCCGCAGCCGCATACCGCCAGGCGCTGAACGAAATGCCGTCCGACTCCCTGGCCAAGGCCGGCCTGTCGCAGGTGGAACTGATGGCCCGCCTGCAGAAGCTGTCGGCACAGGACAGCGAGGCGCTGCGCACCCTGGCGGCCGATGAACCGGACAACCTCGACGCGCAGCTCGGCGTCGCTGACCTGGACGTTGCGGGCGGCCATGTGGAAGACGGCCTGGCCCGCCTGGTCAGCTTTATCGGCCGGAATTTCGGACCGGAACGGGAAACCGCCCGCATCCGGCTCCTGGAACTCTTCGACGTCGTCGGGACCGGCGACGAACGAGTATCAAAAGCCCGGCAGGCCCTGGCCAGGGTCCTGTTCTAGMSSPASRPVPPAAANPLNLRGAVDLSSLKQRSAPPASAPPASAPPAVAAQRPGAAASGGGAAGSGTSDAGQRPLRVDVTEGNFQDLVELSAQVPVVIALWATYSPESVQMLESLERLVDTYAGRLVLGAADIDVFPQLAQAFQVQAVPTAVAVVKGQPVPLFQGGADEAQVRSLLDELLKVAAANGVTGSLGGAAAEEAGPAPLPPLHQAAYDAIEAGDYDAAAAAYRQALNEMPSDSLAKAGLSQVELMARLQKLSAQDSEALRTLAADEPDNLDAQLGVADLDVAGGHVEDGLARLVSFIGRNFGPERETARIRLLELFDVVGTGDERVSKARQALARVLFNANANANANA
D1-29_030961794hypothetical proteinTTGCGTTTCAAGACTGCAGTCGCACTCGTGCTGCTCGGCCTGCTGACCCTTTTGGCCGGCATCGGCCAGAAGACCATCTGGGCTCCGTCCGAGACTTTTACAGCCTCGGTTCCCACGGATGCCGCCCAGGCTCCACTGACCGTCATTGACCAGAACCTTCGCACGCTCCACGGCGGAACCGTCACGATCAATATCCAGGGTGAAGGCAACTTCACCCTCGCGGCAGGACGGCCGGACGATGTGGCCGCATGGGTGGGCCCCACAGCCCACAACACCATCACGGGGGTATCCGACGACGGGAAGTCCCTCCAGCTCGAACACGCCGACGGCGAAGCCACCGCGCCCAGCCCGGCCGGCTCGGATTTGTGGGTTGCCAGCGAAGACGCTAGCGGTGAACTTGACTATTCCTGGACTCCGCCTGCAGATGGCGACTGGTCGCTGCTGCTGGCCTCGGACGGAACCAAGGCTGCCCCGTCCTCCATCTCCATGACGTTCCCGAATGATACCTCCACCCCGTGGGCCGTTCCGCTGATGGTCATCGGCTCGCTGCTGGTTCTCGCAGGAATCGTCGTCGCGGCGCTGTTCTCCGGCGGCACCCCCCGCGGGTCCAAGGGCGGGAACGGAAGCGGTGGCGGCAGCATGTTCGCCCAGCGCGCCCGGGCCAAGGCGGAGGCACGGTCCTCCGCTTCCCTCAGCAGGATGGCCGTGGGACCTGCCGGTTCCCCCTCCCCGTCTCCGTCTATGTCTCCCTCTCCGGCCAGGTCCGCCGTCATGACGGCTGTAGCAGCCATTGTTGCGGCTGTCCTGGTGGCCGGAACCGGCGCGGCCGCCAGTGCCACCTCAGGGCCTGCCCCGGCGCCGTCCCCGGAACCCACCGGAAACGCCTCCGAGACCGCTGAGGAAGCACCCGTATCCCCGGTGCTCCTCGATGCCCAGTTCCGCCGGATCCTGGAGCAGGTGTCCAGTGCCACCGACGCCGCCGACGCCGCAAAGGACGCCGGACAGCTGGCCACGCGCGTGGCCGGAACCGAGCTTGAGGTCCGCACGCAGAACTACAAGATCCGTTCGCAGGTGGGCGCATACGAGGCGAGGATGCCCGTGCGCTCAACGAAGCTCCTGACCACAGTCGTCACGAGCAAGCGTGACTGGCCCAGGTCTGTCCTTGCCGTCACCCAGGGCGAGGGCAACGTTGTTCCCCAATTGCTGACACTGGTTCAGCTGACGCCGCGTGATAACTACAAGCTCGTCGAAACCACCCCTCTCCAGCCGGGCACCACATTCCCTTCGATTGCACGGGGCGGAACCGAAACGCTGGCCGCGAATGACAAGTCGGGCCTGCTTTACAGCGGCGAGGAGGCCCTGGCCGGCCTCGCGGACCGCCTCACAACACCTGATTCGAGCTTCAAGGACAAGCTGGTGGAAGGCGAGTCCTCGCCCTACATCGCCGATACCCTCTCCTACCAGGCTGAAGTTGTGAAGTCCGGCGAGAACGGCAACTTTGCCTTCACCCACAATGTTGTTCCGGAAAGCGTTGTGGTGTTCCGGACGGCGGACGGCGGGGCCCTGGTCCTGGGCCGAATCAACTTCGGATTTGATGGCACGCCCAAGGCGGCAGGAGACAAGCTGACCATCGGCGACGACGCCGCGGCGCTCGCCGGCGGCAAGGAAACCACCACCGGAATGGTCCTCAGTTTCGCCGAGTCGACGGCGGTCTACATCCCGCCGGCAGGATCCACCGATCCCATGAAGCTCGTCGCCGCAACGCGTGGCCTGGTGGGTGCCAGCTTCAAGTAGMRFKTAVALVLLGLLTLLAGIGQKTIWAPSETFTASVPTDAAQAPLTVIDQNLRTLHGGTVTINIQGEGNFTLAAGRPDDVAAWVGPTAHNTITGVSDDGKSLQLEHADGEATAPSPAGSDLWVASEDASGELDYSWTPPADGDWSLLLASDGTKAAPSSISMTFPNDTSTPWAVPLMVIGSLLVLAGIVVAALFSGGTPRGSKGGNGSGGGSMFAQRARAKAEARSSASLSRMAVGPAGSPSPSPSMSPSPARSAVMTAVAAIVAAVLVAGTGAAASATSGPAPAPSPEPTGNASETAEEAPVSPVLLDAQFRRILEQVSSATDAADAAKDAGQLATRVAGTELEVRTQNYKIRSQVGAYEARMPVRSTKLLTTVVTSKRDWPRSVLAVTQGEGNVVPQLLTLVQLTPRDNYKLVETTPLQPGTTFPSIARGGTETLAANDKSGLLYSGEEALAGLADRLTTPDSSFKDKLVEGESSPYIADTLSYQAEVVKSGENGNFAFTHNVVPESVVVFRTADGGALVLGRINFGFDGTPKAAGDKLTIGDDAAALAGGKETTTGMVLSFAESTAVYIPPAGSTDPMKLVAATRGLVGASFKNANANANANA
D1-29_030971374hypothetical proteinGTGACTGACAAGACGGAAGAGTCCCCCGCTGGACAGGACAATCCAGCCGCCGGTGACTCCCTGCAGCCCAGCCCTGAACGGCCGGCCAATCCGGAAAGGCAGCACAAACCGGAACGGCAGGCGAAACCGGAAGGGCAGGCAAAACCGGCTCGCGCCAATTGGCGCGCGGGATCGGCCGCCGCGCTTGGCTCTGTGGTGCGCCGGCTGCGGCAGCCGCTGCCGGGCGCGCAGCCGCGCCTCCGTTTTGAGATGCCGCCGGAATATGCACACCATGAAGAGCCGGAGGAGGCCGCTGCCACCCAGGTGACGCCCCAGTTCGGCAATCCCGGGCCAAGGATGTCCACCCAGCATCCCCTGTATCTGGGATTCATGGGCACGGTGGGAGTCGGGCTGGCGCTGCTGGTGTACTGGATCGGCTCCAACAACACCCAGCTCCTGCTGTGGATCGTAACCGCCCTGTTCATTGCCCTGGGCCTGGAACCAGTGGTGGGATGGCTGGAGAACCGGAGGATCCCGCGCCCGGCCGGAATCCTTGTGGCGGTAACGGTGCTGGTGACGGCAGTGGTGGGGTTCTTTGCCACCCTGATCCCAACCATCGTTGAACAGGTCACCGAGATCGTGGAGCAGGCGCCCACCTGGATCCGCGACTTCATCGATTCCGAGTTCTTCCGCAGCCTGGATGACCAGTTTGGCGTCCGCGACCGCATCTCTGAAGAACTCGATAAATTCGTCAACGACCCCCAGGCCATGAGCGGCATCTTCGGCGGCGTGGTGGGCTTCGGCTCCACGCTGGCCAACGGGCTGTTTGGCACCCTGATCGTCCTGGTGTTGAGCCTTTACTTCCTCGCAGCCCTGCCCGCCATGAAGAAATGGGGCTACCGCCTGGCACCACGGTCACGCCGCGCCCGGGTGGAGGCACTCTCAGAGGAGATCACCCGGTCCGTGGGCAACTACGTGATTGGACAGGCCTGCGTGGCCCTGCTGAACGCCACCTTCGCTTTTATCGTGATGTCCATCCTGGGCATCCCCTTCGCAGTACTGCTGGCGTTTGTGGTTGCGCTTCTCGCGTTCATCCCACTGGTTGGCGGCCTGATCGCTGCCGTAGTGGTGCTGCTGGTCTCCCTGACCGAAGGCTGGCAGACGGCTGCCATCTACGCCATCTGCTACTTCGCCTACCTGCAGTTCGAGGCTTACTTCATTTCACCGCGCATTATGCAGAAGGCTGTCGCGGTGCCCGGTGCCGTGGCTGTTATTTCGGTCATCGCCGGCGGCAGCCTGCTGGGTGTCCTGGGTGCCCTGATCGCCATTCCCACAGCCGCTGCCATCCTCCTGCTGGTGAAGGAGATCTATATCGTCCGGCAGGACAAACACTAGMTDKTEESPAGQDNPAAGDSLQPSPERPANPERQHKPERQAKPEGQAKPARANWRAGSAAALGSVVRRLRQPLPGAQPRLRFEMPPEYAHHEEPEEAAATQVTPQFGNPGPRMSTQHPLYLGFMGTVGVGLALLVYWIGSNNTQLLLWIVTALFIALGLEPVVGWLENRRIPRPAGILVAVTVLVTAVVGFFATLIPTIVEQVTEIVEQAPTWIRDFIDSEFFRSLDDQFGVRDRISEELDKFVNDPQAMSGIFGGVVGFGSTLANGLFGTLIVLVLSLYFLAALPAMKKWGYRLAPRSRRARVEALSEEITRSVGNYVIGQACVALLNATFAFIVMSILGIPFAVLLAFVVALLAFIPLVGGLIAAVVVLLVSLTEGWQTAAIYAICYFAYLQFEAYFISPRIMQKAVAVPGAVAVISVIAGGSLLGVLGALIAIPTAAAILLLVKEIYIVRQDKHNANANANANA
D1-29_03098801hypothetical proteinATGACTTTTGATCCGGCGTCGTACGAATTCAACCAGCCTGATGGCCCTTCAGCCATCCGCGCATCCACCGTCCTTCCCGCCAGGCGCGAAAACGTGGAACTCCATACGGAGGACGGCCACACGCTGGTGGGCGAGCTGGCGTTGCCGGAATCCGGCCCGATCAATGCCACCCTGATCACCCTGCACCCGCTGCCCACCCACGGCGGCTTTATGGATTCACACGTGTACCGCAAGGCGTCATACCGGCTGCCTGCACTCGCCGGCGTCGCTGTCCTGAGGTTCAATACGCGCGGAACCGCCTCGCCCCGCGGTACCAGCGATGGCTCCTTCGAAGAAGGGATCGGCGAGCGGTTCGACGTCGAGGCAGCAGTCAGGTTTGCCGCCGACAGGCAATTGCCCAACCGCTGGCTGGTGGGTTGGTCCTTTGGAACGGAGCTCGCCCTCATGTACGGGGCCACGGAGCCCGTTGCGTCCAGCATCGAGGGCGCCGTGCTGCTTTCGCCGCCGCTTCACCGGGCAACTGATCAGCACCTGCGGTTGTGGGCCGAGAGCGGCAAGCCCCTGACGGTCCTGGTGCCCGAGCATGATGACTACCTCCGGCCCGCGGAGGCAGCGCAGCGCTTCAGCCTGATACCCCAGGCCCGCGTCGTGGGCGTGGACGGGGCCAAGCATCTTTGGGTGGGCGAGAAGTACGCAGCCCGGGTCCTGAACGAAATTGTTGATGAAGTGACAGAGGCCGGGTCCGGACCCGGCGGCCTTCCGCAGGAGTGGGACGGCCCCGTGGCCGCGGCTGCCGCCTAGMTFDPASYEFNQPDGPSAIRASTVLPARRENVELHTEDGHTLVGELALPESGPINATLITLHPLPTHGGFMDSHVYRKASYRLPALAGVAVLRFNTRGTASPRGTSDGSFEEGIGERFDVEAAVRFAADRQLPNRWLVGWSFGTELALMYGATEPVASSIEGAVLLSPPLHRATDQHLRLWAESGKPLTVLVPEHDDYLRPAEAAQRFSLIPQARVVGVDGAKHLWVGEKYAARVLNEIVDEVTEAGSGPGGLPQEWDGPVAAAAANANANANANA
D1-29_03099477hypothetical proteinATGACAAGTCGCACGCCGTACAGACTACCGTCTCACCGGATGCCTCAAATCCATGGCTACCGGGACTGGCCTGTCACCAGGATGCCGGTGCTGGGGCAGAATGGAGGCATGCCGCGTTCCAACCGACCCCGCCGTCCTGCCTCCGGAAAAGGCGGCGGAGCTGCAGGCAGGAGCACAGCAAAAGGCGCCGGCAGGAAGGGTGGCGGCGACGTGCCGGAACTTGACCTCGAACGGGCCCGTTCAGGTATTGCCCGCCGGGAAACTGCGCCCGACGGCGACTGGATGGTCAGGTCCATCACCGCCAAGAAGGCCGAGAAGACCTATATTTGTCCCGGCTGCTCCACGGCTGTTCCGCCGGGAATCGCCCACCTCGTGGTGTGGAAGGATGACCATCTGTTTGGTGCGGCCGCCGGACTCGCTGAGCGCCGTCATTGGCACAGCAACTGCTGGGTCTCACGGAGTTACCGCTACCGCTAGMTSRTPYRLPSHRMPQIHGYRDWPVTRMPVLGQNGGMPRSNRPRRPASGKGGGAAGRSTAKGAGRKGGGDVPELDLERARSGIARRETAPDGDWMVRSITAKKAEKTYICPGCSTAVPPGIAHLVVWKDDHLFGAAAGLAERRHWHSNCWVSRSYRYRNANANANANA
D1-29_03100594nucSCOG1637Endonuclease NucSGTGCTGGTCCATTCCGACGGCGGTTCCTACAAGCCGCTGAACTGGATGAGTCCGCCGGCCACCCTCCGTGTGTCGTCCCCGGATGACGTTGACCTGGAGCTGGGGGTCCTTGAGCAGTGGACCGTGCAGTCGGCCAAGACCGACGATCGCCTGATTATCAACATCCATGAACACCTCCACGAGTCCTCGCACGATCTTGGCGTTGACCCAGGCCTCATCAAGGACGGTGTGGAAGCGGACCTCCAGAGGCTGCTGGCGGAGCAGATCGAGACACTTGGCTCGGGCTTCTCCCTGATCCGCCGGGAGTATTTCACCGCGATTGGCCCCGTGGACATCCTCGCCCGTGACGCCGACGGAGCCACTGTTGCCATAGAACTGAAGCGCCGGGGCGACATCGACGGCGTAGAGCAGCTGACCCGGTACCTTGAGCTTCTGAACAGGGACCCCTTGCTTGCTCCCGTGCGCGGGATCTTTGCCGCCCAGCAGATCAAACCGCAGGCCAAGGTTCTGGCGAATGACCGCGGAATTGACTGCATCACCCTGGACTACGACGCCATGCGCGGGGTTGACGACACCGAATCACGGCTTTTCTGAMLVHSDGGSYKPLNWMSPPATLRVSSPDDVDLELGVLEQWTVQSAKTDDRLIINIHEHLHESSHDLGVDPGLIKDGVEADLQRLLAEQIETLGSGFSLIRREYFTAIGPVDILARDADGATVAIELKRRGDIDGVEQLTRYLELLNRDPLLAPVRGIFAAQQIKPQAKVLANDRGIDCITLDYDAMRGVDDTESRLFNANANANANA
D1-29_03101204cspCold shock proteinATGGCACAGGGAACCGTCAAGTGGTTCAACGCTGAAAAGGGCTTCGGCTTCATCACCCCGGATGACTCCGATGGCGATGTCTTCGTTCACTACTCCGAGATCCAGACCGGTGGCTTCAAGACCCTCGACGAGAACCAGCGCGTTCAGTTCGAAATCGGTCAGGGCGCCAAGGGTCCCCAGGCTACCGGCGTGACGCTGGTCTAGMAQGTVKWFNAEKGFGFITPDDSDGDVFVHYSEIQTGGFKTLDENQRVQFEIGQGAKGPQATGVTLVPGPT0014675_6602DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-29_031022607hypothetical proteinATGAGCGCGGAGCCGGAGATTAGAACTGCCGCGCTGGCCTGGCATACGGTAGGACGCCCCACCTGGAGGATGGCGGTAGCCCGCCTCCGTTCAGCGCCGTTTACCCTGGCGGTTCTGGGCATTTTCCTGCTGACTGGCGCCTTCAGCGGAAGCTTCCTGAGCGGACCGGCCGAGTCACTGCTGGATCTTGCGGGGGTAAGCGGGCCAGGACTGAAATCCGGCAGTTGGTGGACGCTCTTTACCTCGCTGTTCTTTGCCACCAACCCGCTGGCCTACGTGGTGGCATCCCTGATGATTCTGCTGCTGCTGGGCCTGGCTGAGAGCAGGATCGGCACGCTACCCACCGTCGCCTTATTCTTTGGCGGCCAGTTTGCCTGCGTCACCTTGTTTCTGCTGATTACCCAGCTGGCACGGTATGCGGGGGACGGCTGGCTGGGCCTGATGGCTGACAGCATGCTCATCGGACCGTACGCCGCGGTCCTGACCGTTTCCATGGCGGCGAGCGGCAGGCTGCCGGTCCTCTGGCAGCGCAGGCTTCCCACCATCCTGCTGTCCGTTTCCCTCCTGCTGGTTCTCTACGTCGGACACCCCGAGACTGTCATCGGACTCCTGGGCGCTCTCCTGGGACTGTCGGTCCGCTGGTGGGTCCGCGCTGACCAGGGCCCATTCCGCCGGCACCGGTCCACAGGCCGTGAGACAAGGAACCTTCTGGCCCTGACCGTTGCGGTTTTTGCCGTCGGCCCCATCCTGACCGCCGTCGCCAGGACGCCCACCGGTCCGCTGGCCCTCCTGCGTGACATCGTCCTCAACCCCTTGCCCACACTCAACCAACTTGAGTTGTACTGCGGCGCCACAGTGCAAGCATCGTGCCTGGAGGCGGGCCGCCAGGGCATCGCTGGCCCCTTCGGCTTGGCGCTGGGCGTGGTTCCCGTGGCCCTGCTGCTCATCTGTGCCGACGGGATGCGGCGGGGCCGCCGGATGGCGCTTCGCATCGCGCTGGCCCTCCAGCTGGCCGTCACGGCATTGGCAGCCGTCTACCTTGCGTTGTTTGCCCTGATCCCGCATTATCCGTCGGGCCGGCACACTGCCGCCATGGGATCCGGATTCGCACACATCCTGCCGCTCGTGACAGTACCCCTGCTGTTGACGCTCCTTCTATGGTTCAACAGACGCCAGTTCAGGGTTGAAACTCCTCCCTCCTACAGGCGTGCCCTGGTGGCCGTGGTGGGTGGAGTGTGGATTGCCCTGGCAGGTGCCTACAGCCTGGCGTGGTGGGGAGCAGGCGGAATGGCGCGGGACGGAGGACTGCTTGGCCTGCTCGCCGAGCTGGCACGGCAGTACCTTCCCGTTCCGGTCCCCAACCTGTATCACCGTGTGTTCTCGGAACGGGACGGCCTGGAGTCGTTCATCTTCGCCTACGCGGGACCGGCGTTCTGGCTTGTCGCCCTCGCGGGAGTCTGGGCAGTCCTGATGGGACGGCACCACAGCAGCGATCCCGGCAGCAACAACAAAGCCCGGGTGCGCGGCCTCCTGCAGCAGGGCGGCGATTCCTTGTCCTGGATGGCCACCTGGGATCCCAACAGCTATTGGTTCAGCCCGGACCACCAGGGTGCCGTGGCATACCAGCAGCATGGCAGCGTTGCGCTAACCCTTGCTGGTCCTTTCGGCGCCGCAGACGGGCATCACGGGGTGGCTGAAGGATTCCTGGGGCATTGCAGCAGCAGGGCACTGATTCCGGCCTTCTACTCCTGTGATGACAGGCTGTGGCCGCTTCTTCGGGACCGGGGGTTCCACCGGGTGCCGGTGGCCCAGGAGACCAGGCTTGCGGTCAGGGAGCTCGAATTCAAGGGCAAGGAATGGCAGAACGTGCGGACCGCCCTGAACAGGGCTGGCAAGATCGGAGTCAAGGCTGTGTGGGGAACGTACGAAGGGCTGCCCGCGGCCCTTCGCGCCCGCCTCAGTGAGGTCTCAGAGGAGTGGGCGGCCGGGAAAACGGTGCCGGAAATGGGATTCACCCTGGGTGGCATGGATGAGCTGATGGATAAAGAGGTCCTGTGCTGCCTCGCCGTGGACGCGGAAGGCAACGTGCACGGCGTCACCAGCTGGCTTCCCGTTTACGACGGCGGGAGGCTGGTCAGCCGGACCCTGGACGTTATGCGGCGGGGTGCCGGGGGATTCCCGGGAGTCATGGAGTTCCTCATCGCCTCGGCAGTGCTGGAACTTCGGAAATCAGTGGAGGTCATCTCCCTGTCCGGTTCCCCGCTGGCACGGGGGCCGGCGGACAGCAATACAGCCACAGTCCCGGACGGAGACCGGGTTCCCGATGGAGACCCCGTACATGAGGGAGAACCCGTCCCGGAGGAGCCTGTGGTGGCCGAGAACCTCGTGCGCATCCTGGATGTCGTGGGGCATGCCCTGGAACCTGTCTACGGCTTCCGGTCGTTGGCCGCCTTTAAGTCCCGGTTCAAGCCTGACTACCGCACGTTGTATCTGTACTATCAGGATCCGCTTCATCTGCCGGCGATCGGCAGGGCCCTGACACGTGCCTATTTACCCGGCCTTTCGCTCCGTCAGGGTGCACGCTTGCTTCGGGAAATTGTGACTTGAMSAEPEIRTAALAWHTVGRPTWRMAVARLRSAPFTLAVLGIFLLTGAFSGSFLSGPAESLLDLAGVSGPGLKSGSWWTLFTSLFFATNPLAYVVASLMILLLLGLAESRIGTLPTVALFFGGQFACVTLFLLITQLARYAGDGWLGLMADSMLIGPYAAVLTVSMAASGRLPVLWQRRLPTILLSVSLLLVLYVGHPETVIGLLGALLGLSVRWWVRADQGPFRRHRSTGRETRNLLALTVAVFAVGPILTAVARTPTGPLALLRDIVLNPLPTLNQLELYCGATVQASCLEAGRQGIAGPFGLALGVVPVALLLICADGMRRGRRMALRIALALQLAVTALAAVYLALFALIPHYPSGRHTAAMGSGFAHILPLVTVPLLLTLLLWFNRRQFRVETPPSYRRALVAVVGGVWIALAGAYSLAWWGAGGMARDGGLLGLLAELARQYLPVPVPNLYHRVFSERDGLESFIFAYAGPAFWLVALAGVWAVLMGRHHSSDPGSNNKARVRGLLQQGGDSLSWMATWDPNSYWFSPDHQGAVAYQQHGSVALTLAGPFGAADGHHGVAEGFLGHCSSRALIPAFYSCDDRLWPLLRDRGFHRVPVAQETRLAVRELEFKGKEWQNVRTALNRAGKIGVKAVWGTYEGLPAALRARLSEVSEEWAAGKTVPEMGFTLGGMDELMDKEVLCCLAVDAEGNVHGVTSWLPVYDGGRLVSRTLDVMRRGAGGFPGVMEFLIASAVLELRKSVEVISLSGSPLARGPADSNTATVPDGDRVPDGDPVHEGEPVPEEPVVAENLVRILDVVGHALEPVYGFRSLAAFKSRFKPDYRTLYLYYQDPLHLPAIGRALTRAYLPGLSLRQGARLLREIVTPGPT0024390_855DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLGLYCEROL_LYSYLTRANSFERASE,PGPT0024390-mprF|fmtC-K14205NANA
D1-29_031031311hypothetical proteinGTGGATTTTGTTGCTGACATCCGCCTGACCGACGGACCGGTTTTCTGGGCTGCCTGGATCCTCGGGGTTGCAGCGACCGCCTATCTTGCCTGGCGCCCGGCCCCTTTCCGTCCCCGCCGTTGGCTTCTGGCAGTTGGCCTGGCCATTGCTGGCGCCGCCGCCCTGGTGGCCGCGGTGCACTGGGCCCTGATCTACGTTTTTTCCACCTTCCCGGAAGATCTCCCGGACGACGTACTGTTCTGGAGCGTCCCACCCCTGGCCGCGCTGATCGTGGTGCTCGTGCGCCTGCCGGGCGGGTCCTGGCGTCAGCGGAGCACCGCCTGCGCAGGTCTGCTCCTGGTGTTGCTGCTGTCAGGGGTGCAAATCAACGCCTACTTTGGCCTCAACCGCACGGTCAGCGATCTGGCGGGCACGGCTGTAGCGCGGATTCCCACCCTTGAACCTGACTTGATGCGGCACGCGGATGCGGCTGCCCTGGTGCCCCTTGAAGGATGGCAACCCCAGGAAGAATTGCCCGGCGAGGGAGTGCTGCGCAAGGCTTCGATCCCTGGCGAAGCTTCCGGGATGGACACCAGGGAGGCCTACGTTTACCTGCCGCCGGCCTACTTCGCCCCAAACCGGCCTGCCCTTCCCGTCCTGCTCCTTTTTTCCGGCCAGCCCGGCGGGCCCGCGGATTGGCTGACGGGAGGAGCTCTGCGCGCACACCTGGACACCTTCGCGGCCGGCCATGGCGGAGTGGCGCCGGTGGTGGTGGTGGCGGACCCCAACGGTTCCCAGTCTGCGAATACGCTCTGCATGGACAGCCGCATTGCAGCGGCCGATACGTATTTGTCCAAGGACGTTCCACGCTGGATCAGCGACAGCCTCAGCGTGGATCCGGACCGCCGGCACTGGGCGGTGGGAGGGTTCTCCTTCGGCGCAACGTGCGCTCTGCAGATGGGCACCCGGCATCCTGACATCTTCAGCTCCGTGCTTGCATTCTCCAGTGAAGTGGAGCCTGCCCTGGCCAAGGAGCGGCAAAAGACCATAGACGCCTCCTTCCCCGGCGACACCGCCGGCTTCGAGAGCCTGACGCCGCTGTCCATCATGGGACGGACACGTTTCGATTCCTCCGGGGCCTATTTTGCGGCAGGGGAGCGGGACCCCGAATTCGTGGGTTACATGGACACGCTGGCAGACGCAGCCCGTAAGGCAGGCTTCACAGTTGACGCCAGGCAGGTGGGAAAGGCCGGGCATTCCTGGGACACCCCGTCGAAGGGAATGGCAGGCGGGCTGGCCTTCCTGGCCGGCCGGTGGGGCCTGCCGCAATGAMDFVADIRLTDGPVFWAAWILGVAATAYLAWRPAPFRPRRWLLAVGLAIAGAAALVAAVHWALIYVFSTFPEDLPDDVLFWSVPPLAALIVVLVRLPGGSWRQRSTACAGLLLVLLLSGVQINAYFGLNRTVSDLAGTAVARIPTLEPDLMRHADAAALVPLEGWQPQEELPGEGVLRKASIPGEASGMDTREAYVYLPPAYFAPNRPALPVLLLFSGQPGGPADWLTGGALRAHLDTFAAGHGGVAPVVVVADPNGSQSANTLCMDSRIAAADTYLSKDVPRWISDSLSVDPDRRHWAVGGFSFGATCALQMGTRHPDIFSSVLAFSSEVEPALAKERQKTIDASFPGDTAGFESLTPLSIMGRTRFDSSGAYFAAGERDPEFVGYMDTLADAARKAGFTVDARQVGKAGHSWDTPSKGMAGGLAFLAGRWGLPQNANANANANA
D1-29_03104432putative proteinATGGACGCACCGAGTCTTCCGTTCATCGCCATGGCAATCATTTTTGGATTGCTGATATTTGCACTGTGCCTTTTTGGGGTGCGCCGCTTCAATCTGCGGCGCGCCCTGGGCACGGTGGACGCCTCCATTTGCATGGCTGGAAACAGCTGGCAGATGGGGGTTTGTCGTTATCAGGACAACGACCTCGAATGGTTCCGGCTGCTCTCGCTCAGTGTCCGTCCCAAACACAAGTTCAAGCGAAGTTCCCTCGAGCTCCTTGGACGCCGAAAACCCACCGAGTCCGAGGCCGTCAAGGTCCAGCCCGACGTCGTGATCGTTGAACTGCGGTACGAAGGCCAGGACCTGCGGCTCGCCATGAAGTTCGATGCCTACACCGGGCTGTCGTCCTGGCTTGAAGCCGGACCCGTTATCGGCGTCGGCACCTGGCGTTAGMDAPSLPFIAMAIIFGLLIFALCLFGVRRFNLRRALGTVDASICMAGNSWQMGVCRYQDNDLEWFRLLSLSVRPKHKFKRSSLELLGRRKPTESEAVKVQPDVVIVELRYEGQDLRLAMKFDAYTGLSSWLEAGPVIGVGTWRNANANANANA
D1-29_03105285atpCCOG0355ATP synthase epsilon chainATGGCTGAGCTTGAGGTTGAGATTGTCGCAGCGGACCACTTCGTGTGGTCCGGAGCGGCCAAGATGGTCAAGGCCCGCACCAGCGATGGTGAAATCGGAATCCTGCCCGGCCACTCGCCCCTGCTGGCGATCCTGGCCGAAGGTGAACTGGCGATTCAGCCTGTTTCCGGTGACCGCATTGCCGTAGTTGTTGATGGCGGATTCTTCTCCGTCGACAACAACCGCGTGGTTATTGTTGCTGACAACGCCCAGCTGGGCGACGCGGCTACTGCTGGGATCCGCTAGMAELEVEIVAADHFVWSGAAKMVKARTSDGEIGILPGHSPLLAILAEGELAIQPVSGDRIAVVVDGGFFSVDNNRVVIVADNAQLGDAATAGIRPGPT0014295_3946DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114NANA
D1-29_031061455atpDCOG0055ATP synthase subunit betaATGACTGCCACTGCTACCGAACACGTAGCCGCAACGTCCGGTGCCACCGGCCGTATTGCTCGTGTCATTGGCCCGGTTGTCGACGTCGAATTCCCGGCTGACGCAATCCCCTCGATTTACAACGCCCTCACCGCTGAAATTACCCTCAACGGTGTGACCCGGCCCATCACGTTCGAGACCTCCCAGCACCTGGGTGACAACCTCGTCCGCGCCATCGCCCTGCAGGCCACCGACGGACTTGTCCGCGGCACGTCTGTGGTGGACAGCGGTTCCCCTATCTCGGTTCCCGTCGGCGACGGCGTCAAGGGACACATCTTCAACGTCCTGGGCCAGCCCCTGGACATTGCCGAGTCGGAGCTGGAGACCACCGAGCGCTGGCCGATCCACCGCAAGGCACCGTCTTTCGCCTCGCTTGAAGGCCAGACCGAAATGCTTGAAACCGGCATTAAGGTCATCGACCTCCTCACCCCGTACATCAAGGGTGGAAAGATCGGCCTCTTCGGTGGCGCCGGCGTCGGCAAGACCGTTCTGATCCAGGAAATGATCACCCGTGTGGCCCGCAACTTCGGTGGTACTTCGGTATTCGCCGGTGTTGGCGAGCGTACCCGTGAAGGTAACGACCTCTGGGTTGAAATGGAAGAGGCAGGCGTCCTGAAGGACACCGCCCTTGTGTTCGGCCAGATGGACGAACCGCCTGGAACGCGTCTGCGCGTGGCACTGTCCGCCCTCACCATGGCGGAGTACTTCCGCGATGTGCAGAAGCAGGACGTGTTGCTCTTCATCGACAACATCTTCCGCTTCACGCAGGCAGGTTCCGAGGTTTCCACCCTCCTCGGCCGCATGCCGTCGGCCGTGGGCTACCAGCCCAACCTTGCAGACGAGATGGGCCTCCTGCAGGAGCGCATTACGTCCACCAAGGGCCACTCCATCACCTCGATGCAGGCCATCTACGTCCCCGCAGATGACTACACCGACCCGGCCCCGGCCACCACGTTCGCGCACCTGGATGCCACCACGGAACTTTCCCGTGAAATTGCATCGCGTGGCCTGTACCCCGCCGTGGACCCGCTGACGTCCACCTCCCGAATCCTGGACCCCCAGTACATCGGCAAGGATCACTACAACACGGCTGTCCGTGTCAAGCAGATCCTGCAGAAGAACAAGGAACTCCAGGACATCATCGCCATCCTCGGCGTTGACGAGCTCTCGGAAGAGGACAAGATCGTCGTGTCGCGTGCACGCCGCATCCAGCAGTTCCTTTCCCAGAACACCTACACCGCCAAGCAGTTCACCGGCGTCGAAGGCTCCACGGTTTCCATCAAGGACACCATCGAAGGCTTCACCGCGATCTGCGACGGCGACCTCGACCACATTGCAGAGCAGGCGTTCTTCAACGTCGGCGGCCTGGATGACGTTGAGCGCCAGTGGGCCAAGATCCAGGAACAGACCAAGTAAMTATATEHVAATSGATGRIARVIGPVVDVEFPADAIPSIYNALTAEITLNGVTRPITFETSQHLGDNLVRAIALQATDGLVRGTSVVDSGSPISVPVGDGVKGHIFNVLGQPLDIAESELETTERWPIHRKAPSFASLEGQTEMLETGIKVIDLLTPYIKGGKIGLFGGAGVGKTVLIQEMITRVARNFGGTSVFAGVGERTREGNDLWVEMEEAGVLKDTALVFGQMDEPPGTRLRVALSALTMAEYFRDVQKQDVLLFIDNIFRFTQAGSEVSTLLGRMPSAVGYQPNLADEMGLLQERITSTKGHSITSMQAIYVPADDYTDPAPATTFAHLDATTELSREIASRGLYPAVDPLTSTSRILDPQYIGKDHYNTAVRVKQILQKNKELQDIIAILGVDELSEEDKIVVSRARRIQQFLSQNTYTAKQFTGVEGSTVSIKDTIEGFTAICDGDLDHIAEQAFFNVGGLDDVERQWAKIQEQTKPGPT0014296_1088DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112NANA
D1-29_03107891atpGATP synthase gamma chainATGGGAGCCCAGATTCGGGTCTACCGCCAGAAGATCAGCTCGACGACGTCGATGCGCAAGATCTTCAAGGCGATGGAACTGATCGCTACCTCGCGCATCGGCAAGGCCCGCGCACGCGTAGCAGCTTCACTGCCTTACGCGAACGCGATAACCCGCGCCGTTTCTGCTGTCGCAAGCCAGAGCGAAATCGACCACCCGCTGACCACCGAGCCGGAGCAGATCCGTCGCGCAGCAGTCCTGGTAATCACCTCGGACCGCGGCCTGGCAGGGTCATACTCCGCGAGTGTGCTCAAGCAGGCGGAAGGTCTTAACGAACTGCTTCACGCCGAAGGCAAGGAAGTAAAGACGTACCTCGTCGGCCGTAAGGCACAGGCGTACTTCGAGTTCCGGGGCCGGGAGTACGCCCGCGTATGGACCGGCGGCACTGACGCACCTGAATTCGAAACGGCGCGCGAAGTTGGCGAGGCACTCCTTGCGGATTTTGCCACGGACTACGAAGAGGGCGGTGTGGACGAGATCCACGTTGTCTACACCCGTTTCAAGTCCATGGTGACGCAGGAACCCACTGTGGTCCGCCTGCTTCCGCTCGAAGTTGTTGAAGAGCAGGCTGCATCGGAATCCGAACTCCTGCCGCTGTATGAGTTTGAGCCGGAAACCGAGCGGGTGCTTGACGCTCTGCTGCCGCGCTACATCGAATCGCGCCTCTTTGCGGCGATGCTGCAGGCGGCGGCTTCCGAGCTCGCGGCCCGCCAGCGGGCGATGAAGTCTGCAGGCGACAACGCTACAGACCTCATCAAGAAGTACACGCGTCTGCGCAACACTGCCCGCCAGGCTGAGATTACGCAGGAGCTTTCAGAGATTGTGGCCGGTGCCGACGCACTCGCGTCCTAGMGAQIRVYRQKISSTTSMRKIFKAMELIATSRIGKARARVAASLPYANAITRAVSAVASQSEIDHPLTTEPEQIRRAAVLVITSDRGLAGSYSASVLKQAEGLNELLHAEGKEVKTYLVGRKAQAYFEFRGREYARVWTGGTDAPEFETAREVGEALLADFATDYEEGGVDEIHVVYTRFKSMVTQEPTVVRLLPLEVVEEQAASESELLPLYEFEPETERVLDALLPRYIESRLFAAMLQAAASELAARQRAMKSAGDNATDLIKKYTRLRNTARQAEITQELSEIVAGADALASPGPT0014297_1661DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115NANA
D1-29_031081671atpAATP synthase subunit alphaATGATCACGAAAACAGGAGAGCAGGGACTGCAGATGGCCGAATTGACCATCAACGCCGACGACGTCCGTAATGCGCTGAACGAGTTCGCGGCGTCCTACGAACCCGGAAACGCAGAACGCGTAGAGGTCGGCCGCGTTACCACCGCAAGTGACGGCATCGCCCGTGTTGAGGGCCTTCCCTCGGTCATGGCGAACGAGCTGCTTCGCTTCGAAGACGGCACTCTGGGCCTGGCCCAGAACCTCGACGTCCGCGAGATCGGTGTCATTGTCCTCGGTGACTTCACCGGGATTGAAGAAGGCCAGGAAGTTCACCGCACGGGTCAGGTTCTGTCCGTACCCGTCGGCGACGCATTCCTCGGCCGCGTGGTGGACCCCCTCGGTGTCCCCATCGACGACCTCGGCGAAATCAAGGCTGAGACCACCCGCGCCCTGGAACTCCAGGCTCCGGGCGTCACCCAGCGCAAGTCTGTGCACGAACCGATGCAGACCGGCCTGAAGGCTATCGACGCCATGATCCCGATCGGCCGCGGCCAGCGCCAGCTGATCATTGGTGACCGCCAGACGGGCAAGTCGGCCATCGCCATTGACACGATCATCAACCAGAAGGCCAACTGGGCTTCCGGTGATGTGACCAAGCAGGTCCGCTGCATCTACGTCGCCATTGGCCAGAAGGCGTCGACGATCGCTGCCATCCGCCAGACCCTCGAGGACAACGGCGCACTGGAGTACACCACCATCGTGGCGTCCCCGGCTTCTGACCCCGCTGGCTTCAAGTACCTGGCACCGTATGCAGGTTCTGCCATCGGCCAGCACTGGATGTACGGCGGCAAGCACGTCCTGATCGTGTTTGATGACCTGTCCAAGCAGGCTGAGGCCTACCGTGCAGTATCGCTGCTGCTCCGCCGTCCGCCGGGACGCGAAGCCTACCCGGGCGACGTCTTCTACCTGCACTCCCGCCTCCTGGAGCGTTGTGCCAAGCTCTCCGACGAGCTGGGCGCCGGCTCGATGACCGGCCTGCCGCTCATCGAGACCAAGGCAAACGACGTCTCGGCCTACATTCCGACCAACGTCATCTCCATCACTGACGGCCAGATCTTCCTCCAGTCGGATCTCTTCAACGCCAACCAGCGCCCCGCTGTTGACGTGGGTGTCTCTGTGTCCCGCGTTGGCGGTGCCGCACAGGTCAAGTCCATGAAGAAGGTCTCCGGTACCTTGAAGCTGGACCTGGCCCAGTACCGCGACATGCAGGCATTCGCCATGTTCGCCTCGGATCTGGATGCTGCCTCACGCCAGCAGCTGACCCGTGGTGCACGCCTGATGGAACTGCTCAAGCAGGGACAGTACGCGCCGTTCCCGGTCGAGGACCAGGTTGTCTCGATTTGGGCCGGCACCAACGGTTACCTCGACGACGTTCCTGTAGAGGACATCAACCGCTTCGAGGCAGGCTTCCTGGAGCACCTCAAGCACCGGTCCTCCATCCTGACCACGCTCGCGCAGACCAACGTCCTCGACGATGACACCGCTGCCGCACTGAAGACCGCCATCGTGGACTTCAAGCAGGGCTTCTTCGGGGAGGGCGACAACCACCTCGTTGGCGCCGGCCACGAGGAGCACCAGGCCATCGATGAGGCCCAGGTCGACCAGGAAAAAATCGTCAGGCAGAAGCGCTAGMITKTGEQGLQMAELTINADDVRNALNEFAASYEPGNAERVEVGRVTTASDGIARVEGLPSVMANELLRFEDGTLGLAQNLDVREIGVIVLGDFTGIEEGQEVHRTGQVLSVPVGDAFLGRVVDPLGVPIDDLGEIKAETTRALELQAPGVTQRKSVHEPMQTGLKAIDAMIPIGRGQRQLIIGDRQTGKSAIAIDTIINQKANWASGDVTKQVRCIYVAIGQKASTIAAIRQTLEDNGALEYTTIVASPASDPAGFKYLAPYAGSAIGQHWMYGGKHVLIVFDDLSKQAEAYRAVSLLLRRPPGREAYPGDVFYLHSRLLERCAKLSDELGAGSMTGLPLIETKANDVSAYIPTNVISITDGQIFLQSDLFNANQRPAVDVGVSVSRVGGAAQVKSMKKVSGTLKLDLAQYRDMQAFAMFASDLDAASRQQLTRGARLMELLKQGQYAPFPVEDQVVSIWAGTNGYLDDVPVEDINRFEAGFLEHLKHRSSILTTLAQTNVLDDDTAAALKTAIVDFKQGFFGEGDNHLVGAGHEEHQAIDEAQVDQEKIVRQKRPGPT0014298_72DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111NANA
D1-29_03109828atpH_1ATP synthase subunit deltaATGGCAGGTGTATCGAGCGAATCGCTGACCAAGGCTCTGGCTGAATTGGAAGCCAAGCTTCCTACGGCTTCGCTGCAGTTGGCTAAGGAACTCTTCGGCATTCTGGGAACGGTGGACACGTCGGCTGGACTGCGGCGTGCGCTTACTGATCCCTCCCGTAACGGCGAAGAAAAGGCGGCGCTGGTCCGGCAGTTGTTTGGCGGAAAAGTTTCCGCCGATGCTGTTGAAATTGCGAGCGGACTGGCCGGCTCACGCTGGGCATCTGCACGCGATATCGGCGATGCACTCGAGACCCTTGCCGCTTCGGTGGTTATCGCCGTCGCTGAAAACAAGTCGGCCGTCTCAGCCTCTGGAATCAGCGGGCTGGAAGAGCTGGAGAACGATCTGTTCTCCTTCAACCAGGCCGTTGCCTCCAACCACGAGGTACAGCGTGCTCTGTCCGAGCCGCAAGCAAGCGCGGCAGCGAAGACAGCCTTGGCCGAAAAGCTTGTTCCAGGAGCAAGCGAGGAAGCAAAGGTCCTGATTGGCCAGGCAGTGTCCCAGCCCCGCGGCATCAAGCCCACCCGGCTTGTGGCGCGGTTTGCAGAGCTGGCAGCAAAGCGCCAGCTCCGCTGGATTGCAACGGTCAGCGTTACCCGTCCCTTGACGGAGACGCAGGCCAGCCGGCTCCAGGCCGGGCTGAACGCCCTTTACGGGCGTGAGCTGAAGGTCAACATCAACGTTGACCCGACGCTCATCGGCGGTATCCGGATCCAGGTGGGCGACGAAGTGGTTGACGCTTCCGTTGTTACCCGTCTGGGCCAGCTCCACCGTCAGCTCGCCGGCTAAMAGVSSESLTKALAELEAKLPTASLQLAKELFGILGTVDTSAGLRRALTDPSRNGEEKAALVRQLFGGKVSADAVEIASGLAGSRWASARDIGDALETLAASVVIAVAENKSAVSASGISGLEELENDLFSFNQAVASNHEVQRALSEPQASAAAKTALAEKLVPGASEEAKVLIGQAVSQPRGIKPTRLVARFAELAAKRQLRWIATVSVTRPLTETQASRLQAGLNALYGRELKVNINVDPTLIGGIRIQVGDEVVDASVVTRLGQLHRQLAGPGPT0014299_178DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113NANA
D1-29_03110552atpFCOG0711ATP synthase subunit bATGAACCAGGTGATCATCTCAGCCGCCACAGAGGGCGAGACTAACCCACTGGTACCCAACGTCTGGGAAATGGGCGTTGTCCTCGTCGGCTTTGCTGTCCTCATGTTCATCGTGGTCAAGTTCGTTGTCCCGATGTTCGAGAAGACATTCGCAGAGCGCGCTGAGGCAATTGAGGGCGGCATCGCCAAGGCCGAGAAGGCCCAGGCGGAAGCTTCTGCAGCCCTCGAAGAATACAAGCAGCAGCTCACGGACGCCCGTGCAGAGGCCAACCGCATCCGCGAGGAAGCCCGTGCCGAAGGCGCCCAGATCCTCGCCGATCTGAAGGAAAAGGCTGCCGCAGAGTCCGCGCGTATCACCGCGCAGGCGCACGTGCAGATCGAATCAGAGCGCCAGGCGGCAGTTGTCTCCCTGCGCTCCGAGGTCGGTTCACTTGCTACCACTCTTGCCGGCCGCATTGTGGGCGAAGCCCTCAATGACGACGACCGCGCAAGCCGTGTTGTTGACCGCTTCCTGGCAGATCTGGAGAGCCAGAACGCAGGTGCAGCTAAGTAAMNQVIISAATEGETNPLVPNVWEMGVVLVGFAVLMFIVVKFVVPMFEKTFAERAEAIEGGIAKAEKAQAEASAALEEYKQQLTDARAEANRIREEARAEGAQILADLKEKAAAESARITAQAHVQIESERQAAVVSLRSEVGSLATTLAGRIVGEALNDDDRASRVVDRFLADLESQNAGAAKPGPT0014301_1690DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109NANA
D1-29_03111204atpH_2ATP synthase subunit cATGGAAGGCAATCTCAACCTCGTAGGTTACGGTCTGTCCGCAATCGGAGGTGGTATCGGTGTTGGTCTCGTGTTCGCCGCTTACATCAACGGTGTGGCACGCCAGCCGGAAGCCCAGCGCGTCCTGCAGCCGATCGCGTTCCTCGGCCTCGCGCTGACTGAAGCCCTCGCCATCCTCGGCCTGGTCTTCGCCTTCGTTCTCTAGMEGNLNLVGYGLSAIGGGIGVGLVFAAYINGVARQPEAQRVLQPIAFLGLALTEALAILGLVFAFVLPGPT0014302_3201DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110NANA
D1-29_03112738atpBCOG0356ATP synthase subunit aATGCATTTGCCGGCAATCCTGCCGTGGGGTGCCGCAGAGGGATTCTCCAAGCAGATGCTGCTTGTCCTGCTCTCTGTTGCCTTTATCGCCGTCTTCTTCGTGCTTGCCGCACGCAAGCAGCAGCTGGTACCAGGCAAGCTCCAGTTCGCCGGCGAGGCCGCCTACGGCTTCGTCCGCAACGGAATCGCCAAGGACATCATCGGCGGCAGGGACTTCATGAAGTATGTCCCGCTGCTGTTCAGCCTGTTCTTCTTCATCCTGGTGAACAACATCTACGGGGCCATCCCGTTCTTTCAGCTCCCCACGTTCTCACACGTCGGCGGCGCCTATGTCCTGGCGGGCATCGTTTACTTCACCTGGATCGCCATCGGCATCAAGAAGAACGGCCTGCGCTACTTCAAGCTGGCCACGGTGCCCTCCGGCGTTCCCTGGTACATCCTTCCGATCGTTATCCCGATCGAGATTATCTCCAACTTCCTGGTCCGGCCCGTCACGCACAGCCTCCGTCTGTTCGCGACCATGCTCGCCGGGCACCTCATCGTGATGATCGCCGGCTACGGCATCGAGTTCCTCATCATGCAGGAGAACGTCCTGCTGAAGGGCACCTCCCTCCTGGTCCTTGGCGGCGCGATCGCCATGTACATGCTTGAAGCACTGATCATGGTCCTGCAGGCCTATGTATTCACCCTGCTGACCGCGATCTACATCGAAGGCGCACTTCACGCCGACAGCCACTAGMHLPAILPWGAAEGFSKQMLLVLLSVAFIAVFFVLAARKQQLVPGKLQFAGEAAYGFVRNGIAKDIIGGRDFMKYVPLLFSLFFFILVNNIYGAIPFFQLPTFSHVGGAYVLAGIVYFTWIAIGIKKNGLRYFKLATVPSGVPWYILPIVIPIEIISNFLVRPVTHSLRLFATMLAGHLIVMIAGYGIEFLIMQENVLLKGTSLLVLGGAIAMYMLEALIMVLQAYVFTLLTAIYIEGALHADSHPGPT0014303_1975DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108NANA
D1-29_03113330hypothetical proteinATGTCTGACCGGAAGCGAGTGGGAGGCAGCGGCGCCTCCAAGCACCAGGTAACCGGTTCCGCACCTGGTGTTTCGGCTGAGAATAACGACGGCGGATACAACGCCGGAATAGCCGTCTTTAGCTACATAATTGGCGGAATCATCGTCTGGAGTTTGATAGGGTGGGGTCTGGATTATCTGTGGGGAACGCGCTGGTTCGTGCTCGCAGGCGCTCTGCTTGGAGCCGTCGGAGGTTTTTACCTTTCCCACATGCATGGCCTCACCAGTACTCGAAAAAATGCGGGGGATCGCCCTGCTGCCAGCGGGCCGTCCAAGGACGGCAAACACTAAMSDRKRVGGSGASKHQVTGSAPGVSAENNDGGYNAGIAVFSYIIGGIIVWSLIGWGLDYLWGTRWFVLAGALLGAVGGFYLSHMHGLTSTRKNAGDRPAASGPSKDGKHPGPT0030480_2325PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-ATP_SYNTHASE_ACITIVTY,PGPT0030480-atpI-K02116
D1-29_03114483hypothetical proteinATGACCTCCAACGCCGAGTCCGGACATGCGTCCGGCTCCGGACCCGTTGGCGTTTCAGGTTCCACCGCGTCGCTGTGGCTGGGGCTCCTGCGGCTCAGTTCGCTGGCAGCCGCGGCCGGCTTGGCCCTGTGCTCCGTAGCCGCCGCGCTTCTGGACGGCGTCAACGGCGCCTTCTCGGTTGCTTTGGGCGGACTGCTGGTTATGGCATTCTTCGGAATCAGCCTCCTGGTAGGCCATTTCGTGGGGCGCAGCAACCCCTCGGGTGCCATTGGGGTGTTCGTTGCGACGTACTTCATCAAGGTGGTCGGGTTCGCCGTTGTCCTGTTCCTTATCGGGGCTCCGGAATGGCTGCATGGCCGTTGGTTCCTGATCGGTGCCGTCGTCGCAGTGCTGCTGTGGCAGGCCGCGGAGCTTTACGGCTTCAGCAAGGCACGGCTGCAGATCTATAACGACCCCGAAACCAAGGAACCGCGAGATGTCTGAMTSNAESGHASGSGPVGVSGSTASLWLGLLRLSSLAAAAGLALCSVAAALLDGVNGAFSVALGGLLVMAFFGISLLVGHFVGRSNPSGAIGVFVATYFIKVVGFAVVLFLIGAPEWLHGRWFLIGAVVAVLLWQAAELYGFSKARLQIYNDPETKEPRDVPGPT0030480_309PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-ATP_SYNTHASE_ACITIVTY,PGPT0030480-atpI-K02116
D1-29_031151113wecACOG0472Decaprenyl-phosphate N-acetylglucosaminephosphotransferaseATGATTATGTACCTGCTCATGGGCTTGACGGCTGCCGTCGTGTCCTATTCGATGACCTGGCTTGCCCGGGTGATCGGCAACAGGCTCGAACTGCACCTGCCCATCCGCAGCCGGGATATGCATTCCACCCCGGTATCACGGCTCGGCGGGGTGGCGATCTTCCTGGGGGTGATGGTTGCGCTCATTGTGGCAAGCCAGTCCTTTTTTGTGAAGGACATTTACCGGAACAACTTTTCCCCGTGGGGAATCCTCGCCGGAGCCGCGCTGATCGTGCTGGTGGGCGTAGCCGATGACCTGCTGGACATCCGTTGGTGGGTAAAGCTCATCGGACAAAGTGCCGCAGCCCTGGTGGTGGCCATCTGGGGAGTCCAGATGACCATTGTCCCCTGGGTACCGGAACCGATCACTTTGGACAATGAGATGCTCCGGGTGGTGCTGACTGCCGGGCTGATCGTCACCACCATGAACGCCTTCAACTTCATCGATGGGCTGGACGGGCTGGCTGCCGGTGTGGCCATCATCGGCGGCACAGCATTCTTTTTCACCGCCTACTGGGTGCACCGAAACGCCGTACTCCTGGACTATTCGGACCTGGCGACGCTGATCACCGCTGTTTTGGTGGGCAGCTGCATCGGATTCCTGCCGCACAACTGGTTCCCGTCCAAGATCTTCATGGGTGATTCCGGGGCCATGCTGATCGGCCTGCTGATGTCCGCGGCCGGTATCGTCTCCACCGGCCAGATCACTTCGGGCCTGTATGACCGCGCCAACGGCATTTCCACCGTCATTCCCATCCTCCTGCCGTTCGCCGTGCTCTTCCTGCCGCTGCTTGACTTGGGCCTGGCCGTAATTCGCCGCACAGCCCGCGGCCGGTCACCATGGTCTGCGGACCGCGGCCATCTCCACCACAAGCTGCTGGACATCGGCTATTCGCACCGGACCGTGGTGATCCTGATGTACCTCTGGACCGCCATCCTGTCTTTCGGAGGACTGGCTTTTGCAGTGTTCCCCTGGCAGATCGTGCTCTCCGCTGACCTCTTCGCCACGCTGGTCATGGGCCTGATCACCGCGTGGCCCTACCTCAGCCGCCGGAACGACCAGGCACCGGCGTAAMIMYLLMGLTAAVVSYSMTWLARVIGNRLELHLPIRSRDMHSTPVSRLGGVAIFLGVMVALIVASQSFFVKDIYRNNFSPWGILAGAALIVLVGVADDLLDIRWWVKLIGQSAAALVVAIWGVQMTIVPWVPEPITLDNEMLRVVLTAGLIVTTMNAFNFIDGLDGLAAGVAIIGGTAFFFTAYWVHRNAVLLDYSDLATLITAVLVGSCIGFLPHNWFPSKIFMGDSGAMLIGLLMSAAGIVSTGQITSGLYDRANGISTVIPILLPFAVLFLPLLDLGLAVIRRTARGRSPWSADRGHLHHKLLDIGYSHRTVVILMYLWTAILSFGGLAFAVFPWQIVLSADLFATLVMGLITAWPYLSRRNDQAPAPGPT0015240_1203DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LIPO-|TEICHURONIC_ACID_METABOLISMCE-EPS-TEICHURONIC_ACID_METABOLIC_PATHWAY,PGPT0015240-wecA|tagO|rfe-K02851NANA
D1-29_03116897glfT1COG1216Galactofuranosyltransferase GlfT1ATGCCCGTTCGGGTTGCTGTCGCCGCCGTGACATTTAACCGTCACAAAGAGCTGGCTGTCCTGTTGGACGCCATCAACGCCCAGTCCGCCACGGTGGACACCATTTGCCTCATTGACAGCGGCACCGAACCGGCCCGGGACGTGGCCGCCAAACATTCCAACGTCGATTACGTCCGCTCTGAGGCCAACCTCGGCGGCGCCGGAGGTTTTGCCCTCGCCGCCCTCAAGGCCGTTGCCAGCGGTGCGAAATGGATCTGGATGATGGACGACGACGCCGAGCCGGCGGACGCCGAATGCCTCGCCACGCTGTTGCGCGAGGCCGAGGCACGCGACCTTGAGGCGGTGGTCCCGCTGGTGACGGCGCCGGGCCATCCGGACCGGCTGTCCTTTTTCTTCCGCCTGGACGGCAAGGTCACCCACGACCGGGCAGAGGTGGAAAAGCTTGGCTTCCTGCCGGATGACGGCCACTTCTTCAACGGCGCACTGATCCGCTCTGACGTCTTTTTCAAAGTGGGCCTGCCGGACATGCGCCTCTTCATCCGCGGCGACGAAGTGGACTTCACCATCCGCCTGCGGAAGGCGGGCATCCGCTTTGGCACTGTCACCACCACTGCCATCACTCATCCGCATGCCTTCACCGAAACCAAGCACGTCTACGGCGCCGGCTGGCATGTGATTGTGCCGGAGTCGGCCTTCAAGCGGTACTACTACTACCGCAATCGCGGTTACCTGATCAGGCGCTACTTCCGCGTCAAATCGTTAGTGGCCGACGTCGGCGGTTATGTTGGATATTTTGCCCAGCGCCGGGACCTGCCCGGGTTCCTGGACTGGGCCAGGTCGTTCAGCACCGGTTTGCGGGCCAAGGGCTTCGCTCCCCTGGAGGACCAGAAGTTCTAGMPVRVAVAAVTFNRHKELAVLLDAINAQSATVDTICLIDSGTEPARDVAAKHSNVDYVRSEANLGGAGGFALAALKAVASGAKWIWMMDDDAEPADAECLATLLREAEARDLEAVVPLVTAPGHPDRLSFFFRLDGKVTHDRAEVEKLGFLPDDGHFFNGALIRSDVFFKVGLPDMRLFIRGDEVDFTIRLRKAGIRFGTVTTTAITHPHAFTETKHVYGAGWHVIVPESAFKRYYYYRNRGYLIRRYFRVKSLVADVGGYVGYFAQRRDLPGFLDWARSFSTGLRAKGFAPLEDQKFPGPT0024210_457DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLINGCE-REMODELLINGGALACTOFURANOSYLTRANSFERASE_ACTIVITY,PGPT0024210-glft1-K16649NANA
D1-29_03117759N-acetylglucosaminyldiphosphoundecaprenol N-acetyl-beta-D-mannosaminyltransferaseATGACGCTCGCTCGGCAGCAGATTCCTGTCCTGGGCATAGACGCCACACCACTGAAGGTAGCCGAACTCATGGCTGTCCTTGAGGGTTTTGTGGCCGACGGGACCACCAGGACCGTCCTGGGACACAACCTGCACAGCGTTACGCTCACTCATTCCGACGCGGCATTCCGTGCACTGTACGAGGACAGCGACGTCGTACTTCTCGACGGCGCACCCGTCCTGTGGTTGTGGAGCAGGTCCCGCACGGCCTCAGGGGCCGTGATGGATTATCGCCTGGGCTCCACCGACTGGATCCCTGCCCTTGGCCAGGTTGCCGGTCTTGAGCGGATCGCAGTCATCGGGGCAGGACCTGAAGCAAACGCCAAGGCAGTCCTGCGGCTCGAGGGTATTGTGCCGTCGGCCACGGTGGTGGGTATGCCGGGCGAAGGCTGGAATGACAGCGCCGAAGAAGCCGCAGCCGCGTGGCTCGAGGAGCAGCGTCCCCAGCTTGTCCTGCTCGGATTGGGCATGCCGCTGCAGGAGTCCGTGCTACAGCGCCGGATTGGTTCACTGCCGCCGGCGATCTATTGCACCGTTGGCGGAGCCATCGAACAACTGGCGGGAATCCAGAAGCTCGCACCCCGATGGCTGGGCAGGCTCGGCCTGGAGTGGGCATGGCGGCTCATCCTGCACCCCCGGCGGGTTGCCTACCGGGTTTTCGGTGAGCCGTGGGTCCTGCTCTGGCTCCTGGCCCGCCGCCGCCTCCGGCGCAACCCCTAGMTLARQQIPVLGIDATPLKVAELMAVLEGFVADGTTRTVLGHNLHSVTLTHSDAAFRALYEDSDVVLLDGAPVLWLWSRSRTASGAVMDYRLGSTDWIPALGQVAGLERIAVIGAGPEANAKAVLRLEGIVPSATVVGMPGEGWNDSAEEAAAAWLEEQRPQLVLLGLGMPLQESVLQRRIGSLPPAIYCTVGGAIEQLAGIQKLAPRWLGRLGLEWAWRLILHPRRVAYRVFGEPWVLLWLLARRRLRRNPPGPT0023455_1081DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023455-tagA|tarA-K05946NANA
D1-29_03118912tsaCThreonylcarbamoyl-AMP synthaseGTGACCATAACCTACGACTGCACGTCCGATGATCAGCGCGCCCTGGGACTGGAGCATGCCCAGCGTGCCATCAGCGAAAAAAAGTGCGTGGTATTGCCCACCGACACGGTATACGGGATCGCCGCGGACGCCTTCTCACCGCACGCAGTCACCATGCTGCTGGTCTCCAAGGGCCGCAGCCGGACCATGCCTCCGCCCGTCCTGATTCCTCGCCTTAACGCGCTGGACGGCCTGGCGACAGATGTTTCGGCGGACGCCCGCAAGCTGGCCGAGGCTTTCTGGCCCGGCGGACTCACCCTGATCCTGCATGCCCAGCCGTCACTGGACTGGGACCTGGGGGAGACCAAAGGAACCGTCGCCCTGAGGATGCCAGCAGACGAGGTTGCCCAGGAACTCCTCACGCTCACCGGGCCCCTGGCCGTATCGTCGGCTAACCGTACCGGCCAGGCCCCGGCGCAGACGGCCGCCGAGGCACGTGCCCAGCTCGCCGACTCCGTGGAGGTCTATCTCGAGGGCGGTGTCCGCCCGCTCAACACTGCTGAAGCCTTGCCTTCCACCATCGTGGACGCCACGGGCCCCCTCCTGCGTGTAGTGCGCAATGGCGCCGTGACGCTGGCGCAGTTGCGGGAACACGTGCCGGGGGTCCTGGGCCTGGGAGAAGTTCCGATGGCCGAGGAACCTGCAGCGGAAGAAGCCACGGAAGTCGAGGCGGCACCTGCAGCGGAAGAGGCCCCGGCGGCACCCGCAGCGGAAGAAGCCACGGCGGCACCTGAGGCAAAGCCCGTAGCTGACAAAGCCCAGGGAGTTCCTGCAGACGCAGCCCCTGCAGACGCAGCGGGACCGGAGCAGGCCACAACCCAGCCTGCTGCGGCGGAGCGCGCCGCCGGACCGCGGGAATCCGACGCCGGATGAMTITYDCTSDDQRALGLEHAQRAISEKKCVVLPTDTVYGIAADAFSPHAVTMLLVSKGRSRTMPPPVLIPRLNALDGLATDVSADARKLAEAFWPGGLTLILHAQPSLDWDLGETKGTVALRMPADEVAQELLTLTGPLAVSSANRTGQAPAQTAAEARAQLADSVEVYLEGGVRPLNTAEALPSTIVDATGPLLRVVRNGAVTLAQLREHVPGVLGLGEVPMAEEPAAEEATEVEAAPAAEEAPAAPAAEEATAAPEAKPVADKAQGVPADAAPADAAGPEQATTQPAAAERAAGPRESDAGNANANANANA
D1-29_03119870prmC_3COG2890Release factor glutamine methyltransferaseATGACCACCAGCTCCGGGCAGTCCCTCGCCGCTGCCGTCAGCGAAGCAACGGCCGTACTCCAGGACGCCGGCGTTCCCAGTCCCCGAGTGGACGCGGAATTGCTGGCGGACCATCTGCTGGGTGTCGGACTGGGACGGTTGCGGGCCATGATGCTCGGTGACGCACCCGCGCCTGAAGGCTACGCCGAGCTTGTTGCCGAGCGGGCGCGACGGATTCCGCTGCAGCACATCACGGGAGTGGCCCATTTCAGGTACTTGGAGCTCGCCGTCGGACCCGGCGTGTTTATCCCGCGTCCCGAAACCGAATCGGTGGTGCAGCTGGTGATTGACCACGTCAAGGACATGCCACACCCGAGGATTGTTGATCTGGGAACGGGTTCCGGCGCGATTGCCGGTTCCATTGCCCACGAGATCCCCGGCGCTGATGTCCACGCCGTGGAGTACAGCGCCTTCGCCCACGCCTGGGCAGCCAGGAACCTGGCGCCCCTGGGCGTCAAACTAGTCCTGGGGGATCTGCGGAACGCGCTGCCCGACCACAACGGAACCTTCGACGTCGTGGTGTCCAACCCGCCGTACATCCCCGCCGAAGCCGTCCCGAACGAACCGGAAGTGGCACTGCACGATCCCCCGGAAGCGCTTTACGGCGGGGGAGCGGACGGCATGGAACTTCCGACGGCGGCAGCGGCCTCCGCAGCGCGGTTGCTGGTTCCGGGCGGCTACTTTGTGATGGAGCACGCCGAAGTGCAGGCGGCCTGGGTGGCCGCCCTGATGAAGCGGGCCGGCGTCTGGGCCGGGATTACAACGCATCTGGATCTCAACGGCAAGGAACGCGCCACCAGCGCCACACTGGCCGGTCCGCCTCCTGAGTGAMTTSSGQSLAAAVSEATAVLQDAGVPSPRVDAELLADHLLGVGLGRLRAMMLGDAPAPEGYAELVAERARRIPLQHITGVAHFRYLELAVGPGVFIPRPETESVVQLVIDHVKDMPHPRIVDLGTGSGAIAGSIAHEIPGADVHAVEYSAFAHAWAARNLAPLGVKLVLGDLRNALPDHNGTFDVVVSNPPYIPAEAVPNEPEVALHDPPEALYGGGADGMELPTAAAASAARLLVPGGYFVMEHAEVQAAWVAALMKRAGVWAGITTHLDLNGKERATSATLAGPPPENANANANANA
D1-29_031201074prfACOG0216Peptide chain release factor 1ATGTTTGAGTCCGTACAGGGCCTGCTTGATGAGCATGATGCTATCCAGGCGCAGCTGGGGGATCCTGCTGTTTATGCTGACCAGCGGCTTGCCCGGAAGCTGGGGCGGCGTTCCGCTCAGTTGAACGGCATTGTGGAGGCTTACAACAAGTGGCATGCCATTGAGGATGACCTTGCCGCGGCGAAGGAGATGGCGGCGGAGGATCCTGAGTTTGCTGCCGAGGTGCCGGTGCTGGAGGCTGCCCTGGAGGAGGCTGCGGCCAAGCTGCGGCGCTTGCTCATTCCGCGCGATCCTGATGATGCCCGCAACGTGATCCTGGAGGTCAAGGGTGGCGAGGGCGGCGACGAGGCTGCACTGTTCGCCGGCGACCTGCTGCGGATGTACACCCGGTACGCGGAATCGCGCGGCTGGAAGACTGAGCTCATCTCGGCCACCGAATCCGATCTTGGCGGGTACAAGGACGTCCAGATGGCCGTCAAAGGCAACTCCAACGATCCGGCCGAGGGCGTCTATGCCCGGCTGAAGTTCGAGGGTGGAGTGCACCGCGTCCAGCGTGTTCCCGTGACTGAGTCGCAGGGCCGGATCCATACCTCAGCTGCGGGCGTGCTGGTCCTGCCCGAGGTTGACGAGCCGGAAGAGCTCGAAATCAACCAGAACGATCTCAAAATCGATGTCTACCGGTCTTCAGGCCCCGGTGGCCAGTCCGTGAATACCACTGACTCGGCTGTCCGCATCACGCACCTTCCCACCGGGATTGTGGTGGCCATGCAGAACGAAAAGTCGCAGCTGCAGAACCGCGAAGCCGGCATGCGCGTCCTGCGTGCCCGCATCCTGGCGCACCAGCAGGAGCAGATCGACGCAGAGAACTCGGCCCAGCGGAAGTCCCAGATCCGCACCATGGACCGTTCCGAACGCATCCGCACCTACAACTACCCGGAAAACCGGATTGCCGACCACCGCACCGGTTACAAGGCGTACAACCTGGATCAGGTCATGAACGGGGACCTGGAACCGGTGATTCAGTCAGCCATCGAGATGGACGAACAGGCACGCCTGGACGCCATCGGGGAATAAMFESVQGLLDEHDAIQAQLGDPAVYADQRLARKLGRRSAQLNGIVEAYNKWHAIEDDLAAAKEMAAEDPEFAAEVPVLEAALEEAAAKLRRLLIPRDPDDARNVILEVKGGEGGDEAALFAGDLLRMYTRYAESRGWKTELISATESDLGGYKDVQMAVKGNSNDPAEGVYARLKFEGGVHRVQRVPVTESQGRIHTSAAGVLVLPEVDEPEELEINQNDLKIDVYRSSGPGGQSVNTTDSAVRITHLPTGIVVAMQNEKSQLQNREAGMRVLRARILAHQQEQIDAENSAQRKSQIRTMDRSERIRTYNYPENRIADHRTGYKAYNLDQVMNGDLEPVIQSAIEMDEQARLDAIGENANANANANA
D1-29_031212235rhoTranscription termination factor RhoGTGACCGAAACCACTGAGCTGTCTTCAGCTGTGGAACTATCATCTTCTGCTGCCGGATCATCAACGGCCGCGCCCGCAAAGAGCAGCGGCCTTGCCGGCCTGAAGCTCGCCCAACTGCAGGCACTTGCCAGCCAGTTGGGTATTTCCGGCGGATCCCGCATGCGCAAGGGGGACCTGGTCACGGCCATTTCCGCCCATCGCTCGGGCACGCCGGTCACCAAGGCCCAGGTCAAGGGCACAGAGAAGGCGAGCGAGACCAAGACCGCTCCCGCTGCGGCAGCACCGGTTGAGGCGCCCGCCGAAGCTACGGAGGCCCCGGCCGCCGAGGGAACCCGGGCACGTGGCCGCGGCCGCAGCCGCCGGGCCGGAAGCGACGGCGTCGTTGCCGCTCCCGCCTCAGAGTCTCCTGCCGCTGAAGCTCCCGCCGCATCGGTAGCTCCCGCCGCCGTCGAAACGCCTGCCGCCGAAGCAGGCGAGACAGCGGCCGAAGGCGCCGGCGAGCGTCGCCAGCCCCGCACCCGTAACCGCCGCCGTGGGGAAGCCGTTGCCGCTGCTCCGCTGGCTGCTGAAACCGTTGAAGCGGCTGCAGACCAGCCTGCTGCCGAGCAGCGCACGGCAGAGCGCACCGAGTCGCAGCCCGTCGAGTCCGGTGACGGCGCACGGGCGGACCGAAGCAGCCGCACCCGCGGTGCCAGGGACGGTGCCCGGGAAACTGCCCGCGACACCGCAGCCCGCGAAACCCCGGCACGGGACACCTCAGCCCGTGAGGCTGCCGACGGCGGCCGCGATAACGCAGGCAGCCGTGACGGCGGCCAGCGTGACGGCAATCGCCGGGAAGACACCCGGGAACTCGGCCGCGACAGCCGCGACAGCGACGATTCAGACGGCGGCAGCCGCCGGAACCGCCGGAACCGCCGCGACAGGAATGACCGCAGCGACCGTTCAGGCGGACAGGACAGCCGGGACAGCCGGGACAACAATTCCCGCAATGACCGTTTCCGTGACCGCAATGACCGCCGTCGCGGACGTGCCCAGGGCCCTGACGTCGACGACGTCGAGGTCACCGAGGACGACGTCCTGCTGCCGGTGGCGGGCATCCTTGACGTCCTGGAGAACTACGCGTTCATCCGTACGTCCGGCTACCTGCCCGGCCCGAACGACGTCTATGTGTCCCTGGCACAGGTCAAGAAGTACAACCTGCGTAAGGGCGATGCAGTGGTTGGCGCCATCCGCGCTCCCCGCGACGGCGAAGACCGCAGCCAGCAGTCGGCACGCCAGAAGTTCAACGCCCTGGTCCGCGTCACGTCAGTGAACGGCAAGACGTCCGAAGAGCTGAAGGACCGCGTCGAATTCGCCAAGCTGGTCCCGCTGTACCCGTCCGAGCGCCTGCGCCTCGAGACGGACCCCAAAAAGATCGGTCCGCGTGTCATCGACCTCGTGGCGCCCATCGGCAAGGGCCAGCGTGGCCTGATCGTCTCCCCGCCCAAGGCTGGCAAGACGCTCATCCTGCAGTCCATCGCGAACGCCATCACCACCAACAATCCTGAGGTCCACCTCATGATGGTGCTGGTTGACGAACGGCCCGAAGAAGTCACGGACATGCAGCGCACCGTCAAGGGTGAGGTCATTGCCTCCACCTTCGACCGTCCCGCCGATGACCACACCACCGTTGCTGAACTCTCCATCGAACGCGCCAAGCGCCTCGTAGAGATGGGCATGGACGTGGTGGTCCTGCTGGACTCCATGACCCGCCTGGGCCGCGCCTACAACCTGGCAGCACCGGCCTCCGGCCGCATCCTGTCCGGTGGTGTCGATTCCGCAGCGCTGTACCCACCGAAGCGCTTCTTCGGTGCAGCCCGCAACATCGAAAACGGCGGCTCGCTCACCATCCTGGCCACCGCGCTCGTGGAGACCGGTTCCAAGATGGACGAGGTCATCTTCGAAGAGTTCAAGGGCACCGGCAACATGGAGCTCCGCCTCTCCCGCCAGCTGGCAGACAAGCGCATCTTCCCGGCCGTGGACGTCAACGCGTCCGGCACCCGCCGCGAAGAGAACCTGCTTTCCCCCGAGGAAGTCAAGATCATGTGGAAGCTGCGCCGCGTCCTCTCCGGGCTCGAGACCCAGCAGAGCCTTGAGCTGCTGACCAACAAGATCCGGGAGACCCAAAGCAACGTCGAGTTCCTGATGCAGGTCCAGAAGACGACGCTTGGTGCAAAGTCCGATAACGACAAATAGMTETTELSSAVELSSSAAGSSTAAPAKSSGLAGLKLAQLQALASQLGISGGSRMRKGDLVTAISAHRSGTPVTKAQVKGTEKASETKTAPAAAAPVEAPAEATEAPAAEGTRARGRGRSRRAGSDGVVAAPASESPAAEAPAASVAPAAVETPAAEAGETAAEGAGERRQPRTRNRRRGEAVAAAPLAAETVEAAADQPAAEQRTAERTESQPVESGDGARADRSSRTRGARDGARETARDTAARETPARDTSAREAADGGRDNAGSRDGGQRDGNRREDTRELGRDSRDSDDSDGGSRRNRRNRRDRNDRSDRSGGQDSRDSRDNNSRNDRFRDRNDRRRGRAQGPDVDDVEVTEDDVLLPVAGILDVLENYAFIRTSGYLPGPNDVYVSLAQVKKYNLRKGDAVVGAIRAPRDGEDRSQQSARQKFNALVRVTSVNGKTSEELKDRVEFAKLVPLYPSERLRLETDPKKIGPRVIDLVAPIGKGQRGLIVSPPKAGKTLILQSIANAITTNNPEVHLMMVLVDERPEEVTDMQRTVKGEVIASTFDRPADDHTTVAELSIERAKRLVEMGMDVVVLLDSMTRLGRAYNLAAPASGRILSGGVDSAALYPPKRFFGAARNIENGGSLTILATALVETGSKMDEVIFEEFKGTGNMELRLSRQLADKRIFPAVDVNASGTRREENLLSPEEVKIMWKLRRVLSGLETQQSLELLTNKIRETQSNVEFLMQVQKTTLGAKSDNDKNANANANANA
D1-29_03122975thrB_1COG0083Homoserine kinaseGTGGACGCCACCTCGCAGACCACTGTTGGGCTGCCACTCATCGACGCCGGACAGCGGGTAACGGTCCGGGTCCCGGCCACCAGCGCGAACCTCGGACCGGGCTATGACAGCCTGGGACTGGCGCTGGCGCTTTATGACACCCTGACCGTGGAGAGCCTGGAGACGGACGAACTCGTCTTTGAGCTCAGCGGCGAGGGGGCGGATACGCTTCCGCGGGATTCCAGCCATCTGGTGATCAAAGCCATGGAGGCCGCTTTCGCGCGTCTCGGTTACCGCCACGGCGGCTTGAAGGTCACGGCGGAAAACGTGAACCCGCACGGCCGCGGGTTGGGATCCTCGGCATGTGCCGTGGTGGCCGCCGTGTCCGCCGCCAATGCTTTGGTCCCGGTGCAAAGCGGGCGCGACCGGGATTGGGTCCTCCAACTCACCAGTGAGCTGGAAGGACACCCGGACAACGTAGCACCGGCTATTTTCGGCGGACTGGCGCTGTCCTGGCAGGACAGTGACCGGTACAGCAGTACCTGTGCAACCGTGGCCGAGTCCGTGGTTCCCATAGTTGCCGTGCCTGACTACGAGCTTTCCACCGAGGCGGCGAGGGCCCTGCTGCCTGCCTCAGTGGCTCATCACGCAGCAGCCATGAACTCAGGCCGCGCCGCGCTGCTGATCCACGCGCTGACGCAAAAACCGGAATTCCTCCACCCCGGAACTGAGGACTACCTCCACCAGAGCTACCGCGCCGCAGCCATGCGGCCCAGCGCAGCACTCATCACGGCCCTCCGCGCAACAGGGCGGGCGGCCGTTGTTTCCGGCGCCGGACCCACGGTGCTGGTACTGGCCAACGGCGGGGCCGAAGCCTCCGACGTGGTCAGGTTCATCGAAGAGTTCACCCAAGCCAACACGCCTGACATTGCCTGGCGCGTGATGAAGCTGGCAGTGGACGTCGAAGGTGCTAAGGTGGACTTGCACCGGCGGTAAMDATSQTTVGLPLIDAGQRVTVRVPATSANLGPGYDSLGLALALYDTLTVESLETDELVFELSGEGADTLPRDSSHLVIKAMEAAFARLGYRHGGLKVTAENVNPHGRGLGSSACAVVAAVSAANALVPVQSGRDRDWVLQLTSELEGHPDNVAPAIFGGLALSWQDSDRYSSTCATVAESVVPIVAVPDYELSTEAARALLPASVAHHAAAMNSGRAALLIHALTQKPEFLHPGTEDYLHQSYRAAAMRPSAALITALRATGRAAVVSGAGPTVLVLANGGAEASDVVRFIEEFTQANTPDIAWRVMKLAVDVEGAKVDLHRRPGPT0020275_519DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020275-thrB-K00872NANA
D1-29_031231107thrCCOG0498Threonine synthaseGTGGCTCACCAATGGCGCGGCGTTATCCGCGAATACGCTGACCGTCTGCCCGTGACGGAATCCACCCGGGTCATCAGCCTGGGCGAGGGCGGCACTCCGCTGGTCCACGCGCAGAAGCTCTCCGAACTGACAGGTTCCACCGTGTACCTGAAGGTCGAGGGGATGAACCCCACCGGCTCGTTCAAGGACCGCGGCATGACCATGGCCATGACGGCAGCAGTTGCGTCCGGCGCCCAGGCTGTGGTCTGTGCCTCCACCGGCAACACCTCCGCCTCCGCAGCCGCCTACGCCACGGCCGCGGGGCTGAAATGCGCAGTCCTGGTGCCCGAAGGCAAGATCTCCATGGGCAAGCTCAGCCAGGCGATCGCCCACGGCGCCACGCTGCTCCAGGTTGACGGCAACTTCGACAACTGCCTGGACATTGCCCGGAAGCTGGGGGAGTCCTACCCGGTTTTCCTGGTCAACTCCGTCAACCCGGCCCGCATCCAGGGCCAGAAGACAGGGGCCTTCGAGATCGTTGATGCCCTCGGTGACGCCCCGGACATCCATGTGCTCCCCGTCGGCAACGCCGGCAACATCACGGCGTACTGGAAGGGGTACAAGGAATACTCGGCCCCGTTCGAATCCGAGACCGCCGGGACCCTGCCTGCCGTGTCCACCAGGACGCCGCAGATGTGGGGCTTCCAGGCTGCCGGCGCGGCCCCCTTTGTAGCCGGCCACCCCATCACCGAACCTGACACCATCGCCACCGCCATCCGGATCGGCAATCCCGCCTCCTGGGACGGTGCGATCGAAGCCCGGGATGAGTCCGGCGGATTCATCGATGCCGTAACAGATGAGGAGATCCTGGACGCCCACCGCTGGCTCTCCGCCCGCGAAGGTGTCTTTGTGGAGCCCGGCTCCGCAGCCGGTGTCGCCGGCCTGCTCAAGAAGCACGCCGCAGGTGAGGTTCCTGCAGGCAAAACCATCGTCATCACGGTCACCGGCCACGGCCTCAAGGACCCCCAGTGGGCCCTGCGCACCGAAGACGGCAGTGACGTACAGCCCGTCAAGGTCTCCAACGACGTCGTGACGGTTGCGGCCGAATTGGGACTGGAAGAAAAATAGMAHQWRGVIREYADRLPVTESTRVISLGEGGTPLVHAQKLSELTGSTVYLKVEGMNPTGSFKDRGMTMAMTAAVASGAQAVVCASTGNTSASAAAYATAAGLKCAVLVPEGKISMGKLSQAIAHGATLLQVDGNFDNCLDIARKLGESYPVFLVNSVNPARIQGQKTGAFEIVDALGDAPDIHVLPVGNAGNITAYWKGYKEYSAPFESETAGTLPAVSTRTPQMWGFQAAGAAPFVAGHPITEPDTIATAIRIGNPASWDGAIEARDESGGFIDAVTDEEILDAHRWLSAREGVFVEPGSAAGVAGLLKKHAAGEVPAGKTIVITVTGHGLKDPQWALRTEDGSDVQPVKVSNDVVTVAAELGLEEKPGPT0009175_5380DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733NANA
D1-29_031241329homCOG0460Homoserine dehydrogenaseATGACGGAAATGCGAACCCTGAAAGTAGCCCTGCTGGGCTGTGGCAACGTTGGGGCCCAGGTTGCGCGGATTCTCATTGAGGACGCCGACGCCCTTGCCTCCAGGACCGGTGCAAGGCTGGAGCTCAGTGGCATTGCCGTCCGAAACGTCAATGCCCGCCGCGATGTTGACCTGCCGCAGGAACTGTTCACCACCGACGCCGACACCCTGGTCAAGGATGCCGACCTCGTGATCGAGCTGCTGGGCGGGATTGAACCTGCCCGCTCGCTGATCGTTTCGGCACTCCGCAACGGCGCCGGCGTGGTTACCGGCAACAAGGCGCTGCTGGCCCAGGATGGCCCCACCCTTTATGAAGAGGCCGACAAGGCAGGCGTCCAGCTTTCCTACGAAGCCGCCGTGGCCGGCGCCATCCCCATCCTGCGGCCCATCCGCGACAGCCTGGCGGGGGACCGGATCACCCGCGTCCTGGGCATCGTCAACGGCACCACCAACTTCATCCTGGACCAGATGGACACCACTGGCGCGCAGTTCGCCGACGCCCTGGCAGAAGCCCAGCGCCTCGGTTACGCGGAGGCGGACCCCACCGCCGACGTCGAGGGGCACGATGCCGCCGCCAAGGCAGCCATTCTCGCCTCGCTGTCCTTCCACACGCGTTTCGCCCTGGAGGATGTGCACTGTGAAGGCATCACCTCGGTGAGCGCGGCGGACATCGCCGCAGCCAAGGACGCCGGCTTTGTCATCAAACTGCTGGCAATCGCCGAAAAATTGACCCCCGCAGGCACGGAAACAGACGGCATCGAAGGCGTATCAGTAAGGGTGCACCCCACCCTGCTTCCGCGCGAACATCCGCTCGCCGCGGTGCACGGGGCCTTCAACGCGGTCTTTATCGAGGCTGAGAACGCCGGCGAACTGATGTTCTACGGCCAGGGCGCGGGAGGAACCCCGACGGCGTCTGCCGTCCTGGGTGACCTCGTCTCGGCAGCCCGCCGGATCGTGCTGGGCGGCCCCGGACGCACCGAGACCACTACCGGACACGTTCCGGCCCTAGGCATCCAGTCCTCCACCACCAGTTACTACATCGGGCTCGACGTGGCAGATCAGCCGGGCGTGCTGGCCCGCATCGCGCAGCTCTTTGCCGAGCACGGCGTCTCCATCGAAATCATGCGGCAGACCATCCACAAGGACGCAGCTTCCAACGTGGAATCGGCCGAATTGCGGATTGTCACGCACCGCGCATCCGAGGCTGCCCTCGCGGCCACCGTCGAGGCCGTGAAGGGCCTGGACGTTATCAATTCAGTTACATCCGTTCTGCGGGTAGAAGGAGTCTAAMTEMRTLKVALLGCGNVGAQVARILIEDADALASRTGARLELSGIAVRNVNARRDVDLPQELFTTDADTLVKDADLVIELLGGIEPARSLIVSALRNGAGVVTGNKALLAQDGPTLYEEADKAGVQLSYEAAVAGAIPILRPIRDSLAGDRITRVLGIVNGTTNFILDQMDTTGAQFADALAEAQRLGYAEADPTADVEGHDAAAKAAILASLSFHTRFALEDVHCEGITSVSAADIAAAKDAGFVIKLLAIAEKLTPAGTETDGIEGVSVRVHPTLLPREHPLAAVHGAFNAVFIEAENAGELMFYGQGAGGTPTASAVLGDLVSAARRIVLGGPGRTETTTGHVPALGIQSSTTSYYIGLDVADQPGVLARIAQLFAEHGVSIEIMRQTIHKDAASNVESAELRIVTHRASEAALAATVEAVKGLDVINSVTSVLRVEGVPGPT0020155_900DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003NANA
D1-29_031251476lysACOG0019Diaminopimelate decarboxylaseGTGAACCCCGTGTCAGTAGAGGCCCGGAGCGAAGCCTCCCCCCTTGCCCCGGACTGGTTGGCGGTGCCGGCTGACCTGAACGCCCTCCAGGAACCCATGTGGGCGGGCAGCGTGAAGCGGAACAACGACGGCGTCCTGACGGTGGGAGGACGCGACGTCGCCGCCCTGAAGGAACAGTTCGGAACACCGCTTTTTGTGATGGACGAGGCCGACTTCCGTGCCCGGGCACGCGCGTTCAAAGACTCCTTCGACGCAGCTTTCCAGGACATTTGCGGGGGAGTGGACGTCTACTACGCCGGCAAGTCCTTCCTCTGTACCTCCGTGGTCAAGTGGGTTGAGGAAGAGGGTCTGCGCCTGGACACAGCTTCCGGCGGCGAACTGGCGGTAGCCGCGCGCGCCGGCATTCCCGGTGACCGCGTAGCGTTGCACGGTAACAACAAGTCCGACGCGGAGATCAACCGGGCGCTGGACATGGGCCTGGGCCGGATCGTGGTGGACAGCCTCGATGAACTCGTCCGCCTCGGCGCCATCGCCCAGCACCGCGGTGAGCAGGCCAAGGTCATGCTCCGCCTGACGCCTGGTGTCCATGCCCACACTCATGAATTCATCGCCACTGCCCATGAGGACCAGAAGTTCGGCCTGTCCATGGCCGGAGACTCCACCGACAAGGCAGGCCTGTCCGCAGCCGAGGAAGCCGTTGCAGCAGCCTCGGCGCATCCGGGCATTGAACTGCTGGGCCTGCACTGCCACATCGGGTCCCAGATCTTTGAGCCGGACGGCTTTGCGCTGGCAGCCGAGAAACTTCTGCGGTTCCTCGCCGCCATGCAAGAGAAATACTCCGTCCAGATGCCGGAACTGGACCTTGGCGGTGGCTACGGAATTGCCTACACACCCGTTGACACCCCCCGCCCCGCAGCTGACATCGCGACGGCGATGGCCGCCGTCGTACGTTCCACCTGTGCCGAACTGGGCATCACGGCACCCCGAATTTCCATCGAACCAGGCCGGGCCATCGTTGGCACCACCACCTTCACGCTGTACGAGGTGGGCACGCTAAAGACCGTCCGCGTCGACGCGCCCGCCGAGGCAGAAGGGCCCGAGAACGTTACGCATCCGCGTCGCTATGTGTCGGTGGACGGCGGCATGAGCGATAACGCCCGCCCGGTGCTCTATGACGCGGATTATTCGGCGATTCTTGCCTCCCGCACGTCCGCGGCGGCTCCGCAGCTGTCCCGCGTGGTGGGCAAACATTGCGAGAGCGGCGACATAGTTGTTAGAGATGTATATCTGCCCGAGGACGTGGCAGCCGGTGATCTGCTTGCTGTACCGGGTACCGGCGCCTACTGCTGGGCCCTGTCGAGTAACTACAACTATCTGGCCCGGCCGGGCGTTGTCGCGGTGCGCGACGGATCTGCCCGGCTGATTGTCCGCGGGGAAACCGAAGAAGATTTGCTCAACCGCGACATGGGAGTCTGAMNPVSVEARSEASPLAPDWLAVPADLNALQEPMWAGSVKRNNDGVLTVGGRDVAALKEQFGTPLFVMDEADFRARARAFKDSFDAAFQDICGGVDVYYAGKSFLCTSVVKWVEEEGLRLDTASGGELAVAARAGIPGDRVALHGNNKSDAEINRALDMGLGRIVVDSLDELVRLGAIAQHRGEQAKVMLRLTPGVHAHTHEFIATAHEDQKFGLSMAGDSTDKAGLSAAEEAVAAASAHPGIELLGLHCHIGSQIFEPDGFALAAEKLLRFLAAMQEKYSVQMPELDLGGGYGIAYTPVDTPRPAADIATAMAAVVRSTCAELGITAPRISIEPGRAIVGTTTFTLYEVGTLKTVRVDAPAEAEGPENVTHPRRYVSVDGGMSDNARPVLYDADYSAILASRTSAAAPQLSRVVGKHCESGDIVVRDVYLPEDVAAGDLLAVPGTGAYCWALSSNYNYLARPGVVAVRDGSARLIVRGETEEDLLNRDMGVNANANANANA
D1-29_031261650argSCOG0018Arginine--tRNA ligaseGTGACTCCCGAAGAACTCTCCCTCGCCATCTCCACCTGCCTGAAGGAAGCCGTCGCCGCAGGCGAAATCGCCCTTTCTGCATCAGCCGTGCCTGCCGAGGTGCGAGTGGAGCGTCCAAAGAACCGGGAACACGGAGACTGGGCCACCAACATTGCCCTGCAGCTGGCCAAGCAGGCCGGGACCAATCCCCGGGAGTTCGCCACCATCCTTAGTGCCCGGCTGAAGACGATCGACGGCGTTTCGGCCGTGGATATTGCAGGGCCGGGATTCCTGAATATCACCGTTGACGCGGCGGCAGCAGGCGCTTTGGCCAAGGCCATCGTGGAAGCCGGACCTGCCTACGGAACCACTACCGTGCTGGCCGGCCACGTGGTCAACATGGAGTTCGTCTCGGCAAACCCCACCGGTCCGCTGCATATCGGCCATACCCGCTGGGCCGCCCTGGGCGACTCCATCGCCCGTGTGCTGCGCGCCTCTGGTGCCGAAGTCACGGCCGAGTACTACATCAACGACGCCGGTACGCAGATGAACGTTTTTGCCCAGTCGGTGTACTCACGGCTCCACGGACTGCCCGTTCCCGACGGCGGCTATCCCGGACAGTACATTGCCGACCTCGGCCACGAGGTGCTCACAGAACACCCGGATATCCGCGAACTCACCAAGGTGGCCGCGATTCCTGTCATTCGGGCCGCCGCCTACAAGGCACAGATGAAGGACATCAGGTCCACGCTCGCGGACTTCGGCGTCCACTTCGACGTCTACTTCTCGGAACAGGAACTGCACGACGCCGGGGCGATCGAAAGTGCCGTCGCCCGCCTCCGTGAACAGGGACATGTTTACGACGACGGCGGTGCCGTCTGGCTGCGCACCACCGACTTCGGGGACGACAAGGACCGGGTGATGATCCGGGCCAATGGCGAGCCAACGTACTTCGCTGCCGATGCTGCCTACTACCTGTCCAAGAAGGACCGGGGCTTCACCGAGAAGATCTACCTGCTGGGCGCAGATCACCACGGGTACATCAACCGGCTCAAGGCCATCGCAGCCTGTGCGGGCGATGACCCGGAGACAAACATCGAGGTGCTGATCGGCCAGCTGGTCTCCGTCAACGGAGCCAAACTGTCCAAGCGCGCCGGCAACATCATCGAGCTCAAGGACCTGATCGATTGGCTGGGCAAGGACGCCGTGCGGTATTCACTGGCCCGTTTCCCTGCCGACTCCCCGCTGACGCTGGATCCGGACCTCCTCAAGAAGCACAGCAACGAGAACCCCGTGTTCTACGTGCAGTACGCTCACGCGCGCTCACGGGGCACCGCCAGGAACGCCGTTGCCGCCGGCGTGGACCGCAGCGCCTTCGACGCGTCTGTGCTGGACCACGCCACGGAAAACGAGCTGCTCTCCTACCTGGGCAGCTACCCGTCAATTGTGGCCATGGCCGCTGAGCTGCGTGAGCCGCACCGCGTGGCCCGCCACCTTGAGATTATCGCCGGCGCCTACCACCGCTGGTATGACGCCTGCCGCGTGGCTCCCCTGGGCGACGAACCTGTCACCGACGTCAACCGCACCAGGCTGTGGCTCAACGATGCCACCAGCCAGGTGCTGGCCAATGGCCTTGACCTCCTTGGCGTCTCTGCGCCGGAACGGATGTGAMTPEELSLAISTCLKEAVAAGEIALSASAVPAEVRVERPKNREHGDWATNIALQLAKQAGTNPREFATILSARLKTIDGVSAVDIAGPGFLNITVDAAAAGALAKAIVEAGPAYGTTTVLAGHVVNMEFVSANPTGPLHIGHTRWAALGDSIARVLRASGAEVTAEYYINDAGTQMNVFAQSVYSRLHGLPVPDGGYPGQYIADLGHEVLTEHPDIRELTKVAAIPVIRAAAYKAQMKDIRSTLADFGVHFDVYFSEQELHDAGAIESAVARLREQGHVYDDGGAVWLRTTDFGDDKDRVMIRANGEPTYFAADAAYYLSKKDRGFTEKIYLLGADHHGYINRLKAIAACAGDDPETNIEVLIGQLVSVNGAKLSKRAGNIIELKDLIDWLGKDAVRYSLARFPADSPLTLDPDLLKKHSNENPVFYVQYAHARSRGTARNAVAAGVDRSAFDASVLDHATENELLSYLGSYPSIVAMAAELREPHRVARHLEIIAGAYHRWYDACRVAPLGDEPVTDVNRTRLWLNDATSQVLANGLDLLGVSAPERMNANANANANA
D1-29_03127468hypothetical proteinATGAGACCGTCAGTCCGCAAGAGTGTTTTCGCCGGGATCGCCGGCATATCCCTTATTGGAACAGTGGCCGGCTGCGCGCCCTCTGCCACTCAGGACACGCCTGCAACCTCCGCCGGCGGCACGTCCAGCAGCGCGCCCGCGGCGACATCGTCCTCCTTGGCCACCAGCGGCTCCAGCTACAAGGACGGAACGTACAGCGCCGACGGGAACTATGTCTCGCCCAACGGCACCGAAACAGTTGGCGTGGAACTGACACTCGCCTCAGGCAAGGTCACCGCCGTCGAGATCACTCAGCACCCGTCCAATCCGAACACGCGAAAGTTCCAAGGGGAGTTCGCGGGCGGCATCGCGGCCCAGGTGGTCGGCAAGAGCATTGACGAACTCAAGGTCTCCAAGGTGGCCGGGTCATCGCTAACCAGCGGCGGCTTTAACGACGCGGTGGAAAAGATCAAGTCGGAGGCCAAGTAGMRPSVRKSVFAGIAGISLIGTVAGCAPSATQDTPATSAGGTSSSAPAATSSSLATSGSSYKDGTYSADGNYVSPNGTETVGVELTLASGKVTAVEITQHPSNPNTRKFQGEFAGGIAAQVVGKSIDELKVSKVAGSSLTSGGFNDAVEKIKSEAKNANANANANA
D1-29_03128876hypothetical proteinGTGCCGCACACGCACTGGGAAGACTTCAGCTTTGACGGTATCGGCACGCGCTGGGACGTCTCCACGCCGATACCGCTGAATCCTTCCGTGCGTGTGCGGCTGCTTGCCCTCGTGGAGCGTTACGACGGCGACTGGTCCCGTTTCCGGGACGACTCCACTGTGGGGGCCATGGCCCGGCGGCCCGGACGCTATGAACTGCCGGGCGAAGCCATTGCCCTGGGCGGCCTGTACAGCTCCCTCTATGGGATCACGGACGGCGCCATGACTCCCCTGATCGGAGGCAGTCTCGAACGCCTGGGCTACGACGCCGGGTACACCCTCCGCCCTGCCGGGGAAGCCTTGCCCGCACCGCGCTGGGAGGACGTCCTGGACTGGGACGGCCGCGTGCTGACCACCTCCGCCCCGCTGGTCCTGGACATCGGTGCTGCCGGCAAGGGCATGCTGGTGGACCTCCTGGCTGACGAACTGCGGTCCTGCGGAGTGGACACGTTCCTGGTCGATGCGAGCGGGGACCTCCTGAACAGCAGTTCCGAACCGCTCTCCGTGGCCCTCGAACACCCTTACGACACCAGCAAAGCCATCGGGACCATGCAGTTGCCTGGCGGCATGTCCTTGTGCGCCTCAGCATCCAACCGGCGGTCCTGGGGTGACGGCCTCCACCACGTGCTGGATGGCACCACGGGCCGGCCGGTCAGGACAGCAGTGGCAACGTGGGCCATGGCCGAGAGCACGCTGCTGGCCGACGGGCTGGCCACCGCGCTGTTTTTTGTTCCCGGGGCTGATCTGGAGAAGACCTTCGACTTTTCCTGGCTCACTGTTTTTTCCGATGGTAGCGCTGCCTACTCGGCAGGATTTGAAGGGACACTGTTCACATGAMPHTHWEDFSFDGIGTRWDVSTPIPLNPSVRVRLLALVERYDGDWSRFRDDSTVGAMARRPGRYELPGEAIALGGLYSSLYGITDGAMTPLIGGSLERLGYDAGYTLRPAGEALPAPRWEDVLDWDGRVLTTSAPLVLDIGAAGKGMLVDLLADELRSCGVDTFLVDASGDLLNSSSEPLSVALEHPYDTSKAIGTMQLPGGMSLCASASNRRSWGDGLHHVLDGTTGRPVRTAVATWAMAESTLLADGLATALFFVPGADLEKTFDFSWLTVFSDGSAAYSAGFEGTLFTPGPT0000430_3955DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0000430-nosX|apbE|yojL|fmnB-K03734NANA
D1-29_031291671hmp_1FlavohemoproteinATGAGCTCCGTTGATGCCCCCAAAACCGGCGCAGCCCTCTCCCCCGCCGCGCGGCTGGATACGGTGCTCGGCAGATTCACCATGTACCGGCTCATTCTCCTGGTGCTCGCCGCGCTGGCCGCCTACAGCCTGCTGCTCAACGCGCTCGGCTGGCTCACGTTTGGCATCCCGGAAATGCTGGTTCACCTGGCTTTGTGCCTTGGCCTGACGTATTCCTCGAACCGCGGGCTTGCGGTCCTGTTCCACGTCCGCCCGCATTCGGAATCTTCACTGATTACCGGGTTGCTCCTCTATTTCCTGTTCTGGCCGACGCTTGTGCCCGTGGATATGGCTGGCGTGGCATTGGCCTGTGTTCTTGCCTCGGCCTCCAAGTACGCGCTGGCCTGGCGCGGCCGCCACATCTTCAACCCGGCAGCGTTGGGCGCTTTTGTCACCGGCCTCACAGGGCTCAACATCGCCACCTGGTGGGCGGCAACTCCGGCAATGCTGTGGCTGTTGGTGCCCGGCATACTCCTGGTCCTGTACCGCACGCGGAAGTTCCTGATGGCGGCGGTGTTCACCGTTGTGGCCACGTCGATCGTCGCCGTGGAGCTGCTCCAGTCAGGTATGACCGCGGCCATGGCGTTGTGGCAGCCGCTGGCCCAGCGCCCCGTGCTGTTCTTTGTCGGTTTTATGCTGACTGAGCCGCTCACGTTGCCACCACGCCGATGGCAGCAGCTAGTACTGGCGGCAGGGGTTGGGGTGCTGTTTGCGGTGCCCTACAACTTCGGCTTTGTGGCCAACTCTCCCGAACTCGCCCTGCTGGTGGGCAACCTTTTGGCATTCATGGTGGGCCAGCGGGGTGGCTTGCGGCTGCGGTTTATGGGCGCCCGGCCGTTGACACCCACCACCACCGAATTCGCCTTCGAGCCCTCCCGCCCTGTCCGCTTTCGTCCCGGTCAGTACATGGAACTGGACCTTCCGCATGCTAAGTCCGATGGTAAGGGCCGACGCCGGGTGTTCAGCCTGACCAGCGCGCCCGACGCCGGAGCGGTCAAGTTCGGAGTCCGGACCGCCGAGCCGCTGTCTGCAGCCAAGAAGGTACTGCTGGAGTTGGAGCCGGGCGACACAGTGACAGCCACGTCCGTCGGAGGCGACTTTGTCCTTCCGCGTGATCCCCGAACTCCTGTTTTGCTGATTGCCGCCGGCATTGGCATCACGCCATATCTGGCGCATCTTGCGTCCGGAGCTGCCCAACAACGTGACATTGTCCTGCTGCTTTTGGCCAGGAATGCCGAAGAGATTGCCTATGCGGAGGAACTGAAAAACTCCGGAGCCAGGATCCTTGCCCGACTCGCAGATGGTTCGGCCCCTCCCGCGTTCATTACTGACGCAGGCACGATCACTGCGCCTGGGGCGGACGGTCGGTCTGGGGCGCGTGACAGCTCTGCCACTGACGCCTTGTCTCGTCCGGACGCCTTGGCCCGTCCGGACGCCGGGAACGGGGCGGGCGATGGAACCTCGGCCCGCGGCGCCAGGCTGGATGCCGCATCCCTCCGGGCTCTGGTGCCGGACATTGGCGAACGCGAGGTGTACGTTTCCGGTTCACCGACCAGCGTCGCCTCCCTGCGGCGCGCTGCGAAGAAGGCTGGAGCACGGAGGGTGCACGTGGACTCTTTCGCGGGCTACTGAMSSVDAPKTGAALSPAARLDTVLGRFTMYRLILLVLAALAAYSLLLNALGWLTFGIPEMLVHLALCLGLTYSSNRGLAVLFHVRPHSESSLITGLLLYFLFWPTLVPVDMAGVALACVLASASKYALAWRGRHIFNPAALGAFVTGLTGLNIATWWAATPAMLWLLVPGILLVLYRTRKFLMAAVFTVVATSIVAVELLQSGMTAAMALWQPLAQRPVLFFVGFMLTEPLTLPPRRWQQLVLAAGVGVLFAVPYNFGFVANSPELALLVGNLLAFMVGQRGGLRLRFMGARPLTPTTTEFAFEPSRPVRFRPGQYMELDLPHAKSDGKGRRRVFSLTSAPDAGAVKFGVRTAEPLSAAKKVLLELEPGDTVTATSVGGDFVLPRDPRTPVLLIAAGIGITPYLAHLASGAAQQRDIVLLLLARNAEEIAYAEELKNSGARILARLADGSAPPAFITDAGTITAPGADGRSGARDSSATDALSRPDALARPDAGNGAGDGTSARGARLDAASLRALVPDIGEREVYVSGSPTSVASLRRAAKKAGARRVHVDSFAGYPGPT0013685_27DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832NANA
D1-29_031311665hypothetical proteinATGGACAACGGGGAAGTCTTGGAGGCAGTCGAAGCACCTGGTGCTGCCCTTGTCCTGATCGAAGCGGCCTCCTCCGCTGCTGCCGCAGGTTCTGATTCTGCTTCTGATTCAGTAGCCGAAATTGATACTGGTTCTGATCCGTTGCGGGATTTGGCGGAGGAGTGCCTGGCCGTCATGGCGGAGGCTGCCCGTGACGAGGCGCGGGCGGCTGCGCGGAAGGCCCGGGCTGCTGCCACGTACGCGGACATCTGCCGGCGCCTGCTTCCCCCGTCGGCGTCGCTGCACGAACAGTCCGTGGCGGAGATGGGCATGGTCGCGGAGGTGGCCTGTGTCCTGACCATCAGTGTAGGCGCCGCCTCGGCGTTCCTGGTCCAGTCCCGCCAGCTGAACACCGAACTGCCCCGCACCCTTGCTGCCCTGCAGGCCGGGGCCGTGTCCTGGCAGCACGCCCGGATCCTCTGCGATGAAACCGCCGGCCTGGGCCCCGCCGGTGCGGCAGCCCTGGAAACGCATTTCCTGGACCCCGACGCCGCCAAGGCTTCCCGCGCCTGCCTGGCCGGGGACCTTACACCCTCCCGGTTCCGTGCCAGGGCCCGGACCTGGCGCGAACGCCACCACCCCGTCTCGATCGAAACCCGCCACGCCAAATGCGTCCTGGACCGCCGCCTCGAGTACACCCCGGACCGCGACGGGATGGCCTGGCTCTCCGCCTACCTCCCCGCAGACCAGGCCGCCGGCATCTGGGAACACACCACCGCCGCAGCCCGGGCACTCCAAGGCCCCACCGAGCCCCGCACCCTCACCCAGCTCCGCGCCGACACCCTCGCCGCCGCACTCCTCTGCCGAGAGATCAGCAACCCCGGCAGCGACAGAGCCGGAGGCACCAGCGGCGCACTCCTTGATAGTGGGACTAACAGCGGCACTCTCATAGGCGCCGGAAGCACCAGCGGCCAAACCACCAGCTGGCGTAGCAGCAGCGGAGGGATCAACGGCGGCGGAAGCGCCAGCGAAGGTATCAACGGCGGCGGAATCAAGGGCGCAAATAGCCTTGCCAGTCGCGACGCAGAGCGCACTGCCGGGCAGGTCCCGCCGCCGCGGGCCCAAGTGCTGGTCACCGTGCCCGTGTTCTCGCTCCTGGGCCTCACCGACGAACCTGCCACCCTGGACGGCCACGGCCCCATCCCGGCCTCCATGGCAAGGAACCTGGTCGCCAACGGAGCCGACTCCTTCCACCGCGTCCTGACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGGCTCACCACAGCCATGCGCCGCTGGCTCAGACTCCGCGACGCCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTCGACAACGAAGCAGACCACCTCCTCGCCTGGGCAGACGGCGGCACCACCGGCATCAGCAACCTCGGCCAGCCTTGCCCCAAACACCACCACCTCAAACACAACACCACCTGGCAACCAACCCAGGCCAGCAAAAACGAACCACCCGGCTGGACCTCACCCACCGGCCGAGAGTACAAAAGCGAACACCAAGACTGGGAACCACCCCAGTGGCCGGACCAGATGGCAGAGATTTCCCGTGCACGCGACACAGAACACCGTCCGGAGCTGAAGCCGGCCCGTAATCCCGAACAATGAMDNGEVLEAVEAPGAALVLIEAASSAAAAGSDSASDSVAEIDTGSDPLRDLAEECLAVMAEAARDEARAAARKARAAATYADICRRLLPPSASLHEQSVAEMGMVAEVACVLTISVGAASAFLVQSRQLNTELPRTLAALQAGAVSWQHARILCDETAGLGPAGAAALETHFLDPDAAKASRACLAGDLTPSRFRARARTWRERHHPVSIETRHAKCVLDRRLEYTPDRDGMAWLSAYLPADQAAGIWEHTTAAARALQGPTEPRTLTQLRADTLAAALLCREISNPGSDRAGGTSGALLDSGTNSGTLIGAGSTSGQTTSWRSSSGGINGGGSASEGINGGGIKGANSLASRDAERTAGQVPPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPASMARNLVANGADSFHRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWADGGTTGISNLGQPCPKHHHLKHNTTWQPTQASKNEPPGWTSPTGREYKSEHQDWEPPQWPDQMAEISRARDTEHRPELKPARNPEQNANANANANA
D1-29_031321092prtSProtease PrtSATGCAATTGTCAGCACAGAACGCTTCACCAGCACAGAACATTTCAACCGTGCGCTGTTCAATCATTCCGCCCTATCTGCTGCGGCGGCTGGCCCGTCAGGATGCACCTCAGTTCTCGGCCGCGGCCCGGGCTGCCAAGGAAGCGCTGGTTCACGTCAGGTCGTTCCAAGCGACGCGTACGCAGCCTGCACCTGCTGTTCCCCTGACGGTACGGCATGCGCGGCCAGGCCAACCACAACGTAGCGTCTATGATGCGGGCGGCACCGAAATCCTCCCCGGCAAACTGGTGCGAAAGGAAGGCGAGCCCGCATCCGGGGACGCGTCAACCGATGAAGCGTACGACGGACTGGGCCACACCCACCGCCTCTATGCCGACGTCTTTGGCCGTAATTCAATAGATGGCGAGGGGCTTCCGCTCGATGCCACCGTGCATTTCGGCAAGCTATATGACAACGCCTTCTGGGACGGAAGCCAGATGGTCTTTGGCGATGGTGACGGTGAGGTGTTTCAGCGCTTCACGCGGTCATTGAGCGTCATAGGGCATGAGCTTGCCCACGGTGTGACCCAGTACTCCGCTGGGCTGGCCTACCGCAATCAGGCTGGTGCCATCAACGAATCCATGTCAGATGTTTTTGGGGCCCTCGTGGAGCAGTATGTGAACAGGCAGTCCGTCAAGGAAGCCAGCTGGCTGATCGGCGAGGGACTCTTTACTCCTCAGGTGGAAGGCGCGGCCCTCCGTTCTCTTAAGGCCCCCGGAACAGCCTATGACGACGACGTTCTGGGCAAGGATCCGCAGCCCGACTCGATGGATTCATACGTTCGGACCAGCGCGGACAACGGCGGCGTCCACATCAACTCAGGCATCCCCAACCGCGCCTTCTACCTTGTGGCCGAAGCCCTGGACTCCAATGCATGGGAGGCCCCGGGGCAAATCTGGTACGACACCCTGACCTCAGGCTCGTTGCCTGTGACAGCAACCTTCAGCATCTTTGCAAGGGCCACGGCGTCCTCGGCAGTGGAACTCTTCGGCTCCGGCTCACCAGAGCATGACGCCGTGCTGCAGGCATGGGAAACTGTGAAGGTCAAGGTTTAGMQLSAQNASPAQNISTVRCSIIPPYLLRRLARQDAPQFSAAARAAKEALVHVRSFQATRTQPAPAVPLTVRHARPGQPQRSVYDAGGTEILPGKLVRKEGEPASGDASTDEAYDGLGHTHRLYADVFGRNSIDGEGLPLDATVHFGKLYDNAFWDGSQMVFGDGDGEVFQRFTRSLSVIGHELAHGVTQYSAGLAYRNQAGAINESMSDVFGALVEQYVNRQSVKEASWLIGEGLFTPQVEGAALRSLKAPGTAYDDDVLGKDPQPDSMDSYVRTSADNGGVHINSGIPNRAFYLVAEALDSNAWEAPGQIWYDTLTSGSLPVTATFSIFARATASSAVELFGSGSPEHDAVLQAWETVKVKVPGPT0020995_286DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020995-nprM-K01400NANA
D1-29_03133363hypothetical proteinATGAAAATCAGCGTGGAGCGCAGCGGCGGCATCGCCGCCTTCACCAGGGTGTGGACCGTAAACGCGGAAACCGAGAGCGCCAAGAGCCAGTGGCAGCCGATTGTCGAGGCCTGCCCCTGGGATGCCGTGCCCAGGACGCCACGGGCAGCGGCTGAAAGCACAGGAACCCAACCTGACCGCTTTATCTACTCCATCCAAGCCGGTCAGCGCCGGGCGGCGCTGCCGGAGCAGGCCGTCACCGGACCCTGGCGCGTCCTGGTGGACACCGCCCGTGCGGCGGCAGAAGATGCCAAGCCGCAACAGGAACAGCAACAGGAACAGGGACCCAACCAAGAACAGGGACCCAACCAGCGTCAGGCCTAAMKISVERSGGIAAFTRVWTVNAETESAKSQWQPIVEACPWDAVPRTPRAAAESTGTQPDRFIYSIQAGQRRAALPEQAVTGPWRVLVDTARAAAEDAKPQQEQQQEQGPNQEQGPNQRQANANANANANA
D1-29_03134969cdhRCOG4977HTH-type transcriptional regulator CdhRATGCTTAAAAAAGTGGCAGTCATCGTGGTTTCCAACTTTTCCATCTTCGAATTCGGCACTGCCTTTGAGGTGTTCGGGATAGACCGGTCCGCGCGCGGCACAGGTGTCCCGGCCTTCGATTTCCGTGTTTGTACGCCGGTACCCGGGAGCATAAAGCTCAAATCCGGTCTCTCCATGGACGTCAAGCTGGGCCTGGAGGCAACAGAGGATGCCGACCTGGTGATCATGACCCCTTATGGGCGGGACGAGGATGTTCCGGAGTCCGTGTTGGAAGCCTTGAGGGCTGCCGACGCCAGTGGAGCCTGGGTGATGTCCATCTGCTCCGGAGCCTTCGCCCTGGCCCGCGCCGGACTGCTGAACGGGAGGCGGTGCACCACCCATTGGCATTACTCCGCTGAACTTGCCAGCCGTTATCCGGACGTGCAGGTGGATGAGAACGTACTCTACGTGCAGGACGGCAACGTGATCACAAGCGCCGGCACGGCCGCAGGAATTGACGCATGCCTCCACTTGGTCCGGGTGGAGCTTGGGGCGAATGTGGCCACCGCGATTGCGCGTGACATGGTGGTGCCGCCCCACCGCGACGGCGGCCAGGCCCAATTCATTGAGCGGCCCATGCCCACCTGTGGCTCCGCCCCCATGGAGGAGCTGCTGCGCTGGATGGTGAAAAACCTGGAGACCGAGCACACCGTTGGTGAGCTCGCGGCCCGGGTGCACATGTCGCCGAGGACTTTCGCCCGCCGCTTCCGGTCCGAAACGGGGGCAACACCTGCTGCCTGGCTCAACTCACAGCGGGTCCTGCGAGCCCAGGAACTGCTTGAATCCACTGACCTGAATATCGATGAGGTGGCACGGGAGTCCGGCTTTGGCCATACCGTGCTGCTGCGGCACCACTTCGCCAAGGTGTTGGACACAAGCCCCCAGTCGTACCGGCGCGCCTTCCGGGGCCAGCTGGCGGAAGCGATTTAGMLKKVAVIVVSNFSIFEFGTAFEVFGIDRSARGTGVPAFDFRVCTPVPGSIKLKSGLSMDVKLGLEATEDADLVIMTPYGRDEDVPESVLEALRAADASGAWVMSICSGAFALARAGLLNGRRCTTHWHYSAELASRYPDVQVDENVLYVQDGNVITSAGTAAGIDACLHLVRVELGANVATAIARDMVVPPHRDGGQAQFIERPMPTCGSAPMEELLRWMVKNLETEHTVGELAARVHMSPRTFARRFRSETGATPAAWLNSQRVLRAQELLESTDLNIDEVARESGFGHTVLLRHHFAKVLDTSPQSYRRAFRGQLAEAIPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
D1-29_03135168hypothetical proteinATGGAAATCTTCGGACTCATCATCGTCATCCTGCTCCTCCTCATCCTGGCAGCCACCTTCTCAGCGCTCCTGCGCGATGGCGGTGGACATACTCCCCCCGTCGCCTCCCACCATGAGTGGTCTGCCCTGGATCTGCCCAGCAGCAGCTACACCCTGCGGATCTTCTGAMEIFGLIIVILLLLILAATFSALLRDGGGHTPPVASHHEWSALDLPSSSYTLRIFNANANANANA
D1-29_031364056hypothetical proteinATGACATTTCATATCTCCTACCCTGCCGAGCTGCCGGTCTCCGAGCGCCGCGAGGACCTGATGGCGGCCATCGCCGCCAACCAGGTAACCATCATCGCCGGGGAGACCGGCTCCGGTAAGACCACCCAGATCCCCAAGATGTGCCTCGAACTCGGCCTTGGTGAAAACGGGTTGATCGGTCATACCCAGCCCCGACGGCTGGCTGCCCGCACCGTAGCCGAGCGCATCGCTGAGGAACTTGGCGTCGAAATTGGCCAGGAGGTGGGCTTCCAGGTCCGGTTCACCGGGGAAGTCAGCCGCGCCACCAAGGTCAAGCTCATGACCGACGGCATCCTGCTGGCTGAAATCCAGCGGGACAGGCTGCTGCGCAAGTACAACGCAATCATCATTGACGAAGCCCATGAGCGCAGCCTGAACATTGACTTCATCCTGGGCTACCTCAAGCGCATCCTGCCTCAGCGGCCGGATCTGAAAGTCATCATCACCTCAGCCACCATCGACCCTGAACGCTTCGCCAAGCACTTCGGCAGTGACGAGGCGCCCTCCCCCATCGTCGAGGTTTCCGGCCGTACTTTCCCTGTGGAGATACGCTACCGGCCGCTGTCCCAGCCAGCGGGCGGAGCGGATGAGGAAAGCGCCTCCGACGACGAACTGGAGGAAGACCGGGACCCCCTTGACGCCGTCTGCGACGCCGTAGACGAGTTAGCCACCGAGGCACCGGGCGACATCCTGGTCTTCTTCTCGGGCGAACGCGAGATCCGCGATGCGGCAGAGGCCTTGAATGCACGGATCCAGTCCAACCGCAGGCTCTCCGGCACCGAGGTGCTCCCGCTCTTTGCCCGCCTCAGCCTCCAGGAGCAGCACAAGGTTTTTCATCCTGGAAGCAAGCGCCGCATTGTCCTGGCCACCAACGTGGCCGAGACGTCCCTGACGGTTCCCGGGATCAAGTACGTCATCGACACGGGCACGGCACGCATCTCGCGCTATTCCCACCGCACCAAGGTCCAGCGCCTGCCCATTGAGCGCGTGTCGCAGGCGTCGGCGAACCAACGCTCCGGGCGCTGCGGACGCGTGTCGGATGGAATCGCCATTCGGCTCTACTCCGAGGAGGACTTCGAGTCCCGCCCGTTGTTCACCGATCCTGAAATCCTGCGGACAAACCTCGCCGCCGTCATCCTCCAGATGACAGCCATGGGCGTCGCCCGCGGCCCCAAGGACATCGAAAAGTTCCCGTTTGTGGAACCTCCGGATTCGCGCGCAATCAACGACGGCGTCACCCTCCTTCGCGAACTCGGCGCCCTTAGCGCTGTCCGCTTGGAAGAGGGCAACGGAAACGGCAACGGCGACGGCGACCGCAACAGAGGTGACAACACCAGAAACGGTGCCGGCAAAAACAAGAGCGGCCTGACCGCCGTCGGACAGCAGCTTGCCCAGCTGCCCGTGGACCCAAGGCTCGGCCGGATGATCGTGGAATCAGGCAGACGCGGCTGTGTCCGCGAAGTGATGATCCTCGCTGCTGCCCTGACCATCCAGGATCCGCGCGAGCGCCCAACGGACAAGCAGCAGCTGGCCGCCGAAAAGCACGCCCGCTTCCGTGATGAGAACTCCGACTTCACCGGATTCCTCAACCTGTGGAACTACCTGCAGGAGAAGCAGCAGGAACTGTCCTCCACCCAGTTCCGACGGCTCTGCCGCAACGAGTTCATCAACTACCTGCGGGTCCGTGAGTGGCAGGACCTTTTTGCCCAGCTCCGCCAGCTCGCCAGGCCCCTGGGGATCAGCCTGGACAATAAGCGCCTTGCCGATCCGGTGGGCAACCACGACGGTATCCACATCAGCCTGCTATCCGGGCTGCTGAGCCACATCGGCATCCTGGACGAGCGTAAACGCGAGTACGCCGGGGCCAGGGGCAGCCGCTTCGCCATCTTCCCGGGTTCGGCCCTGTTCAAGAAGTCGCCCACCTTTGTCATGGCGGCCGAGCTGGTGGAAACCAGCCGCCTGTGGGCGCGCGTGGCGGCCAAATTCGATCCCGTATGGGCCGAGCAGGTTGCCCCGGACCTCGTCAAGCGCAGCTACAGCGAACCCCACTGGTCCACGAAAATGGGCGCCGTGATGGCGTATGAAAAGGTCACGCTATACGGCGTGCCCATCATCCCGCAGCGGAGGGTCAACTATAGCCGAGTAGACCCGGTTCTGGCCCGCGAACTCTTCATCAGGCACGCCCTGGTGGAAGGCGACTGGAAGACCCACCACAAGTTCTTCCACCGCAACCGAGCCCTCCTGCTGGAGGTTGAGGAGCTCGAGGCCCGAATGCGCCGCCGCGACCTGTTGGTGGATGACGAGACACTCTTTGAGTTCTACGACGCGCGGATCGGACCCGACGTGGTGTCCGAGCGGCACTTCGACAAGTGGTGGAAGGAGGCCCGGCAGAAGAATCCGGACCTCCTGGACTACGACAAGTCCCTCCTCATCAATGAGGATGCCGACGAACTGGATGATTCGGCCTACCCCAAGAGCTGGTACCACAAGGGCTTTGAGCTGCCGCTGACCTACGAATTCCACCCTGTAGCGCCCGGCTCACCTCCTAATCCGTCCGACGGCGTCACAGCTGAAGTGCCGGTGCTATTCCTGAACCAGCTGGATGACGCCCCGTTCCGCTGGCTGATTCCCGGGCAGCGCGTTGAGCTGGTGACGGCCCTGATCAAGTCGCTGCCCAAACAGATCCGCAAGAACTTCGTACCCGCCCCTGACATTGCCCGGCAAGCTGTGGCGGCCCTCGAAGCCGATTTTGATCCCGCCACCGACGAACTGGAAGCATCACTTGAACTGGCCCTACGCCGGATCCGCGGACACGTTATCCCGCCAGGATCCTGGAATTGGGACGCCGTACCGCCGCACCTCCGCGTGAGCTTCAAGGTTGTGGACAGCAAGGGCAAGGTTCTGGATGAGGGCAAGGACCTTGGAGTTCTTCAGGAGCGCTTGGCACCCGCAACCCGCCGTGCCATCGCCGAATCCCTCGGAGCAACCCCCGGGACCACTGGTCCAGGCGCTCAGGGGAACGGTACCAAAGGCGGAGCCTCTGGCGGAGGCGCAGGCCGGGCGGGCGGCGTCGGACGCGGCGGCCAGGCCGCAGGCCACGGTGAAGTCGAGACCGATGCAGCCGGGCAAACCGGGTCCGCCTTGTTCAGGGAGCTCAGCGGCCTGACCGCCTGGACCTTCGGCACCCTTCAGCGCCAGGTCAGCAACACCGTCAAGGGACACACCGTTACCGGTTACCCTGCCTTGGTGGACGAGGGCACGTCGGTGGCGCTCCGGGTTTTCCAGACGCCCTCAGAACAGCTGGAGTCCATGCGTGGCGGCGTCATCAGGCTCCTCGCGCTCAGGGTGCCCGCGCCGGACCGCTATGTGCTGGAGCACCTGAACAACATTGAGAAACTGACCTTCAGCCAGAATCCGCACGGCTCAGTGTCCGCGCTGATAGCGGACTGCGCCCTCGCTGCGATCGACAAGCTGACGCCGGTGGAGCTGCCTTGGGACCGCGAAGCCTTTGACGCCCTCTATGAGCAGGTCCGGGCTGAACTGATCGATACCGTTTTCGGCGTGACCGCCGTGGTGGAGCGCATTCTCTCCAGCACCCGTCGGATCGAGAAGCAGCTCCGGGGAACCACCAGCCTGGCCCTGATCAGCGCCCTGAATGATGTGAAAAGCCAGTTGGAACAGCTGGTGTATCCGGGTTTTGTGGCCAAAACCGGGTACGCCCAGCTGAGTCAACTCCCCCGCTACCTCGCCGCCATCGAAAAACGGCTCGAACGTCTGCCAGGCAATGTCCAGCGCGATGCGCTTCACATGGCCGCCATCCAGCGGCTGGAGGACGACTACGACGACGCCGTCTCCGCCCTTCTCCCGGGGCGGCAGGCTGGTTCCGAACTGAAGCAGGTCCGCTGGATGATCGAGGAACTCAGGGTGAGCCTCTTCGCCGTCGAACTCGGCACGGCCTACTCCGTGTCGGAGAAACGGATCCGGGCCGTGCTGAATAAGGCTCTGGCCCCTGCCTAAMTFHISYPAELPVSERREDLMAAIAANQVTIIAGETGSGKTTQIPKMCLELGLGENGLIGHTQPRRLAARTVAERIAEELGVEIGQEVGFQVRFTGEVSRATKVKLMTDGILLAEIQRDRLLRKYNAIIIDEAHERSLNIDFILGYLKRILPQRPDLKVIITSATIDPERFAKHFGSDEAPSPIVEVSGRTFPVEIRYRPLSQPAGGADEESASDDELEEDRDPLDAVCDAVDELATEAPGDILVFFSGEREIRDAAEALNARIQSNRRLSGTEVLPLFARLSLQEQHKVFHPGSKRRIVLATNVAETSLTVPGIKYVIDTGTARISRYSHRTKVQRLPIERVSQASANQRSGRCGRVSDGIAIRLYSEEDFESRPLFTDPEILRTNLAAVILQMTAMGVARGPKDIEKFPFVEPPDSRAINDGVTLLRELGALSAVRLEEGNGNGNGDGDRNRGDNTRNGAGKNKSGLTAVGQQLAQLPVDPRLGRMIVESGRRGCVREVMILAAALTIQDPRERPTDKQQLAAEKHARFRDENSDFTGFLNLWNYLQEKQQELSSTQFRRLCRNEFINYLRVREWQDLFAQLRQLARPLGISLDNKRLADPVGNHDGIHISLLSGLLSHIGILDERKREYAGARGSRFAIFPGSALFKKSPTFVMAAELVETSRLWARVAAKFDPVWAEQVAPDLVKRSYSEPHWSTKMGAVMAYEKVTLYGVPIIPQRRVNYSRVDPVLARELFIRHALVEGDWKTHHKFFHRNRALLLEVEELEARMRRRDLLVDDETLFEFYDARIGPDVVSERHFDKWWKEARQKNPDLLDYDKSLLINEDADELDDSAYPKSWYHKGFELPLTYEFHPVAPGSPPNPSDGVTAEVPVLFLNQLDDAPFRWLIPGQRVELVTALIKSLPKQIRKNFVPAPDIARQAVAALEADFDPATDELEASLELALRRIRGHVIPPGSWNWDAVPPHLRVSFKVVDSKGKVLDEGKDLGVLQERLAPATRRAIAESLGATPGTTGPGAQGNGTKGGASGGGAGRAGGVGRGGQAAGHGEVETDAAGQTGSALFRELSGLTAWTFGTLQRQVSNTVKGHTVTGYPALVDEGTSVALRVFQTPSEQLESMRGGVIRLLALRVPAPDRYVLEHLNNIEKLTFSQNPHGSVSALIADCALAAIDKLTPVELPWDREAFDALYEQVRAELIDTVFGVTAVVERILSSTRRIEKQLRGTTSLALISALNDVKSQLEQLVYPGFVAKTGYAQLSQLPRYLAAIEKRLERLPGNVQRDALHMAAIQRLEDDYDDAVSALLPGRQAGSELKQVRWMIEELRVSLFAVELGTAYSVSEKRIRAVLNKALAPANANANANANA
D1-29_03137429COG0537putative HIT-like proteinATGAGTACCCTGTTCACCAGGATCCTGAACGGCGAAATTCCGGGCCGCTTCGTTTGGCGTGAACCAGACGTTGCGGCGTTCCTGACCACCGGCCCGCTGGCTGATGGGCACACCCTGGTTGTCCCTACCGAAGAGGTGGACCGCTGGACCGATGCCTCACCGGAAACGCTGGCGAAGGTGATGGAAGTGGCACGGCGGATTGGCGCTGTCCAGGTGGAGCTTTTCAACGCCCAGCGTGCCGGACTCATCGTGGCAGGCTACGAAATCAACCACTTCCACGTCCACGTCTGGCCATCCCAGAGCATGGCAGACTTCGACTTCGCCTCGGCTGACCAGAATCCGGACCCTGCCGTACTGGACGCAAACGCCGAGAAGCTGCGTGAGGGATTGAGGGCAGCCGGCTACGCGGAGTTCGTGCCGGAAAGCTGAMSTLFTRILNGEIPGRFVWREPDVAAFLTTGPLADGHTLVVPTEEVDRWTDASPETLAKVMEVARRIGAVQVELFNAQRAGLIVAGYEINHFHVHVWPSQSMADFDFASADQNPDPAVLDANAEKLREGLRAAGYAEFVPESNANANANANA
D1-29_031381176yahKCOG1064Aldehyde reductase YahKATGACTCCTGGACGACCCGTACCGCCTCCTCTCGCCCAAACTATTTCTCCCGTCACCGGCCCTGCTTCTCCTGCGAACAGCGATGACCTCCTGGCCGGTAACCGCCTCGCGGCGGCTTATGGCGCCGTCTCCGACAACAGCGGCTTGGTGCCCCTGACGCTGGCACGGCGCGTGCCCAAGGAGGATGACGTCGAGATTGCGATTGACTTTTGCGGCCTGTGCCACTCCGACGTCCACGCAACGCGGGGCGAGTGGGGATCACAGCACTATCCGCTGGTGCCGGGCCACGAAATCGTTGGAACTGTCAGCCGCGTGGGGTCAGCCGTCGATGATTTCTCCCCGGGCGACCTGGTGGGTGTCGGCTGCATGGTGGACTCCTGCCGTGAGTGCGACAGCTGCCTGGAAGGACTGGAACAGTACTGCGAGAACGGTATGACCGGGACCTATGGGGCCCAAGATGCCCGCAACGGCGGCTCCGTCACCCAAGGCGGCTACTCGTCCTCTGTGGTGGTTGACCGGCGCTATGTGGTCCACGTTCCCGGGAACCTGGACCCGGCTGCCGTGGCCCCGCTGCTCTGTGCCGGCGTCACCACTTTCTCTCCGCTGCGTCACTTCAATGTGGAGGAAGGCGACGTGGTGGGCGTGGTGGGCCTGGGCGGTCTGGGGCACATGGCCGTCAAGCTTGCCAAGGCCATGGGAGCAGTGGTGAAAGTTTTCACGACCTCTGAGTCGAAGGTCCCGGCAGCGCTTGAGCTGGGAGCGGATGAAGTCATCCTTTCGGCGGACAAGGACGCCATGGCTGCTGCTGGCCGGAGCATCGATGTCATCATTGACACCGTGGCGGCACCGCACGATCTGAACCCGTTTTTCCGCACCCTGCGCCGTGACGGCGCTTTGTTCCAGCTGGGATTGCCGTCCGAGGCCATGCCTCCGGTTAATCCCGGCGCGCTGATCCGCCGTCGGATAGCTTATGCGGGTTCGCTTATTGGCGGGATCGCCGAAACCCAGGAGATGCTCGACTTCTGCGCCGAACACGGCGTGGTTGCGGACATCGAAATAGTCCGCGCGGACCAGCTGAATGATGCCTATGACCGTATGGTGGCAGGCGACGTTAAATATCGGTTTGTGCTGGACACCAGCACACTGCAGGCTCCGGCCAAGGAGGCAAACGCATGAMTPGRPVPPPLAQTISPVTGPASPANSDDLLAGNRLAAAYGAVSDNSGLVPLTLARRVPKEDDVEIAIDFCGLCHSDVHATRGEWGSQHYPLVPGHEIVGTVSRVGSAVDDFSPGDLVGVGCMVDSCRECDSCLEGLEQYCENGMTGTYGAQDARNGGSVTQGGYSSSVVVDRRYVVHVPGNLDPAAVAPLLCAGVTTFSPLRHFNVEEGDVVGVVGLGGLGHMAVKLAKAMGAVVKVFTTSESKVPAALELGADEVILSADKDAMAAAGRSIDVIIDTVAAPHDLNPFFRTLRRDGALFQLGLPSEAMPPVNPGALIRRRIAYAGSLIGGIAETQEMLDFCAEHGVVADIEIVRADQLNDAYDRMVAGDVKYRFVLDTSTLQAPAKEANAPGPT0024430_29DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0024430-yahK-K13979NANA
D1-29_03139879sseBCOG2897Putative thiosulfate sulfurtransferase SseBATGGGCCCCCTGATGGATGTAGCCACCCTGGAAGCCCGGCGGGCTGCCGGCCAGCGGACTGTCCTGCTGGATGTTCGCTGGGCCCTGGGGGATCCGCACGGCCGGGACCACTACCTCGCCTCCCATCTGCCAGGCGCCGTATACGTGAATCTCCCCACCGAGCTCGCCGCGCCTGCCGTCCCTGCCCGCGGCAGGCATCCGCTTCCAGCTGCTGCCGATTTCCAGGCCGCAGCCAGGCGTTGGGGGATCAACGACGGCGACGTTGTGGTGGCCTACGACAACAGCGGCAACATGGCCGCGGCCCGGCTCTGGTGGATGCTCCGAAATGCGGGCCTCCAGGAGGTCTACCTGCTCGACGGCGGCCTGGCCGCCTGGCAGAATGCCGGGCTCCCTCTAGAGGAGGGACCGGTGGAGTCCCTTCCCGGCGACGTTTCTTTTAGCGATGTCTCTGCCGATGACTCCAATAAGGCAGGCGGGATGCCGGCTATTGATGCGGCCACCGCAGGAAGCTGGGCGGGAAAAGGCGTGCTCCTGGATGCCCGGGCAGGGGAAAGATACCGGGGCGAGTTCGAACCTGTTGATCCGCGCGCCGGCCACATTCCCGGCGCCGTCAGCGCACCGACGTCGGATAATGTGGACGAGTCCGGCCGTTTCCTGCCGGCGGCGGAGCTCCGGCGGCGCTTCGAAGAGCTCGGAATCAGGGACGACGTCCCGGTGGCGGTGTACTGCGGCTCCGGGGTGACTGCCGCCCATGAGGTGGCAGCGCTGGAAATAGCGGGAATACCGGCTTCGCTTTATCCAGGTTCCTTCTCGGAGTGGTCCAATAATCCGTCGCTGCCAGTCGTCACCGGGAAGGAGCCCGGCGGCGATCAACCTTGAMGPLMDVATLEARRAAGQRTVLLDVRWALGDPHGRDHYLASHLPGAVYVNLPTELAAPAVPARGRHPLPAAADFQAAARRWGINDGDVVVAYDNSGNMAAARLWWMLRNAGLQEVYLLDGGLAAWQNAGLPLEEGPVESLPGDVSFSDVSADDSNKAGGMPAIDAATAGSWAGKGVLLDARAGERYRGEFEPVDPRAGHIPGAVSAPTSDNVDESGRFLPAAELRRRFEELGIRDDVPVAVYCGSGVTAAHEVAALEIAGIPASLYPGSFSEWSNNPSLPVVTGKEPGGDQPPGPT0002045_1711DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
D1-29_031401083sbnAN-(2-amino-2-carboxyethyl)-L-glutamate synthaseGTGAATAGGGCAAGCAGCACCGACCGCTCCTGGGCAGACCAGGCAGTCCGCAAGATCAGCGCAGAAAACAACCGCTCCGCCGACACCCATCTCTACTCGGTCCCCCTTCCACAACACTGGGGTGTCCAGCTCTATCTCAAGGACGAATCGACCCACCGCTCCGGAAGCCTCAAGCACAGGCTGGCCCGTTCCCTCTTCCTGTTCGGCCTGGTGAACGGTTGGATCAGGGAAGACACCACTATCGTGGAGGCCTCCAGCGGCAGCACAGCGGTCTCGGAGGCGTACTTCGCGCAGCTGTTAGGGCTTCCTTTTGTGGCAGTAATGACCCGGACTACCAGCCCTGAGAAAATCGCCCTGATTGAACAGTTCGGCGGCTCCTGCCTGCTGGTGGACCATGCATCAGAGGTGTACGCCGTGGCCAGGGAAGTAGCAGAAACCAGCCGCGGTCACTACATGGACCAGTTCACGTACGCCGAGCGGGCCACAGACTGGCGGGGCAACAACAACATTGCCGAATCCATCTTCCAGCAGCTGGAGCTGGAAGAGCACCCGGTGCCTGACTGGGTGGTTGTTGGCGCGGGCACAGGCGGCACCAGCGCCACCATAGGCCGGTACCTCCGCTACCACTGCCATCAGACCCGGCTGGCTGTGGTGGATCCCGAAAACTCAGCTTTCTATCCAGGCTGGCGTGACGGTGTGCCGGACTACAGCACCGGGATGCCGTCGCGGATCGAAGGCATCGGCCGGCCCAGGATGGAACCCAGCTTCGTCCCTTCTGTGATCGACCGTATGATTCAGGTCCCGGACGCCGCCTCCGTGGCCGCCATGCGGCATCTGAGGACTGTTGCTGACCTGCACGCCGGGCCCTCAACGGGCACCAACCTGTGGGGCGTCTGGCAGCTGGTAGCGGAGATGATCGCCGAGGGACGGCGTGGCAGTATTGTGTCGCTCATGTGCGACGGCGGCGAACGCTACGCGGGGAACTACTACAACCCTGCCTGGCTGGCCAGCCAGAATATGGATCCTGAGCCACACGAAGCGGTGCTCAAAAAGTTCTTCGACACGGGTGTTTGGGAGGGCTAGMNRASSTDRSWADQAVRKISAENNRSADTHLYSVPLPQHWGVQLYLKDESTHRSGSLKHRLARSLFLFGLVNGWIREDTTIVEASSGSTAVSEAYFAQLLGLPFVAVMTRTTSPEKIALIEQFGGSCLLVDHASEVYAVAREVAETSRGHYMDQFTYAERATDWRGNNNIAESIFQQLELEEHPVPDWVVVGAGTGGTSATIGRYLRYHCHQTRLAVVDPENSAFYPGWRDGVPDYSTGMPSRIEGIGRPRMEPSFVPSVIDRMIQVPDAASVAAMRHLRTVADLHAGPSTGTNLWGVWQLVAEMIAEGRRGSIVSLMCDGGERYAGNYYNPAWLASQNMDPEPHEAVLKKFFDTGVWEGPGPT0002810_1288DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
D1-29_03141657hypothetical proteinATGAAGCTGACAAAATACACCCACGCCTGCGTCCGGCTCGAAAAGGACGGCCGGGTGCTGGTGCTGGACCCAGGGACGTTCTCGGAGACGAAGGAAGCCCTGGCCGGTGCGGAGGCGGTGCTCGTCACGCACGAGCACGGTGACCATATCGACGTGCCCGCCATGGTGAATGCCCTGCGCGGGAATGACAGCCTGGCGGTGTTCGGCCCCGCCGGTGTGGCGGCCCACCTGCGTGAAGAGGCACCGGAAGCGGCAGGCCGGATCCATACGGTGGAGCCCGGCAGTTCATTCGAGGCGGCAGGCTTCAGCATCCGCAGTTACGGCGGCCAGCATGCCCTGATCCATCCCCAGATCCCGGTGGTCGTCAACATCGGCTACCTCGTGGACGGGAATGTCTACCATCCGGGTGACTCCTTTATCATCCCTGACGGAATGAGCGTTCAGACCCTCCTGGTTCCCCTCCACGCGCCGTGGAACAAGGTCAGCGAGGTGATCGATTTTGTGATCGGAGTACGGGCCGCACGTGCGTTTCAGATCCATGATGGGCTGCTGAATGAGATGGGCCTCAAAATGGTGGAATCGCATGTGGCCTGGCTGGGTGGCAAGTACGGAACGGAGTTCGTGCACCTTGCCCCCGGCGAATCGGTGGAGGTGTAGMKLTKYTHACVRLEKDGRVLVLDPGTFSETKEALAGAEAVLVTHEHGDHIDVPAMVNALRGNDSLAVFGPAGVAAHLREEAPEAAGRIHTVEPGSSFEAAGFSIRSYGGQHALIHPQIPVVVNIGYLVDGNVYHPGDSFIIPDGMSVQTLLVPLHAPWNKVSEVIDFVIGVRAARAFQIHDGLLNEMGLKMVESHVAWLGGKYGTEFVHLAPGESVEVNANANANANA
D1-29_03142501hypothetical proteinATGCCGTTCGGCACCAAGGCTGACGAAACCACGCCGTCCACCTCTGCCCCTTCACCCGCCACGGGCGCGGGCATCGGAGCAACGGGAGCCGGAAAGGAACAGCGCGTCACTAAGCAGCGCCTGGCCATCAGCGCCGCGCTGGATGACCTGAATGACTTCGTGAGCACGCAGGAGCTTTACCGGATCCTCCAGAACCAGGGCGTTTCTGTATCACTCGCTACGGCCTACCGCATTTTGCAATCCCTCGCCGATGAGGGACTTGTCGATGTGCTCCGCAACGGTGAAGGCGAGGCCGTCTACCGCCGCTGCGCAGTCACTGAACACCATCACCATCTCCTGTGCCGCAACTGCGGCAAGGCCGTGGAAGTCGAAGCCCCTGCAGTGGAAACGTGGGCTGCCCGGACGGCGAAAGACCACGGCTACACCGACGTTGCACATACCGTGGAGATCTTCGGTTTTTGCCCGGACTGCACCGTCCGCAAGGCGGCCGGCGAGCTCTGAMPFGTKADETTPSTSAPSPATGAGIGATGAGKEQRVTKQRLAISAALDDLNDFVSTQELYRILQNQGVSVSLATAYRILQSLADEGLVDVLRNGEGEAVYRRCAVTEHHHHLLCRNCGKAVEVEAPAVETWAARTAKDHGYTDVAHTVEIFGFCPDCTVRKAAGELPGPT0003880_1245DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
D1-29_03143876znuBCOG1108High-affinity zinc uptake system membrane protein ZnuBATGGATCCGGACAGCATTATCGGATCGATCTTCAGCTTCGAGAACTACGGCGAGCTGCTGGTCCTGGTCCAAAACTCCATCTGGGCCGGAGCCGTGCTGGGCCTGCTGGGCGGACTCGTTGGCACTTTTGTGATGAAGCGGGATCTCGCCTTTGCTGTTCACGGCATCTCTGAATTGTCATTCGCCGGGGCGGCCTTTGCCCTTCTGATCGGGGCGGACATCGTTTTCGGCTCGCTGATCGGTTCGGTGGCGGCGGCGCTGCTGCTGGGACTGATGGGAGTCAGGGCCAGGGACAAAAACTCGATCATTGGCGTGATCATGCCCTTCGGGCTGGGCCTGGGCATTCTTTTCCTGTCCCTTTATGAGGGCCGGGCCGCCAACAAGTTTGGCCTGTTGACCGGGCAGATCGTCTCGGTCGATACCGTGCAGCTGCAGGCACTCGCCGGGACAGCCGTGGTGGTCATGGTGGCCCTGGTGGCCATCTGGAGGCCGCTTAACTTCGCCAGCGTTGATCCGGAGCTTGCCGAAGCGCGCGGCGTTCCCGTGCGGACCCTGGCGCTCGTCTTTATGGTGCTGTTGGGGGTCAGTGTGGCGCTGTCCATCCAGGTGGTGGGAGCACTCCTGGTGCTGGCTCTGCTGATCACCCCGGCGGCGGCGGCCCTGCGGGTTACGTCCTCGCCGGTGGCGGTGGTGGTGCTGAGCGTGGCGTTCGCCATGACGGCCACAGTGGGCGGGATCCTCCTGGCTCTGGGCGGCCGTATACCCATCAGCCCCTACGTCACAACGCTCTCATTCCTGATTTACGTCGTGTGCCGGGTGATCGGGACTGTCCGGGCGAAGAAGGGGCTCAACGGGCGCGTCATGCTTGCGCGCTGAMDPDSIIGSIFSFENYGELLVLVQNSIWAGAVLGLLGGLVGTFVMKRDLAFAVHGISELSFAGAAFALLIGADIVFGSLIGSVAAALLLGLMGVRARDKNSIIGVIMPFGLGLGILFLSLYEGRAANKFGLLTGQIVSVDTVQLQALAGTAVVVMVALVAIWRPLNFASVDPELAEARGVPVRTLALVFMVLLGVSVALSIQVVGALLVLALLITPAAAALRVTSSPVAVVVLSVAFAMTATVGGILLALGGRIPISPYVTTLSFLIYVVCRVIGTVRAKKGLNGRVMLARPGPT0004270_421DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004270-ABC_ZM_P-K02075NANA
D1-29_03144804mntB_2COG1121Manganese transport system ATP-binding protein MntBGTGAGCCTCCGCGGGGCGTCCCTGAAGTTCGGTAAACGGGCGCTCTGGGAGGATCTCAACCTGGACATCAGGCCAGGCGAATTCTTCGCCGTGCTTGGACCTAACGGCAGCGGAAAGACAAGTTTCCTCAAGGTCCTCCTTGGCCTCCAGGACCTCCATGCCGGGAACGCCACGCTGGGCGGCCATCCGGTGGAGCGCGGAAGTAACCTTATTGGCTATATCCCCCAGCAGAAGTCCTTTTCCCCTGATACCCCCATGCGCGCCCGGGATCTGGTGGGGCTGGGGGTGGACGGCCACCGCTGGGGACTGCGCCTTGCAGCCTCAAAGGCGAACAGCAGGATAGATGAACTCCTGGAACTCGTTGGGGCAAGCGACTACGCCAGGGTTCCGGTGGGCCAACTCTCCGGCGGCGAACAGCAGCGGCTCCGCGTTGCCCAGGCCCTTGCCACGGATCCCAAGGTCCTGCTCTGCGACGAGCCCCTGTTGTCCCTTGACCTGCATCACCAGCAGGCGGTGAGCGCGCTGATCAACAAACAGTGCCACAACCAAAACAGTGCAGTGGTGTTCGTCACGCACGAAATCAACCCCATCATCGACTACGTGGACCGGGTGCTCTACCTCGCCGGAGGCCGGTTCAAAGTGGGGACACCGGAGGAGGTCATGACCACCGAGGTGCTGTCGGATCTCTATGGCAGCCATGTTGAGGTTATCCACGCCAACGGACGCATCGTGGTGGTCGGGCTGCCGGATGCAACCACCCACCATCATGCCGAAGTCCATGCCACGGCAGCGGAGATGGCCTGAMSLRGASLKFGKRALWEDLNLDIRPGEFFAVLGPNGSGKTSFLKVLLGLQDLHAGNATLGGHPVERGSNLIGYIPQQKSFSPDTPMRARDLVGLGVDGHRWGLRLAASKANSRIDELLELVGASDYARVPVGQLSGGEQQRLRVAQALATDPKVLLCDEPLLSLDLHHQQAVSALINKQCHNQNSAVVFVTHEINPIIDYVDRVLYLAGGRFKVGTPEEVMTTEVLSDLYGSHVEVIHANGRIVVVGLPDATTHHHAEVHATAAEMAPGPT0004265_497DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004265-ABC_ZM_A-K02074NANA
D1-29_031451041scaACOG0803Manganese ABC transporter substrate-binding lipoproteinGTGCGCCGTTCTGCCGCCACCCGCACATCCGTGGCCGCCCTCGCAGGCTTGAGCCTTTTGCTGACCGCCTGCGGTCCTGGCGGTGAAGCAACGTCCGTCTCCTCCGCTTCGCCTTCTGAAGGCGGCCTGGTGGACATCGTCGCGTCCACCAACGTCTATGGAGACATCGCGCGCTCTGTCGGCGGGGACAAAGTCAACGTCTCCGCCATCATCACCAAGACCAGCCAGGACCCGCACTCCTACGAGGCAACTGCGCAGGACCGGTTGGTTGTCTCGAAGGCAGATCTGGTGATTGAAAATGGTGGCGGCTACGACGCTTTCGTCGAAAAGATGGCCGAGGACAGCAACATTCCCCACGAGAGCATCCTGAGCGCGGTCGAAATCTCGGGCCTGGCACCGGAGGAAGAGGCTGATCATGCCCCAGCCAGTGATGCCCCAACCACCGACGCCACTGCCAGCGAGCCTGCCGATGAGCACGGGCACGACGAGCACGGGCACGACGAGCACGGTGAATTCAACGAACACGTCTGGTACAGCCTGGAGGCAATGGGCAAGCTGGCCGATGCCCTTGCAGCCAAGCTCGGCGAACTCGAGCCCGGATCCGCAGCCACGTTCACGGCCAATGCCGACACCTTCAAGTCAAGCCTGGATGGACTTGCTGCCAAGCTCGCAGCACTCAAGGCTGCCGGGGGAGCAGGGGCACCAGTAGCAGTTACTGAACCTGTCCCGCTGTACCTGCTGGAGGCGGCAGGGCTGGAGAACCAGACGCCGGCCGATTACACTGCCGCTATCGAGGAAGGAACCGACGTCCCGCCGGCCGTTCTGAAGGCAGCGACGGACCTGGCCGGTTCGGAGGACATTCGATTCCTCGCATACAACGATCAGACAGAGGGCCCGCAGACTGAAGCCCTCAAGAACGCGGCCGAAGCGGCCGGCGTTCCCGTGATCGACTTCAGCGAAACACTGCCCGAGGGCAAGACGTACCTGCAGTGGATGACGGACAATGTTGACAACGTCAGCAAAGTTTTGGAGAAAAAATAGMRRSAATRTSVAALAGLSLLLTACGPGGEATSVSSASPSEGGLVDIVASTNVYGDIARSVGGDKVNVSAIITKTSQDPHSYEATAQDRLVVSKADLVIENGGGYDAFVEKMAEDSNIPHESILSAVEISGLAPEEEADHAPASDAPTTDATASEPADEHGHDEHGHDEHGEFNEHVWYSLEAMGKLADALAAKLGELEPGSAATFTANADTFKSSLDGLAAKLAALKAAGGAGAPVAVTEPVPLYLLEAAGLENQTPADYTAAIEEGTDVPPAVLKAATDLAGSEDIRFLAYNDQTEGPQTEALKNAAEAAGVPVIDFSETLPEGKTYLQWMTDNVDNVSKVLEKKPGPT0004275_315DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004275-ABC_ZM_S-K02077NANA
D1-29_031461071COG1253putative proteinATGAGCGACTGGGAAGGAATTTTCTGGCTGGTTATCCTCCTGCTCGGCAACGCGTTTTTTGTTGCTGCCGAGTTCGCGGTGATGTCCGCACGGCGCAGCCAGATCGAACCCCTGGCCGAGGCAGGCTCCAAGCGCGCCCAGACCACTCTTCGTGCCATGGAGAATGTGTCACTGATGCTCGCCTGTGCCCAGCTGGGTATTACTGTTTGCTCACTGCTGATCCTCCAGGTCGCAGAGCCCGCCATTCATCACCTGATGGCCGCACCGCTGGAAATGGTGGGGCTGCCCGTGGAGATGGCGGACGTGGTGGCCTTCGCCATCGCCTTGATGCTGGTGACGTTCCTGCACGTGACCTTCGGCGAGATGGTTCCGAAGAACATCTCGGTGTCAGTTGCAGATAAGGCTGCACTGTTCCTGGCCCCGCCGCTGATGTTCGTTGCCCGTCTGGTCAGGCCCGCAATTGTGGCCCTTAACTGGTCCGCCAACCACATCCTGAAGCTCATGCGGATTGAGCCCAAGGATGAGGTGAACTCGTCCTTCACGCTTGAAGAAGTCCAGTCGATTGTGCAGGAGTCCACACGCCACGGGCTGGTGGACGATGACGCCGGGCTCATTACCGGTGCGTTGGAGTTCTCCGAGCACACGGCCTCAGACATCATGGTGCCGCTGGACAACCTGGTGATGCTGAAGGCGGCCACTACTCCGGTGGAGTTCGAGAAGGCAGTCAGCAGGACAGGCTTCTCCAGGTTCCCCATGCTTGATGACGACAGCATGCTGGCCGGCTACCTCCATGTGAAGGATGTGCTGTCCATTCCTGAAGCGGATTATCAGCACCCTATTGCTGAAAGCCGGATCCGCTCATTGGCGAACCTCGCGCTGGATGACGAGATCGAACAGGCGATGTCCGTCATGCAGCGAACGGGCTCACATCTCGCCCGGGTCATAGGCCACGACGGTCAGACCCAGGGCGTGCTGTTCCTCGAAGACATCATTGAGCAGCTGGTGGGTGAGATCCGTGATGCAACCCAGGCAACGGGAATCAGGAGGCTCGGCCAGCCCAACGGTGAATGAMSDWEGIFWLVILLLGNAFFVAAEFAVMSARRSQIEPLAEAGSKRAQTTLRAMENVSLMLACAQLGITVCSLLILQVAEPAIHHLMAAPLEMVGLPVEMADVVAFAIALMLVTFLHVTFGEMVPKNISVSVADKAALFLAPPLMFVARLVRPAIVALNWSANHILKLMRIEPKDEVNSSFTLEEVQSIVQESTRHGLVDDDAGLITGALEFSEHTASDIMVPLDNLVMLKAATTPVEFEKAVSRTGFSRFPMLDDDSMLAGYLHVKDVLSIPEADYQHPIAESRIRSLANLALDDEIEQAMSVMQRTGSHLARVIGHDGQTQGVLFLEDIIEQLVGEIRDATQATGIRRLGQPNGENANANANANA
D1-29_031471332hypothetical proteinATGGAATGGCTTCTCCTTGCAGCAGGCTTCCTGCTGATCGCCGGCACCGGCTTCTTTGTCGCCGTCGAATTTTCCCTCATTGCTTTGGACCAGGCAACGGTCCAGCGCGCCATCGACAACGGTGACACCGGTGCCGTTCCGCTGCTCAAATGCCTCAAGTCCCTTTCCACCCAACTCTCCAGCTGCCAGCTTGGCATCACCCTCACCACGCTGCTGACCGGCTACGTGATGGAACCGTCCGTCGGCCGGCTGCTGGAAGGCCCGCTGGTTGTCGTCGGCATTCCCGACGTCGCAGCGGCATCCATTTCCCTGGTGATCGCCATGGCGCTGGCAACCCTGCTCTCCATGTTGCTGGGCGAACTGGTGCCCAAAAACATGGCCATCGCGCTGTCGTTTCCCGTGGGCAAGGCGCTGGCCAGGCCGCAGCTTGTTTTCACTGCCCTTTTCAAGCCTGCCATCCTGGTGCTGAACGGCTTTTCCAATAAGGTCCTGAACGTGTTCGGGCTTGAAGCCAAGGAAGAAATTTCAGGGGCCAGGACGCCCGCCGAGCTTGCCTCCCTGGTACGGCGTTCCGCCGCCATGGGAACGCTCGACGCCGGCACGGCCAACTTTGTGGCCAGGACGCTGAATTTCTCTGCCCGGACAGCTGCCGACGTCATGACGCCCCGGATCCGAGTAGAGACCATCGACGCCGACCAGCCGATCTCGGACATCCTGGACGCTGCGCGGCGCACGGGGTATTCCCGGTTCCCGGTCATTGGAGAGTCGGCCGACGACATCAGGGGACTGGTTCACGTTAAAAAGGCTGTGGCAGTGCCATGGGACCGGCGGCCCAACCTGGAAGCCGGCGCCATCATGACAGACGTCCTCAGGGTGCCGGAAACCATTCATCTGGATGCCCTCCTCGCGGAACTCCGCGAGGGAAACCTGCAGCTCGCCGTCGTGCTTGACGAGTACGGCGGAACGGCGGGCATCGCCACCCTCGAGGACCTTGTTGAGGAAATCGTCGGTGAAGTTGCTGACGAGCACGACAAAGTCCGGCCCGGCCTCCTCCAGAGTGCCTCCGGCGACTGGTACTTTCCTGGGCTGCTGCGCCCGGATGAACTGTCCGAGCAGATTCCCGGACTGAGCGTTCCTGATGAATCCGCCTATGAAACGGTGGGCGGTTATGTAATGAGCGAACTTGGCCGCATCGCCACTGTCGGTGACACCGTCCCTGTTGGCGGCGGAACATTGAGCGTGACCAGGATGGACGGACGACGCATCGACAGAATCTGCTTCCAGCCCGCCGCACCGGACGCTGAAGAGGCCCCGGACAGGACCGCATCATGAMEWLLLAAGFLLIAGTGFFVAVEFSLIALDQATVQRAIDNGDTGAVPLLKCLKSLSTQLSSCQLGITLTTLLTGYVMEPSVGRLLEGPLVVVGIPDVAAASISLVIAMALATLLSMLLGELVPKNMAIALSFPVGKALARPQLVFTALFKPAILVLNGFSNKVLNVFGLEAKEEISGARTPAELASLVRRSAAMGTLDAGTANFVARTLNFSARTAADVMTPRIRVETIDADQPISDILDAARRTGYSRFPVIGESADDIRGLVHVKKAVAVPWDRRPNLEAGAIMTDVLRVPETIHLDALLAELREGNLQLAVVLDEYGGTAGIATLEDLVEEIVGEVADEHDKVRPGLLQSASGDWYFPGLLRPDELSEQIPGLSVPDESAYETVGGYVMSELGRIATVGDTVPVGGGTLSVTRMDGRRIDRICFQPAAPDAEEAPDRTASNANANANANA
D1-29_03148132hypothetical proteinATGGCCCCCGCGTGCTGTGCAATCGCGCTCTGCGGCGTCGGCGGATTCTTCCCGCGCGGACAGCTTCAGGCACGCCATATTCCACTTTCTTGGCGTCACTTCATGATTTGGGTCACCCTTATTGGCAGTTAGMAPACCAIALCGVGGFFPRGQLQARHIPLSWRHFMIWVTLIGSNANANANANA
D1-29_031493816kgdCOG0508Multifunctional 2-oxoglutarate metabolism enzymeGTGCCAGAGCAGCCTAGCCACCGTCTACCAGAGGAATTTGGCGGAAATGAGTGGCTCGTTGACGAACTGTACGAGCAGTACCAAAAGGACAAGAACGCTGTGGACGCCAAATGGTGGCCGCTGTTTGAATCCTTCGACTCGGGCAGCGATTCTTCTTCCAACGGGAATTCGCCCCTCGCCGTCGCCCACCCCCCTACCCGTGAAATGCCTGCCGTAGCTCCGGCCCAGGCCCCAGCAGCTCCGGCACCGGCGCCGGCAGCGCAGCCTGAGGCATCCGCTCCCGCGGCAGCTCCGGCCCCTGCACCTGCAGCTGCACCGGCAAAGAAGGCCCCGGCAACTGTTGCCCGGGACGGCGCAAAGATGACCGAGCCTGGAACCGGATCACAGCCGATCCCCGCACAGCTCCCCAAAAACGTCAAAGCGCCCACGGCTCCCGAAGAGGACGTTGTCTCAGTCCTCCGCGGCCCGGCCAAGGCCATCGCCTCGAACATGATCACCAGCCTGGAGGTTCCCACCGCCACAAGCGTCAGGGCCATCCCTGCCAAGCTGCTGATCGACAACCGTGTTGTCATCAACTCCAACCTGGCCCGCGCACGCGGCGGCAAGGTCTCTTTCACCCACCTCATCGGTTACGCCGTCATCCGGGCCCTGTCCCAGTTCCCGTCCATGAACGTCTACTACGACGAAGTGGACGGCAAGCCCGTTGCCGTCCAGCCTGCACACGTCAACTTCGGCATCGCCATTGACATGCCCAAGCCTGATGGAACGCGCCTGCTGATGGTGCCGAACATCAAGAAGGCCGAGACCCTTAACTTCTCTGAGTTCTGGCACACCTATGAAGACCTCATCAAGCGCGCCCGCGCCGGCAAACTGACAGCGGACGACCACTCCGGCACCACGGTGTCCCTGACCAACCCGGGCGGCATCGGCACAGTACACTCAGTGCCCCGGCTTTCCAAGGGACAGGCCGCCATCATCGGCGTCGGTGCACTGGACTACCCTGCCGAATTCCAGGGTGCCAGCGAAAAGATCATTGCGCATAACGCCATCAGCAAGGTCCTCACCCTGACGTCAACCTATGACCACCGTGTCATCCAGGGAGCCGGCAGCGGCGAGTTCCTCAAGCTGGTGCACCAGCTGCTGCTCGGCGCGCAGAACTTCTATGACGAGATCTTCGAATCCCTGCGCATTCCGTACGAACCCGTGCGCTGGAGCCCGGACCTGCAGGTGGACCCGTCAGACCAGATCAACAAGGTCGCCCGCATCCAGCAGCTCATCCACTCCTACCGTGTGCGTGGGCACCTGATGGCGGACACCGACCCGCTGGAGTATGTCCAGCGCAAGCACCCGGACCTTGATGTCCTGACCTATGGCTTGACCCTGTGGGACCTGGACCGCGAGTGGCCCACCGGCGGCTTCGGCGGCAAGCCCGTGCTTAAGTTCCGTGACATCCTGGCGGTGCTGCGCGACGCTTACTGCCGCACCACCGGCATCGAATACATGCACATCCAGGAGCCGGAGGAACGCACATGGTTCCAGGACCAGCTGGAGCACCCCTACTCCAAGCCCACCCGTGAAGAGCAGCTGCGCATCGTCTCCAAGCTGAACGCTGCTGAGGCCTTCGAAACGTTCCTGCAGACCAAGTTCGTGGGCCAGAAGCGCTTCTCGCTCGAAGGCGGCGAGTCCCTGATTCCGCTGCTGGATGCCATCATGTCCGACGCCGCGGATGACGGCCTGGATGAAGTGGCTATCGGCATGGCCCACCGCGGCCGTCTGAACGTACTCACTAATATCGCCGGCAAGACCTACGCCCAGGTTTTCCGTGAATTCGAAGGCACCCAGGATCCGCGCTCCGTCCAGGGCTCGGGTGACGTGAAGTACCACCTCGGCACTGAAGGCACGTTCACCTCGGACAACGGCAACGAAACCAAGGTCTACCTGGCCGCCAACCCGTCCCACCTTGAAGCCGTGGACCCAGTGCTGGAAGGCATCGTCCGCGCCAAGCAGGACCGCCTGGACCAGGGCGAGGCGTTCCCCGTGCTGCCCATTATGGTCCACGGTGACGCCGCCTTCGCCGGCCAGGGTGTCGTAGCCGAGACGCTGAACCTTTCCCAGCTGCGCGGCTACCGTACCGGCGGCACCATCCACGTGGTGGTCAACAACCAGGTCGGCTTTACCACCGCACCTTCCTCGTCCAGGTCCTCCACGTACTCCACGGACGTCGCCAAGATGATCCAGGCCCCCGTGTTCCACGTGAACGGTGACGACCCCGAAGCGGTGGTGCGCATCGGCCAGCTCGCATACGAGTTCCGCCAGCGTTTCCACAAGGACGTTGTCATCGACATGGTGTGCTACCGCCGCCGTGGCCACAACGAGGGTGATGACCCCTCGATGACCCAGCCCCTGATGTACAACCTGATCGAAGCCAAGCGTTCCGTGCGGAAGCTGTACACGGAGTCGCTGATCGGTCGCGGCGACATCACCGAAGAGGAAGCCGAACAGCTGCTCCGCGACTACCAGGAGCGGCTGGAGCGGGTCTTTGCCGAGACCCATGCCGCCCAGACCTCGCCCATCCCGATCATCACGGCGGACTCCGCCGCGGTATCGGACATCGAGCGTCCCATCGCCCAGCAGTCCGACTCCGGGTCCAATGCGCCTGCGTCCACCGCCATCACACCCGAGACCCTGGCCCGCATCGGCAAGGCGCACATTGAAATCCCCGAGGGCTTCACGGTCCACGCAAAGCTCAAGCAGCTGCTCGAGAAGCGCGAGCAGATGTCACGCGAAGGTGGCATCGACTGGGGCTTTGGCGAGATTGCGGCTTTCGGATCGCTCATCATGGAAGGCGTCCCCGTGCGCCTGGCCGGCCAGGACTCCCGCCGGGGAACGTTCGTTCAGCGCCACGCTGTCTTCCATGACCGCGCCAACGGCAACGAATGGCTGCCCCTCGGCCACCTCTCGGACAACCAGGCCAAGCTCTGGATCTACGATTCCCTGCTGTCCGAATATGCGGCAATGGGCTTCGAATACGGCTACTCCGTCGAGCGTCCCGATGCGCTCGTCCTGTGGGAGGCGCAGTTCGGTGACTTTGTGAACGGCGCGCAGACCATCATCGATGAGTTCATCTCCTCCGCAGAACAGAAGTGGGGCCAGCGGTCCTCCCTGGTGCTGATGCTTCCGCACGGCTACGAAGGCCAGGGCCCGGACCACTCCTCCGCGCGGATCGAACGCTTCCTGCAGATGTGTGCTGAAGAAAACATGATCGTCGCCAACCCCACGACGGCGGCATCCCACTTCCACCTGCTGCGCCGCCAGGCGTACAGCCGCCCCCGCAAGCCGCTGATCATCTTCACTCCGAAGCAGTTGCTCCGCCTCAAGGGCGCGGCTTCCTCGGTGGAGGACTTCACCACGGGCAGCTTCCGCACCGTCATCGGTGACCATGAGCAGCTGGCGGCAGACGCCGTCGAACGCGTCCTTCTGGTGTCCGGCCGCCTGTACTACGATCTCCTGTCCACCCGGCAGAAGACGGAGGACAAGACGACGGCGATCGTCCGCGTGGAGCAGCTCTACCCGCTGCCGCATGCAGAGATCGCGGCGGAGCTGGCCAAGTACCCGAACGCCGAAGTGGTGTGGGCACAGGACGAGCCTGCCAACCAGGGTCCGTGGCCATTCGTTGGGCTCAACCTCCCGGGCGCGCTTGACCGTGCCGTCCGCCTGGTGTCCCGTCCGGCCTCGGCCTCCACGGCTGCCGGCTCCATGAAGCGGCACGCTGCCGAGCAGGATTCGCTCCTGAAGCAGGCATTTGCACGAAAGTAGMPEQPSHRLPEEFGGNEWLVDELYEQYQKDKNAVDAKWWPLFESFDSGSDSSSNGNSPLAVAHPPTREMPAVAPAQAPAAPAPAPAAQPEASAPAAAPAPAPAAAPAKKAPATVARDGAKMTEPGTGSQPIPAQLPKNVKAPTAPEEDVVSVLRGPAKAIASNMITSLEVPTATSVRAIPAKLLIDNRVVINSNLARARGGKVSFTHLIGYAVIRALSQFPSMNVYYDEVDGKPVAVQPAHVNFGIAIDMPKPDGTRLLMVPNIKKAETLNFSEFWHTYEDLIKRARAGKLTADDHSGTTVSLTNPGGIGTVHSVPRLSKGQAAIIGVGALDYPAEFQGASEKIIAHNAISKVLTLTSTYDHRVIQGAGSGEFLKLVHQLLLGAQNFYDEIFESLRIPYEPVRWSPDLQVDPSDQINKVARIQQLIHSYRVRGHLMADTDPLEYVQRKHPDLDVLTYGLTLWDLDREWPTGGFGGKPVLKFRDILAVLRDAYCRTTGIEYMHIQEPEERTWFQDQLEHPYSKPTREEQLRIVSKLNAAEAFETFLQTKFVGQKRFSLEGGESLIPLLDAIMSDAADDGLDEVAIGMAHRGRLNVLTNIAGKTYAQVFREFEGTQDPRSVQGSGDVKYHLGTEGTFTSDNGNETKVYLAANPSHLEAVDPVLEGIVRAKQDRLDQGEAFPVLPIMVHGDAAFAGQGVVAETLNLSQLRGYRTGGTIHVVVNNQVGFTTAPSSSRSSTYSTDVAKMIQAPVFHVNGDDPEAVVRIGQLAYEFRQRFHKDVVIDMVCYRRRGHNEGDDPSMTQPLMYNLIEAKRSVRKLYTESLIGRGDITEEEAEQLLRDYQERLERVFAETHAAQTSPIPIITADSAAVSDIERPIAQQSDSGSNAPASTAITPETLARIGKAHIEIPEGFTVHAKLKQLLEKREQMSREGGIDWGFGEIAAFGSLIMEGVPVRLAGQDSRRGTFVQRHAVFHDRANGNEWLPLGHLSDNQAKLWIYDSLLSEYAAMGFEYGYSVERPDALVLWEAQFGDFVNGAQTIIDEFISSAEQKWGQRSSLVLMLPHGYEGQGPDHSSARIERFLQMCAEENMIVANPTTAASHFHLLRRQAYSRPRKPLIIFTPKQLLRLKGAASSVEDFTTGSFRTVIGDHEQLAADAVERVLLVSGRLYYDLLSTRQKTEDKTTAIVRVEQLYPLPHAEIAAELAKYPNAEVVWAQDEPANQGPWPFVGLNLPGALDRAVRLVSRPASASTAAGSMKRHAAEQDSLLKQAFARKNANANANANA
D1-29_03150600hypothetical proteinGTGGAAGACAGGAAGCTGCGCATCGCAGCTGTTGGAGATGAACTGCTGGCCGGGCTTGGGGATCCCAGGGCACTCGGCTGGCTGGGCCGCGTTTTGGCCCGCACTCCCCAGGATGGCGTGGAACTGGAAAGCTATGCCCTCCCCTGCCCGCAGGAGGGAACGGAAGGGTTGGCTGCCCGCTGGCTGGAGGAGGCCGGACGCCGGTTCGGTGACCACCACGAAAACCGGCTCGTGATCGGCCTGTCCGGCCGGGACATCGAGTTCGGCCTTTCCACTGCGCGCAGCCGGCTTAATCTGGCCAATATCCTGGATTCGGCATCGCAAAACAGGATTGAGGTTTTTGTGGTGGGCCCGCCCCCCACCCTGGACCCGGCACATAACCGGCGCCTTGGCGAGCTCAATACGGCCTTCGCCGATGTGACCACACGCCGCAAACACCTTTACGTGGACACGTTTTCTCCACTGGTCAACCATGAGCAGTGGCGCCAGGACCTCGCCGCAAACAGCGGAACCCCGGGGCAGGCTGGGTATGGCCTCATGGCATGGCTGGTCCTGCATCGCGGCTGGTTCCAGTGGCTGAAAATGGACGCCCCGGCCTAAMEDRKLRIAAVGDELLAGLGDPRALGWLGRVLARTPQDGVELESYALPCPQEGTEGLAARWLEEAGRRFGDHHENRLVIGLSGRDIEFGLSTARSRLNLANILDSASQNRIEVFVVGPPPTLDPAHNRRLGELNTAFADVTTRRKHLYVDTFSPLVNHEQWRQDLAANSGTPGQAGYGLMAWLVLHRGWFQWLKMDAPAPGPT0001840_2531DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804NANA
D1-29_03151858hypothetical proteinATGACCGAGGACAGCTGGACCGTCACCGATCCGCAAACCATCGATGTTGACAATGTCACCTCGCTCAAGCTGGGCATGGTGCGCGGAAGGTTTGACGTCGTTACTCACGCCGACCCCGTCGTCCGGGTGGAGATCACAGAAGTGCAGGGCGACCCCGTGGCCGTGTCATTCGTCGACGGCCGGCTCGAGGTCCGCCATCAGCTTCACGGACCGCAGGGCTGGTTCAAGAACCTGATGGGAACCGTCAACCACAACAGCAATAATTCGGCCGTCATCAGCATCGCCCTTCCGGCCGGCGTCGAAGTGGAAGCGGGCACCGTCAGTGGTGACGGACTGGTGTCCGGGATCAGCGGGCACACCAGGCTCAATACCGTCTCCGGTTCGGTAATGGCAGATGGCACCAGCGGCAACCTCCACATCAACACCATCAGCGGGGACGTGGTTGCCCGCAACCACGACGGCGTCCTGACCGCCAAAAGCGTCTCGGGCGAGGTTACGGCCTCCGGCCGGTTCAGCAATATCCGCGCCAACACTGTCAGCGGCGACATGAGCTTTGACCTGTGGGGCTTTACGCATGACTTCGGCGCCAATTCAGTCTCCGGGGACCTGACCATCCGGCTCCCGCACGACGTCGGGGTGGACATCGTGGCGAAATCCGCCAGCGGGACGGTGGTCATCGACGACCAGCACTACGCCCAGCCCGGGGGCAAGGTGGAAACCATCGCAGGTCCGGACCGCAAGCTCATGCTGGTGCGGACCAACTCCGTGTCCGGCAAGACGTCCATCTTCCATGGCCTTGCTCCGGATAGCGGGGAAGCGTCGGACGGCGAAACAAGGAACCCGGAAGCGGCAGGCTGAMTEDSWTVTDPQTIDVDNVTSLKLGMVRGRFDVVTHADPVVRVEITEVQGDPVAVSFVDGRLEVRHQLHGPQGWFKNLMGTVNHNSNNSAVISIALPAGVEVEAGTVSGDGLVSGISGHTRLNTVSGSVMADGTSGNLHINTISGDVVARNHDGVLTAKSVSGEVTASGRFSNIRANTVSGDMSFDLWGFTHDFGANSVSGDLTIRLPHDVGVDIVAKSASGTVVIDDQHYAQPGGKVETIAGPDRKLMLVRTNSVSGKTSIFHGLAPDSGEASDGETRNPEAAGNANANANANA
D1-29_03152615hypothetical proteinATGCCTCCGGTCTTTGCCCATGGTGCCCTCCGGTTATACCTTCTGGCCCTCCTGGAGTCCGGCCCCAAACACGGCTACGAGCTCATCAAGGCCCTCAAGGAGAGGTTCGGCGGAACGTATTCCCCCAGCGCGGGAACCATCTACCCGCGACTGGGAAAGCTGGAGGAAGAGGGACTGGTAGCTACGGAGTCCGTGGGCAGGCGCACCAACTATTTCATCACCGCGGCGGGGCTGGCGGAACTGAACAGCCGCCGGGACGAACTGGCCGGCGTCGAAAACGACATCTCCGCCTCCGTCCGCCGCCTGGCGGACAGCCTCCGCGAGGACATCCGGAGCAACATGCGCGGGCTGCGCGCAGATCTCGCAGCGACCGCCGAGGCGGCGCGTTCCGCGGCCCGCTCCGCAGACTTCAGGATGGCAGGTACCCGGCAGTCGCAGGACGGGAACCGGACGCTGAAAGAGGCCGAGCTGCTCCTTCAGGCATTCCGGGACGACCTGCGGATCGAACTTCGACTGGAGGCGAGCCGGCAGCCGCTCAGCCCGCTGGCACTTGAAACCGTCAAGACCGTCCTGGACCAGGCCCGCATCTCCATCAGGAATTCGCTGCACGGCTGAMPPVFAHGALRLYLLALLESGPKHGYELIKALKERFGGTYSPSAGTIYPRLGKLEEEGLVATESVGRRTNYFITAAGLAELNSRRDELAGVENDISASVRRLADSLREDIRSNMRGLRADLAATAEAARSAARSADFRMAGTRQSQDGNRTLKEAELLLQAFRDDLRIELRLEASRQPLSPLALETVKTVLDQARISIRNSLHGNANANANANA
D1-29_03153261hypothetical proteinATGAGCGACTGCCAGGGATTAGGCGACTGCGACGACGCCAGGATGCAACGCATCTATGAGTACCTTGACGGGGCACTGACCCGTGAGGACATCACGGAGATCAAGCACCACCTTGATGACTGCCCTGAATGCACTCAGCAGTACGACCTCGAATGCGTGATCCGGAACATGGTGAAACGCTCCTGTACCGAGGCCGCACCGGAGAACCTCAAGAACGCCATTCTGGATCGGATACATTCCATCCGCCCGGTGGACGCTTAGMSDCQGLGDCDDARMQRIYEYLDGALTREDITEIKHHLDDCPECTQQYDLECVIRNMVKRSCTEAAPENLKNAILDRIHSIRPVDANANANANANA
D1-29_03154888hypothetical proteinTTGGCGTTGGTGAAGGACGAAACGGAAGTAGCGGGCCCCGTGGTTTTGGAGACTCTGGAATCAGATCCTCCGGAGTACGGTTCGCTGCGCGCCCAGAGCGTGACAGTAGACTTGAAGGCAATGAGCACCCTGGATCCGGCCCTTGAGGCCATGTATGAGGCCTCCGGAAGCGAAGCCAAGAGCCGTAACGACGCACAGCCCGCCGCCGGAGAATCAGCAGAGCCTGAAACCCTCAGCGGCGAGCCTGCAGAGCCCGCCGTTGACTTGGCCAAGGAATCGCCGGAAGAGCGTCGCATCCGCTTCGAGCGGGACGCAATGCAATACGTGGACCAGCTTTATTCCGCTGCCATGCGCATGGCCCGGAACCCGGCTGATGCCGAGGACCTTGTCCAGGAGGCCTACACCAAGGCATTTTCGGCGTTCCATCAGTACAAGCCGGGCACCAACCTCAAAGCATGGTTGTACCGGATCCTGACCAACACCTACATTAACCTGTACCGAAAACGGCAGCGGGAGCCTTTGCAGTCCAATTCGGACACGATTGAGGACTGGCAGCTGGCAAGGGCGGAATCCCACACGTCCAGCGGGCTCAGGTCGGCGGAGGCAGAGGCACTGGATCACCTGCCTGATTCAGATGTAAAACGCGCGCTCCAGGCGATTCCGGAGGAGTTCCGGCTGGCCGTTTACTTCGCGGACGTCGAAGGCTTCGCCTACAAGGAAATTTCGGACATCATGAACACGCCCATCGGCACCGTGATGTCCCGGCTGCACCGCGGCCGGAAAATGTTGCGGGACATGCTGGCGGACTATGCCGCCGATCGGGGATTCAAAGGCGCCGTCGAAACCCAGGAAGCGGCCGAAAGCACACAACAGGAGAACAGGAAATGAMALVKDETEVAGPVVLETLESDPPEYGSLRAQSVTVDLKAMSTLDPALEAMYEASGSEAKSRNDAQPAAGESAEPETLSGEPAEPAVDLAKESPEERRIRFERDAMQYVDQLYSAAMRMARNPADAEDLVQEAYTKAFSAFHQYKPGTNLKAWLYRILTNTYINLYRKRQREPLQSNSDTIEDWQLARAESHTSSGLRSAEAEALDHLPDSDVKRALQAIPEEFRLAVYFADVEGFAYKEISDIMNTPIGTVMSRLHRGRKMLRDMLADYAADRGFKGAVETQEAAESTQQENRKPGPT0014960_2090DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_03155549hypothetical proteinATGTCCTTTGTCCGTACTCTCGCCCGGCCCATGCTGGCATCCAGTTTCGTCCTTGCCGGTCTGGACAAGTTCAGGAACGCTGATGATACCGCTCAGCAACTCTCGCCCCTTCTGCGCAAGGCAGCAGCCTCGTTGCCCTTCCAGACCAGCGAGAAGACACTGGCCAAGGTGATTGGCGGAACGCAGGTAGGTGCCGGCGTGTTGTTCGGACTGGGCAAGTTCGCACGGCTGTCAGCAACGCTGCTCACGGTTATTTCGGTCCTGAACACTTTTGTGGAGTGGCGAAGCGCTGACATCAGTTCCAAGGAAGGCCGGGATGCCCGGCGCAAGCAGCTCCTCAAAAATCTCTCCCTCAGCGGCGGCGCCTTGCTTGCCTCCGTGGATACAGCAGGCAAGCCCGGACTGGCCTGGCGCGCAGAGCACCTGGCTGCCGACGTGAAAAAGGGCGCTTCCCACCTCGCTGCGGACACCAAAAAGACCACCGGCAAGCAGCTCCACAAGGCTGACAAGGCTGTCCGGCGCGCCGTGGATCAGGCAACGGGGGCCTAAMSFVRTLARPMLASSFVLAGLDKFRNADDTAQQLSPLLRKAAASLPFQTSEKTLAKVIGGTQVGAGVLFGLGKFARLSATLLTVISVLNTFVEWRSADISSKEGRDARRKQLLKNLSLSGGALLASVDTAGKPGLAWRAEHLAADVKKGASHLAADTKKTTGKQLHKADKAVRRAVDQATGAPGPT0028505_736DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-29_031561395aroACOG01283-phosphoshikimate 1-carboxyvinyltransferaseATGACCGGATCCATTGCCGCCCCTGCCCGTGACTCTTCCGAAGCTGTGTCCCACTGGCCCGCACCGTTTGCCGCCAGGCCGGTCAATGCCACGGTTACGGTGCCGGGTTCCAAGTCCCTGACCAACAGGTTCCTGGTCCTGGCGGCACTGGCTGACGGCCCTTCCAGGCTGCGGGCCCCGCTGCACTCGAGGGACTCAGCGCTGATGATTGAGGCCCTGCGCCAACTGGGTGCCGGCATCACCGAGGTACCGGGAGACGGCGCCTTCGGGCCGGACCTCGAAGTGATTCCGCTGAGCCGGGACGCTTCCCCGGCGCGGACGCAGATCGATTGCGGCCTCGCCGGAACAGTGATGCGGTTCGTTCCTCCGCTCGCCGCGCTTCGAAACGGCGAGAGCGTTTTCGACGGCGATCCGCACGCCAGGAACCGCCCGATGGGAACCATTATCGAAGCGCTGAAAGCCCTCGGCGTTGCGGTAGCCGCGGAGGACGGCAGCACTCCTGCCTCGTTGCCTTTCGTGGTCGAGGGCACCGGCGAAGTCCGCGGCGGACACCTGGTGATCGATGCCAGCGCGTCGTCGCAGTTCGTCTCGGCTCTGCTTCTCGTGGGAGCACGGTTTACTGAAGGCCTGCATCTGGAGCACGTTGGCAAGCCAGTGCCAAGCCTTGACCACATCAATATGACGGTGGCCGTGCTGCGGGGCCTGGGGGTTTCGGTGGATGATTCCGTTCCCAACCACTGGGTTGTCGCCCCGGGCCATATTCGGGCTTTCGACCAGCGCATCGAGCAGGACCTGTCCAATGCGGGCCCCTTCCTGGCCGCTGCCCTGGCATCACGCGGAACGGTCCGCATCCCGAACTGGCCGGCGGAAACCACCCAGGTGGGAGACAAATGGCGCAGCATCCTGTCGGCAATGGGTGCCGACGTCAGCCTCGCTGACGGCGTCCTGACCGTTACCGGCGGGGCTGGGATCCAGGGTGGCGACTTCGATGAAACCAGCGAACTTGCCCCTACTGTCGCCGCTCTGTGCGCCCTCGCCAGCGTCCCTTCCCGGCTCACGGGAATAGCACACCTGCGCGGGCATGAGACGGACCGGCTGGCCGGGCTCGTCACCGAAATCAACCGCCTCGGCGGCGATGCAGAAGAGACCAGCGACGGATTGGTGATCCGCCCGGCGAAGCTGCACGGCGGCGTCGTACATAGTTACGCAGATCACCGAATGGCCACCGCCGGTGCCATCCTTGGCCTGGCCGTGCAGGGCATTGAGGTGGAGGACATCGCCACCACGGCCAAGACCATGCCGGACTTTCCTGCCTTGTGGGCGGACATGCTCGCCCAGGGCCAGTCAACCCAGCCTGAGGGGCCGGAGGGTTCCGTCGGTGGCACGCAGCACTGAMTGSIAAPARDSSEAVSHWPAPFAARPVNATVTVPGSKSLTNRFLVLAALADGPSRLRAPLHSRDSALMIEALRQLGAGITEVPGDGAFGPDLEVIPLSRDASPARTQIDCGLAGTVMRFVPPLAALRNGESVFDGDPHARNRPMGTIIEALKALGVAVAAEDGSTPASLPFVVEGTGEVRGGHLVIDASASSQFVSALLLVGARFTEGLHLEHVGKPVPSLDHINMTVAVLRGLGVSVDDSVPNHWVVAPGHIRAFDQRIEQDLSNAGPFLAAALASRGTVRIPNWPAETTQVGDKWRSILSAMGADVSLADGVLTVTGGAGIQGGDFDETSELAPTVAALCALASVPSRLTGIAHLRGHETDRLAGLVTEINRLGGDAEETSDGLVIRPAKLHGGVVHSYADHRMATAGAILGLAVQGIEVEDIATTAKTMPDFPALWADMLAQGQSTQPEGPEGSVGGTQHPGPT0012850_410DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012850-yddE-K00800NANA
D1-29_031571116rsgA_2COG1162Small ribosomal subunit biogenesis GTPase RsgAGTGGCACGCAGCACTGATTCATGGGACGAGTCCGATGTCCGGATCCGTCCCAGCAAAAAGGGGTCACGCCCGCGTACCAAGGACCGTCCCAGTCACGATGACGCTGTCACGGGACGCATCATCACGGTGGACCGCGGCCGGTATACGGCAGTGGTCGGTGAGGATTCGGGCGACGAGCGCGTGATCATCGCGGCAAGGGCCCGGGAATTGCGCCGCTCCCCCGTGGTCGCCGGAGATTTCGTCTCGCTCGTGGGGGATGTATCGGGCGAACCTGACACCCTGGCCCGCCTGGTCAAGATCCAGGAGCGCAGGACACTCCTGCGCCGCAGCGCGGATGACACTGATCCCGTGGAGCGCGCAGTGGTAGCCAACGCCGATCAGCTCGTGGTCGTGGTGGCTGCCGCCAACCCGGAACCCCGGACCGGCTTTATCGACCGCGCCTTGGTAGCAGCCTACGACGCCGGGATTGACCCGCTGCTGCTGGTCACCAAGGCGGACGTCAAGGATCCCTCGGAGCTGTTGTCCAACTACGAGCACCTTGATTTCCCGGTCATCATCAGCCGCACGGCCGATTCCGCGGCGTCCGGAATCGATGCACGTTCCGATGACGGCCTGTCTGCCCGGCTGGACAGTAATGCCGTTTCCCAGCTCCGTGAACACCTCGATGGCAAGGTCACGGTGATGCTGGGGCATTCGGGCGTGGGCAAATCCACCATGGTGAACGCGCTGACAGGTGCCGAACGTGCCACGGGCGGCGTCAACGCGGTGACGGGGAGGGGGCGGCACACGTCCTCGTCTGCCCTTGCCCTCAAACTGACTGACTCGCCGGCGGGGAGCTGGATCATTGATACTCCCGGGATCCGGTCCTTCGGCCTGGCACATGTGGACCCGGATCGCATCCTCCGGTCCTTCCCGGATCTCGAGCCGGGAACGGACGCATGTGAACGTGGCTGCAAGCACAACGCCGCCGCGGTCAACTGCGGGCTGGACGCCTGGGTGGCCGAGGGCCACGCCGGCCCGACGGGTGCAGCCCGGCTTGCGTCACTGCGGCGTTTGCTTGGCACCGATCCGCGGATGGAAGGTCAGGAAACCAAGGAACTCGGCAGCATGGGCTGAMARSTDSWDESDVRIRPSKKGSRPRTKDRPSHDDAVTGRIITVDRGRYTAVVGEDSGDERVIIAARARELRRSPVVAGDFVSLVGDVSGEPDTLARLVKIQERRTLLRRSADDTDPVERAVVANADQLVVVVAAANPEPRTGFIDRALVAAYDAGIDPLLLVTKADVKDPSELLSNYEHLDFPVIISRTADSAASGIDARSDDGLSARLDSNAVSQLREHLDGKVTVMLGHSGVGKSTMVNALTGAERATGGVNAVTGRGRHTSSSALALKLTDSPAGSWIIDTPGIRSFGLAHVDPDRILRSFPDLEPGTDACERGCKHNAAAVNCGLDAWVAEGHAGPTGAARLASLRRLLGTDPRMEGQETKELGSMGPGPT0009020_386DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949NANA
D1-29_03158819hisNCOG0483Histidinol-phosphataseATGATCCAACCCGCTTCGAGCTACAACGATGACTTGCGCCTGGCCCACGTGCTGGCCGATTCCGTGGACGACCAGACCATGAGCCGCTTCAAGGCCCTGGACCTCCACATCGAAACCAAGCCGGACCTGACGCCGGTCACAGATGCTGACAAGGCCGCTGAGGAAGCCATCCGGGGCCAACTCTCCCGCTCCCGTCCCCGTGATGCCGTGCTCGGTGAGGAGTTCGGCAGCAGCGGACATGGTTCCCGCCGCTGGATCATCGACCCCATTGACGGCACCAAGAACTTTGTTCGCGGCGTCCCCGTCTGGGCCACACTCATCGCACTCGTTGACGAGGGCGAACCGGTGGTCGGCGTGGTCAGTGCCCCGGCGCTCGGTAAGCGCTGGTGGGCGGCCAAGGGCGCTGGAGCCTACATGGGCCGTTCCCTTGCCGCCGCCACCAGGCTGCGGGTTTCGGACGTCTCAAAGCTGTCCGACGCGTCGCTGTCCTATTCCAGCCTGGGTGGGTGGAAGGAACGGGGCAATCTTGACGAGTTCCTGGAGCTCACCGAGGATGTGTGGCGGACGCGGGCATACGGCGACTTCTGGTCCTACTGCATGGTGGCCGAAGGCTCTGTGGACATCGCGTGTGAACCCGAGCTGAACCTTTACGACATGGCGGCGCTGGTGCCCATTGTGGTTGAGGCCGGGGGCCGGTTTACCTCCCTTGAGGGAGAAGACGGGCCCTTCGGAGGCAATGCCCTGGCCACCAATTCCATCCTGCACTCGGAGGTCCTGAAGAGACTAAATCCGAGCCTGGACGATCTTCTCTCGTCCTGAMIQPASSYNDDLRLAHVLADSVDDQTMSRFKALDLHIETKPDLTPVTDADKAAEEAIRGQLSRSRPRDAVLGEEFGSSGHGSRRWIIDPIDGTKNFVRGVPVWATLIALVDEGEPVVGVVSAPALGKRWWAAKGAGAYMGRSLAAATRLRVSDVSKLSDASLSYSSLGGWKERGNLDEFLELTEDVWRTRAYGDFWSYCMVAEGSVDIACEPELNLYDMAALVPIVVEAGGRFTSLEGEDGPFGGNALATNSILHSEVLKRLNPSLDDLLSSPGPT0012270_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-PUROMYCIN_METABOLISM,PGPT0012270-pur3-K12634NANA
D1-29_031601434csd_2putative cysteine desulfuraseGTGACAACTGCCACCGTCTCCCCCAATACCGCTGCCCAGGCATTTCCCGGCACGTCCCCAGCACTGTCCGCCGATCGCATTTCCATCGCCGGGCGTCCCCTCTCCGCCGTCACCGGCGCGGAGATCCAGGCTCCCCTGATCCAGGGCGGACATGTCAGGTACGCCAACCTTGACTATGGTGCTTCGGCGCCTGCCCTCTCCGTGGTTTCTGCCTACCTCAACGAGATCCTGCCGTTTTACGCGAGCGTCCACCGTGGTGCCGGCTATGCATCCCAGATCAGCACTTCGGTTTATGAGAACTCACGCAGCATAGTCCGGGAGTTTGTTGGTGGCCGCCCCGATGACTCCGTTATCTTCACCCGTAACACCACTGATTCCCTGAACCTGCTGGCCGGCTGCCTGCCGTCCACGGACGGGCGCAACCAGGGCGACGTCCTCTATCTCGACATCGAACACCATGCCAACCTCCTGCCGTGGCAAGGAGTGCCGCACCGCAGTGTGGTCGCCGCCAACACCCTTGCCGGTACCGTCGAGGCTATCCGTGCCGAGTTGGAACAGGGCGGGGTGAGCCTGCTGGCCGTCACCGGCGCGTCCAACGTCACCGGCGAGATCCTGCCCGTCCGGGCACTGGCGGCACTGGCCCACGAGCACGGCGCCCGCATCGTGGTCGATGCCGCACAGCTTGCGCCGCACCGGCGTATCGACATCGCCGCTGACGACGTCGACTACCTGGCCTTCTCCGGCCACAAGCTCTATGCGCCCTTTGGGTCAGGTGTCCTGGTGGGCCGGCCGGACTGGCTCGACGCCGGCACTCCCCACCTGGCCGGCGGCGGCGCTGTCCGGGAAGCCAGGCTGGACGGCGTGAGCTGGGCAACCGGGCCCGCCAGGCACGAAGGCGGCTCGCCCAACGTCCTGGGCGCAGCCACCCTCGCCCGCGCCACGCAGGTCATCGCCGCCTTGGACCAGACCCGCTGGCATGCCCACGAGTCAGCCATCAGGTCCTTCCTGGTGGAAGGCCTCGAGAAGATCGACGGCGTCACCGTGCACCAGATCTTCAAGGACACCAACCCCGAAACGGACACCATCGGCGTGGTTAACTTCTCCGTGGCGGGCTACGACGCTGGACTGGTGGCTGCCTATCTCTCCGCAGAGCACGGCGTAGGCCTCCGTGACGGCCGTTTCTGCGCCCATCCCTTGCTCAAGCGCCTGGGTCTTCCTTCCGGCTCCCTCCGGGCGAGCTTCGGAGTAGGTTCCCGGCTCGAAGACGCCCAACGGCTGCTGGCCGGCATCGAGGAACTGCGCCGCACCGGATTGGGATGGGACTACGTCGTGGATGCCGGCCGCTGGGTTCCCGCCAATGACACCCGGACTTACCCGTCGTGGGCGCCGAACACTCCCGGTACCGCAGGCGCAGCTCCCTGCATCGAAGACTGAMTTATVSPNTAAQAFPGTSPALSADRISIAGRPLSAVTGAEIQAPLIQGGHVRYANLDYGASAPALSVVSAYLNEILPFYASVHRGAGYASQISTSVYENSRSIVREFVGGRPDDSVIFTRNTTDSLNLLAGCLPSTDGRNQGDVLYLDIEHHANLLPWQGVPHRSVVAANTLAGTVEAIRAELEQGGVSLLAVTGASNVTGEILPVRALAALAHEHGARIVVDAAQLAPHRRIDIAADDVDYLAFSGHKLYAPFGSGVLVGRPDWLDAGTPHLAGGGAVREARLDGVSWATGPARHEGGSPNVLGAATLARATQVIAALDQTRWHAHESAIRSFLVEGLEKIDGVTVHQIFKDTNPETDTIGVVNFSVAGYDAGLVAAYLSAEHGVGLRDGRFCAHPLLKRLGLPSGSLRASFGVGSRLEDAQRLLAGIEELRRTGLGWDYVVDAGRWVPANDTRTYPSWAPNTPGTAGAAPCIEDNANANANANA
D1-29_03161759COG0500putative methyltransferaseGTGGCACGGGGTGGCCCCAAACTTGACCACGGACGCCGTCGGGAACTCGGACAGAGCTTCCAGGACGGCGGCGAGCACTACCAACGCGTCCGGCCCGGATATCCCGCGGACTCAGCTGACTGGCTTGTTCCCGCCGGAGCCCGTGATGCCGTGGACGTCGGTGCAGGGACTGGCAAGTTCACGGCCCTGCTGCTCGAGCGCGGACTGGCGGTTTCAGCCGTGGACCCTTCCGCGGACATGCTCAAGCAGCTCGGGATCCACTATCCACAAGTGACAGCAAGGCAGGGCACAGCCGAGGCAACCGGGCTGGCGAGCGGCTCATTCGACGTCGTCAGCGTTGCCCAGGCCTGGCATTGGTGTGACCCGCTGCAGGCAAGCACAGAACTTGCCAGGATTCTTCGCCCAGGCGGCACACTCGGCCTTATCTGGAACCAGCTGGACACATCCGTACCGTGGGTCCACCGGCTCTCACGGATTATGCACGCCGGGGACGTCTACAAGCCGGGGTTTCGTCCTGTGGTGGGGCCTGAGTTCCAGGGGCTCGAAAGCCATGTGACACGGTGGGAAGACCGGCTAAGCACGGCCGACATCATTGAGCTGGCCAAATCCCGGAGCTACTTCCTGAGGGCGGGTGAAGCCACGCGGACCAAGGTCCTCGCCAATCTCGACTGGTATCTGCACCAGCATTTGGATCACGCTGCCGGTGCTGAACTGGGACTGCCCTACCTGACGCTGACCTGGCGGGCCATCAAGGCATGAMARGGPKLDHGRRRELGQSFQDGGEHYQRVRPGYPADSADWLVPAGARDAVDVGAGTGKFTALLLERGLAVSAVDPSADMLKQLGIHYPQVTARQGTAEATGLASGSFDVVSVAQAWHWCDPLQASTELARILRPGGTLGLIWNQLDTSVPWVHRLSRIMHAGDVYKPGFRPVVGPEFQGLESHVTRWEDRLSTADIIELAKSRSYFLRAGEATRTKVLANLDWYLHQHLDHAAGAELGLPYLTLTWRAIKANANANANANA
D1-29_03162714mntRHTH-type transcriptional regulator MntRGTGAAGACCAGCGCGCCCTCCTCCTCGATCGAGGACTACGTCAAGGTCATATACTCCTTCACTGAGTGGCAGGACAAGCCCATTACGTCCTCCCAGCTGGCCCAGCGCCTGGGCGTGGCAAATTCCTCGGTTTCGGAAATGGTCCGCAAACTCAAGGACCAGGGCCTGGTGGACCACAAACCGTACAGTGCCATCACGCTGACACAGGACGGAGTGCGGCTGGCCCTGTCCATGGTGAGGCGGCACCGACTGATTGAGACCTATCTCGTCCAACAGCTGGGGTACAGCTGGGATGAGGTCCACGACGAAGCCGAACTGCTGGAGCACGCAGTCTCGGACACTTTCATTGAACGCATGGCGGCCAAGCTGGGAAATCCCCAACGCGATCCCCACGGGGACCCCATTCCTACCGCGGACGGAACCGTGCTGATGCCTCCCGCCCGCCTGATGAGCGAGCTGGATCAGGGCCACACCGGCAGGATCACCAGGATCAGCGATGAGAACCCCGACCTCCTGCGGTACCTCTCCGCACAGGAAATCGACCTGGACGCCGATGTTGAGGTGGTCGGCCGGAAACCCTTCGGCGGCGCCCTTGTGGTGCGGATCCGCTCGGCGGGCAGGAAACAGGAATACGATCTTACTGACGAAGTGACGTCTGCCCTCTGGGTCCACAGCGACCACCCCCACCCTGGCTGCGTCCTCGAGGATCGCTGAMKTSAPSSSIEDYVKVIYSFTEWQDKPITSSQLAQRLGVANSSVSEMVRKLKDQGLVDHKPYSAITLTQDGVRLALSMVRRHRLIETYLVQQLGYSWDEVHDEAELLEHAVSDTFIERMAAKLGNPQRDPHGDPIPTADGTVLMPPARLMSELDQGHTGRITRISDENPDLLRYLSAQEIDLDADVEVVGRKPFGGALVVRIRSAGRKQEYDLTDEVTSALWVHSDHPHPGCVLEDRPGPT0003890_151DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003890-troR-K03709NANA
D1-29_03163426crcB_1Putative fluoride ion transporter CrcBGTGAAACAGGCCGCCGGCAGCATGCCGAACTGGCGCGCCTGGCTGGCAGTGGCAGCGGGTGGCCTGGTGGGAACGGAACTTCGCTACGGCCTGGGCCTTGCCTGCCCTGACGCTCCCGGAACCATTCCCTGGGCCACGCTCTTGATCAATGTGTCCGGGAGCTTTGTGCTCGCCGCACTGACTACCTTCTGGATTGCCCGCCCTCACACTGCCTTCTGGCTCAGGGCCGGCATGGGCCCCGGGCTCCTGGGTTCCTTCACTACCTTCTCCGCCGTGGTGTTCACCATCGACCAACTGGCACGGGCCGGCCAGCACCCCGTGTGGATTGCCTACCTGGCCCTTTCCCTCATGCTTGGACTGGGCGCCGCAGCGGCAGGGTGGCGCACAGGAAAGGTTCTTGCCGACCGGACGGGGCCGGTCGCATGAMKQAAGSMPNWRAWLAVAAGGLVGTELRYGLGLACPDAPGTIPWATLLINVSGSFVLAALTTFWIARPHTAFWLRAGMGPGLLGSFTTFSAVVFTIDQLARAGQHPVWIAYLALSLMLGLGAAAAGWRTGKVLADRTGPVAPGPT0004985_838DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
D1-29_03164405crcB_2Putative fluoride ion transporter CrcBATGATCGCCGCAGGACTCGTCGGACTGTTTGGCGTCCTGGGCGCGCTGTTGCGCTTCGCCGCCGATAGCTGGTTCGCACACCGTGCCGCCCGCCGCCCTGTCACCAAGGTGGGCGGAACGCCACGCCACTGGCCGTGGGCAACGTTGCTGGTCAATGTCACAGGCTGCCTCATTATCGGGCTGTCCATCGGTATCACCGGAGGGCTGGGACTTCCATCCGATTGGCACACCGCCGTGGCCACAGGTCTGGCGGGAGGCCTCACAACCTTCAGTTCCTGGACCACGGCCACTGTCCGGCTCCTGAGCGAATCGCGGTTTACGGCGGCCGGGCTGAACCTGGGCGGCAACCTCGTTGCCGGCTTCGCCGCCGCGGCGCTGGGCATTGCCCTGGTAGCCGGGCGCTGAMIAAGLVGLFGVLGALLRFAADSWFAHRAARRPVTKVGGTPRHWPWATLLVNVTGCLIIGLSIGITGGLGLPSDWHTAVATGLAGGLTTFSSWTTATVRLLSESRFTAAGLNLGGNLVAGFAAAALGIALVAGRPGPT0004985_1612DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
D1-29_03165327hypothetical proteinATGGAAATGGCCCAGCGGCACGGAATCCCGAAGTGGCTGTCCGAAGCGGACCTGGGTGAGATCTTGGACAACCCACCACCGTGGCTTGTCCAGTCACGAGCCAACCGAACTGGCAAGCGTCCGGTCTGGGTTCATTTGGAGTGCGCCGTCTGCGGATATGAGGAAGCAGCGCGGCCCAAGAAATGGTGGCCCGACTTCACCTACGTCACCTGCGGCCACCATGCTCCCAGCGAGCTGCCGCCCCCTCGTCCTGGCTTCGTCCGTAGCGAGTTCGACGGCGTCGGGACCCGTTTTGTGGGCATCGCTGACGTTTCCGTTCCTGACTAAMEMAQRHGIPKWLSEADLGEILDNPPPWLVQSRANRTGKRPVWVHLECAVCGYEEAARPKKWWPDFTYVTCGHHAPSELPPPRPGFVRSEFDGVGTRFVGIADVSVPDNANANANANA
D1-29_031661041hypothetical proteinATGGACCCGGCGCGGGAGCCCAACCCTATAGAGCCCAATCCAGCAGAGCCCAACCCAGCAGTGCCCGATTCAGCAGTGCCCAATCCGGCAGAGTCCGACGACGGTCTCCTGGACTCTTACTCAAAGACCGTGATGCGAGTGGCCGAAACTGTCACTCCGCACGTTGCCGCCATCGAAATGACCGGCAACCGCCGGAACGGCAGATTTAGGTTCGGAGCGGGATCAGCCGTGCTCTTCACTGAGGACGGCTACCTCCTCACAAACTCCCATGTTGTGGCCGGAACACACCATGGGCACGCAGTCTTCGCGGATGGCAGCCGGACCGAACTTGAGCTCGTGGGGGTGGATCCCTTGTCCGACCTTGCAGTGATCCGCGGCCGCGCGCCGAAAGTAGCACCGGCAGAGTTTGGTGATGCCGAGTCCCTGCGTGTCGGGCAGTTGGTGGTGGCCGTGGGCAATCCGCTCGGATTGGCTGGGTCAGTGACAGCCGGTGTGGTCAGCGGGCTGGGCCGGGCAATTCCGGTGTGGTCAGGCGGCAACCGGCGTGTCATCGAAGATGTCATCCAAACCGACGCTGCCCTGAATTCAGGCAGTTCGGGAGGCGCGCTGGCAGACACGCATAGCCGAATCGTGGGAATCAACACTGCTGTGGCGGGCGCAGGGTTGGGCCTGGCTGTTCCGATCAATGCCACCACCCGCCGCATCATCTCCGCCCTCCTGACTGACGGGCGTGTGCGGCGGGCCTACCTGGGCGTGGTCAGCACACCTATCCGGCTCAACGCCAGTGCAGTGGTGAGGACTGGGCAACGCGACGGTCTGAGGGTAGTTGAGGTACTGGCAGGTTCTCCCTCGGATACCGCAGGCATCCAGGCCGGCGACATAATCCTGACCGCGGGAAACCGTGCAGTCAGCAATGCCGAAAGCCTTCAAAAACTGCTCTTCGCGGATGCCATCGGCCAGCCTCTTCAGATCGCAGTACTCCGGGACGGCAAGGAACTGGATCTCGTGGCCGTCCCCGAGGAAATGGCCACGAACGGGTAAMDPAREPNPIEPNPAEPNPAVPDSAVPNPAESDDGLLDSYSKTVMRVAETVTPHVAAIEMTGNRRNGRFRFGAGSAVLFTEDGYLLTNSHVVAGTHHGHAVFADGSRTELELVGVDPLSDLAVIRGRAPKVAPAEFGDAESLRVGQLVVAVGNPLGLAGSVTAGVVSGLGRAIPVWSGGNRRVIEDVIQTDAALNSGSSGGALADTHSRIVGINTAVAGAGLGLAVPINATTRRIISALLTDGRVRRAYLGVVSTPIRLNASAVVRTGQRDGLRVVEVLAGSPSDTAGIQAGDIILTAGNRAVSNAESLQKLLFADAIGQPLQIAVLRDGKELDLVAVPEEMATNGPGPT0015105_6746DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
D1-29_03168471smpBCOG0691SsrA-binding proteinGTGCCCAAAGAAAGTGGCCGAAAAGTAGTGGCCACCAACCGCAAGGCCCGGCATGACTATCACGTGCTGGACACTTATGAGGCCGGCATCGCCCTGATGGGCACCGAAGTGAAGTCGCTGAGGGAAGGCCACGCCTCCATGGTGGATGGCTTCTGCACTTTCTATAATGATGAGCTGTGGATGGAGGGCATTCACATCCCGGAGTACAACCAGGGCAGCTGGACCAACCACTCGGCACGCCGGCGGCGCAAACTGCTGCTCCACCGGGAGGAGCTCATTAAGATCTCCCACAAAATCCGCGAATCGGGCTTTACCATAGTGCCGCTGCAGCTGTACTTCCTGGACGGCAGGGCAAAGGTGGAGATCGGCGTCGCTCGAGGTAAGAAGGAGTACGACAAGCGCCAAAGCCTGCGCGAGCAGCAGGATAACCGCGAAGCCTTGCGGGAAATCAGGGAACGCAACCGCCGCTAGMPKESGRKVVATNRKARHDYHVLDTYEAGIALMGTEVKSLREGHASMVDGFCTFYNDELWMEGIHIPEYNQGSWTNHSARRRRKLLLHREELIKISHKIRESGFTIVPLQLYFLDGRAKVEIGVARGKKEYDKRQSLREQQDNREALREIRERNRRPGPT0014355_2418DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0014355-smpB-K03664NANA
D1-29_031691407hypothetical proteinATGAACGCAATGCACCGAACCTTGCCCCGGCACCGCCGGGACAGCCCCCGCCCTTCAGCGCGCCGCAGCGGTGTCATTAGTGCTGTCCTGGCACTGATCCTCACTGCCAGCCTTGCCTCTGCCGCCCCCACTGCGTTCGCCGATGAACTTGAAGACAAAAAGGCGGCCCTTGAAGCCGAGGCAGCCCGCGTCCAGCAGTCCCTTGAATTTGTGGACTCCCGGATCGCTAAGGCAGCCGGCGACCTGGTGATCTACCAGGGTCAACTGCCCGGTGCGCAGCAGGCGCTCCTGGAAGCCCAAGGCCGGGTGGCCAGCGCGGTCAAAGAAGTGGAAGCACTCGCGGCCCGAGTCGACCTGGCGCAACAGAACAAGGCCAAGATCACCCAGCAGCTTGAGACAGACAAGCAGAAGATTGCCGAAACCAAGAAACTTATCGGCCAGATCGCAACCCAGGCTTACAAGTCCGGAGGGGTCCCGTCGAACCTGACGCTCTTTTTCGGGTCCAACACTGGCGGAAGCCTGACCGACACGATGGATCTCGCGGATCAGGCCATGCGCAGCCAGAACTCGGCCATGGACAAACTCACGCAGCAGAGCGCCACCAACGTGAACTCGCAGGCGCGCCTTGAAGCTGTTGAGGCGGAGATCCAGGACCTGAAGGCAAAAGCTGATGCCGCGCTGGAACGGGAAAAAGTTGCCCGGGACGAGGCGGAGGCAAAGAAGGCCCAGGTTGACCAGCTGATCGCTGATACCCAGCGGCTGGACGCTGAGCTGCAGGCCGCGAAGCCCGGAATCCAGAGTCAGCTGGCCTCTGTCCAGGCGAGCCAAAATGCTATCGCCGCCGAGATCGCCGAGCGGGACAGAAAGCTCCGTGAAGCCTGGGAGGCTGAACAGCGGCGCCTTGCTGCGGCTGCTGCTGCGGCGGCAGCAGCGGCAGGCCAGGCTGCGAAGCCGTACGTTCCGGTGACCGGTTCGCCGTCGGCCTTTGGCCTGCGGCATCCGTTCGATGGCAGTGTCCCCATCACATCCGGCTTCGGCTGGCGGGCCACGCCTCCGGGCACCATCGACTTTTACGGCACAGGCGGCTACCTGCACACAGGCATCGACTTTGGCGCTGCCTGCGGCACGCCCGTTTATGCGGCGGCTGCGGGGGAGGTATTTTCCTCCGGCTGGAACTCCGGCGACGGCGGCGGGTGGCGGGTAAAGCTCTCCCACGGTGTAGTGCAGGGCAACTCCCTGACAACCATTTACTACCACAACAGCAGCATTGTGGTTTCCAACGGACAGAAGGTCTCGCAGGGACAGCTGATCGCGTATTCCGGAAACACCGGCAACTCCACAGGATGCCATGCGCACTTTGAAACATGGCTTAACGGCGCGGCCGTGGACCCGATGCGCCTGCTCTAGMNAMHRTLPRHRRDSPRPSARRSGVISAVLALILTASLASAAPTAFADELEDKKAALEAEAARVQQSLEFVDSRIAKAAGDLVIYQGQLPGAQQALLEAQGRVASAVKEVEALAARVDLAQQNKAKITQQLETDKQKIAETKKLIGQIATQAYKSGGVPSNLTLFFGSNTGGSLTDTMDLADQAMRSQNSAMDKLTQQSATNVNSQARLEAVEAEIQDLKAKADAALEREKVARDEAEAKKAQVDQLIADTQRLDAELQAAKPGIQSQLASVQASQNAIAAEIAERDRKLREAWEAEQRRLAAAAAAAAAAAGQAAKPYVPVTGSPSAFGLRHPFDGSVPITSGFGWRATPPGTIDFYGTGGYLHTGIDFGAACGTPVYAAAAGEVFSSGWNSGDGGGWRVKLSHGVVQGNSLTTIYYHNSSIVVSNGQKVSQGQLIAYSGNTGNSTGCHAHFETWLNGAAVDPMRLLNANANANANA
D1-29_03170915ftsXCOG2177Cell division protein FtsXATGAGGCTTGCATTTATCCTGGGCGAGATCGGCAGCGGGCTTCGCCGCAACATCTCCATGGTTGTTTCGGTCATCCTGGTTACCTTTGTCTCCCTGACGTTCGTGGGCGCCGCCGGCATGCTCCAGCTTCAGATCAACCAGATGAAGGGCTACTGGTACGACAAAGTCCAGGTAGCGATCTTCCTGTGCAGTGATGGTTCGACGGCGGCAGGCTGCGCTACGGGGCCGGTCACCCCTGAGCAGCAGGAGAACCTGAAAAGCCTCCTGGAGTCGCCCGCCGTTTCGCAGTACATCAACGACTTCCAATACGAATCCAAGGAAGACGCCTACAAGCACTTCAAGGAACAGTTCTCCAATTCGCCGATTGTGGACTCCGTCACTCCCGACCAGCTGCCGGCCTCCTTCCGGATCAACATGAAGGACCCGCAAAAATACCAGATCATCAGCGAGACGTTTTCGTCCCAGCCCGGTGTCGAGAGTGTTATCGACCAGCGGCAGCTGCTGGAGCGTTTGTTTACTGTCATGAACGGCGCTTCGCTGGTGGCGGTGCTGATCGCCGGCGTCATGATTGTTTGCGCCATCCTCCTCATCGCCACCACCATCCGCTTGTCAGCGTTCAGCCGCCGCCGCGAAACCGGCATCATGCGCCTGGTCGGAGCTTCCAAGACCGTCATCCAGCTTCCATTCATTCTGGAGGGTGTGATTGCGGCGGTGATTGGAGCAGCTCTTGCTTCCGGCACCCTCTGGGCGGTAGCGCACTTCTTCCTGGGCGAGTTCCTGTCCAAGCAGTATCCGGACACCGCCTTCATCTCCCCGGGACAGACGCTTATCCTTGCGCCGGCGCTGCTAATCCTTGGCGGATCCTTGGCAGGAATTTCGTCTCTCTTGACCTTACGTAGATATTTGAGGGTTTAGMRLAFILGEIGSGLRRNISMVVSVILVTFVSLTFVGAAGMLQLQINQMKGYWYDKVQVAIFLCSDGSTAAGCATGPVTPEQQENLKSLLESPAVSQYINDFQYESKEDAYKHFKEQFSNSPIVDSVTPDQLPASFRINMKDPQKYQIISETFSSQPGVESVIDQRQLLERLFTVMNGASLVAVLIAGVMIVCAILLIATTIRLSAFSRRRETGIMRLVGASKTVIQLPFILEGVIAAVIGAALASGTLWAVAHFFLGEFLSKQYPDTAFISPGQTLILAPALLILGGSLAGISSLLTLRRYLRVNANANANANA
D1-29_03171795ftsECOG2884Cell division ATP-binding protein FtsEATGATCCGATTCGAAAATGTCACCAAGGTCTACGACCAGACAGCCCGGCCGGCGCTGGACGCCGTCAGCCTCGAGATTGACCGTGGTGAATTCGCGTTCCTCGTTGGTGCTTCCGGGTCCGGCAAGTCCACCTTCCTCAGGCTTGTCCTTAAGGAAGACCGGGCATCGTCAGGTGCCGTCTACGTGGCTGGCCAGAATGTAGCCAAGATTTCAAGCTGGCGCGTGCCCAAGCTGCGCCGTGGAATCGGTGTGGTCTTCCAGGATTTCAGGCTCCTTCCGCAGAAGAACGTCTTTGCGAACGTTGCCTTTGCGATGCAGGTGATTGGCAAGAGCCGCAGCGTTATCCGCGATACTGTTCCCGAGGTGCTCAAGACTGTGGGGCTTGAGGGCAAGGAGCACCGGATGCCGCATGAACTTTCCGGTGGAGAGCAGCAGCGCGTGGCCATTGCCCGGGCCGTGGTAAACCGCCCAGGCATCCTCCTCGCCGACGAACCGACCGGAAACCTTGATCCCACCACGTCCATGGGCATCATGGGCGTGCTGGACAAGATCAACCAGAACGGCACCACCGTGGTCATGGCCACCCACGACGACGACATCGTTAACGAAATGCGCAAACGGGTGGTGGAGCTGAAGAACGGCGTCGTTATCCGTGACGAAGCGAGGGCCCTCTACACCTCGATGATTCCCGTGGTGGGCCAGTCCCGACGGCTCAAGGATGCCAGCGGACGGGAAGAGATACCTCCTGCCGTCCCGCTCGAATACCGTACCGATGCCGGGGAGGAGCAGCGATGAMIRFENVTKVYDQTARPALDAVSLEIDRGEFAFLVGASGSGKSTFLRLVLKEDRASSGAVYVAGQNVAKISSWRVPKLRRGIGVVFQDFRLLPQKNVFANVAFAMQVIGKSRSVIRDTVPEVLKTVGLEGKEHRMPHELSGGEQQRVAIARAVVNRPGILLADEPTGNLDPTTSMGIMGVLDKINQNGTTVVMATHDDDIVNEMRKRVVELKNGVVIRDEARALYTSMIPVVGQSRRLKDASGREEIPPAVPLEYRTDAGEEQRPGPT0013345_14939DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-29_031721116prfBCOG1186Peptide chain release factor 2ATGGCCAATATTGATTTTTCCGCAGAAATCCGCGCTCTTCGCGCCACCTACACCTCCATCGAGCGAGTGACAGATGTTGAGGCGTTGAAGGAAGACATCGCTGAATTAAGCGAGCGGGCGGGCGAGCCTGACCTGTGGGATGACCCGGCGGCAGCCCAAAAAATCACCTCACGGCTGTCCCACCGCCAGTCCGAGCTGGAACGGCTCAACACGCTGGCATCGCGGATTGATGACCTGGAGGTCCTGGTGGAGCTGGGCCAGGACGAGGACGACGCCGACTCCATGGGCGAGGCGGCCGCTGAACTTGAATCCATCAGGAAGTCACTGAAGGAACTTGAAGTTGTAACCCTGCTCTCGGGCGAGTACGACGAACGTGAGGCAGTAGTCTCCATCCGCGCGGGGGCGGGGGGCGTAGATGCCGCAGACTTCGCGGAGATGCTGATGCGCATGTATCTGCGCTGGGCCGAACGCCACGGTTATCCGACCACCGTCATGGACACGTCCTACGCCGAAGAGGCAGGGCTTAAGTCGGCCACGTTTGAAGTCAAGGCTCCCTACGCCTTCGGTACCCTCAGCGTTGAGGCCGGCACCCACCGGCTCGTCAGGATCAGTCCCTTCGACAACCAGGGCCGGCGACAGACGTCCTTCGCCGCCGTAGAGGTCATCCCGCTGATTGAACAGACCGACTCCATCGATATTCCGGACAACGAGATCCGCGTGGATGTCTTCAGGTCCTCGGGGCCCGGCGGCCAGTCAGTCAACACCACCGACTCCGCGGTACGCCTCACGCACATCCCGACTGGCACCGTGGTCTCAATGCAGAACGAAAAGTCCCAGCTGCAGAACCGCGCGGCTGCCATGCGTGTACTCCAGTCGCGCCTCCTTCTCCTCAAGAAAGAGCAGGAGGATGCAGAAAAGAAGGCTTTCGCCGGCGACGTGAAGGCCTCGTGGGGCGACCAGATGAGGTCCTACGTGCTTAACCCCTACCAAATGGTCAAGGATCTGCGCACCGAACATGAAGTAGGGAACACCTCGGCCGTTTTTGACGGCGAGATCGACGACTTTATCGATGCCGGCATCCGTTGGCGCACTGATAACCGCAACGCTGACAAGTAGMANIDFSAEIRALRATYTSIERVTDVEALKEDIAELSERAGEPDLWDDPAAAQKITSRLSHRQSELERLNTLASRIDDLEVLVELGQDEDDADSMGEAAAELESIRKSLKELEVVTLLSGEYDEREAVVSIRAGAGGVDAADFAEMLMRMYLRWAERHGYPTTVMDTSYAEEAGLKSATFEVKAPYAFGTLSVEAGTHRLVRISPFDNQGRRQTSFAAVEVIPLIEQTDSIDIPDNEIRVDVFRSSGPGGQSVNTTDSAVRLTHIPTGTVVSMQNEKSQLQNRAAAMRVLQSRLLLLKKEQEDAEKKAFAGDVKASWGDQMRSYVLNPYQMVKDLRTEHEVGNTSAVFDGEIDDFIDAGIRWRTDNRNADKNANANANANA
D1-29_03173414hypothetical proteinATGATCGTGCTCATCATCGGTTACGTCTTGCTGGCGCTGCTTGTGACCACCGTGGTAGTCGGCATCTCCAGTGTCTACCTTGAACATAAGAGGCTGCTTTCCCTTGCCGACGGAGCATCGCTCGCAGCTGCTGACAGCTACAAACTGGGCCAAGTAGGAACCGAGGGCGGCGTTCCTTCGGCCGTCCTGGACTCTGAACGCGTTCGGAACGTAGCCGGCGAGTTCGTCTCAAGGTCGCCCGCCTCGCAGCGCTTTGATGAACTGCAGGTGGCAGCGGAGACCGGAAGTCCCGACGGTTCAACCGCCGTCGTGGTTCTCAGCGCCGCAGTCCACCCGCCGGTGGTGAATTTCCTGGTCCCGGACGGCATCAGGATAGAAGCAACCTCCACTGCGCGTTCCCGGCTGACCCGGTGAMIVLIIGYVLLALLVTTVVVGISSVYLEHKRLLSLADGASLAAADSYKLGQVGTEGGVPSAVLDSERVRNVAGEFVSRSPASQRFDELQVAAETGSPDGSTAVVVLSAAVHPPVVNFLVPDGIRIEATSTARSRLTRNANANANANA
D1-29_03174393hypothetical proteinGTGGTTGAATTCACTTTCCTGGCGCTGCTCCTGATGGTCCCCCTGGTGTACTTCATCATCACCATGGGCCAACTTCAGGGTGGTTCTTTTGCGGTGGTGGGTGCCGCCGACCAGGCAGCCAAGGTTTTTGTGGCACAGCCAGACGCGCGTTCTGCTCAGACAGCCGCGGAGCAGGCAGCCCTCATCGCCCTGGCCGACTACGGTCACCCTGCCGAAGCGGCACACGTCTCGACCCTTTGCGAGCCTTCTGATTGTCAGGCCGCGGGAACAGCTGTCACTGTCACGGTCAGCCTGACCGTTCAGTTGCCCTTTATCCCCTTCAGCGACGCCTTCAGCCTTAACGCCAGCGAAGTCGAGGCCTCCTCAACCCAAGTGGTTGGCAAGTTTCGATGAMVEFTFLALLLMVPLVYFIITMGQLQGGSFAVVGAADQAAKVFVAQPDARSAQTAAEQAALIALADYGHPAEAAHVSTLCEPSDCQAAGTAVTVTVSLTVQLPFIPFSDAFSLNASEVEASSTQVVGKFRNANANANANA
D1-29_03175417hypothetical proteinGTGCCCCGGCAAGGCCAGAGCGGACTTTCTTCCGCGACTGGTTGGCGCCGCGAAGAGCGCGGCTCGGCGGTGGTGGACTTCATCCTGGTGGGCGGCCTGCTCACGGTGTTCTTCCTCGCCATCATCCAGCTCGCGTTGGTCCTGCACGTCCGGAACACATTGATCGATGCCGCTGCCTCGGGTGCGCGTTATGGAACGCTGGCTGATCGCGGTGCCTCCGACGCTACGGAACGTGCAGCGGACTTGATTGGGTCAGCTTTAAATCCCGAATATGCCCGGGATATCAGCACGTCCGAGGTGACGTTACAAGGGCTTAGAACGCTGCAGGTAACGGTCCGGGCGCCCATGCCGGTCATTGGCCTCATCGGACCCCGGGAGATGCTGGAGGTCAGAGGTCATGCCGCAATCCAGCCCTGAMPRQGQSGLSSATGWRREERGSAVVDFILVGGLLTVFFLAIIQLALVLHVRNTLIDAAASGARYGTLADRGASDATERAADLIGSALNPEYARDISTSEVTLQGLRTLQVTVRAPMPVIGLIGPREMLEVRGHAAIQPNANANANANA
D1-29_03176264hypothetical proteinATGAAAAACCTGGGACTTTGGAGCGGATTGCTGTTCCTGGCGTTTCTGGCCGGTCTCTGGACCGTGGCAACCGGGGCCGGAGCCAGGTCATTGGCTGACGCATCAGAGCAGGCCGGACGGGCTGACCATCCGGAGCGGGGTGACGTCCCTGGTTGGGTCATGATCACCTTGATGTCCGCAGTCCTGGTGGCTGCGCTGCTTGCGCTCGCAGGCCCGGCACTTGAAGCGATGTTTAACCAGGCCATGGACAAGGTCGGAAGCTAGMKNLGLWSGLLFLAFLAGLWTVATGAGARSLADASEQAGRADHPERGDVPGWVMITLMSAVLVAALLALAGPALEAMFNQAMDKVGSNANANANANA
D1-29_03177942hypothetical proteinATGACCGGCACCTCCGCCGCTGCCATCGTCTGTGGTGTCGTTTTGGGTGGAGGCCTCTGGCTGTTGCTGGTCAGGCTGCCGTTCATGCGCGCCACCACGTTCACCGAGCGGATTGAACCGCAGCTTAGGTCCCAAAACCTTGAGTCCAGGCTTTTGCGCTCGAGCGAACGGAATATCACTCCCTTTGGGCCAATGGAAAGGATACTCCGCCCGGTAGTACGGGATGGCCTCTCGAGGCTTGGGAAACTGAATCTGGGTTCCAAGGCGCTGGTCCGCAGGCTCGCCCAGGCCGGGATCAGCAAATCACCTGTGGACTTCAGGGCAGAACAGCTCCTGTGGGCGGCGGCAGGATTTGTTGTCTCACTGGCGGGAGTTGTCCTTGGCGCCGTCGCCGGGCGCTTCAGCCCGGTCCTGGCTGTTATTGCCGTGCTGGGCAGCGCCCTTGGCGGCTTTATGCTCCGGGATTACTGGCTTGGCGTCCAGATCAGCAAACGGGAATCCCGGATGATGGCGGAGTTTCCCAGTCTCGCCGAGCTGATGGCGCTGGCAGTCAGCGCTGGTGAGAGCGCCACCGGTGCTTTGGACAGGGTATGCCGCAGCGCCAGAGGAGAGCTGGCAGGAGAATTCGCCAAGATTCTTTCGGAGACCAGGGCAGGGAAGCCCTTGGTTGTGGCGCTGCAGGAATTCTCCGCACGCACTGACTTGGGGCCGCTGGTCAGGTTTGTGGACGGCGTCATCGTGGCCGTTGAGCGCGGCACACCTCTGGCAGATGTGCTGCGGGCCCAAGCACAGGACGTCCGGGACTACGCCAAGCGGGAACTTATGGAATCCGCGGGTCGGAAGGAGATTGCGATGATGGTCCCACTGGTGTTTGGAGTTCTTCCCTTGACGGTGGTCTTCGCCGTGTTTCCAGGAATAGCCGCGATCAGCCTGGGTCTCTAAMTGTSAAAIVCGVVLGGGLWLLLVRLPFMRATTFTERIEPQLRSQNLESRLLRSSERNITPFGPMERILRPVVRDGLSRLGKLNLGSKALVRRLAQAGISKSPVDFRAEQLLWAAAGFVVSLAGVVLGAVAGRFSPVLAVIAVLGSALGGFMLRDYWLGVQISKRESRMMAEFPSLAELMALAVSAGESATGALDRVCRSARGELAGEFAKILSETRAGKPLVVALQEFSARTDLGPLVRFVDGVIVAVERGTPLADVLRAQAQDVRDYAKRELMESAGRKEIAMMVPLVFGVLPLTVVFAVFPGIAAISLGLPGPT0022295_1050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
D1-29_03178855hypothetical proteinATGGCGCCGCTAATTGGGGTACTGGCCGGGACAGGGCTGTTTCTGATCTGGTTGTCCTGCTGGGAGCAACTGGCGCCCGTTGATCGTCCCCGAAGGGTCAACCGGCTGGAGGACATGCTGGCTTCTGCCGGGATCGAAAAAGTTACCGGAAGCGGCCTCATTGCCACGTGCGTTGGCCTGGGCGTCTTTGTTGGACTTGCCTTCTTCGCTGTCAGCGGGTCTTGGCCTATTTCTGCCTGCTTTGGGTTATTCGGTGCGTGGCTTCCCATCAGCCTGGTCCGGTGGCGGGCCAGAAAGAGGACGTCGGTGCTGCGTCAGCTTTGGCCCGATGTTGTCGATCATCTTCGTTCCGCCATCCGGGCCGGTTTGTCGCTGCCGGAAGCCCTCATCCAACTGGGAGACAAAGGTCCCGAGGAGCTTCGCCCGGTGTTTCGCGACTTCGGCGGGGACTATCGCGCCGGTGGCCAGTTTAATGCTGCGCTGAACAAGCTCAAGGATCGGTTGGCTGATCCGGTGGCAGACCGGATAGTCGAGGCACTGCGGCTGACCCGGGAAGTTGGCGGTTCCGACCTCGGGAAACTTTTAGGGACTCTGGCTGAGTTTCTCCGTGAAAGTGCCAGGACGCGAAGTGAACTGGAGGCCAGGCAGTCATGGACCATCAGTGCGGCCAGGCTGGCGGTCGCTGCGCCGTGGATTGTCATGGTCCTCCTGGCCACCAGGCCTGAAGCGGTGCAGGCCTACAATACGCCGGCAGGGGCCGGTGTGCTCCTCGGCGGGCTGGTGGTGTCATTGATCTGTTATTCCATCATGCTGCGCATTGGGGCCCTTCCGCAGGACGAGAGGGTGCTCCGATGAMAPLIGVLAGTGLFLIWLSCWEQLAPVDRPRRVNRLEDMLASAGIEKVTGSGLIATCVGLGVFVGLAFFAVSGSWPISACFGLFGAWLPISLVRWRARKRTSVLRQLWPDVVDHLRSAIRAGLSLPEALIQLGDKGPEELRPVFRDFGGDYRAGGQFNAALNKLKDRLADPVADRIVEALRLTREVGGSDLGKLLGTLAEFLRESARTRSELEARQSWTISAARLAVAAPWIVMVLLATRPEAVQAYNTPAGAGVLLGGLVVSLICYSIMLRIGALPQDERVLRPGPT0022290_2197DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
D1-29_031791224hypothetical proteinATGGACGCTGTACGAATCGTGGAGGACGAAGTCCGCGAGCTGATCCGTAGACGGGGGCTTGACCCGTTGCGGCAGCCGGGCGAGGTCCGTCGGCTGGTTGAAGCCGCTGTCAGTGACTATGACGAGCGTGCCCTGATGGGACCACTCCCGCCCATTGGTCCGCTGGAGGCTGCGCAGAGGTTTGTCTTCGATGCAGTAGCAGGTTTCGGTGTGCTCCAGCCGTTGTTGGACGACTCCTCCATCGAGGAAATCTGGCTGAATGCACCCAACGAGATCTACGTGGCCCGGAACGGCGAGTCCGAGCTCACGTCCCTGAGCCTGACGGCCCAGCAGGTGCGCGACCTGGTGGAACGAATGCTGAAGAGTTCAGGCCGGCGACTCGATATGTCTTCCCCATTTGTCGATGCTGCTTTGCCGGACGGCTCAAGGCTTCACGTAGTCATCCCTGACGTCACCCGTCGGCATTGGGCGGTGAACATCCGGAAGTTTGTGGTCAAAGCAAGCCGGCTGGAGCATCTGGTGGAGTTGGGGACGCTGACGCCCCAGGCCGCCCGGTTCCTGGGGGCAGCGGTGGCCAGCGGACTGAATATTCTCGTCTCCGGCGCCACTCAAGCAGGCAAAACAACCATGCTCAACTGTCTTGCGGCAGGTATCGGCAGCCGGGAACGGGTCATCACCGTCGAAGAGATCTTTGAGCTGCAGTTTCCTTTGAGGGACGTGGTCGGCCTGCAATGCCGCCAACCCAACCTGGAGGGTGAAGGCGAGATCCCTTTGCGCAGGCTGGTGAAGGAAGCTTTGCGCATGCGCCCCGACCGGTTGGTGGTGGGCGAAGTCAGGGAGGCCGAAAGTCTGGACATGCTGATTGCCCTGAATTCGGGCCTCCCCGGTATGTGCAGCGTGCATGCCAACTCGGCGCACGATGCTGTGACCAAGATCTGCACGCTCCCGCTGTTGGCCGGTGAAAATATTTCCAGCGCCTTCGTGGTACCCACTGTTGCATCCTGCATAGACCTGGTGGTGCACTGCAGCCGCCAGGCCAACGGCCGCCGTCAGGTGACAGAAATTCTTTCCCTTGGCCGGCGCGTGGAGAACGGCATCATCGAGTCGTCGATGGTGTTCGCCATGGTAGATGGCCAGTTGCAGCCCAGGCCAAGTTCGATGCCCGCCACTGAGAAATTTGCCCGCGCCGGTTACGACGTCGCGGCGCTGCTGGAGCCGCGCTAAMDAVRIVEDEVRELIRRRGLDPLRQPGEVRRLVEAAVSDYDERALMGPLPPIGPLEAAQRFVFDAVAGFGVLQPLLDDSSIEEIWLNAPNEIYVARNGESELTSLSLTAQQVRDLVERMLKSSGRRLDMSSPFVDAALPDGSRLHVVIPDVTRRHWAVNIRKFVVKASRLEHLVELGTLTPQAARFLGAAVASGLNILVSGATQAGKTTMLNCLAAGIGSRERVITVEEIFELQFPLRDVVGLQCRQPNLEGEGEIPLRRLVKEALRMRPDRLVVGEVREAESLDMLIALNSGLPGMCSVHANSAHDAVTKICTLPLLAGENISSAFVVPTVASCIDLVVHCSRQANGRRQVTEILSLGRRVENGIIESSMVFAMVDGQLQPRPSSMPATEKFARAGYDVAALLEPRPGPT0016025_2608DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
D1-29_031801347hypothetical proteinATGGCGTTCAGCGTTGCAACAGCCAGGGTCGACATCACGCCGACTCTCAGCACGAATCCTTACATGGCCGGCTACGGAACAGTAGACGGAGGACGGATCGCAACCAGCAGCACGCCGTACCAGCCGTTGTATGCGCGGGCCATCGTCCTTTGGGAAGACACATACCCCCACCTCATATTGAGCGCGGATGTCCTTGCGTTCCCCCGTGCGATGCACCAGAGACTCCGCGCCCGCATTCTGGCTCTCGCTGGCTGGCACAGCAGTGAGATTCTTATGCAGGCAACGCATACCCACAACGGCCCCGCACTCATCGACTCCCTTCAGCCTTACATTTCCTATGGCATGTCAGACCTCACGTTGATCAAGAGCTACTGTGCCGCCCTGGAGGACAAGATCGTGTCTCTGGTCCAGACAGCCCTGGCGGCTCCGCGGACAGCCGTCACCCTTGACTACAAAGTTGCAAGCCAGAATTTTGCGGCTAACAGAGTTGGATTGCCATACACGGAGACTGCCGTTCCGATCCTTGTAGCCCGGCGCAGCAATGGGGTTCCGCGCGCTGTCATTTTCAGTTATGCATGCCATCCCGTAAGCGCCGGATGGCGCACGCTGTTCGACGGCGACTTTCCGTCCGCCGCATGCAATTACCTCGAAAATCAAACAGCAGGCTGCTTCGCCCTCTTCCTTCAGGGTGCATCAGGGGATCAGGATCCACTTGGAGCCCGCGGCTGGGCACTACGGGACCAGCAGGGGAACGCTTTGGGGGCCACGGTAAGTTCGGCCATGTCCAGCCCAGGCCGAACGATAGCTGGCCCCCTGCTGACCTATTATCAGGAAGTACAGCTCCCCCTCGACATCACTCTTACCGCGGCAAATCTCGCCGGCGTCCGTGCAGCGTTCGTTGCACGGCTTGGCAATCCCGAAGGGCAGCCAAGCTGGTACCAAAGACACGCGCAGGGAATGATCGCAAGGATCGACAGCAACAACCTCCCCACCTCCGTCCCTTCGCCCTTCCAGGTGTGGAAGCTATCGGGTAACCCCCAATTGAAGATCGCAATGATTGGCGGGGAGCTTGTCAGTGGTTATGGTGCCTACTTCCGAGCAGGGCATGGCGGCGCGAACGGCATCATAGTTGGGGGCTATGCCAACGAATCCTGCTGTTATATACCCAGCAATGAGTTCTTTCCCCCCTATATGCCTTATGGGAGCTACGAAGGCGGATGGGATCCAGATCACCCGGGCATTGCTGGCGGGTCGATGACTGTTTACGGGCACCTGGCCCATTTCAAGGGCGGCAGCAATGGGGTGGAAGCCACCGTGATCAACGCAATGAACGCCATGCTGGGCTAGMAFSVATARVDITPTLSTNPYMAGYGTVDGGRIATSSTPYQPLYARAIVLWEDTYPHLILSADVLAFPRAMHQRLRARILALAGWHSSEILMQATHTHNGPALIDSLQPYISYGMSDLTLIKSYCAALEDKIVSLVQTALAAPRTAVTLDYKVASQNFAANRVGLPYTETAVPILVARRSNGVPRAVIFSYACHPVSAGWRTLFDGDFPSAACNYLENQTAGCFALFLQGASGDQDPLGARGWALRDQQGNALGATVSSAMSSPGRTIAGPLLTYYQEVQLPLDITLTAANLAGVRAAFVARLGNPEGQPSWYQRHAQGMIARIDSNNLPTSVPSPFQVWKLSGNPQLKIAMIGGELVSGYGAYFRAGHGGANGIIVGGYANESCCYIPSNEFFPPYMPYGSYEGGWDPDHPGIAGGSMTVYGHLAHFKGGSNGVEATVINAMNAMLGNANANANANA
D1-29_03181207hypothetical proteinGTGCAAGTGGCACTTGCGGCCGGAGCGCCGGCTGAAGATAAACCTGCATTATTCCTGCGCATTTTGAAGGCGTCTACTCGAACGAACCCAAGGGAGTTGGAGGCCCGTTTGCCAGAGATCGGAGTTCCAGTCGTCAAGGGTGCGCTGGCGTTTGCCCCCCTGGCGCCGCAAGCCATCCTGCTGGAGCGGTGGCTCCAAAAAGCCTGAMQVALAAGAPAEDKPALFLRILKASTRTNPRELEARLPEIGVPVVKGALAFAPLAPQAILLERWLQKANANANANANA
D1-29_03182729hypothetical proteinGTGAAAAAGTTCTTGTTAATGGGGACGTTGGGGCTTCTCCTCATTGGTTGCTCCGTGAACCCGCCATCCATCCAGCCAGAAAGCTCGCCCGCGCCGGCTAAAACGCCCGATGGACTTTCCAGTGAACCGGAACAGCGGCTGGCTTTCTTTTGCACGAGTCTTGATAACTCGCCGGATGTTCAGCTCTCAAGCCTTGAAGAGGTGTGGGCGGCAAGCAACTACTTGCGGATGGAGTCGTGTGACGTCACCTACGTGGGCCCGCAACCCTTCCAGCCCACGGCCGACGAAGCAGCTGCCATCGAGATCGCGAATTCAGGTAGCACTGACGGTTCGGACGGGCTGGAAGCCTATTTGACCGCCGTCGAACTCTGCACCCGGGTCAGCGATGAAACAGCTCCAGGCGGCTTTGCCGACAGCCCGAAAGAAATTGTGCGGGCGGCCGCGCGGATTTGTCCTGATGGCCCGCAAGGGAAAATCATCCAGGCGTGGGCCGACGGCACCCGCATAGGTGATGGCCGGCATGTCGTGGGGGAGTCCATGGAGCCAGGAACCTATGTCCTCCAGAAGAGGAAAACGGCTGCTGACGGAGAGTGCACCTGGACTGTTGCCGGAGCGGACGGGGCCGTTATCGATCAGGGAGGGACTTCGTCGGAGCCAGATGAAGTGAGCTTGGAAAATCGAGTAGTACTTACTAGTGACAATTGCGGAATTTGGGAGAAAATTGACTAAMKKFLLMGTLGLLLIGCSVNPPSIQPESSPAPAKTPDGLSSEPEQRLAFFCTSLDNSPDVQLSSLEEVWAASNYLRMESCDVTYVGPQPFQPTADEAAAIEIANSGSTDGSDGLEAYLTAVELCTRVSDETAPGGFADSPKEIVRAAARICPDGPQGKIIQAWADGTRIGDGRHVVGESMEPGTYVLQKRKTAADGECTWTVAGADGAVIDQGGTSSEPDEVSLENRVVLTSDNCGIWEKIDNANANANANA
D1-29_031832796hypothetical proteinTTGCCCGAGCGTGGAAAAGGGCCAGCGCTGGCAGGGAGTCCGGCTCTACTCGACCCAACACCCAAGTCCCCGGGAAGCGGAGATGAAATCGCGTTCATTCCGGACGCCGCCCCGGGTAGCGCCGAACTGATCCGCGCCAAGTGGAATCCAGCCACGGGCAAGTTCGAATACTTCAACCAGCTCACTGTATTCGACGGCGATCTGAGGCCGAATGCTGCGAGCGCGGGTCCGGACAACAACATTTACCTCTCGTTCGCGAGGGCGCGGTCGATTGTTAAGATCACCAGACCGGCCGGGAATCAACCAAGTATCGAATCGATTGCTTCGGTCAACTCAGCCGCCTTGGGTCTGTCCGCTGCTACTTTCAATAGCCAGGGAAGAGTCACCGTCTTTGTGGCCGAGACCACAGGACTGACTACTTTTACAGCTCCACCGGACGGAAGCCTTACTGACTACGTTCCCTTTGCCTCCTACAACGTTGGGAAGCCAGCGCGAGTCCATTTCGATAGTGCTACCAAGATGCTCTATACGGGAACTGCCGGAGGCACATCTGCGGCAAGCGCAGGCGGCGACACAGTTGCCCGTATCAATCTGCAGACGGGTGTCGTTGAATCACAATGGGCGTTGGGATTCAGCATGGTGGGCGGCCTCGGCATGAAAGCCGGGAAACTCCTGGTCATGGACGACTCCGGCCAGTTGGACGCGAGTAAGCCTGCAGGTCAGGGAAAGCTCTACCTCTTGTCAAATACGGCGGCCCAGATCCTCACAGGCCCCACCGCGGCAGATGGCACGCAGGCCGCAGACCCCGGGTTCACCAACGATCCGACACCAACCTTCACGGTAGGAACTGTTCCGGCAGGTAGCCAGATGGAATGCAGCCTAACGGCAGCAGGTCAGATTCCCGCGTGGCAGGATTGCACTTCCGGAAGCTACACCCCTTCGTCATCCCAGGCGGATGGCTCTTATTCCTTCGCTGTTCGTCCCATTCCTGGCATCGCCGCGACCCGTGAGTTCCGGATCGACACCGTTCCTCCTGCCATACCAGCCATTACCGCCCCAACCGCAGGCCAGGTCGTTACCGGCAATCCCATACTCGCCGCCACATTCGAAACTGGAAGTTCGCTGCGTTGCTCTGTGGATTCAACGGCGGACTCCAGCTTCCTGGCTTGTGCCTCAGGCCAGCCGTTCGCTTTGACGAAGGAGGGGCCAGCGACACTCCACGTGAAGGCTGTTGACGCGGCTGGGAACGTGAGCGCGGCCGCGACTGTCAATGTCACCGTCGACCTGACGCCCCCGGTTGTCACCATCACGGAGCCTGCCGAAGGGGCAACTGTCACGGATTCAATGTCCGTGCAGTTCTCGTCGACATCAGCTGACGTCGCAGCATTCAGGTGCAGTCTGGATGGCAGCGCTTTGTCAGCCTGCACTTCCCCCAAGGCGTATAGCGGCCTGGCGAACGGGCAGCACCAAGTTGATGTGGAGGTGTCGGACGTCGCGGGAAACAAGAGCCTAGCCACGCGTAAGTTCACAGTCCAGGCCGCTGACACCGTTCCGCCTCTGGTGACGGCCTCGCCGCAGGCTGGGACCTACGGACCCGGTACGACTATAACCCTGTCGGCGAACGAGCCTGCATCCATTTACTACACAACTGACGGATCCACACCCACGGCCGCCAGCACCCGTTATGCAGACCCCATTCTGCTCGGAACGTCAATGACGATCAAGTATCTGGGGGTCGACTCGGCATCGAACGTCTCTGGCGTGGGGCAGCAGACCTACGTGCTTGATGCGACGCCCCCTGAGGTGACGGTCTCGCCGGCCGCCGGTACCTACCCGTCCGGGCAGCAGATCACACTGACTGCCAATGAGGCCTCAACGATCTACTACACAACGAATGGTTCTACGCCGTCGACCGGCAGCACGAAGTACACCAGCCCTATTACCCTCACCGGCTCGATGACGCTCAAATACCTTGCGGTTGATGCCTCCAACAATGCGTCACTGGTAGGAACCCAGGCGTATACGGTTATTCCTCCCGTTTCCGGACTTTGGAAGGACTACAACAGCGACACCAAGGCGGATGTCATTGCCCGGGACAGCGGGGGTACCCTGTGGATCTATCCTGGCACTGGGTCAAGCGGTTTCCTTAACCGCATCTCCACCGGCACTGGCTGGAACGCCATGTCGGCCATAGTGCCGACTCCCGATTTCAACGGTGACGGCCGCAGTGACGTGCTGGCCCGGGACACCAGCGGAGTTTTGTGGCTGTACGGCGGCAACGGCGCAGGCGGTTGGCAGCCCAGGGTCAAGAACGGTGAAGGGTGGAATGGGATGTCCGTAATTCTCTCGCCCGGCGACTTTGACGGCAACGGCAAGGCAGACGTCCTGGCACGGGACGGTGGCGGTGCCCTTTGGCTTTATCCCGGAAACGGCTCTGGAGGTTTCCTGAACCGCATTCAAGTGGGTAACGGCTGGAACGTCATGACCTTCGTCTTTAGCCCGGGTGACTTTAATGGTGACGGCTTCAACGATGTACTGGCGCGGGAATCCGGAGGGAACCTCTATCTTTACGCGGGCAATGGAAGGGGTGGCTGGCTCGCCCGGCAACAAGTGGGCAACGGATGGAACGCCATGAGCGCCATCCTGGGCCCCGGCGACTTCAGCGGCGATGGAAAACCTGACGTTTTGGCACGCGATTCAGCTGGCCGGCTGTGGCTCTACCCCGGAAACGGTGCGGCGGGATGGTTGTCCAGGAGCCAAATCGGTTCAGGCTGGAATGGCTACCTGATCCCTTAGMPERGKGPALAGSPALLDPTPKSPGSGDEIAFIPDAAPGSAELIRAKWNPATGKFEYFNQLTVFDGDLRPNAASAGPDNNIYLSFARARSIVKITRPAGNQPSIESIASVNSAALGLSAATFNSQGRVTVFVAETTGLTTFTAPPDGSLTDYVPFASYNVGKPARVHFDSATKMLYTGTAGGTSAASAGGDTVARINLQTGVVESQWALGFSMVGGLGMKAGKLLVMDDSGQLDASKPAGQGKLYLLSNTAAQILTGPTAADGTQAADPGFTNDPTPTFTVGTVPAGSQMECSLTAAGQIPAWQDCTSGSYTPSSSQADGSYSFAVRPIPGIAATREFRIDTVPPAIPAITAPTAGQVVTGNPILAATFETGSSLRCSVDSTADSSFLACASGQPFALTKEGPATLHVKAVDAAGNVSAAATVNVTVDLTPPVVTITEPAEGATVTDSMSVQFSSTSADVAAFRCSLDGSALSACTSPKAYSGLANGQHQVDVEVSDVAGNKSLATRKFTVQAADTVPPLVTASPQAGTYGPGTTITLSANEPASIYYTTDGSTPTAASTRYADPILLGTSMTIKYLGVDSASNVSGVGQQTYVLDATPPEVTVSPAAGTYPSGQQITLTANEASTIYYTTNGSTPSTGSTKYTSPITLTGSMTLKYLAVDASNNASLVGTQAYTVIPPVSGLWKDYNSDTKADVIARDSGGTLWIYPGTGSSGFLNRISTGTGWNAMSAIVPTPDFNGDGRSDVLARDTSGVLWLYGGNGAGGWQPRVKNGEGWNGMSVILSPGDFDGNGKADVLARDGGGALWLYPGNGSGGFLNRIQVGNGWNVMTFVFSPGDFNGDGFNDVLARESGGNLYLYAGNGRGGWLARQQVGNGWNAMSAILGPGDFSGDGKPDVLARDSAGRLWLYPGNGAAGWLSRSQIGSGWNGYLIPNANANANANA
D1-29_031842598hypothetical proteinATGATGCGGAACCACTCGATCAGCCATCGTCCCCTTCTGCGGCTTCTGGGGACCGCCGCCTTGGCCGTGTCCCTTGCGGCAGGACCCGGACTGGCAGGAACTGCGCTCGCCGTCGTGCCCAGTCCGACACCAACAGCCACCCCGGCGTCCACGGCGGATCCCGGTCCTACGCCCTCTTCAGTCCCGTCGGCATCGGCGCCGGCCACAATCCCTCCGACACTGCCGAAGGAGCAGCCGGCAACGGCTGCCACACAGGCTGCTCCCATCTCAACACCCACGAAGGAATCGATGGCTGAAGCTGTCGGCGAGGGTGGAGCGGAGATGGGCCAACGCTCCGCCAGGGTGACCGCGTCCGATCCCTCTGGCTCCTCGAGGAAACTCAGCACCGAATCCCTGTCAACCGAAGGTACCTGGATGCCCACCTTTGGCGTCCAGGGACTGGACGTAAGCGGCCACCAGCCCAGCGTGGACTGGCAGCATCAGTGGAATATGGGCGCAAGGTTCGCCTACGTCAAAGCCACCGAAGGAAGCTACTTCACCAACGACTACTTCAACTCCCAGTATCAAGGATCGCGCAATGTCGGGATGATCCGTGGCGCCTACCATTTTGCCATCCCGAACGGTTCCTCGGCTTCAGACCAGGCCCGCTTCTTCGTGCAGAACGGCGGCGGATGGTCCCCAGACGGTTACACCATGCCTCCGGTACTCGACTTTGAGTTCAACCCCTATGCGGGCAGAACCATCAACGGGTTCTACTTCGGCAACACCTGCTATGACATGTCTCCAACACAGCTGGTCTCTTGGGTCCGCGAATTCGGCAGCACCATGCTGTCACTGACAGGCCGCCTGCCGGTTATCTACACCAACACAAACTGGTGGAAGCAGTGCCTCGGCGATCCTGCCGGTTTCGGCGACTACCCGTTATGGGTGGCAGCCTACCCGTCGGCGCCAACCAACAATGCCGGCGCCATTCCCTCAAGCTGGAGCACCTACAGCATCTGGCAATACAGCAGCACCGGGCCGTTCGCCGGCGATTCGAACGTCTGGAATGGCAGCATGACCCAACTGAGGGAATTCGCTGCCATAGGTGACTCCTGGCCAAGCGGACCGTCGATAAAGTCCGACGCGGACGTTCTCGCCGCTGACGCATCAGGCAACCTGTTGAACTATGTTTCGAATGGCGCAGGCGGCCTCCGTTCACCACGAACCATCGGCACGGGCTGGACTAATCTGAGGTCTGCCACGACCACCGACTGGGATGGCGACGGCATCCGCGACATCTTTTCGCAATGGAATAGCGGGGACCTCCTCGTCTACAAGGGGCTGGCCGCTGGAGGGTTTTCGTCTCCAATCCGGGTTGGCCAGGGCTTTCAAGAAAACGTCATCACTCTCGGCGCTTGGCGGACGACCGACTCCCGTCCCGGTGTCATGGCACGGAGACCCACGGGAGAACTTCTCTATTACCCGAGGTCGGGTGACGCGTTGCAGGCTGGAGTCGTTTCCGGGACTGGCTGGGGAAACATCAACATCACCATGCTGGACTTCGATGGCGACGGCAAGCAGGACATCCTGGCCCAGACCGGTGCCGGTGAAATGAAGCTCTATCGCTCAAACGGCGGCGGTGCGTTCATTGCCGAATCACGGGCTGTGGTGGGAACGGGGTGGAAGGCCATCACTGCGGTTTCGCTAAGTAGCGGCTTCACCGGAAATGGATCACGTGGCCTCGTCGTACGCCGCGACGGAGGAGCCCTGCAGTATTTTCCGTTCGGACAAGGGGCCTGGGGACAGGCTTCTACTATCGGCACCGGATGGAACCCCCTGCTGATCTTTGGCTCGGGTGACCAGACCGGACCTCTTCCATGGGCCACACCTGCCGACACAATGGGCATCACGGCTGAAGGAAAGCTGATGCTCTATCCTGCCGACGGCGGCGCGCTCATTTCCGGGCGGACGGCCGGCACCGGGTGGACAAACGTTCAAGCCATTTTCAGCACTGATTGGGACATGGACGGGAAACTGGACCTGTTGGCCCAATGGAAAAACGGCAACGTCACTCTGTATAAGGGACTGGCAGGAGGCGGATACTCAACACCTGTCGGACTGGCCACTGGCCTCCAGGACAAGACTCTGACAGTCGGCCCCTGGAACAGCAAGGATCGCAGGCCCGTCATAGTCGCAAAATCGGGAAACGGCGACCTTCTGCTGTATGCCCGCGGGAGCGCGGATGCCCTGAAGGCCGCAGTTCCCATTGGCTGGGGTTGGAGCGGGCTCGACATCACCATGTTCGACTTTGACGGCGACGGCAACCAAGACCTAATTGCCCGAAACTCCAACGGGCAACTGCTCCTCTACCGCACGGATGGAGCCTCCAACTTTCTGAACGAAAACCGGAGGCAAGTGGGCAGCGGTTGGGACGCTGTGGACGCCGCCACGTCAACTCTGGGGTTCAAGGGTGCGGGCACCGCCGGTCTCACCGTCAGATTCAAAAACGGCATACTCGCCTATTATCCTGTCGTCGGCGGCACGTGGCGGTCACCGGTCACAATCGGTTCCGGCTGGACGCCTTTGACTATTGCCGGATCTGCACGCTGGCCCTAAMMRNHSISHRPLLRLLGTAALAVSLAAGPGLAGTALAVVPSPTPTATPASTADPGPTPSSVPSASAPATIPPTLPKEQPATAATQAAPISTPTKESMAEAVGEGGAEMGQRSARVTASDPSGSSRKLSTESLSTEGTWMPTFGVQGLDVSGHQPSVDWQHQWNMGARFAYVKATEGSYFTNDYFNSQYQGSRNVGMIRGAYHFAIPNGSSASDQARFFVQNGGGWSPDGYTMPPVLDFEFNPYAGRTINGFYFGNTCYDMSPTQLVSWVREFGSTMLSLTGRLPVIYTNTNWWKQCLGDPAGFGDYPLWVAAYPSAPTNNAGAIPSSWSTYSIWQYSSTGPFAGDSNVWNGSMTQLREFAAIGDSWPSGPSIKSDADVLAADASGNLLNYVSNGAGGLRSPRTIGTGWTNLRSATTTDWDGDGIRDIFSQWNSGDLLVYKGLAAGGFSSPIRVGQGFQENVITLGAWRTTDSRPGVMARRPTGELLYYPRSGDALQAGVVSGTGWGNINITMLDFDGDGKQDILAQTGAGEMKLYRSNGGGAFIAESRAVVGTGWKAITAVSLSSGFTGNGSRGLVVRRDGGALQYFPFGQGAWGQASTIGTGWNPLLIFGSGDQTGPLPWATPADTMGITAEGKLMLYPADGGALISGRTAGTGWTNVQAIFSTDWDMDGKLDLLAQWKNGNVTLYKGLAGGGYSTPVGLATGLQDKTLTVGPWNSKDRRPVIVAKSGNGDLLLYARGSADALKAAVPIGWGWSGLDITMFDFDGDGNQDLIARNSNGQLLLYRTDGASNFLNENRRQVGSGWDAVDAATSTLGFKGAGTAGLTVRFKNGILAYYPVVGGTWRSPVTIGSGWTPLTIAGSARWPNANANANANA
D1-29_031851650hypothetical proteinGTGATCTCTGCCCGGATGACCCGTTTCCGCGCGGCCCAAGGCAGATCCTGGTTTTTGCCGTCTTTCCTGGTCTTGCTCTTCTTGAGCTGGTCGTGGGCCTTCGCTTCGCCCATTGCTTCGGTCCCGGACGAGCCGGCCCATATCACCAAAGCTGCCGCCGTCGCCCGCGGCCAATTGGGTGGCATACAAATCGGCACCGATGGGCCGCTGCTGGCTGTCGACGTTCCGCGTTACATCCGATACGTAGACGCCATGTCCTGTTTCGCGAGGGACTTGACCAGCACGCCGACCTGTGCGCCGCCCCTCGACGGAGGACACGACGATACGGTCCAGGCGCTCACCACTGCGGGACTCTATAACCCCGTTTACTACGCAATAGTCGGATTGCCATCGCTGGCCACGTCAGGATTTCCTGGGGTCTATGTGATGCGTTTCGTCAGCGCCCTCTTGAGCTGTTTCTTTCTTGCAGCAGCATTTGGTGCGGTAAGCCAATTGCGTCGCAATAAGTGGGCACTTATCACGCTGTCGGCCGCGATTACCCCAATGATCCTATTTCTCAATGGATCGGTTAACCCGAATAGCCTCGAATATGCGACAACCGCTGCCATAGCTGCGAATCTGCTCCTGCTTCTGGAGAAGTCTTCATCGGGGAGGCTGCCAATTCTGCCAATAGCAGTCACCACGGCTGCCGCTTCGCTGCTTGCCAATACCAAGGCACTTTCCATGCTTTGGCTATTAATAGTTGTCGTAGCAGTGATGCTCACTGCAACAGCCGTCCAACTGAAACATTTGGTCAAGACCCCCGCAGTCCTCGCCGGTGCCGGAGTCATTGCTCTCGCGTGCGCGTTCGCTGTTCGATGGATCATCCGGCATGACAGCCTCAGCAGCAAACCATTTGAGGGCGCCGGTATGGAGCCAGCAGACGGCGCAGAAATAATGTTCGATAAAATTTTCAACCACATGATCGGATGGATCGGTCAATTCGGTTGGCTGGAACTCGACGCTCCCCTAGCCGTCCTTGCCCTGTGGATGGCGATCATTTTCGTTGTCACTCTCGCTGTCCTGTTGTATACCCGGGGACGCGCTCGGGTAGCCGCCCTGCTGTTGGCATTCAGTCTGATTGCGCTTCCCATAGTGCTTCAAGCCCAAATCATTTCCGAGCAGGGAATCATCTGGCAGGGGCGCTACATCCTGGCCATCTTCGTTCCGTTTATGCTATTCGCCGGTGTGGCAATGGACAGGTCGCTGACCGGCGCTATCCCGGCACCAGGCCGACAGGCCCTCAACACTCTTATCAACATCGCCATATTTGCGCAAATATTCACCTTTGTATGGGTGCTCCGCCGGTACACGACCGGCCTTTCACTCGACATTCGCTGGGCTGAAATGCTTGAAGCCCCCAAATGGCAACCGCCGCTTGGAATCGTCGCAGTGGTGCTTATTTTCTCCGCTACGTCGGTCATTGCCGCGGCGCTTCTCAAGCGCCACATTAATAGCGTGGATGACCTGCCAGTTGCAGGTAGCACCACTGAACCAGTCGCGGGTACTAGTGAGCCACTCGCGGGTAAACCTCACCCAGTCGCGGGTACCACGGAGCCAGTCCCCGAAACAAGACGGGGTCTGCGCGTATCACGCGGACAGGACGCCTAGMISARMTRFRAAQGRSWFLPSFLVLLFLSWSWAFASPIASVPDEPAHITKAAAVARGQLGGIQIGTDGPLLAVDVPRYIRYVDAMSCFARDLTSTPTCAPPLDGGHDDTVQALTTAGLYNPVYYAIVGLPSLATSGFPGVYVMRFVSALLSCFFLAAAFGAVSQLRRNKWALITLSAAITPMILFLNGSVNPNSLEYATTAAIAANLLLLLEKSSSGRLPILPIAVTTAAASLLANTKALSMLWLLIVVVAVMLTATAVQLKHLVKTPAVLAGAGVIALACAFAVRWIIRHDSLSSKPFEGAGMEPADGAEIMFDKIFNHMIGWIGQFGWLELDAPLAVLALWMAIIFVVTLAVLLYTRGRARVAALLLAFSLIALPIVLQAQIISEQGIIWQGRYILAIFVPFMLFAGVAMDRSLTGAIPAPGRQALNTLINIAIFAQIFTFVWVLRRYTTGLSLDIRWAEMLEAPKWQPPLGIVAVVLIFSATSVIAAALLKRHINSVDDLPVAGSTTEPVAGTSEPLAGKPHPVAGTTEPVPETRRGLRVSRGQDANANANANANA
D1-29_03186495hypothetical proteinATGCACAACCATCAACAGGACAGAACCGTTGCGCAGCCAAAGACGACCCACCCCGTGCGGCTGGCCATCAATCACAGTGCCTTCAGATACCTGTTTTTTGGCGGCCTGTCATTTCTTGTCGATTTTGGTCTGCTTGTTCTCTTCCGGGAAGTCTTCCAGTGGAACCTCGCGGTGGCCGCGGCCACCGCGTTTCTGCTCAGCTTCGCCTTCAGCTACACAGTACAAAAACTCTTTGCCTTTGATTCAGCCCACCGAACACACGTCAGCCTCGGCCGTTATACCCTCCTGGTAGGCGCCAACACGGTAGCAACCGTCATCATCGTGCAACTTTTGTCCCTTACCGGCCTGGGTTATGGCGGCGCAAAAGTGGTTTCCACTGCGGCGACCACTGTATGGAACTATTTCCTCTACAAGCATTGGGTATTCGGAGGCAAGCAGCCGTCGGGGGACCATGTCGAGGAAGACAATCGAAAGGATCCCATCAACAATGTATAAMHNHQQDRTVAQPKTTHPVRLAINHSAFRYLFFGGLSFLVDFGLLVLFREVFQWNLAVAAATAFLLSFAFSYTVQKLFAFDSAHRTHVSLGRYTLLVGANTVATVIIVQLLSLTGLGYGGAKVVSTAATTVWNYFLYKHWVFGGKQPSGDHVEEDNRKDPINNVNANANANANA
D1-29_03187978hypothetical proteinATGTATAACGGCGCCCGAATCGCTGCAGTCGTTCCTGCTTATAAAGAGGAGAGAATGATCGGGCAAGTCATTGAAACCATGCCCGACTATGTGGACCACATTGTCATCGTTGACGATTGCAGCCCGGATAACACTTCCCATGCAGTGCGTGCAATGGCAGACCCGCGGGTGGAGCTCATTCGTCACGACGTCAACCAGGGTGTTGGAGGTGCCATTATTACCGGTCACCGAAAAGCCATGGAGCTCGGCGCCGATGTAAACGTCGTCATGGCCGGCGATGCCCAGATGGACCCCGCCTACCTTCCGGATCTCCTGGAGAAGGTCGTGGACGACGGCTACGGATTCGCCAAGGCGAATCGGTTTTTTTCAGCAGGCTCTTTCTCAGGGATGCCCCGGTACCGTATTTTTGGCAACATCCTCCTGTCTTTCATGACCAAACTTGCCTCGGGTTACTGGCACCTTTTTGATCCGCAAAACGGTTATACAGCGGTGCGGACGGAGATTCTGCAACGTTTGCCGTTGGAGACCATTTCCAAGCGCTACAGCTTCGAGAACGACATGCTCCTGAACCTGAACATCCTGCAGGTTCCCGCCATCGATGTTCCCATCCCTGCGGTGTACGGCGAGGAAGTGTCCAGCATCAGGCTGAGCAAAGTTGTGCCGGAACTGCTGCATATGCTGGGGACCGGATTCTGGAAGCGGATTTGGTACCGGTATGTTCTGTGGTCCTTCTCCCCTGTTGCACTCATGCTCTTCCTGGGAATGGCTCTGTTTGGAGTGGGAGCCATCATCAGCATTTGGGTCTGCTTCCAGATTCTTTCCAGCACAGTGGCAACAGCGGCCACCGTGATGCTTGCCGCTTTGCCGTTGATGCTTGGAACTCAACTGCTGATTAGTGCACTGCAGCTCGACATACAAGCCAGCCCCTCTGCGCCAAGTCTCCCCCACATTCGAAAGCACGGCAGGACAAGCCGCTAAMYNGARIAAVVPAYKEERMIGQVIETMPDYVDHIVIVDDCSPDNTSHAVRAMADPRVELIRHDVNQGVGGAIITGHRKAMELGADVNVVMAGDAQMDPAYLPDLLEKVVDDGYGFAKANRFFSAGSFSGMPRYRIFGNILLSFMTKLASGYWHLFDPQNGYTAVRTEILQRLPLETISKRYSFENDMLLNLNILQVPAIDVPIPAVYGEEVSSIRLSKVVPELLHMLGTGFWKRIWYRYVLWSFSPVALMLFLGMALFGVGAIISIWVCFQILSSTVATAATVMLAALPLMLGTQLLISALQLDIQASPSAPSLPHIRKHGRTSRPGPT0017834_715DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
D1-29_031881404hypothetical proteinATGGAGTTCCAGAAGAAGCTCGCAGCCACGGAAACACCCATTCCCGGCATGATGCTTTTCGATCTCCCGGTACACGGTGATAACCGTGGCTGGTTCAAGGAGAACTGGCAGCGGGAGAAGATGATGGCGCTCGGGTTGCCGGACTTCAGCCCTGTCCAGAACAACATCTCATACAACGACAAAGCCGGTACCACCCGGGGAATCCACGCAGAACCATGGGACAAATTTGTGTCCGTGGCGGCCGGCCGCATTTTCGGCGCCTGGGTGGATCTGCGGGAAGGACCGACGTTCGGCTCTGTCTTTACCGCCGAGCTCGATGCGGGAAGGGCGATCTTCATTCCCCGCGGCGTCGCAAACTCCTACCAGACGCTCGAGGACAATACGTCGTACGTGTACCTGGTGAATGACCATTGGTCGGCCGATGCCGAGTACACCTTCGTGAACCTCGCTGACGAAACTGTGGGAATCGCATGGCCGATCCCGCTTGAGCAGGCGGAAGTGTCCGACAAGGACATGGCGCACCCCCGCTTGGCAGATGTCACTCCAATGGCGCCCAAGAAGACGCTCGTGCTGGGGGCCGATGGTCAGCTTGGGAAGGCCCTTCGTACGGCGTACGCGGGTGATTCGAGTGTGGAGTTTACTGACCGGAACACCTTTGACCTCCTCGATCCTGCTTCGTTTGGCAGCCGCAATTGGCGGAAGTATTCCACCATCATCAATGCTGCGGCGTTCACTGCAGTTGACGCCGCAGAGACCGAAGAAGGCCGCCAGGCTGCCTGGGCCCTCAACGTTACCGCCGTTGCCGAACTGGCAAAGGTCGCAGTTGCCAACAGTTTGGTGATGGTGCAGGTCTCAAGCGACTACGTCTTTGACGGTCTACGTCCGTCACATGATGAGACCGAGGGCCCGACTCCGCTGGGAGTCTATGCACAGACCAAGGCTGCAGGGGACGCCGCCGTCAGTGTGGTTCCCCGGCATTACATCATCCGGACCAGCTGGGTCATAGGTGACGGGCCGAACTTTGTCCGCACCATGGCGTCCCTTGCAGAAAAGGGCGTTTCACCCGCCGTCGTCAACGACCAGATTGGCCGCCTCACCTTCTCGGAAGATCTTGCAGCCGGAATCAAGCACCTTTTGGACGTCGGGGCACCATTTGGTACCTATAACCTGACGAACGACGGCGAGCCTCAGTCATGGGCTGATATTGCGGCTGACGTTTTCGAACTTTCGGGACGCCCGCGTGGCAGCGTCACCGGCGTCTCTACGTCGGAATATTTCCGCGGAAAGACGGCAGCACCCCGGCCCTTGAACAGCGTGCTGGACTTGACCAAGATCACCGACGCCGGCTTCCGTCCTGAACTGGCCGTTACGAGGCTCAAAGGCTATCTGGAGAACACCAAGTAGMEFQKKLAATETPIPGMMLFDLPVHGDNRGWFKENWQREKMMALGLPDFSPVQNNISYNDKAGTTRGIHAEPWDKFVSVAAGRIFGAWVDLREGPTFGSVFTAELDAGRAIFIPRGVANSYQTLEDNTSYVYLVNDHWSADAEYTFVNLADETVGIAWPIPLEQAEVSDKDMAHPRLADVTPMAPKKTLVLGADGQLGKALRTAYAGDSSVEFTDRNTFDLLDPASFGSRNWRKYSTIINAAAFTAVDAAETEEGRQAAWALNVTAVAELAKVAVANSLVMVQVSSDYVFDGLRPSHDETEGPTPLGVYAQTKAAGDAAVSVVPRHYIIRTSWVIGDGPNFVRTMASLAEKGVSPAVVNDQIGRLTFSEDLAAGIKHLLDVGAPFGTYNLTNDGEPQSWADIAADVFELSGRPRGSVTGVSTSEYFRGKTAAPRPLNSVLDLTKITDAGFRPELAVTRLKGYLENTKPGPT0022635_153DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022635-rfbCD|rmlCD-K23987NANA
D1-29_03189999rmlBCOG1088dTDP-glucose 4,6-dehydrataseATGCAGCGACTTTTAGTAACCGGCGGCGCCGGCTTCATTGGCTCCAATTTTGTCCACTACGTCCTGTCCTCAACGGACAACCACGTGACAGTCCTCGACAAGATGACGTACGCAGGCAACCAGGAGTCGCTGGCGAACCTTCCGGCCGAGCGGTTCCAGTTCGTCAAGGGTGATATCTGCGACCAGCCCCTCGTGGACGAGCTGGTCGCAGCTCATGACGTCGTTGTTCACTATGCCGCCGAATCGCACAATGACAACTCCCTGCATGATCCGCGTCCGTTCCTGGACACGAACATCATTGGCACCTACACCCTTATTGAAGCGGCCCGCAAACACAACAAGCGCTTTCATCACATCTCTACGGACGAGGTCTACGGCGACCTGGAGCTCGATGACCCGGAACGGTTTACGGAAAACACGCCGTATAACCCGTCCAGTCCCTACTCATCCACGAAGGCCGGCTCAGACCTGCTGGTCCGTGCCTGGGTGCGTTCTTTCGGGCTGCAGGCAACCATCAGCAACTGCTCGAATAACTACGGCCCGTACCAGCACGTGGAGAAATTCATCCCGCGCCAAATCACGAACGTGATCGACGGCATCCGCCCGAAACTGTATGGCAAGGGGGAGAACGTCCGGGACTGGATCCATGCCAACGACCACTCGTCCGCCGTTCTGGCAATCATCGCCAAGGGCAAGATCGGTGAGACCTACCTGATCGGAGCCGACGGCGAAAAGAACAACAAGGACGTTGTGGAACTGATCCTCAAGCACATGGGTCAGTCCACTGACGCCTACGATCATGTCGTGGACCGTCCCGGCCACGACCTGCGCTACGCGATTGACTCCACAAAGCTCCGGGATGAGCTTGGCTGGGAACCGCAGTTTTCCAATTTCGACGCCGGCATCGAGGACACCATTGCCTGGTACCGGAACAACGAGGACTGGTGGCGTCCGCAGAAGGCCGCGACCGAAGCAAAATACAAAGTGCAGGGCCAATAGMQRLLVTGGAGFIGSNFVHYVLSSTDNHVTVLDKMTYAGNQESLANLPAERFQFVKGDICDQPLVDELVAAHDVVVHYAAESHNDNSLHDPRPFLDTNIIGTYTLIEAARKHNKRFHHISTDEVYGDLELDDPERFTENTPYNPSSPYSSTKAGSDLLVRAWVRSFGLQATISNCSNNYGPYQHVEKFIPRQITNVIDGIRPKLYGKGENVRDWIHANDHSSAVLAIIAKGKIGETYLIGADGEKNNKDVVELILKHMGQSTDAYDHVVDRPGHDLRYAIDSTKLRDELGWEPQFSNFDAGIEDTIAWYRNNEDWWRPQKAATEAKYKVQGQPGPT0022625_4122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022625-rfbB|rmlB|rffG-K01710NANA
D1-29_03190879rmlACOG1209Glucose-1-phosphate thymidylyltransferaseATGTACTGTATGCGCGGAATCATTCTGGCCGGCGGTACCGGCTCACGGCTCCATCCGATTACCCTTGGCGTCAGCAAGCAACTGATGCCGGTCTTCGACAAGCCGATGATCTACTACCCGCTTTCCACCCTGATTCTGGCAGGCATCCGGGACATCCTCATTATCACTACGCCCCATGACGCCGAGCAGTTTCAGCGCCTGCTGGGAGACGGCTCGCAGTTCGGTATCAACCTGAGCTATCTCCAACAGCCGTCCCCGGACGGACTGGCCCAGGCATTCATCCTGGGAGCCGAGCACATTGGCAATGAGCCGGTGGCACTGGTCCTCGGCGACAACATCTTTTACGGGCAGGGCATGGGAACCCAGCTTCGCCGTTTTGAGGACATCGACGGCGGGGCGGTCTTCGGCTATTGGGTTGCGGACCCGAAGTCTTATGGTGTGGTCGAATTCGACGACACCGGCAAGGCCATCTCCCTGGAGGAGAAGCCCGAGAAACCCAAGAGCCACTACGCCGTCCCGGGACTGTACTTCTACGACAATGACGTCGTTGACATTGCGCGGAACCTGAAGCCATCCCCCCGTGGCGAGCTGGAGATCACGGACGTAAACCGGACGTATCTGGAAAAAGGAAAGCTTCAGGTTGAGATTCTTCCCCGCGGGACGGCCTGGCTGGACACGGGAACTTTCAACGACCTTAACGATGCATCCAATTTTGTCCGTACAACCGAGAACCGCCAGGGCCTGAAGATTGGGGCCCCCGAAGAGATCGCCTGGCGCTTGGGCTTCCTTAGCGACGACGATCTTCGGCGACGCGCTGAGCCTCTGCTCAAGAGTGGCTACGGAACCTACCTGCTGGGACTCCTGGAAAACGGTCGTTGAMYCMRGIILAGGTGSRLHPITLGVSKQLMPVFDKPMIYYPLSTLILAGIRDILIITTPHDAEQFQRLLGDGSQFGINLSYLQQPSPDGLAQAFILGAEHIGNEPVALVLGDNIFYGQGMGTQLRRFEDIDGGAVFGYWVADPKSYGVVEFDDTGKAISLEEKPEKPKSHYAVPGLYFYDNDVVDIARNLKPSPRGELEITDVNRTYLEKGKLQVEILPRGTAWLDTGTFNDLNDASNFVRTTENRQGLKIGAPEEIAWRLGFLSDDDLRRRAEPLLKSGYGTYLLGLLENGRPGPT0022600_4016DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022600-rfbA|rmlA|rffH-K00973NANA
D1-29_031911572hypothetical proteinATGCGACTCGGCAACCGGCCGAATGTGTTCCTTATAGATCGAACCGGTGTCGACGAGCTTGCCGACGGCCGAGCGCAAAAATCCGGGCGAAGAACGTTCTGGTGGGTTTTCCTGCTGCTGATGGGACTCTCCACGGCATGGACTGTGGCCACGCCGCTGATGGGAGTTCCCGATGAACCTGCCCACGTCATCAAGGCAGCCTCCGTCGTCCGAGGCGAGCTGACTGGACGCGAAATGGCTGGCGGAGGCGGCTTCCACCTTGTGAAAGTCCCAGCCGGAATCGCCTACTACGACAGCTTTGGCTGCTTTGCACAGCAGAAGGAAATCACGCCTGCATGTGTCCCACCGTTTGATGGTGACATCAACGCTCTGGTCGATGCACGCACGTCTGCGGGCAACTACAATCCGATCTATTACACCGTGGTCGGACTCCCCTCGCTGGTGAACAGTGGCGCCGGCGCAGTTTATGGAATGCGGCTTATCAATGCCGTCTTGAGCTGCCTTTTCCTCTCCTTTGCCTTTTCGGCTCTCTCGAAAATGCGCCAACGCAAATGGGCCATGGTCGCCGCTGCTGTCTCTGTTACCCCGATGGTCCTCTTCCTCAACGGGGCCGTAAACCCAAACTCACTTGAATACGCCACGTCAGCCGCCCTGCTGGCAAATCTGGTTCTCCTCCTGGAGCGTTCCGCGGAACCGGACGCGTATCGGCGTTATGTTCCCTCTATAACGGCAGCTGCCTGTCTGTTGGCCAACACGAAAGGCTTGTCCCTTCTCTGGCTGGCACTCATGGTCATGACAGCTTGCATTCTGGGAACCTGGTCGCAAATAAGGGAGTTATGCCGCAACGCTTGGGTATGGTCAGGGACCGCAGCGATCAGTCTTGCATGTGCCTTCGCGCTCTACTGGCTTATCCGTCACGACAGCCTGGAAAGTAACCCCTTCGAAGCCGCCGGCTACTCCCCCTGGGCCGGCGCCGAGATAATGATGGACCGAACCTTTGACTACGCCACTGGCTATGTCGGCCAGTTCGGCTGGCTGGAAGTACCTGCCCCGCTGGGCGCTTTTGTACTCTGGCTAGGGCTTGCCGGGGCCCTGGTCATGGGTGCCGTCGTATTGTCCAAGGGACGCACGCGTGCCGCCACAGTCTTCCTGCTCACAGCACTTCTCCTGCTGCCGCCACTACTTCAGGCACAGGCCGTTGAGACGATTGGGATCGTTTGGCAGGGCCGCTACGTCCTCGCACTGTTCCTCCCGCTGCTGTTGGTTTGCGGAATAGCTTTGGATCGCACCAATCCCGGCTCTTTTTCCCAGCAGACAGCATCGATCCTGTACGCTGCCGCCGTGCTCGTTGCATTCTTCCAGTTATGGACGTTCCTCCACACGCTCCGACGCTATGTCACTGGATGGGCAGTGGACCGGCGCTGGAGTGAGATGATTACCAACCCATCCTGGCAGCCGCCAAGCGGCACCCTGCTGTGTGTTGCATTCTTCATACTCATGCTGGTCCTCGCCCTGTGGCTGATCCGGCGCGGTATCAACGCGGAACGCGGTCAGCCTCAGCTGACCGCGTAAMRLGNRPNVFLIDRTGVDELADGRAQKSGRRTFWWVFLLLMGLSTAWTVATPLMGVPDEPAHVIKAASVVRGELTGREMAGGGGFHLVKVPAGIAYYDSFGCFAQQKEITPACVPPFDGDINALVDARTSAGNYNPIYYTVVGLPSLVNSGAGAVYGMRLINAVLSCLFLSFAFSALSKMRQRKWAMVAAAVSVTPMVLFLNGAVNPNSLEYATSAALLANLVLLLERSAEPDAYRRYVPSITAAACLLANTKGLSLLWLALMVMTACILGTWSQIRELCRNAWVWSGTAAISLACAFALYWLIRHDSLESNPFEAAGYSPWAGAEIMMDRTFDYATGYVGQFGWLEVPAPLGAFVLWLGLAGALVMGAVVLSKGRTRAATVFLLTALLLLPPLLQAQAVETIGIVWQGRYVLALFLPLLLVCGIALDRTNPGSFSQQTASILYAAAVLVAFFQLWTFLHTLRRYVTGWAVDRRWSEMITNPSWQPPSGTLLCVAFFILMLVLALWLIRRGINAERGQPQLTANANANANANA
D1-29_031922013hypothetical proteinGTGAAGGTCGGCGCGGCAGGTGCCATGGAGGCTTCCGTGGCCTCTGGAGGAAATAAGTTGAATAGGAAACTTCCCGAGCCCCTCGCCCGGACCACTAGCCGCTTTATGCAATGGGTCTGCGTCAACGACCGGGCTGCACGTGTGATCACTATTGTGGTCTTCGCCGTCCTCGTCCTCCTCGGGATCACCACATCGTCGATTGGCATTGCAGACCTCCGACAGGACCCGGCGAACCCGCTGGGCTGGCAATTCGGTAATTCACGGCCCATCCGGTCGGATGAGATCCATGCCTATTCAGCGATTGTGATCTCCATCCTCGCTACCCATGGCGCTCCGAGCCTGAGCCCACTGGCCGCTCGAGCCGATCTGATCCATAGGTTCCCGACCGACGGCTTTTTTGAGCAGTTCGTATTCTTCGATTCCACTATGCTCCGCGCCTCCGTGATCCTTCCTGAAAACATGCTCTTCGCGGCGCACTGGTGGCTGCCTTCCTTGATCCTGCTGCTGGCGCTGCCTACGTGGTTCCATCAGCTTGGACGCTCCCGCCGGTATGGGTGGTTGGCAGCAATCCTGATTGTCTTGTCTCCGTCGAGCGCGTGGTGGTCTTTGATGCCCGTTGCACTCATCGCCTACACGGTCGGTGGCAGCGTGCTGATGATCGCCGCCTTCCAAAGGTTCAGCCGCGGGCAGCGCCTCCTTCCGGTCACCATGGGCCTGGTCGGCGGAATCTTGATCGCCGGTCTTCCCTCGTTCTATGCACCCTGGTCCCTGATGCTCGGACTGCCGGTTCTGGGCGCCTCCACTCTGTGGATTTTGCTTCAGCGCGGCGACTGGGGACCTCGCCTGAAATCGGTGCTTGTCACGGGAGGAACGGCGCTGGTTTTCGGGGCGGGCACGCTGCTGGAAAACCGCGAGGGTCTCCAAGCCCTCTTGGGTACTGTCTATCCTGGTTCAAGGCGGGTGGGGGCAGACCCCCAGCCTTTCGGTCGCATCTTCGGCGCGCCGGCGCTCGGGCCGCTGCAGTTCAGCGAGCCTGTCGGTATTAACGCCAGCGAGCTCTCGTCATCGTTTACAGTCTTCTTTGTATGGGTCCTGGTCCTGCTGCTTGCGGCACGTTGGCGGCCGACATTCCGCGACAATGTGCCTGAATGGATCTTTGGAGCCTGGTCGGCGCTGTGGATCTTATGGATCAGCCTGGATCTGGGTGCCGCCGCCCGGATGATTCCGTTGTTCAACATGGTGACCCCTCCCCGGGCTACCCAGGTGGTGGGAGTGCTGGCCGTCGTACTCCTTTGCCTGTTGATCAGCAGATGGTCTCCGCCTGCCTCGTGGAGGGTGCCTCTCCTGTCCGGCGCCGCATGCGCCCTTCCGACTGGATACGCGGCCTGGCTCCTGAAGGCCACGGATTTGCCGGATATATCCACAGGGCTCATTTTTCTGGCCTCAGGCGTGGTGGGCATGACTGTTGCCGTCATCACAAAGTATCCCCAGCGTTCCTGGCCCTTGATGTTCTGCGCCCTCTTCGCTGCGCTGCCAATTGCCCGCGCAAATCCTTTCCTAGCGGGTACGGGAGATCTGCGTGCATCGGAGACAGCCAAAACCGTGGCCGCACAGGTCCCAGCGGCGCAGGCGGGGGGAAAGCTGTGGGCAGCTGACAACCCTTCCATGAGCACCCTGCTCCTGGCTAACGGCATGCCTTCGCTGTCTGGACTCCAGCGCTCAGGGCCTGACGCGGAGGCATGGCAGAAGCTGGATCCCGGCTCGGCCTTCTCAGACAAGTGGAACCGCGGTGGCGGCTATATCTTCTTTGCCTGGGCGCCTGGGCAGCCCACCACCTTCCAGACAAACGATTTCGACGCCGTCGGAGTGGTGATTGATCCCTGTGTTCTCAAGGGCTCCTGGCCGAACCTCGACCGGATCGTGGCGTCACAGCCGCTGGAAGCCCCGTGCCTCACCCTGGATTCCGAGCTGCAGTGGCAGGGCAAACCAGCCTACATTTACGCGGTCAGCTGAMKVGAAGAMEASVASGGNKLNRKLPEPLARTTSRFMQWVCVNDRAARVITIVVFAVLVLLGITTSSIGIADLRQDPANPLGWQFGNSRPIRSDEIHAYSAIVISILATHGAPSLSPLAARADLIHRFPTDGFFEQFVFFDSTMLRASVILPENMLFAAHWWLPSLILLLALPTWFHQLGRSRRYGWLAAILIVLSPSSAWWSLMPVALIAYTVGGSVLMIAAFQRFSRGQRLLPVTMGLVGGILIAGLPSFYAPWSLMLGLPVLGASTLWILLQRGDWGPRLKSVLVTGGTALVFGAGTLLENREGLQALLGTVYPGSRRVGADPQPFGRIFGAPALGPLQFSEPVGINASELSSSFTVFFVWVLVLLLAARWRPTFRDNVPEWIFGAWSALWILWISLDLGAAARMIPLFNMVTPPRATQVVGVLAVVLLCLLISRWSPPASWRVPLLSGAACALPTGYAAWLLKATDLPDISTGLIFLASGVVGMTVAVITKYPQRSWPLMFCALFAALPIARANPFLAGTGDLRASETAKTVAAQVPAAQAGGKLWAADNPSMSTLLLANGMPSLSGLQRSGPDAEAWQKLDPGSAFSDKWNRGGGYIFFAWAPGQPTTFQTNDFDAVGVVIDPCVLKGSWPNLDRIVASQPLEAPCLTLDSELQWQGKPAYIYAVSNANANANANA
D1-29_031932238hypothetical proteinGTGCTGAGCCTGATCCCGCTCATCTTCTACGGCCGGTATTACTTCCAGGATGATACCGAAAACGGCGCATATGGAGTGTGGTACCACCTTGGCGAGAGTCTGTTCCAAGGGAAGGTTCCTGTTCTAAATCCTTCAGTTTGGACCAGCGGCAACTATATTGCCGAGGGTCAATGGGGTACCTGGAACCCCTTGGTCATGTTGTTCGGTGTGCTCGCGTACATAAGCCCCAATGCCATTATCCTCACGACTGTTTTGAAGGTAGCCATGCTGGTTGTTGCCGGCGTTGGCACCTTCGTCCTTGCCCGGAGCTATGCTGTCGCGCCGGAATGGGCGTTCATTGCAGGGATCGCCGTTCCGCTGAACGGCTTTACGATGTACTTTGATGCACCCTCGTGGGTCACGGGCGCGCTTGTCTGGGCAATATTCCCCTTCTTCTGGGCTGAGCTGCGCAAGCTCATGGCAGGCAAACGAAACCCCTTTTGGGCCTTTATCACGGGGTACTTGATTGTCACCGTCGGGTATGTGGCAGGAACCGTCGCCATCGGCTTCATCCTCCTGGCAGTTGGTATTGAGACCTTGATCCGCAGGGCCTGGCGGCCTGCAGCGAGGATCGCGATCACAGGCCTTTCCATCGGGTTCGTCGCCGTCGTCGTCTTCCTTCCCGGTGTCCTGACAGCGGCCGTTACCACGCGCGGAACCACGGGCATCTGGAACGACGACTACATGAGCATCGATTTCACGAGCTTGCTCATGGCCCCGATTGCCACCGCCTATCCGCAGCTTCTCTCCTGGTGGTGGTCGGGAACGGCGTCAACGAGCCCGGCCGCCTACATCGCGTGGTTCCTGCCCGCCATTGCCTTCGTCAGCTGGAGTGTCTTCACGAGACTGTCGGCTGAGCTGCGGGACCTGTTTTTCTTCCTGGCTGCGTCTGCCGCCTTTGTCCTGCTGCCGACGACGATCGGCCCGTTGCGGTATCCGGCCCGCTTTATGCCGTACGTCGCGCTGGCCGCAGTTCTGTTTGTCGTTATCGCACTGGCGCGCGCCAGGCGGCCGTCGATCAGCCGTCCCTCGCTCTACGTGGCACTGGGCCTCGTTGGCGTTGCTGCGTATCTCGCATGGGCCCAGGTTCCTGCCCGGTTCCTTACCATCACGGTGTGTGCCGCTCTTGTCGCCGCAGCGCTGGTGGCCATGTGGTGGCTCCTGAACCATCCGGAAGTGAAGGGCCATCGCTGGAACAGGTTTGGGCTGAGGGCACTGTCCCTGCTCGCCATCGGTGTGCTGCTCGCGACGACGGCGACCACCCTTCTCCAGCATCGGACGTCGGCTCGAAGCGGCCTGTCGATCGCAAACCAGCCTGAAGATGTCTCTACCTACAAGGGCGTCCTTCAAGGTGTGAAGAACGACGTGATTGTTGTTGGTGACCCTTTGGATTACCCCCAGGAGAAGAAGACCTGGGAACAGACGCTCATGGCGAACGCTTGGTATTTGAGCGACGCCAGCGTGGTGAATCGCTACCAGTTGGTCGGATTCTCCAGGCTGAATCAGCTTCTTTGCCTCCGATATCTGGGAGGAACCTGTCCTGAACTTGCGGACAAGCTTTTTGATCGCCGCGTCCAGACCGGATTGTTGCTGGTTGACGAACTGCAGATCGATAACATTCAGATCCTGAAGGAATCCTTCAACAAGCCCCAGGTGCCCATGGCATCGAATAACTACGTGTCCCGCGACGAGGAAGTGGAGATCCCAGCGGTTCCGGAAGGCTGGCACGTCGCAGCCGAGACTGAAGAGACAGTACTGTGGAGCCGCGATGTGCCGCTGGGTCCTGCCGGAGGCGTGACATGGACCGACTCGGGAACCCGCCTTAGTGAAGTCTCCAGGGACGACACCAAGGTAGTGCTGAAGGTCGAAGAGGTACCGGCAGATGGCGGCCGTGCGGCTCTGAGCAGGCTTCCCTGGCCGGGATACAGCGTGGAGGGCGCCAGCTTGACGCAGCGCCCGATCGGCGGGTACCTCCTTGGTTTATCAATTCCTTCGGATGCCCAGGGAAAGTTGATCACCATCAGCTTCGAACCTCCGGGCTGGCGGGTCGGCATCCCTCTTTGGGGCGCAGCGGTAACGGGGATGCTCATCTGGAGCCTGGTGGCGGTACGGAGGCGACGGACGGATGGTCTTGTGGTGCCTGAGATTACACGCGACGAGACCGAGCAGCGGGCTCCGGTCTACGACGGCATAAAGTGAMLSLIPLIFYGRYYFQDDTENGAYGVWYHLGESLFQGKVPVLNPSVWTSGNYIAEGQWGTWNPLVMLFGVLAYISPNAIILTTVLKVAMLVVAGVGTFVLARSYAVAPEWAFIAGIAVPLNGFTMYFDAPSWVTGALVWAIFPFFWAELRKLMAGKRNPFWAFITGYLIVTVGYVAGTVAIGFILLAVGIETLIRRAWRPAARIAITGLSIGFVAVVVFLPGVLTAAVTTRGTTGIWNDDYMSIDFTSLLMAPIATAYPQLLSWWWSGTASTSPAAYIAWFLPAIAFVSWSVFTRLSAELRDLFFFLAASAAFVLLPTTIGPLRYPARFMPYVALAAVLFVVIALARARRPSISRPSLYVALGLVGVAAYLAWAQVPARFLTITVCAALVAAALVAMWWLLNHPEVKGHRWNRFGLRALSLLAIGVLLATTATTLLQHRTSARSGLSIANQPEDVSTYKGVLQGVKNDVIVVGDPLDYPQEKKTWEQTLMANAWYLSDASVVNRYQLVGFSRLNQLLCLRYLGGTCPELADKLFDRRVQTGLLLVDELQIDNIQILKESFNKPQVPMASNNYVSRDEEVEIPAVPEGWHVAAETEETVLWSRDVPLGPAGGVTWTDSGTRLSEVSRDDTKVVLKVEEVPADGGRAALSRLPWPGYSVEGASLTQRPIGGYLLGLSIPSDAQGKLITISFEPPGWRVGIPLWGAAVTGMLIWSLVAVRRRRTDGLVVPEITRDETEQRAPVYDGIKNANANANANA
D1-29_031941056arnC_2COG0463Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferaseATGACACTGGCTCAACCCGAGACAAGCTCGACGCCCCACCGCATTTCTGTCGTCATACCCGTCTACCAGGGTGAGAAGACGCTTGTTGGCGTGGTCAACGAGCTCCTCCCTTATCGGCAAACGTCCATGAGCGCGGGTGGCCACAATTTTGTCGTCTCGGAAGTGCTCCTGGTCTTCGACCATGGCCCAGACAACTCCGCTGCGGTGATCCGGTCGTTGACGCAATCCATCGATATCGTCCGCGGTGTCTGGTTGAGCCGAAACTTTGGACAGCACGCGGCCACGCTCGCTGGGATGGCTTCCGCCGGGGGCGACTGGATTGTCACCATGGACGAGGACGGGCAACATGACCCCGCCGCCATTGGAGATATGTTGGATACGGCTATGGCGCAGAATGCGTCCGTTACCTATGCAATGCCCAGCAACCCGGCACCGCACGGCTTCCTGCGGAACATGGCGTCCAAGAGTGCGAAACGTGCCGTGAGATTCGTCCTGTCCAGCGACGACGCGACCAGCTACCAGAGCTTCAGGCTGGTGACAGGCGAAGTAGCCCGTTCAGTGGCAGCCTACGCCGGCCATGGCGTCTACCTCGACGTCGCGATGGGCTGGATCGCTGACAGAACCGCCACCTGCCCCGTTGTGCTCCGCGAAGAAGGTGACCGCCGGTCCGGCTACGGGCTCCGTTCACTCCTCTCCCATTTCTGGCGGATGGTGATCTCCAGCGGCACCCGCGCCCTTCGAATGGTCAGCCTTATCGGCGCTGTTTTTGCTCTGGCGGGAATCGGTTTGGCCATTTACTTCGTTATCGCGTACTTGACCGGTCATGGAGCGGGGCAGCAGGGCTGGACGTCGACGATGGTGGTACTTCTTGTCAGTACGGGCGCCATACTTTTCGCCCTGGGGGTGATAGCGGAGTACGTGGGGGTCAACGTCAACATGGCAATGGGCAAGCCGGCCTACCTCATTGTGAGTGACCCTGCGCTGGGGCCCTTAGGTAAGAGTCCACAGAAGGCGCCTGTCCAGTCGCCCGCCGGCCCGGTGGCTGATGCAGGTTAGMTLAQPETSSTPHRISVVIPVYQGEKTLVGVVNELLPYRQTSMSAGGHNFVVSEVLLVFDHGPDNSAAVIRSLTQSIDIVRGVWLSRNFGQHAATLAGMASAGGDWIVTMDEDGQHDPAAIGDMLDTAMAQNASVTYAMPSNPAPHGFLRNMASKSAKRAVRFVLSSDDATSYQSFRLVTGEVARSVAAYAGHGVYLDVAMGWIADRTATCPVVLREEGDRRSGYGLRSLLSHFWRMVISSGTRALRMVSLIGAVFALAGIGLAIYFVIAYLTGHGAGQQGWTSTMVVLLVSTGAILFALGVIAEYVGVNVNMAMGKPAYLIVSDPALGPLGKSPQKAPVQSPAGPVADAGPGPT0014540_791DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0014540-csbB|gtrB|yfdH-K20534NANA
D1-29_03195957fcf1dTDP-4-dehydro-6-deoxyglucose reductaseATGCAGGTTAGGCCTACCTGGGTCATCGGCGCCGGTGGCCTCCTCGGGCGGGCAGTCGTGCGAGAACTCGAGTCCCGCCACATCCCTGTTTTGACAAGCAAGATTCAGTGGAACGATCCGGAAGTCGCCATCAAGGAGTTCAGGCGCAGTGCTGAGCGGCTGCGTGACGCAGCCGATTCCGGCCCGTGGACCATTGCCTGGTGTGCGGGCGCTGGCGTCACCGGGACTTCCCAGGATGCTTTGGACGAGGAACTGTCCCTGCTCACCCAAGCGCTGGCAGCTTTCGAAGAGATCCTGTGCAACGACGGCGGGCAGATGGGGGCGCTCTTCCTCGCTTCTTCGGCCGGCGGGGTGTATGCCGGCTCAAGCACGCCTCCATTCACCGAGGAAAGTCCGGTGCAGCCCTTGGCGCCGTACGGTTTTGCCAAGCTCCGTGCTGAGGCAGCTGTCACGGAGTTTGCCACGAGGACAGGGGTTCGAAGCCTCATTGGCAGGGTGAGCAACCTGTATGGGCCGGGGCAGAACCTCCAAAAACCCCAAGGCCTCATTTCCGTGTTCGCCAAGGCTCACCTCACGGGCGCGCCTGTTTCCGTCTACGTCTCCCTGGATACCTTGCGGGATTACCTGTTCGTGGATGACGCCAGCCGGCTTGTCACCGATGCACTTAGCCGGCTCGTCCACCCGGATGTCCTGCCGGGCGAGACTGTGGTGAAGATCCTCGCTTCGCAGAGGGCGGACACCATTGGCAACCTCATTGGAGCCTGCCGAGCCATCTTCAAGCGCCGGCCGTTGATCATCCTCGGCGCCTCCCCGTTTGCGAAGGCCCAGGCCCACGATCTCCGGCTGCGCTCCGTTGTGTGGCCTGAGCTTGACGAGCACCCCGTGACTCCCTTGGCTGTGGGCATCAACAACACGGTGCAGGAAGTCCAGAGGCTGGCTTTGTCAGGTCAGCTCTGAMQVRPTWVIGAGGLLGRAVVRELESRHIPVLTSKIQWNDPEVAIKEFRRSAERLRDAADSGPWTIAWCAGAGVTGTSQDALDEELSLLTQALAAFEEILCNDGGQMGALFLASSAGGVYAGSSTPPFTEESPVQPLAPYGFAKLRAEAAVTEFATRTGVRSLIGRVSNLYGPGQNLQKPQGLISVFAKAHLTGAPVSVYVSLDTLRDYLFVDDASRLVTDALSRLVHPDVLPGETVVKILASQRADTIGNLIGACRAIFKRRPLIILGASPFAKAQAHDLRLRSVVWPELDEHPVTPLAVGINNTVQEVQRLALSGQLNANANANANA
D1-29_03196507hypothetical proteinGTGGCTTCCACCCAACAACCCGATTCCCCAGCGGAAGCTGTTAAGGGTATCCATAACGGTCCGCCTGGTCCCCTCCTGAAAATCATTAAGGACCAGCGCGTCGCTTTCCTGTTGGTGGGTGGCATCAACACTGCATTCAGCACCGCATTGTTTGTAGCGATCGCATGGATCTACCCGGAGCTTCCGTCGCCGGTTGTCCTCAGCATTGCGTTCGTCATTTCACTTGTGGCGGTGTTTTTTGTCTACCGGAAGCTTGTCTTCCGCGTGAAGGGCCACTTCTGGCTGGACCTCGGCCGTTTCACCCTGGTCAATCTGACGATGTTCTTCGTCAACATGGTGCTGCTCTTTGCAGCACATGAAGTTCTTGGCTATCCGAAAATACCAGCCCAGATCACGATCACCTGCGTGACGGTTGTCATCAACTACTTCGGCCACAAGTATTTCTCCTTCCGCCGGCGCCCTGAAGCCGCATCGCCCACCACTGCCACCGAGGAAAGTGCCCCATGAMASTQQPDSPAEAVKGIHNGPPGPLLKIIKDQRVAFLLVGGINTAFSTALFVAIAWIYPELPSPVVLSIAFVISLVAVFFVYRKLVFRVKGHFWLDLGRFTLVNLTMFFVNMVLLFAAHEVLGYPKIPAQITITCVTVVINYFGHKYFSFRRRPEAASPTTATEESAPNANANANANA
D1-29_03197861hypothetical proteinATGAGTCCAAAAGTCTCTATCGTCATTCCTGCCTACAACAACGTCCAGTACATCGAAGAGACTCTGCAGTCCGTACTCAACCAGACCTTCGACGACTACGAGGTGGTGATCGCTGACCACTCCTCGATCGATGGCACGGCTGAAGTCATCGCCCGGTATGCAGATCATCCCAAGGTCCGGTTTTTGAGCCCGACACCAACAGGCGGCGGGGCTCAAGCCAACTGGAACCGCGTCAGCCAGGAGGCTAAGGGGGAATACCTCAAGCTTGTTTGCGGCGACGACCTGATCGTCCCCGAGGCGCTCGAACTGCAGGTAAAGGCCTTGGAAGACAACCCGGGTGCTGTTATCGTCTCCTCACGCCGAGACCTGGTGGACGCTAACGGAGGGATCTTCCTAAAGGGCCGGGGACTGCAAGGCGTTCAGGGCCGCGTCAGCGGTCGCGAGGCCATCCGGGCTACGGTGCGGGCAGGTTCCAACATCTTCGGCGAGCCGGCGTGCTCCCTGTTCAAGCGGGAGCTTCTGGCTGCGGAAGGCTGGTGGGATAACACCCATCCGTATCTCATCGATGAAGCCACCCTGGTGCGCATTTGCCGCCACGGCGACTTTGTAGCGCTGCGGGAAACCCTGGCGTCCTTCCGGATTAGCGCCAGCCAATGGAGCGTCCGCCTCGCCCGCCAACAGTCCGACCAGGCCATTGCTTTCCATAACCAGCTTCGGAAGGACGACCCGTCGCTGCTGAGCCGGGTGGACGTCCTTGTGGGCAATGGCAAGGCAATTGCCATGTCATACGCCCGGCGCCTCGCTTACCTGCGGCTGAACCGGCGCATGGGTCATCAGCACGCCGTTCAGAGCACGGTCTGAMSPKVSIVIPAYNNVQYIEETLQSVLNQTFDDYEVVIADHSSIDGTAEVIARYADHPKVRFLSPTPTGGGAQANWNRVSQEAKGEYLKLVCGDDLIVPEALELQVKALEDNPGAVIVSSRRDLVDANGGIFLKGRGLQGVQGRVSGREAIRATVRAGSNIFGEPACSLFKRELLAAEGWWDNTHPYLIDEATLVRICRHGDFVALRETLASFRISASQWSVRLARQQSDQAIAFHNQLRKDDPSLLSRVDVLVGNGKAIAMSYARRLAYLRLNRRMGHQHAVQSTVNANANANANA
D1-29_031982238hypothetical proteinGTGAGTGCTTTGCGTCCCCGCAGCGACGTCACGTGGCTGATTGGGACAGTGGTTGCCGCCCTCGTTGGGTCCCTGATTCCGCTCATCACCAACAACAGGTTCTACTACTATGACGATACCCAGGCCGGGGCCTTCGGTATCTGGTTCGAAATTGGCACCAAACTCAGTGCGGGAGAGTGGCCTGTCTTCAGCGACAGTGCCTGGGGGGCAGGAAATTACGCTGCTGAAGGCCAGTGGGGGATCTGGAATCCCCTTATTCTTCTGATCGGTTGGTTGGCGAGCCGCTCGGCCAATATTGTTGTCTTTTCAACAATCCTCAAGATCGCCTTTCTCTGCCTCCTTGCTGCCGGCACCTTCCTGCTGGCAAGGAGCTACAAGGCCAGGCCTGAGTGGGCGGCCATCGCCGGGGTTGCGGTGACGCTGACCGGATTCACCGTGTACATCGACGCAGCCTCCTGGGTCACCGGGCTCATGGTGTTCAGCCTTTTGCCCCTCACCTGGTACGGGCTGCGCCGGATGGCATTCAAGGAGGGCAATCCTCTGCTTGCACTGGCTTCGGCCTACGTGCTGATAACCATTGGCTACGTTCACGGTACGATCATGCTCGCCATCGTCTTTATGGGTCTGCTGGTGGAGGCATCACTGCAAGGAAGCCGCAGGGGAGCCTTCCGCCTGCTCCTCGCCGGCCTGGTGTGCGGGCTCATCGCGTTGGCGGTGTACCTCCCGGGGGTCCTCACCGCGCCGGTGACAGCCCGCACCGGGGGAATTGTGAACAGTGGGTTCCTGACGCCCGACCTCACCGGTCTGTTCACTGCCTGGGTCCCCGGCACCCTGCCTCAAGTCACTGGATGGTGGGGCGGGTTTGCAACGGTACCCCTGCTGTACGTGGCGTGGTTTCTCCCGATCCTCTCGATAGTGGACTACCACAGGGTGAAGCGGGCAGGCAGGGAGCTTTCAGGACTCTGGTTTCTTGGACTAATGTCGTTGGCCTTGACGTTGGCCCCCAGCGATCTGGGGCCTCTTCGATTTCCGATCAGGGTCATGCCCTACGTTGCCCTGGCTGTCCTGCTGACACTGTCGGTGCTGGTCTCACGCTTCAGGGTGCCCGTGCTCAGCCGTGGACGCGTGATCGTCACTGCGGCGACGGTGCTCGCCGGACTCTACCTCGGCTGGAGCCAGTTCCCGTCCTTCCGCGTGGCGGCCATCTTCGGGCTGCTGGCAATCGGGGGTATCGCCGGACTCCTCTTTTTCCTGTACGCTCCACATCGGTGGCCCCGGCTCAAAGGGCCAGTGGTTTTGGCCGGGGGAGTGGTACTGCTGAGCATGGCCATTGCCGGGGGACAGCACGTGGCCTTTAAATCGTCGCCGCTGCCTGACTACAGGATGCCGGACACCCCGGCAAGCTACTCCTCTCAGCTCCCGGAAGCACAAGGTGGCACCTTCATCGTGGGCGATCCCACTAAATTGGGACCACAGATCTGGGAGGAAACACTGGCCTCTAACGCGTGGTATTTGAACTCCGCCGAAGTCCAGAACCTCTACACGCCGATCATGTTCGCCAAATACGCTGAGGATCTGTGCATCTCAAGCCACGGCTGGACCTGCCCGGCGGCCGCCGGGAAGCTCTTTGAGACGGACACTGCCACGGGTAAGGTTCTGGCGGATCTGCTGTCCATCGACACCATCCAGCTACTTCGCGATCCAGAGGCCCCGTCCGGAGATCGCTTTGGCGGCGCACCTCCAAACGGCTGGCATGAAGCCGACCGCAGCACCGACTCGGTGGTCTGGGTCCGGGACAAACCGCTGCTGAATACCGGCCAGCCCGTCTGGACCTCAGAGGGGACCACCATTTCCCTGGTCTCGGAAACCAGCCGCGAGGTTCGGATCCGCGTGGACGGGATGGAAGATTCGGCGGTCAAGGCCGTACTCAGCCGGCTGGCGTGGCCCGGATACAAAGCCGAGGGGGCAACTGTCTCAGCACCCCTGCGCGGGTACCTTCTCGCCGTCGACATTCCCGCGGGCTCTGTCGGAAAAACCCTCACCATAAGCTTTGAACCCCCGGGCTGGCCGGTGGTTGTGGGCAGCATTATCCTGGCCGTCGGCGTGGCCGGGGCGTGGACTGTGGCGGAACTGATGCTGCGCCGCCGCCGGAGGCGCACCACCGAGCCGGTCAGCTCCGAAGGAGCGGCCGGCCCAACTGCGGTGGGTCAGGACGTTGGTATGAGAGTGAAACAGTGAMSALRPRSDVTWLIGTVVAALVGSLIPLITNNRFYYYDDTQAGAFGIWFEIGTKLSAGEWPVFSDSAWGAGNYAAEGQWGIWNPLILLIGWLASRSANIVVFSTILKIAFLCLLAAGTFLLARSYKARPEWAAIAGVAVTLTGFTVYIDAASWVTGLMVFSLLPLTWYGLRRMAFKEGNPLLALASAYVLITIGYVHGTIMLAIVFMGLLVEASLQGSRRGAFRLLLAGLVCGLIALAVYLPGVLTAPVTARTGGIVNSGFLTPDLTGLFTAWVPGTLPQVTGWWGGFATVPLLYVAWFLPILSIVDYHRVKRAGRELSGLWFLGLMSLALTLAPSDLGPLRFPIRVMPYVALAVLLTLSVLVSRFRVPVLSRGRVIVTAATVLAGLYLGWSQFPSFRVAAIFGLLAIGGIAGLLFFLYAPHRWPRLKGPVVLAGGVVLLSMAIAGGQHVAFKSSPLPDYRMPDTPASYSSQLPEAQGGTFIVGDPTKLGPQIWEETLASNAWYLNSAEVQNLYTPIMFAKYAEDLCISSHGWTCPAAAGKLFETDTATGKVLADLLSIDTIQLLRDPEAPSGDRFGGAPPNGWHEADRSTDSVVWVRDKPLLNTGQPVWTSEGTTISLVSETSREVRIRVDGMEDSAVKAVLSRLAWPGYKAEGATVSAPLRGYLLAVDIPAGSVGKTLTISFEPPGWPVVVGSIILAVGVAGAWTVAELMLRRRRRRTTEPVSSEGAAGPTAVGQDVGMRVKQNANANANANA
D1-29_03199771tagHCOG1134Teichoic acids export ATP-binding protein TagHATGACGAAGCATGGCCATGTAGCCATCAGCTGCATCGACCTGCGGAAGCAGTTCGTCCTGCGACACACCCGTTCCCTCAAGGAAGCCCTGGTCTGGCTGGTCAAGGGCCGCAAGGGTGATCTGTCGAAAAAGTTCCTGGCACTTAACCACGTCTCCCTCGAAGTCAGACAGGGCGAGACAGTTGCTCTCATGGGGCTCAACGGCTCGGGGAAATCGACGCTGCTGAAGCTGATATCCGGAGTTCTGCAGCCCGACGGCGGAACGGTCCGCACGCGGGGCCGTGTAGCCGGCCTGATCGAAGTGGGCGCAGGGTTCCATCATGACCTCAGCGGCCGGGACAATGTGTACCTCAACGGAGCCATCCTGGGGATGACCGAGAAACAGATCGACGAGATGTTTGATTCCATTGTCGAATTCTCCGAAATTGGAGAGTTCATCGACACGGAAGTGAAGTTCTATTCGTCGGGCATGTACCTCCGGCTCGCGTTCTCCATCGCCGTACACACGGATCCGGAAGTGTTCCTGATCGATGAAATCCTTGCGGTGGGAGACGAACCTTTCCAGCGCAAGTGCATTGCCAAGATCAAGGAGCTCTCAGAACTGGGAAAGACCCTGTTTGTTGTGAGCCATGACCTGGATTTGGTTGCCACAGTCTGTGAACGCGGCGTACTTCTGGAACACGGCGAGGTGATCATGGATGGCGAGGTGCATTCCGTTGTGGCAGAACTGAGGCGGCGTTCCGCGCAAACGGAATCCGAGGATAGTTTGTGAMTKHGHVAISCIDLRKQFVLRHTRSLKEALVWLVKGRKGDLSKKFLALNHVSLEVRQGETVALMGLNGSGKSTLLKLISGVLQPDGGTVRTRGRVAGLIEVGAGFHHDLSGRDNVYLNGAILGMTEKQIDEMFDSIVEFSEIGEFIDTEVKFYSSGMYLRLAFSIAVHTDPEVFLIDEILAVGDEPFQRKCIAKIKELSELGKTLFVVSHDLDLVATVCERGVLLEHGEVIMDGEVHSVVAELRRRSAQTESEDSLPGPT0006725_22433DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_03200870hypothetical proteinATGGCGGGTCAGTCCGACCAGCTGGTCAGGCCCGGAAGCGGACGGGGCCTCCTGGATGTTTACGGCGACCGGTTCCTCCTGAAGCTGCTGGTGCGCAAGGAAATCAAGGTGCGCTACCGGGGTTCTGTGCTGGGCCTGATGTGGTCTTACGTCAAGCCGCTGGTCCAGTTCCTCATTTACTTTGTGGCGCTCGGCATTTTCCTGAACCTCCAGCGCGGTACGCCCAATTACGCGATTTACCTCTTTGCGGGAATTGTCTTGGTCAACTTCTTCACGGAGTCGCTGTCCAATGCCACCCGTTCCATTGTGGACAACCGCGACCTCATCCGAAAGATCTACCTGCCGCGGGAGCTTTTTCCTGTGTCTACGGTATGGGTTTCGGCGGCACATTTTCTCCCGCAGCTTCTGGTCCTGATTGGCGCCTGCCTGGTGGTGGGATGGACGCCGTCGATCCTCCAACTGGCGGCTGTCGGACTGATATTCCTGATGGTCGCGGTTCTCGCCACGGGTCTGGGCCTGATATTTGGTGCCATCAATGTCTACTTTCGCGATTCCGAGAACATCGTCGACATGATCGTTATGGTGGTCACCTGGGCTTCCCCCGTGCTCTACGTCTGGTCGATGGTTGAGCGTGTCATGGGGCCATGGTTCTGGGTGTACCAGCTAAACCCCATGACAGTCGCCGTCGAGGTCTTCCATTGGGCCTTCTGGGAACCCACGCTCAAGGCCGATCAACTGGTGGGCGACGTCATGCCGCCGGATCTTTTCACGCTGTGGCTTCCCGTTGCCATGGTGATCACGCTGATCGTTTTGTTCCTCGGCCAGTTTACGTTCCGGCGCCTCGCCGTTCACTTCGCTCAGGAGCTCTGAMAGQSDQLVRPGSGRGLLDVYGDRFLLKLLVRKEIKVRYRGSVLGLMWSYVKPLVQFLIYFVALGIFLNLQRGTPNYAIYLFAGIVLVNFFTESLSNATRSIVDNRDLIRKIYLPRELFPVSTVWVSAAHFLPQLLVLIGACLVVGWTPSILQLAAVGLIFLMVAVLATGLGLIFGAINVYFRDSENIVDMIVMVVTWASPVLYVWSMVERVMGPWFWVYQLNPMTVAVEVFHWAFWEPTLKADQLVGDVMPPDLFTLWLPVAMVITLIVLFLGQFTFRRLAVHFAQELPGPT0006730_10545DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_032011992glfT2COG1216Galactofuranosyltransferase GlfT2ATGAGTGCCCAAGCAGGAACCATCGACTGGGCAGCAATCCAGCGCATCATCCTCCCTTCACCGGACCAGCCGGACACAGTGTCGCTGTATGTGGACGCCGGAACGGCGAGTGGCATCCGGCTCCGTGAGAATGACGAATTCGCCCGGACGCCGAAGCTGTTGGAAGACAAGCTTCACCTATCCAGTTCGGAGAGCCGGGAGGCGCATTTCGAAGACCTGCTGTCACGGCACTCCATGCGTGTCCGTTCAGGTGAGCAGATCTCGTTCGGTACGTATTTCAACGCCTTTCCGGCGAGTTACTGGCGGCGCTGGACTTCGGTTCGGGAGATCAGGCTGGTGGTCCGGACCAGGGGCACCGGAACCGTAACGGTCTACAAGTCCAATGCCCGCGGATCTGTACAGCGTGTTGACGGCAGGCACGTCGACGGCGATTCCACGTCCGCTTTCGAACTGACGCTTAAGCCCTTTGGTGACGGAGGCTGGTACTGGTTCGACCTGGCAGCAAGTTCCGGCGATCTGGTCCTTGAGGACGGCCAATGGGAGGCGGAAGGCATTTCCCGGCCGAGCGGCCAGGTGACCCTTCAGATCACCACCATGAACAAACCCGACTTTTGCCTCAACAACGCCAGGATCCTGGCTGACAACCCGGAGGTGCTCCGGAACGTCAAGGAGATCCTGATCGTAGACCAGGGCACCCAGAAAGTTCAGGACCAGGGCGATTTTGCTGCCGTCAGCACATCACTTGACGGAAAACTCCGGATCATCAATCAGGCAAACCTGGGCGGATCGGGTGGCTTTGCCCGCGGAATGTATGAGTCCATAGAGAACGGCAGCGACTATGTCCTGCTGTTGGATGACGACATCGTGGTTGAACCCGAGAGCATCACCCGGCTTCTGACGTTTGCGGACTATTGCCGTAAGCCGACGATTGTCGGAGGCCATATGTTCGACCTCTACAACCGAAGCGTCCTGCACACCTTTGGTGAGGTTGTTGACCCGTTCCGGATCGTTCCGGCCGCGCCGCATGCTGACATGGAAACCCGGCACGACTTCAGTGTCTCCAACCTGCGCCAAACTCCCTGGCTTCACCGCCGCGTGGACGTGGACTACAACGGCTGGTGGATGTGCCTTATTCCAACAGCGGTGATCAAGGAAATCGGGCTTTCCCTTCCGCTCTTCATCAAATGGGACGACGCCGAGTATGGACTTCGCGCGAGGGAAGCAGGTTACGCGACAGTATCTCTCCCAGGTGCGGCTGTTTGGCATGTTTCCTGGATTGATAAGGATGATCTGGTGGGCTGGCAAGCCTACTTCCACGCCAGAAACCGGCTCATTACAACCCTGATTCACAGCCCGTACCCAAAGGGTGGCCGGGTGTTGCGTGAGTCTGTCCAGGCCGATGTAAAGCACCTGGTGTCCATGCAGTACTTCACCGAACACGGGAGGATTGAAGCTCTTAAGGACCTTTTCAAGGGGCCGGACGCCCTCCATCAGGTCCTGGCCACGAAGCTTCCGGAGATCAACGCGCTCAAGTCCTCATACCCGGACGCCCAGCTGAAGGACGACGTGGACGACTTCCCTGCGCCGAAGATCGGCCGCGGCCCCATGGGCGGCATCGTCGTCGGGATGCCCAGCAAGAAGGATCTGATCCCGTGGGGGATCAAGACCGTTGCACGGCAGCTGATCAAGACGCCGGGACCCGAGAGCTCCGAGCGGCCCCAGGGCTACCTTGCCCACCGTGATAACCGCTGGTATCGAGTGGCCCACTATGACAGTGTTGTGGTTTCCAACGCCGAAGGCACGGGCGCATCCTGGTACCAGAGGGACCCGAAGAAGCTCAAATCCATGCTTGCGGAAGCGACAGTGCTGCACGCGAAGTTATTCCGCGAATGGGACAAACTCGCCCACGAGTACAGGTCCGCCGTAGCCGAGATCAGCTCCATCGACGCGTGGAAAAAAACGTTCGAGGCGAACACCAAGGACGGGAACTAGMSAQAGTIDWAAIQRIILPSPDQPDTVSLYVDAGTASGIRLRENDEFARTPKLLEDKLHLSSSESREAHFEDLLSRHSMRVRSGEQISFGTYFNAFPASYWRRWTSVREIRLVVRTRGTGTVTVYKSNARGSVQRVDGRHVDGDSTSAFELTLKPFGDGGWYWFDLAASSGDLVLEDGQWEAEGISRPSGQVTLQITTMNKPDFCLNNARILADNPEVLRNVKEILIVDQGTQKVQDQGDFAAVSTSLDGKLRIINQANLGGSGGFARGMYESIENGSDYVLLLDDDIVVEPESITRLLTFADYCRKPTIVGGHMFDLYNRSVLHTFGEVVDPFRIVPAAPHADMETRHDFSVSNLRQTPWLHRRVDVDYNGWWMCLIPTAVIKEIGLSLPLFIKWDDAEYGLRAREAGYATVSLPGAAVWHVSWIDKDDLVGWQAYFHARNRLITTLIHSPYPKGGRVLRESVQADVKHLVSMQYFTEHGRIEALKDLFKGPDALHQVLATKLPEINALKSSYPDAQLKDDVDDFPAPKIGRGPMGGIVVGMPSKKDLIPWGIKTVARQLIKTPGPESSERPQGYLAHRDNRWYRVAHYDSVVVSNAEGTGASWYQRDPKKLKSMLAEATVLHAKLFREWDKLAHEYRSAVAEISSIDAWKKTFEANTKDGNPGPT0024215_127DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ARABINOGALACTAN|LIPOARABINOMANNAN_REMODELLINGCE-REMODELLINGGALACTOFURANOSYLTRANSFERASE_ACTIVITY,PGPT0024215-glft2-K16650NANA
D1-29_032021188glfCOG0562UDP-galactopyranose mutaseGTGAACGCTGACCTCGTCATTGTAGGGTCAGGCTTTTTCGGCCTGACAATAGCAGAACAGGCCGCCACTGAGCTCGGCTTGAAGGTAGTCGTCCTCGACCGCCGCCACCACATCGGTGGTAACGCCTACAGCGAGAATGAGGAGCAGACAGGAATCGAAGTGCACCGCTATGGGGCGCATCTTTTCCACACATCCAACGAGCGCGTTTGGGAGTATGTCAATCGGTTTACCACGTTCACCAACTATGTACATAAGGTCTATGGAGTCCATAAGGGCGAGGTGTATTCGCTGCCCATCAACCTGGCCACGATCAACCAGTTCTTTCGTGCGAACCTGACTCCGGGCCAGGCCCAGGCACTGATTCAGGAGCAGGCAGGGGAGCTTGCGGGTACCGACCCGCAGAACCTCAATGACAAGGGCATCCAGCTGATTGGCCGCCCGCTGTACGAGGCCTTCATCAAGCACTACACGGGCAAGCAGTGGCAGACCGACCCTAAAGACCTGCCCGCGGGCATCATTTCCCGGCTGCCGGTGCGCTACAACTACGACAATCGGTACTTCAACGACAAGTACGAGGGCCTGCCCACGAACGGATACACCGCCTGGATCGAAAAGATGGCAGAGCACCCGAACATCGAAGTCCGGCTCAACACCGACTTCTTTGACGAGTCGCACGAGTACAGCAAGGACAAGGTAGTGGGAAACATACCGGTGATCTACACCGGACCCGTGGACCGGTACTTCGACTTTGCCGAGGGCAAGCTTTCCTGGCGCACCATCGATTTCGAGGAGGAAGTCCTCGACGTCGGCGATTTCCAAGGAACCTCGGTGGTCAACTACAACGACGCCGATGTTGCCTACACCCGCATCATCGAACCTCGCCACTTCCATCCGGAGCGCAATTACCAAACGGAGAAGACCGTCATCATGCGCGAGTTCTCCCGTGCGGCAGAGAATGGCGATGAACCGTATTACCCCATCAACACGGCATTGGACCGGGAGCGTTTGCTGAAGTACCGCGACCTGGCCGCTGCCGAGTCCGATGTGCTCTTCGGCGGGCGTCTGGGCACCTACAAGTACCTGGACATGCACATGGCCATCGGCTCAGCCCTGACCATGTTCGAAAACCAGATTCGCCCGCATTTTGCCGACGGAGCGAAGTTTGAAAGTGGAGGAGTAGAAGCATGAMNADLVIVGSGFFGLTIAEQAATELGLKVVVLDRRHHIGGNAYSENEEQTGIEVHRYGAHLFHTSNERVWEYVNRFTTFTNYVHKVYGVHKGEVYSLPINLATINQFFRANLTPGQAQALIQEQAGELAGTDPQNLNDKGIQLIGRPLYEAFIKHYTGKQWQTDPKDLPAGIISRLPVRYNYDNRYFNDKYEGLPTNGYTAWIEKMAEHPNIEVRLNTDFFDESHEYSKDKVVGNIPVIYTGPVDRYFDFAEGKLSWRTIDFEEEVLDVGDFQGTSVVNYNDADVAYTRIIEPRHFHPERNYQTEKTVIMREFSRAAENGDEPYYPINTALDRERLLKYRDLAAAESDVLFGGRLGTYKYLDMHMAIGSALTMFENQIRPHFADGAKFESGGVEAPGPT0022675_433DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854NANA
D1-29_03203987iolXCOG0673scyllo-inositol 2-dehydrogenase (NAD(+))GTGGCAAACTTACGTGCCGGACTTATCGGCCTCGGAATGATGGGCAGGCACCATGCCCGCGTGCTGCGGGAGCTCGACGGCGTGGAGCTGGTCGCCATGGCTGATTCCTTCGGTGACTCGCATGGTGTTGCCAATGGCTTGACGGTCCACGACAAAGTCGAGGACATGATTGCCCAGGGCATCGACTGTGCCGTAGTGGCAGTACCCACTGTCCTGCACGAGGAAGTGGCCATGCAATTGGCCGAGGCGGGCATCCACTGCCTCGTCGAAAAACCGATTGCCAATGATTCCGAGTCGGGCCGTCGGATCGCAGCTGCCTTCGAAAGGAAGGGGCTGATCGGAGCCGTGGGCCACATCGAACGCTTCAACCCGTCCCTGCAGAGCCTGCGGGCGCGGCTTGAAGCCGGGGATCTTGGCGACGTGTACCAGATCTCCACGCGCCGGCAGGGTCCTTTTCCTGCTCGGATCGCAGATGTGGGAGTGGTCAAGGACCTTGCGACGCATGACATCGACCTGACAGCGTGGCTTGCCCAGAGCAACTACGTCGACGTGGTGGCCCACACCACATCGCGCAGCGGGCGGGAGCACGAGGACATGGTCACAGCCATCGGTCACCTGGGTGATGGCATCGTCACCAACCACATCGTGAACTGGCTTTCACCGATGAAGGAGCGCACCGCCGTCGTCCTGGGCGAGCGGGGTGCCTTCATAGCAGACACCATCTCCGCCGACCTGACGTTCGTGGAGAACGGAACGCTCCAGACGGAATGGGAATCGATGGCGGCATTCCGTGGTGTATCGGAGGGATCCAGCACGCGGTTCGCCCTTGCGAAGCGGGAACCGCTGAAAATGGAGCACGAAGCGTTCCGGGATGCCATCCTCGGAAAATCCATGAACGTGGTCACGATGGCCGAAGGACTGGAAACTCTCCGCGTCGCAGAAGCCGTGCTGGAATCCGCGAGGACCGGCGGCGTCGTCGCCCTCTGAMANLRAGLIGLGMMGRHHARVLRELDGVELVAMADSFGDSHGVANGLTVHDKVEDMIAQGIDCAVVAVPTVLHEEVAMQLAEAGIHCLVEKPIANDSESGRRIAAAFERKGLIGAVGHIERFNPSLQSLRARLEAGDLGDVYQISTRRQGPFPARIADVGVVKDLATHDIDLTAWLAQSNYVDVVAHTTSRSGREHEDMVTAIGHLGDGIVTNHIVNWLSPMKERTAVVLGERGAFIADTISADLTFVENGTLQTEWESMAAFRGVSEGSSTRFALAKREPLKMEHEAFRDAILGKSMNVVTMAEGLETLRVAEAVLESARTGGVVALNANANANANA
D1-29_032041092perCOG0399GDP-perosamine synthaseATGAGCCACGAGTTTATCCCGCCCGCCAAGCCGATCATCGGCGATGACGAGCGCGCGGCCGTTGATGCAGTACTGGCATCGGGGCAGTTGGCGCAAGGGGCGGAGGTCGCGTCGTTCGAGCAGGAGTTCTCCGACGTCCTGCTCGACGGGCGCGCCGCGGTGGCCGTCAACTCCGGAACTTCAGGCCTCCATCTCGGGCTTCTTGCTGCCGGGATCGGGCCGGGGGACGAAGTGATTGTCCCTTCCTTCACGTTTGCCGCCACCGCCAACTCAGTGGCTTTGACCGGGGCAACTCCTGTGTTCGCGGACATTGAGCCGACGTACTTCACCCTTGACCCGTCCTCCGTCGAATCCAGGATTACGGATAAGACGGCTGCCATCATGCCCGTGCACCTGTATGGCCACCCCTTTGACGTCGACGCTATCGGCTCCCTTGCGTCCAAGCATGGACTCAAGGTATTTGAGGATGCAGCCCAGGCGCACGGGGCAGCGGTCAACGGCCGGAAGGTGGGAACCTTCGGCGACTTCGCCATGTTCAGCCTGTATCCGACGAAGAACATGACCTCCGGTGAGGGTGGAATGGTCAGCACCGGCCTGGCGGATGTCGAACGCCGCCTACGCCTCCTCCGGAACCAGGGGATGGAACGCCAGTACGAAAACGAACTGGTCGGCTTTAATGCACGGATGACCAACATTCATGCTGCCATCGGCCGTGTGCAGCTCACAAAGGTGCTGGGCTGGACCAGGACCCGGCAGGAGAATGCCGCTTTCCTGGACGAAAATATTGAGGGTGTCACTACCCCAACAGTTGCTGCGGGGTGCGAGCACGTGTACCACCAGTACACGATCAGGGTCGATGATGACAGGGACGGCTTCGCGAAGGCTCTGCGTGAGGAGTACAACGTGGGTTGCGGGGTTTACTACCCGATACCAAATAACCAGCTGGCTCCGTTCCGGACCCAGGACGACCTGCCGGCCACCGATGAGGCCGCCAGAACGGTTCTTTCCCTCCCAGTTCACCCGTCCCTGAGCCAGAACGACCTGGAGCGGATTGTCGCTGCGGTGAACGCACTCGCGAAGGCTGGCAGCTAGMSHEFIPPAKPIIGDDERAAVDAVLASGQLAQGAEVASFEQEFSDVLLDGRAAVAVNSGTSGLHLGLLAAGIGPGDEVIVPSFTFAATANSVALTGATPVFADIEPTYFTLDPSSVESRITDKTAAIMPVHLYGHPFDVDAIGSLASKHGLKVFEDAAQAHGAAVNGRKVGTFGDFAMFSLYPTKNMTSGEGGMVSTGLADVERRLRLLRNQGMERQYENELVGFNARMTNIHAAIGRVQLTKVLGWTRTRQENAAFLDENIEGVTTPTVAAGCEHVYHQYTIRVDDDRDGFAKALREEYNVGCGVYYPIPNNQLAPFRTQDDLPATDEAARTVLSLPVHPSLSQNDLERIVAAVNALAKAGSPGPT0022785_1466DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PEROSAMINE_MODIFICATION,PGPT0022785-per|rfbE-K13010NANA
D1-29_03205588wbpDCOG0110UDP-2-acetamido-3-amino-2,3-dideoxy-D-glucuronate N-acetyltransferaseGTGATAGAGGTTGCGGACAACGCCGACGTGTCAGCTGAGGCGGTCATTGGTGAAGGTTCCAAAATTTGGCATCTGGCCCAGATACGCGATGGGGCACATCTGGGCGTAAATTGCGTCGTTGGCCGAGGCGCCTACATCGGGACCGGTGTCACGATGGGGGACAATTGCAAAGTCCAAAACTATGCGCTCGTGTATGAACCGGCAGAACTGGAAGACGGCGTCTTCATCGGGCCTGCTGTTGTCCTGACAAACGACACGTATCCCCGGGCCATCACCCCGGATGGCGTGCTTAAGAGCGCCCACGACTGGGTGCCGGTAGGTGTCAGCATCAAACGGGGAGCGTCCATCGGTGCCAGGGCTGTTTGCGTGGCTCCCGTGACGATTGGCCGGTGGGCAACAATTGCCGCCGGTGCTGTCGTTACCAAGGACGTGCCTGACTTTGCCCTCATGGCCGGAGTTCCAGCCAAACGACTCGGCTGGGTTGGAAAGGCAGGGTTTCCACTGAAGCAACGAGGCGATCAGTGGGAATGCCCGGAAACCGGCACCATGTATGTCGAAAACGACGAAATTCTTCGAGAGGTTGATTAAMIEVADNADVSAEAVIGEGSKIWHLAQIRDGAHLGVNCVVGRGAYIGTGVTMGDNCKVQNYALVYEPAELEDGVFIGPAVVLTNDTYPRAITPDGVLKSAHDWVPVGVSIKRGASIGARAVCVAPVTIGRWATIAAGAVVTKDVPDFALMAGVPAKRLGWVGKAGFPLKQRGDQWECPETGTMYVENDEILREVDPGPT0022705_159DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_D_MANNURONIC_ACID_MODIFICATION,PGPT0022705-wbpD|wlbB-K13018NANA
D1-29_032064113hypothetical proteinATGAGGTTTCACTGCACTCTGGCGGGCAGCCCGGGGTCCGTACTGCATGGTCCGCCTTATGAACTGACTATTGAGGCACCCGCCGGCACAACCGGAGCCGAACTTGAGGCCCGGATCGCGGACAGGTTTGGCACGGGCCAGCTCGTCGTTGAGGGCGTGGGCATAGGCCTGATGACGCTTGGAAAACCGCCTCTGGTCCCCGGCGCTGTCCTCGTTGATAAACCCGCTAACGCGCCTTCACTGAGGCCACGCCGGCCCAGCTCCCAGCCGCCCCCTTCCCTGGCACTTGCTGTTCATAGTGGCGCCGGAGCAGGGACGGTGGTGCCGCTGCAGCGGGGCACCTACACCATTGGCCGTGGGAACGCAGACATACTCATACCCGACACAGAGCTTTCCAGGGAACACGCCCGCCTGGTGGTCACAGATACCGTCATAACGATCGTGGATCTCGACAGTGTCAACGGTACTGAGGTGGATGGGGAGCGCATCAGGAACGCCGCCATCACCACCGAATCGGTTATTCATTGCGGAAATTCGACCATGTCCCTGGTCGTTCTGGCCCAGCCTGGGCCCGGCCTGGGCGAGGCAGGAGCCTCGGTGGAGGAGCCTCTCGTTGTCAGCCAGCGCGTTGAAGCCACCAATCGTACAGCGCTTCTGCTCACCGCTGTGCTCCCCCTCGCCATCGGCGTAGGGCTTGCCGTTGTCACGGGAATGTGGATCTTCCTGGCTTTCACTGCAGTCTCGGCAGTATCCATCATCGTGCCTGTGTTTTCCGGTCGGCGTCAGCGGCGTGCGCTGGCCGCTGCAGTCATGGCAGCGATCCGGGAAGACAAGGATCGACGACGGCGGTCCGCCCCGCCGCTTTCCGTCCTGGTTATCGCCACCCAGCATTCGGAGCAGGGGACGGCAGCACCTGGAGCCCCTGCTGACCCTATCTGGCTGCGGCTGGGCCTTGCTGTCCAGCCGGCCAATCTACGCTTTGAGCCTGCGGATCCCGACAAGGCCATTCCCACTGCAGGCCTGATGCCCTTAACTCTCGATCCTGCCCGGTTGGTGGCGACAGTCCGGGGTTCGCGCCAGGCAGTAGACGGCCTGGTACGGTCAGCCGTGATGCAGCTGGCCGGCTACTCCCGGGCCCGCGCTTCCCGCATCCTGGTACACGGCGCTGCCCAATGCCTGCCGCTCAGCGCACGCTATCTGCCCGCCGTCACACTTTGCAGCAATACGTCCTCGGTGACAACACTCCTCGAATGTGGCTGGGGGCCTGCCTTCAGCCATGGTGTCCTGATCCTTTCAGGTGCCGCGGACACCGCGGAGACCCTGGCCGCGATTATCGCGAAAGCAAAGCAATTCAACTGGCAGGTAATTCATTTCTCGTTCGGGGATAGCTCTCCCGTGCTTGCGGATATGGATCTCCATGAGCAGGGCACGCCGCGTCGAATGCCAGCCGGGAACATTCCGTTTCTGCCGGATCTGGCGCCTGTGCCCGTCTTTGACCGTTTCTGCAGGGAATTGGCGGGGACCGTTGCCAGTTCCGGCAGGGCTGAAAGGACAGTCCCGTCGAGATGCTCGTTGGCTGAACTGATTCCCTCCTCATCGCTTGAAGTATCTTCGCGCTGGACCAATGGCCACTTGAGGCCCGGCCTTGTTGTGCCCCTGGGCCGTAGCGCCGAGGGAAGCCGCCTGCTGGATCTCCAGACCGATGGGCCGCATCTTCTGGTTGCAGGCACCACCGGGTCAGGCAAATCCGAACTCCTGCGCACCCTGACCTTGGGCCTATCACTCACCTACCCCCCGGACCGAATCAATTTCCTGTTCGTCGATTTCAAGGGAGGTTCGGGGCTTGGACCCCTGACAGGGCTTCCCCACTGTGTAGGAATTCTTACCGACCTGAGTACTCACGAACTTGAGCGTTGGTTGGCCTCACTTCGCGCCGAGGTCCGGGTCAGGGAAGAGATGCTCGCTTCGGTCCAGGCACCCGATCTCATGTCATACACGGCAAGCCAGGCGGGCAAGGATTCGCCACTTCCCCATCTCATCGTGGTCATCGATGAATTCCGCATGCTCGTGGACGATGCCCCGAATGCTCTGCAGGAACTGATGCGGATCGCCGCGATAGGACGCTCTCTCGGAATCCACCTGATCATGGCCACGCAACGTCCCCAGGGTGCACTCACGGCCGACATCCGGGCCAACGTGACAACCAGCATTGCGCTGCGGGTCCAGTCGGAGATGGAGTCGGTGGACATCATCAACTCCAAGGCCGCGGCAGCAATCAGCGTGGATACGCCGGGGAGGGCCTTCCTTGCCCGGGGCACGGAAGCGCCTCAGGAATTCCAGGCGGCCTCGATAGGGAGCGGGGCTTTAGTGGCCGAAGAGCCAGACATCACCATCCGGCTGGCCAGCGAGGCGCTTCAGGCCACCATAAACCCCGACCTTCCAGCGTCGGACCCAATTCCCGTAACACCCGTGCAGGCAGCGGCCCCGCATGTGAAGGCCACAACGGATGTCTGGAATGCCCTGGGTGGGCAACCCGTCCGGCGTCCTGTCGCCGCTGCACTTCCCCGCGTTCTGGCCGAAGACGGCACCCCGGTCCAGGTCCTTGCCGAGGCCACGCTCCCGGCATGGCTCCAGGAACACACCGGGCGCGGGTGGTCGATCAATCTGGGATTGATGGATCTGCCTAACGAACAAAGGATTGCCCCGGTCATCTGGCAGCCGGCCCGCCACGGGCATCTGGCCCTTATCGGCGGACCCGAGTCAGGTGCGGCAGAGGCCCTGGTTTTTGCAGTGCAGCAGCTTGTTTCCGACGCCGCAGAGTCTCACCTTTATGTACTGGACGCCGGCACTACCCTCAGCGCCGTCGCCTCCCATCACCGAACTGGTGCCCTGGCTGGTTTGGGCGAACTGCGGCGCGCCGTGCGCATCCTGGAACGACTGGCCAGCGAGCAGTCCCAGCGACTCAGCCGAGCCTCCAAAGACGACGAGACGCCCTTGATCCTGGTGATCGCCGGCTGGGGCTCGTGGGCCTCGGCACTCCGGGCCGGCCCCTTGGCCTGGGCCGAAGACCTGGTACACGATCTTGTCCGGGATGGCGGAAGTGCCGGCTTAACAGTGATCCTCTCAGGCGAACGAGAACTGGTGACTGCCAGATTCTTCGCATCAGTTCCCAGCCGGGTGTATTTTCCGGCAGGTTCCAGCGAGGACAGCCGTCTTGCCTGGCCAAGACTCCCAGCTACCGAAATGCTCCGGGGAAGGGCAGTGGCTTTCGGCGCTCTTTCGGGCGGGGAGCCCGCAGTCTGCCAGTTCTACACCCCTTCCCACAGCGGGTCGGAGCCGGCCTCTGAGGAACGAAAGCCCGGGCAACATGCACTGCAGGCGACCCCCTTCCGGGTGGAAGCGTTGCCGGTGATGCTCCCCGCCCACGAGATTCCGAGACAACCGGTGAGGGAGGCACCCGCCGATCGGGCCTTTGCGAGGCACCAGCCGAGGCCCGTGTCTGAGCGCTACCGGCGCCTTCTGATTGGAGTGGGCGGTGACGAATTGGCGCCGGTGTCCGTGACGGTCCCTGCCGGCAGTGTATTTGCGGTGCTTGGTGGCCCCGCTTCCGGAAAAACGAACTTCGTGCAGCTGCTTCCCGCCCTTAACGGCGATGCCGGCCACTGGCTCGAACCTGGCGAGGGGACAAACCCCATCGACTACTGGTCGGATATCCTACGCAAGGCTTCGGCGGGCGAGGTGGACCGGAGATCGACAGCGCTGGTTGATGATGCAGATCTACTGCCCGCGGTCACGCACCAGGAGTTGGCGGACCTCAATGCGATGGGCCATACAGTGGTCGTGACTGCACGCTTCAGTTCAATGCTTCTTCAGAGGGTTCCTATAATGCTGGCCGCCCGTGGCCTTGGAAGCGGGTTGCTGATCGCTCCCCGCAGTCTGCTCGACGGGGATTTCTTCGGCACGCGGTTCGACGTGGAACCACATCCCCCGCCGGGAAGGGCAGTCCTCATCTCAGACGGCCGGTCAATGCCTGTCCAGCTGGGCTGGGTCCCCCGGAAGGCTCAGACGCAGCATCAGCACGGCCAGGTTCCTCCACCCACTACTGACACTTAGMRFHCTLAGSPGSVLHGPPYELTIEAPAGTTGAELEARIADRFGTGQLVVEGVGIGLMTLGKPPLVPGAVLVDKPANAPSLRPRRPSSQPPPSLALAVHSGAGAGTVVPLQRGTYTIGRGNADILIPDTELSREHARLVVTDTVITIVDLDSVNGTEVDGERIRNAAITTESVIHCGNSTMSLVVLAQPGPGLGEAGASVEEPLVVSQRVEATNRTALLLTAVLPLAIGVGLAVVTGMWIFLAFTAVSAVSIIVPVFSGRRQRRALAAAVMAAIREDKDRRRRSAPPLSVLVIATQHSEQGTAAPGAPADPIWLRLGLAVQPANLRFEPADPDKAIPTAGLMPLTLDPARLVATVRGSRQAVDGLVRSAVMQLAGYSRARASRILVHGAAQCLPLSARYLPAVTLCSNTSSVTTLLECGWGPAFSHGVLILSGAADTAETLAAIIAKAKQFNWQVIHFSFGDSSPVLADMDLHEQGTPRRMPAGNIPFLPDLAPVPVFDRFCRELAGTVASSGRAERTVPSRCSLAELIPSSSLEVSSRWTNGHLRPGLVVPLGRSAEGSRLLDLQTDGPHLLVAGTTGSGKSELLRTLTLGLSLTYPPDRINFLFVDFKGGSGLGPLTGLPHCVGILTDLSTHELERWLASLRAEVRVREEMLASVQAPDLMSYTASQAGKDSPLPHLIVVIDEFRMLVDDAPNALQELMRIAAIGRSLGIHLIMATQRPQGALTADIRANVTTSIALRVQSEMESVDIINSKAAAAISVDTPGRAFLARGTEAPQEFQAASIGSGALVAEEPDITIRLASEALQATINPDLPASDPIPVTPVQAAAPHVKATTDVWNALGGQPVRRPVAAALPRVLAEDGTPVQVLAEATLPAWLQEHTGRGWSINLGLMDLPNEQRIAPVIWQPARHGHLALIGGPESGAAEALVFAVQQLVSDAAESHLYVLDAGTTLSAVASHHRTGALAGLGELRRAVRILERLASEQSQRLSRASKDDETPLILVIAGWGSWASALRAGPLAWAEDLVHDLVRDGGSAGLTVILSGERELVTARFFASVPSRVYFPAGSSEDSRLAWPRLPATEMLRGRAVAFGALSGGEPAVCQFYTPSHSGSEPASEERKPGQHALQATPFRVEALPVMLPAHEIPRQPVREAPADRAFARHQPRPVSERYRRLLIGVGGDELAPVSVTVPAGSVFAVLGGPASGKTNFVQLLPALNGDAGHWLEPGEGTNPIDYWSDILRKASAGEVDRRSTALVDDADLLPAVTHQELADLNAMGHTVVVTARFSSMLLQRVPIMLAARGLGSGLLIAPRSLLDGDFFGTRFDVEPHPPPGRAVLISDGRSMPVQLGWVPRKAQTQHQHGQVPPPTTDTPGPT0030468_799DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-29_03207498hypothetical proteinGTGTCAAGACCCCCGGTGAACCCTGAAAATCCGTCGTCCGACCCGTCCCCGTACGGTTCTGGTTCCCACGGCGGGGAAGAACCAAAAGCTCCGTCGGCACCGGTTCGGCCGCGCCCCATACTGGTCATAGCGCTCATCGTTGCAGCAGAAGCCACCGCCCTGCTTGTTGCTGCCGGCTGGTACGGGTTCGAGCTTGCAACGGCTGCACCTGTCCGGTCCTTCTGGGGCGCCGTGTTCACGCTTGCGCTGCTGCTTGCATTCTCCGCATGGCTGTATTCCGTTGCCGCCTTTCTGATCCGCGGTTACCGCTGGACCAGGGCAGCGGCCCTGGTTGCGCAGCTGTTTGTTCTGACCATAGGCGTTCCGACGCTGAGCGGCGGAGTTGTGTGGGCAGGGATTGCCATGGTGGTGCCGGCGTTGGTGGCCATCGTGCTTCTTTTCGACCGGCGCGTCATCACCTATGCTTCCCGGACAGGCGGAGCACCTCCGGCTTTATGAMSRPPVNPENPSSDPSPYGSGSHGGEEPKAPSAPVRPRPILVIALIVAAEATALLVAAGWYGFELATAAPVRSFWGAVFTLALLLAFSAWLYSVAAFLIRGYRWTRAAALVAQLFVLTIGVPTLSGGVVWAGIAMVVPALVAIVLLFDRRVITYASRTGGAPPALNANANANANA
D1-29_03208267whiB1Transcriptional regulator WhiB1ATGGAGCAACTGATCAGCATGGATTGGCGTAACCGCGCAGCGTGCCTTGACAAGGACCCGGAACTGTTTTTCCCCGTCGGAAATACGGGCCCTGCCCTCCTCCAAATCGAGGAAGCCAAGAGCGTCTGCCGCCGGTGCCCGGTTGTTGACACCTGCCTGCAGTGGGCTCTCGAATCGGGACAGGATGCAGGCGTGTGGGGTGGCATGAGCGAGGACGAGCGCCGTGCCCTGAAGCGCCGGGCAGCACGGGCCCGCCGCGCCTCCTAAMEQLISMDWRNRAACLDKDPELFFPVGNTGPALLQIEEAKSVCRRCPVVDTCLQWALESGQDAGVWGGMSEDERRALKRRAARARRASNANANANANA
D1-29_032091470pdtaSCOG3920putative sensor histidine kinase pdtaSGTGGCAATCTTTACGGACCCTATCAGGGAGCATGCTGATTTTGGGCCGGGCGATGCCGAATGGCTGCACCTCCTGGTGGGCGACTGGCAGATGGTTGCTGACCTTGCCTTTGCCGACTTGGCGCTGTGGTTTCCGCACCCTGAATACGGCTATGTTGCCCTTGCCCACGTCCGGCCCTCAACCACGCATACCGTTTTCCACGGGGACTTTGTGGGTGAGGGCATCCGCTCCGATCTGCAGCCACTGGTTGACAAAGCCTGGGAAAGCCGCGCCATAGAACGGTCCAGTGAAACCAACTGGAACAGCGACATGGCTCTGCGGGTGGAAGCAGTACCCATGGTCCGGAACGGCCGCACCCTTGCTGTTGTCACCACCCACATGGACCTGTCCAGCTCCCGGATGCCGTCCCGCCTTGAGCTCACCTACCGGCAGTGCGCCTATGACCTGCTCCGGATGGGGACGCTGGGTTTGTGGCCCGACTTTGCATCCCCGACAGGCTCCCGGCGCGGTGCTCCGCGTGTGGGGGATGGCCTCATCAGGCTGGACGCAGAGGGCATCGTGCAATATGCGAGCCCCAACGGCGTATCGGCGTTTCGACGGCTGGGTGACGGCGAATCGCTCGAAGGCCGCTCCCTGGCCGAAGTCACTGCCAGCCTGCTCAAGGACCGCCGGATGGTGGACGAGACCCTGCCCTTGGTGGTGACGGGCCGGATGCCATGGCGGAGTGAAATTGAATCCCGCGGCGTGAGCCTTTCGCTCCGGGCCATCCCGCTCCGGGACGAACAGCAGCGTTTTGGCGCGTTGGTGCTCTGCCGAGACGTTTCTGAGCTGCGGCGCCGGGAGATGGAACTGGTGACTAAGGACGCCACCATCCGCGAAATCCATCACAGGGTGAAGAACAACCTGCAGACCGTGGCTGCGCTGCTGCGTATGCAGTCCCGCCGCATGGTCAGCGACGAGGCCAAACAGGGCCTCGAGCAGGCGATGCGCCGTGTTGCCACCATCGCTCTTGTCCATGAGACCCTGTCCCAGGGGTTGGCGCAGAGTGTTGATTTTGATGAGCTGATCGGCCGGCAGTTCAGGCTTTCAGCAGAGGTTGCCTCTCCATCCCAACAGGTGAGGACCGAACGGGCAGGCCTTTTTGGAGAACTGCCGAGCGACTTCGCCACCCCCCTGGCTCTCGTGATCAACGAACTGGTGACCAACGCCGTCGAGCATGGCCTTGAAGGACGCGCGGGAACGGTCTGGCTCCTGGCTGATCGTTCCGAAGAGGAGGACGGCGAGGAACTTCTGACCGTTACTGTGGCCGATGACGGTGTGGGGCTGCCTGATACACCCCATGTGGAAGGCCTTGGTCTGCAGATCGTCCGGACCCTTGTGACCAGTGAACTGGGAGGCTCGATCCAATGGCAGCCGCGGGAAGGCGGCGGGACCGCTGTCCAGATCCGGCTAATCCTGGCCTCAAAGTGAMAIFTDPIREHADFGPGDAEWLHLLVGDWQMVADLAFADLALWFPHPEYGYVALAHVRPSTTHTVFHGDFVGEGIRSDLQPLVDKAWESRAIERSSETNWNSDMALRVEAVPMVRNGRTLAVVTTHMDLSSSRMPSRLELTYRQCAYDLLRMGTLGLWPDFASPTGSRRGAPRVGDGLIRLDAEGIVQYASPNGVSAFRRLGDGESLEGRSLAEVTASLLKDRRMVDETLPLVVTGRMPWRSEIESRGVSLSLRAIPLRDEQQRFGALVLCRDVSELRRREMELVTKDATIREIHHRVKNNLQTVAALLRMQSRRMVSDEAKQGLEQAMRRVATIALVHETLSQGLAQSVDFDELIGRQFRLSAEVASPSQQVRTERAGLFGELPSDFATPLALVINELVTNAVEHGLEGRAGTVWLLADRSEEEDGEELLTVTVADDGVGLPDTPHVEGLGLQIVRTLVTSELGGSIQWQPREGGGTAVQIRLILASKNANANANANA
D1-29_032104854gdhCOG2902NAD-specific glutamate dehydrogenaseATGTCGTCTGGATCCAGCGTGGAGGATCAGCCCCTTTCCATTGGAGACCGTGAGGGTTTCCTCGGGGACTACTACCAGCACCTAGCCGAAGAGGACGCCCGGAGCTATTCGGCGGAAGTATTGGCCAACCGCGCCGAAACCCACCGCGAGGTCGCCGCAGTTCGATCGCCGGGGCAGGCCAAGATATCGGTCATCAACGAGGAAGACAGCAGTGTTGTCTACGTTGTGACGGACGACATGCCTTTTCTGGTCGACTCTGTTAATGCTGAACTGGTGCGCCAGAATGCAGCCATTCGCCTGGTGGTCCATCCGCTGTTCATCGTGACCCGAAACCGGGACACGGCGGAGCTTGTCAAGGTGGACAGGGTTCCTTCCAGCGTTGGCATTTCCAGTGGTGACACCGCCACGATGCCGAGCCTGTCGCACCTGATCGCCCAAGGTGAAAACGCCTCGCACATGGAGTCGTGGATTGCCGTCGAAATCGACCGCGTCTCCGACGACGTCCGGGCATCCTTGATCGCGGGTCTGGAACGCGTGCTGGGGGACGTACGGGCCGCCGTTGAAGACTGGCCGAAGATGCGAAACAAGGCCCTGCAGATTGCTGAAAGCCTGGACAAGGTCGCCAATCAGGCACAGATCGCGGAGCTGCGGCAGGCAAAGGATCTCCTCCGCTGGCTCGACGACGGAAACTTCACCTTTCTGGGGTACCGCGAGTACGACCTGGTCAACGTCGATGGCGAAGACGTCCTGGAACTGCGCGAGGGCAGTGGGCTTGGCCTGCTTCGGGCCGGCGAGGACTCCCATCATGTGCAGCACCTGACAGAAGCCGGCCGGAAGAAGGCAAGGGAAAAGCGGGCCCTGGTCATTACCAAGGCGAACTCGCGGTCCACTGTCCACCGCCCTGCCTACCTTGACTACATCGGTGTGAAAAGCTTCGACGCTGCCGGCAATGTCAACGGTGAGCGGCGCTTTATCGGGCTCTTCGCCACCAGTGCCTACGCCGGCTCCGTCAGGAACATACCCATCGTCCGCGAGAAGGTGGACGCTGTGCTGCGGAGCGCAGGGTTCCCGCCCGATTCGCACTCGGGCAAGGACCTCCTGGGAATCCTGGAAACGTACCCCAGGGACGAACTGTTCCAGATCGAAACAGAGGACCTGGCCGCGATTGCCACCGGCATCCAAAAGCTGCAGGAGCGCCGGCGGACCCGGCTGTTCCTCAGGCCGGACATCTACGGCAGGTTTATGTCCGCCGTCGTCTATCTTCCCCGGGACCGTTACACCACCAACGTCCGGCTCCGTATCGAGGAGGAGCTGAGGGAGACCTTCCAGGCGGAGTCCATTGATTACGAGGCGCGGATGACGGAATCCGCGCTTGCCCGCCTGTTCTTCCGGATCCGGCTGGCTAAAGGCGCGGTTGTCAACCACGTCAACGCCGAAGAACTGGAACGGCGGCTGGTCCGTGCGACGCGCTCGTGGAGCGAAGGAATCGCCGAAATTCTGCGCGAAAGGGGCCCCGAGGAAAACACCTCCGAGCTGGCGGCCATCTGGGCCGAGGCGTTTCCTGCCGGGTACCGTGTCGACTACGAAGTTGAGGATGCGCTGGAGGACATTCTGCGCTTCGAGAAATACGGTGCGGAAGCGGAGCGGAAAGCCGGAGCCAAGCAGGAGCGGCCAGGGGTCCATGTCTACCTTCCCGAGGGCGCAGGTGCCACGCTGGAGGAAGACGCACGCGTCAAGCTCTACATGCTGGAACCGAAGAGCCTCAGCCAGATATTGCCGTACTTCCACAATCTCGGGCTTGAAGTGCTTGATGAGCGGCCCTTCGAAATCGAGACCGCGGACGGACGCGATTTCTTCCTCTATGACCTTGGTCTGAAATACCCTTCAGCGGTCAACCCGGTGTCCACCGGTGAGCTGCTCGCCGACTCGTTCGGCGCTGCAGTGTCCGGTGCCATTGAATCAGACAGCTTTGACCGGCTTGTTCTCCGGGAAGGAATGCAATGGCGCCAAATCACGGTCCTGAGGGCATATGCCAGGTACATGCGGCAAATGGGAAACACCAACTCCTTTGAGTTCATGGCTGACACCCTGCTGGCCAATCCAAAGGTTACAAAGGGCCTCAGCGCGCTTTTCGAGGCCCGCTTCGATCCCTCACTGAATGACGGGGAACGGACGGCCGCCCAGCAAGCAGTGCGGGCCGAACTCGCGGACTCGATCGAGCAGGTTGCAACGCTCGACGCCGACAGGGTCCTGCGCACATTTGTGAACCTGATCGAATCCACCCTGCGCACGAATTACTTCCAGTACAAGCCGCACCTGAGTTTCAAACTGGATCCCACTGCACTCGAAGGGCTTCCGTTCCCACGGCCAATGTATGAGATCTGGGTGTATTCGCCCCGGGTGGAAGGCGTCCACCTCCGCTTCGGCAAGGTGGCACGCGGCGGGCTGCGGTGGTCCGACCGCCGGGAGGACTTCCGGACAGAGATCCTGGGCCTCGTGAAGGCGCAGACCGTGAAAAACGCGGTCATCGTTCCCACGGGGGCCAAGGGAGGCTTCTTTGCGAAACAGCTGCCGAACCCGGCCGCCGACCGGGCTGCCTGGATGGCCGAAGGCGTTGAAAGTTACAAGACCTTCATTCGTGGGCTCCTGGACCTGACCGACAACCTCGTTACCCGGCCTGACGGCGAAACCCTCGTCCCGCCGTCGGACGTTGTCCGCCACGACGACGACGATTCCTACCTTGTGGTGGCGGCAGACAAGGGGACGGCGACGTTCTCTGACATTGCCAACGGGCTGGCGGCCGAATACGGCTTCTGGCTGGGTGATGCCTTCGCCTCCGGCGGGTCCGTCGGCTACGACCACAAAGCCATGGGCATCACGGCCCGCGGTGCCTGGGAGTCCGTCAAACGCCACTTCAGCGAACTTGACCTGGACACCCAAACCCAGCCATTCACTGTGGTGGGCGTGGGAGACATGTCAGGCGACGTCTTCGGCAATGGCATGCTGCTGTCCCGGCACATCAGGTTGCAGGCCGCTTTCGACCACCGGCATATTTTCCTTGACCCGACCCCCGACGAGGAATCCTCGTTCGCAGAGCGGCAGCGGCTCTTTGAACTGCCGCGGTCCTCATGGGATGACTACGACAAGTCCCTTATCAGCGAAGGCGGCGGCGTTTTTGCCCGTCAGGCCAAGGCCATTCCGGTGTCGCCGGAGGTCCGGGCAGCGCTGGGACTGCCGGATGCAACCACGGAACTGAGTCCTCCCGAACTCCTTCGCGCAATCCTCCTCGCCCCGGCAGATCTGCTGTACAACGGCGGGATCGGGACTTATGTCAAGGCGAGCACCGAGACCAACGCGTCTGTGGGTGACAAAGCCAATGACGCGATCCGCGTCGACGGCAAGGACCTGCGGGTCAAGGTGGTGGGTGAAGGCGGAAACCTGGGCATGACCCAGCGCGGCCGGATTGAAGCTGCGTTGCAAGGTGTCATCCTCAATACCGATGCCATAGACAACTCCGCCGGCGTGGACTGCTCCGACCATGAGGTGAACATCAAGATCTTTGTGGACCGGATGGTGGCTGCAGGCAAACTCTCACCGGAGGAACGCGCAGGCTTCCTGGCCTCCATGACAGAGGAAGTGGGCAGGCTGGTCCTGGAGGACAACGTGGACCAGAACATCCTGCTCCTCAACGACCGGATGAAGGTCGCTGAATGGAGCCCCAGCTATGAGCGCCTGATGGACTGGCTGGAAAAGTCGGCGGACCTCAAGCGCGAGCTCGAAGCCCTGCCCACTACTGACACCCTGCATGAACGACTGGCGCAGGGCCAGGGCCTGACTTCTCCAGAGCTCTCGGTACTGTCCGCATACGCGAAGATCGAGCTGACGTCGGCACTGCTCGAGAGTAACCTGGCCGATGATCCCTGGTTCCGCAGGACACTTCGCGAGTACTTCCCGCAGCAGCTGAGGGAGCGCTTCGACGCGGAGCTGGATACCCATCCGCTGCGACGCGAGATAATCGCCACGGTAGTCGCCAACGACATGATCAACATGGGCGGGATCACCTTCGCCTTCCGCACCATGGAGGAGACATCAGCCACGGAAGTGGCGGTGGCCAAGGCGTTCGTGGCACTTCGGGAAATCTATGAGCTTGACGCCATGGTGGGTGAACTGAACAGCCTCCCGGCATCATTCCCCACAGAAAACTGGAGCACCATCCACCTGGACATCCGGCGCTTGCTGGACCGCGCCGTCCGCTGGCTTCTTAGCCAAGGCGGGGCTTCACGGCCCATTGCCGACATCGTGGCCGAATTCAAGCCGCTCATGGATCCTATGCGTGCGCGCCTCCTGGAATACCTGCGCGGGGAGGATCGTGAGAGGGTTGCCGGCTGGCTCGAGACAGGCCGCGAGTGGGGGCTTCCGGAAAATCTCGCCCTGCGTTGGGCGGAGCTTTTCGAGAGTTTCGTGCTGCTCGACATCGCCAAGATCGCACATGTCCGCAAGGACCCGGTCGAGGAGATCGCGGCCGTCTACTACACAGTGTTCAACCGCTTCCACGCTGACTCCCTGCTCGAACGGATCAGCAGCCTGCCACGGAATGACCGGTGGCAGGCCCTGGCCCGGGCCGCGCTCCGGGATGATCTGTACTCCACCATTTCGGACATGACGACGGCGGTGCTCGAGTCAACCGTGGCGGTGACCTCTGCTGAGGACAGGCTGAAGGCCTGGGAAGCGCATAACGCTGAGCAGTTGGGCCGTGCCAAGAGCATGTTTGACGAGGTGAACTCGCTCGAAGCCGACGATATGGCTTCACTGTCGGTAGCATTGAGGCTCTTGAGGTCAATCGTCCGGCGCTAGMSSGSSVEDQPLSIGDREGFLGDYYQHLAEEDARSYSAEVLANRAETHREVAAVRSPGQAKISVINEEDSSVVYVVTDDMPFLVDSVNAELVRQNAAIRLVVHPLFIVTRNRDTAELVKVDRVPSSVGISSGDTATMPSLSHLIAQGENASHMESWIAVEIDRVSDDVRASLIAGLERVLGDVRAAVEDWPKMRNKALQIAESLDKVANQAQIAELRQAKDLLRWLDDGNFTFLGYREYDLVNVDGEDVLELREGSGLGLLRAGEDSHHVQHLTEAGRKKAREKRALVITKANSRSTVHRPAYLDYIGVKSFDAAGNVNGERRFIGLFATSAYAGSVRNIPIVREKVDAVLRSAGFPPDSHSGKDLLGILETYPRDELFQIETEDLAAIATGIQKLQERRRTRLFLRPDIYGRFMSAVVYLPRDRYTTNVRLRIEEELRETFQAESIDYEARMTESALARLFFRIRLAKGAVVNHVNAEELERRLVRATRSWSEGIAEILRERGPEENTSELAAIWAEAFPAGYRVDYEVEDALEDILRFEKYGAEAERKAGAKQERPGVHVYLPEGAGATLEEDARVKLYMLEPKSLSQILPYFHNLGLEVLDERPFEIETADGRDFFLYDLGLKYPSAVNPVSTGELLADSFGAAVSGAIESDSFDRLVLREGMQWRQITVLRAYARYMRQMGNTNSFEFMADTLLANPKVTKGLSALFEARFDPSLNDGERTAAQQAVRAELADSIEQVATLDADRVLRTFVNLIESTLRTNYFQYKPHLSFKLDPTALEGLPFPRPMYEIWVYSPRVEGVHLRFGKVARGGLRWSDRREDFRTEILGLVKAQTVKNAVIVPTGAKGGFFAKQLPNPAADRAAWMAEGVESYKTFIRGLLDLTDNLVTRPDGETLVPPSDVVRHDDDDSYLVVAADKGTATFSDIANGLAAEYGFWLGDAFASGGSVGYDHKAMGITARGAWESVKRHFSELDLDTQTQPFTVVGVGDMSGDVFGNGMLLSRHIRLQAAFDHRHIFLDPTPDEESSFAERQRLFELPRSSWDDYDKSLISEGGGVFARQAKAIPVSPEVRAALGLPDATTELSPPELLRAILLAPADLLYNGGIGTYVKASTETNASVGDKANDAIRVDGKDLRVKVVGEGGNLGMTQRGRIEAALQGVILNTDAIDNSAGVDCSDHEVNIKIFVDRMVAAGKLSPEERAGFLASMTEEVGRLVLEDNVDQNILLLNDRMKVAEWSPSYERLMDWLEKSADLKRELEALPTTDTLHERLAQGQGLTSPELSVLSAYAKIELTSALLESNLADDPWFRRTLREYFPQQLRERFDAELDTHPLRREIIATVVANDMINMGGITFAFRTMEETSATEVAVAKAFVALREIYELDAMVGELNSLPASFPTENWSTIHLDIRRLLDRAVRWLLSQGGASRPIADIVAEFKPLMDPMRARLLEYLRGEDRERVAGWLETGREWGLPENLALRWAELFESFVLLDIAKIAHVRKDPVEEIAAVYYTVFNRFHADSLLERISSLPRNDRWQALARAALRDDLYSTISDMTTAVLESTVAVTSAEDRLKAWEAHNAEQLGRAKSMFDEVNSLEADDMASLSVALRLLRSIVRRPGPT0014290_698DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371NANA
D1-29_032111308hypothetical proteinATGAGCATCCCGGTAGTGACAGTCGGGCAGACATCGGAGGATCTGGTCGGCGGCTTGGAGAGGCTGCACGGTCCGGTGACTGTTGTCCGCCGGTGTTCTGAGCTGACTGAACTGCTGGCCGCCTGCCAGAGCGGCCTCGCGCGGGCGGCGGTGGTGGCTGATGGCTGTGAGGAGCTGACAGCTTCACTGGTGGACCGGCTCGGTGCGGTCGGCGTGGCGGTCATTGCCCTGACGGACAGCCCTGACGAAGCAGCCAGGCTCCGGGGGATAGGAGTGGCATCGGCCCTGTCCGGCGTCGAGTCCGCAGCCCTCGCAGGCAGAATCGCCGACGCCGTGTCCCTCCTGTCAGGGTCAGGACAGGAGGCTGTCCCGCGAAGCGGAATGGCCGATCCCGCTGCTGCACTGAGGCCAACTCCAGCATCGCCGGCTGACGTACCGCCAGCTGCCGGCGCCGGCAAGATCATCGCCGTCTGGGGGCCGTCCGGATCCCCCGGCCGGACCTTCGTCGCGGCCAACATGGCGGGGGAGTTGGCAGCGGAAGGGAAATCCGTGCTGCTGATTGATGCGGACAGCTACGGGGCCAGTATCGCGGCCGTTCTTGGCCTGTTGGATGAGTCGGCGGGCTTGGCGCAGGCGTGCAGGCTGGCCGATCAGGGGCTGCTGGATACGGAGGCGCTGCTCCGGGTTGCCACTCCTGTGGCAACAAAGCTGGGCACATTCCGGGTCCTCACAGGAATAACACGTGCCGACCGCTGGACTGAACTGCGTCCGGCAGCCCTGTCCCTGGTCATGGAGCGGGCCAGGGATGTTGCCGACATTGTGGTCGTAGACACTGGATTCTGCCTTGAGTCGGACGAAGAACTCAGCTTCGACACCATGGCCCCGAGGAGGAACGCGGCTACCCTGCGCAGTTTGGAAGTCGCGGACTCCGTCTTTGCCATCGGCGCGGCGGATCCCGTGGGTGTGCCGCGGCTGGTTCGCGGGCTGGTCGACCTTCAGGCAGCCGTTCCCCATGTGTCCCCTGTGGTGGTGATGAACAAGGTCCGCGCCACCGCCGTGGGCAGGGCTCCGGAGCGGCAATTGCGTGATGCCTGGGAACGCTATGGTCCGGAATCGTCGCTGACGGCGTTCCTTCCCGCAGATCCCGCTTCCGCCGATGCCGCACTGCTGGGTGGGTCGTTGCTCCTTGAAACCGCACCTGAATCAAAGCTGCGCAGGGCGATCGCTGATTTGGTTTGTGCACCTGCCCAGCAGAATTCTAAATCCTCTGTGTTTTCTTCCACAGCAAGGCGTCGCGTAAAGGGTTAGMSIPVVTVGQTSEDLVGGLERLHGPVTVVRRCSELTELLAACQSGLARAAVVADGCEELTASLVDRLGAVGVAVIALTDSPDEAARLRGIGVASALSGVESAALAGRIADAVSLLSGSGQEAVPRSGMADPAAALRPTPASPADVPPAAGAGKIIAVWGPSGSPGRTFVAANMAGELAAEGKSVLLIDADSYGASIAAVLGLLDESAGLAQACRLADQGLLDTEALLRVATPVATKLGTFRVLTGITRADRWTELRPAALSLVMERARDVADIVVVDTGFCLESDEELSFDTMAPRRNAATLRSLEVADSVFAIGAADPVGVPRLVRGLVDLQAAVPHVSPVVVMNKVRATAVGRAPERQLRDAWERYGPESSLTAFLPADPASADAALLGGSLLLETAPESKLRRAIADLVCAPAQQNSKSSVFSSTARRRVKGNANANANANA
D1-29_03212645hypothetical proteinATGAGTCCTGAAGATGCAGTCACCGGCCAACGGCTGAAGCGGCCATCGTGGAAGGACCCCAGGCTGCTGGTGGGCGTTCTTCTGGTCCTGTCATCAGTGGTGGGCGTCATCTCCCTTGTTGGCAGTGCCGATCGGACCACCGAGGTCTACGCAGCCAAGGACTCCATCTCAGTGGGCGAAAAGCTGACCCCGGATAACGTCGTCCGGGCCAAAGTCCGGCTGGGGGACAGTGAGCAGCACTACATCACCGTCGAGTCGGGGTTGCCCGAAGGGGTGGTCGCCGTCCAGAGGGTTGGAAGGGACCAGCTGATTCCCAGGGAAAGCCTCGGTGAGGTGGATGCTTTGGACCGAAAACCCGTAGCACTGACCATTGAGGAAACCCTTCCTGCGCAGGCGGTGGCCGGCACCAGGGTTGACGTTTGGGTTGCCTTGCCGGACGCACGCAACGGGTTCAGCGAGCCGCAGCTTCTCCTCCCCGGTGCTGAGATAGCACAAGTCACCGCCGGATCCACAGCTCTCGGTTCGTCCAGGAATACAGTCCTGATGGTCCTGGTGGCCGACGGTCAAATGCCCGCGTTATTGGGAGCACAGGCAAACGAAGCCAAGATCGCCGTTGTCTGGAATCCAGGCGGAGGAGCTTCATGAMSPEDAVTGQRLKRPSWKDPRLLVGVLLVLSSVVGVISLVGSADRTTEVYAAKDSISVGEKLTPDNVVRAKVRLGDSEQHYITVESGLPEGVVAVQRVGRDQLIPRESLGEVDALDRKPVALTIEETLPAQAVAGTRVDVWVALPDARNGFSEPQLLLPGAEIAQVTAGSTALGSSRNTVLMVLVADGQMPALLGAQANEAKIAVVWNPGGGASNANANANANA
D1-29_03213216hypothetical proteinATGCCTCGATTTCTCACGCTCGCAGATGTTGCAGAACAGCTTCAGATCAACTCACCCGCGGCGTACGCGCTGGTGAGGAGCGGAGAGCTGAAGGCCATCCAGGTGGGCGGCCGCGGCCAGTGGCGCGTGGAGGAGAAGATGCTTGAGCAGTACATCGAGGAGCGGTACGCCGAGGCCAGCAGGATGATCCAGGAAGCAAAATCAAAATCGGTCTGAMPRFLTLADVAEQLQINSPAAYALVRSGELKAIQVGGRGQWRVEEKMLEQYIEERYAEASRMIQEAKSKSVNANANANANA
D1-29_03214570hypothetical proteinATGCGTTGGGATGCACTTTTCAGTGACATTGAGTCTCAGTTTGCCGAGAACTCCAGGCTGTCGCTCGAGGCGGAGATTACAGAGCGTTCACGGGTTGAGACGGCTTCCATTGAGCTCGTGGACCGTCTGCGTGGCTCGCTGGGAGCCCAGGTTGCGGTACACGCTAGGTCCGGAACTGTTTTCGAGGGGACGCTTGCGCATGCCGGCGCAGACGCCTTGGTGCTCCACGAGGCTCGCCACCAGGTGCTCATTCCGTACCGGGCCGTCGAACGGTACGTGGGACTCGGGAGACTGTCATGGGGCGAGCCCTCGCAGGTCAGGGGCAGGATCGGACTAGCGAGTGCGCTGCGTGGTATGTCGCGGGACCGGTCGGAACTGGTGGTGATCCTCACGCAAGGTGATGGTCAGAACAGATTGGCGGGGGTGATTGACAGGGTTGGCAAGGATTTCCTTGACCTTGCCATCATGAGTCCTGGTGAAGCCCGCCGCGTGTCGCACGTTAATCAGGTATCGACCATTCCCTTTGCGTCACTGAGTGCGATCCGGTCTCCGCGGCCCGGGGAGGTATAAMRWDALFSDIESQFAENSRLSLEAEITERSRVETASIELVDRLRGSLGAQVAVHARSGTVFEGTLAHAGADALVLHEARHQVLIPYRAVERYVGLGRLSWGEPSQVRGRIGLASALRGMSRDRSELVVILTQGDGQNRLAGVIDRVGKDFLDLAIMSPGEARRVSHVNQVSTIPFASLSAIRSPRPGEVNANANANANA
D1-29_03215771hypothetical proteinGTGAACGCAGCGAAACCCCCCGGAATTTATGCCGACGCTGTCATGGCGGCATCAATTCTGCTGCTCGGCGTATTTCTCGCCCTGACCGGTGCCGGAATTTTGGAGCGGTGGCGCTCTTCTGCGACCCACCGGCAGGCACCGGACGTTGACGACCTGATGGGAGTGTTGGCAACTGCAGCAGGATTGGGCATCGTTTGCTGGTGGTTGCTGTCGATACTGATGGCAACAACAGCTGCCATCCTGGAGAGGCTTGGACGAAGAGGCGCCGCGGCAGCCGCGGACAGGTTTTGTCCAGCCTTTATGCGGCGCCTGACTGTGGCAGTGTTTTCCGTCCAACTCGTCGCGGTTCCGCTGGCCCATGCGGCGGATTCTCCGGCGGGACCAGCCTGGGTCCCCACACAGGAACTAACGGTGGCGGCGGATCCAACGGCCTCAGTGGCGTGGAGTCCCACCAAGGAAACCGACGGACCTTCGCCGGCGCCGGATCTTCAACCTGACTGGCGGCCCCATGCCCCGGTCACCGAGCCTGGCCTTCTCGCAGCGCCTCCGGTGCGCGCCGTGCAAGTGGCAGCCGGAGCTGCAAACGAGGTGGCGGTACTTTCCGGCGACACCCTCTGGGATATTGCTGCCCGTGAACTCGGGCCGGCGGCCACGGACGTCGAAGTGGCCCTGCAATGGCCACGCTGGTACCTGGCAAACAGGGCCGTTATCGGCGAAAACCCGGATGTCCTGTTGCCAGGCCAAATTCTAAAATCACCTTCCGCTGCCTAGMNAAKPPGIYADAVMAASILLLGVFLALTGAGILERWRSSATHRQAPDVDDLMGVLATAAGLGIVCWWLLSILMATTAAILERLGRRGAAAAADRFCPAFMRRLTVAVFSVQLVAVPLAHAADSPAGPAWVPTQELTVAADPTASVAWSPTKETDGPSPAPDLQPDWRPHAPVTEPGLLAAPPVRAVQVAAGAANEVAVLSGDTLWDIAARELGPAATDVEVALQWPRWYLANRAVIGENPDVLLPGQILKSPSAANANANANANA
D1-29_03216465hypothetical proteinATGACTGCAGTAACACCGATCCGCGCCAGGCTGGCCACAGAGACACGGGCCGAACCCTACCGGCAGCTTCCTGGCCGGCCGGGTGCTCCTCAGCGCCCGCTCGGCCCAGTGGACGAGAATGCCGAGGTGAGAGCCATTGCGCGCAGCACGGTCCAGGCGGCGATGGAGGTTCTGGCGGGTATCAGACCTGCCCAGCAGCTGGCGCGAAGGCTGGATCCGCGCTGTCTTGCCGCCCTGCAGCACCGTGCCTCGCTCATCCGCCGGGAACTGGCGCGCTCACCGTCCCCGTCGCTGGCACGGCTCCATCAGAACTCGCTGGTTCGGTCCGTCCGTGTCTGCGAGGTCGCAACCGGTATCTATGAGGCCAGCGCCGTGGTGGTTGACGATGTCCGGGCACGGGCGGTGGCCGTCCGGCTGGAACGGAGCAAGCAAGTTTGGCGAGTGACGGAGCTCGTCGTTGGCTGAMTAVTPIRARLATETRAEPYRQLPGRPGAPQRPLGPVDENAEVRAIARSTVQAAMEVLAGIRPAQQLARRLDPRCLAALQHRASLIRRELARSPSPSLARLHQNSLVRSVRVCEVATGIYEASAVVVDDVRARAVAVRLERSKQVWRVTELVVGNANANANANA
D1-29_032172739secAProtein translocase subunit SecAGTGGCATCACTTATCGAAAAACTTCTCCGCACGGGAGACAAAAAAACCCTGCGGCAACTCCGGAACTATGCCGACTCCATCAATGCTCTCGAAGACTCGCTCAAGACGTTCAGCGACGCCGAACTCCGCGAAGAAACGGACCGCCTCCGTGAACGGCACCGCGACGGCGAGAAGCTCGACGACCTCCTGCCGGAAGCCTTTGCAGCTGTACGTGAAGCGTCATCCCGAACCCTTGGCATGCGCCACTTCGACGTTCAGCTGATGGGTGGCGCGGCCCTTCACCTGGGCAACATTGCCGAGATGAAGACCGGTGAAGGCAAGACGCTTGTCGCAACGGCTCCCGCTTACCTCAACGCCCTGACCGGAAACGGCGTCCATGTGGTGACGGTGAACGACTACCTGGCCGAATACCAGTCCGATCTCATGGGCCGCGTCTATCGCTTCCTGGGGCTCACCAGCGGCTGCATCCTCTCCAACCAGGACCCCTCAGTCCGCCGGGAGCAGTACGCGGCCGACATCACCTACGGCACCAACAACGAGTTCGGTTTTGACTACCTCCGCGACAACATGGCGTGGGACCAGTCCGAGCTCGTCCAGCGCGGACACCACTTTGCCATCGTGGACGAGGTGGACTCCATCCTGATTGATGAGGCCCGCACGCCGCTGATCATCTCCGGGCCCGCCCAGGGGGACACCAACCGCTGGTACAGCGAATTCGCCAAGGTAGTGCTGCGGCTGCAGGCCGGCCAGGACTACGAGGTCGACGAAAAGAAGCGCACGGTGGGCGTTCTTGAAAGCGGCATTGAAAAAGTCGAGGACTACCTGGGCATCCAGAACCTGTACGAGTCGGCGAACACCCCGCTCATTGGATTCCTGAACAACGCCATCAAGGCGAAGGAACTCTTCAAGCGGGACAAGGACTACGTCATCCTGGATGGCGAAGTCCTGATCGTGGACGAACACACGGGCCGCATCCTTGCCGGCCGGCGGTATAACGAGGGCATGCACCAGGCGATCGAGGCCAAGGAAGGCGTCGAGATCAAGGCCGAAAACCAGACCTTGGCCACGGTAACGCTGCAGAACTACTTCCGCATGTACGACAAACTCGCAGGCATGACCGGTACAGCCGAAACCGAGGCCGCCGAGTTCATGGGTACGTACAAGCTTGGGGTTGTGGCTATCCCCACCAACCGTGACATGCAGCGGATTGACAAGTCAGACCTCGTGTTCAAGAACGAAACGGTAAAGTTCGACGCCGTTGTTAAGGACATTGCCGAACGCCACGAAAAGGGGCAGCCGGTCCTGGTGGGCACCACGAGCGTTGAGAAGAGCGAGTACCTCTCCAAGCTGCTCTCCAAGGAAGGCATCCGGCACGAGGTACTGAACGCCAAGAACCATGCCCGTGAGGCGGCCATCGTGGCGCAAGCTGGGCGGAAGGGCGCAGTCACCGTCGCCACCAACATGGCCGGGCGAGGCACGGACATCATGCTTGGCGGCAACGCGGAATTTACGGCCGTTGCCGAACTCGCCAAGCGCGGGCTGGATCCTGAGGAAAACTCGGAGGAATATGAGGCCGCGTGGCCTGCCGCCCTGGAAGTTGCCAAGCAGTCGGTCAAGGACGAGCATGAGGAAGTTCTGGACCTGGGCGGCCTTTACGTCCTGGGTACCGAGCGGCACGAGTCCCGCCGTATCGATAACCAGCTTCGGGGCCGTTCGGGACGTCAGGGTGACCCGGGAGAATCCCGTTTCTACCTCTCCCTGACTGATGACCTGATGCGGCTCTTCAACTCCGGCGCCGCCGAACGTCTGATGAACAGCTCAGTGCCTGATGATGTTGCGCTTGAATCCAAGCTTGTTTCCCGGGCCATCGCATCGGCGCAGGGGCAGGTCGAGGGCCGCAACGCCGAGCAGCGCAAGAATGTCCTGAAGTACGACGACGTCCTGAACCGCCAGCGCGAAGCCATTTACGGAGACCGCCGCCGGATTCTTGAGGGCGATGACCTGCACGAGAAGGTGCAGTTCTTTGTGGAAGACACCATCACCGCCCTCATTGATGCTGCCACCGCTGAGGGCAACGGCGATGACTGGGACTACAACCAGCTGTGGACGAACCTCAAGACGCTCTACCCGGTGAGCGTTACGCCCGAGGAGATCATTGAAGAGGCCGGCGGAAAGTCGCGTCTCACCGTGGAGTTGCTCAAGGAGGAACTGCTCTCCGACGCGCGTTTGGTCTACCAGTCGCGTGAGGAAGCCATCGGCTCGGAAAGCATGCGGGAGCTTGAGCGTCGTGTTGTGCTGTCCGTCATCGGCCGCAAATGGCAGGAACATCTCTACGAGATGGACTACCTCAAGGAAGGCATTGGCCTGCGTGCCATGGCCCAGCGCGACCCGCTGGTTGAGTACCAGCGTGAAGGCTTCACCATGTTCCAGAGCATGATGGAGGCCATCCGCGAGGAAAGTGTTGGCTTCCTGTTCAACCTTGAAGTGGAGGTCACTCCTGCCCAGGATGTTGTGGTGGCCGATGCCGCCGGCGGACACACCGAGCATGTTGAGCCGCAGATCCGGGCGGCGGGCCTGGAAGCTCCGGAAAAGCCGGCGCAGCTGCAGTACACCGCACCCGGCGAGGACGGCGCCACCCACACCAGGGTGGAGAGCCGCTCATCATCGCGTTCCGGGAACCCGGCAAAGGCGGCCACCCAGGATGCCCCCAAACGCACCGCCAAGAAAAAGCGCCGCTGAMASLIEKLLRTGDKKTLRQLRNYADSINALEDSLKTFSDAELREETDRLRERHRDGEKLDDLLPEAFAAVREASSRTLGMRHFDVQLMGGAALHLGNIAEMKTGEGKTLVATAPAYLNALTGNGVHVVTVNDYLAEYQSDLMGRVYRFLGLTSGCILSNQDPSVRREQYAADITYGTNNEFGFDYLRDNMAWDQSELVQRGHHFAIVDEVDSILIDEARTPLIISGPAQGDTNRWYSEFAKVVLRLQAGQDYEVDEKKRTVGVLESGIEKVEDYLGIQNLYESANTPLIGFLNNAIKAKELFKRDKDYVILDGEVLIVDEHTGRILAGRRYNEGMHQAIEAKEGVEIKAENQTLATVTLQNYFRMYDKLAGMTGTAETEAAEFMGTYKLGVVAIPTNRDMQRIDKSDLVFKNETVKFDAVVKDIAERHEKGQPVLVGTTSVEKSEYLSKLLSKEGIRHEVLNAKNHAREAAIVAQAGRKGAVTVATNMAGRGTDIMLGGNAEFTAVAELAKRGLDPEENSEEYEAAWPAALEVAKQSVKDEHEEVLDLGGLYVLGTERHESRRIDNQLRGRSGRQGDPGESRFYLSLTDDLMRLFNSGAAERLMNSSVPDDVALESKLVSRAIASAQGQVEGRNAEQRKNVLKYDDVLNRQREAIYGDRRRILEGDDLHEKVQFFVEDTITALIDAATAEGNGDDWDYNQLWTNLKTLYPVSVTPEEIIEEAGGKSRLTVELLKEELLSDARLVYQSREEAIGSESMRELERRVVLSVIGRKWQEHLYEMDYLKEGIGLRAMAQRDPLVEYQREGFTMFQSMMEAIREESVGFLFNLEVEVTPAQDVVVADAAGGHTEHVEPQIRAAGLEAPEKPAQLQYTAPGEDGATHTRVESRSSSRSGNPAKAATQDAPKRTAKKKRRPGPT0025735_2391DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070NANA
D1-29_032181269hypothetical proteinGTGGGAGCGACGCTGAGCCTTGACCAGGCCCGGCGGATCGCTTTGGCAGCCCAGGGACTCGACAAAGGACGGCCCGCCGGACCCGTGACTTCACGGACGGTGGGCCGAACCTTTGCCAAGCTTCAGCTGGTCCAGATCGATTCCGTCAATGTGTTGTCCCGAAGCCACTTCCTTCCCTTTTTTTCGCGGCTGGGCAACTACGACCGCGATATTCTGCAGCGGATGTCAGCCACCCCTCCCCGCCGGATGATGGAGTACTGGGCACACGAAGCCAGCTACATCCGCCCGGACCATTTCCAGGATCTGGTTCTCTGGCAGAAGCGCAAGTGGGTGGGCGCCTCGGGCATGGAACAGGAACTGCGCGAAGGCGTGGCGGGGAAGATCCTTCAGGCCCTGTCCAGCGGCCGGCCCATGACGGCCAGTGAACTGACCGCCAGGATCGGACACGTGGAGGACAGGAAGAACGATAACTGGGGATGGAATTGGAACGCCGTCAAACGGGTCCTTGAGCATCTCTTTGAGCAGGGCCTGGTATCCGCGGCTTCCAGAACCGACCAGTTTGAGCGGCGTTACACGCTGACCGAGCGGGTGTTGCCGGCACTGACGGGCGGCGACAACGAGTCGCCTGACCCGGTTGCCGCCATGCACCGGCTGATCGATGCCGCCGCCCAGGCGCACGGTATCGGGACGGTACGCTGCTTCGCCGACTACTTCCGTGTCCCGGCGAAGGCTGCTGCAGGGTCGGTGGAGCGCCTCGTGCAAACCGGGCGGCTCGAGCCGGTCAAAGTGGCTGGCTGGAACAGGGATGTGTTCCTGCATGCGGAGGCAAGGCTTCCACGGAGGGCCTCAGGACGGGCACTGTTGAGTCCCTTCGATTCACTGGTCTTTGAGCGGCGCAGGCTTGAGGAGTTGTTCGGTTTCCACTACCGCATCGAGATTTACACCCCGGAACACAAAAGGCGCTTCGGCTACTACGTTCTTCCTTTCCTTCTGCGCGACAGGTTGGTTGCCCGGGTTGACCTGAAGGCGGACCGGGCTTCGGGACACCTGCTTGCCAAGTCCGCTTATGCTGAGCCGGACGCCCCTGCGGATACCGCCGTCGAACTTGCCGCCGAACTGCACCTGATGGCCGAATGGCTGGGCCTCCAGAAGGTGGTGGTGTACCCCAAAGGGGACCTTGCGGCGGGCCTGGCCCTGGCAGTCCGAAGGGATGAAGAGGGTATCCGCTGTGAGGGAAAACAGACACCGTGGGCTGCGTCTCTCCCGTAGMGATLSLDQARRIALAAQGLDKGRPAGPVTSRTVGRTFAKLQLVQIDSVNVLSRSHFLPFFSRLGNYDRDILQRMSATPPRRMMEYWAHEASYIRPDHFQDLVLWQKRKWVGASGMEQELREGVAGKILQALSSGRPMTASELTARIGHVEDRKNDNWGWNWNAVKRVLEHLFEQGLVSAASRTDQFERRYTLTERVLPALTGGDNESPDPVAAMHRLIDAAAQAHGIGTVRCFADYFRVPAKAAAGSVERLVQTGRLEPVKVAGWNRDVFLHAEARLPRRASGRALLSPFDSLVFERRRLEELFGFHYRIEIYTPEHKRRFGYYVLPFLLRDRLVARVDLKADRASGHLLAKSAYAEPDAPADTAVELAAELHLMAEWLGLQKVVVYPKGDLAAGLALAVRRDEEGIRCEGKQTPWAASLPNANANANANA
D1-29_03219726hpfCOG1544Ribosome hibernation promotion factorATGGAGTTTATGATCAGCGGACGAAATCTGACGGTCTCAGACCGCTTCCGCGAATACGCCGGCGAGAAGATCTCAAAGATCGAATCGCTGGGCGACAAGGTCCAGCGGGTGGACGCTAAGGTTTCCAAGGAAACGAATGCGCGCCAGACCGGGGACCAGCTCACCGTCGAAGTGACTGTCCTGGGACGGGGACCGGTAATCCGCGCGGAAGCCAGCGCCGCAGATAAATTCGCTGCGTTCGATCTTGCCTACAACAAGCTGCTTGAGCGGCTTCGCCGCGCGAAGGACCGCAAGAAGGTCCACCACGGACGGCATACTCCCAAGGCGGTGCGCGAAGCCACTGCATCCCTGGAACCCGCGAGCGCCCACGAACCCATTTATGCAGAGGCCAGCCACCGGAACGAACCGGCGGCCGCGCCGGCCGAGCGCTCGCCCTATGACGTTGAGAATGACATTCCGGCTGGGGACTCTCCCGTACTTATCAGGCGCAAGGTCTTTCCCGCCGCATCCCTGACCCTGGATGACGCCGTGGACAACATGGAATTGGTTGGCCACGACTTCTACCTGTTTGTGGACAAGGAAACCAACACACCCTCCGTTGTCTACCGGCGCCGTGGCTGGACTTACGGGGTTATCACCCTGGACCACGAATGCGAACCGGGCGAAACCCCGATTGAAGAGAAGGTTATTGCCTACCGTTCCAAGGATGAGGCAGCAAACGTTTAGMEFMISGRNLTVSDRFREYAGEKISKIESLGDKVQRVDAKVSKETNARQTGDQLTVEVTVLGRGPVIRAEASAADKFAAFDLAYNKLLERLRRAKDRKKVHHGRHTPKAVREATASLEPASAHEPIYAEASHRNEPAAAPAERSPYDVENDIPAGDSPVLIRRKVFPAASLTLDDAVDNMELVGHDFYLFVDKETNTPSVVYRRRGWTYGVITLDHECEPGETPIEEKVIAYRSKDEAANVNANANANANA
D1-29_03220960hypothetical proteinGTGCAGCGCGGCAAGCATGGGGGTGTGACTTCCGCACAATCCAGCAGCCGTCCCCGCGCGCGCCGGGCTTCGGCCGATCCGGACCTCCTCCCGGCTCCGCAATGGTCAGCAAAGCACCGCGGAGGGTATCAACGCCTGCTGCCGAGGATTGCTGACCAACTCGGCAGCGCCGCAGCGGAGCTGCTGGCCCTTGCCGTCCCCGTGGACTGTGTTTGCTGCGGTGCTGAAGATCTGGCCCTCTGCGTTGCCTGCGAACGGCAGGTCAGGACACTGACCGGGAGCCCGTTCCGGGCCGAGGGCCAGGCGCCGGCGCTGATGGACGTCGACGGCGGGATCCGGCTTCCGGTGGTGGCAGCGGGGGTATACCGCGATGAGCTTGCCCAGGCCGTCCTTTCCTTCAAGAGCCATGGACAGCGCCAGCTCAAGCATGTGCTGGCAAAGGGCCTGGGAGACGCTGTGGTGTCAGCAGCCGGTGGTCTCGATGGGGTCTTCCTGGTGCCCGTGCCAAGCAGTGCCGGGGCGTTTGTGAAGCGCGGCTTCAGTCCTGTGCATCTGCTCCTTGGCGCCCTGATGGCAGGACGCGCCACCGCCGGAACTCCGGTTCTTGACGTACTGAGGAAGTCAAGGCGCCCGGTCACCCTGGAGCAGCTTCCAGGTGGCCAAAAAGGACTGGGCCGGGGGGCCCGGGCGAGGCGTGTGCGGGGATCAATGCAGGTCAGCGGACGGCAACGGCGCCGGGTAGCCGGACGCCGCTGCATCATCGTTGATGACGTCCTGACCACAGGTGCGACGCTCGCTGAAGCAGCCCGCGCATTGCACCTGGCAGGGGCACTGGTGGCAGGGGCGGTGGTCCTCGCGGCGACACGCCCGCCCGATTCCGGCAGCACCACCGAACCCTCCGCGAACACAGGCCTGGCGGCTGACGTCTTAGAAAAAAATAAACCAAGAAAAGATGAATAAMQRGKHGGVTSAQSSSRPRARRASADPDLLPAPQWSAKHRGGYQRLLPRIADQLGSAAAELLALAVPVDCVCCGAEDLALCVACERQVRTLTGSPFRAEGQAPALMDVDGGIRLPVVAAGVYRDELAQAVLSFKSHGQRQLKHVLAKGLGDAVVSAAGGLDGVFLVPVPSSAGAFVKRGFSPVHLLLGALMAGRATAGTPVLDVLRKSRRPVTLEQLPGGQKGLGRGARARRVRGSMQVSGRQRRRVAGRRCIIVDDVLTTGATLAEAARALHLAGALVAGAVVLAATRPPDSGSTTEPSANTGLAADVLEKNKPRKDENANANANANA
D1-29_032211737lpqBLipoprotein LpqBATGACAGCAACCCCCACCATGCATGCCAAACACGGGGTCAAGCGGTACCAGGCCCTGGTGGCCCTGCTGGTCCTGGTGCTCCTGCTGGGCTCTTGCGCCCGAATACCCACTTCCGGTCCGGTGGGAAAAAGCAGCGAGGGAAGCGCGGGGAACCTGAATGCCCCGGTTTTCCTTCCGGCCGCACCGCAGCCCGGGGCCGCGCCCGAGACCATCATCGAGGATTTTTACCGCGCCGGGAGCGGCTATGAGGACGACTATGCGGTGGCCCGTGAGTACCTCACGCAGGCATCCTCCGTGGCATGGAAACCCGACCAGCGTGCCCTCGTATACCGGGCAGCCAGGGTAGTGCCCACCGGCGTCGAAAACGTCTACAACTACGAACTCGACGTGGCCTACACCGTCGACGCGGACGGCATTGCTACCCAGACCCCGGAAGGCACCAAGGAGAACATACCGGCAGCGGTCACCCAGGTTGACGGTGAATGGCGGATCTCAGCCATTCCTGACGGCACCGCCATTCCCGAGGAAACGTTCAAGGTCATTTACGGCGCCTACCCCATCTACTTCTACGATCCCAGCTTCACCTACGCGGTTCCCGATGTCCGCTGGTTCATCAAGAACAAAACCGTCAAGGCCATGACCAGCGCCCTCCTTGCCGGCCCGGCTCCCTATCTCCGGGGCGCCGTCGTGAGTGCTTTCCCGTCAGGCATTAAACTTGCCCGGGAGTCGGTGCCGGTGGTCTCCGGGGCCGCGCAGGTGGACCTCAGCCCCAAGGAGCTCACGGAGGCGTCCACAGAGGACAGGCTCCGGATGCAGACTCAGCTCGCCCTGACATTCCGGACCCAGCCTGATGTGGTCAACGTTGAGCTGCGTGCCAACCAGGACCTCGTCCGGGTGGAGGACAACGGCTCCGTGCTGCCACCCGTGCAGAACAAGAATGTGCCTGCCCGCCAGATTGCCATCAGCGGGAACGAGTTGGTCCGCTATGAGAACAACCGCGTCTCCCCACTGCCGGATATGCAAACGGTGTCCGCCCTCGGACCCCGTTTCCCGGCGGAATCCCCGGTTTCGCAGACAGTGGCGTTTTTGAATGAAAGCCGGACCACGCTCTACAGCATGGTTCCCGGACAGCCTGCCAGGGCACTGACCACCCGCAGCACGCTGACTCACCCGTCGTTCAGTCTCCACGACTGGGTGTTCTCCGCCGGGCCTGGGGCCGTGGGCGGGACTGAAATTGTGGCTTACCGTCCGACGGGTGTGGCCGAGGGGGCTGATGTCCCAACCGTCACCCTGGCCCCTTCCTGGCTGGCCGGACGGACGGTAAAAGACTTCAGGGTGTCCCGGGAGGGCGTACGGGCACTGGTAATCTCCGAGCAGAACGGCAAGACCCGTGTGCAGGTTGCCGGGATCATTCGCAATGCCGACGGAACACCACGGGAACTGACCTCGCCGATCACCCTCGCCGCGGGGAGCGAGCCGGACCAGGGGGTCTGGGTCAGTGACACCATGGTGGCCGTGATGAAGGGGTCGGCCGCTGCCAACGTTTCCCCGGAGCTGCTGTCCCTGATGTCGGGACAGCCGCAGCAGCTGGCCCCCTGGCCCGGGCTGGTAGGCCTGAGCGCCGGGAACGGACCCGAGGAGATCTATGGTCAGTCCGCCGAAGGAATATTCCAGCGGCTGGGCAACGGCTGGTCGCCGCAGCTGAAGGGGCCCGTGGACCCATCCTTCCCGGGTTAGMTATPTMHAKHGVKRYQALVALLVLVLLLGSCARIPTSGPVGKSSEGSAGNLNAPVFLPAAPQPGAAPETIIEDFYRAGSGYEDDYAVAREYLTQASSVAWKPDQRALVYRAARVVPTGVENVYNYELDVAYTVDADGIATQTPEGTKENIPAAVTQVDGEWRISAIPDGTAIPEETFKVIYGAYPIYFYDPSFTYAVPDVRWFIKNKTVKAMTSALLAGPAPYLRGAVVSAFPSGIKLARESVPVVSGAAQVDLSPKELTEASTEDRLRMQTQLALTFRTQPDVVNVELRANQDLVRVEDNGSVLPPVQNKNVPARQIAISGNELVRYENNRVSPLPDMQTVSALGPRFPAESPVSQTVAFLNESRTTLYSMVPGQPARALTTRSTLTHPSFSLHDWVFSAGPGAVGGTEIVAYRPTGVAEGADVPTVTLAPSWLAGRTVKDFRVSREGVRALVISEQNGKTRVQVAGIIRNADGTPRELTSPITLAAGSEPDQGVWVSDTMVAVMKGSAAANVSPELLSLMSGQPQQLAPWPGLVGLSAGNGPEEIYGQSAEGIFQRLGNGWSPQLKGPVDPSFPGNANANANANA
D1-29_032222025sasA_7Adaptive-response sensory-kinase SasAGTGGTGTCGGCTACAAAGCAGGTTCCTGACCCCTCGGGGGCAGAGAACGGACGTGCGCCGGACGCGTCCGCCGCCCAGCAGGCCGGGCATGTTCCGGAGCACCATTCTGCTCCGGAACACACTGATGCCCTGGCCGCCGCGGGGCTGTCCGAACTGCCTTTCCGCGCCCGCATTTGGAAGCGCCGAACGCTCATCGTCAGCCTTCGGGTAGCGCGCCTCGTCCGGATTGGCCTCAGCCGCGTGTTTCCCGCCATCCGTTACCTGGCGAGATCACTTCACCGCCGCTGGCGCCGGTCACTGCAGTTCCGCACCGTTCTGACCACGCTGTTGCTGGCCGTCACGTCATTCGCTGTAGTGGGCGCTTACCTGTCCAACCAGATTGCCAACAACCTCTTCCAGGAGCGCCTGACCCAGGCCGAGTCTGAGACCCGATATAACGTCAAGCAGGTCCAGGACACTTTCGACGGCGCCCAGGTCACCGACCAGTCCAGTGTGATCACCCTGGTCTACGACACCCTGACCGCCGTTGAGGGACGCGGCGATGTCATCCAGCGGCGGTATGTCTTCGAGGCCATGCCGCAGCAGACCAAGCCGCGGAACCGCTGGGTTGAATCCAGGGCCTCCGATCAGCTGACGGTCAGCGTCATCCCGCCCGAACTGCGGAAGGCGGTCCAGGAGTCAGGGAAAGACCAGTACTGGGCATCCACCGTCATCCCGGTCGGCGCCGAGGACCGGCCCGGCATCGCTGTGGGAAACAAAGTCACCTTCAACGGCACGGTCTATGAGCTCTACCTGATTTACGATCTCAACACCGCCCAGCAGACCCTCGACGAAATCCAGAGTGTGCTGTGGGCCGGCGGCGCCGTGCTGGTGCTCATGATCGGCGCCATCGCCTGGTATGTCACACGAAATGTGGTCAGCCCGGTCAGCCACGCTGCCCTGGTGTCGGAAAAGCTCGCCGCCGGGCAGCTCCAGGAGCGAATGGTGGTCAAGGGCGAAGATGAAGTGGCCCGCCTGGGAGCGTCGTTCAACCATATGGCAGCCAGCCTCCAGGAGCAGATCACCCAGCTGGCCACACTGTCCCAGATGCAACAGCGCTTCGTGTCGGACGTATCCCACGAGCTGCGTACTCCGCTGACCACTGTGAGGATGGCCGCCGAGGTCCTGTACGACGCCCGCCACGATTTCGACCCCATCAACAAGCGCTCCGCTGAACTCCTCTATAACCAGGTCGAACGGTTCCAGTCCCTCCTTTCGGACCTGCTTGAGATCTCGCGCTTTGATGCCGGCGTGGCCATGCTCGACGCTGAACCGGAGGACATCCTGCAGGTCGTTGCCCACGTTATTGAAGGAGCCGCACCGGTGGCGGCTCAATACGGTTCCGAAATTACTCTCAGTGCACCCGCCGGAGGCATCGTCGTGGAAATGGACGCCCGCCGGATCGACAGGATCCTGCGCAACCTGATCCTCAACGCTGTGGAGCACGGTGAGGGCAGACCCGTCAACGTCACTGTCGCAGCCAACCAGACCGCCGTCGGAATTGCCGTCCGGGACCACGGCATCGGCATGGCTCCGGCCGAGGCAGCCCGCGTTTTCGACAGGTTCTGGCGGGCGGATCCGGCCCGCGCCCGGACCACGGGAGGAAGCGGCCTTGGCCTGTCCATTGCCATGGAGGATACGAAACTCCATAACGGCTGGTTGCAGGCCTGGGGCAATAAGGGCAAGGGAGCCAACTTCCGGCTCACGGTTCCCCTCCGGCAAGGCGAGGAAATCGACAAGTCTCCCGTGCAGCTGGAACCGGAAGACATAGTCCTGCCGGGTGTGCCCCAAGAGAGGGACGTGCTGGTCCTGGGTCCAGCACCTACTGCTGCTTCTTCTGCCAAAGGTGACGCACCAGCCCCTGACGGTGTCCCGGGATCCATGCATGCCCCCGATGACTCCCACGCTGAAACCCAGCGCGGAGTCGGCCATGAACCGGCCACACAGCGCCCGGCGCTCACTGCCGGCCCCAAGGACAAGCCATGAMVSATKQVPDPSGAENGRAPDASAAQQAGHVPEHHSAPEHTDALAAAGLSELPFRARIWKRRTLIVSLRVARLVRIGLSRVFPAIRYLARSLHRRWRRSLQFRTVLTTLLLAVTSFAVVGAYLSNQIANNLFQERLTQAESETRYNVKQVQDTFDGAQVTDQSSVITLVYDTLTAVEGRGDVIQRRYVFEAMPQQTKPRNRWVESRASDQLTVSVIPPELRKAVQESGKDQYWASTVIPVGAEDRPGIAVGNKVTFNGTVYELYLIYDLNTAQQTLDEIQSVLWAGGAVLVLMIGAIAWYVTRNVVSPVSHAALVSEKLAAGQLQERMVVKGEDEVARLGASFNHMAASLQEQITQLATLSQMQQRFVSDVSHELRTPLTTVRMAAEVLYDARHDFDPINKRSAELLYNQVERFQSLLSDLLEISRFDAGVAMLDAEPEDILQVVAHVIEGAAPVAAQYGSEITLSAPAGGIVVEMDARRIDRILRNLILNAVEHGEGRPVNVTVAANQTAVGIAVRDHGIGMAPAEAARVFDRFWRADPARARTTGGSGLGLSIAMEDTKLHNGWLQAWGNKGKGANFRLTVPLRQGEEIDKSPVQLEPEDIVLPGVPQERDVLVLGPAPTAASSAKGDAPAPDGVPGSMHAPDDSHAETQRGVGHEPATQRPALTAGPKDKPNANANANANA
D1-29_03223675mtrACOG0745DNA-binding response regulator MtrAATGAAGGCACGCATCCTGGTAGTTGACGACGACGAAGCGCTGGCCGAAATGATTGGAATTGTCCTCCGTAACGATGGCTTCGAGCCGGTGTTCTGCGCCGACGGCGGCCAGGCGCTTGACATCTTCCGTTCATCCAAGCCGGACCTCGTACTGCTTGACCTCATGCTTCCTGGTGTGGACGGCATTGAGGTCTGCCGGCAGATCCGTTCCGAATCAGACGTGCCCATCGTCATGCTCACTGCCAAGGCGGACACGTCCGACGTCGTCCGCGGCCTGGAATCCGGGGCTGACGATTACGTACCCAAACCGTTCAAGCCGGCCGAGCTTGTCGCCCGCGTCCGCGCACGGCTGCGTCCAGGAGACCAGAAAGCTCCTGAAACACTTCGGATCGCGGACATCACCATTGACGTGGCCGGCCACACGGTAAGCCGCGGTGACGAGCGCATCTCCCTGACTCCGCTTGAATTCGACCTCCTCGTTGCCCTTGCCCGCAAACCCTGGCAGGTGTTCACCAGGGAACTGCTGCTTGAGCAGGTGTGGGGATACCGCCATGCCGCGGATACGCGGCTGGTCAACGTCCATGTCCAGCGCCTCCGGTCAAAGATTGAACGGGATCCGGAAGCCCCGGAAGTAGTATTGACGGTTCGTGGTGTCGGCTACAAAGCAGGTTCCTGAMKARILVVDDDEALAEMIGIVLRNDGFEPVFCADGGQALDIFRSSKPDLVLLDLMLPGVDGIEVCRQIRSESDVPIVMLTAKADTSDVVRGLESGADDYVPKPFKPAELVARVRARLRPGDQKAPETLRIADITIDVAGHTVSRGDERISLTPLEFDLLVALARKPWQVFTRELLLEQVWGYRHAADTRLVNVHVQRLRSKIERDPEAPEVVLTVRGVGYKAGSPGPT0002675_778DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002675-regX3-K07776NANA
D1-29_032241320hypothetical proteinATGCAGAGGCCGCGCCAGCCCAGTGCCGATCAGCAGCCCTGGGGGCAGCCAGCCGATTCCGGCCAGCCCGGCGCCGCCCAGCAGCCATGGGCTCCGGGGCCTGGTCCGGCAGTACCCGGGTGGGCGGCCGGCCCGGCAGCACCCGGTTCGCAGCAGCCGTGGAGCGGACAACCGGTCTGGGGTCCCCCGCCCGGTTCCCAAGATGCCCCGTGGGGCGCCCCCCAGCCTGGCCACTACGGCGGCCCGTCTCCTTATCGGCAGCACTATGTCGCCCCTCCCAAGCCCGGCATCATTCCCTTGCGTCCCCTGATGTTCGGCGAAATTCTGGACGGCTCTTTCCAAACGATCAGGCGCAACGCCAAGGCAATGCTGGGAGCTTCCCTGCTGGCGCAGTCCCTTGCCGCCGTGCTGACAGCCGTTCTTACCGCACTGTCCGCCACCTCCGGCGGATTTTTGCAAACGTGGGCTGAGGGCCTCAGCCGGGAGCAAATGCTTTCCATCGGGATCGGCTCGGCAGCCGGGTTACTCCTTTTCAGCGTCCTGACGGTGCTCATTTCCGCTGTACTCCAGGGTGCCATGGTGGTACCCGTGGCGCGGTCCGTCCTGAACAGACGCACCGGATTCCGGCAGATGTGGGCCCTCGCGAAGTCCCGCGCCGGTGCACTTATCCGGCTTGCGTTCCTGCTCCTTCTGGGCGCATTGACCGTTTTACTGATTTTCGCGGCCTTCGCCGTGGGGCTGATCAGCTCCGTGGGTCCCGCCGGAGGCCTGATTCTGTTCCCGCTCGGCCTTGCGCTCTTTGTGCTCCTGATGTGGGTGTACATCAAGCTGATGGTGGCGCCGGCAGCAATTGTCATCGAAGAGCTCGGGGCCAGGGAAGGTTTGCGCCGGTCCTGGGAACTGACGCGGGGAAACTGGTGGCGGATCCTCGGAATCACACTGGTAGTGGGGTTTATGGTCGGGATCATCGCCCAGGTGGTGATGATCCCGGTCAGCCTGCTTTCAACCTTTTTCACGAGCGTAGTTTCTCCTCACGGCGGCCCCGGGCAGGCGATCTCAGCGGCAGTGACAGTGGGGGTTGTGACGGCCATCATTGGTGCGCTGGTAGGTGCCGTGGGCTACGCCTTCCAGACCTCGGTCATGGCTCTGCTCTATCTGGATCTCAGGATGCGCAAGGACGGCCTGGACATTTCGCTGCTCCGGCTGCTGGAGTCGGGCGCCGACGCTGATGGTGTTCCCGGCCGCGGTGTTCCGGTGTACAGGAATGCACCCGGTTACGGTGCACCATCTGCCTACGGGACCCCGCCGGATGTCCGCTGAMQRPRQPSADQQPWGQPADSGQPGAAQQPWAPGPGPAVPGWAAGPAAPGSQQPWSGQPVWGPPPGSQDAPWGAPQPGHYGGPSPYRQHYVAPPKPGIIPLRPLMFGEILDGSFQTIRRNAKAMLGASLLAQSLAAVLTAVLTALSATSGGFLQTWAEGLSREQMLSIGIGSAAGLLLFSVLTVLISAVLQGAMVVPVARSVLNRRTGFRQMWALAKSRAGALIRLAFLLLLGALTVLLIFAAFAVGLISSVGPAGGLILFPLGLALFVLLMWVYIKLMVAPAAIVIEELGAREGLRRSWELTRGNWWRILGITLVVGFMVGIIAQVVMIPVSLLSTFFTSVVSPHGGPGQAISAAVTVGVVTAIIGALVGAVGYAFQTSVMALLYLDLRMRKDGLDISLLRLLESGADADGVPGRGVPVYRNAPGYGAPSAYGTPPDVRNANANANANA
D1-29_03225660hypothetical proteinATGTCCGCTGAACCTCCGGTGCTTCCAGGCCGTGATGAAGCCCGGCGCTGGGCGACAGAAGAACTTGCCAAGCCCGAGTACCGCGGCGCGGAGCCGGGGTGGCTGGATAGCGTTTGGGAAGCCATTCTTGACTGGTTGCAGTCCTTGGACGGCTCCTCCTCCGGCGCAGACAACACTCCGGTGGCTCCACTGATCGGAGTGGGGATTGCCGTGATGATAGCGGTCGCCATCATCCTCGCCCGTCCCCGCCTCAACGCCAGGTCAAAGGCCGAAAAGGACATGTTCGACGCCGACACCACCGTGAGCGCGTCGGAGTACCGCTCGCGCGCAGCGGCGGCAGCGGCCGCGGGCGACTGGAGCGCCGCCGTCGTTGACTCTTTCCGCGCGCTGGTGCGCACCGCGGAGGAGAGAAACATCGTGGACGCCCGGCCCGGCCGAACCGCGGACGAAGTGGCGGGCGAACTGGCTGTTGCCTTCGGGGCCGAAGCGCAGCGCCTCGCCTGGGCTGCCCGCACCTTCGACGGGATCCGGTACGGCAAGGAAGCCGGAGAGCCCGGCGCCAATGCCGGAATGATGGCCTTGGACTCTGCCCTGCAATCGCTCAAACCTGCCAGGACTGACGCTTCGACGGATCAGACGGATCCGGCGGTCATGCTGTGAMSAEPPVLPGRDEARRWATEELAKPEYRGAEPGWLDSVWEAILDWLQSLDGSSSGADNTPVAPLIGVGIAVMIAVAIILARPRLNARSKAEKDMFDADTTVSASEYRSRAAAAAAAGDWSAAVVDSFRALVRTAEERNIVDARPGRTADEVAGELAVAFGAEAQRLAWAARTFDGIRYGKEAGEPGANAGMMALDSALQSLKPARTDASTDQTDPAVMLNANANANANA
D1-29_032261212putative membrane proteinGTGACTGAAGACCTGAAGACTCAGCACCTGGCTGCCAGTGAATTAACGGCCAGTCCGGCAGTAAACCCGACCCTCCGCGGAAAGGCCGGTTCATGGATCCGGCGGCACCGCGGCTGGGCAGCGATCGGTGCCGTGTTCGCCGTCGGGCTGGCGGTTGTCATCTCTGCACAGCTTGCGCCAAAAGGTGACACGGTCCCCTTATCTGTCCACAACGTGGGGCCAAACGGAGCCCGGGCAGTCAGCGAAATCCTAGGCCGGCATGGGGTGACGGTCAGGGACGCCCGGTCCTATACCTCCGCCCTGGACTCCTTGGCCGCGAACCCCGGGGCAACGCTCCTGCTGTACGACCGGAGCGGCCTCCTGGACGAGGAACAGCTCAAGAGGCTCACTGGAGAAGCCCGGCGGGTGGTGGTAGTTACGCCGCGGCTCAACACACTCTCCGCCCTGGACAGCGGAATCAACCAGGCCGGTGTGGTCCCGGAGGCTGCCCCCACGCTGGAGCCCGGCTGCCCGCAGGCGGACGCGGAAACGGCAGGCACGGTATCCGGTGAAGACGGGTTCCTGTACGACGGCGATGAAGTCTGCTACCGCCCGCCAGGATCGGCCGCGGGGATGCTCGCCTCCACCCGGGACGGGGCCCTGACAGTCCTGGGCAACACCGCCCTGATCAATAATCAAGGGCTGGATGAGTACGGCCACGCCGCCCTTGCCCTCCGGACAGTGGGAGGCTCCAAGGACCTGGTCTGGTACCTTCCCGGGTTGGCCGACGCCAACGGCGCGGACTCGCCGGCCACGCTCGATGACCTCGCTCCGGAGTGGGTTCGGTTCCTGGGGCCTTGGCTGGCCTTTATCGCCATCCTGGCCATCATCTGGCGTGGACGCCGCCTTGGCCCGCTCGTCTTTGAGCCGTTGCCGGTTGTGGTTAAGGCGGTAGAAACGGCGGAGGGCCGCGCCCGGCTTTACCACGACTCCCACGCCATAGACCGGGCACGGGATAACCTGCGGGCCGGGACTCTTGTGAGGCTGGCCAAGGACCTTCGATTGGGCTCAGACGCGAGCGCCGAAGACGTCGCCGGGGCCGCGGCCCGGCACCTGGGCCGTCCCGACACCGGGATCAGGGAACTGTTGCAGGAACATCCAAGGAATGAAGCCAGACTGGTGCAATGGTCCCAGGAGCTGGAGAAATTAGAGAACGAGGTGAGGACCCGATGAMTEDLKTQHLAASELTASPAVNPTLRGKAGSWIRRHRGWAAIGAVFAVGLAVVISAQLAPKGDTVPLSVHNVGPNGARAVSEILGRHGVTVRDARSYTSALDSLAANPGATLLLYDRSGLLDEEQLKRLTGEARRVVVVTPRLNTLSALDSGINQAGVVPEAAPTLEPGCPQADAETAGTVSGEDGFLYDGDEVCYRPPGSAAGMLASTRDGALTVLGNTALINNQGLDEYGHAALALRTVGGSKDLVWYLPGLADANGADSPATLDDLAPEWVRFLGPWLAFIAILAIIWRGRRLGPLVFEPLPVVVKAVETAEGRARLYHDSHAIDRARDNLRAGTLVRLAKDLRLGSDASAEDVAGAAARHLGRPDTGIRELLQEHPRNEARLVQWSQELEKLENEVRTRNANANANANA
D1-29_03227996hypothetical proteinATGAACGAACACAGCAGCGGCCAGCAAATCCTGGATTCCCTGCAGCATGATCCCGCCCGCCAGGCACTCCTTGACGTCCGTAATGAGGTGGCCAAAGCCGTGGTGGGTCAGGACCCCACGGTCACGGGACTGCTCATTGCACTGCTCTCGCAGGGCCATGTGCTCCTGGAGGGCGTGCCCGGCGTGGCCAAGACACTGTTGGTGCGTGCCCTGTCCGCCGCGCTGAGCCTTGACACCAAACGCGTCCAGTTCACTCCTGACCTGATGCCGGGCGACGTGACGGGCTCACTGGTCTATGACGCGCATACGTCCGAGTTCAGCTTCCGGGAGGGTCCTGTCTTTACCAACATCCTGCTGGCTGACGAGATCAACCGCACTCCACCTAAAACCCAGGCATCCCTGCTGGAGGCGATGGAAGAGCGGCAGGTTTCAGTGGACGGCGTCTCGCGCCCGCTGCCGGCGCCTTTCCTGGTCGCGGCAACCCAGAACCCGGTGGAATACGAAGGAACCTATCCCCTGCCCGAAGCGCAACTGGACCGCTTCCTGCTCAAGCTCACCATGCCGCTGCCCAACCGGAACGACGAGATGGAAGTGATCCGGCGGCATGCTTCCGGGTTTAATCCCCGCGACCTCGCGGCAGCGGGGGTCCGGGCGGTGGCAGGAGCCGACGACCTGGACCGTGCGCGGCAAGCCGTGGCGAGAGTGGCCGTGGAGCCGGAAATCATTGGCTACATCGTGGACCTGGTCCGGGCAACGCGGGCCGCGCCGTCGTTCCAGCTGGGGGTCTCGCCCCGCGGAGCAACTGCACTGCTTAATACATCCCGGGCCTGGGCCTGGCTCTCCGGCCGGAGCTTTGTCACTCCCGACGACGTCAAAGCCCTCGCGCTGCCCTGCCTGCGGCACCGGGTGGCATTGCATCCGGAAGCCCAGATGGACGGAGTCCGGGTGGACGATGTGCTGGGGAGCATCCTCGCCTCCGTTCCGGTCCCCCGCTGAMNEHSSGQQILDSLQHDPARQALLDVRNEVAKAVVGQDPTVTGLLIALLSQGHVLLEGVPGVAKTLLVRALSAALSLDTKRVQFTPDLMPGDVTGSLVYDAHTSEFSFREGPVFTNILLADEINRTPPKTQASLLEAMEERQVSVDGVSRPLPAPFLVAATQNPVEYEGTYPLPEAQLDRFLLKLTMPLPNRNDEMEVIRRHASGFNPRDLAAAGVRAVAGADDLDRARQAVARVAVEPEIIGYIVDLVRATRAAPSFQLGVSPRGATALLNTSRAWAWLSGRSFVTPDDVKALALPCLRHRVALHPEAQMDGVRVDDVLGSILASVPVPRNANANANANA
D1-29_032281293hypothetical proteinATGGCGATCTCCGGACGCTTTGTACTGCTGGCACTGCTTGGCCTGGCGCCGGTGCTTCTGATGCCCGGTTGGGGAACTGTCCTGGCCGTGGTCCTGGTCCTCGCCGCGCTGCTGGCTCTGGAACTCGGCCTTGCCGCTTCCCTCCGCAGCATCGACGTGCAGCGCTCTGAACCCGGAAATGTGGCCCTGCACGGCACCGCAGTATCCAGCCTCACCGTCCGCAATAACGGCCGGCGCCTCCTCCGTGCCAGGGTCCGCGACGCCTGGCAGCCCTCCGCCGGCGCACAGAACCCCGTGCAGGAGATCGACGTTCCGGCCGGCGAAAGCCGCAAGTTGGCGGTGCGGCTGAGGCCGGTCCGCCGCGGGGACCTGCGTGCCCCGCACGTGACGTTGCGGTCGCAAGGTCCGCTTCGGTTGGCGGCCAGGCAGCGCACGGTTGAATGTCCCGGCTCCATCAGGGTCCTTCCGCCGTTCAACTCCCGCCGGCATCTCCCGTCCAAGCTCCGGAAGCTGCGTGAACTGGACGGCAAGGCCGCGGTGCAGATCCGGGGCGCAGGCACGGAATTCGATTCCCTGCGTGACTACGTCCGCGGGGACGACGTGCGTTCCATTGATTGGAGGGCAACAGCACGCCGCTCTGCCGTCGTCGTCCGCACGTGGCGGCCGGAGCGCGACCGGCGGGTGGTGATCATCCTGGACACCTCCCGGACATCAGCGGCCCGGATCGAGGACGAGCCACGGCTGGATACCGGTATGGAAGCGGCCCTCTTACTGGCGGTGCTGGCCGAACGTGGCGGTGACAGGGTTGATTTCCTCGCCTTCGACCGCCGCCCGCGGGCCAGGGCAGGATCGGCCACCACCGGCAATCTCCTGGGCCAGCTGGTGCAGGCCATGGCCCCGCTGGATGCGGAACTGATCGAGCTGGACTGGTCAAGCATCCCGGGCCAGGTCCGTGGGGTCTCGGCGCACCGTTCCTTGGTGGTGTTGCTGACATCGCTGGATGGCGGAGCGCCGGAGGAAGGGCTCATTCCCGTGGCTGCACAGCTGGCGCAGCAGCACGTGGTGGTGGTGGCGTCCGTCCGGGATCCGCTGCTCGGCCTGATGTTGCGGGAACGGCACAACGCGTCCAGCGTTTTTCGTGCGGCAGCGGCGGAACGCACCCTGCTGGAGCGTGAGGCCGTCAGCAGCCAGCTGCGCCACCAAGGGGTGGAGGTGGTGGATGCTGAACCGCATCAGTTGCCGCCGCAATTGGCCGACATGTACATCCGCCTCAAGGCTGCCGGTAGATTGTGAMAISGRFVLLALLGLAPVLLMPGWGTVLAVVLVLAALLALELGLAASLRSIDVQRSEPGNVALHGTAVSSLTVRNNGRRLLRARVRDAWQPSAGAQNPVQEIDVPAGESRKLAVRLRPVRRGDLRAPHVTLRSQGPLRLAARQRTVECPGSIRVLPPFNSRRHLPSKLRKLRELDGKAAVQIRGAGTEFDSLRDYVRGDDVRSIDWRATARRSAVVVRTWRPERDRRVVIILDTSRTSAARIEDEPRLDTGMEAALLLAVLAERGGDRVDFLAFDRRPRARAGSATTGNLLGQLVQAMAPLDAELIELDWSSIPGQVRGVSAHRSLVVLLTSLDGGAPEEGLIPVAAQLAQQHVVVVASVRDPLLGLMLRERHNASSVFRAAAAERTLLEREAVSSQLRHQGVEVVDAEPHQLPPQLADMYIRLKAAGRLNANANANANA
D1-29_03229714hypothetical proteinGTGAACGTTCCCATCTATCAGCAGGCCCTGGGCCAAGACTTCAACAGGCTGCAGCCCGAGCTCCAGGACTACTTTTCCCTTGTGCCGGGCTCGGGCCAGTACGGAGTAGGCGAGGGTGTTTTTGACGTGGTGGGTTGCCGGCAGCGCTGGCTGAGACCCCTGTTACGGCTCACGTCCCCGGAGGAGGCGTTCTTCCCGGAATATGGTGAGGGCATTCCATTCAGGATCGAAAACCATGCGCATCTGGATCCTTTCGGACGCTCCAGCCTTACGGCCAGGCGGGAGATCAGGTTTCCCTCCCGGACCCGCATTTTCCAGGACACCACCAGTGTGGACCAGGGTGAAGGCGTTCCGCGGCTGGTGGATTATGTGGGCCGCTACCGGCGTTTGGTCACCGACCTTAACCTCAGCGTCACGGCTGAAGGCCGGCTGCGTGGCATCTCGGATGCCTCCCGGTTATTCCTCGGACCCCTCCGCCTGCCCCTGCCGCCGTCGTTTGATGCGAAGGCGTACGCGGAGCAGTGGTGGGACGCCTCGGAGGGGGCCCACGGAAAGCACCGGATCCAGGTTAAGGTCATCCAGCCGCAGATCGGGCTGGTCCTGGTCTATGCGGGAAGCTTCGACTACCGGTTGCGCCCGTACTCCGGTGGCAGCTCCGCCCTGAGCTTCCTGCCCCGCTATGCCCAGCCGGACCGTTGGGAGCGCCGGACCTAGMNVPIYQQALGQDFNRLQPELQDYFSLVPGSGQYGVGEGVFDVVGCRQRWLRPLLRLTSPEEAFFPEYGEGIPFRIENHAHLDPFGRSSLTARREIRFPSRTRIFQDTTSVDQGEGVPRLVDYVGRYRRLVTDLNLSVTAEGRLRGISDASRLFLGPLRLPLPPSFDAKAYAEQWWDASEGAHGKHRIQVKVIQPQIGLVLVYAGSFDYRLRPYSGGSSALSFLPRYAQPDRWERRTNANANANANA
D1-29_032301074hypothetical proteinGTGAGGGTGAACAGCCGCCAGGAGCCGGAGCGGGACCTGCCACATGATCTGAAGGCGCCGCCGTCGGAGGTCACTGCCACCGGCTTGGGCTCCTGGCCGGGGGAGGACCCCTTAGAAGCCGCCCGTATCATCCGTGGTGAACTCGGCAGCCCGCACATGCCCTACCTCGCCGAACTGCCGGACCGCGGCGTGGGTTCCGATGCTGTGGGGCGGACGGCTTCACTCCTGGTGGAGATGGCGGTTGACGTCCAACCTAATGGCTGGCGCCTCGTTGACCGCCCCGGCAAGGACTATCGGCGCGCTGCATCCGCGCTGTCCACAGACATCAATGTCCTGGCGGACGTTGCCGGCGCCGAGGAAAGGCCAGCATCGGAAATCAAGGTGCAGTTGCTGGGGCCCCTTAGCCTCGCCGCCGGACTGCACCTCCACAACGGAGAACGGGCCCTCATCGATTATGGGGCCCGCCGTGACGTGGCGGAGTCACTGGCTGCCGGGGTCGGATCGTACCTGGCACGTGTTTCATCGGCAGTCCCCGGTGCCCGACTGGTGGTCCAGGTGGACGAGCCGGACATCGCCGCCGTCCTCGCCGGCACCATTCCGACATCAAGCGGTTACCGCACGCTGCGCGCGGTAGGAGGACAGGAAGCCATTGAATCCTGGCGCGTGGTGATTGAGTCGCTTCGTGCAGCCGGAGCCGCTGAAATCGCCGTTGCAGTTCCCGAAATTGAGGCACCGTTCGAACGGATCCTTGCTGCCGGGGCTGACGCCATAGCCGTCCCCCTCAAGGCCCTGACCTCCCGCCAGTGGGAGCAGCTTGCCGAAGCCCTGGAAGGCGGAACCCGGCTCTGGGCCGGCGTATTGGATGTTGGCGTGGGCACACTACCCAAGGTGGCCGGCGCAGTGGACTCGGTCTGGCGGCCATGGCACGAACTGGGCCTGCCGGCGTCGACACTCAGTACATTGCGGGTGACACCCTCGGCAGGGCTCGCAGGCCTGACACCGTCAACGGCAACCGCGGTGCTTACCCGATTGACCCAGGTGGTTGACGGGCTGAACCAGGTGGCGCAGGGCTAAMRVNSRQEPERDLPHDLKAPPSEVTATGLGSWPGEDPLEAARIIRGELGSPHMPYLAELPDRGVGSDAVGRTASLLVEMAVDVQPNGWRLVDRPGKDYRRAASALSTDINVLADVAGAEERPASEIKVQLLGPLSLAAGLHLHNGERALIDYGARRDVAESLAAGVGSYLARVSSAVPGARLVVQVDEPDIAAVLAGTIPTSSGYRTLRAVGGQEAIESWRVVIESLRAAGAAEIAVAVPEIEAPFERILAAGADAIAVPLKALTSRQWEQLAEALEGGTRLWAGVLDVGVGTLPKVAGAVDSVWRPWHELGLPASTLSTLRVTPSAGLAGLTPSTATAVLTRLTQVVDGLNQVAQGNANANANANA
D1-29_03231462hypothetical proteinATGACGCAGCACAACCATGACGTTCCTGACACCGAAGCCTACGACGCCGGGGCCAGCTCGCTGGCAGGCCAGGTGGATAATTCGGTAATGGCGGAACTGCTGTCCATCCGCTCCAGCATCGACAACATCGATGCCACCTTGGTGTTCCTCCTGGCGGAACGGTTCAAGGCCACCCAAAAAGTGGGCTTCCTGAAGGCAGCCCACCGCCTTCCTGCAGGAGACCCTGGCCGTGAAACCGCGCAAATAGCCAGGCTCCGCCGGCTTGCTGAGGAAGCACACCTTGACCCGGCGTTTGCCGAGAAATTCCTGAACTTCATCATCGGCGAGGTCATTCGCCATCATGAAGCCATCGCCGAAGACCATGAGGCCGCCGCGGGGAGGCAGGACGCAGAACAGGACGCGTCCCAGGCATCCCAGGGCTCGGCAGTATCTCCCGGCCCGCAAGCCTCCGCCGTAGCGTGAMTQHNHDVPDTEAYDAGASSLAGQVDNSVMAELLSIRSSIDNIDATLVFLLAERFKATQKVGFLKAAHRLPAGDPGRETAQIARLRRLAEEAHLDPAFAEKFLNFIIGEVIRHHEAIAEDHEAAAGRQDAEQDASQASQGSAVSPGPQASAVANANANANANA
D1-29_032321131mnmACOG0482tRNA-specific 2-thiouridylase MnmAATGAGCGGCGGAGTCGATTCCGCCGTAGCCGCAGCACGTGCCGTTGAAGCCGGACACGACGTCGTCGGCGTTCACCTTGCGTTGTCACGGATGCCTGGCACCCTCCGGACAGGCAGCCGCGGCTGCTGCACCATCGAGGATTCACGGGATGCCTGGCGCGCCTGCGACGTCTTGGGAATCCCCTACTACGTCTGGGATTTCTCCGAGCGGTTCAAGGAAGACGTAGTCCAGGACTTCATTGACGAGTACGCCGCTGGCCGTACTCCCAACCCCTGCATGCGCTGCAACGAGCGGATCAAGTTCGCCGCGCTGCTGGAAAAGGCCATAGCACTCGGATTTGATGCCGTCTGCACGGGCCACTATGCCAAGGTGATCACGGACGGGGCAGGAAACCCCGAGCTGCACCGTGCCGCCGACTGGGCAAAGGACCAGAGCTACGTCCTGGGAGTACTCACCCACGAACAGCTCAGACATTCAATGTTCCCGCTGGCAGACACCCCGTCCAAGGCAGAGGTTCGAGCCGAAGCCGAGCGCCGTGGCCTCTCCGTGGCCAACAAGCCTGACAGCCACGACATCTGCTTCATCCCGGATGGCGACACCGCCGGTTGGCTGGCCGAGAAGATCGACATGACCACCGGTGACATCGTGGATGAGACCGGCACGAAAGTGGGAGAGCATCCGGGGGCAAACGCCTTTACTGTTGGCCAGCGCCGCGGCCTGAAGCTCGGAACGCCTGCCTCTGACGGCAAGCCCCGATTTGTGCTGGAGATCCGGCCGAAGGAAAACAAGGTTGTGGTGGGGCCCGAAGCCCTGCTGGCCATTGACGAGATCCGTGGGATCAAGGTGTCCTGGGCCGGACTGCCCATCGCCGAGGTGGAAACGGGCGCAGAGTTCGACTGCCATGCCCAGGTGCGTGCGCACGGCGACCCCGTTCCGGCCACGGCACGAATGGTGCCTCCAGCAGACTCAGGAGCAGCAACAGAAGGTGTGGCGAAGCAGCTGCTGGTTACGCTGACCAACCCGCTCCGGGGCGTGGCTCCCGGACAGACTGTGGTCCTCTACCAGGGCACCCGGGTGCTGGGACAGGCAACCATCGACGCCGCCCGCTCATTGCAGCGCGCTGAGCTCTAAMSGGVDSAVAAARAVEAGHDVVGVHLALSRMPGTLRTGSRGCCTIEDSRDAWRACDVLGIPYYVWDFSERFKEDVVQDFIDEYAAGRTPNPCMRCNERIKFAALLEKAIALGFDAVCTGHYAKVITDGAGNPELHRAADWAKDQSYVLGVLTHEQLRHSMFPLADTPSKAEVRAEAERRGLSVANKPDSHDICFIPDGDTAGWLAEKIDMTTGDIVDETGTKVGEHPGANAFTVGQRRGLKLGTPASDGKPRFVLEIRPKENKVVVGPEALLAIDEIRGIKVSWAGLPIAEVETGAEFDCHAQVRAHGDPVPATARMVPPADSGAATEGVAKQLLVTLTNPLRGVAPGQTVVLYQGTRVLGQATIDAARSLQRAELNANANANANA
D1-29_032331239andAaAnthranilate 1,2-dioxygenase system ferredoxin--NAD(+) reductase componentATGGTGATCGTTGGTGCCGGGCTTGCCGGTGCCACGGCAGCACGGACCCTGCGTTCCGAAGGTCACACGGGCCCGGTCATCCTGGTTGGCAGCGAGCGCCACAACCCCTACATCCGCCCGCCGCTGTCGAAGGACTACCTGCTGGGCAAGGAAGGCGAAGACAAAGCTGCTGTGGTGCCGCCGGGCTGGTACGCGGAGAACGACGTCGACCTGCGCCTTGGCGTGTCAGTCACCGGCATACGTCCGGACGCAGGCACGGTGCAGCTTAACGACGGAACATCACTGCCGTACCAGTCTCTGCTGCTCGCCACCGGTGCGGTCCCCCGCACCATTCCGCTGCCGGGGAGCGAGTTCTCAGGGGTCACCACGTTCCGCACCCTCGATGACAGCCGCCGGCTGCGGCAGCTCCTGGACCAGGGCGGAAAAAACGTGGTGATGATCGGCTCCGGCTGGATAGGCATGGAACTGGCAGCCGCCGCGGCGACTTATGGCAACAACGTCACGCTGCTCGGCCGGGAAGACGTTCCGCTGGCCGCCGCCATTGGCCCCGAGTTGGGCGGCTTCTTCCGCTCCCTCCACCAAGCCCATGGCGTGAACTTCAGGCTTCCGGCATCAGCCCATGAACTCACGGGCACTGACGGCGCCGTCTCGGCAGTGGTCACCGACAGCGGTGAAGTCCTCCCCGCCGATGTTGTGGTGATTGCAGTGGGGGTTGTACCCGACGTCGGACTCGCGCACACCGCGGGGCTGAAAGTGGAGAACGGCATACTCACCGATGAGTCCCTGCGGACCAGCGTGACCGGCATTTTCGCGGCGGGCGATGTTGCCAACGCCCTGCATCCTTTCACTGGCCAGCACTACCGCAGCGAGCATTGGTCCAATGCCCTGACCGGCGGCAAGGTGGCAGCCCGGGCGATGCTGGGCCTGGATGCGGTTCACAGCGCCATCCCCTATTTCTATACTGACCAGTTCGACGTCAGCATGGAGTACTCGGGATTCCCCGATCTGGCCACCGGCACGAAACCGGTGATCCGGGGTTCGCTGGAGGCCAAGGAATTCATCGCGTTCTGGCAGCGAGACTCCCGGGTGGTAGCCGGAATGAGTGTCAACTGGCCCCGCACGTCAGGCCCGGCGCAGAAGGTCATCAAGGCCCTCATCACGGGCCGCCTCCAGGTGGCTCGGGAACGGCTGGCGGACGCCTCGGTGGGCTTGGATCAGATGCTGCTGCCGGAGGCCTGAMVIVGAGLAGATAARTLRSEGHTGPVILVGSERHNPYIRPPLSKDYLLGKEGEDKAAVVPPGWYAENDVDLRLGVSVTGIRPDAGTVQLNDGTSLPYQSLLLATGAVPRTIPLPGSEFSGVTTFRTLDDSRRLRQLLDQGGKNVVMIGSGWIGMELAAAAATYGNNVTLLGREDVPLAAAIGPELGGFFRSLHQAHGVNFRLPASAHELTGTDGAVSAVVTDSGEVLPADVVVIAVGVVPDVGLAHTAGLKVENGILTDESLRTSVTGIFAAGDVANALHPFTGQHYRSEHWSNALTGGKVAARAMLGLDAVHSAIPYFYTDQFDVSMEYSGFPDLATGTKPVIRGSLEAKEFIAFWQRDSRVVAGMSVNWPRTSGPAQKVIKALITGRLQVARERLADASVGLDQMLLPEAPGPT0019730_231DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019730-hcaD|cndC1-K00529NANA
D1-29_032341233iscS_2COG1104IscS-like cysteine desulfuraseGTGCCCGTCTACCTGGATCATGCAGCAACCACGCCTCTCTCCGCCGAGGCGCTGGCAGCTCTAACGCGGGAACTCGCCCGCACGGGCAACCCATCCTCACTCCACGGCTCGGGCCGCCGGGCGCGCCGTTCCGTCGAGGACGCCCGGGAAACCATTGCCGCGGCCGCCGGCGCCCACCCCTCAGAAGTCATCTTCACTTCCGGCGGAACCGAAGCGGACAACCTTGCCGTCAAGGGCCTCTTCTGGTCCAGGTCCGGTGAAGATTCCTCCCGGCGCCGCATCCTCTGCTCCGCCATCGAACACCCGGCCGTGCTGGATACGGTGGAATGGCTGGAGCGCCATGAGGGCGCCGTGGTCACCTGGCTGCCTGTGGACGCCGACGGCGTGGTGGACCTGGAAGTTCTCAGGTCCGAGCTGGAAAGGGAACCGGGAACGGTCGCTCTCGTGACGGTCATGTGGGCAAATAACGAAGTGGGCACCATCCAGCCGGTGCACAGGATCGTGGAGCTGGCCCACGTGGCGGGGGTGCCCGTCCATTCGGACGCGGTGCAGGCTTTCGGTTCCTTGCCCGTTGACTTCAAGGGCTCGGGCCTTGACGCCATGTCCATTTCCGGACACAAGATTGGCGGCCCTGTGGGGGTCGGCGCCCTGCTGCTGGGACGTGCGGTGAAACTCACCCCGGTGCAACACGGCGGGGGCCAGGAGCGGGATGTGCGTTCCGGGACACTGGACACCGCATCCATTGCCGCCTTTGCAGCGGCGGCGCAGACAGTCACCGCGAACCTGGCAACAGAGTCGGCCCGGATCTCCAAACTGCGGGACAGCCTGATTGAGGGTGTCCGGGGCAGCATCCCGGAGGTGGTCCTGCGCGGGGCCCCGGCGGAGGGGCGGCTTCCCGGCAATGCACACTTCACGTTCCCGGGCTGTGAAGGGGATTCACTGCTGTTCCTGCTGGACCTGGCAGGAGTGGAATCGTCCACCGGATCTGCCTGCACAGCCGGAGTTCCACGGCCATCCCACGTTCTGCTGGCCATGGGTTTGGATGAAGAGACGGCCCGCGGCGCCCAGAGGTTCACCCTCGGTCATGCATCAACCCCGGCGGATGTCGACGCCCTGCTGGCAGCCCTTCCCAACGCTTATGAGCGGGCGCAGCAGGCGGGCATGGCGGGGCGCGAATCCTCGATCCAGACGGCAGGTACGGTGGCCCGTCAGGCCTCCGGCAGCAGCATCTGAMPVYLDHAATTPLSAEALAALTRELARTGNPSSLHGSGRRARRSVEDARETIAAAAGAHPSEVIFTSGGTEADNLAVKGLFWSRSGEDSSRRRILCSAIEHPAVLDTVEWLERHEGAVVTWLPVDADGVVDLEVLRSELEREPGTVALVTVMWANNEVGTIQPVHRIVELAHVAGVPVHSDAVQAFGSLPVDFKGSGLDAMSISGHKIGGPVGVGALLLGRAVKLTPVQHGGGQERDVRSGTLDTASIAAFAAAAQTVTANLATESARISKLRDSLIEGVRGSIPEVVLRGAPAEGRLPGNAHFTFPGCEGDSLLFLLDLAGVESSTGSACTAGVPRPSHVLLAMGLDEETARGAQRFTLGHASTPADVDALLAALPNAYERAQQAGMAGRESSIQTAGTVARQASGSSIPGPT0000065_1125DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
D1-29_03235663hypothetical proteinATGGGCAGACTTTCGTGGATGCGCCGTATGGCGGCAGTTGCATCGCTGGGCGATGACAAACGCCGGCAGCTGTTTGAATTAGTGGCTTCCTCCGCCGGGGCCGTGGGGCGCGATGAAGCCGCACTTGCCCTCGGACTGCCCCGAAGTACGGCGTCCTTCCATCTGGACCGGCTGGTCCAGGACGGGCTGTTGTCTGTCGAGTTCCAGAAGCCGGCAGGAAAAGCAGGCCCGGGCTCCGGCCGCCCGGCGAAAATGTATCGGACGGCTGCGCGGGAGGTAGGGGCCTTCGTCCCGGACCGCAACTACGACCTCGCGGGGGAGTTAATGGCCACCGCCATCGAGGAGTCTGTCGCAGCCGGGAGCTCCGTCCACGATTCGCTGGTGGCCACTTCCTACCGCAAGGGCAAGGCAATGGCGGAGGGCAGCGGAAGCCTGGAAGAGTTCCTCGCGGGGGAGGGCTATCAGCCTGCACCTGACGGAGAAGGCGGCTTCGTCCTGGTCAACTGCCCGTTCCATCGGCTCTCCGAGGGCCATGCCGCGGTGGTCTGTGCCATGAACGGAGCCTTCCTGACCGGCGCAGCTGCAGGCTGCGGGGATTCGGAGGAACGTGTGACGGCAAATAGCGTGCCCGGCCAATGCTGCGCCAGGATTACCCCGCCGTGAMGRLSWMRRMAAVASLGDDKRRQLFELVASSAGAVGRDEAALALGLPRSTASFHLDRLVQDGLLSVEFQKPAGKAGPGSGRPAKMYRTAAREVGAFVPDRNYDLAGELMATAIEESVAAGSSVHDSLVATSYRKGKAMAEGSGSLEEFLAGEGYQPAPDGEGGFVLVNCPFHRLSEGHAAVVCAMNGAFLTGAAAGCGDSEERVTANSVPGQCCARITPPNANANANANA
D1-29_03236441hypothetical proteinATGAAAACCAACCCTGCAGCACGGACAGTCAGCCAAACGCCGGCGATGGAACCGGCACGGCAAGCCTTCCTGCTGCTGCGTACCGTTTTTACCGTCGCGCCCATACTTTTTGGGCTGGACAAGTTCACCAACCTCCTCACCGACTGGACTATGTACCTCGCCCCCGTGGCGACGTCAGTGGTGCCGCTGCCTGCGCAGACGTTCATGTACGTCGTCGGGGTTGTGGAAATCATCGCCGGCATCGCGGTGGCGGTCCGCCCGCGGTTCGGTTCCCTCTTGGTGGCCGTCTGGCTGCTCGGCATCATCGTTAACCTGCTGATCCTGGGCAGCTTCTACGATGTGGCGCTTCGGGACTTCGGTCTGCTCGTTGGAGCATTGGCCCTGAACCGGCTGTCCCCCGCCGGCACCCGCGGCCAGGGCCGCAAGCTCTGGCGCCGCTGAMKTNPAARTVSQTPAMEPARQAFLLLRTVFTVAPILFGLDKFTNLLTDWTMYLAPVATSVVPLPAQTFMYVVGVVEIIAGIAVAVRPRFGSLLVAVWLLGIIVNLLILGSFYDVALRDFGLLVGALALNRLSPAGTRGQGRKLWRRNANANANANA
D1-29_03237675hypothetical proteinGTGGAAGTGAAGGCACGGTCTGCAGCTGTGGTGGTGGTTGGTTCGCTGTTTTCGGCAGCAGCATTGACGGGGTGCAGCATTGACGTCCCCGATCCGGCCGCCCCGAAGACGGAGCAGACGGCGCCGGCCCTGGCCACTCCCACCATCACTCCTGGCCACGACGCGGCGGCGGTAGCGGCCAAAGACATGACGTTTGCTGCGGGCACCACGCTGGCGAAGGGTGTTCCGGTGGGGATCTCTGACGGACTGAAGGAAGCGCCGGGCTGGACGCAGGTCAAGGAAAACGCGGCTGGTGAGAGCCAGTACCTCAAGGCCGATGGCTGCCTCGTGGCCACCAAGGTCCGTATCGACCAGACGCCGCTGGTCCTGGCTGATGACCGGGCCTCCACCGCAGGCCTCTTCGAGTACTTGGACCCAAGCATCCTGCCCGAATACCTCAAGACAGAAACCCTCCGCTGGGGCGGTGAACCTGACAAACAAGGACCAAAGGTGGAGGTGCTGGCCCTTGAACAGCCAGCACCTCCGGGGGGAAAAGCCACAGCCATCATGGCAAGGCTCTTCGGCACTGCCGGTTCCTCCGTCTACCTTTCGGTCTCATGCCCCGACGCCGCGGCGCTCGCGGCTGCCCGTGCAGAGGCCTCCCAGCGGCTACTGATCGTCCCGCCGTCAAACTAGMEVKARSAAVVVVGSLFSAAALTGCSIDVPDPAAPKTEQTAPALATPTITPGHDAAAVAAKDMTFAAGTTLAKGVPVGISDGLKEAPGWTQVKENAAGESQYLKADGCLVATKVRIDQTPLVLADDRASTAGLFEYLDPSILPEYLKTETLRWGGEPDKQGPKVEVLALEQPAPPGGKATAIMARLFGTAGSSVYLSVSCPDAAALAAARAEASQRLLIVPPSNNANANANANA
D1-29_03238966dnaJ_1Chaperone protein DnaJTTGACCGAGAGCAGCAGCTCCCACTACCAGGTGCTCCGCGTCGCCGTGACAGCCACCGACAAGGAGATCAAGGTGGCCTACCGCCGGGCGGCCCGCAAGGCCCATCCCGATCATGGCGGCGACGCCGCCGCCTTCCGCCGCGTGACGGCAGCGTATGAAACCCTTATCGACCCCAAACGCAGAAGTGCCTACGACCGCTCCTATGCCGCGGGAACAGCCGGCAACGGTTCCGGCGGCGAGGGTTCGGGGCCGCACTTCGACGCCCCGGCGGCAGGCAGTCATGCCTCGGCCACCGTCCACCGTCCCAATACTCCGCGCAACACCGCCGGTGATGCACCGGTCTACGTCCCGCCCTTTGACGCGGCGGCGTTTGATGCTGCGGGAACCGTCCCGCTGATACCCCTCAGCCAGGCAAGCCAGCAGGTCCATGGGATTCCGCGAAAACGGGGCATCTTTGGGGCCGAGGCACGGATCCAGCGTGAGATGCGCACCGTGCAGCTCATCAGCCGGCAGGTTCTGCCCGCAATTCCAGCGGCACGCCTGATCAACGGGCTGCAGTCACCGGCGGACAACAGCCACATCGACCACGCCCTCCTTTCCGGCTACCGGCTTGCCATCATCGGTTCCATGCTCCTGCCCAAGGGCGCCTACGCCTGGGACGGGCAGGCCCTGCACCACGGCGGACGCTCCATCGCCCCGCCGCAACTGGCCCACGTGGTGCGGGCCATGCAGGAGATCTTTCCAGAGTTGAACGTCACCGGCTGGACAGTCATCCACAGCCCCGACGGGAACCTGCATGAGCCCGTCATCGATCGCCACCGGCGTTCCGGCAGCAGCCACGAGATCGTCCAGGTGGTCAACGCGGCCGGACTGGTCCGCGGCCTCAAGCAGTTCCTTTCCTCCGGTCCCGCGCCGAACACCGTCAACGTGCCCGTATTGGCTCGGCTTTTGCGGGGCATGCACTGAMTESSSSHYQVLRVAVTATDKEIKVAYRRAARKAHPDHGGDAAAFRRVTAAYETLIDPKRRSAYDRSYAAGTAGNGSGGEGSGPHFDAPAAGSHASATVHRPNTPRNTAGDAPVYVPPFDAAAFDAAGTVPLIPLSQASQQVHGIPRKRGIFGAEARIQREMRTVQLISRQVLPAIPAARLINGLQSPADNSHIDHALLSGYRLAIIGSMLLPKGAYAWDGQALHHGGRSIAPPQLAHVVRAMQEIFPELNVTGWTVIHSPDGNLHEPVIDRHRRSGSSHEIVQVVNAAGLVRGLKQFLSSGPAPNTVNVPVLARLLRGMHNANANANANA
D1-29_03239468trmLCOG0219tRNA (cytidine(34)-2'-O)-methyltransferaseGTGTTCCGTATCCTCTTCCATGCACCCGAAATCCCCGGCAACACCGGCAACGCCATCCGGCTGGCGGCCATCACCGGCGCCGAGCTGCACCTGGTGGAACCCCTTGGCTTTGATTTTTCAGATGCCAAACTCCGCCGGGCTGGTCTCGATTACCACGACCTTGCCGTGGTCACCGTCCACAAAACGATCGAGGATGCCTGGCGGCACCTAGACCCGGACCGCGTGTACGCGTTTACGTCCGACGGGCAGGCGAGCTACACGGACATAGAATACCGTCCCGGCGATGTCCTCATGTTCGGCCAGGAGTCCGTGGGGCTCCCGGAGCACCTCAAGCGGGATTCGCATGTCACCGCCACTGTCCGGCTCCCGATGCTCCCGTCACTGCGGTCGCTGAATCTTGCCAATGCCGCTTCCATCGCGGTCTACGAAGCCTGGCGCCAGCAGGGTTTCGCGGGCGCGCAGACCTGAMFRILFHAPEIPGNTGNAIRLAAITGAELHLVEPLGFDFSDAKLRRAGLDYHDLAVVTVHKTIEDAWRHLDPDRVYAFTSDGQASYTDIEYRPGDVLMFGQESVGLPEHLKRDSHVTATVRLPMLPSLRSLNLANAASIAVYEAWRQQGFAGAQTNANANANANA
D1-29_03240723hypothetical proteinGTGACCCCACTGGAGGCGGGACGGGGCACAGGCCCCCAGGGATTCACAGCTGTGGGCGGCGATACCGGCCAGGGCGCCATTGCGTCGCCGTCCCGAGACCTATGCTTGTTAGTGATGGAAACTCCCAACGCACCAAACTTCGAGGCTCCGGCCGCCGTCACCGAATCGCCGGCTGACGTCAGCCAGCGCCTCGCCGGGCTGATCGGACGTATCGCCGAGGGAGACCAGCAGGCGTTCGCGGACTTCTACCAGCTGACGTCGCGCCGGGTCTTCGGTATGGCCCGGCGGGTCCTGATCGATGCCGAACTCAGCGAGGACACCACACAGGAGGTCTTCATCCAGGTCTGGCAAAACGCGGCAAAGTTTAATGCGGAGGCCGGGAGTCCGCTCTCGTGGCTGATGACCATCGCGCATAGGCGGGCTGTGGATAAAGTGCGCTCGTCGCAGTCGGCAACAGACCGGGAGGCCCGGTATGGGGCCAGTACTCAGGACATCGATCACGACTCCGTCTCTGATGAAGTGGGCAGCAAACTGGAAGCCGAGGCGGTGGTCCGATGCCTCGAAACGCTTACCGATACACAGCAGGAATCCGTCCGGCTCGCCTACTACGGCGGCCTCACATACCGGGAGGTCGCGGAGCGCCTGAACGCCGCAGTGCCTACCATCAAGTCCCGCATCCGCGATGGACTGATCCGCTTGAAGACATGTCTGGGGGTGAGTTGAMTPLEAGRGTGPQGFTAVGGDTGQGAIASPSRDLCLLVMETPNAPNFEAPAAVTESPADVSQRLAGLIGRIAEGDQQAFADFYQLTSRRVFGMARRVLIDAELSEDTTQEVFIQVWQNAAKFNAEAGSPLSWLMTIAHRRAVDKVRSSQSATDREARYGASTQDIDHDSVSDEVGSKLEAEAVVRCLETLTDTQQESVRLAYYGGLTYREVAERLNAAVPTIKSRIRDGLIRLKTCLGVSPGPT0014960_5062DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_03241861rskAAnti-sigma-K factor RskAATGAACAATCACGACGGCGCCCGGCGCCCGGGCTCGTTCGGGGATACCGTTGCCACTGACCTGGCCTCGGGGCGGGCGGTGGATTTGGCCGAGTTGTATGCGCTGGACGCCCTGACCCAGGACGAACGCTCAGCCATTGAGCAGTACATCGACGCCGCCCCCGAGGATGAGCGCAGCGCCTTCCAGGAACGGGTCCGCCAAGCCAGGGAAGCCCTGGCGGTCACCTTTACGGCCGAGGAGGACCCTCCCGCGGATCTCTTCACGCGCATCGTTTCGCAGTTGCCGGCCCAGCAACAGCCGGCGCAAACACCCGCCCCTTTTGGCATTAGTGCTCCGCCGCCGCCCGCGGTGGCGGACGGCGCCGCGGTTAGCGATGAACTGTCTGCTGCAAGGCAACGCCGGGAAGAACGACGCCGGATGGCCGGGCCACGCCGCTGGCTTGCGGGCATTGCCGCCGCGGCGTTCCTGGCGCTGGGCGGGGTGGGCGTCGGTGCGTACATTGCCGACCAAAATGATCCGCTGAACCAGGTGGTCCGGGCTGAGGATGTCCGCGAAGCCTCCGTTGACGTTTCCGGCGGTGGGACGGCCACACTGTTGATCTCGTCCTCCAAGGATGCAGCTGTAGTCAAGATGAACGGCGTACCGGCACCTCCGGCAGGCAAGGTGTACCAGATGTGGCTGATTCCCAAAGACGGCTCGGCACCCGTCTCCCAGGGCCTGATGGACGAAGAGGCACTGTCCAAGCCCGCAGTCGTGAAGGGAATCACGTCCGCCACGGCACTGGGCATTACGGTGGAACCCGCCGGCGGCTCAGGCGTCCCGACCTCCCCCACAGTGGCCACTGCCGAGCTGGGCGCCTGAMNNHDGARRPGSFGDTVATDLASGRAVDLAELYALDALTQDERSAIEQYIDAAPEDERSAFQERVRQAREALAVTFTAEEDPPADLFTRIVSQLPAQQQPAQTPAPFGISAPPPPAVADGAAVSDELSAARQRREERRRMAGPRRWLAGIAAAAFLALGGVGVGAYIADQNDPLNQVVRAEDVREASVDVSGGGTATLLISSSKDAAVVKMNGVPAPPAGKVYQMWLIPKDGSAPVSQGLMDEEALSKPAVVKGITSATALGITVEPAGGSGVPTSPTVATAELGANANANANANA
D1-29_03242777bshB2COG2120putative N-acetyl-alpha-D-glucosaminyl L-malate deacetylase 2TTGACTGATCGCAAGGCTTCGCAGAGCCCGTTCAACCCGGCAATTCACCGGGTTGGGCGGGTGCTCTGTTTCGCGGCCCATCCTGACGACATCGACTTTGGCGCCGCTGGCACCATCGCTGCCTGGACGGCGGCCGGTGTACAGGTCAGCTACTGCATCATGACCGACGGCGACGCCGGCGGCTTCGATCCTGACCACCGGGCCCGGATCATCGCCATGAGGGCCTCCGAACAGGAGCGCGCCGCAGCATTGGTTGGTGTCACGGACATCCACTATTTGCACGAACGCGACGGGTACCTGGAGCCGAACCACCAGGTGATGCGTGGTGTCGTGAAGCTGATCCGCGAAATCCGGCCGGACGTTGTGCTTTCCATGCACCCCGAGCGGAACTGGAACCGGATCCAGAAGAGCCACCCGGACCATCTCGCGGTGGGGGAGGCCGTCACCCGCGCCGTCTACCCCGCCGTGGAAAACCCTTTCGCCTACCCTGAGCTTGCGGAAAGCGGACTGGCAGCCTATAAGTTGCCCTGGCTCTGGCTGTATGCAGGGCCGGAGGAACGGGAAAACCACTTTGTTGATGTCACGGACCATGTGGGCAGCAAGCTTGAGGCCATCCACGTGCACGTCAGCCAGCATCCGGATGTGGCTGCCATGGAAGCGGCCGTCAAGGATGGGATGATCGCCGGTGCCAGGCGCGCCGGCCTGCCCGATGGCCGAAGTGCTGAGGCCTTCCACGTCGTGGCGGTCAACGGTCCGGGGACCATCGCCGGCTTCTAGMTDRKASQSPFNPAIHRVGRVLCFAAHPDDIDFGAAGTIAAWTAAGVQVSYCIMTDGDAGGFDPDHRARIIAMRASEQERAAALVGVTDIHYLHERDGYLEPNHQVMRGVVKLIREIRPDVVLSMHPERNWNRIQKSHPDHLAVGEAVTRAVYPAVENPFAYPELAESGLAAYKLPWLWLYAGPEERENHFVDVTDHVGSKLEAIHVHVSQHPDVAAMEAAVKDGMIAGARRAGLPDGRSAEAFHVVAVNGPGTIAGFNANANANANA
D1-29_03243954etfA_3COG2025Electron transfer flavoprotein subunit alphaATGGCAAACGTACTTGTATTCATTGACAACCCGGGCGATGCCCTGAAGAAGAGCAGCCTGGAACTCCTGACGCTTGGGCGCTCCCTCGGGGAGACCATAGTCGCGTTGAACGGCGAGCTTCACGATGGCGTCGCCGCCACGCTCGCCGAGTATGGGGCAGCCAAAATTCTGCGGCCATCCGCCCAGGACCTTGACGACTACCTCGTGGCTCCCAAGGCTGCCTACCTTGCGGCCGCCGTCGCTGAAACGGGTGCCGGCACCGTCCTCCTGGACAACTCGCCGGAGGGCAAGGAAATTGCCGCCCGGCTGGGAATCCGGCTGAATGCAGGCGTTATCACCGATGTTGTGGCAGTTGACGCCGACGGGACCGCTCATAAATCCGTGCTGGCAGGCTCCTACAACACGGCAGCGAAGGTTACCACCGCCGTGTCGGTGCTGACGGTGAAAGCCAACAATGTGACACCCGAACCGGCGCCCGCTCCCACTGCCCCGGAAACCGTCATCGTTGAGGTTCCGGCTGACAGCACTGCTGCAGCGGCCCGCGTCACCGAACGCCGGCAGAAGGTTGCCAGCGGCCGCCCGGACCTGACTGATGCGCGGATCGTGGTGGCCGGCGGACGTGGCCTGGACGGCGATTTCGGTCCTGTGGAACAGCTGGCCGATGCCCTGGGCGCTGCCGTGGGAGCTTCCCGTGCGGCCACCGATGCAGGCTGGATCAGCCATGACGCCCAGGTGGGCCAGACGGGCAAGACTGTCTCGCCCCAGCTCTACATTTCCGCCGGCATTTCCGGAGCGATCCAGCAGAAGGCCGGCATGCAGACGGCCAAGGTCATCGTGGCGGTGAACAAGGATGCAGAATCACCGGTCTTCGAGATCGCCGATTTTGGCATTATCGGGGATCTGTTTGACGTCCTTCCCCAGGCCACGGAAGAGATCAAACGGCGAAAAGGCTGAMANVLVFIDNPGDALKKSSLELLTLGRSLGETIVALNGELHDGVAATLAEYGAAKILRPSAQDLDDYLVAPKAAYLAAAVAETGAGTVLLDNSPEGKEIAARLGIRLNAGVITDVVAVDADGTAHKSVLAGSYNTAAKVTTAVSVLTVKANNVTPEPAPAPTAPETVIVEVPADSTAAAARVTERRQKVASGRPDLTDARIVVAGGRGLDGDFGPVEQLADALGAAVGASRAATDAGWISHDAQVGQTGKTVSPQLYISAGISGAIQQKAGMQTAKVIVAVNKDAESPVFEIADFGIIGDLFDVLPQATEEIKRRKGPGPT0001040_2961DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-29_03244801etfB_3COG2086Electron transfer flavoprotein subunit betaTTGAAGATCATCGTCCTGGTCAAGCATGTACCGGACGCCCAGTTTGACCGTCACCTCAACGGGGAGGGCTACACCACCGACCGTGACGAAAGCATCCTGTCCGAGCTGGACGAGTACGCCCTCGAGGCTGCACTGCAGCTGGCCGAAGCCCGCGGCGGAGGCAAGGCCGGCAATCAGGTCATCGCCCTCAGCATGGGACCGTCGGGGGCAGTGAACGCCGTAAAGAAGTCACTGCAGATGGGCGCCACCGAAGGCGTGCACCTCACAGACGACGCGCTCGCCGGCTCGGATGCCGCAGCCACATCGCTGGCGATCGCCGCCGCAATCCGCCACCTAAGCGCTGACGCACCCGTTGACCTTGTCCTCACGGGCATGGCTTCCACCGATGGTGAAACGTCGCTGGTGCCCGCACAGCTGGCAGAGCGCCTGGGCCTTCCCCAGGTGACCTTCGCATCTTCCCTTGAGGTCGACGGCGGCCGGCTCACCGCCCGCCGCGACGCCGATACCTACTCGGAGACCGTAGAGGCACCGCTGCCTGCCGTGGTGTCCGTAACCGACCAGATCAACGAGCCCCGTTACCCCAACTTCAAGGGCATCATCGCCGCCAAACGCAAGACCATCACCACCCTCTCGCTGTCGGACATCGGAGTGGATCCCGCGCAGGTGGGCCACTCCGGGTCATGGACCAGAGTGACGTCTGCGGAGGAACGCCCGCCGCGCACCGCAGGAACCATCATCACGGACGAGGGCGACGCCGGCATCAAGCTCGTCGACTTCCTGGCCGCCCAGAAGCTGCTCTAAMKIIVLVKHVPDAQFDRHLNGEGYTTDRDESILSELDEYALEAALQLAEARGGGKAGNQVIALSMGPSGAVNAVKKSLQMGATEGVHLTDDALAGSDAAATSLAIAAAIRHLSADAPVDLVLTGMASTDGETSLVPAQLAERLGLPQVTFASSLEVDGGRLTARRDADTYSETVEAPLPAVVSVTDQINEPRYPNFKGIIAAKRKTITTLSLSDIGVDPAQVGHSGSWTRVTSAEERPPRTAGTIITDEGDAGIKLVDFLAAQKLLPGPT0001035_731DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-29_032451788hypothetical proteinATGACTGAGAACCCAACACCGGGTGCAGCGCCTGAGAACCGGAATCCGGGCAGGCACGACGCACCGGAGCAGCCGGAGGCCCGGGACGGGAACAACGCTGAGCCGTCGACTGAACCAACCTTGACTGATCCCACCCTGACTGATCCCACCCCGGGAACTGCGGCAGACAACGGGCCCAAGCTGCAGGACACGGCGATGCGCTCCAACGGGAACCAGCCCCATGACGACCTTCCTGCAGGTCAGGACAGACGCAGCGATTCGACCGAGAGGCTTGACCGGCCCCAGGACGGCTGGAACTCCACTCAGCCGCTGGCCTCTGCCCCCCAGCCTCAGTACCCTCCCCGTCAGCCGTTCTATGGCCAACAGAACCCCGGCCAAGAGAAGCCTGGCCAGCCGAATTACGGCCAGCACAGTCAGGGCGGGCAGAACACGGGTCAACAGCCTTACGTCCAGCAGCATGCGGGCCAGTACCACGCCGGCCAGCAGTACGCACAGCATGCTGCGCACTCGGCCGGACCTGGCGGCTTTGCCGGCGGCCCGGGCGGCATCGCCAGCGCGTCCAATCCGGCCAATGCGCCGCGCCGGAAGGCCAGCTTCGGCGTCGGCACCCTGGTTGCCAGCATCCTGGCGGCAGGCCTGGTGGGCGGCGGCGTAGCCACTGTTGGGTCAAGCAGCCTCTTCAATCCGGGCTCGTCGTCGGGAGTGAGCAACAGCAGCCAGGCTGCGCCGGTCATCGTGAACAACAGGGACGACGTGAACGCCATCACGGCAGCGGCCTTGAAGGCTACTCCCAGCGTGGTAACCATCAGCGCCAGCAGTGGCAGTGCCGGCGGTACGGGATCGGGCATCATCCTTGATGATGAGGGCCACATTTTGACGAACACCCATGTGGTCACCCTGGATGGACAGACAGCTGATGCAGCTCTGGAGATCCGCACCAGCGACGGCAGGGTCCTCAGCGCCAAGCTGGTTGGTACAGACCCGCTGTCCGACCTTGCGGTCATCAAGGTTGACGACGCCTCGGGCCTGACTGCCGCCACCCTGGGAGATTCCTCCAAGCTAAATGTTGGAGATACGGCGATCGCCATCGGTTCTCCGCTGGGGCTCACCGGGACAGTGACTGACGGCATCGTGTCAACGCTCAACCGGACCATCAGCGTTGCATCTTCCGCAGCCCCAAAAAACGGCGACGATTCCCAGAGCGACGACGAGGGCGGATTCCAGTTCGCGCCGCCGGACGGCGGGCAGGGCCAGGCCAGGCCAGGCCAGGGCTCCATCTCCATCAACGTCATCCAGACTGACGCGGCAATCAATCCCGGCAACTCCGGCGGCGCCCTGGTCAACACCAAGGGCGAGATCATCGGCGTGAACGTGGCAATCGCCTCGGCAGGCTCCTCAGCGTCATCCACAAGCGGCAACATCGGAGTAGGCTTCAGCATCCCGATCAACCACGCCAAGCGGGTGGCCCAGGAGATCATCGATACAGGCAAGGCCTCCCATGGCCAGTTGGGCGTCAGTGTGAAGGACAAGTCCTCGTCCGGCTCCGCTTCCGGTTTCTCGGTGGGCGCAGACGTGGCAACCGTTGAAGCGGGTTCCCCTGCAGCCAACGCGGGGATCAAAGTGGGGGACGTGGTCACCAAGTTCAATGATCTGGCCATCAGCGACCCCAACCAGTTGACGGCAGCCGTGCGTGAGCAGGCGGCCGGCGCCAAGGTGAAAATCACCATCCTCCGGAACGGCCAGGAACAGACGCTGGACGTCACGCTGGGTACGGCGGCCGAGCAGTAAMTENPTPGAAPENRNPGRHDAPEQPEARDGNNAEPSTEPTLTDPTLTDPTPGTAADNGPKLQDTAMRSNGNQPHDDLPAGQDRRSDSTERLDRPQDGWNSTQPLASAPQPQYPPRQPFYGQQNPGQEKPGQPNYGQHSQGGQNTGQQPYVQQHAGQYHAGQQYAQHAAHSAGPGGFAGGPGGIASASNPANAPRRKASFGVGTLVASILAAGLVGGGVATVGSSSLFNPGSSSGVSNSSQAAPVIVNNRDDVNAITAAALKATPSVVTISASSGSAGGTGSGIILDDEGHILTNTHVVTLDGQTADAALEIRTSDGRVLSAKLVGTDPLSDLAVIKVDDASGLTAATLGDSSKLNVGDTAIAIGSPLGLTGTVTDGIVSTLNRTISVASSAAPKNGDDSQSDDEGGFQFAPPDGGQGQARPGQGSISINVIQTDAAINPGNSGGALVNTKGEIIGVNVAIASAGSSASSTSGNIGVGFSIPINHAKRVAQEIIDTGKASHGQLGVSVKDKSSSGSASGFSVGADVATVEAGSPAANAGIKVGDVVTKFNDLAISDPNQLTAAVREQAAGAKVKITILRNGQEQTLDVTLGTAAEQPGPT0021000_295DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0021000-pepD-K08372NANA
D1-29_032462052hypothetical proteinATGCTGTCAAAGTTCAAACGTACACTCGCCGTTATTGGCCTGACAGGGTTGTTGGCGGCCCCCGCGGCCGCGGCCTGGGCTGAGCCACCGGTGACCATCCCCTCCGGAACGAACGTCGTAGATAACGCCAACGTTCTGGGCTCCCGCAAGGGCGAGGTTCAGGAGGCAGTGCAGAAGCTTCTCAAGGATCACAAGTACAACTTGTACGTCGTGACTGTGGACTCCTTTACAGATCCTGCCGACCCCAAAGAATGGTCGCAAACCGTCGCCACGACCAAGGGCATGGGCCGGGCAGACGTGATCCTCGCGATGTCCGACGACGGCAAGTACTATTTTTCCCCTAACTCAGCCAGCCCGATTTCTTCGAAGACCGCCGCTATCAGCCAAAATGCCGTTGTCGCTAACTTGGGGGGCGGCAAGAGGGATTTTGCCCAAGCAGCCATTGACACCGCACTGGCGGTCGGGGATGCGGCCTCCGGCGGCAGCGGCAATGTTTCTTCCGGGGATGGTGCGGGCACCGCAGTCCTCGTCGGTGCCGGAGTAGTAGCCGCGGGAGGGGCCGGAGCCTACCTGTACTTCCGCAACAAGCGGAAGAAAGCCGGCCAGGCTTCCAGCGCCAGCTACGGCCCGCAGGGTGCTGAACTGGACCCACTCGCTTCGCTCAGCGTGGAGGAGCTCCGCCGCAAGAGCGGCTCCCTGCTCATCGAAGCCGATGATGCGATCAAGTCCAGCGAGCAGGAGCTGATGTTCGCCCAGGCCCAGTACGGCGATTCCGCCGTCGGAAACTTCACCAAGGCGCTGGCGGAAGCCAAGGGACACATGTCCGAGTCCTTCAAACTGCAGCAGCAGCTGGACGACCACATTCCCGACACAGAAGAGCAGCAGCGCAGCTGGCTGGGTGAAATCATCCGCCGGTCGGAGGCCGCCCTGGCCTCGCTCCAGGAGCAGAAGGCTGACTTCGATTCCCTTCGGGAACTGGAGAAAAACGCCCCGCAGGCCCTGGCCGCCGTTAACGGAGGAGCGCGTGAAGCTGATGCCAAGATCGCCAGCGCCGAGCAGTCGCTGACGATGCTCCGCTCCAAGTACGCGGACAGCGCCCTTGCCCAAGTGTCGGACAACATCACGCAGGCTAAGGAACGTTTGGCCTTTGTGCAGAATGCCACGGCCGCGGCTCAGGAGAAACTCGCCGAGGGCGAGGCCAGCCTTGCAGCTGTCGCAGTCCGCGCGTCCGAGGAGAGCCTGCACCAGACGAACGTCCTGCTGGACGCCATCGCCAAAGTCTCGGCAAGCCTGGATGAGGCACGCAGCGGCCTTGAGGCTGCCGTCGTCGAGACATCCCAGGACCTTGCGCAGGCCAAGGCGATGATCCAGTCCGGCGCCCACCCCGAACTGGCCGGCCCGGTGGCACGGGTTGAAACTGCCCTGAGCCAGGTAAAGGCTGAGATCCAGGGCGGCAAGATCGATCCACTCGCTACCTTGGACCGTGTGGAAACAGCCCACCAGGCCCTGGACCAGGCCCTGACCGGAATCCGGGACCAGCAGGAACAGGCCAGGCGGGCCCAGGCCGCGCTGCAGCAGACCATCATGGCGGCGCAGGCACAGATCAGCGCAACCTCAGATTACATCACGGCGCGCCGTGGCGGGGTGGGGACGGAAGCCCGAACCCGCCTGGCCGAATCGCAGCGCAACCTCGACTACGCTCTGTCCATCTCACGCAACGACCCCGTGACCGCACTCACTTATGCACAGCAGGCCCACGCCCTTGCAGCGCAGGCCGCGCAGCTTGCCCAGGCCGACGTTGATAACTTTGGTGGCTACGCCAACCAGGGCTACGGCGGCGGTGGCATGTTCGGCGGTGGCGGAGGCGGCGGCCTGGGCGGTGCCATCCTTGGCGGCATCCTGATCAACTCCATCCTCAACGGCGGCGGCGGTGGCGGATGGGGCGGTGGCCACAGCGACGGCGGTGGCTGGGGCGGAGACTCCGGCGGCGGCTTCGGTGGAGGTGACTTCGGCGGGGGCGACTTCGGCGGCGGCGACTCGGGAAGTTTCTGAMLSKFKRTLAVIGLTGLLAAPAAAAWAEPPVTIPSGTNVVDNANVLGSRKGEVQEAVQKLLKDHKYNLYVVTVDSFTDPADPKEWSQTVATTKGMGRADVILAMSDDGKYYFSPNSASPISSKTAAISQNAVVANLGGGKRDFAQAAIDTALAVGDAASGGSGNVSSGDGAGTAVLVGAGVVAAGGAGAYLYFRNKRKKAGQASSASYGPQGAELDPLASLSVEELRRKSGSLLIEADDAIKSSEQELMFAQAQYGDSAVGNFTKALAEAKGHMSESFKLQQQLDDHIPDTEEQQRSWLGEIIRRSEAALASLQEQKADFDSLRELEKNAPQALAAVNGGAREADAKIASAEQSLTMLRSKYADSALAQVSDNITQAKERLAFVQNATAAAQEKLAEGEASLAAVAVRASEESLHQTNVLLDAIAKVSASLDEARSGLEAAVVETSQDLAQAKAMIQSGAHPELAGPVARVETALSQVKAEIQGGKIDPLATLDRVETAHQALDQALTGIRDQQEQARRAQAALQQTIMAAQAQISATSDYITARRGGVGTEARTRLAESQRNLDYALSISRNDPVTALTYAQQAHALAAQAAQLAQADVDNFGGYANQGYGGGGMFGGGGGGGLGGAILGGILINSILNGGGGGGWGGGHSDGGGWGGDSGGGFGGGDFGGGDFGGGDSGSFNANANANANA
D1-29_03247795COG1842Phage shock protein AATGGTTAAGCAGTCCATTTTCGGCCGCATCGCGCAGCTTGCAAAGGCAAACATCAACTCTGTGCTGGACAATGCTGAGGATCCACAGAAGATGCTGGATCAGATGGTCCGGGACTACACCAACAACATCGCGGAGGCTGAATCCGCCGTCGCGCAGACCATCGGCAACCTGCGCATGCTTGAGGATGACTACAACGAGGACATCAAGAACGCGCGCGACTGGGGCAACAAGGCCCTCGCAGCCTCGCGTAAGGCTGACGAGTACCGCAGTACAGGGCATACTGCCGACGCCGAGAAGTTCGACAACCTTGCCAAGGTGGCACTCCAGCGTCAGATGTCTGCCGAGAACGAGGCAAAGGGTGCCGAGCCGAGCATCTCCTCGCAGCGGGAGGTAGTGGACAAGCTGAAAACCGGCCTGGACCAGATGAAGGGCAAGCTCAACGAGCTCACCAGCAAGCGAAATGAACTTGTGGCCCGTTCCAAGACTGCCGCAGCCCAGTCGCAGGTCCACGATGCGATTAAGAGCATCGACTTTATGGATCCCACCAGCGAGGTAGGCCGCTTCGAAGAGAAGATCCGCCGCGAAGAGGCGAAGGTGCGGGGTCAGCAGGAACTTGCTGCGTCAAGCCTGGACGCCCAGTTCAACCAGCTCGAGGACCTTGGCGAGCAGGTTGAGATTGAAGCCCGCCTGGCCGCGCTGAAGTCCGGCGGCACCTCCAAGCCCGCCATTGGCGCTTCCAGTGCTGCAGCAGGTTCAGAATCAACAGTGGAGGAAGCGGACTTCGACAAGCTCTAAMVKQSIFGRIAQLAKANINSVLDNAEDPQKMLDQMVRDYTNNIAEAESAVAQTIGNLRMLEDDYNEDIKNARDWGNKALAASRKADEYRSTGHTADAEKFDNLAKVALQRQMSAENEAKGAEPSISSQREVVDKLKTGLDQMKGKLNELTSKRNELVARSKTAAAQSQVHDAIKSIDFMDPTSEVGRFEEKIRREEAKVRGQQELAASSLDAQFNQLEDLGEQVEIEARLAALKSGGTSKPAIGASSAAAGSESTVEEADFDKLPGPT0014646_398DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_SHOCK_PROTEINS,PGPT0014646-pspA-K03969NANA
D1-29_03248933hypothetical proteinATGTCCACACCCACGAAGAAGTCCGGTCCCGCGACTGGCAAGCGGTCAAGGCTCTACTGGGGTGTGCCCGCTGCTTTCGTGGCATTGGTGCTGGTGGTCCTGCTTGCCAGGTGGATAACCGGGCTGGCTCCTGTCGCTTCCTTTATCGCTGACTATCCCGGGCATTCCAATCTTCCTGAGGGTGCACCTGTGGGCTTTCCCGCCTGGCTGGCATGGCAACACTTCCTCAACGCCTTCTTCCTGCTGCTGATCATCCGCACTGGCTGGCAGGTGCGCACCACCACGCGCCCCAGCGGCCACTGGACGCGCAATAACAAGGGCCTGATCAAGACCAAGAACCCGCCGACCAAGATCACACTTGAACTCTGGTTCCACCTGACGCTGGATGCGCTGTGGATCCTTAACGGAATTGTCTTCGCGATCCTGCTTTTCGCGACCGGACAGTGGATGCGAATCGTGCCCACCAGCTGGGATGTCTTCCCGAATGCCCTGTCGGCAGCCCTTCAGTACGCCTCCCTGAACTGGCCCACGGAGAACGGCTGGGTGAACTACAACGCACTCCAGCTGCTCACCTATTTCGCCACGGTCTTCATCGCCGCACCGCTTGCCTTTATCTCCGGCATCCGGACGTCCTCTGCGTGGCCCAAAAAGGCCACTGCCCTGAACAAGGCCTATCCGATCGAGCTGGCGCGTGCCATCCATTTCCCGGTCATGATCTACTTTGCGGCGTTCATCGTCGTGCATGTGTTCCTGGTGCTGGCAACGGGGGCCCTGCGCAACCTGAACCACATGTACGGCGGAAGCGACGACGCCGGCTGGGTTGGGTTCTGGGTGTTTGTCGCCTCGGTGGCAGTCATGGTGGCCGCTTGGTTCCTGGCCCGGCCCATTTTCCTTCGCCCCATCGCTTCGCTGATGGGCAAAGTCAGCCGCTGAMSTPTKKSGPATGKRSRLYWGVPAAFVALVLVVLLARWITGLAPVASFIADYPGHSNLPEGAPVGFPAWLAWQHFLNAFFLLLIIRTGWQVRTTTRPSGHWTRNNKGLIKTKNPPTKITLELWFHLTLDALWILNGIVFAILLFATGQWMRIVPTSWDVFPNALSAALQYASLNWPTENGWVNYNALQLLTYFATVFIAAPLAFISGIRTSSAWPKKATALNKAYPIELARAIHFPVMIYFAAFIVVHVFLVLATGALRNLNHMYGGSDDAGWVGFWVFVASVAVMVAAWFLARPIFLRPIASLMGKVSRPGPT0013075_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013075-msrP|yedY-K07147NANA
D1-29_032513015hypothetical proteinTTGTCCCGTCCCACCAGCCCCATCCCTCCCGGCAGACCTTCCACCAGGCGCGGCGCCCTGACGCCCACACTGATAGTCGTTGCGCTTGTCGTGGTGGGGTTTATTTTCTTCGCCAACGTATGGACTGACGTCCTCTGGTACAGGCAACTCGGATTCTTCGAAGTGTTCCTGACCGAAAACCTGGCACGCATTGGGATCTTCGTGGCCGGCTTCACCATCATGTTCCTTGCCGTCTTTTTCGCCGTGCGGATCGCCTACCATGCCCGGCCCGTCTACGCGCCCGATTCAGAAATCCGCGACAACCTGAACAGGTATCAGGCGCAGCTTGAACCGGTTCGTCGGGTGGTTATGATTGGCCTGCCCCTGGTGTTCGGGCTGTTCGCCGGCAGTGCCGCCGCGAGCCAGTGGCAGCGCGTCATGCTGTTCTTTAACCAGGAGCAGTTTGGCCAGAATGATCCAGTCTTCGACCTGGACATCAGTTTTTACCTGATGACGCTTCCGTTCCTTGGGTTCATCACAGGTTTCCTGATCAGTGTGGTGGTGATCGCCGGCATCGCCGGGATCCTGACCCACTACCTGTACGGCAGCATCCGGCTCATGGAACGGGGCATCTTCACCAGCCGGGCGGCCCAGATCCACCTCGCAGTCACCGGCGCCGCTTTCCTTATCCTCCTGGGTGCCAACTTCTGGCTGGACAGGTTCTCATCCGTGCAGAACAACGGAGGCCGCTGGGCGGGTGCCCTCTACACGGATGTGAACGCGGTCATCCCCACCAAGGCCATTCTGGCTGTCGCGGCCGTGCTGGTGGCCATCCTGTTCATCGTCGCAGCGGTCATTGGCCGCTGGCGGCTGCCGGTCATTGGAACGGCAATGCTGATCATCACCTCCATCCTTGCCGGAGGTGTATATCCGTGGGTCATCCAGCAGTTCCAGGTGCGGCCTTCGGAGGAGACCCTGGAAAAGGAGTACATCAAGCGGAACATCGACATGACGCGTGCGGCCTACGGCTTGGACCAGATCCAGGTTGACCGGTATGACGCCACCAACACCGCCACCACTGGCGCCCTGGCCCCGGACGCGCAAACTACCGCCAATATCAGGCTGCTGGATCCAAACCTGATCTCCGACGCGTTCTCGCAGCTGGAGCAGTACCGCCCTTACTACCAGTTCCCGGAGGCGCTGAATGTAGATCGGTACGAGGTGGACGGCAAGGTCCAAGACACAGTCATCGCCGTTCGTGAGCTAAACCCCCAGAATGTGGCCACCAACCAACAAGGCTGGCTGAACCAGCATGTTGTGTACACACACGGCTATGGCGTTGTGGCGGCAAAAGGAAATAAGTTCACAGTCGACGGCAAGCCCGAGTTCCTGCAGTCGGGCATTCCGTCCACCGGCGTCCTTGGCGATGACTCCACGTATCAACCAAGGATTTACTTTGGCGAAACCTCCCCGGACTACTCCATCGTCGGCGCCCCGGATGGCGCTACCCCGCGTGAGCAGGACAGGCCGGCTGGCGAGGGAGAGACACAGTACACGTTTGAGGGCAACGGCGGGCCTAATGTGGGCAGCTTCTTCAACAAGGTCCTCTACTCCATCAAGTTCCAGTCCTCCGATCTGCTCTTGTCCGATGGCGTCAATGAAGAGTCGCAGATTCTCTATGACCGGGATCCGCGCGAGCGGGTCCGGAAGGCGGCCCCATATCTGACAGTGGATGGGAACGTCTATCCAGCCGTAGTGGATGGCCGGGTTAAGTGGATCGTGGACGGCTATACCACCAGCCAGTACTATCCGTACTCGCAGCAGGAACAGCTGTCCGAAGCCACCGCTGACTCCCAGACCACTGCCGGGCGTGCCGTTGCGCTGCCCAACAGTTCCGTCAACTACATCAGGAACTCCGTCAAGGCCACCGTTGACGCCTACGATGGATCGGTGTCCCTGTACGCGTGGGACGATCAGGATCCCGTGCTGAAGGCCTGGCAGAAGGTTTTTCCGACGTCACTGAAGCCGTACTCCGAGATGTCGGCCGACGTCATGAGCCACGTGCGTTACCCTGAGGACCTCTTCAAGGTCCAGCGTCAGCTTTTGGGCCGCTACCACGTGACTGATCCTGCCAGCTTCTACCAGACGAAGGACGCCTGGAGCGTCCCCAACGATCCAACCGTGGACACGGCAGGGGTCAAGCAACCGCCGTTCTACATGTCACTGCAGATGCCGGACCAGGAAGAACCGGCCTTCCAGTTGACCACCTCCTTCATTCCCGAGATCGTGAACGGCAACGCGCGCAACGTCCTGTACGGCTTCCTGGCGGCAGACTCAGATGCCGGCAACGAGAAGGGCGTGAAGGCGGAGACCTACGGCAAGTTGAGGCTCCTCCAGATTCCGCCCGAAATTCAGGTTCCCGGACCCGGGCAGGCACAGAACAAGTTCAACTCTGACCCCACGGTCTCACAGGCGCTGAACCTGCTGCGTCAGGGCGCCTCGGATGTGCTGAACGGCAACCTCCTCACCCTCCCGGTGGGCGGCGGCATCCTTTACGTCCAGCCCGTCTACCTCAAGTCCACGGGGGAGACGTCGTATCCCACCCTCCAGCGTGTGCTGGTGGCATTCGGTGACAAGGTTGGCTTCGCGCCCACCCTGGACGAAGCCCTCAAGCAGCTGTTCGGCGGGGATTCAGGGGCGGCAGCCGGTGATTCCGACAACAACGGCCAGGCCCCCGCTGATCCTGGTGGCACTCCACCTGTTGTAGGGGCGGACGCCAAGGCTGAGCTGAAGGCCGCACTGGACGAAGCGAACGCCGCAATCCAGGCCGGCCAGGCGGCACTCGCGGCGGGAGACTTCGCTGCCTATGGAGAACAGCAAAAGAAGATCGCGGCCGCGCTCCAGAGGGCCATGGAGGCCGAAGGAAGGATTGTGGTGACCGCTCCCGAGGCTGCCCCCTCGCCGGCGGCTGCCACTCCCACGGAAAGCCCCGATCCAACGGGCACGGCAACGCCGTCGCCTTCTCCAAGCAACTGAMSRPTSPIPPGRPSTRRGALTPTLIVVALVVVGFIFFANVWTDVLWYRQLGFFEVFLTENLARIGIFVAGFTIMFLAVFFAVRIAYHARPVYAPDSEIRDNLNRYQAQLEPVRRVVMIGLPLVFGLFAGSAAASQWQRVMLFFNQEQFGQNDPVFDLDISFYLMTLPFLGFITGFLISVVVIAGIAGILTHYLYGSIRLMERGIFTSRAAQIHLAVTGAAFLILLGANFWLDRFSSVQNNGGRWAGALYTDVNAVIPTKAILAVAAVLVAILFIVAAVIGRWRLPVIGTAMLIITSILAGGVYPWVIQQFQVRPSEETLEKEYIKRNIDMTRAAYGLDQIQVDRYDATNTATTGALAPDAQTTANIRLLDPNLISDAFSQLEQYRPYYQFPEALNVDRYEVDGKVQDTVIAVRELNPQNVATNQQGWLNQHVVYTHGYGVVAAKGNKFTVDGKPEFLQSGIPSTGVLGDDSTYQPRIYFGETSPDYSIVGAPDGATPREQDRPAGEGETQYTFEGNGGPNVGSFFNKVLYSIKFQSSDLLLSDGVNEESQILYDRDPRERVRKAAPYLTVDGNVYPAVVDGRVKWIVDGYTTSQYYPYSQQEQLSEATADSQTTAGRAVALPNSSVNYIRNSVKATVDAYDGSVSLYAWDDQDPVLKAWQKVFPTSLKPYSEMSADVMSHVRYPEDLFKVQRQLLGRYHVTDPASFYQTKDAWSVPNDPTVDTAGVKQPPFYMSLQMPDQEEPAFQLTTSFIPEIVNGNARNVLYGFLAADSDAGNEKGVKAETYGKLRLLQIPPEIQVPGPGQAQNKFNSDPTVSQALNLLRQGASDVLNGNLLTLPVGGGILYVQPVYLKSTGETSYPTLQRVLVAFGDKVGFAPTLDEALKQLFGGDSGAAAGDSDNNGQAPADPGGTPPVVGADAKAELKAALDEANAAIQAGQAALAAGDFAAYGEQQKKIAAALQRAMEAEGRIVVTAPEAAPSPAAATPTESPDPTGTATPSPSPSNNANANANANA
D1-29_032521029ylbLCOG3480putative protein YlbLATGACCCTCTCTGGATTGCTGGCTCTGGGACTTGGAATCGCAGCTGGGACTGTCCCGGTGCCTTATGTTGTGGAGTCACCCGGCCCAACTTTCAACACGCTGGGCCAGGCGCAGGGGAGCCCTGTTATTAGCGTTTCGGGCCACGAAACCTATCCCGCCAGCGGGCACCTGGACCTGACTACTGTCTATGTCGACGGCGGGCCTAACGGCCCAGTCAGCATTCTGGGCGCCTTTGCCGGATGGCTTGACAGGACAAAGGCCGTATATCCCGAGGAACTGATCTATCCCAGCGGAACCAGCAAGGAAGAGGCTGACGAGCAAGGAGAGGTGGCCATGACCACCTCCCAGGAGAACGCCGTCGCTTCCGCCCTAAAGGAACTGGAGATCCCCTTCGGCCAGCAGCTCCAGTCCGCCGGCCTCTCAGACGGGTCACCTTCCGAGGGCAAAATCGAAGAGGGCGACCTCTTCAAGTCCATCAATGGCAAGCCGGTCACGTCCCTTGCCGTCATCCAGGAAGAGCTGGCGGCAGGCAAGGGAGCGCCCGCCACAGTTGTTGTGGAGCGTGCCGGCGGGGACGTGGCGCACACCATCACACCTGTGGACAACGGTGCGGGCCGGTACATTCTGGGAGTCATGCTCCAGTATCGGTTTACGTTCCCTTTTGACGTAAAGATTTCCCTCGACAAGGTGGTCGGTCCCAGTGCCGGACTGATGTTCTCACTCGGCATTATCGACACTGTGACGCCGGGAGACCTGACCGGAGGCAAACATATCGCCGGGACCGGCTCCATCACCCCGGACGGCGTGGTGGGACCAATCGGCGGCATCCGCCAAAAAATGGAGGGCGCACGGGCTGGGGGAGCCACTTTGTTCCTTGCCCCCGCCGCCAACTGTGGGGCGGTCGCAGGGAATATTCCGGACGGGCTGCAAGTGGTCAAGGTGGAGAATCTGGCAGAGGCGCGCCGCGCAGTCGAAACCGCCGCTTCCGGCCAGGACACGTCAGCCCTACCGACCTGCTCCAGCAACTAGMTLSGLLALGLGIAAGTVPVPYVVESPGPTFNTLGQAQGSPVISVSGHETYPASGHLDLTTVYVDGGPNGPVSILGAFAGWLDRTKAVYPEELIYPSGTSKEEADEQGEVAMTTSQENAVASALKELEIPFGQQLQSAGLSDGSPSEGKIEEGDLFKSINGKPVTSLAVIQEELAAGKGAPATVVVERAGGDVAHTITPVDNGAGRYILGVMLQYRFTFPFDVKISLDKVVGPSAGLMFSLGIIDTVTPGDLTGGKHIAGTGSITPDGVVGPIGGIRQKMEGARAGGATLFLAPAANCGAVAGNIPDGLQVVKVENLAEARRAVETAASGQDTSALPTCSSNNANANANANA
D1-29_032531464hypothetical proteinATGACCTCCAACCCACTCAATCCGTCCAATGGCGACGATGCGCCAAAGGATCCGTTGACAGAAATGCTGCAGAACCTGATGGGCGGCAAAGGCATGGAAAACATCGACCCCGCCGAGCTCGCGAAGGCAGCCGGACTGCCGGACGACCCCAATCTCCTGGCCCAGATGTTCTCCCAGGTGCAGGCCATGATGAGCGCACCGTCTGAAGGTCCCGTGAACTGGCAGCTCGCCCACGAGAATGCGCGCAGGGTTGCGGCCAGCAGCGCCGATCCGTCCGTGACGTCCCAGCAGTCCCGTGAAGTAGACGAGGCGTTGCGTCTGGCCGAGCTGTGGCTCGATCCCGTCACAGATCTTCCGGCCACCGGCCTGATCGGCCGCGCCTGGTCCAGGGCGGAATGGGTGGAGGCAACACTCGGCACCTGGAAGCGGCTCACCGAACCGGTGGCGAACAGCATCGCCAACGCGCTCTCCACCGCCATGACTGAGCAGATGCCCGAGGAAATGAAATCCATGATGGGCGGCGCCTCTTCGATGCTGCAGAACATGGGCGGGGCGATCTTTGGGATGCAGCTTGGACAGGCGATCGGCGCACTGTCGGCTGAGGTGGTCAGCTCCACGGACATCGGCGTTCCGCTGGCAGACCTGGAAATGGCCCTGTTGCCTGCGAACGTCGCAAAATTCGGTGAAGGCCTGAGCGTGCCGGAGAATGACATCCGCCTGTTCCTCGCCGTCCGTGAGGCAGCTCATGCACGGCTGTTCGTGCAGGTTCCGTGGCTTCGTGGCCACCTGCTGAGTGCCATCGAGGCCTACGCGCGCGGCATACACATCGATACATCCAGAATTGAAGAGCTGGCCCGGGATCTTGACCCCAGCAACCCGGAAGGCATCCAGGAGGCCCTGTCCCAGGGAGTCTTCATGCCGCAGCGCACGCCGGCCCAGGACCAGGCCCTCGAAAAACTGGAGACTGCGCTCGCCTTGGTTGAGGGATGGGTGGACGAACTGACCGCCGCGGCCACCGAGAACGTTCTTCCGTCGGCAGGTGCCCTCCGCGAGACCGTCCGCAGGCGCCGTGCCACCGGAGGTCCGGCCGAGCACGCCTTCTCTTCGCTGGTGGGGCTGGAGCTGCGTCCCCGCCGGCTGCGGGAGGCCGCCACCCTCTGGGCGAACCTCAAGGACGAGCGGGGCATCGAAGGCCGGGACGCCATCTGGCACCACCCCGACCTGCTGCCCACCGCCGAGGATCTGGATGACCCCAAGGGGTTCGGCGGCCGCCGCAAGCTGGCCGAGGCCAGCGACAGCGAGGTTGATGATGCGCTCCAGAAGCTTCTGAACGGCGGTTTCGATGCGGCTCCGGATCCCGACGCGGCGGGAACATCCGCGGTGGAGGAAGAGGCCGGGAAAGATCCCGACAAACCCGACGATTCGGGCGAGGGTTCAGGCGAAGGCGGCCAGCCCGGGAAGTAGMTSNPLNPSNGDDAPKDPLTEMLQNLMGGKGMENIDPAELAKAAGLPDDPNLLAQMFSQVQAMMSAPSEGPVNWQLAHENARRVAASSADPSVTSQQSREVDEALRLAELWLDPVTDLPATGLIGRAWSRAEWVEATLGTWKRLTEPVANSIANALSTAMTEQMPEEMKSMMGGASSMLQNMGGAIFGMQLGQAIGALSAEVVSSTDIGVPLADLEMALLPANVAKFGEGLSVPENDIRLFLAVREAAHARLFVQVPWLRGHLLSAIEAYARGIHIDTSRIEELARDLDPSNPEGIQEALSQGVFMPQRTPAQDQALEKLETALALVEGWVDELTAAATENVLPSAGALRETVRRRRATGGPAEHAFSSLVGLELRPRRLREAATLWANLKDERGIEGRDAIWHHPDLLPTAEDLDDPKGFGGRRKLAEASDSEVDDALQKLLNGGFDAAPDPDAAGTSAVEEEAGKDPDKPDDSGEGSGEGGQPGKNANANANANA
D1-29_03254606hypothetical proteinGTGACGCAACGGAGTGAGCTGGCCACCCGGGCGCCCAGGCTGACGGCGGACGGGGCTCCTGTTGAGGTGCGGCGTTCTGCCCGCCGGACAAGGACAGTGGCGGCTTTTTGGGAGAACGGAACGGCGGTGGTGGCCATCCCTGCCCGGTTCACAGCCGCCCAGGAATCCGAATGGGTGCACCGCATGCTGGAAAAGCTGCACCGGCAAGGAGAAAGGCGCACCCGCAAGGGAAAGAGGCAATCCGCTACAGACGCGGCTTTGGCTGCACACGCCGCGGACCTTTCCGCACAGTACTTCGGCGGCCGTGCCGTTCCGACGTCGGTCCGCTGGGTCAGCAACCAGAACTCGCGCTGGGGTTCGGCCACACCTTCAGAGGGCAGCATCCGGCTCTCGGACAAGCTCAAGGCCATGCCCCAGTGGGTCGTTGACTACGTGCTTCTGCACGAGCTTGCCCACCTGCTGGTGGCCGGCCACAATGCGGCCTTTTGGAAGCTGTTGGAGGGCTACCCGGAGACGGAACGGGCCAAGGCCTTCCTGGAGGGAGTCTCATTTGCCACGTCCCGCGGCCTGGCACCAGATGCGGTTCCCGCTGCGGACGCGGACTAGMTQRSELATRAPRLTADGAPVEVRRSARRTRTVAAFWENGTAVVAIPARFTAAQESEWVHRMLEKLHRQGERRTRKGKRQSATDAALAAHAADLSAQYFGGRAVPTSVRWVSNQNSRWGSATPSEGSIRLSDKLKAMPQWVVDYVLLHELAHLLVAGHNAAFWKLLEGYPETERAKAFLEGVSFATSRGLAPDAVPAADADNANANANANA
D1-29_032552136uvrD2COG0210ATP-dependent DNA helicase UvrD2GTGACAACAGAGAATGTAGACAGCCCAGAATCCCTTGAAGAACGGATCCTCGGTGGCCTGGACGCCGAACAGCGGGAAGTCGCCAGTACGCTGAACGGTCCGCTATGTGTCCTGGCCGGGGCAGGCACAGGGAAAACCCGAGCCATCACCCACCGCATCGCTTATGGCGTCCACTCCGGCGTATACAGTGCCCAGCGGCTCCTCGCCGTCACGTTCACGGCGCGGGCAGCCGCGGAAATGCGCAGCAGGCTGCGGGACCTGGGAGTCGGAAACGTCCAGGCCAGGACGTTTCACGCAGCAGCCCTCAGGCAGCTCCAGTTTTTCTGGCCGCAGGCGGTGGGGGGCACTTTGCCCAACCTCCTGGACCACAAAGCCCAGATGATCGCCGAGGCAGCGCGGCGTCTGAGGCTCAGCACAGACCGTGCCTCCATCAGGGACCTGGCATCCGAGATCGAGTGGGCGAAGGTTTCCATGTTGACTCCTGCCAACTACCTCGAAAATGCCCAGGGGAGGGGAACGCCGGGAGGATTCGACCTCACCGCCGTCGCCCGGGTTTTCCAGTCATACGAGGATGTCAAAACGGACCGCAACGTCATTGACTTCGAGGACGTGCTGCTGATCACCGTCGGAATCCTCCAGGAGGACCAGAAAGTCGCGGCCACGGTCCGTGAACAGTACCGGCATTTTGTGGTGGACGAGTACCAGGACGTCTCGCCGCTGCAGCAGCGCCTCCTGGAGCTGTGGCTGGGGGGCCGGGACGAGCTGTGCGTCGTGGGCGACGCGAGCCAGACCATCTACTCATTCACCGGTGCCTCACCCCAGCACCTGCTGGGGTTCAAGGCCCGGTATCCCGAGGCCAATGTGGTTAAGCTGATCCGCGACTACCGCTCCACGCCCCAGGTGGTGAAGCTGGCGAATGATCTCCTTGCCGGACGGCGCAGTGGCGGAACGGTAGCTGATGCGGCATGGGCTGCACCCCTGCAGCTGGTGGCCCAGCGCCCGGCCGGACCCGTTCCGCAGTTTACCGAGTGCACCGACGATGAGGCGGAAGCAGCTACGGTGGCGCTCAAAATCCAGAAACTGCTCGACGCCGGCACGCCGGCAAGCCAGGTGGCTATCCTCTTCCGCACGAACGGACAGTCCGAAGCCTATGAGCAGGCGCTCGCGGCGGCGGGGATCGGATACCAGCTTCGGGGTGGCGAAAGATTTTTCGCCCGCAAGGAGGTCAGGGATGCCATCCTGCAGCTCCGGGCCGCCACCAGGGCGGTTTCCGAATCAGCGACGCCGGAACCTCTCGGTCAGCTGGTCCGCGATATCGTCGCATCCCTGGGCTACACCCACTCCGCGCCACATAACGGCGGAGCACTCCGGGAGCGCTGGGAATCCCTGGCCGCACTCGTGGCCCTGGCCGACGAACTGGTCCAGGTCCGTGGCGAGCAGTTCGGTCTCGCGGACTTCGTCAACGAACTCCAGGAACGCTCACTGGCCCAGCATGCTCCCACCGTCCAGGGCGTCACGCTGGCTTCGCTGCACGCCGCCAAGGGCCTTGAGTGGGACGCAGTTTTCCTGGTGGGCCTCAGCGAAGGCCTGATGCCCATTTCCTTTGCGGACACCCCTGAAGCTGTGGACGAGGAACGCCGCCTCCTCTACGTCGGAATCACCCGCGCCCGGGAGCACCTTTCACTGTCCTGGTCCACCGCCCGCACCCCGGGTGGCCGTGCCAACAGGAAACCCTCGAGGTTCCTGGACGGACTCAGGCCTGATTCGGTAGCCAGTTCCACCACCCGCGGAAAAGGTCCGGCGGCCCGACGGAAAGCCGCCGCGCCGGCCGTGTGCCGCGTCTGTGGAAGCATGCTCTCAAGCGGTGCCGAGCGAAAAGTGGGGCGCTGCAACGATTGCCCTCCCAGCTATGAGGAACAGACGTTCGAGGCCCTGCGGCAATGGCGCAAGGAAGTTGCGCTTTCCGCCGAAGTGCCTGCCTTTGTGGTCTTCACTGACGCCACACTCACTGCCATCGCAGAAGCCAAGCCGGCCTCGCTTGAGGAACTGGCCGCCCTCGCCGGGGTGGGGCCCTCTAAGTTGGAACGCTATGGTGAGGACGTCCTCCGCGTGCTTGTAGAGAGTTCCGTCCTGTGAMTTENVDSPESLEERILGGLDAEQREVASTLNGPLCVLAGAGTGKTRAITHRIAYGVHSGVYSAQRLLAVTFTARAAAEMRSRLRDLGVGNVQARTFHAAALRQLQFFWPQAVGGTLPNLLDHKAQMIAEAARRLRLSTDRASIRDLASEIEWAKVSMLTPANYLENAQGRGTPGGFDLTAVARVFQSYEDVKTDRNVIDFEDVLLITVGILQEDQKVAATVREQYRHFVVDEYQDVSPLQQRLLELWLGGRDELCVVGDASQTIYSFTGASPQHLLGFKARYPEANVVKLIRDYRSTPQVVKLANDLLAGRRSGGTVADAAWAAPLQLVAQRPAGPVPQFTECTDDEAEAATVALKIQKLLDAGTPASQVAILFRTNGQSEAYEQALAAAGIGYQLRGGERFFARKEVRDAILQLRAATRAVSESATPEPLGQLVRDIVASLGYTHSAPHNGGALRERWESLAALVALADELVQVRGEQFGLADFVNELQERSLAQHAPTVQGVTLASLHAAKGLEWDAVFLVGLSEGLMPISFADTPEAVDEERRLLYVGITRAREHLSLSWSTARTPGGRANRKPSRFLDGLRPDSVASSTTRGKGPAARRKAAAPAVCRVCGSMLSSGAERKVGRCNDCPPSYEEQTFEALRQWRKEVALSAEVPAFVVFTDATLTAIAEAKPASLEELAALAGVGPSKLERYGEDVLRVLVESSVLNANANANANA
D1-29_032561023nudC_2NADH pyrophosphataseATGAGTCATGCGGAGTCCGTTACGCCGGCCTACCAGACGCAGGCCCCCCGGCTGCCGGCGAACCATCTTTTCGATACCGTGCTTCCCATCCGGCCGGCAATGGTTGACCGCGGCTCCGCAGAGCGGATCAGGCCCGGGATGGTGGAAGAACTGCTGGAACGCGAGGGCACTTTGGCGGCAGTACTGACAGGCAGGCAGGCGCTGGTGCAAGGGGACCGGCTGGTCCTGACCGAAGCCGCCACGGTGCTGGCCGGACTGCGTGGGCTGGGATCCGTGCCCGTCCAGATCATTTACCTTGGAGCTGCCCTTCCAGGCTCGGACCTGCCGGCCGGCACCGAACTTCTCCTCTTTGTCCTGCCCGCGCCCGTTGAGGCGGGAACCGGCGGTATTCCGGCGGACGCGTTCTGGGCAGGTTTCCGCGATGTTGCCGGGCAGTTGGGCCCCACTGACACCGCATTGTTTGTTGAGGCGAGCGCCATAGCCAACTGGCATTCCAGCCATACGCACTGCCCCCGCTGCGGGGCGCCCACCGTGGTCGAGGCCGCAGGCTGGGTCCGCCGCTGCCCCGAGGACGGCTCAGAGCACTACCCGCGCACCGATCCTGCAATTATCGTCACCGTGGTGGGGCCGGACGGCCGGCTGCTGCTCGGTGGTGGGGGACCAGCCGACGCCAGGAACTATTCCACGCTCGCCGGATTCGTGGAACCCGGCGAGTCCCTTGAGCAGGCCGTGGTCCGCGAAATATACGAGGAAGTGGGTGTCCAGATCACCGGCTGCCAGTACCTGGGTTCTCAGTCGTGGCCGTTCCCGGCCTCCCTTATGCTTGGATTTACCGCCATCACCCCGGATACCGAGGCAACGCCCGACGGCGTCGAGGTCACCCGTGCGCGCTGGTTCAGCAGGGAGGAACTCCAGCAGGCAGTGCTCGACGGCGACATCACCATCTCGAGCAGGCTTTCGATCGCCCGCTCGCTGATCGAGCACTGGTATGGCGGGCGCATCGCGGACCGCACGGACGCGTAAMSHAESVTPAYQTQAPRLPANHLFDTVLPIRPAMVDRGSAERIRPGMVEELLEREGTLAAVLTGRQALVQGDRLVLTEAATVLAGLRGLGSVPVQIIYLGAALPGSDLPAGTELLLFVLPAPVEAGTGGIPADAFWAGFRDVAGQLGPTDTALFVEASAIANWHSSHTHCPRCGAPTVVEAAGWVRRCPEDGSEHYPRTDPAIIVTVVGPDGRLLLGGGGPADARNYSTLAGFVEPGESLEQAVVREIYEEVGVQITGCQYLGSQSWPFPASLMLGFTAITPDTEATPDGVEVTRARWFSREELQQAVLDGDITISSRLSIARSLIEHWYGGRIADRTDAPGPT0013440_553DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426NANA
D1-29_032571353hypothetical proteinGTGAGAAGAAAACCGATCGAACTGGCAGCCGTGGCAACCGCGGCAGTCCCCGGGCTGACCCCGACCGCCGTTAGTGCTGCTCCGGACGATCCTGCGGATTTCGACTCCGCGCTGCTCCTGGACTCCGAAGGCAAGCGTTGGAGGGTACGGTCCCCGCAGCACGCCGAGGCCAGCGCGAGGCTGGAAACGGAGTTCCTGGTTCTCCGTGCCTTTGCGCCCGGGATCCGCGCCGAACTGCCCTTCCTGATGCCCACAGTGGCCGGCAGCGTCCGGGTTGGAAGCCTCAGTACCTTCGTCTACTCACATCTCGCCGGAAGCAACCGGAGTGTGGAAGAACTCACCGCCGGGACGGACTCCCTTGCCAAGGAAATAGGCGTGGCCCTTGCAGCGATCCATGACCTCCCTCACGCCCTGGTCAGCAATGCCGACCTCCCCAGCTACACCCCCAATGAATTCCGTCAACGGAGGCTGAACGAGCTGGATCAGGCTGCCACGACAGGAAAGATTCCCCCCTCACTCCTCCTGCGGTGGGAACACGCCCTGGAGGATGTTTCCCTCTGGCGGTTCAACCCCTGCGTGGTCCACGGAGACCTGCATGAGGACAACCTGCTGGTCGAAGGCGACCGCGTCACAGCAGTCACCGGATGGACGGACCTGAGAATTGGCGATCCCGCCGATGACTTCGCATGGCTGGTGGCCTCCAACGAGCAGGCCTTTGTGGACAGCGTGCTCACCAGCTACACCGGCAGCCGCAGGGACGTGCCGGACAAACACCTGCTCCGGAGGGCCGCGCTTTCCGCCGAGTTCGCGCTGGCGCAATACCTGGTCAAGGGCATCGCCGCCGGGGATCCGGCCATGGTGTCCGAGGCGGAAGGCATGCTGGAAACCCTCGCAGGCGACATCGCCGAGCATGGCGGGCAGGCCATCAGCGTGGAACCACTTCCCTCGCCGCCTGAAACGGGCGCCGACGCGCCGCCCAAGGCTGGAGCGGAAGCGAATGGTGGCCAGCAGGCAAATGCCGGCTCGCATGGCAGTGCCGGAGCAGCCGGCACCGGACAGTCAAGTCCGGCAACCCGGCAGGCGGAAGATACCCCCGCTGTGTCTTCGCGGACCCCGGCGGTGACGGTTGTGCCGCTGCCCGTGGGGCCCGAAACGCTGCCTCCCCCTCTGGTGATGCCCGCGCCTGCCCTGCCCGCGGTCCAGGTGGCGCCTATTCCGGCGCACCAGCATGCTTCGCCAGCGGAAGGACACGGTCAGGAAGCTACCGCGGCTGAAGTCTCCGGCTCCAAGTCTCCCTCAGCGGACGACACCTCCACCGCCGCCATCACTATCATTGCCGGGCAGAAGGACTGAMRRKPIELAAVATAAVPGLTPTAVSAAPDDPADFDSALLLDSEGKRWRVRSPQHAEASARLETEFLVLRAFAPGIRAELPFLMPTVAGSVRVGSLSTFVYSHLAGSNRSVEELTAGTDSLAKEIGVALAAIHDLPHALVSNADLPSYTPNEFRQRRLNELDQAATTGKIPPSLLLRWEHALEDVSLWRFNPCVVHGDLHEDNLLVEGDRVTAVTGWTDLRIGDPADDFAWLVASNEQAFVDSVLTSYTGSRRDVPDKHLLRRAALSAEFALAQYLVKGIAAGDPAMVSEAEGMLETLAGDIAEHGGQAISVEPLPSPPETGADAPPKAGAEANGGQQANAGSHGSAGAAGTGQSSPATRQAEDTPAVSSRTPAVTVVPLPVGPETLPPPLVMPAPALPAVQVAPIPAHQHASPAEGHGQEATAAEVSGSKSPSADDTSTAAITIIAGQKDPGPT0028010_45DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0028010-mph-K06979NANA
D1-29_032583525rep_1ATP-dependent DNA helicase RepATGAGCAGCCTGCCCCAGGGTGGCCCTCCCCGTTTCAGCCCGGAGGAACTGGCGGGGATGCTGGGGGAAAAGAACACGCCCACGCCCGAACAGTCCGCCATAATTTCCTCACCGCTGGCCCCGAGGCTCGTAATAGCAGGTGCCGGTTCCGGCAAGACCGCCACGATGGCCGACCGTGTGGTGTGGCTGGTCGCCAACGGGTGGGTCAGGCCCGAGGAAGTCCTTGGCGTCACGTTCACCAGGAAGGCTGCCGGTGAGCTTGCCACCCGGATCAGGGCCAAACTGGCGGCACTGCAGCGCATTGCGGCGCAGGACACCGGGAACCAGGTATTCCCGCCAGGACTGCTGAGCACCGACGCGTTGGAGCCGAAAGTCTCCACGTACCATTCGTTCGCCAGCGGAATTGTGTCTGACTACGGGCTGCGGCTCGGAGTGGAACGCGATGTTGTGCTTCTGGGCGGAGCACAGACGTGGCAGCTGGCCACCGAGGTCGTTGAGGCCTTCGACGGCGAATACGGCCATTTCAATGCCGCAAAGTCCACGCTGGTGAAGGCGGTCATCCAGCTGGCGGGGGAATGCGCCGAACACCTTCAGGAGCCGGCCGATGTGGAGGCGTGGCTGATGGCCAGGCTCGCGGAATACGAGGGCCTGCCGTATGTGGCGGGGGTGAAGAAGAACCGTTCGCAGGCTGCGGCGGATCTTGCGGCCATGCTGCGGACCAGGGCAAGTGTCGCTGAGATGGTCAGCCGTTATTCCGCTGCGAAGCGCTCCCGGGGATCCCTTGATTTCGGTGACCTCGTCGCCTTGGCCGCCAGGGTGGCAAGGCAGGTTCCGCTGGCTGCCGAGATGGAACGGCAGCGCTACAAGGTTATTCTCCTGGATGAGTTCCAGGACACCTCCTATGCCCAGCTGGTCCTGTTTTCGAGGCTCTTTGGCGGCGGCCACGCGGTCACCGCGGTGGGCGATCCAAACCAGTCCATCTATGGCTTCCGCGGTGCTTCCGCGGGGCAGCTGTTCCACTTTGTCCGCGAGTTCCCTGTCCACCTGCCCGGTCCGGACGGGCAAGGGAAATTTGTACCGGCACCAACGTCCTATCTGACCACGGCATGGCGCAACGGCCGTTCTATCCTGGCTGCGGCCAATGTCATGTCCGAGGCACTGGGCAGGGAAGCGGGGGCAAAAGTACCGGCCGGTTCCGGCGCCGGCAACCATGCCGCTGCCAACGTTCCGCCCCTGCAGCCCAGCCCGTTCGCGGTGGAAGGACGCGTGGTGCTCGGCCGTTTCGGGACGGATGTGGAGGAAGCATCGGCACTGGCCCACGATGTCCTGCAGTATCGCGTCACCGACTTCGAGCACCAGGCCGACGGCACTCCCGTGCCTCCTGCCCTGGCCGTCCTGTGCCGGCGCCGTGCCCAGATGGAGCCCATCCGGAAGGAGTTTGAGGCCCGGGGGATCGCCTACGAGATCATCGGCCTGGGCGGCTTGCTGGACACTCCCGAAATCGTTGACCTGGTTGCCACGCTGCGGGTCCTGGCAGATCCCGGTCGTTCGGATGCGCTGATGCGCCTCCTCGCCGGAGCGCGCTGGCGGATTGGTCCTGCCGACCTTATGGCCTTCCGCGACTGGTCCAGCCAGCTGGCATGCAGGCGGGCGCAGGGCGTCGGCGGGGACGGCCCGCCCGAAGGCGACACGGCAGCATCCGAAGAAGCCGTGATTGAAAGCGACCTGACCGACGCCGCCAGCCTCGTGGAAGCCCTGGACTGGCTGCCCCGCGAGGACTGGACGTCCTCCCATGGCACGTCCCTGACAGGGGAGGCACGGCACCGGCTGGGCCGCCTTTCCCTCGAGCTGAGGCAGCTGCGGGGTTACCTCGGGGACGACCTGACCACGCTGCTGGGTGAAGTGGAACGTGCCATGCTGCTGGACATTGAGGTCGCGGCCCGTCCGGGGATCAGCATCCACCAGGCCCGCAGAAACCTGGACGCTTTCCAGGATGCGGCAGCGGGCTTCCTCCGGACGTCCCAACGCGTGGACATCCTGGCGTTCCTCTCCTGGCTTGAGGCAGCGGCCGCGGAGGAGAATGGCCTGGACGTGCCTGCCTCGGAAGTAAACCGCGAAGCTGTGCAGCTCCTGACTGTCCACGCCTCGAAGGGGCTGGAGTGGGACGTGGTCTTTGTGCCCGGTTTGAACGCCGGCGCATTTCCCAGCAACCGGGATTCCCGGTGGAGCAGCGGATCAGCGGCGCTGCCTTGGCCGTTGCGGGGGGACAGGGAAGACCTGCCGCAATGGGATACTGACCAGCCGGATCAGAAAGGCTGGCTGGACGCGGAGAAGGACTTCAAGTCAGAGGTACTGTGCCATGGCGAGGGTGAGGAACGCCGCCTCGCCTATGTCGCTTATACGCGGGCCAAACATGTGCTGTGGGTTTCAAGTGCAGCCTGGGTCGGCTCCAGGGCGGGACGGGCAGAGATGTCACCGTTCCTCGCCGAGCTGGAGCCGCTCCTCAGCCGGCAGCAGGAGGGGACAGGCGACAGCCCCGCCATGGTTCATCCCGCTTCCGTTGCTGAGGACTCCCTGCCGGAAAAGAGCCCGCTCACCTTGGAAACAGAAGCCGCGCGGTGGCCCTACGATCCCCTCGAAGGCCCCGTGGATGCCAGAACGGGGGAACGGCTGCGGCTTCTTCCCGGCCGCAGGGCAGCCATGGAAACTGCGGCGTCACAGATCATTGCCCTCTTGGCAGATGATTCCGGCGATGCAACGCAGGGATTGAATGCGGCTGCCGGCAGATTTGGCGGCGACGGACAGCGGCGCGGTGCCGACTCACAGCGCCTCCGGGCGAACGCCGCCAACTGGGCCTCCGAGGCGGCCCTGTTGCTGGAACGGCGCTCCAGGCGCTCCGGCGGCCAGGACGTGCACCTCCCCGGCCATATTTCGGCGTCGACCCTTGTGGATCTGGGGGAGGACCCCCTGGCTGTCCTGGGTCGGCTCCGGAGGCCGGTCCCTCGCGAGCCCGGCATGTCAGCCCGGAAGGGAACTGCCTTCCATTCCTGGGTGGAGGAGTACTTCGGCGCCGCCGGCATGCTGGATTTCGGCGACACGTCTGGGGCGGATGACCACATCGATGCCGCCTACGACCTCGATGCCATGGTGGCTACCTTCAAGGCATCCGAGTGGGCCAACCGCTCGCCCGCTTTCGTTGAAGTTCCCGTGGAGACCCGGGTGGGTGAAGTCGTGGTGCGCGGCCGCATCGACGCCGTGTTCCGTGACGCGGACGGCCGCTGGGACCTGGTGGATTGGAAAACGGGACGCCGGCCGGCGGCTTCCCACCTCAAGGCCAAATCGGTGCAGTTGGCCGTCTACCGGTTGGCCTGGGCACGGCTGAAAGGAGTCCCGGTCGAGGACGTCCGGGCGGCGTTCTTTTATGTGGCTGACAACCAGGTGGTGCGTCCCCACGACCTCGGTTCCGCGGTGGAACTGGAGCAGATAGTGGCTGGCGCCCTGGTCAGTCCTTCTGCCCGGCAATGAMSSLPQGGPPRFSPEELAGMLGEKNTPTPEQSAIISSPLAPRLVIAGAGSGKTATMADRVVWLVANGWVRPEEVLGVTFTRKAAGELATRIRAKLAALQRIAAQDTGNQVFPPGLLSTDALEPKVSTYHSFASGIVSDYGLRLGVERDVVLLGGAQTWQLATEVVEAFDGEYGHFNAAKSTLVKAVIQLAGECAEHLQEPADVEAWLMARLAEYEGLPYVAGVKKNRSQAAADLAAMLRTRASVAEMVSRYSAAKRSRGSLDFGDLVALAARVARQVPLAAEMERQRYKVILLDEFQDTSYAQLVLFSRLFGGGHAVTAVGDPNQSIYGFRGASAGQLFHFVREFPVHLPGPDGQGKFVPAPTSYLTTAWRNGRSILAAANVMSEALGREAGAKVPAGSGAGNHAAANVPPLQPSPFAVEGRVVLGRFGTDVEEASALAHDVLQYRVTDFEHQADGTPVPPALAVLCRRRAQMEPIRKEFEARGIAYEIIGLGGLLDTPEIVDLVATLRVLADPGRSDALMRLLAGARWRIGPADLMAFRDWSSQLACRRAQGVGGDGPPEGDTAASEEAVIESDLTDAASLVEALDWLPREDWTSSHGTSLTGEARHRLGRLSLELRQLRGYLGDDLTTLLGEVERAMLLDIEVAARPGISIHQARRNLDAFQDAAAGFLRTSQRVDILAFLSWLEAAAAEENGLDVPASEVNREAVQLLTVHASKGLEWDVVFVPGLNAGAFPSNRDSRWSSGSAALPWPLRGDREDLPQWDTDQPDQKGWLDAEKDFKSEVLCHGEGEERRLAYVAYTRAKHVLWVSSAAWVGSRAGRAEMSPFLAELEPLLSRQQEGTGDSPAMVHPASVAEDSLPEKSPLTLETEAARWPYDPLEGPVDARTGERLRLLPGRRAAMETAASQIIALLADDSGDATQGLNAAAGRFGGDGQRRGADSQRLRANAANWASEAALLLERRSRRSGGQDVHLPGHISASTLVDLGEDPLAVLGRLRRPVPREPGMSARKGTAFHSWVEEYFGAAGMLDFGDTSGADDHIDAAYDLDAMVATFKASEWANRSPAFVEVPVETRVGEVVVRGRIDAVFRDADGRWDLVDWKTGRRPAASHLKAKSVQLAVYRLAWARLKGVPVEDVRAAFFYVADNQVVRPHDLGSAVELEQIVAGALVSPSARQNANANANANA
D1-29_032593504rep_2ATP-dependent DNA helicase RepGTGACGGTAACAATCCCCCAGACCGACCCCTCCCTTGATTCAAACGCTAAATCAAGCGCTGATTCAAGCGCTGATTCGGACGCTGTATCAGACGCTGTTGTTGAGTCTGACACCGCCTCTGCCGGCGTCGCCGCCGGAGGCTTCCATACTGACACTGAGGCAGGTGGTTCCGCCGCAAGGCGCCCAGGGACAGGGCTGCGGCTCCTTCCGCCACGCAAGATCCACGCGGACGTACCGGTGCTGTCACCGGACCAGCGGGACGCCGTCGAGGTCCCACACGGTTCGGGACCCATCCTGGTGCCTGGGGCCCCCGGGACCGGAAAATCGACTGTCCTGATTGAAGCTGCGGTGCGCAGGGCCCGCCACGATGGCGTGGATCCGGAACGGATCCTGATCCTCGCCCCTGGCCGGCTGGCGGCGGATTCGCTCCGTGACCGGTTCACGGCACGGCTGGACAGAAGCCTGAGTACAACGCCCGCGCGGACGTGGGCATCCTACGCCTTTGACCTGATTCGCCGTGCGAAGGCGGAAGGAGTCCTGCCACTTCCGCGCCCGCCCCGTCTCCTCTCCGGCCCCGAACAGGATCTCATCATCAAGGAATTGTTGGAGGGCCACGCCATGCCGGGACTGGAGTTGCCCTGGCCCGCGGACCTTGAAGCGGCCCTCGAAACCCGCGGATTCCGCCACGAAGTGCGGCAACTCTTTGACCGCATTATCGAATCAGGCAGGACTGCGGAGGATCTGGAGGACCTCGGAAGGCAGTGCGGCCGGCCGGACTGGGTGGCTGCAGCGTCGTTGTACGCCGAGTACAGGGACGTCCTTGACCTTCGCATGCCTGAAGCCTTCGACCCAGCCGGAATCATTACCGCCGCGCGGCAGATCTTCGAGGATTCGCCCGGATTCCTGGCCGCCGAGCGGGAGCGCCTGCAACTGATCCTGGTAGACGACATCCAGGAAGCAAACCCGGCAATATTTGAACTCCTCGCCGACATTGCCGCGGGGAAGGACTGTTACGTGGCGTCCTCGCCGGACACCGTGGTGCAGGGATTCCGGGGGGCCCGTCCAGATCTTGTCGCGGAGCTCCCGCGGCTCCTGTCCGGCGGCGAAGGTGTGCTGGAGCGGCCGTTGTGGCACAGCCACCGGCATGCGCCCGCCATTGCCAAGGCGTGGCTTGGCGTGGCCGGCCGGATCTCGCAACGGGCCGGAGGCCGGCTGGCCCGGCGGCTCGAGCAGCCTGAATCCGGCCGCACCGAGGGCCATGCCTCTGCGGCAAGTCACCAGAAGCTGACCGACGGCGCGGTGGAGGCCCACCTTGTCCCTTCGGCCGTCCATGAGCTGAGATACGTAGTCCAGCGCATCCTGGACCAGCACATCCGCCATCACCGGGACCTCGGCGACATCGCCGTTATCGTTCGTAACGGCGGGCAGCTGAGTGAGCTCCAGCGCTATTTGTCGGGCCAGGGAATCCCGGTGCGGGTGCCGGTAGCTGAATCCGCCGTACGCGATGAAGTGGCTGTGCGGCCGCTGCTGGATGCTTATGCGATCGCCCTGGATCCAACGCTGCTAACGCCCGAGGCCGCCGTTTCACTGCTTACCTCCCGGATCGGCGGAGCCACGTCCCTGGAACTGCGCAGGCTAAGACAGGCCCTCCGGCGCGAAGAACTGCTGGGCGGCGGCGGGCGGACCAGCGACGCCCTCCTCGTCGAAGCACTTTTGGAGCCGGGTGCCCTGGCCACCCTCGGCATGGAAGGCCGGGCTGCCCGGCGGACTGCACGCATGATCCAGGCTGGCCGGGCCGCCATGTCAGAAGCCGGAGCCAATGCCGAAACAGTCCTGTGGGCGCTCTGGCATTCCACCGGCCTGGCAAACGCCTGGACAGAAACCGCTTTGGCGGGCGGCAACCACGGGGCCAGGGCTGACCGCGACCTTGATGCCATGATGGCACTGTTCCACACCGCGGAACGCTACGTGGACCAAATGCCGGGTGCGGGGCCGGAACAGTTCCTTGAATACCTGCTGAACCAGGAACTGCCCATGGATACGCTTGCCGCCAGGGCACAGCTGGACGACGCCGTCGAACTGATGACACCGGCAAGCGCCGCCGGACGGGAGTGGCCCGTTGTCATTGTGGCGGGGCTGCAGGAAGGGGTCTGGCCCAATACACGGCTCCGGGGTGAACTGCTGGGCAGCACCCTGTATGCCGACGCCGTGGAGCACGGCGTTGGTTATGCGCTGCAGTTGGACCCGCTGAGCCGGCTGCGGGAGATCCGCTACGACGAACTGCGCAGTTTCTCCACAGCCGTCTCCCGGGCACGCGAACTCCTGATCTGCACCGCGGTGTCCTCCGAGGATGATCAGCCCTCTTCTTTTCTCGATTACGTGGCGCCGCTGGGGCCCGGGGAAGAAGGACGGGGCTTTACCCCGGTGGAGCGGCCGCTGACACTTCGCGCCCTGGTGGCCGAGCTTCGGCAGTACGCCCAACTGGGCGGAAAATATGCGCCGGAAGCAGCTGAGGCCACCAGGGTGCTGGCCGGACTCGCCGCGGCGGAACCTCCAGTTCCGGGTGCCCACCCGGACAGCTGGTGGGGACTGGCGCCCCTGACCACCGAGGCGGCGGTGGTGCCTCCCGGGGGGACTGTGTACGTTTCGCCCTCCAAGGTGGAATCAGTGCATAAATCGCCCCTGGACTGGTTCGTCCAGGCGGCAGGAGGCGAGGCCGCCACTGACTTTGCCCGCAGCCTCGGGACCCTGGTCCATGCCATCGCCCAGGACCTGCCGGATGCTTCCGGTTCCGAGTACGTCGCCGAACTGGTCCGCCGGTGGCCGGCACTGGGTATGAAGGACACCTGGGAAAGTAAACTCGATTTCCGCCGCGCCGAGACCATGGTCCGTAAGCTGGCCCAATACATTCTGGTGATGAGGAGCGAGGGCCGAAGCCTGCTTGGAGTGGAGCAGGACTTTGACGTTGAACTCCCTGACGTGGCGGTAGACGGTTTCACTTCGGAACCGGAAGCTGGAGACCCTGGCCTGCTGCCAGACCCGGATGGTTGCCCAGGCAACTCCCGTTCCGCTGTCCTGCGTGGCCAGGTGGACCGGCTTGAGATCGACGCTGAAGGCAGGCTGGTCATCGTGGACCTTAAAACTGGCAAACGCCAGCCGGGCAAGACTGATCTGGCCCGGCACCCGCAGCTTGGCGCTTACCAGGCGGCTGTCCTCGCTGGAGGATTCAAGGATGCAGCAGGCAGGCCACTGGCTGCCAGTCCCGGCGGTGCCGTGTTGGCACAGCTCGGCACCGGTACAAAGAGTCCCGGGGTTCAGCAACAGGAACCCCTGGACCCCCGGGAAAACTGGGCGCTGGAGATGGTCACCGACGCTGCCGCCATTATGGCAGGCAGCAACTTCGAGGCCCGGCACGATCCCTCCAAGGGAAGCCATGGCGGCCACGGCTGCCGGCTGCCGGAAGTTTGTCCGTTGTGTGTCCGGGGAAAACAGGTGACCGAATGAMTVTIPQTDPSLDSNAKSSADSSADSDAVSDAVVESDTASAGVAAGGFHTDTEAGGSAARRPGTGLRLLPPRKIHADVPVLSPDQRDAVEVPHGSGPILVPGAPGTGKSTVLIEAAVRRARHDGVDPERILILAPGRLAADSLRDRFTARLDRSLSTTPARTWASYAFDLIRRAKAEGVLPLPRPPRLLSGPEQDLIIKELLEGHAMPGLELPWPADLEAALETRGFRHEVRQLFDRIIESGRTAEDLEDLGRQCGRPDWVAAASLYAEYRDVLDLRMPEAFDPAGIITAARQIFEDSPGFLAAERERLQLILVDDIQEANPAIFELLADIAAGKDCYVASSPDTVVQGFRGARPDLVAELPRLLSGGEGVLERPLWHSHRHAPAIAKAWLGVAGRISQRAGGRLARRLEQPESGRTEGHASAASHQKLTDGAVEAHLVPSAVHELRYVVQRILDQHIRHHRDLGDIAVIVRNGGQLSELQRYLSGQGIPVRVPVAESAVRDEVAVRPLLDAYAIALDPTLLTPEAAVSLLTSRIGGATSLELRRLRQALRREELLGGGGRTSDALLVEALLEPGALATLGMEGRAARRTARMIQAGRAAMSEAGANAETVLWALWHSTGLANAWTETALAGGNHGARADRDLDAMMALFHTAERYVDQMPGAGPEQFLEYLLNQELPMDTLAARAQLDDAVELMTPASAAGREWPVVIVAGLQEGVWPNTRLRGELLGSTLYADAVEHGVGYALQLDPLSRLREIRYDELRSFSTAVSRARELLICTAVSSEDDQPSSFLDYVAPLGPGEEGRGFTPVERPLTLRALVAELRQYAQLGGKYAPEAAEATRVLAGLAAAEPPVPGAHPDSWWGLAPLTTEAAVVPPGGTVYVSPSKVESVHKSPLDWFVQAAGGEAATDFARSLGTLVHAIAQDLPDASGSEYVAELVRRWPALGMKDTWESKLDFRRAETMVRKLAQYILVMRSEGRSLLGVEQDFDVELPDVAVDGFTSEPEAGDPGLLPDPDGCPGNSRSAVLRGQVDRLEIDAEGRLVIVDLKTGKRQPGKTDLARHPQLGAYQAAVLAGGFKDAAGRPLAASPGGAVLAQLGTGTKSPGVQQQEPLDPRENWALEMVTDAAAIMAGSNFEARHDPSKGSHGGHGCRLPEVCPLCVRGKQVTENANANANANA
D1-29_03260417hypothetical proteinATGCGGATTGAGTATGTCGAGGCGGTGCTGGCCATTGTTGAGCTGGTGCCACCCGGTGCCGCAGTTGCTTATGGCGATGTGGCGGAACTTCTCGGATCCGGCGGTCCACGGCAGGTTGGCTCCGTGATGAGCCACTACGGGAGCGGTGTGCCCTGGTGGCGCGTCCTCAAAGCCAGCGGTTATGCCCCTGAAGGCCACGAGGCCCAGGCTCTCCGCCACTATCTGAACGAAGGGACGCCATTGGCCGGCCACTGGCTTGAATTCCTTCGCACCGGCGAAGGCAGATGGCGGGTGGACCTGATGGCAGCACGATGGGCTCCCGGGGACGAACAGTTCGACAGGATAGACGCCATCGCAGAGCAGCTGGAACGGCGGCTGCAAAGATTGTCGGTGGCTGATGATGGAATGTCTGTGTGAMRIEYVEAVLAIVELVPPGAAVAYGDVAELLGSGGPRQVGSVMSHYGSGVPWWRVLKASGYAPEGHEAQALRHYLNEGTPLAGHWLEFLRTGEGRWRVDLMAARWAPGDEQFDRIDAIAEQLERRLQRLSVADDGMSVNANANANANA
D1-29_03261711dinG_33'-5' exonuclease DinGATGAGTACTTGGAACACCCTCCCCCGGGCCGCTTTTGACCTCGAAACCACAGGCCGGAACTCCCGCGCGGCACGGATCGTCACGGCGTCCGTGACTGTTGTTGACCACAAAGGTGATGTCATCAAGGAACATGAATGGCTGGCAGATCCGGGGATTGAAATTCCCACCGAAGCCAGCGACGTCCACGGCGTCACCACGGAACAGGCCCGGCGGGACGGCAGGCCTGCCCACGAGGTGACGCGGGAGCTTGCCACTGTGCTCCAGGAACTTTTTGATGCGGGCGTCCCCGTGATTGCCTTCAACGCCAGCTACGACTTCACCGTCCTTGCGGCGGAATCAGCCCGCCACGGGGTGCGGCAACTGAGCCGGTTTCCTGTCCTTGACCCCTACATCATGAACAAGCAGGTGGACAGGTACCGCAAAGGCAAGCGCACCCTCACCGCACTCTGCGAGGAGTACGGGGTGAACCTGGACAATGCCCACACATCCGCCGCTGACGCCCTCGCCACCCTGAAGATGCTGGACGCCATGGCCATCAAATTCCCCAAACTCAGGATGCCGGCGAGCCAGCTTCACCAACTCCAGGTGGACTGGGCTGTGAGCCAGGCGGCGGACTTCCAGGGCTACCTCCGCAAAACCAAGCCGGCAGCTGTTATCGAAGGTGACTGGCCCGTCCTTCCCCCCGAGGATGCCAGCCGGGGCGACTTCTAGMSTWNTLPRAAFDLETTGRNSRAARIVTASVTVVDHKGDVIKEHEWLADPGIEIPTEASDVHGVTTEQARRDGRPAHEVTRELATVLQELFDAGVPVIAFNASYDFTVLAAESARHGVRQLSRFPVLDPYIMNKQVDRYRKGKRTLTALCEEYGVNLDNAHTSAADALATLKMLDAMAIKFPKLRMPASQLHQLQVDWAVSQAADFQGYLRKTKPAAVIEGDWPVLPPEDASRGDFNANANANANA
D1-29_03262936mltFMembrane-bound lytic murein transglycosylase FATGAAAAGCAAAGCCCTGAAGTGGCTGACCAGCGTTCCCGTGGCGATCACCGTGGCCGCCTCCCTGGCTGCCTGCGGCGGCGGGACAGCAGGTCCGGCCGGCAGCCCCACTGATGCCCTGGCGGGAAGTGACCAGCAGACGCTGGACAAGTACACCACCGCTGACGTCACCCCGATCGACCAGATCGACAAGACCAAGCTTGGCCTGAACACCGAGGGCAAGCTTGAGGTGGGCACGCTTTCTGACGCCCCGCCCAACATCTTTATCGATCCCTCGGGCAAGTTCACCGGCTACGACAACGAGCTCCTGCGCGCCATTGCCGGCAAGCTCGGCCTCGAGGTCGAATTTGTCGCCACTGACTTCTCGGCCCTCCTCTCCCAGGTCCAGACCCAGCAGTTCGACGTCGGTTCCTCCTCCATTTCCACTACGGAGGCGCGCCGCCAGAATGTGGGCTTCACCAACGGTTACGACTTCGGCTTCATGGCCGTCGTGGCCAAGACCGACGGCGACGTCAAGGGCTTCGATGACCTGACCGCCGACCTGCGCATCGGCGTGGTCCAGGGCACCGTCCAGGACGACTACGTCACCAACACGCTGAAAATGGAACCGATCCGTTTCCCGGACTACGCCACCGTTTACGCCAACGTACGCAACGGCCAGGTGGATGCCTGGGTGGCTCCGTCCCAGCAGGCTGAGGGCCAGGTCAAGGAGGGCGACGGCACCAAGATCGTTGAGTCCAAGGTCAACACGGAGAACTTCACCGCCTACGCCGTGGCCAAGGACAACCAGCCTCTGATTGACGCCCTCAACGCCGGCCTTGACGCCGTTATCGAGGACGGGACCTGGTCCAAGCTGACCAAGGAGTGGTACCCGACACGGGAAATGCCGAGTGACTGGAAGCCGGGCAGCAAGGCCGCCACGGTTCCCCAAAGCTGAMKSKALKWLTSVPVAITVAASLAACGGGTAGPAGSPTDALAGSDQQTLDKYTTADVTPIDQIDKTKLGLNTEGKLEVGTLSDAPPNIFIDPSGKFTGYDNELLRAIAGKLGLEVEFVATDFSALLSQVQTQQFDVGSSSISTTEARRQNVGFTNGYDFGFMAVVAKTDGDVKGFDDLTADLRIGVVQGTVQDDYVTNTLKMEPIRFPDYATVYANVRNGQVDAWVAPSQQAEGQVKEGDGTKIVESKVNTENFTAYAVAKDNQPLIDALNAGLDAVIEDGTWSKLTKEWYPTREMPSDWKPGSKAATVPQSPGPT0020800_2162DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_03263765artQCOG0765Arginine transport system permease protein ArtQATGGATCTCCTGGACCAGCTGGCTGACACGTTCTTCAACTGGGAGGAAATGGCAAAAGTCATTCCTGCCCTGCTTATGGTGGGCCTGCCCAACACACTGATTCTGGCAGTAACTTCCGGCATCCTCGGTTCCCTGTTGGGGCTGCTGCTGGCCATGATGGCAATCTCCCGGAACGCGGGAGCGCGCTGGGCAGCCCGCATCTACACCGACATTTTCCGTGGCCTCCCCGCTATCCTGGTGATCCTGGTCATCGGCATCGGTTTGAGCCCGATAGCCCGGGAAATCACAGGCAACAGGAACCCCTACCCCCTGGGGATCCTGGCCTTGACGCTGATCGCGGCCGCCTACATCGGCGAGATCTTCCGGTCAGGCATCCAGAGCGTTGAGAAGGGCCAGCTGGAGGCCTCCAGGGCGCTCGGATTCAGCTACGGCAGTTCCATGCGCCTGGTAGTGGTTCCGCAAGGCATCCGCCGGGTGCTGCCCGCGCTGGTGAACCAGTTCATTTCCCTGCTCAAGGATTCCTCGCTGGTGTTCATGCTGGGTCTGGCAGCCTCCGACCGGGAAATATTCCGGATCGGAAACGACGCCATGGCCAACACGGGAAACCTTTCTCCGTTGGTGGCGGCCGGCATTCTGTACCTGGTCCTCACCGTGCCACTGACGCACTTCGTGAACTTCATCGATAACCGGCTCCGGACCGGCAAGCCGGAGAAAAAGGAACCCGACGAATTGGCTGCACCTATCGGCAAGGGGGCACAGGCATGAMDLLDQLADTFFNWEEMAKVIPALLMVGLPNTLILAVTSGILGSLLGLLLAMMAISRNAGARWAARIYTDIFRGLPAILVILVIGIGLSPIAREITGNRNPYPLGILALTLIAAAYIGEIFRSGIQSVEKGQLEASRALGFSYGSSMRLVVVPQGIRRVLPALVNQFISLLKDSSLVFMLGLAASDREIFRIGNDAMANTGNLSPLVAAGILYLVLTVPLTHFVNFIDNRLRTGKPEKKEPDELAAPIGKGAQAPGPT0020795_3877DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_03264738tcyC_2COG1126L-cystine import ATP-binding protein TcyCATGACGGAATTTACCTCCGGCACCCTGACCGGCAAGAACCTCCACCTCTCGTTCGGCCACAATCATGTGCTCCGCGGCATCGATCTCCATGTGGAGAAAGGCACCACGGCTTCGGTGATCGGCCCCTCGGGCTCCGGGAAGTCCACTCTGCTGCGGGTCATGAACCGGCTGATCGAACCCGATCAGGGAGACATCCTGCTGGACGGCCGGTCTGTCCTTAAGGACAACCCCGATGAGCTCCGCCAGCGGATCGGCATGGTGTTCCAGCAGTTCAACCTGTTCCCGCACAAGACAGTGGTGGAGAACGTTTCGCTGGCGCTGCGGAAACTGCGGAAGCTTCCTGCGGAGCAGGCCCGCACTGAAGCCCTTGACCAGTTGGACCTCGTGGGACTCAAGCACAAGGCTGACGTACGCCCGGCCAACCTCTCCGGCGGCCAGCAGCAGCGTGTAGCGATCGCCCGCGCGCTTGCCATGAAGCCCGAGGTCATGTTCTTCGATGAGGCCACGTCGGCCTTGGACCCTGAGCTTGTCAAAGGTGTCCTGGCGCTGATGGCTGACCTGGCGAGGGGCGGGATGACCATGGTGGTGGTGACCCACGAAATGGGCTTCTCCCGCAATGTCTCGGACACCGTGACGTTTATGGACGCCGGCGTGGTGGTCGAATCCGGCCATCCCGACCAGATCTTCACCGCGCCGCAGACGGATCGCCTCAAGGGCTTCCTCTCCGACGTGCTGTAAMTEFTSGTLTGKNLHLSFGHNHVLRGIDLHVEKGTTASVIGPSGSGKSTLLRVMNRLIEPDQGDILLDGRSVLKDNPDELRQRIGMVFQQFNLFPHKTVVENVSLALRKLRKLPAEQARTEALDQLDLVGLKHKADVRPANLSGGQQQRVAIARALAMKPEVMFFDEATSALDPELVKGVLALMADLARGGMTMVVVTHEMGFSRNVSDTVTFMDAGVVVESGHPDQIFTAPQTDRLKGFLSDVLPGPT0020790_4218DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_032651428hemLCOG0001Glutamate-1-semialdehyde 2,1-aminomutaseGTGTCGCCGACCTCTTGGCCGGGGCTTCCCGGCCCGTTGAAAGCAACTGAAAGAATAGGAACCATGACCTCCAGCAACCCTCGTAACGAGGCACTCTTTGACCGTGCCCGCCAGCTGATGCCGGGCGGCGTCAACTCTCCTGTCCGCGCCTTCGGATCAGTGGGCGGAACCCCGCGCTTTATGGTCGCAGCCAACGGTCCGTACCTGACTGATGCCGACGGCCAGGAATACGTTGACCTCGTTTGCTCCTGGGGCCCGGCGCTCCTGGGACACGCCCACCCCGCCGTCCTCGATGCTGTCCACGCCGCTGTGGACCGTGGACTCTCCTTCGGCGCCTCAACCCCCGATGAGGCCAACCTCGCCGCCATCGTCCAGGAGCGGGTTCCCGCAGCGGAGCGCGTCCGTATGGTTTCCACCGGCACCGAAGCCACCATGACGGCCGTCAGGCTGGCCCGCGGCTTCACCGGCCGCAACCTCATCATCAAGTTCGCCGGCTGCTACCACGGCCACCTGGACGGCCTGCTCGCCGCCGCCGGATCCGGCGTGGCCACACTGGCCTTGCCGGGATCGGCCGGTGTCACCGAAGCCACGGCCGCCGAAACCCTGGTGCTTCCGTACAACGACCTCGCCGCCGTCGAGGCCGCTTTTGCCACGCACGGTACCAACATCGCAGCGGTCATTACCGAGGCAGCCCCGGCCAACATGGGCGTTGTAACGCCCGGCGAGGGCTTCAACCTGGGCCTGTCCAGGATCACCAGGCAGTACGGTGCCCTGCTGATCGTGGATGAAGTCCTCACCGGCTTCCGCACGGGCTACTCCGGCTACTGGGGACTGACCGGCGGAGCGCCGGACGCTGCTGAACCGTGGACCCCGGACCTGCTCACCTTTGGAAAAGTCATCGGCGGCGGAATGCCGACGGCGGCCCTCGGCGGACGTGCCGACGTGATGGATTACCTCGCCCCGCTGGGCCCGGTGTACCAGGCGGGGACGCTGTCCGGAAACCCGGTGGCCATGGCAGCGGGCGTGGCGACCCTGACGCACGCCACCCGCGACGTGTACTCCTTTATTGATGCGAGGTCGCTGGAGTTGTCCTCCGCGTTGTCCTCGGCACTGGACGCCGCGGGAGTGGACCACTCCATCCAGTTCGCCGGAAACCTCTTCTCCGTTGCCTTTGGAACCTCTGCCACCGGGGTCCACAACTACGCTGACGCGCAGGGCCAGGAAACGTTCCGCTATGCGCCGTTCTTCCATTCCATGCTCGACGCCGGTGTGTACCTGCCGCCGTCGGTCTTTGAAGCGTGGTTCCTGTCGGCAGCCCATGACGACGCCGCCATGAACCGGATCTTTGATGCCCTGCCAGCCGCAGCGCAGGCTGCTGCGGCGGCGACGGTGAGCCCCGTCGTCGGGCGTTCCGCTGCGGTCAGCTGAMSPTSWPGLPGPLKATERIGTMTSSNPRNEALFDRARQLMPGGVNSPVRAFGSVGGTPRFMVAANGPYLTDADGQEYVDLVCSWGPALLGHAHPAVLDAVHAAVDRGLSFGASTPDEANLAAIVQERVPAAERVRMVSTGTEATMTAVRLARGFTGRNLIIKFAGCYHGHLDGLLAAAGSGVATLALPGSAGVTEATAAETLVLPYNDLAAVEAAFATHGTNIAAVITEAAPANMGVVTPGEGFNLGLSRITRQYGALLIVDEVLTGFRTGYSGYWGLTGGAPDAAEPWTPDLLTFGKVIGGGMPTAALGGRADVMDYLAPLGPVYQAGTLSGNPVAMAAGVATLTHATRDVYSFIDARSLELSSALSSALDAAGVDHSIQFAGNLFSVAFGTSATGVHNYADAQGQETFRYAPFFHSMLDAGVYLPPSVFEAWFLSAAHDDAAMNRIFDALPAAAQAAAAATVSPVVGRSAAVSPGPT0003680_1393DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845NANA
D1-29_032661119hypothetical proteinATGAACCCCGCGTCCGTGCCCGATCCGGCGTCAGCGGCGAACCCGACAACACCGGTTGGCGCGGACCGTATCCTGCTGGGACTGAACTCCTTCGGCGACGTCGGCGTCTTTCCTGACGGGCACCCCGTCCCGCACGCCCAGGTGCTGCGCCAGCTCCTTGAGCAGGCTGAACTCGCAGACGAGGTAGGGCTTCATGCCTTTGCCGTGGGAGAACACCACCGCCGTGACTTCGCGGTATCGGCCCCGGAGGTTTTCCTTGCCGCCGCTGCAGCACGGACCAAGAACATCCGGCTCGGCTCGGCCGTGACGGTGCTCAGCTCCGATGACCCCATCCGGGTGTTCCAGCGCTTCGCCACAGTGGATGCCATCGCCAACGGACGCGCGGAGGTCATGCTGGGGCGCGGGTCCTTCATCGAGTCCTTTCCGCTCTTCGGCCTGGACCTGGCCGACTATGACCTCCTGTTTGAGGAGAAGCTCGAGCTCTTCGACAAGGTCCGCCGGCAACAACCTGTGCACTGGGAGGGCCGGACCCGGCCCGCGATCCACGGGCTGAGCGTCTATCCGCCGTTGGAACACCACCTGCTGCCGGCCTGGATAGGCGTCGGCGGAACCCCGGAATCCGTGCTGCGCTGTGCCCAGTACGGATACCCCATCATTTTCGCCATCATCGGCGGACAGCCCCGCTCGTTCGCGCCTCTCGCCAATCTCTACCGCGAAGCGATGGCCAAATACGGCCATCCAATGCAGCAGATCGCCACGCATTCGCCCGGCCATGTTGCGGCAACCGATGAGGAGGCGCGGGACGAGTTCTTCCCGCACTGGCTGGAGCAGCGGAACCGCATTGGCTCCGAGCGCGGCTGGGGACCGGCCAGCCGGGGCGAATTCGAGGCAATGTGCACCCCGGAGGGCGCCCTCTACGTCGGTTCACCGGAAACCGTCGCCGCCAAGATCGCGCTGCTCAAGAAGAACCTGGGCGTGGACAGGTTTGACCTCAAATACAGCAACGGCACCCTGCCGCACGCCGCCATGATGCGCTCGATCGAACTGTTCGGCACCGAGGTGGCGCCACGTGTCGCCGACCTCTTGGCCGGGGCTTCCCGGCCCGTTGAAAGCAACTGAMNPASVPDPASAANPTTPVGADRILLGLNSFGDVGVFPDGHPVPHAQVLRQLLEQAELADEVGLHAFAVGEHHRRDFAVSAPEVFLAAAAARTKNIRLGSAVTVLSSDDPIRVFQRFATVDAIANGRAEVMLGRGSFIESFPLFGLDLADYDLLFEEKLELFDKVRRQQPVHWEGRTRPAIHGLSVYPPLEHHLLPAWIGVGGTPESVLRCAQYGYPIIFAIIGGQPRSFAPLANLYREAMAKYGHPMQQIATHSPGHVAATDEEARDEFFPHWLEQRNRIGSERGWGPASRGEFEAMCTPEGALYVGSPETVAAKIALLKKNLGVDRFDLKYSNGTLPHAAMMRSIELFGTEVAPRVADLLAGASRPVESNNANANANANA
D1-29_03267984hemBCOG0113Delta-aminolevulinic acid dehydrataseATGAGTTTTCCGAACCAACGCCCGCGCCGCCTCCGCACCACGGCGGCCATGCGGCGGCTCACTGCCGAAACCAGGCTGGCGCCGCCGGAGCTGATCCTGCCGGCGTTCATCAGGGAGGGCCTCTCGGAGCCACATCCGATCACCTCCATGCCCGGGGTGGTGCAGCACACCACTGACACGCTCAAAAAGGCGGCAGCGGAGGCAGTCGACCTGGGCATCGGCGGCATCATGCTCTTCGGCATCCCCGCCGTCCGGGACGCCGAAGGCACTGCATCGCTGGATCCGGACGGTGTGCTTAACAGGGCAATCCGTGATGTCCGGTCCGAGGTGGGCGATGAGCTGGTCATCATGAGTGACGTCTGCCTGGACGAATTCACGGACCACGGACACTGCGGGGTCCTGAATGCTGACGGCTATGTGGACAACGACCGCACCGTGGAAATTTACGCCAGGATGGCCGTGGCCCAGGCCGACGCCGGGGCCCACATGCTGGGCCCGTCCGGCATGATGGACGGCCAGGTGCGCGCCATCCGGCAAGCCCTCGACGAGGCCGGACACACCGAAACCTCGGTGGTGGCCTATGCGGCCAAGTACGCCTCCGCGTTCTACGGCCCGTTCCGGGAGGCAGTGGATTCGCAGCTGACGGGCGACCGCCGGACGTATCAGATGGACGCCGGAAACCGGACGGAGGCCATACGCGAGGTGGAGCTGGACCTGGCGGAAGGCGCCGACGTCGTGATGGTCAAGCCGGCCATGAGCTACCTGGACATTCTGGCTGACGTTGCCGCGATGAGCCCGGTCCCGGTTGCCGCCTACCAGATTTCGGGCGAGTACGCGATGATCGAAGCCGCCGCCGCCAACGGGTGGATCGACCGCCGCGCAGCAATTACCGAGTCTGTGCTTGGCATCAGGAGGGCAGGGGCGGACATGGTGCTGACGTATTGGGCGGCGGAGCTGGCCGGCTGGCTGAGGGAATCGCGATGAMSFPNQRPRRLRTTAAMRRLTAETRLAPPELILPAFIREGLSEPHPITSMPGVVQHTTDTLKKAAAEAVDLGIGGIMLFGIPAVRDAEGTASLDPDGVLNRAIRDVRSEVGDELVIMSDVCLDEFTDHGHCGVLNADGYVDNDRTVEIYARMAVAQADAGAHMLGPSGMMDGQVRAIRQALDEAGHTETSVVAYAAKYASAFYGPFREAVDSQLTGDRRTYQMDAGNRTEAIREVELDLAEGADVVMVKPAMSYLDILADVAAMSPVPVAAYQISGEYAMIEAAAANGWIDRRAAITESVLGIRRAGADMVLTYWAAELAGWLRESRPGPT0003655_3440DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
D1-29_03268912hypothetical proteinATGGGGCAGTTTGAGATGGGGCGGCCTGAAAAGGACAGCGGAGACGGCACGCCGCCATCCGGCAGGCAGCCGCTGGCCCGTGCGCGCGTCCTGATTACGCGCAATCCCGAGCGCTCCGTTTCCCTGCTCTCTGCGCTGGAGAGGGCAGGTGCAGAAGCCCTGCTGCTTCCGCTCATCGACTTTGAACGGGCCGCGGACCAGCACGCCCTGGATGTGGCCTGCGATGCCCTGGGCGCGGGTGCCTTCGACTGGCTTGTTGTCAGCAGCGCCACCACCGTCCATGTCCTCAGGGACAAGGCCGCAGAACGCGGCCTGACCCTCGGCGGCTGGGTGCCTGCGTCTACCCGGGTGGCCGCCATTGGTCCTGCCTGCAGGGAGCTGCTTGAAGCAGAAGGCCTCACCGTGGCGCTGACCCCCCGGGACTCGCAGTCCGCCGCAGGCCTGCTGGCCGTCTGGCCGGAAGGATCCGCAAGGGTGTTCCTGCCGCAGGCTGACATTGCCGCTCCCCGCCTCGCTGACGGGCTGGCCGCCTCCGGGGCATCGGTGACTGCCGTTCCGGCTTACCGGACAGTGGATTATCCGGCGGATGAGGAACACAGGCTGTCCCTTGAAACGGCGGCCACCGCGCCGCCGTCGTACAGGATGGTGAGTCCTGAAGCCGCCCGGGCAGAGCTGACGGGAGGCCGGCTGCACGCGGTGGTAGCCGCCTCGCCCAGCGCCGTACGGCGCATCCACAGCAAACTCTCGCCACTGGGCAGCTGCCGCCTGGTAGCGATCGGACGTTCGACGGCGGAAGAGGCTGCGGCGCTCGGCCTGGTGGTGGCGGCCGTCGCGGCAGAACCCACACCGGAAGGGCTGGTCGCGGCAGTTTCCGAAGCCCTCAAATCCCAGGACGGGAAGGCTCCGCCGTGAMGQFEMGRPEKDSGDGTPPSGRQPLARARVLITRNPERSVSLLSALERAGAEALLLPLIDFERAADQHALDVACDALGAGAFDWLVVSSATTVHVLRDKAAERGLTLGGWVPASTRVAAIGPACRELLEAEGLTVALTPRDSQSAAGLLAVWPEGSARVFLPQADIAAPRLADGLAASGASVTAVPAYRTVDYPADEEHRLSLETAATAPPSYRMVSPEAARAELTGGRLHAVVAASPSAVRRIHSKLSPLGSCRLVAIGRSTAEEAAALGLVVAAVAAEPTPEGLVAAVSEALKSQDGKAPPPGPT0003665_758DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003665-hemD-K01719NANA
D1-29_03269999hemCCOG0181Porphobilinogen deaminaseGTGACCGTCCGGATCGGAACCAGGGCCAGCAAGCTCGCCCTCACGCAGACACAACAGACCGCGGACCAGCTGGCCGCCGTCGGAGGCTTTCCCGTTGAGCTGGTGCGTATCCGCACGGACGGCGACGTCCTGACCGGTTCACTGTCCCAAATGGGCGGCACGGGAGTTTTTGTGACCGCCCTGCGCGATGCGCTGCTGCGGAACGAGTGCGACGTCGCCGTTCATTCGCTCAAGGACCTCCCGACGGGCGCGCCGGTTGGCTTGGCCCTGGCCGCCACCCCGCGGCGCGTCGACGTGCGCGACGTCCTCTGCGCACGGGACGGCCTGAAGCTGGCTGACCTGCCCTCCAGGGCAACTGTCGGAACGGGATCGCCCCGGCGTGCGGCACAGCTGCGCGCAGCCCGGCCGGACCTCCAGATCGTCGACATCCGCGGCAACGTGGATACCCGCCTTGGCAGGGTCCCCGGGCTGCCGGGTAACACTACTGACCAGGTTGTTCCCGGCAAATCCTGCGATCTTGACGCCGTAGTCCTCGCAGCGGCGGGGCTGGAGCGGATCAGCAGGCTGGATGCCGTCAGCGAATTCCTGGAGACTGACGTGATGCTTCCTGCCGCCGGGCAGGGGTCATTGGCGATTGAATGCCGGACCGCCGACGCGCCACGCAAGGCGGGGTCCACCGAGGGCTCCCAGGGTGTCCTTGCCCAGGCACTCGCCGCACTGGACGATCCGGACACCAGGCTCGCCGTCACCGCGGAGCGTGCGCTCCTGGCGCGGCTCGAAGCCGGCTGCGCGGCCCCGGTGGGCGCCTACGCCTACCGCAAGGGCAGCCTGCTTCACCTCGAAGCAGTGGTTTGTGCCGTGGACGGGACGGCCTCTGTCCGTGACAGGCGGGCCACCGACGGATTGACCGAGGTAGGCGCCACGCTGCTGGGCATCGAACTGGCCGAGGTACTCCTTGCCGGCGGGGCCGCCGACATCGCAGACCTCCAGGCTTCCTGAMTVRIGTRASKLALTQTQQTADQLAAVGGFPVELVRIRTDGDVLTGSLSQMGGTGVFVTALRDALLRNECDVAVHSLKDLPTGAPVGLALAATPRRVDVRDVLCARDGLKLADLPSRATVGTGSPRRAAQLRAARPDLQIVDIRGNVDTRLGRVPGLPGNTTDQVVPGKSCDLDAVVLAAAGLERISRLDAVSEFLETDVMLPAAGQGSLAIECRTADAPRKAGSTEGSQGVLAQALAALDDPDTRLAVTAERALLARLEAGCAAPVGAYAYRKGSLLHLEAVVCAVDGTASVRDRRATDGLTEVGATLLGIELAEVLLAGGAADIADLQASPGPT0003660_1063DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749NANA
D1-29_032701263hemHCOG0276FerrochelataseATGAGCCCACTGGACCGCCAGGAATACCTGGCAGCAGGAACCATGAATCCCGTTACCGAAGCCGGCCGGATGGCGCCCAAGAATTACGACGGCGTCCTCCTCGCCTCCTTCGGCGGGCCTGAGGGCCAGGAGGACGTCATTCCGTTCCTCCGAAACGTCACGCGGGGCCGCGGGATCCCGGACGAGCGGCTGGAAGAGGTCTCCCACCACTACCGCGCCAACGGCGGCATCAGCCCCATCAACCGGCAGAACCGCGAGCTCAAGGCGGCCCTGGAAGCGGAACTTGAGGCGCGGGGCATTGAGCTGCCAGTGCTGTGGGGAAACCGCAACTGGGCCCCGTACATCCCGCAGACCCTGCAGGACGCGTACGACGCCGGCCACCGCAGCCTGCTGATGATCACCACCAGCGCCTACTCGTGCTACTCCAGCTGCCGCCAATACCGCGAGGACATCGGCATGGCGCTGACCGAGACCGGCCTGGACGGACGGCTTGAGGTGGACAAGGTGCGTCAGTATTTCGACCACCCTGGTTTTGTGGAGCCCTTTATCGAAGGCACAGCGGCGGGCCTGGCCGACGTCCGGGCGCGGCTGGCAGCTGCCGGAACCCCGGATGCGCCGGTGCACATCCTGTTCGCAACCCACTCCATCCCCACCCGGGATGCCGAGGCCGCCGGACGCTCCGAGGCAGAGCCCCGCGAGTTTGAGGAAGGCTCGGCGTACGTTGCCCAGCACCTCGCCACCGGTGCAGCGGTCATGGACCGCGTCGAGGCAGAATCAGGGCAGACTGCTCCCTGGTCACTGGTTTACCAGTCCCGCTCGGGGGCCCCGCACGTGCCGTGGCTTGAACCTGACATCAACGATGCCATCGAGGAACTGGCCGGCCAGGGTGTCAAGGGAATCGTGATTGTGCCACTGGGATTTGTCAGCGACCACATGGAGGTTGTCTGGGACCTGGACACCGAGGCGCTGGAGACCTGCCGCAGCCTTGGCCTCACCGCCACCCGGGTGCCCACACCTGGAACGCACCGCACCTTTGTGAAGGGGCTGGTGGACCTGATCCTGGAGCGGACACTGACCGGCAACATCGCTGACCGTCCGGCAGTGACCGGCCTGGGGCCTTGGTACGACGTCTGCCGGCCGGGATGCTGCGCGAACTTCCGCGGCGAGAAGCCCACCGTCGCAGGGGCTGACACCACCGTCGGCACCGGTCATGACCCTTATCCGGAGTCCGGTGTACGGGCCGGGGGAGAGGGCATCCAGTGAMSPLDRQEYLAAGTMNPVTEAGRMAPKNYDGVLLASFGGPEGQEDVIPFLRNVTRGRGIPDERLEEVSHHYRANGGISPINRQNRELKAALEAELEARGIELPVLWGNRNWAPYIPQTLQDAYDAGHRSLLMITTSAYSCYSSCRQYREDIGMALTETGLDGRLEVDKVRQYFDHPGFVEPFIEGTAAGLADVRARLAAAGTPDAPVHILFATHSIPTRDAEAAGRSEAEPREFEEGSAYVAQHLATGAAVMDRVEAESGQTAPWSLVYQSRSGAPHVPWLEPDINDAIEELAGQGVKGIVIVPLGFVSDHMEVVWDLDTEALETCRSLGLTATRVPTPGTHRTFVKGLVDLILERTLTGNIADRPAVTGLGPWYDVCRPGCCANFRGEKPTVAGADTTVGTGHDPYPESGVRAGGEGIQPGPT0008485_419DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008485-hemH|ywfI-K01772NANA
D1-29_03271702COG3253putative protein/MSMEI_2713ATGAGCCACACTTCTGCCGAATCTGTCACTAAAACCGAAGAATCAGCCGAGCAGTTTTTTACTCTCTGGACTGTTTTCAAGCGGTCTGCAGAGATCCTGCGCAGCCCTGACGCCGCCGAGGACTTCGACGCGCTGCTGTTCCGCCTTGCCGAGGCAGGTGTCACCCACCGTGGAAGCTATGACGTCTCCGCCATGCGCGCGGATGCTGACGTGATGGTGTGGCTCCACGGGCCCAAGCCGGAGGCCTTGCAGCAGGCCATCCGCGATATCCGCCGCAGCAAGCTCTTCGCTGGAACAGAGATCGTCTGGTCGGCCATGGGCGTACACCGCGAGGCAGAATTCGCCAAGAACCACACGCCGGCATACTCCCGCGGCGTGGAACCGGCCGACTGGCTGTGCGTCTACCCGTTCGTGCGCTCCTACGAGTGGTACATCCTGCCCGAGGCCGAACGCGGGAAGATGCTGCGCGACCACGGCATGCTGGGCCGCGACTTTCCCCAGGTCATTTCCAACACGGTGTCTTCCTTCGCATTGGGGGACTGGGAATGGATCCTTGGCCTGGAAGCTCCCGACCTGGTTGACCTGGTGGACCTGATGCGCCACCTGCGCGCCACGGAAGCACGCAACCACGTCCGGGAGGAAATCCCGTTCTTTACCGGCCGCCGCATCTCGGCTGCGGAGATAGCAGAGGTCCTCGCATGAMSHTSAESVTKTEESAEQFFTLWTVFKRSAEILRSPDAAEDFDALLFRLAEAGVTHRGSYDVSAMRADADVMVWLHGPKPEALQQAIRDIRRSKLFAGTEIVWSAMGVHREAEFAKNHTPAYSRGVEPADWLCVYPFVRSYEWYILPEAERGKMLRDHGMLGRDFPQVISNTVSSFALGDWEWILGLEAPDLVDLVDLMRHLRATEARNHVREEIPFFTGRRISAAEIAEVLAPGPT0008490_515DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSOTHER_BIOTIC_STRESS_RESISTANCE_GENESBIOTIC_STRESS_RESISTANCE-BACILYSIN_METABOLISM,PGPT0008490-hemQ-K00435NANA
D1-29_03272378hypothetical proteinTTGTCGTCGGGGGCACAGCAAGGCGCCGCTGCAGGGACGGGGGCCACCACCGGGGCAGGCCTGCAATCGGCGCTTCCACAGCCGGCAGCTGAGGGCTCCCAGCCCGAACAGGCGCCTGTCCAGCCGGAGGCGACCCAGCCCGAAGCAGTCCAGCCGGAAGCCGGGGCCGGCCAAAGCTCAAGCGTGCCGTCACCCAGTGCCGGACAGGCGTTCCGCAGCGGCACCCTGCAGGCCGCAGGCTCACCCGCTGTCAGCCGGCAGGGAATGACCCAGGCGCCGGAGAACCTGCCCGAGACAGCCAAGGTGTTGCTCGGACTTGGCCTGGTAGTCTCCGCGGGTGCCGCGGGACTCGTCTTCGCCAAAATCCGGCGGCTCTGAMSSGAQQGAAAGTGATTGAGLQSALPQPAAEGSQPEQAPVQPEATQPEAVQPEAGAGQSSSVPSPSAGQAFRSGTLQAAGSPAVSRQGMTQAPENLPETAKVLLGLGLVVSAGAAGLVFAKIRRLNANANANANA
D1-29_032731458hemYCOG1232Protoporphyrinogen oxidaseGTGACGGAGGGCAGAACCGCCGTGGTGGTGGGCGGCGGGATTTCCGGCCTGCTGGCTGCGCGCGAGCTGTCCGCGGCCGGATACACGGTTACTGTTCTGGAGGCCGGCGGCACCTGGGGCGGCTGCGTTGGCAGCCACGTGGTGGCCGGGCTCACGCTGGACAGCGGCGCGGAATCCTTTGCCACGCGTTCCACCGCGGTGGCTGACCTTGCCGGGGAGCTGGGCCTGGCCGGCAAGATTGTTGCGCCGCGGCCGGGCGGTGCCTGGGTCCAGCTTCCGGACGGCCCCCGTGAACTGCCGAAGACCGGCGTCCTGGGTATTCCTGCCAATCCGTGGGATCCGGAAGTGCGGCGCTCCCTGGGGTTCCTCGGCTCGCTGCGGGCGTCGCTGGATAAGGTCCTCCCCGCTGCTGTGGGGTCCTCTGCTGCCGTCACCAGCGTGTCATCCCTGGTGCGCCTACGGATGGGCCGCCGGGTGCTTGAAAGGCTGGTGGCGCCGGTGGTGGGGGGAGTGCACTCCGCCGATCCGGGCCTCCTGGATGTGGACATGGTGGCGCCGGGCTTACGCGCGGGCCTGCGCGCACACGGTTCACTGGCCGCTGCCGTCACCGCGCAACGTGGAGGCGCACGGCCGCAGGGCGCTGTATCGCCCGCCGCCGCGGATCCGCCCGCTTCCGCGCCGCCGGCCAAGGCGGGGTCCGCCGTTGCCGGGCTCGAGGGCGGCATGCACACGCTGATCGCCGCGCTGGTCAGCGATCTTACGGACCGCGGCGTGAACCTGCTGACCGCTTCCCGGGCCAGGAGCGTCACGCGTACGGACGCCGGCTGGCGGGTTGCGGCCGGGGAGAAAGAGTACGACGCCGGCCTGCTGGTGGTGGCGCTGGACGGTCCGGCCGCCGTCGGACTGCTGGAGCAGTCCGTTCCGGAACTGGCTGGCAAAAGCCCGGAAAGCGGACCTGACGTCAAACTGGTCACCCTGGTGGTGGACCGTCCGGAACTGGACAGCAGGCCACGCGGCACCGGCGTCCTGGTAGCCCCGCAGACCCCGGGCATCGAGGCAAAAGCGCTCACCCACGCGACAGCCAAATGGGACTGGCTCGCAGCCGCCGCCGGACCCGGCACCCACGTCCTCCGGCTCTCCTACGGGCGGATCGATGGTTCACCCTCGGGCGGTGCCGGGCCAACGAGTGACAGCGAGCTCCTGGCTGCCTCGCTCCGGGACGCGTCGGCATTGCTGGATGTACCTCTCGAACGGGAGGACGTCATCGGTTGGGATGTGGTCAGGTGGCAGGGCGCCTTGCCGTTCGCCGCCGTCGGCCACAAAGCCAGGGTGGCCGAGATCAGGAGCCTTTGCGCCCGGGAGGGTGGCCTGTCGGTGGTGGGCGGCTGGGTGGCGGGCAACGGACTGGCCGCCGTGGTGGCGGACACTCGCCAGCAGGTCCGCGGCATCCTGGGCTGAMTEGRTAVVVGGGISGLLAARELSAAGYTVTVLEAGGTWGGCVGSHVVAGLTLDSGAESFATRSTAVADLAGELGLAGKIVAPRPGGAWVQLPDGPRELPKTGVLGIPANPWDPEVRRSLGFLGSLRASLDKVLPAAVGSSAAVTSVSSLVRLRMGRRVLERLVAPVVGGVHSADPGLLDVDMVAPGLRAGLRAHGSLAAAVTAQRGGARPQGAVSPAAADPPASAPPAKAGSAVAGLEGGMHTLIAALVSDLTDRGVNLLTASRARSVTRTDAGWRVAAGEKEYDAGLLVVALDGPAAVGLLEQSVPELAGKSPESGPDVKLVTLVVDRPELDSRPRGTGVLVAPQTPGIEAKALTHATAKWDWLAAAAGPGTHVLRLSYGRIDGSPSGGAGPTSDSELLAASLRDASALLDVPLEREDVIGWDVVRWQGALPFAAVGHKARVAEIRSLCAREGGLSVVGGWVAGNGLAAVVADTRQQVRGILGPGPT0008475_817DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008475-hemY-K00231NANA
D1-29_032741194hemECOG0407Uroporphyrinogen decarboxylaseGTGATTTGCGCCACGGCGTCCACTTGGCCGCGTGGGATGACAGGCTGTCGTTATCTTTTGCGCCGGATTTTGGGCACAATCAAAAGCATGACTCCTAGCCCCGCCGTGTCCAAAGCCATGTCCAGTGACGGCGCCCTTGCTGCAGACCATCCGCTGATGGATGGCCGCACCGCAGATTCCCCGCTGATCACGGCCTACCGCGGCGGCAAGCCCTCCCGCCGCCCGGTGTGGTTCATGCGGCAGGCCGGGCGTTCCCTGCCGGAGTACCTGAAAGTCCGCGAAGGCGTGGCCATGCTGGACTCCTGCCTGCGCCCCGACCTTGCCTCCGAAATCACCCTTCAGCCGGTGCGGCGCCATGACGTGGATGCTGCCATTTTCTTCTCGGACATTGTGATTCCGCTTAAGCTCGCAGGCGTGGGCGTGGATATCGTCCCGGGGGTTGGTCCTGTGCTGGACAAGCCGGTACGTACCGCCGCTGATGTTGCCGCCTTGCCCGAGCTCACGTGGGAGGCCCTGGAGCCGATCAGGGAAGCGGTTCGGCTGACGGTGGCCGAGTTGGGCAAGACCCCGCTGATCGGCTTCGCCGGCGCGCCGTTTACGTTGGCCGCCTACATGGTTGAAGGCAAGCCGTCGCGGGACCACCTGGGTCCGCGGACGATGATGCACGCCGACCCGGAAACCTGGACGGCGCTGGCCAACTGGGCAGCCGATGCCTCCGGACTCTTCCTCCGGGCCCAGCTCGAAGCGGGAGCCTCCGCCGGGCAGCTCTTTGATTCCTGGGCGGGCTCTCTGGGGCTGGCCGACTACACCAGGTACGTTGCGCCGGCGTCGGCCCGCGCCCTGGACCATGTGCGGCATCTTGGCGCACCCCTCATCCACTTCGGCACCGGGACGTCGGAGCTGCTGGTAGCCATGCGCGACGTCGGCGTCGACGTGGTGGGCGTGGACTACCGCCTGCCGCTCGATGAGGCGAACCGGCGGCTTGGCGGGACGGTGCCGCTGCAGGGAAATATCGATCCCGCGCTGCTGTCAGCGCCCTGGGACGTCCTCGAGGCCCACGTGCGGGAGGTGATCGCCGCCGGTTCGGCCGCCCCCGGTCACGTGCTCAACCTCGGCCACGGCGTCCCGCCGGAGACTGATCCTGCCGTTCTCACCCGGGTTGTTCAGCTCATCCACTCCATCTCCCCGGAGTAGMICATASTWPRGMTGCRYLLRRILGTIKSMTPSPAVSKAMSSDGALAADHPLMDGRTADSPLITAYRGGKPSRRPVWFMRQAGRSLPEYLKVREGVAMLDSCLRPDLASEITLQPVRRHDVDAAIFFSDIVIPLKLAGVGVDIVPGVGPVLDKPVRTAADVAALPELTWEALEPIREAVRLTVAELGKTPLIGFAGAPFTLAAYMVEGKPSRDHLGPRTMMHADPETWTALANWAADASGLFLRAQLEAGASAGQLFDSWAGSLGLADYTRYVAPASARALDHVRHLGAPLIHFGTGTSELLVAMRDVGVDVVGVDYRLPLDEANRRLGGTVPLQGNIDPALLSAPWDVLEAHVREVIAAGSAAPGHVLNLGHGVPPETDPAVLTRVVQLIHSISPEPGPT0008465_487DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599NANA
D1-29_032751314hemACOG0373Glutamyl-tRNA reductaseGTGGTTCTTTTTTCATTGGTGGCTACACACGCCGACATCGACCTTGAGACCGTTGCTCAATTGAGCAACGGTTCTTCCGGGGTTGCCACATCCGCACTCTCCGGATCGCCGGCAGTGACGGGTGCGGTGGTGCTTGCCACCTGCAACCGCTACGAAATCTATGGAGAAGCGCCCCATGCTGATGACGTCGAGGCTGCACGCGCCGCCCTGGTGTCCCAGATCAGCGGCCTCAGCGGCCTGAACGAACAGCTGGTCTCCCGGTCCTTCAGCACCAGGACGGGACCTGAAGTCAGCCAGCACCTTTTCGCCGTCAGCGCCGGCCTCGATTCCGCGGTGGTGGGCGAACGTGAAATCGCCGGCCAGGTGCGGCGGGCCCTCATCACGGCCCAGCATGAAGGCACGGCCAGCTCCGGCCTGGTCCGGCTGTTCCAGGCCGCTTCAAAAACTGCCAAGGACGTAGGCGCCCAGACCGCCCTCGGTTCCCGCGGCCTGTCCATCGTGTCAGTAGCCCTGGACCTTGCCACCGACCTGTCCGAGAACCAGGACTGGTCCACCAAGAAAGTCGTGGTGTTCGGCACGGGCGCCTACGCCGGCGCCACCATGGCGCTGCTGCGTGAACGCGGCTGCACTGACATCTCTGTTTTCTCGTCCTCCGGCCGCGCCGAAGCTTTTGTCGCCACCCGTGGCGGCACCGCACTGGACAGCGAATCACTCCGTCCCGCCGTCGCCGCGGCCGATGTCATGATCGGCTGCAGCGGTTCGGACATCAGGGTGGAGGCCGATGAACTGGCAGAAGTCAGGGCGGAGTCGCCACAGCCGCTGATTGCCATCGACCTCGCGCTCACCCACGACTTTGACCCGGAAGTGGGACAGCTCGACGGCGTTGAGCTGCTCACGCTGGAATCGGTACGCCTGGCAGCGCCCCAGGAACAGGCCGAGTCCCTGATCCAGGCCAGCGGCATCGTTTCCGGTGCTGCCCAGGCCTTCGAGCAGGAGCGTGAGGCCCGTTCCATGGACTCCGCGATTGTTGCCCTGCGCCGGCACACCATGAACGTCCTCGACGCCGAAATGGAAAAAGTGCGCGCCCGCCACGGCTGCACCGCAGCGGCCGAGGAAGTGGAGTTTGCCCTCCGCCGGATGGTGAAGCAGCTGCTGCACGTGCCCACGGTCCGTGCCCGTGAACTTGCCGCCAACGGCCAGCAGGACGACTACGTTGCGGCCCTCGAAACCCTGTACGGCATTACCGTGGAGCAGCCTGCCGCCGCCGCGCAGGCCGAATGCCCCGTGGACCACAAGGGCCTCGAAAGCGCCTGAMVLFSLVATHADIDLETVAQLSNGSSGVATSALSGSPAVTGAVVLATCNRYEIYGEAPHADDVEAARAALVSQISGLSGLNEQLVSRSFSTRTGPEVSQHLFAVSAGLDSAVVGEREIAGQVRRALITAQHEGTASSGLVRLFQAASKTAKDVGAQTALGSRGLSIVSVALDLATDLSENQDWSTKKVVVFGTGAYAGATMALLRERGCTDISVFSSSGRAEAFVATRGGTALDSESLRPAVAAADVMIGCSGSDIRVEADELAEVRAESPQPLIAIDLALTHDFDPEVGQLDGVELLTLESVRLAAPQEQAESLIQASGIVSGAAQAFEQEREARSMDSAIVALRRHTMNVLDAEMEKVRARHGCTAAAEEVEFALRRMVKQLLHVPTVRARELAANGQQDDYVAALETLYGITVEQPAAAAQAECPVDHKGLESAPGPT0003650_1558DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492NANA
D1-29_032761200moeZCOG0476putative adenylyltransferase/sulfurtransferase MoeZATGGCTTCGACATTCACCGCAAATGCTCCGTCTGTTTCGCTGGAACCCTTGGTGGAGCCCGCAGGCGATTTGACTCCGGCAGAGGTTGAGCGCTATTCACGGCACCTCATCATTCCCGAGATCGGCGCCCTGGGGCAGCGCCGGCTCAAGAACGCCAAGGTGTTGGTGATAGGCGCCGGAGGGCTCGGATCGCCGGCGCTGCTGTACCTCGCGGCCGCGGGTGTTGGCACCCTAGGCATCATTGACGATGACGCAGTGGACCTCAGCAACCTGCAGCGGCAGGTGATCCATGGCGTCGCAGATGTGGGACGGCCAAAGATTGAATCCGCCCGCGACGCCATCGCCGCGCTCAATCCGCTGGTGGACGTCAGGCTGCACCACGTCAGGCTGGATGAGACAAACGCCCTCGAACTTTTCGCAGAGTACGATCTCATCCTCGACGGCGCGGACAACTTCGCCACCCGCTACCTCGTCAACGACGCCGCCGCGATCCTGGGCAAACCGTATGTCTGGGGCTCTATTTTCCGTTTCGACGGCCAGGTCAGCGTCTTCTGGGAGAAGCATGGCCCCACCTACCGCGATCTTTACCCGGAGGCTCCGCCGGCAGGGTCGGTGCCTTCCTGTGGGGAGGGCGGGGTGTTTGGGATGCTCTGCGCGGCGGTTGGTTCGCTGATGGTGACGGAAGCAGTGAAGCTGATTACCGGCGTCGGGTGTTCACTCCTGGGCCGGGTGGCCCTGTTTGATGCCTTGGGCGGCAGCTGGCGCGAGATCCGGGTGTCCAAGGATCCGGCGGCGGCGCCCATCACTGAACTCACCGACTATGACGCTTTCTGCGGCATCGAGCCCGCGCAGCCGGCCGACATCGAACACACGGTGACGGCAACACAGCTGGCCACCATGCTGGCGTCCCGGAAGGCCGGGCTGAAGGATTTCGACCTCGTGGACGTCCGGGAATCCGGTGAGCATGACATTGTCAGGATTGAGGGATCGGTGCTGATCCCGCAGGGACGGATCCTGGCGGGGGAGGCGTGGGCCGAGCTTCCCCAGGACAAGGACATCGTGTTCCACTGCAAGGCGGGAACCCGATCGGCCACTGTCCTTGAGGCGGCCCGGAAGGCCGGCTACCAGCGGGTCAGCCACCTCGACGGCGGGATCCTCGCCTGGGTCCGGGACGTGGAGCCGCAGAAACCCGTCTACTGAMASTFTANAPSVSLEPLVEPAGDLTPAEVERYSRHLIIPEIGALGQRRLKNAKVLVIGAGGLGSPALLYLAAAGVGTLGIIDDDAVDLSNLQRQVIHGVADVGRPKIESARDAIAALNPLVDVRLHHVRLDETNALELFAEYDLILDGADNFATRYLVNDAAAILGKPYVWGSIFRFDGQVSVFWEKHGPTYRDLYPEAPPAGSVPSCGEGGVFGMLCAAVGSLMVTEAVKLITGVGCSLLGRVALFDALGGSWREIRVSKDPAAAPITELTDYDAFCGIEPAQPADIEHTVTATQLATMLASRKAGLKDFDLVDVRESGEHDIVRIEGSVLIPQGRILAGEAWAELPQDKDIVFHCKAGTRSATVLEAARKAGYQRVSHLDGGILAWVRDVEPQKPVYNANANANANA
D1-29_03277684betI_6HTH-type transcriptional regulator BetIATGGAAAGTAGGACAACTGTGGTCCCTGAAGCACGGGCTGACCGATCGCCCGGCGCCGAACCGTCCGTCCCGATCCGAAGCGCCGGTCAGCGGTCCGCCAGGCTTCCCCGTGATGAGCGCCGCGCACAGCTCCTGACAGCCGCCCAGGAAGTCTTTGTGGCCAACGGCTACCACGGCGCTGCAATGGACGAGATAGCCGAGACGGCCCACGTCAGCAAACCGGTGCTTTATCAGCACTTTCCGTCGAAACGCGAACTGTACCTGGCGCTCCTGGACAGCCACTTATCGGCCCTGACCGACCTCATGCTGGGAGCCCTCAACTCCACCACGGACAACGACGAACGTGTGCAGGCCGTGATGCGGGCGTACTACCGCTTCATCGCCAGCGATGACCAGGCTCACCGCCTGGTCTTTGAATCGGACCTCATCAACGACCCCGATGTCAGCTCCAGGCTGGAGACTTTCAACAAAACGTTCGCGGACGCCGTGGCCCGAGTCATCGCCGAGGACACCAAACTGCCTCATCTGGAAGCGCAGCTGCTGGGCCGTGGCCTGGCCGGCATGGCCCAGGTGAGTGCCCGTTATTGGCTGGAAACGAACGGAAACCTTGACCTCGACGTCGCCAGTGACCTCATCTACCGTTTAGCTTGGCGCGGAATCTCTCGCTTCCCCAAGGAAACCTAGMESRTTVVPEARADRSPGAEPSVPIRSAGQRSARLPRDERRAQLLTAAQEVFVANGYHGAAMDEIAETAHVSKPVLYQHFPSKRELYLALLDSHLSALTDLMLGALNSTTDNDERVQAVMRAYYRFIASDDQAHRLVFESDLINDPDVSSRLETFNKTFADAVARVIAEDTKLPHLEAQLLGRGLAGMAQVSARYWLETNGNLDLDVASDLIYRLAWRGISRFPKETNANANANANA
D1-29_03278225hypothetical proteinTTGGAAATTAAGATCGGCGTTCAGAACATTGGCCGCGAAATTGTGCTTGAGTCAGCCCAGGATGCTGATGCGGTCGCCAAGGTCGTCGAAGACGCCATCAGCAAGGGCAGCGAGCTTCGCCTCAAGGATGACAAGGGGCGCGTCATCATCGTCCCCGGCAATGCCCTCGGGTATGTGGAGATCGGCGCTGAAGAGTCCCGCCGGGTGGGCTTCGGCCAGTTCTAGMEIKIGVQNIGREIVLESAQDADAVAKVVEDAISKGSELRLKDDKGRVIIVPGNALGYVEIGAEESRRVGFGQFNANANANANA
D1-29_03279303hypothetical proteinATGCTTTCGCTCACCATCGTTGTCCTGGCCACCACGGCCGCAGGCTTTATTGTCTGGGCCAATGACAAGCGCCATGCCAAGTACGGGATGGGGCTGCCCGCCGGGGTTGCCGTTACCGTTGGTGCCCTGAGTTGGATCATCTTCATAACAGCGGGCTTTGGCTACCAGCCGGGCCTGACCTGGATCCCCTGGGTCATGCCCATAGTGCTTGGTACCGCAGCAGCAGCAGCGGCGGCTGTGTACCTCGGCAGGACCCGCGCCCGGTATGACACCGTGCGGCTGACAGCGGCGCTCAAGCTGTAAMLSLTIVVLATTAAGFIVWANDKRHAKYGMGLPAGVAVTVGALSWIIFITAGFGYQPGLTWIPWVMPIVLGTAAAAAAAVYLGRTRARYDTVRLTAALKLNANANANANA
D1-29_03280690Putative pterin-4-alpha-carbinolamine dehydrataseGTGGCCGGCAAGGAAGACATACTCACCAGGGCGCAGGTTGATGAGGCCCTTACAGGGCTCACGGACTGGCGGTACTGCCAGGGCGCACTGGTCACCGTCTACAAAGCGCCGACGGCGGCCGCCGCACTAGAGCTGATTGCCGCCGTCGGACGCCTTGCCGAGGAGCAGAACCATCATCCGGACCTTGACTGGCGCTACAACAGGGTCTTCATCCGCTTCACGTCCCACGATGCCGGTGGAGACGTGACAGCGCGTGACACCACCGCGGCCGCGGCCGTGAGTACGGCGGCCACGAACGTGGGGGCAGCGGCGGAGCCAGGCCTGTACAGGACGGTGGAACTGGCGATCGACACCGTGGACGCAGCAGAAATCTCTGAGGTGTGGCGGGTGGCCCTGGGCTACAAAAAAACCCCAGGCAACGATTTGGTTGATCCCTACGGGCGCGGGCCCAGTGTGTGGTTCCAGGAGACTCCCACCCCCAACAGCAGCCGGATCCACGTTGACGTTTACCGGAGCAAGGCCGAATCGGGACAAGTCCTGGAGAAGACCGCAGCCACGGGAGCCTTAATGAACCGTGACTACGCACCCGAATGGGTGGTAGTCACGGACATGCAGGGAAACCGGCTGTGCCTGTGCACGGAGGAAGGCTACCAGCCCGACATCCCGGCTGAGGTTCCAGGCCAGGCCTGAMAGKEDILTRAQVDEALTGLTDWRYCQGALVTVYKAPTAAAALELIAAVGRLAEEQNHHPDLDWRYNRVFIRFTSHDAGGDVTARDTTAAAAVSTAATNVGAAAEPGLYRTVELAIDTVDAAEISEVWRVALGYKKTPGNDLVDPYGRGPSVWFQETPTPNSSRIHVDVYRSKAESGQVLEKTAATGALMNRDYAPEWVVVTDMQGNRLCLCTEEGYQPDIPAEVPGQANANANANANA
D1-29_03281816thiGCOG2022Thiazole synthaseATGACCGAAACCAGCAGCATCAGCACGCTAAACGAGCCAGGGCAGGCGGACAGACTGATCATCGACGGCGTCGCGCTGGGATCCCGCCTCATCATGGGAACCGGCGGCGCGCCCAGCCTGGACGGGCTTGGCGCCGCCCTGCTGGCGTCCGGGACCGAGCTGACTACCGTCGCGATGCGCCGCTATTCACCTGCCGAGTCGGGATCGCTGTTCCAGCTGCTGGTGGACCACGGCATCCGTGTCCTGCCCAACACGGCTGGCTGCTTCACTGCGCGCGATGCAGTCATGACCGCCGAACTGGCCCGCGAGGCCCTGGAGACGGACTGGGTCAAGCTGGAAGTCATTGCCGACGAACAGACCCTCCTCCCTGATGCCGTTGAACTGGTGGACGCCACGGAGCAGCTCGTCAGCCGGGGGTTTAAAGTGTTCGCGTACACCAACGACGACCCCGTGCTGGCACTGCGCCTCGAGAACCTGGGAGCTACAGCCGTTATGCCGCTGGGAGCGCCGATCGGCACCGGCCTGGGGATCCTGAATCCGCACAACATCGAGCTGATTGTTTCCCGCGCGTCGGTTCCTGTGGTGCTGGACGCCGGCATCGGTACCGCTTCGGACGCGGCGCTCGCGATGGAGCTGGGCTGTGACGCCGTGCTGCTGGCCACTGCAGTGACACGGGCGCAGAACCCCGCGCTGATGGGCGAGGCCTTCAAACACGCCGTTATCGCCGGTAGGCTGGCCAAAGCGGCCGGCAGGATTCCGCGCCGTGAGCACGCCCTGGCGTCGTCGGCCATGGAAGGCCGGGCAGAGTTCCTCTAGMTETSSISTLNEPGQADRLIIDGVALGSRLIMGTGGAPSLDGLGAALLASGTELTTVAMRRYSPAESGSLFQLLVDHGIRVLPNTAGCFTARDAVMTAELAREALETDWVKLEVIADEQTLLPDAVELVDATEQLVSRGFKVFAYTNDDPVLALRLENLGATAVMPLGAPIGTGLGILNPHNIELIVSRASVPVVLDAGIGTASDAALAMELGCDAVLLATAVTRAQNPALMGEAFKHAVIAGRLAKAAGRIPRREHALASSAMEGRAEFLPGPT0008965_589DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149NANA
D1-29_03282237hypothetical proteinATGAACATCACCCTCAATGGTTTGCATCACGCCGTGTCCGACGGCGCATCCATAACCACCCTTGTCAGCCAAATCACCGGCCGGCCGCTGGCAGCTGACGGCCAGGCGACTGACGGCAAGAAGCTCGGCGTGGCCGTGGCACACAATTCCGAAGTAGTACCCCGAAGCCAGTGGTACGTCACGGCGCTCGCCGACGGTGACGACGTGGAACTGGTCACAGCAGTCCAGGGAGGCTGAMNITLNGLHHAVSDGASITTLVSQITGRPLAADGQATDGKKLGVAVAHNSEVVPRSQWYVTALADGDDVELVTAVQGGPGPT0008970_193DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008970-thiS-K03154NANA
D1-29_032831335hcnC_3COG0665Hydrogen cyanide synthase subunit HcnCATGATCCCCCCATCCCGGAATGCGCGGGGCCCCGCCCCGACTGCAGCCGCGGCTGTTTTGCGTGCAGATGTTGCAGTGATCGGTGGCGGAGTCATAGGCCACGGCATCGCGTGGGAAGCGAGGCGCTCCGGCCGGTCCGTGGTGGTCATCGACGATGCCCCCGGTGCGGGGGCCAGCTGGGCGGCCGCAGGCATGCTGGCGCCTGTAAGCGAACTGCACTACCAGGAGGAGGACCTCCTGGAGCTGATGCTTGAGTCGTCAGCTCTGTGGCCCGCCTTTGCGGCCGACCTCGCCCGGCTGGCGGCACTGGATCCGGGCTACCTGCCGACGCCGACCATCGCCGTCGGGGCGGATGCGGCGGACCGCCGGGCCCTGATGGACCTCCGGACGGTCCAGCAGGCCAGCGGACTGCAGGTGGAACCGCTCACCATCCGGGAGGCGCGGACCCGGGAGGCCTTCCTTAGTCCGGCCATCTCCTGCGCACTGGACATCCCCGCCGACCACCAGGTCGATCCGCGGAAGCTCCTGGCGTGCCTGCGGCTTGCCCTGGCTAAACACCAGCCAGGTTCCGGAACCGCCGTCGAAGGTGCCGGCGAAGGGTTCGCCGTCGCCCAAAGGGCCACATCGCTCCTCTGGGAGGACGGCAAGGTCAGCGGCGTGCTGCTGACAGACGGCGGCAAGGTGCTGGCCGGCGAAACCGTGGTGGCGAACGGGCTGCAGGCAGCGTCCCTGTCTGGCCTGCCGCACGGCCTGCGCCTGCCTCTTCGGCCGGTGTACGGAGACATCCTCAGGCTTGCCGTCCCCCCGCATGTCCGGCCGCTGGTTACATCCACCATCCGCGGACTGGTACGGGGAGTGCCCGTGTACATCGTCCCGCGCCAGGATGGAACAGTGGTGATCGGGGCAACCCAGCGCGAGGATTCCCTGTCCGATGCCGGGGATGGCGCTGTGTCCGCCGGCGGCGTGTACCAGCTGCTGCGTGATGCCCAGGTCCTGGTCCCGGCGGTGGCAGAGCTGGAGCTTGTGGAAATAACAGCGAGGGCGCGCCCGGCGACACCGGACAATGCTCCGCTGCTGGGCCGGGTCAACGTTCCGGGAAGCGCAGAACACGTTGCCGGGCTGATCATCGCCACCGGCTTCTTCCGTCACGGCGTACTCCTCGCCCCCGCCGCTGCCGTGATCTGCCGGAACCTGATGGACGGCACGCCGGATCCGCGCTGGCTGCCCTTCAGCCCGGCCAGGTTTTCCGCGCTCGTTTCCGTTGCCGCGCCTGTTCATGCGGATGCCGCGATCGGCCCAGAAGCTGCCATCGACCCAGAAAAGGAATCAGTATGAMIPPSRNARGPAPTAAAAVLRADVAVIGGGVIGHGIAWEARRSGRSVVVIDDAPGAGASWAAAGMLAPVSELHYQEEDLLELMLESSALWPAFAADLARLAALDPGYLPTPTIAVGADAADRRALMDLRTVQQASGLQVEPLTIREARTREAFLSPAISCALDIPADHQVDPRKLLACLRLALAKHQPGSGTAVEGAGEGFAVAQRATSLLWEDGKVSGVLLTDGGKVLAGETVVANGLQAASLSGLPHGLRLPLRPVYGDILRLAVPPHVRPLVTSTIRGLVRGVPVYIVPRQDGTVVIGATQREDSLSDAGDGAVSAGGVYQLLRDAQVLVPAVAELELVEITARARPATPDNAPLLGRVNVPGSAEHVAGLIIATGFFRHGVLLAPAAAVICRNLMDGTPDPRWLPFSPARFSALVSVAAPVHADAAIGPEAAIDPEKESVPGPT0008955_69DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153NANA
D1-29_03285801thiECOG0352Thiamine-phosphate synthaseATGAATACCGCCCTTTCCAACAGCACGGCCTCCAACAGCAGCCCCATCTCCACCGCACCAGACACCGCACCCGCCGCAGACATCACCGGCAGCTTCAGCAGCGCGCGGCTGTACCTGTGCACGGACGCACGCCGGGAGAAGGGCGATTTCGGCGACTTTGTGGATGCGGCCTTTTCCGGCGGCGTGGACATCATCCAGCTTCGCGACAAGTCCATCGAGGCGGCGGAGGAACTGGAACTCCTGGAAGTACTGAAAGCGGCGGCCCGGCGCCACGGCCGGCTGTGGGCAGTCAACGACCGTGCCGACGTCGCCCTGCTCTCCGAAGCCCCCGTTTTCCATGTCGGCCAGAAGGACCTCCCGCTGGCATCCGCACGCCTGCTCCTCGGGGACCGGGTCATAGGCCTGTCCACCCACAGCACCGGGCAGATCGACGCCGCCATCAGCGCTGGGACCGCCGCGAACAAGGCAGTCCCGCGGGCAGGCACCGAAGGCGCCCTTGCGGCCGGGCTTGATTATTTCTGCGTTGGACCCGTCTGGGCCACTCCCACCAAACCCGGCAGGGCCGCCGTCGGCCTGGACCTTGTGTCCTATGCAGCGCGCGCCGTCAGCGAAGCAGGCTCGGTCCCCGGCGCCCAGGCAGTCCCGTGGTTCGCCATCGGCGGCATTGACCTGGGCAACATTGAGCAGGTAGTCGAAGCTGGCGCCAGCAGGGTGGTGGTGGTCCGGGCCATCACCGAGGCCCCGGACCCCGCTGAGGCTGCGGCCGCCATGATTCAGGCATTGCAGGCCGGGGCGTCCTGAMNTALSNSTASNSSPISTAPDTAPAADITGSFSSARLYLCTDARREKGDFGDFVDAAFSGGVDIIQLRDKSIEAAEELELLEVLKAAARRHGRLWAVNDRADVALLSEAPVFHVGQKDLPLASARLLLGDRVIGLSTHSTGQIDAAISAGTAANKAVPRAGTEGALAAGLDYFCVGPVWATPTKPGRAAVGLDLVSYAARAVSEAGSVPGAQAVPWFAIGGIDLGNIEQVVEAGASRVVVVRAITEAPDPAEAAAAMIQALQAGASPGPT0008995_805DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008995-thiE-K00788NANA
D1-29_032861512rnrCOG0557Ribonuclease RGTGTCACATCATCGCCTGGCTCCCAACGTCCACGAGCTGACAAACGCCCTCGCGGAGGCCCTGAGCGCGCTGCGGACCGAGCTGGAATTGCCTGGGCCCTACCCCGAGGAAGCTGTGCGGGACGCGGAGGCGGCAGTGGCGGCACTGGAGCTGCCGGCAGTTGACCTGACCGACGTTGAGTTCCTGACCGTTGACCCGGAGTCGTCCACGGACCTTGACCAGGCACTGTTCATCGAGCGCGCCGGCGATGGCTACCGGGTCCTGTATGCGATTGCCGATGTCCCTGCCTTTGTGATCCCGGGCGGACCCCTGGATGCCGAAACCCGCCGTCGGGGGCAAACGTTCTACGCCCCGGACGGCCGGATTCCGCTGCACCCGGAGATCATCAGCGAACAGGCCGGCAGCCTCCTCGCGGGCCAACTGTGTGCGGCCTTCGTGTGGGACTTCGAGCTCGATGACGCGGCTAACGTGGTTTCGGTGGGTTTGCGCCGGGCCCGGATGCGCAGCCGCGCCAAGCTCAGCTACAAAGGCGCCCAGGCGGAGATCGACGCCGGAACGGCCTCCCCCGTCCTGCGGCTCCTCAAGGAAGTGGGTCTCAAGCGGGTTGAGTTGGAGCGCATGCGCGGCGGAGCGAGCCTGAACATGCCGGAGCAGGAAATCGTGCAGTTGCCCGACGGCGGCTACCGGATTGCCGCTGCGCCGCAGCTTCCCGTGGAGGATTGGAACGCCCAGATTTCCCTCATGACAGGAATGGCCGCCGCCGCTCTGATGCTCGAAGGGAAGGTGGGCATCCTGCGCACCATGGCGGCCCCGGATGAGCGCTCCCTGAACCATTTCAAACTCCAGACGGAAGCGTTGGGAAGGCCCTGGGATGGAGAAATCACCTACGGCGAATTCCTCCGCACCCTGGACCCTATGGAGCCGCGACAGCTTGCAATCCTGCATTCTGCGGGCATGCTCTTCCGCGGCGCCAGCTATACGGCGTTCGACGGCAACGTTCCGGAAGACGCCATCCAGGCCGCCATCGGAGCGGCGTATGCCCACACCACCGCTCCGCTGCGGCGGCTGATCGACCGCTTTGTCCTGGTGATCTGCGAAGCCCTGAGCAACGGAAGGCCTGTGCCGGACTGGGCACGGGAGGCACTGCCGTCCCTGCCGGTCATCATGGCGGGGTCCGACCAGTTGGCTTCGCGGATGGAGCGCATGGCGTTGGACACGGTGGAGGCCGCCCTGCTGGTCAACCACGTCGGCCAGGAATTCGATGCCATTGTGATCTCCGGATCCAAGCCCCGCAACGGCAACGACCGCAACGGCAACGACTCCGCCGGCAACGGTAACGGCCGCAACGGCAACGGAAAGAACGGGAACGGCGCCTCCGGGATCATCCAGATCGCAGAACCCGCTGTGACGGCCCGGTGCGGCGGCGACCTCGAATCGGGCACAAAAGTCAGGGTCCGGCTGATCTCCTCGGACATTGCCAGCAGGGAAGTCCACTTCGAACTGGTGGGGTAAMSHHRLAPNVHELTNALAEALSALRTELELPGPYPEEAVRDAEAAVAALELPAVDLTDVEFLTVDPESSTDLDQALFIERAGDGYRVLYAIADVPAFVIPGGPLDAETRRRGQTFYAPDGRIPLHPEIISEQAGSLLAGQLCAAFVWDFELDDAANVVSVGLRRARMRSRAKLSYKGAQAEIDAGTASPVLRLLKEVGLKRVELERMRGGASLNMPEQEIVQLPDGGYRIAAAPQLPVEDWNAQISLMTGMAAAALMLEGKVGILRTMAAPDERSLNHFKLQTEALGRPWDGEITYGEFLRTLDPMEPRQLAILHSAGMLFRGASYTAFDGNVPEDAIQAAIGAAYAHTTAPLRRLIDRFVLVICEALSNGRPVPDWAREALPSLPVIMAGSDQLASRMERMALDTVEAALLVNHVGQEFDAIVISGSKPRNGNDRNGNDSAGNGNGRNGNGKNGNGASGIIQIAEPAVTARCGGDLESGTKVRVRLISSDIASREVHFELVGNANANANANA
D1-29_032871692cshADEAD-box ATP-dependent RNA helicase CshAGTGAGTGAATTGCATACCCACCAGCTTCTGATCGACGATTCCGGCCTTGAGATCCTTGAGCCGGAAGAAACCATCATCTCCGATGAGAAGCCGCACGAAATCGAGGAGAAATCCTTCGCGGACTACAACGTCCGGGCGGACATCGTCGAGTCCCTGGCCGATGCCGGGATCACGCATCCGTTCCCCATCCAGGCCATGACACTTCCGGTTGCCCTCTCAGGCCACGACATCATCGGCCAGGCCAAGACAGGCACCGGCAAAACGCTGGGCTTCGGCATCCCCGCGCTGCAGCGCGTGGTGGGACCGGACGACGCCGGATTCGACAAGCTCGCCGTACCCGGCGCGCCGCAGGCCCTGGTCATCGTGCCCACCCGTGAGCTGGCCGTCCAGGTAGCCAATGACCTGCAGAATGCCTCGCGCAAGCGCAATGCCCGCATCACCACCATCTACGGCGGCCGCGCTTACGAGCCCCAGGTGGAAGCCCTCCAGAAGGGCGTTGAGATCGTGGTGGGAACTCCCGGCCGGCTCATCGACCTTTACAAGCAAAAGCACCTCAGCCTGAAGAACGTGAAAATCGTCATTCTTGACGAGGCCGATGAAATGCTGGACCTTGGGTTCCTCCCGGACGTGGAAACCCTTATCGCGGGCACCCCGCCGGTCCGCCAGACGCTGCTCTTTTCGGCCACCATGCCGGGCCCGGTCATCGCCATGGCACGCCGCTACATGACGCAGCCCACGCACATCCGCGCCGCCGATCCCGACGACGAGGGCCTCACCAAGCGTGACATCCGCCAGCTCATCTACCGTGCCCACAGCATGGACAAGATCGAGGTGGTTGCGCGCATCCTGCAGGCACGCGGCCGCGGCCGGACCATCATCTTCACCAAGACCAAACGGACGGCCGCCAAGGTTGCCGAGGAACTCGTGGACCGTGGCTTCGCCGCCGCCGCCATCCACGGGGACCTGGGCCAGGGCGCCCGCGAGCAGGCCCTCCGCGCCTTCCGTAACAACAAGGTGGATGTTCTGGTGGCCACTGATGTTGCTGCCCGCGGCATCGACGTGGACGACGTCACCCACGTCATCAACTACCAGTGTGTCGAAGACGAAAAGATCTACCTACACCGCGTCGGCCGGACCGGCCGTGCCGGAAACAAGGGCACCGCTGTCACCTTTGTGGACTGGGACGACATGCCCCGCTGGGGCCTGATCAACAAGGCCCTGGGCCTGAGCGTGCCGGAGCCGGTGGAAACCTACTCCTCCTCGCCGCACCTGTTTGAGGATCTGGACATCCCGGAAGGCACCAAGGGCCGGCTTCCCCGCAACAAGCGCACGCTGGCCGGGGTTGACGCCGAAGTCCTCGAGGACCTCGGCGAAACCGGCAAGAAGAACTCCCGCAGCAGCAGTGGACGGGACTCTGCCCGGGACAGCGCGAAGGACAGCAGCCGCGACCGCACACGGTCATCCAGCCGCCGCAGCGGGACTGAAACAGCCGGCCGCTCAGGTGAGCGCCGCCGTCGTACGTCAGATGCGGCGACAGCCGGCACGGGTCCCGCCGCTGAACCGGCGGCTTCCGCTCCGGCTGATGGAGACCAGTCCCGGACGCGCCGCAGCCGGACCCGCACCCGCCGCCGCAACGGCGAAGTGGTTGCCGGTGGCGACACCGCCGCCCAGCCGGGCAGCACCGAGGCCTAAMSELHTHQLLIDDSGLEILEPEETIISDEKPHEIEEKSFADYNVRADIVESLADAGITHPFPIQAMTLPVALSGHDIIGQAKTGTGKTLGFGIPALQRVVGPDDAGFDKLAVPGAPQALVIVPTRELAVQVANDLQNASRKRNARITTIYGGRAYEPQVEALQKGVEIVVGTPGRLIDLYKQKHLSLKNVKIVILDEADEMLDLGFLPDVETLIAGTPPVRQTLLFSATMPGPVIAMARRYMTQPTHIRAADPDDEGLTKRDIRQLIYRAHSMDKIEVVARILQARGRGRTIIFTKTKRTAAKVAEELVDRGFAAAAIHGDLGQGAREQALRAFRNNKVDVLVATDVAARGIDVDDVTHVINYQCVEDEKIYLHRVGRTGRAGNKGTAVTFVDWDDMPRWGLINKALGLSVPEPVETYSSSPHLFEDLDIPEGTKGRLPRNKRTLAGVDAEVLEDLGETGKKNSRSSSGRDSARDSAKDSSRDRTRSSSRRSGTETAGRSGERRRRTSDAATAGTGPAAEPAASAPADGDQSRTRRSRTRTRRRNGEVVAGGDTAAQPGSTEANANANANANA
D1-29_03288873rsrIMModification methylase RsrIATGACTGACATTGTCTGGGCGCCGGACGGCAGCAACCTGGTGGTTCACGCGGATAACGCGGATTTCCTCCCCTCGCTGCCGGACGGCGCCTTCACACTCATTTATGTGGACCCGCCGTTCAACACCGGCCGGGTCCAGCGGCGCCAGGAAACCAGGATGGTGGCCAACGCCGACGGCGCCGGAGACCGTGTGGGCTTCAAGGGACGCTCCTACGACACCATCAAGGGCGCCCTGCACCGGTACGACGACGCCTTCAGCGATTACTGGTCCTTCCTGGAACCCCGGCTCGTCGAGGCGTGGCGGCTGCTGGCCGACGACGGAACGCTGTACCTGCACCTTGATTACCGGGAAGTCCACTACGCCAAGGTGATGCTTGATGCCATCTTCGGCCGTGAGTGCTTCCTGAACGAGATCATCTGGGCCTACGACTACGGCGCCCGGGCCAAATTCCGCTGGCCCACCAAGCACGACAACATCCTTGTGTACGTCAAAAATCCGGTGAAGTACCACTTCGACAGTGCCGAAGTGGACCGCGAACCGTACATGGCACCGGGGCTTGTCACTCCCGCCAAACGTGAGCTCGGGAAGCTGCCCACCGACGTGTGGTGGCACACCATCGTCTCCCCCACCGGCAAGGAAAAAACCGGCTACCCCACGCAGAAGCCCGAGGGGCTCATCCGGCGTGTCGTGGCCGCCTCCAGCCGCCCGGGCGACTGGTGCCTGGACTTCTTTGCCGGTTCAGGAACCCTGGGTGCCGTCGCCGCGAAGCTGGACCGGAAGTTCGTGTGCGTGGACCAGAACCAGCCCGCCATCGACGTGATGGCCAAGCGGCTTGGCACGCACGCGACCCTCACGTCCTTCCCGCCCAACTAGMTDIVWAPDGSNLVVHADNADFLPSLPDGAFTLIYVDPPFNTGRVQRRQETRMVANADGAGDRVGFKGRSYDTIKGALHRYDDAFSDYWSFLEPRLVEAWRLLADDGTLYLHLDYREVHYAKVMLDAIFGRECFLNEIIWAYDYGARAKFRWPTKHDNILVYVKNPVKYHFDSAEVDREPYMAPGLVTPAKRELGKLPTDVWWHTIVSPTGKEKTGYPTQKPEGLIRRVVAASSRPGDWCLDFFAGSGTLGAVAAKLDRKFVCVDQNQPAIDVMAKRLGTHATLTSFPPNPGPT0027215_961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0027215-EC_2_1_1_72-K00571NANA
D1-29_03289849COG06133',5'-nucleoside bisphosphate phosphataseGTGAGGATTGACCTGCATACCCACTCCAATGTTTCTGACGGCACGGAAACGCCAGCCGATGTCATCGGCTCTGCTGCCCGCGCGGGCCTGGATGTGGTGGCACTGACGGACCACGATTCCACCGACGGCTGGGCGGAGGCCGCACGCGCCACTCTGGACACAGGAGTGGCCCTGGTGCCCGGCATGGAGGTCTCCTGCCGGACAGAGCAGGGCATCAGTGTGCACCTCCTGAGCTACCTTCATGATCCTGCCCACCCTGGCCTGCTGAAGGAGATCACCAAGGCCAAGGACGCCCGCCTCACCCGTGCCGAACGGATGGTCACCCTGCTGGCGGAGGACTACCCGCTGACATGGGACGATGTGATCCACCATGTGGCCCCGGGCGCCACCCTGGGACGCCCGCACATCGCCGACGCCCTGGTGGCTGCCGGTGTGGTGTCGGACCGGTCCGAGGCGTTCACCTCAATCCTGACCTCACACTCGCGCTACTTCGTCCAGCACTACGCGCCGGACCCGGCAGCCGCCGTCGAACTTGTCCGTGCCGCCGGCGGCGTCCCCGTTTTCGCCCATCCGGTGGCTTCGGCGCGTGGCCGGATTGTGGGGGAGCGGACCTACCGGGAAATGATCGACGCCGGGCTGGCGGGCCTGGAGATCGACCACCGCGACAACCCGGAGGAGGGCCGGGAGTTCCTTCGCGGGCTTGCGGCCAAGCATGGACTGCTGGTCACCGGATCCTCGGATTACCACGGGACCGGCAAGCCGAACCTGCTGGGTGAGAACCTCACTGCTCCCGAAGTGCTTGCCCGGATCGAGGAGCTGGCCACCGGCACCGTCGTCGTCCGCCCCTAAMRIDLHTHSNVSDGTETPADVIGSAARAGLDVVALTDHDSTDGWAEAARATLDTGVALVPGMEVSCRTEQGISVHLLSYLHDPAHPGLLKEITKAKDARLTRAERMVTLLAEDYPLTWDDVIHHVAPGATLGRPHIADALVAAGVVSDRSEAFTSILTSHSRYFVQHYAPDPAAAVELVRAAGGVPVFAHPVASARGRIVGERTYREMIDAGLAGLEIDHRDNPEEGREFLRGLAAKHGLLVTGSSDYHGTGKPNLLGENLTAPEVLARIEELATGTVVVRPNANANANANA
D1-29_032901593pepPIXaa-Pro aminopeptidase 1GTGAACGATGCCGAAAACACCCCAAACGCCGACAACACACCTTCCCAGCCCCTCGACGAGCGCGTGAACAACCGCTCGCAGCGGCCAAGTTCGGACGCCTTCAAGGCCTTTATGGCCAGCAACTGGGCGCCCTCCAGCGAAGAGCTTCCCGCACGCGACGACGTTGCCGGACAAGCAGCCCACCGGCGAAAGGCCATTTCGGACCAGTTCAAGGGCGAACGCCTGGTCATCCCCGCAGGTCCGCTGAAAGTGCGCTCCAACGACTGTGACTACCGCTTCCGGCCGCACTCCGGCTTCGCGCACCTCACCGGCCTGGGCCTGGACCATGAGCCCGATGCCGTCCTGATCCTGGAACCGGTAACTGAAGGAACGGGCGACGACGGCGGCCATCACCGCGCCACGCTCTACTTCCGCCCGTTGGCCGGGCGGGACACTGAACGCTTCTACGCCGACTCGCGGTCAGGCGAGTTCTGGATTGGCGCCCGCCCCACCCTTGCGGAGTTCGAAGCCCGCCTGGGCCTGGCCACCGCGCACATCGATCAGCTCGAAGCGGCCATCACCAAGAATGTGGGAGCCCCCGAGATTGGCGGCATCTCTATTCGCCTGGTCCGAAAAGTTGATGAGAACATCGACGCCCTGGTGGACACCGCCCGCTACAACACGGCCAAGGACCCGGAGAACCTGGACCTTGCCGTACTGGACGCCCTCGACGAGAAACTCACCGAAGCACTTTCCGAGCTCAGGCTCCTCAAGGATGAGTGGGAGATCGAGCAGATGAAGATCGCGGTGGCCGCCACCGTTGAGGGCTTCACCGAAGTGGTAAAGGCCCTCCCCCGTGCCCTGACTCACGCGCGTGGGGAACGGGTTGTGGAAGGCGCCTTTTTTGCCCGCGCCCGTGAAGTGGGCAACGAACTGGGCTACGACACCATCGCGGCCTCCGGCAACAACGCCACCGTGCTGCACTGGACCCGCAACACCGGGAAAATCAACGCCGGCGAACTGCTCCTGCTGGACGCCGGCGTGGAAGTTGACTCCCTGTACACCGCCGACATCACCCGGACGCTCCCTGCCAACGGCCTGTTCTCCGAGGTCCAGCGCAAAGTCTATGAAGCGGTTTTGGACGCGGCGGACGCCGGATTCGCTGCCGCCCAGCCCGGCGCCAAGTTCCGGGATATCCACACCGCCGCCACAACGGTGCTGGCCGAACGCCTTGCCGACTGGGGCATCCTCCCGGTCAGCGTGGGGGAAGCCATCAGCCCGGAAGGCCAGCAGCACCGGCGCTGGATGCCCCACGGCACCAGCCACCACCTTGGCTTGGACGTCCACGACTGTGCCCAGGCAAGGCGTGAGCTGTACCTGGACGGCGTGCTGACGGCGGGGATGGTGTTCACCATCGAACCAGGCCTCTACTTCAAGAACGAAGATCTCGCCATCCCGGAGGAATACCGCGGCATCGGCGTCCGGATCGAGGACGACATCCTGATGACAGCCGATGGCCCCGTCAACCTGAGCGCAGCACTGCCCCGCAAGGCGGCCGACGTCGAGTCCTGGATGGCCGGCATCTACCGCGAGGCCGACGCCGAGGCCTCCTAGMNDAENTPNADNTPSQPLDERVNNRSQRPSSDAFKAFMASNWAPSSEELPARDDVAGQAAHRRKAISDQFKGERLVIPAGPLKVRSNDCDYRFRPHSGFAHLTGLGLDHEPDAVLILEPVTEGTGDDGGHHRATLYFRPLAGRDTERFYADSRSGEFWIGARPTLAEFEARLGLATAHIDQLEAAITKNVGAPEIGGISIRLVRKVDENIDALVDTARYNTAKDPENLDLAVLDALDEKLTEALSELRLLKDEWEIEQMKIAVAATVEGFTEVVKALPRALTHARGERVVEGAFFARAREVGNELGYDTIAASGNNATVLHWTRNTGKINAGELLLLDAGVEVDSLYTADITRTLPANGLFSEVQRKVYEAVLDAADAGFAAAQPGAKFRDIHTAATTVLAERLADWGILPVSVGEAISPEGQQHRRWMPHGTSHHLGLDVHDCAQARRELYLDGVLTAGMVFTIEPGLYFKNEDLAIPEEYRGIGVRIEDDILMTADGPVNLSAALPRKAADVESWMAGIYREADAEASPGPT0006770_2683DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262NANA
D1-29_03291945hypothetical proteinATGCTGATGGGCAAGAATGGAGGTATGTCAAACATTTTTGGTGCTCCCAGGGCCGGCGGCCCCAACGGGGCGGACGAGGCCCGCACCGTCCCCACCGGTGACACCGTCGGTTCATACACCTCCTATCTGGATGCCCAGAAGGCGGTGGACTACCTCGCTGACCAGCAATTTCCGGTTCATATGGTGTCCATCGTTGGCAACGAACTGAAAATGGTGGAGCGGGTGACCGGCCGCCTCAGCTACCCGCGGGTGGCACTGTCCGGGGCACTCAGCGGCATGTGGTTCGGCCTGTTTGTCGGCGTGCTGTTGTCCTTCTTTGCGCCGTCCCCGGGTTACTTCTCCATCCTCACCTCTGTGCTGATGGGTGCTGCGTTCTTTATGCTCTTTGGCATTGTCACGTACGCGATGCAGCGGGGAAAGCGCGACTTCACGTCCACGAGCCAGGTGGTTGCCACCACCTACGATGTGGTGGTCTCCGTGGAAGCGGCCCACGAGGCACGCCGGCTGCTCCAGCAACTGCCGATGACCCGCACAGACGCTGCCGCGGGGGCCTATACCCAGCGCGACTACCAGAACCAGCCCTACAACCAGCCGGGGCAGGGTCCTGCCCGTCCTTCCGGCTGGAGTGACCCCTACGGCCAGCAAGGCTCAGGGCCATCCGGGCAGGGCGAACCCGCCGCGGCCCAGCCCGGCCAGCAGCCGGAGGGAGCGGCTCAGCAGGCTGCAGCACCGGTGGCAGCGGTACGGTATCCGGATCTGCCCGACGGCCGTCCGCAGTATGGGGTCCGCGTTTCAAGCAGTCCGGCTCCGGGTGGTGCACCCGTCACAGGCCAGTCGAACCAGGTCCAGGGCGCTCCGCGCCAAGACAGCCCTGCCGCTGACAGCGGAAGCCCGGACAAGACTCAGGCGGCCCCACCGAAGGACCGGGACGAACCCCAGCCCTAGMLMGKNGGMSNIFGAPRAGGPNGADEARTVPTGDTVGSYTSYLDAQKAVDYLADQQFPVHMVSIVGNELKMVERVTGRLSYPRVALSGALSGMWFGLFVGVLLSFFAPSPGYFSILTSVLMGAAFFMLFGIVTYAMQRGKRDFTSTSQVVATTYDVVVSVEAAHEARRLLQQLPMTRTDAAAGAYTQRDYQNQPYNQPGQGPARPSGWSDPYGQQGSGPSGQGEPAAAQPGQQPEGAAQQAAAPVAAVRYPDLPDGRPQYGVRVSSSPAPGGAPVTGQSNQVQGAPRQDSPAADSGSPDKTQAAPPKDRDEPQPNANANANANA
D1-29_032921284hypothetical proteinGTGAGCACAAACGTTACGCGCGTCTTCGTGGCGCGCCTTCTGGGTCTTGACGTCTTCGACCCGCTGGGCGACCGGCTGGGCCGGTTGCGTGATGTTGTGGTGCTCTCCCGCGGAAGCCGGGGCGCCCCACACGTGGTGGGTATCGTCGTCGAGGTTCCCGGGAAGAAGCGGGTCTTTGTACCCATGACGCGCATCACCTCGATCGACCAGACGCAGATCATCTGCACCGGCCTGGTCAACCTCCGCCGCTTTGAACAGCGCGGGGCCGAGACCCTGGTGGTCGCTGAAATGTTTGACCGCCGCGTTACCCTCCGTGACGGCAGCGGTGACGCCACAATCGAAGACATCGCCATGGACCAGCACCGTTCCGGCGACTGGTTCGTGAGCAAACTGTTTGTCCGCCGTGGCCATTCGCTGTCGCCCCTGAGCCGGCTCCGCCGCAACGAAACCCTGATCATCGACTGGGCAGACGCGCTCCAGGGCGCCCGGACAGAACCGCAGGCAGCCACCCAGTTCGTGGCCAACCACGAGGACCTCAAGCCCGCCGACTTCGCAGAAGCCCTCCAGGAGATGAGCGACAAACGCCGCTTTGAGGTGGCCAGTGAACTTCAGGATGAACGGCTCGCCGACGTCCTGCAGGAACTCCCCGAGGATGACCAGGTGGAAATCCTCTCCGCCCTGGACGTTCAACGGGCCGCCGACGTCCTGGAAGAAATGGATCCCGACGACGCCGCAGACCTCCTGGGCGAGCTTCCCTCCGCGCAGGCTGAGGAACTGCTGCAACTGATGGAGCCCGAAGGCGCCGAGGACGTCCGCCGACTCCTGGAATACGACGCCGACACCGCAGGCGGCCTCATGACGCCAGTTCCCGTGATCCTGCCCCCGGAAGCCACGGTCGCCGAGGCCCTGGCGCATGTCCGGCGTGAGGAACTCTCTCCCGCCCTCGCCTCCTCGATCTTTATCACCAGGCCACCGCTGGAGACCCCTACCGGCCGTTTCCTCGGTGTGGTCCACATCCAGCAACTGCTGCGGTTCCCCCCGTTTGAGCCGCTCGGGAACCTGGTGGACAAGAATCTTGAGCCACTGTCCGACCAAGCCCACATCAGTGAAGTGGCCCGGACGCTGGCAACCTACAACCTGAACTCCCTTCCGGTAGTCAATGAGGCCGGCCGGCTTGTGGGGGCGGTGACTGTTGATGACGTTTTGGATCATCTGTTGCCGGATGATTGGCGCGCCCACGATGGCGAAGCCCCGATAAGAAGGCTCGGAGGCCGCATTGGCTGAMSTNVTRVFVARLLGLDVFDPLGDRLGRLRDVVVLSRGSRGAPHVVGIVVEVPGKKRVFVPMTRITSIDQTQIICTGLVNLRRFEQRGAETLVVAEMFDRRVTLRDGSGDATIEDIAMDQHRSGDWFVSKLFVRRGHSLSPLSRLRRNETLIIDWADALQGARTEPQAATQFVANHEDLKPADFAEALQEMSDKRRFEVASELQDERLADVLQELPEDDQVEILSALDVQRAADVLEEMDPDDAADLLGELPSAQAEELLQLMEPEGAEDVRRLLEYDADTAGGLMTPVPVILPPEATVAEALAHVRREELSPALASSIFITRPPLETPTGRFLGVVHIQQLLRFPPFEPLGNLVDKNLEPLSDQAHISEVARTLATYNLNSLPVVNEAGRLVGAVTVDDVLDHLLPDDWRAHDGEAPIRRLGGRIGNANANANANA
D1-29_03293723hypothetical proteinTTGGCTGACAACAGCGCCCCTAAGAACCCCTCCCACCGGACCTCGTCCAAGGCCGCAGCCACAGGCAGCCTTGACACGCCTTTGAGCGGCCGCCAACGCATCCTGCCAAAGTTCTCACCGGATCCGGATGCCTTTGGCCACGCCACCGAAGGTTTCGCCCGCTTTATGGGTACACCGCAGTTCCTCGTCTACATGACGGTGTTCGTTGTCATCTGGCTGGCCTGGAACACCTGGGCGCCGATGGAATGGCAGTTCGATTCCCGGGCGCTTGGCTACACACTGCTGACCCTGATGCTCTCGCTGCAGGCGTCCTACGCCGCGCCTCTGCTGCTTCTTGCCCAGAACCGGCAGGACGACCGTGACCGCGTGTCACTCCAGCAGGACCGCCAGCGGGCAGAACGGAACCTGTCCGACACTGAGTACCTGACCCGCGAACTGGCCTCGCTCCGGATTGCGCTTCGCGAGGTTGCCACCCGCGACTACGTCAGGGCTGAGCTGCGCTCCCTGCTGGAGGACATGCTTGAAGCGCAGGAGGAACTGCGCACTCATGACCCCTCCGGAACCGGCAGCCATGAATCCCCGCGTGACAAGGTGAAGGAAAGGCTCAAGGAAAAGCGCGACCGGCAACGCAGCCCCCGAACGCAGCAGATCCCCCGGGTCAAACCCGGGCACTCCGTCAAGGACCCCGCCGTCCCCCCGAAGCCCCCGACCCCCGAAAGCTGAMADNSAPKNPSHRTSSKAAATGSLDTPLSGRQRILPKFSPDPDAFGHATEGFARFMGTPQFLVYMTVFVVIWLAWNTWAPMEWQFDSRALGYTLLTLMLSLQASYAAPLLLLAQNRQDDRDRVSLQQDRQRAERNLSDTEYLTRELASLRIALREVATRDYVRAELRSLLEDMLEAQEELRTHDPSGTGSHESPRDKVKERLKEKRDRQRSPRTQQIPRVKPGHSVKDPAVPPKPPTPESNANANANANA
D1-29_032941128mrpCOG0489Iron-sulfur cluster carrier proteinATGAATGACTCCCTGGACCAGGCAGTCCATGCTGCGCTGGCCACCGTTATCGATCCTGAGCTCCGCCGTCCCATCACCGAGCTGGGCATGGTGGAATCCGTGGAAATCTCCGACGACGGCCGCGTCCGGCTGGCAGTGCTCCTCACCATCGCCGGGTGTCCCCTGCGTGAAACCATCACCGCCGACTCGGAAGCGGCCTTATCCGCAGTCCATGGGGTCACCGCGGTGGAGGTTGAACTCAAGGTGATGAACCAATCCCAGCGGGACGCCCTGAAAGAGCAGCTCCGCGGCGCCGGCGCCCAGCGCGGAATTCCCTTTAATCAGCCTGGCTCACTGACCAAGGTCTTCGCAGTCGCCAGCGGCAAGGGCGGCGTCGGGAAGTCCTCAGTGACCGTTAATCTTGCGTGCTCGCTGGCCGCACAGGGGCTGCGGGTGGGCATTGTTGACGCTGACGTCTATGGCTTCTCTGTCCCGGCACTGATGGGCATCACCCAGGCCCCCACCCGGGTGGACGACATGATCCTGCCTCCCGTTGCTTACGGCGTAAAAGTCATCTCCATCGGCATGTTCGTGTCGGCCAACCAGCCGGTGGCCTGGCGGGGACCCATGCTGCACCGCGCCCTGGAGCAGTTCCTGACCGACGTGTACTTTGGCGACCTTGACGCCCTGTTCCTTGACCTGCCGCCAGGAACGGGGGATATTGCCATCTCGGTGGCCCAGCTGCTGCCCAAGGCAGAGATCCTGGTAGTGACCACCCCACAGGCCGCGGCAACCGACGTCGCGGAACGGGCCGGGGCGATTGCCACCCAGACGGGCCAGTCGGTGGCGGGTGTTATCGAAAACATGTCCTACCTGGAAATGCCCGACGGCGGGCGGATGGAGCTTTTCGGAAGCGGCGGCGGGGCGGTGCTGGCCCACCGCCTGACAACGACAGTAGGCACTGACGTGCCTCTGTTGGGGCAGATTCCCTTGGACATCCTGCTGCGTGAGGGCGGCGACGCCGGTTCCCCGATTGTCCTTGGCCGGCCGGAAACACCGGCAGCGGTTGCACTCACGGCGATTGCCGGTAAATTGGCAGCCAAACCACGGGGCCTGACGGAGATGAAGCTGGGGCTGCAGCCGCGCTGAMNDSLDQAVHAALATVIDPELRRPITELGMVESVEISDDGRVRLAVLLTIAGCPLRETITADSEAALSAVHGVTAVEVELKVMNQSQRDALKEQLRGAGAQRGIPFNQPGSLTKVFAVASGKGGVGKSSVTVNLACSLAAQGLRVGIVDADVYGFSVPALMGITQAPTRVDDMILPPVAYGVKVISIGMFVSANQPVAWRGPMLHRALEQFLTDVYFGDLDALFLDLPPGTGDIAISVAQLLPKAEILVVTTPQAAATDVAERAGAIATQTGQSVAGVIENMSYLEMPDGGRMELFGSGGGAVLAHRLTTTVGTDVPLLGQIPLDILLREGGDAGSPIVLGRPETPAAVALTAIAGKLAAKPRGLTEMKLGLQPRPGPT0013215_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
D1-29_03295414tatBSec-independent protein translocase protein TatBGTGTTTGGAATCAACGGCCCGGAATTCTTCCTTCTGCTGATCATCGGCATCATGGTGATCGGCCCCAAACGCCTGCCCGAATACACCCAGAAACTGGCGAATCTGGTGAAGGAAGTCCGGCGCATGGCTTCTGGCGCGCGCGAGCAGATCAAGGAGGAAGTGGGGATCGATATCGACGACGTCGATTGGAAGAAATACGATCCCCGCCAGTACGATCCCCGACGCATCATCAAGGAAGCGCTGCTCGACGACGACTCCAAGCCTGTCAGCCCCGGTGCTCCTGCCGCCGTCGCCGCCGCTTCAGGTGCCGCGGCGGTTGCCGCCGGTGCGTCTGCCGGTTCGTCCCGGCCCGTGCGGACCGTCGAACGCCTTCCGGCCGGCGAAGTGGCACCCTTCGATACCGAAGCGACGTAAMFGINGPEFFLLLIIGIMVIGPKRLPEYTQKLANLVKEVRRMASGAREQIKEEVGIDIDDVDWKKYDPRQYDPRRIIKEALLDDDSKPVSPGAPAAVAAASGAAAVAAGASAGSSRPVRTVERLPAGEVAPFDTEATPGPT0014360_2107DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0014360-tatB-K03117NANA
D1-29_03296882hypothetical proteinATGTCGCCCCAGAGCCTCTTTGGCCGCCGGCATCACCGCGGCGGCAACCACGTGAATTCATGCGCCCAATGTGCCGCCGCTGTGCACCGGGAACGTCAATACATTGAACGGTTGCGTCAGTCAGCGGTACCTCCGGCAAGCCAAGACCTCACGGCGCGGTTGCTGGCACAAACCCAGCTCTTGGCCGCAGCCCCTCCGGAGCCCCCGCCGGGGCAGCACCTGGCAACAAAAGTCCTTGCCTTCACCGCAGGCGGAACAGCCGCGGCAGCCGGTGTGCTGGCTGTCAGCGCCTTTGCCATGGCAGGAGACACCTTCCCGGCGGCCGGAGACGCCCTGGAGGGCAGCCTGGCGCAGCACACTGCCCAGCTTCCTGCCGACGGCCGCCAGCTGAGTGAGGCGCAATTGGCGCAGCTTCGTACCGAAGGCTGGGTCTGTCCTGAGCTCGAGTCGCTCGGTTTCCACCTCCAGTCCGCAAGGGCAACCACGCTGGACGGCCACCCGGCCGTGGAGATACAGCTCTGGGACGGCAAGCATTACGCCCGGATAGTTGAACAGCATGATGCAGCTGAACAGTCGGGAGCGGTCAGCCCGCACACTGTGGCTGACCACGATCCGGCTCAGCTGCGGGCCGGCGGTACTTCGCCCTGGACGTTTACATACCAGACCCCGGCAGGCAGATTCACCTATGAGTCCGACCTCCCCGCGGACCAGGCGGACGACGCCCTCCCCGTGCTGCAGAGGCTCAGCGCCGCCGCTGCGGCGGGGATCAATGTCCGGGCTGCGCGGGAACCTGCGACCGCCGATGGCGGCAGCCGGGACGAATCCATCAGCGACAGGCTGCAGCGGGGATTCCGCAAAATAATGGAAATGCTCACGCCTTGAMSPQSLFGRRHHRGGNHVNSCAQCAAAVHRERQYIERLRQSAVPPASQDLTARLLAQTQLLAAAPPEPPPGQHLATKVLAFTAGGTAAAAGVLAVSAFAMAGDTFPAAGDALEGSLAQHTAQLPADGRQLSEAQLAQLRTEGWVCPELESLGFHLQSARATTLDGHPAVEIQLWDGKHYARIVEQHDAAEQSGAVSPHTVADHDPAQLRAGGTSPWTFTYQTPAGRFTYESDLPADQADDALPVLQRLSAAAAAGINVRAAREPATADGGSRDESISDRLQRGFRKIMEMLTPNANANANANA
D1-29_03297618sigECOG1595ECF RNA polymerase sigma factor SigEATGTCATCATCAGTTGTGGCACCTGTCCCTGCAGTAGAAGATTCCACGGTTGAATGGGTCAGGCCCACGTGGGAAGAGGTCGTGTCCAACCACTCGGCCAAGGTCTACCGGCTTGCCTACCGTCTCACGGGTAACAAGTTCGACGCTGAGGACCTCACGCAGGAAGTCTTTGTTCGCGTTTTCCGGTCGCTTGAGAACTTTAAGCCGGGGACCCTGGACGGCTGGCTGCACCGGATCACCACCAACCTGTTCCTGGACCAGGCCCGGCGCAAGAGCCGGATCCGGTTTGATGCGCTGGCAGAGGATGCAGAGTCCCGGATCCCGGGACGGGAACCCGGCCCCGAGCAAAGCTTTGAGTTCAACAACCTTGATCTCGACGTCCAGGCTGCCCTTGAGGAACTTCCGCCGGACTTCCGGGCAGCCGTGGTGCTGTGTGACCTGGAGGGCCTGTCCTACGATGAGGTGGCAGCCGCCTTAGGCGTCAAGCTGGGAACGGTGAGGTCACGCATCCATCGCGGGCGGACCATGCTGCGCGAAAAGCTTGCCCATCGGGATCCCCGGCCCCAGCAGTCGCGGAAACCAAAGCTTTCCATGCCCCGCATCGCCGGCATCCTCTGAMSSSVVAPVPAVEDSTVEWVRPTWEEVVSNHSAKVYRLAYRLTGNKFDAEDLTQEVFVRVFRSLENFKPGTLDGWLHRITTNLFLDQARRKSRIRFDALAEDAESRIPGREPGPEQSFEFNNLDLDVQAALEELPPDFRAAVVLCDLEGLSYDEVAAALGVKLGTVRSRIHRGRTMLREKLAHRDPRPQQSRKPKLSMPRIAGILPGPT0014960_4263DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_03298633COG4122Putative O-methyltransferaseATGAGCGCCGACAAGTCCACGAGCTGGTCCTATGCAGAAGATCTGCCCGCAGAGGATGAAGTTATGCTGCGGGCGCGCGAGCGCTCCTTCGAGCTCGGCGTGACGCCTGTCGGTCCCGGCGTCGGTGCAGTCCTGACCGTCCTGGCGGCGGCATCGAAGGCCCAGACCGCCGTCGAAATCGGAACAGGAGCGGGGGTCTCCGGCGTCTGCATCCTTCGCGGCCTGGGCACGCAGGCTGTACTGACCACCATCGACGTGGACGTCGAGCACCTCAAGGCCGCCCGCGAAGCGTTTTCAGAGGCAGGAAGTCCGGCCAACCGCACCCGGACCATTTCCGGCCGGGCCGGCGATGTCCTGCCCCGCCTCACGGACGCGGCCTATGACCTGGTGTTCATCGATGCCGACAAGCCTGGTTTGCCTGGCTACGTGGAACAGGCCATCCGGCTCCTCAAGGCCGGCGGCCTGCTCATCATCAACGACGCCCTGGACAAGGACCGGGTGGCCAACCCTGCGGACAGGGAAGCCAGTACGGTGGTGCTCCGCCAGGTCGGCAAGACCATCCGCGACGACGACCGGCTGGCCTCAGCCATGCTTCCCACCGGTGACGGCCTCCTGGTAGCCGTCAAGAAATAGMSADKSTSWSYAEDLPAEDEVMLRARERSFELGVTPVGPGVGAVLTVLAAASKAQTAVEIGTGAGVSGVCILRGLGTQAVLTTIDVDVEHLKAAREAFSEAGSPANRTRTISGRAGDVLPRLTDAAYDLVFIDADKPGLPGYVEQAIRLLKAGGLLIINDALDKDRVANPADREASTVVLRQVGKTIRDDDRLASAMLPTGDGLLVAVKKNANANANANA
D1-29_03299168hypothetical proteinATGGCGGCTATGAAACCACGCACCGGCGACGGCCCTATGGAAGTCACCAAAGAGGGCCGCAGCCTGATCATGCGTGTGCCGCTCGAAGGCGGCGGACGGCTTGTGGTCGAACTCAATGCTGCGGAGGCGGCCAACCTCAAGGAATGCCTCGTCGGCGTTACCGAATAAMAAMKPRTGDGPMEVTKEGRSLIMRVPLEGGGRLVVELNAAEAANLKECLVGVTENANANANANA
D1-29_033001263hypothetical proteinTTGAGTGCAGGCACGGGTACCCGGGCGGGCCTGACAACAAGGATTGGCCAGGCGGCGGGGCGCGCAGGCGATGCATTCCGCGGATGGCCCTGGTGGCTGCAGGTTATTGCGCTCTATTGCGGCTCACGGCTGGCGGGCGCGTTCATCTTTATGGCGGCGGCCCTGCACCAGGGGCCAAACCCCTGGTTCCCGGCCAAGCCCGACTACTGGAACTTCATCAACATCTGGGACGCCCGCTGGTACGGCGAAATCGTCACCAATGGCTACCCCTCCGTGCTTCCCACTGATGACACCGGCAACGTGCAGGAGAACGCCTGGGCGTTCTATCCCTTGTTTCCCGCCTTGGCGCGTGGACTCGGGGCAATAACAGGCCTCAACCCCGCAGCTTCGCTCACCCTGGTTGCCATGCTGTCCGGTGTGGGGGCGGCCCTGGTCACCTACGCCCTCTTTAGGTACAAAGCTGCGCACTCCACTGCACTGTGGGGTGTGGTCTTCTTCGCGACTTTTCCTGTTTCGGCGATTCTCCAGGTTCCGTACGCGGAGCCTCTGACCCTCCTGCTCCTGGCGGCAGCCTTGCTGCTGGTGATCCGCCGCCGCTACCTTTGGGCGATTCCGGTGGTTCTGCTGATGTGCCTTTCCCGGCCTGTTGGTGTTCCGTTTGCCGCCATGGTGGGACTGCTTCTCCTTTACCGGCTGATCCAACGCTTCCGCCGGGCCGCCAGCATGGCAAGCTCTCCCGGTAGCCACACGCCAGGAGAGCTTGCCCGCCTGGCAGCCCTGGCAGCCGTCAGCGGCGCCTCCGCCCTCATCTGGCCGGCTGCGGCCTGGGCAACCACCGGAGACATTCAGGCGTACACCAAAACGGAGACCGTCTGGAGGGGGCATGACCTGGTGCCGTTCAAGCCATGGTTCGACACCGGCATCCAACTCTTTGGTCCAGTACTCGGAGTGATGGCCCCGTTCATCTTCGCCGGCCTTTTTGCGCTGCTGCTGTTCTCGCCGCCGGTGGTGCAGCTTGGCGTTGAGCTTCGTCTGTGGTGCGCCTGCTACATGGGCTATCTCCTGATCTTCCTGCACCCGCAGACCAGCACGTTCCGTATGCTGCTCCCGCTCTTTCCGCTGGCGCTCAGCGCCGCACTCCTGTCCCGGTCACGGGCCTATCGCGGGACAGTTCTGGTGATGTTTGTCCTGCTCCAGATCGTCTGGGTCGTCTGGCTCTGGGCCTGGGCCCAGCTGCCCGGCGGAGGGGATTACCCACCGTAAMSAGTGTRAGLTTRIGQAAGRAGDAFRGWPWWLQVIALYCGSRLAGAFIFMAAALHQGPNPWFPAKPDYWNFINIWDARWYGEIVTNGYPSVLPTDDTGNVQENAWAFYPLFPALARGLGAITGLNPAASLTLVAMLSGVGAALVTYALFRYKAAHSTALWGVVFFATFPVSAILQVPYAEPLTLLLLAAALLLVIRRRYLWAIPVVLLMCLSRPVGVPFAAMVGLLLLYRLIQRFRRAASMASSPGSHTPGELARLAALAAVSGASALIWPAAAWATTGDIQAYTKTETVWRGHDLVPFKPWFDTGIQLFGPVLGVMAPFIFAGLFALLLFSPPVVQLGVELRLWCACYMGYLLIFLHPQTSTFRMLLPLFPLALSAALLSRSRAYRGTVLVMFVLLQIVWVVWLWAWAQLPGGGDYPPNANANANANA
D1-29_03301510hypothetical proteinATGGGTGATGTGAGCTATTTTCTGGTTTTTCTTGCCATCCTGCTGATCGGTGTGGCCGCCTGGGCCGGGGCCGGTGGCAAGTCCGGCACTTTGTTCAGGCGCAGCGGGACCGGGACGGGTGGAAGTACCGGGCTGCCTGACAAAGAGTTTTCTGCCGCTGGACTTCTCGATGGAGGGTTCGAACAGCCGGTGGCGAACCTTCCGCCGGTGCTGTTGCCGGCAGAAGCAAGCCCGGCCGACGTCGACAAGGTTCGGTTTTCCCTTGGCCTGCGGGGCTACCGCATGGACCAGGTGGACCAGGTGCTGGACGAGTTGAGGGACCAGCTGGCCGCCAAGGATGCGGAACTGGAACGGCTCCGGATGCGGCTGCTCGAGGCCGAGCAGTCCCAGCAGGCCTCCACGGGGACGCAGGCAGCTGATAAGGCCGGAACCGTGGCGGTGGAAGCTCAGCAGGATCGGCCAACAACCACGTCCCGGCCTGAGCGGGAAAAGGCTGAGGGCACACTTTGAMGDVSYFLVFLAILLIGVAAWAGAGGKSGTLFRRSGTGTGGSTGLPDKEFSAAGLLDGGFEQPVANLPPVLLPAEASPADVDKVRFSLGLRGYRMDQVDQVLDELRDQLAAKDAELERLRMRLLEAEQSQQASTGTQAADKAGTVAVEAQQDRPTTTSRPEREKAEGTLNANANANANA
D1-29_03302786hypothetical proteinATGAGCATCAACGCAGACCCGGCCAAAACCGCCCAGCCACGCCGCAAAGGGCCCCTTGAACTTCGCCGCAAACAGGCAGCGGTGGAAATGTCGGACCAGCATTTGCTGGACAGCAAGGGTCCCGGGCAGTTCGTCCATACGGATCCCTGGCGCGTGATGCGGATCCAGAGCGAATTCGTTGAAGGATTCGGGGCGCTCGCGGACCTGGGACCGGCGGTCAGCGTTTTCGGTTCAGCAAGAACCAAACCCGGCAGCCCGTACTACGAAATGGGTGTCGAGGTGGGCCGGAAACTGGCAGCTGCCGGCGTAGCCGTGATCACGGGCGGCGGTCCGGGTTCCATGGAGGCAGCCAACAGGGGCACCGTGGAAGGCAACGGCGTATCTGTGGGCCTGGGCATTGAATTGCCCTTCGAGCAGGGGCTCAACCAATGGGTGGACCTGGGCATCAACTTCCGGTACTTTTTCGCCCGCAAGACCATGTTCGTCAAATACGCCCAAGGGTTCATCGTCCTCCCCGGAGGCCTGGGCACGCTGGACGAACTCTTTGAAGCCATGGTGCTCGTCCAGACCCGGAAAGTGACCTCGTTCCCGATTGTCCTCCTCGGCGTCGCATTTTGGGGGCCGATGATCGAGTGGATCAGGGGCACCCTGGTGGCCGAGGGAATGGTTTCCGAGAAGGACCTGGACCTGATCCAGGTCGTTGATGATCCGGCCGAGGCAGTGGACCTGGTGTTGCACGGCACCGTCATCGCGCCGTCAACCAACGGGGAGCAGCGGCCCGAATAAMSINADPAKTAQPRRKGPLELRRKQAAVEMSDQHLLDSKGPGQFVHTDPWRVMRIQSEFVEGFGALADLGPAVSVFGSARTKPGSPYYEMGVEVGRKLAAAGVAVITGGGPGSMEAANRGTVEGNGVSVGLGIELPFEQGLNQWVDLGINFRYFFARKTMFVKYAQGFIVLPGGLGTLDELFEAMVLVQTRKVTSFPIVLLGVAFWGPMIEWIRGTLVAEGMVSEKDLDLIQVVDDPAEAVDLVLHGTVIAPSTNGEQRPENANANANANA
D1-29_03303756glnQ_3Glutamine transport ATP-binding protein GlnQATGACTACTCATGTGCCCGGCGATGCGCTCGTCTCCCTGAATGGTGTCAACAAACATTACGGTCAGCTTCACGTGTTGAAGGACATCGACCTCCACGTCCGCAAGGGCGAAGTGGTTGTTGTTATTGGCCCTTCCGGTTCGGGCAAGTCGACTCTGTGCCGCGCCATCAACCGCCTCGAAACGATTGAAGGCGGAACCATCAGTATTGATGGAAAAGTCCTGCCGGAGGAAGGAAAGGAACTCGCCCGCCTCCGGGCCGACGTCGGCATGGTGTTCCAGTCGTTCAACCTGTTTGCCCATAAGACCATCCTGGAAAACGTGACCCTAGGCCCTATCAAGGTCAAGGGTGTTCCCAAGGCGCAGGCTGACAAGGAAGCCATGGCTCTCCTTGAACGGGTGGGCGTAGGCCACCAGGCCCCCAAGCTTCCCGCCCAGCTTTCCGGCGGACAGCAGCAGCGTGTTGCCATTGCCCGGGCACTGGCCATGAAGCCGAAGGTCATGCTTTTTGACGAGCCCACCTCCGCCCTTGACCCGGAAATGATCAATGAAGTGCTTGACGTCATGATCCAGCTGGCCAAGGAGGGCATGACCATGATTGTGGTCACCCACGAGATGGGCTTCGCCCGCAAGGCCGCTGACCGCGTGGTGTTTATGGCAGACGGCCAGATCGTCGAGGACGCAACGCCCGAAGAGTTCTTCACCAATCCCCAGAGCAGCCGGGCCAAGGACTTCCTGTCCAAGCTTCTTACGCACTGAMTTHVPGDALVSLNGVNKHYGQLHVLKDIDLHVRKGEVVVVIGPSGSGKSTLCRAINRLETIEGGTISIDGKVLPEEGKELARLRADVGMVFQSFNLFAHKTILENVTLGPIKVKGVPKAQADKEAMALLERVGVGHQAPKLPAQLSGGQQQRVAIARALAMKPKVMLFDEPTSALDPEMINEVLDVMIQLAKEGMTMIVVTHEMGFARKAADRVVFMADGQIVEDATPEEFFTNPQSSRAKDFLSKLLTHPGPT0000785_350DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000785-gluA-K10008NANA
D1-29_03304885glnHCOG0834ABC transporter glutamine-binding protein GlnHATGAAGGCATTTTTGACCCGGAGGAAATCCCTCCTGGTAGCAGCATCCGCAGCCCTGGCGCTGTCACTGAGCGCATGCGGCGGCGGTACCGGCACCACCAGCGACCCCACCGTTGCCGAGACTCCGACTTTCGCGGCAGGGAGCACGATGGAAAAGCTCTCCAAGGCCGGAACCATCAAGATCGGCACCAAGTACGACCAGCCGCTGTTTGGCCAGGTGGGCCTGGACGGAAAGCCCATCGGCTTTGACGTCGAGATCGGAAAGCTGATCGCTGCAAAGCTCGGAATTGCCGCCGACAAGATTGAATGGTCCGAAACAGTATCAGCCAACCGCGAACCGTTTATCCAGCAGGGCCGCGTTGACCTGGTCATTGCCACGTACACCATCAATGACAGGCGCAAGGAAGTCGTCAGCTTCGCCGGCCCGTACTACGAAGCCGGCCAGGCCCTGATGGTCAACAAGGACAACGACTCCATCACAAAGCCGGAGGACGTCAAGGGCAAGAAGGTTTGCTCGGTGACCGGCTCCACCCCGGCTGCCACCATTGTTGAGAAGTATGGAGCAGAGCTTGTTCCGGCCGCCACCTACTCAGCTTGCCTGGAGCCCCTCCGCAACAAGCAGGTCGAGGCCATCACCACTGACAACGTGATCCTGGCCGGGTTTGTGGACAAGGAGCCCGAGGCGTTCAAGCTTGCCTCGGATGAGACGTTCACCAAGGAGCCCTACGGCATTGGCCTGAAGAAGGAAGACACCGAGTTCCGCAACTGGATCAACGACCAGCTGGAGGAATTCGAAAAGGACGGATCCTACAAGAAGGCCTGGGAAGCAACTGCCGGCACGGTCATCAAGACTGCCCCGGAGCTCCCTGAGATCGACCGCTACTAAMKAFLTRRKSLLVAASAALALSLSACGGGTGTTSDPTVAETPTFAAGSTMEKLSKAGTIKIGTKYDQPLFGQVGLDGKPIGFDVEIGKLIAAKLGIAADKIEWSETVSANREPFIQQGRVDLVIATYTINDRRKEVVSFAGPYYEAGQALMVNKDNDSITKPEDVKGKKVCSVTGSTPAATIVEKYGAELVPAATYSACLEPLRNKQVEAITTDNVILAGFVDKEPEAFKLASDETFTKEPYGIGLKKEDTEFRNWINDQLEEFEKDGSYKKAWEATAGTVIKTAPELPEIDRYPGPT0000770_293DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000770-gluB-K10005NANA
D1-29_03305651glnMCOG0765putative glutamine ABC transporter permease protein GlnMATGGACGCTATTCTCGAAAACCTGCCGCTTTACTGGGAGGGCCTTCTCCGGACCCTGTTCCTGTCTACTGTGTCCGGGGTGATCGCCCTCGTGTTGGGGACGTTGCTGGCCGCAGCCAGGGTTTCTCCTGTTGCCGCCCTGCGCGGCTTCAGCATGACTTATGTTGAAGTCCTCCGAAACACCCCCCTGACCATTGCCTTTTTCTTTGCCGCTGTAGTGCTCCCCCGTCTTGGGGTAACGTTCGAGCAATTTGAAGTGGCAGCAATCATTGCCCTCAGTGCCTACACCGCAGCCTTCATCGCTGAAGCTGTCCGCTCCGGTGTTAACAGCGTTCCCGTTGGGCAGGCCGAGGCTGCCCGCAGCATCGGAATGAAGTTCAGCCAGGTGCTGTCCCTCATCATCCTGCCGCAGGCACTTCGCACCGTCATTCCACCATTGATCAACATCCTGATCGCCCTCGTAAAAAACTCGTCCGTCGCCGGTGCCTTCTTTGTGCTGGAGCTGTTCGGCTACGGCAGGCAGCTTGCCAACACCTATGGTGACCAGGTGCTGGCCGTACTGCTCGGCGTTGCGTTCTTCTACCTCCTGCTTACCGTTCCGCTCGGTATCCTGGCCAGCACCGTCGAAAAAAAGGTGGCGATTTCCCGATGAMDAILENLPLYWEGLLRTLFLSTVSGVIALVLGTLLAAARVSPVAALRGFSMTYVEVLRNTPLTIAFFFAAVVLPRLGVTFEQFEVAAIIALSAYTAAFIAEAVRSGVNSVPVGQAEAARSIGMKFSQVLSLIILPQALRTVIPPLINILIALVKNSSVAGAFFVLELFGYGRQLANTYGDQVLAVLLGVAFFYLLLTVPLGILASTVEKKVAISRPGPT0000775_461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000775-gluC-K10006NANA
D1-29_03306840hypothetical proteinATGAGCTCAGTTCTTTATGACGTCCCGGGCCCCAAGGCACGCAGGGTTTCCCTCATTGGGTCGGTAGTGGGCTCCCTGCTGATCCTTGGCCTGCTCGCCTTGATCATCACCACCCTCGCCCAGCAAGGGATCTTCGAAGGCCGGCGTTGGGCAATTTTCACCCGGGCCGATGTCTGGATGTTGCTCGGGAACGGCATCGGAGCAACTCTTAGCGCCGCTGCCATCGCAGCGATCATCGCCTTCCCGCTGGGTCTGATGCTCTGCCTCCTGCGGATCTCGGACGCCGCTGCTGTCCGCATCCCCACACGGGTTGTGCTGGAGTTCCTGCGCGGTATGCCCGTTGTCCTGATGATGTTCTTCGTTTTGCTGGTCTTTGGCACCAACCCGTTCATCGCTGTAGTGGCCGGCCTGGTCCTCTACAACGCGGCCGTCTTCTCGGAGATCATCCGTGCCGGCATTCAGTCACTGCCGAGGGGCCAGCGTGAGGCGGGCCTGACCATTGGACTGACCAGCTTCCAGTCCCGCATGCTCATCGAACTGCCGCAGGCTATCCGCCGGATGATGCCATCGTTGGTTGCCCAGTTGGTGGTGCTCCTGAAGGACACGTCCCTGGGTTACATCGTGGCTTACGGCGAGCTGCTCCGGGCTGTGCAGGTCATGGCGGACTTCCTGGGAACGGCGTTCCTGTTCCCGATCTTCTTCGTGGCAGCAGCCATCTACATCGCGATCAACATCTGCGTTTCACGGATCGCCGTGTGGATCGAACACCGTGGCACCAAGAAGGCAGCCGGCGGCGTGGCAAAGGCTGAGCCTGAGCCCATCGAAGCCGCAGTTCCGTAGMSSVLYDVPGPKARRVSLIGSVVGSLLILGLLALIITTLAQQGIFEGRRWAIFTRADVWMLLGNGIGATLSAAAIAAIIAFPLGLMLCLLRISDAAAVRIPTRVVLEFLRGMPVVLMMFFVLLVFGTNPFIAVVAGLVLYNAAVFSEIIRAGIQSLPRGQREAGLTIGLTSFQSRMLIELPQAIRRMMPSLVAQLVVLLKDTSLGYIVAYGELLRAVQVMADFLGTAFLFPIFFVAAAIYIAINICVSRIAVWIEHRGTKKAAGGVAKAEPEPIEAAVPPGPT0000780_618DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000780-gluD-K10007NANA
D1-29_033071140dapE_3COG0624Putative succinyl-diaminopimelate desuccinylase DapEATGGTGACTGCTGAAACCGCCTCTGAGCCCGCCACCAAGCCCCTGGACCTCCGGCAGGATGTTGCGCTGCTGACCGCAGCCGTAATGGACATCAACAGTGTGTCTGGAAACGAGACTGAGCTGGCCGACGCCGTCGAAACTGCACTGCGGGGCATCCCCCAACTGCACGTGGTGCGTGATGGTGATTCGCTGATCGCGCGGACGGAGCTGGGCAGGACCGAACGGGTCATCCTTGCCGGCCACCTGGACACGGTGCCCTTGCCGGTCACATTCGGGGCCCGGGGCACGGTTCCCTCCACCTGGGACTCCGGCATTCCCGGCGAGGGCGTCCTGTACGGACGTGGGGCCACCGACATGAAGGGCGGTGTTGCGGTGCAGTTGGCGCTGGCTGCCACCATGTTCGACGCCGGGGCGGAACCGAAACGCGATGTCACCTTTGTTTTTTATGACCACGAGGAAGTGGAAGCGGTCAAGAGCGGGCTGGGCCGCCTGGTCCGCAACCACGGCGCGCTGCTGAACGGCGACTTCGCCATTCTGTTGGAGCCCACCGACGGCACAGTGGAGGGCGGGTGTAACGGCACCATGCGGCTGGAAGCAACCACCATCGGCGAGGCCGCACATTCTGCCCGGGCCTGGATGGGAAGCAATGCGATCCATGCAGCGGCGCCCATCCTTGCCCGGTTGGCTGCATACCAGCCGGCCACCGTCAACGTTGACGGGCTCGACTACCGTGAAAGCCTTAATGCGGTGAAGATTCATGGCGGCACGGCGGGCAACGTGATTCCGGACCGCTGCGTTGTGGTGATCAACTACCGCTTCGCCCCGGACAAATCGCCGGAGCAGGCTGAAGCCCATGTACGTGCCCTCCTCCAAGGTTTCGACGTGGTCCGGACGGACAGTGCCGCAGGCGCCCGTCCCGGGCTGAACCATCCGGCAGCTGCATCCTTCGTGGCCGCGGTTGGAGCCGAGCCGAAACCGAAATACGGCTGGACCGACGTCGCGCGGTTCAGTGAACTGGGCATTCCCGCGGTGAACTTCGGTCCAGGTGACCCGCTGCTGGCCCACAAGGACAACGAGCACGTGGACGCGGACGCAATCCGTCAATGCCTGCGTGCATTGCGGACGTGGCTTTCCGAGTAAMVTAETASEPATKPLDLRQDVALLTAAVMDINSVSGNETELADAVETALRGIPQLHVVRDGDSLIARTELGRTERVILAGHLDTVPLPVTFGARGTVPSTWDSGIPGEGVLYGRGATDMKGGVAVQLALAATMFDAGAEPKRDVTFVFYDHEEVEAVKSGLGRLVRNHGALLNGDFAILLEPTDGTVEGGCNGTMRLEATTIGEAAHSARAWMGSNAIHAAAPILARLAAYQPATVNVDGLDYRESLNAVKIHGGTAGNVIPDRCVVVINYRFAPDKSPEQAEAHVRALLQGFDVVRTDSAAGARPGLNHPAAASFVAAVGAEPKPKYGWTDVARFSELGIPAVNFGPGDPLLAHKDNEHVDADAIRQCLRALRTWLSENANANANANA
D1-29_033081041dapDCOG21712,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferaseATGACTGAGACCGCTACCTCCGCTGTGCCCGAAAACCAGAACTCAACCATTGAGGCCCGTTCCGCCTATGGCTTCGGGCTGGCCACCATCGCCACCGCCACAGGCAAAGAAAATAGCCAGGCCACTGTCCTTGATGTTTGGTTCCCGGCACCTGCCCTTGGGGTTGCCGCAGAAAAGCTGCGCGCCGTTGAGAACGCAGATGAAAACCTGGCCCAGCTTGCGGAGAGCAGCGCTGACCCGGACCGCGGCACCGAGCAGAAAGTGGTCTTCGTCCAGATCAACCTCGACGAAGCCCCGGCCGACACCGCGGATGCCTACCTCAGGCTGCACCTTCTCTCCCACCGCCTGGTCCGGCCCAACAGCATCAACCTTGACGGCGTGTTCGGCAAGCTCCCCAACGTGGTGTGGACCAACTTCGGCCCGGCAGCTGTGGAGGGCTTTGAGCTTACCCGTGCGCGCTTGCGCCGCCGTGGCGCTGTCACCGTCTACGGCATCGACAAATTCCCCCGCATGGTGGACTACGTTGTCCCGTCAGGTGTGCGGATCGCCGACGCCGACCGTGTCCGGCTTGGCGCGCACCTCGCCGACGGGACCACCGTCATGCACGAAGGGTTTGTGAACTTCAACGCCGGCACCCTGGGGACCTCCATGGTGGAAGGCCGCATCTCCGCAGGAGTAGTGGCCGGTGACGGCAGCGATGTGGGCGGCGGCGCCTCGATCATGGGCACTCTTTCCGGCGGCGGCAAGGAGAAAATCGCCATCGGTGAGCGCGTCCTCCTGGGTGCCAACTCCGGCGTGGGCATCAGCATCGGCGATGACTCGGTGGTCGAGGCCGGACTCTACGTCACGGCAGGAACGCGCGTTCGTGTGCCGGGCCCCAAGGACGAGGTAGGCGAGGACACCACCAAAATCGTCAAAGCCATCGAGCTCTCCGGGGTCCCCAACCTGCTGTTCCGCCGCAACTCCACCACCGGCGCTGTGGAGGCCCTGCCGCGCAAGGGCCAGACGGTGGAACTCAACACCGCCCTGCACGCCAACTGAMTETATSAVPENQNSTIEARSAYGFGLATIATATGKENSQATVLDVWFPAPALGVAAEKLRAVENADENLAQLAESSADPDRGTEQKVVFVQINLDEAPADTADAYLRLHLLSHRLVRPNSINLDGVFGKLPNVVWTNFGPAAVEGFELTRARLRRRGAVTVYGIDKFPRMVDYVVPSGVRIADADRVRLGAHLADGTTVMHEGFVNFNAGTLGTSMVEGRISAGVVAGDGSDVGGGASIMGTLSGGGKEKIAIGERVLLGANSGVGISIGDDSVVEAGLYVTAGTRVRVPGPKDEVGEDTTKIVKAIELSGVPNLLFRRNSTTGAVEALPRKGQTVELNTALHANNANANANANA
D1-29_03309825hypothetical proteinGTGCTGCTCCTCACCCTGGCCCTGATGGGCGGAGGAGTGTACACAGCTGTCACTTTCCTGCAGCGCTCCGAGACCCTGGTTTCGGAGCGCTGCACGGCGGTGGTGGGTTCACAGTCCGCGGAACTGGCCACGGACCAGGCCGTCAACGCCTCGCTCATTACTGCCGTTGCCGTCCAACGGGGCCTTCCGCCGCGCGCCGCCAGCATCGCCCTGGCTACGGCCATGCAGGAGTCGAAGCTGCGAAACATCAACCACGGCGACCAGGCCGGGCCGGATTCCCGGGGACTGTTCCAGCAGCGGCCATCCCAAGGGTGGGGAACTGAAGCCCAGGTCATGGATCCCTACTATGCAGCCAACGCTTTCTACGACGCGCTGGAAAAGATCCCGGACTATGAGTCACTGGAAATTACCGATGCCGCCCAGCGGGTACAGCGCTCCGCCTACCCGCTGGCCTATGCAGAACATGAAGGCATGGGCCGCTCGTTCGCCTCTGGCTTCACCGGCCAGACGCCTGGCGCTGTGCAATGCACACTGCGGGCGCCCCTCGATGCAGGCAACCCGGCCGCAGTGGCTTCGGAGCTGGAACTGGCCTACGGGACGCTGGGGACAGCCACGGAGGGGCAGAGCCTGCTGGTGGAAGCCAGCGGCAGCCACGCCTGGTCTCTGGCGCAATGGGCTGTGGCCAATGCCAAGGACTTTGAGGTAACCCAGGTGGACGTCGAGGGGCAAAGCTGGAACCGGAATGCCAAGGACGGCTGGCAGGATTCGGACGCGGCGCCCGGCCAGGTCCGGATCACTGTCTCGCCGGTGGCATCCGAAAACTGAMLLLTLALMGGGVYTAVTFLQRSETLVSERCTAVVGSQSAELATDQAVNASLITAVAVQRGLPPRAASIALATAMQESKLRNINHGDQAGPDSRGLFQQRPSQGWGTEAQVMDPYYAANAFYDALEKIPDYESLEITDAAQRVQRSAYPLAYAEHEGMGRSFASGFTGQTPGAVQCTLRAPLDAGNPAAVASELELAYGTLGTATEGQSLLVEASGSHAWSLAQWAVANAKDFEVTQVDVEGQSWNRNAKDGWQDSDAAPGQVRITVSPVASENNANANANANA
D1-29_03310612hypothetical proteinATGCATCAAGCAGGCGGTTCAGGCTGGAAGATCACCATGGACACATCCGGCCCGATGATGATCGCGCTGTACGTGCGCGACGCCGCCGGTCTCGACGGCGCCGGCCGTCCGGCGCTCTCACACGCCGCTCCGAAAGTACACCACGCTGACCATAGCCATCTCACCGCCGAAGTGGGCGGACTCGGCGCCCTGAAGACCGAGTGGGAAGCCTGGTGGGATCAACTGCTCAAGGCCCATCCAAAGATGTCCCCCGAGTTGTCCCCGCCGGAATTTGCCGCGTTCGGAAATTCCCCTGCACTGCAGAGGGTCCTGCAGGCGCATTTCGGTTCTGCCCTGACATGGGTGCGGGAGCGCCGCAGTGAATATGCGGAGCTGGAAGCGGAGCGTGTTGCCAGTGGATCGGATCTGCTGCTGGATGACCTGGTGGATGACCGGCTGATGGAGGTGGGGCGGAGTTCCCGGGACTTCAGCCTGACCATCATCGAACTGCCGCTCAACGAACAGCGGGCCTGGTACCTGGAACCGGACAAGATCATTATGAGCCATGACCTGATCTCACAGCCCGATCTTTTCCGCAGCTATGTCCAGCCCGTTGTGGAGATGTTGGTCTAGMHQAGGSGWKITMDTSGPMMIALYVRDAAGLDGAGRPALSHAAPKVHHADHSHLTAEVGGLGALKTEWEAWWDQLLKAHPKMSPELSPPEFAAFGNSPALQRVLQAHFGSALTWVRERRSEYAELEAERVASGSDLLLDDLVDDRLMEVGRSSRDFSLTIIELPLNEQRAWYLEPDKIIMSHDLISQPDLFRSYVQPVVEMLVNANANANANA
D1-29_03311660betI_7HTH-type transcriptional regulator BetIGTGCTAAAAAAGGGGGTGCCAAAAATCGTAGATGCCGAAGCCCGGCGCAATGAAGTAGTGGAGGCAGTCTTCAGGATCATCGCAGTGGACGGACTGGAGCGTGTTTCCCTCCGTGAGGTGGCGGACGAGGCAGGACTGGCGGTGGGATCGGTCAGGCACTACTTTGCCGGCAGCGAAGAGCTCCTCACCCACTCGTTCGCGACAGTGGTGGACCGCATCCTGTTCCGCTTGGCGGAAGCCCTGCCGGCCGTCCAGGCGAGTGTTCCCGGAACGGCGCAGCAGGGCGACGCTGTTTTAACCCTGCTGGGTGAATTGCTGCCGATCGATGAAAGGCGGGCGGTTGAGGCGTGCGTCTGGATGGCGTTCAAGAACGCAGCCAGAATCCGGCCCTTCCTCGCGGCGGAAGCGGACCGAAGCCACCGGGAGGTCGCGGCCATCATCGGCCAGGTGATTATCGCCTTGATGGCGGACGACGGCGGCGGGCAGCAGAGCCTCGTTGTGGAGGCCGAGCGGCTCCTGGCAATCCTGGACGGCCTGTGCATGCACGCCCTGCTTCAGCCCGAGTGGATGAATGCCGGAATGTGCCGGGACGTTCTGGAGCGGCACCTTGAGGCACTCGCTGCCACTCCGGCCATTACCGTCCGGGGGCTTCGGGAATAGMLKKGVPKIVDAEARRNEVVEAVFRIIAVDGLERVSLREVADEAGLAVGSVRHYFAGSEELLTHSFATVVDRILFRLAEALPAVQASVPGTAQQGDAVLTLLGELLPIDERRAVEACVWMAFKNAARIRPFLAAEADRSHREVAAIIGQVIIALMADDGGGQQSLVVEAERLLAILDGLCMHALLQPEWMNAGMCRDVLERHLEALAATPAITVRGLRENANANANANA
D1-29_033121014galE_1COG1087UDP-glucose 4-epimeraseATGAAAATTCTGGTCACAGGTGGCACCGGGTACATCGGCTCCCACACAGTCTTGTCCCTGCAGGAAGCCGGCCATGAAGTGGTGGTCATCGATAACCTGGTGAACTCGAGCGTGGAGTCGCTGCGGCGCGTTGCCGAGCTCACCGGGAAGACCGCCCAATTCCACAACGTGGACCTCCTGGACGAAGCGGCGGTGGACGGAGTTTTTTCGGCCAACGCCATTGACGCGGTCATCCACTTTGCCGGCCTGAAAGCGGTGGGCGAGTCGGTCCGTGAGCCGCTGAAGTACTACTACAACAACCTGGTGGGCACCCTGAACCTGATCCGGGTCATGGACCGCCACGACGTCCGCTCGATCGTCTTCAGCTCCTCCGCCACGGTTTACGGCGAACACAACCCGATCCCCTACGTCGAGAAGATGGAAATCGGCGCCAACAACCCGTACGGCCGGACCAAGGAACAGATCGAAGACATCCTCTCGGACCTTGGCGCCGCGGACACCCGCTGGCACATCGCCCTGCTCAGGTACTTCAACCCGGTCGGCGCCCACCCCTCCGGCAGGATCGGCGAGGACCCCCAGGGCATCCCCAACAACCTGGTGCCGTTCATCGCCCAGGTCGCCGTGGGACGCCGCGAAAAACTCATGGTCTTCGGCGGCGACTACGACACTCCGGACGGCACCTGCCTGCGCGACTACATCCACGTCGTGGACCTCGCCGACGGCCACGTCGCCGCCCTGAACCATGTGGCCGGCCGGAGCGGTGTGTTCCGCTGGAACCTTGGCTCAGGCAAGGGCTCCTCCGTACTGGAGGTGCTGCACTCCTTCGAGAAAGCCGTCGGAAAGCCCATCCCCTATGAGATCACGGGGCGCCGCGCCGGCGACCTTCCCGCATTCTGGGCCGACGCCGCCTCCGCCCTGGCCGACCTGAGCTGGTCCACCACCAAAACAGTGGACCAGATGTGCGAGGACCACTGGCGCTGGCAGAAGAACAACCCCCTCGGCTATGGCTCCTGAMKILVTGGTGYIGSHTVLSLQEAGHEVVVIDNLVNSSVESLRRVAELTGKTAQFHNVDLLDEAAVDGVFSANAIDAVIHFAGLKAVGESVREPLKYYYNNLVGTLNLIRVMDRHDVRSIVFSSSATVYGEHNPIPYVEKMEIGANNPYGRTKEQIEDILSDLGAADTRWHIALLRYFNPVGAHPSGRIGEDPQGIPNNLVPFIAQVAVGRREKLMVFGGDYDTPDGTCLRDYIHVVDLADGHVAALNHVAGRSGVFRWNLGSGKGSSVLEVLHSFEKAVGKPIPYEITGRRAGDLPAFWADAASALADLSWSTTKTVDQMCEDHWRWQKNNPLGYGSPGPT0017825_29DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-29_033131410gltA2COG0372Citrate synthase 1ATGGTGGCTTTCTACAAGAAGGCAGCCCGGGTGTTGGAATCCTGTGCTTGCAGGGTCAGTGCGCGGCTCACCGGATGTTGGATCAAGCTTTCGACAGAGGCCCAGACGCCTCATGAAGGGGACTCCATGACTGAGACCAACAGCGCAACCCTGCTCCATGCAGGAGGCGAGCTCAAGCTCCCGCGCATCCAGGTTATTGAAGGAAACGAAGGTTACGACGTTTCCAAGCTGCTGAAGCAGACGGGTGCAGTCACCTTTGACCCCGGCTTTATGAACACAGCGGCAACAACCTCTGCAATCACCTACATCGACGGCGATGCGGGCATCCTGCGTTACCGGGGATACCCCATCGAGCAGTTGGCGCAGCACTCCAGCTTCCTCGAAGTTTCCTACCTGCTGATCTACGGCAACCTGCCCACCACCGTGGAACTGGAAGCGTTCGACCAAAAGATCCGCCGTCACACGCTGCTGCACGAAGAGCTCAAGGGCTTCTTCGGCGGGTTCCCGCGCGATGCCCACCCCATGCCTGTCCTTTCGTCGGCTGTATCGGCGCTGTCCACGTTCTACCAGGACTCGCTTGACCCCTTCAACGCCGAGCAGGTGGAGGTTTCCACCATCCGCCTGATGGCCAAGATGCCGGTCATCGCTGCCTACGCGCTCAAGAAGAGCATCGGCCAGCCCATGCTGTACCCGGACAACTCCCACAACCTCGTGGAAAACTTCCTGCGCCTGAGCTTCGGCCTCCCGGCAGAGCAGTACGAGGTTGATCCGGTCATCGCGAAGGCGCTGGATCTCCTGCTGATCCTGCACGCTGACCACGAACAGAACTGTTCCACCTCCACGGTGCGCCTGGTGGGCTCCTCAAACGCCAACCTGTTTGCCTCGGTGTCGGCCGGCATCAACGCGCTCTTCGGTCCCGCCCACGGCGGCGCGAACGAGGCTGTGCTCAAGATGCTCCGCCAGATCCAGGCCGACGGCACCAGGCCGGAGGACTACATGGAGAAGGTCAAGAACAAGGAAGACGGCGTCCGCCTGATGGGCTTCGGACACCGCGTGTACAAGAACTACGATCCGCGGGCCAAGATCGTCAAGGCCACGGCCCACGAAATCCTCACGAAGCTCGGCGGCAACGACGAACTCCTGGACATCGCCATGCGGCTTGAGGAGAAGGCGCTGAATGACGACTACTTCATCCAGCGCAAGCTTTACCCCAACGTGGACTTCTACACAGGGCTCATCTACAAGGCCATGGGCTTCCCGGAGAAGATGTTCACCGTCCTGTTCGCCATCGGCCGCCTGCCGGGCTGGATCGCCCAGTGGCGTGAAATGATCAGCGATCCCAACACCAAGATCGGCCGCCCGCGCCAGCTGTACATCGGCGAGCCGGAGCGCGACTACCCCGTCCGCTAAMVAFYKKAARVLESCACRVSARLTGCWIKLSTEAQTPHEGDSMTETNSATLLHAGGELKLPRIQVIEGNEGYDVSKLLKQTGAVTFDPGFMNTAATTSAITYIDGDAGILRYRGYPIEQLAQHSSFLEVSYLLIYGNLPTTVELEAFDQKIRRHTLLHEELKGFFGGFPRDAHPMPVLSSAVSALSTFYQDSLDPFNAEQVEVSTIRLMAKMPVIAAYALKKSIGQPMLYPDNSHNLVENFLRLSFGLPAEQYEVDPVIAKALDLLLILHADHEQNCSTSTVRLVGSSNANLFASVSAGINALFGPAHGGANEAVLKMLRQIQADGTRPEDYMEKVKNKEDGVRLMGFGHRVYKNYDPRAKIVKATAHEILTKLGGNDELLDIAMRLEEKALNDDYFIQRKLYPNVDFYTGLIYKAMGFPEKMFTVLFAIGRLPGWIAQWREMISDPNTKIGRPRQLYIGEPERDYPVRPGPT0001455_620DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647NANA
D1-29_033141149dapLCOG0436LL-diaminopimelate aminotransferaseGTGACCGCCGCGTTGAGTAGTTTTGGCCTCAGCCTGCCCGATTACCCTTGGGAGGCACTGGCGCCCTATCTGGCCAAGGCTTCGGAACACCCGGGCGGGGCAGTGAACCTGTCCATCGGTACGCCCGTTGACCCCACGCCCACCGTTATCCAGGACGCGCTCCAGGCCGCGGCCAACGCTCCCGGATACCCCACGGTCCACGGCACTGCAGCATTGCGGGAAGCCATCGCGGCCTGGTTTGGGCGCCGGCGTGGCGTTCCTGGGCTGGATCCAAAAAACGTTATGCCAACCGTGGGTTCGAAGGAACTGGTTGCCTGGCTGCCGCTCCTGCTGGGGCTGAAGCCGGGCGACGTCGTTGTACGCCCCCAGGTTGCCTACCCCACCTACGACATCGGAGCCACCCTTGCCGGGGTCACCTCCGTGGCTACGGACAACCTTGACGAGCTCGACGCAGCCACCCGCTCCCGGGTCCGTCTGATTTGGGTCAATTCGCCCGGCAACCCGACCGGAAGCGTCAGGGATGTGGAGTCCTTGAGGTTGTTGGTGGCACAGGCGCGGGAGCTGGGCGCCGTGGTGGCCTCTGACGAGTGCTATGCCGAACTGGGTTGGGGCGCGTGGGATGTCCAGCGCGGTGGGGAGCCGGTACCCAGCATCCTGGATCCGCGGATTGCCGGCGGCTCCCATGAAGGACTTCTGGCCGTCTATTCGCTGAGCAAACAGTCCAATCTGGCAGGGTACCGTGCGGCCTTCGTCGCCGGCGATCCGGCCATCATGGCCAACCTGGTCAACAGCCGAAAGCATGCCGGCATGATTGTCCCCTACCCCGTCCAGGAAGCGATGCGGGTGGCAGTGGGCGACGACCTCCATGTCCAGGTGCAGAAGGACCTCTACAGGGGCCGCAGGGAGCGGCTCCTGCCCGCGCTGCGGAATTTTGGACTGGAGATCAAAGACTCCGACGCCGGCCTTTACCTCTGGTCCACCGCCGGCGAGGATACGTGGGACACCGTGGGCCGCCTTGCCGGGCGTGGCGTCGTGGTGGGGCCCGGCGTCTTTTACGGCGAGGCAGGCAACGGATTCATCCGGGTGGCATTGACCGGTTCGGATGAACGGATCGACGCAGCGGTGGCCCGGCTGGCAACGGCACCGTAAMTAALSSFGLSLPDYPWEALAPYLAKASEHPGGAVNLSIGTPVDPTPTVIQDALQAAANAPGYPTVHGTAALREAIAAWFGRRRGVPGLDPKNVMPTVGSKELVAWLPLLLGLKPGDVVVRPQVAYPTYDIGATLAGVTSVATDNLDELDAATRSRVRLIWVNSPGNPTGSVRDVESLRLLVAQARELGAVVASDECYAELGWGAWDVQRGGEPVPSILDPRIAGGSHEGLLAVYSLSKQSNLAGYRAAFVAGDPAIMANLVNSRKHAGMIVPYPVQEAMRVAVGDDLHVQVQKDLYRGRRERLLPALRNFGLEIKDSDAGLYLWSTAGEDTWDTVGRLAGRGVVVGPGVFYGEAGNGFIRVALTGSDERIDAAVARLATAPPGPT0010335_2DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-TYPE_II_POLYKETIDE-OXY-|CHLOR-|TETRACYCLINE_METABOLISM,PGPT0010335-oxyQ-K14254NANA
D1-29_03315327COG1146FerredoxinGTGACGTACGTAATCGCGCAGCCGTGTGTAGATGTCAAGGACAAGGCATGTATTGAAGAGTGCCCGGTCGACTGCATCTACGAGGGTGAGCGTTCGCTGTACATCCATCCGGATGAGTGCGTCGACTGCGGTGCCTGTGAACCGGTGTGCCCGGTGGAGGCTATCTACTACGAGGACGACACCCCCGACGAGTGGGCCGACTACTACAAAGCCAACGTGGAATTCTTCGACGATCTCGGATCCCCGGGCGGTGCCGCCAAGGTGGGCAACACGGGTAAGGACCACCCGATGATTGCCGCCCTGCCGCCCCAGAACCAAGACCACTGAMTYVIAQPCVDVKDKACIEECPVDCIYEGERSLYIHPDECVDCGACEPVCPVEAIYYEDDTPDEWADYYKANVEFFDDLGSPGGAAKVGNTGKDHPMIAALPPQNQDHPGPT0030810_836PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
D1-29_03316240hypothetical proteinGTGAGTCTGACCACGCCTTCGCCCCGGGAGTTCCTGGCAGCGGCCGCACCCGGTACGCGGGTGGTGGTCCGCTACCGAATCGATGGCGGACTGACCGACGCGCTGGGTTACCTGCTGCGCACCGCCGACGGCGACTGCACCGTCCGCACCCGGAAGGCCGACGTCGTTATTCCGCTCGATCTGGTGACCGCAGCAAAGGAAGTGCCGCCCGCTCCGGAGCGCCGCCGCCCTGCGCACTGAMSLTTPSPREFLAAAAPGTRVVVRYRIDGGLTDALGYLLRTADGDCTVRTRKADVVIPLDLVTAAKEVPPAPERRRPAHNANANANANA
D1-29_03317810hypothetical proteinATGCGAACAGTTACTGACGTGCTGACCCATCTGGATGGCGTTGCCAGCACCAACTCCCTCAGGCAGGCGGGAGTATCCCGACGGTTGATTGAAGCCGGCCTGTTGGACGCTTCCATTCAGAGGGTGGCAAGGGGCGTTTATGCGTTGCCCGGTGCCGAGCCGTTGGTGGTCCATGCCGGCCGCCATCATGCCGTGCGTGGTTGCGTCACGGCCGCCGCAGCAGCGGGGCTATGGGTGGTGAAGAGGCCCGACAAGCCCCATCTTGCCGCCAGGCATGGCAGGCCAATCGAGGGTTGTGTGGTGCATCGAAGCCACGTACCGCTGACCCATCTGGACATCGTGTGCCAATCGCTGCGCTGCCTGCCGCCGCTCGAGGGCCTGACCATTGCAGAATCTGCAGTCAAGCAGGGCCTGGTGCAACTTTCGGATCTGCGTATCCGGTTTCCTGCCGCACGGGAAAAGGCCCTGCAGGCCCTGGTGGCAAGGATCCGGCCACAATCCGGTTCCGTCATTGAGACCATGGCCCGATACTTGCTGGAAGAGGCCGGGCTGACGGTCGAGCTGCAGGTCAACGTTCCAGGAATGGGGCATCTGGACCTCCTGGTTGACGGCTTGCTGGGCATTGAGACGGACGGCTACTCCCACCACAGCAGCCGGCAGGCGTACAGGGAGGACAGGCGGCGGTGGAACATTACCGTCGTTCGGGGCGTTCCCACCCTCCGTGTGACTTTCGAAATGCTCCTCAGGGAGCCGGCAGAGTTTGTGAGGATGGTCCACCAGGCCCTTGGCACGTACCGGACTGCCCAGTGAMRTVTDVLTHLDGVASTNSLRQAGVSRRLIEAGLLDASIQRVARGVYALPGAEPLVVHAGRHHAVRGCVTAAAAAGLWVVKRPDKPHLAARHGRPIEGCVVHRSHVPLTHLDIVCQSLRCLPPLEGLTIAESAVKQGLVQLSDLRIRFPAAREKALQALVARIRPQSGSVIETMARYLLEEAGLTVELQVNVPGMGHLDLLVDGLLGIETDGYSHHSSRQAYREDRRRWNITVVRGVPTLRVTFEMLLREPAEFVRMVHQALGTYRTAQNANANANANA
D1-29_033181929typACOG1217GTP-binding protein TypA/BipAATGTCTGAAACCACCACCAACACCGCGGTAGCCACTGCATCGCGCAGTGACCTGCGCAACGTCGCGATCGTGGCCCACGTTGACCACGGCAAGACCACCCTGGTCGACGCCATGCTCAAGCAGACCAACTCCTTTGCCGAGCACAACCACCTCGAGGACCGCGTGATGGACTCCGGTGACCTGGAGCGCGAAAAGGGCATCACCATCCTGGCCAAGAACACCACCGTGGCCTACAACGGACCGTCCTCCAAGGGCGAGACCATCACCATCAACGTGATCGACACCCCCGGCCACGCCGACTTCGGCGGCGAGGTGGAGCGCGGCCTGTCCATGGTGGACGGCGTTGTGCTGCTGGTTGACGCTTCCGAGGGTCCCCTGCCGCAGACCCGTTTTGTGCTGCGCAAGGCCCTGGCCGCGCACCTGCCCGTCATCCTGCTGGTCAACAAAACCGACCGCCCTGACGCCCGCATCGAAGAAGTTGTCCACGAATCGATGGACCTCCTCCTCGGCCTCGCCTCAGACCTCGCGGATGAGGTTCCGGACCTTGACCTGGACAAGATCCTCGAAGTTCCTGTTGTATACGCCGCCGCCAAGGTTGGCCGTGCCTCCCTCGAGCAGCCCGCCGATGGCACCGCCCCGGAGAATGAGGACCTGGAACCGCTGTTCCAGACCATCATCGAGCACATCCCGGCGCCGACCTACAACCCGAACGGCGTCCTCCAGGCGCACGTCACCAACCTGGACGCGTCCCCGTTCCTGGGCCGCCTCGCCCTGCTCCGCATCTACAACGGCACCCTGCGCAAGGGCCAGACCGTTGCCTGGGCGCGCGCCAACGGTGAGCTCAAGAACGTCAAGATCACCGAACTCCTGGCCACCAAGGCACTGGACCGCGTTCCGGCCGAGTCTGCCGGCCCCGGCGAGATCGTGGCTGTTGCCGGTATCGAGGAAATCACCATCGGTGAGACCCTGACCGACGCCGAGAACCCGCAGCCGCTGCCGCTCATTACCGTGGACGATCCCGCGATCTCCATGACCATCGGTATCAACACCTCGCCGCTGGCCGGCAAGGTCAAGGGTGCCAAGGTCACGGCCCGCCAGGTGAAGGACCGCCTGGACAAGGAACTGATCGGTAACGTCTCCATCAAGGTTCTGCCCACCGAGCGTCCCGACGCCTGGGAAGTCCAGGGCCGTGGCGAGCTCGCCCTGGCCATCCTGGTTGAGCAGATGCGCCGTGAAGGCTTCGAGCTGACCGTGGGCAAGCCGCAGGTTGTTACCAAGACCATCGATGGCAAGGTCCACGAGCCGATGGAGCACATGACCATCGATGTACCGGAAGAATACCTTGGCGCCGTCACCCAACTGATGGCTGCCCGCAAGGGCCGCATGACCAACATGGCCAACCACGGCACCGGCTGGTGCCGGATGGAATTCATCGTTCCGGCCCGCGGCCTGATCGGTTTCCGCACCAAGTTCCTCACCGACACCCGTGGCGCGGGCATCGCAGCTTCCATCTCCGAGGGCTACGAGCCGTGGGCCGGTCCCATCGAGTACCGCACCAACGGCTCCATGATTGCTGACCGCGCCGGTGTTGTCACGCCGTTCGCCATGATCAACCTGCAGGAGCGCGGTTCCTTCTTCGTGAAGCCTACCTCTGAGGTCTACGAAGGCATGATCGTCGGCGAGAACTCCCGCGCCGACGACATGGACGTGAACATCACGAAGGAAAAGAAGCTCACCAACATGCGTGCCGCTTCCTCCGACACCTTCGAGAACCTGACGCCGCCGCGCGACCTCACGCTCGAAGAGTCCCTCGAATTCGCCCGCGAGGACGAGTGCGTCGAGGTGACCCCTGAGTCGATCCGTATCCGCAAGCTCATCCTTGACACGAACGAGCGCGCCAAGGCCAACCGCGCACGCGCCAAGGTCTAGMSETTTNTAVATASRSDLRNVAIVAHVDHGKTTLVDAMLKQTNSFAEHNHLEDRVMDSGDLEREKGITILAKNTTVAYNGPSSKGETITINVIDTPGHADFGGEVERGLSMVDGVVLLVDASEGPLPQTRFVLRKALAAHLPVILLVNKTDRPDARIEEVVHESMDLLLGLASDLADEVPDLDLDKILEVPVVYAAAKVGRASLEQPADGTAPENEDLEPLFQTIIEHIPAPTYNPNGVLQAHVTNLDASPFLGRLALLRIYNGTLRKGQTVAWARANGELKNVKITELLATKALDRVPAESAGPGEIVAVAGIEEITIGETLTDAENPQPLPLITVDDPAISMTIGINTSPLAGKVKGAKVTARQVKDRLDKELIGNVSIKVLPTERPDAWEVQGRGELALAILVEQMRREGFELTVGKPQVVTKTIDGKVHEPMEHMTIDVPEEYLGAVTQLMAARKGRMTNMANHGTGWCRMEFIVPARGLIGFRTKFLTDTRGAGIAASISEGYEPWAGPIEYRTNGSMIADRAGVVTPFAMINLQERGSFFVKPTSEVYEGMIVGENSRADDMDVNITKEKKLTNMRAASSDTFENLTPPRDLTLEESLEFAREDECVEVTPESIRIRKLILDTNERAKANRARAKVPGPT0023720_296DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207NANA
D1-29_03319855hypothetical proteinATGCGAAAAGCCTCGGCTGTGGCCTGCTTTGTTGCATCCGGAATCGCCGCCGGCGCCATCTTCAGCGGCTACGGACAGCCCCCGGAACCACTCGCCGCCGGGGCCGTAGAGATGCACGCGCCCGTACAGGGGAAGTACTCTGCGCCGGAGGCCAACACTGGAACGCTCCCCGTTGGCTCCGTCTACCGAAATCCGTTAACCGGGCGTGACGAGGTGGTGGTTCCGGACATCGCCAACACCGCCCTCCTCATTGGTGACTCCCAGTCGGAGCCGGCTGACGGCTGGCCGCGCCTGGGCCTGGCCGCGGTTGGATACAAGGTCCATTTTTGCGGACGGGGCGGAACAGGCTTTGCAACCTCCAACGGCAAGACCGGGAACTACGTCCAGGCTCTGCTCAGGGGCGACTGGAAGCTTCCCTATGGCTCTCCCCCGCTGATCATTCTGCAAGGCGGCGGAAATGACGCGGCGCGGGGAGCCACTGATGCCCAGATCGTGGCAAATGCCGACCGTCTGATAGCAATCCTGCGCGAACGGTACCCCGAAGCCCGGATGGCGATGATCGGGACCTTGGCCAGGGATGCCCGCGATGGCGGCGGCCGCCGTCACGAGGTGGACACCCTTCTGGGAACCGTGGCGGCCAGGCATGGGATGCCGTTTTTGTCGGTGGGCGATTGGCTCACCAGGCATGGCCTCGCCAAGGACCTCGCGGACGCCGTCCACATGAATGCAGCGGGCCGGAAATCCCTCGGCGCTTTGCTGGAAGCCCGGCTGCGGGAGCTGCGGCTCGAAGCCCGGCCGAATGGCAATTCCGGATCGCTGCAGGCGGCGGCCCCGGAATCCTCCTGGACTGAATAGMRKASAVACFVASGIAAGAIFSGYGQPPEPLAAGAVEMHAPVQGKYSAPEANTGTLPVGSVYRNPLTGRDEVVVPDIANTALLIGDSQSEPADGWPRLGLAAVGYKVHFCGRGGTGFATSNGKTGNYVQALLRGDWKLPYGSPPLIILQGGGNDAARGATDAQIVANADRLIAILRERYPEARMAMIGTLARDARDGGGRRHEVDTLLGTVAARHGMPFLSVGDWLTRHGLAKDLADAVHMNAAGRKSLGALLEARLRELRLEARPNGNSGSLQAAAPESSWTEPGPT0001840_112DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804NANA
D1-29_033201707gsiA_1COG1123Glutathione import ATP-binding protein GsiAATGACAACTCCAGATATTCGCATCGATGAGGCAGACCGCACGGAACCGACGCCGCTCCTGGAAATCCGCGACCTGGCCATCACCTTCAAAACCGGCAGCGGGGAGGTTCGGGCTGTCCGGAACGCGCACCTCACCATCATGGCCGGCGAGACAGTTGCCATCGTCGGCGAGTCGGGCTCGGGAAAGTCGACCACGGCCCTCGCAGCCATCGGCCTCCTGCCACCGAACGGACGGGTAGCGGGGGGACAAATCCTGCTCGACGGCGAGGACATCGCCCATGCGGCCGAGCAGCGGATGATTGAACTTCGCGGGAACACCATTGGCATGGTTCCGCAGGATCCAATGTCCAACCTGAACCCCGTATGGAAGATCGGCTACCAGGTCAAAGAGACCCTCCGGGCAAATGGCCGCCCCAGCGGCCCCGAAGATATTGCCAGGGTCCTGGCCCAAGCCGGGCTGCCGGACGCGCACCGGCGGGCAAAGCAGTATCCGCATGAGTTTTCCGGCGGAATGCGCCAGCGTGCCCTGATCGCCATCGGGCTGTCCTGCCAGCCGCGGCTGCTGATTGCGGATGAGCCGACGTCGGCCCTTGACGTGACAGTACAGCGGCAGATTCTGGATCACCTGGACACGATGACATCTGACCTCGGCACGGCCGTGCTGCTTATTACCCATGACCTGGGACTTGCAGCGGAGCGTGCTGACAAGGTGGTGGTCATGTACCAGGGGCAGGTGGTGGAGTCCGGCCCATCGCTGGCACTGCTGCAAAATCCGCAGCATCCCTACACCAAACGCCTGGTCGAATCCGCGCCCTCCCTTGCCAGCAGGCGTATCCAGGCGGCGAAGGAACTCGGGGTGGAGGCCACTGACCTCCTTGCACCGGCGGCAGAAGCGGCGGCAAAGGACCATATCCTGCAGATCAGGGACCTTCGCAAGGTCTACAAGCTGCGTCAGGGGCTGGGCAAGACTTCAGACTTTGCCGCCGTCGACGGCGTGAGCTTTGACGTCACGAGGGGCACCACAACGGCGATTGTGGGGGAATCCGGTTCGGGCAAATCGACCGTAGCCAAGATGGTGTTGCAGCTTGAAAAGCCGACTGATGGCGCCATCCTTTTCGACGGCGTCGACACCTCATTGTTGAAGGGCACGGAACTTTTCAAGTTCCGCCGGCGGGTGCAGCCCATCTTCCAGGATCCGTATGGTTCGCTCGATCCGATGTACAACATCTTCCGCACCATCGAAGAACCATTACGGATCCATAAGATCGGGGACAAGGCCAGCCGGGAGAAGAAGGTCCGTGAGCTCCTGGACCAGGTGGCGCTGCCGCAGTCCAGCATGCAGCGTTTTCCGAATGAGCTCTCGGGCGGCCAGAGGCAGCGTGTAGCCATTGCACGCGCGCTCGCCTTGGATCCCGAGGTCATCATTTGTGACGAGGCGGTGTCAGCGCTGGATGTTTTGGTCCAGGCACAGGTGCTTAATCTCCTGGCCGACCTGCAGTCCAACCTGGGTCTCACGTATCTTTTCATTACCCACGACCTGGCAGTTGTCCGGCAGATTGCCGATCACGTGTGCGTGATGGAGAAGGGGCTTTTGGTGGAGACCGGTTCCACGGATGAAGTCTTCGATTCGCCGAAGCAGGAATACACCAGGGCCCTGCTCAATGCCATCCCCGGAGCTCGTCTGATGCTTCCGCCGGAAGTCGCCTGAMTTPDIRIDEADRTEPTPLLEIRDLAITFKTGSGEVRAVRNAHLTIMAGETVAIVGESGSGKSTTALAAIGLLPPNGRVAGGQILLDGEDIAHAAEQRMIELRGNTIGMVPQDPMSNLNPVWKIGYQVKETLRANGRPSGPEDIARVLAQAGLPDAHRRAKQYPHEFSGGMRQRALIAIGLSCQPRLLIADEPTSALDVTVQRQILDHLDTMTSDLGTAVLLITHDLGLAAERADKVVVMYQGQVVESGPSLALLQNPQHPYTKRLVESAPSLASRRIQAAKELGVEATDLLAPAAEAAAKDHILQIRDLRKVYKLRQGLGKTSDFAAVDGVSFDVTRGTTTAIVGESGSGKSTVAKMVLQLEKPTDGAILFDGVDTSLLKGTELFKFRRRVQPIFQDPYGSLDPMYNIFRTIEEPLRIHKIGDKASREKKVRELLDQVALPQSSMQRFPNELSGGQRQRVAIARALALDPEVIICDEAVSALDVLVQAQVLNLLADLQSNLGLTYLFITHDLAVVRQIADHVCVMEKGLLVETGSTDEVFDSPKQEYTRALLNAIPGARLMLPPEVAPGPT0004435_3232DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_03321945gsiD_2COG1173Glutathione transport system permease protein GsiDATGACCAGTAAAACCAATCACTTCGTAGCTCCCGTTGACGAGACGCCGCTGCTGGCAACAGATACCCTGAAAACGGATCAGGCGCCTCTCAGTCTGTGGGCGGATGCCTGGCGCAAACTTCGTCGCCGTCCCCTGTTTATTATTTCGTCGCTTTTGATCCTGGCCTTGATCGTCATCGCGTTGTTCCCTGGGTTGATTTCAACGGTCCCGCCAAATGATGACTGCCAACTGGCCAATTCGGAAGGTGGCCCCACCGCCGGGCATCCGTTCGGCTTCACGTTCCAAGGCTGCGACATCTATTCGCGCGTGGTCCACGGAACGCAGGCCTCGCTCTCCGTCGGTGTGTTGTCCGTGCTCTGCGTCCTGATCATTGGGGTGACCCTCGGCGCGCTCGCGGGCTACTACGGCGGATGGGTGGACTCGGTCCTCGCCCGGCTCGGCGACATTTTCTTTGCCCTGCCCCTGGTCCTTGGCGCGCTGGTCATCACCCAGCTGCCGGCACTACGCGAAAACAAGAGTGTGTGGACTGTAGTCCTGGTCATTTCCCTGCTGGCGTGGCCACAAATGGCACGCATTACCCGCGGCGCCGTAATAGAGGTTCGGAACGCGGATTTCGTCACGGCTGCCCGCGCCTTGGGCGTTTCAAGGTTCGGTGCGCTGGTTAAGCACGTCCTCCCCAATGCCTTGGCTCCCATTATTGTGCTCGCAACCTTGAACCTGGGCATTTTCATTGTGGCCGAGGCCACACTGTCATTCCTTGGCATCGGCTTACCGCCCAGCATCATGTCCTGGGGCAATGACATCGCTGGAGCGCAGGCGTCGATTCGGACCAAGCCGGAAATTTTGCTCTATCCCGCGGCGGCATTGTCCATCACCGTCCTGAGTTTCATCATGCTCGGCGATGCAGTGCGTGATGCCCTTGATCCGAAGAGCCGTCAGCGATGAMTSKTNHFVAPVDETPLLATDTLKTDQAPLSLWADAWRKLRRRPLFIISSLLILALIVIALFPGLISTVPPNDDCQLANSEGGPTAGHPFGFTFQGCDIYSRVVHGTQASLSVGVLSVLCVLIIGVTLGALAGYYGGWVDSVLARLGDIFFALPLVLGALVITQLPALRENKSVWTVVLVISLLAWPQMARITRGAVIEVRNADFVTAARALGVSRFGALVKHVLPNALAPIIVLATLNLGIFIVAEATLSFLGIGLPPSIMSWGNDIAGAQASIRTKPEILLYPAAALSITVLSFIMLGDAVRDALDPKSRQRPGPT0021025_1389DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021025-oppC-K15582NANA
D1-29_03322930gsiC_6COG0601Glutathione transport system permease protein GsiCTTGGTCCGCTTTATTTTGCGCCGCCTCCTTCAAGTGATCCCCGTCTTCCTTGGCACCACGCTCCTGGTCTATTACATGGTGTTCGCCCTTCCGGGGGATCCCATTGCGGCGCTTTTCGGCGACCGGCAGCCCCCGCAGGCAGTGATCGACACCCTGCGCAGCCAGTACCACCTCGATGAACCCTTCTGGGTCCAGTACGGACTCTTCCTGAAGAACCTGTTCACCTTTAATCTGGGGAACGACTTTACAGGCCAACCCATCGCCGCTTCTTTGGCCCGGATCTTTCCCGTGACGGCAATGCTCGCTGTCGAAGCGCTCGTTATTGAAGCGGTTTTCGGGATAGCTTTCGGCGTCTTCGCTGGCCTCCGCCGCGGCAAGTGGTTTGATTCCGCCGTGCTGGTTGCCTCCCTGGTGGTCATCGCGGTGCCCACCTTCGTTCTCGGCTTCGTTTTCCAGCTGATTTTCGGCGTCCAGCTGGGGTGGGCTAAACCCACCGTGGGGGCAAACGCTGACTGGGGCAACCTGCTGCTGCCGGCGACAGTCCTTGGTTTGGTGTCGTTTGCATATGTGCTCCGACTGACCCGTGCCTCCGTCAGCGAGAGCATGAATGCTGACTATGTGCGCACCGCCACCGCCAAGGGCCTTTCCCGGCCACGGGTTGTCATGACGCACATCCTCCGCAACTCGCTCATCCCGGTGGTGACGTTCCTGGGTGCAGACCTTGGCGGCCTGATGGGCGGTGCCATTGTCACGGAAGGCATCTTTAACGTTCCTGGCGTAGGGAACAAGCTTTACCAGGCAACCTTGCGAAGCGAGGGCCCAACCGTTGTTGCCATCGTCAGCGTGCTGGTGCTGGTCTTTGTGGTGGCCAACCTGCTCGTTGATCTCCTGTACGCCTGGCTGGACCCGAGGATTCGCTATGACCAGTAAMVRFILRRLLQVIPVFLGTTLLVYYMVFALPGDPIAALFGDRQPPQAVIDTLRSQYHLDEPFWVQYGLFLKNLFTFNLGNDFTGQPIAASLARIFPVTAMLAVEALVIEAVFGIAFGVFAGLRRGKWFDSAVLVASLVVIAVPTFVLGFVFQLIFGVQLGWAKPTVGANADWGNLLLPATVLGLVSFAYVLRLTRASVSESMNADYVRTATAKGLSRPRVVMTHILRNSLIPVVTFLGADLGGLMGGAIVTEGIFNVPGVGNKLYQATLRSEGPTVVAIVSVLVLVFVVANLLVDLLYAWLDPRIRYDQPGPT0021020_986DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021020-oppB-K15581NANA
D1-29_033231686oppACOG4166Oligopeptide-binding protein OppAATGCGTTTCACGCGCACTTCCAAAGCACTGGGCATCGTGGCTATCGCTGCGCTCGCCCTCACCGGGTGCGGCGCTGGAGGCGGCACCGACGACGGTGGCACCCAGGCTGGCGGCGACCCGAACAAGGTCATCACCGCGTACAGCAACGAACCACAGAATCCGTTGCTCCCGGCAAACACTAACGAAGTGTATGGCGGCCGTGTTGTCGAGTTGCTGTTCGAAGGTCTTCGGGCCTACGACGCCGACGGCAAGCCGGTCAATGCCCTCGCCGAGTCGATCGAAACGACGGATTCCCAGAACTGGACCATTAAGGTCAAGCAGGGCCAGAAGTTCACGAACGGCGAAGAGATTACGGCCAAGACTTTCGTTGACTCTTGGAACTTCGCTGCGAACTCGAAGAACCTGCAGAACAACGGCTTCTTCTTCGAGTCCATCGCGGGCTACGAGGAAGTCTCTGCTGTGACCACCGAGAAGTCGGCCGACGGCAAGACGACTTCAACTCCTGCCCCTACCGCGGAAACCATGTCCGGTCTGGTGGCCAAGGACGACTCCACGATCACCGTCGAACTCGCCCAGCCTGAGGCTGACTGGTCGCTGCGCCTCGGCTATTCCGCGTTCTTCCCGATTCCGTCCGCGGCGATTGCGGATCCGAAGGCCTTCGGCGAGAACCCGGTCGGCAACGGCCCGTACAAGATGGAAAAAGAGGGCGCCTGGGTTCATGACCAGTCAATCTCACTTGTGAAGAACCCTGACTACAGCGGGCCCCGCGAATCACAGAACGGCGGCGTGACCTTCAAGTTCTACACCGACCCGGGCCCCGCTTACACGGACCTGCAGTCCGACAACCTTGACGTCACCGATGTCCTGCCGTCGAACGCACTGAAGACCTATGTCACGGATTTCCCGGACCGTAACGCAACGAAGCCCGTAGCCACCAACTCCACCCTGAACATCCCGGGTTACAACCCGAACTTCCATGGTGAAGCAGGCAAGCTCCGCCGCCAGGCGCTCTCGTACGCGATCAACCGCGAGGAAATCTGCAAGGTCATCTTCAGCGGAACCCGCACTCCGGCCAAGGCGTACGCCCCGCCGGTGATTGATGGCTTCAAGGAAGGCCTCAAGGGTAGCGAAACCCTGAAGTTTGACGCAGCAAAGGCCAAGGACCTCTGGGCACAGGCCGACGCCATCACACCGTATGACAGTTCCAAGCCGCTCCTGATTGCCTCCAACACAGATGGCGGCAACAAGGAATGGATTGACGCCGTAGCCAACGGCTTCAAGAACAACCTGGGGATCCAGGCGGAAATCCAGCCCTTCGCCAAGTTCGCGGAAGTCCTGGACCTGCGCAAGTCCCAGTCCCTGCCGGGCCTGTCCCGCGCCGGCTGGCAGGGCGACTACCCGTCCCTGTACAACTTCCTCGGGCCTGTCTGGGCAACCGGTGCATCCTCCAACTACGAGAAGTACTCGAACCCCGAGTTCGACAAGCTCCTCAAGGAGGGCCTGGCAGCCAAGACCACCGAAGAAGCAAACGCCAAGTTCAACTCGGCACAGGAGATCCTTTTCGAGGACCTCCCCGGCTTGGCTCTCTGGGATCAGGCAAAGCCGATTGTGTGGAGCAACAACGTTGTGAAGGCCGAAACCGGCTGGAATGGCGGCATCCGCTACTTCGACATCACGGCCAAGTAGMRFTRTSKALGIVAIAALALTGCGAGGGTDDGGTQAGGDPNKVITAYSNEPQNPLLPANTNEVYGGRVVELLFEGLRAYDADGKPVNALAESIETTDSQNWTIKVKQGQKFTNGEEITAKTFVDSWNFAANSKNLQNNGFFFESIAGYEEVSAVTTEKSADGKTTSTPAPTAETMSGLVAKDDSTITVELAQPEADWSLRLGYSAFFPIPSAAIADPKAFGENPVGNGPYKMEKEGAWVHDQSISLVKNPDYSGPRESQNGGVTFKFYTDPGPAYTDLQSDNLDVTDVLPSNALKTYVTDFPDRNATKPVATNSTLNIPGYNPNFHGEAGKLRRQALSYAINREEICKVIFSGTRTPAKAYAPPVIDGFKEGLKGSETLKFDAAKAKDLWAQADAITPYDSSKPLLIASNTDGGNKEWIDAVANGFKNNLGIQAEIQPFAKFAEVLDLRKSQSLPGLSRAGWQGDYPSLYNFLGPVWATGASSNYEKYSNPEFDKLLKEGLAAKTTEEANAKFNSAQEILFEDLPGLALWDQAKPIVWSNNVVKAETGWNGGIRYFDITAKPGPT0021015_933DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-PENTAPEPTIDE_PERCIPITATION|SIGNALLING,PGPT0021015-oppA|mppA-K15580NANA
D1-29_033241764COG0747putative lipoproteinATGCCTCTCAGGCGCCTGATTCAGATCATCACCGGGGCTCTGGCTGCAGCCCTGGTTGTTTCCGGTTGCTCGGGCACCGGGGGAACGGCTCCAGTCACGCTGGGCCAGGCCAAGCGTGGCGGCAGCGCCGTCGTCGCGGAGGTCAATGCCCTTTCATCCTTTAATCCGTTCAGCACCAACGGAAATACGGACATCAACTCCAAAGTCGGCTACATTACCCATTCAGGGTTCTATTACGTGGACGACACCGCCCGGGTGGTCCGCAACGAGAAGTTCGGCAGGTACGAGAAGGTTTCGGACCAGCCCCTGAAGGTAAAGTACACCGTCAACGAAGGCGTCAAATGGTCAGACGGCGAGGCCATTGACGCCGGCGACCTCCTGCTGGCCTGGGCGGCAGGCTCCGGATACTTCGACGACGCCGATCCAATGACCGGCTTAGGCACCAAGTATTTCGCTGTGGCGTCGGATACAAGTGGCCTCGCGACCACGGTTTTTCCAGAAGTGGGCGCGGACGGACGTTCCATCACCCTGGAGTACGCAGCACCGTACGCCGACTGGGAAGTTGCGTTCGACGTCGGGCTTCCCGCTCATGTGGTGGCAGCAAAAAGCGGGCTAAACGACGAGGAAGACCTCATCGAGTTACTCACGGACGCACCCCGCGGCGACAGGGAAAAGCCAGTCCTAAACACCGCGCTTAAGGCCGTCAGCGACTTCTGGAACTCGGGCTTCGATTCCACCGCCCTGCCTGATGACCCGGCGATCTACCTTTCCAGCGGGCCCTACATAGTCAATAACATCGTTCCCGGCGCCTCCGTCCGGCTCGTCAGGAACCGCGACTACGTCTGGGGACCTGAGCCCCACCTTGACGAAATCACCATCCGCTTTACTGGGGCAATGCAGGCAGCCGTTGAGGCTCTGCGCAACGGCCAGGCCGATATCATCTCGCCCCAGCCCTCGGCTGGCACGGAGGCGCTTTTCAGCGGGCTGGAGAGCCAGGGGGCCACCGTGCAGCGGTACAGCCAGTCCGGATACGACCACCTTGACCTGAACTTTTCCGGCCCCTTTGCTGAGGAGAACGTCCGGCGGGCCTTCCTCAAGACAGTGCCACGGCAGGCCATTGTTGACGCGATCGTCGGGTCTCTCATCCCTGACGCAAAGCCCCTGGATTCCCACGTGTTCCTGCCGTCGCAGCCCAAATACCAGGACACGGTGAAGGACAACGGCTCATCCGAATACTCCAAGGTTGACATTGAGGGCGCCAAATCACTGTTGGCCGGAACCACCCCGACCGTGCGGATTCTGTACAACCGCGACAACCCCAACCGTGCAAGGACCTTCACCCTGATCCGTGACTCAGCCGGTCTTGCCGGCTTCCAGGTTATGGACGGCGGGCTCGGCAACGCCGAGTGGGCCAGGGCGCTGGGTGGCGGAGCCCACGACGCAGCGATTCTCGGCTGGATCAGCACCGGAGTGGGAGTCAGCCGCGTTCCGCAGATTTTCCGGACGGCTGCCGGCAGCAACTTCAACGGGTTCTCCGACGGCGATGCGGACAAAGTGATGGAGCAGCTGGCCATCACAACTGACCTCGCCAAGCAGGATGAGCTGATGGCGGAGATTGACAAGCAGGTGTGGGAGAGCGCGTATGGCCTTCCCCTGTATCAGACCACAGGAACCACGGCGTTCAACAGCCGGATCGCTGGTGTGAGGTCCAGCCCAGGCCCGCTGGGCGTCTGGTGGAGTGTCTGGGATTGGCACGCTCTTTAGMPLRRLIQIITGALAAALVVSGCSGTGGTAPVTLGQAKRGGSAVVAEVNALSSFNPFSTNGNTDINSKVGYITHSGFYYVDDTARVVRNEKFGRYEKVSDQPLKVKYTVNEGVKWSDGEAIDAGDLLLAWAAGSGYFDDADPMTGLGTKYFAVASDTSGLATTVFPEVGADGRSITLEYAAPYADWEVAFDVGLPAHVVAAKSGLNDEEDLIELLTDAPRGDREKPVLNTALKAVSDFWNSGFDSTALPDDPAIYLSSGPYIVNNIVPGASVRLVRNRDYVWGPEPHLDEITIRFTGAMQAAVEALRNGQADIISPQPSAGTEALFSGLESQGATVQRYSQSGYDHLDLNFSGPFAEENVRRAFLKTVPRQAIVDAIVGSLIPDAKPLDSHVFLPSQPKYQDTVKDNGSSEYSKVDIEGAKSLLAGTTPTVRILYNRDNPNRARTFTLIRDSAGLAGFQVMDGGLGNAEWARALGGGAHDAAILGWISTGVGVSRVPQIFRTAAGSNFNGFSDGDADKVMEQLAITTDLAKQDELMAEIDKQVWESAYGLPLYQTTGTTAFNSRIAGVRSSPGPLGVWWSVWDWHALPGPT0004430_2836DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_033251380ntaA_2Nitrilotriacetate monooxygenase component AATGACTTCCGCCACTTCCGGATCCGGCCGCAAACTCCACCTCAACGCCTTCCTGATGAGCACCGGCCACCACGAGGCCTCCTGGCGTCTGCCCGAAAGCGATCCGCAGTCAAGCACCAACGTGGAGCACTATCAGCACCTGGCACGAACAGCCGAACACGGCAAGCTGGACTCCATCTTCTTCGCCGACTCCCCCGTGCTCTTCGGCGAGGTGGGCCGCCGCCCCGCCGGGAAGCTTGAGCCCACCGTGCTCCTGACCGCCATCGCCGGCGCAACGGAATGCATCGGCCTCATCGCCACTGCCTCCACCACCTACAACGAACCGTTCAACCTTGCCCGCCGCTTCTCATCAGTGGACTGGGTCAGCGGCGGCCGCGCCGGCTGGAACGTGGTCACCACCGCCGGTCCGGACGCCGCCCGCAACTTTGGCGTGGACGACCAGCCCGCCCACGCGGTCCGGTATGAGCGCGCCGCCGAGTTCATCGAAGTGGCACAGAAGCTGTGGGACAGCTGGGATGACGACGCCGTGCTCGCGGACAAGGCCGACGGCGTCTGGGCAGACTCATCGCGGATCCGCACAGTTGACCATGAAGGCAAGCACTTCAAGGTCCGCGGCCCGCTCAACGTCCCCCGTTCACCGCAGGGGCACCCGCTCATCGTCCAGGCAGGTTCCTCCGAGGACGGCAAGGACCTCGCCGCCCGGTACGCGGACGCCGTCTTCACCGCGCACCAGACCCTCGCAGACGCGCAGGACTTCTACCGCGACCTCAAAGCCCGCACCGCCGCCGCCGGCCGGGACCCGGAAACCATCAAGATCCTGCCCGGCATCGTTCCAGTCATCGGCGCCACGGAAGCGGAAGCCCAGGCGCTGGAACGGGAACTGGACCGGCTGATCAAGCCGGAGTACGCGCGGATCCAGCTCGCGAAGACCCTGCGCGTTGCCCCCGAGGACCTGCCCCTGGACCGCCAACTGCCGGACAACCTGCCCAGCGAGGACGAGATCGAGGGCGCCAAGAGCCGGTACACACTGATCGTCCAGCTCGCCCGCCGCGAGCAGCTCACGGTCCGGGAACTGATCGGACGGCTGGGCGGCGGCCGAGGGCACCGCACCTTTACCGGCACGCCCGTGCAGGTGGCGGATGCCATCCAGGAATGGTTCGACGGCGGCGCGGCGGACGGCTTCAACATCATGCCGCCGGTGGTGCCCTCGGGCCTGGAGGCCTTCGTAGACCAGGTGGTGCCCATCCTGCAGGACCGTGGCCTGTTCCGGACCGAATACAGCGGGCGCACGCTGCGTGAGCACTACGGCCTGGAGCGCCCCGGGAACAGTTACGCCGGATCCGACACCCCCGAACGGGCGTCGATCGGATCAGCGTTCTGAMTSATSGSGRKLHLNAFLMSTGHHEASWRLPESDPQSSTNVEHYQHLARTAEHGKLDSIFFADSPVLFGEVGRRPAGKLEPTVLLTAIAGATECIGLIATASTTYNEPFNLARRFSSVDWVSGGRAGWNVVTTAGPDAARNFGVDDQPAHAVRYERAAEFIEVAQKLWDSWDDDAVLADKADGVWADSSRIRTVDHEGKHFKVRGPLNVPRSPQGHPLIVQAGSSEDGKDLAARYADAVFTAHQTLADAQDFYRDLKARTAAAGRDPETIKILPGIVPVIGATEAEAQALERELDRLIKPEYARIQLAKTLRVAPEDLPLDRQLPDNLPSEDEIEGAKSRYTLIVQLARREQLTVRELIGRLGGGRGHRTFTGTPVQVADAIQEWFDGGAADGFNIMPPVVPSGLEAFVDQVVPILQDRGLFRTEYSGRTLREHYGLERPGNSYAGSDTPERASIGSAFPGPT0003040_16DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091NANA
D1-29_03326576hypothetical proteinGTGAAGGCCCGGTATGTTGCCCGCGAACGGTACCGTGAGCGGCCCGTGACGGAACAGCCGCCGTACTCGATCCTGGCGCGCGGGGTGGAACGCGAAGTGCTGCCGTTGGCCCAGCGCCACAGGCCGGGGGTGCTGCCGTGTAGTCCGTCCCGTCAGCCGGAACGGCACGATCCGTCGTCGGCAGAAAATGCCCGCAAGACGCAGGCGGTTCTGGAACTGACGGAGCTTGCGGAGCAAGCCGGACTGTCACTCATCCATCTGGCCCTCGGCTTCGTGCTGGAGCACCCGGCGGTCACCTCCGCGATCATTGGTCCGCGGACGCTGGAGCAGCTGGAGGGGGCGCTGGGCGCGGACAAAGTGGGCCGGTCAAAGGACGTGCTGGACCGGATCGCCGAGATCGTCCCGCCCGGCACCACCCTGAACCAGGCCGACGCCGGCTATCGGCCGCCGTCGTTGACTGACCCGTTGCTGCGCCGCCGCAGCCGCCGAACCTGGCGGCGCTGGGCCGGGCGGCGGGGGAAGCTCCCGCCGTCGTCCGCCCTGCTGGCTGAACCGGGCAATTGCCGCCTCCTGTGAMKARYVARERYRERPVTEQPPYSILARGVEREVLPLAQRHRPGVLPCSPSRQPERHDPSSAENARKTQAVLELTELAEQAGLSLIHLALGFVLEHPAVTSAIIGPRTLEQLEGALGADKVGRSKDVLDRIAEIVPPGTTLNQADAGYRPPSLTDPLLRRRSRRTWRRWAGRRGKLPPSSALLAEPGNCRLLNANANANANA
D1-29_03327342hypothetical proteinATGAGAAAAATCTTGCAAGTCATGGTTTTCGGGGGCGGACTCATACTTGCCCTCGGGGCCTGCACTCCAACTGAACTGTCGGTGGAGGACACCTGCGCCAAGGTCAAGTCAATCCTCGAAAGCGCGCCCGAAAGCATGGACGACGCGGCTAGGGAGAGAATCGGGGAAGAGTTCAAGAAACTCTCTGAATCGGCTCCGGAGGGCTTCGACGAGCAGCTTAAGATGGTCGGCATTTTCAAAACCTTCGAGATGAGCGACAAGAGCGCAATGATGGGAGAGCCGGGGTTCAATCAGCCCTGGGAGGTGCCTTCCACAAACATCGTCAAGACTTGCGAGCTTTAGMRKILQVMVFGGGLILALGACTPTELSVEDTCAKVKSILESAPESMDDAARERIGEEFKKLSESAPEGFDEQLKMVGIFKTFEMSDKSAMMGEPGFNQPWEVPSTNIVKTCELNANANANANA
D1-29_03328651hypothetical proteinTTGGAGAGTCGATTCCCGGGCAACAAAGAAGCCAGCGAGAAGGGGATCGCGTTCGGGCTCGAACTGGCCCGGCTCTGCAATTTGCAAACGATCGAATCTCTCGAAGCGGCACTTGAAGTTGTGGATGGTGAACAAGTCCTCGCGCTGATGGATGCCAGTGGTCCAGTCACCAGGGTGAGACGGCTCGACGATGAACTTCTTGCACGATTCGGCGAGGATTACATCCGCTTGACGGGAACGGCGGGATCAGTGAGCACCAGAGCCCAACAGTTGGAGTGGAGGTTTGATCGTCTCCGCGGAAAGGCGCGCTACAAGGCCTACTTCATTCATGGGAGCGATCGTCCGGAGGATCTAGAGTCAGGTCCTCACACGGCCGCCCGAGCAGTGCGTGCACTCGCTATTCTTGTTGCACAGGAAAAGGGAGTCGACACAGTGATCAATGTAGAAGGGGTCAGCCGCGCCGACGATTTGCCGAAAGGTGCGCGGGCAAAGGAGGCTCCGGTGAATGCGAATGAATCGATCTGGGTGATCACCAACCTGAACCGTGGGTATTCGGAATTCCTGATGAAAGAACTTCTGGATCGGGTTCCCGACCTGGACCTCGAGGTCGTGAGAGATGACACCGTTGTGGCAGGCAATTCGGGACGGTGAMESRFPGNKEASEKGIAFGLELARLCNLQTIESLEAALEVVDGEQVLALMDASGPVTRVRRLDDELLARFGEDYIRLTGTAGSVSTRAQQLEWRFDRLRGKARYKAYFIHGSDRPEDLESGPHTAARAVRALAILVAQEKGVDTVINVEGVSRADDLPKGARAKEAPVNANESIWVITNLNRGYSEFLMKELLDRVPDLDLEVVRDDTVVAGNSGRNANANANANA
D1-29_03329405hypothetical proteinGTGGCGATTGATTACACCACATGGGATTGGCTGCCCAATGCGGCCGCTGAAATGGAAGCGTATGTTGTCAGGCTTCTTGAAGAGTCCGGAATTAAACCACACGACGTGTCAGCCCGGGCCAAGTCGATCGCATCATTCCAGCGGAAGCAGCAGGCCAAGCGGTATACCGATCCCGTCCAACAAGTAACCGACACTGTCGCGATTCGAATAATCACGTATTCAAATACAGATCGCGAACGGACCAGTGAGCTGATTCGTGGTCGATTTGTCGTCAAAGATGGCGAAGACAGAAATCCAGGCGATGAGAAGCCAGTCCGGCTTCGGGGTACGACTGTCGGCACATTGTCATTTCAGGTGAGGATCCTGGGGCTGAGGCAGATTGGCTGGTATCTGGAGGAAAGCTAGMAIDYTTWDWLPNAAAEMEAYVVRLLEESGIKPHDVSARAKSIASFQRKQQAKRYTDPVQQVTDTVAIRIITYSNTDRERTSELIRGRFVVKDGEDRNPGDEKPVRLRGTTVGTLSFQVRILGLRQIGWYLEESNANANANANA
D1-29_033301092ychFCOG0012Ribosome-binding ATPase YchFATGCTCGTGGCTCTTACTATTGGCATCGTCGGCCTGCCCAACGTCGGCAAATCAACACTCTTCAACGCACTGACCCGGAACCAGGTCCTGGCGGCGAACTATCCGTTCGCCACCATTGAACCAAATATCGGCGTCGTGAACCTTCCGGATCCCCGGCTGAAGCAGCTCGCGGAGATCTTCGGCTCCCAGAGGCTGCTGCCTGCGCCGGTGTCCTTCGTGGACATCGCCGGCATCGTCAAGGGCGCCAGCGAAGGTGAGGGCCTGGGCAACAAGTTCCTCGCCAACATCCGCGAGGCAGAGGCCATCGCCCAGGTTGTCCGCGTGTTCGATGACCCCGATGTCATCCACGTCGACGGCAAGGTTGATCCGCGCTCGGACATGGAAACTATCAACACCGAGCTGATCCTGGCTGACCTTCAGACCATCGAAAACGCCATTCCGCGCATCGAAAAAGAAGTCAAGATCAAAAAGCGTGAGGCCGCCGAATTGGCAGCGATCAAGGCGGCCCAAGCGGTGCTGGAACGTGGCGACACCATCTTTGCATCGATCAAGAGCGACAAGCTGGAGATGGAGCACCTCAAGGAGCTCAGCCTCCTGACGGCCAAGCCGTTCATCTACGTCTTCAATGCGGACGAAGGCATCCTGGGTAGCCCGGACAAGCAGGATGAGCTGCGGGCCATGGTCGCCCCGGCGGATGCCATCTTCCTCGATGCAAAGCTTGAGTCCGACCTCGTGGAGCTGGACGAGGAGGAGGCCCGGGAAATGCTTGAGATGAACGGCCAGGACGAATCCGGCCTCGACCAGCTGGCGCGAGTCGGGTTCCATACCCTCGGTCTGCAGACCTACCTCACCGCGGGGCCCAAGGAAACACGCGCGTGGACCATCCACCGTGGGGACACCGCACCGCAGGCTGCCGGCGTTATCCATACCGACTTCCAGCGCGGCTTTATCAAGGCCGAGGTGGTGTCCTTCACCGACCTCATCGAAGCAGGATCAATGGCGGAGGCGAAGTCCCGAGGCAAGGTCCGTATCGAAGGCAAAGAATACGTCATGGCCGACGGCGACGTGGTGGAGTTCCGCTTCAACGTCTAGMLVALTIGIVGLPNVGKSTLFNALTRNQVLAANYPFATIEPNIGVVNLPDPRLKQLAEIFGSQRLLPAPVSFVDIAGIVKGASEGEGLGNKFLANIREAEAIAQVVRVFDDPDVIHVDGKVDPRSDMETINTELILADLQTIENAIPRIEKEVKIKKREAAELAAIKAAQAVLERGDTIFASIKSDKLEMEHLKELSLLTAKPFIYVFNADEGILGSPDKQDELRAMVAPADAIFLDAKLESDLVELDEEEAREMLEMNGQDESGLDQLARVGFHTLGLQTYLTAGPKETRAWTIHRGDTAPQAAGVIHTDFQRGFIKAEVVSFTDLIEAGSMAEAKSRGKVRIEGKEYVMADGDVVEFRFNVNANANANANA
D1-29_033311215hypothetical proteinATGGATGCATTCGCCCTGATTCTTGCCCTGTTCATGCTGCTGCTTGGCGCGCTGGCCGGCGCCGCCGCTGCCTATCTTTCCTTGCGCCGGCGCAGTTCCGCCCTGGAAGAAGATTTCGACGCCGTCTCGTCGCGCCTTTCGGAGGTGAGCGCCCAGTTTGCAGCCGCTGACGCGGAGCGGCGGCTCCTGTCCTTGCAGAATCGGGAGCTCGGTGAAGCGCGCAGCCAGGACGGGAGCGTGCTCAGGGCCTTGGCGCCCGTCGCGGAGAAGCTGACAGCGGTACAGCAGCAGGTCGCTTTGCTGGAACGGGACAGGCTGGAACAGTACGGGCAGCTTGCCCAGCAATTGCAGGAAGCCAGGTTGTCCGACGAGCAGCTGATCCGCTCCACACATGCCCTGGAATCCGCGCTGCGCTCCAACAGCGCCCGCGGGCAGTGGGGTGAGGTCCAGCTCCGACGGGTGGTTGAGGCCTCGGGCATGCTCCGGCACGTGGACTTCCTCGAGCAGGTTCACAGCGCCGGTGGAGATTCAACAGTCCGTCCCGACCTGGTGGTGCAGCTTCCTGGGGAAAAGCAGCTGGTGGTGGATGCCAAGGTGCCGTTGTCCTCGTACCTTGAAGCGCAGGAACTCGGAGCAGTGACCGGTTCCCCCACGGATCAGGGGCCGAACCACCGGTCCCAGCAGACGCTGCTGGCTGCCCATGCCAAAGCGCTGCGTTCCCACGTGGACGCGCTCAGCACCAAGAAGTACTGGGACATTCCCGGCAACTCCCCCGAGCTGGTGATCTGCTTTATCCCGGCCGAATCAATTTTGGCGGCCGCCCTGATGGCCGATGCAACCCTGCTGGACCATGCATTGTCCCGGAATGTTGTGCTGGCATCTCCCAGCACTTTGCTCGCCGTGCTCAAGTCCGTGGCGTTCACATGGCGCCAGGATGTTCTGACGGACAGCGCCCGGGAGCTCTTTGACCTTGCCCGGCAGCTCTATGAGCGCATGGGAACCCTCGGCGAGAACGTCAGCAAGCTGGGGTCGTCCCTGAAGTCCTCGGTGGATCGCTACAACTCAATGATCGGCACCCTTGAGGCCCGGGTGCTGCCGACGGCACGGAAACTCAACGCGCTTGATGAAACGGGTTTGCTGACACCCGCGGCGCTGGAGGTGACACCGCGGTCCGTTGCTGCTCCGGAGCTCCAGCTGCGCGATACCGCCGCATAGMDAFALILALFMLLLGALAGAAAAYLSLRRRSSALEEDFDAVSSRLSEVSAQFAAADAERRLLSLQNRELGEARSQDGSVLRALAPVAEKLTAVQQQVALLERDRLEQYGQLAQQLQEARLSDEQLIRSTHALESALRSNSARGQWGEVQLRRVVEASGMLRHVDFLEQVHSAGGDSTVRPDLVVQLPGEKQLVVDAKVPLSSYLEAQELGAVTGSPTDQGPNHRSQQTLLAAHAKALRSHVDALSTKKYWDIPGNSPELVICFIPAESILAAALMADATLLDHALSRNVVLASPSTLLAVLKSVAFTWRQDVLTDSARELFDLARQLYERMGTLGENVSKLGSSLKSSVDRYNSMIGTLEARVLPTARKLNALDETGLLTPAALEVTPRSVAAPELQLRDTAANANANANANA
D1-29_033321086ispH2COG07614-hydroxy-3-methylbut-2-enyl diphosphate reductase 2ATGACCTCCACAGCAGTTTCCCTCTCGATGCCGACCGTCCCACGAAGGCGGCGCACCCCCGAGGAAGTATTCGCCGCGGCACCGGTAACCGGTCCCAAGAAGGTCCTGCTGGCCGCGCCCCGCGGGTATTGCGCGGGTGTGGACAGGGCCGTGATCGCCGTGGAAAAGGCGCTGGAGCACTACGGCCCCCCGGTGTACGTCCGGAAACAGATCGTGCACAACGTCCACGTGGTCAGCTCACTCGAGGCCCAGGGTGCCATCTTCGTTGATGAAACCGACGAAGTTCCTGAGGGCGCACTGGTGATCTTCTCCGCGCACGGTGTATCGCCTGCAGTAGTTCAGTCAGCAGAGGATCGCGGGCTGCGGACCATTGACGCCACATGCCCCCTGGTCACCAAAGTGCACAAGGAAGCAGTGCGGTTCGCGAAGGACGACTTCGACATCCTGCTGATCGGCCATGACGGCCACGAGGAAGTTGAAGGAACCGCCGGCGAAGCCCCGGAACACATCCAGATTATTAATGGCCCTCACGAAGTGGACAAAGTCACCGTCAGGGACCCGGAAAAGGTCATCTGGCTCTCGCAGACCACCCTCAGTGTGGACGAAACCATGGAAACAGTCCGGTTGCTTAAGGAACGCTTTCCTACCCTGCAGGATCCGCCCAGCGACGACATCTGCTACGCCACCACTAACCGGCAGGTGGCTATCAAGAAGATCTCGCCGCAGGCTGACCTGGTTATTGTGGTGGGTTCAGCCAATTCCTCGAACTCTGTCCGGCTTGTGGAAGTTGCACTCGAGTACGGCGCCAAAGCCTCGTACCGCGTGGACTTCGCCAACGAGGTGGATGAGGCCTGGTTCGAAGGCGTTGGCACCGTGGGCGTGACGTCTGGGGCATCCGTTCCCGAGGTCCTGGTCAAGGACGTGCTGCGACTCCTGGCCGACTACGGCTACGGTTCCGTGGAAGAAGTTGTCACGGCCGAAGAGGACCTTCTCTTCTCGCTGCCCAAGGAGCTTCGGGCAACGCTGAAAGAGGCCGGCGACGTCAGCCGCGCCCTCGGCGGCCGCCGGTCCCGCGACCAGTCCTAAMTSTAVSLSMPTVPRRRRTPEEVFAAAPVTGPKKVLLAAPRGYCAGVDRAVIAVEKALEHYGPPVYVRKQIVHNVHVVSSLEAQGAIFVDETDEVPEGALVIFSAHGVSPAVVQSAEDRGLRTIDATCPLVTKVHKEAVRFAKDDFDILLIGHDGHEEVEGTAGEAPEHIQIINGPHEVDKVTVRDPEKVIWLSQTTLSVDETMETVRLLKERFPTLQDPPSDDICYATTNRQVAIKKISPQADLVIVVGSANSSNSVRLVEVALEYGAKASYRVDFANEVDEAWFEGVGTVGVTSGASVPEVLVKDVLRLLADYGYGSVEEVVTAEEDLLFSLPKELRATLKEAGDVSRALGGRRSRDQSPGPT0007615_303DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
D1-29_03333852hypothetical proteinTTGCGTACGTTTGTTTCCGCCATTGCCGTTATCCTGGGCGCGCTGTTGTCTGCCGTGGCAGTGCCGTCTATTTGGCTTGACCGCAACATCGTCCAGGAGGATGGCTTTGTGGCGCTGGCCGCTCCGCTCGGCAGGGACGAAGCGTTCCAGCAACGGCTGGCTGCCGCCGCCGTTGGGGCCCTGGATACCAGCAGCATTCCGGATGCGCTGGCCGACGCCGTCCAGCCGGTGCTCGAATCGGCCGCCACGTCTTTGGCCGGGCTGCCCGGTTACCCGGCAGCGTGGGAGGAGACGCTGCGCAGGAGCCATCGCCTGAGCTTCTCGACCGGCGGTTCCCCGATGCCCGAGGCGGGCGCCGCAGCATCCCTTACGCTCGACGTGGCACCCCTGGTGGCGCTGGGAATTGAAGAAATCTCAAGCACCTCCGGATTGCCGTTGGAAGCGCCCGCGGAGACACTGATCGACGTCGGACAGCCCAGCCAGCGCCAGCTGGTGGACGCCCTGCGGGGCTATGCTCCCATGGGGTACGGGCTGGCGGTAGGTGCCGGCATCGCATTTCTGCTGGCGTTGGTGGCCGCCCGACGCCGCGGGGCCGTGATCTTCTCGATGGGCGTTGCCGGCCTGCTGCTGGCCGGACTGTGGACGGCAGGATTGCAGGTGGGCGTCGACGCTGTGCTTAGCACCGGGAGCGGCAATGAACTTGCGGACATGTTCCGGAACGAGCTGGTCGCCGCGTCAGCCGGTGACTTCCGGGCCTGGATTCTGGGGACCGCCATCGCCGGAAGCGCCCTGCTGGTAGCAGGACTTGTGATCCGGATCGCCTCGCCGGGGCGCCGGCCCGCAACCCGGTAGMRTFVSAIAVILGALLSAVAVPSIWLDRNIVQEDGFVALAAPLGRDEAFQQRLAAAAVGALDTSSIPDALADAVQPVLESAATSLAGLPGYPAAWEETLRRSHRLSFSTGGSPMPEAGAAASLTLDVAPLVALGIEEISSTSGLPLEAPAETLIDVGQPSQRQLVDALRGYAPMGYGLAVGAGIAFLLALVAARRRGAVIFSMGVAGLLLAGLWTAGLQVGVDAVLSTGSGNELADMFRNELVAASAGDFRAWILGTAIAGSALLVAGLVIRIASPGRRPATRNANANANANA
D1-29_033341326xseACOG1570Exodeoxyribonuclease 7 large subunitATGTCTGACCCCGCAGCCTTGCCGGGCATGGCGGCCACCACGCTGCCTGCCACGGCCGCCGAAACAAGCCCGGACAATCCCTGGCCTTTGCAGCTGCTGTCCCAGAAGCTGAAAGCCCACATCGACCGGACTCCTTCGGCTTGGGTGGAAGGCCAAGTCATCGAACTGAGCCGGCGCGGCACAAACGCCTATCTGACGCTGCGGGATGTGGACGCAGAAGTTTCGCTGCCTGCATCGGTATGGTCCAAGATCCTTGACCGGCAGAACATGCCCCTGGAGCGCGGTTCCCGCGTTGTCGCCTTGCTCAAACCGGAGTTTTGGCTGAAAACAGGCCGCCTGAACATGCTGGTCCGGGACATCAGGCCCGTGGGATTGGGTGACCTCCTGGCACGGATTGAGCGGCTTCGCCAGGCCCTCTCCGCCGAAGGTCTCTTTGCCGATTCCCGCAAGAAGCCGCTCCCGCTGCTCCCCCACCGCATTGGGCTGATCACCGGACGTGATTCGGACGCGAAAAAGGACATCCTCCGCAACGCTGCGCTGCGCTGGCCCGCCGTCGAATTCGAGCTGCGCGAAGTTGCCGTCCAAGGCAACGCGGCGGTATCGCAGATTATCAGGGCTCTTCGGGACCTTGACGGGCGCCCCGATGTTGATGTCATCGTCATAGCCCGCGGCGGCGGCGCCCTGGAGGACCTGCTGCCGTTCAACAGCGAAGAATTGATCCGGGCGGTTGCCGCGGCGGCCACTCCGGTTGTCAGCGCGATCGGGCATGAAGCAGACCGTCCGCTGCTTGATGATGTAGCGGACCTGAGGGCCTCCACCCCCACCGACGCCGCCAAGCGGATCGTACCGGACGTGGCGGAGGAGCTGGCCGGCGTGCGCCAGGCCCGGGATCATTTGCGCCGATCAATCGGCCGGCTGGTGGACAGGGAGACGGACCGGTTGTCCTCGCTTCATTCGCGACCGGTCATGGCTGCACCCGAGGGGATGATCACGCTCCGTGCCGAAGAGGTGGAACGGCTCTTGCGGCGGGCATCCGCCGCAGTAAGTTCCACAGTGGTCAGGGCGGCAGACCAACTGGTCCACCTGCAGGCCCAGGTGCGGTCACTGTCACCGCAAAATACCCTGGACCGGGGTTATGCGGTGGTGGAGCTGGCCGGCCGGCGCGCGGCAACCGAAGACAACCCTTCCGGCCATTCGGTGGTCCGGGACCCCTCCGAGGCGCCCACCGGAACGCCGCTCAAGGTACGCGTTGCCCTCGGACAATTTGGGGCTGCATCCACGGGCCCCATTCAGCAAGGAATTAAACAAGGAGAAGCACATGACTGAMSDPAALPGMAATTLPATAAETSPDNPWPLQLLSQKLKAHIDRTPSAWVEGQVIELSRRGTNAYLTLRDVDAEVSLPASVWSKILDRQNMPLERGSRVVALLKPEFWLKTGRLNMLVRDIRPVGLGDLLARIERLRQALSAEGLFADSRKKPLPLLPHRIGLITGRDSDAKKDILRNAALRWPAVEFELREVAVQGNAAVSQIIRALRDLDGRPDVDVIVIARGGGALEDLLPFNSEELIRAVAAAATPVVSAIGHEADRPLLDDVADLRASTPTDAAKRIVPDVAEELAGVRQARDHLRRSIGRLVDRETDRLSSLHSRPVMAAPEGMITLRAEEVERLLRRASAAVSSTVVRAADQLVHLQAQVRSLSPQNTLDRGYAVVELAGRRAATEDNPSGHSVVRDPSEAPTGTPLKVRVALGQFGAASTGPIQQGIKQGEAHDNANANANANA
D1-29_03335219xseBExodeoxyribonuclease 7 small subunitATGACTGAAGCAACCCCGGGTTCCGATATTGATGGCCTGAGCTATGAGGAAGCCAGGGAGCGGCTGATTGAAGTAGTCGCCAAGCTTGAGGCCGGCGGCGCCAGCCTGGAAGAATCCCTGGCCCTGTGGGAACGGGGAGAAGCACTTGCCAAACGCTGCGAGGAGTGGCTCGAGGGAGCCCGGAAGCGCCTGGCAGCTGCCCGCGACCAGCCGCTGTAGMTEATPGSDIDGLSYEEARERLIEVVAKLEAGGASLEESLALWERGEALAKRCEEWLEGARKRLAAARDQPLNANANANANA
D1-29_03336855COG2326Polyphosphate:AMP/ADP phosphotransferaseATGGCCCGCGTGGTTGACTTCACCAAACACCCTTCCAAGACGCTGAAGGTTGGTAACGGATTTGCCCTTGCGGACATGGACCCCGATGCCACACCCGGGTTCAGCGGGCTGAAGGCGGACGGGAAGGCTCTCCTGGCCGATCTGGACGGAAAACTGGCCGAGTACCAGGAGAAGCTGTTTGCGGAATCAAGGTTCGGCGGGACCAAGCGGCTGCTGCTGATCCTGCAGGGAATGGATACTGCCGGCAAGGGCGGCATCGTCAATCATGTGATGGCTCCGATGGATCCGCAGGGCGTCCAGTTCAAGGCTTTCAAGGCCCCCACCCCGGAAGAGAAGTCCTATGACTTCCTCTGGCGGATAGAGAAGGAGGTGCCGGCAGCCGGAATGGTGGGCATCTTCGACCGTTCCCAGTATGAGGACGTCCTGATTCACCGGGTCCATGGCTGGACACCTCCTGAAGAGCTGAAGCGCCGGTATGTAGCCATCAACGAATTCGAGGCCCGGCTGACCGATTCGGGAACGAAGATTGTTAAGGTCATGCTCTACATCAGCCGGGATGAGCAGAAGGCGCGCCTCCTGGCCCGGCTGGACAACCCGGCCAAGCATTGGAAGTACAGCCGCGGTGACCTCGACGAGCGAGCTTTTTGGGCCGACTACATGGCGGCGTACCAGGCCGCCATCGACGAGACAAACACCGAGGTGGCGCCGTGGCACGTGGTGCCGGCCAACAAAAAATGGTTTGCCCGGATCGCCGTTCAGCAATTGGTGCTCGGCGCGTTCGCAGACCTGCACCTGGAGTGGCCCAAGGCGGATTTCGACGTCGCGGTGGAGCGGGAGATCGTGGAAAGGTCCTGAMARVVDFTKHPSKTLKVGNGFALADMDPDATPGFSGLKADGKALLADLDGKLAEYQEKLFAESRFGGTKRLLLILQGMDTAGKGGIVNHVMAPMDPQGVQFKAFKAPTPEEKSYDFLWRIEKEVPAAGMVGIFDRSQYEDVLIHRVHGWTPPEELKRRYVAINEFEARLTDSGTKIVKVMLYISRDEQKARLLARLDNPAKHWKYSRGDLDERAFWADYMAAYQAAIDETNTEVAPWHVVPANKKWFARIAVQQLVLGAFADLHLEWPKADFDVAVEREIVERSPGPT0002695_494DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753NANA
D1-29_033371221aspC_1COG0436putative aspartate aminotransferaseATGGCAGAATTCAAGCAGTCCACCAAGCTTCATAACGTCCTTTACGACATTCGTGGACCGATTCTTCAGGCAGCCCAGCAAATGGAGGCGGAGGGTCACCGGATCCTCAAACTGAACATCGGAAATCCCGCGCCGTTTGGGTTTGAAGCGCCGGACGCAATCCTGGTGGACATGATCCGCCATCTGCCGCACGCCCAGGGCTACAGCGACTCCCGGGGAATCTTCTCCGCACGCACCGCTGTCTCGCAGTACTACCAGACCCGCGGAATCCAGAACATCCATGTCGATGACGTGTACCTCGGCAACGGGGTGAGTGAACTCATCACCATGTCCCTGATGGCCTTGCTGGACGACGGCGACGAGGTCCTGATCCCTACGCCTGACTACCCCCTGTGGACGGCGTCGGTTGCACTCGCCACCGGCAAGCCGGTGCATTACCTCTGTGACGAAGAATCCGGCTGGCAGCCGGACCTTGAAGACCTGGAAGCCAAGATCACGCCGCGCACCAAGGGAATCGTGGTCATCAACCCGAACAACCCCACCGGGGCGGTGTACCCCGAGCAGACCCTGAAAAAGATCGTAGCGCTGGCTGAGAAGCACGGGCTGGTGCTTTTCGCCGACGAAATCTACGAAAAGATCCTCTACGAGGACGCCCAGCACATCAACCTCGCGTCGCTGACGGGTGACCACGTGCTCTGCCTGACGTTCAGCGGACTGTCGAAGGCGTACCGGGTGTGCGGGTACCGCGCTGGCTGGATGGCCATTTCGGGCCCGAAGAAGGACGCAGCCGATTATCTGGAGGGCATCAGCCTCCTCGCCAACATGCGGCTCTGCGCCAACGTCCCCGCCCAGCACGCCATCCAGACGGCGCTGGGCGGCTACCAGAGCATCAACGACCTCATCCTGCCCGGCGGACGGCTGCTTGAACAGCGCAACAAGGCGTACGACATGCTCAACGCCATCCCGGGTGTGAGCACCCAGCAGGCCAGGGGCGCACTGTATCTGTTCCCTCGCCTTGATCCTGAGGTTTTCCATATCCGGGATGACGAGAAATTTGTCCTGGACCTGCTCAGGGAACAGAAAATCCTGGTCTCGCACGGCCGGGCCTTCAACTGGGTGCGTCCGGACCACTTCCGGATGGTCACCCTGCCCAACGTCAAGGACATTGAAGAAGCTGTGGGGCGCATGGGGGACTTCCTTAGCAGGTATCAGGGGAACTAGMAEFKQSTKLHNVLYDIRGPILQAAQQMEAEGHRILKLNIGNPAPFGFEAPDAILVDMIRHLPHAQGYSDSRGIFSARTAVSQYYQTRGIQNIHVDDVYLGNGVSELITMSLMALLDDGDEVLIPTPDYPLWTASVALATGKPVHYLCDEESGWQPDLEDLEAKITPRTKGIVVINPNNPTGAVYPEQTLKKIVALAEKHGLVLFADEIYEKILYEDAQHINLASLTGDHVLCLTFSGLSKAYRVCGYRAGWMAISGPKKDAADYLEGISLLANMRLCANVPAQHAIQTALGGYQSINDLILPGGRLLEQRNKAYDMLNAIPGVSTQQARGALYLFPRLDPEVFHIRDDEKFVLDLLREQKILVSHGRAFNWVRPDHFRMVTLPNVKDIEEAVGRMGDFLSRYQGNPGPT0001880_947DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0001880-alaA-K14260NANA
D1-29_03338933hypothetical proteinATGCGAAAACCCCTCTGGGCCGGACTGGCCGCCGCAACGCTGCTGCTCTCGGCAGCGTGCACAGGAGCGCCTGAAGAAACCCCCACCGGCAGCAGCAGCTCGCCTGCTGCTGCCCTGACAGTGGGCAGCCCCACCCTGGACACGGCCACGTCGGCGGAAACCCAGATCGTCGCGGAAATTTATGCCGGCGCCCTGGTGGCCGCCGGCGTTCCTGCCACAACCGCGCCGGACGTCGGACCCCGGGAAACGTATCTTAAGGGACTCAAAGACGGCACCGTTGATGTGGTGCCTGACTATTCAGGAAGCCTGCTCGCGCATGTGGACCCGCAGGCGTCAGAAGATTCAGCTGATGACATCTACAAGGCACTGACGGGCACGCTGCCGGAGGGGCTGGCCGTCCTGGAAGCGTCCAAGGCGGAGTCGAAAGACGCCATGGTGGTCACCAAGCTCACGGCCGAGAAGTACCAGCTGAAGTCAATCGAGGATCTGGCCAAGGTATGCAAGGACCTGGCCATGGCCGCACCAACCACCTTCGATGCACGCCCCGATGGCCTTCCCGGGCTCAAAGCGGACTACGGTTGTGAATTCAAGGCCTTCAAGCCCTCTCTTGACGGTGGCGGCAATCAAACGCTGCTCGCGCTGCTCACCGACGACGTCCAGGTTGCCGACATTTACACCACCATGCCCTCCATCGCGGACAATGACCTGGTGGTGCTGGAGGATCCTAAAAACAACTTCAAAGCGCAGCAGGTCCTGCCGGTTTATAACAAGGAAAAGCTGACAGACAAGGCGAAAGATGCGCTCAATGCGGTCTCCCGGCTCCTGACCACGGAGGACCTCGTGGATCTCAACAGGGCAGTCAGCGGCAGCCAGAAACAAAACCCGAAGGACGCTGCCGCCGCGTGGCTGAAGGACGAAGGAATCGTCAAGTAAMRKPLWAGLAAATLLLSAACTGAPEETPTGSSSSPAAALTVGSPTLDTATSAETQIVAEIYAGALVAAGVPATTAPDVGPRETYLKGLKDGTVDVVPDYSGSLLAHVDPQASEDSADDIYKALTGTLPEGLAVLEASKAESKDAMVVTKLTAEKYQLKSIEDLAKVCKDLAMAAPTTFDARPDGLPGLKADYGCEFKAFKPSLDGGGNQTLLALLTDDVQVADIYTTMPSIADNDLVVLEDPKNNFKAQQVLPVYNKEKLTDKAKDALNAVSRLLTTEDLVDLNRAVSGSQKQNPKDAAAAWLKDEGIVKPGPT0013595_1599DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845NANA
D1-29_03339900hypothetical proteinATGAACGTGCAGCGTACGCTTCCGCAGCGCGGCCTGCCCACAGTGGGTGCCTGGTGCTTCCTGGACAACTTCGGCCCGGACCGGACGGCCATGTCCGTACTTCCGCACCCGCACATCGGGCTGCAGACCGTCACCTGGCCCCTGGCCGGGAACATCCGGCACCGGGACAGTGTGGGCAGCGACGTCGTAGTCCGTCCGGGTGAGCTGAACATCATGACGGCAGGCAACGGAGTCTCCCACTCAGAGTTCGCCGTCCTGGCAGATCCTGACGGCCAGCTTCCCATCCAGCGCGGCCTGCAGTTATGGGTGGCGCTTCCCGACGGGCAACGGCACAGGGAACCGGCCTTTGAGCAGTACCGGGAGCTGCCTTCCGTCACGGGCGAGGGGTTCACCGCCACCGTGATGGTGGGCGAATTCGCCGGCGCGGTTTCCCCCGCCACGATGTACTCACCCATTGTGGGCGCTGACGTCTCGTGTGCCGGGCGTGCCGTCTTGCCGCTCAATGCGGACTACGAACATGCCCTTTTAGTGCTCGACGGCGGTCTGACGCTGGACGGCCAGGAGATCCTGCCCGGGCCCCTGGGCTACCTTGGCACTGGCCGTCCGGCGCTTGAGGTGCAGGCGCTGCCCGGCACGCGGTTCCTGCTCATCGGCGGGGAACCCTTCCAGGAAGAGCTCCTGATGTGGTGGAACTTTGTGGGCCGTGCCCACGACGAAGTGGAACGGGCACGTGAAGACTGGGAGGCCCAGGGGCAGCTCCCTGACGGCCAGGCCCGCGGCTCCCGGTTTGGATTGGTCGAAGGACATGGTCCGGAGGCGGGGGCGGAGGCAGGCCGTATTCCTGCTCCCCCGCTGCCGGCGATTAGGCTGACCCCTCGAAAGCGTGCCGCCCGGCCCTGAMNVQRTLPQRGLPTVGAWCFLDNFGPDRTAMSVLPHPHIGLQTVTWPLAGNIRHRDSVGSDVVVRPGELNIMTAGNGVSHSEFAVLADPDGQLPIQRGLQLWVALPDGQRHREPAFEQYRELPSVTGEGFTATVMVGEFAGAVSPATMYSPIVGADVSCAGRAVLPLNADYEHALLVLDGGLTLDGQEILPGPLGYLGTGRPALEVQALPGTRFLLIGGEPFQEELLMWWNFVGRAHDEVERAREDWEAQGQLPDGQARGSRFGLVEGHGPEAGAEAGRIPAPPLPAIRLTPRKRAARPPGPT0019980_288DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
D1-29_03340969murKCOG2971N-acetylmuramic acid/N-acetylglucosamine kinaseGTGACTGACACCCAACTTCCCAGCTCCTCTGCCGCAGCAAGTTTCCCTGAAGAGCGGATACAGCCAGCGATTGCTCCGGGCCCGTTGGTGGGAACAATCATTGGCCTTGATATTGGCGGGACCAAAACCCATGGTGTCCGGTTTGAGGATGCCATTGCCGTGGCCGATGCGTCTGCCGGTAGCTCGAATGTCCAGAACGTCAGCCGTGAAGCGGCGGCCGTCAATCTCGCCGAGCTGTTTGCGAAAATAGGCGGCGGCCACGTGTCCCAGGTTTATGCGGGTGCCGGCGGGATAGACACAGACGACGACGCCGCGGCGCTCGCCGCGCTGATCGAACCGCACGTTCCCGGTGCGAGGATCCGCGTGGTTCACGACTCGCGGCTGCTGCTGGCCGCAGGCCGTGTCAGCACCGGAGTGGCCGTGATAGCTGGAACGGGATCGGCTGCCTGGGGTAAGAACGCGGCCGGGGACGAGGCCAGGGCCGGCGGCTGGGGGTATCTGCTGGGCGACGAGGGCAGCGGTTATTGGCTGGGACGGGAAGCCGTCCGGCACAGCCTGCGCAGGATGAACCAGGGGCTGCCTGCCGATCAGCTCACCGAAGCCTTGCTGGAGTCATGCGGTATTGATGATGCCAACCGGCTGATCGCCATGTTCCATTCTCCTGATACCGGCCGCCGCTTCTGGGCCCAGCAGGCGCGTCTCGTAGTGGAAGGCGCTGCGGCGGGGCACGCGGTGAGCCAGCAGTTGCTCGACCAGACGGGCAGCGACCTTGCTGCGCTGGCTGCCCAGGCACTCCGGAAGCTAGGCATTGATGGCCCTGTCATTCTTGGCGGTGGCCTTGGAATGAACGTAGCCGCACTCCAGGACGCCTTCCGTAAGCATCTTGCCGCCGCCGGAATTACCGATGTCCGTGTGCTGGACCAGGAGCCGGTGTTCGGCGTCCTGCAGCTTGTGGCGGAGGACGAGTAGMTDTQLPSSSAAASFPEERIQPAIAPGPLVGTIIGLDIGGTKTHGVRFEDAIAVADASAGSSNVQNVSREAAAVNLAELFAKIGGGHVSQVYAGAGGIDTDDDAAALAALIEPHVPGARIRVVHDSRLLLAAGRVSTGVAVIAGTGSAAWGKNAAGDEARAGGWGYLLGDEGSGYWLGREAVRHSLRRMNQGLPADQLTEALLESCGIDDANRLIAMFHSPDTGRRFWAQQARLVVEGAAAGHAVSQQLLDQTGSDLAALAAQALRKLGIDGPVILGGGLGMNVAALQDAFRKHLAAAGITDVRVLDQEPVFGVLQLVAEDEPGPT0018875_273DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018875-gspK-K18676NANA
D1-29_03341987gltC_2HTH-type transcriptional regulator GltCATGGATGCCGATCACAAGCAACTGGTGCAACTGCTCCCGCTGTTGCCCTTGCTCGCCGAACTGGGCCGCACACAGCACGTCACTGAAACTGCTGAACTTCTGGGGGTACCCCAGTCCACGGTCAGCAGGGCACTCAACCGGGCCAGCGCCGTGGTTGGAACCGAACTGCTGATCCGGGATGGAAGGGGTGTCCGCCTCACCACCGCGGCGAGGACATTGCTGCCGTACATCGAGTCGGCCCTCGCCGAGTTCCAGGCGGGACTGGACCTGGTCCGGCACGAGTCTGACGTGGTGCGTGGGAAGGTTGCCGTCTCCTTCCAGCACACCTTCGGCGAGGCCGCCCTGCCCCTGCTGATCAGTGCTTTCCGAAGCCGCCACCCGGAGGCAGGTTTTACCTTGAGCCAGGGATCACGCGACGGTTGCCTGGCAGAGCTGGCAACAGGCCAGGCGGATCTGGCACTCACGGCTCCGGTGGCCATGGCAACAGGCACCGTCTCATCGGCTGCCCTGTACCGTGAACCGCTCCGCCTGGTGGTGCACCATCAGCATCCGCTGGCGGGCAGTCGCAGCGCAGGACTGCAGGATATCCGCAGAGACCCCTTTGTTGCACTTGGCCCCGGCTATGGCCTGCGGTCACTAACAGATGCAATATTCCGCGACGCCGGTTTCCGGCCACGGATCGCCTTCGAAAGCCAGGATTCCCACACAGTCCGCGGGCTGGTGTCTGCAGGGCTGGGCGTCAGTATCCTGCCGCCGGGCGGGAACGCACCCGGACGGCACGTGAGCCCGGAAACGGGCGATCTGGGATGGGTTGAACTTGCCCTTGAATCCGCTCTCGCCTATCGGGAGATCGGGCTGGCATGGCGGCGCCGCAAGCCCGGTCCCGGCGCTGAATCTGATCCTGTCCGGCTTTTCCGGGAGATGGTGCTTGAAGACGGCCCGCGGCTGCTCGCCGGGCTGGTCAGGGAACGTTCACAAAGCGACTGAMDADHKQLVQLLPLLPLLAELGRTQHVTETAELLGVPQSTVSRALNRASAVVGTELLIRDGRGVRLTTAARTLLPYIESALAEFQAGLDLVRHESDVVRGKVAVSFQHTFGEAALPLLISAFRSRHPEAGFTLSQGSRDGCLAELATGQADLALTAPVAMATGTVSSAALYREPLRLVVHHQHPLAGSRSAGLQDIRRDPFVALGPGYGLRSLTDAIFRDAGFRPRIAFESQDSHTVRGLVSAGLGVSILPPGGNAPGRHVSPETGDLGWVELALESALAYREIGLAWRRRKPGPGAESDPVRLFREMVLEDGPRLLAGLVRERSQSDNANANANANA
D1-29_033421317ynfMInner membrane transport protein YnfMATGTCAAAGAATCCGCCACTCCCGGGGTTGCCGGCCACGGCAGATCCATCCTGGACGGGCCACCCGAAGGGCTCACGGGCGTACGGAAGGATCATCGCCGGGCTGGGCTTTGCCGGTGTGGCAACATTTGCCCAGCTGTACTCAACCCAGGCAGTCCTGCCCCTCATGGCAGCGGATCTGCAGATCACCCCGGCCGAAGCGGCGCTGACCATTTCGCTGGCAACCGTGGGGCTGGCCGCTACCGTCCTCCCGTGGTCCTTCCTGGCTGACCGCATCGGCAGGGTGCGGGCCATGGCCCTGGCGATTTCAGCAGCCACCGCCCTGGGCCTCATCGTGCCACTGGCCAGCAGCTTCGGAATGCTGCTGGGCCTCCGGCTTCTGGAAGGCATGGCACTGGGCGGTATCCCAGCCATCGCCATTGCCTACCTTAATGAGGAGGTTAATAGGGCGCACACCGCCCTGGCCGCCGGCGGCTACATTGCCGGCACCACCCTGGGCGGTCTCGCAGGCCGGCTGGTGGCCGGGCCGGCAGGCGAGCTGTGGGGATGGCGCGCCGCCGCCCTGGCCGTATCCTTGCTGGCGACCACAGCAGCGGTGCTGTTCCTCATACTGGTGCCCAAGGCCAGAGGCTTCACCCCTGCAAAAGCCACGGGACTGCGCGGTGCCGTTGCAATCATTGCCGGCCATGTGCGGACGCCAAAGCTGCTGGCACTCTACGTCCAGGCCTTCCTGCTGATGGGCGGCTTTGTGGCTGTCTACAACTACCTTGGTTTCCACCTCTCCAGTGAGCCCTTCAGTTTGCCTGCCACGATTATCAGCCTGATCTTCCTGGCTTACCTTTCCGGAACCGTCTCCTCGCGCTGGGCGGCTGGACTGACACAGCGTTTTGGCCGGCGGAACGTCCTGCTGGCAGGAATCCTCCTGATGGTCTTGGGGCTCGCCCTGACGCTGACCCAACTGCTGGCACTAGTCCTGGCCGGCCTGTTGGTTTTCACCGCGGGCTTCTTTGCCGCCCACAGCATCGGCGCCGGCTGGACGGGCAACATTCCCACGACAGGCAGGGCCCAGGCGGCGTCGCTGTACAACCTGGCCTACTACGTCGGTTCAAGCGTTATCGGCTGGGCAGGGGGCCTGGTGTTCCAGTCCCTTGGCTGGACGACGATGGCCGTGGCCGTCATGGTGCTGGCCTGCCTGGCTGCGGTGATCGTCGCCGTCGTCCATCCACGGCAGGAGGGACAGCGTGGGTTTGGCCGATGGCGCACCAGGAAGCGGCGGTATGGAGAGTTGAACGATCTGCCCGCAAAGGGCTGCATCTGAMSKNPPLPGLPATADPSWTGHPKGSRAYGRIIAGLGFAGVATFAQLYSTQAVLPLMAADLQITPAEAALTISLATVGLAATVLPWSFLADRIGRVRAMALAISAATALGLIVPLASSFGMLLGLRLLEGMALGGIPAIAIAYLNEEVNRAHTALAAGGYIAGTTLGGLAGRLVAGPAGELWGWRAAALAVSLLATTAAVLFLILVPKARGFTPAKATGLRGAVAIIAGHVRTPKLLALYVQAFLLMGGFVAVYNYLGFHLSSEPFSLPATIISLIFLAYLSGTVSSRWAAGLTQRFGRRNVLLAGILLMVLGLALTLTQLLALVLAGLLVFTAGFFAAHSIGAGWTGNIPTTGRAQAASLYNLAYYVGSSVIGWAGGLVFQSLGWTTMAVAVMVLACLAAVIVAVVHPRQEGQRGFGRWRTRKRRYGELNDLPAKGCIPGPT0017201_239DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0017201-ynfM-K08224NANA
D1-29_03343504lrp_1COG1522Leucine-responsive regulatory proteinATGAGCACCAACGCGAAGAACATCCGGCCGGGGACGCACCTTGAGCCCCTGGATGCCATTGACGAGCGGCTCCTGGCAGCTCTCGTGGACGACGCCAGGATCTCCAACAAGCAGCTGGCCGAACTCGTTGGCATCGCCCCGTCCACGGCACTGATGCGGACCAGGGCGCTGTCCGAACGCGGGATTGTCCAGGGCTTCGAAGCCAAACTCAGCCTCTCGGCGATTGGCAGGTCGGTCCAGGCGCTGGTCGCTGTCCGGCTCAGGGCCCATGACCGCGACCAGATCGACCGCTTCACCGCACGCGTCCCACACCTGCCGGCTGTACTGTCCACTTTCCACACATCCGGCTCTGTTGATTACCTCCTGCACATCGCCGTGGCCAGCACCGAGGACCTGCGGGACTGGGTCCTGGACAACCTGGCGACAGACCCTGTGGTGGGTCACACGGAGACCACCCTCGTCTTCGACCATATCCAGGGAAACCACGGCCCCCTGCCGGACTAAMSTNAKNIRPGTHLEPLDAIDERLLAALVDDARISNKQLAELVGIAPSTALMRTRALSERGIVQGFEAKLSLSAIGRSVQALVAVRLRAHDRDQIDRFTARVPHLPAVLSTFHTSGSVDYLLHIAVASTEDLRDWVLDNLATDPVVGHTETTLVFDHIQGNHGPLPDNANANANANA
D1-29_033441248hypothetical proteinATGACCGTCTTCAGTGAGCTCCGCATGCGCCCGGCTACAGCCGCGCGCTGGGGCTGGGATGCCTCCATTACGTCACGCCTGGTGATGGCGGGATCAGTCATCTTCACTTTGCTCGTGGGAGCAAACCTCGCCACACCCCTGTATCCGCTGCTGCAGGCAAACCTTGGGCTCTCGCCAGTAGCCATCACCACTGTTTTTGCCAGCTACGTCCTGGCTCTCGTGACAACGTTGATGGTCGCCGGACACTGGTCGGACCACATCGGCCGGAGGGCCGCCCTCATTCTCGCAGTCCTCGCCGGGCTGGCCGGAGGCTGGGTCTTTGCCCAGGCTGACAGCCTTGCCGCTCTGTCCGCTGGCCGGGCCCTGCAGGGCGTGGCCGTGGCCCTGGCCACGGGAGCAAGTGCTGCGGCGCTGCGTGAGCTGCTCCCGTCCCGCCCCGAGTGGGCGTCCCGTTTCACGTTGCTCGCCTCGGCCGGTGGGGTTGCTTTAGGGCCCGTTATCGGCGGCTTCCTGTCCATGCTGCCAGGCCCCACCACCGCACCGTACTTTGTGCATTCAGCAGTCCTTGCCGGGATGCTCGTTCCGCTGTACCTCCTCCGTGCCCGCCCTGCCATCCACCCACCGTCCGGACGGAGGCCGATCACGGCCCTGGCGCCACGCAGGCCGACGGTATCCGTTGAAGCGAGGGGCGCCTTCTGGCTGGCGTCCGCCGTCGGCTTCCTCAGTTTTGCCGTTTTCGGCTTTTGCCTGTCCCTGGCACCTGGATATTTTGCCCAAGTCGTGCAGGCTGACTCCCGCCCGGTGCTCGGTGCCCTTGCAGGTCTTACCCTGGGCGCCTCGGCCCTCAGCCAGTTGTTTGCTGTACGGGGGCGCTATGTGGCCCCGGCCGGCCTCGCCGTACTGGGTGTGTCCCTGCTGTTTCTGGCGGCCGCAGCGGCATGGAACAGCCCCCTGTTGCTTGTTGCGGCCAGTATCTTTGCAGGCTTCGGCCAGGGAGTGGCCTTCAACAAAGTCTTCAACGACCTTGCCGGCAAGGTGGAATCTTCCCGGCATGCCCAGATCATCAGCACCGTGTACATGATCACGTACCTCGGGAGCGCCGTGCCGGTACTTGGCTTGGGATGGGCCACAGCTGCGTTCGGCTTCCAAACCCCGGCCACCGCTTTTGTGCTGCTGTGCAGCGCTTCAGCCCTGGTGCTCTCCGCCGTGACGCTTCGGACCGCTATTCGGTGTCGGACCGCCATTTGAMTVFSELRMRPATAARWGWDASITSRLVMAGSVIFTLLVGANLATPLYPLLQANLGLSPVAITTVFASYVLALVTTLMVAGHWSDHIGRRAALILAVLAGLAGGWVFAQADSLAALSAGRALQGVAVALATGASAAALRELLPSRPEWASRFTLLASAGGVALGPVIGGFLSMLPGPTTAPYFVHSAVLAGMLVPLYLLRARPAIHPPSGRRPITALAPRRPTVSVEARGAFWLASAVGFLSFAVFGFCLSLAPGYFAQVVQADSRPVLGALAGLTLGASALSQLFAVRGRYVAPAGLAVLGVSLLFLAAAAAWNSPLLLVAASIFAGFGQGVAFNKVFNDLAGKVESSRHAQIISTVYMITYLGSAVPVLGLGWATAAFGFQTPATAFVLLCSASALVLSAVTLRTAIRCRTAINANANANANA
D1-29_03345498hypothetical proteinTTGAACAACCTGGACCCCACCGATCTGAAAATCCTGCTGGAACTTATCCGCGATCCCCGTATCCAGATCGGTGAGCTCAGCGAGGCATTGGGGATAGCCCGGAACACAGCACAGTCGCGGGTTCGGCGGATGCTCCGCACCGGCATTCTGCACGACGGCGGCAGGGAGATCGACCTCGAGGCCGTCGGCTACGACGTGGTGGCCTTCGTGACGATCAAAGTGACACACCGTGAGCTGGACGGTGTGGTGGGCGCACTCCGGCTCCTGCCCCAGGTCCTGGAGGTGCATGAGATCTCGGGCCGCGGAGACGTCTGGTGCCGCGTGGTGGCCATGGATACCCACAACCTTCAGGCTGCCCTGCGGCAGATTCTTCGCATCAAGGGCGTCATTCGGACAGAAACAGTCCTGGCCCTGCATACTCATATTCCATACCGGACCGAACCGCTCATCAGCCGTCTTGCACAGACGGGGGCAAGCCAGCCAACACGGGCACAATGAMNNLDPTDLKILLELIRDPRIQIGELSEALGIARNTAQSRVRRMLRTGILHDGGREIDLEAVGYDVVAFVTIKVTHRELDGVVGALRLLPQVLEVHEISGRGDVWCRVVAMDTHNLQAALRQILRIKGVIRTETVLALHTHIPYRTEPLISRLAQTGASQPTRAQNANANANANA
D1-29_03346426hypothetical proteinATGGACTGGCTCTCATACATATCGCAGATCAACTGGCTGGCCGTGCTGCTGGCCTTCATCGCCAGCATGGCCATCGGCTTTGTCTGGTACATGCCCGCCGTGCTTGGCAACAGGTGGATGGCGGCGATCGGAAAGACTGAAGAGGACCTAAAGAACATCAGCGGCGGCGCCGGGATCTGGGTTCCGATGATGGTTGCCGCTGCTCTTACTGCCATCCTGCTCGCCGTCCTGATCAGCAAACTCGGCCTGGACAACGCCTTGGCCGGCGGCTGGTTCGCACTGGTCCTGGCCCTCGTATTCCGCGCCGGCGGCCACGTGATCCACAACGGCTTCGCAGGACGTCCCGCAGCTGTGACGCTCATCGATTCCGGCCACGATCTTGTTGCCATGACGGTAGCCGGCGCAATCATCGGGGCCATGTCCTGAMDWLSYISQINWLAVLLAFIASMAIGFVWYMPAVLGNRWMAAIGKTEEDLKNISGGAGIWVPMMVAAALTAILLAVLISKLGLDNALAGGWFALVLALVFRAGGHVIHNGFAGRPAAVTLIDSGHDLVAMTVAGAIIGAMSNANANANANA
D1-29_03347996corACOG0598Cobalt/magnesium transport protein CorAGTGACGATCATCGACAACGCCGTGTACGTTGACGGTGTCCGCAGCGCCGAGCCCGAAAGCCTGGAGCAGACCTTTGAGACCCTGGCCGAGCACGGCGGCATGGCCTGGATCGGGCTGTACCGGCCAACGGAAGCAGAGATGTCGGCCGTGGCCAGCGAATTCGGGCTCCATGCCCTGGCCGTGGAGGATGCCATCTCGGCCCACCAGCGGCCCAAGCTGGAGCGCTACGACGACAACCTCTTTACTGTGCTTCGTCCGGCCAGGTACCTCGACGCCACCGAAACCGTTGAATTCGGTGAGCTCCACATCTTCACCGGCAGCAACTTTGTTGTTACCGTCCGCCATGCGGAGATGGCCGGCGTTGCCCGGGTCCGCAACCGGCTTGAGGCACGCCCGGACCTGCTCCGACACGGCCCGGAGGCAGTTCTGTACGCCCTCCTGGATCGCGTCGTGGACGATTATGCGCCGGTGGTGGCAGGACTTGAAAACGACATTGACGAGATCGAGGACCAGCTCTTCGGCGGGGACACCACGGTCTCACGCCGGATCTATGAGCTCGCCCGCGAAGTGATTCAGTTCCAGCGCGCCATCCACCCGCTGCCGGGCATGATGCAGCAGCTCAAGCGTGGATTCGAGAAATACGGCGTGGAAACCGAACTTCAGCACAGCCTGCGCGACGTGGAGGACCATGTTGAGCGGGTCATTTCCCGCGCAGACTCGTTCCGGGACCTGCTGCAGAACGCCCTCACCCTGGACGGGACGCTGACCGCAAACCGCCAGAACGAGGCCAGCGCAGAGCAGAACGAACAGGTGAAGAAAATTTCCTCCTGGGCCGCAATCTTCTTTGCGCCCTCTATTGTGGCGGGCGTCTACGGGATGAACTTTGACCACATGCCCGAGCTTCACTGGACCTTTGGCTATCCGTTGGCGATTGCCCTGATGGGCGGCACGGCAGGCCTCATGTACGGCATTTTCAAAAAGAAGGGCTGGCTCTAAMTIIDNAVYVDGVRSAEPESLEQTFETLAEHGGMAWIGLYRPTEAEMSAVASEFGLHALAVEDAISAHQRPKLERYDDNLFTVLRPARYLDATETVEFGELHIFTGSNFVVTVRHAEMAGVARVRNRLEARPDLLRHGPEAVLYALLDRVVDDYAPVVAGLENDIDEIEDQLFGGDTTVSRRIYELAREVIQFQRAIHPLPGMMQQLKRGFEKYGVETELQHSLRDVEDHVERVISRADSFRDLLQNALTLDGTLTANRQNEASAEQNEQVKKISSWAAIFFAPSIVAGVYGMNFDHMPELHWTFGYPLAIALMGGTAGLMYGIFKKKGWLPGPT0014010_2133DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
D1-29_03348489zapE_2Cell division protein ZapEATGGACAATACAAATGATCAGGTGGCCGGGGCGGAATTTTCCAGGGGACGCATCATCACGCCCGGCACAGAGCACCAGCTGGGCACCTATGGCCTGTTCCCGCCGTCGTCAGCGCAGCATCGCACGCTGATGACCGCCGGAGGACCGCTCACCGCCAAGAATGCGGAACCCGATCTGCTGTGGACCAGCTTTGCCGAGCTATGCTCCGGGGCGCTGTCCGAGGCCGATTACCACGCCCTGGCCGGCCAACACACTACCTGGGTCATCGACGGCGTTCCCGCCCCGGACGCGGATCGATCAGCACAAAAAACCGCGGCATGGGATCGCTTCGGCGCCTTGGTGGGAATTCTCTATGAACGGGACGTCACCCTGTTTTTGCTCGGTACCCGGCTGCCGGCGGACATGGCCAAAATTGCCCCACCCCTCTCCTTCCTGGAATATGTGGAGTCCGCTGCAGACACCACGGCTGAGGAAATTTCCGGAAGCTAGMDNTNDQVAGAEFSRGRIITPGTEHQLGTYGLFPPSSAQHRTLMTAGGPLTAKNAEPDLLWTSFAELCSGALSEADYHALAGQHTTWVIDGVPAPDADRSAQKTAAWDRFGALVGILYERDVTLFLLGTRLPADMAKIAPPLSFLEYVESAADTTAEEISGSNANANANANA
D1-29_033491200Aspartate aminotransferaseATGCAGCAACTCGCGCACCGGCTCGAACGGCTGGGCACCGAAACCGCCTTCAGCGTCGCCCAAGCCGCGGCCGCCTGGAAGGCGAAGGGGAACCAGGTGTACCCCTTCCACCTCGGCGACATCAACATCCCGACGGCCCCTCATATCGTCGAGGCGATGACCCGGGCAATCGCCGACGGCTACACCGGCTACTGCCCCGGCCCTGGCATCCCGCAGTTGCGCGAGGCCCTCGCCGAGGATCTCGGGGCCCGCCGGGGTATCGAATTTTCCCCCGACAACGTCGTGGTGATGACGGGCGGCAAGCCCGTCATCACCAAGTTCCTGCAGGCGGTCATGAACCCCGGCCAGGAAGTGCTCTATCCGAACCCCGGCTTCCCGATCTATGAATCGCAAATCGAATACCTCGGCGGCACTGCTGTTCCATACAGCTACGTCCCCACCAGCACGGGCTTCGCGATCGACATCGACCAGGTGCGCGCCTCGATCACCCCGAATACCGTCGCAATCATCTACAACGACCTGCAGAACCCCATCTCGGCCGAGTCGACTGCGTCCGAGCGGGAGGCCATCGCGCAGCTCGCGCAGGAGCACGACCTCTGGGTACTGTCCGATGAGGCGTACTTCGAGACGCGCTATGAGGGTGTCTCGAGCTCGATCGCGTCGCTCCCCGGCATGGCGGAGCGCACCGTGATCCTCTACACCTTCAGCAAGAAGTTCGCCATGACCGGATCCCGCCTGGGCTGCGCCGTCGCGCCGATCGAAATCGCCAAAATTCTCAGTACACTCAACACCAACGATGAGTCATGCACCACGCACTACGTGCAATGGGCCGGCATCGCAGCGCTCCGTGGAACCCAGGAGCCCGTACAGCAGATGCTGGATATCCTGCGCGTCCGCCGGGATGCCGCGTGCGAACTCGTGAACGACATCGCCGGCATGCACGTCGCCGTGCCCAAGTCGACGTTCTACCTTTTCCCTGACGTCACCGAGGTCATGGAGCGCATGGGTTACAAAGCCGTTGGCGATTTCGCCTCCGCAGCCCTCTACGAAACCGGCGTCTCCTTCTGCACACGTGAGCACTTCGGCCGCCGCCAGCCCGGCGAAGAGCGGCAGTACATCCGCCTCGCATACTCGGGCATCGACGTTGCCGACATCAACGACGGCCTCGGCCGCCTGCGCAAGTGGATCGAGACGGCATGAMQQLAHRLERLGTETAFSVAQAAAAWKAKGNQVYPFHLGDINIPTAPHIVEAMTRAIADGYTGYCPGPGIPQLREALAEDLGARRGIEFSPDNVVVMTGGKPVITKFLQAVMNPGQEVLYPNPGFPIYESQIEYLGGTAVPYSYVPTSTGFAIDIDQVRASITPNTVAIIYNDLQNPISAESTASEREAIAQLAQEHDLWVLSDEAYFETRYEGVSSSIASLPGMAERTVILYTFSKKFAMTGSRLGCAVAPIEIAKILSTLNTNDESCTTHYVQWAGIAALRGTQEPVQQMLDILRVRRDAACELVNDIAGMHVAVPKSTFYLFPDVTEVMERMGYKAVGDFASAALYETGVSFCTREHFGRRQPGEERQYIRLAYSGIDVADINDGLGRLRKWIETAPGPT0020110_2294DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_03350960Putative 2-hydroxyacid dehydrogenaseATGAGCCGGGTCGTCGTCACGGGACGTATACCCGAAACCGCACTCGAGAAACTGCGCGCCGAGCACGAAGTCGATGCCTGGTCCGGTCCGGAGTCGATTGGCCGCGAGGAGCTCCTGCGCCGGGTAGCCGGCGCAGATGCCGTAGTAAGCCTGCTCACCGAACGTATCGACGCCGAGCTGCTCGATGCAGCGGGCCCGCAGCTCAAAGTGGTCGCGAACGTCGCCGTCGGCTATGACAATATCGACGTGCCCGCCTGCACGGAACGGGGCGTGGTGGCCACCAACACTCCCGGCGTGCTCACGGAGGCCACAGCCGATATCGCGCTCGGCCTCATCCTCACGGCCACCCGACGGCTCGGCGAGGGGGAACGGCTCATCCGCTCTGGCCAGGCCTGGAAGTGGGGCATGTTCTTCCTGCTCGGCAGCAGCCTGCAAGGCAAGACCCTCGGCGTCGTCGGCATGGGCGGCATCGGCCAGGCAACCGCGCGCCGCGCCAAGGCCTTCGGCATGGAGATCGTCTACCAGTCGCGCAGTGAAATCGATCCCGCCGTCGCAGCCGAGCTGGGCGCCCGCCGGGTCGAGCTCGATGAGCTGCTGGCCATCTCCGACATCGTCTCGTTGCACTGCCCCTACGGGCCCGCCACCCATCATCTGATCAGCGCCGAGCAACTCGCCGCCATGAAGGGCTCGGCGTACCTCATCAACACCGCGCGCGGACCGATTGTCGACGAAGCAGCGCTCGCGTCTGCGCTTCGCGAAGGGCAGATCGCGGGCGCCGGGCTCGACGTTTTTGAGAACGAGCCCACCGTACACCCAGGATTGCTCGAGCTCGACAATGTGGTGCTCGTGCCGCACCTCGGTTCCGCCACCGTTGAGACGCGCACGGCGATGGCGATGCTTGCCGCCGATAATGCGCTCGCCGTGCTCTGCGGGGAACGGCCGCCAGCACCGATCAAGTAGMSRVVVTGRIPETALEKLRAEHEVDAWSGPESIGREELLRRVAGADAVVSLLTERIDAELLDAAGPQLKVVANVAVGYDNIDVPACTERGVVATNTPGVLTEATADIALGLILTATRRLGEGERLIRSGQAWKWGMFFLLGSSLQGKTLGVVGMGGIGQATARRAKAFGMEIVYQSRSEIDPAVAAELGARRVELDELLAISDIVSLHCPYGPATHHLISAEQLAAMKGSAYLINTARGPIVDEAALASALREGQIAGAGLDVFENEPTVHPGLLELDNVVLVPHLGSATVETRTAMAMLAADNALAVLCGERPPAPIKPGPT0019780_1203DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_OXALIC_ACID_DERIVATE_UTILIZATION,PGPT0019780-gyaR-K00015NANA
D1-29_033511572pntA_2COG3288NAD(P) transhydrogenase subunit alphaGTGACACGTATTGGCATCGTGGCCGAATTGGGCCGTGAGACGAGGGTGGCGGCGACGCCTGTCACCGTGAAGCAGTTGCTGGGGTTGGGCTACGAGGTTGTGGTCGAGAAGGGTGCGGGTGAGTCGGCATCCTTCCGTGATGAGGCTTATGCCGAATCGGGTGCCCTGATTGTGGGCGCCGATGAGGCGTGGGGCAGCGAGGTGGTGTTGCGGATCAATCCGCCCACTGAGGATGAGATCGCCCGTCTCACTGAGGGTGCGACGCTGATCGGGTCGTTGAGCCCAGGATTGCGGCCTGAGTTGGTGGAGGCGCTGGCTTCGCGTCCGATCACGGCGCTGGCGTTGGATGCGGTGCCGCGGATCTCGCGGGCCCAGTCGATGGATGTGCTCAGTTCGATGGCGAACATTGCTGGGTACCGTGCCGTGATCGAGGCGGCTCACGAGTTCGGGCGGTTTTTCACGGGTCAGGTGACCGCTGCGGGGAAGGTCCCGCCCGCGAAGGTCCTGGTGGCGGGCGCCGGTGTTGCCGGGTTGGCGGCGATCGGTGCGGCGTCGAGTCTGGGTGCGATTGTGCGGGCGACGGACCCGCGGCCGGAGGTCGCAGACCAGGTGAAATCCATCGGTGGAACCTACCTCAAGGTCGAGGTCGCCGAAGAGATGAAGTCCTCCGACGGATATGCGAGGGCGACCTCCGAGTCGTATAACGCCCGGGCTGCGGAGATTTACTCGGAGCAGGCAGCGGATGTGGACATCATCATCACCACCGCCCTGATTCCGGGGCGCCCGGCGCCGAAGCTGCTCACGGCCGAAGATGTGGCCAGCATGAAGTCGGGCAGTGTGATCGTGGACATGGCCGCGGGCCAGGGCGGGAACGTCGAAGGCTCGGTCGCCGGGGAAAGGATCGTGACGGACAACGGGGTGGTGATCCTGGGTTACACGGATCTTCCGGCCCGTTTGCCGGCCCAGGCCTCCCAGCTGTACGGGACGAACATGGTGAACCTGCTCAAGCTCCTGACCCCGGACAAGGACGGGGTCCTGCGGATCGATTTCGACGACGTCGTGCAGAGGTCGGTGACTGTGGTGCGTGAGGGGGAGACGACGTGGCCGCCGCCCCCGGTCCAGGTCTCCGCCGCACCGGCAGCCCAGGCTCCAACCATTGTTGCAGTTGATGAGGGAGAAACCGGTGCCGCTGGCACTAAGAAGACTGGCCTCAGCCGTGCTGGCAAGGCCGGTCTTTTTGCGGCGGGTATCGCGGTGTTGTTCGGGATCAACGCTGTTGCCCCGGCGCCGTTGCCGCAGCATTTCACGGTGCTGATGCTCTCGGTCGTGGTCGGGTTCTATGTAATCGGGAAGGTCCACCACGCCCTGCATACCCCGCTGATGTCCGTGACGAACGCGATTTCCGGGATTATCGTCGTCGGCGCCCTGCTGCAGGTCACCTCCGACAACATCGTGATGCAGGTCCTCGCCGCCGTCGCGGTGCTGCTCGCCAGCATCAACATTTTCGGCGGCTTCGCCGTCACCCGGCGCATGCTCGCCATGTTCTCCCGTGGTGGGAAGGCCCGTTCATGAMTRIGIVAELGRETRVAATPVTVKQLLGLGYEVVVEKGAGESASFRDEAYAESGALIVGADEAWGSEVVLRINPPTEDEIARLTEGATLIGSLSPGLRPELVEALASRPITALALDAVPRISRAQSMDVLSSMANIAGYRAVIEAAHEFGRFFTGQVTAAGKVPPAKVLVAGAGVAGLAAIGAASSLGAIVRATDPRPEVADQVKSIGGTYLKVEVAEEMKSSDGYARATSESYNARAAEIYSEQAADVDIIITTALIPGRPAPKLLTAEDVASMKSGSVIVDMAAGQGGNVEGSVAGERIVTDNGVVILGYTDLPARLPAQASQLYGTNMVNLLKLLTPDKDGVLRIDFDDVVQRSVTVVREGETTWPPPPVQVSAAPAAQAPTIVAVDEGETGAAGTKKTGLSRAGKAGLFAAGIAVLFGINAVAPAPLPQHFTVLMLSVVVGFYVIGKVHHALHTPLMSVTNAISGIIVVGALLQVTSDNIVMQVLAAVAVLLASINIFGGFAVTRRMLAMFSRGGKARSPGPT0013500_342DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-29_033521479pntB_2COG1282NAD(P) transhydrogenase subunit betaATGAGCGCCGCCACCGAAACTGCAGCAGCAATTATTACGAGGAGCTTTACCGTGACTGACGCCGTCTCCGGTCCATTGACCGCCGACTCCATTGCGGGGGCGGCCTACATCGTCGCGGCCCTGCTGTTTATCCTCAGCCTCGCCGGGCTGAGCAAGCACGAGAAAGCCCGCGCCGGGGTCGTCTACGGCATCACGGGCATGGTCATCGCCCTCGCGGCCACGATCTGGCTGACCCTGCAGGATGCCTGGGGCACGGGCCACGCACTGACCGGACTGGGACTGCTGGTCGCAGCGGTGCTGGTCGGCGGGGCCATTGGACTTTGGCGCGCCCGGGTGGTGGAAATGACGGGCATGCCCGAGCTCATCGCCCTGCTGCACAGCTTCGTGGGCCTCGCTGCAGTGCTCGTGGGCTGGAACGGGCACCTCGAAGCCCCGGCCCTGTCCCCGGACCTGACAGCGATCCACCACGCCGAAGTCTTCATTGGCGTCTTCATCGGCGCGGTCACCTTCACCGGCTCGATCGTGGCGTTCCTGAAACTCTCGGCCCGGATGAAATCCTCACCGCTGATGCTGCCGGGTAAAAACGCGATCAACCTCGGCGCCCTCGCCGCGTTCGTGGCCCTGACCGTCTGGTACGTCAACGATTCCCAGCTTTGGCTCCTCGTCGTCGTCACCCTCCTGGCTCTGGGGCTGGGCTGGCACCTGGTCGCCTCTATCGGCGGCGGCGACATGCCCGTGGTGGTGTCCATGCTGAACAGCTACTCCGGCTGGGCCGCCGCCGCGGCGGGCTTCCTGCTGAACAATGACCTGCTGATCATCACCGGGGCCCTGGTGGGCTCCTCGGGTGCGTACCTGTCCTACATCATGTGCAAGGCCATGAACCGTTCCTTTATCTCCGTTATCGCCGGTGGCTTCGGCATCGCCGCACCCACCAGCACGGGCGACGCAGACCAGGGCGAGCACCGGGAAATCACCGCCGAAGCGACAGCGGAAATGTTGACCAACGCCTCCAGCGTCGTGATCACCCCCGGCTACGGCATGGCCGTGGCCCAGGCCCAATACCCCGTCGCCGAACTCGCCCACCAACTGCGCGAACGCGGCGTGGACGTCCGGTTCGGCATCCACCCCGTCGCCGGACGCCTCCCAGGGCACATGAACGTGCTCCTCGCCGAGGCCAAAGTCCCCTACGACATCGTCCTCGAAATGGACGAGATCAACGACGACCTCGGCGGCACCTCCGTGGTCCTGGTTATTGGTGCCAACGACACTGTCAATCCCTCCGCCGCGGAAGACCCGGGAAGTCCCATCGCCGGGATGCCCGTCCTAAGGGTCTGGGAGGCCGAGAATGTGGTGGTATTCAAACGCTCCATGGCGGCCGGCTACGCCGGCGTCCAGAACCCGCTCTTCTACCGCGACAACTCCCAAATGCTCTTCGGCGACGCCAAACAATGCGTCGAAGACATCCTCCGCGCCTTCTAAMSAATETAAAIITRSFTVTDAVSGPLTADSIAGAAYIVAALLFILSLAGLSKHEKARAGVVYGITGMVIALAATIWLTLQDAWGTGHALTGLGLLVAAVLVGGAIGLWRARVVEMTGMPELIALLHSFVGLAAVLVGWNGHLEAPALSPDLTAIHHAEVFIGVFIGAVTFTGSIVAFLKLSARMKSSPLMLPGKNAINLGALAAFVALTVWYVNDSQLWLLVVVTLLALGLGWHLVASIGGGDMPVVVSMLNSYSGWAAAAAGFLLNNDLLIITGALVGSSGAYLSYIMCKAMNRSFISVIAGGFGIAAPTSTGDADQGEHREITAEATAEMLTNASSVVITPGYGMAVAQAQYPVAELAHQLRERGVDVRFGIHPVAGRLPGHMNVLLAEAKVPYDIVLEMDEINDDLGGTSVVLVIGANDTVNPSAAEDPGSPIAGMPVLRVWEAENVVVFKRSMAAGYAGVQNPLFYRDNSQMLFGDAKQCVEDILRAFPGPT0013505_159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
D1-29_03354900hypothetical proteinGTGATCCTGGTGGTCGCCGTTGTGCTCTGGATTGTGTGGGTTGCCCCTTACGTTCTCCGGAACCGCAGGCCCCAGTTCCAGGTTGCCGGCGAGATTCCGGCGGAAACACCAGCCACTGAATCATTGGACCCGAGAGCCGGGATGCTCATGAACATCAGCGCCCCTCAGGAGAAAGCCATGGACATCAGGAAGAGCCCCGTATCCGAACGGGACGCAACCCGAACCACGACGCCGGGTGCTTTCCGGATCCGCTACGGCAGGACGGGCCTTGCCCTCCTCGGGCTCGCGGCGCTGCTGACTGGTTTTGTTTCCGGGGCGCTGCTGCTGTTCGGGCGGGGTACGCCCCTGCTGCCGGTGTGGTGCCTGGCGGCGTTTGTGACGTCCGTTGTGGTGCTGCGGTGGCTCGCTGTCCGGGATCGGAAAGCGAAAGTCAACGCTGCCTTCTCCGCGGCCATGGCTGCACCTTCGCGCCGGCCGGAACCAGTCCCAGCTACTCCGGCCCGGCCACCGTTCCCGGCCCATCAGCCCGAAAGTCCTCTGTTTGATGCGGAAGCACACCGGCCCAAGGTCAAGCCCTTAACTGCCGTGGAGCTGCGGGAGGCTGCCCTTGCTGTGGCGGTGGCGGCAGGAGACACCAGTGTCAGGTCCACTGCTGTACCCCAGCCCGGCGAAACCTGGCAACCGGTGGATGTACCGAAGCCGGTCTACGTTGAAGCTGCAAAGGCTGAGCGGCCCGCGCCGGAGCCCCTCGACCTGCCCGAAGCCCCCAAAGCCGTCGGGAAACCGTCCCTTAAGCAGGGTGTTCCGGCTGCTCCTGCTGCCGCCCCGGCAAAGCCGCTCACAAAGGCCCAGAGTGCGCTGAGCAACCTCGATGATGTCCTGCAGCGTCGTCGGGCGTGAMILVVAVVLWIVWVAPYVLRNRRPQFQVAGEIPAETPATESLDPRAGMLMNISAPQEKAMDIRKSPVSERDATRTTTPGAFRIRYGRTGLALLGLAALLTGFVSGALLLFGRGTPLLPVWCLAAFVTSVVVLRWLAVRDRKAKVNAAFSAAMAAPSRRPEPVPATPARPPFPAHQPESPLFDAEAHRPKVKPLTAVELREAALAVAVAAGDTSVRSTAVPQPGETWQPVDVPKPVYVEAAKAERPAPEPLDLPEAPKAVGKPSLKQGVPAAPAAAPAKPLTKAQSALSNLDDVLQRRRANANANANANA
D1-29_03355618rimJ_1COG1670[Ribosomal protein S5]-alanine N-acetyltransferaseATGCGCGCCGGTCCAATCTGGCCCGTCACCCTTGAGTGCGGCGACCTGGTCCTGCGCCCGATCCGCTACCGGGACAAAAAGGAGTGGACAGCGGTCCGGGCCCGCAACAGCCAATGGCTGGCGCCATGGGAAGCCTCCAACCCCGTCCCGGGAGGAGGCCTGCCCGATTACCGGCACATGGTGCGGTCCCTCAACATCCAGGCCGCCCAGGCAACCGCCTTGCCCTTCCTGATCACTGAACGCACGCCCGGCGCCCGCTCCCCGGTTATCGTAGGCCAGCTCACGGTCTCCTCCATAGTGTGGGGATCGGCACTCATGGCCACGCTCGGCTACTGGGTTGACCAGGCCAGGGCCGGACACGGGATTGCCCCTACGGCAGTGGCGATGGCAACTGACCATTGTTTCCAAACACTGGGGCTCCACCGCATGGAGATCAATATCCGGCCGGAGAATGGCCCCAGCCTGCGTGTCGTTGAAAAGTTGGGCTTCAGGGATGAGGGGTTCCGGCCGCGGTACCTGCATATCAACGGCGAGTGGGCAGACCACCGGACGTTCGCGCTGACGTCGGAAGAAGTTCCGGACGGACTGCTTCGCCGCTGGCTGGCGTCCCGTCCGTAAMRAGPIWPVTLECGDLVLRPIRYRDKKEWTAVRARNSQWLAPWEASNPVPGGGLPDYRHMVRSLNIQAAQATALPFLITERTPGARSPVIVGQLTVSSIVWGSALMATLGYWVDQARAGHGIAPTAVAMATDHCFQTLGLHRMEINIRPENGPSLRVVEKLGFRDEGFRPRYLHINGEWADHRTFALTSEEVPDGLLRRWLASRPNANANANANA
D1-29_03356906gtaB_1COG1210UTP--glucose-1-phosphate uridylyltransferaseGTGACTACCACTCATCAGACAGTTCGCAAGGCCGTTATTCCCGCTGCGGGACTCGGCACCAGGTTCCTGCCTGCCACGAAGGCCATGCCGAAGGAAATGCTTCCGGTGGTGGATAAGCCCGCCATCCAGTACGTGGTTGAGGAAGCCGTCAAGGTGGGCCTTAACGACGTACTGATGATTACCGGCCGCAACAAGCGGGCGCTGGAAGACCACTTTGACCGGGTCCCGGCCCTGGAAGCCACATTGGCGGCCAAAGGCGATACCGCCAAGCTTGAGTCCATCCAGGCCGCGAGCAACCTGGGCGACATCCACTATGTCAGGCAGGGCGACCCCAACGGCCTGGGCCACGCGGTCCTGCGTGCAAGGCAGCACGTAGGCAACGAGCCATTTGCCGTCCTCCTTGGGGACGATCTGATCGATGCCCGGGACGAACTGCTCAGCACCATGATTGAGGTTCAGGCCAAGACCGGAGGGTCGGTAGTAGCCCTGATCGAGGTAGAACCGGACCAGATCAGCGCCTACGGCTGCGCCGACGTCGAGGAAATCGATGGCGAGGCCTACGTCCGGATCAAAAAACTGGTGGAGAAGCCTGATATCGATGAGGCACCCTCCAATCTTGCGGTGATCGGACGGTACGTGCTTAACCCGGCGGTCTTTGACGTGCTGGAACGCACAGGCCCGGGCCGCGGAGGCGAAATCCAGCTCACGGATGCGCTTCAGGATCTGGCAGCCGGAGACGGGGCCGGCGACGGCGTTTATGGAGTCGTCTTCCGCGGGCGGCGCTACGACACCGGTGACAAGCTCAGCTACCTCAAGGCCTGCGTCCAGCTGGCCATCGACAGCGATGACCTGGGTCCCGGTTTGCGGGAATGGCTGCCAGGCTTCACCGCCGGTCTTTCCAGGTAAMTTTHQTVRKAVIPAAGLGTRFLPATKAMPKEMLPVVDKPAIQYVVEEAVKVGLNDVLMITGRNKRALEDHFDRVPALEATLAAKGDTAKLESIQAASNLGDIHYVRQGDPNGLGHAVLRARQHVGNEPFAVLLGDDLIDARDELLSTMIEVQAKTGGSVVALIEVEPDQISAYGCADVEEIDGEAYVRIKKLVEKPDIDEAPSNLAVIGRYVLNPAVFDVLERTGPGRGGEIQLTDALQDLAAGDGAGDGVYGVVFRGRRYDTGDKLSYLKACVQLAIDSDDLGPGLREWLPGFTAGLSRPGPT0014875_2084DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963NANA
D1-29_03357624ygfACOG02125-formyltetrahydrofolate cyclo-ligaseGTGCCTGGAGAGAGCAAGGAAGCAAAGGAAATCATCCGTGCACGTCACCGCCAGCGGCGGGCCCAGATGGCTCCCGGTGAGCGTGAAGCGGCTGGCGGCCGCCTGGCTGTCAACGGCCTCGAATGGGCCCAAGGAATGGCGGCAGAAGAGGCATCAACGTTTGGTGTGTACCTGGGGGTTGGCTCCGAACCGCCCACTGTGCCCCTCATCAACGCCCTCCACGGGCAGGGCCACAAGATCCTGCTCCCTGTCTGTGAACCTGACCGCCACCTGAGCTGGGTCTACTGGTCTCCCGAGGTGAACTTTGTGCGGAGCCGGTATGCCCCCATCCTGGAACCCGACGGCGTCCGGCACGGCCTTGACGTTATGGAAGGGGTGGCGGCCCTCGTCATTCCTGCCACAGCCCTGGACAAGAGCGGAAACAGGATTGGCCAAGGCGGCGGTTACTACGACGTCTTCCTGGCCTCCCTCGCTACCAGAGTTCCGCAACTGCCACTGGCAGCCATGATTTACGACGAGGAACTGCTCCCGGCAGGCACCATTCCCAGCGAGGAGTTCGACAGGAAAGTGCCGGCAGCCCTCATGCCCTCCGGCGTGGTCAGGCTGGCCGACACAGCATCCTGAMPGESKEAKEIIRARHRQRRAQMAPGEREAAGGRLAVNGLEWAQGMAAEEASTFGVYLGVGSEPPTVPLINALHGQGHKILLPVCEPDRHLSWVYWSPEVNFVRSRYAPILEPDGVRHGLDVMEGVAALVIPATALDKSGNRIGQGGGYYDVFLASLATRVPQLPLAAMIYDEELLPAGTIPSEEFDRKVPAALMPSGVVRLADTASPGPT0008170_1616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
D1-29_03358267hypothetical proteinGTGCCAACGTATGCCTACGCCTGCAAGGATTGCGGCCACGCCTTTGACATCGTCCAGTCATTCACGGACAGCACTCTGACGTCCTGCCCTGAGTGCCAGGGGACCTTGCGCAAGAAGTTCAACAGCGTGGGCGTTGTTTTTAAGGGCTCAGGTTTCTACCGGACGGATTCCCGGGATGCCAAGGGCAACACGGTGACGGCTGCTCCTGCGGCTCCCGCCACTCCGGCTCCTGCCCCGGCGCCTGCTCCCGCAGCCGCAGCCAGCTGAMPTYAYACKDCGHAFDIVQSFTDSTLTSCPECQGTLRKKFNSVGVVFKGSGFYRTDSRDAKGNTVTAAPAAPATPAPAPAPAPAAAASNANANANANA
D1-29_03359630hypothetical proteinATGGCTGCCTGGCTCAGCCGTAACCGCCGCCTGGCCGTTGCCCTCCTGCTCTGTCTTTCCGCTGGAATCGCCGTCAATCAGCTCACCCCGGCGCCTGCTGATTCCGTCACCGCACTGGCCGCCGCACGGGACCTCCCCGCGGGCATGGCATTAACACTTCCTGATCTGGAGGAAGTGCAGATACCGCCCCGGCTGGCGATTTCCGGCGCCCCGCAAAAAAGCATTGACCTTGAAGGCAAGCAACTGGCAGCGCCCCTGCGGAAGGGGCAACTGGTGGCGGACTCCCAGCTTCTGGGACCCGGCCTGCTGGCCGGGACTCCCCCGGGCTCAGCGGCCGTACCGCTGAGGATGGCGGATCCGTCGTCCATCCAGCTCGTATCTCCGGGACAGCTCGTCAATGTGGTGCTGACCGGTGCCAACGGCCATGACCAGAGATCTCCTCCGGAGGTGCTTGCGTCGGCCGTGCCGGTGCTTTGGACATCGGGACAGGGCGGCAAGACGGGCGAGTGGTTGGGTACAGGTGAGACCGACGGGCTGATCGTGGTGGCGGCAAGTCCGGACCAGGCAGCGCGGCTGGCCGGGGCCTCCACGCAGGGCAAGCTGTTCTTTGTCCTCGTGGGCGCTAACTAGMAAWLSRNRRLAVALLLCLSAGIAVNQLTPAPADSVTALAAARDLPAGMALTLPDLEEVQIPPRLAISGAPQKSIDLEGKQLAAPLRKGQLVADSQLLGPGLLAGTPPGSAAVPLRMADPSSIQLVSPGQLVNVVLTGANGHDQRSPPEVLASAVPVLWTSGQGGKTGEWLGTGETDGLIVVAASPDQAARLAGASTQGKLFFVLVGANPGPT0016005_1627DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
D1-29_033604200hypothetical proteinATGCCGGTATGGTCCAAGGCGTCACGTGCAAACGCAGAAAAGAAGGCAGTAGTGTCAGTTGGTCAAGGCCACCCCGAGGGCTCGGAGGAGCTCAGGAAATGGCTGTCCGGGCTTAAACCCGTTACCGGGGCAGACACCATGCTGCGTTTCACCAAGACCCCGGAAGGCTCCATTGACCTGACCCACGCACACCCTTCGGGCCTGGCCCAGCTGATGGCCGGCCGCAGGACACGCCTCTCCACCCTGATTCGTGACCACCAGCAATACCTGGTTGCAGCCCGGGCATCACGCAACATCCGCTCCAAGATCTTCGAGCTTGCCAATGACCGCGGCATTGACGCCGGATACCTGTCCGCAGGAACCGTCGTGTGGACCTCCGCCGTCGGAGGCAAGCCACAGCGGATTTCGGCCCCCGTGATGCTGACGGCCATTTCGTTGACTGTCCGTCCGGGCGAGGACGACTATGAACTCCAGCTCACCGAACAGGCGCACATCAACCCGGCGCTGGTCCGGCACCTGAAGAACATCCACGGCATTATCTTTGACGTCAACGCCGTGACCCGGCTGGCCTACAGCACGGCCAGGTTCGATCCCCAACCCGTCCTGGACCGGCTGGCCGCCCTGATCAGGCCCATCCACGGTGCAGAGGCGCAGCACAACCTGCTGGTGTCCACCTTTGCCGATCTCTCCGGGAACCTCGATGACCCCTGGATCAATGATGGCAGTCCGCTGGTGGCTGCCCTGGCCCGCGCCGGGGGCGGCGAAGTGGTGGACGTTGAGGAACCGGACCCCTCACGCTTTCCCAGCGTGGACAAGCGACATCCCGCCGATGAACTGCTCCTGCTGGACGCGGACTCAGACCAGCAGTACGTCATTGACGCCGCCCGCGCCGGTGAATCACTCGTGGTGAGCAGCCCCCCTGGCACAGGGCAAACGCAGACGGCCATCAACACCATCGGTGCGCTGGTGGATGCGGGCAAAACAGTGCTGGTGGTCGGCGACCGCCGGGCCAGCCTGAATGAAGTGTCCGGCCAGCTTGAATCGTTGGGCCTGGAGTCCATGCTGTTCCAGCTCTCCGGCGCGGCCACCCCGCAGCAGCTGAAGGCCCAACTGGTCCGGGCCATCATCCGGAACGAAAAATCCCTCGAACCGCAGTTGGGTAACCTTCATAAGACCCTCACGGAACATCGCCACGCACTGACGGATCACGTTGCTTCGCTGCATAACGTGCGCAAGCGATGGGGGTGCTCGCCATACCAGGCCATGCAGTCACTAGCTTCGCTGACCTCCATCCAGCCGGCCCCCGCCACCACCGTCCGCCTCAAACGAAGTGTGCTGGACAACATTCGGGACCGCAACGAGCTCGCAGGCAGGCTTCGCCGTGCCGCCGAACTTGGCAGCTTCAGCCGGGCGTCCACAACCAGCCCCTGGCACGGGGCAAGGCTGCTGACGCGCAAGGAGACCGAAGAAGCCCAGGAACTGGCCCGTTCCGTGGCGAAGAACCTGCCGCTTTTGCGGGAACGGATGAGCGGCGTTGCCGAGCACGCCGAGATCCGCCTGGGTTCATCCTTCGAAGAGTGGGGCGCGCAGCTTGAACTGCTGATGGCGGTCCGGGGAAGCCTGGACAAGTTCACACCCGACATCTTTGACCGTCCCGTGCACGATCTCATCTCTGCCACCGCATCCTCCGCCTGGCGCCGCGAGCGGAACATCGACATGGCCTCCATGCAGCGGTCACGTCTCCGCCGTGTAGCCAAGGAGTACGTCCGCCCCGGTGTGCATATCGCCGATCTGCACAGTTCCCTGGTGCTTGTCCAGGAGCAGCGGGCTCTGTGGTCCGGCTACGCAACCACTCAGCGCCATCCGGCCGTACCCTCCGGCCTCGCGGAGATGAACGTGATGTACCGGTCCCTGGACCGGGAGCTCACACAGCTGGGGGAGGCTCTGCGGTACACCGAAGCGGGCGGATCCCTGGCCACTTCGCCCTATCCGGAACTGATGGAACGCCTCGAGCGGCTGGTCGCGGACACCCATACCCTGAAAACTCTGCCCGAACGCACCTTGCTTGTGGAAAACATGCGCGAGCACGGGTTGGGGGAACTCCTTGCTGACCTCGCTGAGCGCGAGGTCCCTGCGGATTCGGTGGCGGCCGAACTCGAGCTGGCATGGTGGCAGTCCGCCCTCGAAGCGATGATCAGCGGGGACGATTACCTCGCGATGTCCGACGGCGACGCCCTGCGGCAGCTCGAAGCCGAATACCGGCTGGCAGACAACGCCCATATCGCAAGCGGCGCAGCACGCTTGCGGTGGGATCTTTCCGAGAGGTGGCGCGCAGCCATCGGCCAGCACCCGCGCCAGGCGGACCTCCTCCGCAGCCTGCTGAAGGACGGCAGGGTTTCCCTTGCGGCGCTGACGGCCCAGGCCCCGGAACTCGTCCCCATGCTTGTGCCGGTCTGGTCCGTGAGCCCCTACCTGATGACGGGTCTCCTTCCGGCCGAAAAGCGCTTTGATGCCGTGGTCATCCTGGACGCCGAAGCGACCTCGCTGCAGGCAGTCCTGCCATCCATCGCCCGTGCCCAACAGGTCATAGCATTTGGGGACTCCAAAATTGCCAGCCCCCGCACCTTCACTGTCGGCGTCGAGCGCCTGGCTGTCGGTGAATCGGCGCATCAGCGTGTGGACAGCGCCTTTTCCGCGCTGTCCTCCGTCCTCCCTGTCTGGCGGTTAAACTTTGTCTACCGGGCGGTGGATGAGGACCTGGTGCTGCAGCTCAGCAAGAACTTTTACGACGGCGGCCTGCGCCGGCTGCCGGAGGGCCAGTCAGCAACGGGGCTGGACCGGGCGTTGCTGGTTGAATACCTGCCGGACGGAACAGGCCTGCCCAGCGCCGATCACGAGGGTGTGGAATCCGTGGTGGCGGAAGTCAACCGTGTGGTCCAGCTGGTCTTTGAACATGCCCGGCAACGTCCGCGGACCTCGCTTGCTGTGGTAACCGCCAGCCTTCGGCATGCTGCCCGGATCGGTGAGTCCATCCGGCTTCAGCTGCCCAACCATCCTGGACTGGCGGGGTTCTTTAGCGCGGGGCCTGAGTCGTTCCGTGTGGTGGACCTTGAGCGGGCCCAGGGCCTGGTCAGGGATCACGTGATATTTTCGCCCGGCTTCGGACGCACTCCGCATGGCCGTGCCCTGCACAACTTTGGCCCCCTTTCCGCTGAGGGCGGGAGGGAGAAGTTCGCGCTGGCGATGTCCCGTGCACGCAGATCCCTGCACGTACTGACCTGCTTCCGCCCGGAGGACCTGGATCACACCCGCCTGGCCCACGGCGCCGTGGACCTCTATGAACTGCTGGACCGGGAGATTTCGGGCAACACCAACCTTGGTACTCCGGCATCCCGCGCGGCTGCCAGTGAACAGGCGCTCGGAGCAGACCCCCTGGTGGCTGACCTGGGGGACCGGCTCCGCGCCCGTGGAGCCCGCGTCTGGCACCAGTACGACGGCGTTATCGACGTTGTTGCTGCGGCGGACCCCCTGAGCACCATGGGGCAGGACGACGCCGAGATTCCCCGCCCCGTGGCCATCGAGTCGGACGGCACCGAGCAGTACCGGACCATGAGCGTCCGCGAGCGGAGCAGGCTCCGTCCGCAGTTGCTTGAACGTCTGGGCTGGCGGTACATGCCCTTGTGGACCATTGAAGTATTCACCGACCCTTCAGCCTGCGCCGACCGCATTGCCGGCTACCTGGGCCTTGAGAACGTTGTGTTGCCCGGACGGGCCACGGCGTCTGCCGGTTTCTTTGACGACGACGTGGACCCGCTGACCCTCGCTGGCCTAGAAAACCAGGGCCAGGACCGGCAACGGGACTACGCCGGGGACCAGGAACCCGAACGCGGTTACGCGGAGGACCGGGAGCAGGAACCCGGCTACGCTGAAGTTCATGATCCGGTAGGGGGGAACCACCACAACCACAGCCGGACCGGAGCCCGGGAGGGCCAGGAGGCGACAGGCATGACCACAAACAACCCTGCCAAGGGGCCGGCTGGCAACGAAAGCCCTGCCGAAGATCAGCCTGGGGAGAAAAGCGGAACGGCCGCAATTCTTCCCAACAAGGCTTCCGAAGATGACCCGCGGCGCTGGGGCGACGGGCCCGATGATGACCATGATGCCTGGCTGAAGGAACAGAAGCCCCCTCACTGGGGGTAAMPVWSKASRANAEKKAVVSVGQGHPEGSEELRKWLSGLKPVTGADTMLRFTKTPEGSIDLTHAHPSGLAQLMAGRRTRLSTLIRDHQQYLVAARASRNIRSKIFELANDRGIDAGYLSAGTVVWTSAVGGKPQRISAPVMLTAISLTVRPGEDDYELQLTEQAHINPALVRHLKNIHGIIFDVNAVTRLAYSTARFDPQPVLDRLAALIRPIHGAEAQHNLLVSTFADLSGNLDDPWINDGSPLVAALARAGGGEVVDVEEPDPSRFPSVDKRHPADELLLLDADSDQQYVIDAARAGESLVVSSPPGTGQTQTAINTIGALVDAGKTVLVVGDRRASLNEVSGQLESLGLESMLFQLSGAATPQQLKAQLVRAIIRNEKSLEPQLGNLHKTLTEHRHALTDHVASLHNVRKRWGCSPYQAMQSLASLTSIQPAPATTVRLKRSVLDNIRDRNELAGRLRRAAELGSFSRASTTSPWHGARLLTRKETEEAQELARSVAKNLPLLRERMSGVAEHAEIRLGSSFEEWGAQLELLMAVRGSLDKFTPDIFDRPVHDLISATASSAWRRERNIDMASMQRSRLRRVAKEYVRPGVHIADLHSSLVLVQEQRALWSGYATTQRHPAVPSGLAEMNVMYRSLDRELTQLGEALRYTEAGGSLATSPYPELMERLERLVADTHTLKTLPERTLLVENMREHGLGELLADLAEREVPADSVAAELELAWWQSALEAMISGDDYLAMSDGDALRQLEAEYRLADNAHIASGAARLRWDLSERWRAAIGQHPRQADLLRSLLKDGRVSLAALTAQAPELVPMLVPVWSVSPYLMTGLLPAEKRFDAVVILDAEATSLQAVLPSIARAQQVIAFGDSKIASPRTFTVGVERLAVGESAHQRVDSAFSALSSVLPVWRLNFVYRAVDEDLVLQLSKNFYDGGLRRLPEGQSATGLDRALLVEYLPDGTGLPSADHEGVESVVAEVNRVVQLVFEHARQRPRTSLAVVTASLRHAARIGESIRLQLPNHPGLAGFFSAGPESFRVVDLERAQGLVRDHVIFSPGFGRTPHGRALHNFGPLSAEGGREKFALAMSRARRSLHVLTCFRPEDLDHTRLAHGAVDLYELLDREISGNTNLGTPASRAAASEQALGADPLVADLGDRLRARGARVWHQYDGVIDVVAAADPLSTMGQDDAEIPRPVAIESDGTEQYRTMSVRERSRLRPQLLERLGWRYMPLWTIEVFTDPSACADRIAGYLGLENVVLPGRATASAGFFDDDVDPLTLAGLENQGQDRQRDYAGDQEPERGYAEDREQEPGYAEVHDPVGGNHHNHSRTGAREGQEATGMTTNNPAKGPAGNESPAEDQPGEKSGTAAILPNKASEDDPRRWGDGPDDDHDAWLKEQKPPHWGNANANANANA
D1-29_033611590guaACOG0518GMP synthase [glutamine-hydrolyzing]GTGACTACTCCCACTGCATCCCAAACTTCCCAGAAGCCGGTGCTGGTTGTTGACTACGGTGCCCAGTACGCGCAGCTGATTGCCCGCCGCGTCCGGGAAGCGAACGTGTATTCGGAAGTGGTTCCGCATACCTACAGCACCGAGCAGCTCCTGGCCAGGAACCCCGCCGCCATCATCCTTTCCGGCGGCCCGTCCAGCGTCTACGCTGACGGTGCACCCTCCGTCGGGGCCGACCTCTTTGAAGCCGGGATCCCGGTCTTCGGCATCTGCTACGGCTTCCAGGCCATGGCCAATGCCCTGGGCGGGAAAGTGGACAAGACCGGCCTGCGCGAGTACGGCTCTACCCAGACCACCATCCTCGGCGAGGGCCGTTCTGTGCTCGAGGGGATGCCGCAGCACCAGAACACGTGGATGAGCCACGGCGACTCAGTCCACGAGGCCCCCGAAGGCTTCGAGGTGCTGGCCACCACCGCCGGCGCTGAAGTTGCCGCCTTCGCCAATGAAGAGAAGTGCCTGTACGGCGTGCAGTGGCATCCCGAGGTGAAGCACTCCGCCTACGGCCAGCAGGTCCTGGAAAACTTCCTGTTCAAGGGCGCCAAGCTGGAACCGAACTGGACCACCGGCAACATCCTTGAGGAGCAGGTGGAACGCATCCGCCAGCAGGTGGGCGATGCGAAGGTCATCTGTGGCCTGTCCGGCGGCGTTGATTCCGCCGTCGCAGCAGCACTTGTCCAGCGCGCCGTCGGCGATCAGCTGACCTGTGTGTTCGTGGACCACGGGCTGCTGCGTGAAGGCGAGGCCGAGCAGGTGGAGCGCGACTTCGTCGCCGCCACCGGTGTCAAGCTTTACGTCGCCAACGAGCAGGAGCGGTTCCAGGCCGCCCTGGCCGGGGTCAGCGATCCCGAAACGAAACGCAAGATCATCGGCCGCGAATTCATCCGCGCGTTCGAGGAAGCCGAACTCGCCATCATCGCCGAGGCAGCCGCCCATGGCGAAAAGATCAAGTTCCTGGTCCAGGGCACCCTGTACCCGGACGTCGTCGAGTCCGGCGGCGGCGAAGGCGCTGCCAACATCAAGAGCCACCACAACGTGGGCGGGCTTCCCGAGGACCTGCAGTTTGAACTTGTGGAGCCGCTGCGCGCGCTCTTCAAGGACGAAGTCCGTGCCGTGGGCGCCCAGCTGGGACTGCCTCAGGAAATCGTGGGCCGCCAGCCGTTCCCCGGCCCCGGCCTCGGCATCCGCATCGTCGGCGAGGTCACCAAGGAACGCCTGGACCTGCTGCGCAAGGCGGACGCCATTGCCCGCGCCGAGCTCACCGCCGCCGGCCTGGACAACGATGTATGGCAGATGCCGGTTGTCCTGCTGGCCGACGTCCGCAGCGTTGGCGTTATGGGCGACGGACGCACGTACGGCCACCCGATCGTCCTCCGTCCGGTTTCCTCCGAAGACGCCATGACCGCGGACTGGTCACGGCTGCCCTACGATCTCCTGGCCCGGATCTCCAACCGGATCACCAACGAGGTGGAGGGTGTCAACAGGGTGGTCCTGGACGTCACGAGCAAGCCGCCTGGAACCATTGAATGGGAATAGMTTPTASQTSQKPVLVVDYGAQYAQLIARRVREANVYSEVVPHTYSTEQLLARNPAAIILSGGPSSVYADGAPSVGADLFEAGIPVFGICYGFQAMANALGGKVDKTGLREYGSTQTTILGEGRSVLEGMPQHQNTWMSHGDSVHEAPEGFEVLATTAGAEVAAFANEEKCLYGVQWHPEVKHSAYGQQVLENFLFKGAKLEPNWTTGNILEEQVERIRQQVGDAKVICGLSGGVDSAVAAALVQRAVGDQLTCVFVDHGLLREGEAEQVERDFVAATGVKLYVANEQERFQAALAGVSDPETKRKIIGREFIRAFEEAELAIIAEAAAHGEKIKFLVQGTLYPDVVESGGGEGAANIKSHHNVGGLPEDLQFELVEPLRALFKDEVRAVGAQLGLPQEIVGRQPFPGPGLGIRIVGEVTKERLDLLRKADAIARAELTAAGLDNDVWQMPVVLLADVRSVGVMGDGRTYGHPIVLRPVSSEDAMTADWSRLPYDLLARISNRITNEVEGVNRVVLDVTSKPPGTIEWEPGPT0021580_1226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
D1-29_03362552hypothetical proteinATGATTGAACCCAAACCGGCCAGGCAGGCACAGCCGTCCGAAGGAACCAGCAGCGGCCAGAACAGCAGTGGCCAGAACGGCGGCGCAGCCGGGAAAACCGGCAGGAAGCGCCGCTTCGGCGGTACCGAACCGCAGATCCGCTCCGCACTGAAGTTCTACAAGGTGCTGGCGTACCTCACGGGTGCCATGCTCCTGCTGCTCTGTGCCGAGCTCATTGCCCGCTATGCGTTCGGCCAGTACCTGTTTGCCGGGGGAACCAATGCCGTGACGGGGGAGCCGTTTGGCCTGGGTTTTGCGGACGCCGAGCCCAAGGGTGTGGTGGGCGGTGTCAACATCTCCGTCACCGTGCTGATCGTCCACGGCTGGATGTACGTGGTGTACCTGATGTCCAACTTCCGCCTCTGGTCGCTGATGCGCTGGCCGTTCGCCAAGCTCATCCTGCTGGCCCTGGGCGGTGTTGTTCCCTTCCTGTCCTTCATCGTGGAGAAGAAGTTCCACGCCGAGGTCGAGGCGGAACTCGCGGACAACCCGCAGGCGCCACAGCGGTACTAGMIEPKPARQAQPSEGTSSGQNSSGQNGGAAGKTGRKRRFGGTEPQIRSALKFYKVLAYLTGAMLLLLCAELIARYAFGQYLFAGGTNAVTGEPFGLGFADAEPKGVVGGVNISVTVLIVHGWMYVVYLMSNFRLWSLMRWPFAKLILLALGGVVPFLSFIVEKKFHAEVEAELADNPQAPQRYNANANANANA
D1-29_03363840hypothetical proteinGTGTGGAAAACTGCCCTTAAGCCCCGATGGATCGCCGGCCTGATCTTCGCGATCGCCGTTTCCGGGGTGTTCGTCCTGCTGAGCCAATGGCAGTTCGGACGATCCACGCAGCCGGAAGTCCCCGTCAACCCTGCCACGGAGAACGCGAAGGCCCTCACGGAGACGCTTCAGCCGGGTACTTTCTTCCACGGCTCGGTGGCGGACCAGATGGTCACGGCAGTAGGAACCTACGATCCGGCCAAACAGGTCCTGGTTCCCGGGCGGCTGTACAACGGGGAACCCGGCTATTGGGTGGTGTCGGCCTTCGCCGTCAACGGCGCCCCCGCACTGACCGGGGTAGCCGCTTCCCCGCAGACCTGGATCCCGGTTGCCCGGGGATGGGTGGCGGATCCGGCGGACGCCGCGGCGCCGCCGTCGGGAACCCTGGAACTGACCGGACGGCTGCTGCCCTCCGAAGCGCCACTGCCGGAAACAGCCCCCGGTCCCGGGCGGGCCACCGCCGTATCGGTGGCCGAACTCATCAATTACTGGGACGTCAGCAGCTATCCCGGTTTTGTCGCCGCGACGGCGGAAATCGCCAACGGCTCGGACGTCAGTCCGGCGGCGGTACCAGGGCCGCTCAAGCCCCTGCGCATCGGGCCGCAGCCGCCGGCCCAGCAGATCAACTGGCTCAACCTCTTCTACTCCCTGGAGTGGGTTGTCTTTGCCGGCTTCGCCATCTTCATCTGGTGGCGTTTGGTCAAAGATGACCACCGCCGGGATCTCGAAGACGAATTCGACGACGGCCACCACCATTCGCCAGCATCTTCTGATCAGCCCCAACAAAAGGTACAGCCATGAMWKTALKPRWIAGLIFAIAVSGVFVLLSQWQFGRSTQPEVPVNPATENAKALTETLQPGTFFHGSVADQMVTAVGTYDPAKQVLVPGRLYNGEPGYWVVSAFAVNGAPALTGVAASPQTWIPVARGWVADPADAAAPPSGTLELTGRLLPSEAPLPETAPGPGRATAVSVAELINYWDVSSYPGFVAATAEIANGSDVSPAAVPGPLKPLRIGPQPPAQQINWLNLFYSLEWVVFAGFAIFIWWRLVKDDHRRDLEDEFDDGHHHSPASSDQPQQKVQPNANANANANA
D1-29_03364489fruA_2COG1299PTS system fructose-specific EIIABC componentTTGGCGGAACCACTTGACCGGTACGATGCCGAACTCACCACGCCGGACATGGTGATCCTGGAGCTGGAGGCAACGGACAAGGAAGACGCTGCCTCACAGCTTGCGGAGCGGCTTTTTTCCGCCGGCCGAGTCACCGACCTTCCGGGGTTCCTCCAGCATGTGAACGCCCGGGAACACCAGCTGGCCACGGGCCTGCCGGGCGGCGTCGGTCTCCCGCACGCCCGGAGCGAATTCGTGTCCCGCACCTCAATCGCCGTAGGCATCACCAAATACGGCCACGCCCTGGATTTCGGAGCGACGGACGGTCCCGCAACCGTCATCCTCCTGATCGCCACGCCGGCCAGCTCATTCTCTGACCACCTGGAAGTCCTGGCCACGCTGGCGCGCTCGCTCTCAAAAGAGTCTTTCCGGGAGTCATTGCGGCGTGCCTACGATCCCGAGGTGATCGCTGAACTCATCAACTCCAGCCTGGTGTTCTTTGACCACTGAMAEPLDRYDAELTTPDMVILELEATDKEDAASQLAERLFSAGRVTDLPGFLQHVNAREHQLATGLPGGVGLPHARSEFVSRTSIAVGITKYGHALDFGATDGPATVILLIATPASSFSDHLEVLATLARSLSKESFRESLRRAYDPEVIAELINSSLVFFDHPGPT0017130_54DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_FRUCTOSE_PTS_SYSTEM_I,PGPT0017130-fruB-K02768NANA
D1-29_033651740glpD2COG0578Glycerol-3-phosphate dehydrogenase 2ATGAAGAGTGTTCCCAACAACAACGGAGCCCTGGGACCCGCAGCCAGGGAAGCATCGATCGAACAGCTCAGGGCAACCTCCCAGCCCGGCCGCGAACTGGACATCCTGATCGTGGGTGGCGGGATCGTTGGCACGGGCGCCGCCCTGGACGCCGTAACCCGGGGCCTCACAGTAGGCATCGTGGAGGCCAATGACTGGGCAGCAGGTACGTCCTCCCGGTCTTCGAAGCTGATCCACGGGGGCCTGCGCTACCTCGAAATGCTGGACTTCGCCCTGGTCAAGGAAGCGCTTCACGAACGTGGCCTGCTGTTGACCGAGCTCGCACCGCACCTCGCCCGTCCAGTCCCGTTCCTGTACCCGCTGACCAGGCCCTTTTTGGAACGGCCCTACGTGGGTGCCGGCATCGCACTGTACGACGCCATGTCTATTTCCGGCGGCCACAGCCGGGGCGTTCCGTTCCACAAGCACCTCACGCGGCGCGGCACGCTCAGGGCTGCCCCCAGCCTCAAAGATGATGCGTTCGTCGGTTCCATCCGCTACTACGACGGCCAGGTCGACGACGCCAAATACGTGGCCAACCTGATCCGGACCGCCGCCCATTACGGCGCCCATGCCGTGAATCAGATGGCTGTGGTGGATTTCCTGCGTGAAGGCGAACGCGTCGTTGGGGCCAAGGTGGTCAACCACGAAGACAACTCACAGTTCAACGTCCGCGCCAAACAGGTTATCAATGCCACGGGCGTATGGACCGATGAGACCCAGGCCATGGTGACTGAACGCGGACAGCTTAAGGTCCGGGCCTCCAAGGGCATCCATCTGGTGGTTCCCCGCGACCGCTTCCAGTCCACCGTGGGGCTGATCCTGCGAACGGAGAAGTCCGTGCTTTTTGTCATCCCCTGGGGGCGGCACTGGATCATCGGCACCACGGACACGGACTGGAACCTGGACAAGGCCCATCCGGCGGCCTCCAGCAAGGACATCGACTACATCCTGGAACATGTCAACCGGGTACTGAAACGGCCGCTGACCCGGGAGGACGTTGAAGGCGTCTATGCCGGGCTCCGCCCCCTGCTGGCAGGGGAAAACGACACGACGGCCAAGCTGTCCCGCGAACACATCGTGGCCCACCCCGTGCCCGGGCTTGTTGTGGTGGCCGGCGGCAAATGGACCACCTACCGGGTGATGGCCAAAGACGCGGTTGACGAGGCCACCCGCACCATGGATGAGCGCGTCCCGCCCAGCTGCACCGAAACTATTCCGCTCCTGGGAGCCAACGGTTTCAAAGCCGCCTGGAACCGCAGGAACCGTACGGCCGAGGAATCCGGGGTGCACGTTGCCCGCGTGGAGCACCTGCTAAACCGGTACGGATCCATGACCCCCGAGGTGCTGGCCATCATCGAGGCAAACCCTGTCCTGGCTGAGCCGCTTCCCGGCGCTGACGACTACCTGCAGGCGGAAGCTGTGTACGCCGCCACCCATGAGGGAGCCCGCCATGTCCATGATGTCCTGACACGCAGGACCAGGATTTCCATTGAGTCCTGGGACCGCGGTGTTTCAGCCGTTCCGGTAGTCGCTAAACTGATGGGCGAAGTCCTTGGCTGGAGCGATGCGCAGCGTGAAAACGAAATCAAGAACTATATTGCACGGGTTGAAGCCGAACGCCTGAGCCAGCAGCAGCCGGACGATATTTCCGCCGACGCCGCCCGCCTGGGTGTGGAGGACATCGTTCCGTTGCGCTGAMKSVPNNNGALGPAAREASIEQLRATSQPGRELDILIVGGGIVGTGAALDAVTRGLTVGIVEANDWAAGTSSRSSKLIHGGLRYLEMLDFALVKEALHERGLLLTELAPHLARPVPFLYPLTRPFLERPYVGAGIALYDAMSISGGHSRGVPFHKHLTRRGTLRAAPSLKDDAFVGSIRYYDGQVDDAKYVANLIRTAAHYGAHAVNQMAVVDFLREGERVVGAKVVNHEDNSQFNVRAKQVINATGVWTDETQAMVTERGQLKVRASKGIHLVVPRDRFQSTVGLILRTEKSVLFVIPWGRHWIIGTTDTDWNLDKAHPAASSKDIDYILEHVNRVLKRPLTREDVEGVYAGLRPLLAGENDTTAKLSREHIVAHPVPGLVVVAGGKWTTYRVMAKDAVDEATRTMDERVPPSCTETIPLLGANGFKAAWNRRNRTAEESGVHVARVEHLLNRYGSMTPEVLAIIEANPVLAEPLPGADDYLQAEAVYAATHEGARHVHDVLTRRTRISIESWDRGVSAVPVVAKLMGEVLGWSDAQRENEIKNYIARVEAERLSQQQPDDISADAARLGVEDIVPLRPGPT0006775_1053DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111NANA
D1-29_033661137COG0516putative oxidoreductase/MSMEI_1564GTGACTTACGAGATTGAGATCGGCCGTGGCAAGCGTGGGCGTCGTGCCTACTCCCTGGATGACATTGCGATTGTCCCTAACCGTCGTACCCGCGATCCCAAGGACGTTTCCGTCTCGTGGCAGATCGATGCCTACAAGTTCGATATGCCGGTCATCGCCGCCCCCATGGACTCAGCCATGTCGCCGCAAACAGCCATCGCCCTTGGCCGGCTGGGCGGACTGGGCGTGCTGGACCTTGAGGGCCTGTGGACCCGCTACGAGGACCCGCAGCCGGTCCTGGATGAGATCGGCGCCCTGGAGGACGAGACCAACAGCCCCGCTGTGACGGGTCGGATGCAGGAGCTTTACCGCGCCCCCATCCAGCCTGAGCTCATCACCTCGCGCCTCGCTGAGATGAGGGCTGCAGGGGTGACGGTGGCGGGATCACTGACCCCGCAGCGCACCCAGGAGCACTACAAGACAGTAGTGGCTGCCGGCGTCGACATCTTTGTGATCCGCGGAACCACCGTCTCTGCCGAGCACGTTTCAAAGGACCACGAACCCCTGAACCTGAAGCAGTTCATCTATGAGCTGGACGTTCCGGTAATTGTGGGCGGCGCAGCCGGCTACACACCGGCGCTGCACCTCATGCGGACCGGCGCGGCCGGAGTCCTGGTGGGCTTCGGCGGGGGAGCCACCAGCACCACACGGCGGGCCCTGGGTATCCATTCGCCCATGGCCTCCGCCATCTCCGATGTCGCGGCCGCCCGCCGCGACTACATGGATGAGTCCGGCGGGCGCTACGTCCACGTGATCGCCGACGGCGGAATGGGCAGCTCCGGCGCGATCGTCAAGGCCATCGCCATGGGCGCCGACGCCGTGATGCTGGGCAGCGCACTGGCCCGGGCAGAAGAGGCTCCGGGCAAGGGCTGGCACTGGGGCCAGGAAGCCCACCACCTCGAACTCCCGCGCGGGGACCGGGCGAACGTAGGCACCGTGGGCCCCCTCGAGGAGGTTCTCTTCGGGCCCGGCCACCACACCAACGGAACCTCCAACCTGATCGGTGCGCTGCGCCGTTCCATGGCCACCACCGGCTATTCGGACCTGAAGGAATTCCAGCGGGTCGACGTCGTGGTGTCCCCGTACGCCGGCAACTGAMTYEIEIGRGKRGRRAYSLDDIAIVPNRRTRDPKDVSVSWQIDAYKFDMPVIAAPMDSAMSPQTAIALGRLGGLGVLDLEGLWTRYEDPQPVLDEIGALEDETNSPAVTGRMQELYRAPIQPELITSRLAEMRAAGVTVAGSLTPQRTQEHYKTVVAAGVDIFVIRGTTVSAEHVSKDHEPLNLKQFIYELDVPVIVGGAAGYTPALHLMRTGAAGVLVGFGGGATSTTRRALGIHSPMASAISDVAAARRDYMDESGGRYVHVIADGGMGSSGAIVKAIAMGADAVMLGSALARAEEAPGKGWHWGQEAHHLELPRGDRANVGTVGPLEEVLFGPGHHTNGTSNLIGALRRSMATTGYSDLKEFQRVDVVVSPYAGNPGPT0021445_6234DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
D1-29_03367891hypothetical proteinATGGCGCCAGGCCTCTACGGTGCGGACATCGAGCAGCTCCGAACACTATCGAAAACCATGGGTCAGTCCGGGTCGCGTCTAAAGACGGTGGAATCCACGGTGAACTCGCTGGTGCAGTCCGCTGCCTGGAAAGGCGCGGACGGGGACAGATTCCGCAGCGAATGGACCTCGTCCCTGCGTCCGATGCTCAGCAGGACCTCCGAGTCACTGGAAAGCCAGTCCCAATTGCTGCTAAAGCACGCGGACGAGCAGGACCAGGCCAGCAACTCGGGCAGGGGCGCCGCGTCCTCCCCCGCCCCGTCCGGCGCCGGCGATCCGGGCAACGGCTCCGGGCCCGAGCGGAACTGGGGCGATGCCTTCACCGATCCAGACTACGAGCACGCGCCCGGCGGCATCCAGTGGCTCCTGGAGAAGGCTGGTGTCAACGATGGCAGCGCGGCATCAAGCATCGCCAACGCCCTCAAATTCGCTGCCGACAAATTCAGCTGGAACCTCGAACTTGCCCAGGTAGAGGCGGGCGTCAGCAAGTTCTTTGGTTTTATGGGTCACGCCGGCAAGGTTCTCGGCGTGTTGGGAGGCGCCATCGGCGTCCTGGATGTGCTCTCGGGGATTGACAACAAGGACCCCTTTAGAATTGCCGACGGCGTCATTGGCGGCGGCCTGTCCGTGGCTGCGGTTCTGGCCACGGGAACCATCGTAGGAGCGCCTGCCGGCGTCGTGCTGGGTGGGCTTGCCCTCGGCTGGGGACTTCTGGGCATGATGTCAGGCGATGTCCCCGTCACGAAGAGAATCTGGGACTTCGGGGCAGGTGTTGTGGGCGGCGTCAAGGATCTTTCGGACGGCGCCGGGGATGCCTTGGGCTGGGTGGGCGGCAAGCTCGGATTCGGCTGAMAPGLYGADIEQLRTLSKTMGQSGSRLKTVESTVNSLVQSAAWKGADGDRFRSEWTSSLRPMLSRTSESLESQSQLLLKHADEQDQASNSGRGAASSPAPSGAGDPGNGSGPERNWGDAFTDPDYEHAPGGIQWLLEKAGVNDGSAASSIANALKFAADKFSWNLELAQVEAGVSKFFGFMGHAGKVLGVLGGAIGVLDVLSGIDNKDPFRIADGVIGGGLSVAAVLATGTIVGAPAGVVLGGLALGWGLLGMMSGDVPVTKRIWDFGAGVVGGVKDLSDGAGDALGWVGGKLGFGNANANANANA
D1-29_03368684hypothetical proteinATGACTGAAGCCACCACCCTGACCGGTAATGAACCCGACGCAGCCATGCCCGCCGCGGCCTATCGGATGACGAGCCACGAGATACTGGCACTGCTGGCTTTCCAACCGGGACCCGGAACAGCCCTGACGCGTCAGGTGCTGGGTCTCGCCGAACTCCCGGACGATGACGATCTGGTGCGGGCTGGCGTCGGCACGTTGAACATCAGGGACACCGTGGAAGTCAACGGCGAAGAAGTAACGCTGTTGGCCCAGGCGAGAATACTCGCCAGGATTTTCAGCACCTCTTCAGAGTGGTACGACATCACCCGGATCGGCTCCGAGGCTGTCTCCCCCAGCTATTTGGTGGACTCCCCTGCCGGACGCGCTGCCATCTTCCTTAGGCCCCTGAGCGAGTACGTGTGCCTCCCACTCCGCGATGACGTGAACCTGCTCGACTTTGTGCAGCTCACAGTTGATGAAGCCGTGGCGGCTTTGGGCACGGAAGGTGGGGGGATAGTCAGCGCCCGGCGATACCGTGTCGAAGCGGACAAGCCAGTGGTCGCAAACATTAAGGTCCGTGACGCAGGCTCCCTGCAACTTGCATCGGCCCCCTTGGATGACGACGGACAACTGGGTGTGCGCGACCTGGCCGCCGGTGAGCAACCGGGCCTGACAGTCCGTACCCTGTTGGCTGCCGCATCGTGAMTEATTLTGNEPDAAMPAAAYRMTSHEILALLAFQPGPGTALTRQVLGLAELPDDDDLVRAGVGTLNIRDTVEVNGEEVTLLAQARILARIFSTSSEWYDITRIGSEAVSPSYLVDSPAGRAAIFLRPLSEYVCLPLRDDVNLLDFVQLTVDEAVAALGTEGGGIVSARRYRVEADKPVVANIKVRDAGSLQLASAPLDDDGQLGVRDLAAGEQPGLTVRTLLAAASNANANANANA
D1-29_03369414hypothetical proteinATGATCTTCGCCATCCCCGGCGTGGCGCAGGCAGCCACTTTGGCGGCGACTGATCAGAGTCCGGAGGACGGCTTGGTGCTGACAGGACTTGGGCTGCTGATATCCGCAGTCGGCTGGCTGGCAGCCATAGCACCGAGGTTTACACGCGCAGCTCCAAGCCCCGCAGGTGACGTCGCCCGCACGGCACGCTACGTCCGGTTGGCACCTGGCGTGTTCATTAGCGTGGTGGCCGCCATGCTGGTGATCGTGGTGATTTTTATGGCCGTGACCCCAAGGGGAACATCGCCGGAGGTCCTGCCAATCATGGCGTTCCTGGCTGCTTTTCCGCTCCCCATTGGGGCTGGAATGCTCTACTCCAGGCACCTTCACCTGAACCGGGACCGCCTGTACGCTCAGTGGCTTGGACGCCGCTAGMIFAIPGVAQAATLAATDQSPEDGLVLTGLGLLISAVGWLAAIAPRFTRAAPSPAGDVARTARYVRLAPGVFISVVAAMLVIVVIFMAVTPRGTSPEVLPIMAFLAAFPLPIGAGMLYSRHLHLNRDRLYAQWLGRRNANANANANA
D1-29_03370648hypothetical proteinATGACGGTTCCAATTCCTTTCCCCGCGGTCCAGCCCGCGCATCCTCTCGATTACTGGCTCTCCCCGGAACTGGCACGGATCAGTCCGCCGAATGCCCCTTCCCGGTTGCGGCAACTGGCCGACGCCCAAGGCGCCTTGGCTGCCGCCTGGGGCAGCGCGATCGGTGGCGGACCTGTACTGGTTCTGGCTGGCGGCATCGTCTCCGTCATGTCAGTCAACCCTGCCGGGGTCCTCGTCCTCGGCCTGCTGGGCCTTGCCCTATCCCTGCTGGGCCTGTTTTTCTGGACGCGGGTCCGTAGCACATTGCCGAACACAGACAGGCTCCTGATCAGCCGTGGCCCGGGATCGGCCCGCGGCGGCATCACGATGGTGGCCGGACTGGCCATCGTCATAGGTGCGATCCTGGCCTCGACCTTGCCCGGGATTGCTGCCCGGGGAGCCGCCACTCTCATCGCGGTGATCGGCGCCTATCTGCTCATCGTGATGCTCCTGCTGGCCTGCATCCTCGTTCCTTCGGTGGTCATGGGCCGTGCCCGGCAGTCCTTCAGACGAAGGGTCCGGTCCGATCCGGTTCTCCGGGCGGCGGTGGAAGAGGATCTGGCCACGTGGCGGGCCCCCTACGGGAACGCGGCTTATGGCCCGCTCTGAMTVPIPFPAVQPAHPLDYWLSPELARISPPNAPSRLRQLADAQGALAAAWGSAIGGGPVLVLAGGIVSVMSVNPAGVLVLGLLGLALSLLGLFFWTRVRSTLPNTDRLLISRGPGSARGGITMVAGLAIVIGAILASTLPGIAARGAATLIAVIGAYLLIVMLLLACILVPSVVMGRARQSFRRRVRSDPVLRAAVEEDLATWRAPYGNAAYGPLNANANANANA
D1-29_033711860btuD_13Vitamin B12 import ATP-binding protein BtuDATGTCTGAACCACGCCATCCGGCAGTTTTGGGGCCCAAAAAGGAACCCGTAAGGAAGCTTGCACTGCGGCCCTACGCGCGTGCGGTGGCGCAGGTTCTTCGGGTCAGTTTCCGCGCCTCGCCCGCGGCGGTGGTGATGAAGGTACTGGGTTCGCTGATCTCGGCGCTCCTGCCGCTTGTTACCACGTACTTTGCCGCGCTGACCACCACGGCGCTGGCTGCTGCGTATGCCGGTGACTCCGCTGCAGGCCAGCAGGCCATTGTCTACGTCATCATCACGGCGGCCCTGGGGCTGTTCTGGGGTGCGTTCAGCAGCGTGGACCGCTACATCCAGCAGCTCATGAGCTTTAAGGTGGGCGCCATTGTCGGCGACCAGATGTACGAGCGGTTCCTGGCCCTGGAGTTCTGGCGCTACGACGACAAGGAAACCGTTGACCTGTACGACCGCGCCAAGCGGTTCTCGGATTCCTATGCCCGCGTGCTGGACCGTATCGCGGCAATCTTCACCCAGTTCGTGTCCGTGATACTGGCAGTGGGTGCGCTCCTGCTGGTCAGCTGGTGGATCGCGGTAATTGTCCTCGTGGCGATTGTGCCCAGCGTGTACCTGCAGTTCAAACTCTCCAGGGAACAGATCGCCCACTGGAATACCCAAGTGGATTCGCGCCGCCAGCGGCGCATGATTGAAACCAACCTCCTGCGGCCGCAGCACATCGCCGAAATGCGCCTCTACGGCATTGTGGGGTACCTGATGGAGTTCCGGTCACGGCTCCGTGACGCGGACGAGCGCCGCCGGCTGGACTTCCAGAAGCGCTACATTCCCAAGCAGCTGATGGCTGACACCCTGCAGTACGGGGCTGAAGTTGTCTCACTGATCTGGGTGGTGGGCCAGATCATCGCCCGCGCCCAGCCAGTGGGGCAGTTCCTGTACGTCCAACAGATCGTCAGCCGGGCGCTGTCCACGGCCAATAACCTGGTCACCTCGCTCAGCTCGATCGACGAAGACCTCGCCAACCTGAAGGACTATGAGCTGTTCATGGCCCTGCCGGTCCATTCGGACCACTCCCCGCCACTGCTCCAGGCGCCCAGGACGGTGGAGCTGCGCGATATCCGCTTCACGTACACCGGAAGTGACATCGAGGTGATACGCGGCATCAGCCTGACCATCCGCGAGGGCCAGCACATCGCCATCGTGGGGGAAAACGGCGCCGGAAAGTCGACCCTGATCCGCATCCTCGCCGGGCTCTACCGGCCGGACACCGGGCAGGTAATGCTCGACGGCGTCGACCTCGCCGCCGTCGACGTCAAGTCCTGGCACCGCCACCTGGCGGTGTTGAGCCAGGAATTCCTGAAGTATGAGTTCGCCACGGCTGCGGAGAATATCTACTTTGGCGACGTCGATTCACCCCGGGACGACGAGCGGATCCGAAGGGCAGCGGGTGACGCCGAGGCCCTGGACTTCATCAACAAGCTGCCCAACGGACTGGATAACCACGTCAGCAACTGGATGGAAGATCCGCGCGGGCGCAAGGGCAGCGGGCTGTCCGGCGGCCAGTGGCAGCGGCTCGCCATGGCCCGCAACTTCTACCGCAAGGCTTCGTTTATGGTGATGGACGAACCCACCTCCGCCATCGACGCCCTGGCGGAGCACCGGATCTTCACCCGGCTCTTCGCTGACTGCAGCACCACGATCATTGCCATCAGCCACCGGCTCGCCACGATTGAGAAGGCTGACATTGTGTACATGCTGGAAGACGGCGAGATCGTGGAGCAAGGTACGCATAAGGAGTTGGTGGCACTGCGCGGCCGCTACTTCAGGATGTTTGAATCCCAGCTGAGCCTTGACGCTCAGAGCGGGCCATAAMSEPRHPAVLGPKKEPVRKLALRPYARAVAQVLRVSFRASPAAVVMKVLGSLISALLPLVTTYFAALTTTALAAAYAGDSAAGQQAIVYVIITAALGLFWGAFSSVDRYIQQLMSFKVGAIVGDQMYERFLALEFWRYDDKETVDLYDRAKRFSDSYARVLDRIAAIFTQFVSVILAVGALLLVSWWIAVIVLVAIVPSVYLQFKLSREQIAHWNTQVDSRRQRRMIETNLLRPQHIAEMRLYGIVGYLMEFRSRLRDADERRRLDFQKRYIPKQLMADTLQYGAEVVSLIWVVGQIIARAQPVGQFLYVQQIVSRALSTANNLVTSLSSIDEDLANLKDYELFMALPVHSDHSPPLLQAPRTVELRDIRFTYTGSDIEVIRGISLTIREGQHIAIVGENGAGKSTLIRILAGLYRPDTGQVMLDGVDLAAVDVKSWHRHLAVLSQEFLKYEFATAAENIYFGDVDSPRDDERIRRAAGDAEALDFINKLPNGLDNHVSNWMEDPRGRKGSGLSGGQWQRLAMARNFYRKASFMVMDEPTSAIDALAEHRIFTRLFADCSTTIIAISHRLATIEKADIVYMLEDGEIVEQGTHKELVALRGRYFRMFESQLSLDAQSGPNANANANANA
D1-29_033721512guaBCOG0516Inosine-5'-monophosphate dehydrogenaseATGACCCAGCCTGAACACGATCCTTTCGGCTTTGTCGGCCTGACCTACGATGACGTCCTCCTCCTTCCGGGCCACACCGAGGTCATCCCCTCCGACGCCGACACGTCCTCCCGGATTTCCAAGCGCATCACGGTCCAGACCCCGCTGCTGTCCGCTGCGATGGACACTGTCACGGAGTCCCGAATGGCCATCGCCATGGCCCGCCAAGGTGGCCTGGGCGTGGTTCACCGCAACCTCTCCATCCAGGACCAGGCGGACCAGGTGGACCGCGTGAAGCGCAGCGAATCGGGGATGATCACCAACCCGTTGACCATTGGCCCTGAAGCAACACTGGCGGAACTGGATGAGATCTGCTCGCAGTACCGGGTCTCCGGTCTCCCCGTCGTGGACGATGGCATGCGGCTCCTGGGCATCGTCACCAACCGCGATACGCGCTTTGTGCCGGAGGCGGATTTCCCGCTGCGGCTAGTCAGCGACGTTATGACCAAGATGCCGCTGGTGACAGGGCATGTGGGAATCAGCCGGGAAGAAGCCTCCCATAAGCTGGCCACCAACAAGATCGAAAAGCTCCCGCTCGTTGACGAGCAGGGCCGGCTCAAGGGCCTCATCACCACCAAGGACTTCACCAAGGCCGAGCAGTACCCGCTGGCCACCAAGGACGAAGAGGGCCGCCTGCGAGTAGGCGCAGCCATCGGCTTTTTTGGTGATGGCTGGGAGCGCGCCATGGCCCTGGTGGACGCCGGAGTGGACGCATTGTTCGTGGACACCGCCAACGGGCATTCCCAGGGTGTGCTGGACATGATCCGCCGGCTGAAGTCAGATCCGGTTGCGGCGCATGTTGACATCATCGGCGGCCAGGCCGCTACCCGTGAAGGTGCCCAGGCGCTGATCGACGCCGGTGCCGACGGAATCAAGGTGGGCGTGGGCCCCGGCTCCATCTGCACCACCCGCGTGGTGGCCGGCGTTGGTGTCCCGCAGATCACGGCCATCTACGAATCCGCCAAGGCAGCCATCCCGGCCGGTGTTCCGCTGATCGCCGACGGCGGGCTGCAGTACTCGGGCGACATCGGCAAGGCCCTGGTCGCCGGAGCCGACACCGTGATGCTGGGCTCCCTCCTGGCCGGCTGCGACGAATCGCCGGGCGAGCTGATTTTCGTGAACGGCAAGCAGTTCAAGAGCTACCGCGGCATGGGCTCGCTGGGCGCGATGCAGTCCCGCGGAAAGAACACGTCCTACTCCAAGGACCGCTACTTCCAGGCCGACGTCTCCGGGGACGACAAGCTGATCCCCGAAGGCATCGAAGGCCGGGTGGCCTACCGCGGGCCGCTGGCTTCCGTGGCGTACCAGTTGGTGGGCGGCCTGCGCCAGACCATGTTCTACGTCGGTTCCCCCACCATCCCGGAGCTGAAAGCGCGTGGCAAGTTTGTCCGCATCACCCCGGCTGGGCTCAAGGAATCGCACCCGCACGACATCCAGATGACGGTGGAAGCACCCAACTACGGTTCACGCTGAMTQPEHDPFGFVGLTYDDVLLLPGHTEVIPSDADTSSRISKRITVQTPLLSAAMDTVTESRMAIAMARQGGLGVVHRNLSIQDQADQVDRVKRSESGMITNPLTIGPEATLAELDEICSQYRVSGLPVVDDGMRLLGIVTNRDTRFVPEADFPLRLVSDVMTKMPLVTGHVGISREEASHKLATNKIEKLPLVDEQGRLKGLITTKDFTKAEQYPLATKDEEGRLRVGAAIGFFGDGWERAMALVDAGVDALFVDTANGHSQGVLDMIRRLKSDPVAAHVDIIGGQAATREGAQALIDAGADGIKVGVGPGSICTTRVVAGVGVPQITAIYESAKAAIPAGVPLIADGGLQYSGDIGKALVAGADTVMLGSLLAGCDESPGELIFVNGKQFKSYRGMGSLGAMQSRGKNTSYSKDRYFQADVSGDDKLIPEGIEGRVAYRGPLASVAYQLVGGLRQTMFYVGSPTIPELKARGKFVRITPAGLKESHPHDIQMTVEAPNYGSRPGPT0021445_1147DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
D1-29_033732082hypothetical proteinGTGTCGATTGCGAGAACCACGGCCGACTCCGGCGGCATTCGTGACGCCATCTCCAACGGGCGGAAATCAACGTTCCGCCCCGAGGTCCAGGGGCTCCGCGCGCTCGCTGTCCTGATGGTGGTGACCTACCATGTGTGGCTGGGGCGGGTCTCCGGCGGCGTGGATATCTTCCTGCTGATCTCCGCCTTCCTCTTGACGCTTTCGTTCGTGCGGAAGGTTGAAGCGGGCAAACCCATGAACCTCATCCGGCACTGGCTGCACCTCTTTAAGCGGCTGCTGCCTGCCGCCGTCGTGGTCCTGCTTGGCATCCTGGCCGGCACCTGGCTGATCTTGCCGCAAAGCCGCTGGCCCGATGTCCTGGACCAGGCGTGGGCCTCCCTGCTCTACCGGCAGAACTGGCTCCTGGCCGACACCGCCGTCGATTACTACGCGCAGGACCACTCAGGCGCCAGCCCACTGCAGCACTTCTGGTCGCTGTCCATCCAGGGCCAGGTCTTCATCCTCTGGCCGCTTATCTTCGCCGGTGCGGCATTGGTGTGGAAGCTGCTGACACGGTTCCCGGTCAAAGGGATAAGCCCCAGCTACAGGCATGTCCTGTTGGTGGCTTTCGGTGGCATTTTTGCAGCCTCCCTCCTCTTCTCGATCGACCAGACTGCCAGCAACCAGGCCTACGCCTACTTCGACACGCGTACGCGACTGTGGGAGTTCGCCCTCGGCTCGCTCCTGGCTCTGGGACTTCCGTACCTCAAGCCTGGCAAGGCACTCCGGGTTGTCCTCGGCTGGGCCGGCCTTGCAGCCATGGTGTCAGTTGGCCTCGTCCTGACGGTGGACCGTTCCTTTCCAGGGTCCATCGCGCTCTGGCCCACCCTGGCTGCAGCCGCCACCATTGTGGCCGGGCAGAGTGGAAGCCGGTTCGGGGCGGACCGGCTCCTCGCCTGGAAGCCTTTGGTTGCCCTGGGTGACAACTCCTATGCCCTGTACCTGTGGCACTGGCCTGTGCTTGTCCTGGCACTGGCCTCCGCCGGCATTGAGGCGCCAAGCCTGGGCCAGGGCCTGGGTGTTGTTGCGGTTTCCATCGCGCTGGCTGTGCTGACCACCCGCTTTGTGGAAAAGCCGCTGCGCGAATGGCACTGGCCGCAAAAGCGTTCCTGGCGGACCGCCGTCGTGATTGCTGCCTGCTGCACCCTGCTGGCCGGCCCGGTGGCTGTCTGGCAGACCAGCCTGACGGCCGAGGAAGCTGCGGTTGCTGCCCAGCCGCGGGAGCTGACTCCCGGTGCGGCGTCCCTGGCGCCCGAAAATGCGGGCAAGCCGACGCCAGAGGCCCGGATCATTCCCGCGCCGGCGGCCATGAAGAACGAGTGGGCCGACATCGACGGCTTGTGCACGGACGCCAACGTGCCCTCGGATCCTTTGCTGGCCGGCTGCCTGCAAAACAACTCGCCCGAGACCGTGACCAAGCGGATTGTTGTGCTGGGGGATTCCCATGCCCAGCAGTACATGGCGGCCCTGGGTCCCATTGCCAGGGAACACGGCTGGGAGGTGGTGACCCTGCTCAAGGGTGACTGCCGCTTCGGCGCCGAATCACCGGAACGGACTGAGGACTGTAATGCCTTCAACAGGGCCAGCGCCGCCTACGTCATGGAGCGCAGGCCGGACGCCGTGTTCACCGTCGCCTCGCTGACGCACGTTCAGGCTCCCTTCGAAACGGAGGTTCCCGGCTACCTCGACGGCATCCGGCCGTTCACCGACGCCGGCATTGAGGTGGTGGGCGTGCGTGACAACCCGCGGTTCCCCATCAACATGCCCGAGTGCGTCCAGAAAAATGGGGCGGCGGCCCCTGAATGCAACGTCCCGCTGAACGAATCCCTGGCCGAGTCCTCCCCGCTGGACAGTTACCGCGGCAAAGTGGACGGGCTCCACCTCATGGACCTGAGCGACTTCTTCTGTGCCGGCGGCAGTTGCCCGGCCGTGGTGGGCAATGTATATGTGTACAAGGACGATAACCACCTCACTAAGACCTACGTCCAAAGCATGATTCCCATGTTCGAACGGCGCCTTCTGGCCGCTACTGGCTGGACCTGAMSIARTTADSGGIRDAISNGRKSTFRPEVQGLRALAVLMVVTYHVWLGRVSGGVDIFLLISAFLLTLSFVRKVEAGKPMNLIRHWLHLFKRLLPAAVVVLLGILAGTWLILPQSRWPDVLDQAWASLLYRQNWLLADTAVDYYAQDHSGASPLQHFWSLSIQGQVFILWPLIFAGAALVWKLLTRFPVKGISPSYRHVLLVAFGGIFAASLLFSIDQTASNQAYAYFDTRTRLWEFALGSLLALGLPYLKPGKALRVVLGWAGLAAMVSVGLVLTVDRSFPGSIALWPTLAAAATIVAGQSGSRFGADRLLAWKPLVALGDNSYALYLWHWPVLVLALASAGIEAPSLGQGLGVVAVSIALAVLTTRFVEKPLREWHWPQKRSWRTAVVIAACCTLLAGPVAVWQTSLTAEEAAVAAQPRELTPGAASLAPENAGKPTPEARIIPAPAAMKNEWADIDGLCTDANVPSDPLLAGCLQNNSPETVTKRIVVLGDSHAQQYMAALGPIAREHGWEVVTLLKGDCRFGAESPERTEDCNAFNRASAAYVMERRPDAVFTVASLTHVQAPFETEVPGYLDGIRPFTDAGIEVVGVRDNPRFPINMPECVQKNGAAAPECNVPLNESLAESSPLDSYRGKVDGLHLMDLSDFFCAGGSCPAVVGNVYVYKDDNHLTKTYVQSMIPMFERRLLAATGWTNANANANANA
D1-29_033741161czcOCOG2072putative oxidoreductase CzcOATGAGCAACGACGAGATGACGGAAACAGTGCTGGACACGCTGGTTATTGGCGGTGGCCAGGCAGGCCTGGCCCTGGGTCACTACCTGACGGACCAGGGGCGGAAGTTCCTGATTCTGGACGAAAATACCAGGGTGGGTGACGCCTGGAGGCAGCGGTGGGATTCACTTCGGCTCTTCACCCCAGCCAAGTATGACGGTCTTCCCGGGGAACCTTTCCCGGCTGACCCCCTGTCCTTCCCCACCAAGGACGAAGTTGCGGACTACCTTGAAACCTACGCGGCCCGGCTCAGCCTGCCGGTGCGCACCGGGGTCAGGGTAGAGCGCCTGTCGCGGGAAGGTGACAGGTACGTTGCCGTTTCCGATGGACACCGCTGGGAGGCGCGCAATGTTGTGGTGGCCACGGGGTCTGCCCGGCTCCCGAAGGTGCCGGACTTCGCGGCGGAACTCCCTCCCTCGGTTGTCCAGCTCCATTCCAGTGCATACCGGAATCCCGGACAACTCCAGGACGGGCCGGTGCTGGTGGTCGGATTGGGCAACTCGGGCGCCGAAATCGCCCTTGAAGTAAGCCGTACCCACGCGACAATCATCGCCGGCAAACCCGGCGGGGAGCTTCCGGTGAAGCACGGCCGGGCGGCAGCACGTTTTGTCCTGCCGGTGATCCGGTTTCTTGGACTCCATGTCCTGACTCTCGGCACCCCGATCGGCCGCAAAGCTGCGCCGTCCCTCAAGGCCCAGGCCGACCCGTTGATCAGGACCAAATCCAAGGACCTTGCCGCGGCCGGTGTCACCGTCGTCCCCCGGGTCAGTGGAGCGGAGAACGGCGGCCCGGTCCTGGCTGACGGCAGCCGGCCGGAGGTGGCCAACGTGATCTGGTGCACCGGATACCGCGAGGACTTCGGCTGGATCGACCCGGCCGTGTTCAGGCCGGCATCGCCCGAAGCTCCAGCACGTCAACCCGAGGTACCCGGCCAGTCCCTGTATGACGACGACGGACGGCCCCGCCAGCACCGCGGCGTGGCGCTGGACGCGCCGGGTCTGTTCTTCCTCGGGCAGGAATTCCTGTACGCGGCGGCGTCGGCCACCCTGCCTGGCTCCTGTCGCGACGCCCGTTACCTGGCCCGCAAAATCCCCGTGCACTCCCGGGCCCGGCAGTACGCTTAGMSNDEMTETVLDTLVIGGGQAGLALGHYLTDQGRKFLILDENTRVGDAWRQRWDSLRLFTPAKYDGLPGEPFPADPLSFPTKDEVADYLETYAARLSLPVRTGVRVERLSREGDRYVAVSDGHRWEARNVVVATGSARLPKVPDFAAELPPSVVQLHSSAYRNPGQLQDGPVLVVGLGNSGAEIALEVSRTHATIIAGKPGGELPVKHGRAAARFVLPVIRFLGLHVLTLGTPIGRKAAPSLKAQADPLIRTKSKDLAAAGVTVVPRVSGAENGGPVLADGSRPEVANVIWCTGYREDFGWIDPAVFRPASPEAPARQPEVPGQSLYDDDGRPRQHRGVALDAPGLFFLGQEFLYAAASATLPGSCRDARYLARKIPVHSRARQYAPGPT0013865_1265DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
D1-29_033751635malTHTH-type transcriptional regulator MalTATGACAGCTGAGACGGGCATCGACCAGGGCCGGTCGGCGTTCCGCGAGAACCGCTGGACTGAAGCCTTTGAGAACCTCCGTGACGCCGACCAGCACGGCGGGCTGCCGGCGCCGGATCTCGAGCGGCTTGCCACGGCCGAAATTCTGACCGGCAGCATCACCGCCGGCGTGGACACCCTCACCCGCGCCCATGAGGAGTTCCTGGTGGTTGGCGACGTCGAAGGTGCCGTGCGCTGCGCCGGCTGGCTCGCTGTGCACCTGATGAACATCCGGCAAGCGGCGCGCAGCGGCGGCTGGTTGGCGCGGGGCCAACGGCTTGTGAAGGAACTGGATGAACCGTCCGCCGTCGAGGGTCTCCTGCTGCTTCCGGTGGCGCTGGGCAAGCTGTTCGGCGGGGACCCCGCGGGCGCGTTCCAGGTTTTCTCCGAGATCGCGGCGTACGGACAGAGATTCCAGGACAACGACCTTGCCGCGCTGTCGCTGCTTGGCCAGGGCCAGTCAACCATCATGCTCGGCAATGTTGATGAGGGACTCCGGATGCTGGACGAAGTGATGGTGGCAGTGACCGCTGGGGAAGTCTCGCCCGTTCCCTCCGGCATCAGCTACTGCGCTGTGGTGGGGTACTGCCACCTGACTTTTGATCTGCCACGGGCGCTGGAATGGACCGGGGCGCTGGACCACTGGTGCCGCGGACGTCCTGACATGGTGGCCTTCAGTGGACAGTGCCAGTCCTACCGGGCCGAACTGTTTCAATTGCATGGAGCCTGGGCTGAAGCCCTGAAAGCAGCGACGGCAGCGCAGGACTACGCAGTCAAAGGTGATGCTGAAGCCCTCTATGGCGGCTATTACCAGCAGGGCGAAATGAAGCGGCTCACCGGCAAGCTGGATGCCGCTGACGCCTCCTACCGGTTGGCTGCCAAAAGCGGCCACTCTGCCCAACCTGGCCTTGCCCTTCTCTGCCTGGCCAAGGGAGACGCTGAACAGGCTCAGACCCTGATCCGAAGTGCAGTTGCGGCCTCGCGTCCGGCAATGCGCCAGCGCCTCCTGCCTGCGCTGGTGGAGATCGAGCTTGCAGTCCCGGACCTGTTGGCTGCGCGGAGCGCCGCCGACGAGCTGGAAGCCTTTTCCCTGGAGTGCCCTAAGCCGATGGTCCGCGCCCTCTCCTGGCAGGCCGACGGCGCCGTGTGCCTGGCCGAGGGCAACGCTGAGGGGGCGCTGGTTTCGCTCAGGCAGGCCTGGATGGTGTGGCAGGAGTTGGGTGTTCCGTATGAAGCCGCGCGCTGCCGGGTTCTTGCCGCCTCTGCCTGCCGTGCCCTCGGGGACGAGGCATCCGCCCTGATGGATCTGGAGGCGGCGCATGCGGAATTCCTTGAACTTGGGGCGGCTCCTGCGGCAGCCCGGGCAGCATCCCTCATCCGCGCGATCAACCAGGCAGAGCCGAGCCCGCTGACCCAGCGCGAAGTTGAAGTGCTCCGCCTTGTGGCATCGGGAAAAGGGAACCGTGCCATCGCCGCTGAACTCTTTCTGAGCGAGAAAACAGTGGCCAGGCACCTGAGCAACATTTTCCTGAAGCTGGGACTGTCCTCCAGGACGGCCGCCACCAGGTACGCGTACGAGCACCGGCTCGTCGGCTGAMTAETGIDQGRSAFRENRWTEAFENLRDADQHGGLPAPDLERLATAEILTGSITAGVDTLTRAHEEFLVVGDVEGAVRCAGWLAVHLMNIRQAARSGGWLARGQRLVKELDEPSAVEGLLLLPVALGKLFGGDPAGAFQVFSEIAAYGQRFQDNDLAALSLLGQGQSTIMLGNVDEGLRMLDEVMVAVTAGEVSPVPSGISYCAVVGYCHLTFDLPRALEWTGALDHWCRGRPDMVAFSGQCQSYRAELFQLHGAWAEALKAATAAQDYAVKGDAEALYGGYYQQGEMKRLTGKLDAADASYRLAAKSGHSAQPGLALLCLAKGDAEQAQTLIRSAVAASRPAMRQRLLPALVEIELAVPDLLAARSAADELEAFSLECPKPMVRALSWQADGAVCLAEGNAEGALVSLRQAWMVWQELGVPYEAARCRVLAASACRALGDEASALMDLEAAHAEFLELGAAPAAARAASLIRAINQAEPSPLTQREVEVLRLVASGKGNRAIAAELFLSEKTVARHLSNIFLKLGLSSRTAATRYAYEHRLVGNANANANANA
D1-29_033761524ligBCOG1793DNA ligase BATGTTGCTCGAAGAGCTCGTGAGGACCACGGATGCTGTCGCGTCGACGCGCTCACGGCTTGCGAAGGTGGAAGCCCTGTCCGACCTGCTGGGCCGGCTCGAACCGACGGAAATTGCTGCAGCCGTGGGCTTGCTCATCGCCAGGCCGCGCCAGGGCCGGGTGGGGATCGGCTGGCGCGGGATGACGGCAGCCATGGGGGACCCCGCTTCTGAACCGAGCCTTACCGTCGCCGACCTCGATGCTGCGTTGGACAGGCTGCTCATCACAGCAGGTGCCGGATCGGCCGCTGATCGCGCGGCAACACTCCGCACTCTCACGGCAGCAGCCACTGAGCGTGAGCAGGCCTTCATCGCCGGCGTGCTGCTCGGTGAACTGCGTACCGGCGCGCTCGAGGGGGTGTTGACGGACGCCATTGCCCGCGCGGCGGGGCGGCCCGTCGACGCCGTGCGCCGCGCGGCGATGCTTTCCGGTGACCTCGGCGGGACCGCGCTCCTGGCGATCACCGGCACGGCAGCCGAGCTTGACGCCGTCGGCCTCGTCGTCGGACGTCCCGTGCAGCCGATGCTTGCCGCCACGGCGCCCAGTGCCGCTGCGGCACTGAAGGCCACCGGAGAGGCATCCGTGGAATACAAGCTCGACGGCGCCCGCATCCAGGTGCACCGCGCCGGCGATGAGGTGCGCATCTACACCCGCACCCTGGCTGACGTGACCCACCGCCTGCCCGAGGTGGTGGACGTGGTGCGCGGACTGCCGGTGGGCGATGTGATCCTCGACGGCGAGACCCTCGCGCTGGATGAGGACGGCGGCCCGCGGCCGTTCCAGGAGACTATGTCCCGGTTCGGGGCGGATGCCGTGCGCACCACATTGCTGCATCCGTGGTTCTTCGACGTGCTGCACATCGACGGACGCGACCTGCTCGAGGAGCCGCTGGCAACTCGTATCAACGTGCTTGAGCGGATCGCGCCGGGCTACCGGATCCCGGGGGAAATCACGGCAGATGCTGCTGTTGCCGAGAGAGTGTCCCGTGATGCGCTCGCCGCGGGCCACGAAGGCGTGGTGGTAAAGGCCGTCGGATCCGCCTATGCGGCCGGCCGGCGCGGCTCAAACTGGATCAAGGTCAAGCCGGTGCTCACCTACGACCTGGTGGTCCTCGCCTGCGAATGGGGTTCGGGACGGCGCACCGGGCTCCTCTCGAACCTGCACCTCGGAGCCCTGGACCCCGCCGGTGAGTTCGGCGAACCCGGCGGCTACGTGATGGTGGGAAAAACGTTCAAGGGACTCACTGACGAGCTGCTGCGCTGGCAGACCGAAAAGTTCCAGGAGCTTGAAGTGCGGCGCACGTCTGGCACTGTGTGGGTGGAGCCCGTCACCGTGGTGGAGATCGCGATTGACGGCGTGCAGAGTTCCTCGCGCTATCCAGGTGGAATCGCCCTTCGGTTCGCCCGCGTCAAGCGTTACCGCGACGACAAGACCGCGGCCGAGGCGGACACCATTCAGACACTGCGGGCACTCCTGCGTCCGTAGMLLEELVRTTDAVASTRSRLAKVEALSDLLGRLEPTEIAAAVGLLIARPRQGRVGIGWRGMTAAMGDPASEPSLTVADLDAALDRLLITAGAGSAADRAATLRTLTAAATEREQAFIAGVLLGELRTGALEGVLTDAIARAAGRPVDAVRRAAMLSGDLGGTALLAITGTAAELDAVGLVVGRPVQPMLAATAPSAAAALKATGEASVEYKLDGARIQVHRAGDEVRIYTRTLADVTHRLPEVVDVVRGLPVGDVILDGETLALDEDGGPRPFQETMSRFGADAVRTTLLHPWFFDVLHIDGRDLLEEPLATRINVLERIAPGYRIPGEITADAAVAERVSRDALAAGHEGVVVKAVGSAYAAGRRGSNWIKVKPVLTYDLVVLACEWGSGRRTGLLSNLHLGALDPAGEFGEPGGYVMVGKTFKGLTDELLRWQTEKFQELEVRRTSGTVWVEPVTVVEIAIDGVQSSSRYPGGIALRFARVKRYRDDKTAAEADTIQTLRALLRPNANANANANA
D1-29_03377603yyaP_5COG0262putative protein YyaPATGGGAATCATCGTCGCGAACCTGTTCATTACCCTCGACGGCGTCTACCAAGGGCCGGGCGGCCGCGACGAGGACGCTGAGGGCGGCTTCGCCTACGGCGGCTGGCAGGCGCCGGTGAACGACGACGAGGCCGACGCAGCTATCGAAGCCGAGATCGATCGGATTGACGCGCTGCTTCTCGGCCGGAAGACCTACGACATCTTCGCGAGCTACTGGCCGCACCAGTCCGACAAGGTTGGCGGCACGCTCAACCGCGTGCCCAAGTTCGTGGTCTCCAGCACGCTGTCCGCTGCCGACTGGGCCGGCACCACGGTGTTGCCGGATGCGGCGGCAGCGGGCCGGCTCCGTGAGGAGTTCGATGAAGTGCACATGTTCGGCAGCGGCGTCCTGATCCGTTCGCTGCTCGCCGCGGACGTGATTGACCGCCTCCACCTCTGGCTTTACCCGGTCACTTTAGGGCAGGGAAAGCGCCTCTTCGACGCCGGGACTATCCCCACCACTTTCCGCCTCGCCGAGCCGGCACGGACCTTTCCAAAGGGGTCGGTGTCGCTGGTATACGAGCGCGCGGGCGCCGTCGAGACGCAGGACATAGCGGCCGCGTAGMGIIVANLFITLDGVYQGPGGRDEDAEGGFAYGGWQAPVNDDEADAAIEAEIDRIDALLLGRKTYDIFASYWPHQSDKVGGTLNRVPKFVVSSTLSAADWAGTTVLPDAAAAGRLREEFDEVHMFGSGVLIRSLLAADVIDRLHLWLYPVTLGQGKRLFDAGTIPTTFRLAEPARTFPKGSVSLVYERAGAVETQDIAAANANANANANA
D1-29_033781611groL1_260 kDa chaperonin 1ATGGCAAAGCAGCTTGCGTTTAACGACGCTGCCCGCCGGTCGCTCGAAGCCGGCATCGATAAGCTCGCCAACACTGTCAAGGTGACGCTCGGCCCCCGCGGCCGCAACGTTGTCCTCGACAAAAAGTGGGGAGCACCCACCATCACCAACGACGGCGTCACCATCGCACGTGAAGTCGAACTGGACGACCCCTACGAGAACCTTGGCGCCCAGCTGGCCAAGGAAGTAGCCACCAAGACCAACGATGTTGCCGGCGACGGCACCACCACCGCCACGGTGCTGGCACAGGCACTGGTCAAGGAAGGCCTGCGCAACGTTGCAGCCGGCGCAGCTCCCGGCCAGATCAAGCGCGGCATTGAGGTTTCTGTTGAGGCCGTTGCCGCCCGCCTGCTCGAGAATGCCCGCCCCGTTGAAGGCACCCAGGTGGCCAGCGTTGCTGCCATCTCGGCTCAGAGCGACGAAATCGGCGAGCTCCTCGCCGAGGCGTTCGGCAAGGTCGGCAAGGATGGTGTGATCACCATTGAGGAATCCTCCACCACGCAGACTGAGCTGGTCCTCACCGAGGGCATGCAGTTCGACAAGGGCTACCTCTCCCCGTACTTCGTCACCGACGCAGAGCGCCAGGAAGCCGTCCTTGAGGACGCCCTCATCCTGATCAACCAGGGCAAGATCTCCAACGTCCAGGAATTCCTGCCGCTGCTGGAAAAGGCACTGCAGAGCTCCAAGCCGCTCTTCATCATCGCTGAAGACGTGGATGGGGAGGCACTGTCCACCCTGATCGTGAACCGCATCCGCGGCACGCTGAACGTGGTTGCCGTCAAGGCTCCGGGCTTCGGCGACCGCCGCAAGGCAATGCTGCAGGACATCGCCACCCTGACGGGTGCCCAGGTTGTTTCTCCGGAGCTGGGCCTGAGCCTGGACACCGTTGGCCTTGAGGTGCTGGGTACCGCCCGCCGCATCACGGTCACCAAGGACAACACCACCATCGTTGACGGCGCCGGTTCCGCAGAAGACGTCGCAGCCCGGGTTTCCCAGCTGCGCGCCGAGTTGACCCGCACCGACTCCGACTGGGACAAAGAAAAGCTTCAGGAGCGCCTGGCCAAGCTGGCCGGCGGCATCGGTGTAATTAAGGTTGGCGCAGCCACCGAGGTTGAGCTGAAGGAAAAGAAGCACCGCATCGAGGACGCAGTGTCCTCCACCCGCGCAGCCCTCGAAGAAGGCATCGTCGCGGGCGGCGGTTCAGCCCTGATCCACGCCCTCAAGGCACTGGACGAGGATCCTGCAGTCCAGGCGCTGGAAGGCGACGCAGCTGCCGCAGTGGGCATCGTCCGCCGTGCACTTGTCCAGCCGCTCCGCTGGATCGCCCAGAACGCCGGGTTCGACGGCTACGTTGTCACCGCCCGGGTTGCCGATCTGGAAACCAACAACGGCTTCAACGCCAAGTCCGGCGAGTACGAGGACCTGATCGGCGCCGGTGTCATCGACCCCGTCAAGGTCACCCGTGCTGCCCTGCGCAACGCGGCTTCAATCGCGGCACTGGTTCTCACCACCGAAACCCTCGTGGTGGAGAAGCCTGCCGAAGAAGAAGAGCACGCAGGCCACAGCCACTAAMAKQLAFNDAARRSLEAGIDKLANTVKVTLGPRGRNVVLDKKWGAPTITNDGVTIAREVELDDPYENLGAQLAKEVATKTNDVAGDGTTTATVLAQALVKEGLRNVAAGAAPGQIKRGIEVSVEAVAARLLENARPVEGTQVASVAAISAQSDEIGELLAEAFGKVGKDGVITIEESSTTQTELVLTEGMQFDKGYLSPYFVTDAERQEAVLEDALILINQGKISNVQEFLPLLEKALQSSKPLFIIAEDVDGEALSTLIVNRIRGTLNVVAVKAPGFGDRRKAMLQDIATLTGAQVVSPELGLSLDTVGLEVLGTARRITVTKDNTTIVDGAGSAEDVAARVSQLRAELTRTDSDWDKEKLQERLAKLAGGIGVIKVGAATEVELKEKKHRIEDAVSSTRAALEEGIVAGGGSALIHALKALDEDPAVQALEGDAAAAVGIVRRALVQPLRWIAQNAGFDGYVVTARVADLETNNGFNAKSGEYEDLIGAGVIDPVKVTRAALRNAASIAALVLTTETLVVEKPAEEEEHAGHSHPGPT0014570_7035DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077NANA
D1-29_03379297groSCOG023410 kDa chaperoninGTGTCGGTCTCTATTAAGCCTCTTGAGGATCGTATTGTTGTCCGCCCGCTCGAAGCCGAGCAGACCACGGCTTCCGGCCTGGTAATCCCGGACTCCGCACAGGAGAAGCCGCAGGAAGGCGAAGTTGTCGCAGTAGGCCCCGGCCGCTTTGACGACAACGGCAACCGCGTTCCGCTCGACGTTGCCGAAGGCGACGTTGTTATCTACTCGAAGTACGGCGGAACCGAAGTCAAGCACAACGGCACCGAGTACCTCGTGCTCTCCGCCCGCGACGTTCTGGCGATCGTCGTAAAGTAAMSVSIKPLEDRIVVRPLEAEQTTASGLVIPDSAQEKPQEGEVVAVGPGRFDDNGNRVPLDVAEGDVVIYSKYGGTEVKHNGTEYLVLSARDVLAIVVKPGPT0014565_2092DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
D1-29_03380381hypothetical proteinATGGAAGACAGTGCAGGCACCCAGCCGTCCGAACAGCCCCGATCCAGCAACCTGGGCCTGGTGAAGTACGCGCGGCCGGCACTGATAGCCGGGGCCGCAGTGGCCATTGTGTGTATCGCGCTGCTGGTGATCATCTTCTTCCTGGACACCTTCAACGCCACCGTCTATTCCGTGGGCGGCAAGGACATTCAGGACGCCACGGACGAGGCACGGGACATCAGGGGCCTCCATAACGGTGCCAGGTTTGGCGGCTTTATTGTCCTGGTGATCTCCTTGCTCGCCTTCGTTGGCGGCGCCGTGGTTCTGTACCTTAAGCGCGGCACCGGCCCCGACACCAGCGGCGACGAGGACGTGGATTTCGACGACCTCGCCGGCCGGTAAMEDSAGTQPSEQPRSSNLGLVKYARPALIAGAAVAIVCIALLVIIFFLDTFNATVYSVGGKDIQDATDEARDIRGLHNGARFGGFIVLVISLLAFVGGAVVLYLKRGTGPDTSGDEDVDFDDLAGRNANANANANA
D1-29_033811242hypothetical proteinATGCCCCAAGCACCGCAGGACCAGATTGCCCCACTGCTCACGAGCGAAGGTTGGGAGCTGCTGGCGTCCCTGGGACCGTACCAGGAGGACAAGGCCTTTGAGCTGAATTCCGCCCTGCGCAAGGCCGGCCACTCCCCCGAACTCGTCTCTGCCGTCCTGACCCAGTCCCGGCTGCGTACCAAGGCTGAATCCAAGTTCGGCGAGTTCGCCCGGAGCATGCTTTTCACCCAGGCAGGCCTTGAACAGGCCACCCGTCTCAACGTTGCCGCCCGGCATGCCGAGCGGTTTGCCCAGGCCGGCATCCGCCACGTGGCCGACCTTGGCTGCGGACTCGCCGCGGACTCCCTGGCGTTGGCATCCATGGACATCACCGTCACGGCAGTGGAGATGGATGAGACCACCGCGGCCTGCGCCACGGTCAACCTCATTCCTTTTTCCAACGCCACCGTGGTCCACTCGGACGCCATGTCACTACCCTTGGACGGGATCGACGGCGTGTGGCTGGATCCCGCGCGCCGTGTGACCTCCAGCTCCGGTACCAAGCGGATCTGGGATCCGGAGGCCTTTTCCCCGCCGCTTTCCTTTGTGGAAGCCGTGGCTGCAACCGGCCGGGCAGTGGGTGTAAAGATGGGCCCGGGCATGCCGCACGATGCCGTCCCCGCCGGGTGCGAAGCGCAATGGGTTTCCGTCGCCGGGGATGTCACGGAAGTGACGCTGTGGTTCAACTCGGTGAGCAGGCCCGGAATCCGCCGTGCCGCCTTGCTGCTGGGCGCGCAGGGTGCCGCTGAATTGACCAGTGCTGAGGACTTCGGTGGCGGTCCCACCGCCCCGGTCGGTGCAGCGGAGGGTTACCTTTATGAGCCCGACGGCGCCGTCATCCGCGCAGGACTGGTGGCCGACGTCGCCCTTCAACTGGGCGGGCACCTGCTGGATGAGCACATCGCCTATATTTGCGCCCCGGACCTGGTGGACACACCTTTCGCTCGGGCCTACCAGATCCTGGAAGTAATGCCGTACAACGTCAAGGCGCTCAAGGCCTGGGTGAAGGAGAAAAGCATCGGCGTGCTGGACATCAAAAAGCGCGGGACCTCCGTGACACCTGAGGAACTGCGCAAGCAGCTGCTTCCTGCAGGGAAAACGGGGGGCAAGGGCTCGGGGAAGAAGGCAGGAAACAGGACAGCCACCCTGATCCTGACCCGGATCGGTGAGGAGAGGGTGGCCATCTCGGTTGAGCCGGTGTGAMPQAPQDQIAPLLTSEGWELLASLGPYQEDKAFELNSALRKAGHSPELVSAVLTQSRLRTKAESKFGEFARSMLFTQAGLEQATRLNVAARHAERFAQAGIRHVADLGCGLAADSLALASMDITVTAVEMDETTAACATVNLIPFSNATVVHSDAMSLPLDGIDGVWLDPARRVTSSSGTKRIWDPEAFSPPLSFVEAVAATGRAVGVKMGPGMPHDAVPAGCEAQWVSVAGDVTEVTLWFNSVSRPGIRRAALLLGAQGAAELTSAEDFGGGPTAPVGAAEGYLYEPDGAVIRAGLVADVALQLGGHLLDEHIAYICAPDLVDTPFARAYQILEVMPYNVKALKAWVKEKSIGVLDIKKRGTSVTPEELRKQLLPAGKTGGKGSGKKAGNRTATLILTRIGEERVAISVEPVNANANANANA
D1-29_03382798sdhLCOG0169Shikimate dehydrogenase-like proteinATGACCGTCTGCATTTCACTCTCGGCCCGGCCCAGCAACAACGGGACCCGCTTCCACAACCACCTGTATGGGCAACTGGGGCTGAACTGGATCTACAAGGCCTTCGCGCCCACCGACCTGGTCCAGGCGATCGCCGGCGTCCGCGGGCTGGGAATCCGTGGCTGCGCCGTGTCCATGCCATACAAGGAGGACGTGATTGCCCTCGTGGATGAGCTGGATCCCTCGGCCAAGGCAATCGACTCGGTGAACACAGTGGTGAACACGGACGGGCGCCTCGTCGCCTACAACACGGACTACACAGCGATCGAACGGTTGCTGGAGCGCAACGCCGTACCCACCGGCTACTCCGTACTTGTGCAGGGATCAGGCGGCATGGCCAAGGCCACCGTCGCGGCCTTGCGGGACGCCGGTTTTACCGACGTGACGGTCATCGCCCGGAACGAAAAAACCGGCCGCGCCCTGGCAGAACAGTATGGGTTCCGCTGGAGGGGAGAGCTCGACGGCGGGACTGCGGACATGATTGTTAACGTCACGCCCCTTGGGATGGCGGGAGGCAAGGGCGCAGACGCGCTGTCCTTCCCCCAGGATGCCATCGACGCCGCCAAGGTGGTGTTCGACGTGGTGGCACTGCCCGCGGAGACGCCCCTGATCCAAGCCGCACGTGCGGCCGGGAAACCCGTCATCACCGGAGCCGAGGTGGCCACTATCCAGGCTTTGGAACAGTTCGTGCTCTACACGGGCATCCGTCCCACTGACGAGCAGGTGCGCGCCGCCGAAGAATTCATGCGCGACCAATAGMTVCISLSARPSNNGTRFHNHLYGQLGLNWIYKAFAPTDLVQAIAGVRGLGIRGCAVSMPYKEDVIALVDELDPSAKAIDSVNTVVNTDGRLVAYNTDYTAIERLLERNAVPTGYSVLVQGSGGMAKATVAALRDAGFTDVTVIARNEKTGRALAEQYGFRWRGELDGGTADMIVNVTPLGMAGGKGADALSFPQDAIDAAKVVFDVVALPAETPLIQAARAAGKPVITGAEVATIQALEQFVLYTGIRPTDEQVRAAEEFMRDQPGPT0012890_3478DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-29_033831716nagZ_2Beta-hexosaminidaseATGGCCTCGTTCCCCCGGACCCGTAACAGTACTCACCAATCCACCCTCGCCGTGGCCGCCGTGGCGGCTGTCGCGGCGCTCGCCTCCTGCAGCGTGCCGCCCGCACCGGCACCCGCCTCCACCAGCCCGGCCGCCAGTGCAGCCCCGTCAGCGGAGAGCCCGACGCCGGTGCCTCCCGCCGAATCCGCCTCGCCTGACGCTGCAGCAGATAAAGTCAGCCAGCCCTTGGGCTGGGGCCCTGAGCAAAGGGACCAGGACGCGGCTGCTGCTGCCGTGGCGGCCATGACGGTGGAGGAAAAGGCAGGGCAGGTCCTGATGCCCTCCTACACCGGAACCGACGCCGAATCCCATGCCGCCACGATTGAACGCCTCCACCTGGCGGGCTCCATCATCATGGGTGACAACGTACCCCTGGACCCCCAGAACCAGGTGGATACGGCGGCAATGACAGCCATAACCACACGGCTGGCGCAGGCTGCCCGGGCGGATGGCAGGACCTGGCCCGGACTCATTGGCGTGGACCAGGAGGGTGGGATCGTTTCACGGCTGGGGGCGCCCCTGACCGAATGGCCGGCGCCCATGAGCTACGGCGCCACAGCCAGCGCACCCCTGACCCAGGACTCCGGCCGGGCCCTGGCCTCCGAACTGGCCCCGCTGGGCTTCAACGTTGACTTCGCGCCGGACGTCGACGTCACCATCGGCCCGGCGGATCCCACCATCGGGGCACGTTCGCTGTCCGGGGATCCGGAGCTAGCGGCCCGGCTGGGAGTCGCCTTTTCCCACGGCATCCAGGATGCCGGACTCCTGCCTGCCGTCAAGCACTTTCCCGGACACGGCTCGGTCACCGTGGACTCGCACCAGAGCCTTCCGGTTCAGCCGGCCAGTGTCGCTGAGCTCAACGCGCGCGACTGGAAGCCCTTCAAAGCGGCCATCGATGCCGGCACGCCGATGGTGATGACCGGACACATCGCCGTCCCGGCGCTGGAACCCGGCGTTCCGGCGTCGTTGTCGAAGCCGACGTATGCGGCGCTCCGCGCGATGGGTTTCAACGGAGTGGCCGTGACGGACGCCCTCAACATGGGTGCCATCCAGCAGCAGTTCCCCGGCGGCGGTGCAGCCCCCGCGGCGCTTGCGGCCGGAGCGGACCTGCTCCTGATGCCCACGGATGTGGGGCAGGCGCACGCGGCCATTGTCAGTGCAGTGGCCTCCGGCAGCCTGCCCGGCGCCAGGCTGGATGAAGCTGCCCGCCGGGTGGCTACCATGATGATTTGGCGGGGCCGGAGCACCCCGGCGCCCGCGCAGGCGCCGGGAAGCGGCAACGGGCTGTCCGCGCAGGTCTCAGCCGCTGCCATCACGGTGCTGTCCGGGCAGTGCGCCGGGCCTCTGGTTCAGGGGAGCGTGCAAGTGGCTGGCGGTTCGCCGCAGGACAGGGCCCGGTTCGAGGCCGCAGTGTCGCGGGTAGGACTGTCAGTGGGGGCAGGGCCAGTGGTCAGCCTCATCGGTTACGGGGGCCAGCCTGCCGGGGGCGACATCGCGGTTGCGCTGGATGCTCCCTGGCCGTTGCAGGGTTCGGCCGCGCCGGTCAAGGTGGCTTTGTATGGAAGGACCCCGGGAGCCTTTGATGCTTTGGCTGCCGTATTGGCCGGAAAGGCGAAGGCGCCGGGAAAGCTGCCTGCCGCCGTCGGAAGCTTTCCTGCCGGCACCGGCTGCCCCTAGMASFPRTRNSTHQSTLAVAAVAAVAALASCSVPPAPAPASTSPAASAAPSAESPTPVPPAESASPDAAADKVSQPLGWGPEQRDQDAAAAAVAAMTVEEKAGQVLMPSYTGTDAESHAATIERLHLAGSIIMGDNVPLDPQNQVDTAAMTAITTRLAQAARADGRTWPGLIGVDQEGGIVSRLGAPLTEWPAPMSYGATASAPLTQDSGRALASELAPLGFNVDFAPDVDVTIGPADPTIGARSLSGDPELAARLGVAFSHGIQDAGLLPAVKHFPGHGSVTVDSHQSLPVQPASVAELNARDWKPFKAAIDAGTPMVMTGHIAVPALEPGVPASLSKPTYAALRAMGFNGVAVTDALNMGAIQQQFPGGGAAPAALAAGADLLLMPTDVGQAHAAIVSAVASGSLPGARLDEAARRVATMMIWRGRSTPAPAQAPGSGNGLSAQVSAAAITVLSGQCAGPLVQGSVQVAGGSPQDRARFEAAVSRVGLSVGAGPVVSLIGYGGQPAGGDIAVALDAPWPLQGSAAPVKVALYGRTPGAFDALAAVLAGKAKAPGKLPAAVGSFPAGTGCPPGPT0012175_1837DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207NANA
D1-29_033841152COG2170Putative glutamate--cysteine ligase 2GTGAAGATTGATTTCGCTTCATCGAGGCAATCAACTCTTGGTGTGGAATGGGAACTGGCGCTCGTGAACGGCCAAACAGGTGAACTCGCCTCGGTCGCGAACGAGGTGTTGCGCGGAGTGGCTTCCAAGCACCCTGAGCTCAATGAGGATGACGAGCACCCGCACATCAAGCAGGAACTGCTGCTGAACACTGTGGAACTCGTCACCGGGATCTGCGAGACGGCAGCCGAAGCCAAGGAAGACCTGAGCCGCTCCCTGGCCGCGGTCCGCGAAATCACCGATCCCATGGGCGTGGAAGTCTTCTGCGCCGGCAGCCATCCCTTCAGCCCGCCGCAGCTCCAGCCGGTGACTGACAAGGCCCGCTACGCCAAGCTGATCGACCGGACCCAGTGGTGGGGCCGGCAGATGGTGATCTACGGTGTCCACGTCCACGTGGGCCTGGACCGCCGCGAGAAGGCGCTGCCGGTGCTGGATGGGCTGGTCAATTACTTCCCCCATTTCCAGTCCCTTTCCGCCTCCAGCCCGTTCTGGGGCGGCGAAGACACCGGCTACGCCTCACAGCGGGCCCTGATGTTCCAGCAGCTTCCCACGGCAGGCCTGCCCTTCCAGTTCCGGTCCTGGGAGGAGTATGAGTCGTACGTCCAGGACATGTTCATCACCGGGGTCATTGACACCCTGTCTGAAATTCGGTGGGACATCCGGCCGGTACCAAACCTGGGCACCATAGAAATGCGCATTTGCGACGGCCTGGCCACGCTGGAGGAAGTGGGCGCCATCGCTGCCCTCACCCAGTGCCTTGTTGACGAGTTTTCCACCACGTTGGACAACGGCGGCACCATTCCCACCATGCCGCCCTGGCACATCCAGGAAAACAAGTGGCGTGCCGCGCGCTATGGCATGGATGCCATCATCATCCTGGATGCGGCGGGCAAGGAGCAGCTGGTGACCGAACACCTGCTCGAAACCCTCAACAGGCTTGAACCCGTGGCGGCAAAGCTGGGCTGCGCGGACGAGCTGGCCGACGTCGAAAAGATCATCAGCCGCGGCGCCGGTTACCAGCGTCAGCGCCGCGTCGCAGCCGAACACGGCGGAGACCTGCAGGCGGTAGTACTGGACCTGGTCAAGCAGATGCGCAACGGTCCCACGGCCTAGMKIDFASSRQSTLGVEWELALVNGQTGELASVANEVLRGVASKHPELNEDDEHPHIKQELLLNTVELVTGICETAAEAKEDLSRSLAAVREITDPMGVEVFCAGSHPFSPPQLQPVTDKARYAKLIDRTQWWGRQMVIYGVHVHVGLDRREKALPVLDGLVNYFPHFQSLSASSPFWGGEDTGYASQRALMFQQLPTAGLPFQFRSWEEYESYVQDMFITGVIDTLSEIRWDIRPVPNLGTIEMRICDGLATLEEVGAIAALTQCLVDEFSTTLDNGGTIPTMPPWHIQENKWRAARYGMDAIIILDAAGKEQLVTEHLLETLNRLEPVAAKLGCADELADVEKIISRGAGYQRQRRVAAEHGGDLQAVVLDLVKQMRNGPTAPGPT0026300_492DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-29_033851125tsaDCOG0533tRNA N6-adenosine threonylcarbamoyltransferaseATGAACCGCACACAGCCGCTCGTGCTGGGCATCGAATCTTCCTGCGACGAGACCGGCGTCGGGATCGTACGGGGCACCAAGCTCCTCACCAACACGGTGTCATCGTCGATGGACGAGCACGTCCGTTTTGGCGGAGTGATCCCGGAGATCGCCTCGCGGGCCCACCTTGATGCCTTTGTTCCCACCCTCCGCCAGGCGTTGTCCGACTCCGGTGTGGAACTGGACGATATTGACGCCATCGCCGTGACGTCGGGCCCCGGCCTCGCCGGAGCGCTGATGGTGGGAGTCTGTGCCGCTAAGGCACTGGCCGTGGCCACCGGAAAGCCCCTCTACGCCATCAACCACCTGGTGGCGCACGTTGGCGTGGGGCTTCTGGACGGGGGAGTGGCGGGGCCCGGACGGGCTGGCGAGGCCGGCGCCGCCGAAGCCGCACCCCGGCTCCCGGAAAACGTCGGCGCCCTGCTGGTATCCGGCGGACACACCGAGATCCTGAAGATCAACAGCATTACCGATGACGTGCAGCTCCTTGGCTCCACGATCGACGACGCAGCCGGCGAGGCCTATGACAAGGTGGCGCGCATCCTTGGCCTTGGCTATCCGGGCGGCCCTGCCATCGACAAACTGGCACGAACAGGCAATGCAAGGGCCATCCGCTTCCCGCGCGGGCTTTCCCAGCCCAAGTACATGGGTACAGCCGAGGAGCCGGGGCCGCACCGCTACGACTGGTCCTTCAGCGGACTGAAGACGGCGGTGGCACGCTGCGTGGAGCAGTTCGAGGCCCGCGGGGAAGACGTCCCGGTAGCCGACATCGCCGCCGCCTTCCAGGAGGCCGTGGTGGACGTCATCACCTCCAAGGCCGTCCTGGCCTGCCGCGAGAACGGCATCAAGGACGTCCTGCTGGGCGGGGGAGTGGCGGCGAACTCCCGGCTGCGTGAGCTCACCGGCCAGCGCTGCGCATCTGCGGGGATCAGGCTGCACGTGCCCCCATTGGACCTCTGCACGGACAATGGAGCCATGGTGGCCGCACTCGGCGCCCAGCTGGTCATGGCCGGGATCGCACCCAGCGGCATCCGCTTCGCGCCGGACTCCTCGATGCCTGTCACCGAAGTTTCGCTTCCCGCCTAAMNRTQPLVLGIESSCDETGVGIVRGTKLLTNTVSSSMDEHVRFGGVIPEIASRAHLDAFVPTLRQALSDSGVELDDIDAIAVTSGPGLAGALMVGVCAAKALAVATGKPLYAINHLVAHVGVGLLDGGVAGPGRAGEAGAAEAAPRLPENVGALLVSGGHTEILKINSITDDVQLLGSTIDDAAGEAYDKVARILGLGYPGGPAIDKLARTGNARAIRFPRGLSQPKYMGTAEEPGPHRYDWSFSGLKTAVARCVEQFEARGEDVPVADIAAAFQEAVVDVITSKAVLACRENGIKDVLLGGGVAANSRLRELTGQRCASAGIRLHVPPLDLCTDNGAMVAALGAQLVMAGIAPSGIRFAPDSSMPVTEVSLPANANANANANA
D1-29_03386513rimICOG0456N-alpha-acetyltransferase RimIGTGAATGCCCGCGCGGGGCACCCCGCTGAAGATGTCATCCTCCGCGACATGACCCTCGATGACGTGCCCACCGTCAACGCCCTGGAACAGCGGCTGTTCCCGAACGACGCCTGGCCGCTGCAAATGTTCTTCGACGAGCTGTCCCAGACAGCAACCCGGCGGTACCTCGTGGCTGAAACCACCACCGGAATCGTGGGCTACGCAGGCCTGATGTGCATTGAGCCCATCGCGGACGTGCAAACGATCGCCGTCGTCCCTGAGTTTGAGGGTCGGGGGATCGGCTCGGCGCTGCTGACCCAGCTCATCGACGAAGCGCGGCGCCGCGGTGCCGCTGACGTCCTGCTGGAGGTCAGATCCGACAACCCACGCGCCCAGCAGCTGTACCTGCGGTTCGGTTTTGAGGAGATTCATCTCCGCCGGAAGTATTACCGGGACGGCGTCGACGCCTTGATCATGCGGCTCCAGCTCACCGAACCCGGGAACCACCGGTCAACGGAAGCAGGCCAGCCATGAMNARAGHPAEDVILRDMTLDDVPTVNALEQRLFPNDAWPLQMFFDELSQTATRRYLVAETTTGIVGYAGLMCIEPIADVQTIAVVPEFEGRGIGSALLTQLIDEARRRGAADVLLEVRSDNPRAQQLYLRFGFEEIHLRRKYYRDGVDALIMRLQLTEPGNHRSTEAGQPNANANANANA
D1-29_03387672COG1214putative proteinATGCTTCTTCTCGCCATCGACACCTCGGCCGTGGCAAGCGCAGCCCTTGTCTCGGACGACGCCCTGGAAGGGGTGGTGGCCAGCTTCTCCACCGAGGACACCCGCAGCCATGCAGAAGTGCTGGCCCCGGGGATCGAGGAGCTCCTCAGCTCGGCCGGCGTTGCCGGCACTGACATCGACGCGATCGTTGCCGGGGTAGGTCCAGGCCCGTTCACCGGCCTGCGGTCAGGCATTGCCACTGCCCGCACCCTCGCCTTCGTGTGGGACAAACCGCTGTACGGCCTGATGAGCCTGGATGCTGTTGCCCTCGAAGTAGCGGAATCCATTGACGCTGCTGCTGATTTCCTTGTGGTGACAGATGCCCGGCGGAAAGAGGTCTACTGGGCCCGCTACAGCCTGGCGGCAGGACAGCTGCCCCAGCTGGAAGACGGCCCCCACGTGGGCTTCGCTGCCGACTTGCCTGACCTGCCTGCCTATGGGGCAGGGGCTGGCCTGTACGCCGACGTCCTGCGCGCCGACCCTGACTTCATCACAGAGCAGCCTGATGCCCTGTACCTTGGCCAGTTTGCCCTGGCACGGCTGGCAGCGGGCGGGCACCTGCTCGATTCAACACCTCTGTACCTGAGGGAATCCGATGCCCAGGTGCCCGGACCACGGAAGCGGGCGCTGTGAMLLLAIDTSAVASAALVSDDALEGVVASFSTEDTRSHAEVLAPGIEELLSSAGVAGTDIDAIVAGVGPGPFTGLRSGIATARTLAFVWDKPLYGLMSLDAVALEVAESIDAAADFLVVTDARRKEVYWARYSLAAGQLPQLEDGPHVGFAADLPDLPAYGAGAGLYADVLRADPDFITEQPDALYLGQFALARLAAGGHLLDSTPLYLRESDAQVPGPRKRALNANANANANA
D1-29_03388606hypothetical proteinATGAGCGTGGCGGCGGCCCCTGACCAGCCCAACTGGGAACTGACGCTGACCGTGACGACGGCGGACCAGACACATGCGCTCGGTGCAGCCTTGGCCACCGAGCTGGAAGCCGGGGACCTGCTGGTCCTGTCCGGCGAACTGGGTGCGGGCAAGACCACCTTCACGCAGGGGCTGGGAGAAGGGCTGGGGGTGCGTGCCGGAATCATTTCGCCCACCTTTGTCCTGGTTCGCATCCATCCGAACCTGCCTGACGGGCCGCGGCCTGGCGGCCCGGACCTGGTCCATGTTGACGCCTACCGGCTGGGGTCCGCCTCAGAGATTGATGACATTGACCTGGAGAACACCATGGATTCGGCCGTGACGGTGGTGGAGTGGGGACGGGGCCGGGTGGAGCACCTCAGCGACAACCGGCTGGAGATCGATCTCCAGCGGGCCATTGGCCTGCCCTCCCGGGCCGGCGCCGCCCACCCCACGGTCACCGGCACCCGCACTTTGGACTTTGACACCGACGATAACGACGAGCCACGCACCATTGTGCTGCGCGGATTCGGCGAACGCTGGAGTACCGCGCCGGCCCTCGGCGGAGCCCTGGAAGGGACAGCCTGAMSVAAAPDQPNWELTLTVTTADQTHALGAALATELEAGDLLVLSGELGAGKTTFTQGLGEGLGVRAGIISPTFVLVRIHPNLPDGPRPGGPDLVHVDAYRLGSASEIDDIDLENTMDSAVTVVEWGRGRVEHLSDNRLEIDLQRAIGLPSRAGAAHPTVTGTRTLDFDTDDNDEPRTIVLRGFGERWSTAPALGGALEGTAPGPT0020040_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775NANA
D1-29_033891308alrCOG0787Alanine racemaseGTGATTTGCGGCGGGGCGGCCAGCACTAGAATCACTAGGGTGACTTACCCCGTAACAACCGGTGACTTCAGCGCGGCCCCAGGATCGGATCCCCTGTCTGAGCGGTCCGCCGTCGTGGATCTGGAAGCCATCCGGCACAATGTCCGCCGGCTGGCCGCTGCCGCCTCGCCCGCCAAGGTCATGGCCGTGGTGAAGGCGGATGCCTACGGGCACGGCGCGGTGCCTGTGGCCAGGGCAGCCCTGGAAGCCGGCGCGTCGTGGCTGGGGGTAGCCCACATCTCTGAGGCCCTTGCGCTCCGGGCGGCGGGAATCGACGCCCCCCTGCTGGCCTGGCTGCACACCACGGAAAGCAACTTTGGCGCCGCGGTGGCGGCCGGCGTCGATATCGGGTGTTCCGGCTGGGAGCTGGACAGGATTGTGGCGGCCGCCCGCGAGCAGGAGCGTCCCGCGCGGGTTCATTTGAAGGTGGACACGGGACTGGGACGGAACGGCGCCACCCTTGATTCCTGGGACCACCTCGTGGGAGAAGCCATGGAGTACCAGGACCAGGGGCTCCTGCGCGTCGTGGGAATCTTCTCCCACCTGTCGGTCGCCGATGAACCTGAGCGTCCCGAAACGGATCAGCAGCTCGCCGCGTTCCGTGACGTGCTGGCTGTGGCGGAAGACGCGGGGGTGGACCCTGAAGTACGCCATCTCGCCAACACACCGGCCACCCTGTCCCGGCCCGATACACACTTTGACCTGGTCCGCGTCGGACTGGGCATTTACGGCCTCTCGCCCTTCGAAGGCCAGACGTCCGCCGAACTGGGCCTTCGCCCGGCCATGACACTGCGGACCAGGGTGTCCCAATGCAAGGACGTGCCGAAGGGGCAGGGTGTTTCCTACGGGCTCCGGTACCACACCAGCGCCCCCAGCACCCTGGCCCTGATTCCCATGGGCTACGCGGACGGCGTCCCCCGCGTGGCAACGGGAGGTCCGGTGCGGGTGGCGGGCAGGACCTACCCCGTTGTGGGCCGCATCGCTATGGACCAGATGGTTATCGACCTCGGCAACATCGGCCCGGTGGGGGCGGCGCTCCTGGGTGCCGAAGTAGAACTGTTCGGTAACGGTGCCGACGGCGGTCCAACGGCCGACGACTGGGCGCGGGCAGCAGGCACCAACAACTACGAAATTGTGACCAGGATCGGGCCCCGGGTGCCGCGGCGCTTCATCAACGAACGCGCTGCCATGGAGCCTGCCAATGGCCAGATTAACGGCCAGGCCACCGTGAACGGGCAGGCCACCGTGAATGGGCAGGCCAAGCCATGAMICGGAASTRITRVTYPVTTGDFSAAPGSDPLSERSAVVDLEAIRHNVRRLAAAASPAKVMAVVKADAYGHGAVPVARAALEAGASWLGVAHISEALALRAAGIDAPLLAWLHTTESNFGAAVAAGVDIGCSGWELDRIVAAAREQERPARVHLKVDTGLGRNGATLDSWDHLVGEAMEYQDQGLLRVVGIFSHLSVADEPERPETDQQLAAFRDVLAVAEDAGVDPEVRHLANTPATLSRPDTHFDLVRVGLGIYGLSPFEGQTSAELGLRPAMTLRTRVSQCKDVPKGQGVSYGLRYHTSAPSTLALIPMGYADGVPRVATGGPVRVAGRTYPVVGRIAMDQMVIDLGNIGPVGAALLGAEVELFGNGADGGPTADDWARAAGTNNYEIVTRIGPRVPRRFINERAAMEPANGQINGQATVNGQATVNGQAKPPGPT0020040_194DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775NANA
D1-29_033901101RBKS_3RibokinaseGTGCCGGACATGGACGCGATCCCCGCCCGCAGATTCGATCCGCTCTCAGCCGTCCGCACGCCCTCGGACGGGCAGTTCGACCTGATCCTGGCCGGCACCGTCTTCCAGGACATCATCTTCACGGGATTGCCGCACGCTCCGGAACCGGGCACCGAAATCTGGAGCGAGGGCATGGGCAGCTGCCCCGGCGGGGTAGCGAACCAGGCCATTGCCGCGGCCCGCCTGGGCCTCCGGACCGGCTTGGCGGCAGCCTTCGGGGACGACGGCTACGGCGATTACAACTGGAAAATCCTGGCCGGACAGGAACACGTGGATCTCAGCCTTTCCCGCCGCATCCCGGGCTGGCACTCGCCGGTCACCGTGTCCCTCAGCGTCGAAAAGGACCGCTCGCTGGTGACGCACGGACACCCCGCCCCCATCACTGCCTCGGACCTGATTGGTGTGCCGCCGCCGGCGCTCGCGGGCATCGCCGAGCTGGGGCTCGAGATTGAGCCCTGGGCCAAGGAGGCGTACCAGGCCGGCGTCAAGCTCTTCGGCGACGTGGGCTGGGACCCCAGCGGCGAATGGTCACCGGTCAGGCTGGAGAACCTGCAGTACTTCCACGCCTTCCTGCCCAACCAGCGCGAGGCCATGGCGTTCACGGGAAAGGACGACCCCTGGGCCGCGCTGTATTCCCTCGCGGACCGGGTGCCCGTGGCAGTGGTGACCCTCGGCGCCCAAGGGGCTATGGCCGTGGACTCGGAGACAGGGGAGGAAGAGTGGGTGCCGTCGCTGCCTGTGACCGCCTACGACCCCACCGGCGCCGGTGACTGCTTCGACGCCGCGTTCATCGTGGGCAGCCTCGCCGGCTGGCCGCTGGGCAACAGGCTTCGTTTTGCCAACCTTTGCGCCTCGCTGGCAGTGCAGGAAGTGGGCGGCTCGTTGGCGGCGCCGGGATGGGGTGACATTGCCGACTGGTGGCAACGCGCCAACGCCCGGCGCGAACGCCAGAGCAGCCAGTGGCTCCGCCGTTTCGGCTTCCTCGCCGAGATCATCCAGGACGTGCCGCTCGCTGCCCAGCGCCGGGCCACAGCCACCATCGCGCATCTCTCCGACGCCTGAMPDMDAIPARRFDPLSAVRTPSDGQFDLILAGTVFQDIIFTGLPHAPEPGTEIWSEGMGSCPGGVANQAIAAARLGLRTGLAAAFGDDGYGDYNWKILAGQEHVDLSLSRRIPGWHSPVTVSLSVEKDRSLVTHGHPAPITASDLIGVPPPALAGIAELGLEIEPWAKEAYQAGVKLFGDVGWDPSGEWSPVRLENLQYFHAFLPNQREAMAFTGKDDPWAALYSLADRVPVAVVTLGAQGAMAVDSETGEEEWVPSLPVTAYDPTGAGDCFDAAFIVGSLAGWPLGNRLRFANLCASLAVQEVGGSLAAPGWGDIADWWQRANARRERQSSQWLRRFGFLAEIIQDVPLAAQRRATATIAHLSDAPGPT0017405_474DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
D1-29_033911431chbFCOG14866-phospho-beta-glucosidaseATGCGGCTTATGATTGCCGGCGGCGGCGGATTCCGCGTCCCGCTGGTCTACCGGGCGCTGGCGTCCCCCGCATTTGCGGGCACGGTCAGCGAACTGGTGCTGTTCGACGTCGATTCCGCCCGGCTAAGTGCCATCACAGCGGTGCTGAAGGCGATGCCCGCCCCTGTCAGCGGGGCCCTGAGGCCCAGCGTCCGCACAACGTCATCCCTCCCAGAGGCACTCTCCGGAGCGCAGATGGTCTTCGCGGCGATCCGTCCCGGCGGCACTGCAGGACGGGTTGCCGATGAGCGCGTGGCCCAGGACCTTGGCCTGCTGGGGCAGGAGACCACCGGCGCGGGCGGCATCTCTTACGCCCTGCGCACCATTCCGGAGATGCTCAGCCTCGCCCGGGAGATGCAGGAACATTGCCCGGACGCCTGGCTCATCAACTTCACCAACCCGGCCGGTATGGTCACCGAGGCCCTTCTGCCGGTCCTCGGCCAAAGAGTCATTGGGATCTGCGACTCTGCGGGCGGGCTAGTCCACCGCGCGGCCCGTGCGGCCGGCATCACCCTGCAGGAGGGAAATCTCGACGGCGTGGGCTACTACGGGCTGAACCACCTGGGCTGGCTCTACCGGCTGGAGTCCGGCGGGCGCGATGTGCTTCCGGAGCTGTTGTCCGACGCGGGCGCCCTCGCATCGTTCGAGGAAGGCCGCCTCTTCCCGCAGCCGTTCCTGGCCAGGCTGGGTGCCCTCCCCAACGAGTACCTCTTTTACTACTACCAGCGTGAGAGCGCCACCGCCGCCATGCGCGCCATGCCCCAGACCCGCGGCCAGTCCATCCATGACCAGCAGTCCGAGCTTTACCCCCGGCTCGCCGCCGCCGGCTCCGACGCCTACCGTCTGTGGGACGACGCCCGCCGGTCCCGCGAGGAAGGGTACCTGGCCGAGGCCCGCACGCACGGCGAGCAGCGCGACGAGGATGACCTTGCCGGCGGAGGGTATGAACGAGTGGCGCTGGCGGTCATGCGGGCGTTGGCCGGTGGCCCGCCCGCCGCGGACCAGGCCCAGCTGATCCTCAACACACGCAACTCGCTGCCGCCCGGTCCGGAAGGAACTGGCCCGGCCGCTCCGGAACCGGCCATTCCGGGACTGCCTGCCGACGCCGTCGTCGAGGTCCCCTGCACCATAACGCCCGACGGCGCGGTGCCGCTTCCGCAGTCCGCCCCGCCGGAGGAGCAACTCGCCCTGCTCCGGCGGGTCAAGGAGGTGGAACGGCTCACTGTCCGTGCCGCGACGGACGGCGACCGGGCGGCCGCCGTCGAGGCTTTTGCCCGGCATCCCTTGGTGGATTCACCGGCACGGGGAGCAGCCCTGTTGGCTGGCTATGAACGGGAATTCCCGGCGCTGCTGCGGCTCTGGCGCGACGGTACTGCCGCGAAGTCAGGCTAAMRLMIAGGGGFRVPLVYRALASPAFAGTVSELVLFDVDSARLSAITAVLKAMPAPVSGALRPSVRTTSSLPEALSGAQMVFAAIRPGGTAGRVADERVAQDLGLLGQETTGAGGISYALRTIPEMLSLAREMQEHCPDAWLINFTNPAGMVTEALLPVLGQRVIGICDSAGGLVHRAARAAGITLQEGNLDGVGYYGLNHLGWLYRLESGGRDVLPELLSDAGALASFEEGRLFPQPFLARLGALPNEYLFYYYQRESATAAMRAMPQTRGQSIHDQQSELYPRLAAAGSDAYRLWDDARRSREEGYLAEARTHGEQRDEDDLAGGGYERVALAVMRALAGGPPAADQAQLILNTRNSLPPGPEGTGPAAPEPAIPGLPADAVVEVPCTITPDGAVPLPQSAPPEEQLALLRRVKEVERLTVRAATDGDRAAAVEAFARHPLVDSPARGAALLAGYEREFPALLRLWRDGTAAKSGPGPT0019105_26DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-CARRAGEENASE,PGPT0019105-celF|licH|chbF-K01222NANA
D1-29_03392450hypothetical proteinATGTGGGCCGTGCTGGAGCCGATAATCAGGGCCGGCGAGACCTTCACCTGGGACCGGGACACGGTAGAGGATGACGCCAGGGAGCGCTGGTTTAAGGAACCGCCCGGCCAGGCCTTTGTGGCCGTAACCCCCGGCGGCGAGGTGATCGGCACCGGCGAGCTCCACCCCAACCAGGGCGGCCCCGGAAGCCATGTGGCCAATGCCGGGTACATGGTCCATGGCGATCACGGCGGCAAGGGGGTTGCGCGGGCTCTGTGCTCCTACTCCCTGGAAGCAGCGCGGAGTGCTGGCTTCCGTGCCATGCAGTTCAACGCCGTGGTGGAAAGCAACGTCAGGGCCGTGGCTGCCTGGCAGGGAATGGGCTTCGAAATCCTGGCCACCATCCCCGAAGCCTTCAACCACCCCACCTTGGGATACGTCGGGCTCCACGTGATGTATCGGAAGCTTTAGMWAVLEPIIRAGETFTWDRDTVEDDARERWFKEPPGQAFVAVTPGGEVIGTGELHPNQGGPGSHVANAGYMVHGDHGGKGVARALCSYSLEAARSAGFRAMQFNAVVESNVRAVAAWQGMGFEILATIPEAFNHPTLGYVGLHVMYRKLNANANANANA
D1-29_033931266mshA_5COG0438D-inositol 3-phosphate glycosyltransferaseATGACACTCATCCGCAGGGTCGCGATGCTCTCCCTCCACACGTCCCCCATGGAGCAGCCGGGTTCAGGGGATGCGGGTGGAATGAACGTCTATGTCCGGGAGCTGGCGTCAGCGCTTGCCGAGATCGGTGTGGAGGTGGAAATCTTCACCCGCTCCACGTCAGCCCGGCAGCCCGCCGTCGAACATCCCGCCCCCGGCGTATGCGTCCACAACGTTCTGGCCGGGCCGCGGCGGAAGATCCCGAAGGAGGAGCTCCCCGCGCTGCTGCACAATTTCGTTGCAGAGATTGAGCAGATCCGCCAGAGCCAGCTGCACGGCCGGTACGACATCATCCACTCCCATTATTGGGTGTCCGGAATCGCGGGCCTGGAGCTGTCCGAGCTCTGGGGCGTGCCGCTGGTCCACACCATGCACACCATGGCCAAGGTCAAGAATCTGCTGCTCGAGTCGGGGGAACAGCCGGAGCCGCGGCGCCGTGAGGTAGGCGAGCAGCGGATCGTGGACGGTTCCGAACGGCTGATCGCCAACACCAGCGCCGAGGCAGCCGAGCTGGTGTCCCATTACAACGCGGATTTCGAGCAGATCGACATCGCGCCGCCAGGTGTGGATTTGAGCACCTTCACGCCTGCATTCCGTTCGCGGTCGCGGGCAGAACGCGGTGTGCCGAAGGAAACGTTCCACCTGGTTTTCGCCGGCCGCATCCAGAGGCTGAAGGGCCCGCAGATACTGCTCAAGGCAGCTGCCCTGCTGCGGTCCCGGCGCCCCGGTATCGATCTTCGGCTCACCATCCTTGGCGCGCTGAGCGGCAACAAGGATTTCAACCTCCGGCACCTGATCGCGGACGCGGGAATGGAGGATGTTGTGACGCATCTTCCGCCCGTGGGGGCAGCCGAGCTGGCGGCCTGGTTCAGGTCAGCGGACGTAGTGGTCATGCCGTCCTACAGCGAGTCATTCGGGCTGGTCGCGCTGGAAGCCCAGGCCTGCGGGACGCCCGTTGTGGCCACCCGGGTGGGAGGGCTTTCGCGGGCCATCTGCCACGGCCGGACCGGGCTGCTGGTGAAGGGCCACCACGCCGCGGACTGGGCCGATGCGCTCGAAGCCCTGTACGACGACCCGGCCACCCGTGAAGACATGGGGCGGGCGGCCGCCATCAGGGCGGAGAACTCAGGCTGGCAGCGCACCGCCGCCATTACGCTCGAAAGCTACCATGCCGCCGTCGACAACCATCTGGGGCGCCGGCTGATCCCGGCGGTCCAGGCCCCCTGAMTLIRRVAMLSLHTSPMEQPGSGDAGGMNVYVRELASALAEIGVEVEIFTRSTSARQPAVEHPAPGVCVHNVLAGPRRKIPKEELPALLHNFVAEIEQIRQSQLHGRYDIIHSHYWVSGIAGLELSELWGVPLVHTMHTMAKVKNLLLESGEQPEPRRREVGEQRIVDGSERLIANTSAEAAELVSHYNADFEQIDIAPPGVDLSTFTPAFRSRSRAERGVPKETFHLVFAGRIQRLKGPQILLKAAALLRSRRPGIDLRLTILGALSGNKDFNLRHLIADAGMEDVVTHLPPVGAAELAAWFRSADVVVMPSYSESFGLVALEAQACGTPVVATRVGGLSRAICHGRTGLLVKGHHAADWADALEALYDDPATREDMGRAAAIRAENSGWQRTAAITLESYHAAVDNHLGRRLIPAVQAPPGPT0024580_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_REMODELLING_SURFACE_GLYCOSYLATION_PATTERNSCE-REMODELLING_GLYCOSYLTRANSFERASE_ACTIVITY,PGPT0024580-mshA-K15521NANA
D1-29_033941683fhsFormate--tetrahydrofolate ligaseATGTCTGAACGGATGACCCTCAGCGACCTTGACATCGCCAGACGGGCCAGCATCAGGCCCATCGAAGACATCGCGGCTGCCGCCGGCATCAACTCCGGGGCTCTTGAACTGTATGGGAGGTTTAAGGCAAAGATTGATCCTGCACGGCTGGACGCCCCGGTCCCCGCAGGGAAGGTGGTGCTGGTTTCGGCCATGTCCCCCACGCCCGCCGGTGAAGGGAAATCCACTACAACGGTCGGACTGGCTGATTCACTGGCACGGGCCGGCCATAAGGTGATGATTGCGCTGCGGGAACCGTCTCTGGGGCCGATCCTGGGCATGAAGGGCGGTGCCACCGGCGGCGGCTATTCCCAGGTTCTTCCCATGGATGAGATCAACCTGCACTTCACGGGCGACTTCCACGCCGTGACCTCCGCCAACAATGCACTGATGGCACTCGTGGACAACCACATCTACCAAGGCAACGAGCTGAACATTGATCCGCGGCGGATGACCTTCAAGCGGGTCCTGGACATGAACGACAGGGCACTGCGGGAAATCATCATCGGGCTGGGCGGGCCAACCCAGGGTGTCCCCCGGCAGGACGGTTTCGACATCACGGTGGCCTCGGAGATCATGGCGGTCTTCTGTCTGGCCACCGATCTGGCGGACCTCCGCAGGCGCCTGGGCCTGATCACGTTCGGCTACACCTACGACCGTTCGCCCGTCACCGTAGCCGACCTGGGCGTCGAGGGTGCGCTGGCCCTGCTCCTCAAGGAAGCCATCAAGCCCAACCTGGTGCAGACCATCGCGGGTACCCCGGCCCTGGTCCACGGCGGGCCGTTCGCCAACATCGCGCACGGCTGCAATTCCCTCGTTGCCACCCAGACAGCAAGGCGGCTTGCAGACATTGTGGTGACGGAGGCCGGGTTTGGTGCTGACCTGGGTGCGGAGAAGTACATGGACATCAAGGCGCGCGTGGCGGACGTGGCACCGTCCGCCGTCGTGGTGGTGGCCACCGTCCGGGCCCTGAAAATGCACGGCGGCGTGGCCGCCGAGAAGCTCAAGGAACCGAACCTGGAAGCGCTCCTCGCCGGCGTCGACAATCTCCGGCGGCACGTCCACAACGTGGCCAAGTTCGGAGTGACGCCCGTGGTGGCCATCAACAGGTTCGCCACCGACACCCAGGAGGAGCTGGACTGGCTTCTTGAGTGGTGCGCTGCCGAGGGTGTCCTGGCGGCGGTTGCGGATGTGTGGGGACGGGGCGGCGGCGGGGACGGCGGGGATGAACTGGCAGCCATAGTGGCCAAGGTGGTTGCCGAACCCAGCAGCTTCACACACCTGTACCCCCTGGACCTGCCGGTGGAGGACAAGATCAACAGCATTGCCCGGGAGGTCTACGGTGCGGACGGGGTGGAGTTCTCCGTCCCGGCCCAGAAACGGCTGGCCGACATCCGGAAGAACGGCTGGGGCGGACTGCCCGTCTGCATGGCCAAGACCCAGTATTCCTTCAGCGACGACGCTTCCCGGCTTGGTGCGCCCAGCGGCTTCACCATCCATGTGCGCGATCTCATCCCCAAGACCGGCGCCGGGTTCATTGTGGCCCTGACCGGAGCGGTGATGACCATGCCAGGCCTGCCGGCTGTTCCGGCAGCAATGCGGATGGACGTGGACGACGCCGGCAACCCCATCGGCCTCTCCTGAMSERMTLSDLDIARRASIRPIEDIAAAAGINSGALELYGRFKAKIDPARLDAPVPAGKVVLVSAMSPTPAGEGKSTTTVGLADSLARAGHKVMIALREPSLGPILGMKGGATGGGYSQVLPMDEINLHFTGDFHAVTSANNALMALVDNHIYQGNELNIDPRRMTFKRVLDMNDRALREIIIGLGGPTQGVPRQDGFDITVASEIMAVFCLATDLADLRRRLGLITFGYTYDRSPVTVADLGVEGALALLLKEAIKPNLVQTIAGTPALVHGGPFANIAHGCNSLVATQTARRLADIVVTEAGFGADLGAEKYMDIKARVADVAPSAVVVVATVRALKMHGGVAAEKLKEPNLEALLAGVDNLRRHVHNVAKFGVTPVVAINRFATDTQEELDWLLEWCAAEGVLAAVADVWGRGGGGDGGDELAAIVAKVVAEPSSFTHLYPLDLPVEDKINSIAREVYGADGVEFSVPAQKRLADIRKNGWGGLPVCMAKTQYSFSDDASRLGAPSGFTIHVRDLIPKTGAGFIVALTGAVMTMPGLPAVPAAMRMDVDDAGNPIGLSPGPT0008065_581DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008065-fhs-K01938NANA
D1-29_03395615hypothetical proteinATGGACGACGAGACCGAATTGGTGGACGGCATCAGGATGAGCACACGGTCTCGGACTTGGCTCGACTTGGCCCGGACCCTGCAGCTCCATGACCTAGTGAGCATGGGCGACGAGCTGATCCGCATCCCGCGGCTGGACTTCGAAGGACGCTCACAGCCTCACGACACGGTCGCGGGTCTACGCACGCTGGTGGGCCGACACCCGAATCTTCAGGGGATCGTCCGGGCGCGTGAAGCACTGGATCTGATGCGCGTAGGTGCGGATTCCGCGCCCGAGTCGCTGCTCCGGCTGGCCATTGGCAGCGCCGGGCTTTCCGAGCCCGAACTTCAGGTGCCGTTGCGCACTGGAGACCCGCGGTCGCCGTCGGCCGATCTCGCGTACCGTCATCGGAGGCTCGCTATCCAGTACGACGGCGGGCACCACCTTGGCGAGGCGCAGATCCTCAGCGACCGGAGACGGAATAGGGCTTTCGAGTCAGCTGGCTGGACGGTTCTGGTTTTCGACAAGAGCGATCTTGCGGACGATTTCACGGGTGCGGTTGTGAAGATCAAGCGGGCACTGCGCACGGGCTGGCTTGACCATCCTCAGGCCTCCGGATTCGCCAGCATCGACTGAMDDETELVDGIRMSTRSRTWLDLARTLQLHDLVSMGDELIRIPRLDFEGRSQPHDTVAGLRTLVGRHPNLQGIVRAREALDLMRVGADSAPESLLRLAIGSAGLSEPELQVPLRTGDPRSPSADLAYRHRRLAIQYDGGHHLGEAQILSDRRRNRAFESAGWTVLVFDKSDLADDFTGAVVKIKRALRTGWLDHPQASGFASIDNANANANANA
D1-29_033961086ino1COG1260Inositol-3-phosphate synthaseGTGTCTTCAAATCCGATTCGTGTTGCAATCGTCGGTGTGGGTAACTGCGCCGCCTCGCTCGTGCAGGGTGTGCACTACTACCGTGACGCCGATCCAAAGGCCACCATCCCGGGTCTGATGCACGTGGAGTTCGGCAAGTACCACGTTAAAGACGTTCAGTTCGTTGCAGCGTTTGACGTTGATGGCAAGAAGGTCGGCGTTGACCTCGCGGATGCCATCCTCGCCAGCGAAAACAACACCATCAAGATCGCCGACGTTCCACCCACCGGTGTCACCGTCCAGCGCGGCCACACCCTTGACGGGCTTGGCAAGTACTACCTGGAGACCATCGAGCAGTCTCCGGTGGAGCCGGTGGACGTTGTCCAGGCCCTCAAGGACGCCAAAGCTGACGTCATGGTCTGCTACCTCCCTGTCGGGTCCCAGGAAGCCGCCGAGTTCTACGCCCAGGCAGCCATCGACGCCGGAGTCGCCTTCGTCAACGCCCTGCCCGTTTTCATCGCTGGCACCAAGGCGTGGGCTGACAAGTTCACCGCCGCCGGTGTGCCGATCGTGGGCGATGACATCAAGAGCCAGATCGGTGCCACCATCACGCACCGGGTCATGGCCAAGCTCTTCGAGGACCGCGGCGTCACCCTTGACCGCACGTACCAGCTGAACGTCGGCGGCAACATGGACTTCAAGAACATGCTTGAGCGGGACCGCCTCGAGTCCAAGAAGATTTCCAAGACGCAGGCCGTGACCTCCAATGTTGAGGCCGAGCTCGCCGCCAAGGATGTCCACATCGGCCCCTCCGACTACGTCCAGTGGCTCGACGACCGCAAATGGGCATTTGTGCGCCTCGAGGGCCGCAACTTCGGTGACGCCCCGGTGTCGCTGGAATACAAGCTGGAAGTCTGGGACTCACCCAACTCAGCCGGCGTGATCATCGACGCCATCCGTGCCGCCAAGATCGGCCTGGACCGCGGCGTCGGCGGCCTATTGCTCTCTGCTTCAAGCTATTTCATGAAGTCCCCGCCGGAGCAGTTCAACGACGACCTCGCCCGTGAAAAGGTCGAGGCCTTCATCCGCGGCGACCTGGAGCGCTAGMSSNPIRVAIVGVGNCAASLVQGVHYYRDADPKATIPGLMHVEFGKYHVKDVQFVAAFDVDGKKVGVDLADAILASENNTIKIADVPPTGVTVQRGHTLDGLGKYYLETIEQSPVEPVDVVQALKDAKADVMVCYLPVGSQEAAEFYAQAAIDAGVAFVNALPVFIAGTKAWADKFTAAGVPIVGDDIKSQIGATITHRVMAKLFEDRGVTLDRTYQLNVGGNMDFKNMLERDRLESKKISKTQAVTSNVEAELAAKDVHIGPSDYVQWLDDRKWAFVRLEGRNFGDAPVSLEYKLEVWDSPNSAGVIIDAIRAAKIGLDRGVGGLLLSASSYFMKSPPEQFNDDLAREKVEAFIRGDLERNANANANANA
D1-29_033971041gpr_2COG0667L-glyceraldehyde 3-phosphate reductaseATGACTTATTCTGCTGCGGAGAACCGCTATGAATCCATGCCCTACCGCCGCGTTGGCCGCAGCGGATTGAAGCTCCCGGCCATTTCGCTGGGCCTGTGGCACAACTTCGGTGATGACAAGCGCTTTGACGAACAGCGCGCCATCCTTCGCCGCGCCTTCGACCTGGGCGTCAACCACTTCGACCTTGCCAACAACTATGGTCCGCCGGACGGCTCCGCCGAGACCAACTTCGGCCGCCACCTCGCCGACGACTTCAAGTCCTACCGCGACGAACTGGTCATCTCCACGAAGGCCGGCTATTACATGTGGCCGGGACCGTACGGAGAATGGGGCTCACGGAAGTACCTGATATCAAGCCTGGACCAGTCCCTGCAGCGGATGGGCCTGGACTACGTGGACATCTTCTACAGCCACCGGCCGGATCCGGAAACGCCTATGGAGGAGACCATGGGAGCGCTGGACTACGCCGTGCGCTCCGGCAAGGCCCTGTACGCAGGCATCTCGTCCTACACACCTGAACAGACCCTCGAGGCCGCCCGGATCCTGAAGGAACTCGGCACCCCGCTGCTGATCCACCAGCCCAGCTACTCCATGCTGAACCGGTGGACGGAGAACGGAACCCCCAACCTCTACGAAGCACTGGAGCAGGTGGGCGCCGGTTCCATCGCGTTCTCGCCGCTCGCGCAGGGGATGCTCACGGACCGGTACCTGAACGGCATTCCCGCAGATTCCAGGGCAGCGAAGGCCCGTTTTCTCTCCGAAGACGCCATCACGGACGAGAAGCTGGACCGGATCCGTGGACTGAACAAAATCGCGGCTGACCGCGGGCAGACGCTCGCCCAGATGGCCATCGCCTGGATCCTGCGCGACCAGCCGAAGGGCACTCCGGTTACGTCAGCACTGGTGGGCGCTTCGAGCGTCCGGCAGTTGGAAGACAGCCTGTCCGCCATCAACAACCTGGCATTCACGGCTGAGGAACTGACGGCCATCGACGAGTTTGCGGTGGAGTCGGACATCAACCTCTGGGCGCAGGAGCCGTAAMTYSAAENRYESMPYRRVGRSGLKLPAISLGLWHNFGDDKRFDEQRAILRRAFDLGVNHFDLANNYGPPDGSAETNFGRHLADDFKSYRDELVISTKAGYYMWPGPYGEWGSRKYLISSLDQSLQRMGLDYVDIFYSHRPDPETPMEETMGALDYAVRSGKALYAGISSYTPEQTLEAARILKELGTPLLIHQPSYSMLNRWTENGTPNLYEALEQVGAGSIAFSPLAQGMLTDRYLNGIPADSRAAKARFLSEDAITDEKLDRIRGLNKIAADRGQTLAQMAIAWILRDQPKGTPVTSALVGASSVRQLEDSLSAINNLAFTAEELTAIDEFAVESDINLWAQEPPGPT0008285_485DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265NANA
D1-29_033981770treZCOG0296Malto-oligosyltrehalose trehalohydrolaseATGAGTATTGTTCACAATGGCCCCGGCCGGTTTGACCTCTGGGCGCCCAGAGCGGACTCAGTCACCCTGCTGGCCGGCGGGCAGCACTATCCGATGGCGAGGGTGGAGCGTGGTCCCGGAGCTGACGGCTGGTGGGCGGCCGAGTCCGCTCCCGTGGAGGGGGATGTTGACTACGGCTACCTGCTGGATGACGATCCTAAGCCGTTGCCGGACCCGCGCTCACGCCGCCTGCCGGACGGTGTCCATGCGTTGGCCCGGACCTATTCACCCGCTGCACACGTGTGGCAGGATGCCGGCTGGCAGGGCAAGGAGCTGCGCGGAGCCGTCATCTACGAGCTACATGTAGGTACTTTCACCCCGGAAGGCACCCTGGACGCCGCCGCCGAAAGGCTCAGCTACCTGGCAGAGCTGGGCGTCGATTTTGTTGAACTTCTGCCTGTCAACGGTTTCAACGGAACGCACAACTGGGGCTACGACGGCGTTCAGTGGTTTGCAGTCCACGAAGGCTACGGCGGTCCGGCTGCCTACCAGAGGTTTGTCGACGCCACCCACGCGGCCGGTATGGGCGTTATCCAGGACGTTGTTTATAACCACCTCGGGCCCAGCGGCAACTACTTGTCCAGATTTGGCCCGTACCTCAAACAGGGTGATGCCAACACCTGGGGCGACTCCGTTAACCTGGACGGCCCCGGCTCTGACGTGGTCCGTGAATACATCCTGGACAACGCGGCGCTTTGGCTGCGGGATTACCACGTGGATGGACTGCGCCTGGATGCTGTCCATGCCCTGCGGGACGAGCGCGCTGTGCACCTCCTCGAGGAACTCGGCGCCCTGGGGGATGCCATCTCAGCGGAAACAGGCCTGGCCAAGACATTGATCGCTGAATCGGACCTGAACAATCCGCGCCTGATCTACCCGCGCAACGTCAACGGCTACGGCTTGGCAGGACAGTGGAGCGATGACTTCCACCATGCCGTCCACGTTAATGTCAGTGGCGAAACCACCGGGTACTACGGCGATTTCACGTCCCTGGGGGTCCTCGCCAAGGTCCTCAAGGACGGGTTCCTGCACGATGGCAGCTACTCCAGTTTCCGCGGGCGCCACCACGGACGGCCCATCAACACCGCACTTGTTCACCCCGAAGCGCTGGTGGTCTGCAACCAGAACCACGACCAAATTGGCAACAGGGCCACAGGGGACAGGCTTTCCCAGTCGCTGCACTACGGCCAGTTGGCTGTCGCCGCGGTGCTGACCCTGACCTCGCCCTTTACTCCAATGCTGTTTATGGGCGAGGAATTCGGCGCCTCCACACCGTGGCAGTTCTTCACCTCGCACCCTGAACCGGAGCTCGGCAAGGCGACGGCGGAAGGCAGGATCCGTGAGTTCGAACGGATGGGGTGGGACCCCGCCGTCGTGCCCGATCCGCAGGATCCGGAAACCTTCCGGCGCTCAAAGCTGAACTGGGAGGAAGTTTCCCAGGGCCGGCACGCTCAGCTTTTGGAGCTCTACCGCTCCCTCACTGCCTTACGCCGGGGGCACCCGGAGCTGGCAGGGCTGGGGTTCACCGACACCGAGGTGCGGTTCAATGACGACGACGGCTGGCTGCGTTTTCGGCGCGGGGCCCTGGAGGTGCTGCTGAACTTCTCCGAGGAGGAGATCCGGCTGGAGGATGCATCGGGATTGATGCTCCTCTCGACGGACGACGCCACGAAACTGGAGGGCGGGGCCCTGACACTGCCTGCGTGGAGTGCCGCCATCCTGAAGGGCTAGMSIVHNGPGRFDLWAPRADSVTLLAGGQHYPMARVERGPGADGWWAAESAPVEGDVDYGYLLDDDPKPLPDPRSRRLPDGVHALARTYSPAAHVWQDAGWQGKELRGAVIYELHVGTFTPEGTLDAAAERLSYLAELGVDFVELLPVNGFNGTHNWGYDGVQWFAVHEGYGGPAAYQRFVDATHAAGMGVIQDVVYNHLGPSGNYLSRFGPYLKQGDANTWGDSVNLDGPGSDVVREYILDNAALWLRDYHVDGLRLDAVHALRDERAVHLLEELGALGDAISAETGLAKTLIAESDLNNPRLIYPRNVNGYGLAGQWSDDFHHAVHVNVSGETTGYYGDFTSLGVLAKVLKDGFLHDGSYSSFRGRHHGRPINTALVHPEALVVCNQNHDQIGNRATGDRLSQSLHYGQLAVAAVLTLTSPFTPMLFMGEEFGASTPWQFFTSHPEPELGKATAEGRIREFERMGWDPAVVPDPQDPETFRRSKLNWEEVSQGRHAQLLELYRSLTALRRGHPELAGLGFTDTEVRFNDDDGWLRFRRGALEVLLNFSEEEIRLEDASGLMLLSTDDATKLEGGALTLPAWSAAILKGPGPT0014130_666DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0014130-treZ|glgZ-K01236NANA
D1-29_033992325treYMaltooligosyl trehalose synthaseATGAGGGTACCGGCTTCGACGTACCGGCTGCAGATCCGCCGCAGCTTCACGCTCTTTGACGCTGCGGACAGGGTGCCGTACCTGAAATCACTCGGGGCTGACTGGCTTTACCTGTCTCCCATCCTGACGGCCGAGCAGGGGTCCGACCACGGCTACGACGTCACCGACCCGTCCGCGGTGGACCCGGAGCGCGGCGGGCCGGAGGGCCTCGCCGCACTCTCAAAAGCCGCACGCGAGCACGGCATGGGCGTCCTCGTGGACATCGTCCCCAACCATGTGGGGGTGGCGTCCCCGCCGCAGAACCCCTGGTGGTGGTCGCTGCTGAAGGAAGGCCGCGGCTCCCGCTACGCAGAGGCGTTCGACGTCGATTGGGACTTCGGCGGCGGGAAGATCCGGCTTCCCGTGCTGGGCTCGGATGACGACCTGGACAAGCTCGAGGTCAAGGACGGCGAGCTGCGTTACTACGACCACCGCTTTCCGCTCGCCGAAGGAACCTACGCCGAAGGGGATTCGCCGGCCGTAGTGCACGCCCGGCAGCATTACCAGTTGATGGACTGGCGTCGCGCGAATGCCGAACTCAACTACCGGCGCTTCTTCGCGGTCACCACTCTTGCCGGGATACGCGTAGAAGTCCCGCAGGTCTTCGATGAAGCGCATGCCGAGGTTGCCCGCTGGTTCCGCGAGGGGCTGGTGGACGGACTCCGCGTGGACCATCCGGACGGCCTGGCGGATCCCGCCGGCTACCTGCGCTGGCTCAAGGACCTCACCGGCGGCGCCTACATCCTCGTGGAAAAGATCCTCGAGCCCGGTGAAGTCCTTCCTGGCGACTTTGCGTGTGAAGGAACCACGGGCTATGACGCCCTGGCAGACGTGGACCGCATCCTGATCGACCCGGGCGGCCAGCCGGCACTTGACGCCCTGGATGCCAGCCTCCGCGGCAGCGACCGCCCAGCCGACTACGCCACCATGATCCACGGCACCAAACGGATGATTGCCGACGGCATCCTGCGCGCCGAAGTGCTCCGGCTGGCTCGGCTGGTTCCGCCGTCGTACGGGCTGGCGGAAGACCAGGCAGCTGACGCCCTTGCGGAAATCATCGCCGCGTTCCCCGTCTACCGGACCTACCTGCCTACTGGCGCCGAAGTGCTCAAGGAAGCCTGCGAGCTGGCGGCTGCACGCCGGCCGGATCTGGAGGTCGCAGTCGGAACACTGCTGCCCCTCCTCCTGGACCCCAGCCTGCCCATAGCCGTGCGCTTTCAGCAGACCTCCGGCATGGTGATGGCGAAGGGCGTGGAGGACACAGCGTTCTACCGCTATACGCGGCTGGGCACCCTGACTGAGGTAGGGGCGGAGCCCACTGAGTTTTCCGTAACTCCGGCCGAATTCCATCAGCGGATGCGCCGGCGTGCCGAACAGTTGCCGGAATCCATGACCACACTGTCCACCCACGACACCAAACGGAGTGAGGACGCCCGGGCCCGGATCTCGGTAATCGCCGAGGTGCCTGACGAGTGGACGGCGGCCGTCAAAACGCTTCAGGAACTCGCGCCGGTTTCCGACGCCCCTTTTGCCAACCTTCTGTGGCAGGCGGTGATCGGCGCCTGGCCCGCCAGCAGGGAACGGTTACAGTCCTATGCGCAAAAGGCTGCCCGGGAGGCCGGTAACTCCACTACCTGGACGGACCCGGACGAGCACTTCGAATCAACCGTCAGCGCGGCTGTGGACGCCGCCTTTGACGATCCACGCGTAGCCGCAGTGATTGAGGGGTTCGTGGCAAACACGGATTCCTTTGCCGCCTCCAACTCGCTGTCCGCCAAACTGATCCAGCTGACCATGCCCGGTGTTCCTGACGTTTACCAAGGCACGGAGTTCTGGGACCGGTCACTGACCGACCCCGACAACCGGCGCACCGTCGACTTCGAAAAGCGTGAAGGTGCCCTTGCCCAGCTCGACAACGGCGTGCTTCCGGAAAGCTTCCGGTCGGAAACCAGCAAACTCCTTGTCACTTCCCGGGCGCTGCGCCTGCGTCGTGACCGGCCTGAGCTGTTCCAGGGCTATCGTTCCGTGCCGGCCTCCGGGGCAGCGGCAGAACACTTGGTGGCGTTCGAGCGAGGTGCAGGGACAGGCGCCGTTACCCTGGCCACACGGCTTCCCTTAGGACTGAAACAGGCCGGCGGGTGGCGGGATACCGCCGTCGAACTCGGCGCAGCCATGCACGATGAGCTGACGGGCAAGAGGTTTGGCCCCGGATCCATTCCGGTGGCGGACATCCTCCAAACCTACCCCGTGGCGTTGCTTGTACCCGTGAAGGGAGCCGAATCATGAMRVPASTYRLQIRRSFTLFDAADRVPYLKSLGADWLYLSPILTAEQGSDHGYDVTDPSAVDPERGGPEGLAALSKAAREHGMGVLVDIVPNHVGVASPPQNPWWWSLLKEGRGSRYAEAFDVDWDFGGGKIRLPVLGSDDDLDKLEVKDGELRYYDHRFPLAEGTYAEGDSPAVVHARQHYQLMDWRRANAELNYRRFFAVTTLAGIRVEVPQVFDEAHAEVARWFREGLVDGLRVDHPDGLADPAGYLRWLKDLTGGAYILVEKILEPGEVLPGDFACEGTTGYDALADVDRILIDPGGQPALDALDASLRGSDRPADYATMIHGTKRMIADGILRAEVLRLARLVPPSYGLAEDQAADALAEIIAAFPVYRTYLPTGAEVLKEACELAAARRPDLEVAVGTLLPLLLDPSLPIAVRFQQTSGMVMAKGVEDTAFYRYTRLGTLTEVGAEPTEFSVTPAEFHQRMRRRAEQLPESMTTLSTHDTKRSEDARARISVIAEVPDEWTAAVKTLQELAPVSDAPFANLLWQAVIGAWPASRERLQSYAQKAAREAGNSTTWTDPDEHFESTVSAAVDAAFDDPRVAAVIEGFVANTDSFAASNSLSAKLIQLTMPGVPDVYQGTEFWDRSLTDPDNRRTVDFEKREGALAQLDNGVLPESFRSETSKLLVTSRALRLRRDRPELFQGYRSVPASGAAAEHLVAFERGAGTGAVTLATRLPLGLKQAGGWRDTAVELGAAMHDELTGKRFGPGSIPVADILQTYPVALLVPVKGAESPGPT0014125_1137DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014125-treY|glgY-K06044NANA
D1-29_034002256glgX_2COG1523Glycogen operon protein GlgXATGGAAATCTGGCCCGGATCGGCTTATCCGCTTGGCGCCACTTTTGACGGAACGGGCACCAACTTCGCCCTGTTCAGCGAACGCGCCGAAAAGGTGGAACTGTGCCTCTTTGACGACGACGGAGTGGAGACGCGCTACGAGCTGGATGAAGTGGACGGCTACGTGTGGCACTGCTACATCCCGCAGGTCCAGCCCGGCCAGAAGTACGGCTACCGCGTCCACGGCCCGTACGACCCCTCCTCTGGCAACAGGTTCAACCCCAACAAACTCCTCCTGGATCCCTACGCCAAGGCAGTTCATGGACAGGTTGACTGGGATCCGTCACTCTTCTCCTACAACCTTGGCGAACCGGACTCCATCAACAATGAGGACTCCGCCCCGCATATGATGCTGGGCGTGGTCATCAACCCGTTCTTCGACTGGGACGGCGACCACAACCTGCGGGTTCCGTACCACAAGTCCGTCATCTACGAGGCCCACGTCAAGGGCCTGACGCAGCTGCACCCCGAAATTCCGGAGGAGCAGCGCGGAACCTACGCCGGGGTGGCGCACCCCTCCGTCATTTCGCACCTGCAGAAGCTGGGCATTACCGCCATCGAACTGATGCCGGTGCACCAGTTCGTCAATGACGGAACACTTCAGGACAAAGGCCTGAACAACTATTGGGGCTACAACACCATCGGCTTTTTCGCGCCGCAGAACACCTACAGCTCCACCGGTGACACCGGCCAGCAGGTCCAGGACTTCAAAGCCATGGTCCGTTCGCTGCACCGCGCCGGCATCGAGGTCATCCTGGACGTGGTGTACAACCACACGGCCGAAGGGAACCACCTCGGCCCCACTCTCTCTTTCAAGGGCATCGACAACGCGGCCTACTATCGGCTGATGGAGGGGGACCGTAAGCACTACATGGACTACACGGGCACCGGCAACTCTCTCAACGTCCGCCAGCCGCACTCACTCCAGCTCCTGATGGACTCGCTGCGCTACTGGGTCACGGAAATGCATGTGGACGGCTTCCGCTTCGACCTCGCCTCCACGCTGGCCCGGGAATTCTACGACGTCGACAAACTGTCCACGTTCTTTGAACTTATCCAGCAGGATCCGGTGGTTTCCCAGGTCAAGCTCATTGCCGAGCCCTGGGATGTTGGCCCCGGCGGCTACCAGGTGGGCAACTTCCCGCCGCAGTGGACCGAATGGAACGGCAAGTACCGCGATACGGTCCGGGACTTCTGGCGCGGGGAACCTGCCACGCTGGGCGAATTCGCTTCCCGCATTACGGGATCCGCGGATCTGTATGAACACTCCGGGCGCCGTCCCGTGGCATCCATCAACTTTGTCACCGCCCATGACGGCTTCACGCTGGCAGACCTCGTCTCTTACAACGAGAAGCACAATGAGGCGAACGGCGAGGGCAACAACGACGGCGAATCCCACAACCGGTCGTGGAACTGCGGAGTGGAAGGACCCACTGACGATCCCGCAGTCCTTGGCCTGCGCGCCCGCCAGCAGAGGAACTTCATCGCGTCCCTGCTGCTCTCCCAGGGTGTGCCCATGCTGCTGCACGGCGACGAGCTTGGCCGCACCCAGCAGGGCAACAACAACGGCTACTGCCAGGACTCGGAGCTGACCTGGGTCAACTGGGACAACATCGACCAGCCGCTTGTTGAATTCACGGCCGCCGTCAACGCCCTCCGCGCGAAGCACCCCACCTTCCGCCGGAGCCGCTTCTTCGACGGCCGCCCTGTCCTGAGAGGCGAAGGCGAGCGGCTGCCGGACATCGTCTGGCTGGACCTCGACGGCGAAACCATGAAACCGGAGGACTGGCATAGCGGTTTTGGACGCTCGGTGGGCGTCTTCCTGAATGGCAACGGAATCCAGGGCAAGGACACCCGCGGCCGCAGGATTACCGATGTCAACTTCCTGTTGTACTTCAACGCCCACGACGACATGGTCAAGTTCACGCTCCCGGCTGACGAGTACGCGCCGGCCTGGGACATCATCATTGACACTGCCGGGCACCACGCTGACACCGATCCCGTGAACGCCGGCCAGTCGCTGCGCGTGGACGCAAAATCCCTCGTTGTCCTCCGCGCCCACAGCGTGCCGGAAACCGAGCCGGACCACTCGGTGGCCGCATCGCTCGCGGCGTTGACGCAGACATCCACCAGTGAGACCGAGGCTTTCAGCACACCCATGGTGGCTGAGCCGGCGAAGACCACGAAAGTGGGTCCACGAAGGGAATCGGCAAAATGAMEIWPGSAYPLGATFDGTGTNFALFSERAEKVELCLFDDDGVETRYELDEVDGYVWHCYIPQVQPGQKYGYRVHGPYDPSSGNRFNPNKLLLDPYAKAVHGQVDWDPSLFSYNLGEPDSINNEDSAPHMMLGVVINPFFDWDGDHNLRVPYHKSVIYEAHVKGLTQLHPEIPEEQRGTYAGVAHPSVISHLQKLGITAIELMPVHQFVNDGTLQDKGLNNYWGYNTIGFFAPQNTYSSTGDTGQQVQDFKAMVRSLHRAGIEVILDVVYNHTAEGNHLGPTLSFKGIDNAAYYRLMEGDRKHYMDYTGTGNSLNVRQPHSLQLLMDSLRYWVTEMHVDGFRFDLASTLAREFYDVDKLSTFFELIQQDPVVSQVKLIAEPWDVGPGGYQVGNFPPQWTEWNGKYRDTVRDFWRGEPATLGEFASRITGSADLYEHSGRRPVASINFVTAHDGFTLADLVSYNEKHNEANGEGNNDGESHNRSWNCGVEGPTDDPAVLGLRARQQRNFIASLLLSQGVPMLLHGDELGRTQQGNNNGYCQDSELTWVNWDNIDQPLVEFTAAVNALRAKHPTFRRSRFFDGRPVLRGEGERLPDIVWLDLDGETMKPEDWHSGFGRSVGVFLNGNGIQGKDTRGRRITDVNFLLYFNAHDDMVKFTLPADEYAPAWDIIIDTAGHHADTDPVNAGQSLRVDAKSLVVLRAHSVPETEPDHSVAASLAALTQTSTSETEAFSTPMVAEPAKTTKVGPRRESAKPGPT0019225_700DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214NANA
D1-29_034011584nnr_1COG0062Bifunctional NAD(P)H-hydrate repair enzyme NnrATGATCAGCGCCTACACCGGAACCCAGATCAGGACGGCCGAAGAGCCCCTCCTCGCTGCCGGCATGGGCGCTGTCCTGATGCAGCGGGCTTCCCACGGGCTTGCCAACGCGGTGGTCCGTGAGTTGCAGGGCAGGCGGCGGAGGTTGTACGGCTGCCATGTCGCCGTGCTGGCCGGCAAGGGCAACAACGGCGGAGACGGCCTTTTTGCGGCCGCCTTCCTAGCCGCGCGTGGAATGCGTACGACGGCGGTGCTCGCCTCAGCAACAGCACACCCTGAGGCGCTTGCTGCCTTTCAACGCGCGGGCGGCAGGGTGCACCTGCTTGCTGACTCCAGCGTTGGCCGGTTGGCCGAGGAGGTGGCGCGTGCCGACGTCGTGATTGATGCCGTGCTGGGAACTGGCGCTAAAGGCGGCCTGCGCGGACCCGCAGCGGCCCTGGTGGAGGCTCTTCTGGCGGAAGGACTGCCGGGCAGAACCGAACAGCTGGTGGTTGCCTGTGATGTTCCCAGCGGAGTGGATGCGGACACCGGGGAAGTCCACGCACCCGTCCTGCCTGCTGATGTGACGGTGACCTTCGGCGGCGCCAAGGCCGGACTGCTGGCCGACCCCGGAGCGGGCCACTCAGGCCGCGTGCAAGTGGTGCAGATCGGCATAGAGGAGAACCTGCCATGGCCTGCCCTGCGCAGGTTCGATGCCACGGACCTCTCCCGTTTGCTGCCGCAGCCGGGGAGGCGATCGCACAAGTATTCCCGGGGTGTGCTGGGTGTGGTGGCAGGATCGGCTGACTATCCCGGGGCGGCGGTGCTCGCGTGCCGCGGAGCCCTGGCCGCAGGAGTGGGCATGGTCCGCTACCTGGGCCCGCCCGAGGTGGCTGACCTCGTCCGGCAGTCCTGCCCCGAGGTAGTGTGTGGCACCGGATCGGTGGCCGAGACCCACGTCCAGGCCTGGCTGGTGGGCTCAGGAATGGGCCCCGGCGACGCCGAACAGCTTCAGCGCGCCCGCGATGCAGTGGACTCGGGATTGCCCACGATTGCGGACGCCGGCGCGCTTCCGGTCCTGCCTGACGTGATGGCTCCCCAGGTGGTGCTGACCCCGCATGCGGGTGAACTGGCGGCACTGCTGCACCGGCTGCATGACCATACTGAAGGCTCCGCGGCTCCCTTTCCCGACCGGGCCGCCGTCGAATCCCGCACCTTGGATGCGGTCCGCCACGCCGCGGTGCTAACCGAGGCCACAGTCCTCCTCAAAGGCGCGGCGACACTGGTTGCGTCCCCCTTCCAGGACGCCTACAGCCAGGCAGAAGGTACGCCTTGGCTCGCCACCGCCGGCAGCGGCGATGTCCTGGCCGGAGTCATTGGCGCGCTGCTCGCCCAGGCGGGTTCCGACGTCGGGCGCTTCAGTGATGCGGGCATCGATCCGGAGGAACGGTGGGCGGCCATTGCCGCCCTCGCCGCCAGCCTCCATGGACTCGCGGGAGCGGCCGCATCTGCCGGCGGACCGCTGACTGCAGGCCGGATTGCGGACGCCCTGCCGGAGGTTTGGGGTAAAGTAAGTAGGCTTAGCAATTCGGTGGTGAAATCGTAAMISAYTGTQIRTAEEPLLAAGMGAVLMQRASHGLANAVVRELQGRRRRLYGCHVAVLAGKGNNGGDGLFAAAFLAARGMRTTAVLASATAHPEALAAFQRAGGRVHLLADSSVGRLAEEVARADVVIDAVLGTGAKGGLRGPAAALVEALLAEGLPGRTEQLVVACDVPSGVDADTGEVHAPVLPADVTVTFGGAKAGLLADPGAGHSGRVQVVQIGIEENLPWPALRRFDATDLSRLLPQPGRRSHKYSRGVLGVVAGSADYPGAAVLACRGALAAGVGMVRYLGPPEVADLVRQSCPEVVCGTGSVAETHVQAWLVGSGMGPGDAEQLQRARDAVDSGLPTIADAGALPVLPDVMAPQVVLTPHAGELAALLHRLHDHTEGSAAPFPDRAAVESRTLDAVRHAAVLTEATVLLKGAATLVASPFQDAYSQAEGTPWLATAGSGDVLAGVIGALLAQAGSDVGRFSDAGIDPEERWAAIAALAASLHGLAGAAASAGGPLTAGRIADALPEVWGKVSRLSNSVVKSNANANANANA
D1-29_03402348acpSHolo-[acyl-carrier-protein] synthaseATGATTGTTGGCATTGGCGTAGACGTTGTAGATATCGAGCGGTTTGGCCGCCAGCTTGAGCGGACCCCGGGGCTCCGGGACAGGCTGTTTGTACCCGCCGAGCGGGAGCTGAACACCCGGTCCCTGGCCGCGCGGTTTGCTGCCAAGGAAGCGGTGGCCAAGGTTTTGGGCGCGCCTGCCGGCATGAACTGGCAGGACTGCTGGATCGGCCTTGACCACAACGGGCCCACTGTCCAGGTCAAGGGCACCGTCCTGGCCGTAGCCGAGGCCAAGGGCGTCAAGCGCTGGCACCTGTCCATGAGCCACGACGGCGGAGTTGCTACTGCCACGGTTCTGGCCGAGGGCTGAMIVGIGVDVVDIERFGRQLERTPGLRDRLFVPAERELNTRSLAARFAAKEAVAKVLGAPAGMNWQDCWIGLDHNGPTVQVKGTVLAVAEAKGVKRWHLSMSHDGGVATATVLAEGPGPT0008840_3627DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0008840-acpS-K00997NANA
D1-29_034031893glmS_2COG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]ATGTGTGGAATCGTGGGATATGTAGGCTCTTCAAACGGCCGCGGGAATGCCGGTCACAATGCGCTGGATGTGGTCCTTGAAGGACTGCGCCGCCTCGAGTACCGGGGCTATGACTCGGCCGGCGTCGCCGTGGTGTCCATGGGCGCCATCGAAGCCCGGAAGAAGTCGGGCAAACTGAGCAACCTGCTCACCGAACTGGACGAGCGCCCGCTGCCGGAGACGCTGACCGGTATCGGCCACACCCGCTGGGCCACCCACGGAGGCCCGACGGACCGCAACGCCCACCCGCACCTGGCTGACGACGGCAAGCTGGCCGTCATCCACAACGGCATCATCGAAAACTTCGCCGAGCTCAAGCTCGAGCTGCTGGAAAAGGGCATTACGTTCCTGTCCGAAACCGACACCGAGGTGGCCGCGGCGTTGCTGGCCGACATCTTTCGCAACAAGCTCGGCGGGGACGTAACTGACGGCGCCCTGACCCGGGCCATGGAGCTGGCCTGCCAGCGCCTGGAGGGTGCGTTTACGCTGCTCGCGGTCCACGCTGACCAGCCCGACGTCGTCGTGGCCGCCCGCCGCAACTCACCCTTGGTGGTTGGCCTGGGCGAGGGCGAGAACTTCCTGGGCTCGGACGTTTCCGGGTTCATTGACTACACCCGCCGTGCGGTGGAGCTGGGCCAGGACCAGATTGTCACCATCACCGCGGACACTGTGGACATCACCGATTTCTTCGGCAACCCCGCCGCGGGTAAGGAATACCACGTGGACTGGGACCCGGCCTCGGCTGAAAAGGGCGGCTTCAGTTCGTTCATGGAGAAAGAAATCCATGACCAGCCCGACGCCGTGGCGCAGACCCTGCTGGGCCGGTCGGACCTGGACGGGAAGCTGACCCTGGATGAGATCCGGATCGATCCTGAACTCCTGAAGCAGGTCAACAAGATCATTGTGCTTGCCTGCGGCACCGCCGCCTATGCGGGCACGGTGGCAAAGTACGCGATCGAAAACTGGTGCCGGATCCCCACGGAAGTGGAGCTGGCGCACGAGTTCCGCTACCGCGACCCGATCCTGGACGCCAACACCCTGGTGGTCTCGATCAGCCAGTCCGGCGAAACCATGGACACCCTGATGGCCGTACGGTACGCCCGCGAGCAGGGCGCCAAGACCATCTCCATCTGCAACACCAACGGCTCCACCATCCCGCGCGAATCCGATGCCGTGCTGTACACCCACGCCGGCCCGGAAATCGCGGTGGCCTCCACCAAGGCTTTCCTGGCACAGATCACCGCGGCGTACCTGCTGGGAATGTACCTGGCACAGCTTCGCGGCAACATCTTCTCCGGCCAGATCAAGGATGTCCTGGCGGACCTGAACAAGATTCCGGCCAAGATCCAGACCATCCTGGACAATGCCGGCCCGTTGCGTGAGCTGGCCCGAAGCATGGCCGACGAAACATCGGTGCTGTTCCTGGGCCGGCACGTTGGCTACCCGGTGGCGCTTGAGGGTGCCCTGAAGCTCAAGGAAATCGCCTACATCCACGCCGAGGGCTTCGCCGCCGGCGAGCTCAAGCACGGCCCCATCGCCCTGATCGATGAAGGCAAGCCGGTTTTCGTGATTGTTCCGTCCCCGCGCGGCCGCGAATCGCTGCATGCCAAGGTGATCAGCAACATCCAGGAAATCCGTGCCCGCGGCGCCCGCACGCTGGTGATCGCCGAGGAAGGCGACGAAGCCGTGAAGGCCTACGCTGAGCACGTCTTCTACGTCCCGGAAACGCCCACGCTGCTGATGCCACTGCTGACCACCGTCCCGCTGCAGATCTTCGCCGCCGAATTGGCCGCCGCGAAGGGCTACGACGTGGACCAGCCTCGCAACCTGGCCAAGAGCGTGACCGTAGAATAGMCGIVGYVGSSNGRGNAGHNALDVVLEGLRRLEYRGYDSAGVAVVSMGAIEARKKSGKLSNLLTELDERPLPETLTGIGHTRWATHGGPTDRNAHPHLADDGKLAVIHNGIIENFAELKLELLEKGITFLSETDTEVAAALLADIFRNKLGGDVTDGALTRAMELACQRLEGAFTLLAVHADQPDVVVAARRNSPLVVGLGEGENFLGSDVSGFIDYTRRAVELGQDQIVTITADTVDITDFFGNPAAGKEYHVDWDPASAEKGGFSSFMEKEIHDQPDAVAQTLLGRSDLDGKLTLDEIRIDPELLKQVNKIIVLACGTAAYAGTVAKYAIENWCRIPTEVELAHEFRYRDPILDANTLVVSISQSGETMDTLMAVRYAREQGAKTISICNTNGSTIPRESDAVLYTHAGPEIAVASTKAFLAQITAAYLLGMYLAQLRGNIFSGQIKDVLADLNKIPAKIQTILDNAGPLRELARSMADETSVLFLGRHVGYPVALEGALKLKEIAYIHAEGFAAGELKHGPIALIDEGKPVFVIVPSPRGRESLHAKVISNIQEIRARGARTLVIAEEGDEAVKAYAEHVFYVPETPTLLMPLLTTVPLQIFAAELAAAKGYDVDQPRNLAKSVTVEPGPT0017630_965DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-29_03404987coaACOG1072Pantothenate kinaseGTGAAGGGCAGAATCTCTAAAGTGACTTTGCAACGCAATGAAGCGAACGGCGAGGGTGTCTCCCCGTTCGTCGAGCTGGACCGGCAGACGTGGTCCCGGCTCGCAGCCCAGATGGAACAGCCTCTTAACGAAGAGGACATTGTCCGTCTGCGCGGCCTCGGCGATCCCCTGGACATGACCGAGATCCGTGAGGTCTATCTGCCGCTCTCCAGGCTCCTCCATCTTTATGTCGAGGCCTCCCATCAGCTTCATTCCGCCACCACTACCTTCCTGGGCGAAAAGACGCAGCGCACACCCTTTGTGATCGGTGTGGCCGGATCCGTGGCGGTGGGAAAGTCCACCATTGCCCGCGTTCTCCGGGAGATGCTGCGCCGCTGGCCCGGCACGCCCAACGTGGAACTGATCACAACTGACGGTTTCCTTTATCCGCTGGCTGAGCTTAAGCGGCGCCAGCTGCTGGAACGCAAAGGGTTCCCGGAGTCCTATGACCGCCGGGCGCTGCTGCGGTTTGTGAGCGAGATCAAGAGTGGGGCCGAAGAAGTGCGGGCGCCATGGTACTCCCACGTCACCTACGACATCGTTCCCGGCAAGGAAGTGGTGGTCCGACGCCCTGATGTCCTGATCGTGGAAGGCCTGAACGTGCTGGCTCCTGCGCGTCCGCGCCATGACGGCAAACAGGGTTTGGCGCTGAGCGACTTCTTCGACTTCTCCATCTACGTGGATGCCCCGACGTCCTACATTGAGGAGTGGTACGTGGACCGCTTCCGCAAGCTCCGCAGCACCGCGTTTGCGCAGCCCGAGTCCTATTTCCACCGCTACGCCACCTTGTCGGATGAGGAGGCGGAGACCACCGCCCGCGACATTTGGAAGCGCATCAACGAGCCCAACCTGGAGGAGAACGTGCTGCCCACCCGTGGACGCGCCCAGCTGGTGCTGTCCAAGGATGCCGACCACTCCATCCGCCGCATGCTGCTGCGGAAGGTCTAGMKGRISKVTLQRNEANGEGVSPFVELDRQTWSRLAAQMEQPLNEEDIVRLRGLGDPLDMTEIREVYLPLSRLLHLYVEASHQLHSATTTFLGEKTQRTPFVIGVAGSVAVGKSTIARVLREMLRRWPGTPNVELITTDGFLYPLAELKRRQLLERKGFPESYDRRALLRFVSEIKSGAEEVRAPWYSHVTYDIVPGKEVVVRRPDVLIVEGLNVLAPARPRHDGKQGLALSDFFDFSIYVDAPTSYIEEWYVDRFRKLRSTAFAQPESYFHRYATLSDEEAETTARDIWKRINEPNLEENVLPTRGRAQLVLSKDADHSIRRMLLRKVPGPT0008770_155DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008770-coaA-K00867NANA
D1-29_03405906hypothetical proteinATGTGCCACGACTGCGTTTCGGACAACGGAACTAGCGGGCCCCACACGCCGGCTGTCAGCAGCCGGCGCAGCTTTACGCGCTTTCTCGCCGCCGGAGCAGGGCTGACTGTCCTGGCAGCCTGCACGCCGGATCCCGTTGGGCCGGTCACGCCGTCGTCGTCCGCTTCTTTGGCATCAGCCCCGCCTCCCTCCCCCTCGTCCCCCTCCCCCGTAGCTCTTGCAACGGTGGAAAGTCCGACGCCGGTTGAGCCGGTCCCGACGCAGGCTCCCGTACCGCCGTCGCCGGCTGCCGCCCTGCCCCGCCAGTTTTCGCTGACCGATCCGGCCAGTCCCTGGCTGGTGGTGAACAAGCACCGCCCACTGAGTCCGCCCGACTACGTTCCGGCGGACCTGGTGCAGCCCAATGTCGCCCTGGCAGTAACCGGTGAAGCTGCTTTGCTGAACAGCACGACGGCGGCCGCCGCGGAGGCGATGTTCGCCGCGGCAGCGAGGGAAGGGGTGGTCTTGACGCTAGCGAGCGGTTACCGCTCCTACGGCACGCAGGTGGCCACCTACAACGGCTACGTGGCGTCCCGGGGCCAGGCGGATGCGGACACCGCGAGCGCCCGGCCGGGCTACTCGGAGCACCAGACCGGGTGGTCCTTTGACATCGGCGACGGCGGCGGCGTGTGCGGCTTCCAGCCCTGCTTTGCCGATCAGCCGGCCGCGGTGTGGGCCAAGGCGAACGGTTACCGCTTCGGTTTTGTGGTCCGGTACCCCTGGATGTTCCACCCGATCACCGGCTATTACTACGAGCCCTGGCACCTGCGGTACATCGGTGTGGAGGCTGCCACTGATATGGCGAACAGGGGCATCAGCACAGTAGAAGAGTATTTCGGCCTGGAAGCGGCGCCGGGGTATCCCTAGMCHDCVSDNGTSGPHTPAVSSRRSFTRFLAAGAGLTVLAACTPDPVGPVTPSSSASLASAPPPSPSSPSPVALATVESPTPVEPVPTQAPVPPSPAAALPRQFSLTDPASPWLVVNKHRPLSPPDYVPADLVQPNVALAVTGEAALLNSTTAAAAEAMFAAAAREGVVLTLASGYRSYGTQVATYNGYVASRGQADADTASARPGYSEHQTGWSFDIGDGGGVCGFQPCFADQPAAVWAKANGYRFGFVVRYPWMFHPITGYYYEPWHLRYIGVEAATDMANRGISTVEEYFGLEAAPGYPPGPT0024055_433DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GLYCOPEPTIDE_RESISTANCE,PGPT0024055-vanY|yodJ-K07260NANA
D1-29_03406393mscLCOG1970Large-conductance mechanosensitive channelATGCTGACTGGATTCAAGAATTTCATTATGAAGGGCAACGTCGTTGACCTTGCCGTAGCTGTTGTGATGGGCGCCGCATTCAGTGCCGTTGTCACCTCTATTGTCGAGGGGCTGCTCACCCCCCTGATTGGTCGCCTTTTCAGCGCCAAGGGCATGGAGGAAATGCAGTGGGAGGGATTCATGTACGGGTCCGTCATCTCCTCCATCATTTCCTTCCTGCTGGTGGCAGCGTCCATCTACTTCGTGGTGGTGCTGCCGATGAACCACATGATCGAGCTGCGTAACCGCAAGCTGGGGATCAACAAGGACGTCAAGGAAGAAGCGGCGGAAGACCCGCAGATCGCCCTGCTCACCGAAATCCGGGATGCCCTGCAGCGCACTCCCTCTTCCTAAMLTGFKNFIMKGNVVDLAVAVVMGAAFSAVVTSIVEGLLTPLIGRLFSAKGMEEMQWEGFMYGSVISSIISFLLVAASIYFVVVLPMNHMIELRNRKLGINKDVKEEAAEDPQIALLTEIRDALQRTPSSPGPT0013771_2540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282NANA
D1-29_034071293glmMCOG1109Phosphoglucosamine mutaseATGCGGCTGGCCCAGGCGGCCGCCGTCGTGCTCGGCCATGACCGCAACATCGGCGGCGCGCGCCCCCGTGCGGTTGTTGCGCGGGACCCCCGTGCCAGCGGTGAATTCATAGCCGCCGCCGTCGAAGCAGGGCTCTCAAGCTCAGGGATCGACGTCTATGACGCCGGCGTCCTCCCCACTCCGGCAGCGGCTTACCTCGTGGCAGACCTCGACGCCGATTTCGGCGTGATGATCTCCGCTTCACACAACCCCGCTCCAGACAACGGCATTAAGTTCTTCGCCCGTGGCGGCCAGAAGCTCCCTGACGACGTGGAAGACGCCATCGAGGAGCAGATGGCTAAGGAGCCGGTCCGGCCTGTGGGAGGCGATGTAGGCCGCATCCAGCGCTTCTCAGACGCGGAAGACCGCTACGTCCTCCACCTGCTGAGCACCCTCCCGCATCGCCTGGAGGGGCTGAAGGTGGTTCTGGATTGCGCTCACGGTGCAGCCAGCGGATGTTCTCCCCAGGTCTTCACCGATGCCGGCGCCCAGGTGGTAGTCATTGGGGCGGATCCTGATGGACACAACATCAACGACGGCGTGGGGTCCACCCACTTAGGACCTCTTAAGGCTGCCGTTGTGGAGCACGGTGCAGACCTTGGCATCGCCCATGACGGGGATGCGGACCGCTGCCTCGCTGTGGACCACGAAGGCAATGAGGTGGACGGCGACCAGATCATGGCCATCCTCGCCGTGGCCTTGAAAGCCTCGGGGAAGCTCACCGACGACGTCCTGGTAGCCACAGTGATGAGCAACCTCGGCCTGAAAATCGCCCTTCGTGCGGCAGGCATCAGCATCCGCGAAACTGCGGTGGGGGACCGCTACGTTTTGGAGGAGATGCGCAGCGGTGGCTTCAACCTTGGCGGCGAACAGTCCGGTCACGTAATTTTTGCCGACCATGCCACTACCGGCGACGGGGTCCTCACCGGCCTTCAGTTGGCGGCGCAGATCGCCCTGACAGGCCGTCCGCTCAAGCAGTTGGCCACCGTCATGACCAAGCTCCCGCAGGTGCTGATCAACGTCCGGGGAGTGGACCGAACCCGGGTGCACACCACTGAAGCGCTGGCGCAGGCCGTGGCCGCCGCTGAAGCCGAACTGGGGGAGACGGGGCGGGTCCTGCTGCGCCCATCGGGCACTGAGCCGGTTGTACGCGTCATGGTGGAGGCCGGTGACGAATCGACTGCCGAAGCCATCGCCGAACGCCTTGCGGAGATCGTCCGGACGGAGCTCGCGCTGGAGCTTGTCACCGACTAAMRLAQAAAVVLGHDRNIGGARPRAVVARDPRASGEFIAAAVEAGLSSSGIDVYDAGVLPTPAAAYLVADLDADFGVMISASHNPAPDNGIKFFARGGQKLPDDVEDAIEEQMAKEPVRPVGGDVGRIQRFSDAEDRYVLHLLSTLPHRLEGLKVVLDCAHGAASGCSPQVFTDAGAQVVVIGADPDGHNINDGVGSTHLGPLKAAVVEHGADLGIAHDGDADRCLAVDHEGNEVDGDQIMAILAVALKASGKLTDDVLVATVMSNLGLKIALRAAGISIRETAVGDRYVLEEMRSGGFNLGGEQSGHVIFADHATTGDGVLTGLQLAAQIALTGRPLKQLATVMTKLPQVLINVRGVDRTRVHTTEALAQAVAAAEAELGETGRVLLRPSGTEPVVRVMVEAGDESTAEAIAERLAEIVRTELALELVTDPGPT0018950_661DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018950-glmM-K03431NANA
D1-29_034081830hypothetical proteinTTGAAACGAGGAGATGCAATCGGGGTTGCGGCACTGGGCGGTGCCGCAGCTGTTATGTATTTGTGGGGTCTCAATGCCAACGGCTGGGGCAATGGCTACTATGCGGCAGCTGCACAAGCTGGAGCTGAAGACTGGAAAGCATTCTTCTTCGGATCCTCGGACAGCGGCAACAGCATCACAGTGGACAAACTGCCCGCCAGCATGTGGGTCACTGCACTGTCCGTACGGCTGTTTGGCCTGAGTTCGTGGAGCCTGCTGGTGCCGCAGGCACTTCTTGGTATCGCCACAGTGGTTCTTACGTATTTCACAGTCCGCCGCCACTTCCGGCACAGTTCCGCCATGATAGCCGGAATCGTTTTGCTGCTTACTCCTGCGGCCGCCGTGATGTTTCGTTACAACAATCCGGATGCGCTCCTGACGTTCCTGCTGACCCTGGCGATGTATCTCATGATCCGGGCGACCGACGATGGACGCTGGCGCTGGGTGCTGGCAACCGGAGCGGTTATCGGGGCAGCATTCCTTACCAAGTCTGCGCAGGCCCTGTTGCTGCTTCCAGCTCTGGGGGGAGTCTATCTGTACGCCGGCCCAGGCAGGCTCCAGCGGCGATTTCTTCAGTTGCTAGCTGGCGTGGGCACCGTAGCCCTCACAGCCGGATGGTGGCTGGTGATTGCGGAAATGACACCTCCGGAAACGAGACCCTATGCAGGAGGTTCGTTCAGCAACAGCTTTGTCGAAGTGCTCCTGCGCCAGAACGGCCTCGGGCGGATCCTCGGAGCCGCAGGGGGCGGGACGCCCGGGCAGGAAGCCGCGCCTCCCGGGCCTCTCAGGCTCATAACATACTCGTCATATGGCAGCCAAGGGGCGTGGCTGTTGCCGGCAGCAGGCATCCTCGTTATTGCCACGTTGATCCTGTTGCGGCGGCAGCCGCGGACAGACCCCAGGCGCGCAACTCTGCTCCTTTCAGGGGGATGGCTGCTAAGCTACTGGGCTGTTTTCAGTTTCATGGGCGGCGTCATCCATCCCTATTACCTGATAGCTCTCGCGCCTCCGACTGCGATGCTTATCGGTGCTACCTGGGGATTGCTCCAGCCAGCCCAGAGGTGGGTCCCATACCGGCTGGTTGTGGCCCTGGCAGTCCTCATATCCGGAATCATTGCTTTTGGCTATTTAACAAATGCGTCCGATTCTGGTCCGATTTTCGCTATTGCTGTTCTCGCCTTCTGCCTCGTGGCATGCGAATTGGTTGTATTTCGGATCCGGAAACGAACGGCCAGACGCATCACTGTTGTCTCCCTTGCGGCAACCTGCGGCCTAGGACCCTTGTTGTTTTCGGCCTCGGCCATAGTCAGCCCGCACACAGGAGTCTCGCCGGCTGCATCCATATTGGGAAGCCATGCCATCCTTGATTCGCCGGATCCATCCCTCTGGCCGGAGGGCAACAGCCAAAGCATCAGGGGATCAGCCCTCGGCCACCCCGCAGACGCTGATGTCCTAGCCTTCCTCCGCAACGGAAATGATCCAGCATCGCGCTGGGCTGCGGCATCTCCGGGCGCCCTGAACGCTGCCCAGTACCAGCTCAACCTGCAGTTGCCCGTAATACCAGTCGGAGGATTCAACGGCGGCACACCGTACCCCACCATTAGACAGTTCAGTGAGTATGTGGAATCGGGCCAAATCAGGTACTACGTTGTGCGGCACGATTCTCAGGACATCGAGGCCGAGGCCGAGTTTGCCACCGAACTGACCGAGTGGGTCCGGGCAAACTTCGTCGCCCAGCAAATGGGTCAGATGGAGGTCTTCGACCTGAGCAGGCGGCTGCCAACCTCCTGAMKRGDAIGVAALGGAAAVMYLWGLNANGWGNGYYAAAAQAGAEDWKAFFFGSSDSGNSITVDKLPASMWVTALSVRLFGLSSWSLLVPQALLGIATVVLTYFTVRRHFRHSSAMIAGIVLLLTPAAAVMFRYNNPDALLTFLLTLAMYLMIRATDDGRWRWVLATGAVIGAAFLTKSAQALLLLPALGGVYLYAGPGRLQRRFLQLLAGVGTVALTAGWWLVIAEMTPPETRPYAGGSFSNSFVEVLLRQNGLGRILGAAGGGTPGQEAAPPGPLRLITYSSYGSQGAWLLPAAGILVIATLILLRRQPRTDPRRATLLLSGGWLLSYWAVFSFMGGVIHPYYLIALAPPTAMLIGATWGLLQPAQRWVPYRLVVALAVLISGIIAFGYLTNASDSGPIFAIAVLAFCLVACELVVFRIRKRTARRITVVSLAATCGLGPLLFSASAIVSPHTGVSPAASILGSHAILDSPDPSLWPEGNSQSIRGSALGHPADADVLAFLRNGNDPASRWAAASPGALNAAQYQLNLQLPVIPVGGFNGGTPYPTIRQFSEYVESGQIRYYVVRHDSQDIEAEAEFATELTEWVRANFVAQQMGQMEVFDLSRRLPTSNANANANANA
D1-29_03409507rpsICOG010330S ribosomal protein S9GTGGCTCAGAACGAAGAGACCACCGAGGCCGTTGAGGCTGAGGAAACCCTGACCAGCTACACGTCGGAAAGCGGAGCTGCCGAGGCAGCTGCGCCGAAGAAGGAGCGTCCGGCCCTGACAGTTGCCGGCGCAGCTGTTGGCCGCCGCAAGGAAGCCGTTGCCCGTGTCCGCGTTGTGCCGGGCTCCGGCAAGTGGACCATCAACGGCCGTGCGCTGGACAACTACTTCCCGAACAAGCTGCACCAGCAGGACGTCAACGAGCCCTTCAAGATCCTCGATCTTGACGGCGCCTACGACGTCATCGCCCGTATTCACGGTGGCGGGATCTCCGGCCAGGCCGGTGCCCTGCGCCTCGGCATTGCCCGTTCATTGAACGAGATCGACGTCGAGAACAACCGCGCCATCCTGAAGAAGGCCGGATACCTCTCCCGCGACGCCCGCGTCATCGAGCGTAAGAAGGCCGGTCTCAAGAAGGCCCGCAAGGCTCAGCAGTACTCCAAGCGCTAAMAQNEETTEAVEAEETLTSYTSESGAAEAAAPKKERPALTVAGAAVGRRKEAVARVRVVPGSGKWTINGRALDNYFPNKLHQQDVNEPFKILDLDGAYDVIARIHGGGISGQAGALRLGIARSLNEIDVENNRAILKKAGYLSRDARVIERKKAGLKKARKAQQYSKRNANANANANA
D1-29_03410444rplMCOG010250S ribosomal protein L13GTGCGTACGTACACCCCGAAGCCCGGCGATATCAACCGCCAGTGGCACGTCATTGACGCCACAGACGTTGTCCTTGGTCGTCTCGCGAGCCAGACCGCAATCCTGCTGCGCGGCAAGCACAAGGCCACCTTTGCATCCCACATGGACATGGGCGATTTCGTCATCATCATCAATGCTGAAAAGGTTGCCCTGACCGGCGCCAAGCTGGAGCAGAAGCGGGCATACCGCCACTCCGGTTATCCGGGAGGCCTGACCTCCGTCAACTATGCGGAACTGCTGGAATCAAACCCGGTCCGCGCCGTTGAGAAGGCCATCAAGGGCATGCTCCCCAAGAACTCCCTCGCTGCACAGCAACTGGGCAAGCTGAAGGTGTACCGCGGTGCTGAGCACCCGCACGCCGCACAGCAGCCCAAGACTTTCGAAATCACCCAGGTCGCCCAGTAGMRTYTPKPGDINRQWHVIDATDVVLGRLASQTAILLRGKHKATFASHMDMGDFVIIINAEKVALTGAKLEQKRAYRHSGYPGGLTSVNYAELLESNPVRAVEKAIKGMLPKNSLAAQQLGKLKVYRGAEHPHAAQQPKTFEITQVAQNANANANANA
D1-29_03411666hypothetical proteinGTGATTTCTTTGGCCAATGCCAGTCCCACAGATCCCTTGCTTGTGGCTGGGTTCGCGCTCCTGGGACTCATTCTTTCACCCTTGACCGAGCTGCTGATCGCCCAACTGCTCCCCCGCCTCGGCGACCTGCCCGCCACCCGCACCAGAATCACGACGGCGGCTGTTACCGCCCTTGCCTGCGCCGCCTTTGCGCTGAGGTTTGGGGAAGAACCCATACTGCCAGCCTTTGTCCTTCTTGCCGTATTGGGCGTACAGCTGGCCAGAATTGATATTTCGCTGCATCTGCTGCCGAATCCGCTGGTTCTATTCCTGCTAGTGGGCGGGATGTCGCTATTCCTGGTCTCCCTTTTTGCCGAAATACAGTGGACCGGCATCCTCAGAGCAGCGGCCGGCGCCGTAATTTTGTTCGCGATTTACCTGATTCTGGCGATTATTTCCCCCGGCGGCGTCGGAATGGGTGACGTCAAGCTCGCAGGACCGATTGGCCTCTACTTAGGGTACCTAGGCTGGAGCCAACTGCTGTATGGAGGCCTCTTGGGCTTTGTCCTGAACGGTTTTGTCACCCTGGTGGTAATGCGAAGGAACCGCACCGAACGTGCGTCGGAGGTGGCACACGGCCCCTCCATGCTTGCTGCGGCGGTTGGTGCCGCACTTTTTATGCAGTAGMISLANASPTDPLLVAGFALLGLILSPLTELLIAQLLPRLGDLPATRTRITTAAVTALACAAFALRFGEEPILPAFVLLAVLGVQLARIDISLHLLPNPLVLFLLVGGMSLFLVSLFAEIQWTGILRAAAGAVILFAIYLILAIISPGGVGMGDVKLAGPIGLYLGYLGWSQLLYGGLLGFVLNGFVTLVVMRRNRTERASEVAHGPSMLAAAVGAALFMQPGPT0015925_2438DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
D1-29_03412192hypothetical proteinATGACTTCTCTTATGGTCTCTATGATCGCATTCGTTGCCGGCGTAAAGGATCGTTTCGCTTCGGAGAAAGGCGCGACTGCGGTCGAGTATGGCCTCCTCGTGGCCCTGATCGCCGCCGTTATTGTCGCCATCGTCGCTACTCTGGGCGGCCAGATCAACACGGCGTTCACCACCATTTCCAACAAGCTCTAAMTSLMVSMIAFVAGVKDRFASEKGATAVEYGLLVALIAAVIVAIVATLGGQINTAFTTISNKLPGPT0015910_722DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
D1-29_03413192hypothetical proteinATGAATTTGGTACTGCTTTCAATTCTGGGGTTTATTACGAAAGCCAAGGCTCAACTGGGTTCAGAAAAGGGGGCTACGGCAGTTGAATACGGCCTCCTCGTTGCTCTGATCGCGGCGGTAATCATCACCATCGTCGCTACCCTCGGAGGCCAGGTCAACACGGCCTTCACCACGGTGTCCAACGCACTGTAGMNLVLLSILGFITKAKAQLGSEKGATAVEYGLLVALIAAVIITIVATLGGQVNTAFTTVSNALPGPT0015910_723DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
D1-29_03414498hypothetical proteinATGCGACTAAAACTTGCCCGGATTCACTCCGGGCTTCCTAGAATCCGGTCAAATCTTATGAAGACATGTGTTAACTCAAGGCGGCGTAGAGGCGCACGGGAGAGAGGCGCGGTCGCCGTTGAGTTTGCCCTCGTGCTCCCAATCTTCTTGGGACTGGTCTTGGGCATCGCCGAGTTCGGCAGGTCATTCAACATCCAGGTTTCGCTCAGCGAAGCCGGCCGTGAAGCAGCGCGTTATGCAGCCATTCACTGTGCGGAAACCGGATACACCGACTCGCATGCGCAAGATGCCGGAGTAGCCGCGGCCCCGTCCGTCTCCTTGAGCGCATCTGACATCGGCATCAGCTATTCAGGTACGGGAACATGTTCGGCAGGCAACAATGCCGTAGTCACGGTGAGCTACACGACTCCATGGCTGACAGGTTTCCCTCAGCTAATTCCAGGCATGCCTGCCAATCTCACAATTCAAGGAAAAGGTGTCATGCGATGCGGCGGATGAMRLKLARIHSGLPRIRSNLMKTCVNSRRRRGARERGAVAVEFALVLPIFLGLVLGIAEFGRSFNIQVSLSEAGREAARYAAIHCAETGYTDSHAQDAGVAAAPSVSLSASDIGISYSGTGTCSAGNNAVVTVSYTTPWLTGFPQLIPGMPANLTIQGKGVMRCGGNANANANANA
D1-29_034151032hypothetical proteinATGCGGCGGATGAAGGTCCAGGGTTCTGAACGCGGGGTCGTGGCCCCATTGACTGCCCTCATCATGGTTTTCCTCTTAGGCATGGCTGCCTTCGCCGTGGACGTGGCGACGATGTATTCCGAACACGCGCAGCTACAAAACGGGGCCGACTCTTCGGCTCTGGCCATAGCGCAGGCGTGCGCGGCGACTCCAGCCGGGCCTGCTTGTGCAGCTCCCGTAGCTGCCGCGGCCGGCCTGGCCAACGACAATGCGCTGGACGCCCACAGCAACGTTGTCAGCGCAACCGTAGGCTCGGGGGTCGTCAATGTAACTACCCAGGCACAGGACACCTCCGGCAACAACCATTTCTCTTTGGCTTTCGCGCGGGCCCTGGGGATTGAAACATCAGACATCAAAGCGTCCGCGCAAGCGAAGTTCGGCGGGTATTCCTCGGCCAACGTCGTTCCTTTGGCCTTCTCCAAGTGCGAGTCGGATCCCTTCTTTACGAAGGACCTGCAGTTCTTTCCTTCTCATGGGGACAGCCTGGCTGACGACCCGGCCTACGAATGCGTCACATCATCGTCGTCGGGGCATGAAGTTCCTGGAGGCTTCGGATGGCTGGATTCACCAGGATCCTGCAGTGCGAAAGTCAGCATCACCGATCCTTGGGTTGGAACGGATACTGGACAAAATTATGATGCCGACTGCGCCACCAGAATGAATGAATGGGGTGCCATCCTGGCTGATCCTTCTAAGACAGTGGAAATCCTCGTTCCCATTTTCGACGACCGTCGCGGAACAGGCAGTAATGCCGAGTTTCATATCGAGGCTTTCGCCCAAATCTCGCTGCGTGGCTGGAATCTTGCAGGCGGGACAAAGCTGCCTGAAGATTTCATGACACCTGAGGCCACCACTCTTTCCAAGTCATTGAAGCTCAAAAATAGCGATAACGGTATCTTCGGTCGCTTCATCAAGAAGGTTTCGCTGGCGGAGGCAGCCACACTCGGTGGACCAACCACCTACGGCGCCACGGGCGCGCAGCTAAGCCAGTAAMRRMKVQGSERGVVAPLTALIMVFLLGMAAFAVDVATMYSEHAQLQNGADSSALAIAQACAATPAGPACAAPVAAAAGLANDNALDAHSNVVSATVGSGVVNVTTQAQDTSGNNHFSLAFARALGIETSDIKASAQAKFGGYSSANVVPLAFSKCESDPFFTKDLQFFPSHGDSLADDPAYECVTSSSSGHEVPGGFGWLDSPGSCSAKVSITDPWVGTDTGQNYDADCATRMNEWGAILADPSKTVEILVPIFDDRRGTGSNAEFHIEAFAQISLRGWNLAGGTKLPEDFMTPEATTLSKSLKLKNSDNGIFGRFIKKVSLAEAATLGGPTTYGATGAQLSQNANANANANA
D1-29_03416750hypothetical proteinGTGAAAACTCGCCTTCTGGGAGGCATCGTAGCGCTTGTGCTCGCAGTAGTTGGCACATTGCTTCTGGTCTCATACGTTCAAGGTTCTGAAGCCAGAGCCCAAGAAGATCTTCAGCCCATTGATGTACTCGTTGTTGAAAAACAGGTTTCCGAAGGTGCAACGCTTGACCAGATCAGGGAATCCGTCAGGCTCGCTTCCCTTCCGGCTGCGTCAGTACCCAATGGCGCGCTCAAGAGCCTGGACGGTCTGGAGGGCAAGGTGGCTTCTGCAGACCTAGTGCCGGGAGAAGCTCTCCTGGGTGTCAGGCTCGTCGATCCGACCAGTTTGGCTGCACCAGGATCGGTTCCCGTCCCTGCAGGAATGCAGGAAATCTCAGTACAGCTGGAAGCGCAGCGCGTTGTTGGAGGTCGAATCGCCGCCGGGGACACCGTGGGAATCGTTGCCCTCTTCGAGGACGGAGCGAACGCGGGTGGAGGAGAGTCTGCGCAGCAGATTTTTCACAAGGTCCTGGTCACCAGCGTTCAGCGGTCCACTGCTCAGACCTCTACAAACGGTCAGACGGACCCAGCCGAACAGGCAAACACGCAGTTGCCTACAGGTCAACTCCTGGTGACCTTTGCAAGGGGTGACACAGATGCAACAAAAATCGCATTCGCAGCAACATTTGGACAGCTGTGGCTGACAAAAGAACCAGATTCAGCAACCGAAAGCGCCCCGTTGACCGTGAAGAAGATGGAGCTGTTCCGATGAMKTRLLGGIVALVLAVVGTLLLVSYVQGSEARAQEDLQPIDVLVVEKQVSEGATLDQIRESVRLASLPAASVPNGALKSLDGLEGKVASADLVPGEALLGVRLVDPTSLAAPGSVPVPAGMQEISVQLEAQRVVGGRIAAGDTVGIVALFEDGANAGGGESAQQIFHKVLVTSVQRSTAQTSTNGQTDPAEQANTQLPTGQLLVTFARGDTDATKIAFAATFGQLWLTKEPDSATESAPLTVKKMELFRPGPT0016005_1650DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
D1-29_034171194Iron-sulfur cluster carrier proteinATGAGCAGATTCGTGCTGATTACAGCTGACACCAACTTCTCTCATCGGGCGCAACAAGCCGTCGCCGGCCTGCACGGGACTTTGCAGACTCTGGCGGCCGACTACCTCCCCCCTAGCCCCGACGACATCCTGCGGGTGTTGAGCGGCGAACTGGCAGAGGTGATACTCCTGGGTCCCGGTCTGCCCACAGATGACTCAATCCGATTGGCGAGTTTGTTCGATCTCCAATACCCGGAAATCAGTGTCGTTCTAGTCACCGAGAGTGAATCTAACGTGGCCCTTGCTGCCATGCGGGCCGGCATCCGTGACCTTCTGAGCCCCCTGGCGACCTCCGAAGACATACGGAGCATGCTGGAACGAGCAAGCCTTGCGGCTGCCGGAAGGCGACGCGGGCTGGGAGCGTCGGTCGAGGACGGTGTTTCGGGAGGACGCATCATTGCCGTCATGTCACCAAAGGGGGGGGTGGGAAAGACGACTGTTACAACGAACTTGGCAGTCGGCCTCGGCAAAATTGCCCCAATGAGCGTCGTGGTGCTGGATCTGGATCTACAGTTTGGCGACGTAGCCTCCGGGTTGATGCTGGAGCCGGAGCGAACTTTGGCGGACGCGGTGACCGGGGCAGCTACCCAGGACACGATGGTTCTGAAGTCATACCTGACCCTCCATCCGTCCGGCGTGTACGCCTTGTGCGCTCCTCTCAACCCTGCCCACGCTGACAAAATCAGCGGTGAACAGGTGGGGCACCTCATCGGTCAGCTTGCCGCTGAATTCCAGTACGTCGTGGTCGATACTGCCCCAGGCTTAGGGGAGCATGTCTTGGCTACCTTGGATCAAGCGACAGACGCCGTCTGGATTTGTGGCATGGACATACCAAGTATTCGAGGCCTCAGGACGGGCTTCAGCATTCTTACCGAGCTTGATCTCCTTCCAGGAAATCGGCATGTAGTGCTCAACTTCGCTGACCGAAAGAGCGGTCTGACTTTGCAGGATGTAGAGGCAACCATTGGATGCCCCGTTGACATTGTCCTCCCGCGTTCCCGGGCAGTTCCGTTCTCGACAAATAAGGGTATGCCGCTCCTGCAGGAAGGCAGCCGGGATGCAGCCGCCCGAGGCATGGGGCAACTGGTGGATAGGTTCAAGCCCAACTGGGAACAACGGCCCCATAAGAAACTGCACAGAAGGGTAATAGTCTGAMSRFVLITADTNFSHRAQQAVAGLHGTLQTLAADYLPPSPDDILRVLSGELAEVILLGPGLPTDDSIRLASLFDLQYPEISVVLVTESESNVALAAMRAGIRDLLSPLATSEDIRSMLERASLAAAGRRRGLGASVEDGVSGGRIIAVMSPKGGVGKTTVTTNLAVGLGKIAPMSVVVLDLDLQFGDVASGLMLEPERTLADAVTGAATQDTMVLKSYLTLHPSGVYALCAPLNPAHADKISGEQVGHLIGQLAAEFQYVVVDTAPGLGEHVLATLDQATDAVWICGMDIPSIRGLRTGFSILTELDLLPGNRHVVLNFADRKSGLTLQDVEATIGCPVDIVLPRSRAVPFSTNKGMPLLQEGSRDAAARGMGQLVDRFKPNWEQRPHKKLHRRVIVPGPT0016020_1226DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016020-cpaE-K02282NANA
D1-29_034181443hypothetical proteinATGAGCCTGGCCAGAAGATTAGAGGTCGCTCGTGGCCTCGACGGCAACAAGGATGCTATTGCCGAGCCGGCGAGCGGACAGTGGAAGGCAACCCCCTCTCCAGCAGACCAAGGAGCGAACCCCTTCGAGTCTGTAAGCTACGTCAGCGAGCCGAACGAGGCCCTGAGCGCTGTCAAAGAACGTGCAGGGACAGCCCTCTATGAGCGTATGGGAAGCCGAATCACCGATTCCTCAATTGAAGAGTCGGAGCTCCAGCAATACGTAAAAGACGAATTGCGCAGCATCATTGAAGACGACGAAATCCCCCTCACAGTCGGCGAGCGCCAGCGGCTGGTCCAGGAGATTATTGACGATGTTCTGGGATTGGGTCCGCTTGAGAAGTTTCTGAGCGACGGCGAGATTACGGAGGTCATGGTCAACGGTCCGGACAAAGTCTATGTCGAGCGAAATGGAAAGCTCACCCTCACGGGCGCCCGATTTAACGGCGAGGAGCACTTGAGGAAAGTCATCGAACGGATTGTCACCAAGGTGGGAAGGCGTATCGACGAGTCTTCCCCTCTAGTGGATGCCAGGCTGGCCGACGGTTCCCGTGTCAACGCAATCATTCCGCCCCTCGCAGTCAGCGGTTCGTCTCTAACCATCCGCAAATTTGGGCAAGTGCCCCTAACCGTCCAGAACCTCATTTCATTGGGGTCCATGTCTCCGGAAATCGCGGAGCTGCTGCAGGCCTGCGTCAGGGCTCGATTGAATGTCATCGTTTCCGGAGGAACTGGCACCGGTAAGACAACCCTTCTTAACGTCTTGTCATCCTTTATTCCAGCAGCAGAGCGAATCGTCACCATCGAAGACGCCGTGGAACTCCAGCTCCAGCAGGAGCACGTCGTTAGGTTGGAAAGTCGGCCCAGGAACATTGAAGGCCGGGGGGAGATCACTATCCGTGATCTCGTTCGAAATTCCCTCCGAATGCGTCCTGACAGAATAGTGATCGGTGAGGTCCGGGGCGGGGAATCCTTGGACATGCTGCAGGCTATGAACACCGGACACGATGGTTCGATCTCCACCGTTCATGCCAACTCGCCCAGGGATGCCATCTCACGTCTGGAGACGTTGGTCCTAATGGCAGGAATGGACTTGCCTCTTCGTGCGATCCGGGAACAGATAGCGTCTGCCGTGAACTTGATCGTACACATTTCCAGGCTGCGTGATGGCAGCCGTCGAGTGACCCATGTCACTGAGGTTCAGGGCATGGAGGGTGACGTGGTCACTCTGCAAGACGCTTTCGTCTTTGACTACAGCGCGGGAGTCGACGCCCACGGAAGGTTCCTAGGACGGCCTGTGCCGACCGGAGTTCGTCCACGATTCGTCGACCACTTCGCCGACCTAGGAATTCCACTATCTCCCACCGTGTTTGGCAGCGTGTCTACAGGAGGTGCGTTCCGTTGAMSLARRLEVARGLDGNKDAIAEPASGQWKATPSPADQGANPFESVSYVSEPNEALSAVKERAGTALYERMGSRITDSSIEESELQQYVKDELRSIIEDDEIPLTVGERQRLVQEIIDDVLGLGPLEKFLSDGEITEVMVNGPDKVYVERNGKLTLTGARFNGEEHLRKVIERIVTKVGRRIDESSPLVDARLADGSRVNAIIPPLAVSGSSLTIRKFGQVPLTVQNLISLGSMSPEIAELLQACVRARLNVIVSGGTGTGKTTLLNVLSSFIPAAERIVTIEDAVELQLQQEHVVRLESRPRNIEGRGEITIRDLVRNSLRMRPDRIVIGEVRGGESLDMLQAMNTGHDGSISTVHANSPRDAISRLETLVLMAGMDLPLRAIREQIASAVNLIVHISRLRDGSRRVTHVTEVQGMEGDVVTLQDAFVFDYSAGVDAHGRFLGRPVPTGVRPRFVDHFADLGIPLSPTVFGSVSTGGAFRPGPT0016025_861DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
D1-29_03419696hypothetical proteinATGAGGCAGGCTGACTTCATCTTGCTCATTGCGTGCGTTTCTGTCACGGCCGGAGTAGTAGGTTTTATTTTGGCCGGAACCCTCACATGCGTACTCTTCATATGCGCAACCCCACTCGCTGGGAAGCTGTTTTTGGGCATTCTATCCGCTCGTCGTCGCAGCAAGTTCGACTCACAGCTGGGCGATACGCTCCAAATGCTCGCGGGAGGGTTGCGCGCCGGCCATAGCCTCCTGCGTTCGATAGATGCCGTTTCGCAGGAAGCCGAGGCACCAACATCCGAGGAGTTCGCCCGACTCATCAACGAGTCGCGGCTTGGTCGGGATTTGAGAGAATCGATGGCTGACGCCGCGAGGCGACTACGCAGCGAAGACTTCGACTGGATAAGCCAGGCGATTGAAATACATCGCGAAGTGGGAGGGGACCTCGCAGAAGTGCTGGATCACGTTGGTGAAACTATACGCGAGCGGGCGCAGATTAAGGGGCAGGTAAAGGCCCTAAGCGCCGAAGGCCGTCTTTCCGCCTACATTCTGGTCGCGCTCCCAGTTGGAATGTTTTTCTATATGAGCGTGGTTAACGCCGCCTATATTGCAACGCTTTATACCAACGTACTTGGTTGGTTCATGTTGGCTACGGCTGGAGTCTTGCTGGCCGTTGGCAGCTTCTGGCTAAGCCGCGTAGTGCAGATCAAGTTCTAGMRQADFILLIACVSVTAGVVGFILAGTLTCVLFICATPLAGKLFLGILSARRRSKFDSQLGDTLQMLAGGLRAGHSLLRSIDAVSQEAEAPTSEEFARLINESRLGRDLRESMADAARRLRSEDFDWISQAIEIHREVGGDLAEVLDHVGETIRERAQIKGQVKALSAEGRLSAYILVALPVGMFFYMSVVNAAYIATLYTNVLGWFMLATAGVLLAVGSFWLSRVVQIKFPGPT0022290_1179DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
D1-29_03420909hypothetical proteinATGACGACAATGGCATGGGTAATCGTGGGGCTGATCATAATCCCTTGTTCATTCCTGGTTTGGTCACTGGTTTCTGTGGACAGGAGGGGGTTTGCAGCCGTTCGCAGTAACCTCGGACGAGGACTTCGCTTGAGTGAAGGAATAGTTGTGGCTGGGGGATCTGCACCGTCGGTGGACTCCAAACCGTCTGTCCCTCTGGGGATGCGCATGACTCCGAAGGGTTATACCGGATGGCTCGACAAGCTACTCGCGCGTGCTGGAAGGCCTGCTCGGCTTCCTCTGGACCGCTTGCTAATCGCTAAGCCCGCCCTGGCATTGGTGGCGGCCGTTCTTGGCATCATTTCCATCATCAAGAATCCGACCGGGCCTGCCGTTCTTTCTGTAGTGTTCCTGGCCGCGCTTGCGTACTTCGCACCAGACATCCTGATTCATGGACGTGGAGCCAAGCGACAAAAAGAGATAGAACTCGAGCTTCCGAACACCCTCGATCAGATGCTGATCTCGGTGGAAGCTGGACTCGGTTTTGAAACTGCAATGGCCCGTGCCGCCCAGAACGGAAAAGGTGCTCTCGCTGCCGAACTCATGAGGACTTTACAGGATATGCAAGTCGGACGAAGTCGACGGGATGCTTATACCTCCATGGCGACGAGAACCGATGTACCTGATTTGCGAAGTTTCGTGCGGGCTGTTGTCCAGGCAGACATCTATGGAATTGCGATAGCAAATGTCCTCCGTATTCAAGCTAAGCAGATGCGTGTAAAGCGGCGTCAGCGTGCAGAGGAAAAGGCTATGAAGCTGCCGGTTAAAGTACTCTTCCCTCTCATGTTCTGCATCCTTCCTGTTCTATTCATCGTGATCATCGGACCGGCTGTCATCAACGTCATGAAAAATTTCGTAGGCGCCTTCTGAMTTMAWVIVGLIIIPCSFLVWSLVSVDRRGFAAVRSNLGRGLRLSEGIVVAGGSAPSVDSKPSVPLGMRMTPKGYTGWLDKLLARAGRPARLPLDRLLIAKPALALVAAVLGIISIIKNPTGPAVLSVVFLAALAYFAPDILIHGRGAKRQKEIELELPNTLDQMLISVEAGLGFETAMARAAQNGKGALAAELMRTLQDMQVGRSRRDAYTSMATRTDVPDLRSFVRAVVQADIYGIAIANVLRIQAKQMRVKRRQRAEEKAMKLPVKVLFPLMFCILPVLFIVIIGPAVINVMKNFVGAFPGPT0022295_1445DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
D1-29_03421192hypothetical proteinATGCTTTCACTTATCGCTACTCTTCAGACCCTCGGCTTCGCTCTCAAGGACCGTCTCCAGGGAGAAAAAGGCGCCACCGCTGTTGAATACGGCATCATGGTCGGCCTTATCGCGGTTGTCATCATCGTCGCTGTCAGCACCTTGGGCGGCAAGCTGAACGGCTTCTTCGCCAACATAAACACTGCGCTCTAGMLSLIATLQTLGFALKDRLQGEKGATAVEYGIMVGLIAVVIIVAVSTLGGKLNGFFANINTALPGPT0015910_766DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
D1-29_03422375hypothetical proteinATGCGTGAACAGTCAGAACGCGGCGCAGTCGCCGTTGAGTTCGCGATCTTGCTCCCCCTGCTTCTCATGCTGGTTTTGGGAACCATCGAATTCGGCCGGGCCTACAACGCCCAGATCACACTTACAAATGCCGCCCGGGAGGGGGTCAGGGTCATGGCTATCGCCAAGGACCAGGCCGGCGCCAGGACCGCTGCCAAGAATGCGGCAGCTGCGGTCAGCTCCGGCATCCCCGATTCCGATATCACCCTCAGCACCACCATCTGCAGCACCGGGGACCAGGTGACCCTCACCATCAATTACAACCTTTCAACCATCACCGGCATCGCTGGCCCCTTTGCAATGACAGGCAAAGGAGTCATGCTGTGCGGCGGCTGAMREQSERGAVAVEFAILLPLLLMLVLGTIEFGRAYNAQITLTNAAREGVRVMAIAKDQAGARTAAKNAAAAVSSGIPDSDITLSTTICSTGDQVTLTINYNLSTITGIAGPFAMTGKGVMLCGGNANANANANA
D1-29_034231044hypothetical proteinGTGCGGCGGCTGACAGCAACGCGTCAACCGCCCCAGGAACGCGGCAGCATCACCGTCATCGTGGCATTGCTGATGGTGGCCATGCTGGGTTTTGTGGCAATCGCCATCGACGTCGGCAAGATCTATTCGGAACGTTCCGAACTGCAAAACGGTGCCGACGCAGCCGCTGTTGCCACCGCCCAAAAATGCGCACGCGATGCCAGCGATGCATTGTGTTCAACGACGTCCACCCTCGCGGCCAGCCTCGCCAACCAAAATGCCCTCGACGGCTCCAGTAACGTCTTTTCCATTCAACTGGATAAGACAGCTCGAACGGTGATGGTCACCACGTCTGCCAAGGAGTCCGGCAGCCCCGACAATTCCGTTTCCCTCTTCTTTGCAGACATTCTGGGTATCCCCACCAAAGAAGTGGGTGCCCTCGCGTCCGCAACCTGGGGCAGCCCGCTCTCAGGACGCACGGCTTTTCCACTCGCCTTCTCCATCTGCCAGGTGAAGGACAACGTAGGCGGCGCTCTCCAACTCCTCCAGGAACATGGCAAGAATGCCAACTTGGACTGCAACTACGGCCCATCAGGCGCCGCTGTTCAGGGTGGTTTTGGTTGGCTAACCCAGGACCCGGGCGTTTGCGGGGGGACCATCGACCTCACAGTCAGTGAGGGCGGAAGCGATCCAGGCAACGACGCCCCCAGTAACTGCTCTACAGAACTAAACCGCTGGGCCAGCGAAATCGCTGCCGGCCGTGAAGCCGTTGTATTGCTGCCCGTCTTCAACAAAGTCACGGGCACTGGCTCGGGAGCCGTGTACAGCATGGTGTACTTTGCCGCGTTCAAGGTCACTGGCTGGAAGTTCAGCGGAGGCACCGGCCTCCCCTACGAATTCCGCAGCGCAGCGTCGACGGCCACCGGAGTTACCGCTGCGACAGAATGCACGGGAAACTGCCGCGGCGTCATCGGCAGCTTTGTCAAATACGTGTCCCTCGCGGACGGATACGCCCTCGGCCCGGTGGACGCTTCCGGCACCACCATCGTCCGAATGACCCCCTAAMRRLTATRQPPQERGSITVIVALLMVAMLGFVAIAIDVGKIYSERSELQNGADAAAVATAQKCARDASDALCSTTSTLAASLANQNALDGSSNVFSIQLDKTARTVMVTTSAKESGSPDNSVSLFFADILGIPTKEVGALASATWGSPLSGRTAFPLAFSICQVKDNVGGALQLLQEHGKNANLDCNYGPSGAAVQGGFGWLTQDPGVCGGTIDLTVSEGGSDPGNDAPSNCSTELNRWASEIAAGREAVVLLPVFNKVTGTGSGAVYSMVYFAAFKVTGWKFSGGTGLPYEFRSAASTATGVTAATECTGNCRGVIGSFVKYVSLADGYALGPVDASGTTIVRMTPNANANANANA
D1-29_03424759hypothetical proteinGTGAAGTCTCGCCTGCTGGCAGGAACGGCTGCGATTGCGTTGGCGATTGTTGGAGCTCTCCTCATCATCTTTTACGCTCAAGGAGCAGACCAGCGCGCCATGGCGAACATGGAGCCCGTGGACGTCCTGGTGGTCAAGACCGCGATCCCGGCAGGCACCACAGTTGATGCCATGGCCGCAGCCCTGGTCACTGAGAAGGTTCCGGCCTCGGGCGTGGCCGACACCGCGCTTAGCACCCTGGCCAACTCGGGAGGCACGGTCAGCGCTGTTGATCTTGTCCCCGGCGAACAGCTCCTGGCCGAACGCCTGGTGGCACCGGACGCCGTCAAGGCCACGGGCGCTGTAAAGGTGCCGGCAGGCCTGCAGGAAGTCTCCTTCCAGCTGGAACCGCAACGGGTAGTAGGCGGCCGGATTAACGTTGGCGACCATGTGGGCATCTCCCTCAACTTCGAGAACGGCGCCTACAAGGCCAAGGGAGAGGACGCCACCACCCAGCTCACTCTCCGCAAAGTCCTGGTCACGGCGGTGCAGCGCGCTCCCCTGGCGGCGAGCGCAGAGAAGCCTGCCGAGGACGGAACAAACTCCCAGGACACCACCCTCCCTGAAGGTTCCCTTATGCTTACCGTCGCCGTCACGGACACCGACGCCGGCAAGATCATCTTCACGTCAATCAACGGCAGCCTCTGGCTCACCAAGGAACCCCTCGACGCCCAGGACAACGGTCCCCGGGTTGAGCGGAAGGAAGTGGTCTACAAATGAMKSRLLAGTAAIALAIVGALLIIFYAQGADQRAMANMEPVDVLVVKTAIPAGTTVDAMAAALVTEKVPASGVADTALSTLANSGGTVSAVDLVPGEQLLAERLVAPDAVKATGAVKVPAGLQEVSFQLEPQRVVGGRINVGDHVGISLNFENGAYKAKGEDATTQLTLRKVLVTAVQRAPLAASAEKPAEDGTNSQDTTLPEGSLMLTVAVTDTDAGKIIFTSINGSLWLTKEPLDAQDNGPRVERKEVVYKPGPT0016005_1597DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
D1-29_034251197Iron-sulfur cluster carrier proteinATGAGCCGCTTCGTCCTCCTCTCCCCCAACGTCGAGTTCGATCAGAGACTGCGTGCAGCCGTGGCGAACGGGCTCAGGGGCACGGTCCAGACCATCGCTTCGGACATCCTTCCCGCCGGACCCCAGCAGCTGTTTGCGCTCCTTAACCAGGAGCAGCCGGAGGTACTCATCATCGGACCGGATGTTCCTATTGAAGAGGCGCTGCGCTTTGCCAAAGTCTTCGATGTCCAGCTCCCGGGACTCAGCCTGGTTCTGGTCAGCGACGCCGACCCCTCTGCCCTCCTGCTGGCCATGCGGGCCGGGATCAGGGACATCCTCAGCCCCAACGCCGATCCCGCGGAGATCCGGGTGCTGCTGGAACACGCCTGCCAGTCCTTTGCGACGCGTCACCGCAGCCACGAGTCAGCCCCGGCAGAAAACGGCGGCAAGGGTCTGGTGATTGGTGTCTTTTCCCCCAAAGGAGGTGTTGGGAAGACCACCCTGGCCACCAACATCGCCATCGGCCTGGGCCAGATCGCACCCATGAGTGTGGTCATCGTGGATCTTGACCTGCAGTTTGGCGACGTTGCCTCGGGTCTGTACCTCAACCCCGAGCACACCGTCACTGACGCCGTTTCCTCAGCCGCACACCAGGATTCATTGGTCCTTAAGGCGTTCCTCACGGTGCACCCCGCAGGAATCTACGCCCTCTGCGCACCGCCAACTCCCGTGGAAGCGGACCACATCACTCCTGATCAGGTCACCCGCCTGCTTGAGCAGCTGTCCAAGGAATTCCAGTACGTTGTGGTGGATACCGCGCCGGGCCTGCCCGAAATAGGCCTCGCTGCCATGGAGCAGTGCACCGACGTCGTATGGGTCAGCGCCATGGACATACCAAGCCTAAGGGGCCTGCGGTCAGGCCTGGAAGTACTCCGCCAGCTTGAGATCATGCCGGAATCACGGCACGTGGTTCTCAATATGGCAGACGCCAAGGCCGGCCTCAACGTTCAGGACGTCGAGTCCACCATTGGGGCACCGGTTGACGTCAGCATTCCCCGCTCCAAGGCGGTAGCCCTTTCCACCAACCGGGGGATACCTGTCCTTCAGGAGTCGAAAAGGGACCCGGCTGTGAAAAGCCTCAAACAGCTTGTTGAACGCTTCAACCCCGTCTGGCGCACGCAAGCCCAGCGCAAAGTTCACCGAAGGGTGGTCATCTGAMSRFVLLSPNVEFDQRLRAAVANGLRGTVQTIASDILPAGPQQLFALLNQEQPEVLIIGPDVPIEEALRFAKVFDVQLPGLSLVLVSDADPSALLLAMRAGIRDILSPNADPAEIRVLLEHACQSFATRHRSHESAPAENGGKGLVIGVFSPKGGVGKTTLATNIAIGLGQIAPMSVVIVDLDLQFGDVASGLYLNPEHTVTDAVSSAAHQDSLVLKAFLTVHPAGIYALCAPPTPVEADHITPDQVTRLLEQLSKEFQYVVVDTAPGLPEIGLAAMEQCTDVVWVSAMDIPSLRGLRSGLEVLRQLEIMPESRHVVLNMADAKAGLNVQDVESTIGAPVDVSIPRSKAVALSTNRGIPVLQESKRDPAVKSLKQLVERFNPVWRTQAQRKVHRRVVIPGPT0016020_1162DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016020-cpaE-K02282NANA
D1-29_034261491hypothetical proteinATGAAACTCTCCGAGCGGATTACAGCCGTCCAGGACAGGCACCAAGCCGCGGGGCATTCAGTGGCGGTATTGGAACAGCCCCGTCCGGTGGCTCACCATGCTCCGGTCCGGGAGGAAACCGCAGGCCCGCAACAGCCTGCCGCACGGGCGCCCAAAGTATCGTCGCCTGACGTTCCCGCCCCTGCAGCCGCGAAAGCACAGCCGGTGGACGTCTTTGCCGCGATGAAACTGCGGGCAGCCACAGCCCTCTTTGAAAGGATGGGCACCCGCTTCAACGACGCATCGGTAACTGAGCAGGAACTGCGCGCCACGGCCAAAGAAGAGCTCACCCGGATCATCGACGCCGAACAGGTTCCACTTTCGTCCGAGGAACGGACCCGCCTGGTCCGTGACGTCGCTGATGACGTGTTGGGCTACGGCCCCCTCCAGCGGCTGCTGGACGACCCAGCCGTCACCGAAATTATGGTCAACCGTATGGACCAGATCTACGTCGAACGCAAAGGAAAGCTGACACTCACCGAATCCCGTTTCAGTTCAGAGGAACACCTGCGGAAGGTCATTGAACGGATCGTCTCCAAGGTAGGACGCCGGATTGACGAGTCTTCGCCCCTGGTGGACGCCCGCCTGGAAGACGGTTCCCGCGTCAATGCGGTCATCCCGCCCCTTGCCGTAGGCGGGTCCTCCCTGACAATCAGGAAATTCAGCAAGGTCCCGCTGACTGTCCGCAACCTGATCGACTACGGAACCCTGACACCCGAGATGGCTGAGCTGCTGGACGCCTGCGTAAAAGCCAAGCTCAATATCATCGTCTCCGGCGGCACGGGCACCGGCAAAACCACCCTCCTCAACGTCCTCTCCTCCTTTCTTCCGGGAGACGAAAGAATCGTGACGATTGAAGACGCCGTGGAACTGCAGATCCAGCAGCAGCACGTTGTCCGTCTCGAAAGCCGGCCTCCCAATACAGAGGGCAAGGGCGAAGTGACCATCCGTGAACTCCTGCGGAACTCGCTGCGCATGCGGCCGGACCGGATCGTTGTAGGTGAGGTCCGTGGCGGCGAATCATTGGACATGCTGCAGGCCATGAACACCGGCCACGACGGTTCGCTGTCAACGGTGCACTCCAACTCCCCGCGCGACGCGGTGGCGCGTCTGGAAACCTTGGTCCTGATGGCCGGTATGGACCTGCCCCTGCGGGCAATCCGCGAGCAGATTGCCTCCGCCGTAAACCTCATCGTCCAAATCTCCCGCCTGCGTGATGGCTCCCGCCGGATCACCCATGTCACTGAGGTGCAGGGCATGGAGGGTGACATTGTCACCCTCCAGGATGCCTTCGTCTTCGATTACTCAGCCGGAGTGGATGCGCATGGCCGTTTCCTCGGCAAGCCCGTGGCCACCGGCATCAGGCCGAGGTTTATTGACAGGTTCGAGGACCTGGGCATTCACGTCTCGCCGGCGGTCTTCGCCGGTACAGTCACTCCGATAACGAAATGAMKLSERITAVQDRHQAAGHSVAVLEQPRPVAHHAPVREETAGPQQPAARAPKVSSPDVPAPAAAKAQPVDVFAAMKLRAATALFERMGTRFNDASVTEQELRATAKEELTRIIDAEQVPLSSEERTRLVRDVADDVLGYGPLQRLLDDPAVTEIMVNRMDQIYVERKGKLTLTESRFSSEEHLRKVIERIVSKVGRRIDESSPLVDARLEDGSRVNAVIPPLAVGGSSLTIRKFSKVPLTVRNLIDYGTLTPEMAELLDACVKAKLNIIVSGGTGTGKTTLLNVLSSFLPGDERIVTIEDAVELQIQQQHVVRLESRPPNTEGKGEVTIRELLRNSLRMRPDRIVVGEVRGGESLDMLQAMNTGHDGSLSTVHSNSPRDAVARLETLVLMAGMDLPLRAIREQIASAVNLIVQISRLRDGSRRITHVTEVQGMEGDIVTLQDAFVFDYSAGVDAHGRFLGKPVATGIRPRFIDRFEDLGIHVSPAVFAGTVTPITKPGPT0016025_592DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
D1-29_03427933hypothetical proteinATGATGCTTACCGTTGGGGCAGCCATCCTCCTGGTTGCAGTCAGTCTCCTGGGCATCGCGATCGCCGTGCCCAGCGCGCCGGAAGTTCCGCTGGACCGCCGGCGGCCTTTTGAAGCCAATCCGCCCACCAGCCTGGCCCGCCTGGCGGCCTCGGCAGTGCGTTCCTTTGAACGGGTCCTTGCCGGCAAGAGCATCAGCTGGTTCTCCCGCAGTGAACTCGAAAATGCAGGCCTTCGCCTGAGCCAGGCGGAGTTCTTCATCCTGGTCGCAGTAGGATCCTGCGTGGGGATCCTGATTGGGCTTGTAGCCCTCGGTCCACTCGTTGGCCTGCTCCTCGCGCTTCTGGCGCCGTTTGTTGGACGGATGGTGGTGGGCTATTTGGCCGGGAAGCGCCGTTCGAAGTTTGATGGCCAGCTGGGCGACACGCTGCAGCTCCTGTCGGGAGGTTTGCGGGCCGGCCATAGCATCCTTCGGGCCATCGACGCCGCAGCCAGCGAATCCCAGAAACCCACCTCAGAGGAGATGCGGCGCGTGATCACTGAAACGAGCCTTGGGCGCGATCTCCTGGCAGCCCTCAATGACACGGCCGTTCGAATGAAAAACGAGGACTTCGTCTGGATATCCCAGGCCATTCAGATCAACCGCGAGGTGGGCGGCAACCTTGCCGACGTCCTTGACCAGGTCAATGAAACCATCAGGGAACGCAGTGAGATCAAAGGCCACATCAAGGGACTGGCGGCCGAGGGCAAGTTCTCCGCATACATCCTCATCGCCATGCCCTTTGGCATCGTGGGCATGTTGCTGACCGTAAATCCCGGATACATGAACTCGATGTTCACCCATCCCCTGGGCTGGGCCATGATCGGGGCATCATTCGTCCTGATGGCCATCGGCGCATTGTGGATGCGCAAGATTATCGACCTGAAGTTCTGAMMLTVGAAILLVAVSLLGIAIAVPSAPEVPLDRRRPFEANPPTSLARLAASAVRSFERVLAGKSISWFSRSELENAGLRLSQAEFFILVAVGSCVGILIGLVALGPLVGLLLALLAPFVGRMVVGYLAGKRRSKFDGQLGDTLQLLSGGLRAGHSILRAIDAAASESQKPTSEEMRRVITETSLGRDLLAALNDTAVRMKNEDFVWISQAIQINREVGGNLADVLDQVNETIRERSEIKGHIKGLAAEGKFSAYILIAMPFGIVGMLLTVNPGYMNSMFTHPLGWAMIGASFVLMAIGALWMRKIIDLKFPGPT0022290_1345DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
D1-29_03428885hypothetical proteinATGAGCCCCCTTATTCTTCTCGCAGTCCTGATGGTTTGCGTCCCCTTGGCGGGGATTACCTGGTCCGTGCTGACCACTGACAAGCAGGGACGCACCGCCGCCGTCGAAATCCTTGGCCGCGGCACAGTCCTGGCAGACAACGTTGCCCCAGTACGTCGCAGCGCGCTGGAAACCATCGGCCGCCGCCTGACACCGGCAGGATACGTCGCTTTCCTCGACCGCCTGCTTGCGTTGGCAGGCCGGCCGGAAACGATGCCGCTGGGACGCACGTTGGGATCAAAACTGGCCCTTGGCGCCGCCGGCATAACTCTCGGAGTTTATCTCACCTCCGTTGGAACCACTCCCGTGATGAAATTGGCCGGGCTTTTCCTTGTCTTTCTGGGTTATTTCATTCCGGATTTGCTGCTCTATAGCAAAGGGAAGGAACGTCAAAAAGTCATCCAGTTGGAATTGGCTAATACCTTGGATCAAATGCTGATTTCCGTAGAGGCAGGACTGGGATTTGAGGGGGCCATGGCCCGTGCCGGTGCCAACGGCAAAGGCCCGTTGGCCGAGGAGTTGGTCCGCACGCTGCAGGACATGCAGGTGGGGCGCAGCCGCCGGGAGTCCTATTTGGCACTGGCAGAACGCACAAACCTGGCCGAACTGAAGAGCTTTGTCCAGGCCGTGGTCCAAGCGGATACCTATGGCATCGCTATTAGCCGGGTGCTCCGCGTGCAGGCGAAAGCTATGCGTGTAAAGCGACGCCAACGGGCCGAGGAAAAAGCCATGAAGCTTCCCGTGATGATTTTGTTTCCCCTTTTGTTCTTCATATTTCCCGTGCTTTTTATTGCAATTCTTGGCCCCGCCGTTGTAAACACCGTTGTCACGTTCAGTGGCCAGTGAMSPLILLAVLMVCVPLAGITWSVLTTDKQGRTAAVEILGRGTVLADNVAPVRRSALETIGRRLTPAGYVAFLDRLLALAGRPETMPLGRTLGSKLALGAAGITLGVYLTSVGTTPVMKLAGLFLVFLGYFIPDLLLYSKGKERQKVIQLELANTLDQMLISVEAGLGFEGAMARAGANGKGPLAEELVRTLQDMQVGRSRRESYLALAERTNLAELKSFVQAVVQADTYGIAISRVLRVQAKAMRVKRRQRAEEKAMKLPVMILFPLLFFIFPVLFIAILGPAVVNTVVTFSGQPGPT0022295_1791DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
D1-29_03429462hypothetical proteinATGCACATTCCAGATCCCACTTCCGGCCACAGAGGCGTCTCATCCGACGCCCTGCCGGCAGGGTCTGGAGCTGGCGTGGGTTCACGGCAGCCATTTGAAGGAGAAGAGCTCTTGCCCCTGGTTGATTCCGCTGTCCTCGAAGACCTGGAAGAACAGCTCAATGGTTCAGAACTGGCAGTCCGCTTCGCACGGGACTACACCACCATGTGGGACCACCGGTACAGCCGTCTGGCAGCCGCAGTGCTCAGCGAGGACCGTGCATCTGCCCTCGACGCGGCTATCAGCCTGAAGATAACGTCGGCCATGGTGGGCGGCCTCCGGCTCGCACGGCTGGCAGAACTCCTGGAAAAAGTGATCCGTCAGGGCGACTTTAGCCAAGGCCAGGCGCTCATGGAACAAGTCGCCGAGGACGGCGGCCAGACGGTCTCAGAGCTCCAGGCCAACTACATTCTGAAGAACTGAMHIPDPTSGHRGVSSDALPAGSGAGVGSRQPFEGEELLPLVDSAVLEDLEEQLNGSELAVRFARDYTTMWDHRYSRLAAAVLSEDRASALDAAISLKITSAMVGGLRLARLAELLEKVIRQGDFSQGQALMEQVAEDGGQTVSELQANYILKNNANANANANA
D1-29_03430798walR_2COG0745Transcriptional regulatory protein WalRATGGACGATCTTGGAGTAGCTGTAGTAATCGAAGATGACGTGGATATCCGCAACCTCCTTGAGGGAGTGCTGACTCAGGCAGGGTTTGAGGTACACACGGCCGCTGACGGACGCGAAGGTGTTGAAGTCGTGCGGCACAAGCAGGCCAGCGTGGTGACGTTGGACATCGGCCTGCCGGACATTGACGGGTTCGAGGTGCTCCGGCGAATCCGCTATTTCAGCGATGCCTACGTGGTGATGCTGACCGGCAGAACCGAAGAACCGGATCTGCTCTCGGCACTCAACGCCGGGGCAGATGACTACATCGCCAAGCCGTTCAGGCCGCGGGAACTACGCGCGCGGCTTGCGGCCATGATGCGAAGGCCGCGGCACGAGGTCAACGGGGGAAACACGCCGCGGACGGTGACGTCGGCACCGGCACCTTCAACTTCGGCCGCGGCACCCCCGGCAGAGACGGGAGTGTTGCATCACAACGGCCTGGCCCTGAACCACAGGACGAGGACCGTCACCATGCGGGGAGAACAGTTGGCGCTCACACGCAGCGAGTTTGACCTCCTGCACGAGCTGTTGCGTACCGGCGGCGCAGTGTGTACGAGGGCCGACCTGGTCCGTGCAGTGCGGGGGGAATTCTACGCGGATGACACTTACATCAGCGAAGCGGATGAGCGGGCGGTGGAGGTTCACATCGGCAACCTCCGGCGGAAACTCCAGGAGGATCCCCTGGCACCGCGTTGGCTGCAGACTGTGCGGGGTGTGGGGTACAGGCTGGCCCCAAAGCGCCCCGGTAATTCAACATAAMDDLGVAVVIEDDVDIRNLLEGVLTQAGFEVHTAADGREGVEVVRHKQASVVTLDIGLPDIDGFEVLRRIRYFSDAYVVMLTGRTEEPDLLSALNAGADDYIAKPFRPRELRARLAAMMRRPRHEVNGGNTPRTVTSAPAPSTSAAAPPAETGVLHHNGLALNHRTRTVTMRGEQLALTRSEFDLLHELLRTGGAVCTRADLVRAVRGEFYADDTYISEADERAVEVHIGNLRRKLQEDPLAPRWLQTVRGVGYRLAPKRPGNSTPGPT0012985_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-29_034311671sasA_8Adaptive-response sensory-kinase SasAATGGCTGAGAGGCTGGTTCAGCGTGGAATAGGCCGCTATTTCCGGACTTTGGGCCCGCGTACGCAGGTGGCATTGTGCCAGCTTCCGCTAACCCTGATCGTCTTGGCAATAGGGATCGCGACTCCCTTTGCCTGGCCCGCCCTGTTGAACAGTCCGCTTTATATTGTGGGAATGGTCCTGCACGGCCTACTGTTTGCCTGTTGTTTCCTCGTCCCTTGGGAGCGGCTGAACAGAAACGCATACCTGCTCATTCCGGTTCTTGATCTTCTTGCCATTGGACTTTCACGCAACGGTGCCGGACAGGTTGTTCCCGGGCTGGTTATCCTGACCATCTTCCCAATCATCTGGCTGTCCGCCTCGGGAATGCTCGCCAAAACAAGCATCCTTTTGAGTATTGTTGGGCCGTTCCTCATTATGCTGCCCACAGTAATGGCGAAGCTTCCACACGTTACGGCTTCGGATTTCACCTCGCTTCTGCTGTTCCCACTCATGATGCTTGCCGTCTCGCTGGCCATCCGCTTTGCCAGCGTCAATATGAGGATGCAACAGCGCCAGCTCCAGGAGAAGGATAAGGAGCTCCGGGACTTGCTTGCCGAGAGCAGGGAACGCGAAAGGCTCCTCAAGACAATTCTGGACGCTACCGACGTCGGGATTGTTGCGGTTAATTCAAACGGCGAGCACCTGCTGACGAACAACCAGCAGCGGGTCTTCGAGCAGAATGCCAGCAATTCAGACGTGCGCTCGTCGGACGAAAAAGATCAGCTGATCTTTGCGCAGGACAAACTGACTCCCCTGCCGGCCGAAAAGCGGCCTATTCGGCGAGCCATCCAAGGTGAGTCTTTTGCGGATTACCTTGTGTGGATTGGCAAGGGATCAAAACAGCGCGCTGTTTCCACAGCGGCGAGGTCGATGGTGAGCGATGGCGGTGAATTCACGGGAGCTGTGGTTGTCTACAACGACGTCACCGGACTCGTCGAGGCTTTGGCAGCAAATGAGGAACTTGTCTCTAATGTCTCCCACGAATTCAGGACACCGCTGAATTCCATCCTCGGGAATATCGATCTGGTTCTCGAGGATGAAGAGGGAACCTCCAAGCTGTCCGCCCAGCGCCTTGAAGTTGTCCAGCGCAACTCAGAGAGGCTGCTGGCCCTGGTATCGGACCTGACCCTGTCAGCTTCGTCCGCGCTCAGGGTTCATCCAAAGCGGACGGACCTCGCGAGCCTTGTGGCCACCAGCATCGGCTCAGCCATGGCGCAGGCTGACCAGTCGAACATCGCCTTCGTGGCTGACGTTCCCTCACCACTCTGGGCCTACGCTGATCCCCTGAGGATCGGACAGGCCCTGGACAACCTGGTGTCGAATGCCATCAAGTACTCCCCCGGGGGCGGCGTGGTGAGTATCAGCGCGCAAGGCGCCGGCGGGTGGGTTCGGCTCTCCGTTAAGGACACCGGTATGGGCATGACGTCGGAGGACTCCGAGCGGGTTTTCAAGCGGTTCTTCCGCACGGACTCAGCCCGGCAGGCCTCCATCGCCGGAGCCGGTCTGGGCCTGTCCATCACCAAAACAATCATTGAGCGCCACGGCGGAGACATTTCCTGTGAGAGCCGCCCTGGCGAAGGCACCACCTTCACCCTTACGCTGCCGGCAGACGGGCCCCCGCCGTCGTTCTAGMAERLVQRGIGRYFRTLGPRTQVALCQLPLTLIVLAIGIATPFAWPALLNSPLYIVGMVLHGLLFACCFLVPWERLNRNAYLLIPVLDLLAIGLSRNGAGQVVPGLVILTIFPIIWLSASGMLAKTSILLSIVGPFLIMLPTVMAKLPHVTASDFTSLLLFPLMMLAVSLAIRFASVNMRMQQRQLQEKDKELRDLLAESRERERLLKTILDATDVGIVAVNSNGEHLLTNNQQRVFEQNASNSDVRSSDEKDQLIFAQDKLTPLPAEKRPIRRAIQGESFADYLVWIGKGSKQRAVSTAARSMVSDGGEFTGAVVVYNDVTGLVEALAANEELVSNVSHEFRTPLNSILGNIDLVLEDEEGTSKLSAQRLEVVQRNSERLLALVSDLTLSASSALRVHPKRTDLASLVATSIGSAMAQADQSNIAFVADVPSPLWAYADPLRIGQALDNLVSNAIKYSPGGGVVSISAQGAGGWVRLSVKDTGMGMTSEDSERVFKRFFRTDSARQASIAGAGLGLSITKTIIERHGGDISCESRPGEGTTFTLTLPADGPPPSFPGPT0002705_934DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636NANA
D1-29_03432894truACOG0101tRNA pseudouridine synthase AATGAACGACCAAAAACCCGCGGCCCCCGTTTCAGGGGGCGGCGGGTTTTTGCGTGTCCGCCTTGATCTGTCCTACGACGGCGGCCCCTTCAGCGGGTGGGCACTCCAGCCCGGCATGCGCACCGTCCAGGGGGTCCTGGAGGAGGCACTGGCGTTGCTGGTGCGCCGCCCGGTCCGTGTCACTGTGGCCGGCCGTACCGACGCCGGAGTGCACGCCCGCGGCCAGGTGGTCCACCTCGACCTGACAGAAGCCGAGTGGCTGGGACTCAACAGGGGAGCGGAACTGGATCCCGCCGTCGCCCTCCTGCGGCGCCTCCGGGGCGCCCTCAGCAGGGGCCTGGGCGATCTGACCGGGGCCATCGAGGTCCACCGGGTGTCATTGGCGCCGGAAGGCTTTGACGCCCGGTTCTCCGCGCTGTGGCGGCGCTACAGCTACCGCATCGCGGACGGGCCGGCGCTGTGGGATCCGCTAGAGCGCTACTTCACGCTGTGGCACAAGAATCAGCTGGACGTGTCACTGCTGAACCAGGGAGCGTCCAAGCTGCTGGGGCTGCAGAACTTCCTGTCGTACTGCAAGCCACGGGAGGGAGCCACCACCATCCGTGAGCTCCAGCGCTTCGAGTTCCGTCGTGGCGAGGACGGCGTCATTGTTGCTACCGTCCAGGCGGATGCCTTCTGCCACAACATGGTCCGTGCCCTGGTCGGTTCCGCCCTCTACGTCGGCGAGGGCGTGGAGGAACCGGGTTGGCTCTACGAGAGGCTCCTGGCCAAGAAGCGTGATGCCAGGTCCATCCTGGCCGCGCCCCATCCGCTGGTACTCGAGGAAGTGGCCTACCCTTCCGACGACGAGATGCTCGCGAGGGCCGAACTCACGCGGGCAGTGCGCAGCACTTGAMNDQKPAAPVSGGGGFLRVRLDLSYDGGPFSGWALQPGMRTVQGVLEEALALLVRRPVRVTVAGRTDAGVHARGQVVHLDLTEAEWLGLNRGAELDPAVALLRRLRGALSRGLGDLTGAIEVHRVSLAPEGFDARFSALWRRYSYRIADGPALWDPLERYFTLWHKNQLDVSLLNQGASKLLGLQNFLSYCKPREGATTIRELQRFEFRRGEDGVIVATVQADAFCHNMVRALVGSALYVGEGVEEPGWLYERLLAKKRDARSILAAPHPLVLEEVAYPSDDEMLARAELTRAVRSTNANANANANA
D1-29_03433609hypothetical proteinATGCCTACCCCCACTAAGGGTCCGCGCCTCGGAGGCGGCCCGGCTCACGAGCGTCTTATGCTCGCGAACCTGGCAGCAGCACTGTTCGAGCACAAGCGGATCACCACCACGGTGACCAAGGCCAAGCGGCTCAAGCCGTACGCCGAGCGTCTTGTCACTTTCGCCAAGCGCGGCGACCTGGCTTCCCGCCGTCGCGTGCTCGGCCTGATCAGCAACAAGGGCGTCGTCCACGAGCTGTTCACCGACATTGCCTCGGCAGTGGAGAACCGCGACGGCGGCTACACCCGCATCACCAAGATCGGCAACCGGAAGGGCGACAACGCTCCCATGGCTGTCATCGAACTGGTTCTTGAGCCGGTTTCCGCGAAGCAGGCCGTTGTAGCCGAGGCTACCTCTGCTGCGAAGCGCGACGCCGACAAGAAGGAAGCTGCTGCTTCTGCTCCCGTTGCTGAAGAAGCTGCCGAGGAAGCTACTGAAGCTCCCGAGGCCGAGGCTGTTGAGACCGAAGCCACCGAAGAAGCTGCAACCGAAGAGGCCGTTTCTGAAGAAGCAGTGGCCGCTGAGGAAGCGCCTGAAGAGCCTGCCGCTGAGGAAAAGGACGCGAAGTAAMPTPTKGPRLGGGPAHERLMLANLAAALFEHKRITTTVTKAKRLKPYAERLVTFAKRGDLASRRRVLGLISNKGVVHELFTDIASAVENRDGGYTRITKIGNRKGDNAPMAVIELVLEPVSAKQAVVAEATSAAKRDADKKEAAASAPVAEEAAEEATEAPEAEAVETEATEEAATEEAVSEEAVAAEEAPEEPAAEEKDAKNANANANANA
D1-29_034341011rpoADNA-directed RNA polymerase subunit alphaGTGCTCATTGCACAGCGCCCCACCCTCTCCGAAGAGGTAGTCTCCGAAAACCGTTCGCGTTTCATCATTGAGCCGCTTGAACCGGGCTTCGGCTACACCCTCGGAAACTCCCTCCGCCGTACCCTGCTCTCCTCCATCCCCGGTGCCGCTGTAACCAGCATCCGGATCGATGGCGTGCTGCACGAGTTCACCACGGTTCCGGGTGTCAAGGAAGATGTCACTGAGATCATCCTGAACATCAAGAGCCTGTCGGTCTCCTCCGAGCACGACGAGCCGGTTGTTGCCTACCTGCGCAAGCAGGGCCCGGGAGTCGTCACGGCCGCGGACATCGCTCCGCCGGCCGGCGTCGAATTCCACAACCCGGATCTGCACATTGCCACGCTGAACTCGAAGGGCAAGTTCGAACTCGAACTGACCATCGAGCGCGGCCGCGGCTACGTTTCGGCAGCTCAGAACAAGTCCGGCGATTCCGAGATCGGCCGCATCCCGGTCGACTCGATCTACTCGCCGGTGCTGAAGGTTACTTTCCGCGTGGAAGCAACCCGTGTTGAGCAGCGCACCGACTTCGACAAGCTGATTGTCGACGTCGAGACCAAGCAGGCCATCGCCCCGCGCGATGCTGTTGCTTCCGCAGGTACCACCCTGGTGGAACTCTTCGGTCTGGCCCGCGAGCTGAACACCGCAGCTGAAGGTATCGAGATTGGCCCGTCGCCGACGGATGCTGCCCTGGCAGCAGACATGGCCCTGCCGATCGAGGATCTGGACCTCACCGTCCGTTCCTACAACTGCCTCAAGCGTGAGGGCATCCACACCGTGGGTGAACTCGTAGCCCGCTCCGAGGCTGACCTGATGGACATCCGTAACTTCGGTGCGAAGTCCATTGACGAGGTCAAGGCAAAGCTGGTTGAACTGGGCCTGTCCCTCAAGGACTCGCCTCCCGGTTTTGACCTCGCAGCACGCGCCGCAGCAATTGAAGAGGACGACGCCGCCTTCGGCGACGACGAACTCTAAMLIAQRPTLSEEVVSENRSRFIIEPLEPGFGYTLGNSLRRTLLSSIPGAAVTSIRIDGVLHEFTTVPGVKEDVTEIILNIKSLSVSSEHDEPVVAYLRKQGPGVVTAADIAPPAGVEFHNPDLHIATLNSKGKFELELTIERGRGYVSAAQNKSGDSEIGRIPVDSIYSPVLKVTFRVEATRVEQRTDFDKLIVDVETKQAIAPRDAVASAGTTLVELFGLARELNTAAEGIEIGPSPTDAALAADMALPIEDLDLTVRSYNCLKREGIHTVGELVARSEADLMDIRNFGAKSIDEVKAKLVELGLSLKDSPPGFDLAARAAAIEEDDAAFGDDELNANANANANA
D1-29_03435402rpsKCOG010030S ribosomal protein S11ATGCCCCCGAAGACTCGTGGCGCGGTTCGCAAGCCGCGTAAGAAGGACAAGAAGAATATCGCGCTTGGCCAGGCGCACATCAAGAGCACTTTTAACAACACCATCGTGTCCATCACGGACCCGAACGGCGCTGTTATCTCTTGGGCTTCCTCAGGTGAGGTTGGCTTCAAGGGCTCACGCAAGTCCACCCCGTTCGCTGCCCAGATGGCTGCCGAAGCCGCTGCCAAGCGTGCGCAGGAGCACGGCATGCGCAAGGTTGACGTTTTCGTCAAGGGACCGGGATCCGGACGCGAAACCGCAATCCGCTCGCTGCAGGCCGCTGGCCTGGAGGTTGGCTCCATCCAGGACGTCACCCCCGCAGCGCACAACGGCTGCCGTCCGCCGAAGCGCCGCCGCGTCTAAMPPKTRGAVRKPRKKDKKNIALGQAHIKSTFNNTIVSITDPNGAVISWASSGEVGFKGSRKSTPFAAQMAAEAAAKRAQEHGMRKVDVFVKGPGSGRETAIRSLQAAGLEVGSIQDVTPAAHNGCRPPKRRRVNANANANANA
D1-29_03436375rpsMCOG009930S ribosomal protein S13ATGGCTCGTCTCGCTGGCGTAGACATTCCCCGCGAAAAGCGGCTGGAAATTGCGCTTACTTACATCTACGGCGTGGGCAAGACCCGTGCACACGAAACCCTGGCTGCCACTGGCATCAGCGCTGACGTTCGCGTCAAGGACCTGACTGATACCCAGCTGGTTGAGCTGCGTGACTACATTGAAGGCAACTACAAGGTTGAGGGTGACCTTCGCCGCGAAGTAGCAGCAGATATCCGCCGCAAGGTTGAAATCGGCAGCTACGAAGGCCTGCGCCACCGCAAGGGCCTGCCCGTACGCGGACAGCGTACGAAGACCAACGCACGTACCCGCAAGGGTCCGAAGCGTACCGTCGCCGGCAAGAAGAAGGCCCGTTAAMARLAGVDIPREKRLEIALTYIYGVGKTRAHETLAATGISADVRVKDLTDTQLVELRDYIEGNYKVEGDLRREVAADIRRKVEIGSYEGLRHRKGLPVRGQRTKTNARTRKGPKRTVAGKKKARNANANANANA
D1-29_03437114rpmJ50S ribosomal protein L36ATGAAGGTCAAGCCGAGCGTCAAGCAGATCTGCGAAAAGTGCAAAGTGATCCGCCGTAATGGCCGGGTCATGGTGATCTGCGAGAACCCGCGCCACAAGCAGCGCCAGGGCTAAMKVKPSVKQICEKCKVIRRNGRVMVICENPRHKQRQGNANANANANA
D1-29_03438222infACOG0361Translation initiation factor IF-1ATGGCCAAGAAGGACGGGGTCATTGAGATCGAGGGCGTTGTGACTGAGGCGCTGCCTAACGCGATGTTTCGCGTTGAGCTCACCAACAAGCACATCGTTCTGGCACACATCTCAGGCAAGATGCGCCAGCACTACATCAGGATTCTCCCTGAGGACCGGGTAGTGGTGGAACTGAGCCCATATGACCTCACTCGGGGTCGTATCGTCTACCGCTACAAGTAAMAKKDGVIEIEGVVTEALPNAMFRVELTNKHIVLAHISGKMRQHYIRILPEDRVVVELSPYDLTRGRIVYRYKNANANANANA
D1-29_03439954COG3191putative aminopeptidaseATGAACGGCATGGGAGCCATTACTGACGTGCCCGGGATCCGTGTGGGCCACAATCAGAAGTCCGACGACGGCTGGTTGAGTGGCGTGACTGTGATCCTGCCGCCGCCGGGAACCACCGGCTCAGTGGACGTGGGCGGGGGAGGCCCCGCAACCCACGAGACGGACGCACTGGACCCGACCACGCTGACTTCTGCCGTAGATGCCGTGGTCCTGACGGGCGGCAGCGCCTACGGACTGGTGACGGCCCACGGCGTCCAGCGGTGGTGCGAAGAGCACGGCCGGGGATTCCCGGTCCCCGGCGGCGTGGTGCCGATCGTTCCGGCGGCCGCCATCTTTGACCTGGGCCGCGGCGGCGAGTTCTTAGCGCGTCCGACGGCGGAAATGGGCTATGCGGCAACTGCCGCCGCCGCCGCTGAAAAGGACGGGCACGACGTCGAACGCGGCAATGTTGGCGCCGGCACCGGAGCGCTGATGGCCCGGACCTACAAAGGGGGAGTAGGCACGGCATCGGTCACCCTCGAGAACGGCATTGTCCTGGGTGCCCTGGCTGTGGTGAACGCACTGGGCCTGCCGGTTGGGTCCCGCCCGGCAGCTGTTGCCGCGACTGCGGCGCCTGAACCGCCGGGGCCCAACACAACCCTCGTTGTTGTCGCCACCAACGCCGTCCTGGACAAGACCGAGTGCAAACGGACGGCTTCGGCTGCCCAGGCCGGGATCGCAAGGGCCCTTGACCCAAGCCACACCCTGGCGGACGGAGATACCGTTTTCTGCCTTGCCACCGGGGACTTGCCGCTGGACCGGGGTACGGAAGTTGCCCGGCAGGTAAGTCTGATTACCCTGCAAAGCACGGCGGCCGACGTCGTACGCCTGGCCATCCTGGATGGGGTCTCCAGTGCGGCAGCGGTGAGGACTCCTGCCGGTGAATATGATGCGTACGGGAGCACATTGCGCTAAMNGMGAITDVPGIRVGHNQKSDDGWLSGVTVILPPPGTTGSVDVGGGGPATHETDALDPTTLTSAVDAVVLTGGSAYGLVTAHGVQRWCEEHGRGFPVPGGVVPIVPAAAIFDLGRGGEFLARPTAEMGYAATAAAAAEKDGHDVERGNVGAGTGALMARTYKGGVGTASVTLENGIVLGALAVVNALGLPVGSRPAAVAATAAPEPPGPNTTLVVVATNAVLDKTECKRTASAAQAGIARALDPSHTLADGDTVFCLATGDLPLDRGTEVARQVSLITLQSTAADVVRLAILDGVSSAAAVRTPAGEYDAYGSTLRPGPT0010110_4DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-AMYCIN_DERIVATE_BIOSYNTHESIS,PGPT0010110-thnT|cmmT-K18572NANA
D1-29_034401230IS481 family transposase ISArsp2GTGGCGACATGGCCCGAAGACGCTCCCCGTGGTGCCGTGACGGCGTTCTGCCGGAAGCACAACGTCTCGAGGGCGTGGTTCTATCGAGTCCGTGCGGCGGCCGGTGCGGTGGGGCCGGTGCAAGCGTTGGTGAAGAAATCCACGGTTCCGGGGACCTCGCCCACTGCCACCGAGCCTGGCATGATCGATCTCCTGCTTGCCACTCGGACTGATCTGGAGAAACAAGGTCTGGATCACGGCCCTTTGTCGGTCCTGTCTACGCTGTCCAGGCAGGGCTATCGTCCCCCGTCGCGGGCGACCGTGGCCAGGATCTTTGCCCGGTCCGGGGTAGTGGTGCCGGAGCCGCGGAAGAAGCCGCGCAGCGCCTACAAGCGATTCGTCTATCCGCAGCCGAACGCGTGCTGGCAGATCGACTCGACCGAGTGGGTCCTCGCCGACCGGACGAAAGTGGCAGTTTTCCAGCTCATAGACGATCATTCCCGGCTTGCTCTGGCATCTCTCGTGGCCCCGGGCGAAACCAGTGCCGCTGCGATCGCGGTCGTGACGCTGGCCATCCAAAGACATGGCGTGCCGCAGAAGTTCCTCTCCGACAATGGCGCAGCGCTGAACCCGACCCGCCGCGGACGCACCGGTGCGCTGGTCGAATTCCTCAAAGCCAAAGGCGTGGAGCCGATCACCGGTAAGCCCTACAAACCCACCACCCAGGGCAAGAACGAACGCTTCCACCAGACCCTGCACAAATACCTCCACCGTCAGCCGCCGGCCGCATCAATGACTCTCCTGCAAGCCCAAGTCGACGCTTTCGATCTGTACTACAACACCCAACGCGAACATCAGGGCCTGGCACCGGGAATGACCCCAAGCGAGGCCTGGCACGCCACTCCAAAAGCCCCGGCACCGGTTCCGCCAGATCAACCAACACCGGAATCAGAGCGACGCAGCCTTCGCCGAACGGTCCGGAAGGACGGCTGCATTACCGTCCTGGGCACCCATTTCATGATGGGCAAGGAACACATCGGACAAACCGTCCACGTCATCTACGACGCCGCCACCATCATGTTCTTCGGACCCCAAGGCACCGAAATCATCAGCCACGTCAGGCCACCCAAAGGCACGCCCTACGTCGGCAACGGCAAGCCCTCCGGCGTCGCCGCAGACCCTGTAGGAGCCCGCAAAAAGCGAACCCATTACCCACGCCGACGTCAGCAGCCAAACGCCACGCAACCATGAMATWPEDAPRGAVTAFCRKHNVSRAWFYRVRAAAGAVGPVQALVKKSTVPGTSPTATEPGMIDLLLATRTDLEKQGLDHGPLSVLSTLSRQGYRPPSRATVARIFARSGVVVPEPRKKPRSAYKRFVYPQPNACWQIDSTEWVLADRTKVAVFQLIDDHSRLALASLVAPGETSAAAIAVVTLAIQRHGVPQKFLSDNGAALNPTRRGRTGALVEFLKAKGVEPITGKPYKPTTQGKNERFHQTLHKYLHRQPPAASMTLLQAQVDAFDLYYNTQREHQGLAPGMTPSEAWHATPKAPAPVPPDQPTPESERRSLRRTVRKDGCITVLGTHFMMGKEHIGQTVHVIYDAATIMFFGPQGTEIISHVRPPKGTPYVGNGKPSGVAADPVGARKKRTHYPRRRQQPNATQPNANANANANA
D1-29_03441828map_2COG0024Methionine aminopeptidase 1ATGGCATTCGGACAGCCCCGCATCGAATACAAGACCAACGCCCAGATGCGCACCATGCATGAGGCAGGCCTTGTCCTGACCCGCGCCTTGGATGCCGCCGTAGCCGCCGCCGTGCCGGGCGTCACCACCAAGCACCTGGACGACGTTTTCGCCGCCGTCCTGAATGAGGCCGGGGCGAAATCCAACTTCCTCGGCTACCACGGCTTCCCGGCCTCCATCTGCACCTCCGTCAATGAGGAGGTGGTGCACGGCATCCCGGGAAGCCGCACGCTCAATGATGGCGACATCATCTCGATCGACGGCGGCGCGATCGTGGACGGCTGGCACTCAGACTCGGCACGGACCGTCATTGTGGGCACCGCCGATCCCGAAGACCAGCGGCTCTCCGACGTGACACAGGCGGCCATGTGGCGGGGCATAGCGGCACTGGCAACGGGAAGCCATGTGGGGGATATCGGCGCGGCCATTGACGACTATGTGTCCTCTGTTCCCGGGAAGCCGCTGGGCATTTTGGAGGACTACGTCGGCCATGGCATCGGCTCCGAGATGCATATGGCGCCGGACGTGCTCAACTACCGCACCAGCCACCGCGGGCCCAAGATCCGGCCGGGGCTGTGCCTTGCGATCGAACCCATGCTGGTCCGTGGCGGCATCGAGACTGCAGTCCTGGAAGACGACTGGACCGTGGTGACCACAGACGGCAAGCGCTCCTGCCAGTGGGAGCACTCCGTGGCGGTCCACGAAAAGGGCATCTGGGTGCTCTCGGCCCCCGACGGCGGTGCCGAGCATCTGGTGCCCCTCGGCGTCGTGCCCGTTCCCGTCCCCTAAMAFGQPRIEYKTNAQMRTMHEAGLVLTRALDAAVAAAVPGVTTKHLDDVFAAVLNEAGAKSNFLGYHGFPASICTSVNEEVVHGIPGSRTLNDGDIISIDGGAIVDGWHSDSARTVIVGTADPEDQRLSDVTQAAMWRGIAALATGSHVGDIGAAIDDYVSSVPGKPLGILEDYVGHGIGSEMHMAPDVLNYRTSHRGPKIRPGLCLAIEPMLVRGGIETAVLEDDWTVVTTDGKRSCQWEHSVAVHEKGIWVLSAPDGGAEHLVPLGVVPVPVPPGPT0020010_3981DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-29_03442942oleDCOG04512-alkyl-3-oxoalkanoate reductaseATGAGGATCGCTGTCACCGGTGCCACGGGGTTTGTCGGTGCCGCGGTGGCGGCGGCCGCCGAACACCGCGGCTGGGAGGTTTACCGCTATGGCAGGCGGCAGCTCCCAGGAATTACCGTGTGGGATCTGGCCGAGGGGAAGCTTTCGAGCCCGCCGGAGGTGGACGCGGTGGTGCATGCCGGTGCCCAGGTTGGCGACTGGGGGCCGCCGCAATTGTTCCACCGTGTCAACGTCCTCGGCACCGAAGCCGTCGCGGCCACCTTCCCCCGCGCCAGGCTGGTCCACATCTCCAGCTCGAGCGTCAATCCCTGGTGGCAGCCGTGTGTGGACCGGCAGGAGGAAGCCCCGTCCGGGCGCTACCTGAATGCCTACTCCCGCTCCAAGGCCCTGGCGGAGGCAGCCGCGTCAAAGCACCCCAATGCAGTGATCCTCCGGCCGCACGGAGTGTACGGGCCTGGTGACAGGACCCTGCTGCCGCGCCTCATCCGCAATGTAAAGCGCGGCAGGCTGCTATGCGTTGGAGGCCCGGACGTGCGCCACCAGCTGACGTCAATCGGGAACCTGACCGAAGCAGCGCTCGCCGCGTGCGCCTCAGACGTAACCGGGCCCGTCAACGTGGCCGACCACCAGCCCGTGGAACTGGGCGGAGTCCTGCGGGAAGTCCTGGACGAAACTGGCCGCACCGACGTCGAACTCCGCTTTATCCCGCTGCGGGCGGCGATGGCGCTGGCGGTTTCGCTTGAGGCGCTGGGCCGCGTAACGCGCACGGCGCCCGCCCTCACACGCTACGCCGTCTCCCAGCTTGGCTTTGAACGGACGTACAGCACCCGCCGGCTGCGCAAGGAGCTGGGGGTGGAGCCTGTCCCCAGCAGCTTCTCAGGTGCGGGAGAATGGATCAGAGCCCTGGGATCATCGCATCCCGCCCAAGAGACCAATCACTGAMRIAVTGATGFVGAAVAAAAEHRGWEVYRYGRRQLPGITVWDLAEGKLSSPPEVDAVVHAGAQVGDWGPPQLFHRVNVLGTEAVAATFPRARLVHISSSSVNPWWQPCVDRQEEAPSGRYLNAYSRSKALAEAAASKHPNAVILRPHGVYGPGDRTLLPRLIRNVKRGRLLCVGGPDVRHQLTSIGNLTEAALAACASDVTGPVNVADHQPVELGGVLREVLDETGRTDVELRFIPLRAAMALAVSLEALGRVTRTAPALTRYAVSQLGFERTYSTRRLRKELGVEPVPSSFSGAGEWIRALGSSHPAQETNHNANANANANA
D1-29_034431812oleCCOG0318Olefin beta-lactone synthetaseGTGGACACTAAGAGCCAGCCGGACCTCATCACAGCCGTTTACGACGCCGCATCGCGGTACCCGGACCACCCGGCCATCACCGGGCCGGGAAATCGGAACGGCCGGCCCGGCAGGACCATCAGCTACCGGGACCTTGCCGCCGGAATCGAATCCACCGCCGCCGGACTGCGGCGCGACGGATTCGGCCCGGGCGAGCGCCTGCTGTTCTCGGTCAGGCCCGGTCCCTCGGCCTTCACACTGGCGCTGGCCGCTGTACGGGCCGGCGGTTCCATCGTTTTTATCGATCCCGGCGTAGGCCCCGAACTGTTCCGCAACAGGGCCGCGCTGGCCTCGCCACAGTGGGCGGCCGCTGAATCCCTGCTCTACGCACTCAGTACCAGGGGCCCCCTGCGGCCCCTTGCCCGGCGCCGCGGCCTGCTGCTGCCGGACTATGCGGCCATGAAGGTCCGCCACTACCATTCCGGCCCCTGGCTGCCAGGCGTTCCCTTGAGGTCTACCAACATCCGCCAGCTGACCCGTATGCCTTCCCACTGGGGAGCGGCCGATTCTTCCGGACGGGCAAAGGGTGCGGTGCCGCCGGTGGAGGCTGCGCCAGGGCAGGAAGCGGTCATTATCTTCACCTCGGGCACCACGGGCCATCCCAAGGGCGTGGTGCACACCCGCGGCACCCTTGCTGCGGCTTTCACCCAACTCAGCACCCGCTGCACCTTCGCTGCAGGCGACCGCATCCACTCGGAACAGTTCATGATGGGGCTGCCCGCGCTGATCGAGGGAGCCCATTGGACCATGCCGTCCTACGGGCTCTCCGCCACGATCGACCCGCTCCAGTTCGCCGCAGCGCTGGGCTCCTCCCCGGGGCGGGCAGCGGCGACCCACGTTTTCCTGGTGCCCTCGCAGCTGGCACCCATCCTGGACGCCGTCGAAACCGCCAGGATCGCCTGGCCGGAAACGCTGCAAACCGTCATGCTGGGAGCCGCGCCCGTCCTGGCCTCCTTCCTGGAGCGGGCCGCCCGGCTGCTGCCGGCAGTCCGCTTTCATTGCATCTACGGCATGACCGAGGTACTTCCCATCGCGATCGCGTCGGGACAGGAGAAACTGGACTTCGCCTCCGGGCGCACGGCCGAATACCGGGCAGCCGACGGCTCCGGGGAAGGGGACTTCCTCGGGGAACCGCTGCCGGGTATGACCGTGCGGGTGGCCGAGGACCACGAACTGATGGTCTCCGGGCCGAACATGTGCCTTGGCTACCTCGGCGACGACGCAATGGACGAACATGCAACCGGCGACCTCGTCCGGTTGGATCACGGCAGGTTGGATCACGGCCGACTGGATCACGGCCCGGGGGGAACCGGCGGGGCGGGTGGCGGGCCGGGAGCGGCCAGACTGGTCCTGCTGGGGCGGAAGAAGGACATGATCATCCGCGGGAAAACCAACATCTATCCGGGCTTGTACGAGCCGCTCATCGCCGGGATTGCGGGGGTCGCCCAGGCCGTCATGGTGGGTGTTCCCAACGGCATCGGCGACGAAGCCGTCTGGCTGGCCGTCGAGCCCCGGCCCGGCCAGGCACACGAAGCTCTGCTTCGCACGCTCCAAAGGGAGCTGCCGAAGCTCATCGACGAATCGGCCCTGCCGGACAGCATAGAGATCATGCCCCACCTGCCTACTTCCGGCAGGCACCGCAAGCCGGACCGCATCGCCCTGCGGACGCTTTTCTCGGACCGGACCGTGACTACGGACGGCTCCACACGTTTGGACCCGGCCGTGGTTTCCGCCGGCTCGGTATTTTCCGACGGCAGGGGCGGCCACGGATGAMDTKSQPDLITAVYDAASRYPDHPAITGPGNRNGRPGRTISYRDLAAGIESTAAGLRRDGFGPGERLLFSVRPGPSAFTLALAAVRAGGSIVFIDPGVGPELFRNRAALASPQWAAAESLLYALSTRGPLRPLARRRGLLLPDYAAMKVRHYHSGPWLPGVPLRSTNIRQLTRMPSHWGAADSSGRAKGAVPPVEAAPGQEAVIIFTSGTTGHPKGVVHTRGTLAAAFTQLSTRCTFAAGDRIHSEQFMMGLPALIEGAHWTMPSYGLSATIDPLQFAAALGSSPGRAAATHVFLVPSQLAPILDAVETARIAWPETLQTVMLGAAPVLASFLERAARLLPAVRFHCIYGMTEVLPIAIASGQEKLDFASGRTAEYRAADGSGEGDFLGEPLPGMTVRVAEDHELMVSGPNMCLGYLGDDAMDEHATGDLVRLDHGRLDHGRLDHGPGGTGGAGGGPGAARLVLLGRKKDMIIRGKTNIYPGLYEPLIAGIAGVAQAVMVGVPNGIGDEAVWLAVEPRPGQAHEALLRTLQRELPKLIDESALPDSIEIMPHLPTSGRHRKPDRIALRTLFSDRTVTTDGSTRLDPAVVSAGSVFSDGRGGHGNANANANANA
D1-29_034441203hypothetical proteinGTGATCTCCCGGGAAATTTCGGGCCTGAGGACCGGCCGCATGGCAGGCTGGGAACGGCGCCTCCACACCGCAGCACACCCCTTCGCCTACCCGCTCATCCGCGGACTCGGGAAACTCCGCCCCGTGGTCAGGCTGCCCGGCCTGGGTGTCCTGGTGAGCGACGCCTCGCTGCTCCGGGAAGTACTTATGGATGCCAGCTACTCAAAAACCGGTGCCGGGGCCTCCGGCGCGCTCTGGACCCCGGTGGTTGGCCCGCGCGCCCTGCTGAACATGGACGGCGAAGCGCACCTTGAGCTGCGGCGCAGGCTCAACGGACTGTTCACGCCCCGGGCCGTGGAGTCCATTGTTGCCCCTGCCGTGGAGCGGATGCGCGGGCGCCTGTCTGCCGGACTTGAGAACGGGCAGGGCGTGGAGTTCGTGAGTCTGGTCAAGGAACTGTCCGGCGGAGTGATCAGCCGCCTGCTCGGGGTTCCTGACCAAGCACCCGGACGCCTGCCGGATACCGAACTCTTCAGCCTTGGTACGTCCATCACCGGCCTCGTCCGGCTGGGCCGGCCACAACTGACCCCGCCCCAGGTGGTGAAGGCGAAGGCCGCCGTCGAAATTCTTGCCGGGCCCGTGCGGGAGGCTTACCGCCGCGATGACCCCAGCACCTTCCCCGGCCGCCTGCGTGAGCTTGGCCTGAGTGAGGATGAGGCTGTGGGGATTGTCAGCGCCTTTGTCATCGCCGGGACTGAGACGTTGGTGTCCTATGTTCCGCGGCTGGCCGCCCTGCTGTTCGACGACGGCAGGCTGCCAGTGCTGGCGGCCGACCGGACCGGCCTGCCGGACGCCGTCAATGAAGGACTGCGCTTCACCGCACCCTCGCCGATGATGCTCCGGGAAGCGACGGCGGAAAAACAGCTTGGAGGTGTCAGGATCAGGCCTGGTGACCGCATCCTGCTCTCCACTGTCCATGCGGTGAAGAGCTTGGGCGGCTTCGACCCGGCGGTGCCTGTTCCTGCTCCGGCCCGCCAGCTCTGGTTCGGGGCAGGGGCGCATTTCTGCATCGGAATGCCGCTGGCCATGGCCGAAATCAACGGGGCCCTGAACGTGCTGCTGGACGAATACGCCCGGAAGCCATGGCACATCCGTCAACGGGCTGTCAGCCGGAACGTCCTCATACCCCACTACAAGTCAATGGAGCTGGCCCGTGGACACTAAMISREISGLRTGRMAGWERRLHTAAHPFAYPLIRGLGKLRPVVRLPGLGVLVSDASLLREVLMDASYSKTGAGASGALWTPVVGPRALLNMDGEAHLELRRRLNGLFTPRAVESIVAPAVERMRGRLSAGLENGQGVEFVSLVKELSGGVISRLLGVPDQAPGRLPDTELFSLGTSITGLVRLGRPQLTPPQVVKAKAAVEILAGPVREAYRRDDPSTFPGRLRELGLSEDEAVGIVSAFVIAGTETLVSYVPRLAALLFDDGRLPVLAADRTGLPDAVNEGLRFTAPSPMMLREATAEKQLGGVRIRPGDRILLSTVHAVKSLGGFDPAVPVPAPARQLWFGAGAHFCIGMPLAMAEINGALNVLLDEYARKPWHIRQRAVSRNVLIPHYKSMELARGHNANANANANA
D1-29_03445786hypothetical proteinGTGACCGGGACTTTAGCGGCCAGCGTTCCTCCCGTGCGGCCCCTGTGCGTTGCCATGCCGGTGCTGAATGAAGAGAAGCTGATCCTGGAAACGTTGCAGGCACTCGCTGCCCAGCTTCAGCCTGATTTCACCTTGGTAATCGTGGACAACGGTTCCACAGACGCCAGCCAGGCCATCGTGGCGGAATTCGCCGCGCTGAACCCTGGCATGGACATCCGGTTGATTACTGAGCCGGAGAAGGGGACCGGCGCCGCAGCGGACACCGGAATGCGCTTTGGTGCATTGAACGGCGCCCGCTGGCTGGCACGAACCGATGCGGATTGCCTCCCGGCGCCGGACTGGACGCTGCGGATCATGGAGGCCTTCGACGACGGCCTGGAGATGATCGCCGGGCAGTTGAACCCCCGCCTGGACGAGGGCCTGGGCCGCCGGCAGCGGTGGCTGATGCTGGGGGCAGTGGAGGTGGCATCCTTCTTTGGCCGGATCCGCCCAGGCAACAAAGGGGAAGGCTATCTGGGTCCGTACCAGATGCTGCCCGGCTGCAATATGGCCATCACGGCGGATCTCTACCTCCGCTCGGGAGGGTTTCCCCGCACCAGCATCGAGGAGCTCCACGAGGACCGGGCGCTGTCCAACCGCGTACGCAGGCTGACGCGGGCGTATGCGCTCCGGCGGAACGTGGTGGTGTACGGTTCCTCACGCCGGGTGAAGGCCTGGGGCCTGCCCAACACCCTTGCCTGGTACGCGGACCACCGCTACCGGCCAGAACACGTGGACATCCGGTGAMTGTLAASVPPVRPLCVAMPVLNEEKLILETLQALAAQLQPDFTLVIVDNGSTDASQAIVAEFAALNPGMDIRLITEPEKGTGAAADTGMRFGALNGARWLARTDADCLPAPDWTLRIMEAFDDGLEMIAGQLNPRLDEGLGRRQRWLMLGAVEVASFFGRIRPGNKGEGYLGPYQMLPGCNMAITADLYLRSGGFPRTSIEELHEDRALSNRVRRLTRAYALRRNVVVYGSSRRVKAWGLPNTLAWYADHRYRPEHVDIRNANANANANA
D1-29_034461035oleACOG0332Acyl-CoA:acyl-CoA alkyltransferaseATGCACCAACCTGTTCCGGGCGCGGCGAGGATAGCCGGCCTCGAAGTCTACGTGCCGCCAGGCCGCCTGAGCACCAACGACCTGGAGCTACAGCTTGCTGCGGCCAGTCCCGGCTTCCGTGTTCCCAAGGGCCTCATCGGCCGGCTGACCGGAATCCGGACCAGGTCCGTGATGGCCGCGGCCGAGCAGGCCTCAGACCTTGCGGCTGTAGCCGCCGGAAAACTGCTGGCTGACCTCGGTCTCGAGCCCGCCGACGTCGGCCTCCTTATTTTTGCCTCCGCGAGCCAGGACATGGTGGAGCCGGCCACGGGGCATATGGTGGCGGCGAAACTAGGGGTGACGTGTCCCGTTATGGACGTCAAGAACGCCTGTAACAGCCTGCTGAACGGGCTGGAGGTAGCGGACGCCCTGATCGGGACCGGCCGGTACCGCCGGGTGCTTCTGGTCAGCGGTGAATCGCCGTCCCGAGCGGTGCGATGGGCCGTTCCGGACCAGGAAACTTTCGCCGCGGCGTTTCCCGGCTACACCATGAGCGACGCCGGCTGTGCGCTGCTGCTGGAACCTGCCGACCCCCACGACGAATCAGGACCGCGCGTGCTGGGGACGGGATTCACGGCGAAAAGCAGCCACTGGGCGGTGGGGACACTGGGCACTGGCGGATCCGTTGCCCCAAGGGATCCCGAGGCGACCTATTTCACCATGGACGGCGAGAAACTCAAGGACGCGTTCCTGGACCTTGGCCGCGGCATCCTGGATGAAACACTGGCCCGGCTTGAACTGGCCTGGTCCGATTTCGCCGTCGTCTGCGTGCACCAGGTCAGCGCACCGTACCGGGACGTCTTCGCCCGTGGCGCCGGGGTGCCACAGGAGAAACTCGTCAAGACCGTGGAGGAGTTCGGCAACATGGCCTCCGTCAGCCTGGCCCTTCAATTGAAGCTGGCTCAGGACCTGGGCCGTTGCGGTCCGGGCGATCTGGTGGCGCTGGTGGGGCTGGCCGGCGGCGTCAGCCTGGGGATCGCCGTGGTCAGGCTGTGAMHQPVPGAARIAGLEVYVPPGRLSTNDLELQLAAASPGFRVPKGLIGRLTGIRTRSVMAAAEQASDLAAVAAGKLLADLGLEPADVGLLIFASASQDMVEPATGHMVAAKLGVTCPVMDVKNACNSLLNGLEVADALIGTGRYRRVLLVSGESPSRAVRWAVPDQETFAAAFPGYTMSDAGCALLLEPADPHDESGPRVLGTGFTAKSSHWAVGTLGTGGSVAPRDPEATYFTMDGEKLKDAFLDLGRGILDETLARLELAWSDFAVVCVHQVSAPYRDVFARGAGVPQEKLVKTVEEFGNMASVSLALQLKLAQDLGRCGPGDLVALVGLAGGVSLGIAVVRLNANANANANA
D1-29_03447579adk_2COG0563Adenylate kinaseATGACGAGAATGTTAATTATTGGACCACCCGGCTCCGGAAAAGGGACGCAGGCGGAACGCATATCGGAGCGCCTCGGCGTTGTGGCGATCTCCACCGGCGACATCTTCCGTGCCAACGTCAAGGGTGAGACCCCGCTTGGCATCGAAGCCAAGAAGTACATGGACAACGGAGACTTCGTTCCGGACAGCGTGACCAACAAGATGGTCCGGGACCGCCTCAGCGAGCCCGACGTCGAAAGCGGATTCCTGCTCGACGGCTACCCGCGCACCACGGCACAGGTGGACTACCTCGACGAGATTCTCGCCAACGGCGAAGAGAAGCTCGACGTCGTCCTGCAGCTGACCGCCGACGATGAGGAATTGGTGACCCGCCTCCTGGGCCGTGCCAAGGAAACCGGCCGGAGCGACGACAATGAAGCCGTCATCCGCCACCGCCTTGACCTCTACCACGAGCAGACCGAGGCAGTTGTTGCCAAATATGCGGAGCGCGGCATCCTGACCCAGGTTGACGGCATCGGCGCCATCGACGAAGTGACGGACCGTGTAATGCAGGCCATCAAGGCCGCACAAGCAGCCTGAMTRMLIIGPPGSGKGTQAERISERLGVVAISTGDIFRANVKGETPLGIEAKKYMDNGDFVPDSVTNKMVRDRLSEPDVESGFLLDGYPRTTAQVDYLDEILANGEEKLDVVLQLTADDEELVTRLLGRAKETGRSDDNEAVIRHRLDLYHEQTEAVVAKYAERGILTQVDGIGAIDEVTDRVMQAIKAAQAAPGPT0009040_6883DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
D1-29_034481311secYCOG0201Protein translocase subunit SecYTTGCTTAGCGCATTTGGCCGGGCCTTTCGCACGCCTGATCTGCGACGCAAGTTGTTGTTCACGCTGGGAATCATCACAATCTTCCGCTTGGGTGCCTTCATCCCCTCGCCTGGTGTGAACTACCAGAATGTCCAGCAATGCTTGTCGAACGGTCAGACCGCAGAGGGGCTCTATCAGCTCGTCAACCTGTTCAGCGGCGGTGCATTGCTCCAGGTGTCCATCTTCGCACTGGGCATCATGCCGTACATCACCGCCAGCATCATTGTGCAGCTGCTCCGGGTGGTTATTCCCCGTTTCCAGGAGCTCTATGAAGAAGGTGCTTCCGGGCAGTCAAAGCTGACGCAGTACACACGGTACCTGACCATTGCCCTGGGCCTCCTGAACGCGACAACGCTTGTTTCCCTGGCACGCTCAGGCCAGCTGCTCCCCGGCTGTAATCTCCCGATCATCCCTGACGACAGCGTGATCACCACCATCCTCCTCATCATCACCCTGACGGCCGGCACCGGCCTCATCATGTGGATGGGCGAGCTGGTCACCGAAAAGGGTGTGGGCAACGGCATGTCGCTGCTCATCTTTACTTCCATCGCAGCAACATTCCCCACCTCCCTTGGCGCCATCTGGTCCTCCCAGGGCCCGGGCACCTTCTTTATGGTCCTGGCCATCGGCCTGGTGACTGTTGGCCTGGTGGTCTTTGTGGAGCAGTCCCAGCGGCGGGTCCCGGTCCAGTACGCCAAGCGGATGATCGGGCGACGCACCGTGGGCGGCACCAGCACCTACATCCCCATCAAGGTGAACATGGCCGGCGTGATCCCTGTGATCTTTGCTTCGTCCATGCTCTACCTGCCTGGTCTGATCTCACAGTTCAACCAGCCCAAACCGGGCGAGCAGCTGCAACCTTGGGTTGAGTGGATCAACAACAACCTGACCCGTGGCGACCACCCGATCTACATGGCGCTCTACTTCGCCATGATTGTATTTTTCACCTACTTCTATGTCGCGATCACCTTCAACCCTGAAGAGGTCTCAGACAACATGAAGAAGTACGGCGGCTTCATTCCCGGTATCCGTGCGGGCAAGCCGACGGCGGATTACCTCCAGTACGTGCTCTCCCGGATCACCTTGCCCGGCGCCCTGTACCTGGGCTTCGTGGCACTGATTCCGCTGGTGGCACTTGTACTGATCAACGCCAACCAGAACTTCCCGTTCGGTGGTACCTCCATCCTGATCATGGTGGGCGTTGGCCTTGAAACCGTCAAACAGATAGACGCGCAACTACAGCAACGTCACTACGAAGGGCTCTTGCGATGAMLSAFGRAFRTPDLRRKLLFTLGIITIFRLGAFIPSPGVNYQNVQQCLSNGQTAEGLYQLVNLFSGGALLQVSIFALGIMPYITASIIVQLLRVVIPRFQELYEEGASGQSKLTQYTRYLTIALGLLNATTLVSLARSGQLLPGCNLPIIPDDSVITTILLIITLTAGTGLIMWMGELVTEKGVGNGMSLLIFTSIAATFPTSLGAIWSSQGPGTFFMVLAIGLVTVGLVVFVEQSQRRVPVQYAKRMIGRRTVGGTSTYIPIKVNMAGVIPVIFASSMLYLPGLISQFNQPKPGEQLQPWVEWINNNLTRGDHPIYMALYFAMIVFFTYFYVAITFNPEEVSDNMKKYGGFIPGIRAGKPTADYLQYVLSRITLPGALYLGFVALIPLVALVLINANQNFPFGGTSILIMVGVGLETVKQIDAQLQQRHYEGLLRPGPT0025725_3392DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076NANA
D1-29_03449495rplOCOG020050S ribosomal protein L15ATGGCAGAGAAAAACACTGCTGAGAAGGCACAGAGCGCTACTGCTGAGAAGCAGAACGCTCTGAAGGTCCACCACCTGCGTCCCGCCCCGGGTGCCAAGACCGCCAAGACCCGTGTTGGTCGTGGTGAAGGTTCCAAGGGTAAGACCGCTGGTCGCGGTACCAAGGGTACGAAGGCCCGCTACCAGATCAAGGCTGGCTTTGCCGGCGGCCAGCTGCCGCTGCACATGCGCCTGCCGAAGCTGCGCGGCTTCAAGAACCCGTTCCGGGTTGAGTTCCAGGTTGTCAACCTGGACAAGCTCAACGAGCTGTTCCCGGAAGGTGGCGCAGTGACCGTGGAGAACCTGGTCGAAAAGGGTGCCGTTCGCAAGAACCAGCCCGTCAAGGTGCTGGGCACCGGTGACATCACCGTGAAGGTTGACGTCACCGCCCACGCATTCTCGGCCAGCGCTGCTGAAAAGATTGCTGCAGCAGGCGGAAGCACCACCGCGCTCTAGMAEKNTAEKAQSATAEKQNALKVHHLRPAPGAKTAKTRVGRGEGSKGKTAGRGTKGTKARYQIKAGFAGGQLPLHMRLPKLRGFKNPFRVEFQVVNLDKLNELFPEGGAVTVENLVEKGAVRKNQPVKVLGTGDITVKVDVTAHAFSASAAEKIAAAGGSTTALNANANANANA
D1-29_03450207rpmDCOG184150S ribosomal protein L30ATGGCTAAGAACCTGATTCCCTCCGACGCTCAGTTGGAGATCACTCAGATCAAGTCCGTCATTGGCGGCAAGCAGAACCAGCGCGACACCCTTCGGTCCCTCGGCCTGAAGCGGATCGGACACACCGTTGTCCGCACCGCCGACGCCGTGACCGTTGGAATGCTCAACACGGTTCCGCACCTGGTAAAGGTAGAGGAGGCGAAGTAAMAKNLIPSDAQLEITQIKSVIGGKQNQRDTLRSLGLKRIGHTVVRTADAVTVGMLNTVPHLVKVEEAKNANANANANA
D1-29_03451729hypothetical proteinGTGACGGAAGCAAACAAGGAAAAGGACACTGTGTCTGCAGATCAGAAGGCTACTGAAGCCGTAGCTGCTCCGGCCACTGAGACCACTGCCGCCGCTGCTGCCGATGACCGCCGTGGTGGCGCTCGTCGTGGCGAGCGTGGCGACCGTGGCCAGGGCCGCGGCGACCGTGGTGGCCGTGGTGGCCGCGATGGCGGCCGTGAAGCCGAGAAGAGCCAGTTCATCGAGCGCGTTGTCACCATTAACCGCGTTTCCAAGGTGGTCAAGGGTGGTCGTCGCTTCAGCTTCACCGCCCTGGTCGTCGTTGGTGACGGCAACGGTATGGTCGGCGTGGGCTATGGCAAGGCTAAGGAAGTTCCCGCCGCAATCGCGAAGGGCGTTGAAGAGGCTAAGAAGTCCTTCTTCCGCGTTCCCCGCATTGGCAACACCATCCCGCACCGCGTTCAGGGTGAGGCTGCTGCCGGCGTCGTAATGCTGCGTCCGGCTTCCGCCGGTACCGGTGTTATCGCCGGTGGTCCGGTCCGTGCAGTACTGGAGTGCGTGGGCATCCACGACATCCTCTCCAAGTCGCTCGGTTCCTCCAACGCCATCAACATCGTGCATGCCACCGTTGATGCGCTGAAGCGCCTCGAAGAGCCGGCAGCTGTGGCAGCACGCCGCGGCCTGCCGCTGGATGAAGTTGCTACCCCGGCTATGGTCAAGGCCCTCCTGAACCAGAAGGTGGGTGTCTAAMTEANKEKDTVSADQKATEAVAAPATETTAAAAADDRRGGARRGERGDRGQGRGDRGGRGGRDGGREAEKSQFIERVVTINRVSKVVKGGRRFSFTALVVVGDGNGMVGVGYGKAKEVPAAIAKGVEEAKKSFFRVPRIGNTIPHRVQGEAAAGVVMLRPASAGTGVIAGGPVRAVLECVGIHDILSKSLGSSNAINIVHATVDALKRLEEPAAVAARRGLPLDEVATPAMVKALLNQKVGVNANANANANA
D1-29_03452384rplRCOG025650S ribosomal protein L18ATGGCCATCTCAATCAATAAGAAGCGTACGAACAAGAGCAAGTCTGCTTCACGCAGCCGCCGCCAGCTTCGTATCCGCAAGCGCATCTCCGGAACGGCTGTACGTCCTCGTCTGGTCGTCAACCGCTCCGCACGCCACGTATTCGTCCAGGTTGTCGATGACACCAAGGGCCTGACCGTAGCGAGCGCGTCCACACTGGAAGCCGACCTTCGTGCATTCGACGGTGACAAGACTGCCAAGGCCAAGCGCGTTGGCGAGCTCGTTGCCGAGCGTGCGAAGGCTGCCGGCGTCGAAGCTGTTGTCTTCGACCGCGGTGGTAACAAGTACCACGGCCGGATCGCCGCCGTCGCTGACGGTGCACGTGAAGGTGGGCTGTCACTGTGAMAISINKKRTNKSKSASRSRRQLRIRKRISGTAVRPRLVVNRSARHVFVQVVDDTKGLTVASASTLEADLRAFDGDKTAKAKRVGELVAERAKAAGVEAVVFDRGGNKYHGRIAAVADGAREGGLSLNANANANANA
D1-29_03453537rplFCOG009750S ribosomal protein L6ATGTCACGTATTGGACGTCTCCCCATCACCGTTCCTGCCGGCGTTGAGGTCAAGGTTGACGGCTCTGTCGTCAGCGTCAAGGGTGCCAAAGGCGAGCTGAACCACACTGTGGCCAGCCCGATCGAGGTTTCCCTGGAAGCAGAGACCCTGACTGTCGCCCGCCCGAACGACGAGCGCGCCTCCCGTTCACTCCACGGCCTGACCCGCACCCTGATCTCCAACATGATCGAGGGCGTAACCAAGGGCTACGAGAAGAAGCTTGAAATCGTTGGTACTGGTTACCGCGTTCAGGCCAAGGGATCTGACCTTGAGTTCGCTCTCGGCTACAGCCACCCGGTAAATGTTTCGGCACCGGACGGCATCACCTTTGCAGTTGAGACCCCGACCAAGCTCTCTGTTTCAGGTATCAACAAGCAGCAGGTCGGCGAGGTTGCTGCCAACATTCGCAAGCTTCGGAAGCCGGACCCCTATAAGGGCAAGGGCATCCGTTACGCAGGCGAAGTCATCCGCCGCAAGGTCGGAAAGGCTGGTAAGTAAMSRIGRLPITVPAGVEVKVDGSVVSVKGAKGELNHTVASPIEVSLEAETLTVARPNDERASRSLHGLTRTLISNMIEGVTKGYEKKLEIVGTGYRVQAKGSDLEFALGYSHPVNVSAPDGITFAVETPTKLSVSGINKQQVGEVAANIRKLRKPDPYKGKGIRYAGEVIRRKVGKAGKNANANANANA
D1-29_03454399rpsHCOG009630S ribosomal protein S8ATGACAATGACAGATCCTGTCGCAGACATGCTTACGCGTCTGCGCAATGCAAACTCGGCATACCACGACTCCGTGACTATGCCGTACAGCAAGCTCAAGGCACGCGTTGCCGACATCCTGAAGGCTGAAGGTTACATCGCCTCCTGGAAAGAAGAAGACGCTGAGGTTGGCAAGAAGCTGACCCTCGAGCTCAAGTTCGGCCCGAACCGTGAGCGTTCCATCGCTGGCGTTCGTCGTATTTCCAAGCCGGGACTGCGCGTTTACGCAAAGTCCACCAACCTGCCGCACGTGCTCGGTGGCCTGGGTGTCGCAATCCTGTCCACCTCTTCCGGCCTCTTGACTGACAAGCAGGCCGGCAAGAAGGGCGTGGGCGGCGAAGTCCTCGCTTACGTCTGGTAAMTMTDPVADMLTRLRNANSAYHDSVTMPYSKLKARVADILKAEGYIASWKEEDAEVGKKLTLELKFGPNRERSIAGVRRISKPGLRVYAKSTNLPHVLGGLGVAILSTSSGLLTDKQAGKKGVGGEVLAYVWNANANANANA
D1-29_03455582rplECOG009450S ribosomal protein L5ATGACTGAGACTCTCGAGACTCCGGCAACGAAGATCGTTCCTCGTCTGAAGACCAAGTACGCCGATTCCATCAAGAGCACGCTCATTGAGGAATTCAAGTACGAGAACGTCAACCAGGTTCCCCGCCTGGTGAAGGTCGTTGTGAACATGGGTGTTGGAGATGCCGCCAAGGACTCCAAGCTGATCGACGGCGCTGTCCGCGATCTGACCCTGATCACCGGCCAGAAGCCGCAGGTAACCAAGGCCCGCAAGTCAATCGCACAGTTCAAGCTGCGCGAAGGCATGCCCATCGGTGCACACGCAACCCTGCGTGGCGACCGCATGTGGGAATTCCTGGACCGCCTTGTCACGCTGGCCCTGCCCCGTATCCGCGACTTCCGCGGCCTCAGTGGCAAGCAGTTCGATGGCAACGGCAACTACACCTTCGGTCTGACCGAGCAGGTTATGTTCCACGAAATCGACCAGGATTCCATCGACCGCACCCGCGGCATGGACATCACTGTGGTCACCACTGCCAAGACCGATGACGAAGGCCGCGCGCTGCTGAAGGCGCTTGGTTTCCCGTTCAAGGCCGAAGACTAAMTETLETPATKIVPRLKTKYADSIKSTLIEEFKYENVNQVPRLVKVVVNMGVGDAAKDSKLIDGAVRDLTLITGQKPQVTKARKSIAQFKLREGMPIGAHATLRGDRMWEFLDRLVTLALPRIRDFRGLSGKQFDGNGNYTFGLTEQVMFHEIDQDSIDRTRGMDITVVTTAKTDDEGRALLKALGFPFKAEDNANANANANA
D1-29_03456360rplXCOG019850S ribosomal protein L24ATGGCTAAGATCAAAAAGGGTGACCTGGTTCAGGTCATCACTGGCGCCAAGGCTGAGCGCGGCGGCGACCGTGGCAAGCAGGGCAAGGTTCTGCGCGTATTCCCGGAGACCAACCGCGTGTTGGTTGAAGGCATTAACCGCGTAACCAAGCACACCAAGGTCGGTCAGTCGCAGCGCGGCACCAAGACCGGTGGCATCGAGGTCGTTGAAGCTTCGATCCACATCTCCAACGTGGCTCTGGTTGACCCGTCCACCAAGAAGCCCACCCGCGTTGGTTTCCGCACCGAGACCGTGGAGCGCAATGGCGTGAAGCGTGAAGTGCGTGTACGCGTGGCCAAGAGCTCCGGGAAGGACATCTAAMAKIKKGDLVQVITGAKAERGGDRGKQGKVLRVFPETNRVLVEGINRVTKHTKVGQSQRGTKTGGIEVVEASIHISNVALVDPSTKKPTRVGFRTETVERNGVKREVRVRVAKSSGKDINANANANANA
D1-29_03457369rplNCOG009350S ribosomal protein L14GTGATTCAGCAGGAGTCGCGACTCAAGGTCGCCGACAACACGGGTGCTAAGGAAATCCTTACCATTCGCGTTCTCGGTGGATCTGGCCGTCGCTACGCAGGCATTGGCGACGTCATCGTCGCTACCGTCAAGGACGCAATTCCGGGCGGCAACGTAAAGAAGGGCGATGTTGTCAAGGCAGTCATCGTCCGTACCAAGAAGGAACGCCGCCGTGCGGATGGTTCCTACATCAAGTTTGACGAGAACGCAGCTGTGATCCTGAAGGCTGACGGTGACCCCCGCGGTACCCGCATCTTCGGACCGGTTGGTCGTGAACTCCGTGACAAGAAGTTCATGAAGATCGTTTCTCTGGCTCCGGAGGTGCTCTAGMIQQESRLKVADNTGAKEILTIRVLGGSGRRYAGIGDVIVATVKDAIPGGNVKKGDVVKAVIVRTKKERRRADGSYIKFDENAAVILKADGDPRGTRIFGPVGRELRDKKFMKIVSLAPEVLNANANANANA
D1-29_03458306rpsQCOG018630S ribosomal protein S17GTGAGTGAAAAGGACGAGAACGTGACGGAAACTGCTACCGCAGCCACGGCTGAGCAGCGCGGTTACCGCAAGACGCGTCGCGGCTACGTTGTCTCTGACAAGATGGAAAAGACCATCGTTGTTCAGGTTGAAGACCGCGTGAAGCACGCTCTTTACGGCAAGGTCATCCGCCGTACCTCCAAGGTCAAGGCACACGACGAAGAGAACACCGCCGGCATCGGCGACCTCGTTGTCATCGCCGAGACCCGCCCGCTGTCCGCCACGAAGAACTGGCGGCTCGTGGAGATCCTCGAGAAGGCCAAGTAAMSEKDENVTETATAATAEQRGYRKTRRGYVVSDKMEKTIVVQVEDRVKHALYGKVIRRTSKVKAHDEENTAGIGDLVVIAETRPLSATKNWRLVEILEKAKNANANANANA
D1-29_03459330hypothetical proteinATGGCAGTAGGATCCAAGGAACTTGCATCCGCACAGCTGGACACGTTCGACAACGAGCGCCTCGTTGAAGAACTCCGTAAGGCTAAGGAAGAGCTGTTCAACCTGCGTTTCCAGTCCGCCACCGGTCAGCTGGAGAACCACGGTCGTCTGCGCGCGGTAAAGAAGGACATCGCACGCATCTACACCGTTCTCCGTGAGCGCGAGCTGGGCATTCGTGCCGAGGTTGCCGCACCGGTTGTGGAAGCCAAGGAAGAAAAGAAGTCCAAGAAGTCAGCAACCAAGAAGGCCGAGACGGCTGAAACGGTTGAGACCGAGGAGGACGCCAAGTGAMAVGSKELASAQLDTFDNERLVEELRKAKEELFNLRFQSATGQLENHGRLRAVKKDIARIYTVLRERELGIRAEVAAPVVEAKEEKKSKKSATKKAETAETVETEEDAKNANANANANA
D1-29_03460417rplPCOG019750S ribosomal protein L16ATGCTTATCCCACGTCGAGTCAAGCACCGTAAGCAGCACCACCCGGGTCGTTCCGGCGCTGCTACGGGCGGCACCAAGGTCTCCTTCGGTGAGTACGGCATCCAGGCCCTGAGCCCGGCATACGTTACCAACCGTCAGATCGAGTCTGCACGTATCGCGATGACCCGCCACATCAAGCGTGGCGGTAAGGTCTGGATCAACATCTACCCGGACCGTCCCCTGACGAAGAAGCCTGCCGAAACCCGTATGGGTTCCGGTAAGGGTTCGCCGGAATGGTGGGTCGCCAACGTCAAGCCGGGCCGGGTTCTCTTTGAGATCTCCGGCGTCGAAGAATCGGTAGCTCGCGAGGCACTGCGCCTGGCAATCCACAAGCTCCCGTTGAAGGCACGCATTTTGCGTCGCGAAGGTGGTGAATAGMLIPRRVKHRKQHHPGRSGAATGGTKVSFGEYGIQALSPAYVTNRQIESARIAMTRHIKRGGKVWINIYPDRPLTKKPAETRMGSGKGSPEWWVANVKPGRVLFEISGVEESVAREALRLAIHKLPLKARILRREGGENANANANANA
D1-29_03461834rpsCCOG009230S ribosomal protein S3GTGGGACAGAAAGTAAACCCGCACGGGTTCCGACTCGGCATCACCACCGATCACGTATCGCACTGGTTCGCTGACAGCACCAAGGCCGGACAGCGGTACAAGGACTTCGTTCGCGAAGACATCCGTATCCGCCAGCTCATGTCTGTCGGCATGGAGCGCGCCGGTATCGCCAAGGTTGAGATCGAGCGCACCCGTGACCGTGTCCGCGTGGATATCCACACGGCACGTCCCGGCATCGTTATCGGCCGCCGTGGCGCAGAAGCAGACCGCATCCGCGGCGAGCTCGAAAAGCTCACGGGCAAGCAGGTCCAGCTGAACATCCTCGAGGTCAAGAACCCCGAGATGGAAGCACAGCTTGTTGCCCAGGGTGTTGCCGAGCAGCTGACTTCCCGCGTGGCTTTCCGCCGTGCGATGAAGAAGGCCATGCAGTCCGCGCAGCGTGCAGGTGCCAAGGGCATCCGTATCGCCTGCTCCGGTCGACTGGGCGGCGCCGAAATGTCCCGCTCGGAGTTCTACCGCGAAGGCCGCGTGCCCCTGCACACCCTCCGCGCGAACATCGACTACGGCTTCTACGAAGCCAAGACCACCTTCGGCCGCATTGGCGTGAAGGTCTGGATCTACAAGGGTGACATCACCGCCAAGGAACTGGCTCAGCAGGCAGCTGCTGCTCCGTCCCGTGGCCGCGGTGCCAGCGACCGTCCGGGACGTCCCGGTGGCGCTGACCGTGGTGACCGCCGCCGTCGTACCGACCGTCCGGCCGCCGAAGCAGCTCCTGCTGCAGAGGCTCCGGCAGTTGAGGCTGCACCCGTTGCAGTAGAAGGAGGACAGGCTTAAMGQKVNPHGFRLGITTDHVSHWFADSTKAGQRYKDFVREDIRIRQLMSVGMERAGIAKVEIERTRDRVRVDIHTARPGIVIGRRGAEADRIRGELEKLTGKQVQLNILEVKNPEMEAQLVAQGVAEQLTSRVAFRRAMKKAMQSAQRAGAKGIRIACSGRLGGAEMSRSEFYREGRVPLHTLRANIDYGFYEAKTTFGRIGVKVWIYKGDITAKELAQQAAAAPSRGRGASDRPGRPGGADRGDRRRRTDRPAAEAAPAAEAPAVEAAPVAVEGGQANANANANANA
D1-29_03462366rplVCOG009150S ribosomal protein L22ATGGAAGCCAAGGCAATTGCGCGTCACATCCGCGTAACGCCTATGAAGGCCCGGCGCGTCGTCAACCTTGTTCGTGGTAAGCAAGCGAATGAGGCTCTGGCAATTCTGAAGTTTGCCCCGCAGGCAGCTTCGGAGCCGGTATTCAAGGTAGTTCAGTCGGCAATCTCCAACGCCCGGGTCCTCGCGGACCGCGACGGCGTGGCGTTTGACGAAGGTGACCTCATCATCAGCGAAGCGTTTGTTGATGAAGGCCCGACCATGAAGCGGTTCCAGCCGCGTGCCCAGGGTCGTGCATTTCAGATCAAGAAGCGCACCAGCCACATCACCGTGGTAGTCGCTACCCCGGAGAAAGAGGAGGCTCGCTAAMEAKAIARHIRVTPMKARRVVNLVRGKQANEALAILKFAPQAASEPVFKVVQSAISNARVLADRDGVAFDEGDLIISEAFVDEGPTMKRFQPRAQGRAFQIKKRTSHITVVVATPEKEEARNANANANANA
D1-29_03463282rpsSCOG018530S ribosomal protein S19ATGCCACGCAGCCTGAAAAAAGGTCCTTTCGTTGACCAGCACCTCTTTGTGAAGGTAGCCAGGGAAAACGAAAAGGGCACCAAGAACGTCATCAAGACCTGGTCCCGCCGTTCGATGATCATCCCCGACATGCTCGGGCACACGATCGCCGTGCACGACGGACGCAAGCACATCCCGGTGTTTGTCACTGAGTCGATGGTCGGGCACAAGCTCGGCGAATTCGCTCCCACGCGGACATTCCGCGGCCATGTCAAGGACGACCGTAAGGGCAAGCGCCGCTAGMPRSLKKGPFVDQHLFVKVARENEKGTKNVIKTWSRRSMIIPDMLGHTIAVHDGRKHIPVFVTESMVGHKLGEFAPTRTFRGHVKDDRKGKRRNANANANANA
D1-29_03464840rplBCOG009050S ribosomal protein L2ATGGGAATCCGTAAATACAAGCCGACTACCCCGGGCCGTCGTGGCTCGAGCGTAGCGGACTTCACCGAAATCACGCGGTCGACGCCGGAAAAGTCGTTGGTACGTCCGCTGCCCAAAAAGGGCGGCCGTAACAACACCGGTAAGATCACAACCCGTCACAAAGGTGGTGGACACAAGCGCCAGTACCGTCTGATCGACTTCCGTCGCCACGACAAGGACGGCGTTGACGCCCGCGTTGCCGAAATCGAGTACGATCCGAACCGCACGGCTCGCATCGCCCTCCTGCACTACGTTGATGGCACCAAGCGTTACATCATCGCCCCGAACAAGCTGTCCCAGGGTGACTTCGTAGAAGCAGGTGCCAACGCTGACATCAAGCCTGGCAACAACCTGCCCCTGCGCAACATCCCGGTAGGTACCGTTATCCACGCAGTTGAACTGCGTCCGGGTGGCGGCGCCAAGATGGGCCGCTCCGCCGGCGCATCGATCCAGCTCGTAGCCAAGGAAGGCCGCTTCGCCCAGCTGCGTCTGCCTTCCGGCGAAATCCGCAACGTTGACGTGCGCTGCCGCGCTACCGTCGGCGAGGTCGGCAACGCCGAGCAGTCGAACATCAACTGGGGTAAGGCCGGCCGCATGCGCTGGAAGGGCGTTCGCCCGACTGTCCGTGGTGTCGCGATGAACCCGGTTGACCACCCGCACGGTGGTGGCGAGGGTAAGACGTCCGGTGGACGTCACCCCGTCAACCCGAACGGTAAGCGGGAAGGCCGCACCCGGCGTCCCAACAAAGAGAGCGACAAGCTTATTGTTCGTCGCCGTCGTACTGGCAAGAACAAGCGATAGMGIRKYKPTTPGRRGSSVADFTEITRSTPEKSLVRPLPKKGGRNNTGKITTRHKGGGHKRQYRLIDFRRHDKDGVDARVAEIEYDPNRTARIALLHYVDGTKRYIIAPNKLSQGDFVEAGANADIKPGNNLPLRNIPVGTVIHAVELRPGGGAKMGRSAGASIQLVAKEGRFAQLRLPSGEIRNVDVRCRATVGEVGNAEQSNINWGKAGRMRWKGVRPTVRGVAMNPVDHPHGGGEGKTSGGRHPVNPNGKREGRTRRPNKESDKLIVRRRRTGKNKRNANANANANA
D1-29_03465306rplWCOG008950S ribosomal protein L23GTGAGTGCAGCCACCATCAAAGACCCGCGCGACGTCGTGCTTGCACCCGTCGTATCGGAAAAGAGCTACGGCCTGATCGATGAGGGAAAGTACACCTTCCTGGTGGACCCCCGCTCGAACAAGACCGAGATCAAGCTGGCCGTGGAGAAGATTTTCTCCGTCAAGGTCGAATCGATCAACACCATCAACCGTGCCGGTAAGCGCAAGCGCACCAAATTCGGATGGGGTACCCGCAAGAACACCAAGCGTGCCATTGTGACCCTCAAAGAAGGCACTATCGACATCTTCGGCGGTCCGCTCGCGTAGMSAATIKDPRDVVLAPVVSEKSYGLIDEGKYTFLVDPRSNKTEIKLAVEKIFSVKVESINTINRAGKRKRTKFGWGTRKNTKRAIVTLKEGTIDIFGGPLANANANANANA
D1-29_03466624rplDCOG008850S ribosomal protein L4ATGACTAGCACTGTCAAGGTTGACCTGCCTGCAGAGATCTTCGACGTTCAGACCAACGTGCCGCTGCTGCACCAGGTCGTCGTTGCCCAGCTCGCTGCTGCCCGCCAGGGAACCCACAAGACCAAGACCCGCGCCGAAGTTTCCGGTGCAGGCCGCAAGCCGTTCAAGCAGAAGGGCACCGGCCGCGCCCGTCAGGGTTCAATCCGTGCACCTCACATGACCGGTGGTGGCGTTGTCCACGGTCCCACACCGCGTGACTACAGCCAGCGCACCCCCAAGAAGATGATTGCTGCTGCCCTGCGCGGCGCACTGTCTGACCGGGCACGCAACGGCCGCATCCACGTTGTTGCCGAACTGGTGGAGGGCACCAAGCCGTCCGTCAAGAACGCACTGGCAACGCTGCGCGGAGTTTCCGAGCGCAAGAACCTGCTGGTTGTCATCGAGCGCGCCAACGACGTTGCAGCACTGTCCGTGCGCAACCTCGCCGGTGTTCACGTTCTGTACGCAGACCAGCTGAACACCTACGACGTTCTCGTCTCTGACGACGTTGTCTTCACCAAGGCTGCCTACGAAGCATTCGTTGCTGACAAGGCAGTGGCAAAGAACGAGGAGGATGCCAAGTGAMTSTVKVDLPAEIFDVQTNVPLLHQVVVAQLAAARQGTHKTKTRAEVSGAGRKPFKQKGTGRARQGSIRAPHMTGGGVVHGPTPRDYSQRTPKKMIAAALRGALSDRARNGRIHVVAELVEGTKPSVKNALATLRGVSERKNLLVVIERANDVAALSVRNLAGVHVLYADQLNTYDVLVSDDVVFTKAAYEAFVADKAVAKNEEDAKNANANANANA
D1-29_03467651rplCCOG008750S ribosomal protein L3ATGACCGCAACCCGTAATGTAAAGGGCCTGCTGGGCACGAAGCTCGGCATGACCCAGGTCTGGGACGAGAACAACAAGCTCATCCCCGTCACTGTGGTCCAGGCAGATTCGAACGTCATCACCCAGCTGCGCAACGCAGACACCGATGGCTACGTCGCCGTTCAGATCGGCTACGGCCAGATCGATCCCCGCAAGGTCACCAAGCCGCTGGCTGGTCACTTTGAAAAGGCAGGCGTCACTCCTCGCCGCCACGTCGTCGAACTGCGCACTGCAGATGCCGACTCTTACGAGCTGGGCCAGGAGCTTTCTGTTGAGCTCTTCGAAGCCGGCCAGAAGATCGACGTTATTGGCACCACCAAGGGTAAGGGCTTCGCCGGCGTTATGAAGCGTCACGGCTTCCACGGCGTTGGAGCTTCCCACGGTGCCCACAAGAACCACCGTAAGCCCGGTTCAATCGGTGGCGCATCCACCCCGAGCCGCGTCTTCAAGGGCATGAAAATGGCCGGCCGCATGGGCGCCGTTCGTCACACCACGCTGAACCTCACGGTCCACGCGGTTGACGTTGAGAAGTCGCTGCTCCTGATCAAGGGTGCCGTTCCCGGCGCCCGCGGCCAGGTCGTACTCGTACGCACCGCAGTGAAGGGAGCCTAGMTATRNVKGLLGTKLGMTQVWDENNKLIPVTVVQADSNVITQLRNADTDGYVAVQIGYGQIDPRKVTKPLAGHFEKAGVTPRRHVVELRTADADSYELGQELSVELFEAGQKIDVIGTTKGKGFAGVMKRHGFHGVGASHGAHKNHRKPGSIGGASTPSRVFKGMKMAGRMGAVRHTTLNLTVHAVDVEKSLLLIKGAVPGARGQVVLVRTAVKGANANANANANA
D1-29_03468309rpsJCOG005130S ribosomal protein S10ATGGCGGGACAAAAAATCCGCATCCGGCTGAAGTCATACGACCACGAGGTCATTGACGTTTCAGCACGGAAGATCGTTGAGACGGTCACGCGCGCAGGCGCAACGGTAGTGGGCCCCGTGCCGCTGCCGACGGAGAAGAACGTTTACTGCGTAATCCGCTCTCCGCACAAGTACAAGGACAGCCGCGAGCACTTTGAAATGCGCACGCACAAGCGTCTTATCGACATCATCGATCCCACGCCCAAGGCTGTTGACTCGCTCATGCGTCTCGACCTGCCGGCAGACGTGAACATCGAAATCAAGCTGTAGMAGQKIRIRLKSYDHEVIDVSARKIVETVTRAGATVVGPVPLPTEKNVYCVIRSPHKYKDSREHFEMRTHKRLIDIIDPTPKAVDSLMRLDLPADVNIEIKLPGPT0015245_5632DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
D1-29_034691437bglA_1Beta-glucosidaseATGACAGTGGAAAATGCTGTTTCCGTCACCGAACTGGCAGGGCGGATCCCGCCCTCCTTCACCCTTGGCGTGGCCGCTGCGGCCTTCCAGATTGAGGGCGCGCTGGCCGCGGACGGACGTGGCCCGTCGGGCTGGGACGCCTTCGTCGAGAAGCCTGGTGTCATTGTTGATGGACATTCGCCGGCGGTTGCCTGCGACCATTACAACCGCTCCCACGAAGATGTGGCCCTGATGCGCGAGCTGGGCATTGATTCCTACCGCTTCTCCATCTCGTGGCCAAGGATCCAGCCTGACGGCCATGGCGCATTCAACGAACAGGGCCTGGACTTTTACGACCGCCTCATCGACCAGCTCCTTGAAGCAGGCATCTCCCCCATGGCTACGCTGTACCACTGGGACACCCCCCTGCCCCTGGAGCATCGTGGCGGGTGGATGAACCGGGCCACAGCGGAGAGGTTTGCCGACTATGCCGCCGCTGCCGGCCGGCGTTTTGGCGACCGCGTAGACCAATGGGTCACCCTCAACGAGCCTGCCTCGGTGGTGCTCAATGGCTACGCCCTGGGCGTTCACGCTCCCGGGCGCTACCTGCTGTTCGACGCTTTTCCCGCCGTCCACCACCAACTCCTGGCACACGGTCTTGCTGTGCAGGCGCTCCGCTCCGAAGGTGTCAGCGGCGGCATCGGCGTGACCAACCTGCACTCCCCCGTCCGGCCGGCCTCACGGAACATTGCCGACAGGGTGGCAGCAAAAGTCTTCGACCTTATGCTGAACCGGGTCTATGCCGACCCCATCCTGCTGGGCCGCTACCCGCGCTCCCTGCTGTTTGCCAAGCCGTGGATGCGCTCGTTCGGCAAGATACCCGAGGACGATCTTCGCACCATCCATCAGCCCGTGGACTTCTACGGCGTGAACTACTACCAGCCTGTGAAGGTAGCGGCCGGGCAGGGTACCGGTGAGGACCTCACCGTGCCGGCGGAAGCTATGGTTCGGATACCCGCCCACCAGGTGCCGTTCGACGAGTACGAGACAACGGGGTTCGGTTGGCCGGTGGCTCCAGAACATCTGGGGATCCTGCTGCGTGAGCTGAAGGACCGCTACCGGGATGCCCTGCCGCCCATCTACATCACGGAAAGTGGCGCCAGTTTCCCTGAACCCGAGCACGTCACTGGCCCTGTCCAGGACCAGCAGAGGATCGATTATCTTGCGCACCACATACGCAACGCACTGGAAGCGACGGCTCCCGGTGGAATTGCCGCAGACGTGGATCTGCGCGGCTATTACGTCTGGACGCTGATGGACAATTTTGAGTGGGCTGCAGGATACTCCCAGCGCTTTGGCCTGGTGCACATGGATTTCGACAGCCTGGAGCGCACCCCCAAGGAATCGTTCTACTGGTACCAGGCGCTCTGCCTTGCACGGAGGTCCGTGGCTGACTGAMTVENAVSVTELAGRIPPSFTLGVAAAAFQIEGALAADGRGPSGWDAFVEKPGVIVDGHSPAVACDHYNRSHEDVALMRELGIDSYRFSISWPRIQPDGHGAFNEQGLDFYDRLIDQLLEAGISPMATLYHWDTPLPLEHRGGWMNRATAERFADYAAAAGRRFGDRVDQWVTLNEPASVVLNGYALGVHAPGRYLLFDAFPAVHHQLLAHGLAVQALRSEGVSGGIGVTNLHSPVRPASRNIADRVAAKVFDLMLNRVYADPILLGRYPRSLLFAKPWMRSFGKIPEDDLRTIHQPVDFYGVNYYQPVKVAAGQGTGEDLTVPAEAMVRIPAHQVPFDEYETTGFGWPVAPEHLGILLRELKDRYRDALPPIYITESGASFPEPEHVTGPVQDQQRIDYLAHHIRNALEATAPGGIAADVDLRGYYVWTLMDNFEWAAGYSQRFGLVHMDFDSLERTPKESFYWYQALCLARRSVADPGPT0019165_875DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
D1-29_03470126hypothetical proteinATGGGATGGCTTATTTTTCTGATTGTGGCAGTGGCAGTAGTGGCCGGTGTGTTCTGGGCCAAGAAGCATTTCCGCAACGAGATTGACCGCGCCAAGCGCATCAACCGGGCGAACAAAAACCAATAGMGWLIFLIVAVAVVAGVFWAKKHFRNEIDRAKRINRANKNQNANANANANA
D1-29_034714380hypothetical proteinATGAGGGACGAATCGTACGAGGCAGGCTATCGCGCCGGGCACTTGCAAGGCTGGGTGGATGCCATGGCTACAGTTATCCCCGCCCGCCCGCCGGCATTTCATCCGGCCGCTGCTGCCCAACCCACTTCCGAACCAACTGCCCAACCCGCTGCGACGCCCCCGGCGGTTCCATGGCCATCCCCAGGACAGCGTGCAGTGCGGCAAGAGACCATTCGTCCCGCCGTCGCAGTACCGCCTTTGCCCTTCCAACCTCCGGCAGGCCAGGTTGGCACATTGCCAGTACCGGCTTTCGCGCCGCCTCCGGTAGAGACGCCCGCCGAGCGCCAGGCGCGTCGGGAAAGGCGGGACCGCCAGAACATCAATATCACCCTGTATGTGGCCAGCCTCCTCTTGGTGGCTGCCGCCGCGCTTTTCATCGGAGCCAACCTTCCGCCCATGTTCCGTTTCCTGGGCGTTTGCACGGTTACTGCCATGTTCTACGTAGCCGGCTTCGTTCTCCATGCACGGGTGGCGCGGCTCAAGCCTGCAGCCATTGCCTTCGCGGGGACCGGCTTGGCGCTGATTCCTGTGACAGGACTGGCGCTTTACAACTTCGTCCTGCAACAGGGGCCGATCGCCTGGCTTATCACCTCCCTGATCGGGACCGCAGCCTACGTGGTGGCAGCCGTCAGACTCGAGAGCCGGGTACTGGTCTATCTTTCCCTCACCTTTGCCGGCTCCTTGGCCTGGTCCGGCGTCAGTGTCCTCGGCGGCGCGTTGGCTTGGTACTTCGGGGCCATGATTGCAGTGGCGGTGCTGCTGACCGTCCTGGCGCTGTCACGCCCAGGCTGGCTTCCACCGGTATACGTCAGGCCCTTGGCGGTTCTCCACCCGCTTGTGGTTCCCACGGTGGCCCTGGCTGTGAATTGCGTCCCTCTGCTCCTGGGGGCAGCCGGGTATGCCTATATCATGGCTCTCTGCGGCGTCTACTTCGCCCTCATGGCTGCTGTGCCCGGGCGGCTGCGGCTGGCCAATGTCTACGCCGCGAGAATTTCCCTGACCCTCGCCGCCGCCGTTGGGGTCTGGCATCTGACCGGTCGCGGCTCTGATGCCTTGCTGACTGCCGCCGGCCTGCTCGCTGTCCAGGCAATGGCCGTAGCGCTCGCCCAGGTGCGGCTCGGGGCCTGGTTTCCCGCAGGGGCCCACGCAAGGGCTCACACAGGGGCTCACGCAGGGAATCACGTAAGGGATCAGGCAGCGCTGCAGGCAGGGGAGAACGGAACAGCCGGCGAGGCAAGGCGGGAAGACGGCCGCTGGTCCCTGGACGCTTTGTTGACTTTCGGAGGTCAACTGCTGGTGACGATGGGACTTGCCGTCCATGGCATCACTTCTGGACTTCTTGGCTATGGCGGTACAGCAGCGGGCGGCTCCCTTCCCTTGTGGGTACCGATGCTGCTGGCGCTTGGCACCAGCATGGTGCTGGCATGGCGGCTGGCCGGGCGGGCAGAGGGGGCTCCCGTTGCTGCCCTTGCCACGGCGGGGCTGTCGGGTTTCATCCTGGGCGCCTGGCCGCTGGCCGCAATGCTTGTCCTCGTGTCGGCGTTCTGGGCGGTCCGAGCAATCCCTGCTGCAGGCAGGGTGCGCGGGAGACTGGTGCTCTCCGCCCGTACTGCATTCACCCTGGCTGTGCCCTTTGCCGTTGCGGCCTTGACAGCAGACGTCCCGGAGCGGAGCGCGGGTATTCTCTTCGGGCTGCTGGTTGCACTGGTATGCCAGCAGTTGCTGACGGCACTCCTGCAGAGAAGGGGGGTGCGGACCTTGGCGCCGGAAGCGAGCCTTGCCGTTCTCGCCGCCGCAGGGTCGCTGTCTTTAGCCGGCCTTGCCTTGGCTGATTCAGCTCCGGACACCGGCCTGGCGGCATCCGGGATCGTGATCCAGCTGCTTGCCGCTCTGGCCATCGGCTGGCTGCTGATGCCGCGGCCTGCCTCCGAGCCTGACCGGAAACCCACGGCTTGGGAGGCTGTGCCCTTGGCGGTATCCGCCGTGGCCGTGAGTCTCGGTTTCCTGACCGTCTCCCACGTGGCCGGAAATGCTGCGCTGGTGCTGGTGGGTGGCTATTTGTTTGCCACAGCCCTTCGGCTACGCCAGCGTCAGCACCGCTGGGCGTACTTTTGGCTGGGACGCGGGGCAGCAACGCTCCTTGCTCTCACCGCCTTTGGTCAGCTGCAGCAGGAGGGCGTAGTGGTCACCGTTGCCGGGGAAGTGATCCGCCCTGCGTCGGTGATGATTGCCGTGCTGGCCCTGCAGCTGGCAATGCCCCTGATTGCGGTTGCCCGGCGACATGCCCCGCGATGGATCCTTGCAGATGCCGGTGCCGTCCTGTCCGTGCAGGTGCTGGCCTGTGGAAGCTTGGCGCTGCAGGATCCCGCTGGAGTACAGGCTATTTCCGGGGCAATTCTGGTGGCATTGTGCGCCGCTGGCTCCGCGTACGTCCTCAGGGCCGAAGCCGGGGCCGTCTGGATCGCACCCGTTGCCTTCGGCTCGCTGCTGGCCGTTACCGGAGGAGAGCTGCTGCAGGTTGAACTGCTGCTGTTCATTTTCGCTGTCTTCAGCACAGTGATGGTGGTGGCCGAACACCAGCGGGCGTACAAAGGGTGGTACTTCGTTGCGGCCAGAGTGCTGACGGCGGGCCTGGCGGTGCTGCTGAGTTACGACCTCACGGCTTCCCTCACCGCCGTTTCCCTGACCTTCGCGCTGGTCCTTGCCGCCCAGCACGTGATCCGCTGGTTCATGAGGAAACGGCTGGCCGACGTTCCGTTCCAGCAGGCCGCAGTGTGGATTACGTTGGCAGGACAGACCTTGCTGCCGCTGGCCTACGTCATCCAGGCCGCCCCTGCCCGGGCACTGACCCAGGACGACGACGGCGGCCGTTGGCTCGTTCTCCTGGAGCTGTTGCTGCTTCTGGTCTCCGCCCTTGGCGCACGGATCTTCTTCGCTGCGCGTGGTTCCGTATATTTCGGCCTTTACGCGGCATTGTTCGGCGTTCTCACGCTGGGCCCGCTGTTCAGCTTTGGTGGAAGGCCGCCCGCGTCACCGGTACTGGACCACACAGGGACGGCGCTGGTCCTGCTTTCGGGGGCGCTGCTGGCAACTTGTGCCGGTGTTGCAAGCCGCCGGCGAAACCTTACGCTTCCCGGCGCGGAACAATGGCTGTGGCTTTGGACCGCCGGCTCGTTCACACTTTCCGGTCTGGCTGTATCAACCGTGGCAGCAGACTGGCTGCCTGGTACGGCGTTGCTGGTTCTTGCGGCCGTGTGCTTTGCTGCCTCGCATCTGGAGGGGTATCCGTTCCTCTATCCACCCGCCGCGGCAGCGGGACTCGGCGGTGGTGTCGCCCTGGCCACGGCGGCCCTCCAAGGAACCTCCGGAGAGTGGGGCACGTTCCTGCCCTGGCTGGCCGGGGCAGGAACAGCCGCTGCCGCCTCGTACCTTGTAAGGCTCTACCGGCAGGACCAATTGCAGGGTGACCCCGTACGTCGTTGGTCCCTGGCCGGTACCGCGCTACTGGCTCTGTGCCTCGTTGCCGCGGCCGGCGCACCCGGCGACATCACGTCCTGGGCCAGCGCAGCCGCGCTGGCTGCCGCCGTCGGAATCTCCTGCTACGAAGCGCCGCCAAGGGCGCGGAGGATAACCGCGGAGGTGGGCGCGCTGGTGGTGACGGCTGCCCTGCAGCGCGCTGCGATCTTTGAGCTGGACGCTCAACCGGGCTATGACCGCCTCGCCGGGGGCATGCCCAACGCGTTCTGGGCGGCGCAGTGGTATGTGCTGTTGGCGTCGGGCCTGGGCGCCCTCCGCTACGGCGCGGGTCATCGGACCGCTGGGCGAATGCTGGTGGCTGCGGGTGCAGGACTTCTCTCGCTGAGCGGCCTTGGCGTGATTTTCGGCGGCACCGGCGGACAACAGTTGTGGGTCCTGGTCCTTCTGGCCATTCTCCTGATGGTGGGTCTTGGGCTGGGGGAGCGGCTGTTCGTCTGGTGGGGTGCTGCAGGAGTGGCCGTGTGTATCCTGTGGGCGATGCGCCATTACACCTTTGCGCTCCTGGCGCTCATCGCCGTCGGCCTGATTGCCTTTGCGGTGTGGCGACTGAACAGGGGAAGCGTCGCCAGCCAAGGCGAAGCCATGGGAAGCGGCTCCGGAGTAGACGGCGGCTGGCCTGAGCAGCCGGGGCCTGAGCGGCCGAGGCCTCAGCAGTCCGGCCCTCAGCCATCAGGACCAGTGCAGCCCGGTCCTCAGCTGCCCGCTCCTCAGCTGCACGCTCCTCAGCTGCCCGCTCCTCAGCAGCCGGATCAACAGCAGTCCCCGCCTCGGCTGCCGGACGGCGGGCCGTTCAGCCGGCCCTGAMRDESYEAGYRAGHLQGWVDAMATVIPARPPAFHPAAAAQPTSEPTAQPAATPPAVPWPSPGQRAVRQETIRPAVAVPPLPFQPPAGQVGTLPVPAFAPPPVETPAERQARRERRDRQNINITLYVASLLLVAAAALFIGANLPPMFRFLGVCTVTAMFYVAGFVLHARVARLKPAAIAFAGTGLALIPVTGLALYNFVLQQGPIAWLITSLIGTAAYVVAAVRLESRVLVYLSLTFAGSLAWSGVSVLGGALAWYFGAMIAVAVLLTVLALSRPGWLPPVYVRPLAVLHPLVVPTVALAVNCVPLLLGAAGYAYIMALCGVYFALMAAVPGRLRLANVYAARISLTLAAAVGVWHLTGRGSDALLTAAGLLAVQAMAVALAQVRLGAWFPAGAHARAHTGAHAGNHVRDQAALQAGENGTAGEARREDGRWSLDALLTFGGQLLVTMGLAVHGITSGLLGYGGTAAGGSLPLWVPMLLALGTSMVLAWRLAGRAEGAPVAALATAGLSGFILGAWPLAAMLVLVSAFWAVRAIPAAGRVRGRLVLSARTAFTLAVPFAVAALTADVPERSAGILFGLLVALVCQQLLTALLQRRGVRTLAPEASLAVLAAAGSLSLAGLALADSAPDTGLAASGIVIQLLAALAIGWLLMPRPASEPDRKPTAWEAVPLAVSAVAVSLGFLTVSHVAGNAALVLVGGYLFATALRLRQRQHRWAYFWLGRGAATLLALTAFGQLQQEGVVVTVAGEVIRPASVMIAVLALQLAMPLIAVARRHAPRWILADAGAVLSVQVLACGSLALQDPAGVQAISGAILVALCAAGSAYVLRAEAGAVWIAPVAFGSLLAVTGGELLQVELLLFIFAVFSTVMVVAEHQRAYKGWYFVAARVLTAGLAVLLSYDLTASLTAVSLTFALVLAAQHVIRWFMRKRLADVPFQQAAVWITLAGQTLLPLAYVIQAAPARALTQDDDGGRWLVLLELLLLLVSALGARIFFAARGSVYFGLYAALFGVLTLGPLFSFGGRPPASPVLDHTGTALVLLSGALLATCAGVASRRRNLTLPGAEQWLWLWTAGSFTLSGLAVSTVAADWLPGTALLVLAAVCFAASHLEGYPFLYPPAAAAGLGGGVALATAALQGTSGEWGTFLPWLAGAGTAAAASYLVRLYRQDQLQGDPVRRWSLAGTALLALCLVAAAGAPGDITSWASAAALAAAVGISCYEAPPRARRITAEVGALVVTAALQRAAIFELDAQPGYDRLAGGMPNAFWAAQWYVLLASGLGALRYGAGHRTAGRMLVAAGAGLLSLSGLGVIFGGTGGQQLWVLVLLAILLMVGLGLGERLFVWWGAAGVAVCILWAMRHYTFALLALIAVGLIAFAVWRLNRGSVASQGEAMGSGSGVDGGWPEQPGPERPRPQQSGPQPSGPVQPGPQLPAPQLHAPQLPAPQQPDQQQSPPRLPDGGPFSRPNANANANANA
D1-29_034721191tufCOG0050Elongation factor TuGTGGCAAAGGCAAAGTTCGAGCGGACTAAGCCGCACGTTAACATCGGCACCATTGGTCACGTTGACCACGGTAAGACGACGTTGACGGCCGCCATTTCCAAGGTGCTGTACGACAAGTACCCGACTCTCAACGAGCAGCGCGACTTCGCGTCTATTGACTCTGCTCCCGAAGAGCGTCAGCGCGGCATTACCATCAACATCTCCCACGTTGAGTACCAGACCGAGAAGCGCCACTACGCACACGTAGACGCTCCGGGTCACGCTGACTACATCAAGAACATGATCACCGGTGCTGCACAGATGGACGGTGCAATCCTCGTGGTTGCCGCCACTGACGGCCCGATGGCTCAGACCCGCGAGCACGTTCTGCTCGCCCGCCAGGTTGGTGTTCCCTACCTGCTGGTTGCTCTGAACAAGTCGGACATGGTTGACGACGAAGAGCTCCTGGACCTCGTTGAAATGGAAGTTCGTGAGCTCCTCAGCGCACAGGGCTTCGATGGCGACGACGCTCCGGTTGTTCGCGTTTCCGGCCTGAAGGCACTCGAAGGCGACCCCGTTTGGGTCAAGTCCGTCGAGGACCTCATGGAAGCTGTTGACAACTCGGTTCCGGACCCCGTTCGTGACCGCGACAAGCCCTTCCTGATGCCGATCGAAGACGTCTTCACCATCACTGGCCGTGGCACCGTTGTAACGGGCCGCGCCGAGCGTGGAACCCTCGCCATCAACTCCGAGGTCGAGATCGTCGGCATCCGCCCGGTCCAGAAGACCACGGTTACCGGTATCGAGATGTTCCACAAGCAGCTCGACGAAGCATGGGCCGGCGAGAACTGTGGCCTCCTGCTCCGCGGTCTGAAGCGTGATGACGTAGAGCGTGGCCAGGTTGTCGTCAAGCCGGGTTCCATCACCCCGCACACTGACTTCGAGGCTAACGTCTACATCCTCTCCAAGGACGAAGGCGGACGTCACAACCCGTTCTACTCCAACTACCGCCCGCAGTTCTACTTCCGCACCACGGACGTAACCGGCGTTATCACCCTGCCGGAAGGCACGGAAATGGTTATGCCTGGCGATAACACTGAGATGACCGTTGCGCTCATCCAGCCCATCGCCATGGAAGAGGGCCTCGGCTTCGCTATCCGCGAAGGCGGCCGCACGGTTGGTTCAGGACGCGTTACCAAGATCATCAAGTAGMAKAKFERTKPHVNIGTIGHVDHGKTTLTAAISKVLYDKYPTLNEQRDFASIDSAPEERQRGITINISHVEYQTEKRHYAHVDAPGHADYIKNMITGAAQMDGAILVVAATDGPMAQTREHVLLARQVGVPYLLVALNKSDMVDDEELLDLVEMEVRELLSAQGFDGDDAPVVRVSGLKALEGDPVWVKSVEDLMEAVDNSVPDPVRDRDKPFLMPIEDVFTITGRGTVVTGRAERGTLAINSEVEIVGIRPVQKTTVTGIEMFHKQLDEAWAGENCGLLLRGLKRDDVERGQVVVKPGSITPHTDFEANVYILSKDEGGRHNPFYSNYRPQFYFRTTDVTGVITLPEGTEMVMPGDNTEMTVALIQPIAMEEGLGFAIREGGRTVGSGRVTKIIKPGPT0015245_3423DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
D1-29_034732142fusACOG0480Elongation factor GGTGCAGTCCATCCGAAAGGGAGACACCGTGGCACAGGACGTGCTTACCGACCTTAGTAAGGTCCGCAACATCGGCATCATGGCCCACATTGATGCCGGCAAGACCACCACCACCGAGCGCATTCTGTTCTACACAGGTGTGAACCACAAGATTGGCGAAACGCACGACGGCGCTTCGACCACCGACTGGATGGAACAGGAAAAGGAACGCGGCATCACCATCACGTCTGCCGCCGTGACCTGCTTCTGGGAAAACAACCAGATCAACATCATCGACACCCCCGGCCACGTTGACTTCACCGTTGAGGTTGAGCGCTCCCTGCGCGTCCTCGACGGCGCTGTCGCTGTTTTCGATGGCAAGGAAGGCGTTGAGCCGCAGTCTGAGACCGTTTGGCGTCAGGCTGACAAGTACAACGTCCCCCGCATCTGCTTCGTCAACAAGATGGACAAGCTGGGTGCTGACTTCTACTTCACCGTAGACACCATCATCAGCCGCCTGGGCGCCAAGCCGCTCGTTATGCAGTTGCCCATCGGTGCGGAGAACGACTTTATCGGCGTCGTCGACCTGCTCTACATGCGTGCGCTCGTTTGGCCTGGCGACTCCAAGGGTGACGTCACCATGGGGGCCAAGTACGAAATCCAGGAGATCCCCGCGGACCTTCGCGAGAAGGCCGAGGAGTACCGCGCAACGCTCGTTGAGACCGTTGCCGAGGCTACCGAGGACCTCATGGAGAAGTACCTTGAGGGCGAAGAGCTGAGCATCGATGAGCTCAAGGCTGGCATCCGCAAGATGACCATCAACTCCGAGCTCTACCCGGTCTTCTGTGGCTCCGCCTTCAAGAACCGCGGCGTTCAGCCGATGCTGGACGCGGTTATTGACTACCTGCCGAACCCGCTTGACGTCCCGCCGATGATCGGTCACGATCCCCGCGACGAAGAGAAGGAACTGACGCGCAAGCCGTCTTCCGATGAGCCGTTCTCAGCTCTCGCGTTCAAGATCGCTGCACACCCGTTCTTCGGCCAGCTCACCTTCATCCGCGTGTACTCCGGTCACATTGAAGCGGGCGCCCAGGTGGTCAACTCCACCAAGGGCAAGAAGGAGCGCATCGGCAAGCTGTTCCAGATGCACGCCAACAAGGAAATGCCCGTTGAGGGCGCTACCGCCGGCCACATCTACGCAGCCATCGGGCTCAAGGACACCACCACGGGTGACACCCTGTGCGATTCCAGCAACCAGATCGTGCTCGAGTCCATGAGCTTCCCGGAGCCCGTGATCTTCGTTGCCATCGAACCGAACACCAAGGGTGACCAGGAGAAGCTCTCCACGGCCATCCAGAAGCTCTCCGCCGAGGACCCGACCTTCCAGGTCTCCCTTGACGAAGACACCGGACAGACCATCATCGCAGGTATGGGCGAGCTCCACCTGGACATCCTGGTGGACCGCATGCGCCGCGAATTCAAGGTCGAGGCAAACGTCGGCAAGCCGCAGGTGGCTTACCGCGAAACCATCAAGCGCACTGTAGAGCGTCACGACTACACGCACAAGAAGCAGACCGGTGGTTCCGGCCAGTTCGCAAAGATCCAGATCGCAATTGCGCCCCTGGACACCGCGGACGGCGAGCTCTACGAGTTCGAAAACAAGGTCACCGGTGGCCGTATTCCGCGCGAATACATCCCGTCCGTTGACGCTGGCATCCAGGATGCATTGAACGACGGCGTCCTGGCCGGCTACCCGGTTGTTGGCATCAAGGCCACGCTGATTGACGGCGCGTACCACGATGTTGACTCCTCGGAAATGGCGTTCAAGATCGCCGGGCGTATGGCTTTCAAGGAAGCCGCACGCAAGGCGAACCCTGTCCTGCTCGAACCGCTGATGGATGTCGAGGTCCGCACCCCTGAGGAATACATGGGTGAAGTTATCGGTGACCTCAACTCCCGCCGTGGCCAGATGCAGTCCATGGAAGATGCACAGGGTGTCAAGGTCATCCGTGCGCACGTCCCGCTGTCCGGCATGTTCGGCTACATCGGTGACCTGCGCTCCAAGACCCAGGGCCGTGCTGTTTTCTCCATGACCTTCAGCAGCTACGCCGAGGTCCCGAAGGCAGTTGCCGACGAGATCATCCAGAAGAACCGCGGCGAATAGMQSIRKGDTVAQDVLTDLSKVRNIGIMAHIDAGKTTTTERILFYTGVNHKIGETHDGASTTDWMEQEKERGITITSAAVTCFWENNQINIIDTPGHVDFTVEVERSLRVLDGAVAVFDGKEGVEPQSETVWRQADKYNVPRICFVNKMDKLGADFYFTVDTIISRLGAKPLVMQLPIGAENDFIGVVDLLYMRALVWPGDSKGDVTMGAKYEIQEIPADLREKAEEYRATLVETVAEATEDLMEKYLEGEELSIDELKAGIRKMTINSELYPVFCGSAFKNRGVQPMLDAVIDYLPNPLDVPPMIGHDPRDEEKELTRKPSSDEPFSALAFKIAAHPFFGQLTFIRVYSGHIEAGAQVVNSTKGKKERIGKLFQMHANKEMPVEGATAGHIYAAIGLKDTTTGDTLCDSSNQIVLESMSFPEPVIFVAIEPNTKGDQEKLSTAIQKLSAEDPTFQVSLDEDTGQTIIAGMGELHLDILVDRMRREFKVEANVGKPQVAYRETIKRTVERHDYTHKKQTGGSGQFAKIQIAIAPLDTADGELYEFENKVTGGRIPREYIPSVDAGIQDALNDGVLAGYPVVGIKATLIDGAYHDVDSSEMAFKIAGRMAFKEAARKANPVLLEPLMDVEVRTPEEYMGEVIGDLNSRRGQMQSMEDAQGVKVIRAHVPLSGMFGYIGDLRSKTQGRAVFSMTFSSYAEVPKAVADEIIQKNRGENANANANANA
D1-29_03474471rpsGCOG004930S ribosomal protein S7ATGCCTCGCAAGGGTCCGGCCCCCAAGCGGCCGCTCGTACTAGATCCCGTTTACGGCTCCCCGCTGGTCACCCAGCTCATCAACAAGGTGCTGGTTGACGGCAAGAAGTCCACTGCCGAGCGTATCGTTTACGGTGCACTCGAAGGCGCCCGCGCCAAGTCCGGCGGCGATCCCGTTGCCGCCCTCAAGAAGGCCATGGAGAACGTCAAGCCTTCCCTCGAGGTCCGCTCCCGCCGTGTTGGTGGCGCAACCTACCAGGTTCCGGTTGAGGTCAAGCCGGGCCGCTCCACCGCCCTCGCACTGCGCTGGCTGGTTGGCTACTCCAAGGCCCGCCGCGAGAAGACCATGACCGAGCGCCTCCAGAACGAAATCCTGGATGCCTCCAACGGTCTCGGAGCCGCTGTGAAGCGTCGCGAAGATACCCACAAGATGGCCGAGTCCAACAAGGCCTTCGCACACTACCGCTGGTAAMPRKGPAPKRPLVLDPVYGSPLVTQLINKVLVDGKKSTAERIVYGALEGARAKSGGDPVAALKKAMENVKPSLEVRSRRVGGATYQVPVEVKPGRSTALALRWLVGYSKARREKTMTERLQNEILDASNGLGAAVKRREDTHKMAESNKAFAHYRWNANANANANA
D1-29_03475375rpsL30S ribosomal protein S12GTGCCTACGATTAACCAGCTGGTCCGCAAGGGCCGCACGCCTAAGGTCAAGAAGACCAAGGCTCCCGCGCTTAACGGCAGCCCGATGCGCCGCGGTGTCTGCACCCGCGTTTACACCACCACCCCGAAGAAGCCGAACTCGGCTCTCCGTAAGGTGGCCCGTGTGCGCCTCAACGGTGGCGTTGAAGTCACCGCTTACATCCCCGGTGTAGGCCACAACCTGCAGGAGCACTCCATTGTGCTCGTTCGCGGTGGCCGCGTGAAGGACCTTCCGGGTGTCCGCTACAAGATCGTCCGTGGCGCCCTTGATACCCAGGGTGTAAAGAACCGTAAGCAGGCCCGCAGCCGCTACGGCGCAAAGATGGAGAAGAAGTAAMPTINQLVRKGRTPKVKKTKAPALNGSPMRRGVCTRVYTTTPKKPNSALRKVARVRLNGGVEVTAYIPGVGHNLQEHSIVLVRGGRVKDLPGVRYKIVRGALDTQGVKNRKQARSRYGAKMEKKNANANANANA
D1-29_034763900rpoCCOG0086DNA-directed RNA polymerase subunit beta'ATGTCCAGCGAATCCTCCTTCGGCCTCATGCAGATCGGCCTCGCCACCGCGGAAGACATCCGTGGCTGGTCTTACGGCGAGGTTAAGAAGCCGGAAACCATCAACTACCGCACGCTCAAGCCCGAGAAGGACGGCCTCTTCTGCGAGAAGATCTTCGGCCCTTCCCGTGACTGGGAATGCTACTGCGGTAAGTACAAGCGCGTGCGCTTCAAGGGCATCATTTGCGAGCGGTGTGGCGTTGAGGTCACCCGTGCAAAGGTCCGCCGTGAGCGCATGGGCCACATCGAGCTGGCCGCCCCGGTCACTCACATCTGGTACTTCAAGGGTGTTCCTTCCCGTCTGGGCTACCTCCTTGACCTGGCGCCGAAGGACCTCGAAAAGGTTATCTACTTCGCTGCCTACATGATCACCAGCGTCGACGCCGACAGCCGCCACGAGGAACTGCCCAACCTGCAGGTTGAGCACGACATCGAGAAGAAGCAGCTGATCGACAACCGCGACTCCGACATCGCCACGATCGCCCGTGACCTCGAAAATGAGATCGCGCGCCTCGAGGGTGAAGGTGCCAAGGCTGCCGACAAGAAGAAGGCCCGCGACTCCGCTGACCGCCAGATGGCCAACGTGCGCAAGCGTGCCGACGCCGAGATCGAGCGCCTCGAGCAGGTCTGGGACCGCTTCAAGAACCTCAAGGTCGCCGACCTTGAAGGCGACGAAGGCCTGTACCGCGAGCTGCGTGACCGTTACGGCATGTACTTCGAAGGCTCCATGGGTGCCGAGGCCATCAAGAAGCGCCTTGAGAGCTTCGACATGCAGGCCGAGTCTGACCTGCTCCGCGACATCATCGCCAACGGCAAGGGCCAGCGCAAGACCCGCGCCCTGAAGCGCCTGAAGGTGGTCAACGCGTTCCTGACCACCAACAACAGCCCGCTCGGCATGGTACTTGACGCCGTCCCGGTGATCCCGCCGGAACTGCGCCCGATGGTCCAGCTGGACGGTGGCCGGTTCGCGACCTCCGACCTCAACGACCTCTACCGTCGCGTGATCAACCGCAACAACCGCCTCAAGCGCCTGCTTGACCTCGGTGCTCCGGAGATCATCGTCAACAACGAGAAGCGCATGCTTCAGGAAGCTGTTGACAGCCTCTTCGACAACGGCCGCCGCGGCCGTCCGGTCACCGGGCCCGGCAACCGTCCGCTGAAGTCCCTGAGCGACATGCTCAAGGGCAAGCAGGGCCGTTTCCGCCAGAACCTCCTTGGCAAGCGCGTTGACTACTCCGGCCGTTCGGTCATCGTCGTCGGCCCGCAGCTGAAGCTGCACCAGTGTGGTCTGCCCAAGCAGATGGCGCTGGAGCTCTTCAAGCCGTTCGTGATGAAGCGCCTGGTTGACCTCAACCACGCGCAGAACATCAAGTCGGCCAAGCGCATGGTCGAGCGCTACCGTCCGCAGGTTTGGGACGTGCTCGAGGAAATCATCACCGAACACCCGGTGCTGCTGAACCGTGCACCTACCCTGCACCGCCTCGGCATCCAGGCGTTCGAACCGCAGCTTGTTGAAGGCAAGGCAATCCAGCTTCACCCGCTGGTTTGTGGCGCGTTCAACGCAGACTTCGACGGCGACCAGATGGCAGTCCACCTGCCGCTGAGCCCCGAAGCCCAGGCTGAGGCACGCATCCTGATGCTCTCCTCGAACAACATCCTGAAGCCGTCCGATGGCCGCCCGGTGACCCTGCCTTCGCAGGATATGATCATCGGCCTCTACCACCTGACCACCAAGCGTGTCGGTTCAGCCGGTGAGGGCCGCGTGTTCGGTTCTGTCGCGGAAGCCATCATGGCTTACGACCTGCACGAACTGCACCTGAACTCCAAGGTCAAGATCCGGCTTGAGGGCTTTGTCCCTTACCCCGGCTGGGAAGCTCCGGAGGACTGGGAGCAGGGTCAGCCTGCCCTCGTTGAAACCTCCCTGGGCCAGGTCCTCTTCAACGAGACCCTGCCCGAGGACTACCCGTGGGTTGAGGACGTTGCCGACAAGGGCGAACTGTCCCGCATCGTCAACGACCTTGCCGAGCGCTACCCGAAGGTTGTTACGGCCGCAACGCTGGACAACCTAAAGGATGCCGGTTTCTACTGGGCCACCCGCTCGGGCGTGACCGTTGCCATCTCGGACATCGAGGTACCCAAGGACAAGCCGGCCATCCTCGCCGGTTACGAGACCATGGCTGCCAAGATCCAGGGCCAGTACGACAAGGGCCTGATCGACGACGACGAGCGTCGCCAGGAACTGATCGAGATCTGGAACAAGGCAACCAACGAGATCGCCCAGGCGATGCGCGACAGCCTGTCGCCGATGAACACCATCAACCGCATGGTGTCCTCGGGTGCACGTGGTAACTGGATGCAGGTCCGTCAGATCGCGGGTATCCGTGGCCTGGTGGCCAACCCCAAGGGTGAAATTATCCCGCGTCCCATCAAGTCCTCCTACCGTGAGGGCCTGTCGGTGCTGGAATACTTCATCGCCACGCACGGTGCCCGTAAGGGTCTGGCTGACACCGCCCTGCGTACCGCCAACTCGGGTTACCTGACCCGTCGTCTGGTGGACGTGTCCCAGGACGTCATCGTCCGTGAAGAGGACTGCGGTACGGAGCGTGGGCTGGTGACGGCCATCGCCGTCGCTGACTCCAACGGTGAACTCGTCCTGGACGAGAACGTCGAGAACAGCGCTTACGCCCGTACGCTCGCCGTTGATGTTGTTGACTCCAAGGGCAATGTCCTTGCAGCCGGCGGCACCGACTGCGGCGACGTCGTGATCGACGAGCTCTTCAAGGCAGGCATCACCGAGGTCAAGGTCCGCTCCGTACTCACCTGTGAGTCCAGCGTCGGCACCTGCGCCCTCTGCTACGGCCGTTCGCTGGCAACAGGCAAGACCGTGGACATCGGTGAGGCAGTCGGCATTATTGCTGCACAGTCCATCGGTGAGCCGGGTACCCAGCTGACCATGCGTACGTTCCACACCGGTGGTGCTGTTTCCGCCAGCGGTGGCGACGACATCACCCAGGGTCTGCCCCGTATCCAGGAGCTCTTCGAAGCCCGTACTCCGAAGGGTGTTGCACCGATTGCTGAAGCAGCCGGCCGCATCGCCATCGAAGAGTCCGAGCGCCAGATGCGCCTGGTCATCACTCCGGATGACGGATCAGAAGAGATCGCTTACCCGGTACTGCGGCGTTCACGCCTCCTCATCGAGGATGGCGATCACGTCACGGTGGGCCAGAAGCTCATCAACGGTCCGGTGGATCCCAAGCAGGTTCTGCGCATCATGGGTCCCCGTGCCGCGCAGAAGTTCCTGGTGGACGAGGTCCAGGGCGTGTACCGCAGCCAGGGCATCGGTATCCACGACAAGCACGTCGAGGTTATCGTCCGCCAGATGCTGCGCCGCGTCACGGTCATCGAGTCCGGCGAATCGGATCTGCTGCCCGGCGAGCTCGCCGAGCGCAGCCGCTTCGAGGATGCCAACCGCCGCGTTGTGTCCGAGGGCAAGACTCCGGCTTCCGGGCGTCCTGAACTCATGGGCATCACCAAGGCTTCCCTGGCCACCGAGTCCTGGCTGTCGGCAGCTTCCTTCCAGGAGACCACCCGCGTCCTGACGCAGGCGGCCATGGAAGGCAAGAGCGATCCGCTGCTCGGCCTCAAGGAGAACGTCATCATCGGTAAGCTGATCCCGGCCGGCACGGGTCTCCCGCGCTACACCGAGGTCACCGTGGAGCCCACTGAAGAAGCAAAGGCCAACCTGTTCACCGGCCCCAGCGCATTCAGTGACTTCTCGTACGACACCCTCGGAGGTGACGGAGCTCCCGAGTTCCACGCCATCCCGTTGGATGACTACGATCTGGGCAGCGACTTCCGCTAGMSSESSFGLMQIGLATAEDIRGWSYGEVKKPETINYRTLKPEKDGLFCEKIFGPSRDWECYCGKYKRVRFKGIICERCGVEVTRAKVRRERMGHIELAAPVTHIWYFKGVPSRLGYLLDLAPKDLEKVIYFAAYMITSVDADSRHEELPNLQVEHDIEKKQLIDNRDSDIATIARDLENEIARLEGEGAKAADKKKARDSADRQMANVRKRADAEIERLEQVWDRFKNLKVADLEGDEGLYRELRDRYGMYFEGSMGAEAIKKRLESFDMQAESDLLRDIIANGKGQRKTRALKRLKVVNAFLTTNNSPLGMVLDAVPVIPPELRPMVQLDGGRFATSDLNDLYRRVINRNNRLKRLLDLGAPEIIVNNEKRMLQEAVDSLFDNGRRGRPVTGPGNRPLKSLSDMLKGKQGRFRQNLLGKRVDYSGRSVIVVGPQLKLHQCGLPKQMALELFKPFVMKRLVDLNHAQNIKSAKRMVERYRPQVWDVLEEIITEHPVLLNRAPTLHRLGIQAFEPQLVEGKAIQLHPLVCGAFNADFDGDQMAVHLPLSPEAQAEARILMLSSNNILKPSDGRPVTLPSQDMIIGLYHLTTKRVGSAGEGRVFGSVAEAIMAYDLHELHLNSKVKIRLEGFVPYPGWEAPEDWEQGQPALVETSLGQVLFNETLPEDYPWVEDVADKGELSRIVNDLAERYPKVVTAATLDNLKDAGFYWATRSGVTVAISDIEVPKDKPAILAGYETMAAKIQGQYDKGLIDDDERRQELIEIWNKATNEIAQAMRDSLSPMNTINRMVSSGARGNWMQVRQIAGIRGLVANPKGEIIPRPIKSSYREGLSVLEYFIATHGARKGLADTALRTANSGYLTRRLVDVSQDVIVREEDCGTERGLVTAIAVADSNGELVLDENVENSAYARTLAVDVVDSKGNVLAAGGTDCGDVVIDELFKAGITEVKVRSVLTCESSVGTCALCYGRSLATGKTVDIGEAVGIIAAQSIGEPGTQLTMRTFHTGGAVSASGGDDITQGLPRIQELFEARTPKGVAPIAEAAGRIAIEESERQMRLVITPDDGSEEIAYPVLRRSRLLIEDGDHVTVGQKLINGPVDPKQVLRIMGPRAAQKFLVDEVQGVYRSQGIGIHDKHVEVIVRQMLRRVTVIESGESDLLPGELAERSRFEDANRRVVSEGKTPASGRPELMGITKASLATESWLSAASFQETTRVLTQAAMEGKSDPLLGLKENVIIGKLIPAGTGLPRYTEVTVEPTEEAKANLFTGPSAFSDFSYDTLGGDGAPEFHAIPLDDYDLGSDFRNANANANANA
D1-29_034773519rpoBCOG0085DNA-directed RNA polymerase subunit betaTTGGTCGCCTCGAGCACCTCTAATGTAAACAACACTTCAACCGCTATCGCATCAGACACCACTGATGGTGCCACTCGCCGGCTCTCATTCGCAAAGATTCACGAACCTCTTGACGTTCCGAATCTTCTTGCCCTGCAGACGGACAGCTTCGACTGGCTCGTCGGAAACGAACGCTGGCAGGCGCGCGTAGCGAAGGCCGTCGAAGAAAACGATCTCAGCGTCGCCACCACGTCCGGACTGTCGGACATCTTCGAAGAGATCTCCCCGATTGAGGACTTCCAGGGCACCATGTCCCTGAGCTTCTCTGATCCGGAGTTCGCTGACCCGAAGTACACCATGGCCGAGTGCAAGGACCGGGACGCAACGTACTCGGCTCCGCTGTACGTCAAGGCCGAGTTCATGAACAACAACACGGGCGAAATCAAGCAGCAGACCGTGTTCATGGGCGACTTCCCGCTGATGACCGAGAAGGGCACCTTCGTCGTCAACGGCACCGAGCGTGTTGTCGTCTCCCAGCTGGTCCGTTCACCGGGCGCGTATTTCGAGCGCACCGCTGACAAGACCAGCGACAAGGACATCTTCACTGCCAAGATCATCCCGTCCCGCGGTGCATGGTTTGAGCTTGAAATCGACAAGCGCGACCAGGTCGGCGTCCGCCTCGACCGCAAGCGCAAGCAGTCCGTCACGGTCCTGCTGAAGGCCCTCGGCTGGACCGAAGGCCAGATCCTGGAAGAGTTCGGCCAGTACGACTCCATGCGCGCAACGCTGGAGAAGGACGCCACCGAAACCCGCGAAGACGCCTTGCTGGACATCTACCGGAAGCTTCGACCGGGCGAGCCGCCCACAGTCGAGGCTGCCCAGTCCCTGCTGGACAACCTGTACTTCAACTCCAAGCGCTACGATCTGGCCAAGGTCGGCCGTTACAAGATCAACCGCAAGCTTGGCATCGACCGCTCCCTTGGTGACAAGGAAGCTTCGGTCCTGCACGTTGAAGACATCGTCGCCATGATCAAGTTCCTGGTTGCCCTGCACGCCGGCGAGAAGACCCTCACGGGTAAGCGCGACGGCCAGGACCACGAGCTGCGCGTCGAGATCGATGACATCGACCACTTCGGCAACCGCCGCATCCGCGCCGTCGGCGAGCTCATCGAGAACCAGGTCCGCACCGGCCTGTCCCGTATGGAGCGCGTTGTCCGCGAGCGTATGACCACCCAGGACGTCGAGGCCATCACGCCGCAGACCCTGATCAACATCCGCCCCGTGGTTGCAGCGATCAAGGAGTTCTTCGGAACATCCCAGCTGTCACAGTTCATGGACCAGAACAACCCGCTGTCGGGTCTGACCCACAAGCGCCGTCTGTCCGCGCTTGGTCCGGGTGGTCTGTCCCGTGACCGCGCAGGCATGGAAGTTCGAGACGTTCACCCGTCCCACTACGGACGTATGTGCCCCATCGAAACCCCTGAAGGCCCGAACATTGGTCTGATCGGTTCGCTGGCATCCTACGGACGCATCAACCCCTTCGGCTTCATCGAGACGCCGTACCGCCTTGTGTCCGAGGGCGTTGTCTCTGACGAGGTCCAGTACCTCACGGCCGACGACGAAGCAGAGGTCCTGATCGCACAGGCCAACGCTCCGCTGGACGAGAACAAGAAGTTCGCCGAAGAGACCGTCCTGGTCCGTGCCCGTGGTGGTGGAGGCGAGCCCGTTCTGGTTCCCGCCGCCGACGTCGAGTTCATGGACGTTTCCCCGCGCCAGATGGTGTCCGTGGCTACCGCCCTGATCCCGTTCCTTGAGCATGACGATGCAAACCGCGCACTCATGGGTGCCAACATGCAGCGCCAGGCCGTGCCGCTGGTCCGTTCCGAGGCTCCGTTCGTGGGCACCGGCATGGAGCGCGCAGCCGCCGTCGACGCCGGTGACGTTGTCATCGCGAAGAAGCCGGGTGTAGTCACCGAGGTCTCCGCTGAGCTGGTCATCATGCTCAACGACGACGGCACGGAAACCAACTACCGCATCAACAAGTTCGCCCGTTCCAACCAGGGCAACTGCTACAACCACCGCGTACTGGTGAGCGAAGGCCAGCGCCTCGAGGTCGGCGGCATCATCGCTGACGGCCCGGCAACGGACCAGGGCGAACTCGCCCTTGGTAAGAACCTGCTCGTGGCATTCATGTCATGGGAAGGCCACAACTTCGAGGACGCCATCATCCTCTCGCAGCGCATCGTTGCCGAGGACGTCCTTTCCTCCATCCACATCGAGGAGCACGAGATCGATGCCCGCGACACCAAGCTTGGTGCCGAGGAAATCACCCGTGACATCCCCAACGTGTCCGAGGAAGTCCTTGCAGGCCTGGACGAGCGCGGCATCATCCACATCGGTGCTGAGGTTGAAGCCGGCGACATCCTGGTCGGAAAGGTCACCCCTAAGGGTGAAACCGAACTGACCCCGGAAGAGCGCCTGCTGCGTGCCATCTTCGGTGAGAAGTCCCGCGAAGTGCGTGACACCTCGCTGAAGGTTCCGCACGGCGAGTCCGGCACCGTCATCGGCGTCCGGGTCTTTGACCGCGACAACGACGACGAACTGCCCCCGGGCGTCAACCAGCTGGTCCGCGTCTACGTGGCCGCCAAGCGCAAGATCACCGACGGCGACAAGCTCGCCGGCCGCCACGGCAACAAGGGTGTTATCTCCAAGATCCTGCCGATCGAGGACATGCCCTTCCTTGCCGACGGTACCCCCGTTGACATTGTCCTGAACCCGCTGGGTGTTCCGGGCCGTATGAACGTCGGCCAGGTGCTGGAAACGCACCTTGGCTGGGTTGCCAAGACCGGCTGGAAGATCGAAGGCGAGCCCGAGTGGGTCAAGCAGCTGCCGAACCTGCCGCGCGAGAGTGGCCAGACCACTGTTGCAACGCCGGTGTTCGACGGTGCCCGTGAAGAAGAAATCACTGGCCTGCTGGACTCCACCAACGTGACCCGTGACGGTGACCGCCTGATCAACTCCTCAGGCAAGACGCGCCTGTTCGACGGCCGCTCCGGCGAGCCGTTCCCGGATCCGATCTCGGTCGGCTACATGTACATCCTGAAGCTCCACCACCTGGTGGACGACAAGATCCACGCCCGCTCCACCGGCCCGTACTCCATGATTACCCAGCAGCCGCTGGGTGGTAAGGCACAGTTCGGTGGCCAGCGCTTCGGTGAAATGGAAGTGTGGGCGCTCGAAGCTTACGGCGCCGCCTACACGCTCCAGGAACTCCTCACGATCAAGTCCGATGACATCCATGGTCGCGTGAAGGTCTATGAAGCAATCGTCAAGGGCGAGAACATCCCCGAGCCGGGCGTTCCTGAGTCCTTCAAGGTCTTGATCAAGGAAATGCAGTCGCTGTGCCTGAACGTGGAAGTACTTTCCACGGACGGAACCACAATTGAAATGCGTGACTCTGATGACGCAGTCTTCACGGCTGCGGAAGAACTGGGCATCGATCTGTCTCGTGCAGAGCCCAGTTCCGTAGAAGAGGTCTAGMVASSTSNVNNTSTAIASDTTDGATRRLSFAKIHEPLDVPNLLALQTDSFDWLVGNERWQARVAKAVEENDLSVATTSGLSDIFEEISPIEDFQGTMSLSFSDPEFADPKYTMAECKDRDATYSAPLYVKAEFMNNNTGEIKQQTVFMGDFPLMTEKGTFVVNGTERVVVSQLVRSPGAYFERTADKTSDKDIFTAKIIPSRGAWFELEIDKRDQVGVRLDRKRKQSVTVLLKALGWTEGQILEEFGQYDSMRATLEKDATETREDALLDIYRKLRPGEPPTVEAAQSLLDNLYFNSKRYDLAKVGRYKINRKLGIDRSLGDKEASVLHVEDIVAMIKFLVALHAGEKTLTGKRDGQDHELRVEIDDIDHFGNRRIRAVGELIENQVRTGLSRMERVVRERMTTQDVEAITPQTLINIRPVVAAIKEFFGTSQLSQFMDQNNPLSGLTHKRRLSALGPGGLSRDRAGMEVRDVHPSHYGRMCPIETPEGPNIGLIGSLASYGRINPFGFIETPYRLVSEGVVSDEVQYLTADDEAEVLIAQANAPLDENKKFAEETVLVRARGGGGEPVLVPAADVEFMDVSPRQMVSVATALIPFLEHDDANRALMGANMQRQAVPLVRSEAPFVGTGMERAAAVDAGDVVIAKKPGVVTEVSAELVIMLNDDGTETNYRINKFARSNQGNCYNHRVLVSEGQRLEVGGIIADGPATDQGELALGKNLLVAFMSWEGHNFEDAIILSQRIVAEDVLSSIHIEEHEIDARDTKLGAEEITRDIPNVSEEVLAGLDERGIIHIGAEVEAGDILVGKVTPKGETELTPEERLLRAIFGEKSREVRDTSLKVPHGESGTVIGVRVFDRDNDDELPPGVNQLVRVYVAAKRKITDGDKLAGRHGNKGVISKILPIEDMPFLADGTPVDIVLNPLGVPGRMNVGQVLETHLGWVAKTGWKIEGEPEWVKQLPNLPRESGQTTVATPVFDGAREEEITGLLDSTNVTRDGDRLINSSGKTRLFDGRSGEPFPDPISVGYMYILKLHHLVDDKIHARSTGPYSMITQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQELLTIKSDDIHGRVKVYEAIVKGENIPEPGVPESFKVLIKEMQSLCLNVEVLSTDGTTIEMRDSDDAVFTAAEELGIDLSRAEPSSVEEVNANANANANA
D1-29_03478447hypothetical proteinTTGAAACGAATCCTCGCCGCCGCGGCCGTTGCCGGCGTCGCAGCCCTGATCGCGTGTTCCGTCTCCACCCCCGTCCCGGAAACCACCACATCTGCCGCTGAAGCAACGCCGTCGAAATCCTCCGGACCAAGGACGACGACGGCGGGAGGCGGGGGCGTTAAGGCCGCCTGTGAGCTGTTCAACATGCTCCATAGCGACTACAAGGCTGTGCCAAAAAACGACGTGAAGGGGTACCAGGGCATCTATCTCGAATCGGAGGAGGCAAAGGAGACGGTCCCGAAAGACGTCTACGGTCTTTTTGCTGCCCTAAGCCTTATCGCCATAGACCATGCGTCGGCCGCGGGACAGGGCGGCGGGCCGAAGCAGACATCCAAGGATGCCGTCGCGGACGCCGTTGACGCTTACTCCGGACCCTGTACGGCCGCGGGTGTCGCACTTAAACTCTGAMKRILAAAAVAGVAALIACSVSTPVPETTTSAAEATPSKSSGPRTTTAGGGGVKAACELFNMLHSDYKAVPKNDVKGYQGIYLESEEAKETVPKDVYGLFAALSLIAIDHASAAGQGGGPKQTSKDAVADAVDAYSGPCTAAGVALKLNANANANANA
D1-29_034791200COG0183putative acetyl-CoA acetyltransferaseATGGGCAACTTCGCAGACAACACTGACGTTGTCATCCTGGCAGCAGCGCGCACACCGCAGGGCCGTCTGAACGGGCAACTGGCGAGTTTCACCGCCGTCGAACTCGGTGCGCACGCCATCAAGGCTGCCCTTGCAGCAAGTGGAGTGGATGCCGGCCGCGTTGATGCCGTCATCATGGGACAGGTGCTCCAGGCCGGGGCCGGCCAGAACCCGGCCCGGCAAAGCGCCATCGGCGCGGGCATCGGCTGGAATGTTCCCACGGTCACCATCAATAAGGTCTGCCTCTCCGGCCTGACCGCGGTGATCGACGCCGCCAGGATGATTCGCAGTGGCGACGCCACCGTGGTGGTGGCGGGCGGCCAGGAATCCATGACCAGGGCACCACATCTGCTCCCGGGTTCCCGGCAGGGCTGGACGTACGGTGCGATCCAGGCGCTTGACGTCGCCGCCCATGACGGCCTCACCGACGCCTTCGACGGGCAGTCCATGGGCCTGTCCACCGAGACGAAGAACCTGACACTGGGCATTGACCGAACTGCCCAGGACAACGTGGCAGCCCACTCCCACCAGCGCGCTGCCATAGCGTCAAAGAACGGCGTGTTCGACGACGAGATCTCGCCCATCAGTGTTAAGCAGCGCAAAGGCGACCCCCTGCTGGTTTCCACTGACGAGGGCGTGCGGCCTGATACCACGGTGGAATCCCTCGCCGGACTGCGCGCAGCCTTTGTCAGTGACGGAACCATCACCGCGGGCAATTCCTCTCCCCTGTCCGACGGCGCCTCCGCCCTGGTGCTGACCAGCCGCGCCTTCGCGGAGGAGAATGGCCTCGAATACCTCGCGGTGGTCGGCAAGCCCGGGCAGGTTGCAGGCCCTGACAACTCCCTTCACTCCCAGCCATCGAACGCGATCAAAAACGCGCTGGCACGGGCCGGCTGGAGTATGGCCGACCTTGACTTCATCGAAATCAACGAAGCGTTCGGTTCTGTTGCCGTGCAGTCCCTCAAAGACCTGGACTACCCACTGGAGCAGTGCAACATCCATGGCGGAGCAATCGCCCTCGGCCACCCGATTGGGGCGTCCGGTGCCCGGCTGGCCCTGCATGCCGCCCATGAACTGAAACGGCGGGGCAGCGGCAAAGCCGCCGTGTCGCTCTGCGGTGGCGGCGGGCAGGGCGAAGCGCTCCTGCTGTACCGGGACTAAMGNFADNTDVVILAAARTPQGRLNGQLASFTAVELGAHAIKAALAASGVDAGRVDAVIMGQVLQAGAGQNPARQSAIGAGIGWNVPTVTINKVCLSGLTAVIDAARMIRSGDATVVVAGGQESMTRAPHLLPGSRQGWTYGAIQALDVAAHDGLTDAFDGQSMGLSTETKNLTLGIDRTAQDNVAAHSHQRAAIASKNGVFDDEISPISVKQRKGDPLLVSTDEGVRPDTTVESLAGLRAAFVSDGTITAGNSSPLSDGASALVLTSRAFAEENGLEYLAVVGKPGQVAGPDNSLHSQPSNAIKNALARAGWSMADLDFIEINEAFGSVAVQSLKDLDYPLEQCNIHGGAIALGHPIGASGARLALHAAHELKRRGSGKAAVSLCGGGGQGEALLLYRDPGPT0008320_5262DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_03480495hypothetical proteinGTGGGTGAAGCAGCAAGCCCACGCGACGGCGTCGGACGCGGGCGTTTCCTTGCAGACGCCCGCGCCCGTGGGCTGGAGGTCCGGCTGGTGGAGCGCCTGGCGGCCAACAGCCTTGAGGAAGCAGCACGCATTCTGGGCATCACGCCTGCCGACATCGTGAAGTCCCTGGTGGTCAAGCACAAGGACGGCAGCTTCCTGTTCGCCCTCATTCCGGGCGACCGGCAGATCTCCTGGCCCAAGCTGAGGAACCTGCTGGGCGTCAACAAGCTGTCGCTGCCGCCAGCGGATGTGGCACTGGAGGCCACCGGGTATGAACGCGGCACCATCACGCCGCTGGGCAGCACCACCGCCTGGCCCGTCTACGCGGACGCCGCGATCACGGGCCGGCGGATTTCAATGGGCGCCGGTGAACACGGCTACAGTGCCTTTGTGGATGCCGACGAGCTGACCGCGGCCCTGGGCGCAACCGTCGCCGATATCAGCGAACCCTCCTGAMGEAASPRDGVGRGRFLADARARGLEVRLVERLAANSLEEAARILGITPADIVKSLVVKHKDGSFLFALIPGDRQISWPKLRNLLGVNKLSLPPADVALEATGYERGTITPLGSTTAWPVYADAAITGRRISMGAGEHGYSAFVDADELTAALGATVADISEPSNANANANANA
D1-29_03481378rplLCOG022250S ribosomal protein L7/L12ATGGCGAAGCTCACCAACGAAGAGCTCATTGAAGCTTTCAAGGAATTGACCATCATCGAGCTCTCCGAGTTCGTCAAGCTCTTCGAAGAGACCTTCGAAGTTACCGCAGCTGCTGTTGCTGTTGCAGGCCCCGCCGGTGGCGGCGCCGCTGAGGAAGCTGAAGAGAAGACTGAGTTCGACGTCATCCTCGAAGCTGCCGGCGACAAGAAGATCGCAGTGATCAAGGAAGTTCGCGCCATCACTTCCCTGGGCCTGAAGGAAGCAAAGGACCTGGTCGACAGCGCTCCCAAGGCTGTCCTCGAGGGCGTCACCAAGGAAGCTGCCGAGAAGGCTATCGCACAGCTCGAAGAAGCCGGCGCACGCGTTACCCTCAAGTAAMAKLTNEELIEAFKELTIIELSEFVKLFEETFEVTAAAVAVAGPAGGGAAEEAEEKTEFDVILEAAGDKKIAVIKEVRAITSLGLKEAKDLVDSAPKAVLEGVTKEAAEKAIAQLEEAGARVTLKNANANANANA
D1-29_03482621hypothetical proteinATGGCAACGCCTACCAAGGTTTCAGCAGTAGCTGAGATCACTAACGATTTCAAGGAATCGAACGCCGCTGTCCTGACCGAATACCGCGGGCTCACTGTTGCACAGCTCAAGCAGCTGCGTGTTTCTCTCGGCCAGGAGACCAAGTTCTCGGTCGTCAAGAACACCCTGACCGCCATTGCAGCCAAGGAAGCCGGTGTCGAAGCATTCGACGGCGAGCTTTCCGGCCCTACTGCAATCGCGTTCATCAAGGGTGACGCAGTTGCGGCTGCCAAGAGCCTGACGGATTTTGCAAAAGCCCACAAGCAGCTGGTCATCAAGACCGGTTACTTCGAAGGCAAGGCACTGAACGCCAGCGAAGTCATCGCACTGGCAGCGCTCGAGTCCCGTGAGCTGCAGCTTGCACGGGTTGCAGGTGTCCTCAAGGCTCCTGCTGCCGCCGCTGCCCGCACCATTGACGCACTGCGCCTCAAGCTTGAAGAAGAGGGTGGCGCTCCGGCAGTTGCTGAAGCTCCCGCCGCTGACGAAGCCCCCGCCGCTGAAGCAGAAGCTCCGGCTGACGCTCCCGCAGCAGATGCAGCAGCAGAGGCAGAAGCCCCCGCCGCCGCAGCCGAAGAGAACTAAMATPTKVSAVAEITNDFKESNAAVLTEYRGLTVAQLKQLRVSLGQETKFSVVKNTLTAIAAKEAGVEAFDGELSGPTAIAFIKGDAVAAAKSLTDFAKAHKQLVIKTGYFEGKALNASEVIALAALESRELQLARVAGVLKAPAAAAARTIDALRLKLEEEGGAPAVAEAPAADEAPAAEAEAPADAPAADAAAEAEAPAAAAEENNANANANANA
D1-29_034831131hypothetical proteinATGATGCCCCTTATGGCAAAAAACGTACAGATCGAGCAGCTTTGGATCCCGGATTCACTGGACGCACCGGACGCCGCGGACTTCCTCGCTGCCGTCGAAGTGGGGCGCAAAGTACGGATGCAGACCTGGGGGAGCGACGACCTGGCCTACGCTCCGCTTGAGAAGCTTCTCGAACTGGCTGACCCATACGAACGGCAGATCATCCTGGTGGCAAAGGTGGGTGATGACATCGTGGGGACGGTGGATATTGCCCTTCCAATGACAGACAACCTGGAACTCGCGGAATTCACACTGGACATCCTGCCCGAATTCCAGCGTCAGGGCGTGGGCCGGAAACTGCTTCTGGCGGCGGAACAGATGGCGCGCGGCGAAGGCCGCACCATGATCCTGGTGGACACCAATCACCCCGGGGCTTCACTGCACGAGTTCGAGGAAGCGCAGCTTGTTCCTGGCTCCGGGCAGGGCTTTGTGCCGCTGGCCAGCCGGGAGGTCGAATTTGCCCGCAAGACGGGATATACGCTGCAGCACATCGAGCAGTTCAGTTCATGCGCCCTTCCGCTGGACACAAAACTTGTCGCCGATCTGCAGGCGGAAGCCGATGAAGCGAACCACGGCCGCTACCGGCTGCACCACTGGACTGACCGCTGCCCGGACCAATGGCTGGAAGCGGTGGCCACCCTGGAAAACCAGGCGGGTGCCGACGTCGACCCGTCGTTGGAGACCCCTGTCCAGCAGGACATGGTGTTCGACGGCGACATCCTCCGTGAAGCGGAGGAGGCCACCATCGCGCAGGGGCGCCGGACGGTGGTGACGGCGGTGGAGCACCTGGCCAGCGGAGCGCTGGTAGGCCTGACCACCATCAGCGTCCTCGCGCATCGGGCGGACGTGGTGTTCCAGGACGACACCCTGGTGCTGCAGGAGCACCGCGGAAACAAGCTGGGGCTGCTGATCAAAGTGGCCAATATGGAACGGCTCACCGAGCAGTTCCCTGACGCGCGGGTCATCTACACCTGGAACGCGCCGGAGAACAGGTACCTCCTGACCGTAAATAAGCAGTTGGGCTTCACCACCGCGGGCGTGACGGGGATTTGGCAGAAGGAGCTGCCCCATCTGGGGGCAAGCAACAGCTGAMMPLMAKNVQIEQLWIPDSLDAPDAADFLAAVEVGRKVRMQTWGSDDLAYAPLEKLLELADPYERQIILVAKVGDDIVGTVDIALPMTDNLELAEFTLDILPEFQRQGVGRKLLLAAEQMARGEGRTMILVDTNHPGASLHEFEEAQLVPGSGQGFVPLASREVEFARKTGYTLQHIEQFSSCALPLDTKLVADLQAEADEANHGRYRLHHWTDRCPDQWLEAVATLENQAGADVDPSLETPVQQDMVFDGDILREAEEATIAQGRRTVVTAVEHLASGALVGLTTISVLAHRADVVFQDDTLVLQEHRGNKLGLLIKVANMERLTEQFPDARVIYTWNAPENRYLLTVNKQLGFTTAGVTGIWQKELPHLGASNSNANANANANA
D1-29_034841074hypothetical proteinATGGTCCCTCCGCTGGGCGGCAGCGGCGCCACATCCAATGTGGATCAATTGCCGAAGGAGCTCCTGTTCTGCCATGCCATGCGCCAGGAGCATGAACTCTCACTCTGGGGCAACCTGGACCGATGCCCCACCCTCCCGGAGGCGCTTGAGTATTGGCGCGGCAACGGCTACGAGGAGCGCCATGTCTACGTCGCCAGGCTGGACGGGGAGGTCATCGGGATGAGCACAGTGGAACTTTCGTTGAGCGAGAATACCCATACCGCCGGCATAGATGTCCTGATTGCTCCGGCCCATCGACGGCAAGGCCTGGGCCGGGCACTGTTGGAGCATGCCGAAGGGGTTGCCAGGGAAGGGGGCAGAACGTCCCTTTATGGTTACCACGAGGTTCCACCCAGGGCTCCAGGCGGATCCACGGTCCCGGCCAAGTCCGGCGCCGGCGCGCTGCCGCTGGATGAGCCTGCCGTGGCGTTTGCCGTGGCTGCCGGATATGAGCTGGAGCAGGTGGAGCGGTCCAGCCGCCTTACACTTCCCGTGCCGCCGCATCTGCTCGCCCAGCTGGAGACCGAAGCCGGTGCCCGGGCCAGGGAGTACGTACTCATAGGGTGGGATGACAGTTGCCCTGAGGAACTGGTGAACGGCTATGCCCGCCTCAAAGCCACGATGAGTACGGATGTTCCCATCGCCGGGCTCGACTGGGAGGGCGAGGATTGGGACTCGGCGCGGGTACGGGAGGATGAACGGGCCCTGATCCGAAGTGGTGTGCAATCTGCGGTCACCGCAGCCCTGCACCGCTCCACCGGGGAACTGGTGGCCTACACGGTCCTGAACTGGCGTCCCGGCGTCCCTGACACCATTTCCCAGCAGGACACCCTGGTAGCCGGGGCGCACCGGGGGCACCGCCTGGGAATGCTGATCAAGATCGCGAATCTTCGAAGCGCCCAGCGCCGGTGGCCCGCTGCGAAGTCGGTTCTTACGTGGAACGCCAGCGAAAACCAGCATATGCTGGCGATAAATATTTCGCTTGGATTCAAGCCTGACGGCTATGAAGGTGAGTGGCAGAAACGGCTGGGATGAMVPPLGGSGATSNVDQLPKELLFCHAMRQEHELSLWGNLDRCPTLPEALEYWRGNGYEERHVYVARLDGEVIGMSTVELSLSENTHTAGIDVLIAPAHRRQGLGRALLEHAEGVAREGGRTSLYGYHEVPPRAPGGSTVPAKSGAGALPLDEPAVAFAVAAGYELEQVERSSRLTLPVPPHLLAQLETEAGARAREYVLIGWDDSCPEELVNGYARLKATMSTDVPIAGLDWEGEDWDSARVREDERALIRSGVQSAVTAALHRSTGELVAYTVLNWRPGVPDTISQQDTLVAGAHRGHRLGMLIKIANLRSAQRRWPAAKSVLTWNASENQHMLAINISLGFKPDGYEGEWQKRLGNANANANANA
D1-29_03485708rplACOG008150S ribosomal protein L1ATGGCAAAGCGCAGCAAAGCATATGAGGCAGCAGCCGCCAAGATCGACGCGGAGAAGTTCTACGCGCCGTTCGAGGCAGTAACGCTCGCCAAGGACACCAACCCGTCCAAGTTCGACGCAACCGTTGAGGTGGCCTTCCGCCTCGGCGTTGACCCCCGTAAGGCCGACCAGATGGTCCGCGGCACGGTCAACCTGCCCCACGGCACCGGTAAGGTCTCGCGCGTTCTCGTTTTCGCAACCGGTGACAAGGCTGAAGCAGCAATCGCTGCAGGCGCCGACTTCGTTGGTTCCGATGACCTGATCGAAAAGATCGCCGGCGGCTGGACCGACTTCGACGCAGCCGTAGCCACCCCTGACCTCATGGGCAAGGTTGGCCGTCTTGGTAAGGTGCTGGGTCCCCGTAACCTGATGCCGAACCCGAAGACCGGCACCGTCACGGCAGATGTCACCAAGGCTGTCAACGACATCAAGGGCGGCAAGATCGACTTCCGCGTCGACAAGCACTCCAACCTGCACTTCATCATTGGCAAGGTTTCCTTCGACGCCGTCAAGCTGGCCGAGAACTACGCCGCAGCACTGGAAGAGGTCCTTCGCCTGAAGCCGTCCGCTTCCAAGGGCCGCTACATCCAGAAGGCCACTGTGGCCACCACGTTCGGTCCCGGCATCTCCGTTGACCCCAACGTCACCAAGGTTCTGACTGAGGTCTAAMAKRSKAYEAAAAKIDAEKFYAPFEAVTLAKDTNPSKFDATVEVAFRLGVDPRKADQMVRGTVNLPHGTGKVSRVLVFATGDKAEAAIAAGADFVGSDDLIEKIAGGWTDFDAAVATPDLMGKVGRLGKVLGPRNLMPNPKTGTVTADVTKAVNDIKGGKIDFRVDKHSNLHFIIGKVSFDAVKLAENYAAALEEVLRLKPSASKGRYIQKATVATTFGPGISVDPNVTKVLTEVNANANANANA
D1-29_03486429rplKCOG008050S ribosomal protein L11TTGGCTCCCAAGAAGAAGGTCACCGGCCTCATCAAGCTGCAGATCCAGGCAGGTGCCGCTAACCCGGCTCCGCCCATCGGTCCTGCCCTTGGCCAGCACGGTGTCAACATCATGGAATTCTGCAAGGCGTACAACGCTGCCACAGAAGCCCAGCGCGGAAACGTCATCCCCGTGGAAATCACGGTTTACGAAGACCGTTCATTCACGTTCATCACCAAGACCCCGCCGGCTGCAGAGCTCATCAAAAAGGCTGCAGGCGTCGCCAAGGGTTCGCCCACGCCGCACACCGTCAAGGTTGCCAAGCTGACCCAGGCCCAGGTTAACGAGATCGCCACCACCAAGATGGAAGACCTCAACGCCACCAGCCTCGAAGGCGCAGCGAAGATCATCGCCGGCACCGCCCGTTCCATGGGCATCACCGTCGAATAGMAPKKKVTGLIKLQIQAGAANPAPPIGPALGQHGVNIMEFCKAYNAATEAQRGNVIPVEITVYEDRSFTFITKTPPAAELIKKAAGVAKGSPTPHTVKVAKLTQAQVNEIATTKMEDLNATSLEGAAKIIAGTARSMGITVENANANANANA
D1-29_03487846nusGCOG0250Transcription termination/antitermination protein NusGGTGTCTGAGCAGGAGCTCGAGGTAACCGAGACTGAGCTGGAAGAGTCTACGGACATCACGTCAGCCCCCACGGCGGAAGCCGGTGAAGAGTCTGAGGTTGAGTCCGCTGCGCCCGAATCCGCCGACGCTGATGCTGACGCCTTTGAGGACGAAGGTTCTGAGGACGACGATTCCGAGGATGCCGACTCCGAGGACGCCGACTCCGACGAGTCTGACGCCCTCGCCGCCGCGGCCGCCAAGGCCGAGGTGGACCCCGCCGAGGAATTCAAGGCCAAGCTGCGCCGCCAGGAGGGTGACTGGTACGTCATCCACTCCTACGCCGGTTACGAGAACCGCGTGAAGGCAAACCTTGAGACCCGCATCCAGACCCTGGACATGGAAGATTACATCTTCGAAATCCAGGTGCCCATGGAGGAAGTCGTTGAGATCAAGAACGCTCAGCGCAAGGTCATCAACCGCGTCCGGATCCCCGGCTACGTCCTGGTCCGCATGGACCTGACCGATGCCTCCTGGGGCGCGGTGCGCCACACTCCCGGCGTCACCGGCTTCGTGGGCAACGCCCACAACCCGGTACCCCTGCGCTTGGACGAGGTCTTCTCCATGCTCGCCCCGGTCTTCGAAGAAGAGCAGGCCGAGAAGGGCAAGCCCGTCAAGCACGCTGCCGCCCCTGTTGACGTTGACTTCGAAGTTGGCGAGTCCGTCATCGTCAAGGAAGGTCCGTTCGAGACCCTCCCGGCCACGATCTCCGAAATCAAGGTGGAATCCCAGACCCTCGTGGTGCTGGTCTCCATCTTTGAGCGCGAAACGCCTGTCACGCTGGCGTTCAACCAGGTCACCAAGATCTAGMSEQELEVTETELEESTDITSAPTAEAGEESEVESAAPESADADADAFEDEGSEDDDSEDADSEDADSDESDALAAAAAKAEVDPAEEFKAKLRRQEGDWYVIHSYAGYENRVKANLETRIQTLDMEDYIFEIQVPMEEVVEIKNAQRKVINRVRIPGYVLVRMDLTDASWGAVRHTPGVTGFVGNAHNPVPLRLDEVFSMLAPVFEEEQAEKGKPVKHAAAPVDVDFEVGESVIVKEGPFETLPATISEIKVESQTLVVLVSIFERETPVTLAFNQVTKINANANANANA
D1-29_03488270secEProtein translocase subunit SecEGTGACCGAAACAGCTGCCAGCAGCTCCAAGGGCCGCCCAGCTAAGAAGGACGCCAAGGCAAACTTCTTCGCTCGCATTGCACTTTTCGTCCGCCAGGTCATCGGCGAACTGAAGAAGGTTGTTGCACCAACCCGCAAGGAACTGATCAATTACACGGCCGTGGTGCTGGTGTTCGTGGCCATCATGATGGTCATCGTCAGCCTGCTGGACCTCGGATTTGGATCCGCGGTCGGCTGGGTCTTCGCCGGGATCGCTCCCGGGGACCGCTAAMTETAASSSKGRPAKKDAKANFFARIALFVRQVIGELKKVVAPTRKELINYTAVVLVFVAIMMVIVSLLDLGFGSAVGWVFAGIAPGDRPGPT0025715_1758DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073NANA
D1-29_034901218aspC1COG0436Aspartate aminotransferaseATGTCTGCCGCCCGCGTTTCCCAGCGCATTTCCGCCATTGCCGAATCCGCAACCCTGGCCGTTGATGCCAAGGCCAAGGCGCTCAAGGCAGCAGGCCGGCCGGTCATTGGTTTCGGTGCCGGCGAACCGGACTTCCCCACGCCGGACTACATTGTCCAGGCTGCCATCGAAGCCGCCGGCCAGCCCAAGTACCACCGCTACTCCCCTGCCGCCGGCCTGCCCGAGCTGAAGAAAGCCATTGCGGAGAAGACCCTGCGCGATTCCGGCTATGCCGTGGACGCATCCCAGGTGCTGGTGACCAATGGCGGCAAGCAGGCGGTCTACAACACGTTCGCCACGCTGGTGGATCCGGGTGACGAAGTGATTGTTCCTACCCCGTTCTGGACCACGTACCCCGAGGCCATCCGGCTCGCCGGCGGCGTCCCGGTGGAGGTTTTCGCCGGCCCGGACCAGGACTACCTGGTGACCGTCGAGCAGCTTGAGGCAGCCGTCACTGACAAGACCAAAATCCTGCTGTTCGTCTCGCCGTCCAATCCCACAGGTTCTGTCTACTCGCCGGAACAGGTGGCGGAGATCGGCAAGTGGGCCGCGGCCAAAGGCCTCTGGGTGGTCACAGATGAAATCTATGAGCACCTGACCTACGACGGCGTGCCCTTCACCTCGATCGCTACGGCCGCCCCCGAACTTGGCGACAAAGTGGTCATCCTCAACGGCGTGGCCAAGACCTATGCGATGACCGGCTGGCGCGTGGGCTGGATGATTGGCCCGGCCGACGTCATCAAGGCCGCCACCAACCTGCAGTCCCACGCCACCTCCAACGTCTCCAACATCATGCAGATCGCTGCCCTCGCGGCCGTCTCCGGGCCGCTGACCGCAGTCGATGAAATGAAAGTCAGTTTTGACCGCCGTCGGAAGGCGATCGTTGCGGGCCTGAACGCCATCGAGGGGGTGGAATGCCCGACGCCGAAGGGCGCCTTCTACGTCTACGCGGACGTCCGTGCCCTGCTGGGTAAGGAATTCCCGACGTCGACCGGCACCGCCACGCCGTCGACCTCCGCCGAACTGGCTGCGCTGATCCTGGACGAGGTTGAAGTGGCAGTGGTGCCCGGTGAGGCTTTTGGCCCGTCCGGCTACCTGCGGCTCTCCTACGCCCTGGGCGACGACGACCTCGCCACCGGCGTTGCCCGCCTGCAGGATTTCCTGGGCAAAGCGCAGTAAMSAARVSQRISAIAESATLAVDAKAKALKAAGRPVIGFGAGEPDFPTPDYIVQAAIEAAGQPKYHRYSPAAGLPELKKAIAEKTLRDSGYAVDASQVLVTNGGKQAVYNTFATLVDPGDEVIVPTPFWTTYPEAIRLAGGVPVEVFAGPDQDYLVTVEQLEAAVTDKTKILLFVSPSNPTGSVYSPEQVAEIGKWAAAKGLWVVTDEIYEHLTYDGVPFTSIATAAPELGDKVVILNGVAKTYAMTGWRVGWMIGPADVIKAATNLQSHATSNVSNIMQIAALAAVSGPLTAVDEMKVSFDRRRKAIVAGLNAIEGVECPTPKGAFYVYADVRALLGKEFPTSTGTATPSTSAELAALILDEVEVAVVPGEAFGPSGYLRLSYALGDDDLATGVARLQDFLGKAQPGPT0020110_844DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_03491684nreC_3COG2197Oxygen regulatory protein NreCATGAACAACCTGCAGGGGACAGGACCTGTCCGCCCCGCCCAGCCTGTACGGGTGGTGATCGTGGATGACCACGCTATTTTCCGCTCGGGCCTTAAGGCAGACCTCGATGCTGGCATCCAGGTGGTTGGTGAAGCCGCCACCGTGGAGCAGGCCATCGCCGTGATCGCCCGGGAACGTCCCGAGGTGGTCCTCCTGGACGTACACCTGCCGGGCGGCCTCGGCGGCGGCGGGCGCGAAGTCATTGCAGGCTCTGCAGCACTCCTGGGCACCACCAAATTCCTGGCGCTGAGCGTCTCCGACGCTGCCGAGGACGTGGTGGCGGTCATCCGTGCCGGGGCGCGCGGGTATGTCACCAAAACGATCTCCGGTGCCGAGATCACCGATGCCGTGTTCCGGGTAGCGGGCGGGGACGCCGTTTTCTCGCCCCGGCTGGCGGGGTTTGTCCTGGATGCCTTCGGCACTGCCCCGGCGGACATAGCGGACGACGAACTGGACAGGCTCTCCGCACGCGAACTGGAGGTGATGCGCCTGATCGCGAGGGGCTACAGCTACAAGGAAGTTGCCAAGGAGCTCTTCATCAGCATCAAGACCGTGGAAACGCACGTGTCCGCGGTGCTGCGCAAACTCCAGCTCTCCAGCCGGCACGAGCTGACAAAATGGGCCGCCGAGCGGCGCCTCCTCTAAMNNLQGTGPVRPAQPVRVVIVDDHAIFRSGLKADLDAGIQVVGEAATVEQAIAVIARERPEVVLLDVHLPGGLGGGGREVIAGSAALLGTTKFLALSVSDAAEDVVAVIRAGARGYVTKTISGAEITDAVFRVAGGDAVFSPRLAGFVLDAFGTAPADIADDELDRLSARELEVMRLIARGYSYKEVAKELFISIKTVETHVSAVLRKLQLSSRHELTKWAAERRLLPGPT0000550_317DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONN-AQUISITION-NITRATE|NITRITE_SENSING,PGPT0000550-narL-K07684NANA
D1-29_034921410hypothetical proteinATGAGCACAACCTTTACCCGCCCACCGCTGGTCCGCAGCAGCGACCGCGTGATTGCGGGCGTGTGCTCAGGGCTCGCGGCGCATCTTGGCTGGCCGGTGAAGAACGTCAGGATCGGCATGGCGCTCGCAACGCTCGCCGGCGGTGCCGGCCTGGCCTTCTACGCCTGGCTGTGGATCATGGTTCCCACCGCTGACGAAAGTGCCCGGCGCAACGCCAGGCGGCCGGCGTCGCCCATTGCCCCTGCCGTCAGCATGGATCCGGCATTCGGCGCTGCCCCGCCCCCTGCTTTGGTGCCCCCTCCGGCGCCCCCGACGACGCCGACTGAAAACGGCCCAGGGACGGCAGGTTACGCTCCTGCCGCCACCGGTTATGGTCCGCCCCCGGCCGGCTATGAGGCTGCTGTCCGGCCGCCATGGTTCCGGGTCCGCACAATGCGGTACGGCAAGGAAATCCTGCTGGGTGCCGGCCTCCTCCTGGTGGCGGGAATCCTGATCGCCCAGCTCCTGGGCGTTGATGTGCCGCTGGGCACCTTGATTCCGGCGGCCGCCGTGCTGGGCGGTGCCTCCATTGCCTGGATGCAGCTGGATGAGACCCGCCGCGCGGGACTGCTGGATAAGACCAAGGCAGACCAGGCGGGCGGCTGGGCCCGCCTTGCCGCAGGCCTGGCCCTGGTGGTGGCGGGTGTGCTGGTGATGGTGTCCGGCTCGGGTTCCTGGGAACAGACGTGGCTTGCCCTGCTGGCGTCGGTGGCGGTCCTGGGCGGAGTGATCCTGGTGCTGCTCCCGTGGGCCCTGAAGTTCTGGCGGGACCTTGAATCCGAACGCGCCGGCAGGATCCGGGAGACGGAACGGGCGGAGATCGCCGCCCATCTTCACGATTCCGTGTTGCAGACCCTCGCCCTGATCCAGCGGCGCGCAGGCAGCGAGCACGACGTCGTCCGGCTGGCACGGGCCCAGGAGCGTGAGCTTCGGAACTGGCTGTTCCAGGACCCCGGGAAGGACGCGGGCCAGCTCTCGGACCGGATCAAGGCGACGGCCGCTGAGGTGGAGGATCTGCTGGGCAACGCCGTGGAAGTGGTGAGTGTGGGGGACACCGCCATGACTGAAGCTCACGAGGCCCTGGTGCAGGCAAGCCGTGAGGCGATGCTGAACGCCTCCAGGCACGGGGGCGGGTCCGTGTCCGTGTACCTGGAAGTCTCCAATGGCCGCGCGGAGGTCTTCGTCAAGGACCGGGGGCCGGGCTTCGAACTCAATGACGTGCCGGAGGACAGGCTTGGTGTCCGGGAATCGATCATCGGACGCATGAAGCGCCATGGCGGGACAGCGTCCATCACCAGCACCGCCGATGGCACTGAGGTGCGGCTGGGCCTCCCGGCCCTCTCAACGGAGAATTTGGAAGGAAGATCATGAMSTTFTRPPLVRSSDRVIAGVCSGLAAHLGWPVKNVRIGMALATLAGGAGLAFYAWLWIMVPTADESARRNARRPASPIAPAVSMDPAFGAAPPPALVPPPAPPTTPTENGPGTAGYAPAATGYGPPPAGYEAAVRPPWFRVRTMRYGKEILLGAGLLLVAGILIAQLLGVDVPLGTLIPAAAVLGGASIAWMQLDETRRAGLLDKTKADQAGGWARLAAGLALVVAGVLVMVSGSGSWEQTWLALLASVAVLGGVILVLLPWALKFWRDLESERAGRIRETERAEIAAHLHDSVLQTLALIQRRAGSEHDVVRLARAQERELRNWLFQDPGKDAGQLSDRIKATAAEVEDLLGNAVEVVSVGDTAMTEAHEALVQASREAMLNASRHGGGSVSVYLEVSNGRAEVFVKDRGPGFELNDVPEDRLGVRESIIGRMKRHGGTASITSTADGTEVRLGLPALSTENLEGRSNANANANANA
D1-29_034931662hypothetical proteinATGAACTCGCAGACCCCCACCCCAGATGACGAACACCCCACCGAACCACTGCCGCCACGCGGAACCGAGCAGCCCACGGAACCGCTGACGTCCGGCCCGGCATCACCGCAGGACACTCCATCGTCCGCGCCGCGGGATGCAGCGGACCAGTCCCCTTCCGGCGAGCCATCCGCACAGGACGAGCCGTCCGGACAGGACACGGGACAGAACACGGGGCCGTACCCGGGGCCGTACGCAGGCGCCTACACAGGTCCGTCGTCGGGCCAGTACGCCGCCGCCAAAGCACCCGGCCAATCCACTGACTTCTTCACCTGGATCCGGAGCCACGGCATCCAACGGGGACGTGACCGCTGGATAGGCGGCGTCTCCAGCGGCATTGCCTACCGGATGGGCATCGATCCGCTGATTGTCCGCGGCATCTTCATTGTCCTCACCCTCTTCGCCGGAATCGGCGTGCTGCTCTACGGCCTGGCCTGGGCGTTCCTGCCCGAGCCGGACGGCCGCATCCACGTCCAGGAAGCTGGCGCTGGCCGGTGGTCCACGGGCATGACAGGTGCCCTGATCACCACCATAGTGGGCCTCACCGGGCTCGGCGGCGGCTTCTGGGGCTGGAGCCGCAACGGCTTCGGCGGATTCCTCTGGACCGTCTTCTGGGTGGGCGCCACCATCTACCTCATCTACTACCTGGCCCAACGCAGCAAGGCCCGGAATGGAGCACCCATGAACGCCACCCCGCAGCCAGCCGGCGCTGGCGGAAACGCAGCCTTCGCGGCCGCCTACCCTGCCTCCCCCTACACAGCCCCGTACTCCACAACCGACTCGGCAACCAATACCGGTTCCGGTTCTGGCTCTACAGGGACCCCTCCTTACTCGCCAACCCGGCCCGCCGGCCCCCTCCCGCCCTACGGCAGCGGCGGATTCCCGGGTGGCGGCAATTACAGCGGGGGCAGCTACGGCGGCGGAAACTACGGCGGAACCAGCTACGGCGGCGGCTACCAGCCGCCGCAGGGCCCGCCGCGCCCACCCAAGGTCCGCCCTGCCGGCCCGGGAACCCCTGCGGTGGCAATCACCGCCGGAACTGCCCTGCTTGTGGGCGGCGGGCTGAAAGCCCTGGACGCCGGAAACGTGATCAACCTCGGCGACTCCGCAAACGCCATTGTCTGGGCCAGCGCCGCAGCCGTCCTGGGCCTCGGCATCCTGATCTCCGGACTGCGCGGCAGGTCCTCAGGAATCCTGGGCTTCTTCGCCGTGGTGGCCCTGATTATCGGCGGGATCTTCAACGTCGTCGGTGACGGCGACAGGGTCCGCTTCACGCAAGTGGACTGGACGCCGGCCGGCATTGAACAGGCCCGGAACGGCTTCGACGTAACGGCGGGCCGCGGAACTGTTGACCTCACGGAACTCGGGGTGGCCGCCCCGCTGACGTCCGACGTCGTGGTTCCCCTGGACATCACCGCGAGCAACGTCAAGGTGGTCATCCCGGACAACGTCCCCGTGGACATCAAGGCCGACATGACCATGGGCAACATCCATGAAGGCGCCAACCACCGCAGCGGCATCTCCACCCGGGAAAGCAGCTACAACACCGAACTGCCCGGCGCCCGCCTGGTGGTCGAGATAGACGGCACCTTCAGCAACGTCACCATCCAGGAAGGGAACTGAMNSQTPTPDDEHPTEPLPPRGTEQPTEPLTSGPASPQDTPSSAPRDAADQSPSGEPSAQDEPSGQDTGQNTGPYPGPYAGAYTGPSSGQYAAAKAPGQSTDFFTWIRSHGIQRGRDRWIGGVSSGIAYRMGIDPLIVRGIFIVLTLFAGIGVLLYGLAWAFLPEPDGRIHVQEAGAGRWSTGMTGALITTIVGLTGLGGGFWGWSRNGFGGFLWTVFWVGATIYLIYYLAQRSKARNGAPMNATPQPAGAGGNAAFAAAYPASPYTAPYSTTDSATNTGSGSGSTGTPPYSPTRPAGPLPPYGSGGFPGGGNYSGGSYGGGNYGGTSYGGGYQPPQGPPRPPKVRPAGPGTPAVAITAGTALLVGGGLKALDAGNVINLGDSANAIVWASAAAVLGLGILISGLRGRSSGILGFFAVVALIIGGIFNVVGDGDRVRFTQVDWTPAGIEQARNGFDVTAGRGTVDLTELGVAAPLTSDVVVPLDITASNVKVVIPDNVPVDIKADMTMGNIHEGANHRSGISTRESSYNTELPGARLVVEIDGTFSNVTIQEGNNANANANANA
D1-29_03494294hypothetical proteinATGAGCAACGTTGATCCGGCACCGGATTCAGACACCAAAGAAACGCCGACGGCGGGATCCTCCGAGTGGACAGAACCCACCGGCCCCGCGCCCACCCGGGTGGGAACCGTGGTCTGGGGCCTCGTGGTCCTGGCCCTCGCCGCCCTGATCATCATCGCCCAGCTTGGCATCGTGACCCTGAACGGCACCTATGTGCTCATTGGCCTGATGATCGGAGCCGGGGCCGCGCTGGTGGTCGGCGGGCTCCTGTCGGCACGGAAACGTGACAACGGGCCCACAACAGGGAAGTCTTGAMSNVDPAPDSDTKETPTAGSSEWTEPTGPAPTRVGTVVWGLVVLALAALIIIAQLGIVTLNGTYVLIGLMIGAGAALVVGGLLSARKRDNGPTTGKSNANANANANA
D1-29_03495258hypothetical proteinATGGACAAGTTTTTCAGCATCGTCAGGGGCTTCGGCCTGCAACGGGGACCCCAGCGCTGGCTGGGCGGTGTATGCGGAGGGATCGCTGCCAAGCTCAACGTGGATGTGGCCTTCGTCCGGATCGCCTTCCTGATCTTCTGCCTTCTGCCCGGACCCGCAGTGGTGTTCTATATCGCAGCCTGGCTGATCCTTCCGGACCAGCGGAACGTCATCCCGCTGCAGTCCTTTTTGGATAGGCGGTCCATCAACGGATCCTGAMDKFFSIVRGFGLQRGPQRWLGGVCGGIAAKLNVDVAFVRIAFLIFCLLPGPAVVFYIAAWLILPDQRNVIPLQSFLDRRSINGSPGPT0027520_1221DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-PspC-PspB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027520-toxin_pspC-K03973NANA
D1-29_03496966btuD_14Vitamin B12 import ATP-binding protein BtuDATGAAGCCTTCAGCCAGGCCCGGACCCGGGCCCACAGACGCGGCCATCTCTGTCCGCGGCCTCAGCAAAACGTACCAACTGCCCAAAGGCCAGGCGCTCACAGCGGTGGACCAGCTCGAACTGAGCATCAGGGCAGGTGAAACGTATGCGCTGCTGGGGCCCAACGGGGCCGGAAAATCTACCACCATCGAAATCCTCGAAGGGCACCGGAAACCGGACAGCGGTGATGTCCGCGTGCTTGGCACCAACCCATGGAAGGCCGCGCCGTCCTTCCGCGCAAGGATCGGCATCGTCCTGCAGGAAGCCACTGATTCAGGCGAACTCAGGGTATCGGAGGCCCTGAGGTCCCTTGCCTCCTGCTTTCCAAGGCCACATGGTGTGGACGAAGTGATCGAGGCGGTAGGACTCGGCGGCAAAGGCGGCGTCCGGATCTCCACCCTCTCCGGAGGCCAGCGACGGCGGCTTGACGTCGCGCTGGGGATCATCGGGCGCCCCGAGGTCCTCTTCCTGGACGAACCCACCACGGGCTTTGACCCGGAAGCCAGGCGCCAGTTCTGGGAGCTCATCCGGCAACTGAGCAGCGGTGGCACCACCATCGTGCTCACCACGCATTACCTGGATGAGGCCGAACAGCTCGCGGACAGGATCGGCGTGATCAACCACGGGCGCCTCATTGCGGAAGGCAGGCCCCAGGAAATCGGAGGGCCGGGCCTCCGGGTTCCCCGGGTCAGATGGCGGGACGCCATCGGTCCGCGCGAGGTGGTGACGGAGCATCCGGCAGCCCTGGTCCATTCACTGTCCGACGGCGGAGCTACCGAGCCGGCGGAGCTTGCCGTCGTCCGTCCAAGCCTTGAGGACATTTACCTCCAGCTGATCGGTTCCGCCAACACCGCTGCTTTTGAAGCTGAACCGGCCATAACCGGTTCCGGTCGGGCAGCATCCTCAACACCAGGAGTCCTCTCATGAMKPSARPGPGPTDAAISVRGLSKTYQLPKGQALTAVDQLELSIRAGETYALLGPNGAGKSTTIEILEGHRKPDSGDVRVLGTNPWKAAPSFRARIGIVLQEATDSGELRVSEALRSLASCFPRPHGVDEVIEAVGLGGKGGVRISTLSGGQRRRLDVALGIIGRPEVLFLDEPTTGFDPEARRQFWELIRQLSSGGTTIVLTTHYLDEAEQLADRIGVINHGRLIAEGRPQEIGGPGLRVPRVRWRDAIGPREVVTEHPAALVHSLSDGGATEPAELAVVRPSLEDIYLQLIGSANTAAFEAEPAITGSGRAASSTPGVLSPGPT0006725_5288DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_03497864hypothetical proteinATGAACGTCACCCTCCCCGCGCCCAGCCAGCCGGCCGCTGGATCCGCCTGGAAGCCTTCCGCGTTCCGGCTCGGGATGGGCCGGGTGCTCCTTGAGGTCAAACTCTTTAACAGGGATGTGCTCTCGCTGGTCCTTGTCCTGTTCTTTCCCATCCTGATGATGTCCTTGTTCGGAACCGTCTTTGGCGACGAGCCCAACTTCGGAACGGACCCCAACGGCAACGGCGGCATCACCCCTGCGCACTATTACCTCCCCGGCATGCTGGCCCTGAGCACCATTCTCAGTGGCTTCCAGAACCTCAGCAGCTACGTGGCCACGGAACGGTTCAACGGCACAGTCAAACGCCTGGCCGGGACCCCGCTGCCCGCGGCGTCATACTTCATCGGCAAAACGGGGCAGACGCTGTACCTGATCGTGGCCCAGACGGTCCTGCTGCTCCTCGCGGCAAGGTTCCTCTTTGATGTGCCGCTTCCAACGGAGGCCGGGCAATGGCTCCTCATCACCGTGCTGATGATCCTGTCCACTGCGGCATGGGCAACTGTGGCCATCGCCTTCACCGCCCTGCCCAAGTCGGCGCAAAGCGCGTCCACGCTGGCGGTGCTCCCGGTGCTCCTCCTGTCCTTTACGTCGGGCGTCTACTTCCCCTTTTCCCAGCTCCCGGCCTGGTTGCAGTCAGTGGCCAACCTGTTTCCCCTCCGCTGGACGGCCAGCGCACTGCGGTCCGTTTTCCTCCCGGCTGGATTTGAAGCCGTTGAACCTGGCCAGAGCTATGACCTGCCCCTGACGTTCCTGGTGCTCGCCGTCTGGGCCGTCGCCGGTGCCATACTGGCGAAGCTGGTCTTCACGTGGCCACCGCAGAAGTAAMNVTLPAPSQPAAGSAWKPSAFRLGMGRVLLEVKLFNRDVLSLVLVLFFPILMMSLFGTVFGDEPNFGTDPNGNGGITPAHYYLPGMLALSTILSGFQNLSSYVATERFNGTVKRLAGTPLPAASYFIGKTGQTLYLIVAQTVLLLLAARFLFDVPLPTEAGQWLLITVLMILSTAAWATVAIAFTALPKSAQSASTLAVLPVLLLSFTSGVYFPFSQLPAWLQSVANLFPLRWTASALRSVFLPAGFEAVEPGQSYDLPLTFLVLAVWAVAGAILAKLVFTWPPQKPGPT0006730_10660DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_034981320hypothetical proteinATGAGCAACATCGGCGGGCGGACGGAGCGGCTGCTTCCGTCCCGTTCCGTCTGGACCACCTCCATGGTCTGGTGGCATGCAGGTTTCTACGCGGCGCTGGCCAGTGTGTCGTACCTCGCCATCTTCAGCCAGGAGCCGGAGCCCAATACGCCACTCGCCGTAGCCGCGCTGCTGCTGCTGGCGGTCGCCTACCCCTTCCTCACGCGCACCCGGGACCTCAGAACAGCAAAGCCCACGGTGTACGTAGCGCTGTTGGTGGCCGTGGTGGTGTTCCTCTCCTTCGTCTATGACGGAGCCGGCGTCCTGCTGTTCGTCGCCTTCCCGCAGGTGTGGATGTTCACTGCCTCCCAGCGCCAGGGCGTGGTGGCCACAGCGGTGCTGTGTGTGGGCGTGGCCGCCGGGCAGATCAGCCGCTGGGGATTGGAGGGCACGGAGGTTTACGGCATCTCTGCGCAGCTCGTGACCTCCTTTGTGGCCAGCTGCATGATCGGGCTGTGGATCTCCAAGGTCATCGAACAAAGTGAGCAGCGGGCCGAGCTGCTGGCAGAGCTGGAGGCGACGCGCAAGGAGCTCAGTGAAGCGGAGCAGGCCCGGGGAGCCCTCGCAGAGCGTGAACGGATGGCCAGGGAAATCCATGACACCCTGGCCCAGGGGTTCACGTCCATTGCCATGCTCTCCGAAGCGGCGCAGGCACAACTCAGGACCCGGCCAGCCGTTTCCGCCACTGCCCCTTCCGCCAATGCACAGACGGGCAACCCCCGGGCAGCCGTGGAAGCGCCAGATGACAGGGACCTGGGATTGATGGACAGCCTCACCGCAATCGCCCAAACGGCACGGGACAATCTTGCTGAAGCACGTTCGCTGGTGGCCTCCGGGGTGCCGTCCGATGTTCAGGGCGGCGACCTCATCGCGGCACTGAGGCGCCTGCCCGACAGTATGCACCTGGAAGGAATCCTGCTGACCGTGGAGGTGCCGGACACCGTCCAGCCGCTTTCGTCGACCCAGCAGGTGGCGCTGCTCCGGACGGTCCAGGAAGCCCTGAATAATGTCCGGAAGCACTCGGGCGCAACGGCCGCCAGAGTGCTGGTGGAAGTCAGGAACAACGCGTCCCAACAGCAGCTCCGGCTGACTGTCACCGACAACGGATGCGGCTTCGACCCCTCCGCCGTGCACAGCGGCTTTGGCCTGAAGTCCATGGCGGCCCGGCTTCAGGAAATCCACGGCGATCTGACGGTCACCTCCTCCGGCGCCGGGACCACCCTGACCGCCGTCGTTCCCATCGCCCGCGCCACAACCACAGAAACGGGAGATGCCCTGTGAMSNIGGRTERLLPSRSVWTTSMVWWHAGFYAALASVSYLAIFSQEPEPNTPLAVAALLLLAVAYPFLTRTRDLRTAKPTVYVALLVAVVVFLSFVYDGAGVLLFVAFPQVWMFTASQRQGVVATAVLCVGVAAGQISRWGLEGTEVYGISAQLVTSFVASCMIGLWISKVIEQSEQRAELLAELEATRKELSEAEQARGALAERERMAREIHDTLAQGFTSIAMLSEAAQAQLRTRPAVSATAPSANAQTGNPRAAVEAPDDRDLGLMDSLTAIAQTARDNLAEARSLVASGVPSDVQGGDLIAALRRLPDSMHLEGILLTVEVPDTVQPLSSTQQVALLRTVQEALNNVRKHSGATAARVLVEVRNNASQQQLRLTVTDNGCGFDPSAVHSGFGLKSMAARLQEIHGDLTVTSSGAGTTLTAVVPIARATTTETGDALNANANANANA
D1-29_03499633lnrK_1COG2197Transcriptional regulatory protein LnrKGTGAGCGGCCCAACCCAGGTCAGGGTCATTCTTGCCGACGACCACCCTGTGGTCCGCGGCGGCCTCGCTGCCCTGCTGGGCACCGCCGAGGGGATCGACGTGGTGGCCGATGCTGGAAACGGCCAGGAGGCGGTGGCAGCCGTTGAGCTGCACCGGCCCGATGTGGTGCTGATGGACCTGCGAATGCCGGTGCTCGACGGCGCCGGCGCAACAGCGCAGATCCGCGACCGGTTCCCGGCCACCAAAGTGCTGGTGCTGACCACCTACGACGGCGACGCGGACATCGTCAGGGCGGTGGAGTCCGGTGCTGTCGGATATCTGCTCAAGGATTCCCCCGGAGACACCATCATCGATGCGGTTTTCGCCGCGGCCCGGGGTGAGACCGTCCTGGCGCCGCCGGTAGCGGCGCGGCTCGTCTCGCGCCTGCGCGCTCCGGAGAGGCCGCAGCTCACTGCCCGTGAGGTGGAGGTCCTGCGCTGGGTGTCCCACGGCTTGAGCAATCCGGAGGTCGCGGCCCGGCTGCACATCGCCGAAGCCACCGTGAAAACACACCTTCTGCGGGTCTTCAACAAGCTGGACGTGGATGACAGGACCAGGGCAGTGGTCATCGCAATGGAACGGGGCCTTTTGTAAMSGPTQVRVILADDHPVVRGGLAALLGTAEGIDVVADAGNGQEAVAAVELHRPDVVLMDLRMPVLDGAGATAQIRDRFPATKVLVLTTYDGDADIVRAVESGAVGYLLKDSPGDTIIDAVFAAARGETVLAPPVAARLVSRLRAPERPQLTAREVEVLRWVSHGLSNPEVAARLHIAEATVKTHLLRVFNKLDVDDRTRAVVIAMERGLLPGPT0014870_151DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_035001026pfpPyrophosphate--fructose 6-phosphate 1-phosphotransferaseATGAAAATTGGAATTCTCACCAGCGGTGGCGACTGCCCCGGACTGAACGCAGTCATCCGCGGAGCGGTCCTCAAAGGCATCGCAATCCACGGCCACGAATTTGTGGGATTCCTTGACGGCTGGCGCGGCGTCGTCGAAGGCGACATCATCGACATCCCCAGAACCATGGTCCGGGGCATCGCCAAGCAGGGCGGCACCATCCTGGGCACCTCCCGGACCAACCCGTTCGAGAACGGCGGCGGCCCCGAGGTCATCAAAGCCCACATGGAGCGGCTTGGAATCGACGCCATCATCGCCATCGGAGGCGAGGGCACGCTCGCTGCAGCCAAGCGCCTCACCGACGCCGGCCTGAAGATCGTGGGCGTCCCCAAGACCGTTGACAACGACCTGGACGCTACGGACTACACCTTCGGTTTTGACACGGCAGTCCAGATCGCCACCGAGGCCATCGACCGGCTGCGCACCACCGGCGAATCCCACCACCGGTGCATGATCGCGGAAGTAATGGGCCGGCACGTGGGCTGGATCGCCCTGCACGCCGGCATGGCCGCCGGAGCCCATGCCATCCTCATTCCTGAGCAGAAGGTCAGCATCGAGCAGATCACCGAATGGGTGCAGGAAGCCCACGACCGTGGCCGTGCGCCGCTGGTGGTGGTTGCGGAAGGCTTTGTCCCGGACCACATGGAATCCCCGCATTCCGAACGCGGCCTTGACACCTTCGGCAGGCCCAGGCTTGGCGGCATTGCCGACCAGCTTGCTCCCGAGCTTGAAGCCCGTACCGGCATTGAAACCCGTGCCACCATCCTGGGACACATTCAGCGTGGCGGTGTTCCCTCCGCCTTCGACCGGGTCTTGGCGACCCGGCTGGGTATGGCCGCCATCGACTCCGTGGTGGAGGGCTACTGGGGAACCATGGTGGCGCTCAAGGGCACTGACATTGAGCATGTGGGCTTCCAGGAGGCCCTGGGCAAGCTGAAAACCGTGCCGCAGAGGCGTTACGACGAAGCGGCCGTCCTGTTCGGCTGAMKIGILTSGGDCPGLNAVIRGAVLKGIAIHGHEFVGFLDGWRGVVEGDIIDIPRTMVRGIAKQGGTILGTSRTNPFENGGGPEVIKAHMERLGIDAIIAIGGEGTLAAAKRLTDAGLKIVGVPKTVDNDLDATDYTFGFDTAVQIATEAIDRLRTTGESHHRCMIAEVMGRHVGWIALHAGMAAGAHAILIPEQKVSIEQITEWVQEAHDRGRAPLVVVAEGFVPDHMESPHSERGLDTFGRPRLGGIADQLAPELEARTGIETRATILGHIQRGGVPSAFDRVLATRLGMAAIDSVVEGYWGTMVALKGTDIEHVGFQEALGKLKTVPQRRYDEAAVLFGPGPT0017605_1793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017605-pfk|pfp-K21071NANA
D1-29_03501717hypothetical proteinATGACTCTTGACCCGGGAACCGCCGCCATCATCCAGCTCGCATGGGCAAGGCGGCTGGGGCTCGACGACGATGCTTTTGCTGAATCGCTCAGGTCCGGCGAACGCATCGTCCGGGTAGATGATGCGGCGCGGACAGTTGAGTTCGTGCGGCTGTTCGGAAGTTCCGCCCTGGTGGGCCCCGAGTGGATCATTGACGCCGCTGCCGGGATTCCGGACGAGGAGATGGCCCATCACGTCACGCTGCTGACCCTGACACGGACGCACGGCGGACACGGACTGGGGTCCGCTGCGCTGTTCTTTGCCGACGATCTGCCCCTGCGGCAGCCCTCCCAGGAGCTGACCGTCTCCCATGGAAATCCGGAGGCGATCGAACTGGAGGGGCTCTGCCCGCCAGACGACGTCAATGAGGTGGGCCTGTCAGACCTGGAAAACCGCTACACCATTATCCGTGAGGTGGAAGGCCGAAGAGTGCCCATAGCCTGCGGCGCCTACACGGAATGGGAAGGGCTGCTCGCCCAAATGGGTGTCCTGGTGGACCCCGAATGGCGGCGGCAAGGAATGGGCTCCCTGGCGGCGTCCATCGCCGCCCATGAGGCGCTGGCTGCCGGCCTCACGGTGCAGTGGCGGGCGGAAGTCAGCAACACAGGTTCACTGGCCCTGGCCCGGAAGCTCGGGCTGTCCACGGGCGGCATCCAGACGAGCGTGCACCTGGGCTGAMTLDPGTAAIIQLAWARRLGLDDDAFAESLRSGERIVRVDDAARTVEFVRLFGSSALVGPEWIIDAAAGIPDEEMAHHVTLLTLTRTHGGHGLGSAALFFADDLPLRQPSQELTVSHGNPEAIELEGLCPPDDVNEVGLSDLENRYTIIREVEGRRVPIACGAYTEWEGLLAQMGVLVDPEWRRQGMGSLAASIAAHEALAAGLTVQWRAEVSNTGSLALARKLGLSTGGIQTSVHLGNANANANANA
D1-29_03502501hypothetical proteinATGACTGAACCTGCCGCCTCCGGGCCATCACTTTCCGGCGCGTCACCGCAGCCAGGCACTGAGGGCGCCGGCCCTGCCGGCTACGGCGCCGGGCCTGCCGCCCCAGACGGGGCCGCGCCGGAGCCGGATGAGGCGGCAGTAGCTCTTGCCCATAGGCTGTTCCAGGCGGCGAGGGACGGCGATTCCGCACTCCTGGGCAGTTACCTGGACGCGGGCGCGCCTGCCACCATGACCAACGCCGCCGGAGATTCCCTGCTGATGCTGGCTGCGTATCACGGCCATGCCGAAACGGTGCAGCTGCTGCTCCAGCATGGCGGAGAAGCCAACACAGCAAATGACCGCGGGCAGACGCCGTTGGCCGGGGCCGCCTTCAAGGGGTATGCGGACGTGGCCAAGGTGCTGCTGCAAGCCGGCGCTGATCCTGATGCAGGTTCTCCGTCAGCGCGCGCAGCCGCCCAGATGTTCGCGCGCGCGGAGATCCTGGACCTGTTCGGCCAGTAGMTEPAASGPSLSGASPQPGTEGAGPAGYGAGPAAPDGAAPEPDEAAVALAHRLFQAARDGDSALLGSYLDAGAPATMTNAAGDSLLMLAAYHGHAETVQLLLQHGGEANTANDRGQTPLAGAAFKGYADVAKVLLQAGADPDAGSPSARAAAQMFARAEILDLFGQNANANANANA
D1-29_035031083gcvT_2AminomethyltransferaseATGACTACTCAAAGCCCCCTGTTGTCGCGCCCTGGCGCGGTTGAAGCCGCCGGTCCGGACGCCGGCGTCGCCGCGCATTACGGTGAGCCGCTCCGGGAGCAGCGCGCCCTCGCGGCAGGTACGGCCGTCGTCGATCTTTCCCACCGCGGTGTAGTCACCGTCACCGGACCGGACCGGCTGAGCTGGCTGAACACGTTGTCCTCACAACAGCTCACTGCCCTGCAGCCGGGCGAATCGAGCGAACTGCTCCTGCTGACTGTCCAGGGCCGGATCGAATTTGACGCCCGTGTTGTAGACGACGGCGGGACCACCTGGCTGATCGTGGAGGCTGCCGAAGCGGCGCCGCTGGCCGAATGGCTGACCCGGATGAAGTTCATGCTGCGGGTCGAGATCCAGGATGTCTCGGGGGAGTGGGCCGTCATTGGCTCCACCAAACCTGTGGAGGAATGGGCAGGGCTGCTGTCCTGGCGGGATCCCTGGCCGCACGTTGGCGCCGGCGGGTATTCGTATGCTGTGGTGGCGGAGGCTGACCACCCGGGAGTGGACCGGCCGTGGATCGAGTACCTGGTTCCTGCTGCCGAGCTTGCCGAAACTGTGGGCGACCGCCCGCTGGCCGGGATCCTCGCTGCAGAGGCCCTCCGCATCGCCGCCTGGCGGCCGCGGCTGGGCGCTGAAACCGATGACAAGACCATTCCGCACGAGCTCGATCTGCTGCGCACGGCAGTGCACCTGAGCAAAGGCTGCTACAAGGGCCAGGAGACGGTTGCCCGCGTGCACAACCTCGGCCATCCGCCGCGGCGGCTGGTGTTCCTTCAACTGGACGGGTCCCAGCACACCATGCCGGCTCCGGGCAGCCAGGTGCTGCTGGGGGAGCGCAAGGTTGGTGTGGTTACCTCGGTAGCCCAGCATTACGAGATGGGATCGGTTGCCTTGGCCGTGATCAAGCGGTCCGTGGGGCCGGATGAAATACTGACAGTCATGGACGGCGAGGAACCATACGTCGCCGCCCAGGAAGTGATCGTTGCGCCAGACGCCGGCCAAGTGGTGGGGCGCCCAACCGGATTCCTCAGGGGGACCCACTGAMTTQSPLLSRPGAVEAAGPDAGVAAHYGEPLREQRALAAGTAVVDLSHRGVVTVTGPDRLSWLNTLSSQQLTALQPGESSELLLLTVQGRIEFDARVVDDGGTTWLIVEAAEAAPLAEWLTRMKFMLRVEIQDVSGEWAVIGSTKPVEEWAGLLSWRDPWPHVGAGGYSYAVVAEADHPGVDRPWIEYLVPAAELAETVGDRPLAGILAAEALRIAAWRPRLGAETDDKTIPHELDLLRTAVHLSKGCYKGQETVARVHNLGHPPRRLVFLQLDGSQHTMPAPGSQVLLGERKVGVVTSVAQHYEMGSVALAVIKRSVGPDEILTVMDGEEPYVAAQEVIVAPDAGQVVGRPTGFLRGTHNANANANANA
D1-29_03504615hypothetical proteinGTGCCGATTGAGATACCAACTGATCTGACACCAGAACTTGTTCCGCTTTCCTGGCTCATTGGAGAGTGGGAAGGCCGCGGCCGGCTTGGAACTGGTGATGAGGACTCCGAGCACTTTCTCCAGCACGTATCGTTCACGCATAACGGGCTGCCCTACCTGCAGTACCGTGCCGAAAGCTGGCTGACCGACGACGACGGCACGCGGCTCCGGCCCCTCACCGTGGAAACCGGCTTTTGGGCGCTGGAGCGCAAACAGCTGGATGCCGACGGCGGCCCCGGCCTGGTACCTGCCGATATTGTCCCAGCCCTGAAAAGCGCCGACGAAGTCGAGGCCCTGCGCAACAAGGACGGCGGGTTCGACATCTCTGTCTCCATCTCGCACCCGGGAGGAATCTCGGAGCTGTACTACGGCCAGATCAAGGGCCCGCAGATCCAGCTCACCACCGACATGGTGATGCGGGGCAGCCACTCCAAGGATTACAGCGCGGCCACGCGGATCTTCGGCCTCGTGGACGGCAACCTGCTCTGGCGGTGGGACGTTGCCACCGGCGGAACCACAGAGCCGGGCAAGGGGCTGGAGGCTCATGCTTCCGCCTTCCTTAAAAGGGTGTCCTGAMPIEIPTDLTPELVPLSWLIGEWEGRGRLGTGDEDSEHFLQHVSFTHNGLPYLQYRAESWLTDDDGTRLRPLTVETGFWALERKQLDADGGPGLVPADIVPALKSADEVEALRNKDGGFDISVSISHPGGISELYYGQIKGPQIQLTTDMVMRGSHSKDYSAATRIFGLVDGNLLWRWDVATGGTTEPGKGLEAHASAFLKRVSNANANANANA
D1-29_03505114hypothetical proteinATGTCCGTACTTGCATTCGAAATTTTCTTCCTTGTCCTGCTCGGTATCGCCGGCCTGGCCATGGCCTGGTTCGCCGGCTTTGTGGTTTACCGGCTCTTCAAAGGCCAGAAGTAGMSVLAFEIFFLVLLGIAGLAMAWFAGFVVYRLFKGQKNANANANANA
D1-29_03506828hypothetical proteinATGGGATCACAGAGAATTGAGTGCAGAATCGACGCCGGGCACGTCAGGGCCAGGTACTTTATGACGGCCGAGCTGCAGGCCCCGGTACGCTCCCTGGGATCCTGGACCATCGGCGTTGTGGGCGTGGCCGGGCTGGCTGCGGTCATCGCCGGTGTGTACAGCTCCCGTGAGGCATTGGTGGCAGTGGCAGCCGCTATTGCCCTTGCCGTAGGCATCGGCTGGCCGCACTTCCTGCGCATTCCCGCGAAGAAAACCCTCGCCGCTGTTATTGGCCTCTCCGGAGCGGGATCGGCTATTGCCGCCGGCTTCGCCCCGGCGCCGGGGTTCCTGGACTGGACCCCCGCCTTCATCGCGCTGGGAATGATGGCCGTGTTCGTGGTGGAGCTGATCCGCGGGACGGGCCAGGCCCAGCGGCTGGAGTCCACCCTTGGCTGTTGCGTCGGCGTGCTCCTGTCCTGCCTCGGCGCGGGCTGGATCGCCGGTGCCCGTTTCAACGGGGTGCGGGAAATGCTGCTGGTGGCGGCCATCAGCGCGGCGGTTGCGTTGCTTGCCGGGCTGATCCGATGGCCCGACAGTATTGTGGCGCCCCTCGGGATCGTGCTGGCAGGTCTTGCCGGTCCGTTGGCCGGCCTTATTTTCTCCGATATCGCGGTGTTGCCGGCCGCCATCTTCGGTGTGGTGGTGGGGGCAGTGCTGGTCAGCTTTCGCCGGCTTGTCACAGTCCGCGGCGCTCCACTTAATTTTCCGGCGGCCCTTAGCATGGGTCTTGCGCCGGTCTCAGCGGTGGGTTCCCTGGCCTACTTCATAGACAAACTACTCATCTACTAAMGSQRIECRIDAGHVRARYFMTAELQAPVRSLGSWTIGVVGVAGLAAVIAGVYSSREALVAVAAAIALAVGIGWPHFLRIPAKKTLAAVIGLSGAGSAIAAGFAPAPGFLDWTPAFIALGMMAVFVVELIRGTGQAQRLESTLGCCVGVLLSCLGAGWIAGARFNGVREMLLVAAISAAVALLAGLIRWPDSIVAPLGIVLAGLAGPLAGLIFSDIAVLPAAIFGVVVGAVLVSFRRLVTVRGAPLNFPAALSMGLAPVSAVGSLAYFIDKLLIYNANANANANA
D1-29_03507699regX3_3COG0745Sensory transduction protein regX3ATGTCGCACATCCTGTTACTGACGAACAGCACCGGCTCATCGGTGGACATCCTGCCTGCCCTGGAATTGCTGAACCACCGTGTACACATCCTCGCTGCAGAGCCGACTGCCCTGCTCGAAACAGACCCGTGCGACATCGTGCTTTTGGACGCCCGCAAGGACCTCGTTGGCGCCCGCTCCCTGACGCAGCTGCTGAAGGCAACCGGCCTGAGCGCACCGCTGGTCCTCATCCTCACCGAAGGCGGAATGGCTGCCGTCTCCTCAGCCTGGGCTGTGGATGACATCGTGCTGGATTCCGCCGGGCCCGCCGAAGTGGAGGCCCGAATCCGGCTCTCCGTGGCCAGGGCCGTACCCGACAAAGAGGACGTACCCACCGAAATCCGGGCCGCCGGCGTCGTTATCGATGAAGCGAGCTATACCGCCCGGGTCAACGGTGCTGCACTGAACCTGACCTTCAAGGAGTTTGAACTCCTCAAATACCTGGCGCAGCACCCCGGGCGTGTCTTTACCCGCCAGCAGTTGCTGACAGAAGTGTGGGGCTACGACTACTACGGCGGCACCCGCACCGTGGACGTCCACGTCCGGCGCCTGCGGGCAAAGCTCGGGGCCGACCACGAAAACCTGATCAGCACTGTCCGCAACGTGGGCTACCGCCTGACCCTGGTCCGTCAGCAGGAAGACGAACTGACCGAGGCCTGAMSHILLLTNSTGSSVDILPALELLNHRVHILAAEPTALLETDPCDIVLLDARKDLVGARSLTQLLKATGLSAPLVLILTEGGMAAVSSAWAVDDIVLDSAGPAEVEARIRLSVARAVPDKEDVPTEIRAAGVVIDEASYTARVNGAALNLTFKEFELLKYLAQHPGRVFTRQQLLTEVWGYDYYGGTRTVDVHVRRLRAKLGADHENLISTVRNVGYRLTLVRQQEDELTEAPGPT0014763_17DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014763-walR-NANANA
D1-29_03508972mshDCOG0456Mycothiol acetyltransferaseATGAGTCCTGCGCACCCCGAGAAATGGCCTGTCCTTGTTGTCAAGGGCGGGCTCGACAACCAGTTGCTCAAGGATTGCAGGGCCCTTCTCGCTGCAGCCGAGGAATCGGACGGCAACCCCTCACTGTCGGAGCAGACAGTGGTGACGCTCCGGGCCGGCGACCTGGCCGAACACGGTCTCCTGACGCTGGCCCTCTACGCACCGGACGAGGATGACGATCCCGCCTCCGGCCAGGACCTCGCAGGCATCGCAGTGGTGGTGGAGGAAGCGGACGGCAGCGGCGTGCTGGAAATCGCCGTCCATCCGAGTTACCGCAATCAGGGCGTGGCGGACCGCCTCGTCGGCGCCCTGAAGTCAAGCCGCGGGTTCGACGGCCTGAAGGCATGGTCCCACGGCAACCATGAGGCAGCAGCGGACCTCGCGGCCAAATACGGGTACGGCCCCGTCCGCGAACTCTGGAAGATGAGGCTGGCCACCGGGACTGCAGAACTTCCCGACGCCGGCCTTCCGGACGGCGTGACGCTGCGCGCCTTTGTCCCTGGCCGGGACGAAGAGCCGTGGCTTGCCGCCAACCGTGCCGCCTTTGCCGACCACCCTGAGCAAGGCGCGATGAGCCGGGCGGACCTGGATGCCCGGATTGCCGAAGACTGGTTCGATCCCGCCGGTTTCCTGCTGGCGGTTGACGGCGATGGCGGCCTGCTCGGTTTCCTGTGGACAAAGGTGCATCCCCGGCACGGCGGGCACCCCGCGATCGGTGAGGTGTACGCCGTGGGCGTCACCCCGGCCGCACGGGGTATGGGCCTGGGAAAGGCCCTCACCGTGGCCGGCATCAGGTATCTGCAGCAGCTCGGGCTTTCCGCCGTCATGCTTTACACCGATGCCGACAACGCCCCGGCGGTTTCCCTGTACCGGGGACTGGGCTTCACGCGCTGGGACATGGACGTGATGTACGGGCCGGTTGCGGCGCGCTAAMSPAHPEKWPVLVVKGGLDNQLLKDCRALLAAAEESDGNPSLSEQTVVTLRAGDLAEHGLLTLALYAPDEDDDPASGQDLAGIAVVVEEADGSGVLEIAVHPSYRNQGVADRLVGALKSSRGFDGLKAWSHGNHEAAADLAAKYGYGPVRELWKMRLATGTAELPDAGLPDGVTLRAFVPGRDEEPWLAANRAAFADHPEQGAMSRADLDARIAEDWFDPAGFLLAVDGDGGLLGFLWTKVHPRHGGHPAIGEVYAVGVTPAARGMGLGKALTVAGIRYLQQLGLSAVMLYTDADNAPAVSLYRGLGFTRWDMDVMYGPVAARPGPT0002685_5DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
D1-29_035092250ppkCOG0855Polyphosphate kinaseATGAAACCGGAACCCGCCGGAACAGTCACGTCCGAAGGTGCTGCAGTGCCAGTCCGCGCACGGTTCGGCTCGTCGGAGGTGCCAGCCTCCCGGGCGACACAGGACCGGATCGACATTCCTGAGTTCGCGCCCAACCTTGCACCTGAAGGGGACATCCGGCCGGACCGGTTCCTGGACCGCGAATTGAGCTGGCTGGCATTCAACTCCCGGGTCCTGGAACTCGCTGAGGACCCCACCCTCCACCTGCTGGAGCGGGTCAGCTTCCTGTCCATCTTCGCGTCCAACCTGGACGAATTCTTTATGGTCCGTGTTGCCGGCCTGAAGCGCCGCATTGCAACCGGGCTGGCCGTGCCCTCCCCCGCAGGCCTCAGCCCCGTTGAAGTCCTGGAAAAAATTGGTGATGAAGCGCACCGGCTCCAGCAGCGCCACGCCCAGGTCTTCTCCGAACAGATCCGCCCTGCCTTGGCGTATGAACACATCCACCTGATGCATTGGGATGAACTCGATGACGCCGCCAAGCAGCAGCTCAGCGCAATGTTCGCCGAAAAGGTCTTCCCGATTCTGACGCCCTTGGCCGTGGATCCTGCACACCCCTTCCCCTACATCTCCGGCCTCTCGCTGAACCTGGCCGTGGTGGTCCGGAACCCGGTGAGCGACAAGGAACTCTTTGCCCGCGTGAAGGTGCCGGACCAGCTGCCGCGCCTCATATCCATTGACGGACCCAGGGCCGGTGCGGTGGCAGGGCGGGTTGCCCGCTTTATCGCGCTCGAAGAAGTTATCGCCGTCCACCTGGACAAGCTCTTTGCCGGCATGGAAGTCCTGGAGCACCACATCTTCCGTGTCACCCGCAACGAGGACGTGGAAGTGGAAGAGGACGACGCCGAGAACCTGCTCCAGGCCCTCGAAAAGGAACTGTTGCGCCGCCGGTTTGGCCCTCCCGTCCGGCTGGAGGTCACGCACGACATCAACCCCAACATCCGCGCGCTTCTGATCCGCGAACTGGGCGTTGAAGAGTCCGAGGTCTATTCAGTCCCGGCGCCGCTGGACCTCCGCGGACTGTCCGTTATCGCGGCGATCGACCGCGCGGATCTCCACTACCCCAAACACGTCCCGCACACCTCCAGGTACCTCAACGAATCCGAGACGTCCAAGGCAGCGAACGTCTTCGCCGCCATGCGCCGCCGCGATATCCTTCTGCACCACCCGTACGACTCCTTCTCAACGTCCGTACAGGCTTTCCTTGAGCAGGCCGCCGCTGACCCGAAGGTCCAGGCCATCAAGCAGACCCTGTACCGCACCTCGGGCGACTCCCCCATTGTGGATGCCCTGATCGATGCGGCCGAGGCAGGCAAGCAGGTCCTGGCCCTTGTGGAGATCAAGGCCCGCTTTGACGAGCAGGCCAACATTTCCTGGGCCCGCAAACTTGAGCAGGCGGGCGTGCATGTGGTCTACGGAATCGTGGGCCTGAAAACGCACTGCAAGCTGTCCCTGGTGGTCCGGCAGGAAGTGGACGGGCTGCGCCGCTACTGCCACATCGGAACCGGCAACTACCACCCACGCACCGCGCGCTATTACGAGGACCTGGGCCTCCTGACCGCCAACGACCAGGTGGGCGAAGACCTTTCCAAGCTCTTCAACCAGCTTTCCGGCTATGCACCCAAATCAACGTTCAAGCGCCTCCTCGTGGCACCAAGGTCCGTCCGGTCCGGGCTGATCGACAGGATCGAAACCGAGATCCGTAACGCCCGCGCGGGACTTTCCGCCAGGGTTCAGATCAAGGTGAACTCGATTGTGGACGAGGCCATCATCGACTCGCTGTACCGGGCATCGCAGTCGGGCGTCAAGGTGGATGTAATCGTCCGCGGTATCTGTTCACTGCGCCCGGGCGTCCCCGGCCTCAGCGAAAACATCACTGTCCGCTCAGTGCTGGGCCGCTTCCTTGAACACTCACGGGTCTTCGCGTTCGCCAACGGGGGCGACCCCGTGGTGTACATCGGCTCGGCTGACATGATGCACCGCAACCTGGACCGCCGGGTTGAGGCCCTGGTCCAGCTGGCCAGTTCGGATGATGTCACATACGTCCTTGACCTGCTGCGCCGCTACATGGATCCCGAAACGGCCAGCTGGCACCTGGACAACCAGGGCGACTGGTCGCGTTACCATATCGCCGACGACGGCACGCGCCTTGACGACGTCCAGTCGTGGCTGCTCGCATCGAGGCCGCGCCAGCGCAGCCTGAGCCGGCGGTAGMKPEPAGTVTSEGAAVPVRARFGSSEVPASRATQDRIDIPEFAPNLAPEGDIRPDRFLDRELSWLAFNSRVLELAEDPTLHLLERVSFLSIFASNLDEFFMVRVAGLKRRIATGLAVPSPAGLSPVEVLEKIGDEAHRLQQRHAQVFSEQIRPALAYEHIHLMHWDELDDAAKQQLSAMFAEKVFPILTPLAVDPAHPFPYISGLSLNLAVVVRNPVSDKELFARVKVPDQLPRLISIDGPRAGAVAGRVARFIALEEVIAVHLDKLFAGMEVLEHHIFRVTRNEDVEVEEDDAENLLQALEKELLRRRFGPPVRLEVTHDINPNIRALLIRELGVEESEVYSVPAPLDLRGLSVIAAIDRADLHYPKHVPHTSRYLNESETSKAANVFAAMRRRDILLHHPYDSFSTSVQAFLEQAAADPKVQAIKQTLYRTSGDSPIVDALIDAAEAGKQVLALVEIKARFDEQANISWARKLEQAGVHVVYGIVGLKTHCKLSLVVRQEVDGLRRYCHIGTGNYHPRTARYYEDLGLLTANDQVGEDLSKLFNQLSGYAPKSTFKRLLVAPRSVRSGLIDRIETEIRNARAGLSARVQIKVNSIVDEAIIDSLYRASQSGVKVDVIVRGICSLRPGVPGLSENITVRSVLGRFLEHSRVFAFANGGDPVVYIGSADMMHRNLDRRVEALVQLASSDDVTYVLDLLRRYMDPETASWHLDNQGDWSRYHIADDGTRLDDVQSWLLASRPRQRSLSRRPGPT0002685_412DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
D1-29_03510969hypothetical proteinTTGTCGAGCGACGCACTCGTAGCAGATCAGACAGACCATCCGGGCGAGCCGGTAGCGGTCACAGCCGCCGGAGCCCTGCCGTGGCGCATCAACAAGGACCAGCTGGAGGTACTGCTGATCCACCGGCCACGCTACGACGACTGGTCCTGGCCCAAGGGAAAAATCGACGCCGGTGAAACCATTCCCGAGTGTGCCGTCCGCGAGATACAGGAAGAAATCGGCCTGACGGCACAGCTGGGCATCCCCCTGCCCCCCATCCACTACCATGTGGCCTCCGGCCTGAAAGTGGTTCATTACTGGGCCGTCCGCGTCAACGGGGACCGGCTCCTGCCGGACGGCAAGGAGGTGGACAGTGTGATGTGGTGCTCCCCTGCGAAGGCCGCCACGCTGCTGTCCAACCCTTCCGACGTCGTCCCTCTGGACTTCCTCCAGGCCGCCTATGACCGTGGGGAACTGAACACCTGGCCCATGGTGGTGCTCCGCCATGCCAAGGCCAAGCCCCGTTCCTCCTGGACCAAAGCAGAGGGTGAACGCCCCCTGGCCGCCACCGGACTGAGGCAGGCCCAGGCCGTGGGACGACTCCTGCATACGTGGAAGCCCCTGCGGGTTGTTACCAGTCCGTGGCTGCGCTGCGTGGCCACCGTAATGCCGTATGCCAACGCCGCCGGGGCGAAGGTGAAGCTGGTGGAGGCCCTGACGGAACACAGGCATGCCCGCAATCCCAAGAAGACAGCTGCGGTCATCGAGGCCCTGTTCGACAAGCAGCGCCCGGTAGTTGTCTGCACCCATCGCCCGGCCCTCCCTACTGTGATGGACCAGCTGGCCAAGCACATGCCCTCGGCACTGAGCGCCCTGCTGCCGTCCTCCGAGCCGTACCTCTCACCGGGGGAAGTAGTGGTGTGCCATGTTGCCCCCGGCAGCAAGAACCGAATCGTCGCGGTGGAACAGTTCAAACCGTTTGACGACTAGMSSDALVADQTDHPGEPVAVTAAGALPWRINKDQLEVLLIHRPRYDDWSWPKGKIDAGETIPECAVREIQEEIGLTAQLGIPLPPIHYHVASGLKVVHYWAVRVNGDRLLPDGKEVDSVMWCSPAKAATLLSNPSDVVPLDFLQAAYDRGELNTWPMVVLRHAKAKPRSSWTKAEGERPLAATGLRQAQAVGRLLHTWKPLRVVTSPWLRCVATVMPYANAAGAKVKLVEALTEHRHARNPKKTAAVIEALFDKQRPVVVCTHRPALPTVMDQLAKHMPSALSALLPSSEPYLSPGEVVVCHVAPGSKNRIVAVEQFKPFDDNANANANANA
D1-29_035111659hypothetical proteinGTGCCTGGCACCAATGGATTTGAACTGGCGTTCCAGAATGTAGCGCCCATGGTCCTGCTGTGGCCCTTCCTCTTGGCCGCCGGGCTGTACGTCCTCCTCCGCTGGGTGATCTCGGCACCGGATGGTGGAACATCCAGGGTCACGGTGGCCCAGCATGCCCTCTGGGTGGGTGTCATCGGCTGGCTGGGCAGCTCCCTTCAGCCGGCCTCGAATGCCGGGATCCTGCCCGAGAACCCGGGTACGGCAGCACTGGCCTCCCCCGGGGCCATCCTCACCGCCCTCGCCTGGCCCATCCTGGGATGCCTCGGGGTCCATGCAATCGGACAGCTGAGCTATCCCGGGCCCCGGCGCCCCCGCAGGCTGGCTACCCTTGGCGTCCGGCGGGTCCGGGATTTCCTCCCGCGCCCCCTCGCGTGGACTGTTGCCGCCATTTTCGTGGCAGCGGCTGTGCAGATCGCCTGGACGGCCACCCTTCCGGGATTCACTCGGGTCCCCTACAACACGTTGAACGTGAACCCCCAGGATGCTGTCCAGGCAGGCGGCGACGGGCGCATTCCGGGTGTTGAACTGGCTGCGTACCTCGGTGCCGGGCTGATGGTGCTGGCCATCGGTACGGGCCTTGTCCTGATGCTCATTGCCAAGCGACGGCAGCTGGAGGCGCTGGACGCGGACGAGAATGACCTGCTGCGGACCATCGCGATGAACAGGCTGCTCCGCACGGTGGCCACGATTGCCGCGGGATTGGCCGCCATCGCCGGGAACTTCGCGGCACGGCCGGACGCTTTGGTCCCCTCAAACGGCTGGTTCAATCCCATGGGCCTGGTTTCGCTCGCAGTGCTGCTGGCCATGTGGTGGTGGGCCCCGCCCAAGCTCGCCAGTGCCCAGGTTGGCCGCAAGGGTTCCGCGCACCCCACATCGGCTGCCGGCACACAGCCAGCCACCCGGCTATCCGTCTCGCTGGGCGCCGCTCTCGGGCTCGCCCCGCTGATACCCGCCGTTGCTGGCCTCTTCTTTCCCGGAACGCTGATCTGGGGACAACCGACTGTGTTCACCGCCCTGGCGGCGGCAGCAGCACTGGCCGTCATCGCCGCCGGGGAGCTCCTGATGCACCGCAACCACGGAGCCCTATCCGCACCGAGGACGTGGCCGCGGCAGCCGGTGAGCCCGGCGCTGCTGTCCACCGCCATCGTGACCCTCACCCTTCTCACCGCCGTGGCCGCGGTTACGGCCGCCGGTGAGGCGATGCTGGCCGCACCGCCAAGCTGGACCACAACGGCACTGGCCACGGCCGCCGTCGTGATCCTTTCGGCACTCCCCCTTGCCGCCGCCCGGAAACGGCGCGGCATCGCGGCGGTTGTCCCCGGCCTGGACGCGGCGCTGCGCGCGATCACGGTGCACAGGGTGGTCCGCACCCTGGCAGCCTGCTTCGCGGTCCAGGCCGGCGTGCTGCTCATCACGGCCAGCCGGGCGTGGCCTCCGGTCCTTGGACTGCCGGAGGCTGCGTGGCCGTCCTTCTGGCAGCCCCCTGTCACCGTGGGTTCGCTGGTGGTGGCAGCAGGAGTGGTCATCGCGGTGATTCCGGTCAGAGGCTTTGCGCGCACTGCCTCCCCGCGACAGCCCCAAGCGGATCCGGCAAACCAAGCCGAAGCGCTGAAATGAMPGTNGFELAFQNVAPMVLLWPFLLAAGLYVLLRWVISAPDGGTSRVTVAQHALWVGVIGWLGSSLQPASNAGILPENPGTAALASPGAILTALAWPILGCLGVHAIGQLSYPGPRRPRRLATLGVRRVRDFLPRPLAWTVAAIFVAAAVQIAWTATLPGFTRVPYNTLNVNPQDAVQAGGDGRIPGVELAAYLGAGLMVLAIGTGLVLMLIAKRRQLEALDADENDLLRTIAMNRLLRTVATIAAGLAAIAGNFAARPDALVPSNGWFNPMGLVSLAVLLAMWWWAPPKLASAQVGRKGSAHPTSAAGTQPATRLSVSLGAALGLAPLIPAVAGLFFPGTLIWGQPTVFTALAAAAALAVIAAGELLMHRNHGALSAPRTWPRQPVSPALLSTAIVTLTLLTAVAAVTAAGEAMLAAPPSWTTTALATAAVVILSALPLAAARKRRGIAAVVPGLDAALRAITVHRVVRTLAACFAVQAGVLLITASRAWPPVLGLPEAAWPSFWQPPVTVGSLVVAAGVVIAVIPVRGFARTASPRQPQADPANQAEALKNANANANANA
D1-29_03512387hypothetical proteinATGAACGCCGGGATCTCCATCGATTTAAGGTCAGCGACGCCGCCGTACGAGCAAATCCGTTCACAGATTGCCTCTTTGATAGCCATCGGCTCCCTCAGCCCCGGCAGCCGCCTGCCCACCGTCCGCAGCCTCGCGGCCGATCTGGGCATCGCCGCCGGCACGGTGGCCCGGGCCTATAAGGAGCTGGAGGCGTCAGGCCTTATTGAATCCCGACGCCGGTTGGGTACCGTGGTTGCGCCTGGCATCCGGGGAGGGGCCGGCGGCGCGGAAGCCGTTCCCGAATCGGTGACTGCCGCCGTCGGCCTCCTGGTCAACACCGGCCGCGATGCAGGGTTGAGTGATGAACTCCTGCTTGACCTGGTGCGTGGGAAACTCAGAAATGGCTGAMNAGISIDLRSATPPYEQIRSQIASLIAIGSLSPGSRLPTVRSLAADLGIAAGTVARAYKELEASGLIESRRRLGTVVAPGIRGGAGGAEAVPESVTAAVGLLVNTGRDAGLSDELLLDLVRGKLRNGPGPT0016790_1400DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
D1-29_03513762thyACOG0207Thymidylate synthaseATGGCCCATGGCACGCACAAATCCGACCGCACCGGGACCGGCACTACCAGTGTGTTTGGCCGGCAGATCCGGTTTGACCTGTCCAAAAGCTTCCCGCTGATCACTACCAAGCGCGTTCATTTCAAGTCCGTGGCGGTGGAGCTGCTGTGGTTCCTGCGCGGCGAATCGAACGTGAAATGGATGCAGGACCAGGGCGTTACCATCTGGAATGAATGGGCAGATGCCGACGGCGAGCTGGGTCCGGTTTACGGTGTGCAGTGGCGGAGCTGGCCCACCCCGGACGGTGGCCACATCGACCAAATCGCCGAGCTGGTGGAGAACCTCAGATCCAACCCGGACTCGCGGCGGCATATTGTCTCGGCCTGGAATGTCTCCGAACTCAAGGACATGGCGCTGCCGCCGTGCCACGCGTTCTTCCAGTTCTATGTGGCCAACGGCAAACTCTCCTGCCAGCTTTACCAGCGGTCCGCGGACATGTTCCTGGGCGTACCGTTCAATATCGCCTCGTACGCCCTGCTCACGTGCATGATCGCCCAGCAGGTGGGGCTGGAGCCCGGAGAGTTTGTCTGGACCGGCGGCGATGTACACATCTACGAGAACCACATGGACCAGGTCCTCAAGCAGCTGGACCGGGAGCCGTACGAGTACCCGCAGCTGGTGATCACCCGGAAGCCGGCCTCCATCTTCGACTACACCCTCGAGGACTTCGACGTGGTGGGCTACCAGCACCACCCCACTATTAAGGCTCCGATCGCCGTATGAMAHGTHKSDRTGTGTTSVFGRQIRFDLSKSFPLITTKRVHFKSVAVELLWFLRGESNVKWMQDQGVTIWNEWADADGELGPVYGVQWRSWPTPDGGHIDQIAELVENLRSNPDSRRHIVSAWNVSELKDMALPPCHAFFQFYVANGKLSCQLYQRSADMFLGVPFNIASYALLTCMIAQQVGLEPGEFVWTGGDVHIYENHMDQVLKQLDREPYEYPQLVITRKPASIFDYTLEDFDVVGYQHHPTIKAPIAVPGPT0008145_2697DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560NANA
D1-29_03514585folACOG0262Dihydrofolate reductaseATGAGCACCGAAAATTCCGCAGACCCCCAAGACTTCACCCAGGAGATCGCTGACTCCGTCACCGGAGTGGGCCTGGTGTGGGCGCAAACTGCCGACGGCGTCATTGGCAAGGGCGGCGACATGCCGTGGCACCTGCCCGAGGACCTCAAACACTTCAACCGGCTGACCATGGGCCATCCCGTGATCATGGGCCGCAAGACCTGGCTGTCCTTTCAGGACAAGTACCGTCCCCTCCCCGGCCGGACCAACATCGTCATCACCCGGCAGAAAAGCTGGGCGGACTCGCCCGAGGCGGAGGGCGCCGTCGTGGTTCCGTCCTTGGATGACGCGCTGCTGGAATCCCAGTTCGTCGACGGCGGCGAGACGGTATGGATCCTGGGCGGCGGTGAGGTCTTCCGGCAGTCCACGGACCTCGCCAACGTTGCGGTGGTCACCACCATCGATGTGGAAGCCGACGGCGACACCTTCGCTCCCGAGCTGGGCGCCACCTGGGAGGCGGCCGCGGCTGTTCCGCCCGATGGCTGGCTGACGGCGGCCAACGGGACACGCTACCGATTCACCAAATGGGTACGGACAGAGGGCTGAMSTENSADPQDFTQEIADSVTGVGLVWAQTADGVIGKGGDMPWHLPEDLKHFNRLTMGHPVIMGRKTWLSFQDKYRPLPGRTNIVITRQKSWADSPEAEGAVVVPSLDDALLESQFVDGGETVWILGGGEVFRQSTDLANVAVVTTIDVEADGDTFAPELGATWEAAAAVPPDGWLTAANGTRYRFTKWVRTEGPGPT0007945_385DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
D1-29_03515219hypothetical proteinGTGCTGAAAAAACCCGAAACCCTGTTTGTACTGGGCTACATGCTGCTGCCGCTCCTGGCCCTGCTGTCCGCCATCGTTGGCCTGACCATGATCCTGGGCGGCAACAAGATCCCCGGGATCATCGTGCTGGTGGTGGTCACCCAGGTCTTTGCCTTCGGCGCTTTCTTTGCCCTCCGGGCCCGCAAGAATGCGGTGCCGGAGGAAACCGGCCGGCGCTAGMLKKPETLFVLGYMLLPLLALLSAIVGLTMILGGNKIPGIIVLVVVTQVFAFGAFFALRARKNAVPEETGRRNANANANANA
D1-29_035161008hypothetical proteinGTGGCAGGTAATTTGTGGGGCGCGGACGTCGCCCAGCTGCGCACGCTGGCACAGCAGTTCGGAACGGCATCCGAAAGCCTGATGCAGCAGTCGTCGTCGCTCACCGGTGTGATCAACAATGGCAGCGGGTCCTGGAAGGGTGCCGACAGTGAACGCTTCAGGTCCGAGTGGAATGGAAGCCACCGGGCACTGATCCAGCAGACGGCCCATGCGCTGAAGCAGGAATCCAAGAGACTGCTGGCGAACGCCGACGAACAGGAGAAGGCCAGCAATGCTGCGCCCGGCTCAGGCGGCGGAGGGCCTTTTGGCGGCCGCGGCCATGCAGGCCGTCCGGCCAACCCGTTCAGTCCTTGGGGCCCAGATTGGATCTCGGACGGAGATTCTCCTTTCCGCACGGGCTGGGACGCCTATAACGGCGTCCTCGGCCTGAAAACAGTTCCCTTGGGGATCCGGGATTTCCAGCAGTTCCTCGCGCGGCACGGCAGGGAAGTCGATGCTTTGCTCGCAGCCGGGCACGACTGGGCCGCAGTGAAGCGGACCTTCAATAAGGACCTCTGGGAAGCAGCGGCACGTTCAGACAGTTTGCGCGGTGCATTCTCCGGGACGGCGGACCTGCTGAGCGGCAAATTCGGTGACTTCGCCGAGATGGCCCGTGGTGCCGGGGCAGCTGACCTTGGTCCCTGGGCAAAGTTTGGCCTGAACTCGGCCGGGCATGCCATTGGCGGAATAAGTGTTGGCCTGGATGGCCTGGACACGGTCAACGCAATCCGAGACGGCGAAACCGGGGATGCCCTGAAGTCGGGCCTCAAAACTGCACTCGGTGTTGGGTCCTTCTTCCCGCCGCCCGTTGGTGTCACCTGCATGGTGATTGGCGGCGCATGGGCGGCCGTCGAACTGATCCCGGGAGCTAAGGATTCCATTGATAATGCCTTTGACGCCATCGGTGACTTCACCGAAGATGCCACAGAAAATATCGGCGAGGGCGTCAAGGACTTCTTCGGTTTCTAGMAGNLWGADVAQLRTLAQQFGTASESLMQQSSSLTGVINNGSGSWKGADSERFRSEWNGSHRALIQQTAHALKQESKRLLANADEQEKASNAAPGSGGGGPFGGRGHAGRPANPFSPWGPDWISDGDSPFRTGWDAYNGVLGLKTVPLGIRDFQQFLARHGREVDALLAAGHDWAAVKRTFNKDLWEAAARSDSLRGAFSGTADLLSGKFGDFAEMARGAGAADLGPWAKFGLNSAGHAIGGISVGLDGLDTVNAIRDGETGDALKSGLKTALGVGSFFPPPVGVTCMVIGGAWAAVELIPGAKDSIDNAFDAIGDFTEDATENIGEGVKDFFGFNANANANANA
D1-29_03517651hypothetical proteinATGACTGCGACAAAGACCCCGGCAGACACGTCTGTAGGATTTGGCCTGGCCGAAATGGCCTACCTAGTGCATCTGCAGGCGACGCCGGGATCCCAGGCCAGCGCTTCGTGGCTACGGCTCACCGAGGAATCTGAAAACCAGGAACTGATCGGCGCCGGCCTTTCCTCGCTCATCGCCCGAGGCCTGGCCACCGTCAATGGTTCAGATGTGGACTTCGATATGCGTGTCGATGTTGTCGCCTACACACTTGCCAACGCCCTCAGATGGACACAATTGGATCTGCTTCTGAATGCCGAACAAGGCGATTCGGTCCTGCATGCCGAGTCGGACCGGACAACGCTGATATTCCAGCCGAGAACCATGATGAGTTGGTTCGCCCTTCCCCAGGACCCAAACATCTCAGCAGCAGCCGCTGAGGCCTTCATCGTCCGGGAACATTTGGGCCAGAACACGGAAGGTGGCGTCAGGATAAGGTCCGGATTGCGCCCCGGTGCCCGGCAGTTACTCATCCGCAAAGACAATGAAGGGTGGGTCCACGCCGTAGCCGTGAATGACGTGGTGGGAGCTGAAACGTTGGCGGAGACCAACGACGACCTGGTTGCCGCGCTGAGTACGTTCAGGTCCGAAGGTGGATCTGCTGATGGCATCTGAMTATKTPADTSVGFGLAEMAYLVHLQATPGSQASASWLRLTEESENQELIGAGLSSLIARGLATVNGSDVDFDMRVDVVAYTLANALRWTQLDLLLNAEQGDSVLHAESDRTTLIFQPRTMMSWFALPQDPNISAAAAEAFIVREHLGQNTEGGVRIRSGLRPGARQLLIRKDNEGWVHAVAVNDVVGAETLAETNDDLVAALSTFRSEGGSADGINANANANANA
D1-29_03518492hypothetical proteinATGGCATCTGAGCCATCGGTGGAAAGCCTCATTGCCGACCGCCCCTACTACTACGCCACCGGGATGGACAGAACCGTCTACGCCTATACCCGGGACGAATGGGGCATTGGTGGATCGCAGCCGTCCGGCAATTACTCGGTCCACAGCGCAACAGGCCTGTACATCGTCACGATCCTGATGACCATCCCCGCCATATTTGCGCCCCTGCTTTTGATCGTCGCCGTAGCCAGCCTCAACCTCATTGTTGGCCTGCTCGCGCTGGTTTGCACCGCGCTCTTTACAGGGGGCTGGCTGTTCGGCATCCATAACCTCCGGAGGGAGCGGCAAGCGTCGAAGCTGCGCCGCCTCAGAGGGTTGCCGAAGCCCCGCTTCGCTCTCGACGACGACAAGGCCCGCAGCTGGTTCGAGGCCAACCCGTCCGGGATTCCGATCACCCGCGAAAACTTCCCGGACAGCACGCGGCCATTCCCCGGCGAATCCCACCCAGGCTGAMASEPSVESLIADRPYYYATGMDRTVYAYTRDEWGIGGSQPSGNYSVHSATGLYIVTILMTIPAIFAPLLLIVAVASLNLIVGLLALVCTALFTGGWLFGIHNLRRERQASKLRRLRGLPKPRFALDDDKARSWFEANPSGIPITRENFPDSTRPFPGESHPGNANANANANA
D1-29_03519405hypothetical proteinATGGTTTACGACGCTGCCCGCTTCCAGCGGGATGATGAGACGACGGCGTGGCACCAGGCCACCGTCGCGGCCGGTGACAAGCGCAACCTGATGCGCACCAAGAAGGGTGAGCTTTACAGCTACGCCGCCGACGAAATCGGATTTGCAAGGGGATCCGGCGTGCAATTCACCACGTGGTGGGGCATGCTGATCGGCGCCTCGATGATGCTGGGCATTGGTTTGATCGTCACCTGGGGTGTGCTGATCCTGCCCGCCGTTCGGGGAGGCGAGCCCTATTGGGGTGGACTGTTCCTTGTTCTTTTTTCTGCCGGCGGGTGTTGGCTTTTTCTCCACTATGCGGTGGCCGAGTACAAGGCCCGTCAGCTGCGCCGGGCCAGAGGCGTTCCCGAGCCAGGTTCCAGATGAMVYDAARFQRDDETTAWHQATVAAGDKRNLMRTKKGELYSYAADEIGFARGSGVQFTTWWGMLIGASMMLGIGLIVTWGVLILPAVRGGEPYWGGLFLVLFSAGGCWLFLHYAVAEYKARQLRRARGVPEPGSRNANANANANA
D1-29_035201131asdCOG0136Aspartate-semialdehyde dehydrogenaseATGACTACAGCAGCTACTCCGTCCGTTGGACTGGTCGGTTGGCGTGGCATGGTCGGTTCCGTCCTGATGCAGCGTATGCAGGACGAAGGCGACTTCGCCAACATCAACCCGGTATTTTTCTCCACCTCAAACGCGGGAGGTGCCGCCCCCGTTTTTGCTGACGGGGCAGGCAAGCTCGAGGACGCGTTCGACGTCGAGACGCTGGCGAAGCTGCCGATTATTGTTACCGCCCAGGGCGGGGATTACACCAAGCGTGTCCACACCGAACTGCGCAGCCGGGGCTGGGATGGCCTCTGGATCGACGCCGCCTCCACCCTGCGCATGACCGATGACTCCATCATTGTGCTGGACCCGATCAACCGGGATGTCATCGACAAGGGCCTGGTCAACGGCACCAAGGACTTCATCGGCGGGAACTGCACCGTGTCCTGCATGCTGATGGGCCTGGGCGGGCTCTTCAAGAACAACCTTGTCGAGTGGGGCACGTCCATGACCTACCAGGCTGCCTCCGGCGGCGGCGCGCGGCACATGCGCGAGCTGCTCAGCCAGTTCGGGACTCTGAACGCAGAGGTCAGCAGTGAACTGGACGATCCGGCGTCGGCCATCCTGGACATCGACCGCAAGGTCCTGGCCCACCAGCGCACGGGCATCGACGCCAGCCAGTTCGGTGTGCCACTGGCCGGATCCCTGATCCCCTGGATCGACGCGGACCTCGGCAACGGGCAGTCCAAGGAAGAGTGGAAGGCCGGGGTGGAGACCAACAAGATCCTGGGCACCACGGATGAAAACCGGGTCATCATGGACGGACTCTGCATCCGGATCGGTGCCATGCGCTCCCACTCCCAAGCTCTTACCCTCAAGCTCCGCGAGGACCTTTCCGTGGCCGAGATCGAGAAGATCGTGGCCGAGGACAACGAGTGGGCCAAGGTCATTCCGAACTCCAAGGAAGCCTCGATGACGGGCCTGACTCCGGTTGCCGCCTCCGGCACGCTGGACATCCCGGTGGGCCGCATCCGCAAGCTTGAAATGGGCCCGGAGTACATCAGCGCCTTCACCGTAGGCGACCAGCTGCTGTGGGGCGCCGCCGAGCCGCTGCGCCGCATGCTCAACATCGCCACGGGTACGCTCTAGMTTAATPSVGLVGWRGMVGSVLMQRMQDEGDFANINPVFFSTSNAGGAAPVFADGAGKLEDAFDVETLAKLPIIVTAQGGDYTKRVHTELRSRGWDGLWIDAASTLRMTDDSIIVLDPINRDVIDKGLVNGTKDFIGGNCTVSCMLMGLGGLFKNNLVEWGTSMTYQAASGGGARHMRELLSQFGTLNAEVSSELDDPASAILDIDRKVLAHQRTGIDASQFGVPLAGSLIPWIDADLGNGQSKEEWKAGVETNKILGTTDENRVIMDGLCIRIGAMRSHSQALTLKLREDLSVAEIEKIVAEDNEWAKVIPNSKEASMTGLTPVAASGTLDIPVGRIRKLEMGPEYISAFTVGDQLLWGAAEPLRRMLNIATGTLPGPT0014045_300DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
D1-29_03521963hypothetical proteinATGAACTCTGACAAGATACTTGACCTGGTGGATGCCCGCTGGCCCGCTTTTCGCGTTGCCTCGACACGGCAGTTGGCCACGGCAGGTTTAGAGGAACGGGTGTTGACGGCGGCAGTCCGGAGTGGGGTGCTTCTGAGGCTCAGGCGCGGCGCCTACGTGAGGGCCGGGCATTGGGCTGAAAGCAAGCCGTGGACACGGGATGTGCTGCGCATCCAGGCGCACTACGAATCAACCGGCGGCCTCTCGCGCTACAGTCATGTGAGTGCCGCAAGACTGTACGGGTGTCAGGTATGGGGCGTGGGTCCCCAGGTTCACGTCACCACTGGGCACGCGAACTCGTCCAAAAGCGCCGGGAGCGACGTCAGGACGCACAGGATGGAATTCGACGTCGGGGACCTCGCCTCGTTGCGGACCGGGGACGGCCGTTTGTTCAAGGTGACCAGTCTTGAGAGGACTGTCGTGGACTGCGCCCGGATCCTCACGCTGGAACAGGCAGCAGTGATCGGAGACCATGCGCTGAGAAAAGGCGCCGGCCTCGACAGCATGCGCGAACTCCTGGCCCAAAGCCCAGTGAAGCGGGGCGGACGGCGTGCGCTCAACCTGCTTGACGCCTTGGACGGGCGGTCTGAATCAGCGGGGGAAACCAGGACCCGGCTGCTGCTTCACTCCCTGGGGATGCACAGCTTCGTCCCGCAGGTGGAGATTGCCACAGGGAGCGGACTCTTCCGCGCCGATTTTGCGGACGCACTGACCAGAATTGTGATCGAGTTTGATGGCAGGTCCAAGTACTTCGACTACAAACCCACCGACGAAGTGATTCTGGCCGAACGCCAGCGCGAGATTGCGCTGGTGGAGGAGGGCTGGCTGGTCCTCCGGCTTAAATGGCAGGACCTGGACCGTCCGGCTGAGCTGAGGCGGCGGCTGCTCGCCATGGCTCAGCGCTCACGAAGACTGTCCGCCTGAMNSDKILDLVDARWPAFRVASTRQLATAGLEERVLTAAVRSGVLLRLRRGAYVRAGHWAESKPWTRDVLRIQAHYESTGGLSRYSHVSAARLYGCQVWGVGPQVHVTTGHANSSKSAGSDVRTHRMEFDVGDLASLRTGDGRLFKVTSLERTVVDCARILTLEQAAVIGDHALRKGAGLDSMRELLAQSPVKRGGRRALNLLDALDGRSESAGETRTRLLLHSLGMHSFVPQVEIATGSGLFRADFADALTRIVIEFDGRSKYFDYKPTDEVILAERQREIALVEEGWLVLRLKWQDLDRPAELRRRLLAMAQRSRRLSANANANANANA
D1-29_035221107hypothetical proteinATGGGGATGACGGCAGGAAACAGGATTACGCCCAAGATCATGGGAAGGCTGCGGCTGGCCTCGCAGGGATTGCAGGGCGAAGGATTCGGCTCGGTTGCTGAGGCCGTTCGCTGGATGACGGCAAGCCAGGCACAGGACCTGCAGGCGGCCATGTGGGCCGTGGGAGTGAGGGTCCCCGGCGCCGGGCTGACGGATGTAAGGGCGGCGATTGATGGCGGCAGCGTGGTCCGGTCCTGGCCCATGCGCGGAACCCTGCATTTTGTGGCTCCCGAGGATCTGCGGTGGATGCTGGAAGTCACTGCCGACCGTCTCAACAAGAGCATCTCAGCACGGCATCGGGAACTGGACATCACTCGCGCGGACATCGAGAAATGCCGCGACATAGCCTTGGAGCGTATTGCCGGCGGCGGACCCGTCAGCCGGAACGAGCTGTTCGCGGTGTTTGATGCAGCCGGGCAGCCCACTAAGGGGCAGCGGGGAGTCCATATTTTGGGAACCCTTTGCCGCCACGCATGGCTGGTGCAGGGGCCGCTTGCAGGCAATCAGCAGTTGCTGGTGGCCTTCGACGACTGGATCCCGGTTTCGCGGAGCCTGGAGCGGCAGGAGGCCATCGCTGAGTTCATGCTGAGATACTTCACCAGCCACGGCCCGGCCACGTTGCGCGATTTCTCCTGGTGGACACAGATTCCCCTGACGGAGGTCCGGGCCGTGTTTGAGGCAGTCCGTGGGAGCCTGCTGGAGCTGGAATACGGCGGCACCAGCTGTTGGCTCTCGCCGGAGACCGCGTCGTTGCTCGACGCCGGTGTTCCCGGCCAGCGCTCGGTGCTGCTCCTTCCGGGCTTTGATGAGTTCCTGCTTGGCTACCAGGACCGGAGCCTGGTCCTGGCTCCTGAGCACGCCGGCAAGATCGTCCCGGGAGGCAACGGTGTCTTCAAAAAGACCGTCGTCGCAGGGGGAGAGGTGGTTGGCACGTGGGCGCGTGAGGGCAAAGGGGCGACCGGCGCCGTCGTGCCCGAACTGTTCGACGAGACCAAACCACTCGGCTCCGGGGCGCAGGCCGCCTTAGCCGAGGCATCGGAGAGGTACCTGTCGTTCCTAGCGAGCTGAMGMTAGNRITPKIMGRLRLASQGLQGEGFGSVAEAVRWMTASQAQDLQAAMWAVGVRVPGAGLTDVRAAIDGGSVVRSWPMRGTLHFVAPEDLRWMLEVTADRLNKSISARHRELDITRADIEKCRDIALERIAGGGPVSRNELFAVFDAAGQPTKGQRGVHILGTLCRHAWLVQGPLAGNQQLLVAFDDWIPVSRSLERQEAIAEFMLRYFTSHGPATLRDFSWWTQIPLTEVRAVFEAVRGSLLELEYGGTSCWLSPETASLLDAGVPGQRSVLLLPGFDEFLLGYQDRSLVLAPEHAGKIVPGGNGVFKKTVVAGGEVVGTWAREGKGATGAVVPELFDETKPLGSGAQAALAEASERYLSFLASNANANANANA
D1-29_03523477hypothetical proteinTTGTTCGCGCGCGAAACAAAACTGTGGATGACGGGCGGATCGGTGTCGGTCCTGGCGGGTGTAGTGCTGGGACTGCTCGCCATACCTGCCTTCCAGGCATCGCGAACACCCGAACTCGGTCTGCAGCTCCCGTCCCTGGTGCTGAGCCTCGGCGGAGGGTACGCCGTGGTGTTTCCCGGCCTCAGGGTGGCCCGCACCAAGGTCAGCATCTACCGCGGCTGGCGGCAGCACCCAGCCAGCGCCAAAGCCCTCTGGATTCTTTCCTACGCCGTGGGCATCATCGGCCTGGTGACCTGCATCCTGGCAGGCGGGATCAGTCCGTCCCTGCCCGGGCTCCTGGTATGGGTCTTTATGGGTCCGTACCTCGCGCTCTCCGGCTGGGCCTCGGCTTTGCTCGGAATGGCGGCGAACGTCCGGCTCATGACTGGCACCGTGGACGCAGGGGATCCAGCTCCCGCTAGAGGTCCAGCCCAATAAMFARETKLWMTGGSVSVLAGVVLGLLAIPAFQASRTPELGLQLPSLVLSLGGGYAVVFPGLRVARTKVSIYRGWRQHPASAKALWILSYAVGIIGLVTCILAGGISPSLPGLLVWVFMGPYLALSGWASALLGMAANVRLMTGTVDAGDPAPARGPAQNANANANANA
D1-29_035241068murBCOG0812UDP-N-acetylenolpyruvoylglucosamine reductaseGTGACCCAGACACTGCTTTCAGAATTGACCACCGCTGCCGTCGGAGGCCCGGCAGGCAAGTTCATCGAGGCCAGGACCGAGGCTGAGATCATCGAAGCTGTCAGCTCGGCTGATGAACAGGGCGAGCAGCTGCTGCTCATCGGCGGCGGCTCCAACCTCCTGATTTCCGACGACGGATTCCCCGGGACGGTCCTTAGGATCGCTTCCGAGGGGTTCACCGTCAATGCCGAGGACTCCTGCGGCGGGGTCTCCGTGGTGGTCCAGGCAGGACACAACTGGGACGCCCTGGTGGAGCATGCGGTGCTTCACGCCTGGTCAGGCATTGAGGCACTTTCGGGGATTCCTGGTGCCAGTGGCGCCACGCCCGTCCAGAACGTGGGCGCCTATGGCTCTGATGTTTCCCAGACCATCGCCGCGGTGCGGACCTGGGACCGGACCAAGAATGCCGTCCGGACGTTCACCAACTCGGAACTGAAGTTCGGCTACCGGGATTCCATCCTGAAGCAGACTACCGTGAACGGTTCGCCCCGTTACGTGGTGCTTACTGTGGAGTTCCAACTACCCCTCGGACGGATGAGCGCCCCCATCCGCTATGCCGAGCTGGCCCGCTCCCTGGGTGTGGAGCCCGGAAAACGGGCCTATTCCAACGACGTCCGCCGCGAGGTGCTGCGGCTGCGGGCGTCCAAGGGAATGGTGCTGGACCCCGCGGACCGGGACACCTACTCCACCGGTTCGTTTTTCACCAACCCCGTCGTTCCTGCGGCCGAGACTGCCGTCCTCCCGGATTCTGCCCCGCAGTACCCCGCGGGCCGTGACGGCCTGGTGAAGCTGTCCGCGGCCTGGCTGATTGATCAGGCAGGCTTCGGCAAGGGGTATGGCTTGGAGGAAGGAAGCGTCTCCGGCGGCCGGGCGTCGCTCTCCACCAAGCACACACTGGCCATCACCAACCGTGGCTCGGCGCAAGCCAAAGATATGGTGGCCATCGCGCGCGAGGTGCGTGCCGGCGTCGTAGAACGTTTTGGCATCGAACTGCATCCGGAACCGCTGCTTATTGGGCTGGACCTCTAGMTQTLLSELTTAAVGGPAGKFIEARTEAEIIEAVSSADEQGEQLLLIGGGSNLLISDDGFPGTVLRIASEGFTVNAEDSCGGVSVVVQAGHNWDALVEHAVLHAWSGIEALSGIPGASGATPVQNVGAYGSDVSQTIAAVRTWDRTKNAVRTFTNSELKFGYRDSILKQTTVNGSPRYVVLTVEFQLPLGRMSAPIRYAELARSLGVEPGKRAYSNDVRREVLRLRASKGMVLDPADRDTYSTGSFFTNPVVPAAETAVLPDSAPQYPAGRDGLVKLSAAWLIDQAGFGKGYGLEEGSVSGGRASLSTKHTLAITNRGSAQAKDMVAIAREVRAGVVERFGIELHPEPLLIGLDLPGPT0024115_653DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075NANA
D1-29_03525438hypothetical proteinATGAGCCCCAGTTTCCACGAACTCAGTGCCGGCCAGGAGATCGGCAACCGCACCATCGAAGTCACCCGCACTGACCTGGTCAAGTACGCTGGTGCCTCCGGCGACTTCAACCCCATCCACTGGAACGAGGCCTTCGCCACCAGCGTGGGACTCCCCGGCGTCATCGCCCATGGCATGTTCACCATGGGGGCGGCCGTGCAGTTGGTGACCGACTGGGCAGGGGACCCTGCCGCCGTCGTCGATTTCCAGACGCGTTTCACCAAACCGGTCCCGGTAGCGGACACAACCGGCGCGGCGGAGCCGGGGGCCACTATTGAGGTCAGCGGCGCCATTGGAAAGCTCGACGCCGATGCCGGCACCGCCCGCGTGGACCTCACCGTGGTCTCTGCCGGCCAGAAAGTGCTGATGAAGGCCCAGGCCATCGTGAGGCTGAGCTGAMSPSFHELSAGQEIGNRTIEVTRTDLVKYAGASGDFNPIHWNEAFATSVGLPGVIAHGMFTMGAAVQLVTDWAGDPAAVVDFQTRFTKPVPVADTTGAAEPGATIEVSGAIGKLDADAGTARVDLTVVSAGQKVLMKAQAIVRLSNANANANANA
D1-29_03526468hypothetical proteinATGACTATCAATCCGGACCTGCAGGGCCGCAGCTACCCTGCCGCAGAGGTATACGACGTCGGCCGCGAGAAAATCCGCGAGTTCGCACGCGCGGTTAAGGCCACCCACCCAGCCCACTTTGATGTCGAAGCCGCCAAAGCCCTGGGGCACAGCGACCTGGTGGCTCCGCCGACGTTCGCGATCATCGTCGCCCAGCGCGCCGACGCACAGCTGATCGAGGATCCGGAGTCCGGCATCGACTTTTCCCGTGTGGTCCATGCGGACCAGCGCTTCACACATCACCGCCCTATCCTCGCCGGCGACCGGCTGGTGGCCGAGCTGCACGTTGACGGCGTCCGCGCTATGGGAGGCGGGGCCATGATTACCACCCGCTCGGAGATTTTCGCCCTCACAGCCTCAAACGGTGACGCCCGCGAGAGCGTTGCTACTGCCACATCGTCCATTCTGGTCCGCGGAGAGGGACAGTAAMTINPDLQGRSYPAAEVYDVGREKIREFARAVKATHPAHFDVEAAKALGHSDLVAPPTFAIIVAQRADAQLIEDPESGIDFSRVVHADQRFTHHRPILAGDRLVAELHVDGVRAMGGGAMITTRSEIFALTASNGDARESVATATSSILVRGEGQNANANANANA
D1-29_03527228hypothetical proteinGTGCTGAAAGAATTCTGGGCCACGTCGCCCACGTCCTACAAAGCCCTGGTGATAACGGCCATTGGCCTCCTCGCCGTCGGACTTATCCTCAACATCGCGGGCAACAGCTCCGAAAACCCTGGGCTGGTGACGGCATCGCTTCCGGTGATAGGGCTGGGCCTGGTCCTGCACCTGGTGGGCGTCGGATACCGCTCGCGTGAAATCCGCAAGACCCTTCGCCGCAAGTAGMLKEFWATSPTSYKALVITAIGLLAVGLILNIAGNSSENPGLVTASLPVIGLGLVLHLVGVGYRSREIRKTLRRKNANANANANA
D1-29_03528942hypothetical proteinGTGACAGATCCCCGCTATCTGGTCCACGGGGTCTTTTGGGATGGGCCCCCCGCTGCTGCCCCCGGGCACGACGGCGGCAGCCCGGTTTTGCGCTTGCAGTCACCCTCCGGGACCATGCAGGCGGTCAGCCTCCAGCCTGGTACGCCGCTCGGGTTCCGGCTGGCGTCCGGCAGCAGGTTCTGCCTCGGGCACCACAAGGTTTTTTCGGCATCGGACCGCCGGCACGTCCTCTGCCCGGCCCAGGCTCCGGCAACCAGGGGAAAGCAATGTGAGCGCTGTTTTGTGCTGGATGATTCCCGGCTTATCCACGATTTCCACCGCGGCGGGCGCGTCCCCGAGGGGCTGCGAACCTACCTGATGCAGCAACACTGGCTGTATGTGGCCACGTTCGCCGGCGGCGCGAGCAAGGTGGGCACTGCGTCCAACCTCCGGAAGTGGAACCGGCTGGCCGAACAGGGAGCCGTGGTGGCCAGGTATGTGGCCAGGGCACAGGACGGCAGTGTGGTGCGGATCCTGGAGGACATGGTCACCAGGGAAACCGGGCTGGCCCAGCAGGTCCGGTCGGCCGCCAAGGCCGAAGCCCTGGCGGAGCCGCTTCCGGCAGCCAGAGTGGACTCGATCAACCAGGGCGCCGCGGCAGGTGTACGGGCGGCGCTGTCGCAGGCCGCCGTCGACGGTTTTGAGGTGGTGGACGAGCTGTGGGTCCGGCCTGCCCAGGCCGCAGTGCTGTGCGGCCCGGCAGCCCGGCACGCGTACCCCCACCCCCTGGACTCCGGGCAGCACGGGTTCCGCGTGGCGGCGCTCTGCGGTCCCCAAGCGCTGGCCTCGCTCCAGGGCACGGACGCCCAGTTTGTGGTCAACCTTGCCCAGCTCAGCGCACGGACGATTGTCCTGGGTGACTTTGCCTCCGAAGTGCCTGCCGTGCAGGAAGCCCTGTTCTAAMTDPRYLVHGVFWDGPPAAAPGHDGGSPVLRLQSPSGTMQAVSLQPGTPLGFRLASGSRFCLGHHKVFSASDRRHVLCPAQAPATRGKQCERCFVLDDSRLIHDFHRGGRVPEGLRTYLMQQHWLYVATFAGGASKVGTASNLRKWNRLAEQGAVVARYVARAQDGSVVRILEDMVTRETGLAQQVRSAAKAEALAEPLPAARVDSINQGAAAGVRAALSQAAVDGFEVVDELWVRPAQAAVLCGPAARHAYPHPLDSGQHGFRVAALCGPQALASLQGTDAQFVVNLAQLSARTIVLGDFASEVPAVQEALFNANANANANA
D1-29_03529864mcl1COG2301L-malyl-CoA/beta-methylmalyl-CoA lyaseATGACGTCTACCACCGCCACCGAGATCTTACGGCCTGAGCGCCACATCCCCGCAGAGATAGCCCGCTCATGGCTTCTGGTTAACGCGATGAAAACAGAGCTTTTTGACCAGTCCGCCGTTTCCCGGGCAGACTCGATCATCCTCGACATCGAAGACGCCGTGGACCCGTCGCAGAAGGACCACGCCCGCGGCAATGTTGTGGATTGGCTTTCTGCCGGCGGCAAGGCCTGGGTCCGGATCAACGACGCCACCAGCCGGTTCTGGGCCGATGACCTCGCCGGACTGCGGGGAACTCCCGGTCTTCTCGGCGTGATGCTCGCCAAGACCGAGTCCGCTGATCAGGTGACCGAGAGCTACCACCGCATGGACGGCAAGACCCCCGTGATTGCCCTGGTGGAATCAGCCGTGGGCATCGAGGAAGCCAACAACATCGCCAAGGCCCAGGGTGCATTCCGTCTCGCCTTCGGCTCCGGTGACTTCCGCCGCGACACCGGCATGGCCGCAACCGCCGAAGCCATGGCATACCCGCGGGCCAAGCTGGTGGTAGCCAGCCGGGTCGGCAACCTGCCGGGACCCATCGACGGCCCCACCGTCGGCACCAACCACCCCATCCTGCGCGAGCAGACCGCCATCACAGTCATGATGGGCATGACCGGCAAGCTCTGCCTGGCGATCGACCAGACGGCAATCATCAACGAGGTCATCAGCCCAACGCCGTCCGACGTTGCCTGGGCCACGGACTTCATGGCCGACTTCGAAGCCAACGGCCGCGTCATCCGCGACGGCTCCGACCTTCCCCGCCTGGGCCGCGCGGAGAAGATCATGAAGCTCGCCGTGGCGTTCGGCGTGCAGCCCGCCCTGTAGMTSTTATEILRPERHIPAEIARSWLLVNAMKTELFDQSAVSRADSIILDIEDAVDPSQKDHARGNVVDWLSAGGKAWVRINDATSRFWADDLAGLRGTPGLLGVMLAKTESADQVTESYHRMDGKTPVIALVESAVGIEEANNIAKAQGAFRLAFGSGDFRRDTGMAATAEAMAYPRAKLVVASRVGNLPGPIDGPTVGTNHPILREQTAITVMMGMTGKLCLAIDQTAIINEVISPTPSDVAWATDFMADFEANGRVIRDGSDLPRLGRAEKIMKLAVAFGVQPALPGPT0019480_2300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_CITRATE_SENSING|UTILIZATION,PGPT0019480-citE-K01644NANA
D1-29_03530942ydhFCOG4989Oxidoreductase YdhFATGCAGGAACTCATTTACGGCTGCATGGGCCTGGGCGGCAGCTGGACCGACGAGCCGCACGGTACCGGCCACGTGGAGGAGGCGGATGCCGCCGTCGAAGCCGCGCTGGATGCAGGGATCACGCTGTTCGATCACGCCGACATCTACCGCAGCGGGAAGTCGGAGGCTGTGTTCGGTGAGGTGCTGGCGGCAACGCCGGGCCTGCGCGAACGCATCCGGCTGCAGACCAAATGCGGGATCCGGCTCAATGAGCGTGGGCTCGACACCCACTATGACCTCAGCCGGGAGTCCATCATCGAGCGGGTGGACGGCAGCCTGAAGCGGTTGCGCACCGACTATGTTGATGTGCTCCTGCTGCACCGCCCGGACCCGCTGACGGACCCGGCGGAGGTGGCGTCCGCCGTCGGGCAGTTGCTGGCCGACGGCAAGGTGCGTGCGCTCGGCGTGTCCAACATGTCCGGATCCCAGATCGAGGCGCTGCAGGACCGGCTCGAGGTGCCCGTGGTGGCCAACCAGCTCGAAATGAGCCTGCTGAAGCGGGCCTGGCTGGAGAGCCAGGTGCTGGCGAACCATCAGGAGTCGCTGGATCACGGCTTTCCCGAGGGAACGGTGGAGTACTGCAGCCGGAACGGTGTGACCCTGCAGGCGTATGGCGCGCTGGCCCGCGGGCTCTACACCGGCGGCGGACCGGAAAGCCCGACGGCGGCTGAGACTGCCGCCGCTGGGCTGGTGGCGGAGCTGGCCGGGCGGTACAGCACGTCGGGGGAGGCGGTCCTGCTGGGCTGGCTGATGAAGCATCCTGCCGGGATCGCGCCGGTCATCGGATCGGTCAACCCCGCCAGGATCAGGGCCTGTGCCGATGCCGGCCGGGTGGCTTCGGCCATGACCCGCGCGGAGTGGTACGGGCTGTGGATCGCAGCGCGGGGCAGCAAGCTCCCCTGAMQELIYGCMGLGGSWTDEPHGTGHVEEADAAVEAALDAGITLFDHADIYRSGKSEAVFGEVLAATPGLRERIRLQTKCGIRLNERGLDTHYDLSRESIIERVDGSLKRLRTDYVDVLLLHRPDPLTDPAEVASAVGQLLADGKVRALGVSNMSGSQIEALQDRLEVPVVANQLEMSLLKRAWLESQVLANHQESLDHGFPEGTVEYCSRNGVTLQAYGALARGLYTGGGPESPTAAETAAAGLVAELAGRYSTSGEAVLLGWLMKHPAGIAPVIGSVNPARIRACADAGRVASAMTRAEWYGLWIAARGSKLPNANANANANA
D1-29_035311725malL_4COG0366Oligo-1,6-glucosidaseTTGTCCACCACTGCCACTCTGGCAACCGTGTCCGATTCTGACCGCCTCGCCGACCCGAACTGGTGGCGCCAGGCCTCTGTCTACCAGATCTATCCGCGCAGCTTCGCCGACTCAAACGGCGACGGCCTGGGGGATATCAAAGGCATTACAGCCAAGGTCCCGTACCTGAAATCGCTGGGAATCGACGCCGTCTGGCTGAGCCCGTTCTACCCGTCCGCCCTGGCCGACGGCGGCTACGACGTGGACGATTACCGCGAGGTTGACCCCAAGCTTGGCACCCTCGCCGACTTCGACGAGATGGCCGCTGCACTTCACGCCGCCGGCATCAAACTGATTGCCGACATCGTCCCCAACCATTCCTCGAACAGGCACGAGTGGTTCAAGGAAGCCCTGGCCTCGCCCAAGGGTTCCGCAGCCCGTGACCGCTACATCTTCCGCGACGGAAAGGGCCCGGACGGCGAGTTCCCGCCGTCGGACTGGGACTCCGTCTTCGGCGGTCCTGCCTGGGAGCGCATCACCGAGCCGGACGGCACCCCCGGCCAGTGGTACATGCACATCTTCGCCAAGGAGCAGCCGGACCTGAACTGGGCCAACCGGGAGATCCGGGACGACTTCCTCAAGACCCTGCGCTTTTGGTCGGACCGCGGTGTGGACGGCTTCCGCGTGGACGTGGCCCATGCCCTCACGAAAGACCTCACCGAGCCGCTGCTGTCCAAGGTGGAGCTGACCGCGGCAAACACCGGTACCGACGGGTTCGCCGACGGCTCACACCCGTTCTGGGACCGCGACGACGTCCACGAGATCTACACGGAGTGGCGCGAAGTCTTCAACGAGTACAACCCGCCGCGCACTGCCGTGGCCGAGGCCTGGGTGCACGCAACCCGTCGTCCCCGCTACGCCAGCCCCGCGGGCCTGGGACAGGCCTTCAACTTCGACCTTCTGCAGGCCGACTTTGACGCTGAGGATTTCCGCGAAATCATCACCCGCAACCTGGCCGAGGCTGCCGCCACCGGAGCATCGTCCACGTGGGTCTTCTCCAACCACGACGTCGTCCGGCACGCCACCCGCTACGGCCTGCCCCGGTTCTCCGCGGACAAGGGAGCCAAGGGAAAGCACGCCAAGGGCCAGGACGGGAAGTCATGGCTCCTGGCCGGCGGTCCCCGGGAGGAACTGGACATGGAGCTCGGCGAGCGCCGTGCCCGGGCGGCCACCCTGCTGATGCTCGCGGTCCCGGGATCCGCGTACCTGTACCAGGGTGAGGAACTGGGCCTGCAGGAGGTTGCCGAGATTCCGGAGTCCCAGCGCCAGGACCCTACCTTCTTCCGCAACAAGGGCGTGGACATCGGACGGGACGGCTGCCGTGTTCCGCTGCCGTGGAAGGCTGAAGGAAGCTCCTTCGGCTTTGGCGACGGCGTGGCCCACCTGCCGCAGCCGGCGTGGTTCAGCAAGTACGCTGTCGAGGCGCAGGAAGGCACCCCAGGCTCCACCCTTGAGCTGTACCGTTCCGCGCTGAAGCTGCGCCGCGAACTCCAGGCGGAGGAGCAGCTGGAATGGATCGAGACGGGCAATCCGGAGGTCTTGCACTTCAGCCGCCCTGGCGGCTGGCAGTCCGTCACCAACTTCGGGGACACCGCCGTCGATCTTCCTGCCGGTACCGTGCTGGTGACCAGCGCGCCGCTGGAAGCGGGCAAGCTGGGGGCGAACAGCACCGCATGGCTTCGCTGAMSTTATLATVSDSDRLADPNWWRQASVYQIYPRSFADSNGDGLGDIKGITAKVPYLKSLGIDAVWLSPFYPSALADGGYDVDDYREVDPKLGTLADFDEMAAALHAAGIKLIADIVPNHSSNRHEWFKEALASPKGSAARDRYIFRDGKGPDGEFPPSDWDSVFGGPAWERITEPDGTPGQWYMHIFAKEQPDLNWANREIRDDFLKTLRFWSDRGVDGFRVDVAHALTKDLTEPLLSKVELTAANTGTDGFADGSHPFWDRDDVHEIYTEWREVFNEYNPPRTAVAEAWVHATRRPRYASPAGLGQAFNFDLLQADFDAEDFREIITRNLAEAAATGASSTWVFSNHDVVRHATRYGLPRFSADKGAKGKHAKGQDGKSWLLAGGPREELDMELGERRARAATLLMLAVPGSAYLYQGEELGLQEVAEIPESQRQDPTFFRNKGVDIGRDGCRVPLPWKAEGSSFGFGDGVAHLPQPAWFSKYAVEAQEGTPGSTLELYRSALKLRRELQAEEQLEWIETGNPEVLHFSRPGGWQSVTNFGDTAVDLPAGTVLVTSAPLEAGKLGANSTAWLRPGPT0018560_3279DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-29_035321167nanK_2N-acetylmannosamine kinaseATGAAGGAAGCTGGCGCCGCTACCCCGCAACTGCTGCGACGGGTCAATGCCAACGCCGTCCTGGCCTTCCTCCGAAGCACGGAGGTGGCCACCGGAACTGACCTGATGGCATCGACCGGACTGACCCGGGCCTCCGTCATAGCCGTGTGTGAGGACCTGCTCCGGCGCGGCTGGATCACCGAAACCGGAGTCTCCCGCGAAGCCTCTTCCCAGAAGGGCCGTCCTGCCCGGCGGTTCGAACTGAACCCGCGGGCCGGCTTTGTCCTGGGAATCGATATCGGCGCCGGCACCACCACCGCTGCCGTGGCCGATTTGCGCGGAACCATTGTGGGGAAAGCGAGCCGGAGCTTCCGCAGCGCCGCGATTCCGGCCGACGAGCGGATCAACGTTGTTGACCAGGCCTGCCGTGCCGCGCTGCAGGATGCCGGCACCACGCCGGGAACAGTGCTGGCCGTGACAGCGGGACTTGCCGCCCCTGTGGACCGCGAAGGCAATGTCCTGGTGACCCAGCATTTCTGGCGGCTGTTCGACGTCGGCCTTCGGTCTGCGCTCAAGGAACTGCACGGGTGGACCGTGCTCCTGGAGAACGACGCCAACCTGGCGGCCCTCGGCGAGCGCTGGCGCGGCTCCGGCGTGGGAGTTGATGACCTGGTGGTCCTCCTCGCCAGCGAGCGGATGGGCGCCGGAATCATCGAATCAGGCCGGCTGCTGCACGGCCACTGCGGAGCCGCCGGCGAAATGGGCTACCTCGACACGGTTGACGGCGTGGGAAGTTCAGCCGGTATTGCACTGCTGGCACGGGAATGGTTCGCGGAGCACCAGGGCACTCCTGCACTGGAGGCGCGGGAGGTCTTCGCGGCCGCCGCGGCCGGCGAAGATGCCGCCCTGGCGGTCCTGGACAGACTCTCGGAACGGCTGGCCCGGATCATCGCCACGGTTGCCATCCTGGTCAACCCGGAACAGGTGGTGATCGGGGGCGCCGTGGCAGAATCGGCCGGGGCGCTGCTCCCCCGGGTCGAAGCCTTGCTGCCGCGCTTCACGGCCACGGTCCCGCGGGTCACGGCGTCGCCCCTGGGGGACTCGATCGTGACCATGGGCGCCGTGCGTTGCGCCCTGGACTACGTGGAGGCCAACGCCCTGGACCTGGAACTCGCGGCGCCTGCCTGAMKEAGAATPQLLRRVNANAVLAFLRSTEVATGTDLMASTGLTRASVIAVCEDLLRRGWITETGVSREASSQKGRPARRFELNPRAGFVLGIDIGAGTTTAAVADLRGTIVGKASRSFRSAAIPADERINVVDQACRAALQDAGTTPGTVLAVTAGLAAPVDREGNVLVTQHFWRLFDVGLRSALKELHGWTVLLENDANLAALGERWRGSGVGVDDLVVLLASERMGAGIIESGRLLHGHCGAAGEMGYLDTVDGVGSSAGIALLAREWFAEHQGTPALEAREVFAAAAAGEDAALAVLDRLSERLARIIATVAILVNPEQVVIGGAVAESAGALLPRVEALLPRFTATVPRVTASPLGDSIVTMGAVRCALDYVEANALDLELAAPANANANANANA
D1-29_03533654yhfKCOG0702putative sugar epimerase YhfKATGACCCGGATCGCAATCATCGGCGGCCACGGAAAAGTGGCCCTTCTTCTGTCAACCCTCCTCACCGATGAAGGCCACAGCGTGACGTCCTTCATCCGCAACCCGGACCATGCCGCCGATGTGGCGGCAACGGGCGCAACGCCGTCGGTACTGGATGTTGAAAACGCGACGACGGCGGAAATCGCCGAGGCGCTCCGGAACCACGACGCCGTGGTCTGGTCCGCCGGCGCGGGGGGAGGGAACCCCGAACGCACCTATGCCGTGGACCGGGACGCCGCGATCCGCTCGATGGATGCGGCGGCGGAGGCCGGCGTCGGGCGGTACGTCATGGTGTCCTATCTGGGGGCAGGCCCGGACCACGGCGTCCCGGCCGATAACAGCTTCCACCCCTACGCCGAGGCCAAGGCCGCGGCCGATGAGTACCTGCGCGGCACGCAGTTGGCGTGGACCATCCTGGGCCCCGGCTCGCTGACGGATAAGCCGGGGACCGGCCGGATCGACGTCGACCCATCAGGGCGGGGGAGCCGGGAAACCTCCCGTGGCAATACGGCAATCGTGGCGGCGGCAGTGCTGGACCTGCCGGACACCGCGGGCCGGACTATCGAGTTCCGGGACGGAACCCTGCCGGTGGCCGCCGCCCTCCAGCCGAGCTAGMTRIAIIGGHGKVALLLSTLLTDEGHSVTSFIRNPDHAADVAATGATPSVLDVENATTAEIAEALRNHDAVVWSAGAGGGNPERTYAVDRDAAIRSMDAAAEAGVGRYVMVSYLGAGPDHGVPADNSFHPYAEAKAAADEYLRGTQLAWTILGPGSLTDKPGTGRIDVDPSGRGSRETSRGNTAIVAAAVLDLPDTAGRTIEFRDGTLPVAAALQPSNANANANANA
D1-29_03534561yyaP_6COG0262putative protein YyaPATGGCAATGCTGACCTACACAGGCATCACCTCGCTGGACGGATACACCGCGGACCGCGAGGGCAACTTCAGCTGGAGTGAACCGGACGAAGAGGTCCACGCGTTCGTCAATGAGTTGGAGCGCGAGGTGGGCACCTACCTTCTGGGACGCCGCATGTATGAAGTCATGTCCGTGTGGGACACCCTCGGCAGCAACGGCGACGAGCCGGACGTTATCCAGGACTATGCCCGCATCTGGCAGGCGGCGGACAAGATCGTCTATTCCACCACCCTCGCCAGCGCCTCCACCGCCCGCACCAGGATTGAGCCCGTCTTCAACCCGGACCACATCCGGCAGCTCAAGGAGACCAGCAGCCGCGAGATCGGCGTGGGCGGGGCCAACCTTGCCGCCTCGGCACTGTCCGCCGGGCTCGTTGACGAATGCCGGCTCCTTGTCAGTCCCGTGGTGGTGGGCGGCGGCAAGAAATACCTGCCCGACGGCCTGGCCCTCAGGCTGGAGCTCCTCGAAGAGCGCAGGTTCGGCAACGGCGTGGTCTACCTCCGGTACCGCACCCTCCCGTGAMAMLTYTGITSLDGYTADREGNFSWSEPDEEVHAFVNELEREVGTYLLGRRMYEVMSVWDTLGSNGDEPDVIQDYARIWQAADKIVYSTTLASASTARTRIEPVFNPDHIRQLKETSSREIGVGGANLAASALSAGLVDECRLLVSPVVVGGGKKYLPDGLALRLELLEERRFGNGVVYLRYRTLPNANANANANA
D1-29_035351323hypothetical proteinATGGCCATCACCTCGGAAGCACAGCGCACCGCACCGCGCCAAATGTGGAAACTGTTTGTGTACAGCGGAATAGGGGCGTTCATGTTCTTCGTTCCGCTGACGATCGCCGGCAGGAACACCATCATGCTGGACCATATCGTTACCTTCCTGCAGGCGGGCATCGGCCCGGTTCTGCCCTACTACGCACTCGCTGTCATCGTGGCGGGAGCCGTGTATCCGTTCGCCACAGGCAATTGGAAGAAGTCCGCTGTCGAGATCGTTTTCTCGATGCTCAAAGTGGTGGGCATGGTTGTCGGGTTCATGATGGTGTTCCGGGTGGGTCCCGCATGGCTGTTCGAGCCGGGCATGGGGCCTTTCCTCTTCGAGAAGCTCGTCATCCCGGTGGGCCTGCTCGTCCCCATCGGAGCAGTTTTCCTGGCGCTGCTGGTCAGCTACGGCCTCCTGGAGTTCATCGGAGTAATGGTCCAGCGGGTCATGCGCCCCATCTGGCGCACCCCGGGACGCTCCGCGATCGACGCCGTCGCCTCCTTCGTGGGCAGCTATTCCCTTGGCCTGCTCATCACCAACCGGGTCTACAAGGAGGGCAAATACACCGCCCGTGAGTCAGCCATCATCGCCACCGGATTCTCCACCGTATCCGCCACCTTTATGGTTATCGTGGCCAAGACCCTGGACCTGATGGGCCAGTGGACCGCGTATTTCTGGGTCACTTTCCTTGTCACTTTTCTCGTCACAGCCATTACCGTCAGAATCTGGCCGCTCAACAGCATCCCTGACGAATACCACCCTGAGGCCACGCCGCAGCCGGAGGAAGTCGTCACTGGCCGCCGCTTTTCCGTGGCCTGGCGCGAAGCACGTGAGACGGTGGCGTCCGCCCCTTCACTTGCCGTCAATATCTGGACCAACGTCCGGGACGGCGTGCTGATGGCCATGGCCATCCTGCCGTCCATCCTCTCAATCGGTCTGCTGGGCCTTGTACTCGCAACGTATACGCCGGTTTTCGACTGGCTGGGTTACCTCTTTTATCCCTTCACTTGGGCGCTGCAGCTTCCCGAACCCATGCTCGTGGCCAAGGCCAGTGCGGTAGGCATTGCAGAGATGTTCCTGCCGGCACTCCTCGCAGTGGATTCCGTCCCCGTAGTCAAATTTGTGGTCGGCGTCGTGTCTGTCTCCGGCATCATCTTCTTCTCGGCTCTGGTGCCCTGCATCATGGCAACTGACATCCCGATTCCTTTGTGGAAGATGGTGGTCATCTGGTTCCAGCGCGTGGTCCTGACCCTGATCCTGGTGACCCCGATCGCCTTCCTCCTGTTCCCTGCCTAGMAITSEAQRTAPRQMWKLFVYSGIGAFMFFVPLTIAGRNTIMLDHIVTFLQAGIGPVLPYYALAVIVAGAVYPFATGNWKKSAVEIVFSMLKVVGMVVGFMMVFRVGPAWLFEPGMGPFLFEKLVIPVGLLVPIGAVFLALLVSYGLLEFIGVMVQRVMRPIWRTPGRSAIDAVASFVGSYSLGLLITNRVYKEGKYTARESAIIATGFSTVSATFMVIVAKTLDLMGQWTAYFWVTFLVTFLVTAITVRIWPLNSIPDEYHPEATPQPEEVVTGRRFSVAWREARETVASAPSLAVNIWTNVRDGVLMAMAILPSILSIGLLGLVLATYTPVFDWLGYLFYPFTWALQLPEPMLVAKASAVGIAEMFLPALLAVDSVPVVKFVVGVVSVSGIIFFSALVPCIMATDIPIPLWKMVVIWFQRVVLTLILVTPIAFLLFPANANANANANA
D1-29_03536813hypothetical proteinATGGGCAGCGAAACTGACAGTTCCCTGCGTTCCCTCCGCATCCTGAGTTACCTTGCCACGCAGGCGACCCCTGTTCCTGCTGCCCGGATCGCCGAGGCCGTAGGCGCCCCCAGATCCTCAACGTTCCGGTTGCTCCGGGGAATGCAGTCGCTGGGATATGTCACCCACATACCGGAGGAGCAGGCATACGCGCTGGGAATCGCCGCCTTGGAGATCGGCCAGGCGTTTGGCATCCAGGCGCCTTTGGCACGGTACGGTCGCCCGGTACTGGAGCGGTTGGTCCTCAAACTCGGCGAAACCGCCCATCTGGCGGTCCTCCACGGTCACGAAACGCTCTACATCCATGAGCAGACCGCCCCCATGCGGGCACCGCTCGTGACCGCCAAGGACGTGCGCCTCCCCGCCCATCTGACGGCGTCCGGGAGGGTGATTCTTGCGGGTCTAAGGGATGAGCAACTGCGGGCTCTCTTCCCGCCGAACTTCGCATTCGTCCGAAGGACCGGCCGGGGACCGGACACGTACGCCGAGCTGATGCGGCAGCTGGACGTTGCACGGCGGCAGGGCTTTGCCCGCGAGTTCAGCGAAGTGACAGAAGGCCTGACTTCCATTGCCAAGCCGGTCCGGGACAGGAGCGGCAGGACTGTTGCCTCCATCGCCGTGACAGTCGCCTACAGTACCCAGGCCCCTGTTGCTCCCCCGGCTAATGCCCTCCCCGCGGCGTCGACCATGCAGGACACCATCCTGGCGGCTCTTGAACGGGCTACGAGGGAACTTAGCCGCAGGCTTGGCTGGGATCCGCAGCAGTCGGGGTGAMGSETDSSLRSLRILSYLATQATPVPAARIAEAVGAPRSSTFRLLRGMQSLGYVTHIPEEQAYALGIAALEIGQAFGIQAPLARYGRPVLERLVLKLGETAHLAVLHGHETLYIHEQTAPMRAPLVTAKDVRLPAHLTASGRVILAGLRDEQLRALFPPNFAFVRRTGRGPDTYAELMRQLDVARRQGFAREFSEVTEGLTSIAKPVRDRSGRTVASIAVTVAYSTQAPVAPPANALPAASTMQDTILAALERATRELSRRLGWDPQQSGNANANANANA
D1-29_03537843yidC_1COG0706Membrane protein insertase YidCGTGGACCTATTTGAAACAATCATGTATCCGTTCAAGTGGCTTGTGTCCGTCATCATGGTCGGTTTTCATGGAGGCCTGAGTTCCATCGGCATGCCTGAAGCGTCCGGCTGGACCTGGACGCTGTCCATCATCGGGCTGGTGCTTGTGATCCGGGCCGCGCTGATTCCGGTTTTCATGAAGCAGATCAACGCCCAGCGCCGGATGCAACTGCTGCAGCCGGACCTGCAGAAGCTCCAGGAAAAGTACAAAGGCAAGACCGACCAGCTCTCCCGCCAGGCCATGGTGCAGGAGCAGATGGCGCTGTACAGGAAACATGGCACCAACCCGTTCTCGGCCTGCCTTCCGATCCTGATCCAGATGCCATTCTTCTTTGCGCTGTTCCAGGTCCTCGCGGGCATCGGCACCAGCGCCAGCGAGGGGCAGGGTATCGGCGCGATGAGCCACGAGCAGGTAGTGCAGTTCGATCAGTCCAGCATCTTCGGCGCCCCGCTCTCCGCGTCCCTGCTCCACCTCGGCGGTGATCCCATCGCGGTCGCGGTGCTGGCCATCCTGATGATCCTTGCCATGTCCGTTGCGCAGTTCATCACCCAGAAGCAGATCATGGCCAGGAACGTCTCCTCGGCGGCGCCGGAAACTGCCCCGGAAAACCCGTTCGTGCGACAGCAGAAGATGATGCTGTACGCCCTCCCGGTGGTGTTCGGCGTGGGCGGCATCATCTTCCCCATCGGAGTGCTGATCTACTGGACCACCACCAACCTCTGGACCATGGTGCAGCAGTTCTTTGTCATGAGAAGGCCGGCGCCAGGTCACGACTCAGCCGAGGGGCGGGGTGGCGGCGCCTAGMDLFETIMYPFKWLVSVIMVGFHGGLSSIGMPEASGWTWTLSIIGLVLVIRAALIPVFMKQINAQRRMQLLQPDLQKLQEKYKGKTDQLSRQAMVQEQMALYRKHGTNPFSACLPILIQMPFFFALFQVLAGIGTSASEGQGIGAMSHEQVVQFDQSSIFGAPLSASLLHLGGDPIAVAVLAILMILAMSVAQFITQKQIMARNVSSAAPETAPENPFVRQQKMMLYALPVVFGVGGIIFPIGVLIYWTTTNLWTMVQQFFVMRRPAPGHDSAEGRGGGAPGPT0024530_4851DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
D1-29_03538210hypothetical proteinATGAAGTATGTCGTCCTGCAGGTGATCCTCAAAGAGAAACTGTGGGGAACCGGTTCAGGCAACCTGACCGCCCTGGAGAAGGCCATCAACGATCAGGCCGCGAGGGGCTACCGGCTCCACACCATAACCACCGCGAGCAGCGGGAGCAAGGGAATGATGGGCGGCGGAGACCGCATCCAGGCAACGCTGGTGTTCGAGAGCCTCGTATAAMKYVVLQVILKEKLWGTGSGNLTALEKAINDQAARGYRLHTITTASSGSKGMMGGGDRIQATLVFESLVNANANANANA
D1-29_03539339hypothetical proteinATGTTCACGAAGAAGGGTGACGCGGCCGTTCTCTCCAAACTCAGCGAAGCCCCCGCCCAGTACAGGGAGATCGGGGAAGGCCTGCATCGCATCATCCGTGAGAGCGCGCCCTCGTTGGAGCCGATCGTCCGCTGGGGACTCCCGTTTTATGTGAAGGACGGCAAGGACGTCTGCTACATCAAACCGGATAAGGACTTCATCGCGTTCGGCTTCGGCGAAGTTGTCAACCCCGCACGTGAAGAGGGCGCCCATATGCACCCGGTCGCGTGGATCATCACCTCGCTGGATGCAGCGACGGAGGCCAGGATTCGCGCGTTGGTCGAGAAAGCAGTTGCCTGAMFTKKGDAAVLSKLSEAPAQYREIGEGLHRIIRESAPSLEPIVRWGLPFYVKDGKDVCYIKPDKDFIAFGFGEVVNPAREEGAHMHPVAWIITSLDAATEARIRALVEKAVANANANANANA
D1-29_03540513hypothetical proteinATGACCATCAACTTTGACGTGCGCCGCGCTGAGCCGGCGGACGCACCAGGCATGGCGAGAGTTCACGTGGACACCTGGCGCGAGACCTACCGTGGACTGATGAGCGATGCTGTGCTTGACGATCCCACGCTCCTGAGCTGGCGCCAGAAATTCTGGACCGCGGCCCTGACCGATCCGAAGTACAGCCAGAACACCGTGGCCGTCGCTTCGCACGAAGGGATGCTGATCGGCATTGCAATGTCTGGCCCCTCCCTTGATGGCGCGAAAGAGCCGCGGCAGTTGTATCTCCTTTACGCCTACACGGAGTTCCACGGTTCCGGGGTGGGTGCGGCGCTCCTCAATGCAGTCCTCAACCCCACCGCGCCTGCTGCGCTCTGGGTCGCGGAGCCTAACCCGCGGGCCCAGGCCTTCTACCAAAAGAACGGCTTCGTCACCGACGGGGCGGTGAAAACCGAAGACGGTGTGCTGTCCGTTCGAATGGTCCGAAGACCCCAAGCCGTAAACCACAGCTAAMTINFDVRRAEPADAPGMARVHVDTWRETYRGLMSDAVLDDPTLLSWRQKFWTAALTDPKYSQNTVAVASHEGMLIGIAMSGPSLDGAKEPRQLYLLYAYTEFHGSGVGAALLNAVLNPTAPAALWVAEPNPRAQAFYQKNGFVTDGAVKTEDGVLSVRMVRRPQAVNHSNANANANANA
D1-29_035411230hypothetical proteinATGGAGAAACCGAGAGTCAGCACAAATCCCGCACCTCCGGCGGCCACCCCTGGACGCGTTGCAGGACCTGGACGTGTTGCCGGACCCAGCCATGTCACCACAGACCATGCCGCCCCAGGCCATCCCCAGCCCGAGGCTTCGGGGCGAGACCGGTATTTGGACCTGCTGCGGGCGATCGCCCTGGTCCGGATAATGGCTTATCATACCTTCACCGGTGTAGCCTGGCTGACTCTGATCTTCCCTTCCATGGGCGTCATGTTCGCCCTCGCAGGATCCCTCATGGCGCGGTCCCTCGAGCGGCCTGCCTTCGGTGTTCTGAAAAACCGGGCACGCCGCCTGTTGCTGCCTCTGTGGATTTACAGCGCCACAGTTCTGCTGCTGCTGCTCTGGCAGGGCTGGAGTCCAGACCAGGACGAGGGCCGCTCCTGGCCCGAAATCATTTTCTGGTTCATCCCGCTCGGCGACGCGCCGTACCCAGGCAGCAGTGGTTCCGACGAAGGCCTGGATGACACCTTCTGGGCTCACGAGGCCGGAGTCATCCTCTGGTACATCCGCGCCTACTTCTGGTTCATGCTTTTGTCTCCCCTGCTGCTCGCGGCGTTCCGCCGGCTGCCATGGGTTACGCTGGCGGCGCCCCTCGGGATCCTGGTGCCCATCGTCTTCGGTTGGGTGACGCTTCCGGCCTGGGCGGAGAGCGGCGTCAGCGACTTCGCCACCTACGGCTCCTGCTGGGTTCTCGGCTTCGCCCGCTACTCCGGCATGCTGCGCAGGATCCCGCGATGGGTCGTTTTCTCAGCCGGGCCGGCGATGATGGCCCTCGGCCTCCTCTGGGCCGCACCCCACCTTGAGGAGGAGGCCTGGGACCTGAACAACATTTGGGGGGCAAATGGCCTGTATGCCCTCGGCTTCTGCGCGATGCTCCTGCGGATCTCGCCATCCTGGAAGTCGATGCCCCGGCCGATCAGGCTCCTCGACCGGCCAGTCACGCTCATCAACAACAGGGCAGTCACCGTCTACCTCTGGCATACCCTGCTGCTGTCGGCCATGTACGTCATCGTCGACACGCTCTACGCCAACAGCCAGATTGGCGACGCCATACCCTGGCTGCTGGAAAGCGAGTGGACCCTGTTCGCCGGCATCTGGCTGCTCCTTGCCGTCGTGTTCCTCATGATCGGCTGGATCGAGGACGTGGCCGCCAGGCGGGCTCCGCGGCTCTGGCCGGACAAATAGMEKPRVSTNPAPPAATPGRVAGPGRVAGPSHVTTDHAAPGHPQPEASGRDRYLDLLRAIALVRIMAYHTFTGVAWLTLIFPSMGVMFALAGSLMARSLERPAFGVLKNRARRLLLPLWIYSATVLLLLLWQGWSPDQDEGRSWPEIIFWFIPLGDAPYPGSSGSDEGLDDTFWAHEAGVILWYIRAYFWFMLLSPLLLAAFRRLPWVTLAAPLGILVPIVFGWVTLPAWAESGVSDFATYGSCWVLGFARYSGMLRRIPRWVVFSAGPAMMALGLLWAAPHLEEEAWDLNNIWGANGLYALGFCAMLLRISPSWKSMPRPIRLLDRPVTLINNRAVTVYLWHTLLLSAMYVIVDTLYANSQIGDAIPWLLESEWTLFAGIWLLLAVVFLMIGWIEDVAARRAPRLWPDKPGPT0026580_485DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026580-exoZ-K16568NANA
D1-29_03542627hypothetical proteinATGAATCGTTTTACCGCCATGTTGCCCGTTATTGCGCTCCTAGCCATTGTCGGGTGCGCGTCGTCGTCTCCGCATTTAGAACCGACCGATATACCGCCGTTGCCCTCGACTACTCCCTCACCCGCGGGTCCGTTCAAACTCACGACAGCGTCCGGAGCAGAAATCGCATTTACACTCCCAACCCCCGCTTCAGATCCTGCAGTGGCTGCGATCGAGGCTTACCGAGTGAAGGCCGGCGGGGCGCCCGTCTCCTACCTCGTGGCCGACGTGGACAACCGAAAGGGAACGTCCGCCATTGACATGTTCATGGTGTCCGCTTTGAACAAGGAAGGCCGCCAGTACACCTTCAGCAGTGTCACGGACGCCCTCGACGTCTGGGCGCCCAGTTATGGATCCGACCTGTTGTGGAAGAACAGTCGTGGCGAGGTCCTGGACGAGGCGACAGGGGATGATCTTGAGCGTGAAGGCGTCGCGCTCAAGAATGCGAACATCAATCAGTCGAACGTAGGCGAGCGGGCGACGATCATTCTCGCCTCCACGGACGCGGAACTTCCCCCGCAGTTCAGGCGCGTAACAGTCCAGCCGTCGGCGACGGGCGAAGAGGAAGAAGCCAAACCGGCCAGTTAAMNRFTAMLPVIALLAIVGCASSSPHLEPTDIPPLPSTTPSPAGPFKLTTASGAEIAFTLPTPASDPAVAAIEAYRVKAGGAPVSYLVADVDNRKGTSAIDMFMVSALNKEGRQYTFSSVTDALDVWAPSYGSDLLWKNSRGEVLDEATGDDLEREGVALKNANINQSNVGERATIILASTDAELPPQFRRVTVQPSATGEEEEAKPASNANANANANA
D1-29_03545591hypothetical proteinATGGGATTTCTGGATGACCTGAAGAAGAACCTGGGCTTGGGGGATAAGGAAGCGGAGAGCCAGCCTCAGGCCGTTCCAGAGGCTGAGGCCAATGTCACAGGCACTGCCAACAGCGCTGAAGGGACGGGGGCTGGTCCAGTTGAGACGGCTGCCGAGGCGCCAGCAGAGACGTCGGTGACTGAAACTGTGCCCCAGCAGGACGCTGCAGCCCATGTAGCTGAGCAGCGGCAGGCGGCCGATGAATCAGCTGCCGCCCAGCAGGCAGCCGCGGCCCAGGCCGCTGCTGACGCCGTGGCGAACCGGCAGCCTGACTCCCAGCCCATGGATGTGCCCCCGGTTGCCGAAGCCGTCGTGGAACCGGTGGCCGAACCCGAGTTGGCTGAGCCGGTTCTGGCCGAACCGGTGCTGACTGAGCCTGTTGGCCTGGACGAGGCAACAGGCGTCTCCGAGGTGGTGGTAGAGCCCGGAGATACCCTGCACGGCATCGCCAGGCAGTACGGCGTGGACGTGGATGAGCTGATCGCCGCCAACACGGACACGGTCCCGAATCCGGACCATATCTACCCCGGACAGGTGCTAAGGCTGCCCTAGMGFLDDLKKNLGLGDKEAESQPQAVPEAEANVTGTANSAEGTGAGPVETAAEAPAETSVTETVPQQDAAAHVAEQRQAADESAAAQQAAAAQAAADAVANRQPDSQPMDVPPVAEAVVEPVAEPELAEPVLAEPVLTEPVGLDEATGVSEVVVEPGDTLHGIARQYGVDVDELIAANTDTVPNPDHIYPGQVLRLPNANANANANA
D1-29_035462181deaD_3ATP-dependent RNA helicase DeaDATGCCCGAAAATCAGAACGACCCTTTCGATACCGAGAACATCGTAATCGACGCCGAGACGGCAGCTCCGGCCGCCGAAGAAGCTCCCGCCGCTGAGGCAGCCCCCGAGGCTCCCGCCGGCGAAGAGACCCCCGCCGCTGAAGAGACTCCCAAATCTGAAGAGGCTGCCAAGGCTGACAACAGCCGCGGCGAGGCAGATACCGAAGCTGAGGGCATCCGCTTTGTGGATCTCGGGATCGACCCCCGCGTCCTCGCCGCCCTGCAGGACGTCGGCTATGAAAAGCCTTCCCCCATCCAGGCAGCAACCATCCCGCTGCTGCTCGAAGGCCGCGATGTCGTGGGTCTTGCCCAGACGGGCACCGGTAAGACTGCAGCATTCGCAGTACCGGCACTGTCCCGCCTGGCTGAGCTCCACGACCTCAACGGTCCCTCCCGCAAGACGCAGGCGCTGGTCCTCGCTCCCACCCGCGAGCTTGCCCTCCAGGTCGCTGAGGCCTTCACGTCCTACGCCAAGCACATCGATGACTTCACCGTCCTCCCGGTTTACGGCGGCTCCGCCTACGGTCCCCAGCTGGCCGGCCTGCGCCGCGGCGCCCAGGTTGTTGTGGGCACCCCCGGCCGTGTGATCGACCACATCGCCAAGGGTTCCCTGGACCTGTCCGAGCTCCAGTACCTGGTGCTGGATGAGGCCGACGAAATGCTTCGCATGGGCTTCGCTGAAGACGTGGAGCAGATCTTCCAGCAGACCCCGTCGGACCGCCAGGTTGCCCTGTTCTCTGCCACCATGCCGAGCCAGATCCGCCGCATGTCCAAGCAGTACCTGAACAACCCGGCCGAGATCTCCGTCAAGTCCAAAACCACCACCGGCGCCAACACCCGCCAGCGGTACCTGCAGGTCATGGGCCCGCACAAGCTCGACGCGCTGACCCGCATCCTTGAGGTTGAAGAGTTCGACGGCGTTATCGCCTTCGTGCGCACCAAAATGGCTACCGAGGACCTCGCCGACAAGCTGAAGTCACGCGGCTTCCAGGCTGCCGCCATCAACGGCGACATCCCGCAGCAGCAGCGCGAACGCACCGTCGACGCCCTGAAGGAAGGCCGCATCGACATCCTGGTGGCCACCGACGTCGCGGCCCGTGGCCTTGACGTTGAGCGCATCAGCCACGTGATCAACTACGACATCCCGCATGACACCGAGTCCTACGTCCACCGCATCGGCCGGACCGGCCGTGCAGGCCGCAGCGGCGACGCCGTCCTGTTCATGACCCCTCGGGAAAAGTACCTGCTGCGTTCCATCGAAAAGGCCACCCGCCAGCCTGTGGAGCAGATGCACCTGCCCACTGCCGAGACGGTGAACACGCTGCGCCTGGGCAAGTTCGCAGAGAAGATCACGGAGACCCTGGCGTCTGAAGACGTCTCGGCCTTCCGCGACCTCATCGCCTCCTACGAGGAAGAGCACAACGTTCCTGCCGCCGAGATCGCTGCAGCACTTGCAGTGATGGCACAGGGCGGACAGCCGCTCCTGGTCAAGGAACTGCCTGCTGCTCCCGAGTTCCAGAAGCGCGAACGCGCCAAGGACGGCTTCGGCTCACGTGGCCCCACACGCACCCTCACCGAGGGCAACGCTACCTACCGGATCGCCGTCGGACGCCGCCAACGCGTTATGCCGGGCTCCATCGTTGGCGCCATTGCCAACGAAGGCGGCATTTCCTCGGCCCAGATCGGCGGCATCGACATCCGCTCGGACCACTCCCTGGTGGAGCTTCCGGCAGACCTGAGCCCCGAGCAGCTGCGCGCCCTCTCCCGCACCCGGATCGGCGGCGAGCTGATCCACCTTGAGCTGGACAACGGCCGCAAGCCCTCCGGCGGCGGCGAGCGTGGCGGCTACCAGGGCAACCGTGGCGGCGATCGCGGCGGTTACTCAGGCGGCGGCGACCGCGGCGGCAACTTCAAGGGCAGCGGAGGATTCAAGAAGGAATTCCGCAAGTCCGAAGGCGGTGCTGCTGACCGCGGCGGACGTTCCTACAGCGAGCGTTCGGAGCGCAGCGTTGGCGCCGACAGCGGAGCCACCCGCGGCCAGGCCAGCGATTCCCGCTTCGGCGGCCACGGTGACGGTTCACGCAAGCCCCGCCACGGCAACGAAGGCGGACAGCGCGACTTCAACCGCAAGGGCAAGTGGTAAMPENQNDPFDTENIVIDAETAAPAAEEAPAAEAAPEAPAGEETPAAEETPKSEEAAKADNSRGEADTEAEGIRFVDLGIDPRVLAALQDVGYEKPSPIQAATIPLLLEGRDVVGLAQTGTGKTAAFAVPALSRLAELHDLNGPSRKTQALVLAPTRELALQVAEAFTSYAKHIDDFTVLPVYGGSAYGPQLAGLRRGAQVVVGTPGRVIDHIAKGSLDLSELQYLVLDEADEMLRMGFAEDVEQIFQQTPSDRQVALFSATMPSQIRRMSKQYLNNPAEISVKSKTTTGANTRQRYLQVMGPHKLDALTRILEVEEFDGVIAFVRTKMATEDLADKLKSRGFQAAAINGDIPQQQRERTVDALKEGRIDILVATDVAARGLDVERISHVINYDIPHDTESYVHRIGRTGRAGRSGDAVLFMTPREKYLLRSIEKATRQPVEQMHLPTAETVNTLRLGKFAEKITETLASEDVSAFRDLIASYEEEHNVPAAEIAAALAVMAQGGQPLLVKELPAAPEFQKRERAKDGFGSRGPTRTLTEGNATYRIAVGRRQRVMPGSIVGAIANEGGISSAQIGGIDIRSDHSLVELPADLSPEQLRALSRTRIGGELIHLELDNGRKPSGGGERGGYQGNRGGDRGGYSGGGDRGGNFKGSGGFKKEFRKSEGGAADRGGRSYSERSERSVGADSGATRGQASDSRFGGHGDGSRKPRHGNEGGQRDFNRKGKWNANANANANA
D1-29_03547642hypothetical proteinGTGCTTGCCGTCTGCTGTGTCCACCAGCTGCTTCCGGATACGTCCAGCGTGGGGGTGACCGCCATCGACAAGCGTCCTGTTGAGGGGCCGGTCAGGGTCCACAAGCTGGGCCTCCAGGGTGACATTCAGGCCAACCGGGTGCATCACGGCGGAGTGGATCAGGCGATTTACGCCTACTCCCAGGCAGATGCGGACTACTGGGAGGGGGAGCTCCAACGCGACTTCCCACCAGGTTCCTTTGGCGAAAACCTCCGGGTCGCCGGCATCGATGCCACCGGTGCCGTGATCGGCGAACGCTGGAAGATAGGCCTCGACGTGGAGGTGGAGGTGACGTCCCCGCGCACACCCTGCGCAACCTTCCAACGGCGGATAGGGGAGCCCGCTTTTACCCGGCGTTTCACGGAGGAAGGGCGCGTGGGCGCGTACCTCCGGGTGATCCGCACCGGCATTATCCAGGCCGGTGACCATATCCATCGGCTGTACGTGCCCAAGCACGGCATCACGGTGGGCAAATGGTTCAGCGAGCCCGACCTCGAGTCGATGGAAGCCCTGCGGGATGCCGACGCCGACGGGGAGATCCGCCTCCAGCAGCCCGAGTTCAACCAGAAGTTTGAGGCGCTGCTGCGCCGTATCGGCAGTTAGMLAVCCVHQLLPDTSSVGVTAIDKRPVEGPVRVHKLGLQGDIQANRVHHGGVDQAIYAYSQADADYWEGELQRDFPPGSFGENLRVAGIDATGAVIGERWKIGLDVEVEVTSPRTPCATFQRRIGEPAFTRRFTEEGRVGAYLRVIRTGIIQAGDHIHRLYVPKHGITVGKWFSEPDLESMEALRDADADGEIRLQQPEFNQKFEALLRRIGSNANANANANA
D1-29_03548669hypothetical proteinGTGGACCCGGGCAAGGATTCCGAAATGGATCGGGAACACGATCCAAAAAAGGACGGGACCGGCAGCCGCCAGGACGCCACCGGAGAAGGCCGGCACCCCGCTGCAGCAAGCGGAGATGCGTCTGCCCCCGCGCCGGATGCGCCCAAGCCGCCGCCATGGCAGGTACCCAAGCCCGAACTGCGCCCCGAACTCCTGAATGAACCGCCGGCCGTGGTGGACCCGTTCGCGCTGGACCGCGAGCGCCAGCTCCAGGAGGCGGCCGCACACAGGAAGCGTTCCCAGCGGCGCACCGTGGTGGTGGGCCTCGGCGTCACCGCACTCCTCGCGGGCACCCTCACCGCTGTGGTGGCCAGCAACCAGGACGAGCCCGACTACGCGCAGGTCTGTTTTAACGACGAAACCGGCGAGCGCGTGGAAGACGCCAACTGCAACAGTTCGGCGGGGAGGGGCGGCGGGCTCTATGCCTGGTACTTCTTCTCCCGCGGCGCCTATGTCCCGCCGGTGGGGCAGAACCGGTCCACCGCCCCAAATTTCACCCGGACTATACCCAGCGATGCCAAAGCATCCACCGGCTACAGCACCCAGGGCGGCACAGTCAGCCGCGGCGGTTTCGGCACCAGCGCCAAAAGCGGGACCAGCGGTGGCGGCGGCAAGGTCTCCGGAGGTTAGMDPGKDSEMDREHDPKKDGTGSRQDATGEGRHPAAASGDASAPAPDAPKPPPWQVPKPELRPELLNEPPAVVDPFALDRERQLQEAAAHRKRSQRRTVVVGLGVTALLAGTLTAVVASNQDEPDYAQVCFNDETGERVEDANCNSSAGRGGGLYAWYFFSRGAYVPPVGQNRSTAPNFTRTIPSDAKASTGYSTQGGTVSRGGFGTSAKSGTSGGGGKVSGGNANANANANA
D1-29_035491236ygiCCOG0754Putative acid--amine ligase YgiCGTGAAGCGGTTGTTATCGGAGCCCAGGCCTGACTGGAAGCAGAAGATCGAAGAGCAGGGCCTGGTGTTCTCCACCACCACCATGCCCGATGGCCGGAAGATCGAATACTGGCATGAGGCCGCCCACTACGAGTTCACCATGGACGAGGTGGAGGCCCTTGAGGTTACCGCCGAGGACATGCACAAGATGTGCCTGGAAGCGGCAAAATTCCTTGCCACAGGGGCCATGGGAACAATCGGCATTGGGGCCCAGGCCCTGGAACTGGCTGCGGACTCCCTCCAGGCCAGCGACCTTGACGTCTACGGCCGGTTCGACTTCATCTACGACGGGCAGGGCGGCCCTGCCAAGATGCTGGAGTACAACGCGGACACGCCCACCGGACTGATCGAGGCCGCCGTGGCACAGTGGTTCTGGCTGCAGGACGTCTTCCCCGGCAAGGACCAGTGGAACGGCATCCATGAGGCCCTGATCAGGCAATGGAAGAAATTCCAGTACCGCACCGGCATGAGCACGCTGCACATTGCCCACTCCGAGGCCGAGGAGTCCGGCGAAGACTGGATGACCGCGGCCTACATGCGGGACGTTGCCAGCCAGGCCGGCTGGACCACCATCGGCATCAACATGTCGGATATCGGCTGGGACCCCAACCTGAACCGGTTTGTGGACCTGGACAATTTCATGATCAGCACCATCTTCAAGCTGTACCCATGGGAGCTGATGATGAAGGAACCGTTCGGGCCCCGGCTCCTGGAACGCGCGCACAATCCCCGCTGGGTGGAGCCCGCCTGGAAAATGCTGCTCTCCAACAAGGCCCTCCTCGCCGCCCTGTGGCATCTGTACCCCAACCATCCCAACCTGCTGCCGGCCTACCTGAACGAACCGGGTCCGCTGAAGGAATGGGTGGCCAAGCCGCTGCATGGCCGCGAAGGCGACAACATCAGAATCAATGCGCAGGGCATCAACCTGGAACAGCCCGGCGGCTACGGCAGGGAAGGCTGGTGCTACCAGCAATTCCATCCGCTGCCCGATTTCGACGGCAACCACCCGGTACTGGGACTCTGGGTGGTGGACGGCGAATCCGTGGGCTGCGGCATCCGGGAGTCGGACGGCCCCATCACCGACTACTTCTGCCGTTTTGTGCCCAACACCATTGACGCCCCTGCTCCGCTTTCAGTCCAGGCCCAATCCAGCACATCCAGCACCTCCACATTCAACAAGGCAGGTATTGCCCTATGAMKRLLSEPRPDWKQKIEEQGLVFSTTTMPDGRKIEYWHEAAHYEFTMDEVEALEVTAEDMHKMCLEAAKFLATGAMGTIGIGAQALELAADSLQASDLDVYGRFDFIYDGQGGPAKMLEYNADTPTGLIEAAVAQWFWLQDVFPGKDQWNGIHEALIRQWKKFQYRTGMSTLHIAHSEAEESGEDWMTAAYMRDVASQAGWTTIGINMSDIGWDPNLNRFVDLDNFMISTIFKLYPWELMMKEPFGPRLLERAHNPRWVEPAWKMLLSNKALLAALWHLYPNHPNLLPAYLNEPGPLKEWVAKPLHGREGDNIRINAQGINLEQPGGYGREGWCYQQFHPLPDFDGNHPVLGLWVVDGESVGCGIRESDGPITDYFCRFVPNTIDAPAPLSVQAQSSTSSTSTFNKAGIALNANANANANA
D1-29_035501578puuP_2COG0531Putrescine importer PuuPTTGCCCTATGAGCCCCCTGACCCTCCTCCGCGTGACATCCCCATGAGCACAGAGACGACGACGGCGGGAAGTCCCGGAGGACCGTCCGGCGGCGCTGTTCCGGCGAAAGGCCTTCGCGCCGGAATCCTGGACCTCGGCGATTCGGTCATGCTGGGCCTGGCCTCCACCGCCCCGGTGTATTCGCTGGCCGCGACCCTTGGCCTGATCGTGGCGGTGAACGGCAATTACACGCCCCTGATTCTGGTGCTGGGATTCATTCCCGTGCTGTTCATCGCGTATGCGTTCCGGGAGCTCAACAGTGCCATGCCGGACTGCGGCACCACGTTCATCTGGGCCCGGCGCGCGTTTGGTCCGTGGGCCGGCTGGCTGGGCGGATGGGGTGTTGCGCTCGCCGGCGTTGTGGTGCTTGCCAACCTTGCCCAGGTGGCAGGACAGTACTTATGGCTCCTGGTGGGCGACGGCTCTTTGGCAGAGAACACTCTCCTGGTCACCGCCACCGGCGTGGCGTTCATCGCGCTGATGACGCTGGTGAACTACCGCGGGATCAGGCTGGGTGAGCACGTCCAGCGGGTCCTGACATACATCCAGTACATCTCGCTGGGGATTTTTGCGCTTGCATTGATTATCAGGATTGCCAGCGGCGCACCGGAGGGCCAGGCGTTTGATCTTGAATGGTTCAACCCCGTTGGAGCCTTTGCCGATCCGAGCGCGGTGGTGCACGGCGCCCTGCTGGCCCTGTTCATCTACTGGGGCTGGGACACCTGCCTGGCAGTCAACGAGGAGACTGAGAACCCCGCCAAAACGCCGGGCCGGGGCGCCGTCATCTCCGCGTTTGTCCTGCTGGCCATCTATGTCTCCGTGGCGCTCCTGGTCATGATGTATGCCACCGTGGGCACAGAAGGGATCGGCCTGGGCAACAGCGAGAACCAGGACGACGTCTTCGTGGCCATGAAGGACGTTGTGCTGGGCCCCTGGGGCTGGCTGATCGTGGTGGCCGTGCTGGCATCGGTGCTGTCCTCCACCCAGACCACCATCCTTCCCACCGCCCGGGGCACGCTGTCCATGGGCGTCCACGGCGCGCTTCCCGCCAGGTTCGGCAAGGTGCACCCCCGCAACCAGACACCGGGATTTTCCACCCAGGTGATGGGTGCCGCGGCGATCGGCTATTACGTGGCCATGAGTTTCCTGAGCGAGAACCTGCTCTCGGATTCCATCAGCTCCATCAGCCTGTTCATCGCGTTCTACTTCTCCCTGACCGGCTTCGCCTGCGTCTGGTATTTCCGCCGCACGCTGCGTGAATCGGCCCGCAATCTGTGGTTCCGGGGAATCCTCCCCCTGCTCGGTGCCGTGATGCTGACCGCCGCGTTCTTCATTTCCGCCGTGGAGATGTGGGATCCGGCCTATGGTGACACCCAGATCTTCGGCATCGGCGGGGCCTTTGTCAGCGGTGTAATCCTGCTGTCCCTGGGCGTGGTGCTTGCCGTTGTCTGCCGCTTCCTGCCTTCAACCCGTGCATACTTCACGGCGCCGGGAACCAACCGGGCCAGCAGTGCCGCCAGCCGCACAACGCGCCTATGAMPYEPPDPPPRDIPMSTETTTAGSPGGPSGGAVPAKGLRAGILDLGDSVMLGLASTAPVYSLAATLGLIVAVNGNYTPLILVLGFIPVLFIAYAFRELNSAMPDCGTTFIWARRAFGPWAGWLGGWGVALAGVVVLANLAQVAGQYLWLLVGDGSLAENTLLVTATGVAFIALMTLVNYRGIRLGEHVQRVLTYIQYISLGIFALALIIRIASGAPEGQAFDLEWFNPVGAFADPSAVVHGALLALFIYWGWDTCLAVNEETENPAKTPGRGAVISAFVLLAIYVSVALLVMMYATVGTEGIGLGNSENQDDVFVAMKDVVLGPWGWLIVVAVLASVLSSTQTTILPTARGTLSMGVHGALPARFGKVHPRNQTPGFSTQVMGAAAIGYYVAMSFLSENLLSDSISSISLFIAFYFSLTGFACVWYFRRTLRESARNLWFRGILPLLGAVMLTAAFFISAVEMWDPAYGDTQIFGIGGAFVSGVILLSLGVVLAVVCRFLPSTRAYFTAPGTNRASSAASRTTRLNANANANANA
D1-29_035511224mmgC_4COG1960Acyl-CoA dehydrogenaseATGAGCAGCGCTGCCGTTCCCGGCCCATCAGAGGTTCCCGGCATACCGCAGGTTCCGGATCCCTCTGACATCCTTGCCCTCGACTCCCTCCTTAGCCCCGACGAGCTGGCCTTGCGGGAACGGATCCGGGATTTCACGGAACAGCGGATCAAACCGGACATCGCCCGCTGGTACGACGACGCCGTGTTTCCGCTGGAGCTTGCCCCGGAACTTGGCGAGCTCGGGGTTCTGGGGATGCACCTTGAGGGGTACGGCTGCCCTGGCCGGTCCGCCGTCGAATACGGCCTGGCCGCAATGGAACTGGAGGCCGGTGATTCCGGCATCCGAACTTTCGTCTCGGTACAGGGATCGCTGGCCATGACGGCCATCCACAAATGGGGTTCCGAGGAACAGAGGCAGGAGTGGCTTCCCCGGATGGCCGCCGGCGAACTGATTGGGTGCTTCGCCCTGACCGAGCCATCCGCCGGTTCCGATCCATCCTCAATGACCACGGTGGCCCGCAGGGAGGGGACCGGAGACGGTGCGGGCTGGGTCCTGGACGGCGCCAAGCGGTGGATCGGGCTCGCGTCGGTGGCCGGCGTGATGGTGGTCTGGGCCATGACCGACGACGGCATCCGCGGCTTCCTGGTGCCGGCCGGGACAGCGGGAGTCACGGCCACGCCTATCGGGCGGAAGTTGTCGATGCGTGCGTCCATCCAGTGCGATGTGCTGTTCGACGGCGTCAGGCTGGGCCCGGAGGCCCTGCTTCCGGGTGCCCGCGGTCTGCGCGGCCCCTTCACCTGCCTGAATGAGGCGCGGTACGGCATCGCCTGGGGTGCCATGGGCGCTGCGCGCGATTCGTATGAGGCGGCCCTGAAGTACTCACAGGACCGGCTCCAGTTCGGCAAGCCGCTGGCCGGCTACCAGCTGACGCAGGAAAAGCTGGTGAACATGCTGGTGGAGATACAGAAAGGCACCATGCTGGCCATCCACCTGGGCCGCCTCAAGGACGCCGGGACGCTCCGTCCGGAGCAAATTTCACTGGGCAAGCTGAATAACGTCCGTGAGGCGATCGCCATCGCACGGGAGGCCCGCACAATCCTGGGCGGAAATGGCATCACCCTGGACTATTCGCCGCTGCGGCACGCCGCCAATCTGGAGTCGGTGCGCACGTACGAAGGCACCGACGAGGTCCATACGCTGGTGCTGGGCCAGCACATCACCGGGCTCGGCGCGTTCCGCTGAMSSAAVPGPSEVPGIPQVPDPSDILALDSLLSPDELALRERIRDFTEQRIKPDIARWYDDAVFPLELAPELGELGVLGMHLEGYGCPGRSAVEYGLAAMELEAGDSGIRTFVSVQGSLAMTAIHKWGSEEQRQEWLPRMAAGELIGCFALTEPSAGSDPSSMTTVARREGTGDGAGWVLDGAKRWIGLASVAGVMVVWAMTDDGIRGFLVPAGTAGVTATPIGRKLSMRASIQCDVLFDGVRLGPEALLPGARGLRGPFTCLNEARYGIAWGAMGAARDSYEAALKYSQDRLQFGKPLAGYQLTQEKLVNMLVEIQKGTMLAIHLGRLKDAGTLRPEQISLGKLNNVREAIAIAREARTILGGNGITLDYSPLRHAANLESVRTYEGTDEVHTLVLGQHITGLGAFRPGPT0021815_1147DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-29_035521017galE_2COG1087UDP-glucose 4-epimeraseATGAAGGTTCTGGTTACCGGCGGCGCCGGGTACATCGGGTCGCACACCACGCTGTCTCTTGTGGAGAAGGGGCATGAGGTGGTTGTCCTGGACAATCTGAGCAACTCAAATCCGGAGGCCCTGCGGCGGGTCGAGGAGATCTCAGGCAAGCCGGTCCAGTTTCGAAGAGCTGACTTGCTGGACCGGGACGCACTCGACGCCGTGCTGGCAGAGTTCAGCTTCAACGCCGTGATCCATTTCGCTGGTCTCAAGGCAGTGGGGGAGTCGGTAGAGAAACCGCTGATGTACTACCAGAACAACGTGGCCGGTACATTGAATCTGTTGCACAGCATGGGCCAGGCAGGGGTGTTCACGCTCGTGTTCAGTTCCTCTGCCACTGTCTACGGCGATTCCGAAGACGTCCCGTTGCGGGAAAACGTGCCTTTGAATGCCGGGAATCCCTATGGCAGGACCAAGGAACAGATTGAGGACATCCTCTCTGACGTGGCTGCCGCCGACCCGCGCTGGCGGTTCGCGTTGCTCCGCTACTTCAATCCCGCCGGGGCGCACGAATCCGGCCGGATTGGTGAGGATCCCCAAGGGACGCCGAATAACCTTTTGCCATTTGTTGCGCAGGTGGCGGTGGGACGCCGCGAGAAGGTCTCGGTTTACGGAAACGACTATCCAACGCCTGACGGCACCGGTATCCGGGACTACATTCATGTGATGGATCTCGCCGAAGGCCACTTGGCTGCCCTGGAATTCCTGCAGGAGAAGGCGGGGGTTTTCCGGTGGAACCTGGGGACGGGCAAGGGCTGGTCGGTGCTTGAGGTGATCAGGGCGTTTGGGGAGGCCGCAGGCTTTCCCATTCCCCACGAGTTTGTATCACGGAGACCAGGGGACGCTGCCGTCAGTTATGCCGATCCCTCGGCTGCGCGGGCAGACCTGGGCTGGTCCGCTACACGTGACCTGGCGAAAATGTGCGAGGACCATTGGCGGTGGCAGCGGAGCAATCCCCTTGGATATGCGAACGCCTGAMKVLVTGGAGYIGSHTTLSLVEKGHEVVVLDNLSNSNPEALRRVEEISGKPVQFRRADLLDRDALDAVLAEFSFNAVIHFAGLKAVGESVEKPLMYYQNNVAGTLNLLHSMGQAGVFTLVFSSSATVYGDSEDVPLRENVPLNAGNPYGRTKEQIEDILSDVAAADPRWRFALLRYFNPAGAHESGRIGEDPQGTPNNLLPFVAQVAVGRREKVSVYGNDYPTPDGTGIRDYIHVMDLAEGHLAALEFLQEKAGVFRWNLGTGKGWSVLEVIRAFGEAAGFPIPHEFVSRRPGDAAVSYADPSAARADLGWSATRDLAKMCEDHWRWQRSNPLGYANAPGPT0017825_46DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-29_03553774fabG13-oxoacyl-[acyl-carrier-protein] reductase FabG1ATGGGATCCACACCTGCCGAAGTAACCGCCCGCAAGACTGTCCTGATTACGGGCGTCGGCAGGCTCGCCGGCATCGGAGCCGGAATTGCCCGCCAGTTGGCCGCCGAAGGCTGGGACCTCGTCCTGAACTACTGGCAGGAATACGATGCCCGGATGCCGTGGGGAATCCAGCCCGACGACGTTGGGCGCCTGACGGCAGAACTGGAAGCCATCGGTGCGCGCGTTGTGGCGCTGCCTGCTGACCTCGAGGATCCCGCCGCTGCTGACCGGCTAATCGCGGCCGCAAATGAGCAGGCGGGGCCGTTGCATGCCATGGTGCTCAGCCATGCCGAATCAGTCGATTCCGGCATCCTGGACACCACGCTGGAGGCCTTTGACCGTCATTTTGCCGTGAATACGAGGGCCAGCTGGCAGCTTATTGCCGCGTTCGCCCGGCAGGCAACGGCCGACGGCGGCGCGATCGTTGCGCTGACCAGTGACCACACAGCGTTCAACCTTCCGTACGGCGCATCAAAAGGCGCACTGGACCGAATTGTCATTGCAGCTGCCCGGGAGCTGGGCCCCTTGGGGATCTCTGCCAATGTTCTCAACCCGGGACCGATCGACACCGGCTGGATGGATCACCAGACCCGGGAAATGGGGACACGCCGGCAGCCGGGCGGACGCCTCGGAACCCCCGCCGACGTCGCCGGCACGGTGGCCTTCCTGCTGTCACCGGCAGGCCGTTGGGTGTCTGGCCAGCTGATCAAGTCCGACGGCGGCTTCTCGGCCTAGMGSTPAEVTARKTVLITGVGRLAGIGAGIARQLAAEGWDLVLNYWQEYDARMPWGIQPDDVGRLTAELEAIGARVVALPADLEDPAAADRLIAAANEQAGPLHAMVLSHAESVDSGILDTTLEAFDRHFAVNTRASWQLIAAFARQATADGGAIVALTSDHTAFNLPYGASKGALDRIVIAAARELGPLGISANVLNPGPIDTGWMDHQTREMGTRRQPGGRLGTPADVAGTVAFLLSPAGRWVSGQLIKSDGGFSAPGPT0003180_7145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_035541443hypothetical proteinATGGCACAGCGCGACGCGGATTTATCGGCCATCAGCAGCAGTCCCAGCGCGAGCCCGGGCGCAATGTCCGTTCTCCGCCTGTGGAAGAGGCTTGCCCTGTGGCTCCCCGCCCTGGCCGTGGCCGTCCCGGTATGGTTCCTGCTGAACGGCTGGAACAAGGAAGGCCTGGACTTCAGCGTCTACTGGCACGGCGGAAAAATCCTGAACGACGCCGGCTGGAACGTCTCGCACCTCTACAGTCCCACCGTTGAGTGGGCGGGCGGGCCAGCCCTGCCGTTCACCTATCCGCCCTTCGCGGCACTGCTCTTCGGACTCCTGGCGCTGCTCCCGCAACCGTTAGCCCTCCAACTGTTTAACGCTGCAGGCGTGGCCGTGGCCGTCTGGCTGTCAGCCCTGGCTGTCCGCTACTGGAACTCCCAGTCCAGCTGGCGGACTGCGTTTCAGACTCCGCGGAGCCGCTGGATCGCTGCAGCTTCACTCTTTGCCATGCTGACCCTGGGTCCCTGGCGGGAGACCCTCGCCTTCGGGCAGATCAACATTTTGCTGATGGGACTGATGGCGGCGGATCTGCTGTCCCGGAACCAGCGCTGGCGCCGGGGCATCCCGGGCACGGGTTTCCTGGTGGGCGTCGCCGCCGGCATCAAGCTCACGCCCCTGGTATTTGGCCTCTACTTCCTGGTCCGGAAGGACTGGCGCGGGCTGATGAATATGGGCGCCGGGTTTGCCTCCACCGTGCTGCTGGGGTTCCTGCTCAGGCCAGCCGAGTCCCTGCAGTTCTGGTTGGAGATTCTCCCTGACACGTCCCGTATAGGCGGAGCGGGCTATGTGGACAATTTGTCCATCAAGGGTGCGCTCCTGCACTTCGGCGTCCCTGCCTCCGGGGTGACCGTGCCGTGGATCCTCCTGAGCCTGCTGGCGGTGGCGTTGGCTGCAGCTGTGGTGAAGCTGGCCAGCGACCAAGGGGCCCGGGTAGTGGCAATGTCCGCCACGGCCCTGGCCATGCTCCTGATCAGCCCCGTGTCCTGGTCCCACCATTGGGTCTGGGTTGCCGCTGTACTGCCTGCCTTTGCCTGGACACTGCGTGACATCCCGGACCGGCACCGGCTGCTGCGTGGGGTGATGACCGCGGTGTTTGCCCTCTCGGTCCTGGCATTCTGCTTCTCGCCGAAGTCCATCGGGCTGGCATTTGGCGCCAAAAACCTGGACATCCAGACGCCCGGGTTGTGGATCATGGCGTCCAGCGCCGGAGTGTTCTGCGCGGCGGCCATCCTGCTGTGCTGGCTGGCGGCATTGCGCCGGGGAGCGCTGGCCAGGAACGAGCCTGTCGTTGCCGGGCCTCACTCCGCTGCTCCAACTCCAGCTTCAACGTCCGCTTCCACATCCGCTTCAACCGCCACGCCAACGTCCGCTGAGGGAGCCCGCCCCCAGCCGCTACTAGGCTGAMAQRDADLSAISSSPSASPGAMSVLRLWKRLALWLPALAVAVPVWFLLNGWNKEGLDFSVYWHGGKILNDAGWNVSHLYSPTVEWAGGPALPFTYPPFAALLFGLLALLPQPLALQLFNAAGVAVAVWLSALAVRYWNSQSSWRTAFQTPRSRWIAAASLFAMLTLGPWRETLAFGQINILLMGLMAADLLSRNQRWRRGIPGTGFLVGVAAGIKLTPLVFGLYFLVRKDWRGLMNMGAGFASTVLLGFLLRPAESLQFWLEILPDTSRIGGAGYVDNLSIKGALLHFGVPASGVTVPWILLSLLAVALAAAVVKLASDQGARVVAMSATALAMLLISPVSWSHHWVWVAAVLPAFAWTLRDIPDRHRLLRGVMTAVFALSVLAFCFSPKSIGLAFGAKNLDIQTPGLWIMASSAGVFCAAAILLCWLAALRRGALARNEPVVAGPHSAAPTPASTSASTSASTATPTSAEGARPQPLLGPGPT0024275_44DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024275-pimE-K13671NANA
D1-29_035551293hypothetical proteinGTGACGGCATCTTCCACAGCGGTGGCGGCCCGGGCCACGCAGGGTTGGATCACGACGGCGGCCGGTGCGGCCGCCGTCGTCATTGCCCTTGTGGTGCTGTACTCCTCCTACATCCCGCTGATGAACGACTTCGAGGTCTACTACTACGGCGGCAGCCGGGTACTCCAGACGGGGGAGTCAGGCGTCAACGAGCTCTACGCGCCGCGCGACGGCCTGCCGTTCACCTACCCGCCGTTCGCGGCACTGCTGTTCGCCGGCCTGGCGCTCCTGCCCATCGGCACCAGCAGCCTGATCTTTATTACGACGGCGCTGGTGGGGGCTGCCGTAGTGGCCGCCTGGCTGGCGCGGCACTACTTCGGTTTCCGCAGTTGGCGGCAGTCCTTCGCCGACTTGCGGTTCCGGGCTATTGCGCTCGCAGGGACAGCGGCAATCCTGCTGCTGGGGCCGTGGCGGGACACGTTCGATTTCGGCCAGATCAACATCATCCTGATGGGCCTGATCCTTGCCGATTTCGCGCTGTACGGGAAGGACCGGGCGGGCGAGATCCGCTGGCCGGCGGGGCTGTTGATCGGCATCGCGGCAGGTATCAAGCTCACACCGCTGGCGTTTGGGCTGTATTTCCTGGTCAGGCGGGACTTCAGGGCGCTGGGCTGGATGGCGGCGGGGTTCTTTGGCTCCATCGCGCTGGCGTGGGCTGTACTCCCGAACGCCTCACTGACCTTCTGGACCAAGATCCTTCCCGACACCGGGCGGATTGGCGGTCCCGCATACCTGGACAATTTGTCCGTCAAGGGGCTTCTCCTCCATGTCGGACTGCCGGATTCGGCCGTCACCAGCGTGCTCTGGCTGGTGTTGTCCCTGGCACTGGCTGGGGTGGCGGCGCTGGTGATCAAGTGGACGGTGGCCGCCGAGGAAAACTTCGTGGCCGTCTCAGCCACCGCGGTGCTGATGCTCCTGATCAGCCCCGTCTCCTGGTCACACCACTGGGTGTGGATGGCGGTGGCGCTGCCCTCCATGGCCTTCGCGATGCACCGGGTGCCCTCCCGCCGCGGGAAAACGAGGTTGGCGGGCTGGATCATTGTGGCCGTCACGGCGGTGGCCTTCTATCTCACGCCCAAGTACCTGGCCATGATGGCGGGCGCGCAGGAATGGGGCAAGGACCCCCAGACCCAGTGGCAGCTGATGGTCACCAGCCTCGGAGTTCTGTGCGGCGTGGCTCTGCTGGTGTACTGGGCCGTTGCTTACCGGCCGTCCCGGACGGCACTGCGGCGAGTGGCAGCTCCGTTGAAGTGAMTASSTAVAARATQGWITTAAGAAAVVIALVVLYSSYIPLMNDFEVYYYGGSRVLQTGESGVNELYAPRDGLPFTYPPFAALLFAGLALLPIGTSSLIFITTALVGAAVVAAWLARHYFGFRSWRQSFADLRFRAIALAGTAAILLLGPWRDTFDFGQINIILMGLILADFALYGKDRAGEIRWPAGLLIGIAAGIKLTPLAFGLYFLVRRDFRALGWMAAGFFGSIALAWAVLPNASLTFWTKILPDTGRIGGPAYLDNLSVKGLLLHVGLPDSAVTSVLWLVLSLALAGVAALVIKWTVAAEENFVAVSATAVLMLLISPVSWSHHWVWMAVALPSMAFAMHRVPSRRGKTRLAGWIIVAVTAVAFYLTPKYLAMMAGAQEWGKDPQTQWQLMVTSLGVLCGVALLVYWAVAYRPSRTALRRVAAPLKPGPT0024275_474DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024275-pimE-K13671NANA
D1-29_035561164metB_2COG0626Cystathionine gamma-synthaseATGTCTGTCCCCGAAAACCAAGGCTTCAACACCCGCGCCGTCCATGCCGGCCAGGCCTTCGAGCCCCGCACCGGCGCCGTTGTCCCGCCGCTGCACTTCAGTTCCACCTACGCCCAGGACGGCATCGGCGGCCTCCGCGACGGTTACGAGTATGGCCGCGGCACTAACCCCACGCGTGATTCCCTGCAGGAGCAGCTCGCCGCGCTGGAAGGCGGCAGCCATGCGTTCTCGTTCAGCTCCGGCCTGGCCGCTGAGGATTCCCTCATTCGTGCGCTCACCCGTCCCGGGGACCACATCGTGCTCGGCAACGATGCCTACGGCGGCACGTACCGGCTCATCAACGGGATCCTGGGCGAATGGGGCATCGGAAACACCCCGGTGGACATGTCGGACCTGGACGCTGTGCGCGAAACAGTGGCTGCCAACAAAACCCGCTTCCTGTGGGTGGAGACCCCTTCCAACCCGCTGATGAAAATCACCGACATGGCGGCCCTGGCCGCCGTGGCGCACGACGCCGGTGCCCTCCTGGTGGTGGACAACACCTTCGCGTCCCCATACCTGCAGAACCCCCTCGCCTTCGGTGCCGATGTGGTGGTCCACTCCACCACCAAGTACATCGGCGGCCACTCGGACGTTATAGGCGGTGCGCTGGTGGTCAACGACGCCGGGCTCGCCGAAAAGATCGGGTTTGTGCAGTTCGCCGTGGGTGCGGTGTCCGGGCCGATGGATGCCTTCCTGACCACCCGTGGCCTGAAGACCCTGGGCGTGCGCATGGACAGGCACTGCGAGAACGCGCAGGCCGTGGCGGAGTGGCTGCTGGAGCGCCCCGAGGTGGAGGCTGTCCTCTATCCGGGCCTGCCGGACCACCCAGGCCACGAGCTGGCCCGGAAGCAGATGAAGAAGTTCGGCGGCATGGTTTCCGTACAGTTCAAGGGCGGCGAGGCGGCGGCCCGCAAGGTTGCTGAATCCACCTCGGTGTTTACGCTGGCGGAGTCCCTGGGCGGCATTGAATCACTGATGAACTACCCCTCCGAGATGACGCATGCCTCGGTCAAGGGCACGGAGCTGGCGGTGCCCGTGAACCTGCTCCGGCTCTCCTGCGGCATCGAGGATGTGGAGGATCTCATCGCGGATCTCGAGCAAGCCTTCACCTTCATCCCGTGAMSVPENQGFNTRAVHAGQAFEPRTGAVVPPLHFSSTYAQDGIGGLRDGYEYGRGTNPTRDSLQEQLAALEGGSHAFSFSSGLAAEDSLIRALTRPGDHIVLGNDAYGGTYRLINGILGEWGIGNTPVDMSDLDAVRETVAANKTRFLWVETPSNPLMKITDMAALAAVAHDAGALLVVDNTFASPYLQNPLAFGADVVVHSTTKYIGGHSDVIGGALVVNDAGLAEKIGFVQFAVGAVSGPMDAFLTTRGLKTLGVRMDRHCENAQAVAEWLLERPEVEAVLYPGLPDHPGHELARKQMKKFGGMVSVQFKGGEAAARKVAESTSVFTLAESLGGIESLMNYPSEMTHASVKGTELAVPVNLLRLSCGIEDVEDLIADLEQAFTFIPPGPT0001980_702DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001980-metB|met|cysA-K01758NANA
D1-29_035571386cbsCOG0031Putative cystathionine beta-synthaseATGAAGTACGCCCAGTCCATTCTGGACCTCATCGGCAATACCCCGCTCATCAAGCTCAACCATGTGACAGACGGCATTAAGGCCACCGTTCTGGTCAAGCTGGAGTACCTGAACCCCGGCGGATCCATCAAGGACCGGATCGCCGCCAAGATGATCGAGGAAGCCGAACGGGAAGGCAAGCTCCTGCCGGGCGGAACCATTGTGGAACCGACGTCGGGCAACACCGGCGTCGGGCTTGCCCTTGTTGCCCAGCAAAAGGGGTACAAGTGCATCTTTGTGGTGCCTGACAAAGTGGGGGAGGACAAGCGCGCCGTCCTCCAGGCGTACGGTGCCGAGGTGGTGGTGACGCCCACTGCCGTCGCTCCTGACAGCCCGCAGAGCTACTACAGCGTGTCGGACCGGATCGTCGCGGAGACCCCTGGCGCCTACAAACCGGACCAGTTCTCCAACCCTGCCGCCCCAGGCAGCCATTACGAGTCCACCGGACCCGAGATCTGGCGCGATACCGACGGCCGGGTCACCCACTGCGTGATCGGTGCCGGCACCGGCGGAACCATCACCGGCACCGGCCGCTACCTCAAGGAAGTTTCCGCGAACCGTCCGGAGGCCGACAGCGGCCGGGTCCGGATCATCGGGGCCGATCCCGCGGGCTCTGTCTACTCAGGCGGCACCGGCCGGCCCTACTTCGTCGAGGGCGTGGGCGAGGACATGTGGCCGGCGAACTACGACAAGTCCGTCCCGGACACCGTCATCGCTGTCAGTGACGGGGATTCCTTCGCCATGACCCGCCGGCTGGCCCGGGAGGAAGGGCTGCTGGTGGGCGGCTCGTCAGGCATGGCCGTCGTGGCCGCGCTGCAGACCGCCCGCGACCTTCCCGAAAGTGCGGTGGTGGTGGTTATCCTGCCCGACTCCGGGCGCGGCTACCTGGCCAAGATCTTCAATGACCAGTGGATGCGCTCCTACGGATTCCTCTCCGGCGGCGAGGAATCCTCGGTGGGCGAGGTGATCAAGTTCAAGACAGGCGAACTTCCCGATCTGGTGCACATCCACCCGAACGAGACAGTCCGTGATGTCATCACCATCATGAACGAGTTCGGCGTCAGCCACATCCCGGTGCTCTCCCAGGAGCCTCCCGTGGTGATGGGCGAGGTCCTGGGCGCGGTGGACGAACGGACGCTGACGGCCAAGCTTTTCCGCGGCGAGGCGAAACTGACGGACAAGATCTCCGAGCACATGGGTCCGAAGCTGCCGGTGATCGGCTCGCTGGAAACCATTTCCGCGGCCCGGGAACTGCTCTCCGATGTGGACACCGTGATGGTGACATTCGTCGGCGCCCCGGTGGGCATCCTCACCCGCCACGACCTCCTCGCGTACCTCAGCAACTGAMKYAQSILDLIGNTPLIKLNHVTDGIKATVLVKLEYLNPGGSIKDRIAAKMIEEAEREGKLLPGGTIVEPTSGNTGVGLALVAQQKGYKCIFVVPDKVGEDKRAVLQAYGAEVVVTPTAVAPDSPQSYYSVSDRIVAETPGAYKPDQFSNPAAPGSHYESTGPEIWRDTDGRVTHCVIGAGTGGTITGTGRYLKEVSANRPEADSGRVRIIGADPAGSVYSGGTGRPYFVEGVGEDMWPANYDKSVPDTVIAVSDGDSFAMTRRLAREEGLLVGGSSGMAVVAALQTARDLPESAVVVVILPDSGRGYLAKIFNDQWMRSYGFLSGGEESSVGEVIKFKTGELPDLVHIHPNETVRDVITIMNEFGVSHIPVLSQEPPVVMGEVLGAVDERTLTAKLFRGEAKLTDKISEHMGPKLPVIGSLETISAARELLSDVDTVMVTFVGAPVGILTRHDLLAYLSNPGPT0020005_778DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020005-cbs-K01697NANA
D1-29_03558435hypothetical proteinATGGGTGGAGTGGTGCATTTCGAAATCCCCGCGGACGACCAGGAGCGGGCCAGGAACTTCTATACACAGGCCTTCGGCTGGAAGATCGACCCCATGCCGGAACTGAACTACAACATCGTCTCCACCACGCCCACCGATGAAACCGGCCGGCCCAACGAGCCCGGAGCCATCAACGGCGGGCTCATGGCCAGGGAAGGCGACCTGAAAACCCCTGTCATCACGGTGGACGTGGAGGACATCAATGCCACGCTGAAGACGGTGGAGCAGCTCGGCGGATCGGTGGTGATGCCCAAGGACACCGTTCCGGGCATGGGCTACTTTGCCTACTTCAAGGACAGCGAGGGCAACATCATGGGGCTCTGGGAGAACCTCCCCGCAGATCAGGGCGATGGCCAGGGCGCGGCCCAGGGAGACGTGGAGGGCGCCGCCGGCTGAMGGVVHFEIPADDQERARNFYTQAFGWKIDPMPELNYNIVSTTPTDETGRPNEPGAINGGLMAREGDLKTPVITVDVEDINATLKTVEQLGGSVVMPKDTVPGMGYFAYFKDSEGNIMGLWENLPADQGDGQGAAQGDVEGAAGNANANANANA
D1-29_035591005hypothetical proteinATGACCATCGCTGACGCACCTGCCCGGCTGGCCGCTGCGTCGGACGCCTCGCTGCGGTGGCATCCCGGCAGGCCCTACAGCCTGGACCAGACGCTCGGCATCCTGCCCAGGGGCAACGGGGACCCGTCCTACTCTTCCCGGCCGGATGGGCTGTGGACCGCATTTACGACGCCGGACGGGCCGGTTACCCTGCGCCTCACCGGTGCACGCGGCCAGGACGGCCTGACGCCCGCTGCCGCTGCAGAATGCCATGTCGATGTCCAGGCGTGGGGCCCTGGCTCCGCTGCGGCGCTGGAGGCAGTGCCGCGCCTGCTGGGCGACGCTGATGACTGGCGGGCGTTCGACGAGCCGCTTTTCCACGCCACGCTCCCCCGAATGGTCCGGGACGCCCGGCGCCGGAACCCCCTGGTCCGATTGCCCTCCACCGGCCGCATCATCGACTCCCTGGTGCCCACCATCCTTGAGCAGAAGGTCACCGTCATCGAGGCCCGGCGCGGCTACCGCTACCTCATGTACCGCTTCGGCTCACCCGCCCCGGTGGCAGGACCGGCTTCTCCGGCCGGGCTCCTGGTCCAGCCCACCCCGGGCCAGTGGCTGCGGATCCCGTCCTGGGAGTGGCACCAGGCAGGCGTTGGCCCGCAGCGTTCGGCAACCGTCATGCGGGCGCTGCGTTCCGCCGTCGCGCTTGAACGGCTTGCCGTGCTGCCTGCGGCGGAAGCTGCGGCCAAAATGCAGACCATCCCCGGCATTGGCGTGTGGACCGCTGCGGAAGTGGTGCAGCGGACGCATGGCTGCCCGGATTCCATCGCCGTGGGTGACTACCACCTGGCGGCGTACGTGGGCGCGGCGCTGACCGGGCGGCGGACCGATGACGCAGGCATGCTGGCCCTGCTGGAACCGTGGAAAGGGCACCGGCAGCGCGTGGTCCGCATGCTGGGGCTGAGCGGCTTCCGCAAACCCACATTCGGCCCGCGCATGACCATCCAGGACCACCGCCGGCACTGAMTIADAPARLAAASDASLRWHPGRPYSLDQTLGILPRGNGDPSYSSRPDGLWTAFTTPDGPVTLRLTGARGQDGLTPAAAAECHVDVQAWGPGSAAALEAVPRLLGDADDWRAFDEPLFHATLPRMVRDARRRNPLVRLPSTGRIIDSLVPTILEQKVTVIEARRGYRYLMYRFGSPAPVAGPASPAGLLVQPTPGQWLRIPSWEWHQAGVGPQRSATVMRALRSAVALERLAVLPAAEAAAKMQTIPGIGVWTAAEVVQRTHGCPDSIAVGDYHLAAYVGAALTGRRTDDAGMLALLEPWKGHRQRVVRMLGLSGFRKPTFGPRMTIQDHRRHNANANANANA
D1-29_03560969drrA_3Daunorubicin/doxorubicin resistance ATP-binding protein DrrAATGATCCACACTGACAAACTGACCAAGACCTTCACCGTCAAGAAGGAAACGGTAGAAGCCGTCAGGGGCGTGGACATTGATGTCGCCCCGGGTGAACTGGTGGCTTTCCTCGGCCCGAACGGTGCTGGCAAGTCCACCACGCTCAGGATGCTGACAACCCTGCTGAGGCCCACCTCGGGAACGGCAACCGTTGCGGGCGTGGACGTTTTGGCCGACCCTGCCGGCGTACGGGCCCGGATCGGCTACATCGGCCAGGGCAACGGCGGCGGCCACAGCTTCCGGGTCATCGACGAACTGGTGATGCAGGGCCGCTTCTACGGCATGAACACCACGGACGCCACCAACCGGGCGCAGGAACTCCTGAAGTCCCTGGACCTCACCGACCTGGCGAAGCGCACCGTCATCAAGCTGTCGGGTGGCCAGCGGCGGAGAATGGATGTGGCGCTGGGGCTGATGCATTCGCCGCGGCTGCTGTTCCTCGACGAACCCTCCACCGGCATGGACCCGCAGAACCGGGCCAACCTGTGGGAGCACATCATGCGGATGCGCGCGGAGCACGGGACCACCATCGTCCTGACCACGCATTACATGGACGAGGCGGATCTGATGTCAGAACGCGTGATCGTGATCGACCACGGCCAGATCATCGCCGACGATACCCCGGCCCGGCTCAAGGCCAACCTGGCCGGTGACCTGCTGGCTGTGGAGGTGGCGGCGGACTCGGCCCCCGGCGTGCGCGGGCTGCTGGGGCGCGCCGCCGCGGGCGGTGAGGTCAAGGAAAACACGTACGACGGCGTGGTCCGCTTCCGTCTCCGGCTCACCGAAGGCGCCCGGCTGGCACCCGTGCTGCTTCAGGAGATGAACGACGCCGGCGCTCCCGCCCAGTCCTTGGAGCTGAAGCCTCCCACTTTGGACGACGTATTCCTGGAGCTGACCGGCCGCAACCTGCGGGAAGGAGCGAACCGCTGAMIHTDKLTKTFTVKKETVEAVRGVDIDVAPGELVAFLGPNGAGKSTTLRMLTTLLRPTSGTATVAGVDVLADPAGVRARIGYIGQGNGGGHSFRVIDELVMQGRFYGMNTTDATNRAQELLKSLDLTDLAKRTVIKLSGGQRRRMDVALGLMHSPRLLFLDEPSTGMDPQNRANLWEHIMRMRAEHGTTIVLTTHYMDEADLMSERVIVIDHGQIIADDTPARLKANLAGDLLAVEVAADSAPGVRGLLGRAAAGGEVKENTYDGVVRFRLRLTEGARLAPVLLQEMNDAGAPAQSLELKPPTLDDVFLELTGRNLREGANRPGPT0006725_4914DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_03561807drrB_2Daunorubicin/doxorubicin resistance ABC transporter permease protein DrrBATGACTGTCCAGGCAAGCCAGGACTTCGTGGAAAAACCGGGCCTCCTCCAGGTCCTGCGCGACACGAAGTATGTGTTCTGGCGGGAGATGCTGCTGCCGCTGCGGGACCCGTTCTCGCTGATCTTTTCCCTGATCCAGCCGCTCGTGTTCCTGGGTCTCTTCGGCCCGCTGCTCGGCGCGGCAGTGGGAGCGCCGGCCTTTGGCGGCCAGTCCACGCTCCAGTGGTTCCTGCCAGGGGTGGTGGTGATGATCGCCCTGTTCGGAACATCAATGACAGGTTCCAACCTGCAATACGAGCTCATGACCGGTTCCTACGAGCGGATCCTGGCCACGCCGCTGTCCCGTTCTTCCCTGATGATCGGGCGGGCCCTGAAGGAGTGGGCACCCCTGGTGGTGCAGGGTTTGCTGATTGCCCTCGTGTGCATTCCGTTCGGTTTTGTTTTCTACCCGGTGCACGTGCTGCTGGGCCTGATCATCCTGGGGATCTTCGGGATTGGGCTCGGTGCGCTCTCGTATGCTCTGGCGCTCGTGTCGCAGAGTAAGGAGTGGATCTTCTGGGCTGTGCAACAGACGTTGCTTTTTCCGCTGATGATCCTGTCCGGAATCATGCTGCCCATCGAAGCGGGCCCGGAGTGGATGAAAACGGCCAGCCTCTTCAACCCCCTAACCTACCTGGTCAACGCCGAGCGGCAACTTTTCGCCGGCACCGCCGGAACCGACACCCTCCTGGGCCTGCTGGCCGCATTGGCGACGGCCGCCGTCGGGCTGGTGGTGGGCGTCCGGACAATCGGCCGGAACATCAAGTGAMTVQASQDFVEKPGLLQVLRDTKYVFWREMLLPLRDPFSLIFSLIQPLVFLGLFGPLLGAAVGAPAFGGQSTLQWFLPGVVVMIALFGTSMTGSNLQYELMTGSYERILATPLSRSSLMIGRALKEWAPLVVQGLLIALVCIPFGFVFYPVHVLLGLIILGIFGIGLGALSYALALVSQSKEWIFWAVQQTLLFPLMILSGIMLPIEAGPEWMKTASLFNPLTYLVNAERQLFAGTAGTDTLLGLLAALATAAVGLVVGVRTIGRNIKPGPT0006730_14845DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_03562702degUCOG2197Transcriptional regulatory protein DegUATGAATGAGTCAGGCGTGCTCAGGGTTGTGATCGCGGAAGACAACTACCTTGTACGCGAGGGGCTTCGCCGTTTGCTGGAGGACTCAGGTGAAATTGACGTCGTCGCCTCTACCGGCAATGCCATCGAGTTGCTTGATGCTGTACGCCGTTTCTCTCCGGATGGGGTGCTCACCGACATCCGGATGCCGCCTGGCCATCATATGGAGGGAATCGAGGCTGCGCGCGCCATCCGTGCTTCACATCCGGATACCGGAGTGGTGGTGCTGTCACAGCACGCCGACCAGAGCTATGCGCTGGCGCTGTTCGCGGACGGCTCGGCGGGCCTCGGCTACCTGCTGAAGGACCGTATTGGCGACCTTGAGGACCTCGTGCATGCGATCCGTGAAGTGCATGTTGGCGGTTCTGTGATCGACCCGGAGATCGTGGACACCCTGGTGCGCCGGCGCAGCACAGGCCCGGCCAGCCCGCTCTCCGACTTGTCGCCCCGTGAGCTGGACGTGCTGCGGGAGATGGCCCGGGGAAGGACAAACGCCGGCATCGAGCAGGCGCTCTACCTGTCGTCCTCCACCGTGGAGAAACATGTCAACGCCATCTTCACCAAGCTGCACATCCCCGCGACGGGCGTGCACCGGCGGGTTGCGGCTGTGCTCGCATTCCTGCAGAACGACGGCACCGAGGCGGTCGCCAAGGGCCACCCGTAGMNESGVLRVVIAEDNYLVREGLRRLLEDSGEIDVVASTGNAIELLDAVRRFSPDGVLTDIRMPPGHHMEGIEAARAIRASHPDTGVVVLSQHADQSYALALFADGSAGLGYLLKDRIGDLEDLVHAIREVHVGGSVIDPEIVDTLVRRRSTGPASPLSDLSPRELDVLREMARGRTNAGIEQALYLSSSTVEKHVNAIFTKLHIPATGVHRRVAAVLAFLQNDGTEAVAKGHPNANANANANA
D1-29_035632103hypothetical proteinATGACGTGTAGGGAGGACCCCCTCCCAAGAACCGCGGCGGAGGCGGATCATAGGACTGTGCTCCGGAGATGGGGATTGCTCGCAGCGCTGGCTCCAATCGGGGTGGCGTCGCTGCTCTACGTCGTCATAGTCCGCGGATTCGTCCACTCCGCCGGGGACCACCACCTTGGCTGGCCTTTGCTCGGCGTGCTGCCGACGCTCGTGTTCGGCTTGTGGCTGCTCACCGTTTCGTCCGCCCGGTCCGCTGTCTTCATCGCGGTGGCAGCCACGTCCATGGCGGTAGGCTCGGCGTACGAAACCTTAGTCCTTACCAACGTCGGGTTGATCCAGGAGCCGTGGTTCCCGCTCTTCAACATGATCGGCCTGACCGCGGATGCTGTATCCACCGCGGCCTTCCTGGCCATGTTCGCCACCTACCCCACCGGAACCCTGGAGCGGAGATGGCAACGGATCGCCGTCGCCCTGATCTGGGTGCCTGTGGCAGTGGGCCCGCTGACCCTGCTCACGACCTCCCATGTCCTTATGCAGCCATACATCGGCGTCAGCGGCGAGGCCCTTCCGAATCCGTATGCGGTGCCCTGGCTCGAATGGGCTGCCCCGGCGGTGCATTACCTCATCTACCAGCCGTGGCCCAGCGTTGTGCTCGGGCTCGGCGTGCTCTACTCCCGAGCGATCTTCGGCGCTGCGGAGGTACGTGCACGCATGCGGGTCATGACCTGGGTGGTCACCGTGTCACTGGTCGGCTTCGTCCTGTGGACCCTCACGCCGCCGATGTGGATCACCTCCGTCGTCGTCTTCGCCTCGCTCATCGCGATGCCCCTGGCGGCTATCCACGGAATCTTCCGCTATGGCGCCTTCGATATTGCCCCGGGTGACCGTGCACGGTTTGTTGCACGCTCATCCAGCCTGCTGATCACCGTGCTTTACGGGATCGGAGTGGCCACGCCTGCCGTGCTCCTCGCCGACCGGCTGCCCATCGTCGGCGCAGTCCTCCTGACCACGTTGCTCGCCGTCTGCCTGCTGCCCGTGCGGGAGTGGCTGCAGCGGTGGATCCACCGCACTGTTTTCGGAGACCGTGACCGCCAGCTGTCGCTGCTCAGCGAGCTGGGCTCCCGATTGGAGCAGTCCGTCGAGCCGGGCGATCTGCTCACCCGGCTGGCAACAGCCGTCCGGGATGGCCTCGATGCCACCTGGGTAAGGATCTTCCTGGCCGGACCCGACGGCACGCTTGCTGCATCACCCACCGGTGTGGCGGGGGACGTCAAAGGAGAGGCCGCCGCGTCCTGCGACCTGGACCGGGCGGATGAGAAGCTCGGCCGCATTGAGGTGGGCCCGCGCCGGCGGGGGGATTACAGCGAAGCCGAGAATGCGTTGCTCCGCACGGTGGCCGGCCAGGCCGCGGCCGCTGTCGCCAACGTGCGCCTCAGCGCCCAGCTGGCCCAGCAGCTGGACGATCTCACCGAGTCCCGGGAGCGTCTTGTCGCCGCGCAGGACGACGAACGCAAGCGCCTGGAGCGGGATCTGCACGATGGGATCCAACAGAACGTGGTGGCCCAAATCGCCGGCCTGCGCCTGGCACGCAACCGGCTGCACCGGGGCGAGCTCACCACGGACGAACTCGCCGAGTTGCAGGACCAGGCCCGGGAGACACTGACCGACCTTCGGGAGCTCGCACACGGCATCCACCCGCCCGTGCTGAGCGACAACGGCCTGGTAGCGGCCATCGAGTCAAGCGTGTCAAGGTTCCCGATCCCGCTGAAAATGAAAGCTGAAGAGGCAATACGGGCCGAACGGTTCCCCGAGGACGTGGAGACAACGGCGTACTACGTGGTGCGGGAGGCGCTGGCAAACACCGCGAAGCATGCCGGTGCAGCGCACGCCTCTGTCGAGCTGGCACGCAACAACGGCAGCCTGCGCATCGCCATCAGCGACGACGGCTGCGGCATCGGCACCCTCGTGCCCCGCCCGCGCGGCGGCCTGGCGAACATCCGGGACCGCGTGGCGGCATTGCGGGGTACCGTGGACGTCTTCGGCAACGAGCCTTCCGGGACCACAGTGCTGGTCCAGCTCCCGGTCGAGCGGAAGGGGACGGGCCATGAATGAMTCREDPLPRTAAEADHRTVLRRWGLLAALAPIGVASLLYVVIVRGFVHSAGDHHLGWPLLGVLPTLVFGLWLLTVSSARSAVFIAVAATSMAVGSAYETLVLTNVGLIQEPWFPLFNMIGLTADAVSTAAFLAMFATYPTGTLERRWQRIAVALIWVPVAVGPLTLLTTSHVLMQPYIGVSGEALPNPYAVPWLEWAAPAVHYLIYQPWPSVVLGLGVLYSRAIFGAAEVRARMRVMTWVVTVSLVGFVLWTLTPPMWITSVVVFASLIAMPLAAIHGIFRYGAFDIAPGDRARFVARSSSLLITVLYGIGVATPAVLLADRLPIVGAVLLTTLLAVCLLPVREWLQRWIHRTVFGDRDRQLSLLSELGSRLEQSVEPGDLLTRLATAVRDGLDATWVRIFLAGPDGTLAASPTGVAGDVKGEAAASCDLDRADEKLGRIEVGPRRRGDYSEAENALLRTVAGQAAAAVANVRLSAQLAQQLDDLTESRERLVAAQDDERKRLERDLHDGIQQNVVAQIAGLRLARNRLHRGELTTDELAELQDQARETLTDLRELAHGIHPPVLSDNGLVAAIESSVSRFPIPLKMKAEEAIRAERFPEDVETTAYYVVREALANTAKHAGAAHASVELARNNGSLRIAISDDGCGIGTLVPRPRGGLANIRDRVAALRGTVDVFGNEPSGTTVLVQLPVERKGTGHENANANANANA
D1-29_03564468hypothetical proteinATGCGCAGGATCTACTCGGTCATCGCCTGGATCATCGCCGGGGCAGTCGTCGTGCAAGCCGCTTCGATCGCCTTTGCCATGGGAGGGATGGCGCACTTCATCCAGGAAGGAGGCGTCATCGACAAGGCCCTTGTCGAGAGCCGCCAGGCGACGTTCACCGGTGACCTTGGATTCCCGATCCACGGCATCGTCGGCGGGATGGTCATTCCGGTCGCTGCCCTCCTGCTGCTCATCGTCGCGTTCTTCGTTAAGGCGCGGGGTGCCCGCATGTGGGCAGCCATCGTGCTCGCAGTGGTGGCGCTGCAGATCACCCTCGGGTACTCCATTAGCGACATGCCCTACCTCGGCCTGATCCATGGTGCGAACGCGTTGGCCGTGCTGCTCACCGCCACCTACGCGGCCTTGCGGATCAGAAGGGGCAACGTCATCGGTGCCGAGGCACCGGCGTCCAATGCCGTCGCGACGTGAMRRIYSVIAWIIAGAVVVQAASIAFAMGGMAHFIQEGGVIDKALVESRQATFTGDLGFPIHGIVGGMVIPVAALLLLIVAFFVKARGARMWAAIVLAVVALQITLGYSISDMPYLGLIHGANALAVLLTATYAALRIRRGNVIGAEAPASNAVATNANANANANA
D1-29_035651548mmcOCOG2132Multicopper oxidase MmcOATGCCGTCGCGACGTGACCGCTACCGCCGGGTCGCCGTCGGCCTTGGAGTGACCCTCGCGGTTGGCCTCGGCGCGCTCGGCTGGAGCTCAACGTTGCTTGGCGAATACTCGGTCATGGATATGGGAGGCAAGGACATGGCAGGCGGGCAAGCCGGCCATGTCCATGGCTCCGCAGCCGGGGCTGCTCCCGACGACGGCGCCGTCAGCGTGAGCGAGCTGATCGCCGACGCGCTTCGGCCCCCTGATGTGCGCTTCGAACTCGTCGCGCGCCGGCAGACGGTCGATCTGCCCGGAGGGCGGGCCGTCGAGGGCTACACCGTGAACGGCACATCTCCGGGTCCAACCATTCGCGCGCGGCAGGGCGACCTCGTTGAGGTGGTCTTCCTGAACGAGTCAGTCGCCGCCGGAGCCACCCTGCATTGGCATGGCATCGACGTGCCGAACGAGGCTGACGGGGTTGCGGGCATCACCCAGGATGCGGTTCCGCCCGGCGGCCGTTATGTCTACCGGTTTATTGCGGCCGACGCCGGCACGTACTGGTATCACTCGCATCAGGTCTCGCATGAGCAGGTGGAGCGCGGGCTGCTGGGTGCGGTGGTCATTGATCCTGCTGTACCAGCGGCTGCTGTGCCAGCGGCCGGTTCACCAGTGGCTGGGCAGCCTGCGGGCGGGCCACCGCCGGCCGGCATCACAACAGACGTCGTCGCCCTGCTGCATGTCTACGGCGGCCAGCACACACTGAACGGGCGGGTACAGGACGAACACGTGGCGGCCCAACCTGGCACCCCAGCGCGGGTCCGCATCATCAACACTGACCAGGGCACCGCCGCCGTCTGGTCAGCCGCTCCTTTCCGGGTGGTTGCGACCGACGGGCAAGAGGTAAATGCCCCCGGCGCCGTGGAAGGAAAATCGGTGCTCATTCCGGCGGGCGGCCGGCTGGATGTCATTTTGGAGGCGCCTGCGCACGGCTCGGTGCGCCTCCATGTCGGCGGAGCCCGCAGCATCTCCATCGGTGATCCGGCGGCGGCAGCGCCGTCAGTACGGCAGCCCGCCGAGACACTCGACCTGCTGGCGTACGGGGAACCTGCCGCGCTTGAATTCGACCCGGGGTTGCCGGATCAAAGGTTCGACTACGTCATCGGACGCCGGCCGGGCCTCATCGACGGGCGCCCCGGCAACTTCTGGACGATCAATGGCCGGCTCTTCCCGGACGTACCGATGTTCCACGTGAACAAGGACGACGTGGTGGTGATGCGCATCGTGAACGAGACGGGTGAAGTGCATCCGATGCACCTGCATGGCCACCACGTCCTGGTGCTCTCGCGCGACGGTGAGCCGGCGTCGGGGAGCCCGTGGCGGGTCGACTCGCTCGACGTCCACCCGGGAGAGTCGTACGAGATCGCCTTCGTCGCCGACAACCCGGGCATCTGGAGCGGCCATTGCCATACGCTCCCGCACGCCGTCGACGGCCTCGTGGCGCACATCATGTACAACGGAGTCTCGACGCCATTCACCATCAACGGCGCCGCAGGCAACCATCCCGAGTGAMPSRRDRYRRVAVGLGVTLAVGLGALGWSSTLLGEYSVMDMGGKDMAGGQAGHVHGSAAGAAPDDGAVSVSELIADALRPPDVRFELVARRQTVDLPGGRAVEGYTVNGTSPGPTIRARQGDLVEVVFLNESVAAGATLHWHGIDVPNEADGVAGITQDAVPPGGRYVYRFIAADAGTYWYHSHQVSHEQVERGLLGAVVIDPAVPAAAVPAAGSPVAGQPAGGPPPAGITTDVVALLHVYGGQHTLNGRVQDEHVAAQPGTPARVRIINTDQGTAAVWSAAPFRVVATDGQEVNAPGAVEGKSVLIPAGGRLDVILEAPAHGSVRLHVGGARSISIGDPAAAAPSVRQPAETLDLLAYGEPAALEFDPGLPDQRFDYVIGRRPGLIDGRPGNFWTINGRLFPDVPMFHVNKDDVVVMRIVNETGEVHPMHLHGHHVLVLSRDGEPASGSPWRVDSLDVHPGESYEIAFVADNPGIWSGHCHTLPHAVDGLVAHIMYNGVSTPFTINGAAGNHPENANANANANA
D1-29_035661677fadD3COG03183-[(3aS,4S,7aS)-7a-methyl-1,5-dioxo-octahydro-1H-inden-4-yl]propanoyl:CoA ligaseATGCGCGCATACACAGCCGGGGACGCTGACGTCCCGCTGCTCGGGGAGACCATCGGCCAAAACTTTGAAAGCGTGGTGGCCAGGTTTCCGTTCCACGATGCGCTGATTGAGGCCGCACCGGTTCCGGGCGCTGACGCCCGCCGCTGGAGTTATACAAAGATGAACGACGACGTCGACAGGCTTGCGCGCGGGCTCCTCGCCCTGGGCGTTGCCCGGGGGGACCGGGTGGGCATCTGGAGCCCGAACTGCGCCGAATGGACGCTCCTGCAGTACGCCACCGCCAAGGCGGGGGCAATCCTGGTCAACGTCAATCCCGCGTACCGCAGCCACGAACTGGAATTCGTGCTCAGGCAGAACGGCATGCGCATGCTGGTCACGGCTCCCTCTGACCGCAGCAGCGATTACGTGGGGATGGCACGCGGGGCGCTCGCTGCCTGCCTGGAGCTGCGGGAGCTGGTGTTCCTTCCGGACTTGGGTATGGAAGGGCTCGACGCCGGCGTCCCCCAAAGCGACGCAGAGCTGACGTACGCCGAGCTGCTCAAGCGGGCTGACGACGTCGGGCATTCCGGACTGAAGGCGCGCATGGCTGAACTGGACCGGCACGATCCGGTCAATCTTCAGTACACCTCGGGGACCACAGGTTTTCCCAAGGGTGCCATGCTGACGCACCACAACATCCTCAACAACGGCTACGCCATCGGGGAGCTGCTGGGTTACACGGAGCGCAGCCGGGTGGTGATCCCGGTGCCGTTCTATCACTGCTTCGGCATGGTGATCGGCAATCTGAACGCGCTCAGCCATGGTGCCGCCACCATCATCCCCGGCCGGGGCTTCAACCCGGCCGCCGCCCTGGAAGCAGTTCAGGACTTCGGCGGGACATCCCTGTACGGCGTGCCCACGATGTTCATCGCCGAACTGGCCCTGCCTGACTTCGCGTCCTACGACCTGTCCACCCTCCGTACCGGTGTGATGGCCGGCTCGCCGTGCCCCGTCGAGGTGATGAAGCGGGTCATCACGGAGATGAACATGGTGGATGTGGCCATCTGCTACGGCATGACCGAAACGTCGCCGGTGTCCACCATGACCCGCATGGGGGACACCCTGGACCATCGCACCCAGACTGTCGGCCGGACCATGCCGGGGCTGGAAAGCAAGATTGTGGACCCGGCAACGGGCGAGGTGCTGGAGCGTGGCCAGGTTGGCGAATTGTGCACGCGTGGCTACGCCGTGATGAAGGGCTACTGGAATGAGCCGGACAAAACGGCCGAAGCCATCGACGCTGACGGCTGGATGCATACCGGCGACCTCGCCAAGATGGACGACGACGGCTACGTGGTGATTGAGGGCCGGATCAAGGACATGGTGATCCGCGGCGGCGAGAACATCTACCCGCGCGAAATCGAGGAGTTCCTCTACACGCACCCGTCCATCCAGGACGTGCAGGTCATCGGCGTCCCGGACCCCAAGTACGGCGAGGAGCTGATGGCCTGCATTATCCTCAAACCGGGCGCTGATCCGCTGGACGCCCCGGCTGTTGCGGAATTCTGCCGGGGACGCCTGGCCCATTACAAGATCCCGCGCTACGTCGACGTGCGGGAGAGCTTCCCCATGACGGTGTCCGGCAAGATCCGCAAGGTGGAAATGCGTGAGGAAGCGGTAGCCCGGCTGGGCCTCTAAMRAYTAGDADVPLLGETIGQNFESVVARFPFHDALIEAAPVPGADARRWSYTKMNDDVDRLARGLLALGVARGDRVGIWSPNCAEWTLLQYATAKAGAILVNVNPAYRSHELEFVLRQNGMRMLVTAPSDRSSDYVGMARGALAACLELRELVFLPDLGMEGLDAGVPQSDAELTYAELLKRADDVGHSGLKARMAELDRHDPVNLQYTSGTTGFPKGAMLTHHNILNNGYAIGELLGYTERSRVVIPVPFYHCFGMVIGNLNALSHGAATIIPGRGFNPAAALEAVQDFGGTSLYGVPTMFIAELALPDFASYDLSTLRTGVMAGSPCPVEVMKRVITEMNMVDVAICYGMTETSPVSTMTRMGDTLDHRTQTVGRTMPGLESKIVDPATGEVLERGQVGELCTRGYAVMKGYWNEPDKTAEAIDADGWMHTGDLAKMDDDGYVVIEGRIKDMVIRGGENIYPREIEEFLYTHPSIQDVQVIGVPDPKYGEELMACIILKPGADPLDAPAVAEFCRGRLAHYKIPRYVDVRESFPMTVSGKIRKVEMREEAVARLGLPGPT0008380_11925DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-29_03567279hypothetical proteinATGAGTGCACCCATTGACCTGCAGGCAACGTTCATCCCTAACGAAGGCGAGTTTTTCCGTGTGAAGCTCGCGCTTGAAATCGCCATCGACGAAGTGGTGAATGAGCCCGGCTGCATCCGCTACGAATTGACGGAGGCCAGCGAAGAGAAGTTGGTCGTGACGGAGCGCTGGGCGTCCGAGGAGGATCTCGAAAAGCATTCCAAGGGCACTGCCGTCCAGGACCTGAACGAGTCCTTGAGCGCCCTGCTGGCCGAACCCGTCAAGCTCGAGCGCCTGTAGMSAPIDLQATFIPNEGEFFRVKLALEIAIDEVVNEPGCIRYELTEASEEKLVVTERWASEEDLEKHSKGTAVQDLNESLSALLAEPVKLERLNANANANANA
D1-29_03568450hypothetical proteinATGGCTACCGTTGACATCACAGGTGAAGAGTTCGCATCAACCATCGAAGGCAACGACATTGTCCTGGTTGATTTCTGGGCCGAATGGTGTGGGCCCTGCAAGCAGTTTGGGCCCACCTACAGTGCTGTTTCCGAGAAGCACTCCGACGTCCTGTTCACGAAGGTGGACACCGAAGCCGAGCAGCAGCTCGCCGCCGAGGCCGGGATTACGTCCATCCCCACGCTGATGGCTTTCCGTGAAAAGGTGCTGGTGTTCTCCCAGCCCGGCGCCCTGAACGCCCAGCAGCTGGAACAGGTGGTTGACGCCGTGAAGGCACTGGACATGGAGGAAGTGCATGCCCATGTGGCGCGCTCGCGGGCGGAAGCCGAGGCCGCAGCAAGCACGGGCACAAACGCAGGGAACGCCGGCACCCCGGGTCCGCAGGACGGCTCACAAATCCCCGGCGCCTGAMATVDITGEEFASTIEGNDIVLVDFWAEWCGPCKQFGPTYSAVSEKHSDVLFTKVDTEAEQQLAAEAGITSIPTLMAFREKVLVFSQPGALNAQQLEQVVDAVKALDMEEVHAHVARSRAEAEAAASTGTNAGNAGTPGPQDGSQIPGAPGPT0013055_1554DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
D1-29_03569555hypothetical proteinATGCACCTGCTTTTGCGAACCCTCCTGATGCTGTTCACCTCCGCGCGCCGTTCCAAGCTGGCGGTCTGGGATGCCTCGTCCCTGCCACTCAAGGTTCTGCCAACGGACATAGACATTGCCATGCACGTCAACAACGGGATGTACTTTTCGCTGATGGACCTGGGGCGGTTCGATCTGATGGTGCGCAGTGGGGTGTGGAAGAGAATGCGGCAGCGCGGCTGGACCCCGGTGGCGGCAGGGGAAACCATTGCGTTTCGCAAGTCCCTCCAGCTGTGGCAGCGGTACACCATCGAGTCCAGGATCATCGGACTGGACGCCAAGGCGATTTACTTCGAGCAGCGCATGGTGGCCGACGGCGAGATTTACGCCCGCGCCCACATCGCCACCCGCCTGGTGAGCAAGGGAAAGCCTGTCAGGCAGGAGGAGATCCTCCAAGAGTTCGGTGAGCCACCGGCGGACCTGGTGCTCCCCGAGTGGATCCATGAATGGCGTGAGAACAACGCCCTGCCAGGCAGCCGCGCCACAGCACCACATCAGTGGGAAGCAACTTCCTGAMHLLLRTLLMLFTSARRSKLAVWDASSLPLKVLPTDIDIAMHVNNGMYFSLMDLGRFDLMVRSGVWKRMRQRGWTPVAAGETIAFRKSLQLWQRYTIESRIIGLDAKAIYFEQRMVADGEIYARAHIATRLVSKGKPVRQEEILQEFGEPPADLVLPEWIHEWRENNALPGSRATAPHQWEATSNANANANANA
D1-29_035702004nagJO-GlcNAcase NagJATGGCGTCAGGGTGGAGGCCTCCGAAGGGGCGCATCAGGACGGATGGCCCCAGGCTCCTGACATCATTGCTCGTTGGTGGCTTGGTCCTGCTGGGCTTCGCCGCAGACCAAGCCACGGATCTCCCTGTCCCTCCGCTCACCGCCGAAACCGTGCGCGTATTTCCAACGCCGCAGAGCACTGACGCCGCCCGGACCGCCGTCCCGCTGCGGGGGCGTGTAGTGATCGACCAGGGACCAGGGACCGACGCCGCCGCGTTGGAGATCGTGAGGCAGGCAATTGACGCTGCCGGCGGCACCGTTGAAGCGCCAGGTGCCGCCGTTTCCACCACAAGACAAACCGTGGTCTACATCGGCACCCCTGCTGACAACCCACACATCGGCCCAGCCTTGGCCGCTATGGATGTTGACGGCTCGGAAGCCTTGGATAAGGCGGAGGGTTACGTTCTGGCCGCTGGTTTGCACGGCCGCCAACGGGCTCTCGTCCTGGCCGGGCATGACCAGGATGGCGTTTACCACGCGGCCCAGACCCTGCGGCAGGTCACGGAAGGCTCGGGCGAAGTGGCCGTGGTCATCAAGGACTGGCCCCTCATGGGCATTCGCGGTGTGGTGGAGGGTTTTTACGGTTTTCCGTGGACGCACCAGGCCCGGCTGGATCAGCTGGAATTCTATGGCCGGCAAAAGCTGAACACCTACATGTACTCACCGAAGAACGATCCCCTGCTTCGCCATGAGTGGCGGCAGCAATACAGCGGGCCCCAGTTGGCGGAGTTGTCGGAGCTTATTCAAAGCGCCACCCGGAACCACGTCCGCTTTGTTTACGCCCTGTCACCCGGCCTGGACATCTGCTATTCGGACAGGGCGGACCTGGAGTCGGCGGTGGTGAAGTTGCAGTCCCTGCACCAACTGGGGGTCAGGACGTTCAACATTGCATTGGATGACATTGAGTTGGTCCTGAAATGCCCGGGGGACGTCGCCGCAAACGCGGAGGGCGAACGCGGACTCGCCGCAGCACAGGCTGGCTTCCTGAACAGCCTTAACCGTGAATTCGTTCAGGCAAATCCAGATGTCAACCCACTGGAGATGGTTCCTACCAAGTTCCATGGGGTGGAGGCTGACCCCTACAGAGAGGAACTCAGCGCCAAGCTGGACACCGGCATCCTGGTGCAATGGACGGGCCTGAACATCGTGTCCCCGGCCATCACATCCGACTCTGCGGCAGCGGCCCGGACGGCATATGGCACTCCGGAACAACCTCGGATAATTTTTCTGTGGGACAACTACCCGGTCAATGACTTTGCCCCTGACCGGCTGTTCCTGGGACCCGTGGTGGGCCGGAACCGGGATTTGCATACAGTGATTCAGGGAATCACGGCCAACCCCATGGTCCAGTCCTATGCGTCCATGCCGGCGCTTGCCAGCTTTGCCGACTACATGTGGAATGGTCCCGGATCCGACGCCGACGTTTCGCTTGACGCTGCCCTTGAGGAGATTGCCGGACCGGACAAGGAGGTCCAGGCCGCGCTTAAGACGTTCGCAGATCTGAGCAGGCACTGGCCGATCGATGAGCAGACGGCGAAGTCCCCGCTGCTCACGGCAGACATGGAGGAGTTCTGGCGGTCCTACGAGGATGGCACGTTTGATGACTCCTTGCTGGAACGGCGGGCGGCAATTCTCAGCAGCCTTCCCGAGGTTTTGCAGCGCCTGTCAGTGAAAGGGTTTTATGACGATGCCATTAACTGGATCGACTCCGGAGCGAGTTACGGTAACGCAGTCCAAGGCGCCATCACCATGCTGGCAGCCGTAGAGCGAGGCGATGATGCGGCAGTGGCAGAGGCCCGCTCGGTGCTGAGCGCCGCCGTCGACCGGGCGAATCAGGCCACCCAGTCGGCGATCGATCATCCGGACGTCAAGGCCAGGGTGGGGGATGGCTTGTTCGAGGCCTTCCTTGACCGGGCAATCCAGGAATCCGACCGCCGTCTGGAGGAGAAAAAGTCCGGAAGTTGAMASGWRPPKGRIRTDGPRLLTSLLVGGLVLLGFAADQATDLPVPPLTAETVRVFPTPQSTDAARTAVPLRGRVVIDQGPGTDAAALEIVRQAIDAAGGTVEAPGAAVSTTRQTVVYIGTPADNPHIGPALAAMDVDGSEALDKAEGYVLAAGLHGRQRALVLAGHDQDGVYHAAQTLRQVTEGSGEVAVVIKDWPLMGIRGVVEGFYGFPWTHQARLDQLEFYGRQKLNTYMYSPKNDPLLRHEWRQQYSGPQLAELSELIQSATRNHVRFVYALSPGLDICYSDRADLESAVVKLQSLHQLGVRTFNIALDDIELVLKCPGDVAANAEGERGLAAAQAGFLNSLNREFVQANPDVNPLEMVPTKFHGVEADPYREELSAKLDTGILVQWTGLNIVSPAITSDSAAAARTAYGTPEQPRIIFLWDNYPVNDFAPDRLFLGPVVGRNRDLHTVIQGITANPMVQSYASMPALASFADYMWNGPGSDADVSLDAALEEIAGPDKEVQAALKTFADLSRHWPIDEQTAKSPLLTADMEEFWRSYEDGTFDDSLLERRAAILSSLPEVLQRLSVKGFYDDAINWIDSGASYGNAVQGAITMLAAVERGDDAAVAEARSVLSAAVDRANQATQSAIDHPDVKARVGDGLFEAFLDRAIQESDRRLEEKKSGSPGPT0019175_206DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0019175-hya-K01197NANA
D1-29_03571843hypothetical proteinATGGCGGCGGCCGCTGTGGTGGCTGCAGTCAGCGTGGGCGCGCTGTCAGCTTCCGTCAGTCCGCCGGCAGCAGAAAGCACGACGGCGGCCGCCCCCGTGGTACGGGCTGATACAGCTTTGCCGGTGGACCCGGCTACAGCCGCCGCCGGCTCCCCGGACGCCGGCACGGCAGGCGTGAATCCGGCCGGAACGGTTCCGGTGGACGCAGCCCCGGCTGCTGCCGCTCCCCCGGAGGCGCCGCCCGCAGAGGCACCGCCGGCCCCCGCGCCTCCCGCCCCAACGAGCGATTCGAATCTCTACACAGTGGTCCCGGGCGACACCGTCGGCGCCATTGCGGCGCGGTTCGGGGTGGACCTGAACGGCATGCTCGCCGCCAATGGTCTGAGCGCCTACAGCATCATCGTTCCCGGGCAGACACTGAAGCTGAGCGGTCCCGCCGTCGCAGCGCCCGCGGCCCCCGCCGCTGCTCCCGCTCCGCCGGCCCAGGTCACTGCCCTTGTTCCGGCAGCGCCGGCAGTACGGACCATTTACGTTGCGGGAGCAGGCGGCCAATCGATGCTGGATGCCTGCATCGGCCCTATCCACTACACCCCGAATGACGGCTATTCGCTCTTCATCACGGAACACGATTTCTGCGGCGGGTGGGCGCGCTTCTCGGGCATCAGCGTGGGCGAAACAGTCAGCATTCCGGGCTACGGGACATATACGGCCACAGCACGGGGGCAGGTGCCCAATCCCGGCACCACCAACGACGTGATCAATGTCTTCGGCGGATTCCCCCGGGCTATCCTGCAGACGTGCATCCCGGGCACCAGCCAGATGTTGCTGATCGCCCTGAACTGAMAAAAVVAAVSVGALSASVSPPAAESTTAAAPVVRADTALPVDPATAAAGSPDAGTAGVNPAGTVPVDAAPAAAAPPEAPPAEAPPAPAPPAPTSDSNLYTVVPGDTVGAIAARFGVDLNGMLAANGLSAYSIIVPGQTLKLSGPAVAAPAAPAAAPAPPAQVTALVPAAPAVRTIYVAGAGGQSMLDACIGPIHYTPNDGYSLFITEHDFCGGWARFSGISVGETVSIPGYGTYTATARGQVPNPGTTNDVINVFGGFPRAILQTCIPGTSQMLLIALNNANANANANA
D1-29_03572441hrp1_1COG0517Hypoxic response protein 1ATGAGTGCTGTACGTGAATTCATGACGACGGATGCGCGCTGTATCCCGGAGAACCAGACCCTTGCAGATGCTGCCCGGATGATGATGGATCTGGACTGCGGATCGCTGCCGATCTGTGGCGACGACGGCAAATTGAAGGGCATGATTACCGACCGCGACATCGTGATTAAGTGCATTGCCATGGGCCGTGATCCGCGCGAGATGATGGCCCGCGACCTCGCCACGGGAACGCCCCACTGGATCGACGCCGACGCCAACGTTGACGAAGCCATCGAAATGATGGAGAGGTTCCAGATCAGGCGGCTTCCGGTCATCGCAGACCACAAGCTGGTTGGCATCATCAGCCAGGGTGACATCGCACGCAACTACGACGAGGAGCGTGTGGGCGAACTCGTGGAGCACATTTCCGAACGCAAGAGGATGCAGTCGAGCAGCCCGTAAMSAVREFMTTDARCIPENQTLADAARMMMDLDCGSLPICGDDGKLKGMITDRDIVIKCIAMGRDPREMMARDLATGTPHWIDADANVDEAIEMMERFQIRRLPVIADHKLVGIISQGDIARNYDEERVGELVEHISERKRMQSSSPNANANANANA
D1-29_03573261hypothetical proteinATGCGTTCAGGGGCGGTCTACAATCGCGCCTGGCGCCCGGCTTGGGAGAATACTGGGGTCCCGAAGGATAGGTGGGCCCGAATCCACGACCTCAGGCACACGAACGCATCATGGATGATTGCTGGAGGCATGGATCTCTTCCAACTTTCCCATCGCCTCGGGCATCAGTCCACAGCCACCACAGATGGGCGCTACGCCCACCTCATGCCCTCGTTACGGACCGCTGGCGCCAAGCTCGCAACCGCTGCCTTGGCGCGGTAAMRSGAVYNRAWRPAWENTGVPKDRWARIHDLRHTNASWMIAGGMDLFQLSHRLGHQSTATTDGRYAHLMPSLRTAGAKLATAALARPGPT0021996_535DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021996-int|intR|intV|intQ|intW|xerC-K14059NANA
D1-29_03574243hypothetical proteinATGGGGGAGGAACAGACGATGGCAAGAAATTCAGGGTTTGATGACCTGATCAAGGACCTGGGCAAATTGGTGGACAACGCCAGTAAGCTCGACGGGCTGACCGTCAGTATCGCGGCGACGGACACCGTGGCCGACGTCGAGAAAAAGTTGCGCGCTGAAGCGAGCCGCAGGGGAGTAACCAATCTATCTGCCTCTGAGCTACGTGGAATGGCTCAGGACATGCACTGGAGCGCTCGAAGGTAGMGEEQTMARNSGFDDLIKDLGKLVDNASKLDGLTVSIAATDTVADVEKKLRAEASRRGVTNLSASELRGMAQDMHWSARRNANANANANA
D1-29_03575462hypothetical proteinATGGACAATCACCAATCAGATTTGCCAGGCAGGATCCTGGAGCGCATCTCGACAGACAAGGCCGTGCACGAAGCGATGCAGCGGTTCTGGGAAGAGATACAGGGCTTCCGTGCCGACATCAACGGGCTCCGTCAGGAGGTGGCTAATCCGAGCCCTGCCAGATACCTGACTACCTCGGAAGTCGTGGAGATGTTCGGCATCAGCACCGAAACGGTCCGGCGCCGAGTCAAGGACGGTGTGTGGCCGGCATGGCGTAACGGCCGCCAGATCCGCTTCGGGCGGGATGAGATACGGCCATCGCGGAGTGGGGGAGACCGCTGGCCCCCGATCGGCTCCCGACTGGCCGGGAGCGACGGCAACGGAACAAGTAGCTTGGCGCCCTCTGGCCCAACGCAGTGTGATCACGTGTGCTCACTGCCGGAATTGCCCAGCCGGAGCAAAGGATCCGGCGCTGCCAACTGAMDNHQSDLPGRILERISTDKAVHEAMQRFWEEIQGFRADINGLRQEVANPSPARYLTTSEVVEMFGISTETVRRRVKDGVWPAWRNGRQIRFGRDEIRPSRSGGDRWPPIGSRLAGSDGNGTSSLAPSGPTQCDHVCSLPELPSRSKGSGAANNANANANANA
D1-29_03576504hypothetical proteinGTGGCCACAAAAAAGGTAGTACGGCCTCCCATCTCCGAAACACGGGAGAAAGTTGCTTGGGTTGATAAGCGCGGGCAGCCGAAAAGCAAGAAGGCCCCACCAAGCGCTACGCGCCCTATTGCGATAGACGAGCTGTCGTTCCAGTGGACCGCTCAGGAAGTCGACCACGAACATAATGGGCTCTGGGACTGGGATCTCACTCCCAAGGAGACGGCTGACCTGCTGGACTTGCTGTCTGGGATCACCAAACTATCCTGGCGTGAGGTGAAAGAGCTCAAGTTCAATAGCAGCAGGCGCAGTCGGGCCCTTCATCATTCTCAGCCTGTTGACTCCATCTGTAGTGAGGCACGTCAGCGCCTGGATGAGATCGGCCGGGGTGATCAGGAAGAAGTGTTTCGGCTGCGTCATGGCAACACCATCCGCGTCTGGGGAGTCTTGGAGGGTCCCGTCTTTTCCATCCTCTGGTTTGACCGGAACCATCAGGTTTGCCCTACGGAGAGTTAGMATKKVVRPPISETREKVAWVDKRGQPKSKKAPPSATRPIAIDELSFQWTAQEVDHEHNGLWDWDLTPKETADLLDLLSGITKLSWREVKELKFNSSRRSRALHHSQPVDSICSEARQRLDEIGRGDQEEVFRLRHGNTIRVWGVLEGPVFSILWFDRNHQVCPTESNANANANANA
D1-29_03577462hypothetical proteinATGGTCACTGTTCACGACGTAGCCGCGTACATTCTCGAAAAGTGCGGCCCAATGAGCACGATGAAACTGCAAAAGCTGTGCTACTACAGCCAAGGCTGGGCTTTGGCGTGGGATGAGCGCCCCCTTTTCGATTCGCGTATTGAAGCTTGGGCCAATGGTCCCGTTATCTACGATTTGTACCGCCAACACCGTGGTCGCTTCACAGTTAGTGATTGGCCCAGTGGGGACGCGGCAGCCGTCACAGGCGAGGATAAGGACACCATCGACGCGGTTCTATCCGGCTACGGCGACCTCACCGGGCAGCAGCTCAGTGACATGACCCACGCTGAGCGTCCGTGGCTTGCCGCTCGTGGAGCACTGCCGAATGGCGCTCGTTGCAACGTGGGCATCTCCCAAGACGTTATGCAGGATTATTTCGGCGGGCTGGACGCGGAACAATCCGAAGATCCCACCCATCTGTAAMVTVHDVAAYILEKCGPMSTMKLQKLCYYSQGWALAWDERPLFDSRIEAWANGPVIYDLYRQHRGRFTVSDWPSGDAAAVTGEDKDTIDAVLSGYGDLTGQQLSDMTHAERPWLAARGALPNGARCNVGISQDVMQDYFGGLDAEQSEDPTHLNANANANANA
D1-29_03578228hypothetical proteinGTGGCGCGCAAGAAGAAAAGCGGTAATGGCAAGTTCCTCTCCCGGAAGATGCGGAGGAGGCTGACGGAGTGGCTCCTGATCGGACTGCTGATCAACAGTGCTTCCGGTCCCGTGCCCCTGGCACCCACACTTCCGGGTCCCATCCTCCCGGGTAGTCAGGGCGGTGCACCTCTCCCGTCCGTGATAGTGCCCGCACCCGGCACAGTGCCACCTCACTGCGGACCCTGAMARKKKSGNGKFLSRKMRRRLTEWLLIGLLINSASGPVPLAPTLPGPILPGSQGGAPLPSVIVPAPGTVPPHCGPNANANANANA
D1-29_03580231hypothetical proteinGTGTTGGAAGCCTCGAAGGGAAAGACCATGCACCGCACAGCCGTCCGTTACGTCACCAAGACCACTTCCGCCGCCGGCGGTGCACTTGCCACCGCAGCCACGTCCGTGGCGGCAGCCGCCGTCGCAGCGTCCATTATTTTCAGTCCCGTCGCAGATGCTTCAGCCCGGATGGACGGAGTCAGCGAGGACCTGCTCCGGGCGGTGCAGCTCAACCAGATCACCGAGGAGTAGMLEASKGKTMHRTAVRYVTKTTSAAGGALATAATSVAAAAVAASIIFSPVADASARMDGVSEDLLRAVQLNQITEENANANANANA
D1-29_03581492hypothetical proteinATGGCAGGCGAGTCAACGTTCGATGTCGTAAGCAAAGTAGACAAGCAGGAAGTGGCCAACGCGCTGAACCAGGCGCAGAAGGAAATCGCCCAGCGCTACGACTTCAAAGGCGTCGGCGCCGAGGTTGATTTCAGCGGCGAGAAGATCCTGATGAAGGCGAACTCCGAGGAACGCGTGTTGGCCGTACTGGACGTCCTCCAGTCCAAGCTCATCCGCCGCGGCATCTCGCTCAAGTCGCTGGACACCGGCGAGCCGTACGCCTCCGGCAAGGAGTTCCGCCTGGAAGCCTCCATCAAGGAGGGCATCGCCCAGGATCTGGCCAAGAAGATCAACAAGCTCATCCGCGACGAGGCCCCCAAGTCGGTCAAGTCCCAGATCCAGGGCGATGAGCTCCGGGTGACGTCAAAGTCCCGCGACGATCTCCAGGCAACCATGGCACTGCTGAAGGACTTTGACGAAGCCGATCTCCAGTTCGTCAACTTCCGCAGCTAGMAGESTFDVVSKVDKQEVANALNQAQKEIAQRYDFKGVGAEVDFSGEKILMKANSEERVLAVLDVLQSKLIRRGISLKSLDTGEPYASGKEFRLEASIKEGIAQDLAKKINKLIRDEAPKSVKSQIQGDELRVTSKSRDDLQATMALLKDFDEADLQFVNFRSPGPT0012210_1089DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767NANA
D1-29_03582867htpXCOG0501Protease HtpXGTGCACAAGCATTACAACGGCCTGAAGACCGCGGCGCTTTTCGGTGTGCTTTGGGCGGTGCTGCTGGGACTGGGCGCCCTGATCGGGTTGAACACCCGGAGTTCCGCGCCCATCTGGATCATGGCCGTCATTGGTGTGGCCACCACGTTCTACGGCTACTGGAACAGCGACAAGATAGCCATCCGCTCTATGGCGGCCTACCCCGTCACCGAAGCGCAGGCACCCTACCTCTATCAGATAGTCCGCGAGTTGTCGGTGCGGGCCAACCAGCCCATGCCGCGCATCTATCTCTCACCCACCATGAATCCGAATGCCTTTGCCACCGGCCGGAATCCTAAAAACGCGGCGGTCTGCTGCACGGAAGGGATCCTGCAATTGCTGGATGCCCGTGAACTTCGCGGTGTCCTGGGACACGAACTCATGCACGTTTACAACCGGGACATTCTCACGTCTTCCGTGGCGGCCGCCGTCGCCGGCGTGATCACGTCCGTGGGCCAGATGCTGTTGTTCTTCGGCGGTGACCGCCGGAATGCCAACCCGCTCGCCATGCTGGCCATGGCTTTGCTTGCGCCCTTTGCGGCGTCGCTGATCCAGCTGGCCATCTCCCGCACCCGGGAGTACGACGCCGACGAGGACGGTTCGGAGCTCACCGGCGATCCGCTGGCACTCGCCTCAGCCCTGCGCAAGATTGAGCAGGGGGTCAAGATGGTGCCGCTGCCGCAGGACCAGAAGCTGGTGAACGCTTCGCACCTGATGATCGCCAACCCGTTCCGCGGCGGCGCCATGACCAAGCTCTTCGCCACCCATCCGCCCATGAGTGACCGGATTTCCCGGCTCGAGCGGATGGCAGGCCGGCCGCTGCGCTAAMHKHYNGLKTAALFGVLWAVLLGLGALIGLNTRSSAPIWIMAVIGVATTFYGYWNSDKIAIRSMAAYPVTEAQAPYLYQIVRELSVRANQPMPRIYLSPTMNPNAFATGRNPKNAAVCCTEGILQLLDARELRGVLGHELMHVYNRDILTSSVAAAVAGVITSVGQMLLFFGGDRRNANPLAMLAMALLAPFAASLIQLAISRTREYDADEDGSELTGDPLALASALRKIEQGVKMVPLPQDQKLVNASHLMIANPFRGGAMTKLFATHPPMSDRISRLERMAGRPLRPGPT0014605_3233DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799NANA
D1-29_03583804hypothetical proteinATGAGTCTGTCCAGGCGGCTTCTTTTTGCATCGGCGGTCTGGGAAGTGGCCCGCCCGCGGACCGCGTTGACGGCCGGCCACCTCCTCATCCGGCTGAGCAACCCCGCTGTTGCATTCGATCTCCACTCCGCTGCCGACTGGCTAGTGTGCCATCGTGCTGCCCGTGAGGCCCTCGGCGAGGTGCTGGACGCGCGGACCTGCACCGTGGTGTTCGCCCACCAATGGCATCCCATCGGGGCAGCCATTGGAGAGCCGGAGGTGGAATCTTCCACACCCACTTTCCATATGTTCGGACGCTGGGAGGGCGAGACGGCCAGCCCCGGCGAGCAATTCAGGCTTCCCGCCCAGCGCCGCGTCCCGGTCCCCGCGGAGGAACTGGCCACGTACGACGACGGCTTCCGGGCTACCCTGCGGCGCTCGGCAAAGGAGCTCGGCAAGACAGCCCCTGCCGCCGAAGATTGGGGCCGGGCAGGCGGGCCTCTTCCCGCCATCCGGTCGTGGTCCCCCCGGGTGAAGGCCGGGAATCATCACACTGTCCTGTCCGCGGAAGCCCTTGACCCGGAGAGCCCGCCATCGGGCCGCAGCCCCGGAACCTTCGGTGTTTCGGCGCCTGCACTGCTGGCCATGGCCGCGGAGCTCCAGGTGCTCACTGGCCGACGCGGTGTCAGCGGGCTCAGCTGTGTGGTTCCCGACAACGGCAGCGGCCCGCTGGAAGTCCACGCCCTGGGCCGGGCAGCAGGTGAACCCGTCAACCCCATGGAACGGCTGCTGGACCTGCCCAAGGTTAGCCAAGCCTTATTGTGAMSLSRRLLFASAVWEVARPRTALTAGHLLIRLSNPAVAFDLHSAADWLVCHRAAREALGEVLDARTCTVVFAHQWHPIGAAIGEPEVESSTPTFHMFGRWEGETASPGEQFRLPAQRRVPVPAEELATYDDGFRATLRRSAKELGKTAPAAEDWGRAGGPLPAIRSWSPRVKAGNHHTVLSAEALDPESPPSGRSPGTFGVSAPALLAMAAELQVLTGRRGVSGLSCVVPDNGSGPLEVHALGRAAGEPVNPMERLLDLPKVSQALLNANANANANA
D1-29_03584486furACOG0735Transcriptional regulator FurAATGACGGAAGACTTTGGAGGCCATGAAGCCTGGGCTGCCGCCCTGCGCGCCCACGGCCGCCGGGTGACGAAGCAGCGGCTTGCCGTGTTGGCCGCCGTCGAACACCACCCCCATTCCCCCGCGGAAAGCATCCTGGCCGCCGCCCGCGCCGAGCTGCCCGAGCTCACCGCCCAGTCCGTCTACGTGGTCCTGGGAGACCTGACCGATCTGCAGATGCTGCGCCGCTTCGAGCCGCCGCACTCCCCCGCGCTTTATGAAACCCGGGTCGGCGACAACCACCACCACGCCATCTGCGTCAGCTGCGGCCGCGTGGAGGATGTGGAATGCGCCGTAGGCCACGCACCCTGCCTCACGCCGCACTGGGACGAAAACTCCCGGCCAATGACCATCCAGATCGCCGATGTCCTCTACCAGGGCATCTGCGAAGACTGCCAGCGGTCCCAAAAACTTCCTTCTGAACGTCCCTCACAAGTAATCGAGAAATAGMTEDFGGHEAWAAALRAHGRRVTKQRLAVLAAVEHHPHSPAESILAAARAELPELTAQSVYVVLGDLTDLQMLRRFEPPHSPALYETRVGDNHHHAICVSCGRVEDVECAVGHAPCLTPHWDENSRPMTIQIADVLYQGICEDCQRSQKLPSERPSQVIEKPGPT0014380_1558DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-29_035851488katACOG0753CatalaseATGACTGCCATTTCAACCACACAGTCAGGTGCGCCGGTCACGTCCGACGCGCATTCGAAGTCAGTTGGTGCCGACGGTGCCATCATCCTGACTGACCACTACCTGGTGGAAAAGCTCGCCCAGTTCAACCGCGAGCGGGTGCCGGAGCGCGTAGTGCACGCCAAGGGCGGCGGCGCATTCGGTACGTTCAAGGCCACCGAGGACATCTCGGCCTACACCAAGGCCGCGTTCCTGCAGCCGGGTGTTGAGACCGAGATGCTGATCCGTTTCTCCTCCGTCGCCGGCGAGAACGGCTCCCCCGACACCTGGCGCGACCCCCGCGGGTTCGCCGTGAAGTTCTACACCTCCGAGGGCAACTACGACCTCGTGGGCAACAACACCCCCGTCTTCTTCATCCGCGACGGCATCAAGTTCCCGGACTTCATCCACTCCCAGAAGCGCCTCCCGGGTACCCACCTGCGGGACGCCGACATGCAGTGGGACTTCTGGACCCTCTCCCCCGAGTCCGCACACCAGGTCACCTGGCTCATGGGCGACCGCGGCCTGCCGGCTTCCTGGCGTGAAATGCAGGGCTATGGCTCGCACACCTACCAGTGGATCAACGCCGCGGGCGAGCGTTTCTGGGTCAAGTACCACTTCAAGTCCAACCAGGGCGTCAAGACCATCACGGGTGACCAGGCAGAAGAGCTGGCCGGCTCGGACGCGGACTTCTACATCCGCGACCTGTCCGAAAACATCGAAGCCGGCAATTTCCCGTCCTGGGACCTGCACGTGCAGGTCATGCCCTACGAGGACGCCAAGACCTACCGCTTCAACCCGTTCGACCTGACCAAGGTCTGGCCGCACGCTGACTACCCGCTGATCAAGGTGGGCACCATGGAGCTGAACAAGAACCCGGAGAACTACTTCGCGCAGATCGAGCAGGCCACCTTCGCGCCGTCGAACTTCGTGCCGGGCATCGCCGCTTCCCCGGACAAGATGCTGCAGGCCCGCATCTTCTCCTACGCAGACGCGCACCGCTACCGCGTGGGCACCAACCACGCCCAGATCCCGGTCAACCAGCCCAAGAACCAGGTGAACAACTACAGCCAGGACGGCTCAGGACGTTACCTGTTCAACGCGCCGTCCGTGCCGGTTTACGCACCGAACACCTTCGGTGGCCCGGCTGCGCTTGAGCCTCAGAACCCGGCCGGCGGGTGGGAGAACGACGGCGAGCTTACCCTCGCTGCGCACACCCTGCACGCTGAGGACAGCGACTTCGGCCAGGCCGGCACGCTCTACCGCGAGGTCTACGACGATGCCGCCAAGGCCCGCTTCCTGGACACCATCACCGGTGCCGTAGGCGGCGTCAAGCGCTCCGACATCAAGGAACGCGCCATCCAGTACTGGACCAATGTTGACGCCGAGCTCGGCGCCAAGCTGCGGGCCAACCTGGGCGCCGCTTCCGCCGCAGGTTCCGACGCTGAGGCCGCCAACAAGATCGGCTAGMTAISTTQSGAPVTSDAHSKSVGADGAIILTDHYLVEKLAQFNRERVPERVVHAKGGGAFGTFKATEDISAYTKAAFLQPGVETEMLIRFSSVAGENGSPDTWRDPRGFAVKFYTSEGNYDLVGNNTPVFFIRDGIKFPDFIHSQKRLPGTHLRDADMQWDFWTLSPESAHQVTWLMGDRGLPASWREMQGYGSHTYQWINAAGERFWVKYHFKSNQGVKTITGDQAEELAGSDADFYIRDLSENIEAGNFPSWDLHVQVMPYEDAKTYRFNPFDLTKVWPHADYPLIKVGTMELNKNPENYFAQIEQATFAPSNFVPGIAASPDKMLQARIFSYADAHRYRVGTNHAQIPVNQPKNQVNNYSQDGSGRYLFNAPSVPVYAPNTFGGPAALEPQNPAGGWENDGELTLAAHTLHAEDSDFGQAGTLYREVYDDAAKARFLDTITGAVGGVKRSDIKERAIQYWTNVDAELGAKLRANLGAASAAGSDAEAANKIGPGPT0014380_3456DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-29_03586636hypothetical proteinATGAGCACATTTCAGGGCATTCCGGCGGAGGCCTTCGCGTTCTACGCGGAGCTTGAAAACAACAACAACCGCGAGTGGTGGCTTGAGCATAAGGACAGCTACAACAGCCTGGTCCGCGAACCGCTCACGGCGCTTCTCTCGGAGCTGGAACCCACCTTTGGCCCAGCCAAGATCTTCCGGCCTAACAGGGACATCAGGTTCTCCCAGGATAAGTCGCCCTACAAAACCGCCCAGGGCGCCTTCGCCTCCGCCCAGGAAGGTGTGGGCTACTACCTGCAGATTAGTGCCGACGGCCTGCTGGTTGGTGGCGGCTACCATTCCCACTCCCCTGCCCAGCTGGTCCGCTTCCGGAACTCTGTTGACGCTTCCGGGACAGGCGAGTCCCTCCGTCGGATCGTTGAAGCCGTCGCTGCAGACGGCTTCGCGGTGGAAGGCGAGAAACTCAAAACCGTTCCCCGGGGTTACGCCCGCGACCATCCCCGGGGCGAGCTCCTCAAGCACAAGTCACTCTCCGCCAGCGTGAACCTCGGACAGCCGGATTGGTCCGCCACGCCGGGCGCCGTGCAGGAAGTCGCCAGGCGGTGGGAACGTCTGCGGCCACTCGTGGACTGGGTGGGACGCCACGCCGCTCCCTGAMSTFQGIPAEAFAFYAELENNNNREWWLEHKDSYNSLVREPLTALLSELEPTFGPAKIFRPNRDIRFSQDKSPYKTAQGAFASAQEGVGYYLQISADGLLVGGGYHSHSPAQLVRFRNSVDASGTGESLRRIVEAVAADGFAVEGEKLKTVPRGYARDHPRGELLKHKSLSASVNLGQPDWSATPGAVQEVARRWERLRPLVDWVGRHAAPNANANANANA
D1-29_03587606hypothetical proteinATGGCCCGCCCCGCGAAACCGGAACGCAAAGCAGAGCTGCTGTGCGAGATCCTTGACTACCTGATGGACAAAACCCTGGCTGAACTGACCTTCCGCAGCCTGGCCGAAGGACTTGGCATCAGTGCCTACGTGCTGGTCTACCACTTCGGCAGCCGGGAGCAGCTGGTTAACGAAATCATCCGCTCCATTGAATCCAGGCTGGACAGCATGCGCAGCACGGACGTCCAGGACATTGACCGCGAAGCCTGGCGGAGCTACCTGCTGGAGTCCTGGCAGTGGACCATGGCGCAACGCAACCGGCACCTGGCCAGGCTGGAATTCGAGGCCACCGCACAGGACATCGTGGCGGCCGAGCCGCGTGGAACGTCCCAGGAGCATTTCCGCATGCTGCACCACAAGACGAGGGACTGGCTGGTGGTGCAGGGGATTCCCGAGGAGTTTGCCGACACCGACGCACGTCTGTTCACCTCCACCTTCTACGGCCTGCAGTTCGACTTTGTGGTGATGAACCAGCCTGAGGCGGCAACCAAGGCCTTTGAACTGATGCTGACCGTCTTCTTCAGCAACCTGGAAAGCCGGCTGGCCGCCGTAGCCCAAGAGGCCTGAMARPAKPERKAELLCEILDYLMDKTLAELTFRSLAEGLGISAYVLVYHFGSREQLVNEIIRSIESRLDSMRSTDVQDIDREAWRSYLLESWQWTMAQRNRHLARLEFEATAQDIVAAEPRGTSQEHFRMLHHKTRDWLVVQGIPEEFADTDARLFTSTFYGLQFDFVVMNQPEAATKAFELMLTVFFSNLESRLAAVAQEANANANANANA
D1-29_035881413hisC_3Histidinol-phosphate aminotransferaseATGAACAACGATAGCAGTTCGCGGATAGCCACGCGACTCAGGGAGTGGATCGCCGGCGCCGGACCAGGCGCAAAGCTGCCGTCCACCCGTTCACTGGTTGCCGAGTACCAGGCCAGTCCGGTGACGGTGCAAAAGGCGCTCCAGACCCTGACGGGGCAAGGCCTGATAGAGAGCAGGCCCGGCGTCGGGACCTTTGTGCGCGCGGTGCGCACCGCCCGCCCGTCTGACTACGGCTGGCAGACCGCTGCCCTTCGGTCGCCCCAGGCGCCGCTTCCGCCGGCGTCGGCCACGATGCGCGGGGCGTCCAACGATGCCATCGCCTTCCACTCCGGCTACCCCGACCGGGAACTCCTGCCCGAGCGCCTGGTCCGGACGGCGCTCATCCGCGCGGCCCGGGGTGACGCGGCCCTTTCCCGTCCGCCGGCAGCCGGGCTTCCCGAGCTGCAGTCCTGGTTCGCGCAGGAACTCAGTGCCTCCACGCCGGTTGGCATCACCCCACCCAACCCCAGCGATGTCATTGTGCTGCCGGGAAGCCAGAGCGGACTCAGCTCCATCTTCAGTGCCCTGGCCGGCAGCGGGCAGCCGCTGCTGATGGAGTCGCCAACCTATTGGGGTGCCATCCTGGCGGCGGCCCAGGCAGGTGTCCGCGTAGTCCCGCTGCCCAGCGGACCGGACGGTCCCGATCCGGAGGACCTGACCCGCGCGTTTGAGGAGACAGGGGCGCGCCTGTTTTATGCCCAACCCAACTACGCCAATCCCACCGGCGCGCAGTGGGCCGCGGGGCGGGGCGAGAAGATCCTTGACGTGGTGCGTAAGTACGGCGCCTTCCTGGTGGAGGATGACTGGGCGCATGACTTTGGCATCACCACCACTCCAGTGCCGGTTGCCGCCCAGGATGATTCGGGGCACGTCATCTACCTCCGCTCCCTGACCAAGAGCGTCTCCTCGGCCATCCGCATCGCCGGCGTCATCGCCCGCGGACCGGCGAGGGAACGCATCCTTGCCGACAGGGCAGCCGAATCGATGTACGTCAGTGGCCTGCTCCAGGCGGCAGCGCTCGATGTGGTGACTCAGCCGGGCTGGCAGACGCACCTGCGGAGCCTCCGCCATCAGCTCCAGTCCCGCCGTGACCTGCTGGTTGCCAGCGTGCGCGGTCATATCCCGCAGGCCCACCTGGAGCACGTGCCCAAGGGAGGGCTGAACCTCTGGCTGCGCCTGCCTGACGGGACCGACCTTGAGCGGCTGACGCTCGACTGTGAAAGGGCCGGGGTGATGATCGCGGCGGGCACAGACTGGTTCCCGGCTGAACCTGCCGGTGCGTTCATTCGGCTTAACTACTCGGGACCAAACCCGGGTGCCTTTCCTGAGGGTGCCCGGATCATCGGCCAATGCATCGGGCACACCGGGTCATAGMNNDSSSRIATRLREWIAGAGPGAKLPSTRSLVAEYQASPVTVQKALQTLTGQGLIESRPGVGTFVRAVRTARPSDYGWQTAALRSPQAPLPPASATMRGASNDAIAFHSGYPDRELLPERLVRTALIRAARGDAALSRPPAAGLPELQSWFAQELSASTPVGITPPNPSDVIVLPGSQSGLSSIFSALAGSGQPLLMESPTYWGAILAAAQAGVRVVPLPSGPDGPDPEDLTRAFEETGARLFYAQPNYANPTGAQWAAGRGEKILDVVRKYGAFLVEDDWAHDFGITTTPVPVAAQDDSGHVIYLRSLTKSVSSAIRIAGVIARGPARERILADRAAESMYVSGLLQAAALDVVTQPGWQTHLRSLRHQLQSRRDLLVASVRGHIPQAHLEHVPKGGLNLWLRLPDGTDLERLTLDCERAGVMIAAGTDWFPAEPAGAFIRLNYSGPNPGAFPEGARIIGQCIGHTGSNANANANANA
D1-29_03589957hypothetical proteinTTGGGAGTAGCGGCCTTCTCGCTCACGATACCGTTGACACGGATTGCGGTCGTAGGCCTGGCTCCGCTTTTTATTGGGTCTGCCCGTGCTGTGCTGGCCGCGTTCCTGGCAGCTGCCGCCCTTGCACTCGCCCGGCAGCGCCTTCCCCAGGGTGTGCAGTGGTTGCGCCTGATGGTGGTGGCCCTTGGCGTCGTGGTGGGTTTCCCGCTGCTGACCACCTTCGCGCTGACTGCCGTGCCCGCCAGCCACGGCGCCGTCGTCGTCGGACTGCTGCCCGCCGCCACGGCGACAGCGGCGGTACTCCGTGGACGTGAACGGCCCCCGCCGGCCTTCTGGGCAGTCGCCTTGGCCGGGGCGCTGGCTGCCATTGGGTTTGCCTTCACCCAGTCAGGCAGTTTCGGCCAGCTGCACTGGGCGGACCTGCTCATCCTCGGGGCGGTGGTGGCTGCGGCGGTGGGCTACGCCGAAGGCGGGCTTCTTGCCCGCGAGCTGGGCTCATGGCAGACCATATCCTGGGCGCTCGTCCTCGCCTCGCCGCTGATGGCCGGCCTCACAGCCCTGTCCGTCTCGCAGCAGCCGCCGGCCGGCACGTTCTGGCAATGGTCCGCTTTTGCCTACCTTGGTGTGGTCAGCATGTTCCTCGGCTTCTTTGCGTGGTACCGCGGCCTGGCCATTGGCCCCATCTCCCACGTCAGCCAGATCCAGCTCATCCAGCCCGTGCTCAGCATCTGCTGGGCCGCGCTGCTGCTGGGCGAGGTCCTCTCCCTGACAACCCTCATCGGCGGCCTCGCCGTCATCCTCTGCGCCGGCGCCGCCGTCCGCGTCCGACTCCGTCCGGCGCCTGCTGCCTGCGTGGCTCCACCCTCCACAGAATTACTAGAAACAGCCACAGAAGCACTAGATCCAGCAAAGGAAATCCACGATGTACATCCCAGCCCACTTCACAGCAGGCCCTGAMGVAAFSLTIPLTRIAVVGLAPLFIGSARAVLAAFLAAAALALARQRLPQGVQWLRLMVVALGVVVGFPLLTTFALTAVPASHGAVVVGLLPAATATAAVLRGRERPPPAFWAVALAGALAAIGFAFTQSGSFGQLHWADLLILGAVVAAAVGYAEGGLLARELGSWQTISWALVLASPLMAGLTALSVSQQPPAGTFWQWSAFAYLGVVSMFLGFFAWYRGLAIGPISHVSQIQLIQPVLSICWAALLLGEVLSLTTLIGGLAVILCAGAAVRVRLRPAPAACVAPPSTELLETATEALDPAKEIHDVHPSPLHSRPNANANANANA
D1-29_03590624paiBCOG2808Protease synthase and sporulation protein PAI 2ATGTACATCCCAGCCCACTTCACAGCAGGCCCTGAAGCACTCCACGCGCTCCTCACCCGCCCGGCCGCGGCCAACCTGGTCACCACGACCGGGAACGGCATGCTCGCAACGCTGCTGCCTTTTGTCTACGATCCGTCTGTGGGCGAACACGGTGCCCTGCAGGCGCACGTGGCCCGGAACAACACGCAGTGGTCTGAACCTGCTGTCGGCGAGTCCCTCGTGATCATCCAGGGTGCCGACGCCTACATTTCGCCCTCGTGGTACGCATCAAAGGCCGAGCACGGACGCGTTGTCCCCACCTGGAACTACTCCACCGCGCATGTCTACGGAAAGCTCGTCATCCACGATGACGCTGCTTGGCTGGACAGCCTTGTCAGGCGGCTCACAGATCGCCACGAAGCCGCGTCCGAGAAGCCCTGGTCTGTGGATGATGCACCGGAGCGGTACATCTCCGGCCAGCTGCGGGCGATTGTCGGCGTCGAACTGCTCATCACCAGGATCGAAGCCAAAACCAAACTCAGCCAAAACCGGCCCGAGGCCGACATCGACGGCGTGGTGGCCGGACTTCAGGCGAGCGGGCAGACAGAGAGCGCTGCCGACGTCGAGCGGGCCCAGGGCCGCTAGMYIPAHFTAGPEALHALLTRPAAANLVTTTGNGMLATLLPFVYDPSVGEHGALQAHVARNNTQWSEPAVGESLVIIQGADAYISPSWYASKAEHGRVVPTWNYSTAHVYGKLVIHDDAAWLDSLVRRLTDRHEAASEKPWSVDDAPERYISGQLRAIVGVELLITRIEAKTKLSQNRPEADIDGVVAGLQASGQTESAADVERAQGRPGPT0014760_928DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014760-paiB|yumE-K07734NANA
D1-29_035911533yhdG_4COG0531putative amino acid permease YhdGATGAATCTTCTCCGGACCAAATCCATCGAGCAGTCAATGGCCGACGCCGATGAACCCGGACGCAAGCTCAAGCGTTCGCTCAGCACTTGGGACCTCATGATTATGGGCGTCGCCGTTGCTGTCGGCGCCGGCATCTTTTCCGTGGGTGCCAAGGCCGCAGCCAACTTCTCCGGCCCCGCGGTGACAGTGTCCTTCGCCATCGCAGCCGTCACGTGTGCGCTGGCCATCATGTGCTACGCCGAGTTCGCCACCGCCATCCCCGTTGCAGGTTCGGCATACGTCTTCACGTACGCCACCATGGGGGAGCTGCTGGCCTGGATTATCGGCTGGAACCTGATCCTGGAGCTTTTCACCGCCGCCGCCGTGATCGCCAAGTACTGGGGCATCTACCTCAGCAAGGTGTTCGCGCTGATGGGCGCAGATGTTCCGCCGGCCCTCTCCCTTGGCGGCGTTGACCTCTACTGGGGCGCGTTCCTGATCGTTGCCGTGTTCACCGTGCTCCTGGTCCTGGGCACCAAGCTCTCCGCCCGCGTTGGCAACATCTTCACACTGATCAAGATCGCCGTGGTCCTCTTTGTGATCGTGGTGGGCTTCACGTACGTGAAGTTCGAAAACTACACTCCCTTCATCCCCGCGGCCGAACCCACTGGCGGGAGCGGTGCCGCCGACGTGCTCAAGCAGTCGTTCTTCGGCTTCCTCACCGGTGCCGCACCTGCCCAGTACGGAACGCTGGGCATCTTCGCCGGGGCAGCCCTGGTGTTCTTCGCCTTTATCGGGTTCGACGTGGTGGCCACCTCGGCCGAGGAAGTCAAGAACCCCCAGAAGACCCTGCCGCGCGGCATCTTCGGTGGCCTCGCCGTCGTGACCCTGCTCTATATCCTGGTATCCCTGGCACTGACCGGCATGGTGTCCTACACGGAGCTTGCCGAGGCCGAAAGCCCCACGCTCACCACGGCCTTTGAAGCGGTAGGCGACACCTCCGCCGCGAAGGTCATCGCCTTCGGATCCCTGGTGGGCCTGACCACCGTGATTATGGTCCTCCTGATGGGCCTGTCCCGGGTTGTGCTGGCCATGAGCCGCGACGGGCTGCTGCCGCGCTCACTGTCCAAGACCAGTGAAAAACGTTCGACGCCGGTGCGCCTCCAGGTGATCTGCGGCGCCGCCGTCGCACTGGTTGCCGGGCTGACCAACGTGGACCTGCTGGAAGAAATGATCAACATCGGCACATTGTCGGCGTTTGTCATGGTGAGCCTGGGTATCCTGGTGCTGCGCAAGAAGCGCCCGGACCTCAAGCCTGCATTCCGGGTGCCGTTCGGCAAGGTCCTTCCGGTGCTTTCCGCGGCGCTCTGCCTATACCTGATGACAAACCTGGCCGTGGAAACCTGGATCTTCTTCGCCATCTGGCTGGTCATCGGCATCATCATCTACTTCTCCTATGGCCAACGCCACTCACGCCTCAATGAGCGTTTCACCGAGGCGAAGGAAGCGGTCAACGGCCCGGCCGCCAGCGAGGACGAGTTCTCCCGCGCCTGAMNLLRTKSIEQSMADADEPGRKLKRSLSTWDLMIMGVAVAVGAGIFSVGAKAAANFSGPAVTVSFAIAAVTCALAIMCYAEFATAIPVAGSAYVFTYATMGELLAWIIGWNLILELFTAAAVIAKYWGIYLSKVFALMGADVPPALSLGGVDLYWGAFLIVAVFTVLLVLGTKLSARVGNIFTLIKIAVVLFVIVVGFTYVKFENYTPFIPAAEPTGGSGAADVLKQSFFGFLTGAAPAQYGTLGIFAGAALVFFAFIGFDVVATSAEEVKNPQKTLPRGIFGGLAVVTLLYILVSLALTGMVSYTELAEAESPTLTTAFEAVGDTSAAKVIAFGSLVGLTTVIMVLLMGLSRVVLAMSRDGLLPRSLSKTSEKRSTPVRLQVICGAAVALVAGLTNVDLLEEMINIGTLSAFVMVSLGILVLRKKRPDLKPAFRVPFGKVLPVLSAALCLYLMTNLAVETWIFFAIWLVIGIIIYFSYGQRHSRLNERFTEAKEAVNGPAASEDEFSRAPGPT0020810_1063DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_03592246hypothetical proteinATGTGTTATCCGGCGGGCGAGTTCATCACCGGCGACTCGGACGTCCTGCTGGGCCTTTTCGACCTCTCCGACGGGGCGGAGCCGCAGCCGCTCGAGTTCTGGATGTCCCGCGAGCAGTTCAACTATTGGAGCCACACCCACCTGTCCGTTGACGTGGTTCCCGGGCGGGGGAGCGGATTTTCGGTGGAAGCGCCTGAAGGTGTGCGCTTCCTGATCCGGTCCACCGTGATGGACTGGCTTGACTAAMCYPAGEFITGDSDVLLGLFDLSDGAEPQPLEFWMSREQFNYWSHTHLSVDVVPGRGSGFSVEAPEGVRFLIRSTVMDWLDNANANANANA
D1-29_035931524thcACOG1012EPTC-inducible aldehyde dehydrogenaseATGACTGTTTATGCACAGCCCGGCACTGAGGGCTCAAAGGTCACTTTCAAGGACCGGTACGATAACTGGATCGGCGGCGAATGGGTTGCCCCGGTCAAGGGCCAGTACTTCGAGAACATCACCCCTGTTACTGGCAAGGCCTTCTGCGAGGTGGCCCGCGGGACGGCCGAGGACATCGAACTGGCACTCGACGCGGCGCACAAGGTTGCGCCGTCCTGGGGCAGGACCTCGGTGGCCGAGCGCGCGGCCATCCTGAACAAGATCGCGGACCGGATCGATGAGAACCTCGAAATGCTGGCTGTCGCCGAGTCCTGGGACAACGGCAAGCCCATCCGCGAGACCCTGAACGCAGACATCCCGCTCGCGGCTGACCACTTCCGCTACTTCGCCTCGGCCGTCCGTGCCCAGGAAGGCCGGCTGTCCCAGCTGGACGACGACACCACCGCCTACCACTACCACGAGCCCCTCGGCGTGGTGGGCCAGATCATCCCCTGGAACTTCCCCATCCTGATGGCCGTCTGGAAGCTCGCTCCCGCGCTCGCCGCCGGCAACGCCGTGGTCCTCAAGCCGGCCGAGCAGACGCCGTCGTCGATTCTGGTGCTGATGGAGCTGATTGGTGACCTGCTCCCCGCCGGTGTGCTCAATGTGGTCAACGGTTTCGGCCTGGAGGCCGGCAAGCCGCTGGCGTCCAGTCCTAGAATCCGCAAGATCGCCTTCACCGGCGAGACCACCACCGGGCGGCTGATCAGCCAGTACGCCAGCCAGAACCTGATCCCGGTCACCCTGGAGCTTGGCGGCAAGAGCCCCAACATCTTCTTCAACGACGTGGCCGAGTCCAACGACGCGTTCTACGACAAGGCGCAGGAAGGCTTCGCGCTGTTTGCCTTCAACCAGGGCGAGGTCTGCACCTGCCCGTCCCGCGCCCTGGTTCAGGAGGACATTTACGAGTCCTTCATGGCGGATGCTGTTGCCCGGGTGAAGAAGATGGTGCAGGGAAACCCGCTGGACACCGAGACTCAGGTGGGCGCCCAGGCCTCGAACGACCAGCTGGAAAAGATCCTTTCCTACATTGACATCGGCAAGCAGGAGGGCGCCAAGCTGCTGACCGGCGGTGCAAGGGCCCAATTGCCCGGCGACCTCGCCGGCGGCTACTATGTCCAGCCGACAGTTTTTGAAGGCCATAACAAGATGCGGATCTTCCAGGAGGAGATCTTCGGTCCGGTGGTGTCCGTGGCAAAGTTCAGCGACTACAACGATGCCATGGGCATCGCCAACGACACCCTCTACGGCCTCGGCGCCGGGGTCTGGTCCCGCAACGGCAACGTGGCCTACCGCGCCGGCCGTGAAATCCAGGCGGGCCGCGTTTGGGTCAACAACTACCACGCCTACCCGGCCGGTGCCGCGTTTGGCGGCTACAAGTCGTCCGGCATCGGACGTGAAAACCACTCCATGATGCTGGATCACTACCAGCAGACCAAGAACCTGCTGGTCAGCTACAACGAGAACAAACTGGGATTCTTCTAAMTVYAQPGTEGSKVTFKDRYDNWIGGEWVAPVKGQYFENITPVTGKAFCEVARGTAEDIELALDAAHKVAPSWGRTSVAERAAILNKIADRIDENLEMLAVAESWDNGKPIRETLNADIPLAADHFRYFASAVRAQEGRLSQLDDDTTAYHYHEPLGVVGQIIPWNFPILMAVWKLAPALAAGNAVVLKPAEQTPSSILVLMELIGDLLPAGVLNVVNGFGLEAGKPLASSPRIRKIAFTGETTTGRLISQYASQNLIPVTLELGGKSPNIFFNDVAESNDAFYDKAQEGFALFAFNQGEVCTCPSRALVQEDIYESFMADAVARVKKMVQGNPLDTETQVGAQASNDQLEKILSYIDIGKQEGAKLLTGGARAQLPGDLAGGYYVQPTVFEGHNKMRIFQEEIFGPVVSVAKFSDYNDAMGIANDTLYGLGAGVWSRNGNVAYRAGREIQAGRVWVNNYHAYPAGAAFGGYKSSGIGRENHSMMLDHYQQTKNLLVSYNENKLGFFPGPT0007176_691DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
D1-29_035941362hypothetical proteinATGCGAGCGCTCGGCAAGAATGCACTGGAACTTCGGCACAAGCATGCCTCGGCAGAGCACGAACACATCAGTGCACAGGGACTCGTTTTCCCCGAGACAGATGAAGTCCCTGGCCTGCGTCAACTCATCCGGGAATCCTGGCAACGGTCCGCCAGCTTCAAGGCCAACCCTGATAACCCCGAGGCCCCGCTGGTCATGGACACGGACGAGCTGGAGGAATATCGCAGCCAGCACCCGCTGGCCAGCATTATGCCCGTGATCCATAAGCTCCTGGTCCAGCCGAGCCATGACGCCGGCCTGCTGGTGGCCGTGGGCGACGACGTCGGGCGCCTGCTGTGGGTGGAAGGCGATCCCGCCCTGCAGAGCCGTGCTGAAGGCATGATGTTCGTTCCCGGTGCCGACTGGTCCGAAGCCACAGTGGGTACCAGTGCGCCCGGCACGGCCCTGGCTCTGGGCCGGGGGATCCAGATTTCCGGGGCCGAGCACTACCAGCGTTCTGTCCACCCTTGGAGCTGCACTGCCGTACCGTTCCATGATCCCGATTCCGGGGCCCTCCTGGGCGTTGTGGATATCACCGGCGGTGCCACGGCGGTGGCACCGCACACCCTGTCCCTTGTTGAAGCCACCGTGGCGGCGGCGCAGGCACAATTGCGCATTGAGCGGCTTCAGTTCGCGGCATCACTTGCGGACCGGCCCGTCCGACGGCGGAACACCGGCAGCGCCGCCGAGGCAGCGAAGGAGGGTAACCTTTATCGGAACAGCCTGCAGCTCCTGGGCCGCGACCAGGCGCTGCTGAGCATTGAAGGAAAAACAGTGGCGCTCTCCGCCCGGCACAGCGAGATCCTGGCCCTGCTGAGCGCCCATCCCGACGGGCTGAGCGCGGAGGAGCTCTGTGCACTGCTCTACCCGGGTGATGCCTCCACCATGACTCTCCGCGCGGAAATGGTCCGGCTGCGAAAAATCCTCCAGCAGCTCAGCCCCGCCGCTGTTCCCGGATCGCGCCCGTACAAGCTCACCATGGATCTGGTGCCCGACTCCGGCCAGGTGCTGAGCTGTCTCCAACGCGGCGCTCACCGCATTGCCCTGGAAATTTACCGTGGTGCGGTGCTGCCGAAGTCTGAGGCGCCGGGTGTGGCAGTCCTCCGGGACAGGGTTTCTTCGCTGATGCGCGAGGCCGTGCTGACGGACGGCAGTGCCGAAACCCTGCTCAAGTATGCGGGGCTCCCGGAGGCAAGGGACGACGTCGGCGTCCGGATTGCCGCCCTCAAACTGCTGCCGCCGCGCTCGCCCAAGCGGGCCGCCGTCGTCGCCGATCTTGAGCGGCTTGAAACCGAACTGAGCGCCTCCCCGCCTGCCTCCTGAMRALGKNALELRHKHASAEHEHISAQGLVFPETDEVPGLRQLIRESWQRSASFKANPDNPEAPLVMDTDELEEYRSQHPLASIMPVIHKLLVQPSHDAGLLVAVGDDVGRLLWVEGDPALQSRAEGMMFVPGADWSEATVGTSAPGTALALGRGIQISGAEHYQRSVHPWSCTAVPFHDPDSGALLGVVDITGGATAVAPHTLSLVEATVAAAQAQLRIERLQFAASLADRPVRRRNTGSAAEAAKEGNLYRNSLQLLGRDQALLSIEGKTVALSARHSEILALLSAHPDGLSAEELCALLYPGDASTMTLRAEMVRLRKILQQLSPAAVPGSRPYKLTMDLVPDSGQVLSCLQRGAHRIALEIYRGAVLPKSEAPGVAVLRDRVSSLMREAVLTDGSAETLLKYAGLPEARDDVGVRIAALKLLPPRSPKRAAVVADLERLETELSASPPASNANANANANA
D1-29_035951995hypothetical proteinATGTCCTCGGCCATGGTGACGGCCGCCGGGCTCCCTGCCCTGGCCGTTTCACCTGCCCCGGACCCGGCGCCGCCATCGGCCGAAGCCAGTTCCGAAGCTGTTACCGAAGCTGCTGCCGGTGCCGACCGCGGCCATGAAGCCGGTGCCGGTGACACCGAAGAAAGTGCCGACGGCGGCCAATACCTGGTCACGTATGCTCCGGGAACTGACGTTGCGGCGGAGGCGAAGTCGCTGCGGGCCAAGAACATCGGCGTCGGACGGACGTTTTCCCATGCCTTGCGCGGCGCCGTGGTGAAGGCCAATCCGGCGCAAGCTGCGGCGCTGGCCCGCTCTCCCCGGGTTTTGTCCGTAGAGGCAGACACTCCTGTTTCAATCGACGAGGTGCAGCAGCCGGCAACGTGGGGCCTGGACAGGACTGACCAGCGCACGCTCCCGCTCTCCAACTCCTACAGTTACAGCTCCGCGGGAAGCGGGGTGGCTGTGTACGTGGTGGACACCGGTGTCCTGGCGGCACATGCCGATTTTGGCGGCCGGGTAGCCGCAGGCTGGACTGCCCTCAACGACGGACTGAACTCAGGTGACTGCAACGGGCACGGCACCCACGTCGCCGGCACTGCCGCAGGCAAAACCTACGGAGTGGCAAAGGCTGCGACGATCATCCCCGTGCGCGCCCTCTATTGCGACGGCTCCGGCCTCTCGTCCGACATCATCGCGGGACTTGACTGGGTGGCCGCACACCACCAGCCCGGATGGCCCGCAGTAGTCAACCTCAGCATCGGCGGCTTCTCCAACTACACGATGGACGCCGCAGTCATGGGCGTCATCAACGACGGCATCACCGTGGTCACCGCCGCAGGCAACACAGCCACCAACGCCTGCGAGCGCTCCCCGGCCCGCGTGCCGGCGGCGCTGACCATTGCCGCAACCGACATATCAGACCGGCAGGCATCGTTCTCCAACTACGGCAACTGCGTGGACCTCTACGCCCCGGGAGTCAGCATAATCTCCGCGGGACATACTTCCACCACGGCCATCAAGAGCCTCTCGGGTACCTCAATGTCAGTCCCGCACGCGGCAGGCGCTGCCGCCGTGTTGCTCGCGGCCAGCCCTGGCCTGAGCCCTGCAGAGGTCAATGCAAAAATCATCGACAACGCCACCACAGGGGTGGTTGTGTCAGCCACCCCCGGCACCCCCAACCGCCTGCTGTACGTGAACCCTGCCACTGGGAACGCGGATTCAGAACCCAGCCCTGCTCCCACCCCGGACCTGACACGGGCGGCACTCCACAGCGCCGCGGACACGGTCGCGGCCGGTCCGGACGGGGTCCTCTGGAACTACCCGGCCAACGGAAGCGGCGGGTTTCGGCCACGGGAAGCAATCGGCGGAGGCTGGCAGGGCCTGGACACCGGCTTCGTCACGGACTGGAACCGGGACGGCGTGTTCGACCTCATAGCCCAGTGGACAGACGGTCGCCTGACCTACTACCCGGGGCTCCAAACCGGCGGCTTCAGTTCTCCCAAAACCATCGGCAGCGGCTGGGGCGGCTACGAGGTCACCATCGGCCACTGGAGCAGCACGAATCCGTATCCCGGGATTGTTGCCTATGACCCGGCAGGCACGTTGTGGCACTACCCCAACAACGCCTCCGGTACCCTCACCGGCCGAAGCATGATTGGTTCCGGGTGGGGCGGCCTCTACATCACCATGGCCGATTTTGACCGGGACGCCAAGCAGGACCTGCTCTCAAAACGACGCGACGGGTCACTGATCCTCTACCGGGGCAGCCTTCAGCTCGCAGATCCGCTCCTCATAGGTACCGGCTGGAATGTCATTGACGCCATCACAGAGGTGGAAGGCTTCCAGGGCAAGGGAAGCTACGGGCTGACCGCCCGGATGACCGATGGCCGCCTGGCCTACTACCCCATCAACAACGGGACCTGGGGCACGCCCACCATCGTTGGGTCCGGCTGGAACGGCTACTCCATCTTCCGCTAGMSSAMVTAAGLPALAVSPAPDPAPPSAEASSEAVTEAAAGADRGHEAGAGDTEESADGGQYLVTYAPGTDVAAEAKSLRAKNIGVGRTFSHALRGAVVKANPAQAAALARSPRVLSVEADTPVSIDEVQQPATWGLDRTDQRTLPLSNSYSYSSAGSGVAVYVVDTGVLAAHADFGGRVAAGWTALNDGLNSGDCNGHGTHVAGTAAGKTYGVAKAATIIPVRALYCDGSGLSSDIIAGLDWVAAHHQPGWPAVVNLSIGGFSNYTMDAAVMGVINDGITVVTAAGNTATNACERSPARVPAALTIAATDISDRQASFSNYGNCVDLYAPGVSIISAGHTSTTAIKSLSGTSMSVPHAAGAAAVLLAASPGLSPAEVNAKIIDNATTGVVVSATPGTPNRLLYVNPATGNADSEPSPAPTPDLTRAALHSAADTVAAGPDGVLWNYPANGSGGFRPREAIGGGWQGLDTGFVTDWNRDGVFDLIAQWTDGRLTYYPGLQTGGFSSPKTIGSGWGGYEVTIGHWSSTNPYPGIVAYDPAGTLWHYPNNASGTLTGRSMIGSGWGGLYITMADFDRDAKQDLLSKRRDGSLILYRGSLQLADPLLIGTGWNVIDAITEVEGFQGKGSYGLTARMTDGRLAYYPINNGTWGTPTIVGSGWNGYSIFRNANANANANA
D1-29_035961488fprA_1COG0493NADPH-ferredoxin reductase FprAGTGTCCAACCCAGGCGAAACCAGCACCAAACGTCCACTCCGCGTTGCCATCGTGGGCGCGGGACCGGCGGGTGTCTACGCCGCGGATATCCTTACCAAGTCCAACGAGGTCAAGGGCGGTGACGTGGAGGTCAGCATTGACCTCTTCGAGGCCTACCCCGCACCCTACGGCCTGATCCGTTACGGCGTGGCCCCGGATCACCCGCGTATCAAGGGCATCGTGAACGCGCTGCACAAGGTCCTCGACCGCGGCGACATCCGGTTCCTCGGCAACGTGACCTACGGCCGTGACCTGACCCTGCACGACTTCCGCGCCTTCTATGACGCCGTGATCTTCTCCACCGGCGCCATCAAGGACGCGGACCTGAACATTCCCGGCGTGGACCTGGACGGCTCCTTTGGCGGGGCGGACTTCGTCTCGTGGTACGACGGACACCCGGACGTCCCGCGTGACTGGCCGCTGGACGCCAAGGAAATCGCCGTGATCGGAAACGGCAACGTTGCCCTGGACGTGGCCCGGATGCTGGTCAAGCACGCAGACGAACTGCTCTCCACAGAAATCCCTGACAACGTCTACCAGGGCCTGAGGAACTCCCCGGTGACGGACGTGCACGTGTTCGGCCGCCGGGGCCCGGCCCAAGTGAAGTTCACCCCGCTGGAACTGCGCGAGCTGAGCCACATGAAGGACGTGGACATTGTGCTGTACCCGGAGGACTTCGAATTCGACGAAGCCTCCGACGAAGCAATCCGCAGCAACAACCAGATCAAGACCATGGTGAACACGCTGACTAACTGGCTGGTGGAGGAACATGCGGAATCGGACCAGCCGTCGTCGCGGCGGCTGCACCTGCACTTCCTGCACAGCCCCGTCGAAATCTACGAAGACAGCACCAGTGCCGACGGTAGCAGCACCAGTGGCGGCAGCGGCGGCGGGTCCGGCAAAGTGGCCGGCATCAAGTTTGAGCGGATGCAGCTTGACGGTACCGGCAACGTCAAGGGCACCGGCGAGATTATTGACTACCCCGTGCAGGCTGTTTACCGCGCCATCGGGTACCACGGCTCGCCGCTGGACGAACTGGAATACGACGCCAAACGCGGAGTGGTTCCCAACGAGGGCGGACGGGTCCTGGACGCCGAGGGAAAGCCTGTCCCGGGCATCTACGCCACGGGCTGGATCAAGCGCGGTCCGGTGGGCCTGATTGGCCACACCAAGGGCGACGCCCTGGAGACCATCGGGATGCTGCTGGAGGACCGTCCTGCCCTGCCTCCAGCCCAGAACCCGGACCCGCAGGCCATCATCCGGCTTTTGGAGGAGCGCGGCATTGAATACACCACGTGGGAAGGCTGGATCAAACTGGACGCCCACGAGGCAGCACTCGGCGCCGAGTGGACAGGGCAGGAAGACGCCGACGACGTGGTGCGTGAACGCATCAAGGTGGTACCGCGCGAGGAAATGATCAAAATCTCCCGGGCCCAGCGGACTGCTTAGMSNPGETSTKRPLRVAIVGAGPAGVYAADILTKSNEVKGGDVEVSIDLFEAYPAPYGLIRYGVAPDHPRIKGIVNALHKVLDRGDIRFLGNVTYGRDLTLHDFRAFYDAVIFSTGAIKDADLNIPGVDLDGSFGGADFVSWYDGHPDVPRDWPLDAKEIAVIGNGNVALDVARMLVKHADELLSTEIPDNVYQGLRNSPVTDVHVFGRRGPAQVKFTPLELRELSHMKDVDIVLYPEDFEFDEASDEAIRSNNQIKTMVNTLTNWLVEEHAESDQPSSRRLHLHFLHSPVEIYEDSTSADGSSTSGGSGGGSGKVAGIKFERMQLDGTGNVKGTGEIIDYPVQAVYRAIGYHGSPLDELEYDAKRGVVPNEGGRVLDAEGKPVPGIYATGWIKRGPVGLIGHTKGDALETIGMLLEDRPALPPAQNPDPQAIIRLLEERGIEYTTWEGWIKLDAHEAALGAEWTGQEDADDVVRERIKVVPREEMIKISRAQRTAPGPT0013215_420DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
D1-29_03597999hypothetical proteinGTGAGGCTCCGCCGCAGCAATGCCTCCGGCCGGGGGTACCGCCGGGTGCGTGTCGGCAAGGGTTTCAGCTACCGCGACCTGGACGGCTCCACCTTGCCCCCGGGGCCCGTCCGCGAGCGCCTGGAAAGCCTTGGGATTCCGCCGGCCTGGACGGACGTCTGGATTGCGCCCTTCGAAAACGGGCACATCCAGGCGACGGGCGTTGACGCCGTGGGGCGCCGGCAGTACATCTACCACCCCGAATGGCGCGAGCGGAAGGACCGTTTGAAGTTCGACCGTGCCCTCCAGCTGGCCGAGTCCCTGCCCTCCGCCCGGCGGCTGGTCACCCTGGATCTGCGCAGCGAAGGCCTCTCGCGGGAGCGTGTGCTGGCCGCGGCCTTCAGGATGCTGGACAGCGCGTCCCTGCGGGTCGGATCCGAACGCTACACCAACGAGAACGGCAGCCGCGGGCTGGCCACCCTGCTGTGCGCCCACGTCCAGGTGCGGAAGGACTACCTGTTCTTGAGCTTTCCGGCGAAGAGCGGAAAGGACTGGGAGTCGGTCATCCGCGACGCCGATCTCGCCCCGCTGGTGCGTGTGCTCAAACGCCGTGGAGGCAACGCCCGGCTCCTTGCCTACAAGGATGGCCGCCGCTGGAAGCCAGTCACCAGCGCTGACATCAACGCCTACGTCAAGGAGCGGACCGGCTCGGACTTCACGGCGAAGGATTTCCGGACGCTGCGCGGCACTGTGGCCGCGGCAGTCAGCCTGGCCCGGAGCGGCCCCCAGAAAACTGTGGCCGCGCGGAAGAGCGCCATCAGCCTGGCCATGCAGGAGGCCGCAGCTGTCCTGGGGAACACGCCGTCAATCGCCCGCAAAAGCTATGTGGATCCCAGGCTCCTGGACCATTTTGCCAATGGCGCCACCATTGATCCCAAACGGCTGGACTCGGCCGAGGCGGAGCTCCGGGCACTGCTGTACCGCGAAGGCGACATTGTTCCGCTGCGGAAAAGCGGCTGAMRLRRSNASGRGYRRVRVGKGFSYRDLDGSTLPPGPVRERLESLGIPPAWTDVWIAPFENGHIQATGVDAVGRRQYIYHPEWRERKDRLKFDRALQLAESLPSARRLVTLDLRSEGLSRERVLAAAFRMLDSASLRVGSERYTNENGSRGLATLLCAHVQVRKDYLFLSFPAKSGKDWESVIRDADLAPLVRVLKRRGGNARLLAYKDGRRWKPVTSADINAYVKERTGSDFTAKDFRTLRGTVAAAVSLARSGPQKTVAARKSAISLAMQEAAAVLGNTPSIARKSYVDPRLLDHFANGATIDPKRLDSAEAELRALLYREGDIVPLRKSGNANANANANA
D1-29_035981068rarDCOG2962Protein RarDATGCCGGAGTGGAATATATGTCCTTCGACTGGTGTTAATGGGAGCGTGCCTACTCCCCATGGATCAGCCTCCACCCCCGCGGCCAGCGCACCCGTCCAGAATCCCGGGACGGGCCCCGGAAGGGCTGCAAAATCAGTAACACCCGGCCTCAAGGCGGTGGACAAGGAGACGACGGCGGGAGTCCTGTACGGCATCGCCGCTTATGGGGCGTGGGGGCTGCTCCCGTTGTACTTCCTTGCGCTGATGCCCGCCAACGCCGTCGAAATTGTGGCCAACCGCGTCGTTTGGTCGTTGCTGTTCTGTGTACTCCTGATCGCCGTCACCCGCTCCTGGGCAGCGCTCAGGGGAGCCTTCAGGGACCGGTCCGTTTTCGGCACGCTTGCCATCGCGGCCGCCCTTATTGCGGTGAACTGGCTGACCTATACCTACGGGGTGACCACGGGGCAGGCGGTTGAAGCCTCCCTGGGATACTTCATCAACCCCCTGGTGTCCGTCCTGCTCGGTGTGTTCGTCCTCAAGGAAAAGCTGCGTCCGCTCCAGTGGGCCGCCGTCGGCATCGGTTTTGTGGCGGTTGTGGTGCTGACCGTGTCCTACGGCAAGCTCCCCTGGATCGCGCTGACCCTGGCCGTCAGCTTTGGCCTGTATGGCTTCGTGAAGAAGCGGGTAGGTCCCCGCGTGGATGCGGTGACTAGTCTCAGCGTCGAGACCATGGTGCTCGCTCCGCTCGCGGCGGCTACCATGATTTTCCTGGCCGTCAGCGGCTCGGCCACTCTCGCCAGCGAGGGCGCCGGCCACTTCTGGCTCCTGGTGGCGTCCGGTGTTATTACCGCTGTACCGCTGCTGTTCTTTGGCGCATCGGCCCGCCGGCTGCCTATGACCACCATCGGGCTGCTTCAGTACTTCGCCCCGGTCCTCCAGTTCGTCGTCGCCGTCGCGGTGTTCCAGGAGGCCATGACGCTGGACCGGTGGATCGGGTTCGGTGTGGTGTGGCTCGCGTTGCTGGTCCTCACGGTGGACATGCTGAGCGCAGCGCGGAAGAACTCAGTGGCCAGGAAGCTGGCGCGGTGAMPEWNICPSTGVNGSVPTPHGSASTPAASAPVQNPGTGPGRAAKSVTPGLKAVDKETTAGVLYGIAAYGAWGLLPLYFLALMPANAVEIVANRVVWSLLFCVLLIAVTRSWAALRGAFRDRSVFGTLAIAAALIAVNWLTYTYGVTTGQAVEASLGYFINPLVSVLLGVFVLKEKLRPLQWAAVGIGFVAVVVLTVSYGKLPWIALTLAVSFGLYGFVKKRVGPRVDAVTSLSVETMVLAPLAAATMIFLAVSGSATLASEGAGHFWLLVASGVITAVPLLFFGASARRLPMTTIGLLQYFAPVLQFVVAVAVFQEAMTLDRWIGFGVVWLALLVLTVDMLSAARKNSVARKLARPGPT0003906_1034DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786NANA
D1-29_03599798hypothetical proteinGTGACAGCTGCGGGGCTCCGTCTCAGGCGCACGGCTGCTGCCGCCCTGGCGCCCGCCCTGCTCTGCCTGGCCGCCGGATGCGGGCTAGCCGACCCTTTTCCGGACCCCCCGCCAGCGGAGGCCGGGGAGCTCTACATTGCCGTCCCCGGCTACGTCGGTCCGCCCAACTCGGCTTACTGGCAAGCCGTGATCGACGCGGCTCCCCGGGTCCGGGAGGTCATTGTTAACCCGATGAACGGACCCGGGCCTGAGAGGTCCGAAGCGTATGTCCGGCTGATCGGGACCCTGCGCGATGCGGGCATCAGAGTGCTTGGCTACGTGGAGACCGGCTACGGCGACAGGGATCCGGACGTGGTGACCCAGGACATCGACCATTGGCGGGACTGGTACGGCGTTGACAACGTCTTCCTTGACGAAGTGACGACGCGTGCGGCAGACATGGACACCTATGCCGATTACGCCGCAACCGTGCACGACGCCGGGGGCATCGTGGTGCTTAACCCGGGCTTGCCCCCTGACCCTGGCTACTTTGAGTTTGCCGATGCCATTGTCACGTTCGAGGATCCGGTGGACGCCTACTTCAACGGCCGAGACCCTCCAGAGTGGCTCCGAACGGAGACGCGCGGCGAACTGTGGCACATCGTCATCGGTGCTCCACCGGACAGGCTCACTGACATAGTGGACCGCGCCCGGCAGCTCGGCGTGGACCAGATCTACGTGACCGACGACACGGAACCGAATCCGTACGACACCCTCCCCGGGTTTTGGCCGGCCAAGCTGGATGCCATCCGCGACTAGMTAAGLRLRRTAAAALAPALLCLAAGCGLADPFPDPPPAEAGELYIAVPGYVGPPNSAYWQAVIDAAPRVREVIVNPMNGPGPERSEAYVRLIGTLRDAGIRVLGYVETGYGDRDPDVVTQDIDHWRDWYGVDNVFLDEVTTRAADMDTYADYAATVHDAGGIVVLNPGLPPDPGYFEFADAIVTFEDPVDAYFNGRDPPEWLRTETRGELWHIVIGAPPDRLTDIVDRARQLGVDQIYVTDDTEPNPYDTLPGFWPAKLDAIRDNANANANANA
D1-29_03600816hypothetical proteinATGAGGGCCTGGAAGTTCGGTGTGCGTCATGCCGCACTCCCGACGCCTGGGCCAGGCACCGCGGGCCACCCTGAGCAGGCCGCCATCCGTCCATTTGCGATCTATTACGGCTGGCCGAGCTATGCCAACGGTGCCCGCGGTAACGTGGCACGGGCCGTCGCCGCCTTCGACGGCTATGGTGTGGTGGTTTTTGGTGACGACACCGCCACCGAGGAAGGCGATCCCCTGTCAGCCCCCATTATGGCGGGGGTCGCCGCCCGCGGCGGAGTTCCATACGGGTACGTCACCCTCGGCGTCAGCGACGGCGAACCCCACCACTCCCTGGGCGAGCTGCGCGAACGCATAGATGCCTGGCGCCGGCTCGGCGCCCGTGGAATGCTCCTGGACTGTGCCGGCGCTGACTACGGGGTGACCCGCGCCCGGTTCGACACGGTGGTGCAGTATGTGCACTCCCTGGGGTTGCACGTGCTGGCGAACGCCTGGGATCCCGACGACGTCCTGGCCCGCTCCGCGACAATGGGCCACGGCGACAGCTACCTGGGGGAGAATGACGTGCTCTCGGACGGCCGGTTCCTGGCACCGGCCATCTACCGGCCGAAGCTGGCAAAGATGGCGGCGTACAAAGCGAAGCTGGGGATCACCCTCTATGAGACAGCCACCAGCAGGGACCTACAGTATGCCGGCACGCTGGCGGAACAGGTGCTGGCAGTATTGCAGCGCTACAGCATCGACGCCTTCCACCTCACCGACCCCGTCTACAGCTCTGCGGACAACATCCTGATCAGGCCGCCGGGAGTGCTGGCGGGCCGGGGGTGAMRAWKFGVRHAALPTPGPGTAGHPEQAAIRPFAIYYGWPSYANGARGNVARAVAAFDGYGVVVFGDDTATEEGDPLSAPIMAGVAARGGVPYGYVTLGVSDGEPHHSLGELRERIDAWRRLGARGMLLDCAGADYGVTRARFDTVVQYVHSLGLHVLANAWDPDDVLARSATMGHGDSYLGENDVLSDGRFLAPAIYRPKLAKMAAYKAKLGITLYETATSRDLQYAGTLAEQVLAVLQRYSIDAFHLTDPVYSSADNILIRPPGVLAGRGNANANANANA
D1-29_036011014hypothetical proteinATGAAGTATTCCAAGACCATTCTTGCCGTTGCCGCAGCCCTCGCGCTGACAGGCGGAGCCATCACTGTCGCGAGGACAATGGAGGAGGGCCCCGCACCCATCGCAGCCTCCGGCCAATGGCAGTTGCTGCGGACAGCCCAAGGCACCCTTATCCATGATCCCTTCAACAAGGCCATCCCCACCCGGGAGGTGCAGGACAGATACGAGTTCAATGGGGACACCGACCCTGCCCTCGCGTTCGTACGCGCCACCGACGGCGGCCTCCAAGTAGGAGTGGACCCGCCCCCGGATGCCGAGGCCCACAGCGGCTACTTTGCGGTGACCCACGACGCCTATCCGCAATCCAGCATCTTCCATGTGCGGATGTCGAAACAACCCGGACAGGTTCAGTCGCCCGCGGAGGTTGGACAAGCCGTCTTCGCCGTCCAGACGGCCTCCACCAAGGTCACAGGACTGATTAACTTCATCGTGGTGTCGGCTGACAGTACAGCCGGGCTGACGTCCTGGAGGGTGGGGTACATGGAAGGGCACCTGAGGAACGCGTCATTCATCTACTACTGGGGCACCGAACCGGCACCGGAAGAGCCTGACACCCGGGACATCACCCTCCGCACGGACGGCCGGCGCACGCTGACACTCTGGTTCGGCACCGAACAGGTGTTCCATTCGGACCAGCTCCAGATGAACATCCAGGCCCCGTACCAGCCGTACCTCGAGGTACAGGCCGTGCAGACGCCCTTTTACTCCTCCTTCCAGGACTTCTGGGTGGTGGAGGACGACCACCTGCAACTGACCGGTGTACCCGCCGGCGCCGACGTGAAGCTCGTCGACAACGGCGGCGGCGTCCTGGGAACGGCCATCGGCAGCGATGGAGGCACCGCTACCGTTGAACTGCCCCCATACGCCGCCAAGGGCAGCGGCACGTTGGAGATCACAGAGCCGGGCCGCGAGCCAGTCCGGCTTGGGGCCTTCGACTACGCTGGCGGCGACGACTATAAGCTGGCATCAAAATGAMKYSKTILAVAAALALTGGAITVARTMEEGPAPIAASGQWQLLRTAQGTLIHDPFNKAIPTREVQDRYEFNGDTDPALAFVRATDGGLQVGVDPPPDAEAHSGYFAVTHDAYPQSSIFHVRMSKQPGQVQSPAEVGQAVFAVQTASTKVTGLINFIVVSADSTAGLTSWRVGYMEGHLRNASFIYYWGTEPAPEEPDTRDITLRTDGRRTLTLWFGTEQVFHSDQLQMNIQAPYQPYLEVQAVQTPFYSSFQDFWVVEDDHLQLTGVPAGADVKLVDNGGGVLGTAIGSDGGTATVELPPYAAKGSGTLEITEPGREPVRLGAFDYAGGDDYKLASKNANANANANA
D1-29_036021659hypothetical proteinGTGACTACGTTGCCTGAGGACTCCGTCCTCGCCGACTTCACCATGGATCTGGAGGAGCTGGGCCCGGACCTGCACGCCGAGGCACGGTCAGTTGCGGGCCGCACCCGCCAGGCACAAGACGCCTTCGAAGTGGCTGTGATCCTGGCCACCCTGGGCTATGGCGACCAGCGGGCGCGTGAGCTGGGCTGCCGAAACGTTTTTGAGCTCGCGGAGAAGGTGACGTCACTTTTGCCGCTCTTCGGCGGGCCGGTGGATGAGCCCCCGGTAGGAACAGTCGAACAGCCCCCCGAGCCGTCGCCCGGGCCGGACCGGATGAGCCTGGGACTGCTCGCGAAGTCGCTGCTCTACTCGGCGCCATGGATTGTGGCAGTGCTCGCGCTGGTCATAGGCCGGGTGTCCTTCTGGTCCACCATCACGCCCCAAATGTTTTCCACCACCGTCAGCCTGGCCTTGTTCGCAGCGCTGATCGTGACCGGCGGGTTTATGCAGGCATTTGCGCGGAGGGGGCTGTTCTATTCACTGCAGCACAGCGAACCCCTGCTGCGCTGGGCGTTGCGTTGGACGTTGGGAGGCGGGTTGGTGGTACTGCTCCTGGTCATGGGTGGCAGCTACCTGATCCTGGAGTACGTGGTGCAGGCCTACACGCCTGCCGCGAACCGGTCGTTCCTGCTCTTCGGAATCTCCATTGGCGTCCTGCTCCTGGCCTTCTCGCCGTTGTACCTGGCCAAAGCATTGCCTGAGGTGGTGATCGCAGCCTCTGCCGGCGGCCTGATTGCCGTGCTCGGTGGTTTGTATATCACCAGTGGAGACTACATCAACCTCTACACGGCCCAATGGGTGCAGTTCGCCGCCTTGTGGACGACGGTAATTGTGGCCGTGCTGTTTGACATCCGCATCGTCCGGCGGCTGGCCGCACCGCCGGCAGGAGTCGAGGCCACATCAACGGACAACCGGCACGTCCTTCCACCGCGGCTTGGCCCGGTGGCGCGCTCCGTCCGTGCCTACTGGGCCTACGGGACAGGCTTCTTTGTGCTCCTGGTGATCGACCAGCTGGTCGCAGGAGGCTTATGGATGGGGGTGTTCCACTACAACGGGCTCTACCAGGTGGGTGTGGGGACCGGCCTTCTCATCCTTATTCCCACACTCACCTACGCGATTGCTGCCGGGTACCTTCTCCCGGCGACTGTGCGCCGTGAGATGAGGGGGCACCGGGTCTCCGGGAGCGCGGGAATCAACCGCGTGCTGTTCAGGTTCTACCTCCGGCACCTGGTGACTACCCTGCTTGTTGGGCTGGTGAGTGGTGCCCTGCTGCTGGCTGCGGCTGAGTGGCTCTCCACGGCGAGCCTGCTCACCGTACACCTCCAGCTTGCCAGCGGCGTCTACACCGGCTCCTTGGTTGGCTACCTGTTGTTGGGCATTGGGGCCTTTAACTCCGGTCAGCTGTTCAGCCTGGGCAGGGCCGCGTTGCCTGCAGCTGTCGTCTGGCTCGCGGCGGCGGTGTCGCTGGCCACCGGAATGGCACTTTCCTATCAGTTCGAGCCTCTGTTTGGTTCCATCACCGGGCTGGTGACCGGTGCCGCGGTGTTCGCCGTGGCGACTACGGTGGCCGCTTTCCGCATGTTCCGTCAATTCGACCTTAGCTATTTCAGGGCGTTCTGAMTTLPEDSVLADFTMDLEELGPDLHAEARSVAGRTRQAQDAFEVAVILATLGYGDQRARELGCRNVFELAEKVTSLLPLFGGPVDEPPVGTVEQPPEPSPGPDRMSLGLLAKSLLYSAPWIVAVLALVIGRVSFWSTITPQMFSTTVSLALFAALIVTGGFMQAFARRGLFYSLQHSEPLLRWALRWTLGGGLVVLLLVMGGSYLILEYVVQAYTPAANRSFLLFGISIGVLLLAFSPLYLAKALPEVVIAASAGGLIAVLGGLYITSGDYINLYTAQWVQFAALWTTVIVAVLFDIRIVRRLAAPPAGVEATSTDNRHVLPPRLGPVARSVRAYWAYGTGFFVLLVIDQLVAGGLWMGVFHYNGLYQVGVGTGLLILIPTLTYAIAAGYLLPATVRREMRGHRVSGSAGINRVLFRFYLRHLVTTLLVGLVSGALLLAAAEWLSTASLLTVHLQLASGVYTGSLVGYLLLGIGAFNSGQLFSLGRAALPAAVVWLAAAVSLATGMALSYQFEPLFGSITGLVTGAAVFAVATTVAAFRMFRQFDLSYFRAFNANANANANA
D1-29_036031452mshA_6D-inositol-3-phosphate glycosyltransferaseATGAGGATCCTGCTCACGACTGAGGGCACCTACCCTTACTTCCAGGGCGGCGTGTCCACCTGGGCTCATGAGCTGGTCAATGGCCTGCCCGAGCACGAGTTCGTGGTGGGTGCCGTCATCGGCAGCCCTGATGTCGCTCCCGCCTTCAGCGTCCCGGCCAACACGCGGGTGGTGCCCATCCCGCTGTGGGGAACGGAGAAGGTGGACGAGTACGTCCAGCGGCAGGCGCGCATTCGGCCATGGGGGCCCCGGAAAGGAAGGTCACCGGAGCGGGCCTTCGTGGAGCTGCTGCTGCCGGCCTACGAGGAGGTTGTCCGGAACCTGCTGGAAACTCGCGAACCGCGGGAACTTGGTGCTGCCATCGCCGACATTGCGGAGTACTGCGAGACCAACGATCTGCATAAGGGGTTGCGTGACCCCCGGTGCTGGCAGCTGGTGCGCACCCGGCTCAGTGAGCACGCGCAACTCCGCGGGATCTCGATGGCCGACGCCATCGACTTCGCACGCTCCCTGTACCGTTACCTGACGCCTTTGGCGGTTCCCCTCCCCGACGTCGATGTGGCGCACTCCTCCGGTGCCGCCCTCTGCGCGCTGCCCGCTCTCGCCGCCAAACTGCACAAGGGCGTCCCGCTGCTCCTGACCGAGCACGGGGTTTACGTGCGCGAACGTGTTCTTCACCTGGTCCGGAACGACACCCCGCTCCTGCGGAAGGTGCTGCTCGGCAATCTGTACCGGGCCATAGCGCGGTGTGCCTATGCGCACGCCGACATCGTCCTGCCGGTTTGTGCGTATAACACCAATTGGGAGTACCAGCTGGGTGCAGATCCCGCCCGCATGCAGGTGGTGTACAACGGCGTCAACCCGAACGAGTTCGCCCCCCGGGCTGTTGAATTGGACAGGCCCACCATCGCCTACGTCGGACGCATCGAACCTCTCAAGGACGTGATGGGGCTCATCACGGCCCTCAACATGGTCCGCCGCGAAGTCCCCGACGTGCTCCTGCGTATTCACGGCCCTGACGATGACCGCCGCTATGCGGAGCGTTGCAGGATGGCAGTGACAACAATGCAGCTTGAGGACAACGTCGTCTTCGAGGGGGCCACGAAGGACCCGGTCCTGGCCTATCAGGAGTCCGACGTCGTTGTGCTCTGCTCGGTGTCTGAGGGCTTTCCCTACACCGTTGTTGAGGCGATGGCCACAGGCCGTCCGGTCGTCGCGACGGCCGTCGGCGGCGTTCCCGAGGCATTGAACCGGCCAGAATTGCTCGTGGAGCCGCAGAATCCGCAGGCGCTGGCGGACGCACTGGTGGCGCTCTTCCGGAAGACCCGCGAAGAACGTGAGGCCATCGGCAGGGAGTTCCGCGAGCGCGCTGTCAGTCTGTTCTCCCAGGAGCGGTTCCTCGAGGCGTACCGCTCTCTCTATGAAGGAGTTGTCAGTGACTACGTTGCCTGAMRILLTTEGTYPYFQGGVSTWAHELVNGLPEHEFVVGAVIGSPDVAPAFSVPANTRVVPIPLWGTEKVDEYVQRQARIRPWGPRKGRSPERAFVELLLPAYEEVVRNLLETREPRELGAAIADIAEYCETNDLHKGLRDPRCWQLVRTRLSEHAQLRGISMADAIDFARSLYRYLTPLAVPLPDVDVAHSSGAALCALPALAAKLHKGVPLLLTEHGVYVRERVLHLVRNDTPLLRKVLLGNLYRAIARCAYAHADIVLPVCAYNTNWEYQLGADPARMQVVYNGVNPNEFAPRAVELDRPTIAYVGRIEPLKDVMGLITALNMVRREVPDVLLRIHGPDDDRRYAERCRMAVTTMQLEDNVVFEGATKDPVLAYQESDVVVLCSVSEGFPYTVVEAMATGRPVVATAVGGVPEALNRPELLVEPQNPQALADALVALFRKTREEREAIGREFRERAVSLFSQERFLEAYRSLYEGVVSDYVANANANANANA
D1-29_03604585hypothetical proteinATGACTCAGGTGTCAACAGGAACCGAGGACCGGAAGGCCCACACTGCAGCCGCCAGGTCAACGTTTCTTGATAAACCCCGCCGCCCCGGTCATGGCCCGTCCGGCAACGGCGAACGCCCCGGTGCGCGTCCTGACTTAGCCCACGAGCAGAGTGTTCCTGCGGTCAGCCCGGAAGTTCCCGGGGTCAGTCCGGACGCCGACATGTGGGAAGAGGGCCGTGCCGCGGCCCGGTCAGGTACCCACGAGAGGGCCATGGCCTGCTTCCTGCGCGAGGCGGAGGCGCGGACCATGCAGGGCAGCTATGGCCGGGCAGCCATCGCGTTTCGCACGGCCGCCGAACAGGCCCGGCTGCAGGGCCTGGCAGAGCAGTGCGAGGACTTGCTCTACCGGGCCGCGGCAGCCTACAACCATGCGGCGGAGCGCGACGAGCTTAGCCCGGGCGCGGCCCACCAGGCTTGGATCTCGGCAGCCAAGTGCTTCCTCCAGCTGCAGGAGCTCGACCAGGCTGCCCGGTGCATCGAGGCGGCCCGGCACGTCGCCGACCAGAGCCAAGCAAAAGCCGAGAGCGCCCAGACGGCATCATGAMTQVSTGTEDRKAHTAAARSTFLDKPRRPGHGPSGNGERPGARPDLAHEQSVPAVSPEVPGVSPDADMWEEGRAAARSGTHERAMACFLREAEARTMQGSYGRAAIAFRTAAEQARLQGLAEQCEDLLYRAAAAYNHAAERDELSPGAAHQAWISAAKCFLQLQELDQAARCIEAARHVADQSQAKAESAQTASNANANANANA
D1-29_036051371gabTCOG01604-aminobutyrate aminotransferaseATGACCACCACCGCAAGCGAAATCACCTACCGCCTTGAGCAGAAGCGCCGCGTCCATGCGGACTTCCCGGGGCCCAAGTCCGTGGCCTTGACCGAACGCCGCAAGGCAGTGGTCGCTGCCGGCGTCGCCTCCGCAGTCCCTGTTTACGTTTCGGACGCCGACGGCGGCATCATTCACGACGTCGACGGCAACTCCTTTGTTGACCTCGGCTCGGGCATCGCGGTGACCAGCGTCGGGGCGTCCGATCCCGCCGTCGTCGGGGCCGTGAAGGAGGCCGTTGAGCACTTCACCCACACCTGTTTTATGGTCACGCCGTACGAAAGCTACGTCGCGCTCGCAGAGCAGCTCAACCGCCTGACTCCGGGCGACCACGAGAAGCGCACCGTGCTGTTCAACTCCGGCGCGGAGGCAGTTGAGAACGCCGTTAAGGTGGCCCGCCTGGCTACCGGCCGGGACGCCGTCGTCGCCTTTGACCACGCCTACCACGGCCGCACCAACTTGACCATGGCACTCACCGCCAAGGCCATGCCGTACAAAACCAACTTTGGCCCCCTCGCGCCCGAGGTCTATCGCATGCCCATGAGCTACCCGTACCGCGAGGAGAACCCCTCCATCACGGGTGCCGAGGCCGCCAAGCGCGCCATCACCATGATCGAGAAGCAGATCGGCGGCGACCAGGTTGCTGCGATCATCATCGAGCCGATCCAGGGCGAAGGCGGGTTCATCGTTCCGGCCGAGGGCTTCCTGCCGGCGCTGGCCGAATGGGCAAAGGAGAAGGGCGTCGTCTTCATCGCCGACGAGGTCCAGTCCGGCTTCTGCCGCACCGGCGAATGGTTCGCCGTCAACCACGAAGGCGTGGTGCCGGACATCATCACCATGGCCAAGGGCATCGCCGGCGGCATGCCGCTGTCTGCCATCACCGGCCGCGCCGACCTGCTCGACGCCGTCCACCCGGGCGGCCTGGGCGGCACCTACGGCGGCAATCCGGTTGCCTGCGCGGCCGCACTTGCCGCCATCGGTTCCATGGAGGAGTACGACCTTGCTGGCCGGGCCCGCCACATCGAATCCCTTGCCACAGCACGGCTGCGCGGATTGCAGGATGACCTTGCCGGTTCCGGCGCCGCCGTCATAGGCGACATCCGCGGACGCGGGGCCATGCTGGCGATCGAGCTGGTCCAGGCAGGATCGAAGGAACCCAACCCGGAGCTGACCAAGGCCGTGGCTGCCGCCTGCCTCAAGGAGGGTGTCATCATCCTGACCTGCGGCACGTATGGCAACGTCATCCGCCTGCTTCCGCCGCTGGTCATCACGGACGAACTCCTGAACGACGGCCTGGACGTCCTGGCCGCCGCCATCAAGGCCCACGCGTAAMTTTASEITYRLEQKRRVHADFPGPKSVALTERRKAVVAAGVASAVPVYVSDADGGIIHDVDGNSFVDLGSGIAVTSVGASDPAVVGAVKEAVEHFTHTCFMVTPYESYVALAEQLNRLTPGDHEKRTVLFNSGAEAVENAVKVARLATGRDAVVAFDHAYHGRTNLTMALTAKAMPYKTNFGPLAPEVYRMPMSYPYREENPSITGAEAAKRAITMIEKQIGGDQVAAIIIEPIQGEGGFIVPAEGFLPALAEWAKEKGVVFIADEVQSGFCRTGEWFAVNHEGVVPDIITMAKGIAGGMPLSAITGRADLLDAVHPGGLGGTYGGNPVACAAALAAIGSMEEYDLAGRARHIESLATARLRGLQDDLAGSGAAVIGDIRGRGAMLAIELVQAGSKEPNPELTKAVAAACLKEGVIILTCGTYGNVIRLLPPLVITDELLNDGLDVLAAAIKAHAPGPT0007660_253DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007660-gabT-K07250NANA
D1-29_036061431prr_2COG1012Gamma-aminobutyraldehyde dehydrogenaseGTGGTTCAAACCTTGCAGAACTTCATTAACGGTGAGTTCGTCACACCCGCCGGCAGCGGCCTGCTGGACATCGTCAATCCCACCAACGGTGAGATCGTGGCGCAGTCGCCCATCTCCGGGCAGGCCGATGTTGATGCTGCCATGTCCGCCGCCAAGGATGCCTTCCGGACCTGGAAGCACGTCACTCCGGGCCAGCGCCAGCTGATGCTGCTCAAGCTCGCCAACGCCGTTGAGGCCAACAGCGACGAACTGGTGGAGGCGCAGCACCGCAACACCGGCCAGGTGCGCTCACTCATCGCGTCCGAGGAAGTGGCGGCCGGCGCCGATCAGCTTCGCTTCTTCGCCGGCGCCGCCCGCATTCTTGAAGGCAAGTCCGCCGGGGAATACTTTGAGGGCCACACCTCCTACGTCCGCCGTGAACCCATTGGTGTGGTGGCCCAGGTGGCCCCGTGGAACTACCCCTTCCTGATGGCTATCTGGAAGATCGGCCCCGCTCTCGCCGCGGGGAACACCGTGGTCCTCAAGCCGTCGGACACCACCCCCGAATCCACCCTGGTCTTGGCGCGCCTGGCAGGGGAAATCTTTCCCGCCGGCGTGCTGAACGTTGTGCTGGGCACGGGCGAAACCGGCGCCATGATGGTGGAGCACAAGGTTCCGGGCCTGGTATCCATCACCGGTTCTGTCCGGGCCGGTATCGCCGTCGCGTCCGGTGCTGCCAAGGGCCTCAAGCGCGCCCACCTGGAACTCGGCGGCAAGGCGCCCGCCATCGTGTTCAAGGACGCGGACATCAAGAAGAGCGCGGCGGCCATCGCGGAGTTCGCCTTCTTCAACGCCGGTCAGGACTGCACGGCCATCACGCGCGTGCTGGTGGAGGACTCAGTCCACGACGACGTTGTGGCGGCCATGGTGGAACACACCAAGACCCTGCACACCGGTTCGCAGAACGACGAGGACAACTACTTCGGCCCGCTGAACAACGTGAACCACTTCAACCAGGTGAGTTCCGTCGTCGAGCACCTGCCTGATAACTGCAGGATCGAAATTGGCGGCCACCGTGCGGGGGAGAAGGGCTTCTTCTTCGAGCCCACCATCGTCACCGGCGCGAAGCAGACGGATGACATCGTCCAGAAGGAAACGTTCGGCCCGGTCATCACGGTGCAGAAGTTCAGCACCGAGGAAGAGGCAGTGGAGCTCGCGAACGACGTCGACTACGCCCTGGCCTCCAGCGTCTGGACCAGCAACCACGGCACGGCCATGCGCCTCAGCCGCGACCTGGACTTCGGTGCCGTCTGGATCAACACGCACATCCTCCTCACCGCCGAAATGCCCCACGGCGGCTTCAAGCAGTCCGGCTACGGCAAGGATCTGTCCATGTACGGGGTTGAGGACTACACGCGGATCAAGCACGTGATGTCCGCACTTGATGCATAAMVQTLQNFINGEFVTPAGSGLLDIVNPTNGEIVAQSPISGQADVDAAMSAAKDAFRTWKHVTPGQRQLMLLKLANAVEANSDELVEAQHRNTGQVRSLIASEEVAAGADQLRFFAGAARILEGKSAGEYFEGHTSYVRREPIGVVAQVAPWNYPFLMAIWKIGPALAAGNTVVLKPSDTTPESTLVLARLAGEIFPAGVLNVVLGTGETGAMMVEHKVPGLVSITGSVRAGIAVASGAAKGLKRAHLELGGKAPAIVFKDADIKKSAAAIAEFAFFNAGQDCTAITRVLVEDSVHDDVVAAMVEHTKTLHTGSQNDEDNYFGPLNNVNHFNQVSSVVEHLPDNCRIEIGGHRAGEKGFFFEPTIVTGAKQTDDIVQKETFGPVITVQKFSTEEEAVELANDVDYALASSVWTSNHGTAMRLSRDLDFGAVWINTHILLTAEMPHGGFKQSGYGKDLSMYGVEDYTRIKHVMSALDAPGPT0007165_3048DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-29_036071437hypothetical proteinATGGCCATTTCCCTTTCTGCCCTCCTGGGTGTGAACTCCCTGAACCTGACCAAAGCAGGCACCGCCGAGACCACGTGGCACCAGGACATCAACTGGGTGGCGGTCACCGAACTGGAAGACCCCCAGCGCTTCATCAACGGCGGCGAACTGGTGCTCACCACGGGGCTGCGCCTGCGGTCAGCCCCGGAACAGCGGCGCTTTGTCCGCCAGGTCCAGCGCGCCGGGGCTGTGGGCATCGGGTTCGGCATTGGCCTCTCGCACGACGTCGTCCCGTCGGCCATGGTTGCCGAGGCCAACCGGTGGGGGCTGCCGATGGTGGAGGTGCCCTACGAGACACCGTTCATCGCCATCGGCAAGCTGGTGGCCGACGCCCAGTCTGCGGACCACTACGCCAAACTGGAGCGGCTGATTGCCGGGCACCAGGTCCTGGCCCGCGCGCTCCTCACCGGCGGCGGACTCTCCGAACTGCTGAAGCACCTGGGCGGCATGCTGCGGACCGATATCGCCCTCACCCAGTTCACGGCACAGCTGTACAACAGCAGCAAGAGCAACCCCTCCGCTGACACGTGGGGGTCCTTCCCCATCCCCACGGGGCGGCGGGACGCCTGCACGCTTTGGGTCAGGCAGCCCTTTGAGGACTCGGGCATCATCGGCTACGCGCAGAACCTCATCAGCGTGGAGCTGAACAACATGGTCAAGCAGCGCCAGGCACAGCGGGCCCTGTGCGGGCAGGTGCTGGAGGACGTCATCCACGGCGCCTTGGAAACCAGCGAGGCCCAGCGCCGGCTCGCGGGCATCGGCGTCAACAGCACCCGTAAGAACGTGGTGTTGCTGGCGGTTTCCGCCGCCCACCACAAAGCGCTGGTGAGCACCTCCGTGCCGCAGCAGCTGGAGAATGTGGTGACAGCCGTCGTCGGGAAGGACCTGGTGCTTGTTGTCAACGACGACGGCAGCGGCGCGGCTGCGCTCGCCCGGAAGCTCAGCGACCATCTGGCCGAGGCCGGGATCCACGCAACCACGGGCATCGGCGGGGCGTACACCAAACCGAACGGCCTCCGGTGGAGTTACTTCGAGGCCCGGGACGCGGCGAGCCATGGGCTGCCCGTCAACGAACCGGAACGGCTGAGCCTCACCTCTCTACTGCTGGCGAGCGAGGACGTTCCGCTGGCCGACATGGCCAACGAATCCCTGAATCCGCTCCGCGCGTTCGATACCGCCCACAGCGCGGAACTGATGGCCACGTTGGAAAGCTACCTGAACAACAACGGCTCGGTTGCCGCCGTCGCCGAAGCCCTGACCCTGCACCGCAACACCGTCCGCTACCGCCTCGCCCAGATCACCGAGCTCACCGGCTACGACCCTGCCGTCACAGCCGACCGCGTGCAGTTGTGGCTTGCCTTGGCGGTCGCCAAACTGGGGGCGCGCCAGGGGAAGTAGMAISLSALLGVNSLNLTKAGTAETTWHQDINWVAVTELEDPQRFINGGELVLTTGLRLRSAPEQRRFVRQVQRAGAVGIGFGIGLSHDVVPSAMVAEANRWGLPMVEVPYETPFIAIGKLVADAQSADHYAKLERLIAGHQVLARALLTGGGLSELLKHLGGMLRTDIALTQFTAQLYNSSKSNPSADTWGSFPIPTGRRDACTLWVRQPFEDSGIIGYAQNLISVELNNMVKQRQAQRALCGQVLEDVIHGALETSEAQRRLAGIGVNSTRKNVVLLAVSAAHHKALVSTSVPQQLENVVTAVVGKDLVLVVNDDGSGAAALARKLSDHLAEAGIHATTGIGGAYTKPNGLRWSYFEARDAASHGLPVNEPERLSLTSLLLASEDVPLADMANESLNPLRAFDTAHSAELMATLESYLNNNGSVAAVAEALTLHRNTVRYRLAQITELTGYDPAVTADRVQLWLALAVAKLGARQGKNANANANANA
D1-29_036081725putative proteinATGGCCCTGCAGGGTGTGGAAATCGAGAAGAAGTACGAGGTGGGCGACGAGGCCGTGGTGCCCCCGCTGGCCGGCCTCCCCGGCGTGGCCCGCGTGGGCGACCCGCACGTGGCCACTCTGGAAGCTGTCTATTTCGACACGGAGAGCTACGTCCTGGCTTCCCGGCGCATCACCCTGCGGCGGCGGACCGGTGGGGCCGACGCCGGCTGGCACCTGAAGCTTCCGCCGGAGACCCCCGGCTCCGCTGGTTCCGTTTCCGGCGGTTCGGATTCTGGCGGTTCGGGGGCCGGTTCGGGGGCCGGTTCCGGGTCTGATGCCGGTCCGGTACCCCAGCAGCGCCGCGAGCTGCACGCCCCGCTGGGCCAGCCCGACGTCGTTCCTGACACACTCCTCGCGCACCTGCAGGCTTACCTGCGTGGCGCGGAGCTGGTGCCGGTTGCCAGGCTGGAAACGCTGCGAACCACCCATGCCCTCTACGACGCCGACGGCGTGCACCTGGCCGACCTGGCCGACGACAAAGTGCACGCCCAGCCCCTGCTCACGAGGAAGCCGGCAGGAGGGGACTCCGAAGGGGGCTCGGGAGGAGAGGCGCAGGCAGGGTACCGGAGCCAACACTGGCGCGAATGGGAACTGGAACTTGTCCACGGCAGCGCGGACATTTTCCCGGCCGCCGAAGAAGTCCTGGCCGCCGCGGGAGCGCGCCCGGCAGGGCACGCGTCCAAGCTGGGCCGGACGCTTCAGGAGGCAATCCGCGAAACCGGCGGCCCGGAACCACAGGGTAAAGAGCCGCAGGGGATAGAACCCCAGGGTACGGAACCAGAGGCCTCAGAGCCGCCCGGCAAGAAGAGCCCGGCGTCCGCCGTCGTGACTGCTTACCTCGGCGCGCAGATCCGCGAAATCCTTGCCCACGATCCCGGTGTCAGGCTGGAGGAGCCGGAGGCGGTGCACAACCTGAGGGCTGCAGCGCGCAGGGCGCGCTCCGCGCTGGCTGCCTACCGCCGGCACTACAGTGCGGTGGCCGTGCGGCGGCTGCAGGAAGAGCTCAAGTGGCTCGGCCGGACACTGGGCGTGCCGCGGGACGCCGAAGTGATGCTGGAGCGGCTGAGGGGTCACCTTGCGGAATTGCCCGAGGGCCCGGCCGCAACGGCGGTCAAGGACCGGGTGGAGCAGGAGCTCGGTGGAACGTTCGACGACGGATACCGAAAAGTGATGGAAGTGCTTGCCTCGGAGCGCTACTTCCGGCTGCTCGATGATCTTGAAGCCTTCCGGGACCGTCCTCCTCTGCGGCCGGAGGGGTCGGTTTCAGGCCGCAAGGCGGGCGTCAAGCTCGTGGCCAAGGCGGTCAAACGGCTCGGGCGATCGCAGAAGGCGGCCAAGCGTTCCCGGCGGGGAGCGCAGCATGAAAGCGCCCTGCATCGGGTCCGTAAGGACGCCAAACGGCTTCGGCACGTGGCAGAGTCGGTGCGCCCGGTCAGCGGCAAGCGTGCTGCCAAAGTCGCCAAGGCCGCGCACCGGCAGCAGAAAATTCTGGGCGAGTTCCGCGACAGCATCCTGGCCCGGGACCTGCTGGGCAAGCTGGGTGGAGTCCCGGATCTTCCCGAAGCCGTGGCCTCGCTCTTCGTCGAGCTCCGCACCCGGCAGGTGCAGCTCGCGGCCGACGCCGAATCAAAGTACCGGAAGGCCCGGAAGAAGTCGCAGAAGCGGCTCAAGGCCGGCGTGCACTAGMALQGVEIEKKYEVGDEAVVPPLAGLPGVARVGDPHVATLEAVYFDTESYVLASRRITLRRRTGGADAGWHLKLPPETPGSAGSVSGGSDSGGSGAGSGAGSGSDAGPVPQQRRELHAPLGQPDVVPDTLLAHLQAYLRGAELVPVARLETLRTTHALYDADGVHLADLADDKVHAQPLLTRKPAGGDSEGGSGGEAQAGYRSQHWREWELELVHGSADIFPAAEEVLAAAGARPAGHASKLGRTLQEAIRETGGPEPQGKEPQGIEPQGTEPEASEPPGKKSPASAVVTAYLGAQIREILAHDPGVRLEEPEAVHNLRAAARRARSALAAYRRHYSAVAVRRLQEELKWLGRTLGVPRDAEVMLERLRGHLAELPEGPAATAVKDRVEQELGGTFDDGYRKVMEVLASERYFRLLDDLEAFRDRPPLRPEGSVSGRKAGVKLVAKAVKRLGRSQKAAKRSRRGAQHESALHRVRKDAKRLRHVAESVRPVSGKRAAKVAKAAHRQQKILGEFRDSILARDLLGKLGGVPDLPEAVASLFVELRTRQVQLAADAESKYRKARKKSQKRLKAGVHNANANANANA
D1-29_036091233yycB_2COG2807putative transporter YycBATGGCCGCCATCTCTCCAGCTCCCCCCGCAGCGGATACCGCCCTGCCCAAGCCCCGCACCGCCGTCGTACTTTCCGTCATTGCGCTGGTGCTGATCGGCCTTAACCTGCGGGCCGGGATCACCGGAGCATCGGCCCTGCTGCACGATCTGCAGCTGGTCCTAGGCTACGGGCCGCTGGTGGCGGCGATCATTCCGTCCATTCCCACCCTCTGTTTTGCGGTGGCCGGCGCGGCGACTTCATGGCTTAGCGGAAGGCTAGGCGTCGAAAAGTCAATCCTGCTGTCGCTGGGGATGCTGGCGGCGGGGCTGCTGCTGCGGGGCATTCCGGCCACCGGCATGCTGGTGGTTGGCACCGTCCTGGGAATGTCCGGCCTGGCCGTCTGCAATGTGGCCATGCCGTCCTTCATCCGCGAGCATTTCGCCGGACGCACCTCCCTGATGACCGGGCTGTACACGGTTACCATGACCACCGGTGCCACAGCCACAGCAGTGGTGGTGGTCCCGCTGGCCCAGGCCCTCGGTTCGCCGTCCGCGGCTGTGGGCGCCATCGGAATCATGGCCATCGCCGCGTTCCTGGGTTTCCTGCCCGTTGCCCTGCACGCGCACCGCAACAGTGTTCGCACCACCACCGGCGGCATCTCGCCCTGGCCGTTGCTGAGGACCCGCAAGGGCCTGCTGCTGACCGCCATCTTTACCGTCCAGGCCCTGCTGGCGTACGCCCTGCTGAGCTGGTTCCCGTACATGCTGACCACCATGGGGCTCAGCGCCTCGGACAGCGGCCTGATGTACGGGCTGATGCAGCTGGTTTCGGTGCCGGCCGGCATGTTGCTGATTGCCATTGGTTCCCGCCGCCGGATGCAGCGGCCCGCGTTTTACCTCGTCTCTGTGACCATGGCTCTGGGTGTTGCCGCGCTGCTGTTCCTCCCGGTGGGCCTGGCCGTTATCCCTGCCGTCCTGCTGGGATTCGGCCTGGGCATCTTTCCCCTGGTCATGGTGATGATCAGCCGCAGCGGCACGAACACGGCGGAAACTACGGCGCTTTCCACTCTGGCCCAGTCCACGGGTTACCTGTTGGCCACGGTGGGGCCCTTTGGCGCCGGGCTCCTCCACAGTGCCACCGGTGGCTGGATCCTGCCGCTTTCCCTGCTGCTGGTCCTCGCCCTGGTCCAGATCGTGGTGGCCCACCTGCTCACGGGCAGCCCTTCCGCCGGCAACACCTCAAAGAAGAAGTAGMAAISPAPPAADTALPKPRTAVVLSVIALVLIGLNLRAGITGASALLHDLQLVLGYGPLVAAIIPSIPTLCFAVAGAATSWLSGRLGVEKSILLSLGMLAAGLLLRGIPATGMLVVGTVLGMSGLAVCNVAMPSFIREHFAGRTSLMTGLYTVTMTTGATATAVVVVPLAQALGSPSAAVGAIGIMAIAAFLGFLPVALHAHRNSVRTTTGGISPWPLLRTRKGLLLTAIFTVQALLAYALLSWFPYMLTTMGLSASDSGLMYGLMQLVSVPAGMLLIAIGSRRRMQRPAFYLVSVTMALGVAALLFLPVGLAVIPAVLLGFGLGIFPLVMVMISRSGTNTAETTALSTLAQSTGYLLATVGPFGAGLLHSATGGWILPLSLLLVLALVQIVVAHLLTGSPSAGNTSKKKPGPT0005211_201DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
D1-29_03610681nanR_2COG2186HTH-type transcriptional repressor NanRATGACCCTCAGCACCTCGCACCGGCAGCCCCTCGCGGAAGAGATCACCGCCAAACTGCGGGCCATGATCCAGACAGGCGAATGGCCCCTGCAACAGCGGATCCCGCCGGAGCCCGAGCTGATGGCACGGCTTGGCGTCTCCCGCGGGACGCTCCGGGAGGCCGTCAAGGCCCTGGCTCACAGTGGAATGCTGGAGGTGCGGCGGGGCGACGGCACATACGTCCGTGCCACCAATGAGATGTACGGCGCCGCCCGCCGGATGTACCAGGACCACACCGGTGAGCACATCCTGGAAGTCAGGGCTGGCCTGGATACCCAGGCGGCGCGGCTCGCGGCGAAGAATGCAACGCCCGACGACGTCACCGCCTTGCGCGCGCTCCTCGCCGACCGCGACCACGCCTGGCATGCTGCCGACTATGCCGCGTGGGCCCGGGCCGACTGGGCCTTCCACGAGCGGGTGGCCCAGTCATCCGGGAACCCCCTGCTGCACGAGCTGTATGTCAGTTTCGGCGGCGTCTTCCACCAGGACCTGCTCAAACAGCCAGCCAGGGCGGGGTTCGACGGGATTCCACACGCAGGCCACGGTGAGCTGGTGGACGCCATCGAGGCACACGATCCCGACGCCGCCGTGGCCAGCGTCAACCGGAACCTGAACTGGTGCGCGGAATGGATCCGGGCCTAGMTLSTSHRQPLAEEITAKLRAMIQTGEWPLQQRIPPEPELMARLGVSRGTLREAVKALAHSGMLEVRRGDGTYVRATNEMYGAARRMYQDHTGEHILEVRAGLDTQAARLAAKNATPDDVTALRALLADRDHAWHAADYAAWARADWAFHERVAQSSGNPLLHELYVSFGGVFHQDLLKQPARAGFDGIPHAGHGELVDAIEAHDPDAAVASVNRNLNWCAEWIRANANANANANA
D1-29_03611387hypothetical proteinATGAAAGCCGATGAGATCATTTCCGCCGTCCGTTCCTCTGCCGGGATCGATTCCTATGGTCACGCTGAAAAGGCCGTCAAGGCCACGCTCACGGTGCTCGGGCAGCGGCTCTCTACCGAAGCCAAGGACCTGGCGGCCCAACTTCCGCCGGAGCTGGGCGAGCGCCTGACCCAGCAACCTGACGTTGAACGCTTCGGCCTGGAGGAGTTCTACCGCCGGGTGGCCGAGGAAGAGGGAGAAGGCTGCACGCCCCAGGTGGCCCGCAGGCATGCCCGCGCCGTTACGGCAGGGCTGCGCGAAGCCGTCGGCGCCGAATATCTCCACGTCCTTGACCAGTTGCCTGATGACTGGGCCGACCTGCTGCATTCCGATCAGGGGCAATACTGAMKADEIISAVRSSAGIDSYGHAEKAVKATLTVLGQRLSTEAKDLAAQLPPELGERLTQQPDVERFGLEEFYRRVAEEEGEGCTPQVARRHARAVTAGLREAVGAEYLHVLDQLPDDWADLLHSDQGQYNANANANANA
D1-29_03612690COG1926Putative phosphoribosyl transferaseATGAGCAGCAGCCAGATCAGGGTCAGCTCTGGAAGTGTGGACCTCGATGGCGACCTGACCATCCCTCCGCATGGCACCGGCGTCGTTGTGTTCGCCCATGGCAGCGGAAGCAGCCGTCACAGTCCGCGGAACCTGAAAGTGGCGGCTGCCCTGCACTCCGAGGGATTGGGGACGTTGCTTTTTGACCTCCTGACCGCCCCCGAGGAACGCAAAGACGCCCAGGATGCTGCACTGCGCTTCGACATCGGCCTGCTGACCGGACGGCTCACGGCGGCCATCGACGACGTTGCCGGACGGCCGGAGACAGGCAACCTGCCGATCGGCCTGTTCGGGGCAAGCACCGGAGCGGCCGCAGCCCTGGCTGCCGCCGCCAACCGTCCCGGCAAAGTCCGGTCCGTGGTTTCCCGGGGAGGCCGGCCGGACCTGGCCCGGCAGCATCTGGACGCGGTGCGGGCGCCCGTCCTGCTGTTGGTGGGAGAACTGGACCAGGAAGTGATAGAGCTGAACCGGCAGGCAGCAGCCCTGCTGGCCGTCGAACACGAGCTTTCCATTGTTCCGGGAGCCACACACCTTTTCGAGGAACGCGGCACGCTCGAGGAGGTTGCCCGGCAGGCGGCCGCCTGGTTCACCAGGACGATGGCGCCCTGGAGTCCCGCAAACAAGACTCCGCCCGAAGGAGCGGCATCATGAMSSSQIRVSSGSVDLDGDLTIPPHGTGVVVFAHGSGSSRHSPRNLKVAAALHSEGLGTLLFDLLTAPEERKDAQDAALRFDIGLLTGRLTAAIDDVAGRPETGNLPIGLFGASTGAAAALAAAANRPGKVRSVVSRGGRPDLARQHLDAVRAPVLLLVGELDQEVIELNRQAAALLAVEHELSIVPGATHLFEERGTLEEVARQAAAWFTRTMAPWSPANKTPPEGAASNANANANANA
D1-29_03613237hypothetical proteinATGGCAATCTGCGATACCTGCGGGAACGACTACGACAAGACCTTCACTGTCACCAGGGGAGGGCAGACCGGAACGTTTGACAGCTTTGAGTGTGCGGTTCACGCGATGGCCCCGGTTTGCGGGCATTGCGGCTGCCGCATCCTGGGACACGGCGTGGAAACAGAGCAGGGTATGTACTGCTGTGCGCACTGCGCCCGGGGATCAGGGGAGCATGGCGTGTCCGACCGGTCGGACTAAMAICDTCGNDYDKTFTVTRGGQTGTFDSFECAVHAMAPVCGHCGCRILGHGVETEQGMYCCAHCARGSGEHGVSDRSDNANANANANA
D1-29_036141188COG0628Putative transport proteinATGGCCCGAGCAACAGACCTGTCCGAGCATGAACGCGCCCCCGAACCTGAACAAGCCCAGAACGCCGCAGCAGAAAAACGGCACGCCGAACGAAAGCCGCCCCGTGCCCTGTGGTCCGACGGCCTGGGGCGTGTGGGTATCCGGTCCGCCCAGATCCTACTGATCCTCGGCGTGGCGGTGGCCTCGGTCTACGCCCTGATGCAGGTCAAGCTCCTGGTCATCCCCGTCCTGATTGCACTGATCCTCGCCGCGGCGATCGGCCCCTTTGTGAACACGCTCCGCCGCCGGGGCCTGCCGGGCGGAGCAGCCACCGGCCTGGCTTTTGTGGCGCTGCTCCTCCTGCTGGCGGGCGTCTCCACGGTGATCTATTTTTCCGTCCGGAGCCAGTGGGGCGAACTGGTGCAGCAGGCTTCCTCCGGGCTGGACGAGCTGGAGCAATTCCTGCTGACCGGCCCCATACCCGTGGACCAGGAGCAGCTGAACCAGGCGCGCGAAGGAATTATCCAGTTCGCCACCAGCAGCCAGTTCCGTTCCGGCGCCATCACCGGGCTCTCCGTGGTGACGGAGTTCCTTGCCGGAACGGGCCTGATGATTATCTTCCTGTTCTTTTTCCTCAAGGACGGGGCCAAGATCTGGAGCTTCTTCCTGCGGCCCTTCAGCGGGCAGCGGGAAGCGAAACTGCGCCGGGTGGGCAGCCGGACTTTGGAAGTCCTGGGCGGGTATGTCCGGGGAACCGCCGTGGTGGCCCTCGTGGACGCCGTGGCCATCGGCGCGGCGCTGTTTATCCTCCAGGTTCCCCTCGCGTTCGCGCTGGCCATCATCGTGTTTATGACAGCCTTTATCCCGCTGGTGGGCGCCACCGTGGCCGGCATCCTGGCCGCCCTGGTGGCCCTGGTGGCCAACGGCCCGGTGGTGGCCCTGATTGTGGTGGCGGTGGTGATTGCCGTGAACCAACTGGAGGGCGACCTCCTGCAGCCAATCGTGATGGGCAAATCACTTCAGCTCCATGCCCTGGTGATCCTGATGGCATTGACAGCAGGCACCATCCTGGCGGGCATCGTCGGCGCCGTACTCTCCGTTCCGCTGGCCGCCGTGGCCTGGGCAATCATCCAGGTCTGGACTGCCGAGGACCCCAAGCTTGAGCCGATGAATCCAGACCTGCCGCCGGCCAACAGCCAGCCAACCTAGMARATDLSEHERAPEPEQAQNAAAEKRHAERKPPRALWSDGLGRVGIRSAQILLILGVAVASVYALMQVKLLVIPVLIALILAAAIGPFVNTLRRRGLPGGAATGLAFVALLLLLAGVSTVIYFSVRSQWGELVQQASSGLDELEQFLLTGPIPVDQEQLNQAREGIIQFATSSQFRSGAITGLSVVTEFLAGTGLMIIFLFFFLKDGAKIWSFFLRPFSGQREAKLRRVGSRTLEVLGGYVRGTAVVALVDAVAIGAALFILQVPLAFALAIIVFMTAFIPLVGATVAGILAALVALVANGPVVALIVVAVVIAVNQLEGDLLQPIVMGKSLQLHALVILMALTAGTILAGIVGAVLSVPLAAVAWAIIQVWTAEDPKLEPMNPDLPPANSQPTNANANANANA
D1-29_03615537hypothetical proteinATGGCAGGAAATCTCATTGCACGGACAGTCCACGATCTCACGGCTGCGGCCTGGTTCGGCGGATCATTGATGGGTGCCATCGGACTGAATGGTGCAGCAGCGGAAGCCAGGGATCCTTCGGAGCGGACCCGGCTCTCCAGCGCGGGCTGGATGAAGTGGGCGCCGATCCAGACGGCAGCCTTCGCCTCGCATCTTGTGGCTGACCTGGCCATCGCCTGGGAGAACAAGGACCGCATCGCCAAGCAGGAAGGCGTTGCCCGGGACACCGCCATCAAGACTGCCGTGACGGTGGCCGGAGCGGCCGTAACTCTCTACGCGGGCATCCTGGGCAAGAAGGTGGAGAAGCTCGCGGACCAAGGGGCGCTGGGCGCAACCGAGCCTACGCCTGAAGCTTCCGAGGAACTCAAAACCGCACAGGAGCAGCTGAAGATGCTGCAGTGGGCTGTTCCGGTGTTCGCAGGCCTGGTGGTCTTCCTGGGCGCCAAGCACGGCGAGATGCAGCGGCCCAAGAACGTGTTCGCGGGCCTGCGCTCCTAGMAGNLIARTVHDLTAAAWFGGSLMGAIGLNGAAAEARDPSERTRLSSAGWMKWAPIQTAAFASHLVADLAIAWENKDRIAKQEGVARDTAIKTAVTVAGAAVTLYAGILGKKVEKLADQGALGATEPTPEASEELKTAQEQLKMLQWAVPVFAGLVVFLGAKHGEMQRPKNVFAGLRSNANANANANA
D1-29_03616321hypothetical proteinATGCAGCCGCACACGCGTAATATCGCAGCCATGGAGAACAAGGGAACCCTGTTCGGGTGGGCATTCGGCGACGCCGCCCGTGAGGCTGAGAGCGGATATCTTGAGAAGCTTCAGCATGAAGCGTTCGAGAACGCGCGGCGGACGGCAGAGGCCAGGGGTTTCACAGTCCTGGCCGGTTCCGAGGCCTTCACCATCCTGAATGCCCGCGAAACACTGGTGGAGGTTGATACAGCCCCCAACAGCCTGGTGGTCCGCTGCACCGTCACAGTGGAAGGACCGGGAGCCGAGAAGCTGCACGCCGAAGGCCCCATGAACGGATAGMQPHTRNIAAMENKGTLFGWAFGDAAREAESGYLEKLQHEAFENARRTAEARGFTVLAGSEAFTILNARETLVEVDTAPNSLVVRCTVTVEGPGAEKLHAEGPMNGNANANANANA
D1-29_03617828hypothetical proteinATGTCAGACGGGGACTCCACCATGAGCGACGCGGCCGACGCTGTCGAGGAGGCATCAAACGCCAAGGCGCTGGATGTCGTGGCGCGTTCCGGCTTCGCCGTGGTGGCCCTGCTGCATGTGATTGTTGGCGCCATAGCCATCGCTGTTGCCTTCGGGCAGCCCGGCGAGGCCGAAGCGACCGGCGCCATTGAACAACTGGCTGCCAACCCCTGGGGCCCCGCCGTGATGTGGTCCTGCCTGATCGCCTGTACGGGGCTGGCGCTCTGGCAACTGAGCGAGGCCACGCTCCGCGCCCGGCACCTGCCACGGAAGGAACGCCTGGCCAAAGTGGTCTCGTCCGGGTTCCTGGCGTTGGCGTACGGCAGCGTGGGCCTGAGCTTTGCCGGCTTCGCCGTGGGGCTGCGCGCTGATTCCAGCCGAGTTACCCGTGACTTCAGCGCTGCACTCCTGGGAGCCCCCTTCGGGGTGTGGGTCCTGATAGCCCTGGGGCTGACCATCATGGGAGTGGGGATCTATTTTGTGGCGAAGGGGTTGCGCCGCGGCTTCAAGGACGAGCTCTTCCATTTCGACGGCTCCCGCCGCGGCAAGCTCATCGATGCGCTGGGGCTCACGGGCCACGTGGCCAAAGGTATCGCCCTGACCCTGACCGGGCTGCTCTTTGTCATCGCGGGCGGAAAGCAGAATCCGGACGAAGCCACCGGACTGGACGGCAGCCTGAAGGCACTCCGGGAACACCCCTTCGGCCCTTCCCTCCTGGTGGCGATTGGCGCAGGCTTCATTTGCTACGGCATTTTCGCGCTGGTCCGGGCACGCTTCGGCAGGATGTAGMSDGDSTMSDAADAVEEASNAKALDVVARSGFAVVALLHVIVGAIAIAVAFGQPGEAEATGAIEQLAANPWGPAVMWSCLIACTGLALWQLSEATLRARHLPRKERLAKVVSSGFLALAYGSVGLSFAGFAVGLRADSSRVTRDFSAALLGAPFGVWVLIALGLTIMGVGIYFVAKGLRRGFKDELFHFDGSRRGKLIDALGLTGHVAKGIALTLTGLLFVIAGGKQNPDEATGLDGSLKALREHPFGPSLLVAIGAGFICYGIFALVRARFGRMNANANANANA
D1-29_036181191hypothetical proteinATGAGAGCTGAGGGACTCAACACCCGCGGGCCGGATCCCGGAGCGCCCGCTACAGAACTGGCCGGGTGGACGTTCGCCGGCTTGTTCCGGGCCATCAAGGTGGTCCGACCCGACAGGCCCATCCATCCCCACGGCGTCAGCCTTGACGGTGAGCTGATCAGGCACGGCGGCGGGCGGGACGTGAGCGGCCTCGACTGGCTCGATTCACCCGGTGTTGAACCGGTTAAGGCGCGTTTCTCACGGTCGGTGGGATTGCCGCCGTCGTTCCCTGACATCCTGGGCCTGGCACTACGGATCAACCCATCCGGCGAGGCCGCGGACGTCTTGTTCGCGTCCACCGGCTGGAGGTTTCCCGCCCGGTTTGCCCTTATACCCAGGCGCAGTGTTTCCGGCGCCGCGTTTACCACCCTCATGCCATACCAGGGGCGGTACGGTCCCGTGCTTCTGGGCCTGCGGACACGGCAACTGCCGGACGGGTCAGCCGGGGATTGGGTCCTGGAACTGCACTTCGCCAAGCCCGCCGGGCAGTGGGTCCGGGCCGGCGAACTTCGGCTGCGGGAATCTCCAGTCGCCACCGATACTCCGCTCCGCTTCAATCCCGTGGAACATCCGCTGCCGGACGCGGGGACGTACCCGTGGACCCGGCGGCTGCGGGAGCGCTCGTACCGGGCGGCTCAGCAACCCTCCCCTCGTTCTCCCCGTAATTCATCCTATACGGGGGAGTCCTCCGCCCCGACCGAAAGGAAGCCCATGGCAACAGTGAACAAGGTCTTCAACTCCCCGGCGGAGGAAGTGTGGAAAGTCATCGCAGACGGCTGGCTTTACTCGGGCTGGGTGGTGGGTGCGTCGCGGATTCGTGCCGTCGACGCACAATGGCCGGACGAAGGATCCAGGCTCCACCATTCCGTGGGCGCCTGGCCGCTGGTGATCAACGACAGCACAAGTGTGGCCAGTGTGGATCCAGGACGTTCGCTGGAGCTGGTGGCGCGTGTATGGCCGGCGGGCGAGGCCCGAGTGCTCATCACCATCGAGGACCAGGGAATGCAGTGCCGCGTGACCATGGCCGAAGACGCTGTCCGGGGCCCCGGGAGGTTCGTGCCGAAGCCATTGCGGGATGCCCTGATCCGTGCCCGTAACCGCGAAACACTCAACCGGCTCGAACTGATGGCTGCGGGCGGAGCTGGGAGTTAGMRAEGLNTRGPDPGAPATELAGWTFAGLFRAIKVVRPDRPIHPHGVSLDGELIRHGGGRDVSGLDWLDSPGVEPVKARFSRSVGLPPSFPDILGLALRINPSGEAADVLFASTGWRFPARFALIPRRSVSGAAFTTLMPYQGRYGPVLLGLRTRQLPDGSAGDWVLELHFAKPAGQWVRAGELRLRESPVATDTPLRFNPVEHPLPDAGTYPWTRRLRERSYRAAQQPSPRSPRNSSYTGESSAPTERKPMATVNKVFNSPAEEVWKVIADGWLYSGWVVGASRIRAVDAQWPDEGSRLHHSVGAWPLVINDSTSVASVDPGRSLELVARVWPAGEARVLITIEDQGMQCRVTMAEDAVRGPGRFVPKPLRDALIRARNRETLNRLELMAAGGAGSNANANANANA
D1-29_036191467fprA_2COG0493NADPH-ferredoxin reductase FprAGTGTCATCAAGCACCACCGTAGGCTCTGCCGATCGTCCGCTGCGCGTCGCCGTCGTGGGCTCCGGCCCGGCAGGGGTCTACGCCGCGGACATCCTCACCAAGAGCGAGGCCGTCAAGAGCGGCGAGCTGACCGTGAGCATCGACCTCTTCGACCGCTACCCGGCACCCTACGGCCTGATCCGCTACGGCGTTGCCCCGGACCACCCGCGCATCAAGGGCATCGTTAACGCCCTGCACAAGGTCCTGGACCGTGGCGACATCCGCTTCTTCGGCAACGTGGACTACGGCACCGACCTCTCCATCGAGGACCTGCGCACCCACTACGACGCCGTCATCTTCGCCACCGGGGCCATCAAGGACGCGGACCTGAACATTCCGGGCATCGAGCTGGACGGCTCCTTCGGCGGCGCGGACTTTGTCTCCTGGTACGACGGACACCCGGACGTTTCCCGCGAATGGCCGCTGGACGCCAAGGAAATCGCCGTGATCGGCAACGGCAACGTGGCGCTGGACGTGGCCCGCGTCCTCTCCAAGCACGCCGATGACCTGCTGGTCTCCGAAATCCCGGACAACGTCTACGCCGGCTTGAAGGCCTCCCCGGTCACCGATGTGCACGTCTTCGGCCGCCGCGGCCCCGCTCAGGTGAAGTTCACCCCGCTGGAGCTGCGCGAGCTGTCCCACTCCAAGGACGTGGACATCATCCTGTACGCCGAGGACTTCGAGTTCGACGAGGAGTCGGACCGCCTGATCCAGAGCAACAACCAGGTCAAGACCATGGTGGGCACGCTCACCAACTGGATCGCCGAGCAGCCCGAGGACCTCTCCGAGCTCACCGCATCCCGCCGCCTGCACCTGCACTTCCTGCACAGCCCGGTGGAAATCTACGACGACGCCGAGACGCCGGGCAAGGTGGCCGGCATGAAGTTCGAGCGCACCGAGCTGGACGGCACCGGCAACGCCCGTGGCACCGGCGAGTTTGTGGACTACCCGGTCCAGGCCGTCTACCGCGCCATCGGCTACTTCGGTTCCGCGCTGCCGGAGATCGAGTTCGACCACAAGAAGGGCGTAGTGCCGAACGACGGCGGACGCGTCCTGGACGCCGCCGGCACCCACGTGCCGGGCATCTACGCCACCGGCTGGATCAAGCGCGGCCCGGTGGGCCTGATCGGTCACACCAAGGGCGACGCCTTGGAGACCGTGACATACCTGCTGGAGGACCGGGAAAACCTGCCGGTCGCCGCCGTTCCTGAAGCGGACGCGATCGTCGATCTCCTGGATTCCCGCGATGTGAAGTTCACCAGCTGGGAAGGCTGGCTGGCCCTGGACGCCCACGAGCTCGCCCTGGGCGCTGCAGCCACCGAAGCCGGCGGATCGCATGGCGTTGAGGTCAAGCGTGAGCGCATCAAGGTGGTGCCGCGCGAGGACATGGTTGCCATCTCCCGCGACGGTGTGGCCGCCCAGGTCTGAMSSSTTVGSADRPLRVAVVGSGPAGVYAADILTKSEAVKSGELTVSIDLFDRYPAPYGLIRYGVAPDHPRIKGIVNALHKVLDRGDIRFFGNVDYGTDLSIEDLRTHYDAVIFATGAIKDADLNIPGIELDGSFGGADFVSWYDGHPDVSREWPLDAKEIAVIGNGNVALDVARVLSKHADDLLVSEIPDNVYAGLKASPVTDVHVFGRRGPAQVKFTPLELRELSHSKDVDIILYAEDFEFDEESDRLIQSNNQVKTMVGTLTNWIAEQPEDLSELTASRRLHLHFLHSPVEIYDDAETPGKVAGMKFERTELDGTGNARGTGEFVDYPVQAVYRAIGYFGSALPEIEFDHKKGVVPNDGGRVLDAAGTHVPGIYATGWIKRGPVGLIGHTKGDALETVTYLLEDRENLPVAAVPEADAIVDLLDSRDVKFTSWEGWLALDAHELALGAAATEAGGSHGVEVKRERIKVVPREDMVAISRDGVAAQVPGPT0013215_389DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
D1-29_036201272cysG_2COG0007Siroheme synthaseATGGCAATTCAGGATATTTACCCCACAGCACTGCGGCTGCTCGGCCGCCCCGTGCTGGTGGTGGGTGGCGGACCCGTGGCTGCGCGCCGCGCCAAGGGCCTGCTCGACGCCGGTGCACGGGTCACCGTCGTGGCGCCCGTTGCCTCCGCTGCGCTCCGTGAACTCGCCGACGCCGGCCTGCTCGCCTGGGAGCCGCGCACCTATCGCACGGAAGACGTCGACGGCGTCTGGTTCGTCCAGACCGCCACCGGCGATTCCGCCGTGGACACCCAGGTTTCGAAGGACGCCGAGGCGCAGCGCATCTGGTGCGTCAACGCCTCCGATCATGAAGCCTCCGCCGCCTGGACTCCCGCCGTTGCCGTGGTGGACGATGTCAAGATCGCCATCAACGCCGGGGGAGACCCGCGCCGGGCCATGGCATTGCGCGACGCCGTTGCTACCGCCCTGGAAACCGGCGACCTCCCGCTGCGCCGCCGCCGCGTTTCGAAGAACACGGCGTCTGCCGGCTCCGTGGCCCTCGTGGGTGGCGGCCCTGGCGATACCGGCCTCATCACTGTCCGTGGCCGCCGGCTCCTGGGCCAGGCCGACGTCGTGGTGGCAGACCGCCTCGGCCCCCGCGAACTCCTCAACGAACTTGCCCCCGACGTCCGTGTCATCGAGGTGGGCAAGACCCCAGGGAATCATCCGGTGCCGCAGTCCGAGATCAACAGGATCCTCATAGACGAAGCACTCAAAGGCAACCGCGTAGTCCGGCTGAAGGGCGGCGATCCCTACGTCCTGGGCCGCGGGGGCGAGGAAGCCGAATACTGCCGGCAGCATGGTGTCGAGGTTGAAGTGGTTTCCGGCGTCACATCCGCGATCTCAGTTCCCGCCGCCGCAGGCATCCCCGTGACCCACCGCGGCCTGGCCAAGGGCTTCAGCGTGGTCACAGGACACGAGGAACTTTCCGAGGTCCCGGCCCGGGCGGATCACACCATCGTCCTGCTGATGGGCGTGGGCCAGCTGCGCGAATCTGCGGCCGCCCTCCGCGCAGCCGGTTTGCCTCAGGACACTCCAGTTGGCATCGTTGAGAACGGCTATCTGCCCAATCAGCGCGTGACGATCGGCACGCTCGGTTCCATCGCCGACCAGGCGGAAGCCACCGGCGTAGCAAATCCGGCGGTGATCGTCATTGGTGACGTGGTGCGCGTGAGCCCGTTCGCGCCGTCGCACTTCAAAACCGCAGACTATGGCACCACCACCCCGAACAAGCCCCGAGTCCTCACCACCTAGMAIQDIYPTALRLLGRPVLVVGGGPVAARRAKGLLDAGARVTVVAPVASAALRELADAGLLAWEPRTYRTEDVDGVWFVQTATGDSAVDTQVSKDAEAQRIWCVNASDHEASAAWTPAVAVVDDVKIAINAGGDPRRAMALRDAVATALETGDLPLRRRRVSKNTASAGSVALVGGGPGDTGLITVRGRRLLGQADVVVADRLGPRELLNELAPDVRVIEVGKTPGNHPVPQSEINRILIDEALKGNRVVRLKGGDPYVLGRGGEEAEYCRQHGVEVEVVSGVTSAISVPAAAGIPVTHRGLAKGFSVVTGHEELSEVPARADHTIVLLMGVGQLRESAAALRAAGLPQDTPVGIVENGYLPNQRVTIGTLGSIADQAEATGVANPAVIVIGDVVRVSPFAPSHFKTADYGTTTPNKPRVLTTPGPT0003690_1585DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
D1-29_03621942cysKCysteine synthaseATGGAACGTGCGGCGGGAGCAGACGGTGGTGTTCTGGCAGGCATCGGTTCAACGCCGCTGATCGAACTGGGAAAAGTGGTGCCGCCGGGGTCTGCCAGGGTGCTCGCGAAGCTCGAATTCGCCAACCCGACGGGGAGCATGAAGGACCGCATGGCGCTGGCAGCGATAGCGGGAGCCGAAGCACGCGGTGAGATCACCCCCGGCGACACTGTCGTCGAGTACACGGCAGGGACTACAGGCATCTCCCTCGCCTTGGTCTGTGCGGCTAAAGGTTACCGGCTCCACGTCGTATTTTCGGATGCGTTCAGCGATGAGAAACGCCGGACAATGGAGGCCCTCGGGGCAGTTGTTGAGGACGTCCCCAGCGACCACGGACGGATTACGGAGCAACTCATCAAAGCGATGATTGCCAGGGCCGGAGAACTGAGCGTTCAACCAAGTCACTGGGCGTGCGACCAACTCAACAACAAGGACGCTGTCACTGGCTATCTGGCGCTCGGAGATGAAATCTGGCAGCAATCGCACGGCCGGGTGGACGCCCTGGTCCAGTCCGTCGGCACAGCCCACTCCATTCACGGCGCTGCCCGTGCCCTGCGGCAGCACCTGCCCGGGCTGAGCGTCATCGCCGTCGAGCCGGCCGAGTCTTCCGTACTTTCCGGAGGCCCTACTGGCTCCCACCGGATAGAAGGCATCGGGATCGGGTTTATACCGCCACTCTGGGAACCGGAGGCCGTGGATGCCATAGAACTGGTGTCCTCCGAGGACGCGATGGCGATGAGCCGCCGTCTCGCCCGGGAGGAAGGCATCTTCGCCGGCACCTCCTCAGGAGGAAATGTTGTTGCCGCCCTGCGTGTAGCCGAGCAGCTTGGCCCGGACGCGACTGTCGTCACCATCATGGTTGACTCCGGGTTCCGGTACCTCAGCACTGGGCTGTACGGATAGMERAAGADGGVLAGIGSTPLIELGKVVPPGSARVLAKLEFANPTGSMKDRMALAAIAGAEARGEITPGDTVVEYTAGTTGISLALVCAAKGYRLHVVFSDAFSDEKRRTMEALGAVVEDVPSDHGRITEQLIKAMIARAGELSVQPSHWACDQLNNKDAVTGYLALGDEIWQQSHGRVDALVQSVGTAHSIHGAARALRQHLPGLSVIAVEPAESSVLSGGPTGSHRIEGIGIGFIPPLWEPEAVDAIELVSSEDAMAMSRRLAREEGIFAGTSSGGNVVAALRVAEQLGPDATVVTIMVDSGFRYLSTGLYGPGPT0002810_4467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
D1-29_03622969cmpB_2COG0600Bicarbonate transport system permease protein CmpBATGCCAAGTAACCCCACTCCGCTCGCTGAATCCGTCTCTTCGGAACCAACAGCACCTGCAGAACCGAACGAAACCCGGCACATCACCGCGGCCCTGACCCGGTCCTCCACCGGCTCTGAGGACCTGCGCGAGCTGGAATCCGGCCTTGACTCCCTCCAATCCGACGCCGCCCGCAAGGCTCGGATCGACTGGAGCCGGGTGCTCCTGCCGATCGCCGCCCTGGTGGTGCTGATCCTCGTCTGGCAGTTCTACGTGTCGCTCGGCGTCAAGCGGCGGGACCTCGTTCCCGGTCCGCTTGATGTGCTGGGGCAGGTTGGCGTGCTATGGGGTGAGGGGAAGCTGCAGGAGGCTGTCTGGACCTCACTTCAGCGCGGCCTCGTCGGCTTCCTGATCAGTGTCGCCGTCGCCACGCCGGTGGGGCTGCTGTTGTCCCAGGTGGCTCCGCTGCGGCGCGCGTTCGGGCCGCTGATTTCCGGACTGCAGGTACTGCCGTCCGTGGCGTGGGTGCCGGCCGCCATCATCTGGTTTGGCCTGACGGATGCCACCGTGTACTTCGTGGTGCTGATGGGTGCCATCCCGTCCATCATCAACGGCCTGATTTCCGGTGTGGACCAGATCCCGCCGCAGTACCGCCGCGTGGGCACAGTCCTGGGCGCATCACGGCTCCAGATGGCACTGCAGATTATCCTTCCCGCGGCGCTGCCCGGCTACCTGGGCGGGCTCAAGCAGGGCTGGGCGTTCTCCTGGCGCTCGCTCATGGCCGCTGAAATCATCGCTGTGGGCGGGACCATCGGCTTCGGCCTGGGCTCGCTGCTGGACCAGGGCCGCCTGCTGTCCGACATGACCGTGGTGATGTCCGCGATCCTGCTGATCCTCGCGGTCGGCATCCTGATCGAACTGCTGGTCTTCGCGCCGATCGAGAAGCGCCTGCTCCGGAGCCGCGGCCTGCTCTCGGGCAGCACCCGCTAAMPSNPTPLAESVSSEPTAPAEPNETRHITAALTRSSTGSEDLRELESGLDSLQSDAARKARIDWSRVLLPIAALVVLILVWQFYVSLGVKRRDLVPGPLDVLGQVGVLWGEGKLQEAVWTSLQRGLVGFLISVAVATPVGLLLSQVAPLRRAFGPLISGLQVLPSVAWVPAAIIWFGLTDATVYFVVLMGAIPSIINGLISGVDQIPPQYRRVGTVLGASRLQMALQIILPAALPGYLGGLKQGWAFSWRSLMAAEIIAVGGTIGFGLGSLLDQGRLLSDMTVVMSAILLILAVGILIELLVFAPIEKRLLRSRGLLSGSTRPGPT0001145_1337DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_03623726cmpCCOG0715Bicarbonate transport ATP-binding protein CmpCATGCCAGTCGTACTGGAAAACCTGGGCAAGCGCTTCGGCGACGGCGCCCCGGTGCTGGACGACGTCAACGCCAACATCGGGAAGGGCGAGTTCGTGGCCCTCCTCGGAGCCTCCGGCTGCGGCAAGTCCACCCTGCTGAACATCATGGCGGGACTGGAGGTCCCGACGTCGGGCGCTCTTGAAGTGCCCAGCGACGGCGCGGCCTTTATGTTCCAGGACGCCGCCCTCTTCCCCTGGCTGACGGCCCGGGAGAACATCGAGCTGGCGCTGAGGCTGCGCGGCGTGGGCAAGGCAGACCGGCGCGTCAAAGCGCAGGAACTCCTGGAGCTGGTGCACCTCGGTACTGCCGGTGACAAGCGGCCGCACGAGCTGTCCGGCGGCATGCGGCAGCGCGTGTCCCTGGCCCGTTCCCTGGCGCAGGACCGGCAGCTGCTGCTTATGGACGAGCCGTTCGCGGCCCTGGACGCCATCACCCGCGACCTCCTCCACGACGAGCTGGAGCGCATCTGGAAGGAAACCGGGCGCACCATCGTTTTTGTCACCCACAACGTCCGCGAGGCCGTCCGGCTGGGCCAGCGCGTGCTGCTGCTGTCCTCCCGTCCGGGCCGCGTGGTCCAGGAATGGGCCGTGACCGAGGAACACCGAACCGACGCCGGGCTTGCCGGACAGCTGACCGGGGTCATCACAGCCCGGCTGCGGGAGGAGATTCGCCGCCATGCCAAGTAAMPVVLENLGKRFGDGAPVLDDVNANIGKGEFVALLGASGCGKSTLLNIMAGLEVPTSGALEVPSDGAAFMFQDAALFPWLTARENIELALRLRGVGKADRRVKAQELLELVHLGTAGDKRPHELSGGMRQRVSLARSLAQDRQLLLMDEPFAALDAITRDLLHDELERIWKETGRTIVFVTHNVREAVRLGQRVLLLSSRPGRVVQEWAVTEEHRTDAGLAGQLTGVITARLREEIRRHAKPGPT0001140_8366DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_036241146hypothetical proteinATGACTAGTTCCAAGCCCGGGATGATTCGCATCGTGGCAGGCGAAAGCGCGGTGCCCAAGCGCAAGCGTGCCATCGAGGCTGCCCTCGCCATCGGACTGGTCCTCCTGATCGCTGCAGGTGCCGTGGTGGCTTCCACAGTCTCCCGCAATGCCGCCGCTGCCTCCCCGCCGCCCACGCCGGCAGCCGAGCTCAAGCTGGGCTACTTCGGAAACCTGACCCACGCTCCCGCCCTGGTGGGCCTCAAGCAGGGCTTCCTGGCCAGGAACCTGGGCAGCACCAAACTCAGCACGGAGACCTTCAACGCCGGACCTGCCGCCATCGAAGCCCTGAACGCGGGCGCCATTGACGCTGCCTACATCGGCCCCAATCCGGCCATCAATTCCTTTGTCAAGAGCAAGGGTGAATCCGTGAGCATCATCGCCGGCGCCGCCGCCGGTGGTGCCCAGCTGGTGGTCCGGCCTGAGATCAACTCGGCGTCGGACCTCAAGGGCAAGACCCTCGCCTCCCCGCAGCTCGGCGGCACCCAGGACGTGGCGCTGCGCGCCTGGCTGGGCTCACAGGGCTACAAGACCAACGTGGACGGCAGCGGTGATGTCCTGATCAACCCCACCGAGAACGCCCAGACGCTCAAGCTGTTCCAGGACGGAAAGCTCGACGGCGCTTGGCTGCCTGAACCGTGGGCGTCCCGGCTGGTGCTCCAGGCCGGAGCCAAGGTCCTGGTGGACGAAAAGGACCTCTGGGACGGTTCGGCCTCCGGCAAGCCCGGCGAGTTTCCCACCACCATCCTGATCGTTAACAAGACGTTCGCGGCCGAGCACCCGGACACAGTGAAGGCCCTGCTGAAAGGCCATGCAGAATCGGTGGCATGGCTCAACGACGCCCCCGCCGCCGAGAAGTCCGCTGTCATCAACGCCGCGCTGCAGGAGTCGGCCGGAGCCGCGCTCCCGGCCGACGTCATCGAAAGGTCCTTGGGCAACATCGTGTTCACCGTGGATCCGCTGGCCGGAACCTACCCCAGGCTGCTCAAGGACGGCGTGGAGGCCGGCACCACCAAACAGGCGGACATCAAGGGCCTGTTCGACCTCAAAGCCTTGAACGAAGTGACCGGTGAGTCCATACCGGCCGCCGGCCTCGGGGACGACTAAMTSSKPGMIRIVAGESAVPKRKRAIEAALAIGLVLLIAAGAVVASTVSRNAAAASPPPTPAAELKLGYFGNLTHAPALVGLKQGFLARNLGSTKLSTETFNAGPAAIEALNAGAIDAAYIGPNPAINSFVKSKGESVSIIAGAAAGGAQLVVRPEINSASDLKGKTLASPQLGGTQDVALRAWLGSQGYKTNVDGSGDVLINPTENAQTLKLFQDGKLDGAWLPEPWASRLVLQAGAKVLVDEKDLWDGSASGKPGEFPTTILIVNKTFAAEHPDTVKALLKGHAESVAWLNDAPAAEKSAVINAALQESAGAALPADVIERSLGNIVFTVDPLAGTYPRLLKDGVEAGTTKQADIKGLFDLKALNEVTGESIPAAGLGDDPGPT0001135_844DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-29_036251167rtcBCOG1690RNA-splicing ligase RtcBGTGGAACAGATCAACAGCAAACTCATCAACTGGGCCTCGATCCTGGATGACAAGACGCGTGAGCAGGCCCTGGCAACATCCCGGCTGCCGTTCATCTACCCGCACCTGGCGCTGATGCCGGACGCGCACCTGGGCAAGGGCGCCACCGTGGGGTCCGTGATTCCCACCGAACGTGCCATCATCCCGGCCGCCGTGGGGGTGGACATCGGCTGCGGGATGATCGCCGTCCGGACCCAGTACTCGCTGAAGGACCTGCCGAAGGACAGGAAGCGGTTGCGGGAGAACATCGAACGCGCCATCCCTCTCTCCGCCGGACACAACAACCGCAAGGTCCAGGCAACTGCCGAACCCCGCGTTGCCCAACTGTCCAGGATGGCCGCCAAGGCCGGGTTCAGCCCTGCGCAGTATGTGGCCAACTGGGAGCTGCAGCTTGGCTCGCTGGGATCCGGAAACCACTTCATCGAGGTGTGCGCCGACGAAACCGACGGCGTCTGGCTGTTCCTGCACTCCGGCTCGCGGGGCGTGGGCAACAAGATCGCGCAGCACCATATCGGCGTCGCGCAGAACCTGACCCGGAAGAGGCAGATCACGCTTCCCGATCCGGACCTTGCCTACCTTGAGGAGGGCACGCCGCAGTTCAGCCGCTATATGGAGGAGCTGCGCTGGGCCCAGCATTTCGCCCTGCTGAACCGCGAGGAAATGATGGACCGCGTGATCACCCAGTTCAGCACCTGGGTGGGCGGGCCGGTGAAGGAGCAGGAGCGGATCAACTGCCACCACAACTTCACCCAGCAGGAAACGCACTATGGAAAAACCGTCTGGGTGTCGCGCAAGGGCGCCATCAAAGCCGAGCACGGCGATCCGGGACTGATTCCCGGTTCCATGGGGACGGCGTCGTACGTGGTGGAGGGCCTGGGCAATCCAGTGTCGCTGAACTCCTCACCGCACGGGGCTGGGCGCGAGTACTCACGTAACGCTGCCCGCAAAACGTTCTCGCTGGCGGAGCTGAAAACGGCCATGCACGGGATCGAATTCCGCGCTACGGAGGCCTTCATCGACGAAATCCCCGCGGCCTACAAACCCATCGACGTGGTGATGAGGGACGCGGCGGACCTCGTCACAATCCGGCATAAGCTCCGCCAGCTGGTCAACGTCAAGGGCAACTGAMEQINSKLINWASILDDKTREQALATSRLPFIYPHLALMPDAHLGKGATVGSVIPTERAIIPAAVGVDIGCGMIAVRTQYSLKDLPKDRKRLRENIERAIPLSAGHNNRKVQATAEPRVAQLSRMAAKAGFSPAQYVANWELQLGSLGSGNHFIEVCADETDGVWLFLHSGSRGVGNKIAQHHIGVAQNLTRKRQITLPDPDLAYLEEGTPQFSRYMEELRWAQHFALLNREEMMDRVITQFSTWVGGPVKEQERINCHHNFTQQETHYGKTVWVSRKGAIKAEHGDPGLIPGSMGTASYVVEGLGNPVSLNSSPHGAGREYSRNAARKTFSLAELKTAMHGIEFRATEAFIDEIPAAYKPIDVVMRDAADLVTIRHKLRQLVNVKGNNANANANANA
D1-29_036261440cysNCCOG0529Bifunctional enzyme CysN/CysCATGAGCACCGAGACTTCACTCCTGGCCGCCGAGCTGGAAACAGCCCTGCCCACCACCCTGTTCCGCTTCGCCACCGCCGGATCGGTCGACGACGGCAAGTCCACTCTGGTGGGCCGCCTCCTGCACGACTCCAAGGCGATCCTGGCAGACCAGCTCGACGCCGTCGCCCGCACCTCAGCGGACCGCGGCTTCGGCGGTGCCGGCGCCACTGGCACCCAGGCGATCGACCTCGCCCTCCTGACGGACGGCCTCCGCGCCGAGCGCGAGCAGGGCATCACCATCGACGTGGCCTACCGCTACTTCGCCACCGACCAGCGCAGCTTCATCCTGGCCGACTGCCCCGGTCACGTGCAGTACACCAAAAACACGGTGACCGGCGCGTCCACCGCGGATGCCGTCGTCGTACTCATTGACGCCCGCAAGGGTGTCCTGGAGCAGACGCGCCGGCACCTGTCCGTGCTGCAGCTGCTGCGGGTGGCGCACGTGATTGTGGCCGTGAACAAGATCGACCTGGTGGACTTCAGCGAGTCGGTGTTCCGCGAGATCCAGGCTGACGTGCAGCGGGTTGCCCGCGAACTGGGCATCGGTTCCGCCGAGCTGGGCACCGCGGACCACATCGATGACCTGCTGGTCATCCCCGTGTCCGCGCTCGACGGCGACAACGTGGTGGAGCGCTCCGAGCGCACTGCCTGGTATGACGGTCCTGCCCTGCTGGAGGTCCTGGAGACCCTGCCGGCCGCCGACGAAATCGACACCCAGCTGGAAAGCTTCCGCTTCCCGGTGCAGCTGGTGGTCCGGCCGCAGGGTGCGCTGGCTCCCGACGCCGTGGCTGCCGGCCTGGACGTTGAGGCCTACCGCGACTACCGTGCGTACGCAGGCCAGATCACCGAGGGTTCCGTCAAGGTGGGGGACAAGGTTTCTGTGCTGACCCCCGGCCAGGGCCCCCGCACCACCACCGTGGTGGGCATCGACTTCGCCGGAGCCTCGCTCCAGGAAGCCGCCGCTCCGCAGTCTGTGGCGATCCGCCTGGCTGACGAGTTCGACGTCGCCCGCGGTGACACCATTGCCGCCGCCGGAACTGTCCGTGAATCGTCGGCTGACCTGTACGCTGCCCTGTGCTGGCTCTCACCCAAGCCGCTGCGTGAAGGCGCCAAGGTGCTGGTCAAGCACGGCACCCGCACCGTCCAGGCCTTGGTCCGCAACGTCAGCGGCAAGCTTGACCTGGCCTCCTTCAAGCTCGAAGCCACATCAAGCCTTGAGCTGAACGACATCGGCCACGCGCAGCTCCGGCTCTCCGCGCCGCTGCCGCTGGAGAATTACACGCACCACCGCCGCACCGGAGCGTTCCTGGTGATCGATCCGCTGGACGGCAACACGCTGGCCGCAGGCCTGATCAAGGACCACCCGGGCGACCACGAGGACGAGCGCTACTCCATCTGAMSTETSLLAAELETALPTTLFRFATAGSVDDGKSTLVGRLLHDSKAILADQLDAVARTSADRGFGGAGATGTQAIDLALLTDGLRAEREQGITIDVAYRYFATDQRSFILADCPGHVQYTKNTVTGASTADAVVVLIDARKGVLEQTRRHLSVLQLLRVAHVIVAVNKIDLVDFSESVFREIQADVQRVARELGIGSAELGTADHIDDLLVIPVSALDGDNVVERSERTAWYDGPALLEVLETLPAADEIDTQLESFRFPVQLVVRPQGALAPDAVAAGLDVEAYRDYRAYAGQITEGSVKVGDKVSVLTPGQGPRTTTVVGIDFAGASLQEAAAPQSVAIRLADEFDVARGDTIAAAGTVRESSADLYAALCWLSPKPLREGAKVLVKHGTRTVQALVRNVSGKLDLASFKLEATSSLELNDIGHAQLRLSAPLPLENYTHHRRTGAFLVIDPLDGNTLAAGLIKDHPGDHEDERYSIPGPT0002400_265DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002400-cysN-K00956NANA
D1-29_036271065cysDCOG0175Sulfate adenylyltransferase subunit 2ATGAGCACCCAAACCACCAACGAGGACCTGGAGTTGTCTGTGCTGGAAACCGACGCTACTGAGACGCCGAATGCCGCCCAGGGAGTGGCATCGGGCCTGTCGGAGCCGCGCGCAGGACTGATCGAAGATCAGTCGCGCGGCGAAGGGGCGGGGGCGGCATTCGGCGTCGCAACGCGCCTCTCCAGCCTGGACACGCTTGAGTCCGAGGCCATCCACATCATCCGCGAGGTTGTTGCCGAGTTCGAGAAGCCCGCGCTGCTGTTCTCCGGCGGCAAGGACTCCGTGGTCATGCTGCACCTGGCCACCAAGGCGTTCTGGCCGGGCAAGGTCCCGTTCCCGGTGCTGCACGTGGACACCGGCCACAACTTCCCCGAGGTCATCGACTTCCGCGACCGGACGGTGGAACGGCTGGGACTGAAGCTCGTCGTCGGAAGTGTCCAGGAGTTCATTGACCGCGGCGAGCTGGCCGAGCGTGCCGACGGCACCCGCAACCCGCTGCAGACCGTTCCGCTGCTGGACGCCATCCAGCAGAACAAGTTCGACGCCGTCTTCGGCGGCGGCCGCCGTGACGAGGACAAGGCCCGCGCCAAGGAGCGCATCCTGAGCCTCCGCGACGAGTTTGGCCAGTGGGACCCGCGCAACCAGCGCCCCGAGCTGTGGAACCTGTACAACGGCCGCCACACCGTGGGCCAGCACGTCCGCGCCTTCCCCATCAGCAACTGGACCGAGCTGGACATCTGGCGCTACATCGAACGCGAGAACATCGAGCTGCCGGGCCTCTACTACGCCCACGACCGCGAAGTGTTTGCCCGCGACGGCATGTGGCGTGCCGTGGGCGAGGTTTCCCAGCCGCTGCCGCACGAGGAAGTCATCATCAAGACGGTCCGCTACCGCACCGTGGGCGACATGTCCTGCACCGGTGCCGTTGAATCGGCCGCAGCCACCGTGAGCGACGTTGTGATCGAAGTTGCCGCCTCCACCATCACCGAACGTGGTGCCACCCGTGCAGATGACCGCATCTCCGAGGCAGCCATGGAAGACCGCAAGAAGGATGGTTACTTCTAAMSTQTTNEDLELSVLETDATETPNAAQGVASGLSEPRAGLIEDQSRGEGAGAAFGVATRLSSLDTLESEAIHIIREVVAEFEKPALLFSGGKDSVVMLHLATKAFWPGKVPFPVLHVDTGHNFPEVIDFRDRTVERLGLKLVVGSVQEFIDRGELAERADGTRNPLQTVPLLDAIQQNKFDAVFGGGRRDEDKARAKERILSLRDEFGQWDPRNQRPELWNLYNGRHTVGQHVRAFPISNWTELDIWRYIERENIELPGLYYAHDREVFARDGMWRAVGEVSQPLPHEEVIIKTVRYRTVGDMSCTGAVESAAATVSDVVIEVAASTITERGATRADDRISEAAMEDRKKDGYFPGPT0002405_456DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957NANA
D1-29_03628729cysHCOG0175putative phosphoadenosine phosphosulfate reductaseGTGAGCAACGACCAGTCAACGGCACCGGCCCTCCGCAGCCACGACGAACTCAAGGCGCTGGCCGAATCCGGCGCTGCCGAACTCGGCTGGGACGCACCCGCCCGCGACGTCATCGCCTGGGTGGAGCGCAACTTCGACCTGCCCGCAGTAGCTGTCGCCTGCTCCATGGCCGACTCCGTGCTGCCTGCCCTGGTGGCTGACCAGATGCCCGGCGTCGACGTCCTGTTCCTGGAAACCGGCTACCACTTCCCGGAGACCTACGCCACGCGGGATGAGGTGGCAGCAAACCTTCGCGTCAACGTGGTGGACGTGCTTCCGGAGAACACTGTGGAACAGCAGGACCGGCTCCTGGGCAAGGACCTCTTTGCCCGCGACGCCGCCCAGTGCTGCGCCCTCCGCAAGGTGGCCCCGCTGCGCCGCACCCTGGCCGGCTACGAGCTGTGGTTCACCGGCGTCCGCCGCGACGAGTCACCCACCCGCACCAACACGCCGCTGGTCACCTGGGACGAGGCTAACGGCCTGGTCAAGGTCAACCCGGTGGCCGCCTGGACGTTCGACCAGCTGGTGCAGTACTCCGATGACAACCTCCTGCCCGTGAACCCGCTGCTTTCCCAGGGTTACCCCTCCATTGGCTGCCAGCCCTGCACCCGGAAGGTGGCGCCGGGCGACGACCCCCGCGCCGGCCGCTGGGCAGGGACCGACAAGACAGAATGCGGACTACACGTATGAMSNDQSTAPALRSHDELKALAESGAAELGWDAPARDVIAWVERNFDLPAVAVACSMADSVLPALVADQMPGVDVLFLETGYHFPETYATRDEVAANLRVNVVDVLPENTVEQQDRLLGKDLFARDAAQCCALRKVAPLRRTLAGYELWFTGVRRDESPTRTNTPLVTWDEANGLVKVNPVAAWTFDQLVQYSDDNLLPVNPLLSQGYPSIGCQPCTRKVAPGDDPRAGRWAGTDKTECGLHVPGPT0002785_715DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390NANA
D1-29_036291749sirCOG0155Sulfite reductase [ferredoxin]ATGACTGATACAGCTCTAGCCGGAGCGTCCGCGGACTCCGCTGCCTCCAAGCGCCCCGCACGCACCTCTTCCCGCCCAGCCGCCAAGCCGCACGGGCAGTGGAAAGTGGACGGCAAAACTCCGCTGAACGCCAACGAAACCTGGAAACAGGAAGACGACGGCCTTAACGTGCGCGAGCGTATCGAGTCCATCTACTCCAAAGAAGGCTTCGACTCCATCCCCGGCCAGGACCTGCACGGCCGCTTCCGCTGGTGGGGCCTGTACACCCAGCGCAAGCCCGGGATCGACGGCGGCAAGACCGCCACGCTTGAGCCGCACGAGCTTGAGGACAAGTACTTCATGCTCCGGGTCAGGATCGACGGCGGTGCGCTCACCACCGAGCAGCTGCGCGTCATCGGCCAGATCTCCGTTGACTTCGCGCGGGACTCGGCCGACCTCACCGACCGCCAGAACATTCAGCTGCACTGGATCCGGGTGGAAGACATCCCGGAAATCTGGACCCGCCTGGAAGGCGTTGGCCTGTCCACCACCGAGGCCTGCGGCGACGTTCCGCGCGTCATCCTGGGCTCCCCGGTGGCCGGCATCGCCAAGGACGAGATCATCGACCCCACGCCGCTGATCGCTGAACTGGGCGAACGCTTCATCGGCAACCCGCTGCTCTCCAACCTGCCGCGCAAGTACAAGACCGCCATCACCGGCCACCCCAGCCAGGACGTGGTCCACGAGATCAACGACTTCGCCCTCGTGGGAGTCAAACACCCCGAGCTGGGCGTGGGCTACGACCTCTGGGCCGGCGGCGCCCTGTCCACCAACCCGATGCTCGGCAAGCGCCTGGGTGCCTTCGTGAAGCCTGAGGAAGCCGCCGAAGTATGGCTCGGCGTCACCAGCATCTTCCGCGACTACGGTTACCGCCGCATGCGCACCAAGGCCCGCCTGAAGTTCCTGATGGCCGACTGGGGCCCGGAGAAGTTCCGCCAGATCCTCGAGGACGAATACCTGGGCTACAAGCTGGCCGACGGTCCCGCCGCGCCCAAGCCCACCTCGCCGGGCGACCACATCGGCGTGCACGAGCAGAAGGACGGCAAGTTCTTCATCGGCGCCACCCCGCTGGCCGGCCGCCTCTCCGGCGCTGCGCTGGTCAAGCTCGCTGACACCCTCGAGGCCCGCGGCTCCTACCGGCTGCGCACCACCCCGCACCAGAAGCTCGTGGTGCTGGACGTCGCCAAGGACCAGGTTGAGCCGCTGGTGGCCGAGCTGGACGCCCTGGGCCTCTCCGCCCGGCCGTCCGTGTTCCGCCGCGGCACCATCGCCTGCACCGGCATCGAATACTGCAAGCTGGCCATCGTGGAAACCAAGGTCACCGCCGCAACCGCCGTCGCCGAGCTGGAACGCCGCCTGGCGGACCTCGCCGCGTCCGGCGAACTGCCGCACGCGCTGTCCCTGCACATCAACGGCTGCCCCAACTCCTGCGCCCGCATCCAGACCGCGGACATCGGCCTCAAGGGCATGATGCTGCCAACGCCCGACGGCGACCCCACCCCCGGCTTCCAGGTCCACCTGGGCGGCGGGCTGGCTTCCACCGACCGGGAAGAGGCCGGCCTGGGACGCACCGTCCGCGGGCTCAAGGTCTACGTCGAGGACCTGCCGGACTACGTGGAGCGGGTTGTCCGCTCCTTCGTGGCGAAGCGCTCCGAGAACCAGACGTTTGCCGAATGGGCACACGCAGCTGATGAGGGGGACCTGCAGTGAMTDTALAGASADSAASKRPARTSSRPAAKPHGQWKVDGKTPLNANETWKQEDDGLNVRERIESIYSKEGFDSIPGQDLHGRFRWWGLYTQRKPGIDGGKTATLEPHELEDKYFMLRVRIDGGALTTEQLRVIGQISVDFARDSADLTDRQNIQLHWIRVEDIPEIWTRLEGVGLSTTEACGDVPRVILGSPVAGIAKDEIIDPTPLIAELGERFIGNPLLSNLPRKYKTAITGHPSQDVVHEINDFALVGVKHPELGVGYDLWAGGALSTNPMLGKRLGAFVKPEEAAEVWLGVTSIFRDYGYRRMRTKARLKFLMADWGPEKFRQILEDEYLGYKLADGPAAPKPTSPGDHIGVHEQKDGKFFIGATPLAGRLSGAALVKLADTLEARGSYRLRTTPHQKLVVLDVAKDQVEPLVAELDALGLSARPSVFRRGTIACTGIEYCKLAIVETKVTAATAVAELERRLADLAASGELPHALSLHINGCPNSCARIQTADIGLKGMMLPTPDGDPTPGFQVHLGGGLASTDREEAGLGRTVRGLKVYVEDLPDYVERVVRSFVAKRSENQTFAEWAHAADEGDLQPGPT0002825_578DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002825-sir-K00392NANA
D1-29_03630735hypothetical proteinATGAACAGCCCCATCATGATCGCCTGCGCCCACGGGACGTCCAACCCCCAGGGCGCCGCGGAGGTCAACGCCCTGCGCGATGCCATCGCGGCCCTGCGCCCCGGACTCGACGTGCGCGAGGCCTATGTGGACGTCCAGCAGCCGGATCTTGTGGACGTGATGGCGTCGCTCCCCGAAGGCGAGACGGCTGTGGTGGTGCCGCTGCTGCTAAGCGTGGGCTACCACGTCAAGGTGGACATCGCCCGGGCCGTCAAGAGCCGGCCGGGAAGCCTCGCCGCCGCGCCGTTGGGCCCGGACCCCAGGCTGGCAGCCCTGCTGGACCAGCGCCTGCGTGAGGCGGGCGTCACCGACCGCGACGCCGTCGTCCTGGCCGCTGCCGGGTCTTCCAACCCCAACGCAGCCGTCAGCGTCGAGGAACTCCTGGGGCACCTGAGCGAGCTGCGGTCCAACAGGATCGTCGCCGCCTACGGAGCGTCCGCCAAACCCTCGGTGCCCGACGCCGTCGCCATGCTCCGCGAGGAAGCCGAGGGCGGTGCCGGCGCGGGGGAGTCCGCCGGCGGTGTTGACCTGGGCGGCCGCGTGGTGATCGCCTCCTACCTCCTGGCGCCGGGCTACTTCCATGACCAGCTTGCGAAGGCCGGGGCCGACCTCGTGACTGCGCCGTTGCTGCCGTCGCCCGTGCTGGCCGAGATTGCGCTGGAACGCTACGACGCCGCCGTCGCAGCCGGTCGCTAAMNSPIMIACAHGTSNPQGAAEVNALRDAIAALRPGLDVREAYVDVQQPDLVDVMASLPEGETAVVVPLLLSVGYHVKVDIARAVKSRPGSLAAAPLGPDPRLAALLDQRLREAGVTDRDAVVLAAAGSSNPNAAVSVEELLGHLSELRSNRIVAAYGASAKPSVPDAVAMLREEAEGGAGAGESAGGVDLGGRVVIASYLLAPGYFHDQLAKAGADLVTAPLLPSPVLAEIALERYDAAVAAGRPGPT0003690_20DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
D1-29_03631669hypothetical proteinATGACATTCCCTTTTGACATCGCCCTGGTATGGCTGGACCTGGCCGGTGTCTTCTTCTTCGCCGTATCCGGATCCCTCCTGGCGGCCCGGAAGCAGTTCGACGTGGTGGGCTCGCTGCTGCTGGCCTCCCTCGTCTCCCTGGGTGGCGGCATCATCCGCGACATCATCCTCAACACCACTCCGGCCGCCTTCACCAATCCGGCCTACCTGGCTCCCCCGGTCCTGGCCACCGTGCTGGTCTACTTCCTCTTCTCCAGCGTCCAGCGCTTCACCTCGCTGCTGACCCTGTTCGACGCCGGCGGGCTGGCCCTGTTCTGCATCACCGGAACCCTCAAGGCACTTGCACTGGGCATCAACCCGGTGGCGGCCGTGCTTTTGGGAGTTACGACGGCGGTGGGCGGCGGCCTGCTGCGCGACATCACCGCCAATGAGGTACCGCAGCTGTTCGATCCCAGGGACCTCTATGCACTGCCGGCCTTCAGCGGCGCGGTGTTAACCGCAGTGCTGTGGGTTCTGGGCGGCTTCACTGCAGTGAGTGCGTGCGGGGTGGCGGCTGTGGTTTTCGCCTTCCGTGTGGTGGCCTGGCGCCGGTCCTGGCGTATTCCTTTGGCTGTTCGCGGCTGGCAACGGCTTGGCGTTGACGAGGGCAAGTTGAGGGACGGAAATTAGMTFPFDIALVWLDLAGVFFFAVSGSLLAARKQFDVVGSLLLASLVSLGGGIIRDIILNTTPAAFTNPAYLAPPVLATVLVYFLFSSVQRFTSLLTLFDAGGLALFCITGTLKALALGINPVAAVLLGVTTAVGGGLLRDITANEVPQLFDPRDLYALPAFSGAVLTAVLWVLGGFTAVSACGVAAVVFAFRVVAWRRSWRIPLAVRGWQRLGVDEGKLRDGNNANANANANA
D1-29_03632423hypothetical proteinATGACTGACATGTTCCTCGAGAAATTCCGCGCGCTTGTTCCGAAGTATCTCGAAGACGAATGGCAGGAAGAGGACGGGCTGCCCACGGATGAGCTTGATGCCGCCCTCGCCGAACACCAATTCCAGGTTCCCCTGGTCCTGCGCGAGTTCTACCAGGCCCTCGGCGGCTGCGAGGACCTCATGGAGGCCTACCACTACTTCTGGGATCCCGAAGAGCTGGAAGTCGATGACGAAGGCTTCCTGATGTTCATGGAGGACGAGGAAGAGCAGTTCACCTGGGGCTTCCGCGTAGGCGACCTCAGCGTTCCCGATCCCATTGTGTGGCGCCGCAACAACGCCCGAGGCCAGTGGAAGAACGAAGAAGGAACCTTCTCTGAGTTCGTCTTCGACATGTTCGAGTGGGCGTTCAACGACGAAGACTAGMTDMFLEKFRALVPKYLEDEWQEEDGLPTDELDAALAEHQFQVPLVLREFYQALGGCEDLMEAYHYFWDPEELEVDDEGFLMFMEDEEEQFTWGFRVGDLSVPDPIVWRRNNARGQWKNEEGTFSEFVFDMFEWAFNDEDNANANANANA
D1-29_03633435hypothetical proteinATGGTGCAATCAGCGGTGGGACGCGGAGACATAGCGCTGGACTTCCTCTACTCAAAGTCACCTGGGCGGCGGAACGGCAAGGTGCGGGACGTGCTCGACCTGCTGATTCCCAGAGCGGACTCACTTCTGGAAGTCTTGGCAAACACCCATTTTGAGCGGGCCGGCCTCCGCGTCCGCAGGCACGTATTCATCCCTGGAGTGGGCGAAGTGGATTTCCTGGTTGAGGACTGCCTGGTTGTCGAACTCGACGGGTCCACACACTTTGAACCAAAGGCTGTGAAGAGGGACCAGCGGCGGAACAACAGGAGCGTTCTGGGTGGCTACCTCGTATTGCGGTACTACTACGCAGACGTTGTTCACTCCCCGGACGATATGGTGGCCGAAGTGCTGGCAGTTCTTGAGCTGAGGCGTCAGGGCAGGTTCCATGGAGCCTGAMVQSAVGRGDIALDFLYSKSPGRRNGKVRDVLDLLIPRADSLLEVLANTHFERAGLRVRRHVFIPGVGEVDFLVEDCLVVELDGSTHFEPKAVKRDQRRNNRSVLGGYLVLRYYYADVVHSPDDMVAEVLAVLELRRQGRFHGANANANANANA
D1-29_036341101hepTCOG0142Heptaprenyl diphosphate synthase component 2GTGACCAACTCCGCAGACCACAGCTGGACGCACGCCGGGCACGGCCTGCCGGACTCCGAACCCAGCCTCAACACCACCGCCATTGCCACGGGACTTCAGCTGCCCGCAGGCTTCGCGGCCATCGCGGAGGATGCCGAGCTGGGCCCCGCCATCACCACCAACCTGGCGCGGGTGGAGAAAAAGCTGCGCGAAGCCATTGCCAACTCCGATCCTCTGGCTGATGCAACGTCGCGTCATCTGGTGGAGGCCGGCGGCAAGCGTATCCGTCCCCTCCTGACGCTGCTGTGCGCGCACCTTGGCGACGCCTCGCTGCCCGCTGTGGTCCAGGCCGCGGTGGTGGTGGAACTGACACACCTGGCCACGCTCTACCACGATGACGTGATGGACTCGGCTCCCTTCCGCCGCGGCGCCCCCACGGCCCACGAGGTCTGGGGAAACTCCGTGGCTGTGCTCACCGGCGACCTCATCTTTGCCCGCGCCTCCATTCTGGTGTCCGAGCTGGGCTCCCGCGCCCTGGGCATCCAGGCCCGTACATTCGAGCGGCTCTGCCTGGGCCAGCTCCACGAAACCGTGGGGCCGGGTCCGGACGAGGACCCGGTGGAGCACTACCTCTCCGTTATCGCGGACAAGACCGGCTCCCTGGTGGCTGCCTCCGGCCAGCTTGGCGCCATCTTCGCCGGCGCCGATCCTGCCTACGAGGACCTGCTGGTGGAGTACGGCGAAAAGGTGGGTGTGGCCTTCCAGCTCGCCGACGACGTCATTGATGTCACCGGTGTCAAGGTCAAGTCCGGCAAGTCCCCGGGCACGGACCTGCGCGAAGGTGTACCCACGCTTCCGGTCCTGTTCCTGCGCCGGGATGCGGCGTCCGGTGACCAGTCCGCCGTCGAACTTTTGAAGCTTATCGACGGCGACCTCACGTCAGATTCTGCCCTGGCTGCCGCGGTGGCCGGGCTGCGCGAACACCCCGTCACGGCCGAGTCGTGGGTTGTGGCGCGTGGCTGGGCTGACGAAGCAATTGCTGCCCTGGCGCCGCTGCCGGAGGGTGTGGTGAAGGCCTCGCTGTCCAACTTTGCCCTGGCAGTGGTGGACCGGGCCAGCTAGMTNSADHSWTHAGHGLPDSEPSLNTTAIATGLQLPAGFAAIAEDAELGPAITTNLARVEKKLREAIANSDPLADATSRHLVEAGGKRIRPLLTLLCAHLGDASLPAVVQAAVVVELTHLATLYHDDVMDSAPFRRGAPTAHEVWGNSVAVLTGDLIFARASILVSELGSRALGIQARTFERLCLGQLHETVGPGPDEDPVEHYLSVIADKTGSLVAASGQLGAIFAGADPAYEDLLVEYGEKVGVAFQLADDVIDVTGVKVKSGKSPGTDLREGVPTLPVLFLRRDAASGDQSAVELLKLIDGDLTSDSALAAAVAGLREHPVTAESWVVARGWADEAIAALAPLPEGVVKASLSNFALAVVDRASNANANANANA
D1-29_036351344menJCOG0644Menaquinone reductaseGTGAATGTTCTGATTGTCGGCGCGGGGCCGGCCGGGTCCACCGCTGCGTACTACCTTGCCCGGGCCGGCGTGCCCGTGACCGTCCTGGAGAAGACCAGCTTCCCGCGCGAGAAAGTCTGCGGCGACGGCCTCACCCCGCGCGCCGTGCGTGAGATCCAGAAGCTCGGCCTGCCGCACCCTGAGTCCGATGGCTGGCGCCGCAACAAGGGCCTGCGCCTGATTGCGGGCGGGCGGACCATCGAGCTTCCCTGGCCCGAGGTCAGCGACTTTCCCCAGTACGGCCTGATCCGCACGCGCCTGGGCTTTGACGAGGAACTGGCCCGCCATGCCCAGGCTGCCGGCGCCGAGATCCTCGAGCGGCACAGCGTCACGGAAGCCCTGCGCAACGAGGACGGCCGCGTGACCGGTGTCCGCGCAGCGCTGCTGGATGAGTCCGGACGCAAGACGGGGGAGACGCGCGAGTTCAGTGCCGACGTCGTCCTCGCCGCGGACGGCAACTCAACCCGCACAGCGGTGTCGTTGGGAATCCAAAAGCGCGACGACCGTCCCCTGGGTGTGGCCGTGCGCACCTACTTCACCTCCCCGCGCCACGACGACGACTGGATGGAAGGCTGGCTGGAACTCCCGGGCCGCGACGGCAGCCTGCTCCCCGGCTACGGCTGGGTGTTCGGCGTGGGCGACGGCACCTCCAACGTGGGCCTGGGCATCCTGAACTCGTCCAAGGAATTCGGCCAGCTGGACTACAAGCAGGTCCTGCGCGATTGGACCGCCGGCATGCCCGCCGAGTGGGGCTTCACGCCGGACAACGAGGTGGGGGACATCCGCGGCGCCGCGCTCCCCATGGGCTTCAACCGCACTCCGCATTACTCGCCCGGCCTCTTGCTCTTGGGCGACGCCGGCGGCATGGTGTCCCCCTTCAACGGCGAGGGCATCTCCTACGCCATGGAGTCCGCGCGCTTTGCGGCCGAGTTCATCATTGACGCCTCCTCACGCTCTCTGGCGGCCGCCGGAACGTACGACGCCGACGCGCACCTTGCGGGGTACGCCGGCTACGTGCGGAACCAGTGGGGCTCGCACTTCACGCTTGGCAGGGCCTTCGCCGCGCTGATCGGGAAGCCCGCCGTGATGAAACTCGCGCTGCGGACTGGAATGCCCGTCCCGGTCCTGATGAGGTTTGTGGTGCGGCTGCTGGCCAACCTCACAGACCCTGCCGCCAAGGGCTTCGAGGACAGGGCCATCCGCGTCCTGGAGTCGCTGGTTCCTGCCACAGCCAATACAGCGACGCGCACCCCAACGCACGCCAATCAGCGGTATCCGCAACAAAAAGTTAGGGTTAACCCGTGAMNVLIVGAGPAGSTAAYYLARAGVPVTVLEKTSFPREKVCGDGLTPRAVREIQKLGLPHPESDGWRRNKGLRLIAGGRTIELPWPEVSDFPQYGLIRTRLGFDEELARHAQAAGAEILERHSVTEALRNEDGRVTGVRAALLDESGRKTGETREFSADVVLAADGNSTRTAVSLGIQKRDDRPLGVAVRTYFTSPRHDDDWMEGWLELPGRDGSLLPGYGWVFGVGDGTSNVGLGILNSSKEFGQLDYKQVLRDWTAGMPAEWGFTPDNEVGDIRGAALPMGFNRTPHYSPGLLLLGDAGGMVSPFNGEGISYAMESARFAAEFIIDASSRSLAAAGTYDADAHLAGYAGYVRNQWGSHFTLGRAFAALIGKPAVMKLALRTGMPVPVLMRFVVRLLANLTDPAAKGFEDRAIRVLESLVPATANTATRTPTHANQRYPQQKVRVNPNANANANANA
D1-29_03636801menGCOG2226Demethylmenaquinone methyltransferaseATGGTGAACCGAGCATCCTTGGATAAGCGTCCGGACGAAGTAGCCACGATGTTTGACGACGTCGCACCTAAATACGACGTCGTCAACGATGTCCTCTCCATGGGGCAGACCCGCCGCTGGCGCAAGGTCGTGGTGGAAGCGATGGAAGTCTCGCGGGGCCAACGGGTGCTTGACCTGGCTGCCGGAACGGGCACCTCCAGCGAGCCATATGCCGACGCCGGCATAGACGTGGTGGCCTGCGACTTCTCGCTCGGAATGCTCAAGGTGGGCAAGCGCCGCCGCCCGGACATCGACTTCATCGCCGGCGACGCCACCAACCTCCCCTTCGCGGACAACACCTTTGACGCCAGCACCATCTCGTTCGGGCTGCGCAACGTCAACGAGCCCAAGAAGGCCCTTGCCGAGATGCTCCGCGTCACCAAGCCCGGCGGCAAGCTGGTCATCGCCGAGTTCTCCCAGCCCGTGGTGCCGCTCTGGCGCAACCTGTACACCGAGTACCTGATGCGGGCGCTGCCTGCCATCGCCGTCAAGGTTGCCTCCAACCCGGACGCCTACGTTTACCTCGCCGAGTCCATCCGCGCCTGGCCGGACCAGGACCACCTGGCCGCCTGGCTGCAGGAGAGCGGCTGGGAAAACGTGACCTACCGCAACCTCACCGGCGGAATCGTGGCCGTACACCGCGCGTTCAAGCCGGCATCGCCGGACACGGCAGGCGGGCCCGACGCCGCTGCTGCCGCCATCGCCGCGAACAAGGGCCCAGTCGCCAAGCTCCGCCGCAACATCACGCGCATCCCACGCTGAMVNRASLDKRPDEVATMFDDVAPKYDVVNDVLSMGQTRRWRKVVVEAMEVSRGQRVLDLAAGTGTSSEPYADAGIDVVACDFSLGMLKVGKRRRPDIDFIAGDATNLPFADNTFDASTISFGLRNVNEPKKALAEMLRVTKPGGKLVIAEFSQPVVPLWRNLYTEYLMRALPAIAVKVASNPDAYVYLAESIRAWPDQDHLAAWLQESGWENVTYRNLTGGIVAVHRAFKPASPDTAGGPDAAAAAIAANKGPVAKLRRNITRIPRPGPT0009535_540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183NANA
D1-29_036371428menF_2Isochorismate synthase MenFATGACGAGCACGTTCCGCACCGGCGTTATCAAGACCTTGACAGTCCCCCTGGATGGCACAGCATCTCCCGGGGGCCTGCCGCAGTTTCTGGTCCGGGACGACGTCCTCTGCTGGACCCGGCGCGAAGCCGGACTGGTGGGATTCGGCGAAATCACCCGGTTTACGGCCAGCGGCCCGGACCGCTTCCTCGAGGCCGACATTTGGTGGCGCCACCTGGTTTTGGAAGCCGACATCACCGACGCCGTTGAGCTCCCCGGCACGGGCCCTGTCGCCTTCGGATCCTTCGCCTTTTCCAAGAAATCGGCCCACGAGTCACGCTTGATTGTGCCGGAGATTGTGGTGGGTGTCCGCGACGGCAGTTACTGGCTCACCCAGTTAACGTTCGACGACGGCGAGCTCACCGAGGCGGGCGCCCTCGCCGCCCTGGAACGCTGGCTGAGCGGCAGCACCTCTGCCGCTTCCCTCGCCTCCTCCACTCCTGGGGATGTGCCGGCTGGTGACGTTCCCTCTGGGGATGCCCCCGGCGGTGACGTCCCCGCAAAGGCGGGTGGCGCCGTCGTACGTCCTTTGCCTTTGGCTGCCGGCGCAACGCTGCACACGGGTTCGCTCAGCGAGGAAGCCTGGATGGCCGCCGTCGCTGCCGGGGTGGCCGAAATCCAGACCGGAGCCCTGGAAAAACTGGTGCTGGCCCGCGACATTGTGGCCACTGTTCCGTCCGGTGTGAATGCCGCGCAGGTGCTGCGCGAGCTGGCCGTGCGGTACCGCGAATGCTGGACGTACGGCGTGGACGGGCTGGTGGGGGCCACGCCGGAGATGCTGATCCAGGTGGAGGGCCGGACCGCCCAGGCGCGCGTGCTGGCGGGGACACTGGACCGCCGCGACGCGCATGGTGAGGCGGGAATTCCCATGGATTACGCCGAACGGGTCCTGGCCGGGTCGGAGAAGCAGCGGCACGAGCACGAGATCGCCATCCAGTCGCTGACGTCCCAGCTGGCGCCGTTCTCCGAGGCTATGAACGCGCACGACGAACCGTTCATTCTGGAGCTGCCCAACGTGTGGCACCTGGCGTCGGACGTGAAGGCTGAGCTGACCGAGGTGGAGGGCCACGTGCCTACGTGCCTGGCCCTGATCAACGCGCTGCACCCCACGGCTGCCGTCTGCGGAACCCCCACGCTGGTTGCCGGCGCGCTCATCCGCAAACTCGAACATCTGGACCGGGGACCGTATGCCGGCCCCGTGGGGTGGCTGGACGCGGCGGGCAACGGCGAGTGGGGCATTGCGCTGCGCGGCGCCGTCATCGAGGATCCGCATACGGTGCGGCTGTACGCCGGCTGCGGAATCGTGGACGGCTCCCAGCCCGAGGCGGAGCTCTCTGAAACGTGGGCCAAGTTCCGGCCGATGCTCGAGGCTTTGGGCATCAGCAGCTAAMTSTFRTGVIKTLTVPLDGTASPGGLPQFLVRDDVLCWTRREAGLVGFGEITRFTASGPDRFLEADIWWRHLVLEADITDAVELPGTGPVAFGSFAFSKKSAHESRLIVPEIVVGVRDGSYWLTQLTFDDGELTEAGALAALERWLSGSTSAASLASSTPGDVPAGDVPSGDAPGGDVPAKAGGAVVRPLPLAAGATLHTGSLSEEAWMAAVAAGVAEIQTGALEKLVLARDIVATVPSGVNAAQVLRELAVRYRECWTYGVDGLVGATPEMLIQVEGRTAQARVLAGTLDRRDAHGEAGIPMDYAERVLAGSEKQRHEHEIAIQSLTSQLAPFSEAMNAHDEPFILELPNVWHLASDVKAELTEVEGHVPTCLALINALHPTAAVCGTPTLVAGALIRKLEHLDRGPYAGPVGWLDAAGNGEWGIALRGAVIEDPHTVRLYAGCGIVDGSQPEAELSETWAKFRPMLEALGISSPGPT0009360_756DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009360-menF-K02552NANA
D1-29_03638804fliYCOG0834L-cystine-binding protein FliYATGCAGCTCAAGTCCCTGGCCACGGCCAAAATTGCCGCCAAGGCAGCAGCAATCCTCGCCGCCGGTGCCCTCACCCTCACGGCATGCGGCGGCGGAACCACCACACCGGCAGCCACCGAGGGCGGGGTCCAGCTCATCAACCCCGGCAAACTCACGGTCTGCTCCGACATCCCCTACGAGCCCTTCGAATTCGAGAAGGACGGCGAGACGGTGGGCTTTGACATCGACATCGCCAAGGAAATTGCCAAGGACCTCGACGCCGAACTGAGCATCGTGGACAGCTCCTTCGAAGCGATCGAAACCGGCACCGCCCTCACCCAGTGCGACGTGTCCATCTCCTCGATCTCCATCACGGATACCCGCAAGGCAGTGATGGACTTCTCCACGCCGTACCTTGATGATGACCTTGCCCTCGTGGCCAGCAACAAGTCGGGCATCAACAGCCTGGACGATGCCAAAGGTAAGAAGGTAGGCGTGCAGCAGGCCACCACCGGAGCGGATTACGCCACCGAGAAGGGGATCGACGCCCAGCAGTTCGAGGACACCGGCCTCCTGATCCAGGCACTCAAGGCCGGAACCATCGACGCCGCCCTGGGTAACCAGTCTGTCCTCGGCTACGCCATCAAGGACGACAACGATTTCGAGAGCGTGGAGAAGTTTGCCACCGGCGAGCAGCTTGGAGTCGCCATCAAGAAGGGCGACAAGCTCATGGCCGAGAGCGTCAACGTCACGCTGGAGCGCCTCACGGACGACGGCACGCTGGATAAGCTCAAGACCACCTGGTTCGGCGACACCGCCAAGTAAMQLKSLATAKIAAKAAAILAAGALTLTACGGGTTTPAATEGGVQLINPGKLTVCSDIPYEPFEFEKDGETVGFDIDIAKEIAKDLDAELSIVDSSFEAIETGTALTQCDVSISSISITDTRKAVMDFSTPYLDDDLALVASNKSGINSLDDAKGKKVGVQQATTGADYATEKGIDAQQFEDTGLLIQALKAGTIDAALGNQSVLGYAIKDDNDFESVEKFATGEQLGVAIKKGDKLMAESVNVTLERLTDDGTLDKLKTTWFGDTAKPGPT0020800_9902DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_03639786hypothetical proteinATGACCGCACGTGAACGGGCCAGAGTGAGCCTGTACGTCCAGGCCGGAATCTTTATTGTGGCCGTGGCCGCGCTGATTCTGGCCACCGACTGGGAGACGATCGGAAACAGCGTCTTCAACTTCGGCAAGATCGACCCGATGTTCCCCAACATCTTCATCATCGGCCTGAAAAACACCCTGATCTACACGTTCCTGGGCTTCATCGTGGGCCTCTCCGGCGGCCTCGTCCTGGCGCTGATGAAGCTCTCCAGCTTCCCGGTGTACCGCTGGATCGCCACCGGCTACATCGAGTTCTTCCGCGGCATCCCGGCCCTGCTGGTGTTTATCGCGTTCGGTTATGGTGTCCCGTTGGCGTTCGGCGTCTCCTGGAACGTCACCATCATCGTGATGATCTCGCTGGGCATGGTGGCCTCGGCATACATCGCCGAAACCCTCCGCGCCGGACTGCAGGCTGTGCCCAAGGGCCAGCTGGAAGCCGCCCGCTCCCTCGGCATGCCGCAGTGGCGCGCCATGGTCTCCATCGTCATCCCCCAAGCCTTCAAGATTGTGCTGCCGCCGCTGACCAACGAGGTCATCCTGCTGACCAAGGATTCCTCGCTGATCTACGTCCTGGGCCTGACCGCCTCGCAGTACGAGCTCACCAAGTTCGGCCGCGACGGCATCTCCAGCCTGGGTGCCGGACTGACGCCGCTCCTGGTGGCCGGCGCCTTCTACCTGGTCATCACCATCCCGCTGAGCCTCCTGGCCCGGAAGTTCGAAAGCCGCTCCGCGCGGACCAAGCGATAGMTARERARVSLYVQAGIFIVAVAALILATDWETIGNSVFNFGKIDPMFPNIFIIGLKNTLIYTFLGFIVGLSGGLVLALMKLSSFPVYRWIATGYIEFFRGIPALLVFIAFGYGVPLAFGVSWNVTIIVMISLGMVASAYIAETLRAGLQAVPKGQLEAARSLGMPQWRAMVSIVIPQAFKIVLPPLTNEVILLTKDSSLIYVLGLTASQYELTKFGRDGISSLGAGLTPLLVAGAFYLVITIPLSLLARKFESRSARTKRPGPT0020795_3383DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_03640804glnQ_4Glutamine transport ATP-binding protein GlnQATGAACGACGTCGTACATTCCTCCGGCGGGGGAACCGCAACAATCCACGCAGCCGGCGTGTCCATCCAGAACCTGCGCAAGTCCTACGGCACCAATGAGGTCCTCAAGGGCATCAGCCTGGACGTGGCACCGGGTGAGGTGGTGTGCCTGATCGGCCCCTCCGGCTCCGGCAAGTCCACCCTGCTGCGCTGCGTCAACCTGCTGGAGCAGCCCAACGAGGGCACCATCCAGGTGGGCGGCTTCGAAGCCACCGATCCCGATGTGGACATCGACAAGATGCGCCGCAAGGTGGGCATGGTCTTCCAGCAGTTCAACCTCTTCCCGCACCTGGACGCGAAGCGAAACTGCTCCATCGCCCAGACCAAGGTGCTCAAGCGCTCCCAGGCCGAGGCGGACAAGGTGTCCATGCACAACCTCGAGCGCGTGGGGCTGGGTCACCTGGCGGACCGCTTCCCTGACCAGCTCTCCGGTGGCCAGCAGCAGCGCGTTGCCATTGCCCGGGCCCTGAGCATGGACCCCGAGCTGATGCTCTTTGATGAGCCGACCTCGGCCCTGGATCCGGAAACCGTGGGCGATGTCCTGTCCGTCATGCGGAACCTCGCCAAGGAGGGCATGACCATGCTGGTGGTGACCCACGAGATGGGCTTCGCCCGCGAAGTGGCGGACCGCGTGGTGTTCATGGACGGCGGCGTGGTGGTGGAGGAAGGCGCGGCTGAGCAAGTTGTCGGCGCACCAACGCAGGCCCGCACCAAGGAATTCCTGCGCCGCGTCCTGGACCCGACGCACATCGAAATCGAAGAGTAGMNDVVHSSGGGTATIHAAGVSIQNLRKSYGTNEVLKGISLDVAPGEVVCLIGPSGSGKSTLLRCVNLLEQPNEGTIQVGGFEATDPDVDIDKMRRKVGMVFQQFNLFPHLDAKRNCSIAQTKVLKRSQAEADKVSMHNLERVGLGHLADRFPDQLSGGQQQRVAIARALSMDPELMLFDEPTSALDPETVGDVLSVMRNLAKEGMTMLVVTHEMGFAREVADRVVFMDGGVVVEEGAAEQVVGAPTQARTKEFLRRVLDPTHIEIEEPGPT0020790_1080DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_03641951hypothetical proteinATGACAGACCTACCGCTCCTTCTCCTGGCCCGTGACCGCATCCTGCACGGGCTGCGGCCCAACGAATTGGCCAGGCGGGTGAAAGCCGGTTCGCTCGTAAGGGTCCGGCACGGCGTCTACACCGACGGCGCGGCGTGGCGGGAGCTTTACCCCTGGGAGCAGTACCGGCTCCGCGTTCAGGCCGCAGCCGAAACCTTCGAAGGCCCCACCGTATTCGCCCGGCACTCCGCAGCCAGTGTTTGGGGGATCCCCACCATTGGCCTGCACCACCCCGTTCAGGCTCTGGCACTGAAGAACGACGGCGGCCGCTCCCGTGCCGGAGTCAGCCGCCACTATGCGGATCCCTCAACACTGACGGTGGTCCGGCGGGAGGGCCTGCTGGTCACTGGGCGCATACGCACCGTCCTGGACCTTGCAGCGTTCACGCCGTTTACGTCCGCGGCCGCGCCCCTGGATCATGTGCTGAAGCCGGACCGGACCCTGCGACTGCGTGCCCTCAGCAAGGATGAGCTGGAGGCCGGCATCGTATCGGCCTACAGTTCCGCGGCCCAGGGGAGGATCCGGGCGGCCATTGCCTTCGCTGATCCCTTATCCGGTTCAGCAGGGGAGTCCTACAGCCGCGCCCTGATGCATGTTGCCGGATTCGAGCCTCCGGTCCTGCAGCATGCCATTAGCGACGCTGACGGACTGGTGGGCTACACCGACTTCTACTGGAAGCAGGCCAAGGTGGTTGGCGAATTCGATGGCGTGGCCAAGTACAGCAAACCCGAGTTCCTCAAGGGACGCACCCCATCCCAAGCAGTGGTGGACGAGAAGAACCGCGAGAATCGTGTGCGGGCGCTGGGGTTCAACGTGGTGCGGTGGGATTGGTCTGAGCTGATGGAGCCCGGGGGGGCTGGAACGCAAGCTGGCGGCGGGTGGCGTGCCCCGCCGTCGTACGCGTTCTGCTAAMTDLPLLLLARDRILHGLRPNELARRVKAGSLVRVRHGVYTDGAAWRELYPWEQYRLRVQAAAETFEGPTVFARHSAASVWGIPTIGLHHPVQALALKNDGGRSRAGVSRHYADPSTLTVVRREGLLVTGRIRTVLDLAAFTPFTSAAAPLDHVLKPDRTLRLRALSKDELEAGIVSAYSSAAQGRIRAAIAFADPLSGSAGESYSRALMHVAGFEPPVLQHAISDADGLVGYTDFYWKQAKVVGEFDGVAKYSKPEFLKGRTPSQAVVDEKNRENRVRALGFNVVRWDWSELMEPGGAGTQAGGGWRAPPSYAFCNANANANANA
D1-29_036421872menDCOG11652-succinyl-5-enolpyruvyl-6-hydroxy-3-cyclohexene-1-carboxylate synthaseGTGGGAGCGCGTTGGGGGTGGCAGACTGGTTTGGTGACTTCGCTCAACGAACCAGCCCCCGACGCCCCAGCCGACGAGGAGACTCCGGCCGTGCTTCCTGCGACTCCGTTGGGGTCGCTGGCGGCAGCGCGGATCGCCGTCGACGCCCTGATCGACGGCGGCGTCCAGCACGTGGTGGTGGCCCCGGGATCCCGCTCCGCACCAATGGCTTATGCCCTGGCCGAGGCTTCCGCGGCCGGCCGGGTTGAGCTGCTGGTCCGGATCGACGAGCGCAGCGCAGGCTTCACAGCCTTGGGCCTGGCACTGTCCACGGGCTCCCCGGCGGCCGTGCTCACGACGTCCGGTACCGCCGTCGGGAATCTCCTGCCGTCCGTGATGGAGGCCAACCACGCCGCCGTTCCGCTGGTGGTGATGTCCGCCGACCGGCCCGAGGAGCTTCGCGGCACCGGTGCCAACCAGACCACCATTCAGCTGGATCTGTTCGGCGAGCACGTCCGCTTCGCCGCGGACGTCGCCGCCGGCAGCAGCCCGCTCCGCGCGGTGGAGACTGCGCTCGCCGCTGCCACCGGCGCGTTCTCGGACCTCGCACCGGGCCCGGTCCAGCTGAACCTCGCCTTCCGGGACCCGCTGGTTCCTTCGCCGGAGGAGACGCTCCCGACGGCGGCCGGTCGGCAACGTTTCCGGATCGGCACCGAACCCCTCACCATGAGCCTGCCGCCTGCTGCCGAAACCCTGCCGGAGCGCCGCACCGTGGTGCTTGCGGGGCACGACGCCGGTCCGGTCGCCGAGGCGTTCGCGCGCGCCCACGGGCTTCCGCTGCTTGCGGAACCGTCCTCCAATGCGCGCTTCGGGCCGAATGCCGTGGGGCCTTACCGGCTGCTGCTGGAACACTTCGGTCCCACTGCTGCCCTCCCGATCGAGCGGGTGGTGGTGTTCGGCAGGCCCACCCTTTCCCGGCCCGTTGCTGCTTTGCTGGCCCGGGCCGATGTGCCTTCCGCGCTGTACCAGCCGGTTCCGGTGGCCTGGTACGAGCCCGGGCGCCGCACGGAACTTCCGCTGGAGAGCCTCACCGACCTTGCCGACTTTGCCGGCCGCGGCCCGTCCGCCTGGCTTGATGCCTGGCTCCTGGCCGGATCCGCCGCGCAGCACGCACTGGATGGTGTGCTGGCCGGTGCGTCTCCTTCAGGCGTCTCCAGTGGTGATTCCGCTAGTGCCTCCAGTGGCGCCTCCGGTGACGCGGTAGAAGGGTCGAGTCCCGCCACCGGGCCCTCCGTCGGATCGTTGGTGTGGAAGCACACCCGGGGGCAGCTTCTGCTGGGTTCCTCCAACGGGATCCGCGACGTTGACCTGGCCGGCCTCCCCGCGCCCGAGCCCTCCGCCACCGTGTACGCCAACCGCGGCTTGGCCGGGATCGACGGCACCATCTCCACCGCCACCGGAATTGCCCTGGGGGGCCAGCAGGAAACCACCGTCCTGCTGGGTGACGTCACCTTCCTGCATGACGCCGGCGGCCTGCTCCTGGGCTCCGGCGAGGAAGAACCCCAGTTGCGGATAGTGGTGCTCAACGACTCCGGCGGTGCCATTTTCGGACTGCTGGAACACGGCGCGGTGGATGAAGCCGGCCGGTACGGGGACACCGTCGAACGGCTCTTCGGCACCCCCCACAGCGTGGACATCGCGGCACTCGCCGCAGCGTACGGCGTCGCGCATTGCTCGGTCAGCACCACCGCGGCCCTTGGCGAAGCGCTGGCCCAGCCGATCAAGGGCCGCAGCATCATCGAGGTGCGCACCGACCGCCACTCCCTGAGGCAGCTGCACGCGACCATCAAGGCTACGGTGTCTGCCGCCGTCGCAGGAGTCCTCGCCAGGTAGMGARWGWQTGLVTSLNEPAPDAPADEETPAVLPATPLGSLAAARIAVDALIDGGVQHVVVAPGSRSAPMAYALAEASAAGRVELLVRIDERSAGFTALGLALSTGSPAAVLTTSGTAVGNLLPSVMEANHAAVPLVVMSADRPEELRGTGANQTTIQLDLFGEHVRFAADVAAGSSPLRAVETALAAATGAFSDLAPGPVQLNLAFRDPLVPSPEETLPTAAGRQRFRIGTEPLTMSLPPAAETLPERRTVVLAGHDAGPVAEAFARAHGLPLLAEPSSNARFGPNAVGPYRLLLEHFGPTAALPIERVVVFGRPTLSRPVAALLARADVPSALYQPVPVAWYEPGRRTELPLESLTDLADFAGRGPSAWLDAWLLAGSAAQHALDGVLAGASPSGVSSGDSASASSGASGDAVEGSSPATGPSVGSLVWKHTRGQLLLGSSNGIRDVDLAGLPAPEPSATVYANRGLAGIDGTISTATGIALGGQQETTVLLGDVTFLHDAGGLLLGSGEEEPQLRIVVLNDSGGAIFGLLEHGAVDEAGRYGDTVERLFGTPHSVDIAALAAAYGVAHCSVSTTAALGEALAQPIKGRSIIEVRTDRHSLRQLHATIKATVSAAVAGVLARPGPT0009365_1058DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009365-menD-K02551NANA
D1-29_036432076hypothetical proteinATGTCTGAAACGACAGCCCGCAAGTTCACCCTGCTGCCCATGCTTGGCCATACGAAGGGCAAGCGCAGCGCCGTCACCTGCGCCCTCAAGTGCGACAACGCCTGCGCCGGCGACGTCTGCAACACGAGCTCCAACAGCTACTTCCGCGACATCGCCTCCGCCACCATGTCCCGCCGCGCCGCCCTGGGCTTCGGGGCCGCCGGTGCGCTCGCCGTCGTACTCGGTGGAAACCTGGCCTCCGCGGAACCGGCGGCTGCCGGCGGGCTGGCGCCCGCGGCCAAGGAAGGCTTTGCAAAGTCCAAGCTCCAGTTCACGGCCATCGCGCCGGTTGATGCCGCCGTCGACTCCGTCACTGTGCCGGAGGGCTTCACCTGGAAGCCGGTGATCCGCTGGGGCGATCCGATCTTCAACGGCGCGCCGGCCTTTGACCTGAACAACCAGACGGCTGCCGCACAGGAGCAGCAGTTCGGCTACAACAACGACTACACGGACATCCTGGAGATTCCGGGCAGCAAGGGACGTCGGGCGGTGCTGTTCGCGAACCACGAGTACACCAACGAGAACATCATGTTCCCGGCCACCATGCCGGCAGACCAGATGCGCGCTGTGGGGGCTGCCGCGCACGGGCTCTCCGTGGTGGAGCTGGAGCGGAAGAACAAGAACACGCCGTGGACGTACGTCAAGGGCGCCGGGCTGAACCGCCGCTACCTGAACTCCACCGTTTACGAACTGACAGGTCCGGCCGCCGGCTCGTCGCTGGTCAAGACCGTTGAGGACCCGGACGGCCGCTTCATCAAGGGAACCCTGGGCAACTGCGCCGGCGGCACCACCCCGTGGGGCACCATCCTGTCCGGCGAGGAAAACTTCCAGGGCTACTTCGCCGGCAACGGCACCTCCGCCGGTGACAAGCGCTACGGCATCACCTCCAAGCCCACCGCCCGCCAGTGGGAGCTCGACGAACCGCGGTGGGACACCCGCAACGCCGGCTACGAAAATGAGGCCAACCGCTTCGGCTGGATCGTGGAAGTTGACCCGTTCGACCCCACCTCCATGCCGAAGAAGCACTCGATGCTGGGCCGCTTCAAGCACGAAGGTGCCAACGTCATCATCGCCGGGTCCGGGCATGTGGTGGCCTACTCCGGGGACGACGAGCGCTTCGACTACCTCTACAAGTTCGTCTCGAAGGACAAGTACCGCGAAGGCGACCGGGCGCACAACATGACCCTCCTGTCCGCCGGCAGCCTGTACGTGGCAAAGTTCACGGGCAACTCACCGGCCGCCGAAATCACCGGCACCGGCGCTGTTCCCGCCGACGGCGCCTTTGACGGCACCGGCGAGTGGCTGCCTCTGGTGGTGGACGGGGTCTCCGCGGTGCCGGGCATGTCCGTCGAGGAAGTGCTGGTGTACACCCGCCTCGCCGCGGACAAGGTGGGCCCCACCAAGATGGACCGCTGTGAGGACGTGGAGCCGAACCCCTTCACCGGAAAGGTCTACGTGGCCTGCACCAACAACTCCAACCGCGGTGTTGGGTCCAACGAGGGCGCCACCGAGGTCAACCCGCGCAACCAGAACCGCGACGGCCACATCGTGGAAATCATCGAAACCGGGGACCAGACCTCCACCACCTTCACCTGGAACCTGCTGATGGTCTGCGGCGATCCGGCCCAGGGCGACGTCACCTACTTCTCCGGCTTCCCCGTGGACAAGGTCTCGCCCATCTCCTGCCCGGACAACCTCGCCTTCGACTCCGTGGGCAACCTCTGGATCTCCACCGACGGCGCCCCTTCCGGCATCGGCAAGGCGGACGGCCTGTTCAAGGTCACCCTGGACGGCACCGAGCGCGGCAGGGTGGAACAGTTCCTGGCCGTCCCGCGCGATGGCGAAACCTGCGGGCCCATCATCCACGACGCCGAACGCACCGTTTTCGTCTCCGTGCAGCACCCGGGGGAGGACGGCTCGTTCGACCAGCAGGTCTCGTTCTTCCCGGACTACGTGGCCGTTGGTGCGACGCCGGCAGCCGGCCAGGCGCGCGCGCCGCGTCCGTCGGTGATCCAGGTGTTCCGCACGGACGCCTAGMSETTARKFTLLPMLGHTKGKRSAVTCALKCDNACAGDVCNTSSNSYFRDIASATMSRRAALGFGAAGALAVVLGGNLASAEPAAAGGLAPAAKEGFAKSKLQFTAIAPVDAAVDSVTVPEGFTWKPVIRWGDPIFNGAPAFDLNNQTAAAQEQQFGYNNDYTDILEIPGSKGRRAVLFANHEYTNENIMFPATMPADQMRAVGAAAHGLSVVELERKNKNTPWTYVKGAGLNRRYLNSTVYELTGPAAGSSLVKTVEDPDGRFIKGTLGNCAGGTTPWGTILSGEENFQGYFAGNGTSAGDKRYGITSKPTARQWELDEPRWDTRNAGYENEANRFGWIVEVDPFDPTSMPKKHSMLGRFKHEGANVIIAGSGHVVAYSGDDERFDYLYKFVSKDKYREGDRAHNMTLLSAGSLYVAKFTGNSPAAEITGTGAVPADGAFDGTGEWLPLVVDGVSAVPGMSVEEVLVYTRLAADKVGPTKMDRCEDVEPNPFTGKVYVACTNNSNRGVGSNEGATEVNPRNQNRDGHIVEIIETGDQTSTTFTWNLLMVCGDPAQGDVTYFSGFPVDKVSPISCPDNLAFDSVGNLWISTDGAPSGIGKADGLFKVTLDGTERGRVEQFLAVPRDGETCGPIIHDAERTVFVSVQHPGEDGSFDQQVSFFPDYVAVGATPAAGQARAPRPSVIQVFRTDANANANANANA
D1-29_036441074menCCOG4948o-succinylbenzoate synthaseATGGATATGCGTTCCATAGGCAGGGCAAAGAGTTCTGTCCGCCACCGCTTGTACAGTGAACAGATGCCTACCCCGACTGTCCCGAACGGCGTCCCTCCGCTGGAGGAGCTGCTGGCCTCCGCGCACGTGGTGAGCCTGCCCATGCGGGTGAAGTTCCGCGGCATCATGGAGCGCGAAGCCCTGCTCCTTCGCGGGCCCCACGGGTGGGGGGAGTTTGGCCCGTTCCCGGAATACGGGGACGAAGAAGCTTCCCGCTGGCTTGCCGCCGCTGTTGAGGCCGGGTGGCAGGGCTTCCCGCCTCCCCTTCGGTCCGTGGTCCCGGTGAATGCCACCGTGCCCGCCGTCTCCGCGGACCGGGTCCCGGACGTCCTGGCCCGCTTCGGCCGGGTGGACGCCGTGAAGGTCAAGGTGGCCGAGCGCGGCCAAACGCTCGACGACGACGCCGCCCGCCTCGCCGCCGTCCGCTCCGCCCTCCCGCAGGCGGCCATCCGCATTGACGCCAATGGCGGCTGGGACGTGTCTATGGCGGTGTCGGCCCTGACCCGTCTGGCCGGGGTCGGGCTTGAATACGCGGAGCAGCCGGTGCCTACAATCGACGGGCTCGCGGAAGTGCGCTCGCAGTTGCGGGCGGCCGGAACTCCCGTGCTGATCGCCGCCGACGAAAGCGTCCGCAAGGAATCTGACCCCCTCCGCGTGGCCCGGGCCGGGGCTGCGGACCTGATTGTGGTGAAGGTGGCACCGCTGGGGGGAGTGCGGCGCGCGCTGGAGATCGTGGCTCAGGCCGGGCTCCCCGCCGTCGTGAGTTCCGCCCTGGACACCTCTGTGGGGATCCGGGCCGGTCTTGCCCTGGCCGCATCCCTGCCGGAGCTTCCCTTTGCGTGCGGGCTGGGGACCGTCTCGCTGTTTGAGTCCGACATCAGCACCGATCCGCTGGTGGCCGACGACGGCGCCATCCGCCTCCGCGATGTCTCCGCCGACGCCGGGCTGCTCGCGCAGTTCGCGGCTTCCCGGGAACGCCGGGACTGGTGGCTGGCCCGCCTCCGCCGAGTCCACACCCTCCTTGCCCCTTCCTGAMDMRSIGRAKSSVRHRLYSEQMPTPTVPNGVPPLEELLASAHVVSLPMRVKFRGIMEREALLLRGPHGWGEFGPFPEYGDEEASRWLAAAVEAGWQGFPPPLRSVVPVNATVPAVSADRVPDVLARFGRVDAVKVKVAERGQTLDDDAARLAAVRSALPQAAIRIDANGGWDVSMAVSALTRLAGVGLEYAEQPVPTIDGLAEVRSQLRAAGTPVLIAADESVRKESDPLRVARAGAADLIVVKVAPLGGVRRALEIVAQAGLPAVVSSALDTSVGIRAGLALAASLPELPFACGLGTVSLFESDISTDPLVADDGAIRLRDVSADAGLLAQFAASRERRDWWLARLRRVHTLLAPSPGPT0009375_958DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009375-menC-K02549NANA
D1-29_03645354hypothetical proteinATGGCACGGGCAGCAACAACCGCAGATGCGTTCAACGCGGTGGCTGAGCCCCGCCGTCGGGAAATCCTGGACGCCCTGACCGGAGGCGAGCGCCCCGTCAATGAACTGGTGGACCTGCTGGGCCTGGCTCAGCCGCACGTCTCCCGGCACTTGCGGGTGCTGCGCGAGGTGGGCGCCGTGGATGTGCGGGATGAGGGCAGGCAGCGGCTGTACCGGCTCAACCCCGAGGCCCTGAAGCCCATCCACGACTGGGTTGCCGGCTACCAGCACCTCTGGGAGGAGCGTTTCGAACTCCTGGAGGGTGTGCTGGAGGACCTCAAGGACCCAGAAGACAAAGAAGACTCAAACGCCTAAMARAATTADAFNAVAEPRRREILDALTGGERPVNELVDLLGLAQPHVSRHLRVLREVGAVDVRDEGRQRLYRLNPEALKPIHDWVAGYQHLWEERFELLEGVLEDLKDPEDKEDSNANANANANANA
D1-29_03646507hypothetical proteinATGGCACAGACACACAGCGGCAGCGGCACTATGGAAGTTACCTTCCCCAGCGACGAGCAAATCCTGATCACCCGCACCGTCAACGCGCCCCGGCACCTGGTCTACCGCGCCTGGACCACTCCGGAACTCGTCAGGAAGTGGTGGGCCGGCCGGCGGGGCGAGATGACAGTGGCCGACATGGATTTCAGGGTGGGCGGCGCATGGCGGTACGTCATGGTGGCGCACGGCGAATTCGAGGTGGCCTTCCACGGAACGTACCGCGAGATTGTGCCCAACGAGAGGATCGTCCAGACCGAGGTGATGGAGATGCCCGGCGAGGAATCCGGCGGGGAGGGTGTGGTCAACACCGTCACCTTCCGGGATGCCGACGGCGGCGCCACCACCGTGAGCATCCTCACCGACGCGGGCAGCAAGGAAGTCCGGGACATGATTGCGCAGTCCGGCATGGAAGGCGGCGTGCGCGAGCAGTTCGAACTCATCGAGGAGCTGGCGGGGTCACTCACCTGAMAQTHSGSGTMEVTFPSDEQILITRTVNAPRHLVYRAWTTPELVRKWWAGRRGEMTVADMDFRVGGAWRYVMVAHGEFEVAFHGTYREIVPNERIVQTEVMEMPGEESGGEGVVNTVTFRDADGGATTVSILTDAGSKEVRDMIAQSGMEGGVREQFELIEELAGSLTNANANANANA
D1-29_03647909hypothetical proteinATGACCGTTTCACGACAGGCGCCGGCCCGCGCTCCTTTGCGCCCCGCCCCCGGCTCAGGCTTTATGTTCGCCTTCGCCACGCTCGCCTGCATCGTGGGGCTGATCGCCACGTACTACTACTTCGTGCAGACCACCACGGGCCAGTTCATCGACGAATCCGCCCTGGTGGAAGCCGTGGATGTGCACGGGCCCGCGGGCAAGGCAGCCACGGAGTTCCTGGACTGGCTGCCCACCATTTCGCTGGTGATGGCCGCCGTGGTGGTTCTCTTCGTCACGGTGATCCGCCGCCGCTGGACCGCCGCGGGCATCGCCGTGTCCGCGTGCATCGGCGCCAACATTGCCACCCAGATCCTCAAAGATGTGCTGCCCGCCCGCCCTGACAAGGGTGTGGTCACGCTGGAGCTGAACTCCCTTCCGTCCGGGCACACCACGCTGGCGGCGTCGGCGGCGGCCGCCGTGTTCCTGATGGCCTCGCCGCGCTGGCGCCCGATGGCCGGCTTCGTGGGCGGCACGTTCGCCATCGCGTCCGGCGTGTCCACCCTGATCAACCAGTGGCACCGACCGGCGGACGTGGTGGCGGCGTTCCTGCTGGTGGGCGCCTTCATGATCCCCGCCGGCTGGCTTATCCTGCGCCACGGCGGGGCCTGGAATGTGTGGGACGGCTTCGGCAGGCATTGGGGTTCCGCCAAGATCTGGCTGACGCTGCCGGTGATGATCGGGCTGGCCTCGGCCGCGGTGGCGGTGTACTCGCTGGCCAGGATCGCCCCGGGCCCCAGCCAGGAAGCCAGCACCACCAACTACTTCTGGGCCGGCATTTCCCTCATGGTGATCGCCGGGTACCTGGCCACCGTTGCCACCACTTCGCTATTCGCCTATGCTGCCCGACGGCGGGTCCCGGCTTCCCGCTGAMTVSRQAPARAPLRPAPGSGFMFAFATLACIVGLIATYYYFVQTTTGQFIDESALVEAVDVHGPAGKAATEFLDWLPTISLVMAAVVVLFVTVIRRRWTAAGIAVSACIGANIATQILKDVLPARPDKGVVTLELNSLPSGHTTLAASAAAAVFLMASPRWRPMAGFVGGTFAIASGVSTLINQWHRPADVVAAFLLVGAFMIPAGWLILRHGGAWNVWDGFGRHWGSAKIWLTLPVMIGLASAAVAVYSLARIAPGPSQEASTTNYFWAGISLMVIAGYLATVATTSLFAYAARRRVPASRNANANANANA
D1-29_03648519hypothetical proteinGTGAAGCTCTCTCGGGTACCCGGATCCGCACTGGCAATTGGCGCTTTCGTCCTGACTGTGCTGCTTGGTGTTGGCTGCGCTTCGGCGTCGGCCCTGTGGGAACAGTCCGCCACCGCCACCATGACGGTGACCGCCAACGGCGCATGGCCCGGCCCGGCGCTGGCCGGGCTGACCTGCACCAACGACAGCCCGCACAAGGTGGCCACTCTCGCCGTCACTGTCTCGGCGGCGCCGGCCACCATCACGTACGCGGCCCTGCAGGCCAACGGGAACTACGGCACGAGCTACCCGGGGTCGACCATCCTGCTCCCGAACGGCTCCGCAAACATCGTCCTGACGGCAAGCCCGCATGCGCAGAGGTCCCAGATCCTCAAGGACAATGCCGCCGGCCCTTTGACGGTGCGGGTGACTGCCACCTACCTGGACCAAACGGCCGCCTCTATGGACATCACCCTGGACAACGCCACCGCCAACGGCAAGGTCAGCTGCCCGCTGGCTCCGGTGCCGGTCCGGGGCTAGMKLSRVPGSALAIGAFVLTVLLGVGCASASALWEQSATATMTVTANGAWPGPALAGLTCTNDSPHKVATLAVTVSAAPATITYAALQANGNYGTSYPGSTILLPNGSANIVLTASPHAQRSQILKDNAAGPLTVRVTATYLDQTAASMDITLDNATANGKVSCPLAPVPVRGNANANANANA
D1-29_03649678hypothetical proteinATGTCCCGCGAGCTGGCTTTGGGCCGGGCCCTTGGCAGTCGTGCCGAAGCGGGCAGCAACCGCGCGAAGGCAACCAGCCGTGTGAAGGCCGACGCCCCAGAGAACGCCGACGCCGGCACGGAGCCAAAGCGCCGGGCCTATTTCGCCGCCGCAGGCAAGGTCGTGAACCTGGTTGTCCTGATGATCCTCGTTTTCGCGGCATTGGTGCTGATTGTGGTTCCGAGGGCTACCGGGTCCGAGGCCTACACGGTGCTGACCAACTCCATGGCCCCCAAGTTCCCGCCGGGAACCTTCCTGGTGATCAAGCCTGCCGACTTCAGCGAACTCAAGTACGGCGATGTGGTCACCTTCCAGATGTATTCCGGGCGCCCCGACGTCGAAACCCACCGCATTGTGGGCTTCGGTGCCACGCAGGAGGGGGAGAAGACCCTCATCACCAAGGGCGACAACAACGGCGTGAACGACGCTGATCCGGTCCGTGAACTGCAGGTCAAAGGCAAACTGTTCTACGCCGTTCCGTACGTGGGCTACGCCGCCAACGCGCTGGGCAATGCCGACCGCACCACCTGGAGCATGGTGGCCGCTGCCGGCCTGATCGGGTACGGGGCGCTGCAGCTGGTCAAGGGAATCCGCAGCCGCAGGCGCACCCAGCAGGCCGATGCCGGGGCGTTCGCGTGAMSRELALGRALGSRAEAGSNRAKATSRVKADAPENADAGTEPKRRAYFAAAGKVVNLVVLMILVFAALVLIVVPRATGSEAYTVLTNSMAPKFPPGTFLVIKPADFSELKYGDVVTFQMYSGRPDVETHRIVGFGATQEGEKTLITKGDNNGVNDADPVRELQVKGKLFYAVPYVGYAANALGNADRTTWSMVAAAGLIGYGALQLVKGIRSRRRTQQADAGAFAPGPT0026405_594DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-SPORULATION_RELATED_FUNCTION,PGPT0026405-sipW-K13280NANA
D1-29_03650612hypothetical proteinATGCGGATGCCGCGGATGCTGCGCACCGGTGCACTCATCGCAGCAGCGGTAGTCCTGGGACTGTTGACGGTGCAGGGCTCGTACGCCCTGTGGAACGCCGCCACCGCGGCGGCGCCGGGGACCGTCACCGCCGCATCGTTCGACGTTAGCCTCACTGCAAGTCCGTCCGGGCAGGCCACCAACATGAGCCTCTCCGGAGGGACCCCGGCAACCATCAACCTCACCCAGGCCACCTCGCTCGCTCCGGGAACACCGGTGTACGCAAGCGTTGTAATCGGCAATAACTCCAACGCCGGCGGAACGTTCAGCACCAGCATTACGGCGGGCCAGGCCACTGTTTCCAACACTGGGTTCGGCAGCCTTGCGCAGTATGTGACCGTATCTGCAAAGTTCGCCTCGGCCGTCGCGGAATGCAGCAGTTCCACCGGCTACACCGCGCTCACCGCAGCTGGACTCACGTCCGCGGCCGTCCCGAAGGCGGCAAGCACGGTTCTCTGCTTCCAGGTCAGCCTCAGTTCCTCCACCTCCATCCTCCTGAAAGGTCAAACGGTGAACATCAGTCTTCCCATCACCGCCCGCCAGCTCTGCGGGGTGCCAAGTGGCTGCGCCTGAMRMPRMLRTGALIAAAVVLGLLTVQGSYALWNAATAAAPGTVTAASFDVSLTASPSGQATNMSLSGGTPATINLTQATSLAPGTPVYASVVIGNNSNAGGTFSTSITAGQATVSNTGFGSLAQYVTVSAKFASAVAECSSSTGYTALTAAGLTSAAVPKAASTVLCFQVSLSSSTSILLKGQTVNISLPITARQLCGVPSGCANANANANANA
D1-29_03651558hypothetical proteinATGAAGAACAGCACACTCATCAAGGGATCTGCAGCAATCGCACTGGGCGCAGCACTGCTGGTAGGTGGCGGCGGCACACTGGCCAACTGGAACGCAGCGGCCTCGCAGACGCCGGGCACCATCGTTGCCGGCGACCTGAACGTGGTCAATGCCACGAGCGCCGGCACCTGGAAGGACCGGAACGAAGCAACTATCGACATCGCCACCTACAAAGTGGTCCCGGGTGACAAGCTCACTTACACGCAGGACCTGACGGTTACGCTCGTGGGAGACAAGATGGCCGCGACCATCGCCGCTGCCGGAATTACCCCCACCAACGGATTCACTGCCGCGAACGTCACCGTCACCAGCACCCCGGTCCTCACTGTCGGCGGCCAGCCTGTTTCCAACCCGCTACTGGCCTCCTCCGGAGCAACCCAGACCGTCACGGCGACCATCACCTTTGAATTCAAGGGAGCCACCGGCGCCCGCGACAACGTGAACGCCAGCTACAACTTCAACAATGTTGGCTTCACCCTGACGCAGGTCACTCAGTCCGGGCTCTCCGGCCTGTCCTAGMKNSTLIKGSAAIALGAALLVGGGGTLANWNAAASQTPGTIVAGDLNVVNATSAGTWKDRNEATIDIATYKVVPGDKLTYTQDLTVTLVGDKMAATIAAAGITPTNGFTAANVTVTSTPVLTVGGQPVSNPLLASSGATQTVTATITFEFKGATGARDNVNASYNFNNVGFTLTQVTQSGLSGLSNANANANANA
D1-29_036521218hypothetical proteinATGACTTCGCCAGACAGCCCGCCGCCGTTCAACTTCCGGAGCATCGCGATACCTGCGTTCGGCCCGGCACTGCTGTTCTGTATCGGCGAAGGAGCTGTCCTGCCCGTAGTGGTCCTTTCGGCCCGCGACCTCGGCGCATCCGTGGCCGTGTCAGCATTGATCGTCACGCTGATCGGGCTGGGCTCCTGGTTTTTCAACCTGCCCGCTTCCCTCATCACGCTCAAATTCGGCGAACGCTGGTCCATCGTTGGTGCGGCCGCGGTGGGCGCCATTGCCCTCGCCGCGGCCGCGGTGTCCTCCCTGATCCCCAACGGACTGTGGCTGCTCGCCGGGGCGATGGCCGTCGTCGGGATGACCGCCAGCGTCTTCAACCTGGCACGGCAGAAGTACCTCACCGAGGCAGTGCCCCTCGAGTTCCGTGCGCGGGCGCTGTCCACCCTGGGCGGCGTGACCAGGATCGGCATCTTCATCGGGCCGTTTGTGGGCGCAGCCGTGATGCAGTTCGAGGGGATCAGCGGTGCCTACTGGGTGGGGGTGGCAGGCATGGCGGCCGCCGCGGTGCTCGCCGTCACCATCCCGGACCTGGTAGTTCCGCCAGCCCCCGACGGCGGACACAAGGGCCCCGAACCCACCCTGCGGAATGTGGCGGTCTCCCATTCAGGCGTGTTCCTGACGCTGGGCCTGGGCATCCTGCTGCTCAGCGCCCTCCGCGCCTCCCGTCAGGTGGTCATCCCGCTCTGGGCGGACCACCTGGGCATGGACGCCACCCAGGCGTCGCTGATCTATGGGCTCTCCGGAGCGATCGACATGCTGGTGTTCTACCCGGCCGGCAAGCTCATGGACCGCCGGGGCCGGCAGTTTGTGGCCATCCCCTCTACCGTCATCATGGGAATAGCCATGCTGCTGATCCCCCTGACCGCTTCGTTCGCCGGGCTGCTGCTTGCCGCGCTGCTGATCGGCTTCGGCAACGGCATCAGTTCAGGCCTGATCATGACGCTGGGTGCCGACTTCTCACCGGACCGAGGGCGCGGCCAGTTCCTGGGCCTGTGGCGTTTTATCGCCGACGCCGGATCAACCGGCGGACCCGTGCTGCTCTCCGTGGTGACGGCGCTGGCATCCCTGGGCGCGGGGGTCTCAGCCACCGGAATACTGGGGTTTGCCGCGGCAGCCGTGTTCGCCGTCGTACTTCCCCGGCTCAAGCACCGGCGGAACTACTGAMTSPDSPPPFNFRSIAIPAFGPALLFCIGEGAVLPVVVLSARDLGASVAVSALIVTLIGLGSWFFNLPASLITLKFGERWSIVGAAAVGAIALAAAAVSSLIPNGLWLLAGAMAVVGMTASVFNLARQKYLTEAVPLEFRARALSTLGGVTRIGIFIGPFVGAAVMQFEGISGAYWVGVAGMAAAAVLAVTIPDLVVPPAPDGGHKGPEPTLRNVAVSHSGVFLTLGLGILLLSALRASRQVVIPLWADHLGMDATQASLIYGLSGAIDMLVFYPAGKLMDRRGRQFVAIPSTVIMGIAMLLIPLTASFAGLLLAALLIGFGNGISSGLIMTLGADFSPDRGRGQFLGLWRFIADAGSTGGPVLLSVVTALASLGAGVSATGILGFAAAAVFAVVLPRLKHRRNYNANANANANA
D1-29_03653369hypothetical proteinATGGGGGAATTGTGGATCCGCACCATCAGCAACGGCCTGGTCCGTGCGGACAGAGTTACCGAAATTTCATCGACCCGCGGCTCACTGCAGGAGGACCAGGGTTATTCGCTCAAAGTCATCGTGGACGGCAAGGCCCACGTACTGATTGATGACAGCGAAATCCAGGGCACGCTGGCCGAACGGCTGGAATATGCAAGGCATGTAGAGGATGCCCTGCTGCTCGCCATGGATGAAGCAAAGGGCTCGCATGTGGCCATGGTGGTCTGCTACGAGCACGAGAACGAGCGCTGGTCCGTGGCTGCGGCGGCAGAATTGGTGGGCGCCCTTCCCGCCCATGCTCCACCGCGGGAGATGACCGGCGCCTCCTAAMGELWIRTISNGLVRADRVTEISSTRGSLQEDQGYSLKVIVDGKAHVLIDDSEIQGTLAERLEYARHVEDALLLAMDEAKGSHVAMVVCYEHENERWSVAAAAELVGALPAHAPPREMTGASNANANANANA
D1-29_03654834hypothetical proteinGTGCCGAAAGTTGCGCGCTTCCTGCTCCTGTCGTTTGTCATGCTCGCGGCGTTCACGGCCGCACAACCGACAATGACCGCGCCTCCTCCCACCTCCTCGCCGCCGCCCACCTCCATGGCAGCCCTGGGCGACTCCATTACCCGGGCCCTCGCCGTCTGTTGTTCGAACGGTGACAACTCGCTCCACTCATGGTCCACCGGGCGCGGTCCCGGCGACGGAGTCAGCAGTCACCATGAGCGGCTAACACGTCTGGACTCGGCTATCACTGACCGCAACCACAACAACGCCATCAGCGGCTCCAGAGCCAGGCATCTTCCGGACCAGGCCGAGATGGCCGTCGAACAGAATGTGGAATACGTGACCATCCTGATCGGAGCAAACGACCTTTGCGCCTCATCTGTATCCACGATGACATCCGAGGCGGAATTCGCTTTGCACATTCAAACAGCCTTGGCGACACTCGACCGCGGCCTACCGAGGGCACGCATCCTCGTTGCCAGCATCCCGGACCTCTACCAACTCTGGAAGGCCTTGGAAAGCAACGCCGAGGCACGCGAGGCATGGTCCGGCGGCACCTGCCAATCGATGCTTGCCGCCCACAACACCGAGGAGCAACGGCAGTCGGTCATCATGCGGGAGCTCGCGTTCAACAGGATCCTTGCCCAGGCGTGCTCCCAGTACAAGAACTGCCGCTGGGACAACAACACCGTGCATAACTTCAAGTTCTCGGCAAGCGACGTTAGCGTGCTTGATTACTTCCATCCAAGCCTGGAAGGCCAGGCCCGTCTGGCTGAGCTCACTTGGCGGGCGTCATGGTGGGGAGACCAGCAGTAGMPKVARFLLLSFVMLAAFTAAQPTMTAPPPTSSPPPTSMAALGDSITRALAVCCSNGDNSLHSWSTGRGPGDGVSSHHERLTRLDSAITDRNHNNAISGSRARHLPDQAEMAVEQNVEYVTILIGANDLCASSVSTMTSEAEFALHIQTALATLDRGLPRARILVASIPDLYQLWKALESNAEAREAWSGGTCQSMLAAHNTEEQRQSVIMRELAFNRILAQACSQYKNCRWDNNTVHNFKFSASDVSVLDYFHPSLEGQARLAELTWRASWWGDQQNANANANANA
D1-29_03655387hypothetical proteinATGGCCGCAGGCCCGTGGGTCACCGCACCTTGGTGCTTACTCGCGATAGTTGCATCCATGGTCCTCTTACTGGCTCCGATGTACACACAGGTAAAAGTAACGTCTGGTGGGCCAGAGCAGGTCAGTCATCCGGCCCTACTTGAGACAGTCGGGCCGTCTATCTTCGTGCCGTTGCTCATCCCAGTGGCCCTGACCGCGCTACCTCTCCTGATACGAGGACGGGCGCAGACTCCTGCATCGGTCGCGGAAACTGTCGCTCTTGTGATCTTCGTAGTCATCGACTCCGCAAGCATCGGTTGGTTCTACATCCCAGCCCTGGCCGCCGCCGTAGCCGCCGTTGATTCCTCGCTGGACGGCAACCCAGGACTCCAAGCCCGCCCTAACTAAMAAGPWVTAPWCLLAIVASMVLLLAPMYTQVKVTSGGPEQVSHPALLETVGPSIFVPLLIPVALTALPLLIRGRAQTPASVAETVALVIFVVIDSASIGWFYIPALAAAVAAVDSSLDGNPGLQARPNNANANANANA
D1-29_03656339hypothetical proteinATGACCATCCAGACACTCGGCGCGACGCGCTCACCTGTAGTCGCAGCTTGCACCGTGCTTCTGGGCTTGCTGGTCCTCTGGATGGCGCAGCCGGTTCTGCCTGGTTGGGGATGTGCGACCAGTTTTCCGGCGATGTGCCCTCCGCACTTGCTGCCTGTTCGTGCATCACTGATCGGCGCAGGCATCCTCTTCGCACTGCTCGGGGCTGTCATCGTCGGGCTACTGCTTCGGTCACGAGACAACGGCTGGCTGGGCCGTATGTCCCGGAGTGTTGTCTTAGCCGTGCCGGTAATCCTGGTCCTGACGGTCATAGCGCACTTCGTGATACCGCAGCCCTGAMTIQTLGATRSPVVAACTVLLGLLVLWMAQPVLPGWGCATSFPAMCPPHLLPVRASLIGAGILFALLGAVIVGLLLRSRDNGWLGRMSRSVVLAVPVILVLTVIAHFVIPQPNANANANANA
D1-29_036572025yesXRhamnogalacturonan exolyase YesXTTGAATTATCTTGCGAATCAACTCCGGAGTAGCAGGGCCAGCAAGGCTTTGCGTTCCAGCCCTATGGTGGCAACCGCATCCCTTGCTGCCGCGGCTATCGCACTGACGGGGCTGCCGTTGGCAAGCGCCCAAGCTGCCCAGGAGCCGGGTGGAACCAAGAATCCGCAGGTGACGCTGCCGGAACAGTCTGGCAAGGGCACACCGAAGCGCCAGATGGAAAAGCTGGACCGGGCTCCGGTGGCTGTCTTGACCGATCAAGGTGTCAGCTTGAGTTGGCGAATGCTTGGGCTGGACCTGGAGAGCGTGGGCTTCCATGTCATCCGGGACGGCGTTCAGCTCACAGTCGATCCCATCCGCAACAGCACCACGTACGTTGATACGAGCGGCACGGCCACGTCCACGTACGTTATCAAGGCGGTAGGCAGCGGGGCGGACCAGCTCACTGGCGAGTTCGCTCCCATGGCCCAGAACTACCTGGCGGTCAAGCTGGATAAGCCTTCTGATGGCGTCGCGAAAGACGGCGTTCCCTACACCTACTCCGCTGGTGACGCCAGCGTGGCGGATGTGGACGGCGACGGCCAGTACGAAGTCATACAGATGTGGTCCCCGTCCAACGCCAAGGACAACTCCCGCCCGGGTTACACCGGCATCGTCTATGTGGATGCCTACAAGATGGACGGCACCAAGCTGTGGCGCATCGATCTGGGCCACAATATCCGTGCAGGCGCGCACTACACCCAGCTGCTCGCCTATGACTTCGACGGCGACGGCAAGGCCGAGGTCTCGATGAAGACGGCTGACGGCACCCGCGACGCGGCAGGAACTGTCATCGGCGATCCCACCTTGGACCACCGCAACAGTAGCGGCTATGTCCTGGCCGGCGACGAGTTTCTTACCGTCTTCCACGGCCAGACCGGCACAGTCATGGACACAGTCCGGTACGAACCGCCGCGCGGGAACGTCGCTGCCTGGGGTGACGGTTACGGCAACCGGGTGGACCGCTTCCTGGCCGCTGTAGCCTACCTTGACGGAGAGCGTCCGTCGATGATGTTCAGCCGCGGCTACTACACCCGAACCGTGCTCGCGACCTATGACCTGGTGGACGGAAAGCTGGTCAAACGCTGGATCTTTGACTCCAATGTGGCCGGTGCAGAGTATGCCGGCCAAGGCAACCACAACATGTCCGTCGCAGACGTCGACGCCGACGGCAAGGACGAGTTCGTCTTCGGATCCATGACCATCGACGACGACGGCAAAGCCCTCTACAACACCAGACTGGGCCATGGCGACGCCATTCATACCAGCGACTTCGATCCGTCCCGCCCTGGCCTGGAAACCTTCGCCGTGCACGAGAGCATGAGTGCCAGCGGAAACATTGGAGCAACCTTCCGGGATTCCCGGACCGGCGAAGTGCTCTGGAGCATTCCCGCAGCCAGGGACACCGGACGAGGCGCTGCCGGCGACCTTGATCCGCGCCATGCCGGTGCCGAAGCCTGGGCTATTGGAGGTACCTACGCCTGGAACTCCACTGTCGGGGAGATGCGTTCGGCTAATGGTGAGGTTCTGTCCACGAAGATACCTGCCGCCAACTTCCTGGCCTGGTGGGACGGTGACCTGCTCCGCGAAATCGTTGACCACGATTTTGATGACGCCACTCAAACCGGCGTTCCGACCATTGCCAAGTGGAACTGGGAAACCCAGGCCAGCGACAAGCTGCTTACGGCAGCCGGCGCCAAGACGAATAACGGCACCAAGGGCAACCCTGCGGTCCAGGCAGACCTCATGGGCGACTGGCGGGAAGAAATCGCCTGGCCGTCCGCGGACAGCACAGAACTCCGCATCTACACCACCAGCGCCCCCACGGAAGTCAGGCTCCGCACCCTGATGCATGACCCCGTCTACCGTGCCGACGTGGCGCGGGAGAATGTCTCCTACAATCAGCCGCCGCACACCAGTTTCTACATTGGCGAGGGCATGAAAACCCCGGAAATGCCCGCCATTACCTACACAGGCAGCCGACGGTAGMNYLANQLRSSRASKALRSSPMVATASLAAAAIALTGLPLASAQAAQEPGGTKNPQVTLPEQSGKGTPKRQMEKLDRAPVAVLTDQGVSLSWRMLGLDLESVGFHVIRDGVQLTVDPIRNSTTYVDTSGTATSTYVIKAVGSGADQLTGEFAPMAQNYLAVKLDKPSDGVAKDGVPYTYSAGDASVADVDGDGQYEVIQMWSPSNAKDNSRPGYTGIVYVDAYKMDGTKLWRIDLGHNIRAGAHYTQLLAYDFDGDGKAEVSMKTADGTRDAAGTVIGDPTLDHRNSSGYVLAGDEFLTVFHGQTGTVMDTVRYEPPRGNVAAWGDGYGNRVDRFLAAVAYLDGERPSMMFSRGYYTRTVLATYDLVDGKLVKRWIFDSNVAGAEYAGQGNHNMSVADVDADGKDEFVFGSMTIDDDGKALYNTRLGHGDAIHTSDFDPSRPGLETFAVHESMSASGNIGATFRDSRTGEVLWSIPAARDTGRGAAGDLDPRHAGAEAWAIGGTYAWNSTVGEMRSANGEVLSTKIPAANFLAWWDGDLLREIVDHDFDDATQTGVPTIAKWNWETQASDKLLTAAGAKTNNGTKGNPAVQADLMGDWREEIAWPSADSTELRIYTTSAPTEVRLRTLMHDPVYRADVARENVSYNQPPHTSFYIGEGMKTPEMPAITYTGSRRPGPT0018715_163DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_MEMBRANE_POLYSACCHARIDE_DEGRADING_FUNCTIONSPLANT_MEMBRANE_RHAMNOGALACTURONAN_ENDOLYASE,PGPT0018715-yesW-K18197NANA
D1-29_03658114hypothetical proteinATGGTCGACGCCGTGGGGAACGTCGTGAGCCTGGGCGGCGGCCTGCTGCCGGTCATCTTCCCCCTGCTGCCGCACCGCCGGCAGCCCACCCACCAGAAGGAAGTGCAAGCATGAMVDAVGNVVSLGGGLLPVIFPLLPHRRQPTHQKEVQANANANANANA
D1-29_03659756hypothetical proteinATGAACATCGCAGTCGCCGGCGGAACCGGGAAAGTGGGCCGCCACGTGGTCAGCATCGCCAGGGAGCGGGGGCATGCGGTGAAAATCCTTGCCCGCTCCGAGGGCGTGGACCTCGTCAGCGGCCAGGGCCTTGCCGGAGCGCTGGAGGGTGTGGACACCCTTATTGACGTTGTCAGCATCCAGACCCTGTCCGCCAAAGTATCCGTGAAGTTTTTCAGCGCCACCACCACCCACCTGCTGGAGGAGGCCAAGGCTGCCGGTGTGCGGCACTACCTGGCGCTGTCCATCGTGGGCGCGGACAAAGCTGCCGCCGGCATCTACGCCGGCAAGCTGGTCCAGGAAGAGCTGGTCAGCGGCGGGGACGTGCCCTGGACCATCCTGCGCGCCACCCAGTTCCACGAGTTCGCCGGGCAGGTCCTGGGCCGCAGCTCGGTTGGCCCGCTGGCTGTCGTACCCCGCATGGCCACCCAGCCCATCGCCGCACGGGAGGTAGCCGTGGCCCTGGTGGATGCTGCAGAAGCAGGCCCACAGGGACGGATTCCGGACCTGGGCGGGCCTCGAGTAGAGCAGCTGGTGGACATGGTCCGCGCGTATGCCGAAAAATCGGGGCAGCGGAAGCTGGTTATTGGCGCCACTGCGCCGGGCCGGCTGTGGAAGGCGATGCGCAACGGGACCTTGCTGCCGGAGGCGGGCGCCGCCGTCGGACGCCAGACGTTCCAGGACTGGCTGGCAACCCTGAAGCAGCAGCAGGCCTAAMNIAVAGGTGKVGRHVVSIARERGHAVKILARSEGVDLVSGQGLAGALEGVDTLIDVVSIQTLSAKVSVKFFSATTTHLLEEAKAAGVRHYLALSIVGADKAAAGIYAGKLVQEELVSGGDVPWTILRATQFHEFAGQVLGRSSVGPLAVVPRMATQPIAAREVAVALVDAAEAGPQGRIPDLGGPRVEQLVDMVRAYAEKSGQRKLVIGATAPGRLWKAMRNGTLLPEAGAAVGRQTFQDWLATLKQQQANANANANANA
D1-29_03660432hypothetical proteinATGTCTATTCATCCCCTGGGCCCGAACAGGCATTCTTTTGAAGAAGGCACCGAAGATCGTCCGCTGACGTGCGTAAACTGCGGGACGGACCAGAACTTGGCGGTGCACTCCATCGAAACCCTGAGCCCGTCCTCCGATGTCCTGGTGGAGGTGGGCTATTCCTGCGGCGCGTGCGGGAGTCACTACCTGGACCATGCCGGCGTCACAGCCGTTGCTGCAGTCTTGAACCGGACCGGGAGCTTCAGGAATGTGCTTGCCTTCGGCGGCCACTACATCCACTGCGGCCAGCCAATGCAGAAGGCCGGGTCGGAACTCCGCCGGCTCAGCGCTCCAGTCTTCACCGACAGTGCCTCTGAGGACGGACTGGATGTCTATATGACGACGCGTGTACTGCGCTGTCCATGCGGCTTCCAGATGGAGCTGCCCGAATAGMSIHPLGPNRHSFEEGTEDRPLTCVNCGTDQNLAVHSIETLSPSSDVLVEVGYSCGACGSHYLDHAGVTAVAAVLNRTGSFRNVLAFGGHYIHCGQPMQKAGSELRRLSAPVFTDSASEDGLDVYMTTRVLRCPCGFQMELPENANANANANA
D1-29_03661267hypothetical proteinATGACCATCACGAGCCGGACCACCGGACACAAGACCAGACTCCAAGCTGCATCCCAAGCCGTAGGGGCAGTGTTCCTGCTGGTCGGCGTCCTCGGATTCATTCCGGGCATCACCAGCAATTATGACTCCCTGGGATTGGCCGGGCATGGGTCCGGTGCCCTTCTGCTGGGGATCTTCCAGGTCTCCGTGCTGCACAATATGGTCCATCTGCTTTTCGGCGCCGCAGGCATCCTCCTGTCCCGCAGCCACGGCCAGGCCCCGCGCTAAMTITSRTTGHKTRLQAASQAVGAVFLLVGVLGFIPGITSNYDSLGLAGHGSGALLLGIFQVSVLHNMVHLLFGAAGILLSRSHGQAPRNANANANANA
D1-29_03662231hypothetical proteinATGCTCCTTATTTTTGGACTCAGCACCAAGCTCAAAGCGCTGCCGCCCCGGCCTGCAACCTGCCAATACTGCAGGTCTTTCGTTCAGCACTACCTGGAAGAGCGGGCCACAAAGCTCACGATCTTCTTCATACCCGTCCTCACAACGTCCAGGAAGTACGGCATCACCTGCTCAAACTGCGGTCAGCACTCCATCATCAACAAACGACAAAGAAACGCCCTGACCCGGTGAMLLIFGLSTKLKALPPRPATCQYCRSFVQHYLEERATKLTIFFIPVLTTSRKYGITCSNCGQHSIINKRQRNALTRNANANANANA
D1-29_03663210hypothetical proteinATGTATCTGACGTACAGCAAGCGCCGGCGTCCGGGGCGTCCCGGCGGGCCTGGTGGGGTTCTGCGGGATGCGGGCTGGACCGGCCTGTCCATCGCAGCCGCCGTCATCCTGCTTCCCGCCATCGGCACCAGCGCGCTGGCCCGTGCCATCCTCCGCAAAGGCCCTTCCCCCGACGCGGAAACTGACCGGACCCACTACCTGATCACCTGAMYLTYSKRRRPGRPGGPGGVLRDAGWTGLSIAAAVILLPAIGTSALARAILRKGPSPDAETDRTHYLITNANANANANA
D1-29_036641497hypothetical proteinATGCCTGATCCGGCGGATCAAAACGCTCGCGCCCTCGCACCTGATGCAGATAAAGGGCAGCCGCAGTTGCGCCGACGCCGCGACCTCCGTCGCGCCGACGGCGACCTGACAGACGCCCGGACAGGAACCATGCCAGCCATCACACCCAACCCCTCCAGCCCGTCAGAAGCAGGCCAGCCGCCTATCCGCCGAAGCTCCTGGGCTGAGGCCGCCGCCGCTGCGGACGCAGCAAAAACCACGGGTCACGTCCCCGCCCCCAGCCGGCAGCCGGCATCCTTCGCGCCTGCCGGCCGCCAGCCGGAAGCCGGCCTGCCCGCTTTTAATGCACCGGGGTCTGAAGCAACAGGGCCCGATGCACCTGCGTCTGAAGCGGCGGCTTTTGCCGGTCCCGGCTTTGAGACGCCGGCAGCTGCCGGTCCGGCGGCTGGTGACCAGGACACCAGCACCTCCACCTCCGCCGACAGCGCTGCGGACGCCGTGCCGCCGTCGTCGGACGCTTCTACCAGTACCGAACCGGTGCGCCGAAGCAAGCGGCCCAGCACCGCGGACGTTATTGCCGACACCCCGATGCCGGACTTCACCAGCTCGCCGGGCCTGTTTGTCCGTGAGCAGAAGCCCCGGCCGGTGGGCGGATTCCGCGGCGCCATGTACTCGCTGACCGGTGGGGCCTGGAACCTCGGACCCGGCGCCAAGCAGCGCGCGGAGGACGAGCTGCGCCTCCGGATCGCGCGCCAGCTGCAGGGCAGCTTCAACACGGCGGTCCTGAGCCTGAAGGGCGGCATCGGCAAGACCTCCACCACGGTGGGCGTGGGCCTGACCCTGGCCGAATTCCGCGGCGATCCGCCCTGCGCCATCGATGCCAACCCGGACTCCGGCGACCTGGTGGAGCGCGCCCTGGGCGAGGGCATTTACCAGCAGGCCAGCCCGCGCACCATCACGGACCTGCTCAAGAACATCGACTCCGTGGATTCGCTCACCGCGCTGTCCCGCTACATGCACCACGCCGGCCGGCTGCACCTGATCGCGGGGGAGCAGGACCCGGAGGTCTCGGACTCGCTCACGGCCGCCGAGTACCTGCGGATCCGCAAGCTCATCTCCAGCTACTACTCCATCGCCCTGACCGACTGCGGCACCGGCGTGACACACAACGCCATGAGCGGCATCCTGCAGTCCGCTGACAACCTGATCATCGCCGCCGGGTATGCGGTGAGCGGCGCCAAGCGTGCCCGCAGCACCCTGCACTGGCTGGCGAGCCACGGCTACGAGGACCTGGCCCGGAACGCCATTGTGGTCATCACGGACAAGGACGAAGTCTCCTCCCGGGTGGACAAGGACGCCATCGAGGAACACCTCGCCGGCATCTGCCGCCAGCTCATCGCCGTCCCGCACGACCGCGGCGTGGCCGACGGCGACCTGGTCACCCTGGATGTCCTCAAGCCTGAAACCCGGCGTGCCTACAAGGAAATCGCCGCCGCGATGGTGGACGGGTACCGCTAGMPDPADQNARALAPDADKGQPQLRRRRDLRRADGDLTDARTGTMPAITPNPSSPSEAGQPPIRRSSWAEAAAAADAAKTTGHVPAPSRQPASFAPAGRQPEAGLPAFNAPGSEATGPDAPASEAAAFAGPGFETPAAAGPAAGDQDTSTSTSADSAADAVPPSSDASTSTEPVRRSKRPSTADVIADTPMPDFTSSPGLFVREQKPRPVGGFRGAMYSLTGGAWNLGPGAKQRAEDELRLRIARQLQGSFNTAVLSLKGGIGKTSTTVGVGLTLAEFRGDPPCAIDANPDSGDLVERALGEGIYQQASPRTITDLLKNIDSVDSLTALSRYMHHAGRLHLIAGEQDPEVSDSLTAAEYLRIRKLISSYYSIALTDCGTGVTHNAMSGILQSADNLIIAAGYAVSGAKRARSTLHWLASHGYEDLARNAIVVITDKDEVSSRVDKDAIEEHLAGICRQLIAVPHDRGVADGDLVTLDVLKPETRRAYKEIAAAMVDGYRNANANANANA
D1-29_03665120hypothetical proteinATGCCATACGTAGACATCAACCCTCACAAGGGCCGCCCCAAATGGCAGGCCTACGCGGTCCTTGCGCTCCTCCTGGTGGCCACCTCCGCCGTGGTGGCGCTTGCCCTTTCGCGGGTCTGAMPYVDINPHKGRPKWQAYAVLALLLVATSAVVALALSRVNANANANANA
D1-29_03666138hypothetical proteinGTGGCTCTCGCCGACTTTGCCCTGGCGCTGTGCGCGCTGCTGGGCACGCTGTTGATTCCCTTTCTGGTGATGTACCAGGTGCTAAGACTCAAGCGCCGCGCCGTGCGGGTTGCCGCCATCCGGGAGGGAAGCCGCTAGMALADFALALCALLGTLLIPFLVMYQVLRLKRRAVRVAAIREGSRNANANANANA
D1-29_036671236rebG_24'-demethylrebeccamycin synthaseATGTCCACCATCCTCGCCTACACTTCGCCCGCGCTGGGGCATCTCCTTCCCATGACGCCCCTGCTGCTGGAGCTGCGCCGCCGCGGCCATGACGTGCACGTGCGCACCCTTGCCAGTCACGTGGGGCTGATGCGGAGCCTCGGACTAGCGGCAGAGCCCATCGACCCACGCATCGAATCCGTCGCCATGGACGACTATTTGGCTCGGGGGCCCAAGCGTGCCTTGGAATCCGGGGCAGCCGTTTTCGCCGCCCGCGGCACGTATGACGCTCCGGACTTCCGGACGGCAATTGACGGGATCCACCCGGACGCTGCCATCGTGGACATCAATACCTGGGGCGCCGGCTTCGCGGCGGAGGCCTGGGGCGGCCCCTGGGTGTCCTTCTCGCCCTACACTCCCGCGCTCAACTCTCCGGGTACGCCGCCGTTCGGTCCTGGACTGCCGCCCATGAGCGGCTTCCTGGGGCGGGCCCGGGATGCCCTGGTGGGCAGGGCCGTCATCGGAGCGGTGGAGCAGTCCCTGCTGCCGCGGCTCAACGCCTTGCGGGAACAGCTGGGGCTTCCGCCAGTGGCATCGGCCGATGAGTTCCTCCGCAAGGCCCCGTTGATGCTTGTCACCACCGCCAAGCCGTTCGAGTACGCCGTCACGGACTGGGGGCAGGAGGTCCTGATGGTGGGCGCCTCCACGTGGGAGCCTCCGCAGGACATCCCGGAATGGCTGAACGCCATCGGCAAGCCAATAGTCCTTGTCACCACGTCCTCAGAGTTCCAGGACGACGGCGTGCTGGTCCGGACTGCCCTGGGCGCGTTCCGGGACGAGCCGGTGCACGTTGTTGCCACCATGCCTGCGGGCATCCCTGACGGGCTGGACGTGCCGGCCAATGCGACCGTTGTGGACTTTGTTCCCCATAACGCCATCCTTGACCGTGCAGCCGTTGCGGTCACCCACGGCGGCATGGGCTCCACCCAGAAGGCGCTGGCGCACGGCGTGCCGGTGTGCGTGGTGCCTTTTGGCCGGGACCAGCTGGAGGTGGCCAGGCGGGTGGAGGTCAGCGGGTCAGGGATCCGGCTCCCGCGCAGGAAGCTCTCGCCGGAGCGGCTTCGGCGGGCTGTGAAGGACGCCATGGCCAGGCGGGCCGGGGCCACGCGGGTGGCTGAAGGCTACGCCGCTGCCGGCGGAGCGTCCGCCGCGGCGGATGCCATCGAGGCCTGGCTGCTTCAGTCACACACCGCTTGAMSTILAYTSPALGHLLPMTPLLLELRRRGHDVHVRTLASHVGLMRSLGLAAEPIDPRIESVAMDDYLARGPKRALESGAAVFAARGTYDAPDFRTAIDGIHPDAAIVDINTWGAGFAAEAWGGPWVSFSPYTPALNSPGTPPFGPGLPPMSGFLGRARDALVGRAVIGAVEQSLLPRLNALREQLGLPPVASADEFLRKAPLMLVTTAKPFEYAVTDWGQEVLMVGASTWEPPQDIPEWLNAIGKPIVLVTTSSEFQDDGVLVRTALGAFRDEPVHVVATMPAGIPDGLDVPANATVVDFVPHNAILDRAAVAVTHGGMGSTQKALAHGVPVCVVPFGRDQLEVARRVEVSGSGIRLPRRKLSPERLRRAVKDAMARRAGATRVAEGYAAAGGASAAADAIEAWLLQSHTANANANANANA
D1-29_03668606hypothetical proteinATGAAATTGGCGGAAGAGGCCAAGCGGCCTTACCGGATGGCAGCCCGTTCCGATGCTGCCGCGGCCACGGCTGAAGCAATTCTCGACGCCGTGACGGAGCTCTTCTGGGAGCAGCCATCCGATCAGATCCGCCTCGATGAAGTGGCCGCAAGGTCCGGCGTCACCGTCCAGACCGTCATCCGCCGCTTCGGAAACAAGGACAAGCTGTTCGCCGCGGCCGCGGAACGCCAGTCGGAGCGGGTGGTGCAGGCCCGCTCACGGGTGGTGCCGGGGGATGTCCCGGGCGCGGTGGCCAACCTGATGGAGCACTACGAGCTCATGGGCGACCGTGTGCTGCGGATGCTTGCAGAAGAGGGCCGCATTCCGGCGATCAAGGTGCTTGCCGACCAGGGCCGCCTCCTGCACCGGCAGTGGTGCGAGCACGCCTTCGCCCCGTTCCTCCCTGACCAGCCGGCGGCCGTCCGTAAGCGGCGGCTTGCCCAGCTGGTAACCATCTGTGATGTCTACACCTGGAAGCTGCTGCGCCGCGACAGCGCACTCACCCGCCGTCAAACTGAGCAGGCCCTCGCGGAGATGCTTGCCCCCTTCACCAAGGACGTGACCTGAMKLAEEAKRPYRMAARSDAAAATAEAILDAVTELFWEQPSDQIRLDEVAARSGVTVQTVIRRFGNKDKLFAAAAERQSERVVQARSRVVPGDVPGAVANLMEHYELMGDRVLRMLAEEGRIPAIKVLADQGRLLHRQWCEHAFAPFLPDQPAAVRKRRLAQLVTICDVYTWKLLRRDSALTRRQTEQALAEMLAPFTKDVTNANANANANA
D1-29_03669528hypothetical proteinATGAAGACCCTCTTCAATGGTCGATTGTGGGTGCACTACGGCCAGGCCTATGTCGTGTCCGGGCCCGTCTTCGACTCTGACTTAGAGGCATCTTTTCGAGGTCAGTCCAACGGCCTGTGCGGTGCTTCCAGCCCCAACCTCCTATTTCTCATCACGGGTCTGCACACCGGCCATGTCAATTTCAGCGTCGGGTTCTCCGATGCAGAACCGCCACTGGATCGGGCATGGGAGGACATCGTCGAAGTCTCATTCACAGTGGTTCACCGTCCCTTCCTAGAGGAGTGGGGAGGCCAGGTCTTGTATCCAATAGACCTGGCTCCTGGCACCTACCGCGTCCGGTACGCGGCAAGGGGAATGGACTCTGCCCGCGCAGTCGACACAATCGTTGAAACAGAGGAGCCGGTCGACACCTATCAGCTCTGCTTCTGGCCCGCTAAGGGCGATGCGCCTGACCGCGTGGTTCGCCAGGAGAGCCAAACCGCAACGTACTGGAATGGCTGGGCCAACTCGCTCCACCCCGCAAGTTGAMKTLFNGRLWVHYGQAYVVSGPVFDSDLEASFRGQSNGLCGASSPNLLFLITGLHTGHVNFSVGFSDAEPPLDRAWEDIVEVSFTVVHRPFLEEWGGQVLYPIDLAPGTYRVRYAARGMDSARAVDTIVETEEPVDTYQLCFWPAKGDAPDRVVRQESQTATYWNGWANSLHPASNANANANANA
D1-29_03670816hypothetical proteinATGTCAGAATGGCTCGAAGTGGGCGCGGACAACTATGTGCTCGTCACCGAAGGTTCACTCCTGAACACCGGCCTGATTGTCGGCTCCGAGCGGGCCATGGTGATCGATACGGGCTGCGGTCCGCGGCAGGGACGCGAGATCCTGGACGCAGTGCGCGAGAAGACCCAGCTGCCGCTGGTGGTGGTCAACACCCACGCCCACTACGATCACTTCTTCGGCAACGCAGTCTTCGCGGAGGACGGCACTGACGAATTCTGGGCCCATGAAAACTGCGCCGCCGAAATCGACGAGCGCGGGGACCTGCAGCGCCGTTTTGTTGGCACCCTGGAGCCGGAAATGTCCACCGGCGAAGGTGACAATGTTGAACTGGTGGTGCCCAACGCCATCGTGAAGGACCAGCCCGTGCTGGTGGACCTCGGCGGGCTGACCGCCACCCTGTTCTACCTGGGCCGCGGCCATACCGACGGCGACCTCCTGGTGGGCACCTCCACCACCCTCTACGTGGGCGACCTCGTGGAACAGGGCGCACACCCGTCCTTTGAAGATTCCTACCCGGAGGAATGGGCCGACGCCCTGCGGCACATTTCCGCACTGCGCCACCGCTACGAGTTCCTGATCCCGGGCCACGGCAAACCCTGCAGCGATCAGTTCGTGAAGACCATGGCGGACACCATGACCACCGCCGTCCGCCAGGCCAGGCAGTCCATCCGCGATACCCCGACGGACGCCACCAAGGCCATCCCCGTGCTGCCTTACGGCCCCGAGCAGTCCCGCTGGTTCATCAAGCGGCTGCAGGAGACCCGCCGGGAGCACTAAMSEWLEVGADNYVLVTEGSLLNTGLIVGSERAMVIDTGCGPRQGREILDAVREKTQLPLVVVNTHAHYDHFFGNAVFAEDGTDEFWAHENCAAEIDERGDLQRRFVGTLEPEMSTGEGDNVELVVPNAIVKDQPVLVDLGGLTATLFYLGRGHTDGDLLVGTSTTLYVGDLVEQGAHPSFEDSYPEEWADALRHISALRHRYEFLIPGHGKPCSDQFVKTMADTMTTAVRQARQSIRDTPTDATKAIPVLPYGPEQSRWFIKRLQETRREHNANANANANA
D1-29_036711167hypothetical proteinTTGAGCAACAACCAGCAGCCCGGTTGGCCGCACCAGCCCAACCAACAGCAGCCTAGTTCGCAGCAGCCACATCAACAGCAACCACAGCCTGAGCACGGCCGGGAATACCCGGCTGTCCTGCAGGCGCCGGGCCAGGACGGGCAGCAGACCCAGCAGTTCCCGCCCTACAACCCGCAGCAGCCGGGCCAGGAGGGGCAGCAGACCCAGCAGTTTCCGCCCTACAACCCGCAGCCGGGCCAGGACGGGCAGTACAGCCAGCAGCCACAGCCTGAGTACGGCGGCGATTACCCGACTGTCCGCCGTTACCCTAGCCAGGACGGACAGCAGACCGGGCAGTACCCGCCCTACAACGTGCAGCAGCCAGGCCAGGCAGGGCAGCCGTTTTATGGAGATCCCGCGCAGCAGTACCCCGCACAGCAAAACGGTGCCCCTTACGGGCAGCCGGGCTCCCCGATGTATCCGCAGCCTGCACAGAAAAGCGGCATGCCGGTGTGGGGCTGGGTCGCCAGTGGCGCCGGCGCCTTGGCTGTAATCGCAGTGGCAGGCGTGATGGTGTTCAACGGCCTCGCCGGCGGCAAGCAGCAGCCTGTAGTGGCTGACCCGACCGCCAGTGAGTCGGCAGCACCGGAGGAATCAGCGGCACCGGTGGAAACGGAGGCGGCGGAGATCGTTTCCCTCTATGACGAAACAGACTTTGCCAGCGCACCGGTGTGGTCGGTCCAGGCACCAGAGGGCTGGACCATGGAGCAAGTCCGCGAGGGCACCATGGAGTACACAAACGCGGACCTGCAGTGCGTTTTTACCACCCATCAGGCCATCCTCCCTCCCATCAGCGAAACCGAGGAATTGGGCGCCACTAAACTGGCCATGGCGGCTGAGATCGATGCTGTGAAAAAGTCCGTTGAGAGTTCCGTAGAGGTCGTGGAAGAAGACGGTTCCGCCTACATCAAGCTGCGGGATGACAGTACGGAAATCGAACTTCAGAAAGCGGAGCTCCGCTTCAAGAACAAGAACAACTCCGATGTGGTCTACCTGATGGCCGTGCGCGCCACCCCATCCAGTGACGGGCTGATGGAAGTGGGCCTCGCCTGCCCCGGCGGAATGACCGGAGCGTCTTCGCTCTGGTACGAACTCGTTGAGCGGGTAACCATGACGGACGCGCCGTAGMSNNQQPGWPHQPNQQQPSSQQPHQQQPQPEHGREYPAVLQAPGQDGQQTQQFPPYNPQQPGQEGQQTQQFPPYNPQPGQDGQYSQQPQPEYGGDYPTVRRYPSQDGQQTGQYPPYNVQQPGQAGQPFYGDPAQQYPAQQNGAPYGQPGSPMYPQPAQKSGMPVWGWVASGAGALAVIAVAGVMVFNGLAGGKQQPVVADPTASESAAPEESAAPVETEAAEIVSLYDETDFASAPVWSVQAPEGWTMEQVREGTMEYTNADLQCVFTTHQAILPPISETEELGATKLAMAAEIDAVKKSVESSVEVVEEDGSAYIKLRDDSTEIELQKAELRFKNKNNSDVVYLMAVRATPSSDGLMEVGLACPGGMTGASSLWYELVERVTMTDAPNANANANANA
D1-29_036721893glmS_3COG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]ATGTGTGGAATCGTGGGATATGTGGGCCATTCGAACGGCCGCGGGAATGCCGGTCATGATGCGCTGGAAGTGGTCTTTGAAGGATTGCGCCGCCTGGAGTACCGGGGCTATGACTCCGCGGGTGTTGCGGTGATCTCGGATGGGATGATTTCCTCCCGGAAGAAGTCGGGCAAGCTCAGCAACCTGCTCACGGAACTGCAAGAGCGCCCGCTGCCTGAGACCTCCACCGGCATAGGCCACACTCGCTGGGCAACGCACGGCGGACCCACGGACGAGAACGCGCACCCCCATCTGTCCGACGGCGGCAAGCTGGCCCTGATCCACAACGGCATCATTGAGAACTTCGCCGAGCTCAAGAACGAGCTGCTAGCCAGTGGCGTCACGTTCGGTTCCGAGACGGACACCGAGGTCGCTGCGGCGCTGCTGGGCGATATTTTCCGCACCAAGCTCAACGGAGCCGTGAGCGACGGGGGCCTGACGAAAGCCATGCAGCTGGCCTGCCAACGCCTTGAGGGCGCCTTTACCCTGCTGGCCGTGCATGCCGACCAGCCCGACGTGGTGGTTGCCGCCCGCCGCAACTCGCCCCTGGTGGTTGGCTTGGGTGAGGGAGAAAACTTCCTGGGCTCGGACGTTTCCGGCTTCATTGACTACACCCGCCGGGCCGTGGAGCTGGGCCAGGACCAGATTGTCACCATCACGGCAGACGAGGTGGACATCACTGACTTCTACGGTGCCCCCGCCAAAGGCAAGGAATACTTCGTTGACTGGGATCCGGAATCGGCAGAAAAGGGTGGCTATGGCTCTTTCATGGAGAAGGAAATCCATGACCAGCCCGATGCCGTGGGGCAGACACTGCTGGGGCGCTCGGATATCAACGGAAAGCTGACCCTGGACGAGCTCCGGATCGACCCCGCAGAGCTCAAGAACGTCAACAAAATCATTGTGCTGGCCTGCGGCACGTCAGCGTACGCTGGCCAGGTGGCTAAGTACGCCATCGAACGCTGGTGCCGGATCGCCACTGAGGTAGAGCTCTCCCACGAGTTCCGTTACCGGGACCCGATCGTGGACGCCCACACCCTGGTGGTTTCCATCTCCCAGTCCGGGGAGACCATGGACACTCTGATGGCCGTCCGCTACGCGAAGGAACAGGGCGCCAAGACCCTCTCCATCTGCAACACCAACGGCTCTACCATTCCGCGTGAATCGGACGCCGTGCTGTACACCCACGCCGGTCCGGAGATCGCGGTCGCGTCCACGAAGGCGTTCTTGGCGCAAATTACTGCTGCGTACCTGCTCGGGTTGTACCTTGCCCAGCTGCGCGGCAACCTGTTCCAAGGGGAAATCAAGGACATCCTGGCAGACCTGGGCAAGATCCCGGCCAAGATCCAAACCATCCTGGATAACGCCGGCCCGATCAAGGAATTGGGTAAGTCCATGGCCGATGCCAAGTCGGTGCTATTCCTGGGCCGCCACGTTGGCTTCCCGGTAGCCATGGAAGGAGCTTTGAAGCTCAAGGAGCTCGCTTACATCCATGCCGAAGGATTTGCGGCCGGCGAGCTGAAGCACGGACCCATTGCGCTGATCGAGGAAGGCCAGCCCGTGTTCGTGGTGGTCCCCTCCCCGCGCGGCCGCGATTCCCTGCACGCCAAGGTGGTCTCCAACATCCAGGAAGTCCGCGCCCGCGGTGCCAAGACCATCGTCATTGCGGAAGAGGGGGACGAAGCGGTTAAGGCCTATGCCGAGCACGTCTTCTACATTCCGGACACGCCCACGCTGCTCGCACCGCTGCTGGCCACCGTGCCGCTGCAGATCTTCGCCCTGGAACTCGCCTCGGCCAAGGGCTACGACGTGGACCAGCCTCGTAACTTGGCCAAGAGCGTCACCGTAGAATAGMCGIVGYVGHSNGRGNAGHDALEVVFEGLRRLEYRGYDSAGVAVISDGMISSRKKSGKLSNLLTELQERPLPETSTGIGHTRWATHGGPTDENAHPHLSDGGKLALIHNGIIENFAELKNELLASGVTFGSETDTEVAAALLGDIFRTKLNGAVSDGGLTKAMQLACQRLEGAFTLLAVHADQPDVVVAARRNSPLVVGLGEGENFLGSDVSGFIDYTRRAVELGQDQIVTITADEVDITDFYGAPAKGKEYFVDWDPESAEKGGYGSFMEKEIHDQPDAVGQTLLGRSDINGKLTLDELRIDPAELKNVNKIIVLACGTSAYAGQVAKYAIERWCRIATEVELSHEFRYRDPIVDAHTLVVSISQSGETMDTLMAVRYAKEQGAKTLSICNTNGSTIPRESDAVLYTHAGPEIAVASTKAFLAQITAAYLLGLYLAQLRGNLFQGEIKDILADLGKIPAKIQTILDNAGPIKELGKSMADAKSVLFLGRHVGFPVAMEGALKLKELAYIHAEGFAAGELKHGPIALIEEGQPVFVVVPSPRGRDSLHAKVVSNIQEVRARGAKTIVIAEEGDEAVKAYAEHVFYIPDTPTLLAPLLATVPLQIFALELASAKGYDVDQPRNLAKSVTVEPGPT0017630_991DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-29_03673141hypothetical proteinATGGTCCAGTGGACTGTCCCCATCAGTTCGTGGGAGTCTGCGCAGCATGTCAAGGTTCTGAAACGTATCGAATACCGGGTTCCGTATTCGAACTACAAATCGACGACTCCTGTTACTAATTCCTTCCTTGTTCCGTCCTAGMVQWTVPISSWESAQHVKVLKRIEYRVPYSNYKSTTPVTNSFLVPSNANANANANA
D1-29_036741407pdhC_2COG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexATGACTGAGACAAAAGTATTCCTTCTTCCGGACCTCGGCGAAGGGCTGACAGAAGCCGAACTGGTTAACTGGCTGGTTTCTGTGGGTGATCAGATCCGAGTGGATCAGCCGATCGCCGAGGTGGAGACGGCGAAGTCGATGGTGGAGGTGCCGTCGCCTTATGCGGGGACAGTGACCGAGCTGCACGGCGAGCAGGGCCAGACGCTTGAGGTTGGGAAGCCGCTGATCTCGGTGGCTCCCGCCGGGGCTCCTGTGGTTGAGCCTGTCGAAGTGGCAGCCGACATATACCGCGAAGAGGAGAAAGCCGGCTCTGGGAACGTGCTGATCGGTTACGGCACTCGGGGCGGCAGCGGGTCTGTGCGTCGAACCAGAGCCCGAAGGCATGACAGCGGATCGACGGGTGCCGGTGTCTCGGTGGGCGCTTCGCCGGGCAGTTCCGTCTCCGATGCTGAAAAGGCTGCTGACGAGCTTCTGCTGATGCTGACACGGGTCCCGGGCAAGTTGGGTGCCGTCATTTCACCGCTGGTGCGCCGGATGGCCCGGGAGCATGGCGTTGACCTCGGCGAGATCCATGGATCCGGCGAAAGCGGCCTGATCATGCGGCGTGACGTTGAGGCCGCGATCTCGGCCCCGAATGTGACGGAACAGGACAGCCAGCCTCCAACTCCAGCGGCACAGGGCTCAACCGATTCCCGGACCGGCTTGGGCATCGCTTCCCGCACACCAGTTAAGGGTGTGCGCAAAGCCGTTGCTGCGAACATGGCCCGCAGCCGCGCGGAAATCCCGGAAGCCACAGTGTGGGTGGACGTTGATGCCACTGCTCTTGTGGAGCTCCGGGCGGGCCTGAAAAAGGACGCTGGTCCCGCCCCAGGCTTGCTTGCCTTTATTGCCCGCTTTGTGACCGCGGGACTGAAGAAGTATCCGGAACTGAACACCAGGATCGAAACAGCTTCAGACGGTACACAGGAGATCGTTGCCTTCGAGGGCATCAACCTTGGCTTTGCCGCTCAAACGGACCGCGGGCTGGTGGTGCCGTCCATCCGGTCAGCGGAGAAGCTGAGCGCCCGGGAGCTGGATGGGGAGATCCGCCGGCTCACGATTGTGGCCCGTGAGGGTAAAGCATCTCCGGCCGAACTTGGCAGCGGGACGTTCACCCTCAATAACTACGGTGTCTTTGGGGTGGATGGGTCGGCAGCCATCATCAATTATCCGGAAGTGGCCATACTCGGCGTTGGCAGAATTATTGATAAGCCGTGGGTGGTGGACGGTTCCTTGGCCGTCCGCAAGGTTACTGAGCTGACGCTCACGTTCGATCACCGGGTTTGTGACGGTGGAACGGCGGCTGGGTTCCTTCGGTTTGTTGCTGATGCTATGGAGAACCCGGGGCCTGTGATTGCGGAGTTTTGAMTETKVFLLPDLGEGLTEAELVNWLVSVGDQIRVDQPIAEVETAKSMVEVPSPYAGTVTELHGEQGQTLEVGKPLISVAPAGAPVVEPVEVAADIYREEEKAGSGNVLIGYGTRGGSGSVRRTRARRHDSGSTGAGVSVGASPGSSVSDAEKAADELLLMLTRVPGKLGAVISPLVRRMAREHGVDLGEIHGSGESGLIMRRDVEAAISAPNVTEQDSQPPTPAAQGSTDSRTGLGIASRTPVKGVRKAVAANMARSRAEIPEATVWVDVDATALVELRAGLKKDAGPAPGLLAFIARFVTAGLKKYPELNTRIETASDGTQEIVAFEGINLGFAAQTDRGLVVPSIRSAEKLSARELDGEIRRLTIVAREGKASPAELGSGTFTLNNYGVFGVDGSAAIINYPEVAILGVGRIIDKPWVVDGSLAVRKVTELTLTFDHRVCDGGTAAGFLRFVADAMENPGPVIAEFNANANANANA
D1-29_036751113bkdB_2COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaGTGAGCCCCACAGTCACCACCTCATCCGAGGCGAACGGCAATGTCAGCGCGGCAACTGCCAGGGCCGCCGCGTCCGCTGCAGCCACCGCCGAAGCGGCCGGTCCGCAGTCCGTCACCATGGCCAAAGCCCTCAACACAGCCTTGGCAGACGCAATGCATGACGATCCGTCCGTCCTGGTCTTCGGTGAAGATGTGGGCATGCTGGGAGGGGTCTTCCGCATCACAGACGGACTCACCAAGACTTTCGGCGAAAAGCGCTGCTTCGACACTCCTCTCGCGGAGTCCGGCATTGTCGGCATGGCAGTGGGCATGGCCATAAACGGCATGCGCCCCGTGATTGAAATGCAGTTTGATGCCTTTGCGTATCCGGCGTTTGAGCAGATAGTCAGCCATGTGGCCAAGATGCACAACCGAACCAAGGGGGCCATCAAGCTGCCCATTGTCATACGCGTTCCCTACGCAGGCGGGATCGGGGGAGTGGAGCACCACTGCGATTCCTCTGAGTCGTACTACGCCCACACCGCCGGCCTGAAGGTATTCACTCCTGCCAGCGTTGCCGACGCCTATGTAATGCTGCGCGAGGCCATCGACTCCGATGACCCCATCATGTTTATGGAGCCGAAGAAGCTCTACTGGTCCAAGGACATGGTGGACCTGGAGACGCTGCGGGAGCAGCACTCGGCAAATACAAAGGGTGGCAAGTCCTCGGAAGGCCGTGCCGCCGTCGCCCGTCCTGGCACTGATGCAACATTGATTGCCTACGGACCGTCGGTGCCGACAGCGCTGGCGGCGGCCGCGGCGGCCGCTGAGGAAGGGCGGTCGTTGGAAGTCATCGACGTGCGCTCAATCGTCCCCTTCGACGATGAAACCGTATGTGCCTCCGTCCGTAAGACTGGCCGGGCTGTAGTGATCGCGGAAGCGCATGGCTTTGCATCCGTCTCCTCCGAGATCGTGGCCAGGGTGCAGGAACGATGCTTCCACTACCTTGCAGCGCCGATCCACCGCGTGACGGGTTTCGACGTCCCGTACCCGGCGCCGAAGCTTGAGCACTACTACCTCCCCGGCGTGGACCGCATCCTTGACGCCGTAGACGACCTCCAGTGGGAAGACTGAMSPTVTTSSEANGNVSAATARAAASAAATAEAAGPQSVTMAKALNTALADAMHDDPSVLVFGEDVGMLGGVFRITDGLTKTFGEKRCFDTPLAESGIVGMAVGMAINGMRPVIEMQFDAFAYPAFEQIVSHVAKMHNRTKGAIKLPIVIRVPYAGGIGGVEHHCDSSESYYAHTAGLKVFTPASVADAYVMLREAIDSDDPIMFMEPKKLYWSKDMVDLETLREQHSANTKGGKSSEGRAAVARPGTDATLIAYGPSVPTALAAAAAAAEEGRSLEVIDVRSIVPFDDETVCASVRKTGRAVVIAEAHGFASVSSEIVARVQERCFHYLAAPIHRVTGFDVPYPAPKLEHYYLPGVDRILDAVDDLQWEDPGPT0008862_273DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
D1-29_036761215bkdA_2COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaATGACGATCTCCGCAGACCACACGGCGCACGACCAGGGGCAGCCCCTGAGCGCGGACCCGGTTGCCGAAGCCGTACGCAAATTTGGGATTACCGCTGAAGATTACATGCTGCCGGCCCGCCATCAGATCCAGATGGTGGACCAGAATGGCCGGCTCAAAGCAGAGGATGAACAAGGCACAGAACCCGGCCACGAGTATCCGCTGCCCGGTGATGAGGAGCTGATGGCCGCCTACGAGCAGCTCGTGATCGGACGCCGCGTCAACGATCAGAACTCTTCTCTCGTCCGGCAGGGCCGTATGGCGGTTTATCCCTCAAGCCACGGACAGGAAGCCTGCCAGGTGGCTGCTGCCCTTTGCCTCTCAGAGGGCGACTGGATGTTCCCCACTTATCGGGACTCGGTCGCCGTGATGGCACGCGGAGTGGATCCGGTCCAGGCCATGACCCTTTTCCGCGGCGACTGGCACAGTGGCTTCAACCCGCTGAAGCACAAGGTTGGTCCCCAATGCACTCCTCTGACCACCCAGCTGCTGCATGCCGTCGGCGTGGCCCACGCTGCAAAGCTCCGCGGCGAGAACATCGTGGTCCTGGCCATGTGCGGCGACGGGGCCACCAGCGAAGGCGACTTCCATGAGGCGCTGAACTTCGCTGCTGTCTTCCACCTGCCAGTGATCTTTTTCGTCCAGAACAACAAATACGCCATTTCGGTGCCGCTGGCACATCAGTCTGTGGCGCCGTCGCTCGCACACAAGGCAGTGGGCTACGGGATGGCCGGAGAACGCGTGGACGGGAACGACGTCGTGGCACTCCTTGCCGTCCTGGACCGCGCCGTCAAACTGGCCAGGGAGGGCTCCGGCCCATTGCTCGTTGAAGCGAACACCTACCGCATGCAGGCCCACACCAATGCCGACGATGCCACACGCTACCGCCAGGACAGCGAGGTGGCTGAGTGGCAGGCCAAGGACCCGGTGAGCCGGATGAAGACATACCTTACGGACAAGGGGCTGCTGGACGGTGCCGCTGAAACCCGGATCGCAGCCAAGGCGGAGGCTGTGGCCACCCAGCTGCGGGACGGCCTCAGCGAAGAAGTTCCCGTGGACCCACAGGAACTCTTCCGCTATGTCTTTGAAGTCCCCACCCCGCAGCTGAAAGAACAGTCCGCCATGCTCGCCGACGAACTCGCCCGCGAAGCAACCTTCGAGGAGGACGCAAAGTGAMTISADHTAHDQGQPLSADPVAEAVRKFGITAEDYMLPARHQIQMVDQNGRLKAEDEQGTEPGHEYPLPGDEELMAAYEQLVIGRRVNDQNSSLVRQGRMAVYPSSHGQEACQVAAALCLSEGDWMFPTYRDSVAVMARGVDPVQAMTLFRGDWHSGFNPLKHKVGPQCTPLTTQLLHAVGVAHAAKLRGENIVVLAMCGDGATSEGDFHEALNFAAVFHLPVIFFVQNNKYAISVPLAHQSVAPSLAHKAVGYGMAGERVDGNDVVALLAVLDRAVKLAREGSGPLLVEANTYRMQAHTNADDATRYRQDSEVAEWQAKDPVSRMKTYLTDKGLLDGAAETRIAAKAEAVATQLRDGLSEEVPVDPQELFRYVFEVPTPQLKEQSAMLADELAREATFEEDAKPGPT0008861_1067DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
D1-29_03677465lrp_2COG1522Leucine-responsive regulatory proteinTTGGCAAGACCCGAGGCTGAGGGCGACCCGGCGCCGCTGGATGATGTGGACCGGAAAATCATTGCCGAGCTCACCCGTGATGGCCGAATGTCCGTCACCCAGGTGGCAGAGAATGTCCACATCTCGCGGGCGCACGCTTACACACGGATAGCGAGGCTGACAGGGGACGGAGTGCTGACCAAGTTCACTGCCTTGGTTGACCCCATCAAGGCCGGGCTCAAGTCCTCTGCCTACGTGACGCTAAAGGTCAGCCAGCATTCATGGCGCGAACTGCGCGAACAGCTACGCAACATCCCTGAGGTGCATCACATTGCCCTGGTGGGCGGCGACTTTGATGTCATCCTGCTGGTCCGCGCCATCGACAACATCGACCTGCGTCGGGTCATCTTTGACCAGCTTCAGTCCATGCCTGGGGTACTTGATACACAGACGTTTCTGGTGTTTGAGGATGTGGATACACGCTAGMARPEAEGDPAPLDDVDRKIIAELTRDGRMSVTQVAENVHISRAHAYTRIARLTGDGVLTKFTALVDPIKAGLKSSAYVTLKVSQHSWRELREQLRNIPEVHHIALVGGDFDVILLVRAIDNIDLRRVIFDQLQSMPGVLDTQTFLVFEDVDTRNANANANANA
D1-29_03678156hypothetical proteinGTGAACTTCGACGCCGAGACCTACAAAGGCCGCAACACGGTGGAGAGATCCACCAGCCGCTTCAAACAATGGCGTGCCATCGCCACCCGCTACGACAAACTCGCACTGACCTACCAAGCCGGTGTCGGCCTCTATGCCGTCGTCATCTGGCTATGAMNFDAETYKGRNTVERSTSRFKQWRAIATRYDKLALTYQAGVGLYAVVIWLPGPT0030660_93DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030660-putative_transposase-K07492NANA
D1-29_03679678hypothetical proteinATGCCTCTTCCAGATGCTTCAAGCAGGCCTCAGGAGGCCTTCAGATGGGATAGCACTGCCATTGAGTCAGCGGCGGCTATGGCAAGGAGCACCAGAAAGATGTGGGGCATCGTCTGGGGGAGGGTAAGGGAGAGGATGGACTGCCAGGGTCTAGGCAAATGTCTCCCCATAGCCCTAATGAATACCAAAGGCCTGGTTTTCCGCACTGTGGCTTGGGACTTAAAGCTGGGGGTGGGTGGTTCTCGGTTTCCCGAGAACCACCGACCCTCAGTTCCTGAAAAAGGGAATACGCCCAACTGTGTTCGTTGGCGTTCCAATAAGCGCATAGAGGTCGGTCGAAAGAACCTGTCGAACCGATGGCAGAGATTCGTGATGAGGCCTCTTCGCCGGGATCGGGATTCTGTGTGGTGCCGGATCGATACCTTGCTGCCGAGTACCGACGGGCGGCGTGGACGCCCGTACGGGGGCCACCGCCAGGTCGTTGAAGCCATCGTTTACTGGTACCCCGGTGCGGCATTGCCTGGCGGAACCCTCCCGCGAGTTCGGTCCGTGGCAGACAGTCTGGAAGCGGCACCGCCGTTACGCGTCCGAGGGGACGCGGGACCAGAGCCACCGAAGGCTTCTGGCCGAATCGGACGCCGGGCTGATCGATTGGGCAGTTTCGGTGGACTCGACTAGMPLPDASSRPQEAFRWDSTAIESAAAMARSTRKMWGIVWGRVRERMDCQGLGKCLPIALMNTKGLVFRTVAWDLKLGVGGSRFPENHRPSVPEKGNTPNCVRWRSNKRIEVGRKNLSNRWQRFVMRPLRRDRDSVWCRIDTLLPSTDGRRGRPYGGHRQVVEAIVYWYPGAALPGGTLPRVRSVADSLEAAPPLRVRGDAGPEPPKASGRIGRRADRLGSFGGLDNANANANANA
D1-29_03680420hypothetical proteinATGCTTGTCCCGCTCGCACTGGTGGCCTTCTCGTCAAGCCCCATTGACCAATCCGTGTCAGGGGACCTGGCCGGAGTCCTGAAATTTTTCTCCATGCCCACGGAACCCCGCCTGGTTAATTACGAATTTGTCGAATCCGCAGCGAACGTGGTGCTATTTAGCCCGTTGGGGCACGCGGCAGCACTGGCATGTGCAGAAAAGCGATGGTGGCAAATAGGCATCTTAGGCACGCCAGTGTCCGGCGGCATCGAACTCGGACAGCTGAGGTTTATTCAAAAACGGTTCGCGAGTGCGCAGGATCATGTCACAAATACCACAGGGGCAGTCATAGGGGCGCTGCTGGCCGTTGCGGCCCTTAAACGGCCAGGCCAGGCCCTCTGCGGCGGGCATGCAGCAGCAGTAGCTGCGGGGACTAGCTGAMLVPLALVAFSSSPIDQSVSGDLAGVLKFFSMPTEPRLVNYEFVESAANVVLFSPLGHAAALACAEKRWWQIGILGTPVSGGIELGQLRFIQKRFASAQDHVTNTTGAVIGALLAVAALKRPGQALCGGHAAAVAAGTSNANANANANA
D1-29_03681885gtaB_2COG1210UTP--glucose-1-phosphate uridylyltransferaseATGGGGAAAGCTATAACCAAAGCCGTCATTCCTGCTGCCGGATTGGGAACTCGCTTCCTGCCCGCCACTAAGGCGATGCCGAAGGAAATGTTGCCGGTGGTTGACCGGCCGGCCATCGAGTACGTGGTGGAGGAAGCCGTTCAGGCAGGCCTCACCGACCTGCTGATGATCACGGGGCGGAACAAGCGCTCCCTGGAAGATCACTTTGACCGGGAACCCGGCCTGGAGCGTGCCCTGGAGCTGAAGGGCGACAAGAGCCGCCTGGAGGCCGTGCAGCACGCTTCCCAGTTGGGGCCCATCCACTATGTCCGCCAGGGCGAGGCCAAGGGGCTTGGCCACGCGGTGCTGTGCGCCAGCCAGCACGTGGGGAACGAGCCGTTCGCCGTGTTGCTGGGTGATGACCTGATTGATGAGAACGACTGCCTGCTCAGCACCATGATGGAGGTGCAACAGAAGACCGGCGGTTCCGTCATCGCCATGATCGAGGTGGATCCGTCCCAGATCAGCGCCTACGGATGTGCGGACATCACGGCCATTGACGGCGAGGACTACGTCCGCGTCAACAGCCTGGTGGAGAAGCCGGCTCCTGGTGAGGCGCCGTCCAACCTGGCGGTGATCGGGCGCTACGTGCTGCACCCGTCCGTCTTCGGCATCCTGGAGAAAACCGGTCCGGGCCGTGGCGGCGAAATCCAACTGACGGACGCGCTGCAGACACTCGCTGCTGGCGAGGGCGAGGGCTCAGGCGTGTACGGAGTGGTATTCAAGGGCCGCCGGTTCGATACCGGAGACAAGCTGAGCTACCTCAAGGCTGTCATCACGCTTGCCTCCGAGCGTGTGGAGTTTGGCGAGGATCTGAAGACCTGGATGAAGGGCTTCGTCAGCTAGMGKAITKAVIPAAGLGTRFLPATKAMPKEMLPVVDRPAIEYVVEEAVQAGLTDLLMITGRNKRSLEDHFDREPGLERALELKGDKSRLEAVQHASQLGPIHYVRQGEAKGLGHAVLCASQHVGNEPFAVLLGDDLIDENDCLLSTMMEVQQKTGGSVIAMIEVDPSQISAYGCADITAIDGEDYVRVNSLVEKPAPGEAPSNLAVIGRYVLHPSVFGILEKTGPGRGGEIQLTDALQTLAAGEGEGSGVYGVVFKGRRFDTGDKLSYLKAVITLASERVEFGEDLKTWMKGFVSPGPT0014875_3255DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963NANA
D1-29_036821668hypothetical proteinATGCGCACGCCTGAAACCAAACGCACTGATCGGAACCCTAATCAACGTTTCTCACAGAGGGATGCAAGGAAGACAACGAAGATCGCTTTGGTGGTTGCTGCGATGGTAGCGGCAGTGATCGCGCTCGTCATGGTATTCACGGGGCTAACCCCATCGAATTCGAACTCTCTGGTCCAGCCTATTCCAACCACAAACAGCTCTCTGCCACCGGCACCGACAGTTTCCTACTACGACCAGCCTGGCCCACCGGCTAATTCGCCATTGGAAGCAGTTGAACCACTGAAGGTTAAGGTCACGGGAAATGAGCTCGGTACGGTCCTGAACCAGGGTATGACAGGCATTTCACTAGAAGCGACCGATCTGGGGGATGCTGCCTTGAGCAGCTCAAACACCTCCCTCGCAAAGCTTCTGACTGAAGTTGACGAACCCGTGTTGCGTTTCGGAGGCAACGCCGTGGACCGTCGCTTCTTCTGGACCTCGTCGGGCGAGGCGCTCCCAGCCACGTACAAGGGGGACAAAGCGCATCCCGCCCGGGCTGTCGGCCCGCAGGACCTGGCCCGCGTCAATGGCTTGCTTGAAGCTGTAAACGCGAAGCTGAGCCTTACCGTCGATCTTGGCCACTTCGATCCGGCACGGGCCGCCGACATGGTGAAGCACGCTTCCACCATCTTCGGGGATCGACTCATCAGTGTGACGATCGGCAACGAGCCCAATGGCTTCGGCGCCAATGGTGTGCGTCCCGGAGGTTACACCACCGATGACTACGTTAGAGAGCTAAAGGCATATGCCACGGCGATTTACGCTGCGGCACCCAGCGTCGCTATCTCCGGCCCAGGAACCTACAGCAAGGAATGGTGGCAGCCCTTCATCGATGCCGACATTCCTCAGAAAAAGATCCTTTCCTTCCACAATTATCCCCTCCATAGTTGCAACGGCGACGACCCCAAATCGTCGCCAACAATTGGAAACCTCATGACCCCGCTCATGCACCAGCGTGCCGCTGACTATCAGAAGGCCGCCATTGAGGCAGGGAAATCAGCCGGACTGGAAACATGGCTCCCCGAAACGGGTATCGCAGCATGTCCCGGTTCGAACGAGACCTCCCGTACGCACGCGTCAGCCTTGTGGACGGCGGACTACTTCCTCAACGCTGCGCAGCTGGGAATTGCCCGCATCGGTTTCCACAGTTCATTGCTGACGTGCGCAGGGGGGCCACCCATGTCCGTACTGTGCAGTGGCGGCCCCTACCTCAAGCCGGATGGACAGTTTTCGGGCAGGGCAAACTTCTTTGGGCTGGCCATGGTGGCTGAACTTGAAGGCGGAAAGTTCCTTGAACTTGAGAGCTCGGGCGGTGGCCTGGCCTACAGCTATGCCCTCCGGAACCCGGACGGCAGTACCACTGTGGTTCTGGTAAATCAGAACGATCCCGAAAAGGCCGCTCAGACGGAAGTAACCCTCTCCCTGCCAGGACAGCCTCTGACCGGAACCATGACCCAGCTAACCGGGCCCAGCTACAAGGCCGAAGACCAGACAATCATTGACGGCGCAAAGGCAGGACCTAAGCCTGTGGCCGAACGGCTGACTGTCCCTGGCTTTGCCTACGGCTCCACTACACAAACGTTTCCGCTGACTGCCGGCACCGTGACGGTACTGAACTTTACGTACTAGMRTPETKRTDRNPNQRFSQRDARKTTKIALVVAAMVAAVIALVMVFTGLTPSNSNSLVQPIPTTNSSLPPAPTVSYYDQPGPPANSPLEAVEPLKVKVTGNELGTVLNQGMTGISLEATDLGDAALSSSNTSLAKLLTEVDEPVLRFGGNAVDRRFFWTSSGEALPATYKGDKAHPARAVGPQDLARVNGLLEAVNAKLSLTVDLGHFDPARAADMVKHASTIFGDRLISVTIGNEPNGFGANGVRPGGYTTDDYVRELKAYATAIYAAAPSVAISGPGTYSKEWWQPFIDADIPQKKILSFHNYPLHSCNGDDPKSSPTIGNLMTPLMHQRAADYQKAAIEAGKSAGLETWLPETGIAACPGSNETSRTHASALWTADYFLNAAQLGIARIGFHSSLLTCAGGPPMSVLCSGGPYLKPDGQFSGRANFFGLAMVAELEGGKFLELESSGGGLAYSYALRNPDGSTTVVLVNQNDPEKAAQTEVTLSLPGQPLTGTMTQLTGPSYKAEDQTIIDGAKAGPKPVAERLTVPGFAYGSTTQTFPLTAGTVTVLNFTYNANANANANA
D1-29_03683780echA8_3COG1024putative enoyl-CoA hydratase echA8ATGATTTCCCTCTCCATCAACAATGGTGTTGCCGAGGTGGTGCTGGACGCGCCGCACAAGCTGAATTCGCTGGACGAGCAGGCGCTGGCGGAACTGGCCAACGCGTACGACGCCGCTGCTGACGCCGCCTCACGCGGTGAGGTGCGGGCGCTGCTGCTCCGGGGAGAGGGCCGCGCCTTCTGCGCGGGACGGGACATCTCACACGTGAGGCCGGAGAGCGACGACGCCGCCGCTTACCTGGGCGGTTTGGTCCAGCCGCTGCTGAAGAAGATGAGCTCCTTTCCGGCGCCCACGTTTGCTGCGGCCCAGGGTGCGTGCCTGGGCGTGGGGCTGGGCCTGCTGCTGGCCACGGATGTGGTGTACGTGGCGGAGAACGCCAAGTTCGGCTCCCCGTTCGCCAAGCTGGGCGCCACGCTGGATTCCGGCGGGCACTGGTACTTCACTGAGCGCCTGGGCATGCACCGGACGCTGGACCTGATCTATACGGCGGAGCTGATGTCGGGGGCGGAAGCCGTGGCGCAGGGTATGTTCAGCCGGGCAATGCCGGCGAATGAACTCCTGGACAACACGCGGGCGGTGGTGGCCAAGGTGGCCATGGGTGCCACCGGTGCATTCACCGCGAGCAAGGAGCTGGTGGCGCACATCCGGGACCAGCGCCTGGGCCTGTGGGAGGCCATGGAAGAGGAGAATTCGGAGCAGGCGCGGCTTTGTAAAAGCGACGATTATGCCGAAGGTTTCCTGGCCTTTCAGGAGAAGCGTGAGCCGAGGTTTACCGGCTAGMISLSINNGVAEVVLDAPHKLNSLDEQALAELANAYDAAADAASRGEVRALLLRGEGRAFCAGRDISHVRPESDDAAAYLGGLVQPLLKKMSSFPAPTFAAAQGACLGVGLGLLLATDVVYVAENAKFGSPFAKLGATLDSGGHWYFTERLGMHRTLDLIYTAELMSGAEAVAQGMFSRAMPANELLDNTRAVVAKVAMGATGAFTASKELVAHIRDQRLGLWEAMEEENSEQARLCKSDDYAEGFLAFQEKREPRFTGPGPT0006070_2359DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006070-paaG-K15866NANA
D1-29_036841227paaECOG10181,2-phenylacetyl-CoA epoxidase, subunit EATGCCTGTTGTCCGCCAGACCGCCGCCGAATCGGCGCAGGCCACCGGCCGCCGTCGTCCGTCCTTCCACACGCTCGCCGTCAAGGAGGTGCGCCGGCTCACCGAGGACGCCATCGAGGTGGCCTTCCACGTGCCCAGGGAGCTGGCCGGCCAGTTCGACTACCTGCCCGGCCAGTATGTTGCCCTGCGCACCACGCTGCCGGATGAGAACGGCGAGCCGAAGGAGATCCGCCGCAGCTACTCCATCTGCGCGGAGCCGCGCACGTTTGAGGACGGCAGCAGCGAGATCCGGGTGGCCGTGAAGAAGGACCTGGGCGGGCTGTTCTCCACCTGGGCCAATGCGGAGCTGAAGGCGGGGGACACGCTGGACGTCATGAGCCCCATGGGCGCGTTCGTGTCCAAGCACGGCCGCGACGGCAACCTCGTGGACCAGAACGTCATGAACTCGATGAACCATCCGGAGGACCTGGCGGGGGAGCCCGGCAGCTTTGTGGCCATCGCCGCGGGGTCCGGAATCACCCCGGTGATCGCCATCGCCCGGACGCTGCTGGCCGCCAACCCGGAGACCCGCTTTGACCTGATCTACGCCAACAAGGCCGCCATGGACGTGATGTTCCTGGAGGAGCTGGCGGACCTGAAGGACAAGTACCCGCAGCGGCTGGCCATCCACCACGTGCTGTCCCGGGAGCAGCGGATCGCGCCTCTGCTCAGCGGCAGGATCGACGCCGAGAAGCTGCAGCAGCTGCTGGGCACCGCCATCCACGCGGACGATGTGGACGAGTGGTTCCTGTGCGGGCCGTTCGAGCTGGTGCAGCTGTGCCGGGACACCCTGGCCGAGCGCGGCGTGCAGCCGGAGCACATCCGCTTTGAGCTGTTCACGTCGGGCAAGCCGGATCGGCCGGAGGGCCACGCCGGCCGGCCGATCCTGGTGGACGAGTCCAAGGAGACGTACAAGATCACGTTCAAGCTGGACGGCCTCCAGGGTGAGGTGGCCAGCCCCACGCATGCCCGGGAGTCCATCCTCAACGCGGCCCTGCGCGTCCGCCCGGATGTACCGTTCGCGTGTGCCGGGGGAGTGTGCGGCACGTGCCGGGCCAAGGTGGTCACCGGCAGCGTGGCCATGGACGAAAACTATGCGCTGGAGCAGGATGAACTGGACAGGGGCTACGTGCTCACCTGCCAGAGCCACCCCACCACCCCGGAAGTCACCGTCGACTTCGACGTCTAGMPVVRQTAAESAQATGRRRPSFHTLAVKEVRRLTEDAIEVAFHVPRELAGQFDYLPGQYVALRTTLPDENGEPKEIRRSYSICAEPRTFEDGSSEIRVAVKKDLGGLFSTWANAELKAGDTLDVMSPMGAFVSKHGRDGNLVDQNVMNSMNHPEDLAGEPGSFVAIAAGSGITPVIAIARTLLAANPETRFDLIYANKAAMDVMFLEELADLKDKYPQRLAIHHVLSREQRIAPLLSGRIDAEKLQQLLGTAIHADDVDEWFLCGPFELVQLCRDTLAERGVQPEHIRFELFTSGKPDRPEGHAGRPILVDESKETYKITFKLDGLQGEVASPTHARESILNAALRVRPDVPFACAGGVCGTCRAKVVTGSVAMDENYALEQDELDRGYVLTCQSHPTTPEVTVDFDVPGPT0006065_22DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006065-paaE-K02613NANA
D1-29_03685651paaDCOG2151Putative 1,2-phenylacetyl-CoA epoxidase, subunit DGTGACAACCATGTACATCTCCGATTTTGAGACCAGGACCAGGACGCCGCGGCCGAAGACGCCGCGTCAGACGGCGTGGGAGATCGCCGCCACTGTGGTCGACCCCGAAATCCCGGTGCTCACCATCGAGGACCTGGGCATCCTGCGCCGGGTGGAGATCGTGGACCAGCACGACGGCGGCACCACCCACCCAACTGACTCGCAGTTAACGCTGCGAAAAGGCGAAATGACGACGTTAACTGCGAGTCAGTTGGGCAAGCCCGTCGCGCAACCCGCCGTCAGGGTCACCATCACGCCCACCTACTCGGGCTGCCCGGCGATGGATGCCATCCGCGACGACGTCAAGGCAGCCTTCGCCAAAGAGGGCTACAGCAACGTCCAGGTGGACCTGGTGCTCGCCCCGGCCTGGACCACGGACTGGATGACCGAGGCAGGAAAACAGAAGCTGCAGGAGTACGGCATCGCGCCCCCAACAGGGCGAAGCGATGCAGCACGCCACGCAGGCCCCATCCGCCTGACCCTGGCCGTCAAGTGCCCCCAGTGCAGCAGCCTGAACACCAGGGAACTCACCCGCTTCGGTTCCACCTCCTGCAAGGCGCTGTACGTGTGCCAGGACTGCAAGGAACCGTTCGACTACTTCAAAGTCCTGTAAMTTMYISDFETRTRTPRPKTPRQTAWEIAATVVDPEIPVLTIEDLGILRRVEIVDQHDGGTTHPTDSQLTLRKGEMTTLTASQLGKPVAQPAVRVTITPTYSGCPAMDAIRDDVKAAFAKEGYSNVQVDLVLAPAWTTDWMTEAGKQKLQEYGIAPPTGRSDAARHAGPIRLTLAVKCPQCSSLNTRELTRFGSTSCKALYVCQDCKEPFDYFKVLPGPT0006060_291DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006060-paaD-K02612NANA
D1-29_03686936hypothetical proteinGTGAGCAGCCCCGAAACCAAGGCAGAAACAGCAAGCGGCCACGGCGACATCTCCACCGGCGTGGCGGCACCATCAGGCAGCGGGGACAGCAACGCCTCCGCCACCCGCATCACGCCGGGAAACGCACTGCGCCCGGAGGACATCGCGCTGGAGGTCCGCACCGGCCTGGCCCGTCCGGACCAGGACGTTGCCGAGTACGCGCTGCGCCTGGGCGACGACGCCCTGATCCTGGCCCAGCGGCTGGGCCACTGGATCTCCCGGGGGCCTGAGCTGGAGGAGGACGTGGCCCTGGGCAACATCGCCCTTGACCAGCTGGGCCACGCCCGCTCCTTCCTCAGCTATGCCGGCGGAGCGCTGGGAGAAAACGGCGCGGCCAAGACCGAGGACGATCTGGCCTACTTCCGCCGCGAGCACGAGTTCCGCTCGGCCCACCTCTTTGAACAGCCCAACGGGGACTTCGCGGCCACCATCGCGCGGCAGTTCATCGTGAGCTACTACCAGTTCGAGTTGTACCGCCGCCTCACCGAATCCACCGATGAAACCCTGGCCGCCATCGCAGCCAAGGCCGTCAAGGAAGTGGACTACCACCGGGACCACAGCGCTCAGTGGATCCTCCGCCTGGCCGGAGGCACGGACGAGTCCCGCCAAAGGATGATTCACGGCCTCAAGCTGATGTGGCCCTACGTCGCCGAGCTCTTCGAAGATGACGACCTGGCCACCCGCCTGGCTGAAACCGGTGCCGCCGTCGCGCCTTCCAGCCTCAGGGAAGATTTTGACCGGCTGACCGGTGACGTCTTCAAAGAAGCGGAGCTGGACGTGCCGGACGTTCCCGCTGCCCCCGGCGGCGGCCGCCGCGGCCGGCACTCAGAGTACCTGGGCTACATCCTCGCCGAGATGCAGGTCCTGGCCCGGGAATACCCCGGAGCGACGTGGTGAMSSPETKAETASGHGDISTGVAAPSGSGDSNASATRITPGNALRPEDIALEVRTGLARPDQDVAEYALRLGDDALILAQRLGHWISRGPELEEDVALGNIALDQLGHARSFLSYAGGALGENGAAKTEDDLAYFRREHEFRSAHLFEQPNGDFAATIARQFIVSYYQFELYRRLTESTDETLAAIAAKAVKEVDYHRDHSAQWILRLAGGTDESRQRMIHGLKLMWPYVAELFEDDDLATRLAETGAAVAPSSLREDFDRLTGDVFKEAELDVPDVPAAPGGGRRGRHSEYLGYILAEMQVLAREYPGATWPGPT0006055_22DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006055-paaC-K02611NANA
D1-29_03687402hypothetical proteinATGAGCCCGCACGGCAACCCTGAAGAGCCAGCCAACTCGGCCGCCGAAATCAAGCGCGAGGCACCGAAGGCCAGCCCGGAGGTTTCGGAAGGGACAGCCGCGGAAGGCACAGCTGTGGACCGCAACGCCTGGGGCCTCTGGGAGGTTTTTGTCCGGTCCAGCCGCGGCCTCAGCCATGTGCACGCTGGATCGTTGCACGCACCGGATGCCGCCATGGCCCTGCGCAACGCCCGTGACCTGTACACCCGCCGCAACGAAGGCGTGTCCATCTGGGTGGTCCCGGCCGATGCCATCGCCGCGAGTGATCCTGACGCGAAGGGCTCCTTCTTCGAGTCCCCGCAGGGCAAGGATTACCGGCATGCGACGTACTACACCAAGAGCGAAGGCGTGAAGCACCTGTGAMSPHGNPEEPANSAAEIKREAPKASPEVSEGTAAEGTAVDRNAWGLWEVFVRSSRGLSHVHAGSLHAPDAAMALRNARDLYTRRNEGVSIWVVPADAIAASDPDAKGSFFESPQGKDYRHATYYTKSEGVKHLPGPT0006050_68DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006050-paaB-K02610NANA
D1-29_036881038paaACOG33961,2-phenylacetyl-CoA epoxidase, subunit AATGGCAGCGCATGATCTGCAGTCAGTGCCCGCTGGGCTATCCCCGGACGAACAGCAGGCCGCCGAACAGCGGGAGGCTGACGGCCGGGCCAACTTTGACCGCGTCATGGCGGAGGATTCGCGGATCGAGCCCAAGGACTGGATGCCGGACGCGTACCGCAAAACCCTCCTGCGGCAGATCTCCCAGCACGCGCACTCGGAGATCATTGGCATGCAGCCCGAAGCGAACTGGATCTCAAGGGCCCCCAGCCTGAAGCGCAAAGCTATCCTGATGGCCAAGGTCCAGGACGAGGCCGGCCACGGCCTGTACCTGTACTCGGCTGCCGAAACCCTCGGTCAAACAAGGGACAAGATGATGGCTGACCTCATCGCCGGCAAGGCCCGCTACTCGAGCATCTTCAACTACCCGGCGCTGACCTGGGCGGACATGGGTGCCATCGGCTGGCTGGTGGACGGCGCCGCCATCTGCAACCAAGTGCCGCTCTGCCGGGCCAGTTACGGTCCCTACGGCCGTGCGATGGTGCGGATCTGCAAGGAGGAGTCCTTCCACCAGCGGCAGGGCTTCGAGATCCTGCTGGAACTCGCCAACGGCACCCCCGAGCAGAAGCAGATGGCCCAGGACGCCGTGAACCGCTGGTACGCGCCGGCGCTGATGATGTTCGGCCCGCCGGACGATGATTCGCCCAACTCGCGCCAGTCCATGGCCTGGAACATCAAGCGCTTCAGCAACGACGAACTCCGCAGCCGGTTCGTGGGAATGATGGTGGAGCAGGTCCGCGTGCTGGGCCTCACCCTCCCGGACAGTGAGGTCCGTTTCAACGAAGACACCAAAAAGTGGGAACACGGCCCGCTGGACTGGAACGAGTTCAAGGAAGTCCTCTCCGGCCGTGGGCCCTGCAACGCCCAGCGGCTGGAACGCCGGCGGGAAGCGCACGACGACGGCGCCTGGGTCCGTGAGGCGGCCGCCGCTTATGCGGCGAAACAGCATCAAAGAGAGCTAGTAAAACAGTCCGCAAAGCAGAAGGAATTCGCAGCATGAMAAHDLQSVPAGLSPDEQQAAEQREADGRANFDRVMAEDSRIEPKDWMPDAYRKTLLRQISQHAHSEIIGMQPEANWISRAPSLKRKAILMAKVQDEAGHGLYLYSAAETLGQTRDKMMADLIAGKARYSSIFNYPALTWADMGAIGWLVDGAAICNQVPLCRASYGPYGRAMVRICKEESFHQRQGFEILLELANGTPEQKQMAQDAVNRWYAPALMMFGPPDDDSPNSRQSMAWNIKRFSNDELRSRFVGMMVEQVRVLGLTLPDSEVRFNEDTKKWEHGPLDWNEFKEVLSGRGPCNAQRLERRREAHDDGAWVREAAAAYAAKQHQRELVKQSAKQKEFAAPGPT0006045_456DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006045-paaA-K02609NANA
D1-29_036891578hypothetical proteinGTGGCGAAAGCCTACAAGGACATCAACGCTGCTTTTGATGTCCTTACCGCCGAATTAAACGAGACCCTCCCCTGCGCGGCGGCTGATGGCGATCCATTGGCCGTCCTTGCGGATACTTGCCTGGACATTCTCACCGGAACAGCAGGTACAGAGGCTCGGATGGCTGCCTTGAAGGCCCAGGCTGCCGCGAAGTTCGCGGATAGGGCGAGGTCGGCCGCACCTCCAGATGAGCCCATCATGGCGCAGGAGGCGGCTGTGGCTGCGGAGATCGCCTGCGCGCTGACCATCGGCCCGCGCGCGGCGGGTTCCCTGCTGGCCCAGGCCCACGAACTCACCACCACCTTGCCGCTGACCCTGTCCGCCCTGCAGTCCGGCACCATCTCCTGGCAGCATGCTCGGGTCATGGTCGACGAAACAGCCACCCTTGATCCCGCAGGCGCTGCGGCATTGGAGGCGCACTTCCTGGGCCGTGAGGCACCGATTCCGGCCAGCGCCTGTGCCGCCGGGGAAATGCCGGCGTCCCGGTTCCGCCACAAGGCCCGCATCTGGCGCGAACGCCATCAGCCGGAAAGTATCGAGAAGCGGCATGCCAAAGGTGTCCTGGACCGGAGGGTCGAATACACACCGGACAAAGACGGCATGGCCTGGCTTTCCGCCTACCTGCCCGCGGTGACAGCAGTCGCGATCTGGAACCGGACCACCGCCGTCGCCCGCGGCCTCCAGGGCATTGACGAAACCCGGAACCTGCCCCAACTCCGGGCTGACGCCTTCGCCACCGCACTCCTCGGCGGAAATGGCGGCAGTGTCGGTGACGGCGGGGAAGCCGGGAACTCAGGAAGAGTCCCCACCCCACGGGCCGAGGTCCTGGTGACGGTCCCAGTATTTGCCCTGCTCGGCGCCACGGATGAACCGGCCGTTCTAGACGGGTACGGGCCCATCCCCGCGTCGATGGCCAGGGACGTGGTCGCCAACGGGGCTGACTCGTTCCACCGGGTCCTGGTTGACCCCCGTGACGGCGCGCCGCTGGAAATCGGACGGAAGAGCTACAGGCTTACCAAAGCGATGCGGACGTGGCTGCGGATGCGAGACGGCAGATGCCCCTTCCCCGGTTGCAGCAACCACTCTCTGGACAATGAGGCAGACCACCTCCTCGCCTGGCAGAAGGGCGGAACCACCGGCGTATCGAATTTAGGACAGCCGTGTCCCCGGCATCACCGCCTCAGACATACCAGCGCCTGGACGCCAAAACCGGCCCGCAAGAATGAACCACCTGGCTGGATATCGCCTTCCGGCCGCCACTACAAGAGCGAACACCAGGACTGGGAACCACCGCACTGGCCCCAGGACCTGGAATGGCAGCTGAATCCGGGCCTGAATCCGGGCCTGAATCCGAGCCCGAAACTTCCGCTGCAGCCAGGGCTGAAACTGCACCTGCAACCGGAACTGAAACCAGGCCTGACGTCCAACGGGCATCTTCCCCCAGCGCCGCGTGACTCTTCCTGCATCTCGCCGGATTTCATCCACGTCGGGCTGTCCATGGGAGAGGGCAGCATAGAGCGGTTCCTGCATGGCGCCTGAMAKAYKDINAAFDVLTAELNETLPCAAADGDPLAVLADTCLDILTGTAGTEARMAALKAQAAAKFADRARSAAPPDEPIMAQEAAVAAEIACALTIGPRAAGSLLAQAHELTTTLPLTLSALQSGTISWQHARVMVDETATLDPAGAAALEAHFLGREAPIPASACAAGEMPASRFRHKARIWRERHQPESIEKRHAKGVLDRRVEYTPDKDGMAWLSAYLPAVTAVAIWNRTTAVARGLQGIDETRNLPQLRADAFATALLGGNGGSVGDGGEAGNSGRVPTPRAEVLVTVPVFALLGATDEPAVLDGYGPIPASMARDVVANGADSFHRVLVDPRDGAPLEIGRKSYRLTKAMRTWLRMRDGRCPFPGCSNHSLDNEADHLLAWQKGGTTGVSNLGQPCPRHHRLRHTSAWTPKPARKNEPPGWISPSGRHYKSEHQDWEPPHWPQDLEWQLNPGLNPGLNPSPKLPLQPGLKLHLQPELKPGLTSNGHLPPAPRDSSCISPDFIHVGLSMGEGSIERFLHGANANANANANA
D1-29_03690996hypothetical proteinATGGGCAGCGTGAAGATTGGGACCGCGGCCGCGTGGATGGAGAGGCACCAGATCGGGTTGTATCTCGCCGCGATCATCGGCGGCGGTGCAGCGGGATGGCTGGCGCCCCAATCCGCCGGAGCCCTGGAGCTAGCGATCAATCCAGTCCTTGGCGTGCTGCTCTACGCCACGTTCCTGGGGATTCCCTTTGCCGCTATCGGCACTGCCATCCGGGATCTGCGGTTCATGGCCACGGTGCTGATACTCAACTTCGCCGTGGTGCCGGTGGTGGTTTTTGCGCTCACCCGGTTCATCGCCGGCGATCAGGCATTGCTGATTGGCGTTCTCCTGGTCCTCCTGACACCTTGCATCGACTACGTCATCGTGTTCACCGGCCTGGCCGGCGGGGCAAGTGACCGCCTGCTGGCTGCAGCACCGGTGCTGATGCTGGTGCAGATGATCCTGCTGCCTCTGTACCTGCTGGTTTTCGTAGGCCCTGGAATCGTGTCAACGATCCACCCCGCACCTTTCGTTCAGGCGCTGGTGGGGTTCATCCTGGTTCCTTTGGCCCTGGCCGCGCTGACCCAGTCATTGGCTCGCCGGGCGAAAGCGGGACGGGTCATCATGGCGCTCATGCACACCCTGATGGTTCCGCTGATGATGGCAACCCTGGCAGTTGTTGTGGGTTCGCAGATTGTGGGAGTCCGGCAGGAGCTGGGCGCGCTCCTGGCAGTGGTTCCGCTGTATGCCGCGTTCCTGCTGGTGATGGTGCCCTTGGGAATGCTCGCGGCCAGGCAGGCACGCCTGGACATTCCCGCCACCCGCGCCGTGGTGTTCAGCGGGGCCACCCGCAATTCCCTGGTGATCCTTCCGCTTGCACTGGCCTTGCCCGAGCCCCTGGCCCTGGCCGCACTGGTGGTGGTCACCCAGACTCTCGTGGAACTTATCGGCATGCTCCTCTACGTCCGGTTCGTGCCTGTCCTCGTCCCCGCGGGTCAGCGCCAACAGCTCACGTGAMGSVKIGTAAAWMERHQIGLYLAAIIGGGAAGWLAPQSAGALELAINPVLGVLLYATFLGIPFAAIGTAIRDLRFMATVLILNFAVVPVVVFALTRFIAGDQALLIGVLLVLLTPCIDYVIVFTGLAGGASDRLLAAAPVLMLVQMILLPLYLLVFVGPGIVSTIHPAPFVQALVGFILVPLALAALTQSLARRAKAGRVIMALMHTLMVPLMMATLAVVVGSQIVGVRQELGALLAVVPLYAAFLLVMVPLGMLAARQARLDIPATRAVVFSGATRNSLVILPLALALPEPLALAALVVVTQTLVELIGMLLYVRFVPVLVPAGQRQQLTPGPT0004705_3123DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004705-arsB|arsenite_transporter-K03325NANA
D1-29_03691153hypothetical proteinATGGAGTCGCCAGTGCCCGGACAAAGGGCGATGGACAGGCCGGGGATGCCGGGGCCAGTTCGGACGTGGACGACTTTCTATCAGGAGCACCGCACCGACGGAAGCCACTCCAACTTCTTCCGGCTGGAGAATCCGGAGCGCGAAGACGCCTAGMESPVPGQRAMDRPGMPGPVRTWTTFYQEHRTDGSHSNFFRLENPEREDANANANANANA
D1-29_03692153hypothetical proteinATGGCTCTCCGTTTCCCCCGCGCCTCCGCGTGGCAGTACCTTCTGGACCCGCCCCTTGCCGCCCTGCTCCCTGATGGTGGGTGCATTGCTTCAAACTTGGTTTTCCCGCCGGCCTACTTGATTACGGGACCCGAAGGCGTCAGTGGGAAGTGAMALRFPRASAWQYLLDPPLAALLPDGGCIASNLVFPPAYLITGPEGVSGKNANANANANA
D1-29_03693747hypothetical proteinATGGACGCTTTACCCATCCCTGCAGAGCTTGACGGAGTCGTTTCCCATCTCCAGGACCTGGTTCTGGAAACCTCTGATGCGGAGGAATTCTTCCAGGAATTCGCCGTTTTTTCTGCCTCACTCCTCTCACCGCCCGGGTCCGATATCTCCTGCAACGTCACTGTGGTGCGTCGGAAAAAGCCTGTCACGGTCGCGTGCAGCAGCCCCCGCGCCCGGGTGATGGATGAAATGCAATACGCCTACGGTGACGGGCCATGCTTGTCTGCGATGCGGACCGGAACCACTATGCATGTCCCTGATGTGGCCAGCCAGCTGCGCTGGCCCCCGTACATCCAAGCGGTCGCCGCCGAAGGAGTGCGCTCAATCCTTGGTGTTCCGCTGCCCTTGGAGGGAGAGTCCTCCGCGGCTTTGAACATCTACTCTTCACGGCCACATGCATTCACAGAAGAGGAGATCGCACGCGCAGAGCTGTTCGGTGAGCAGTCCGCGAAAACGCTGAGGCTCGAGTTGCGCCTAACGAGGCTGCGGGACGCGAAGGATAACTTGGAAGCGGCCATGAAGAGCCGTACCGCCATCGATGTTGCTACCGGCGTGATCATGGCGCAGAACCGGTGCAGCCAGGAGGCTGCGATGACAATCCTGGTGAAGGCTTCCAGCTCGCGGAACGTCAAATTGCGCGACGTTGCGGCAGGAGTCATCGAATCAGTTTCACCCAATACCGCGGTGCATACATACTTCGATGAATGAMDALPIPAELDGVVSHLQDLVLETSDAEEFFQEFAVFSASLLSPPGSDISCNVTVVRRKKPVTVACSSPRARVMDEMQYAYGDGPCLSAMRTGTTMHVPDVASQLRWPPYIQAVAAEGVRSILGVPLPLEGESSAALNIYSSRPHAFTEEEIARAELFGEQSAKTLRLELRLTRLRDAKDNLEAAMKSRTAIDVATGVIMAQNRCSQEAAMTILVKASSSRNVKLRDVAAGVIESVSPNTAVHTYFDENANANANANA
D1-29_03694744hypothetical proteinATGGCCCAGGAACCCAACCTCCTGCCCCAGGCAGTCGTCGCCGAGCACCTCCAGGACCTCGTGCTCCAGTGCGCCGATGTGGAGCAAATGCTCAACGAGCTGGCTGCATTCTCCGCCACCAGCCTTTCCACCCACAACGAAGTCTTTTGCGGTGTCACGTTGATGCGGAAGAAGAAGGCAAACACTGTGGCCGCCAGCGACGACAGGGTCCTTCCCTTGGACGAGCTACAGTACGGCTTCGGCGACGGGCCCTGCCTCACCGCTATCCGGGAGCTGGCCACAATGCACGTCCCGGAACTGCGGGAGGAACACCGCTGGCCCGCCTACACCACCGCCGCATGGAAACAGGGAATCGGTTCAATCCTCTCCGTCCCCCTCCCACTCGAAGGTCAAGCGAACGCGGCCCTGAACATCTACTCGACTCAGACGCACGCCTTCAGCGGCGAGGACATCGACAAGGCCGAAGCCTACGCCGAACAGGCCTCCAAAGCCCTGCGCCTGGCTGTCCGGATCGCCAGGCTCACCGACGCCCGGAAGAACCTGACGGCTGCGATGGAGTCCCGCACTGCGATCGACCTTGCCGTCGGCGCGATCATGGCGCAGAACCGTTGCAGCCAGGAAGCAGCCTTCCAGATCCTCAGAATCGCTTCGAGTACCCGAAATCTGAAACTCCGAGAGGTCGCCTCCTCTGTCATCAAATCGGTGTCCCAGAACCCGAACGTCCTCACCCATTTCGACCCGTAAMAQEPNLLPQAVVAEHLQDLVLQCADVEQMLNELAAFSATSLSTHNEVFCGVTLMRKKKANTVAASDDRVLPLDELQYGFGDGPCLTAIRELATMHVPELREEHRWPAYTTAAWKQGIGSILSVPLPLEGQANAALNIYSTQTHAFSGEDIDKAEAYAEQASKALRLAVRIARLTDARKNLTAAMESRTAIDLAVGAIMAQNRCSQEAAFQILRIASSTRNLKLREVASSVIKSVSQNPNVLTHFDPNANANANANA
D1-29_03695201hypothetical proteinATGGAGGATGTGCAGCTGGCGGCGCAGACCCTTATGCGTGAACAAGAAATGGATCCCTGGGAGCTCTGGGTCGTGTTCTGGGGCCACGGCGGGAACCTCGATGCGCTTTCCTTCGAGGCATTCATCCAGGGCCTCATGCCCGGAGACAACCACGATTTGGAAACATTGCGCTGGACGTTGAAGGACCTCCGCATCCAGTAAMEDVQLAAQTLMREQEMDPWELWVVFWGHGGNLDALSFEAFIQGLMPGDNHDLETLRWTLKDLRIQNANANANANA
D1-29_03696219hypothetical proteinATGGAAGTACAAGCAGCACAATCTGTCCAAACCGAGTCAAGCGACATCAGGACTGGCGATCAGATCGAGGCGTGGCACAACGGCAAGCTTTTTCACCAGGGCCGGGTCACCGCCGTCGTACCTGTTTTGAATCTGTTCTGGATCCTTGACGCGAGGACCGGAACCCGCAGGCTCCTGGATCCGGAAGCGCTGGAAATCGTCCGCGTGGAGCCGGGCTGAMEVQAAQSVQTESSDIRTGDQIEAWHNGKLFHQGRVTAVVPVLNLFWILDARTGTRRLLDPEALEIVRVEPGNANANANANA
D1-29_03697876hypothetical proteinGTGAACCCGGATCAGACAGCTGCCGGTCCCGGCGGACCGGAGGCACCGTTCGACGGCGACCCCGGGTTTCCCGACGACCCCGCCGAGGGCGCCCGGCGGCTCCAGGAATTTGTGATGGACAGCCCCGACGTGGGTCTTTTCCTCACGGAACTGGCAACCATGGCCGCATCCGCCCTCACCACCCAGGACAATCCGGTGGTGTGTGGTGTTACGGTCATCCGGCAGCGGAAGCCCAAGGTGGCGGCCAGCAGTGATGCCCGGGCGCAGTCGCTTGATGAGACGCAGAACGGCTTTGGCGACGGCCCCTGCCTGACAGCCCTGCGGCAGGAAAGCAGCGTCCTGGTTCCCGAGCTCCTGGCTGAGACGCGCTGGCCCGAGTACACACGGACCGCCGTGCAGCAGGGAATCCGGTCCATCCTTGCCGTGCCGCTCGAGCTGGCCAGCGAGGCAGAAGGCGTGGTGAACCTCTACTCCGGCCAACCCGGCGGCTTCTCGGAGGAAGACGTGCGGACAGCCGCCAACTTCGTGGCCAACGCATCACGCTCGCTGCGCCTGGCCCTGCGGATGGCACGCCTGCGCGATGTCCGCGACGACCTCATGGCAGCAGTCCAGACCAGGACCGCGATCGACATGGCGGTGGGCGCCATCATGGCGCAGAACCACTGCAGCCAGGCGGAGGCCTTCCAGATCCTCAATAGGGCCTCCAACACCCGCAACATCAAACTGCGCGATGTTGCGTCCACTGTCATCTCGTCCATTGGCAGGAAGTCCGACGGCGGCTCCTCCAACGGCGGGTCACCTACGGGCGGTCCGGTCAACGGTAAGCCATCGAACGGCAGCCCGTCTAACGGCGGCCCCGGGGCGAAGACGCGCTGAMNPDQTAAGPGGPEAPFDGDPGFPDDPAEGARRLQEFVMDSPDVGLFLTELATMAASALTTQDNPVVCGVTVIRQRKPKVAASSDARAQSLDETQNGFGDGPCLTALRQESSVLVPELLAETRWPEYTRTAVQQGIRSILAVPLELASEAEGVVNLYSGQPGGFSEEDVRTAANFVANASRSLRLALRMARLRDVRDDLMAAVQTRTAIDMAVGAIMAQNHCSQAEAFQILNRASNTRNIKLRDVASTVISSIGRKSDGGSSNGGSPTGGPVNGKPSNGSPSNGGPGAKTRNANANANANA
D1-29_036981110COG0053putative cation efflux system proteinATGAGTAAGCAGGCACCTTCCGCCGGCGGCGGCCATGATAACGCGGACGACGGCGATACTCACCACGCGCACGACGCCGACGCTCACAGTCACGACGGCGATAATCACCACGCGCAGGACAGCGGCGCTCACAGTCACGCTCACCACCCGCATGACCACGGCCATCAGCACTCCACCGGGCTGAAGGGCTGGCTGCGCGAGCTGTTCGTCCCGCATTCCCACGACTCAGCAGATTCCCTGGATGACGCCCTGGAGAGCAGTGCCATGGGGATCCGCGCTGTGAAGGTGTCGCTCCTGGGCCTCGGCGCCACGTCAGTCTTCCAGCTGGCCATTGTGCTTGTCAGCGGATCGGTGGCCCTGCTCGCCGACACCGTCCACAACTTCTCCGATGCGCTGACCGCCGTCCCGCTGTGGATCGCGTTCCTGCTCGGACGCAGGCCCGCCACGCGCACGTACCCGTATGGCTTCGGCAAGGCCGAGGATCTGGCGGGGCTGTTCATTGTGGCAATGATCGCCCTCTCGGCCGTCGTGGCCGGCGTCGAATCCATCAGGCGGTTCTTTGAGCCCCAGCCCGTCCAGAATCTTGGCTGGGTCCTGGCCGCCGGGCTGGTGGGCTTTGCAGGCAACGAGCTGGTGGCCATGTACCGGATCAGGGTTGGCCGGAGGATTGGCTCAGCGGCGTTGGTGGCCGATGGCGTCCATGCACGGACCGACGGTTTCACTTCGCTGGCCGTGGTGGCAGGGGTGATCGGCATCTGGCTGGGATTCCCCCTGGCTGACCCGATCGTTGGCCTGCTGATCTCCGCTGCGATAGCAGTGCTCCTGTGGGGGACGGTCCGGGACGTGGGGCGCCGGTTGATGGACGGCGTCGATCCCGCGCTCTCTGACAGCCTTGAACGCCTGGTCCATGACCTTGCACCTCAAGGCAGCTCCGCCAGGCTGCGCTGGAGCGGGCACCGGCTGCACGCTGAAATCACCGTTCCGGCAGATAATGCCGTGCTGCTGGAGGACTTCGCGGACTCCGCGTCCAGGCTGGAGAAGGCTGCCCGCAGCAGCCTGCCGAACCTGGGATCGGTCACGGTGGTGCCGGCGCTCAGGCCCGTTTCCTGAMSKQAPSAGGGHDNADDGDTHHAHDADAHSHDGDNHHAQDSGAHSHAHHPHDHGHQHSTGLKGWLRELFVPHSHDSADSLDDALESSAMGIRAVKVSLLGLGATSVFQLAIVLVSGSVALLADTVHNFSDALTAVPLWIAFLLGRRPATRTYPYGFGKAEDLAGLFIVAMIALSAVVAGVESIRRFFEPQPVQNLGWVLAAGLVGFAGNELVAMYRIRVGRRIGSAALVADGVHARTDGFTSLAVVAGVIGIWLGFPLADPIVGLLISAAIAVLLWGTVRDVGRRLMDGVDPALSDSLERLVHDLAPQGSSARLRWSGHRLHAEITVPADNAVLLEDFADSASRLEKAARSSLPNLGSVTVVPALRPVSNANANANANA
D1-29_03699390kmtRCOG0640HTH-type transcriptional regulator KmtRATGAATGCAGATACGAAGGCATGCGGACTGACTCCGGACAGCCAATACGTCGAACTTGCGGTGGAAGTGTTCGCGATGCTGGCGGACGCCACCCGGGTCCGGCTGATTCTGGCACTCCGGCAAGGCGGCGAGTTGCCCGTCAACACGCTGGCTGAAAAGGCAGGCAAATCTGCCGCAGCCGTATCGCAGCATCTGGCCAAGATGCGCCTGGCCCGGATGGTTTCCACGCGCCAGGAAGGAACCAAGGTGTACTACCGGCTGCAGGACGGTCATGCCTGGCAGCTCGTCGCCGACGCCATCCACCAGGCCGAACACGCCCTGGGCACGGCGCCGCACCACGGCACGGCGCCTCATCACGGGACTGCCTTATCCAAAGGAGGCCGGGCATGAMNADTKACGLTPDSQYVELAVEVFAMLADATRVRLILALRQGGELPVNTLAEKAGKSAAAVSQHLAKMRLARMVSTRQEGTKVYYRLQDGHAWQLVADAIHQAEHALGTAPHHGTAPHHGTALSKGGRAPGPT0004305_26DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004305-czrA|yozA-K22043NANA
D1-29_037001137hypothetical proteinGTGACGCTAAGCCTCACGCAATACGCTGACCTCTACCGACAGCCCGGGCCGTGGTGCGTCGCCTACGTCAATGCCGGCACAGGAACCGTGGACACACTGGAAGCCGCCGACGTGACGCCGGGCAACGTCCGGACCGCGTTGGAGGGGGAAGGCGCGTCCAAGCAGGATCTTGATGCGATGGAGGAGGCGTTGCGCCCGGCCGAGGGCCAGCCTTCCCCCTTGGCAAGGTTCGTTCTTGTCCGGGACGGAAAGACTGAGATTAACGAGCTCCTGCCGGGCCCGCTGGCGCTGCCGCCAAGAGTCGCTGTTGAGCCGATTCCGGATCTGCTGCCCCTGGTAAAGCACCGGCCCGAGGAGTTCCCGTATGTGGTTGCCGAAGTGGGACGCGACGACGGCGAGATCCGCCTGCATTACGCCGGGCGTCCGGGGGCAGCCAGCACAACGGATGTGCAGGGATCCAGCGAAAATCTCAGCAAGGTCCCGGGAGGAGGTTGGTCGCAAGGCAAATACCAACACCGCACGGAGGAGATCTGGCGCCGGAATGCCAACGAGGTTGCCAACGAGATCGATCGGGTCATTCGCACCAGCGGTGCGCGTTTACTGGTGCTTGCCGGTGATATCAGGGCCCGCGGACTGGTGGAGGAGCAGCTCTCTGACGCCAGCCGTGCCCTGCTGACGGTTATCGAATCGCATACCCACACGGGCGGGGCGGACCGGGATGCCTTCAATGACCAGGTGGATGAGCGCGTCGCGCAGCAGTGGGCCCAGGAGCAGCAGGGAGTGATGGAACGCCTGGCGGTCCAGGAAGGGCAGCCCAATCCGGAGTCAGCCACCGGGATTGGAGCGGTGGTTCACGCCCTCCAGCAGGCTCAGGTGGAAACGCTGGTTCTGAATGACGCTGCGTTCGCCGAGCGGACTCTCCTGGCCCTGGACGCCGAGCCCTGGGTGGCCAATGCGGAAGAGGAAGCACTCGGAGCAGGCATCGTGGGCAAGGTGCCGGCGCCTGCAGCCCTCCTGCGCGCTGCTGCCCTCACAGATGCAAACGTCCTGTTGGTTCCAGGAGGCGTATTGCCGGAGGGCGCAGAGATCGCGGCACTGCTTAGATGGTCCACGGGTCCAACCGTCCCATCTGCGTAAMTLSLTQYADLYRQPGPWCVAYVNAGTGTVDTLEAADVTPGNVRTALEGEGASKQDLDAMEEALRPAEGQPSPLARFVLVRDGKTEINELLPGPLALPPRVAVEPIPDLLPLVKHRPEEFPYVVAEVGRDDGEIRLHYAGRPGAASTTDVQGSSENLSKVPGGGWSQGKYQHRTEEIWRRNANEVANEIDRVIRTSGARLLVLAGDIRARGLVEEQLSDASRALLTVIESHTHTGGADRDAFNDQVDERVAQQWAQEQQGVMERLAVQEGQPNPESATGIGAVVHALQQAQVETLVLNDAAFAERTLLALDAEPWVANAEEEALGAGIVGKVPAPAALLRAAALTDANVLLVPGGVLPEGAEIAALLRWSTGPTVPSANANANANANA
D1-29_03701243hypothetical proteinATGGCCGAACGCGGAAACACCACGCATGGACCGGGCCTGGACGACAAGATGAAGCAGGAAACCGACGGGATGGTCAAGGGAAACAAGCCAGCCCACGCCGAAGAATTTCGGGAGACCGAGCCGTTTCCGGACGACACCGATCCAGACGACGTCCGGGATGCCCTTGACCCAACGAAGCGCGTCCCGGCTGACGCCGAAGAATACATCGAGGACCAGGACGACGACGAGGAGGGACCACAGTGAMAERGNTTHGPGLDDKMKQETDGMVKGNKPAHAEEFRETEPFPDDTDPDDVRDALDPTKRVPADAEEYIEDQDDDEEGPQNANANANANA
D1-29_03702615hypothetical proteinATGAACAGCATCATCCGCCGGGCAGGCTCTGACATTACCGAACCGCTGCGCCGGTTCCTGGAGGGGGACATGGGTCCCTGGCTCCGGGTGGAGGAATACCGCGACGGCGGGGACATGGTTGTCAAAGCCGAAGTTCCCGGCATCGATCCAGAGAAGGACGTTGACATCACGCTTGTAGGCAGTGACCTGCGGATCGAAGTGCGGCACGAGGAGAAATCCGAGCACAGGGATAAGCGGGGATACCGCTCCGAGTTCCGCTACGGCACTTTCTCCCGCACAGTGGCCCTCCCCGGCCCGGTTAACGAGAGCGACATCCACGCTTCCTATACCGACGGCGTCCTTGAAGTCCGGGTTCCTGTACCGGACGAGTCCACCACTGCATCGCGGAAAATCCCCGTTTCGCGCGCAGGCGCAGCGACCTCGAACGCAGGTACCTCAAGCGCAGGGACCTCTAGCGGAATGGGTAGCGCAGGCGGCATGGGTGCCGCTTCCGGCGCAGGCACCAGCGGCACGGGCACCACGGGCACGGGCACCACTGGGATGGGAAATGCAACTGGCACGGGCACCACGTCTGGAATGGGCACCACGTCCGGCACCACCACAGACCCCATGTAGMNSIIRRAGSDITEPLRRFLEGDMGPWLRVEEYRDGGDMVVKAEVPGIDPEKDVDITLVGSDLRIEVRHEEKSEHRDKRGYRSEFRYGTFSRTVALPGPVNESDIHASYTDGVLEVRVPVPDESTTASRKIPVSRAGAATSNAGTSSAGTSSGMGSAGGMGAASGAGTSGTGTTGTGTTGMGNATGTGTTSGMGTTSGTTTDPMNANANANANA
D1-29_03703300hypothetical proteinATGTCAGTCGACTACGATGCTCCGCGCTTGGCGCCCGAGGATGAGTCGAACGAGCCACTGGATGTGCTGAAGACCGAGAAGAGTGCCACTCGAGGCGCTGTACCGGACTTGGACGAGGCGGACCTGGCGGACAGCTTTGAGCTGCCCGGTGCTGATCTTTCCAACGAGGAACTCCTGGTCCAGGTCATCCCGGTCCAGTCCGACGAGTTCACCTGTATGTCGTGCTTCCTGGTCCACCACCGCAGCCAGCTGGCCCGCGAGAAGGACGGCAAGAAGTACTGCAAGGAGTGCGAGGGCTAGMSVDYDAPRLAPEDESNEPLDVLKTEKSATRGAVPDLDEADLADSFELPGADLSNEELLVQVIPVQSDEFTCMSCFLVHHRSQLAREKDGKKYCKECEGNANANANANA
D1-29_03704747hypothetical proteinGTGGCCGCTGAAACCTCAGAAGAATTTTTTCCTGACGTTGCTCCGCATCTTCAGGACCTGGTGCTGGACAGCCCCGACGTGGAGCAGTTCCTGCAGGACCTGGCCGTTTACTCCGGCGAGCGGCTCAGTGTTCCGGACCATGAAGTCTTCTGTGGGATCACCCTCATCAGAAGGAAGAAGGCCACCACGGTGGCCAGCAGTAATCCCTGCGCCCGGCTAATGGACGAGCTGCAGAACAAATATGGTGATGGGCCGTGCCTCACAGCCATGCGCGAGATGACCACCGTCCATGTTCCGGACCTCAGCCTTGAGACCCGGTGGCCGGGCTATGTCCGGACTGTGGCCGGCCAAGGAACTGAGTCGCTGCTGAGTGTTCCGCTTCCGCTGGAGGGCGAGACCCGGGGTGCCCTGAACCTCTACAGCCAGCGGACCCATGCTTTTACGGGCGAGAGCATCGCGGCCGTGGAAGCATTTTGTGAACAGGCGTCCAAGGGCCTGCGCCTCGCCCTGCGGATGGGCCAGTTGCAGGACACCAAGGAAAACATGACTGCAGCCATGAGGTCCCGCACTGTGATTGACCTGGCGACTGGCGCCATCATGGCCCAAAACAGATGCAGCCAGGATGCGGCATTCAAGGTGCTGATCCGTGCATCCAGCACCCGCAACATAAAACTGCACGACGTCGCTGCTGGCGTCATTGCCTCCATCAGCCAGGATCCAGAGGTTGTCACCTTCTTTGACGAATAGMAAETSEEFFPDVAPHLQDLVLDSPDVEQFLQDLAVYSGERLSVPDHEVFCGITLIRRKKATTVASSNPCARLMDELQNKYGDGPCLTAMREMTTVHVPDLSLETRWPGYVRTVAGQGTESLLSVPLPLEGETRGALNLYSQRTHAFTGESIAAVEAFCEQASKGLRLALRMGQLQDTKENMTAAMRSRTVIDLATGAIMAQNRCSQDAAFKVLIRASSTRNIKLHDVAAGVIASISQDPEVVTFFDENANANANANA
D1-29_03705384hypothetical proteinATGGCACCTGCGACTCCTGCCTTGACGCAAGGGAGCTTCAACCTGATTACAGGGCTCTGGCCCCTGATTCACATGCGCAGCTTTGAAGCCGTGAGCGGGCCCAAGACTGACAAGTGGCTGGTACGCACTGTTTCCGGTTTGCTCGTCACCATTGGAATTGTCCAGTTGGGAAGTTCCAACAGTCCCGACGGCGTCAAGCAGGCCAGGCGCCTGGGCATCGGCACAGCTGCCACGCTTGCCGCCATCGACCTTATCTATGGGGGAACAGGCAGAATCAGCAGGATCTACCTGCTGGATGCCGCCGTCGAACTGATGTGGATCCGCCGCTGGGAGCGGCACCGGCAACTGCTCGGGCATCGAGTCGGGCATCGACCAAAGCAGTAAMAPATPALTQGSFNLITGLWPLIHMRSFEAVSGPKTDKWLVRTVSGLLVTIGIVQLGSSNSPDGVKQARRLGIGTAATLAAIDLIYGGTGRISRIYLLDAAVELMWIRRWERHRQLLGHRVGHRPKQNANANANANA
D1-29_03706237hypothetical proteinATGTCCGGATCTTTCGAACTTTTTTGTGACCACCGCACGCTGTCCTTCGGGTTCAGGCTCAAAGCTGCCGACGGTTCAGTGGTGGCCGTGTCAGCGCCGTTTCCGGACAAGGCATCCGCCGTGCAGGGGATCCGTGACGTACGGGAGTGCGCCGGCATGGGTTTGATCACGGATCTTTGTGGCCCTGCCGGGGCAACTTCGGCGGAGCCGGGGACTCGCCGGGCGGGCCCTGCCTGAMSGSFELFCDHRTLSFGFRLKAADGSVVAVSAPFPDKASAVQGIRDVRECAGMGLITDLCGPAGATSAEPGTRRAGPANANANANANA
D1-29_03707639rhtB_1COG1280Homoserine/homoserine lactone efflux proteinATGCTTCCCGCAGCCAATGCCGGTGCTTTCGCACTTGCTGCTTTTGCCCTGATTGTGATCCCTGGGCCCAGCGTGCTGTTTGTCATTGGCCGCTCACTTTCGCTGGGTCGAAAGGGCGGGTTTCTGAGCGTGCTGGGCAATGCCTTGGGAATGATTCCGGCCATCGCGGCCGTGTCCCTGGGGGTGGGGGCAGTGGTGGCAGAATCCCTGCTGGTCTTCACAGTGATTAAGTTCGCTGGGGCTGCGTATCTGATCTATCTTGGCGTGCAGGCGATCCGGCACCGCCACGGCCACAGGCCGGACGTCCCCGCCGCGGCAGCTCCGCCGTCGTCCTTCCGGCTGCTCCGCGAGGGATTCTTCGTCGGAATCTCCAACCCGAAGACGATTGTGTTCTTCGTGGCTGTGTTGCCGCAGTTCGTCAGTTACGGGGCCGGGGCCATTCCGCTCCAGCTTGCCCTGCTCGGCCTGATCTTCTTCGCCATCGCCCTGGCCAGCGACAGTATCTGGGCGCTCACTGCCGGCACGGCCAGGTCCTGGTTCGCGCGCAACCCGAAACGGCTCTCACACATGGGTGCGGCGGGCGGCGCAGTCATGATCGGGCTCGGTGGCACGCTGGCTCTGGCCGGCAACAAGCACTGAMLPAANAGAFALAAFALIVIPGPSVLFVIGRSLSLGRKGGFLSVLGNALGMIPAIAAVSLGVGAVVAESLLVFTVIKFAGAAYLIYLGVQAIRHRHGHRPDVPAAAAPPSSFRLLREGFFVGISNPKTIVFFVAVLPQFVSYGAGAIPLQLALLGLIFFAIALASDSIWALTAGTARSWFARNPKRLSHMGAAGGAVMIGLGGTLALAGNKHNANANANANA
D1-29_03708381hypothetical proteinGTGAAAAGGTTTATCGGCGGCTTTTTATTGTTGCTGGTTCTTGCCGGCTGCGCTCCAGACGGGACCGGCGCCTCCACCGCGGCCGAGGAGTTCCACCAGGCCCTCGCGTCAGGTGATGAAGAGCAGGCTTGCTCCATGCTGAGCCAGTCCGCCAAGGACAAAGCAGAATCAGACGGCGGCTGCGAAAACCAGTTGGAGGAACTGCAACTGGCCGACGCCGGGACGCCTGGGCAAACCGAAGTTTACGGCCGAAACGCAATGGTCGAGTTCGAGAACGACACCGTTTTCCTGGCCGCGGCGAGCTCGGGCTGGCAAATTACAGGTGCCGGGTGCACGTCCCAGGGCGAAAACGGGTACATGTGCGAAGTAGGAGGGAAGTAGMKRFIGGFLLLLVLAGCAPDGTGASTAAEEFHQALASGDEEQACSMLSQSAKDKAESDGGCENQLEELQLADAGTPGQTEVYGRNAMVEFENDTVFLAAASSGWQITGAGCTSQGENGYMCEVGGKNANANANANA
D1-29_03709675hypothetical proteinATGAAAACCGCACTGAAAAACAACGGCCTCAGCCTGTTCTTCGGACTCATCTTCCTCCTGGCCGTAACAGGACAGGGCATCTCCGGCCACGCAATGTACAACGAGGAACAGCTATCGGCCGGGCAGGAAGAAATAACCCTGGCGCAGTACCTGGCATCGTCGGACTTCGCCGTTAACGTCTCGGAGAACTGGCAGTCTGAATACCTTCAGTTCCTGCTCTACATCCTGGCCACGATCTGGCTGGTCCAGAAAGGCTCCCCCGAGTCCAAGGAGCTGGACCAGTCCGGGCTGGAGTCCGACAAGGATCAACTGGTGGGCGAATATGCCAACGAAAAATCACCGGCCTGGGCTAAGGTTGGCGGCTGGCGCCGTACGCTCTTTGCCAACTCGCTGGGACTGACGATGGGACTGATCTTCCTCCTCTCGTGGCTGGTGCAGTCCATCTCGGGGAACAGCACCTATAACGAGGAACAGCTGCGCAACTTCCAGGACCCAGCACCGTGGGCCGAGTACCTCGCCTCACCCGAATTCTGGAACAGGACGCTGCAGAACTGGCAGTCGGAGTTCCTGGCGGTGGGCTCCATGGTGGTGCTGGCGATCTATCTCCGCCAGCACAGTTCGCCGGAATCCAAGCCGGTGGGTGCCGCCCATGACGACACCGCCTCAACGGGGTAAMKTALKNNGLSLFFGLIFLLAVTGQGISGHAMYNEEQLSAGQEEITLAQYLASSDFAVNVSENWQSEYLQFLLYILATIWLVQKGSPESKELDQSGLESDKDQLVGEYANEKSPAWAKVGGWRRTLFANSLGLTMGLIFLLSWLVQSISGNSTYNEEQLRNFQDPAPWAEYLASPEFWNRTLQNWQSEFLAVGSMVVLAIYLRQHSSPESKPVGAAHDDTASTGNANANANANA
D1-29_03710285hypothetical proteinATGACCACGCACGTAGCCGACTGCAGCGTAACCAATTGTTCCTTCAACGATCATTCCGAATGTAATGCCGCCGCCATTACCGTTGGCGGCTCTGAAGACCACGCCGCATGCGCCACGTTCATCGACATCGGTACCCACGGGGGCCTGCCCAAGGTCCTGGCCGGCGTCGGAGCCTGCCAGCGCACGGAATGCGCCTACAACGACCACCTGATGTGCAACGCGTCCGAGGTGCATGTGGGGCCAGGTGCGGACAACGCCGACTGCCTCACCTACACCCACGCCTAGMTTHVADCSVTNCSFNDHSECNAAAITVGGSEDHAACATFIDIGTHGGLPKVLAGVGACQRTECAYNDHLMCNASEVHVGPGADNADCLTYTHANANANANANA
D1-29_03711960COG2375putative proteinATGGGCTCAACAACCTATCCTCTCCGCGCGTTTGATGCGGCGGTCCTGCGCGTCCAGCAACTGGGCCCGCATTTCCGCCGCATCACCTTCACCGGACCGGAGCTGGCGACCTTCGGCGTCCCCGGTCCCACCGTGGACCTGCGGATCAAGCTCCTCCTGCCAGCGCCGGGGCATCCTCTTGCCCGGCTGGGTGAGCCTGGCGGATACCTGCAGGAGGGCTGGTACCAGGAGTGGCTCCGCCGCGAACAGCCAGGCCGTGGTTTCATCCGCAGCTACACCATCCGGGCAATCCGGAACACGCCGGGCAGGCGGGAGCTGGACGTCGACTTCGTCGTCCACCCCGTTGCCCCCGGCCACACCGCTCCCGCCTCCGAGTGGGCGGGAGCTGCCGCGCCAGGTGCCCGGGTGGTCATTATTGGCCCCGACCTCAACGCCGTCACCGAGGCCACGCCCCGGACTGAAACCGGGATCAGATGGGATCCGCAGGGTGCCCGGCACGTGCTGCTGGCCGGTGATGAAACGGCCGTCCCGGCCATCAGCTCCATCCTCAAAAGCCTCCCGCCCGACATCACCGGCGAGGCATTCCTGGAGGTTCCGGACACGTACGACGTCGGTACGGTCACCTCCGCTTCGTCAGTCCGGGTCACGTGGCTGGTCCGGAACGCTTCGGGTGCTGCCCGCGGGGACCTGCTAAATGGGGCGGTGCGGGCTCTCACCGAAACCACGTTGCCACCAGGCCCGGAGACATATGCGTGGGTGGCAGCCGAAGCGGCAAGCGTGAAAAACCTGCGGCGGCTGCTGGTTACCCAGGCGGGCCTGGACCCGAAGCGGTCCGAGTTCAGGGCCTATTGGAGCCTGGGCAAAGCCGGCTCGGGGGCCAACGGGACCCCGCTGGTTCCGCAGCCTGGTGCGCAGGCGGTTCCGCCGTCGGAATTAAGTCACACGATTGGGTCTTTTTGAMGSTTYPLRAFDAAVLRVQQLGPHFRRITFTGPELATFGVPGPTVDLRIKLLLPAPGHPLARLGEPGGYLQEGWYQEWLRREQPGRGFIRSYTIRAIRNTPGRRELDVDFVVHPVAPGHTAPASEWAGAAAPGARVVIIGPDLNAVTEATPRTETGIRWDPQGARHVLLAGDETAVPAISSILKSLPPDITGEAFLEVPDTYDVGTVTSASSVRVTWLVRNASGAARGDLLNGAVRALTETTLPPGPETYAWVAAEAASVKNLRRLLVTQAGLDPKRSEFRAYWSLGKAGSGANGTPLVPQPGAQAVPPSELSHTIGSFPGPT0003760_110DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_037121008yfiYCOG0614putative siderophore-binding lipoprotein YfiYGTGAAAACACGCATCCTCAAGCAGCTCAGTGCTGTCACCGCCGGCATGGCCCTTCTGGCCACCGCGGCCTGCGGCGCCCCGGCCGCCTCCACAGAAACCACTGAAACAACAGCCGCAGAGTCAGCAGGCTTCCCGCTGACCATGGAGCACACCATGGGCTCCACCACCATTGACACCGTGCCCAAGCGCGTCGTTGCGCTGGATCCGAGCTACATCGATGCCGCACTCCTGCTGGGGGCCGACCTGGTGGGCTACGTCCAGTACCGCCAGGACCCTAATGCCCCGTTCGCCCCGTACCTCGGGGACGTCAAGGATGCCACCAAGGACTCCGTCAACGTGGGTACCCTGGCCGAGCCCAACTTGGAAAAGATCCTTGAGCTGGAGCCGGACCTAATCGTTTCGGCGAAGGTCCGCCACGAGGCGCTCTACCCGCAGCTGTCCAAGATTGCCCCCACCATCTTCTCGGTCAGCACCGGCCCCACCTGGAAAGAGAACGTGGTCTTCCTGGGCGAGGCCTTGGGCAAGAAGGCCAAGGCCGAGGAACTGGTCAAGGCCTACGAGGAGCGCGCCGAGAAGGTGGGAGCCGAAATCCTCAAGAAGAAGCCGGACGCCACGTACTCCCTGGTTCGCTTCACCGGCGGGGATACAGCACGCCTCTACTCCTCAAACTCCTTCATCGGCGAGATCATGACCGACATGAAGATCCCGCGGCCCCAGGACGCCCCGGACAGCGAGAAGGAAATCTTCGTGCCGCTCTCGGCCGAGCAGATCCTCCAGGGCGACGCCGGCCTGGTGATGGTCAGCGCATTCACGCCTCCCGGCGCCGAAGGCGACAAAACCCGGGCGCAGCAGGAAAAGTTCCAGTCCAACCCGCTTTGGCAGCGCCTCACCGGTGAAGTCAAAAACGTCGACGACGGAACCTTCCTTGCGTCCGTCAGCATCCAGGGTGCCCACTCGGTCATCACGGACCTGGCGAAGCACTACGGCGTGGATCCGCAGCTGCCGTAGMKTRILKQLSAVTAGMALLATAACGAPAASTETTETTAAESAGFPLTMEHTMGSTTIDTVPKRVVALDPSYIDAALLLGADLVGYVQYRQDPNAPFAPYLGDVKDATKDSVNVGTLAEPNLEKILELEPDLIVSAKVRHEALYPQLSKIAPTIFSVSTGPTWKENVVFLGEALGKKAKAEELVKAYEERAEKVGAEILKKKPDATYSLVRFTGGDTARLYSSNSFIGEIMTDMKIPRPQDAPDSEKEIFVPLSAEQILQGDAGLVMVSAFTPPGAEGDKTRAQQEKFQSNPLWQRLTGEVKNVDDGTFLASVSIQGAHSVITDLAKHYGVDPQLPPGPT0003765_5728DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
D1-29_03713978yfiZ_1COG0609putative siderophore transport system permease protein YfiZATGCGGTGGCTGGCAGTTTCAGTTGCGGCCATGCTAGCGGCGGCCTGCCTAAGCATCTGCATCGGCGGCCAGCCCTCCTCCCTGCAGGACGTCTGGCATGCCGTCTTCACTCCCGATGGCAACGTCATGGACGTCACCATCCGCGAACTGCGCTGGCCGCGCACCGTGCTGGCCGTGTGCGCAGGAATCTGCCTGGGCCTGGCCGGAACCCTGGTCCAGGGACACACCCGAAACCCGGTTGCTGATCCCGGCCTTCTGGGCATCAACCAGGGCGCGGCCCTCGCCATCGTCGCGGTCACCGCCCTGGCCGGCGAGCAGCCGGGACTGACGCAGGCATTGCTGGCGTTCACGGGTGCCCTGGCCGCCAGCGTCCTGGTGTTTATGATCGGCTCCGCGGCCCGCCATGGCTCCACCCCCGTGACCCTGGTGCTGGCCGGAGCCGCCGTGACAGCGCTCTGCTCCGGGCTGGTGGCGGGCATCGTCCTGCTGAACGACCAGGCCCTGGACACGCTGCGGTTCTGGCAGGTAGGTTCTCTGGCCGGCCGCAGCGACATTCTTTCCATGATCTGGCCCTTTGTGGCCGCCGGAGTGGTGATGTCGTTGCTGAACATCCGGCCCCTGAACGCGCTGGCCCTGGGAGCAGACACCGCCACGTCACTGGGCATCTCGGTTTTCCGGGCACGGGCGGCAGGCATAGCCGCCATCACGCTGCTGGCAGGTTCCGCGGTGACCATGGCCGGGCCCATTGCCTTCGCCGGACTCCTGGTTCCGCACATCACCCGGGCCATGACAGGTCCTGACTACCGTTGGCTGATCCCGCTCTCTGCCATAACGGGCGCCACCGTGCTGCTCCTTGCGGATACGGCGGGCCGCGTGATCTCGCGCCCCGGAGAGCTGTCGGTCGGCGTGGTCCTGGCCGTGGTGGGTGCCCCCTTCTTTGTCCATCTGGCCCGCCGGCGCAGGCTGGCCACCCTGTGAMRWLAVSVAAMLAAACLSICIGGQPSSLQDVWHAVFTPDGNVMDVTIRELRWPRTVLAVCAGICLGLAGTLVQGHTRNPVADPGLLGINQGAALAIVAVTALAGEQPGLTQALLAFTGALAASVLVFMIGSAARHGSTPVTLVLAGAAVTALCSGLVAGIVLLNDQALDTLRFWQVGSLAGRSDILSMIWPFVAAGVVMSLLNIRPLNALALGADTATSLGISVFRARAAGIAAITLLAGSAVTMAGPIAFAGLLVPHITRAMTGPDYRWLIPLSAITGATVLLLADTAGRVISRPGELSVGVVLAVVGAPFFVHLARRRRLATLPGPT0003770_2119DIRECT 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
D1-29_037141122yfhACOG0609putative siderophore transport system permease protein YfhAGTGACCGCCCTCCAGCAGAAGCCGCGGCAACAGCAGAAACCGCTGCAACAGCCCAGGACAGGTGCTGCCACCATTCGCGCCCTGCGCCTTGGCCCGGTATCCATCCGCCTGAACTTCCGCGTGATGGTTGTCGCCGCCGTCCTGGCCGCCGCCCTGGTGGCCGCGATGGCCCTCCACATAGCCTTCGGCGGAACCCCGCTGGCTTACCCGGACGTTCTCCGTGCGCTCCTGGGTGACGCCTCCAGCCCGCGGATCCACCTCGCCGTTACCGAGTTCCGGGCCCCGCGCATGGTTGCCGCCGTGGTAGTCGGTGCGGCGCTGGCCGCTGCCGGAGCCATCACCCAGACGGTGGCACGGAACCCCCTGGCCAGCCCCGACCTGCTGGGCGTCACCACCGGCGCGTCCCTGGGCGCCGTCACCGTACTGGTGGTGGCCGGCGGCGGCCACGCCGGACTCAGCGGCCTGGCCGCGACGGTGGGAATGCCCGTGGCCGCGTTCGCCGCGGGAATCATCAGCGGCGTGGCCGTCTACCTGCTGGCCTACCGGCGCGGGCTGGACAGCTACCGGCTGGTCCTGGCGGGCCTGGGTATCTCCGGCCTGGCCGCGAGCCTCACCACCTGGATCCTCACGCTGGGGGACGTCACCAGCGCCGCCCAGGCCCTGACCTGGATGATGGGATCACTGAACGGCAAGGACTGGGCCACCGTCCAGCCCATGGCCGTCAGCGCTGCCGTCCTCCTGGTTGCCGCGGTGCTGAGCGGGCGCTGGCTGCTGCTGACCAGCCTCGGCGAGGACACCGCCGTCGGGCTCGGAGCGCGCATTGGCGCGGTGCGCCTGACTGCCCTGACCATCGCGGTGCTGCTCGCGTCGGTGGCCACTGTCACCGCGGGCCCTGTGGCGTTCGTTGCCCTGGCCAGCCCGCAGATCGCACGGTCCCTGACCTCCAACGTGGTTCCCCCCGTGGGAGTCTCGGCGCTGGTGGGTGCGGTGTTTGTCCTGCTTGCGGACACCGTCTCAGCCAATGTGCTCAGCGCGCCGCTGCCCGTGGGAGTGGCCACCGCCGTCGTCGGCGCGCCGTTCCTGATCCATCTGATCCTGAAGTACCAGCGGAGGCTGAGTTGAMTALQQKPRQQQKPLQQPRTGAATIRALRLGPVSIRLNFRVMVVAAVLAAALVAAMALHIAFGGTPLAYPDVLRALLGDASSPRIHLAVTEFRAPRMVAAVVVGAALAAAGAITQTVARNPLASPDLLGVTTGASLGAVTVLVVAGGGHAGLSGLAATVGMPVAAFAAGIISGVAVYLLAYRRGLDSYRLVLAGLGISGLAASLTTWILTLGDVTSAAQALTWMMGSLNGKDWATVQPMAVSAAVLLVAAVLSGRWLLLTSLGEDTAVGLGARIGAVRLTALTIAVLLASVATVTAGPVAFVALASPQIARSLTSNVVPPVGVSALVGAVFVLLADTVSANVLSAPLPVGVATAVVGAPFLIHLILKYQRRLSPGPT0003770_1076DIRECT 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
D1-29_03715822yusVCOG1120putative siderophore transport system ATP-binding protein YusVTTGAACACCACCACAGAACGGCACGAGGGGCTGAGGGCGGAAAACCTGACGCTGGGCTACGACGGCCGGGACATCATCAAGGACCTGTCCCTCACCGTCCCGGAGGCCCGGGTGACCTCGATCATCGGCCCGAACGGCTGCGGCAAGTCCACGCTGCTCCGCGGCCTGGGCCGGCTGCTCGCTCCGCGCTCCGGCGCTGTTTTCCTGGATGGCGCCGCACTGTCCACCCAGTCCAGCCGCCAGATAGCCACCAGGATCAGCATCCTGCCGCAAACGCCCACCGCGCCTTCCGGGCTCACCGTGGCGGATCTCGTCTCGCGCGGCCGGCACCCCCGGCAGAAGTGGTACCAGCAGTTCTCCCCCGCCGATCAATCCGTCGTCGAGGACGCACTCGTGGCCACCGACATCGCCGACCTGGCCGACAGTCCGCTCGAGGACCTCTCCGGCGGGCAGCGGCAGCGCGCCTGGATTTCCATGACGCTGGCCCAGGAAACGGGCATCCTGCTCCTTGATGAGCCCACCACCTACCTGGACCTCGCGCACCAGGTGGACGTCCTGGAACTGGTGCGCAGGCTGAACCGCGAGCATCACCGGACCGTGGTGATGGTGCTGCACGACATCTCCCTGGCGGCCCGCTACTCCGACCACATAGTTGCCATGAAGGACGGCAGCATCATCACCCAGGGGACGCCGGCGCAGGTGGTGACTCCCGGGCTGCTCAAGGACGTGTTCGGCCTGGACGCCCACGTGGTTGCCGAGCCCACCGACGGCCGGCCCCACGTCATCCCGCTGGGCACCCCGGCCACGGCTGCCGCCTCCTAAMNTTTERHEGLRAENLTLGYDGRDIIKDLSLTVPEARVTSIIGPNGCGKSTLLRGLGRLLAPRSGAVFLDGAALSTQSSRQIATRISILPQTPTAPSGLTVADLVSRGRHPRQKWYQQFSPADQSVVEDALVATDIADLADSPLEDLSGGQRQRAWISMTLAQETGILLLDEPTTYLDLAHQVDVLELVRRLNREHHRTVVMVLHDISLAARYSDHIVAMKDGSIITQGTPAQVVTPGLLKDVFGLDAHVVAEPTDGRPHVIPLGTPATAAASPGPT0003760_1252DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_03716627hypothetical proteinTTGGAATCGCCTTCCCCCGTCCCCGAGCACGTAAGAATCCTGACCGTCTGCACGGGCAACATCTGCCGCTCCCCCGTGGCTGAACGGCTGCTCCAGGCAGGACTGGACCAGGTGCTGCCCGGCGGCTTTGTGGTGGCCAGCGCCGGAACCCGCGCCATGGTGGGCGACCCCATGCAGCCGCCGTCAGCGGACATGGTGCGCATGTTCGGCGGCGACCCCCAGGAGTTTGCCGCACGGCAGCTGACCGGCAAGATCCTGCGCAGTGTGGACCTGGTGCTCACCATGACGTCCGGCCACCGCGGCGAGGTTCTCCAGCTGGACGCGTCGCTCCTGAAGCGCACTTTTACCATCCGTGAATTCGCGCGCATGCTGGACGTCCTGGATGAGCGGGATCCCGCGCCTCAGGGTCCGGCCGGTGATCCCCTGGCAGCCAACACAGCCTTCTGGCGGGGCCTTCCGGCCCGCGCGGCAGCGGTCCGGCACCTGTCCCTGCCAGCCGACTCCTCCGAAAACGACATCATCGACCCCTACCGCCGCGGGCCCGAAACCTACCGTCAGATGGAAGACGAACTGGCCCCCGCGATCATCTCCATCCTGCGTCATGCGAGGCTGAACGCTCCCTCCTGAMESPSPVPEHVRILTVCTGNICRSPVAERLLQAGLDQVLPGGFVVASAGTRAMVGDPMQPPSADMVRMFGGDPQEFAARQLTGKILRSVDLVLTMTSGHRGEVLQLDASLLKRTFTIREFARMLDVLDERDPAPQGPAGDPLAANTAFWRGLPARAAAVRHLSLPADSSENDIIDPYRRGPETYRQMEDELAPAIISILRHARLNAPSPGPT0014530_3606DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
D1-29_037171191tagU_3Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGGCCACCGCGTCCGAGCATCCTGCCGCTGTCTTTACCGGCTCAGCCTCCTCCGGCACAGCTGTTTCGGGCGCGGCTCCCGGCCCGGCTTCCGGCGCGTCTCCCCGCGTTCCGGCTGGCCGGCGCCGGCGCCCCCTCCGCACCTTCCTTCTGTTCCTGCTCGCCCTGGTGATCCTGATTCCAGCTTCGGCCGGGGTGTACCTGATGAACCTCGGCCGGATTTACGATTCCGAAGTCACGACGATCGAGAACCCCTTCCCGGACGAAGCAACCCGGCCCAACCCATCCGTCGCGAATGGCGCGGCCCCCGGTGCGGCCGGCGTTCCGGGAACTGCTGAGGGCGGCACAAACAACGCCGGAGGCGGGACCGGGTCCGTGAATATCCTGGTGATGGGCAGCGACAGCCGCGGCGCCACCAGCGAAGAAGCTGCGGCCGGCGCGGGATCCAACCAGCGGGCGGACACGCTCATGCTGGTGCACGTCCCCGCCGACCGCGCCAAGATCTACTCCATCTCACTCATGCGGGACCTCTGGGTGGGCATCCCGGACCGCGGGGAGGCCAAGATCAACGCAGCACTGGCCTACGGCGGCATCCCACTGATGGTGCAGACCGTGGAATCGATTTTTGGCCAGCGGATCGACCACGTGGCCATGGTGGACTTCGAAGGTTTTGTTGGACTCACGGACGCCCTGGGCGGAGTGGAAGTGGATATCCCCGCCGGGTTCGTTTCGTATCACGACCAGTCTGTCTTCCAGGCCGGGAAGAACACCCTGGACGGCGAGCGTGCCCTGAAGTTCGTCCGCGAGCGCTACGCGTTCGCGGATGGTGACTACCAGAGGGTCCGCAACCAACAGGCGTTCGTGCGGGCGCTTCTGACCAAGAACCTCAGCGCCGACACCCTCCTGAATCCGCTGAAGGTCCAGGGTGTGGTCAGCGCCATCGCGCCGTTCATCAGCGTGGATGAAGGGCTGAACGCCGCGGCCCTGGCGGGGCTGGCTGTGGAGCTCAAGGACGTACGGCCGAGCGACATGGTGATGTTCACCCTCCCGACGCTGGGCACGGGAACGTCAGCGGACGGGCAATCCATCGTCATCCCGGATACCGCTGCCATCGCCGCAATCGCCACATCGCTTTCCGATAACACCCTTGGCAACTATGTAGCCGGAAAGGGTCTGGAAGGCGGAAACTGAMATASEHPAAVFTGSASSGTAVSGAAPGPASGASPRVPAGRRRRPLRTFLLFLLALVILIPASAGVYLMNLGRIYDSEVTTIENPFPDEATRPNPSVANGAAPGAAGVPGTAEGGTNNAGGGTGSVNILVMGSDSRGATSEEAAAGAGSNQRADTLMLVHVPADRAKIYSISLMRDLWVGIPDRGEAKINAALAYGGIPLMVQTVESIFGQRIDHVAMVDFEGFVGLTDALGGVEVDIPAGFVSYHDQSVFQAGKNTLDGERALKFVRERYAFADGDYQRVRNQQAFVRALLTKNLSADTLLNPLKVQGVVSAIAPFISVDEGLNAAALAGLAVELKDVRPSDMVMFTLPTLGTGTSADGQSIVIPDTAAIAAIATSLSDNTLGNYVAGKGLEGGNPGPT0023440_1641DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023440-tagT|tagU|tagV-K01005NANA
D1-29_037181146tagU_4Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagUATGAGCGTCCCAGGTGCTTCCGAGCCCATCGGTCCTGATTCATCCGGTTCCGGCCCCGCTAGTCCTGGCGGGGCCGGTTCCGGTCCTTCCGCACCCGGTACAGGGACAGCACGACGGCGGCGCATCATTGCCGCGCTGCTGACCGTAGTGCTGGTGGCCGGCATCGCCGTCGCCGCCTTGCTGTTCAGCCGCCCGGCAGATACGTCCGCCACATCGGCCACGCAAAGCGCCCAGCCGACGGAAACCCCGACTGCCACGGAGACCACCCCTCCGCCGGTCCCGGCCCCCGCTCCTCCGCCGCCGCCCGAGCCCATCCCGGAGCTGCAGCCCGTTCCCATGAACATCCTCATCATCGGCAGCGACAGCCGCGGGAATGCGAGGGATCAGGCAGGCCATACCCTGGCCACCGGCCAACAGTCCGATCAGCGGGCGGACACCATCATGGTGGCCCACGTTCCGGCTGACCGGCGCAGCGTCCAGGTGGTCTCCATCATGCGGGACACGTGGGTGAACATCCCCAGCTATGGCGGTTCCAAGGTGAACACCAGCCTCCAGGTGGGCGGCACGCCCCTGGTGAAGCAGACTGTGGAGTCCCTGCTGGGACTTCACATCGACCATACGCTCATGCTGGATTTCAACGGGTTCAGGGCCCTGATTGACGCCATGGGCGGGATCGACGTGCAGGTCAACCTGCCGTTTCAGTCCACGCACGACACCGGGCACGTCTTCTCGCAGGGCCTGAACAGGCTTAACGGGCAGGCTTCGCTGGAGTTCGTCCGGGAGCGGTACGCGTTCATCGACGGCGACTACCAAAGGGTGCGCAACCAGCAGGCTTTCCTGCAGGCACTGTTGGCGAAGCTGACCCACGGCGGCGCCTTGAACGATCCCAACGTGGTCCGGCACCTGGTGGCTCTTTCCGGGCCCTGGCTGACCCTCAACCAGGGCCATGACGCCTTGTCCGTGGCGATCCTCGCCTACGGCCTTCGAAACCTCGACTACAACGCCTGCACCTTCGTTACGCTGCCAACGGCCGGGGTGGGCACCATCGGCGGGGCATCCGTGGTGCTGCCAGACTATGGCGGGATTAATGCCGTGGCCGCCGCCCTGAGGGAAGGGCGCCTGGCCCAGTACGCGGCTGGGCGCTGAMSVPGASEPIGPDSSGSGPASPGGAGSGPSAPGTGTARRRRIIAALLTVVLVAGIAVAALLFSRPADTSATSATQSAQPTETPTATETTPPPVPAPAPPPPPEPIPELQPVPMNILIIGSDSRGNARDQAGHTLATGQQSDQRADTIMVAHVPADRRSVQVVSIMRDTWVNIPSYGGSKVNTSLQVGGTPLVKQTVESLLGLHIDHTLMLDFNGFRALIDAMGGIDVQVNLPFQSTHDTGHVFSQGLNRLNGQASLEFVRERYAFIDGDYQRVRNQQAFLQALLAKLTHGGALNDPNVVRHLVALSGPWLTLNQGHDALSVAILAYGLRNLDYNACTFVTLPTAGVGTIGGASVVLPDYGGINAVAAALREGRLAQYAAGRPGPT0023440_1625DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023440-tagT|tagU|tagV-K01005NANA
D1-29_037192616menE_22-succinylbenzoate--CoA ligaseGTGAACTCGTCCCTGGAAGTTGCGCGGGTAGCCTTTGCCGCTGATCTGGCCCGCCACGGAGACCGTCCCGCCCTCCTCACCGGCGGCCGGACCATCTCCTACCTGGAACTCGCCCACCGGGTGGGTTCCTTTGCCGAGCGGCTCGGCCCCGTCCGCCGCCTTGTGGTGCTCGCGGCGGACAACAGCGTGGGGTCGTTGGTGGCGTACCTGGCTGCCCTGGCCTGCGGGCACCCGCTGATCCTGGCGCCTGCAGGAAATGACGCCGCCATGGCATCCCTGGTGGCAGCCTACGATCCGGATGCCATCGTCCGGACGGGGCCAACGGAAGCCGGTGCCAGTGAGCCGCTGCTGGAGGAAGTGCGGCCCGGAACCCGGCACCAGCTGCACCCGGATCTTGCCCTATTGCTCAGCACGTCGGGTTCCACGGGCTCGCCCAAACTCGTCCGGCTCTCCCAGCAGAATGTGCAGTCAAACGCCGAATCCATTGCCGAATACCTGAACATCGGTGAAGACGACCGTGCCATGACCACGCTGCCCATGTACTACTGCTACGGGCTCTCGGTGCTCAACAGCCACCTGCTCCGCGGCGCCGGGATTGTGCTCTCGGATCTGTCGGTGGTGGATCCGTGCTTCTGGGAACTGTTCCGCAACCGCCGAGCCACGTCCTTCGCCGCCGTCCCCTACACTTTTGAGCTCCTGGACCGCGTGAGGTTCACGGAGATGGAGCTCCCTCACCTGCGGTACATCACACAGGCCGGGGGCCGGCTGGATCCCGGAACCGTGGTCCGCTACGCCGAGGCCGGACGCGGGCGCGGCTGGGACCTGTACGTGATGTACGGCCAGACGGAGGCCACCGCACGGATGGCCTACCTTCCGCCGCACCTCGCCGCGGAGCATCCGGGAAGCATCGGCGTTCCGGTCCCGGGCGGGGATTTCCGCATTGATCCGGTGCCGGGCCTGGAGGACGGCGAGCTGGTGTACACCGGGCCGAACGTGATGCTGGGCTATGCCGAGAAACCGGAGGACCTGGCGGCCGGGCGCACCATCAGCGAGCTGCGCACGGGGGACCTGGCCCGCCAGTCGGACGCCGGCCTGTACGAGGTGGTGGGCAGGAGAAGCCGGTTCGTCAAGATTGTGGGCCTGCGCATTGACCTTGGCCAGGTGGAAAAGATGCTGCAGAAGATGGGCCTGAACGCGGCCTGCGCCGGCACAGACCACAGGCTGGTGGCAGCGGTCGAGGGCAGCCACGACACCCGACTCCTGGCCAAGACCCTCGCCCAGGACCTGGGCCTGCCCCGTGCCGCCGTGCAGGTCCGCGCCGTCGAAAGCCTGCCGCGCCTGGCCACCGGCAAAACCGACTACCCGTCAATCCTGGCGCTTGCCGACACGGACACCACGAACAACACGGACGAAACGGAAAACGCTGCCGGGAGGCCCGGGCAGGAAGAGGCCGACGGCGGTGCTGCCGCCTCCGCTGCGGCAGCACCGCCGTCGGACGTCCGCAGGATTTTTGCGGATGCGCTTGAGATCGAGGACATCGGCGACGATGACACATTCGTCTCGCTTGGCGGCGACTCGCTGTCCTACGTTGCGGCATCGGTAAGCCTGGAGAAGGTTCTTGGCCACCTGCCCCCGGACTGGCACGTCACCCCCGTCCGGGAACTGCAGGCCCTTGCGCGGCCACGGCGCAGCCCCTGGCGGATCTTCGCGCCGCTGGAGACAGGCATTCTGCTGCGTGCGGCGGCCATTGTAATGATCATCAGCACGCACGTGGACCTCATCAGGTGGCCGGGCACAGCGCATGTGCTGATGGCCCTGGCCGGCTACAACTTTGCCCGCTTTCAGCTGGGCGGTGACAGGATCCCGCGGCTCCGGCGCCAGGTACGCAGCCTGGCCAGGCTGGTGGTGCCCACAGTGGCCTTTATCGGGGCGGTCATGCTGCTGACGGATAAATTCCACTACACGCCGGCCAACCTGCTGCTGCTGAACACGATGATCGGGCCGGCCGGCTGGACCGATGCCTGGCACTTCTGGTTCATCGAGGTGCTGGTGTACGTGCTGGTGGGCGTGATGGCGCTCCTGGCCATCCCCTGGGTGCACCGGACAGAGCGGCGCTTTCCCCTGGCGTTCCCCGTGGCGCTTGTTGCTGCCGGGCTGCTGGCCCGTTATGACCTGATTGGCGTGGACATCCTGCACACCCGGCCGGTCCTCTGGCTGTTTGCCCTGGGCTGGGCCCTGGCGCGGGCGAGGACTGCTGGCCAGCGGCTGGCGCTGTCCGCGCTGGGGGCACTGGCCCTGTACGGCTACTTCGACAACCCCTGGCGGGAGGGCACCATCCTGGCGGGGATCCTGCTGCTCGCATGGATTCCGGCCATCCCGCTGCCGTCGGTGCTCCACCGCCTCTTCGGCGTCCTGGCCAGCGCGTCACTGTACGCCTACGTCACGCACTGGGTGGTGTTCCCCGACCTGAAGGACAGCCAGCCTGTTTTGGCAGTTGCCCTGTCCTTGGCTGTCGGCGTCGCCTACTGGGCCGTGGCCATGAAACTGATGGGCGCGGCGGGCCGCCTGAAGGTCAGGACAATGCGGAGGCTGCGCCGCCGGAGTGCTCTGGCATAAMNSSLEVARVAFAADLARHGDRPALLTGGRTISYLELAHRVGSFAERLGPVRRLVVLAADNSVGSLVAYLAALACGHPLILAPAGNDAAMASLVAAYDPDAIVRTGPTEAGASEPLLEEVRPGTRHQLHPDLALLLSTSGSTGSPKLVRLSQQNVQSNAESIAEYLNIGEDDRAMTTLPMYYCYGLSVLNSHLLRGAGIVLSDLSVVDPCFWELFRNRRATSFAAVPYTFELLDRVRFTEMELPHLRYITQAGGRLDPGTVVRYAEAGRGRGWDLYVMYGQTEATARMAYLPPHLAAEHPGSIGVPVPGGDFRIDPVPGLEDGELVYTGPNVMLGYAEKPEDLAAGRTISELRTGDLARQSDAGLYEVVGRRSRFVKIVGLRIDLGQVEKMLQKMGLNAACAGTDHRLVAAVEGSHDTRLLAKTLAQDLGLPRAAVQVRAVESLPRLATGKTDYPSILALADTDTTNNTDETENAAGRPGQEEADGGAAASAAAAPPSDVRRIFADALEIEDIGDDDTFVSLGGDSLSYVAASVSLEKVLGHLPPDWHVTPVRELQALARPRRSPWRIFAPLETGILLRAAAIVMIISTHVDLIRWPGTAHVLMALAGYNFARFQLGGDRIPRLRRQVRSLARLVVPTVAFIGAVMLLTDKFHYTPANLLLLNTMIGPAGWTDAWHFWFIEVLVYVLVGVMALLAIPWVHRTERRFPLAFPVALVAAGLLARYDLIGVDILHTRPVLWLFALGWALARARTAGQRLALSALGALALYGYFDNPWREGTILAGILLLAWIPAIPLPSVLHRLFGVLASASLYAYVTHWVVFPDLKDSQPVLAVALSLAVGVAYWAVAMKLMGAAGRLKVRTMRRLRRRSALANANANANANA
D1-29_03720831gpmA_42,3-bisphosphoglycerate-dependent phosphoglycerate mutaseGTGCCGAAAAGCGGCAGCCGCACAACGGGCAACATGGCGATGGGGCAGGTCTTTGTGGAAAATCAGGGAATGACGCAGGCAGTCCGGGAAGCCGGGGCGGTGGAGCTCATCCTGATCCGCCACGGCCAAAGCGAAGGCAATGTTGCGGCGTCGGAGGCACAGCTGGCAGGCGTTGAGGTGATCGACGTCCCGGCACGCGACGCCGACGTCATATTGTCCCCTACCGGGCAGGACCAGGCGGTGGCCGTCGGAAAGGCGCTTGCTGCCATCCCGGAAGACCGCCGGCCGGATGCAGTGGTGTCCTCCCCGTATGCCCGCGCGCATCAGACCGCCGAAATCGCCGTGGAAACTGCGGGCTGGCCCGTCCGCGTGCGCATCGATGAACGGCTGCGGGACCGGGAGCTGGGCGTCCTGGACATGCTGACGTGGCAGGGCGTGGAGAAGCGCTTCCCCGAGGAGGCCGAACGGCGGCGCTGGCTGGGCAAGTTCTACTACCGTCCGCCCGGCGGTGAATCCTGGACCGATGTGGCGCTCCGGCTGCGCTCGGTGCTTGACGAGCTGAACGGCCTGGGCATGGGGCACCGCGTGATGGTGGTGTGCCACGACGCCGTGATCCTGCTCTTCCGGTACATCCTGGAGGGGATGACGGAGCGGGAGATCCTGGACCTCGCCGCCGGCACCTCCGTTCTGAACGGTTCCATCACCCGGTTTGTCCGCCCCGAGGGGAAGGGGCCATGGACGCTGGAGGAGTTCAACCAGGCGGACCATCTCAGGGAGCAGGGTGTGGAAGTGACCGAGCACGCCGGGGACGCCAGTGTCCACCCGCAATGAMPKSGSRTTGNMAMGQVFVENQGMTQAVREAGAVELILIRHGQSEGNVAASEAQLAGVEVIDVPARDADVILSPTGQDQAVAVGKALAAIPEDRRPDAVVSSPYARAHQTAEIAVETAGWPVRVRIDERLRDRELGVLDMLTWQGVEKRFPEEAERRRWLGKFYYRPPGGESWTDVALRLRSVLDELNGLGMGHRVMVVCHDAVILLFRYILEGMTEREILDLAAGTSVLNGSITRFVRPEGKGPWTLEEFNQADHLREQGVEVTEHAGDASVHPQPGPT0018035_121DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018035-gpmB-K15634NANA
D1-29_03721960nnr_2COG0062Bifunctional NAD(P)H-hydrate repair enzyme NnrGTGTCCACCCGCAATGAGGCCCCTGCCGCCCAGGTGACGCCCTCACTGCTGCGCGACTGGCCGCTGCCCGCCGCCGGTGAGGACAAGTATTCGCGTGGTGCTGTGCTGGTGATTGGTGGTGCCCGGAGTACGCCCGGGGCGGCCCTCCTGGCTGGCCGCGCCGCACTCCGGGCCGGGGCGGGAAAGCTCACGCTTGCTGTGGCCGAATCAGTGGCTGTGCAGCTGGCCGTGGCGCTCCCGGAGGCAGGTGTTACGGGACTTGCTGAGACTGCCGAGGGGTCCATGCAGGCCTCCGGCCTTCAACGCATCGCGCCCGCCCTGGAAACCGCCGACGTTCTGCTGATCGGCCCCGGGCTTGACGATGTGGACCTCGCTGTCGAGCTGCTCCGCGCGCTTTTGGGGAGCCAGGCAGCGGGCGGAACCGACGGCGACGGTTCCGGAAGTTCCGACGGCGAAGGTTCCGACGGCGGCCGGGGAGCCACCATCGTGCTGGACGCCTACGCCCTGGGCGCCCTGCCTAAAATCCAGGAGGAGCTGACCCCCTGGCGGGGACGGCTGATCCTCACGCCGAACCCCACTGAGGCGGAAATCCTGTTGGGCCGGGACCTGGCAGACCTGGAAGATGACGTGGCAGAGATCGCTGACCGGTACCAGGCAGTGGTCAGCTGCCAGGGTTTCATCGCGCGGCCAGCCGGCACCAAGGCGCCGGAGGAACCTGAACGTTGGCAAATCACCACCGGGTTCGGCGGACTGGGAACCTCCGGCAGCGGCGACATCCTGGCCGGGGCCATTGCCGGGCTCCGTGCCCGTGGGACCACCGATGCTCAGGCAGCCTGCTGGGGCACCCACCTCCATGCCGCGGCGGCGGACCGCTTGGCCAGCAGGATGGGACCCCTGGGATTCCTGGCCCACGAACTGGCCGACGAACTGCCGGCCCTCATGATGGAGCTCAACACCTGAMSTRNEAPAAQVTPSLLRDWPLPAAGEDKYSRGAVLVIGGARSTPGAALLAGRAALRAGAGKLTLAVAESVAVQLAVALPEAGVTGLAETAEGSMQASGLQRIAPALETADVLLIGPGLDDVDLAVELLRALLGSQAAGGTDGDGSGSSDGEGSDGGRGATIVLDAYALGALPKIQEELTPWRGRLILTPNPTEAEILLGRDLADLEDDVAEIADRYQAVVSCQGFIARPAGTKAPEEPERWQITTGFGGLGTSGSGDILAGAIAGLRARGTTDAQAACWGTHLHAAAADRLASRMGPLGFLAHELADELPALMMELNTNANANANANA
D1-29_0372242318 kDa heat shock proteinATGTTGATGCGAACCGATCCGTTCCGTGAGCTGGACAGGCTGGCCCAGCAGGTCCTCGGCACGGCGGCGCGTCCGGCTGCGATGCCCTTGGACGCGTGGCGGGAGGACCAGGAATTCGTGGTGGCCTTTGATCTGCCCGGTGTAAATGCGGATTCAGTTGATCTGGATGTGGAACGGAACGTCCTGACGGTGAAGGTTGAGAGGCCGGATCCCGTGGGCAAGGACACCGAGATGATCGCATCGGAGCGGCCGCGCGGCGTCTTTAGCCGCCAGCTGATCCTGGGTGAGGCCCTGGATGCCGAAAACGTCAAGGCAACATACGACGCCGGTGTCCTGACTCTGCGGATTCCTGTCGTCGAGAAGGCCAAGCCGCGCAAGATCGAGATTGAAACGAAGGGGGCACATCATCAGATTGCCGCCTAGMLMRTDPFRELDRLAQQVLGTAARPAAMPLDAWREDQEFVVAFDLPGVNADSVDLDVERNVLTVKVERPDPVGKDTEMIASERPRGVFSRQLILGEALDAENVKATYDAGVLTLRIPVVEKAKPRKIEIETKGAHHQIAAPGPT0014635_7466DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
D1-29_03723417hrp1_2COG0517Hypoxic response protein 1ATGTCCATCAAGGCACGCGACATCATGAGTGGCGGCGTGGAATGCGTCGGTGAGAACGAAACGCTGGAGCAGGCAGCGCGGAAAATGAAGGACCTCGACGTCGGTTCGCTGCCGATCTGCGGTGAGGACAACAGGCTGAAGGGGATGATCACAGACCGCGACATTGTGATCAAGTGCCTCGCCGACGGCGGTGATCCCCGCACTGCCACGGCCGGACAGTTCGGCCAAGGCAAACCGGTGACCATCGGTGCGGATGACTCCATCGAAGAAGCCATCCGCACCATGCAGGAGCACCAGGTCCGCCGCCTGCCCGTGATCGATGGCCACGACCTGGTGGGCATCCTGAGCCAGGGTGACATCGCGCGCAACTACCCGGAGGACCGGGTGGGCGAACTGGTGGAGTTTATTTCGTACTGAMSIKARDIMSGGVECVGENETLEQAARKMKDLDVGSLPICGEDNRLKGMITDRDIVIKCLADGGDPRTATAGQFGQGKPVTIGADDSIEEAIRTMQEHQVRRLPVIDGHDLVGILSQGDIARNYPEDRVGELVEFISYNANANANANA
D1-29_037242337dapb1Dipeptidyl aminopeptidase BIGTGATAGAGCAACGGGGGCGGGGGTGCTCTCCCCCGGTAGCGAACGCCGCCCTGATTGTCTGCCCGGGTCTATATATTGAGGGGATGACCCAGACTCCGCTGCAGGATTCCGCCAACGCGTCCGCTGCCACTGTTTCCGCCGATTCTGCCCTGCCGCCCGTCGCCCGGAAGGTCCCGGCCGAGCGCATCCACCACGGCGAGACCTTCGTGGACAACTATGAATGGCTGCGGGAGAAGGAGTCCCCGCAGGTGGTGGAGCACCTCAAGGCAGAGAACGCCTACCAGGAGGCCGTCACAGCCCACCAGGAACCGTTGCGCGGGGCCATTTTCCAGGAGATCAAGGGCCGCACCCAGGAAACTGACTTGTCTGTTCCCAGCCGGAAAGACGGCTGGTGGTACTTCAGCCGTTCCGCCGAAGGCAAGGAGTACGGAATCCAGTGCCGCGTCCGCGCCCAGGACACCGGAAACCCCGTGGCTGACTGGACTCCGCCGGCAGTGGAGGCCGGCGTCGAAATCCCTGGCGAGGAAGTGCTGCTGGACGGGAACGTTGAGGCCGAAGGCAAGCCATTCTTCTCCGTGGGCGGCTCCGCAGTCACCGTAGACGGAAACCTGTACGCGTACGCCGTGGACAACGCCGGCGATGAACGCTTCACGCTCCGGATCAAGGACCTCCGCACAGGGGAACTGCTGCCGGACGTCATCGAGAACATCTTCTACGGCGTCTCCTTCTCCCCTGACGGCACGCGCATTTTCTACACGGTGGTGGACGATTCGTGGCGGCCGTACCAGGTCAAGTCCCACGTCCTGGGCACACCCGTCGCCGACGACGTGGTGATCTACCAGGAGGACGACGTCGCCATGTGGCTGGGCTTTGAACTCTCCGGTGACCGGCGCCACCTGGTCCTGGGCATCGGCTGCTCCGAATACAGCGAAACCCGCCTGATGCGGTTCGACGACCCCGCCGGGGCCCTCACCACCGTGATTTCGCGGGACCAGCGGGTCCTTTATGAGGCCGAGCCTTTCCTGCTGACCGGCCCCGACGGCGAAAAATCCGAACGTATCCTGCTCACCCACAACCGGGGTGCCATCAACTCCATGGTGTCCCTGGTGGACCCGGCCGAACTCACCAAGCCGCTGGCGGAGCAGCACTGGGATACCGTCGTCGCGCATTCCGATGATGTCCGCGTGAACGGCGCGGGCGTCACGTCCACGCACGTGGTGGTGTCCATCCGGAAGGACACCATCGAGCGGGTTCAGGTACTGGGCCTGAACGGACTGGGCACTGCCGCGCAGGAGGCCCCGGTGGAACCGGCATTCGACGAGGAGCTATACACAGCAGGAGTTGGCGGCTCCGATTACGAGGCCCCGGTGATCCGGCTCGGGTACACCTCCTACTTCACGCCTTCCCGCGTGTACGACTTTGTGCTGCCCACGCCGGAACAGCCCGCCGGCGAACTGCTGCTGCGCAAGGAAAGCCCTGTGCTGGGCGGCTACGACGGCAACGACTACGTGGCCACCCGGGAATGGGCCGACGCCCCCGACGGCACCAGGATCCCGCTCTCGGTGCTGCGGCACAAGGCGGTCAAACAGGATTCGACGGCGGCCGGCCTGGTGTACGGGTACGGCTCCTACGAGCTGAGCATGGATCCCGGCTTCGGGATCGCCAGGCTGTCGCTTTTGGACCGCGGAGTGGTTTTTGTCATCGCCCACATCCGCGGCGGCGGCGAGCTGGGGCGGCACTGGTACGAGGACGGCAAGAAGCTCAGCAAAAAGAACACGTTCACCGATTTTGTGGCCGCAACCGACTGGCTGGCCGGCTCAGGCTGGGTGGACCCGGCCAGGATCGCCGCAATGGGTGGCTCCGCAGGCGGCCTGCTGGTGGGAGCCGTGGCCAACCTCGCCCCGGAAAAGTACGCCGCCGTCCTGGCACAGGTCCCGTTCGTGGATCCGCTCACCACCATCCTGGATCCGGACCTTCCGCTGTCCGCACTGGAGTGGGAGGAATGGGGCAACCCCATCACGGACCCTGCGGTTTATGCCTACATGAAGTCCTACTCGCCCTATGAGAATGTCCGCGACGTGGCCTACCCCAAGATCGCCGCGGTGACGTCCTTCAACGACACCCGGGTGCTCTATGTGGAGCCGGCCAAGTGGGTCCAGGAACTCCGCAACAAAACCACCGGGAACCAGCCCGTCCTGATGAAGATCGAGATGGACGGCGGCCACGGCGGAGCCTCCGGCCGGTACGTCCAGTGGCGCGAACGGGCCTGGGACTACGCGTTCATCGCTGATTCCGTGGGCGCCACCGAACTGCTGCCAGGAGCGGGCCTGAAGTAAMIEQRGRGCSPPVANAALIVCPGLYIEGMTQTPLQDSANASAATVSADSALPPVARKVPAERIHHGETFVDNYEWLREKESPQVVEHLKAENAYQEAVTAHQEPLRGAIFQEIKGRTQETDLSVPSRKDGWWYFSRSAEGKEYGIQCRVRAQDTGNPVADWTPPAVEAGVEIPGEEVLLDGNVEAEGKPFFSVGGSAVTVDGNLYAYAVDNAGDERFTLRIKDLRTGELLPDVIENIFYGVSFSPDGTRIFYTVVDDSWRPYQVKSHVLGTPVADDVVIYQEDDVAMWLGFELSGDRRHLVLGIGCSEYSETRLMRFDDPAGALTTVISRDQRVLYEAEPFLLTGPDGEKSERILLTHNRGAINSMVSLVDPAELTKPLAEQHWDTVVAHSDDVRVNGAGVTSTHVVVSIRKDTIERVQVLGLNGLGTAAQEAPVEPAFDEELYTAGVGGSDYEAPVIRLGYTSYFTPSRVYDFVLPTPEQPAGELLLRKESPVLGGYDGNDYVATREWADAPDGTRIPLSVLRHKAVKQDSTAAGLVYGYGSYELSMDPGFGIARLSLLDRGVVFVIAHIRGGGELGRHWYEDGKKLSKKNTFTDFVAATDWLAGSGWVDPARIAAMGGSAGGLLVGAVANLAPEKYAAVLAQVPFVDPLTTILDPDLPLSALEWEEWGNPITDPAVYAYMKSYSPYENVRDVAYPKIAAVTSFNDTRVLYVEPAKWVQELRNKTTGNQPVLMKIEMDGGHGGASGRYVQWRERAWDYAFIADSVGATELLPGAGLKPGPT0020980_205DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020980-ptrB-K01354NANA
D1-29_03725468hypothetical proteinATGCCCGTCATAGAAGAAAGTGTCTTCATCGCCCGTCCGCCGCAGGAGGTTTTTGATTTCCTGGTCAGGAGCGAGAACATCCCGGTCTGGGATTCTTCGGTGATCCGGACCGAACAGATCACCGAGGGTCCGCCAGGGCCCGGCACCAAGGTGCGCGGCACCAGCAAGGTCATGGGACGGCATTTTGACTGGGTTGCTGAAAACATTGACTTCGATCCGCCGCGGAAGACAGTGGCCCGCTCGGTTGAAGGCAAGATGAATTTCACCATCACCAACGCCTTGGAACCGGAGGGCAACGGTACCCGCCTGACCTTCCGCATTGATGCCGATTCCGGGCTCGGCGGGATCTTCGGGAAGCTGGCTGACCCCCTTGTGGAGAAGGCACAGGCCCGGACGGTCCGCGCCAACCTAGAGACGCTGGCCGAGCTGCTGGCGGAGCACCCCGAGTACGGAAGGGACGCCGGTTGAMPVIEESVFIARPPQEVFDFLVRSENIPVWDSSVIRTEQITEGPPGPGTKVRGTSKVMGRHFDWVAENIDFDPPRKTVARSVEGKMNFTITNALEPEGNGTRLTFRIDADSGLGGIFGKLADPLVEKAQARTVRANLETLAELLAEHPEYGRDAGNANANANANA
D1-29_03726567hypothetical proteinATGCCGGACATCATCCTGCCCGTCCGCACGGAACGGCTTGCCCTCCGCCGGTTTGAAGGACGGGACCTGGAGGCCTTCCACGCTTACCACGCGCTGCCGGAGACGGCGCGGTTCCTGCCAGGCCTGGCCAAAACCTACACGCAGTGCATGGAGCGGGTGGGAATGTATGCCAACTTTGTCTTCCAAAAGGAAGGCGACTGGGTCAGCCTGGCCATTGAAGCCAAGGACTCGCCCGGCCTGCTGGGCGAGGTGGTGCTCAAGTGGCTCCCCGGCCGCGGACAGGCCGAAATCGGCTGGACCCTGGCGCCGGGGGCGCGCGGCAAGGGCTACGCCACCGAGGCTGCGGCAGCCATGCTGGGCCTGGGCTTTGGCGAACTCGGGTTCCACCGGATCGAGGCGCGGCTGGACGCGCTCAACACCCCGTCGGCTGGGTTGTGCGAACGGCTGGGCATGCGGCTCGAGGCCAGGCTCGTGGACAAATGGCACTACAAGGGCCAGTGGGCAACAGAGCTGGTCTACTCCATGCTGGAGCGGGAATGGAAGGCTGCCGCGCCGTCCCGGCGTTGAMPDIILPVRTERLALRRFEGRDLEAFHAYHALPETARFLPGLAKTYTQCMERVGMYANFVFQKEGDWVSLAIEAKDSPGLLGEVVLKWLPGRGQAEIGWTLAPGARGKGYATEAAAAMLGLGFGELGFHRIEARLDALNTPSAGLCERLGMRLEARLVDKWHYKGQWATELVYSMLEREWKAAAPSRRNANANANANA
D1-29_037271167ackACOG0282Acetate kinaseATGCTTGTGCTAGTCATCAATTCCGGCTCGTCATCGCTCAAGTACCAGGTGCGTGATGTTGCCGCCGGAAGTGTGCTGACCGAAGGCCTGATCGAAAAGATCGGCATGGGTAACGGCGGTGACGGGGATGGCGAGATCGAGGGCCCGCGTGACCATGCGGAGGCGCTGGAGCAGGTGGACGCGGCCATTCATGCGGAACTCGGTGATCTTGAACTCGCTGCCGTTGGCCACCGGGTGGTGCATGGCGGCGAGCGCTTCGCCGAACCCGTGCTGATCGATCACGAGATCACCCGGGCCATCGAACGCCTCAACCCGCTGGCGCCGCTGCACAACCCGGCCAACGTGCTGGGGATCCGAGCCATCACCAAAAAATGGCCTGACATGCCGCAGGTGGCCGTTTTTGATACCGCCTTCCACCGCACGCTGCCCGAGCACGCCTGGCGCTACGCCGTGCCGGATGAGCTCTACACCAGCCACGGCATCCGCCGTTATGGCTTCCACGGCACCTCGCACGAGTATGTGACCCAGCGTGCCGCCGCGCTCCTGGGCATTCCGGTGGAAGAGTTCGACGGCGTGATCGCCCACCTCGGGAACGGCGCCTCTGTCACGGCCGTCCGGGGCGGCAAGTCCGTGGACACGTCCATGGGCTTCACCCCGCTGGAGGGCCTGGTGATGGGCACCCGGTCCGGCGACCTGGACCCGTCCATCCTGGTCTTCCTGGGCAGGGCCGGCTGGACCCCGGAGGACATCGACACCATGCTCAACCGCGAGTCCGGCCTGAAGGGGCTGGCCGGGAACAATGACATGCGCTCGGTGGTGGAAGCTTCCGAGGCCGGCGACGCCAGGGCCGCCATGGCGCTCGCCGTGGCGTCCTACCGCCTGGCCAAGTACATCGGCGGCTACCACGTGGCGGTGGGCGGCGCCAAGGCGCTGGTTTTCACCGCGGGCATCGGAGAAAACTCCTCCCAGTTCCGTGCGCTGGTGGCGGACCGCCTGGGTGCCTTGGGCATAGAGCTCGACGCCGGCCTCAACAGCCAGCGGTCCAAGGAACCACGGGTTATTACCACCACGCAGTCCGCCATCCCGGTCTTGGTAGTCCCCACGGACGAAGAACAGGCGATCGCGGAGGCCACAGCCGCCGTCGTCCATTCAACGGCGATCGCCTAGMLVLVINSGSSSLKYQVRDVAAGSVLTEGLIEKIGMGNGGDGDGEIEGPRDHAEALEQVDAAIHAELGDLELAAVGHRVVHGGERFAEPVLIDHEITRAIERLNPLAPLHNPANVLGIRAITKKWPDMPQVAVFDTAFHRTLPEHAWRYAVPDELYTSHGIRRYGFHGTSHEYVTQRAAALLGIPVEEFDGVIAHLGNGASVTAVRGGKSVDTSMGFTPLEGLVMGTRSGDLDPSILVFLGRAGWTPEDIDTMLNRESGLKGLAGNNDMRSVVEASEAGDARAAMALAVASYRLAKYIGGYHVAVGGAKALVFTAGIGENSSQFRALVADRLGALGIELDAGLNSQRSKEPRVITTTQSAIPVLVVPTDEEQAIAEATAAVVHSTAIAPGPT0001360_4099DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0001360-ackA-K00925NANA
D1-29_03728240hypothetical proteinATGACGAACGACCCCACTCAGCCGGACTACACCACTCCCGAGAACGTCGAAGCCCATACCGAAACCGCCCAGCCGCCCACCGGCACCGAAGGCGACACGTCGTCGAAAGATACGGAGTCGGCTGCTACGGGATCCGATGGCAAGGATGCCGAAGGCATGGACCTCACACCCGAAGGCCTTTCAGACGAACCGGCCAAGCAGGAGGACCCGGCCAGCCTGGCGAAGCCCGAAAACAGCTGAMTNDPTQPDYTTPENVEAHTETAQPPTGTEGDTSSKDTESAATGSDGKDAEGMDLTPEGLSDEPAKQEDPASLAKPENSNANANANANA
D1-29_037292094ptaCOG0280Phosphate acetyltransferaseATGGCCAGAGGCATCTATGTCAGCGCAACTACCCCCGGCTCGGGCAAGTCGCTCGTGGCCCTGGGCCTTGCGGACACACTGCACCGGCATGCCGACAGGATCGGCTTCTTCAAGCCAGTGGTCCTTGGCACCGACGCTGCGGATGACCCCATGGTGGCGCTGATGAAGTCCCGCTTTGCACTGGACGATGACCGCTGCCGGGGCGGCCTGACCTTCGCCGAGGTCCGCGCCTTGCTGGCCGAAGGAAACCGCGCCGAAATCGACGCCCGCTGTGTGGACATCTTCGCCGAAATGTCCCGGCACTGCGATGTGGTGATTGTGGAGGGCACGGACCTCACAGGCCAGGACGCCGCCGTCGAGTTTGACCTCAACGCCCGCCTCGCCAACAACCTGGCCGCACCGGTGGTGGCAGTGGTGGGTGCGAAGGGGCGCACCGTCGCAGAGGCAACCGCCGCCGTCGAGGTGGCCCGCAAGGAACTTTCAGCAGGAAAGTGCGCCCTGCTGGCCATCATGGTCAACCGCGCCGATCCCGATGACGTCGAGGCCATCGCTGCCGCGGTGAAGCGGGGAGCATCCGGGCGTCCGGTGTACGTCCTGCCTGAACTGGAGGAGATCGCCAGGCCCACCACCGGCGAGGTTGCCGCCGCCCTGGGCGTCCGCCAGATTGCCGGCCGCCCGGACATGGAGCGGGATGTCCGTGACATTAAGGTGGCGGCAATGAACGTGGGCAACTTCCTGAACGTCCTGGACGAGGGTGCCCTGGTGATTGTGCCCGGGGACCGCGCGGACGTGATGGTGGCTTGCCTGGCGTCGTCGTTCTCGCCGGAATTCCCGGTGCCCTCGGCCCTGGTCCTGACCGGCGGCCTTGCCCCGGACGCCAACATCTATCCGCTGCTGGCCCAGGCCCCCTTCCCCGTGTTCGCCTCCCACGAAGACACGTACACCACGGCCCGCCGGGTCTCGGAGGTCCGGAGCGAGATCTGGTCCGGGCACCGGCGCAAAGTGGCGTCCGCCCTGGGGCTGTGGTCCAGGAGTGTGGACGAGGCGGAGCTGATGGAGCGCCTCCACCTGCCGCGGCCCGAGCGGATGACGCCCCTGCGGTTCCTGCACGACCTCATTGAACGGGCTCGGGCACAGCGCAGGCACGTGGTCCTCCCGGAGGGGACAGACGTCCGGATTCTCAGGGCCGCCGAGATCCTGCACCGCCGCGACGTGTGTGACCTGACCCTTCTGGGCCCTGAGTCCGACGTCCGCGAGCTGGCAGCCGCCCGCGGCATCGACCTGTCCGGAATCAACATCGTTAACCCGGCGACGTCCGAACTCCGGCAAAGCTTCGCGGAAAAGTATGCGGAGCTGCGCGCGCACAAGGGTGTGGACGTGGCCAAGGCGCTCGAGATCATGCAGGACGGCAGCTACTTTGGCACCATGATGGTCCACCTGGGCGTGGTGGACGGCATGGTGTCCGGCGCCGCACACACCACGGCCCACACCATCCGGCCCGCGCTGGAGTTCGTGAAGACGCGCGACGGCGTAAACATCGTCTCCTCGGTGTTCCTGATGCTGATGCCGGACCGGGTGCTGGTTTATGGCGACTGTGCAGTGAACCCGGACCCCAACGTGGAGCAGCTGGCGGACATTGCCCTGGCCTCGGCCGAAACCGCTGCCCAGTTCGGTGTGGAGCCACGGGTGGCCATGCTGTCCTACTCCACCGGCGGCTCCGGCTCCGGCGAGGCGGTGGACGAGGTCCGGCAGGCCACCGCACTGGTGCGCGAACGCCGGCCCGACCTCGCCGTCGAAGGCCCCATCCAGTACGACGCCGCCGTGGACGCGTCCATTGCCGAGTCTAAAATGCCGGGCTCGTCCGTGGCCGGGCAGGCGACCGTCTTCATCTTCCCCGACCTCAACACCGGCAACAACACGTATAAGGCGGTGCAGCAGAGCTCGGGGGCAGTCGCCGTCGGGCCCGTTCTGCAGGGGCTGCGCAAACCGGTCAACGACCTCTCCCGCGGCTGCACCGTGGAGGACATCGTCAACACCGTGGCCATCACCGCCATCCAGGCGCAGGTGCCGGTGAGGGTCTCGGCCGGGGACTGAMARGIYVSATTPGSGKSLVALGLADTLHRHADRIGFFKPVVLGTDAADDPMVALMKSRFALDDDRCRGGLTFAEVRALLAEGNRAEIDARCVDIFAEMSRHCDVVIVEGTDLTGQDAAVEFDLNARLANNLAAPVVAVVGAKGRTVAEATAAVEVARKELSAGKCALLAIMVNRADPDDVEAIAAAVKRGASGRPVYVLPELEEIARPTTGEVAAALGVRQIAGRPDMERDVRDIKVAAMNVGNFLNVLDEGALVIVPGDRADVMVACLASSFSPEFPVPSALVLTGGLAPDANIYPLLAQAPFPVFASHEDTYTTARRVSEVRSEIWSGHRRKVASALGLWSRSVDEAELMERLHLPRPERMTPLRFLHDLIERARAQRRHVVLPEGTDVRILRAAEILHRRDVCDLTLLGPESDVRELAAARGIDLSGINIVNPATSELRQSFAEKYAELRAHKGVDVAKALEIMQDGSYFGTMMVHLGVVDGMVSGAAHTTAHTIRPALEFVKTRDGVNIVSSVFLMLMPDRVLVYGDCAVNPDPNVEQLADIALASAETAAQFGVEPRVAMLSYSTGGSGSGEAVDEVRQATALVRERRPDLAVEGPIQYDAAVDASIAESKMPGSSVAGQATVFIFPDLNTGNNTYKAVQQSSGAVAVGPVLQGLRKPVNDLSRGCTVEDIVNTVAITAIQAQVPVRVSAGDPGPT0001370_1364DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788NANA
D1-29_037302121hypothetical proteinATGACGCATGTGGAAAATTTGAGGCGGACAACCCGCGGGATGGGCCGGTCACTGCGAAGCCGGGCATTTCTCCTGACCTGGGTGCTGCCGCTGGCAGCCATCCTGGGGATCCTGGTCCTGTACGTCGCGAGCGAGCAGCGGATTTATTTCTACGACCCGCGCGGCTATCAGGAAGTGGCCATCAACACTTCCGATGCGCTCCGTAAAGGGCCGCACGCGCTCTACCTGTACCTGAAGGCGCAGTCGCTGAGCGAGTATCCCCCATACTGGGCCCTGCCGCTGGCTGTCCTGCCGCCCGAACTCCTCAACCTCCGCGTGCCTTATGAGGCTGCCATGGGTTTGTTCGGCCTGCTGCCGATGACCGTGCTGACCACCAAGATCGCCTGCCGCACTTTGGGGCTCCGGGTCTCACCCTGGATAGTCCTGGCGGCAGGCCTCAACCCGCTGACGTTCCTGGTATGCGTTCAGGGGGTCCCCGACCTGATCGGGATGTCCCTGATTCTTGCTGCGGTCTGGATTCTGATGTCACGCCCGCTGCATCGGTGGACCCTGTTCTGGGCACTGCTGATCGGAGCGGGCTCGTTGTTGGTCAAGAAGAACTTCCTCTTTGACCTGGCAGCCGTCGTTGCGTGTTACCTGCTCGCCTACACGGTGGCCGCGCTCCGCTACCGGCGCCCGCCCGAACGGTGGCGGAGCCTTCTGAAGGAGACGCTGAGCCTGCCTGTCCTTCTGGCTGGGGCCGCAGTGATTGGCGGCGCAACCGTCCTCACACCGGGTACCCTCACCTCCATCTTCTCGCGTGACAACTCCCTGTTCTACATCAGCTACCAGACCTCGCTGACGGACGCGCTCACCGCCAACCTCTCCTACGCCGGAGGCTTCGTGGCGCTGATCATTGCCATCGCAGCCGTGGTTGCGCTGGCGGTAGTCATTGCCCGGAGGACCTCGACGTCGGTGACGCGCAACGCCGTGTTCGTGGCTTCCTTCCTGGTGGTCTCCGAGGTGGTATGGGCCATCATCCAGAAGCAGTCCGGAATCATCCACCAGGTGCATGTGTGGCCGCTGCTCATGACTGTTGGTTTCGTGGGGCTGGTTCGTTTGCTGCCCCGGCCGCGCCCGCTGGCCCGCCAGATAGTGGCAGCGGGGCTTGCCACCGCCCTGTTTGCCTTTATGTTCGCGCAGACACCGGCCCTGGCCGGGATTCGCTTCGCAGCCTCGCAGCTGCCAGGCGGGCTGTACCCCAACGTGACGGAACCTTTCGTCCAGTCAAACCTGCCGAACATGGTGGAGGTCGCCTCCACCGTCCGGACGCTCTCCCAAACCAACGGGCCCGTGATGGTGCCCATTGCGTCCACCTCGTTCAACTCCAGCCTCCTGTACCAGACGTACGTCCAACAAGCCGGTGCCCCGATCCCGGATATCTACCAGCTGCCGCAGGTTGACCTGCGGGATGCCCAGCCCTGGTCCGGGCTCATCGGCGACGACGGACGCACCGTGCTGGTTTCCCAGCAATGGCTCCCCGACCTGCCTGAGGGCCACCACAACCTGCAGGCGGTCAACGAGTTCCTGGATTCACCCGCCGCGCAGCCGTGGATCAAGTCCTCCCAGCCCCTGGATGCCGGCGTTCCCGGGCAGCTGGCGGACCTCAGGGCAGTCCATCTGCTGATTCCGGAGTCCGATGCGCTCGCCTTCGCGGCCGCCATCAGGCCCTACCTGCCCGTCAACGCGGACCACGGACTGCAGGGAGCAGTGGCGCTCCTGACCGATCAGGGACTGCGCACGGAAGGACCCAGCGCGAAGACACCGACGGCCTGGACCATCACGGCGGGCTCCCCCGCTGCTCCCACCCGGCTGCTGGTTGATGCCACGGCCGCGCAGTCCATCAAGCTCAGCATGCCGAACGCCGGCTGCAGCGGTGTCCAGTATCAGTGGACCTCCCTCGAAACCCCCACCGGGAGCGCTCCGGCAGCCGCGTCAGATGCCGGCCAGGGAACGCTGCCTGCGGGTGCCGCCCAGACCGTCCCTGTCCCGGAGACCGGCACCGCCGCGTGGAGCCAGGTGCTGACACTCTCCACCGATAGCGCCGACCCGAACGCCTGCCAGGTGGTTGTCGGCGTCTAAMTHVENLRRTTRGMGRSLRSRAFLLTWVLPLAAILGILVLYVASEQRIYFYDPRGYQEVAINTSDALRKGPHALYLYLKAQSLSEYPPYWALPLAVLPPELLNLRVPYEAAMGLFGLLPMTVLTTKIACRTLGLRVSPWIVLAAGLNPLTFLVCVQGVPDLIGMSLILAAVWILMSRPLHRWTLFWALLIGAGSLLVKKNFLFDLAAVVACYLLAYTVAALRYRRPPERWRSLLKETLSLPVLLAGAAVIGGATVLTPGTLTSIFSRDNSLFYISYQTSLTDALTANLSYAGGFVALIIAIAAVVALAVVIARRTSTSVTRNAVFVASFLVVSEVVWAIIQKQSGIIHQVHVWPLLMTVGFVGLVRLLPRPRPLARQIVAAGLATALFAFMFAQTPALAGIRFAASQLPGGLYPNVTEPFVQSNLPNMVEVASTVRTLSQTNGPVMVPIASTSFNSSLLYQTYVQQAGAPIPDIYQLPQVDLRDAQPWSGLIGDDGRTVLVSQQWLPDLPEGHHNLQAVNEFLDSPAAQPWIKSSQPLDAGVPGQLADLRAVHLLIPESDALAFAAAIRPYLPVNADHGLQGAVALLTDQGLRTEGPSAKTPTAWTITAGSPAAPTRLLVDATAAQSIKLSMPNAGCSGVQYQWTSLETPTGSAPAAASDAGQGTLPAGAAQTVPVPETGTAAWSQVLTLSTDSADPNACQVVVGVNANANANANA
D1-29_03731474paaICOG2050Acyl-coenzyme A thioesterase PaaIATGGCTGAAGCAGCACTCTCCGGGGCCACACACCCCATCCTCGAAAACGACTATGCCTCCGAATGGATGGGTATAGAGGTCGTGGCCGTCAGCGACGGGCACGCCACCATCCGCATGAAGCTCCGCCAGGAAATGCTCAACGGCTTCGGCATGGCGCACGGCGGAATGATCTTCGCCTTCGCGGACACCGCCTTCGCCCTGGCCTGCAATCCCATCACCCCGGCCCCCGGCGAGGAAAACAGCATCACCGTTGCGGCCGGCGTCGACATCAATTTCCTCAAGCCCGCCTACCGTGGCCAGGTGATCACCGCCGTCGCCGACCGCCGCTCAAGTGCAGGACGCAGCGGACTGTACGACATCCAGATTTTCGCCGCCGACCCCGAAGCGCAGCCCGATTCACCCCTCAGCTCCGGCCAACCCGGTGAACTCATTGCCGAGTTCCGCGGACGCAGCCGGACCATCCCCAAGAAGTAGMAEAALSGATHPILENDYASEWMGIEVVAVSDGHATIRMKLRQEMLNGFGMAHGGMIFAFADTAFALACNPITPAPGEENSITVAAGVDINFLKPAYRGQVITAVADRRSSAGRSGLYDIQIFAADPEAQPDSPLSSGQPGELIAEFRGRSRTIPKKPGPT0006080_119DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006080-paaI-K02614NANA
D1-29_037321395paaKPhenylacetate-coenzyme A ligaseATGACGCTTCACGCCCCCGAAACCCCGGCTCATCACAACCCCGCCCCACAGGGAACCGCAGCGCAGGGAACAGCGCTGCCTGCAGATGCCGTCCTGGACCGCGAGGAAACCATGTCCCGGGACGAGCTGGAAGCCCTCCAGCTCAGCCGCCTGCAGCACACGGTGGCGTACGCGTATGACCGCGTGCCGTTGTACAAGCGCAAGTTCGACGAAGCCGGCATCCACCCCTCGGACCTCCGGGAACTCAGCGACCTGGGCAACTTCCCGTTCACCACCAAGGAGGACCTGCGCGCCGAATACCCGTTCGGCATGTTCGCCGTGCCGCAGCACGAGGTGGCCCGCGTCCATGCGAGCTCCGGTACCACCGGCCGGCCCACCGTTGTTGGCTACACCAAGCAGGACCTTGCCGACTGGGCAAAGCTCGTGGCCCGCTGCTTCCGCGCCTCCGGGATCCGCCCAGGCATGAAGGTCCACAACGCCTACGGCTACGGACTTTTCACCGGCGGCCTGGGCGCGCATGCGGGTGCCGAGGCGCTGGGCTGCACCGTCATCCCCATGTCAGGCGGCCAGACCGAACGCCAGATCCAGCTCATCCACGACTTCCAGCCGGACGCGATCCTGTGCACCCCCACCTACCTGCTGACCATCGCCGACGCCATGGCGCACATGGGAATCGACCCCACCTCCACATCGCTGAAATACGCGGTGCTGGGCGCCGAGCCGTGGACCCAGGAGATGCGGCACGAACTCGAAGTCACCATGAACATCAAGGCCTGCGACATCTATGGCCTGTCCGAGGTGATGGGTCCGGGCGTCGCCGGGGAGGCAGTGGAGACGCAGGACGGCAGCCACATCTGGGAGGACCACTTCCGGCCCGAAATCATTGACGCGTTCAACCCTGTGGCGGGCAAGGAAAACGTCCTGGGCGACGGCGAACACGGCGAGCTGGTCTTCACCTCGCTCACCAAGGAAGCGCTGCCCATCATCCGCTACCGCACCAAGGACCTCACCCGCCTGCTGCCCGGCACCGCCCGGCCGGCACACCGCAGGATGGGCCGGATCACGGGGCGCAGCGATGACATGATCATCCTCCGCGGCGTGAATCTCTTCCCGTCCCAGATCGAGGAAATCGCCCTGCGCATCGCCGAGCTCAGCCCGCATTTCCAGCTGGAACTGACCCGCCCGGAGGGCCAGCGGATGGACCAGCTAACCGTCCGCATCGAGCGGCGGGACAACGTGACACCTGAGCAGAGTTCGACGGCGGCGCGCACCTTGAAGGAGCAGATCAAGATCCACGTGGGTTCTTCATGCACGGTGGATGTGGTGGAGCCAGGTTCGCTGGAGCGGTCCAACGGCAAGCTGCGCCGGATTTACGACCTGCGCCCGAGGGCGTGAMTLHAPETPAHHNPAPQGTAAQGTALPADAVLDREETMSRDELEALQLSRLQHTVAYAYDRVPLYKRKFDEAGIHPSDLRELSDLGNFPFTTKEDLRAEYPFGMFAVPQHEVARVHASSGTTGRPTVVGYTKQDLADWAKLVARCFRASGIRPGMKVHNAYGYGLFTGGLGAHAGAEALGCTVIPMSGGQTERQIQLIHDFQPDAILCTPTYLLTIADAMAHMGIDPTSTSLKYAVLGAEPWTQEMRHELEVTMNIKACDIYGLSEVMGPGVAGEAVETQDGSHIWEDHFRPEIIDAFNPVAGKENVLGDGEHGELVFTSLTKEALPIIRYRTKDLTRLLPGTARPAHRRMGRITGRSDDMIILRGVNLFPSQIEEIALRIAELSPHFQLELTRPEGQRMDQLTVRIERRDNVTPEQSSTAARTLKEQIKIHVGSSCTVDVVEPGSLERSNGKLRRIYDLRPRAPGPT0026240_673DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR_VIRULENCE_REGULATORY_SYSTEM,PGPT0026240-paaK-K01912NANA
D1-29_03733624fadRFatty acid metabolism regulator proteinATGTCCAGCACCAGCGAAATCTCCAGCACAACAGCACCTCTGAAGCGCGGCCGCCCCGGTTACGACCAGCAGTCGGTGCTGCTGATCGCGGTGGACGTTTTCAACCGGCATGGCTATGACGCCACGTCCATGGGCATCCTCGCCGAGAACCTGGGCATCTCCAAGTCAGCGATCTACCATCACGTCCCGTCAAAGGGCGATCTCCTGAAGCTGGCCCTGGAGCATGCACTGGGCGGCCTGGAAGCCATCCTGGACCAGCCGGAGGCTACCTCGGGCGCGGCTGACGCACGGCTGGAGTACGTGCTGCGGCAGACCGTGGCCGTGCTGGTGGAACGGCTCCCGTTCGTTACGCTGCTGCTCCGGCTCCGGGGCAACACCGAAATTGAACGCGACGCGCTGGAACGGCGGCGCTCATTTGACCACAAGGTGGCCGGGCTGATTTCCGCCGCCCGCGACGAGGGGTCCCTGCGCCAGGACATCGACCCCCGTACCGTCACGCGGCTCCTGTTCGGCATGATCAACTCGATAGTGGAATGGTACAAACCGGGCGGTTCACTCTCCCCCGAGAGACTGGCCGACGACGTCATCACCATGGCGTTCGACGGTCTCCACTCACAGGCCTAAMSSTSEISSTTAPLKRGRPGYDQQSVLLIAVDVFNRHGYDATSMGILAENLGISKSAIYHHVPSKGDLLKLALEHALGGLEAILDQPEATSGAADARLEYVLRQTVAVLVERLPFVTLLLRLRGNTEIERDALERRRSFDHKVAGLISAARDEGSLRQDIDPRTVTRLLFGMINSIVEWYKPGGSLSPERLADDVITMAFDGLHSQANANANANANA
D1-29_037341110hypothetical proteinATGAGCCCCAGCAACGGCCAGGAACCGTGCCGCGCAAGCCGCTTCCGGACAACCCTTGGGGCCGTGCTGCTGGCCGCCGCGGTGTCCGTCTCCGGCTGCACGGACTCACCCACTCCCCCCGGTCCCACCGTATCGTCACCCACAGCGCCTCCTGCCGGCACCATGCAAACCCCCCGGCCAGGGCCCGGCCCTGATAATTCCGCCCCTGCCGCGGCCGGCGACATCCCGCAGCTGGTGGAGAACCTGGCACCATCCGTGGTGACCATCTTTACCGAGGGCGGACTGGGCAGCGGCGTGGTGTACTCCGAGGACGGCCTCATCCTCACCAACGAACACGTCATCCGGGGTGAAACCACCGTTCAAGTTGCCTTCGCTGACGGCCAGAGGGTGGAAGGGACAGTGCGGGCAACCGACCCCGTCACAGACCTCGCCCTGGTCCAGGTGAACCGCACCGGGCTCCCCAAGCCGACCTACCAGACAACGCTGCCCAAGGTAGGGGAAGGTGCCATCGTGCTGGGCTCCCCGCTGGGCTTTGAGAACACGGCCACCGCCGGCATCATTTCCGGCCTGCACCGGGCCATCCCCGGCTCCGCCTCCAACAGCCTGTCCCTGGTGGACCTCATCCAGACAGACGCTCCCATCAGCCCCGGCAACTCCGGGGGCGCGGTGCTCAACATGCGCGGGGAGGTGATCGGCATCAGCGAGGCGTACATCCCGCCACAGGCAGGGGCTGTTTCGCTGGGCTTCGCCATTCCCGCGGCCACGGCCGTGGAAGTGGCCGAAGAGCTGTTGGCAGACGGCACGGCGGAGCATGCCTACCTCGGCCTGACACCGGGCGAGCTGACACCACAGATCGCCGGGCAGTTGGGGATCGAGGCCTACAGCGGCGTCCTGGCATTGTCTGTTGACCAGGACAGCCCGGCGGGTAAGGCAGGTATCCGCCCCGGTGACGTCCTGGAATCCATGGAGGCCGTGGACCTGACCACTCCCGAACGGCTCCTGTCCGAGCTCCGCAAACGCAACCCGGGAGATACCGTTGGGTTCAAGGTCAAGCGGGACGACCAGAGCGTGGACATCAAGGTGGAACTCACCGAAAGGCCTGCGGGATAAMSPSNGQEPCRASRFRTTLGAVLLAAAVSVSGCTDSPTPPGPTVSSPTAPPAGTMQTPRPGPGPDNSAPAAAGDIPQLVENLAPSVVTIFTEGGLGSGVVYSEDGLILTNEHVIRGETTVQVAFADGQRVEGTVRATDPVTDLALVQVNRTGLPKPTYQTTLPKVGEGAIVLGSPLGFENTATAGIISGLHRAIPGSASNSLSLVDLIQTDAPISPGNSGGAVLNMRGEVIGISEAYIPPQAGAVSLGFAIPAATAVEVAEELLADGTAEHAYLGLTPGELTPQIAGQLGIEAYSGVLALSVDQDSPAGKAGIRPGDVLESMEAVDLTTPERLLSELRKRNPGDTVGFKVKRDDQSVDIKVELTERPAGPGPT0014286_981DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS_SIGNALLING,PGPT0014286-degQ|hhoA-K04772NANA
D1-29_03735294hypothetical proteinATGACCCACCCGAAGGATGAAGCAGACCAGGGATTCATCGTCCCGGACCCGTCAACTGTCCGGGAGGACGTCCCCGGCGACGCAGGCGATGAAGGCAACGTGATCCGCTTCAGCGAAGAACAGGCGCTGATCGAGGAACAGGCAAAAGGCATCCGCCCGGACACGTACAGCGTTCCGTCCGGCGGGCCCACCATGGAGGAGGCCCGCGGCAACATGGACCTTTCGGACCAAACCGGGACGGAACCGGCTGACGACAGCAGTGATGACGGACTGCACGGAGGCGCCCAAAGCTGAMTHPKDEADQGFIVPDPSTVREDVPGDAGDEGNVIRFSEEQALIEEQAKGIRPDTYSVPSGGPTMEEARGNMDLSDQTGTEPADDSSDDGLHGGAQSNANANANANA
D1-29_03736408hypothetical proteinATGACCCTAGCCCTGAACACAGCCACAACCATCCTGCCAGTGGATGATCCAGCCCGCGCCCGGAGTTTCTACACAGAAAAACTCGGGCTACCGCACCGCGGCAGGACGGATGATGGCAGCGAACTGCTCGGCAATCCCGGCGGCCCCATGCTGCAGCTGATGCCGGTCCCGGACGGCAGGCACTCCGAGCACACCGCCCTGACCTTCGAAGTGGAGGACATCGAGCGGACAGTCCGGGACATGGAAGCCAAGGGCGTCCGGTTCCAGGATTACGACCTGCCCCATCTCAGGACAGAGAACCACATCTGCACTACCGACTCGGAGAAGTGCGCGTGGTTCATGGACACAGAACACAACATCCTGTGCATCCACGAAACCCTGGGTAAGCAGGCCGAGTACCAGCTCTGAMTLALNTATTILPVDDPARARSFYTEKLGLPHRGRTDDGSELLGNPGGPMLQLMPVPDGRHSEHTALTFEVEDIERTVRDMEAKGVRFQDYDLPHLRTENHICTTDSEKCAWFMDTEHNILCIHETLGKQAEYQLNANANANANA
D1-29_037372109paaZ_3COG2030Bifunctional protein PaaZATGACCACCACTGCCACAGCCGAAGCCACAGTCGACACCGTAGAGACAGTCCCCAGTTTTGTGCAGGATGCCTGGTGGACGCCCGACGCCGGCTCCACGGCCAACGCTGTCCCTGTGCGAGATGCAAGCACGGGCGAAATCCTGGCCAAGGTCAGCACGGACGGCCTGGACCTGGCCGCCGTGGTTGAATACGGCCGCACCACGGGCCAGGCGGAACTGGGCCAGTTCACCTTCCACCAGCGCGCCCTCAAGCTCAAGGAGCTGGCGCAGTATCTTCATGCGCGGCGTGAACACTTCTACGCCTTCTCGGCCCAGACCGGTGCCACCAAGGTGGACAACCTGATCGACATCGACGGCGGCATCGGCGTCCTGTTCACCTTCGGGTCCAAGGGTCGGCGTGAACTGCCCAACTCGCAGGTGGTGGTGGACGGGCCGCTGGAGGTGCTGTCCAAGGACGGCTCCTTCGCCGGTGAGCACATCTACACCCGCATCCCGGGTGTGGCCGTGCAGATCAACGCCTTCAACTTCCCGGTCTGGGGCATGCTCGAAAAGTTCGCACCTGCTTTCATCGCCGGCGTTCCCACCATCGTCAAACCGGCCACCCCCACCGGATACGTGGCTGCCGCCGTGGTCAAGGCGATCGTCGAATCCAACATCCTGCCGAAGGGCTCGCTGCAGCTCATTTCCGGCTCGGTCCGCGGGCTCCTGGACGTGCTGGACTACCGCGACCTGGTGGCCTTCACAGGCTCGGCCTCCACCGCCCTGTCCCTGAAATCGCACCCGAACGTGGTCCAGGGCGGCGTCCGCTTCACCTCCGAAACGGACTCCCTGAACGCCGCCATCCTGGGCCCGGACGCAGTGGAGGGCACGCCGGAGTTCGACGCGTTCGTCAAGTCAGTCGTGACCGAAATGACGGCCAAGGCCGGGCAGAAGTGCACTGCCATCCGCCGCGCCATCGTGCCGCAGGAGCTGGTTCCAGCGGTGTCCGCGGCCATCGGCCGGCGCCTCTCCGAACGTGTTGTCCTGGGCGACCCCCGGGCTGACGGCGTCACCATGGGCGCCCTCGCCTCGGTCGAACAGCTCGCGGACGTCCGTGCCGCCGTCCAGTCAATGCTCGACGCCGGCGGTGAGCTTGCGTACGGAACCCTTGATTCGCCGTCGGTCACCACTGCCAACGGTGATACCGGGGTTGTGGAGGGCGGCGCCTTTATGGCGCCGGTCCTGCTCAACTGGCCGGACTCCGAGGCGGAAGAAGTCCACTCGCTGGAGGCGTTCGGCCCGGTTTCGTCGGTCATTGGGTACAAGGACATTCCCGACGCCGTCCGCCTCGCCGCCCGCGGCAGCGGCTCGCTCGTGGCCTCTGTATGCACCAACGATCCTAAGGTGGCCCAGGAACTGGTGATGGGCATCGCGGCCCACCACGGCCGGGTCCTCATGCTCAACCGTGAGGACGCCCGCAGCTCCACCGGCCACGGCTCACCGGTCCCGCACCTGGTCCACGGTGGCCCCGGCCGGGCAGGGGGCGGCGAGGAACTGGGCGGCATCCGCTCGGTCATGCACCACATGCAGCGCACAGCAATCCAGGGCTCACCCAACATGCTCACCGCCGTCACGGGTGTCTGGCACGCCGGGGCCGACCGGAATTTCACGGTTGAGACGGAAGGGACTCACCCGTTCCGGAAGTCGCTGGAAACCCTGCTCATTGGTGATGCCATCCGCTCGGATCTGCGCCAGGTCACCCTGGAGGACATCACTGCCTTCGCCAACTCCACCGGCGACACCTTCTACGCCCACACCAACCAGGAGGCCGCGGAAGCCAACCCGTTCTTCCCCGGCATTGTGGCGCACGGCTACCTGTTGCTGGCCTGGGGTGCCGGACTGTTCGTGGAGCCGGCGCCGGGTCCTGTCCTGGCCAACTATGGGCTGGAGAACCTGCGCTTCATCACGCCTGTGGCTGCGGGGGATTCCATCCGGGTGACCCTGACGGCCAAGAAGATCACACCCCGTGAGACCGACGAGTACGGCGAGGTGGCCTGGGATGCGGTGCTCACCAACCAGAACGACGAGATCGTCGCAACGTACGATGTCCTGACCCTCGTGGAGAAGTAAMTTTATAEATVDTVETVPSFVQDAWWTPDAGSTANAVPVRDASTGEILAKVSTDGLDLAAVVEYGRTTGQAELGQFTFHQRALKLKELAQYLHARREHFYAFSAQTGATKVDNLIDIDGGIGVLFTFGSKGRRELPNSQVVVDGPLEVLSKDGSFAGEHIYTRIPGVAVQINAFNFPVWGMLEKFAPAFIAGVPTIVKPATPTGYVAAAVVKAIVESNILPKGSLQLISGSVRGLLDVLDYRDLVAFTGSASTALSLKSHPNVVQGGVRFTSETDSLNAAILGPDAVEGTPEFDAFVKSVVTEMTAKAGQKCTAIRRAIVPQELVPAVSAAIGRRLSERVVLGDPRADGVTMGALASVEQLADVRAAVQSMLDAGGELAYGTLDSPSVTTANGDTGVVEGGAFMAPVLLNWPDSEAEEVHSLEAFGPVSSVIGYKDIPDAVRLAARGSGSLVASVCTNDPKVAQELVMGIAAHHGRVLMLNREDARSSTGHGSPVPHLVHGGPGRAGGGEELGGIRSVMHHMQRTAIQGSPNMLTAVTGVWHAGADRNFTVETEGTHPFRKSLETLLIGDAIRSDLRQVTLEDITAFANSTGDTFYAHTNQEAAEANPFFPGIVAHGYLLLAWGAGLFVEPAPGPVLANYGLENLRFITPVAAGDSIRVTLTAKKITPRETDEYGEVAWDAVLTNQNDEIVATYDVLTLVEKPGPT0006100_105DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006100-paaZ-K02618NANA
D1-29_03738444COG2050Putative esteraseATGACCGCCGAGCCCACAGATACCGCCCCCTCCCAGAATTCTGCCGACGCCGACCTGTGGAAAATCACCCTCGGCGAACTGGACGAAAAAATGGGCGTCAAGATCGTGGAGGAGTCCATCCAGCGCGTGGTGGCCACCATGCCGGTGGAGGGCAACAGACAGTCGTTCGGGCTGTTGCATGGCGGTGCATCCCTGGCGGTGGGAGAGGCCGTGGGTTCGTGGGCTGCCGTCATCCACGCGGGCACGCTGGGCAAGACCGCCGTGGGCGTGGACGTTTCGGCAACCCATCATCGGTCCGCGAGGGAAGGCACGATCACCATCACGGCCACACCGATCTACCTTGGCGGGACCCTCACCACGCACGAGGTCCTGATCACCAACGAGGCCGGCGAGCGTCTCTGCACGCTTCGCATCACCAACCTGCTCCTCGACCGGAAGGTCTAGMTAEPTDTAPSQNSADADLWKITLGELDEKMGVKIVEESIQRVVATMPVEGNRQSFGLLHGGASLAVGEAVGSWAAVIHAGTLGKTAVGVDVSATHHRSAREGTITITATPIYLGGTLTTHEVLITNEAGERLCTLRITNLLLDRKVPGPT0001845_1610DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222NANA
D1-29_037392037hypothetical proteinATGGCTGCGACGTTCGGGGCGGTTCCCGCGGTCGCCACTACTTTGCCGCCTGATCCGGTGCCGGCAGCTTCGGCTCCCGCGAGGACTGAGAGCCCGACGGCGGCAGGCACGGGAATCAGCGAGGACGGCCTCGCCGAGGCCGTCCTGCGCGACCTTGGCCTCAGTCCTGAGCAGTTCAACGCTGCCGGAGAGCTGGGCAAGCAGGCGGCCCAAGCGGCTTCGGCACTCCGGGACGTCCCCGGGTACGTTGGAATCCGGCTGCAGGACACCCGGATCCTGGTTACAGGCCAGGGCCCGGAGCTGGAGGCGAAGGTGGCCGGGCTGTCCGGAAGCATCCCTGCCCTGCTGCTCGAGACGCCTGCCGCAGGGGAGCCGGCCACGGCACACCAGGCCACCGCAGACCAGGCCACCCCAAACCAGACTGCCGCTTCCCGTGAGAGTGAGGCCGCCGCTCCTGTCCGCGGGAGTGAGCTTGCCGCCAGCACCCAGCAGCTGTTCCAGGCCTATGTCAGTGAGGTGGGGCCGGAGGACCTCCAAGCTGTGGCCTACTCCCGCGGCAGGTTTGTCATCCGTACAGGGGGAGCCACCGCCTCCGAATCTGTTGAGCAGGAATTACAGGCCGCCAGGGGGCCTGCTGCCCAACGCGGCGGGACGAAGATGTCCGCGGAGGCATTCGTGGCCAGGTATGCGAATGTGGAGCTCGACGCCGGTGCGGAGCTGGTTCCCGAGGCGGCGGAGGTTCTGGGCGGCCAGGGCTACTTCGCGGACAACGGGCAGATATGCTCCACCGGGTTTTCGGCTTTTGACCCCGCCGGCCTTCCAGCGGTCCTCACTGCCGGGCACTGCTCGGACGACGGCTCCGTAGACAAAGCCACCCTGGAATACCAGGCGAATCCCATCGGCCTGCTGGGGACCTTCGGATTCAACCAGTTCGGCGGTCCCGGCAACAGCGCCATAACCGGGATTGACGGCAACACTGCCGATCCGGACAAGCCAGGGAATGTGGGAACGGACATTGCGGTCATCGAGTCCATCCGCCCTGGCCTGGACCCCGCACCCGCCGCCAGTACGTGGGGACATTCTTCCGAACCCGGACCGGACGTGAAAATCATCGGCACGGCGGCGCCTGTGGAAGGCCAGCCGGTCTGCCGGTCGGGACGGTCATCGGCCTGGTCCTGCGGAACCATCGACGAAGTGGGCATCTATGTGGTGCCCGGGCCGGGATTCGCTGCGGACCCTACGGACCTTCGGGCCTTCAACGGCTTCCTCTCTTTTGGTGTCCAGTCCAGCGGCGGCGACTCCGGCGGACCCTGGGTCAGCGGCAACTACGCCGTAGGCACGCACAGCGCCGGAGACGTTCCGGACGAGTTCGGCAACGTGCAGAACTTCGCCGTGGCGGCCACCCTGGATGACGCCCTGGCCGTGCTGCCCGGCTACCAGCTGGAGCTTTTCCTCAACAAGCCGCTGGTGGTTTCCCCCGCGCCCGGTGGAACAGTCAAGCCTGGCCAGACAGTGACCGGGCAGGTATCCGCGGCCCCTGCCTCCGCTGTCGCAGCAGGGTCCACTGTCAGGATCACGCTCCCCGGACAAGCCCCGTTCGACGTCCCGCTGGACGCGGCCGGTCACTGGACTTTCACCGCACCTGACACGGCCGGCCCCTTGCGCTTCACAGCAGAGACAAGGAACGGCTACAGCGCCTCGGGAGCCGGCAGCTTTGAGTTCGCGGCCCCCACACCGGTCGCTCCCACACCGGTCGCTCCCGCGCCGGCCCCACCGCCGGCCGCTGCCCCCGGTCCGGCCCCCGCGCCGGCACCAAGTCCGGCCAAGCCAACGGCCTCCGCGTCTCCACCTCCCAACGATGCCGTTCTCCCCGCAGGTGACCGCACCGCCGTCGGAGGCTACGCAAACCTGGCTGATACCGGGGCGGATGGAATCATCGCCGCAGCAAGCGTCGCTGCTGGTGCCATCGCCGTCGGCAGCCTTTTCCTTGTCCTCGGCATGCGGCGAAAGAAGCAGCGCCCTCCCGCCACCCGTTGAMAATFGAVPAVATTLPPDPVPAASAPARTESPTAAGTGISEDGLAEAVLRDLGLSPEQFNAAGELGKQAAQAASALRDVPGYVGIRLQDTRILVTGQGPELEAKVAGLSGSIPALLLETPAAGEPATAHQATADQATPNQTAASRESEAAAPVRGSELAASTQQLFQAYVSEVGPEDLQAVAYSRGRFVIRTGGATASESVEQELQAARGPAAQRGGTKMSAEAFVARYANVELDAGAELVPEAAEVLGGQGYFADNGQICSTGFSAFDPAGLPAVLTAGHCSDDGSVDKATLEYQANPIGLLGTFGFNQFGGPGNSAITGIDGNTADPDKPGNVGTDIAVIESIRPGLDPAPAASTWGHSSEPGPDVKIIGTAAPVEGQPVCRSGRSSAWSCGTIDEVGIYVVPGPGFAADPTDLRAFNGFLSFGVQSSGGDSGGPWVSGNYAVGTHSAGDVPDEFGNVQNFAVAATLDDALAVLPGYQLELFLNKPLVVSPAPGGTVKPGQTVTGQVSAAPASAVAAGSTVRITLPGQAPFDVPLDAAGHWTFTAPDTAGPLRFTAETRNGYSASGAGSFEFAAPTPVAPTPVAPAPAPPPAAAPGPAPAPAPSPAKPTASASPPPNDAVLPAGDRTAVGGYANLADTGADGIIAAASVAAGAIAVGSLFLVLGMRRKKQRPPATRNANANANANA
D1-29_03740720hypothetical proteinATGGAGAAACCTGGCGGGGCGGTGGACTGGGACGGCGCCGTGAATGCCTGGCACGTGGCGGGCAGCGTTTACCGGATGGGCCGCCGCGAATGGCTCACGGAGGCGGGTTGGCGGCAGGCGTACGACGAAGGCGTCCGCACGGTCATTGACCTCCGGAACTCCCATGAAGCGCGCCGCCGGGACACCGACCCCGTGATAGCTGAAACTGCCTGGTCCGGACTCGCCGTGGTGTCCACCCCCACTGAGGATCCGGACGATCCGCGGCTGACTTCAGTGTGCGGACCTTACATCAAGGATCCTGCGCACTACCTCCACAACGTTCGCCTCTATCCGGAGAAGTTTGTGGCCATCTTCCGCGCCATTGCCACATCCGCGCCAGCGGGCGGTGTGGTGATCCATTGTGCTGCCGGGCGGGACCGCAGCGGAATGGTGGCGGCCATGCTGCAGGATCTGGCCGGGGACTCGGACAAGCAGATCGCCGGCGGCTACGAGCAGGCTGCGCGGGGCATCAATGAGCGCTACCGCACGCACGGGCCGCCGCATGACAGGGAGCGCTATATCGAGGAGGCCGAGCTGGCGCCGATACTCTCGGAGCGTGGCCGAGCGGTTGTGGACGTTGTGCGTACCCTCGAGACCTCGTCCTTCCTGCTCCGACACGGCCTGACCCCGGCTGAACTGGCCGCGGTCCGGTCTGTGTTGGGCAGCCGGGTGGCGCTGTGAMEKPGGAVDWDGAVNAWHVAGSVYRMGRREWLTEAGWRQAYDEGVRTVIDLRNSHEARRRDTDPVIAETAWSGLAVVSTPTEDPDDPRLTSVCGPYIKDPAHYLHNVRLYPEKFVAIFRAIATSAPAGGVVIHCAAGRDRSGMVAAMLQDLAGDSDKQIAGGYEQAARGINERYRTHGPPHDRERYIEEAELAPILSERGRAVVDVVRTLETSSFLLRHGLTPAELAAVRSVLGSRVALPGPT0014530_3262DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
D1-29_03741900LipaseATGGCACACTCAACAGGACGACGGCGGCTCCCGGCTTTTGCCGCTGGCCTCGCCACCGCGGCCATGGCACTAGGCTTCACGGCCATTCCTGCGGGCGCAGCGCCGCCGGTTCCGGATGTCGACCTCGTGGCGGTCGGCGACTCTTACACGGCCGGTGTTGGGGCCGGGGACTACACACGGCCTTTCCCTTGCCCCCAGACAAGCACCGGCTATGTAGATCTGCTGAGAGCTCTGCCCATTATTGACGACGTTGCCAGCAATGAAGCGTGCGGTGGAGCGCTCCTGGTCGACAGTCCATCCGTCGTACCCAGCGTAATGGAGCAGATCGCGGCCCTCGCCGCCGCCGAAGGACTGTCCGGCCGGACCGAACTGGTCACATTGACTGCGGGGGCGAATGACCTTGACTTCACCACACCCTTGGCTATCTGCGCAACGTCCACGCTCTTTGACTGCGCCCAGGCTGTACAAGCAGCTCGCACCAAGTTTCCTGTCATTCAAGCCAACCTTGTGGAAGCGCTGATCGCAATCCATAAGGCCGCCCCGCGCGCCAAAATTGTGGTGTTTGGTTACCCGCTCCTTTTTGATCCCGAAGGCGGGCTGACGCTGCTGCCCCCAGAGGCACAAATGCTGGTCAACGCAGGCACGGCAGCCCTTAACGAGGCGATCTCCGACGCTGTGGCTATCGCCAACGCTGAGGCAAAGGCTAACGCTGTGTACGTCGACGTCACGGAGGAGTTCGCCGATCACGCCATTAACTCCCTCACCGCAGAATCGTGGATCAACTTCAATCCTCAGGTCCCATTTGCCCCGGAGAATTTCCACCCCAACCCGGCCGGACACGACGCTTACGCCGACGCCCTTGTCGCTGCGGTAAACCTCCAGGCGCTCGCCCGGCGTTAAMAHSTGRRRLPAFAAGLATAAMALGFTAIPAGAAPPVPDVDLVAVGDSYTAGVGAGDYTRPFPCPQTSTGYVDLLRALPIIDDVASNEACGGALLVDSPSVVPSVMEQIAALAAAEGLSGRTELVTLTAGANDLDFTTPLAICATSTLFDCAQAVQAARTKFPVIQANLVEALIAIHKAAPRAKIVVFGYPLLFDPEGGLTLLPPEAQMLVNAGTAALNEAISDAVAIANAEAKANAVYVDVTEEFADHAINSLTAESWINFNPQVPFAPENFHPNPAGHDAYADALVAAVNLQALARRNANANANANA
D1-29_03742609hypothetical proteinGTGACCTCCATCGAACCCATCACCTTGACCGGGCAGTACGTCATCCTGGAACCCCTCAACCACGCGCATCACGACGGCCTCGTGGCGGCAGCGCGGGACGGCGAGCTCTGGAAGCTCTGGTACACCTCGGTCCCCACGCCCGACGGGATGGCGGCGGAGATCAGCCGGCGCCTCGGGCTTCAGGACCAGGGATCCATGTTGCCGTTCACCACGCGGCTGATCGATCCTGCTACGGGCGGCCCTGGCAGGATCATCGGCATGACCACCTACATGAACATCGACGCCGGTACGCCCCGGGTGGAGATCGGCTCCACCTGGAACGCGGCGTCGGTCCAGGGCACCGGTACCAACCCGGACTCCAAGCTGCTGCTCCTGCGCCACGCCTTCGAGGTGCTGGGCTGCCCAGCGGTTGAATTCCGGACGCACTGGCTCAACCACCAGTCCCGGGACGCCATTGCCCGGCTGGGCGCAAAGCAGGACGGTGTGCTGCGCAACCATTCGCGGACCACGGACGGCGTGCTCCGGGACACCGTGGTGTTTTCAATCCTGGAGCACGAGTGGCCCATGGTCCGCGCCGGGTTGGAGTTCCGGCTCGCCAGGCAGCGGTAGMTSIEPITLTGQYVILEPLNHAHHDGLVAAARDGELWKLWYTSVPTPDGMAAEISRRLGLQDQGSMLPFTTRLIDPATGGPGRIIGMTTYMNIDAGTPRVEIGSTWNAASVQGTGTNPDSKLLLLRHAFEVLGCPAVEFRTHWLNHQSRDAIARLGAKQDGVLRNHSRTTDGVLRDTVVFSILEHEWPMVRAGLEFRLARQRPGPT0017630_53DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-29_03743243hypothetical proteinATGACAGGGCCAAATCCGGACCCACTGGAAAACAACATCTCCGGCCTGGAGCCCGGCGGCGGCGTTCCCCCGGGAGAAACCCCGCCCGGCGAGTCTTCCACCGCCGGCCCTCAGGGCCACGACGAACACGGCACCCGGAAAGTCACGCAGTACTTTTGGATCGGCGTCATCGCAGTGGTGGTCCTGCTGGCCCTGCTGTTTTTCGTCGGCTACCTTGTGGGGCTGCTCCCCCGCCTGACGTGAMTGPNPDPLENNISGLEPGGGVPPGETPPGESSTAGPQGHDEHGTRKVTQYFWIGVIAVVVLLALLFFVGYLVGLLPRLTNANANANANA
D1-29_03744873hbdCOG12503-hydroxybutyryl-CoA dehydrogenaseATGGCCAACTCTGAACTTGCCCCAGGTTTACCCGCGTCCGTGGGCGTGCTGGGCGGCGGCCGCATGGGCGCCGGCATCGCGCACGCCTTCCTGATCAAGGGTGCCAACGTGGTGGTGGTGGAGCGCGACGAAGAGTCAGCCCAGGCCGCACAGGAGAGGGTGGAAGCGGCGGCTGCCGCAAGCATCGAACGCGGAACCACGGACGGCAACCTGGAGGAGATGGCTTCCCGGCTTGCGGTCACGGTGGACTATGACGATTTCGCTGACCGCCAGTTAGTGGTGGAGGCCGTACCTGAGGACTGGGACCTTAAGGTCACCTCGCTGCGGGGGATTGAGGAGCGGCTCGGTGAAGATGCCTACCTCGCTTCCAACACGTCCTCGCTGTCCGTCAACGGCCTGGCCGGCGAGCTGAAGCGGCCGCGGAATTTCCTCGGCCTGCACTTCTTCAACCCGGTGCCCGCCTCCACCCTGATTGAGGTGGTGCTGGGCGAGCAGACGTCCCCGGACTTGGCGGCTGCGGCAAAAAAGTGGGTTGAGGCACTCGGCAAGACCGCCGTCGTCGTCAATGACGCCCCGGGGTTCGCGTCCTCCCGTCTGGGCGTGGCCATCGCGCTGGAGGCCATGCGCATGGTGGAGGAGGGGGTGGCGTCCGCTGAGGACATCGACGCTGCGATGGTCCTGGGCTACAAGCACCCCACCGGCCCGCTGAGGACCACGGATATTGTGGGCCTGGATGTGCGCCTGGGCATCGCCGAGTACCTGCACTCCACCCTCGGTGAGCGGTTTGCCCCGCCGCAGATTCTCCGGGACAAGGTGGCCAGGGGCGAACTGGGCCGCAAGAGCGGCAAGGGCTTCTTCGACTGGACCGGGTAGMANSELAPGLPASVGVLGGGRMGAGIAHAFLIKGANVVVVERDEESAQAAQERVEAAAAASIERGTTDGNLEEMASRLAVTVDYDDFADRQLVVEAVPEDWDLKVTSLRGIEERLGEDAYLASNTSSLSVNGLAGELKRPRNFLGLHFFNPVPASTLIEVVLGEQTSPDLAAAAKKWVEALGKTAVVVNDAPGFASSRLGVAIALEAMRMVEEGVASAEDIDAAMVLGYKHPTGPLRTTDIVGLDVRLGIAEYLHSTLGERFAPPQILRDKVARGELGRKSGKGFFDWTGPGPT0006075_3619DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006075-paaH|hbd|fadB|mmgB-K00074NANA
D1-29_03745813crt_2COG1024Short-chain-enoyl-CoA hydrataseATGGCGGACGCGCGGGACCTCGCGAATGAACACTTCAGCACCCTGCTGGTCGAGGAGCGGGATGACCGGGTGGTGGTGCTGCTCAACCGCCCGGACGTCAGGAACGCCATCGACCAGCAGATGGTGGATGAGCTGCACGTGGTCTGCGCGGCGCTGGAGCAGAATCCCCGGGTGCTCATCATCGCCGGCGTGGACGGTGTATTTGCCTCGGGCGCGGACATCTCCCAGCTGCGCGAACGGCGCCGGGACGACGCCCTCCAGGGCATCAACTCCACGCTTTTTGTGCGGATCGCCAAGCTTCCCATGCCTGTCATCGCCGCGCTTGACGGCTACTGCCTGGGCGGCGGCGCCGAGCTCGCCTACGCTGCTGATTTCCGGATCGGCACCCCCAGCGTCCGGATCGGCAACCCGGAAACGGGACTGGGGATCCTGGCCGCGGCAGGTGCAAGCTGGCGGCTCAGGGAACTGGTGGGGGAGCCGGTGGCCAAGCAGATCCTGTTGGCTGGGCTGGTGCTCCGTGCCGAGGAGGCGCTGGCGCTTCACCTGATCACGGAGATCCACGAGGCGCCCCTCCTGATGGAGGCTGCGCACAACCTTGCGGACAGGATTGGCCGCCAGGATCCGCTCGCGGTGCGCATCACCAAGACAGTGTTCCATGCACCGGCCGAGGCGCACCCGCTGGTGGATCAGCTGGCGCAGGGAATCCTGTTTGAATCCCCGGCGAAGTTTGACCGGATGCAGGCTTTCCTGGACCGGAAGGCTGACAAGAAAGCCCAGGAAGCCGCGAACCAGGCTGACGGAAAGAAGAACTGAMADARDLANEHFSTLLVEERDDRVVVLLNRPDVRNAIDQQMVDELHVVCAALEQNPRVLIIAGVDGVFASGADISQLRERRRDDALQGINSTLFVRIAKLPMPVIAALDGYCLGGGAELAYAADFRIGTPSVRIGNPETGLGILAAAGASWRLRELVGEPVAKQILLAGLVLRAEEALALHLITEIHEAPLLMEAAHNLADRIGRQDPLAVRITKTVFHAPAEAHPLVDQLAQGILFESPAKFDRMQAFLDRKADKKAQEAANQADGKKNNANANANANA
D1-29_037461230paaJ_3COG01833-oxoadipyl-CoA/3-oxo-5,6-dehydrosuberyl-CoA thiolaseATGGCTGCAGGTACCGCAGGACCACAGGCTTTTCTTGTTGGCGGTGTCCGGACACCGGTGGGCCGTTACGGGGGCGCCCTCTCGTCGGTCCGCCCCGATGACCTCGCCGCCCTGGTCATCCGGGAGGCAGTGGCGCGCGCCGGGCTCGATCCGGACAGCATCGACGAGGTCATCCTCGGCAACGCCAACGGGGCCGGGGAGGAAAACCGGAACGTGGCCCGGATGGCCACGCTCCTGGCAGGGTTGCCCGTCCATATTCCCGGCATCACGGTGAACAGGCTGTGCGCGTCCGGCCTCAGCGCCATTATTCAGGCCAGCCAGATGATCAAAGCAGGCGCCGCGGACGTTGTCATCGCAGGGGGCGTCGAGTCCATGAGCCGTGCGCCCTGGGTGCAGGAAAAGCCAACAAGCGCCTTCGCCAAGCCGGGCCAGATCTTCGACACTTCCATTGGCTGGCGCTTCGCCAACCCGCAGTTCCAGCACGGCGAGCTGTCCCGGGACGGGAAAATGACTTACTCCATGCCGGAAACCGCGGAGGAAGTGGCCCGAGTGGACAGCATCTCCCGGGACGACGCAGACGCCTTCGCCGTCCGCTCCCACGAACGTTCCCTCGCCGCCATCGAGGCTGGCCGGTTTAAGGATGAGATCGTCCCGGTCACGGTCAAGAGCCGCAAGTCCGAACACGTGGTGGACACGGACGAAGGGCCCAGGGCCGGAACCACCATGGACGTCTTGGCAAACCTTAAACCGGTAGCGAACGGCGGCTCCGTGGTGACCGCAGGCAACTCCTCCAGCCTCAACGACGGCGCCTCCGCCATCATCGTCGCGTCCGAGGCCGCCATCGAACGGCTGGGGCTGACGCCCCGGGCCCGCATCATCGACGGCGCCTCCGCGGGCTGCGAACCGGAAATCATGGGCATCGGCCCGGTCCCGGCAACCCAGAAGGTACTCAAGCGCACGGGCATCAGCGTCGGTGACCTCGGCGCCGTCGAGCTTAATGAAGCCTTTGCCACCCAGTCGCTGGCCTGCATCCGCCGGCTGGGCCTGGACCCGGACATGGTGAATAACGACGGCGGGGCCATCGCTTTGGGCCATCCGCTGGGTTCGAGCGGATCCAGGATCGCCATTACCCTGCTGGGCCGGATGGAACGCGAGGATGCCGGGATCGGACTGGCCACCATGTGCATCGGCGTGGGGCAAGGCACCGCAATGCTGCTGGAGCGGGTCTGAMAAGTAGPQAFLVGGVRTPVGRYGGALSSVRPDDLAALVIREAVARAGLDPDSIDEVILGNANGAGEENRNVARMATLLAGLPVHIPGITVNRLCASGLSAIIQASQMIKAGAADVVIAGGVESMSRAPWVQEKPTSAFAKPGQIFDTSIGWRFANPQFQHGELSRDGKMTYSMPETAEEVARVDSISRDDADAFAVRSHERSLAAIEAGRFKDEIVPVTVKSRKSEHVVDTDEGPRAGTTMDVLANLKPVANGGSVVTAGNSSSLNDGASAIIVASEAAIERLGLTPRARIIDGASAGCEPEIMGIGPVPATQKVLKRTGISVGDLGAVELNEAFATQSLACIRRLGLDPDMVNNDGGAIALGHPLGSSGSRIAITLLGRMEREDAGIGLATMCIGVGQGTAMLLERVPGPT0001565_1467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-29_03747663hypothetical proteinGTGGCGGCCAAAGCGCCCAAGGTAACACCTCCACGGCTTTCGGAAATCCACCTCGAAGGGCTGGCGGAGGACCCCGCGCCGGACTTCCAGCGGGGCGAAAGGTACGACGGCGTCCGGTACAGCCGCGCCGCGGCTGACGGTTTGGAACTGAGCGGCACTGACTTCGCCGAATGTGAGTTCCAGGGCGTCTCCTTCAATGACGCGCAGCTCCGCGGGGCCACCTTCAAGGACTGCCTCCTGGCCGAGCTCTACGCGCCGGTGTTCAAGGCGGCCCGCTCCACCTGGCGGGACGTGCAGATCACCAACCCCCGCCTGGGTTCCGCTGAGATGTATGAGAGCGGCTGGCAGTCCGTCCGGATCGACGGCGGCAAGCTGGACTTCCTGAACCTCCGGGGCTCCAAATTGATGGATGTCCTGATTACGGGCTGCATCATCAATGAGCTTGATCTCGGCTCAGCCTCCGCCACCAGGGTGGTGCTCAAGGACTGCACTATCGGCACATTGGATATAGGCGGAGCCAAGCTCAAGGACGTGGACCTTCGCGGCACGGATTTCCGCACAGTCAACGGCCTGGGGAGCATGGCCGGCATGGTGATCGACGACTACCAGCTCAGCCTTCTTGCCCCGCTTCTGGCCGGCCACCTGGGCGTTGTGGTCCTCTAAMAAKAPKVTPPRLSEIHLEGLAEDPAPDFQRGERYDGVRYSRAAADGLELSGTDFAECEFQGVSFNDAQLRGATFKDCLLAELYAPVFKAARSTWRDVQITNPRLGSAEMYESGWQSVRIDGGKLDFLNLRGSKLMDVLITGCIINELDLGSASATRVVLKDCTIGTLDIGGAKLKDVDLRGTDFRTVNGLGSMAGMVIDDYQLSLLAPLLAGHLGVVVLNANANANANA
D1-29_03748459hypothetical proteinATGGATCACAGCACCAGCCTCACCCAGCACATCCACGCTTCGCCGGATAAGGTCTGGTCCGTCATTTCGGACATTCCGGGCTCGGCGGGAACCCTGTCCGGCGTCCAGTCGGTACAGATGCTCAGCGACGGACCCTATGGCGAAGGGACCCGCTGGAAGGAAACCCGCACCATGATGGGGAAGTCGGAAACGGTGGAGATGTGGGTGGCGCAGGCTGATCCGCCGCGCAGCACCACGGTCAAGGCCATGCAGAACGGCGCCGACTACACCACGCGCTTCAACCTGGCGGAACGCGGCGACGGAACCGACCTCACCCTGACCTTCGGCGCCGAGGTGGTCAAGCCCGGCCTGCTCAGCCGGATCACTATGGCCCTTTTCGGTAAGCTCGGCATGCAGATGACCCGGAAGGCGCTGGCCAAGGATTTGGCGGAAATCGCTGCCAAGGCGGAATCCCTGTAGMDHSTSLTQHIHASPDKVWSVISDIPGSAGTLSGVQSVQMLSDGPYGEGTRWKETRTMMGKSETVEMWVAQADPPRSTTVKAMQNGADYTTRFNLAERGDGTDLTLTFGAEVVKPGLLSRITMALFGKLGMQMTRKALAKDLAEIAAKAESLNANANANANA
D1-29_03749177hypothetical proteinATGGGCCTCGGAGACAAGATCAGTAACGCAGCAGAAGACATGGGCGGCAAGGCCAAGGAAGCGGCTGGCAAAGCCACCGACAACGATCGCCTCAAGGCAGAAGGCCAGGCCGATCAGGTCAAGGCCGATGCGAAGAAGGTCGGCGAGGACGTCAAGGACGAATTCAAGAGGGACTAGMGLGDKISNAAEDMGGKAKEAAGKATDNDRLKAEGQADQVKADAKKVGEDVKDEFKRDNANANANANA
D1-29_03750342hypothetical proteinATGAACCAGGATGCCGACGTTGCGCCAGCGGTTGAGGACGGCGGTTCATTGGAGTTCGTGCGCGCCCATGCGTGGGAAGTTAAACACAAGCTCGAGCAGAACCCGGATGAGATGGTGCACTTCGTCTGTTGCCGTGACCTGGACTGGCGGAAAGCTCTCTGCGGGTATGAGGAGCCCGAGATGACGCTCGCACCGCAGGCCACTGTCTTCTGCACGATGTGTGTTGAGGTCATGACAGCAAAGGGGGGTCTCCCCTGGGACGGAAATTGCCCGGTCGACGACCAGCCCTGCCCTGATGAAGAGGAAATAGACAGAATGATCGACGAGCGGACTTCCCGGTAGMNQDADVAPAVEDGGSLEFVRAHAWEVKHKLEQNPDEMVHFVCCRDLDWRKALCGYEEPEMTLAPQATVFCTMCVEVMTAKGGLPWDGNCPVDDQPCPDEEEIDRMIDERTSRNANANANANA
D1-29_03751789hypothetical proteinATGAGACGGCTGTTTGCGTCTGCTGTGACGCTTGTCCTACTTCTGGGTGGCTGCTCGGGAGTTCCAGAACCCTTGGTCTCGGGAACACCGGCCAGCCCCGGATCTTCGGCGACTTCTCCGGACGGGCCGGTCGGCACCGCCCCGGAGGTAACGATTCCCCCTGAGGGAGTAGGCCCGGGCACCGGTCGTCCGGATGATTCCGGGCGCTATGCCTATGTGTGCACGAGTTTGTATCCCGTGCCGGATGTGAAGCTCTCCAGCCTGGCCGAGGTGTGGGCATCGCCGGGTTATCTCAGGCTGCGTTCCTGCACGGCACTCTACGAGGGCCCCGAACCATATGTACCAACAGAGGGTGAGGCCGGCATCATTGCGATCGCCGCTCCAGGGACACCTCCAGCCGAGGGGCTGGAGGTGTTCCTGTCCGCACTTGAGCTCTGCACGAGGGTCAGCGATGAGGTTGCATCCGAAGTGTTTGGAGGCAGCAGCCGCCAATTGCTCCTTGCGGCAAGCAAACTCTGCCCGAAGGCCCCACAAGGTAAAATACTAGCCCTGTGGGCTGAGGGGTCCCGGGCCGGCGACGGGGAGCACCACGTGGGTGACACTGGACTTTCTTCCGGTACGTTTCATCTGAGCAAGGCCCCGCCCCAGGAATGCACCTGGACCATCGAGGCCCCGGACGGCCATATTAGGACCTCTGGTGGCCCAGCCGAAGGGCAAGAGGGCATAACGTTGGCCGAAGGCGAGGTCCTGAACAGCGAAGCCTGCGGAATCTGGGAGAAACTCCCTTGAMRRLFASAVTLVLLLGGCSGVPEPLVSGTPASPGSSATSPDGPVGTAPEVTIPPEGVGPGTGRPDDSGRYAYVCTSLYPVPDVKLSSLAEVWASPGYLRLRSCTALYEGPEPYVPTEGEAGIIAIAAPGTPPAEGLEVFLSALELCTRVSDEVASEVFGGSSRQLLLAASKLCPKAPQGKILALWAEGSRAGDGEHHVGDTGLSSGTFHLSKAPPQECTWTIEAPDGHIRTSGGPAEGQEGITLAEGEVLNSEACGIWEKLPNANANANANA
D1-29_03752924hypothetical proteinATGGCCGGACATACCGAAGTCTTCACCGATCATCAGTTCCAGATACGTTTCCAGCTCCTCGCACCCGATGGCAGCGTCTTCGCCGTATCCGGACCATTCGCCGACAAACACGCCGCCGTAGCTGCAATCACCGAACTCCCCGATTGCGCCCGTACTGGGCCGAGCAAGGACCACCGCAGAAAGACCACGGTCACGGCCATACCGAAACCGGATTTGGCTATGGAACTGGAGGACCTCATTCTGAACAACGGAAAACTCGAGGATTTCGTGGAAAGCCTCACCGCCGTTGCGGCAAACACGGTGAACTGCGACAGCCCCGACGCCGTCTGCTCCATAACAATCAGTCGCCCGAAAAAGCATCCAATAGAGGCCTCAAGTGGGCCCTTGGCCCGGTCACTGAACCAATTGGAGGACAACCTCAAACAAGGGCCAAACCAGACAGCCATGACCGAGCAACGCACGGTCCATGCCTCCGACCTAACCGGCGATCACCGCTGGCCCCGCCTTGCTAGATCCGCCACCGAACGAGGCATCAGATCCTGCCTGAGCATCCCCCTGGAAGTGGAAGGCCCAAACCGGGCAGTCATGAGCCTAACTGCCGTCACATCAGGTGCTTTCTCGCCCCAGGACATCTATGCCGCCGAGGTATTCGCAGAGCAGGCCTCAAGGGTGCTCCGATCTGCCCTGCGGATCAGCAAGCTAACGGAAACCGTACAGGACCTGTACGCAGCACTTGAACATAGAACGGTCATTGATTCAGCACTGGGAGTGGTGATGGGCCAGAACCGCTGTGACCATGACACGGCTTTCAAGATTCTCCTCCGCGCTGCCAGTTCCAGAAACGTGAAACTACGCGACCTGGCCGCCTCCGTCGTCGCAACGGTCTCCGGCGATACCAGCATCATTGTTCATTTTGACCCATGAMAGHTEVFTDHQFQIRFQLLAPDGSVFAVSGPFADKHAAVAAITELPDCARTGPSKDHRRKTTVTAIPKPDLAMELEDLILNNGKLEDFVESLTAVAANTVNCDSPDAVCSITISRPKKHPIEASSGPLARSLNQLEDNLKQGPNQTAMTEQRTVHASDLTGDHRWPRLARSATERGIRSCLSIPLEVEGPNRAVMSLTAVTSGAFSPQDIYAAEVFAEQASRVLRSALRISKLTETVQDLYAALEHRTVIDSALGVVMGQNRCDHDTAFKILLRAASSRNVKLRDLAASVVATVSGDTSIIVHFDPNANANANANA
D1-29_03753417hypothetical proteinATGCAAACAAATCCGCTAACTCCTCGAACTTCCATCCCTCCACCGCCGGCACGGCAACCGGCGGTCGGCCCGCGCACGCCCTCCAACGGCACCAACGCAGACCCGCCGCACCCCACCCGCGCCGCTCTTGTATGGACGGCCACCATCGCTGTCCTTGTACTCCTGGGACTCGTAATTGTCTTCATCCTGCAAAACCAGGAACAGGTGTACGTACAGTATTTCGGGCTCGCGGGCGCGGTGCCCCTTGGCATCGCCCTTTCCATCGCCGCAGTCGTCGGCGGACTCCTCGTGGCAGTCACCGGCGCAATCCGTATCGTGCAACTGCGAACTGCCGCCACTCGCCTACGACACCGTTCCCCGACGAGGCCAACAAAGGTGGGGCATCAACTGTTCAGACACGGACACCCCGTCAGGTGAMQTNPLTPRTSIPPPPARQPAVGPRTPSNGTNADPPHPTRAALVWTATIAVLVLLGLVIVFILQNQEQVYVQYFGLAGAVPLGIALSIAAVVGGLLVAVTGAIRIVQLRTAATRLRHRSPTRPTKVGHQLFRHGHPVRNANANANANA
D1-29_03754306hypothetical proteinATGGCACTGTCAGAGGAAGAACGAAAACGCCTTGAAATGCTCGAACAGGAGCTGGCTTCCAGCGACCCGGATCTGGAGCGGACACTGCAGACCGGAGCGCCCGGGCACCACCCTCGGGAGGCCACCACGATGGTCCGCGGAATCCTCACGCTGGTAGCCGGATTCGCCCTTGTCATTGTGGGCATCGCAACAGAACTCATCATCATCGGCGCCGTAGGGTTCCTGCTGATGATGGCCGGCGCACACTGGTTCATCAAAGGCCTCGAACTTCAAACAGGGACAGAGGAGACACACCATGAAACCTGAMALSEEERKRLEMLEQELASSDPDLERTLQTGAPGHHPREATTMVRGILTLVAGFALVIVGIATELIIIGAVGFLLMMAGAHWFIKGLELQTGTEETHHETNANANANANA
D1-29_03755258hypothetical proteinATGGGCCATCCACAGCTTTCCCGACCAGCTCGTCGTGCACGCCGGAAGGAACGACTAAAGGGCGCCGGAGGCGGGAGACCTTCCGAGGATCCGCAACTGCGCCGCATGCTGACCTCCCACATCCACTGTGGCCAGGACATGGAACTGATCATCGTTCATCCCGCCCTGCCGGGCGACCGAGCCACAGCAAAGAACGACCGCGGGCTGCACACTTACCGGTGCGCGTGTGGATTCAGATTTGATCAACGGAGCGACTAAMGHPQLSRPARRARRKERLKGAGGGRPSEDPQLRRMLTSHIHCGQDMELIIVHPALPGDRATAKNDRGLHTYRCACGFRFDQRSDNANANANANA
D1-29_03756408hypothetical proteinATGACACACGTACAGTCCATGCTGGAAGCACGCCCGAAAGACCTCGGAAGCGTCGACAGGACCAAGCTCGCTGAATGTATCCAGGCGTGCTTTGATTGCGCGCAAACCTGCACCGCTTGCGCCGATGCCTGCCTCAATGAAGACATGGTCGCCGAACTCACCAAATGCATCCGCACCAACCTCGACTGTGTTGACATCTGTGCCACCGCCGGCAAGATCCTCTCCCGCCAAGCGGGCTTTGACACCGACACCACCCGCTCGGTGCTCGAAGCGTGCCGCGCAGCCTGTAAGGCCTGTGCCGACGAATGCGGGCGGCATGCCTCCATGCACCGCCACTGCGAGCTTTCTGCCGAAGCCTGCCGCCGGTGTGAGCGGGCCTGCGCCGAACTTCTCGCCTCGCTGAACTGAMTHVQSMLEARPKDLGSVDRTKLAECIQACFDCAQTCTACADACLNEDMVAELTKCIRTNLDCVDICATAGKILSRQAGFDTDTTRSVLEACRAACKACADECGRHASMHRHCELSAEACRRCERACAELLASLNNANANANANA
D1-29_03757483hypothetical proteinATGGCCGCGCTGAACTGGTCCTCACTGGGAATGCTTCGCAGCCCCCTTTCGCTGCGAAGCCTATTCGTGTGGCTCCTTCTGACCCTTCTCCTGACGGGAGCCGCGTCCTATACCCACGGCAGCCGGTACGCTATCGTTCCCGGATACGGCCCGGTTCAGACAGCAGACGATCTGGGTCCCAAGGAAGTGCCGCCGCAAGCGGAACCCGCAGCCAGTCCCGCTGATACTTCACTATGGACCTCTCAGGCAACGCGTGCCGTACACCTGGCCGCGCCATCACTGGGGACTGAAGACGTCGAAAAGGACTGCTGCCAGCGCCGCCATGCGCCCCGCGGAGAACCAGCCCCTATGAGGACTGGTGCCCTGGACCCGCCGATCGTGACTTACCAACAGCCCGGTGACGCGTTGCTCAATGGTGCAGCGCCTCCGGAGCCGGACCTGCCGGCGCTTACCGTGGTCGAGCTTTCCATCAGCAGGACGTAGMAALNWSSLGMLRSPLSLRSLFVWLLLTLLLTGAASYTHGSRYAIVPGYGPVQTADDLGPKEVPPQAEPAASPADTSLWTSQATRAVHLAAPSLGTEDVEKDCCQRRHAPRGEPAPMRTGALDPPIVTYQQPGDALLNGAAPPEPDLPALTVVELSISRTNANANANANA
D1-29_0375899hypothetical proteinATGTTTGAAGCACTCTCACTACAGCTGGAAGTATTTCTTTTCATTGGAGATCAGGAAGCCGTCCGCTTTATCCTGCGCGTCCTTAAAGTTGAAGCCTAAMFEALSLQLEVFLFIGDQEAVRFILRVLKVEANANANANANA
D1-29_03759528hypothetical proteinATGTGGTTTGATTCCTGGCCGGAGATTCTCCGTGTCCTGATCATCGGCTCGGTGTCGTATGCCGCCTTGGTGGCGGGCCTGCGGGTCACTGGCAAAAGGACACTGGGGCAGCTGAACGCGTTCGACTTCATCGTGACAGTCGCCTTCGGATCCACGCTGGCGACAATCCTGCTCAATTCCGAAGTCGCGTTCCTCGAGGGGTTTACGGCACTCGCGCTGCTGGTGGGCCTTCAGTTTCTCGTGGCGTGGGTGTCCGCGCATGTTCCTGGGGCCAGATCAGCTGTGACGTCACGACCAGTGGCACTGGTTGTGTCCGGGGAACTTCAGCATGCCCAACTGCGCAGGAACCGCCTCAGCCAATCCGAGGTCCTGCAGGCGGTCCGGGCCACCGGTTCGGGTGACCTCTCGAACGTTGCAGCGGTGATACTGGAGACCAACGGGACCATCAGCGTCATTCCCCGGAGCAAACTCGGCAACGGATCCGCTCTTGATGGTGTCCAGGACGCTCCCGGGCCCGAACATCCATGAMWFDSWPEILRVLIIGSVSYAALVAGLRVTGKRTLGQLNAFDFIVTVAFGSTLATILLNSEVAFLEGFTALALLVGLQFLVAWVSAHVPGARSAVTSRPVALVVSGELQHAQLRRNRLSQSEVLQAVRATGSGDLSNVAAVILETNGTISVIPRSKLGNGSALDGVQDAPGPEHPNANANANANA
D1-29_03760588hypothetical proteinATGGGAATCCTCGGCGTGATCTTCCTCTTCGTAGTACTCGGCCAGCTCGTGGCCAAAGAACCGGCCATGGTCAGTGCGTTTGCAGTCGCGGGTTGGTTGTTCTGGGCTGTGTTCGTTGCTGAATTTCTGTTGCGGGCCTACATTGCCGGCTTCAGTAAGGACTTTTGGCGGAAAAGCTGGTGGCAGGTCATCTTCCTGCTCGTACCGTTCCTGCGGTTCTTCCGGGCATTGCAGGCACTTCGGCTCTTCCGTATCGCCAGACTGGCCCGCTACGGCTCCATCCTTTCAGCCGGCGTCCGGGGTTCCCGGTCGGCTGGGCGGCTTTTGACCAGCAGGATCGGCTGGCTCACCGCCGTCACCGCGGTGGTCATCCTCGCCTCCAGCCAACTCCTCTACGCAACAGGTGAGCTCAGCTCCTACGCCCAGGCCCTGTACGAGTCGGCCATGGCTGCTATCACCGGTGACGGCATCACCGGGACCAGCACCTTCTCACGCATCATCCAGGTCCTGCTGGCCATCTACTCGGTGGCCGTCTTCGCCACGCTTGCAGGTACCCTCGGCGCCTTCTTCCTCCGGCAAAAAGAATGAMGILGVIFLFVVLGQLVAKEPAMVSAFAVAGWLFWAVFVAEFLLRAYIAGFSKDFWRKSWWQVIFLLVPFLRFFRALQALRLFRIARLARYGSILSAGVRGSRSAGRLLTSRIGWLTAVTAVVILASSQLLYATGELSSYAQALYESAMAAITGDGITGTSTFSRIIQVLLAIYSVAVFATLAGTLGAFFLRQKEPGPT0002715_5021DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716NANA
D1-29_03761423hypothetical proteinATGGCACTGAAAAGCAAAGCAGGCGTACTGATCGCAGGATCTGCCCTGGTGGCAGGCCTCCTCACAGGTTGCGGGGAAGAAACAGTGGTCGAAGAAGCCCAGGAAGCGGGACCGACCGCGGAGGCGGCCATTCTGGGCGAGACCGTCACCGTGCAAATAGAGGTCCAAGACGTGGCCGGCCCCAACGCCTTCACCGTAGGCGACGCGCTGGAGGAAGGCACTCTGGTCCTGGGCAAGGGAATCAGCGAAGGTCTGGAAGAGGGTAACAAAGTACAAATTACCGGCACTGTCCGCAGCTTTATAAAAGCCGAAGTGGAAAAGGACTACGACATCGATTTCAACGACGATGAAGATAGTTTCGTGGTCGAATACGAACAGGACCTCGCCGTCGTGGCCGACAAGGTTCGGGAACTTCCCGAATAAMALKSKAGVLIAGSALVAGLLTGCGEETVVEEAQEAGPTAEAAILGETVTVQIEVQDVAGPNAFTVGDALEEGTLVLGKGISEGLEEGNKVQITGTVRSFIKAEVEKDYDIDFNDDEDSFVVEYEQDLAVVADKVRELPENANANANANA
D1-29_03762360hypothetical proteinATGAGCCGGTTCAAGTTCGTTGCATCCATACCTCAGCCGCTGAAGACCCTCTATATCCTGTTCTTCATTGCCTTTGCTGCCGCTCTTGTCTCGATTCCGCTCGGCGTCCCGGATATCGCACGCTGGTCATTCGCGGCCCTCGGTATCGTGGCCGTCCTTCTCGGACTCTGCTTAGCCAGCAACCTCAATGGCTCCGCTTCTGCAACGGCAAACTATCTGAAGAGATCCAAACGGATGGGCATCGATTACTCAAGAACCTTTTTGGCCAGTACCGGATATGCCAGATTTTTCGGCGGATTCTTCGCACTCGTCGGGCTGATTTTGACAGTCGTAGCGTTCACCCGATCCGGCATCATCTGAMSRFKFVASIPQPLKTLYILFFIAFAAALVSIPLGVPDIARWSFAALGIVAVLLGLCLASNLNGSASATANYLKRSKRMGIDYSRTFLASTGYARFFGGFFALVGLILTVVAFTRSGIINANANANANA
D1-29_03763270hypothetical proteinATGCGCGACCAGGCTGCCGCCAGCGGCGCGGGGATGGCCTGGAGCGCGACAATAACTTCACTAATCCTATTGGTTCTGCTTATCGCTTTCATCGTCCAGAATCAGGAAGACTTAACCATCACACTGTTCGGGCTCAAAGCCACCATCGCATCGGGCCTCGCTCTCCTTATCGCTGCCGCAGGCGGTGGCCTGCTGGTGGCGGCGGCCGGGACAGCCCGGATACTCCAACTCAAATCCCGACGCCACCAGCGGAAAGCCGGGCTGTTCTGAMRDQAAASGAGMAWSATITSLILLVLLIAFIVQNQEDLTITLFGLKATIASGLALLIAAAGGGLLVAAAGTARILQLKSRRHQRKAGLFPGPT0014665_109DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_AFFECTED_LIPOPOLYSACCHARIDE_ASSEMBLY,PGPT0014665-lapA-K08992NANA
D1-29_03764492hypothetical proteinATGGGAAAGACAGCCGAGAATCCAACGGACAGGGCACGGACCTGGCGAGCAGGCCCGCTCCTCAGAATGACGGCAGTGGCAGTGGCCGTAGTTGCGGCTGCCTCTGCTATTGGCAGCTGCGGCACCTCAGAGCCGGAGGCAGCAACTGAGATAGAAGATGTTCACCTTGATGCCATCAGGGAAGTCGTCCCGGATGCCAATCTGGAGTACAAGCGAGTCACAGTGCCCGGCGTAGTAAATGACATCATCTCCCCTTCAGCTTTCTCTATCAGCGATCCCGGGCAACCCTTGGTCGACGACCTTCTCATAGTCCATGAAACCGATCTCGCTGACGTGCGGCCTGAATCCAGAGTCAAAGTCACCGGGATCGTCTACCGGGGCTTCAATGTAGCTGAAGTTGAAAAGGAAACCGGGATTGATTTGGATGAATCCCTGAACCAGCAGTGGCAGGGAGATTCCTACATCGTCGCCTCCGGCGTCGAAGCCCAATAGMGKTAENPTDRARTWRAGPLLRMTAVAVAVVAAASAIGSCGTSEPEAATEIEDVHLDAIREVVPDANLEYKRVTVPGVVNDIISPSAFSISDPGQPLVDDLLIVHETDLADVRPESRVKVTGIVYRGFNVAEVEKETGIDLDESLNQQWQGDSYIVASGVEAQNANANANANA
D1-29_03765420hypothetical proteinATGGAAGAAAATACAACTGAACTGGTGAAACTCGGTGACACCGGCAAAACCGTCGCAGGGGCGGAAGAAGACATACGGGGATACACCGTCCGGACAACGTCAGGTGAGGAAATCGGCAAGGTCGAAGAACTCCTGGTCGATGTAAGGGAGCAAAAGGTCAGATTCCTCATTGTTGCCTCCGGAGGGTTCCTCGGCATCGGAAAGGAGAAAACGTTCATTCCTGTAGACGCGCTGAGCAACATCCATGACGAGGAAGTCGTTGTTGACCGGACCCGGGAGCAGATTGCCGGAGCACCCGAGTATGACCCGGCATTGGCCGATGACAGGTCCTATTACGAAAGCGTGTACGGCTACTACGGCTTTTCCCCGTACTGGAGCCCAGGCTACGTCTATGGCGGCTACCCTCACCGTTTCCGCTGAMEENTTELVKLGDTGKTVAGAEEDIRGYTVRTTSGEEIGKVEELLVDVREQKVRFLIVASGGFLGIGKEKTFIPVDALSNIHDEEVVVDRTREQIAGAPEYDPALADDRSYYESVYGYYGFSPYWSPGYVYGGYPHRFRNANANANANA
D1-29_037661299COG4325putative proteinATGAATAGACGTGCAGCACGAATAAGGGACGCGCTGCAGACCCAGCTTTGGCCCTTGCCGGTGGTCGCCGTGGTGCTGTCGGTAGTGCTGGGCGTCGTGCTTCCGGCGGTGGACGCCGCTGTTGACGGCCAGATCCCCGAGAGCGGGGCCGCCCCACTCTTCAGCGGCGGACCTGAAGCGGCCAGGTCAGTGCTGCAGGCGATAGCCGGTTCCCTGATCACGGTTACGTCGCTTACATTTTCGCTCACTGTTGTGACGCTGCAGCTGGCCAGCAGCCAGTTTTCCCCCCGGCTGCTGCGCACGTTTTCCGCGGACCGTTTCGTCCATGCCACGTTGGCCCTGTTCCTGGCTGCCTTTGCCTTCGCCCTGACGGTGCTTCGAACTGTGCGGGCCGAAGGCAGCGGGATTACGGCCTTCGTCCCTGAAATCTCGATCACCGTGGCGTTTGCACTGGCAATCGCCAGTGTCATAGGCCTGGTGCTCTTCCTGGCTCACCTCACTCGGGAGATCCGTGTCGAGACCATAATGCGGCGCGTCAATGTCGAAACGCAGGCGACCATCGAGCGGGTCTTTCCCCAGGACCGCCCGCTCCTCCAGTCCGGGCCGCCGGAACCGGACGGGGCGCTGTTGGTCCGGGCTACACACTCAGGGTTCCTGACCTCGGTGGATAAAGATGCCCTCCTGGGGTCGGCGGTGGAGGCCGGGGCCGTGGTGCGGATGGATTGCCAGCCGGGCAGTTCTTTAGTGGAAGGGGTTCCCTTCGCCACAGCATGGCCCCTTTCCAAAGGCAGGACGTTCAGCCCGGAAACAACGGCAGACCTTCAGATGGCCATCAACGCTTCGATCTCAACCGGTTTCGAACGGACAAACGTCCAGGACGTCGGCTTCGGGTTTCGTCAACTGGTGGACGTAGCCGTCCGGGCGCTCTCACCCGGCATTAACGACCCAACAACGGCTGTGCATATCATCGGCCATCTCTCCGTCCTGTTGTGCCGGCTGGTGGACAGGAATCCGGGCCCGGAAGAGCTCCTTGACGACGAAGGGCGTGTGAGGGTGGTCCTTGCCTTGCCTTCCCTTCCTTTGGTGACCTGCTGGACCTGGCATTGGCGCAGCCGAGGCTCTACGGCGCCGCTGACCCTGCAGTCGTCGGCCGGCTCCTGCTCTTGCTCCAGGAACTTGCCTGGTGTGACCATCGGCACGCCTTCCGAACTGAGATCGAGGAACAGCTGCGCCGGTTACGTGAAGTCATTGACGCCAGCAGCTACGCCGCGGCAGAGCGCCTCCACCTTCTGGCATTGAMNRRAARIRDALQTQLWPLPVVAVVLSVVLGVVLPAVDAAVDGQIPESGAAPLFSGGPEAARSVLQAIAGSLITVTSLTFSLTVVTLQLASSQFSPRLLRTFSADRFVHATLALFLAAFAFALTVLRTVRAEGSGITAFVPEISITVAFALAIASVIGLVLFLAHLTREIRVETIMRRVNVETQATIERVFPQDRPLLQSGPPEPDGALLVRATHSGFLTSVDKDALLGSAVEAGAVVRMDCQPGSSLVEGVPFATAWPLSKGRTFSPETTADLQMAINASISTGFERTNVQDVGFGFRQLVDVAVRALSPGINDPTTAVHIIGHLSVLLCRLVDRNPGPEELLDDEGRVRVVLALPSLPLVTCWTWHWRSRGSTAPLTLQSSAGSCSCSRNLPGVTIGTPSELRSRNSCAGYVKSLTPAATPRQSASTFWHNANANANANA
D1-29_03767336hypothetical proteinATGCGAACACCTTACCGACAACACAGCCAGATCCTTGGCCCCGTCCTTGCAGGCGTACTCCTTTTTGTGGGTGTATCGGGGTGCAGCACTGCAACCCCTGAGGAAGACTGGCAGGCGATGGCCAATGGCGTGGACGCCGATATTGGTGGAGTGGAGGTTCGCAGCCTGCTCCTTGTCGCTGAAAATGCCAATGAATCGGGAAGGTTTTTGGGGATGCTTTTGAATACTTCTGAGCAGCCGGTGGAATTGGTCTTTTCCGATGAGGACGACAGGGCCGCTGTCCGCGTTGAGCCCCAAGGTGAGCCTCACCAACCGCCCACAAGTAGAAACAGATGAMRTPYRQHSQILGPVLAGVLLFVGVSGCSTATPEEDWQAMANGVDADIGGVEVRSLLLVAENANESGRFLGMLLNTSEQPVELVFSDEDDRAAVRVEPQGEPHQPPTSRNRNANANANANA
D1-29_03768804hypothetical proteinATGAGCACGACCCCAACCGTCCCTTACCGCCTGGAGTTCAGCATTGAGGTACCGGGGACCCCTGAACAGGTCTGGCAGGCCATCGCTACCGCCACGGGCATGAGCGCCTGGTTCTTGCCGACCGAAATGGAGGAGCGCGAGGGAGGCTCCCTACATTTCACGATGGGCCCGGAGATGGGCTCAGACGGCCAAGTCACTGGCTGGGATCCACCGCGCCGCTTCGCATACGAGGAGGACTGGGCGGCCCTCATGGGCAAAGACCCGGATGCACTCAGCCCGCTGACGTCAGAGTTCCTTGTCGAGGCGCAATCCGGCGGCACCTGCGTTGTGCGCGTCACCACCAGCGGCTTTGGGACCGGCGCTGACTGGGAGTCGGAGTTCTGGGATGACATGGGAGCCAACTGGATGCCGTTCTTCGACAACCTGCGCCTTTACCTGTCGCACTTCCCAGGCCAAAAGGCCACACAGCTCGAGGCCACCGCCTCCCACCCCGGCGACGCACAGGCACTCTGGTCGACCCTGCAGGACGCCCTCCGGCTCGGCGACGAGGGTACGGCGGTCGAGATACGCGGCGCTACCGGCAGGGTCGAGCGTGCCGGCGAGCGGCAGGCGCTGGTCCGGCTCACCGCACCGGTGCCCGGGATGCTCAGCATCTTTGCTTACGGCGAGGGTGAGGGTACGCGCGAGGGTACGGCGACGGCAGGCGTACGAGCGTACCTGTTCTCCCCGGACGCGCAGGACTACGTGCGGCGCGAAGAGCCGGCGTGGCAAACCTGGCTGCAGGAGCTCGTCGTCCTGGCCTGAMSTTPTVPYRLEFSIEVPGTPEQVWQAIATATGMSAWFLPTEMEEREGGSLHFTMGPEMGSDGQVTGWDPPRRFAYEEDWAALMGKDPDALSPLTSEFLVEAQSGGTCVVRVTTSGFGTGADWESEFWDDMGANWMPFFDNLRLYLSHFPGQKATQLEATASHPGDAQALWSTLQDALRLGDEGTAVEIRGATGRVERAGERQALVRLTAPVPGMLSIFAYGEGEGTREGTATAGVRAYLFSPDAQDYVRREEPAWQTWLQELVVLANANANANANA
D1-29_03769579hypothetical proteinGTGCAAGACGTTGAAGTTATCGAAAGCACTAAGGCAGCGGCCGCCGCGTTGGATCCGGTCCGGGCCAGGTTACTCAGCGAGCTGGCCGTTCCGGCCTCCGCCGGGGGCCTCGCCGCCCGAGTCGGCATCACGCGCCAGAAGATTAACTACCACCTCAAGGCGCTTGAGGAGCACGGCCTCGTTGAGCTGTTTGAAGAGCGCCAGCACGGGGGCATCACCGAGCGGGTGCTGCGGGCCTCGGCTGCATCGTTCGTCGTGTCACCAGCGGCTTTAAGCGCGACGGCGGCTGATCCGGACGCCAACGACGACCACCTGTCAGTGCGATACCTCGTTGCCCTGGCAGGAAGGCTGATGCGGGAGGTCGGGGCCATGGCGCGCAGGGCCGACGCGTCCGGCAAGGGCCTGCCGACGCTGACCATCGACACGAAAATCGGCTTCCAATCGGCGGCCGACCGGGCTGCCTTTGCTGACGATCTGACCGCCGCGGTGCTCGACCTGGCCGCTCGCTACCACCATGACGACGGGCGCCCGCACAGGCTCGTCGTCGCAGCACACCCCCTTCCTGAGGAGAACCGATGAMQDVEVIESTKAAAAALDPVRARLLSELAVPASAGGLAARVGITRQKINYHLKALEEHGLVELFEERQHGGITERVLRASAASFVVSPAALSATAADPDANDDHLSVRYLVALAGRLMREVGAMARRADASGKGLPTLTIDTKIGFQSAADRAAFADDLTAAVLDLAARYHHDDGRPHRLVVAAHPLPEENRNANANANANA
D1-29_037701071dinB1COG0389DNA polymerase IV 1GTGGGCGAACCGTGGGTACTGCATGTTGACCTTGACCAGTTCATTGCGGCCGTTGAAGTGCTGCGCCGGCCTGAGCTTGCGGGCAAGGCCATCATCGTGGGTGGCCGCGGCGATCCGACCGAGCGGGCGGTGGTGTCCACTGCTTCGTACGAAGCCCGGGCCTACGGCGTCGGCTCTGGGATGCCGCTGCGCATCGCCGCACGGAAAGTGCCCGACGCCGTCATCCTGCCCGTGGATCATGAGGCCTATTTCGCTGCCTCCGAAAACGTCATGTCGGTGCTGCGCTCGCAGCCCGGCGCTACGGTGCAGGTGCTCGGCTGGGATGAAGCGTTCGTTGGTGTGGTTGTGGAGGATCCCGAGGCGTATGCCCGGCAACTACAGCACGACGTACTTGAGGAGACCCGGCTGCACTGCAGCGTGGGCATCGGCGACACCCTGGTCCGCGCCAAGGTAGCAACGACCTTCGGCAAGCCGGCCGGCGTCTTCCGGCTTACGGCCCAGAATTGGCTGGAAGTCATGGGCAGCCGGCCCACCATTGAGCTGTGGGGCGTGGGAACGAAGGTGTCGCGCCGGCTTGCCACGCTTGGCATCAGGACGGTTGCGGAGCTGGCCGCGTGCAATCCCGACGACCTGGTCCCAGAATTCGGCCCCAAGATGGGCCCCTGGTATGCGCAGCTCGGCCGGGGAGACGGCGGGCGGACAGTTGATGACACGCCCTGGGTGGCGCGCGGGCACAGCCGGGAAACCACCTTCCAGCGTGACCTGACGGAGCCAGGCCAAATTGACGACGCCGTCAGGGAGCTCGCGGGGCACGTCCTGGAAGATGTCGCGGCCGAAGGGCGGCCAGTGATCGGGCTGACCCTCAAGGTCCGTTACGCCCCGTTCCTTACCAAGACCTACGCCCGGAAGATCCCCGAGACGTCGGACCCGGCGGAGGTGCTCGCGCGTGCCCTGGACCTTGTGGCGAAGATTGAGCCGGACCGCCCCATCCGGCTCCTCGGGCTGCGGGCCGAAATGCCGATGCCCGAAGACTCCCGGCAGGGGCATACGCCCACCCGCAGCGGATGGTGAMGEPWVLHVDLDQFIAAVEVLRRPELAGKAIIVGGRGDPTERAVVSTASYEARAYGVGSGMPLRIAARKVPDAVILPVDHEAYFAASENVMSVLRSQPGATVQVLGWDEAFVGVVVEDPEAYARQLQHDVLEETRLHCSVGIGDTLVRAKVATTFGKPAGVFRLTAQNWLEVMGSRPTIELWGVGTKVSRRLATLGIRTVAELAACNPDDLVPEFGPKMGPWYAQLGRGDGGRTVDDTPWVARGHSRETTFQRDLTEPGQIDDAVRELAGHVLEDVAAEGRPVIGLTLKVRYAPFLTKTYARKIPETSDPAEVLARALDLVAKIEPDRPIRLLGLRAEMPMPEDSRQGHTPTRSGWPGPT0014881_4943DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
D1-29_03771726hypothetical proteinATGACCTACGCAGACCTGAGCGTCGAGAGCACCGCGGCGGGCGGCTCCCCATCCCTGGGCGGCTATCTTGCCACGCCACCCGGCGCCGGCCCGTTCCCCGCCGTCCTGATGATCCACGAAGCGTTCGGGCTGAACGACATGACGCGGCGGCATGCTGACCGGCTGGCGAAGGCCGGCTATCTGACCCTGGCGCTGGATCTGTTCAGCGCTGGCGGGCCGAGCCGCTGCCTGGTCAGCACGATGCGCAGCATGCTCAAGGGAACGGGGCGCCCTTTCACGGACCTGGCCACGGCCCGCAAATGGCTCGCCAGAGCCCCGCAGTCCAACGGCAAAACCGGCGTGATCGGGTTCTGCATGGGAGGCGGCTTCGCTCTGCTGGTGGCACGCGATGGGTTTGACGCTGCCTCAGTCAACTACGGCCGGCTGCCCGGCGACCTCGAGGAGGCGCTCCGCGGCGCCTGCCCCATCGTGGCCAACTTCGGCGGCAAAGACACCACGCTCGAGGGAGCCGCACACAAGCTCGAGACAGCCCTCACCAACCTCGGGATCGAGCACAGCGTCAAGGAGTTTCCCACCGCCGGCCATTCCTTCCTGAACGATGCGCACCTTGGCCCTGCAGTGTTCCGGCCGCTGATGCGGGTCATGGGAATCGGCCCGGATCCGGAAGCCGCCCCCGAGGCGTGGCAGCGGATCGAGGACCACTTCGCCCGGTACCTGAAGGACTGAMTYADLSVESTAAGGSPSLGGYLATPPGAGPFPAVLMIHEAFGLNDMTRRHADRLAKAGYLTLALDLFSAGGPSRCLVSTMRSMLKGTGRPFTDLATARKWLARAPQSNGKTGVIGFCMGGGFALLVARDGFDAASVNYGRLPGDLEEALRGACPIVANFGGKDTTLEGAAHKLETALTNLGIEHSVKEFPTAGHSFLNDAHLGPAVFRPLMRVMGIGPDPEAAPEAWQRIEDHFARYLKDPGPT0005685_2776DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005685-catA-K01061NANA
D1-29_037721461ansP2_3COG1113L-asparagine permease 2GTGCCTCAAAGTACCCCCATCGACCTGCAAAACCCCACGGCACCATCCATCGCCGTCGACCCTTCCCTCAGCGCCGAGGGCTACAGCAAGACCCTTGGCCGCCGCCACGTCACCATGATCGCCATGGGCGGCGCCATCGGCGTCGGCCTCTTTATGGGCGCCGGCGGACGCCTTGCCTCCACCGGCCCGGCCCTGATTTTCTCCTACGCCATTGCCGGCGTCATCGCCTACCTCCTCATGCGGGCCCTGGGCGAACTCATCATGTACCGCCAGACCTCCGGCTCCTTCGTCAGCTACGCCGGTGAAATGTTCGGCAAGAAGGGCGCGTTCCTTTCCGGCTGGATGTACTTCATCAACTGGGGCATGACCGGCATCGCGGAACTGATCGCGATCGGGCTTTACTTCCAGTTCTTCTTCCCCAACGTTCCGGTTGAGGCCTCCGCCATTGCGGCACTGGCGCTCCTGGTGGCAGTGAACCTGCTGAGCGTGAAGGCGTTCGGCGAGTTTGAATTCTGGGCCTCCTGCCTCAAGGTGGGCGCCATCGTGATCTTCCTGGCCGTGGGCACGTTTATGGTGGTCACCAACGCCAAGGTGGGTGACGGCAACGCCTCCGTGGCCAACCTGTTTGCCGCCGACGGCGGGATGTTCCCCAAGGGCGCGCTGGTGATGGTCCTGGTCCTCAACGCCGTTATCTTCGCCTACAACGGCATCGAACTGGTGGGCATTACCGCCGGCGAGATGCAGAACGCGGAACGCGAAGTGCCCAAGGCGATCCGCGCCGTCGTCCTGCGCATCGTGGTGTTCTACGTCGGTTCGGTAACCCTGCTGGCCATGCTGCTGCCGTCCGACCAGTACGTGGCCGGCACCTCGCCGTTCGTTACGGTCTTTGGCCAGATGGGCCTTGCTTGGGTGGGTGACGTGATGAACATGATCGTGATCACCGCGGCCCTGTCCTCCTGCAACTCCGGCCTGTACTCGATCGGCCGCGTGTTCCGCACCATGGCCAACAACGGGCACGCGCCCCAGTGGCTCACCCGGATGTCCAAGCGGCACGTCCCGTACGCTGCCATCCTCGCCATTGCAGCTTTCTACCTGGTGGGCATCCTGCTCAACATCTGGCTGGGCGGCTCCCACGCCTTTGACCTGGCGCTGAACACGGCCTCCATCGGCGTGATCTTCACCTGGGGCGCCATCTTCGCCAGCCAGATCGCACTGCGCCACCGCAAGGGCGTCACCTCCAGCCTGCCCATGCCCGGTTCGCCGTGGGCCAGCTGGGCCGGCCTGATCGGACTGCTGGCCATCACCGTGCTCATCGGCTTCGACACCATGACCAGCAAGAGCGGCGACGTGTTCTACCTGGGCCTGTGGACCCTGGCCACCATCCCGTTCTTCGCCGTGGTCCTCTGGCTGGGCTGGCAGAAGGTCAAGAAAAACGAACCGAAGAACGCGCTGTACAGCTAAMPQSTPIDLQNPTAPSIAVDPSLSAEGYSKTLGRRHVTMIAMGGAIGVGLFMGAGGRLASTGPALIFSYAIAGVIAYLLMRALGELIMYRQTSGSFVSYAGEMFGKKGAFLSGWMYFINWGMTGIAELIAIGLYFQFFFPNVPVEASAIAALALLVAVNLLSVKAFGEFEFWASCLKVGAIVIFLAVGTFMVVTNAKVGDGNASVANLFAADGGMFPKGALVMVLVLNAVIFAYNGIELVGITAGEMQNAEREVPKAIRAVVLRIVVFYVGSVTLLAMLLPSDQYVAGTSPFVTVFGQMGLAWVGDVMNMIVITAALSSCNSGLYSIGRVFRTMANNGHAPQWLTRMSKRHVPYAAILAIAAFYLVGILLNIWLGGSHAFDLALNTASIGVIFTWGAIFASQIALRHRKGVTSSLPMPGSPWASWAGLIGLLAITVLIGFDTMTSKSGDVFYLGLWTLATIPFFAVVLWLGWQKVKKNEPKNALYSPGPT0000815_400DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_03773369hypothetical proteinATGAGTACGGAATCGCCCGGCTTGGGAGTGACGTACGACGGCGGACCGGGAGCCAGTGCTCTCCACGTCCTGGGCCCGGTGGAACAGATTCCGCTGGGCGAGGGGCGGGCGTTCGCCGTCGAGGGAAAGCAGGTGGCCGTCTTCCGGCTCAGGGACGGTTCCCTGCGCGCGCTCTCCGGAGTTTGCCCGCACCGGGGAGGCCCGCTCGCCGACGGGACCATTGACCAGGAGGTGGTCATCTGCCCCCTGCACCAGCATGCCTTTGACCTTGGGACAGGCTGTTCCACCACCGGCGCCGATCCGCTGACCAGGTATCAGGTGACGTCGGACGAGGAGCAGAACATCGTCCTGCGGACCGGCCAGGTGTAAMSTESPGLGVTYDGGPGASALHVLGPVEQIPLGEGRAFAVEGKQVAVFRLRDGSLRALSGVCPHRGGPLADGTIDQEVVICPLHQHAFDLGTGCSTTGADPLTRYQVTSDEEQNIVLRTGQVPGPT0000455_1789DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
D1-29_037742547nasD_3COG1251Nitrite reductase [NAD(P)H]ATGGCGGGTCTTATGGAAAAGCCTCTGGAGAAGCCTGAGCATAAGCCTCACGAACGTGCCCATTCAGGAAAGCCCGCTTCCCGCCGTCGCTTGGTGGTGATCGGCAACGGGATGGCCGGCGCCCGCGCCGTTGAGGAAATCCTGGCCAGGGGCGGAGCCGAACAGTTCAGCATCACCATGTTCGGCGACGAACCGTACGGGAACTACAACAGGATTATGCTCAGCCACGTGCTCTCGGGGGAGGAAAGCGATGCGGACATCTTCCTCAACGCCCTCTCCTGGTACCGGGAAAACAACATCACCCTTCATTCCGGGGTCAGGGCAGAGCGGATCGACAGGTTCACCAAGAACGTCTTTTCCGACGACGGCCGGGTGACACCCTACGACGTCCTGATCATCGCCACGGGCAGCCGCTCCCACATGCCGCCCATGGACGGGTTGTACACCCCGGGCGGATCCGTCAAACCCGGCGTGTTTGGGTTCCGCACCATCGATGACACCCGCAAAATGGTCCAGCACGCCCAGCATGAACACCACAGCCGGGCGGTTGTTATCGGCGGCGGGCTCCTGGGATTAGAGGCCGCGTATGGCTTGAAAAGCCACGGCATCGACGTCGAAGTGGTGCACTCCGGCGGGCACCTGATGAACGCCCAGATGGGGCCCGACGGCGGTGCGGTGCTTCGTCGCAGTGTGGAAGCGCTCGGCATCCGGGTGCATACCGGCGGCCGCACCACGGCCGTCCTGGGAACAGACAGGGTCAGCGGCGTCAGGCTCCGTGACAAGCCGGATATTGGCTGCGACATGGTGGTGGTTGCGGCAGGCATCCGGCCCAACGTGGACCTGGCCGTGCTCAGCGGGCTGCCGGTGGAACGGGCCATCGTGGTGGATGACCAGCTCCGCGTCCAGGACGAGGACGACATCTATGCCGTGGGGGAGTGCGTGCAGCACCGAGGCGAGGTGTACGGGCTCGTGGCGCCGCTGTGGGAGCAGGCCGTGGTACTGGCCAACCACGTCACCGGCACCGACACCAGTGCTGCCTACCTGGGTTCCCGCACGGCCACCAAGCTCAAGGTGGCCGGGGTTGAAGTGGCGTCCATGGGCCTGCACGGCCCGGAACGCGAAACAGACGAGCACATTGTCTTTTCCGAGCCCAGCCGTGGCGTGTTCAAGTCCATCGTGGTCCGCGACAACAAGATGGTGGGCGCCACGCTCCTGGGCGACAGCCGCAAGGTGGCCTACCTGACCCAGGCCTATGACCGCGGGCTGCCGCTGCCCGAGGAACGGATCAGCCTGTTATTCGATCTCGGCACTCCGGGGGAGGACGTGGGCGTGGCCGAGCTGGATGACGATGCCCAGGTCTGCAATTGCAACGGCGTCAGCAAAAAGGACCTGGTGGGGGTGGTAAAGGGTGGCTGCACCTCGGTTGCCGGTGCCATGGACGCCACCCGCGCGGGCAAGGGCTGCGGCTCCTGCAAGCTCCTGGTCCGGCAGGTGGTGGAATGGGCCGCGGACGGAGCGGTGGAGGAGGATCCGGCCGCCAGCTACTACGTCCCCGGCATCCCGCTGGACAAGCCCTCCTTGATGGCGGAGATCCGCAAACGCGGGCTGCGCTCCGTCTCACAGGTGTTCCAGTCGCTCGCGCCGGGGAGCGCCGAGGATGCCAAGTCGAAAATGGGACTGGCCTCGTTGCTGAAGATGATGCTGGCGGACCAGTACATCGACGAACGCGATGCCCGGTTCATCAATGACCGCGTGCACGCCAACATCCAGCGCGACGGCACTTTCTCCGTGGTGCCGCAGATGAAGGGCGGCGTGACGTCGGTGCAGCAGCTGCGCCGGATCGCGGACGTGGCCGAGAAGCACAGGATTCCCCTGATCAAACTGACCGGCGGCCAGCGGATCGACCTGCTGGGGGTGCCCAAGGAGGACCTGCCGCAGGTCTGGGCTGACCTGGACATGCCCTCCGGCTACGCCTACGGCAAGAGCTTCCGGACGGTCAAGACGTGTGTGGGCAAGGACTTCTGCCGGTACGGCACTGGCGATTCCACCAAGTTGGGCATCGAGATCGAGTCCCGCTTCCAGGGGATTGAGTCCCCGGCCAAGCTGAAACTCGCGGTGTCCGGCTGCCCCCGGAACTGCGCCGAATCCCTGGTCAAGGACGTGGGCGTGGTGGCAGTGGAGGGCGGCCGCTGGGAGATTTACGTTGGCGGGGCCGCCGGCGCTCACATCCGCAAAGGGGACCTCTTGGCAACCGTGGATGATCCGGAGGAGGTCAAGGTCCTGACCGGCCGGTTCATGCAGTACTACCGTGAGAACGCCAACTGGCTGGAACGGACGTATGCCTTTGTCCCCCGGGTGGGCATCGAACATATCAGGGCGGTCATTGTGGAGGACTCGGAGGGGATTGCCGGCCGGCTCGATTCCGCAATGCAGGCTTCCGTGGACAATTATGTGGATCCCTGGAGCGAGCGGGACGATCCCCTTACTCCGGGCCAGTTCAGGACATCCCTGCCGCTAACGGTCCTCCCGCAGGTGCCGGTCCGATGAMAGLMEKPLEKPEHKPHERAHSGKPASRRRLVVIGNGMAGARAVEEILARGGAEQFSITMFGDEPYGNYNRIMLSHVLSGEESDADIFLNALSWYRENNITLHSGVRAERIDRFTKNVFSDDGRVTPYDVLIIATGSRSHMPPMDGLYTPGGSVKPGVFGFRTIDDTRKMVQHAQHEHHSRAVVIGGGLLGLEAAYGLKSHGIDVEVVHSGGHLMNAQMGPDGGAVLRRSVEALGIRVHTGGRTTAVLGTDRVSGVRLRDKPDIGCDMVVVAAGIRPNVDLAVLSGLPVERAIVVDDQLRVQDEDDIYAVGECVQHRGEVYGLVAPLWEQAVVLANHVTGTDTSAAYLGSRTATKLKVAGVEVASMGLHGPERETDEHIVFSEPSRGVFKSIVVRDNKMVGATLLGDSRKVAYLTQAYDRGLPLPEERISLLFDLGTPGEDVGVAELDDDAQVCNCNGVSKKDLVGVVKGGCTSVAGAMDATRAGKGCGSCKLLVRQVVEWAADGAVEEDPAASYYVPGIPLDKPSLMAEIRKRGLRSVSQVFQSLAPGSAEDAKSKMGLASLLKMMLADQYIDERDARFINDRVHANIQRDGTFSVVPQMKGGVTSVQQLRRIADVAEKHRIPLIKLTGGQRIDLLGVPKEDLPQVWADLDMPSGYAYGKSFRTVKTCVGKDFCRYGTGDSTKLGIEIESRFQGIESPAKLKLAVSGCPRNCAESLVKDVGVVAVEGGRWEIYVGGAAGAHIRKGDLLATVDDPEEVKVLTGRFMQYYRENANWLERTYAFVPRVGIEHIRAVIVEDSEGIAGRLDSAMQASVDNYVDPWSERDDPLTPGQFRTSLPLTVLPQVPVRPGPT0000450_1391DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
D1-29_03775381hypothetical proteinATGCCAGTCTCAGGCGGCCGAAAGGATCTCACTGTGATCACCAAGAACCTTTTCCTGCAGGGCATCTATCCCTTTGCCGGGGCGGGGCTGGATAAACCGGTCCCGATCCACAGCGAACTCCTGCACTACGTTCCGGACGGGGTGATCAACCAGACGCTCTACTTCCGGGGCGGGAACTCCAGCCCGGAGCTGGTCACCGTGGTGCTGATGCGGGACGGAGTGCCCATGCGGTACTTCCCGATCGGAGCCAGGAGCGATGTCCATGTGCCGCTGCGGGTGGTGGAAGACATTGAAGGCGGCTCGGTGATCGAGCTCTACCTGGTGGCCCCAGAAGGCGTCGCGGGAGCCGTGGTGATTGACCTGGGCATGGTGGAACACTGAMPVSGGRKDLTVITKNLFLQGIYPFAGAGLDKPVPIHSELLHYVPDGVINQTLYFRGGNSSPELVTVVLMRDGVPMRYFPIGARSDVHVPLRVVEDIEGGSVIELYLVAPEGVAGAVVIDLGMVEHPGPT0000390_1037DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372NANA
D1-29_037761683ettA_4COG0488Energy-dependent translational throttle protein EttAATGACTGAACACCTCAGCCTTGTGGGCGTTTCCCACGGCTACGGAGACCGCCAGCTGCTGGACAACATCAGCCTGGTCATTACCGCCCGCGAGCACGTGGCCATCGTCGGCGAAAACGGTGCCGGCAAATCAACACTCCTGCGGCTGATGGCCGGGCTTGAGGCGCCGAATGAAGGAACTGTGGCGAGCCACGGGCGGGTGGGCTACCTGGCCCAGACCCACGGACTCCCGGAATCATTCACCGTTGGCGCCGCCATCGACGAGTCCCTGGCGTCCCTGCGCGCCCTCGAGGCGGAACTTGACCGCCTGGAGACCGGGCTGGCCGAGGCCGAAGCGGACGAACTGGAAGCCTACGGCGCTTTACAGACCGAGTATCAGCTGCGCGAGGGCTATGCTGCTGAGTCCCGCGTGGAGGCAGCCCTGGACCGGCTGGGGCTGGGCGGCCTGGACCGGAACCGGGTGCTCGGCTCGCTGTCCGGCGGCGAACAGGAACGCGTTGCCCTGGCCTGCATCCTGGCGGACCCGGCCGACATCCTGCTCCTGGACGAGCCCACCAACCATCTGGACGCGCGCGGAACGGCCTGGCTGGAGGACAGGCTGGCCGACCACCGCGGCACGGTGGTGGTGGTCTCCCATGACAGGGTGCTCCTGCGGAAGGTTGCCAGCACCGTGATCGAGGTGGATGCCGAGCGCCGCTCCGTCACCCGTTACGGCAACGGCTATGAGGGCTACCTGCGGGAGAAGGCGGCCGAACGCTCGCGCTGGGTCCAGCAGTATCAGACCTGGCTGGACGCGATGGAAGCCGAACAGCGGCAGGCGGACACCGTGGCCGGAAAGATGGGCTACGCTCGCAAGCGCGACGGCGACAAGATGGGTTTCGACTTCAAGGCAGGCACCTGGCAGAAGGCGGCCACCAGTAAGGTCCGCAACGCGCAGGAGCGCCTCCGCCGGCTGGAAGCCAGCCCGGTGGACCGTCCGCCCGTCCCGCTGCGCCTTGCCGCGGAGCTCACCGTTGGTTCGGATGCGCCCCAGCTGGCGGTTCCCGTGCTCAAAGCCCGCGGCGTGGCCGTGCCGGGCCGCCTGGACCCCACGGACTTTTCCGCCGCCGTCGGGGAGAAAATTCTCATTACCGGCCCCAATGGCGCAGGCAAATCCACGCTCCTTTCGGTGCTTGCAGGCACGCTGGAGCCGGCTGCAGGGAAGGTGACGCGCCCTGCCCGGGTGGGCTACCTGCAGCAGGAGCTTGAGCTCCCGAAGCGGCCCGGGCTGCGGCTGCTCCCCGCGTTTGCCGCAGGGCTGGGTGGAAACATCGACGAGCACGCGGAGGCGCTCCTGCGCCTGGGGCTGTTCCGCACCAGTGAGTTCCATGTCCCGGTGGGTGGCATGTCCGCCGGCCAGCAGCGCCGGCTTGCTTTAGCCAGGCTTTTGCTCGGCGGCTACGGAACCCTGATCGTTGACGAACCCACCAACCACCTGGCACCGGTGCTTGTGGAGCAGCTCGAGGAGGCGCTCGCGGGCTTTGCCGGGACGCTGGTCATGGTCAGCCACGACCGCGCCCTGCGAGAGTGGTTCGCCTCCTGCGCGCGGAAGAGCGATAAGGCAAGAACGGACGACGCCGGGCGCTGGGTCAGGTACTCGATGGAGAACGGCGCGCTCGCGGAGGAAGCGCGAACGAACACTTGAMTEHLSLVGVSHGYGDRQLLDNISLVITAREHVAIVGENGAGKSTLLRLMAGLEAPNEGTVASHGRVGYLAQTHGLPESFTVGAAIDESLASLRALEAELDRLETGLAEAEADELEAYGALQTEYQLREGYAAESRVEAALDRLGLGGLDRNRVLGSLSGGEQERVALACILADPADILLLDEPTNHLDARGTAWLEDRLADHRGTVVVVSHDRVLLRKVASTVIEVDAERRSVTRYGNGYEGYLREKAAERSRWVQQYQTWLDAMEAEQRQADTVAGKMGYARKRDGDKMGFDFKAGTWQKAATSKVRNAQERLRRLEASPVDRPPVPLRLAAELTVGSDAPQLAVPVLKARGVAVPGRLDPTDFSAAVGEKILITGPNGAGKSTLLSVLAGTLEPAAGKVTRPARVGYLQQELELPKRPGLRLLPAFAAGLGGNIDEHAEALLRLGLFRTSEFHVPVGGMSAGQQRRLALARLLLGGYGTLIVDEPTNHLAPVLVEQLEEALAGFAGTLVMVSHDRALREWFASCARKSDKARTDDAGRWVRYSMENGALAEEARTNTPGPT0027935_68DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027935-tylC|oleB|carA|srmB-K18230NANA
D1-29_03777957hypothetical proteinATGAAGTACCGCCGATCCGACTATGCCAAGTACGCGACTCTCGCAACGCTTGCGCTGGCACTCACTCTCACCGCCTGCATACCGGCAGCCCTCGAAGCCAGTACTTCGATCACACCCGCAGCGTCAGAGGAAATCTCGATCCCTCCGCAGTCACCAGTTGTGCCTGTAGAGGTTAAGCTGCCTGAAGCCAGCGCTCCCAGCCAGGAAAGTGAACCGGCACAGATCACCGTTCCTGCACCCGCTGTCGTGGCTCCCGTCATTGCCACTCCTGTGAGGCAAGCGCCCGTGTCCGTGCCGGCAGCACCAAGCGTTCCTGCCCAACCCACTGTCCCCGCGCCCCAGGTCCCCACCCCACCTGCGGCACCCGTGGTAACGCCGATTACCCCCGTTGTTCCCGCAACCCCGCATGTCTCCCCCGACTACCCGCAGATCGGCACGTTCACGTTCCCTGATGGGCACATCTCCTTCCAACTGCCGGCAGGGTGGACAGTGCAAACCGAGCACCAACCCAATCTAGAAGACGATGACTACGCTGACGAGGACCACGCCGTCATTGCCAAGATCTACAACGAGATCGGCTACAACGTAGCGCGCATCGGCAGCGGTGGTTCCGGTGGTGTCGTCGCCGGACCGGTGAACCGCACCATCCTCGACTCACAGAAGCTCACCGCCTTCGAGAGCCGGGACGGTGCCTCCCACTTCGCCTTCTTCAAGGATGAATACCCCTTCGACCCCTCAACCACCCGCTACTTCATGGGTGTCGTGTCGGACGACCACATGACCGCAGGCCCCGGCAGCACCTCCGCCCATAGTTTCCTGGTCATGGACAACGGAGTAACCAACGCGGTTGCCCACATCGACGTTGCCATGTCCCCCGAAACCGCGGCGACGTGGATGAAATCGGTCCAGTACAGCAATCTGAAGGCCCTGTTCACCAGCATCAAGTACGCGGACTAGMKYRRSDYAKYATLATLALALTLTACIPAALEASTSITPAASEEISIPPQSPVVPVEVKLPEASAPSQESEPAQITVPAPAVVAPVIATPVRQAPVSVPAAPSVPAQPTVPAPQVPTPPAAPVVTPITPVVPATPHVSPDYPQIGTFTFPDGHISFQLPAGWTVQTEHQPNLEDDDYADEDHAVIAKIYNEIGYNVARIGSGGSGGVVAGPVNRTILDSQKLTAFESRDGASHFAFFKDEYPFDPSTTRYFMGVVSDDHMTAGPGSTSAHSFLVMDNGVTNAVAHIDVAMSPETAATWMKSVQYSNLKALFTSIKYADNANANANANA
D1-29_03778861mntB_3Manganese transport system membrane protein MntBATGCTGCTGGAACCGCTGAGCTACGACTTTATGGTCCGGGCCATCATCACCACGGCGCTCGCCGCCGTTGTGTGTGCGGTCCTGAGCTGCTGGCTGGTGCTGATCGGCTGGTCCCTGATGGGCGACGCCGTCTCCCACGCCGTGCTCCCGGGGGTGGTCCTGGCGTACATCGTGGGGGCTCCGTTTGCCCTGGGCGCCCTGGTGTTCGCGCTGATCGCCGTGACGCTGATCGGGGTGGTCCGCAACACCAGCCGGGTCAAGGAGGACGCCGCCATCGGCATTGTGTTCAGCTCGCTGTTTGCGCTGGGCCTGGTCCTCATCTCGGTCACGCCCAGCCAGACGGACCTGAACCACATCATCTTCGGCAACCTGCTGGGCGTCAGCGTTCCTGACCTCATCCAAGTTGTGGTGTTGGGCGTGGTGGCGTTCGCCATCCTCATCCTGAAACGCCGTGACCTCACCCTCTACGCCTTTGATCCCACTCACGCCCACGCCATTGGACTTTCCCCGAAACGGCTCGGCGCGCTGCTCCTTGGCCTGCTGGCGCTGACGTCGGTAGTGGCGCTGCAAACCGTGGGTGTGGTGCTGGTGGTGGCCATGCTGATCATCCCCGGCGCCACGGCCTATCTGCTGACTGACCGCTTCTCCCGGATGCTGGTTATCGCCCCCGCTATCTCGGCGGCCTGCTCCATCGCCGGAATCTACCTCAGCTACTACTTGGACACCGCGTCCGGCGCCATGGTGGTCCTCACCCAGGGTGCGGTGTTCGCCGTCGTCTATCTCTTCAGTCCCAGGCAGGGACTGATTGGTACCCGGCTCGCGAAGGCCCGCCGCAAGAAGGCTGCCGTCCTCGCCGTCTGAMLLEPLSYDFMVRAIITTALAAVVCAVLSCWLVLIGWSLMGDAVSHAVLPGVVLAYIVGAPFALGALVFALIAVTLIGVVRNTSRVKEDAAIGIVFSSLFALGLVLISVTPSQTDLNHIIFGNLLGVSVPDLIQVVVLGVVAFAILILKRRDLTLYAFDPTHAHAIGLSPKRLGALLLGLLALTSVVALQTVGVVLVVAMLIIPGATAYLLTDRFSRMLVIAPAISAACSIAGIYLSYYLDTASGAMVVLTQGAVFAVVYLFSPRQGLIGTRLAKARRKKAAVLAVPGPT0004345_126DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004345-mntB1-K11602NANA
D1-29_03779771mntB_4COG1121Manganese transport system ATP-binding protein MntBATGATTACCATGAACAAACCAGCCATCCTCGTGGAGAACGTGACCGTCCACTACGGTCAGGTCCTGGCGCTTGACTCCGCCTCCCTCACACTGGATGCTGCCCGGATCTGCGGCCTGATCGGCATGAACGGTTCCGGAAAGTCCACGCTGTTCAAAGTCATTATGGGGATGATCAAGCCCGACGCCGGCCGTGTCCTGATCAACGGCCAGTCACCTTCCAGGGCGCGTAAGGAGGGCGGGATTGGCTACGTGCCGCAGAGCGAGGATGTGGACTGGCAGTTCCCGCTTTCTGTCCGCGATGTGGTGATGATGGGCCGCTACGGGCACCAGGGGTTCACCCGGCGCCCGTCGAAGGCGGACCGCGCCGCCGTCGACGAAGCACTGGACCGGGTGGAACTGGGGGAGTATGCCGGCCGCCAGATTGGGCAGCTCTCCGGCGGCCAGAAAAAGCGTGCCTTTGTGGCCCGCGGAATTGCCCAGGGCGCCACCATGATGCTCCTGGACGAGCCCTTTGCCGGCGTGGACAAACGCTCCGAGGCCACCATTACCAGGCTGCTGCGCGAACTCGCCGCGGACGGCTGCACCATCCTCATCTCCACCCACGATCTGCACGCCCTCCCGCAACTGTGCGACGAAGCCGTGCTGCTCATGCGCCGGGTCCTGATGCACGGTGCGCCCGAACTGGTGCTGCAGCCCGAGAACCTGGCGATGGCGTTCGGCCTGGACGTCCTGAACCGCGACAAGCCGGCACGCACCGAAAGCAGGGGCTGAMITMNKPAILVENVTVHYGQVLALDSASLTLDAARICGLIGMNGSGKSTLFKVIMGMIKPDAGRVLINGQSPSRARKEGGIGYVPQSEDVDWQFPLSVRDVVMMGRYGHQGFTRRPSKADRAAVDEALDRVELGEYAGRQIGQLSGGQKKRAFVARGIAQGATMMLLDEPFAGVDKRSEATITRLLRELAADGCTILISTHDLHALPQLCDEAVLLMRRVLMHGAPELVLQPENLAMAFGLDVLNRDKPARTESRGPGPT0004340_59DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004340-mntA1-K11603NANA
D1-29_03780942COG0803putative periplasmic iron-binding proteinGTGGCGTCCCGCGCCATCGGTGCCGCCGCCGTCGTCCTCCTGTCCCTTTCCCTGGCCGCCTGTGGCGGCGCCGCACCCGGCGACACGTCCGCCAACGGTGACGGGGAGAAACCCGTGGTGCTGACCACCTTCACTGTGCTGGCGGACATCGCCCGCAACGTCGCAGGGGACAAGCTGACCGTGGAGTCAATCACCAAGGCTGGAGCCGAAATCCACGGCTACGAGCCCACGCCCGGCGATATTCGCAAGGCCTCCAAGGCGGACCTGATCCTGGACAACGGGCTGAACCTGGAGGCCTGGTTCGGGCAGTTCGTGGAGGGCCTGGACGTTCCCCATGCCGTGGTGAGCGACGGTGTCCAGGCGATGTCCATCAGCGAGGATTCCTACCAGGGAAAGCCCAACCCGCACGCCTGGATGTCCCCGGTGAACGTCCAGATCTATGTGGACAACATGGTGAAGGCCTTCTCCGAACTGGACCCGGATAATGCCGGGGAATTCCGGAGCAACGGTGACGCCTACAAAGCCGAGCTGCAGGCTGTGCAGGACGAGATGAGATCGAGCCTCGCCGGCGTGCCGGCGGCGCAGCGCGCCCTGGTGACCTGCGAAGGCGCCTTCTCCTACCTTGCCCGCGACGCCGGCCTGCACGAGGTTTACATCTGGGCGGTCAACGCCGAGCAGCAGGCCACGCCGCAGCAAATCACCCGGGCCATCCAGTACGTCAAGGCCAACAAGGTCCCCGCAGTCTTCTGTGAATCCACCGTCTCAGACGCGCCCATGCAGCAGGTTGTGGGCGCCACCGGCGCCAAGTTCGGCGGGACCCTGTACGTGGATTCGCTCTCCGAAGCCGACGGTCCCGTTCCCACCTACCTTGACCTCATCCGCCACGACGCCCAGGTCATCACTAAGGCGCTTACAGGGGCGTCCACTACTGCAGCACAATGAMASRAIGAAAVVLLSLSLAACGGAAPGDTSANGDGEKPVVLTTFTVLADIARNVAGDKLTVESITKAGAEIHGYEPTPGDIRKASKADLILDNGLNLEAWFGQFVEGLDVPHAVVSDGVQAMSISEDSYQGKPNPHAWMSPVNVQIYVDNMVKAFSELDPDNAGEFRSNGDAYKAELQAVQDEMRSSLAGVPAAQRALVTCEGAFSYLARDAGLHEVYIWAVNAEQQATPQQITRAIQYVKANKVPAVFCESTVSDAPMQQVVGATGAKFGGTLYVDSLSEADGPVPTYLDLIRHDAQVITKALTGASTTAAQPGPT0004350_20DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MNT1_TRANSPORT_SYSTEM,PGPT0004350-mntC1-K11601NANA
D1-29_03781687hypothetical proteinGTGGGCCTTTACGTCGGCCTGGCTGCCTTCATCGCCCTGGCCGGGCAGCTGCTGCTGCCACTCCTGCGCCAGCTCGGACCCTCCCGGCTGGCCGCTTCATATGGCCTGACTTTTGTTTATTTTGCAACGGTCGCGGTGCTGGCCCTGCTTGCTGCGCGCAGGGTAGTGGCCAGGGACCTCCGGGTGCTGGCCACCCGCCCGTGGTTCACCTTGTTCATTGTGCCCGCCACTGTAGTGGCCATGCTTATTTTCACCAGCCTGGTGGCGGCGGCAGTCGGTGGAACGGAGACTTCAGAGAACGAGGCCGTGTTCAAGGAGCTGATGCAGCGGTTCCCCATTTGGGTTACGGCTCCCCTGGTTGTGGTGATTGTCCCGTTCGTGGAGGAGTACCTCTTCCGTCACCTGCTGATCGGCAAGCTGAGCCGGCGGGTCAACATCTGGTTGTGCTCCGTAGTATCCGCGGTTCTCTTTGCCGTCCTGCATATGGTGGGCCAGGACGCTATCACTGTCGCAGTGTTGCTGCCTTACCTGGCAGCGGGCAGCGTGCTGGTTCTGGTGTATCTGTGGACGGGTAAGAATTTGATGTTCGCCTACTTCGTGCATGCCGCCAATAACCTGCTTGCCCTCGTCATCGCCTACGCCATTCCGCCCGAGGTCTACGAGCAAATCCAGCAGGTGCAGCCTTAGMGLYVGLAAFIALAGQLLLPLLRQLGPSRLAASYGLTFVYFATVAVLALLAARRVVARDLRVLATRPWFTLFIVPATVVAMLIFTSLVAAAVGGTETSENEAVFKELMQRFPIWVTAPLVVVIVPFVEEYLFRHLLIGKLSRRVNIWLCSVVSAVLFAVLHMVGQDAITVAVLLPYLAAGSVLVLVYLWTGKNLMFAYFVHAANNLLALVIAYAIPPEVYEQIQQVQPNANANANANA
D1-29_037821827hypothetical proteinATGTTGAACGAACAGCAGACGGATTCGGCCATCGATACCGTTTTTCTTCGCCGGGTGGTGGATGAAGCGGACAGGCATGTTGGCACCCTCCTTGAAACGTCCAACGGCGGTGTTGCGGCTCTTCCGCACCGCGGCGCCATGAGCCGCCTGCTGGCCCTGGTGACGGTTTTTTCCGAGCCGGGGTCCGCCTATTACGGTCAATCAGGGCTGCAGGAACCGATGGGGAGATGCCTGGACCGGCTTGAACGCCTCCAGGGCCCGGCCGGCCTTTTTGACGGCACCAACCTGAGCTCCCCGCCGGACTCGGCCTTCACCATCAATGACGCCTGCCTGGCCCTGGGCCTGATGGACTCCCTGGCGGGCGGGGCGCAGGCCGGCGGGGTGCAGGGTGGCGTTTTGTGGGACGGCGTTTGGCGGGACGTCCGCAGCAGGCTCAGGCTGATCGTTGCCCGTGCCACGGCGTCCCTGGTAGACGGCGGGGTCCACACCCCCAACCACCGTTGGGAACTCTCTGCCGCTCTGGCCCAGATCCATCAGCTCCAGCTCCGCGAGGATGCGCCCCAGCCGGAGATAGAGGCCCGCATCGGGCAATGGCTTGCCGAAGGGATCGACCAGCTTCCGGACGGCATGTATTCCGAACGCAGCCCCCTGTATGCCACGGCGGTGACCAACCCGTCGCTCCTGACCATCGCAGACAATGCCGGCAGGCCCGATCTGCTGGACCATGTCCGCCGGAACCTGGCAGCCTTCCTGCCCTGGTTCAATCCGGACGGGAGTGTGGAATCCGTCTTCTCGAGGCGCCAGGACCAATGGCTGACCTTTGACGCTACCGTCTTCCTGATGCTTTACCGCCGGCTGGCCAACCAGGACGGGCGGGAAGACTTCACCGCCGCCGCCCGCTGGCTGGAGCAGTTCCCGCTGCACGGACCTGACAAACTGCTCGCTCGGATGCGGCTGGATCCCTGGCTGACGAAAACCCTGCCCGGCGCGGGGGCGGATGCGGGCGCGGGCGATATGGCCGCGCACGCTGGCGCCTACGATCCATTGCCGGACGCACTGGCCCCCGCTGAGGCCTCGCTGGACAGCTGCGGCCTGTACCGGTTCCGAAGAGGGGAGACAGTTACCACCGTTTATGGCGGGTGCGACGAGCTGGTGCCGGGTGTGGTTTCAGGGCTGTCCGCCAACCCCACGTTCCTCCGCCTAGAACATGGCGCGGCGGTCCTGAGCGATGTCCGGCTGTCACGGAGCTTCTTTGATCTCGGCCCGTTCCGGAGCCAGGAGACGGCTGCCGGGGGGAATTCCACGGTATCGCTGTCCGAAAGCCTTGCCGCCAACTTCTATCTGCCGCTTCCACCGGAGAAGCAGCGCGGCGACGGCATCTACAGCCTCACCCACGAGGGCCGCTTCAGTGCCAGCATGGACTTTGCCAGCCGGCCGGCGGTGGTTCACAGCCTCGCCACGGCTGTTGCGGTCCAGGTCAGCGGGAATGAAATCGTCCTGGAGATCGGCTTTGACGGCGTTGACACGTCCTTCGCCCTGGAACTGACATTCAGGCCGGGGGGCGAGCTTGACGGTGTTGAGCCTGCCGGAAGTCCCGATGCCTTCCAGCTCGTGGAAGGAACAGGCAGTTACCGCGTAGGCGGGCACGTCATCGAGTTCGGTCCGGGCAACGCAGCGGACCCCGACAACCCGCCGGTGTACAACCCCGGGGAGGCCTACCGCTACCTCAATCGAACGAATGCAACGGAAGGGGTGAAGGTCTACATCACAGGCCGGACCCGGGGCAGCCACACGTTCACCCTGCGCGGGATCTCCGTTTCCTCCTAAMLNEQQTDSAIDTVFLRRVVDEADRHVGTLLETSNGGVAALPHRGAMSRLLALVTVFSEPGSAYYGQSGLQEPMGRCLDRLERLQGPAGLFDGTNLSSPPDSAFTINDACLALGLMDSLAGGAQAGGVQGGVLWDGVWRDVRSRLRLIVARATASLVDGGVHTPNHRWELSAALAQIHQLQLREDAPQPEIEARIGQWLAEGIDQLPDGMYSERSPLYATAVTNPSLLTIADNAGRPDLLDHVRRNLAAFLPWFNPDGSVESVFSRRQDQWLTFDATVFLMLYRRLANQDGREDFTAAARWLEQFPLHGPDKLLARMRLDPWLTKTLPGAGADAGAGDMAAHAGAYDPLPDALAPAEASLDSCGLYRFRRGETVTTVYGGCDELVPGVVSGLSANPTFLRLEHGAAVLSDVRLSRSFFDLGPFRSQETAAGGNSTVSLSESLAANFYLPLPPEKQRGDGIYSLTHEGRFSASMDFASRPAVVHSLATAVAVQVSGNEIVLEIGFDGVDTSFALELTFRPGGELDGVEPAGSPDAFQLVEGTGSYRVGGHVIEFGPGNAADPDNPPVYNPGEAYRYLNRTNATEGVKVYITGRTRGSHTFTLRGISVSSNANANANANA
D1-29_03783918araQ_13COG0395L-arabinose transport system permease protein AraQATGGCAACAGCTGCCAACCTGCCTCCCGTCTCGGACGAAGTGGCCGTCATCGGGGCCGAAGAAGCCGCCCGCACCGCGGACCAGCGGAACATGCGGAACGGGCGGACCAAACTGTCCGCGCCGCTGACGGGCCTCATGTGGCTGATCGTCGCCATCTACGCGCTGCCGCTGCTGTGGTTCATCCTCAGTTCCTTCAAGCCGGGCAGCGAATTGTTCACGTATCCGCTGTCCATGATCCCGAGGGAATGGACCTTCCAGGGCTTTGTTGACGCTTGGGAGCGCGTGGACTTTGCCCAGTATTTCCTGAACACCGCCACCGTGGCGCTGGTCACCACTGTGCTGACCGTCTTTTTCAGCGCCTGCACAGGCTATGCCCTGGCCAAGTACAACAACCCAGGCACGCGCCTGTTCTTCGTGTGCATCCTGGCAACCACCATGCTGCCCACCGAGGTGATCCTGAACCCCACGTTTACCGTGATCCGGGATCTGGGCCTGTACAACTCGCTGTCGGGCATCATTGTGCCCTCAGTGCTCACGGCCACAGGCGTCTTTATGTTCCGCCAGTTCTTCCTGACGGTCCCCGATGACCTCCTGCATTCAGCCCGGATTGACGGTGCCAGCGAGCTGACCATCTTCTTCCGGATCATGCTGCCGCTGTCCCGGCCCATCCTGTTCACGCTGGCTATCTTTTCGTTCCAGTGGCGCTGGAATGACTACATCTGGCCGCTGATCGTGCTGAACGATCCCAAGTGGTACACCCTCCAGGTGGCTCTGCGGAGCATCGTGGGCGCCGAGAACATCGACTGGCCCGTCCTCCTCGGCGCGTCGGTGATCTCCATCCTGCCGCTGGTCCTGGTGTTCTTCGTGTTCCAGAAATACGTCCTCAACGCCGACGTCAGCGCCGGCCTGAAGGACTAGMATAANLPPVSDEVAVIGAEEAARTADQRNMRNGRTKLSAPLTGLMWLIVAIYALPLLWFILSSFKPGSELFTYPLSMIPREWTFQGFVDAWERVDFAQYFLNTATVALVTTVLTVFFSACTGYALAKYNNPGTRLFFVCILATTMLPTEVILNPTFTVIRDLGLYNSLSGIIVPSVLTATGVFMFRQFFLTVPDDLLHSARIDGASELTIFFRIMLPLSRPILFTLAIFSFQWRWNDYIWPLIVLNDPKWYTLQVALRSIVGAENIDWPVLLGASVISILPLVLVFFVFQKYVLNADVSAGLKDPGPT0017270_133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017270-aguG-K17243NANA
D1-29_03784945araP_3COG1175L-arabinose transport system permease protein AraPGTGGCTACTCCAACCAGGGGATCCACGCTGACGCCTGAGACGCTCCGCACGCCGGCCGTGCGGAGCAAGTCCCAGCAGAAGCGCCACAACCGCTACGTCATTGCCCCGCTGATCCTCATCGGGGTCAACGTGGTGCTCTTCCTCGTGTTTTTCGTCTGGCCCGGGGCCTTGGGCCTGATCTACTCATTCACGGACTACCGCGGTGTGGGCAGGCTGAACTTCATTGGCTTGGCCAACTTCCAGAAGCTCTTCGCGGACAGCACGTTTTACGCTGCACTGACCCGCACGTTCCTCTACACCCTGCTGTCGGTGCCGCTGATCTACGTTTCCTCCCTCGGCGTTGCGGCCCTCCTTGTGAGCAGGGCCGTCAGGGGGCGGACCGCTGCCAAGATCGTGATCTTCCTGCCCTGGCTGATCTCCCCGATTGTGGTGGGTGTCATCTGGAAATGGATGTTCGGACAGGACTTCGGGTTCGTCAACTTCGTGATCTCCGCCCTGGGTGGAAGCCCGTTGCCGTGGTCCAGCAACGCCAACCTGGCCCTGACCGTGGTGATCTTTGCCGCGGCCTGGGGCGGAACCGCCTTCAACATGCTCCTGTTCATCGCAGCGCTGAAGAACATTCCCGAAGCCTTGCTGGAGGCTGCCGAACTGGACGGGGCCAACGCCTGGCAACGGTTCCGGCATGTGACACTGCCCGGCATCGCCCCGACGTCGTTCATGGTCATCCTGCTTTCAACGATCCATGCGATGAAGGAATTCGCCATGATTCAGGCGCTGACCAACGGCGGTCCCGGCACGGAGAACGTCCTGATCGTCCAGTACATCTACAAGACCGGCTTTGAGCAGTCCAAGGTGGGTTACGCCAGCGCCGCGTCCATGGTGCTGATGGTGGTCCTGCTGGCTATCGCGCTGATCCAGCTTCGCTTCAACAAGAAGAAGGGCTGAMATPTRGSTLTPETLRTPAVRSKSQQKRHNRYVIAPLILIGVNVVLFLVFFVWPGALGLIYSFTDYRGVGRLNFIGLANFQKLFADSTFYAALTRTFLYTLLSVPLIYVSSLGVAALLVSRAVRGRTAAKIVIFLPWLISPIVVGVIWKWMFGQDFGFVNFVISALGGSPLPWSSNANLALTVVIFAAAWGGTAFNMLLFIAALKNIPEALLEAAELDGANAWQRFRHVTLPGIAPTSFMVILLSTIHAMKEFAMIQALTNGGPGTENVLIVQYIYKTGFEQSKVGYASAASMVLMVVLLAIALIQLRFNKKKGPGPT0017265_137DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017265-aguF-K17242NANA
D1-29_037851278hypothetical proteinTTGTCAGAGCAGACAAGAATCTCCAGCATCAGCCGCAGGCAGTTCGGACTGACGGCGTTTGGCCTTTCGGCCCTTGCCGCGGGGCTTACCGCTTGTGGAAGCGGCGGCGGAGGGGGCACGGCAGATCCTTCAAAGCCCCTTCAGCTGATCCTCTCCGGCGATACCAACCAGGGCGGCGCGTTTGCGGCAGCCGCCAAGAAGTACAAGGAAGCCACCGGCATCACCATCGAAGTGGTGGACGTCCCCACGGCGGACATCACCACCAAGCTCAAGAACGCCGCCACCGCCAACGACCTGCCGGCCCTGGCGCGTGTGACCAGCATTGACCCGCTGTGGGTCAACCAGCTCCAGGACCTGACAGACATCGCCAAGTCCCGGAACATCGACGAAAAGTTCCTGCAGGAGGCCCCGGACGGAACCATTCCGGCCATCCCCTCCGACCTCACCGCCGTCGGACTGTTTGTAAACAAGAGCCTCTTCGACAAAGCCGGCGTGGCCTACCCCTCCGCTCTTGAGGACGCCTGGACCTGGGATGAGTTTGTTGCGGCCGTCACGGAGGTCCGCGAGAAGGCAGGCGCCAAGTACGGCGTGGTCATGGACCGGTCCGGCCACCGCCTGCGCGCCATGATGTACGAGTTCGGCAGCAGCGCCTTCGCCAAGGAAGGCGACAAGTACGCCGGCGACGACAAGGCCGTGGAAACGCTGGAGTACTTCCAAAAGATCAACGACGACAAAACCATGCCGAAGTCCGTCTGGCTCAGCGGCGAAGACGGCAACGCCATGTTCAAGAGCGGCCAGGTGGCGGCGTACTACTCCGGCAGCTGGCAGGTTGCCGACTTCAACAAGAACATCAAGGACTTCGAATGGCTTTCCGTGCCGCTGCCCAAGAAGGAAGTCAGCGCCACTAACCTCGGCGGCGGCTTCATGGTCGCCTTCAAGGACACCGGCGCCGACGAGGAAGCCAAGAAGTTCATCGAGTGGTTCTACGATGACGCCAACTACACGGAGTTCGCTAAGCTCGGCGGCTACCTGCCCGTCAAGGCAGACCTGAAGGTGGAGTACCCGTTCCAGCAGGCCTCTTTCGAGCTGTACCAGAAGCAGATCGCCGGCAATGAGGCAAAGGGTGACAATGCCATCAAGCGGGTGGTGGCCGAAGCATACGCCGAGACCCCGTTCTCCGGGGACCCGCTGCGTGAGGAAACCGTCAAGATGCTCGGCGGCAGCCAGGACGCCAAAACCACGGTGGATAACATCGTGAAGCTCTACAACGGCGGCTAAMSEQTRISSISRRQFGLTAFGLSALAAGLTACGSGGGGGTADPSKPLQLILSGDTNQGGAFAAAAKKYKEATGITIEVVDVPTADITTKLKNAATANDLPALARVTSIDPLWVNQLQDLTDIAKSRNIDEKFLQEAPDGTIPAIPSDLTAVGLFVNKSLFDKAGVAYPSALEDAWTWDEFVAAVTEVREKAGAKYGVVMDRSGHRLRAMMYEFGSSAFAKEGDKYAGDDKAVETLEYFQKINDDKTMPKSVWLSGEDGNAMFKSGQVAAYYSGSWQVADFNKNIKDFEWLSVPLPKKEVSATNLGGGFMVAFKDTGADEEAKKFIEWFYDDANYTEFAKLGGYLPVKADLKVEYPFQQASFELYQKQIAGNEAKGDNAIKRVVAEAYAETPFSGDPLREETVKMLGGSQDAKTTVDNIVKLYNGGPGPT0017260_105DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALPHA-1|4-DIGALACTURONATE_TRANSPORT,PGPT0017260-aguE-K17241NANA
D1-29_03786441hypothetical proteinATGGGACTGAACATTCAGATTGTCACCGACTGCAGTAACCCGCACCAGCTCGCTGATTGGTGGGCCGAAACGCTTGAATGGGAGGTGGAGCCGCAGGACGAGGCCTTCATCAGGTCAATGATCAACCAGGGGTTTGCCACGGAGGACCAGACGCTGGTCCACAAGGGCAAGCTCGTCTGGCGCGAGGGCTGCGCCATCCGGCCGCCGGAGGAGCTCGAGGCGGCCAAGCCCACCAGGCGCCTCCTCTTCCAGACTGCACCCGAAGGAAAGACCGTCAAGAACCGGGTGCACTGGGACGTGGACCTGGACGGGCGGGACAAGGATGAGGTAAGAAAGGCACTCGAAGCCCGGGGAGCCACATTCCTTTGGACCGCAAGCCAGGGCCCGCATTCCTGGCACACCATGGCGGACCCCGAGGGCAACGAGTTCTGCATCAGCTGAMGLNIQIVTDCSNPHQLADWWAETLEWEVEPQDEAFIRSMINQGFATEDQTLVHKGKLVWREGCAIRPPEELEAAKPTRRLLFQTAPEGKTVKNRVHWDVDLDGRDKDEVRKALEARGATFLWTASQGPHSWHTMADPEGNEFCISNANANANANA
D1-29_03787969menB_3COG04471,4-dihydroxy-2-naphthoyl-CoA synthaseGTGAGCAACCAATTCCCCGCCAAGGTGTCCGACGTTTTTGATCCTTCCCGCTGGCGCACCGTGTCCGGCTTCGACGACTTCCAGGACATGACGTACCACCGCCAGGTGGAACGGGGAGCCGACGGCTCGGTGATCAGGGACCTGCCCACGGTCCGGATCGCGTTCAACCGTCCGGAGGTGCGCAACGCCTTCCGTCCCGGCACCGTGGATGAGCTCTACCGCGCCATGGACCACGCCCGGATGACGCCGGACGTCGCCACCGTGCTGCTCACCGGCAACGGACCTTCGGAGAAGGACGGCGGCCACTCGTTCTGCTCGGGCGGGGACCAGCGGATCCGGGGCCGTGACGGTTACCGGTACGTAGTACAAGACACAGGCGATGGCGAGACGACGGAAACCATCGATCCCGCGCGTGCCGGCCGGCTCCACATACTGGAAGTCCAGCGGCTCATGCGCACCATGCCCAAGGTGGTCATCGCCGTCGTCAACGGCTGGGCGGCCGGCGGCGGGCACTCCCTGCACGTGGTCTCGGACCTCACCATCGCCTCCCGCGAGCACGGCAAGTTCAAGCAGACAGATGCCACCGTGGGCAGTTTCGACGCCGGCTATGGCTCCGCGCTGCTGGCCCGCCAGATCGGCCAGAAGGCCGCCCGGGAGATCTTTTTCCTGGCCCGTGAATATTCCGCTGAGGACATGGTTCGGATGGGCGCCGTGAACGAGGCCGTGGACCACCACCGACTGGAGGACGTTGCACTGGAATACGCGGCTGACATCGCCCGCCAGTCCCCCCAGGCCATCCGCATGCTCAAGTTCGCCTTCAACCTCGCCGACGACGGCCTTGCCGGCCAGCAGGTCTTCGCAGGCGAGGCCACCCGGCTTGCCTACATGACGGACGAAGCCGTGGAAGGCAAGGAAGCGTTCCTGGAAAAACGCGACCCCGACTGGTCCCGTTTCCCGCACTACTTCTAAMSNQFPAKVSDVFDPSRWRTVSGFDDFQDMTYHRQVERGADGSVIRDLPTVRIAFNRPEVRNAFRPGTVDELYRAMDHARMTPDVATVLLTGNGPSEKDGGHSFCSGGDQRIRGRDGYRYVVQDTGDGETTETIDPARAGRLHILEVQRLMRTMPKVVIAVVNGWAAGGGHSLHVVSDLTIASREHGKFKQTDATVGSFDAGYGSALLARQIGQKAAREIFFLAREYSAEDMVRMGAVNEAVDHHRLEDVALEYAADIARQSPQAIRMLKFAFNLADDGLAGQQVFAGEATRLAYMTDEAVEGKEAFLEKRDPDWSRFPHYFPGPT0009385_303DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009385-menB-K01661NANA
D1-29_037881224menE_32-succinylbenzoate--CoA ligaseATGACTTTCGAACCCATGAATCCAGGCCCCATGAACGCTGGCCCCGTGGACATCGACCCTGCTCTCAAGGCACTCGCAGCTGCGCTCCATGGCGAGGGCCCCGCCGTCGAACTTTCCATTGGCCCTACCGGGAACCTGGTGGTGGGACACGTTGAGACCCCCGGCTGCGACGACGCCGTCGCCGTGGTCCGCACGTCCGGATCCACCGGCGCCCCCAAAGCCACCATCCTGACGGTGGAGGCCCTGGCGTCGTCCTCCATGGCAACGGCCCTGGCACTGCGGGGCGAAGGCCAGTGGCTCCTGGCGCTGCCCGTGCAGTATGTCGCGGGGCTGCAGGTCCTGGTGCGCTCGCTGTTTGCAGGCACGCGTCCATGGGTGATGGACATGTCCGAAGGCTTCACGCCGGAGGCCTTTACCGCCGCCGCGCTGGAGCTGACGGACAAGATAAGGTTCACGTCGCTTGTGCCCACCCAACTGCAGCGGCTGCTGTCCTCGCCGGCTCCCGAGACGCTGGCTGTGCTGCGCCGCTTCAACGGCATCCTGCTCGGCGGCGCCCCGGCGTCGGCGGAACTGCTGGAGGCAGCACGTCAGGCCGGAGTCCGGGTCATCACCACCTACGGCTCGGCCGAAACCTGCGGTGGCTGCGTGTATGACGGCGTGCCGCTGGAAGGGGTGAACGTCCGGGTGGAGGAGGACGGCCGCATCCTCCTGGGCGGTGACACGATAGCCGCCGGCTACCTTGACTCGCCTGAAGGCACCGACACGTTCTTCGAGGAGGACGGCGTGCGCTGGTTCCGTACCAGCGACCTGGGCATCCTTGATGCTGACGGACGGCTGACGGTGCTGGGCCGGGCCGACGACGTCATCGTCACCGGCGGCGTGAAGGTTTCGGCCGCGCACGTCCAGGCTGAGCTGGAAAAGTCCGACGGCGTCCTGGCGGCTTTTGTGGCCGGCGTCCCGTCAGCGGAATGGGGCGAGGCCGTGGCCGCGTATGTCGCACTGGCCGGACATCCTGCCGGACATCCCGCCGGGTCTGCCAGCGCGGGTGACGATCACGGCGCCGGGGATCCCGCCGTCGTCCTCGAGCAGGAGTGGCGCCAGGCCCTGGGACTCCTCGCCCCCAAGACAGTGCTCGCCGATTCGGCGCTTCTTATGTTGCCAAATGGGAAGCCGGACCGCCTGGCTATGACGGAGCGGCTCAACGCTTTGCATCAGGGAAAGTAGMTFEPMNPGPMNAGPVDIDPALKALAAALHGEGPAVELSIGPTGNLVVGHVETPGCDDAVAVVRTSGSTGAPKATILTVEALASSSMATALALRGEGQWLLALPVQYVAGLQVLVRSLFAGTRPWVMDMSEGFTPEAFTAAALELTDKIRFTSLVPTQLQRLLSSPAPETLAVLRRFNGILLGGAPASAELLEAARQAGVRVITTYGSAETCGGCVYDGVPLEGVNVRVEEDGRILLGGDTIAAGYLDSPEGTDTFFEEDGVRWFRTSDLGILDADGRLTVLGRADDVIVTGGVKVSAAHVQAELEKSDGVLAAFVAGVPSAEWGEAVAAYVALAGHPAGHPAGSASAGDDHGAGDPAVVLEQEWRQALGLLAPKTVLADSALLMLPNGKPDRLAMTERLNALHQGKPGPT0009380_1310DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009380-menE-K01911NANA
D1-29_03789882menACOG15751,4-dihydroxy-2-naphthoate octaprenyltransferaseGTGGCCACAGCCGCACAATGGATCCAAGGCGCCCGCCTCCGCACTTTGCCGGCGGCGATCGCCCCCGTACTGATCGGCACCGCCGCTGCATTCGAAATGGATTCGTTCCGCCCGGTCAATGCCGTGCTGGCCGCCCTGGTGGCGCTCCTCCTGCAGATCGGCGTGAATTACGCCAACGACTACTCAGACGGAATCCGCGGCACGGACGAGGACAGGGTCGGCCCGCTGCGCCTGGTGGGCTCAGGCGCTGCCCGCCCCGAACAGGTCAAATATGCGGCGTTTGGTGCGTTCACGGCGGCCATGGTGCTGGGTCTGGCGTTGGTGATCATCACGCAGAGCTGGTGGCTGATCCTGGTGGGAGTAGGGTGCGTCCTGGCTGCCTGGGGCTACACCGGCGGCAAGAACCCTTATGGCTACAAGGGCCTGGGCGATGTGTTTGTGTTTGTGTTCTTTGGCCTGGTGGCCACCCTGGGCACCACGTACACGCAGGCCGGGCAGATCAACCTGGCGTCCATCATCGGCGCCATCGGGACCGGGCTGATTGCAACGGCGCTACTGATGGCCAACAACGTCCGGGACATTCCCACCGACATGCGGGCAGGCAAGAAGACCCTCGCTGTCAGGCTGGGTGACAAGCATGCCCGCGAAAGCTACGTGCTGATGCTGGCCATTGCGATCCTGCTGGTGATCATCCTGGCCCCGGGACGGCCTTGGATGCTCATTGTCCTGCTGCTCATTCCGGCCTGCCTGATGCCGGCCTGGCTCATGATTAATGGCCGCAAGCGCAAAAGCCTGATTCCGGTGCTCAAGCAGACCGGACTGATCAACCTCGGCTACAGCGTGCTTTTCTCGCTGGGCCTTGCCCTCAGCCACGGGTTCTAGMATAAQWIQGARLRTLPAAIAPVLIGTAAAFEMDSFRPVNAVLAALVALLLQIGVNYANDYSDGIRGTDEDRVGPLRLVGSGAARPEQVKYAAFGAFTAAMVLGLALVIITQSWWLILVGVGCVLAAWGYTGGKNPYGYKGLGDVFVFVFFGLVATLGTTYTQAGQINLASIIGAIGTGLIATALLMANNVRDIPTDMRAGKKTLAVRLGDKHARESYVLMLAIAILLVIILAPGRPWMLIVLLLIPACLMPAWLMINGRKRKSLIPVLKQTGLINLGYSVLFSLGLALSHGFPGPT0009395_2274DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009395-menA-K02548NANA
D1-29_03790369hypothetical proteinGTGGCCTTTTTGAAATATTCCCTGATCCGTCTGGCGCTCTTCGCGCCGCTCTTCCTGCTCTTCTATTTCCTGGGGCTGGGTGCGCTGATGTCCGTCGTCTGCGCGGCCCTGATCGCGTTCGCGGTGAGCTACCTGTTCTTCCAGAAACAGCGGGATGAGGCCGCCATGGCTCTCCAACACCGGTTCTCCGGCAAGGCGAAGCCGCTCCGCTCGGCGGGTGAGGTGGAGGATGCCGCGGCAGAGGATTCCGTTCTGGACGCGAACCCGGACGCTGTCATCCGTACGGATGCCACAGACCCCAGGCCCGCAAGCCCGGCCCAAAACAGCAGGGCCAAGGACAGCAGGCCAAAGGGCCTGCATAACAGCTGAMAFLKYSLIRLALFAPLFLLFYFLGLGALMSVVCAALIAFAVSYLFFQKQRDEAAMALQHRFSGKAKPLRSAGEVEDAAAEDSVLDANPDAVIRTDATDPRPASPAQNSRAKDSRPKGLHNSNANANANANA
D1-29_03791678hypothetical proteinATGCTCTTCCGTGTGGCTCTCGCCGTCGCAGTACTCGCCATTTTTGTCTATGGCCTGGTGGACGTGATCCGCACTGACGGACGCCTCACCCGGGGCATCTCCAAACCCGCCTGGATAGTGGTGATGATTGTCCTGCCGGTGGTTGGGGCCATTCTGTGGCTCCTCATCGGCCGCCCGCGCGGCACTTCCCAAGTCCGGCAGAATTACAGCCACCCGACAGCTCCCGACGACGACCCCGCCTTCCTGCGCAACCTCGAAGTCCGGCGTCGCAATCAGGCCGAAGCCGCCCGTCTCCAAAAACTCAAGGATGAACTGGACGCACAGGGGGCCAGCCCCGAAGGCAGCGGCTCAGCGGGGCCAGGCACCTCCGGCTCCGCAGGGTCCGGCGGCGGCTCTACAGGCTCCGGCCCAGCCGGTTCCGGCGGTCCAGGCTCTGGCGGCTCAGGATCTGGCGGCTCAGGCACCCCTGGTTCAGGACCTGGCGGCTCAGGTTCTGGCGGCTCAGGTTCTGGCGGTGCAGGTTCTCGCGGTGGAGGCGCCCCCGGATCAGGATCCTCAGCTTCGGGAGACTCCGGTTCAGGAAGCAACGGCGCTGCCGGTAAGCGCAACGGCCCGCTGGATGAAGAAGGCGCCGGCGGTGCCGATGCGGATGCACGCGATACTGATGAACTGAAGTAGMLFRVALAVAVLAIFVYGLVDVIRTDGRLTRGISKPAWIVVMIVLPVVGAILWLLIGRPRGTSQVRQNYSHPTAPDDDPAFLRNLEVRRRNQAEAARLQKLKDELDAQGASPEGSGSAGPGTSGSAGSGGGSTGSGPAGSGGPGSGGSGSGGSGTPGSGPGGSGSGGSGSGGAGSRGGGAPGSGSSASGDSGSGSNGAAGKRNGPLDEEGAGGADADARDTDELKNANANANANA
D1-29_03792429hypothetical proteinGTGTTGAGTTTTCTGTGCGGCCTGGCGGTGCTGGCAGCAGCATTCTTTTCGCGGGACGCCCATTTGGAGCGCCTCCGCGGTGTAGTGGACCAGATGGCGCCCGGCGCCGAAGCCGATGCCCTGACCACGTCGGTGGCCATCGTGTTCTGGGGCAGCGTCGGCACCCTGCTCCTGGTGATCCTCCTGGAGGCCATGACCCTGGGAAGTGCCATGAACCAGCGCGGCTGGGCCCGCTGGGTCATGATTCCGCTGCTCCTTGGCCATGTGGGCGCCATGCTGGTGGCGGGGTCGTTCCTGGTACCTGCGAACGACTCTGGCAGCTACGTAGTGCTGCTCTGGGCCGCCCAACTGCTCCTTGCCTTCGCCGGGCTGGTGCTGCTCTTTCTGCCTTCCAGCGCAGCGTGGTTCCGCTCCCGGCAGAGGCTGTAAMLSFLCGLAVLAAAFFSRDAHLERLRGVVDQMAPGAEADALTTSVAIVFWGSVGTLLLVILLEAMTLGSAMNQRGWARWVMIPLLLGHVGAMLVAGSFLVPANDSGSYVVLLWAAQLLLAFAGLVLLFLPSSAAWFRSRQRLNANANANANA
D1-29_037931485iniCCOG0699Isoniazid-induced protein IniCATGACGGAAGAGACCATCACAGAGGTGTCCGACCTCGTGCAGGAGGCCCTCGACGTCTACCGTGATGATCCGGCAGCCACTGCGGCTTTGGAAGGCTATGCCCGCCGGCTGGCCGAACCGCTGCGGATCGCTGTGGCAGGCATGGTGAAGGCAGGAAAATCCACCCTGCTCAATGCGATTATCGGCGAGGAGATAGCCCCCACCGACACCGGTGAATCCACGAAGATCATCACCTGGTACCGCTTCGGGCAAACACCTCGCATCACCATGTATCCCGTGCAGGGCGAGCCGCTGGCCCTGCCCGTCAAACGCGTTGATGGCCGGCTGGTGTTCGTCCTGGGCAGGATGGGCGCAGAGGATGTGAAGCGGCTGGTGGTTGACTGGCCGTCCCGGAACCTCCGCGATGTCACCCTTATTGATACTCCCGGGATCGCCTCGCTGTCTGAGAAGGTATCGGCCCTGTCCACCGGCTTCCTAACCCCTGCCGATGCTCCCTCCCAAGCCGACGCCGTCATATACCTCATGCGGCATATGCATGCAGCGGATCTTCGGTTCCTTGAGTCGTTCAAAGACACGGAGGCGGGAAGGTCCGGGACGGTCAATGCCTTGGCTGTCTTATCCCGGGCAGATGAGATCGGTGCCGGCCGCATCGACTCGCTGCTTTCCGCCGGGGATATTGCAGAGAGGTACCGTCGGGACCACAGCCTGCGCAAGCTGGCATTGGGGGTGGTCCCGGTGGCCGGGCTGTTGGCGCAGAGTGCCCGCAGCCTGCGGCAGTCCGACTTCGAGTCCCTGTCGCTCCTCGCCAGCATGGACCGGCCGGCCCGGGAACGGATACTGCTCTCAGCAGACAGGTTCCTGCGCGCTTCCGTGCCTGAGGGACTGGATCAGGACGCGCGGGCCTCGCTCCTGGCGCGGTTTGGATTGTTCGGCATCAGGCTGGGCGTGGTGCTCATCAGGAGTGGCTTCACGGAGCCCACCCCGCTGGCACACGAACTGGCACGCCGGAGCGGCCTGGATCCGCTCCTTGACATGCTGAACCGCCAATTCCAGGCCCGGGCCGATACGCTCAAAGCCCGGACTGCGCTGGTGGGAGTTGAGGCACTGCTTCGAGATTCGCCACGGGACGGCTCAGGACAATTGGCGGCGGCTTTGGAGCGAATACAGGTCAATGCGCATGAGTTCCGCGAGCTCCGCCTTCTGGCAACCCTGCGCACCACCGGAGTGGCGCTCAACCATGATTTGGCCGAAGAAGCGGAGCGGCTGGTGGGCGGCTGGGGAACGGCACCACGCCTTCGGCTTTGCCTGCAGCCGGAGTCAGGCCCGGAGGAGATCAGCGCTGAGGCGCGCAGGTGCCTGCAACGGTGGCGGATGGTGAGTGAAAGCCCCGTGACGGACCGATCGGCCGCGGACGTATGCCGTGTGGTGATGCGAAGCTGTGAGGGTGTTCTCGCCGAATGCGCTGCACTTCAATTGAACCGCTAGMTEETITEVSDLVQEALDVYRDDPAATAALEGYARRLAEPLRIAVAGMVKAGKSTLLNAIIGEEIAPTDTGESTKIITWYRFGQTPRITMYPVQGEPLALPVKRVDGRLVFVLGRMGAEDVKRLVVDWPSRNLRDVTLIDTPGIASLSEKVSALSTGFLTPADAPSQADAVIYLMRHMHAADLRFLESFKDTEAGRSGTVNALAVLSRADEIGAGRIDSLLSAGDIAERYRRDHSLRKLALGVVPVAGLLAQSARSLRQSDFESLSLLASMDRPARERILLSADRFLRASVPEGLDQDARASLLARFGLFGIRLGVVLIRSGFTEPTPLAHELARRSGLDPLLDMLNRQFQARADTLKARTALVGVEALLRDSPRDGSGQLAAALERIQVNAHEFRELRLLATLRTTGVALNHDLAEEAERLVGGWGTAPRLRLCLQPESGPEEISAEARRCLQRWRMVSESPVTDRSAADVCRVVMRSCEGVLAECAALQLNRNANANANANA
D1-29_037941923iniACOG0699Isoniazid-induced protein IniAGTGGCTGAAACGCAACCATCCGGGGGGCTGGCAACAAGGGTAAGTCCGGCGGGTTCTGCCAGCCAGGCAGGCGATGCCAAACCCATCCAGCCCATGCGGTCAGCCGAACTGGCGAAGCTCGTGGAGCAGGGCATTGAGCTGGTGGGGGCAGGAGACAGGGCAGACCTTCGCAGGCGGCTGGACCAGACATTGCGCCGCGTGAAGGATCCCAGCATCCGCGTGATCGTGGTGGGCGAATTCAAACAGGGCAAAAGCAAGCTCATCAACGCGTTGGTTAACGCCCCGGTGTGCCCCGTCGACGACGATATTGCCACCTCGGTCCCCACGGTCGTCCGGCACGGTGACAGCGCCTCGGCGTCGATACTGTTGCCCAGGCCTGACGCTGAACCCGGCGAGGAAGGGACACTGGAGCGTCAGCCCATCAACATTGAAGACCTCGCCGTCTATGTCTCGGAACGCGGGAATCCCGGAAATGGAAAGAAGCTCGTAGCGGCAGAAGTGTTCCTGCCCCGCACAGTACTCACCGGTGGGTTGACGGTCATCGACTCGCCGGGCGTGGGGGGACTGGCGTCCACGCATACCTTGACTACCCTGACCGCCCTGCCTTCAGCGGATGCCATGCTGTTCGTTTCCGATGCATCACAGGAGTACACCGAACCTGAAATCCGATTCCTGCGCCAGGCCATGCGCATCACGCCGAGCGTGATTGGAGTGGTGTCCAAGACCGACCTCTATCCGGACTGGCGCCGCGTGGTGGAACTGGACCGCGGCCACCTCGCCGAAGTGGCGCCGGATATCCCCATCTTCCCTGTCTCCTCCGACCTCAGGCTTGAGGCCGCGCGTCTGCGGGACGTCGAACTGAACACTGAATCGGGCTTCGCGGACTTGGTGGCCCACCTCAGGAAGGAGGTGGTAGGGAAAGCAGAACGCATCCAGCGCCGGTCCGTCAGCCAGGACCTGCTGTCGGTGGCTGAGAATCTGCGACTTTCCCTGCAATCTGAACTGGGAGCGCTGGAGGACCCGGAAGGCACACCGCAGATGATTGCCGGCCTGGAAGAGGCGAAAGCGCAGGCCGACGAGCTGCGCAAACGGTCGGCCCGCTGGCAGCTTACCCTCAACGACGGCATCACCGACCTGATAGCGGACATGGAGTATGACCTGCGGGACCGGCTGCGCCGCATCCAACGGGAAGCTGAGACGGCCATTGACCAGGGGGACCCTGGCCCCACCTGGCCGGAGTTTTCACTGTGGCTTGAAGAGTGTGTCGCTGCCGCCGTGTCGGACACCTTCGTTTGGACCAGCGAGCGGGCTCAGTGGCTGGCAGCGCAGGTGGCGGGCCACTTCTCCCAGGACGAGGTGGCCCTGCCGGTGCTGCATGTGGCCGATACGGGCGACGCCCTGGACCCCGTGGACGAGATGCCGACCTTGGACGATGGGCACATCAAGCCCATGCAAAAGGTCCTCATTGGCATGCGCGGGTCATATGGCGGAGTGCTCATGTTCGGCCTGTTGACCGGGATTTTTGGCATGGCGCTCATCAATCCGCTGTCGGTGGGTGCTGGTTTGCTGCTGGGGCGCAAGGCATACCGCGAGGACCAGGAGGCCCGGCTTAAGCGACGCCAGGGCGAAGCAAAGGCACTGGTCCGGCGCCAGGTTGACGATGTTGTCTTCCAGGTCGGGAAGCAGCTCAAGGACAGGCTCAGGATGGTCCAGCGGACCACGCGGGATCATTTCACGGAGATCGCGGACGAGCATCACCGTTCGCTCGCGGATTCTGTGGCGGCGGCCCAAAAGGCAGCCACCACGTTCACGCTGGAAAAGGACCTGCGCATCCGGGAGATCAAGGCTGAACTTACGAGGGTGGACGCCCTGCACGGCGCGGCCGAAGTACTCGCCACCGAATCGGCGGTGGTCTCGGCATGAMAETQPSGGLATRVSPAGSASQAGDAKPIQPMRSAELAKLVEQGIELVGAGDRADLRRRLDQTLRRVKDPSIRVIVVGEFKQGKSKLINALVNAPVCPVDDDIATSVPTVVRHGDSASASILLPRPDAEPGEEGTLERQPINIEDLAVYVSERGNPGNGKKLVAAEVFLPRTVLTGGLTVIDSPGVGGLASTHTLTTLTALPSADAMLFVSDASQEYTEPEIRFLRQAMRITPSVIGVVSKTDLYPDWRRVVELDRGHLAEVAPDIPIFPVSSDLRLEAARLRDVELNTESGFADLVAHLRKEVVGKAERIQRRSVSQDLLSVAENLRLSLQSELGALEDPEGTPQMIAGLEEAKAQADELRKRSARWQLTLNDGITDLIADMEYDLRDRLRRIQREAETAIDQGDPGPTWPEFSLWLEECVAAAVSDTFVWTSERAQWLAAQVAGHFSQDEVALPVLHVADTGDALDPVDEMPTLDDGHIKPMQKVLIGMRGSYGGVLMFGLLTGIFGMALINPLSVGAGLLLGRKAYREDQEARLKRRQGEAKALVRRQVDDVVFQVGKQLKDRLRMVQRTTRDHFTEIADEHHRSLADSVAAAQKAATTFTLEKDLRIREIKAELTRVDALHGAAEVLATESAVVSANANANANANA
D1-29_037951065hypothetical proteinATGCCTACTCTCGCAAATCAGCTCGTCCAGTTCCTGATGAGCCTGTTCAACAACCCTGTCGCCGCCCAGGAATTCCTGAATGATCCGGAAAAGGCACTGGACGATGCCGGGCTTGGCGGTGTTTGCTCAGCAGATGTGGACGCAGCGATGCCAGTCGTCCTGGATTACGCGCCCATCACGGTCAACGCTGCCTCGTTTGACCGTGAGTACAACACAGGTGGCAACACCGCCTGGACTGGGCACAATGGCGGCAGCGGCGGCGCCGGCGGTCGTGACCCCGGACACGGCGGTGGACATGGCGGCGGTGGCGGCGGCGGACACCACGAGGACCACGCCCACGCCGTACAGCAGCTGCACCACGTCGTGAACAACTACTCCTACACCACAACAGTGGATGACCGGGACACGATCACCGACCAGTCAGTCAACCAGAACATCTGGGCCGACGGCGATGTCAGGCAGTTCTTCGACAACGATGCCATCATCGCCTCGGGCGACCAGGCCATGGCGGCCGGTGACGACATCGACGTCGAGGATTCCTTCAATGTGGAGGATTCGTACAACACGGATAACTCGGTGGATCACTCCACAGACAACTCGATCTACGCCGGCCGTGACGCAGTAGTTGGCAACACCGAAATCGATGTCGATGCTGACTTGCAGAATGTTGGAAACACCGACAACTCCAAGACGATCGTGGGTTCCTTCAACGAGGACCACTCGACGGAGGTCGAGATCGAGGCTGATCTGGAGAACGTGGGCAACACCTACGTTGACAAGTCGGTTGACGTGGACGCCAACCTGAACAACGTGGGCAACACGACAACAAACACGACAACGAACACGACGACGAACACAACCAAGACCAACATCGAGGACAACATAGTCGTCAAAGACAACAACATCGACTACACCAACGTCGAGGACAACACCGTTGTTGCAGGCAACACGGTGGTGGCGGAGAACGAGTTCGAGTACACCGAAATCGACGACATCACGGTCATCAAGGACAACGACGTCGAGATTGAGAACAACACCGCTATCAATGACTCGGAAGCGGGCTAAMPTLANQLVQFLMSLFNNPVAAQEFLNDPEKALDDAGLGGVCSADVDAAMPVVLDYAPITVNAASFDREYNTGGNTAWTGHNGGSGGAGGRDPGHGGGHGGGGGGGHHEDHAHAVQQLHHVVNNYSYTTTVDDRDTITDQSVNQNIWADGDVRQFFDNDAIIASGDQAMAAGDDIDVEDSFNVEDSYNTDNSVDHSTDNSIYAGRDAVVGNTEIDVDADLQNVGNTDNSKTIVGSFNEDHSTEVEIEADLENVGNTYVDKSVDVDANLNNVGNTTTNTTTNTTTNTTKTNIEDNIVVKDNNIDYTNVEDNTVVAGNTVVAENEFEYTEIDDITVIKDNDVEIENNTAINDSEAGNANANANANA
D1-29_037962187hypothetical proteinATGGAGGAATGGCCGAGCCCCCCGCTGACAGGCCCCGCAAGCAGCTCCAGCCCGCTATCACAGGCCGGGCTGCAGAACGGGGTGCAGACCGAAATCACTGAAAGCACTGAAAGCACTGAAAGCACTATGCCGGAGGAGCCAAGGGTTCAGCCCCCAATGCACGGCAGTGCCGAGTACATGGCCAAGCAGCTGCGGGGTGAAAATGCCGCGGTGCGGGAACTCCTGCTCGCCCTGTCGGTTGGCTTCACCTTGCCAGGCCCACTGCCGCGGGAACTGGAACGGAGGCTGGAAAGCCCCGAAGTGGAGGGCATCGACGCCTTGGTGGCCAGGGCAGAAGCATCAGGCCTGCTGGGGCCGGGCGGCACAGTAGTAGGTCCCGCACAGCATGCTCTCCTGACCGTTACACCTACGGCCAGGATCCACGCGCTGCAGAAGGAACTCGTATCAAACTTCGCCGCGGAGGGGCGGCCATTGGGTGAGTTTGCCCGCGAACTGGCACGGAGCGGCCTGGCCGATCCACGGGTGGCGGCGGAACTTGAAAAAGCGGCGGACAAAGCGCTCGAGCATGATCCGGGCCTGTCCTCCCAACTTTACGGCGAAGCCCTGCTGGCGGGAGCCGATGAGCTGGCCACAGCAGCCCGCCGTGCGCAGGCTGCTGCGGCCATGGGGGACCTGGATGCCGCGGGACGCATCGTTGACGAACTTCTGGTGGCGCCGCATGCTCCCGGCCTCCGCCTGGGCGTGGACGTTGCCGCCGCGGTATGGGCGCAGCGTGGCATGCTGGCCCGCGGCGCCGACGTCTACAGCTGGCTTGGCAAGGAGGGAGTGGGGCCTTCCGCGCCCCTGGCCGCAGTGGCTTTGGTGGGATGCGGTAACCGGGCGGGTGCCGAGGCCATGTTTTCCCCGGATTCAGAGCCTGCTTCTCCCACACTGCTGGGTGTGGCGCTGAGCCAGATGGGAAAAGGCATCCTTGAGTCGCTTGCCGGTGAACCCCATCAGGGGCTGCCCGTGTTGATTCATGCTTCGGACATGCTGAACTCAGCTGGAGTGGCACCCCCGCTTCCGGACACCCCCGGGGCGCTGGCCGCTCTGCTGGCGCTGCACACCGGGGAACCCCACCTTGCAGACACCATCCTCCGATCAGCTATCGCTGCCGGGCAGGGAGGTGATGCCGCCAAGCCACGGCTATGCCTGCTTCAGGCCTGGTCAGCCATGCAGCAGGACAATCCAGACGAAGCCCGGCTGTCCATCAACGAGGCCTCGAAAGCGAACCACTGGCCACTTGTACCGCGCGATGAGTTCCTCTGCGCCACCTTGGAAGTGGGCCTCGCCCGGAGAAGCGGTGAGGTCCATGACCTGGTCATGGCTTGGGAACGTGCGCGCGAGGCAATGCTGCACACCACGGTGGATCTTTATAGCTTGTTGCCGTGGGGTGAGCTCATGATTGCCGGTGCCCGACTGCGGGAAAGCCGGCGGGTGTCGCCTTACCTTGACGAGGCCTGGAAACTGCTGGCCAGGCTTGGCGAGCCTCCGCTCTGGGCCGTACCGCTGCACTGGGCTGCAGTCCAAGCTGCGCTGCTGAACGAGAGCCCCGCTGCCTTGGCGCCGCATGCCTCAAGCCTGGTGCGGGCAGCAGGCCACAGCCATCTGGCCGCGGTGCTCGCGGCGGCGGGCAAGGCATGGGTTTCAGTCCTGGCGGGCCGCTTTCAGGCTGCTGCCGTGGAACAGGCCGCGCACGGCCTGAATGCTGTGGGCATGCCATGGGAAGGTGCACGGTTGGCTGGCCACGCAGCGGCCCGGGCTGATGACCGGAGGGACATGGTGAGGCTGCTGGCGTGTGCCCGGGACCTGCACCCGCAGGCAAGCTCCGCCGGAACCGGGACAGTAAGCCCGGCGCCGGCGTCGGCCGCATCTTCACCTTCTGAGATCCGTGAAAATGCCGCTCCAGAACAAGTTAAGGTCCGCCAGCCGGCCGCCCCCGTCCTCAGCGAACGTGAGAAGGAAGTGGCCCGGCTGGTCCTGGAGGGCAAGACCTACCGCGAAATAGGGGAGACCATCTACATTTCGCCCCGTACGGCTGAGCACCACATGGCACGGATCCGACGCCGGTTAGGGGCTGAAAACCGCTCGGATCTCCTGGTTCGGCTGCGGCTGGTCCTGGGCCCGGAGCACTCGCCGCCGGAGTGAMEEWPSPPLTGPASSSSPLSQAGLQNGVQTEITESTESTESTMPEEPRVQPPMHGSAEYMAKQLRGENAAVRELLLALSVGFTLPGPLPRELERRLESPEVEGIDALVARAEASGLLGPGGTVVGPAQHALLTVTPTARIHALQKELVSNFAAEGRPLGEFARELARSGLADPRVAAELEKAADKALEHDPGLSSQLYGEALLAGADELATAARRAQAAAAMGDLDAAGRIVDELLVAPHAPGLRLGVDVAAAVWAQRGMLARGADVYSWLGKEGVGPSAPLAAVALVGCGNRAGAEAMFSPDSEPASPTLLGVALSQMGKGILESLAGEPHQGLPVLIHASDMLNSAGVAPPLPDTPGALAALLALHTGEPHLADTILRSAIAAGQGGDAAKPRLCLLQAWSAMQQDNPDEARLSINEASKANHWPLVPRDEFLCATLEVGLARRSGEVHDLVMAWERAREAMLHTTVDLYSLLPWGELMIAGARLRESRRVSPYLDEAWKLLARLGEPPLWAVPLHWAAVQAALLNESPAALAPHASSLVRAAGHSHLAAVLAAAGKAWVSVLAGRFQAAAVEQAAHGLNAVGMPWEGARLAGHAAARADDRRDMVRLLACARDLHPQASSAGTGTVSPAPASAASSPSEIRENAAPEQVKVRQPAAPVLSEREKEVARLVLEGKTYREIGETIYISPRTAEHHMARIRRRLGAENRSDLLVRLRLVLGPEHSPPENANANANANA
D1-29_037971968dnaK_1Chaperone protein DnaKATGAGCTACGTTCTCGCCATCGATGTCGGGACCAGTTTTACGGCCGCTGCAGTTAGCCGAAGTGATCAGAATGCTCCGCGTGTTCCGGAGAGCCTCCCGCTGGGGCTCCGCGGAACGGCTGTGCCGTCTGTGGTGTTTTATCCGGAAGAGGGGCCAATCCTGGTGGGGGAGGCCGCCGAGCGCCGGGGTCTTGACTCCCCTGAACGGGTGGTGCGCGAGTTCAAACGGCGGGTGGGTGACGCCGTACCGATTTCGGTGGGCACCCTGTCGTTGCCTGCCGAGGACGTCTTCGCCACGATGACCCGCTGGGTGGTGGACCGGGCGCAGGAGCGCGAGGGGGAGCCGCCGTCGGACATCATCCTGTCCCATCCGGCGTCGTGGGGCGGACACCGCACCACGCGCATCCTGGATGCCCTGTCCTCAGCGGGACTCCCTTCCGTCACGCTGATCAGCGAGCCCGAAGCCGCGGCGCTGCACTACGCCTCGCAGGTGCGCGTGGAGGACGGCAGCACCGTTGCCATTTACGATCTTGGCGGCGGAACATTCGACACCGCCATCCTGAGGAAGGCCGGCGCGGGCCATTTCGAATTCCTCGGCAGCCCCCACGGAATTGAGGGCCTGGGTGGCGCTGATTTTGATGCAGCCGTGTTCCGCCATGTCGCCGAACACACGGGTGCCGCCCTCGCCGGCCTGGACCCGGAATTACCCGCCGCACGTGCAGCGCTGGCCCGGCTGCGGCGCGAATGCGTGGAAGCCAAGGAAGCCCTCTCCTCTGACAGCGAGGCAAGCATCCCGGTGTTGCTGCCGGGTGTACAGCAGCAGGTACGGCTGGTCCGGTCCGAGTTCGAGGCGATGATTGAAGAGCCTGTCCGCGAAACCGTGGAGGCACTGGAGCGCTCCCTTCAGGACCTGGGACTGGACGCCGGGGACTTGTCGGCTGTGCTGCTGATCGGCGGATCCTCCCGCATCCCCCTGGTGGCGCAGCTCCTTTCCGAAACGCTGGACAGGCCCATAGCCGTGGACGCGGATCCGAAGTCGTCCATTTGCTATGGGGCCGCCGTCTCAGCTGTGCGGGCGCAGGAAGCTGCAGCGCAGCGGGATGCTGATGCGCAGCGGGTTGTTGCTGCGGAGCAGGTTGTTGCGGCGCAGCCGGATACTGGCCAGGAGCCTGCCTTGGGAGTGGCCGCGGCTGCTGGCGCAGCGCTGGCAGCCCACAGAGGCAGCCGCAGCGCCAGCTGGTCCCGAAAGCCGGACGACAGCAGGCCGGGCACCCACGCTAACAGGCCTACAGTGCGTGTGACCGCCGTCGCTGCAGTGGCGGCGCTCTTTACTGTGCTGACTGCCACCGCGGCCCAAAGTCCGGAGGGCCTGGGCACGCTCACGGGGATCTTCACTCCGCAGGAAGCGGGCGCCGGGACGGGGCCGGATGCTAACGGGTCCACCGGCACCAGTGAAGCTGACAGCGATGCCACCGGGGGGACGCAGGCACCACAGCCGGGGCTTGAGGCCAGCGCACAGCGGAGCATCGGCCAGCCTTCCGGCGGTGCAGGCCCGCAGGCGGCGTTGCCCACCAGCAGTCCAGCCTCCGGGCCCTCGTCCCAACCGGCCGGGGATGGCACAGCCATTGGTGCTGCCAGTTCTTCTCTGGGTGAAGGCGGGGGCGCGGCGGCAGTGGCTGATCCTACTCCGGCAGCGGGCACCGCTTCTCCCACCACACCGTCGGATCCGGCCACAGCTGGTCCAATCACCACGGCCCCGCCAGCTACCGAACCTCCACCAGCTACGGTTCCTCCACCCGCTACGGTGACTCCACCGCCGGCCACCGAACCGCCGCCGGCTACCGAACCGCCGCCGGCCACGGCACCCCCGCCTGCTACAGAGCCGGCGCCCGCTACGGTGGCACCAACCGCCACTGCCCCTGCCCCGCCCCCTGCGGATCCGATGCCAGCGTCAGAACCGGCGGTGTAAMSYVLAIDVGTSFTAAAVSRSDQNAPRVPESLPLGLRGTAVPSVVFYPEEGPILVGEAAERRGLDSPERVVREFKRRVGDAVPISVGTLSLPAEDVFATMTRWVVDRAQEREGEPPSDIILSHPASWGGHRTTRILDALSSAGLPSVTLISEPEAAALHYASQVRVEDGSTVAIYDLGGGTFDTAILRKAGAGHFEFLGSPHGIEGLGGADFDAAVFRHVAEHTGAALAGLDPELPAARAALARLRRECVEAKEALSSDSEASIPVLLPGVQQQVRLVRSEFEAMIEEPVRETVEALERSLQDLGLDAGDLSAVLLIGGSSRIPLVAQLLSETLDRPIAVDADPKSSICYGAAVSAVRAQEAAAQRDADAQRVVAAEQVVAAQPDTGQEPALGVAAAAGAALAAHRGSRSASWSRKPDDSRPGTHANRPTVRVTAVAAVAALFTVLTATAAQSPEGLGTLTGIFTPQEAGAGTGPDANGSTGTSEADSDATGGTQAPQPGLEASAQRSIGQPSGGAGPQAALPTSSPASGPSSQPAGDGTAIGAASSSLGEGGGAAAVADPTPAAGTASPTTPSDPATAGPITTAPPATEPPPATVPPPATVTPPPATEPPPATEPPPATAPPPATEPAPATVAPTATAPAPPPADPMPASEPAVPGPT0014555_358DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
D1-29_037981113ccsACytochrome c biogenesis protein CcsAATGCCCTTCGCCATCAACGAAACCATGGGCCAGTACAGCGAGTTGTTTATGCTGCTTGCGGCCGGCACCTACACCGTGGCCTTCATCGCCTTCGCCTGGGACCTGGCGAAGAGCAGCAAAGCCCTGCTCGCCGTTGACCTCAAAGCGGCCCAGGCGGAGCAGGGGGCCAAGGTCCCTGTAGGTGCAGGTGCAGGTACATCTGCCGCGGGGGCGGGCACCGACAGGACTGAGTCGCACCTGGCCGGGCCGGCCGGACGGGCCGAGCGGCCGTCGTCGTCGTCGGTCGCCAGCCAGGGCAGCGCTCAGTCCGGGGCGGGAAAGACCGCCGACGCCGACATGCGCTACGCGGCCGAACGCCGCGTTCCGGCACGGGTGGCGGTGGCGCTGACCGTGCTGGGCGTGCTCATCCACGGTGCGGGTGTGGTCACCCGTGCCCTTGGCGCCGGGCGTGTGCCCTGGGGAAACATGTACGAATTCCTCACCACCGGGGCTTTTGTGGCCGTGGCCGTGTTCCTGCTGGCGCTGATCCGGCGGGACCTCAGGTTCCTGGGAACGTTCGTGGTGGGCCTTTCCATCATCATGCTGGTGGCCGCCTCGGTGGCGTACTGGACCCCGGTAGGCCACCTGGTCCCGGCCCTGCAAAGCTACTGGCTCATCATCCACGTTTCCATTGCCGTGTTGTCGTCGGCACTGTTCACCCTCACCTTTGCCATGTCCGCCCTGCAGCTGGTGCAGGCGCACCGGCAAAAGACCGTGGCCGCGGGTGGAGCTGACAAGCTGGGCTTCATGCGCCTGGTGCCGTCTGCCCTGAGCCTGGAAAACCTGTCCTACCGGATCAACGCGATCGCCTTTATCGGCTGGACTTTCACCCTGATGTTCGGTGCCATCTGGGCCGAAAAGGCCTGGGGACGTTTCTGGGGCTGGGACACCAAGGAAGTGTGGACGTTCGTGATCTGGGTGGTTTATGCAGGGTACCTTCATGCCCGTGCCACCCGTGGCTGGACGGGCACCCGCGCCGCCTGGCTGTCGATCGTCGGCTACCTCTGCGTCATCTTCAACTTCACGATTGTGAACCAATTCTTTAATGGGCTGCACTCCTATTCAGGCCTCTGAMPFAINETMGQYSELFMLLAAGTYTVAFIAFAWDLAKSSKALLAVDLKAAQAEQGAKVPVGAGAGTSAAGAGTDRTESHLAGPAGRAERPSSSSVASQGSAQSGAGKTADADMRYAAERRVPARVAVALTVLGVLIHGAGVVTRALGAGRVPWGNMYEFLTTGAFVAVAVFLLALIRRDLRFLGTFVVGLSIIMLVAASVAYWTPVGHLVPALQSYWLIIHVSIAVLSSALFTLTFAMSALQLVQAHRQKTVAAGGADKLGFMRLVPSALSLENLSYRINAIAFIGWTFTLMFGAIWAEKAWGRFWGWDTKEVWTFVIWVVYAGYLHARATRGWTGTRAAWLSIVGYLCVIFNFTIVNQFFNGLHSYSGLNANANANANA
D1-29_037991740ccs1Cytochrome c biogenesis protein Ccs1ATGAGCGAACGAGTGAACGCAGAGAAAAAGTCCTCCACCCCGGTGGCCGAGGCCAAGGCTGATGCCGCGCTGCCGGCCCTGGGCCCCAAGGAAATGCTGCGCTGGGCGTGGACGCAGCTCACCAGCATGCGGACGGCACTTTTCCTGCTCCTGCTGCTGGCGGTTGCTGCGGTGCCCGGCTCGCTGTTCCCCCAGCGGCCCGCGAACCCTTCCACCGTCACGGAGTACATAAGGAACAACCCGGGCTACGGCAAGCTGCTGGACACCCTGCAGCTTTACGACGTCTACTCGTCTGCCTGGTTCTCCGCCATCTACCTGCTGCTGTTCATTTCCCTGATCGGCTGCGTGGTGCCCCGCGCCATGGCCCACTACAAGGCGATGCGGTCCCAGCCGCCGCGTACTCCGAAACGGCTCTCCCGCCTCCCCGAGTACGGCACGCTGGTGGTGCCGGCGGCGGCCGGCCTCCCGGCGTCGGACGCTATTCACAGCGCAGCCGGGCTGCTCAAGAAGCGCGGCTACCGCGTTGAGGTAAGGGACGACGACGGCGCGCGGCCGTCTTTGGGGGCCGAGCGCGGCTTTATGAAGGAAGTGGGTAACCTGCTGTTCCACACATCCCTGATCGGCGTGCTGGTATCCGTGGCGGTTGGCGGACTCTTTGGGTACAGCGGGCAGCGCATCCTGGTGGAAGGCGACACGTTCGTGAACACCCTGGTGGGTTATGACCAATTCACGCCCGGTACCAATTTCCAGTCCAGCCAGCTGCAGCCGTACTCCATTCAGCTGGATAAGTTCGACATCACCTTTGACCGGGAATCCAAGGGCAAGTTCGGCCAGCCCATCGACTTCTCCGCAGCCGTGACCACCAAGGAAAACCCTGACGCGCCCGCGCGGCAGGAAACCCTCAAAGTGAACGATCCCGTCACCCTGGGCGGCACCAGCATCTACCTCACAGGAAACGGCTATGCCCCGCTGGTCACCGTCCGTGACGGGGCGGGCAATGTGGCTTTCCAGGGCCCTGTGGTGGGCAAGCTGCAGGGCGAGAACTACTACTCGTCGGTGGTCATCAAGGTTCCGGACGCCAAGCCGGACCAGCTGGGGTTCCAAGGCTTCTTCCTGCCCACCGCCTTCGTCACCCCTGAAGGTGTGTCCTTCAGCGGGGACCCCGAACTGTTCAACCCGCAGCTGACGTTGAACTCGTACTACGGGGACCTGGGCCTGGACGACGGCGCCCCGCAGAACGTTTTTGAGCTGGACGTCGGGGACCTGACCCCGCTGAACGCCCGCAACCTCGACGCCGGAGGCCTCACGCTGACGCCCGGCGCCAGCCTCACCCTGCCCGACGGCAAGGGGAGCATCAGCTTTGACGGCGTGAAGCGGTACGTGGGCGTGGACATCCACCACAACCCCGGCCAGCTGTACGCGCTGATCTTTGCCCTGCTGGCCGTCGCCGGGCTGGTCATGTCGCTCTACGTCAACCGCCGCCGGGTCTGGATCCGAACCGGCACGCACGAGGACGGCCGGACCATGGTGGAATACGGCCTCCTGGCGCGCGGCGAAGACCATCGTCTCGCGGCCGAGTCGGCCGCACTCCGAAAGCTCCTCTCCGAGGAATGGCGGGTGCCTGCCATTCCTCACGACGAGCCCGCCGGAACCCAGCAAACTCCCAGCCGTTATGACCATAATGGCGCAGACTCTGTCACCACCCCAGCGGGCCCCACCGGGCCGAAAAAGGACCAGTAAMSERVNAEKKSSTPVAEAKADAALPALGPKEMLRWAWTQLTSMRTALFLLLLLAVAAVPGSLFPQRPANPSTVTEYIRNNPGYGKLLDTLQLYDVYSSAWFSAIYLLLFISLIGCVVPRAMAHYKAMRSQPPRTPKRLSRLPEYGTLVVPAAAGLPASDAIHSAAGLLKKRGYRVEVRDDDGARPSLGAERGFMKEVGNLLFHTSLIGVLVSVAVGGLFGYSGQRILVEGDTFVNTLVGYDQFTPGTNFQSSQLQPYSIQLDKFDITFDRESKGKFGQPIDFSAAVTTKENPDAPARQETLKVNDPVTLGGTSIYLTGNGYAPLVTVRDGAGNVAFQGPVVGKLQGENYYSSVVIKVPDAKPDQLGFQGFFLPTAFVTPEGVSFSGDPELFNPQLTLNSYYGDLGLDDGAPQNVFELDVGDLTPLNARNLDAGGLTLTPGASLTLPDGKGSISFDGVKRYVGVDIHHNPGQLYALIFALLAVAGLVMSLYVNRRRVWIRTGTHEDGRTMVEYGLLARGEDHRLAAESAALRKLLSEEWRVPAIPHDEPAGTQQTPSRYDHNGADSVTTPAGPTGPKKDQNANANANANA
D1-29_03800756hypothetical proteinGTGAACAGCCCCTTTGCTGAAGCCATCCTGAGCGGCTCCCTGCTCCTCGCCATTCCGGTGGCGCTGCTTGCAGGACTCGTGTCATTCCTGTCGCCGTGCGTGCTTCCGCTGGTGCCGGGGTACCTGGGTTACGTCACGGGACTGACCGGCGTGGACCTGCAAAAGCAGAAGCGGGGCCGGATGCTGGCGGGCATTGGGCTGTTCGTGCTGGGGTTCTCCGCGATTTTTGTGCTCCTGGGCGGTGCCTTCGGGCAACTTGGCACGCTGATCACCGGCTCCCAGAATGCCTGGATCACCCAGCTCCTGGGTGTCCTGGTGATCGTCATGGGTGTTGTGTTCATGGGTGGTTTCGGCTGGCTGCAGCGTGATGCGAAAATCCATGCAAAACCGCCGGCCGGGCTGTGGGGTGCCCCGCTGCTGGGCATAACGTTCGGGCTGGGCTGGGCGCCTTGCATCGGCCCCACCTATTCCGCTGTCCAGCTGCTGAGCCTCTCCGGCGGTTCGTCCGCTGCGAAGGGCGCGTTCCTGGCCTTTGTCTACAGCCTGGGCCTGGGCATCCCGTTCCTCCTGATTGCCCTCGCGGTGCGCCGGGGCATGGGCGTGATGTCCTTTTTCCGTACTCACCGGCTGGCCATCCAGCGGACCGGCGGAGCGATCCTGATCGTGCTGGGCCTGCTGATGGCCAGCGGCGTCTGGGGCGCCTGGGTGACCGGGCTGCAGTACTGGTTCCAAACCGATGTGAAGTTGCCGATCTGAMNSPFAEAILSGSLLLAIPVALLAGLVSFLSPCVLPLVPGYLGYVTGLTGVDLQKQKRGRMLAGIGLFVLGFSAIFVLLGGAFGQLGTLITGSQNAWITQLLGVLVIVMGVVFMGGFGWLQRDAKIHAKPPAGLWGAPLLGITFGLGWAPCIGPTYSAVQLLSLSGGSSAAKGAFLAFVYSLGLGIPFLLIALAVRRGMGVMSFFRTHRLAIQRTGGAILIVLGLLMASGVWGAWVTGLQYWFQTDVKLPINANANANANA
D1-29_03801627resA_1Thiol-disulfide oxidoreductase ResAATGCCGCAGACGTCCGCCGGGTCCACCCCGGCTACCTCACGCCGCAGCCTGCTTGCAGCCGGCGGCGTGGCCCTCACGGCTCTTACCCTGGGGCTCTCTGCCTGCGCCCAGGAGGATGCCTTGGCCAAGCAGGCCAAAGCAGGAGACAACAAAAACTACGTTGCCGGGGACGGCTCCGTCACGGAGTTCGCCCCCGCGGACCGCAAGTCCGCCGTCGAAATCAACGGCACACTCTTCAACGGCACATCCGTGACCCCTGCTGATCTCCAGGGCAAGGTGACGGTCCTGAACTTCTGGTTTGCCGCCTGTGCGCCGTGCCGGGTGGAGGCTCCGCAGCTCGAGGCCCTGCACCAGGAATTCAAGGACCAGGATGTGCAGTTCTACGGCGTCAACCTCCGGGATGAAAAAGCCACCGCCGAGGCGTTCGACAAGTCCTTCAACCTGACCTATCCCAGCTTTGACGACAAGGACGGTGCGGTGCTCCTGGCCGTGTCCGGCATCGTTCCGCCAGGCGCCGTCCCCACCACGCTGGTGCTGGACAAGCAGGGCCGCGTTGCCTCGCGCGTGCTCGGCGAAATCCAGAAGGGCACCCTCAAAGCCCTCATTACCGCCGCAGTGGCAGAGTAGMPQTSAGSTPATSRRSLLAAGGVALTALTLGLSACAQEDALAKQAKAGDNKNYVAGDGSVTEFAPADRKSAVEINGTLFNGTSVTPADLQGKVTVLNFWFAACAPCRVEAPQLEALHQEFKDQDVQFYGVNLRDEKATAEAFDKSFNLTYPSFDDKDGAVLLAVSGIVPPGAVPTTLVLDKQGRVASRVLGEIQKGTLKALITAAVAENANANANANA
D1-29_03802681COG0406putative proteinATGCCCCAAGCCACTGTCCATCTGCTCCGCCACGGCGAGGTCCACAATCCCGACGGCGTTCTGTACGGAAGGCTGCCCGAATTCCACCTCTCCGCGTTGGGCCGGCAGATGGCCGAGATGCTCGCCCGGCACTTTAGCGACCGCGCCGCCGCGGGCGCCAGGATCGTCTACCTCGCATCATCGCCGCTGGTCCGAGCGCAGGAAACAGCAGCCCCCACGGCCGATGTTTTGGGCCTGGAGATCCACACGGACCCGCGGATCATTGAGGCCGAGAACTACTTCGAGGGCATGAAGGTCAGCAAGGCCGAGCTCCGCCGGCCCAAGCACTGGCCGCGGCTGGTCAACCCGCTGAAGCCGTCGTGGGGCGAGCCGTACAAGGACCAGGCGGCCAGGGTCAGGGCCGCTGTCCAGGATGCCCGGCTCCGCGCGATCGAGCTCGCGGGCGGAGACTACGGAACAGGCGGGCCCGAAGCCATCATGGTCAGCCACCAGCTCCCTATCTGGGCCACCCGGCTCAGCGCCGAAGGCCGGCCCCTGTGGCACGACCCCCGGAAACGCGAATGCACGCTGACGTCCATCACCTCCCTGGTGTTCGACGACGACGGCTCGCTCCTGCGCGTTCAGTACACTGAGCCCGCTGCCGCCCTTCTTCCCGGTGCCGCCAGCACCCCCGGAGCCTAGMPQATVHLLRHGEVHNPDGVLYGRLPEFHLSALGRQMAEMLARHFSDRAAAGARIVYLASSPLVRAQETAAPTADVLGLEIHTDPRIIEAENYFEGMKVSKAELRRPKHWPRLVNPLKPSWGEPYKDQAARVRAAVQDARLRAIELAGGDYGTGGPEAIMVSHQLPIWATRLSAEGRPLWHDPRKRECTLTSITSLVFDDDGSLLRVQYTEPAAALLPGAASTPGANANANANANA
D1-29_03803549yceI_2Protein YceIATGGCACTTCCCGCAGACGTCACCACCGGCACCTGGACCCTCGACAACTCGCACAGCGAAATCGGATTCACCGTCCGGCACGCAGGCATCAGCAAGGTCCGCGGCCAGTTCAAGGATGCAGAAGCAACCTTGGATCTGGCTGAAAACGTCGCCGATTCAAAGATCAGCGCCACCATCAAGACCTCCAGCTTCGACTCCGGCGATGTCAACCGCGACGGCCACGTCCGCGGCGAAGACTTCTTTGACGTAGAGAAGTTCCCTGAAATCTCCTTCGTTTCAAACGGCCTGGTGGCCAACGGCAACAGCTACGAGCTGACCGGGGACCTTACCATCAAGGGCGTCACCCGCCCCGTGTCCCTCGAAACCGAGTTCAACGGTGTGGCCGTGGACCCGTTCGGCAACACCCGCGCCGGCGTTTCCGCGGAGACCACCATCAGCCGCAAGGATTTCGGCCTCACCTGGAACGCCGTCCTGGAAGCCGGTGGCGTCCTGGTCAGCGACAAGGTTGCCATCAACCTCGAGCTCGCCTTCATCGCACCGGCAGCCTGAMALPADVTTGTWTLDNSHSEIGFTVRHAGISKVRGQFKDAEATLDLAENVADSKISATIKTSSFDSGDVNRDGHVRGEDFFDVEKFPEISFVSNGLVANGNSYELTGDLTIKGVTRPVSLETEFNGVAVDPFGNTRAGVSAETTISRKDFGLTWNAVLEAGGVLVSDKVAINLELAFIAPAANANANANANA
D1-29_03804822hypothetical proteinATGACCAACCCCAGTGAAGTACCGCAGCCCCAGCAGCCGGGTGCCCAGCCCCCGGCCGGCAACGTTCCCCCGGCTGGCAACGTTCCTCCAGCCGGCGCGGTGCCGCCAGCCGGCGCGGTGCCGCCGCAGGGTTACCAGCCACAGCAGGGTTACCAACCGCCGCAGGGCTATCAGCCCCCGCCGGGTTATCAGGCACCGCCGGGCTATCAGACGCCGCCCCAGGGAAATGGGGCACCGCCCCAGGGATACGGCCAGCCCTATCCGCCTCAGGATCAGCCCTATCCGCCGCAAGGTCAGCCCTATCCCCCACAGGGTCAGCCCTACGGCCAGCCCGGCTACGGTGCCGGTGCCGGCCCCAGCAACGTCCCGCCGTCGGGCCTGGGCTACGCCGCCCCGCCACGCAACGTCTTTGGCCTCAGCCTGGACAACATTCAGCAGCGGTTCATTGACACCCAGGGTGTGCCGCAGCAGCTGGTTACGTCCTACTGGCTCTGGATCGCTGCAGCAGCGCTCGGGGTCGTCTTCAGCCTGGTCAACATGTTCACCGTTAGCAGCGCCTTCGGCGGCATGATGATGGGGGCAGGGATTGGCGGATTTGTGTTCCAGCTCATCTTCGCGGCCCTGTACGTGTTCATCGCCATCCGACTGAAGGAGGGTGCACGGTGGGCCCGCCTTGTCCTCTCCATCCTCGGCGGTCTTGCCGTGTTGGGTTTCTTCGCAAACCTTGTGTTCTTCAACCTCAGCCTCCTCAGTTCCGCCGCCGCCGTAGCGGCCGCGGTCATGATGTGGCTGCCGCAATCCCAGGAACATTTCAAGGGCTGAMTNPSEVPQPQQPGAQPPAGNVPPAGNVPPAGAVPPAGAVPPQGYQPQQGYQPPQGYQPPPGYQAPPGYQTPPQGNGAPPQGYGQPYPPQDQPYPPQGQPYPPQGQPYGQPGYGAGAGPSNVPPSGLGYAAPPRNVFGLSLDNIQQRFIDTQGVPQQLVTSYWLWIAAAALGVVFSLVNMFTVSSAFGGMMMGAGIGGFVFQLIFAALYVFIAIRLKEGARWARLVLSILGGLAVLGFFANLVFFNLSLLSSAAAVAAAVMMWLPQSQEHFKGNANANANANA
D1-29_03805837hypothetical proteinATGAGCACTCCTCCTGTCCCGCCTCCGACTCCCAACGAGCCTGAGTCCGGCGGCCAGCCGCAGGCTCCCCGTTACGGCGAGAATGCGCCCCAGTTTGGTCACCCTTCGCCGCAGTCCGGCGACAACGCCCCGCAGTACGGGCAAAACGCACCGCAGTATGGCCAGAACGCACCCCAATACGGGCAGAACGCGCCGCAGTACGGCCAGAACCCGGCTACACCGCAGTACGGGCAGAACCCGCCACAGGCACCGGCTTACGGCCAGAACCCGCCGGCTCCCTACGGCCAGCAGCCCTACGGTCAGTCACCCTATGGCCAGTCGCCTTACGGACAGTACCCCTCCGAGCAGCCGCAGGGCTCAGGTACCTCGGGGGTCCCACAGTTGGTCAATATTTCGTTCTGGCTGCTGATTGCATCCGGCGTTATCTACGTCATTTCCATGCTGATGGGCCTCGCCATGCTGGACGATCCGTCAATGCGGCGCCAGTTTGAGGACGCCATGGCCAGTGGCGGCGCCGCGGGGGAAGTTGCGTTTGAAGATATCAAGGGCGTGATCGCCGGCACCCTGGTAGTGGTGGCCATCATCGGCGCCGGGTTGTACGCGCTGGTGGCGTTCTTCGTCCGCAAGGGTAAGAACTGGGCCCGGATCCTGGGTACGGTCTTCGCAGCCATCTCGGTCTTCGGACTGTTCGGCCCCCCGAGCATCGGCACTTTGGGAACCCTGGCGGGAATCGCAGCCATTGTGTTGCTCTACCTGCCTGCCGCCGCTCCGTACTTCCGCAAGCAGCAGCCTTTCGCCAACCCCTACGGCGCACCCGGCAACCCCTACGGCCGCTAGMSTPPVPPPTPNEPESGGQPQAPRYGENAPQFGHPSPQSGDNAPQYGQNAPQYGQNAPQYGQNAPQYGQNPATPQYGQNPPQAPAYGQNPPAPYGQQPYGQSPYGQSPYGQYPSEQPQGSGTSGVPQLVNISFWLLIASGVIYVISMLMGLAMLDDPSMRRQFEDAMASGGAAGEVAFEDIKGVIAGTLVVVAIIGAGLYALVAFFVRKGKNWARILGTVFAAISVFGLFGPPSIGTLGTLAGIAAIVLLYLPAAAPYFRKQQPFANPYGAPGNPYGRNANANANANA
D1-29_03806849rexRedox-sensing transcriptional repressor RexGTGGAGTCACGACGCGACGCGATGGAGGGGAAAGTGACTTCACTGGATTCATCTCCTGCTGCGGTCCCTGCTGCTTCCGAGCTTGCGGGTGTGCCCGCGCTACCGGATGTGCCGGGTGTTCCGGCTACCCCCGGTGTTCCAGGCGCCGTCCAGGGCGTTGCGGGCGTCCACGGAGACGCAACCGTCCAGGGCGAGAAGGTAGCCGCCGGCAAGCAGATCCCGCCTGCTGCCGTAGCCCGGCTGACCCTGTACCTCCGCGCCCTGAATACGATGCTGGCAGAGGGTGTGGAAAGGGTTTCCTCAGAATCCCTGGCGGAAGCCTCGGGCGTGAGTTCTGCAACGCTCCGCAAGGATCTTTCGCACGTTGGCTCCTACGGCACCCGCGGTGTGGGGTACGAGGTGCAATACCTCAGCCGCCACATTGCCGCAGCCCTGGGACTTACCCACGACTGGAAAGTTGCCATAGTTGGTGCCGGTAACCTGGGCAAGGCCCTGGCACGCTATGGCGGTTTCGAATCCCGGGGCTTTGATGTTGTGGCCATCTTTGACGCCGACCAGATGGTGGTGGGCAACGAAGTTGGCTGGCTGCGCGTCAGCGACGTCGCCGACCTTGAAGCAGTCCTGGAACGGACCGGCGCCAATATGGTGGTCCTGGCGCTGCCGGCAGCTGTTGCCCAGGCGGTCTGTGACCGGGTGGTGGCGGCGGGTGTCCGCAGCATCCTGAGTTTCGCGCCCGTGATGCTCCAGGTCCCCGACGGCGTCAACCTCCGGAAGGTGGACATGGCCACCGAACTTCAGATTCTCGCCTACCATGCACAACGGGCGCAGACCCCGGGCCAGACCGCCTAGMESRRDAMEGKVTSLDSSPAAVPAASELAGVPALPDVPGVPATPGVPGAVQGVAGVHGDATVQGEKVAAGKQIPPAAVARLTLYLRALNTMLAEGVERVSSESLAEASGVSSATLRKDLSHVGSYGTRGVGYEVQYLSRHIAAALGLTHDWKVAIVGAGNLGKALARYGGFESRGFDVVAIFDADQMVVGNEVGWLRVSDVADLEAVLERTGANMVVLALPAAVAQAVCDRVVAAGVRSILSFAPVMLQVPDGVNLRKVDMATELQILAYHAQRAQTPGQTANANANANANA
D1-29_03807255COG0526putative proteinATGGCGAAACCGGAGGTTGTCCTCATCACCAAAGCAGACTGTCACCTGTGCGCAGAGGCGCGCGACGCCGTCGGGCGGGTAACAGCCTCTCTGGGACTTGAGTGGACCGAACAGCCGGTTGACCACTTGCCGGAGCTGCGCGAACGTTACGCTGAGGAAATTCCCGTGGTGCTGGTGGATGGAATCCAGCGGGACTTCTGGAAGATTGACGAGCTGAGGCTGGAGCGGGTCCTCCAGCGCGCCATGGCGGAGTAGMAKPEVVLITKADCHLCAEARDAVGRVTASLGLEWTEQPVDHLPELRERYAEEIPVVLVDGIQRDFWKIDELRLERVLQRAMAENANANANANA
D1-29_03808825serB1COG0560Phosphoserine phosphatase SerB1ATGCACATGCCCGAGGAGAAGTACGTCGCTGTGGTCACCCAGCCGGTCGCGATGCCGCAGACGGGCGAGGCCGCTTTCTTCGACGTCGACAACACCCTGATGAGGGGTGCCAGCCTGTTCCACGTGGCACGCAAAATGCACCAGCGCGGAGCCTTCACCTTTGCACAGGCCGCCGGATTCGCCTGGCAGCAGTTCAAGTTTGTCACCCGCGGGGAGAACATGGATGACGTCCATGCCGTCCGCGATTCCGCCCTCACGCTCGCTGCGGGCATCACTGTGGAAGACGTCAAGGCCCTGGGCGAAGAGGTCTACGACGAAATGATTGCGTCCAGGATCTGGCCCGGCGCCAAGGCCTTGGCGCAGCAGCACCTCCGCGTAGGGCGCAGGGTATGGCTGGTCACCGCCACCCCCATCGAGGTAGCCACCGTGATCTCCACCAGGCTTGGCCTGACTGGCGCCCTCGGAACTGTGGGCGAAGTCGCCGACGGAATGTACACCGGCCGGCTGGTGGGCGATATCCTGCACGGCTCAGCAAAGGCAGTGGCGGTACAGGGCATCGCCGACATCGAAGGACTGGACCTCAAACGCTGCTGGGCCTACAGCGATTCCTACAACGACATCCCGCTGCTGACCCTGGTGGGACACCCTGTGGCCATCAATCCGGACTCCAGGCTTCGGCGCCATGCCCGTGACAACAACTGGCCGGTCTACGACTTCCGTTCGGGCCGCCGGGCCGCCACGCTTGGGCTCAAGGCTGCAACCGCCGGCGGTGCCGTCTACGGCCTCTGGAAAGGCTTCGCCCGCATCCGCGGCCCCCGGGTTTAGMHMPEEKYVAVVTQPVAMPQTGEAAFFDVDNTLMRGASLFHVARKMHQRGAFTFAQAAGFAWQQFKFVTRGENMDDVHAVRDSALTLAAGITVEDVKALGEEVYDEMIASRIWPGAKALAQQHLRVGRRVWLVTATPIEVATVISTRLGLTGALGTVGEVADGMYTGRLVGDILHGSAKAVAVQGIADIEGLDLKRCWAYSDSYNDIPLLTLVGHPVAINPDSRLRRHARDNNWPVYDFRSGRRAATLGLKAATAGGAVYGLWKGFARIRGPRVNANANANANA
D1-29_03809213hypothetical proteinATGTCCGCAGAACAGAACTTCTCGAACGCGAAGTTCCTGACCGTCGCCGAAGTGGCCGAGGTCATGCGCGTCTCCAAAATGACCGTGTACCGGCTGGTTCATTCCGGCGAAATGCCCGCGGTGCGTTTCGGCCGCTCATACCGTGTGCCGGAAAAGGCCGTCGAACAGTACCTTAAGGGTGCTGTGGTGGAGGGCCACACCGAAACAGCCTGAMSAEQNFSNAKFLTVAEVAEVMRVSKMTVYRLVHSGEMPAVRFGRSYRVPEKAVEQYLKGAVVEGHTETANANANANANA
D1-29_03810222hypothetical proteinATGGACAACACTGACCCCAGGTATATGCCATTGCGGTGTGCCGATGCTGAGCCATCCACCAACCATGTGCTAGATACTCTAGAGGTTTATGTGGCCATTGTGAAAGTCATGGAGGGTAATCAATTCGCGGTCCGGCGCTTGCGGGCCGACGCCGCCAACTGGTCCAGCACCGATACCGAGACATCCCACTCCATGCAGGCGTCCGTCACGCTCTGCCCGTAGMDNTDPRYMPLRCADAEPSTNHVLDTLEVYVAIVKVMEGNQFAVRRLRADAANWSSTDTETSHSMQASVTLCPNANANANANA
D1-29_038111128aroGCOG0722Phospho-2-dehydro-3-deoxyheptonate aldolase, Phe-sensitiveATGAGCACCGCAACAGCCGCCACAACGGGCACCACACCCACCGGCAAGTCAACGTCCAACCTGCGTGTCAGCGAATTCACGGCGCTGCCCACGCCCCAGGAGCTCATTGCTGAGCTGCCCATGGACGCCCGGGTGACGGACGTCGTCGAGCGTGGACGCGATGAAGTCCGGGCCATCATGGATGGCGTGGACGACCGCCTGCTGGTGATCGTTGGCCCCTGCTCCATCCACGATCCCAAGGCGGGCCTGGAATACGCCCGCCGGCTGGTCAGCCAGGCGGAGAAGCACAAGGAAGACCTGCTGATCGTGATGCGCGCCTACTTCGAGAAGCCGCGCACCACCGTTGGCTGGAAGGGCCTGATCAACGATCCACGGCTGGACGGCAGCCACGACATGGCCACCGGGCTCCGGGCGGCACGCAGTTTCCTGCAGCAGGTCACATCGCTGGGACTCCCGGCCGCCACCGAATTCCTGGAACCCATCAGCCCGCAGTACATGGCAGACCTGGTTTCCTGGGGCGCCATCGGGGCCCGCACCACGGAGAGCCAGATCCACCGCCAGCTGGCATCGGGGCTGTCCATGCCCATCGGCTTCAAGAACGGTACCGACGGCGACCTCCAGGTGGCGGTCGACGCCTGCGGTGCGGCGGCGGCCGCACAGGCTTTCCTGGGCATTGACGGCGACGGCCGGGCGGCCCTGGTGGCCACCGCCGGTAACCCGGACACCCACGTCATCCTCCGTGGCGGACGCAAGGGACCCAACTACTCCTCCGCCGACGTCGAGGCGGCATCCTCAACGCTCGCCGGCAAGCAGCTGAACCCCAGGCTGATCGTGGACGCAAGCCACGCGAACAGCGGGAAGAGCCACCACCGCCAGGCCGAAGTGGCACTGGAAATCGGGGCCCAGCTGGAGGACGGGGGAGCGGCAGCCCAGGCCATCGCCGGTGTCATGCTGGAGAGTTTCCTGGTGGGCGGTGCCCAGAACCTGGACGTGGCCGAGCACGCGGCCGGCAGGTCCGGGCTGGTCTACGGGCAGAGCGTGACGGACGCCTGCATGGAGTGGGATGTCTCGGTATCGGTGCTGGACCAGTTGGCGGCGTCGGCCCGCAAGCGCCGGACCGCGAATTGAMSTATAATTGTTPTGKSTSNLRVSEFTALPTPQELIAELPMDARVTDVVERGRDEVRAIMDGVDDRLLVIVGPCSIHDPKAGLEYARRLVSQAEKHKEDLLIVMRAYFEKPRTTVGWKGLINDPRLDGSHDMATGLRAARSFLQQVTSLGLPAATEFLEPISPQYMADLVSWGAIGARTTESQIHRQLASGLSMPIGFKNGTDGDLQVAVDACGAAAAAQAFLGIDGDGRAALVATAGNPDTHVILRGGRKGPNYSSADVEAASSTLAGKQLNPRLIVDASHANSGKSHHRQAEVALEIGAQLEDGGAAAQAIAGVMLESFLVGGAQNLDVAEHAAGRSGLVYGQSVTDACMEWDVSVSVLDQLAASARKRRTANPGPT0012920_3055DIRECT 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
D1-29_038121020axeACOG3458Cephalosporin-C deacetylaseATGCCTCTTTTTGACCTTCCCCTCGAGCAGCTCCGCGGGTACACCTCACCCGTGACGCCCCCGGACGACTTCCAGGCCTTTTGGGACGGCACCATCGAGGAAGCCCGAACATTTCCCCTTGGAGCCACTTTTGAGCCCGTGGAGAACTACCTTTCGGTCATCGACACCTACGACGTGACGTTCGCTGGCTACGGCGGTGCCCCCATCAAAGGGTGGCTGCACCTCCCAGCGAACCGGATGCCCGGAACCCAGCTGCCCGTCGTCGTGAATTATGTTGGCTATTCCGGCGGGCGGGGCCTGGTCAACCAAGACACCCGATGGGCCCAGGCGGGCTATGCGCACTTCATCATGGATACCCGCGGTCAGGGCTATGGCTGGGCGCTCGGCGAGACGGCTGACCCGCACCCCAGTGCCGGAGAGGTGGCCTACGCCGGGTTGATGACGCGGGGAGCCGGAAGCCGGGAGGACTATTACTACCGACGGGTCTACGTGGACGCCTTCCGCGCCGTGGAGGCTGCCCAGTCCCACCCTGCGGTTGACGCCTCACGAGTGGTCCTGGCCGGCGTCAGCCAGGGCGGCGGCATAGTTATTGCCGTCGCGGGACTCGTTCCCGGACGGCTCGACGGCGTCATCGCCGCGCTGCCTGATGTCCCGTTCCTGCAGGACTTCCCCCGCGCCATCGACATCACTCCGAGCGGGCCGTACCCGGAAATCGCCGGGTTCCTGGGCCGGCACCGCGACCGGTATGAGCCCATGCTTGCGGTGCTAAATTATTTCGACGGCGTCAACCTGGCCCGGTGGGCCACCGTTCCGGCGCTCTATTCCGCAGCACAGATGGACGATATCTGCCCCCCGTCAACCGTGTTTGCCAGCTTCGACGCCTACGGTTCCGGGGCAGCAGGCTCCTCAGGTACTGGGGCGGCCAAGGACATCGAGGTGTACCGGTTCAACAGCCATGAGGGCGGCCAGGAACACCACTGGATCAGGCAACTGGAGTTCCTCCGCAAGCTACTGGGCTGAMPLFDLPLEQLRGYTSPVTPPDDFQAFWDGTIEEARTFPLGATFEPVENYLSVIDTYDVTFAGYGGAPIKGWLHLPANRMPGTQLPVVVNYVGYSGGRGLVNQDTRWAQAGYAHFIMDTRGQGYGWALGETADPHPSAGEVAYAGLMTRGAGSREDYYYRRVYVDAFRAVEAAQSHPAVDASRVVLAGVSQGGGIVIAVAGLVPGRLDGVIAALPDVPFLQDFPRAIDITPSGPYPEIAGFLGRHRDRYEPMLAVLNYFDGVNLARWATVPALYSAAQMDDICPPSTVFASFDAYGSGAAGSSGTGAAKDIEVYRFNSHEGGQEHHWIRQLEFLRKLLGPGPT0011020_159DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-CEPHALOPORIN_METABOLISM,PGPT0011020-cah-K01060NANA
D1-29_038131536rhaBRhamnulokinaseATGAGCACCGAACGCACCAACGAAACTGCCCCGGTCCAGGCCGGGGAAGTTTCCGCTGGTCCCCGCAAGGTGTTTACCGGCAGTGTCTTCGCCGCGGTCGATATTGGCGCCTCCTCCGGCCGGGTCATCCTGGGCCGGGTCACCGGCGGCGCCGACGGTGACGGCAGTGTGCAACTCGAAGTGGTGCACCGCTTCCCGAACGGGGTGGTAGAGATCGACGGCGGCCTCCGCTGGGACTTCGACGCCCTCTTCGCCGAGGTGCTCGAGGGCCTGCGGGCGGCGTCCGCCGTCGCAGCAGCGCAGGGCGAGCACGTGGCCAGCATCGGCATCGACACCTGGGCAGTGGACTACGGGCTGGTCAATGCGGACGGGGAACTGACGGCCCAGCCCTTCAGCTACCGGGATGACCGCAGCCGCGCCGCCGTCGAACCCGTCCACCGAAAGTTGGATCCCGCGCGGCTTTACGGCACCACGGGCCTGCAGTTCCTGCAGTTCAACACCATCTACCAGCTGGCCACTGAACCCGATCTAGGCGGGCTGCAGGCGCTGCTGATACCGGACCTGATCGCATTCCTCCTCACCGGCGTTCGGCGGACCGAGGCCACCAATGCCTCCACCACCGGTCTCTTCGACGCTGTCGCGGGGGAGTGGGCCACCGAGTTCTTCACTGCACTCGGGTTGCGGAAGGACCTGTTCCCGCCGCTGATCCAGCCCGGGGAAACCTATGGCACCCTCCTGCCGGCCATCGCCGCCCAGGTGGGACTGCCGCAAGACACCACGGTGGTGGCCGTCGGCTCGCACGACACAGCTTCCGCCGTCGCGGCCGTCCCTGCCGCGGCAGCGGGAGAGGGGCAGCGGGATTTCGCCTACATTTCCTCCGGAACGTGGTCGCTGGTGGGGCTGGAGCTGAAGCACCCGGTGCTCACCGAGGCCAGCCGGGAAGCGAACTTCACCAACGAACGCGGCGTGGACGGCACCATCCGGTACCTGCGCAACATGGGCGGGCTCTGGCTCCTCAGCGAATGCCAGCGGGAGTGGTCCCAACAGGGCTACGCAGGCAGCCTGGAGGAACTGTTGGAGGCGGCTGCGGAACTGCCACCCGGCGGTCCCAGGATCAACGCCGAGGATCCGTCGTTTATTGCCCCTGACAACATGCCCGAACGCATCCGCGCGGCAGTGCACAGCGCCGGGGGACTGCTCGCGGACCATCCAGCGGCCATCACCCGGTGCATCCTGGACAGCCTGGCCGCAGGCTACGCCAAGGCCATTTCAACGGCGGAACGGCTCTCGGACCGTCAGGTCGAGGTGGTGCATGTGGTGGGTGGAGGCTCGCAGAACCGCCTGCTCTGCCAGCTCACAGCGGACGCGACCGGAATGCCGGTTGTGGCAGGACCCGTGGAAGCCACGGCCCTGGGCAACGTGCTGGTTCAGGCCCGGGCGGCAGGGGCTGTCTCCGGCGGGCTGTCCGAGCTCCGGTGCCTGGTGGCCAGTGCCGGCGGGCTGCAGGAGTTCAGGCCGCAGCTTTCCCGCCTCTAGMSTERTNETAPVQAGEVSAGPRKVFTGSVFAAVDIGASSGRVILGRVTGGADGDGSVQLEVVHRFPNGVVEIDGGLRWDFDALFAEVLEGLRAASAVAAAQGEHVASIGIDTWAVDYGLVNADGELTAQPFSYRDDRSRAAVEPVHRKLDPARLYGTTGLQFLQFNTIYQLATEPDLGGLQALLIPDLIAFLLTGVRRTEATNASTTGLFDAVAGEWATEFFTALGLRKDLFPPLIQPGETYGTLLPAIAAQVGLPQDTTVVAVGSHDTASAVAAVPAAAAGEGQRDFAYISSGTWSLVGLELKHPVLTEASREANFTNERGVDGTIRYLRNMGGLWLLSECQREWSQQGYAGSLEELLEAAAELPPGGPRINAEDPSFIAPDNMPERIRAAVHSAGGLLADHPAAITRCILDSLAAGYAKAISTAERLSDRQVEVVHVVGGGSQNRLLCQLTADATGMPVVAGPVEATALGNVLVQARAAGAVSGGLSELRCLVASAGGLQEFRPQLSRLPGPT0017775_86DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017775-rhaB-K00848NANA
D1-29_038142058hcaB_43-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGGGGCGCGTAACTGCAATGACCACCAACAAGACTGTTGAAGACCTGATCTCCCGTTCCAACCGCCTGGGCGCGGACAAGCGGAACACCAACTTCGCCGGCGGCAACACCTCCGCCAAGGGCACCGAAAAGGATCCGGTGACGGGCGAGGACGTCCAGCTGTTGTGGGTCAAGGGCTCGGGCGGGGACCTGGGCACCCTCAAGGCGGAGAACCTTGCGGTTCTGCGCCTGGACCGGCTGAACGCGCTGAAGAACGTCTACCCGGGCGTGGAACGTGAAGACGAGATGGTGGCCGCCTTCGATTACTGCCTGCACGGCAAGGGCGGTGCCGCTCCTTCGATCGACACCGCCATGCATGGGCTGGTAGACGCCGCGCACGTTGACCACCTGCACCCGGACTCCGGCATCGCCATCGCCACCGCGGTGGACGGCGAGGCCCTGACCACCAAGATCTTCGGCAACAAGGTTCTTTGGGTTCCCTGGCGCCGTCCCGGGTTCCAGCTGGGCCTCGATATTGCCGCAATCAAGGAAGCCAACCCGCAGGCCATCGGCACCATCCTGGGCGGGCACGGCATCACCGCCTGGGGCGCCACCAGCGAAGAGGCTGAACAGAACTCGCTGTGGATCATCGAACAGGCCGAGAAGTACATCCGGGACAACGGCAAGGCCGAACCCTTCGGGCCCAAGCTGCCCGGTTACGGCGCCCTGCCCGAGGCCGAGCGCAAAGCCAAGGCCGCAGCGCTGGCACCGGTGATCCGCGGACTGGCTTCCACGGACAAGCCGCAGCTGGGGCACTTCAGCGATGACGCCGTCGTCCTGGACTTCCTCGAAGCTGCCGAGCACCCGCGCCTGGGCGCTCTGGGCACCTCCTGCCCGGACCACTTCCTGCGCACTAAGGTCAAGCCGCTGATCCTTGACCTGCCGGCGGACGCCTCCATCGAAGACTCGATCTCACGGCTGCATGAGCTGCACGCCGACTACCGCGAGGACTACCAGGCCTACTACGACCGTCATGCGGAAGCGGAAAGCCCCGCCCTGCGCGGCGCGGACCCGGCCATTGTGCTGGTGCCCGGAGTGGGCATGTTCTCCTTTGGCGCGAACAAGCAGACCGCCCGCGTTGCCGGTGAGTTCTACATCAACGCCATTAACGTGATGCGCGGCGCCGAAGCGATCTCCACCTACGGCCCCATCGAGGAATCCGAGAAGTTCCGGATCGAGTACTGGGCGCTGGAGGAAGCCAAGCTGGCCCGGATGCCCAAGCCGAAGTCGCACGCCACCCGCATCGCGATGGTCACCGGTGCAGCTTCCGGCATCGGCAAGGCCATCGCCACCCGCCTCGCCGGCGAAGGCGCGTGCGTGGTTATCGCCGACCTGAACCTCGAGAATGCCGAAAAGGTGGCCGAAGAGCTCGGCGGCCCCGACGTCGCCATCGGTGTCCAGGCGGACGTCACTGACGAAGCCCAGGTGGCAGCCGCCATTGACGCCGCTGTCCTGGCGTTCGGCGGTGTTGACCTGGTGGTCAACAACGCTGGCCTGTCCATCTCCAAACCGCTGCTGGAAACCACCGAGAAGGACTGGGACCTGCAGCACAACGTCATGGCCAAGGGCTCATTCCTGGTGGCCAAGGCCGCAGCCAAGGTCATGATCGCCCAAGGCCTGGGCGGGGACATCATCTACATCTCCTCCAAGAACTCCGTGTTCGCCGGCCCGAACAACATCGCCTACTCCGCCACCAAGGCAGACCAGGCCCACCAGGTGCGCCTGCTCGCGGCCGAATTGGGTGAGTACGGCATCCGCGTCAACGGCATCAACCCCGACGGCGTGGTCCGCGGCTCAGGCATCTTCGCCGGCGGTTGGGGTGCCAAGCGCGCGGCAGTCTATGGCGTGGACGAGGAAAAGCTGGGCGAGTACTACGCCCAGCGCACCCTGCTCAAGCGCGAAGTCCTGCCCGAGCACGTGGCCAACGCCGCCGCCGTGCTCACCAGCAACGAACTGTCCCACACCACCGGCCTGCACATCCCCGTGGACGCCGGAGTGGCCGCAGCCTTCCTGCGATGAMGRVTAMTTNKTVEDLISRSNRLGADKRNTNFAGGNTSAKGTEKDPVTGEDVQLLWVKGSGGDLGTLKAENLAVLRLDRLNALKNVYPGVEREDEMVAAFDYCLHGKGGAAPSIDTAMHGLVDAAHVDHLHPDSGIAIATAVDGEALTTKIFGNKVLWVPWRRPGFQLGLDIAAIKEANPQAIGTILGGHGITAWGATSEEAEQNSLWIIEQAEKYIRDNGKAEPFGPKLPGYGALPEAERKAKAAALAPVIRGLASTDKPQLGHFSDDAVVLDFLEAAEHPRLGALGTSCPDHFLRTKVKPLILDLPADASIEDSISRLHELHADYREDYQAYYDRHAEAESPALRGADPAIVLVPGVGMFSFGANKQTARVAGEFYINAINVMRGAEAISTYGPIEESEKFRIEYWALEEAKLARMPKPKSHATRIAMVTGAASGIGKAIATRLAGEGACVVIADLNLENAEKVAEELGGPDVAIGVQADVTDEAQVAAAIDAAVLAFGGVDLVVNNAGLSISKPLLETTEKDWDLQHNVMAKGSFLVAKAAAKVMIAQGLGGDIIYISSKNSVFAGPNNIAYSATKADQAHQVRLLAAELGEYGIRVNGINPDGVVRGSGIFAGGWGAKRAAVYGVDEEKLGEYYAQRTLLKREVLPEHVANAAAVLTSNELSHTTGLHIPVDAGVAAAFLRNANANANANA
D1-29_038151179xylA_2Xylose isomeraseATGAATGACGTAGCAACGGCGCTGGGCAGGCTCGGGGAGCTTGCCATCGAGGTCCCCTCGTGGGCTTATGGAAATTCAGGCACGCGTTTTAGGGTGTTCGGCACGCCGGGCACGCCGCGGACGGTGCAGGAGAAGATCGCGGACGCCGCCAAAGTCCACGAGCTGACCGGTCTGGCCCCCACCGTTGCCCTCCACATTCCATGGGACAAGGTGGATGACTACGCCGCGCTGAAGGAGTACGCCGCCGGGTTGGGTATGGGCCTGGGCACCATCAATTCCAACACCTTCCAGGATGACGAGTACAAGTTCGGCTCCCTGACATCCTCCAACGAGTCAGTCCGCCGCCGGGCCATCGCCCACCACCTGGACTGCATTGAGATCATGCACGCCACGGGCTCGAAGGACCTGAAGATCTGGCTGGCGGACGGCACCAACTACCCGGGCCAGGATGACATGCGCGGCCGCCAGGACCGCCTGGCAGAATCGCTCCAGGAGATCTACGCCGCACTGGGCGACGAACAGCGCCTGGTGCTGGAATACAAATTCTTCGAGCCCGCTTTCTACCACACCGACGTGCCGGACTGGGGCACCTCCTACGCCCAGACCCTGGCTCTCGGGGAGAAGGCATTCGTCTGCCTGGACACCGGCCACCACGCCCCGGGCACCAACATCGAGTTCATCGTGATGCAGCTGCTGCGCCTGGGCAAGCTTGGCTCCTTCGACTTCAACTCGCGCTTCTACGCCGACGACGACCTCATCGTGGGTGCCGCGGATCCGTTCCAGCTCTTCCGCATCATGTACGAGGTGATCCGCGGCGGCGGCTACGGCAAGGATGCTCGAGGAAATTCCGCTGTCGCGCTCATGCTGGACCAGTGCCACAACCTCGAAGAGAAGATCCCGGGCCAGATCCGCTCGGTCCTGAACGTCCAGGAAATGACCGCCCGCGCACTGCTGGTGGACACCGAGGCCCTGGGCGAAGCGCAGCGTGCCGGTGATGTCCTGGCTGCCAACGGTATTTTCAACGATGCCTTTTACACGGACGTCCGGCCACTGCTGGCCGAGTGGCGTGAATCCCGCGGCCTGCCAGCGGACCCGCTGGCTGCCTTCAAGGCCAGCGGCTACCAGAAGAAGATCAACGAGGACCGCGTGGGCGGCCAGCAAGCCGGATGGGGCGCGTAAMNDVATALGRLGELAIEVPSWAYGNSGTRFRVFGTPGTPRTVQEKIADAAKVHELTGLAPTVALHIPWDKVDDYAALKEYAAGLGMGLGTINSNTFQDDEYKFGSLTSSNESVRRRAIAHHLDCIEIMHATGSKDLKIWLADGTNYPGQDDMRGRQDRLAESLQEIYAALGDEQRLVLEYKFFEPAFYHTDVPDWGTSYAQTLALGEKAFVCLDTGHHAPGTNIEFIVMQLLRLGKLGSFDFNSRFYADDDLIVGAADPFQLFRIMYEVIRGGGYGKDARGNSAVALMLDQCHNLEEKIPGQIRSVLNVQEMTARALLVDTEALGEAQRAGDVLAANGIFNDAFYTDVRPLLAEWRESRGLPADPLAAFKASGYQKKINEDRVGGQQAGWGAPGPT0017770_383DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017770-rhaA-K01820NANA
D1-29_03816354rhaM_1COG3254L-rhamnose mutarotaseATGAGGGTGTGTTTCCGCTCCTCGGTCAGGCCGGAGCTGATCGATGAATACCGGCGCCGGCATGCCGCGGTGTGGCCGGAGATGCTGGTGGAACTCAAACAAGCCGGCTGGAACAACTACTCGCTGTTCCTTGGATCTGACGGCCTCCTCATTGGCTACGTCGAATGCGACGATTTCGACGCCGTCCGCGCCAGAATGGCGCTGACAGAGGTTAATGCCCGCTGGCAGGCGGAAATGGCCGCTCTTTTCAACAACCCGGACAACCCGGACCAGGCGCCCGACGAGGGGTTCCAGGTCCTGGAGGAAGTCTTCAATCTTGATGACCAGCTCGCCGCGGCAGCTGCTGAGCCCTAGMRVCFRSSVRPELIDEYRRRHAAVWPEMLVELKQAGWNNYSLFLGSDGLLIGYVECDDFDAVRARMALTEVNARWQAEMAALFNNPDNPDQAPDEGFQVLEEVFNLDDQLAAAAAEPPGPT0017795_197DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534NANA
D1-29_038171044cytR_6COG1609HTH-type transcriptional repressor CytRATGAATCGTTCAGCCAGTATCAAGGACGTCGCGAACCACGCGAGCGTGGCAGTGGGTACCGTGTCCAACGTCCTGAACTACCCTGACCGCGTCTCCGAGCGGACTAAGGAGCGGGTACTCCGGGCCATCGACGAGCTGGGCTTTGTCCGAAATGATGCTGCGCGGCAGCTCCGCGCCGGCCATAGCCGGACCATCGGCCTGATTGTCCTGGACGTGGGCAACCCCTTCTTCACGGCCGTGGTGCGCGCCGCGGAAGACGCCGCCGCGCTGCAGGGCAGCGCGGTGCTGCTGGGCGACAGCGGCCATGATGCGAGCCGTGAGTCCAACTACATCGATCTTTTCCAGGAACAGCGTGTCCAGGGCCTGCTCATCTCCCCCGTGGGCGACGTCACCGAGCGGCTGGACCTGCTTCGCGAGCGCGGCGTTCCCACCGTTCTGGTGGACCGGCTCGCCGATGAGAGCAAGTACAGTTCAGTCTCCGTGGACGACGACGCCGGAGGTTACCTCGCTGCCCGGCACCTGCTGGACACCGGCCGCCGTCGGCTTGCCTTTGTGGGCGGCCCGGCATCCATCCGCCAGGTGGCGGACCGCCTGCAAGGTGCCCAGCGTGCTGTGAAGGAGGAACCGGATGCCACGCTTGAGGTGCTGGATTCAGAGGGGCAGACAGTGCTGGCAGGCCGCAGTGTGGGCAATGCCCTGGTAGAGCGCAGCGGGGCGGAACTGCCGGACGGGATCTTCTGTGCCAACGATCTCCTCGCCCTGGGAGTGATGCAGTCCCTCACCATGACCCACTCCCTCAGGATCCCGGAAGACATCGCCCTGATCGGCTATGACGACATCGACTTTGCGGTCTCCGCGGTGGTCCCGCTGTCCTCCATCCGGCAGCCCACTGAGGCCCTGGGCCGCACCGCCATAGAACTGCTCGCCGAGGAAGTGGAATCCGAAAACCCCAGGCACCGAGCGGTGATCTTTACACCGGAGCTGGTGGTCCGCCAGAGCACGGGACCCACCACAGGGCTCAATCCCCTGGCGCATCCGCACTGAMNRSASIKDVANHASVAVGTVSNVLNYPDRVSERTKERVLRAIDELGFVRNDAARQLRAGHSRTIGLIVLDVGNPFFTAVVRAAEDAAALQGSAVLLGDSGHDASRESNYIDLFQEQRVQGLLISPVGDVTERLDLLRERGVPTVLVDRLADESKYSSVSVDDDAGGYLAARHLLDTGRRRLAFVGGPASIRQVADRLQGAQRAVKEEPDATLEVLDSEGQTVLAGRSVGNALVERSGAELPDGIFCANDLLALGVMQSLTMTHSLRIPEDIALIGYDDIDFAVSAVVPLSSIRQPTEALGRTAIELLAEEVESENPRHRAVIFTPELVVRQSTGPTTGLNPLAHPHPGPT0017992_6297DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_03818720hypothetical proteinATGGAGCAGAATCTCCCTCTTGATGAACTCTCCGTTGTGATTGGCAGGATCAACGGCCTGCTCCTCACGGAAGAAAAAGTAGACCGCGCCGTGCACCTCCTGGCCCGGGCGGTCAAGGACGCGATACCAGGGACCGTGGGGGCAGGCGTGTCACTCCTGGACAGTCACGGCCGCAGGACCAGTGCCGGATTTACGGATCGGATTGTCGAACGCGCTGACGCCCTGCAGTATGAGCTTGGACAGGGCCCCTGCCTGACTGCCTGGGCAGCCGAGGAAACTGTGCATGTTGATGACGTCCGGGCCGATAATCGCTGGCCGGACTGGAGTGCTGCGGTGGAAGCGCTGCCGGTCCGCTCGGTGGTCAGTGCCGCGCTCGTCTCAGGGAAGGAATGCATCGGCGCACTGAAGGTCTATGCCGCTCTTCCCTCTGTGTACGATTCAGGCACGGGCCAACTCCTTGAGCTGTTTGCGGCCCCGGCAGCGACGCTGCTGTCCCACATACAAACCAGTGAAGCACCGCACCGTATGAGTGCCGGGCTCCAGGCCGCGCTGCACAGCAGGGATGCGGTCAACCGTGCTTGCGGGATCCTGATGGAACGGCATGGCATGAGTCATGAGCAGGCACTGCAGCAGCTCATGCGCCGGGCCCGCGACACAGGACAAACCCTGCCTCAGACCAGCGCTGAAACAATCGCCGGAACGCCGGCGAACCGGAACTAAMEQNLPLDELSVVIGRINGLLLTEEKVDRAVHLLARAVKDAIPGTVGAGVSLLDSHGRRTSAGFTDRIVERADALQYELGQGPCLTAWAAEETVHVDDVRADNRWPDWSAAVEALPVRSVVSAALVSGKECIGALKVYAALPSVYDSGTGQLLELFAAPAATLLSHIQTSEAPHRMSAGLQAALHSRDAVNRACGILMERHGMSHEQALQQLMRRARDTGQTLPQTSAETIAGTPANRNNANANANANA
D1-29_03819408hypothetical proteinGTGGGCTTCGATCCCCATGAACCCGAACAAAGCCGCCGGCTTCGGGAAGCGCTCAAGGCCTCAGACCTCGGCATCGGGGAGCTGTGGCTGAATTACTTCAGCCTTGGCGGCAGTGTGGGCGAATACGAAGTTGAGGCCTACTTGCAGGGCCTGCTGTCCCTCCCGCCCATCGAACGGGATCTGCTGGCCATGGCGGGTAACGAACTAATCGATAAGGCTCCGCGGATCCACGCCCCCTATTCAGATGACCTCGACTCAGACGACCTCGATTCAGACGACCTCGCCCGACCAACCCAAGAGAATCGTGGCGAACAGGAGCAAATTGGCTCAGGCGGAGAACTGAGCCAGCCGGGCAAGGATCAGGGCACGGGCGAGGACGAACACGGCCAGGAACCGCCCCGGGCGTAGMGFDPHEPEQSRRLREALKASDLGIGELWLNYFSLGGSVGEYEVEAYLQGLLSLPPIERDLLAMAGNELIDKAPRIHAPYSDDLDSDDLDSDDLARPTQENRGEQEQIGSGGELSQPGKDQGTGEDEHGQEPPRANANANANANA
D1-29_03820231hypothetical proteinATGGGAGTCCAGATGGGTGCAGAGTCGATCCTCGCGTTGATCGGCGGGTATCTCGCAACAGCCATCACAGTGTTCCTGTTGTACTCGCCCGTATTGATTCTTGTGGTGGTGCTGCTGTTGATAGCGGGCATTCTGCAGCTTATTGCCTTGCCCTTCATCGTCCTGATTCGCAGGCTGCGGGGGCGGGGAAAGCCCAAATCGCCGTCGGACGGAACGTGGCTTTTCCGGTGAMGVQMGAESILALIGGYLATAITVFLLYSPVLILVVVLLLIAGILQLIALPFIVLIRRLRGRGKPKSPSDGTWLFRNANANANANA
D1-29_03821744hypothetical proteinATGGCCCAGGAACCCAACATTTTGCCCGAAGCGGACGTCGCAGAGCACCTTCAGGACTTGGTCCTACAGTGTGCCGACGTAGAGGAGCTCCTCAATGAACTTGCGGCCTTCTCAGCCTCAAGCCTTTCCACCCGTCATGAGGTGTTCTGCAGCGTCACGTTGATGCGGAAGAAGAAGGCAGCCACCGTAGCCTCCAGCGATCACCGCGCCCTTCCCCTGGACGAACTGCAGTACGGCTTGGGCGACGGCCCCTGCCTCACTGCCATCCGGGAGCTGACCACCATGCACGTCCCCGATCTGCAGGAGGAACGCCGCTGGCCCGGCTACATCGCCGCTGCCTGGAAACAGGGAGTCGGTTCAATCCTGGCTGTTCCCCTGCCCCTCGAGGGCGAAGCGAACGCGGCTTTGAACGTATATTCGGCCAAGACACACGCCTTCAGCGGGGAAGACATTGAAAAGGCCGAGGCTTACGCTGGGCAGGCTTCCAAGTCATTGCGACTGGCCGTCCGAATCGCCCGGCTCACCGACGACCGGAATAACCTGAAAGCGGCAATGGAATCCCGCACCACCATCGACCTTGCAGCCGGCGCGATCATGGCGCAGAACCGCTGCAGCCAGGACGCGGCATTCCAGATCCTGAGAATCGCCTCGAGTTCGCGCAACATGAAACTCCGGGACGTCGCGACCTCAATCGTCACCTCAGTGTCCCGGGATCCAAACGTCCTCACCCACTTCGACGCCTAGMAQEPNILPEADVAEHLQDLVLQCADVEELLNELAAFSASSLSTRHEVFCSVTLMRKKKAATVASSDHRALPLDELQYGLGDGPCLTAIRELTTMHVPDLQEERRWPGYIAAAWKQGVGSILAVPLPLEGEANAALNVYSAKTHAFSGEDIEKAEAYAGQASKSLRLAVRIARLTDDRNNLKAAMESRTTIDLAAGAIMAQNRCSQDAAFQILRIASSSRNMKLRDVATSIVTSVSRDPNVLTHFDANANANANANA
D1-29_03822786rhgTCOG2755Rhamnogalacturonan acetylesterase RhgTATGAAAATCCTGCTCGCCGGAGATTCCACCGTGGCGAACTGTCCCACCTACGAGTACCCCATGAGCGGCTGGGGAGCGCAGCTACCCCCGCACGTGTACACCTGGGCTGCCGTGCACAATTTCGCCAAGGGCGGTGCCAGCACGGAGTCCTTCCGCGCAGAGGGGCTATGGCGTCAGCTCCTGGAACTGGTCGAGGAAGGGGACCTGGTCCTGATCCAGTTCGGGCATAACGACCAGAAAAAAGTCCATCTTGCGGCCCGGACGGGATACGCCGCAAACCTGCGCACCATGGTGGCGGAGGTCCGCGCCCGCGGGGCCAGGCCTGTGTTGTGCACGTCGGTGGAGCGCCGGCACTTCCTTGAGGAAGCGGACGGTGTCGCCGAGCTGGAACAGACGCTGGAGGACTATCCGGAGGTGGTCCGTGAGATTGCCCTTGAACTGCAGCTGCCCGTCGTCGACCTCAACTCCTGGACTCGAGACCTGTACACCCACCTGGGCGTGGAGAAATCAAAAGAGCTGTTCTGTCATTTCGGGCCGGGCGAACATGCGTACTGGCCGGCAGGGCTGGCGGACAACACCCACTTCTCGCAGGAAGGGGCAGCCCTGGTGGCGGAGCGCGTCGCCAGCCAGATAGCGCTGTTGGGCCTCGCCCCTGGCAGCCGGGACCCTGGCAGCCGGAACCCTGACAGCGGGGAACCTGACGGCCGGGAACCTGAGGTCTGGGAAGTGGCTGGAAGTCCGACGGCGGTACGCCCGCCGGAGGACCTGGCGGCGGCGGTCCGCTAGMKILLAGDSTVANCPTYEYPMSGWGAQLPPHVYTWAAVHNFAKGGASTESFRAEGLWRQLLELVEEGDLVLIQFGHNDQKKVHLAARTGYAANLRTMVAEVRARGARPVLCTSVERRHFLEEADGVAELEQTLEDYPEVVREIALELQLPVVDLNSWTRDLYTHLGVEKSKELFCHFGPGEHAYWPAGLADNTHFSQEGAALVAERVASQIALLGLAPGSRDPGSRNPDSGEPDGREPEVWEVAGSPTAVRPPEDLAAAVRPGPT0017810_2456DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017810-lacZ-K01190NANA
D1-29_038231278iolG_11Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGGGAACGCCATCCGGCACCCACGCCGAGTCAACTTTCAAGGAGCCACACTCGGCCCGCACCCAGCCCGCCACGCGGGAGGGCAAGCCGGCAACCCGCGTTGCACTGGTAGGCGTCCATGGGTTTGGTACCCATCATCTGCGCAATCTTGAACGCCTCCAGGCGAACGGCGTTGTGGACCTCGTGGCGGTGGCCGATCCGCAGCCGCCCTCACCCGGTTCCGTGCCCGCCACAGCTGCTGTTTTCCCGGGGCTCACTGAACTCCTGGCGGAAACCCGGGAACTGGACGTCATTATCGTGGCCACCCCTATCCAAAGCCACGCACCGCTGGGCCTTGCCGCGCTGGCAACGGCTGCAGATCTCTACCTGGAGAAGCCGCCCGTTGCATCGCTGGCAGACTTCGACAGGCTGCGTAACGCCGCCGCCGCCTCCGGACGGAGCGTGCAGATTGGCTTCCAAAGCCTCGGTTCGCATGCACTGAAGGCCATCGAGGAATTGTTGGCGGCTGGGACCATTGGCTCCCTCCAGGGCGTCTCGGCAACAGGCCGGTGGGTCCGGGACCGCGCGTATTACCAGCGCTCCCGCTGGGCAGGAAAGCGACGTCTGGACGGTGTTGACGTGGTGGACGGTGTGGCCACCAACCCGCTGGCCCATGCGGTAGCCACCGCGCTGCGGATAGCTGGCGCACGGACGGTGGATGACGTCGCATCGGTGGAAACAGACCTGTACGGCGCCAACCAGATCGAATCTGACGACACCTCTGTGATCCGGATCCGCACGGCGTCCGGGATCTCAGTCACCTGCGCACTGACGCTGTGCGCCGGTGAATCCGTGGAACCGTACATCACCCTGCAGGGGTCGGCCGGAACTGCTGTGTTCCACTACACCGAGGACCGGCTCACCGTCAGCACCAAAGAAAGCTGGACCGAACAGGTTTTCAGCCGTGACGATCTGACCGAGAACCTGATCGCCCACCGCAACCATGGCACTGCACTCATCAGCCCGCTCCTGGACAGCGGTGCCTTCATGCTGGTCCTTGAGGCCATCCGCACCGCACCACCTCCGACGCCGATAGATCCCGGTTTCGTGCGGTGGGAGGGCGACGGCGACGCAGCGCACGCGGTGGTCATCGGGATAGAAGACGCATTGGAACAGGCCACGCAGGAACACGCCACGTTCAGCGAGCTTGGAATCCCTTGGGCGGTCACCGAAAAGGCGAAGACCAGCGCAGCACCCCATCCTGCCCGGCCCCAGTTGGCGTACGGGGGCAGTAACTAGMGTPSGTHAESTFKEPHSARTQPATREGKPATRVALVGVHGFGTHHLRNLERLQANGVVDLVAVADPQPPSPGSVPATAAVFPGLTELLAETRELDVIIVATPIQSHAPLGLAALATAADLYLEKPPVASLADFDRLRNAAAASGRSVQIGFQSLGSHALKAIEELLAAGTIGSLQGVSATGRWVRDRAYYQRSRWAGKRRLDGVDVVDGVATNPLAHAVATALRIAGARTVDDVASVETDLYGANQIESDDTSVIRIRTASGISVTCALTLCAGESVEPYITLQGSAGTAVFHYTEDRLTVSTKESWTEQVFSRDDLTENLIAHRNHGTALISPLLDSGAFMLVLEAIRTAPPPTPIDPGFVRWEGDGDAAHAVVIGIEDALEQATQEHATFSELGIPWAVTEKAKTSAAPHPARPQLAYGGSNNANANANANA
D1-29_038241278aspC_2COG0436putative aspartate aminotransferaseATGCAATATTCCAGCAAGCTCCAGAACGTCAAGTATGAACTCCGGGGTCCCATCCTCCAGGCGGCACGAAAGATGGAGGCGGAGGGGCACCGGATCCTCAAAATGAATCTTGGAGACACGGCTCCCTTTGGCCTGGAAGCGCCTGAATCCGTAGTGGTGGACATGATCCACCATCTGCGCGGAGCACAGGGCTACAGCGATTCAAAAGGCATATTCTCGGCCCGGACTGCCATTTCGCAGTATTACCAGACGCGCGGGCTGATGCAGATCGGCGTCGAGGACATTTTCATTGGCAACGGTGTCAGCGAACTCATTTCCATGACCCTCCAGGCCTTCCTGGAAAACGATGACGAAATCCTGGTCCCCGCGCCGGACTATCCGCTTTGGACAGCTGCAGTGACGCTGACTGGTGGCCGGCCTGTCCACTACCTCTGTGATGAGGACCAGAACTGGTGGCCGGACATGGCGGACGTCGAGTCCAAGATCACCAGCCGGACCAAGGGGATCGTCATCATCAATCCCAACAATCCGACAGGCGCCGTCTATCCCAGGCGCATCGTGGAACAATTTGCTGCCCTGGCCCGCAAACATGACCTGGTGCTTTTCTCTGACGAGATCTACGAGAAAGTCAGGTATGAGGATGCCGAGCACTTCCATACCGCTTCCGTGGCAGAGGATGTTTGCTGCCTGACTTTCAGCGGACTTTCCAAGGCTTACCGCATGCCGGGATACCGGGCGGGCTGGGTGGCCATCACCGGTCCGCGCACGGCAACACTGGCGTACCGGGAAGCGCTGGAATTGCTGGCCTCGTTGCGGCTGTGCCCCAATGTCCCCGCCCAGCACGCCATCCAGACCTGCCTTGGCGGCTACCAAAGCATTGAGGAACTGATCCGGCCCGGTGGCAGGCTCCGCGAACAGCGGGACCTGGCGCTGGAGCTCCTCACGGCCATTCCGGGCGTGACGTGCGTTCCCGCTGCCGGCGCCATGTACCTTTTCCCGCGGCTGGACCCGGAGGTTTACCCCTTCGTAAGCGACGAGCAGTTTGTCCTTGACCTTCTGCGGGAACAGAAGATCCTGGTGTCCCACGGTTCGGCGTTCAATTGGCCCAGGCCTGATCACTTCCGGTTTGTGATTCTGCCGGCTGTCCAGGACATCAGGGAGGCGGTACGGAGGATCGCAGCCTTCCTGGCGTCCTACCGCAACTCGGAGGCTGTGACGGAACGGCTGCCGCAGCCGCCGCTCACGCCGGTTCTTGCTGCGACGCCTGATCCGGGGTGAMQYSSKLQNVKYELRGPILQAARKMEAEGHRILKMNLGDTAPFGLEAPESVVVDMIHHLRGAQGYSDSKGIFSARTAISQYYQTRGLMQIGVEDIFIGNGVSELISMTLQAFLENDDEILVPAPDYPLWTAAVTLTGGRPVHYLCDEDQNWWPDMADVESKITSRTKGIVIINPNNPTGAVYPRRIVEQFAALARKHDLVLFSDEIYEKVRYEDAEHFHTASVAEDVCCLTFSGLSKAYRMPGYRAGWVAITGPRTATLAYREALELLASLRLCPNVPAQHAIQTCLGGYQSIEELIRPGGRLREQRDLALELLTAIPGVTCVPAAGAMYLFPRLDPEVYPFVSDEQFVLDLLREQKILVSHGSAFNWPRPDHFRFVILPAVQDIREAVRRIAAFLASYRNSEAVTERLPQPPLTPVLAATPDPGPGPT0001880_740DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0001880-alaA-K14260NANA
D1-29_038251281entS_3Enterobactin exporter EntSGTGTCTTCCGACCGCCACCAGTCCCCAGAGTCCCTCCGCGTTCCCGAGCCTCCGCTCCGTTGGTATCACCCGCTGGCCCACCGCAATTACCGCCTGTTTCTGGGTGTCCAGCTAACCGGCAACGTGGGCGTGTGGATGCAGCGACTGGCCCAGGACTGGCTGGTGCTCCAGCTGACCGGGAGCCCCGCTGCGGTGGGTGTAGCCGTAGCCCTGCAGTTTCTGCCCATGCTGATTGTTGGGCCGCTGGCCGGATTGGTGGTGGATGTCTTTCCGAAACGCCGCATCATGCTTATTTGCCAGGCCGTCATTGCCCTCCTTGCGATGGGCCTGGCCGCCTGGGCAGCCAGCGGCACCATCACCGTCTGGGCTGTGTACGCAAGCTGCGTCGCGCTGGGTGTTACCGCCGCAATTAACCAGCCTGCAAGCCACGTATTCGTGAACGAGGTGGTGGGCGACGCCGCGCTGCAGCCTGCCATCGGCCTAAATAACGCCGTTGCCCAGCTGGGAGCGATGGCCGGTCCGGCGTTGGGCGGTGTGGTCATCGCCCAGGCCGGATCGGCAGTGGCGTTCGCCGCCAACTCCGTCCTTTGCCTGCTGGTGCTGGCCATGATTGCGGCCATTCGTCCTGCACAGCTGCATCCCAGCCCACCCGCCGTCCGTGGACGTGGGCAGCTCCTGGCCGGGTTCCGCTACGTCAGGGACAGGCCCTCGCTCCTGCTGATCATCGCCCTTGCCGGCCTCATGGGGGCATTTGGCATGAACGGTCCCGTAGTGCTGGCCGCCTTCGCCGAACGGGTGTGGCACAACGGTGTGGCCGGATTCGGCATGTTCAACACCCTGAGCTCGTTGGGCGCACTGGCCGGAGCGCTGCTGGCGGCCCGCCTCAAAAACATGGGCCGCAGGGGGATCGTTGCCGCTGCCGGACTTTTTGGGCTGTCCCAACTGGTGGCCGCGCTGATGCCCTCCCTGGTGCTCTTCGCCATCATGCTGGTCATTGTGGGCCTCATGACCCTGCTGTTCCTCACCAGTGCGGTCACCGCCGTTCAGCTGGAAGCCGGTCCGGAAATCCGCGGAAGGGTGATGGCGCTGTACTTGCCGCTTCTGCTGGGCGGGCATGCCCTGGGCGGCCTCTTGGCGGGCTGGCTCACCGAGGCCTTCGGTGTTCGGACGGGACTGGTGGTCACGGGGACGCTGGGCATGGTGTCGGCCGCAGTCATTGGCCTGCTGTTGTGGATGAACTCGCGGCCTACACCCACACCGGTCCACCCAGCTGCCTCCTGAMSSDRHQSPESLRVPEPPLRWYHPLAHRNYRLFLGVQLTGNVGVWMQRLAQDWLVLQLTGSPAAVGVAVALQFLPMLIVGPLAGLVVDVFPKRRIMLICQAVIALLAMGLAAWAASGTITVWAVYASCVALGVTAAINQPASHVFVNEVVGDAALQPAIGLNNAVAQLGAMAGPALGGVVIAQAGSAVAFAANSVLCLLVLAMIAAIRPAQLHPSPPAVRGRGQLLAGFRYVRDRPSLLLIIALAGLMGAFGMNGPVVLAAFAERVWHNGVAGFGMFNTLSSLGALAGALLAARLKNMGRRGIVAAAGLFGLSQLVAALMPSLVLFAIMLVIVGLMTLLFLTSAVTAVQLEAGPEIRGRVMALYLPLLLGGHALGGLLAGWLTEAFGVRTGLVVTGTLGMVSAAVIGLLLWMNSRPTPTPVHPAASNANANANANA
D1-29_03826705hypothetical proteinATGAGCATCATGGACAGCACCACACCCGCATCCGGCCGCAATGAACCCATCCCGGTCAACCGCTTCGCACTGTTTTCCGAGACCCTGCTGGCCGGCCTGCTGGTGCTGGTGCTGTCCATTCCGCTTGTTACCATTCCCGCCGCCTACGCGGCAGGCATCGCACACCTGGAACGCCACCTCTCCGGCCGCGACGATTCCCTCCGTGCCCTCTGGGGCACCTTCCGCTTAGCCCTTCCGGGCAGCTGGAAGCTGGGAATCACGACGGCGGCAGCCGCCGTCGTTATTGGGCTGAACCTGTTGCTCGCACTGGTGGGGCAGCTGCCCGGCCGGGCGGTCATCCTTCCGGCCACCCTGGTTCTTGCCGCCGCGGCGGCGGTCCTGCTCCTGCGCACCGCCGCAGCGTGGTCCGACTTTTCCGGCGACGCCGCAGGGCCGGGAGCTACAGGGCCGGGGCCGACAGAGAAAAACCCGGCGGCGTCCGGACCAGCAGCGAAAGACCCGGCATTGAAAGATGGACCCTGGACGGCGGCGCTGGCGACGGCGAAAGTGCTGTCCCTGCGTGACTGGACAGGTTCCCTCCTCCTCGCCGCCGCACTGTTTGCCACAGTTGTGTTCGTCTGGATGCTCGCGGCCCTGTTTGTGGTGGTTCCGGGCACCCTGATCCTGGCATCCGCTTCAGTCAAGATGCGCTCCACCCGCACCTAGMSIMDSTTPASGRNEPIPVNRFALFSETLLAGLLVLVLSIPLVTIPAAYAAGIAHLERHLSGRDDSLRALWGTFRLALPGSWKLGITTAAAAVVIGLNLLLALVGQLPGRAVILPATLVLAAAAAVLLLRTAAAWSDFSGDAAGPGATGPGPTEKNPAASGPAAKDPALKDGPWTAALATAKVLSLRDWTGSLLLAAALFATVVFVWMLAALFVVVPGTLILASASVKMRSTRTNANANANANA
D1-29_03827918ngcG_4COG0395Diacetylchitobiose uptake system permease protein NgcGATGACAACCATGGCAACCCCCACCCAGTCGGCACCCCAAGCGGCGGCCGAACACTACAACCCGAAGTCCGAATCAGCCGGTACCAAACGGATCAAGAGCGCCGTCTTCCACCTCGTGGCCCTGGCCCTGACCGCCATAGTGCTCTACCCGGCGCTGTGGATGGTCACATCGTCCTTCAAGCCGAACGACGAAATCGGCGGCGGCAACACCGCGCTCTGGTCGAACAACTTCAGCTTCGACAACTTCGTCACGGCCATGGACGGGATCGGCGGGGTGTCCACCCTGCAGTTCTTCACCAACTCCCTGATTCTGGCCGTCGGCGCCGTGGTCGGCACCATCCTGTCGGCGAGCGTCTCGGCCTATGCCTTCGCCCGGATCAAGTTCCCCGGCCGCAGCGTGTTCTTCGGCATGATGATCGCCACCCTTCTCCTGCCGTTCCACGTGGTGATCATTCCGCAGTACATCGTCTTCCAGCAGCTTGGCCTGATCGACACCTACATCCCGCTGCTGATCGGCAAGTTCCTCGCCGCTGACGCATTCTTCGTGTTCCTCATGGTGCAGTTCATGCGGAACCTTCCTGCGGAACTGGACGAGGCAGCACGCATCGACGGCGCCGGGCACGTGCGGATCTTCGGTTCCATCATGCTGCCGCTGATGAAGCCGGCGCTGATCTCCACGTCGATCTTCTCCTTTATCTGGAGCTGGAACGACTTCCTCGCTCCGCTGCTGTACCTGAACACCCCGGAAAAGTACCCGCTCCCGCTGGCGCTGCGCCTCTTCCAGGACCAGACCCAGAGCTCGGACTACGGCGCTATGATCGCCATGTCAGTCCTGGCCCTGCTTCCGGTACTGATCTTCTTCCTGGTGTTCCAGCGCTACATCGTTGAAGGCGTCTCCACCCAGGGCCTCAAGGGCTAAMTTMATPTQSAPQAAAEHYNPKSESAGTKRIKSAVFHLVALALTAIVLYPALWMVTSSFKPNDEIGGGNTALWSNNFSFDNFVTAMDGIGGVSTLQFFTNSLILAVGAVVGTILSASVSAYAFARIKFPGRSVFFGMMIATLLLPFHVVIIPQYIVFQQLGLIDTYIPLLIGKFLAADAFFVFLMVQFMRNLPAELDEAARIDGAGHVRIFGSIMLPLMKPALISTSIFSFIWSWNDFLAPLLYLNTPEKYPLPLALRLFQDQTQSSDYGAMIAMSVLALLPVLIFFLVFQRYIVEGVSTQGLKGPGPT0016540_1484DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_03828951lacF_11Lactose transport system permease protein LacFGTGACTCAAAGCCCAACCCTGAGCAGGCGTTCGACGCCGCCCGCTCCCGCGCTGCGTAAGTCAAAGCAGCGCGGGGCGGACGCCCGCGCCGGCTACACTTTCCTGCTGCCCTGGCTGCTGGGATTCATCGCACTCACCGTGGGCCCGATGATTTCCTCGCTATACCTCTCCTTCACCAACTACAACCTTTTCGAGCCGCCCAAATGGATCGGGCTGGACAACTACACCACCCTGTTCCAGGACGAACGGTTCCTGCAGTCGGTGGGTGTCACCGTGTCCTACGTGGTGTTCGGTACCCCGCTCAAGCTGGCGGCCGCGCTGGCAGTGGCCATGCTGCTCAACAGCAAGCGCAAGGGCCAAGGCTTCTACCGTTCGGCGTTCTACGCACCCTCCCTGATCGGCGCGTCCGTCTCCATTGCGATCGTCTGGAAAGCCGTGTTCGGCGACGCCGGCCCGGTGGATGAGGGCCTGTCCTTCTTCGGTATCAACCTCGGTGGCTGGGTGGGCAACCCCTCCATGACCATGCCCATGTTCGTCCTGCTGACCGTCTGGCAGTTCGGCGCCCCGATGGTGATCTTCCTTGCCGGCCTCAAGCAGATCCCAACAGACCTCTACGAAGCGGCGTCCATGGATGGTGCCGGACCGGTGCGGAAGTTCTTCAACATCACCTGGCCCATGCTCTCCCCGGTGATCTTCTTCAACCTGCTGATGGAAACCATCCACGCATTCCAGATCTTTGCTTCGGCCTACATCATCTCCAACGGTGAGGGCGGCCCGGCGGGCTCCACACTCTTCTACACCCTTTACCTGTACCTGCGGGGCTTCAGCGACTTCCGGATGGGCTACGCCTCGGCCATGGCCTGGCTCCTGGTGATTGTCGTCGGCATCATCACCCTGATCTTCTTCAAAACGTCCAAGTCCTGGGTCCACTACAGCGGTGATGCAAAATGAMTQSPTLSRRSTPPAPALRKSKQRGADARAGYTFLLPWLLGFIALTVGPMISSLYLSFTNYNLFEPPKWIGLDNYTTLFQDERFLQSVGVTVSYVVFGTPLKLAAALAVAMLLNSKRKGQGFYRSAFYAPSLIGASVSIAIVWKAVFGDAGPVDEGLSFFGINLGGWVGNPSMTMPMFVLLTVWQFGAPMVIFLAGLKQIPTDLYEAASMDGAGPVRKFFNITWPMLSPVIFFNLLMETIHAFQIFASAYIISNGEGGPAGSTLFYTLYLYLRGFSDFRMGYASAMAWLLVIVVGIITLIFFKTSKSWVHYSGDAKPGPT0016535_2399DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_038291290yesO_5COG1653Putative ABC transporter substrate-binding protein YesOATGATCAACCGAAGGAATTTCCTCACCACTGTGGCTGTAGGCACCGCATCTGCCGCAGCTTTGGCGGCTTGTGGCACAGGCTCCAGCACGTCCGGGGAGACGGGCTCCGCGGAAAACCCCGTCAGCATTGACTACACCTGGTGGGGCAACGACGACCGCGCCGAGCGCACCCGCAAGGCCATCGCCCTGTTTGAGTCAAAGAACCCGGACATCAAGGTCAACGGCAACTTCACCGACTTCGCTGGCTACTGGCAGAAGCGTGCCACCGAGGCAGCCGGCGGCGGGCTGCCTGACGTTATGCAGTGGGACCTCTCCTACCTGCGTGACTACGGCCAGCGCAACCAGCTCCTGGACCTGAGCACAGTCAAGATCAACACGGACGCCTTCGACAAGTCCCTCCTGCCCTCCGGCCAGATCAGGGGCAAGACCTACGGCATCCCTACCAGCACCAACGCGTTCGCCGTCTACTACGATCCGGCCAAGCTGGCCTCCCTCGGCATTGCCGAGCCGGACGGCAGCTGGTCCTACAAGGAATTCAACGAGTTCCTGACCGAAGTAGGCACCAAGAGCAACGGCGCGATCTTCGGCGGAACCGACTACACCGGTGTGTGGTGGATGTTCAACATCTGGCTGCGCCAGAACAACATCGAAGCGTTCACCGAAGACGGCAAGCTCGGCTTCACCAAGGACGATATGAAGAAGTGGTGGAATACCACCGCAGGCCTCCGCGGTACCCCAGCCATTGTTTCGGAAGAGCGCGTTACCCAGCTCGCTCCGAAATCCCCGTTCGGCTCCAACGTCACCGCAACGGAAGTCACCTGGGACAACTTCATGGCCGGCTACCTCTCGGACAGCGGTGCCAAGGAACTGAAGCTCGTTCCGGTTCCCTCGGATGACCAGGACAACCTGGGCCTCTTCCTCAAGCCCTCCATGCTGATGGTGGCCAGCGCCAAGACCAAGAACAAGGACGCTGCGGCCCGCTTCATCGACTTCATGGTCAACGATCCTGAGGTCGGGGAGATCTTCAAGACCTCCCGCGGCGTACCGGCGTCCAAGACCCAGCGTGACGGCACAACGTTCGAAGGTACCGACAAGCTGGTTGTTGACTACGAGAAGTCCATCGAGAAGTACCTCAAGGATGCTCCTGAGCCGCCCATCGTCGGTTTCGGCACGCTGGAGGCTTCCTTCAAGCGCATCAGCTCGGACCTGAACTACGGCAAGGTGACGATCGACGGCGCCGCGGACGCATGGTTCAAGGAAGCCGAAGACCTCATCAAGCAGAACGCCTGAMINRRNFLTTVAVGTASAAALAACGTGSSTSGETGSAENPVSIDYTWWGNDDRAERTRKAIALFESKNPDIKVNGNFTDFAGYWQKRATEAAGGGLPDVMQWDLSYLRDYGQRNQLLDLSTVKINTDAFDKSLLPSGQIRGKTYGIPTSTNAFAVYYDPAKLASLGIAEPDGSWSYKEFNEFLTEVGTKSNGAIFGGTDYTGVWWMFNIWLRQNNIEAFTEDGKLGFTKDDMKKWWNTTAGLRGTPAIVSEERVTQLAPKSPFGSNVTATEVTWDNFMAGYLSDSGAKELKLVPVPSDDQDNLGLFLKPSMLMVASAKTKNKDAAARFIDFMVNDPEVGEIFKTSRGVPASKTQRDGTTFEGTDKLVVDYEKSIEKYLKDAPEPPIVGFGTLEASFKRISSDLNYGKVTIDGAADAWFKEAEDLIKQNAPGPT0016545_7069DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_038302016Beta-galactosidaseATGACTTTGCAGCAAACCCCTGGCCCGGCGAGTGTTTGGAGCAAGGTGGAAGGGATCGCCTATGGCGGCGACTACAACCCCGAGCAGTGGCCTCAAAGCGTCCGGCTTGAGGACCTGGAGCTGATGAAGGAAGCCGGCGTTAACTTCCTTAGCGTGGGGATCTTCTCCTGGGCCCTGCTGGAACCGACCGAAGGCACGTACGACTTCGGCTGGCTGGACGAGGTGATGGACAACCTTGCATCCGCGGGCATCAAAGTAGCCCTGGCAACGGCAACCGCGGCTCCCCCGGCCTGGCTGGTGCGCAAGCATCCGGAAATCCTGCCGGTGACGGCTGACGGAACCGTGCTGGGACCGGGATCGCGGCGGCACTACTCGCCGTCGTCGGCTGTTTACAGGCGGTATGCAACGGGCATTACCCGGGTCATCGCGGAGAGGTACAAGGACCACCCGGCGTTGGCGCTGTGGCACGTGGACAATGAGCTGGGCTGTCACGTCAGCGAGTTCTACGGGCCGGAGGACGCCGCCGCCTTCCGGGTCTGGCTGGAGCGCCGGCACGGCAGCATCTCCGCACTCAACGCTGCCTGGGGGACTGCATTCTGGTCGCAGAACTACGCATCGTTTGACGAAATCCTCCCGCCCGGAGCGGCGCCCTCCACCCTTAATCCAGGGCAGCAGTTGGACTTCAAGCGGTTCAGCTCCTGGGCGTTGATGGACTACTACCGTGAGCTCGTGGCGGTCCTGCGGGAGGTCACGCCGGGCATTCCGGCCACCACCAACCTGATGGCATCGAGCGGCTGCAAGTCATTGGACTACTTCGACTGGGCCAAGGACCTGGATGTCATCGCCAACGACCACTACTTGGTGGCCGACGATCCGGAGCGGCACATCGAACTGGCATTCAGCGCGGACCTGACCCGGGGAATTGCGGGCGGTGACCCGTGGATCCTGATGGAACATTCGACGTCGGCCGTTAACTGGCAGCCACGCAACCAGCCCAAGATGCCCGGCGAGATGCTGCGCAATTCCCTGGCCCACGTCGCACGCGGCGCGGACGCCGTGATGTTCTTCCAGTGGCGCCAGAGTTTTGCGGGTTCGGAGAAATTCCATTCGGCCATGGTGCCGCACGCCGGACGCGAAACGCGGGTTTTCCGGGAGGTGGTGGGCCTGGGTGCCGCGCTGAAGCAGCTGGCCTCCGTCCGGGGCTCACGGGTGGAGTCCAAGGTGGCGATCGTGTTCGATTACGAAGCGTGGTGGGCCAGTGAAATCGACTCCAAACCGAGCCAGGACGTTAAGTACCTGGACCTGCTGCGGGCTTTCCACCGCTCACTTTTCCTGCGGGGGATCTCGGCGGACATCGTCCATCCTTCTGCCTCGCTGGAGGGCTACAGCCTGGTTCTTGTCTGCACGCTGTACTCCGTGACTGATGCCGCTGCCGCGAATATTGCGCACGCTGCTCGCGCCGGTGCCACCGTCCTGATCAGCTATTTCAGCGGGATCGCGGATGAGAACGACCACGTCAGGCTGGGCGGCTATCCCGGTGCTTTCCGCGAGCTCCTGGGCGTTCGCGTGGAGGAATTCCACCCGCTGATGCAGGGAGTCCAGCTGAAGTTGAGCGACGGCGGAGTGTCTTCTGTATGGAGCGAACATGTCCAGCTGACAGGGGCCGAGGCCATCCAGACGTTCAGCCAATACCCTTTGGAGAATGTCCCCTCACTGACGCGGAACGCCGTTGGCGACGGCGCTGCCTGGTACTTGGCCACGTTCCCGGACCGTGACGGCATCGAAGCGATCATGGACCGGCTGGTGACTGAATCCGGTGTGGCAGCCGTTGCCTCCGCGGATGCCGGCGTGGAACTGACCCGGCGCCGTTCTGATGACGGCCGGAGTTTCCTGTTCGCAATAAACCACTCACGATCTTCAGCCACGGTGCGCGCCTCCGGAATTGATCTGCTCACTGGAGATCGATTTGAGGGCAGTGTTGAGGGTGGAAGCGTGGCGGTGATCGCGGAGGACTAAMTLQQTPGPASVWSKVEGIAYGGDYNPEQWPQSVRLEDLELMKEAGVNFLSVGIFSWALLEPTEGTYDFGWLDEVMDNLASAGIKVALATATAAPPAWLVRKHPEILPVTADGTVLGPGSRRHYSPSSAVYRRYATGITRVIAERYKDHPALALWHVDNELGCHVSEFYGPEDAAAFRVWLERRHGSISALNAAWGTAFWSQNYASFDEILPPGAAPSTLNPGQQLDFKRFSSWALMDYYRELVAVLREVTPGIPATTNLMASSGCKSLDYFDWAKDLDVIANDHYLVADDPERHIELAFSADLTRGIAGGDPWILMEHSTSAVNWQPRNQPKMPGEMLRNSLAHVARGADAVMFFQWRQSFAGSEKFHSAMVPHAGRETRVFREVVGLGAALKQLASVRGSRVESKVAIVFDYEAWWASEIDSKPSQDVKYLDLLRAFHRSLFLRGISADIVHPSASLEGYSLVLVCTLYSVTDAAAANIAHAARAGATVLISYFSGIADENDHVRLGGYPGAFRELLGVRVEEFHPLMQGVQLKLSDGGVSSVWSEHVQLTGAEAIQTFSQYPLENVPSLTRNAVGDGAAWYLATFPDRDGIEAIMDRLVTESGVAAVASADAGVELTRRRSDDGRSFLFAINHSRSSATVRASGIDLLTGDRFEGSVEGGSVAVIAEDPGPT0017815_1024DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_03831402hypothetical proteinATGGAAGCCATCTGGGAACAGCTTGCGGAGCACGGCGGGGCTGCCGCCGCACTTCCCGGAAGTGGTTACGCGTCCCCGTTCCTCCGGGATCACTCCGCTAAATCTGCTGCCCCCTTAAATGTCGTACCCCCTTGGCAGAGTGGACCTATGGAAGCCATCGGGGAACAGCTTGCGGAGCACGGCGGTACCGCGCTGCTGACACCCGCAGGCACCCCGGCAGCAGCCGTTTCAAATTCAGCTAAGGCGTCCGACGGCGGGGCCAGGCACGGCGGGCCGTCCCACCTTCGTGCCGTCCCGGCCGGAATGGCTGAGACCGCGGCCCTGACTGAAACCGTGGAGCTGGCCGGCCTTGTTTCGCTTCTGACACCCCCCCTGCCGGAGCCTGTCAAGTTATTTGTGTAAMEAIWEQLAEHGGAAAALPGSGYASPFLRDHSAKSAAPLNVVPPWQSGPMEAIGEQLAEHGGTALLTPAGTPAAAVSNSAKASDGGARHGGPSHLRAVPAGMAETAALTETVELAGLVSLLTPPLPEPVKLFVNANANANANA
D1-29_038321377IS256 family transposase ISAar6GTGGCTATGACTAGACCCCGTGAGGTGTCCCCGGAGGAGTTGGCCCGCAGGGCTGCGGCGGCCGGCAGCATGGAGGCGTTGAAGGCTTCGGGCGCGTTCGATGAGCTGATGAACCAGATCGATTCCGGACAGCTGGAACTCGACGGCAAGGACGGTTTCATCCAGCAGCTGATCAAGGCCTCGCTGGAACGCGGGCTCCAGGCCGAGCTGTCGGGGCATCTGGGCTATGACAAGGGCGATCCGATCGGGCGTTTCCTGCCTAACGCCCGCAATGGGTCTTATCCGAAGACGCTCGGGACCTCCGCGGGGGACGTGGATCTGGCCGTGCCTCGTGACCGTGCTGGGTCATTCACCCCGCATCTGGTCCCGAAGGGTGCGCGCCGGACAGGTGGCCTGGATGACATGATTATCAGCCTTTACGCCGGCGGGATGACGGTCCGGGACATCGCCCACCATCTGGAATCCACGCTGGGCACGGAGCTGTCCCACGAGACGATTTCCAAGATCACCGATGAGGTCCTGGACGAGGTGATGGAGTGGCAGAAACGCCCACTGGAGCCGCTGTATCCGATCCTGTATCTGGATGCGATCATCATCAAGGTCCGTGACGGGCACCAAGTGCAGAACCGTGCCGCGCACATTGCCGTGGGCGTGGACATGGACGGGATCAAGCACGTTCTGGGGATCTGGGTCGAAGCTACCGAGGGTGCGAAGTTCTGGGCAGGGGTCTGCGCCGAGCTCGCCAACCGCGGCGTGAAGGACGTTCTGATCGTCTGTTGCGACGGGCTCACCGGCTTCCCTGAGGCGATCGCCGCGACCTGGCCGGCCGCGACCGTCCAGACCTGTGTCGTGCACCTGATCCGTGCCTCGATGCGCTTCATCGGCTACCAGGACCGGAAGAAGGTCGCGTCCGCTCTGAGGCCGGTTTACACCGCCCCGACGGCCGACGCCGCGCAGGAGGCACTCGATGCATTCGAGGCCTCCGATCTGGGACGGAAGTATCCCGCAACTGTACGAACCTGGCGCAACGGTTGGGAGAGATTCATCCCCTTCCTGGCGTTCCCACCGCCGGTCAGACGGATTATTTACACCACGAACGCGATCGAGTCGCTGAATTACCAGCTGCGCAAGATCATCAAGAACCGCGGGCATTTCCCCAACGACCAGGCGGCCGTGAAGCTACTCTGGCTGGCGATCTGCAACATCGAGGACAAACGCACCAGTGCCCGGACCAAGCTTGAAGGCAGAGCCCGGGAAAACCGTGCCAAGACGGTGAACAAACTCATCGAGGGAACCTTCACACCTGGATGGAGCGAAGCCCTTGGCGTCCTCCTCCTGAACTATCCCGACAGACTCGGACCTTACCTAAACCGATGAMAMTRPREVSPEELARRAAAAGSMEALKASGAFDELMNQIDSGQLELDGKDGFIQQLIKASLERGLQAELSGHLGYDKGDPIGRFLPNARNGSYPKTLGTSAGDVDLAVPRDRAGSFTPHLVPKGARRTGGLDDMIISLYAGGMTVRDIAHHLESTLGTELSHETISKITDEVLDEVMEWQKRPLEPLYPILYLDAIIIKVRDGHQVQNRAAHIAVGVDMDGIKHVLGIWVEATEGAKFWAGVCAELANRGVKDVLIVCCDGLTGFPEAIAATWPAATVQTCVVHLIRASMRFIGYQDRKKVASALRPVYTAPTADAAQEALDAFEASDLGRKYPATVRTWRNGWERFIPFLAFPPPVRRIIYTTNAIESLNYQLRKIIKNRGHFPNDQAAVKLLWLAICNIEDKRTSARTKLEGRARENRAKTVNKLIEGTFTPGWSEALGVLLLNYPDRLGPYLNRPGPT0030665_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_038331620hypothetical proteinGTGGAGGCTTCGAACTTCGCCGGCCTGGTCGAAGAGTTCTCTCGGACCGTGGACTACCTGCAAATCCTCTCCGCCGGCGCCGTGGACCGCACCCGGACCCAGGCCATCACCGAAGCCAACACCAGAACCCGCCGCACCAGCGCCAGCACAGCATCAGCCAGCACCGGCACCACCGGCTGGGTCACCGGCCCGGACACCGGAACCGAAACCCTCCCCGAAACCGACGCCGCCTGGCCCGCCACCAGCCCCACAAGCACAAACCCCGAAATGTCAGTGCCGCGGTCCCCGGCCGACGACGGATGCCGGAACACCGCCGAATTCCTCCGCCTCAGACTCAGGATCGGCATCAGCGAGGCCCGCCGCCGGCTCCACCTCGCCCATGACACCCTTCCCGCCACCACCCTCACCGGAGACCCCACACCCCCACCCCGGGAACACCTCGCCACAGCACTGGCACCAGCAACCGGCACCGAAGAAGCCGACACAGAACAAACCGACACCGAGGCGGGACTGGCTGTCACCGGCACCGTGGGCAGCCCGGTGGTGTCCTCCCGGGCCGGGACCATCATCGCCACCACCCTGGACCGGCTCCGGCACCACACCACCCCCCAAACCCTCAGCCGGATCGAACAGCACCTCACCGGCACCGCAGCCACCGCCGACCCCGACTTCCTCACCCGCGTCGCCCGCCGCTGGTCAGACACCATCGACGCCGACGGCACCGAACCCAGCGAAGAAGCCCTCCGCCACACCCAAGGCGCCTTCATCCGCAAACCCCGCCACGGCCTCCACCGCATCGAAATCCTCGCAACCACCGACCAATACGAACACTTCCTCACCGTCATGAACACCGCCACCAACCCCCGCACCCACACAGCCACAGGAACAGCGCAAGGTGACGGTGCAGACGGCGGCGGGGACGGCGGACAAAGGGACGGGAATCAGCAGGTCTGGCAAACCGCGGACCTGGACCGGCGCACCCGCTCCCAAAAACAACTCGACGGCATCATCACCGCCATCAAAGCCGCCCTCACCACCAACACCCTGCCCACCACCGGCGGCAACAGACCCCAAATCCTCGCCACCATCAACTACCAAGACCTCCTCCCCCACCTCCCCCAACCCACCGCAACCCACACCACCACAGGCACGGGCCCCGGCACGGGGACCGGCGCAGAGTCAGGGACCGGGAACTTCACCTTCACCGGACCCGTCGCCGCCACCACCCTGCGCAAAATCGCCTGCGACGCCGACATCATCCCCGCCCTCCTGGGCACCAACAGCGAAATCCTGGACCTCGGCCGCAAAACCCGCCTCTTCACCACCGCCCAACGCCTCGCCCTCACCGCCCGCGACCAAGGCTGCACCTTCCCCAACTGCACCATCCCCGCCCCCTGGTGCGAAGCCCACCACATCACCTACTGGTCACACGGCGGCCCCACCACCACCAACAACGGCACACTCCTCTGCCCACACCACCACCACCTCATCCACAAAGAACAATGGACCATCCACACCCACCACGGCACTCCCTGGTACACACCCCCACCCCACATCGACCCCCACCAAAAACCCCAACAAAACAACTACTTCAAACCACCACCCCCACCACAGGAATAAMEASNFAGLVEEFSRTVDYLQILSAGAVDRTRTQAITEANTRTRRTSASTASASTGTTGWVTGPDTGTETLPETDAAWPATSPTSTNPEMSVPRSPADDGCRNTAEFLRLRLRIGISEARRRLHLAHDTLPATTLTGDPTPPPREHLATALAPATGTEEADTEQTDTEAGLAVTGTVGSPVVSSRAGTIIATTLDRLRHHTTPQTLSRIEQHLTGTAATADPDFLTRVARRWSDTIDADGTEPSEEALRHTQGAFIRKPRHGLHRIEILATTDQYEHFLTVMNTATNPRTHTATGTAQGDGADGGGDGGQRDGNQQVWQTADLDRRTRSQKQLDGIITAIKAALTTNTLPTTGGNRPQILATINYQDLLPHLPQPTATHTTTGTGPGTGTGAESGTGNFTFTGPVAATTLRKIACDADIIPALLGTNSEILDLGRKTRLFTTAQRLALTARDQGCTFPNCTIPAPWCEAHHITYWSHGGPTTTNNGTLLCPHHHHLIHKEQWTIHTHHGTPWYTPPPHIDPHQKPQQNNYFKPPPPPQENANANANANA
D1-29_03834657tam_2Trans-aconitate 2-methyltransferaseATGACCGACACCGAGGTGCAGGCCGCTTATACATCGAGGGCCGCCGAGTACACTGCCAGATTCGGGTCGGCTGAGTCCATGCATCCAGCTGACCGGAAGCTCATAGCCGATTGGGCTGCGACTATCAGAGGGCCGGTGCTGGACATGGGGTGCGGGCCCGGCCAGTGGACCAAGTTCCTTGCTGACCAGGGGGCCGCCGTCGAAGGAATCGATCTGGTGCCGTCATTCATTGAACAAGCAAAGGAACGCTACCCAGGCGTTCCGTTCCGCGTCGCCTCGCTCAGAAATCCTGGAGTGCCGGACGGCTATGCATCCGGCATCTTGGCCTGGTACTCCCTGATCCACTGTGAACCAGACCAGATTGCCTCCGTTCTCCAGGAGCTGGCGCGGCGTCTGGCTCCTGGCGGGCTACTTCTGGTGGGTCTGTTTGAAGGGCAGGAAATCGAGAAGATTCCCCACGCAGTAGCGCCCGCATACTCCTGGCCCGTGGAAGAATTCGCCCGGATGCTTGGAGCGGCCGGCTTCGAAACCCTTGCCCATGAGAGACGAACTGAGCCCGGTCACCGCCCGCATGTCGCAATCAGCGCCCGCCTCAGCCGCTCAAACGTTCCGTCCCGGTCATACCATTCGTCGGAACTAGGACCGACGAAGGCGTAGMTDTEVQAAYTSRAAEYTARFGSAESMHPADRKLIADWAATIRGPVLDMGCGPGQWTKFLADQGAAVEGIDLVPSFIEQAKERYPGVPFRVASLRNPGVPDGYASGILAWYSLIHCEPDQIASVLQELARRLAPGGLLLVGLFEGQEIEKIPHAVAPAYSWPVEEFARMLGAAGFETLAHERRTEPGHRPHVAISARLSRSNVPSRSYHSSELGPTKANANANANANA
D1-29_03835390hypothetical proteinATGGTGCGGCTCTCCTTCGATGAGGCTGCCTGGCAGCTGGGCCTTCGCACCATGCCTTTGGAGGCGCAGGTGCAGGCCGAAATTGAGGCAGCACTTCAAGCCCGTCTTGTCGCCCTTGTCGATTCAGGGAAGGACGTGGTCCTCGACTTTTCTTTCTGGTCTTTGAAAATGCGTGAGGAATACCGTTGTCTGCTGAGGCCGCTGGGTGTGGAGCCGGAGACAATCTATCTGGCTACATCCCGGGAGCTGGTTCTGTCCCGAATTCGATCCCGAGTGGCCGCGCATGCGAACGACTTCACTTTAAGTGAGGAGTTGGCAGCCGAGTATTTTGACCACTTCGAGGTTCCTACAGTGAAGGAAGGTCCGCTGAAAGTCATTGCTAGCCCGTAGMVRLSFDEAAWQLGLRTMPLEAQVQAEIEAALQARLVALVDSGKDVVLDFSFWSLKMREEYRCLLRPLGVEPETIYLATSRELVLSRIRSRVAAHANDFTLSEELAAEYFDHFEVPTVKEGPLKVIASPNANANANANA
D1-29_038361374yesO_6COG1653Putative ABC transporter substrate-binding protein YesOGTGCAGCTTTTTCCCCGCCCTGACTCTGCAAGGCAACGCCAGGCAGAGACATCATCCACCGGAGCAATCCGCCCACGGCGTAAGAGCCCCCTACGTAAGACGGGCGTGGTCGCCGCGGCAGCCGCCGTCGTCCTTGCCCTGAGTGCCTGCGGCGGGGGTGCTGCCCCGCAAAGTGCGGATGGAACCGTTGAGCTCCGCTTCTCGTGGTGGGGCAGCGACAAGCGGGCCCAGCTGACCCAGACGGCCATTGACGCTTTCGAAGCCGAGAATCCGAAGATCAAGATCAAGCCTGAATATGGCGACTGGAGCGGCTATTGGGACAAGCTGGCCACCCAGGTTGCTGCCAATGACGCCCCGGATATTATCCAGATGGATGAAAAGTACATCACGGAATATTCAAGCCGGGGTGCCCTGCTGGACTTGTCCAAGTACGAGATTGATACGTCCAAGCTGGACGAAGCGGCCCTCAATGCCGGAAAGAGCGAGGATGGGCTGACCGGCATCGCAGCTGGCATCAATGCGGCGACGATCATCGCAAACCCTGCCGTCTTCCAGGCTGCTGGTGTGCCGCTTCCGGATGACAAGACGTGGACCTGGGAGGACTTCGAGCGGATCGCCGCGGAGGTCACGGCCAAATCCCCTAAGGGCAGCTACGGCGCTGCAGCGTACGGTACCGATGAAGCTTCGCTGGGCGTCTGGCTCCGTCAGAACGGCAAGTCGCTGTACACCTCGGACGGCAAGCTGGGTTTTGAGCCCAGCGATATCGCCGAGTGGTGGGCCTTCCTGAAGCAGCTCAGCGAGAAAAAGGCAGTTCCCTCAGCGTCCGAGGTTGTGGAGGCAGAGGCTGCACCGCTGGACCAGAGTGGCTTGGCCACAGGCAAGAACGGGCTCGCCTTCTGGTGGTCCAACCAGCTTCCGGCACTTGAGAAGGCAGCAGGCAGCGAACTCCAGATCCTCCGCTTCCCGTCCAAGACCGGGAAAGCCGCGGATACGCAGCTTTGGTACAAGGCATCCCAGTTCTGGTCAGCTTCCTCACGCACCAAGCACCCCGAGGAGACCGCCAAGTTCATCAACTTCCTGGCCAACAGCGAAAAGGCCGGCGAGGCACTGCTGGCGGACCGCGGCGTCTACCCGAACTCCGACGTCCGGGCGGCCATTGAGTCCAAGCTGACCCCCGCCGACATCAAGGTGGTCAAGTTCATTGACCAGATCAAGGAGGAACTGGGTGAGGCCCCCGCTCCGCCGCCGAAGGGTGCCGGAGCCATCCAGGAGATCGTCAAGCGCTACACCTCCGAGGTGCTCTTCAACAGGCTTTCAACCGATGAGGCGGGCAAAAAGGCCCACGACGAAATGAAGTCGGCCATCAGCGGCTAAMQLFPRPDSARQRQAETSSTGAIRPRRKSPLRKTGVVAAAAAVVLALSACGGGAAPQSADGTVELRFSWWGSDKRAQLTQTAIDAFEAENPKIKIKPEYGDWSGYWDKLATQVAANDAPDIIQMDEKYITEYSSRGALLDLSKYEIDTSKLDEAALNAGKSEDGLTGIAAGINAATIIANPAVFQAAGVPLPDDKTWTWEDFERIAAEVTAKSPKGSYGAAAYGTDEASLGVWLRQNGKSLYTSDGKLGFEPSDIAEWWAFLKQLSEKKAVPSASEVVEAEAAPLDQSGLATGKNGLAFWWSNQLPALEKAAGSELQILRFPSKTGKAADTQLWYKASQFWSASSRTKHPEETAKFINFLANSEKAGEALLADRGVYPNSDVRAAIESKLTPADIKVVKFIDQIKEELGEAPAPPPKGAGAIQEIVKRYTSEVLFNRLSTDEAGKKAHDEMKSAISGPGPT0016545_2420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_03837951ngcG_5COG0395Diacetylchitobiose uptake system permease protein NgcGATGACGACTAAGCTTCAGACGCTGCCCGCCCCGGATCAAGAATCTGCCCGCGCCGGTACGCCAACGAACCACCGCAAGCCCAGGAGGCCCCGGGAATCACGCGGGACCCTTGCCTTTAGCCGAGCGGCCCGCTCCAAAGCCCTGATGAAGCATGCCATCCTGATCCTGGCCGGCGGCCTGATGATTTACCCGCTGTTGTGGATGGTGGTTTCCTCGCTTCGGCCCAACGATCTCATCTTCCGGGAGCCCGGCCTCTGGCTCAACAGCCTGGAGATGAGCAACTACACCGATGGCTGGTCCGCACTGACCCATCCCTTTGGGCACTACATGCTGAACTCCGCCATAGTGGTGGTTGGGTCCATCCTCGGAAACCTGATTTCATGCTCCATGGCGGCCTATGCCTTCGCCCGCCTGCAGTTCACCGGCAAGAAGCTGTTCTTCGGCATCATGCTGCTGACCATCATGCTGCCGTTCCACGTGGTGATTGTGCCGCAGTACATCCTGTTCTCGCAGATCGGCTGGGTGAACACCTTCTGGCCGCTCCTGGTGCCCAAGCTACTGGCCACCGACGCGTTCTTCATCTTCCTGATGGTCCAGTTCATCCGCGGCATCCCCAAGGATCTGGATGAGGCCGCAAGGATCGACGGCGCCGGCCACCCCCGCATCTTCCTGCGGGTTATCCTGCCGCTGATGGTTCCGGCCCTGGCCACTACCACCATCTTCACCTTCATTTGGACCTGGAACGACTTCTTCGGGGCCCTCATCTACCTGACGGATCCGGACATGTTCACGGTTCCGGTGGCGCTGCGGGCCTTTGTGGACTCACAGTCCGCCACCAGTTGGGGATCGCTGTTTGCGATGTCCATCGTGTCGCTCCTGCCGGTGTTCCTGGTGTTTCTCTTTGGCCAGCGGTTCCTCATCAAGGGCATCGCCACCACCGGCATCAAATAGMTTKLQTLPAPDQESARAGTPTNHRKPRRPRESRGTLAFSRAARSKALMKHAILILAGGLMIYPLLWMVVSSLRPNDLIFREPGLWLNSLEMSNYTDGWSALTHPFGHYMLNSAIVVVGSILGNLISCSMAAYAFARLQFTGKKLFFGIMLLTIMLPFHVVIVPQYILFSQIGWVNTFWPLLVPKLLATDAFFIFLMVQFIRGIPKDLDEAARIDGAGHPRIFLRVILPLMVPALATTTIFTFIWTWNDFFGALIYLTDPDMFTVPVALRAFVDSQSATSWGSLFAMSIVSLLPVFLVFLFGQRFLIKGIATTGIKPGPT0016540_776DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_03838945lacF_12Lactose transport system permease protein LacFATGAGCGCCATCAGCGAATTAAGCTCCCTGGCCAAGCGCAAGGGACCCGTAACGGCCGAAGAGAAGAAGGCAAACGGCCGCGATAACAAGGCCGCATACATCTTCCTCCTGCCGTGGTTGGTGGGCCTGGTGGCCATCACCATCGGACCCATGCTGATGTCGCTGTATCTCTCCTTCACGGACTACAACCTGCTGCAGCCGCCGGAATGGACCGGGCTGGACAACTTCATCCGCATGTTCAGCGATGCCCGCCTGCATAACTCGCTGGGTGTGACCTTCACTTACGTCCTGGTGGGTGTGCCGCTCCAGCTTGCTGTGGCGCTGCTGATCGCGCTGGTGCTGGACAAGGGCCTCCGCGGCCTTCCGTTCTACCGGTCGGTGTTCTACCTGCCATCGCTCCTCGGTGGTTCGGTGGCTGTGGCCATCCTCTGGAAGCAGATTTTTGGAACCACCGGCCTGGTGAACCAAGCCCTGGCAATGTTCGGGGTCCAGGGGCCGGGGTGGATTTCCGATCCCAGCACCGCCCTGAGTTCCATCATCCTGCTGCACGTATGGACCTTTGGTGCTCCCATGATTATCTTCCTGGCCGGCCTCCGGCAGATTCCCGTGATGTACTACGAGGCAGCGAGGGTGGACGGCGCCGGCACGCTCCAGCAGTTCTGGCGGATCACCCTGCCCATGCTGAGCCCCATCATCTTCTTCAACCTGGTGCTCCAGATCATCGGGTCATTCCAGTCCTTCACGCAGGCGTTCATCGTCTCGGGCGGCAACGGCGGCCCCTCCGACTCCACGATGTTCTTCACCCTGTACCTGTACCAGAAGGGCTTTGGCCAGTTCGACATGGGCTACGCCTCCGCCATGGCGTGGTTCCTGCTGGTCATCATCGGTGTGTTTACCGCCATCAACTTCATCGCCGCAAAGTATTGGGTTTTCTATGACGACTAAMSAISELSSLAKRKGPVTAEEKKANGRDNKAAYIFLLPWLVGLVAITIGPMLMSLYLSFTDYNLLQPPEWTGLDNFIRMFSDARLHNSLGVTFTYVLVGVPLQLAVALLIALVLDKGLRGLPFYRSVFYLPSLLGGSVAVAILWKQIFGTTGLVNQALAMFGVQGPGWISDPSTALSSIILLHVWTFGAPMIIFLAGLRQIPVMYYEAARVDGAGTLQQFWRITLPMLSPIIFFNLVLQIIGSFQSFTQAFIVSGGNGGPSDSTMFFTLYLYQKGFGQFDMGYASAMAWFLLVIIGVFTAINFIAAKYWVFYDDPGPT0016535_3099DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_038391167hypothetical proteinGTGAGCATCCAACCCGAGCCCGTCCGGCCAAGCGCCATCGCCGGCTACGAAGACTGGCCTGCGTACGTTCGGGACAGTCCCCGCTACCGGGCTGCCAGCCCGCAATCCCAGGAACTCTCGGACGCCCTCGGCGTGCCGGGCGCTTCCCCCACACCGGATGTCACCACAGATTGGGAGCAAACGTACGACGGCGTCACCACCTCCCAGCTCAGCTGGCAGTTGGGATTCGGTCCCCGCACCATTGGCTGGCTTCTGCGTCCGGCCGGAAGCATCGGACCGCTGCCCGGAGTCCTGGCGATGCATTGCCATGGCGGGAACAAGTTCGGCGGGGCCGACAGGCTGGTGGACCTGCCGGATCCCCACCCCTCGGCAAAGGCAGCCCGCGCCGCCCTCTATGACGGCCATTCACTGGCGACAGACATGGCCCGCGCTGGCTTCGCCGTCCTGGCCCACGACGCCTTCGCCTGGGGCAGCCGCTGCTTTGACCTCTCCGTCCCTCCGTGGCGGACGGCCGCCGCGCTGGAGGCGAGGATGTCGCAGTGGCGGCAGGACGGCGTCGTACCTTCCGACGCTGACCTGTACAACGCTGCCGCGGGAATCCATGAGGACACCGTGGCGAAGGCCGCGGGCCTGCTGGGCACAAGCTTTGCCGGCATGGTGGCGCACGATGACCTTGCGGCACTGGAGATCCTTGCAGGGCTGCCGGGGGTGGACTCGGAGCGCCTGGGCTGCATCGGCTTCTCCGGCGGCGGTGGGCGCGCACTGACGCTGGCAGCCCTCAGCCCACGGATCCGGAACTATGTGGTGACGTGCATGATGGCCACGTTCCAGTCGCTGATGCCGGCCTACCTGGATGCGCATTCCTGGCTGCTCCAGACGCCCGGGATCTGGAAACTCGGCGATTGGCCTGAGCTGACCGAGAGGTCGGCTGCCAACGGATTTCTGGTGCAGTATGCGCTGAACGACGAACTGCTTCCGGAAGCGGGCATGCGAGACGCCCACAAGATCCTGGAGTTCCTGCACTCCCCCGGTTACCGAGGCAGCTGGTGGCCGGGCCAGCACGTCTTCACCGCTGAGATGCAAAACGAGGCCATCAATTATCTCGCCGATGCCCTGGGTGCCCAGAGTTCTTCCGGCCCCAATCGTCCAACCGTGCCCACCTTCTAGMSIQPEPVRPSAIAGYEDWPAYVRDSPRYRAASPQSQELSDALGVPGASPTPDVTTDWEQTYDGVTTSQLSWQLGFGPRTIGWLLRPAGSIGPLPGVLAMHCHGGNKFGGADRLVDLPDPHPSAKAARAALYDGHSLATDMARAGFAVLAHDAFAWGSRCFDLSVPPWRTAAALEARMSQWRQDGVVPSDADLYNAAAGIHEDTVAKAAGLLGTSFAGMVAHDDLAALEILAGLPGVDSERLGCIGFSGGGGRALTLAALSPRIRNYVVTCMMATFQSLMPAYLDAHSWLLQTPGIWKLGDWPELTERSAANGFLVQYALNDELLPEAGMRDAHKILEFLHSPGYRGSWWPGQHVFTAEMQNEAINYLADALGAQSSSGPNRPTVPTFNANANANANA
D1-29_038402112iolG_12Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACGCAGCAACCCGCCCCCACGGCACCAGGTATTTCTGAAGCGGCAGGCGAAGCCACCGTCCCGGAAGCCCGCCCCCGCATAGCCTTAGTGGGCGTGCATGGCTTCGGCGAACGGCACCTTGCGAACCTGGCGCGGCTTGAGGAGTCCGGCGCTTTGGAACTGGTGGCCGTGGCGGACCCGAATCCGCCCCAGCCGGGACGGCTCGCCGAATCGGTAGCGGTTTTCAACACCCTGGACCAGCTGCTGGCCGCCGGCCCGGTCCCTGACGTGGTCATCCTTGCCACTCCGATCCAGACCCACGCACCTTTGGCGCTGGCAGCCCTGGCAGCGGGAGCGGACGTTTACGTGGAGAAGCCGCCGGTGGCCTCCATGGCCCAGTTTCAGGAAGTCCTGGCCGCGGCGGAAATCTCCGGACGGCTGGTCCAGGTGGGCTTCCAGAGCCTCGGGTCCCAGGCCCTGCCGGCTATCCGGGACGCCATTGAGTCCGGTGCGGTCGGCCAGGTGCTCGGCTTCAGCGCCACCGGAATGTGGCAGCGGAGCAAAGGCTATTTCAAGCGCTCACGCTGGGCTGGCAAGCGAAGCCTGGACGGGGTGGACGTGGTGGACGGCGTGGCAACCAATGCGCTGGCTCACGCGGTAGCCACCGCGCTCAGCATGGCCGGCGCCCACACCGTGGCGGACGTGGCATCGGTGGAGACGGACCTCTACCGCGCCAACGGGACCCAAAGCGATGACACGTCCGTCCTCCGCGTCCGCACCATCGCCGGACAAACCCTGCTCTGCGCCCTCACGCTCTGCGCGCCGGAACAGCAGAATCCGTCCGTTACCGTCCACGGGACCCTGGGCGAGATCACCTTCTTCTACACCGAGGACGAGCTGGTGATCACCACATCGGCCGGGGAACGCCGTGAAACTTTCGGCCGGACCGACCTGCTGGAGAACCTGCTCGAAGCCCGGAACTCCGGAACACCGCTGCTTTGCTCCCTTCCGGACACCGGTGCGTTCACTTCCGTACTCGAGGCCATCCGCACGTCGCCTGATCCGCAGGAGATCGGCCCGGAATACGTCACATGGGAGGGCGAAGGGGACGAGGCCCATCCCGTGGTCCACGGCATTGCAGCATTGATGGAACGCGCCGTCAAGGCCCAGGCCACCTTTGCAGAGCTGGGTGTCCCGTGGGCCCGCAGGCTGCCGCCGGCCCACACCTTCAGCATCGGCAGACAGCCAGTGGCCGACTACCAGGACGGGAGCCACATCCGGGTTGTTTCTTCACCCCGGCCGTACCTGCACCCGGTCCGGACTCTCGCCGGAACTGTAGTGACCGACCATCAGCCCCTGGACCATGTCTGGCACCTGGGCGTTGGAGTGGCCCTCCAGGATGTGGATGGCGTGAATTTCTGGGGTGGCCGCACCTATACCCGCGCCGCCGGTGAATACATCTGGCGCCCGGACCATGGCCGGATCGAGCGCACGGCGGCTGCCGAGTCGGAGGGCCGGCTGAGCGAGACGCTCTCCTGGAACGGACCCGACGGCCACCCGATCCTCAACGAGCAGCGCACCTGGACGTGGGACGCTGTGAGCCCCTCCGTCTGGCGCCTGGCGTTGGATTTTGCGCTGTCCCCCGCCGGCAATCAACCGGTGAGCCTGGGCAGCCCCGGTTCAAACGGCCGCCACCAGGGCGGTTACGGCGGCTTCTTCTGGAGGCTTCCCCAATGTACCGGGGCCATTGTGTGGACCCCTACGGCTTCCGGCGAGGCCGCCGTCCACGGGAGTGTGGCGCCATGGCTGGCCTGGTCCGGAACCTTTGATGCAGGAGGATTTAGCAGCGGAACGGCCGACGGCGGGACGGCCGACGGTGGATTGGCGGCCGACGGTGGCACTGACCGGAGCGCCACCCTGGTGTTCGTTGCCCAGGAAGGTTCCACGGATCCGTGGTTCGTCCGGGTGGACGGATACCCGGGTGTGGGCCAGTCGCTCGCCTGGGATGCCCAGGTCATCGCCGAATCCGGTGGTGCCGTTCGCCGCGGAGTCACTGTGTTCATAGCTGACGGGATCCTCGCTGCGGCAGACATCGAGGCATTGATCAACAAACAGGGGGAAAAACGATGAMTQQPAPTAPGISEAAGEATVPEARPRIALVGVHGFGERHLANLARLEESGALELVAVADPNPPQPGRLAESVAVFNTLDQLLAAGPVPDVVILATPIQTHAPLALAALAAGADVYVEKPPVASMAQFQEVLAAAEISGRLVQVGFQSLGSQALPAIRDAIESGAVGQVLGFSATGMWQRSKGYFKRSRWAGKRSLDGVDVVDGVATNALAHAVATALSMAGAHTVADVASVETDLYRANGTQSDDTSVLRVRTIAGQTLLCALTLCAPEQQNPSVTVHGTLGEITFFYTEDELVITTSAGERRETFGRTDLLENLLEARNSGTPLLCSLPDTGAFTSVLEAIRTSPDPQEIGPEYVTWEGEGDEAHPVVHGIAALMERAVKAQATFAELGVPWARRLPPAHTFSIGRQPVADYQDGSHIRVVSSPRPYLHPVRTLAGTVVTDHQPLDHVWHLGVGVALQDVDGVNFWGGRTYTRAAGEYIWRPDHGRIERTAAAESEGRLSETLSWNGPDGHPILNEQRTWTWDAVSPSVWRLALDFALSPAGNQPVSLGSPGSNGRHQGGYGGFFWRLPQCTGAIVWTPTASGEAAVHGSVAPWLAWSGTFDAGGFSSGTADGGTADGGLAADGGTDRSATLVFVAQEGSTDPWFVRVDGYPGVGQSLAWDAQVIAESGGAVRRGVTVFIADGILAAADIEALINKQGEKRNANANANANA
D1-29_038411194hypothetical proteinATGAGCCAGACAGCCACCGAAGCAACGGCCACCCGGGTGGTGCCGGCACAGGATCCGAACCGGTCACCAAATGTGACCGGACGGGTTGCGCCGGCGTCGCCGGAAGACCGGGCCGTCAAACGGCGCCGTGTCCTGGATATCCTTGACTCCACGGGCCGTGACTCGCTGCTGCTGACCAGCCACACGGCGCTGACCTGGTACCTGGACGGAAGCCGGGTGCACATCAGCCTGGCAGGGGACCCGATCGCTGCGTTGCTGGTGGACCGCGAGGGCGATCACCTGGTGACGTTCAACAACGAGGCCGGACGAATAGCCGCCGAGGAGCTGCCTGCCGGCGTCACCCTTCACTCCGTGCCGTGGTACGGCAACCTGCACGAGGCTGCTGCCGCCGTCGGCCTCAAAACCGGTTCCACACGTTCTACTGCCAACCTCTCGGCTCCACACGAAGGGCCGCTGGCGGAAGCCGCCGTCGCCGATAAGCTCAGGGCGGCACGCCAGCAGTTGCTGCCGGCTGAAAGCGCACGTTATGCCCAGCTCAGCGCGGAACTGGCAGGCATCATGACCGATGTCCTTTCCACAGCGAAGCCTGACACCACAGAGTTCGAGCTCGTGTCGGCACTCGCCGGCCGCGTGGTAGCCGCGGGCGCCGAGCCGCTGGTGCTTTTGTGCAACGGCAGCTCACGCAGTGGCTTCCGCCATCCCCTGGCCACACACTCCCCGCTGGGCCGCCGCGCCATGGCCGTGGTGTGTGCCCGCCGGGACGGGCTGGTCTCCAACATCACCCGCTGGGTGAGATTCGACGCCGGCACTCCCGGAGAGTTGGATGCGGAGGCCCGGATTGCGGCCGTGGAAGCCGACGTCTTTGACGCCACTGTCCCTGGCGCACGGCTGGACCGGATCTTCACCGAAATCAAGGCCGCCTACCTCCGGCACGGGTTTGGGGCGGACCAGTGGGAGAACCACCACCAGGGCGGTCCTGCCGGTTATGCGGGACGCGATCCAAGGGTCACCGGTGCAGCCACCGATACCGTCGTGCTGAACCAGACGTTCACCTGGAACCCGTCCGGCCCCGGCGTCAAGATCGAGGACACTATCCAGCTCACCGAGTCAGGCATTCAGGTACTCACCCTCGACGAACGCTGGCCTGCAACCCTCGTGAACGGAATCCGCCGGCCCCTGACCCTTCAGCTCTGAMSQTATEATATRVVPAQDPNRSPNVTGRVAPASPEDRAVKRRRVLDILDSTGRDSLLLTSHTALTWYLDGSRVHISLAGDPIAALLVDREGDHLVTFNNEAGRIAAEELPAGVTLHSVPWYGNLHEAAAAVGLKTGSTRSTANLSAPHEGPLAEAAVADKLRAARQQLLPAESARYAQLSAELAGIMTDVLSTAKPDTTEFELVSALAGRVVAAGAEPLVLLCNGSSRSGFRHPLATHSPLGRRAMAVVCARRDGLVSNITRWVRFDAGTPGELDAEARIAAVEADVFDATVPGARLDRIFTEIKAAYLRHGFGADQWENHHQGGPAGYAGRDPRVTGAATDTVVLNQTFTWNPSGPGVKIEDTIQLTESGIQVLTLDERWPATLVNGIRRPLTLQLNANANANANA
D1-29_038422385hypothetical proteinATGCCATCAGAAACTATCATTACCCCAGCCAGCAAACTCCGAAGATCCCTGACTGCAGGGCTCCGTTGGGACCTTCCGGCGTCACTCGTGGTTTTCCTTGTGGCAGTACCCCTGTCCCTCGGAATAGCCGCTGCATCCGGCGCCCCGGTTATGGCCGGCCTGATTGCCGCGGCCGTGGGAGGAATCGTGGCAGGAAGCCTCGGTGGTTCAGCTCTTCAGGTCAGCGGACCCGCCGCCGGGCTGACTGTCATTGTGGCCGGACTGATCGAACAGTTCGGCTGGCAGACAACCTGTGCCATCACCGCCGCAGCCGGGGTGCTTCAGGCGTTGCTTGGCGCGGCCAGGATCGGCCGGGTGGCGCTGGCCATCGCCCCGGTGGTGGTGCATGCCATGCTGGCCGGCATCGGCATCACCATCGTGCTGCAGCAACTTCACGTGATGTTTGGTTCGGCATCCGCCAGCTCCGCCTGGGAGAACATCACCGCCATCCCGGCAAGCATCTTCTCCGTGGACATCGCCGCAGCGCTTCTCGGGGCCGTTGTCATTGTGGTGCTCGTCGCGTGGAAGCACCTTCCCTCCGCCGTCCGCCGGATTCCGGGGCCGCTGGTTGCTGTCATCGCAGCAACCGTCCTCTCCCTGCCTTTCACGGTGGACAGAATCACGTTCGACGGCTCGCTTTTGGATGCCCTCTCCTTCCCCCAGCTGCCCGACGGGAACTGGACAGCCGCAGTCATCGGCGTGCTCACCATCGCACTGATTGCCAGCGTTGAGTCCCTGCTGTCGGCGGTGGCAGTGGACAAGATGCACCATGGACAGCGGACCAATTTCAACCGGGAGCTCGTGGGCCAGGGCGCAGCCAACCTGACTTCCGGGCTGCTGGGCGGGCTTCCGGTGACGGGCGTCATCGTGCGCAGCGCCACCAATGTTGAGGCCGGCGCCCGGACACGGAAATCAGCGGTGCTCCACGGTGTGTGGGTGCTGGTCTTTTCGCTGCTGCTGGCGGGCCTGATCCAGCTGATTCCGGAAGGTGTGCTCGCAGGCCTGCTGATCGTGATCGGCTCCCGGCTGGTCCGCGGCGCCGACATCCGGACAGCCCGGCGGACCGGCGATCTTACGGTCTACGGCGTCACACTGTTCTGTGTTGTTTTCGTCAACCTGCTTGCCGGCGTATTTGCCGGCCTGCTTCTCGCGGTGGGACTTGTCCTCTGGCGGGTTGTACGCGCGAGCATCCATGCAGAGCCGCTTGCTGACCACATCAGCAGCGGATCCACTGCCAGCTCCGGGGACGGGGACCGTTGGCGGGTGGTCATCGACGGATCGTGCAGTTTCCTTTCCCTCCCCCGCTTGAGCACCGTCCTGGCCTCCGTGCCGGCAGGCACGCACGTCACGGTGGAACTGGAGGTGGACTTCCTCGATCACCCGGTTCACGACACCCTGGACGCGTGGCGGAACCGGCATGTGGGGAACGGCGGCACGGTGGTAATCGAGGAGAGTGGAACCGCCACGCTCCATGGCGCCCAGGCCGGTCCGCCCAGCCGCGGCAGCTCACGCTCGGCGCTTCGGGGCGGGTTTGCCCCGTGGCGCAGCTGGCAGCAGCGGATCCTGGCCGGGCATGCTGCAGCAGCCCCTGACGTTCCGGGCCCCCTGCGTTCCATTCTCTCCGGCGTGGACAACTACCACCGGCGCAACGCCCACCTTGTCCGGCCGCATGTCCAGGAGCTGGCCTCGTTCCAGGATCCCAACACATTGTTCCTGACCTGCTCGGACTCCCGCCTGGTGCCGAACCTGATCACCAGCAGCGGTCCCGGAGACCTCTTCACTGTCCGGAATGTGGGCAACGTGGTGGGCAGCAAATGGCTGGATTCCTCTGTTGAAGCCGCCCTGGACTTTGCGCTCAACAAGCTGTCGGTGGAATCAGTAGTGGTGTGCGGCCATTCGGGTTGCGGTGCCATGACCGCGCTGAGTGATGACCCACGGCCCACTGAGGCTTACGACGGCGGCCTGCAGGGCTCCGCACGGGAAGGCACCTCCAGTGCGGCAACTGCCGCCGGGGAGCGGGGCGCTGTTGACGTCTGGCTTGACCACGCCAGGCCCAGCCTTGGCGCGTTCCGCGGCGGGCATCCCGTCCAGGTGGCTGCAGCCGAAGCCGGGTACGACGCCGTCGACCAACTGGCGATGGTCAACGTCGCGGTGCAGCTGGACCGGCTCAACCGGCAGCCCGGCCTCCGGGAGGCGCTGCACGCGGGACGGGTACATGTGGCCGGGCTGTTTTACGACATTTCCACGGCACAGGTCCTTCGGATCACTTCCACCGGCATCAGCCACCTTGATCCGCTGCCGTCCCAGTCCCTGGAGACCATGGAGGAAGAACAGCCTGTCCACTAGMPSETIITPASKLRRSLTAGLRWDLPASLVVFLVAVPLSLGIAAASGAPVMAGLIAAAVGGIVAGSLGGSALQVSGPAAGLTVIVAGLIEQFGWQTTCAITAAAGVLQALLGAARIGRVALAIAPVVVHAMLAGIGITIVLQQLHVMFGSASASSAWENITAIPASIFSVDIAAALLGAVVIVVLVAWKHLPSAVRRIPGPLVAVIAATVLSLPFTVDRITFDGSLLDALSFPQLPDGNWTAAVIGVLTIALIASVESLLSAVAVDKMHHGQRTNFNRELVGQGAANLTSGLLGGLPVTGVIVRSATNVEAGARTRKSAVLHGVWVLVFSLLLAGLIQLIPEGVLAGLLIVIGSRLVRGADIRTARRTGDLTVYGVTLFCVVFVNLLAGVFAGLLLAVGLVLWRVVRASIHAEPLADHISSGSTASSGDGDRWRVVIDGSCSFLSLPRLSTVLASVPAGTHVTVELEVDFLDHPVHDTLDAWRNRHVGNGGTVVIEESGTATLHGAQAGPPSRGSSRSALRGGFAPWRSWQQRILAGHAAAAPDVPGPLRSILSGVDNYHRRNAHLVRPHVQELASFQDPNTLFLTCSDSRLVPNLITSSGPGDLFTVRNVGNVVGSKWLDSSVEAALDFALNKLSVESVVVCGHSGCGAMTALSDDPRPTEAYDGGLQGSAREGTSSAATAAGERGAVDVWLDHARPSLGAFRGGHPVQVAAAEAGYDAVDQLAMVNVAVQLDRLNRQPGLREALHAGRVHVAGLFYDISTAQVLRITSTGISHLDPLPSQSLETMEEEQPVHPGPT0002415_81DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
D1-29_038431452aldHNADP-dependent fatty aldehyde dehydrogenaseGTGACAACTGCAACCCTTTCCCTGTCCGAACTCACCGCCGCGGCCACCCGGGCCGCGCAGATATCGGCAGCGTCAACGGATGCCGAACGCGCGGCCTGGCTGACGGCCGTTGCAGACGCGCTTGACGCCAACGTGGCCGAACTCGTGGACATCGCCCACTCCGAGACAAGCCTGGGATCCGTGCGCCTGACCGGTGAAGTGGGCCGCACCTCCGGCCAGCTGCGCCTCTTTGCCCGGGTGATCACTGAGGGGTCCTATCTCGAAGCAATCATTGACCATGCTGACGCTGCCGCCACTCCGCCGAAGCCTGACCTGCGGCGCCTGCTGCGGCCCATCGGGCCGGTGGCGGTGTTCTCGGCCTCCAACTTCCCTTTCGCCTTCTCCGTGGCCGGCGGCGACACAGCATCCGCGCTGGCCGTTGGATGTTCGGTTATTGTCAAGGCCCACTCCGGGCACCTGAAGCTGTCTGAACGGACCGCTGAGATTATGGCAGCGGCCTTACACTCGGCCGGCGCCCCGGAGGGCATCTTCGCCCTGGTCAGCGGCCGCGAGGTTGGCACCGCCCTGGTGCAGGACCCCGCCATCAGGGCTGTCGGCTTCACGGGCTCCATCCCCGGTGGCCGCGCACTGTTTGACCTGGCCGTTTCCCGGCCCGATCCCATCCCCTTCTACGGCGAACTCGGCAGCCTGAACCCCGTGGTCATCACCAGTGCGGCCATGGCTGAGAAGTCCGCCGAACTCGCCGCCGGATTGGCAGGGTCCTTCACCATGGGCGCAGGCCAGTTCTGCACCAAGCCGGGTCTGGTGTTTATCCCCAGCGGCACCGGTTTTGCCGCTGATTTGGCAGCGGCAACCAAAGACAAGCCGACGTCGGCCATGCTCACCGGCCGCATCGCTGACGCCTACCCGGACGGCCTGCGCAGCGTGGCTTCCGTCCCCGGCGTGGCTGTAGTCAGTGGCAGGGTGCAGCAGGACGCCAGCCAGGACGGTGCGGCGCCGGTGGTTTTCTCCACCTCCGCCGCCAATGTCCTGGAACGCCCGGACGAGTTACTGGAGGAGTGCTTCGGTCCCACCACCCTTTTGATCGAATATACGGACCGGGATGAGCTCGCCGCTGCCCTGGCCAAGGTCCCGGGCAGTCTTACCGCCACCGTTCATGCGCTTCCCGGCGAGGACGTTTCAGGTCTCGTTGAGCAGCTGTCCGGCCTTGCCGGCCGGGTGCTGTTCGATGGCTGGCCCACCGGGGTCGCCGTCAACTGGGCCCAGCAGCACGGCGGACCCTACCCGGCCACCACCTCACTGTTCACCTCGGTGGGAGCGACGGCGGTGCGCCGGTTCCAGCGGCCGGTGGCCTACCAGGACGCTCCGGAAGCCGTCCTGCATCCGGCTCTCCGGGAGAGCAATCCGCTGGGAATCCCTCGCCGTGTTGATGACGAGCTGGTGCTGCCCTAGMTTATLSLSELTAAATRAAQISAASTDAERAAWLTAVADALDANVAELVDIAHSETSLGSVRLTGEVGRTSGQLRLFARVITEGSYLEAIIDHADAAATPPKPDLRRLLRPIGPVAVFSASNFPFAFSVAGGDTASALAVGCSVIVKAHSGHLKLSERTAEIMAAALHSAGAPEGIFALVSGREVGTALVQDPAIRAVGFTGSIPGGRALFDLAVSRPDPIPFYGELGSLNPVVITSAAMAEKSAELAAGLAGSFTMGAGQFCTKPGLVFIPSGTGFAADLAAATKDKPTSAMLTGRIADAYPDGLRSVASVPGVAVVSGRVQQDASQDGAAPVVFSTSAANVLERPDELLEECFGPTTLLIEYTDRDELAAALAKVPGSLTATVHALPGEDVSGLVEQLSGLAGRVLFDGWPTGVAVNWAQQHGGPYPATTSLFTSVGATAVRRFQRPVAYQDAPEAVLHPALRESNPLGIPRRVDDELVLPPGPT0006195_154DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CAPROLACTAM|DERIVATE_DEGRADATIONXENOBIOTIC_ADIPATE_DEGRADATION,PGPT0006195-aldH-K14519NANA
D1-29_038441104VejaciCOG49483,6-anhydro-alpha-L-galactonate cycloisomeraseATGACCACGTCCGTCGCCGAAGCCGTCCGGACAGCACCGCGCATCACCGGCCTTTCCACCCGGTTACTGACCGTCCCGCTGCGGCGCAGTTGGGGTGCGGAGGCGCCGGAAAACCATGTGATCGTCACGGACATCCAAACGGACGACGGCGGCGCGGGCCACGGTTTTTCGTGGACGCCCACCATCGGCCCGCATGCCGTCAAAGCACTCCTCGACTACGACATCGCCCCTTTCGTTACCGGGCTGCCCGCCAACCCTGAGACGGTGTGGGACGCATTGTGGAAGCGCCTGCATGAGGCCGGGGGCGGGGGACTGACCACCATCGCCATGGCGGGCGTGGACCTTGCCCTCTGGGACCTGCAGGCTCACAGGGCGAACACCTCCGTGACAGGGCTCCTGGGCCAGCGGCAGGAGTCTGCAGAGGTGTATGGCTCGGGCGTAAACCTGCACTACACCCTTGAAGAGCTGGTGGCCCAGGTTGAGCGCTGGATCAGCGCGGGGCACCAGGCCGTAAAGATCAAGGTGGGCAAGCCCGACATCCGGGAGGACGCCGAGCGGGTGGCCGCCGTCCGTTCCGTGCTGGGGCCCGGCCGCAAGCTGATGGTCGATGCGAACCAGCGCTGGGACCTGCCCGCCACCTTTAGAGCGTTGGAAGTCCTCGTAGAATATGGGCTGGAATGGCTCGAAGAACCCATCCGAGCGGACGATCTCTGGGCCTACCGCAGGCTCCGCAAACATTCGCCCGTGCCCATCGCCCTGGGCGAAAACCTGCACACCATCTACCGCTTCCGGGATTTCATAGCAGCCGAAGCCGTAGACATCATTCAGCCAAACATCATCCGGGTAGGCGGCATCACCCCGTTCCGGCGGATTGTTGAACTGGCACGGACCAACAGCATCCGGGTGATGCCGCACTTGCTGCCCGAGCTCTCCGGCCAGCTTGCCCTGACCCTGGCCGAACCCACCCTGGTTGAGGATGTCGAAGACGCCTCGTTCGAGCAGTTGGGCATCCTGGCAGCGCCCTCTCCGGTCCGCTTCAGCAACAGCCGCGTAACGCTCACGGACCAGCCGGGCCTGGGCTTCCGCTTCCGGGACGAACTTTAAMTTSVAEAVRTAPRITGLSTRLLTVPLRRSWGAEAPENHVIVTDIQTDDGGAGHGFSWTPTIGPHAVKALLDYDIAPFVTGLPANPETVWDALWKRLHEAGGGGLTTIAMAGVDLALWDLQAHRANTSVTGLLGQRQESAEVYGSGVNLHYTLEELVAQVERWISAGHQAVKIKVGKPDIREDAERVAAVRSVLGPGRKLMVDANQRWDLPATFRALEVLVEYGLEWLEEPIRADDLWAYRRLRKHSPVPIALGENLHTIYRFRDFIAAEAVDIIQPNIIRVGGITPFRRIVELARTNSIRVMPHLLPELSGQLALTLAEPTLVEDVEDASFEQLGILAAPSPVRFSNSRVTLTDQPGLGFRFRDELNANANANANA
D1-29_03845906COG0329putative 5-dehydro-4-deoxyglucarate dehydrataseATGAAATTCGACGGCGTACTGTTTTTCCCCGTCACCCCGTTCACGCCTGAAGGCGGCGTCGACGTCGGGCTGCTCAAGGAGCACATCAGCTCCCGCCTGCCTTTCGGCCCCGGCGGCGTCTTCCCGGCCTGCGGGACGGGCGAGTTCCATGCCCTGAGCATCGAAGAGGTGCGCACAGTAGTGACAGCCGCCGTCGAGGTTGTGGCCGGCAAGGTGCCCGTGGTTGCCGGAGCAGGAGGCCCCCTGGGCCACGCGATCGCTGCCGCCCGCGCTGCCGAAGAAGCGGGCGCCGACGCGCTCCTGGTCCTGCCGCCGTACCTTGTCACCGGCCCCACAGAGGGCCTGGTGGCCTACATCGAGGCCGTGGCGGACGCCAGCAGCCTCCCCGTGATCGTCTATCACCGCGGCAACGCCAGGTTCACCGCCGCCTCCATGACCAGGCTCGCGGGCAACCCCAAGGTCATCGGCTTCAAGGACGGCCTGGGCGATGTTGGCCTGGCGCAGGAGATCGTCACCGCGGTCCGCGCCACCGGCCGCGAAGACTTTGCCCTGTTCAACGGCCTGCTGACCGCCGAACTGACGCAGGGCGCCTACCGGGGACTCGGCATCCCGCTGTACTCTTCCGCCGCGTTCGCCATGGCTCCGGAGATCGCCAAGGCCTACTACGACGCTTACATGTCAGGGGACGAGGACCGCCGCAATGCCCTGCTGGAAGGCTTCTACGCTCCGCTGGTTCGGCTCCGCGACCAGACCCCCGGCTTTGGTGTTTCGCTGATCAAGGCCGGGCTCCGGCTGGGCGGGCTGGCTGTTGGCTCCGTCCGTCCGCCGCTGGTGGATCCCACGGACGAGCAGCTGGTGCAGTTGAAGGCCATCCTCGCCAAGGGCCACGAGCTGGCTGGCCGCTGAMKFDGVLFFPVTPFTPEGGVDVGLLKEHISSRLPFGPGGVFPACGTGEFHALSIEEVRTVVTAAVEVVAGKVPVVAGAGGPLGHAIAAARAAEEAGADALLVLPPYLVTGPTEGLVAYIEAVADASSLPVIVYHRGNARFTAASMTRLAGNPKVIGFKDGLGDVGLAQEIVTAVRATGREDFALFNGLLTAELTQGAYRGLGIPLYSSAAFAMAPEIAKAYYDAYMSGDEDRRNALLEGFYAPLVRLRDQTPGFGVSLIKAGLRLGGLAVGSVRPPLVDPTDEQLVQLKAILAKGHELAGRPGPT0018160_654DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018160-kdgD|ycbC-K01707NANA
D1-29_03846966hldD_1ADP-L-glycero-D-manno-heptose-6-epimeraseATGAGCAGGATCCTTGTCACCGGCGGCTCCGGCCGCCTGGGCCGCAGTGTTGTGGCGGGGCTGGCCGAAAAAGGCCACCACGTGATCTCGGTTGACCGCGAGGCCGTTCCGGCGGATCAGCTGGCGGCCGGCGTCGTGCAGGAAACGGCAGACCTCCTCGCCCCGGGCGAGGCATTGCGCTTCCTCCGGGAAACCACTCCCGACGCCGTCATCCACCTTGCCGCGATTGCCGTCCCCTTCAGCGCGCCGGAAGACGTCATCTTCGCCACCAACACCCGTCTTGCCTACGCCGTGATCAGTGCGGCTACGGAGCTGGGGATCGGCAAAATCGTCACCGCCAGCAGCCCTACCGTCCTGGGCTACGGCTCGCCGGCAGGCTGGCTCCCGGCCAGCTTCCCGTTGGATGAGCGCACCACGCCCAAGCCCTGGAACGCCTACGCGCTGTCCAAGCTGATCGCGGAACAGACCGTGCAGATGTTCGCCGCCGCCCAGGGCGAGAGGATCCGGTACGCGGCCTTCCGGCCCTGCTACGTCATCTCGCCGGAGGAATGGGAGGGCGCGCCCACTCAGCAGGGTCACACCGTTGCCGAACGGCTCACAGATCCGGCACTGTCCGCCCCTGCCCTGTTTAACTACGTGGATGCGCGCGACGTGGCCGACTTCCTGGACGTCCTGCTGCGGAAGATGGACTCCATCCCCAACGGCGAAACGTTCTTTGTTGGCGCCGCAGACGCCCTGGCAACGGCCCCGCTGGCTGACCTCATGCCGCGGTTCCTTCCCGGCACTGCAGAGCTGTGCTCCGGTCTCACGGGGACCGCTCCGGCATTTTCGATTGACAAAGCCCGTGACCTGCTCGGCTGGCAACCCAAACGGAGCTGGCGGACCGAACTCAAAACATCCACCCCCTACGAAGGGACCTCCGCCGCGCTGGTGACGGCTGGCACGGGATCCAAGGAGACACCATGAMSRILVTGGSGRLGRSVVAGLAEKGHHVISVDREAVPADQLAAGVVQETADLLAPGEALRFLRETTPDAVIHLAAIAVPFSAPEDVIFATNTRLAYAVISAATELGIGKIVTASSPTVLGYGSPAGWLPASFPLDERTTPKPWNAYALSKLIAEQTVQMFAAAQGERIRYAAFRPCYVISPEEWEGAPTQQGHTVAERLTDPALSAPALFNYVDARDVADFLDVLLRKMDSIPNGETFFVGAADALATAPLADLMPRFLPGTAELCSGLTGTAPAFSIDKARDLLGWQPKRSWRTELKTSTPYEGTSAALVTAGTGSKETPNANANANANA
D1-29_038471458yteTCOG0673Putative oxidoreductase YteTATGGTCAACACAGCCGAGTCGACGTCCGCCACCGCGGCTTCGGGCTCTGAAACCCTCAAGGGGGCAGCAGGAACGCAGGCAGGGCAGCCCTCCAAGGCGCGCATTGCCCTGATCGGCACCGGCGGCCGCTCGGAAATGTACATCCGGGCTATTTTCGGCAAGCACGCGGACACCGCCGAGCTGGTGGCTTTCTCCGACGTGAACCCCGGGCGGGTTCAGTTCTACCAGAAGCTGATCCAGGACCTGGGCGCCGCCGGCCCTGTGGCCTCTTTTGATCCCGCAGATCTCACCGCCTTCGTCAAGGACAACAACATCGACCGGGTCGTGGTGACGACGCCCGACTACACCCACGCCGACTACATCGTGGAGGCGCTCAACGCAGGCGCCGACGTCGTGGTTGAAAAGCCCCTCACCATCGACGCCGAGGGCTGCCGCTGCATCACCAAAGCTGTGCACGAAACAGGCCGCAACGTTGTGGTCACCTTCAACTACCGCTACTCGCCGCGCAACAGCGCCCTCAAGGAGATCATCCAAAGCGGCGTGATCGGCAAGGTCACCTCCATCGACTTCAGCTGGGTCCTGGACACTGTCCACGGTGCGGACTACTTCCGCCGCTGGCACCGGGAAAAGAAGAACTCCGGCGGCCTGCTGATCCACAAGGCGTCCCACCACTTCGACCTTGTTAACTGGTGGATCGATGACGTCCCGGAGCGCGTCTTCGCCTCCGGCGGACTCAAGTTCTACGGCGACAGGAATGCGGCCGAACGCGGACTTGGTCCCCGCCCGGAACGCGGCACCCCGGATGCCGCGGCGCCTGCCAGCGCCGAGAAGGACCCCTTCACCCTTGACCTGCGCGAGGACGAGCGCCTCAAGGCACTTTTCCTGGACAACGAGCACTACGACGGCTACCGCCGCGACCAGGACGTCTTCACCGGCGGCATCACCATCGAGGACAACCTGGCGCTGGTGGTGGAGTACCAGGGCGGTCCGCGCCTGAGCTACTCGCTGAACGCCCACAGCCCCTGGGAAGGCTACCGGGTGGCGGTCAACGGGACAGAAGGCCGTGCAGAACTCGAAGTGGTGGAACGCGCAGCAGTCACCTCCAGCACGGACAAGAAAACGGTGGTGGACCCCAGCGCAACCCCCATCGAGGAGGACGACGCCATCCGCCGCAACGGCGAACGCCTGGTGGTCCAGCGCCACTGGGAAGCCGCTTATGAGGTGCCGATCGTCAATGGTGAAGGCGGCCACGGCGGCGGCGACGAGCTCCTGCTTTCGGACCTCTTCAACGGACCGGGCGAAGACCCGCTGGGACGCCCCTCGGGCTACCTGGACGGTCTCCGTTCCGTCTCTGTGGGCATCGCCGGAAACCGCTCCCTCGAATCCTCTCTTCCCGTCCGCATTGAAGACCTTGACCTCGGCGTTGACCTCCGCCGCGGTGCCCAGTCCGGCGCCTAAMVNTAESTSATAASGSETLKGAAGTQAGQPSKARIALIGTGGRSEMYIRAIFGKHADTAELVAFSDVNPGRVQFYQKLIQDLGAAGPVASFDPADLTAFVKDNNIDRVVVTTPDYTHADYIVEALNAGADVVVEKPLTIDAEGCRCITKAVHETGRNVVVTFNYRYSPRNSALKEIIQSGVIGKVTSIDFSWVLDTVHGADYFRRWHREKKNSGGLLIHKASHHFDLVNWWIDDVPERVFASGGLKFYGDRNAAERGLGPRPERGTPDAAAPASAEKDPFTLDLREDERLKALFLDNEHYDGYRRDQDVFTGGITIEDNLALVVEYQGGPRLSYSLNAHSPWEGYRVAVNGTEGRAELEVVERAAVTSSTDKKTVVDPSATPIEEDDAIRRNGERLVVQRHWEAAYEVPIVNGEGGHGGGDELLLSDLFNGPGEDPLGRPSGYLDGLRSVSVGIAGNRSLESSLPVRIEDLDLGVDLRRGAQSGANANANANANA
D1-29_038481014ccpA_9COG1609Catabolite control protein AATGGTCAGGAAATCGGCAACGGGCAGGATCGGCATCGCGGACGTTGCCATCAGGGCCGGCGTTTCGCATGCCACCGTTTCGCGGGTGATGAACGGCAATTTCACCGTGGATCCTGAGATTGCTGCCCGCGTCCGGGCAGCCGCGGCGGAGCTGAAGTACCAGCCCAATCCGGTGGGGCGCAGCCTGGCCCTGGGTAAAACAGACACCATCGGCATTGTGGTCCCGGACCTCGCCAACCCCACATTCCAGGCCATCCTGCGTGGATTGAGCCGGGCCGCGGCACAGGACGGCTACCGCGTCCTGATTGCCGACTCCTTCGAAGTCTCCAGTGAAGAAGCCATCCTCGCCGGCGAAGCCCGACGGCGTTGTGACGGGCTGGTGCTGTGCGCCCCGCGCATGAGCGACACTGAGCTGGAGGAGATAGCCCCGTCACTGCATCCGCTGGTCCTGATCAACAGGACCACTGCCGCTCCGAAGGTACCCAGCCTGGTGGTGGATTACGGACAGGGCGTCCAGGACCTGGCCGAGCATCTGGCAGAGCTCGGCCACACCCGCCTGGCATTCCTGGCGGGCCCGGCACGCAGCGCCTCCAACGCGCTCCGGCTCCAGGGCCTGGAATCGTTCAAGGCTGCCCATCCCCACGTGGATGTCAGGATGCTCGAAGGCGGCTCTGACTTTGACACCGGCCACGGTGCCGTGGATGCCGTGCTGGACAGTGGCGCCACGGGCATCCTGGCCTTCAATGACCTCGTGGCCATGGGCCTGATGAGCGGGCTTCACGAGCGCGGCGTGGACGTACCCGGGGATATCTCCGTCACGGGCTTCGATGACATTCCCTTCGCGCGGTACACCACCCCCGCCCTGACCACGGCGGCCGTGCCCATCACGGAGCTTGGCCAGCAGGCATGGCACCAGCTGCGGGCGCTGATCCGGAAGGAAGACAACGACGCACCCGGCAGCAGGTACCAGCCGCGCCTGGAGGTCAGGGCCAGCAGCGGGCCGGCGAAGGACTGAMVRKSATGRIGIADVAIRAGVSHATVSRVMNGNFTVDPEIAARVRAAAAELKYQPNPVGRSLALGKTDTIGIVVPDLANPTFQAILRGLSRAAAQDGYRVLIADSFEVSSEEAILAGEARRRCDGLVLCAPRMSDTELEEIAPSLHPLVLINRTTAAPKVPSLVVDYGQGVQDLAEHLAELGHTRLAFLAGPARSASNALRLQGLESFKAAHPHVDVRMLEGGSDFDTGHGAVDAVLDSGATGILAFNDLVAMGLMSGLHERGVDVPGDISVTGFDDIPFARYTTPALTTAAVPITELGQQAWHQLRALIRKEDNDAPGSRYQPRLEVRASSGPAKDPGPT0017992_5563DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_03849774lutR_2COG2186HTH-type transcriptional regulator LutRATGCGCACCCACCAACTTGTCCTGCACTGGATCGAGAAGCAGCTCTCCGAGGGCCTGCTGACCGTGGGCGGCCGCCTTCCCGCCGAGCGCACGCTGGCCGAACAGCTGCAGGTTTCCCGGACCTCCGTTCGGGAAGCCATCCGGATCCTGGAGGCCATGGGTGTTGTCCGTGCGGGTGTGGGCTCGGGACCGGAATCCGGAACGGTGGTGATTTCAGATCCGACGGCGGCGCTGGGCTCGGCGCTGCGCCTCCACGTTGCCACGCAGCACCTTCCGGTGTCTGACATTGTGGAGACCCGGGTATTGCTGGAGTCCTGGGCCGCTGCACGGGCGAAGCCGGATGCCCCTGAACTGGACACCGCAGCCAGCCTCCTGGACGAGATGGACGCCGTCGGACCGGCCGGAGGTGAGGCCGGGACTGCACGTGAGGCCGGCGCTGCAGTATCGCCCGGCGCGTCCATGGAAGCGGGCTCGCCTGTTGATGACTTTCTCGCGCTGGATGTCAGGTTCCACCTGGCTCTTGCCGATGCCGCTGGAAATGCCGTGGTCAGCGCCATGATGGGATCGCTGCGGGAGTCGATCCAGGGCTACGCCGCAGAGCTCACGGCCAATCTCCCGGACTGGGACGCCACGGCCGCACGCCTTCGGGCCGAGCACCGGGAGATCCTTGCCGCTATCCGGAACGGCGACGGCGAGCGGGGGGCCAAGCTGGTGGCCGCCCACATCGAGGGCTACTACCGGGAAGCAGGCCTGCGTCCGGGATTGCCGGGCTAAMRTHQLVLHWIEKQLSEGLLTVGGRLPAERTLAEQLQVSRTSVREAIRILEAMGVVRAGVGSGPESGTVVISDPTAALGSALRLHVATQHLPVSDIVETRVLLESWAAARAKPDAPELDTAASLLDEMDAVGPAGGEAGTAREAGAAVSPGASMEAGSPVDDFLALDVRFHLALADAAGNAVVSAMMGSLRESIQGYAAELTANLPDWDATAARLRAEHREILAAIRNGDGERGAKLVAAHIEGYYREAGLRPGLPGNANANANANA
D1-29_038501338lldD_2COG1304Putative L-lactate dehydrogenaseATGACCCATACGATCCAGCCGAACAACCCCGAGACTACTCCGGCGCCGGACGCCACGGACGTTCCCGCCGTCGGCACACCACCGCGGCCCGCAGCGGCGGCTCCTCTGCCGGCCGCCCTCAAGCGCCGCCTCCCTAAATACTCCGACCTGGCGCCCCTGATGCAATTCAAAAAGCCCGAGTTCAGCAAGGAAGCACGGCTCAAGCGCGCCAGCACCATCTGGGAACTGCGGGACATCGCCAAGCGCCGCACACCCCAGGCGCCCTTCGACTACACGGACGGCGCGGCCGAAGGTGAGATCACGCTGCGCCGCGCACGCGAAGCATTCCTGGACATCGAGTTCCGGCCGGGCATCCTGCGCAACGTCTCGAGCATCGACCTGAGCACGGAGATCCTGGGCAAGTCCTCCCGGCTGCCGGTAGGAATCGCCCCCACCGGGTTCACCCGCATGATGCAGTCCGAGGGCGAGTACGCCGGTTCACAGGCAGCCGAGGCCGCAGGCATTCCCTACACGCTGTCCACCATGGGCACCGCCTCCATCGAGGACGTGGCGGCGGCGGCCCCCGGCGGCCGCAACTGGTTCCAGCTCTACCTCTGGACGGACCGCGACCGCTCGCTGGAACTGATCGACCGCGCCGCCAAGGCCGGGAATGACACCCTGATGGTGACGGTGGACACGGCAGTGGCCGGAGCCCGCCTCCGGGACGTCCGCAACGGCATGACCATCCCGCCGGCGCTCACCATCAAGACGGTGCTGGATGCGTCCTACCGCCCGGCCTGGTGGTTTAACTTCCTCACGCACGAGCCGCTGACGTTCGCCTCACTGTCCCGCTACACCGGCACCGTGGCCGACCTCATCAACTCAATGTTCGATCCCACCCTCACGTTCGAGGACCTCGACTGGCTGCGTGAAACCTGGAAGGGCAAGCTGGTGGTCAAGGGCATCCAGACCGTCGAGGATGCCCGCAGAGTGGTGGACCACGGCGCCGACGGTGTGATCCTCTCCAACCACGGTGGGCGCCAGCTGGACCGGGCACCCATCCCGTTCCACCTGCTCCCCGAGGTCAAGCAGGCCTTCACCGCGGACAACACCGACGCCGTGATCATGCTCGATACCGGCATTATGAGCGGTGCGGACATCGTGGCTGCGCTGGCCCTGGGCGCCGACTTCACGCTGATTGGCCGCGCCTACCTCTACGGCCTGATGGCAGGCGGCCGGGCAGGGGTGGACCGCGCCCTCCAGATCCTGGAGAAGGACATGGCCCGCACCATGGCGCTGCTGGGCGTCAGCAGGATCTCCGAGCTCACACCGGACCACGTGCGGCTGCTCAACAAGTAAMTHTIQPNNPETTPAPDATDVPAVGTPPRPAAAAPLPAALKRRLPKYSDLAPLMQFKKPEFSKEARLKRASTIWELRDIAKRRTPQAPFDYTDGAAEGEITLRRAREAFLDIEFRPGILRNVSSIDLSTEILGKSSRLPVGIAPTGFTRMMQSEGEYAGSQAAEAAGIPYTLSTMGTASIEDVAAAAPGGRNWFQLYLWTDRDRSLELIDRAAKAGNDTLMVTVDTAVAGARLRDVRNGMTIPPALTIKTVLDASYRPAWWFNFLTHEPLTFASLSRYTGTVADLINSMFDPTLTFEDLDWLRETWKGKLVVKGIQTVEDARRVVDHGADGVILSNHGGRQLDRAPIPFHLLPEVKQAFTADNTDAVIMLDTGIMSGADIVAALALGADFTLIGRAYLYGLMAGGRAGVDRALQILEKDMARTMALLGVSRISELTPDHVRLLNKPGPT0001765_326DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0001765-lldD-K00101NANA
D1-29_03851636hypothetical proteinGTGACAGACGACGTATTTGCCGTCATTGCGGAAGCAACCCGGCGTGACATCCTGGTATCCCTTCGTTCGGGGGACAAAGCGGTGGGGGAGCTGGTAGAGGAACTGTCAGCCAGTCAGCCCACCATTTCAAAGCACCTCAAGGTTCTTCGTGAAGCGCAGCTTGTCACCATGCGCGCGCAGGGACAGAAGCGCTATTACGCGCTCAACTCCAAGCCGCTGGAGAGTGTGGCCAGCTGGCTGGGGACGTTCGACGTCGGACCCTCCGCCGCACTGAATAGGTCGCCGGAGCTGCAGGGAACCGAGGTCACCCCGGCCCAGGGGGCGCCAACCCAGGGGACGCCGGCCCAGGGGACGCCAGCCGAGGGCCGCGATGGTGAGCTAGTGGCTGCGCATGCGTTGGCCGCAGAGTCTGTGGCTGCCGGGGCTGTGGCTGCCGGAGCCGTGCCTGCTGGGACGGGCGCGCGCGGGGGCTCGGAGTTGAGTCCCGCCGTCGTTATTCCCGGCGGTACCACCGCTCCGCTAAGCGACGACACCGTCCCGCAGCAGATCGGCCGGACCGTGGGCCGCGCCGCCACCAAGGCCGCGGACCTGCTGGCCAACCTGCCCAACCTCCCGAAGTTCGGCCGCAAGAAGTAGMTDDVFAVIAEATRRDILVSLRSGDKAVGELVEELSASQPTISKHLKVLREAQLVTMRAQGQKRYYALNSKPLESVASWLGTFDVGPSAALNRSPELQGTEVTPAQGAPTQGTPAQGTPAEGRDGELVAAHALAAESVAAGAVAAGAVPAGTGARGGSELSPAVVIPGGTTAPLSDDTVPQQIGRTVGRAATKAADLLANLPNLPKFGRKKNANANANANA
D1-29_038521149acuCAcetoin utilization protein AcuCATGACCGATTACAACTTCGGCCCCGGACACCCGATGGCACCGGAACGGATGGATCTTACCGCGCGGCTTGCCCGGAGCCTGGGGCTGCTGGACCTGGACCACGTCTCCATTGCCGCGCCGGAGATAGCATCCGACGCCGAGCTGGAGACCGTGCATTCGTCGGATTTTGTGGCGGCGGTACACCGGGTCAGCGAGGATCCATATTTCGCCGACGAAGCCCGGGGTCTGGGGACCGAAGATGATCCGGCCTTTGCGGGTATGCATGAGGCCGCTGCAAGACTGGCCGGCGGTTCCCTGCTCGCAGCCTCGGCCATCCTGGACGGCAGTGCCCTCCGAGCCGTGAACTTTGGCGGTGGCCTCCACCATGCCGCCCGCGATCGGGCCAGCGGCTTCTGCATCTACAACGATTCTGCGCTTGCCGTCCGCAGGCTGCTCGACGGCGGCATTGCGCGCGTTGTCTATATCGACGTCGACGCGCACCACGGGGACGGGACGGAAAGCATCTTCTGGGCTGATCCGCGGGTGCTCACCATTTCGCTGCATGAAAGCGGGCTCACGCTGTTCCCGGGAACCGGCTTCGCGGATGAGATCGGAGGCCCGCAAGCTGAGGGCACGGCCGTGAATGTTGCGCTGCCGTCGGGGACGGCGGATGCCGGCTGGCTGCGCGCCTTTCATGCCGTGGTGCCGCAACTGGTGGGCGCATTCAAGCCTGAAGTGATCGTCAGCCAGCATGGTTGCGACTCGCACCGACTGGACCCTCTGGCCCATTTGAATGTCAGCGTTGACGGCCAGCGCGAGGCCGCCAACGCTATCGCCGCCCTTGCAGCCCGGCACTGCGGGAACCGGTGGATTGCCACCGGAGGAGGCGGCTACAACGTGATGGATGTGGTGCCGCGATCCTGGAGCCATCTGATCGCGATCGCAGCAGGCCGCCCTGTCCCGCCGGGGAGCCGTGTGCCGGAGGACTGGCGCAGTTACGTCCAGGACAAGTTCGGCGCGGCAGCCCCAGCGCTCATGGGCGACGACGTGGAGCTGTGGTGGCGGTCCTGGGAAGTGGGGTTCGATCCCAACGACGCCGTGGACAGGACGGTCATGGCTACGCGGAAAGCAGTCTTTCCCCTCCACGGGTTGGACCCTTGGTTCGACTGAMTDYNFGPGHPMAPERMDLTARLARSLGLLDLDHVSIAAPEIASDAELETVHSSDFVAAVHRVSEDPYFADEARGLGTEDDPAFAGMHEAAARLAGGSLLAASAILDGSALRAVNFGGGLHHAARDRASGFCIYNDSALAVRRLLDGGIARVVYIDVDAHHGDGTESIFWADPRVLTISLHESGLTLFPGTGFADEIGGPQAEGTAVNVALPSGTADAGWLRAFHAVVPQLVGAFKPEVIVSQHGCDSHRLDPLAHLNVSVDGQREAANAIAALAARHCGNRWIATGGGGYNVMDVVPRSWSHLIAIAAGRPVPPGSRVPEDWRSYVQDKFGAAAPALMGDDVELWWRSWEVGFDPNDAVDRTVMATRKAVFPLHGLDPWFDPGPT0008225_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008225-acuC-K04768NANA
D1-29_038531434ktrBCOG0168Ktr system potassium uptake protein BATGACGGAACGCCAGTCGAGGCCCCGGAGCCCGGCCAGCTGGCACCCTGCCGCCCAAGAGCGGGAAGGCCTCTGGATCTTTACGCGGCTGCGCGACTTTATCGACGATATTGCCAATACTTCGCCGGCCCGGCTTGCCCTGAGTGTGTTCGGCGTGGTCATCCTGGTGTTCACCCTGCTGCTTTCCCTGCCAGTCTCTGCTGCCAGCGGCGAAGCGACACCCCTGCACCAGGCAATGTTCACGGCAGCTTCCGCGGTGTGCGTCACAGGCCTGACAGTGGTATCGACGGCTGTCCACTGGTCCTTCTTCGGCCAGCTGGTCATCCTGGTGGGCATCTTCGTCGGCGGCCTGGGCACTTTGACGCTGGCGTCACTGCTGGCCCTGATGGTGAGCAAGAGGCTTGGCGTCCGCGGCAAGCTCATCGCCCAGGAAGCCATGAACAACGCCGGCCGCCTGGGCGAGGTGGGTACGTTGCTCCGGATCGTCATCACCACGTCCGTGGTCATCGAGGGGTTCCTGGCGCTGGCCCTGATCCCGCGGTTCATGACCCTGGGCGAGCCCTTCTGGCAGTCGGTCTGGCACGGTATTTTCTACGCGATCTCCGCCTTTAACAACGCCGGCTTCACTCCGCATTCGGACGGCATTGTGCCCTACGAAACAGATCTGTGGATACTGGTTCCGCTGATGGTGGGCGTGTTCCTGGGCAGCCTGGGCTTCCCCGTGGTGATGGTCCTGCAGCAGAACGGGCTGAACTGGAAAAAGTGGAACCTGCACACCAAACTGACTATTCAGGTCTCCTTCATCCTGCTCGCGGCAGGAACAGTGCTGTGGGCGCTGATGGAGTGGGATAACACCCGGACCATTGGCCCCATGAACCTGGGCGACAAGATCACACACTCCCTTTTTGCCTCCGTCATGACCAGGTCCGGCGGGTTCAACCTCGTTGAACAGAATCACATGGAGTCCACCACCATGCTGCTCACGGACGCCCTGATGTTCGCGGGCGGCGGCTCGGCCTCCACCGCCGGCGGCATCAAGGTCACCACCATTGCCGTGATGTTCCTGGCCATCGTTGCCGAGGCCCGCGGCGATTCCGACGTCCAGGTCTACGGCCGGACCATTCCGCAGGGCACCATGCGCGTGGCCATCTCCGTGATCGTGGCCGGCGCCACCCTTGTTTCCGTCTCCGCCTTCCTCCTTCTTCAAATCAGTGGCGCGTCGCTGGACCGGGTGCTGTTCGAAACCATTTCAGCCTTCGCCACCGTGGGACTCAGCACCAACCTCAGTGCCGAGCTCCCGCCGTCGGGCGTTTATGTCCTTACTGCCTTGATGTTCGCCGGCCGCGTGGGCACCGTTACCCTTGCAGCTGCGCTGGCGTTGCGACAGCGCAGCCAGCTGTACCACTATCCGGAAGAGAGGCCCATCATTGGCTAAMTERQSRPRSPASWHPAAQEREGLWIFTRLRDFIDDIANTSPARLALSVFGVVILVFTLLLSLPVSAASGEATPLHQAMFTAASAVCVTGLTVVSTAVHWSFFGQLVILVGIFVGGLGTLTLASLLALMVSKRLGVRGKLIAQEAMNNAGRLGEVGTLLRIVITTSVVIEGFLALALIPRFMTLGEPFWQSVWHGIFYAISAFNNAGFTPHSDGIVPYETDLWILVPLMVGVFLGSLGFPVVMVLQQNGLNWKKWNLHTKLTIQVSFILLAAGTVLWALMEWDNTRTIGPMNLGDKITHSLFASVMTRSGGFNLVEQNHMESTTMLLTDALMFAGGGSASTAGGIKVTTIAVMFLAIVAEARGDSDVQVYGRTIPQGTMRVAISVIVAGATLVSVSAFLLLQISGASLDRVLFETISAFATVGLSTNLSAELPPSGVYVLTALMFAGRVGTVTLAAALALRQRSQLYHYPEERPIIGPGPT0002735_2974DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
D1-29_03854687ktrACOG0569Ktr system potassium uptake protein ATTGGCTAATTCCTCAGGCATCCCCAGCCGCCCCGCCCACAATGCGCCGGTCCTGGTGATCGGGCTGGGCCGTTTTGGCTCCTCGACGGCGGAACAGCTGGTGAAGCAGGGCCGGGAAGTCCTTGCCATCGAACGCGACCGGACACTGGTGCAGAAGTGGGCGCCGCTTCTGACCCACGTGGTGGAGGCGGATGCCACCAACATCGACGCGCTGCGCCAGCTGGGCGCCCAGGAATTTACGTCGGCGGTGGTGGGGGTGGGCACGTCCATCGAGTCCTCAGTGCTGATCACCGTAAACCTGGTGGATCTGGGCATAGAGCACCTGTGGGTCAAGGCGATCACGCCGTCGCACGGCAAGATCCTGACCAGGATCGGTGCCAACCACGTCATTTACCCAGAGGCCGATGCCGGTGTCCGGGCCGCGCACCTGGTGTCCGGCCGCATGCTTGACTTCATCGAGTTCGACGACGACTTCGCGATCGTCAAAATGTATCCACCGCGTGAAACAGTAGGTTTCACGCTGGATGAATCCAAGGTCCGCTCCAAATACGGGGTGACAATTGTTGGCGTTAAGTCCCCCGGCGAGGACTTCACCTACGCGCGTCCGGAGACCAAGGTGTCTTCACGGGACATGCTCATTGTGTCCGGCCACGTTGACCTGCTGGAACGGTTCGCCGCCCGCCCTTAAMANSSGIPSRPAHNAPVLVIGLGRFGSSTAEQLVKQGREVLAIERDRTLVQKWAPLLTHVVEADATNIDALRQLGAQEFTSAVVGVGTSIESSVLITVNLVDLGIEHLWVKAITPSHGKILTRIGANHVIYPEADAGVRAAHLVSGRMLDFIEFDDDFAIVKMYPPRETVGFTLDESKVRSKYGVTIVGVKSPGEDFTYARPETKVSSRDMLIVSGHVDLLERFAARPPGPT0002710_2605DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
D1-29_03855798proCCOG0345Pyrroline-5-carboxylate reductaseATGAACGAAGCAATCCTGACCGGCCTGGTGGAAGGCGGAATAGACCCTGCCGACATCGTGGCCACTGTCCGAAGGGCGGAGCGGGCGGCCGAACTGGCACAGCGCCACCATGGCATCACCGCCATCGCCAGCGAGGAAGAACCCGAGAATAACAGGCAGGCGGCCAAGGGTTCCGGCGTCGTCATCCTGGGCGTCAAACCGGCAGGCATAGTTGACCTGGCCCGGGAAATCAGCCGTTCCCTGTCGCCCGATACCATCGTCATCAGCGTGGCCGCGGCGGTTTCACTGGAGCAACTGGAAGCCGCCCTGCCACCCGGACAGCCAGTTATCCGTACCATGCCCAATACTCCGGCAAAGCTGGGCCGTGGCGTGGTCTCCGTATCGCCTGGCACCAACTGCAGCCCTGAGCAGCTTCAGAAGGCCAAGGACATCCTCAAACCGGCAGGCACCGTGGTGGAGGTGCCCGAGGAGCAGGTGGATGCGCTGTCGGCAATCAGCGGCTCGGGGCCGGCCTACGCGTTCTACCTTGCCGAGGCCATGGCATCCGCCGGCGTCGAGCTGGGCCTAGACCGTGAACTGTCGCTGCTCCTCGCCCGGGAAACGGTGGCGGGGGCAGGCTTTATGCTGGCCGAGCCGGGAGCCGATCCGTCGGCGCTGCGGAAGTCCGTGACCAGCCCCAACGGCACCACCGAACGTGCCATCGCCACGTTTGATGAGCAGGGGATTCCTTCGATCATCGCTGCGGGCGCCCGGGCTGCGGCCGAGCGCGCGGCCGAGATCACGCGGCAGCTGGGCTAGMNEAILTGLVEGGIDPADIVATVRRAERAAELAQRHHGITAIASEEEPENNRQAAKGSGVVILGVKPAGIVDLAREISRSLSPDTIVISVAAAVSLEQLEAALPPGQPVIRTMPNTPAKLGRGVVSVSPGTNCSPEQLQKAKDILKPAGTVVEVPEEQVDALSAISGSGPAYAFYLAEAMASAGVELGLDRELSLLLARETVAGAGFMLAEPGADPSALRKSVTSPNGTTERAIATFDEQGIPSIIAAGARAAAERAAEITRQLGPGPT0014225_1589DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286NANA
D1-29_03856987ppx1COG0248Exopolyphosphatase 1ATGCGGCTAGGCGTCCTTGATATTGGGTCCAACACTGTCCACCTTCTCCTGGTGGACGCCCACCCTGGCGCGCGCCCGGTGCCTTTCGCCTCGCACAAACGGCCTCTGTCGTTGGTCCAATACCTGGACGACGACGGCAACATCACCGAGGCGGGCCAACACGAGCTGACGGAATTCGTCCTGGAGGCCTGGGAGTTCGCGGCCAAGCACAAAGCAGCGGATCTCCTGGCCTTCTGTACGTCGGCCATCCGGGAAGCCACCAATGGCCCTGCCGTGCTGGCCCGCGTCAAGCACGAGACCACCGTGACCCTGCAGGAGCTGACGGGAAGCGAAGAGGCCTCCATGACCTTCTTCGCCGTCCGCCGCTGGTACGGCTGGGGCGCCGGCCCCATCCTCAACCTCGATATCGGCGGCGGCTCCTTTGAAATGGCCTTCGGCCAGGACGAGCTTCCCGAAGTGGCAACGTCCGTTCCGCTCGGCGCCAGCCGCCTCACGCGGGACTGGCTGTCGGAGGACCCGCCGTCGGCGAAGAGCGTCAAGGAGCTGCGCCGCTACATTCGGGCCACACTGAAACCCGCGGTCCGCGAGTTCGACGGCTTGGGCCGGGCGAACCTCGTCGGCGGAACATCGAAGACTTTCCGGTCCCTGGCAAGGATCGCGGGGGCAGCCCCCAGCGCGGCAGGTCCATACGTCAAGCGTGAGCTGAACGCCACCGACCTGGGAGTCTGGGCCCAGCGCATTTCCGCCATGAAGTCCGAAGACCGCCTTCACCTGCCAGGCGTCTCCGAAGCCCGCGCCAACCAGCTCCTCGCCGGGGCGCTGGTGGCCGAAGCAGCTTTGGAGCTGTTCAAGTTCAAGAAGGTCAAGATCTGTCCGTGGGCGCTGCGCGAAGGATTGATCCTGCGCCGGCTGGACCAGCTGGTCTTCTCCGGGCCCCTGCATCCGGCCCCGCATGTGATTGCGCCCGAAGGCTCGCTGGCCAGCTGAMRLGVLDIGSNTVHLLLVDAHPGARPVPFASHKRPLSLVQYLDDDGNITEAGQHELTEFVLEAWEFAAKHKAADLLAFCTSAIREATNGPAVLARVKHETTVTLQELTGSEEASMTFFAVRRWYGWGAGPILNLDIGGGSFEMAFGQDELPEVATSVPLGASRLTRDWLSEDPPSAKSVKELRRYIRATLKPAVREFDGLGRANLVGGTSKTFRSLARIAGAAPSAAGPYVKRELNATDLGVWAQRISAMKSEDRLHLPGVSEARANQLLAGALVAEAALELFKFKKVKICPWALREGLILRRLDQLVFSGPLHPAPHVIAPEGSLASPGPT0002595_4077DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
D1-29_03857453hypothetical proteinATGACTGAACAGCCTGGAATTGCCGATACCAACCCGCTGAACGACCTCGAAGAGAAGCTCGCCCAGGGTGGACAGCCCGACGCCAGCCCCGTGGACGTCATCCTGTCCTTCCTCAACAGCGAGGTCTACGTCATCAGCACCGAAGGCATCGAGGGTGAGGACTCACAGGTTGAGCCCCTCGTTTTGGCCAACGCCGACGGCGACCCCGTCCTGGCGGTCTTCTCCCACCCCACCCGCGTTGACCAGCAGTACCTTGAGGCAGCACCAAACATCCTGGGCACGCAGGGCGCCGCCATCATCGCCAACATCGGTGAGGAGCTGGGTATGGTGATCAACCCGGGAGCCGCTTTCGGTTTCGAGATCAACCCCGAGGGCGTGGCCAATATCAAGCGGGACTTCAAGCGCGCGGATGAGCTTCCCGACGGCGCTCCCACGGATCCTGACGCGAACTGAMTEQPGIADTNPLNDLEEKLAQGGQPDASPVDVILSFLNSEVYVISTEGIEGEDSQVEPLVLANADGDPVLAVFSHPTRVDQQYLEAAPNILGTQGAAIIANIGEELGMVINPGAAFGFEINPEGVANIKRDFKRADELPDGAPTDPDANNANANANANA
D1-29_038582730topACOG0550DNA topoisomerase 1GTGCCAAGCAAGGCCAAAACAGGCAAGAAACTCGTGATTGTGGAGTCTCCGGCCAAGAGCAAGACTATCGCCAAGTACCTCGGCGAGGGCTTCATCGTAGAGGCCTCCATCGGTCACATCCGCGACCTGCCGCAGCCGTCAGAGCTCCCCGCTGAACTGAAGAAGACATCGGTGGGCAAGTTCGCCGTCGACATCGAAAACGACTTCAAGCCGTACTACGTGGTGTCTCCGGACAAGAAGAAAAAGGTTGCCGAGCTCAAGGCCCAGCTCAAAGATGCCGACGCTCTCTACCTCGCAACCGATGGGGACCGCGAGGGCGAGGCCATCGCGTGGCACCTGCTGGAAGTGCTCAAGCCCAAGGTCCCGGTATACCGGATGACGTTCGGCGAAATCACCAAGGAAGCCATCCACCGCGCCATGGACAACCTGCGCGATGTTGATGCGGCGCTGGTGGATGCCCAGGAAACCCGCCGGGTACTGGACCGCCTCTACGGCTACGAGATTTCCCCCGTCCTGTGGCGCAAGGTGGCCCGCGGCCTGTCCGCCGGCCGCGTGCAGTCCGTGGTCACCCGCATGGTGGTGGACCGCGAACGCGAACGGATGGCTTTCAAGGCGGCGTCCTACTGGGACCTCACCGGGCAGTTTGGAGCCGATTCCGGTTCTTTCAAAGCCAAGCTGGCAGCCGTTGACGGCGCCAAGGTAGCCACCGGCCGTGACTTCAACGACGACGGCGTCCTCACCTCGCGCAACGTGGCGCACCTGAACGAGGAACTGGCCACCTCCCTGGCAGCCGGGCTGCAGGACGCGTCGTTCACTGTCCGCTCGGTAGACACCAAGCCGTACACCCGCCGGCCCGCGGCACCGTTCACCACCTCCACGCTCCAGCAGGAAGCCGGCCGCAAGCTGCGCTTCTCCTCCAAGAGCACCATGCAGGTTGCCCAGCGCCTGTATGAAAACGGCTACATCACCTATATGCGTACGGACTCCTCAGCGCTGAGCGACGAGGCAGTCACGGCCGCCCGCCGCCAGGCGTCCGAGCTCTACGGCCCGGAATACATCCCGGCGTCGCCGCGCGTCTACTCCAGCAAGGCTGCGAACGCGCAGGAAGCCCACGAGGCCATCCGCCCCGCCGGTGACTCCTTCCGCACGCCGGCGCAGGTGGCCAAACAGCTCTCCGGCGACGAGTTCCGCCTCTACGAACTGATTTGGAAGCGCACGGTCGCCTCCCAGATGGGTGACGCCAAGGGTTCGACGGCCACCATCCGCCTCGGCGCAGTGGCTGCTGACGGCAGGGACGCCGAATTCTCCGCCTCCGGCACCGTCATCACCTTCCCCGGCTTCCTCGCCGCCTACGAAGAAGGCAAGGACGAAACCCGTGGCGATGAGGACTCCGACGAAGCCCGTCGGCTTCCCAACGTTGCCAAGGGCGATGCCCTCAAGGCCTCGGACATCATCGCCGTCGGCCACGAAACCTCGCCGCCGCCGCGCTTCACGGAAGCATCCCTGACGGCTGAACTGGAAAAGAAGGGCATTGGCCGCCCGTCCACCTACGCCTCCACGATTTCCACCATCCAGGACCGCGGCTACGTCCGAAAACAGGGCTCCGCACTGGTGCCCAGCTGGATCGCGTTCTCCGTGATCCGCCTGCTGGAGCAGCACTTCACCGACTACGTGGATTACGAGTTCACGGCTGACATGGAAGGCGACCTGGACAAGATCGCCAACGGCCAGGCCGTAGGTTCAGCCTGGCTCAAGCACTTCTACTACGGTGAAGACGCTGATCCTGGCCTGCTGAGCATCGTGAACAACCTCGGCGAGATCGACGCACGCGAGATCAACTCCGTGCCCATCGCTGACGGCATCACCCTGCGAGTGGGGAAGTTCGGCCCGTATCTGGAAAGCTCCATCCCCACCGTGGATGCCAAGACGGGAGAGGTGGTTGAGTCCTCGCGTGCCAACGTCCCCGAGGACCTGGCGCCGGACGAGCTGACTGCTGCCAAGGCTGTGGAGCTGATGGAGACGGCCGCCCCGGAAGAACGCGTGTTGGGCACCGATCCGCACACGGGGCACACCGTCGTGGCAAAAAACGGCCGCTATGGTGCCTATGTCACGGAGGTCATCGCGGAGATGACCGACGAACAGCTGGCCAACCAGCCCGTGGAGTACTACAAGAACGGCAAGCCCAAGCCGCCGAAGAAGCCCGTCAAGGCTAAGCCGCGCACGGGATCGCTGTTTGCCTCGATGTCGGTTGATTCGGTCACCCTGGATGAGGCGCTGCAGCTGATGAGCCTGCCCCGGGTACTGGGCGAGGACGCCGAGGGCAACCTCATCACGGTGCAGAACGGCCGGTTCGGCCCGTACCTGAAGAAGGGCACGGACTCCCGTTCCATCGGTTCGGAAGAAGAAATCTTCACCATCACGCTGGAGCAGGCCCTGGAGATCTACTCCCAGCCCAAGCAGCGCGGTGCCCGCGCCGCGGTTCCGCCGCTGGCCGAGTTCGGTCCGGACCCCGTGTCGGAAAAGAACATCGTGGTGAAGGAGGGCCGCTTCGGCCCGTACATCACCGACGGCGTCACCAACATCACCGTCCCGCGCACCACGTCGCTGGAGGAACTGACCAGGGAACGCGCCGTCGAACTTCTCGCGGAAAAGCGGGCCAAGGGCCCCGTCAAGCGCACCACAACGGCCCGCAAGGCCCCGGCCAAGAAGAAGGCCGCGGCCAAAAAGTAAMPSKAKTGKKLVIVESPAKSKTIAKYLGEGFIVEASIGHIRDLPQPSELPAELKKTSVGKFAVDIENDFKPYYVVSPDKKKKVAELKAQLKDADALYLATDGDREGEAIAWHLLEVLKPKVPVYRMTFGEITKEAIHRAMDNLRDVDAALVDAQETRRVLDRLYGYEISPVLWRKVARGLSAGRVQSVVTRMVVDRERERMAFKAASYWDLTGQFGADSGSFKAKLAAVDGAKVATGRDFNDDGVLTSRNVAHLNEELATSLAAGLQDASFTVRSVDTKPYTRRPAAPFTTSTLQQEAGRKLRFSSKSTMQVAQRLYENGYITYMRTDSSALSDEAVTAARRQASELYGPEYIPASPRVYSSKAANAQEAHEAIRPAGDSFRTPAQVAKQLSGDEFRLYELIWKRTVASQMGDAKGSTATIRLGAVAADGRDAEFSASGTVITFPGFLAAYEEGKDETRGDEDSDEARRLPNVAKGDALKASDIIAVGHETSPPPRFTEASLTAELEKKGIGRPSTYASTISTIQDRGYVRKQGSALVPSWIAFSVIRLLEQHFTDYVDYEFTADMEGDLDKIANGQAVGSAWLKHFYYGEDADPGLLSIVNNLGEIDAREINSVPIADGITLRVGKFGPYLESSIPTVDAKTGEVVESSRANVPEDLAPDELTAAKAVELMETAAPEERVLGTDPHTGHTVVAKNGRYGAYVTEVIAEMTDEQLANQPVEYYKNGKPKPPKKPVKAKPRTGSLFASMSVDSVTLDEALQLMSLPRVLGEDAEGNLITVQNGRFGPYLKKGTDSRSIGSEEEIFTITLEQALEIYSQPKQRGARAAVPPLAEFGPDPVSEKNIVVKEGRFGPYITDGVTNITVPRTTSLEELTRERAVELLAEKRAKGPVKRTTTARKAPAKKKAAAKKNANANANANA
D1-29_03859672hypothetical proteinGTGGAAATCACCGATCCCAAAGCCATCCGCGCCCTGGCCCATGCTGCCCGGCTTGAGGTTATCTCGGAGCTGTATTCCACCCAGCTCAGCCGGACGGCCACGGAACTGGCTGTCCAGACCGGGCTGACGCCCAGCGCCATGAGCTACCACCTGCGCGCTCTGCAGAAGTGGGGCATCGTGGTGCCGGCTGCAGCCTCCGGTGACGCCCGGGAGCGCCGCTGGAAAGCCGCGGGAACCGACGTCACCATCAATTCGGGCGGAGGAGCAGCCAGCCCGGAATTCGCCGTCCTGGACCTGGAACTGGAAGCTTTCAGGCGCCGGGCCCGCGCCTACGGCCAAGCCCGGGAGGAAAGGCGGGGAAACGGGGGCCAGGCGCAGGACCCCACCGCCGTCGTCCTCGCGAGCAACCTGCTGCACCTGACCCGGGAGCAGCAGGCAGAACTGACCGAACGCCTGTTTGCGCTGCTCAAGGAGTACGAGCTGGAGGACCCGCAGCGGATTCCGCCTGGGTCCGAGCGGATGGCCGCGATGTGGTCACTGATTCCGGACGACCGTTCAGACCCTGTTTCCGGCCCTGTTTCAGACCCCGGTCTAAACCCAGGTTCAGGCACTGTTTCCGGCCCCGGCCCCGCCGGAGTCACCTCCACGGCAGACGCGCCGGGAGTTCTGTAAMEITDPKAIRALAHAARLEVISELYSTQLSRTATELAVQTGLTPSAMSYHLRALQKWGIVVPAAASGDARERRWKAAGTDVTINSGGGAASPEFAVLDLELEAFRRRARAYGQAREERRGNGGQAQDPTAVVLASNLLHLTREQQAELTERLFALLKEYELEDPQRIPPGSERMAAMWSLIPDDRSDPVSGPVSDPGLNPGSGTVSGPGPAGVTSTADAPGVLNANANANANA
D1-29_038601677prmC_4Release factor glutamine methyltransferaseGTGACTGACTCCTCGCTCTTTACCGCCGGCAACACCCCTGACGCTCCCCGCAGCGATCTTCCGGAACTGCTCACCGCGCTCGCCGCAGACCTGCGCAGGGTGGAGTACACGCTCGACGGCGTAGCGGAGCTCCTGGGTGACTCCGCTTACCGTGCGCTGCACCGGGACCAGCTCATTCCCGCCCTGCTGGCCACCGAAAGTGCAGCCCACGGCGAGGGTACGACGGCGGCGCTCGCCGCCGTTGTACGTCTCTGGCTGCTGGCCGAACCGCAAGAGCGTGACATGCTCGACGCCGCCCTGCCGGGAGTTGGGACGGACGGCTTGCTGACGCTGGACCTGGTGGAGCCCGTTCCCGGCACTGATCAGTCGGCGCAGGACCTGCTCCGCGCCAAGGCGGACCTGCGGCCGTACGGCTGGGCGGGGAGCCCGGCGACTGAGGCGGCAGGCGAAGCCGGCGGCGCTGAGCTCTGGGTTGCGAGCGACCTTGCCGCCCACCAGCTCGGCGGAGTGCTCCGGCATGACCATGTGCTGGGGATCGGGCAGGCTTCCACCACCCTGGTGCAGTCCACCATCCGGCGTCCGGCAGCGAGGGCACTTGACCTTGGCACGGGCTGCGGGATCCAGACGTTCCACCTCCTCCACCAGGCCGCGCATGTGACAGCCACGGACATCTCCGAGCGCGCGCTGGCCTTCACCCGCTTCAACCTGCTCCTCAACGCAGAGGTGCTCCAGGTGGACCCGGAACGCCTGGAGGAGAGGGTGAGCCTGCGCCTGGGGTCCCTCTTGGATCCGGTTAAGGGTGAAAAGTTCGATCAGGTGGTGTCCAATCCGCCGTTTGTCATCACGCCCCGGACCACTCACGAAGACACCTCGGAGCAGTTCACGTACCGGGACGGCGGCCTTCCGGGCGATGAGATCGTGGCGTCGCTGGTGGCCGCTTTGCCCGGCGTTCTTGTCCCGGGAGGCACCGCGCAATTGCTGGGCAACTGGGAGATTGCTGCCGGGACGGAGTGGCAGGAGCGGCCACGGGACTGGGTCAGTCCAGGCGTGGACGCCTGGTTCATCCAGCGTGAGCAGGTGGGTCCGGAGCAGTACGCCGAAACCTGGCTGCGGGATGCCTCCGAAGGCCGGGACAGGAAACATTACCTGGACGCGTATGCCGCGTATCTGGACGACTTTGAGTCGCGGAACGTGGAAGGCATCGGCTTCGGCATGATCTGGCTCCGGCGGCCCCTCGGTGACGGGCCCGGCGCAGCCATCATCAACCGCTTCGAGGAAATCACGTACCCCATTGAACAGCCAATCGGGCCCCACCTGGGCTCCGCCGTCGAGCGTTCCGACTGGCTGGCAGCCTGCAGCCTTGAGGATGCGCACCTGCTGGTGGCGGAGGACGTCACAGAGGAGCGCCACCAGCGTCCGGGGGCGGAACACCCCGGTGTCATCCTCCTCCGCCAGGGAGCGGGGCTCCGCCGTACCAACCTGCTCAGCACGGAACTGGCCGGATTCGTCTCCGCGTGTGACGGTGATCTGTCCGTCGGGCAGATTATCGGCGCCCTGGAAGCGCTCCTGGGCGGCAGTCTTGCGGGGGAGGACGGGTTCGACGCCGGTGCTTTCAGGAGCGGGCTGCGCACCGAGGTGGCGAACCTGGTGCGCGACGGCTTCCTGTTGCCTGCCTAGMTDSSLFTAGNTPDAPRSDLPELLTALAADLRRVEYTLDGVAELLGDSAYRALHRDQLIPALLATESAAHGEGTTAALAAVVRLWLLAEPQERDMLDAALPGVGTDGLLTLDLVEPVPGTDQSAQDLLRAKADLRPYGWAGSPATEAAGEAGGAELWVASDLAAHQLGGVLRHDHVLGIGQASTTLVQSTIRRPAARALDLGTGCGIQTFHLLHQAAHVTATDISERALAFTRFNLLLNAEVLQVDPERLEERVSLRLGSLLDPVKGEKFDQVVSNPPFVITPRTTHEDTSEQFTYRDGGLPGDEIVASLVAALPGVLVPGGTAQLLGNWEIAAGTEWQERPRDWVSPGVDAWFIQREQVGPEQYAETWLRDASEGRDRKHYLDAYAAYLDDFESRNVEGIGFGMIWLRRPLGDGPGAAIINRFEEITYPIEQPIGPHLGSAVERSDWLAACSLEDAHLLVAEDVTEERHQRPGAEHPGVILLRQGAGLRRTNLLSTELAGFVSACDGDLSVGQIIGALEALLGGSLAGEDGFDAGAFRSGLRTEVANLVRDGFLLPANANANANANA
D1-29_03861801tipAHTH-type transcriptional activator TipAATGGACTGGTCCATCCAGGACATAGCCCGGATTGCAGGCACCACCAGCCGGACGCTGCGCCACTACGACGACATCGGCCTCCTCAAACCAAGCCGCACCGGGCACAACGGCTACCGGTACTACAACCAGGCCGCCCTGGTGCAGCTCCAGCGGATCCTGCTCCTGCGTGGACTGGGGCTGGGCCTGCCGGTCATCAGCCAGGTGCTCGACGACCAGGCGGACGCCGCCACAGCGCTCGCAGGGCACCTCGAGTGGCTGAAGCAGGAACAGGACAGGCTGGCGCGGCAGATCGCGTCGGTCAGGCAAACCATCGAAGCAGTGAAAGGAGGCGGCGAAATCATGGCAGAAGACATGTTCAACGGTTTCGACCACACGCAGTACAAGGACGAGGTGGAGGAGCGCTGGGGCAAGGACGCCTACGCCCGCGGAGACGCGTGGTGGCGCGGCATGGGCGCCCAGGAGAAGGCCGAATGGAAGCAGCGCTCGCAGCAGCTGGGCGCCGACTGGATCGCAGCGGCGACCTCCGGGATTGCCCCGGAAAGCGCTGAGGCCCAGGACATCGCACGCCGGCACGTGCAGTGGCTGACAGATATCCCCGGAACGCCTGCTGATGTTCCAGGGGATGCAGGGGATGCAGGGGTCGCAGGGGCTGCAGGCAGCAAAGGTAACGTCAAGGCATACGTCATGGGTCTCGGCGAGATGTATGTGGCGGATCCCCGGTTCGGCGCCAATTACGGCGGCGCGGAGGGTGCCACCTTTGTCAGGGACGCGCTGGCGGTCTATGCGGAGCGGAACCTGTAGMDWSIQDIARIAGTTSRTLRHYDDIGLLKPSRTGHNGYRYYNQAALVQLQRILLLRGLGLGLPVISQVLDDQADAATALAGHLEWLKQEQDRLARQIASVRQTIEAVKGGGEIMAEDMFNGFDHTQYKDEVEERWGKDAYARGDAWWRGMGAQEKAEWKQRSQQLGADWIAAATSGIAPESAEAQDIARRHVQWLTDIPGTPADVPGDAGDAGVAGAAGSKGNVKAYVMGLGEMYVADPRFGANYGGAEGATFVRDALAVYAERNLPGPT0003175_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003175-mta|ywnD-K21743NANA
D1-29_038621158hypothetical proteinATGAAGAACTACCTTTCCCTCACCCAGCTCAACTCTGCCCTGTCCCTGCGCGACCTGTCCGATCCTGAAGCCGGTCCGCATGCCATGCAGCTGCTCCTGGCGGACGTGGTCGCAGCGCTTGAACGCCTGTGGTCGGTGCCGTCCCAGATCCACAGGATCAATCCGCTGGTGGCCACGTCTGACAACTACGACCGGCTGGGGTACTCGCCCGACGACGTCACTCGCGACTCACGCTATTCGCGCCATGTGAGCCCCACCGTGATGCTCCGCAGCCATACGTCCGCCGGAATTCCCGCACTCCTGGACTCGCTGCGCGGCGAACTGGGCCACTACGACGCCCTGCACGTGCTTCCGGGCCTGGTGTATCGCCGGGATGCCATCGACAGGACCCACGTTGGCGCCCCGCACCAGGTGGATCTGTGGCGGCTCAAGGCGCGCGGGCTGTTGGGGCCTACGGACCTGGAGGCGATGATGGCCACCGTGGTGGAAGCTGTGCTCCCTGCTGCTGAGCACCCCGGGATCGAGTGGCGGGCCACGCCGGCACAGCACAGCTATACCGCGGCGGGAAGGCAGCTGGACGTGCTGGTCACCCTGCCCGATGGACGGCGCGAATGGCTGGAACTGGCCGAGTGCGGCCTGGTGGCTGCGCCTGTCCTCCGTGGCTCAGGGTTGGACCCCCGCCGGTGGGCGGGCCTGGCACTGGGCATGGGCCTTGACCGTGCGCTGATGCTGCGGAAGGGCATCACGGACATCCGGCTCCTTCGTTCCGCGCATCCGGACGTCCAGCGCCAGCTGCTGGATCTTGCTCCGTACCGTCCCGTATCGGCCATGCCCGAGGTCCGCCGCGACCTCTCGCTGGTGCTGCCCTCCGCGGACGAGGCCGACGTCGAGCTTCTCGGCGATCTGGCCCGCACCGCGGTGGGGGCGGATGCGGACGTCCTGGCTGCCCTTGAGGTCAAGGCGGTGACGCCGACGGCGGAGCTGCCGCCCGCCGCCGTCGAACGCCTGGCGATGGCCGCCGGCCAGGTGAATGTGCTGGTGCGGCTGGTGTTTCAGCCGCTGGAGCGGACACTGACGGATGCGGAGGCCAACGCCTTGCGGGACCGGGTTTACCTGGCCCTGCACCGAGGCGGCGTGCAGGAGCTGATCGCCGGGTAAMKNYLSLTQLNSALSLRDLSDPEAGPHAMQLLLADVVAALERLWSVPSQIHRINPLVATSDNYDRLGYSPDDVTRDSRYSRHVSPTVMLRSHTSAGIPALLDSLRGELGHYDALHVLPGLVYRRDAIDRTHVGAPHQVDLWRLKARGLLGPTDLEAMMATVVEAVLPAAEHPGIEWRATPAQHSYTAAGRQLDVLVTLPDGRREWLELAECGLVAAPVLRGSGLDPRRWAGLALGMGLDRALMLRKGITDIRLLRSAHPDVQRQLLDLAPYRPVSAMPEVRRDLSLVLPSADEADVELLGDLARTAVGADADVLAALEVKAVTPTAELPPAAVERLAMAAGQVNVLVRLVFQPLERTLTDAEANALRDRVYLALHRGGVQELIAGNANANANANA
D1-29_03863450hypothetical proteinATGGCTGTCCGTCTTTGGTCGCTTCCGTGCGCCCTGTCCCGTTCCCTCTCCGCCGCAGCTGCAGTCGGTGTCCTGCTGGCGGTTGCCGGCTGCGCCCAGCAGCTTTCCGTGGAGAACGCGGATGTGCCCGGGTGGAAGGCCACTGCGCTGCCGTCCGCCCCCGGAAGTGTGGCAGAAGACGCGGGCAGGATCCTGAACTCGCAGCCGATGGAGCACACCGAGGATGTTGCCGCGGGCAGGTACACACTCACCCTGGTGTGCGAGGGCGGAGGCAAGGCCTTCCTGGCGGTCCGGTCAGGCGGCCGCGAGCTGGTGGATCTGGGGGCCGCCTGCTATGGCACCCGTGAGAGCACCAAGGTCACCGTGGCGGAAGCGGGCCCGCTGGAGATCAGCGCGTCCAGCGTGGATGCGCCGCTGCTCTACGCCTACCAGCTGGTGCCGGCAGGGTAGMAVRLWSLPCALSRSLSAAAAVGVLLAVAGCAQQLSVENADVPGWKATALPSAPGSVAEDAGRILNSQPMEHTEDVAAGRYTLTLVCEGGGKAFLAVRSGGRELVDLGAACYGTRESTKVTVAEAGPLEISASSVDAPLLYAYQLVPAGNANANANANA
D1-29_03864600hypothetical proteinATGCCCGCCGTTCAGGGGGCGCCATCGCGCCGCAACGCGGTTTCCTTTCCGGGCTGGTGCCCGTCCCGGAACGCGCGGCTGCGCACCCGCTCCAGTGCCGGCGTCGTGCTGTGGGCCGTCGGCGCCATGATCGCTGGAGCGTCGCTGGCAGGGTGTGAATACACGTACGAGGACGGGCGGAACCTTCCTGATCCTGCGGCGTCGGCGGCTCCGGCTGCCACCGCCCCCGTGTTCACCCGGGATCCGCGGCGGGACGATCCCGTCAGCGAGGCCGAGGTGGGGCCATGGCTGGAAGAAGCGCTGCCGGAGACCAAACAGCAGGTCATCCACATGGACCATGGCCTGCTGGCCGGGAACCAGGCCCAGACGGAGGAGGCAGCGGGCCTGCCGGCAGGAACTTATGCGCTGTCCTTGGCCTGCAAGGGCCAGCGGCGCGTGACGTTTACCGTTCGCAGCGACAACGTGACGTTGGTGGACGTGGGCCTGCGGTGCGGATCAACCAGGCAGTACGTCGTCTACATTTCCGGGGAGTCCATGCTGACCTTCCGCATGGAGTCCCGGTCCGCGGCCAACTACGCCTACCGGCTGGCACTGCTCTGAMPAVQGAPSRRNAVSFPGWCPSRNARLRTRSSAGVVLWAVGAMIAGASLAGCEYTYEDGRNLPDPAASAAPAATAPVFTRDPRRDDPVSEAEVGPWLEEALPETKQQVIHMDHGLLAGNQAQTEEAAGLPAGTYALSLACKGQRRVTFTVRSDNVTLVDVGLRCGSTRQYVVYISGESMLTFRMESRSAANYAYRLALLNANANANANA
D1-29_03865894hypothetical proteinGTGGCTTTGAACAGAATTGTGCTTTTTTACGGCTTTACTCCGATCGCTGACCCGGACGCGGTCCGGCTCTGGCAGCGCGCCTTGTGCGAGAAGCTCGGACTCACGGGACGCATCCTGATCTCCAAGGACGGCATTAACGCCACGGTCGGAGGGGAGATCGGCGCGGTGAAGCAGTACGTGAAAACCACCCGCGAATACAAGGGCTTTCATGGCATCGACGTGAAATGGTCTGACGGCGGCGCCGGGGACTTTCCACGGCTCAGCGTCAAGGTCAGGGACGAGATTGTCTCCTTCGGCGCCCCCGGCGAACTCAAGGTTGATGCCAACGGTGTGGTGGGCGGCGGCACTCATCTCCAGCCCGAAGAGCTCCATCAACTCGTGGACACCAGGAAACAGGCTGGCGAGGAGGTGGTGTTTTTCGATGGCCGCAACGCGTTTGAAGCGCAGATTGGCCGGTTCAAGGACGCAGTCGTTCCCGATGTTGCCACCACCCACGATTTCATCAAGGAGCTCGACTCCGGCAAATATGATTCCCTCAAGGACAAGCCGGTTGTCACGTATTGCACTGGCGGCATCCGCTGCGAGGTGCTCTCCAGCCTCATGGTGAACCGGGGGTTCAAAGAGGTCTACCAGCTGGATGGCGGCATCGTCCGGTATGGCGAAACATTCAAGGACCAGGGCCTCTGGGAGGGCTCGCTGTACGTCTTCGACAAGCGCATGCACGTGGAGTTCAGTGAGGACGCCAAGACCATCGGCGAATGTACCCGCTGCGACGCTCCCACCAGCAAATTCGAGAACTGCTCCAACCCCAGCTGCCGCACCCTTACGTTGTACTGCAGTGAATGCGCCTCGAGTCCGGAGACCTTGCGCTGCCCGGACGGCTGTGCGGCCTGAMALNRIVLFYGFTPIADPDAVRLWQRALCEKLGLTGRILISKDGINATVGGEIGAVKQYVKTTREYKGFHGIDVKWSDGGAGDFPRLSVKVRDEIVSFGAPGELKVDANGVVGGGTHLQPEELHQLVDTRKQAGEEVVFFDGRNAFEAQIGRFKDAVVPDVATTHDFIKELDSGKYDSLKDKPVVTYCTGGIRCEVLSSLMVNRGFKEVYQLDGGIVRYGETFKDQGLWEGSLYVFDKRMHVEFSEDAKTIGECTRCDAPTSKFENCSNPSCRTLTLYCSECASSPETLRCPDGCAAPGPT0013330_2087DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013330-UPF0176_protein-K07146NANA
D1-29_03866675hypothetical proteinATGGTTGGAGACATCACACGCCTTCTTGAAGTCTGGGTAGCCGGTTGGGCCGGCTGCCGCGGATACCCGACGGCCACCGAGGGCCGCTTTCCCGCTGTGCTGCGGGCCGACACCACCGGGGAATGGGAGTATTTCGCGCATGACCCCTCAGATGAGGAATTTGCTTCCCTTGCTGCGAAGGCAGCCGAAGCTCCTTCAAGGGTGCTCAGCATTTTGACCAACGACCTTGCCCGCTACACCTACCTGGCCGAAAAACACCGGCTCAACGTCACTTCCGCCTCCCAGGCAATGATGATCGTGGACATGGAAACACAGGACTCGGAAGATCCCTGGCTCTCCGATGACGACCTCGCGCTTGAAACGAGCGAGCTCGACGGCGTGCACCACGCAGTGGTCCGGTCCGGTGACGCCCTGGCGGCCAGCGGGCGTGTCTTTGTGATTGACGGGACGGCAGTTTTCGACAAAATCGTCACGGAACCGGACTTCCAGCGGCGAGGGCTGGGCAGCTTTATCATGAAGGCGCTGGCGGCGCAGGCTTTTGAGCACGATGTGGAAAACGGCCTGCTGCTGGCGTCCCTGGATGGTCAGAAGCTGTATTCGCACCTCGGGTGGTCCACCGTCTGCCGGGTTCTGATGCTGTCCGCCTCCACCGAGGGCTCCGATCTTTCCGTCTGAMVGDITRLLEVWVAGWAGCRGYPTATEGRFPAVLRADTTGEWEYFAHDPSDEEFASLAAKAAEAPSRVLSILTNDLARYTYLAEKHRLNVTSASQAMMIVDMETQDSEDPWLSDDDLALETSELDGVHHAVVRSGDALAASGRVFVIDGTAVFDKIVTEPDFQRRGLGSFIMKALAAQAFEHDVENGLLLASLDGQKLYSHLGWSTVCRVLMLSASTEGSDLSVNANANANANA
D1-29_038672391hypothetical proteinGTGAACCCCCATGACTCCCTGATTCCCTTGCTGGGCCGCGGCCCGGATCCGGAACAGCTGCGTCATGTCCGCACGATTCCGGCCCGCCGCGCCGTCCACGAGGAATGGCCCGAGTGGGCGCACCCTGATCTCGTGGCTGCCTATGGTTCCCTTGGCATCCACAAGCCCTACCGCCACCAGATCCAGGCCGCCAACCTTGCCAACGGTGGCGAGCACGTGGTGATCGCCACCGGCACGGCCTCCGGTAAGTCGCTGGCATACCAGCTTCCGGCACTGGACGCTATCCACCGCTCGGAGCTTCGGGTCCTGTCCCAGCCAGGAAAAATTCACGACGACGGCGCCGTGACCCTTTATCTCTCTCCCACCAAGGCCCTCGCCGCGGACCAGCTGGCAGCCATCCGCTCGCTGAAGCTGCCCACGGTCCGGGCCGAGACCTACGACGGCGACACTGATCCTTCATCCCGCCGGTGGATCCGGGACCATGCCAACTTCGTCCTGGCCAACCCGGATATGCTCCACTTCGGCATCCTTCCCAACCACGCCTGGTGGGCAAGCTTCTTCCGCCGCCTGCAGTACGTGATCGTTGATGAGGCCCACAGCTACCGTGGAGTATTCGGCTCGCACGTCGCCAACCTGATGCGACGCCTGCGGCGCATCTGCGCTTACTACAATTCCGGAACCTCCAACCCGGGGCCGGTTTTCATCGCTGCGTCAGCCACCGCATCGGAGCCTGGCACATCCTTCGGGCGGCTGATTGGGGCACCTGTCCGGGCTGTTGCCGAGGACTGTTCACCGCACGGCTCAACGACCGTGGCCTTTTGGGAGCCTGCTCTGATGGAGCTCAGGGGTGAAAACGGTGCCCGGGAACGGCGCACAGCCGTCGCGGAAACTGCTGACCTCCTGGCCAACCTGGTCTCCTCCCGCATCCGGACCATTGCCTTCATCAAGTCGCGGCGGGGGGCGGAAACCATCTCCTCCATTACCAAGCGCCTCCTGGACGAAGTGGATCCCAGCCTGCCCCAACGGGTTGCGGCCTACCGGTCCGGTTACCTGCCGGAAGAGCGGCGCGCCCTGGAACGGTCCCTGCGTTCCGGGGAGCTCCTTGGCGTCTCCAGCACTTCGGCCCTGGAACTGGGAATCGATATCTCCGGCCTGGATGCCGTGCTGGTGGCCGGCTGGCCCGGGACCAGGGCGTCCTTGTTTCAGCAGATAGGCCGTGCCGGACGGGCGGGCCAGGACGCCATCGCAGCATTTGTAGCCAGCGATGACCCCCTGGACACCTACCTGGTCAATCATCCCGAGGCGATCTTCGACGTATCCGTTGAGGCGACCGTCTTCGATCCCTCCAACCCGTATGTGCTGGGGCCGCACCTGTGCGCCGCGGCCGCGGAGCTGCCCCTTGGCGTGGCCGAACTGGGCCTGTTCGGCAGTTCATCTGAAAAACTGCTCGGACAGCTCGTGGCGCAGGGATATCTTCGGCGCCGGCCTGCCGGGTGGTTCTGGACGCACTCACAAAGTGCTGCGGCCATGGTCAATCTGCGGGCCGACGGCGGCGGACCGGTGAGTATTGTGGACGCCGATACGGGTTCCCTGCTGGGCACCATGGACTCTCCCCAAACGCACTATCAGGCGCACACAGGTGCCGTCTATGTCCATCAGGGCGAGAGCTACGTGGTGGAAGACCTGAATGAGGACGACCACTGCGTGGTGGTGCGGCGTGCCAACCCGGACTACTACACCACGGCCCGGGACGTCACCCAGATCGAGGTACTGGGGACGCAGCGGACTGCCCAATGGGGCGATGTTTCCGTGCATTTTGGCGACGTGAAAGTCACAACACAGGTGGTCTCCTTTCAGCGCAAGGCGTTGATCTCGAACGAGATCCTGGGCGAGGAGCCCTTGGAGCTGGGGGCCAGGGATCTCTTCACCAAAGCGGTCTGGTTTGTGGTGGAAAACCGATCGCTGGCAGGAGCAGGGCTCATCGAAGCCCAGTTCCCCGGCGCCCTTCACGCCGCCGAGCACGCTGCCATCGGACTGTTGCCGCTGGTGGCCTCCAGTGACCGCTGGGATATTGGCGGTGTGTCCACAGCCATCCATGCCGACACCGGGATGCCCACCATTTTTGTCTACGACGGGCACGCCGGCGGTGCCGGTTTTGCCGAGCGCGGTTTCGAGAAGGCCAAGGTATGGCTCTCCGCCACCCGGGATGCCATCGAGGCCTGCGAATGTGAATCAGGCTGCCCGTCCTGTGTGCAGTCCCCCAAGTGCGGCAATAAGAACAACCCTTTGGACAAGGCAGCGGCCATCACCCTGATCGATGTGCTGCTCAGGGATGCGAGCGAGGCCGCAACAGGCAGCGACTTGTTCGAGGCACCCAGCTTCCAGAGCTAGMNPHDSLIPLLGRGPDPEQLRHVRTIPARRAVHEEWPEWAHPDLVAAYGSLGIHKPYRHQIQAANLANGGEHVVIATGTASGKSLAYQLPALDAIHRSELRVLSQPGKIHDDGAVTLYLSPTKALAADQLAAIRSLKLPTVRAETYDGDTDPSSRRWIRDHANFVLANPDMLHFGILPNHAWWASFFRRLQYVIVDEAHSYRGVFGSHVANLMRRLRRICAYYNSGTSNPGPVFIAASATASEPGTSFGRLIGAPVRAVAEDCSPHGSTTVAFWEPALMELRGENGARERRTAVAETADLLANLVSSRIRTIAFIKSRRGAETISSITKRLLDEVDPSLPQRVAAYRSGYLPEERRALERSLRSGELLGVSSTSALELGIDISGLDAVLVAGWPGTRASLFQQIGRAGRAGQDAIAAFVASDDPLDTYLVNHPEAIFDVSVEATVFDPSNPYVLGPHLCAAAAELPLGVAELGLFGSSSEKLLGQLVAQGYLRRRPAGWFWTHSQSAAAMVNLRADGGGPVSIVDADTGSLLGTMDSPQTHYQAHTGAVYVHQGESYVVEDLNEDDHCVVVRRANPDYYTTARDVTQIEVLGTQRTAQWGDVSVHFGDVKVTTQVVSFQRKALISNEILGEEPLELGARDLFTKAVWFVVENRSLAGAGLIEAQFPGALHAAEHAAIGLLPLVASSDRWDIGGVSTAIHADTGMPTIFVYDGHAGGAGFAERGFEKAKVWLSATRDAIEACECESGCPSCVQSPKCGNKNNPLDKAAAITLIDVLLRDASEAATGSDLFEAPSFQSNANANANANA
D1-29_03868360hypothetical proteinATGAGCGGCAGGATCCGGGACCACCCGGAGCGCGGCTCGGGCACTGTCCTGGCAGCGGGACTCGCGCTAGTGGTGATGATGGCCATGGCTCTGATGCTGTTGTTGGCGCAGTCAGCGGTGATGGCCAGCAGGGCGGCAGCCGCCGCGGATCTGGCGGCCCTCGCCGCGGCCGATGCCCTGCGCGGCCTCACGCCCGGCGAGCCGTGTGCGGTGGCAGCTGACCTGGCAGGAATACGTTCCGCCAGGCTCGTGAGCTGCACAGAAGGTGCCGGCCAGACAGTTGAGGTCCGGACAGAACTGCTCGCCAGGACAGTCCTGGGGACCGCAACCGGCCAAGCGCGTGCAGGACCTCCGCCCTAGMSGRIRDHPERGSGTVLAAGLALVVMMAMALMLLLAQSAVMASRAAAAADLAALAAADALRGLTPGEPCAVAADLAGIRSARLVSCTEGAGQTVEVRTELLARTVLGTATGQARAGPPPNANANANANA
D1-29_03869405hypothetical proteinGTGGCATTGCCGGCAGTCCTGCTGCTGCTGGCGTTGCTCCTGGCGGGAGCCGCGGCAGGGGTTACCCAGCTTCGTTTGGAGGAGGCGGCGCGGGCCGGTGCCAGGGCATTGGCGCGGGGCGAGAGCGTCGCAGCTGTCGAGGGGATCGTCAGGACGTTGGCCGGAGCCACCGCAACAGCTGCGGTGGCCGCTGATGGCGAATGGGTGAGTATCACGGTGGCTGATCGGGTTGGTGGCCCGTTGGGAACGACGGTGCCCTGGACGTTGACTGCTGTGGCGTCTACGCGTAGTGAAACTTCGGTTGCCCTGCAGATGCCGGCCGCGGAACTGGCAACAACGCTGGGGTCGGTGGCCCTCGGCGAGCTCCTGATGATGCACCAATTGCGGGGGCGGGCGGCCGCATGAMALPAVLLLLALLLAGAAAGVTQLRLEEAARAGARALARGESVAAVEGIVRTLAGATATAAVAADGEWVSITVADRVGGPLGTTVPWTLTAVASTRSETSVALQMPAAELATTLGSVALGELLMMHQLRGRAAANANANANANA
D1-29_03870357hypothetical proteinATGTCACTTAGCCAAAGCAGCCCTGAAGCGCCCACGCCAGGCGCTCCCACTCCCACACTCCCGCTCGGCCGCAGTGCCAACGAGTCGAAGGCTGTAGCGCGTCCGGGCGTCGGGCAGGCGCCGGCGGCGCAGGGCAATGACAACGTAATCGAGCTGTACCCAGGTGTCAGCCGCCTGCAGCGGCGTCGGCGCGGTATCCGGCTTATGGGTTCGGAGGCAGGAATGGCCACCGCTGAATATGCCATCACCACGTTGGCGGCGGTGGGATTCGCCGGCCTGCTGGTCTTCATTCTCCGCAGTGACGAAGTACGTGGCTTCCTGCTGAACCTCATCCGTACGGCGCTGGCCTTGCCATGAMSLSQSSPEAPTPGAPTPTLPLGRSANESKAVARPGVGQAPAAQGNDNVIELYPGVSRLQRRRRGIRLMGSEAGMATAEYAITTLAAVGFAGLLVFILRSDEVRGFLLNLIRTALALPNANANANANA
D1-29_03871345hypothetical proteinATGCTGTTCCCCGCTCTTACCTTGTCCCATCTCATAATTGAGGGCATGGACGACAAAGAGCTGAACAGAGCGCTGAGAGCCTACAGTGAAGCTTGGCGTCGGTACGTCGCTACGCTTGCCGACCCGGCAAGCCCCCGCGTGGAACCGAAACTCCACTCGGCAGTGCAAGCCGCCATCAATAAACTGCGCACTGAAGCGGAGCGCGTCGTGCGTGACCCGGGCGGACCGCTCAGCAACTACAGCGACGCGCTGGCCACCTGGGCTGAGGCCAACCATCCCGAAATCGATTCGTCCGAAATGTCTAGGCATATCACTGAAAAACTAGTCCTGGATCACTTCTGGTAGMLFPALTLSHLIIEGMDDKELNRALRAYSEAWRRYVATLADPASPRVEPKLHSAVQAAINKLRTEAERVVRDPGGPLSNYSDALATWAEANHPEIDSSEMSRHITEKLVLDHFWNANANANANA
D1-29_03872639hypothetical proteinATGACAGAGAGCTTTTTCCCGGTACTTCCCCTGGTATTCGTCCTGGCCGCCGCCGCGACCCTGGCTTTCGCGGACCACGGCCGGGCCAGGAGGCGGCTGCTCGGCCTTTGCGCTGCACCTGCATCGTCCGCACGCGGGAAGTCGGGGGACCGGTTCCGAAGCCCGGACATGTCTGCGGACCTGGGCCGGGGTGGCGACCTGGAGGGACTGCGTGACACTCCGATGATCCTGGAGCTCGTGGCCGCGATGCTGGACTCGGGGTCAGGAATAGGACGTTCACTGGACCTTGTGGCGTCTGTTGCCTCCAGTGACTACTGCAGATCGCTGCGTCCGGTCGTTTCGGCCCTAGCCATCGGGGCGGACTGGGAGACGGCGTGGCGGAGCTCGGAGGTGCGCCTGCCCGAGATTCTCGAGCTGCGTGACGCGTTGGGTTTCGCAGCACTGACCGGCGCCCCATCCTCGGCCATTCTTTATGCCCAGGCTGCCAGGCTGCGCCGCGAGCGGTACCGGGCCGCGGAGAAACGTGCGGCATCCCTCGGCGTGAAGCTGGTCATTCCCCTCGGACTGTGTTCGCTGCCGGCCTTCATTTGCCTGGGCGTCATTCCGGTGCTGCTGGCACTGGTTCCCTCGGGATCCTGAMTESFFPVLPLVFVLAAAATLAFADHGRARRRLLGLCAAPASSARGKSGDRFRSPDMSADLGRGGDLEGLRDTPMILELVAAMLDSGSGIGRSLDLVASVASSDYCRSLRPVVSALAIGADWETAWRSSEVRLPEILELRDALGFAALTGAPSSAILYAQAARLRRERYRAAEKRAASLGVKLVIPLGLCSLPAFICLGVIPVLLALVPSGSNANANANANA
D1-29_038731014hypothetical proteinATGACCGTGCTGCTGGCCATCGTCCTGGTGGTGGCCGTGTTGCTCCTCCATCGGCCCGGGGTCGTTGTGCGACGGTTCCGGCGCGCTGCGGGCACTGGCAAAGTGGGCAGCTTTGGCTCGGCGGGCTCCAAGTGGGGCGGCCGGGGTGCCCCATCCAGTGACGGATCCCTCCGTGGTCCTTCTGTGGATACTGCCTTCGCCGGTTCCTGGTTCAGCGGTGGTTGGTTCAGTGGTTCTTGGTTCCCCGGCGGTTGGTTCCCGAGTCCCGGGCGTCATGCCGGCAGGGCCGGCGCGGGTGCCGCCGGTGTCTCCATGACCCTGGTAGTGCAGCAGCTCGCCGCGTTACTGAAGGGCGGCCGGACTCCCGCGAGGCTGTGGGAGGAGCTATGGCTGGTCCATGCCGGCGTGCCGGAAGGATCTGCCCGGAGGCCTGAAGGACCTGCATCGACGGAAGCGCCTGGACGGACCGGACAACGGGAGAGGAGCGAACAGTCATGGCGGACAATGAGGCAGGAAGTCGCCATGACTGGGCGGGCCGGCTCTGGCCTGAGCTCGGCTTCAATGGCTATGCTCGGAGCCGCCAGGGCCGCAGCCTTCCGTGGCGCACCGGTGTCCGACGCCCTCAGAATGTCGGCCAGGAACGCCTTCCCGCGTGGAGGCAAAGAGAACCGAACCTGGATCGACCTCGCTGCCTGCCTCGATATTGCCGAGGCGAGCGGGTGTCCCCTGGCTGACGTCCTCTCCCGCTTTGCCAGCCAGCTCGAGGTGGAGGATGACGCCGAGGCCGCCCGGCAGACTGCGCTCGCGGGGCCCAAAGCCACGGTCAGCCTCCTGACGTGGCTCCCGCTGATGGGCCTTGGCCTGGGTATTGCCTTGGGCGTAGATCCTCTTGCCGTCCTGTTAGGCACGCCTCTTGGCCTGGCGGCGCTGGCTGCTGGAGTGGTCCTCACCGTTGCCGGGCGGATCTGGTCTTCGCGGTTGGTCCATGCCGCGGCAGGGGCGGCCGTCCCATGAMTVLLAIVLVVAVLLLHRPGVVVRRFRRAAGTGKVGSFGSAGSKWGGRGAPSSDGSLRGPSVDTAFAGSWFSGGWFSGSWFPGGWFPSPGRHAGRAGAGAAGVSMTLVVQQLAALLKGGRTPARLWEELWLVHAGVPEGSARRPEGPASTEAPGRTGQRERSEQSWRTMRQEVAMTGRAGSGLSSASMAMLGAARAAAFRGAPVSDALRMSARNAFPRGGKENRTWIDLAACLDIAEASGCPLADVLSRFASQLEVEDDAEAARQTALAGPKATVSLLTWLPLMGLGLGIALGVDPLAVLLGTPLGLAALAAGVVLTVAGRIWSSRLVHAAAGAAVPPGPT0022290_1819DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
D1-29_038741335hypothetical proteinATGGCCGACGCCGGACCGGTCACCCCTTCCCGGGTGGCCGCGGCGGTCCAGGCCACCGGCAAGCTGTTGGGGACTGCCGGTTCCCTTGCCGCGATGGAACGCATCAGTGCTGAACTCAACGGGCTGGGCCCCCTTCAGGAGCTGACCAGGGACGTGGCGGTGACAGATATCTTCGTTAACGCCCCGGACTCCGTGTGGGTCGACAGGGGAAAGGGGATTGAGCGGGCCAACGTCTTCTTTGCAGGTGAAAGCCAGTTGCGGGCCCTGGCCTCACGGCTGGTCGCTGCCGGCGGCAGACGGCTTGATGACGGGTCGCCGTGCGTGGATGTCAGGTTGGATGGCGGCTACCGTGTCCACGCTGTGCTGCCGCCCATTTCCACCGCAGGCACCCTGCTCAGTATCCGGATCCGGCGCGAGCAGGTATTCAGCCTTGACGAACTCCGGTCCGGAGGCATGTTCGGCCCTCTTGTCCAGGATGTCCTCGAACGTATTGTGGAGCGCCGGCTGAGCTTCCTCATCAGCGGAGCCACCGGCTCAGGCAAAACAACCCTGCTGTCCACCCTGCTGGGCCTCTGCTCTCCGGGCGAACGGCTGGTGCTGATCGAGGATGCCGCGGAACTGAACCCCGTTCACCCGCATATTGTGTCGCTGGAATCCCGCCACGGGAACCTGGAAGGCGGCGGTGAGGTGGATCTCGGCGAGTTGGTCCGGCAGGCGTTGCGGATGCGGCCGGACAGGCTGGTTGTGGGGGAATGCCGTGGGGCTGAAGTCCGGGAGCTCCTTACCGCCATGAATACCGGCCACACCGGAGGGGGCGGAACCATCCACGCCAACACTGCCACCGCAGTCCCGGCCCGGCTTGTAGCCCTGGGGGCATTGGCCGGGCTGGGGGAGGACGCCGTCAGGCTTCAGGCTGCCAGCGCCCTTGATGTGGTTATCCACGTGAACAGGTCTGCGTCTGGGCGCCGCGTGGCCTGCATCGGGGTGGTGGACAACGGTCCCGACGGCCTGACGGTAGTTCCTGCTTTGGAGGCTGACGTTTTTGAAACTGGAGTGCTGGAGGCTGGTGCAATGGCGAGTGGCACGCTTAAGAGAGGCGCTTGGGGGACTGACCCGCTGGAGACTGGCGTTTGGGAGCCTAGCCCGTCAGAGACCGGTGCGGTGGAGACGGGCGCCAGGGCAACAGACGCTGCGGAAACTGACAGCGGCCAAACCCGTCCCGGTCCGGCGTGGGCGCCGCTCGCCGCACGTCTTGGGCTGCGGCTGGGCCAGGCATCAGGCGGCGGTTTTGTATCCGCCGGCACTTTTCGAACAGTTTCCGGAACGGCAGCATGAMADAGPVTPSRVAAAVQATGKLLGTAGSLAAMERISAELNGLGPLQELTRDVAVTDIFVNAPDSVWVDRGKGIERANVFFAGESQLRALASRLVAAGGRRLDDGSPCVDVRLDGGYRVHAVLPPISTAGTLLSIRIRREQVFSLDELRSGGMFGPLVQDVLERIVERRLSFLISGATGSGKTTLLSTLLGLCSPGERLVLIEDAAELNPVHPHIVSLESRHGNLEGGGEVDLGELVRQALRMRPDRLVVGECRGAEVRELLTAMNTGHTGGGGTIHANTATAVPARLVALGALAGLGEDAVRLQAASALDVVIHVNRSASGRRVACIGVVDNGPDGLTVVPALEADVFETGVLEAGAMASGTLKRGAWGTDPLETGVWEPSPSETGAVETGARATDAAETDSGQTRPGPAWAPLAARLGLRLGQASGGGFVSAGTFRTVSGTAAPGPT0016025_2831DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
D1-29_038751209hypothetical proteinATGAGCAGGCATCAGCTACCGTCGTCCACCTTTGAACAGGGCGCCCCATCAGGTCCGGCACGCCGCAGCTCCCCTGCGGGCAACCGCTCACAGGCCACCGGAATGACCCTGGCGCGGGGGCCGGATCCTGCCGGGGCAGCATGGCTGCCGGATGACTCTGCAGAGGTTCTGCTGGTCACAGGCTTCAACGTTCTCCGGGGTGAGGTGGAACGGATTGTTGCCGCCGCCGGAGGACAGCTTCGTGTGGTGCCTGACGTGGCCGATGCCGCCAAATACTGGGATTCAGCAGCAGCGGTGCTGGTGGGAAGTGACGTCCGTGAGTTGCCACCCCGGCGGCGGGCGCCGGCGGTCCTGGTGGGACTCAACGGAGAAGGTGACAGCCTCTGGCATCTGGCCGCTGCCCTCGGGGCTGAAAGGGTAGCGGTGCTGCCGGACGCCGCAGCCTGGCTGGCGGAATATCTGAGCAGGTCGCGCTCACCCGAGCCCGGCGGCCTGGTGCTCGGCGTTACGGGCGGTTGCGGTGGGGCAGGTGCCACTACGTCTGCCATCTGGATCGCGCAGGCGGCGGCGGGGCTGGGTGCGCGCGTACTGCTGGTGGACGGCGATCCCTGGGGCGGCGGGCTGGAACTTGCCCTCGCTGCCGAAGAGACGCCGGGCCTGCGCTGGCCGGATCTCTCCGAGGCCAGCGGCAGCATCGATCCTGAACAGCTTTCTGATTCCCTTCCCGTCGCCGGAGGTTTTTCCTTCCTGTCCTGGCCGGGCAGCCGGGACCGGCCCACTCCAGTGGACGGTCCCACCACGGCAGGTGTCATGGATGCGGCACGGCGTGGGTACGAGCTGGTGGTCGTGGACATAGGGCGCGGCTCCGAACAGCTGCAGACCTTCGCCTGGGACTGCGACCGCATCCTGGTGGTGGTTCCTGCACTGCTGAAAGCTGCGGTCGCTTCAGCCCGGCTGTTGCAGGAGCTTCCGCCCGTTGAAACTGCACTCCTCATCAGGGGCAAAACAGGAGCGGCCCTGGACGGTGCCATGATTGCGGACGCCGTGGGGCTGCCGGTGCACGGAAGAGTCCCGGAGATCCGTGGCGTGGGTGCCGCGTCAGAGAACGGACGGCTCCTCGAGTTGGGCAAACGGCGCGGCGTCAGGCACTTTGCCGCTTCGGTTCTGGACCTGCTTGAGGGCGAGCTCCCGATGGGTGAACTCCTGTGAMSRHQLPSSTFEQGAPSGPARRSSPAGNRSQATGMTLARGPDPAGAAWLPDDSAEVLLVTGFNVLRGEVERIVAAAGGQLRVVPDVADAAKYWDSAAAVLVGSDVRELPPRRRAPAVLVGLNGEGDSLWHLAAALGAERVAVLPDAAAWLAEYLSRSRSPEPGGLVLGVTGGCGGAGATTSAIWIAQAAAGLGARVLLVDGDPWGGGLELALAAEETPGLRWPDLSEASGSIDPEQLSDSLPVAGGFSFLSWPGSRDRPTPVDGPTTAGVMDAARRGYELVVVDIGRGSEQLQTFAWDCDRILVVVPALLKAAVASARLLQELPPVETALLIRGKTGAALDGAMIADAVGLPVHGRVPEIRGVGAASENGRLLELGKRRGVRHFAASVLDLLEGELPMGELLNANANANANA
D1-29_038761800hypothetical proteinGTGATCTATGTGGACAACACTCCGGAATGGCCGGCTGTGGAGGGGCGGTCAATCAGGCCTTTCCCACAGGGCAGAATGAGAACCATGTACTTGCTGCTCGCCGCCCACGCCGATGGCGCAGTGCTGCAGGAAGTCACCCAGGCGGGCGATCCCCACCCGGACAACCCGGAACCGTGCGTGGTCAGCGCGGCCGGTCTCCCCGCCGTCGTACGCCAGCGGGAACAGGCGCACGGAGCGCCTCCACCCCGCTGGATCTGGCACCGGACACAGGACTGGTATCCGGCTCTCCTGGCGTCCGGGGTGGAAGTTGACCGGTGCTATGACCTGACGCTGTGCGGCAACATCCTGGCCTACTCCCAGTTCACGGCGCACACCGAATACGCCCGGAAGGCCGAAATGATCACGCTTGACGATCCGCAGCAGCCGCCGCGTGCCCTCCAGCCGCCGCCACCGCCCGCCGAGCAGGGTGCGCTCTTTGAGGATCTGGCCCGGGGTGCACTATCGCAGCCTACGCTGAACGAACTGCGCGCCGAATACGCTGCCCAGCAGTCAGCCCTGGCCTCGGCCAGCGGCGCCGACAATCAGCAGAAGCGCCTTCAGCTGCTCCTCGCGGCTGAATCTGCCGGGGCGATGATCGCAGCGGAAATGCAGCATACAGGAGTTCCGTGGCGGGAGGACCTGCACGGGCAAATCCTGGCGGACCACCTCGGGCCCCGCCCGCCGCTGGGCCACCGGCCGGCGAAGCTTGAGGCGCTTAATACTGAGTTGCGCGGCCTGCTCAGTTCGCCCGGGCTGAATCCTGACTCCCCGCAGGAGCTGATGCGCGCCCTGCACCGCAACGGCATTGAGGTAAAGAGCACCCGAAAGTGGGAGCTCCAGGAATCCAGCCACCCTGCCATCGAACCGCTGCTGGCCTACAAGAAACTCTCCCGCCTGCACACCGCCAACGGCTGGGCGTGGCTGGACGCGTGGGTTAAGAACGGCCGGTTCCAGCCCGAATACGTGGTGGGCGGAGTAGTGTCCGGCCGGTGGGCCTCCCGCGGCGGCGGTGCCCTGCAGATTCCGCGCCAGATCCGCGGCGCCGTGCATGCGGATCCCGGCTACAAACTTATTGTCGCGGATGCTTCGCAGCTGGAACCCCGGGTCCTGGTGGCCCTCGCGCAGGACTCCAAAATGGCGGAGGCCGCAAGGGACAAGGACCTCTATGCGGGTATTGCGGCGCAGGGGTTCGGCGGTGACCGTGCGAAGGCAAAGATTGCCCTGCTTGGCGCCATTTACGGTGCCACTACCGGCGAATCCGGCCGCCTGATGCCGCAGCTCGCCCGTACTTACCCCCGCGCCGTGGGCTTTGTGGAGCAGGCAGCGCGCGACGGCGAGCAGGGCGGCGCCGTTACTACCCGGCTGGGCCGCAGCAGCCCTCCGCCATCGGAGGGCTGGCTCCAAAGCCAGCGGACCTCCACCGCGGAGGAGCAACGCCGGGCCGACTCAATCGCCCGTTCCCGCGGCCGTTTTACCCGCAACTTTGTGGTGCAGGGTTCGGCGGCTGACTGGGCGGCATGCTGGCTGGCGGAATTACGACGGCGGTTGCGCACCATGCGCGCGGAAGACTCCTTTCAGGCGGAACTGGTGTTTTTCCTGCACGACGAAGTGATGGTGCACGCTCCGGAGGCCGGCGTGCAGGCATGTATCCGTGCCATCGAGGAAGCCGCCGGGGCAGCCAAAGAGCTGCTGTTCGGCCGCATTCCCGTCGAATTTCCGGTCAGTGTGGCCGTGGTCGATTCATACGACAACGCCAAGTAGMIYVDNTPEWPAVEGRSIRPFPQGRMRTMYLLLAAHADGAVLQEVTQAGDPHPDNPEPCVVSAAGLPAVVRQREQAHGAPPPRWIWHRTQDWYPALLASGVEVDRCYDLTLCGNILAYSQFTAHTEYARKAEMITLDDPQQPPRALQPPPPPAEQGALFEDLARGALSQPTLNELRAEYAAQQSALASASGADNQQKRLQLLLAAESAGAMIAAEMQHTGVPWREDLHGQILADHLGPRPPLGHRPAKLEALNTELRGLLSSPGLNPDSPQELMRALHRNGIEVKSTRKWELQESSHPAIEPLLAYKKLSRLHTANGWAWLDAWVKNGRFQPEYVVGGVVSGRWASRGGGALQIPRQIRGAVHADPGYKLIVADASQLEPRVLVALAQDSKMAEAARDKDLYAGIAAQGFGGDRAKAKIALLGAIYGATTGESGRLMPQLARTYPRAVGFVEQAARDGEQGGAVTTRLGRSSPPPSEGWLQSQRTSTAEEQRRADSIARSRGRFTRNFVVQGSAADWAACWLAELRRRLRTMRAEDSFQAELVFFLHDEVMVHAPEAGVQACIRAIEEAAGAAKELLFGRIPVEFPVSVAVVDSYDNAKNANANANANA
D1-29_03877975hypothetical proteinATGAGCGGTGTTCAGGAGCAGCAGGCCGGCTCCGGGCGATCTTCCGGCATCCAGCACCAAAGCGGAATCCGGCCGCATACGGCGCTGGCCGGCTACCTGCTGGACCAACTGAATGTGCTGGAAGGCGATCTCCCCCTCGCCGGCGCCGGAGATCCGGAAGCCGTCCATAACGCGAGGGTTGCGGTACGCCGCTTCCGCTCGGTGGCCACGTGCAACAGGTTCCTTCTGCCCGATTTCCCGGCGGACGACGTCGGCATGCTGAAGACGCTGGCCCGCGGGCTGGGCGAATCACGTGACGCTGAGGTCCAGGCCCAGCGGATGTCCTTGGTGCTGAATGCCGACGGTCCGTGGCACCGTGAGGAGAGCCTGTGGAAGCTGGTTGAAGGCCTCCGTGCCCGGGCGGTGGAACGGGCGGCGTCGCTGGAGCAGACGGCTGCAGGCCCGGCTTTGGCCAGGGTGCGGGGCATTCTCGCAGCAGGTTGGGGCCACACCGGCAGGATGGAGGTCACAGCAGCGCTGCAGAACCGCTGGGAACGGCTCGGTATCCTGATGGCGAAGGCGCGGGAACCGTTGCCCTTGGACGAGCACCACCTCCACCTGCACAACGTCCGTAAAGCGATTAAGGGACTTCGCTATTCGGCCGAGGCGGTAACCGCGTCATTTGGGGAACCTGCCCTGGCCATCGTTCGCCCTGCCACGGCCCTGCAGCGGCTCCTGGGCGAACAGCATGATGCCATTGTGGCCGGCGCCTTGCTGGCTGATGCTGCACGGGCCCATTCTGCAGGCGGCCTTTCTGTAGGCGTCTCTGTGGGCGTCCTTGACGTTGATCCGCAGGACGCAGCACCACTGGCGCGGCTGGAGTTCCTGCACGCGGTCTCCGCCGAAACGGAGTTTTTCCGACTGGTTGCCCTTGACCCGGTTCCGTCACCCGCCATCGTGATGACCGTCCGACGTACTGAGAGCGCCCTGCCATAGMSGVQEQQAGSGRSSGIQHQSGIRPHTALAGYLLDQLNVLEGDLPLAGAGDPEAVHNARVAVRRFRSVATCNRFLLPDFPADDVGMLKTLARGLGESRDAEVQAQRMSLVLNADGPWHREESLWKLVEGLRARAVERAASLEQTAAGPALARVRGILAAGWGHTGRMEVTAALQNRWERLGILMAKAREPLPLDEHHLHLHNVRKAIKGLRYSAEAVTASFGEPALAIVRPATALQRLLGEQHDAIVAGALLADAARAHSAGGLSVGVSVGVLDVDPQDAAPLARLEFLHAVSAETEFFRLVALDPVPSPAIVMTVRRTESALPNANANANANA
D1-29_03878195hypothetical proteinATGGCGGGCAGGTTCGAAATTCACCGTGTTGGCGACGAGTCCTACAGGCTCCGGCTTACAGACGCGGAGGGGAACGTTGTGGCGGTTTCGCCGAACTTTAAACATGTCAGCGCACTGCTTGAGGGCATCAAGGCAATGCGCGAAAACGCTGCTACCGGAATAGTGGTTGATCTCCGGCAGCAGACGCAGTCGTAGMAGRFEIHRVGDESYRLRLTDAEGNVVAVSPNFKHVSALLEGIKAMRENAATGIVVDLRQQTQSNANANANANA
D1-29_03879657nudLputative Nudix hydrolase NudLATGGACCTGGTGCGAAGGACCGAATCCGGGACCGCACCCGCACCCAACGCGCTCTGGGCCACCCTCACCGTGGATGAAAGCATTGCCCGCAGGGCCGCGGTCCTGATGCTGTTCGGCGTGCTGGACAACGTCCCCGCTTCCTCAGGGAAATCCCTGGCGCCCGCGGACCTGGACATCCTGCTGCTGGAACGAGCGCACACCCTGGATTCCCATCCCGGCCAGGTAGCGTTTCCGGGCGGCACCATTGACCCCAACGAATCCCCGGTGGCTGCCGCCCTGCGTGAGGCGGAAGAGGAAACCGGGCTGGATGTCACGGGAGTTGAAGTCCTGGGCACCCTCCAGGAGCTGGGGCTGGCCCGGAGCAATTTCCTGGTCACACCCGTGCTGGGCTGGTGGGCTTCGCCGTCGCAGGTTCGGGTGGTGGACTATGCCGAGTCCGCACAGGTGTTCCGGATTCCGGTCCGCGACCTGCTGGACCCGGACAACCGTGTAATGTCCACCGTCAGCCGGGGCGGCCGGACCTTTAACAGCCCGGCCTTCACGGTGAACGGTGTCCTGGTGTGGGGCTTTACCGGGATGGTGCTGACGGGACTCTTCGAGCAGTTGGGATGGGCGGTCCCGTGGGACCGCACCCGCCTGCACGTGATAGACATCTAAMDLVRRTESGTAPAPNALWATLTVDESIARRAAVLMLFGVLDNVPASSGKSLAPADLDILLLERAHTLDSHPGQVAFPGGTIDPNESPVAAALREAEEETGLDVTGVEVLGTLQELGLARSNFLVTPVLGWWASPSQVRVVDYAESAQVFRIPVRDLLDPDNRVMSTVSRGGRTFNSPAFTVNGVLVWGFTGMVLTGLFEQLGWAVPWDRTRLHVIDINANANANANA
D1-29_03880936nth_2Endonuclease IIIGTGCCGGCTTCCCGTAGTCCCAAGGAGGCTGCGGCCGCTGCAGCGGCCGCGGCCTCCGGCGCTGTCGCCGGTGCGGCCGTGGCCGGTGCAGTGGTGGCGGGTGCAGCGGCAGCCGGCGCACTTTCCGGCGCAGCGGCGGCGGGTCCACGGGTCTCATCGGAGTCCTTGCTTGCCCTCAAGCGCAGGGCACGCCGGATCAACAGGGTGCTGGCAGAGAAGTACCCCTACGCCCACGCAGAGCTTGATTTCCGGAGCCCGCTGGAACTGCTGGTTGCCACGGTTCTGTCGGCGCAGACTACAGACGTCACCGTCAATCAGATCACTCCGCTGCTCTTTGCGCGGTACCCGGATGCGCGCAGCCTTGCCGAGGCTGACCCGGCAGACCTGGAAGCGATCATCAAACCGACAGGCTTTTTCCGGGCCAAAACCCGGAATCTGATTGCCTTGGCCACCCGTCTTGTGGACGACTACGACGGCGTGGTGCCGGGACGGCTTGAGGACCTGGTCACTTTGCCTGGCGTGGGACGCAAGACAGCCAACGTGGTCCTGGGCAACGCCTTTGGAATTCCCGGAATCACCGTGGACACCCATTTCGGCCGCCTGGCCCGCCGCTTTGGCTGGACCCAGTCTGAGGATCCTGTCCAGATCGAATTCGACGTTGCCGAGCTTTTTGAGCCAAAGGATTGGACCATGCTCTCCCACCGCGTGGTGTTCCACGGACGGCGGGTGTGCCATTCACGGAAACCGGCATGCGGTGCGTGTCCTGTGGCCAACTGGTGTCCCAGCTACGGGCTTGGGGAAACAGATCCTGCCAAGGCCGCCAAGCTGCTGAAATACGAACTCGCCCCCGGCAGCGAGCCGCTCCTGGAAAAGCTGCTCGCAGAAACGCACAGGGCCGCCGAGATCCGGATGGAATCCCAGAAGAGAAATCCGTGAMPASRSPKEAAAAAAAAASGAVAGAAVAGAVVAGAAAAGALSGAAAAGPRVSSESLLALKRRARRINRVLAEKYPYAHAELDFRSPLELLVATVLSAQTTDVTVNQITPLLFARYPDARSLAEADPADLEAIIKPTGFFRAKTRNLIALATRLVDDYDGVVPGRLEDLVTLPGVGRKTANVVLGNAFGIPGITVDTHFGRLARRFGWTQSEDPVQIEFDVAELFEPKDWTMLSHRVVFHGRRVCHSRKPACGACPVANWCPSYGLGETDPAKAAKLLKYELAPGSEPLLEKLLAETHRAAEIRMESQKRNPPGPT0013735_899DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773NANA
D1-29_038811455hypothetical proteinATGAACCAGCAGAGCTTCGGCCAGAAACTTGGCCAGAAACTTGGCCGCTCAACAGGGGCCGGGCCTGGTGGCTCGTCCGCGGGCGGCGCGGGAACAGGGACCGACGGCGGGCCAGGAGCCAGTGGTCCGCGGAACACCGCCAAACCCGGCACCACCAACCAGGCAGTCCTGGGGCCGTTCACGGTTCGCGATCTGGCGGTCTTTGCCGCCACCCTCATTCTCTTCGTCGCCTCGCTGCTGCCAATTTTTGGCGGCCGGTTTAACCTCTGGAACGCCGGCAGCCTGTTTTTCCTTGGCCTGGGAATGGTCCTGCCGCTCATCGTGAGCGCACTTTTTGCCGCCCGCAGGCTGGCACCCGCCACACGGATCCGGATCGGTTCGCTGTCCGTTGACCAGTTCGCGTCCGTGGTGGCCTCCTTCGCCCTGGCGTTCTTCTTCCTGACGGTGGCAAGCGCCTACGCCCACAGTCTGCTGGTGGGACTCATCGGCTCCGTGGTCCTGTTTGCCGCTACCGTGCTGGCCCGGTTCATTCCGTATTTTGCCGGCGACTTCCTGGACCGTAAGGAATCACCTGCCCACGTGCTGGCCCGGGAATCAGCCGTTCCGCTGCCGAGGCCGCACACGCCGAAGGCTCCCAAGCCCACCGCGGCTGCCCAGCATGAAGCTATTAATCCGCACGCAACGCCTCACGCCCGCGGAACTGCAGCCCCGCAGGGAGCGACTGTCCCGCACGGTGCTGCCGCCGGAAGCGCTGCGTCGCAGGTCGGAGCATCTGCCGCTCATGGCGGATCATCGGCGGTACCAACGCCGGGCACAGCTCCAACGGGGGCGGTGCCGGCTGCTGCCGGATCCGGAACGGTCCCCGCCGCGGCTGGGGCAGGAAGTGCGGCCGCAGTCTCCTCAGCAGCCGAAATGACCGAGTGGTCAGTGGCAGGTGACCACACCCCCGCAACCCAGGCAGCCGACGTCGTACCTCCGGCTGGCCGGACGTCCGCCGCGGAGGAAACCCAGGCAGCCAGCCTTCCGACGGCGGCTGCCGGCGCCGCAACAACAGGTGGAGCCCTTGCTGGTGCCGGAGCGTCCGGTGCCGCAGCGTCTGGCACTGCGGCTTCGGGCAATTCAGCACCAGGAGACGCCGGATCGTCGGCAGCCTGGGAGCCTGCCCCCGCAACCGTGGTGCATCAGCAGGTCCGGAGCCAGGAGCCCATTGGAGCCACAGTTGATCCGGCAAGCCGTGCGGACGAGTCGGACGAAGCCCCGGTCCACGAGGCCTTCTGGTTCGCCGTAGCGCAGCACCGAACTGCGTTTCACCCACAAACCGGCGCCCCCGCCTTTGTGATCGAACCGGGAGGCTGGGTACTGGCACTGGAGGACCGCGGACACGAGTTCCTGGTTCAGCACACTGACGGGCGTCTTGGTGTGCTGCGCGACCTCAGCAACATCGAGCGCGGGTAGMNQQSFGQKLGQKLGRSTGAGPGGSSAGGAGTGTDGGPGASGPRNTAKPGTTNQAVLGPFTVRDLAVFAATLILFVASLLPIFGGRFNLWNAGSLFFLGLGMVLPLIVSALFAARRLAPATRIRIGSLSVDQFASVVASFALAFFFLTVASAYAHSLLVGLIGSVVLFAATVLARFIPYFAGDFLDRKESPAHVLARESAVPLPRPHTPKAPKPTAAAQHEAINPHATPHARGTAAPQGATVPHGAAAGSAASQVGASAAHGGSSAVPTPGTAPTGAVPAAAGSGTVPAAAGAGSAAAVSSAAEMTEWSVAGDHTPATQAADVVPPAGRTSAAEETQAASLPTAAAGAATTGGALAGAGASGAAASGTAASGNSAPGDAGSSAAWEPAPATVVHQQVRSQEPIGATVDPASRADESDEAPVHEAFWFAVAQHRTAFHPQTGAPAFVIEPGGWVLALEDRGHEFLVQHTDGRLGVLRDLSNIERGNANANANANA
D1-29_038822091acsACOG0365Acetyl-coenzyme A synthetaseATGATGAGGTTCACCATGTCCCAGGACAACCCCAGCACCACGGTTACCGCAGCCGACGCCGCACCTCAGGAAAGTCAGCAGGAAAGTCAGCCGGGCAGCCAGCACAGAGACCAGCCGGGTGATGCCTTTGAAAACCTGCTGCATGAGACACGGGCCTTCCCGCCTACTCCGGAATTCGCTGCTGACGCCGTTGTCACGGCTGCGGATTATGCAGAGGCCGACGCCGACCGGCCGGCTTTTTGGGCCAAAAAGGCACGCGAGCTGCTCACCTGGAACAAAGACTTCAGCCAGGCCCTGGACTGGTCCAACCCGCCGTTCGCGAAGTGGTTCGTGGGAGGGGAGGTCAACGCCGCGTACAACGCGCTGGACCGGCACGTGGAGAACGGCCTGGGGGACCGGGTGGCCATCTATTTCGAGGGCGAACCCGGCGACACCCGCACGTACACGTACGCCCAGCTCACCGACGAGGTCAAAAAAGCCGCCAACGCTTTTGAGTCCCTCGGTGTTTCCAAGGGTGACCGCGTGGCGGTGTACCTGCCGATGATCCCTGAGGCTGTCATCACGCTCCTGGCCTGCGCCCGGATCGGCGCGGTGCATTCGGTGGTATTCGGAGGTTTCTCCGCCGACGCCCTGCGGTCCCGGATCGAGGACGCCGAAGCCAAGCTGGTGGTCACGGCCGACGGCACGTACCGCCGCGGCAAGCCCAGCGCACTGAAGCCCGCGGTGGACCAGGCCCTGTCCGCCGATGGCCACAGCGTGCAGAACGTGGTGGTGGTCAAACGCAACGGCCAGGACGTGGACTGGCACGAGGGCCGGGACCACTGGTGGTCCGATACCGTTGACGGCGCCTCAACCCGGCACACCGCCGTCGGCCATGACTCCGAACATCCGCTGTTCATCCTCTACACCTCCGGCACCACGGGCAAGCCCAAGGGCATCCTGCACACCACCGGCGGGTACCTCACCCAGACCGCCTACACCCACAAGGCAGTCTTCGACCTGCACCCGGCCACCGACGTGTACTGGTGCACGGCCGACGTCGGCTGGGTCACCGGCCACTCCTACGTCGCTTACGCACCCCTCATCAACGGTGCCACCCAGGTCATATATGAAGGCACCCCCGATTCCCCGCACCAGGGCCGGTGGTGGGAGATCGTGGAGAAGTACAAGGTCTCCATCCTGTACACCGCACCCACTGCCATCCGCACCTTCATGAAATGGGGCCGGGAGATCCCGGACAGGTACGATCTGTCCTCCATCCGCGTGCTGGGCTCGGTGGGCGAATCCATCAACCCCGAGGCGTGGATGTGGTACCGCGAGGTCATCGGCGCAAACGCCGGCAAGAACGGCGAGCGCAAGGACCACCCGGCCCCGATCGTGGACACGTGGTGGCAGACCGAGACCGGCGCGCAAATGATCGCCCCGCTGCCCGGCGTCACCGCCACCAAGCCAGGCTCAGCGCAAACACCGCTGCCCGGCATCGCCGTGGACGTTGTGGACGAACAGGGCGAATCAGTCCCCAACGGCCACGGCGGATTCCTGGTCATTCGCGAACCCTGGCCGGCCATGCTCCGCGGCATCTGGGGCGACCCGCAACGCTTCAAGGACACCTACTGGTCACGCTTTGAAAACATGTACTTCGCCGGCGACGGAGCCAAAAAGGACGACGACGGCGACATCTGGCTCTTGGGCCGGGTGGATGACGTGATGAACGTGTCCGGCCACCGGCTCTCCACCACCGAAATCGAATCAGCACTGGTCTCCCACCCCTCCGTGGCCGAGGCAGCCGTCGTGGGGGCCGCGGACGAAACCACCGGCCAGGCCGTCGTCGCGTTTGTCATCCTGCGCGGTGACGCGGTGGACTCCGGCGACACGATCGTGCAGGAACTCCGCAACCACGTGGGCAAGGAAATCGGCCCCATCGCCAAACCCAAAACCATCCTCGTGGTCCCCGAACTGCCCAAGACCCGCTCCGGCAAAATCATGCGGCGCCTCCTCAAAGACGTAGCGGAGGGCCGCGAAGTAGGCGACGCCACCACCCTGTCGGACAACACAGTGATGCAGCAGATCGCCGCCTCCCTAAGAAAATAAMMRFTMSQDNPSTTVTAADAAPQESQQESQPGSQHRDQPGDAFENLLHETRAFPPTPEFAADAVVTAADYAEADADRPAFWAKKARELLTWNKDFSQALDWSNPPFAKWFVGGEVNAAYNALDRHVENGLGDRVAIYFEGEPGDTRTYTYAQLTDEVKKAANAFESLGVSKGDRVAVYLPMIPEAVITLLACARIGAVHSVVFGGFSADALRSRIEDAEAKLVVTADGTYRRGKPSALKPAVDQALSADGHSVQNVVVVKRNGQDVDWHEGRDHWWSDTVDGASTRHTAVGHDSEHPLFILYTSGTTGKPKGILHTTGGYLTQTAYTHKAVFDLHPATDVYWCTADVGWVTGHSYVAYAPLINGATQVIYEGTPDSPHQGRWWEIVEKYKVSILYTAPTAIRTFMKWGREIPDRYDLSSIRVLGSVGESINPEAWMWYREVIGANAGKNGERKDHPAPIVDTWWQTETGAQMIAPLPGVTATKPGSAQTPLPGIAVDVVDEQGESVPNGHGGFLVIREPWPAMLRGIWGDPQRFKDTYWSRFENMYFAGDGAKKDDDGDIWLLGRVDDVMNVSGHRLSTTEIESALVSHPSVAEAAVVGAADETTGQAVVAFVILRGDAVDSGDTIVQELRNHVGKEIGPIAKPKTILVVPELPKTRSGKIMRRLLKDVAEGREVGDATTLSDNTVMQQIAASLRKPGPT0002265_977DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-29_03883789srlR_3COG1349Glucitol operon repressorATGCTCCCCGCTGCACGTCACCAGGCTATTGTGGACACGGTCCAGCGCGAGCGGGTCGTGCGCGTGTCCGACTTGGCGCAGCAGCTGGGCGTTTCCCTCATGACTGTGCGGCGGGACATTGAGCTGCTGGAAGAAAGCGGCCGGCTGGAACGCATCCACGGCGGTGCCAAGCTTCCAGGTGATCCCAGCACTCACGAGCCGGGCTTCGAACTCAAGTCCACCCAGCTGACAGCAGAGAAAAGGGCCATAGCGCAGGAGGCGGCCGCCCTGGTCCAGGAAGGCATGGCTATTGGGCTCAGCGCAGGAACCACTACCTGGGCGCTGGCGCAGGAACTGGTCAACGGTCCGCGGATCACCGTGGTGACCAACTCGATGCGGATTGCCGATCTGTTCCATCACGGTGCCTCGGCCGGAACAGCCCGCTTCGGCTCCACCGTGATCCTGATCGGCGGCGAGCGAACGCCGTCGGATGCACTTGTGGGACCCATCGCGACAGCCGCGCTGAAGCAACTGCACCTGGATGTCCTGTTCCTCGGCGTGCACGGCATGGACGCGGAGGCGGGTTTCACCACTCCAAACCTGCTGGAGGCCGAAACGGACCGCGCCTTTGTGGCCGCGGCCCGGAAGGTGGTTGTCCTTGCGGACCACACCAAGTGGGGGCTGCTGGGGATCAGCACCATTGCCGGTTTGAATGAGGCTGACGAGATCGTCACCGACTCCGGACTGGGCATGGACGCCCAACGGATCCTTGGCGAGCGAATCGGCAAAGTGCGGATCGCCTCAGCCTAGMLPAARHQAIVDTVQRERVVRVSDLAQQLGVSLMTVRRDIELLEESGRLERIHGGAKLPGDPSTHEPGFELKSTQLTAEKRAIAQEAAALVQEGMAIGLSAGTTTWALAQELVNGPRITVVTNSMRIADLFHHGASAGTARFGSTVILIGGERTPSDALVGPIATAALKQLHLDVLFLGVHGMDAEAGFTTPNLLEAETDRAFVAAARKVVVLADHTKWGLLGISTIAGLNEADEIVTDSGLGMDAQRILGERIGKVRIASAPGPT0017590_238DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017590-fruR2-K03436NANA
D1-29_038841029ccpA_10COG1609Catabolite control protein AATGAAGTCCATGACCACTCCAGCAGTGCAGGCTCCCCGCGGACCAGTGACGCGCAAGGATGTTGCCCGGTATGCGGGCGTCAGCACCGCCGTCGTCAGCTATGTGGTCAATGGCGGGCCCAAGAAGGTGGCGCCCGCCACCGAAGCGAAGGTCCAGGACGCCATCCGCGTCCTGGGCTACCGGCCCAACGCAGCGGCCCGTGCGCTCAAGCTGGGCTCCAGTGAGACGCTGGGGCTCATCGTCCCGGACAACTCGAACCCCTTCTTTTCCCTTTTTGCCCACGCCGTCGAGGACGCGGCCGCTGCCTTGGGCTACGCCCTGGTGCTGAGCAACTCGGACGGAAACCTGGCCAAGGAGCGGCGCAATATCCGCAACCTCGCTGCGCGGCAGGTGGACGGAGTGCTGCTGGCCAGTGTCCTCTTCGAGCCTGACCTGGAGGTCCTGGAAACGGCGGACATCCCGTCGGTGCTGCTGAACCAGGAGAGGGACGCCCCCGGCTTTAACAGCATCGGTGTGGACCTTGCCGCCGGCGCCCGGATCGCCGTAGAGCACCTGATTGGACATGGCCATACCAATATCGGCCTGGCGATGGGAACCAACGTTTCGGGCACCACGGACGGCCGCGAAGTGGGCTGGCGGGAAGCTTTGCAGGAGGCAGGGCTGCCCGAAGGGCCCATCGTCTACAGCTCATTCACCCGGCCCGGCGGATATGTTGCCGGGCAGCGCCTCCTGGCGTCCGTCAACCGGCCAACGGCGATCTTCGCCACCTCTGACATGCAGGGGATCGGCCTGTTGCGGGCCGTCCATGAGGCAGGCCTGGCCGTTCCCGATGAGATCGCGGTGGCGTCCTTTGACGGCTCCGTTGAGGCCGAGTATTCATGGCCGCCGCTGACCACTGTTGAGCAGCCCGTGGCCGAGATGGCAGAGGCCGCCGTGGCTGCCCTGGTGGGCGCCCGCCGGGGCGACAAGCCCATGCACCGGATTTTCGACACCCGGCTCCACGTCAGGCAGTCCTGCGGCTGCCCCTAGMKSMTTPAVQAPRGPVTRKDVARYAGVSTAVVSYVVNGGPKKVAPATEAKVQDAIRVLGYRPNAAARALKLGSSETLGLIVPDNSNPFFSLFAHAVEDAAAALGYALVLSNSDGNLAKERRNIRNLAARQVDGVLLASVLFEPDLEVLETADIPSVLLNQERDAPGFNSIGVDLAAGARIAVEHLIGHGHTNIGLAMGTNVSGTTDGREVGWREALQEAGLPEGPIVYSSFTRPGGYVAGQRLLASVNRPTAIFATSDMQGIGLLRAVHEAGLAVPDEIAVASFDGSVEAEYSWPPLTTVEQPVAEMAEAAVAALVGARRGDKPMHRIFDTRLHVRQSCGCPPGPT0017992_8241DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_038851200iolG_13Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGACGTTTTCAATAGGCGTAGTAGGCGTGGGCCAGTTTGGTGGTCAATTCGCCCACCTGTTCCATCTCCACCCCGGAGTCAGCGCCGTGTACGTGGTGGATGAGGTTCCGGAGCGTGCGGCCGAGGCTGCAGACCGCCTGCACCTTGCAGGGGTCAAGGCGGATTTCGACGAACTCCTTGCCTCCGACGTCGATGCCGTGGCCATCTTCACGCAGCGCTGGACCCACGGCCCGCTGGTGGAGCAGGCGCTCCGCGCCGGCAAGCACGTCTACTCAGCCGTCCCGATGGCCATCTCCGAGGACGAAATCGCCCGCATCATCGACGCCGTCAGGGACACAGGGCTGGTCTACATGATGGGGGAGACCAGCTACTACAACCCCGCCACCGTCTACGCCCGCAAGCAGCTTGCCGCCGGGAAGTTCGGCCGCATCTTCTACAGCGAAGGCGACTACGTCCATGACATGGACCTTGGATTCTACGACGCCTACCAGTACAGCGGAGGCGAACGGTGGAAGGAAACCGCCAGCTACCCTCCCATGCTGTACCCCACCCATGCTGTAGGGGGAGTGCTGGGTGCCATCCCCGCGCATGCTGTCAGTGTGAGCTGTGTAGGAGTCAAGGATGACCGCAATGATGGCGTTTTCGACAAGGACGTCAGCATGTTCGGCAATGACTTTTCCAATGCCACGGCCCTCTTTGAACTCAACGACGGCGGCGTCATGAGGACCAATGAGATGCGTCGAGTGGGTTACCCGTCCCATATCAGGGAGTCCCGGTTCCGGTTCTTCGGCACGGACGCCAGCTTTGAACAGCTGGCAAAGGTCACGGTGTGGCAGGACAAGGAAAACGTCCACGACATTTCCGAGCAGCTGGAAACCCGGGCCAGCATGTCCCTGGACGACCCGTCGCTTGCCAACGTTGCAGTGGAGCTGAGGGACGCCTTCGTTTCGGGGCTCTCGCCCGTCCATGACGCCGAACGGCTTCCGCAGGAGTTCCGCGGCGCCCCGAACGGCCACGAGGGCAGCCACCATTTCCTGGTGGACGACTTCGTGACCGCCGTCAATAGCCGCACCCTGCCACCGGTGAACGCCTGGGTTGCCGCGCGGTTCACGCTGCCCGGCATCGTGGCGCACCAGTCAGCGCAGCGCAACGGGGAGCGGCTGCCCATCCGCGACTTCGGCGACGCCCCCGGAATCTGAMTFSIGVVGVGQFGGQFAHLFHLHPGVSAVYVVDEVPERAAEAADRLHLAGVKADFDELLASDVDAVAIFTQRWTHGPLVEQALRAGKHVYSAVPMAISEDEIARIIDAVRDTGLVYMMGETSYYNPATVYARKQLAAGKFGRIFYSEGDYVHDMDLGFYDAYQYSGGERWKETASYPPMLYPTHAVGGVLGAIPAHAVSVSCVGVKDDRNDGVFDKDVSMFGNDFSNATALFELNDGGVMRTNEMRRVGYPSHIRESRFRFFGTDASFEQLAKVTVWQDKENVHDISEQLETRASMSLDDPSLANVAVELRDAFVSGLSPVHDAERLPQEFRGAPNGHEGSHHFLVDDFVTAVNSRTLPPVNAWVAARFTLPGIVAHQSAQRNGERLPIRDFGDAPGINANANANANA
D1-29_03886966melD_10COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACCACCCTTACCAAACAGCAACGGGACCCGGCGGGCCGGGCAGCGCGACCCAAAGCAGGAAAAAACGGCAGTACCGGCAAGAAAAGCGTGATCCATCAACTGGGCGACCTGAAGATGGCAATGTTTTTTATCCTCCCCGCAATGATCGGCTTCGTGGTCTTTTTCCTGATCCCCACCATCCGCGGCGTCTACCTCAGCTTCACCGAATACAGCATCCTGGGGGACCCCACCTGGATCGGCATCAAGAACTACACCGCGATCTTCGCTGATGAACTGTTCTGGAACTCCATGGCGGTCACCGTGCAGTACGTGGCAATCAACATCGGTTTCCAGACAGTTATTGCGCTTGGGCTGGCACTCCTGATGCACCGCGTGGCAAAGTCAACGTTCATCCGCGGCGCCCTGCTGATGCCGTTCCTCGTGGCCAACGTCATCGTTGCGCTGCTGTGGTTCTGGATGCTGGATTACCAGTTGGGCATCGTCAATGAAGTCATCAGCTGGATCGGACTGCCACGCATCGCCTTCTTCGGAAGCGAGCAATGGGCCATCCCCACTATCGCTGCCGTCAACGTGTGGCGCCACATGGGTTACACCGCCCTGTTGATCTTTGCCGGCCTCCAGGCCATACCGCAGCACGTCTACGAGGTGGCATCCCTGGATGGCGCATCTCCCACAAGGACCTTCTGGGGCATCACCATCCCCCTGCTGCGCCCGGTACTGGTGCTGGTCCTGGTAGTTACAGTGATCGGATCGTTCCAGGTCTTCGACACCGTTGCCGTCACCACGGGCGGCGGTCCCATCAACGCCTCCCGCGTCATCCAGATGTACATCTATCAAAAGGCCTTCACCGAGTCGGACTTCGGGTATGCCTCCGCACTGTCCGTCATTCTCTTCGTCATCCTCGCCCTGGTGGCCTTCGTGCAGATGAAGTTCCTCAAGGGCAACGAATCGGACCTGGACTAAMTTLTKQQRDPAGRAARPKAGKNGSTGKKSVIHQLGDLKMAMFFILPAMIGFVVFFLIPTIRGVYLSFTEYSILGDPTWIGIKNYTAIFADELFWNSMAVTVQYVAINIGFQTVIALGLALLMHRVAKSTFIRGALLMPFLVANVIVALLWFWMLDYQLGIVNEVISWIGLPRIAFFGSEQWAIPTIAAVNVWRHMGYTALLIFAGLQAIPQHVYEVASLDGASPTRTFWGITIPLLRPVLVLVLVVTVIGSFQVFDTVAVTTGGGPINASRVIQMYIYQKAFTESDFGYASALSVILFVILALVAFVQMKFLKGNESDLDPGPT0016535_1721DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_03887945ngcG_6COG0395Diacetylchitobiose uptake system permease protein NgcGATGACTACCTCGACTCCCTCCCTGCAAGACGCCGCCACGTCAACCCGAGCTCCAATCGCCAAGCCCCGCAAGCCCTTCAACTGGGGCCGTGCCGGGGCGTGGGCCCTCGTGATCCTTGCGTTGATCGTCACTATTGCGCCGTTCCTGTGGATGCTCCGCACTGCCCTTTCCAGCAACCATTCCCTCGCGGCCAACGCAGGCAACCTGCTGCCCGCCGATTTCAGCTGGGGCGCCTTCAAACGCGTCCTGGGCCTGCAAACCCCTGAGGAGGCCATAGCGGAAGGCGGCTCCGGTGCTGCCATCAACTTCTGGTGGTACCTCCGAAGCTCCATCATCGTTTCCACGCTGGTCACGGCGGGGCAGGTCTTCTTCAGTGCAATGGCCGCCTATGCCTTTTCCCGGCTCCGCTGGCCGGGCAGGGACAAAGTATTCGCCCTGTTCCTGGCCACCATGATGGTGCCGCCAATCTTCACAGCACTGCCCAACTTCCTGATGATCAAGAACCTGGGACTGCTGAACACCTACGCCGGCATCATCCTGCCCTTCCTGTTCATGACACCCTTCGCCATCTTCTTCCTGCGCCAGTTCTTCATGAGCATGTCCAGGGAAGTGGAAGAAGCAGCCATGCTGGACGGCGCGCACAAGTTCCGCATCTTCTTCCAAATCGTGCTTCCCAACGCCGCCGCACCCCTGGCCACGCTCGCGTTGCTAACGTTCATCGGCACGTGGAACGAGTACTTCTGGCCCCTACTGGTGGGCCAGGACGAAAGCGTCCGGGTCCTCACTGTGGGGCTGGGTGTTTTCAAGTCCCAGTCGCCACAAGGCGCACCCGACTGGAGCGGCCTCATGGCGGCCACCCTTATCGCCGCGCTTCCTGTCCTCCTGCTGTTCATCGCCTTCGGCAAGAAGGTAGTGAATTCGATCGGGTTCTCCGGGGTCAAATAGMTTSTPSLQDAATSTRAPIAKPRKPFNWGRAGAWALVILALIVTIAPFLWMLRTALSSNHSLAANAGNLLPADFSWGAFKRVLGLQTPEEAIAEGGSGAAINFWWYLRSSIIVSTLVTAGQVFFSAMAAYAFSRLRWPGRDKVFALFLATMMVPPIFTALPNFLMIKNLGLLNTYAGIILPFLFMTPFAIFFLRQFFMSMSREVEEAAMLDGAHKFRIFFQIVLPNAAAPLATLALLTFIGTWNEYFWPLLVGQDESVRVLTVGLGVFKSQSPQGAPDWSGLMAATLIAALPVLLLFIAFGKKVVNSIGFSGVKPGPT0016540_762DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_038881341hypothetical proteinATGAAAAAATCCCTTGGCGTCGCCGCTGCTGCCGCTGCCTTTGCCCTGTCCCTGTCCGCCTGTGGCGCACCAGCTCCTGCCTCCACGGAGGCCAAGGGCGAAATCAATTATTGGCTCTGGGACGCCAACCAGCTGCCGGCCTACCAGCAGTGTGCTGACGATTTCACCAAGGCCAACCCGGACATCAAGGTCAAGATCACCCAGCGCGGCTGGGATGATTACTGGACCACCCTGACCAATGGATTTGTTGCCTCAACCGCCCCGGACGTCTTCACCAACCACCTGGCCAAGTACCCTGAATTTGCCTCCAAGAAGCAACTCCTCGCCCTTGACGACGCCGTCAAGAACGACAAGCTCAACTTGGATATCTACAACAAGGGCCTCACCGATCTCTGGGTCACCGAAGACGGCAAACGCTACGGGCTGCCCAAGGACTGGGACACCATCGCTTTGTTCTATAACAAGAAGCTGATCGCCGATGCCGGGTACACCGAGGAGCAGCTCAAGGACCTTGACTGGAACCCGAAGGATGGCGGCAGCTACGAAAAGGCCATCGCCCACCTCACGGTGGACAAGAACGGCAAGCGCGGCGACGAGCCCGGCTTCGACAAGAACAACGTTGCGGTTTATGGCCTTGGCCTGGAAAACTCCGGCTCCGGTACCGGCCAGACCCAGTGGAGTTTCCTCAGTGCCACCATGGGCTGGACCCACACAGACAAGAACCCCTGGGGCAAGGAGTTCAACTACGACGACCCCAAATTCCAGGAAACCATCACCTGGTGGACTGGACTCGTGGATAAGGGCTACATGCCCAAGCTGGAGACCACTGTGGGCGCCAGCGTGACTGACAACTTCGGTGCCGGTAAGGCCGCCATCAACACCAACGGTTCGTGGATGATCGGCCAGTACACCAGCTACAAGGGCGTGGAAACAGGCATTGCTCCCACTCCCAAGGGACCCAGCGGCAAGCGGGCCAGCATGTTCAACGGCCTGGCCGACTCCATCTGGGCGGGTACCAAGAATCCTGCCGCCTCAGTCAAGTGGGTGGAATACCTGGCCTCCGCAGACTGCCAGGACGTCGTAGCCAAGAAGGCTGTAGTCTTCCCGGCCATCAGTACCTCCTCCGAGATCGCGGCCAAGGCATTCGCGGACAAGGGCATTGATGTCAGCGCCTTCACCACACACGTAGAAGACGAAACCACGTTCCTCCTCCCGATCGCTGACAAAGCGGCGAAGGTCGAGGGCATCATGGAGCCGGCCATGGACGCTGTCGTGTCAGGCAAGAAGCCGGCCAGCTCACTTTCCGAGGCCAACGAGCAGGTCAACGCCCTCTTCAAGTAGMKKSLGVAAAAAAFALSLSACGAPAPASTEAKGEINYWLWDANQLPAYQQCADDFTKANPDIKVKITQRGWDDYWTTLTNGFVASTAPDVFTNHLAKYPEFASKKQLLALDDAVKNDKLNLDIYNKGLTDLWVTEDGKRYGLPKDWDTIALFYNKKLIADAGYTEEQLKDLDWNPKDGGSYEKAIAHLTVDKNGKRGDEPGFDKNNVAVYGLGLENSGSGTGQTQWSFLSATMGWTHTDKNPWGKEFNYDDPKFQETITWWTGLVDKGYMPKLETTVGASVTDNFGAGKAAINTNGSWMIGQYTSYKGVETGIAPTPKGPSGKRASMFNGLADSIWAGTKNPAASVKWVEYLASADCQDVVAKKAVVFPAISTSSEIAAKAFADKGIDVSAFTTHVEDETTFLLPIADKAAKVEGIMEPAMDAVVSGKKPASSLSEANEQVNALFKPGPT0016545_2820DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_038892262rafAAlpha-galactosidaseATGGATCCGCTCTACCTCCGTACCACCGGCACCAGCCTGGTGATCAGCTTCAGCAGCGGGGAGGCCGAGATTATCCATTGGGGCGCCGATCTTGGCGCCAGCCTTCCGGACCTCGCCATCCTTGGGGAACCCATCCCGCACTCGGCTGTGGACGCAACGGTCACCGCCGGGCTCCTGCCGCAGGCATCCTCAAGCTGGCGCGGCAGGCCGGCACTCCGTGGACACCGAATCGCTGACGGGATCCCCGGCCACGATTTCTCGGCCCGCCTCCGCGTCACGTCCGCCAGCTCCGGGCCGGGGCCAGGGACCGCCGACGCCGCCGCCTCCGCCGCCATCGTCCAGGCAGACCCCGACGCCGGCATTACCGTTGAGACGTCCATAAAACTGCACGACGGCGGTCTGCTGGAGCTGCGCCACACGCTCACCAACGACGGCTCCTCCCCCTACCAGCTCGACGAACTGGCCACGGTCCTGCCGGTGGCGCCGGACGCCGTCGAGCTCCTTGACCTCACGGGACGCTGGTGCCGGGAACGCCACCCGCAGCGCCGCTCCCTCCAACAGGGAACGTGGGTGCGGACCGGACGGCACGGCCGCACCGGTCACGATTCCTCACTCCTGTTCGCGGCCGGCACCGAAGCCTTCGGCAACCGCCACGGCAAGGTGTGGGCCACGCACCTGGCCTGGAGCGGAAACCATGAACAGTTCGCCGACAGCATCGGCGACGGCCGGACCATGATCGGCGGTTCAGAGCTCCTGGGCCCGGCGGAAGTCATCCTCCAGCCCGGCGGCAGCTACACCACGCCTGCATTGTTCGCGGCCTACTCCGACCGCGGCCTGGACGGCGTCAGCGAAGCGTTCTACAGCTGGTTTAGGTCCCGCCCCCAGCACGTCCTCCCTGCTGCACCCGCCACCGGCGGCAAAAGCACTGCCGGCAAAAGCAGAAACGGCAAAGCAAGGCCCGTTGTGCTGAACACCTGGGAAGCCGTCTATTTTGACCATGACATTGACACGCTGATCGAACTCGCTGACTCGGCGGCAGAGCTGGGTGTGGAGCGATTTGTGCTCGACGACGGCTGGTTCCGCGGGCGCCGCACGGACCGTGCCGGACTGGGCGACTGGTACGTTGACGATGCCCTTTGGCCCCTGGGCCTCACGCCGCTGGTCGAGACTGTCACCTCGCGAGGGATGGAATTCGGCCTGTGGGTGGAACCGGAAATGGTCAATCTGGATTCGGACATCGCCCGGGAACACCCCGAGTGGATTGTGGGCCCCTCCGCACTCTCCCACAAGGACGGCGGCCGGCTCCCGCTGGAGTGGAGGTTCCAACACATCCTGGATCTGGTGAACCCGGAAGCCTGGCAGTACATATTCGACCGGATAGACGCCTTGCTCACGAAGTACAACATCAGCTACCTCAAGTGGGACCAGAACAGGGACCTGCTGGAGCACGGCCATGTCGGACGCCCGTCGGTACACGAACAGACCTTGGCCGCCTACCGCCTCTTTGACGAATTGAAGAAGAGCCATCCCGGCGTCGAGATCGAAAGCTGCTCTTCGGGCGGCGCGCGCGTGGACCTCGGCATCCTGGACCGGACGGACCGGATCTGGGCGTCGGACTGCAATGACGCCCTGGAGCGCCAGACCATCCAGCGCTGGACCGGGCTGGTGGTTCCGCCGGAACTGATGGGAGCGCACATCGGCCCCACCACCTCGCACACCACGGCCCGCACCCACGATCTGTCCTTCCGTGCCATCACTGCGCTGTTTGGCCACTTCGGCATGGAGTGGGACGTCCGCGAGGTCCAGGGTGCCGAGCGGGAGCAGCTCAAGCGCTTCATCGGGCTTTACAAGGAGCACCGGGACCTCATCCACTCCGGGCGCATGGTCCGCGCGGACGTTGCCGAGGGTTCCCTGCTCCTGCACGGTGTGGTGGCTGGCTCTCCTGCCGGCGCATCACCGGCTGGATCGGTGCAGGGCACGACGGCGGCTCTGTTCGCGTTGGTCAGTACCCGCACCGCGTTCGCTGAGCAGCCCGGCCGGATAACCATCCCCGGGCTGGAGGCTGACCGCGGATACCGCGTGGAAGCCATCTTCCCCCTGCCGGGGGACGCGGACTACGCCCACAACTACACCCAGGTCCAGCCGCCAGCGTGGCTTAGTGACGGTGCCGAGGCCAACGGGCGTTTTCTGGCCGAGGTGGGCCTGCCCATGCCCATCCTCAACCCTGAGCACGCCGTCCTGCTGAAGTTCACCGCACTGTAAMDPLYLRTTGTSLVISFSSGEAEIIHWGADLGASLPDLAILGEPIPHSAVDATVTAGLLPQASSSWRGRPALRGHRIADGIPGHDFSARLRVTSASSGPGPGTADAAASAAIVQADPDAGITVETSIKLHDGGLLELRHTLTNDGSSPYQLDELATVLPVAPDAVELLDLTGRWCRERHPQRRSLQQGTWVRTGRHGRTGHDSSLLFAAGTEAFGNRHGKVWATHLAWSGNHEQFADSIGDGRTMIGGSELLGPAEVILQPGGSYTTPALFAAYSDRGLDGVSEAFYSWFRSRPQHVLPAAPATGGKSTAGKSRNGKARPVVLNTWEAVYFDHDIDTLIELADSAAELGVERFVLDDGWFRGRRTDRAGLGDWYVDDALWPLGLTPLVETVTSRGMEFGLWVEPEMVNLDSDIAREHPEWIVGPSALSHKDGGRLPLEWRFQHILDLVNPEAWQYIFDRIDALLTKYNISYLKWDQNRDLLEHGHVGRPSVHEQTLAAYRLFDELKKSHPGVEIESCSSGGARVDLGILDRTDRIWASDCNDALERQTIQRWTGLVVPPELMGAHIGPTTSHTTARTHDLSFRAITALFGHFGMEWDVREVQGAEREQLKRFIGLYKEHRDLIHSGRMVRADVAEGSLLLHGVVAGSPAGASPAGSVQGTTAALFALVSTRTAFAEQPGRITIPGLEADRGYRVEAIFPLPGDADYAHNYTQVQPPAWLSDGAEANGRFLAEVGLPMPILNPEHAVLLKFTALPGPT0018835_581DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
D1-29_038901206garK_2COG1929Glycerate 2-kinaseATGGTTATGTCCATTCCGCAACGAATCCTCGTGGCACCGTCCGGTTTCAAGGAAAGCCTGGACGCGGTGGAAGTGGCAGCGGCGATTGCCGCAGGCATCCGCCGGGTCATCCCCGGCGTGCAGGTCACCTCGGTGCCCATGGCCGACGGCGGTGAAGGCACCGCCGCGGCACTGGCCTGCGCCACGGGAGGACGCCTGGTTGCCCAGCGCGTGACCGGCCCGGTGGGGAAGCCTGTGGACTCCCACTTCGCCATGCTTGGAAACGTGGACAGTCCCACCGCGGTGGTGGAAATGGCCGCCGCCGCCGGCCTCCGCCTGGTGCCGTCGGATATGCGCGACCCCGGCAGCACCACCACGCGCGGCGTGGGGGAACTGATGCTTGCCGCCCTGAACGAAGGGGCTGAGCGGATTATCGTGGGGTGCGGGGATTCGGGAACGTCCGACGGCGGTGCGGGCGCCCTGCGTGCCCTCGGCGCCCGCGTCTTTGGGCCGGGAGGAGGGGAGCTCGCGGAGGGAGGTGCAGCCCTGGCCGAGACGACGGGCGTGGACCTGACCGGGCTGGACAGCCGGCTTTCCTCCTGCCGGATTGAGCTGGCACTGAATCCGTACAACGTACTGTGCGGCCCCCAGGGCGTGGCCAGGGTGTTCGGGCCGCAGAAGGGTGCCTCGCCAGAGCAGGTGGAGCTGTTGTCCGCCGGGCTGGACCGGTGGGCCCAGTTGCTGGCAGCCGCCGGCGGGCTGTCCGAAAACTACCTGCGGACAGGCCCCGGTACCGGAGCTTCCGGCGGCCTGGGAGCGGGGCTTGCTGCCGTGGGAGCCCGGTTGGTTCCGCGCTTCGAATTGCTGCTGGACTCCGGCCTGGCCGGAGTGGACCTGGATGCCCATATCGCCCGGGCAGACCTTGTGGTGACCGCCGAGGGCGCCATCGATTTCCAGACCCCTCGCGGAAAGGTCCCTGCAGAGATTGCCCGCCGCGCCCAGGCTGCCGGTGTCCCGGTCCTGGCTCTCGCGGGATCCATCGGCAAGGACTCGGCTGACGTGCATGCTGCGGGAATCGATGCCATAGCCGGGATTATCCCCATCCCCATGGACCTGGACAGGGCTGTTGCCGAAGCGGCCGTCCTGCTGCGGGAGGCCACCGAGCGGACCTTCCGCGTACTCCTGTTGGGTTCCGCGATTTCCTCCCGGCTCGGCAACGCAGCCTGAMVMSIPQRILVAPSGFKESLDAVEVAAAIAAGIRRVIPGVQVTSVPMADGGEGTAAALACATGGRLVAQRVTGPVGKPVDSHFAMLGNVDSPTAVVEMAAAAGLRLVPSDMRDPGSTTTRGVGELMLAALNEGAERIIVGCGDSGTSDGGAGALRALGARVFGPGGGELAEGGAALAETTGVDLTGLDSRLSSCRIELALNPYNVLCGPQGVARVFGPQKGASPEQVELLSAGLDRWAQLLAAAGGLSENYLRTGPGTGASGGLGAGLAAVGARLVPRFELLLDSGLAGVDLDAHIARADLVVTAEGAIDFQTPRGKVPAEIARRAQAAGVPVLALAGSIGKDSADVHAAGIDAIAGIIPIPMDLDRAVAEAAVLLREATERTFRVLLLGSAISSRLGNAAPGPT0018175_186DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
D1-29_038911512hypothetical proteinATGAAAACCACCTACTACGAGTCAACCCCGCGCAGCACGGAATCCGGGCCTGGGCCTGCCGCCACACTTCCGCGGGCACTCCGGCCCGCTGCCGTTGTGGCGGCGGCTGTGGCAGTCGCCATCATGGTGTTCCTGTGGCTGAACGTCAGTCCCGGCGGCCTCCATCACGACGCAGCCCTGACGCTGTGCATCTTTGTGGCTGCCGTGTGGTTCTGGATCTTCTCAGCAGTGGAGGATACCTACGTGGCCCTCGGGGCCGCCGCCGCTCTGGTCATCAGCGGGGCGATGCCAACGGAGAGCCTCTTCGCCGCCCTGGGCGACGAAACTGTCTGGCTGCTCATGGCAGCCTTTGTCATCGCGAGTGCCGTTGCGTCAACGGGCCTCGCCGCACGGGGTGCCGCCTTCGTGATCACTGGGGCGCGCAGTGTCCGCCAGCTGGCCTATCTGGCCACTCTGGGCCTGGTGGTGACCAGCTTTGCCATCCCTGCCACGTCAGGCCGGGCGGCCCTGGTGCTGCCCATCTTCCTGGCACTGCGCGCGGTGCTCAAGGAGCGTCCTGCGGTGGTCAGGTTGCTGGCCATCCTGTTCCCCAGCGTCATCCTGCTCTCGGCAGTCAGCTCCTTCCTGGGCGCCGGAGCGCACCTGATCACCAGCCAGGTCCTCCAGTCAGCCGGCTATCCGGGATTCGACTTCGCGTCCTGGCTCCTGCTTGGACTGCCCATCGGCCTGGCATCCAGCTTCCTCGCGGCCGAGTTGACGCTCCGCCTTTTCACGACGGGAGCGGACAGGTCCATGCCCTTGCATGTGAAGGTCAGTCAGCTCCAAAGCGGCAGCAGCACCAGGCTGCGGGGCCCCCTCGACCTGGACGAACAGCGCTCGCTGCTGCTGCTGGCCGCCGTGGTGGTCCTGTGGTGCACGGAGCCCATCCACGGCTTGGAGCCGGCCCTCGTGGCGCTGATCGGTGCCCTGGTGGTTTCCTCTCCGTTCTACGGATCAGTGAAGCTGGGCGCAGCGCTGAAAAAGGTGCCCTGGTCCATGCTGATCTTCATGGCGGCCACCCTTGCCCTTGGCTCCAGCCTGGTCACCTCGGGGGCAGCAGGATGGCTGGCATCCTCTGTGCTGGCCCCGGTGGCCGCCCTGGGCAGCTGGAAGGCGCCTGTCTTTGTGGTGGCTGTTGTAACGGTTTCGTCGGCAGCCCACCTGGTGATCCAGTCCCGGTCTGCACGCTCGGCGGTGCTGATCCCTATGGTGGTGGCGTCGGCGGTTCCGATGGGCATGGATCCCATGGCGGCAGCCTTCGCGTCAACCGCCGCGGCCGGCTTCTGCCATACGCTCACCAGTTCGGCGAAGCCGGTGGCGATGTTTGCAGAAACTGACGGTACTGCCCATTATTCCGCGGCGGACCTGCTTCGGCTCTCTGCCTGGCTGGGCCCGCTCAGCACTGCCCTGGTCCTTGTCTTCAGCTTTGCAGTCTGGCCCGTCCTGGGCCTTCCTCTCTTCACTTCCCGCTAAMKTTYYESTPRSTESGPGPAATLPRALRPAAVVAAAVAVAIMVFLWLNVSPGGLHHDAALTLCIFVAAVWFWIFSAVEDTYVALGAAAALVISGAMPTESLFAALGDETVWLLMAAFVIASAVASTGLAARGAAFVITGARSVRQLAYLATLGLVVTSFAIPATSGRAALVLPIFLALRAVLKERPAVVRLLAILFPSVILLSAVSSFLGAGAHLITSQVLQSAGYPGFDFASWLLLGLPIGLASSFLAAELTLRLFTTGADRSMPLHVKVSQLQSGSSTRLRGPLDLDEQRSLLLLAAVVVLWCTEPIHGLEPALVALIGALVVSSPFYGSVKLGAALKKVPWSMLIFMAATLALGSSLVTSGAAGWLASSVLAPVAALGSWKAPVFVVAVVTVSSAAHLVIQSRSARSAVLIPMVVASAVPMGMDPMAAAFASTAAAGFCHTLTSSAKPVAMFAETDGTAHYSAADLLRLSAWLGPLSTALVLVFSFAVWPVLGLPLFTSRNANANANANA
D1-29_03892660cusRCOG0745Transcriptional regulatory protein CusRATGAGCCGGATCCTGATCGCTGAAGATGACCGCCGAATCGCCGACTTCATTGAGAAGGGGCTCCGGGCTGCGGCCTATTCCTGCCTGGTGGTGGATGACGGCGCCAGCGCCCTCCTCCTGGCCCGGTCCGGGGACTTCGACATGCTTATCCTGGACATCGGGCTCCCCACGCTCAATGGCTTCGAAGTCCTCGAGCGGCTCCGCAGCGAAGGGTCCAAGACTCCTGTCATTGTCCTCACCGCCAGCGATTCCGTAGCGTACACCGTCTACGGGCTGGAAAGCGGCGCGAACGACTACATGACCAAGCCCTTCCAGTTCGCTGAGCTGCTGGCAAGGGTGCGGATCAGACTGGTGGATGACACCGATTCAGCCCCCGTGATGAAGCTTAGCCACGGGGATATGGAACTTGATCTGCGCAGCCGCCGGGTCCGCTGCGGGCAGGCGGACGCCGATCTCACAGCCCGGGAGTTTTCGCTGCTGGAGGTGTTCCTCCGCCATCCAGGCCAGGTCCTGACCCGGGAGCAGCTCATTTCCCATGCGTGGACGATGGATTTTGATCCCGCCTCCAACGTGGTGGATGTGTACGTGCGGGCCCTCCGGGCCAAGATTGGCGCGGAACGGCTGGAGACAGTCCGGGGCGCGGGGTACCGGCTCAGATGAMSRILIAEDDRRIADFIEKGLRAAAYSCLVVDDGASALLLARSGDFDMLILDIGLPTLNGFEVLERLRSEGSKTPVIVLTASDSVAYTVYGLESGANDYMTKPFQFAELLARVRIRLVDDTDSAPVMKLSHGDMELDLRSRRVRCGQADADLTAREFSLLEVFLRHPGQVLTREQLISHAWTMDFDPASNVVDVYVRALRAKIGAERLETVRGAGYRLRPGPT0004105_1690DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-29_038931572sasA_9Adaptive-response sensory-kinase SasAATGGGAGAAGTAACGGCAGTATTGGAGCGCCCCCTCCCGAAAGCCCCGGCCAGGGAACCACGCAGCTTGGCCCCGCAGGGCCGCTTGGGGTCACGCGTCCCGGCGCGTTGGCGCATTGCCGCGTGGATTGTCCTGACTACCGCACTGACCCTCCTCGCGGTGCTCCTGACTGTCCGCTCCCTGACCCTCAACCAGGCCCGCACGCAGGCCCACCAGGCGATAGAACAGGAACTCCAGGAATTCCGCGCCTTCGCCAAGGAAGGAGTGGATCCCACCACCGCGAAGCCATTCACGTCAATCGAAAAAATGCTGGAGAGGTACTTGAGCCGGCAGTCTGCGGCTTCTGGCGAAGTGATCCTGGGCAGCGTGGGAGGGCGCGTCCTGTACACACCCAGCGGGGCCATGGGTACCCCGGTTACGGGGCACGAGCTTCCCAAGGATGAAGGGCTGTTGAACGGTATCAGGTCGGGCCAGGATGCCACCGGCATAGCCCAGACCAGCGCGGGTGAGATGCACTGGGCCAGGCTGCCCATCGAGTCCGGCAGCGACACCGGCTACCTCATCGTGGGTGACTATATGGCTCCGCGGGAGGCCCAGGTGGCCAGCACCACTGTGACCATATTCTTCGTCTCCCTCGGTGGGCTCGCGGTGACCGCGGCCATTGCCTGGCTGGTGGCAGGGCAGATTCTCAGGCCGGTCCGGGAGGTCCGGCGCGTGGCTGCGGATATTTCCGAATCGGATCTGACGGCCCGCGTCCCTGTCCAGGGGAACGACGACATCGCTGCTTTGGCCATCACGTTTAACACCATGCTTGACCGCCTCGAAGCGGCGTACCGGACCCAGAGGGCGTTTGTTGATGATGCCTCGCACGAGCTCCGGACACCCATCACCGTTATCCGCGGGCACCTGGAGCTGATGTCCGACAGCCCGGCGGAGAGGACGCGGACGCTGGCGCTGGTGGATGACGAGCTGGCCCGGATGGGGCGCATTGTTTCCGACCTTCTGCTGCTGGCCAAAGTCGACCGGCCCGGGTTTACCCAGCTGCGCAGCACGGACGCAGCCGCCCTGCTGTTGGACATTGAGGCCAAGGCGCAGGCCCTGGGGGCGCGGGGCTGGCCCATCCTGGAGATCGCTGAGGGCCGGGTCAGTCTGGATCCGCAACGCATCACGCAGGCTGTACTCCAGCTTGCCACCAATGCCTGCCAGTATTCGGCGGAAGGCAGCACAGTGCACCTGGGCTCTCGCTTCGAGGGGGCAGGGCCGCACCGCAAATTCCTGATCTGGGTGTCGGACGAAGGAATCGGCGTAGGAGCCCAGGAGGCCGCCCTGATTTTCGGACGCTTCCACCGGGGCGAGGCTGCGCGCGGCGCCGACCGTTCCAGGCCGGGTGCCGGGCTGGGACTGGCGATTGTCCGCAGCATCGCCGAAGCGCACCAAGGCACCGCCTGGCTCCGCAGCACTGAAGGACAGGGTGCAACCTTCGGGATGACCATTCCGGCTCCGGAGCCCGGCCCGGGCGAGGAAGCGCTGAACGACAGAAAGGGCAGCCATGAGCCGGATCCTGATCGCTGAMGEVTAVLERPLPKAPAREPRSLAPQGRLGSRVPARWRIAAWIVLTTALTLLAVLLTVRSLTLNQARTQAHQAIEQELQEFRAFAKEGVDPTTAKPFTSIEKMLERYLSRQSAASGEVILGSVGGRVLYTPSGAMGTPVTGHELPKDEGLLNGIRSGQDATGIAQTSAGEMHWARLPIESGSDTGYLIVGDYMAPREAQVASTTVTIFFVSLGGLAVTAAIAWLVAGQILRPVREVRRVAADISESDLTARVPVQGNDDIAALAITFNTMLDRLEAAYRTQRAFVDDASHELRTPITVIRGHLELMSDSPAERTRTLALVDDELARMGRIVSDLLLLAKVDRPGFTQLRSTDAAALLLDIEAKAQALGARGWPILEIAEGRVSLDPQRITQAVLQLATNACQYSAEGSTVHLGSRFEGAGPHRKFLIWVSDEGIGVGAQEAALIFGRFHRGEAARGADRSRPGAGLGLAIVRSIAEAHQGTAWLRSTEGQGATFGMTIPAPEPGPGEEALNDRKGSHEPDPDRPGPT0004100_961DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-29_03894423hypothetical proteinATGAAGGTTTCTTCATTCCCGTTTCATCAGCGCCTCATTAAGGCCTGCAACGATAAAGGCATGCTCATGATGCGACGCGTAATCACAATGGCAGCCGTGCTGGTGATCCCGGTGCTGCTCGCTGTGGCAGGAAGCCTGCTCGCGGCACCTGCCGGGCCGCCGGCCATTGACTCACAGCCTGTCCGTCTGGGGCCCGGTCCGGACGGTCTGCAGGCACCGGGACTGGAGCCCACGGCTCCGGCTCCACCGGAAGAGTCGCCGCCCGCAGCCCCTGATCAGCCGACGCCTGCTGAACCCGATCCCGCCCCCACCGCGTCGCCTGCGGTGCCGCCGGCGCCAGCTGCACCGCCGGCACCGCCGGCGCCAGTAGGGCCGCCGGTCATCATTGACGACGACGACTACACCGACGACGGGGACGAGTGAMKVSSFPFHQRLIKACNDKGMLMMRRVITMAAVLVIPVLLAVAGSLLAAPAGPPAIDSQPVRLGPGPDGLQAPGLEPTAPAPPEESPPAAPDQPTPAEPDPAPTASPAVPPAPAAPPAPPAPVGPPVIIDDDDYTDDGDENANANANANA
D1-29_03895444aroQCOG07573-dehydroquinate dehydrataseATGAACGATTCCCGCGGCACCATCCTTGTGATCAACGGGCCCAACCTGAACCTCCTGGGTACCCGTGAACCGGAAAAATACGGCATCTCCACGCTGGCGGATGTGGAGGAGTTGGCGCGCACCACGGCCAAGTCCCACGGCTTCACCGCGGAGTGCGTCCAGTCCAACCACGAGGGTGTCCTGCTGGACACCATCCATGCTGCCCGGGGCGCCGCCGTCGGAATTGTCATTAACGCCGGCGCCTTCACCCACACGTCCGTTGCGCTCCGCGACGCCCTGGCCGCCGTTCAGCTGCCTGCCGTGGAAGTCCACATCACCAACGTGCACCAGCGCGAGGAGTTCAGGCACCACTCCTTCCTCTCCCCGGTCTGCACTGCGGTTATCGTAGGGGCCGGCGTTTTCGGTTACCGGCTCGCCATCGACTACCTGGCGGAAACGCTGTAGMNDSRGTILVINGPNLNLLGTREPEKYGISTLADVEELARTTAKSHGFTAECVQSNHEGVLLDTIHAARGAAVGIVINAGAFTHTSVALRDALAAVQLPAVEVHITNVHQREEFRHHSFLSPVCTAVIVGAGVFGYRLAIDYLAETLPGPT0012905_328DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786NANA
D1-29_038961083hypothetical proteinATGGCCGCCGGCCAGGGGCTGCCGTCGGAGCCGCAGCCAAAACCCATCCCGGACGGGGGCGCCACGGCCAGCCGTACGGCGGCGTGGTACCGGCATTTTGGGTTGGTGGAGGCGCCTGGGTCCTCCCCCTGTTACGCCGAGTGGACACTGGGCCTGGCCGATGACCCGCCGCTGATCGCCCGGATCGATGCGTGGCCGCACGACAAGCGCCAACCCAACCTGCTGCTGGCCGCCGCACGCTATCTGGGTGCCCGCGTAGGACCCTATGCGCAGTTCCGCCAATTTCTGGAAGACCATTGGGCGGACATCAGCAGGATCGTCCTCTCGCGTTCCACGCAGACCAACGAGGCAGGCCGCTGCGCCACTCTGCTGCCCTCCCTCGCTGCCATTGCAGCCGCCGAAGGCAGGCCGTTGGCGCTCCTGGAGGTGGGTGCCTCAGCCGGCCTCGGGCTGTTCCCGGACCGGTACGGCTACGAGTTCGACGACGGCACGTCCGTCACGCGGCTTTCCCCGGAACAGCCGTCCCGAACGGACGTAGTGCCTCCTGTGCTGCAGTGCACCACCAAGGGCCCTGTGCCCGTGCCTGCCCACCTCCCGCCCGTAGCCTGGCGTGCAGGAATCGACCTGAACCCGCTGGATATCAGGAATTCCGACGACGTCGCGTGGCTGGAAGCACTCATCTGGCCGGAGCAGGAGTTCCGTCTCAGGAGACTGCGCCAGGCTATCGCCATCGCCCGGGACGAACCACCACTCCTGGTAGCAGGCGACCTGAACGACCGGCTGGTTGACGTGGCAGCCCAAGCGCCGGCCGACACCACCCTGGTGGTTTTCCACAGTGCCGTGATGGCCTACCTCAGCGCCGAGGGAAGGTCCCCGTTCCGCAGGACCATCCGGCAGTTGGCGGCCGGCAGGGGATGCCACTGGCTGTCCAACGAAGGGCATATGGTGATTGACCAGGAGGACGGCTCCAGCGTGGTGCCGGAGGTGGATCCGCAGCTGATCGCGGGCAGGTTCCTGCTCACCCACAACGGCATTCCAGAGGCCATCACAGGACCCCATGGCCAAAGCCTCGAGTGGCTCTGAMAAGQGLPSEPQPKPIPDGGATASRTAAWYRHFGLVEAPGSSPCYAEWTLGLADDPPLIARIDAWPHDKRQPNLLLAAARYLGARVGPYAQFRQFLEDHWADISRIVLSRSTQTNEAGRCATLLPSLAAIAAAEGRPLALLEVGASAGLGLFPDRYGYEFDDGTSVTRLSPEQPSRTDVVPPVLQCTTKGPVPVPAHLPPVAWRAGIDLNPLDIRNSDDVAWLEALIWPEQEFRLRRLRQAIAIARDEPPLLVAGDLNDRLVDVAAQAPADTTLVVFHSAVMAYLSAEGRSPFRRTIRQLAAGRGCHWLSNEGHMVIDQEDGSSVVPEVDPQLIAGRFLLTHNGIPEAITGPHGQSLEWLNANANANANA
D1-29_038971185COG0265Serine proteaseGTGTTTGGCTTGACTGTTCTGGACCTGGTGCTGATTCTGGCGCTGCTGTCCTACCTGATCTACGGCCTGCGCAACGGCTTCCTGGTGACACTGGGCGGGATCGCGGGTTTCGCCGCCGGTGCCATGGCGGCGTTTTTCGCCGTTCCCCTGGTCAGCGAATTCGTGGACGACTCCGCGTGGAGGCTTACTGCCATTGTGGCGTCCACGGTGGTGCTGGTGGCTTTAGGGCACGGCTTGGGAACCATGATCGGCCGGAAAATCCGCGGCGCAGTGCGGATCACGCCGCTGCGTGCGGTGGACCGGCTGGTGGGCGGAGCGGCCAACCTGGTGGTCTCAGCCTTGGTCATGTCAATGCTCGCGTTCAGCATCAGTTCCCTGGGCGTACCGTTTGTGTCACAGCCGTTGGCCGAATCCAAGGTCATCCGGTTCATCGATGGGCTGACCCCCAACCCGGTGAAGGCCACCATGGCCCAACTCCGTTCCACGGTGATCGGCAACGGCATTCCCACCCTCCTTGAAGGCCTGGATCAGGGTGCGCCTTTGCCCGTTCCGAACGCCAGCACCGACACACCGGCGCTTAACCGCGCCGCCGAATCCGTGCTTAAAATCGCCGGCACAGCCTACGAATGCGGCCAGAACCAGACAGGGAGCGGCTTTGTGGTGTCTCCCGGGCGGGTTGTGACCAACGCCCATGTTGTGGCGGGCGTGTCGCAGCCGGTGGTGGAGATCCTGAACGGCGGTGCCATGCCCGGGCGGGTGGTCTACTTCGACACCAAGAACGATCTCGCAGTCCTGGCGGTTGACGGCCTGCCCACAGAACCGCTGGCGCTCAGCCCTGACCTCCCGAACGGAAGCCCGGCTGCCTTCGCTGGGTATCCCCATGGCGGGCCCTTCCAATCCAAGCCCGCAACAGTCCAGGACATCACCACCGTGCTGGTCCCGGATATCTACGGCAACAACTCCTCGCCCGAGGAAATCTACCGACTGGCAGGGGATATCCAGCCCGGGAATTCCGGCGGGCCACTCCTCACCACAGACGGGCTGGTTGCCGGGGTGATCTTTGCCAAGGCAACCTCGGATACGGAGATGGGTTTCGCCATCACCATGGATGACCTCACGCCCGTTGCCGCCCAGGCGCCAGCGATGAACGCCCCGGTGTCCTCCGGGCAATGCATCCAGAAGTAGMFGLTVLDLVLILALLSYLIYGLRNGFLVTLGGIAGFAAGAMAAFFAVPLVSEFVDDSAWRLTAIVASTVVLVALGHGLGTMIGRKIRGAVRITPLRAVDRLVGGAANLVVSALVMSMLAFSISSLGVPFVSQPLAESKVIRFIDGLTPNPVKATMAQLRSTVIGNGIPTLLEGLDQGAPLPVPNASTDTPALNRAAESVLKIAGTAYECGQNQTGSGFVVSPGRVVTNAHVVAGVSQPVVEILNGGAMPGRVVYFDTKNDLAVLAVDGLPTEPLALSPDLPNGSPAAFAGYPHGGPFQSKPATVQDITTVLVPDIYGNNSSPEEIYRLAGDIQPGNSGGPLLTTDGLVAGVIFAKATSDTEMGFAITMDDLTPVAAQAPAMNAPVSSGQCIQKNANANANANA
D1-29_03898678crpCOG0664CRP-like cAMP-activated global transcriptional regulatorATGGACATCGAGGTACTGCGCCGAGCACCCCTTTTCGCCACGCTCGACGACGAAGCATTCCGTCTGCTGACGGATGAGCTGACCGAGGTGGACCTTTCCCGCGGTGCATCGGTTTTCCGGGAAGGCGACCAGGGCGACCAGCTCTACTTCATCGTCTCCGGCAAAGTGAAGCTGGGCCGCACGTCCCCGGACGGCAGGGAATCTCTCCTGGCCATCCTGGGCCCGGGCGAGCTGTTCGGTGAGATGGCCCTCTTTGACCCCAGCCCCCGAACGGCCACAGCAACCGCAGTATCTGAAACCCGCCTTGCGGGGCTCAGGAACGAAAGCCTCAACGCGCTGCTCCGCACCCGTCCCGAGGTTTCCGCGCAGCTGCTGCAGGCCCTGGCCCGACGCCTGCGCCGCACCAACGATTCCCTCTCCGACCTGGTGTTCTCGGATGTTCCCGGCCGGGTTGCCAAGGCTCTCCTGGATCTGGCAGACCGCTTCGGCCGCCCGGCAACCGATGGCGTCCTGGTGGCCCACGAACTCACACAGGAAGAGCTGGCCCAACTTGTCGGCGCGTCCCGTGAAACGGTTAACAAGGCCCTGGCCGAGTTCGTCCAGCGCGGCTGGCTCCGCCTCGAAGCCCGCGCCGTAGTGATCCTGGACATGCAGCGCCTGCGCCAGCGCTCCCGCTAAMDIEVLRRAPLFATLDDEAFRLLTDELTEVDLSRGASVFREGDQGDQLYFIVSGKVKLGRTSPDGRESLLAILGPGELFGEMALFDPSPRTATATAVSETRLAGLRNESLNALLRTRPEVSAQLLQALARRLRRTNDSLSDLVFSDVPGRVAKALLDLADRFGRPATDGVLVAHELTQEELAQLVGASRETVNKALAEFVQRGWLRLEARAVVILDMQRLRQRSRPGPT0015075_2766DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
D1-29_03899180hypothetical proteinATGTCTGTGGCAATGATCGTTGTATTGGTCGTCCTGGGCTTGGCGTCGTTAGCCGGTGTTGTCGGCACGGTGGTCCTGGTGATCCGTGACGGGCATGGGCAGATTCCGCTGGAGCCTTCCGTCAGGCCGTGGACGGCAGGCCATCTCCCCAGCCGCCCGTACTCCACCATCCGCCTGTAGMSVAMIVVLVVLGLASLAGVVGTVVLVIRDGHGQIPLEPSVRPWTAGHLPSRPYSTIRLNANANANANA
D1-29_039001173dapX_2COG0436putative N-acetyl-LL-diaminopimelate aminotransferaseATGAGACCCAGGCCCACCCGACTAAACCATGTAGCGGGCTTCAACATTGATACGGTGGCCGCTTCCGCAGGTGATGATCCGGAGATGTTGCGGCTGGAGAATCTGGACACGGACCTGCTGCCCCCGCCGGCAGCGATTGAAGCCACCCGCGCAGCAGTGGGCCTGGATTCAGCCAATTCCTACCTGCCGTTTACTGGGCAACTGGCCGCCAAGGAAGCCGTCGCCGGATATGTCGCCGCACGGACCGGTGTCAGCTATGACCCGGCAACGGAAGTCATCCTGACCTCCAGCGATGGAGACTGCCTGCTTGATGCCCTGCTGGCCCTGACTGATCCCGGCGATGAAATCGTGCTGACGGATCCAACGTATGCGGGCATGCTCAACCGGGTCTACCTGGCCGGAGGTGTGCCCAGGCTGGTACCCATGACCGTCTCCGCAGGTGCCTGGCGGCTGGACCTTGGTGAGCTGGAGGCAGCCGTGACACCCAAGACCCGGGCGATCTTCCTGCAGAACCCATCGTTTCCCTCGGGGTACCGGCTGACCGAGGACGAATGGTCAGCGATTGCGGGCCTCTGCGTCGGACGGGACCTCTGGCTGATCTACTGGTCCCTGATGGAAGGGATCGTTTTCGATGCCCAGCCAATCCTGAGTCCTGTGGCCTATCCGGGAATGCGTGAGCGCACCATTATCGTGGGATCGGCGTCGATCGAGCAGCGGATGATCGGCTGGCGCATCGGCTGGATTCTGGCTCCGAGGGCAGTGATGTCCGATCTCGCCGTCGTCCATATCTACAACGGCATCACTCCCGGCGGCATTGCACAGGCGGGCCTGATTGCTGCCCTCAGCGACGGTGATGACAGCTTTGCCCAGTGCGTTACCGAATGGGAGCGCCGCCGCAATGCCCTCACCACTACGCTGCAGGGCTTCGCCATGATTCCGGCCGCAGGCGGTTGGTCACAAATCGTGGATACCGTCCATCATGGCGTGGACCCGGGCGACCTCTCCCGGGTCCTGTTGCGGCACGGCGTGGCTGCCACGGCCATGACGGGCTGGGGCGGGCCCGTGGCGGACAGACACCTCCGGCTGGTGTTCAGCAACGAGCCTGTGGAACGGATCCAACTGCTGGGCGACAGGTTCCGGGCAGCCGTTCGGGAGGCCGGCGGCCGCGCGTAGMRPRPTRLNHVAGFNIDTVAASAGDDPEMLRLENLDTDLLPPPAAIEATRAAVGLDSANSYLPFTGQLAAKEAVAGYVAARTGVSYDPATEVILTSSDGDCLLDALLALTDPGDEIVLTDPTYAGMLNRVYLAGGVPRLVPMTVSAGAWRLDLGELEAAVTPKTRAIFLQNPSFPSGYRLTEDEWSAIAGLCVGRDLWLIYWSLMEGIVFDAQPILSPVAYPGMRERTIIVGSASIEQRMIGWRIGWILAPRAVMSDLAVVHIYNGITPGGIAQAGLIAALSDGDDSFAQCVTEWERRRNALTTTLQGFAMIPAAGGWSQIVDTVHHGVDPGDLSRVLLRHGVAATAMTGWGGPVADRHLRLVFSNEPVERIQLLGDRFRAAVREAGGRAPGPT0020110_3798DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020110-aspB-K00812NANA
D1-29_03901912hypothetical proteinTTGCCACAGCTCGCCAGACGCCTTTTTGTACTCCCACCCGATCTTGAAGGGGCAGCACAAAGCTGGCTCGAACACGGCGAGCGGACTCCGCGTGCCGCCCGCCTTGCGTCGTCGGTAGTCCTGCTGCGCGATTCCCCCAGCGGCCTGGAAACCTGGCTTGGATACCGTCCCGGTTCCTCGCCGCTGGGGGTCCTCGCGTTTCCCGGAGGTTCCCTGGACGCGTCCGACGACGATCCCGTCGGCTGGCTGGGTCCCTCACCCCAGTACTGGGCCGAGCAGATGGGAACTGACGACGTCGGCCTGGCCCGGCGCCACGTGGTGGGCGCCATCCGGGAACTCTTTGAGGAAACCGGTGTGCTGCTGGCCGGGCCAGACGCAACCACCACTGTCGAGTCCACGTACGTCCAGGAGTGGATGCGCGCGCGGGAGGCCGTGTCAAACCAGGAGAAATCGTTCACCGAAGTACTGGCGAAGCGTGGCCTTTCGCTGCGCACCGACCTCCTGAAATCCCTGGTCAACTGGCGCAGTCCGGACTTCGCGCACTTTCGCTTTGATACCCGCTATTTCGCGGCAACAGTGCCCATGAACCAGGAACCCACCCTCTTGGAGAGCAAGGGCGTGTGGGGGCGCTGGGTGAGCGCCTCCAAGGTCATCGCGGAGCGGGACACCACAGCGCTGGGCGATGAGGTGGGCCAGGAAAACACGGTTGGCCTTACCCTGGGCCAATTGCTGGTGCCCGGATCGGAGATCATACTCGAGAAAATGGCCGCCGCCAACGGCTGCGTCGCCTACCTCAGCTACAAGCGCAAGGCCCACGTCTACCAGCCCAGGCTGGTGCAGGAAGACGGCAAGCTGATGCTTGAGGTGGAAGCTGCCAAGACCGTAGCAGGCGAGCCGCAGCGCGAACGCTAAMPQLARRLFVLPPDLEGAAQSWLEHGERTPRAARLASSVVLLRDSPSGLETWLGYRPGSSPLGVLAFPGGSLDASDDDPVGWLGPSPQYWAEQMGTDDVGLARRHVVGAIRELFEETGVLLAGPDATTTVESTYVQEWMRAREAVSNQEKSFTEVLAKRGLSLRTDLLKSLVNWRSPDFAHFRFDTRYFAATVPMNQEPTLLESKGVWGRWVSASKVIAERDTTALGDEVGQENTVGLTLGQLLVPGSEIILEKMAAANGCVAYLSYKRKAHVYQPRLVQEDGKLMLEVEAAKTVAGEPQRERNANANANANA
D1-29_03902534hypothetical proteinATGAGCACCCCCTCAGACACCACGTCCGGCGCGGCAACGGCGCCCATTTCCGCCGTCGAGCAGCGGCTGGCCGAACTCGGCCTAACCCTCCCCGAGGTACCGGCTCCGGTGGCCGTTTACGTGCCCGCGATCATCTCGGGCAACCACGTTTACACCTCCGGCCAGCTGCCGTTTATTAACGGCAAACTCGAAGCAACGGGCAAAGTGTCCACCGGCACCGAGGGCTACGCTGACGAACCCACTGTTTCGCCGGAAGACGCCCACCGCTACGCCGCGGTGTGCGCGGTGAACGCCCTGGCAGCAGTCAAAAGCGTGATCGGCGATCTTGACCGCATCACCCGGATCGTCAAGGTTGTGGGATTCGTCTCATCGGATCCGTCGTTCACCGGCCAGCCCGGTGTTATCAACGGCGCGTCCGAACTCCTGGGCAGGGTCCTGGGTGAGGCGGGGCAGCATGCCCGCTCCGCCGTCGGCGTTAATGTGCTGCCGCTCGACTCTCCGGTGGAACTCGAACTGATTGCGGAATTCAGCTAGMSTPSDTTSGAATAPISAVEQRLAELGLTLPEVPAPVAVYVPAIISGNHVYTSGQLPFINGKLEATGKVSTGTEGYADEPTVSPEDAHRYAAVCAVNALAAVKSVIGDLDRITRIVKVVGFVSSDPSFTGQPGVINGASELLGRVLGEAGQHARSAVGVNVLPLDSPVELELIAEFSNANANANANA
D1-29_03903156hypothetical proteinATGACCAAATGGGAGTACGCCACGATTCCGCTCATTATTCACGCCACAAAGCAGATTCTTGACCAGTGGGGAGAGGACGGCTGGGAGCTCGTCCAGGTAGTCACAGGACCTGACGGCAACGGCCTTGTTGCCTACCTGAAGAGGGAGAAGCAGTAGMTKWEYATIPLIIHATKQILDQWGEDGWELVQVVTGPDGNGLVAYLKREKQNANANANANA
D1-29_039042286ponA1COG0744Penicillin-binding protein 1AGTGACTCGTAAGAACCCCATTTTCGACACGGCCACTACCCTCGGAAAGATTCTTGGCTTCCTTGGCGTGAGCGCTATTTGTGGTGTCCTGGTGGCAGGCCTGCTGGTTCCGGCCGCGGCTGTTTCCGGCAGCACCGCCAGCGGTTCCATCGAGTTTTTCGACGCTCTTCCGGCAGAGCTGAAGGTGGACCCGCCCAGCCAGTCCACCACCATCCTGGCCGCAGACGGCAGCGTGATCGCCAACCTCTACACGCAGAACCGGACCAAGGTTTCCCTGGACCAGATCTCGCCGCTTATGAAGGAAGCTGTCATCGCCGTTGAGGACAGCCGGTTCTACGACCACGGTGGCGTGGACACCACGGGTATTCTCCGAGCCCTGGTCAGCACGGCCCGTGGAAACAGGCAGGGTGCATCCACCATCACCCAGCAGTACGTGAACAACGTCCTTAACTCCAACCTCGAGGCCGAGGGAAACATCGAGGACATCAAACTCAACGGCAGCCTCAACAAGGGCGTTGGGGACAAGCTGCGCGAGATGAAGCTGGCCATCGCGCTGGAGAAGGAATACAGCAAGGACCAGATCCTTGAGGGTTACCTCAACATCGTGTTCTTCAACCGCGACGCCTACGGGATCGAGGCCGCGTCCAAGCTGTTCTTCAGCACCAGCGCAAAGGACCTTACGCTCCCCCAGGCGGCCCTCCTGGCCGGCCTGGTCAACAGCCCCAGTGCCTTTGACCCCCTCACCAACCCTGACAACGCCAAGGTGCGGCGGGATCTGGTACTGGGCCTGATGCTGAGCCAGAACAAGATCACCCAGGCGGACCACGATGCGGCCGTGGCGACTCCGGTGGAGCCCAAGGTCACCCCGGCCAAGCAGGGCTGCGCCTACGCCGCCACGGCACCGTACTTCTGTGACTACGTGCTGCACCTGCTGCTGAACAACCCGGCCTACGGTGCGGATGCCAAAGAGCGGGAAAGAAGGGTCTTCGGCGGCGGCCTGACCATCACCACCACACTGGACCCGAACGCGCAGGCCGCCGCGCAGGCCCAGTCCGATGCCTCCGCCGGCGCCAACCCCGACAAGTGGGGTGCGGCCATGGTGTCCGTGCAGCCGAACACGGGCAAGATCATCTCGATGGCGCAGAACACCTCGTTCCTCCCCGCGGACGGCAAGTTCGATTCCCAGGTGAACTTCAACGTGGACAAGCTGGACAAGGACGGCAACGACCTCAACGGCCTGGGCGGCGCCCAGCCAGGCTCCACCATGAAGCCGTTTACGTTCGCGGAATGGCTCAATGAGGGCAAGTCCATGAACACCGTGGTCAACGCCGCCCAGCGTGTCTATCCGCTGAACTTCAGGTGGCGGAACTCCTGTGGTGTCACCACGGGTGGGTACAACACCGCCGAGAAGGGCCTCGGCGCCGCCGACAACCTCCAGAATGCAGGGGAAGGTTACTACCGTCCCATGACGGTGCTGGAAGGCCTGTACAACTCCATCAACACAGCCACCTTTGCTTCGGCAGCGCAGTTGGACTTCTGCGGCATCCAGAAGATCGTGGACGCAGTGGGGCTGCACGAAGGCCTGCCGGATGCCGAGAATGGAGTTCCCAACCCCAAGGTGGACATGTTTACCTTGAGCAACCTTCTGGGTTCCAGGCAGACGGCACCGCTCACCATGGCCAGCGCCTTTGCCACCTTCGCCAACGACGGAAAGTACTGTGAGCCGATCGCCATCAGCTCCGTGACTGACCAGACCGGGGCGCAACTGCCGGCCCAGTCCTCCAACTGCCGTGACGCCCTCAAGCCTGAAGTGGCCCGCGGCGTGAACTATGCGCTTCAGGAAGTCCTGAACCAGGGCTCAGGTTCGCTGATCAAACCGCGGCTGTCCACCAAGACCAACTTCCCTGTGGCTGCCAAGACCGGAACGTCCAACTTCAACGAGTCCACCTGGGTGGTCGGCTACACCTCGGGTCTGGCCACCGCAGCCTGGTTCGGCGACCCTCTGGGCGACCAGAGGCGGCCGGGCCGGAACCTGTCCTTCAACGGCCAGTTCTACGAAAACCTGGACGGCTACATGATCGCCGGACCAATGTTCTCCAAGTACATGGCGCAGGTTGCTCCGGCCTACGGCACCAATCCGTTCCCGGCACCGCCGTCGAACCTGCTGGGTGGCGGACCGTCGAGGTCCGGCCCGGCACCCACCACGCAGGCCACGCAGGCTCCGCAGCCGTCCACGCAGCCGTCGGCTGAGCCGAGCAAGCCCGGCAACGGCAACGGCAACGGCTAGMTRKNPIFDTATTLGKILGFLGVSAICGVLVAGLLVPAAAVSGSTASGSIEFFDALPAELKVDPPSQSTTILAADGSVIANLYTQNRTKVSLDQISPLMKEAVIAVEDSRFYDHGGVDTTGILRALVSTARGNRQGASTITQQYVNNVLNSNLEAEGNIEDIKLNGSLNKGVGDKLREMKLAIALEKEYSKDQILEGYLNIVFFNRDAYGIEAASKLFFSTSAKDLTLPQAALLAGLVNSPSAFDPLTNPDNAKVRRDLVLGLMLSQNKITQADHDAAVATPVEPKVTPAKQGCAYAATAPYFCDYVLHLLLNNPAYGADAKERERRVFGGGLTITTTLDPNAQAAAQAQSDASAGANPDKWGAAMVSVQPNTGKIISMAQNTSFLPADGKFDSQVNFNVDKLDKDGNDLNGLGGAQPGSTMKPFTFAEWLNEGKSMNTVVNAAQRVYPLNFRWRNSCGVTTGGYNTAEKGLGAADNLQNAGEGYYRPMTVLEGLYNSINTATFASAAQLDFCGIQKIVDAVGLHEGLPDAENGVPNPKVDMFTLSNLLGSRQTAPLTMASAFATFANDGKYCEPIAISSVTDQTGAQLPAQSSNCRDALKPEVARGVNYALQEVLNQGSGSLIKPRLSTKTNFPVAAKTGTSNFNESTWVVGYTSGLATAAWFGDPLGDQRRPGRNLSFNGQFYENLDGYMIAGPMFSKYMAQVAPAYGTNPFPAPPSNLLGGGPSRSGPAPTTQATQAPQPSTQPSAEPSKPGNGNGNGNANANANANA
D1-29_03905948ypbGCOG1408putative protein YpbGATGGTAGCCACCTCCGCCTTGGCCAGCCGCGTCCGGAACATCGGGCGCGGCTTTGCCGTCACCGCCGCCGCGGCATCCGCCGCAGGGCTTGCCGCTTTCGGATACGGGCTGTGGGAGAAGAACCAGTTTGTCCTGCGGGAGGAATCCCTGCCCATCCTGCCCGAGGGAGGGGCCCCGTTCCGCATCCTGCACCTGAGCGACATCCACTTCGTTCCGGGCCAGGACACGAAAGCCGCCTGGCTGCAGTCACTGGCGTCGCTGGAACCGGATCTGGTAGTCAACACGGGCGATAACCTCAGCCACGTCAAGGCTGTGGATCCGCTGCTCAAGGCCCTGCGTCCGCTCCTGGAATTCCCCGGTGTGTTTGTTCCAGGGTCCAACGACTACTACGCCCCCAGCTTGAAGAACCCTGCGTCCTACCTCCTGGGCCCGTCTAAGGCCAAGCGTGACTCCATTGAGCTGGACTGGCCGCGGCTCCGCGCCGGGTTCGGGATGGGCGGCTGGGTTGACCTGACCAACCGCCATCAGTCGCTGGTCCTGAAAGGCCTGCGTTTTGACTTCTCCGGCGTGGACGATCCGCACTTGAACCGTGAACGGTACGCCGGCTGGCCGCGCGGCACCAGGAACCAGGACCAGACCCAGCACCTGCGCGTGGCCGTCATCCACGCCCCCTACCAGCGCGTCCTGGACCACTTCACCCGTGACGGCGCGGACCTGCTGCTGGCCGGCCACACCCACGGCGGCCAAATCTGCATCCCCGGCTACGGCGCAGTGGTGGCCAACTGCGACATTCCCACCTGGCGGGCCAAAGGCCTCAACGACTGGGAATTCGACGGACGCACGACGCCGGTCAACGTCTCCGGCGGTATCGGCACCTCCCGCTTCGCCCCGGTCCGCATTGCCTGCAGGCCGGAAGCCGTCCTGCTGACCCTCACCGCCCGCTCCTAGMVATSALASRVRNIGRGFAVTAAAASAAGLAAFGYGLWEKNQFVLREESLPILPEGGAPFRILHLSDIHFVPGQDTKAAWLQSLASLEPDLVVNTGDNLSHVKAVDPLLKALRPLLEFPGVFVPGSNDYYAPSLKNPASYLLGPSKAKRDSIELDWPRLRAGFGMGGWVDLTNRHQSLVLKGLRFDFSGVDDPHLNRERYAGWPRGTRNQDQTQHLRVAVIHAPYQRVLDHFTRDGADLLLAGHTHGGQICIPGYGAVVANCDIPTWRAKGLNDWEFDGRTTPVNVSGGIGTSRFAPVRIACRPEAVLLTLTARSPGPT0022365_2328DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022365-lpxG-K07098NANA
D1-29_039061827COG1132Putative multidrug export ATP-binding/permease proteinATGGCCAAGCAGACTCCATTCTTCAGATCCATCAGCCGTCTTTATCCCCATGTGAGGCCGATTATCCCCCGGCTGGTAATGGGGCTCCTCTGCGCACTCCTGGCCAGCCTGGTGGCACTCACCATCCCCCAGGTGCTCCGTGTGCTGATCAACGAGTCGCTTCAGCCCGGCGGCGAGGCGGGCGCGGTCTGGAGTGCCGCCATCGTGATCCTGATCCTGGGCATCGCCGAGGCCGGACTGGTGGCCTTGCGCCGGCAGTTTGTCATCAACCCGGCAACCACCGTTGAGACCCGGATGCGGGTCTCCCTTTACGGCCACCTGCAGGACCTGACTGTCTCGTTCCATGACCGCTGGGGTTCCGGCCAACTGCTGTCCCGCGCCATGACGGACCTGAACTTCCTGCGCCGGTGGATGGCCTTCGGCGCGATCATGCTGGTTGTCACCACACTGACGGTCATCATCGGCACTGTGGTGATGTTTACCATGAGTTGGCAGCTGGCCCTGGTTTTCCTGGCCGCCGCAGTACCCATCATGGCCTACGGCTTCCGCTTCCGGACACGGTTCAGCAAGGTAACACGGCGCAGCCAGGACCAGGCTGGTGACCTCGCCACCACGGTGGAGGAATCGGTCCACGGGATCCGGGTCCTCAAAGCCTTCGGCCGCAGCCGAGAGGCGCTGGAGACCTTCAACGAACAGGCCGAGGAACTCCGCCAGACTGAGATTGCCAAGGCCCGGCACCAGGCAACGTTCACCATGGTGGTCACCCTGCTGCCCGAGCTGGCGCTGGGTGCCGGGCTGGTGGTGGGTGTGATGCTCTGTGCCAGCGGTGAGCTCAGCATTGGCGCCCTGGTTGCCTTCTTCGCCACCGCCGCGGTCATCGCCACCCCCGTGGAATTCTCCGGGATGCTGCTGGCCATGGCCCTCACCGCCAAAACCGCCATCGACAGGCACTACGAAGTGATGGACACCGCCAACACCATCACCAGCCCACCAGAGCCCCAAAAGCCTTCGCAACTTCGCGGCGCGCTGAGTTTCAACAACGCGACCTTCGCGTTCGAGGACGCCCCAGACAAGCCCATTCTCAGGAACATCAACCTGGAGATCAGGCCCGGCGAAACCATGGCCCTGGTTGGTGTCACCGGAAGCGGCAAGAGCGCCATGATCCAGCTGGTCCCCCGGCTTTACGACGTCACCGATGGTTCCATCACCATCGACGGCGTGGACCTGCGCGACTTCGACGTCGAAGAACTCCGCCGCGTGGTGGCAGTGGCGTTCGAGGACACCACCCTGTTCTCAAATTCCGTCCGGGACAACGTGCTGCTCGGCGCGCAGGAACGGACCGATGAAGCCCTGGAGGAGGCCCTTGACGTCGCCCAGGCACACTTCGTTTACTCTCTTCCCGAAGGTGTGGATACCCTCATCGGCGAGGAAGGGCTCAGCCTGTCCGGCGGGCAGCGCCAGCGCATCGCCCTGGCGCGTGCCATTGCAGCCAAACCGCGGGTCCTGGTGCTGGATGATCCCCTTTCCGCCCTGGACGTGCACACCGAGGAACTGGTGGAGGCGCGGCTCCGTGAGGTACTCGCAGAAACCACCACGCTGATCGTGGCCCACCGTCCGTCAACCGTGGCGCTTGCCGACCGTGTGGCGCTCCTGGAGGAAGGGCGGATCACCGCCGTCGGGACCCACACCGAACTGCTGGCCCGCAACTCCCACTACCGGTATGTGATTGCCAGCCTGGACCGGGAACCGCGCGACCTGGATTCGGAGCTGTCGGATCTTGAAGAAGAGGCAAACGCAGAGGCAGCCGCTGAGGAGATCAACCGATGAMAKQTPFFRSISRLYPHVRPIIPRLVMGLLCALLASLVALTIPQVLRVLINESLQPGGEAGAVWSAAIVILILGIAEAGLVALRRQFVINPATTVETRMRVSLYGHLQDLTVSFHDRWGSGQLLSRAMTDLNFLRRWMAFGAIMLVVTTLTVIIGTVVMFTMSWQLALVFLAAAVPIMAYGFRFRTRFSKVTRRSQDQAGDLATTVEESVHGIRVLKAFGRSREALETFNEQAEELRQTEIAKARHQATFTMVVTLLPELALGAGLVVGVMLCASGELSIGALVAFFATAAVIATPVEFSGMLLAMALTAKTAIDRHYEVMDTANTITSPPEPQKPSQLRGALSFNNATFAFEDAPDKPILRNINLEIRPGETMALVGVTGSGKSAMIQLVPRLYDVTDGSITIDGVDLRDFDVEELRRVVAVAFEDTTLFSNSVRDNVLLGAQERTDEALEEALDVAQAHFVYSLPEGVDTLIGEEGLSLSGGQRQRIALARAIAAKPRVLVLDDPLSALDVHTEELVEARLREVLAETTTLIVAHRPSTVALADRVALLEEGRITAVGTHTELLARNSHYRYVIASLDREPRDLDSELSDLEEEANAEAAAEEINRNANANANANA
D1-29_039071842COG1132putative ABC transporter ATP-binding proteinATGAGCAGCACCACCTTCGGCACCGCCAACGAGGACAACGCCCACCTCAGCAAGAGCGACAGCAGAACCGTACGGCGCCGGTCCCTCGCCCTGCTGGCCTCCCTGATCCGCCCGGTGCGCCTCAGGTTCTGGCTCACCATCGCCACCGTGGTCCTGTCGCAGGCGGCCCGCGTAGCGGGTCCTGCCCTGATCGCCTACGGCATTGACCACGCCCTGCCCGCCCTGCAGGCAGGTGACAACTTCCCGTTGGTGCTGACCGGCGTCGCATATTTGGCGGCGGCCCTTGCGACGGCGGGACTCACCGCCCTGTACGTAACGTCCACAGCGAGGCTCAGCCAGGCCATGCTGCTGGACCTGCGGGTACGGGTTTTCCGCCACACCCAGCGCCTCAGCCTGGAATTCCACGAAAAATACACCTCAGGCAGGATCATCGCCAGGCAGACCTCGGACCTGGAGGCCCTGCGCGAACTCCTCGATTCCGGCGTCAGCTCACTGGCCTCAGGCATGCTGTTTATGGTCTTCACCGCCGTCACAGTGTTTGCCCTTGACTGGCGAAGCGGGCTGATAGTGCTCGCCGCCGGCGTGCCCATGTACTTCCTGTCCCGCTGGTACCAGAAGCATTCCCAGATCGCCTTTCGCGAATCCAGGGTGGTCTCGGCCCGGCTGATTGTGCACTTTGTGGAAACCATGACAGGCATCCGCGCGGTGAAGGCTTTCCGCAAGGAACGTGAAAACGCGGAAACCTACGGCCAGCTCGCCGAGGATTACCGCCTGGTGACGGTCCGCTCCATCAACCTCAACGGCATCTTCCAGCCGGGCCTGGTGCTGATCGGCAACGTCTGTGTTGCTGCCGTGCTGCTCTTCGGCGGTTTCCGGGTGCTCAACGGAGAGCTGGCCGTGGGCGTGCTGCTGGCACTGATCCTCTCCACCAAGCGCTTCTTCCAGCCCGTGGACCAGATGGCCATGTTCTACAACTCCTTCCAAAGCGCCCAGGCCGCCCTCGAGAAGGTCTCCGGCCTGCTCCAGGAGGTCCCCACCGTGCGGCCGCCCAAGAATGCCGTGCCGCTCCGGGACGCTGAAGGAACCATTGACTTCAAGGGCGTGGAGTTCCGCTACGGGGACGGTCCTGTCATCATCCCCAGCCTGGACCTGCATATCCCCGCCGGGCAGACGGTGGCCCTGGTGGGCCAGACTGGTGCCGGCAAGTCCACCCTGGCGAAGCTGATCGCCCGGTTCTACGACGTCTCCTCCGGCTCCCTGACACTGGACGGTATTGACCTGCGCAACCTGGGCAGCACCGACCTGCGGCGGAACATTGTGATGGTCACGCAGGAAGCGTTCCTGTTCAGCGGCTCCGTGGCGGACAACATTGCCTTGGGCCGGCCGGAGGCTTCGCGCGCGGAGATCGAGGAGGCCGCCCGGGCCGTGGGCGCGCACGGGTTCATTACAGAACTGCCCGAAGGCTATGACACTGACGTCAACAAGCGTGGCGGGCGTGTCTCCTCCGGCCAACGCCAGCTCATCAGCTTCGCACGGGCATTCCTCGCCCGGCCGGCAGTCCTCATCCTGGACGAAGCCACCTCGTCACTGGATGTTCCTTCCGAGCGGCTCGTGCAAACAGGGCTGGCGCGCCTGCTGCAGGCAACCGCGGGCAATAGTTCGGCGCGCGGGGGCCGCACCGCGCTCATCATCGCCCACCGGCTCTCCACGGTGGAAACGGCTGACCGGGTGCTCGTGATCCACGACGGCCGTGTGGTGGAGGACGGTACGCCGGCTCAATTGATCGGTGGCGGCGGACGCTTCGCGGACCTTCATGGCGCCTGGAAGGACTCCCTGGTCTGAMSSTTFGTANEDNAHLSKSDSRTVRRRSLALLASLIRPVRLRFWLTIATVVLSQAARVAGPALIAYGIDHALPALQAGDNFPLVLTGVAYLAAALATAGLTALYVTSTARLSQAMLLDLRVRVFRHTQRLSLEFHEKYTSGRIIARQTSDLEALRELLDSGVSSLASGMLFMVFTAVTVFALDWRSGLIVLAAGVPMYFLSRWYQKHSQIAFRESRVVSARLIVHFVETMTGIRAVKAFRKERENAETYGQLAEDYRLVTVRSINLNGIFQPGLVLIGNVCVAAVLLFGGFRVLNGELAVGVLLALILSTKRFFQPVDQMAMFYNSFQSAQAALEKVSGLLQEVPTVRPPKNAVPLRDAEGTIDFKGVEFRYGDGPVIIPSLDLHIPAGQTVALVGQTGAGKSTLAKLIARFYDVSSGSLTLDGIDLRNLGSTDLRRNIVMVTQEAFLFSGSVADNIALGRPEASRAEIEEAARAVGAHGFITELPEGYDTDVNKRGGRVSSGQRQLISFARAFLARPAVLILDEATSSLDVPSERLVQTGLARLLQATAGNSSARGGRTALIIAHRLSTVETADRVLVIHDGRVVEDGTPAQLIGGGGRFADLHGAWKDSLVNANANANANA
D1-29_03909222hypothetical proteinATGTTGAAGAAGATTGCAGCCGCAGCCGTACTGGCTGGTGCCCTGGCGTTTTCTGCGGCGGCCCCGGCCGTCCTGTCTGCAGGTTCCATTGCTGATACCACGGGTAGCGCCGTAGCAGTAGGCAACTGGCCTGACCCCATGTCCAAGCCCGTCAAGGAGAAGGACAAGGACAAGGACACCACCTACACCACCAACGTCGGCAACTGGCCTGACCCAATGTAAMLKKIAAAAVLAGALAFSAAAPAVLSAGSIADTTGSAVAVGNWPDPMSKPVKEKDKDKDTTYTTNVGNWPDPMNANANANANA
D1-29_039101266hypothetical proteinGTGGGCAACGGATTCGGGGAGAAGCTCCGGGCGGAGCGACTCGAACGTGGGCTGACGCAGGCTGAACTGGGCAAGGACCTGTACTCCCCTAGTTATATTTCTCTGCTCGAGACCGGCCGGAGGGAACCAACGGCCGAAGTAATCGAGGAACTGGCACGCAGGCTGGAGCTGGCGCCCAAGGCGCTGGAAGCCTGGAGTCAGCCAATTTCAGTCAGCGACGCCGAGTACGTCCTGGCCGGACTCTATGCGCGGCAGGCCTGGGACCTGCGGGATTACCCGCTCGCTGCCAGCCACGCCGCCACCGCCGCACAGATCGCTCTGGAGGGCAAGAACACCAGTGCCTGGTGGAACATGACCTACATGCAGGCGGAGTGCCTGATCAAGCAGGGCAACTGGCAGGAAGCCCAGAAGATCATGTATCACCTGCTGGAACATCCCATGGCCACCGAGTCCGTCGGACTGGGCGTACGGGCACGCCAGATGCTTGCGGGCATTTGCCAGGGACAGGGTCAGCTGAGCACCGCCGTGGACCATGCCCTGGAAGCCGTGAAGCTCTGCGCCCAGCTGCCCAAGGGCTCCACCCTCATCATCGGCGCGCACCGTGCGCTGATTGGCGCCCTCGCGGAAAGCGGCCGGCTGGACGAGGCCTGGAAGTACTGCCAGGCCATGAACGAACACGTGGATGAGCACTCGATGTCCCAGCTGGCCGGGGAAGTCGCCTGGGTCATCGGCAACGTGGCCTTTATGCGCCACGATTACCCGGAGGGCATCAAGTACCACGAGCGTGCCGCCAAGATGCTCTCCCCTGCGAACGACATCGAACTCTGGGCCCGCTTCAACAAGGCTTCCGCCGCAGTCCGGCTGTCCTCAGGAATTGTGGAGCCGGAAACGCTCTCCTCGATCGAACGTGCCGAATTGGCGCTGTCCATTGTGGGCGGGAACAAAACAGACCAACTGGAAGTGGCCTTCATCCGTGCGCGCTGGCTTTACCTCACCGGCGACATCGTGGCCGCCGTGGAAAAGCTGCGCGAAATCCACTCCGAACGCTCCGCACTGGCCAAGCACACGGCTGGGGAGGTCTCACTTTTGCTGGGCAAGTCCCTCAAGGCTGCGGGCGAATCGGACGAGGCCCTGGTGTACCTGGAGGAGGCGCAGAAGGCCTTCAGCGCCGCCGGTGCCCAGGACCGCGTCCAACAGGCGTTGGACGCCGTCCTGGAGATCAAGCTGGCCCAGCAGCGGGCTGCGAAGGCTGCCAAAGCCAGCTAGMGNGFGEKLRAERLERGLTQAELGKDLYSPSYISLLETGRREPTAEVIEELARRLELAPKALEAWSQPISVSDAEYVLAGLYARQAWDLRDYPLAASHAATAAQIALEGKNTSAWWNMTYMQAECLIKQGNWQEAQKIMYHLLEHPMATESVGLGVRARQMLAGICQGQGQLSTAVDHALEAVKLCAQLPKGSTLIIGAHRALIGALAESGRLDEAWKYCQAMNEHVDEHSMSQLAGEVAWVIGNVAFMRHDYPEGIKYHERAAKMLSPANDIELWARFNKASAAVRLSSGIVEPETLSSIERAELALSIVGGNKTDQLEVAFIRARWLYLTGDIVAAVEKLREIHSERSALAKHTAGEVSLLLGKSLKAAGESDEALVYLEEAQKAFSAAGAQDRVQQALDAVLEIKLAQQRAAKAAKASNANANANANA
D1-29_03911954purCCOG0152Phosphoribosylaminoimidazole-succinocarboxamide synthaseATGACTGAAAATTACGAAACCGGCAACGCCGCCAAAGCCGGCCTGCACACGAAGACGCTGGACCTGCCGGGATGGCAGCACGTCTACTCCGGCAAAGTCCGGGACCTGTACGAGCCCGTGGACGAAACCATCCGCCAGCAGGTGGGCCAGGACTGCGTCCTGGTGGTGGCGAGCGACCGCATCAGCGCCTTCGACCACGTCCTGGCCAGCGAAATCCCCGACAAGGGGCGCATCCTCACCCAGCTGAGCCTCTGGTGGTTTGACCAGCTGGACGTGGTCCACCACGTGCTTGCCTCCACGGTGGAAGGCGGGGTCCCCGCCGAGGTTGAAGGCCGGGCCATGATCTGCAAGAAGCTGGACATGTTCCCCGTGGAGTGCATCGCCCGCGGCTACCTCACCGGCTCCGGGCTGCTTGAGTACAACGCGTCCGGCACTGTCTGCGAGATCCCGCTTCCGCCGGGCCTGGTGGACGGTTCCCGCCTGGACAGGGCCATCTTCACTCCCTCCGCCAAGGCTGAGGTGGGCGAGCACGACGAGAACATCACCTACGACGACGTGGTGGCAATGGTGGGAGACGACATCGCAGCACGCCTGAGCGAACTGACCCTCAAGATCTACACCACCGCGGAAAAGGTCGCCCTGGAACGCGGCATCATCCTGGCGGACACGAAAGTGGAGTTCGGCTACGACGCCGTCTCCGGCGCCATCACCTTGGGGGATGAGGTGCTCACCCCGGATTCCTCCCGTTTCTGGGACGCCGCCACGTATCAGCCGGGCCAGGCGCAGCCGTCCTATGACAAGCAGTATGTCCGGGACTGGCTGACTTCAGCAGAATCCGGCTGGGACAGGAAATCGGACACCCCTCCGCCGGCACTGCCTGAGGACGTTATCAGCCGGACGCGAAGCCGCTATGTAGAGGCCTACGAAAAGCTCACCGGTAAAACGTTCTCCTAGMTENYETGNAAKAGLHTKTLDLPGWQHVYSGKVRDLYEPVDETIRQQVGQDCVLVVASDRISAFDHVLASEIPDKGRILTQLSLWWFDQLDVVHHVLASTVEGGVPAEVEGRAMICKKLDMFPVECIARGYLTGSGLLEYNASGTVCEIPLPPGLVDGSRLDRAIFTPSAKAEVGEHDENITYDDVVAMVGDDIAARLSELTLKIYTTAEKVALERGIILADTKVEFGYDAVSGAITLGDEVLTPDSSRFWDAATYQPGQAQPSYDKQYVRDWLTSAESGWDRKSDTPPPALPEDVISRTRSRYVEAYEKLTGKTFSPGPT0021565_712DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923NANA
D1-29_039121338purDCOG0151Phosphoribosylamine--glycine ligaseGTGGGCAAAGTACGCTTGGAGACTGTGAAGGTACTCGTCATCGGCCCCGGAGGCCGCGAACACGCCATTGTCCGCTCCCTGCTCGCCGACCCCAACGTATCCGAGGTCCACTCTGCTCCCGGCAACGCCGGTATCAGCAAGCTGGTCCCCACCCACAACATCAACGGCAATGATCCGGACGCCGTCGCGGCACTGGCCACCAAGCTCGCGGTGGACCTAGTGGTGGTTGGCCCCGAGGCCCCGCTCGCAGCAGGCGTGGCGGACGCAGTCCGGGAGGCCGGCATCCCGGTGTTCGGACCCAGCAAGGCAGCCGCCCAGCTGGAGGCTTCCAAAGCCTTTGCCAAGGAAGTCATGGCGGAAGCCGGCGTGCCCACGGCCATGGCAATGGTGGCGGCCAACGCGGAGGAAGCAGCATCCGCCCTTGATACCTTCGGCGCACCCTACGTGGTGAAGGACGACGGCCTGGCCGCAGGCAAGGGCGTGGTGGTGACCAACAACCGTGACGAAGCACTGGCCCACGCGCAGGCCTGCTTCGACGCCGGCGGCACCGTGGTGATTGAAGAATTCCTGGACGGTCCGGAAGTTTCTGTCTTTGTCCTCTGCGACGGCCGCAACACCGTGGCACTGTCCCCGGCACAGGACTTCAAGCGCATTTTTGACAACGATGAAGGCCCCAACACCGGCGGAATGGGCGCCTACACTCCGCTGGAGTGGGCACCGGAAGGCCTGGTCGAGGAGGTCATCGACCGCGTGGCCCAGCCCACCGTCAACGAAATGGCCCGCCGCGGCACCCCCTTTGTGGGCGTGCTGTTCGTTGGCCTGGCCCTGACCTCGCGCGGAACCCGCGTGATCGAGTTCAACGTCCGCTTCGGCGATCCCGAAACGCAGGCCGTGCTGGCCCGCCTCAAGACGCCGCTCGGTGCGCTGCTGCTGGCAGCCGCCAAGGGCGAACTGGACCAGGCGGAAGAGCTTCGCTGGTCCAAGGAAACCGCTGTCGCCGTCGTCGTAGCGTCCGAGAATTATCCGGACACCCCGCGCACCGGTGACCGGATCCGCGGGCTGAAGAAAATTGACGAGCTGGAAGGCGTCCACGTGATCCACGCGGGCACTGCCCTGGACGAGCAAGGCAAGGTGGTCTCGGCCGGCGGCCGGGTGCTCGCCGTGGTTGCGCTCGGCAGCGACCTCGTGGAGGCGCGTGAAAAGGCGTACGACGGCGTGGAACTGGTTCAGCTGGAAGGGTCCCAGTTCCGGACGGACATCGGCGGCAAAGCCGCCCGTGGCGAGATCAAGGTAGCCAACGCAACCGCGTCACTGCCCGTGACAAAGACAAAGGCATAGMGKVRLETVKVLVIGPGGREHAIVRSLLADPNVSEVHSAPGNAGISKLVPTHNINGNDPDAVAALATKLAVDLVVVGPEAPLAAGVADAVREAGIPVFGPSKAAAQLEASKAFAKEVMAEAGVPTAMAMVAANAEEAASALDTFGAPYVVKDDGLAAGKGVVVTNNRDEALAHAQACFDAGGTVVIEEFLDGPEVSVFVLCDGRNTVALSPAQDFKRIFDNDEGPNTGGMGAYTPLEWAPEGLVEEVIDRVAQPTVNEMARRGTPFVGVLFVGLALTSRGTRVIEFNVRFGDPETQAVLARLKTPLGALLLAAAKGELDQAEELRWSKETAVAVVVASENYPDTPRTGDRIRGLKKIDELEGVHVIHAGTALDEQGKVVSAGGRVLAVVALGSDLVEAREKAYDGVELVQLEGSQFRTDIGGKAARGEIKVANATASLPVTKTKAPGPT0021575_349DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945NANA
D1-29_039131578msrP_2Protein-methionine-sulfoxide reductase catalytic subunit MsrPATGATCAAGCTCCTGAACTGGCTCAAGGGCCCCACAGCGCTGGCGGCTCTGGCCGGCGTGGTGGCTGCCGCCGTCGTCCTGTCCGTAGCGGAGCTGATCGGGGCGTTCTTTACGGCGCGGGCAACTCCCGTCATTGCGCTCGGCTCCACCTTCATCGATTTCACCCCGCCGTGGATGAAGGACTTTGCCATCGCCACGTTCGGCACCAACGACAAGGCTGCGCTGTTTGTGGGCATGGGCCTGACCATTTTCCTGCTGGCCTGCGTGCTGGGGGTGGTGGCCTACCGTCGGTGGGTGCTCGGCGTGGCGGGAGTGCTGCTGATGGGCTCTGTGATGGTGGCGAGCGTTGTGACCCGGGCCAGCGTCAAGCCGCTGGATGCCATCCCCACCCTGGCAGGCACGCTGGCCGGGCTGGTGGTGCTGCGCCTGCTGGTTGCGCCGCTCTGGCGAATGAAGGCATGGCCTGATGCCCCTGCGGACACTTCATCCAAGGACCCTGAGCGGCCGGCCAGCACCCGCCGCGGCTTTTTCGCAACCGCCGGCATCACGGCGGCAGCCGCCGGGGTGGCGGCAGTTGGCGGCCGGCTCCTGGGTGCTGCCCGCAGCAACATTAATCAGGCCCGGGGAGCCCTGCGGCTTCCTGAGCCGGTCAGGGCTGCGGCCGCGGTTCCGGCCGGGGTTCAGTCGGCGGCATCCGGCGTCACTCCCTGGGTCACGCCCAACAGTGACTTCTACCGGATCGACACCGCGTTGAGCGTGCCCGAGGTCAACGCCGATGACTGGGAGCTGCGGGTCCATGGACTGGTTGAGGAGGAAATTCGCCTCACGTTCCAGGACCTGCTCGACGCCGACCTCATCGAATCGCACATCACCCTCACCTGTGTCTCCAACCCGGTGGGCGGGAACCTCGCCGGGAACGCCACCTGGCTGGGCCTGCCCATTCGTGAGGTCCTCCGGCGCGCCCGCCCCAAGGACGGCGCGGACATGGTGCTGTCGACGTCGGTTGACGGCTTCAGCGCCTCCACGCCTTTGGAGGTCCTCCAGGATGACCGCGATGCCATCCTTGCCATCGGCATGAACGGGGAAGCGCTGCCGCTGGAGCACGGCTACCCGGTCCGGATGGTGGTTCCCGGGCTGTACGGCTTCGTCTCCGCCACCAAATGGGTGGTGGACCTGGAGGTGACGCGTTTTGAGGACAGCAAGGCCTACTGGACCCAGCGCGGCTGGTCCGAGCGCGGCCCCATCAAAACGATGGCGCGTGTGGAGGTCCCCAAGTCCTTCGCCAAGGTCCCGGCCGGGCGCGTGGCCATCGGCGGGACGGCCTGGGCCCAGACCCGTGGCATCACCAAGGTGGAAGTCCAGATAGACAATACCGACTGGGCCGAGGCAACACTGTCCACGGAGGCGTCCCTGATCACGTGGCGGCAATGGTCCTTCGATTGGGACGCCACGCCCGGGCCGCACTACATCAAGGTCCGGGCCACCGACGGGACAGGCGAGGTACAGACGGACCAGCGCGCTGATCCGGTCCCGGACGGCGCCTCCGGCTGGCAGTCGGTCATGGTCACCGTGGAGTAGMIKLLNWLKGPTALAALAGVVAAAVVLSVAELIGAFFTARATPVIALGSTFIDFTPPWMKDFAIATFGTNDKAALFVGMGLTIFLLACVLGVVAYRRWVLGVAGVLLMGSVMVASVVTRASVKPLDAIPTLAGTLAGLVVLRLLVAPLWRMKAWPDAPADTSSKDPERPASTRRGFFATAGITAAAAGVAAVGGRLLGAARSNINQARGALRLPEPVRAAAAVPAGVQSAASGVTPWVTPNSDFYRIDTALSVPEVNADDWELRVHGLVEEEIRLTFQDLLDADLIESHITLTCVSNPVGGNLAGNATWLGLPIREVLRRARPKDGADMVLSTSVDGFSASTPLEVLQDDRDAILAIGMNGEALPLEHGYPVRMVVPGLYGFVSATKWVVDLEVTRFEDSKAYWTQRGWSERGPIKTMARVEVPKSFAKVPAGRVAIGGTAWAQTRGITKVEVQIDNTDWAEATLSTEASLITWRQWSFDWDATPGPHYIKVRATDGTGEVQTDQRADPVPDGASGWQSVMVTVENANANANANA
D1-29_039141017hypothetical proteinATGCCCCACAACCCCCATGCCACCTTTACCGTGGACTCCGCCGTCGAACTCGCCGTTGTTGAACGCAGCGGCTTTGTGGAGTCCCGGCACATCGGCTCCGCCGTGGTGCTGGCAGCCGACGGGTCCGTGGTGACCGAACTTGGTGACATCACCACGCCCATCTATGCGCGGTCCACGCTCAAGCCGCTGCAGGCGCTGGCCGCCATGCAGTCGGGCGTGCCGCTGCGCGGTGCCCAGGTGGCGCTTGCGTGCGCCAGCCATGTGGGATCCCTGGACCACATGGACGTGGTGGAGGGCATGCTCAAGGCCGCAGGGGCCCGCGAGGACCAGCTCCAGTGCCCCGACGCCTGGCCGCACGACGAGACGGCCCGGGACTGGCTGGTCCGTTCCGGTCGCGGCAAATCCAAGCTGGCCTTCAACTGTTCCGGCAAGCATGCCGCGTTCCTCTGGGCCTGCACCGAAAACGGCTGGGACACCCACAGCTACCTGGAGCCCAACCACCCGCTGCAGCAGCGCATCCGGAGCGTGATCGAGGAATACGCCGGCGAACCGATCGCGCATCTGGGAATCGATGGCTGCGGCGCCCCCGTAGCGGCCATCTCACTCCTGGGGCTGGCCCGTTCCTTTTCGAGGCTGGCCAAGGCCCCGGGGGACAAAAACGCCAGTGCCCGCGCCGCCACAATTGCCACGTCCATGCTGGACTACCCCTGGGCGGTGCAGGGCCGCGGCGAGGCCAACACCATTGTGATGGACGAGTTGGAGGTCATCGCCAAGATTGGCGCGGAAGGCGTCCTGGCCATGGCCACGGCGCAGGGTGTGTCCGTGGCCGTCAAGATGCTGGACGGCAACCTCCGTGCCACCTCGCTGGTGGGCCTGACGCTCCTCGCGGCTGCCGGCGCCGTGGACATCCCCGGCGTCTCCAGCGTCCTGGAGAAAGTCGTGGAACCCGTGCTGGGCGGCGGGCGGCCGGTGGGGAAGATCCGGCTGGGACCTGCCGTCTCGGCACTCCTCGACTGAMPHNPHATFTVDSAVELAVVERSGFVESRHIGSAVVLAADGSVVTELGDITTPIYARSTLKPLQALAAMQSGVPLRGAQVALACASHVGSLDHMDVVEGMLKAAGAREDQLQCPDAWPHDETARDWLVRSGRGKSKLAFNCSGKHAAFLWACTENGWDTHSYLEPNHPLQQRIRSVIEEYAGEPIAHLGIDGCGAPVAAISLLGLARSFSRLAKAPGDKNASARAATIATSMLDYPWAVQGRGEANTIVMDELEVIAKIGAEGVLAMATAQGVSVAVKMLDGNLRATSLVGLTLLAAAGAVDIPGVSSVLEKVVEPVLGGGRPVGKIRLGPAVSALLDNANANANANA
D1-29_03915378hypothetical proteinATGGCTGTAGCGCGCCGTCGTATTGACGTTGAAGAAGGCAAGGCAGCGCTGGCTGCCTGGCAGGAAGCTGCCGCCACGCCGTCGGACGTTTCCGTCCCGCGTACCGTCACCGCAACCGCCGTCCGATACACGCTGGAGGAGGTCACCGCCCGGGCGCCGGGCAACTCGGTGGAGGTGCGGGTGCCGCCGTTCGGGGTCACCCAGTGCGTGGAGGGGCCCCGCCATACCCGGGGTACGCCGCCCAACGTTATTGAGTGCGACGCCGCCACCTGGCTTGCGATGGTGACCGGCCAGTTGAGCTGGGCAGACGCGGTGGAGGCGGGCCGGGTTGCGGCCTCCGGTCTCCGCGCCGACCTCTCCGCCCTCCTCCCCCTCTAAMAVARRRIDVEEGKAALAAWQEAAATPSDVSVPRTVTATAVRYTLEEVTARAPGNSVEVRVPPFGVTQCVEGPRHTRGTPPNVIECDAATWLAMVTGQLSWADAVEAGRVAASGLRADLSALLPLNANANANANA
D1-29_03916231hypothetical proteinATGGTCCGGGCATTCAAGGGCGAAATCACCAACCATGATTCCGCCATCATGCTGGGCGTGGAGGAAGTCTTTGAGGACCAGGAGCTGGAGCGCCTCAGCGATGGCCAGGCGCCCTCGCCAAAGTTCCGGGGCGGCCCGAACCCGGGCGACATCCCCGAGTTCCAGATGAGCAGGAGGTCCCCGGCAGCCGCCGTCCCTGATTCACCCTCAGGCTCTGCAGCGGGCGAATAGMVRAFKGEITNHDSAIMLGVEEVFEDQELERLSDGQAPSPKFRGGPNPGDIPEFQMSRRSPAAAVPDSPSGSAAGEPGPT0001450_11DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-29_039171014hypothetical proteinATGAACAGATTGGTGCCCCTTCCGGAAGCGATGAGAGCGCGGCCCTTTGCCGCCGCGGAGGCTATTCAGGAAGGGGTGTCCGCCAGCAGGCTGAAGGCCGCTGACCTGCTCCTGCCAAGCCGCGGAATCAGGGTTCCCAAGTCCAGCGAACAAAACCTCCATGCCCTCGTCCGATCGCACACCCAACTGCATGCAGATACATTTGCCTGTCTTGTGAGCGCGGCGGAGGTTCACGGCCTCCCACTTCCGCCCTGGGCGGAGTTCAGGCCCGACGGCGGCGCGCCGGTAACTGCCGCCGTCGAACCAGTTCCGTGGGGAAAGAAGAGCGGGGCTCACTTCCGCGAGCCCGGCCGGTTTCTCCATCTCGCACGGCAAGGCGGCGGGACGCTGCCCCGACGCAGAGGCATCGCGGGGCACCGGCTAAAGATCAGGGATGGCGACCTTACGGAAGTCGACGGCCTGCGAGTTACCACGGTGGCTCGAACCTGGGTGGATCTCGGCTCGGTCCTGCCCGTCGACGACCTCATCGTGGCCGGCGATGCGATCGTCAGTGCACACGCAAGGACGTTTGACACCCGGAAAATGGCTCTTGTGCCGCTGGCGGAACTTCGCCAGTTCGTGGAACACGCCAATAGCCTGCACGGAGTTCGCAGGTCACGGATCGCCCTCGACTCATTGCGGGTGGGCGTGGATTCGCCTCCTGAGACCCGGTTGCGCCTCCTTCTGGATGACGCGGGGCTTCCCGAGTTCGTACCGAACTGCCCGGTCGATGACGTCCTTGACCGCCCGGTGTGGACCGATCTGGGTTGCGTCGCATTCCGTACCTGTGTGGAATACGACGGCCTCCATCATTTGACTCCCGAACAGCAGGCGATGGATGCCTACCGGGACCAGCGGGTGACGGAGGCAGGATGGCGTCAGGTGAAGATCAACAGGATCGATATGGAACACGGCCCGGGATGGGTGGCATCGAGGGTCAAGCAGGCGCTCCGGAAGCAGGGCTGGCAGCGCTGAMNRLVPLPEAMRARPFAAAEAIQEGVSASRLKAADLLLPSRGIRVPKSSEQNLHALVRSHTQLHADTFACLVSAAEVHGLPLPPWAEFRPDGGAPVTAAVEPVPWGKKSGAHFREPGRFLHLARQGGGTLPRRRGIAGHRLKIRDGDLTEVDGLRVTTVARTWVDLGSVLPVDDLIVAGDAIVSAHARTFDTRKMALVPLAELRQFVEHANSLHGVRRSRIALDSLRVGVDSPPETRLRLLLDDAGLPEFVPNCPVDDVLDRPVWTDLGCVAFRTCVEYDGLHHLTPEQQAMDAYRDQRVTEAGWRQVKINRIDMEHGPGWVASRVKQALRKQGWQRNANANANANA
D1-29_03918762hcaB_53-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGAACGGCAATCAGAACAGCCCAAGGGTGGCAGTCATCACCGGGGCAGGCTCGGGGATCGGCCGGGCCGTCGCCCGGCTAATGCTGGCTGAAGGGTACGCCGTTGCCCTTGCCGGCCGCCGGGAGCAGCAGTTGCTCGAAGCCGCAGCAGGCCATTCGCAGGCATTGGCTGTACCGTGCGACGTCACCCGGCCCGACGACGTCGAGCGCCTTTTTGAGGCAGCCCGCATGCGGTGGGGGAGGGTGGACGTGCTCTTCAACAACGCCGGGACGTTCGGCCCTGCCGGCGGCGTCGACGAGATCTCCCTTCCGGATTGGGAGGCAACGGTGGCCGTGAACTTGACGGGCTCCATGCTTTGTGCGGCCGCAGCGGTCCGGCTGATGAAGACGCAGGACCCGGGCGGCGGGCGGATCATCAACAACGGTTCCATTGCTGCGCATTCCCCGCGGCCGCAGCGGGTGGCCTACACGGTCACCAAGCATGCCATGACGGGCCTCACCAAGAGTATTGAACTGGACGGGCGTGGCTTTGGCATTACCTGCGGCCAGATCGACATCGGCAACACGGCCACGGAAATCATGGACAACATTGGAGGAGGCCCCGGCGCGCTCCAGGCAGACGGCAGCCGTCGGGTGGAACCAACGTTTCCGGTGGAGGAAGCAGCCCGGGCGGTGCTGCTGATGGCCAACATGCCGCCATCGGCCACCGTAGGCTCCCTGGTAGTAACGGCGGCCGGCATGCCGTTCATCGGACGAGGCTAGMNGNQNSPRVAVITGAGSGIGRAVARLMLAEGYAVALAGRREQQLLEAAAGHSQALAVPCDVTRPDDVERLFEAARMRWGRVDVLFNNAGTFGPAGGVDEISLPDWEATVAVNLTGSMLCAAAAVRLMKTQDPGGGRIINNGSIAAHSPRPQRVAYTVTKHAMTGLTKSIELDGRGFGITCGQIDIGNTATEIMDNIGGGPGALQADGSRRVEPTFPVEEAARAVLLMANMPPSATVGSLVVTAAGMPFIGRGNANANANANA
D1-29_03919615nboRNicotine blue oxidoreductaseATGGGCAATGGCAGCAACACGCGGACAACGGGCGTCCTGCTGGCCGCTGGCGCGGGAACGCGCCTGGGGATGGGACCAAAGGCCCTGCTGCCGTACCGCGGCCGGCCTTTGGTTGAGGCCATCGCCGATGCGTTGCTGGACGGCGGCTGCCGCGAGGTGGTGGTAGTCCTCGGCGCCAGGGCAGCGGATGTCAGCACAACAGCCCACCTTGACCGCTTCCGGACGGTGGTGAACCGCAACTGGCAGTCCGGAATGGGCAGCTCCTACCTGCTGGGAACCAAATCTGCCGACCCCGCGGACCATCTGCTGATTGCCCTGGTGGACCAACCCGGCCTTACCACCCGGACGGTGGGCAGGCTCCTGGCTTTCCACCGGCCAGGACGGATCACCGCTGCTGCATATAACGACGGCGGCCCCGGTGGCGTGCTGCGGCGCGGGCACCCGTTGCTCGTCGACGTCGCGCTCAGGGACGAGGTGGCAGCGACAGTGACGGGCGACGCCGGCGCACGCCTCTACCTTCAGGCCCACCCCGAGCTGGTGGACGAAGTGGATTGCAGCGACCAGTCCACCGGAGAGGATATTGACACTCCGGAGCAGCTCCACCTGTTGGGGTAGMGNGSNTRTTGVLLAAGAGTRLGMGPKALLPYRGRPLVEAIADALLDGGCREVVVVLGARAADVSTTAHLDRFRTVVNRNWQSGMGSSYLLGTKSADPADHLLIALVDQPGLTTRTVGRLLAFHRPGRITAAAYNDGGPGGVLRRGHPLLVDVALRDEVAATVTGDAGARLYLQAHPELVDEVDCSDQSTGEDIDTPEQLHLLGNANANANANA
D1-29_03920648hypothetical proteinATGAGCACTAGAGTCGGCGCCTTTGTGGAGGGGCTTTCTTCCGTGCCGTCAGCGCCTGGCCGCAACAACTTCTTTGATACCGCTGTCCCGGCCAACGCCCAGCGCCGGCGCAACCTGGAAATCTATCTGCAGGAAATGCTGGACCGCTCGCCCAAGGTGCTGCTGCTGGGCGAGGCACCGGGTTTCAGGGGCATGAGGATCACCGGTGTTCCCTTCACGAACCGCACCATGTTCGAGGGGCCAGCCAACCGCTTCGGACTGTTTGGGCCGGGAAAGGGCTATTCGCTGCCACCGGAGGCTTCAGGGGTCGCATCCGAGCCAACCGCAACGGTGATGTGGGAGGTTCTGGCGGAACTGCAATTCCTTCCCCTGCTGTGGAGTGCGTGCCCGTTTCACACCCATCTCGCAGGCCGGCCCCAGTCCAACCGCACGCCCACGGCTGCGGAAGCTAACCTGGGAACTGCTTTCTGGCGGGCGCTGACGGAAGTGTTCCGCATCGAGACCGTGGTGGCTGTGGGCAACGTGGCGCACCGCAGCCTGCTTCGGAGCGGTGTGGACGCGCCGAAGGTGCGGCACCCCTCCCACGGCGGGCGGTCCGGGTTCAAGCGGGGACTGGGGGAGTTGCTCCTCGCCGGTGCGGAGCAGTGAMSTRVGAFVEGLSSVPSAPGRNNFFDTAVPANAQRRRNLEIYLQEMLDRSPKVLLLGEAPGFRGMRITGVPFTNRTMFEGPANRFGLFGPGKGYSLPPEASGVASEPTATVMWEVLAELQFLPLLWSACPFHTHLAGRPQSNRTPTAAEANLGTAFWRALTEVFRIETVVAVGNVAHRSLLRSGVDAPKVRHPSHGGRSGFKRGLGELLLAGAEQNANANANANA
D1-29_03921981iolSCOG0667Aldo-keto reductase IolSATGGAACAGCGCAAATTAGGCAAGACAGGACGGAATGTCTCCATCGTGGGTCTGGGCACCTGGCAGCTGGGTGCCGACTGGGGCAACGTGGACCAGTCCCAGGCCCAGGCCATCCTGGCAGCCTCCGTGGAAGCCGGCGTCACATTCTTTGACACGGCTGACGTCTACGGCGATGGCCTCAGCGAGCAGGCCATCGGCACGTTCCTGAAGGACAACCCCGGGCTTGACATCACCGTGGCCACCAAGATGGGACGCAGGCTGGAGCAGCAGCCGGAGAACTACAGCCTGGCCAACTTCCGGCAGTGGGTTGACCGTTCCCGGCACAACCTCGGCACCGACTCACTGGACCTGGTCCAGCTGCACTGCCCGCCCACCGCTGTGTACAGCAATAACGAGGTCTACGACGCCCTGGACACCCTGGTCTCCGAAGGTGCCATCCGCAGCTACGGCGTCAGCGTCGAGCGTACCGACGAGGCCCTGGAAGCCATCCGCCACAAGGGGACGGCGTCCGTCCAGATCATCCTGAACGCCTTCAGGCTCAAGCCGCTGGACGAGGTGCTCCCCGCCGCCAAGGCGGCAGGCGTGGGGATCATCGCCCGGGTTCCGCTGGCTTCGGGCCTCCTGTCCGGCAAATACTCCAAGGACACGTCCTTCGCTGAGAACGACCACCGCAACTTCAACCGCACCGGAGAATCGTTCGACGTCGGCGAGACGTTCTCCGGCGTGGACTACGAGCTGGGGCTCAAGGCCGTGGCCGAGTTCGAACAGCTTGTTCCCGAGGGGACTTCCACGGCACAGGCGGCCATCGCCTGGATCGCGGCCCAGGACGGCGTCACTACCGTGATCCCCGGCGCCCGCACCGTGGATCAGGCGAAGGCCAATGCTGCTGCAGGTTCAGTTGCACTGGGTGAGGAATTCGACGAGGGCGTCCGCTGGATCTACGACCACTACTTCCGCGAGGCCATCCATCCCCGCTGGTAGMEQRKLGKTGRNVSIVGLGTWQLGADWGNVDQSQAQAILAASVEAGVTFFDTADVYGDGLSEQAIGTFLKDNPGLDITVATKMGRRLEQQPENYSLANFRQWVDRSRHNLGTDSLDLVQLHCPPTAVYSNNEVYDALDTLVSEGAIRSYGVSVERTDEALEAIRHKGTASVQIILNAFRLKPLDEVLPAAKAAGVGIIARVPLASGLLSGKYSKDTSFAENDHRNFNRTGESFDVGETFSGVDYELGLKAVAEFEQLVPEGTSTAQAAIAWIAAQDGVTTVIPGARTVDQAKANAAAGSVALGEEFDEGVRWIYDHYFREAIHPRWNANANANANA
D1-29_039222907hypothetical proteinATGGCTATCGAAATCAATGGCACCCCGGCGGCGGCTGAACCGCGCCCCGGGCAATGCCTGCGGACCTTCCTCCGGGAGCAGGGCACCCTGGGCGTTAAGAAAGGCTGCGACGGCGGGGACTGCGGAGCATGCACCGTTCATGTAGACGGCACTCCTGTCCACAGCTGCATCTACCCGGCCGTCCGGGCCGAGGGACATGCAGTAACCACCATCGAAGGCCTGGCCGCCAGCACCGGGGCAGGGGGCAGCAGCCTTCACCCCATGCAGCAGCAGTTCCTGGAGCGCCAGGGTTTCCAGTGTGGCTTCTGCACGGCCGGGATGGTGATGACGGCCGCCACCTTCACCGAGGACCAGAAGGACAACCTGCCCCGCAGCCTCAAGGGCAACCTGTGCCGCTGCACGGGCTACCGGGCCATCGGGGACGCCATTTGCGGCCACGCCGGGCATCCTGATCCGGCAGGGCAGGGTTCCGGAATCGGCGGCGAAGGCCAGCCGGAGCCCCACCCGGGGCAACTGGGTGACGACGTCCCCGCTCCCGCCAGCCGCGCCATCGTCACAGGCACTGCCCGCTACACACTGGACGTTCCCCTCGACCGGCTGCAAGACGGGCTGCAGGACGGGCTGCACGGGGACCAGCATCAAAACGGCGGGCTATCCGGCGATCAGCTGCAGGGGCTGCTGCACCTGAAACTCGTGCGCTCGCCGCACGCCCACGCCAAGGTCCTTTCCATCGATACGGAAGCTGCGCTGAAGGTGCCCGGGGTGGTGGCAGTGTTCACGCACCAGGACGCTCCGGCCCAGCTGTTTTCCACTGCCCAGCACGAGCTGTACACCGATGATCCGGACGATACCCGGGTGCTTGATGACGTGGTGAGGTTCATCGGGCAGCGCGTTGCCGCCGTCGTGGCCGAATCCGTGGCCGCAGCCGAAGCAGGCGCCCGGGCGGTGAAGGTGGAGTACCGGGAACTTCCGGCCGTCTTCACCCCTCAGGATGCCATCCGTCCCGGCGCGCCCGCCGTCCACGGGGACAAGGACGGTGCTGCCGCCCGAATCGCCCGGCCGGAGCAGAATGTGGTGGCCGAATTGCACTCCGAACTGGGCAGTGTGGAGCAGGGCTTCGCGGCTGCGGACTTTATCCACGAACAGACCTACCGCACGCAGCGCGTCCAGCACGTGGCGCTGGAGACCCACGCTGCCATCGCTTCCCTGGATAAGGACGGGCGGCTGCAGGTGCGCACCTCCAGTCAGGTCCCATTCCTGGTCCGGCGCACCCTCTGCCGGGTCTTCGGCCTGCCTGAGGAACAGGTCCGCGTGGTGGCAGGACGGGTGGGTGGCGGTTTCGGCGGCAAGCAGGAAGTGCTGACCGAGGACATCGTGGCGCTGGCCGCCTTGAAGCTTGGCCGCCCGGTCCAGCTTGAGCTGACGCGCAGCGAACAGTTCACAGCCACCACCACCCGGCACCCGTTCACCATCCAGCTCAAGGCCGGTGCCAGCCAGGAGGGCACGCTGACCGCGCTGCAGCTGGACGTTCTGACCAACACCGGCGCGTACGGCAACCATGGCCCGGGCGTGATGTTCCACGGCTGCGGGGAATCCCTGGCCGTGTACAACTGCACCAACAAGAAAGTGGACGCCCAGGCGGTCTACACCAACACCGTTCCCTCGGGGGCGTTCCGGGGCTATGGCCTGAGCCAGATGTTCTTTGCCATCGAATCGGCCATGGACGAACTCGCCATCGGGATTGGCATGGATCCCCTGGAGTTCCGCCGCCGCAACATGGTGCGGGAGGGCGACCACATGCTGTCCACCCATCCGGATCCTGAGGAGGACGTCCTATACGGCAGTTACGGCCTGGACCAGTGCACGCAGCTGGTCAGGGATGCACTGGAGCGCGGTGCCGAGCGGTACCGGGCTGCGGGGCTCGATGACCTCGGCCCGGACTGGGTCACCGGTGAAGGAACGGCGCTGTCCATGATTGACACCGTTCCGCCGCGCGGCCACTTCGCCCACTCCAGGCTCCGGCTCCTCCCGGACGGCACATACCAGGCCGACGTCGGCACTGCTGAGTTCGGCAACGGTACCTCCACCGTGCATGCCCAGCTTGCCGCCACCGCGTTGTCCACGGCGGCCTCGCGGGTTCAGGTGCGGCAATCCGACACCGACCTGATCGAGCACGACACCGGCGCGTTTGGCTCGACGGGCACCGTGGTGGCCGGGAAGGCAACCCTGGCGGCAGCCGAGGAGCTGGCCGTCCGGATCCGGGCGTTCGCCGCCGGTATCAAACAGGTCCAGTCCTCCGGCTGCGTCCTGGACGGCGATTCCGTCATCTGCGAGGGAACGCCCGTCCCGCTCGCTGAACTGGCGCGCACGGCTGCGGAAGCCGGCGTCGAACTCGCCGCAGAAGGGCGCTGGGGCGGGACGCCGCGGTCCGTGGCGTTCAACGTGCACGGGTTCCGGGTTGCGGCAAACCGGGGGACAGGGGAGCTGCGGATCCTGCAAAGCGTCCAGGCCGCCGACGCCGGCGTGGTGGTCAATCCGCGGCAGTGCCGCGGCCAGATCGAGGGCGGAATTGCCCAGGCCCTGGGTGCCGCACTGTATGAGGAAGTGGTGGTGGACGACGCCGGCCGCGTCACCACGGATATCCTGCGGCAGTACCACATCCCCACCTTCGCAGACGTGCCCCGAAGCGAGGTGTACTTCGCCGACACCAACGATAAACTGGGCCCGCTCGGAGCTAAGTCCATGAGCGAAAGCCCCTTCAATCCGGTGGCTCCGGCGCTGGCAAATGCCATCCGCAACGCCACGGGAGTACGGTTTGCCGAGCTGCCCATCGCACGGGACAAGATCTACCTTGGCCTCCGGGACGCGGCCAAGGTTACCCGCGAGTCAAGTCCGCAACCCATATAGMAIEINGTPAAAEPRPGQCLRTFLREQGTLGVKKGCDGGDCGACTVHVDGTPVHSCIYPAVRAEGHAVTTIEGLAASTGAGGSSLHPMQQQFLERQGFQCGFCTAGMVMTAATFTEDQKDNLPRSLKGNLCRCTGYRAIGDAICGHAGHPDPAGQGSGIGGEGQPEPHPGQLGDDVPAPASRAIVTGTARYTLDVPLDRLQDGLQDGLHGDQHQNGGLSGDQLQGLLHLKLVRSPHAHAKVLSIDTEAALKVPGVVAVFTHQDAPAQLFSTAQHELYTDDPDDTRVLDDVVRFIGQRVAAVVAESVAAAEAGARAVKVEYRELPAVFTPQDAIRPGAPAVHGDKDGAAARIARPEQNVVAELHSELGSVEQGFAAADFIHEQTYRTQRVQHVALETHAAIASLDKDGRLQVRTSSQVPFLVRRTLCRVFGLPEEQVRVVAGRVGGGFGGKQEVLTEDIVALAALKLGRPVQLELTRSEQFTATTTRHPFTIQLKAGASQEGTLTALQLDVLTNTGAYGNHGPGVMFHGCGESLAVYNCTNKKVDAQAVYTNTVPSGAFRGYGLSQMFFAIESAMDELAIGIGMDPLEFRRRNMVREGDHMLSTHPDPEEDVLYGSYGLDQCTQLVRDALERGAERYRAAGLDDLGPDWVTGEGTALSMIDTVPPRGHFAHSRLRLLPDGTYQADVGTAEFGNGTSTVHAQLAATALSTAASRVQVRQSDTDLIEHDTGAFGSTGTVVAGKATLAAAEELAVRIRAFAAGIKQVQSSGCVLDGDSVICEGTPVPLAELARTAAEAGVELAAEGRWGGTPRSVAFNVHGFRVAANRGTGELRILQSVQAADAGVVVNPRQCRGQIEGGIAQALGAALYEEVVVDDAGRVTTDILRQYHIPTFADVPRSEVYFADTNDKLGPLGAKSMSESPFNPVAPALANAIRNATGVRFAELPIARDKIYLGLRDAAKVTRESSPQPIPGPT0004835_92DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004835-xdhD-K12528NANA
D1-29_039231011hypothetical proteinATGGACATGAACACCATCGAGGCGGTGGTCCGCACTGCGGACCCGGCCGACTGGCGCGACGGCGATGCCTGGCTGGCAGGCGGCACTGTCCTCTTCTCCTATGGCAGCTATGCATTCGGCCCGCAGCCGCCAAGGCGCCTGCTCGATCTGGGCGCGGCCGGGTGGCACGCGGTGACTGTGGACGGGGAATCCGGGCCGGGCATCGAGCTTTCCGCTACCTGCACCGTCGCAGATCTCTACGGCCTGCCGGACACTCTTGCATCCCGCCGAACGGACTGGCCCGCCCTTGACCTCATCAGGCCCTGCTGCGATTCCTTTGTGGCGTCCTTCAAGGTCTGGAACATGTCAACTGTGGGCGGCAACCTCTGTACCTCCTTGCCGGCCGGGCCCGTGATCTCGCTATGCGCCGGCCTGGACGGGGTGGCCACCATCCTTGGCCCGGGCGGCGCCAGCCGCACGGTTCCGGTGGCCGGCTTCGTCACCGGGGACGGGCAAAATAGCCTGGCACCCGGCGAGCTGCTGCGCAGCGTCCACCTCCCGGCGTCGGCCCTTTCCGCACGGGTGGCGTTCCGCCGGCTGTCCCTGAGCAACCTGGGCCGGTCGGGAGTGCTGCTGATCGGAAGGCTCGACGGCGGCACCTCCTTTGTCCTGACCGTCACCGCCGCCACCAAGCGGCCTGTGCAGCTGCGCTTCGGCCAACTGCCGGACGCTGCCGGGCTGGCCGCCGCGCTGGACGACGCCATTCCTGCGGGCCTGTACCACGACGATATCCATGGCCTGCCTGCCTGGCGGCGGGACATGACCTACCGGCTGGCGGAAGAAATCCGGGCCGAGCTGGCAGCCCCGGCCGGCACGGCGCCCGCCAACGTCTCGGGGGATTTCTGGCCGCCACACAGGTCTCCACAGCAAACTGCCGCCCCTCAGACAGCTGCACCGCAAACAGCCGCCCCTCAGACAGCTGCACCGCAAACAGCCGCCCATCAGACAGCTGCACCACAGGAAGGGGCCTGAMDMNTIEAVVRTADPADWRDGDAWLAGGTVLFSYGSYAFGPQPPRRLLDLGAAGWHAVTVDGESGPGIELSATCTVADLYGLPDTLASRRTDWPALDLIRPCCDSFVASFKVWNMSTVGGNLCTSLPAGPVISLCAGLDGVATILGPGGASRTVPVAGFVTGDGQNSLAPGELLRSVHLPASALSARVAFRRLSLSNLGRSGVLLIGRLDGGTSFVLTVTAATKRPVQLRFGQLPDAAGLAAALDDAIPAGLYHDDIHGLPAWRRDMTYRLAEEIRAELAAPAGTAPANVSGDFWPPHRSPQQTAAPQTAAPQTAAPQTAAPQTAAHQTAAPQEGAPGPT0007270_243DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007270-ygeT|xdhB-K13479NANA
D1-29_039241395hypothetical proteinATGCTCGACCTGATTCCTTCGCTCAACGGCTGGACAGCAGGCCTGCCCGGTAACCGCTGCGCCGTAGCCACCATCGTCCATGTCAGCGGTTCCGTTCCCCGGCCGGTAGGGACGTCCATGCTCATCTCAGAGTCTGGTGCCGTACTGGGCAGCCTCTCCGGCGGCTGTGTGGAAGGGGCGGTTGTGGCGCTGGCATTCGAAGCAATGAACGACGGCGCCACCCGCCTTGAGAGGTTTGGCTACAGCGCCGCCGATGCCTTCGCCGTCGGGCTCACCTGCGGTGGCGAACTGGAGGTGCACATTGAGGCCTTGGCCGCCGAGGGAACCCGGCCGGATGCCGGAGTGGAGACGCTCCAGCATCTGCGCGGCGTCCCGGCGGACGGGCCGGTGGCGGTGATCCGGCGGGTGGACGCCAACGGCCGCGGGCTGGTGGTGGTCCATGATCCGGGGACCTTCCAGGTGGCCCGCTCTGCCGGAATCGCCCGGCTTCTGGAGCTGGCGCCGGACACGGCCCCGAACCCCACCGCCACCGGCCGCAGCATCACCGAGCTCAGCACCGGCAGCACCACCGGCACCACCCCTGAGCGCAGCACAACCCCTGACGATGCCCTGCTTTCGGCCGCCGCGCAGCTTGAACCGCTGCTTCGCGGCGGCCGGACAGGGCTGGTCAGGCTGGCACCACCTAACGGCTGCACGGTGTCCCCCTCCGGTGTTTCACAGGGGCACTCTCCAGCACCCGAACTTGTCACGTTGCTGGTGGAAAGCCGGCTGCCCCCACCCAGGCTGCTGGTTTTTGGCGCCAACGATTTCAGTGCGGCACTGGTGCCGGCCGCCAAGCTGCTCGGCTACCGCGTCACACTGGTGGATGCCCGGCCAGCCTTCGCATCGCAGGCCCGGTTCCGGGCCGCAGATGACGTGGTCACAGACTGGCCGCACAGGTATCTTGCAGCAGAAGCGGCAGCAGGACACCTCGATCCTCGCACCGTGATCTGCGTCCTGACCCATGATCCCAAGTTCGACATCCCGCTCCTGGAAGCTGCTTTGGCCCTGGACGTTGCCTTCGTCGGCGCCCTGGGGTCCAGACGCAGCCACCTCCAGCGGGTGGACGCCCTCCTGGCTGCAAGGGTGCCCCCTGAGCAGATAGCGCAGCTGCATTCACCCCTTGGACTGGACCTCGGTGCTGTGACGCCGGCCGAGGTGGCCGTATCCGTTGCCGCGGAAATCATTGCAGCACGCAACCCGGCCGCCAGCCACCAGCCCCTCAGGGAGACCGCGGGCCCCATCCATCAGGCGCTGATCCATCAGGCGCCCGACCATCAGCAGGCCGCCGCGCGGCCCGCCCCGAACCCCCTTGTCCCGAACCCCCTTGTACAGCAGGAGACAGCATGGACATGAMLDLIPSLNGWTAGLPGNRCAVATIVHVSGSVPRPVGTSMLISESGAVLGSLSGGCVEGAVVALAFEAMNDGATRLERFGYSAADAFAVGLTCGGELEVHIEALAAEGTRPDAGVETLQHLRGVPADGPVAVIRRVDANGRGLVVVHDPGTFQVARSAGIARLLELAPDTAPNPTATGRSITELSTGSTTGTTPERSTTPDDALLSAAAQLEPLLRGGRTGLVRLAPPNGCTVSPSGVSQGHSPAPELVTLLVESRLPPPRLLVFGANDFSAALVPAAKLLGYRVTLVDARPAFASQARFRAADDVVTDWPHRYLAAEAAAGHLDPRTVICVLTHDPKFDIPLLEAALALDVAFVGALGSRRSHLQRVDALLAARVPPEQIAQLHSPLGLDLGAVTPAEVAVSVAAEIIAARNPAASHQPLRETAGPIHQALIHQAPDHQQAAARPAPNPLVPNPLVQQETAWTPGPT0007280_92DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402NANA
D1-29_039251500pbuG_2COG2252Guanine/hypoxanthine permease PbuGATGACCATCCTGGATCAATCCCACGGGGAGCATCCGGCTCCACAGCCCGCACGCAGGCCCCAACCTCCGGCGTCGAACGTCCTGGACCGCTTCTTCCAGATCACCCAGCGCGGCTCCACCCTGGCCCGCGAATTCCGCGGCGGCCTGGTCACCTTCTTCACCATGGCGTACATCGTGATCCTCAATCCGCTGATCCTGGGCGGCTTCACGGCGGACAATGCGCCCACCGATGTCGCCGGGGGCTGGCTCTCTGCGGCCCAGGTGGGCGCGGTAACCGGGCTGACGGCCGGTGTGATGACCATCCTGTTCGGGCTCGTGGCCAACCTTCCGTTCGGCCTGGCCGCCGGGCTCGGCATCAACTCGTTCCTGGCGGTTTCGGTGATCCAGGAAGTTACGTGGGCCGAGGCCATGGGCCTGGTGGTGATCAACGGCATCCTGATCGTGCTCTTCGGCATCACCGGTGCGCGGACGGCCATCTTCCGGGCCGTGCCCAAGGAGCTGAAGTCCGCCATCACCGTCGGGATCGGCCTGTTCATCGCCTTCATCGGCTTTGTGGATTCCGGCTTCATCCGTGCCACGGCCGGCGGGCCGCCCGTGCAGTTGGGCGACGGCGGCTCCATCACCTCCATCCCCACCCTGGTATTCGTCGTTGGCCTGCTGGCCATGGGCATCCTGGTTGCGCGCAAAGTCCAGGGCGGCCTGCTGATCGGCATCGTGGGCACCACCGTACTGGCGGCCGTGGTGGAAGCCACCATGAAGATCGGCCCCGCCAGCGCCACCAACCCCGGCGGCTGGCACCTCAATACCCCGGTCCTCACCGGGCAGCTCGTCTCCGCCCCGGACCTGGGACTCGTTGGCCAGTTCGACATGTTCGGAGCCTTCGGCAGGATCGGCGGCCTGGCCGCCACCATGCTGGTCTTCACACTGGTCTTCACCAACTTCTTTGACGCCATGGGCACCATGACAGGACTCGCCAAGAGCGCCGGCGTGGCCCACAAAGACGGCACGTTCCCCCGCCTCAAGCCGGCCTTCATCGTCGAAGGCCTCGGGGCTGTGGCAGGCGGGGCCACCTCCGGCTCATCCAACACTGTGTACATCGACTCCGCGGCCGGGATCGGCGAAGGCGCCCGCACCGGCCTGGCCTCGGTGGTCACCGGCGTGCTGTTCCTAGGCTCGATGTTCCTGACGCCGCTCACCAGCGTTGTTCCGCTCGAGGTGGCGGCGGCTGCCCTGGTGGTGGTGGGCGCCATGATGATGGCGCAGATCCGCGAGATCAAGTTCAGCAAATTCTCGGTGGCCCTGCCGGCGTTCCTCACCATTGTCACCATGCCGCTGAGCTACTCGATCGCCAACGGCATCGGCGTGGGCTTTGTCTCCTGGGCCATCATCGGCGCAGCGTCGGGCAAGGCGAAGAAAATCCATCCGCTGATGTGGGTGGTCAGCGCGGGATTCCTGGTGTACTTCGCCCGCGGACCGATCAACGTGCTGCTGGGCGCCTGAMTILDQSHGEHPAPQPARRPQPPASNVLDRFFQITQRGSTLAREFRGGLVTFFTMAYIVILNPLILGGFTADNAPTDVAGGWLSAAQVGAVTGLTAGVMTILFGLVANLPFGLAAGLGINSFLAVSVIQEVTWAEAMGLVVINGILIVLFGITGARTAIFRAVPKELKSAITVGIGLFIAFIGFVDSGFIRATAGGPPVQLGDGGSITSIPTLVFVVGLLAMGILVARKVQGGLLIGIVGTTVLAAVVEATMKIGPASATNPGGWHLNTPVLTGQLVSAPDLGLVGQFDMFGAFGRIGGLAATMLVFTLVFTNFFDAMGTMTGLAKSAGVAHKDGTFPRLKPAFIVEGLGAVAGGATSGSSNTVYIDSAAGIGEGARTGLASVVTGVLFLGSMFLTPLTSVVPLEVAAAALVVVGAMMMAQIREIKFSKFSVALPAFLTIVTMPLSYSIANGIGVGFVSWAIIGAASGKAKKIHPLMWVVSAGFLVYFARGPINVLLGAPGPT0007325_774DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
D1-29_03926495guaD_2COG0590Guanine deaminaseATGAGTACCACCGTCACGGCCGAGCAGTATTTGGCCAGATCAATCCGGCTGGCAACGGCCAACGTCCTGAACAGCGGCGGGCCCTTCGGCGCCACGATCGTCACGGCTGACGGACAGTCGTTCGACGGCGTCAACCGCGTCACTGCCGACAACGATCCCACCGCGCACGCCGAGGTCACAGCGATCCGCACCGCCTGCCGGGAACTGGGCACCTTCGACCTCAGCGGCGCCATCCTCTACACCAGCTGCGAGCCCTGCCCCATGTGCCTGTCCTCCGCGCTCTGGGCCCGGGTGGAGCGCGTGGTGTTCGCCGCAGACCGGCACGACGCCGCCTCCGTCGGCTTCGACGACGCCGTGTTCTACGAGTACTTCGAGAACAGGGACCGGGATTCCCTGATGCCGGTTGCCAAGCTCACGCTGGACGATCACCGGGGGCCCGCGCCGCTGGAGCCGTTCAACACGTGGAACACGCTCGATTCCAGGATCGACTACTAGMSTTVTAEQYLARSIRLATANVLNSGGPFGATIVTADGQSFDGVNRVTADNDPTAHAEVTAIRTACRELGTFDLSGAILYTSCEPCPMCLSSALWARVERVVFAADRHDAASVGFDDAVFYEYFENRDRDSLMPVAKLTLDDHRGPAPLEPFNTWNTLDSRIDYPGPT0021515_2162DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021515-guaD-K01487NANA
D1-29_039271374COG04028-oxoguanine deaminaseATGACCCACCCCCTTCCCGCCAGCCCCGCGCCCCGCCTCTGGATCAGGAATCCGCAGGCCGCCTTCACCGCGAATACCCTGGACGCTTCCGGCGGACTTGTGGTCAGCGGGGGCGTCATCGCGGAGGTTCTTGCCGCCGGGCAGCAACCCGCGTCACCCTGCCAGCAGATCTTCGACGCCGGAAACCACGTGCTGCTGCCGGGCCTGATCAACACCCACCACCACTTCTACCAGACCCTCACCCGCGCCTGGGGTCCGGTGGCGAACGCGCCGCTGTTCCCCTGGCTGCAGAACCTGTATCCCGTCTGGGCCCGGCTGACCCCTCGGGACCTCGAACTGGCCACCACCGTTGCGCTGGCAGAACTCCTGCTTTCCGGTTGCACCACCGCGGCCGACCACCACTACCTGTTCCCGGACGGCCTGGAACACGCCATCGACGTGGAAGTGGACGTGGTCCGCCGGCTTGGCATGCGGGCAACGCTGACGCGCGGTTCCATGACACTGGGAACGGACGACGGCGGCCTGCCGCCACAGTCCACCGTCCAGGCTCCGGAGGTGGTGCTGGCGGACAGTGAACGCCTGATCGGCCAGTACCACGAGCGGGGCGGGGATGCGGTTATCCAGATTGCGCTGGCGCCCTGCTCGCCCTTCTCGGTGACGAAGGAGATCATGGCCGAAAGCGCGGCGCTCGCCGGGCGGCTGGATGTCCGACTGCACACGCACCTGGCCGAAACGCTGGACGAGGAGGACTTCTGCCGGGAGATGTTCGGTCTGCGCACGGTGGACTATCTGGACAGCGTTGGCTGGCTGACCGACCGCACCTGGCTGGGCCACGGCATCCACTTCAGCGACGCCGAGATACGCCGGCTGGGAGCCGCGCGCACCGGCGTCGCGCATTGCCCCACCTCAAACATGCGGCTGGCATCCGGCACCGCGCGGATCCTGGAACTGGAGGACGCGGGAGTCCCCGTGGGGCTGGGGGTGGACGGCTCGGCGTCGAACGATGCCTCCAACATGATCCTTGAAGCGCGGCAGGCGCTCTACCTGCAGCGCCTCCGGTACGGCGCTGACGTCCCGGTGGAGCGGGCGCTTGGCTGGGCGACGCGCGGCTCGGCGGCGGTGCTGGGCCGCCCGGAACTGGGCGAGCTCGCACCCGGGATGCAGGCGGACCTCGCCCTGTTCCGGCTGGATGACCTCCGCTTCTCCGGCAGCCACGATCCCATTGCCGCGCTCCTGCTGTGCGCGGCGGACCGGGCAGACCGGGTGATGGTTGGGGGCCAGTGGCGGGTTGTGGACGGGCAGATCCCGGGCCTGGATATTGCCGGGCTCATCGCAGAGCACTCCGCGGCGGCCCGCCGGCTGGTGGCGGGCTAGMTHPLPASPAPRLWIRNPQAAFTANTLDASGGLVVSGGVIAEVLAAGQQPASPCQQIFDAGNHVLLPGLINTHHHFYQTLTRAWGPVANAPLFPWLQNLYPVWARLTPRDLELATTVALAELLLSGCTTAADHHYLFPDGLEHAIDVEVDVVRRLGMRATLTRGSMTLGTDDGGLPPQSTVQAPEVVLADSERLIGQYHERGGDAVIQIALAPCSPFSVTKEIMAESAALAGRLDVRLHTHLAETLDEEDFCREMFGLRTVDYLDSVGWLTDRTWLGHGIHFSDAEIRRLGAARTGVAHCPTSNMRLASGTARILELEDAGVPVGLGVDGSASNDASNMILEARQALYLQRLRYGADVPVERALGWATRGSAAVLGRPELGELAPGMQADLALFRLDDLRFSGSHDPIAALLLCAADRADRVMVGGQWRVVDGQIPGLDIAGLIAEHSAAARRLVAGNANANANANA
D1-29_039281245hypothetical proteinATGAACCCGTCGAAGACCCCGGCCGAGATTCTGGACATTGACGGCGCTGAGGTCCGCATCTCAAGTCCTGACAAGGTGGTGTTCCCCGAGCCCGGGCTGACCAAGCTGGACCTGGTGCGCTACTACCTTGCGGTTGCGGACGGTGCGCTGCGCGGCGCCGGCGGCCGGCCCATGGTACTCAAGCGCTTTCCGAAGGGCATCGACTCGGAACCGTTCTTTCAAAAGCGCGTCCCCGAGAACCACCCAGAGTTTATCGACACGGCAACCCTGCACTACTCCTCCGGGACGTCAGCCGAAGAGGCCGTGATCCGTGATGCTGCCGGCCTGGCGTGGGTGGTGAACCTTGGCTGCCTGGATCTGAACCCGCACCCGGTGCGCGCCGAGGACCTGGAGCACCCCGATGAGCTCCGGGTGGACCTTGATCCGATGCCGGGGGTTGACTGGTCACAGATCGTTGATGTCGCTTATGTGGCGCGGGAAGTGCTCGACGACGTGGGGCTGGTGGGTTGGCCGAAAACGAGCGGATCCCGCGGCCTGCACATCCTGGTGCGTATCACGCCGCAGTGGTCGTACCGCGACGTGCGGCTCGCGGCCGAGACCCTCGCCCGCGAGGTGGAGAACCGCGCCCCGGGCCTCGCCACCGCCCGGTGGTGGAAGGAGGAACGCGGCGAGAGCGTGTTTGTTGATTTCAACCAGAACGCGAAGGACCGCACGGTGGCATCGGCCTACTCTGTCCGGGCGCTGCCTGATGCGCGGGTTTCGACGCCGCTCTCATGGGACGAGGTCCGCTCCACCCGGCCGGAACAATTCACAGCGCGCACCGTCCCGGAGCGCTTCGCCGAGGTGGGCGATCCCCACGCCGGGATCGACGACGCGGCCGGCAGCCTCGACGGGCTCCTCGCTCTGGCGGCTGAACTTGGCCCCGCCGAGAAGGCGCCACGCAGCGGTGACGGTTCCGGCCGCCGTCAGTCCGTGATGCCGCTGATAGAAGTGGCCCGCACCAAGACCAAAGCGGAGGCCAACGCGGCCCTTGACGAGTGGAAGTCCCGGCACCCCTACGTCGTCCCGGCCCTGCACCCGGCCGACGTGCTCATCGACGGGATGCGTGGATCGAGCTCACTCTGGTACCGGGTGCGGGTGAACCTGCAGCACATCCCCGAATCCGAGCGGCCGCCACAGGAGGAACTCATCGCGGACTATGACCCGTGGGCTGGCAAGGAGTGGCCGGGCCGCCCGCTGTCCTGAMNPSKTPAEILDIDGAEVRISSPDKVVFPEPGLTKLDLVRYYLAVADGALRGAGGRPMVLKRFPKGIDSEPFFQKRVPENHPEFIDTATLHYSSGTSAEEAVIRDAAGLAWVVNLGCLDLNPHPVRAEDLEHPDELRVDLDPMPGVDWSQIVDVAYVAREVLDDVGLVGWPKTSGSRGLHILVRITPQWSYRDVRLAAETLAREVENRAPGLATARWWKEERGESVFVDFNQNAKDRTVASAYSVRALPDARVSTPLSWDEVRSTRPEQFTARTVPERFAEVGDPHAGIDDAAGSLDGLLALAAELGPAEKAPRSGDGSGRRQSVMPLIEVARTKTKAEANAALDEWKSRHPYVVPALHPADVLIDGMRGSSSLWYRVRVNLQHIPESERPPQEELIADYDPWAGKEWPGRPLSPGPT0014910_1472DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-29_03929198hypothetical proteinATGTACCTGCAGGACACCAAGCAGCTTGCACCGACCAACACGGCGGCACCCGCAGTCCAGGAGTTCTACCTCCCCCTTGGAGGCGGTACGGACCCGGACTTCCATCTGCCGGCGGATTGGGAGCACGTCCCTGGTCGCTTGTCGCGCTGGATCCACGGCCTGCCAGGTTTCGGTGGCCAGCGTTCGTCACGAAGCTGAMYLQDTKQLAPTNTAAPAVQEFYLPLGGGTDPDFHLPADWEHVPGRLSRWIHGLPGFGGQRSSRSNANANANANA
D1-29_03930909uoxUricaseATGAGCAGCAACATCATCCTCGGCCACAACCAGTACGGAAAGGCCGAAGTCCGGGTCGTCAAGATCACCCGGGACACGGACCGCCACGAGATTGAAGACCTGAACGTCACCTCGCAGTTGCGGGGCGACTTTGAGGCCGCCCACCGTGAAGGCGACAACGCCCACGTGGTGGCCACCGACACCCAAAAGAACACCATCTACGCCTTCGCCCGGGACGGCGTCGGCTCGCCGGAAGCCTTCCTGCTGCGCCTCGGCGAGCACTTCACCTCCAGCTTCGAATGGGTGTCCGGCGGCCGCTGGGAGGCGGAATCCTACAGCTGGGACCGGATCCAGGCGCACGGCGCCGAGCACAATCACTCCTTCGTGCGCAATGGCCAGGAAGTCCGGACCGCAGTCCTGGTGCGCGACGGCGCCACGGCCCACCTCATCTCCGGGCTGACGGACCTGACTGTCCTCAAGTCCACCCAGTCCGGCTTTGTGGGGTATCCCAAGGACAAATACACCACGCTCCCGGAAACCACGGACCGCATCCTGGCCACCGACGTTTCCGCCCGCTGGCGCTACAAGACCGGCACCGACTTCCGCGCCCTGGACTTCAACAAGAACTACGACGACGTCAAGGCACTCCTGCTCGAAGGCTTCACCGAGAAGTACTCGCACGCCCTGCAGCAGACCCTCTTCGACATGGGCACCAAAGTCCTGGAGGCCCACAGCGAGATTGATGAGATCAGGTTCTCCATGCCCAACAAGCACCACTTCCTGGTGGACCTCTCCCCGTTCGGCCTGGACAACCCCAACGAGGTCTTCTTCGCGGCCGACCGCCCATACGGGCTGATCGAGGCCACAGTCCAGCGCGACGACGCCACCCCGGCGGACATGGCCTGGTCCGGCATAGCGGGCTTCTGCTAAMSSNIILGHNQYGKAEVRVVKITRDTDRHEIEDLNVTSQLRGDFEAAHREGDNAHVVATDTQKNTIYAFARDGVGSPEAFLLRLGEHFTSSFEWVSGGRWEAESYSWDRIQAHGAEHNHSFVRNGQEVRTAVLVRDGATAHLISGLTDLTVLKSTQSGFVGYPKDKYTTLPETTDRILATDVSARWRYKTGTDFRALDFNKNYDDVKALLLEGFTEKYSHALQQTLFDMGTKVLEAHSEIDEIRFSMPNKHHFLVDLSPFGLDNPNEVFFAADRPYGLIEATVQRDDATPADMAWSGIAGFCPGPT0021105_418DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021105-uaZ-K00365NANA
D1-29_039311506uacTCOG2233Uric acid transporter UacTGTGATTCTTAAGAAAAAGTCATCGAGCCCGGCCGCCAAAACAGGCCGCCAGCCCTCTGCCCGCCCCGAAGACCAGCGCCTCTCCATCGGCAGCAGCTTCGCCTACGGCTTCCAGCACGTCCTCACCATGTACGGCGGAATTATTGCGCCGCCGCTGATCATCGGCGCAGCGGCCGGGATGTCGTCGCAGGACATCGGCCTGCTGATCGCCGCCTGCCTCTTTGTGGGCGGCCTGGCCACAATCCTCCAGACCGTGGGCATCCCGTTCTTCGGCTCAAAGCTTCCGCTGGTCCAGGGCGTCTCCTTCGCCGGCGTCTCCACCATGGTTGCCATCGTCCACGGCGGCGGAGGCATCCAGTCGGTCTTCGGCTCGGTCATTGTGGCCTCGCTGATCGGCCTGGCCATCACGCCGCTGTTCTCGAAGATCATCCGCTTCTTCCCGCCGGTGGTCACGGGAACGGTCATCACCACCATCGGCCTGACCCTTATGCCCGTTGCCGCCAACTGGGCCATGGGCGGCAACAGCAAGGCGCCCAACTACGGGAGCGTGGCCAACATCGGCCTTGCCGCAGCCACCATGGGCATCGTGCTGCTGCTCAGCAAGGTGGGCAGCAGCACCATCTCCCGGCTGTCCATCCTGCTGGCCATGATCATCGGCACGGCCATCGCCTTCGTCACCGGCATGGCTGATTTCTCCAAGGTGGGACAGGGCGAGATCGTCGCGTTCCCCACCCCCTTCGCGTTCGGCCCGCCCACCTTCCATCTTGCGGCCATCATCTCCATGCTGATCGTGATCCTGGTGACGCTTACGGAGACCTCGGCGGACATCATTGCCGTCGGCGAGATCGTGGGCACCAAGGTTGATTCGCGCCGGATCGGCGACGGCCTCCGGGCAGACATGCTCTCCAGCGCCGTGTCCCCGCTCTTCGGCTCCTTCACCCAAAGCGCCTTCGCCCAAAACGTGGGGCTGGTGGCCATCACCGGCATCAAGAGCCGCTTTGTAGTTACCGCCGGCGGCGTGATCCTGGTGGTCCTGGGTCTGCTGCCGGTCCTTGGCCGGGTGGTGGCGGCGGTGCCCACACCCGTCCTGGGCGGTGCCGGCGTCGTACTCTTTGGAACGGTGGCCGCCAGCGGCATCAGGACCCTGTCCAAGGTGGAGTACCGGAACAACATGAACCTGATCATCGTGGCGGCGTCCATCGGTTTCGGCATGATCCCCATTGCCGCGCCTGCCTTTTACGACCAGTTCCCGTCCTGGTTCGGCACCATCTTCCATTCAGGCATCAGCTCGGCCGCCGTGATGGCCATCCTGCTGAACCTGCTGTTCAACCACCTCAAGGCGGGCAACTCCGAGAACCAGTCCGTCTTTGTGGCGGGCACCGGGCGCGTGGTCCGGGAGGAGGACCTGAAGTGCCTGGCCGACGGCGACCGTTACGAAGGCGGCAAGCTCATCGACTGTGACGGCAAGGAAGTCCCGGTGGAGTCGTCGTCGAAGTCTGACCACTAAMILKKKSSSPAAKTGRQPSARPEDQRLSIGSSFAYGFQHVLTMYGGIIAPPLIIGAAAGMSSQDIGLLIAACLFVGGLATILQTVGIPFFGSKLPLVQGVSFAGVSTMVAIVHGGGGIQSVFGSVIVASLIGLAITPLFSKIIRFFPPVVTGTVITTIGLTLMPVAANWAMGGNSKAPNYGSVANIGLAAATMGIVLLLSKVGSSTISRLSILLAMIIGTAIAFVTGMADFSKVGQGEIVAFPTPFAFGPPTFHLAAIISMLIVILVTLTETSADIIAVGEIVGTKVDSRRIGDGLRADMLSSAVSPLFGSFTQSAFAQNVGLVAITGIKSRFVVTAGGVILVVLGLLPVLGRVVAAVPTPVLGGAGVVLFGTVAASGIRTLSKVEYRNNMNLIIVAASIGFGMIPIAAPAFYDQFPSWFGTIFHSGISSAAVMAILLNLLFNHLKAGNSENQSVFVAGTGRVVREEDLKCLADGDRYEGGKLIDCDGKEVPVESSSKSDHPGPT0007330_212DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169NANA
D1-29_03932756iclR_2COG1414Transcriptional repressor IclRATGGCTGAAAAAAGCCCCGGAGGCGTGCAGTCCGTAGAGCGCGTTTTTGAACTTTTGGAACTGATCACCGACGCCGGGGGAGACGTCACATTGAGTGAACTCTCCTCCTCGACTGATCTTCCGCTGCCCACCATCCACCGGCTGCTGCGCACCCTGGTGACCCTGGGCTACATCCGCCAGCTCCCCAACCGCCGCTACGCGCTGGGTCCCCGGCTCATCAGGCTGGGCGAAGGAGCGAACAAGCAGCTTGGCGCAGTGGCCCGCCCGCAGCTCAAATCCCTGGTGGACCGGCTGGGGGAGACCTCCAACATGGCCGTGCTTGATTCGGACATGGTCATCTACGTGGCCCAGGTCCCCTCCCTGCATTCCATGCGGATGTTCACCGAGGTTGGACGCCGCGCCCATATGCATGACACCGGCGTGGGTAAAGCCATCCTGGCCCAGCTGGACGACGACGCCGTCCGCGGCATCGTGGGCCGCACCGGCATGCCCACCCCCACCGCCAAGAGCATCGGCGACATTGAGTCCCTGCTCGCGGACCTGGGCAGGATCCGTGAACGTGGCTACTCCATTGACGAGGAGGAGCAGGAACTGGGTGTCCGCTGCTTCGCTATGGCCGTGCCGAACGCCCCTACGCCGACGGCCATCTCCGTTTCCGGTCCGGTGTCCCGCGTGGACCAGTCCTTCGGTGAACGTGCCGTGCCGCTCCTGCGCGAAGCCGCCGAGGCCATCTCGAACGAGCTCAACCGCAACTGAMAEKSPGGVQSVERVFELLELITDAGGDVTLSELSSSTDLPLPTIHRLLRTLVTLGYIRQLPNRRYALGPRLIRLGEGANKQLGAVARPQLKSLVDRLGETSNMAVLDSDMVIYVAQVPSLHSMRMFTEVGRRAHMHDTGVGKAILAQLDDDAVRGIVGRTGMPTPTAKSIGDIESLLADLGRIRERGYSIDEEEQELGVRCFAMAVPNAPTPTAISVSGPVSRVDQSFGERAVPLLREAAEAISNELNRNNANANANANA
D1-29_039331458NAD-dependent malic enzymeATGGCGAATCCCAGCCCCGGAAACTCGATCACCCTTCGCGTGGAGGCCCCTTCCAGCTTCTCCGCCACCAGTGAGCTCGCCGCTGCCGTCGGAGCGGCCGGCGCTGCCATCACCGCGCTGGACGTCAGCGAGTCCCACCACGAAACGCTGGTAGTGGACGTCACCTGCAACACCACAGACGACGAACACGCCGGCAGGGTCAAGGATGCCCTCAACGCGCTCGACGGCGTCACGGTCCAGCACGTCTCGGACCGCACCTTCCTGATGCACTTGGGCGGCAAGCTCGAAGTTGTCCCCAAGGTAGCCCTCCGCAACCGCGACGATCTCTCCCGCGCCTACACTCCCGGCGTCGCCCGCGTCTGCCTGGCCATCGCCGAGGACCCGTCCGCAGCCCGCAATCTCACGGTGAAGCGGAACACCATCGCCGTCCTCACCGACGGTTCCGCGGTCCTCGGCCTGGGCAACATCGGCCCCGCCGCCGCCCTGCCGGTAATGGAGGGCAAGGCTGCGCTGTTCAAGCAGTTCGCCAACGTGGACGCCTGGCCGGTCTGCCTCGATACGCAAGACACCGAAGAAATCATCATGATTGCCAAAGCAATGGCCCCCGTCTACGGCGGCATCAACCTCGAGGACATCGCGGCGCCGCGCTGCTTCGAAATCGAAAACCGGTTGCGGGCGGAACTGGACATTCCGGTCTTCCATGACGACCAGCACGGCACCGCGATCGTCACCCTGGCCGCCCTGGTCAACGCCCTTCGGGTGGTGGGCAAGAAGCTCGGCGAGGTCCGCATTGTTGTCTCGGGCGTGGGTGCTGCAGGTTCCGCCATCATCCAGCTCCTGAAAGCACAGGGCGCGCAGCACATCATCGCCGCCGGCCGCTCCGGCGCGATCCATGCCGGTGAAAAGTACGGCGACGAACACCGCAGCTGGATTGCCGCCAACACCAATGAAGAGGGCTTCGCGGGTACCCTGCACGAAGCCCTCAAGGGGGCGGACGTCTTCATCGGCGTCAGCGCCCCGCACGTGATCGGCGAAGAGCAGGTGGCCTCGATGGCGGAAAACGCCATCGTCTTTGCCATGGCCAACCCCACTCCGGAAATCGACCCCGTCATCGCATCCCGGCATGCAGCCGTCGTGGCCACCGGACGCAGCGACTTCCCCAACCAGATCAACAACGTCCTGGCGTTCCCCGGCTTCTTCCGCGGCCTCCTGGACGCCGGCGCATCGGACGTCACGCCGGAGATGCTGGTGGCCGCCGCCGAGGCAATCGCCAGCCGGGTAGCTGACGATGAGCTTAATGCCAGTTACATTATCCCCAGCGTCTTTGATCCCCACGTAGCCGCCGATGTCGCCAGTGCGGTTGCCCACGCGGCCGCAAACCCGGCAGCGGCAGTTACCCCGCCCGCAACCGCACAGCCCGAAGGTGCGGGAGCCCAAACCGCCTTCGCCTCCGCCTGAMANPSPGNSITLRVEAPSSFSATSELAAAVGAAGAAITALDVSESHHETLVVDVTCNTTDDEHAGRVKDALNALDGVTVQHVSDRTFLMHLGGKLEVVPKVALRNRDDLSRAYTPGVARVCLAIAEDPSAARNLTVKRNTIAVLTDGSAVLGLGNIGPAAALPVMEGKAALFKQFANVDAWPVCLDTQDTEEIIMIAKAMAPVYGGINLEDIAAPRCFEIENRLRAELDIPVFHDDQHGTAIVTLAALVNALRVVGKKLGEVRIVVSGVGAAGSAIIQLLKAQGAQHIIAAGRSGAIHAGEKYGDEHRSWIAANTNEEGFAGTLHEALKGADVFIGVSAPHVIGEEQVASMAENAIVFAMANPTPEIDPVIASRHAAVVATGRSDFPNQINNVLAFPGFFRGLLDAGASDVTPEMLVAAAEAIASRVADDELNASYIIPSVFDPHVAADVASAVAHAAANPAAAVTPPATAQPEGAGAQTAFASAPGPT0001350_1486DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
D1-29_039341614aceB_2COG2225Malate synthase AATGGCCATCACCGTCACAGACCCCCGGCCGATCGAACGCGCGGAGGAGATCCTCACCCCCAAGGCCCTGGCGTTCATCGAAGAGCTGCACAACCGGTTTGCCGGCACCCGCAATGAGCTCCTCGCCGCCCGCGGCGTCAAGCGCCAGCGGGTTGCGGAAACCGGCAAGCTGGACTTCCTGCCGGAGACCCGGGACGTGCGCGACGGCGACTGGAAAGTTGCGCCTGCGCCTGCGGCACTGCAGGACCGCCGGGTTGAAATGACCGGCCCGGCTTCTCCCGCCAAGATGGCCATCAATGCCCTGAACTCGGGCGCCAAGGTGTGGCTGGCCGATCTGGAAGACGCCAGCACCCCCACCTGGCGCAACGTCATCGACTCCATCCTGAACCTGCGTGACGCCGCGCAGGGAACCCTCAGCTACACCTCGGATGAAGGTAAGGAATACACGCTCCGCACCGACGCGCCGCTGGCCGTTGTGGTGGCCCGCCCCCGCGGCTGGCACCTGCCGGAAAAGCATCTGCTGCTCGACGGCGAACCGGCCGTGGGTGCGCTGGTGGACTTCGGCCTGCACTTCTTCCACGTGGCCAAGCAGCTGGTCCTCAACGGCCATGGCCCCTACTACTACCTGCCCAAGATGGAGAGCCACCTTGAGGCCCGGCTCTGGAACGACGTGTTTGTCTTTGCGCAGGATTACCTGGGCCTGGGCCAGGGCACCATCCGGGCCACGGTGCTGATCGAAACCATCCCGGCGGCGTTCGAAATGGACGAGATCCTGTACGAGCTGCGCGACCATGCCTCGGGCCTGAACGCCGGCCGCTGGGACTACCTCTTCAGCATCATCAAGTACTTCCGCGACGCCGGCGAGGAGTTTGTCCTGCCGGACCGCGCTTCCGTGGTGATGACGGCCCCGTTCATGCGCGCCTACACCGAGCTGCTGGTCAAGACCTGCCATCACCGCGGGGCCTTCGCCATGGGCGGCATGGCCGCCGTCATTCCCAACCGCCGGCACCCCGAGGTCACCGAGGCGGCCTTCGCCAAGGTCAAGGCCGACAAAACCCGCGAAGCCAACGACGGGTTCGATGGCTCCTGGGTGGCCCACCCGGATCTGGTCCCCATCTGCCGCGAGGTGTTCGACGCCGTCCTCGGCGACCCGGAAAACGGAGGCCGGCCCAACCAGCTGGACAAGCAGCGCCCCGAGGTGTCGGTGACGGCAGGGCAGCTGCTGGACATCGCCTCGGCGGACGGCCAGGTCACCGAGGCCGGGCTGCGGCTGAACCTGTATGTCGCCGTCGCGTACACAGCCGTCTGGCTGTCCGGGAACGGCGCGGTGGCCATCCACAACCTGATGGAGGACGCGGCAACGGCGGAGATCTCACGCTCCCAGGTGTGGCAGCAGATCCGCAACAAGTCCGTCCTGGCGGATACCGGGAACACGGTGACCCGGGAGCTGGTGGAGCGCATCCTCGGCGAGGAAACGGAGCGGCTCCGCACCGAGTTCGGCGACGAAGCCTTCCGCCGGTACTACGGTCCGGCCAGCCAGCTCATCGCGGACATCTGCCTGTCAGAGGACTACACCGACTTCCTCACCACTCCGGCCTACGAACTGGTGGACTGAMAITVTDPRPIERAEEILTPKALAFIEELHNRFAGTRNELLAARGVKRQRVAETGKLDFLPETRDVRDGDWKVAPAPAALQDRRVEMTGPASPAKMAINALNSGAKVWLADLEDASTPTWRNVIDSILNLRDAAQGTLSYTSDEGKEYTLRTDAPLAVVVARPRGWHLPEKHLLLDGEPAVGALVDFGLHFFHVAKQLVLNGHGPYYYLPKMESHLEARLWNDVFVFAQDYLGLGQGTIRATVLIETIPAAFEMDEILYELRDHASGLNAGRWDYLFSIIKYFRDAGEEFVLPDRASVVMTAPFMRAYTELLVKTCHHRGAFAMGGMAAVIPNRRHPEVTEAAFAKVKADKTREANDGFDGSWVAHPDLVPICREVFDAVLGDPENGGRPNQLDKQRPEVSVTAGQLLDIASADGQVTEAGLRLNLYVAVAYTAVWLSGNGAVAIHNLMEDAATAEISRSQVWQQIRNKSVLADTGNTVTRELVERILGEETERLRTEFGDEAFRRYYGPASQLIADICLSEDYTDFLTTPAYELVDPGPT0001445_2608DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
D1-29_039351275hypothetical proteinGTGGCGGCATCCCCCACCCAGGCCCTCGCCGCGGCGGACCTTGCCAGGATCGACTCCCAGCTGGCGGACACCGACCGCCTGCTGGAGCTGCACTACCCCGGCGACGACGGCTCCCGCCAACCCATCCACACGGTCTATGTGCCCGCAGACCGTTTCACGCCGTCGCTCCCCGCTGACTGGGGCGCCCAGGCCATCGCGACGGCGGAGGGGCACGGGGGCCTGGAAAGGCTCGCCGGGCTTCTGGGCCAATCCCTGGCGCTGGGTGCCGCCGTCGCGTCCCGGGTTGCGCACAAGCTGGCCAATGAGCCGATCGAGGACCTGCGCCTTGACTTCGAGGACGGCTATGGCGACCGCGGGGACGAGGCAGAGGACGCCGACGCCGTTGCTGCCGCCGGCCTGGTTGCCGACGCCGTTGCTGCAGGGACTGCACCACCTTTCATCGGGATCCGCTTCAAGTGCTTTGAGGCCCCTACCCGTGCCCGCGGCCTGAGGACGCTGGACCTCTTCGTCTCGGCCCTGGCTGCCGCCGGAGAGCTGCCGGCGGGCCTGGTGCTGACGCTGCCTAAGGTCACCACGGTGGCGCAGGTGCAGGCGATGGATTACGCGGTCGCCAGGCTGGAGGAAGTCCACGGGCTGCCGCACGGCCGGCTGCGCTTTGAGGTTCAGGTGGAGACGCCCCAGCTCATCCTGGGCCCCGACGGCACGTCCCCCGTGGCACGGCTTGCGCATGTTGTGCCCGGGCGCATCAGTGCCCTGCACTACGGCACCTACGACTACAGTGCCTCGCTGCAGATTTCGGCCGAGTACCAGTCCATGGAGCATCCTGTTGCGGATTTTGCCAAGGAGACCATGCAGCTGGCGGTAGCCGGGACAGGTATCCGGCTCTCAGACGGTTCCACCAACATCATCCCGGTGGGCGACAACGTGGAAAACGCCTGGCGGCTCCACGGCCGGCTGGTGCAGCGCTCCCTGGAACGCGGCTACTACCAGGGCTGGGACCTTCATCCCGCCCAGCTGCCCAGCCGTTTCGCGGCGACGTACGGGTTCTACCGGCACGGACTGCCTGCTGCCGCCGCACGGCTGCGAAATTATGTGGAGCAGACCGAAGGCGGCGTGATGGATGAACCGGCAACGGCCCGGGCCCTCGCGGCGTTTGTGCTGCGAGGCGTCCAGTGCGGCGCTGTCGGCGCCGACGAAGTCCAGGCGCTTGCCGGCGTCGGGCTTTCCCGGCTCACCGCGCTGGCGCATCCGCGGCTGGCCCCTTCCAACTCATAAMAASPTQALAAADLARIDSQLADTDRLLELHYPGDDGSRQPIHTVYVPADRFTPSLPADWGAQAIATAEGHGGLERLAGLLGQSLALGAAVASRVAHKLANEPIEDLRLDFEDGYGDRGDEAEDADAVAAAGLVADAVAAGTAPPFIGIRFKCFEAPTRARGLRTLDLFVSALAAAGELPAGLVLTLPKVTTVAQVQAMDYAVARLEEVHGLPHGRLRFEVQVETPQLILGPDGTSPVARLAHVVPGRISALHYGTYDYSASLQISAEYQSMEHPVADFAKETMQLAVAGTGIRLSDGSTNIIPVGDNVENAWRLHGRLVQRSLERGYYQGWDLHPAQLPSRFAATYGFYRHGLPAAAARLRNYVEQTEGGVMDEPATARALAAFVLRGVQCGAVGADEVQALAGVGLSRLTALAHPRLAPSNSNANANANANA
D1-29_03936813allECOG3257(S)-ureidoglycine aminohydrolaseATGGGCAAGTACTACTCCCCCCAAGGCGGTTTACCGCCGCAGACCCACCTGACCACCGAGCGCGCCATCGTCACCGAGGCCTACACCGTCATACCCAAGGGCGTTATGACGGACATCGTGACCAGCAACCTGCCGGGCTTTTCGAACACCCGCGCCTGGATCATTGCCCGGCCCATTTCCGGGTTCGCCACCACGTTCTCGCAGCTGATTGTGGAGATCGGCCCCGGCGGCAGCGCACCCAGGGCGGAGTTCGAGGCCGGTGTGGAGGGCGTCATCTTCGTTAGCCGCGGCAAGGTCAACCTCACCCTGGACGGTGAATTGCACCGGCTGGAGGAGGGCGGCTACGCCTACCTGGCTGCCGGTTCACACTGGGGACTGGAAAACGTCTCCGACGACGTGGTGTCCTTCCAGTGGATCCGCAAGGCGTACGAACGGCTGGAAGGGTACGAGGCCAAGTCCTTCGTCACCAGTGACCAGGAAGTGGAGCCCCGTGAAATGCCGGACACGGACGGCGCATGGAAGACCACGCGCTTCGCTGACCCCAACGACCTTGCGCACGACATGCACGTGAACATCGTGACCTTCCAGCCCGGCGGCGTCATTCCTTTCCCGGAAACGCACGTGATGGAGCACGGGCTGTATGTGCTCGAAGGCAAGGCCATGTATCTGCTGAACAACGACTGGGTGGAAGTGGAGGCCGGCGACTTCATGTGGCTCCGCGCCTTCTGCCCCCAGGCATGCTACGCCGGCGGTCCGGGCCCGTTCCGGTACCTCCTCTATAAGGACGTCAACCGGCAGATCCGCCTGACCTGAMGKYYSPQGGLPPQTHLTTERAIVTEAYTVIPKGVMTDIVTSNLPGFSNTRAWIIARPISGFATTFSQLIVEIGPGGSAPRAEFEAGVEGVIFVSRGKVNLTLDGELHRLEEGGYAYLAAGSHWGLENVSDDVVSFQWIRKAYERLEGYEAKSFVTSDQEVEPREMPDTDGAWKTTRFADPNDLAHDMHVNIVTFQPGGVIPFPETHVMEHGLYVLEGKAMYLLNNDWVEVEAGDFMWLRAFCPQACYAGGPGPFRYLLYKDVNRQIRLTPGPT0021650_528DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021650-ylbA-K14977NANA
D1-29_039371158dap_2D-aminopeptidaseATGTCAGGAGCCAGGACGCAGCACACTCTGGGACGGATCGCCGCTGCGTTGTCTGTGGCCCTGCTGGCCACCGCTCTGGACGGCTGCACGTTCGGCCCCCGTCCCCCTGATGAGCAGGAGACGGCAGGGCAGCATCAGGGGCTGGAGGCATTCAGCAGGCAAATGCTCGATGAGGGCGCCCCGGCCGTTCTTATCGAACTGCGGCACGGTCCAGACGTATGGACCCACGGGGCAGGGGTACGGAACCTGGAAACGGGGGAACCCGTCACGGCGGCAGATCCGTTCCAGGTGGGGAGTATCTCCAAGTCAATGGTGGCCGTATCCGTCCTGAAGCTGGTTGAGGAGGGCCTGCTCAACCTGGACGCACCCGTGAGCGCTTACCTGCAAGAGTTCGGCACGGTGCTGCATCCGCCGCGGCCGGTCACGGTACACCAGTTACTGATCCATGAATCTGGACTGCCCGATTTCATCGCTCCCCTGCTGGCTTCCGCACCGCCACCGGAATTCCTGAACAGGCCGCTCAGCCTTGAACAGCAGCTGGCCCTGGCCGCCACGGTCCCGTGGGAACGCAAGCTTGTCCAAGGTTTTGAATACTCGAGCTCCAACTACTCCGCGCTTGGACTGATCGCCCAGCGGATCCGGGGTCAAAAAATCGCAGACGTCCTCAAAAGTGACATCGCGGATCCCCTGGGCCTACGGGAAACCCGGCTGCCCGGCGCGGGGCCTCCGCCCGAAAACATGGTCCACGCCTACATTACGGTGGCCGGCAAACGGCTGGACGTAACGCATCCGGCCTGGCTGGCCGAGCTGGCGCCGGGGGGCGTGGTATCCACTGTCAACGAGGTAAACACCTTCTACTCCGCCCTCCTGCAGGGGAAGGTCTTGGCTCCCGCAACTATGGCAGGGATGCGCGGCCAGGACGGTGCACGGTATGGCCAGGGGCTGCAGAAATGGAACGACCTGTGCACCAACAGGTTCTACTACGGCCACACGGGCGACGCCGACGGGTACGGAACCGTCTCCATGACCAGCGAGGACGGCACCCGGCAGCTCACCCTGGCCGTTGCCTACCCGCCGGCACCTCCCACCTTGAGCGTCAATCCACTGATCTCCGATCTGGAAGACGTGGCCCAGGAGACGCTGAATGATTTGTGCTGAMSGARTQHTLGRIAAALSVALLATALDGCTFGPRPPDEQETAGQHQGLEAFSRQMLDEGAPAVLIELRHGPDVWTHGAGVRNLETGEPVTAADPFQVGSISKSMVAVSVLKLVEEGLLNLDAPVSAYLQEFGTVLHPPRPVTVHQLLIHESGLPDFIAPLLASAPPPEFLNRPLSLEQQLALAATVPWERKLVQGFEYSSSNYSALGLIAQRIRGQKIADVLKSDIADPLGLRETRLPGAGPPPENMVHAYITVAGKRLDVTHPAWLAELAPGGVVSTVNEVNTFYSALLQGKVLAPATMAGMRGQDGARYGQGLQKWNDLCTNRFYYGHTGDADGYGTVSMTSEDGTRQLTLAVAYPPAPPTLSVNPLISDLEDVAQETLNDLCNANANANANA
D1-29_03938372hypothetical proteinATGACGCTCTACCAGCCGGAACCTGTTGAGATTTCCACCCGGATACGCCCCGGGGAATGGACGGAATCCAGCCTGGAGGAACTAGTGACCACCTACCGGGCCCAGATCCTGGCCATGGGCGCCAGGGTCTCGGACGTCGTGACGGATGTTGAGCGGAACGACGACGGGTCCGTCAAGGTAGCGGTGTCCTGGGCCAAACCCGCGCTAGCGGACGAGACGCTAGCGGACCAGACGGTGGCGGATGAAGCCGTAGCGGATGACCTTGCCACGGAAAGGAACGCGGGGGAAGCCACCGCAGTCCCCAGGGATACTGTCCCCAGCCACGGAACAACCCGGCATACCGGCACTACGGGCGGCAGCAGCACTGTTTAGMTLYQPEPVEISTRIRPGEWTESSLEELVTTYRAQILAMGARVSDVVTDVERNDDGSVKVAVSWAKPALADETLADQTVADEAVADDLATERNAGEATAVPRDTVPSHGTTRHTGTTGGSSTVNANANANANA
D1-29_03939720gph_3COG0546Phosphoglycolate phosphataseATGGGGCCGCAGGGAAACGGCCCCACAGGCCCCGGACCGCGCCGCGGAGTCCTCTTTGACGTGGATGGAACACTGGTGGACTCCTCCTACTTGCACACGCTTGCCTGGTGGCAGGCCTTCCGGCAGCAGGGGTACGACGTCCCGATGGTTTCCATCCACCGGTGCGTCGGCATGGGCGGGGACCGCCTGGTGGACGCCCTTCTCCCGGCCGCCCGCGACAAGGGCGGGGACGGCGAAATTATGGCCAGCCATGCTGCCCTCTTTGCCGTGAATTGGCCGGCGCTCCGGGCATTTGACGGAGCCCGGGACCTGCTCGCACAGTGTCACGCCGGCGGCCTGGCTGTAGCCCTTGCCTCGTCCGCGCGCGAGCAGGACCTGAATGCGCTGAGGATGGCCCTCGGGGCGGATGCCTATATCCACGCCGCAACCAGCGCCAATGATGCGAAGGAGAGCAAGCCCGCGCCCGACATCCTGGTGGCCGCCCTGGAGGCCATAGGCGTCCAGGCAGCTGATGCCCTCTATGTGGGCGATGCGATATGGGACCTGCAGGCGGCAGCCGCCCTCGGCATTCCGGTGGTGGCCGTTACGAGCGGGGGGACCAGTGCGGCTGAACTCAGGGATGCCGGTGCGCTTGAAGTGTACGAGGGCCCGCGGGATCTTCTGGAGAACTTGCAGGCCAGCGCCATCGGCAGGCTGTTCCCGCTGGTCTCCAATGCCTGAMGPQGNGPTGPGPRRGVLFDVDGTLVDSSYLHTLAWWQAFRQQGYDVPMVSIHRCVGMGGDRLVDALLPAARDKGGDGEIMASHAALFAVNWPALRAFDGARDLLAQCHAGGLAVALASSAREQDLNALRMALGADAYIHAATSANDAKESKPAPDILVAALEAIGVQAADALYVGDAIWDLQAAAALGIPVVAVTSGGTSAAELRDAGALEVYEGPRDLLENLQASAIGRLFPLVSNAPGPT0014525_12DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
D1-29_03940216hypothetical proteinATGGCCATTTCGGTTACCTTTCCCACGAAACGTGCGGCTGTGGCCGGCGTGGCCATGGCCCGCGAAATCGCAGGCACTGGTTTGATTCGGGACTGCAGCCGCGATGGTGCAGGCTCCGTCCTCAGGGAGCGGGTACGCCAGGTGAGCTCGCCGAAGGTTGATGCCGCGTCCCGTAAGAAGAAGCTCGCCGGAGCCAGGCGGGCTGCGATTAGCTGAMAISVTFPTKRAAVAGVAMAREIAGTGLIRDCSRDGAGSVLRERVRQVSSPKVDAASRKKKLAGARRAAISNANANANANA
D1-29_039411827COG3387TrehalaseATGTGGCAGGGTATGGGAATGGCGCGAATTGAAGATTATGCGGTGCTGGGCGATCTCTATACCGGGGCCCTGGTGAGCACGGAGGGGTCCATCGATTGGCTCTGCCTGCCCCGGTTCGACTCGCCGGCATGTTTCAACGCACTGCTGGACACCCCGGATGCCGGTCGGTGGCTGCTGGCCCCGAAGGGCGGTGGCCAATGCAGCCGGCGCAGCTACCGGGACGGAACGCTGGTGCTTGAGACTGAGTGGGAAACCCCGGAGGGTTCGGTCCGGGTGATTGACTTTATGCCGCCCCGGGACGAGGTGGCGGACGTTGTGCGGATCGTCGAAGGCCTCAGCGGAACGGTCAGCATGCACAGCGAGCTGACCCTGAGGTTCGATTACGGCCATATTGTGCCGTGGGTCCGGAAGGACGACCAGGGCCTGCACGCCATCGCCGGTCCCGATGCCGTCTACTTCATCACCAAGGCGCCCCTGCACGGCGAGAACATGCACACAGTCAGCGATTTTTCGGTGTCAGCCGGCGAGCGGATCCCCTTTGTGCTGGCCTGGGCCCCCAGCCACAGGCCGCGCCCGGAAACCGTTGATGCCGAGAAGGTGCTGGGCACCACAGCCGCCTTCTGGCGCGGCTGGGCGTCGCAGTGCACCGTCAAGGGAAAGTACCAGGAGGCGGTGTTGCGCTCGCTGGTGACGCTGAAGGCCCTGACCTATGCGCCCACGGGCGGCATTGTGGCGGCAGTGACCACGTCCCTGCCGGAAGAGCTTGGCGGTACCCGCAACTGGGACTACCGCTACTGCTGGCTCCGGGACGCCACCATGACACTCCAGGCCCTCCTGGCCGCCGGCTACACGGCCGAGGCGGCAGCGTGGCGGGACTGGCTGCTCCGGGCGGTGGCAGGGGACCCGGCGGACCTGCAGATCATGTACGGGATCCACGGGGAACGCAGGCTGCCGGAGATGGAGCTGCCGTGGCTCGCCGGCTACGAGAACTCGGCGCCGGTCCGGATCGGCAACGGGGCGGCCGAGCAACTCCAGCTTGACGTCTGGGGGGAAGTGCTGGACTGTCTGTCGCTGACCCGCAACTCCCTGCTGAAGCACACCGATGAAGCCTGGGATGTGCAGGTTGAGCTGATGAAGCACCTGGAGACGGTCTGGGACCAGCCGGACAACGGACTCTGGGAGATGCGCGGCCCGCGCCGGCATTTCACCCATTCCAAGGTCATGGCATGGGTGGCTGCGGACAGGATGGTCAAAGGCGTCCGGGAATCGGGGCTGCCCGGGCCGGTGGAACGCTGGGAGGCGCTGCGGGACACCATCCACCGGGACGTGATGGCCAACGGTTTCGACGCCGCGCGCAACACTTTTGTCCAGGCCTATGGGCGTCCCGAACTTGACGCCAGCCTCCTGCTCATTCCGCGGGTGGGGTTCCTGCCTCCGGACGATCCAAGGGTGGTGGGGACCATCGACGCCATCCAGCGCGAGCTGACCGAAGACGGCTTTGTGCTGCGGTACCGTCCGGAGGTCAGCGACGACGGGCTGCCGGGAAGCGAGGGCGTTTTCCTGGCCTGTTCCTTCTGGCTGGTGGAGGCGTTGCTGGGGGCCGGCCGCCGCCAGGAATCCACCGAACTGTTTGAGCGCCTCCTGGAACTCCGGAACGATGTTGGTTTGCTCAGCGAGGAATGGGCCGTCAGGGCGGGGCGGCAGCTCGGAAATACGCCGCAGGCATTCAGTCACTTCGCGCTTGTCACCAGCGCCCTGGAACTGCATCAGGACAGCGTCCGAAGGAGCGATACACCCATCCCGCCGGAGACGGAGCGGGTGGGCTAGMWQGMGMARIEDYAVLGDLYTGALVSTEGSIDWLCLPRFDSPACFNALLDTPDAGRWLLAPKGGGQCSRRSYRDGTLVLETEWETPEGSVRVIDFMPPRDEVADVVRIVEGLSGTVSMHSELTLRFDYGHIVPWVRKDDQGLHAIAGPDAVYFITKAPLHGENMHTVSDFSVSAGERIPFVLAWAPSHRPRPETVDAEKVLGTTAAFWRGWASQCTVKGKYQEAVLRSLVTLKALTYAPTGGIVAAVTTSLPEELGGTRNWDYRYCWLRDATMTLQALLAAGYTAEAAAWRDWLLRAVAGDPADLQIMYGIHGERRLPEMELPWLAGYENSAPVRIGNGAAEQLQLDVWGEVLDCLSLTRNSLLKHTDEAWDVQVELMKHLETVWDQPDNGLWEMRGPRRHFTHSKVMAWVAADRMVKGVRESGLPGPVERWEALRDTIHRDVMANGFDAARNTFVQAYGRPELDASLLLIPRVGFLPPDDPRVVGTIDAIQRELTEDGFVLRYRPEVSDDGLPGSEGVFLACSFWLVEALLGAGRRQESTELFERLLELRNDVGLLSEEWAVRAGRQLGNTPQAFSHFALVTSALELHQDSVRRSDTPIPPETERVGPGPT0018651_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-GLUCOAMYLASE_LIKE,PGPT0018651-glucoamylase_like-NANANA
D1-29_03942735hypothetical proteinATGCAAGAAGCTTCAACCCCAAGCCTGGTCATCGAAAACGTCCAGGACCTCCTCCTGGATACGCAAGATGTTGAGGACTTCCTCAATGAACTGGCAAGGTATTCGGCCCAGAACCTTTCCAGTCCCCGGGGGGAAGTCCTTTGCGGCATCACACTGCTTCGCCACCGCACGGCGGCTACCGTGGCCAGCAGCAGCGAACGGGCCCGCCTGCTCGATGAAATCCAATACGGCTACAAAGACGGCCCGTGCCTGAAGTGCGCCCGCGAAGGGGTTCTGGTCCACGTTCCGGACTTCAAAACGGAAACGTTGTGGCCGGAGTATTGCGAAGCCGTGCTGAACCACGGCATCAGGTCTGTGCTGGCAATTCCCTTTGAACTGTCCGGCCAAGAGGCCAAGGCAGGCATCAACCTCTACTCGGACAGGCCGCACGCCTTCGATGCCAGCGCAGTGGAGCATGCCATCAGTTACGTTGCCCAGGCATCCAAGGGGCTAAGCCTGGCCGTGCGCCTGGCCCAGCATTCGGATGCAGCGGCCAACCTCAAGGCTGCACTGGATTCCCGCACCGTGATTGACACTGCCGTGGGCATCATCATTGCGCAGAACCGCTGCAGCCAGGACGAGGCAATCGAACTCATCAAGTCCGCCTCAAGCACCCGGAACGTGAAGCTGAGGGAAGTAGCCGCGGCCATTGTGGAATCGGCCGGGGGCGGCCCTCTCAAGACCCACTTCATCTGAMQEASTPSLVIENVQDLLLDTQDVEDFLNELARYSAQNLSSPRGEVLCGITLLRHRTAATVASSSERARLLDEIQYGYKDGPCLKCAREGVLVHVPDFKTETLWPEYCEAVLNHGIRSVLAIPFELSGQEAKAGINLYSDRPHAFDASAVEHAISYVAQASKGLSLAVRLAQHSDAAANLKAALDSRTVIDTAVGIIIAQNRCSQDEAIELIKSASSTRNVKLREVAAAIVESAGGGPLKTHFINANANANANA
D1-29_03943780hypothetical proteinTTGTGGAATCGGCCGGGGGCGGCCCTCTCAAGACCCACTTCATCTGACTTGGCCATCCATGTCGGCACGTCCGGGTGGAGTTATGACCACTGGGAGAACGTGCTGTATCCCCCTGGCCTTCCGGCCAGGGACAGGCTGGGGCACTATGTTTCCCGGTTCGGCACCGTTGAGCTCAATGCCAGTTTTTACCGCTGGCCCAGGGACACGGCGTTTGCCAGCTGGCGCCGGCGCCTCCCCCCGGGTTTCACTATGTCCGTCAAGGCCCCCCGCGGGCTGACGCACGGCAAGAAGCTCTATGCGCCGGAGGTGTGGCTGGAGCGGATTGAGCGCTGCTGGCATGAACTGGGGGACAAACGCGCCGTCCTGCTGGTCCAGCTGCCGCCCCAAATGGCCAGGGATGACGCCAGGCTGGAGTATTTCCTGGCCAAGGTCCCCTGGTGGATTAGGGTCAGCGTGGAGTTCAGGCATCCCAGCTGGGAGCATCCGGACGTCTTCGCCCTGCTGGAGCGGCACCGGGCGGCCTACTGCATCATGAGTGGAGCACACCTCCCCTGCATCCTGCGGACAACCGCACCTTTCGTTTACGTGCGGCTGCACGGACCGGACCATCAGCACCTGTACGGCGGATCGTATTCGGATACTGACCTGCACTGGTGGGCGGACCGGATCAGGGAGTGGTCCGGTAACGGCCAGGATGTCTTTGTCTATTTCAATAACGACGGCGGCGGGAACGCGGTGCGGAATGCCGAAACCCTCCGCTGGATCCTTGGTGAGGGCTGAMWNRPGAALSRPTSSDLAIHVGTSGWSYDHWENVLYPPGLPARDRLGHYVSRFGTVELNASFYRWPRDTAFASWRRRLPPGFTMSVKAPRGLTHGKKLYAPEVWLERIERCWHELGDKRAVLLVQLPPQMARDDARLEYFLAKVPWWIRVSVEFRHPSWEHPDVFALLERHRAAYCIMSGAHLPCILRTTAPFVYVRLHGPDHQHLYGGSYSDTDLHWWADRIREWSGNGQDVFVYFNNDGGGNAVRNAETLRWILGEGNANANANANA
D1-29_039441143hypothetical proteinATGGACAGGGCTTCCCAGGACACACCGCACAACGAATCGCCTCAGAACGAATCGCACGGCGCAGCTGCCGACAATAGTGCCGGCAGCAATGCCGGCGCGCACGCCACGATAGTTTCCGGCGGCCAGATCTTCCGCCTGGCCCACAGGCTTTCCGACGGCGTCAACGGCACCCGCATTCAGCTTGCCAAGCGCTGGAACTTCGAACCGCAGACCGTGGCGTACCAGGGCTATGGATCCACCGACTGGGTCAGGGTGCTCGGCCGTGTTGTGCTGACGAAGAAACCCGCGCCAGGAAGCCGGGCAGAGCACGCAGCCCGCAACGGTACCCAGAACGTTCGGGGCTGGCGCGCCTTCACCAGCGTTCCAGTGCAGTTCACGGACGTGGAAATCACCATCGGCGGCGTGGTGGCCCACGCCCGGGCGGACCGCGGCGGGCTGATCGACACTGTGGTTGACGTCAAGCTCGCCCCGGGATGGCATACCGCTGTCCTCCGGGCCGCTGGGACTGAGCCGGTGGAGGCACTCATCCGGGTGATTGCACCGGACGTCAAGTTCGGCATCATTTCCGACATTGACGACACCGTGATGGTCACCGCCCTGCCGCGTCCCTTCCTGGCGCTGTGGAACACGTTTGTCCTGAGTGAGCGGGCCCGCATGGCCACCCCCGGCATGGCTGTGCTCCTGGACCGGCTGACCATCGAGCACCCGGATGCCCCCGTCATCTACCTGTCCACGGGCCCCTGGAATGCCGCCCCCACCCTGGCACGTTTCCTGAACCGCAACATGTACCCGGCAGGCGCACTGCTGCTCACAGACTGGGGCCTGACCCACGACCGCTGGTTCCGCAGCGGACAGGAACACAAGCGCCGCAACCTGGAGCGCCTGGCCAAGGAATTCCCGGACATGCGCTGGCTGCTGATCGGGGACAACGGCCAGCACGACGAGCAGATTTATTCAGGGTTCGCGCGGGAGCACTCGGACAGGGTGGCCGCCATCGCCATCCGGCAGCTGTCCATCAGCGAATCAGTGTTCGCTGGCGGCCACTCCGAAACCGGCGACCACACCGCCTCTGCCGTCCCCTGGATCTACTCCCCCGACGGCGCCGGAATGGCCAAGCAGCTCACCACCCTTGACATCCTTTAAMDRASQDTPHNESPQNESHGAAADNSAGSNAGAHATIVSGGQIFRLAHRLSDGVNGTRIQLAKRWNFEPQTVAYQGYGSTDWVRVLGRVVLTKKPAPGSRAEHAARNGTQNVRGWRAFTSVPVQFTDVEITIGGVVAHARADRGGLIDTVVDVKLAPGWHTAVLRAAGTEPVEALIRVIAPDVKFGIISDIDDTVMVTALPRPFLALWNTFVLSERARMATPGMAVLLDRLTIEHPDAPVIYLSTGPWNAAPTLARFLNRNMYPAGALLLTDWGLTHDRWFRSGQEHKRRNLERLAKEFPDMRWLLIGDNGQHDEQIYSGFAREHSDRVAAIAIRQLSISESVFAGGHSETGDHTASAVPWIYSPDGAGMAKQLTTLDILNANANANANA
D1-29_039451557bglA_2Beta-glucosidaseATGCATATCACCGCCAAGGAGCTGGCCGGGCTCATTCCGCCGGGATTCACGCTGGGTGTGGGTACCGCCGCTTTCCAGATCGAGGGTGCCCTGGAGGAGGACGGCCGCGGGCCGGCAGGCTGGGATATTTTCGCGGCAAAGCCGGGGGCGATTGTGGGCGGGCACAGCCCGGCCGTGGCCTGTGACCACTACCATCGGATGCCTGGTGACGTGGCGCTCATGAAGCAGCTGGGCGTGGACTCCTACCGGTTCTCCCTGTCCTGGCCACGGATCCAGCCCAAAGGCAGCGGAGCGGTGAACCGTGCCGGCCTGGACTTCTACGACCGGCTTCTGGATGAGCTGCTGGCCAACGGGATCTCACCCATGGTGACCCTCTATCACTGGGACACGCCGCTGGCTCTGGACGACGCCGGCGGCTGGCTCAACCGGGACACGGCCTACCGTCTGGGCGAGTTCGCCGCTATCGCCGCCGCCGCCTTCGGGGACAGGGTTGCCCGGTGGGTCACCATCAACGAGCCCGCCACCGTCACGACCAACGGCTACACCCTGGGGCTCCACTCACCAGGCGAAGCCCTGCTGCTCAATGCGCTTCCCACAGTGCATCACCAGTTGCTTGGCCATGGGCTGGCGGTCCAGGCGCTGCGGGCCGCCGGAGTACCGGGAGAGATAGGCATGAGCAACGTCTACTCTCCGATGGTTCCCAATTCATTCAACCCGCTGGACAAGCTCAGTGCAGGGCTCATGGACCTCGCGCAGAACCGGCTGTACGCGGATCCGGTGCTCACTGGAAAGTATCCGGACCTGATCCGCGCCGCAAAGTTCTTTGGCTCGTTCGACCACCCGGACGGAGACCTGGAGCTCATCTCCCAGCCGCTGGACTTCTACGGGCTGAACTACTACATGCCTACCAAGGTGGCAGTGGGCGCCGGTGAAGGTGCCGTCCCGGCCAGCATGGCCGAAGCCCTGGGCGATGACCTGACGTCGGCCGCCGGCGGCGGGACGCCTTTCCACGTTGTCCCGTGGCCGGAAGCGGACATCACGGCTTACGGCTGGCCGGTGAAGCCCGACTACATGGCCGTGGCCCTGAAGGAAATGGCCGAGCGGTATCCCAACCTTCCCCCTGTGATCCTCACCGAGGGAGGCGCCAGCTTCGAGGACATCATCGTCCGCGACAAGTCCACCAACCGGACGTTCATCCCGGACGAGCGGAGGCTGAAGTACCTTTCGGACCACATCGAGGCCGCACTCCGGGCCACAGCTCCCGGGGGTGAAGCGGAGGCGGTGGACCTGCGCGGCTATTACGTGTGGTCGCTTATGGATAATTTCGAGTGGTCCGCTGGCTTTAACCAGCCGTTCGGGCTGCTGCATGTGGACTTCGAGACCCTGGAAAGGACCCCCAAGGCGTCCTACTTCTGGCTGCAGGAACTCATTGAAGAACGGAACCTCGCGATATCGGCGGCCTCCGCCATCGCCAAGGCCGTGGGGCCCGCGCCCACAGATTCCGAAGACACAGAAGCCCCCGACGACGGCGTTGCCGCACTGGATGCCACCGCCTAGMHITAKELAGLIPPGFTLGVGTAAFQIEGALEEDGRGPAGWDIFAAKPGAIVGGHSPAVACDHYHRMPGDVALMKQLGVDSYRFSLSWPRIQPKGSGAVNRAGLDFYDRLLDELLANGISPMVTLYHWDTPLALDDAGGWLNRDTAYRLGEFAAIAAAAFGDRVARWVTINEPATVTTNGYTLGLHSPGEALLLNALPTVHHQLLGHGLAVQALRAAGVPGEIGMSNVYSPMVPNSFNPLDKLSAGLMDLAQNRLYADPVLTGKYPDLIRAAKFFGSFDHPDGDLELISQPLDFYGLNYYMPTKVAVGAGEGAVPASMAEALGDDLTSAAGGGTPFHVVPWPEADITAYGWPVKPDYMAVALKEMAERYPNLPPVILTEGGASFEDIIVRDKSTNRTFIPDERRLKYLSDHIEAALRATAPGGEAEAVDLRGYYVWSLMDNFEWSAGFNQPFGLLHVDFETLERTPKASYFWLQELIEERNLAISAASAIAKAVGPAPTDSEDTEAPDDGVAALDATAPGPT0019165_594DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
D1-29_03946816hypothetical proteinATGGATGAAAAACTGGGGAAGTTCATCGACGATTTTGCCGAACTGGTGCAGCTGGCGCAGGCCGGGAACCACAGGCAGCAGCCCGGCAAGCAGCTTCTGGAGGCCCTGACGGAGCATCTTGGGGCACCGGCAGAAGGCCTCGCCGTCGTGGTGGAGAATATCCCGCCGCACCGGTTCGTGGACGCGGACATCCTGTTGGCTGAGTTCGCCGGCCAGGATCCGGACAGCCGCCTGGTGGGGATCGGCGGCGGCGGCCAGCGGCATCATCAGTCCCTCAGCGACATGGTCCAGCAATCCCAGCTCTTCCCGCAGTTTCCGCTGGCACAGCCTGACTACACCAACCTGGCGGTGGGGCCGGAGGAACAACGCCAGGCCGTCGCCCTGGGACTGTGGCTTCTCAGAATCGACGGCAGCCCTCTGGCGGTACTGCAGCGAGACGCCGATCCGCGTTCTGGGCGGCAGGCCGCCTCGCTGGAGGTAGTAGCCGCGGAACCCCGGGCCGGCTCCGCGTTCCTGGCCGAATTCCGCCGCCGGATGGAGAGCCGCAGTGTGCTCAAGGGCCAGGTCATCTCGCTGACCATGGGCGAATACGGTCCAAGCACCGGCGGGGTTACCTTCCATCACCGGCCAGCGCTGCCCGCCTCAGATGTCATTCTTCCGGACGGACTCCTGCAGAAGGTGGCGGACCATACCGTGGGGATCGCCACCCACCGGGAATCCCTCAAACGGCACGGCCAGCACCTCAAGCGAGGAATCCTCCTCTACGGCCGGCCGGGGACCGGCAAAACGCACACCGTGCGTTACCTGCTCAGCTAAMDEKLGKFIDDFAELVQLAQAGNHRQQPGKQLLEALTEHLGAPAEGLAVVVENIPPHRFVDADILLAEFAGQDPDSRLVGIGGGGQRHHQSLSDMVQQSQLFPQFPLAQPDYTNLAVGPEEQRQAVALGLWLLRIDGSPLAVLQRDADPRSGRQAASLEVVAAEPRAGSAFLAEFRRRMESRSVLKGQVISLTMGEYGPSTGGVTFHHRPALPASDVILPDGLLQKVADHTVGIATHRESLKRHGQHLKRGILLYGRPGTGKTHTVRYLLSNANANANANA
D1-29_03947618ftsH_2ATP-dependent zinc metalloprotease FtsHATGGCCAGGGCACTTCAGCCCTCGATTGTGGTCCTGGAAGACTGCGACCTGATCGCCGAAGACCGGAGCTTCGGGCATGGGCCGCAGCCCCTGCTTTTTGAGGTGCTCGATGCCATGGACGGGCTGGACAACGACGCCGACGTGGCCTTCGTCCTGACAACGAACCGGCCGGACATGCTGGAACGCGCCCTGGCGCAGCGTCCAGGCCGCGTGGACCTCGCTGTGGAAATCCCGTTGCCTGCCTTTGAGGAGCGCGTAGCCCTGCTGGAGCTGTACGGGCAGCATGTGGCGTTCAGCCCGGAGGCCTTGGCCGCAGCCGCCGAAAAGACGGCCGGAACCACAGCATCATTCGCCCGGGAACTGGTGAGACGGGCCGTTGTGGGGGCGGCGCTGGAGGACATGCCTGTGTCAGATGCCCATTTGGCCGCGGCAGTGGAAGATCTCATGGCCGACGCCGAATCGCTGACGCGCAGCCTCCTGGGCAGCGGAAACCAGGCCGAGGCGGCGGGATGGGCCGGAGTAGGCGTCCCCGGCCAGACAGTGACAGGCCCGGGGTTCTCCGGGCAGGGCTTTTCGAGTGCAGGCGGACTCGGGCCTGGGCCGGTTGTGCCGGGCTGAMARALQPSIVVLEDCDLIAEDRSFGHGPQPLLFEVLDAMDGLDNDADVAFVLTTNRPDMLERALAQRPGRVDLAVEIPLPAFEERVALLELYGQHVAFSPEALAAAAEKTAGTTASFARELVRRAVVGAALEDMPVSDAHLAAAVEDLMADAESLTRSLLGSGNQAEAAGWAGVGVPGQTVTGPGFSGQGFSSAGGLGPGPVVPGNANANANANA
D1-29_03948378hypothetical proteinATGAGCGACTGGCGCCGCTATGACTCCCACCTGATCCCCGCGTTCCATGAGCGGTTTGAAGAGCGGTGGGGAAAGGGCACAGCGCCGTTCCTCGATCCTGAAGCACATGAGCAGCCGGTTCCCCGGGCCCAGTGGATCAACCCTGCAACCGGGGCCGCCCTGGCGGTTGTTCCTGTATGGACGGTGGACGAGGGACAGCAACGTTCGTTCGGGGTGTTCTATCTTCCGCCTGCGGGTGATATCTGGGTACTCCGGCCGGGCTACACCGGCTATCTTGAACCGGCAGACGGGGAGACAGAACACCTCGTGACGCTCCGGAACGACGCTTTCCGGAAAGCCGTGGCGCACGCCAAGGAATTCCTGTTCGGATCCCAATAAMSDWRRYDSHLIPAFHERFEERWGKGTAPFLDPEAHEQPVPRAQWINPATGAALAVVPVWTVDEGQQRSFGVFYLPPAGDIWVLRPGYTGYLEPADGETEHLVTLRNDAFRKAVAHAKEFLFGSQNANANANANA
D1-29_03949561dnaJ_2Chaperone protein DnaJATGGAGAGCCTCCCTGACTACTACGCAGCATTGCATGTGGGACCTGCTGCCTCGCAGCGGGAGATCTCGCGCGCCTACCGGGCGCTGATGCGGACCCACCACCCGGACGTCGACGGCACAAATGCTGCGGACCGGAAGGCGCAGGACAACGAACTGCTGGGAATCATGCAGGCCTTCGCTGTCCTCCGTGATCCGGTTCGGCGGGCTGCCTACGACCGCAGCATCCGGGGACAGGGCGGCTTGGGACAGGGCGGCTCGGGACAGGGGGCCACTGGACAGGACGGCAGGGGACAAGGCAACAAAGGATACGGCGGCACGTCCCGCGGCCGTGGGGAACAAGAAACTGCGGAGCGGGGAACTTCTGGACAAACAACTGCGGGACGGGAAACTGCAGGGCAAGGCAGCAGCACGCAGGCCGGCGGACGACGGTTCACGGCTCAGAGCACAGGCGATTCCGTTCCGCAGGACATCCCGGTCCGCAAGGTTCGCAGCCGTGCCGAGCGTTCGGGCCACACCATCCGGATCACCCCTGTCCGTTGGGAAAGCGGACCCTGGGCCTGAMESLPDYYAALHVGPAASQREISRAYRALMRTHHPDVDGTNAADRKAQDNELLGIMQAFAVLRDPVRRAAYDRSIRGQGGLGQGGSGQGATGQDGRGQGNKGYGGTSRGRGEQETAERGTSGQTTAGRETAGQGSSTQAGGRRFTAQSTGDSVPQDIPVRKVRSRAERSGHTIRITPVRWESGPWANANANANANA
D1-29_0395042618 kDa heat shock proteinATGATGTTGATGCGTACGGACCCGTTCCGTGAGCTGGACCGGCTCACCCAGCAGGTCTTTGGAACAGCAGCCCGGCCAGCCGCCATGCCTATGGATGCCTGGCAGGAGGATGGCACCTTTGTGGTGGCCTTTGACCTCCCGGGCGTCAAGATCGACACAGTAGACCTTAATGTCGAACAAAACGTCTTGACGGTCAGGGCTGAGCGCAAGGATCCAACCCAGCCGAATGTTGAGCTGGTGGCCTCCGAGCGGCCGCGCGGTGTCTTCAGCCGCCAGCTGATCCTGGGCGACACGCTGGATACCGACAACATCAAGGCAAGCTACGACCAGGGCGTCCTGACCCTGCGGATACCAGTGGCGGAGCAGGCCAAGCCGCGCAAGATCGAAATTGAAACCAAGGGACAGATGCACGAGATCGGCACCTAGMMLMRTDPFRELDRLTQQVFGTAARPAAMPMDAWQEDGTFVVAFDLPGVKIDTVDLNVEQNVLTVRAERKDPTQPNVELVASERPRGVFSRQLILGDTLDTDNIKASYDQGVLTLRIPVAEQAKPRKIEIETKGQMHEIGTPGPT0014635_7174DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014635-hsp20-K13993NANA
D1-29_03951336hypothetical proteinATGAACAATGGGCCAACGGGACGGGTGCCGGAACCCAGGGCAGGGCGCGCGCTGTATGCCATTTCCGTGGCGGCCAAGCTGGCCGGCACTGGCCAGCAGAACATTCGACTCTACGAAACGAGGGGTCTCCTCACACCGGTCCGGACGTCCGGCGGAACCCGCCAGTACACCGATTCGGACATTGCCGTGCTGCTGCGCATCGGAGAACTCCTGGACCAGGGGCTCAATCTCGCCGGAGTGGCCAAGGTCCTTGAACTGGAGGCTGCTAACGCCAAACTGCACCGTGCCCTCAAACGCGCGCAGGCGCGCCCGGAGCCGGAACAGAAAGGTCGGTAAMNNGPTGRVPEPRAGRALYAISVAAKLAGTGQQNIRLYETRGLLTPVRTSGGTRQYTDSDIAVLLRIGELLDQGLNLAGVAKVLELEAANAKLHRALKRAQARPEPEQKGRPGPT0014625_1062DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014625-hspR-K13640NANA
D1-29_03952312hypothetical proteinATGGCCACTGAAGAGGACGTTCGCCGCATCTGCCTGGCGCTGCCCGGCGTTACCGAGCGCAGCAGCTGGAACCAGCCCGCGTGGTTCGCGAAGACCCTGATGGCCCGTATGTGGGAAGACGGTGTGTTGACGGTGAAAACGGCGGAGCGGGAAGCCCTGGCCGGGACCGACTCCGGAACCTACTTCTGGACGCCCCACCATGAGCGGTCCCCGCAGCTGATTCTGATCCGGCTCGCACGGATTGATGTGGAGGAGCTGGCGGAGGTGCTTGAGGAGTCCTACCTGCTGGCGGGTGGACGCGGAACCTCCTGAMATEEDVRRICLALPGVTERSSWNQPAWFAKTLMARMWEDGVLTVKTAEREALAGTDSGTYFWTPHHERSPQLILIRLARIDVEELAEVLEESYLLAGGRGTSNANANANANA
D1-29_03953705hypothetical proteinATGGACCCTGGGGCCCGAAGGAGGCTGTACCGGACTGCGATGGTCCTCATCGGGCTGGGTGTTGTCCTGTTCGTCGCCACCCTGCTGGGTGTAGTGCAGGGGAACGGGCTTGCGGCTGTGGACGGTTCGGCCCGTGACTGGCTGCTCACCCTCCGCTCGGAACCGCTGACCGGCGTGATGATCTTCCTGGCGGTGATCTTTGGGCCCGTTGCCCTGCCAATCATTGTTTTGGTGGTCAACGTGGTGTGGGGTTTTGCCGCGAAGCATGCTTGGCGTCCGATCGTCCTGGCTGCCGCGATGCTGTCAGGAGTTCTCATATCGCAGATCATCCTGCAGATCGTCAGGCGCTCGCGGCCTCCCGTGGAGCTGATGCTGTTCGGGGCGGACCATACGTTCTCGTTTCCGTCGGGCCACGTCCTGGGCGCCTGTGACTTCCTGCTGGTCACGGCGTTCCTGATCTTCTCCCGGCGCAAAAATCCGCGTGCCGCAGTCCTGGGTTTTGTGGGAGCAGGGGCGGGGATAGTCCTCGCGGCCCTCAGCAGGCTCTACCTGGGCTACCACTGGCTGAGCGATGCCCTCGCCTCCATCTCGTTGTCGCTGGTGATCCTGGGTGCCGTCATCGCATTGGATACCTGGCGTACCGCCCGGATTCCCGGCGAACGCATCACGGGCGAACTGTCCAAGGCAGATGCACCGGGCGACTGAMDPGARRRLYRTAMVLIGLGVVLFVATLLGVVQGNGLAAVDGSARDWLLTLRSEPLTGVMIFLAVIFGPVALPIIVLVVNVVWGFAAKHAWRPIVLAAAMLSGVLISQIILQIVRRSRPPVELMLFGADHTFSFPSGHVLGACDFLLVTAFLIFSRRKNPRAAVLGFVGAGAGIVLAALSRLYLGYHWLSDALASISLSLVILGAVIALDTWRTARIPGERITGELSKADAPGDPGPT0024170_16DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302NANA
D1-29_039541125yhaZCOG4335putative protein YhaZATGGGCGTCATGAATGAACTCATCAACGCGCAAGGCGTGGGATCCCTGGCCGGAATACTTGCTGAAGCCTCAGCCGGGAAGACCTGGGAACACGTTGCTGCCGCGGCAGCCGGACTCAGCCCGCTCAGCCTTCGCGAACGCACGGACCACGTGAGCCACGCTTTACTGGAGGATCTGCGTCAGTTGGCTGATCCGGCGTATCCGACCGCGGCCCGCACTTTCCGGAACGCCCTCCGGAGGCCCGCATTCACCGGCTGGATTCTGTGGCCGGTATCCGAAGCTGCCGTCACGCTCGCACTGGAATCGGGCTCAGACCAGGATTTCGACGATTGCCTGGCCCTGTTGGCCGAACTGACCCCGCGGCTCACCGGCGAATTCGCCGTCCGCCGCCTGCTGGCCCGCGATCAGGGCCGTGCACTCCGCACCATCCTGACATGGACGTCACATCCCGACGAACACGTCCGCCGGCTGGCCAGCGAGGGCACCCGGGCCTACCTTCCGTGGGCAGTGCGTGTGCCTTCGCTGATCCGCACCCCGGAAGCGACTGTCCCCATCCTGGACGCCCTCTACCGCGATCCGTCGGAGTACGTGCGGCGGTCGGTAGCCAACCACCTCAATGATCTGGCCCGGCATGCGCCGTCCCTGGTGGTATCGACGGCGGCACGCTGGCTGGAGGCGCCTGACGCCAACACCGCGGGCCTGGTCCGCCAGGGACTGAGGACGCTGATCAAGAAGGCGCATCCGGAAGCGCTGGCGTTACTTGGCTTCTCCCCCGCTTCGGTGACTGTCAGCGCACCGCGGCTTGACCGGCAGGTGGTGACCATGCCGGCCGAGCTGACTTTTGATTTTGAGGTGTCCAATACCGGCAGCACTGATGCCCGGCTGGCCGTGGACTATGTGGTGCACTACCTCAAGGCAAACGGCAGCCATTCGGCCAAGGTCTTCAAAATGACCTCACTGACCCTGGGCGCGGGAGAGACAAAAACCCTGTCAAAGCGGCACGCCTTCAAGCCCATGACCACCCGGGTGCACCATCCGGGAATGCACGCGCTGGAGCTGCAAATCAACGGAATACGCCATGCACGGGCCGAATTCGTCCTGGAAGCGGAACGCGTGATCCCATAAMGVMNELINAQGVGSLAGILAEASAGKTWEHVAAAAAGLSPLSLRERTDHVSHALLEDLRQLADPAYPTAARTFRNALRRPAFTGWILWPVSEAAVTLALESGSDQDFDDCLALLAELTPRLTGEFAVRRLLARDQGRALRTILTWTSHPDEHVRRLASEGTRAYLPWAVRVPSLIRTPEATVPILDALYRDPSEYVRRSVANHLNDLARHAPSLVVSTAARWLEAPDANTAGLVRQGLRTLIKKAHPEALALLGFSPASVTVSAPRLDRQVVTMPAELTFDFEVSNTGSTDARLAVDYVVHYLKANGSHSAKVFKMTSLTLGAGETKTLSKRHAFKPMTTRVHHPGMHALELQINGIRHARAEFVLEAERVIPNANANANANA
D1-29_039551125chvECOG4213Multiple sugar-binding periplasmic receptor ChvEGTGAGAATTAAGAAACTCCTGGGCGCGGTCGCCGTCGTCCTCGCAGTGACTGTGGGGGCCACTGGCTGCGGAACCCGTGGCGGGGAAGCAACCTCCACGGGCACTGCGAACCCCAGTGATTCCCTGGTTGGCATCTCCATGCCGACGCAGACATCGGAACGCTGGATCGCTGACGGCGCCAACGTCGAGAAGTCGCTGAAGGACCTGGGCTACAAGACAGACCTCCAGTTCGCCAACGATGACATCCCCACGCAGGTCTCCCAGATCGAGAACATGCTGACCAAGGGCGCCAAGGCCCTGATCATCGCCGCAATTGACGGCACCACCCTTACCGACGTCCTCGCCAAGGCGAAGGAATCCAACGTCAAGGTCATCGCTTACGACCGCCTGATCAACGGGACCGAGAATGTGGATTACTACACCACGTTCGACAACTACACCGTGGGCGTGCAGCAGGCCACATCCCTGCTGACCGGCCTTGGCCTGGTTGACGCCAGCGGCAAGAAGGTCGACGGCAAGGGCCCGTTCAACGTTGAGCTCTTTGCCGGCAGCCCGGATGACAACAACGCCAACTTCTTCTTCACCGGCGCCATGGACACCCTGAAGCCATACCTGGATGCCGGCACCCTGAAGGTCCCCAGCGGCCAGACCAGCTTCGAGCAGGCAGCCATCCTGCGCTGGCAGGCCCCGGTTGCGCAGAAGCGCATGGAAGACATCCTGACCGCGGCCTACAGCTCCGGCACCAAGCTTGATGGCGTGCTGTCCCCGTACGACGGACTCTCCATCGGCATCATCTCGGCACTGACCAGCACCGGTGGCTACGCCAAGGGAACCCTGCCGGTCGTCACCGGCCAGGACGCCGAAAAGGGCTCCGTGAAGTCCATCATCGCCGGCGAGCAGTACTCCACCATCTTCAAGGACACCCGCCAGCTGGGTGAACAGGCCGTGAAGATGGTCGACTCCGTGCTGAAGGGCCAGGAGCCTGAGGTCAACGACACCAAGACCTACAACAACAAGGTCAAGGTTGTTCCGGCCTACCTGCTCAAGTCCGTGATCATCACCAAGGACAACTACAAGAAGGAACTTATTGACTCGGGCTATTACACCGAGGCAGACGTAAAGTAAMRIKKLLGAVAVVLAVTVGATGCGTRGGEATSTGTANPSDSLVGISMPTQTSERWIADGANVEKSLKDLGYKTDLQFANDDIPTQVSQIENMLTKGAKALIIAAIDGTTLTDVLAKAKESNVKVIAYDRLINGTENVDYYTTFDNYTVGVQQATSLLTGLGLVDASGKKVDGKGPFNVELFAGSPDDNNANFFFTGAMDTLKPYLDAGTLKVPSGQTSFEQAAILRWQAPVAQKRMEDILTAAYSSGTKLDGVLSPYDGLSIGIISALTSTGGYAKGTLPVVTGQDAEKGSVKSIIAGEQYSTIFKDTRQLGEQAVKMVDSVLKGQEPEVNDTKTYNNKVKVVPAYLLKSVIITKDNYKKELIDSGYYTEADVKPGPT0015735_215DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0015735-sbpA-K10546NANA
D1-29_039561530xylG_2COG1129Xylose import ATP-binding protein XylGATGAATACACCCATTCTTCAAATGCGAGGAATCACCAAGACCTTTCCGGGCGTTAAGGCGCTGCAGGACGTCACCCTGGATGTTAACCGCGGCGAGGTACACGCCATCTGTGGTGAGAACGGGGCCGGGAAATCCACCCTCATGAAGGTCCTGTCCGGTGTCTATCCGCACAGCTCCTTCGAAGGGGACATCCTCTTCGAAAACGAACCCTGCAACTTCTCCACCATCAATGACAGCGAAAAGCGCGGCATTGTCATCATTCACCAGGAGCTCGCGCTGAGCCCCTACCTCTCCATCGCCGAGAACATCTACCTCGGCAATGAGCAGGCCAAAAATGGCTGGGTGGATTGGCGCAAGACCAATCTTGAGGCCGCAAAGCTGCTGGCCAGGGTGGGGCTGGCCGAAAATCCCATCACTCCTGTCCAGCACATCAGCGTGGGCAAGCAGCAGTTGGTTGAGATCGCCAAGGCCCTGTCCAAGGAAGTCAAGCTGCTGATCCTGGACGAGCCCACCGCGGCTCTCAATGATGAAGACTCCGGCCATCTCCTGGACCTGATCCTCCACCTCAAGGGCCAGGGAATCACCAGCATCATCATCAGCCACAAGCTCAACGAGATCCGTAAGGTGGCCGACGCCGTCACGATCATCCGTGACGGCAAGACCATTGAAACCCTCAGGCTGCATGAAGGCCAGATCACCCAGGAACGCATCATCCGCGGCATGGTGGGCCGCGACCTGGAAAGTCTCTATCCTGACCGCGACCCCAAGATCGGCGAGGAAGTCCTGCGGATTGAGGACTGGTCCGTCCAGCATCCCCAGGACCACACCCGCGTTGTAGTCCATAACGCAAGCCTCAATGTCCGCAAGGGCGAAGTGGTGGGGCTGGCAGGCCTGATGGGGGCAGGCCGGACGGAACTTGCCATGAGCGTTTTCGGACGCACGTACGGCCACGCCATCTCCGGGAAAGTGTTCAAGTATGGCAAGGAAATCGACACTTCCTCGGTCTCCAATGCCATCCGGCATGGCATCGCGTATGCCACCGAGGACCGCAAGCATTACGGTCTGAACCTTATCGAAGATATCCAGCGGAACGTCTCCCTGGCAGCCCTTCGCAAGCTGGTCAAGGGCGGCTGGGTAGACAAAAACCGGGAAACGGTGGTGGCCAACAGCTACCGCAAGAGCATGAACATCAAGGCTCCCTCCGTTGCCGCGATCACCGGCAAACTCTCCGGCGGAAACCAGCAAAAGGTGGTCCTGAGCAAATGGATGTTCTCCGACCCTGATGTGCTGATCCTTGATGAGCCAACCAGGGGTATCGACGTCGGCGCCAAGTTCGAGATCTACACGATCATCGCCAAGCTGGCAGCGGAAGGAAAGGCAGTCATCGTCATCTCATCCGAACTGCCCGAACTCCTTGGCATCTGTGACAGGATCTACACCTTGTCAGCGGGCCACGTCACCGGCGAGGTGCCCATCGCCGAAGCATCCCAGGAAACCCTCATGCACTACATGACCAAAGAGAAGGAATAGMNTPILQMRGITKTFPGVKALQDVTLDVNRGEVHAICGENGAGKSTLMKVLSGVYPHSSFEGDILFENEPCNFSTINDSEKRGIVIIHQELALSPYLSIAENIYLGNEQAKNGWVDWRKTNLEAAKLLARVGLAENPITPVQHISVGKQQLVEIAKALSKEVKLLILDEPTAALNDEDSGHLLDLILHLKGQGITSIIISHKLNEIRKVADAVTIIRDGKTIETLRLHEGQITQERIIRGMVGRDLESLYPDRDPKIGEEVLRIEDWSVQHPQDHTRVVVHNASLNVRKGEVVGLAGLMGAGRTELAMSVFGRTYGHAISGKVFKYGKEIDTSSVSNAIRHGIAYATEDRKHYGLNLIEDIQRNVSLAALRKLVKGGWVDKNRETVVANSYRKSMNIKAPSVAAITGKLSGGNQQKVVLSKWMFSDPDVLILDEPTRGIDVGAKFEIYTIIAKLAAEGKAVIVISSELPELLGICDRIYTLSAGHVTGEVPIAEASQETLMHYMTKEKEPGPT0016530_608DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016530-gguA|ABC_GGU_A-K10548NANA
D1-29_039571311xylHCOG4214Xylose transport system permease protein XylHATGTCCGCCCTACGAGAATCCCTCGGGTTCCTGACAAGCCGCCTCCGGCAGGTCGGCATCTTTGTTGCCCTGATCCTGATCGTCCTGCTGTTCCAGGTGCTCACCGACGGAATCCTGCTGCAGCCGCAGAACGTCAGCAACCTTGTAGTCCAGAACAGCTACATCCTCATCCTCGCAATAGGAATGGTCATGGTGATCATCGCCGGCCATATCGACCTCTCGGTTGGGTCGATCGCCGGCTTCATCGGCGCCGTTGCCGGCGTCATGATGGTTCACTGGGGGTGGGCCTGGTGGCTGGCCATCCCTGCCTGCCTCCTGGTGGGAGCCCTGGTGGGAGCGTGGCAAGGCTACTGGATTGCGTACGTTGGCATCCCGGCGTTCATCGTCACCCTGGCCGGCATGCTGATCTTCCGCGGCCTCACATTGATCACGCTTAAGAACCAGCAGATCACCCCGTTCCCGTCCGAGCTTCGAGCGCTGGGCGGCGGCTTCCTGCCGGACATTTCCGGCGGCACCTCCGTCCTGGAGTGGCTGACCGTGATCCTGGGCGTGGGAGCCACCCTGGCACTGGTCATCCAGGCCCTCAAGGAACGCAGGATCCGAAAGAAGTTCGATCTCGAGAACGAACCGATGGCCTGGTTCGCCACCAAGACAACCTTCGTAGCCCTGCTCGTGCTGATCATCACGTTCCTCCTGGCGAGCTACCGGGGTACACCCATTGTTCTCATCGTGCTGGCTGTCCTGGTGATCGGCTACACGGCGTTGATGAACAACAGCGTCTTCGGCCGCCACGTCTACGCCATCGGCGGAAACCTGCACGCAGCCGAACTCTCCGGTGTGAAGACCAAGGCCGTCACCTTCCGGCTGTTCGTCAACATGGGCGTCCTGGCCGCCCTCGCCGGCCTGGTCTTCACTGCCCGCCTGAACTCCGCACAGCCTGCCGGCGGCACCGGCTTCGAACTGGACTCCATCGCCGCCGCCTTCATCGGCGGCGCGGCGGTTACGGGCGGCATCGGCACCGTGGCTGGAGCAATGATCGGTGGCCTGATCATGGGCGTGCTGAACAACGGCATGTCCATCCTCGGCCTGGGCACCGACTACCAGCAGCTCATTAAGGGGCTCGTCCTCCTGCTGGCCGTCGGTTTCGATATCTTCAACAAGAACCGCACAGGTGGCGGTGGAAGTACCATCGGCAAGAAGTTCAAGTTCAGGACTTCGCCGCCGGCCACCACCGAATCCAAGGCACCCGCGGCTACCCCCGCCCAGTCGCAGGACCGGCCTGTCCCGGTTCCCTCGGTGAAGCCGGAGTAAMSALRESLGFLTSRLRQVGIFVALILIVLLFQVLTDGILLQPQNVSNLVVQNSYILILAIGMVMVIIAGHIDLSVGSIAGFIGAVAGVMMVHWGWAWWLAIPACLLVGALVGAWQGYWIAYVGIPAFIVTLAGMLIFRGLTLITLKNQQITPFPSELRALGGGFLPDISGGTSVLEWLTVILGVGATLALVIQALKERRIRKKFDLENEPMAWFATKTTFVALLVLIITFLLASYRGTPIVLIVLAVLVIGYTALMNNSVFGRHVYAIGGNLHAAELSGVKTKAVTFRLFVNMGVLAALAGLVFTARLNSAQPAGGTGFELDSIAAAFIGGAAVTGGIGTVAGAMIGGLIMGVLNNGMSILGLGTDYQQLIKGLVLLLAVGFDIFNKNRTGGGGSTIGKKFKFRTSPPATTESKAPAATPAQSQDRPVPVPSVKPEPGPT0016525_39DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_II,PGPT0016525-gguB|ABC_GGU_P-K10547NANA
D1-29_03958210hypothetical proteinATGTCTACCCCCATAGACCGCATTGATATCGAAGTCGCCAGCCGGCACCTTTTGGACGACGAGCTCGACGCCGCCGTCAAACGCCTTCAGGAAGTGGCCCTCCTTGCCGGCACACACGGCATCCTCGTTACCCGGGTAGGACCGGGCCGCTACACCGCAACCCTGTCAGACCAGGTTCCGTTTGGAATGACCCGCGAACTGGTTTCCTAAMSTPIDRIDIEVASRHLLDDELDAAVKRLQEVALLAGTHGILVTRVGPGRYTATLSDQVPFGMTRELVSNANANANANA
D1-29_03959216hypothetical proteinGTGGACGAGCCCACCGAAGACTGGCATCAGCTCATTGGCAGCTGGGTGGAGTTGCGCTCTGGGGGGAGCGTCATCCGCACCGGCGAAGTTGAGACTGCCACGGCGGACTCGTCAGTCATGTGGCTGAAGTTCAACGGCAATCACGGACGGCAGATGGTGGCCAAGACGGACGGCTACGAAGTCCTGCCGATCCGCGAATCCGGCTTCGGGACGTAGMDEPTEDWHQLIGSWVELRSGGSVIRTGEVETATADSSVMWLKFNGNHGRQMVAKTDGYEVLPIRESGFGTNANANANANA
D1-29_039601812hypothetical proteinGTGCTGCCTGCCGCCGTTTTGGTTGCCGCCGCTGCCCTGGCGGCGGCCGCTGTTCCAGCCGCAGCAGTTGCCCCGGCAGAGGCCGGAGCCAGCTCCCGCTACATCGTCAGGTACTCCGCGGACGCCGACCCGGCCGCCGAAGCAACAGCCCACAAGTCCCGGGGCATAGGGGTTAACAAGACGTTTTCGCACGCCTTCAAGGGCTCGGTGGTGACAGCAAATCCGGCACAGGCTGCGGCGCTGGCCCGTTCAGCCCGCGTCACGTCGGTGGAAGCGGACGCCCCTGTGAGCATCTCGGGAACACAGCAGCCCGCTCCTTGGGGCCTGGACAGGGTGGACCAGCGGCCGCTGCCCCTCTCCGGCTCCTACACCTGGACGGCATCCGGTGCGGGCGTCAGCGTCTACGTGGTGGACACCGGCGTCCTGGCCTCCCACGCCGAATTCTCGGGCCGGATCACAGCCGGCTGGACAGCCGTTGCTGACGGCCTCGGATCGGGTGACTGCAACGGCCACGGCACGCACGTGGCCGGCACGGTGGCCGGGTCCACCTACGGTGTAGCCAAGACCGCAACCGTGGTTCCAGTACGGGTCCTCGATTGCAACGGTTCAGGCTACAACTCCGACGTCGTGGCAGGGCTCGACTGGATCGCTGCCAACCACTCGGCCGGGACGCCCGCCGTCGTCAACATGAGCCTTGGGGGAGCAGCAAGCTCAGCGGTTGACGCCGCGCTCCAGGGCGTTATCAACGACGGTGTAACTGCAGTGGTTGCGGCGGGCAACTCCGCCGTTGATGCTTGCGGCAGTTCCCCGGCACGCCTCCCCGCTGCAGTGACCGTGGCGGCCAGCGATTCCGCTGACCGGCAGGCCTCCTTCTCCAACTTCGGCGCCTGCGTAGACCTCTATGCCCCGGGTGTAGGGATTGTCTCTGCCCACCACACGTCTGCCGCCGCAACTGCTTCCATGTCCGGCACCTCCATGGCCGCACCCCATGCCGCCGGTGCCGCCGCCGTGCTGCTGTCCCAGAATCCGGCATTCACCCCGTCGCAGGTCGCGGCAAGCATCGCCTCGAACGCTACCCCCGGCGCCATCACGGCGGCCGGACCCGGCACACCCAACCGGCTGCTTTTCACAGGAGCGGCTCCGGTCAGCACCCAGCCTCCGGTCGCGCTCGTGCCGCCTGTAGTCACGGCAATGTCACCGGCTCCCGCTACCACGTCGGTGGCTGTTGGCAGCAACGCAACAGCCGTTTTCGGCACCGCGGTTCAGGGGGTCGGGGCAGGAACTTTTGTGCTCAGGAACTCCGCCGGCACCATCATCCCTGCCACAGTCAGTTACAACGCCACCACCCGCACCGCCACCCTGGATCCAACATTGAGCCTGGCTGTTGACGCCACGTTCACCGCCACGCTGGTGGGTGGCGCCACTGCCATCCGCGACGCCGCCGGAACTCCGCTGGCCACCACCAGCTGGACGTTCGTGACCGGTCCGGCTCCAACGCTCACCGCCCTTACACCCCGGATCAACGACAGTCTGGTGCGAAGGAGCAACAACGTCACCGTGACGTTCAGCGAGGCAGTCCAGGGGGTGGGCTCAGCCACCTTCACGCTGAAGAACGCGGCAACGGGCGCAGTGGTCACGGCCGCCGTTGTGCGCAACGGCAACACTAACCAATGGATCCTGGATCCGCAGCAGGCTCTGGCCCCGAAGACCAAGTACACGGTGACCGTCTCCGGCGGACCGGCAGCGGTCCGCGACCTGGCCGGCAACCAGCTGGCCACCAGGACCTGGCAGTTCACCACCGGCTCGTTCTAGMLPAAVLVAAAALAAAAVPAAAVAPAEAGASSRYIVRYSADADPAAEATAHKSRGIGVNKTFSHAFKGSVVTANPAQAAALARSARVTSVEADAPVSISGTQQPAPWGLDRVDQRPLPLSGSYTWTASGAGVSVYVVDTGVLASHAEFSGRITAGWTAVADGLGSGDCNGHGTHVAGTVAGSTYGVAKTATVVPVRVLDCNGSGYNSDVVAGLDWIAANHSAGTPAVVNMSLGGAASSAVDAALQGVINDGVTAVVAAGNSAVDACGSSPARLPAAVTVAASDSADRQASFSNFGACVDLYAPGVGIVSAHHTSAAATASMSGTSMAAPHAAGAAAVLLSQNPAFTPSQVAASIASNATPGAITAAGPGTPNRLLFTGAAPVSTQPPVALVPPVVTAMSPAPATTSVAVGSNATAVFGTAVQGVGAGTFVLRNSAGTIIPATVSYNATTRTATLDPTLSLAVDATFTATLVGGATAIRDAAGTPLATTSWTFVTGPAPTLTALTPRINDSLVRRSNNVTVTFSEAVQGVGSATFTLKNAATGAVVTAAVVRNGNTNQWILDPQQALAPKTKYTVTVSGGPAAVRDLAGNQLATRTWQFTTGSFNANANANANA
D1-29_03961696dehH2Haloacetate dehalogenase H-2ATGGCATTCGAATTCGAAACCAAGCCGAAGTTCGTGACGTTCGACATGAACGGAACGCTGATCAAGTTCGCTATCAGCGACGCGCTGCGTCAGGTGCTGGGCGACCGGCTGCCGGCCGAGCTGGCCGAAGACTACCTGCAGGCCTGCAAGGCGTACCGCATCGACGAGTGCATGGGCGAATACAAGCCGTTCCGCGAGATCGTCGCCAACTCCATGGAACGCGCCTCACGCAGGCTTGGCATTGAGTACCGCGAGGCCGATGCACAGGCGGTTTACGAGATCGTCCCCACCTGGGGCCCGTACCCCGGTGTCACCGAGGCACTGAACCGCCTGGCTGAAGAAATCCCCCTGGTCATCATCACGAACAGCGAAACCGCTGATGCTGCCCGCCTTTCGGCCAACCTCAAGGCCCCCTTCGACGTCGTCATCAGCGCAGAGGAGATGGGCACCTACAAGCCGCGGCTCGGTGCATTTGAGTACATGTTCGACAAGCTTGGCGTGACACCGGACGAGATCGTGCACGTCTCTGCGAGCCCGATGTATGACCTGCGCTCAGCCGCTATCCTCGGCATCAAAAACAAGGTGTATGTGGACCGCGGCTTCGAGCAGGACGAGCACTGGCTCGGCTACGAGCGGATCACCGACATCGCCGACCTCCCCGTCCTCTTCGGCCTGCCGCGTCCCGCTGGCTCCTAAMAFEFETKPKFVTFDMNGTLIKFAISDALRQVLGDRLPAELAEDYLQACKAYRIDECMGEYKPFREIVANSMERASRRLGIEYREADAQAVYEIVPTWGPYPGVTEALNRLAEEIPLVIITNSETADAARLSANLKAPFDVVISAEEMGTYKPRLGAFEYMFDKLGVTPDEIVHVSASPMYDLRSAAILGIKNKVYVDRGFEQDEHWLGYERITDIADLPVLFGLPRPAGSPGPT0006885_1444DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-29_03962471hypothetical proteinATGAGCGTCACCAAGGCCGGTTCGGCTTCGGATCGTCTCCAGGCCCTTGGCCTGGAACTTCCCAGCCTTGCTGATAATCCGTACTACGTGGACCACCGCGCGGTGGATTCCAGCATCCACATCTCGGGCCAGCTGCCTTACAAGGACGGTGTGCTGCTGGGCCAGGGCGTTGTTGGCCGGGACGTAGACCTGGAGACAGCACGGGAGCTCGCCCGCCATTGCGCGCTGAACTGCCTGGCTGCCGCTGTACAGGCGGTAGGGGACCTGGACCGGGTCCGGATCGTGCAGATGCTGGTCTTCGTGGCCAGTGAGCCGGACTTCGGACTGCAGTCCCGGGTCGCCAACGCGGCCAGCGAATTGCTCATCGAAGTGTTGGGTGAGAACGGGCGCCACGCCCGTACAGCGATCGGTGTCGCAGGGTTACCGGCCAACACGCCGGTAGAGATCCAGATGATCTGCACGGCCGTTTAGMSVTKAGSASDRLQALGLELPSLADNPYYVDHRAVDSSIHISGQLPYKDGVLLGQGVVGRDVDLETARELARHCALNCLAAAVQAVGDLDRVRIVQMLVFVASEPDFGLQSRVANAASELLIEVLGENGRHARTAIGVAGLPANTPVEIQMICTAVNANANANANA
D1-29_039631104D-threonine aldolaseGTGAACCGCATTCAACAAGCACTCGAGGCTCTCCTCGGGCGAGTTGACACCCCGGCACCGATCGTCCTGGCCGACGTCATGCAGGAGAACATCGACCGCATGCAGGCCTTCGCCGCCCGGCAGAACCTGGACGTTCGGCCGCACGTCAAGACGCACAAGTGTGTGGAAATAGGCCGGCGCCAGGTCAAGGCCGGGGCGGTCGGAATCACCGCGGGCAACGTGGGTGAGGCCGAAGTCTTCGCCGCGGCCGGGTTCGAGGACATCTTCCTCGCCTACCCCATCTGGCCTTCGGGAACGAAAGGGCCAAGGATCCGCAAACTGGCCGAAACCACCCGGCTGCGGGTCGGCGTCGACAACCTCGCGGCGGTCAACGCCCTCGCCGACGCGATGGGATCAGACCCTGACAGGCTGGAGATCGTGATTGAGATCGACTGCGGTGCCCGGCGTTCCGGCGCTCCTGCCGAGGCCGCGGGTGACCTCGCCCTTGCCGCCCGCAACCGCGGCCTGATCCCGGCCGGCGTCTTCACCTACCCCGGCCACGGCAGCGCCGGGCCGGACGCCCGCAAGCGCGCCGCCGAGGACCAGGACGCCGCCCTCGTCACAGCTGTCCGCAGCCTCACTGCGGCCGGGATCACTCCCGAAGTGGTCAGTGCCGGCTCCACACCCACCGTGGAATTCGCCACCAACAGCGTCATCACCGAAATCCGGCCCGGCGAATACGTGTTCAACGACCTGAACAACACCAGGCTCGGCGCCTGCACCGCGGATCAGATCGCGCTCTTCGTCGCCGGCACCGTGGTCAGCGACTGGGTCCCCGACCAGGTCATCCTCGACATCGGCACCAAAGCCCTCGGCCGCGAAGGCAACCCCGAAATCGGCTACGGCGCCATCGCCGGCACCAACGCCCTCCTGTCCAAACTCAACGAATACCACGGATTCCTCCCCCTGCCCGCCGGGTTCCGCCCCAGCGTCGGGACCGTGCTTCCGGTAGTGCCCAACCACGTCTGCCCCGTCGTTGTGAACTTCGAGGAATACATCGTTACCGACAGCACCGGGACCACGCTGGAACGCTGGCCGGTCGACGCCCGCGGATTCCTCAACTGAMNRIQQALEALLGRVDTPAPIVLADVMQENIDRMQAFAARQNLDVRPHVKTHKCVEIGRRQVKAGAVGITAGNVGEAEVFAAAGFEDIFLAYPIWPSGTKGPRIRKLAETTRLRVGVDNLAAVNALADAMGSDPDRLEIVIEIDCGARRSGAPAEAAGDLALAARNRGLIPAGVFTYPGHGSAGPDARKRAAEDQDAALVTAVRSLTAAGITPEVVSAGSTPTVEFATNSVITEIRPGEYVFNDLNNTRLGACTADQIALFVAGTVVSDWVPDQVILDIGTKALGREGNPEIGYGAIAGTNALLSKLNEYHGFLPLPAGFRPSVGTVLPVVPNHVCPVVVNFEEYIVTDSTGTTLERWPVDARGFLNNANANANANA
D1-29_03964735bacC_6Dihydroanticapsin 7-dehydrogenaseATGAGACTTGATAAGACCACGGCCCTGGTAACCGGCGCCAACAGCGGAATCGGGCAGGCAGTATGTTCCCATTTCCGGAACGAAGGCGCCCGGCTGCTGCTCACCGGCCGCAGGGAGCAGATCGACAGCGCCCAGCCCGATGACCTGTACGTCCCCGGAGACCTCAACGACGAGGCGTTCGTCGAAAGCCTGGCCCGGCAAGCCGCCGAGTCCTTCGGCACCGTGGACGTCGTCGTCCTCAACCACGGCCTGCAAGTCAGCGGCCCGCTGACGGAAATGGCCTACGAGGACGCGAAGAACGTGCTGCACAGCAACCTGCTCAGCTCCTTCCTGGTGATGAAGCACTTCGCGCCGCTGATGCCCGCCACGGGTGGGTCATTCGTCCTCGTCAGTTCACGGCTGGGCATGGTCGGCAAGCCCGATGAAGTCCTGTACTCCGCGGCCAAGGGCGGCCTGATCATGCTCGCCAAGGGCGCGGCGATCGAATGGGCCGCACGGAACATCCGGGTCAATATCGTCGCACCGGGGCTGACGGCGACCCCGATCATCGAAGCATCGTTCCAGCGCAGGGAGGACCCCGAGGCCTACCGCGCTCAGCGCGAAGGCCAGATCCCGCTCCAGCGACTGGCCACCCCCGAAGAGATCGCCGACGCCATCCTCTTCATGGCGTCCCCGGAATCGTCCTACATCACCGGGGCGGTCCTGCCCGTCGACGGCGGATACACCGCCGCCTAAMRLDKTTALVTGANSGIGQAVCSHFRNEGARLLLTGRREQIDSAQPDDLYVPGDLNDEAFVESLARQAAESFGTVDVVVLNHGLQVSGPLTEMAYEDAKNVLHSNLLSSFLVMKHFAPLMPATGGSFVLVSSRLGMVGKPDEVLYSAAKGGLIMLAKGAAIEWAARNIRVNIVAPGLTATPIIEASFQRREDPEAYRAQREGQIPLQRLATPEEIADAILFMASPESSYITGAVLPVDGGYTAANANANANANA
D1-29_039651407hypothetical proteinATGACAGCCCTTGCGGCAACACCCCGAAACGGCGAACTCGGCTTCTGGATGGCCGGACTCTCGGACACCAGGCCCACCTATCCCCGCTTTACCGGTCAGGACTCTGTAGACCTGGCCATTATCGGCGGCGGCTACACCGGCCTGTGGGCCGCGTACTTCGCCAAGAAACTCGAACCCTCACTCAACGTCGCGGTCTTTGAGGCAGAACAGATCGGCTACGGCGCCTCCGGACGCAACGGCGGCTGGCTCTCGGCAATGCCCCCGGGAAACCGCGCCACCTTCGCCCGCGCATCCGGCGGCGGGATCGACGCCAGCATTGCACTGCAGCAGGAGTTTGTCGCCGGCGTCGATTCCGTCCTGGATATTCTCCAGGCCGAGGGCATCGACGCGGATCAGAACAAGGGCGGCGCGCTCGTGGCTGCCCACACCAGGGCCGGGCTGGGCCGGCTGGTGAGCAGGCGTGACACCGACTGGAAGTACGGGCTGACCGAAGACGATGTCCATCTGCTCAACCGGAACGAATTCCAAAGCCAGATCAACATCTCCACCGTCCACGGCGGACTCTTCTACAAGAACTGCGCGCGGATAAATCCGGCCAAACTCGTCTACGGTCTCGCCGAAACCCTGACCTCCATGGGGGTGAGCATCTACGAAGGCAGCCGGGTAGGCAGCGTCGAGAACAAGACCCTCACTGTGAACAACGGACGGGTGACCGCGGCCAAGACGTTCATCTGCACCGAAGGGTATTCCGGAGAACTGCTGGGCAGCAGGACCCTGATCCCGATCAATTCCTCGATGATCGTGACCAAACCGCTCTCGGAGGAGGCGTGGGAGCAGATCGGCTGGAACGGGCCGCAGTGCCTTAACGACTCCGCGCACACCTTCATCTATTCGCAGCGAACAGCGGACGGCCGGATCGCCATCGGCGGCCGCGGAGCGCCGTACCGCTACGGCTCAGGCACCGGAGGCGCCGGTTCAACACCACAATCCACCATTGACCTGATCTCCACCAAGCTGCGCTCCTTCTTCCCCGGGATCCCCTTCGAAGTGGACCACGCCTGGTCCGGAGTCCTCGGGGTGACCCGTGACTGGAACGGCGGCGTGCACTGGGACCAGGCATCCGGAATCGGATCCTCCACCGGCTACGCGGGACACGGCGTCACGGCAGCCTACGTTGGCGGCAGGACCCTCGCGGAGCTCGCCTTCGAGAAGGAAACAGAACGCACCACGCTTCCCTGGGTCGGCTATCGGGCACGGAAGTGGGAACCCGAACCCCTCCGCTGGCTCGGTGTTCACGGCATGTACCGGCTCTTCGGACTTGCCGACCAGTGGGAAGAACGCCGGGACTCCACCAAGACCTCACTGCTGGCCAAATTCGGCAGCAGGCTCGCCGGACTTCACGAATAAMTALAATPRNGELGFWMAGLSDTRPTYPRFTGQDSVDLAIIGGGYTGLWAAYFAKKLEPSLNVAVFEAEQIGYGASGRNGGWLSAMPPGNRATFARASGGGIDASIALQQEFVAGVDSVLDILQAEGIDADQNKGGALVAAHTRAGLGRLVSRRDTDWKYGLTEDDVHLLNRNEFQSQINISTVHGGLFYKNCARINPAKLVYGLAETLTSMGVSIYEGSRVGSVENKTLTVNNGRVTAAKTFICTEGYSGELLGSRTLIPINSSMIVTKPLSEEAWEQIGWNGPQCLNDSAHTFIYSQRTADGRIAIGGRGAPYRYGSGTGGAGSTPQSTIDLISTKLRSFFPGIPFEVDHAWSGVLGVTRDWNGGVHWDQASGIGSSTGYAGHGVTAAYVGGRTLAELAFEKETERTTLPWVGYRARKWEPEPLRWLGVHGMYRLFGLADQWEERRDSTKTSLLAKFGSRLAGLHENANANANANA
D1-29_03966930hypothetical proteinATGAAGACCATAAATAAGATCCAGACGGCGGCCGCCGGGCTCGCTGTTGTGTTGGCCCTGTCCGCTTGTGGCGGCGCGGCATCATCGAATGCCCCGGCGGCGGAACTTTCGAAGACGCAGAATACCCGGGATGTTTCCGAGGGGGTTCAGCCGGACGCTGCGGCGGTGGCGTTGTTGCCTGAGTCGTTTAAGTCCAAGGGTGAGATCACGGTGGCGATGGATCTGAGTTCCCCGCCGATGACGTTCCTCGCCGAGGATAACTCCACCCCGATCGGGCTGAACCCGGACCTGGCCCGGCTCGTGGCGAAGAAACTGGGGCTGAAGCTGAAGTTCGAAAACACCGCGTTTGACACGATCATTCCCGGGATCGACGGCGGCCGGTACGACTTCACCGCCACCACGATGTCCGCCACCGAAGAACGGCTCAAGGTCCTGGACATGATCAACTACCTCAAGGGCGGCTCGGCCGTATCGGTACCCAAAGGCAACCCGAACAACCTGACCAACGACATCCTGTGCGGGAAAAACATCGGCGTGACCAAGGGCTCCACCCAGCAGCTCAAGCACCTGCCCAACGTCTCGAAGTGGACCTGCGAGGAAAAGGGCCAGCCCGCCATCAACGCCATCACCCTGCCCAACGTCCAGGAAGCCCTGACCCAGCTGGACTCCAAACGGATCGACGGTGTCTTCTACGACGCCAGTGCCCTGGCCTGGGCCAACGAACAGCAGCCGGACCACTTCCACATTCTGGAACCGCGGATTGATACCCGCACCAACACCAACGTCGCCATGGGCGTCAAGAAGGGCTCAGCGCTGACCCCGGCGCTGCAGGCAGCCATCCAGTCCGTCCTGGAAACCCCTGAATACAAGGAATCCCTGGAGTACTGGGGCCTGGGCGAATCAGCCATCACCGAAGCCGCAATCCGCTAAMKTINKIQTAAAGLAVVLALSACGGAASSNAPAAELSKTQNTRDVSEGVQPDAAAVALLPESFKSKGEITVAMDLSSPPMTFLAEDNSTPIGLNPDLARLVAKKLGLKLKFENTAFDTIIPGIDGGRYDFTATTMSATEERLKVLDMINYLKGGSAVSVPKGNPNNLTNDILCGKNIGVTKGSTQQLKHLPNVSKWTCEEKGQPAINAITLPNVQEALTQLDSKRIDGVFYDASALAWANEQQPDHFHILEPRIDTRTNTNVAMGVKKGSALTPALQAAIQSVLETPEYKESLEYWGLGESAITEAAIRPGPT0020800_2395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_039671131soxA_6Monomeric sarcosine oxidaseATGGACGGAAAACTCGCCGTCATCGGCCTGGGCAGCATCGGCTCCATGGCCCTCTGGCAAGCCAGCCAACTCACCGATTCCATCACGGGTTTCGAAGCCCACACCCCCGCCCACGGCCGCAGCGCCGTGGGCGGGGACACCCGGCTCTTCCGCATGATCTACCGCGGCAACCCCCACCTCTACCCCATTCTGGAACGCTCACGGGACCTCTGGGCCGAACTCGAAGCCGAAACCGGCCAGAACATCCTCACCCGCTGCGGTGGGCTCTCCATCGGCACCAAAAACGGCCCCTACCTCACAGCCCTCCTCGAAACCATCAAACAAACCGGGGCCGAGCACGAAATCCTCAGCCACGAACAGATGGCCCAACGCTACCCGCAGCACAACCTCCGCCCCGACGACATCGGAGTCTACGACCCCCACGCCGGCGCCCTGCGCACGGACCGCGCCGTCACAGCCGCCATCACCGCCGCCCAAACCAACGGCGCAACCATCCGCAGCAACACCCCGATCAACAACATCACCGAAACCCCCCACGGGGTCCTCATCACCTCCGGCGAGAAATCCTGGACCTTCGAAAACGTCATCATCGCCTCCGGCGGCTGGTCCCAACTCCTCATGCCCGACTACCTGAAGGCGGCCACAGTAGCCAAACGGCTCTTCCTGACCTGGTTCGTGGCCAGGGACGGGGCCGAATTCACCCCTGACAAATTCCCCACCTTCAGCCGGGTACACGAGGGCCGTTCCATGTATGGCGCACCGGCGGTTGACGGGGTCACCGTCAAGGCAACCCTGGACGGCCGCGGCGGACCAACACCGGACCCGGGCGCCTTGCCCAGGGAACTGACTCCCGCGGAAATAGCCGAGACAACCGAAACCGTCACCGACTTCCTCCCCGGCCTCATCCCCAACATCGTCCGCTCCGACACCTTCCCAGACCTCTACACCAAGGACGGCAACCCGCTGGTCGGCCGGTTCAGCGACGGAAGCAGGATCTACTGCGCCACAGGCTTCTCCGGCGGCGGCTTCAAAAACGCCACCGGCTACGGCCAAATCGCCGCACACGAAGCCCTCGGCAAACGCACCTTCGACGGCTTGGACTTCGTCCGGCCCCAACGATTTCAGACCTAGMDGKLAVIGLGSIGSMALWQASQLTDSITGFEAHTPAHGRSAVGGDTRLFRMIYRGNPHLYPILERSRDLWAELEAETGQNILTRCGGLSIGTKNGPYLTALLETIKQTGAEHEILSHEQMAQRYPQHNLRPDDIGVYDPHAGALRTDRAVTAAITAAQTNGATIRSNTPINNITETPHGVLITSGEKSWTFENVIIASGGWSQLLMPDYLKAATVAKRLFLTWFVARDGAEFTPDKFPTFSRVHEGRSMYGAPAVDGVTVKATLDGRGGPTPDPGALPRELTPAEIAETTETVTDFLPGLIPNIVRSDTFPDLYTKDGNPLVGRFSDGSRIYCATGFSGGGFKNATGYGQIAAHEALGKRTFDGLDFVRPQRFQTPGPT0013530_435DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
D1-29_03968684gntR_5putative D-xylose utilization operon transcriptional repressorATGGCAGCACCGGAAGGACTCCTTGCACTGGAGGGAAGGCCCACGGCGCAGCTGATCGCCGATCAGCTGCGCGAACAAATCGTTCAGGGTGCCTTCCGTCCCGGAGAGCAGATCAATGAATCTGTCCTGGCAAGCCAGCTGGACACTTCCAGGGGCTCTGTCCGCGAGGCATTGCAGCGGCTGTGCCAGGAGGGAATCCTGGTCAGGCGCCACAACAGGGGCGTCTTCCTCCTTGAGCTAACTTCCCATGACATCAGCGAGATCTACGCAGCCCGCCAGGCGGTGGAATCAACTGCCGCGGCCGTCCTGGTCGATGCCGGCCAGGACCAGGTCAAGGACACCTGCCAGGCCCTGAAAGCCATCATCAGTGAAATGGCCAAGCAGGCGGCCGTCTCGGACTGGCAGGCAATTGCCCGGCTCGATATCGATTTCCACACCACCTTCGTGGCCGGGGCGGGCAACACACGCCTGATCCGGATCTACGAAACCCTCGCAGCCGAATCCAGGATGTGCATTCTCAACCTGGCCGCCGCCTACCCACGCATGGACGTCCTGGTCCAGGAACACCAGACCCTGCTGGATCTGCTCGAGGCCGGAGACAAGGAAGGACTCAACAAAGCCATCAAACACCACCTGGAAACGGCCGTCGAGGACCTCACCACACCTGAGCGGGAGAAGCCATGAMAAPEGLLALEGRPTAQLIADQLREQIVQGAFRPGEQINESVLASQLDTSRGSVREALQRLCQEGILVRRHNRGVFLLELTSHDISEIYAARQAVESTAAAVLVDAGQDQVKDTCQALKAIISEMAKQAAVSDWQAIARLDIDFHTTFVAGAGNTRLIRIYETLAAESRMCILNLAAAYPRMDVLVQEHQTLLDLLEAGDKEGLNKAIKHHLETAVEDLTTPEREKPNANANANANA
D1-29_03969663hypothetical proteinATGGACGGCAAATTCGCATGGCAGGAACAGAGGACAACGACACCGGACGGCGTCTACCGCGTGCTGCGCACAGCAATCCTGGATGGCACCGTGGCTCCAGGGGAACAGCTGCGCGAGACGCACATTGCTGCCGACCTTGGGATCAGCCGGTCCCCGCTGCGGGAGGCGCTGACCAAGCTTGAAGAAGAGGGGCTGGTGGTGAAGATCCCCTTCAAGGGATCCTTCGTTGTGGAGGTAAGTGCCCGCGACGTCGCCGAGATCGCCTCAATCCGCATGCTTGTGGAGCCTTATGCCGCTGAGCTCTCTGCCCCAACGTTGCGCGGTCCTGAGCGGCTTCGGTTGAAGCAGACCATCGAGGAACTGTACCGGGCCACGGACACGAACGATATCCCGGCAAGCGTTGACGCCCACCTTCGCTTCCACAGGCTCTTCTACGAACTTTCGGGCAACACTGCCCTGCAAAGTCTGTGGAACGGCTGGGAGAACAAGCTGCGTCTCTACTTCGCGGCAGATCATCCGACCTACAGCAACCTCCATGAAATCGCCGTCGAGCACGAGCGACTGGCTGAACTTGCCTTAAGCGGTGACATCGAATCGTTCCGTCAGGAGATGGCAAGCCAGTTCCACAATGCGCTCAGCGGCGAAAGCCAAAACGAATCCTAGMDGKFAWQEQRTTTPDGVYRVLRTAILDGTVAPGEQLRETHIAADLGISRSPLREALTKLEEEGLVVKIPFKGSFVVEVSARDVAEIASIRMLVEPYAAELSAPTLRGPERLRLKQTIEELYRATDTNDIPASVDAHLRFHRLFYELSGNTALQSLWNGWENKLRLYFAADHPTYSNLHEIAVEHERLAELALSGDIESFRQEMASQFHNALSGESQNESNANANANANA
D1-29_03970873hldD_2ADP-L-glycero-D-manno-heptose-6-epimeraseATGAAGATTGCCGTAACCGGTGGCAGCGGAAAGCTGGGACGCCACGTCATCCGCCGGCTGACCGGGGACGGCCACACGGTGCTGAACCTGGACCGGGCAGGGGAGCGCAGCGCTCAGCTTGCCATCGTGGACCTGCGCAACTACGGCCAGGTTCTTGATGTGCTCCTGGGCCTTGATGACAGGCACAGCGGTTTTGACGCCGTGGTGCACCTGGGGGCAGTCCCGGCGCCCGGGATCATTCCGGACGCCGCCACCTTCGAGAACAACATGCTGTCCACCTACAACGTGTTCCAGGCGGCCCGCCGGGCCGGCATCAAAAAAGTGGTGTACGCCTCCAGCGAGACGGTGCTGGGGCTGCCCTTCGACGTCGACCCTCCCTACATTCCTGTGGATGAGGAGTACCCGGCCCGGCCGGAGAGCACCTATTCGCTGGTCAAACACCTGGAAGAGCAGATGGCCGCGGAACTCACACGCTGGGATCCTGAACTGAGCATCGTGGGGCTGCGGTTCTCAAATGTGATGGACGTGGAGGACTACGAAGCGTTTCCAACGTTCGATTCCGATCCCCGGCTGCGCAAATGGAACCTGTGGGGCTACATCGATGGCCGCGACGGTGCACAGGCAGTGGCGCGGGCCCTGGAAAATGGCCAGCCCGGTTTCGAGGCCTTCATCATCGCCAACGCGGACACCGTCATGAGCCGTTCCAGCGCCGGCCTCGCCGCGGAGGTCTTCCCCGACGTCAAGGTGACCAAGGATTTGGGCGAGCACGAAACCTTGCTGTCCATTGGCAAGGCCCGGCGGTTGCTCGGATTTGAACCCGAACACTCCTGGCGTACCTACCACTCCAACCGGACGACACCCACCGAAGACTGAMKIAVTGGSGKLGRHVIRRLTGDGHTVLNLDRAGERSAQLAIVDLRNYGQVLDVLLGLDDRHSGFDAVVHLGAVPAPGIIPDAATFENNMLSTYNVFQAARRAGIKKVVYASSETVLGLPFDVDPPYIPVDEEYPARPESTYSLVKHLEEQMAAELTRWDPELSIVGLRFSNVMDVEDYEAFPTFDSDPRLRKWNLWGYIDGRDGAQAVARALENGQPGFEAFIIANADTVMSRSSAGLAAEVFPDVKVTKDLGEHETLLSIGKARRLLGFEPEHSWRTYHSNRTTPTEDNANANANANA
D1-29_03971579adk_3COG0563Adenylate kinaseATGACCAGACTGCTCATTATTGGTCCGCCCGGCTCCGGCAAAGGCACGCAGGCCGAGCACATCGCACGGCATTTCAACATCCCGGCAGTATCAACGGGGGAGATCTTCCGGACCAACGTCAGCCAGGAGACCCCTCTCGGCAGGGAGGCCGCCAGGTACCTGGACGGCGGGGACTTCGTGCCGGACCACCTCACCAACGCCCTGGTCAAAGAGCGGCTCCGCGACTCCGACGTGGGCCCAGGCTTCCTGCTTGACGGCTATCCGCGCACCGCGCCGCAGGTTTCGGAGCTGGACAATATGCTGGCATCCCTGGGGCAACGCCTTGACGCCGTCATCGAACTCCTGGCGCCCGATGCCGAGCTGGAACAGCGGATGCTGCAGCGGGCGAAGGACCAGGGACGCAAGGACGATACCGTGGAGGTGTTCCGGCGGCGGCTGGACCTCTACCACCGCGAAACGCATGAGGTAGTCTCTGTTTACGCGGGCCGGGGGCTGGTGGTGTGCATTGACGGCAGCGGCGAACCAAGCGAGATCACCAAAAGAGCGATTGCCGCCGTCGAAAAGTTCCTCACCACGTAGMTRLLIIGPPGSGKGTQAEHIARHFNIPAVSTGEIFRTNVSQETPLGREAARYLDGGDFVPDHLTNALVKERLRDSDVGPGFLLDGYPRTAPQVSELDNMLASLGQRLDAVIELLAPDAELEQRMLQRAKDQGRKDDTVEVFRRRLDLYHRETHEVVSVYAGRGLVVCIDGSGEPSEITKRAIAAVEKFLTTPGPT0009040_6552DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
D1-29_03972759hypothetical proteinATGGCACCAAGAATCGTGGCCAGCGAGTCAACAGCTAAAACTGATACATCCATCACCGAGCACCTGCATGAACTGGTCCTCAACAGCTCCGACGTTGAGGACTTCCTTAATGAGCTCGCGCGCGTATCCGCGCGTAATCTTTCCGAGCCAGACGACGAGGTACTCTGCAGCATTACCCTTTTGCGTCGTCGCAAGGCGGCCACCATCGCCAGCAGCGGCCCGGAGGCGCAGGCCATCGGCCAGGTGGAGTACCAGTTCAGTGACAGTCCCAGCATGGCCGCCTCGGTGGAACAGGTGACAGTCCATCTGCCTGATGTTGAGGATGACGGCAGGTGGCCGGAGTATTCCGCGGCTGTCCTGGCCCAGGGTGTCCGCTCAGTCCTGGCCCTTCCCTTCCAGCTGGAGGGGGAAACCAAAGCCGCCCTCCTGCTTTACTCCCAGCGGTCCTTCCGTTTCACCGGGCGGATCCTTGAATTCGCCGAGGACTTCGTCAGCCAGACCTCCCTGGCGCTGCGGCTGGCCGTCCGGTTTGCGCATTACAGCGAGTCGGCGGCGAACCTGCGGGCCACGCTTGAGTCCCGGACCGTGATCGACATGGCTGTGGGCATCATCATGGCCCAGAACCGGTGCAGCCAGGACGAAGCGTTTGGGATCCTCAAGACGGCGTCCAGTACCCGCAACTCCAAACTCCATGACGTGGCGGCAGCGGTGGTCAACGCGCTGGGCCAGGGACCGGCGCGGACCCACTACGACGGGTAGMAPRIVASESTAKTDTSITEHLHELVLNSSDVEDFLNELARVSARNLSEPDDEVLCSITLLRRRKAATIASSGPEAQAIGQVEYQFSDSPSMAASVEQVTVHLPDVEDDGRWPEYSAAVLAQGVRSVLALPFQLEGETKAALLLYSQRSFRFTGRILEFAEDFVSQTSLALRLAVRFAHYSESAANLRATLESRTVIDMAVGIIMAQNRCSQDEAFGILKTASSTRNSKLHDVAAAVVNALGQGPARTHYDGNANANANANA
D1-29_03973594hypothetical proteinATGGCGGAGACGACGGTGCGGCTGGCCACGGTAGGCCATGGAACCTCCAGCGAAGAGGATTTCGGAAAACTGCTGACAGCTGCAGGGATCAACTTGCTGGTTGACGTCCGCATAGCCCCAGGAAGCCGGAAATTTCCGCACTTTGGTAAGGACCTGCTGGCGCAATGGCTGCCAGCCCGTGAGATCGGGTACCGCTGGGAAAAGCGGTTGGGCGGCTTCCGGAAGCTTCCGCCGGATTCGCCGGATACCGCCCTGCGCAATGATTCATTCCGTGCCTATGCGGCCTACATGCGGTCTCCGGATTTCTCCCAGGCCCTCAGCGAACTGATCGCTGAGGCTTCTGGCCGGCCGGCAGCGATCATGTGCAGCGAGACGCTCTGGTGGCGCTGCCATCGCCGGCTCATCGCCGACCATGCCCTGTTGGTGGAGGGAGTGGATGTCCGGCACCTGATGCCCGGCGGAAAGCTGGTTCCGCACCAGCCGACGTCGGGGGTCCGGGTTCACCGCAACGAGCTGTATTACGATCTGTTCCCCGGATCCCGAGTAAAGTCCGTCACTCGCCGAGGTCGTGGGACAGCGTCCAGTTCGCGGTAAMAETTVRLATVGHGTSSEEDFGKLLTAAGINLLVDVRIAPGSRKFPHFGKDLLAQWLPAREIGYRWEKRLGGFRKLPPDSPDTALRNDSFRAYAAYMRSPDFSQALSELIAEASGRPAAIMCSETLWWRCHRRLIADHALLVEGVDVRHLMPGGKLVPHQPTSGVRVHRNELYYDLFPGSRVKSVTRRGRGTASSSRNANANANANA
D1-29_03974108hypothetical proteinATGGTTGCCGTCACGCAGCCCATAATGGTGACCCCCACGGTCCAGGTCTTGAGCATGACCAGCGATGTCCTGGATCCCCGCGCCAAATACGGCCTGTGGTCGGCCTAAMVAVTQPIMVTPTVQVLSMTSDVLDPRAKYGLWSANANANANANA
D1-29_039751044auaG_2Aurachin C monooxygenase/isomeraseGTGCGAAACGAAGCGGTCATCATCGGTGCGGGAATAGCCGGTCTGAGCACGGCCCGGGCCCTGGCACGCCACGGCTGGTCAGTCACGGTGCTCGAGCAGGCTTCCTCCCTGCCGCGCACCGGCACCATGCTGGGGATGTGGCCGCAGGCAGTCAGCGCGCTTGACGCCATCGGAGCCGGTGAAGCCGCACGCAGCAGCGGCGGCTGGACCCATATTTCCGGCGGTGCCGGCACCCGGCTGTGGACGCCCGAGGGGCGGACTCTGGTGTCCGCCCCCGGCGGTGCAGACCTCAACCTGGTCTCCCGGCCCGCACTCCTGGCCGCGCTGGCCCGGAACGTGGACATCAGCTTCAATACCCGGGTGGATGAACAGGACCTGTTCAAGGGTGCCCGCCTGGTTGTCGGCGCGGATGGCACCTTCAGCCGCAGCCGGCACCGGATGTTCGGCGATCGCTTCAGCGCCCGTCCGCTGGGAGCGGTCGCCTGGCGGGGCACAGTTCCTGGAAGCGTCCGGGAACACGGCGAGATTTGGGCGCCTGGCGCCCTGTTCGGCATCACACCGGCAGGTCCGGATGCCACCAACTGGTACGCCTGCATGAACGCGGACAGTACGTTCGATGGGCCGCACCTGCCGCACCTCAACGAACGTTTTGGATCCTGGCATTTCAGCGTCCGGGACGTGATGGACAGGATCGAGGAAGACGGCATTTTGCATCACGGACTCTTCGAAACGCCCAAGCTGCCTTCGTTCACCAAGGGGAACACGGCTCTGGTGGGCGACGCTGCCCACGCCATGGCCCCCTTCCTTGGCCGCGGTGCGTGCGAAAGCATTGTGGACGGCGCCGCGCTCGGGCGGGCCGTAGCGAAGGCCTCCACGCTCGACGCCGGCCTGGCCGCCTACGACAGGGAGCGGCGCGCGCGGTCGCAGCGGCTGGTGCGTTCCTCACGCCTGATGGGAAAATTCGCCATGATGCGTACTGGGGCTCAGGCCCGAAACGCTGCCATCGGTACGATCGGGAAGCTGCTGAAGCCGCTTATTTCCTGAMRNEAVIIGAGIAGLSTARALARHGWSVTVLEQASSLPRTGTMLGMWPQAVSALDAIGAGEAARSSGGWTHISGGAGTRLWTPEGRTLVSAPGGADLNLVSRPALLAALARNVDISFNTRVDEQDLFKGARLVVGADGTFSRSRHRMFGDRFSARPLGAVAWRGTVPGSVREHGEIWAPGALFGITPAGPDATNWYACMNADSTFDGPHLPHLNERFGSWHFSVRDVMDRIEEDGILHHGLFETPKLPSFTKGNTALVGDAAHAMAPFLGRGACESIVDGAALGRAVAKASTLDAGLAAYDRERRARSQRLVRSSRLMGKFAMMRTGAQARNAAIGTIGKLLKPLISNANANANANA
D1-29_03976321hypothetical proteinATGCCTCTGTCCGACGACGAGCGCAGGCGCCTCGAAGCGCTTGAGGAACAGCTGAGCGAAGACGATCCGCGCCTGGCGCGCAACCTGGGAGACGCGCGCCCGGACCGCAAAACCCAACGCCGGAAAAGCTTCGCCGTTCTGGCGATACTGGCCGGCCTCGCGCTTGTCATCACAGGGATCGCCATGCAGATGCCCGTCATCGGGGCAGCGGGTTTTGCCCTCCAATGCGCAGGAGCGTACTGGTTTTCGGCCACGCTGGGCCTGTTTGACGGGTACAGCAGTTTGCATTTCGGGGCCAGGAATGGCAAAGGGGCCACCTGAMPLSDDERRRLEALEEQLSEDDPRLARNLGDARPDRKTQRRKSFAVLAILAGLALVITGIAMQMPVIGAAGFALQCAGAYWFSATLGLFDGYSSLHFGARNGKGATNANANANANA
D1-29_03977609hypothetical proteinATGGGGAACAGAGGAGACAGCGAAGAGGGGTTGTGGCACCAGAGCCTTCTGGGCCAGGGCGATGCCTTTGGCGCCCTGTATGACCGGCATCGGGACAGGGTCTTCCGGCACGCTTACCGGCTCTGCGGGAACCACCACGACGCTGAAGACATCATGGCTGCCTCCTTCCTTGAGCTCTGGCGGCGGCGAAAGCAGGTCCGGGTCGTGGACGGGTCCATCCTTCCGTGGCTGCTGGTGACAGCCACGAACATGGCACGCAACAGCACCCGCGCGGTACGGCGCTACCAACGCCTGCTGAACGCCCTTCCCCGAACCGAGGACCTGAGCGACCCAACAGCAGATTCTTACCGCTCTTACCAGGACGCTCTTGACCAGGACCTTGCACGGGCTCTGGCCACACTAACTGCCGAGGACCTGCACCTGGTCACCCTGGTGGTGTTCGAGGAGCACACCATCGTTGCTGCCGCCGCTGTCCTGAATCTGACGCCTGCCGCTGCGAAGTCACGGATCCACCGGGCCCGTCAGCGGCTCAGAGCCGCCCTTGAACCTGGTACATCAACCAACCCGACCACCGCTCCAACCCCGGTGTTGGAAGGAGGACGGCCATGAMGNRGDSEEGLWHQSLLGQGDAFGALYDRHRDRVFRHAYRLCGNHHDAEDIMAASFLELWRRRKQVRVVDGSILPWLLVTATNMARNSTRAVRRYQRLLNALPRTEDLSDPTADSYRSYQDALDQDLARALATLTAEDLHLVTLVVFEEHTIVAAAAVLNLTPAAAKSRIHRARQRLRAALEPGTSTNPTTAPTPVLEGGRPNANANANANA
D1-29_03978801hypothetical proteinATGAATCAGCTCCACGTCGATGATCGCTTCAGTGATGCCCTCCGGGCAGAACTGGTCTCCCAGGTCAAGAAGGAACAACCAGCCGCGAAGCGGAGCCGCACCAGGGTGTGGCTTGGTGCCGGCGCATTGGCCGGGGCGGGACTCCTTGGCGTTGGAGCGGCGGCGGCAGGGCTCTTCCTCATCCCGGGAGGCGAAAAGGTGTCACCCTTGGCCTCGCCTGTGACCACCACCTATGCCGGCACAGCCACCGTTGAGCTGGGTACTCCTCCCGAGGGAACCACGGGGATTCAAATGGAACTTAGGTGCCTGACCCCTGGCTGGTTTGAGTTTCCCGACGGTGCCTCTAGCAGCTGCTCGGAGGAGGATGCTGCCAGCGACACACTGGGCTGGAGCGGCTACACCATCCCCCTCGCGCCCGGCCAGGACAGTGTCACGATCAAGGCCGGCCCGGAGGCCCGCTGGCAGCTTACCGCCGAGTATGTAAAGCAGGAACGGACCCCTCTGGGTGTCAACGCCAAGGGTGAAACCTACGGCGTCGAAAGCCAGGAGAACGGAACCCCCGACCTGATCGCTGTGATGGCCACCAACGGGCAATCCGGGTACGCATACGCCAGTGACCTGTACGGCGGCCCCATGCCCACCAGCCCGGAAGACGCCGTGAAGAACTTCAGCACCCCGCGCCCTCACCGCGAGGTCCCTGTCTTTTTGAGCGATGGTGAAACCCCCGTCGGCGTCTTCATGGCCGCCGGCTCTGGCGGAGGGATACCCTCCTATCCAACGCGAAGTGCCCCGCCAGGGTGAMNQLHVDDRFSDALRAELVSQVKKEQPAAKRSRTRVWLGAGALAGAGLLGVGAAAAGLFLIPGGEKVSPLASPVTTTYAGTATVELGTPPEGTTGIQMELRCLTPGWFEFPDGASSSCSEEDAASDTLGWSGYTIPLAPGQDSVTIKAGPEARWQLTAEYVKQERTPLGVNAKGETYGVESQENGTPDLIAVMATNGQSGYAYASDLYGGPMPTSPEDAVKNFSTPRPHREVPVFLSDGETPVGVFMAAGSGGGIPSYPTRSAPPGNANANANANA
D1-29_03979534hypothetical proteinATGAAACGCATGAGGTTGTGGCGATGCCTGATTCCATCCCTACTTCTCATCCTGCTGACATCGTGCGACGGCGGGGTGACGGGCGGACCGGGAACTGCAAAACCCAAGGCCAACGCCACCAGCACAATCCCTGGTTCCACCAGTAGCCCCGTTGCAGGCGGCGGTACCGTAGCGTGCGTTGACTGGGTCTGGTTCGAAACCCCTCAGAACCAATACGACAATGCCGCCGTAGCGCTCATCGGAAGATCTGTCAGCCAGGTCGGCGAGACCACGATTTACGGTTCCCAGGCCACCACCCACCTTGTTGAAGTCGAGCAGGTTCTCAAAGGGAACCCCGGAAACGGGAACCTGCGCATCTCGTCCATGCCCCAGACCTGCTCTGGGGGCGAGTCCTACCTGGACGGCGATCCGCTCGATACCGGTCAGAGAGTCATCATTTTTGCGACCAAGCAGGGCGGCGAGTGGTTCACCATGACACCAGCACAGGGAGTCTTGCCTTTCCCCCAAGGTTCAGAGCTGCCCTTTCACCAATGAMKRMRLWRCLIPSLLLILLTSCDGGVTGGPGTAKPKANATSTIPGSTSSPVAGGGTVACVDWVWFETPQNQYDNAAVALIGRSVSQVGETTIYGSQATTHLVEVEQVLKGNPGNGNLRISSMPQTCSGGESYLDGDPLDTGQRVIIFATKQGGEWFTMTPAQGVLPFPQGSELPFHQNANANANANA
D1-29_03980531COG3265GluconokinaseATGACCGGGGCACTCCGGCCCATGGTGGTGATGGGTGTTTCGGGAAGCGGCAAAAGCGTCCTCGGGAAAGCCCTGGGCGAAAGCCTGGGCGTCCCCTTCATAGACGCCGATGATCTTCACCCGGCCTCGAACAAGGCCCTGATGGCAGCCGGTACTCCGCTGACCGATGAGGACAGAATCCCGTGGCTTGGGGTGGTCGGGTCAGCCATCGCCAAGGGGGTGAGTGAGGGCCACGCCAGCGTGGTGGCCTGCTCCGCCCTCAAGCGGTCCTACCGGGACCTGCTCCGAAGCCATGTGCCGGATCTGCTCCTGGTTTACATTGACGGAGCCGCGGAAATCATCGCCCGCCGGCTCGAAACCCGGGAGCACGAGTTTATGCCCGCCACGCTGCTGGCATCGCAGCTGGCGACGCTGGAACCGCCCCAGGCCGACGAGGCACATATTCGGGTTCCGGCCGAGCTGACGGTGGAGGAGGCCGTGGAACTCATTCGAAGCACGCTTCGGCTGTCCGCGTCGCCTCCGCCGCACTGAMTGALRPMVVMGVSGSGKSVLGKALGESLGVPFIDADDLHPASNKALMAAGTPLTDEDRIPWLGVVGSAIAKGVSEGHASVVACSALKRSYRDLLRSHVPDLLLVYIDGAAEIIARRLETREHEFMPATLLASQLATLEPPQADEAHIRVPAELTVEEAVELIRSTLRLSASPPPHPGPT0018055_1106DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
D1-29_039811080idnD_2COG1063L-idonate 5-dehydrogenase (NAD(P)(+))GTGGTGGCCCACGCCGCCGGGGACCTCCGGATTGAGAACATTCCTTTGACTTCACCACACCCGGACCAGGCTGTCGTCGAAATAGAGTATGGCGGCATCTGCGGCTCCGATTTGCACTACTGGCTGCACGGTGCGGCCGGGGAGTCGGTGCTGAAGGCACCCATGGTGCTGGGGCACGAAATAGTGGGTGTGGTGGCCCGCGCGGCGGCAGACGGATCAGGTCCAGCAGAGGGCTCCGCCGTTGCCGTGCATCCTGCGACGCCGGGGCCGGTAGCCGGCCCCGGCGTCGTCAAGTATCCCGAAGACCGGCCCAACCTGTCGCCGGGCTGCACGTACCTGGGCAGTGCTGCACGGTTCCCGCACACTGACGGGGCCTTCAGCCGCTACGCCAACCTTCCGTCCCGGATGCTGCGCGTCCTGCCGGACAGCCTGGACCTGAAGACGGCCGCGCTGATTGAACCCGCAAGCGTGGCCTGGCACGCGGTGTCCCGCGCCGGCGACGTCCGCGGCAAGACTGCCTTGGTGATCGGCAGCGGACCCATCGGCGCACTGGCCGTGGCTGTGCTGAAGCGGGCCGGCGCAGCCCGCATCGTGGCGGTCGACATGCACAGGAAACCGTTGGAGATCGCCGAGGCGGTGGGCGCCGATGAGGTGTTGGACGCCGGAGCGGTGGAGGCGATCGAAGCGGTCCAGGCCGACGTCGTCATTGAATCCTCCGGCAGCCACCACGGCCTGGCATCTGCCATCAAAGGTGCGGTCCGCGGAGGGAAGGTGGTGATGGTTGGCCTCCTGCCGACCGGGCCGCAGCCGGTCCTGATTTCCCTTGCCATCACCCGCGAGCTGGAGCTGCTGGGATCGTTCCGGTTCAATGACGAGATCGACGACGTCATCGCGGCACTCGCGGACGGCTCCCTGGTGGTGGACCCGGTGGTCACGCACGTCTTCCCCCTGGAACGCGGCCTTGAAGCATTTGAAACGGCCAGGAATTCCGCCGAGTCCGGCAAAGTGCTGCTCAGCTTTGCACCATCCGATCAGCAGCAGGCCCCGCAGGCCTCCGCCCTGGGCGGGGGTAAGCCATGAMVAHAAGDLRIENIPLTSPHPDQAVVEIEYGGICGSDLHYWLHGAAGESVLKAPMVLGHEIVGVVARAAADGSGPAEGSAVAVHPATPGPVAGPGVVKYPEDRPNLSPGCTYLGSAARFPHTDGAFSRYANLPSRMLRVLPDSLDLKTAALIEPASVAWHAVSRAGDVRGKTALVIGSGPIGALAVAVLKRAGAARIVAVDMHRKPLEIAEAVGADEVLDAGAVEAIEAVQADVVIESSGSHHGLASAIKGAVRGGKVVMVGLLPTGPQPVLISLAITRELELLGSFRFNDEIDDVIAALADGSLVVDPVVTHVFPLERGLEAFETARNSAESGKVLLSFAPSDQQQAPQASALGGGKPPGPT0018190_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018190-idnD-K00098NANA
D1-29_03982771gno_2Gluconate 5-dehydrogenaseATGAGTTCACTTTTTGACCTGACAGGGCGGATTGCCCTGGTGACAGGTTCGAGCCGGGGGATAGGCAACGCCCTGGCCCGCGCTTTGGCGGATGCCGGAGCCACGGTGGTGCTGAACGGTATAAACGCCGAGCGTCTCAAGGCAGCCGAAGTTGCCCTCGCCGCGGATTTTGCGCCGGGCCGGATCCACAGCTGCGCCTTTGACGTGACGAAGGATGTTGAGGCCGCCCGGGGCGTGGCCTGGGTCGAGGAGAATGTTGGCCCGCTGGAAATCCTGGTGAACAACGCGGGAATCCAGCACCGGGTGCCGATGCTGGACCTTGACGTTGCGGACTGGGAACGGGTCATCAGCACGGACCTCACCAGCGCCTTTCTGGTGGGACGCGAAGCCGCGCGGTTCATGATCCCGCGCGGGCACGGGAAGATCATCAACATCTGCTCCGTCCAGGCAGACCTGGCCCGGCCCACCATTGCACCGTATGTTGCAGCGAAGGGCGGGCTGCGGAACCTGACACGTGCCATGACAGCCGAGTGGGCTGCCTCGGGTTTGCAGATCAACGGCATAGCTCCGGGCTACATCCACACCGAAATGACGCAGAACCTGGTGGACGACGAGCAGTTCAATTCGTGGATTTTGGGCCGGACCCCGGCGAACAGGTGGGGGACCGTCCAGGACCTTGCCGGCCCCGCGGTGTGGCTGGCGTCGGATGGCTCAAACTTTGTGAACGGTCAGACCATTTTCATCGACGGCGGAATGACGGTGGTGGTCTGAMSSLFDLTGRIALVTGSSRGIGNALARALADAGATVVLNGINAERLKAAEVALAADFAPGRIHSCAFDVTKDVEAARGVAWVEENVGPLEILVNNAGIQHRVPMLDLDVADWERVISTDLTSAFLVGREAARFMIPRGHGKIINICSVQADLARPTIAPYVAAKGGLRNLTRAMTAEWAASGLQINGIAPGYIHTEMTQNLVDDEQFNSWILGRTPANRWGTVQDLAGPAVWLASDGSNFVNGQTIFIDGGMTVVVPGPT0018070_585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_IDONATE_DEGRADATION,PGPT0018070-idnO-K00046NANA
D1-29_039831005garR_1COG20842-hydroxy-3-oxopropionate reductaseATGGACAGCAAGGCCACGGCCTTGAACGGCACACCACTCAGTGCCGGCTTCGTCGGGCTGGGGCTGATGGGTGCCCCCATGGCCGCCAATCTGCTGAAAGCCGGGTGGGCGGTCTCGGCCTGGAACCGGTCCCCGGAAGCAGTGGACCACTTTGTGCTGCTCGGCGGAACCCGGGCGCCAGACGTCGCAGCCCTTCGGGACCAGCCGGTGATCATCTTTATGCTCCCGGATCTGTCCTTCATCGAGGACGCGGCGTCACCTCTCCTCGATGAATGGCGGCTGGTCCCGCCGGCGCCGGGAACCGTGGTGGTAGTGATGAGCAGTGTTTCCCCCGTCGGCGTCAGGGCCTTCGGCCTTGCCGTTGCGGAGGCCAGCGGCGGGAACGCCACGGTGCTGGACGCACCGGTCAGCGGCGGCACGGAAGGTGCGCGGCTTGGAACCCTGGCCATTATGGCCGGCGGCCCGGCCGAACATTTCCTGCGCCTCCGGCCAGTGCTGGAGGCGATGGGCACCACGGTCCGGCGGCTGGGCGGGCTGGGCTCGGGGTCCCTCGCCAAGGCGTGCAACCAGTTGATTGTGGGAACCACGACGGCGGCGCTCGCCGAGGCGGCAGAACTCGCCGAACACTCTGGCATGGACGTTGCAGCGCTCTTTGAGGTGCTTTCGGGCGGCCTCGCGGGCAGCCGGGTGCTGGACTTTGTGGGCCCCCGCCTCGCCGCGAAGGACTACGCGCCCACCGGACCGGCAAAGTTTATGCACAAGGATCTTTCCTTTGTGCTGGCAAGTGCCGCCGCTGTGGGGGCGTCCGTGCCGATGGCGACAGCCGCCGTCGGACTGTACGGGGAACTGAAGGACCAGGGCCTGGGCGATCTGGACCTGGCCGTGGTGCGGCAAACCATTGCCAACCTCAGCGCCTCCGCCGCACCTGACGCCGCAGTTGACGCGGCGTCAGCGCCCGCTGCGGCCGCCCGCATGACAGCTACCGTTCAGGAGACCACACCATGAMDSKATALNGTPLSAGFVGLGLMGAPMAANLLKAGWAVSAWNRSPEAVDHFVLLGGTRAPDVAALRDQPVIIFMLPDLSFIEDAASPLLDEWRLVPPAPGTVVVVMSSVSPVGVRAFGLAVAEASGGNATVLDAPVSGGTEGARLGTLAIMAGGPAEHFLRLRPVLEAMGTTVRRLGGLGSGSLAKACNQLIVGTTTAALAEAAELAEHSGMDVAALFEVLSGGLAGSRVLDFVGPRLAAKDYAPTGPAKFMHKDLSFVLASAAAVGASVPMATAAVGLYGELKDQGLGDLDLAVVRQTIANLSASAAPDAAVDAASAPAAAARMTATVQETTPPGPT0018170_105DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-29_039841146hypothetical proteinATGAACCAAACCGCTCCCCGACTGCTGCTCGCGGCCGGCGCCATTATGGCCCTGGGGCTCACTGCCTGCACCAGCGGTTCCTCCGAATCCGCCTCGGCGGGCTCAACTGCCGCGGGGGACAGCGGCTGTGCCGACGTGGTTGCCACGGCCCAGAAGGCCGTTGACGCGGCATCGAAGACGGATACGCCCTGGGACGGGCCCACCACGGGCCCCAAGGCTGTGGCGGGAAAGACCCTGGTGTACGTGGCCCAGTCCATGACCAACCCTGGTGTGGCAGGCGTGGCGAAGGGCCTGCAGGAAGCTGCCGCGGCTATCGGCTGGAACGTCAAGGTCATCGACGGGCTCGGCACGCCGGCCGGGATCCAGAGCGCATTCAGCCAGGCCCTCACCACCAAGCCCGACGGCATTGTGATCGGCGGTTTTGATCCCAAAACCACCGCCGCCCAGGTAGCCGAGGCCAACGCCGCCAACATTCCGCTGGCCGCCTGGCAGGCACTCTCGACGCCGGGTCCCAGCACCGACCCGCTGCTGTTCACCAACATCACCACCAAGGTGGAGGACGTCGCCAAAATCAGCGCCGATTACGTGATCGCGAAATCGAACGGCAATGCCGGCGTCGTGATCTTCACGGACTCCTCCATCCCGTTTGCCGAAGGCAAATCGCAGATGATCAAGAAGGAACTGGAAACCTGCGCCGGCATCAAGGTGCTGGAATACGACAACGTACCACTGTCCGACGTCAGCGCCAGGATGCCCCAGGAGGTGTCCTCCCTGCTGAGCAAGCACAACGAAGCCTGGACCTACTCCGTGGCCATCAATGACGTCTACTACGAAAACGCGGCGGCAGCCCTGCGCGCCGGCGGTGTGAAGGCCGGCGGAGCACCGTTCAACGTGGGCGCGGGCGACGGCGACTCCTCCGCGCTGCAGCGGATCAAGGCCGGCGAATACCAGACCGCCACCGTTCCCTCCCCGTTGAAATCCGAGGGGTGGCAGATCGTGGACGAACTCAACCGGGCCTTCAACAATCAGCCCGCCAGCGGCTACGTCCCCCAGATCCACGTCTCCACCAAAGAAAACACCACTGTCACCGATGCCTGGGATCCAGTAGGTTACCAGGACGCTTACCGCACCATCTGGGGCAAGTAAMNQTAPRLLLAAGAIMALGLTACTSGSSESASAGSTAAGDSGCADVVATAQKAVDAASKTDTPWDGPTTGPKAVAGKTLVYVAQSMTNPGVAGVAKGLQEAAAAIGWNVKVIDGLGTPAGIQSAFSQALTTKPDGIVIGGFDPKTTAAQVAEANAANIPLAAWQALSTPGPSTDPLLFTNITTKVEDVAKISADYVIAKSNGNAGVVIFTDSSIPFAEGKSQMIKKELETCAGIKVLEYDNVPLSDVSARMPQEVSSLLSKHNEAWTYSVAINDVYYENAAAALRAGGVKAGGAPFNVGAGDGDSSALQRIKAGEYQTATVPSPLKSEGWQIVDELNRAFNNQPASGYVPQIHVSTKENTTVTDAWDPVGYQDAYRTIWGKPGPT0015740_538DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
D1-29_039851107hypothetical proteinATGACCCAGCTAAACACCAACCGCCGGCGCGGCGGCGCGGCGCACCTCCTCGGGCCCTACGGACTCGTCCTGATCCTGGTGGTGCTGTTCGCGGTATTTGCCCTGATCCTGCCGCAGACCTTCCTCTCCGGCCGCAACTTCAACGCCATCCTCAGCAACCAGGCGATTCCCGCGCTGCTGGCGCTGGGCGCCATGATCCCGATCGCCACGGGAAAGTTCGATCTCTCCATCGGTTACGGCCTCGGGCTTTCCCACGTCATCGTCCTTAAGCTCATCGTGGATGGCAACATGCCCTGGGGCATCGCCGCCCTCGTGGCCATCGCGGTCATGGCACTGGTGGGAGTGATCAACGGGCTACTGGTGGAATTCGGACAGATCGACTCCTTTGTTGCCACCCTGGGAACGGGAACCGTGCTGTACGCCATCACCGGAGCCATCACCAACGGTGCCCGGGTGGTGCCGGGTGACGGCGGCCTCCCGGTCTCCTTCAAGGACCTCTACGATTCCAAGATCGCCGGAGTGCCGATCGTTGCCGTGTACCTGCTGATCGTCGCCGTGATCCTCTGGATCCTCTTCGAACGGCTGCCGCTGGGCCGCTACTTCTACGTGCTGGGTTCCAACCCGCGGGCAGCTGCCCTGATGGGCATCCCCACCAAGCGGTACTCCATCTACGCCTTCGCGTTCTCCGCAGTAGTCACCGGCGTGGCAGGGGTCCTGCTCGCCTCGCAGCAGCAGATCGGAAACCCCAGCGTCGGCATGGACTACCTGCTGCCGGCGTTCGTCGGGGCGCTGCTGGGAGCCACCGCCATCAAGCCCGGACGGGCCAACGTCATCGGCACCCTGGTTGCTGTTATCACCCTGGCGATCGGCCTGGCCGGCATCTCGCAGCTGGGCGCCCAGTTCTGGGTCACTCCGCTCTTCAACGGCGTCACGCTGCTGATCGCCGTCGGCCTGGCCGGCTACTCAGCCCGGCGCAAGCTCCGGGCGGGAGCTGTCGCCGCCCCGCCGCCCACCCTGCCCAAGGCGGACGACGCCGGACCTTCGGCTCCCGCCGGACCGGCCAGTACGGCCGCACTTCCGCCGGCCCCGGCCACCACCGCTTCCTGAMTQLNTNRRRGGAAHLLGPYGLVLILVVLFAVFALILPQTFLSGRNFNAILSNQAIPALLALGAMIPIATGKFDLSIGYGLGLSHVIVLKLIVDGNMPWGIAALVAIAVMALVGVINGLLVEFGQIDSFVATLGTGTVLYAITGAITNGARVVPGDGGLPVSFKDLYDSKIAGVPIVAVYLLIVAVILWILFERLPLGRYFYVLGSNPRAAALMGIPTKRYSIYAFAFSAVVTGVAGVLLASQQQIGNPSVGMDYLLPAFVGALLGATAIKPGRANVIGTLVAVITLAIGLAGISQLGAQFWVTPLFNGVTLLIAVGLAGYSARRKLRAGAVAAPPPTLPKADDAGPSAPAGPASTAALPPAPATTASPGPT0016590_314DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
D1-29_039861506rbsA_2COG1129Ribose import ATP-binding protein RbsAATGGGACTCAACCCTCCCGCGATGCCGCTGATTCAGATCGACCAGTTATCCAAACGCTTTGGCGTCAATGCGGCCCTGCAGGACGTCAACCTCACGCTGGAGGCCGGCAGCATCCACGCCTTGCTTGGCCAGAACGGCGCAGGCAAGTCCACCCTGATCAAGATCCTCTCAGGGCTCTACACCCCCACCAGCGGCAGCATCACGGTGGCGGGCCATCCGCTGGGAACGCCGGAAGCCAGCTCCAGCATGGCCTTTATCCACCAGGACCTTGGGCTGGTGGACTCCATGACCATCGCCGAGAACATTGCCTTGGGCACGGGCTTCGGACTCAGGGGCGGTTTCATCTCCTGGCGCCAGGTGCGTGACAGCGCCGCGAAGGCACTGCAGACCGTGGCCTCGCACCTCGAGCCGGACCGGTACGTTTCCGAACTGACCAGGGCAGACAAATCCCTCGTCGCCATTGCCCGGGCGCTGGCCTCCAACGCCTCGGTGATCGTCCTGGACGAACCAACGGCGAGCCTTCCGGCCGCGGATTCCCGCCGTCTCTTTGATGTGCTGGAGAAGCTGCGGAGCAACGGGCAGGGCCTCCTGTACGTCAGCCACCGCCTGGACGAAGTCTTCGCGATCTCGGACACCGTCACGGTGTTGCGCGATGGCCGGCTCATCCACAGCGGTCCAATCGCCGAGAAGTCCCCGCGCGAACTTGTGCTGGACATCGTGGGCCACAAACCCGTCAGCTATACGTCCGGGAGCGGTATCCAGCAACAAACGGTACGCCTGGAAGTCAACGAACTGACCACCTCGCAGACAAGGGCCAGCTCCTTCTCGGTCCGTGCCGGCGAAGTTGTGGGAATGGTGGGGCTCACCGGCGCTGGGCACATGGAGCTGGGACGAGCACTGGCCGGGGCGCACAGGATGACCTCCGGCAGCGTCCTGCTCGACTCAAGAGACTTCCAGCCGAGGACGCCGGCGGAGGCCGTGGATGCCGGCGTCGGATTTGTCACCAGCAACAGGATGGAAGAGGGCTGCGCTCCCGAACTGTCGCTCCGGGAGAACTTCCTGCCCAACCCGAGGATCCGCTCCAGGAACCCCTTCGCCTGGACCAGCCCCCGCAAGGAACGCCAGCTGGCAGCGGAGCTCGTGGAGCGGTACGGCGTCCGGCCTGCCCTGACGGAAGTGGCCATTGCCACGCTGTCCGGCGGCAACCAGCAGAAGATCATGATCGGCCGGTGGCTCAGCACGCGCAGGAAGCTCATCATCCTCGAGGAGCCCACCGCCGGAGTGGATGTCGGCGCCAAGGCAGACATCTACACACTGCTGGAAGAGTCGCTGGCTGCAGGCCTTGCCGTCCTGATGATCTCAACCGACTTCGAGGAAGTCGCCAACGTCTGCCACCGTGCACTCGTTTTTGTCCAGGGAACCGTCACCGCGGAGCTCTCCGGCGCTGACCTGACCATTTCAAACCTCACTGCGGCGGCCTCCGGTGCTGCTCTCACTTCGGAGTAAMGLNPPAMPLIQIDQLSKRFGVNAALQDVNLTLEAGSIHALLGQNGAGKSTLIKILSGLYTPTSGSITVAGHPLGTPEASSSMAFIHQDLGLVDSMTIAENIALGTGFGLRGGFISWRQVRDSAAKALQTVASHLEPDRYVSELTRADKSLVAIARALASNASVIVLDEPTASLPAADSRRLFDVLEKLRSNGQGLLYVSHRLDEVFAISDTVTVLRDGRLIHSGPIAEKSPRELVLDIVGHKPVSYTSGSGIQQQTVRLEVNELTTSQTRASSFSVRAGEVVGMVGLTGAGHMELGRALAGAHRMTSGSVLLDSRDFQPRTPAEAVDAGVGFVTSNRMEEGCAPELSLRENFLPNPRIRSRNPFAWTSPRKERQLAAELVERYGVRPALTEVAIATLSGGNQQKIMIGRWLSTRRKLIILEEPTAGVDVGAKADIYTLLEESLAAGLAVLMISTDFEEVANVCHRALVFVQGTVTAELSGADLTISNLTAAASGAALTSEPGPT0016600_3279DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
D1-29_03987801xynR_4COG1414HTH-type transcriptional regulator XynRATGACGGCAGAGACGGCAACAGAAGCGGGCGTCAGCGGGCAGAGCTCAGTTCCGGCGATCACCCGCGGGATGGCCATTCTGGAACTGGTCGCCGCCGCCGGGCAGGCGGGCGCCAGCGTTCCGGAGCTGGCAAAGTCAATGAACCTCGCCAAGTCTTCCACCGCCAACATTTGCGCAGCCCTTGAAGGCGAGGGTATGCTCAGGCGCTCGGACGGCCGCCTGACCCTGGGGCGACGGATCCTTTCGCTGGCCGGAGACTACCTCCGCTCCGCCGACCAGCTGGCCGAGTTCTATGCGTTGTGCCGCCGCTCCCGGCTGATATCCCGCGAAGCCGCTCGCCTTGCACTGCTGGACGGCACCGATGTCCTCTATCTGGCCCGCTATGAGGGGACTAATCCCATCCGACTCACCGCCAACATCGGCGACCGGTTTCCGGCCCACGTCACCGCCACGGGCAAGGCGGTACTCGCTACCCTTCCGGACGCCGTGGTGGAAGACCGGTACCGCGGCAAGACCTTTGTGCCGTTCACGCCCAAATCCTTAACCAGCCTGACGGACCTGATGGGGGAGCTTCAGACGTCCAGGCAGCGCGGCTACTTCATGGATGACGAGGAAACCAACATCGGCGTCGTCTGCTTTGCGGTGCCAGTGGTGAATCTCCCGGGCCAGCCAGCGCAGTTTGCCATCAGTGCCACCCTGCTCAAGGCCCGTGCTGATGAGCTGGATCATGCCGAAATCGTTGGCGAGTTGCAGCATATTGCGCGCGCACTCGCCAATCCCTTGAGTGCCCACTCGCTCTGAMTAETATEAGVSGQSSVPAITRGMAILELVAAAGQAGASVPELAKSMNLAKSSTANICAALEGEGMLRRSDGRLTLGRRILSLAGDYLRSADQLAEFYALCRRSRLISREAARLALLDGTDVLYLARYEGTNPIRLTANIGDRFPAHVTATGKAVLATLPDAVVEDRYRGKTFVPFTPKSLTSLTDLMGELQTSRQRGYFMDDEETNIGVVCFAVPVVNLPGQPAQFAISATLLKARADELDHAEIVGELQHIARALANPLSAHSLPGPT0025595_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0025595-blcR-K20539NANA
D1-29_03988969hypothetical proteinGTGTGCGCGGAAGAAATCAGGCCTAGTCCACTTTACCCAGCCGAGGCCAGGAATGGGCCCCCTGTCAGCAAAGAGGCCTTTGAAGAGGTGTTCGAACAGGTGAAGACCTGGGGCACCTACCCGGACCCCTCTGCCGGGGCGTGGCAAACAGTCACCCCTGCTTCAATCGTGGAAGCGGCTTCCCTGGTCCGCAGCGGCCGGGTGGTTCCCACCGCCCTGCCCTGGAACACTGTCAGCGGGCCCTCCAACGCCAATCCTGCACTGCATTACATGACAGACCTGGGCGTGCGTGAGGCTCCGGAGCCGTCGTGCAACAAGGACTTCATCGGCGTCGACTACCACGGCAAGGCCGTCAGCCACTTGGATGCCCTGAGCCACATTGCCTACAAGGGACTCCTCTACGACGGGCAAACCTCGAAAGAGGTTGTTACCGCAACCGGGGCAGACTTCGGCTCGGTCAGCTCGCTTGGCTCGCTCGTCACGCCGGCCGTTTTGCTGGACTTCACCGTCCTGTTCGACGTTCCCTGGCTGGAACCCGGCACCGCCATCCATGCGGAGGACATCCTCGCTGCGGAGGCAAAGCTTGGCGTAAAGATCACAGCCGGCGACGCCGTCCTGATCCGGACAGGGCACTTCCGCCGCGCCCACGAGCTGGGCATCTGGGACTCCTCAGACCTGAGCGCAGGGCTGCACGTTGACTGCATGCCGCTGCTTGCCGAGCGCGGCATCAGCGTTTTGGGCGGCGACGGCGACTCGGACGTTCGCCCCTCCCCCACCCCGGGCATCCACTCGCCCATCCATATCCTGGCCATCACCGCGATGGGCCTGCCCCTCTTGGACAACCTCGACCTCGAAGCACTCGGCGCGGCCTGCGCCGAAGAGGACCGCTACCGGTTCATGTTCGTTGTTGCACCCCTCAACATTCCCCGCGGCACAGGTTCGCCCGTAAACCCCTTGGCGGTCTTCTAAMCAEEIRPSPLYPAEARNGPPVSKEAFEEVFEQVKTWGTYPDPSAGAWQTVTPASIVEAASLVRSGRVVPTALPWNTVSGPSNANPALHYMTDLGVREAPEPSCNKDFIGVDYHGKAVSHLDALSHIAYKGLLYDGQTSKEVVTATGADFGSVSSLGSLVTPAVLLDFTVLFDVPWLEPGTAIHAEDILAAEAKLGVKITAGDAVLIRTGHFRRAHELGIWDSSDLSAGLHVDCMPLLAERGISVLGGDGDSDVRPSPTPGIHSPIHILAITAMGLPLLDNLDLEALGAACAEEDRYRFMFVVAPLNIPRGTGSPVNPLAVFNANANANANA
D1-29_039891023ghrB_2Glyoxylate/hydroxypyruvate reductase BATGACGTTCACAGTAGGAATTTCCCCCGATTTTCTCGACACCGCCGGCAATAACGTCTGGGGCGACATCGGTCTGACGGGCCTCGACGAGGCCGGGATCGGGTGGGAGTACATGAAGGACAAGGCCCAGGCGCTCACGCCGGACCAGATGGAACAGTACGATGCCATCCTCTACGCCGCGCCCGCCGTCACCGCTGACTCCTTTGCCGGCGTCGCCAATCCTCCGCTGATCCTGGCCCGGTTCGGCGTCGGCTATGACGCCGTGGACCTCACCGCCTGCACCGCAGCAGGGACCGTTGCCACCATCACCCCCGACGGCGCCCGCGGCCCCGTGGCCACTGCCACCCTGTCGATGCTCCTGTCAGTTCTTCATCACACGGTGACGAAGGACCGGCTGGTGCGGGACCAGCGCTGGGATCTGCGGGAGAACTTCATGGGCACAGGCCTGACGGGAAAGACGATCGGCCTTCTCGGCGTCGGGAATACCGGAGGTGAACTGGTCCGCCTGCTCGCCCCGTTTGGCGTCCGCTGTGTTGGCTACGATCCCTTCTGCCCGCCGGAGCGGGCCGCCGAACTCGGCGTTGAACTGATGGAACTCGAGGACGTGGCGGGCTGCTGCGACGCGCTGATTGTCATGGCCGTCCTGACGGACCAGACCCGGCATATCGTAGACGCCGGCATCCTGGACCGGATGAAGCCCACCGCCGTTGTCATAAATATGGCGCGCGGACCCATCATCAACGAGCCTGACCTCATTGCTGCGCTGGAGAGCGGATGCATTGCAGGGGCCGGGCTGGACGTCTTCGAAGAAGAACCCGTCAAAAATGCGCTCCTTGGCCTGGCCAACGTCACGTTGTCGCCGCACTGCCTGTCCTGGACGGACGAGATGTCCCTGGGTAACGGCGGTAGCTGCGTGCGCGCCATCGTGGATGTTGCCAACGGGCGCACCCCAACGTTTGTCATCAACCGGGAAGTACTGGATTCAGGGGCCTTTAAGGACCGGCTCAGCCTCCTGGCCCGCTAAMTFTVGISPDFLDTAGNNVWGDIGLTGLDEAGIGWEYMKDKAQALTPDQMEQYDAILYAAPAVTADSFAGVANPPLILARFGVGYDAVDLTACTAAGTVATITPDGARGPVATATLSMLLSVLHHTVTKDRLVRDQRWDLRENFMGTGLTGKTIGLLGVGNTGGELVRLLAPFGVRCVGYDPFCPPERAAELGVELMELEDVAGCCDALIVMAVLTDQTRHIVDAGILDRMKPTAVVINMARGPIINEPDLIAALESGCIAGAGLDVFEEEPVKNALLGLANVTLSPHCLSWTDEMSLGNGGSCVRAIVDVANGRTPTFVINREVLDSGAFKDRLSLLARPGPT0009155_5909DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-29_03990663hypothetical proteinGTGGACCTGTTTGCCTGGCCCTTGACCTTTACAGGGGCCTCAACCGCCGACGACGACGCCGTCTTCCTGGCGCCCGTCCGGCCGGCGGTGATTGTTGGCATTGCCCACAACCTCACCATCAACAACCATCCGCTGCCCATCCAGGCGTGGCTCAAATCGGTCCACACGCTCGCGGATCCGGACGCTCCGATCGTGGCCGCACGCGCGCGGGGCACGGTGAACGTTGAGGGGGAACTCGCCGTCGTCATCAGAAAGACCTCCACGGCGCTGACCGCGGAGAACGCGCTGGAACACATCCTCGGGTTTACCTGCGTCAACGACGTCACCAATGTGGACCAGGGTGCGGTGGACGAGCGCAACTTCCAGGGCAAGGCCGGCGTCAACTACACGCCGCTTGGCCCCTGGATTGAGACCGACATTCCGGATCCCGGCCTGGTGGGGATTGATGTGATTGTCAACGGCGAAGTAAAGGCGAAGTCGGGCTCGTTCAACCTGCCGTCGTCGGTGGTGGACTGCCTCATCTACGTGACATCATGGCTGACCCTCGAGCCCGGAGACGTGGTGATGACCGGCGCTCCTGGCACGGCGGTCGCCGTCGAGCCAGGTGACCGGGTGGACATCGACCTGGGCGGCATCGGAAGGCTTTCCAACACGGTCGCCTAAMDLFAWPLTFTGASTADDDAVFLAPVRPAVIVGIAHNLTINNHPLPIQAWLKSVHTLADPDAPIVAARARGTVNVEGELAVVIRKTSTALTAENALEHILGFTCVNDVTNVDQGAVDERNFQGKAGVNYTPLGPWIETDIPDPGLVGIDVIVNGEVKAKSGSFNLPSSVVDCLIYVTSWLTLEPGDVVMTGAPGTAVAVEPGDRVDIDLGGIGRLSNTVANANANANANA
D1-29_03991198hypothetical proteinATGCGGATTCTCGGAGCGCTCATTGTTATCTGGCTGATCATCGGAGGCATCGCCGCCTGGCAGCGAGGATACTTCGGTGGAGCAGGCACCACCTGCGCGGAGATCGGCACCGTGGCGGTGACTATCGTCGCCGGACCCCTGAATTACATGGGAGCCAACCCGCAGATTCAATGTGAGCTGCCCCAGCCGTCGCAGTAGMRILGALIVIWLIIGGIAAWQRGYFGGAGTTCAEIGTVAVTIVAGPLNYMGANPQIQCELPQPSQNANANANANA
D1-29_03992837bpoA2_2Non-haem bromoperoxidase BPO-A2ATGGCTTTCATCACCGTTGGAACCGAAAACAGCACTGACATCGAGCTCTACTTTGAAGACCACGGCACGGGCCAGCCGGTGGTCCTGATCCACGGCTACCCTTTGGACGGTTCATCCTGGGAGAAACAGACTGCCGCGCTCCTGGACGCCGGTTACCGCGTCATCACCTATGACCGGCGCGGGTTTGGCAAGTCCAGCAAGACGACGGCGGGCTATGACTACGACACCTTCGCCGCTGACCTTAATACCCTTCTCACCACCCTGGACCTGAACGACGCCGTATTGGTCGGCTTCTCCATGGGCACCGGCGAGGTTGCCCGCTACCTGAGCACCTATGGTTCAGCGCGGGTGGCAAAGGCCGCCTTCCTGGGATCACTGGAACCGTTCCTGCTGCAGACGGAAGACAACCCCGACGGCGTTCCGCAGTCCGTGTTTGACGGGCTCACCGAGGCCGTCACCACCGACCGCTACGCGTTCTTCACCGAGTTCTTCAAGAACTTCTACAACACCGATACGTTCCTGGGCACGCCGCGGCTCAGCCAGGAGGCACTGAGCGCCAGCTGGAACCTCGCGGCAGCCGCCGGAGCCACCGCCTCCGTGGAAGCCCAGCCCACGTGGCTCACTGACTTCCGCGCGGACATTCCCAACATTAAGGTTCCGGCGCTGATCCTGCACGGTACGGCGGATAACATCCTGCCCATCGACTCCACCGGGCGGCTCTTCGCCAAGGCCCTTGCGAGCGCTGAATATGTGGAGATCGACGGCGCGCCGCACGGCCTGCTGTGGACCCACGCCGCTGAGGTCAACGAGGCGCTGCTGCGCTTCCTCGCCAAATAGMAFITVGTENSTDIELYFEDHGTGQPVVLIHGYPLDGSSWEKQTAALLDAGYRVITYDRRGFGKSSKTTAGYDYDTFAADLNTLLTTLDLNDAVLVGFSMGTGEVARYLSTYGSARVAKAAFLGSLEPFLLQTEDNPDGVPQSVFDGLTEAVTTDRYAFFTEFFKNFYNTDTFLGTPRLSQEALSASWNLAAAAGATASVEAQPTWLTDFRADIPNIKVPALILHGTADNILPIDSTGRLFAKALASAEYVEIDGAPHGLLWTHAAEVNEALLRFLAKPGPT0013125_1154DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
D1-29_039931170desA3COG3239NADPH-dependent stearoyl-CoA 9-desaturaseATGTCAGTAATTTCAGCAAGCAAGGCAACCTCGACCAGCGGGACACGGACACGCCCCGGAGCGTTGGCCGAGTCCGGCAGTCCCACGGTGCGCCCGCCCGCTGCGGCGCACCTGACAGACGAACAGGTGGCTGAGCTGGGCCGCGAACTCGACGCCATCCGCGACGAGATCCTGGCCAAGCGCGGAGCCTCGGACGCCGCCTACATCCGGCGCATGATCAAGATCCAGCGCGGGCTGGAGATTTCCGGCCGCGCGGCCCTGCTGGTCAGCAAGAACAAGGCCGCCTGGGTCACCGGCACCACGCTGCTGAGCCTGGCCAAGATCCTGGAAAACATGGAGCTGGGCCACAATATCCTGCACGGCCAGTGGGACTGGATGCGGGATCCGGACATCCACTCCACCACCTGGGAATGGGACTTCGTCACGCCGTCGCGCTCCTGGCAGCACACCCATAATGACCTGCACCACCGCTGGACCAATGTGGTGGGCAAAGACAACGACGTCGGATACAACCTCCTGCGCATGGACGAGAACCAGCCGTGGAAGCCCATCAACCTGGCCAACCCGCTGTTCAATGCCATCCTGGCGCCGGTGTTCGAGTGGGGCATTGCCATTTACGATCTCGAGTTGACCGAGTACAAGGAAGGCACCAAGTCCAAGGAAGCACTGCATAAGGACCTCAAGGCCCTGGGCCGAAAGGTGATCACGCAGTTCACGAAGGATTATGCGGCCACGCCCGCCGTGGCAATGCTCACAGGATCGGGCAAGCAGGCACTCTATGGAACCTTGGCTGCCAACGCTGTCCGCAACGTATGGGCCCACGCCGTCATTTTCTGCGGCCATTTCCCGGAGGGCACGGACACCTTTACCGAGGAAATGGTGGAAGGCGAAACGCGCGGCGACTGGTACGTCCGCCAGATGATCGGTTCAGCCAACATCTCTGGTTCCCGGTTCATGCACCTGATGACGGGCAATCTCTCACACCAGATCGAGCACCACCTCTTCCCCGATCTGCCGTCCAACCGGTACGCCGAGGTGGCGCCGCGGGTTCGTGAAATCTGCCAGCGCTACGGCCTGAAGTACACCACCGGCCCGCTGCTGAAGCAGGTTGGATCCTCCTGGGCCAAGGTTTTCAAGCTGGCACTGCCCGGCAAGACCGCCCAGGCCTGAMSVISASKATSTSGTRTRPGALAESGSPTVRPPAAAHLTDEQVAELGRELDAIRDEILAKRGASDAAYIRRMIKIQRGLEISGRAALLVSKNKAAWVTGTTLLSLAKILENMELGHNILHGQWDWMRDPDIHSTTWEWDFVTPSRSWQHTHNDLHHRWTNVVGKDNDVGYNLLRMDENQPWKPINLANPLFNAILAPVFEWGIAIYDLELTEYKEGTKSKEALHKDLKALGRKVITQFTKDYAATPAVAMLTGSGKQALYGTLAANAVRNVWAHAVIFCGHFPEGTDTFTEEMVEGETRGDWYVRQMIGSANISGSRFMHLMTGNLSHQIEHHLFPDLPSNRYAEVAPRVREICQRYGLKYTTGPLLKQVGSSWAKVFKLALPGKTAQANANANANANA
D1-29_039941098COG1018NADPH oxidoreductaseATGATCCGGCTGCGTCAGCTGGCCCAGGCGGCCTCTGTTTTGACCACGCCCTTGGCGCCCGAAGACATCCTTGCGCTCTTTAATCCAGTCTTCTCCGCCCGGCAGCTCCGCGGCGTGGTGACGCGTGTTGTCCAGGAGACGGCCCATTCGGCCACCATCTTCTTCCGTCCCGGCCGCGGCTGGCATGCCCACTTGGCAGGCCAGTGGGCGCGCATCGGCGTCGAACTGGACGGGGTCCGCCATTGGCGGTCCTACTCGCTCAGCGCCCCCGCAGGCAAAGACCCTGCCATCACCGTCACGGACGTCGGTGCAGTGTCCGGAACGCTGGTCCGCACCACCCGTCCAGGCGATGTCCTGTTCCTGGCCCCGCCGCAGGGCGACTTTGTCCTCCCCGAGCACCCCCGGCCCCTGCTGATGGTCACCGCTGGCAGCGGCATCACCCCGGTGATGTCCATGATCCGTACGCTGGTACCGCGCCGCCGGGATGCCGACGTCGTACTGATCCACTCCGCGCGCACCCCTGGCGAGAGCCTCTTCCGGGAAGAACTGGCCGAACTCGCGGACCAGTTCCCCAACTTCCGGCTTGCCCAGTGGTTTACGGGGCAGCAGGGCCGCCTGGATTTCACCACCACCGCTGAGCTTGAGGAGATCTGCCCGGACTGGAAGGAACGTTCGGCGTACGCCTGCGGCCCGGACAGCTTCCTGGACGACGCCGAGGCGCTCTGGAAACAGGCTGCGCTCACCGCCGGTGCCCCAGGCACGGATGTGGTGCTCCCCGGCGACCCGGGAAACCTGATGATCGAACGGTTCAATACCGCCTTCGCCGGCGGCGTCGGGCACGACGGCGGCCTGGTTACCTTTGAAGCGTCGGACCGGGAAGTGGACGCCGACGGCGATACTCCGCTTTTGGACGTGGGCGAGGACGCCGGGGTACTCATGCCCAGCGGCTGCCGGATGGGCATCTGCCACAGCTGCCTGACCCCCCTCCTGGCCGGACAGGTGCGGGACCTGCGTACCAACGAAGTCCACGGCGAACCCGGCCAACTGATCCAAACGTGTGTCTCGGCAGCCGCCGGACCCGTCAACCTCGAACTCTGAMIRLRQLAQAASVLTTPLAPEDILALFNPVFSARQLRGVVTRVVQETAHSATIFFRPGRGWHAHLAGQWARIGVELDGVRHWRSYSLSAPAGKDPAITVTDVGAVSGTLVRTTRPGDVLFLAPPQGDFVLPEHPRPLLMVTAGSGITPVMSMIRTLVPRRRDADVVLIHSARTPGESLFREELAELADQFPNFRLAQWFTGQQGRLDFTTTAELEEICPDWKERSAYACGPDSFLDDAEALWKQAALTAGAPGTDVVLPGDPGNLMIERFNTAFAGGVGHDGGLVTFEASDREVDADGDTPLLDVGEDAGVLMPSGCRMGICHSCLTPLLAGQVRDLRTNEVHGEPGQLIQTCVSAAAGPVNLELNANANANANA
D1-29_03995204hypothetical proteinATGTCTGACAATCTCCATCTCACGCCGGAAGAAGATTTCCCGGCAGACCTCTCTGCAGTGCCTGACCTGGAGCTCCAGGTTCTGGACAGCCAGGTCCAGCGCCAACTCGACTATGAATACGTGGCCGAGGGCGAACCGAACCCCGAGACCGAGTTCCGGCACCACGATCTCGACGAGGAATTCGCAGAGCGGGATTCACGCTGAMSDNLHLTPEEDFPADLSAVPDLELQVLDSQVQRQLDYEYVAEGEPNPETEFRHHDLDEEFAERDSRNANANANANA
D1-29_039961035hypothetical proteinATGCAGCGCATCGGATTCCTCTCTTTTGGCCACTGGGGCCCCGGCCAGGGTTCCCGCACCAGGACCGCGGGCGAGGCCCTGGTCCAAGGCATCGAACTCGCCGTCGCGGCGGAGGAACTGGGCATCGACGGGGCGTTCTTCCGGGTCCACCACTTCGCCCGCCAGCAGGCCTCCCCGTTCCCGCTGCTGGCTGCCATCGCTGCCCGCACCAGCCGGATCGAAATGGGTACCGGCGTCATCGACATGCGCTACGAAAACCCGCTCTACATGGCAGAGGAAGCCGCCGCCACGGACCTGATCAGCGGAGGCCGGCTTCAGCTCGGCATCAGCCGGGGTTCACCCGAACCGGCCCGCAACGGAGCCGCCGCCTTCGGGCACCTGCCGGCGGCCGGCGAGACTGACGCTGATATGGCCCGCAGGCACACGGACCAGTTCCGGCATGCCATTAGCGGCGCGGGCGTGGCGGAGGCGGATCCACGCTATGCCGGCGGTGCCACCGGGCTGCTGCCCGTCCAGCCGCAGTCGCCGGGCCTGGCGGAACGCATCTGGTGGGGAGCCGGCAGCCGGAAGACTGCAGTGTGGGCGGCGGGCAAGGGGATGAACCTGATGAGCTCCACCCTGCTGACCGAGGACACCGGGGTGCCCTTTGACCAACTCCAGGCGGAGCAGATCCAGCTCTTCCGGGAGGCCTGGGCGGCGGCTGGGCACAGTCACCAGCCACGGGTTTCGGTCAGCCGCAGCATCCTGCCCATCGTGGATGAGGAAGACAGCCGCTACTTTGGCGGCAGTGCGCTCCGGGACACGCGGGACCAGGTGGGCATCATCGACGGGCTGACGGCACGGTTCGGAAAAAGCTATGTGGGGGATCCGGACGTCCTAGCTGGGGAGCTCGCAGGCGACGCCGCCGTGCAGGCGGCGGACACCCTGCTGGTCACCGTCCCCAACCAGCTCGGCGTGGACTTCAACGCCAAGCTGCTGGGCAACATCGCCCGCCATATCGCCCCTGCCACTGGGTGGAGCCGGGCCGTTTCCTGAMQRIGFLSFGHWGPGQGSRTRTAGEALVQGIELAVAAEELGIDGAFFRVHHFARQQASPFPLLAAIAARTSRIEMGTGVIDMRYENPLYMAEEAAATDLISGGRLQLGISRGSPEPARNGAAAFGHLPAAGETDADMARRHTDQFRHAISGAGVAEADPRYAGGATGLLPVQPQSPGLAERIWWGAGSRKTAVWAAGKGMNLMSSTLLTEDTGVPFDQLQAEQIQLFREAWAAAGHSHQPRVSVSRSILPIVDEEDSRYFGGSALRDTRDQVGIIDGLTARFGKSYVGDPDVLAGELAGDAAVQAADTLLVTVPNQLGVDFNAKLLGNIARHIAPATGWSRAVSNANANANANA
D1-29_039971284lhgDCOG0579L-2-hydroxyglutarate dehydrogenaseATGAGGAAAGCGGCCGAGCCGCGGAAAGGTGGTTGGCCTGTGGCGCACTTCGACTTTTGTGTGGTGGGCGGAGGCATCGTGGGGCTGGCCACCGCCTACCAGCTGCTCCGCAAGAACCCGGGCGCCTCATTGGTCCTGTTGGAGGCCGCCGATACCGTGGCCTCGCACCAGACCGGCCACAACAGCGGCGTCATCCACTCCGGGATCTACTACCCGCCGGGCAGCCTGAAGGCCCGGTTCAGCAAGGCCGGCGCGGAACAGACCCGGGAGTTCTGCCGGGAGCACGGCCTGCGGTACCAGGAGCCTGGCAAGCTGTTGGTGGCCACCACGGAGTTGGAGCGGCGGCGGTTGGACGACCTGGAAAAGCGGGCGGCCATCCACGGCCTGGGCTGTGAACGACTGGACCAGGCGGAGCTGGCGCGGCGCGAGCCCAATGTGGCCGGTCTTGGTGCCCTCCTGATTCCCAGCACCGGAATCGTGGACTACCGGGCGCTTGCCCTCAAGCTGGCAGAGCTTGTGGCGGCAACCGGTGGTCAGGTGCTCACCAGCGCCCGCGTGATCTCCATCAGCGAGTCCGCAGACCGGGTGGACGTTGGAACCGGCAGTGAGCGGTACAGCTGCGGGAGGCTGGTGGTGTGCGGGGGGCTGCAGTCGGACCGGCTCGCGGAGCTGGCGGGCCTGGCCATCGACGTGCAGATCATCCCTTTCCGCGGCGAGTACTTCCAGCTGCCCGCTGAGAAATCCCGTTACGTCAGGCACCTCATCTATCCCGTACCTGATCCTGCCCTCCCCTTCCTGGGTGTCCATCTCACCCCGACCATAGACGGCACTATTACGGTAGGGCCTAACGCCGTCCTGGGCATGTCCCGCGAGGGCTACCCCAAGTTCTCCATCAACGTGCCCGACGTGGCGCGTTACGTCCGCTTCCCGGGGCTTTGGCGGGTCGCCCGGGCCAACCCGGCCACCGCTGCCAGGGAACTGCGGAACTCGATGTTCAAGGGCAGCTACCTGCGGGAGTGCCGGAAGTATGCACCAGGGCTGACCAGGGCGGACCTGCTTCCGCACGAGGCCGGGATCCGGGCCCAGGCCGTCCGCCGCGACGGGACCCTCATCCACGACTTCCTGCTGGCGGAAACACCCCGGATGATCCATGTGCTGAACGCACCCTCCCCTGCCGCCACCGCAGCCCTGCCCATCGGCGGGCATCTGGCGTCCAAGGCATCAGCGCCCTCCACGCCACCCACGCCGTCCACACCGTCCACGCCGTCAGACGGTGTCATGTAGMRKAAEPRKGGWPVAHFDFCVVGGGIVGLATAYQLLRKNPGASLVLLEAADTVASHQTGHNSGVIHSGIYYPPGSLKARFSKAGAEQTREFCREHGLRYQEPGKLLVATTELERRRLDDLEKRAAIHGLGCERLDQAELARREPNVAGLGALLIPSTGIVDYRALALKLAELVAATGGQVLTSARVISISESADRVDVGTGSERYSCGRLVVCGGLQSDRLAELAGLAIDVQIIPFRGEYFQLPAEKSRYVRHLIYPVPDPALPFLGVHLTPTIDGTITVGPNAVLGMSREGYPKFSINVPDVARYVRFPGLWRVARANPATAARELRNSMFKGSYLRECRKYAPGLTRADLLPHEAGIRAQAVRRDGTLIHDFLLAETPRMIHVLNAPSPAATAALPIGGHLASKASAPSTPPTPSTPSTPSDGVMPGPT0013225_769DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUTARATE_UTILIZATION,PGPT0013225-lhgO|ygaF-K15736NANA
D1-29_03998852cahCOG3338Carbonic anhydraseATGTTAAGCACGCCGGAATTCTCCAGGAAAACGCTCATGCTGGGAGCGGGGATGGGCTTCCTGGCCCTTGCCACGGGATGCGCCAGGGCAGGCAGTGAAGCACAGCCGACGCCGGCCGCTTCTTCGGCTGCCTCCACCGCGGCCGCTGCCCCCGAATGGGAATACACGGGAGCCATGGGGCCGCAGGAATGGGGAACCCTCAGCCCCACTTACGGATCCTGCCAGGCGGGCACCGCGCAGTCCCCCATTGATCTGACAGGCGGAGCCCTCAACGGAACGGCCAGCGGCAGCGGGGACCAGGGCACTGTCATCCAACTGCAATACCAGCCATCGGACGCTGAAGTGGTCAATAACGGCCACACGTCTGAGCTCCACTCGGCGGCTCCGCAGGTGATGCTGCTCAACGGGCTGCCCTGGACGTTCAAGCAGTTCCACTACCACGCACCGTCCGAACACACCCTGGACGGGAAACGGTTCGAGGCCGAATTCCATTTTGTCCACCAGTCCGACGACGGCCGGCTGGCCGTGCTGGGTGTGCTCGCCGTCGAGGGCCCGAACAATGCCGCCTGGGCGGCTTTTGTGGACGCTGCAGCGGCCGCTCCCGCCGCTGGCTCCGAGGCCCCGGCCGGCGTCGTGGATCTTGGCTCACTCATCCCGGCCTCGCTGGACCACTTCGCCTATACCGGCAGCCTCACCACGCCGCCCTGCTCGGAAAACGTCCAGTGGCTTGTCCTGGAAACGCCGGTCGAGCTGGGGCGGGGGCAGCTGGACGCGCTTACCGCAGTCCACGACGGGAACGACCGCCCCCTCCAGGCCCTCAACGGGCGTGCTGTGAGTGTGGTGCACCAGTAAMLSTPEFSRKTLMLGAGMGFLALATGCARAGSEAQPTPAASSAASTAAAAPEWEYTGAMGPQEWGTLSPTYGSCQAGTAQSPIDLTGGALNGTASGSGDQGTVIQLQYQPSDAEVVNNGHTSELHSAAPQVMLLNGLPWTFKQFHYHAPSEHTLDGKRFEAEFHFVHQSDDGRLAVLGVLAVEGPNNAAWAAFVDAAAAAPAAGSEAPAGVVDLGSLIPASLDHFAYTGSLTTPPCSENVQWLVLETPVELGRGQLDALTAVHDGNDRPLQALNGRAVSVVHQPGPT0002420_876DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002420-cah-K01674NANA
D1-29_039991104Carnitine monooxygenase reductase subunitGTGGCAGCAACAAATAGTGAAGTGTGGCAGCTGGGAACAGTTGTCGAGGCCCAAACCATAGCGGCTGACATCCAGCGGATCGTGCTGGAACCTGACCTGCCGCTCAAAGCGGAGCCGGGCTCGCATCTCGATGTCATGGTGCTCATCGACGGGCAGCGCGTGAGGCGGTCCTATTCCATTGTGGAATCCAGCCAGGATGGCAAGCGGCTGGCGATCAGCGTCCTGAAGGCCCCGGCGTCGAGGGGCGGCTCCCTCTTCATCCACGCCCTGCAGCGCGGCGACAGGCTGGAGATCACCCAGCCGCTGCAGAACTTTCCGCTCCGGGTAGGCGCGGCGCGCTACATCCTTCTGGCCGGGGGAATCGGTATCACTGCCATAGCGGCCATGGCAGGCGTCCTGAAAAACCTGGGGCTTGACTACACGTTGGTGTATGCGGGCCGGCGGCGGGCCGCCATGGCGTACCTGCCGCAGCTGGAGGAGCTGCACGGTGCAAACCTGGTGGTCCACAGCGACGCCGAAGGGACACCCCTGGACGTGAACAGCCTGATGGCCGGCATAGAGGACGACGGTACGGAGCTCTACATGTGCGGTCCCATCCGGCTGATGGACGCCGTCCGCCGGGCGTGGACCCAGCAGGGCCTCAGCCCCGCCAGCCTTCGCTACGAGACTTTTGGAAACAGCGGCTGGTACCGGGCCGAGGAGTTCATCGTCCGGGTTCCCGGCCTGGGGATGGAGGTTCCGGTGGGGCCCGGCGAATCCATGCTGGAGGCCCTTCAGGGAGCCGGCCTGGACATGATGTTCGACTGCCGCAAGGGCGAATGTGGTCTCTGCGAAGTCAGGATCCTCCGGCTGGAGGGCGCCATCGACCACCGCGACGTCTTCTACAGCGCCAGGCAGAAGAATGCCACGGAAAAGATGGCGTGCTGCGTGTCCAGGGCGGTCACCTCGGCCACGGCTGCCATGGCTGCCGCGGCTGCCGCGGCTGCCGCGGCGCCGGGACCCGCAGCGCAGGGCACGGGGGTGTCCGGGCATGCTGTTCCCGGAACCACCGCCCCCGTGTCCGCTGCAGCCGGCCCCGCTGTGGTGACCATCGAGGTCCCCTGAMAATNSEVWQLGTVVEAQTIAADIQRIVLEPDLPLKAEPGSHLDVMVLIDGQRVRRSYSIVESSQDGKRLAISVLKAPASRGGSLFIHALQRGDRLEITQPLQNFPLRVGAARYILLAGGIGITAIAAMAGVLKNLGLDYTLVYAGRRRAAMAYLPQLEELHGANLVVHSDAEGTPLDVNSLMAGIEDDGTELYMCGPIRLMDAVRRAWTQQGLSPASLRYETFGNSGWYRAEEFIVRVPGLGMEVPVGPGESMLEALQGAGLDMMFDCRKGECGLCEVRILRLEGAIDHRDVFYSARQKNATEKMACCVSRAVTSATAAMAAAAAAAAAAPGPAAQGTGVSGHAVPGTTAPVSAAAGPAVVTIEVPNANANANANA
D1-29_040001095tsaM1Toluene-4-sulfonate monooxygenase system iron-sulfur subunit TsaM1ATGAACGCAATGCAAGCCAGGAGTTCCACCACCAACAAGGTCCTCGGCTACCCGCTGAATGCCTGGTACGTGGCGGCGTGGGACAAGGAAGTGACCCGTAAACCAATGGCGCGGAAAGTGGCCGGCCGTCCTTTGGCCCTCTACCGTACCGAGGACGGCAAGGCGGTGGCGTTGGCTGACGCTTGCTGGCACCGGCTGGCTCCGCTCTCCATGGGCAAGACCCTGGGCAAGGACCAGATCCAGTGCCCCTACCATGGCATCGTTTACAACTCGGCCGGGCGCTGCGTTTCCATGCCGGCGCAGGAAACCATCAACCCCAGCGCCACCGTCCCTTCTTTTCCGGTGGTGGAACGGCACCGCTATGTGTGGGTCTGGCTGGGCGACCCCACCCAGGCCAACCCGGCACTTGTCCCGGACATGCATCAGCTGGATTCGGCGGAATGGGCGGGGGACGGTGAAACCATCCATGCGCCGTGCAATTTCCAGCTGGTGCTGGACAACCTGATGGACCTCACCCACGAGGAATTCATCCACTCCTCCTCGATCGGGCAGGAGGAGCTGAGCGAGTCTGACTTCGTGGTCACGCACGACGGCGACACCGTCACCGTCGCCCGGTGGATGTTTGACATCGACGCCCCGCCATTCTGGCTCAAGAACATGAGGGACAAATTTCCGGGCTTCGCGGGCAAAGTGGACCGCTGGCAGATCATCACCTTCCGCTCGCCGTCGGTCATCAACATCGACGTTGGGGTTGCCAAGGCTGGAACGGGAGCGTTCGACGGCGACCGCAGCCAGGGCGTCAACGGTTTTGTCATGAACGCGATCACCCCCGAGGGTGACAGGTCCTGCCACTACTTCTGGGCCTTTATGCGGAATTACCGGCTGGACAGCCAGCTCATCACCACCCAGCTGAGGGACGGCGTGCATGGCGTTTTTGGCGAGGACGAGGCGATGCTGGCCGCGCAGCAGGAAGCGATCGATGCCAATCCTGACTACGAGTTCTACAACCTGAACATCGACGCCGGCGGCATGTGGGTGAGGCGGCTGATTGAACGCCAGCTCGAGGCCGAAGGCCGCCTGGTTCCCAGTGCCTGAMNAMQARSSTTNKVLGYPLNAWYVAAWDKEVTRKPMARKVAGRPLALYRTEDGKAVALADACWHRLAPLSMGKTLGKDQIQCPYHGIVYNSAGRCVSMPAQETINPSATVPSFPVVERHRYVWVWLGDPTQANPALVPDMHQLDSAEWAGDGETIHAPCNFQLVLDNLMDLTHEEFIHSSSIGQEELSESDFVVTHDGDTVTVARWMFDIDAPPFWLKNMRDKFPGFAGKVDRWQIITFRSPSVINIDVGVAKAGTGAFDGDRSQGVNGFVMNAITPEGDRSCHYFWAFMRNYRLDSQLITTQLRDGVHGVFGEDEAMLAAQQEAIDANPDYEFYNLNIDAGGMWVRRLIERQLEAEGRLVPSAPGPT0005490_131DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005490-vanA-K03862NANA
D1-29_04001588hypothetical proteinATGAGTCTTCGTTATGCACTGCTGGCTTTGCTGTCTGTGGAGCCGATGACGGGCTATGACCTCGCCAAGCACTTTGAATCGTCGGTCGCGTACGTGTGGCACGCCCCCGATTCCCAGATCTATCCCGAACTGCGGCGGATGGAGAAGGAAGGGCTGCTGCTGGCCAACGAAGTGCCCTGGGGCCCCAACAGCACAAAGACCCGGTACAGCATTGCGGCCGCAGGCACGGCGGCCTTCCGGGAGTGGATGAATACTCCGCTGGAATATTCCCGCGAGCGCGACCCCGCCCACCTCAAGGCTGCCTACCTGGAATGGGCCGAGCCGCCGTCCGCCCGCGCGCACATGAGGGCGCACCTGGAATACCACTCCCTTCGTCGCAGGCAGTGGGAGGGCATGATCGAGGAGCTGCGGAACGGCACCAACGTGATGCTGAGCAAACGGCTGGCGAAAACACCGGAAGCGGACAGGCGCCGGACCACCGAGTACAAGATCTTCACCTACGAAGGTCTCATTGCCCGGGCGGAGACAGAAATTGCCTGGGCACGCCGGGGCCTTGAACTCATTGATTCCCTCGAAGGCAGCAACTGAMSLRYALLALLSVEPMTGYDLAKHFESSVAYVWHAPDSQIYPELRRMEKEGLLLANEVPWGPNSTKTRYSIAAAGTAAFREWMNTPLEYSRERDPAHLKAAYLEWAEPPSARAHMRAHLEYHSLRRRQWEGMIEELRNGTNVMLSKRLAKTPEADRRRTTEYKIFTYEGLIARAETEIAWARRGLELIDSLEGSNPGPT0025575_42DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR|BF-CELL_DENSITY_REGULATIONCE-QSR|BF-BIOFILM-LOW_CELL_DENSITY_REGULATOR,PGPT0025575-aphA-K10917NANA
D1-29_04002405hypothetical proteinGTGCCCACCGACCAGACACCGCCCAACAGTCCCGAGCCGCCGTCGCGCGGGAAACTGGCCGAGCGGCTGCTGCCCGGGGGAACGGAACCTGATCCCCGCTTCACCCTCGCCAACGAACGGACGTTCCTTGCCTGGATCCGCACCTCGCTGGCTCTCCTTGCCGGCGGGATAGCCATCGAGGCATTCACCGCGGATCTTTTCCTGGAGCCTGTGCGCAAAGGCCTGGCTGTCCTGCTGTTGCTGCTGGGAATGTTGCTGAGCGCGGGATCAGCAGTGCGCTGGATCAGGGTGGAGCGCAGCATGCGCAACAAAACACCGCTCCCGCTGCCTCTGATCGTGCCACTGCTGGCCGGGGCCGGTGCCCTGGCGGCCGCCGCTGTCCTGATTTTTGTTCTCTGGCGCTGAMPTDQTPPNSPEPPSRGKLAERLLPGGTEPDPRFTLANERTFLAWIRTSLALLAGGIAIEAFTADLFLEPVRKGLAVLLLLLGMLLSAGSAVRWIRVERSMRNKTPLPLPLIVPLLAGAGALAAAAVLIFVLWRNANANANANA
D1-29_04003345hypothetical proteinGTGGAACGCCGCACACCAGCCCCTGGCCTGCACGGCGATGCCGGGCTGCAGCCGGAACGGACCACGCTGGCGTGGGGCCGCACCATGATGGCGCTGGTCACTGTCAGTGCCATTTTCCTGCGCTGGCTCCCCCAGCACGGCCTGCCCATCCTGTTGCTGTTCGCCGTTTCCATCACGGCCGCAGCGGCCATTTACTTCACCCAGCGCCGCCGCTACCGTGCCAGCGCAGCGGGGATCGTCCGGGAAAATGTCGACGCCGGCGCCTCCGCCGTGATCTGGACGGCGTTCGCGGGGGTTGTGCTGGGGGCGTTGGGAATCGGCGTGGTTCTCCTGGGCAGCCCGTGAMERRTPAPGLHGDAGLQPERTTLAWGRTMMALVTVSAIFLRWLPQHGLPILLLFAVSITAAAAIYFTQRRRYRASAAGIVRENVDAGASAVIWTAFAGVVLGALGIGVVLLGSPNANANANANA
D1-29_04004567tadA_2tRNA-specific adenosine deaminaseGTGACGGCGCACCTTACCGCCCCACAGAATGCCGAAACGGGGTTTAATGACCGCATGACCCACCCCACACAGCAGTCCACCAGCCCACTGACGCCGCAAGCGGCCCCTGACCCCGCTTTCGAAGCCGCTTTTCAAGCCGCCCAAAAGAGCGCCAACGAAGGCGGCATTCCTATCGGGGCAGCGCTTGCACGTGACGGCGTGGTCATCGCGAGCGGACACAACGAACGGGTTCAAAACGGCGATCCGATAGCGCACGGGGAAATGTCCGCCTTGCGTGCGGCCGGCCGGCAGAAGAGCTACCGGGACACCACTTTGTACACCACCCTGGCCCCGTGTGCCATGTGCACCGGAACCATCATCCAGTTCAAAATCCCCCGGGTGGTGGTGGGCGAAGCGCGCACGTTTGGCGGCGAGTTCGAACTTCTGCGCTCACGCGGCGTGGAGGTGGTGGTCCTGGATGACCAGCGGTGCGTGGACATGATGCGGGCGTTCCAGGAAAACAACCCCGACTTGTGGGCGGAGGACATCTCTGAGGACGTCAGCCCGGACATCACTAAGCAGGACTAGMTAHLTAPQNAETGFNDRMTHPTQQSTSPLTPQAAPDPAFEAAFQAAQKSANEGGIPIGAALARDGVVIASGHNERVQNGDPIAHGEMSALRAAGRQKSYRDTTLYTTLAPCAMCTGTIIQFKIPRVVVGEARTFGGEFELLRSRGVEVVVLDDQRCVDMMRAFQENNPDLWAEDISEDVSPDITKQDPGPT0021320_75DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021320-codA|cdd-K03365NANA
D1-29_04005948hypothetical proteinGTGCACAATGGGTGCATGATCGATCCACGGCTCATAACACTTCGGGTATTTGCCCGGTGCGGCACTGTTGGTGCGACCGCGGAGCTCACGGGTTATTCTCCCTCCGCAGTCTCCGCGCAACTGCGGGAGCTCCAGCGCGTGCTGGGAATGCAGCTGCTGACGAAGGATGGCCGGGGTGTGCGGCTGACCGCCACGGGCCGCTTTCTCGTAGAAGGCTCGGACGCCCTGATTGCGGAATGGGAGAGCCTGCGCGCCGCCGCCATGGAGGCTGGCGACCAGGTGCAGTCCCGTTTTGGCCTCGGCGGATTCTCGACGGCGGCCGCCCAGTTGCTCGCGCCGCTGGCCGCCACGCTGCGCTCAACACGCCCGCTGCTGGAGGTGCAGGTACTCGAGGCCAATCCGGCCCGCTGCTTCGACTTGTTGGTTGCCGAACGAATCGACCTGGCGGTCATCGTCGCCATGCAGTCCGACACCTATGTTGAGGACGATCCGCGCTTCGAGCAGACCGTTCTGCTCGACGATCCCCTGGACGTGATCATTCCCTCCGACCATCCGTTGGCTTCGCGGGAGACGGTGACGCTCGAAGAATTGGCGTCGGAACCCTGGATCACCGAGGCCGCGGGTTCCACCTACCATTCCCTGTTCACCGCGGCCTTCACGGCAGTCGGCGTGACGCCGCGGATTGCCCATGAGGCCATTGAATGGGAAACCCAGATCGCCTTCGTTGGTGCGGGGCTGGGCGTGGGGCTGCTGCCGCGACTGGCGCCCCTGCGTGGTGCCGAGAACGTGGTTCGACTGCGCATTACCGGCAAGGGGCGGCCCGCGCGCCGCATTGTCGCTGCGGTGCGCAGCGGCAGTATCGCATCACCCCTGATCCAGGAGTCGCTTGGCATCCTTCAGGCCAGGGCCCATCGGATCCTCACCGCCCGGCCCGAAGACGATCTCTGAMHNGCMIDPRLITLRVFARCGTVGATAELTGYSPSAVSAQLRELQRVLGMQLLTKDGRGVRLTATGRFLVEGSDALIAEWESLRAAAMEAGDQVQSRFGLGGFSTAAAQLLAPLAATLRSTRPLLEVQVLEANPARCFDLLVAERIDLAVIVAMQSDTYVEDDPRFEQTVLLDDPLDVIIPSDHPLASRETVTLEELASEPWITEAAGSTYHSLFTAAFTAVGVTPRIAHEAIEWETQIAFVGAGLGVGLLPRLAPLRGAENVVRLRITGKGRPARRIVAAVRSGSIASPLIQESLGILQARAHRILTARPEDDLNANANANANA
D1-29_040061302Carnitine monooxygenase oxygenase subunitATGTCTGCTCCAGTCTTGCCCCTCAATTCACGCGGAAAACTCGCCTCATCATTGCCTGCCGAGCAGCTGGCGGAAATCAAGGAGTTGTTCGATTTCCGGCGCGTGGGATATTCCCTCGATGCCCCCTTCTACACCGACCCGACGATCTTCAACATCGACATGCAGGCCATTTTTGGCCAGCACTGGATCTTCGCCGGCAGCATCGCCGAACTCCCGGAGCCGGGCGACTACATCACCGTCGACTACGGGCCCTACTCCCTGATCGTGCTGCGCAACGACGACGGCGGCGTGAACGTCCTGCACAACGTGTGCCGCCACCGCGGCGCCCGCGTCCTGACCGAGCCCGCCGGGTCAACGGGAAACCTGGTCTGCGGCTATCACTCTTGGACCTACTCGCCGGAGGGCAATCTGATCCACGCCTCGGCACCCGGGGAGACAAAGTTCGACAAGGGCTGCTTCGGCCTCAAGCGCGCCCACAGCCGCGTGGTGGCCGGGCTCATCTTCGTCTGCGTTGCGAACGAACCGCCGGCGGATTTTGACGAAACCGCCAAGATCTTCGAGCCTTACCTCGCGCCCCACGATCTGTCGAAGACGAAAATCGCCTACCAGCAGAACATCATCGAAGAGGGCAACTGGAAGCTCGTCATGGAGAACAACCGTGAGTGCTACCACTGTGACGGCCACCCGGAGCTCGCCTGCTCCCTCTTTCCCACCTGGGGCCTGACGGAGGGCCTGATCCCGGCCCACCTTGAAGAAGTATGGGACCGCAACAAGGAAGCACAGTCCTCACTCGAGGAACGTTGCCGCCGCTACGGCCTTCCCTACGAGGTGGTGGAGGAGCTCGACACACGCGTAGCTGGTATCCGCATCTCACGGGAATCGCTCGACGGTGAGGGCGAATCGTTCTCGCCGGACGGGCGCAGGCTCTCCAAAAAGCTGCTCGGCGACTTGCGGGACTTCCGCCTTGGCCGCTGCTCGATGCACCTGCAGCCCAACAGCTGGTTCCACTTCCAGGGGGACCACGTCATCACGTTCGGTGTTTTCCCCGTGAACGAACACCAGACACTGGTGCGCACCACCTGGCTGGTAGCTGACGACGCCGAGGAAGGCGTCGACTATGACCTGGAGAAGCTCACCTACACCTGGAAGCAGACCAATCTGCAGGACAAGGCGTTCGTGGAGCTGTGCCAGACGGGCGCCGGCAGCCCCGCGTACGAGCCCGGCCCTTATATGAAGAGCGAGTACCAGGTGGAGGCGTTCATCAACTGGTACGTGCAGCGCGTGCAGGAGCACTTGGCATGAMSAPVLPLNSRGKLASSLPAEQLAEIKELFDFRRVGYSLDAPFYTDPTIFNIDMQAIFGQHWIFAGSIAELPEPGDYITVDYGPYSLIVLRNDDGGVNVLHNVCRHRGARVLTEPAGSTGNLVCGYHSWTYSPEGNLIHASAPGETKFDKGCFGLKRAHSRVVAGLIFVCVANEPPADFDETAKIFEPYLAPHDLSKTKIAYQQNIIEEGNWKLVMENNRECYHCDGHPELACSLFPTWGLTEGLIPAHLEEVWDRNKEAQSSLEERCRRYGLPYEVVEELDTRVAGIRISRESLDGEGESFSPDGRRLSKKLLGDLRDFRLGRCSMHLQPNSWFHFQGDHVITFGVFPVNEHQTLVRTTWLVADDAEEGVDYDLEKLTYTWKQTNLQDKAFVELCQTGAGSPAYEPGPYMKSEYQVEAFINWYVQRVQEHLAPGPT0013680_69DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
D1-29_040071416hmp_2FlavohemoproteinATGATTGAAGTCCTCACTGAGACGGCCACCCAGGAACCACAGCGTATTCGCGGTCTTGAGATGCCCTGGAACAGGGTAATGGGCAGCACCGAGGGAGCCGCAGGCGCAGCCCGCGCCTTGGGCCCCTGGCACCCGCAGGAGTTCATGGCTGAATGTGTCGAGACCGTTCCCGAGGCGGGCGGCATGATGACCTTCGTGTTCCGCCGCTGCGACGGTGCGCCGCTGGCGTTCCGTGCGGGGCAGTACGTGAACGTCGCGTTTCCCCTCAACGGCGAGGACCAGGATCCGGTGGACCGCAGCTACTCGCTGTCCAGTTCACCCACACAGCCCTGGACCTTCAACATCACGGTCAAAAGCGACCCCGCGGGACTCGTCTCACCGTGGGTGCACGAGAACGTCAAGCCCGGCACCGTCCTGGAGATGCTCGGACCGGTCGGGGCATTCCACCTGCCCGACGCCGACCGCCGGGCCCGGTACCTCTTGCTGGCTGCCGGCGCAGGCATCACCCCCATCATGTCGATGCTGCGGACCATCCACTCCCTGCCCGGACAGGCGGATGTTGTGGTGCTCTATCACGGAGCGGAGGCCGGAGGCTTTGCCTTCCACCAGGAGTTGGCCTACATCGCCTCAGTTGACTCGCGGGTCAAGGTCTTCTACTCGCTGGGCGACCGCAGCGTTCCCGAGGGGTGGGAAGGGCTCACCGGAAGGCTGACGGCGGCCATGCTGGAGGAGGTTGCCCCCGATGCCAACGGCCGCCAGGTCTATGCCTGCGGCCCCGAGGGTTACCTGAACACCGCCACTGAGCTCCTCAGGAAGGTCGGCGTCGACGACACCTCCATATACATGGAATTCTTCTCGGGAGACCGCCAGACCCTCCTTGAGTACCAGGCGGAGCTCGCGTTTGCAGTGGATATTGCGGAGGAAATCGCCGAGGAAATCGCCGATTCCGCCGAGGACTACTACGAAAGCCAGCCCACCGCGTTCGGGCTCTACGAGCCCGGTTACGACGCCGAGGGAACCCTGAAGGCCACGGGGCTGGCGCTGGAAACCGTCGATCCGGACGTACCCGCGTCAGAAGCCCCTGGAGGCAATCCGGACGTGGGGTCGGAGGCCGGGTCCCCCGATGCCTCGAGCTTCGACACGGTGGGAACGGGAAGCCTCACCCTGTCCTTCATGCGCACCGGCATCAATGTGCGCATCGACCCCGAAGAACACATCCTTGGGGTGGCCCAGCGTGCGGGCGTCAGGATCGGCGCGAACTGCAAGGAAGGCATGTGCGGCTCCTGCAAGGTCGTCAAGCTTTCCGGGGAGGTGGAGATGAACCACCAGGGCGGGATCCGGGCACGGGAAATCGATGCAGGCAAGTTCCTGCCCTGCTGCTCCACCGCGCGGACGGATATGGTGATCGATGCCTAGMIEVLTETATQEPQRIRGLEMPWNRVMGSTEGAAGAARALGPWHPQEFMAECVETVPEAGGMMTFVFRRCDGAPLAFRAGQYVNVAFPLNGEDQDPVDRSYSLSSSPTQPWTFNITVKSDPAGLVSPWVHENVKPGTVLEMLGPVGAFHLPDADRRARYLLLAAGAGITPIMSMLRTIHSLPGQADVVVLYHGAEAGGFAFHQELAYIASVDSRVKVFYSLGDRSVPEGWEGLTGRLTAAMLEEVAPDANGRQVYACGPEGYLNTATELLRKVGVDDTSIYMEFFSGDRQTLLEYQAELAFAVDIAEEIAEEIADSAEDYYESQPTAFGLYEPGYDAEGTLKATGLALETVDPDVPASEAPGGNPDVGSEAGSPDASSFDTVGTGSLTLSFMRTGINVRIDPEEHILGVAQRAGVRIGANCKEGMCGSCKVVKLSGEVEMNHQGGIRAREIDAGKFLPCCSTARTDMVIDAPGPT0013685_69DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832NANA
D1-29_04008639hypothetical proteinATGGATGTGAAGCCTGAAATCGGTGAATCCAATGCGGGAGGCTGGCAAGCCGAGTCACTGGAAGCCTTGGTGCAGCGGCTCCTGCCGGCAGCAGGACAGCGTCCGAACCGCCCTTGGATTGTAGCCGTTGATGGAAGGAGCGGGGCCGGCAAGACCACCCTGGTCAATCGTCTGCTGGCTCGAGTGCCGGACTCGGATGTGGTCCACACGGACGATGTAGCGTGGCACCTCTCGTTTTTTGACTGGGCCGATGAACTCCGTGAAGGGGTCCTCGAACCCCTGCTCCAAGGCGAGGCAGTCCACTACCGTCCGCCGGGTTGGGTGGCCCGGGAACGTCCAGGAGCCATTGCTTTACGCGCCGGGCGTTCGGTGGTGTGGGTGGAAGGGAGCGGATCATCACGACAAGACCTCACCGACCTGATCGACGCTTCGATCTGGGTGCAGTGCGACAACCTTGAAGCCAGACGTCGCCTCCTGGCACGAGATGGCCAGGAGGAACAAGACCTGCACAGGGAGTGGGAAGCCCAAGAAATTCCCTTCCTACTCCAAGACCGGCCATGGGAGCGGGCTACGGTGATCGTGGCCGGCAGGCCGGCCCTGGAGCACGATCCGAAGACCCAGATTGTGTTCCTGCCGTGAMDVKPEIGESNAGGWQAESLEALVQRLLPAAGQRPNRPWIVAVDGRSGAGKTTLVNRLLARVPDSDVVHTDDVAWHLSFFDWADELREGVLEPLLQGEAVHYRPPGWVARERPGAIALRAGRSVVWVEGSGSSRQDLTDLIDASIWVQCDNLEARRRLLARDGQEEQDLHREWEAQEIPFLLQDRPWERATVIVAGRPALEHDPKTQIVFLPNANANANANA
D1-29_04009963dagK_2COG1597Diacylglycerol kinaseATGAAGGTTGCGCAAGCGCGCTCTGCTGCCGTGGTGATTAACGCCGGATCCCGCCGGGGAGCGGCAGCGCTTGAACTTGCGGTGGACAAGATGAAAATGGCAGGTTTGCCGATCACTTCCGTGCACCACGTGCTGTCGGGAGCAGAACTGGCCGGCACGCTCGATCAAGTGATGGCGGACGGGCACGACCTGGTGGTTGTTGGCGGCGGCGACGGGACGGTGAGCTGCGCCGCCGGCCGGGTTGCCGGCACCGACGTCATGCTCGGCGTTCTTCCACTGGGCACCGCCAACGACTTCGCCCGCACCCTGGAGATACCGAGCAACCTGGCCGAGGCGTGCGCTACCGTCGCGGACGGGAAGGTGGTGGACATCGACCTCGGCCGGGCAAACGGCGAGCCATTCCTCAACGTCGCGTCCGTAGGCCTCTCCGTGGCTGTTACCGAAGCTCTTAGCCCGCGGCTGAAGCGGTACATCGGGCCGCTGGCATACGGCATTGCCACCCTGAACGCTTATGCCCGGCACAAGGCTTTCCCGGCCCGTCTCGAGTTCACCGACGGGGACCACGAGCCGATGGAGCTCGACAACCTGCTTCAGGTGGCAGTCGGCAACGGCCGGCACTACGGCGGTGGCAACACGGTCTCCCCCACGGCTGGGATCGATGATCACACCCTGGACATCTACGCCATCCTGGCGGGGCCGCTCCGTGAGCACGTGAGCATCGCACGGTTACTCAAGGACGGAAGCTTCATCAAACATGACCGGGTGTATCACCTGACAAGCCGACGTGTCCGGGTGGTCACCGAGCAGCCGCTGCCAGTGAACCTCGACGGCGAGATCACCACTGCCACGCCGGCAGACTTCACCATCCAGCGCAACGCCGTGCACGTCGTGGTGCCACAGAGCAGCAGCAGCGCGCTGCTCGATGGACGGCATGCACCGCCGCCAGAAGACCCGTCCATCTAAMKVAQARSAAVVINAGSRRGAAALELAVDKMKMAGLPITSVHHVLSGAELAGTLDQVMADGHDLVVVGGGDGTVSCAAGRVAGTDVMLGVLPLGTANDFARTLEIPSNLAEACATVADGKVVDIDLGRANGEPFLNVASVGLSVAVTEALSPRLKRYIGPLAYGIATLNAYARHKAFPARLEFTDGDHEPMELDNLLQVAVGNGRHYGGGNTVSPTAGIDDHTLDIYAILAGPLREHVSIARLLKDGSFIKHDRVYHLTSRRVRVVTEQPLPVNLDGEITTATPADFTIQRNAVHVVVPQSSSSALLDGRHAPPPEDPSIPGPT0024345_785DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
D1-29_040101206hypothetical proteinGTGAGCGAGCGGAAGTCCATTCGGTGGCTGTGGATGCTGATTGCCTCAGCAGTGCTTTGCCAGATCGCCCTCAACCTGGCTAGGCCGCTTATCTCCTATAAGGTGCTGGCCCTCGGCGGCGACTCGGTGGCAGTTGGCCTGACCTCTGCCTCCTTCGCCCTCCTTCCAGTGGCGATCGCCCTCTGGCTCGGGCGACTGTCAGACCGCCGAACGTCGATGAAGGGCATCACCTTGGCGGGGACGCTCCTGCTGGCGGGCGGCCCGTTCCTGCTGTCCACCGCCCCGTCCCTCCTGCTCGTTGGAATCTCCAGTGCGGTACTGGGCATTGGACACCTGTGCTTCACGATTGCTGGACAGTCCGCCATCGCAAGATTTGTTCCGCTCAGCCGGATGGACGCAGCCTTCGGCTGGTTCACTGCGTCATTCTCCCTTGGTCAGCTCGTCGGTCCACTTGTTGCAGGCCTGGCCATGGGATCTGCAGGAAACGCGGCGGCCGCCGCCCGGCTCATGGACGCCAACGCAGCATTGATGTTGGCGGGGGCAATATCTGTGCTGGCCATTCCGGTAGCTCTGGGGGCATCGGCGAAAGAACGCACGAGTGGACGGGAAACTTCAGAGGCAGCGCCGGCGAAGGCGCCCACATCTAAATCTGTAGGCCACCTTCTCGGTATCCCGACAGTGAAGACGAACATGCTGGCCAGCCTTGCATTGCTGGCCACAACCGACATCATCGTTGCGTTCCTCCCTCTGCTCGGAGAGGAAAATGGAATCGCCCCCATCGGAATTGGCGTCCTGCTGGCCATCCGGGCGGCAGCATCCATCACGTCCCGTCTGCTCCTGCCCGTCATGCTGACCCGATGGAGCAGAACCGGACTCATCACAGCCAGCCTTGCAGGGGCAGGCATCAGCTTGTCCATCCTGCCGTGGCTGTTTGGAAATCCAGTCCTTGCAGCCGTCCTCCTGGCAATCGTTGGATTCTTCCTCGGACTCGGACAACCGATCACGATGACCCTCATCACGCAGGCGGTTCCTCCAGATGCGCGGGGCGCCGCACTGGCGCTGAGGCTGCTCGGCAACCGCCTCGGACAGGTGGCCTTGCCGATAGGGGCAGGACTGCTGGCAGCTCCAGCTGGACCCGGGGGAGCCTTATGGATGTCGTCAGCCGTTCTCTGCGCTGCGTCCATCAGATGGCCCAAGAGGCGCTGAMSERKSIRWLWMLIASAVLCQIALNLARPLISYKVLALGGDSVAVGLTSASFALLPVAIALWLGRLSDRRTSMKGITLAGTLLLAGGPFLLSTAPSLLLVGISSAVLGIGHLCFTIAGQSAIARFVPLSRMDAAFGWFTASFSLGQLVGPLVAGLAMGSAGNAAAAARLMDANAALMLAGAISVLAIPVALGASAKERTSGRETSEAAPAKAPTSKSVGHLLGIPTVKTNMLASLALLATTDIIVAFLPLLGEENGIAPIGIGVLLAIRAAASITSRLLLPVMLTRWSRTGLITASLAGAGISLSILPWLFGNPVLAAVLLAIVGFFLGLGQPITMTLITQAVPPDARGAALALRLLGNRLGQVALPIGAGLLAAPAGPGGALWMSSAVLCAASIRWPKRRNANANANANA
D1-29_04011915gltC_3HTH-type transcriptional regulator GltCATGCTTAACATTCGACGACTCGAATTGCTCTTGGACGTAGTGGAGCTTGGATCGATTACGGCTGCTGCCGAAAAGCACGTCTACTCGCCGTCGGGAGTCTCTCAACAGCTGCGGCGCCTGGAAGCCGAAATCGGGCAGCCCCTTCTTCAGCGGCAGACCCGTGGGATGGTCCCCACCGATGCCGGGCATGTCCTCGCTGCACACACGCGCCGTATCCTGCGACAGATGGCTGCCGCGGAGGCTGATCTGGCAGAAATAGCAGGACTGCACCGTGGCAGCCTCACCATGGGAACCTTCCCCACCTTGGGTGGTTCCTTTCTGCCGCTCGTGATCAGCAGATTCAAGAAGGAGTACCCGGCCATTGAACTGCACGTCCGCAGCAGCCGCTTCGAGGACCTCGTGGAAATGCTGGAAAACGGCCAGGTGGGAATGTCTCTTTTGTGGGACTACGAATGGAACCGGATCAATCCCGGGGACTTTGCCCTCACTACTGTCTTCGAAGACGCCACGGCGCTCATTGTTGGCAAAGACCACCGGCTGGCGCGGCGGAAGCAGGTGGACATGGCAGACCTGGCCACAGAAGAATGGATCGTTCGCGGTGATGCACATCCTGTGGTTGAAGTTCTGCAGAGAAGCGCACGTGCCGCGGGGTTCACTCCACGAATAGCTTTCCAGGCCAACGACTACCAGGAGGCCCAAGCCATGGTCAGTGTTGGCCTGGGCATAGCGCTTGCTCCGCGAACCGCAGTGGTCAACAAGCATCCAGGTGTCAGCATTGTTTCCCTCGGTTCGAGTGCCCCGTCCCGAAGAGTGCTCCTCGCCCACCGCCACGACAGGGTGCGCGCCGCCGCGGAAATGGCCTTCCAGGCAACGCTGCTGGACGTTGCCAAAGACACCACCGCGGACTTCCGGTGAMLNIRRLELLLDVVELGSITAAAEKHVYSPSGVSQQLRRLEAEIGQPLLQRQTRGMVPTDAGHVLAAHTRRILRQMAAAEADLAEIAGLHRGSLTMGTFPTLGGSFLPLVISRFKKEYPAIELHVRSSRFEDLVEMLENGQVGMSLLWDYEWNRINPGDFALTTVFEDATALIVGKDHRLARRKQVDMADLATEEWIVRGDAHPVVEVLQRSARAAGFTPRIAFQANDYQEAQAMVSVGLGIALAPRTAVVNKHPGVSIVSLGSSAPSRRVLLAHRHDRVRAAAEMAFQATLLDVAKDTTADFRNANANANANA
D1-29_040121056galDCOG28284-oxalomesaconate tautomeraseATGCGCGGTGGAACCAGCAAATGCTGGGTGTTCGAGTGGGACAATCTCCAGGTCCCAGGAAAAAGCGTGGACGAAGTTCTCCTGCGTCTCTTCGGCAGCCCCGATAGCCGTCAGATTGACGGCGTGGGGGGCGGAACATCCACCACCAGCAAGGCCGTCATCCTTACCCGCTCCCTCAGCGAGCATGCCGACGTCGATTACACGTTCGCACAGGTGGCCATCGACGAGCAGCGGGTGGACTGGGGCAGCAACTGCGGCAACTGCTCAGCCGTAGTAGCCCCCTATGCAATCCAACGGGGTTGGGTGGCTCCCGGCCAGGAGAGCACATCCGTCCGGACCCTGAACACCAACACAGATCAGCTCATTCTGCAGAAAGTTCCGACGCCGGGCGGCCAGCTTCAGGACACAGGCACCCAGATGATCCCCGGCGTTCCGTTCCCCGGGCTGTCGGTCGGCATGGGGTTCCTGGACCCCGCCGGGAGAACCACCGGGAAACTGTTTCCCACGGGTGAACCGGTGGAGAAAGTGACATTCGACGGGCGTGAAGTTCCGGCCACGCTCATCGATGCAGGTGCTCCCCTCATCATTCTGGACGCTGAGTCCATCGGCCTCACCGCTATGGAGGCGTCTGCCGACATCGACAGCCAGGCTGCACTCCTTGTGCATTTGGACGACGTTCGCCGGGATGCCGCCGTACGCATGGGCCTTGCGGCCACCCGGGCTGAAGCAGCACGGGCGATACCGAAACTGGCGCTGGTGGGCAAGGCGGGCCAGGACGATGAAGCGGACCTCAACGTGAGAATGCTGTCCATGGGAAGGCTCCATCCTGCCCTGGCTATCACGGGAAGCGTCGCCCTGACCATGGCCGCCCAGCACGAAGGGACGGTGGTCCGGGACCTCCTCCCCACTGATCCTTCATCGGGGCTGACCATGCGCACCCCGGCCGGCATCGTTCAGACATGGGCGGAAATTCGTGATGGCGTGTCCGTCGTCGGAACGATTCGAAGCGCCCGCCGCCTCGCGGACGCCGAACTGCTGCTTCCAGAGTCCTGGTAAMRGGTSKCWVFEWDNLQVPGKSVDEVLLRLFGSPDSRQIDGVGGGTSTTSKAVILTRSLSEHADVDYTFAQVAIDEQRVDWGSNCGNCSAVVAPYAIQRGWVAPGQESTSVRTLNTNTDQLILQKVPTPGGQLQDTGTQMIPGVPFPGLSVGMGFLDPAGRTTGKLFPTGEPVEKVTFDGREVPATLIDAGAPLIILDAESIGLTAMEASADIDSQAALLVHLDDVRRDAAVRMGLAATRAEAARAIPKLALVGKAGQDDEADLNVRMLSMGRLHPALAITGSVALTMAAQHEGTVVRDLLPTDPSSGLTMRTPAGIVQTWAEIRDGVSVVGTIRSARRLADAELLLPESWPGPT0001520_822DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACONITIC_ACID_BIOSYNTHESIS,PGPT0001520-prpF-K09788NANA
D1-29_040131209hypothetical proteinATGACGAGCAACAAGTCATCCTTGGAGCCGCCCGGGCTCTTCCCGGAAGGCACCGACGGGCAGACCGAGCCAAGCGAGCAGCCCGATCTGCCCAAGCACTCCCGGCGCACCGTCCTTACAGCCGTCAGCGCTTTCGCACTGCTGGGCGCTGCAACCACCGTCCTGGGTGGAAGCCTGCTGAACCCGCCCTCAAGCACAGAAGACGGCAACTTCAGTGGAGAAACCCTCGAGTTCCTGATTCCCCTGGCTTCAGGCGGTGGAACTGACACCTGGGCGCGGTTCATTGGCACAGAACTGACCAATTATGTTCCGGGCCGGCCGGGTTTTGCGCCAGTGAACGACGCCGGCGGCGAAGGCATCCTGGGCACCAACCGGTTCGCCCGCTCAGCCAAGACCGACGGCACCGAGATCCTGGTCGGCACGGCATCCACCGTGGTGCCGTGGGTCCTGGGACGCTCGGCCGTGAAGTACTCCTTCGAAGACCTTAAGCCTGTAGTGGTGAACGGCACCGGCGGAGTCATTTACGCCCGGGCCGAAGCCGGGGTGGCCGGTGTGCAGGACCTCATCAACAGGGACCAGCCGCTCGAGTTCGGCGGGATCAGCGCCACGGGCCTGGACATTACCACCCTGGTCGCCTTCGACCTGCTCGAAGCCGACGTGACAAGCACCTTCGGGTTCGAGGGCCGGGGCCCTGTCAACCTGGCCCTTCAGCGCGGGGAAATCGATCTGGACTACCAGACGACCTCCGCCTACGGCTCCGCCGTCGCAGGCATTGTCAAGGAAGGCAAAGCCGTCGTGCTGATGTCCTTCGGCCAGCTGAACGAAGCCGGGGACGTCATCCGTGACCCCAACTTCCCCGACGTGCCCACAGTCGCAGAAGCGTACGAAACGCTCCACGGCATGAAACCCTCGGGCGAAAAATACGAGGCCTACAAGACACTGCTCGGGCTGACGTACACCTACCAAAAAGGGCTCTGGGTTCCTCAAGAGACCCCTGAGACCGCCTACGAGCTGCTGCGCCAGTCCAGCGAAAAACTGGGCACAGACGCAGGATTCCAAGAAAAGGCCGCCAAAGTCCTCGGCGGCTACCCCCTCGTTGCGGACGCCGGCGTAGCCGACCGCGTCAGGGACGCCTACAAAGTCAGCGGCTCCGTCCGGTCCTATGTCACAGGGCTGCTCGCGGACAAATACAACATCCACGTTGAGTAAMTSNKSSLEPPGLFPEGTDGQTEPSEQPDLPKHSRRTVLTAVSAFALLGAATTVLGGSLLNPPSSTEDGNFSGETLEFLIPLASGGGTDTWARFIGTELTNYVPGRPGFAPVNDAGGEGILGTNRFARSAKTDGTEILVGTASTVVPWVLGRSAVKYSFEDLKPVVVNGTGGVIYARAEAGVAGVQDLINRDQPLEFGGISATGLDITTLVAFDLLEADVTSTFGFEGRGPVNLALQRGEIDLDYQTTSAYGSAVAGIVKEGKAVVLMSFGQLNEAGDVIRDPNFPDVPTVAEAYETLHGMKPSGEKYEAYKTLLGLTYTYQKGLWVPQETPETAYELLRQSSEKLGTDAGFQEKAAKVLGGYPLVADAGVADRVRDAYKVSGSVRSYVTGLLADKYNIHVENANANANANA
D1-29_040142028hypothetical proteinATGCTTGACTCCGCAATGGCAGCGCTGGCATCCCTCGCTGACCCCTCCCTGCTCATCATGCTCCTGATCGGCACCGTCGCTGGTCTGATCATGGGCCTCATCCCCGGACTCGGCGGCACCGGCGCCGTCGCGATCCTCCTCCCCATCACGTTCGGAATGGAACCGCCCCAGGCTCTGGCCCTCCTTATCGGAGCCCTCGCTGTAGTCCATACCTCGGACACTGTCTCGGCGGTTTTGCTCGGCGCCCCGGGCTCCGCGTCAGCCAGCGTCACCATGCTGGACGGATACTCCATGGCAAAGAAAGGACAAGCGGCCCGGGCACTAACCCTGGCGTTCCTGTCCTCCATGGCCGGCGGCATCATCGGCGCCGTCGGCCTGACACTGGCCATCCCGTTGGCCAGGCCCCTCGTCCTCTCCTTCGCCAGTCCCGAACTCTTCATGCTGACCGTCCTCGGTGTATCTTTGGCGGCAGTCCTGTCACGGGGAAACATCATCAAAGGAGTCTCGGCAGGCCTCCTTGGCCTGATCCTGGGCATGGTTGGGACCTCGCCCACCACAGCCGAGGAACGGTTCACCTTCGGCAGTCTGTTCCTCGGCGACGGCTTGTCACTCGTCGCCGTTGCCCTGGGTATCTTCGGTCTGGCCGAAATCGCATCCCGCGCCAGCCAGCGCCGCGGACAAAAGCAAACCATCAGCCTTGGTGGCGGATGGGGCCAGGGCATCCGGGAATGGCTTACCCATTGGACCCAGGTCATCCGCGGCGCGCTCATCGGTATCTGGGCAGGCGTCCTGCCAGGCGTTGGCGCCACCGCCGGAACCTGGATGGCCTATGGCCAGGCCGTCGCAACCGCCAAGGATAAGCGCCAGTTCGGCAAGGGAGACCCCCGCGGCATTGTCGGCCCCGAAAGCGCCAACAACTCCGTGGAAGCCGGCGACCTGATCCCCACACTCCTCTTCGGCATCCCCGGAGGTGTCCCCTCAGCGATGCTCCTGGGCATGCTCCTTACTTACGGCATCCAGCCCGGACCTTCCATCATCACCGAACACCTCGACCTGATGTACCTGATCGTCTGGTCCTTCGCGATCGCTTCGATCCTTGGCGCGCTGCTCTGCTTCCTCAGCGTCAAACAGCTCGCAAAACTGACCAAGGTCCCGTTCGCCGTCCTGGCAGCAGGCCTCGTAGCCATCATGCTCCTGGGATCATTCCAGGAAGGCGGCCAGCTCGGCGACCTCTGGATCATGATCATCCTCGGCGCCTTCGGTTGGCTGCTGAAATCGACGGGGTTCCCTCGGGCACCGTTCCTCATTGGCTTCGTCCTGGCCATTCCACTGGAACGCTACTACTTCCTCACCGACAGCCTCTACGAAGGGTTCGACTGGATGGCCCGCCCCGGCGTCATGGTCTTCCTGGCAATCCTGATCCTGCCGATGATCTGGGCGTTCATCAAGTTCATCCGCGCCCGCCGACGCACCAACACTGACGATGGTCACCGGGACGAACAGCCTGAGGACGACGAAGCTCCGCTGAAGAATTCAACCTGGTCCCTCACAGCATCAGGCATCTTTTTCGTCGCCTTCGCCGCCGCCCTAATGTCGTCCGCTTCATTCTCACCGGAAGCCAGGCTGGTCCCACAGCTGGTGAGCATCGGAGGCCTGATCTTCTCCGGCATCCTGCTCTTCATTGAGATCCGGAGAAGGCTTCGCGACAGAACCCCGAAGGCAGATGACACCTTTGTTCAGGAGGCAGAGGGGATCCTTGGCACACAGCCCGCGAAGGCAGGTTGGACCCTTGACGCAAAGTTCGCGTTGAAGACGTTCCTCTGGATGACAGGCTTCCTGGCTCTCACGGCCGCCTTCGGATACCTGATTGCAGTCACGATCTTCATCCCGGCCTTCCTCCTGATAGTCGCAAGGGCCCGGCTCAAGGTCGCCATCATCTACACGGGCGTCCTGTACGTCGTGCTTCTGGCACTGCCCTCGCTCCTGCCGATTGACCTGCCGCAGGGCTGGCTCAACACCCTCGTCTAGMLDSAMAALASLADPSLLIMLLIGTVAGLIMGLIPGLGGTGAVAILLPITFGMEPPQALALLIGALAVVHTSDTVSAVLLGAPGSASASVTMLDGYSMAKKGQAARALTLAFLSSMAGGIIGAVGLTLAIPLARPLVLSFASPELFMLTVLGVSLAAVLSRGNIIKGVSAGLLGLILGMVGTSPTTAEERFTFGSLFLGDGLSLVAVALGIFGLAEIASRASQRRGQKQTISLGGGWGQGIREWLTHWTQVIRGALIGIWAGVLPGVGATAGTWMAYGQAVATAKDKRQFGKGDPRGIVGPESANNSVEAGDLIPTLLFGIPGGVPSAMLLGMLLTYGIQPGPSIITEHLDLMYLIVWSFAIASILGALLCFLSVKQLAKLTKVPFAVLAAGLVAIMLLGSFQEGGQLGDLWIMIILGAFGWLLKSTGFPRAPFLIGFVLAIPLERYYFLTDSLYEGFDWMARPGVMVFLAILILPMIWAFIKFIRARRRTNTDDGHRDEQPEDDEAPLKNSTWSLTASGIFFVAFAAALMSSASFSPEARLVPQLVSIGGLIFSGILLFIEIRRRLRDRTPKADDTFVQEAEGILGTQPAKAGWTLDAKFALKTFLWMTGFLALTAAFGYLIAVTIFIPAFLLIVARARLKVAIIYTGVLYVVLLALPSLLPIDLPQGWLNTLVPGPT0017350_35DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-29_04015381Universal stress proteinATGACAGTACTCGTAGCCTACGCACCCGCCCCCGAAGGCAGGGAGGCGCTGACTGAGGGGATTAGGGAAGCCCATCTTCGGAAATCAGACCTGCTCATCGTGAATGTCGGCCGTGGCCACCACGATCTGGACGCGCAGGAATTGCGGGAGTTGGAAGGCCAATTGACCGACGCCGGCCTGGCCCTGACCATCGAATCCTCGATCCTGGCAGATCCGGGGGACGCGGTCATCCAGATCGCACAGGACCGCAGCGCCGAAATGATTGTCATTGGGCTGAGGCACCGGTCCATGGTGGGAAAGCTCATCCTGGGAAGCACCGTTCAGCGCATCCTGCTGGACGCTACCTGCCCTGTACTTGCAGTCCGGTCAGACAAACTCTGAMTVLVAYAPAPEGREALTEGIREAHLRKSDLLIVNVGRGHHDLDAQELRELEGQLTDAGLALTIESSILADPGDAVIQIAQDRSAEMIVIGLRHRSMVGKLILGSTVQRILLDATCPVLAVRSDKLNANANANANA
D1-29_04016348hypothetical proteinATGCGTCCATACGTATATGTCCCTGCAGCCAAAATCACCGGCGAGCTCGAGCCCAACGGCCACCGTGCCGGCTACGACTCGGGTGACCCCAAAACGGCGATCCTGAAATTCGACACCGGTTTCCAGACTGGTGTCTGGGAGTGCCAGCCCGGCGGCTGGAACATCACTCCCCGCGAGGACACCGAGGTGTGCTACATCGTCAGCGGCCGCGTGACCGTCACGGATGGCGCCACCGGCAACGTCCACGAGGTCTCTGCCGGCGACGTCGTGGTGCAGCCCAAGGGTTGGTCGGGCCGCTGGGAGGTCACCGAGACCATCCGCAAGGTGTACACCCACGGCTTCGACTGAMRPYVYVPAAKITGELEPNGHRAGYDSGDPKTAILKFDTGFQTGVWECQPGGWNITPREDTEVCYIVSGRVTVTDGATGNVHEVSAGDVVVQPKGWSGRWEVTETIRKVYTHGFDNANANANANA
D1-29_04017399hypothetical proteinATGCCCACTGTGCTCGAAATGGCAGGTCCCATTCTGGAAATGCTGACCTGGCTGTGCCTGCCCGCCGGGCTGATCCTGCTCGTCTACACGGGGATCCTGCGGCGTTTTGTGCATCCCTGGTCAGTGGCTGAGGGCGTGGTGTACTCCGACCCGACCGGGACGGGTTTTCGCTGGTTTGACCAAAAGTACCGGGTCCACCATGCGCCCATGTCGCCACATGACATCAAAGACCTGGCTGTGGGGGACACGCTGCCGATCTACTACCACCCCAACCGCCCCACGCAGTGGCAGACCGCAGCTCCTGAGCCAGAGGGGAGGACCGCCGTCGCCCTTGGCCGGATCCTCACCGGAATTGGTACCGTCGCCTTCGTCGCGGGTTTTGTGCTTCCGATGTTCTAAMPTVLEMAGPILEMLTWLCLPAGLILLVYTGILRRFVHPWSVAEGVVYSDPTGTGFRWFDQKYRVHHAPMSPHDIKDLAVGDTLPIYYHPNRPTQWQTAAPEPEGRTAVALGRILTGIGTVAFVAGFVLPMFNANANANANA
D1-29_04018930hypothetical proteinATGAAGACCATAAATAAGATCCAGACTGCGGCCGCCGGGCTCGCTGTTGTGTTGGCCCTGTCCGCTTGTGGCGGCGCGGCATCATCGAATGCCCCGGCGGCGGAACTTTCGAAGACGCAGAATACCCGGGATGTTTCCGAGGGGGTTCAGCCGGACGCTGCGGCGGTGGCGTTGTTGCCTGAGTCGTTTAAGTCCAAGGGTGAGATCACGGTGGCGATGGATCTGAGTTCCCCGCCGATGACGTTCCTCGCCGAGGATAACTCCACCCCGATCGGGCTGAACCCGGACCTGGCCCGGCTCGTGGCGAAGAAACTGGGGCTGAAGCTGAAGTTCGAAAACACCGCGTTTGACACGATCATTCCCGGGATCGACGGCGGCCGGTACGACTTCACCGCCACCACGATGTCCGCCACCGAAGAACGGCTCAAGGTCCTGGACATGATCAACTACCTCAAGGGCGGCTCGGCCGTATCGGTACCCAAAGGCAACCCGAACAACCTGACCAACGACACCTTGTGCGGCAAGAACATCGGCGTGACCAAGGGCTCCACCCAGCAGCTCAAGCACCTGCCGAACGTTTCGAAGTGGACCTGTGAGGAAAAGGGCCAGCCGGCCATTAGCGGCATCACGCTGCCCAACGTCCAGGAAGCCCTGACCCAGCTGGACTCCAAGCGGATCGACGGTGTCTTCTATGACGCCAGTGCCCTGGCCTGGGCCAACGAGCAGCAGCCGGACCACTTCCACATTCTGGAACCGCGGATTGATACCCGCACCAACACCAACGTCGCGATGGGCGTGAAAAAAGGCTCAGCGCTGACCCCGGCGCTGCAAAAAGCCATCCAGTCCGTCCTGGAAACCCCCGAATACAAAGAATCCCTGGAGTACTGGGGCCTGGGCGAATCAGCCATCACCGAAGCCGCAATCCGCTAGMKTINKIQTAAAGLAVVLALSACGGAASSNAPAAELSKTQNTRDVSEGVQPDAAAVALLPESFKSKGEITVAMDLSSPPMTFLAEDNSTPIGLNPDLARLVAKKLGLKLKFENTAFDTIIPGIDGGRYDFTATTMSATEERLKVLDMINYLKGGSAVSVPKGNPNNLTNDTLCGKNIGVTKGSTQQLKHLPNVSKWTCEEKGQPAISGITLPNVQEALTQLDSKRIDGVFYDASALAWANEQQPDHFHILEPRIDTRTNTNVAMGVKKGSALTPALQKAIQSVLETPEYKESLEYWGLGESAITEAAIRPGPT0020800_2395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-29_04019939hypothetical proteinATGCAGCAAACAACCATTGAACGAAGCGGACCCGGCAAAAACGGGACCGACCCGGCGCTGAAACCCCGGCTCAAGCGGCGCAGCACCTTCGAATACGTCGCCTGGGTGCTCTGTTCCCTGATAGCCATCGGCATCCTGGCCTCGGTATCGACCAACCCGAACTTCAGGTGGGGCGTCGTCGCCCAGTACTTCACCCACGAATCCATCCTGCGCGGGCTGATGCTCACGCTCTTCCTGACCTTTGCCAGCATGGCCCTGGGAACCCTGTTGGGCCTGGGCCTGGCCGTCATGAGGGCCTCGAGCATCAAACCCGTCGCGGCCACCGCGGGGGTGTACATCACGATCTTCCGTGGCACGCCGGTGCTGGTGCAGCTGATCTTCTGGTTCAACGTCGCCGCGCTGTATCCGAACCTGTCCATCGGGATCCCGTTCACGGACATCAGCACCGCGATCGACGTCAACGCCCTGATGGCCCCCATCACCGCGGCCCTGGTCGGCCTGACGCTGAACGAGGGCGCCTACATGGCCGAGATCATCCGCGGCGGGTTCTCCTCCGTGGGCAAGGGCCAGATCGAAGCCGCAGACTCCCTCGGCATGAGCGGGTCGATGAAAATGCGCAAAGTCATCATCCCCCAGGCCATGCCCTCCATCATTCCCGCCACCGGCAACCAGGTCATCGGCATGTTCAAGGGAACCTCCCTGGTCAGCGTCCTTGGCGTCGCCGAGCTGCTCCAAAGCGCCCAGCTGATCTACGCCCGGACCTACGAGACCATCCCGCTGCTGCTCGTCGCCAGCATCTGGTACTTGGTCATGACCCTGCTGCTGAGCTACCCACAGTCCAAGCTCGAGGAAAAATACTCCCGCTCAACCTCCAGGCTTCCCCGGAAGGCCAAGAAAGCGGTTGTCCTGACAGAACCGGAAGAAGGTAACCTCCGATGAMQQTTIERSGPGKNGTDPALKPRLKRRSTFEYVAWVLCSLIAIGILASVSTNPNFRWGVVAQYFTHESILRGLMLTLFLTFASMALGTLLGLGLAVMRASSIKPVAATAGVYITIFRGTPVLVQLIFWFNVAALYPNLSIGIPFTDISTAIDVNALMAPITAALVGLTLNEGAYMAEIIRGGFSSVGKGQIEAADSLGMSGSMKMRKVIIPQAMPSIIPATGNQVIGMFKGTSLVSVLGVAELLQSAQLIYARTYETIPLLLVASIWYLVMTLLLSYPQSKLEEKYSRSTSRLPRKAKKAVVLTEPEEGNLRPGPT0020795_1526DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-29_04020768glnQ_5COG1126Glutamine transport ATP-binding protein GlnQATGAGCAACGACGGCACCATCCTCGCCCAGAAAATCCGCAAGTCCTTCGGACCCAAAACAGTCCTCAAAGACATCGACCTGGACATCGCCAGCGGTGAGATCTGCTGCATCATCGGCCCCAGCGGCTCAGGCAAATCCACCATCCTGCGCTGCATCAACGGCCTGGAAACAGTGGACTCCGGCGTCCTGAAAGTCAACGGCGAAGACTTCGGTTACTACGAAACCGACAACGCCTACCACGCCCTGCCACCCAAAAAACTCGCCGAACAGCGCACCAGGGTGGGCATGGTCTTCCAGTCCTTCAACCTGTTCCCCAACATGACCGCCCAGGAAAACATCATGTCCGGCCCCGTCCTGGTCAAAGGCCAGGACAAAAAACAAGCCGCCAAACGCGCCCACGAACTCCTCGCCAGCGTCGGCCTGGCCGGGTTCGGGGACTACTACCCCGCCCAGCTTTCCGGCGGCCAGCAGCAGCGCGTCGCGATCGCCCGGTCCCTGGCCATGGACCCGGAGATCATGCTCTTCGACGAGCCCACCTCGGCCCTGGACCCCGAAAAGGTCGGCGAAGTCCTCACCGTCATGAAACAGCTCGCCAAAAAAGGCATGACCATGGTCGTCGTCACCCACGAAATGGGCTTCGCCCGCGAAGTCGCCGACTCGCTGATCTTCATGGACGACGGCTACGTCATCGAACGCGGCGACGCCCGCGAAGTCCTCACCAACCCCAAAGAAACCCGCACCCAGGCCTTCCTGGAACAGGTTCTCTAAMSNDGTILAQKIRKSFGPKTVLKDIDLDIASGEICCIIGPSGSGKSTILRCINGLETVDSGVLKVNGEDFGYYETDNAYHALPPKKLAEQRTRVGMVFQSFNLFPNMTAQENIMSGPVLVKGQDKKQAAKRAHELLASVGLAGFGDYYPAQLSGGQQQRVAIARSLAMDPEIMLFDEPTSALDPEKVGEVLTVMKQLAKKGMTMVVVTHEMGFAREVADSLIFMDDGYVIERGDAREVLTNPKETRTQAFLEQVLPGPT0020790_2472DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-29_040211152soxA_7Monomeric sarcosine oxidaseATGGACGGAAAACAAACCATGGACGGAAAACTCGCCGTCATCGGCCTGGGCAGCATCGGCTCCATGGCCCTCTGGCAAGCCAGCCAACTCACCGACAACGTCACCGGTTTCGAAGCCCACACCCCCGCCCACGGCCGCAGCGCCGTAGGCGGGGACACCCGGCTCTTCCGCATGCTCTACCGCGGCAACCCCCACCTCTACCCCATCCTGGAACGCTCACGGGATCTCTGGGCCGAACTCGAAGCCGAAACCGGCCAGAACATCCTCACCCGCACCGGCGGACTGTCCATCGGCACCAAAAACGGCCCCTACCTCACAGCCCTCCTCGAAACCATCAAACAAACCGGGGCCGAGCACGAAATCCTCAGCCGCGAACAGATGGCCCAACGCTACCCCCAGCACAACCTCCGCCCCGACGACATCGCCGTCTACGACCCCCACGCCGGCGCCCTCCGCACCGACCGCGCCGTCACAGCCGCCATCACCGCAGCCCAAACCAATGGCGCAACCATCCACACCAACACCCCCATCGACACCATCACCGAAACCCCCAACGGCGTCCACATCACCTCCGGCGAGAAGTCCTGGACCTTCGAGAACGTCATCATCTCCTCCGGCGGGTGGTCCCGGAAGCTTATGCCGGAGTCTCTGCGGGCGCACACCCAGCCGAACAGGGTCTTCCTCACGTGGTTCGTCGCCAAAGATCCCGCGCTCTTCTCACCTGAGAAGTTCCCCATCTTCATCCGAGTCTCCGGAGACCACTCCATGTACGGCGCACCCGCCATCGACGGCGCCACGGTGAAGGCAACCCTGGACTTCCGGCCAACCCCCACCGAGAACCCCGATGCAGTTCCCCGGGAACTCACCCCGGCAGAGATCGCCGAGACCACCGAGACGGTGAGCGAGTTCTTCCCGGGCCTGTACCCCAACATCGTCCGGTCGGACGCGTTTCCTGACCTCTTTACCACCGACCGCAACCCCCTGGTGGGGCGATTCAGCGATGGCAGCAGGATCTACTGCGCCACAGGATTCTCCGGCGGCGGCTTCAAAAATGCCACAGGCTACGGCCAGATCGCCGCATACGAAGCCCTCGGCAAACGCACCTTTGACGGCTTGGACTTCGTCCGGCCCCAACGATTCAAAACCGGCTAAMDGKQTMDGKLAVIGLGSIGSMALWQASQLTDNVTGFEAHTPAHGRSAVGGDTRLFRMLYRGNPHLYPILERSRDLWAELEAETGQNILTRTGGLSIGTKNGPYLTALLETIKQTGAEHEILSREQMAQRYPQHNLRPDDIAVYDPHAGALRTDRAVTAAITAAQTNGATIHTNTPIDTITETPNGVHITSGEKSWTFENVIISSGGWSRKLMPESLRAHTQPNRVFLTWFVAKDPALFSPEKFPIFIRVSGDHSMYGAPAIDGATVKATLDFRPTPTENPDAVPRELTPAEIAETTETVSEFFPGLYPNIVRSDAFPDLFTTDRNPLVGRFSDGSRIYCATGFSGGGFKNATGYGQIAAYEALGKRTFDGLDFVRPQRFKTGPGPT0013530_435DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
D1-29_040221455davDCOG1012Glutarate-semialdehyde dehydrogenaseATGAGTCTTTCCTTTGATCCCACCACTCTTCATACTGACTTGTTCATCGACGGTGCCTGGCGGAAGGCATCCAACGGCGCCACGTTCGCCGTCGAAAACCCGGCCACCAATGAAATCATCGCCCACGTCGCCGACGGCGGACCCGAGGACGCGGCCCTGGCCATCCAGGCCGCCGGCCGGGCCCAGGCAGCCTGGGGCAAGTCCACCCCGCGGGAACGGGCAGACATCCTGCGCCGGGCCTTCGAACTGGTCATCGCCAACACCGACCGGCTCGCCGCGATCATGACCGCGGAGATGGGCAAACCCCTCGCCGAAGCCAAGGGCGAAGTGGCCTACGGCGCCGAGATGCTCCGCTGGTTCTCCGAAGAAGCCGTCCGCATCGGCGGGGACAGCACCACCTCGGTGGACGGCAACACCCGGATCCTGGTCACCAAGGAACCCGTTGGCCCCTCCGTGCTGGTCACCCCGTGGAACTTCCCGCTGGCCATGGGCGCCCGCAAGATCGCCCCCGCCGTCGCCGCCGGCTGCACCATGGTCTTCAAACCCGCAGAACTGACCCCGCTGACCTCCCTGGCCCTGGTGGACATCTTCCAACAGGCCGGCCTGCCCGACGGGGTCCTGAACGTCGTCACCACCGCCAGCGCCGCCCCCGTAGTGGAGAACTGGACCAGCAGCGGCATCGCCCGCAAAATCAGCTTCACCGGCTCCACCGGCGTCGGCAAGATCCTGCTGCGCCAGGCATCCGAGAACGTCATGCGCTCCTCGATGGAACTGGGCGGCAACGCCCCCTTCATCGTCCTGGCCGACGCCGACATCGAAAAAGCAGTCGACGGGGCCATGAAAGCCAAAATGCGCAACATGGGCGAAGCCTGCACCGCCGCGAACCGCTTCTTCGTCCACCGCTCAGTCCTGGCCGAATTCTCCGAGAAGTTCGCCAAGAAAATGTCAGAACTCCAGGTCGGCAACGGCGCCCTCGCCGGAACCGACGTCGGTCCCCTGATCGAACAAAAAGGCCTGGACAAGGTCCAAAGCCTCGTCGCCGACGCCGTCGCCAAGGGCGCACGCGTCCTGACCGGCGGAAACCGCCCCGAAGGCCCGGGCTACTTCTACACCCCCACCGTCCTGACCGACGTGACCCTGGACGCGGACCTGATGAACACCGAAATCTTCGGCCCCGTCGCAGCCATCACCACGTTCGACAGCGAAGATGACGTGCTGCACGCAGCCAACGACACCGAATGGGGCCTGGTGGGCTACGTCTTCACCGAAAACATGGCCAAGGCCCTGCGCTTCTCCCAGGAACTCGAAGTCGGCATGGTGGGCATCAACACCGGCCTCGTCTCCAACCCGATAGCACCCTTCGGCGGCATCAAGCAGTCCGGCCTGGGCCGCGAAGGCGGCAAAATCGGCATCGAAGAATTCCTTGAGTACAAATACACCGCAATAGCAATCTAAMSLSFDPTTLHTDLFIDGAWRKASNGATFAVENPATNEIIAHVADGGPEDAALAIQAAGRAQAAWGKSTPRERADILRRAFELVIANTDRLAAIMTAEMGKPLAEAKGEVAYGAEMLRWFSEEAVRIGGDSTTSVDGNTRILVTKEPVGPSVLVTPWNFPLAMGARKIAPAVAAGCTMVFKPAELTPLTSLALVDIFQQAGLPDGVLNVVTTASAAPVVENWTSSGIARKISFTGSTGVGKILLRQASENVMRSSMELGGNAPFIVLADADIEKAVDGAMKAKMRNMGEACTAANRFFVHRSVLAEFSEKFAKKMSELQVGNGALAGTDVGPLIEQKGLDKVQSLVADAVAKGARVLTGGNRPEGPGYFYTPTVLTDVTLDADLMNTEIFGPVAAITTFDSEDDVLHAANDTEWGLVGYVFTENMAKALRFSQELEVGMVGINTGLVSNPIAPFGGIKQSGLGREGGKIGIEEFLEYKYTAIAIPGPT0001580_2994DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-29_04023705gntR_6putative D-xylose utilization operon transcriptional repressorATGAGAGGATCCACAGCAGGCAAAGGCCTGTTCACCTTGGAAGGAAGGTCCACCGCGCAGCTGATCGCCGATCAGCTGCGCGAACACATCATCCAAGGCATTTTCCGCCCCGGAGACCAGATCAACGAATCAATCATCGCCGTCCAACTGAACACCTCCAGGAGCCCCGTCCGGGAAGCGGTGCAACGCCTGTGCCAGGAAGGCATTCTCATCAGCCGGCGCAACCATGGCGTGTTCGTGCTGGAAATCTCGGCCCAGGACAGCAAGGAAATCTACCCTGTGCGTGAAGCTATGGAAACAACCGCAGCAGATACCCTGCTCAACAGCAGCCCCAAGCACCTCAAGGAAACCTGCCGGGCCCTGAAAACAATCCTCAGGAACATGCAAAAGCGGGTTGACGCAACCAACAGGCAATCCATCGCCCAACTGGACATGGAGTTCCACACCACAATTGTGGCAGCCGCCGGCAACAGCAGAATGACCCGAATTTACGAAACCTTGGCCGCCGAATCAACGATGTGCATTGTTAACCTGGAGATCTCATACCCGGAAGCACAGACCTTGGTACAGGAGCACGAGAACATCCTCAACCTGCTCGAAACCGGCAACAGGGAGGAACTCCGGAAAGCCCTCAAAAGCCACCTGCAAAAGGCCGTCCATGACCTCGCCAGGCGGGACAAACAGATTGCAGCCAGCACTCCCTGAMRGSTAGKGLFTLEGRSTAQLIADQLREHIIQGIFRPGDQINESIIAVQLNTSRSPVREAVQRLCQEGILISRRNHGVFVLEISAQDSKEIYPVREAMETTAADTLLNSSPKHLKETCRALKTILRNMQKRVDATNRQSIAQLDMEFHTTIVAAAGNSRMTRIYETLAAESTMCIVNLEISYPEAQTLVQEHENILNLLETGNREELRKALKSHLQKAVHDLARRDKQIAASTPNANANANANA
D1-29_04024675gntR_7putative D-xylose utilization operon transcriptional repressorATGGTTGAGCAGATAAAGATAGTCCATTCATCTACGGTGCAGCAGGTCGCAGATGGTCTCACAGCCATGATCCTTAGCGGGGGGCTGAAGCCAGGAGAACGGCTCAGGGAGAGTCTCCTCGCGGACAACCTGGGGCTTTCCAGGAACACCGTTCGTGAAGCCGTCCGCATAGTTCAAGCGGGCGGCCTTATCCGCCACCGCGCAAATCAGGGCGCTATCGTGTGGGACCCCACCGACGCCGAGATCATGGACGTCTATAACGCGCGGTACCACCTGGAGACCACTGCCGCGCGAAGCATCTCCGAAAGCACCTCCATGGACGAAGTCCACGCCGCCATGGAGGAGTTCCGGGCCGTTTTGAAGAGCGGAGATCCGTTCAAGATTGTCGAGAAGGACCTGGCGGTTCACAGCGCGATTGTCGGACTCCTCGGAAGCAAAAAGTTGAGGACCTTCTATCAGCAATTGGTGACCGAACTGAGGTACTTCATGTTTGTTCTTTCCATTGAACATCACGAGTACGAGGACCCGGACACACTCGAATCTGAGCACCAAAACATCGTTGATGCGCTTGACTCGCGAGACCCTGTCCTGGCGGAGAAGGTTGTCTCAGATACGATCATCCAATATCGGGAATCGATCCGGGAAATTATCGCCCAGCGGCACCAAGCAAGCTAAMVEQIKIVHSSTVQQVADGLTAMILSGGLKPGERLRESLLADNLGLSRNTVREAVRIVQAGGLIRHRANQGAIVWDPTDAEIMDVYNARYHLETTAARSISESTSMDEVHAAMEEFRAVLKSGDPFKIVEKDLAVHSAIVGLLGSKKLRTFYQQLVTELRYFMFVLSIEHHEYEDPDTLESEHQNIVDALDSRDPVLAEKVVSDTIIQYRESIREIIAQRHQASNANANANANA
D1-29_04025987COG1052Putative 2-hydroxyacid dehydrogenaseATGAGGACCGGCGCCCCACTGCCCAAGCGTCCCGTCGTCGCCGCCCTCTACCGCGAGGCGCTCCCGCCCCGGCTGGCGGAGGTCGAGGAACTCGCAGAGGTCCGGCTGACCAAGGCAGACGGCCTGGCGGAGGCCCTCGACGGCGCCGACGTGCTCTACCAGTGGCACTCCTTCTCGCCGGCACTGCGTGAGAACTGGGGCGCCGCCTCCACCCTGCAATGGATCCACGTCACCGCAGCAGGTGTCAGCCAGCTCCTGTTCGATGAACTGGTCCGCAGCAACGTGACCTACACGAACTCCCGCGGCGTGCTCAGCACGGCCATCGCCGAGTTCGCGCTGGGCTTCGTCTTGGATATGGCCAAAGACTCCCAGGGCTCCTACCGGTTGCAGCAGGAACAGCGCTGGCAGCACCGGACTACCCGCAAAATCCAGGGCCAAACCGCCCTCGTGGTCGGCACCGGGTCGATCGGCCGGGAAATAGCCAGGCTCTTCCGCGCCGTGGGCATGAAGGTGGACGGCGCCGGAAGGACAGCCCGGCCAGGGGACACGAACTTTGACCGGATCCACTCCTCCCAGAACCTCGCCACTGTTGTCTACGACTACGACTACGTGGTCTTGGCCGCGCCGCTGACCGCCGACACCAAGAATCTGGTCGGCGCTGACGTCCTCAATGCCATGAAACAGTCGGCCCGGCTCATCAACGTCGGACGCGGGGAACTGGTTGATACCGAAGCACTGATCCACGCGCTCACCACAGGCTCCATCGCCGGCGCCGCCCTGGATGTTGTCCACCCGGAACCGCTTCCGGCCGGACACGCCCTCTGGGACATGGAAAACGTCATCATCACCCCACACATGTGCGGCGACACCGAGAACTACCTCGATGACCTCGGCAAGCTCTTCGTAGACAACCTCAAACGCTACTGCAACGGCGAACCACTGGAAAACATCGTGGACAAAGAACTCGGATTCGTCCCCGCCGGCTAGMRTGAPLPKRPVVAALYREALPPRLAEVEELAEVRLTKADGLAEALDGADVLYQWHSFSPALRENWGAASTLQWIHVTAAGVSQLLFDELVRSNVTYTNSRGVLSTAIAEFALGFVLDMAKDSQGSYRLQQEQRWQHRTTRKIQGQTALVVGTGSIGREIARLFRAVGMKVDGAGRTARPGDTNFDRIHSSQNLATVVYDYDYVVLAAPLTADTKNLVGADVLNAMKQSARLINVGRGELVDTEALIHALTTGSIAGAALDVVHPEPLPAGHALWDMENVIITPHMCGDTENYLDDLGKLFVDNLKRYCNGEPLENIVDKELGFVPAGNANANANANA
D1-29_040261554safD_3COG1012Sulfoacetaldehyde dehydrogenaseATGCTTCCATCCATTAACGCTCTTGACGCGCGCCCGGAAACAACCGGATCCACTGGAACGACCGACGCGCGGGCGGACGTGGCGCGCCTCCCTGGCGGTGCCTTCTTAGAAGGTCGGTGGCAGACCGCCGATCTGACGTTGGAGGTGCGGGATCCTGAGGACGGTGTCCTGCTCGGCCGGGTGTGCACTTCCACTCCAGAGGATGTGGAGCGTGCCATCGCCCACATCCGCCGTCACCTTGAGGCGGGTGAGTGGCCGTTGCGTACCCGCCGGCAGGCACTGGAAAAGGCTGTGCTGCTTTTGGGCGAGCAGGCTGAGCGGTTCGCGAACATCATCGCGTCCGAGAGCAGCAAGACCATCACCGAGGCGGAGCGCGAGGTGCGCCGCTGCGCCGAGACGCTGCGGCTGTCCGCGGCGGCTGCCGGGGAGCTGGCAGGGGAGACCCTGGGTTTTGAGGACAGCATGGCAGGTGCCGGCAAGATTGGCTGGTACAGCCGGAAGCCGGTGGGGATCGTCGCGGCGATCACCCCGTTCAATGATCCTTTGAACCTGGTGGCGCACAAGCTGGGCCCGGCCCTGATCGGCGGCAACGGCGTCCTGCTCAAGCCCTCCACGCGCACACCCCTGGTGGGGCTGGCTTTTGTCCAGCTGCTGCTGGAAGCCGGTGTCCCGGCGGGCCGGATCGCGGCGATCGTGACCGGGCCCGGCGTGTCCGAGGCTGTTGTCACGGACCCGGGCGTTGACCTGATTTCCTTCACCGGCGGTCCCGCCACGGCCGAAAGGATCGCCGCGGCGGCCGGGGCGAAGAAGATCCTCTCCGAACTCGGCGGGAACAACGCCACGATCATCTGCTCCGACGCGAACGCGCAGGCCGCGGCAAAGGCCGTCGTGGCCGGCGCGTTCGGCGTCGCGGGGCAGAACTGCCTGTCGGTCCAGCGGGTCTACGTCCACACCTCACTGTTTGAGGAAGTCCTGGAGCTGGTCACTACGGGCACGAGGGCGCTGCGGACCGGGCCGAAGCTTGACCGGGGAACCGACGTGGGCCCGCTGATCTCCGAGGCCGAGGCCCGCCGGGTGGAGGAATGGGTGGAAGAAGCCACAGCGGCCGGCGCCACCATCCACGCCGGCGGGACCCGCCGGGGCGCCTACTATGAGCCCACGGTCCTGACCGATGTGCCCTCGGAGGCCCGGGTGATCCGGGACGAGGTGTTCGGCCCGGTGGTCAGCATCCTGCCGTTCATCGAGGTCCGCGACGCCGTGTTCGCGGCCAACAACACCGAGTTCGGCCTCCAGACCGGGGTCTTCACCCAGTCCATCGACCTGGCCCTGGCGATCGCGGAGAAACTGCACGTGGGCGCCGTGGTGATCAACGAGACCAGCGACGTCCGGATCGACTCGATGCCCTTTGGCGGGTTCAAGAAATCCGGGGTCGGCCGCGAAGGTGTCAGCCACGCGGTCCGCGAGATGACAGAACCCAAAAACACCATCATCAACCTCGGCCAGTCAACGGCCCGCTGGCAGGTCCTGGGCGGCCTGACGGAACGGACAGCATGAMLPSINALDARPETTGSTGTTDARADVARLPGGAFLEGRWQTADLTLEVRDPEDGVLLGRVCTSTPEDVERAIAHIRRHLEAGEWPLRTRRQALEKAVLLLGEQAERFANIIASESSKTITEAEREVRRCAETLRLSAAAAGELAGETLGFEDSMAGAGKIGWYSRKPVGIVAAITPFNDPLNLVAHKLGPALIGGNGVLLKPSTRTPLVGLAFVQLLLEAGVPAGRIAAIVTGPGVSEAVVTDPGVDLISFTGGPATAERIAAAAGAKKILSELGGNNATIICSDANAQAAAKAVVAGAFGVAGQNCLSVQRVYVHTSLFEEVLELVTTGTRALRTGPKLDRGTDVGPLISEAEARRVEEWVEEATAAGATIHAGGTRRGAYYEPTVLTDVPSEARVIRDEVFGPVVSILPFIEVRDAVFAANNTEFGLQTGVFTQSIDLALAIAEKLHVGAVVINETSDVRIDSMPFGGFKKSGVGREGVSHAVREMTEPKNTIINLGQSTARWQVLGGLTERTAPGPT0018005_345DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131NANA
D1-29_040271278puuB_2Gamma-glutamylputrescine oxidoreductaseGTGAAACTTAACCCCTATTGGCTGGACACTGCCGAACCGTCCGGGGACTACCGGCGAACCCCGGTACCCGAGAACGTCGACGTCGCCATCATCGGCGCCGGCTTCACGGGACTCTCCGCTGCCCTGGAATTTGCCCAGCAGGGCGCCAGCGTTGCCGTTTTCGAACGCCACACCGTGGGGTGGGGCGCCTCGGGCCGCAATGGGGGAATGGCGACGACCGGGTTGGCCATCGGTTTCGGCACGGCGGTGAAGCGCTACGGTGCCACGCGTGCCGTCGAGATGTTCCGTGAATACAACGACGCCATCGACAGCATCGAGAAGCTGGTGCATGACAATGGCATTGAGTGTGACTACAGGCGGGACGGGAAGCTCTCGCTGGCCTTCCACAAGTCCCACTACGAAGGCTTCCTGAGGTCGCAGGAGAAGATGGCCGCCCTGGCCGATCATCATGTCACTGTTATCCCCAAGTCCGAGATCCACAGCGAAATCGGAACGGACTTCTACCAGGGGGCCATGCTGGACCCGCTGGGAGCAGGGCTGCATGTGGGCAAGTTTGTGCATGGGTTGGGCGGGGCGGCTGTCACCGCCGGGGCTGATATCTGCGAGGAAGCCGGTGTCACGGAGCTGAAGAAGGTTGCGGGCACCGTACATGACGTGCACACCACCCGGGGCATCACCAGGGCCAAGCAGGTCCTGGTGGCTACCAGCGGTTACACCGGCAATGTCACACCGTGGCTGCAGCGCCGGGTGATTCCGGTGGGCAGCTTCATCATCTGCACCGAGCCGTTGCCCGAAGACGTGGTCAACCGGATCCTGCCTAACAGGCGCATGGCGTCGGACAGCAAGATGCTCTGTTACTACTTCCGCATTACCCCGGATAACAGGCTGCTGTTCGGCGGCCGGGCCCGTTTTGCACTGTCCAGCCCGGATTCGGACGTCAAGAGCGCCGAGATCCTCCGTAAGGCCATGCTCGAGCTGTTCCCGTACCTCTCCAACGCCAAGGTGGACTACATCTGGGGCGGCCTGGTGGATCTTTCCATGGACCAGATGGTCCACGCCGGTGTTCACGACGGGCTTTACTACTCCTTGGCCTACAGCGGCCACGGCGTGCAGATGGCTGCGCACATGGGCAAGCGGATGGCCCACTACATGGCCGGCGACAAGAGCGCCAACGTGTGGGAAGACCTGAAGAACCCGCCCGTGCCAGGCCACTTTGGCCCACCGTGGTTCCTGCCCTTCATCGGCGGGGCCGCAAAAATCATCGACCGCTTCAGCTAGMKLNPYWLDTAEPSGDYRRTPVPENVDVAIIGAGFTGLSAALEFAQQGASVAVFERHTVGWGASGRNGGMATTGLAIGFGTAVKRYGATRAVEMFREYNDAIDSIEKLVHDNGIECDYRRDGKLSLAFHKSHYEGFLRSQEKMAALADHHVTVIPKSEIHSEIGTDFYQGAMLDPLGAGLHVGKFVHGLGGAAVTAGADICEEAGVTELKKVAGTVHDVHTTRGITRAKQVLVATSGYTGNVTPWLQRRVIPVGSFIICTEPLPEDVVNRILPNRRMASDSKMLCYYFRITPDNRLLFGGRARFALSSPDSDVKSAEILRKAMLELFPYLSNAKVDYIWGGLVDLSMDQMVHAGVHDGLYYSLAYSGHGVQMAAHMGKRMAHYMAGDKSANVWEDLKNPPVPGHFGPPWFLPFIGGAAKIIDRFSNANANANANA
D1-29_04028705hypothetical proteinATGGCCTCTCAAACTTCAATGAACGGACGAATCATGGCAGACTCCAACCGGCCGAAGTACATCTCCTTTGATATCTACGGCACACTGATCAATTGGGATACCGATTCCACTACCCGCCGGCTGCTCGCCGGCCGTCTGCCCGAAGAGCAGTGGCCTGCGTTCAAGAAGGTTTTCCGCGGGTACCGGTTCGACGAGGTCCTTGGGGACTACAAGCCCTACGAGGAGATCCTCCAGAATTCCTTTGACCGCGTATGCAAGTTCTTTGGCATTGGGCCCACCCGCGGTGCGGGCGCGGAGTTCGCTGACGCTGTGCGCAGCTTTGGTGCCCACGATGACGTGCCGGCTCCGCTGAAGCTCATGGGCGACAACTACAAGCTGGTGGCTCTGTCCAACGCCGACGACAGCTTCCTGGAGATCAGCATTCCCAAGCTCGGCGCTGACTTCCACGCGGTGTTGACCGCTGAGCAGGCCCAGGCCTACAAGCCGCGCTACCAGGCTTTCGAGTACATGCTGGACACCCTGAACGCCAAGCCCGAGGACTTCCTGCACATCGCCTCGCACACCCGCTACGACATGCACCCGATGCACGACATGGGCTTCCGTAACCTCTGGGTGCTGGACCGTGGCTACGACCCCATCACCGGGGGATACGACTACAACGCGGTTAAGTCCCTGGACGAGATCAACAAGCACCTCGGTCTTTAAMASQTSMNGRIMADSNRPKYISFDIYGTLINWDTDSTTRRLLAGRLPEEQWPAFKKVFRGYRFDEVLGDYKPYEEILQNSFDRVCKFFGIGPTRGAGAEFADAVRSFGAHDDVPAPLKLMGDNYKLVALSNADDSFLEISIPKLGADFHAVLTAEQAQAYKPRYQAFEYMLDTLNAKPEDFLHIASHTRYDMHPMHDMGFRNLWVLDRGYDPITGGYDYNAVKSLDEINKHLGLPGPT0006885_2041DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-29_040291320hypothetical proteinATGACCATTTCGATCAATCTCACGGGTGGCATCGACGTTGGCAACGGCTATGTCAAGGGCCTCATCCGCGGCGCCGGCGCATCAGGTGCCACCAACGTGGACGAGATCGACTTGCCAAGCGGCGTGTCAACGATCACGCGCCCGAACGCTCTGCCGACCCCTGACGATGAAGCCCCAACCAAACTGGAAGGCAACTTCTATAATGAGCTGGACGTCAGCTTCGTCTCCCCTCTGGTCAGCAATTATCACCGCAGGCTCTTCGGCCTGCGTGCCCTGAGCGCCCAAGGTGCCTTTGATGAATTCGACGTGGTGGGCCGTCGCAGCAAGGCTCAGCAGGAGCTGAGTAAGGTCCTGGTCATGGGTGCTTTCGCCGCCAAGGCCCTGCGTGACTATGTGCGTAAGCACGGTGGATTGCCCCCGGCTATTGAAACCATAAGTGTGGAGGCTCGGGTAGCACTTGCGCTGCCGATCAACGAGTACATTTCGCACCGCACCAGCTATGCGGCCGAGTTCACGAACGGCACTCATACGGTTACAGTGCATAACTTCGAGACCCCGGTCACCGTGAAGCTTAAATTCGTTGATGTACAGGTGATCCCCGAGGGCGCATCGGCCCAGTATGCGATCACTGCCAAAGGTGAGCCGTTGATGGACGCTATGCTCGCCGATGTCCGCCGCAGGGGCCTGTCGCTGGTGGGAATCACCTCTGCTGACGTGCTGGCAGCGGAGCACACTGTCGGCATCGATGTCGGCGAAGGGACAGTAAATTTTCCCGTGTTCACCGCCGGAGAGTTCAATGCCGACGCCTCCACCACGCACAACCGAGGTTACGGTTCGGTTCTTAATGACGCGCTGAAAGCCATGGAGGACCAGGGCTTCTCGCATGGCTTCACTTCCCGCAAGCAGTTGGCCGAGTACTTGCAGGCCGGAGCGTCGCCATTGAAGCGTAACTTCTACGACAAGGTCGCTCAGTTCGTCGATGAAGAGATGCGATTCTTTGCCAAGGAAGTTACCGAGCGGTTCGGCCGCGTTCTGGCCGTCGTTGGTGCGACCACAGAGGTCGCGTATGTCTTCGGCGGCGGGGCAGGCCCGGTGAAGCCACATCTGTATCCGGCACTCCTGGCCAAGGCCACCGAGATGAACTCGGTGGATTCATTCCCGACTCTGTACCTGGATTCCTCCTACTCACGAAACCTGAACCGTGAGGGTCTCTACATTGCCGCCCAGGCCGTGGAAGAACGAGCCGGCGCCGCACCGGCTGCCAATGGGAAGCGCAGCGCTCGTTCAAGCGACAAGAAGCTCGCCGAGGCTGCTGTGTAGMTISINLTGGIDVGNGYVKGLIRGAGASGATNVDEIDLPSGVSTITRPNALPTPDDEAPTKLEGNFYNELDVSFVSPLVSNYHRRLFGLRALSAQGAFDEFDVVGRRSKAQQELSKVLVMGAFAAKALRDYVRKHGGLPPAIETISVEARVALALPINEYISHRTSYAAEFTNGTHTVTVHNFETPVTVKLKFVDVQVIPEGASAQYAITAKGEPLMDAMLADVRRRGLSLVGITSADVLAAEHTVGIDVGEGTVNFPVFTAGEFNADASTTHNRGYGSVLNDALKAMEDQGFSHGFTSRKQLAEYLQAGASPLKRNFYDKVAQFVDEEMRFFAKEVTERFGRVLAVVGATTEVAYVFGGGAGPVKPHLYPALLAKATEMNSVDSFPTLYLDSSYSRNLNREGLYIAAQAVEERAGAAPAANGKRSARSSDKKLAEAAVNANANANANA
D1-29_04030567hypothetical proteinATGACGAATCTTCAGAGCAAGGTAGCAGCACCAAAAGCGAGGGCGGCTGCTAAGAAAACGTCAAAAACTTCTGCTGTATCAACTGTGAAACCGCCGCCGCAGCGATTCCGCTTGAGCGTCCCCGCAGCCGATGAGGCTGTGTTGGCGTGGATGGATTTGCAGGACAACCCATCACTATCTGTTCGGATGCTGATCCGTGAGAGCATCGAGCGCCTTGGCTACGTCGATGTCATTAACCGGCCAGTTTCTCAACTACCCACGCGGGAACGTCTTGTTGGTCCTGAAGGGGAATCAACACGGACGGAGCGGAATTTAGAGACGGCTGGGGCTCCGTCTGCGTTGGTTCAGCAGAAGGCGACGCCTGCTGCGTCCGCGGATACGGATCCCAGCCAGCAGACAAACAGCGAACCCGCGATCCTGGGCATCGCAGTGGAATCACCGGCACTGGTTCCGAAGTCTGCACCACAACAGGACGACGTCCACACTTCCTCCCCGGCCACTCCTGAATCGGAGCAATCTTCTGTCGGGCCGGTTGAAGTCAACGACATTTTCTCGATGCTGCGCTGAMTNLQSKVAAPKARAAAKKTSKTSAVSTVKPPPQRFRLSVPAADEAVLAWMDLQDNPSLSVRMLIRESIERLGYVDVINRPVSQLPTRERLVGPEGESTRTERNLETAGAPSALVQQKATPAASADTDPSQQTNSEPAILGIAVESPALVPKSAPQQDDVHTSSPATPESEQSSVGPVEVNDIFSMLRNANANANANA
D1-29_04031303hypothetical proteinATGAGTGCAGAACGAAAAGCCAGCCGCCACGCCCAAGAATTTCGGTGGCATCAGATTAACCTCCAGTTACCGGAGACTGAAGCTGCCATTCGTGACCTCAGGGCCCTCAAGGAGGCGGTTGACCAGCTCCTCATCGAAGCTGTCATTCGAGCCCACGACGAAGGAATGAGCCCGGCAATCCTTGCTGATTCGCTCGGATTCACTAAGAACGTGGCGGCAGAGCGACCCTCCCCCGAAATCCTGAACCCTGCAGTAGCACGGCCTTCTGGCCGTCGTGGCATTCATTTTGAGCCAATGGCCTAAMSAERKASRHAQEFRWHQINLQLPETEAAIRDLRALKEAVDQLLIEAVIRAHDEGMSPAILADSLGFTKNVAAERPSPEILNPAVARPSGRRGIHFEPMANANANANANA
D1-29_04032855IS3 family transposase ISBli34GTGAAGGTCCATGCTCTCATCGCCCTCAAGGCTGACTTCCCACTTCCGGTTCTGCTGCAGGTCTCAGGTCTTGCCCGATCGACATTCTTCTATCACCAGGCCCGTCTCCAAGCCCCTGACCCGCAAGCGGAACTCAAGAGCGCAACCACGGAGATCTTCACGACCAACCACGGCCGGTACGGGCACCGGCGCATCCACTCTGAACTGCTCAAGCAGGGCTGGGGGATCGCGAAGAAGACCGTGCTGAAGCTGATGCGTGTGCTGGGGCTGGTGTGTAAGGTCCGGCGGAAAAAGCGCTACAACTCCTACCAAGGCGGACAGGGCACTGTCGCGCCGAACCTGCTGAACCGCAAGTTTGACGCCACCGCCCCAAACCAGAAGTGGGTGACCGACGTGACCGAGTTCAGCGTCGGCGACCGGAAGCTTTACCTCTCACCAATCATGGACCTCTTCGACCGGCAGATCATTGCCCATTCAATCGGCACATCCCCGAGCCTGGCGCTCACCAACGCTGCGCTGCAGCAGGCCCTGGCCTGTCTTCAGCCCGGTCAGCAGCCACTCGTCCATTCCGACCAGGGCTTCCAGTACCAGCACACCTCGTGGCGGAACCTGCTCCAGGGCGCCGGCGCGGTCCAATCGATGTCCCGCAAGGGCAACTGCTACGACAACGCCGTGATGGAGAATTTCTTCGGCCACCTCAAGGAAGAGCTCTTCCACAGGGTCCGGTTTATCAGCACCGACGCACTGACCGCGCAACTGAACGAGTACATCCATTGGTACAACACCAAAAGGATCTCGACAAAGCTCGAGGGCCTGAGCCCGGTGCAATACCGTGCCCAGGCCCTCGCGGCTTAGMKVHALIALKADFPLPVLLQVSGLARSTFFYHQARLQAPDPQAELKSATTEIFTTNHGRYGHRRIHSELLKQGWGIAKKTVLKLMRVLGLVCKVRRKKRYNSYQGGQGTVAPNLLNRKFDATAPNQKWVTDVTEFSVGDRKLYLSPIMDLFDRQIIAHSIGTSPSLALTNAALQQALACLQPGQQPLVHSDQGFQYQHTSWRNLLQGAGAVQSMSRKGNCYDNAVMENFFGHLKEELFHRVRFISTDALTAQLNEYIHWYNTKRISTKLEGLSPVQYRAQALAANANANANANA
D1-29_04033327hypothetical proteinGTGACTAAGCCGACAAAACAGTCGTACTCTTTCGACTTCAAGCTCGCCTTAGTGGAACGGTTCCTTGCGGGTGAGACTGCCCCGGATCTGGCGGCGGAGGCTGGCTTGTCTTCGCCTGTGTTACTGAAAACGTGGGTGCGTGCGTATCGTCGCGAGGGCGCGGACTCATTGCGCCCGAAGGCTAAAGGCAGACCCCGGAAGCCTGACGCCCCACCGCCCGCGGAGATATCCGAGCTGGAGCGGTTGCGCCGTGAGAACGAACGGTTGCGGGCAGAAGTGGCCTATCTGGGAAAATTGCGGGCCTTGAGGGCCCAAAAACAACGGTGAMTKPTKQSYSFDFKLALVERFLAGETAPDLAAEAGLSSPVLLKTWVRAYRREGADSLRPKAKGRPRKPDAPPPAEISELERLRRENERLRAEVAYLGKLRALRAQKQRNANANANANA
D1-29_040341077thrB_2Homoserine kinaseATGGATGTCAGTACCGACTCCGAATTTTTCGACGCCGTCGCATCGGAGAGTGGGCTCCTGGCGGAGCAGTCCCAGCTCGCTGACTCCACTGTGTTGGAGCTCCTTAAACAGTCCTATGGCCTGAAGGGGACCCTTGTCCGGATTCCCACCGAGAAGGATGAGACTTTCCGCCTCCGGGACGGCGAACACACCTATCTGGTGAAGGTGTCGCCACCGGATGAGGATCCGCTGATCGTCCACCTTCAGACGGTATGTATGGAGCATTTGGAGGCGACTGCCCCCGAACTTCCGGTCCAGCGTCTTGTCAGGAGCCTTGGCGGAGATCCGCAAGTGCGCATTCCGGCACCGGAGGGACCGTTTGACCGGGTGCTTCGGGTGATGCGCTTCATGCCCGGAAATTTGCTGGCCAGTCACGACGCCTCCGCCGGTCAGCTTCAGCTGGTGGGCTCAAGCCTTGCCCGCGTTGGCCTTGCTTTGCAGGACTTGGATCATCCGCGTGCGGACCGGCTGCTCCTGTGGGACCTGAAGCACTTTCACCGGATGCGGCCGCTGCTTGAGTATGTCGATGAGCCATCCAAACGCTCCCTGGCCGAAGCAATTTTTGACCGTTTCGACGAGAACGTGGTTCCGCTTCTGGGTTCACTGACCTCCCAGATCGTGCACGGGGATTTCAGCCCGTTCAACGTTATTGTCAACCCGGACAGGCCGGAATACGTCACCGGGATTATCGACTTCGGCGACGTCGTGCGCACCCCGGTGATCTTCGACATCAGCGTCACCATGGCCAACCTCCTGGGAACAGACCCCTCCAGCCCCTGGAAACACGCACTGCACGTCATGGACGGTTACCTGAGCGTCCGCCCGCTGCCCGAGGCGGAGCTGGAGGCCCTGATCATCTCAGCCCAGGCCCGGCTGCTCCTGCGCGCCCTGATCACACAGTGGCGGGCAAGCCAACTGCCGCAAAGACGCGATTATCTGCTCTCCCACTCCAAACCGGACTGGGACCGCCTCGCCGCCACCGCCGCTGACCCGGCACCACAGACCGCACGTCCCGCCCCCAACCCCGTCGCACCCTGAMDVSTDSEFFDAVASESGLLAEQSQLADSTVLELLKQSYGLKGTLVRIPTEKDETFRLRDGEHTYLVKVSPPDEDPLIVHLQTVCMEHLEATAPELPVQRLVRSLGGDPQVRIPAPEGPFDRVLRVMRFMPGNLLASHDASAGQLQLVGSSLARVGLALQDLDHPRADRLLLWDLKHFHRMRPLLEYVDEPSKRSLAEAIFDRFDENVVPLLGSLTSQIVHGDFSPFNVIVNPDRPEYVTGIIDFGDVVRTPVIFDISVTMANLLGTDPSSPWKHALHVMDGYLSVRPLPEAELEALIISAQARLLLRALITQWRASQLPQRRDYLLSHSKPDWDRLAATAADPAPQTARPAPNPVAPNANANANANA
D1-29_040351362dgdA2,2-dialkylglycine decarboxylaseATGAGCACTACTCCCCAAACCATCCGCAAGCCTTCCCGGGCCATGATCAATGGCTTTGATCCCAACCGCCTCGGTGAGCTTCCGGATCAGATGCAGAAGAGCATCCGACGGCGGGACCAGAGCCTGGGACCAAGTTACCGGCTCTTCTATGACACCCCGATCGAAATCGTCCGCGGCAAGGGCGTGACGCTCTTTGACCCGGAGGGAAACGAGTACCTCGACGTTTACAACAACGTCCCCTCCGTAGGCCATGCCCACCCAAAGGTCATCGCAGCCGTCCACGAACAGATGCAGACCCTGAACACCAACACCCGGTATGTCCAGGAATCCATCCTCGATTACTCCGAGCAGCTCCTGTCCACGTTCCCGGCCGAGCTCGGCAATGTCATGTTCACGTGCACCGGCTCCGAAGCCAATGACCTCGCCATGCGCGTGGCCAAATACGTCACCGGAAACCAGGGCATCATCGTCACCTCCGGCGCGTACCACGGCCTGACCGCGGAAGTTTCGTCCTTCTCGCCGTCGCTGGGTATCGGCGTGCCGCTGGGCGCAAATGTGCGCGTCATCGACGCCCCCGACGCCCTGCGGTACTCCTCCGACCAGGCATCCCTGGAGGACCACCTGCGGAACCAGGTGCGTGCCGCCATCGCCGATCTTCACCGGCACGGCATCGGACTGGCGGCCTTCATCGCCGACAGCATCTTCTCCTCCGACGGCGTCTTCGCCGGCCCCGCAGGCTTCCTGCGCCCGATCATCGAAGAAGTACACGCCGCCGGCGGCCTCTACATCGCCGATGAAGTCCAGCCCGGCTTTGGCCGTACCGGCGCCGAATGGTGGGGCTTCCAACGCCACGGAATCGTCCCGGACATCGTGACCATCGGCAAACCAATGGGTAACGGGATCCCCGTCGCGGCCGCCATCTTCAAACCCGAACTGCTCGTGGAATTCGGCAAGAACATCCGCTACTTCAACACCTTCGGCGGCAACTCGGTAGCCATCGCCGCCGCCCAGGCAGTGCTGGACGTGATCCGCGAGGAATCACTGATCGAAAACGCCCTCAAGGTGGGCGAGAAGATCATCACCGGGCTGAAGGACCTCTCCCAGGGCCTGGACCAGGTCGCAGAAGTCCGCGGAAGCGGCTTCTTTATCGGTGTCGACCTCGTCACCGACCGATCCTCACTCACACCCGACGGGCAGGCCGCCGCGGCCATCGTGAACTCCCTTCGGGAAGACCGGATCCTCATCTCCGCCTGCGGCGCCCAAGGAAACGTCCTCAAACTCCGCCCCCCGATGCCGTTCTCCAGCAACGACGCCGACCGCCTGCTCGAAGGAATGGGCCGCGCCTTCAAGGCACTGCGCTAAMSTTPQTIRKPSRAMINGFDPNRLGELPDQMQKSIRRRDQSLGPSYRLFYDTPIEIVRGKGVTLFDPEGNEYLDVYNNVPSVGHAHPKVIAAVHEQMQTLNTNTRYVQESILDYSEQLLSTFPAELGNVMFTCTGSEANDLAMRVAKYVTGNQGIIVTSGAYHGLTAEVSSFSPSLGIGVPLGANVRVIDAPDALRYSSDQASLEDHLRNQVRAAIADLHRHGIGLAAFIADSIFSSDGVFAGPAGFLRPIIEEVHAAGGLYIADEVQPGFGRTGAEWWGFQRHGIVPDIVTIGKPMGNGIPVAAAIFKPELLVEFGKNIRYFNTFGGNSVAIAAAQAVLDVIREESLIENALKVGEKIITGLKDLSQGLDQVAEVRGSGFFIGVDLVTDRSSLTPDGQAAAAIVNSLREDRILISACGAQGNVLKLRPPMPFSSNDADRLLEGMGRAFKALRPGPT0014253_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
D1-29_04036786TropinesteraseGTGTCCCCGCCTCTGTCTGAACTGATGCTTACCACCGCGCCAGGGGTACTCATCCGTTGCTATGACACAGGCGGACCCGGGCCGGTTATGGTCATACTTCACGGCCTGACCGGCAGTGCCGCTGAATTCTTTCCGACGGCGGCGGGCCTGCCGGAATACCGGACAATCCTGATGGATCAGCGCGGCCACGGCGGAAGCACCCGGTTCCCCGGCGACGTCTCGCGCGAGGCGTATGTTGCCGACGTCGTCCGCGTTATTGAGGAAGCAGCGGCGGGTCCGGTCACGCTGGTGGGGCACTCGATGGGCGGGCACACCGCGATGCTGACCGCTGCAGCGCGGCCGGACCTGGTGTCCCGGCTGGTGCTGCTGGAGGCCGGCGCGGGAGGAGGCAGGCCGCAAGACCACGAGTCGATGGGCGAGTATTTCCGGTCCTGGCCGGTGCCTTTCCCCAGCCGAAGGGCTGCCCAGGAATTCCTCGGCGACACAGCCTTGGCCAAGGCTTGGGTAGCTGACCTTGAGGAACACCCGGACGGTTTCCGGCCCCGGTTCGACGCGGACGTGATGGTCCAGGCGATCAGTGCCGTGACGGTGGCTCGGTGGACGGAATGGAAGCAGGTGTCAGCGCGCACGCTGGTGGTCTATGGCGGCAAGGGTATGTTCACGGAGGCCGAGAAGGACGAATTCGTGCGGCGGGGCCATGATGTGACCCGAGTGGACCTCCCCGGGGCATCGCACGACGCCCATCTGGATGCGTTCGACGAATGGGTGGCCGCCCTCAAAAGGTAAMSPPLSELMLTTAPGVLIRCYDTGGPGPVMVILHGLTGSAAEFFPTAAGLPEYRTILMDQRGHGGSTRFPGDVSREAYVADVVRVIEEAAAGPVTLVGHSMGGHTAMLTAAARPDLVSRLVLLEAGAGGGRPQDHESMGEYFRSWPVPFPSRRAAQEFLGDTALAKAWVADLEEHPDGFRPRFDADVMVQAISAVTVARWTEWKQVSARTLVVYGGKGMFTEAEKDEFVRRGHDVTRVDLPGASHDAHLDAFDEWVAALKRNANANANANA
D1-29_040371308amt_2Ammonia channelGTGGAGATCACTGCTCAACACGTCTGGCTGATGATTTCGGCCGCGATGGTACTGCTCATGACGCCGGGCCTCGGCCTCTTTTACGGCGGCATGACCCGCGCCAAGGCAGCATTGAACATGATCCTGATGAGCTTCATCTCCGCCGGCATCGTGGGCGTCGTGTGGGTGCTCTGGGGTTACTCCATGACCACGGGCGAAGGGGTCTTTGGCATCTTCGGAAACCCCTTCACCAGCTTTGGCCTGGAAAGCCTGATGGGTTCACCGGACCTGATCAAGGCCGGCTACAGCGCCACGTTCGCCATGGTCACGGTGGCCCTCATCAGCGGAGCCATCGCGGACCGCGCCAGGTTCAGTGCCTGGGCCCTGTTCGTCCCGCTCTGGATCACCCTGGTCTACTGTCCCTTGGCGTACATGATCTGGGGCGGCGGCCTGATGAGCGCTGACGGCGCCATCACGGCCGTGTTCGGGCAGGTCATCGACTTCGCCGGCGGCGCGGTGGTGGAGATCAGCTCGGGTACGGCGGCCTTGGTCCTGGCGGTGATTGTGGGCCAGCGCCAGGGTTTCGCGAAGGACCCCAACCACCGCCCGCACAATGTCCCGTTCATCATGCTCGGCGCAGCCATCCTCTGGTTCGGCTGGTTTGGTTTCAACGGCGGTGCCGCCACCACCGCTGAGCAGGCCGGTCTCATCTGGGTCAACACGCTGGTTGCCCCTGCCGCTGCCATGCTCAGCTGGCTGGTTACCGAAAAGATCCGCCACGGACACCCCACGTCCCTCGGCGCCGCCTCCGGCGTGGTGGCAGGCCTCGTGGTGATCACACCCTCGTGTGCCAACATCAGCCCGGTGGCGGCCGTCGGCCTGGGCCTGGTGGCCGGGGTTGCCTGCGCCATTTTCGTAGACCTGAAGTACCGCTTCGGCCTGGACGATTCGCTGGACGTCGTGGGTGTCCACCTTGGCGCCGGTGTGATCGGCATGCTAGCGCTGGGTTTCATCGCCCTTCCCTTGGATGGCCACGGCGGCGGCCTCTTCTACGGCGGCGGCCTGCAGCAGCTGGTGGCGCAGTCCGCGGCAGTCCTGGTGACCGTCCTGTTGTCCGGCGCAGTCACCGCCGTGATAGGCCGGGCCATAAACAAGACTGTCGGTTTCCGGGTCAGCGCCGAGGCCGAAACAGTAGGTGTGGACCTCGCCGAGCACGCCGAGACGGCCTACGCCTTCGGAGAACAGGGCACGGGCTTCAGCCCTGTCAACGTCCCCACAGAGCCGGCGGACACCGGTGCCGCCCGGACCCGGGAAAACACCTTCGCCTAGMEITAQHVWLMISAAMVLLMTPGLGLFYGGMTRAKAALNMILMSFISAGIVGVVWVLWGYSMTTGEGVFGIFGNPFTSFGLESLMGSPDLIKAGYSATFAMVTVALISGAIADRARFSAWALFVPLWITLVYCPLAYMIWGGGLMSADGAITAVFGQVIDFAGGAVVEISSGTAALVLAVIVGQRQGFAKDPNHRPHNVPFIMLGAAILWFGWFGFNGGAATTAEQAGLIWVNTLVAPAAAMLSWLVTEKIRHGHPTSLGAASGVVAGLVVITPSCANISPVAAVGLGLVAGVACAIFVDLKYRFGLDDSLDVVGVHLGAGVIGMLALGFIALPLDGHGGGLFYGGGLQQLVAQSAAVLVTVLLSGAVTAVIGRAINKTVGFRVSAEAETVGVDLAEHAETAYAFGEQGTGFSPVNVPTEPADTGAARTRENTFAPGPT0000840_4391DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
D1-29_04038621hypothetical proteinATGGAAGGCATTCATGACGACAAGTTTTCGGACAGGGGTGTAGGCCGCGGACGCTTCGAACGCGGCAGGGGCCGCCGCGGACCGCACGGACACCGCGGCGGCGGATTTGGGCCCGGCTTCGGACCTGGTTTCGGCCCTGGTTTCGGACCCGGGCGTGGGTTTGGCCCAGGCTTTGGTCCCGGCTCCCGGAGGGCCAACAGGGGAGATGTCCGGTCAGCGATTCTGTCGCTCCTGGCGGAGGCTCCGTCCAACGGTTACGCGCTGATAAAGACCATTGCGGAGAAAACGTCCGGAGCCTGGCGGCCCAGCCCCGGGTCCATTTATCCGACGCTCCAGCAACTGGTTGATGAAGACCTCATCGCGCCGCTGAGCGAGGGACGGCGGACCGAGTTCACCCTGACTGACGCGGGCAGGGCCTACGTCAGTGAGCACGCCGAGGATCTGGATAACGCCTGGAACGCTGAGCCGGAAGGATCAGGCCAGGCTTTTTACCAGAGTGTGGGAAAGCTGATGGGTGTCATCCACCAGTTCCGGCATGCGGCCACCGAAGAACAGCGCAATGCCGCGGTGGAAAAGATCGACGAAACCCGCCGCGCGCTGTACCACATCCTCGCGGACTGAMEGIHDDKFSDRGVGRGRFERGRGRRGPHGHRGGGFGPGFGPGFGPGFGPGRGFGPGFGPGSRRANRGDVRSAILSLLAEAPSNGYALIKTIAEKTSGAWRPSPGSIYPTLQQLVDEDLIAPLSEGRRTEFTLTDAGRAYVSEHAEDLDNAWNAEPEGSGQAFYQSVGKLMGVIHQFRHAATEEQRNAAVEKIDETRRALYHILADNANANANANA
D1-29_040392184pbpGCOG0744Penicillin-binding protein 2DATGGCGAAGAAGAAGAGACGCGGGCACGGATTTGCCGCAACCCTGAAAAGGGTCATCGGCTTCTTTATTGCGAGTGCCCTGTGCGGTGTCCTCGCCGCCAGCCTGGTGGTTCCGGCCGTAGCAGCCGCCGGTTTTGGGGTCACCAATTCCATCAGTTTCTTTGAGAAGCTCCCTGACGAACTGACCGTTGCACCGCCGTCGCAATCAACGAAGGTCCTGACGGCGGACGGCCAACTAATTGCCACCTTCTACGCCGAGAACCGGGTCAGGGTCCCGCTGGACCAGATCTCCCCCTACGTCGTGGATGCCATTGTGGCCATCGAGGACAGCCGCTTCTATGACCACGCCGGCATTGATCCGCAGGGGATTCTGCGGGCAGCCATCTTCAACATCAGCCAGGACGACGGGCGCCAGGGCGCATCCACCCTCACCCAGCAGTACGTCACCAACGTCATCAACGAATCGTTCCTGTCCCAGGAGAAGACCGACGAGGTGATTCTCAGCGGGCAAAAGAGCATCGGCGACAAGCTGCGCGAGATGAAGCTGGCCATCGCGCTGGAGAAGAAGTTCACCAAGGAGCAGATCCTCGAGGGTTACCTCAACATCGTGTTCTTCAACCGCGACGCCTACGGGATAGAGGCCGCTTCCCAGTACTTTTTCAGCAGCACCGCCAAGGATGTCACCCTGCCGCAGGCCGCCTTGCTGGCCGGGCTGGTGAACAGTCCCAGCTACTACAACCCGGCCATCAACCCGGACAAGTCCCTTGCCCGGCGCAACCAGGTGCTCGGTGAGATGCTTGCGCTCGGCAAGATCACCCAGGAGGAGCACGACGCGGCTGTTGCCACTCCCATTGAACTTAAGCTCAACCCCGCGAAGCAGGGCTGCGCCTACGCCACCATGGCACCGTATTTCTGCGATTACATTTCCCATCTGATCCTGAACAATCCGGCCTATGGCAACAGCTTGAGCGAGCGCGAGCGGAAGCTCTACCGCGGCGGCCTCACCATCGTCACCACGCTGGACAGCAGGCTGCAGGCCGCCGCCCAGGTGCAGGTGGACGCGTCCGCCGGAGCAAATCCGGACAGGTGGGGTGCAGCGCTGGTGACCATCCAACCGGGCACCGGCAAGATCCTGGCAATGGCCCAGAACACTGTGTTCCTGCCGCAGGAGGGAAAGTTCGACACCCATCTGAACTTCAACGTGGACGCCAAGGACCCGCAGGGCAACGACCTCAATGGGGCCGGTGGCTTCCAGCCAGGATCCACCATGAAGCCGTTCACGTTCGCGCAATGGCTCAATGAAGGCAAGTCCATGACCGCCATGGTGGACGCATCCAAGCGTGTCTACCCCCTCGGGTTCCCCTGGCGGTCCAGCTGCGGGAAGGTCCTGGGCGCTTACAGCACAGCCCAGAACAACCCCGAACTAGGGGCGGCGGACGATCTCCAGAACGCCGACGAAGGCTACTACCGCCCCATGCCTGTCAACTATGGCCTTTACAATTCCATCAACACCGCCACGTTCGCCTCGGCATCCCAGCTGGACTTCTGTGGCATCCAAAAAATGGTGGATGCTGTGGGCCTGCACAGCGGCCTGGACGGCGCCCAAATCAACATGCACCAGCTGGGCAACCTGCTGGGCGCCATCGGCGTGGCACCGCTTCACCTGGCCAACGCCTTTGCCACCTTCGCCAATGACGGCCGCTACTGCGCACCCATCGCCATTGCGGACGTAACCGACGTAACCGGCGGGAAGCTTCCGGCCCAGGCCAGCGAATGCCGCGACGCCGTGAAGCCGGACGTTGCCCGCGGGGTGAACGCGGTACTCCAGGATGTGCTGAAGGTGGGCTCCGGCGTTTACATCAACCCCAAGCTCCACACCCAGATGCCCATCGCGGCCAAGACCGGCACCTCGAACAATAACGGGGCCACCTGGATCGTTGGCTACACGTCGAGCCTGGCCACCGCATCGTTCTTTGGCGACGCGCTGGAGGGCCAGAAACGCCCCGGCCAGAACGTCACCATCAACGGCACCTTCTATCAGCGCCTGGACGGCTATATGATCGCAGGCCCGCAATGGGCCAACTACATGCAGCAGGTGGGCAAGCTTTACCCCACCAACCCGTTTGCACCGCCGCCGCCGTCCATGGTGGGAACACCCGGTCCTACCCCGACTCCCGGCCGCTGAMAKKKRRGHGFAATLKRVIGFFIASALCGVLAASLVVPAVAAAGFGVTNSISFFEKLPDELTVAPPSQSTKVLTADGQLIATFYAENRVRVPLDQISPYVVDAIVAIEDSRFYDHAGIDPQGILRAAIFNISQDDGRQGASTLTQQYVTNVINESFLSQEKTDEVILSGQKSIGDKLREMKLAIALEKKFTKEQILEGYLNIVFFNRDAYGIEAASQYFFSSTAKDVTLPQAALLAGLVNSPSYYNPAINPDKSLARRNQVLGEMLALGKITQEEHDAAVATPIELKLNPAKQGCAYATMAPYFCDYISHLILNNPAYGNSLSERERKLYRGGLTIVTTLDSRLQAAAQVQVDASAGANPDRWGAALVTIQPGTGKILAMAQNTVFLPQEGKFDTHLNFNVDAKDPQGNDLNGAGGFQPGSTMKPFTFAQWLNEGKSMTAMVDASKRVYPLGFPWRSSCGKVLGAYSTAQNNPELGAADDLQNADEGYYRPMPVNYGLYNSINTATFASASQLDFCGIQKMVDAVGLHSGLDGAQINMHQLGNLLGAIGVAPLHLANAFATFANDGRYCAPIAIADVTDVTGGKLPAQASECRDAVKPDVARGVNAVLQDVLKVGSGVYINPKLHTQMPIAAKTGTSNNNGATWIVGYTSSLATASFFGDALEGQKRPGQNVTINGTFYQRLDGYMIAGPQWANYMQQVGKLYPTNPFAPPPPSMVGTPGPTPTPGRNANANANANA
D1-29_040401413nplTNeopullulanaseATGGCTGGAAAGGCCTGGGTGAAGCAGAATGGAGCAATGGCAGAACCGAGTTGGGTCCAGCACGCCGTCTGGTGGCACGTCTACCCCCTGGGGTTCTCCGGAGCCGGCAAGGAAGCGCTCCCGGTCGGGGCTGCCCCCGAACACGGGCTCAGGCAACTGATCCCCTGGCTCGATTACGTCCTGGAACTGGGAGCCTCCGGCCTCGCCCTGGGGCCCGTCTTCGCCTCCGAAACGCACGGCTACGACACCACGGACTACTTCCGCATCGACCCCCGACTGGGTGACGACGGCGACTTCGACGATCTCATCCGTGAAGCCCACGCGCGGGGCATCAGGGTGCTCCTGGACGGTGTGTTCAACCACACCGGCCGCTCATTCCAGCCTTTCCAGGAGGCCTTGAAGCACGGGCCATCCGCCCCGTCCGCGCGCTGGTTCAGGATCCATTGGCCAGAGAATGGGGCTGCAGGCCGCACCCCGACTAATGAGCCGGACTATGAGGATTTCGAAGGCCATCACCACCTGGTGGCACTGAACCATGATGAACCGCAGGTAGCCGGGTTTGTCGCGGCAGTGATGAAGCATTGGCTGGACCGCGGCGCGGACGGGTGGCGGCTGGACGCAGCCTACGCGGTGCCCGCCGGCTTCTGGGCCAAGGTCTTGGCGGACGTCCGGTCCAGCCATCCCGACGCCTATTTTGTGGGGGAGTACATCCACGGGAATTACGCGGCCGAGGTGGGCAACGCGGCCCTGGATGCCGCCACCCAGTACGAGCTGTGGAAGGCGGCGTGGAGTTCCCTGAACGACACAAACTTCTACGAACTGGCCTCCGCGCTGGAACGCCACAACTCGTTCCTGGAAACCTTCGTTCCGCTCACTTTCGTGGGAAATCACGACGTCACACGGATCGCCAGCAAACTCAAGGACCCGGAGCTGCTGCCGCACGCCCTGGTGGTCCTCTTGACGGTGGGCGGCACCCCGTCCGTCTATTACGGCGACGAGCAGGCGTATCGCGGCGTCAAGGAGGACAGGGAGGGAGGCGATGACGACGTCCGGCCTGCGTTTCCGGCATCCCCGTCGGAGCTGTCCCCTCTGGGCGGGGACGTTTACCGGCTGCATCAGCAGCTGATCGGAGTACGACGGCGGCACGCCTGGCTGCATACAGCCCGCACCAGGGTGCTCGCCCTGGCCAACGGCCACCTTGTGTATGAAGCAACAGCCAGTCGGGCGGCCGCCGATGGCGGGGCCGGCGGAGGAGGGAGCCTTGTGGTGGCGCTCAACCAAACCGAGCAGGAAGCGGCCCTTGAGGTGCCGCCGTCGGCCTCTGTCCTGCTGGCCGGGAACGGCCGGCTGGAGGGGAGCAACCGCGTGTCCCTGCCCGCGAAGGGCTTGGCGGTCCTGTCAGCTGGGGGTTGAMAGKAWVKQNGAMAEPSWVQHAVWWHVYPLGFSGAGKEALPVGAAPEHGLRQLIPWLDYVLELGASGLALGPVFASETHGYDTTDYFRIDPRLGDDGDFDDLIREAHARGIRVLLDGVFNHTGRSFQPFQEALKHGPSAPSARWFRIHWPENGAAGRTPTNEPDYEDFEGHHHLVALNHDEPQVAGFVAAVMKHWLDRGADGWRLDAAYAVPAGFWAKVLADVRSSHPDAYFVGEYIHGNYAAEVGNAALDAATQYELWKAAWSSLNDTNFYELASALERHNSFLETFVPLTFVGNHDVTRIASKLKDPELLPHALVVLLTVGGTPSVYYGDEQAYRGVKEDREGGDDDVRPAFPASPSELSPLGGDVYRLHQQLIGVRRRHAWLHTARTRVLALANGHLVYEATASRAAADGGAGGGGSLVVALNQTEQEAALEVPPSASVLLAGNGRLEGSNRVSLPAKGLAVLSAGGPGPT0012200_1092DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0012200-cd|ma|nplT-K01208NANA
D1-29_04041537COG1670AcetyltransferaseGTGCAAAATCTGGAAACCGACCGGCTGATCCTGCGCGCCTGGGAGCGGGAGGATGCCGATTTCGCCTTCGACCTCTACTCACGCTGGGAGGTGCAGCGGTTCATTGGCAACCCGCCGCAGGTCATGACGGCACGATCGCAGGCTGAGGAGCGCATTCTGGCGTGGCGGGAGATGGATCATCCGGTACACGCGGTCTGGGCGGTGCAGCTCAAGGCCACCGGCCAGCTTGCCGGCGCCCTGCTCCTGAAATCCATTCCGGCGTCGGGCGGTTCAATGCCTCTCCAGCCATCCGGTGACACGGAAATCGGCTGGCATTTCCACCCCGATCACTGGGGCCACGGCTACGCCTCCGAAGCCGCCGCCGTTGTCCTGGACTACGCCTTTGACAGCGGCCTGGACGAGGTCGTGGCTGTCACTGCACCCGCGAATGTGGCATCACAGAAGGTCTGCGAACGCATCGGGATGCGCCATGCCGGCCAGACGTCCAGGTACTACAACTCGCTGTGTGAGCTTTTTGTGGTCTCCGCGGCTTCCTAGMQNLETDRLILRAWEREDADFAFDLYSRWEVQRFIGNPPQVMTARSQAEERILAWREMDHPVHAVWAVQLKATGQLAGALLLKSIPASGGSMPLQPSGDTEIGWHFHPDHWGHGYASEAAAVVLDYAFDSGLDEVVAVTAPANVASQKVCERIGMRHAGQTSRYYNSLCELFVVSAASNANANANANA
D1-29_04042591hypothetical proteinATGAGCGGCGGGTCGGGGGACTTCAGGCGGCGGATGGAACGCGCTGCGGAGGTTCGTTCTTATCGCGACGCAGGCATCAGGCCGGAGGAAGAAGCCGAGCTTGAGGCCGTGGATGACCAGGAGCGGCAGAAGCGACGGAAAGTGGACGATGCCGCCCGGGTGGAATACCTCATCCGCGACGCAATGGCCCAGGGCAAGTTCGACAACCTGAAGTACGCGGGCAAGCCGATCCCGGGGCTGGGGGAGCCCTACGATCCGGACTGGTGGGTTACGGGCCTGCTCCAGCGGGAGAACGTCAGCGGCCTGGGGCCAAAGGCCATCCTGCTCCGTACCGAGGATGCCGAACTGGACGCCAGGCTGGACGCCCAATTCACCGAGAAACAGGTCAGGGAGATACTGGAGGACTTTAACGCAAGGGTCATTGACGCCCGCCGCCAGCTCCAGGGCGGCCCGCCGGTCATCACCAAAACCAGGGATGTGGAGGCCGAAGTGGCCCGCTGGCAGGAGCGCCGGACCCGGGCTGCTGTACTGCCTTCCGAACCTGAGCCAAGGCGCTCCTGGTGGCAGCGGCTCTGGCGGGGTACAGCCTAGMSGGSGDFRRRMERAAEVRSYRDAGIRPEEEAELEAVDDQERQKRRKVDDAARVEYLIRDAMAQGKFDNLKYAGKPIPGLGEPYDPDWWVTGLLQRENVSGLGPKAILLRTEDAELDARLDAQFTEKQVREILEDFNARVIDARRQLQGGPPVITKTRDVEAEVARWQERRTRAAVLPSEPEPRRSWWQRLWRGTANANANANANA
D1-29_04043273hypothetical proteinATGGTCAGAGTCCCCCTAAGCCCCGAAGAGGTCCGTGCAGGGAAGATGCTCGGAGAAATGCTCCGCAATGCGCGTGGGAAACGGACGCTGGTTCAGGTGGCTCTTGGAGCAGGCATATCCCCTGAAACACTCCGGAAAATCGAAACGGGTCGAATCGCCACACCGTCATTCATGATCGTGGCGGCCCTCGCCGAAGAACTGGGTCTCTCCCTTGACGCCATCCAGGGAACGCTGCGCCGCTCATCCGATGAGAACCTCGATGTAGCTTCTTAAMVRVPLSPEEVRAGKMLGEMLRNARGKRTLVQVALGAGISPETLRKIETGRIATPSFMIVAALAEELGLSLDAIQGTLRRSSDENLDVASNANANANANA
D1-29_04044771map_3COG0024Methionine aminopeptidase 1TTGATTGAAGTGCTTACGCCCCGAGAAGTTGACCAAGCCCGCCTCTCCGGCCAATTTGTGGCCAGGACCCTGTCAGACCTGAGGGACAGGACCGAGCCGGGCACGAACCTCCTGGAAATTAACGACTGGGCAGATTCGATGATCCGGGCCGCAGGAGCCCGCTCCTGTTATGTCGACTACGCCCCGTCCTTTGGGCGCGGCCCGTTTGGCAAAGTGATCTGCACGTCCGTCAACGATGCCGTTCTACACGGACTCCCCCATGACTACGTTCTGATGGAAGGGGATCTGCTGACTTTGGATTTCGCTGCGAGTGTCAACGGATGGGTCACCGATTCCGCCATCAGCTTCGTTGTAGGCGAATCTCCTTCGCGTGCTGACCGGCACATGATTGAAACCACGGAGAAAGCACTTGTGGCCGGCATCCAGGCAGCCCAGTCCGGAGCGCGCATTGGCGATATCTCTTTCGCCATCGGGTCAGTGCTCGAAGCAGCCCGCTTCAAGGTCAACAAAGAATTTGGCGGACATGGGGTTGGAAGCACCATGCACCAGGACCCGCACATTCCGAACACCGGAACACCTGGACGCGGATACACTCTTCGCCCCGGACTGCTTTTGGCCATCGAACCCTGGGTTATGGACGGCACCAGCAAACTCGTCACAGCTGCCGACGGGTGGACCCTGTGCAGCTCCAATGGCCGCCGGACCGCGCACTCCGAGCACACGATTGCCGTCACGGAATCCGGACCGGTCATCCTCACTCAACTGGCCTAGMIEVLTPREVDQARLSGQFVARTLSDLRDRTEPGTNLLEINDWADSMIRAAGARSCYVDYAPSFGRGPFGKVICTSVNDAVLHGLPHDYVLMEGDLLTLDFAASVNGWVTDSAISFVVGESPSRADRHMIETTEKALVAGIQAAQSGARIGDISFAIGSVLEAARFKVNKEFGGHGVGSTMHQDPHIPNTGTPGRGYTLRPGLLLAIEPWVMDGTSKLVTAADGWTLCSSNGRRTAHSEHTIAVTESGPVILTQLAPGPT0020010_7327DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-29_04045894aes_3COG0657Acetyl esteraseATGGTCGATTGCATGGCGGCGTCCTTCATTGGTGTGAGTGAACTCAAGGTTGCCGAATCATCAGCCTCAGGGCCTTATGGTCCCGTCCCGATCCGCTGGTATCGGCCAGCAGTTGAGAGTGCAGCGGCAGCACCGGTCCCGACGATGGTCTGGGCGCACGGCGGAGGCTTTTTTGCCGGCGGCCTTGACCAGCCTGAAGCCCACGACGTCGCCCGCGCTCTTGCGCAGCGCGGGCTTCCTGTTGCCACAGTGGACTACCGCCTCGCGCCACTTCCCGGGCTGGCGTGGGCCGGAAGGGGCGGAAGGCGGCCCCGCGCGCGGTTTCCTCTTCCCGTTGAAGACATCGTTACCGCGCTTGGCAGTGTGGGCAGTGAGTCACCGGGTGGAGTGATTCTCGGTGGAGCAAGCGCCGGAGCTTGCCTCGCCTCCGCCGCCACTCTCCGTGCCCTCAAGGGTGAGCTGAAACCGAGGGGGATTGTTCTTGCCTACGGCTTTTTCCACTCGTTGCACCCCAGGTCTCACAACATCCGGAGGCGGGTACCCGGCCACCGGCGGCTGACACATTCCCTTTGGATCCTTGACGCCGTTAATCGCAACTACGCGGGCTCACCGTCCGCGTTGGCTAATCGCTTCGCCTTCCCCGGAGGGCACGGCCTCGACGGCTTGCCTCCAACCCTCATGATCAATGCCGACCGGGACGCCATGCGCGCATCCGGTGATCAGTTCGCGGGCGAACTCCTCGCGGCAGGAATCGACGTCGAACAGCACGTTCTGCCAGGCTCCCGTCATGGTTTCCTGAACCGTCCGCGTCTCGAGGCCTTCACAACCGCAATTGATCTCATTGCTTCATGGTCCTTGACGCGGCTGCCGGGGCCGCCGGTACCTATGAAGTGAMVDCMAASFIGVSELKVAESSASGPYGPVPIRWYRPAVESAAAAPVPTMVWAHGGGFFAGGLDQPEAHDVARALAQRGLPVATVDYRLAPLPGLAWAGRGGRRPRARFPLPVEDIVTALGSVGSESPGGVILGGASAGACLASAATLRALKGELKPRGIVLAYGFFHSLHPRSHNIRRRVPGHRRLTHSLWILDAVNRNYAGSPSALANRFAFPGGHGLDGLPPTLMINADRDAMRASGDQFAGELLAAGIDVEQHVLPGSRHGFLNRPRLEAFTTAIDLIASWSLTRLPGPPVPMKNANANANANA
D1-29_04046381hypothetical proteinATGGATATCGTCCTCTGGGTCATCGCCGGGTTGCTGGCAGCAGCCTTCCTCGCCGCCGGGGCCATGAAGGTCATGCAGTCCAAAGAAAAGCTCGCAGCTTCCGGGATGGGGTGGACGGACGACTTCAGCCAGGGCATGGTGAAGACCATAGGCCTCCTGGAGGTGCTTGCCGCCGTCGGCCTGATCCTACCCGCGGTGCTGGGGATCGTCCCGGTACTGGTTCCGCTGGCGGCCCTCGGGCTCGCAGGCCTGATGGTTGGCGCTGCGATTACACACGGCCGCCGCAAGGAAACCCCGATGGTGGCGATCAACGTGGTTTTGCTCATTCTGGCGGCGGTTGTTGCCTGGGGCCGGTTCGGCCCTTACGCCTTCACTTCATAGMDIVLWVIAGLLAAAFLAAGAMKVMQSKEKLAASGMGWTDDFSQGMVKTIGLLEVLAAVGLILPAVLGIVPVLVPLAALGLAGLMVGAAITHGRRKETPMVAINVVLLILAAVVAWGRFGPYAFTSPGPT0028505_4915DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-29_04047522hypothetical proteinATGGATGCAACTCAAGAGCCCCGTTGGCTGACGCCCGAAGAGCGGGACGCCTGGCTGGCACTGACCAGCGTGATCATGAGGCTGCCTTCCGCGCTGGACGCCCAACTCCAGCGCGATGCAGGAATCAGCCACTTCGAATACCACGTGATGGCAGGGCTCTCCGAGAGCAAGGGCCGGACAGCTCGAATGAGCGAACTGGCCGTGATTGCCGAAGGCTCCCTCCCCCGCCTCTCGCAGGTAGTGGGCAGGCTCGAGAAGCGCGGATGGGTGCGCCGCAGACCGGACCCAACGGACGGCCGCTATACCCTGGCGATCCTCACTGATGAGGGGTGGGACAAGGTGGTCAAAACGGCACCCGGCCATGTGGAGGAAGTGCGCACCCTGGTCTTTGACCCGCTCACCAAGGCCCAGGTCCAGCAGCTGACCAATATCGGCCGGCGGGTCACCCGCGCCATCGACCCCAACGACTACTGCCTCCGCGGCCTTGACCAAGGCCGGCAGTCTGGAACTGCAGCGGGCTAAMDATQEPRWLTPEERDAWLALTSVIMRLPSALDAQLQRDAGISHFEYHVMAGLSESKGRTARMSELAVIAEGSLPRLSQVVGRLEKRGWVRRRPDPTDGRYTLAILTDEGWDKVVKTAPGHVEEVRTLVFDPLTKAQVQQLTNIGRRVTRAIDPNDYCLRGLDQGRQSGTAAGNANANANANA
D1-29_04048681lutR_3COG2186HTH-type transcriptional regulator LutRGTGGGTGCCGCTGAAGCTGTATTCGCATCCCTTCGCGGCGCCATCGAGGGCGGCAAGATTCCCGTTGGTACACGCCTGGATTCAGAGGCGTCGCTGGCCAAGCAGTACGGAGTCAGCCGCACCATGGTCCGCGAAGCCCTCCGGTCATGCACCGCCCTCGGCCTGACCGCCACGCATACCGGCAAGGGCACTTTTGTCATCGCCGACAAAGTAGCCCAGGACCTCAAGCTCGGTAAATACTCCGCCAGCGCCCTGATGGAGGCCCGCCCCCACGTGGAAGTTCCGGCCGCAGGCCTCGCAGCCCAGCGCCGGACCAATGAAGACCTCGAGGCCCTCCGGGAGATTCTCCGGGAGATGTCCGAGGCCGAAAACCTCCAACAGTGGGTTCAACTCAACACCGAATTCCACGTGACCATTGCCCGTTCCAGTGGCAACGGCGTCTTCGAATCATTCCTCTCCGACATCGTTGAGGCCATGGCCAACCAGTCGAACACCCTCAACCTGGTGGCCGACCGCCGGAAGGAGTCCGGCGACGAGCACGCCCGCATCTTTGATGCGATCGAGCGCGGTTCGGCCGAGGACGCGTCGGAGGCCATGACCATGCACCTGCATGGCGTGGAGTGTGCCCTGGGCACCATCGTCCCCGGAAGCGGAAATACCAACGCTGGCCGCACAGGCTGAMGAAEAVFASLRGAIEGGKIPVGTRLDSEASLAKQYGVSRTMVREALRSCTALGLTATHTGKGTFVIADKVAQDLKLGKYSASALMEARPHVEVPAAGLAAQRRTNEDLEALREILREMSEAENLQQWVQLNTEFHVTIARSSGNGVFESFLSDIVEAMANQSNTLNLVADRRKESGDEHARIFDAIERGSAEDASEAMTMHLHGVECALGTIVPGSGNTNAGRTGNANANANANA
D1-29_040491485aspA_1COG1027Aspartate ammonia-lyaseATGAGCACCCCGAGCACCACCGCAGCCGCAACCACTATCGGCACCACCGCCGCTGCCGGCATTGCTACAAAGGCAGTGTCTACGCGTTCTGAGCATGATCTGCTCGGTGACCGGGACGTCCCGGCGGAGGCCTACTGGGGCGTGCATACCCTGCGCGCGGTGGAAAATTTCCCCATCACCGGGCAGCCGCTGTCCTCGAACATGCACCTGGTCCGCGGCCTGGCCGCGGTCAAACAGGCCGCGGCCCGCACCAACCTTGAACTCGGGCTCCTGGACCCCGAACGCGCCGCCGCGATCGAACAGGCCTGCACCGACGTGATCAACGGCCACTACGCTGACCAGTTCGTCGTGGACGTCATCCAGGGCGGCGCCGGGACCTCCTCAAACATGAACGCCAACGAGGTCATCGCCAACCGCGCCCTGCAAATCCTGGGCCACCCCAAGGGCGAATACACCCGCCTGCACCCCAACGACCACGTCAACCTCTCCCAGTCCACCAACGACGTCTACCCCACCGCCGTGAAACTGGGCACCATCTTCGCCGTCAAGGAACTCCTCGCCGCGCTCGAAGAACTCGAAGAAGCCTTCGCCGCCAAAGCCCTGGAATTCCGCACCATCGTCAAAATGGGCCGCACCCAACTCCAGGACGCCGTGCCCATGACCCTGGGCCAGGAATTCGGCACCTACGCCATCACCATCGGCGAAGACCGGCTCCGCCTCGCCGAAGCAAACCTGCTCATCCACGAAATCAACCTCGGCGCCACCGCCATCGGCACCGGCCTGAACGCCCCCGCCGGCTACACCGAAGCCGCCTGCCGCCACCTCGCCCACATCACCGGCCTGCCCCTGGTCACCGCCCCGGACCTGATCGAAGCCACCCAGGACGTCGGCGCGTTCGTCCACCTCTCCGGCGTCCTCAAACGCGTTGCCGTGAAACTCTCCAAAACCTGCAACGACCTGCGCCTGCTCTCCTCCGGCCCACGCGCCGGCCTCGGCGAAATCAACCTCCCCGCCGTCCAGTCCGGCTCCTCCATCATGCCCGGCAAGATCAACCCCGTCATCCCGGAAGTAGTCTCCCAGGTCGCCTACGAAGTGATCGGCAACGACGTCACCATCACCATGGCCGCCGAAGCCGGGCAACTCCAACTCAACGCCTTCGAACCCATCATCGTCCACAGCCTCCACAAGAGCATCTCCCACCTCCAGGCAGCCTGCACCACCCTCACCGCACGCTGCATCCGAGGCATCACCGCCAACACCGAACACCTGCGCCTGACCGTGCAACAATCCATCGGCCTGGTCACCGCACTAAACCCGCACCTGGGCTACACCACGGCCACCGCCATCGCCCAGGAAGCACTCGCCACCGGCAAAGGCGTCGCCGAACTCGTCCTCGAACACGGACTGCTCACCGACGCGCAGCTCCAGGAACTCCTCAGCCCCGAACGCCTGGCAAACCTCACCAAAGAACCCACCCAGCAATAGMSTPSTTAAATTIGTTAAAGIATKAVSTRSEHDLLGDRDVPAEAYWGVHTLRAVENFPITGQPLSSNMHLVRGLAAVKQAAARTNLELGLLDPERAAAIEQACTDVINGHYADQFVVDVIQGGAGTSSNMNANEVIANRALQILGHPKGEYTRLHPNDHVNLSQSTNDVYPTAVKLGTIFAVKELLAALEELEEAFAAKALEFRTIVKMGRTQLQDAVPMTLGQEFGTYAITIGEDRLRLAEANLLIHEINLGATAIGTGLNAPAGYTEAACRHLAHITGLPLVTAPDLIEATQDVGAFVHLSGVLKRVAVKLSKTCNDLRLLSSGPRAGLGEINLPAVQSGSSIMPGKINPVIPEVVSQVAYEVIGNDVTITMAAEAGQLQLNAFEPIIVHSLHKSISHLQAACTTLTARCIRGITANTEHLRLTVQQSIGLVTALNPHLGYTTATAIAQEALATGKGVAELVLEHGLLTDAQLQELLSPERLANLTKEPTQQPGPT0020125_861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020125-aspA-K01744NANA
D1-29_04050330hypothetical proteinATGACCGTTGAGCTCCAAAACCCTGCAACCGCACGCCGCATGCTGAATGAAGACCCCGCCCGCAGGAAAGAAGAACGGCGCCGTCCGATCAGATCCCAAATTATCGACTACCTTGCCAGCAACGGCGCCAGCAAGGTGGCAGATATCAGCAGCGACATCATCTGCTCCCGCGATTGCGTGAGGTACCACCTCGCTGCGCTGGAAAAGGCGGCGATCGTCCGTTCAAACATTTCCCCCGGAACCCGCGAGGGGTTTACGCCCTTCTACGCCCTCACCCCCGCGGCAGCCAGCGTCCGCGTCCAGCCCCGCCCCCAGAAAACCAGTTCATAGMTVELQNPATARRMLNEDPARRKEERRRPIRSQIIDYLASNGASKVADISSDIICSRDCVRYHLAALEKAAIVRSNISPGTREGFTPFYALTPAAASVRVQPRPQKTSSNANANANANA
D1-29_040512889hypothetical proteinGTGGCTAAAACATTCAATGTCGAGGTGCTCCCTGAGGATCTTGAGACCTCGGTCTACCTGCTCGAAACCGGACTGGGCGACGTCGACATCCAGGATCCCTACCTGGTCAACGGAAACCGGAAAACCATCGCCTACCTGCTGGGCCTTGACCCCGGGAAGTTCCTCTTCTCGTTCTACAAGCAGGCGGGCCTGACACCCACGACGGCGGCGGGTTACGGCGGCTGGGAACGCGAATCGGGCACACGCTTCCAGGGGCACTTCTTCGGGCACTACGTCTCGGCGCTGTCCCAGGCCTATGCCACAACCACTGATCAAGCCACCAAGGCGGGGCTGCTCACGAAGCTGACTGCCGCCGTCGACGGCCTGAAACACTGCCAGGATGCCTACGCCGTGAAGGATCCGGCCAACGCCGGCTTCGTCTCGCCGTTCCCGGTGACGTACCTGCCATCAGGGGCCGACGGCCTTCTGGTTCCCTTCTACAACCTGCACAAAATTGTTGCGGGGCTGCTGGCCGCCCATGACTATGCGCCCCAGGACGTCTCCGCCATGGCACTGTCGGTTGCTGACGGTTTCGCCACCTGGATCGCCAACTGGGCAGGCCGGCAGGCAGACCCTTCGGTGCTCCTCAGCACCGAGTACGGCGGCATGAACGAGGCGCTGTACAAGCTGTTCAGCATCACAGGGAAGCCTGCCCACAAGCGCGCGGCGGAATACTTCGATGAAGTTGCACTGTTCCAGAAGCTGGCCGCGGGCCAGGACGTCCTGAACGGCCTGCACGCCAACACCACCATCCCCAAGCTCATCGGGGCACTGAAGCGCTACACCGTCTTCACGGACAATCCGCGCCTGTACGCCACCCTTACAGACGTGGAGAAGAGCGGCCTGGGCATGTACCGTGCTGCTGCGGAGAACTTCTGGCAGATAGTGCTTGCACACCATACCTATGCCAACGGCGGAAACAGCTACTCTGAGCACTTCCACGCCGCCGGCACGCTCTACCAGTACGCCACCAACGGCCAGACCATCGGCTATGGGGAGAACTCGACGTCCGAGGGCTGCAACGAGTACAACATGCTCAAACTCTCCCGGGCCCTGTTCCAGGTCACAAAGGATGTGAAGTACGCGGACCACTACGAGTCAGCGTTCATCAACTCCGTCATGTCAGTCCAGAACCCCGAGACCGGCATGGTCACCTACTTCCAGCCCATGGCCCCCGGCTACGCCAAGGTGTTCGGCCACCAACAGGACGAGTTCTGGTGCGATCACGGTACCGGGATCGAAAGCTTCACCAAGCTCGGAGACTCCATCTACTTCGAAACCCGGGATTCGGTCTATGTGAACCAGTTCCGCTCGTCCGTCCTCCGCTCGTCCGCCCACAACCTGAAGCTGACCCAGAAGGCGGATGTACCCAACCACGAAACCGTCACCCTGTCGGTTGAGGCGCTGGATGGAGGGGCGGTTGTCGGCGGTACCAGCATCAGGCTGCGCATCCCGTCCTGGGTTGACGGAGTGCCCACCCTCCGCATCAACGGCGTCGAAACGGACATAGTGCCGCTCGCCACCGCCGGCTATGTGCTGGTGCCGGTGACTGCGGGAGACACCGCCTCCTACACCCTTCCCGCGAGGGTTACGGTGGAGGACAACACCGAAAATCCCAACTGGGTTGCCTTCAAGTACGGCCCCGTGCTGCTGGCTGCCGAGCTGAACCGCAACAACGTCAATGCTGCCTATACGTCCGGTGTCCTTGTCCGGATGGGCACCGCGGATAAGACGGTCAACTCCCATGTCGTCGTGGACGACGCGGCCGCCTGGAAGCAGGGCATCGGGAGCAACCTGGTGCGCATCCCGAATGGCCGGAACGCGAACGGCACAGAGGCCATGCGGTTCTCGCTCCGGAACGTCGATGAGGCGTCGGCGGCATTAACGTTCGAGCCGTATTACAGCCTGTACAACGCACGGTATGCCATCTACATGACTCTCGTTGAGCCGGATTCCGCGGAGGCGCAGGGGCTGATCCGCAAGGAGAAGGAACGGCTGCGGATCGACGAAACCACCATCGATTCACTGACTTCGTTCGACAACAACAACAGCGAGGCTGACAAGAACTACAAGTACAACAAGTCCGCGGTGGGGACCTTCCACGGACAGGGGTTCCGGGACGGGCAGCGGGCCACCGACGCCTACTTCCAGTACGAGATGATCGTGGACCCGGCACTCGAGGAAAACTACCTTGGAGTGCGCTACTACGGCGGCGACGACGGCAGGAGCTTCGGCGTCTACCTCAACGGTGTGCTGCTCAAGGACGAAGTGGTCACCAACGCCAATGGAGCCACCACCTGGTACACCCAGTACGAGCAGATTCCCCCAGTGGTCCTGGAGGGGATTGCCGCAAGGGACAGCTACAAGCGCGACCAGAATGGCAACTATGTGCTCGATGCGGACGGTGCAAAGGTGCCTGTCGTGACGGTCCGCTTCCAAGGCAACGGCACAAGCTTTGTGGGCGGTGTCTACGGCGTGTCCATTACGTCCAGCAACGCCTTCGGCACCAATGCCCGGCTGAAGGCACTCACCTCCGGCACCGGCGTCCTGAGTCCGGCACTGGCGGAGGACATCTATTCGTACACGCTGACGGTGCCGGCGGCGGCCACAAGCGTAACTCTCGACGCCGAGCCGGCGGCGGGAAGCGGACTGGTGCTGATCGGCGACATCCTGATCGACGACACCAAGACGCGCACCATTGCCCTGGAACCCGGCGCGGAACGCACCAACATCGTCCTGACCACTTACGCGCAGGACCATGCCACTACAGCCACCTACCGGATCGCCATCGTGCGCGCAGATCCGGAACCCGCATTGGCCCCGACTGCTTCCGTCCTGCATATTGACTGAMAKTFNVEVLPEDLETSVYLLETGLGDVDIQDPYLVNGNRKTIAYLLGLDPGKFLFSFYKQAGLTPTTAAGYGGWERESGTRFQGHFFGHYVSALSQAYATTTDQATKAGLLTKLTAAVDGLKHCQDAYAVKDPANAGFVSPFPVTYLPSGADGLLVPFYNLHKIVAGLLAAHDYAPQDVSAMALSVADGFATWIANWAGRQADPSVLLSTEYGGMNEALYKLFSITGKPAHKRAAEYFDEVALFQKLAAGQDVLNGLHANTTIPKLIGALKRYTVFTDNPRLYATLTDVEKSGLGMYRAAAENFWQIVLAHHTYANGGNSYSEHFHAAGTLYQYATNGQTIGYGENSTSEGCNEYNMLKLSRALFQVTKDVKYADHYESAFINSVMSVQNPETGMVTYFQPMAPGYAKVFGHQQDEFWCDHGTGIESFTKLGDSIYFETRDSVYVNQFRSSVLRSSAHNLKLTQKADVPNHETVTLSVEALDGGAVVGGTSIRLRIPSWVDGVPTLRINGVETDIVPLATAGYVLVPVTAGDTASYTLPARVTVEDNTENPNWVAFKYGPVLLAAELNRNNVNAAYTSGVLVRMGTADKTVNSHVVVDDAAAWKQGIGSNLVRIPNGRNANGTEAMRFSLRNVDEASAALTFEPYYSLYNARYAIYMTLVEPDSAEAQGLIRKEKERLRIDETTIDSLTSFDNNNSEADKNYKYNKSAVGTFHGQGFRDGQRATDAYFQYEMIVDPALEENYLGVRYYGGDDGRSFGVYLNGVLLKDEVVTNANGATTWYTQYEQIPPVVLEGIAARDSYKRDQNGNYVLDADGAKVPVVTVRFQGNGTSFVGGVYGVSITSSNAFGTNARLKALTSGTGVLSPALAEDIYSYTLTVPAAATSVTLDAEPAAGSGLVLIGDILIDDTKTRTIALEPGAERTNIVLTTYAQDHATTATYRIAIVRADPEPALAPTASVLHIDPGPT0019100_11DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_ARABINAN_BREAKDOWN,PGPT0019100-hypBA-K09955NANA
D1-29_040521350hypothetical proteinATGAAAGTTATGAAGCGTTTATTGACCGGCGTGGCGGTCCTGACGACGGCAGCCACCCTGGCGGCGTGTGGCGGCGGCGCCCCCACGCCGTCGGCCTCAAGCACCGCAGATGCCGGTATCGAAGGCACTGACGACAAGCCCATCACCCTCGAATACTGGGGTTGGGCCAAGGGCACGGGCGAGCAGGTCAAGCTGTTCAACGCCGCCCACAAGAACGTGCAAATCAAGTTCACCGAGGTCAAGGGCGGCAGCGACGCCCTGAACGGCCTGCGCAACGCCGCCTCCGCGGGCAACGCCCCGGACCTCCACCAGGGAATCCAGGACTGGATGGTCCCCCTGGTGGCGGAGAACATCATCACGGACATCACTGATTGGGTTACCCCCGCTGAGAAGGAATTCAAGGCCTCCGCCTTCAATTCCTCCAAGGTGAACGATAAGAACTACATTGTGCCGAACGCCCAGGCACCGCAGTTCTTCGTGTACCAGACCCCCGTCTATGACAAGCTGGGCCTCAAGCCCCCCAAGACCATGGAAGAGTTTGTGGACCAGGGCAAGGTGCTCGGAGCCGCAGGCCACAAACTGACCAACATGGCAGGCGAAGACCCCTCCACGCTGGTGAACTGGGCCTGGCAGGCCGGGGCCTCCTGGTACAAGGTGGACGGCGACTCCTGGAAGATCAATTTCCTGGACGACGCCACCCTCGAGGCAGCAGACGTAACCCAGAAGCTCATTGACGAGGACGCCATCTCCACCCAGACGTTCGCCGACTATGCCGCCGTCCAGCAGATGTACGACAAGGCCAACACCGCCACCCGCCACATCTGGACCTGGTCCACCAACGGCATGGTCAACAACTTCAAGGAGTCCTTCGGCAACTGGGCTGCTGCCCCGATCCCGGAGTTCAGCACGGGCGGCAAGGCCAACGTCAGCCCCATCGGCGGCACGTTCGTCACAGATCAGTCCAAGAGCAAGAAGGCAGCAGCCGAGGCAGCCGTCTGGCTCGCCACCAACAAGGAATCCGTCACGCTTGCCGCGGACCCCATCAAGGGTTCCTCGGCGTTCCCCGCCGTGGCTGACTCCGATTCCTACGTCGCCAACATGCTGCCGGAAAAGCTTTTTGGCGCCAACCACGCCGAAGCTGTCAAGGTGGCCACCCAGGCCTCCAAGGACATCGCCGGAGACTGGACCTACGGCCCCAACTACACCGCGATGTACACGGAAATGGCCGATGGCTGGGCCAAGGTCATCACCAAGCAGCAGAAGGTCACCGCACTGCTTGAACACATGCAGGAATGGACGGTGGATGACCTGAAAAAGAAGGGCATCAACGTCATCGACGGGTCCAAGTAGMKVMKRLLTGVAVLTTAATLAACGGGAPTPSASSTADAGIEGTDDKPITLEYWGWAKGTGEQVKLFNAAHKNVQIKFTEVKGGSDALNGLRNAASAGNAPDLHQGIQDWMVPLVAENIITDITDWVTPAEKEFKASAFNSSKVNDKNYIVPNAQAPQFFVYQTPVYDKLGLKPPKTMEEFVDQGKVLGAAGHKLTNMAGEDPSTLVNWAWQAGASWYKVDGDSWKINFLDDATLEAADVTQKLIDEDAISTQTFADYAAVQQMYDKANTATRHIWTWSTNGMVNNFKESFGNWAAAPIPEFSTGGKANVSPIGGTFVTDQSKSKKAAAEAAVWLATNKESVTLAADPIKGSSAFPAVADSDSYVANMLPEKLFGANHAEAVKVATQASKDIAGDWTYGPNYTAMYTEMADGWAKVITKQQKVTALLEHMQEWTVDDLKKKGINVIDGSKPGPT0016545_3640DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_04053954lacF_13Lactose transport system permease protein LacFATGTCCACCCAGATCCTGAGGACGGAAAGTTCCGCCCCCGCACCTGCAGCTGCACGCCGGCGCATTACGTGGCGGACGCTGCTGGCAGCCAAGGGAGCAGCGTTCACACTGCCATTCGTCGTCGGCTTCATCATCCTCTTTATCCTGCCGATTGCTTACGCAGTGGTGCAGAGCCTGTACACCGTTAAGTCCTCCGGGCTGGGCCTGAGCGGCAACCAGACGGTGTTTGTCGGCCTGGACAACCTCACTGCCGCCGCCACCGATCCGCGCTTCTGGGAGTCCATGGGACGGGTAGCTGTCTTCGCGTGCATCCAGGTTCCCATCAAGCTGGCCATCTCCCTGCTGCTGGCCCTCGGCCTTGACTACCTGAAGGGCCGGGTGGTGGCCGGGTTCCGGATTGGCCTCCTGGTTCCCTACATGATTCCGGGGATCGTGGGCACGCTCGTGTGGATCTACCTCTACTCCCCCAACATCGGCCCGCTGACCGAGATCGGCAAGTTCTTCTCCCTGGACTGGAACTTCCTCTCCGAGGCCATGATGTGGCCCTCCATCGGAAACCTGCTGACGTGGGACAGCATCGGCTTCAACATGCTGATCATCTACGCATCGCTGCAGGCCATCAGCCCGGAACTCTTCGAAGCCGCACGGATTGACGGCGCCGGCGAAGGACGCATTGCCTTCTCCATCAAGGTTCCCTTTGTCCGCTCCGCGCTGGTCCTGACCGGCATGCTCTCCATCATCGGGCTGCTGCAGATCTTCGCGGAGCCCCTGCTGTTCCGCTCCTTTGTCCCGGAAGTGGTCACCAAGGACTACACGCCTACCCTGATGATCTTCAACCAGGCCTTCGACGCCAACAACTACAACTATGCAGCGGCACTTTCGCTGGTCTTCGCCTCTGTCATCGCCCTGGTGTCCTTCTTCTACTACAAATTCACCAACAAGCCGGAAGCCTAGMSTQILRTESSAPAPAAARRRITWRTLLAAKGAAFTLPFVVGFIILFILPIAYAVVQSLYTVKSSGLGLSGNQTVFVGLDNLTAAATDPRFWESMGRVAVFACIQVPIKLAISLLLALGLDYLKGRVVAGFRIGLLVPYMIPGIVGTLVWIYLYSPNIGPLTEIGKFFSLDWNFLSEAMMWPSIGNLLTWDSIGFNMLIIYASLQAISPELFEAARIDGAGEGRIAFSIKVPFVRSALVLTGMLSIIGLLQIFAEPLLFRSFVPEVVTKDYTPTLMIFNQAFDANNYNYAAALSLVFASVIALVSFFYYKFTNKPEAPGPT0016535_7580DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_040541029hypothetical proteinATGAGCACCACCACCCCCGCCACCGGCGCCGCTGCCCAGGACGATGCGGCGCTGACCCCGGTCATCGTCCCGTCAGCGCCGGAAGAAACCGGCCACCTCCCGGCCAAGGAACGGCGCCGCGCCAAACGCCGCGCCAGCCTCACCCGCCGCGGCCTGCCTGTCGGGGCCAAGCAGAACAGGGCCACGCAGCTGCTGGTCTTAGCAGGACTGGGCCTGGCCGTCATCTACTCTGCGGGCCCCATCTGGTGGCTCATCGTCGCGTCCACCAAAGGCCAGGCGGACCTCTACGCCTCCACCGGTTTCGAGTCACTCTGGTTCGCCGAATTCAACCTGTGGGAAAACCTGCAGCAGATCTTTATCTACGACGAGGGCTTCTTCCTCCGCTGGATGCTCAACTCCATCCTCTATGCCGGCGTCGGCTCCTTTGTCGGCATGATCATCTCGCTGGCCGCCGGCTACGGCCTGGCCCGCTACGAGTTCTGGGGCAAAAAGGCGGTCTTCGGCGCCGTCGTCGCGTCCTTCCTCCTGCCCAGCGCCCTGCTGACCATCCCGCTGTACCTCCAGTTTTCCGCTTGGGGACTCGTCGGCCGCCCGTGGGCCGTCCTGATCCCCTCCTTCATCAGCCCCTTCAGCGTCTACCTGGCGAAGGTCTACATCGAAGGGGCCATCCCGCCGGAAATCCTGGAAGCAGCGCGGATTGACGGCGCCGGCGAGGTCCGCATCTTCTTCCAGGTGGTCATGCGGCTGATGACCACCGGCGGCGCCACAATCTTCCTGCTCGCCTTCGTGGGCAACTGGAACAGCTTCTTCACACCGCTGACCATGCTGGGGGCATCCGGCAAGGAAAACTGGCCCCTCGCGCTGGGACTGTACGCCTGGTCCGGGAAACGCACCCTTGAAGGTGAGAGCATCGACGGGACCAGCATGCTGATCCTTGGCTCGCTTCTGGCCATCATTCCGCTCGCCGTTTTTATGATTGCCATGCAGCGCTTCTGGAAGACCGGCGTTACGCTCGGCGCCGTCAAGTAAMSTTTPATGAAAQDDAALTPVIVPSAPEETGHLPAKERRRAKRRASLTRRGLPVGAKQNRATQLLVLAGLGLAVIYSAGPIWWLIVASTKGQADLYASTGFESLWFAEFNLWENLQQIFIYDEGFFLRWMLNSILYAGVGSFVGMIISLAAGYGLARYEFWGKKAVFGAVVASFLLPSALLTIPLYLQFSAWGLVGRPWAVLIPSFISPFSVYLAKVYIEGAIPPEILEAARIDGAGEVRIFFQVVMRLMTTGGATIFLLAFVGNWNSFFTPLTMLGASGKENWPLALGLYAWSGKRTLEGESIDGTSMLILGSLLAIIPLAVFMIAMQRFWKTGVTLGAVKPGPT0016540_2670DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_040551074Formate dehydrogenase, mitochondrialATGCACACATCGAGCGCCACCTCGCCGGCCCACCCACATACCGCTCCCCGGCAGCCCGTTACCATGGCGGTGATGGCTCCGCCAGAACTGTTCGGCCAGCTGATCGCCGCCGATTCGCTGGAGCGCCTGCATGGCGTTGCCGACCTTCGCGGCCCCGTCTTTGAGGACTTCTCCTCTGCTGATGCCAGGGCCCTCCTGCCGGAAGTCGAGGTGCTGATCACCGGCTGGGGCTGCCCGCCTCTGCCGCCAGAGGTGCTGGACCTGGCCGTCAACCTCAAAGCCATCATTCACGCGGGCGGAGTCGTCGGCGACAAGGTGCCGCCCCTTCCCGCGGGCCGGGTGATCACGGCGTCGAACGCCGGAGAAGCCAACGGCATCCCCGTGGCCGAGTACAGCCTGGCCATGATTCTGCTCGCCAACAAGCAGACCTTCGACGCCGTACGGATGTACCGCACGCGACGCAACTGGATAGACCGGGAGAGTGAATTTCCGACGGCGGGCAACTACCGCAAGACCGTCGGACTCGTTGGCGCCTCCCGGATCGGCCGCGCCGTGGCCAAACTCCTGCAGCCGTTCCACCTTGACGTCCTGGTATACGACCCGTACCTCAGCAACTACGACGCCAGGGCGTTCGGGGCGGAGCTGGTTCCCCTCGCTGCCCTGATGTCCCGCAGCGACGTGGTTTCCCTGCACGTGCCGGTCACACCAGAAACGACAGGGATGATTGGCGCGGACGAGCTGGCCCTGCTGCGGCCTGGAGCCACCCTCATCAACACCGCCAGGGGCGAAGTCCTGGACCAGGAAGCCCTGGAAGCGGAACTCATGTCCGGGCGGATCAACGCGATCCTGGACGTCGCGGTACCCGATGTACTGCCGCCCGAGCACGTCTTTTACGACCTTCCGAATGTCCTGCTCACCCCGCACATCGCCGGGTCCATGGGAACGGAGCTGCTTCGGATGGGCGACCACGTGGTGTCCGAACTGGAGCGCTACGTGGCCGGGATGCCCTTTGAACACCCCGAAATCCTTGCATCCTTGCCCGATTCGATGCCTCCTCGGGAGACCTCCGCATGAMHTSSATSPAHPHTAPRQPVTMAVMAPPELFGQLIAADSLERLHGVADLRGPVFEDFSSADARALLPEVEVLITGWGCPPLPPEVLDLAVNLKAIIHAGGVVGDKVPPLPAGRVITASNAGEANGIPVAEYSLAMILLANKQTFDAVRMYRTRRNWIDRESEFPTAGNYRKTVGLVGASRIGRAVAKLLQPFHLDVLVYDPYLSNYDARAFGAELVPLAALMSRSDVVSLHVPVTPETTGMIGADELALLRPGATLINTARGEVLDQEALEAELMSGRINAILDVAVPDVLPPEHVFYDLPNVLLTPHIAGSMGTELLRMGDHVVSELERYVAGMPFEHPEILASLPDSMPPRETSANANANANANA
D1-29_040561689xynBCOG3507Beta-xylosidaseATGACACTGCTCACCAACCCCGTGCTGCCGGGCTTCTCGCCGGACCCCTCACTGATCCGCGTCGGCGACTGGTACTACCTGGCCAACAGCTCCTTCGAGTGGTATCCGGTGATCCCGATCCATCGCTCGCGGGACCTGAAGACGTGGGAATTCGCAGGCTCCTTCACGGGCCCGGACGCACGCGTGGAGCTCAGGGGCCTTCAGGACTCTGGCGGTGTGTGGGCACCGTCGCTGAGCTGGTCCGACGGCGACTTTTGGCTGGTCTTCACCGTGGTTCGCGGTTTTGGCGGGCCGCACAAGGACATGGACACCTACATTTCCCGGGCCGCCGACGTGGCAGGGCCGTGGTCCGCGCCCGCGCGGGTTACCACCACCGGCTTCGACCCGTCCCTCTTCCACCACAACGGCCGGCACTGGCTGGTCAACATGGAATGGGACCACCGCCCCACGGGCCGCGGCGGCTTCGCCGGCATCAACCTGCAGGAGGTGAACGCCGCGGGCACAGCCACCATCGGCACCCCCAAAATCATCCACCGCCGGGACGTCCTGATCGAGGGTCCAAACCTGTACTCCTTCAACAACCGCTTCTACCTCATGCTGGCCGAGGGCGGAACGGGACAGAACCACGGCATCGCCATGATGCGCTCCGACAACCTTTTTGGCCCCTACGAGCCGGATCCGCTGGGGCCCGTCCTGACCACAAGGGACCTTCCCAGCCACGAACTGCAGAAGGCAGGCCATGGCGAGATCGCCGTCGGACATGACGGCACCCTCTACTTGGCCCACCTGGCCAGCCGCTGGGCTGAAAGGGACGGCAAGCAGTATTCGGTCCTCGGCCGGGAAACCTGCATCCAGCGGCTAGCCTTCACCGACGACGGGTGGTTGCGGCTCGAACAGGGCGGCCGGCACCCTGACGTGGAAGTCCGGGGCCCGCTGCCTGCCGTTTCACCGACTCCCGACCGTGACGGTGACGGTGACTTAGCCGGTGACCCTGACGGTGACCCTGGCGAGGACGCCGGATTCGGCGGCTTCACGCCAACTTCCGACGCCGATGGCGGCACCACGGTGGGCTGGCCCTGGAGCACGCTGAGGCATCGTCCCCATGCTGAATGGGCCAGCCTGGACGCCCGGCCTGGCTGGCTCCGGCTTCGCGGCAGGCACAGCACAGACTCATTCTTCGACCAGTCGCTGGTGGCCCGCCGCCTGACCTCCCCCGACGTCACAGCCGGAGTGACGCTGGAGGCCAGTCCCGCCAATTTCACCCAGAGCGCGGGCCTCATTTTCTACTACAACACCGCCAGCTACTTCTATCTCAGGACAACGGTGCGGGAAGTGGGCGGAGACCTGGTGGACGGCGATGCCCCCGTGGAGCAGATCCTGGAAGTGTTCGAACGGGACCCGTTCACCGGCCTGCAGTCACACGGGGCCGTTGTGGTGGAGCCGGGACTTCCGCTCCGCCTCGAGGGCAGCATCAACGGCGACCGGGCGCAGTTCCGCTGGGCCCAGGGCGGCAATCCGTTGAGCCCCATCGGGCCGGAACTGAACGCGCTGCAGCTCTCAGACGACCACGGCCACGTCCTGCGGTTTACCGGCGCTTTTGTGGGTATTGCGGCGCAGGATCTCCGGGACAGGAGCTTCAGCGCAGACTTCACGGATTTCCGCTACGACACGGGCGAGGCTGACCGATGAMTLLTNPVLPGFSPDPSLIRVGDWYYLANSSFEWYPVIPIHRSRDLKTWEFAGSFTGPDARVELRGLQDSGGVWAPSLSWSDGDFWLVFTVVRGFGGPHKDMDTYISRAADVAGPWSAPARVTTTGFDPSLFHHNGRHWLVNMEWDHRPTGRGGFAGINLQEVNAAGTATIGTPKIIHRRDVLIEGPNLYSFNNRFYLMLAEGGTGQNHGIAMMRSDNLFGPYEPDPLGPVLTTRDLPSHELQKAGHGEIAVGHDGTLYLAHLASRWAERDGKQYSVLGRETCIQRLAFTDDGWLRLEQGGRHPDVEVRGPLPAVSPTPDRDGDGDLAGDPDGDPGEDAGFGGFTPTSDADGGTTVGWPWSTLRHRPHAEWASLDARPGWLRLRGRHSTDSFFDQSLVARRLTSPDVTAGVTLEASPANFTQSAGLIFYYNTASYFYLRTTVREVGGDLVDGDAPVEQILEVFERDPFTGLQSHGAVVVEPGLPLRLEGSINGDRAQFRWAQGGNPLSPIGPELNALQLSDDHGHVLRFTGAFVGIAAQDLRDRSFSADFTDFRYDTGEADRPGPT0018665_1303DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198NANA
D1-29_04057993ccpA_11COG1609Catabolite control protein AGTGCCTGTGCTGAGCGACGTCGCCAAGGCCGCCGGCGTGTCCGTTCCCACGGTTTCGCGCGTCCTGACCAGCAGCAAGTTCGTGGCCCCGGAACTGCGCGAGCGCGTGATGAAGGCTGTCGGCGAACTTGGCTACCGGCCCAACGGCGCCGCGCGCGCCACCCGCTCCGGAAAACGCTCCATGGTGGCGGTGCTGACGGGCGGAACGTCCAACTACGGCTATGCCAGGACCATCGAGGGCATCGAGAAGGCGGCCCGCGAATCAGGCATGTCCGTGATCATCGCCGTGGTGGAATCCGATGACGACGACGCCGTGAACTCCGCGATCGACCTCGTCCTGTCCCAACCGGTGGCCGGCGTCATCATCCTGGAGTTCGACCGGCCTGGCCTGGCCGCCGTCAAGGCTTTCCCGTCATCCATCCCGCTTGTGGTGGCAGGTGGCGGGACCAGGCGCACCGGCAAGGCACCCGGCGCCCTGCTGGATGAACGCGGAGCCGGCAAGGATGTCACCAATCATCTGCTCTCGTTGGGGCACAAGACCGTCCACCACGTGTCGGTACCCACCATGGGCAAGCACTCTGGCCGTACCGACGGCTGGCGCGCGGCGCTGACAGCCGCCGGCGCCGTCATTCCTCCGGTGCTGCACGCCACGTGGGAGCCTGCCAGCGGTTACCGGGTGGGCCAGGAACTGGCGGCCAGGGATGAAGTAACGGCGGTATTCTGCGGCAACGACGACATCGCCATCGGTGTTGTCCGGGCGCTGCTGGACAGCGGCAAGCGCGTCCCGGAGGACGTGTCGGTGGTGGGGTTCGATGACCAGCCGCACGTCGCCTTGTGGCGGCCCGCGCTGACCACCGTCCGGCAGGATTTCCAGGATCTGGGGGCCAGGGCGTTTGCCCTGCTGGCCTCCACTGTGGAAACGGGCACCATCCCGGCCTCGTCCACGGTCAAACCCGAACTCGTCCTGCGGGAGTCAACCGCCGCCCTCGGCTAAMPVLSDVAKAAGVSVPTVSRVLTSSKFVAPELRERVMKAVGELGYRPNGAARATRSGKRSMVAVLTGGTSNYGYARTIEGIEKAARESGMSVIIAVVESDDDDAVNSAIDLVLSQPVAGVIILEFDRPGLAAVKAFPSSIPLVVAGGGTRRTGKAPGALLDERGAGKDVTNHLLSLGHKTVHHVSVPTMGKHSGRTDGWRAALTAAGAVIPPVLHATWEPASGYRVGQELAARDEVTAVFCGNDDIAIGVVRALLDSGKRVPEDVSVVGFDDQPHVALWRPALTTVRQDFQDLGARAFALLASTVETGTIPASSTVKPELVLRESTAALGPGPT0014791_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
D1-29_040582184hypothetical proteinATGACCCTTGCGAACCTCAGTCCCGAACTAGAGGACAAGCCGCCGACTCCCGACGTCGCGGATGGTGGGGAGATCCTGTCCTGGGGAAACGACTGCCTTCAGCTTCACATTCTGCACGGTGATGACATCGCCCCCAGGCTCCTCGCCATCCAGCACGAACAGGCCCCGCTGGCCGACCTGGAGGAGCTGCGCCAGGCTTCCCTGCCCATCGTCGAGATTGCCCTGGCCGGCGACGGCCGGCACGGTACAGCGGGAAAGCGGCACGTGGACGGGGCTGCGGCCCAGCGGCTGCGGCTGTCCGGCACGCGGGAAACGGTGGCCAACGGCGTACGGGGGCTGGAACTGCAAGCCACAGATCCCGTATCGGGTATCACTGCTGCCGTGCACTATGAGCTTGCCGGCGGCTCCTCCGTCCTGCGCTGCTGGACGGAACTTCGGGCGGGCAGCTCCGCCGTCGGCGTGGAATATGTCTCCTCGTTCACCCTTTCCGGGCTGGGGCATGGCAGGGACTGGGAAGAGGAGCTTGCCCTCTGGCAGGCCGCCAACCCGTGGTCCGGCGAGTTCCGCTGGCGGCGGGCCACACTGGCGGAACGTGGCCTCTATAACGTCGGAATGGTGGAATACGGCCAGGTTGGATCCAAGAACCGGGTGGGTGCCACGTCCATCGGGGCCTGGTCCACTGCCGAACACCTCCCCATGGGCATCCTGGAGGACGCCGGCACCGGGAGCATGCTGGCCTGGCAGCTGGAGCACAACGGTGCCTGGCATTACGAGCTCGGCGACCGCTACAACGATCTCTATCTCACGGTCTCCGGCCCCACCGCGGCCGAGCACCAGTGGGGCGTCACGCTGGAACCGGGCGAAACGTTCACCACCGTCCCGGCCTCCGTGGCTGTTGTCCCGGCCGGCGGCCTTGACGCTGTCGCGGCCGAACTGACTGCCTACCGCCGGCGCATCCGGCGGGCCCACCCTGACAACGTGGCCCTGCCGGTCATCTACAACGACTTCCTGAACTGCCTCATGTCGGACCCCACCACCGAAAAGGAGCTGCCGCTGATCGCTGCCGCCTCAGCGCTGGGTGTGGAGGTCTTTTGCATCGACGCCGGCTGGTACGACGACGAAAACGGCGGCTGGTGGGACTCGGTGGGCGAATGGGAACCCTCCATCAAACGCTTCCCCGACGGCGGCCTGGCCGGGCTGCTCGGAAAAATCCGTGCAGCCGGCATGAAGCCTGGCCTGTGGCTCGAGCCCGAGGTGGTGGGCGCCAGGAGCCGGATCGCGGAGCTGCTTCCAGCCGAAGCCTTCTTCAGCCGCGGCGGAGAGCGGATCAAGGAATGGGGCCGCTACCAGCTGGACCTGCGGCACCCCGCGGCCCGGGCGCACCTGGACGGGGTGGTGGACCGGCTGATGGACGATTTCGACCTCGCCTACCTCAAGCTGGACTACAACGTGGACATCGGAGCGGGCACAGACCTCAACGGCGCTGTCGGCGCGGGCCTGCTGGACCACAACCGCGCATTCCTGGCCTGGGCCTCGGCAGCAATGGACAGGCACCCCGGCCTGACCATCGAAGGCTGCGCCGCGGGCGGATCCCGGCTGGACGGCGCCTCGGGAGCGGTGTTCCCGGTACAGTCCCTGACAGACCAGCAGGATTTCGTCAAGACCCCGCCTATTTCCGCCGCGGCGCCGCTCACGCTCACGCCGGAACAGTCAGGTGTCTGGGCGTCCGTGGAGGGGTCCATGGGCGATGAGCAGCTGGCCTTTTCCCTGGTCAGTGCGCTGCTGTCCCGCGTCCACCTGGCAGGCCGGATCGATACCCTGGATCCCGTGCAATTGGAGGTGGTCCGCGCTGCACTGGAGGTCTACAAGGGATTGCGTGCCGGCATTCCCACCAGCCTGCCCACGTTCCCGCTGGGACTTCCCGCGTGGCGTGATGACTGGATCGCGCAGGGCTCCAGGCTGGGCCAGTCAACGCTGGCCATTGCAGTCCACCGGCGGGGAGGCGACGTGGAGCAGTCCATCGAGCTGCCTGCCTGGCTGGGCCAGAACCCCGACGTGACGGTGGCCTATCCCGCCTGGGGTGCGGCAGACGCCGTCGTACTTTCCGAAACGCCGGGGACGGCTGTCCTGAAGGTGACCCTGACCGAGGTGAACAGCGCCCGGCTGATCCTCCTCCGCGCCTAAMTLANLSPELEDKPPTPDVADGGEILSWGNDCLQLHILHGDDIAPRLLAIQHEQAPLADLEELRQASLPIVEIALAGDGRHGTAGKRHVDGAAAQRLRLSGTRETVANGVRGLELQATDPVSGITAAVHYELAGGSSVLRCWTELRAGSSAVGVEYVSSFTLSGLGHGRDWEEELALWQAANPWSGEFRWRRATLAERGLYNVGMVEYGQVGSKNRVGATSIGAWSTAEHLPMGILEDAGTGSMLAWQLEHNGAWHYELGDRYNDLYLTVSGPTAAEHQWGVTLEPGETFTTVPASVAVVPAGGLDAVAAELTAYRRRIRRAHPDNVALPVIYNDFLNCLMSDPTTEKELPLIAAASALGVEVFCIDAGWYDDENGGWWDSVGEWEPSIKRFPDGGLAGLLGKIRAAGMKPGLWLEPEVVGARSRIAELLPAEAFFSRGGERIKEWGRYQLDLRHPAARAHLDGVVDRLMDDFDLAYLKLDYNVDIGAGTDLNGAVGAGLLDHNRAFLAWASAAMDRHPGLTIEGCAAGGSRLDGASGAVFPVQSLTDQQDFVKTPPISAAAPLTLTPEQSGVWASVEGSMGDEQLAFSLVSALLSRVHLAGRIDTLDPVQLEVVRAALEVYKGLRAGIPTSLPTFPLGLPAWRDDWIAQGSRLGQSTLAIAVHRRGGDVEQSIELPAWLGQNPDVTVAYPAWGAADAVVLSETPGTAVLKVTLTEVNSARLILLRAPGPT0018835_861DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0018835-rafA|galA-K07407NANA
D1-29_04059417hypothetical proteinATGCTTTTTGTCGGCAATGATGACACAATTGGGCACCGGCGGAAGATGGGTGGTTCGTCTGCAGTCTCCGGGCCTGAGGCGTCGAGTCTCCGGCCTGCGCATTGCGGTCAGGCAATGCAGCTGACCGTCCATCGGGCTGCTGGAGATTCCACTTTATCCAGCCCGCAAGCCGGTGATGATCTGCGCCTTGTTTGGCAATGCCGGTGCGGATTCACTCTTGATCCGCAGCCGGACCCGCGGGAAGACGTGTGGGCTGCCGCCGCCTCGGTTGAAACCTGCCAATGGGAGATGGACCAGGCCCTCCTCCAGCTCCGCACGGCAATTCGGAGCGCTTCGGCCAAAGGCGTCTCCAGCGAACTGCTTGCCGATGCAGGTCAGCTCTCGTGCCTTGAAATCCAGTCGATCCTGAACGAATAAMLFVGNDDTIGHRRKMGGSSAVSGPEASSLRPAHCGQAMQLTVHRAAGDSTLSSPQAGDDLRLVWQCRCGFTLDPQPDPREDVWAAAASVETCQWEMDQALLQLRTAIRSASAKGVSSELLADAGQLSCLEIQSILNENANANANANA
D1-29_04060264hypothetical proteinATGCCATTGTCCGATAGGGAGCGGAAACTGCTGGAGGAACTGGAGTTTGACCTGGCAGCAGACGATCCGCCCCTTGCCCGCAAACTCTCATCAGGCTCGCTGGAGGCTGCGTTCAGGGCAAGTACCTACTTCGCCGCCATGGCCTGCCTGATCGGGATGGTGTTGCTTATCGCCGGAGTTGCTTCACAGATCATCGCCGTCGGCATCGCCGGCTTCCTGCTGATGGGTACGGGCGCCTACCTGTTCACCTGGAGGCGCCGCTGAMPLSDRERKLLEELEFDLAADDPPLARKLSSGSLEAAFRASTYFAAMACLIGMVLLIAGVASQIIAVGIAGFLLMGTGAYLFTWRRRNANANANANA
D1-29_04061267hypothetical proteinATGATGCAGATCGTGACAGGAAAATTCGAACTGGTGGTAACCAATCGCGGGGCTTTTGGTTTCAGGCTGTTGTCCAGCACGGGAGAAGTGCTTGCGGTCTCCGAAACCTACAGCGACAAAGATACGGCCGTTGCTGCCATCCGGGACGCACGCGAGAGTGCAGCAATGGCGCTCATCAACGATTGCACCCTGCCGCCGCGGCCCTCAACGCCCTCCCCCGCAGCACCACGCTTCAACGCGCAGGGTCCGTCGCGCTGGTTCGGCTAGMMQIVTGKFELVVTNRGAFGFRLLSSTGEVLAVSETYSDKDTAVAAIRDARESAAMALINDCTLPPRPSTPSPAAPRFNAQGPSRWFGNANANANANA
D1-29_04062252hypothetical proteinATGAATGCCAAAGATGAAGGCACCCTCGGCAGTCCTGTCCCGGAACCCGAAGCCGGGCTGAACCGTGATCCCAAGGATTGGGTGACTGGTGACGAACCCATGACGGCGGCGCAGCGCAGCTACCTGGACACCCTCGCCCGCGAGGCAGGCGAGGAAATCTCCGCGGACATCACCAAAGCGGAAGCTTCCGAGCACATTGACCGGCTGCAGAAGCGCAGCGGCAGGCTGTCCGAGGGGGCGGCCGATGAGTAAMNAKDEGTLGSPVPEPEAGLNRDPKDWVTGDEPMTAAQRSYLDTLAREAGEEISADITKAEASEHIDRLQKRSGRLSEGAADENANANANANA
D1-29_04063855menH_62-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseGTGTTGTCGTACGAATTGTCGCTGCCTCAGGGGCCGGCACGGGCCGTCATTGTGGCGATCCACGGCCTGGCGGAATCGGCCGAGTGCCTTGAGGCTGCCTTTCCGCACTGGCTTTGCCACGGATGGGCTGTCCTGTCGATCGACCTCCGTGGCCACGGCAATTCTCCCCGCTGGTCTGACGAAGATCTCAGCAAGCATCCGGGCGACGTCATGGTGCAGGACGTCCTGGATGTCTTTAGGCCAGCGGACCTCCGCGACGTGGCGGGCCTGCCCGTTCTCTATTACGGCCATTCGGCGGGAGGTTCGGTGGCGGCGGCTGTCGCGGCCGCGGTACTCGATCAAGTGCGGCCCGGATTCAGTCCCGTAGCCGTTTTGCTGGAGGATCCCTTTTGGCGGCTTCCGGTCACTCCCCTACAGGACCGATCTGCGGCGGAAGCGGCCTATGCACACCTCCTCAAAGTCCAGAGCTGCACGGCGGCGGAACGCGCCGCCATCAGGCGGCGTGAGTGGCCAAACTGGAGCGAGGCCGAGATTTTGCGGAGCACCACGGCTCAGGAGAACTGCGACCCCCGGCTGATCCGCAACGGTAACGTCATCCCCTCCACACCGTGGCCTGACCTGACGGCGTCCCTCACGGCTGCCGATGTGCCGGTCCTGATCATCACTGGAACGGTCCGGGCCGGGATCACGCCAGAACACCAGCGCATGGCCCGAGGGTCCGGTGCAAGGGTGGTGGTTTTCGACGGCGCCTCGCATTTCGTCCGCCGGGACATGGAAGACACGTTCATGAGGGCATCCACAGCCTTTTTTGCCGAGGCGTTGGAGGTAAAAAGTGCGCCCGCGGCAAGGCCTTGAMLSYELSLPQGPARAVIVAIHGLAESAECLEAAFPHWLCHGWAVLSIDLRGHGNSPRWSDEDLSKHPGDVMVQDVLDVFRPADLRDVAGLPVLYYGHSAGGSVAAAVAAAVLDQVRPGFSPVAVLLEDPFWRLPVTPLQDRSAAEAAYAHLLKVQSCTAAERAAIRRREWPNWSEAEILRSTTAQENCDPRLIRNGNVIPSTPWPDLTASLTAADVPVLIITGTVRAGITPEHQRMARGSGARVVVFDGASHFVRRDMEDTFMRASTAFFAEALEVKSAPAARPNANANANANA
D1-29_040643474hypothetical proteinATGAAGCATCCTTCAACGATGAGGCGATGGGCCCGCATGCTCGGGCTTGCCGCTGCCGTTGCCCTCGTGGCACCGGCCGGCGGTATCCCCTTGCCGGGAAGCGCGGCACCCGCCACCGCTGACACAGGCCAGGACGTCACCATCACCGAAAGTGTCAGCGCAAACGGCTTCGTCCACCCGGGCATCGGCGTCAGCGCTGACAGCCTGCGCAACGCCCGTGCCATGGTCAAGGCCGGCACCGAGCCGTGGAAGAGCTACTACGACGCGATGGTGGAAACGCCGTTCGCCGCCCGCGACTTCCGCTCCTCCAATGGCAGCGCCGTCCCGGATCAGCCAGGCACCACGGCGTTCAATTCCCAGGGCGTCCAGAGCAAGCTCATCAGGGATGCCTTCGGCGCCTACACCCAGGCAACCCTGTACGTCATCACGGGCGATCCGGTGTACCGCGAAAACGGCATGCGGCTCATCCGGACCTGGAGCAACATGGACCCGGCAAAGTACGCGTACTACCCGGATGCGCACATCCATTCGGGCGTCCCGCTCTACAGGATGGTGGCGGCGGCAGAGCTGTTCCGTGCCACCAGCGTCCCCGACGGCTACACGGCCTACGACCTGAACTGGAACGAACAGGACACGTCCAAGCTCAGCGCCAACCTCATCGTCCCCATGACGGAAACGTTCCTCCACACCAACTGGCGCTACCTGAACCAGCACTCCTACCCCCTGATCGGCGCCATTTCCGGGTACATCTTCACCGAGAACCGTGAGCGGTACAGCGAGGCAGTGGAGTGGTACACCGTCAATGCCACCACCTCCCGTCCCGAGCAGAACGGCTCGCTCGCAGCCCTCTTCCCGCTGATCGCCAAGGATGATCCCCGCAATCCCTACGGCTACTCCTTTGTCCAGCACCAGGAAATGGGCCGCGACCAGGCCCACGCCTGGGACGGCATCAACACCAACGGGGCGCTGGCGCGCTTCCTGACCGTCCAGGGCACCAAGGTTGATCCGACAGCAGGCACCGTCTCCACGGCCACCGACGCCGTCTCGCCGTACAAATTCCTGGGGGACCGCCTCCTCAAGGCCGCGAATGCGTTCACGGGTTACATGCTCGGGTACGAAACACCGTGGATTGACACCACCGGCGGGCCTGGGAGCCTCTCTGAGGCCTACCGCGGCCGCATGTTCAACCCGATCGACGAGCTGTACCACGTCTACAAATACGAGCTGGGAGTGGACGTCGAAAAAGAGGCCCCGTACGTGGCTGAACTGCACGCCAAGGCGGACGGACCCAAGTTCTACTGGGGCACAGGACTCCACAACTCCTGGGAAAGCAACCCGGACTACAGCCCGGAATTCTGGCTCTCCCTCCCCTCGGAAATCGCGGGACAGACCCGCCCCGTGGCCACCGATGCCAAGATCCAGTTCGAGACCCGCAGCTCCGCCATGGACGGCGGCTCAAAGACGGTGACCCAGGACGGACGCACGTTTGTCAGGGTCAGCGCGTCGGCGAAGGGCAGCACCGTTGCCGCGCGCACCCTCATGTACGTCAGCCGGACCGGCTACAGCCCCGTGGGTATCCAGTTCCGTACCAACGGTCCTGCAACGCTAGCCATCGGCAAGGATCCAGCCAAGCGGCTAGAGGTGCCGTTGCCCAACACCAGCAACCAGTGGCGGTATATCACCTACGATGTGGACGTCGAGAAGTTGACCGGCGTGAGCCTTGGCGGGGAAAACCTTGCCTACCTGACAGTCATCGGCGCCAACGGCGTCAGCGCGGACTTCGATTACGTCAACCTTGAGGCCAAGACACAGCTGACTATTCCGCAGTTCCCGGCAGATGTGAAAACCCCTGTCATCGCTGTGGCCGGGGGCGAATTGAAGCGCACGTTCGCCGCCACTGATGCTGCAGGCGAGGTGCTGGCGTACAAGGGCACCGGCCTTCCCGTCGGGGCGAGCCTGCACCCGGAGACGGCCCAGCTGAAGTGGAAGCCCTCAGCCAGCAACGTAGGATCCCACAAGTTCCAGGTGGAAGCGGATGACGCCACAACCCTGGCGACACGCCCCGTCACAGTGCTGGTTGCCGCAAACCGGCAGGCCGCGTTTGATGCTGCCCTGACAGGCTTTGACGCGAACGCCGCCTACGAGTCCGCATCGTTCGCACCCTTTGATACGGTCCGTACCGAGGTCCGTGCCGCCATGCAAACGGCCGACGACGCCGGCTACCTCGATCAGCTGGTGCGCCTTCAGAAGGCTGTAACGGAGCTGAAACTCCTGACCCCGCGGCTGGCCGACGACGGTTCGATCGACTACCGCGGACTGGTCACAACAAACCCGACGGGCGTCCAGCCGAGGAACCTCGTGGACGGGAGCTTCCATTCCACCACTGGAGACCTCCGGGCACCGTTCACCGTGGACTTCGGCCAGGGCTTCCAGGTTTCGGCTGAAGCAGTTGGCCTCCAGGCCAGGTACAACTTCGCGAACCGGTCCCAGGGTGCCAACGTTTACGGCTCCCGTGACGGACGGACGTGGACGCTGCTGACTGAGCGGGAGACCACCAACACCACGGCCAGCGGGTTTGCCATGGAGACCATTCCGGTCCGCGCCGACGGGGCGGGCCAGACGTTCCGTTACTTCAAGGTCCAGGTGGACCACCCCGGTGTGCCGACCGACCCCGCCTACCCGGGCATCTCCTCGTTCGGTGAGTTCCGGATCCATGGCGACCGGCACGAGATGGCAACGGCCATTTCCTCGCTGTCCATCGCAACGTCCAACGCGGACAAGGGCCTGGCTACCAACGGTGACACGGTAACGTTCGCCGCCGTCGCCACCGAGCCGCTGTCCGAGCTGAAGATTGTTGTCGAAGGAGCAACCGCAACGGCAACATCCGCTGACGGGCTCAACTGGACGGCCGCCGCCGTCCTGCCTGCCGACGTCGAATACGGCCGGGATGTCCAGTACTCGGTGGATTACCGCACGGTATCGGGCAAGGCCGGGACCACCCTCACCAGCACCACGGACGGCAGCCGGCTGGCCTTGTGGAACACCGCGATCGCACGTGTTCCCGTGGTTCAGGGTTGGGTCGATGCCTCCACCCGGGCATGGCCGGGGACCGGCACCACCCAGGAGAACGCGTGGAAGATGTTCGACAGGAACACGGCTACCTACACGGACACCACGACGGCGAACGGCTGGGTCACGGTGAAGCCCGCCGACGGCACCCGGATCACCACGGACATCGTCCGCGTCTACCCGCGCGCCACCCACATCAGCCGCGGCAACGGCACCGTCCTCCAAGGCTCCAACGACGGCGGGGCAACGTGGACAACGTTCATGACCATCACGGGCATGAGTGCCGCGAACTGGTACACGTTCACCCTTCCGCAACGGGCTGACTACAGCCAGGTCCGGGTGCTCGATGAGCACGGCGGCAACGTCAACCTGGCAGAGGTGGAGTTGCTCTACAGGGTCCCGTAGMKHPSTMRRWARMLGLAAAVALVAPAGGIPLPGSAAPATADTGQDVTITESVSANGFVHPGIGVSADSLRNARAMVKAGTEPWKSYYDAMVETPFAARDFRSSNGSAVPDQPGTTAFNSQGVQSKLIRDAFGAYTQATLYVITGDPVYRENGMRLIRTWSNMDPAKYAYYPDAHIHSGVPLYRMVAAAELFRATSVPDGYTAYDLNWNEQDTSKLSANLIVPMTETFLHTNWRYLNQHSYPLIGAISGYIFTENRERYSEAVEWYTVNATTSRPEQNGSLAALFPLIAKDDPRNPYGYSFVQHQEMGRDQAHAWDGINTNGALARFLTVQGTKVDPTAGTVSTATDAVSPYKFLGDRLLKAANAFTGYMLGYETPWIDTTGGPGSLSEAYRGRMFNPIDELYHVYKYELGVDVEKEAPYVAELHAKADGPKFYWGTGLHNSWESNPDYSPEFWLSLPSEIAGQTRPVATDAKIQFETRSSAMDGGSKTVTQDGRTFVRVSASAKGSTVAARTLMYVSRTGYSPVGIQFRTNGPATLAIGKDPAKRLEVPLPNTSNQWRYITYDVDVEKLTGVSLGGENLAYLTVIGANGVSADFDYVNLEAKTQLTIPQFPADVKTPVIAVAGGELKRTFAATDAAGEVLAYKGTGLPVGASLHPETAQLKWKPSASNVGSHKFQVEADDATTLATRPVTVLVAANRQAAFDAALTGFDANAAYESASFAPFDTVRTEVRAAMQTADDAGYLDQLVRLQKAVTELKLLTPRLADDGSIDYRGLVTTNPTGVQPRNLVDGSFHSTTGDLRAPFTVDFGQGFQVSAEAVGLQARYNFANRSQGANVYGSRDGRTWTLLTERETTNTTASGFAMETIPVRADGAGQTFRYFKVQVDHPGVPTDPAYPGISSFGEFRIHGDRHEMATAISSLSIATSNADKGLATNGDTVTFAAVATEPLSELKIVVEGATATATSADGLNWTAAAVLPADVEYGRDVQYSVDYRTVSGKAGTTLTSTTDGSRLALWNTAIARVPVVQGWVDASTRAWPGTGTTQENAWKMFDRNTATYTDTTTANGWVTVKPADGTRITTDIVRVYPRATHISRGNGTVLQGSNDGGATWTTFMTITGMSAANWYTFTLPQRADYSQVRVLDEHGGNVNLAEVELLYRVPNANANANANA
D1-29_040651188D-alanyl-D-alanine carboxypeptidaseATGCAGGGAGCATCCAGCCACGTCCGCCTTTTTGCAGCGCTCGCCGCAGCCCTTTTGGTGCCCTCACTCGGAGGATGCACCGGTTCACCGGATCCTCCCGGCCAGCCCACGCCCGCCGCACCGTCCACGTGGCAGCCTCCTGCCGAGCCGGCTTTTGTCCCAGTGCTGCAGAAATACCGTGACGGCGCGCTTGCTGCCGGAGCTTCGTCGGTCATCATCCAGATCAAGTCCAGGATCGGCGACTGGTCCGATGCCGCCGGCATCCGAAGCCTTGACAACCAGGAGCCGGCACAGCTGACGGACCAGGTCCATGTTGGCGAGATCACCATGGCAATGGTGGCGGTGGCTGTCATGAAGCTGGTGGAGGAGGGGAAGCTGCAACTGGATGACCCCGTCACCCAGCATCTCCCGGAGTTCGGGAACATGGTCAAAACACCCGGGCCTGTCACCGTCCGCAGTCTCCTCAACCACCAGTCAGGCATGCCCGACTATTGGGAGGCCCTGATGCGGTCCGACCCCCTGAACGAGGTACTGGGAAGGCACCTGAGCCACGAGGAGCGCCTGGCTATCGCCGCCGCCAGGCCTTGGGACCGGCAGGGATATTTCCGCTATTCGGGCTCGAATTATGCGGCACTGGCGCTGCTCCTGGAACGCTTGCGGGGACGGGAATTAGGAGAGATCCTGCGCGCCGACATTGTGGAGCCCCTGGGGCTGCAGAATACGGTGATGGCGGGGCCCAAGCCCGGTCCGCAGAACCTGCTGCACGGCTACGTGTTCCTGGACGGCGAACGGGTGGACACAACGCTGCCTGCAGTAGTCCTCGGTTCCGGCGATCAGGGCATGATCTCCACCGTGCCGGACCTGAACACTCTTTTTGGGGCCCTGGCTCAAGGGAAACTGCTGAACTCCAGGACCGTGGTGGAGATGTACACCCTGAACCAGGTCAACAAAGAGGAGCAGTACGGCCTGGGCCTTCAGCAAAGGTACGACGCCTGCTCCAATAACTACTATTTCGGCCATGGTGGAGATGTGCCGGGGTACGCGAGCGTCGCCTTGACCAGCACGGACGGCTCGCGGCAGGTGGCAATAGCGGTGGCGTTCGCCCCGACATCACCGCCGGGGCGGTTCGACGAACCAGTCATCGATCTGATCACCGTGGCCATGGAGTCGCTCGACCTGGCGTGCTGAMQGASSHVRLFAALAAALLVPSLGGCTGSPDPPGQPTPAAPSTWQPPAEPAFVPVLQKYRDGALAAGASSVIIQIKSRIGDWSDAAGIRSLDNQEPAQLTDQVHVGEITMAMVAVAVMKLVEEGKLQLDDPVTQHLPEFGNMVKTPGPVTVRSLLNHQSGMPDYWEALMRSDPLNEVLGRHLSHEERLAIAAARPWDRQGYFRYSGSNYAALALLLERLRGRELGEILRADIVEPLGLQNTVMAGPKPGPQNLLHGYVFLDGERVDTTLPAVVLGSGDQGMISTVPDLNTLFGALAQGKLLNSRTVVEMYTLNQVNKEEQYGLGLQQRYDACSNNYYFGHGGDVPGYASVALTSTDGSRQVAIAVAFAPTSPPGRFDEPVIDLITVAMESLDLACNANANANANA
D1-29_04066498hypothetical proteinATGACCGTTATCAGTTCCACCAAGAACCTCGAGGCCCTGAGCTTCACCCTGGTTGCCGAGTTCGATGCCGACGTTGAACGCGTGTGGCAGATCTGGGAAGACCCCCGCCAACTGGAACGCTGGTGGGGCCCGCCCACCTGGCCTGCCACATTCAAGGACTTCGACTTCCAGCCTGGCGGAAAGGCGGGCTACTACATGACCGGTCCGGAGGGCGAAAAAGCCGGTGGCTGGTGGCGTTTCACCGCCATCGAGGCCCCCAGGAAGCTGGAGTTCGACGACGGTTTCGCGGACGACGATGGCGCTCCCGTTGACGCCATGGGCACCACCCACGCCACCGTCTCGCTCGAGGACATTGGCGGCCGCACCCGGATGACCATTCAGTCCACGTTTGAAAGCGAAGAGCAGATGGAGCAAATGGTCCAGATGGGCATGGAGGAAGGCATGAAGGAGGCGGCGGGCCAGATCGACGCCATCCTTGCAGAGCACGCGCGCGCCTGAMTVISSTKNLEALSFTLVAEFDADVERVWQIWEDPRQLERWWGPPTWPATFKDFDFQPGGKAGYYMTGPEGEKAGGWWRFTAIEAPRKLEFDDGFADDDGAPVDAMGTTHATVSLEDIGGRTRMTIQSTFESEEQMEQMVQMGMEEGMKEAAGQIDAILAEHARANANANANANA
D1-29_04067333hypothetical proteinATGGTTGTAGATCAGCTCAGTGATTCCGAGGTGGACCGCCTGTTCCAGGCGTTCTCCGACTCCACACGCCGGGACATCGTCCGGCGGGTAACAGTGGGGGAGTACTCGGTGTCCGGCCTGGCTGCCCTCTACGCCATGAGTTTCGCCGCCGTGCAAAAGCATGTGGCGATCTTGGAGCGGGCTTCCCTGGTCACCAAGGAGAAGCGCGGAAGGGAGCAGATCGTGCGGGGCAATCATGAAGGACTGGAAAAAGCCCGCCGCCTGCTCGATGAGTATGAGGCGATCTGGCGGCTCCGAGCCGGGCGGATCGCCGAGATTCTGGCCGAAGGATAGMVVDQLSDSEVDRLFQAFSDSTRRDIVRRVTVGEYSVSGLAALYAMSFAAVQKHVAILERASLVTKEKRGREQIVRGNHEGLEKARRLLDEYEAIWRLRAGRIAEILAEGNANANANANA
D1-29_040682568hypothetical proteinTTGAACCACCCAATCCGAGGCCTCGGCAGACGCCTCCACAGATCGCGTAAGACCACCGCGGCGGCAGCCGTCATTCTGGCGCTTGTAGCCACGTTGGCCGGCGGCGCGCCGGCCTCCTCGGCGGAGCAGGCGCCGTACACGGAGCAGTACCGGCCCCAGTTCCACTACACCCCCGAGAAGAACTGGATGAACGACCCGAACGGGCTGGTGTTCTACCAGGGCGAGTACCACCTCTTCTACCAGCACAACCCGTCGGGCAACCAGTGGGGAAACATATCGTGGGGACACGCTGTGAGTACGGACCTGGTGCACTGGACGGAGCTGCCGGTCGCGATCGCCCACGATGACGAGGAGATGATCTTCTCCGGCAGCGCGATCATCGACACCAACAACACCAGCGGGTTCGGCACCAAGGACAACCCGGCGATGGTTGCGGTGTACACCCGCCTGGACAAGGCCACCGGCGTCCAGTCCCAGGCACTGGCCTACAGCACCGACCGCGGCCGCACCTTCACGAAGTACGCCGACAACCCGGTCCTCGACATCGGTTCACGCGACTTCCGCGACCCGAAGGTCTTCTGGTACGAAGAAGGCCAGGAGTGGATCATGAGCGTGGCCCTGAGCGCCGAGCGGAAGGTGGCCTTCTACCGCTCGGGCGACCTGAAGACGTGGGAGCACCTCAGTGACTTCGGTCCGGCCGGCGCCATCGGCGGGGTCTGGGAGTGCCCGGACCTGTTCCCGCTGCCGGTGGATGGCGACAAGAAGAACACCAAGTGGGTGCTGCTGGTTAACATCGGCTCGGGCGGCATCGCCGGAGGATCGGCAAACCAGTACTTCACCGGAACTTTCGACGGCACCAGCTTCGTCTCTGACGACAAGCCGTATGTCGCACCGACCGGCCGTGACCTCGGCAGCTTCGACGACAGCACGTATGGCGGATGGACACCCGAAGGTGCTGCCTTCGGAACGGCACCCGCCGCCGGCAACCTGCCGGGTCAGGGCGGTGTCTCCGGCTGGGTGGGGGCTGGGCTCGCCAACAGCTTCAATGGCGCTGACGCTGGCACCGGGACGCTAACCTCTCCCGAGTTCACCCTTGATGCCGCATACCTCAACTTCAAAGTCGGCGGCGGCAAGCACCCGTACGTCGCTGGGTCAACGCTCAACCCCTCACCCCCAGCAGGGGATGTCTTCGCCGACTTCGAGGGCAGCGGGTACGGTGCCGGATGGGTTGCCACAGGCGACTTCGCCGGCACGGGTCCGGTGAAGGGCACCATCGGAGACCAGCAGCAGGTCACCGGATATGTCGGCGAGCAACTGGTCAACACCTTCATCGACCATGACATGTCACAGGGCACTATCACGTCCCCGGAATTCGCCATCGCCAAGAGCCACATCAACCTGCTCGTTGGCGGAGGCAGCCACCCCTGGACCACCAGCGAGCCGACGTCCGTAGACCTGCTCGTCGACGGCCAGATCGTTAGGTCCGCGACCGGGGCCAACAGCGAAGCCCTCAACTGGACAAGCTGGGACGTCTCGGAGTATGCCGGCAGGAACGCCACGATCCAGATCGCCGACAAGAACTCCGGAGGCTGGGGACACATTAACGTCGACCACATCGTGTTTTCCGACGAGGCAGCGGCAGCACGCGCAGTCGATACCTCCGTGCGCCTGGTCGTTGACGGCCAGGTGGTCAGGAACGCCACGGGCTCGGACAGCGAGACGCTTGACTGGAACGGTTGGGATGTTAGCAGCCTTGAGGGCAAGACAGCCCGAATCGTGGTGGCAGACAACAACACCGGGGGTTGGGGCCACATCCTCGCCGACCAGTTCAGCCTGTCGGACACGCCTGCACGCTCCAGCGTCCAGCGGGCGCATTGGGTGGACTACGGCAAGGACAACTACGCCGGTGTGACGTTCGACGACGCACCCGCGGATCGTCGGGTAATGATCGGCTGGATGAACAATTGGAACTACTCCGGCTCCATCCCGACCGATCCGTGGCGTAGCGCGATGACGGTGCCGCGCGAGTTGGGCTTGCGCAGCAGCAACGAGGGTGTGCGCCTGGTACAGCAGCCGGTCTCCGAGCTGCAGGGCCTGCGTGAAGATGCAGTGCTCAACACCAAAAACCTGCTCGTAGCCAACGGCTCCACACCGCTCCGGGCCGCAGGCGCGGCATACGAGCTAACGGCCACTTTTGCCCCCGGAACTGCCAGCACCGTAGGTGTAAAGGTGCGAATCGGCAATGGCCAGGAGACCAGGATCGGCTACGACCGCTCAGCAGGTGAGGTCTTCGTCGACCGGGCCAAGTCGGGTGACGTGGGCTTCAGCCTCGACTTTCCGGGCATGCAAAGGGCCCCGATATCCATCGGCGCCAACGGCGAGGTAACCCTTAAAGTGCTGGTCGACTGGTCCTCGGTGGAAGTCTTCGCCCAGGACGGATCGGCCGTCATCACCGACCAGATCTTCCCCGACCCCATCAGTACCGGCCTAGCGGCTTTCGCTACTGATGGTGATGCCGTCCTCAAGTCAGTCAAGGTGACACCACTGCGCTCCGCCTGGACCGACTAGMNHPIRGLGRRLHRSRKTTAAAAVILALVATLAGGAPASSAEQAPYTEQYRPQFHYTPEKNWMNDPNGLVFYQGEYHLFYQHNPSGNQWGNISWGHAVSTDLVHWTELPVAIAHDDEEMIFSGSAIIDTNNTSGFGTKDNPAMVAVYTRLDKATGVQSQALAYSTDRGRTFTKYADNPVLDIGSRDFRDPKVFWYEEGQEWIMSVALSAERKVAFYRSGDLKTWEHLSDFGPAGAIGGVWECPDLFPLPVDGDKKNTKWVLLVNIGSGGIAGGSANQYFTGTFDGTSFVSDDKPYVAPTGRDLGSFDDSTYGGWTPEGAAFGTAPAAGNLPGQGGVSGWVGAGLANSFNGADAGTGTLTSPEFTLDAAYLNFKVGGGKHPYVAGSTLNPSPPAGDVFADFEGSGYGAGWVATGDFAGTGPVKGTIGDQQQVTGYVGEQLVNTFIDHDMSQGTITSPEFAIAKSHINLLVGGGSHPWTTSEPTSVDLLVDGQIVRSATGANSEALNWTSWDVSEYAGRNATIQIADKNSGGWGHINVDHIVFSDEAAAARAVDTSVRLVVDGQVVRNATGSDSETLDWNGWDVSSLEGKTARIVVADNNTGGWGHILADQFSLSDTPARSSVQRAHWVDYGKDNYAGVTFDDAPADRRVMIGWMNNWNYSGSIPTDPWRSAMTVPRELGLRSSNEGVRLVQQPVSELQGLREDAVLNTKNLLVANGSTPLRAAGAAYELTATFAPGTASTVGVKVRIGNGQETRIGYDRSAGEVFVDRAKSGDVGFSLDFPGMQRAPISIGANGEVTLKVLVDWSSVEVFAQDGSAVITDQIFPDPISTGLAAFATDGDAVLKSVKVTPLRSAWTDPGPT0018745_93DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOSIDASE,PGPT0018745-fruA-K03332NANA
D1-29_040691509sacC_2COG1621LevanaseATGACTGCCGCGACCGCCACGACAGCCGATACCTTCCGGCCGGCCCTGCACTACGCCGCCCGGAACACCTGGCTGAACGACCCCAACGGCCTGATTTTCCATGACGGCGTCTACCACCTCTACTACCAGAACAACCCGCTGGATAACGTCTGGGGAAACATGTCATGGGGCCACGCCACCTCCCCGGACCTGGTCAGGTGGACCGAGCACCCCGTCGCCATCGCCTGCGATGAGCAAGAAGACATCTTCTCCGGAAGCATCGTCTTTGACCGGGACAACACCAGCGGCTTCGGCACCGAGTCGGCCCCGCCGCTGGTGGCCGTCTACACCAGCGCCTTCAAGTCCGGCTCCGCAAACGCCGGACTCCAGGCACAGTCGCTCGCCTCCAGCTGCGACGGCGGCTACACCTGGACCAAACACAACGCCAACCCGGTGCTGAACCGCGGGTCAGCCGAGTTCCGTGACCCCAAGGTCATCAGGTACGACGGCGGCGCTGGCAGTTACTGGGTCATGGTCGCCGTAGAAGCCACAGACTTTCAGGTGGTCCTCTACAAATCCGATGATCTGAAGAGATGGGAATTCCTGAGCACCTTCGGACCGGCCAACGCCACCGGCGGCGTGTGGGAATGCCCCGACCTTTTCCCCCTGCCCCTCGACGGCGACTCCGAACAGCTCAAATGGGTCCTCACCGTCAACCTCAATCCTGGCGGCCCCAATTCTGGCTCTGCCGGGCAGTATTTCGTCGGGGACTTCGATGGAACCACCTTCACCTCGGCCACCACGGTGACCGAAGGGCTCCAGGACCCCGCCCGGCTGGGCGAGTACCAGTGGCTGGACTGGGGCCGGGACTACTACGCCGCCGTCTCCTTCAGCGACGCCCCCCACGACCGCCGCCTCATGATCGCCTGGATGAACAACTGGGAATACGCCAACCAGATCCCCACCTCGCCGTGGCGCAGCCCCATGAGCCTGGCCCGCGAAATATCCCTCCGCACCATCGACGGAAGGCCCCGTCTGATCCAAAAGGCCGCAGGAGATTTGTCTGCCCCTTCCAGCATCGGCCAACCCTTCACCCTTGAACGGACGGAAATATCCGACTGCACGCGCGTCCTCGACGGCGCGGAAGGCTCCGTCCAGCGAATCGATCTGACCCTCACGCCCGGAAGCGCCGAGGAATTCGGGCTGATCGTCCGTGCCAACGGCGCCCACGGAACCCGCATAGGCATCCGGCCTGCACAAGGCACGCTCCATGTCGACCGTCGGACATCCGGAAACACCAGCTTCCACGAATCCTTCCCCTCCATCGATACTGCCCCCATTCAACCGATCGGCGGATCCTACGAGCTGACCATTTACGTGGACCGTTGCTCCGTTGAAATCTTCTCCCAAGACGGCCAGGTCACCATGACGGAATTGATCTTCCCCGCGCCCACCAACACCGACTTGGCTGTCTACGCCATCGGCGGAACAGCCATTATCAACAGCCTCCAGGTTGATCAATACGTATAAMTAATATTADTFRPALHYAARNTWLNDPNGLIFHDGVYHLYYQNNPLDNVWGNMSWGHATSPDLVRWTEHPVAIACDEQEDIFSGSIVFDRDNTSGFGTESAPPLVAVYTSAFKSGSANAGLQAQSLASSCDGGYTWTKHNANPVLNRGSAEFRDPKVIRYDGGAGSYWVMVAVEATDFQVVLYKSDDLKRWEFLSTFGPANATGGVWECPDLFPLPLDGDSEQLKWVLTVNLNPGGPNSGSAGQYFVGDFDGTTFTSATTVTEGLQDPARLGEYQWLDWGRDYYAAVSFSDAPHDRRLMIAWMNNWEYANQIPTSPWRSPMSLAREISLRTIDGRPRLIQKAAGDLSAPSSIGQPFTLERTEISDCTRVLDGAEGSVQRIDLTLTPGSAEEFGLIVRANGAHGTRIGIRPAQGTLHVDRRTSGNTSFHESFPSIDTAPIQPIGGSYELTIYVDRCSVEIFSQDGQVTMTELIFPAPTNTDLAVYAIGGTAIINSLQVDQYVPGPT0018745_515DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-FRUCTOSIDASE,PGPT0018745-fruA-K03332NANA
D1-29_040701608hypothetical proteinATGGCATTCAGCCGCAAATTCGCCGCCCTCGGCGCCGTCCTGGCCGGAACATTGATGTTCACCGCCTGCTCCGGCGGTGGCTCAGGAACCACCGAGATCAAAGACGCCTCCGCGGACTTCGGCTTCCAGGAAACAGGCTTCCCGATCGTAACTAAGCAACTGGAGCTGACCTTCTCCGGCACGAAGTCAGCGCTTGCCCCGGATTACAACACCATGACCGTGGTGAAGGAATGGGAAAAGGCCACCAACGTCCATATCAACTGGGAGAACCTGCCCGAAACGGTTTTCAAGGAAAAGAAGAACCTCATCCTGGCCAGCGGTGACCTGCCCGATGCGTTCTTCAATTCGGGCCTGACCGACGCCGAGATCGCCACCTACTCTGCCAGCGGCACCCTCATCCCGCTCGAGGGGCTCATCGAGAAAAATGCACCGAACCTTTCCAAGCTGCTCTCAGACCGGCCAGAGATCAAAGCCGCCATCACCTCCTCTGACGGGCATATCTACTCGCTGCCCTCTATCGAGGAACTCGGGCTGGTCCAGTTCCCCAACGAGCTGGCCATCAACACGGCGTGGCTGAAGAAGCTCAACATCCCGATGCCAAAAACCATCGATGAGTTTCACGACGCACTGCTCGCATTCAAAACCCAGGATGCCTCCGGCACCGGCAAGACCATACCGTTGAGCTTTATGCCCGGCTCCTGGTGCGGGGACATCGTTGACCTGATCGCCGCCCTCGGCGGAGTGCCGGACAACATGGACCACCGGATCGTCCAGGACGACAAAGTCATCTTCACTCCCACACAGGACGGCTACAAGAAAGCCATCCAGACCCTGCACGAGTGGTACCAGGAAGGCCTGATCGACCCCGAATCCTTCTCCCAGGACGACAAGGCATACCTGGCCAAGGGCAAGGCAGCCACGGAAAACCTTGGCTCCTTCGTCTGGTGGGAAGTCCCCGAAATGGTAGGCGCGGACCGCGCCAACAACTACTCCCTGGTCCCCGCCCTGGAAGGCGTGAACGGTAAGCGCCTGGTCAGCCAGTCCAACAACCAGGAAATCGCCCGCGGCGCCTTCGCTATCACCAACGCCAACAAGTACCCGGCCGCGACCATGCGCTGGGCAGACAACCTGTATGACCCCATCCAGTCAGCCCAGGCCAACTGGGGACCTATCGGTGAGACCCTGCAAAAGGATGCCAATGGCATCCTGACCCAGATCCCCGCCCCGGAAGGGACCAGCGAGGGCGAACGGCGCCAAAAGGTGGCCCCGGGCGGCCCCAAGGCCAACACCGCGGAGAACTTCAAAAACGTCGTGGCTCCTGAGCCGAGGGCAGCCCAGCGCCAGAAAACCGTAGAAGAGCACTACAAGCCCTTCGCGGCCAACGACGGGTACCCGCCTGTGGCGCTGTCCACCGAGGAGCTCCAGCAGATCGGCACCATCGAAACGGACGCCGCGTCCCTGGTCAAGCAGAACATGGCCAAGTGGATCGTCTCCGGCGGCATCGAGCAGGAATGGGACGGCTACATCGCCCAGCTCAAGAACATCGGCGTCGACAAAATGGTCGAGGTCTACCAGCAGGGCTACGACCGCTACAAGTCCAACTCCTAGMAFSRKFAALGAVLAGTLMFTACSGGGSGTTEIKDASADFGFQETGFPIVTKQLELTFSGTKSALAPDYNTMTVVKEWEKATNVHINWENLPETVFKEKKNLILASGDLPDAFFNSGLTDAEIATYSASGTLIPLEGLIEKNAPNLSKLLSDRPEIKAAITSSDGHIYSLPSIEELGLVQFPNELAINTAWLKKLNIPMPKTIDEFHDALLAFKTQDASGTGKTIPLSFMPGSWCGDIVDLIAALGGVPDNMDHRIVQDDKVIFTPTQDGYKKAIQTLHEWYQEGLIDPESFSQDDKAYLAKGKAATENLGSFVWWEVPEMVGADRANNYSLVPALEGVNGKRLVSQSNNQEIARGAFAITNANKYPAATMRWADNLYDPIQSAQANWGPIGETLQKDANGILTQIPAPEGTSEGERRQKVAPGGPKANTAENFKNVVAPEPRAAQRQKTVEEHYKPFAANDGYPPVALSTEELQQIGTIETDAASLVKQNMAKWIVSGGIEQEWDGYIAQLKNIGVDKMVEVYQQGYDRYKSNSPGPT0017245_2026DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017245-lplA-K17318NANA
D1-29_04071960dasC_5COG0395Diacetylchitobiose uptake system permease protein DasCATGTCCCTGATAACCAACCCCCCGACTCTCGAGAACCCGAAACGGACCGCCAGCGTGGTCCGTCCCAAGCAGTCGCTGAGGGACAGGTATGGCGACCGTGCGTTCAACATCGCCGCCACAACCGTCCTGCTGCTGTCCATCCTCGCCGTGGTGTATCCGCTGTACTTCATCGTCATCGCCTCCATCAGCGACCCGAACGCCGTTTATGAAGGCAAGGTCTGGCTGTTTCCTTCCGGCGTAACCACGGAGGGCTATGAGCGGATTTTCGCCGACAGCCGGATCTGGAATGGCCTGGGCAACACCGTCATCTACACAGTGCTCGGTACCGCCGTCAGCGTCAGCACCATCCTGTGCGGCGCCTACGCCCTGTCCCGCAAGGACATGCCCGGCCGGAAGATCCTGATGCTCCTGTTCGTGATCACCATGTTCTTCGACGGCGGCCTCATCACCAAGTACCTGGTGGTCCGGGACCTGGGCATGCTGGACACCGTCTGGGCAGTGGTACTGCCCGGTGCGGTGGGGGTGTGGAACCTGATCATCGCCAGGTCATTCTTCGAACACACCATCCCCAATGAACTGCGCGAAGCTGCACAGATGGACGGGGCCACCGACTTCAAGTTCTTCTTCCAGATGGTGCTTCCCCTGTCCAAACCACTGATCATGCTCATGATCATGGTCCACGTGGTAGCCCAGTGGAACTCGTTCTTCGACGCACTGATCTTCCTCAACGACGACTCGAAGTACCCGCTCCAGCTCGTCCTGCGGAACATCCTCATCCAGTCAGATGTCTCATCCACCGGAACCACCGGCGGAGACATCGAATCCTATGCGGCAGCGCAAAGGATCGCAGAGCTCACCAAGTACGCCATGATCGTCGTCTCGAGCCTGCCACTCATGATTGCCCTGCCATTCATGCAGAAGCACTTCACCAAGGGCGCCATGATCGGCGCCGTCAAATAAMSLITNPPTLENPKRTASVVRPKQSLRDRYGDRAFNIAATTVLLLSILAVVYPLYFIVIASISDPNAVYEGKVWLFPSGVTTEGYERIFADSRIWNGLGNTVIYTVLGTAVSVSTILCGAYALSRKDMPGRKILMLLFVITMFFDGGLITKYLVVRDLGMLDTVWAVVLPGAVGVWNLIIARSFFEHTIPNELREAAQMDGATDFKFFFQMVLPLSKPLIMLMIMVHVVAQWNSFFDALIFLNDDSKYPLQLVLRNILIQSDVSSTGTTGGDIESYAAAQRIAELTKYAMIVVSSLPLMIALPFMQKHFTKGAMIGAVKPGPT0017255_105DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017255-lplC-K17320NANA
D1-29_04072975yteP_2COG4209putative multiple-sugar transport system permease YtePATGAGCCGCACCATCCCGGCCCGACGCGGGCGTCCCGCTGCGGCATCGTTGCCGCAGCGAAAAAATACTCTTTCGCTCCGCCTGAAGAGGATTTCCCGCGCCTGGCAGTTATACGTATTACTAGCTCCAGCGATCGTCTACATCCTGGTCTTCAAGTACTGGCCGATGTACGGCGTCCAGATCGCTTTCAAGAACTACAATCCGGTGGACGGGTTCACCGACAGCCCCTGGGTGGGCCTGACGCACTTCATCAGGTTCATGAACTCTTACCAGTTCGGCCAGGTGGTCGGTAACACGTTGTGGATCGCCGTCCTTGGCCTGCTGGTGGCCTTCCCGATCCCGATCATCCTCGCGTTGCTGGTCAATCAGCTCCAGAGCGAGAGGTTCAAGAAGTTCACCCAGACAGTGCTGTATTCGCCCGCGTTCATCTCCACCGTGGTGGTGGTGGGCATCATGTTCGTGGTTCTCTCGCCGAGGTCTGGCCTCGTGAACAATGCGATCCAACTCGGCGGGGGTGAACCGATCTTCTTCATGGGCTCCGCAGAGTGGTTCCGCCCCATATATGTCATCTCGGATGTCTGGCAGAACGCCGGCTTTTCGATGATCGTCTACCTTGCGGCATTGGCCGCCATCGACCCGGCACTGCATGATGCGGCCAAGGTCGACGGCGCCTCGAAGCTGCAGCGCATCCGGCACATCGACCTGCCGGGCATCATGCCGGTGGTGACGATTCTGTTCATCCTGGCGATCGGAAACCTGCTCAATGTCGGTTTCGAAAAGGCGCTGCTGATGCAGACGCCGCTGAACCTCTCGACCTCGGAGATCATCCAGACTTACGTCTACCACGCGGGCCTGCAGCAGGCGCAGTTCAGCTACTCGGCCGCCATTGGCCTGTTCAACTCCCTCCTTAACCTGACGCTGCTGCTCGTGTTCAACACGATTGCGCGCCGGGCCAACCAAGCAACCCTGTGGTGAMSRTIPARRGRPAAASLPQRKNTLSLRLKRISRAWQLYVLLAPAIVYILVFKYWPMYGVQIAFKNYNPVDGFTDSPWVGLTHFIRFMNSYQFGQVVGNTLWIAVLGLLVAFPIPIILALLVNQLQSERFKKFTQTVLYSPAFISTVVVVGIMFVVLSPRSGLVNNAIQLGGGEPIFFMGSAEWFRPIYVISDVWQNAGFSMIVYLAALAAIDPALHDAAKVDGASKLQRIRHIDLPGIMPVVTILFILAIGNLLNVGFEKALLMQTPLNLSTSEIIQTYVYHAGLQQAQFSYSAAIGLFNSLLNLTLLLVFNTIARRANQATLWPGPT0017250_646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017250-lplB-K17319NANA
D1-29_040731044degA_5COG1609HTH-type transcriptional regulator DegAATGGCTGGATCACGGCCGAAATCAGGACCGACGATGCATGACGTCGCCGCCGCTGCGGGAGTTTCCCAGGCAACCGTCTCCCTGGTGCTGAACTCGGCTGCCGGGTCACGCTTTTCCGAGGATACCCGCAAGCGCGTACGGGATGCCGTGGACCGGCTCGGCTACCGCACCAACGCCCATGCCAAGGTTCTCCGCGAGGGCGTTGCCGGAATGATTGGGTTCATCGGTGATTCCGTGGCTACTACTCCTTTTGCCGGCGCCATCATCGAGGGGGCGCAGCAGCGGGCGTGGGAGGACGGGCTCCTCCTGCTTTCGGTGAATACCGGGGGTGACAAGGAGCTTGAGGCCGCATCTTTGGACACAATGCTCTCCTACAAGGTTGCAGGAGTGGTCTACGCAGCCATGTATCACCGGCGTCTGGATGTGCCGGAGGTGCTGGGGGATGTCAGGTCCGTGGTGCTGAACTCCCAGGACCGTGCTGGACGGGTCCCGAGTGTCGCCCCGGACGAAGTCAAGGGCGGATATGCGGCGACCAGCCGGCTGCTTAAGGCGGGCCACACCCACGTGGGAATGATCGACATCGAAACCCTCGAGAGCGGCCTTCCTGCCGCCGTCGGACGCTACGAGGGCTACTGTGCAGCCCTTCAGGACGCGGGGCTGGACGTTGATCCGGACCTGGTCCGCTTCGGTCAGGGCGGCGAGGAGCATGGCTACAAGTACGCGATGGAGTTGCTCACTTCCAGAAACCCGCCCACAGCGATTTTCTGCGCAAATGACCGTGGGGCCTGGGGTGCCTACCAGGCTGTGTCGGACCTGCGCCTTTCCATCCCCGGGGACGTTTCCATTGTGGGGTTCGACAACCAGGCCACCCTGGCGCCTTTCCTCCGGCCTGGGCTGACTACTTTTGAATTGCCGTTCGTCGCCATGGGCCGTCGCGCGGTTGAACTGATACTTCAGGATGCGGAACCCGATGGCCGGGTCGAGCTGATGGACTGCCCTCTGATTGAACGGAATTCAGTGACTCATCCTAAGGAGATGCCATGAMAGSRPKSGPTMHDVAAAAGVSQATVSLVLNSAAGSRFSEDTRKRVRDAVDRLGYRTNAHAKVLREGVAGMIGFIGDSVATTPFAGAIIEGAQQRAWEDGLLLLSVNTGGDKELEAASLDTMLSYKVAGVVYAAMYHRRLDVPEVLGDVRSVVLNSQDRAGRVPSVAPDEVKGGYAATSRLLKAGHTHVGMIDIETLESGLPAAVGRYEGYCAALQDAGLDVDPDLVRFGQGGEEHGYKYAMELLTSRNPPTAIFCANDRGAWGAYQAVSDLRLSIPGDVSIVGFDNQATLAPFLRPGLTTFELPFVAMGRRAVELILQDAEPDGRVELMDCPLIERNSVTHPKEMPPGPT0017992_10742DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_040741596lsdA_2LevansucraseATGTTTATGCACCCCAAGCAACCCCGAATGCTGCGGAAGCGCTCTGCTGCCGCAACGCTCGCAGCGGCAGTCGCCGTGTCGACGTTCCTGGCGGTCCCCTCGGCCCAGGCCAACGAGCCGTCGGACCCGCCGGAAAGCCAGCAAATGCCGGCCCCGACCCCCGGGTTCCCGCTCCCCACGGAACACACGCAGCAGGCCCATGATCCGGCGTCGGACTTCACTTCCAAGTGGACCCGCGCGGACGCCAAGCAGATCATGGCGCAGAGCGACTCCACCGTGGCTCCAGGCGAAAACTCCATGAGTCCGGACGTCACCATGCCGGAGATCCCTGAAGATTTCCCCACCATGAACGAGGACGTGTGGGTCTGGGACACCTGGTCGCTCACCGATGAGAACGCGAACCAGATCAGCTACAAGGGCTATGACGTGATCTTCTCGCTGGTGGCGGACCGGCACGCCGGCTACGGCTTTGACCAGCGGCACTGGAACGCCCGGATCGGCTACTTCTTCCGCAAGACCAACGCCGATCCTGCGAAGGACAAGTGGAACTACGGCGGCCATCTGTTTGTTGACGGTTCCTCCATCGGCAACACCGAATGGTCAGGGTCCACCCGGCTGATGCAGGGCAACCACGTCAACGTCTTCTACACGGCCACCAGCTTCTCGGATGTGGCCGCACGCAACGCAGGCGGAGGGGGTGCCCCGCCGGACGCCGCCATTGCGAAGGCCCTGGGCAAGATCCACGCCGATGAGAACGGCGTCACGTTTGACGGCTTCGAGCACACCAAGCTGCTGGAACCGGACGGCAAGATGTACCAAAACAAGGAACAGAACCCCGGTTTCGCCTTCCGTGACCCCTACACCTTCGAGGACCCGGCACATCCCGGGAAGACCTATATGGTGTTCGAGGGCAACACGGGTGGTACCCGCGGAGACTATGAGTGCAAGGAAGAGGACCTCGGTTACAAGCCGGGCGATCCGAACGCTGAAAACGTCAACGAGGTCAACAGCTCGGGAGCCAACCTCCAGACGGCAAATGTGGGCCTTGCTGTGGCGGACAATAAGGACCTGACCAAGTGGTCGTTCCTGCCTCCGCTGCTCTCGGCCAACTGCGTCAATGACCAGACCGAGCGCCCGCAGATCTTCATCCAGAACGAAAATGGCAAGAACAAGTACTACCTGTTCACCATCAGCCACCAGTTCACCTACGCGGCAGGAATGCGCGGGCCCGACGGCGTGTACGGCTTTGTGGGCGACGGCATCCGCTCCGACTACCAGCCGTTGAACAACAGCGGCCTGGCCCTGGGCTCGCCGACGGACCTGAACCTGCCGTCCGAATCCCCCGAAGCTCCAACCCCGCAGCAGAACGGCCGCCAGTTCCAGGCCTACTCGCACTATGTGCAGCCGGGCGGCCTGGTGCAGTCGTTCATTGACAACGTCAACGGCGTCCGCGGCGGATCCCTGTCACCGACGGTGAAGATCAACTTCCGCAACGGAATTTCGGAAGTTGACCGCTCCTTCGGCCAGAATGGTTTGGGGCCGTATGGTTACCTGCCTACCAACGTCAGGGTTGGCGGAGAAGGCCACTACAAGTGAMFMHPKQPRMLRKRSAAATLAAAVAVSTFLAVPSAQANEPSDPPESQQMPAPTPGFPLPTEHTQQAHDPASDFTSKWTRADAKQIMAQSDSTVAPGENSMSPDVTMPEIPEDFPTMNEDVWVWDTWSLTDENANQISYKGYDVIFSLVADRHAGYGFDQRHWNARIGYFFRKTNADPAKDKWNYGGHLFVDGSSIGNTEWSGSTRLMQGNHVNVFYTATSFSDVAARNAGGGGAPPDAAIAKALGKIHADENGVTFDGFEHTKLLEPDGKMYQNKEQNPGFAFRDPYTFEDPAHPGKTYMVFEGNTGGTRGDYECKEEDLGYKPGDPNAENVNEVNSSGANLQTANVGLAVADNKDLTKWSFLPPLLSANCVNDQTERPQIFIQNENGKNKYYLFTISHQFTYAAGMRGPDGVYGFVGDGIRSDYQPLNNSGLALGSPTDLNLPSESPEAPTPQQNGRQFQAYSHYVQPGGLVQSFIDNVNGVRGGSLSPTVKINFRNGISEVDRSFGQNGLGPYGYLPTNVRVGGEGHYKPGPT0013775_27DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LEVAN_METABOLISMCE-EPS-LEVAN_BIOSYNTHESIS,PGPT0013775-sacB-K00692NANA
D1-29_040751974hypothetical proteinATGATGTCCGAAAAGATGAATCTTTCTTCGCTCCTTAGCAAGCGGAGCACCTGGGTTGCCGTCGCAGCGGCCGGCACCGCCCTGCTGCTGGCCTTAACCGTGCTCATTTCCACCGTTCACACGCCGGACCAGGCCCAGAGCCGGGGAGAAAAGGCCCTCGACGCTGTTGCCGCGGCGCAGGCTGACTTCAAAACCTCCAGGGGCAGCTACGGCACGTACTGGCAGTCGGGCGGGGACCGCAGCCTGGAAGAGGGGCGCCCCATCCAGGCCTCCGGCGTCGATGATCTGCTCAGCATCAGCTGCGCCGAAGGATGGGTGGCTGCTGCCCGGACGGGAAGCGAGATCTTCCTTCGAACCAGCGTTGACAGTGCAACCGCCCGGGCAGGAGCCGGGGAAATCCGCCGGCCGGAATGCATCACCCCCGAGGCTGTTGATGCCATGCTCGGTGACCTCGGCAGAATCGACCGCTCGCCGGCGCCCGGAACGTCACAGGAGCGGCCCGCAGGAGACTCCCTGTACCGCCCGAGCTACCACATCACTCCGGAGCGGGACTGGATGAACGATCCCCAGCGCCCCTTTTTCCTCAATGGGCTCTGGCACTACTACTACCTCTACAACGCGGACTATCCGGACGGCAACGGAACCGAGTGGTACCATCTCACCAGCACGGACCTGGTGACGTGGAAGGACGAGGGCGTTGCCATCCAAAAGTACAAAAACGGGCTGGGTGACATCGAAACCGGCAGTGCCGTGGTGGACCACAACAACACTGCCGGCTTCGGCAAAGATGCAGTTATCTCCGTCCTGACCCAGCAGGACGAAGGCGTCCAAAGGCAGTCACTGTTCTATTCAACCGACGGCGGATTCACCTTTTCCTCCTACGACGGAAACCCGGTGATGGAGAACCCCGGAGCGGAGCACTGGCGCGACCCCAAGATTGTCCGGGATGAGGCGAACGGTCAATGGCTGATGATCCTGGCCGAGGGCCACAAGCTGGGCATGTACACATCGAAGGATCTCAAGAGCTGGCAGTACGCCTCCGGCTTCGAGCGCTCCGGCCTGGGCATCCTGGAATGCCCTGACCTGTTCCAGATGGACGTCGACGGCGACCCCGCCAAGCGGACATGGGTCCTGGCGGCGAGCGCCAACGGAAGCGAAGAAGGCAGGACCACCGGCGTTGCCTACTGGACCGGTGACTGGGACGGGACAACCTTCACTCCCGCCGAGGAGAAACATCAGTGGATGGACGCGGGCTCTGACTTTTATGCCGCCGTTTCATGGAATGACCCGAGGCTTACGGAAGGCCAGCGGATGCAGTCCCGGCAGGTCCTGGGCTGGATTAACAACTGGGACTACGCCCGAAAGCTCCCCACCGGCGACTGGCACGGCGGAATGGATTCCATCGTCCGGGACATCCGGCTTAAGACCGTCGAAGGCAGGCCAACCCTCACCTCAGCTCCCTCCAGGAGCCTGGCCCGGCTCGAGGGAGAACCGTCGGCGTCCGGCCCGCAGACCATCACGCGCGAGGGAACTGACGGGCTCCCTTCCCTGCGGGGCGGTGCCTACCGGCTGGACCTGACGGTTGAGCAGCCGGATTCGGGGCGTGGCGGCGGGGACGTCCCGGAGGCGCTCCTGCAGTTCGCCAGCGACGACTCGATCTTCGCCACGGTTGGCTACAACTTCAAGGACGGCGCCGCCTTCGTGTCGCGTGAGCAGCCGCCGGCCGCTGATGCACACCTTGGCCCCCTGTTCACCGACAGGCGCACGGCCCCGGTTCCGGCAAGGAACGGCACGGTGGACCTGACGGTTTTTGTTGACCACTCCTCCATCGAGGTTTTCGTCAACGGCGGGGAGCAGACGCTCACCTCGCTGGTGTTCCCCAAGTCGGAGGAGCGGGCCCTCAAGCTGGTGTCCGGCGGCGGAAACCTAGGCCTCCGGAACCTGACGTATACGCCGCTGTCGTCCACCCGGTGAMMSEKMNLSSLLSKRSTWVAVAAAGTALLLALTVLISTVHTPDQAQSRGEKALDAVAAAQADFKTSRGSYGTYWQSGGDRSLEEGRPIQASGVDDLLSISCAEGWVAAARTGSEIFLRTSVDSATARAGAGEIRRPECITPEAVDAMLGDLGRIDRSPAPGTSQERPAGDSLYRPSYHITPERDWMNDPQRPFFLNGLWHYYYLYNADYPDGNGTEWYHLTSTDLVTWKDEGVAIQKYKNGLGDIETGSAVVDHNNTAGFGKDAVISVLTQQDEGVQRQSLFYSTDGGFTFSSYDGNPVMENPGAEHWRDPKIVRDEANGQWLMILAEGHKLGMYTSKDLKSWQYASGFERSGLGILECPDLFQMDVDGDPAKRTWVLAASANGSEEGRTTGVAYWTGDWDGTTFTPAEEKHQWMDAGSDFYAAVSWNDPRLTEGQRMQSRQVLGWINNWDYARKLPTGDWHGGMDSIVRDIRLKTVEGRPTLTSAPSRSLARLEGEPSASGPQTITREGTDGLPSLRGGAYRLDLTVEQPDSGRGGGDVPEALLQFASDDSIFATVGYNFKDGAAFVSREQPPAADAHLGPLFTDRRTAPVPARNGTVDLTVFVDHSSIEVFVNGGEQTLTSLVFPKSEERALKLVSGGGNLGLRNLTYTPLSSTRPGPT0019220_43DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-LEVAN_METABOLISMCE-EPS-LEVANBIOSE_BIOSYNTHESIS,PGPT0019220-sacC|levB-K01212NANA
D1-29_040762100acyIIPenicillin acylase 2 proenzymeATGTCCTCTGAGACGTTCCGGGACCAGTGGGGCGTCCCGCACCTGCGGGCAGACAGCGTGGACGAGCTAGCGTTCCTGCAGGGATTGAACGCGGCCACGGACCGTTCCTGGCAGATAGAGGTGGAGCGGTGGCGCTCGGAAGGCAGGACGGCCGAGCACCTGGGGGCGGACGGGCTCCACTGGGACCGCTTTACCCGCCGTGTGCGGCTTGACGATACAGCCCGCCGTTGCTTCGAAAACCTGGACGCAGGCACCAAGCGCTGGTGCAGCGCGTACGTGGACGGCGTGAACCACGCCCTGAAATCCGGGCGCAGGGACGCCCCGGAATTCGGGACTACGGAAACAGCACCGGCCGCGTGGCAGCCCTGGACGCCGCTGGGTGTCTTCCTGGTCCACCACATCCTGTTCGGCACCTTTCCCAACAAACTGTGGCGCGCCCATGTGGCCGAAACCCTCGGTGCCGATGCCGTGGAGCTGTTCAGCATCGAGGCCCCAGTGTGGGCCGGAAGCAACGCCTGGGCAGCCGCCGGCCACCTGACGGCGTCCGGTTCCCCGCTCATCGCAGGAGATCCGCACCGCCTGATGGAACTGCCCGGCGTTTACCAGCAGGTGCGCCTTGCGTGCCCGGAGTTCGACGTCGTCGGGCTGGCCTTTCCGGGTGTCCCCGGAGTGCCCCACTTCGGCCACACCGGGACAGTTGCATGGGCCGTAACCAACGCGATGGCCGACTACCAGGACCTGTACAGCGAGCAGTTAAGGCACCACGGCGGCGCACTCCAGGCGCTCGGGCCCGCCGGCTGGCGGCCGGTCCCCGTCCATCACCAGGAAGTCATCAGGGTCCGTGGTGCCGAAGCCGAGACTATCGACGTCATTGAAACTGACCGCGGTCCGATCATCTCCGGCGGTATCGACGGCGGCGCGGTCAGTCTGCGGACGCCTGCCCGGGCCGGGGGGACGCTGGGTTTTGACGCCCTCCTGCCGCTGCTGCAGAGCCGTTCCGCCAAGGACGTGGAAGCAGCACTGGAAGCCTGGGTGGAGCCGGTCAACTGTCTGCTCGTGGCGGATTCCGGCGGCGGATTGCGCCAGCTTGTAGCGGGGAAGGTCCCGGTCCGCAGTGCTCAAAACCGTGTGCATCCGGTGCCGGCCTGGTCCCAGGAGCATCAGTGGGCGGGAGGCTGGGAGGAACTTCCGCGTTCTTCCGTGCCAGCTTTGGCGGTGAATGCCAATGACCGCGAGGCCGGCGGCGGAGACCGGCTGGGGCTGGAATTCGCCCCGGCACACCGTGCCCGGCGGATCCGGCACCTGCTGGAGGAAGGCGGGACCGCACTGGATGCCTCAGCCATGCAGAAAATCCATATGGATACCCGGCTGGGTTCCTGGCCTGCGCTCCGCGCCCTGCTCCAGGCGCTGACCGGGCTGTCCGCCGATGCCGCGGCGCTCCGCGAACGGCTGCTGGCCTGGAACGGGCATATGGATGCGGACAGCGAAGACGCCGGTACCTTCGCCGCCTGGCGGTCCGCCCTGGTTCTGGCCCTGGCAGGCACCTCCACGCTGAGTCCGCTGGCGGCTCCCCACGGCCGCTCTCCCCTGTTCGGACCCTGGCTGCATCTGGAGTCGCGGATCGGTTTCGCCTTGGAAACCCTGGTCGCGAATGGCAGCCACCACGGCATCGACGTCGTCGGAGCAGCCACGGACGCCCTGGAACAAGTGGCGGCATCTGCTCCGGCCGGAACAGGGGGCACCAGTACGTGGGGCACCACGCACACCGTGCTGCCGCTCCATGCCCTCGCCGAGCACAGGGCCACTGCCTCAGCAGCACCAACAGTCCCCCAGACGGCCCTGTCCGGTGACACCGGCTGCGTCCTTTCCACCGAAAGCCTGCCCGGCGTGACCGACGGGTCATTCCGGGGGCCGGTGGCCCGCTATGTCTGGGACCTCGCCGACCGCACCAACAGCCGGTGGATCGTACCGTTCGGCAGCTCCGGAGTTCCCGGCCACCCTCACTTCGCCAGCCAGCTCCCGCTGTGGGCCGCCGGGGACCTCATCCCGGTCGTGACTGACTGGGAACAGCTCATCAAGGAGACCAATGACCAGTCTTGAMSSETFRDQWGVPHLRADSVDELAFLQGLNAATDRSWQIEVERWRSEGRTAEHLGADGLHWDRFTRRVRLDDTARRCFENLDAGTKRWCSAYVDGVNHALKSGRRDAPEFGTTETAPAAWQPWTPLGVFLVHHILFGTFPNKLWRAHVAETLGADAVELFSIEAPVWAGSNAWAAAGHLTASGSPLIAGDPHRLMELPGVYQQVRLACPEFDVVGLAFPGVPGVPHFGHTGTVAWAVTNAMADYQDLYSEQLRHHGGALQALGPAGWRPVPVHHQEVIRVRGAEAETIDVIETDRGPIISGGIDGGAVSLRTPARAGGTLGFDALLPLLQSRSAKDVEAALEAWVEPVNCLLVADSGGGLRQLVAGKVPVRSAQNRVHPVPAWSQEHQWAGGWEELPRSSVPALAVNANDREAGGGDRLGLEFAPAHRARRIRHLLEEGGTALDASAMQKIHMDTRLGSWPALRALLQALTGLSADAAALRERLLAWNGHMDADSEDAGTFAAWRSALVLALAGTSTLSPLAAPHGRSPLFGPWLHLESRIGFALETLVANGSHHGIDVVGAATDALEQVAASAPAGTGGTSTWGTTHTVLPLHALAEHRATASAAPTVPQTALSGDTGCVLSTESLPGVTDGSFRGPVARYVWDLADRTNSRWIVPFGSSGVPGHPHFASQLPLWAAGDLIPVVTDWEQLIKETNDQSPGPT0028075_1768DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
D1-29_04077588iucB_2N(6)-hydroxylysine O-acetyltransferaseATGACCAGTCTTGAAACAGCCCTTCCACTTTCTGCCAGGCCTTCCGTTTACCAGGAGACATTGCCCGCCCTCGGCACCCTTCGGCTTCTCCCGCTTGTCCCTGAGGCTGACGCCGACCTGATCCACGGCTGGGTGAAAGAGGAACGTGCCAGGTTCTGGGGCATGCAGAACATGAGCCGGGATGGAGTCAGGGACATTTATTCATTCTTGGACAGCCTGGATACGCATCACGCCTACCTGATCTCGGTTGAAGACAATCCGGTGGGGCTGTTCCAGACTTATGAACCGCTTCAGGACCCGGTGGGCGAAGCCTACGAGGCACGTCGGGCGGATACGGGCCTGCACCTCCTGCTTGCTCCTGCCACGCAACCGGTCCATAACTTCACGCCCATCCTCATTTCGGGGCTGATTGGCTATTTGCTCTCCGACCCCGCCAAGGACCGTGTGGTGGCCGAACCTGATGCCCGGAACGCCAAAATGATCCAGCGGCTGCGGGCATGCGGTTTCGAGCTCGGAGCCAAGGTGCAGCTCCCGGAGAAGGAAGCACAGCTTGTCTTCCTGACCAGGGAACGATTCCAAAGGTTGTAGMTSLETALPLSARPSVYQETLPALGTLRLLPLVPEADADLIHGWVKEERARFWGMQNMSRDGVRDIYSFLDSLDTHHAYLISVEDNPVGLFQTYEPLQDPVGEAYEARRADTGLHLLLAPATQPVHNFTPILISGLIGYLLSDPAKDRVVAEPDARNAKMIQRLRACGFELGAKVQLPEKEAQLVFLTRERFQRLPGPT0028075_35DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
D1-29_04078213hypothetical proteinATGACGTTTGAAACCACTGATTCCGTAACGCTGAAAATCTGGGACCGCACAGCTATCGACCACACCCTCGATTCCGTTGTACGGGACCTGTCCCCGCGCGCGGCAGCAGCTAAATGCGGCATCGCCATCACCCGCAGCGGCCCCAACACCTTCACGGTTGGCCTGAGCCACCACGTCCCGCAGGGCTCCACTTTTGAGGAAGTAACCCGCTAAMTFETTDSVTLKIWDRTAIDHTLDSVVRDLSPRAAAAKCGIAITRSGPNTFTVGLSHHVPQGSTFEEVTRNANANANANA
D1-29_04079846hypothetical proteinATGAGGCAACTACCCGAGGCAGTACCCAGGTTCCAGGCAGGAGAACAAGCAGAGCCGGAAGGCCGGCAGCTCTCCCTGATCCCCGCAACGCTGGTGTCGGCGTCGGGCTTTATCCTGTTCGTGCTGGAGGACCGCCTGAACGGGTTCATCCTGCTGGCGGCGGCGCTGGTCTTGGCGGGACTTATCAGCCGCAAGCTCTTCACCGACCTGGCCCTGATAGCCGTGGGCCTGACCGCTATGAGCCTGGTTCCCATCACTACGGATATCAGCACTGAGCACATGCTGGTGATGGGTACGGCCATGATCGTGGCCGTCGGCGTCCCCTACGCGGTCTCGAGGTATGTCACCAAGGACCATGCCATCAGGTTCCCGGTACGGACAGGCCAGCCGTGGACCCGGGGCGAGAAGTGGTACCTGCCCGCCGTCCTGGTGCTCGGCTATGCGGTGATTCCGGTCTACATGATCCGGACCGGCGTCTACCAAAACTGGCCGGCCGTCAGCGATCCGGACGGCATCGGCCGCCTCTTCCTGGGCACCAATGTGCTGGGCATCTGGGACGAGCTGTTCTTTATCTGTACCGCGTTCACGCTCCTGCGGCGGCACCTTTCCTTCTGGCAGGCCAACCTGCTGCAGGCGGTGCTCTTTACGTCGTTCCTGTGGGAGTTGGGATTCCACGCTTACGCGCCGCTGTTTATCTTCCCGTTTGCGCTGCTCCAGGCGAAGCTTTTCACTCTGACCAAATCACTGTCGTACATTGTGTGCGTCCACCTGCTCTTCGATTTCGTCCTGTTCCTGGTCCTGGTCCATGCACACAACCGCGAGTGGATCGACATCTTCCTGTACTGAMRQLPEAVPRFQAGEQAEPEGRQLSLIPATLVSASGFILFVLEDRLNGFILLAAALVLAGLISRKLFTDLALIAVGLTAMSLVPITTDISTEHMLVMGTAMIVAVGVPYAVSRYVTKDHAIRFPVRTGQPWTRGEKWYLPAVLVLGYAVIPVYMIRTGVYQNWPAVSDPDGIGRLFLGTNVLGIWDELFFICTAFTLLRRHLSFWQANLLQAVLFTSFLWELGFHAYAPLFIFPFALLQAKLFTLTKSLSYIVCVHLLFDFVLFLVLVHAHNREWIDIFLYNANANANANA
D1-29_04080264hypothetical proteinATGAAGAAGCGCATCCCGGTCACCGAAAAGCTGGCCCGAAGGGTTATGAACCTGTCGGTGCCGCTCCATCAGTCCACCGGCACACATCGCGAACTATCCGGCATCTGGCAGAGCCCCGCCGGAGTGCGGATCCCGATGTTCGAGGGCCAGCTCCTGCCCGCTGATGCCGGCAGGCCCTGCCTCTGGACGCACGTTAGCTTTCATGGATCCGGGCCGGAATCGGGCCGCGCCAGGTGGGCGGTTCCGGAACCCCACCTCCTGTAGMKKRIPVTEKLARRVMNLSVPLHQSTGTHRELSGIWQSPAGVRIPMFEGQLLPADAGRPCLWTHVSFHGSGPESGRARWAVPEPHLLNANANANANA
D1-29_04081486hypothetical proteinGTGGGGGCTTTGATCAATTCGGCCTCGTTCGTTATCAAGGCATGGAATCACGTAGTGGACTTCGTGGTGCAGCCGGAAAACGGGGAGACCCTGAGGGTCCCGCTGGTTTACACCGGCGTGCGGTCGGGGCCTATCCAGCTGCGGGTGGAGTTCCTGCAATCCCGGGTGGAAGCGGAGGTGTTCGATTGGGAGGATGTTCTTGAGCTGTCCCTGGCCCTTCCTGCAGGACGCGTCTACTTCTGTGAATCCGGCGGGGCGGACAGGCAGGAAGTCGGGACGATTCCGGACAAGGAGGAGGGCATCTACCGTGCACGGCTGCACGCCATGGGCAGGGACCGGGCCTTTGACGCTCCCGTGAAGTCGCCCAGGGAACGCCACCTGGTGCAGTTGTGGAAGGAACCGCCCTCGCCCATGTCCGTCCTGGCATCAGGGTCAGAACATGCGGTGGGCGCGGCCCGGCTGGCGAAGATGTGGCACGAGGAGTAGMGALINSASFVIKAWNHVVDFVVQPENGETLRVPLVYTGVRSGPIQLRVEFLQSRVEAEVFDWEDVLELSLALPAGRVYFCESGGADRQEVGTIPDKEEGIYRARLHAMGRDRAFDAPVKSPRERHLVQLWKEPPSPMSVLASGSEHAVGAARLAKMWHEENANANANANA
D1-29_04082213hypothetical proteinATGGGACGCGACTTCGGTCCCCTGCTGGTGACCGTCGGCCTGCTGGTGGTCCTGGTGGGCGTGCTGGCATGGACGGGCGGGCTGTCCTGGTTCGGGCGCCTGCCCGGGGACATCCGGATCGAACGCGAAAACACCCGCGTCTACATACCCCTGGTCTCCATGCTCCTGGTCTCGGTCGTGGTCAGCATCGTGATGTCGCTGTTCCGCAGGTAAMGRDFGPLLVTVGLLVVLVGVLAWTGGLSWFGRLPGDIRIERENTRVYIPLVSMLLVSVVVSIVMSLFRRNANANANANA
D1-29_04083180hypothetical proteinATGAACTATTACAGCCCGGCGGCGCAGGAACGGGTTCGGGACGCCGCATACGATGCAGTCGAAAAGGTCCTCAACAGCATCTTCGAGCCGTTGAACCGGCATGCGCTTACAGCACGCTGGCATCAGGCATGCGAAGCCATGGAAAAACACCTGGAAGCGCAGGACAACGGCGACGAGTAGMNYYSPAAQERVRDAAYDAVEKVLNSIFEPLNRHALTARWHQACEAMEKHLEAQDNGDENANANANANA
D1-29_04084573hypothetical proteinATGACGGCAACCTACCGGTACGACATGGAGGTTCTGCACCTCCTCGTGTCGCCTGCGCACGCCTACTTCGGCCGGGCACGCGAAGGGGCGGCGGATGTCCCCACCGCCGACGCCGAGCAAGCGGAACTGGTTGCCGGCAAGGGCATTGTGGGAGACAGGTTCTTTGGCAAGGCCGCGCACATGGATGCCGCAGTCACCCTGTTCGCGGTGGAGGCTCTGGAAGCGATCGCCGCCGAGCTGGGGACGGCGCCTCTTGATCCACTGCTGACGCGGCGCAATGTGGTCCTCCGCGGTGTGCAGTTGGCTCCGCTGCTGGGTCAGGAGTTCTCGCTGGAAACGCGCGGGGACCTGGTACGGCTGAAGGCCGGGCGTCCCGCCAACCCCTGCGCGTGGATGGACCAGATGCTGGCGCCGGGAGCGCACAAGGCGATGCGGGGACGGGGCGGTGTGCGTTGCCAAGTGATCTCAAGCGGGATTCTGCACCGCGGGCCTGCCGTGCTGACCAGCCCGGTGCCGCTTGAGCCTGAGCGTGCCGGCGAGCCCACGTTGTTGCGGCCATCGCGGTTGCCGTAGMTATYRYDMEVLHLLVSPAHAYFGRAREGAADVPTADAEQAELVAGKGIVGDRFFGKAAHMDAAVTLFAVEALEAIAAELGTAPLDPLLTRRNVVLRGVQLAPLLGQEFSLETRGDLVRLKAGRPANPCAWMDQMLAPGAHKAMRGRGGVRCQVISSGILHRGPAVLTSPVPLEPERAGEPTLLRPSRLPNANANANANA
D1-29_040854104dltAD-alanine--D-alanyl carrier protein ligaseATGGTGAGCTTCCCAGTGCCGGTTAAGCCCGCGGCCGCCTCGGCCGTCACCGGCGGGAACGGGGCGGCGCCGATCCACAGCCCGCAGCTGCCAGGGGTCCTGAAGGCACCCCCTGTACGCACCCTGGTGGAGATTTTCGAAGCGACTGTGGCGGCTTATCCGGATTCCTCCGCCCTCGACGACGGCCGCGTGTGCCTCAGTTACGCCGAGCTGCAGGCGGAGGTGAAGGCGTACGCCGGCCGGTTGCGAGGTTCCGGCATTGGCGCCGGGGACAGGGTGGGGGTGCGGATCCCGTCCGGCACCAACGAACTGTATGTGGCGATACTTGCCGTCCTGTTTGTTGGAGCCGCGTATGTCCCCGTGGATGCGGATGATCCGGATGAACGGGCCAGGCTTGTGTTTGCCGAGGCCGGGGTTTCCGCCGTCCTGGGCGCCGGCGGCATCCAGGACGCTCTCGAATCCGGAGCCTCACGTCCCCCTGGCGGCCCCCATCAATCTGGCGACTCCGGGGCGAAGCCGCGTTCGGCCAGCCCCGATGATGATGCGTGGATTATCTTCACCTCCGGGTCCACCGGTACCCCGAAGGGCGTGGCGGTAACGCATCGCGCTGCCGCGGCATTCGTGGATGCCGAGGCCAGGCTGTTCCTGCAGGAGGAACCGCTGGGCCCTTCCGACCGTGTGTTGGCCGGCCTGTCAGTAGCTTTCGACGCTTCCTGCGAAGAGATGTGGCTCGCGTGGCGGCACGGGGCCTGCCTGGTGCCGGCCCCCCGCGCCTTGGTACGGACAGGAATGGACCTGGGTCCGTGGCTTGTCACCAAGGGCATCACTGCTGTCTCCACAGTGCCAACACTGGCGGCGCTCTGGCCGGTGGAGACGCTGGACGCAGTGCGGCTGCTGATCTTTGGCGGTGAAGCCTGCCCGCCGGAGCTGGCAGCCCGCCTCGCCGTGCCGGAACGCGAGGTGTGGAACACCTATGGACCCACCGAGGCGACTGTGGTGTCCTGTGCAGCACTCATGGACGGATCCGGGCCCGTGAGAATCGGCCTTCCGCTGGATGGCTGGGACCTGGCCGTCGTGGACGCCCATGGGATACCCGTCTCCGAGGGCAATGTCGGAGAGCTCATCATTGGCGGAGTAGGACTGGCCAGGTATCTGGACCCGGCCAAGGATGCGGAAAAGTTCGCCCCCATGGAAACTCTGGGATGGAAGCGCGCCTACCGCAGCGGCGACTTGGTGCGCTTTGAACGCGAAGGACTTCTGTTCATGGGCCGGGCCGACGAGCAGGTCAAGCTCGGCGGGCGGCGGATTGAGTTGGGGGAAGTCGATTCCGCCCTGCAGGCACTCCCCGGGATCCACGGCGCCGCCGCCGCGGTGAAGAACACCGGTGCCGGGCACCAGGTCCTGGTCGGCTACCTCGCCCCCGGGCCGGGCGTAGAACCCGACCTTTCCGCTTTCCGTGACCTGCTGGCCCAGACGTTGCCGGCCGCGCTGGTTCCCATGCTGACCGTCGTCGGATCCTTGCCGGTAAAGACCAGCGGCAAAGTGGACCGGGCCGCGCTGCCGTGGCCCCTCATATCTCCCGGCGAGGAAAGCACTGGAACGGCGTCCCTGGATCCGGTTGCCGCGTGGATCGCGGAGCAGTGGACAGCGGTCCTGGGCACGGCACCGGAAGGCCTGGAGGCCGACTTTTTCGCGCATGGCGGTGGCAGCCTGGCCGCCGCCCAGCTGGTGTCTGCCCTGCGGACGCGATACCCGACCATCGCCGTCGCCGATATCTATTCCCGGCCCCGGCTGGGAGCCCTGGTAGAACTGGTCCTGGCATCTGGCGATGAAGCGGCTGCTTTTCCTGCCCGTGAGCGAACCGTCAGGCCGACGGCGCTGAAATCCCAGATCTTCCAGGTCCTGATCAGTGCGCCGCTGCATGTCCTGGTTGGGATGCGGTGGCTGACTTACCTCATGGCCGCCAACAACCTGCTGTCCATGCTGGGGCTTCTCACTGCTGCACCCACCGTTTCCTGGTGGTGGGTACTTGCTTCCTGGGCAGTGTTCGTCAGTCCTTTGGGCCGCATGGCACTTGCCGCGGCCGCAGCCCGGATACTCCTGCGTGGTGTTGTGCCGGGCGCCTATCCCCGCTCGGGCAAGGTGCACCTGAGGCTGTGGCTGGCGGAACAGATCGCTGACCTCACCGGAGCTGTCAGCCTCGCCGGAGCACCGTGGATTCCGTACTATGCCAGGGCATTGGGCGCGAAGATCGGCCCGAATGTCGACCTCCATTCCGTGCCTCCTGTCACCGGGATGCTCTACCTCGGCCCTGAGTCCTCGGTTGAGCCTGAAGTGGATCTGTCGGGCTGGTGGATCGACGGCGACCTGGTCCACATCGGACGCATCCATGTTGGCCGGGGCGCGACTATAGGCTCCCGCAGCACACTGATGCCCGGTGCCCGGGTGGGAGCCGGCGCTGAAGTGGCCCCCGGCTCCGCGGTTCTGGGAAAGGTGCGGGCGAACCAGCATTATGCAGGGTCACCGGCCGTACGGCGAGGCAAGGCCCGCCCAAGCTTTCCTGCAGAGCCGGCCCGCAGCCGCGGCTCCCGTCTTTGGTTCCCGGCGTACGCTGCCGGTTCCACTTTGCTCGCAGGGATCCCGCTGTGCTCAGTGGTGGCTGCCGCCGCGGTGGTCGCCTGGGCAGTTCGCGGCCAAGGTTCCCTGGTGGAGGCCTGGCCGGTTGTGCTGGCGGCTGTGCCGTTGGCGGCCGCCGTCTGGTTCATCACCAACCTCCTGCTCACGGCAGGCCTGGTCCGCATCCTTGGGATGGGGCTGAAGGAAGGCCACTACCGGGTACGAAGCCTGACTGGATGGCGGATCTGGGCCACGGAGCGGGTGCTCGATGCGGCCCGGGACCTGCTGTTTCCCATCTACGCAAGCCTGTTCACCCCGGTGTGGCTCAGGATGCTCGGCGCCAAGGTTGGCCGGAACGTCGAAGCGTCCACCGTGCTGCTCCTTCCGTCAATGACCACGGTTGGCGACGGCGCCTTCCTCGCCGATGACACCATGATCGCCTCCTACGAACTTGCCGGCGGCTGGATGAAAGTGGCTCCCGCGAAGATCGGCAAACGCGCGTTTCTGGGGAATTCCGGAATGACCGGTCCCGGCCGCAGCGTGCCCAAGAATTCCCTCGTCGCGGTGCTCTCCGCAACACCGGCCAAGGCCAAATCCGGGACGTCCTGGCTGGGCAGCCCTCCCGTCCGGCTCAGGAGGTCAAAGCTCGACGCCGACCAGTCACTGACGTTCGATCCTCCCCTTCGGCTGAAGCTCTTCCGCGCGTGCTGGGAACTGTGCCGGGCGATTCCGGTGTTCCTGACAGTGGGTATTGCCGCAGGAGTCCTGCTGGCTCTGGATCTGCTGGCCGGCAGCACCGGCGGCTACGTCACGGCGGCTCTTTTGGGCGGCGTCATCATCGTGGCCGCAGGTGCCGTGGCAGCGGCGGCCTCCGTCGTCGCCAAATGGCTCCTTGTGGGGCGAATCAAGGCCGGAGAACATCCGCTGTGGAGTTCCTTTATCTGGCGCAACGAGGTGGTGGACACCTTTGTCGAGATGGTCACAGCGCCGTGGTTCGCCCGGTCCGCAACAGGCAGTCCTGCACTCGTCTGGTGGCTGCGCGGGCTGGGTGCGCGAATCGGCTCCGGCAGTTGGTGCGAAAGCTACTGGCTGCCTGAAGCAGACCTGGTCACTCTGGGTGAAAACTCCACGGTCAACCGCGGCTGCGTGATCCAGACCCATCTCTTCCACGACCGAGTCATGAGCATGGCCGAGGTCACCCTCGAGGACGGTGCCACCATCGGTCCGCACGGCGTGATTCTGCCGGCGGCACGCATCGCCGCCGGGGGCACCGTCGGCCCGGCGTCCCTGGTCATGCGCGGCGAAACCGTCCCCGCAGGCAGTTATTGGATCGGGAATCCTGTCAGCCCCTGGTCGGGAGGGCCATCGACCCCGACGGCGCCAGCCCCTCAGCCGGCGCCTGTCCCTGAGCCAGCGCCAGCCCCTGGGCCCGATGGTCAGACGCCCGGCCCCGCCGCCAGCCCCGTTCCTGGGCAAGGCCCAGTATGAMVSFPVPVKPAAASAVTGGNGAAPIHSPQLPGVLKAPPVRTLVEIFEATVAAYPDSSALDDGRVCLSYAELQAEVKAYAGRLRGSGIGAGDRVGVRIPSGTNELYVAILAVLFVGAAYVPVDADDPDERARLVFAEAGVSAVLGAGGIQDALESGASRPPGGPHQSGDSGAKPRSASPDDDAWIIFTSGSTGTPKGVAVTHRAAAAFVDAEARLFLQEEPLGPSDRVLAGLSVAFDASCEEMWLAWRHGACLVPAPRALVRTGMDLGPWLVTKGITAVSTVPTLAALWPVETLDAVRLLIFGGEACPPELAARLAVPEREVWNTYGPTEATVVSCAALMDGSGPVRIGLPLDGWDLAVVDAHGIPVSEGNVGELIIGGVGLARYLDPAKDAEKFAPMETLGWKRAYRSGDLVRFEREGLLFMGRADEQVKLGGRRIELGEVDSALQALPGIHGAAAAVKNTGAGHQVLVGYLAPGPGVEPDLSAFRDLLAQTLPAALVPMLTVVGSLPVKTSGKVDRAALPWPLISPGEESTGTASLDPVAAWIAEQWTAVLGTAPEGLEADFFAHGGGSLAAAQLVSALRTRYPTIAVADIYSRPRLGALVELVLASGDEAAAFPARERTVRPTALKSQIFQVLISAPLHVLVGMRWLTYLMAANNLLSMLGLLTAAPTVSWWWVLASWAVFVSPLGRMALAAAAARILLRGVVPGAYPRSGKVHLRLWLAEQIADLTGAVSLAGAPWIPYYARALGAKIGPNVDLHSVPPVTGMLYLGPESSVEPEVDLSGWWIDGDLVHIGRIHVGRGATIGSRSTLMPGARVGAGAEVAPGSAVLGKVRANQHYAGSPAVRRGKARPSFPAEPARSRGSRLWFPAYAAGSTLLAGIPLCSVVAAAAVVAWAVRGQGSLVEAWPVVLAAVPLAAAVWFITNLLLTAGLVRILGMGLKEGHYRVRSLTGWRIWATERVLDAARDLLFPIYASLFTPVWLRMLGAKVGRNVEASTVLLLPSMTTVGDGAFLADDTMIASYELAGGWMKVAPAKIGKRAFLGNSGMTGPGRSVPKNSLVAVLSATPAKAKSGTSWLGSPPVRLRRSKLDADQSLTFDPPLRLKLFRACWELCRAIPVFLTVGIAAGVLLALDLLAGSTGGYVTAALLGGVIIVAAGAVAAAASVVAKWLLVGRIKAGEHPLWSSFIWRNEVVDTFVEMVTAPWFARSATGSPALVWWLRGLGARIGSGSWCESYWLPEADLVTLGENSTVNRGCVIQTHLFHDRVMSMAEVTLEDGATIGPHGVILPAARIAAGGTVGPASLVMRGETVPAGSYWIGNPVSPWSGGPSTPTAPAPQPAPVPEPAPAPGPDGQTPGPAASPVPGQGPVNANANANANA
D1-29_040861671hypothetical proteinATGACCCTGCCCGCCGGCGCCCCGGGCACAGTCGGCTACGATGAGCGGGTGAGCCGACCTTTTGCTTCCCCCGAACAGGGCCGGACACTCACCGGGGAACCCCTGCCGGATTCCTACACTCCAGGTCACGGCTCCGCAGACTTCAGCGTTTCACGGTATGAGCTGTACCTCGACTACCGGGTGGCCACAAACCGCCTGGACGCCCACGTAACAGTCGCCGGGACCGCCATCTCCCGGCTGCAGTCCGTCATGCTGAACCTCTCCGGCCTGCAGGTCATCAAGGTGAGGGTGGATGGCAAGCGCCCGGCACGGTTCATCCAGCGCGAGGGCCGCCTTGTTATCACTCCGGCAGCGCCTCTCGCCCCGGGATCCGAATTCAGTCTGGACATCCGCTATGAGGGCCGGCCGGGGCCCCTGCGCGGAAACTGGGGCGACGTCGGCTGGGAAGAACTAACCGACGGCGTCCTCGTCGCCGGGCAGCCCACAGGAGCACCATCCTGGTTTCCCTGCAACGACCATCCCAGCCGCAAAGCCAGCTTCGGATTCACCGTCACCACGGACATGAACTACCAGGTGGTCTGCAACGGGACCCTGGTGTCCAGGCATTCGAAGGCCAGCCGCGAAACCTGGGTTTATGAACAGGCCGAACCCCTGGCGACTTACCTCGCCACCGTACAGATCGGCCGCTACGATATCGTTCCCCTAGCGGGGAGCGCCAGTGGAACGGGAGCCGCAATCGCGGGTGCGGGACCCGCCGTCGCGAATGGCGGAGCCACAATCAGAGCGGCGCGGGCCGCCGTCGGGGATATACCAGTCACTGCCATACCTGCCACCGGAGCCGCAATCACGAGTGCGGGAGCCGCCGTCGGGGGCAGTGGGGTGCCAGTCACGGGTGCGGGAGCCGCAATCACGAGCGCGGGAGCCGCCGTCGGGGGCATACCAGCCAGAGCCATCCCAGTCACAGCCATACCCGCCACCGGAAGCGGGGTCCGGCAACTCGTTGCGGCTCCGGCGGTGCTGATGGACCGGGCGCAGGAAGCGCTCGTCCGGCAGCACGAGATGATGGCGACGTTCGAAGCCTGCTTCGGGACGTACCCCTTTCAGTCTTATACCGTCGTCGTACCGGATGACGAACTGGAGATTCCCCTCGAAGCGCAGTCACTGTCGATTATCGGCCGTAACCACCTGGATCTGCGGTGGGAATCCCAGCGGCTGATCGCCCACGAACTGGCGCACCAATGGTTTGGAAATTCATTAACGGCCTCCTCCTGGAAGGACATCTGGCTCCACGAGGGGTTCGCCTGTTACGCCGAATGGCTGTGGTCAGAAGCATCCGGGCAAGGATCGGCGGCAGCCCGGGCAGAAGCTGCCTGGGAAGGCCTCGCATCCAAACCGCAGGATCTGCGGATCGGAGATCCCGGCCCGGAACTGATGTTCGACGACCGTGTTTACAAACGGGGTGCACTGGCCCTGCACGCCTTGAGGACAGCGGTGGGCGATGCCCTCTTTTTCGGCCTTCTCAGGGCTTGGACCGAACGAAACTGTTTCGGATCAGTGTCCACCGGAGATCTGACCGAGCTGGCTCAGGAACTTTGTGGGAGTGTCCCCGGCTTTGACGCCGAGGGGATTCTTCATCCCTGGCTATACGAATCAGTTCTGCCGCAACGCTAAMTLPAGAPGTVGYDERVSRPFASPEQGRTLTGEPLPDSYTPGHGSADFSVSRYELYLDYRVATNRLDAHVTVAGTAISRLQSVMLNLSGLQVIKVRVDGKRPARFIQREGRLVITPAAPLAPGSEFSLDIRYEGRPGPLRGNWGDVGWEELTDGVLVAGQPTGAPSWFPCNDHPSRKASFGFTVTTDMNYQVVCNGTLVSRHSKASRETWVYEQAEPLATYLATVQIGRYDIVPLAGSASGTGAAIAGAGPAVANGGATIRAARAAVGDIPVTAIPATGAAITSAGAAVGGSGVPVTGAGAAITSAGAAVGGIPARAIPVTAIPATGSGVRQLVAAPAVLMDRAQEALVRQHEMMATFEACFGTYPFQSYTVVVPDDELEIPLEAQSLSIIGRNHLDLRWESQRLIAHELAHQWFGNSLTASSWKDIWLHEGFACYAEWLWSEASGQGSAAARAEAAWEGLASKPQDLRIGDPGPELMFDDRVYKRGALALHALRTAVGDALFFGLLRAWTERNCFGSVSTGDLTELAQELCGSVPGFDAEGILHPWLYESVLPQRNANANANANA
D1-29_04087687hypothetical proteinATGGCTAACGTGCGCGATACGGAAATAGGAGGGGCTCTAGTCAGGGCGGCAGCCTTGGCGGCCCCCGGCCTTGCGGAGTTAAAGCTGCTTGACGCCTCCGAACACCGCCGCGCCGCTTCTTTCCATAAGCCCACAGACGCTGCTGAATTCCTGGCCGGGAGACTGGCGCTGCGATTATTCGCTGCAGAGCTGGCTGGTACTTCGCCCGCAGCTTTGGTGGCGGCCTACAGGTGCAGCCGTTGCGGCGGAGGAGAAGGGGACCATGGCCAACCAGGCTATGTGCTCCAGGATGGGGGAGCGGGTCCTCTACTGAGCCTGAGCCGGGCGGGCGGGTGGGTTGTCCTAGCCGGCGCCGGCAGCGACGGCGGCAGCCTGAGCGGAATAGGCGTAGACGTGGAGCAGGCCGGCAGAACAGCATTCCCCGGCTTCGACGCAGTTGCCCTGACTCAGCGGGAACGCACTAGCCTGGCGCCTTCCACCACATCAGAAGGGCGTAGCCAGCGGGCGCGGTTCTGGACCCGGAAGGAAGCTTTCCTTAAGTCGATCGGCGAGGGGCTGGGACGGGACCCCGCAACATGCGACGTAACCGCGGAACGCCTTGAAGGAGTCTTGCTGGCCGATGTGGACCCGGCGCGCCTAGGGCTCCCCTCGGGAACTGTCGCAGCCTTAGCGTTGCGGCAGAACTGAMANVRDTEIGGALVRAAALAAPGLAELKLLDASEHRRAASFHKPTDAAEFLAGRLALRLFAAELAGTSPAALVAAYRCSRCGGGEGDHGQPGYVLQDGGAGPLLSLSRAGGWVVLAGAGSDGGSLSGIGVDVEQAGRTAFPGFDAVALTQRERTSLAPSTTSEGRSQRARFWTRKEAFLKSIGEGLGRDPATCDVTAERLEGVLLADVDPARLGLPSGTVAALALRQNPGPT0008845_2148DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008845-LYS5|acpT-K06133NANA
D1-29_04088861COG3662putative proteinATGCCGGTCCACGGGAAAGTCAGCCCATGGGCAGGGAACTCAGCAGTCGGCGTCGCCCGCTTTTGGCCTCTCCGGTACCCTGTTGAAATGGTGGGTGGAAATGCCGACATGGGTGCCGAAGGCATCCTGCTCGCAGGGGCGGGCCGCGCCATTTTGCTGCAGCTCGCCAACCCTGCCGTGGGCCACGGCGTCGCTGATCACAGCAACTTCGTTGACCGTCCGCTGGACAGGTTCCTGGCCACCGTAACCTACGTGTATGCCGTGACGTACGGCGACGAGGAGCAGGTGAAGGCGGTGCGCCGGAAGGTCAATCATGCCCATGCCCGGGTTCGCCGCAAACCTGACGGCAGCTCCGCAGGCTACAACGCGTTCGATCCGCAATCCCAGCTGTGGGTGGTGGCAACCCTCTACGACACAGCAGTCACTGTTTACGAACGAATTTACGGCCCGCTGGAAGACGAGATGGCGGAGAGCGTCTACCGCGAGTACGCCAAACTGGGGACAGCCCTTCAGCTGCCGCCGGAGCTCTGGCCGGCGGACCGTGCAGCCTTCCGCACGTACTGGAATGAGCGCGTACAGACGCTGAAGCCCGACGACGTCACGGCCCGGGTGGCCCGCGATCTCCTGTACCCTCCAACGGGTCCGCTCTGGCTTCGCCTGAGCATGCCCCTGGTCCGGTTCATCACCGCAGGACTCCTGCCGGATCACCTCCGGGAAGGCTTCGGATTGCCGTGGACCGCGCGGCATCATCGGCAGTTCGACCGGACGATGCGAGCCGTTGCGGTGGTCTATCCGCGGCTGCCGCAACGCATCCGGCACTGGTTCAAGAACTACTCCCTTAGACGGCTCAGCACGGCTTAGMPVHGKVSPWAGNSAVGVARFWPLRYPVEMVGGNADMGAEGILLAGAGRAILLQLANPAVGHGVADHSNFVDRPLDRFLATVTYVYAVTYGDEEQVKAVRRKVNHAHARVRRKPDGSSAGYNAFDPQSQLWVVATLYDTAVTVYERIYGPLEDEMAESVYREYAKLGTALQLPPELWPADRAAFRTYWNERVQTLKPDDVTARVARDLLYPPTGPLWLRLSMPLVRFITAGLLPDHLREGFGLPWTARHHRQFDRTMRAVAVVYPRLPQRIRHWFKNYSLRRLSTANANANANANA
D1-29_040891776hypothetical proteinTTGGCCCGCGACTTCGAGGGCAGCGTTATTGTCAGACCCTGCTGGGATGCTTTTCTTATGGACAGCACGGGGGCTTGGACAGCGGGGAGCGGGGCGGGCTTGGAGGCTGCCACCGGTCCTGGGATCGAGGATGCCCTGGCTGCTGTTGTAGCCTCCACGGCCGCCCTTGGCCGAATCATCCGGCCCCATTTGGATGACAGCACGGCTGGCCCTGGCGCCGCTGGTGAGGTGGACGCCGATCCTGTTTCGGTGCTGGACGCCGATCCGATGCAGGATTCTGATCCGTTGCGCCGACGGCTGGACGCTTACCTGAATGCGCTGGCCGAGGTTGGCCGCGCTGAGGCAAAACATGCGGCGCTGAAGGTACATCTGGCCGCCGGAATCGCCGAGCTGGAAGAGGCCATCGCCACCCCGGCGGTGACCGCGCAGGACGCCACGGCGCAGGAAATGTCGGTGATCGCGGAGGTCGCGTGCGCCCTCACAGTCAGCGAACGCACCGCGGGTGCGCTGATCTCTGAATCCCAGGCCCTGACCAGCATCCTGCCGCAGACCTTGTCCGCGCTGCAGGAAGGCAGCATTTCCTGGCAGCACGCCCGGATTATGGTTGACGAAACCAACAACCTGGACCCGGACGGGGCGGCGGCGTTGGAGGCACATTTCCTGGACCCCGGAGCACCCAATCCTGCCCGCGGAGTCGCGGCCGGTGAACTCGTCCCGTCCCGCTTCCGCGCCAAGGCCCGTACCTGGCGCGAACGCCACCACCCCGTCTCCATCGAGAAGCGCCACGCCAAGGGAGTCCAGGACCGGCGGCTGGAGTACCAGCCGGACCGCGACGGCATGGCCTGGCTCGCCGCGTACCTCCCGGCCGACCAAGCCTCCGGGATCTGGGACCGGACCACCACCGCCGCCCGCGCCCTGCAGGGCCCGCACGAGAACAGGACCCTCACCCAACTCCGCGCCGACGTGGCCGCCACCTGGCTGCTCACCAACAACACCAGCGGCAGCCTCACCGCGCCTATGGCTGGTGGAGGAACCGATCGCAGACGAATTGCCGGCGGCATTGACGACCGCACGATGGGCGCCACCAGCACTAATAGCAGCATCGGCGGCACCGGAACGGGCAACGGCACCAGGCTCGAGACCGGCATCGCCGGTGCTGTGCCGTCGCCAACGGCGCAGGTCCTCATCACCGTGCCGGTCATGGCCCTCCTGGGCGCCACCGACGAACCAGCCACCCTGGACGGTTACGGGCCTATTCCACCGTCCATGGCCCGCCGCCTCGTCAGCGACGGCGCCACCTCCTTCATGCGGGTCCTGACAGACCCCCGCGACGGCGCACCTCTGGAAATCGGCCGGACCAGCTACCGCATCACCAAAGCGATGCGTCAATGGCTCCGGCTCCGGGACGGCAAATGCCCCTTCCCCGGCTGCAACAACCACTCCCTGGACAACGAAGCAGACCACCTCCTCGCCTGGGCCCGAGGCGGCACCACCGGCATAGCCAACCTGGGACAGCCCTGCCCAAAACACCACAGACTCAGACACACCACGGCCTGGACCCCAACCAGCGCCACCAAAAACAAACCACCCGGCTGGACCTCCCCAACAGGACGCCATTACCGCAGCGAACAACCCGACTGGGAACCACCCCACTGGCCCAGTGAACCCGGCCGGACTTCCCTCCACTCCGACGTGGACTTAGACGTGGACTCAGCCATGCAGCGGGATCCTGAGATGAGGCTGCAGCGCGATCTTGGGGATGCGGCCGGAAAATGAMARDFEGSVIVRPCWDAFLMDSTGAWTAGSGAGLEAATGPGIEDALAAVVASTAALGRIIRPHLDDSTAGPGAAGEVDADPVSVLDADPMQDSDPLRRRLDAYLNALAEVGRAEAKHAALKVHLAAGIAELEEAIATPAVTAQDATAQEMSVIAEVACALTVSERTAGALISESQALTSILPQTLSALQEGSISWQHARIMVDETNNLDPDGAAALEAHFLDPGAPNPARGVAAGELVPSRFRAKARTWRERHHPVSIEKRHAKGVQDRRLEYQPDRDGMAWLAAYLPADQASGIWDRTTTAARALQGPHENRTLTQLRADVAATWLLTNNTSGSLTAPMAGGGTDRRRIAGGIDDRTMGATSTNSSIGGTGTGNGTRLETGIAGAVPSPTAQVLITVPVMALLGATDEPATLDGYGPIPPSMARRLVSDGATSFMRVLTDPRDGAPLEIGRTSYRITKAMRQWLRLRDGKCPFPGCNNHSLDNEADHLLAWARGGTTGIANLGQPCPKHHRLRHTTAWTPTSATKNKPPGWTSPTGRHYRSEQPDWEPPHWPSEPGRTSLHSDVDLDVDSAMQRDPEMRLQRDLGDAAGKNANANANANA
D1-29_04090207hypothetical proteinATGATCCCCATCCTGATCTGGACCCGGATCTGGACTTTGACCGGGACCAGGACCTGGACCGGGACCTGGACCTGGACCTGGACCTGGACCTGGACCTGGACCAGGCTCTACCGGTCGACCCTTTTCCTGAATGGCGTCTTTGGCCTGCACCAGAGCCGGATGATCACCTGTGCTGGCTGCCTGAATACGCTCCGCCAGACGAACTAAMIPILIWTRIWTLTGTRTWTGTWTWTWTWTWTWTRLYRSTLFLNGVFGLHQSRMITCAGCLNTLRQTNNANANANANA
D1-29_04091249hypothetical proteinATGAGCGACTCTGGAGCTGATACCGCTGGTGTCCCGTTCGACAGTGATGACGACGACCTGGTAGACGTTGCCGGCCCTGAGACTGTCGAAAGCATTGCCGAGGATGTCCGTGACGATATCCGGCTGGGCCACATCCAGGATGACGTAAGCCATGTCCTTGAGGAACGCTTCCGCAAGGCAGGCATCAACCTGCGCCCCGAAGAGATAGACGACCTCGCCGAAGAAATCGAAAGGGACGTGTCCATCTAGMSDSGADTAGVPFDSDDDDLVDVAGPETVESIAEDVRDDIRLGHIQDDVSHVLEERFRKAGINLRPEEIDDLAEEIERDVSINANANANANA
D1-29_04092852hypothetical proteinATGCTCCCCACCAGAATTGAAATCGTCCCGTCCGCGGGAATTGTTGAGCGGGTCAACGCCTTGGTACCGCTGACCACAACGCTCACGGTGACATGCCTTCCGCACCACGGCATCGAGCGGACCATGCGGACCGCCGTGGAGCTGAGCGTCCTCGGATACACGGTGATTCCGCACCTAGCGGCGCGGAGCCTGCGCGACCGTGCCGATCTCACCCGCATCATTCGTGAGTGCGATGCCGCCGGCATCTGCGAGGTGTTCGTGATGGGTGGAGACCGGAAGCAGCCGGCGGGGGTCTATGGAACGGCTCTTCCGGTGCTGGAGGACATCGCGCAATATTCCGGCGGGATGCTGCGGGCAGGCGTCGCAGGATATCCGGAAGGGCACCCGTTGATAGGTCCTAAGGATGTGCTCGATTCCCTCCTGGCCAAGCAGAGCCTGGCCTCGCACGTGGTTACGCAGATGTGCTTTTCCGCGGAGAAGATTCACGATTTCGCGGCCGTCCTGCGGCGCGAAGGCGTGGAGCTCCCCATCTGGGCGGGGGTGGCGGGGTCCGTGCCGCGGACAAGGCTGATCTCCCTGGGGACACAGATCGGCGTCGGAAGTTCGCTCAAATTCCTGAGCCGCAAAGGCCCGCTAGCCCGCAAGCTCCTGAGCGGCGACCGCTATTCACCACAAAACCTGATGTCTGGGCTGGAAAGCCCGGCCGGCGCGATCGCCGGCATCCACCTCTACAGCTTCAACAGCCTCGACTCGATTCCCAGCCAATCCCTGCCCGGGCTGGGCCAGGCATCAGCACCCACTGCACTCCAGACAGCATTGGCTCGGGGAAGAGCACGTGACGATCGAGAGTAAMLPTRIEIVPSAGIVERVNALVPLTTTLTVTCLPHHGIERTMRTAVELSVLGYTVIPHLAARSLRDRADLTRIIRECDAAGICEVFVMGGDRKQPAGVYGTALPVLEDIAQYSGGMLRAGVAGYPEGHPLIGPKDVLDSLLAKQSLASHVVTQMCFSAEKIHDFAAVLRREGVELPIWAGVAGSVPRTRLISLGTQIGVGSSLKFLSRKGPLARKLLSGDRYSPQNLMSGLESPAGAIAGIHLYSFNSLDSIPSQSLPGLGQASAPTALQTALARGRARDDREPGPT0008160_3877DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
D1-29_04094345hypothetical proteinATGATTACTTCCTGCAAGGCCTTAGTTGTCCCGGCCAGACTGTCCCATCCTGTGCACATCAAGCCCGTTGAGCTGGATCTGCCGGCACTGCAGCGCGTGGCCGCGGGAGAAATTGGGTTCATCGTTGGCGAGACGTGGCATGTGTACCTCGACAACAACGGAAGCCGAACCGCCCAGAATATGCGGGCAGAGGTCCTTATTCGCGAAGCGGGCGTCGATCTGGAGGACACCGTCCACGGGACGGCGATCTTCCTTGGCCACCGAAACGGGGGCGAAGATACTGACGCTCCCCACCAGCTCATCCGGCTCGCCGAAGAACTCTTCGACGTGCCGCTGGCCGCGTAGMITSCKALVVPARLSHPVHIKPVELDLPALQRVAAGEIGFIVGETWHVYLDNNGSRTAQNMRAEVLIREAGVDLEDTVHGTAIFLGHRNGGEDTDAPHQLIRLAEELFDVPLAANANANANANA
D1-29_04095135hypothetical proteinATGTCAGGAAAATCCCCCAAAAGCAGCGCAGCCAAGAAGGTTGGCAAATCGATTCTCGAAAAGCGGGCCGACAAAAAGGCAAAAAGCGAAAACAGCGAGATTAATTCTATAAAGCCGCGCAAGAACCAGCGCTAAMSGKSPKSSAAKKVGKSILEKRADKKAKSENSEINSIKPRKNQRNANANANANA
D1-29_040961191rcsC_2Sensor histidine kinase RcsCGTGGGGGAATCTTTTCCGGTGGTTCCGGGGCCGGTCCAACGACAAATGGTGGGGCCGCAGCCAGTGGCGGAACCGTCTGCGATTCCCGGTTCGGATGGCCCCCTGCCGGTTATGACGGTGCTGGTGGTGGATGACGACCCAGGCTCCCTGTTGGTTGCCAAAGCCGCCGTGGAAAAGTCCGGCCATCACTGCATCGTTGCCTCCGATGGGGATATGGCGTGGCAGCTGTATCAGGACCACCATCCCGAGGTGGTGGTTACGGACCTCATGATGCCCGGGCTCAACGGGTTTGACCTGTGCCGGACCATCCGCGCCTCAGAGTCCGGGTCCTATGCCTACCTGGTCCTGCTGACTTCGCACGGGGCACGGGAGGACGTCCTGGAAGGGATGAAGGCCGGGGCCGATGATTATGTGACCAAACCGCTGGACCCCTTCATCCTGCACACCCGGCTGCTGGCTGCCAGGCGGGTCACCACCCTTCATGGCGCCCTGGCCGAAGCTCTGACTGAGACCAGGGGCAGCAATGAGCGGCTGGCCGAGTTCACGGGCAGGGTCAGCCACGATCTCCGCAATCCCTTGACGTCAATCCTCGGTTACGTGGAGCTCGGTTCCATGGAAACGGATACCGACTCAGCCGCCGAGTACCTCGAGGTGGTCGGCCACAGTGCGCGGAGGATGCTCTCCATGGTGGAGGAACTGCTCACCTTCGCATCCATTGGTGGCTCGTTGGTCAGGTCCCGGCTATCACTGGCAGACCTCGTGAAGGATGTCGCCGACGACCTGAACCTTGGGTTGAGGGAAGCCGGGGCGGTGGTGGAGTGCGAGGACTTTTACTTCGACGCTGACGGGAGCCAGATGCGGGTGGCGCTGCAGAACCTGATCCAGAATGCCGTGGCCTACCGGCGGACGGGGGTTCCCCCGGTCATACGGATCCATGGTGACAACTTCGGGGCCGGCGTCGTCATCCAGGTGGCGGATAACGGCAAGGGAATCAGCGTGGGGGACCGACGCCGGGTGCTTGAGCCGCTGGTCCGGCTGCACCGGGAGGGGGACCCGCCAGGGTCCGGGCTGGGTCTTGCTACGTGCGCCCGGATCGCGGCCGCCCACGGCGGCCGCCTGGACATCTCCGCGAGCCAGAGCGGCGGGACGGCTGTCAGTCTCTACTTGGGACCAGCAGCACCTGGTAGCTAGMGESFPVVPGPVQRQMVGPQPVAEPSAIPGSDGPLPVMTVLVVDDDPGSLLVAKAAVEKSGHHCIVASDGDMAWQLYQDHHPEVVVTDLMMPGLNGFDLCRTIRASESGSYAYLVLLTSHGAREDVLEGMKAGADDYVTKPLDPFILHTRLLAARRVTTLHGALAEALTETRGSNERLAEFTGRVSHDLRNPLTSILGYVELGSMETDTDSAAEYLEVVGHSARRMLSMVEELLTFASIGGSLVRSRLSLADLVKDVADDLNLGLREAGAVVECEDFYFDADGSQMRVALQNLIQNAVAYRRTGVPPVIRIHGDNFGAGVVIQVADNGKGISVGDRRRVLEPLVRLHREGDPPGSGLGLATCARIAAAHGGRLDISASQSGGTAVSLYLGPAAPGSNANANANANA
D1-29_04097300hypothetical proteinATGGGGGAAAACAAAACATCCGGGGAACACAACCTGGCCAGGCCCAGCCGACTCTCTTCCGCCGTCGTGCCTTTGGCGGGCGTCGTCGCGGTGGTGGTGGGTTTTTTGGTGGCATGGAGCAACAGGAATACCAGCATTGGCTGGTTCGCCTACGCGCCGCTGAGCAACCAGGAGTTCACCGGCAACGGCACGGCCTTTGTCAGTCAAGGGACGCAGATCGGCTTGGGAATCGCGGTCGCTGGCCTGCTCGTCCTGGCCTTTTGGGCTGGCCTCAGAATCGGCAGGAGATCCGGCTCGTAAMGENKTSGEHNLARPSRLSSAVVPLAGVVAVVVGFLVAWSNRNTSIGWFAYAPLSNQEFTGNGTAFVSQGTQIGLGIAVAGLLVLAFWAGLRIGRRSGSNANANANANA
D1-29_04098192hypothetical proteinATGGCGGCGCGGGGGAAACCGTTGGGAACGCTGGAAGGCATCACACCGCGTTTGTCCGCGGAGCGGCTCGCACCCTACCCGGTGGTGGTGGCGCCGCGACCGGCCGCGCTGTCGGATGCGGAAATCGCCAGCCTGAAGAGCTACGTCGAGGCTGGCGGCACGCTGTTGGTCACCGGTGGTACCGGAGTGTAAMAARGKPLGTLEGITPRLSAERLAPYPVVVAPRPAALSDAEIASLKSYVEAGGTLLVTGGTGVNANANANANA
D1-29_04099660hypothetical proteinATGGAAATCAGAGAAGTAGTGCTGCCAGCACGAGACACGGATGCCATCCAGCTCTTCTACGGACATAAGCTGGGGCTAAATGTAGTGAGTGAATCGGCCCGAGTGGCAGTAACGCTTGGAAGCACGCGATTGGTGTTCGAGCAGAGGGAGTACGAAGGCGCCCACCACTTGGCCTTCACGATCCCGACGGGCATGTTCGCGCAAGCCAAGGAATGGATCGCCGCACGGACGACTTTGCTTGGACGTGACGGGGTAGACGAGTTCGAGGGGCCCTCCAGCTGGAACTCCTGTTCGGTGTATTTCGATGGGCCTGATGGCCAGGTACTCGAGCTGATCGAGCGACGCGGGCTGCGGCAGCCGACTACGGATCATTTCGGTCCGAACGGATTTCTCTCGGTGAGCGAAGTGGGTGTGGCGGTGCCCCAGGTCCTCGCGGCGGTCGAGCTATTACACGCGAGTGGGATCGAGCCCTACGGTAGCCCGCCAAGCGAGGGGTTCGCGGCGGTCGGTGACATCAACGGCATGCTGATTCTCGTGTCCGCGGGTCGTGGCTGGATGCCCACAGCGGATCGATACGCCCAGCAAACGCCGGTTATCGTCCGCGCGGACGGGATCCCGGCAACGGAACTCACGCCGCAGCAGGTGGTCCATCCGGCATGAMEIREVVLPARDTDAIQLFYGHKLGLNVVSESARVAVTLGSTRLVFEQREYEGAHHLAFTIPTGMFAQAKEWIAARTTLLGRDGVDEFEGPSSWNSCSVYFDGPDGQVLELIERRGLRQPTTDHFGPNGFLSVSEVGVAVPQVLAAVELLHASGIEPYGSPPSEGFAAVGDINGMLILVSAGRGWMPTADRYAQQTPVIVRADGIPATELTPQQVVHPANANANANANA
D1-29_04100906hypothetical proteinATGGGGATGCATACCGGGCAGCACCACGTGGACGTTTCGCTAGCCAGGCGGCTGCTCCAGGAACAGTTTTCGGAGTGGTCCCAACTCCCCGTAAAGCCAGTCGACGGGCCGGGAACCGTCAACGCCATTTTCCGGGTGGGCTCGGCACTGGTAGCACGTTTCCCCCTTGTGGGGTCGGATCCGGTTGAGATACGACTGATACTGGAAGCAGAAGCGGCGGCAACCATTGAAATGGCAGCCGCCAATGTCTATCCCACACCCACACCGCTGGCCATCGGCTCTCCGGGAGGTGGATATCCGTTGCCTTGGTCCGTGCAGACTTGGCTGCCGGGGGAGATTGCCACGCCGCACAGCTCGGGTGATGGCCCTGCATTCGCCGGCGACCTTGTGACTCTGATCAACGGTTTCCGCTCTGCAGATACGAAGGGGCGTCTTTTCTCTGGTTCAGGCCGTGGCGGCCAACTGACCGATCACGATGACTGGGTGGAGAAATGCTTCCGCGAAAGCGAAAGTCTCTTCGACGTGCACAGGCTCCGGAGCCTGTGGTTGGAGTTAAGAGAGCTGCCGGGCAGCGGCCCGGATGTGATGTCACATATGGATCTCATCCCCGCCAATTTATTGGTTGGAGACGGTCGGCTCTCCGGCGTGCTGGATGGAGGCGGCTTCGGCCCGGCTGACCCTGCATTAGATCTGGTGGCGGGTTGGCATCTCCTGGATGAAGGACCTAGGAACATATTTCGCCAGTCGCTGGGCTGCGATGACATCGAGTGGAGTCGCGGTATGGCATGGGCACTCGTGCAGGCCGTAGGTCTGCTCTGGTACTACCGCCAGACCAACCCAACCATGAGCCAACTGGGACGTAGCACGCTAAGCCGCATCATGGCAGCTTGGGAAGTACCCCGATGAMGMHTGQHHVDVSLARRLLQEQFSEWSQLPVKPVDGPGTVNAIFRVGSALVARFPLVGSDPVEIRLILEAEAAATIEMAAANVYPTPTPLAIGSPGGGYPLPWSVQTWLPGEIATPHSSGDGPAFAGDLVTLINGFRSADTKGRLFSGSGRGGQLTDHDDWVEKCFRESESLFDVHRLRSLWLELRELPGSGPDVMSHMDLIPANLLVGDGRLSGVLDGGGFGPADPALDLVAGWHLLDEGPRNIFRQSLGCDDIEWSRGMAWALVQAVGLLWYYRQTNPTMSQLGRSTLSRIMAAWEVPRNANANANANA
D1-29_04101420hypothetical proteinGTGGTCGTGGTTGGGCTCGATACTGTGGCGGAGATGGCCCTGCCTACATTGGCTGACTGGACCTGGGCGCATGAGGTCCACGGTCGACTGATTGGGGCCTGGCTGGAAATGCCGATTCCTACTTTGATCGCCGAGGGACCTGAAACTCCTGAGGAGATCGAGCAGATCATGGCTCATGTTGGTCCGGATGTCAGCGTGCGGAAGGTCCTGATCACAGCGAAGTATGAAACAGCACTGGCACGGGCCGTTTCCGACCCGTCCCGGGGGCTGTCAAAGGAACCGGAATTTCTCCGGCGGATGTATCAACGGTTCGAGCGGACGCGGGCAGATATTTCCCATGACCTTGAGTTCGATACGGAGGCAATGTCCTCGGAGGACATTGCCCTGGCGGTCATCGGGGTACTTCCCAAGCTGCCATGAMVVVGLDTVAEMALPTLADWTWAHEVHGRLIGAWLEMPIPTLIAEGPETPEEIEQIMAHVGPDVSVRKVLITAKYETALARAVSDPSRGLSKEPEFLRRMYQRFERTRADISHDLEFDTEAMSSEDIALAVIGVLPKLPNANANANANA
D1-29_041021008hcnC_4Hydrogen cyanide synthase subunit HcnCATGGGTAGGCACGTAGTCGTCGTCGGAGCTGGCATCGTCGGCGCCTCGGTGGCTTATCACACCGCCCGGAGGGGCGCCACCGTAACGTTGGTCGACGCCGGGCGGCCAGGCGCGGGCGTGACGGCGGACTCGTTCGCTTGGGTGGGAGTGCCTGGCGTGCCTACCGGTCCGGCTGCCGGCTTACGGGCCACGGCGATGGAGGAGTACCGCCGAGTTGAGGCCGAGTTGCCGGGACTCCCTGTGATCTGGTCCGGCTCACTGAGCTGGCGGGCGGAGGGCGGCGCGCCGGAGGCCGGGCCCGGGCAGGAGATTGTGGACGCGGCCACCGTGATGGCGCTCGAGCCCAACCTACGGCAGCCTCCGGAGTGGGCCATATGGGCGCCGGGCGACGGCGCCGTCGACTCGGTGGGGGTGACCCGGCGGCTGGTCGCGGGCGCCCGCGCCCATGGCGCCCGGATACATGTGGACACCGCCGTCACCGCGGTCCGCCGGGATGCAGCGGGCCAGGTTGCCGGGGTCGAGACGGCAGCAGGACCCCTCTGCGGTACGACTGTGGTGTTGGCGGCCGGTGTTGCCACAGCCGCGCTGGGCTCGCCGCTCGGCGTCCGTGTCCCGGTCGAGCCATCGCCGTGCCCGCTCTTCCGGCTTCGGGCGCCGGCAGGTCTGGTCCGCACAGTGGTCAACACTCAGGACTTCGATCTCCGGCAGGTCGCCGCGGACCGGCTGATCGCCGCCGCGGACTCGCCTGAACGCACCCTTGCCGCCGTCCGATCCACTTTTCGCGGTGCCGGGAGCGTCGAGCTGCTCCGCACACGGCTCGGAGTACGCCCAATGCCGGCTGACGGCGAGCCGATCGTCGGTCCGGTCGCCGATGTACCCGGTCTCTACCTTGCGGTGATGCACGCGGCCGTCACGCTTGCCCCGGCCGTGGGCCGTCTTATCGCGCGAGAGTTGGTAGACGGCATCGCAGAATCGGCATTGTCCGGCTGCCGACCCGATCGCTTCTAGMGRHVVVVGAGIVGASVAYHTARRGATVTLVDAGRPGAGVTADSFAWVGVPGVPTGPAAGLRATAMEEYRRVEAELPGLPVIWSGSLSWRAEGGAPEAGPGQEIVDAATVMALEPNLRQPPEWAIWAPGDGAVDSVGVTRRLVAGARAHGARIHVDTAVTAVRRDAAGQVAGVETAAGPLCGTTVVLAAGVATAALGSPLGVRVPVEPSPCPLFRLRAPAGLVRTVVNTQDFDLRQVAADRLIAAADSPERTLAAVRSTFRGAGSVELLRTRLGVRPMPADGEPIVGPVADVPGLYLAVMHAAVTLAPAVGRLIARELVDGIAESALSGCRPDRFNANANANANA
D1-29_04103789hypothetical proteinATGAACGCGGAAACAAACGCGGTGGAATTGAACCTCCCCCAAGCCTTTCTCCTTCTGGCAACAAACGACAAAGACGGCAAACCTGAGGTGCCTGTCTACGCGCTCAGGACCACTTTGGCAGGGGCAATTCTGGCCGAGCTGGAACAGATTGGTGCGATCGAGTTGCGGGGGAAGCACGTCAAAGCTACCGGCACGGCCCCCAAAACGGACTTCCAGCGCGAACTGGAGCTCATCCGCCACAAATCACGGCCGCACACACCCAAGCGGTGGGTCTCAAATCTGGAGAACCGTGCTGAAGTGCAGCGTGTCTATGAGGGTATGGCCTCATTGGGCATCGTGGAACAATCCGGCGAAAAGCACCTGGGTCTGTTCCGGACCGTGCGGTATCCGGAGAAGGACCATGGCCCGGAGGCGGCGCTCCTGAAAAAGATCGAGGCCGCCATCAGCGGTCCGCGGGCTGATGCCCCGGCCGCCGATGCCGGGGCGTCCGCCGCCGAGGCTACTGATGAGGAGACGACTGCTGCGGGGACCACGGATGCGGGGGCCACGGATGCGGGGACCTTGGATGCCACGATGCCCGAACCCGCAAAGCCTGGTGCCGAGGCACCCGATGACAGGACCTTGGCCCTGATCGCCCTGCTTCAGGCCGCCGGACTGCTCACCAAGCTCTTCCCGGGCGTAGACAGACTCTGGGCATATGAGTTGGCGAAGGACTATTGGCCGGCACGCGCGGTGGAGGACGAACTTCGTATGATCAGGCTGGCGGAGGAAGAAGCCCCAGCTTTGTGAMNAETNAVELNLPQAFLLLATNDKDGKPEVPVYALRTTLAGAILAELEQIGAIELRGKHVKATGTAPKTDFQRELELIRHKSRPHTPKRWVSNLENRAEVQRVYEGMASLGIVEQSGEKHLGLFRTVRYPEKDHGPEAALLKKIEAAISGPRADAPAADAGASAAEATDEETTAAGTTDAGATDAGTLDATMPEPAKPGAEAPDDRTLALIALLQAAGLLTKLFPGVDRLWAYELAKDYWPARAVEDELRMIRLAEEEAPALNANANANANA
D1-29_041041038hypothetical proteinATGCCTTCGAAGACCCTGAAAACCACGACGGCGGCAGCCGTCCTTGCGCTCGGACTGCTTGCATCCCAGCCCGCCAACGCAGCCGAGACCACTCCCGACAGCCAGGCCTTCACGTTCGGTGTCATCGGCGACATCCCCTACGGCGATGCTGAAATCGCCAAGTTCCCAGCCCGGATCCAGGACATCAACGCCGACGACGATCTGAAGTTTGTAGCACACGTGGGCGACATCAAGAACGGCTCCTCGGTCTGCTCTGACGAGTATTTCGCCAGCATCCGGGCCCAGTTCGATACGTTCGAGCACCCGCTGGTTTTCACCCCGGGCGACAACGAATGGGTGGACTGCCACCGCACCAACAACGGCGCCTACAATCCGCTGGAACGGCTGGACAAGCTGCGGGAAGTTTTCTTCAATGAACCGGGGAAAACGTTGGGCACCAGGATGCCGGTCAAGACCCAGGAGAGCCTGGGGCTGCCGGAAAACGTCCGCTTCAGAGAGAACCGGGTGGCCTTCTCCGTTTTGAACATCCAGGGCAGCAACAACTCGCTGCTTCCGTGGAGCGGCCTGGGCGAAACCACGGCCACACCCGAGCAGCTCGCTGAGGTTGAGCACCGGACGCACGCCGTGCTGGAGCAAATCCGCGACACGTTTGCCGACGCCGAGCGCCGCAACGACCGTGCCGTGGTGCTGATGACCCAGGCGGACATGTTCGATCCGTCCCAGCTTGCCGGGGCCACCGCCAACCCTGAAGCGGTCTCCGGCTTCCGGGAGATCGTGCACGCCATCATCGAGGAAACCAACAGCTTCGACCGCCCGGTCTACCTCATCAACGGCGACAGCCACGTCTTCGCCGAGAACCAGCCGCTGGCGAATGGTTCACCCTGGCTGGACATTTACGGCCAGCCCGCTGCGGATGACCTGCAGCGCATCACCGTGGATGGATCCGCCAACGCCACCAACTATGTTAGGTTCACGGTCGCCGGCAACAGTGCCGACGCGGACGTCCTGACTTGGGAAAAGGTCCCCTTCAGCCAGTAGMPSKTLKTTTAAAVLALGLLASQPANAAETTPDSQAFTFGVIGDIPYGDAEIAKFPARIQDINADDDLKFVAHVGDIKNGSSVCSDEYFASIRAQFDTFEHPLVFTPGDNEWVDCHRTNNGAYNPLERLDKLREVFFNEPGKTLGTRMPVKTQESLGLPENVRFRENRVAFSVLNIQGSNNSLLPWSGLGETTATPEQLAEVEHRTHAVLEQIRDTFADAERRNDRAVVLMTQADMFDPSQLAGATANPEAVSGFREIVHAIIEETNSFDRPVYLINGDSHVFAENQPLANGSPWLDIYGQPAADDLQRITVDGSANATNYVRFTVAGNSADADVLTWEKVPFSQNANANANANA
D1-29_04105567hypothetical proteinATGTCCACTCGTGCACAGGTTCTGGATGCCGCCGTCGAACTGCTTGGCACGCAGGGCCTGAAGGCCCTCACGCATATCAGGGTTGATGAAGCGGCGGGGGTGCCGAAGGGCTCGACGTCGAACTATTTCCGGACTCGCGCCGCCCTCCTGACCGGTGTGGTCGAGTGGGTCGCGGAGCAGGATCTGGCCGCGCTTGGAGGGCCGCCAAGCGCCCCGACTGATGTGGCCGCCTTCGTGTCTCTGCTGGCGGAAACAGTAGAGAACATCACCACCGCTTCACGGACCCGGACGATTGCCCGGTATGTCCTCTTCCTCGAAGGCACTCACAACGAAGACGTCCGGCGCCCACTGCTAGCCGGCCGAGTCTACTTCCGTACCTTTGTCGAGAACGCCATGGCCAGCCTCGGAGCGCCTGATCCGGTGGCAGCGGCGACTGCCATCACAGCAGTGGGCGAAGGCATGATCATCCAGCGGGTGGCGGTCGACCCGGATGCGGAAGTGTTCGCGCCCATTGATGCTGTTGTGCGGGCGTTTGTTCCGCAGCATCGTGGTCGCGCAGCAAAGTAAMSTRAQVLDAAVELLGTQGLKALTHIRVDEAAGVPKGSTSNYFRTRAALLTGVVEWVAEQDLAALGGPPSAPTDVAAFVSLLAETVENITTASRTRTIARYVLFLEGTHNEDVRRPLLAGRVYFRTFVENAMASLGAPDPVAAATAITAVGEGMIIQRVAVDPDAEVFAPIDAVVRAFVPQHRGRAAKNANANANANA
D1-29_04106744hypothetical proteinATGGATACCACCAAAATGACAGACTTCTTCACCATGCAGCCTGGCGAAACTGCAGTTCCACTCCCTCCGGGACCTGTCCTGTCCACGGGGTCGACCGGCATTCGGCGGGTTCACCGCTTCCTCCTCTGGGCATACGAGGAGGCGCCCAACTTGGTGCGTTCCACCGCGCCCGGAGACACTTTCCGCGCCGCCTACGTGGGACAAGTGCTCGGGAACTTCGACAAGGTGCTCCTTATCCATCAGGAAGGCCAGGACCTGTTCATGTACCCGCAACTGGCGGAGCGGGCACCGGCAAGTGCGCCCCACGTGGAGCAGATGCTTGAGCACCACAAGCAAATTCGAGAACGCGTCCAGGGCATCGAGCCCGTGCGTAAGCGTTGGATGCAGACAGCAGACGAAGACGACAGGGAAGAACTCGCAAGGGGCTACGAGGACGTGCAGTCAGTTCTTAATGAGCATTTGCGCCGCGAGGTCACTGAGGTGATGCCCGCCGTCGACCGGGTCATGACAGAGGACGAACTGAAAGCGATGATTCAGCACGGGGTTAAGCAGCACGACAAGAAGTTCCTGGTCACCTACCTCGGAATGATTCTGGCCACGAATCCGCCGGACGACCGAAGGCAAATATTCTTTGAGGAGATTCCTGCCCCCGCCCGTCTCGGCTACCGTCTCATCGGCCGCAGGATGTACCGCAAGCAGTACGCGACACTCTTTCCGGGACGCCCAATCCCGGAAACACTCTAAMDTTKMTDFFTMQPGETAVPLPPGPVLSTGSTGIRRVHRFLLWAYEEAPNLVRSTAPGDTFRAAYVGQVLGNFDKVLLIHQEGQDLFMYPQLAERAPASAPHVEQMLEHHKQIRERVQGIEPVRKRWMQTADEDDREELARGYEDVQSVLNEHLRREVTEVMPAVDRVMTEDELKAMIQHGVKQHDKKFLVTYLGMILATNPPDDRRQIFFEEIPAPARLGYRLIGRRMYRKQYATLFPGRPIPETLNANANANANA
D1-29_04107765COQ3_2Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGGCTACCCCGGAAGAGTTCTATGACGCCCTCGCGCCCGAGTATCACCAGCTCTTCGCTGACTGGTGGTCAGCGGCTCAGTGGCACGGACAGGTCATCGCCGACGTCCTCGCCCAGCGCGGGATCCCCGAGGGACGCCTGCTGGACTGCACCTGCGGCATCGGAACCCAGGCCCTGCCGCTGGCGACGCTTGGATACGGCGTGACAGCCACCGACGTCAGCAAAGAGGCAGTTGACCGGGCCCGCGTGGAGGCAGCCGACAGAGGAATCGACGTCGATTTCAAGGTCTGCGACGTCCGCGAGATCCGCGACCACGTCGAAGGGACCTTCGATGTGGCTATCTCCTGCGATAACGCACTGCCGCACGTGCTGACCGACGAGCACCTGCAAAGTGCCCTGCGCAGTGTTCGTGCCTGCCTGCGACCGGTGGGACTGTTGCTCGCCTCTCTTCGCGACTATGACGCATTGAGACTCACCCGTCCCGACGGGGTCCCGATCTCGGTCCACGGGGAAATCGGGTCGCGGCATGGATCGGGCCAGGCGTGGCGGTGGTCCGCGGACGCCGAGTTTGTGGACATCGAGTTGTTCACCTTTGCCGAAGAGGCTGCCGGATCATGGCGGGCGCGCTCGGGCACCACCCGCTATCGGGCCCTGCAACGCGGGAAGCTCGAAAGCCTGCTGACATCGGCCGGGTTTACCGCCGTCGAATGGCTCATGCCTGACCTCAGCGGCTACTACCAGCCGATCGTGCTCGCGAAACCCTGAMATPEEFYDALAPEYHQLFADWWSAAQWHGQVIADVLAQRGIPEGRLLDCTCGIGTQALPLATLGYGVTATDVSKEAVDRARVEAADRGIDVDFKVCDVREIRDHVEGTFDVAISCDNALPHVLTDEHLQSALRSVRACLRPVGLLLASLRDYDALRLTRPDGVPISVHGEIGSRHGSGQAWRWSADAEFVDIELFTFAEEAAGSWRARSGTTRYRALQRGKLESLLTSAGFTAVEWLMPDLSGYYQPIVLAKPPGPT0013540_74DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013540-gsmt_like-K18896NANA
D1-29_04108741lldRCOG2186Putative L-lactate dehydrogenase operon regulatory proteinATGGAAGAAGAATTGTTCGGAACCCGCACGCGGATCCTTCGTCCTGCCCGGCACGGAAACGCCTTCGAGGAAACCATCGAACGCCTGCTCCAGAACATTAAGCTAGGCCTCTTCGCGGTAGGTGAGAAGCTGCCTGCCGAACGGGAACTTGCGGAGCTGCTGGGGGTGTCCCGCGCCACGCTGCGGGATGCCTTGGCCGAACTGCAAAAGGCGGGATACGTCGAGGTCCAGCGCGGCCGTTATGGGGGAACGTACGTGTGTAGCCGGCCGTCCGCCAGCCCGGGGTCCTACCCGGAACTGGACCCGGGGGAGGTGGAGGACGTCCTGACCCTCCGCAGCGTGCTGGAACCGGCGGCCGCATCCCTGGCAGCGAAAGCCACGCTGTCCCCGGCACAGCGGAGCCACCTGATGAAGACGCTGGCTGAGGTGGCCGCCGCGCCCGCTGACCAGTATCGGCCAAAGGATTCAAGGTTCCACGTGGCCATTGCGGAAGTGACGGGGTCGCCAAGCTTGGCGAGTGCTGTGGCCGATGTCCGCTCCAGGGTTAATGACCTTTTGGACCGGATACCCCTCCTTGAGCCCAACCTTGAACACTCCAACCGGCAACACCAGGAAATCATGGACGCCATCCTCCGGGGCGACGGCGATGAAGCATTCCGGGCGGCCCAGAACCATCTTCAGGGAACGGCTTCACTGCTGCATGGATTCCTGGGCTCTTCCCACACGGAATCTCCCGGCTAGMEEELFGTRTRILRPARHGNAFEETIERLLQNIKLGLFAVGEKLPAERELAELLGVSRATLRDALAELQKAGYVEVQRGRYGGTYVCSRPSASPGSYPELDPGEVEDVLTLRSVLEPAAASLAAKATLSPAQRSHLMKTLAEVAAAPADQYRPKDSRFHVAIAEVTGSPSLASAVADVRSRVNDLLDRIPLLEPNLEHSNRQHQEIMDAILRGDGDEAFRAAQNHLQGTASLLHGFLGSSHTESPGPGPT0018120_204DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018120-lldR-K14348NANA
D1-29_041091470hypothetical proteinGTGTCATTCTCTGATTCAATCAAACCTGCGGAAGACAAGCGGTATCTGGAGCATCGGCAGCTGAAGCGCGGTGCCGCGGGCTGGATCCTGCTTGCCGGGCTCGGCGTCGCTTACGTTATTTCCGGCGACTTCGCGGGCTGGAACCTCGGCCTGGCCCAGGGCGGCTGGGGCGGGCTGCTTATTGCCTTTGTCCTCATGGGCATCATGTACACATGCATGGCTTACGGCCTGGCCGAACTGTCCTCCACGCTGCCTGCCGCAGGCGCCGGGTACGGCTTCGCCCGCCGGGCGCTGGGTCCATTGGGCGGTTTTGCCACCGGTATGGCCGTCCTCATTGAGTACGCGGTTGCACCGGCGGCGATAGCCATCTTTATTGGCGGCTACATTGAAGCCCTGGGGCTCTTCGGCCTGACGAACTCCTGGCCGGTTTATCTGGTGACCTACGCCGTCTTCGTCGGTATCCACCTTCGCGGCGTTGGCGAGGCGCTGAAAATGATCTTTGGAATCACGGCGGTGGCCGTCATCGCCCTGATCGCCGTGGTCATCGGCCTGCTTCCGAAGTTCAATGTCCAGAACCTCTTTGACATCGTCCCCGACGGCTCACCGGCGTCGAGTGCTTTCCTGCCGATGGGAATTGGCGGCGTGGTGGGTGCCCTGGTCTACGGCATCTGGTTTTTCCTTGCCGTAGAAGGTGTTCCCCTGGCCGCTGAAGAAACCGCAAATCCGAAGAAGGATATGCCCCGGGGCATTATGGTTGCCGTCCTGATCCTGGTGGTTTTCGGGGCGCTGATGCTGGTGCTGGTTCCGGGTGCTGCCGGGTCGGCAGCCATGAGCGGATCCAATAACCCGCTCCCGGAGGCCCTGCGCCTGGCCTACGGCGGGAACACATTCCTTGCCGACTTCGTCAACTATGCGGGCCTGGCCGGGCTGGTAGCAAGCTTCTTTTCCATCATCTACGCCTATTCCCGCCAGCTCTTCGCGCTGTCCCGGGCTGGATATCTCCCCAAGTGGCTCTCGCTGACCGGCAAGCGCCGAACCCCTTACTGGGCGCTGATCGTGCCGGGAACCCTTGGTTTCATCCTTGCGGCAGCCACCGGCAACGGCGCACTCCTGATCAACATCGCCGTCTTTGGTGCCACCGTGTCCTATGTCCTCCTCAACCTCTCCCACATTGTGCTGAGGAAAAAAGAACCCAATCTGCCGCGCGGGTACCTCACCCCCGGCGGCGTCGTCACGACGTCGATCGCCCTGGTTCTGGCTGCGGTGGCCGTCGTCGCAACTTTTGTGGTGGATGTGTTCGCGGCGTCCATAACAGCCGCAATATTCGGCGCCGCGCTCCTCTACTACTGGTTCTTCAGCCGCCACCGGATCGTCGCCGGCGCTCCGGAGGAGGAATTCGCGCAGCTGGCCGCCGCCGAGGCTGAACTGAAAACCGGCAAACGGGCGGCCCCCGACACCCTTTCCCTCTAAMSFSDSIKPAEDKRYLEHRQLKRGAAGWILLAGLGVAYVISGDFAGWNLGLAQGGWGGLLIAFVLMGIMYTCMAYGLAELSSTLPAAGAGYGFARRALGPLGGFATGMAVLIEYAVAPAAIAIFIGGYIEALGLFGLTNSWPVYLVTYAVFVGIHLRGVGEALKMIFGITAVAVIALIAVVIGLLPKFNVQNLFDIVPDGSPASSAFLPMGIGGVVGALVYGIWFFLAVEGVPLAAEETANPKKDMPRGIMVAVLILVVFGALMLVLVPGAAGSAAMSGSNNPLPEALRLAYGGNTFLADFVNYAGLAGLVASFFSIIYAYSRQLFALSRAGYLPKWLSLTGKRRTPYWALIVPGTLGFILAAATGNGALLINIAVFGATVSYVLLNLSHIVLRKKEPNLPRGYLTPGGVVTTSIALVLAAVAVVATFVVDVFAASITAAIFGAALLYYWFFSRHRIVAGAPEEEFAQLAAAEAELKTGKRAAPDTLSLNANANANANA
D1-29_041101176ipuCGlutamate--isopropylamine ligaseATGACGAACCAAACAAGTGGAACCTCCAAGCAAGGCCAACTGGGCGTTGATGAACTGCGGGACCTGGTAGCTTCCGGTGAAATCGACACCGTTGTTGTTGCCATCACAGATTCCATGGGACGCCTCCAGGGCAAAAGATGCGGCGCACGGTCCTTCCTCGACGACGTACTCGGGCACGGTGCCGAAGGCTGCAACTATCTCCTCGCCGTCGACGTGGAAATGAACACCATTGACGGCTACTCCATGTCGTCCTGGGCCAACGGCTACGGGGACATGGTGATGCAGCCGGACGTCTCCACCCTGCGCCGGGTGCCGTGGCTTGAAGGTACCGCAATGATCCAGTGCGACATCCACTGGCTGGACGGCAGTCCGGTGGTGCAGTCGCCCCGCCAGATCCTGCGCGCACAAATCGACCGCCTGGAGGCACTGGGATACCGGGCCCACATCGGCACCGAACTCGAATTCATCATGTTCGACGACACCTACGAAGAAGCGTGGGACAAGAACTACGAAGGCCTCTCCCCCTCGACGCGTTACAACGTGGACTATTCCCTCCTGGCCACGGCGAGGCTGGAACCGGTGATCCGAAGCATCCGGAACGGAATGGAAAAGGCCGGGCTCGTCGTCGAATCTTCCAAAGGCGAGTGCAACCTGGGACAGCAGGAGATCACCTTTCGCTACGCAGAAGCGCTGGCTGCCTGCGACAACCACGTGTTCTACAAAAACGGGGCCAAGGAAATCGCCGCGCAGCAGGGCAAGAGCATCACGTTCATGGCGAAGTACAACGAACGTGAAGGCAGTTCCTGCCACATCCATTTCAGCCTGACGGATTTGGACGGCAACCCCGTCTTAGCCGGTGAGGGCCAGCACGGCTTCAGCCGTGTGATGGAGCACTTCATCGCGGGACAGCTGGCCGCGTTGAAGGAGCTGGCGTATTTCGTTGCCCCTAACATCAATTCCTACAAGCGGTTCGTGGAAGGCAGCTTCGCCCCCACAGCCATCGCTTGGGGGCTGGACAACCGCAGCTGTGCACTGCGCATCGTGGGACGCGGGCCCGCCATGCGGGTGGAAAACCGCGTGGGAGGCGGCGACGTCAACCCCTATCTGCAGCAGCGGCCCTCATTGCAGCCGCCATCCACGGCATCGAGAACGAGCTCCCCCTTGAGCCGATCATGAMTNQTSGTSKQGQLGVDELRDLVASGEIDTVVVAITDSMGRLQGKRCGARSFLDDVLGHGAEGCNYLLAVDVEMNTIDGYSMSSWANGYGDMVMQPDVSTLRRVPWLEGTAMIQCDIHWLDGSPVVQSPRQILRAQIDRLEALGYRAHIGTELEFIMFDDTYEEAWDKNYEGLSPSTRYNVDYSLLATARLEPVIRSIRNGMEKAGLVVESSKGECNLGQQEITFRYAEALAACDNHVFYKNGAKEIAAQQGKSITFMAKYNEREGSSCHIHFSLTDLDGNPVLAGEGQHGFSRVMEHFIAGQLAALKELAYFVAPNINSYKRFVEGSFAPTAIAWGLDNRSCALRIVGRGPAMRVENRVGGGDVNPYLQQRPSLQPPSTASRTSSPLSRSPGPT0000645_4891DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-29_04111210hypothetical proteinATGACGGGCAACGCGTACCAGTCCCAGGCTGACCGCATCCCCAGCAATCTGCGGGACTCCCGGGCGCTGCTGGCGGACAGCGAGATCGCACGCAAGGCATTTGGCGATGAGGTGGTTGACCACTATGTCTTCGCGGCCGGCGTCGAACTGAAGGCCTTCGACAGTGCAGTGACGGATTGGGAGCGCAAGCGTGTCTTTGAACGGCTCTGAMTGNAYQSQADRIPSNLRDSRALLADSEIARKAFGDEVVDHYVFAAGVELKAFDSAVTDWERKRVFERLPGPT0000645_4918DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-29_04112861COG2071Putative glutamine amidotransferaseGTGTCTTTGAACGGCTCTGATTCGTACCGCCCGCGCATCGGGCTGACAACCTACTTCCAGGAAGCGTCCTGGGGCGTCTGGACAGCGGACGCGGCGATCCTGCCGGGGACGTACGTGCAGGCGGTCGTCTCCGCCGGTGGCACCCCCGTCCTGTTGCCGCCCGTGGGCACTGATCCCTCCATTGTGAAGGTCCTGGACGGGCTGATCATCTCCGGCGGCAGCGATGTTGGCCCCGAACAGTATGGTGCCGAGCCGCACACTCTCACCCGGGCCCAACCAGCCAGGGACGAGCATGACATCGCCCTCACCAAGGCAGCGTTGGAGGCCGGCGTGCCCCTCTTCGCCATCTGCCGGGGAGCCCAGATCCTCAACGTTGCCCTGGGCGGAACCCTGCTCCAGCACATCCCGGATGTGAACCCGGAAGCCAAGTACCAGCCGGCACCGGGTGTCTACGGCAGCGTGGAGTTCACCAGCTTGCCGGGAACCATCACCAGAGACCTGCTTGGACCCGTGGCCAGCGCACCGTGCTATCACCACCAGGCCATTAACGGTCTGGCGGACGGGCTGCGCGTCACGGCATCAGCGGCCGACGGCACCATCGAAGCGGTGGAAACGACGTCGGGCGGGTGGGTGCTCGGAGTCCAGTTCCACCCCGAACATAACTCCTCCGACCTCCGGCTTTTCAGGGGGTTCGTTGAGGCGGCAGCCGACTATCGCGCGGCGGCCAACCAACGCCCGGCCAACCAACGCACAGAAGCCAACCAACGCCCGGCCAAGCAACGCACGGAAGCCAACGACAGCCCCGCAGACAACCTCCGCACAGAACGAATGGAGAACCCAATTCATGTCCAGCACCTATGAMSLNGSDSYRPRIGLTTYFQEASWGVWTADAAILPGTYVQAVVSAGGTPVLLPPVGTDPSIVKVLDGLIISGGSDVGPEQYGAEPHTLTRAQPARDEHDIALTKAALEAGVPLFAICRGAQILNVALGGTLLQHIPDVNPEAKYQPAPGVYGSVEFTSLPGTITRDLLGPVASAPCYHHQAINGLADGLRVTASAADGTIEAVETTSGGWVLGVQFHPEHNSSDLRLFRGFVEAAADYRAAANQRPANQRTEANQRPAKQRTEANDSPADNLRTERMENPIHVQHLPGPT0007105_154DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007105-trpG|phnB-K01658NANA
D1-29_041131365styDPhenylacetaldehyde dehydrogenaseATGTCCAGCACCTATGACGTTCTGAATCCGGCCACCGAAGAAGTCATCGAGACCGTCGCCCTCGCCTCGCTGGAGGAAACGGACGCCGCGATCGCCAGGGCCCACCATGCTTTCGAGACGTGGCGCCAAGTAGCTCCCGCTGACAGGGCGATGCTCCTGCGCCGCTTCGCCGCCGCCGTCGACGCCGACCGTGAAAACCTCGCCCTGCTGGAGGTCTACAACGCGGGGCATACCATCGGCAATGCCCGGTGGGAGGCCGGAAATGTCCGGGACGTCCTGGAGTACTACGCCGCCGCACCCGAGCGTCACCTCGGGCAGCAGATTCCGGTATCGGGCGGAATCAACGTCACCTTCCACGAGCCCCTCGGTGTTGTGGGGATTATCGTCCCCTGGAACTTCCCCATGCCCATCGCAGCCTGGGGATTTGCCCCCGCCCTTGCCGCCGGCAACACGGTGGTCCTGAAACCGGCGGAACTGACTCCCCTGACTGCCATCCGGCTGGGGCAGCTGGCGAAGGAAGCAGGGCTGCCCGAGGGAGTCCTGAATATTCTCCCGGGCAAGGGTTCGGTCGTCGGCGAACGGTTCGTGACCCATCCGTCGGTGCGAAAGGTTGTCTTCACCGGCTCCACCGGCGTCGGCAAACGCATCATGGCCGGCTGCGCCGAGCAGCTCAAGCCAGTAACGCTGGAACTGGGCGGCAAGAGCGCCAACATCATCTTCGCCGATTCCGATCTTGAAGCCGCCGCAGCGGCGGCACCTGGAGGGGCTTTCGATAACGCGGGGCAGGACTGCTGCTCCCGTTCCAGGATCCTGGTCCAGGACAGCGTGTACGAAAAGTTCCTTGAGCTCCTGGAACCGGCAGTCAAGGCCCTTCAGGTGGGAGACCCGGGCGACGAGGCTTCCTTCATGGGACCGCTGATTTCGGCCGGGCAGCACAAGACGGTGTCCGGGTTCGTCCCCGACGGGTCCCCCATCGCGTTTCAGGGATCCGCCCCGGACGGCAAGGGGTTCTGGTTCCCGCCCACCGTGCTGACCCCGTCGCGGGAAGACCGGGTGATGCACGAGGAAATCTTCGGCCCCGTGGTGGCTGTGGTGCCTTTTAGTGATGAAGCCGATGCACTCCGGCTGGCCAACGATTCGATCTACGGGCTCTCGGGATCCATCTGGACCCGCGACGTCGGACGGGCGCTGAGGATGGCCCGCGGACTGGAGTCGGGGAACCTCTCGGTCAACTCCCACTCATCGGTGCGCTACTCCACACCCTTCGGAGGCTTCAAGCAGTCGGGACTGGGACGCGAACTTGGCCCGGACGCCCTTGACGCCTTCACCGAGACCAAAAACGTCTTCATCTCCACTAACCCCTAAMSSTYDVLNPATEEVIETVALASLEETDAAIARAHHAFETWRQVAPADRAMLLRRFAAAVDADRENLALLEVYNAGHTIGNARWEAGNVRDVLEYYAAAPERHLGQQIPVSGGINVTFHEPLGVVGIIVPWNFPMPIAAWGFAPALAAGNTVVLKPAELTPLTAIRLGQLAKEAGLPEGVLNILPGKGSVVGERFVTHPSVRKVVFTGSTGVGKRIMAGCAEQLKPVTLELGGKSANIIFADSDLEAAAAAAPGGAFDNAGQDCCSRSRILVQDSVYEKFLELLEPAVKALQVGDPGDEASFMGPLISAGQHKTVSGFVPDGSPIAFQGSAPDGKGFWFPPTVLTPSREDRVMHEEIFGPVVAVVPFSDEADALRLANDSIYGLSGSIWTRDVGRALRMARGLESGNLSVNSHSSVRYSTPFGGFKQSGLGRELGPDALDAFTETKNVFISTNPPGPT0006875_6475DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-29_04114780bacC_7Dihydroanticapsin 7-dehydrogenaseATGATTGAAGTAATCTCCAACCGCCTCAAGGGACGCAGCGCCGTAATCACCGGCGGCGCCAGTGGCATTGGACTCGCAACAGCCCGCCGCTTCGCCGCTGAAGGGGCCAACGTGGTCATCGCCGACCTGGACCCAACCTCAGGGCAGCGCGCGGCCGATGAGGTGGGCGGCCTCTACGTGAAGGTGGACGTCACCAGCGAAGAAGAGGTCAAGAACCTCTACGCCGTCACCAACGAAACCTACGGCAGCGTTGACATCTCGTTCAACAACGCCGGAATTTCGCCCCCGGACGACGCCTCGATCCTCGATACAGGCATCGACGCCTGGCGCAGGGTCCAGGAAGTGAACCTGACTTCGGTCTTCTACTGCTGCAAGTACGCGCTCCCCTACATGCAGGCACAGGGCAAGGGCTCCATCATCAACACCGCGTCCTTTGTGGCCGTGCTGGGTGCTGCCACCTCACAGATTTCCTACAGTGCCTCCAAAGGCGGGGTGCTGGCCATGAGCCGGGAACTCGGCGTCGAGTTCGCCAGGCAGGGAATCCGCATCAACGCCCTTTGCCCCGGACCGGTCAACACCCCGCTGCTGAAGGAACTCTTCGCCAAGGACCCGGAGAAGGCGGCCCGCCGCCTGGTGCATGTTCCCCTGGGCCGGTTCGCCGAACCCGAGGAACTGGCAGCAGCAGTGGCCTTCCTCGCCAGCGACGACGCATCCTTCATCACTGCCTCAACGTTCCTGGTTGACGGCGGGATCTCCGGCGCTTACGTAACACCCGAGTAAMIEVISNRLKGRSAVITGGASGIGLATARRFAAEGANVVIADLDPTSGQRAADEVGGLYVKVDVTSEEEVKNLYAVTNETYGSVDISFNNAGISPPDDASILDTGIDAWRRVQEVNLTSVFYCCKYALPYMQAQGKGSIINTASFVAVLGAATSQISYSASKGGVLAMSRELGVEFARQGIRINALCPGPVNTPLLKELFAKDPEKAARRLVHVPLGRFAEPEELAAAVAFLASDDASFITASTFLVDGGISGAYVTPEPGPT0008190_280DIRECT 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
D1-29_041152328hypothetical proteinGTGAGTGCGGTGAACGCAATCAGAACCATGGCATATGCCAGCATCCGCCGACACAAAGTCCGGACCCTGAGCATCCTGTTGATGTCCTTCCTCGCCGCCGTCACGACAGTCCTGTCGGCCAGCCTGTTGTGGGACACCCACCGCCCGTGGGATCGCGCCTTCGAGGCCGCGGCCGGACCGCATCTGGTTTTCGAGTTCGATTCCGCCCTTGTCAGCAGAAACGACATCCAAGCCACAGCGTCGCTGCCCAACGTAGCTGCCCTTGGCGAGGTCCAGGACAGCGTGGTGCTCCTGGCACAGTCCGGCGACGAGAAAGGTCCGCTGCAGGTTGTGGGGCGTGGTGGCCCCGGCGGAGAGGTGGGGAAGCTGTCCTTTGTGGAGGGACGCTGGCCCGAACAAGCCGGTGAGATTGCGGTGACTCCACACGACGGCTGGAACCCTCCGGAACTGCGTCTCGGAGAGAGCGTTACACTGCCGACGGCGGCCGGCCCTGCTGAATTCCGTATCGTAGGCGTGCTGATAGACCTCACCACGACGTCGGTCCGCGGCGAAACCCAGCGCGGCTGGGTCCTGCCAACAGAGATGGGTTCGCTGATCAGTGCTGATGCCCCGTTGCGGTACCTGGCAGGCTACCGGCTCACGGGCGACGTCTCCGAAGCGGGCATCGCGGCTGCCCAGGAAAAGATCGGGGCCGCGCTGGTTCCCGGCGCCCAGACAAAAGACCCGCTGAGCTGGCTGGAAATGCGCAGCGGCTCCAACTGGACGGTCGCTGCGTTCGGCAGCATCGTCTACGGCTTCGCGCTCGTTATTCTTACCGCCGTCGCCCTCACCATTGCCAGCGTTATCGCGGGTACGGTGCTGGCTGGCTATCGGGATTTCGGCGTCGCGAAGGCCCTGGGCTTTACCCCTTGGCAGATCATGGGGCTCCTCGTCGCCCAGGTTGCGGTACCCGCCGGAATCGGGGCCATACTCGGGCTGCCGTTAGGAGTCCTGCTCGCTTCCTACTTCCTCAGCGAATCGGCTATTCAGCTGGGACTGCCCGCGGCCTCGGCAGTAAACCCGCCCCTGATTTTGCTGGTGGCTGCGGGCTTCATCCTGCTGGTGGTGATTGCCGCTGCCGTTCCCGGCCTGCGGGCAGCCCGAATGAGCGCAGCATCTGCCATCAGCCGCGGCCGTTCGCCTAGTCTTGGGAATCTGTCCCGGCGTGGTTCGGCGATCGTCCGGACTCGGCTGCCCAGGCACGTCGGGCTCGGCGCCGCCGCCGTCGTTGACCGTCCCGTTCGTGCCATGCTTACCGTTGGTGCCGTCGCGGCATGCATGGCTGCCCTGACATTCGCCTCCACTTTTGGCCCCACCATGGACGGATTTATCAAGGACAGGGCCACCTGGGGCGCGGCGCAGGACGTCACGGTATTTAAAACTCCCGGACGGTCAGCCGACGACGTGCAGGCGCTCCTGTCCCAACGGCGGGAGGTCGCCTTCTCGGTGGAGACTTCGGTAGCCTCGTACGTTGTCTCCGGCCAAGCCAAGGCGCTCGGTGTCATGGGCATGCGGGGCGACGCCGAAACCATGGGCTTCCGCGCCGCCAAGGGACGGTGGTTCGCCGCTCCCGGCGAGGCAGTCATGAACGCATTTACCGCCAAAGAGCTTGGCATGAAGCTGGGCGACACAGTGACCGGAATGGTCAACGGCACTGAGCTGAGGCTTACGGTGGTGGGCCTGATGAACGACGTCGCCCACCGCGGATTCCGCGTGGACTGGAACACCCTGACCACGGTGGCTCCCGCCGCCCAGCCTGACACCTACCTTCTCCGGCTGAACGACGGTGTGAGTGATGCCGAGTTCGTGGATTCGCTCAACGCGCAGGCCGGCGATCTGATGCTCGCGAGCTTCCTCGGCTATGAAGCCGACATGACTCCAATTGACCGCACCATCGGAGGTCTGTCGGTGGTGCTTGTCCTCCTGGCTGTGGTGGGTACGTTCAACACAACCCTGCTGGCCATGCGGGAACGGCTTCGCGATACTGCCATCCTCAAGACCCTGGGGATGACGGGAGCGCAGATCACCGGAATGGTTTTCACCTTTGCAGGAGTCCTCACGGTAGCGGCGACGGCCATTGGCATACCACTTGGCCTGTGGATGCAGGAGAGAATCATCAACGAAGGGATCGGGGAAACCTCAGGGTTCGTTGTAGAGGTCGGGATCATCGACGTCAGGAGCATCGTCCTGATCGTGGCCGGCGCCTTGGCAGTGACTCTCCTCGGTGCGCTCGTCCCGGCCCGCAGGGCGCGCCGTTTGCCGGTGGCGGCGGTGCTGCGCTCGGAGTAGMSAVNAIRTMAYASIRRHKVRTLSILLMSFLAAVTTVLSASLLWDTHRPWDRAFEAAAGPHLVFEFDSALVSRNDIQATASLPNVAALGEVQDSVVLLAQSGDEKGPLQVVGRGGPGGEVGKLSFVEGRWPEQAGEIAVTPHDGWNPPELRLGESVTLPTAAGPAEFRIVGVLIDLTTTSVRGETQRGWVLPTEMGSLISADAPLRYLAGYRLTGDVSEAGIAAAQEKIGAALVPGAQTKDPLSWLEMRSGSNWTVAAFGSIVYGFALVILTAVALTIASVIAGTVLAGYRDFGVAKALGFTPWQIMGLLVAQVAVPAGIGAILGLPLGVLLASYFLSESAIQLGLPAASAVNPPLILLVAAGFILLVVIAAAVPGLRAARMSAASAISRGRSPSLGNLSRRGSAIVRTRLPRHVGLGAAAVVDRPVRAMLTVGAVAACMAALTFASTFGPTMDGFIKDRATWGAAQDVTVFKTPGRSADDVQALLSQRREVAFSVETSVASYVVSGQAKALGVMGMRGDAETMGFRAAKGRWFAAPGEAVMNAFTAKELGMKLGDTVTGMVNGTELRLTVVGLMNDVAHRGFRVDWNTLTTVAPAAQPDTYLLRLNDGVSDAEFVDSLNAQAGDLMLASFLGYEADMTPIDRTIGGLSVVLVLLAVVGTFNTTLLAMRERLRDTAILKTLGMTGAQITGMVFTFAGVLTVAATAIGIPLGLWMQERIINEGIGETSGFVVEVGIIDVRSIVLIVAGALAVTLLGALVPARRARRLPVAAVLRSENANANANANA
D1-29_04116741COG1136putative ABC transporter ATP-binding proteinATGAACGCCATCGTCGTCATGCAGAACGTCAGCCGCCTGTTTGCCGAAAATTCGGGCGTCGCTGCGCTCGACGGCATCAGCCTGAACATTGAACGGGGGGAGTTCGCCGCCGTCGTAGGCCCATCCGGCAGCGGTAAATCGACCCTGCTTAATCTGATCGCAGGCCTGGACCGCCCCACCTCCGGGAGGGTGGAGGTTTGCGGGATGGACGTGGGCGGGGCAAGCGAGTCCGCCCTGGCGAAACACCGCCGCAAGGGCGTCGGCTTCGTCTTTCAGTTCTTCAATCTGATCGAAAGCCTGACGGTACTCGAGAATGTCATGGTGCCCGCCGAACTGGCCGGAGTCCGCCGCGGAAAGGCCAAATCCCGGGCGCTTGAGCAGCTGGAGGAACTTGGTGCGGCCGAGCTGGCGCGGCGGTACCCGGAGACGCTCAGCGGGGGCCAGCGGCAGAGGGTTGCGCTGGCCAGGGCCCTCATCAATGCACCGGACATCGTCCTCGCAGACGAACCCACCGGCGCCCTGGATACCCGCTCCGGCAAGAACGTGATGGATCTGCTGGCCGCACTGAATGATGCCGGGCAGACAGTGGTGCTCGTGACGCATGACATTAAGCTGGCGGCAAGCTACGGCCGGCGCATCCTGACTCTGAGGGATGGCCGGCTGGCGGACGACACCAGGCTCAGTGTCCAGCGGACCGGAACAGCAGCAGACCTGATCGGCTGGACGGCAGAGGGCCGGTGAMNAIVVMQNVSRLFAENSGVAALDGISLNIERGEFAAVVGPSGSGKSTLLNLIAGLDRPTSGRVEVCGMDVGGASESALAKHRRKGVGFVFQFFNLIESLTVLENVMVPAELAGVRRGKAKSRALEQLEELGAAELARRYPETLSGGQRQRVALARALINAPDIVLADEPTGALDTRSGKNVMDLLAALNDAGQTVVLVTHDIKLAASYGRRILTLRDGRLADDTRLSVQRTGTAADLIGWTAEGRPGPT0013345_9655DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-29_04117537hypothetical proteinGTGTCCCTTCGTCTGGGCATCCTTGGACTCCTGACTGCGGGCCCCCTCCACGGGTACGAGGTCAAGCAGCAGTTCGAGGACATGCTGGCAGGTACGTGGGACCTCAACATTGGATCGGTGTACCAGATGCTGCAGCGGCTTGAACGGGACGGGCTGGTTCAGCCGTCCGGAAGCCGCGGGGACCGTGGGCGGCAGGAGTTTGTCGCCACTGACGAGGGGCGCCGGCTCTTCGATGAATGGTTGGATAACCCTGACAAGCAGCCGGAGCTGCTTAGGGAAGAAATTTATGTGAAAGTGCTGCTCCTGGCCCTGCAACGGGAACCGGACACGGCGAGGATCCTCAAGGTCCTCGACAGCCAGCGGCACGCCTACCTGCAGCGGCTGCGCGACCTGGCAGACCAGGAGCGCGCCCTGGAGGGCACGTCCAGCGGACAAACAGGCTCGCCGCTGGCACTTTTGTTCCAGGCTGGGCGGCTGCATACCGAAGCCAGCCTGAAATGGATCGATGCCTGTGTGGAGCAGCTCAGCAGGAACTAGMSLRLGILGLLTAGPLHGYEVKQQFEDMLAGTWDLNIGSVYQMLQRLERDGLVQPSGSRGDRGRQEFVATDEGRRLFDEWLDNPDKQPELLREEIYVKVLLLALQREPDTARILKVLDSQRHAYLQRLRDLADQERALEGTSSGQTGSPLALLFQAGRLHTEASLKWIDACVEQLSRNNANANANANA
D1-29_041181146COG1073putative proteinATGAGCACAAACTTCAACGGAAGCGACACCACTGCTTTGGGAACCGCGGCTGCCCCGGAACAGGGCGTATCGCGCCGGAACCTGATCAAGCTCACCGGCGCGGGTGCGGCGGCCATCGGGCTGTCCGGAGCAACGGGCCTGGCAGGAGCGGAGCAGGCGTTCGCCGCCCCGGCTGCACGCAAGGACCTGGAGCCCGGGGATCTCTCCAACGGCGCAGACAACTTCTACACCAGCAGCCAGGTCACGGTCCGGAAGATCTCATTCAAGAACCGGTACGAGATGAAGGTGGTGGGCAACCTGTTCGTGCCCAACAACCTGAACCGCGGAACCACCCACCCGGCTCTGGTGGTGGGCCACCCCATGGGCGCCGTCAAGGAACAGAGCGCCAACCTCTACGCCACCAAAATGGCCGAGCAGGGCTACGTCACGCTCTCCTTTGACCTCTCCTTCTGGGGAGAAAGCGCCGGCAAGCCGGGCAACGCGGTCTCGCCCGACATCTATGCCGAAGACTTCAGCGCCGCCGTGGACTACCTGCGCTCGCAGCCGTTCGTAGATAAGGAGCGCGTGGGGGCCATCGGGATCTGCGGCAGCGGCAGCTTTGTGATCAGCGCGGCAAAGATCGATCCCAGGATCAAGGTCATCGCCACGGTGAGCATGTACGACATGGGCGCCGCCAACCGCGACGGGCTCAACAAATCCGTGACCCTCGCACAGCGCCAGGCCATCACCGCGCAGGCAGCTGCCCAGCGCGACGTCGAATTCGCCGGCGGCGCGATCCAGTACACCGGCGGCACACCGGACGTGCTCACCTCAGAATCCACGGCGGTGGACCGCGAGTTCTACGACTTCTACCGCACTGCACGCGGGTACCACCCGAACACCACCACGCACCCCGCCCTGGCCACCAACACCAAGTTCATGAACTTCCACCCGTTCAACGACCTGGACCTGATCTCCCCGCGCCCGCTGCTCTTCATCACCGGCGACCAGGCGCACTCGAGGGAGTTCAGCGAAGAGGCCTACCGGCTCGCGACCGGACCGAAGGAGCTCTTCTGGGTCCCCGGGGCCGGCCACGTGGACCTCTACGACCGGGTGGGCCTCATCCCCTTCGACAAGCTCACGGACTTCTTCCGCACCAAGCTCTAGMSTNFNGSDTTALGTAAAPEQGVSRRNLIKLTGAGAAAIGLSGATGLAGAEQAFAAPAARKDLEPGDLSNGADNFYTSSQVTVRKISFKNRYEMKVVGNLFVPNNLNRGTTHPALVVGHPMGAVKEQSANLYATKMAEQGYVTLSFDLSFWGESAGKPGNAVSPDIYAEDFSAAVDYLRSQPFVDKERVGAIGICGSGSFVISAAKIDPRIKVIATVSMYDMGAANRDGLNKSVTLAQRQAITAQAAAQRDVEFAGGAIQYTGGTPDVLTSESTAVDREFYDFYRTARGYHPNTTTHPALATNTKFMNFHPFNDLDLISPRPLLFITGDQAHSREFSEEAYRLATGPKELFWVPGAGHVDLYDRVGLIPFDKLTDFFRTKLNANANANANA
D1-29_04119516hypothetical proteinATGAAGCGACTTGCCATCATTGCGGCAATCCTGGTCCTGGCCTTCGCCGCCGTCACTGCCTGCGGCAGCAGTGACGGCGCCCCCACAGCCGATCAGCCGCTGCCGACACCGCAAACCAGCACGGAGGACACTGCCACCATGCAAAGCTCACCAATGGCAAACGGCACACCGATCACCATAAACATCGACGGACGGGCGGTAAAAGGCATTCTCCACGACAACGCCACCGCACGCTCATTGATCGGCCAACTTCCCCTGACTCTCACGTTCAAGGACCATGGCGGCCAGGAAAAGAGCGCCCGCCTGCCAGCGCCGCTCTCCCTCGAGGGCATGCCGGCGGGAAGCGACGCGGACCCGCTGACCATCGGCTACTACGCGCCGGACCAGGTACTGGTGCTGTACTACGAACACGTCGGGCGCTTCAACGGGATCGTCCGCATCGGCACGTTCGAGGACCTCGTCGCAGTACGCGACCAGCCCGACGGCTTTACGGCGAAGCTGGACCTTGCGTCTTAGMKRLAIIAAILVLAFAAVTACGSSDGAPTADQPLPTPQTSTEDTATMQSSPMANGTPITINIDGRAVKGILHDNATARSLIGQLPLTLTFKDHGGQEKSARLPAPLSLEGMPAGSDADPLTIGYYAPDQVLVLYYEHVGRFNGIVRIGTFEDLVAVRDQPDGFTAKLDLASNANANANANA
D1-29_04120474hypothetical proteinATGCAAACAGTAGAAGAAACTGTCGATGTTGCCGTTCCCGTACGGACGGCGTACGACCAGTGGACACAGTTCGAGACCTTCCCGCAGTTCATGTCCGGTGTTCAGTCCGTCACTCAATTGACTGACACAACGAATCACTGGGTGACCAAAATTGGCGGCGTGGAGCGTGAATTCGACACCGAAATCGTGGAACAGCAGCCCGACGAACGTATCGCCTGGCGGAGCGTGGACGGTAAGTCGCACGCCGGCGTCGTTACGTTCACCCCGCTGGACCCGACGGACACCCGGGTCTCGGTCAGATTCGAATGGGACCCGGAGACCTTCACAGAAAAAGCCGGAGCCGCACTGAACCTCGATGAGATGCAGGTCAAGGCCGATATGCGCAAATTCAAGGACTTCATTGAGTCCCGCGGCACGGAAACCGGTGCATGGCGCGGTGAAGTGGATGAGAACGGCCCGATGGGCCAGCCCTGAMQTVEETVDVAVPVRTAYDQWTQFETFPQFMSGVQSVTQLTDTTNHWVTKIGGVEREFDTEIVEQQPDERIAWRSVDGKSHAGVVTFTPLDPTDTRVSVRFEWDPETFTEKAGAALNLDEMQVKADMRKFKDFIESRGTETGAWRGEVDENGPMGQPNANANANANA
D1-29_04121987lacC_3Tagatose-6-phosphate kinaseATGGGTTCAGTAGTGATTTTCGCTCCTTCCCCCGTCCTCACCGTCACCGTGGAGGACATCAAAGGCATCACAGATATCCATATCCACGCGGGCGGCCAGGGAGTATGGCAGGCCCGAATGCTGGGTGCGCTTGGCGCAACAGTGACCATGTGTGCAGTCTTCTCCGGCGAAACCGGGCGGGTCTTGCGGCACCTAATAGCTGATGAAGGTGTCAGGGTGCTGGCCGTGGCCGGAGAAGGCAGCAGCGGGGCATACCTGCATGACCGCCGCGGTGGTGAACGCCATATCCTGGCGGAATCGCCCGGCGACCGGGTTACGCGCCACGAACTGGACGAACTCTACGGGCTGACGCTGCAGGCGGGAATCGAAGCCGGGACCGTGATCCTTAGCGGCACCGGCCGGGAGGATGCGGTACCGGCCGACATGTACCGCAGACTTACGGCCGATCTGGGTGCTGCCGGATGCACTGTCATCGCGGATCTCACCGGCGACAGGCTGAACGGCGTCCTGGCTGGTAAACCAGCGGTGATCAAGATGGCCGACGACGAAATCATGAGCAGTGGCCGTGCCGGCGCCGCGGAGACCAACCGGATTATTAAAGCCATGCACGAACTCGTACGAGAGGGTGCGACGTCGGTCATTATCACCCGCGCCCATCTGCCCTCGCTGCTCCTTCACGACGGTGCGGTCAGCGAAATCCACATCCCGCAACTTCAGACGGTGGATAACCGCGGGGCCGGTGATTCACTCACGGCCGGGATGGCCGCCGTACTGGCTGATCACGGGACCCTGCATGATGCAGTGATTTTAGGCACGGCGGCCGGCGCGCAGAACGTCACCCGCCACGGCCTGGGCACTGGAGAGGCAACAGCAATCCGCGAACTCGCCAACCTCGTCAGGATCGTTCCACTGGACGACACCACCGAGCAAGAACCGGCACAGCAGATGAGCCCCGATGAGCTGGCACGAAAGGTCAGGAAAGCATGAMGSVVIFAPSPVLTVTVEDIKGITDIHIHAGGQGVWQARMLGALGATVTMCAVFSGETGRVLRHLIADEGVRVLAVAGEGSSGAYLHDRRGGERHILAESPGDRVTRHELDELYGLTLQAGIEAGTVILSGTGREDAVPADMYRRLTADLGAAGCTVIADLTGDRLNGVLAGKPAVIKMADDEIMSSGRAGAAETNRIIKAMHELVREGATSVIITRAHLPSLLLHDGAVSEIHIPQLQTVDNRGAGDSLTAGMAAVLADHGTLHDAVILGTAAGAQNVTRHGLGTGEATAIRELANLVRIVPLDDTTEQEPAQQMSPDELARKVRKAPGPT0017580_203DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017580-fruK|fpk-K00882NANA
D1-29_04122786surECOG04965'-nucleotidase SurEATGAGCCAGCCTGCGCGTGTCCTCATTACCAATGACGACGGCATCGCGTCCCCGGGCCTGCTGGCTTTGGCCGCCGCGGCCGTCCGGGCTGGCCTGAGCGTCGTGGTCGCAGCACCCGCGTCCGAAGCCAGCGGCAGCAGTTCCTCGATTACCGCTGTGGAGCAGGACGGCAGAATTTCCATTGAAGAACGCCAGCTGGAGGACCTGGACGGCGTTGAAGCCTACGCCGTCCATGGGGCCCCGGCCTTCATCACGATGATTGCCACCCATGGCGCCTTCGGTCCCCCACCAGACATCGTTCTATCCGGCGTAAACCGTGGGGCCAATGTGGGCCGGGCAATATTGCACTCCGGAACGGTCGGAGCGGCACTGACAGCCGGTGTCAACGACGGACGCGGGATGGCAGTATCCCTGGACACCGGGCTCAATCCGGACGCGATCCACTGGGAAACAGCTGCCCGGCTGGCCACTGGGCTGCTGCCGTTCCTGATGGAACAGGACGTCGGCAGTGTCCTGAACCTCAACGTTCCGAACAGTGCCGGGCCCAAACTTCCCGAGTACCGTACAGCCACCCTAACCAGATTCGGCATCGTGCAGACCACCCTCGCCGAGCGCGGACAGCAGCATTTACGTTTGGCCATCGCGGACACCACGGAGGAACCGGACCCGGACAGCGATGCGGCGTTACTGGCGGCGGGCTTCGCCACGGTGACTGCCATCCAGCCGGTCACCGGAACCAGACTGCCCTCCCTGCCCGCGCTGCCGCACGCAACGTCACGTGGTTAGMSQPARVLITNDDGIASPGLLALAAAAVRAGLSVVVAAPASEASGSSSSITAVEQDGRISIEERQLEDLDGVEAYAVHGAPAFITMIATHGAFGPPPDIVLSGVNRGANVGRAILHSGTVGAALTAGVNDGRGMAVSLDTGLNPDAIHWETAARLATGLLPFLMEQDVGSVLNLNVPNSAGPKLPEYRTATLTRFGIVQTTLAERGQQHLRLAIADTTEEPDPDSDAALLAAGFATVTAIQPVTGTRLPSLPALPHATSRGPGPT0013405_1725DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013405-surE-K03787NANA
D1-29_04123138hypothetical proteinGTGACACCCATCGCGATCACCATGATGATCATCGCCATCCTTACGGTTTGGGGCGGCCTGGCGCTGGCGCTGCTCAACCTTGCGCGGCACCCGGAGGATGAGGGGGCGCTGCCCGAGGAGCACGCACCGGAGCTCTGAMTPIAITMMIIAILTVWGGLALALLNLARHPEDEGALPEEHAPELNANANANANA
D1-29_041241575hypothetical proteinATGAGCAGCACATCCTCACCGAACGCATCGGCACCTGTAAAACGCGAGACATTCTCCTCGCGCCGGCTCTTCATCCTTTCGGCCATCGGCTCGGCCGTGGGCCTGGGCAACATCTGGCGCTTCCCGTACATCGCCTACGACAACGGCGGCGGGGCGTTCCTGATCCCGTACCTTGTGGCGTTGCTGACAGCTGGCATTCCGCTGCTGTTCCTGGACTACGCGGTGGGCCACAAGTTCCGTGGCTCGACGCCGCTGGCGTACCGGCGGCTCCACCGGGCCGCAGAACCCCTGGGATGGTGGCAGGTGCTTGTCTGCTTCGTCATCGCAGCCTATTACGCGGTGATCATTGCGTGGTCCCTGATGTACACCATCTTCTCCTTCACCGAGGCGTGGGGGGATGACGCCGAGGGCTACTTCTTCGGAAACTTCCTCCAGGTTGCCGACGCACCGGGCATCGGATTCAGCTACGTCCCGTCCGTCTTCTTCCCGCTGCTGTTGATCTGGGTAGCGGTCATCGTGATCATGGTCGCGGGAATCCGCAAGGGCATCTCACGCGCGAACTCCATCCTGCTCCCGCTGCTGGTAGTGATGTTCCTCCTGCTGGTGCTCCAGTCGCTGTTCCTTCCCGGCGCGGCAGAAGGGCTAAACGCCTTCTTCACTCCCGACTGGGCTGCGCTGGCTGACCCGGGCGTGTGGGCTGCCGCGTATGGCCACATCTTCTTTTCGCTCTCGGTGGGATACGGCATCATGGTCACCTATTCCTCATACCTGAAGCGCAGGACGGACCTGACCGGCTCCGGCATGGTGGTTGCCTTTTCCAACTCCGGGTTCGAGATCCTGGCCGGGATCGGTGTTTTCGCCGCTCTGGGGTTCATGGCGCAGGCCGCGGGTGCGGGTGTCAACGATGTAGTAACCCAGGGGATCGGTCTGGCCTTCGTCGCCTTCCCCACCATCGTTTCGCAGGCTCCCTTCGGGGCAGTCATGGGCGTGCTGTTTTTCGGATCCCTGGTGTTCGCAGGAGTAACATCGCTGATCTCTGTACTGGAAGTCATCGTTGCCGCAGTGCAGGACAAGCTCGGCTGGGGCCGGATCAAGGCCTCAGTAACGGTCAGCGGCCTGGTGGCTGTTGTCTCGCTGGGACTCTTCCCGACGGCAACGGGGCTCTACCTGTTGGATACCTCTGACGCCTTTGTGAACAGCTTCGGCATCACTCTCGGGGCGCTGGTGACCGTAGTGGTCATTGCGTGGTTCCTGCGAAAGCTTCCACTTCTGTCCGCCCATCTGAACCGGATTTCCACCATCAAGATGCGCCGGTCCTGGATGGTGCTGGTAGCCGGCGTTGTGCCGCTGGCGCTGATCTACATGGTGTCCAGCGAATTCATCAGCAAGATCTCCACCACCTATGAGGGCTATCCCGCGTGGTTTGTGGGCCTGTTTGGCTGGGGCATGGCCGGCGGGCTGGTGGTCCTGGCGCTGGTGTTGACCTTCATCCCGTGGAGCCAGAGATCCAAGGCCCATCACGATCCGGAATACGACTCCGTGGTGGCGGAAGAAGCAAAGGAGACGGCACTGTGAMSSTSSPNASAPVKRETFSSRRLFILSAIGSAVGLGNIWRFPYIAYDNGGGAFLIPYLVALLTAGIPLLFLDYAVGHKFRGSTPLAYRRLHRAAEPLGWWQVLVCFVIAAYYAVIIAWSLMYTIFSFTEAWGDDAEGYFFGNFLQVADAPGIGFSYVPSVFFPLLLIWVAVIVIMVAGIRKGISRANSILLPLLVVMFLLLVLQSLFLPGAAEGLNAFFTPDWAALADPGVWAAAYGHIFFSLSVGYGIMVTYSSYLKRRTDLTGSGMVVAFSNSGFEILAGIGVFAALGFMAQAAGAGVNDVVTQGIGLAFVAFPTIVSQAPFGAVMGVLFFGSLVFAGVTSLISVLEVIVAAVQDKLGWGRIKASVTVSGLVAVVSLGLFPTATGLYLLDTSDAFVNSFGITLGALVTVVVIAWFLRKLPLLSAHLNRISTIKMRRSWMVLVAGVVPLALIYMVSSEFISKISTTYEGYPAWFVGLFGWGMAGGLVVLALVLTFIPWSQRSKAHHDPEYDSVVAEEAKETALPGPT0013950_250DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308NANA
D1-29_04125474ysnEputative N-acetyltransferase YsnEATGATTTCCATTGACCGGGACGACCCCGCACGCCACGATGTCCGTCAGCTCCTGAGCGAACACCTTGCGGACATGTTCGCCACCTCGCCCGCCGAGAGCGTCCACGCCCTGGACCACTCGGCCCTTTCCTCGTCATCAATCACGTTGTGGACAGCCCGCGAGGCGGGCGGCCTGCTGGGGTGCGGTGCACTCAAGGTCCTGGATTCCCCGCCCGGGTCCCCCAGGCATGGCGAAATAAAGTCCATGCGTACCGCAGCGGGTGCACGGGGACGGGGTGTGGCCACTCTTGTGCTCCGGCATATCCTCGACGACGCCCGGGCCCGGAACCTCGAGCGCGTCTTCCTGGAGACCGGGACCGAGGACTACTTCGCTCCCGCCCGGCGCCTGTACCTCGGCAACGGCTTCGCCGAGCGCCCGCCTTTTGCCGACTACACCCTGGATCCAAACAGCGTCTTCATGGAACTCCACCTGTAGMISIDRDDPARHDVRQLLSEHLADMFATSPAESVHALDHSALSSSSITLWTAREAGGLLGCGALKVLDSPPGSPRHGEIKSMRTAAGARGRGVATLVLRHILDDARARNLERVFLETGTEDYFAPARRLYLGNGFAERPPFADYTLDPNSVFMELHLPGPT0007180_230DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
D1-29_04126630hypothetical proteinATGATGGCGGGATCGGCGACGTTCCTGGCCGGGGCCTTTATGCCAGTCTCGCGGGTGTATGTCGAACGAGATCCGCAGCGCAAATTGGCCATTCTGCTCGCGGACCCTGGACAGTGGAGTACCCAGCAAGTGCTCTTGGCCGCAGGCACAGCTGCGTTGCCCGTGGGGGTGGTGATGCTGGCCCGTCACTGGGGTACGGGAAGTGATCGGGGTGGTCAGGAACCCTTGGAGGGGCAGCGGTTTGTCCAGGCGGCTGCACTTCCGTTGGCCACGGGAGCCTGTCTGTTCCTGGGTCACCTGGAGGCGCGATACAAGGATCCGGAGGCCTTCGCGTTGGGGAATGTGCCCATGTGGACGTTCCAGGGGTATATGGGGCTGAGCCTTGCCGGCATGGCTGCCCTGGGTGGCGGGTTGCTGGCACGGGCGCGTGCTCACGCCAAGTCCGGTGCCCTGCCACAGGACCCGCGCTGGCCGGGCTGGCTCAATGTGGGCGGGGCCGGAGTCTTCGCCGCCGTCCTGGTTGCTACCGGTGACTTGCCGCCCCTGCTGGTCTACGTCGTGGAGCTGGCGACCGGGGCTGCGCTGCTGCGGCAGCTCCGCCGGAGCGCCGATCTGGGGAAGCCAGGCTAAMMAGSATFLAGAFMPVSRVYVERDPQRKLAILLADPGQWSTQQVLLAAGTAALPVGVVMLARHWGTGSDRGGQEPLEGQRFVQAAALPLATGACLFLGHLEARYKDPEAFALGNVPMWTFQGYMGLSLAGMAALGGGLLARARAHAKSGALPQDPRWPGWLNVGGAGVFAAVLVATGDLPPLLVYVVELATGAALLRQLRRSADLGKPGNANANANANA
D1-29_041271614clsBCardiolipin synthase BGTGAACGGTAGTCCGGATTACTGGTTCTTGAGTGCCGCTGAGCGGGGGAATGACGCCACCCGGGTGCACGCCGGCGGCGCGGGATTGTCGTCCTGGTCCCAGGGCAACCTTGTGCGGCCCCTGATTCACGGGGCCACCTACTTCGCCCGGCTGCATAAGGAGCTCTCGGCACTTCAGGCGGGAGACCGTGTGTGGTTCACCGACTGGCGTGGCGATGGCGACGAGCGGCTGACGGCGGACGGACCTGCGATCGGCGAGTTACTGGCCCGGCTGGCGCGGGCCGGCGTGGAAGTGCGCGGCTTGGTTTGGAGATCCCACGGAGAGCGCGTCTCTGCCCCCATGAGTAACCGGTCCAATGAGCTGCTCAGCCGCCAGATCAACGACGCCGGCGGCGAGGTGCTGCTGGATCAGCGCGTGCGCATTTTTGGCTGCCATCACCAGAAGCTGTTCGTCATCCGCAGCGGTAGCGATCCCTCGCGGGACGTCGCGTTCGTAGGCGGGATCGACCTCTCCCACAGCCGCCGGGACGACGCCGATCACGCGGGAGACCCACAGGCGGTAGACATGGATCCCCGGTACGGGAAACAACCTCCGTGGCACGACGCCGCCGTCGAACTGCGCGGACCGGTGGTGGCAGACGTGCTGGAGTTGTTCGCGGAAAGGTGGAATGACCCCCATCCCCTGGACCACCGCACACCGTACCGGATGCTGCTGCAACGCCTGGCCGACATGCCCCGGCACCCCGAACCCCTGCAGGAGACTGCGCCGCCGCCGCCACCGGCCGGCCCCCATGCCGTGCAGCTGCTGCGCACGTACGGCGTGAAGCATCCGCCGTTCCCCTTCGCCCCCAGTGGTGAGCGGAGCGTTGCCCGGGCGTACACAAAAGCCTTCGCCCTGGCCCGATCGCTGATCTACATTGAGGACCAGTACCTGTGGTCAGCAGAGGTCGCAGCCGGAATCGCGGCGGCCCTCGAACAGAACCCCGGGTTGAACGTGATCGCCGTGGTCCCCCGCTACCCGGACTCCGATGGTCCGCTCGGAGGGCCACCCAAGCGGCTGGGGCAGCTGCGTGCCATCCAAACCATAAGCCGCTCTGCCCCCGACAGATTCGGTGTGTTCAATCTGGAGAACACAGCGGGGACCCCGATCTATGTGCATGCCAAGATCTGCATCATCGACGACACCTGGTTCACCTGCGGATCGGACAACTTCAACCGCCGGTCCTGGACCACGGACAGCGAACTTACGTGCGCGGTCATCGACACCACGGCCGGTGAGCAGGAAGCGCCAGGAGCAGACACTGGTCCGGGCGCTTCCCGTCCGTTGGCCTACAGCCTCCGGCTCCAGCTCTGGGCCGAACACCTGGGACTCGACGAGAGTGACCCCCGGCTCCACGATCCGTCGGACGGCCTCCGCCTGTGGAACGCCGCCGCCGATGCCCTGGACGATTGGTATGAAACCGATCGCCGCTCGCCCCGGCCGAAAGGCCATGTGCGGCACCACACCACAGAACCGGTGTCGCGACTTCAGCGCCTATGGGCGCAGCCTGCAAACCGCTTCCTGGTTGACCCGGACGGCCGCCCCCGCAAGTTGCGCGGCACTACTGAGTTCTAGMNGSPDYWFLSAAERGNDATRVHAGGAGLSSWSQGNLVRPLIHGATYFARLHKELSALQAGDRVWFTDWRGDGDERLTADGPAIGELLARLARAGVEVRGLVWRSHGERVSAPMSNRSNELLSRQINDAGGEVLLDQRVRIFGCHHQKLFVIRSGSDPSRDVAFVGGIDLSHSRRDDADHAGDPQAVDMDPRYGKQPPWHDAAVELRGPVVADVLELFAERWNDPHPLDHRTPYRMLLQRLADMPRHPEPLQETAPPPPPAGPHAVQLLRTYGVKHPPFPFAPSGERSVARAYTKAFALARSLIYIEDQYLWSAEVAAGIAAALEQNPGLNVIAVVPRYPDSDGPLGGPPKRLGQLRAIQTISRSAPDRFGVFNLENTAGTPIYVHAKICIIDDTWFTCGSDNFNRRSWTTDSELTCAVIDTTAGEQEAPGADTGPGASRPLAYSLRLQLWAEHLGLDESDPRLHDPSDGLRLWNAAADALDDWYETDRRSPRPKGHVRHHTTEPVSRLQRLWAQPANRFLVDPDGRPRKLRGTTEFNANANANANA
D1-29_041281518efpA_2putative MFS-type transporter EfpAATGTCCACGTCTGCTGCTTCCATTGAAATTGAAGCGGTAGCGCAACCCCCGGGCCGCCGTCTCGGGCTCGCCCTGCTGGTTATTGCGACCGCCCAGTTGATGCTCGTTCTGGACGATTCCATCGCGAACATCGCTTTGCCCACCATCCAGAACGAGGTGGGCATACCTGCCGCAACACTTCCCTGGGTGATCAACGCCTACATCCTCGCCTTCGGCGGGTTGTTGATTTTTGGCGGCCGGGTGGGGGACCTGTTTGGCCGGCGGCGCACTCTTCAGCTTGGTGTCCTGCTGTTCACCGTCGCATCGCTGGCAGCAGGCCTGGCCCCAACAGGCCCTGTGCTGATCGCGGCCCGTGCCCTCCAGGGGATCGGGGCAGCATTGACTGCACCCAACGCGCTGGCCCTCATTGCTACGACATTTCCCGCTGGCGAGGCACGGAACAAAGCGCTTGCCGTCTACGGGGCAATGTCCGGCCTTGGCATCACCGCCGGCCTGCTGCTGGGGGGCGTGCTGACAGGAACCCTGGGTTGGCGGTGGGTCTTCTTTATCAACGTGCCCATCGGACTAGCCCTGCTGGCCGGCACCCGCACCCTGGTGGACGCGCCCAGGCACGAGGGCCGCATGGATCTCGTTGGCGCGCTGACCGGAACCGGAGGCATTACCGCACTCGTCTTCGCGATCATCCGTGGCGGCGAACAGGGATGGAACGACGTCCTCACCCTCGCCTCCCTCGCGGTTGCCGCCGTCCTGATTCCTGTTTTTATCAGGCTGCAGGCCCGCAGCAGCGACCCGCTCCTGCCGCTGCGTCTGTTCCGGGACCGGAACCGCTCCGGCTCCTACCTGGCCATGCTCCTGGTGGCCTTTGGGCCCATGGGGACCTTCTACCTGCTGACGCTGTACATGCAGCACGTCCTTGGCTACAACCCTGTCCTGACCGGCCTCGCCTGGCTTCCGTTTGGTGTCGGCATTGTCCTGGGCGCCGGAACCGCTTCCAAGCTCGTGGTCCGCTTCGCCCCACGGATCATCTCCACGGCCGGGATCCTGATTTCAAGTGCAGCCGTTCTGTGGTTCTCCACCATCCAAAGCTCCACGACATATGCGGCCTTGCTGCCCGGCATCTTTGCCCTGGCCTTCGGCTTCGCCCTGAGCTTCATCCCGCTGACCCTCACTGCCGTCAACAACATCGAGGCCCAGGACTCGGGCATCGCGTCTGCGCTGCTGAACTCGTCCCAGCAGATCGGTGTGGCCCTCGGGGTAGCGGTGCTCTCCACCGTCTCCGTGGGCATCACCGATGCCCGGCTCCCCGATGCGCTCACAAAGCTCTATACCTCCCACGCCGCCGGAGATGCCGCATTGAGGGCAACAGCCGGCGAGGCACTGACCAGTGGCTACAGTGCTGCACTTTTCGTGGCGGCCATCCTCCTCGCTGCATCCGGACTCATCACAGCCCTGGTCATCAATGCCCGAGCCCAAAGCGAAGGCCACCAATCCTTCAGCGGCGCTGTGGAGCCGCGGTAGMSTSAASIEIEAVAQPPGRRLGLALLVIATAQLMLVLDDSIANIALPTIQNEVGIPAATLPWVINAYILAFGGLLIFGGRVGDLFGRRRTLQLGVLLFTVASLAAGLAPTGPVLIAARALQGIGAALTAPNALALIATTFPAGEARNKALAVYGAMSGLGITAGLLLGGVLTGTLGWRWVFFINVPIGLALLAGTRTLVDAPRHEGRMDLVGALTGTGGITALVFAIIRGGEQGWNDVLTLASLAVAAVLIPVFIRLQARSSDPLLPLRLFRDRNRSGSYLAMLLVAFGPMGTFYLLTLYMQHVLGYNPVLTGLAWLPFGVGIVLGAGTASKLVVRFAPRIISTAGILISSAAVLWFSTIQSSTTYAALLPGIFALAFGFALSFIPLTLTAVNNIEAQDSGIASALLNSSQQIGVALGVAVLSTVSVGITDARLPDALTKLYTSHAAGDAALRATAGEALTSGYSAALFVAAILLAASGLITALVINARAQSEGHQSFSGAVEPRNANANANANA
D1-29_04129552hypothetical proteinTTGACTACGATCCGCACCGCCGCCGCGAGCTCCCTCGCCGCCGCAGGTCTACTGTTTACCCTCGCCGCCTGTTCAGCACCGGCCGCCACCCAGCCAACCACCTCCGCGCCGGCTTCCACGGCAACGTCTTCCAGCAGCGCCGACTCCGGACCCTGCACCGGTGTGAAGGTCATCGTCGACTCGGGCGCCCTGAAGCAGGCTGCCGCTGACAAGTCCGTTTGCGTGCCCGTGGACGCAGCAACTCCGGCCTCCAAGGTGCTCGAAGAAGCAGACGTCAAAACCGTAGGCACCACCCAATATCCCAACGAACTGATATGCCGTGTAAACGGTGTGCCAGCCGCAGACTTCGAGATCAAACACAAGGCCGGCACGTACAAGGAAGAATGCAGCGGCATGCCCGCCGCTTTTGCGTACTGGGCTATGTGGGTGAAGCCGGCCACCGGTGACTGGGCCTATGCCCAGGAGGGCCTGGCCACTCTGCAGATGAAGCCCGGAGAGAGCCTGGAACTGCTCTTCTCGGTCGACGGCGAACCGGCCGCCCCGAAGGCATGAMTTIRTAAASSLAAAGLLFTLAACSAPAATQPTTSAPASTATSSSSADSGPCTGVKVIVDSGALKQAAADKSVCVPVDAATPASKVLEEADVKTVGTTQYPNELICRVNGVPAADFEIKHKAGTYKEECSGMPAAFAYWAMWVKPATGDWAYAQEGLATLQMKPGESLELLFSVDGEPAAPKANANANANANA
D1-29_041302865btuD_15Vitamin B12 import ATP-binding protein BtuDATGACCTTCCGACCCGCGCCGTTACGTGCAGCGGCGGCTCTCGCCGTCGTCTTCATCGCGGCGCGGGTCATCTACCGCATCCTGTTCAACGGTGCGGGCATCGGCGAACCGGTCCTGCTCGACCTGCCGCCGGTGCGGCTGCCTGCCCCCTTTGCCCACGTGGTCTTCCTCGGTCCTGTCACGGGACCCGGCTTGTGGCAGGCGGTTCTGTCAGCCCTGCCGATCGCCGGGATCATCCTCGGTTTCGGCATCCTCAACGCCTGGGTGGACATTGCCCGCGGCTTCGTGCACTTGGCCCGACGCGGGCCCATGCAGGGCATTGCCCGGATGCTTGTGGTGGCGTGGGCGGCGCTGCCGGCGCTTGCCGACGCCGTAACCTCCGTACGCCTGGCCTTCCGCTTGCGGGGCGAACGCTTCGGAGCCCGTGCCCTGGTGCCCGTACTCGAGCGAACCCTGGAGCACGCCGGGCGGGTTGCCGCGGCCCTGGAGCTGCGCGGCTTCGGGAGCCGGGCAGCGCATAGTTCCAATAACGACGGCGACATTCCGCTTCTGGTGCGAGACGCACAGTTCCGCATCGGTGATGCGCAGGTGCGCGTTGCCGGCTTCACGCCGTCGAGCGGGTCCATTTCGGTGATTACCGGGCCCACCGGCTCCGGCAAGTCCACCGTCCTGCGGGGCATCGCCGGGCTGCTCTCCCACGTTGACGGCGGAGAAATCTCCGGCACCGTGCGCGTCGGCGGAGCGGACCGCGCCACCACTCCGCCACGCGATACCGCACGCCTTATCGGCGTGGTCCTGCAGAATCCCCGGGCCGCGTTTGCCAGCACCCGGGTTCGGGACGAAATCTCCCTCGCACTGGAACTGCGCGGCATGGCATCCGGGGCAGCCAACGCCCGGGTGCTGGAGGTAGCGGAAAGCATCGGGGTGGAAGCCCTGCTGGACCGGAATCTCAGTACCCTCTCGGCGGGTGAGGCCACACTCGTGGCCATTGCTGCCGCGGTGGTGGAGCGTCCGGCCCTGCTCCTGGTCGATGAGCCCCTGGCCGATCTTGACACCGCAGCGCGCCGGCACGTCATCGCCGTACTCAGCGCCCTCGCCCACGAATCCGGTGTCTGCGTCATCGTGGCGGAGCACCGGGCGGAGCAGCTGGTACCCGTTGCCGACTCGTGGTGGACCATCGACGGCGGCGCCCTGGTGCCGGGTTCCGCGCCAGCCGCGCGTTCACACCGTCTCGAGGCCAGGCCGACGCCAGCGGCGCCGGCGGATCTGGTGCCAGTACTGACTGCCACAAACCTTGCCGTGCACCGCAAGGGCAAGCCGCTGGTGCGCGAAGCGTCGCTGACCCTGCACCGCGGTGAGGTGGTGGCCCTGGTGGGGCCGAACGGGGCCGGAAAGTCGTCCCTTCTGGTGGCGCTCGCGCTGGGTGAGGGAACGGTTAGTGACGGAACCGTCGACGGCGGCACGGGCGGTCAAAACATGCTCGACGGCGGCCGCGTCGCCCTCGTCCCGGACGCCTCGGACGACCTCTTCACCAGGGACACGGTGGCGGGAGAGCTGCGCGCGGCCGAGCGGCGCCAGGCGCGCCGAAAGAACGGCGCAAAACCTGAGCCGGGCTCCGCGGCTTCACACTTGGCCCGGTTGCGCGGAGACGTCAGTATTCCCATTGGCCACGAGCATCCCCGGGACCTCTCCGCAGGCGAGCGCAGGATCCTTGCCATCGCGCTGCAGACCATGGACGATCCCCAGGTACTCCTGATCGATGAGCCCACCCGCGGACTCGATCCTGCGGCGCGCGCAGCAGTCGCCGCGGCACTGCGGGCCGCAGCGGACACCGGCACGGCGGTCATGATCGCCACACACGACCACGATTTTGCCCAAGGCCTCGGCGCCCGGATCCTTCCGATGAGTGACGGCGTCGCGCCTTCTTCCGTCGCGGCCGATGTTCCTGAAGAGCCCCTTCCGTCTCCCCGGCCAACAGGTGCCGGAGCACGACCGAGGGTTATCGACGAACAAGCAGACTTCCAGGGCGCGGCCAGAAAGCCCCGTATCCGCATGCCCCGCGGCGTCGAGCTCGCAGTCCTGGCCGCCGCAAACGTTCTGGCCCTCGCAGCTTTCTGCTGGCCGCTCCTCGCCGCGGCCCTCCCGCAGGATGCCGCCGCTGCCCTCCCCTACGCGGCGCTGGCCATCGCGCCGCTCGCCGTCGTCGCCATTGTGGTCTCCCTCGACGGCTCGGTCAGCTCGGCACACACGGTGGCGTTGCTTGGCGTCCTGGCCGCCGTCGGCTCGGCAGTGCGCGTGGCGAGCACCGGCGTCGGCGGCGTGGAGGCAGTGTTTATCCTGCTGATCCTGGCCGGCCGGGCCTTCGGTGCCCGTTTCGGGCTGCTGCTGGGCGCCGCCACCATCGCCGTCTCCAGTGCCTTGTGGAGCGGGATCGGGCCCTGGACACCATTCCAGATTTTCGCCTGTGCATGGGTGGGTGCCGGGGCGGGCCTGCTCCCCCGCAGCGTGCGCGGCAAAGCCGAACTGTGGATGCTGTGCGGCTACGGCGTCGTGGCGTCCTACGTATTCGGCCTGCTGACCAACCTGTGGTTCTGGCCCTTCGCGGTAGGCGCCGGCACCGGCATCTCCTACGTGCCCGGCGCGCCGCTGGGCACCAACCTCAGCAGCTTCCTGCTCTACTCACTGGTGACGTCGACGGCGGGCTGGGACACCCTGCGCGCCGTCACCACCATCATCGGAATCATTCTGGTGGGCCGGGCCGTTCTCGCCGCGTTCCGGCGGGTGAAGCCGGTCTCCAATATGGGCGGGAACGCCGCGAAAGCTCACTCCCCCCAGGCCAAAGACCGGCTGCAACTCCGGGTTTGAMTFRPAPLRAAAALAVVFIAARVIYRILFNGAGIGEPVLLDLPPVRLPAPFAHVVFLGPVTGPGLWQAVLSALPIAGIILGFGILNAWVDIARGFVHLARRGPMQGIARMLVVAWAALPALADAVTSVRLAFRLRGERFGARALVPVLERTLEHAGRVAAALELRGFGSRAAHSSNNDGDIPLLVRDAQFRIGDAQVRVAGFTPSSGSISVITGPTGSGKSTVLRGIAGLLSHVDGGEISGTVRVGGADRATTPPRDTARLIGVVLQNPRAAFASTRVRDEISLALELRGMASGAANARVLEVAESIGVEALLDRNLSTLSAGEATLVAIAAAVVERPALLLVDEPLADLDTAARRHVIAVLSALAHESGVCVIVAEHRAEQLVPVADSWWTIDGGALVPGSAPAARSHRLEARPTPAAPADLVPVLTATNLAVHRKGKPLVREASLTLHRGEVVALVGPNGAGKSSLLVALALGEGTVSDGTVDGGTGGQNMLDGGRVALVPDASDDLFTRDTVAGELRAAERRQARRKNGAKPEPGSAASHLARLRGDVSIPIGHEHPRDLSAGERRILAIALQTMDDPQVLLIDEPTRGLDPAARAAVAAALRAAADTGTAVMIATHDHDFAQGLGARILPMSDGVAPSSVAADVPEEPLPSPRPTGAGARPRVIDEQADFQGAARKPRIRMPRGVELAVLAAANVLALAAFCWPLLAAALPQDAAAALPYAALAIAPLAVVAIVVSLDGSVSSAHTVALLGVLAAVGSAVRVASTGVGGVEAVFILLILAGRAFGARFGLLLGAATIAVSSALWSGIGPWTPFQIFACAWVGAGAGLLPRSVRGKAELWMLCGYGVVASYVFGLLTNLWFWPFAVGAGTGISYVPGAPLGTNLSSFLLYSLVTSTAGWDTLRAVTTIIGIILVGRAVLAAFRRVKPVSNMGGNAAKAHSPQAKDRLQLRVNANANANANA
D1-29_041311167nagC_4COG1940N-acetylglucosamine repressorGTGAATTCTCAGTCAATGTGGTCGGCCCCGGACGCCTCGCTTCCTGTAGCGATCGAGGTCCTGCGCAGGGGGCCGATTTCCAGGGCAGCGATAGCCCGCCGACTCCAGCTCTCCCCCGGTTCCCTGACGCGCCTCAGTACACCCCTGATTGAGGAAGGCCTGCTCAGAGAGGTAGGGGAGCACAACGACGGCCGGGTGGGCCGGCCCACCCGCCTGTTGGATGTCGACGCCGATTCCAGACATTTCATCGGAATGAAGATCCGCGAAAGCGAGATCATCGCTGCGCAGACGAATCTTCGCGGTGAAATCAGGAGCCACCGAACCGAAGCGATTAAGGATCGCGACCCGGTCGCAGTCGTCCAGCAAATCACAGGGTTGACCCAGCGTCTGGGGCTGGAGAAAGACATCAGCGGCATCGGTATCGGTATCGGCGGTTTGATTCGAGACCGGAAGTTCGTCATTGACGCCAGGTTTCTTGGATGGAGCAACCTCGACCTGGCGGACATGGTCACATCAGCAACAGGAATACCCACCCTGATAGACAACGACCTCGTTGCCTTTACCGAATACGAACATTGGTTCGGCGAGGGGAAGGAAGATGACCGCTTCGCAGTTGTCACACTCGGCATCGGAACAGGGTTCGGCCTTGTAGCCAACGGCGCCCTTGTCACGGGGGACGATTACGGCATCGGCCTCGTAGGACACTGGCCGCTCGACCCCACAGGTCCCCTTTGTTTTGCCGGCCATCGGGGCTGCGCAACTAGCGTTCTGAATTCTGATTCCATCGCACGGCATGTTTCCAATGCCCTCGGGCGTGAAGTGGACTACGAACAGGCCTTGGATCTGGCAGAACAGGGAGATCCTGCCGCGAGGCGGGTCGTCGACGACGCTGGCCGCGGGCTCGGCAGACTGATCGCAGCCATCTGCAACCTCACACTGCCACAGCGCATCATCATCGCCGGAGAAGGCGTCCGGCTCGCCGCGGTAGCCCGCGCCGCCGTCGAAGCGGGCATTGCCTTGGACCGCGACCCCCGGGCCACCACGCCCCCCATCGTCCTGGCGTCAAAAGATAACGTGCAATGGTGCCGCGGGGCCGCTGTCCTTGCCATACAGGCATTCGTCCACGGAACCCTGCCAGCACTCTCCATCCTGTCCGAGCGCGATTAGMNSQSMWSAPDASLPVAIEVLRRGPISRAAIARRLQLSPGSLTRLSTPLIEEGLLREVGEHNDGRVGRPTRLLDVDADSRHFIGMKIRESEIIAAQTNLRGEIRSHRTEAIKDRDPVAVVQQITGLTQRLGLEKDISGIGIGIGGLIRDRKFVIDARFLGWSNLDLADMVTSATGIPTLIDNDLVAFTEYEHWFGEGKEDDRFAVVTLGIGTGFGLVANGALVTGDDYGIGLVGHWPLDPTGPLCFAGHRGCATSVLNSDSIARHVSNALGREVDYEQALDLAEQGDPAARRVVDDAGRGLGRLIAAICNLTLPQRIIIAGEGVRLAAVARAAVEAGIALDRDPRATTPPIVLASKDNVQWCRGAAVLAIQAFVHGTLPALSILSERDNANANANANA
D1-29_041321296hypothetical proteinATGTTCACCCAAAACAAACTCTCGAGGCGGGCCTTCGCGGCTCTGGCAACATCTGCTGTCGCCGCACTAGCCCTGTCAGGATGTTCTGCACCCCAAGCCAATTCCGAGGCAAAGACCCTCAAGGTCTGGTGGTGGGAAAACGATGACAGTGCCCTCTCCACCGGCTGGAACCGTGCCATTGAACTCTTTGAAGAGAAGCACCCCGACGTGAAGGTCGAGTTCGAACTCAAGACCTACGAGCAGATGCAGCAGTCAGGTCAGCTCCTGCTCGATTCCAATGACGCACCCGACGTCCTGGAGTACCTGAAAGGCAATGCCACAGCAGGCGTTGTTTCGCAGGCCGGGCTGCTGACCGACCTCACGGATGTGGCCAAGGACCGCAACTGGAAACTGGACAGCACCGCACAGGACGTCGGACTCTACGAAAACGGCGTGATGGGCTCCGGCCAGCGGTACGGCATCACGAACTACGGCGAGTACGTCTCCGTCTGGTACAACAAGGACCTCTTCGCTCAGCAAAACCTGCAGGTTCCCACGTCGCTGCCTGAGCTCGAACAAGCCATGGACAAATTCATCGGTGCAGGGATCACCCCGCTGGCCCTGGGCTCCCAGGACTACCCCGGCACCCACCTGCTGTACGAACTGGCGCTGGCCAACATGGACAAGGATGCCTGGTCCGCCTATCAGCAATTTGAAGGCGACGTTGACTGGAGCGCCTGGGAAAAGGCCGCCCAAACTGTGCAGGACTGGACCAACCGCGGTTACATCAGCAAGGACTCCACCGGCGTCAGCGCCCAGGACGCCGGCAACGCCTTCGCGGCAGGGCAGTACCCCATCTTCGTCTCCGGCACCTGGTGGGCCGGCGGCTTCGCCGACGATATCAAGGACTTCCAGTTCGACCAGTTCCTCTTCCCCGCCACAGACCTGCACCCCGGTTCCGGCGGCAACCTCTGGGTTGTCCCAGAAAAGGCACGCAACAAGGAACTCGCCTACGACTTCATGGAGATCACCATGAGCCCGGAGATCCAGAACCTGCTGGGCAACGAAGGGGCTGTTCCTGTCGCCGCCGATGAAGCGGCCATCACCTCCCCGATCGGCAATCTCACTACTCCGAGGTTCAACGAACTGCTGAACAGCAACGACGGCGGCCTGGGCTGGTACCCCGATTGGCCCGTCCCGGGACTCAATGACGTGCTGATCGCCCAGACCAGTGACCTGGTCCAGGGCAACATCACTCCGGCAAAGGCCGTGGAAAACATCAAGGCAGCTTACGAACAGGGCAAGCCCAGCAAGTAGMFTQNKLSRRAFAALATSAVAALALSGCSAPQANSEAKTLKVWWWENDDSALSTGWNRAIELFEEKHPDVKVEFELKTYEQMQQSGQLLLDSNDAPDVLEYLKGNATAGVVSQAGLLTDLTDVAKDRNWKLDSTAQDVGLYENGVMGSGQRYGITNYGEYVSVWYNKDLFAQQNLQVPTSLPELEQAMDKFIGAGITPLALGSQDYPGTHLLYELALANMDKDAWSAYQQFEGDVDWSAWEKAAQTVQDWTNRGYISKDSTGVSAQDAGNAFAAGQYPIFVSGTWWAGGFADDIKDFQFDQFLFPATDLHPGSGGNLWVVPEKARNKELAYDFMEITMSPEIQNLLGNEGAVPVAADEAAITSPIGNLTTPRFNELLNSNDGGLGWYPDWPVPGLNDVLIAQTSDLVQGNITPAKAVENIKAAYEQGKPSKPGPT0016330_1473DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016330-msmE-K10117NANA
D1-29_04133975ngcF_2COG1175Diacetylchitobiose uptake system permease protein NgcFATGACCGCAGTAACCCCGGCCCCTACGGCCCCCGCATCCCGGAACACCCCACCCAGAACAGGAACGCCGCGGCGAACTGCACGGGAGACCCCGCTCGGCTACTGGATCTACCTCCTGCCCGGCGCCATCGGCTTCATCGCCATCGTGGCCATCCCTTTCGGCATGAACCTCTACTACAGCCTCACCAGCTGGCGCGGCGTCGGCACCCCCAAGTTCGTCGGCCTGGACAACTACGTGCGCCTCGTGGCCGACCCCGCCTTCTGGGCCTCATTTCTGCACAGCACCGCCTTCATCCTTGCCATGGCCGTCATTCCCACCGCCCTGGGAGTCTTCCTGGCTGCCGTCCTCTTCGACTACATTGCTCCAAAGTTCGGTGCCCGGACAGCCAGCATCCTCCGCGCCATGTTCTACCTCCCGCAGATCCTTCCGATCGTGGTGGCCGGCGTCCTGTGGAAATGGCTGTACCAGCCGCAGTACGGGATCATCAACACAGTCCTTGACGGCATGGGGCTGGGCTGGCTCCAGCAGAACTGGCTGGGTGATTCCGATACAGCCATGCTCGCCGTCATGAACGTCCTGATCTGGCTTCAGATCGGCTACACCATCGTCGTATTCATGGCAGGACTCTCACGGGTGGATCCGGCCCTTTACGAGGCGGCCGAGATTGACGGTGCCGGCTGGTTCCAGCGTTTCTGGAGCATCACCATCCCCCAGCTCCGCCCGGAGATCGCCGTCGTCCTGATCACCACGTCTGTGGCCGCCCTGAAGGTCTTCGCCCCGATCTACGTCCTCACCAAAGGCGGGCCCGGGACCAGCACCATCGTCCCGGCCTACTTCTCGTACTCAAACTTCTTCACCACCACACAGGTGGGCTACGGCGCCGCCGTCGCCTCGCTCCTGGCGCTGCTCGTCACCATCATCGCGATCGTCCTGCTGCGCTACCAGACCCGCAACGCCGAGGGATTCGAAAAGTGAMTAVTPAPTAPASRNTPPRTGTPRRTARETPLGYWIYLLPGAIGFIAIVAIPFGMNLYYSLTSWRGVGTPKFVGLDNYVRLVADPAFWASFLHSTAFILAMAVIPTALGVFLAAVLFDYIAPKFGARTASILRAMFYLPQILPIVVAGVLWKWLYQPQYGIINTVLDGMGLGWLQQNWLGDSDTAMLAVMNVLIWLQIGYTIVVFMAGLSRVDPALYEAAEIDGAGWFQRFWSITIPQLRPEIAVVLITTSVAALKVFAPIYVLTKGGPGTSTIVPAYFSYSNFFTTTQVGYGAAVASLLALLVTIIAIVLLRYQTRNAEGFEKPGPT0016335_169DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016335-msmF-K10118NANA
D1-29_04134912dasC_6COG0395Diacetylchitobiose uptake system permease protein DasCGTGACCACCACAGCCCCCGCTCCCGACACCGCCACACCATCACCGGAACGCCGGCACAAACCGGCCCGCACCAACAGGAGCGCCAGGAGCCGGCGCGGCATCAGCGGCTGGACCGTCCTGATTCTGTTGGCCGTGGCCGCGGCGCTGATGATTTTCCCCTTCTGGCTGGCCCTGATCAACGCGTTCAAACCCTCCACGGAGTACATCGCTGATGGCCCCATCGGAATCCCCACCGAACTGGACTTCACCGCGATCATCGACTTCTGGATCGGCGTGAACTTCAACCAGAAACTGCTCAACAGCGTCATCCTCTCCGGCAGCGTAGCCCTGATTGCCGCCACGTTGAGCCTGCTCAGCGCCTTCGCCATCGGCATCGGCCGGCTCAAAGGTAGGGTGTGGATCCTCGCCGTCTTCATGCTCGCCTTCACAATCCCGCAGGAAGCCTTGGTCTACCCGCTGTTCGTCCTCTCCCGGGAACTGAACCTCTACGACAACCTGCTCGGCGTCACCATCATCCTGGCCGTCCTGCAAAGCGCCTTCGGCACCTACATGCTCGCCTCCGTGCTCGGATCCTTCCCCATGGAAGTCCTCGAGGCAGCCCGACTGGACGGGGCAAGCCGCTTCCAGATCCTCCGGGTCATCGTCCTGCCCCTGACCCGCCCAACACTGGCCGTGCTGGTGACCTTCTTCTTCATCTGGACCTGGAACGACTTCTTCCTCCCCCTGGTCCTACTGCCAAGCGCTTCCAACCAAACCGTGTCCGTGTCTCTGGGCGCACTCAGCGGCCAGTACACCAGCGACCCCACCGCACTGGCCGCAGCATCCATGGCCGGCATCCTGCCAGCACTGATCTTCTTCCTCCTCTTCCAGCGCACCCTCATGCGCGGCGTAAACATCGGAGCCATCAAGTGAMTTTAPAPDTATPSPERRHKPARTNRSARSRRGISGWTVLILLAVAAALMIFPFWLALINAFKPSTEYIADGPIGIPTELDFTAIIDFWIGVNFNQKLLNSVILSGSVALIAATLSLLSAFAIGIGRLKGRVWILAVFMLAFTIPQEALVYPLFVLSRELNLYDNLLGVTIILAVLQSAFGTYMLASVLGSFPMEVLEAARLDGASRFQILRVIVLPLTRPTLAVLVTFFFIWTWNDFFLPLVLLPSASNQTVSVSLGALSGQYTSDPTALAAASMAGILPALIFFLLFQRTLMRGVNIGAIKPGPT0016340_206DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_REAFFINOSE|STACHYOSE|MELIBIOSE_TRANSPORT,PGPT0016340-msmG-K10119NANA
D1-29_041351728malL_5COG0366Oligo-1,6-glucosidaseGTGACCACCCTCCAGCCCGCACTCCGACACCCCAGCCTCCGCCCCACTGATGAATGGTGGAAGGCGGCCGTCGTCTACCAGGTCTATCCACGCAGCTTCGCCGACTCCAACGGCGACGGCATCGGCGACATTCGCGGCATCATCAACCGCCTCGACCACCTGGAAGACCTTGGTATCGACGTCGTCTGGCTCTCCCCCGTCTACGCCTCACCCCAAGATGACAACGGCTACGACATCAGCGACTATTACGCCGTGGACCCCACCTTCGGGACCCTGCAGGACCTCGACGAACTGATCGCCGGACTCCACGCCCGCGGCATGAAACTGGTCATGGACCTCGTGGTCAACCACACCTCCGACGAACACGCCTGGTTCCAGGAATCGTGCTCAAGCCTGACAAGTCCCAAACGTGACTGGTACATCTGGCGCGATCCCCGTGACGGCGCAGAACCCAACAACTGGGGCTCCTTCTTCTCCGGCTCCGCCTGGGAGCCGGACGAGACCACAGGACAATACTTTCTCCACCTGTTCTCGAAAAAGCAGCCAGACCTCAACTGGGACAACCCCGAAGTCCGGGCAGCCATCTACCAGATGATGAACTGGTGGCTGGACCGGGGCATCGACGGCTTCCGCATGGACGTCATCAGCTTCATTTCCAAGCACCCGGACCTGCCGGACGGCGACGTCCCGGATGGAGGTAGCTGGGGCGACGGCATCGCGTTCTACGGCTCCGGGCCCCACGTTCACGAATATCTCCAGGAAATGCACCGGGAAGTCTTCGCCCACCGGGACGCCGACCTCATGACCGTGGGAGAAATGGTGGACGCCACGCCCGAACTCGCGCGGCTCTACACGAATCAGCAACGCCTGGAACTGGACATGGTGTTCCACTTCGAACACGTCGGGCTGGACCATGGTCCCGGCGGAAAATTCACCCGTAAGCCCCTTGACCTCGTTGCCGTCAAGCAATCATTCGCCCGATGGCAGGAAGCGCTGGCCGAAGTGGGCTGGAACAGCCTCTACTGGAACAATCACGACCAGCCCCGGGTTGTGTCCCGATTCGGAAACGACACGGACTACTGGTACGAATCCGCGACCGCCCTGGCGACGGTACTTCACCTGATGCGCGGAACACCCTACATCTACCAAGGTGAAGAGCTCGGGATGACCAACATGGCATTCCAAAGCATCCATGAGTTCCGTGACCTGGAAAGCCTGAATCACTACCGCGAAGCCATCACCGGAAGTGACGGCAGCACGGCAGCCGAACTCCTTGCCGGCATCGCCATCGGGGGACGGGACAATGCACGCACGCCTGTGCAGTGGGATGCGACGCCGAACGCCGGCTTCACCACAGGCGAGCCCTGGATTCCGGTCAACCCGAACCATGCCTGGCTCAACGCTGCCGCCCAGCGTCAGGACGCCGATTCGGTCTTGGCCTGGTACCGCAGCCTGGTCCGCCTCCGCCATGAAGAGCCGGTCCTTATCAACGGGCGCTTCACCCTCCTGCACGCGGATGACCCGCAGCTCTTCGCCTACACGCGGATCAACGACACCACCGAGCTGCTGGTCCTGGCCAACTGCTCCTCAGAACCTGCAGCACTCGCCGCGGAAACCTACAGTCATTGGACACGTGCTGACGTCATCCTCAGCAATCAGTTAGTCAACCGCCCCATCCAGAAGGAACTGCTGCCCTGGGAGGTGATCGTCCTTCGCCGCCTCGTCTGAMTTLQPALRHPSLRPTDEWWKAAVVYQVYPRSFADSNGDGIGDIRGIINRLDHLEDLGIDVVWLSPVYASPQDDNGYDISDYYAVDPTFGTLQDLDELIAGLHARGMKLVMDLVVNHTSDEHAWFQESCSSLTSPKRDWYIWRDPRDGAEPNNWGSFFSGSAWEPDETTGQYFLHLFSKKQPDLNWDNPEVRAAIYQMMNWWLDRGIDGFRMDVISFISKHPDLPDGDVPDGGSWGDGIAFYGSGPHVHEYLQEMHREVFAHRDADLMTVGEMVDATPELARLYTNQQRLELDMVFHFEHVGLDHGPGGKFTRKPLDLVAVKQSFARWQEALAEVGWNSLYWNNHDQPRVVSRFGNDTDYWYESATALATVLHLMRGTPYIYQGEELGMTNMAFQSIHEFRDLESLNHYREAITGSDGSTAAELLAGIAIGGRDNARTPVQWDATPNAGFTTGEPWIPVNPNHAWLNAAAQRQDADSVLAWYRSLVRLRHEEPVLINGRFTLLHADDPQLFAYTRINDTTELLVLANCSSEPAALAAETYSHWTRADVILSNQLVNRPIQKELLPWEVIVLRRLVPGPT0019145_526DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019145-malL-K01182NANA
D1-29_041361941DextranaseATGCCCGAAACAGGTCTGGGCCGTCTGGCCAAACGCATCACTGCCGCAGCCGCCGTCGTACTCTTCAGCACTGCCGCCCTCCCGGCGCACGCAGCGCCCGCCGCCGCGCCGGCAGCTCCGGCAGCACCGGCAGCACCGGCCAAGGAAGCTTCCATTACCACCGTGGACAACGGCAACCTGCACACCTGGTGGCACGACAACGGGGTCTTCAACACCGAAGGCCCCACCGAGGACAACGAGGTGCGCCAGTCCTCGATTTACGACGTCCAGGTCGCCTCGGCCAACCAACCGGAGAAGGCCTACGACGCCTTCACCTACATGAGCATCCCCCGCAGCGGAAAGGACAAGGTCGGCTACACCAAGGAAGACGGCGCGGAGTTCTCCTCCCAGGCAGGCCTGTCTATGAGCTGGTCCAGCTTCGAGTACGCCAAGGACGTTTGGGTGGACGTCAATCTCAAAACCGGCCAGACCATCACCTCGGCCGACCAGGTCCAGATCCGTCCCAGCAGCTACAACTTCGAAAAGAAGCTCGTGGACTCGGACACGGTGAAGATCAAGGTGCCGTACTCTGACGCCGGGTACCGGTTCTCGGTGGAGTTTGAGCCGCAGCTGTACACGGCGTACAACAACATGTCCGGGGACAGCGGCAAGCTGACCACCAATGCGGAGGGCAACCGCGCCATCCACACCGAGCCCCGGAACTCCATGATGATCTTCGCCGAACCGAAACTCAGCGGCGGACAAAAGGAGCGCCTGGTTCCGACCAAGGAATCAGGAAGTATCCACTACCCGGCCGAAGGTGAGGTGACCAACCTCAACTCGGTTGCCGAGGAGATCATCTACTTCAAGCCCGGCACGTACAGCATGGGCTCGGGCTATCACGCGGTCCTGCCGCCGAACGTGAAGTGGGTGTATCTGGCCCCGGGCGCCTATGTGAAGGGAGCCTTCCGGTTCTTCCACGACAACCAGAGCCAGTACAAGGTGACCGGCTATGGCGTCCTCTCCGGCGAACAATACGTGTACGAGGCGGACACGGCCAACAACTATAACGCTCTGAGTGGAGCCTCAAACTGCCACGTCTCCTGCGTGAAAATGCTTCAGTTCGAAGCATCAAACACCGAACAGAAGCTGGACCTGCAGGGCGTCACCATCAACGAACCGCCGTACCACTCCTTCGTCGTCTACGCGCACGAAGGAGAAAAAGAGGTGGGCGTAGAACGCTTCCGGATGAATGTGGAGAACTACAAGCAGGTAGGCAGCTGGTACTGGCAGACCGACGGCATCGAGCTGTACAACGGCAGCACCATGAAGAACACATTCTTCAATTCCAACGACGACGTGCTGAAGATGTACCACAGCGACGTCACCATCGATAACACCGTGATCTGGAAGAACGAGAACGGACCCGTGGTCCAGTGGGGCTGGACCCCACGAAACATCAACAACGTCAACGTCACCAACACCTCGGTCATCCATAACCGGATGTACTGGAAGGACGTCAAATACAACACCTGCATCTTCAATTCCTCCTCCCACTGGGAGGACATGGGCTCCACCACCAAGGCGGACCCCAGCACCACGGTCAAGAACATGACATTCGAAAACTTCAAGGTAGAGGGCATGACCAACTGCGCCATCCGCGTCCATGCCCTGTCCAACACCGAGAACATCAACATCAGGAATCTCAAGATCGACAGCTGGAACGGACTTGACTGGACCTCGCAGGTCAGCCACCTCAAGCGCTACACCAACCCTGCAGGCGAGAAGGTAACCATCGGCAACGAGGTGACTGACGGCAAGGGCCTCGCACTGGAAAACTACTCCGTTGGCGGCGAAATCATCGAGAAAACCGCCGGCAACTGGGCCGACTACCAGCCTGGCCGGCTCGGCTTCGACGGCGAGAACTGGGACAGCTGGAACGCCTTCAAGTCCACCCCATAGMPETGLGRLAKRITAAAAVVLFSTAALPAHAAPAAAPAAPAAPAAPAKEASITTVDNGNLHTWWHDNGVFNTEGPTEDNEVRQSSIYDVQVASANQPEKAYDAFTYMSIPRSGKDKVGYTKEDGAEFSSQAGLSMSWSSFEYAKDVWVDVNLKTGQTITSADQVQIRPSSYNFEKKLVDSDTVKIKVPYSDAGYRFSVEFEPQLYTAYNNMSGDSGKLTTNAEGNRAIHTEPRNSMMIFAEPKLSGGQKERLVPTKESGSIHYPAEGEVTNLNSVAEEIIYFKPGTYSMGSGYHAVLPPNVKWVYLAPGAYVKGAFRFFHDNQSQYKVTGYGVLSGEQYVYEADTANNYNALSGASNCHVSCVKMLQFEASNTEQKLDLQGVTINEPPYHSFVVYAHEGEKEVGVERFRMNVENYKQVGSWYWQTDGIELYNGSTMKNTFFNSNDDVLKMYHSDVTIDNTVIWKNENGPVVQWGWTPRNINNVNVTNTSVIHNRMYWKDVKYNTCIFNSSSHWEDMGSTTKADPSTTVKNMTFENFKVEGMTNCAIRVHALSNTENINIRNLKIDSWNGLDWTSQVSHLKRYTNPAGEKVTIGNEVTDGKGLALENYSVGGEIIEKTAGNWADYQPGRLGFDGENWDSWNAFKSTPNANANANANA
D1-29_04137282hypothetical proteinATGTCCCACGGCGCCAATCGGCTACCCGACAACGAGGGCGGCCTCACCACACCCAACAGCCTGCTCCCTGGTCCTCCACCGCTCTCGCTAGCCGTTGAGGTCACGACAGGGGACGACACCCTTAGCCGGGACCAGAAAATCAGCGAAGCCGTCGACCGACTGATACCTGCCGCGTTCGAACATAGGCACGGCATCCTCGTCACGGAACAAGACATCGGCATGTACACGGTCCAAGTCGATCCGAGCGTGCCCTGCGGCGTTATCCACGAAAAGCGGCACTGAMSHGANRLPDNEGGLTTPNSLLPGPPPLSLAVEVTTGDDTLSRDQKISEAVDRLIPAAFEHRHGILVTEQDIGMYTVQVDPSVPCGVIHEKRHNANANANANA
D1-29_04138810ppgK_2COG1940Polyphosphate glucokinaseTTGGACGAGAAGTCACACAAAAACACGCCGCTGATCGGTATCGACATTGGAGGCACCGGCATTAAGGGCGGCATCGTCGATTTGATGGAGGGCAGGCTGCTGGGCGAGCCGTTCTGCGTACCCACCCCGCGGCCGGCAACACCCGGGGCCGTCGCCGAATCCGTGATGCTGGTCGTCTCTGAACTCTCGGCCCGCCCCGGAGCGCCCGCTCCCGGCTCCCCCGTCGGCGTGACCTTCCCGGGCATCATCCAGCACGGCGTGGTTCGTTCCGCGGCCAACGTGGACAAGAGTTGGCTTAACACCAATATGAATGCCCTCCTAGCGGCGCGTCTGGGTCGGCCCGTTGAGGTCATCAACGACGCCGACGCTGCCGGGCTAGCAGAAGCGCGCTACGGCGCTGGGGCCGGGGTTGCCGGCACCGTCCTCGTGATCACTTTGGGCACCGGAATTGGTTCTGCATTTATCTCGGACGGGAAACTGGTACCGAACACCGAATTGGGTCATCTGGAGATCGGTGGCCACCACGCCGAAAGCAACGCCTCAGCCGTTGCCCGCGAAAGAGCAGGCTTGTCGTGGAACGAATACAGCCTTCTGCTACAGCGCTACTTCTCCCACATCGAGTTCTTGTTCTCCCCCGAACTGGTCATCGTCGGCGGCGGCATCTCCCAGCGGGCACACGACTACCTGCCCAACCTCAAGCTCCGCACGCCCATCGTGCCGGCAGTTCTTCGCAACGAAGCAGGCATCGTCGGTGCCGCCGGCGAAGCTGCATCCAATCATCAAGAAATCCCAAGCTCCCGAATAAGTTAGMDEKSHKNTPLIGIDIGGTGIKGGIVDLMEGRLLGEPFCVPTPRPATPGAVAESVMLVVSELSARPGAPAPGSPVGVTFPGIIQHGVVRSAANVDKSWLNTNMNALLAARLGRPVEVINDADAAGLAEARYGAGAGVAGTVLVITLGTGIGSAFISDGKLVPNTELGHLEIGGHHAESNASAVARERAGLSWNEYSLLLQRYFSHIEFLFSPELVIVGGGISQRAHDYLPNLKLRTPIVPAVLRNEAGIVGAAGEAASNHQEIPSSRISPGPT0017750_226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017750-ppgK-K00886NANA
D1-29_041391077mftDCOG1304Putative mycofactocin system heme/flavin oxidoreductase MftDATGCCGCGGGTGGCGCGTGAGACGCCGGAAGAGCAACCGCTGGTGCGTGAGTTGGAGACCACCTCCCTCGGCATGAAGTTGTCCATGCCGGTGATGGTCGGCCCTGCGGGGGCTCAAGCCATCAGCCCGGAGGCCGAGGTTGCCGTCGCCCAGGCGGCCCGCGAGGCGGGCACTGCCATCGGGCTGAGTTCTTTCGCCACCAAGCCCATGGAGGAGGTCGCTGCAGCCAACGCCAACTGGCTCTACCAGCTTTATTGGACAGGCACCCGCGACGACATCCTGTACCGGATCGAGCGCGCCAAGAAGGCCGGCGCCAAAGCACTGATCGTCACCCTCGACGCCACAGGAGGTGGGTTGGGACGCCGGGACTGGGGCAGCCCGCCGATCCCCTCTCAGATCGACTTGCAGGCGGTCTTGAAGTTCGCGCCCATGGCACTTTCCCGTCCCCAATGGCTGGCAAAGTACTTGGCCAACGGTCAGATCCCGAACCTCACCGTCCCTAACTCGGCCAACGGTCCAGGCAACGCCCCGATGTTCGGGCAGGTCTACGCCGAACTGATGTCCACGCCGGTGCCGACCTGGAATGATGTTCGTTGGCTCCGTGAGCAGTGGGATGGCCCTTTCGTGGTCAAGGGTCTCTACCGCGGTGAGGAAGCCAAGCGCGCTGTAGACATCGGAGCAGACGCGATCGTGGTCTCCAACCACGGCGGTAACAACCTGGACAGCACCTATCCCAGCATCCGCGTCCTGCCTGCTGTCGCACGTGCGGTCAACGGCCAGGCAGAGGTCTGGTTCGACGGTGGGATCCGACGTGGAATGGATGTCGCCAAGGCCCTGGCCCTAGGGGCGGACTTTGTCCTCCTCGGACGGTTGTGGATTTTCGGGCTCGCTGCAGGAGGGCAGCAAGGCGTCGAAGACATGCTGAACATGGTCCGAGACGGTCTCCACTGGTCGCTGGTCGGACTCGGGCACAGGTCCTTCAAGGACCTGAACGAAGACGATATCGCCGCACCCGACGACTTCTTCTTCGACCCTGACACCAAGTCAAGGCTGGACAGCCTGGAACTTCGCATCTAAMPRVARETPEEQPLVRELETTSLGMKLSMPVMVGPAGAQAISPEAEVAVAQAAREAGTAIGLSSFATKPMEEVAAANANWLYQLYWTGTRDDILYRIERAKKAGAKALIVTLDATGGGLGRRDWGSPPIPSQIDLQAVLKFAPMALSRPQWLAKYLANGQIPNLTVPNSANGPGNAPMFGQVYAELMSTPVPTWNDVRWLREQWDGPFVVKGLYRGEEAKRAVDIGADAIVVSNHGGNNLDSTYPSIRVLPAVARAVNGQAEVWFDGGIRRGMDVAKALALGADFVLLGRLWIFGLAAGGQQGVEDMLNMVRDGLHWSLVGLGHRSFKDLNEDDIAAPDDFFFDPDTKSRLDSLELRIPGPT0001765_702DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0001765-lldD-K00101NANA
D1-29_04140231hypothetical proteinATGGAAACAATCACAGCTCCAACTCCCCTGATCGAGTGGATGGACGGCTACGCATCGCGTCCGCCCGGTGGCCGGTACCCGGGCAAGTGCAGGCACCCACAAAGTACCCACCGTATTGCCGCTACGGGTACCAGTGACGACAGGTTCTCTCTGCGGGAATGCGCCCTCTGCGGAAGCCGGGCATGGTTCAGCCGCAAGAGCAATCGACGTACAGATTGGATACAGGAGTGAMETITAPTPLIEWMDGYASRPPGGRYPGKCRHPQSTHRIAATGTSDDRFSLRECALCGSRAWFSRKSNRRTDWIQENANANANANA
D1-29_04141360hypothetical proteinGTGCGGGTAGACATCAAAGAGAGCCTCGTCTTTACCGGTGAGGACTCCCCCATGGCCAGCCTCATGCTCTCCGTCATGGGGGCCTTCGCCGAATTCGAGCGCTCCCTCATCCGGGAGCGTCAGAGGGAAGGCATCGCCCTGGCCAAGCAGCGCGGCGCCTACAAAGGGCGGAAAAAGACCCTCACTCCGGAGCGGGCCGCCGAACTGGTTAGCGCGCCGGCAGCGGTGTCCCGAAAGCCCTCCTTGCCCGGGGCTACGGGATCAGCAGGGAGACCGTCTACCAGTACCTCCGCCACGCCAACCTGGGGTGAACCTATCCCCTGCCTGCGCTCGATATGCCATATCCGGACCTCGTCCTAGMRVDIKESLVFTGEDSPMASLMLSVMGAFAEFERSLIRERQREGIALAKQRGAYKGRKKTLTPERAAELVSAPAAVSRKPSLPGATGSAGRPSTSTSATPTWGEPIPCLRSICHIRTSSNANANANANA
D1-29_041421044yhcG_2COG4804Putative nuclease YhcGATGGTCTCTTCAGAAATCGAACTGCCGGCGGACTATGCGGAGCTGCTGGAAGCTCTGAAGACCGGGATCGCCGGTGCGCGAATCCAAGCGCAGCGAACCGTCAACACCATGGTAATCGAGCTTTACTGGTCATTGGGTAAGGACATTATCGCCCGCCAGGCGAGCCAGGGCTGGGGGACTGGAGTCATCAGGCGGCTTGCCGCCGATCTCGCGATTTCCTTTCCCGATATGAAGGGTCTGTCGTACCGGAATCTGCAGTACATGACCGCGATGGTCCGCGCCTGGGACACGGCTGAACATGTGCCACAGCTTGTGGCACATTTGCCGTGGGGTCACATCCGTACGATTTGGGACAAGGCAGCCACCGGCGAGGAGCGGGACTGGTATGCGGCCGCGGCCGTTCAGTACGGCTGGTCCCGAAACGTACTGCTGAACATGATGATGAATCATTCAATGGAACGCACCGGCGCGGCGCCATCAAACTTCACCCGCCAGCTCGCGGCTCCGGAGTCCGAACTTGCCCAGCAAATGGCAAAGGACCCTTACAACTTCGCGTTCCTCGGCCTGTCGGGTGAGAGCGCCGAACGCGACCTGGAGAACGCGCTGACGAGTCGCATCACCGAAACCCTCCGCGAGCTGGGTCCAGGCTTTTCGTTCGTGGGCCGCCAGGTACACTTCGACGTCGATGGTGATGACTACTACGTCGACCTGCTGTTCTTCCACATCGAGCAACTTCGGTACGTGGTCATCGAACTTAAGACAGGCAAGTTCCAGCCTGAATACGCAGGAAAGCTCAACTTCTATGTTGCCCTCGTCGATGACATGCTCCGCCGGGATTACCACAACGAAACGGTCGGCATCTTGATTTGCGGGACCAAGAACGACCGCAGCGTCCGCTACAGCCTCGGCCGGTCAACATCGCCCATGGCCGTCGCAGCCTACACCTATGACAAGCTTCCTCCAGCGGAACAGCAGGCCCTGCCCAACGAGGGACACCTCGTCGCGGCTCTCGAATGGGCCGAACCGGACACCGCAGAAGGATAGMVSSEIELPADYAELLEALKTGIAGARIQAQRTVNTMVIELYWSLGKDIIARQASQGWGTGVIRRLAADLAISFPDMKGLSYRNLQYMTAMVRAWDTAEHVPQLVAHLPWGHIRTIWDKAATGEERDWYAAAAVQYGWSRNVLLNMMMNHSMERTGAAPSNFTRQLAAPESELAQQMAKDPYNFAFLGLSGESAERDLENALTSRITETLRELGPGFSFVGRQVHFDVDGDDYYVDLLFFHIEQLRYVVIELKTGKFQPEYAGKLNFYVALVDDMLRRDYHNETVGILICGTKNDRSVRYSLGRSTSPMAVAAYTYDKLPPAEQQALPNEGHLVAALEWAEPDTAEGNANANANANA
D1-29_04143834kdgR_4Pectin degradation repressor protein KdgRATGGCATTTATGCGCGATGTTGACCCAATGACGGACGGCGGGCAGTCCGCTTCCGAACTACAGGGGGGCGGCCTTCAATCAGTTGATCGTGCCATTGCAGTTCTGAGGATCCTGGCGCGAACCGGCAGTGCTGGCGTCACGGAAGTCGCCGAGGAAATGGGAGTCCATAAGTCTACCATTTCCCGGCTTCTCAGAGCGCTGGAAGCACAAGGTATGGCCCAGAGCAGCGGGCGGGGGAAGTACCAGCTCGGACTGGGCATCCTTCACTTGGCTAATGCCATACCGATGCGGCTGGACCTGACAAGGGAGGCCCGGCCTGTCCTTGAAGCCCTCGCCGCAAAATTCGGGGAAACTGTCAACCTTGCCGTTATGAGCTCGGACCACGTCGTGAACATCGATGAAGCCTTCGGTCCCTCAACGCTAGCTGCAACGCAAAACTGGATGGGCCGCTTGACCCCCATTCACGCTACGTCGAGCGGAAAAGTCTTCCTGGCATCACTCTCCACCGCACAGCGCAGCCGCATCTTGAAGGATTTGGGTATGCCCGAGGTGACAAAGCAGACCATCACCTCGCGGGAGGAACTGGAGGAGCAACTTTTGACAGTGGCGAACCGCGGATACGCCACAGTGCGCGGAGAACTCGAAGACGGACTCAATGGTATCGCCGCCCCGATCCGTGGCCACGAGGGAACCGTCATTGGGGCCGTCAGCATCGCGGGCCCGTCCTTCAGATTTGACCCCGAAGAGGTGCCCGGACTGATCGAAGAGCTCAAATCGGCCAGCCGAAAAATCAGCGAAAACATGGGATACGGACCCGTACAAGTCCATCATTGAMAFMRDVDPMTDGGQSASELQGGGLQSVDRAIAVLRILARTGSAGVTEVAEEMGVHKSTISRLLRALEAQGMAQSSGRGKYQLGLGILHLANAIPMRLDLTREARPVLEALAAKFGETVNLAVMSSDHVVNIDEAFGPSTLAATQNWMGRLTPIHATSSGKVFLASLSTAQRSRILKDLGMPEVTKQTITSREELEEQLLTVANRGYATVRGELEDGLNGIAAPIRGHEGTVIGAVSIAGPSFRFDPEEVPGLIEELKSASRKISENMGYGPVQVHHPGPT0018213_961DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
D1-29_041442067lcoPCOG1292Betaine/ectoine transporter LcoPATGGCTAAAGACGTATCGTCCACTCACAGAAGGAACAGCGACGAAGCGAAAAACGCCGCCCGCAAGGCCGGCAAGCCCATAGGCAGCCTGGATTACATCCGGCCGCGGTACCCCCACAACATTCACCCGGCGTTAGTGCCTGGTATCAGCGTCGATGAACAGCGCCGGAATTACAGTCTGGACAAGGTCGTCCTTGCTGTGGCTGGTACCTTGACCGTGGCATTCGTCGTCTGGGGCATCATCAGCCCATCCAGCGTTTCCGAGGTGGCAAGCGCGGCATTCTCCTGGACCACCACCAACCTGGGCTGGCTCTTCAACGGCGTCGCCACCGTCGTGCTGGTGGCTCTGCTGTGGTTGGCTCTCAGCCGATACGGGAAGATTCCGCTCGGGAAGGACGGTGAGAGCCCCGAATTCTCCACGTTTTCCTGGGTGGCGATGCTCTTCGCCGCCGGTCTCGGCATCGGAGTGCTGTTCTGGGGTCCCGCCGAGCCGCTGACCCACTACCTGAAGCCGCCACCGCGAACGGTCGAGGCCGAATCAGTCGAAGCCATGCATCAGGCACTGGCCCAAACGTACTACCACTGGGGATTTCACGCCTGGGCCATGTATGCCCTGGTGGGCGGTGCGGTCGCCTACGTGGGATACCGGCGCGGACGCGCACTGTTGATGTCCTCGATATTCCGACACCTCTTCGGACAAAGGCAGACTGACGGATTCGCTGGAAAACTGGTGGACATCTTCGCCATCATCGCCACCCTGTTCGGCACGGCTGCAGCCTTAGGGATCGCCGCACTCCAGATCGGCCAAGGCGTCATCATCGTTTCGGGTGTCTCTGAACTGACGAATGCTGTCCTCGTCGGTATCATCGGCGTGCTGACGATCGCCTTTATCCTCTCTGCCGTTTCCGGCGTCGCCAGAGGCATCCGCTATCTCTCGAATATCAACATCATTCTCACTTTGGGCATCGTCGGAGTGGTGTTCATCCTAGGGCCGACGCTGTTCCTGCTGAATATGCTGCCATCGGCGATCATGGAGTATATCGGATCACTGTTCGATCTCATGGCACGTTCTGCTTCCTGGGGAGAAGACACACAGCAGTTCCAATCCACGTGGACTGTCTATTACTGGGCCTGGTGGATCTCCTGGTCACCGTTCGTCGGCATCTTCATCGCTCGCATTTCCCGCGGCAGGACCATCAGGCAATTCATCCTTGGTGTGATCTTCATTCCATCCGCGCTGCTTTTTGTCGCGTACGGAACCATGGGGGCAACTGCAATCTGGATGCATCGCGAGGGGAGTCCGGGGTTCCACGATTCGATGGCTGCTCCCGAAGTGCTATTCACCTTGGTGGACAATCTTCCCTTCGCGGAATGGCTTCCTCTGGTAATCATGGTGGTGCTGGCGATCTTCTTCATCACCTCTGCCGACTCCGCCTCAATGGTTATGGGTATTCTCACCACACGCGGCAGTCAGGATCCTCCCAAACTCGTGGTGGTTTTCTGGGGCCTGGTCATGTCCGGGATCGCCGTGGTCATGTTGTTGATCGGGAACGCGTCCGCTCTTGCAGGGCTGCAATCACTAGTGATTGTCACGGCTGTGCCGTTCGCCATCGTGATGTTCCTGATCATCTTTGCCTGGTTCCGGGAGCTGAGATCAGACCCGTATATCTTGCGGGCCCGATATGCCGAGATCGCAGTGAGCAACGCCGTATTAGAAGGCGTCCACAAGTACGGAGACGACTTCGGCCTCGAGGTGGTAGAGACCGAGCCAGGGCGCGGAGCCGGTGCCGAAACCGATTCGGAGCATGAGGACTACACGGAGTGGTATCAGCGCACCAATGCAGAGGGGGAGCCGGTGGGTTTTGACTACGAAACCGGTAAATGGGCCGACGGCTGGGACCCTGAGACCGGCCAAATCGGCACCGTACCCACGCAGGAGACCGAGGACGCAGAAACGGGTGAAGACGAGGAATCCATGAATGAGGGCATCCGTTCTCATGACGATTCCTCGCAGCCGGTGTCCTCGCTCCCGCCAGGTGGTGCCCGGGCAACGACGGCCGGACTATAAMAKDVSSTHRRNSDEAKNAARKAGKPIGSLDYIRPRYPHNIHPALVPGISVDEQRRNYSLDKVVLAVAGTLTVAFVVWGIISPSSVSEVASAAFSWTTTNLGWLFNGVATVVLVALLWLALSRYGKIPLGKDGESPEFSTFSWVAMLFAAGLGIGVLFWGPAEPLTHYLKPPPRTVEAESVEAMHQALAQTYYHWGFHAWAMYALVGGAVAYVGYRRGRALLMSSIFRHLFGQRQTDGFAGKLVDIFAIIATLFGTAAALGIAALQIGQGVIIVSGVSELTNAVLVGIIGVLTIAFILSAVSGVARGIRYLSNINIILTLGIVGVVFILGPTLFLLNMLPSAIMEYIGSLFDLMARSASWGEDTQQFQSTWTVYYWAWWISWSPFVGIFIARISRGRTIRQFILGVIFIPSALLFVAYGTMGATAIWMHREGSPGFHDSMAAPEVLFTLVDNLPFAEWLPLVIMVVLAIFFITSADSASMVMGILTTRGSQDPPKLVVVFWGLVMSGIAVVMLLIGNASALAGLQSLVIVTAVPFAIVMFLIIFAWFRELRSDPYILRARYAEIAVSNAVLEGVHKYGDDFGLEVVETEPGRGAGAETDSEHEDYTEWYQRTNAEGEPVGFDYETGKWADGWDPETGQIGTVPTQETEDAETGEDEESMNEGIRSHDDSSQPVSSLPPGGARATTAGLPGPT0013600_7DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
D1-29_041452358hypothetical proteinATGAATGAAATCAGAGACATTCTTCCCATCCCGGCAGGGAGAAGCCAGCCGGTAACGGCAGCCATGGGAATTCATCAACAGGAGGCACCCTTCACCCCTGTTGCCCCGCTTCGGGCCCCGGAGGGCGCTCCGAACGTGGTGGTGGTCCTCATCGATGACATGGGCTTTGGCGCCTCGAGTGCGTACGGTGGGCCCTGTGAGATGCCGACCGCGGAAAAGCTGTCTGAAGAAGGCCTTCGTTACAGCCGCTTCCACGTCACAGCTCTATGCTCACCCACCCGCCAGGCGCTGATGACGGGCCGGAATCACCATTCAGTGGGCATGGGCGTGACCACCGAAATGAGCACATCCGCCCCCGGTTACACGGGATTCCGCCCGGATAGTGCGGCAACCATTGCCCAGACCCTGAGCATGAATGGCTACAGCACCGCCGCGTTCGGCAAATGGCACCAGACCCCGCCCCGTGAAGTCAGCCCGTCGGGGCCGTTTGACCGGTGGCCCATTGGCGAGGGCTTCGATAAGTTCTACGGCTTCATGGGCGCCGAGATGAACCACTGGTACCCTCAGCTCTTCGACGGCACCACCCCCGTCGAGCCGACACGCCGGCCAGAAGACGGCTACCACCTCTCGGAAGACCTCGTTGACCAGGCCATCAACTGGGTCCAGACCCAGAAAACCCTCACGCCCGAAAAGCCGTTCTTCAGCTACATAGCCTTTGGCGCCACCCACGGACCCTTCCACGTCGCCCCTGAATGGAAGGACAAGTACCGCGGCCGCTTCGACTGTGGCTGGGACGACCAACGCGAAGCAACCCTGGCCAGGCAGAAAGAACTGGGCGTCGTCCCCGAATCCGCCGAGCTGAGCCCGTGGGCCGACGTCGTGCCGCACTGGGATGAACTAGGCGACACCGAGCACCAGGTAGCCGCCGCCTTCATGGAAACCTACGCCGGATTCGCCGAACACACGGACGCCCAGGTGGGCCGCTTCGTTGATGCCCTGGACGAACTGGGCGAACTGGACAACACCCTCTTCATCTACATCCTCGGTGACAACGGCGCTTCCGGCGAAGGCGGCATCGAAGGCACAATGCGCGAGCATCTGGTAGGCCACGGCTTCAAAGACAGCACGGAGGCCATGGCCCGGGAAATCGACGCCCTCGGCGACGCGAGCACATATGGCATCTACCCTGTCGGGTGGGCCCTGGCCATGAACACGCCGTATCAGTGGACCAAACAGGTCGCTTCCCACCTTGGCGGCACCCGCGACGGCATGATCATGCGCTGGGGCAACGGCATGCGGCAAGGCGGCGGCGGCGTGCGGAACCAGTACCACCACGTCATCGACATCGCCCCAACCATCTTCGAAGCAGCCGGCATCCCCCATCCCGTCACGGTTAACGGGGTGACCCAGCAGCCCATCGAGGGCACCAGCATGGTCTACACCTTCAACGCTCCCGACGCCGAAGACCGCAGGCGCACCCAGTACTTCGAAATGTGCGGCAACCGCAGCATCTACCACGAAGGCTGGACGGCAGTCACCCGCCACGGCACCCCATGGGAAATGGTCCCGGAAGGGCTGCCCTCCTTCGACCAGGACGTATGGGAGCTCTACGACATCCGGAACGACTGGAGCCAGGCCCACAACCTCGCCCACAAGCATCCGGAAAAGCTACGGGAACTCCAGCAGCTCTTCCTGATCGAGGCCAGCAAATACAACGTCTTCCCCCTTGATGACCGGGTCACGGAGCGGGAAAACCCCGAAGTCGCCGGACGGATCGACCTGCTGGGCCACCGGACATCGGTGACCTACCGTGCCGGCATGGGCCGCTTCACCGAAGAAACGACCCTGAACGTGAAGAACAGGTCCCACAGCGTCACCGCCCGGGTTGATGTCCCCGACGGCGGCGCCGAAGGTGTCCTGATAGCCCAAGGCGGCCGCTTCGGCGGCTGGTCCCTCTACGTGGCGGACGGACACCTCAGCTACGCCCACAACTGCTACGGCCGGGACCTCTACATCGTCTGCTCCGACGAGCGCCTCGTGCCGGGAACCCAGGAAGTCACCCTGGAATTCCAGTACGACGGCGGCGGCATCGGCAACGGCGCGGACATCCGCCTCGCCGCTGACGGCAAGATCATCGGCAAAGGCAGGGTAGACCAAACCACCGCCTATTACTTCTCCTTCGATGAGACGCTCAACATCGGTATCGACCGCGGCACCCCAGTCACCGACGATTACCTCCCGGTTGACAACGGGTTCACCGGCACGATCCACACCGTGCGGATCGACTTGCACGACGACGGGCACGACCAGCACCTCACTGCTGCAGACCGTCAGCGCATGGCACTGGCCCACCAGTAAMNEIRDILPIPAGRSQPVTAAMGIHQQEAPFTPVAPLRAPEGAPNVVVVLIDDMGFGASSAYGGPCEMPTAEKLSEEGLRYSRFHVTALCSPTRQALMTGRNHHSVGMGVTTEMSTSAPGYTGFRPDSAATIAQTLSMNGYSTAAFGKWHQTPPREVSPSGPFDRWPIGEGFDKFYGFMGAEMNHWYPQLFDGTTPVEPTRRPEDGYHLSEDLVDQAINWVQTQKTLTPEKPFFSYIAFGATHGPFHVAPEWKDKYRGRFDCGWDDQREATLARQKELGVVPESAELSPWADVVPHWDELGDTEHQVAAAFMETYAGFAEHTDAQVGRFVDALDELGELDNTLFIYILGDNGASGEGGIEGTMREHLVGHGFKDSTEAMAREIDALGDASTYGIYPVGWALAMNTPYQWTKQVASHLGGTRDGMIMRWGNGMRQGGGGVRNQYHHVIDIAPTIFEAAGIPHPVTVNGVTQQPIEGTSMVYTFNAPDAEDRRRTQYFEMCGNRSIYHEGWTAVTRHGTPWEMVPEGLPSFDQDVWELYDIRNDWSQAHNLAHKHPEKLRELQQLFLIEASKYNVFPLDDRVTERENPEVAGRIDLLGHRTSVTYRAGMGRFTEETTLNVKNRSHSVTARVDVPDGGAEGVLIAQGGRFGGWSLYVADGHLSYAHNCYGRDLYIVCSDERLVPGTQEVTLEFQYDGGGIGNGADIRLAADGKIIGKGRVDQTTAYYFSFDETLNIGIDRGTPVTDDYLPVDNGFTGTIHTVRIDLHDDGHDQHLTAADRQRMALAHQNANANANANA
D1-29_041461545gbsA_2COG1012Betaine aldehyde dehydrogenaseATGTCCGGAATGTATCTCGGCGAGAAGTCGGCACACGCCGGCGCTGAGCCCTTAGCAGCCGAAGGAACCCCCGCCGGAGCCGAAACCCTGTTCATCGGCGGCCGATGGGTCGCGCCCCAGTCAGGAGAGACCCGGACGATTAGCTGTCCGGCAGACGGGTCTGTCGTCGGGCTCGTTGCTGAGGCCGGGGAAGCCGACACCGTGTCCGCGATCGGAGCGGCCAAAACAGCTCATGACGAGGGCCGCTGGTCCTCGGTGCCCGAGCCTGAACGCGGAGACCTTCTCCTGGCCGTGGCACGCCGCCTGCGGGAGCGAAGGGACGAATTCGCCCGGGCGGAGTCCCTGGACACGGGAAAACGTCTGGTGGAATCAGAGATTGACATGGAGGACGTGGCCGCCTGCTTCACCTACTTTGGGAAGCTCGCAGGCCAGCAGGCGGGACGGGTGGTCGATGCCGGCAATCCCGCCGTCGTCAGCAAAATCGTCCACGAGCCGGTCGGAGTGTGCGGTCTGATCACGCCCTGGAACTATCCACTGCTGCAGGCAGCCTGGAAGGTCGCGCCGGCCTTGGCTGCCGGGAACACCTTCATCCTCAAGCCGGCAGAACTCACACCGCACACAGCGATACTGCTGATGCAGGTCCTGGACGAGGTGGGCCTGCCGCCGGGAGTGGCGAACCTCGTCCTCGGGCCAGGCGCCGTCGTCGGAGCACCCCTGGCAAGCCACCCGGACGTTGACCTGATTTCGTTCACGGGCGGCCTGACCACCGGAAAGACGATCGCTATCCAAGCGGCAGACACCGTCAAGAAGGTAGCGCTGGAGCTGGGAGGAAAGAACCCCAACGTCATCTTCGCGGACGCCGACTTCGATGCCGCCGTCGACAACGCCCTCAACGCGGCTTTTGTGCATTCAGGACAGGTCTGCTCCGCCGGCGCCCGCCTGATCGTGGAGGAATCCATAGCAGAGGCTTTCGTGGACGAGTTGGTGCGCCGCGCCCAGAACATCCGCCTCGGCGGACCCTTCGACTCCGATGTTGACGCCGGACCGCTGATCTCGGCGGCCCACCGCGACAAGGTCACAGCATATGTGGAAGCCGGTCTGGCGGAGGGTGCCCGCCTGCGTTGCGGAGGACGATGGGGAACAGATCAACTGGCCGACGGCTACTACTACCTCCCCACGGTCCTTGACAACGTTCACAGTGGAATGTCGGTACTCACCGAAGAGGCCTTCGGCCCCGTCGTTACCGTCGAAACCTTCAACGGCGAGGACGAAGCTGTGGCCCTGGGCAACGACACGATTTACGGCCTGGCCGGCGCGGTCTGGAGCCAGGACGCCGGACGGTCCCAACGGATGGCCGCCCGGTTGCGGCACGGCACGATCTGGATCAATGACTTCCACCCCTACCTGCCCCAGGCCGAATGGGGCGGCATGAAGCAGTCCGGAAGCGGCCGCGAACTTGGCCCCACCGGTATGGCCGAGTACCAGGAAATCAAGCACGTCTACCAAAACCTCCGCCCCGCCGTCACCGGCTGGTTTCCCCAGTAAMSGMYLGEKSAHAGAEPLAAEGTPAGAETLFIGGRWVAPQSGETRTISCPADGSVVGLVAEAGEADTVSAIGAAKTAHDEGRWSSVPEPERGDLLLAVARRLRERRDEFARAESLDTGKRLVESEIDMEDVAACFTYFGKLAGQQAGRVVDAGNPAVVSKIVHEPVGVCGLITPWNYPLLQAAWKVAPALAAGNTFILKPAELTPHTAILLMQVLDEVGLPPGVANLVLGPGAVVGAPLASHPDVDLISFTGGLTTGKTIAIQAADTVKKVALELGGKNPNVIFADADFDAAVDNALNAAFVHSGQVCSAGARLIVEESIAEAFVDELVRRAQNIRLGGPFDSDVDAGPLISAAHRDKVTAYVEAGLAEGARLRCGGRWGTDQLADGYYYLPTVLDNVHSGMSVLTEEAFGPVVTVETFNGEDEAVALGNDTIYGLAGAVWSQDAGRSQRMAARLRHGTIWINDFHPYLPQAEWGGMKQSGSGRELGPTGMAEYQEIKHVYQNLRPAVTGWFPQPGPT0007165_665DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-29_041471665codACholine oxidaseATGGCAGGGCATGACGCACAGGTTCCCATGGCACAACCCGGAAAGGAAAGTATGTTGAACGGGCCGCACGAGCAGAATTTTGACTATGTAGTGGTGGGTGCGGGGTCGGCCGGCGCCGTGGTCGCAGCCCGCCTTAGCGAGGATCCCTCGGTGCGGGTAGCACTGATCGAGGCCGGTCCCCGGGATGAAGGCATCGACGAAGTCCTCACCCTGAACCGGTGGATGGAACTGCTGGAATCCGGCTACGACTGGGACTACCCCGTCGAAGAACAGGAGAACGGGAACTCGTTCATGCGGATGGCCCGCGCCAAGGTACTGGGCGGGTGCTCCTCCCACAATTCCTGCATCGCGTTCTGGGCCCCGGCAGAGGACATCGACGAATGGGAATCGAAGTTCGGCGCCACAGGCTGGAACGCCGGGACGGCCTTCCGGATCTACCGCAAGATCGAAAACAACGCCGACGACGGCGAGCACCACGGCCACGACGGCCCCGTAAGGCTTCGCAATGTACCCGCGGCAGATCCCTGCGGCGTGGCCCTGCTTGACGCAGCCGAGGCAGCCGGAATTCCCCGTGCCAAATTCAACGCGGGCAAAACCATCACCCAGGGCGCGAACTTCCTCCAAATCAACGCCACCGAGGACGGAAAGCGGGCATCCTCCTCGGTGTCCTACCTGCACCCCGCCGCGGACCGCGAAAACCTCGTCATCCTTGACTCCACCCACGCCACCCGGTTGGTCTTCGATGACAACAAACGCTGCATCGGCGTCGAAGTCGTTGATAACGCCTTCAGCGCCCCCACGATAGTCAGGGCCTCCCGCGAAGTAATCGTCTCCGCCGGAGCCATCGATTCGCCCAAACTGTTGATGCTCTCAGGGATCGGTCCCGCTGAACACCTGGCCAAGATGGGCGTGGATGTACTCGTTGACGCCCCCGGGGTCGGCGCCAATCTTCAGGACCACCCGGAGGCCGTCATCCAATGGCAGGCCAAGAAGCCGATGGTCACCGAATCGACCCAGTGGTGGGAAATCGGAGTTTTTGCCCAAATCGACGAAGGCCTCGACCGGCCCGACCTCATGATGCACTACGGCACCGTCAATTTCGACATGCACACCTTCCGGCAGGGCTACCCCACAGCCGACAACGTGTTCTGCCTGACTCCGAACATCACGCACGCCCGTTCCAGGGGAACCGTGCGTCTCCGCTCACGGGACTACCGGGACAAGCCGCGGGTGGATCCCCGCTACTTCACCGACCTGGAAGGATACGACCTGCGGATCATGACGGCGGGCCTGCGCAAGGCACGGGAGATCGTGGCACAGACCCCGCTGGCAGAGTGGGCCGGTGAAGAGCTCTTCCCCGGAGCAGACGTCCAAACCGATGAGCAGATCCAGGACTACATCCGGCGCACACACAACACCGTCTACCACCCCGCCGGTACAGTCCGCATGGGCGCGATCGACGACGCCGTGTCGCCGCTGGACCCCGAACTCAGGGTCAAAGGAGTCACAGGCCTGCGCGTCGCGGACGCCTCAGTAATGCCTGAACTCGTCACGGTGAACCCCAACCTCACCGTCTATATGATCGGGGAGCGTGCAGCTGAACTGATCGCGGGGGAATTTAAGACGGCGGCGGCGATTGAAGAAGATGTCCCCGCAACCCTCTGAMAGHDAQVPMAQPGKESMLNGPHEQNFDYVVVGAGSAGAVVAARLSEDPSVRVALIEAGPRDEGIDEVLTLNRWMELLESGYDWDYPVEEQENGNSFMRMARAKVLGGCSSHNSCIAFWAPAEDIDEWESKFGATGWNAGTAFRIYRKIENNADDGEHHGHDGPVRLRNVPAADPCGVALLDAAEAAGIPRAKFNAGKTITQGANFLQINATEDGKRASSSVSYLHPAADRENLVILDSTHATRLVFDDNKRCIGVEVVDNAFSAPTIVRASREVIVSAGAIDSPKLLMLSGIGPAEHLAKMGVDVLVDAPGVGANLQDHPEAVIQWQAKKPMVTESTQWWEIGVFAQIDEGLDRPDLMMHYGTVNFDMHTFRQGYPTADNVFCLTPNITHARSRGTVRLRSRDYRDKPRVDPRYFTDLEGYDLRIMTAGLRKAREIVAQTPLAEWAGEELFPGADVQTDEQIQDYIRRTHNTVYHPAGTVRMGAIDDAVSPLDPELRVKGVTGLRVADASVMPELVTVNPNLTVYMIGERAAELIAGEFKTAAAIEEDVPATLPGPT0013605_39DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013605-codA-K17755NANA
D1-29_041481026COG1262Formylglycine-generating enzymeATGAACCTGCCAATTGCTGATGCCACACACGACTCATCTGGTGGCGGACCCCTCATCCCCGGCCAGACGAAGGGATGTTGTGCGCCGTCCCGTGAAGCGCGTCTGCCTGAGATCGCCAACGAGGGGCCGGCCCACTACACGGGACTGACGGGGCAGGAATCCCACCACAGCATTGACATCCCCCAGGGGATATTCAGCATGGGCGATGCATTTGGGGAAGGCTACCCAGCAGACGGGGAGACGCCTGTCCATCAGGTCGAACTGGACGCTTTCCGCATCGACGCCACGGCCGTCACCAACAGCATGTTCGCTGCCTTCATCCAGGCCACTGGGTACCGCACCGAGGCCGAGCAGTACGGATCCTCCGCAGTGTTCCATCTGCTTTCCACCGCCACCGGTCGGGACATCTTCGGAGCCGCTGCCGGAGCCCCCTGGTGGCTGAACATCCGGGGCACCGACTGGGCACACCCCACCGGCCCGGGTTCAAACTGGCAGGACATCCCGGACCACCCTGCAGTGCATGTCTCCCATCACGACGCCCTGGCCTACTGCACCTGGGCCGGCCGTCGTCTGCCCACCGAGGCAGAGTGGGAATATGCCGCACGGGGTGGCCTGGAGGGCCTGCGCTACGCCTGGGGCAACGAGCTCACCCCGGACGGGGAACACCGCTGCAACATCTGGCAAGGCACCTTCCCGGCAACCAACACCAGCGAAGACGGACACGCCGGCACCGCCCCCGTCCGCTCCTTCCCGCCCAACGGGTACGGCCTCTATGAAATGGCAGGCAACGTCTGGGAATGGTGCGCCGACTGGTTCCTGCCCAAGTACTACCGCAACTCCCCCACCCATAACCCGCAAGGACCAACCATCGGCGCGGGACGCGTCATGCGTGGCGGCTCGTACCTCTGCCACGACTCCTATTGCAACCGTTACCGCGTAGCAGCCCGCACCGCCAACACGCCCGAATCATCCTCCGGCAATTTGGGCTTTCGCACTGTAGCGCTAGGACTGGACAGGCAGCGTTGAMNLPIADATHDSSGGGPLIPGQTKGCCAPSREARLPEIANEGPAHYTGLTGQESHHSIDIPQGIFSMGDAFGEGYPADGETPVHQVELDAFRIDATAVTNSMFAAFIQATGYRTEAEQYGSSAVFHLLSTATGRDIFGAAAGAPWWLNIRGTDWAHPTGPGSNWQDIPDHPAVHVSHHDALAYCTWAGRRLPTEAEWEYAARGGLEGLRYAWGNELTPDGEHRCNIWQGTFPATNTSEDGHAGTAPVRSFPPNGYGLYEMAGNVWEWCADWFLPKYYRNSPTHNPQGPTIGAGRVMRGGSYLCHDSYCNRYRVAARTANTPESSSGNLGFRTVALGLDRQRNANANANANA
D1-29_04149318hypothetical proteinGTGGACATCATTGCTGAAATATCCGGCTGGCTAGGGGCACTGGGAGTCCTCGTTGCCTACCTGCTCTTCTCGATTGGCCGTATCCCCAATGGCAGGCTTTTCCAAACCGCTAATCTATTTGGATCCGCCGCGCTCCTTGTCAACGGTTTTCATCATGGAGCCTGGCCATCGGTCAGCACGAATATCGTCTGGTGTGCGATTGCGGCATGGGCTCTGGTCCGTCTCAAGCAGTTGGCAGTGCAGCCGAACTTAACCGAACTCAACCCCCATCTGGACAAGGACGAGCTTTTACCCCGGCCTGGGCCGAGCGACGTCTAAMDIIAEISGWLGALGVLVAYLLFSIGRIPNGRLFQTANLFGSAALLVNGFHHGAWPSVSTNIVWCAIAAWALVRLKQLAVQPNLTELNPHLDKDELLPRPGPSDVNANANANANA
D1-29_041503651metHCOG0646Methionine synthaseATGCCTCGTTTTGCGCTTGATATAGAATCCGTGCCCCGCCCCGCCCGTTCGCAGGAGCTGCTGGACGCCGTGAACCACCGAGTCGTCATTGCCGACGGCGCGATGGGCACCATGCTGCAGGGCCGCGAACTCTCGCTCGAGGAGGACTTCCTGGGGCTCGAAGGCTGCAACGAGATCCTCAACCACACCCGGCCGGACGTCCTCGCAGACATCCATGACGCGTACTTCGCCACAGGCATCGACGCCGTCGAAACCAACACCTTCGGCGCCAACTGGTCCAACCTCTCCGACTACGGCATCGACGACCGGATCGAAGAGCTCGCCCGGAAGGGCGCAGAGATCGCCCGCGACCGCGCCGAAGCGGCAGAAAAAACAGACGGACGCATGCGCTGGGTCCTGGGCTCGATGGGCCCGGGCACCAAGCTCCCCAGCCTCGGGCACACCAGCTACGACTACCTCAAGCAGACCTTCGCGCTGCAGGCCGAGGGCCTCATCGACGGGGGAGCGGACGCCTTCCTCATCGAAACCAGCCAGGACCTCCTGCAGACCAAAGCCGCGGTCAACGGCTGCAAGCAGGCCATCGTCACCCGGGGCATCCGGCTCCCCATCTTCGTCGAGGTGACCGTCGAGACCACCGGAACCATGCTGATGGGATCCGAAATCGGCGCGGCCCTCACCGCGTTGGAACCGCTCGGCGTCGACGCCATCGGCCTGAACTGCGCCACCGGGCCGGACGAGATGAGCGAGCACCTCCGCCACCTGTCCAAGCAGTCCTCCGTGGCCATCGCCTGCATGCCCAACGCCGGCCTGCCCGTGCTTGGCCCCAACGGCGCGCACTACCCGCTGTCACCCTCCGAACTCGCCACCGCGCACGAGCAGTTCGTGCGCGAATTCGGCCTGGGCCTGGTGGGCGGCTGTTGCGGTACGACGCCGGAGCACATGGCCGCCGTCGTCGAACGTCTTGCGCCCTTCCGCAACGGCGCCAGCGTTGCCAGCGGCGGGAGGGGTGCCGATGGCAGCCGCGTTCCCACCGAACGGGAAGCCGGCATCGCGTCCCTCTACCACCACGTGAACTTCGACCAGGAGCTGTCCTACCTCGCCATCGGTGAGCGCACCAACGCGAACGGTTCAAAGGCGTTCCGCCAGGCGATGCTCGAAGAGCGCTGGGACGACTGCGTCGACATTGCCCGCGAGCAGGTCCGCGTTGGCGCGCACCTGCTGGACGTGTGCATCGACTATGTGGGGCGCGACGGCGTGGCCGACATGAAGGAGATCGTCTCCCGTTTCGCGTCGGCCTCCACGCTCCCGCTGGTCATGGACTCCACCGAACCGGCCGTACTCCAGGCCGGGCTCGAACATATCGGCGGCCGCCCGGTGGTCAACTCCGTCAACTACGAGGACGGCGACGGCCCCACCAGCCGCTTCGCACGCATCATGCCGCTCGTGAAGGAACACGGCACCGCCGTGATCGCCCTGACCATCGACGAGCAGGGCCAGGCGCGCACCACCGAGGGCAAGGTGGCCATCGCCTCCCGCCTCGTGGACGCCCTGGTGGGCGAATGGGGGATGCGCGTCGAGGACATCATCGTGGACGCCCTGACCTTCCCGGTTGCCACCGGCCAGGAAGAGACCCGCCGGGACGGCATCGAAACGATCGAGGCCATCCGCCAGATCACCACGAAGTACCCCGGCATCAACACCACCCTCGGCGTCTCCAACGTGTCCTTTGGCCTGAACCCCGCAGCGCGCATGGTCCTGAACTCGGTGTTCCTGCACGAGGCAGTGCAGGCGGGCCTGACCAGCGGCATCATCGACGCCGCCAAAATTGTGCCGCTCGCGTCCCTGCCGGAGGAACAGCGCAAGGTGGCGCTGGACCTCGTCTGGGACCGCCGCGAATACGACGCCGACGGCAACACCACGTACGACCCGCTGGCCATCATGCTGGACCTGTTCGCCGGCGTCGACACCGCAGCGCTCAAGGACCAGCGCGCCGCTGAACTCGCGGCGCTGCCCACCGGTGCGCGCCTTGAGCGGCGCATCATCGACGGCGAGGGCAAGGGCCTGGAAGCGGACCTCGACCTGGCCCGCTCCGAGGGAATGACCCCGCTCGGCATCATCAACGACTACCTGCTCGAGGGCATGAAGGTGGTGGGCGAGCGCTTCGGCGCCGGCGAGATGCAGTTGCCGTTCGTGCTGCAGTCCGCCGAGGTGATGAAGAACGCCGTGGCCCTGCTAGAGCCGCACATGGAGAAGTCGGATGCGTCGGGCAAGGGCACCATGGTGATCGCCACCGTGCGCGGCGACGTGCACGACATCGGCAAGAACCTGGTGGACATCATCCTCACCAACAACGGCTACAAAGTCATCAACATCGGCATCAAGCAGGGGATCGCCGAGATCATGGCCGCAGCGGAGGAGCACAACGCCGATGTGATCGGCATGTCCGGCCTGCTGGTGAAGTCCACCGTGGTGATGAAGGAGAACCTCGCGGAGCTGCAGTCCCGTGGCCTGGCGAAGAAATGGCCCATCATCCTCGGCGGGGCAGCCCTGACCCGCGCCTACGTGGAGCAGGACCTTGCCGAGCAGTTTGATGGCGTGGTGCGCTACGCCAAGGACGCCTTCGAGGGCCTCTCACTCATGGAGCCGCTGGTCCGCGTTGCCCGCGGTGAGTCGCCGGACGACGTCGGCCTTCCGCCGCTGAAGAAGCGGATCCACAAGGGCGGGGCGAAGTTCACGGTGACCGAACCGGAGGCGATGCCCGGGCGTTCCGACGTCGTCGCCGACAACGCCGTGCCCGCGCCGCCGTTCTGGGGCACGCGCATCGTCCGCGGCGTGGCGCTGCACGACTACGCGGCCTTGCTCGACGAGCGCGCCACGTTCATGGGGCAGTGGGGGCTCAAGCCCGGCCGCGGCGACGACGGCGCCTCCTACGAGGAACTGGTGGAACTCGAGGGCCGGCCGCGCCTGCGTTACTGGCTGGACCGCATCCTCGCCGAGGGAATGCTTGACGCGTCCGTCGCGTACGGCTATTTCCCGGTGGTCTCCGAGGGGGAGCAGGTGGTGGTGCTGCACCACGGAGAGGATCACGACGGCGTCCTGGGCACTGCGGGACTGCTCGCCCCCGATGGCGGTTCAGGCGGCCCGATCGGCACCGAGCGCCTGCGTTTCGACTTCCCGCGCCAGCGCCGGGACCGGCACCTGTGCCTCGCCGACTTCGTGCGCTCGCGCGAATCGGGCCAGATCGACGTGCTGCCAATCCAGCTGGTCACCGCCGGTTCAGCGATCGATGAGGTGACAGCGGAGCTGTTCAAGGGGAACCACTACCGCGACTACTACGAACTCAACGGCCTGGTCATGCAGCTCACCGAGGCGCTGGCGGAGTTCTGGCATGCCCGTATCCGCACCGAGCTGGGTTTCGCAGCCGAGGAGCCCAAGGACAAGGCAGGGTACTTCAAGCTCGACTACCGCGGTGCCCGCTTCTCGCTGGGCTACCCGGCGTGCCCGGACATGGAGGACCGCCGCAAGGTGACGGAGCTGCTGAAACCCGAGCGGATGGGCGTGATCCTCAGTGACGAGCTGATGCTGCACCCCGAACAGTCCACCGACGCGTTCGTGTTCCACCACCCGGAGGCGAAGTACTTCAAGGTGTGAMPRFALDIESVPRPARSQELLDAVNHRVVIADGAMGTMLQGRELSLEEDFLGLEGCNEILNHTRPDVLADIHDAYFATGIDAVETNTFGANWSNLSDYGIDDRIEELARKGAEIARDRAEAAEKTDGRMRWVLGSMGPGTKLPSLGHTSYDYLKQTFALQAEGLIDGGADAFLIETSQDLLQTKAAVNGCKQAIVTRGIRLPIFVEVTVETTGTMLMGSEIGAALTALEPLGVDAIGLNCATGPDEMSEHLRHLSKQSSVAIACMPNAGLPVLGPNGAHYPLSPSELATAHEQFVREFGLGLVGGCCGTTPEHMAAVVERLAPFRNGASVASGGRGADGSRVPTEREAGIASLYHHVNFDQELSYLAIGERTNANGSKAFRQAMLEERWDDCVDIAREQVRVGAHLLDVCIDYVGRDGVADMKEIVSRFASASTLPLVMDSTEPAVLQAGLEHIGGRPVVNSVNYEDGDGPTSRFARIMPLVKEHGTAVIALTIDEQGQARTTEGKVAIASRLVDALVGEWGMRVEDIIVDALTFPVATGQEETRRDGIETIEAIRQITTKYPGINTTLGVSNVSFGLNPAARMVLNSVFLHEAVQAGLTSGIIDAAKIVPLASLPEEQRKVALDLVWDRREYDADGNTTYDPLAIMLDLFAGVDTAALKDQRAAELAALPTGARLERRIIDGEGKGLEADLDLARSEGMTPLGIINDYLLEGMKVVGERFGAGEMQLPFVLQSAEVMKNAVALLEPHMEKSDASGKGTMVIATVRGDVHDIGKNLVDIILTNNGYKVINIGIKQGIAEIMAAAEEHNADVIGMSGLLVKSTVVMKENLAELQSRGLAKKWPIILGGAALTRAYVEQDLAEQFDGVVRYAKDAFEGLSLMEPLVRVARGESPDDVGLPPLKKRIHKGGAKFTVTEPEAMPGRSDVVADNAVPAPPFWGTRIVRGVALHDYAALLDERATFMGQWGLKPGRGDDGASYEELVELEGRPRLRYWLDRILAEGMLDASVAYGYFPVVSEGEQVVVLHHGEDHDGVLGTAGLLAPDGGSGGPIGTERLRFDFPRQRRDRHLCLADFVRSRESGQIDVLPIQLVTAGSAIDEVTAELFKGNHYRDYYELNGLVMQLTEALAEFWHARIRTELGFAAEEPKDKAGYFKLDYRGARFSLGYPACPDMEDRRKVTELLKPERMGVILSDELMLHPEQSTDAFVFHHPEAKYFKVPGPT0008135_1708DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548NANA
D1-29_041512373hypothetical proteinGTGTCAACGATCTTCTTTGGTTATCCGGAACAGCCCCCTGCCAATGCCGAAGTCATGAGAAATACGGCGCAAAGCCTTGGAAGTGACTCCGGCATCACCGCTACGACTTGGCAAGACTTGACCGTTGACGGTCGAATTGTCATCGACCAAGTCCTAGACGCAATTGATAACTGCGACATGGCCGTTTTCGATATCACTTCTCTCAATTCAAATGTTCTGTTCGAATTAGGGTATGCAGTTGGGCGAGGAAAGATAATTTGGCTCACTCTCGATTCCACCGATTCTAGAGCGAAGAAGAACTGGAAAGATCTGGCCATTCTCAGCAATGTTGGTTACACGGCCTACCGAAACAGCGATGATCTCGTAAAGCTCTTTTATAGAAACAAGCCACTGCTGACGCCGGATTCACTCTATGACAAACTTATAGAACCGGCACTTCCGGAGCACGCCAGCGACCGGCGGTCGATTCTCTATTGCACCACATTTGAACCTTTTGAAGCCTCAAACAAGCTAAGTAACATGCTTGATGAGAGACAGCGACGCGGCCAAAGTGTTACAACTTCTGACCCCGGTGAATCTAGCCTTATCCCCATTGACTGGTTCGCACCACGGATTGCAAGCGCGGCCGGAGTGCTCGTAAATTTCGCTGGTGCCAAACGCAACAGAGCGAATATCCATAACAACAGGCACGCCCTAGTGGCCGGGCTAGCTACCGGTCTTGAGACCCCCGTCCTCATGCTCGCAGAAGGGGACTATCCAGCACCTTTTGACTACGAGGCAAAGCTAAGAATTTATGAAACCGCTGAGGAGTGTGTCGAAGAAGCGCGCAAGTGGTTGGACAACCTTGAATATGAAGGAATATCTTGGAACGCCCCTAGGTCTACGTCACCCAGTGCTTTGGGTGGGCTTCGCTTCGGGGAACACGTAGCGGAAAACGAACGAACGGAATTGGCAGAATATTTTGTTGAAACCTCCGCCTACCATGAGGTCGTTGCCGCGCGGGATAGCATCTTCGTGGGCCATCGAGGAACAGGTAAGACTGCTAACGCCATGCAAGCTTATCAACACATTGCAGCCAATAAAACAAATTTAGCTATCCTAATCAAACCATCCGGTTTTGAGTTCCCGGCTATGCTGGCGGTAGTGCTTCGTCTATCGTCGCATCAGCAAGATTACTTTTTTGATTCGCTTTGGCGCTTCATAATTCAAACTGAAATAGCGTCTGCCATGCTCCAACGACTACGCAGCCGCAGCTCCTTTGTGCCTTTCAGCGCAGATGAGCAGGCATTTATTGATTACGCCTCCAGCACCCCTTTCGATATGGACGAGGACATCTCGGTGCGGCTTGAGCAGACATTGATGGCGCTCACTGAATCCCTAGCAGCGACCACCACGACGCTCGATACCGAAAGGAACCTCATAAACGAAGCGTTCCACACTGAGGCGCTAGCCACGCTACGAGCCCAGCTTGGTCACGTTCTGAAAGGGAAGAAACGAGTAGCTGTCTTCGTCGACAACCTGGACAAGGGCTGGGAGCGTGGAGCGGACTTCAAAGTCATGGCTCGCTTTATTTTAGGTCTCCTAACCGCCCGAGGTAGAGTCGTAACTGATTTTGAGAAAGAGGACTACTGGCGTACCGCCATAAAGCTTACCGTCTCCGTGTTCCTGAGGAGCGACATATATACCTATTTGAGACGCGAGGCACGCGAGCCCGATAAGTTGCCTATCTCTACTATTTCTTGGCGCGATGCACAAACCCTCAAATCAGTCATCGAGTCACGGTTTATAATAAGCGAAGCTCATCCAGACCGAGTCTCTGAACTTTGGGAGAAGTATTTCTGCCCCTCTATAGGAAACTTGACCACCGGCGAGTACCTGACCAAGGTCACTCTTCCTCGACCAAGGGATGTGGTTTTTTTCTGCAATGCTGCTGTTGGAAAAGCCATCGACCGCCGACATACGCGTGTGGAGTCCGACGATTTCCTAGCCGCGGAGGAGGTCTATTCGCAATACGCCTACGAGGCGCTATTGGTTGAGAACGGTGTAACAATTCCCGAAATGGAGGATGCACTTCTAAGCTTCATCGACTCTACAGAAATTGCAACCGCAGGTATTCGAAAGCAAGAACTTTCACGCGGTGGTCTCGGGGACGACCGAATAGAACCTATACTCGATAAACTTCTATCGATGTCCTTTTTCGGTATTGAAATCTCAGAGGGAGTATTTGCTTATCCCGAGGTCGGAAGTGACATGGCCGCGGCCAGTGCACGGGCAAAAAAATATGAACCGCATACAGACTCTCGGCGGCTCATTATCCACCGCGCCTTTCGTACCTTTCTTGGCATCAATACCACTAACGGAAATCAGAAATAAMSTIFFGYPEQPPANAEVMRNTAQSLGSDSGITATTWQDLTVDGRIVIDQVLDAIDNCDMAVFDITSLNSNVLFELGYAVGRGKIIWLTLDSTDSRAKKNWKDLAILSNVGYTAYRNSDDLVKLFYRNKPLLTPDSLYDKLIEPALPEHASDRRSILYCTTFEPFEASNKLSNMLDERQRRGQSVTTSDPGESSLIPIDWFAPRIASAAGVLVNFAGAKRNRANIHNNRHALVAGLATGLETPVLMLAEGDYPAPFDYEAKLRIYETAEECVEEARKWLDNLEYEGISWNAPRSTSPSALGGLRFGEHVAENERTELAEYFVETSAYHEVVAARDSIFVGHRGTGKTANAMQAYQHIAANKTNLAILIKPSGFEFPAMLAVVLRLSSHQQDYFFDSLWRFIIQTEIASAMLQRLRSRSSFVPFSADEQAFIDYASSTPFDMDEDISVRLEQTLMALTESLAATTTTLDTERNLINEAFHTEALATLRAQLGHVLKGKKRVAVFVDNLDKGWERGADFKVMARFILGLLTARGRVVTDFEKEDYWRTAIKLTVSVFLRSDIYTYLRREAREPDKLPISTISWRDAQTLKSVIESRFIISEAHPDRVSELWEKYFCPSIGNLTTGEYLTKVTLPRPRDVVFFCNAAVGKAIDRRHTRVESDDFLAAEEVYSQYAYEALLVENGVTIPEMEDALLSFIDSTEIATAGIRKQELSRGGLGDDRIEPILDKLLSMSFFGIEISEGVFAYPEVGSDMAAASARAKKYEPHTDSRRLIIHRAFRTFLGINTTNGNQKNANANANANA
D1-29_041522136hypothetical proteinTTGCCAGATTTCAACACAGAGGAGCTTGAAAAGTTCACTGAGGCTATTCGACTCCTGAAGCTTTACCGCCGCGCGGAGATGGAGACTGCGGACGGAAAAGACCTCATCGAGCAGCTCTACGTCGATCCGCTACCCCATGACCACGTACTCAAGCAGATCCGACAACCTACGACCACCTTCATCGTTGGCCGGAAGGGTACCGGAAAGTCAACCGTGTTCCTTCGGGCGCGCAAGAGTCTACTTGCGCAGAAGGACGTGATCGCCGCATATGTTGACATCAAAACTGTCTTTGAATCTTCACGCGTCGATCCCGCGCTAACGAGCGCACTGACCTCAACCGACGGTGCACTCAGCGACGCAGCACTGGATCACCTTCTCCTACTGACGGCGTTCCTAAAAGCCGTTGTCATTGGAATTCGCGACGACTTGCGAGCCCAGCTGAACTCCGCTTGGCGCAGTCGCCTGCGCGAAGCTTTCACTGGCGAATACAACGACCTCGAAAAGAAACTCGATGAGTTTCTCATGGAACTTGAAGAACCTAAGTTCGTAAATGTTCAGGGAATTCGCACTGCATCCGTGCGGCAGCGGGACCAGAACGGGGCCTTGATCGGCGTACAAGCGGGGACAGAGTTGTCCGCCACCGGCCCAAGTGCAAACTTTTCTGCTTCCGCAGAAGCCTCCTCCGAATCAGAATCTGAATCGGAGTACTCCGATGTTCTTCTCCGAAGCATCGACGTCCACCGCCTGATCACTGGGCTTAAATCGCTATTGCAACCACTCGGTATCAAGCACCTCTATGTTTTTCTCGACGACTTCTCAGAGCTCCCCGAAGATGCGATGCGGTCCGTGGTCGATGTTCTCGTAGCACCACTCAACAACTGGTCCGAGGAGTTAGTCAAGTTCAAAATTGCTGCCTACCCAGGGCGTATTTACTACGGAAATCTGGACAAATCCAAGATAGAGGAAATAACGCTCGACCTCCACAGCATCTACGGACAATCGGGCGTTGCCTCAATGGAGGAGAAGTCCAGCGAATTCACTAAACGCTTGGTCGAGCGGCGGCTGCATCACTTCGGACTGGACCCCGTCCGATTCATGGATATCGGCCGAGATTCGCAGCTTTGGGACACCCTATTCCAGGCATCGATGGGCAACCCTCGCACACTTGGATACATACTGTTTTTTGCCCACGAATCGCAGTTGCTTTATGGGCGCCGAATAACCGTCCAGGGAGTTCGGGATGCGGCCAAGCGCTACTACGAAGAGAAACTTGAGCCCTACTTCGCGATGGGGGCCTTTCTGCATGAATCATTCCACGAGCGATCGACAATATTCAGCCTGAAGGAACTGCTCGAGCAAGTAGTCGCCCGCGCACGTTCTCTGCGATCGAAGGAAAGCGCAAGCATCTTTCAGTCGGTCGATGGCCGTCATCCTACAAGTCACTTCAATGTGAATCCCTCATTCGAAACTCTACTGTCCACGCTTGAACTGAATTTTTTCATTACCAAATATTTTGTGATGAGTAATCGTGATGGGCTGCTCGTTTCGATCTACGCTCTGAATTTTGGTCTGTGTGAAAAGTACAACATCGCGTTTGGACGCCCTACAAAATCAAGAGAACAAAGACTGTACTTTGTTGAGCGAGTCTTTGACTATAACCCGATTCTGCAGGCCTACGTCTCGACGAATCAAGAAATTCAATGCGACTCCTGTGGCGCAGTTTTCGACTCTTCCGACCTCGATTCCCTCAAGAAGTATCACATGCTTTGCCCGCTCTGTCGGCAGGGGACCTGTGTAGTTACTAACATTGCAAAGAAATACTCCGATGTCGTCGCCCGTGTGGCAAGCGAACAACTACTTCCCCAAACTGAACTGGGGATCTTGCGTAGCCTTGATTCTGAAGCTCGGCCACTTTACGCCAGCGAGATCGCCGGTGAACTAGACGTATCTCATCAGCTCATCGGGTGGCGAGCTAAGCGACTCGACGAGCAGAATCTGATCGTTCGTGAGGCCGTCAAGAGCGGTCGCCGAACGTACAAACTCTCAACTGATGCGCGGCGCATCTACTTTGACGATCGGGCGGCGTGGGGTTTGCAGCTCGCAGAGTTCGGCGATAGCGAACCCCCGGCGGGGTAAMPDFNTEELEKFTEAIRLLKLYRRAEMETADGKDLIEQLYVDPLPHDHVLKQIRQPTTTFIVGRKGTGKSTVFLRARKSLLAQKDVIAAYVDIKTVFESSRVDPALTSALTSTDGALSDAALDHLLLLTAFLKAVVIGIRDDLRAQLNSAWRSRLREAFTGEYNDLEKKLDEFLMELEEPKFVNVQGIRTASVRQRDQNGALIGVQAGTELSATGPSANFSASAEASSESESESEYSDVLLRSIDVHRLITGLKSLLQPLGIKHLYVFLDDFSELPEDAMRSVVDVLVAPLNNWSEELVKFKIAAYPGRIYYGNLDKSKIEEITLDLHSIYGQSGVASMEEKSSEFTKRLVERRLHHFGLDPVRFMDIGRDSQLWDTLFQASMGNPRTLGYILFFAHESQLLYGRRITVQGVRDAAKRYYEEKLEPYFAMGAFLHESFHERSTIFSLKELLEQVVARARSLRSKESASIFQSVDGRHPTSHFNVNPSFETLLSTLELNFFITKYFVMSNRDGLLVSIYALNFGLCEKYNIAFGRPTKSREQRLYFVERVFDYNPILQAYVSTNQEIQCDSCGAVFDSSDLDSLKKYHMLCPLCRQGTCVVTNIAKKYSDVVARVASEQLLPQTELGILRSLDSEARPLYASEIAGELDVSHQLIGWRAKRLDEQNLIVREAVKSGRRTYKLSTDARRIYFDDRAAWGLQLAEFGDSEPPAGNANANANANA
D1-29_041531008lipA_2COG0320Lipoyl synthaseATGACACTGGCACCAGAAGGCCGGAAGATGCTGCGCATCGAACAGCGCAACGCGGCCACCCCGGTGGAACGGAAGCCGGAGTGGATCAAGGCCAAGGTCCAGATGGGTCCCGAGTTCGTTCAGCTGAAGAATCTGGTCAAGAAGGAAGGCCTCCACACGGTGTGTGAGGAGGCGGGCTGCCCGAACATTTTTGAGTGCTGGGAAGACAAGGAAGCCACGTTCCTGATCGGCGGGTCCGAGTGCACCAGGCGGTGTGACTTCTGCCAGATCGATACCGGCAAGCCGTCGCCGGTGGACATGTTTGAACCCACCAAGGTGGCCCGGTCCGTGCAGGCCATGCAGCTGCGGTACGCCACCGTCACCGGTGTGGCCCGTGATGACCTGGCCGACGAGGGTGTCTGGCTGTACGCCGAGACGGTCCGCAAGATCCACGAACTGAACCCGGGCACCGGCGTCGAGCTTTTGATCCCGGATTTCTCCGGCAAGCCCGAGCACATCGAGGCGATCTGCGATTCAAAGCCTGAGGTGTTCGCGCACAACGTCGAAACCGTGCCGCGGATCTTCAAGCGGATCCGGCCGGCGTTCCGGTATGACCGGTCCCTGGATGTCATCACGCAGGGCCGGAAGCTGGGCATGGTCACCAAGTCCAACCTGATCCTTGGCATGGGTGAAACCCGTGAGGAAATCTCCGAGGCCCTCCGTGACCTGCACGAGGCGGGCTGTGACCTGATCACCATCACCCAGTACCTGCGCCCGAGTGAACGGCACCTGCCGGTGGACCGCTGGGTCAAGCCGCAGGAATTCGTGGACCTCCAGGACGAAGCGATCGAGATGGGCTTCCTGGGTGTGATGTCCGGGCCGCTGGTCCGCTCCTCCTACCGTGCCGGCCGGCTCTGGGCCACAGCGATGCGCAAGAAGGGCTGGGAAATCCCGGCCGAACTGGCGCACATCGAATCCTCGGGCAGCACCCGCCAGGAAGCCAGCTCCCTGCTCGCAGGGCATTCCTGAMTLAPEGRKMLRIEQRNAATPVERKPEWIKAKVQMGPEFVQLKNLVKKEGLHTVCEEAGCPNIFECWEDKEATFLIGGSECTRRCDFCQIDTGKPSPVDMFEPTKVARSVQAMQLRYATVTGVARDDLADEGVWLYAETVRKIHELNPGTGVELLIPDFSGKPEHIEAICDSKPEVFAHNVETVPRIFKRIRPAFRYDRSLDVITQGRKLGMVTKSNLILGMGETREEISEALRDLHEAGCDLITITQYLRPSERHLPVDRWVKPQEFVDLQDEAIEMGFLGVMSGPLVRSSYRAGRLWATAMRKKGWEIPAELAHIESSGSTRQEASSLLAGHSPGPT0003935_1247DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644NANA
D1-29_041541428sdaA_3COG1760L-serine dehydrataseATGGCCGTTGGAGTCTTTGATCTCTTTTCCATTGGCATTGGACCGTCAAGTTCGCACACCGTCGGGCCGATGCGGGCTGCTGCTGTGTTTGCGGAGGAGCTGAAGGCCTCTGGCATGGTGGCCGAGGTGGCGGGGTTGCGGGTGGACCTTTACGGGTCGTTGGCTGCTACCGGGCACGGTCATGGCACCATGACCGCGATCCTGCTCGGGCTGGAGGGGTTTCATCCGGAGCTGATCCTGCCCGATGAGGTGGAGGAGCGGCTGGCTGCGATTGAGGAGACGGGTGTCCTGCAGTTGGCTGGGACCGTGCCGCTGCCTTATGGCGTGAATGACATGGTGCTGCGGCCGCTGACCATCCTGGCGCGCCACACCAATGGCATGACCTTCACTGTGTCCGATGGCGAGGGCAATGTCCTGCACACTGCCACCTTTTTCTCCGTGGGTGGCGGGTTCATCGTCCGCGAGGGCGAGGAAGACGCTGCGCAGCAGGAGCTAGAGGAATCCAAGAAGGAACTGCCGCTGCCGTTCCGGACTGCCGCTGAACTGTTGGAGCACTGCCGGGAAACCGGGCTGGGCATTAGCGACGTAATGCGGGTCAACGAGGAGGACAACCGCACTCCCAGGGAGATCCGCGAAGGCCTGCTGCACATCTGGTCCGTCATGGAGGACTGCGTGGCCACCAGCCTCAAGCGCGAAGGCCTGCTGCCCGGCGGACTGAAGGTCCGCCGTCGTGCCCCGGATTGGTACGACCGGCTGAAAAAGGAAAGCTCACGGCCGGACGGTGAAGGCCAGGACCAGGACTTCTATGACCAGAAGTATTGGCAGGAGTGGGTTAACTTGATCGCTCTCGCCGTCAATGAGGAGAATGCCTCGGGCGGCCGGGTGGTCACCGCCCCGACCAACGGCGCGGCCGGGATCATCCCGGCAGTGCTGTTCTACGCGCTGCACTTCGCGCCGGGGATGGAGAGCGCCAATCAGGAGGACCGCGACGACGTCGTGGTCAGGTTCCTGCTGGCGGCCGGTGCCATCGGGGTGCTGTACAAGGAACAGGCATCTATTTCGGGGGCGGAGGTGGGCTGCCAGGGCGAGGTGGGTTCGGCGTCGTCCATGGCGGCCGCGGGCCTGGCCGAGGTCATGGGCGGCACGCCGCAGCAGGTGGAGAACGCGGCGGAGATCGCGATGGAGCACAACCTGGGGTTGACGTGTGATCCGATCGGCGGGTTGGTTCAGATTCCGTGTATTGAACGGAACGCCATCGCGTCGGCGAAGGCGATCAACGCCGCCAAGATGGCGCTGTGGGGCGATGGAACGCACCGGGTGTCGCTGGATGAGGTGATCGTGACCATGCGCGAAACGGGCAAGGACATGTCCTCCAAATACAAGGAAACCGCGATGGGCGGCCTGGCCGTCAACGTGGTCGAATGCTAAMAVGVFDLFSIGIGPSSSHTVGPMRAAAVFAEELKASGMVAEVAGLRVDLYGSLAATGHGHGTMTAILLGLEGFHPELILPDEVEERLAAIEETGVLQLAGTVPLPYGVNDMVLRPLTILARHTNGMTFTVSDGEGNVLHTATFFSVGGGFIVREGEEDAAQQELEESKKELPLPFRTAAELLEHCRETGLGISDVMRVNEEDNRTPREIREGLLHIWSVMEDCVATSLKREGLLPGGLKVRRRAPDWYDRLKKESSRPDGEGQDQDFYDQKYWQEWVNLIALAVNEENASGGRVVTAPTNGAAGIIPAVLFYALHFAPGMESANQEDRDDVVVRFLLAAGAIGVLYKEQASISGAEVGCQGEVGSASSMAAAGLAEVMGGTPQQVENAAEIAMEHNLGLTCDPIGGLVQIPCIERNAIASAKAINAAKMALWGDGTHRVSLDEVIVTMRETGKDMSSKYKETAMGGLAVNVVECPGPT0001975_238DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752NANA
D1-29_041551326glyA2_2COG0112Serine hydroxymethyltransferase 2GTGAGCGGCGCTGCTGCCGCCACGGCAGCATTTGAGCAGGTTGTTTCGCCGAGCCTGGACGCGGACCTGTCGGTCCTGGATCCGGAGATCGCGGCCAAGATCGACGACGAACTGGGCCGCCAGCGCGACGGCCTGGAGATGATCGCGTCGGAGAACCACACCGCCGTGGCAGTGATGCAGGCGCAGGGCTCGGTGCTGACCAACAAGTATGCCGAGGGTTACCCGGGCAAGCGGTACTACGGTGGCTGCGAGCACGTTGATGTCATCGAACAGCTCGCCATCGAGCGGGTCAAGGCCCTGTTCGGCGCCGAGTTCGCGAACGTCCAGCCGCATTCAGGTGCGCAGGCCAACGCCTCGGTGATGCACGCGCTGATCAAGCCGGGCGACACGATCATGGGCCTGAACCTGGCCCACGGCGGCCACCTGACCCACGGCATGAAGATCAACTTCTCCGGCCGGCTGTACAACGTCATCCCGTACCAGGTCCGCGAAGAGGACCACCGGATCGACATGGCCGAGGTGGAGCGCCTGGCCCACGAGCACAAACCGGTCCTGATCGTGGCAGGCTGGTCGGCCTATGCACGCCAGGTGGACTTCGCCGAGTTCCGCCGGATCGCCGATTCAGTGGGCGCCTACCTGATGGTGGACATGGCGCACTTCGCCGGACTGGTTGCCGCCGGGCTGCACCCCTCCCCGGTGCCGCACGCCCACGTCACCACCTCCACCACGCACAAGACCCTCGCCGGTCCGCGTGGCGGCATCATCCTGACCAACGACGCCGCCATCGCCAAGAAGATCAACTCGGCGGTGTTCCCGGGCCAGCAGGGCGGGCCGCTGGAGCACGTCATCGCGGGCAAGGCCGTGGCGTTCAAGATCGCCGCGTCTGAGGAGTTCCGGGAACGGCAGGAACGGGTCCTTGCCGGCGCCCGGATCCTCGCCGAGCGCCTGGTCCAGCCGGACGTCACCGCCAAGGGCATCAACGTCATCTCTGGCGGCACCGATGTGCACCTGGTTTTGGTGGACCTGCGGAACTGCGAACTGGACGGGCAGCAGGCTGAGGACCGGCTCGCGGAGATCGACATCACGGTGAACCGCAACGCCGTGCCGTTCGACCCCCGCCCGCCCATGGTGACGTCCGGGCTGCGGATCGGCACTCCGGCACTGGCGACCCGAGGGTTCGGCGAAGCAGCCTTCCGCGAGGTTGCGGACATCATCGCCGAGGCATTGATGGCCGACGCCGGAGCCGACCTTTCCGGGCTCCGTCACCGCGTCGAAGCCCTCGCCGCGGCCCACCCGCTCTACCCGGGCGTGGCACCGCTGTCCTAGMSGAAAATAAFEQVVSPSLDADLSVLDPEIAAKIDDELGRQRDGLEMIASENHTAVAVMQAQGSVLTNKYAEGYPGKRYYGGCEHVDVIEQLAIERVKALFGAEFANVQPHSGAQANASVMHALIKPGDTIMGLNLAHGGHLTHGMKINFSGRLYNVIPYQVREEDHRIDMAEVERLAHEHKPVLIVAGWSAYARQVDFAEFRRIADSVGAYLMVDMAHFAGLVAAGLHPSPVPHAHVTTSTTHKTLAGPRGGIILTNDAAIAKKINSAVFPGQQGGPLEHVIAGKAVAFKIAASEEFRERQERVLAGARILAERLVQPDVTAKGINVISGGTDVHLVLVDLRNCELDGQQAEDRLAEIDITVNRNAVPFDPRPPMVTSGLRIGTPALATRGFGEAAFREVADIIAEALMADAGADLSGLRHRVEALAAAHPLYPGVAPLSPGPT0008090_1844DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
D1-29_04156384gcvH_3COG0509Glycine cleavage system H proteinATGAGCAAAGTAGTTGCTGAACTGAAGTATTCGGCCGAGCACGAGTGGGTTGCCTCGGATGGGGCGGGGCCTGCGGGGATTGGGATCTCCGCCGTTGCGGCCGACGCCTTGGGCGACATTGTGTACGTGGACCTGCCCGACGTCGGCTCTTCCGTGACCGCGGGGGAGACCTGCGGCGAGGTTGAGTCCACCAAGTCCGTGTCCGATTTGTACTCGCCGGTCACTGGTGAGGTGACGGAGATCAACGAGGCCGTTGTCAGTGATCCTGCCCTGATCAACAACGATCCCTATGGTGCCGGCTGGCTGTTCAGGGTGGCCGTGACCGAAGAAGGTCCGCTGATGTCAGCTGCCGAGTACGCAACGGTCAACGGCGGCGAGCTGTGAMSKVVAELKYSAEHEWVASDGAGPAGIGISAVAADALGDIVYVDLPDVGSSVTAGETCGEVESTKSVSDLYSPVTGEVTEINEAVVSDPALINNDPYGAGWLFRVAVTEEGPLMSAAEYATVNGGELNANANANANA
D1-29_041571137gcvT_3COG0404AminomethyltransferaseATGACTGAGAACTACACAGCCCTGTACGAGCAGCACAAAAAGGCCGGCGCGTCCTTCACGGACTTCGGTGGCTGGCAGATGCCCCTCAAGTACGAGTCCGAGCTCGCCGAGCACCACGCGGTGCGTAATACAGCAGGCCTGTTCGATCTCTCCCACATGGGCGAAGTGTGGGTCAGCGGCCCGGATGCAGCCACTTTCCTGGACTACGCGCTGGTGGGAAAGCTTTCAGCCGTTGCCGTGGGCAGGGCGAAGTACTCCCTGATCTGCAACACCGACGGCGGCATCATCGACGACCTCATTTCGTACCGCCGCCCGTCTCCCGAAGACGGCGTGGACGAGTACCTTGTGGTCCCCAATGCCGGCAACGCAAAGGTGGTTGCGGCGGCGCTGGCGGACCGTGCGGCTGGCTTTGACGTCGTCGTTCGGGACGCCTCCGCTGAGACGTCGCTGATCGCTGTGCAGGGACCGAACGCGGAAGCGATCCTGCTGACGCTGGTCCCCGCCGGGCAGCACCAGCCGGTCAGGGACCTGAAGTATTACGCGGCCGTTGAAGCAGATATCAACGGGCAGGAGTTGTTGCTCGCCCGCACCGGCTATACCGGCGAAGACGGCTTCGAGATCTACGTCCCGAACGTGGACGCAGCCAGCCTGTGGGAAGCGCTGCTCGAAGCCGGGGAAAGCCATGGACTCATCCCGGCAGGACTCGCAGCCCGCGACTCACTGCGTCTCGAAGCCGGCATGCCGCTCTATGGCAACGAACTATCCCGCTACGTGAACGCCTACGCAGCAGGACTCGGCCCGGTTGTTTCCCTGGCCAAGGAAAGCGACTTCGTCGGAAGGAAAGCGCTGACGGCCATCAAGGCTGCGGGCGTCGGATCCACCATCGGCGCAAAGCTCGTCGGCCTCAAAGGCACTGGCCGCCGGGCTGCCCGCGCTCACTATTCAATCCTCAAAGACGGCACACTCATCGGCGAGGTCACTTCCGGCCAGCCGAGCCCGACGCTCGGTTACCCCGTGGCGTTGGCCTATGTGGACGTCGCGCACTCCGAGCCGGGCACGGTTGTCGACGTGGATCTTCGCGGCAAATTGGAACCCTTTGAAGTTGTAGCGCTGCCGTTCTACAAGCGGGCCAAGTAAMTENYTALYEQHKKAGASFTDFGGWQMPLKYESELAEHHAVRNTAGLFDLSHMGEVWVSGPDAATFLDYALVGKLSAVAVGRAKYSLICNTDGGIIDDLISYRRPSPEDGVDEYLVVPNAGNAKVVAAALADRAAGFDVVVRDASAETSLIAVQGPNAEAILLTLVPAGQHQPVRDLKYYAAVEADINGQELLLARTGYTGEDGFEIYVPNVDAASLWEALLEAGESHGLIPAGLAARDSLRLEAGMPLYGNELSRYVNAYAAGLGPVVSLAKESDFVGRKALTAIKAAGVGSTIGAKLVGLKGTGRRAARAHYSILKDGTLIGEVTSGQPSPTLGYPVALAYVDVAHSEPGTVVDVDLRGKLEPFEVVALPFYKRAKPGPT0008130_1092DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
D1-29_041582889gcvP_2COG0403putative glycine dehydrogenase (decarboxylating)ATGGAGTTCCTCTTGACTGTTCAATCAACCCCCACCGCTTTCGCGGACCGGCACATCGGCGCCCGGCGCCAGGCCGACGTTGACACCATGCTCAAGGCAATCGGCTACGACTCCGTGGACGGCCTGGTAGACGTGGCCGTCCCCGATTCCATCCGTCAGTCCGCACCGTTGACACTTCCAAGCGGCACGGACGCGCTCAGCGAGGTTGAGGTCCTGGCCGAACTGCGCCGCCTCGCCGCCAAGAACAAGACCGCCGTCCAAATGATCGGTCAGGGCTACTACGACACCGTCACCCCGCCGGTGATCCGCCGCAACATCCTGGAAGCTCCGGCCTGGTACACCGCGTACACGCCGTACCAGCCCGAAATTTCCCAGGGCCGGCTCGAGGCGCTCCTGAACTTCCAGACAATGGTGCAGGACCTCACGGCCCTTCCGGTGGCCAACGCTTCCCTGCTGGATGAAGCAACGGCTGTGGCCGAGGCCGTGCTGTTGATGCGCCGGGCCAACAAGTCCAGGTCCGCTGCTGCCGGCAAGACCGTCCTGGACGCGGACTGCCTCCCGCAGACCATCGCCATCGTGAAGGGCCGCGCTGAGGCACTCGGCTTCGAGGTGGAGATCGCGGACCTGAGCCAGGGCTTGCCCGACGGCGACATCAACGGAGTGGTCCTCCAGCAGCCCGGTGTTTCGGGCCGCGTTTTCAACCACGCACCGGTCATCGCTGCCGCCAAGGAACGCGGCGCGCTGGTCACTGTTGCCGCCGATCTGTTGGCGCTCACCCTCATCACGCCCCCGGGCGAGCAAGGTGCCGACATCGCCGTCGGAACCGCGCAGCGCTTTGGCGTGCCGCTGTTCTTCGGCGGCCCGCACGCCGCGTACATGGCCGTCCGCGAAGGCATGGAGCGCACGCTCCCGGGCCGCATCGTTGGCGTTTCCAGGGACAACGCCGGGGTTCCTGCCTACCGGCTGGCCCTCCAGACCCGTGAGCAGCACATCCGCCGCGAAAAGGCCACGTCCAACATCTGCACTGCCCAGGCTTTGCTGGCAATCGTTGCCTCGATGTACGCGGTCTACCACGGCCCGGAAGGCCTGAAGGCGATCGCCGAAACCGTCCACGGCCACGCCCGGACCCTGGCAACCGCCCTCAAGACCGCCGGCCGCGACCTTGTGTCCGAGTCATTCTTCGACACCCTCACGGTCCGCGTCCCCGGCAAGGCGGACAAAGTCATTGCCGCCGCCGAAGCCCGCGGCATCAACCTGCGGCTCATCGACGCTGACACCGTTGGCGTCTCCGTGGATGAAACCACGACGCCGGATGTCCTGTCCGCCGTGGCAGTCGCCTTTGGCGCCGGTCCCGTGAAATCCGCTGCCGGCTTTGAGCTGCCGTCCGGCGTTGTCCGTACGTCCGATTTCCTGCAGCACCCGGTGTTCAACACTCACCGTTCCGAGACGCAGCTGTTGCGCTATATCCGCAAGCTGTCCGACCGGGACCTTTCGCTGGACCGCACCATGATTCCGCTGGGCTCGTGCACCATGAAGCTCAACGCGACGGCCGAGATGGAAGCCATCTCCTGGCCGGAGTTTGCCTCGATCCACCCGTTCGCTCCGGACTCCCAAACGGCGGGCTGGCGGGAACTGATTGAAGGTTTGGAAGCGGACCTTACCGAAATCACCGGCTACGACCAGGTGTCCATCCAGCCGAACGCCGGTTCCCAGGGTGAGCTTGCAGGCCTGCTGGCCATCCGCGGCTACCACCTGTCCCGCGGCGACGAGCAGCGCAACGTCTGCCTGATCCCGGCCTCCGCGCATGGCACCAATGCTGCGTCAGCCGTGCTGGCCGGCATGAAGGTTGTTGTGGTGGCCACGGCTTCCGACGGAACCATCGACCACGCCGATTTGACCGCCAAGATCGAGGCAAACAGGGACGTGCTGTCCTGCATCATGATCACCTACCCGTCCACCCACGGCGTGTACGACGCTGACGTCCGCGAGGTCTGCGACGCCATCCACCAGGCCGGCGGACAGGTGTATGTGGACGGCGCCAACCTGAACGCGCTGGTGGGACTGGCCCAGCCGGGTAAGTTCGGCGGCGACGTGTCCCACCTGAACCTGCACAAGACCTTCTGCATCCCGCACGGTGGCGGCGGTCCCGGCGTTGGCCCGGTCGCAGCCAAGGCACACCTGGCACCGTTCATGCCCGGCGACGCGAACAAGGCTTCCTCAGGCGGGGGCGTGGCCATCTCCGCTTCGCGCTATGGATCGGCCGGTGTCCTTCCGATTTCCTGGGCGTACGTGAAGCTGATGGGAGGGCGGGGCCTGACCGAAGCCACCAAGTCGGCGCTGCTCGCTGCGAACTATGTTGCTTCCCGGCTGGATGAGCACTTCCCCGTCCTGTACACGGGTGCAGGCGGACTCGTGGCCCACGAGTGCATCCTTGACCTCCGCGAACTGACGGCCCGCACCGGCGTCACCGCGGAGGACGTGGCCAAGCGCCTCATCGACTTTGGCTTCCACGCTCCCACCTTGTCGTTCCCCGTTGCGGGCACACTGATGGTGGAGCCCACCGAGTCCGAAGACCTGGCTGAGATCGACCGCTTCATCGAAGCGATGATCATCATCCGCGCGGAAATCGAGCAGGTGGCCAGCGGTGATTTCACTGTTGAGAAGTCGCCGCTGCGCAACGCACCGCACACGGCTGCCGCCGTCGTAAGTTCCGTGTGGGGCCGTGAATACCCGCGCGAGCAGGCGGCGTTCCCGGTCCCGCACCTGAAACAGGACAAGTACTTCCCGCCCGTGGGCCGGGTAGACGGTGCCGCCGGTGACCGGAACCTTGTGTGCTCCTGCCCTCCCCTCGAAGCGTTCGAGGACAACACTGCAGACCTCGAAAACTAAMEFLLTVQSTPTAFADRHIGARRQADVDTMLKAIGYDSVDGLVDVAVPDSIRQSAPLTLPSGTDALSEVEVLAELRRLAAKNKTAVQMIGQGYYDTVTPPVIRRNILEAPAWYTAYTPYQPEISQGRLEALLNFQTMVQDLTALPVANASLLDEATAVAEAVLLMRRANKSRSAAAGKTVLDADCLPQTIAIVKGRAEALGFEVEIADLSQGLPDGDINGVVLQQPGVSGRVFNHAPVIAAAKERGALVTVAADLLALTLITPPGEQGADIAVGTAQRFGVPLFFGGPHAAYMAVREGMERTLPGRIVGVSRDNAGVPAYRLALQTREQHIRREKATSNICTAQALLAIVASMYAVYHGPEGLKAIAETVHGHARTLATALKTAGRDLVSESFFDTLTVRVPGKADKVIAAAEARGINLRLIDADTVGVSVDETTTPDVLSAVAVAFGAGPVKSAAGFELPSGVVRTSDFLQHPVFNTHRSETQLLRYIRKLSDRDLSLDRTMIPLGSCTMKLNATAEMEAISWPEFASIHPFAPDSQTAGWRELIEGLEADLTEITGYDQVSIQPNAGSQGELAGLLAIRGYHLSRGDEQRNVCLIPASAHGTNAASAVLAGMKVVVVATASDGTIDHADLTAKIEANRDVLSCIMITYPSTHGVYDADVREVCDAIHQAGGQVYVDGANLNALVGLAQPGKFGGDVSHLNLHKTFCIPHGGGGPGVGPVAAKAHLAPFMPGDANKASSGGGVAISASRYGSAGVLPISWAYVKLMGGRGLTEATKSALLAANYVASRLDEHFPVLYTGAGGLVAHECILDLRELTARTGVTAEDVAKRLIDFGFHAPTLSFPVAGTLMVEPTESEDLAEIDRFIEAMIIIRAEIEQVASGDFTVEKSPLRNAPHTAAAVVSSVWGREYPREQAAFPVPHLKQDKYFPPVGRVDGAAGDRNLVCSCPPLEAFEDNTADLENPGPT0020480_2485DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281NANA
D1-29_04160339hypothetical proteinGTGAAACTAGGTGAAAGTGGTGAAACTTCGTCACCGGACGGCAGCCGGGCGTACGAGGCAAGTCCATGCGCCCGCGTGTCCCACTGCGCCGGAATTGCCGAGTTAGCCTACAAGGGCCCGCGTGTGGTCGTTGAGGAATATCCCGCGGGGATCGAACTCGCGGCGGACCTGCATGAACGTGTCCAGTTCCGGGTAGAGGCGCTCAAGACGGCTCCGGGTCAGGCGGCGCTAGTCAGCCGCCAGGTCCCTGGCCGGTCAAACCTTGCCTTGCGTAGTTGCAGAAATACCCGCTATGGTGTGAACCGTGCCACCCACCCAAGGGTGACGCAACGCTTTTGAMKLGESGETSSPDGSRAYEASPCARVSHCAGIAELAYKGPRVVVEEYPAGIELAADLHERVQFRVEALKTAPGQAALVSRQVPGRSNLALRSCRNTRYGVNRATHPRVTQRFNANANANANA
D1-29_041611233COG3268Putative trans-acting enoyl reductaseATGGAAAACTCATCTCGGGAACATGACCTCGTTCTCTACGGAGCGACGGGTTTCGCTGGCCGACTGATCGCCGGCTACGTCGCGGAGCATGCACCGGCTGGGATGCGAGTTGGACTCGCGGGCCGGTCGAGGTCCAGACTCGGGGCCCTTCGGTCGCAGTTGCCGGTCGCGGCGCACGGATGGGCCCTCATCGAAGCCGACTCGGAGGACGCGGACTCGATCGCCGCCCTGGCCGTGGGCACACGCGTGCTCTTCACAACCGTCGGTCCATACGCGAAACACGGACTACCTGTGGTCGACGCCTGCGCACGGGCCGGTACCCACTACGCCGACCTCGCGGGTGAGGTGTCCTTCGTCCGGGAGGCGATCGATCGCTACGACGCTCTGGCCAGGACGAGCGGGGCCAGGATCGTGCACTCCTGCGGCTACGACTCCGTGCCGTCCGACCTCGCTGTACTGCTGCTTCATCAGGCGGCAGAAGCCGATGGCGCTGGCGGTTTGGTCGAGGTCCAACTCGTTGCTACGGCCAAGGGTGGCATCAGCGGAGGCACGCTCGAATCGTTTCGCGGGCAGCTCGAGGCGATGCGATCGAGCACCGCCCTGAGGTCATTAGCCGCGGACCCCTATGCTCTGAGCCCCGACCGCACACGGGAGCCGACGACACAACAGCCTCCTGACGCCGGTACTGTGCGCCGTTCCGATGACGGCACCTGGACCGCGCCGTTCATCATGGCCGCGGTCAACACCCGGATAGTGCGCCGCAGCAACGCACTGCAGGGCTGGGCCTACGGCCGCTCCCTTCAGTACGGCGAGGTGATGGGGGTGGCCCGCGGACCGGCAGGAGCGGTTCTCGCCAGGGCAGTGGCACTCGGACTCCGGGCATTCATGGGCGCGATGGCGTTCCCGCCGACCCGGGGGGTGCTCGACCGCTGTCTTCCGGCACCAGGTGCGGGTCCGAGCACCAGCACCCAGCGCGCGGGCTGGTTCCACTCTCAGGTGACCGCCCGCACCGAGGACGGGCACCGATACCAGGCGATTGCTGCTGGCCCTGGTGATCCCGGCTATGCCGCCACCGCCGTGATGGCAGGCGAGACTGCACTCGCTCTTGCCCTCGACGGCGACCGGCTGCCGACCGCGAAAGGGTCGCTGACACCGGCCACTGCACTCGGCAACGTGCTCATACAGCGACTCCGTGCGGCCGGCCACACTTACCAGGTAACCAAACTCGCCTGAMENSSREHDLVLYGATGFAGRLIAGYVAEHAPAGMRVGLAGRSRSRLGALRSQLPVAAHGWALIEADSEDADSIAALAVGTRVLFTTVGPYAKHGLPVVDACARAGTHYADLAGEVSFVREAIDRYDALARTSGARIVHSCGYDSVPSDLAVLLLHQAAEADGAGGLVEVQLVATAKGGISGGTLESFRGQLEAMRSSTALRSLAADPYALSPDRTREPTTQQPPDAGTVRRSDDGTWTAPFIMAAVNTRIVRRSNALQGWAYGRSLQYGEVMGVARGPAGAVLARAVALGLRAFMGAMAFPPTRGVLDRCLPAPGAGPSTSTQRAGWFHSQVTARTEDGHRYQAIAAGPGDPGYAATAVMAGETALALALDGDRLPTAKGSLTPATALGNVLIQRLRAAGHTYQVTKLANANANANANA
D1-29_041622043COG1132Fatty acid ABC transporter ATP-binding/permease proteinATGAGCTCCCCGCACCGCCCGCCGTCGAACGCTTCTTCCGGAACCACCGGCGGAACGGCACCAGCCGCGAAAGGCGGGCCCGCCGTCGTCGAACGCATCCCGCGTCCGGCGGGCGGACCGGGACGCGGCGGGCCGTTCGCGGGGATGAACGTCCCCGCCGAAAAGGCGATGAACTTCGGGCCGTCGGCCAAACGGCTGCTGGGAACACTCCGGCCGGAGCGGGCGTGGCTGCTGCTGGTGCTTGTAATGGGGGTGGCCAGTGTGGCGCTCTCGGTGATCGGGCCGCGGCTGCTGGGGGAGGGCACCAACCTGATCTTCGCTGGTGTGGTGTCCCGGGAGCTGCCGGCCGGGGTAAGCAAGGCGGACGTGATTGCGCAGCTGCGGGCGTCCGGGCAGAACCAGCAGGCGGACATGCTCACGCCCATGGCGCTGACGCCTGGGCAGGGGATCGACTTCGCGGCGCTGTCCAGCGTGCTGCTGTGGGCGCTGGTGCTGTATGTGCTGGCGTCGGCGTTCATGTGGGTGCAGGCGTATGTGCTGAACGCGGTGGTGCAACGGACGGTGTTCGGGCTGCGGGAGCGGATCGAGGCGAAGATCAACCGGCTGCCGCTGCGGTATTTCGATTCCATCCAGCGCGGCGAGCTGCTGAGCCGCGTGACCAACGACGTGGACAACATTTCGCAGAGCCTGCAGCAGTCCATCAGCCAGGCGGTCACGTCGGTGCTGACCGTGGTGGGTGTGCTGATGATGATGTTCATCCTGTCGCCCACGCTGGCGCTGATTGCGCTGGTGACCGTGCCGATGACGCTGGGGATCACGGCACTGATTGCCAAGCGTTCGCAGAAGCTGTTTGTGGCGCAGTGGAAGCACACGGGGGAGCTGAACGGGCAGATCGAGGAGACGTACACCGGGCACGCGCTGGTGAAGGTGTTCGGCCGGCAGCAGGAGGTGGGCGAGCGGTTCCGGCAGAAGAACGCGGAGCTGTATGAGGCGAGCTTCGGGGCGCAGTTCATTTCCGGGCTGATCATGCCGGCCATGACGTTCATCGGGAACCTGGTGTATGTGGGGATCGCCGTGGTGGGCGGCCTGCAGGTGGCGTCCGGGGCCATGCAGCTGGGCGATGTGCAGGCGTTCATCCAGTACTCGCGGCAGTTCACCATGCCGCTGGCGCAGCTGGGGTCCATGGCCAACCTGCTGCAGTCCGGGGTGGCGTCCGCGGAGCGGGTTTTCTCGTTGTTGGATGAGGACGAGGAGCTGCCGGATCCGTTGCCTGGGGTTTCTTCTGCCGATGGTTTTGGCCGGGGCCGGCTGGTGTTTGAGTCTGTTTCTTTCTCGTATTCGCCGGACAAGCCTTTGATTTCTTCGCTTTCCTTGGTGGCGGAGCCGGGGCAGACGGTGGCAATTGTGGGGCCCACCGGGGCCGGGAAGACCACCCTGGTGAACCTGATGATGCGGTTCTACGAGATTGATGCGGGGCGGATAACGCTCGACGGCGTGGACGTCACCTCGGTGTCCCGGCGTGAGCTGCGCTCGCGGATGGGGATGGTGCTGCAGGATACGTGGCTGTTCGGCGGGACCATCCGGGACAACATCGCGTACGGGCGGCCTTCTGCTACTGAGGACGAGATTTTGGAGGCGGCGCGGGCGACGTACGTGGACCGGTTTGTGCGGTCGCTGCCGGACGGGTACGACACTCTTCTTGAGGACGAAGGCGGGAATGTGTCCGCGGGGGAGAAGCAGCTGCTGACGATTGCGCGGGCTTTCCTGGCGCGGCCTTCGGTTTTGATCCTGGATGAGGCGACGTCTTCGGTGGATACCCGGACGGAGGTGCTGGTGCAGAAGGCGATGAGCGCTTTGAGGTCCGACCGGACTTCGTTTGTGATCGCCCACCGGCTGTCCACCATCCGCGACGCCGACCTCATCCTGGTGATGGAGGCCGGCCAGATCGTCGAGCAGGGGACGCACGCTTCACTGCTTGCTGCGGGCAGGGCGTACGCCCGGCTGTACGAGGCGCAGTTTGCCGCTCCGGTGGCGGAGGTCTGAMSSPHRPPSNASSGTTGGTAPAAKGGPAVVERIPRPAGGPGRGGPFAGMNVPAEKAMNFGPSAKRLLGTLRPERAWLLLVLVMGVASVALSVIGPRLLGEGTNLIFAGVVSRELPAGVSKADVIAQLRASGQNQQADMLTPMALTPGQGIDFAALSSVLLWALVLYVLASAFMWVQAYVLNAVVQRTVFGLRERIEAKINRLPLRYFDSIQRGELLSRVTNDVDNISQSLQQSISQAVTSVLTVVGVLMMMFILSPTLALIALVTVPMTLGITALIAKRSQKLFVAQWKHTGELNGQIEETYTGHALVKVFGRQQEVGERFRQKNAELYEASFGAQFISGLIMPAMTFIGNLVYVGIAVVGGLQVASGAMQLGDVQAFIQYSRQFTMPLAQLGSMANLLQSGVASAERVFSLLDEDEELPDPLPGVSSADGFGRGRLVFESVSFSYSPDKPLISSLSLVAEPGQTVAIVGPTGAGKTTLVNLMMRFYEIDAGRITLDGVDVTSVSRRELRSRMGMVLQDTWLFGGTIRDNIAYGRPSATEDEILEAARATYVDRFVRSLPDGYDTLLEDEGGNVSAGEKQLLTIARAFLARPSVLILDEATSSVDTRTEVLVQKAMSALRSDRTSFVIAHRLSTIRDADLILVMEAGQIVEQGTHASLLAAGRAYARLYEAQFAAPVAEVPGPT0029030_116DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029030-efrB-K18888NANA
D1-29_041631749COG1132putative ABC transporter ATP-binding proteinTTGCTCTGGAAACTGCTTGTTGAATACCTGCGGCCGCACCGGCAGCTGCTGGCCGCCGTCGTGGTTTTCCAGCTGGCGCAGTCCATCGCGTCCCTGTACCTGCCCACCCTGAACGCGGACATCATCGATGAGGGCGTGGCCAAGGGGGACACCGGGGTCATCCTGAACCTGGGCGGCCTGATGCTGGCCATCACGCTGCTGCAGATCGTGTGCGCCGTGATCGCGGTGTACTTCGCAGCGAAGGCGGCGATGGGCGTGGGCCGGGACCTGCGCGGGGCTGTTTTCCAACGGGTGGGCGAGTTCTCTGAGCAGGAAGTCACCAAGTTCGGCGCGCCAAGCCTCATCACAAGATCCACCAACGACGTCCAGCAGGTCCAGCAGCTGGTCCTGATGTCCGCCACCATGCTGGTCACCGCGCCCATGCTCAGCATCGGCGGGGTGATCATGGCCGTGCGGCAGGACGCGCAGCTGTCCTGGCTGATCGCCGTCGCGGTGCCGGTGCTGCTGATCGCCGTCGGCCTGATTACCGTCCGGATGGTGCCGCTGTTCCGGAAGATGCAGAAGCGGATCGACACCGTCAACAGGGTGCTCCGCGAGCAGCTCACCGGCATCCGCGTGGTGCGCGCCTTTGTCCGGGAGGACATCGAAACGGAACGCTTTGCCCGCGCCAACGAGGACGTCACGGACACCGCCCTCCGCACCGGCCGGCTGATGGCGCTCGCGTTCCCGGTGGTGATGCTGGTGCTGAACGTCTCAAGCGTGGCAGTGATCTGGTTCGGCTCGTTCCGGATCCAGGACGGCTCCATGCAGGTGGGCACCCTGATCGCGTTCCTCAGCTACCTCCTGCAGATCCTGATGTCCGTCATGATGGCCACGTTTATGGCCGTGATGATCCCACGGGCAGCCGTCTCGGCGGACCGGATCGGCGAGGTGCTGGGAACCGAATCCAGTGTCCGGCCGCCGCTGCATCCTGTCAGCAGCGCCCCCTCCAGCGACGGGCACCGCCGGGGAGAGCTGGAAATGCTCGACGTCGGATTCGCCTACCCGGGTGCCGACCAGCCCGTCCTTTCCGGCATCAGCTTCACCGCCCGCTCCGGCCAGACGACGGCGATCATCGGCAGCACCGGCGCCGGCAAAACAACCCTGGTGAACCTCATGCCGCGGTTGTTCGACGCCACCACCGGCTCGGTCAGGATCGACGGCGTGGACGTGCGTGAGCTGCACCCGGACCTGCTCTGGGGTCACATCGGTTTGGTCCCGCAGCGGCCCTACCTGTTCACCGGCACCGTGCGCAGCAACCTGCTCTACGGCAAGCCTGACGCCACCGAGGACCAGCTCTGGGAAGCGCTAGGCATCGCCCAGGCCAGGGATTTTGTGGAGGAGATGGAGGGCGGGCTGGACGCCACCATCAGCCAGGGCGGCACCAACGTCTCGGGCGGGCAGCGGCAGCGGCTGGCCATTGCCCGGGCCCTGGTGAAACGGCCCGAGCTCTACATCTTCGACGACTCCTTCTCCTCGCTGGACACCGGCACCGACGCCCGGCTCCGGCAGGCCCTCAAGCGCAGCACCGCCGGCGCCACGCTGGTGATCATCGCCCAGCGCGTGTCCAGCATCGTTGACGCGGACCAGATCTTAGTGCTCGACGGCGGCAGGATCGTGGGGCGCGGAACGCACAGTGAGCTGCTGGAGACGTCCGGGACGTACCGCGAGATCGTCTCGTCCCAGCTGGCAGCGGAGGAGACGGTATGAMLWKLLVEYLRPHRQLLAAVVVFQLAQSIASLYLPTLNADIIDEGVAKGDTGVILNLGGLMLAITLLQIVCAVIAVYFAAKAAMGVGRDLRGAVFQRVGEFSEQEVTKFGAPSLITRSTNDVQQVQQLVLMSATMLVTAPMLSIGGVIMAVRQDAQLSWLIAVAVPVLLIAVGLITVRMVPLFRKMQKRIDTVNRVLREQLTGIRVVRAFVREDIETERFARANEDVTDTALRTGRLMALAFPVVMLVLNVSSVAVIWFGSFRIQDGSMQVGTLIAFLSYLLQILMSVMMATFMAVMIPRAAVSADRIGEVLGTESSVRPPLHPVSSAPSSDGHRRGELEMLDVGFAYPGADQPVLSGISFTARSGQTTAIIGSTGAGKTTLVNLMPRLFDATTGSVRIDGVDVRELHPDLLWGHIGLVPQRPYLFTGTVRSNLLYGKPDATEDQLWEALGIAQARDFVEEMEGGLDATISQGGTNVSGGQRQRLAIARALVKRPELYIFDDSFSSLDTGTDARLRQALKRSTAGATLVIIAQRVSSIVDADQILVLDGGRIVGRGTHSELLETSGTYREIVSSQLAAEETVPGPT0029025_877DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029025-efrA-K18887NANA
D1-29_041641587hbpA_2COG0747Heme-binding protein AATGAACATGCGCAACACAGCGCTTCCCGGGAACAGGTCCAGGAGAGTGCGCGCTTCCTACACGGCGATGCTGATCGCCGGCGTCCTCGCAACTTCGGCGTGCGCCCCATCGAACAGCGATTCCGGCAATGCCCCCGCGAATGGGTCGGGGGCCAGCGATGCGAAGATTACCCTCGGGGTGACGGCTGCACCGCGGTCGCTGGACCCGGCACAGCTTGATGGCGGTACACAGGCCTATGTTTGGGGGTCCATTTACGACACCCTGCTGTATCTGGACAACGACGGCAACCTGAAGCCTAACGCTGTCAAGGAATGGAAATACAGCGACGACGCACTCACCTTGACCTTGACGCTGCGTGACGACCTGAAGTTCAGCAACGGCGAGGCCGCAACGTCGGCAGATGTCAAAGCAACCTTCGAGCGCAACAAGGCGACCCCGGGGCAGCAGACCGACAAATTCACCTCCGTGGAGTCCGTCGAGGCCCCGGATGAACAAACGGTTATCGTCAAGTTCACCGCCCCGGACCCGGCGTTCCTCAACAACATTGCCACTGACGCCGGCGTAATCGCCGATGACAAAAACCTCAGCGATCCCAACATCGCCACCAATCCGATCGGATCGGGCCCATACACCCTCAACACGCAGAAGAGCGTCACTGGCAGCTCCTTCGTGCTTGAGCGACGTGAAGACTACTGGAACCTTGATGCCTACCCGTTCAAGACGATCACGGTTCGAGTAATTTCCGACGCAACGGCTATCGTCAACGCCCTTAAGGCAGGAGAGATTGATACCGGCCAAGTGCAGGCGAACGCGATGCCCCAGTTCCAGGGCAGGCCAGAGTTTAACCACGTTCAGGTGAAAGGCGCGTCTGTCTCCTACCTCAACCTGGCTGACCGGGCCGGTACCAAGCTCAAGCCGCTTGCGGATGTGCGGGTCCGCCAGGCTATTAATTACGCGTTCGACCGCAAGGCAATGGTCGAAAAAATCCTGTTGGGACAGGGTGTGCCCACCGTTCAGCAGTTCAACCTGAACGGAGCCATCTATGACGAGAGCCTTGACTCCACGTACAGCTACGATCCGGAGAAAGCCCGCAAACTCCTCGCCGAGGCAGGATTCTCCAATGGCTTCGAGATATCAATGCCCAGCACCGTAATGTCGACGAACTTTGAGCCCACTATCTCGCAGGCGCTCGGAGACATCGGAATTAGAGTGAACTGGGAACCTGTCCCCATTCAGAACGCGACGGCGGCAGTGGCCGGTGCCAACTACCCGATGTACTTCTTTACAGTGGGAACTGACGTGGGGCCACGTGAGGTAATCCGCCAACTCAAGGGTAAGACCCAGAACCCGTTCCAGTGGACCGTGCCAGAAGTCGACGCGCTCCTCACGGAGGCGAGCTCGGAGGTGGACCCCGAGGCGCGTAACGAAAAGTACAAGAAGCTGAACGAATACGTCGTCGAGGAGGCATTGTTCGCTCCACTGTTCTACAACTCCGCGAATTATGTAACATCCAAGGATGTTCTCTTCCTGGGAAACGGTAAGAAGAACTTCCCGTCCATCCGGACCTTTGATGTAAAAACGGGCTGAMNMRNTALPGNRSRRVRASYTAMLIAGVLATSACAPSNSDSGNAPANGSGASDAKITLGVTAAPRSLDPAQLDGGTQAYVWGSIYDTLLYLDNDGNLKPNAVKEWKYSDDALTLTLTLRDDLKFSNGEAATSADVKATFERNKATPGQQTDKFTSVESVEAPDEQTVIVKFTAPDPAFLNNIATDAGVIADDKNLSDPNIATNPIGSGPYTLNTQKSVTGSSFVLERREDYWNLDAYPFKTITVRVISDATAIVNALKAGEIDTGQVQANAMPQFQGRPEFNHVQVKGASVSYLNLADRAGTKLKPLADVRVRQAINYAFDRKAMVEKILLGQGVPTVQQFNLNGAIYDESLDSTYSYDPEKARKLLAEAGFSNGFEISMPSTVMSTNFEPTISQALGDIGIRVNWEPVPIQNATAAVAGANYPMYFFTVGTDVGPREVIRQLKGKTQNPFQWTVPEVDALLTEASSEVDPEARNEKYKKLNEYVVEEALFAPLFYNSANYVTSKDVLFLGNGKKNFPSIRTFDVKTGPGPT0004430_16795DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_04165870gsiA_2COG1123Glutathione import ATP-binding protein GsiAATGAGTCAGCTTCTGGAAGTCAAAGATCTTCGGGTCTCCTTTGCTGGACGAGGTGTCCGCGCCCGCTCGATAGAAGTGCTGCATGGCGTCTCGCTGTCTATCGCACCTGGCGAGGTATTGGGACTCGTCGGTGAGTCGGGGTCCGGCAAGACGACCATTGGCAGAGCTGTACTGGGCCTTGTTAAATCCAGTGGCGGCAACATTGTGCTAAACGGACAAGACATTACGCATGCTGACGCGAAGACGCGGAGGTCCCTGGCGCGCGAGATCCAAGTGGTTTTTCAGGATCCGTACTCTTCGCTTAACCCGGCACTGACAGTCGGGGACATCCTGAGTGAGCCGCTTATCGTCCAGGGGGCCTCGCCGCGCGATGCGCGGGCGAAGGTGCGCACGCTGCTGGATCAGGTCGGGCTGCCCAGCGATGCTGCCGAGCGGCTACCGAAGGAGTTCAGCGGCGGTCAGCGACAGCGCGTGGCCATCGCACGGGCGCTCGCTCCAGGGCCACGACTGATTGTCTGTGATGAACCTGTTTCCGCCCTCGATCTGTCGACGCAGGCCCTCGTGTTGGATTTGCTCCTCGATATCCAGCGCGAAACGGGCCTCGCATATCTGTTCATTTCGCATGACCTCTCCGTGGTTCGGCATGTGAGCCATCGTGTGGCTGTTATTTACAAGGGCGACATCGTGGAGACGGGGCCAGCGCGGACCGTAACACTCAAGCCGGAGCATCCATACACGCAGCGGCTGCTCCTCGCAGCACCGGTCGCCGACCCCGCCAACCAGGAGAAGCGTAGAACGGAGCGCCGCCGGCTTATCGAGCAGCAGCGGCAGATGGACGAGCAGGCTGGAGCAGCCTCGTTGGCCAGCTGAMSQLLEVKDLRVSFAGRGVRARSIEVLHGVSLSIAPGEVLGLVGESGSGKTTIGRAVLGLVKSSGGNIVLNGQDITHADAKTRRSLAREIQVVFQDPYSSLNPALTVGDILSEPLIVQGASPRDARAKVRTLLDQVGLPSDAAERLPKEFSGGQRQRVAIARALAPGPRLIVCDEPVSALDLSTQALVLDLLLDIQRETGLAYLFISHDLSVVRHVSHRVAVIYKGDIVETGPARTVTLKPEHPYTQRLLLAAPVADPANQEKRRTERRRLIEQQRQMDEQAGAASLASPGPT0004440_7201DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-29_04166207hypothetical proteinATGCTCGTTTCGTTATCGCCCGTAAAAAGCCGCCCGCTCACCCGATCGAGACCGCAGATGCTTCGCGGCGAATGTGAACTGGTCCCGGCAGTTGGACTGGCCAATAGTATCCTAAGCAGCGAGGGCCTGGGCCCGGTATTGCACCGGGCTCAGGCCCTCGAGCTTTTTGGAGATCCCTTGCAGACCCAACCCAAGGGCCTGCATTAGMLVSLSPVKSRPLTRSRPQMLRGECELVPAVGLANSILSSEGLGPVLHRAQALELFGDPLQTQPKGLHNANANANANA
D1-29_041672649hypothetical proteinATGCTGAACTCCCACCTCACTATCACTTCAGATCCAGCCATCGTCCAGTTGACGGCGGTCCAATGGGCCATTGAAAAGCTGCGGGAGCTTGACGGGCCGGCGCTCAGCGTTGGGGGGCCCGGGAAGCATCCCGCCTTGGAGATCGTGCTTCTGGACAACGCTGATACTGACGCGCTCGCACTGGAGGCGCTCGCAGGTTCGAGCGAGGCCGAGTCGTACTCGCTCATAGTCACAGAGCCGTCCTACGGTGGGCGCCGGGTCGCCATTGTGGCCGGGGACGAGCGTGGGTACGCATATGCTCTCTCGGAAATCACGGAGCGCGCCCGTGCTGATGGCCTGGACGGACTTCCGCTTGGCTGGAAGGAGTCCCAGCGCCCTGCTGTCCCGGTGAGAGGCATTCAACGGAACTTTTCAAGCGTCCACGAAGACAGCCCGTGGTTCCACGACCGTTCCTTCTGGACCGAGTATCTCGACCATCTCGCTGCACAGCGCTTCAACCGGTTCCACCTGGCGTTTGGAATGCAGTACAACTACGGGACGGGGTGGGAGAGCCGTACCGCCACGGACAACTACCTTGTTTTCGCCTACCCCTTCCTGCTGGACGTGCCGGGATACCAGGTGCGGGCAGAGGGTATTTCAAGTGCCGAACGTGACCGGAACTTCGAGGCGTTGGCTTACATAGCCCGGGAGACGCGTCGCCGCGGCATGAGTTTTCAACTGGGTCTGTGGAACCACGCTTACGACTTCGGGTACGACTCCCGCCACTGGTATCCGATCCTCGGCATCGGCCCGGAGTCGCACGCGGACTACTCCGCCGATGCCCTCGGTCTACTCCTGGAACGGATACCCGAAATTGACGGGGTCACTTTCCGGGTCCATCATGAGGGCGGGATTCATGAGGAGGGGCATGAGGTCTTCTGGGAGAAAGTTTTCGACCGAATTTCCAGGATTGGCCGCCCAATCGAGGTCGACATGCACGCGAAAGGGGTGGATCAGCCCCTCATTGATGCAGCCAGGAAGCCAAACCTGCGGCCGGTGATCTCGGCAAAATACTTGGCTGAGCATATGGGCCTGCCCTACCACCAGGCCTCGATTCGCCAGCATGAACGGCACCCCCTCCACTTTCCCGGCATGGAGAAGGCGATGACCGGGGTGACGGACGGCGACCGGCGGTTCACGCGCTACGGTTTCGCCGACTACCTCAACGAGGACCGGCCCACCGACGTCATTTTTCGGGTGTGGCCGGGAACTCAGAAATTGCTCTTGTGGGGTGACCCTGCCATCGCCAGTGGCTTCGGCCGGTATTCGACCATTGGCGGTTCCAGAGGCATCGAATTCTGCGAGCCGTTGACCTTCAAGGGACGACGAGGCACCGGGGAACCGGCCCGCCGCGATCCCTACGTACGTGATGATCTCCGCCTCGGTGTGTCGGACTGGCGCAAATACCGGTACACCTACGTGCTTTGGGGCCGTCTCCTCTACGATCCGGATGCGAGTCCGGAGATCTGGCAGCGCACGCTTCGCTCCGAGTACGGCAGTGCCGCAGGCGACTTCGAGACGGCTCTTGCCAACTTGAGCCGCATCCTGCCGTTGGTAACCGTTGTCCATGGCGTCAGCGGGGCCAACAACTTCTACTCTCCCGAAATGTACGTCGACCTGCCCATCTCTGAATGGAAGCTTTCGATGCATTACGCCTGGGATACACCTGATCCCAAGACGTGGGAAGGGGTCAGCCCGTTTGATCCGACCTTGTTCTACAGCGTCGGAGAGTACGCCGATGATGCGGTTCCAGGCCGACTGCAGCCGAAGTACACACCGCTCGAGGTAGCAGCGTGGATTGAGGCGATGGTTGCAAAAGGCGAGCAGGCGTTGTCACGCGCCACCGCCACCGCCTCCTCCGACAGTGCGCAGACGCTGCGCACCATCATCGATCTACGGGTGCTCATCCAGCTCGGACAGTTTTTTGCCGGCAAGTTCCGGTCCGCAGTGCAGTACGCGCTGTTCCGGCGGACGGGCGATACAGGCCTCCTTGAGGACGCAATCCGGATCCTGGAGACCGCGCACGCCGCTTATGCGGGCATCGCGAGGATTGTCCAGGGTGTCTATCAGGACGACCTCGCGTTCGGCGTCGGAACCTCCGACCGTGGCACCTGGTCCGACAGGATCATGGGGATGCGGGAGGACCTTCACCTCCTTAAGCGGGAACTCGAGCGTGCGCCGAAAAAACGGGCCGGTGAAGCACATTCACGACCTGAGCGACGAAAGGAGCGATGGATCGCCGACGCCCGGTTCGAGCACGTGGCATCCTTCGACCGCGGGGAGTCGCTTGAGGTTCGGCTCCTGACCGCAGATCCCGCCATAACCCGTGCTGTACTCCGCTACCGACACCTTAACCAGGCCGAGGACTACGAGACGGTCGAAATGGCGCATATTCACGGCGGCTTCTCCGCAGTACTGCCGTCCGGTTACACATCGTCGGCATTCCCTCTGGTCTACTTCGCTGAGGTGCACACTGACGGGGACCACCCCGTCTTCGTGCCGGCTTTCAACGAAACCCTCTCGAACCAGCCCTACCAGCTCGTGCATAGCTCGACCTGGACCACGAGGAACAGTGCTGATGTAGAGGTACGTTATATAGCCTCCCGCTGAMLNSHLTITSDPAIVQLTAVQWAIEKLRELDGPALSVGGPGKHPALEIVLLDNADTDALALEALAGSSEAESYSLIVTEPSYGGRRVAIVAGDERGYAYALSEITERARADGLDGLPLGWKESQRPAVPVRGIQRNFSSVHEDSPWFHDRSFWTEYLDHLAAQRFNRFHLAFGMQYNYGTGWESRTATDNYLVFAYPFLLDVPGYQVRAEGISSAERDRNFEALAYIARETRRRGMSFQLGLWNHAYDFGYDSRHWYPILGIGPESHADYSADALGLLLERIPEIDGVTFRVHHEGGIHEEGHEVFWEKVFDRISRIGRPIEVDMHAKGVDQPLIDAARKPNLRPVISAKYLAEHMGLPYHQASIRQHERHPLHFPGMEKAMTGVTDGDRRFTRYGFADYLNEDRPTDVIFRVWPGTQKLLLWGDPAIASGFGRYSTIGGSRGIEFCEPLTFKGRRGTGEPARRDPYVRDDLRLGVSDWRKYRYTYVLWGRLLYDPDASPEIWQRTLRSEYGSAAGDFETALANLSRILPLVTVVHGVSGANNFYSPEMYVDLPISEWKLSMHYAWDTPDPKTWEGVSPFDPTLFYSVGEYADDAVPGRLQPKYTPLEVAAWIEAMVAKGEQALSRATATASSDSAQTLRTIIDLRVLIQLGQFFAGKFRSAVQYALFRRTGDTGLLEDAIRILETAHAAYAGIARIVQGVYQDDLAFGVGTSDRGTWSDRIMGMREDLHLLKRELERAPKKRAGEAHSRPERRKERWIADARFEHVASFDRGESLEVRLLTADPAITRAVLRYRHLNQAEDYETVEMAHIHGGFSAVLPSGYTSSAFPLVYFAEVHTDGDHPVFVPAFNETLSNQPYQLVHSSTWTTRNSADVEVRYIASRNANANANANA
D1-29_041682076hypothetical proteinATGCTTCACGGTTCTTCCGGTGAATACGATCGTGACCTGCCCAAAGACAGCCGCTGGCTCGATCCGTACAACGTGCTGCAAACGAATCTGCAGGAAATCGACGTTCATATGGACGTCGACAAGGCTGCTGATGCCGCCGTCGAATACGGCGCGGACACGTGGTTGCTCAACGCGGGCGGGATTGAGTCTTTTTATCCCACCGACCTGCCCTTCCAAACGCGCAATCCGCTCCTCAGCATGCGTCCTTCGGGCGACCTGTTCGGTGACGCCGTGGCAGCAGCGAAGCGGCGCGAACTTAAGATCATTGCCAGGCTGGACATGTCGAAGGTATCGACGCGGATAGCGAAAGAGCATCCTGACTGGCTCTTCCGATCAGTGGAGGGAAAACCGCAGGTATATCACACGCTCTTCAGCGTCTGCCCTTCATCTGAGTACTACCAGTCCCGGACGTTCGATGTGCTCGACGAGCTCATTGATCGCTACGACATCGACGCCGTGTTCTTTAACTGGTTCAACTTTAACGAACGCGATTACGACGAGGTGATGCACGGGCCGTGCCACTGTGACTCGTGCAAGAGTGGGTTTGAGCGCTTCAGTGGCGGGAAAGAACTTCCTGCTGACATGAAGGCGGAGACGTTCGGTCTCTGGCGCCAGTACGTGAGTGCGACACTTGGCGATTTGACCGCGCGGATTGCGGATCATGTGAACTCGAAGTCACGGGACATTGGCGTCATCCTTCGTGCCGGGGCCCCGATTGTCTATTTGGAAGCCAACAACGCCTTCCGATCCATGCCCGGGAAGGAATTGTGGCCACACGCTACGGCGGAGGCGGTCAGCGCCCACGTGTCCTCAAGGCCGGAATCGTCCGTCATGGTCAACTGTGTCGCCTTCATTGACAGCACGTATCGAATGGGTTCAGAGCAACCCGAGCATTTCGCGCAGTACGTGCTTCAGACCATGGCCCGTGGCGGGAATCCTTCGGCGTACTACATGGGCGCGCCCGGGCGTCTCCCCATGGCCTCGAGCATCTCCCTGGGCCGGGAAGTGATGCGATTCCGTAGCCGGCACAGCGACCTGTACCGGACGCTGCGCCCTGCGGCAAACATCGGCCTGGTGCGGCCAGACATCGCCTCGTCGGCACCAAACCACTGGGACGCTCTCGAGGAATTTCGGGGGGTCTACCAGTCACTCCTTGAGGCTCACCTGCCATTCGATGTGATTCCGGTCGACCAGCTGGGAAAGCTCGGAGAGAATGGAGGACTGGACCAGTACTCCCTGCTCGTCTTGCCCGATGTGGGAACATTGGGCAAAGCAGCTGCAGCGGTGGACGCGTTCATCCATCGGGGCGGGAAGATGGTGGCCACCGGTTCCTCCGGTCTAAGCCGTGACGGCGTCGTTGAGCTGCAGTGCAATCCGGCATTTCGCGCCTTGGACTCCGTGCTGTCCGGAACCGAGCTTCGCTCCACTTTCGTGACGGACACTGCTCAGCCCAGGATGGGCGAGTTCCACTATGAGGCACCAGTTGTCCCGGTTTATGGACGATACTTTCCCTATGTATGGAAGCCCGACGCAGCAAAGGTCGGCTTCATGCTTCCCCAAGCTCCGTTCGCTCCGCCCGAACTCGCCTATGGCCACACGGGAAGTGCGCATCCCGATTACGCGCGCAGCATCTATGGAGATGGCGAAGTCGCGTATGTCCCGTGGACAATCGGGCGAACGTATCGGGAGTTCGGAAAAACCGACGTGCGGGACCACCTCCTGGGACTCGTTCAGTCCCTCGTTACCCCGGACATCCGCGGCGACATCCATGAAGGTGTTGAGCTCATTGCAGGACGAAGCGGGAACAGCACTGTCATCCATTTCCTCAACCACACCGGTGCCCGGCGTCGCTCCTATGGACCACACGTTTCCGTCAGCGGAGGCCGGCTGCATTTGACCGGACGCGGCCGGGAGAAGGTCCTGGTGGAGGCTCTGGTCACTGGCCTGGAACTGGATACAGCCGCCGTGAACGACGACCTGGTAATCGATTTGCCCCCACTTGAGCTATTCGAGGTCATCACTGTTACGACGCAGTAAMLHGSSGEYDRDLPKDSRWLDPYNVLQTNLQEIDVHMDVDKAADAAVEYGADTWLLNAGGIESFYPTDLPFQTRNPLLSMRPSGDLFGDAVAAAKRRELKIIARLDMSKVSTRIAKEHPDWLFRSVEGKPQVYHTLFSVCPSSEYYQSRTFDVLDELIDRYDIDAVFFNWFNFNERDYDEVMHGPCHCDSCKSGFERFSGGKELPADMKAETFGLWRQYVSATLGDLTARIADHVNSKSRDIGVILRAGAPIVYLEANNAFRSMPGKELWPHATAEAVSAHVSSRPESSVMVNCVAFIDSTYRMGSEQPEHFAQYVLQTMARGGNPSAYYMGAPGRLPMASSISLGREVMRFRSRHSDLYRTLRPAANIGLVRPDIASSAPNHWDALEEFRGVYQSLLEAHLPFDVIPVDQLGKLGENGGLDQYSLLVLPDVGTLGKAAAAVDAFIHRGGKMVATGSSGLSRDGVVELQCNPAFRALDSVLSGTELRSTFVTDTAQPRMGEFHYEAPVVPVYGRYFPYVWKPDAAKVGFMLPQAPFAPPELAYGHTGSAHPDYARSIYGDGEVAYVPWTIGRTYREFGKTDVRDHLLGLVQSLVTPDIRGDIHEGVELIAGRSGNSTVIHFLNHTGARRRSYGPHVSVSGGRLHLTGRGREKVLVEALVTGLELDTAAVNDDLVIDLPPLELFEVITVTTQNANANANANA
D1-29_041691791btuD_16Vitamin B12 import ATP-binding protein BtuDTTGAGCACCGAATCAGCGATCATCGCGACGGAGGCTCCGGCAACTCCCGTACGCCGGTCGGCATACCGCAGACTGATCCGAGACCCACAAGCCATCATCACGGCCAGCTTCCTGCTTTTGGTCATCATCATCGGCATACTGGCGCCGGTCATCACGCTGCACGGGCCAAACGAGTCATCGCTGGATGCCGTGAACGCCGAAATGGGGACCCCCGGCTACCTACTGGGCGGAGACCAAAGCGGACAGGACATCTTTGCGCGCCTGCTCTACGCGATCAACACGAGCGTCATCTCCGGTCTGATCGGTACCAGTGTGGCAATCGTCATCGGGCTCTTCTTCGGACTGGTTGGCGGGTACTTCGGGAACCGCGTACGGACCTCGGTCGAGTGGATTTTCAACCTGATCATGACCTTCCCGGGAATCCTTCTGCTGATCGTCCTCATGCCGGTGACGAAGGGCGACTACCGGGCCACGATGCTTATCTTTGGCGTCCTTCTTGCCCCGGGTGTCTACCGTATCGTGCGTAACCTGACAGTCGGTGTGAAGAACGAGCTCTACGTCGACGCCGCCCGAGTGTCGGGGCTGTCAACACTGCGGGTCCTGGGCCGGCACGTCATGCCGGTGGTGCGCGGGCCAGTCATCATCTCTGCGGCGTTCCTCACTGGCTCGGCCATCAACGTCCAGGCCGGCCTGGCATTTCTCGGCCTTGGATCCGCTGAGATCCCGAGCTTCGGCGGAATGATCTCGTCCGGCTTTCTCAATCTCTACGTCGACCCGCTTCAGTTCGTTTGGCCGGCGCTGCTGCTCGGGCTGATGTCTGCGTGTCTGGTCCTGCTGGGAAACTCACTGCGGGATGCGCTTGAGGGTGTCCGCCCCAAGGCCTCGAAGGTGGGGGCGCCGGCCCAAGCGGCAGTCACCCCGGCTGGCCAGACCGACGGCACGGACTCTGACCTGCTTCAAGTACAGAACCTGGAAATCTCCTACCCGACGCCGTCAGGCGAAAAGAAGCCCGTGCTCAAGGGGGTCTCACTCGACCTGCGGGCGGGAGAAACCCTCGGACTTGTCGGCGAATCGGGGTCCGGCAAGACCCAGACCGCCTTTGCGATCCTGGGAGTGCTTCCTCCGGAATCAATCATTACGAACGGCTCAATCAAGCTTGAGGGCCGTGAGCTCATTGGGCTGCGTGAAGGGGAGCTCCGCAAGCTTCGCGGCCGTTCCATCGCTTACGTCCCGCAGGAGCCAATGTCGAACCTCGACGCTTCGTTCACGGTGGGCGCCCAGCTTGTCGAGGGCATCCGGAGTGCGACGACGCTTTCGCGGCGCGCCGCTCGGGAACGGGCGCTTGAGCTGATGGAACATGTGGGCATCACCGATCCGCAAAGGACCTTTGACCTGTATCCGCACCAAATCTCCGGCGGCATGGCGCAGCGAATTCTGATCGCCGGTGCCGTAGCGAGCCGACCCAAGCTCCTGATCGCTGACGAACCCACCACTGCCCTCGACGTCACCATCCAGGCTGAGATTCTCGACCTGCTCCGCGATCTTCAGAAGGAGATGGGAATGGCGATTCTACTGGTCACCCACAACTTCGGCGTCGTAGCGGACATCTGCGACCGGATGGCCGTCATGCAGCAGGGCCGGATCGTCGAGACAGGAGACGTGGTGGAGGTGTTCAGGAACCCACAGCACCCCTACACACGGGAGCTTCTGGAATCGATTCTCGATGAGGAAAGTGTCCGCGAAGACGCCCCAGTCGTCAGAGTGCCGGCGGCTAAGGAACTTGCCGGATAGMSTESAIIATEAPATPVRRSAYRRLIRDPQAIITASFLLLVIIIGILAPVITLHGPNESSLDAVNAEMGTPGYLLGGDQSGQDIFARLLYAINTSVISGLIGTSVAIVIGLFFGLVGGYFGNRVRTSVEWIFNLIMTFPGILLLIVLMPVTKGDYRATMLIFGVLLAPGVYRIVRNLTVGVKNELYVDAARVSGLSTLRVLGRHVMPVVRGPVIISAAFLTGSAINVQAGLAFLGLGSAEIPSFGGMISSGFLNLYVDPLQFVWPALLLGLMSACLVLLGNSLRDALEGVRPKASKVGAPAQAAVTPAGQTDGTDSDLLQVQNLEISYPTPSGEKKPVLKGVSLDLRAGETLGLVGESGSGKTQTAFAILGVLPPESIITNGSIKLEGRELIGLREGELRKLRGRSIAYVPQEPMSNLDASFTVGAQLVEGIRSATTLSRRAARERALELMEHVGITDPQRTFDLYPHQISGGMAQRILIAGAVASRPKLLIADEPTTALDVTIQAEILDLLRDLQKEMGMAILLVTHNFGVVADICDRMAVMQQGRIVETGDVVEVFRNPQHPYTRELLESILDEESVREDAPVVRVPAAKELAGPGPT0004435_2459DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-29_04170942dppB_3COG0601Dipeptide transport system permease protein DppBATGCTTCAGTACATTCTTCGCCGTCTCGGTATCGGAGTGATTCTTGCCGCTCTGGTGACCTTTCTTACATATTGGCTGCTGAGCTTTTCATCTGATGGAGTGGCCGCCAATATCCTTGGGCCAGCAGCGACAGCAGAGTCGATCGACGCTCTGAAGAAGGACATGGGACTCGACCGCCCGTTCATCGTTCAGTACTTTGACTGGCTCGGCGGAGTTGTCCGCGGCGACTTCGGAGTCTCCTTTTTTACGAGTGAGGCGGTGGTCGGTGCGGTGGTATCACGTCTTGGCGTGACGCTCTCGATCGTTCTCACCGCACTTATTATCAGTGTCATAGTGGCCGTGGCCCTCGGCGTACTTGCGGCTTCACGTGCCGGGGCGATTGACAGGGTGACGCAGAGCGCGTCGCTGCTTGGGCACCTTCTGCCGAACCTGCTCATTGCAATTGTCCTGGTGGTCGTCCTCTCCATCAATCTGCGTCTCCTGCCTGCAACCGGGTTTACCCCGTTCAGCGAAAGTCCGAGCAAATGGGCCGCGTCAATCACCATTCCGGTGATCGTGCTTGTTATCAACGGAATCGCGAACATCGCCGCCCAGGTACGGGGAACGATGATCGGCGAGCTCCAGAAGGACTACGTCCGGACGCTCCGTACCCGCGGCGTGCCGACGTGGTCCATCGTGTATCGCCATGCGCTGCGCAATGCCGCTGCTCCGGCCCTCGTTGTCCTGTCGCTTGAGTTCATCTCGATGTTCGGCGGTGCACTCATCATCGAGAACGTGTTTGCCCTTCCTGGGTTCGGCTCGTTCGCGTTCAACTCCTCCCTGCAGGGGGACATCCCAGTCATCATGGGCATCACAGTATTCAGTGTGATGCTCGTCGTCAGCGTCAATCTGGTGACGGACCTCATCAATGGTTGGCTAAATCCGAAGGCGAGAATCTATTGAMLQYILRRLGIGVILAALVTFLTYWLLSFSSDGVAANILGPAATAESIDALKKDMGLDRPFIVQYFDWLGGVVRGDFGVSFFTSEAVVGAVVSRLGVTLSIVLTALIISVIVAVALGVLAASRAGAIDRVTQSASLLGHLLPNLLIAIVLVVVLSINLRLLPATGFTPFSESPSKWAASITIPVIVLVINGIANIAAQVRGTMIGELQKDYVRTLRTRGVPTWSIVYRHALRNAAAPALVVLSLEFISMFGGALIIENVFALPGFGSFAFNSSLQGDIPVIMGITVFSVMLVVSVNLVTDLINGWLNPKARIYPGPT0004445_12276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-29_041711035ghrB_3Glyoxylate/hydroxypyruvate reductase BATGGTTGCAGATTCGCCTGTCCACGAGGTACGCAGCGTGCTCGCCACAGTCATGTGGGAGCCTGAGGAAATTGACCAGCTTCGGCAGGCGTTCGCTCCAGCGGAGTTCCTCCACCTTCATCCCGGGGACGCGGACGGCATCGCTGACGCCCTTCAGCGTGTGGATGTTGCCATCCATTTGATGGATATCGATGATCGGTTCCTTGCGGCACCCAATTTGCGCTGGGTGCACTGTGATCATTCCGGATTGACACGCTCGGCACGTCCCGAGGTGTTCGAGAAGGGGATTGTCGTTACAGGATCGGCCGGCAGGTCCGCCCAGGCCCTTGCGCAGCACGGATTCTACTTCGCCCTGTCATTGACCTTTGACGCGAAGCAGCTTTTCGCAATGCAGGACGCACACGTGTGGCGCGGCATTCCGGACTACCACAACCGTTTGGCGCTATGGGGGAAGACCCTGGGGATCGTCGGATTGGGGAACACCGGCCAGGCGATGGCTGAACTAGGCAAGGCGTTTGGTATGAACGTCATCGGCTACCGTCGGAGCGCCGGTGATCTCCCCGGCGGTGTGGACAGGATGCTTTCAGCTGATGCGGGCGATTCCCTGGATGCACTTTTAGAAGAATCCGACGTGGTCATGCTGGCTGCTCCCCTGAACGACGAGACCTACCATCTGTTCTCCCGCGATCAGTTCAAACGGATGAAGAACGACGCCTACCTCATCAACATGGCCCGGGGCCAGCTCGTCGACCAGGACGCACTGATCAGCGCGTTGAACGCAGGAGAAATTGCGGGAGCCGGACTCGATGTGACTGACCCTGAGCCCTTGCCGGGCGACTCCCCGCTTTGGGACATGTCAAACGTCATAATTACGCCCCATATGACCCCGAAGCTTCCGTCACGCACCCAGCGGTCGATCGATCTCATCCTTGAGAACCTCCACCGGTACCAGCGCAATGAGCCGCTGCTCAACGCCCTTACGCCACGGGATGTCTTCACCAAAGGCCCCCGTCCAACTCAACCGATCCATTCCTGAMVADSPVHEVRSVLATVMWEPEEIDQLRQAFAPAEFLHLHPGDADGIADALQRVDVAIHLMDIDDRFLAAPNLRWVHCDHSGLTRSARPEVFEKGIVVTGSAGRSAQALAQHGFYFALSLTFDAKQLFAMQDAHVWRGIPDYHNRLALWGKTLGIVGLGNTGQAMAELGKAFGMNVIGYRRSAGDLPGGVDRMLSADAGDSLDALLEESDVVMLAAPLNDETYHLFSRDQFKRMKNDAYLINMARGQLVDQDALISALNAGEIAGAGLDVTDPEPLPGDSPLWDMSNVIITPHMTPKLPSRTQRSIDLILENLHRYQRNEPLLNALTPRDVFTKGPRPTQPIHSNANANANANA
D1-29_041721545hypothetical proteinATGCCTCAAATCCACTCACGGCGCCGCGCGATCGGCGCCATCGCCGCCGCAACCATCCTGGCCCTCTCGGCCTGCGGCACGGGCGAAACCAAGCCTTCGGCCACTGGAGGCGGTAACAGCGACAGCACCGCGACGGTCGCACTCGGCGTGCAGGCCCCGCCCAATTCGTTGGACCCTGCACAGCTGCATGACGGCACCCAACGGTACGTCTGGTCGTCCCTCTACGACACGCTTATTTACAGCAACCACGACGGCAAGCTGGTACCAGCTGCCGCCGAGAGCTGGGAGTACTCCGACGACGCACTCACGCTGACCCTGAAACTCCGGGACGACCTCACCTTCAGCGACGGTGATCCTGTCACCTCGGCGGCGGTGAAGGCCACACTGGAACGCACCAAAAACACCCCGGGACCGCAGCAGAGCAACTTGGCTGCTATCGAGTCCGTCGAGGCTCCCGATGAGCGGACCGCTGTCCTCCGTCTCAAGCATCCGGATCCCAACCTCCTTGTCGCTCTCTCCTATGGGTCCGGTGTCATCGGTGACCCCGACACGCTCGCTGACCCGAGTACCGCCCTCAACCCGGTAGCTTCCGGCCCGTACGTCCTCAACAAGGACAAGACGATCGCTGGGACGACCTACGTCCTGGAACGGCGCGAGGACCACTGGAATGCGGACGCCTACCCGTTCAAGACGGTCACCATCAGGGCGATTCCGGACCGGACTGCGCTCTTCAATGCACTGCTCACCGGAGAACTCGACGCCGGCAGCGTCGACGGGACCCAGGCGGAGCAGGCTAAGGGCGGCGGACTGAACGTGAAGCGCGTCGATTCCACTGCGATCGCTGAGCTGGTGCTCGCCGACCGCGCAGGGACCGTGACCCCGGCGCTTGCCGATGTCCGGGTCCGCAAGGCCATCAACATGGCCCTGGACAAGGAGGGCATCGTGAAAGCGATCCTTCGCGGCAACGGCAAGACGACCAATCAGGTCTTCAACGATTTTTCGCCGGCATACGACCCGGAACTCGACGACGTCTACCGCCATGACCCCGAAGCGGCGCGCAAGCTTCTTACTGAAGCTGGCTACCCGGACGGCTTCAAACTGGTGATGCCCGCCAACCTGCCGTCGCTGCAATATCAGCCCACCATCAGTCAAGCACTCGGGGATATCGGAATAGAGGTGGAATGGGAGCCCGTGCCCGCCCAGAATGCCGGACAGAATACCAAATGGGGTGCCTACTGGAACATCGGTGCCACTGCGGCGGCAACCAGGACGGCAGCTGTGTATTACCGGTCGGGTGGTTCCCAGAATCCATTCAAGTACACGGATCCTGAACTCGACAAACTGTTCGAGCAATTGGATGCCGAGACAGATCCCGAGCGTCAGGGAGCAATCCTGAAGGAAATCAACGAATTCGGAGTGCAGGACGCCTGGTTCGCTCCAGTTTTCTCGCAGGCGGCGCTCTGGGCGACTCAGCCCGGCTTCGAATACGTCGGCACGGGTGTATCGCTGTTCGACGTCCGCAATTTCGGCACAAACAACAAATAGMPQIHSRRRAIGAIAAATILALSACGTGETKPSATGGGNSDSTATVALGVQAPPNSLDPAQLHDGTQRYVWSSLYDTLIYSNHDGKLVPAAAESWEYSDDALTLTLKLRDDLTFSDGDPVTSAAVKATLERTKNTPGPQQSNLAAIESVEAPDERTAVLRLKHPDPNLLVALSYGSGVIGDPDTLADPSTALNPVASGPYVLNKDKTIAGTTYVLERREDHWNADAYPFKTVTIRAIPDRTALFNALLTGELDAGSVDGTQAEQAKGGGLNVKRVDSTAIAELVLADRAGTVTPALADVRVRKAINMALDKEGIVKAILRGNGKTTNQVFNDFSPAYDPELDDVYRHDPEAARKLLTEAGYPDGFKLVMPANLPSLQYQPTISQALGDIGIEVEWEPVPAQNAGQNTKWGAYWNIGATAAATRTAAVYYRSGGSQNPFKYTDPELDKLFEQLDAETDPERQGAILKEINEFGVQDAWFAPVFSQAALWATQPGFEYVGTGVSLFDVRNFGTNNKPGPT0004430_16795DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-29_04173834COG10283-beta-hydroxycholanate 3-dehydrogenase (NAD(+)) 2ATGGGTGCCCCCGGCCCTCAACGAATCCACATCATCACCGTCTGGAAGGACATCATGGGCAACGAAGCCACGTGGCAAGAAGCCATTACAAACAACCGTTTTGCAGGGAAAACCGTCATCGTCACCGGTGCAGCCTCCGGGATCGGGCAGGCGACCGCCCTGCGCATCGCGAAGGAGGGTGGCAAGGTCATCGCTGCTGACATCAGCAAGGAACGCCTCGACGCCCTGGTGGAAGAGAACGCGGGCCTGGACCTGGTGCCTGTGCCCGGCGACGTCTCCACCGAAGAAACGGTCGCCGCAATCGTCGCGGCTGCCGGAGGGCGCGTCCACGCCCTGGCCAACGTCGCCGGGATCATGGACAACTTCGCGCCCATCCACGAGGTGGACGACGAACTCTGGGACCGCGTTTTCCGGATCAACGTCACCGCTCTTATGCGCCTCACCCGCGCCGTTGTCCCGCTCATGCTCGACGCCGGCGCAGGCTCGGTGGTCAACGTCTCCTCGGAGGCCGGCATCCGCGGCTCGGCTGCCGGCGCCGCCTACACCGCCTCCAAGCATGCCGTTGTCGGCCTCACCAAGAACTCGGCAGTGATCTACGGGCCCAAGGGACTTCGCTTCAACGCGGTGGCTCCCGGCCCCACGATCACCGGCATCGTGGCGAACTTCGGATCCCGGATGGCCGCAGAACGCCTTGGCCCGCTCATGCAGGCCACCATCCCCACCCCGGCAACGGCCGCGCAGTTGGCTGCCTCCATCACCTTCCTGCTCAGCGACGATGGCACCAACATCAACGGCGCCATCCTGGCTTCCGACGGCGGCTGGTCAGCCCTGTAGMGAPGPQRIHIITVWKDIMGNEATWQEAITNNRFAGKTVIVTGAASGIGQATALRIAKEGGKVIAADISKERLDALVEENAGLDLVPVPGDVSTEETVAAIVAAAGGRVHALANVAGIMDNFAPIHEVDDELWDRVFRINVTALMRLTRAVVPLMLDAGAGSVVNVSSEAGIRGSAAGAAYTASKHAVVGLTKNSAVIYGPKGLRFNAVAPGPTITGIVANFGSRMAAERLGPLMQATIPTPATAAQLAASITFLLSDDGTNINGAILASDGGWSALPGPT0030530_3PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-LIPID_METABOLISM|OXIDOREDUCTASEPUTATIVE-BILE_ACID_BIOSYNTHESIS,PGPT0030530-3beta_hydroxycholanate_3_dehydrogenase_NAD+_EC_1_1_1_391-K22606
D1-29_041741647ksdDCOG10533-oxosteroid 1-dehydrogenaseATGTCAGAGTCAAAGCTTTTTGACCACAGCTATGACGTCGTGGTCGTCGGCACCGGTGCCGCGGGACTGGCGACAGCCATGGGCGCCGCCGATGAAGGCCTTCGGGTACTCCTGCTCGAAAGCACCGGAAAGTGGGGCGGCAACACCGCCATGTCCGGGGGCGGCATGTGGATGCCGAATAACCCGCTGATGCAGCGTGACCGCGCCGGCGACTCCCGCGGTGAGGCGCTGACCTATCTGGAGGCGACGGTCGGCGAGGAGTTCCGGGCCACGACGCGGGCCCGGAAAGAGGCGTTCGTCGACGGCGTCGCCGACTTCGTCAACACAGCAGAGAAGTACGGCGTGAGATTCGTGCGTGCGGCTGACTACCCGGACTACTACCCCGAGCTCCCGGGCGGCAAGATCGGCCGTGGCCTGGAGGTGAAGCCGTTCAATATCAAGAGGATCGGCGATTGGTGGACGACGTGCCAGGCGCCGGTCGCACTCCCGGTGAAGACCGACGACATTTGGCTTCTGGGCCGGGCCTGGTCAACACCGTCCGGCTTCATCCGCGGGGCGCAGCTCGTCTTCCGCGCCCTCGGCGGGGCGGTCACCGGCAAGAAGCTCGCCGGCATTGGCGCCGGATTCGCCGCTGCCTTCCTCGACGTCGTCGTCCAGAAGCAAGGTGCTGACCTGTGGCTGAATGCCCCGCTGCAGGAACTCATCGTGGAGGACGGCCGTGTCGCAGGGGTACGGATAACCCGGGACGGCGAAGCACTGACAATTGGTGCGGCGCGCGGCGTGATGCTGGCCGGCGGCGGCTTCGACCATAACAAGGACCTCCGCCAGAAGCACCACGGAATCGACGGCGCCCCGTCAGGCGCCCCGGGCAACCTCGGGCGGCCCATCGAAATTGCGCAAGACAACGGCGCCGCGCTTGAGCTCATGGACGACGCCTGGTGGGGCGGATCGGTCGCAGCAGCGCCTGGCCATGGCGCCGCATTCATTGTGGGTGAGCGTTCCCTGCCCTACTCGGTCATCCTCGACGCCAAGGGCGATCGGTTCGCGAACGAGTCCGAGTCCTACGTCGACCTCGGCCACCACATGCTCGAGCACGACAAGGACGGCCCGTACTGGCTGGTCGGAGACGCCCGGCACGCCCGCCGCTACCTCCGCACCTTCGCGATCGACCCGAAGAACAACAAGGCCATGAAAGAGGCGGGGATTATGGTCAAAGCGGACACAATTCCCGGGCTCGCTGCGAAACTCGACATGGATCCCGCCCGCCTGGAGGCGACCATCCACCGGTTCAACGGCTTTGCCAGGGCCGGTGTCGACGGCGACTTTGGGCGCGGCAACTCAGCCTACGACCGCTACTACGGCGACCCCACGGTCCACCCCAACGCCTGCCTCGGTCCGCTGGAAAAGGGTCCGTTCACCGCGTTCAAGGTGGTGATTGGAGATCTCGGCACCAAGGGCGGCGTCGTCACCGACGCCGAGGCCCGGGCATTGCGCGAGGACGGCACGGTCATCGAAGGCCTCTACTCGGCCGGCAACAACTCCGCCTCCGTCATGGGACGGACATATCCCGGCCCAGGTTCCACTATTGGCCCCGCCGTCGTGTTTGGTCTCCGCGGCGCCCGCCACATGGCACGCCAAGGCCATTGAMSESKLFDHSYDVVVVGTGAAGLATAMGAADEGLRVLLLESTGKWGGNTAMSGGGMWMPNNPLMQRDRAGDSRGEALTYLEATVGEEFRATTRARKEAFVDGVADFVNTAEKYGVRFVRAADYPDYYPELPGGKIGRGLEVKPFNIKRIGDWWTTCQAPVALPVKTDDIWLLGRAWSTPSGFIRGAQLVFRALGGAVTGKKLAGIGAGFAAAFLDVVVQKQGADLWLNAPLQELIVEDGRVAGVRITRDGEALTIGAARGVMLAGGGFDHNKDLRQKHHGIDGAPSGAPGNLGRPIEIAQDNGAALELMDDAWWGGSVAAAPGHGAAFIVGERSLPYSVILDAKGDRFANESESYVDLGHHMLEHDKDGPYWLVGDARHARRYLRTFAIDPKNNKAMKEAGIMVKADTIPGLAAKLDMDPARLEATIHRFNGFARAGVDGDFGRGNSAYDRYYGDPTVHPNACLGPLEKGPFTAFKVVIGDLGTKGGVVTDAEARALREDGTVIEGLYSAGNNSASVMGRTYPGPGSTIGPAVVFGLRGARHMARQGHPGPT0006680_553DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006680-kstD-K05898NANA
D1-29_04175144hypothetical proteinATGAACTTTCCCAACGAATTCCTCTGGGGTGCCTCCACCGCACCCCATCAGATCGAAGGCAACAACGTCAACAGTGACTTCTGGGCCCGGGAGCAGCTCCGGGCCACTTTTCCAGCGCGGAACTGGCCCACTACCGCCGCATGAMNFPNEFLWGASTAPHQIEGNNVNSDFWAREQLRATFPARNWPTTAANANANANANA
D1-29_04176348hypothetical proteinATGATCGACACCGCACTCGCGCTGGGCCTGAAGCCTGTCATCACGCTGCACCACTTCACAAATCCCCGGTGGTTCGCCGAGGAGGGCGGGTGGATGGGGCCGCCGGCAGTCGAGCGGTTCACGGCATATGCCGAAGCCGTTGCAGGCATTCTCGATGGCGTTGACTGGATCTGCACCATGAACGAGCCCAATATGCTCGCGTTGATGACGACGATGAGCCGTGCAGCCGAGCAGCAGACAGACAAAAAGTGGCTCAGCCCCACCGTCGACGATGATGCCCGCCCAGTCCTGCCCGACCCCAACCCTGAGATCGGCTACCGGCTAGTCGAGGCATCACGCCGTCCGTGAMIDTALALGLKPVITLHHFTNPRWFAEEGGWMGPPAVERFTAYAEAVAGILDGVDWICTMNEPNMLALMTTMSRAAEQQTDKKWLSPTVDDDARPVLPDPNPEIGYRLVEASRRPPGPT0019165_2956DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019165-bglB-K05350NANA
D1-29_041771668mdtD_3Putative multidrug resistance protein MdtDGTGAGTACCAAGAGCGTCGCAGTTGAACAAGCCGGCGGAAAAGTTCGGAGACATGCGCCTTTGGTGGCTGCCCTTGCCTTTGCTGGGTTGGGTGGGTCGTTCATGCAGACCATCCTCATTCCGATCCAGTCGAAGTTGCCCGAGCTGCTGGAGGCCGGCAGAGATGACACCGCTTGGGTCATCACTGTGACGCTCTTGGTGGCGGCCATTTGCACCCCTGTCTCGGGAAAGCTGGGGGATATGTATGGCAAGCGGCGCGTTTCCATCATTTTGCTGTCGCTCCTGGTGGCTGGGTCAGTCGTCTGTGCGTTCTCGCTGTCGGTTCTGCCCCTAATTATTGGCCGGGCGCTGCAGGGTATGGGAACGGGTGTCATACCCCTGGGGATAGCCATTTTGAGGGATGAGCTTCCTCCAGGAAAACTCGGCGGAGCAATCGCCCTGGTAAGCGCCACCTTGGGCGTTGGCGGTGCTCTGGGTCTCCCGGTCAGTGCGCTGGTGACGGAGTACTTTGACTGGCATGCGCTCTTCTGGGTCTCTGCTGGAATCGGCGCAGTCGCTGTGGCGCTGTATCTCCTCGTTGTTCCGGCTGGGGAATCCCGCAATCAGGGGCGGTTCGATTTTTGGGGCGCCGTTGGCCTCGCCATGGGGTTGGTGGGCTTGCTGCTTGCCCTTTCGCGGGGGAACACCTGGGGTTGGCTGAGCGTACCAACGCTGGTGTCTTTATTGATCGGAATTCTCTCGCTGCTGGCGTGGGGATGGTACGAACTCCGGAGACAGAACCCGTTGGTTAACCTTCTTGTGAGCTCCAAAGGGCCTGTCCTGATGACAAACCTGGCGTCGGTCGCCATGGGATTTGCTCTCTTTTCATCCAGCATCGTCTTTCCCCAATTGCTCCAGTTGCCGGAATCTTCCGGCGGTCTCGGATTGAGCATTGTGGATGCGAGCCTGATTCTCGTCCCGTCAGGCTTGGCGATGCTCGCCATGGCACCTATTGCGGGACGCATAAGCCGGCGCGCGGGCCCGAAGCTGCTCCTTGTAGCAGGGGCAACCATCATCGCACTCGCGTATCTCGCAGCTGTGCTCATGCTGCCAAGCATTTGGCTTGTGCTGGTCGTCAACATGATGATCGGAATTGGCATCGGGCTCGGCTATGCGGCTATGCCGACGTTGATTATGCTCGCTGTTCCGGTGGGAGAGACCGGGGCAGCAAACGGCTTGAATACCCTGATGCGTGCATTGGGAACAAGCATTGCCGCAGCTGTTGTGGCAGCCGTTCTCGCTGGCTCCGCCGGGGCTGCAGGGGCACCGATGAACCGAGTCAACAGGGATTTTTTCTGGCACTTGTCCTCGGGCTGCCTGCAGCTGTGGTTTGCGGAGTCCTGGCCGCGTTCATTCCGAAACCGCGGGTTGTGTGACAGAAGGGGAAACAGACCCGCTCTTGGCCACGTTCCCAAGCCATGCCAGGCTCGGTTTCGGGTGGCGCTCGAACATGTCCTCGCCGCCCGGCAAAGCTACCAGTGCCTGGTTCGCCACAGTCCATCCCACTGCGGCGCCGGTCCGTTCCCGCACGAGATCACGGACGGCGTGATGCCTCGACTAGCCGGTAGCCGATCTCAGGGTTGGGGTCGGGCAGGACTGGGCGGGCATCATCGTCGACGGTGGGGCTGAMSTKSVAVEQAGGKVRRHAPLVAALAFAGLGGSFMQTILIPIQSKLPELLEAGRDDTAWVITVTLLVAAICTPVSGKLGDMYGKRRVSIILLSLLVAGSVVCAFSLSVLPLIIGRALQGMGTGVIPLGIAILRDELPPGKLGGAIALVSATLGVGGALGLPVSALVTEYFDWHALFWVSAGIGAVAVALYLLVVPAGESRNQGRFDFWGAVGLAMGLVGLLLALSRGNTWGWLSVPTLVSLLIGILSLLAWGWYELRRQNPLVNLLVSSKGPVLMTNLASVAMGFALFSSSIVFPQLLQLPESSGGLGLSIVDASLILVPSGLAMLAMAPIAGRISRRAGPKLLLVAGATIIALAYLAAVLMLPSIWLVLVVNMMIGIGIGLGYAAMPTLIMLAVPVGETGAANGLNTLMRALGTSIAAAVVAAVLAGSAGAAGAPMNRVNRDFFWHLSSGCLQLWFAESWPRSFRNRGLCDRRGNRPALGHVPKPCQARFRVALEHVLAARQSYQCLVRHSPSHCGAGPFPHEITDGVMPRLAGSRSQGWGRAGLGGHHRRRWGNANANANANA
D1-29_04178750iclR_3COG1414Transcriptional repressor IclRATGACTGAAAAATCCCCTGTTGGTGTACAGGCCGTCGGACGCGTGTTTGAACTGTTGGAACTGATCGAAAACCTCGGGGGAGCCGCCACACTGAGCGAACTCTCCTCGTCCACCCATATTCCCCCGCCTAGCATCCACCGCCATCTGCGCACCCTGGTCACCCTCGGCTGTATTCGCCAGCTCCCCAACCGTCGCTATGCACTGGGTCCCCGGCTGATCACGTTGGGAGATGGAGCAATCAAACAACTCGGTGCTCTGGCCCTCCCGCAACTCAAGACGCTGGTGGACCAGCTGGGAGAGAGCGCCAAGATGGCGGTGCTTGATGTGGACATGGTGGTTTATGTGGCTCAGGTGCCCTCTCTTCATTCCATGCGCACTTCTACGGAAGTGGGCCGCCGCGCCCACACCCATACGACAGGAATTGGCAAAGCCATTCTTGCCCAATTGAGCGAAGACACGGTCCAGCAAATACTCATGCGGGCAGGAATGCCCACCCCGACGGCCAGAAGCATCAGCGGGGCCAGCGACCTGCTGGCGGACCTCAGGCTCATCCGGGAAAGAGGTTTTTCGGTCGACGAGCAAGAGCAAGAAATTGGCGTCCGCTGTTTTGCCGTAGCGGTCCCTGATGCACCTACACCCACAGCCATTTCAGTGTCCGGCCCTGTTTCCCGGCTGGACGAGCACTTCGCCAGCAGAGCGGTGCCCATCCTTACCAAGGCTGCCCAAACCATCTCGGAGAAGCTTCAGTGAMTEKSPVGVQAVGRVFELLELIENLGGAATLSELSSSTHIPPPSIHRHLRTLVTLGCIRQLPNRRYALGPRLITLGDGAIKQLGALALPQLKTLVDQLGESAKMAVLDVDMVVYVAQVPSLHSMRTSTEVGRRAHTHTTGIGKAILAQLSEDTVQQILMRAGMPTPTARSISGASDLLADLRLIRERGFSVDEQEQEIGVRCFAVAVPDAPTPTAISVSGPVSRLDEHFASRAVPILTKAAQTISEKLQNANANANANA
D1-29_04179444hypothetical proteinATGACAGCTGACGTGACGGCAGCCCTGGTGTACGAACTGCTAGGCGTCCAACGTGCACTGCGCCGCATTGATACGGCCAGCCTGCGTGGAGAAGGACTTGGAGTAGCCCTGCACTTCGTGCTTCGGTCCATCAGTGACGGGGAATGCAGGGCTACGCAGCTTGCCGGCCGTCTCGGCGTCGGCGCGCCGGTCCTCAGCCGGCAAATCGCCGAGTTGGAAGAGCAAGGCTTGCTGGTCCGAAGAAAGGACCCCAGGGACGGCCGTGCTCATCTTCTCGCACTGACGCCGGCGGGCGAGGACAAACTCCGGCATGTGCAAACGCAACGATCAGCGCTCTTTCAGCAGTGTCTCGGAGAATGGAGCGAGAGCGATGCTGTCAATGCAGCGGAGGCACTCCGCCAGCTCACGGAATCCCTGACGAAGTCAGCCCTGAAAACACCATGAMTADVTAALVYELLGVQRALRRIDTASLRGEGLGVALHFVLRSISDGECRATQLAGRLGVGAPVLSRQIAELEEQGLLVRRKDPRDGRAHLLALTPAGEDKLRHVQTQRSALFQQCLGEWSESDAVNAAEALRQLTESLTKSALKTPNANANANANA
D1-29_04180879garR_2COG20842-hydroxy-3-oxopropionate reductaseGTGAGCAACGTTGCAGTTATCGGACTCGGAATCATGGGCCTGCCCATGGCCATCAACCTGGTCAAGGCCGGCCACACCGTCACCGGCTTCAACCGCAGCCAGGACAGGATCGACAAGCTCGTCTCCGAAGGCGGCAAGGGCGCCGCCGGGATCGCGGACGCGGTCAAGGACGCCGACGTCGTCATCACCATGGTCCCTGACTCCCCCGATGTTGAAGGTGTCGTCAGCGGCGAAGAAGGCGTCTTCGCCAACGCGAAGAAGGGCGCGCTCTGGATCGACGCGTCCAGCATCCGCCCCGACGTCGCCAAGCGCCTCTCCGACGACGCCCGCGACGCCGGCATCCGCCCCCTCGACGCACCGGTCTCCGGCGGCGAACAGGGCGCCATCGACGCCGCCCTGTCCATCATGGTCGGCGGGAACAAGGAAGACTTCGACGCAGCCGCGGACGTCCTGAACGCAGTCGGCAAAACCATCGTCCACGTCGGACCCTCCGGCTCCGGCCAGACCGTCAAGGCAGCCAACCAGCTCCTCGTCGCCGTCAACATCGAAGTCCTCGCCGAAGCGATCGCCTTCCTCGAGGCCTACGGCGTGGACACCGACGCCGCGCTCAAGGTCCTCGGCGGCGGCCTGGCCGGCTCCAAGGTCCTGGAGCAGAAGGGCCAGAAGATGCTGGACCGCAACTTCGACCCCGGCTTCCGCCTGGCCCTGCACCACAAGGACCTGGGCATCGTCACCTCAGCCGCCCGCGAAGCCAGCGTCGCCGTCCCCCTCGGCGCCGTCGTCGCACAGCTCGTCGCCGCCACCGTCAACCAGGGCGACGGCGCACTGGACCACTCCGGACTCTTCAAGCAGGTCCTCCAGCTCAGCGGCCGCGAGTAAMSNVAVIGLGIMGLPMAINLVKAGHTVTGFNRSQDRIDKLVSEGGKGAAGIADAVKDADVVITMVPDSPDVEGVVSGEEGVFANAKKGALWIDASSIRPDVAKRLSDDARDAGIRPLDAPVSGGEQGAIDAALSIMVGGNKEDFDAAADVLNAVGKTIVHVGPSGSGQTVKAANQLLVAVNIEVLAEAIAFLEAYGVDTDAALKVLGGGLAGSKVLEQKGQKMLDRNFDPGFRLALHHKDLGIVTSAAREASVAVPLGAVVAQLVAATVNQGDGALDHSGLFKQVLQLSGREPGPT0018170_839DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-29_04181588hypothetical proteinATGACTGGTAAACCAGAGTCCGGCGTTCCAGCCCATATCGTGGTGATGGGCGTGACCAGCTGCGGCAAAAGTACAGTGGGTGCCGCCATCGCTGCCCGCCTCGGGGCAGAGTTCGTCGACGGAGACTCGCTGCACCCCCAGTCCAACATTGACAAGATGGCCTCCGGTACTCCACTGGACGACGGCGATCGGGCACCATGGCTCGCCGAAATCGGCAGGCGCTTCTCGGCGTCGCAGACCGGGCTGGTGATCGCATGCAGCGCACTTAAGCGCAGCTACCGTGACATTATCCGCAACGGCGACTCCACAGTAAGGTTCCTCCACCTGAACGGGGCACGGGACCTGCTCGCCAGCCGGATGGCCGCGCGGCCGGGCCATTTCATGCCCCTGTCGCTGCTGGACTCGCAGCTGGAAACGCTGGAGGACCTCGAGTCCGATGAGGCCGGAGTGGTGGTAGACATCGACACGCCCGTCGAGCAGATCGTGTCATTCACTTTAGCTTCGCTCGTGCACGCCGGCACGAATTCGTCGGCGCCGCGCCGCACTTATCGACCAACTACTTCGATCAGCATTGGAGAACCATCGTGAMTGKPESGVPAHIVVMGVTSCGKSTVGAAIAARLGAEFVDGDSLHPQSNIDKMASGTPLDDGDRAPWLAEIGRRFSASQTGLVIACSALKRSYRDIIRNGDSTVRFLHLNGARDLLASRMAARPGHFMPLSLLDSQLETLEDLESDEAGVVVDIDTPVEQIVSFTLASLVHAGTNSSAPRRTYRPTTSISIGEPSPGPT0018055_1549DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
D1-29_041821230rspA_2COG4948D-galactonate dehydratase family member RspAGTGAAAATCATTGCCGCGGAAGTCTTCGTGACCAGTCCGTCGCGTAACTTCGTGACCCTGCGCATCACCACCGAGGACGGGGTGACCGGCATCGGTGACGCCACCCTGAACGGGCGCGAGCTTGCCGTAGCGGCCTACCTGAAGGAACATGTTGCGCAGCTGCTGATCGGCAAGGATCCGCACCGGATCGAGGACACCTGGCAGTTCCTGTACCGCTCCTCGTACTGGCGCCGTGGCCCGGTCACCATGGCCGCGATCGCCGCCGTCGACATGGCGTTGTGGGACATCAAAGGCAAAATGGCCGGCATGCCCGTCTACCAGCTCCTGGGCGGGGCCTCCCGTAACGGGCTGCGGGCCTACGGCCATGCCTCAGGCGCGGACATCCCGTCCCTGTTTGACTCGGTCCGGGAACACTTGGAACTGGGCTACAAGTCCATCCGGATCCAGACCGCCGTTCCCGGTATCAAAGCTGTCTACGGGGTTGCCGCCCAGGCGCAGGCCTCGGGGGAGCGCTACGACTACGAGCCCGCCGGCCGCGGCGCCTTCCCGCTGGAGGAGGACTGGGACACCCGCGCGTACCTGCGCCACCTGCCCAGCGTGTTCGAGGCGGTCCGGAACGAATTTGGCCCGGAAATCCCGCTCCTGCACGACGGCCATCACCGGATGACCCCCATCCAGGCAGCCAAGCTGGGCAAGGCGCTGGAACCGTATGACCTGTTCTGGCTGGAGGACTGCACCCCCGCCGAGAACCAGGAGGGCCTGCGCCTGGTCCGCCAGCACACCACCACCCCGTTGGCCATTGGGGAAATCTTCAACACGGTATGGGACTTCCAGACAGTCATCAAGGAACAGCTGATCGACTACGTCCGGGCCGCGTCCACCCACTTCGGCGGGATCTCGCCGCTGAAGAAGGTGATGGACTTCGCCGCGCAGTACCAGATCAAGTCCGGCTTCCACGGCCCCACCGACATCTCCCCGGTGGGATTCGGCGCGCAGCTTCACGTGGGCCTGGCCATCCACAATTACGGCATCCAGGAATATATGCCCCACTCGGACAAGACCAACGAGGTCTTCGAACAGTCCATGTCCTTCGTGGACGGCTACCTCCACCCAGGGGACAAGCCCGGCATCGGCGTCGAATTCAACGAGGAAGCCGCGGCAGCCTACCCGTACCAGCAGGCCTACCTGCCTTACAACCGCCTCGTCGACGGCACGGTCCATGACTGGTAAMKIIAAEVFVTSPSRNFVTLRITTEDGVTGIGDATLNGRELAVAAYLKEHVAQLLIGKDPHRIEDTWQFLYRSSYWRRGPVTMAAIAAVDMALWDIKGKMAGMPVYQLLGGASRNGLRAYGHASGADIPSLFDSVREHLELGYKSIRIQTAVPGIKAVYGVAAQAQASGERYDYEPAGRGAFPLEEDWDTRAYLRHLPSVFEAVRNEFGPEIPLLHDGHHRMTPIQAAKLGKALEPYDLFWLEDCTPAENQEGLRLVRQHTTTPLAIGEIFNTVWDFQTVIKEQLIDYVRAASTHFGGISPLKKVMDFAAQYQIKSGFHGPTDISPVGFGAQLHVGLAIHNYGIQEYMPHSDKTNEVFEQSMSFVDGYLHPGDKPGIGVEFNEEAAAAYPYQQAYLPYNRLVDGTVHDWPGPT0018285_232DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018285-rspA|manD-K08323NANA
D1-29_041831458uxaBAltronate oxidoreductaseATGAGCACCGGTCTGGAGAAGCAAACACAGACTGAGGTCGGGCTTCCGCGGCTCAATCGGACCTTCTGGTCCGGCCCAAAGCCACCGGTGCGGATAGTCCACCTGGGCCTGGGCGCCTTCCACCGCTCCCATCAGGCCTGGTACACCCAGCAGGCCGGCGATGCTGCGAATTGGGGCATCGCCGCCTTCACCGGCCGCCGCCCGGATGCCGCACTTGCGCTGGCAGAGCAGGACGGCCTGTTTACGTTGGTGGAACGCGCAGATTCCAAAGACTCGTTCGCTGTCATCGGCAGCATTGTAGAAGCGGCGGACGGCGCGGACGTGGCCAGGCTCGCCGTACTGCTGGCATCGCCCGATACTGCCGTGGTCACCTTGACCATTACCGAAGCGGCGTATTTGGCAGACTCCCAGGGCGCCTTCAACAGTAACGCTCCTGAGGTGGCCGCGGACCTGGCCACCCTGCGCAGCAACGGTGATCCAGCGACTCCGCTGGGCAGGCTGGTATTCGGCCTTGCCTCCCGACGCGCAGCGGGCCGCGGTCCTTTGGCCGTTGTCTGCTGCGACAACCTCGCCAACAACGGTGCCGTCGCCCGCAATGCAGTAGTGGGCATGGCCAAAGCCTGGGAGCCGGGCCTGGCCGAGTGGATCAGTACCAACACGAGTTTTGTCAGCACGTCGGTAGACCGCATCACCCCACGCACCACGGCTGCAGACGTCGCTGCGGTGGAAGCTTCCTGCTGCTACCGGGACATGTCCCCGGTGGTGGCCGAACCGTTTGCCAGCTGGGTCCTCAGCGGAGACTTTCCCGCGGGCCGGCCGCGGTGGGAGGACGCCGGAGCCTTGTTCGTGGCGGATATCGAGCCGTACGAAAACCGAAAGCTTTGGCTTCTGAACGGAGCCCATTCGCTCCTGGCTTATGCCGGGCAGCTACGGGGGCATCGAACCGTGGCACAGGCCCTGGCCGACCCTCTATGCCGCCATGCCGTTGAGGCCTTCTGGGACGAAGCCGAGGCCAACCTGCCCGCCAGGGACCTCGCGATTCCCGCTTATCGGGAGGCGCTGCTGACACGGTTCGGCAATAAACGCATTGCGCACAACCTGTCACAGATAGCCATGGATAGCACCACGAAGCTGCGGATGCGGGCCGTTCCCGTTCTGCGCGCGGAACGGGCCGCAGGCCGGTCCGGCAGCGGTGCCGCACTCATGATTTCCGCATGGATGGAGTGCACGGCCCGGCTGGCTCCTGCCCAGGACCCGCTGGCAACGGACGTGGCTGCTGCAATCGCCTTGGCGGGGACTGCGCGGATCCGTGCCCTGTTGGAACTGGTGGATGCGGGACTGGCAGCGGATGCCGCCGCAGTGCAGCTGATAGAAAGCCTCACAGGCACGTTCGCAGAATCACTCCCACGTACTGAATCCCGTACCTGGCTAACCTCCCCTGAAAGGACCCAGCTGTGAMSTGLEKQTQTEVGLPRLNRTFWSGPKPPVRIVHLGLGAFHRSHQAWYTQQAGDAANWGIAAFTGRRPDAALALAEQDGLFTLVERADSKDSFAVIGSIVEAADGADVARLAVLLASPDTAVVTLTITEAAYLADSQGAFNSNAPEVAADLATLRSNGDPATPLGRLVFGLASRRAAGRGPLAVVCCDNLANNGAVARNAVVGMAKAWEPGLAEWISTNTSFVSTSVDRITPRTTAADVAAVEASCCYRDMSPVVAEPFASWVLSGDFPAGRPRWEDAGALFVADIEPYENRKLWLLNGAHSLLAYAGQLRGHRTVAQALADPLCRHAVEAFWDEAEANLPARDLAIPAYREALLTRFGNKRIAHNLSQIAMDSTTKLRMRAVPVLRAERAAGRSGSGAALMISAWMECTARLAPAQDPLATDVAAAIALAGTARIRALLELVDAGLAADAAAVQLIESLTGTFAESLPRTESRTWLTSPERTQLPGPT0018275_1206DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040NANA
D1-29_041841404uxaC_2COG1904Uronate isomeraseATGTCATCGATTGCCGCCAACCCAGACCGGCTCCTGCCCGCTGATCCAGGAACCCGCCGCATAGCCCGCGAACTCCTGCAGCGCGTCCAGGACCTTCCCATCATTTCCCCGCACGGGCACGTTGACGCCGCAGTCATCGAGCAGAACACTCCCTTTCCCGATCCGGCAGCGCTGCTGGTCAGCCCGGACCACTACGTCACCCGGCTGATCCATGCCAGTGGCATACCGCTGGACCGGCTCCAGGAATCCGCTACCTACAAGCCGGAGAGCCGATCGGTGTGGCTCGAGTTCTGCAAGGCGTGGCCCTTGTTCGACGGCACTGCCTCGGGATATTGGCTCCGCACCCAGTTCCGCGACGTCTTTGGCTTCGAAGGGGAGCTGAGCGCGGAAACAGCCGATGCCAGCTACGATGCCATCTCGGAAAAGCTCCAGGAGCCCGGCTTCCGGCCCCGGGAACTGTTCAAAGACTTCAACATCGAGGTCCTGGCCACCACGGACGATCCACTGGACACCCTTGAGAGCCACAAAGCAATTGCCCAGGACCCGTCCTTCCATGGGCGCGTCTTGCCCACCTTCCGCCCGGACGCCTATCTCAATATTGCCCACCCCGCGTGGTCGGAGAACGTGGACCGGCTCATTGCGGCAGCGGGCGACGGCGGCACGGGCTATGGTGCCTACCTCACGGCCTTGGAGAACCGGCGTCGTTATTTTGTGGAACATGGCGCAGTCTCTGCGGACCATGGAGTCCGCACCCCGGCCACCCTCAAGCTTGAAGCGGCGGACGCCGCGAAACTGTTTGACCGCGCCCGCTCAGGCACGGCAAGTGCCCAGGACCGCGACGACTTCGAAGCACACATGATGTACCAGATGGCACGGATGTCGGTGGAGGACGGCCTGGTGATGACCATCCACCCCGGTTCCTACCGCAACCACCACGAACCCACCTTCCAGACTTTCGGGGCCGACACCGGACACGACATTCCGTTCGCGATCAACTACACCGAAGGCATCCGTCCCGTCCTGCAGGACTTCGGTACGGCCAAGGATTTCCACCTGGTTCTCTTCACGTTGGACGAAACCGTGTTCTCCCGGGAACTTGCCCCGCTGGCCGGCTTCTACCCGTCCGTCTATCTTGGTTCGCCGTGGTGGTTCCTGGACGCGCCGGACGCCATGCTGAGGTTCCGCTCCGCCGTCACCGAGACTGCAGGCTTCTCCCGTTCCTCCGGTTTCATCGACGACACCCGGGCGTTTTGCTCCATTCCCGCCCGCCACGACGCCGCCCGCCGGATCGAGGCGTCGTTCCTGGCCCGATTGGTGGCTGAACACCGCGTCAGCGAAGACCGGGCACATGAACTCATCGTCGACATTGTGGACGGCTCACCCCGGCGGGTCTTCAAGCTATGAMSSIAANPDRLLPADPGTRRIARELLQRVQDLPIISPHGHVDAAVIEQNTPFPDPAALLVSPDHYVTRLIHASGIPLDRLQESATYKPESRSVWLEFCKAWPLFDGTASGYWLRTQFRDVFGFEGELSAETADASYDAISEKLQEPGFRPRELFKDFNIEVLATTDDPLDTLESHKAIAQDPSFHGRVLPTFRPDAYLNIAHPAWSENVDRLIAAAGDGGTGYGAYLTALENRRRYFVEHGAVSADHGVRTPATLKLEAADAAKLFDRARSGTASAQDRDDFEAHMMYQMARMSVEDGLVMTIHPGSYRNHHEPTFQTFGADTGHDIPFAINYTEGIRPVLQDFGTAKDFHLVLFTLDETVFSRELAPLAGFYPSVYLGSPWWFLDAPDAMLRFRSAVTETAGFSRSSGFIDDTRAFCSIPARHDAARRIEASFLARLVAEHRVSEDRAHELIVDIVDGSPRRVFKLPGPT0018210_1003DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018210-uxaC-K01812NANA
D1-29_041851062exuRCOG1609putative HTH-type transcriptional repressor ExuRATGACTAAACTTCCAGCTTCCGACGCCCAAGTTGTGGCTGGCGATTCCCGTTCCAAAAGTGAGGGCAAGGCCCCCGGCAGGACCAATGCCACGATTTATGACATTGCGAAGCTGGCAGGAGTGAACCCGTCCACTGTTTCCAGGGCGCTCAGCAAGCCTGGCCGGGTCAGTGCGGGTACGAGGCAGCTCATCGAGGAAGCCGCCGCCGAGCTCAATTATCAAGTTAACCCGTTTGCCAGGGCGCTTCCGACGGGACGAACAAATACGTTGGGCCTGATTGTTGCCGACATTACGAATCCAACATTCTTCGGAACTATACGGGGTGCGGAATCCACCGCGGCATTCCGCGATTATTCTCTGATTCTGGCTGAGTCAGCCGAGTCGCCTGACCAGGAGCTTGCAGCCGCCCAGCGCATGTTGGCCAGTGTTGACGGGCTAATTCTTGCCAGTCCTCGAATGGACGATGACCACATCCGGGACCTCGCCAAGGAGAAACCGGTTGTGGTCGTCAACCGTGATGTAGAAGGCATCGCCTGCGTCGTTCCTGACGTCAACAAGGGCATTGGTGAAGCCATCCGCCATCTGGCCGGAAACGGGCATCAAAGAATCGTCTTCATTTCAGGTCCCACGGCCTCCTGGATGTCGGGCCAGCGCTGGAGGGGCATCCAGGAGGCTTGCGAGTGGTCGCGCATAGAAGCGGTAAAAATTGACTCCGACAGCCCCACGGTCAAGGGAGGGCGGGCCATGGCCCGTTTCGTCGTCAGCAGCGGCGCTTCAGCGGTGATTGCCTACAACGACCTTTTGGCGATAGGCCTCATGCAGGAACTGCAGGCGGCCGCCTACGCAGTCCCGGATCAGATCAGCATCATCGGGTTTGACGATATTTTTGGCGCAGACTTCACCACGCCGGGGCTCACCACTGTCCGCGCCCCGATGGAAAACTGTGGAATCGAAGCGGCCACCATATTGCTTCGGACACTCAAGGAGCCAGGAGAGGCAACTTTCACCCGCTACATCGATACTGAGCTGGTGGTGCGTGGGTCCAGCGGCCGGCTTCTCTAGMTKLPASDAQVVAGDSRSKSEGKAPGRTNATIYDIAKLAGVNPSTVSRALSKPGRVSAGTRQLIEEAAAELNYQVNPFARALPTGRTNTLGLIVADITNPTFFGTIRGAESTAAFRDYSLILAESAESPDQELAAAQRMLASVDGLILASPRMDDDHIRDLAKEKPVVVVNRDVEGIACVVPDVNKGIGEAIRHLAGNGHQRIVFISGPTASWMSGQRWRGIQEACEWSRIEAVKIDSDSPTVKGGRAMARFVVSSGASAVIAYNDLLAIGLMQELQAAAYAVPDQISIIGFDDIFGADFTTPGLTTVRAPMENCGIEAATILLRTLKEPGEATFTRYIDTELVVRGSSGRLLPGPT0017992_2159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_04186246hypothetical proteinATGCGCGAGTCGATACCAAAGCAACAAACAGATTGCTCCTCGCTTCAAGGCGGAGCGTCCCCTCTCGGAGACTGCAGCCAGATCGCCAAGGGGGACTACGTGGAAGTCAAAGTGGGCACTGTTGTCCACCTGACGGGACACGTTGAAGAGATTCAACCGTCCATGGATCTCTTCTGGGTTCTGGCGTCCGATGGGACGCGAAGAATAGTGGAACTCGCCGAGTTTGACGTCTACCTTGCGGCCTAGMRESIPKQQTDCSSLQGGASPLGDCSQIAKGDYVEVKVGTVVHLTGHVEEIQPSMDLFWVLASDGTRRIVELAEFDVYLAANANANANANA
D1-29_04187777catD_1COG05963-oxoadipate enol-lactonase 2ATGACCGGAGCTTTCAACATAGTCGTTGAGCCAAGGACGGACTCTGAACCATCGTTGGGCACCATCGTCTTTGTGAATTCCCTCGCCACCGGAATGCAGATGTGGGATGAGGTTGTTGCCGAGCTACGGCCGTTTTTTGACATAGTCCGATTCGATCAGAGGGACCGCGGTGGTCCCCTCGGTCACAGGCCGTTCGACCTTGACGATCTGGTCGAGGATCTGTTTGATGTTTTGGACGGCGCGGGCATCAGCAAGGCTCATGTGGCCGGGGTATCCCTTGGCGGAATGGTCGCGCTGGGGGCTGCTGCTTATAGGCCGGAGCGAATTCAGTCTGTTACCGCGATGTGCTGTGCAGCGCGCTTTCGACGCGATGTTTGGGAAGAGCGCGGCAGGTTGGTGCGGGCCCAGGGAGTTGTGCCCTTGGTGCCTCAAATCATCGATCGATGGTTCACCGCCGATTTCCAGCAAAAAAACCCCGACGTCGTCCTCCGGTACCGGCAGATGCTCGAGTCAACGGATCCTGTCGGGTACGCCAACGCATGCGATCTCCTGTCTGAAGCGGACGTGCGTGAGGATTTACCGACGATACAGGTTCCGGTTCTGGTTATTAGCGGGGAAAGCGACAGCGCCAATCCCATCGAAGATCAGAAACTGATCGCGCAAAGCGCACCCAAGGCACGGCACGAAATCCTCACCCGAACCGCACATCTTGCACCGGTGGCGGAGCCGGCACAGATCGCCCGCCTCGTGGCTGATCACGCTCAATTCAGTAGCTAAMTGAFNIVVEPRTDSEPSLGTIVFVNSLATGMQMWDEVVAELRPFFDIVRFDQRDRGGPLGHRPFDLDDLVEDLFDVLDGAGISKAHVAGVSLGGMVALGAAAYRPERIQSVTAMCCAARFRRDVWEERGRLVRAQGVVPLVPQIIDRWFTADFQQKNPDVVLRYRQMLESTDPVGYANACDLLSEADVREDLPTIQVPVLVISGESDSANPIEDQKLIAQSAPKARHEILTRTAHLAPVAEPAQIARLVADHAQFSSPGPT0004995_1643DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-29_0418890hypothetical proteinATGCCGAAACTTACATTCCTCACCTCCAGGATTGGCGCCGAAGGCGCCGCATCTTCCCTGGCCTTGACTGGGTCAGGTGGCCAGGCATGAMPKLTFLTSRIGAEGAASSLALTGSGGQANANANANANA
D1-29_041891482COG0277putative FAD-linked oxidoreductaseATGTCAGACATAGCGAAAATTTCGGAGAGGGCCGTGGCTGGTGACGTATCCGCAGCGGCCGACAAAGAACGGATTTCTCCCAGTCCACTCCTTGACGAACTGGCGCTGGTACTGCCGGCGGACGCGCTCATTGCTGATCGCAAAGCCATGGAGCCCTACCGTCGGGACCGTGCACTTGATCCAGATGCTGCCGTGCCCATGGCTGTGGTGCTGCCTTTGACGACTGCGCATGTGCAGTCCGTGATCCGATGGGCGGCCAAGCATCGGATCCCGGTAGTACCTCGAGGCGCCGGTACGGGTCTGTCTGGGGGAGCTACGGCAGTGGAGAACGGCATTGTGCTCAGCACCGAGCGGATGCGCTCCATCGATATAGATCCCGCTACGCGTACCGCCGTGGTTCAGCCGGGTCTTTTCAACGCTGAGGTCAAAGCCGCAGTGGCCCAGGAGGGCCTGTGGTACCCGCCTGATCCTGCCTCCTACGAGATCTGCACGATCGGCGGCAACGCCGCCACCAATGCCGGGGGCTTGTGCTGCGTCAAGTATGGCGTCACGTCCGATTACATCCTGGGTATGGAAATCGTCACCGCTGACGGCAGGGCCATAAAGCTGGGAGGCCCACGACTCAAGGACGTGGCGGGGCTATCCATGCTCAAGCTCTTCGTTGGCAGCGAAGGCACCCTCGGAATCATCACTGAACTCACTTTGCGGCTTCTGCCAGCCGCCCCGCCCGCCCGCACTGTGGTTGGGTGGTTTTCAAGCAGCGAACAGGCTGCAAACGCCGTCGTCGACATTGCTTCGAGCATCCGCCCCTCGATGCTTGAGTACATGGACGGAACTTCCATTAATGCTGTCGAAGACGTGCTGGACATGGGGTTGCACAGGCATGCCGCTGCGCTGGTTGTGGCACGTTCAGACGATCAGAGCCCCAGCGGCGCGGAAACCGCAATGATGCTAGGTGCCTTTCAAAAGCACGGCGCGTTTGAGTCGTTTGAGGTTGCGGATCAGGAGGAGGGCGAGCGTTTTGCCCACGCGCGGCGTATTGCCATTCCCGCTGTAGAAGGATTGGGCACATTGCTGTTGGAGGACGTGGGAGTCTCAAGCCCCCGTCTGGGAGAGCTCGTTGTTGGGGTTGAGCGAATTGCACAGAACCGCAATGTCGTCATCGCCTTCATCGCTCATGCGGGTGACGGCAATACACATCCGCTGGTCGTATTTGACCCTGCAGACACGAACATGAGGGACCGCGCCTACCGTGCCTACGGCGAAATCATGGACCTGGCCATCGAACTGGGCGGGACAATCACCGGCGAGCACGGGGTGGGACGACTGAAGCGCCCATGGCTGATAAACCAGATTGGCGAGGACTTACTCCAAATCTCGCACAGTGTGAAAATGGCGCTGGATCCAGATGGCATCTTGAACCCCGGAAGTATTTTTGCCGCACCGCCATCGCGCGGCACTGCCAACGAGGGGCGCTCATGAMSDIAKISERAVAGDVSAAADKERISPSPLLDELALVLPADALIADRKAMEPYRRDRALDPDAAVPMAVVLPLTTAHVQSVIRWAAKHRIPVVPRGAGTGLSGGATAVENGIVLSTERMRSIDIDPATRTAVVQPGLFNAEVKAAVAQEGLWYPPDPASYEICTIGGNAATNAGGLCCVKYGVTSDYILGMEIVTADGRAIKLGGPRLKDVAGLSMLKLFVGSEGTLGIITELTLRLLPAAPPARTVVGWFSSSEQAANAVVDIASSIRPSMLEYMDGTSINAVEDVLDMGLHRHAAALVVARSDDQSPSGAETAMMLGAFQKHGAFESFEVADQEEGERFAHARRIAIPAVEGLGTLLLEDVGVSSPRLGELVVGVERIAQNRNVVIAFIAHAGDGNTHPLVVFDPADTNMRDRAYRAYGEIMDLAIELGGTITGEHGVGRLKRPWLINQIGEDLLQISHSVKMALDPDGILNPGSIFAAPPSRGTANEGRSPGPT0028045_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_QacA,PGPT0028045-smvA|qacA|lfrA-K08167NANA
D1-29_041902205glcBCOG2225Malate synthase GATGAGTCACCACAATAGCCGCGTCGACGCCGACGGCCTGGCCGTCGACCCAGCCCTTCATGCCTTTATCGAATCCGAGGCGCTGCCTGGAACCGGAATCGACGCTGCCGGGTTCTGGCGCGGCTTCGGAAGAATCGTCAAGGACCTGACACCACGAAACAGGGAGCTCCTCGCTGTACGTGACGAACTGCAGGGCCGTATTGACGAATGGCACAGGCTGCATCCGCTCCCGTTTGACCAAACCGAGTACCAGACGTTTCTGCAGGACATCGGATACCTTCTGCCGGCGCCGGAAGGCACCCAGGTCCGGACGTCCAACGTGGATGATGAGATCGCGAAACTTGCCGGCCCCCAGTTGGTGGTGCCCGTCACCAACGCCCGCTATGCACTCAACGCGGCTAACGCCCGATGGGGATCGCTTTACGACGCCCTCTACGGAACAGACGCACTGGACGCGAAGGCAGCTGCAGCCGGATATGATCCCCAGCGCGGCCAGGAGGTCGTCGCGTATGTGCGTGGTCTGCTCGATGAATTTATCCCGCTGACAGCAGGCAGCCATGCCGGTTCCACCGGTTACGCGGTACGCAACGGAAAGTTGTCGGTCACCCTTTCCGACGGTTCAAGCAGTGGCCTGGTCCATCCTGACCAGTTGGTGGGCTACACAGGAGAAGCCGATTTGCCGTCCACCATCGTTTTCCGCCACCACGGCCTTCACATAGAGGTCATCTTCGACCGAAGCACGGTTGTCGGAGCATCAGATTCAGCTGGTGTAGCCGACGTGCTGGCAGAGGCTGCTATCACCACCATTGTCGACTTCGAAGATTCGGTCGCCGCCGTCGACGCCGAGGACAAGATCGTGGGTTACCGCAACTGGCTGGGCCTGAACAGGGGTGATCTGAAGGACGTCTTTGAAAAGGGCGGCGACAAGGTCGTGCGCCGGTTGGCGGATGACCGGCACTACACATCCCCCTCTGGAGGCGAGGTAGTTCTGCCCGGGCGAGCCGTGCTTTTCGTCCGCAATGTTGGCCACCTCATGACCACCGACGCGGTCCTTGATTCTGACGGAAACGAGATAGGCGAAGGCATCCTGGATGCTGTCCTGACATCGCTGACGGCCCTGGCCGGGCTGGATCCGCAGAATCCTCGACGAAACAGTCGAACCGGCTCAATCTATATCGTCAAGCCCAAGATGCACGGCCCGGAGGAGGTGGCTTTCACCGTGGAACTTTTTGGCCGTGTCGAGCAACTGCTGGGCTTAGCGGCGAACACCCTTAAGCTCGGGCTCATGGACGAGGAGCGCCGCACCACAGTCAACTTGAAGGCCTGCATAGCCGAGGCCGAGGACCGCCTTGTTTTCATCAATACAGGCTTCCTTGACCGTTCCGGCGATGAGATCCACACCTCTATGGAGGCAGGACCTTTCGCCCGCAAGGCCGAACTGCGCAATCATCGGTGGCTTTCGTCCTATGAGGATCAGAACGTCGACATCGGAATTGAAGTGGGTTTGCCGGGCAGGGGCCAGATCGGCAAGGGCATGTGGGCGATGCCTGATCTCATGGCGTCAATGCTCGAACAAAAGATCGTGCACCCGATGGCAGGTGCCAGCACGGCCTGGGTACCGTCCCCCACTGCGGCAACCCTGCACGCAATTCACTATCACCGGGTCGACGTCGCGGAGAGACAGCGGGAAATTGCCCTCCAGGGCCAGCGGGGCACCCTTGAGGGCATTCTCACCGTGCCTGTTGAGACTGACCCGGACTGGTCGCCGGAAGAGCGCCAGGAAGAGCTTGATAACAATATGCAGTCCTTGCTGGGATATGTCGTCCGCTGGGTGGACCAGGGAATTGGATGCTCCAAGGTTCCGGACATTCATGATGTCGCCCTCATGGAGGACAGGGCCACGCTCCGCATCTCAAGTCAACACATTGCGAACTGGCTCCGCCATGGCGTGATCACGGAGCAAGAGGTGCACGAGAGCATGCAGAAAATGGCGGCCGTCGTCGACGCCCAAAATTCAGCCGATCCCCTCTACCGCGCGATGGCTCCCAACATCTCCGAGAGCATCGCATACCAGTGCGCCGTCGATCTGGTGCTGGAGGGAAGCACGCAGCCGAACGGCTACACAGAGCCCCTTCTGCACCAGCGCCGGCGCCAAGTGAAATCAAAGACGCTCAGCTCCATCTACGCGGAAAGCCCCAATTCATGAMSHHNSRVDADGLAVDPALHAFIESEALPGTGIDAAGFWRGFGRIVKDLTPRNRELLAVRDELQGRIDEWHRLHPLPFDQTEYQTFLQDIGYLLPAPEGTQVRTSNVDDEIAKLAGPQLVVPVTNARYALNAANARWGSLYDALYGTDALDAKAAAAGYDPQRGQEVVAYVRGLLDEFIPLTAGSHAGSTGYAVRNGKLSVTLSDGSSSGLVHPDQLVGYTGEADLPSTIVFRHHGLHIEVIFDRSTVVGASDSAGVADVLAEAAITTIVDFEDSVAAVDAEDKIVGYRNWLGLNRGDLKDVFEKGGDKVVRRLADDRHYTSPSGGEVVLPGRAVLFVRNVGHLMTTDAVLDSDGNEIGEGILDAVLTSLTALAGLDPQNPRRNSRTGSIYIVKPKMHGPEEVAFTVELFGRVEQLLGLAANTLKLGLMDEERRTTVNLKACIAEAEDRLVFINTGFLDRSGDEIHTSMEAGPFARKAELRNHRWLSSYEDQNVDIGIEVGLPGRGQIGKGMWAMPDLMASMLEQKIVHPMAGASTAWVPSPTAATLHAIHYHRVDVAERQREIALQGQRGTLEGILTVPVETDPDWSPEERQEELDNNMQSLLGYVVRWVDQGIGCSKVPDIHDVALMEDRATLRISSQHIANWLRHGVITEQEVHESMQKMAAVVDAQNSADPLYRAMAPNISESIAYQCAVDLVLEGSTQPNGYTEPLLHQRRRQVKSKTLSSIYAESPNSPGPT0001445_332DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
D1-29_04191426hypothetical proteinATGCAGAACTTCGTTGAAACACCATCGGTGAACTACGCCACTGCCGCCCGGGCTGTTTCCCTGGCCATTGAGGCAGGAGCACAACGCGGCGTCCTGGTTTCGGTCAGTGTCGTGGATCCAGCAATGGGCCTTATCGCCTTCGGCCGCGCAGACGGTTCGATGCCCCACAGTGTGGAGACCAGCCGCCGAAAGGCCAACACCGCCGCCTCATCGAGACGCCCGACAGGGTGGATGCAAGGTGACTTCGCAATTGCCCTCCCGATGGGCACAGACAATCTGCTGACCAACATTCGTGGCGGGTTCCCTTTGATTTATCAGGAGAAACATCTTGGCGGCCTCGGTATCGCTGGAGGTACGCCTGACCAGGATTCCGAGATCGGTCTTGCAGTCCTGGACGCCCTTGCAGGGGATGCGTCGGAGGCCTGAMQNFVETPSVNYATAARAVSLAIEAGAQRGVLVSVSVVDPAMGLIAFGRADGSMPHSVETSRRKANTAASSRRPTGWMQGDFAIALPMGTDNLLTNIRGGFPLIYQEKHLGGLGIAGGTPDQDSEIGLAVLDALAGDASEANANANANANA
D1-29_041921788uidACOG3250Beta-glucuronidaseGTGCTTAAACCACGTTCCACACCTACCCGCGAACTTCACAACCTCGACGGTCTTTGGCTGTTTGCGCTGGATACCCAAGCAGGAGAAAGCCCATGGACCCGGGTCCTGGATACAAAACTGGAAGCTGCGGTACCGGCGAGTTACAACGATCAATTCGTCTCCCCCGAAATTCGGAATCACGTGGGTTGGGTCTATTACCAGCGCACCGTGCGCGTTCCGCGTGGCTGGTCCGAGGAACGCACCGTGCTGCGTTTCGATGCTGCAACGCATGCAAGCCGGGTGTATGTAGGCGACACCCAGGTTGCCGAACACACCGGAGGCTATACACCCTTTGACGCAGACATCACTGACTTCGTCCAGCCAGGTGAGGAATTCCGGCTGACTGTCGCTGTAGGCAACGAGCTAACCAACACGACAATCCCTCCTGGCACGATCACGATGTCACAGAATGGCCGACGCACCCAGACCTATCTTCACGATTTCTACAATTACGCAGGACTGGCACGGTCTGTCTGGCTGTACAGCACACCTCAACTTCATCTCCAGGACGTGACAGTCACAACACAGGTCCGGGGGATGGCGGGCATCGTTTCCTACACCGTCCAGCAGACGGGCACCGCTGATGTAAGGGTGACCATCCTGGACCAGGAGAAGACACGAGTTGCCTCCGGGTCCGGGCAAAGCGGAACGATGGAAATCGAATCGGTCAATCTATGGCAGCCGGGTGCCGCATACCTCTACGAACTTCTCGTGGAACTCGTTGACGACGGGAAAGTTATCGATTCCTATACTGAGGTTTTCGGTGTCCGGACCGTAGAAGTAAAGGGCACCGAGTTCCTCATCAACGGCGAGCCCTTCTATTTCACTGGCTTCGGAAAACACGAGGACACCGCCATTCGCGGCAAGGGACACGACAATGCTTATCTCGTCCACGACTTCCAACTATTGGATTGGATCGGCGCGAACTCGTTCCGCACTTCCCATTACCCGTACGCCGAAGAAGTGCTGGAGTTTGCAGACCGTCACGGCATTGTGGTCATAGACGAAACAGCCGCTGTGGGCCTGAATCTCGGCGTACAGGCAGGCCTCTCGGGGAAGCCCACAACGCCTTCGTTCTCGCCCGAGACCTTCAATGATCAAACACGGGAAGCACACGCCCAGCACATTCGTGAATTGATCGCCCGCGACAAAAATCATCCCAGCGTGGTGATGTGGTGCATAGCAAACGAAGCGGCGACAAACGAAGAGGGTGCCCGCGAATACTTCGAGCCTCTTGTGAACCTGGTGCGGGAACTCGATCCCACCCGGCCGTTGACTTATGCCGTTGTCATGTTTGCTACCTTCCGCAACGATCTGATCGTTGACCTGTTCGACGTCGTAGGCCTGAACAGGTACTACGGCTGGTACGTCATGAGCGGTGACCTGGAGTCAGCCGAGAACTATTTGCGGATGGACATCCAGGGATGGATTGAGCGCGTCGATAAACCCATCATGATGACCGAGTACGGAGCTGACACTCAGCCGGGGGTCCATTCCGTGTGGGACCAGCCCTGGACGGAAGAATACCAAGAGGCCCTCTTGGAGATGCACCACCGCGTATTCGACGAATTCCCGCAGTTTGTCGGTGAACAAATTTGGAACTTCGCGGACTTCCAGACCAGCAACGGCATCCACCGCGTCGACGGAAACAAAAAGGGCGTGTTCACCAGAACCCGCCAACCGAAGGCCGCGGCACATGCACTCCGCAAACGGTGGCGGACAATCGGCAATCGCAAGCCAAAGAACTAAMLKPRSTPTRELHNLDGLWLFALDTQAGESPWTRVLDTKLEAAVPASYNDQFVSPEIRNHVGWVYYQRTVRVPRGWSEERTVLRFDAATHASRVYVGDTQVAEHTGGYTPFDADITDFVQPGEEFRLTVAVGNELTNTTIPPGTITMSQNGRRTQTYLHDFYNYAGLARSVWLYSTPQLHLQDVTVTTQVRGMAGIVSYTVQQTGTADVRVTILDQEKTRVASGSGQSGTMEIESVNLWQPGAAYLYELLVELVDDGKVIDSYTEVFGVRTVEVKGTEFLINGEPFYFTGFGKHEDTAIRGKGHDNAYLVHDFQLLDWIGANSFRTSHYPYAEEVLEFADRHGIVVIDETAAVGLNLGVQAGLSGKPTTPSFSPETFNDQTREAHAQHIRELIARDKNHPSVVMWCIANEAATNEEGAREYFEPLVNLVRELDPTRPLTYAVVMFATFRNDLIVDLFDVVGLNRYYGWYVMSGDLESAENYLRMDIQGWIERVDKPIMMTEYGADTQPGVHSVWDQPWTEEYQEALLEMHHRVFDEFPQFVGEQIWNFADFQTSNGIHRVDGNKKGVFTRTRQPKAAAHALRKRWRTIGNRKPKNPGPT0018200_587DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCURONIDASE,PGPT0018200-uidA-K01195NANA
D1-29_041931455COG3507Non-reducing end alpha-L-arabinofuranosidase BoGH43AATGAGTTCGCTTATCCTTCCAGGCTTTTACCCGGACCCTTCCATATGCCGGGTCGGTGAGGAGTATCTCCTTGTCAACTCCACATTTGAGTATTTCCCCGGTGTGCCCATCTTCTCGAGCCGAGACCTGCTTAGCTGGCGCCAGGTGGGGCACGTACTCGATAGGGAAAGCCAACTTAACGTCAGTTCCGGCATAGAGGGCGCAAGCGGGGGCATATTCGCACCTACGATCCGCTTCCAGGACGGCCGCTTCTGGATGACAACCACCAATATGCACGACCTGCGTAAGGGGCACCTTATTGTCTCGGCGGAGCGTGCGGGTGGGCCTTGGAGCGAACCGGTGTACACACCCGGGCTCATCGGCATTGATCCCGATCTCGCGTGGGACGAGCACGGTGACTGTTACCTCACGTGGTCCGACGTCGTACGGGGTGGCATATCGCAGGCCCGGATTAATCCGCAGACCGGACAGGTGCTGTCCGAATCCCGGGAAATTTGGGGTGGCACGGGTGGCGCCCATGTGGAGGGCCCACACGTCTACGCACGAAACGGCTGGTGGTACCTCCTGGCTGCAGAGGGCGGCACTGCCGCTGGCCACATGATCACTGTGGCTCGGGCGCGCACCATAGACGGCCCGTACATCGCCAATCCAGCAAATCCAATCCTGACGAACCGAAGTACAGCGCATGCAGTGCAGGCGGTAGGTCATGGCGACCTTTTTGAGCTTCATGATGGAAGTTGGGCAATGGTGCATCTTGGGACCCGGCCCCGCGGGTCCTTCCCAAAGTGGCACACCAACGGGCGGGAGACGTTTCTCGTCGGAATCGACTGGGTGGATGACTGGCCCGTCATTGCCGAGGACCGGTTTACCGCACCAAACGTTGACACCTCGTTCGAGGACCTCTTTGCTGAAAACGAGCTCCACTCGAGGTGGATTTCCCCCGGAGCGAACCCCTCTTCATTTGTCACACCGAGCGACAACGGACTCGTACTGCTTGCTGGACGGGCACCAGACTCGACGCGGGCAGAGCGGCTGCTTGCGGTGCGGGCATGCGATCCGGAATGGACTGCAAGCGTTCAAGGTACGGGCGACTTGGCGTTGACTGTACGCATCGATGACCTGCACCAAGCAATCGTTCAACGAGTAGGGGGCAAGGTAACTGCCCGCGTTGTCATCGGTCCAGCAGATCAGACTCTAGCCATGCAGGATTCCGTACCAGAAGACGTCGCACTGACCATTCGCGCAGTATCACCCGGTGGTCAGGCCGGCCACCGACAAGGGCCCGACACCCTCGTGCTCGGCACAGGCGTCGGCGCCGCCTTCCAGCATCTGGCTTCCCTCGATGGCCGCTACCTGTCAACAGAGGTGGCGGGTGGATTCACCGGACGTGTAGTGGGGATTGAAGCCGTCGGTTCCGACGCCCTTGTACGTTCCTTCTCCTACAGTTCGCCCTGAMSSLILPGFYPDPSICRVGEEYLLVNSTFEYFPGVPIFSSRDLLSWRQVGHVLDRESQLNVSSGIEGASGGIFAPTIRFQDGRFWMTTTNMHDLRKGHLIVSAERAGGPWSEPVYTPGLIGIDPDLAWDEHGDCYLTWSDVVRGGISQARINPQTGQVLSESREIWGGTGGAHVEGPHVYARNGWWYLLAAEGGTAAGHMITVARARTIDGPYIANPANPILTNRSTAHAVQAVGHGDLFELHDGSWAMVHLGTRPRGSFPKWHTNGRETFLVGIDWVDDWPVIAEDRFTAPNVDTSFEDLFAENELHSRWISPGANPSSFVTPSDNGLVLLAGRAPDSTRAERLLAVRACDPEWTASVQGTGDLALTVRIDDLHQAIVQRVGGKVTARVVIGPADQTLAMQDSVPEDVALTIRAVSPGGQAGHRQGPDTLVLGTGVGAAFQHLASLDGRYLSTEVAGGFTGRVVGIEAVGSDALVRSFSYSSPPGPT0018665_1905DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_DEGRADATIVE_GLYCOSIDASES|GLYCOSYLHYDROLASESPLANT_DEGRADATIVE_GS|GH-XYLOSIDASE,PGPT0018665-xynB-K01198NANA
D1-29_04194453dtdCOG1490D-aminoacyl-tRNA deacylaseGTGCGAGCCATCCTTCAGCGGGTCACCCGAGCCGAGGTCACAGTCGACGGCGAAACGGTGGGTTCCATTGACCGCCCGGGACTCGTTGTCCTGGCCGGCGCCACCCACACGGACACCTTGGACGATGCTTCGGCCCTCGCTGCCAAGATCTGGACCCTGCGGATCCTTGAGGGCGAGAGGTCGTGTGCCGACCAGAACGGCCCCCTGCTGGTGGTCAGCCAGTTCACGCTGTACGCGGACACACGGCGGGGAAGGCGCCCCTCCTGGTCGGACGCGGCGCCGGCGAACACCAGCGAGCCGTTGATTGAACACCTGATCGCTTCCCTGCGGGGCCTGGGGGCGGAGGTTTCCACCGGGCGGTTCGGGGCCATGATGCAACTGTCCCTGGTCAATGACGGACCGTTCACGATCAGCCTCGACACCGCCGATTTTTCAGCTCCCCGCCGCGGCTGAMRAILQRVTRAEVTVDGETVGSIDRPGLVVLAGATHTDTLDDASALAAKIWTLRILEGERSCADQNGPLLVVSQFTLYADTRRGRRPSWSDAAPANTSEPLIEHLIASLRGLGAEVSTGRFGAMMQLSLVNDGPFTISLDTADFSAPRRGNANANANANA
D1-29_04195774hypothetical proteinATGCGCAGCCCGGCCGCCTCAGTCGCGGTTTTTCCCACAGCCATACTGATGGCGCTACTGTTCACGGGCTGCGGCCCGCAGGCGGGACCGACGACGACGTCGAGCCCCAGCCCCACCGTCACCTCCGCGACGGCCACCTCGACAGCAACTGCGACGCCGACAACAACTGGGACGCCGACGGCGACAGGCTCGCCGAATGCCACCGGCACGGCACCGGCGTCGGAAGCCTGGACCAGCTACACCACGGCCGACGGCCAGCTGATGTTCGAGCACCCAACCGCCTGGAGCGTCAGGGACCCGGCGGGCGAGCTTCCCGAGGGCGGCGGTGCCTTCGCGGAGGTCACCAACGAGGCCGGGCGGCCGCTGGCGGCGCTCCGGACCAACATGACCGTCGGGTCCACGTGCATGGACCGGTATCCGTACTCTGTGCTGGATTCTGAAGAGTTGCCGGAGCTGATGCAGGGTGAGGGAGCTCCCCGGTTCGTGTACGAGACCCGCGGGAATGGCGCCACCCCCGGTCCGGCTGATACACCGGCGGCAGCCTACGGCATCACCTCGGTCCCGGCACCCAGCGGGGACTCTGCATCGTGCATCTTCCACTTCTTTAACTGGCCGCCCACTGCTGCGATGTTCGGCGCGTTCTTCAACCCGGAGAACAACGTAACGCCGGGGGCCGCGTCCCTGCCCTACCTGGAGCAGGCCAGGAAGTACAAGGAAACGGTGGAGTACGCGGACATCCGGCGGATGATCACGTCACTGCGGCCGGCGGGGTGAMRSPAASVAVFPTAILMALLFTGCGPQAGPTTTSSPSPTVTSATATSTATATPTTTGTPTATGSPNATGTAPASEAWTSYTTADGQLMFEHPTAWSVRDPAGELPEGGGAFAEVTNEAGRPLAALRTNMTVGSTCMDRYPYSVLDSEELPELMQGEGAPRFVYETRGNGATPGPADTPAAAYGITSVPAPSGDSASCIFHFFNWPPTAAMFGAFFNPENNVTPGAASLPYLEQARKYKETVEYADIRRMITSLRPAGNANANANANA
D1-29_04196609betI_8HTH-type transcriptional regulator BetIATGAACCAGCCGTCAACCCGCTTGCCCTATGGAGACGGGCGCGATGCCTTGCTGTCCGCGGTGATTGACGTCGTCGGGGAAAAGGGTCTACGGGGTGTCACGTACCGTGCCGTTGCGTCGCGGGCAGGAGTGAACCACACCCTCGTGACGCACCACTTCGGCTCTATCGAGGGTCTTCTCGCCGCCACCATGGAGTGGGCCATCCAGCGGTCCATCGAGGAGACTGGCCTGGAAAAGATCGCGGACTTTGACGAGAACTTTGCCGATTCACTCATCGAAACGGTGTCGAAGGAACCGGAGCTGCAGCTGTTCCAGTTCGAGATGCTTCTCGAATCCCGGCGCAACCCCGAGGTGCGGGCATTGGTGGAACGCCTTTACGCGAACTACATGAGCACCGTTGAAGATGCCCTGAGGCAACGGGGACTCAACGTGGACAACGGTGCAGCCTTGGCCATCTTTGCTGCCCTGGACGGCCTCATGCTGCAATTCCTCACCATCAGCGACCCCCAACGGATCAAGGCCGCCGTCATCCAGGTGGGCAAGCTCGTCGCAATTCTGGAGAGCACAAGCGACAGCCCCGGCGGCAGCAGCCCCCTCCCGGTTCGGTAAMNQPSTRLPYGDGRDALLSAVIDVVGEKGLRGVTYRAVASRAGVNHTLVTHHFGSIEGLLAATMEWAIQRSIEETGLEKIADFDENFADSLIETVSKEPELQLFQFEMLLESRRNPEVRALVERLYANYMSTVEDALRQRGLNVDNGAALAIFAALDGLMLQFLTISDPQRIKAAVIQVGKLVAILESTSDSPGGSSPLPVRNANANANANA
D1-29_041971455hypothetical proteinATGAATCAAGAACCAGTCGGAATCTCTACCCGCCCAGTGCAAGAGGATCCAGCACCTGCCTCCTCCTCCCCACGGCTGAGGCCAAACAAGCTCGGCGTCATCGCCATTGCCTTCTTTGCCATTGCCGCAGCCGCCCCCATGGCCGCCGTGGTGGGAGCCAGCCCGGTACTGTTTTCGGCCAGCGGCCCGGGAACACCCGTTATTTACGTGATTGCTGCCCTGCTGGTGGCTCTCTTCTCAATCGGATACCTGCGGATGAGCCAACACATCACCAACGCGGGCGGCTTTGTCGCCTATATGGCCAAGGGACTGGGCAACAAGTGGGCAACCGGCGGGGCCGGGATCGCCATCCTGACCTACCTGAGCCTTCAAGTTGGCCTGTGGTCCCAGTTCGGCGTTTTTGCGCAGTTGCTGGTCGAAGGCCTGACGGGCATCAGCCTGCCGGTCTACTTCTGGATCGCCGTATTGCTTGCTGTGGTTACGGGCCTGACGATGCGGGGCGTCGATGCGAGCCTGAAGGTCCTGGGAGTCCTCATCCTCGGCGAAGCCTTTGCGGTAGCGGCCCTCGTGGTGTCCCTGATTGCCCAGAAGGGGCTCGGCATCTTCACGTTTGAAGGGTTCACTCCATCCAGTGTTTTCGGTCCGGGCCTGGGCATTTCCCTGCTGTTTGCCTTCGCCTGCTTCACCAGCTTCGAAGCAACCGTCGTCTTCGCCGAGGAGGCAAAGAACCCGCGGCGCACCATTCCCCGTGCGGCTTATTTTGTCATCGCCTTCATTGGCATCTTCTACACCATCTCCACCTGGGCCATCAGTGGAGCCATCGGCATCGACAACATCCAAACCGTCGCCGCCGAAAACCCTGCAGGAATGGTCTTCGATCTCGCCGAATCCAGCGCAGGCTATTGGCTGAACCTGACAATGCAGATCCTGGTTGTCACGAGCTTCCTGGCGATGCTCCTGGGCCTGGCCAACATGTTCTCCCGATACCTGTTTTCCCTCGGCCGGGCCGGAGCCCTGCCCGCCAAGCTGTCCTCCGTCTCCAAGACCGGCGCCCCGCACTTCGCAGGACTCGTCAACGGCCTCGTTCTCCTGGCGATCATCAGCATCTTCCTGCTCGCAGGCGCCGACCCCATTACAACCGTCTTTGCCTGGTTCGTGGCCCTTGGCACTGCAGGCTTCATCACCATCCTGCTGGTGACATCAGCGGCAATCGTCGTCTTCTTCGCCAGAAACCGGATCCGGGACAACCTCTGGGTCACCGTTATTGCGCCGTCCCTGTCTTTCCTGGCCTTCATCGTCATCGGATACCTGACGCTGGACAACTACGACGCACTGCTCGGCGGAGCAGGCGGCGTGGCCCGGTGGCTGCTCCTCGGCATCCCGCTCTTCTTCATGGCCGGGATCGCCCGCGGCGCACAAAAGCCATCCATCAATTTCGCCGCAGTCATCGGCTGAMNQEPVGISTRPVQEDPAPASSSPRLRPNKLGVIAIAFFAIAAAAPMAAVVGASPVLFSASGPGTPVIYVIAALLVALFSIGYLRMSQHITNAGGFVAYMAKGLGNKWATGGAGIAILTYLSLQVGLWSQFGVFAQLLVEGLTGISLPVYFWIAVLLAVVTGLTMRGVDASLKVLGVLILGEAFAVAALVVSLIAQKGLGIFTFEGFTPSSVFGPGLGISLLFAFACFTSFEATVVFAEEAKNPRRTIPRAAYFVIAFIGIFYTISTWAISGAIGIDNIQTVAAENPAGMVFDLAESSAGYWLNLTMQILVVTSFLAMLLGLANMFSRYLFSLGRAGALPAKLSSVSKTGAPHFAGLVNGLVLLAIISIFLLAGADPITTVFAWFVALGTAGFITILLVTSAAIVVFFARNRIRDNLWVTVIAPSLSFLAFIVIGYLTLDNYDALLGGAGGVARWLLLGIPLFFMAGIARGAQKPSINFAAVIGNANANANANA
D1-29_04198804moaFProtein MoaFATGACTTCAGCTGACATCCAGGACTACATCCCCGAAGACCAGTGGCCCCCCGTCTCGGCCATGCTGGAAGGCTTCGGCGATCAGACCCTGCCCGCCTCCCCCGCCCTGGCCGGCACCACATTGAGCCTCCCGGGCGAGGACGGCTCCCACGCCGAGTACGTTTTTGACGATGAGTCTTCGCTGGCATGGACAGTTAGCCGCAATGGGGACACGACCACCGGAACGGCGGGCTACAAGGCGATCGAAGCCCGGCCCGGCATCTTCATCATCGACTTCATCCGAGGCGAAGGTTCCGCCGCAGAAAACGTCACCATCATCGCGGACCGCAACACGGGGGCCACAACAACCGGTGTCTCCCGGTTTGTCACCGTGGACGGCAGGACGCGGAGCACCACCGATTTCAGCCAGGCCAACACTGAGGGTTCCCCAGTGCGCCACCAGCGCTCCACGGCCCTGGTCGGCAAGCGGATCTACTACCGCTACAGCGACGTCGAAACGTACGAACACATCTACCTCAACCCGGGAACCTTCACGTGGAACTGCATCCGCGGCGGCGAGGCAGGGCTGGCCGATACCGACCGTTGCATGACCTGGGAAGTGGCAGAGGACCTTTTCATCTTCTTCTGGACCGAAAAGGTCATGTGTATCGAAGCCGTGCTGCTGGTGGACCTGCGCGGGCAGCGCTCCATCGGCCGGATGTTCGGCTGGGACGATCCTGCAGCCGAACCCGTCGTCCTGCCCTTCAACTCCCGCCTCAGCGTCCTGAACACCACTGAATACCCGCAGGACTTCCAGAAGCACTAGMTSADIQDYIPEDQWPPVSAMLEGFGDQTLPASPALAGTTLSLPGEDGSHAEYVFDDESSLAWTVSRNGDTTTGTAGYKAIEARPGIFIIDFIRGEGSAAENVTIIADRNTGATTTGVSRFVTVDGRTRSTTDFSQANTEGSPVRHQRSTALVGKRIYYRYSDVETYEHIYLNPGTFTWNCIRGGEAGLADTDRCMTWEVAEDLFIFFWTEKVMCIEAVLLVDLRGQRSIGRMFGWDDPAAEPVVLPFNSRLSVLNTTEYPQDFQKHNANANANANA
D1-29_041991410feaB_2COG1012Phenylacetaldehyde dehydrogenaseATGAAAACGTACGAATCATTGCTGGACGAGGTCACCGCAGTCTCGGGCAGGACCCGCACCATCCTTGACCCTGCCACCGGTGGGATCGTCGGCGAGGCGCCCGTTCATGACCTTGAATACCTTGAGCGGACGGTCACCGGCGCGCAGGCTGCCCAGCCGGCGTGGGCAGCATTGGGCCACGACGCCCGGTCCGCTGCGCTCCTCAAGGCGGCCGACGCCGTCGAACGCTCCGCCGAGGAACTCGCCCATATTCTCTCCCGCGAGCAGGGCAAACCGCTGAACGGCCCGAACGCCCGCTTCGAGGTGGGCGCCTGCGCGGCATGGTTGCGCGCCGCTGCCACCATTCGCCTGGAACCTGAAATGGTAGTGGACGACGGCGAGACCCGGGCGGAGCTGCACTACAAGCCCATCGGCGTCGTTGCCGCTATCGGCCCGTGGAACTGGCCCATGATGATCGCGGTGTGGCAGATCGCCCCCGCCCTGCGAATGGGCAACGCCGTCGTCGTCAAACCCTCCGGCAACACCCCGCTCTCCGTCCTGGCGCTGGTGAAAGTCATGAACGAAGAGCTTCCCGAGGGCATCCTGTCGGTCGTTTCCTGCGGCCGCGAGGTTGGCGCACGCCTGACCGACCACCCGGCCATCGGCAAGATCATGTTCACCGGCTCCACCGCCGCCGGCCGCGCCATCATCAAATCCTCCGCGGACACCGTCAAGCGGCTCACCCTGGAGCTCGGCGGGAACGACGCCGGCATCGTCCTGCCCGACGCCGACCCGAAAGCCATCGCGGAGGACGTGTTCTGGGGCGCGTTCATCAACACGGGCCAAACCTGCGCCGCGCTGAAGCGCCTCTACGTCCACCAGGACATCTACGACGCCGTCTGCGAGGAACTCATCACCGTGGCCAGGGCCATGCCCATGGGCAACGGCCTGGATGAGAACAACGTCCTGGGCCCCCTGCAGAACAAGGCACAGTACGACGTCGTCGCCAACCTCGTGCAGGCAGCCAAGGACTCCGGCGCCCGCGTCCTGCTGGGCGGAAACCCGGATACCAGCCAGCCCGGCTGCTTCTACCCCACCACCCTCGTGGCGGACATCGACAACGACAACCCGCTGGTCACCGAGGAACAGTTCGGCCCCGCCCTGCCCATCATCCGCTACAGCACCATCGACGAAGCAGTGGAAATGGCCAACGGGCTCGACGTTGGACTGGGCGCGTCCGTCTGGTCCCCCAACCTGACGGCCGCCCGCGAAGTCGCAGGCCGCATCCAGGCCGGCACCGTGTGGATCAACAAACACGGCAACGTGGACCCCCGCATCCCCTTCGGCGGCGCCAAACAGTCCGGCTACGGCCTCGAGTTCGGCGTCGAAGGCCTCAAAGCCCTCGGCATCCCCCAGGTCATCAACGGCTAAMKTYESLLDEVTAVSGRTRTILDPATGGIVGEAPVHDLEYLERTVTGAQAAQPAWAALGHDARSAALLKAADAVERSAEELAHILSREQGKPLNGPNARFEVGACAAWLRAAATIRLEPEMVVDDGETRAELHYKPIGVVAAIGPWNWPMMIAVWQIAPALRMGNAVVVKPSGNTPLSVLALVKVMNEELPEGILSVVSCGREVGARLTDHPAIGKIMFTGSTAAGRAIIKSSADTVKRLTLELGGNDAGIVLPDADPKAIAEDVFWGAFINTGQTCAALKRLYVHQDIYDAVCEELITVARAMPMGNGLDENNVLGPLQNKAQYDVVANLVQAAKDSGARVLLGGNPDTSQPGCFYPTTLVADIDNDNPLVTEEQFGPALPIIRYSTIDEAVEMANGLDVGLGASVWSPNLTAAREVAGRIQAGTVWINKHGNVDPRIPFGGAKQSGYGLEFGVEGLKALGIPQVINGNANANANANA
D1-29_042001245kefBGlutathione-regulated potassium-efflux system protein KefBATGCCTGGCCTGTCCACGTCATTGATTCTGATCGCTATGCTGGCCATCGCAGCGCCCCTGGCCAGCCGTTCCCTTGATCGTGTGGTCAAGGTTCCGATTGTGGTGTTCGAGATTGTCCTGGGAATCCTGCTCGGCCCCAGCCTGTTGGGGTGGATCCAGCCCACCGAGTTCGTAGACACCTTGGCCCAGTTCGGGCTGGCCATGCTTTTCTTCGTTGCCGGCAACGAGATTGATTTCGCCGTAATCCGGGGCCGCCCCGCCACCCGTGCGTCTGCCGGCTGGGTCATCTCCCTCGCGGCGGGTATTGGCGCCGGGTTCATCCTGGCCCCGGGTCCGGAGGCTGCGGTGATCATCGGCGTCGCCCTGTGCTCCACAGCCCTGGGCGCGCTGCTGCCCATCCTTCGCGACGCGGGTGAATCAAAATCCCCGATGGGTATCGCGGTCACCGCATTAGGTGCCGCCGGGGAGTTTGGTCCCCTGATTGCGATCTCTCTGTTCTTTAGTGGCAGGGAATTGGGGCCGGCAACAGCGGTACTTCTGGGGTTTGTTCTCGTGACCGCTCTGGCCATTTATCTCGCCTCGCGCGCCCGGCACACACTGCTCCACTCCCAGGTAACCAGGACCCTCCACACCAGCGGCCAGTTCGCCGTCCGGTCCATCATGTTCATCCTCACGGCCCTGGTGGTGCTGAGCATGGTGCTGGGACTGGACATGCTGCTGGGTGCCTTCGCCGCCGGAGTCCTCTGGAAAGTTGCGATCGCGCGTGCCCCCGAACACGACCGGCATGTCATCGAGATGAAAATCGATGCGATCGCCTTCGGGTTCCTGGTGCCGATCTTCTTCATTGACACCGGCATCGACTTCGACCTGCGCGCGCTCACCGCCAGCCCCGCCGCCCTGGCGCTGGTCCCGGTGTTCCTGATCCTCCTGCTCATCATCCGCGGCCTGCCGTCATTGCTCGCCGCTCCTCCAAAGTCCAGCCCCGCCAGCAAACGGGCCATCATGCTGTTCGGGGCAACGGGGTTGCCGATTATCGTGGCGGTGACAGCCATTGGCCGGAACGAGGGGCTGATCTCCAGCGGGATCTCCTCCGCACTTGTTGGGGCAGGGATGCTCTCGGTACTCCTGTTTCCGCTGCTCGCACTTCGTCAGCTTCAACGCACGCCGTCGGAACGCCAGGGCCGCACCAAGAAATCCCGCAGGAAACAGGACCGGGCCAACGTCCCTGGTGAGGCACCACATTAGMPGLSTSLILIAMLAIAAPLASRSLDRVVKVPIVVFEIVLGILLGPSLLGWIQPTEFVDTLAQFGLAMLFFVAGNEIDFAVIRGRPATRASAGWVISLAAGIGAGFILAPGPEAAVIIGVALCSTALGALLPILRDAGESKSPMGIAVTALGAAGEFGPLIAISLFFSGRELGPATAVLLGFVLVTALAIYLASRARHTLLHSQVTRTLHTSGQFAVRSIMFILTALVVLSMVLGLDMLLGAFAAGVLWKVAIARAPEHDRHVIEMKIDAIAFGFLVPIFFIDTGIDFDLRALTASPAALALVPVFLILLLIIRGLPSLLAAPPKSSPASKRAIMLFGATGLPIIVAVTAIGRNEGLISSGISSALVGAGMLSVLLFPLLALRQLQRTPSERQGRTKKSRRKQDRANVPGEAPHNANANANANA
D1-29_04201453hypothetical proteinATGGAAATGTCCAGCTTCGCGCTGGGAATTCGCCGTTCGGAAGCCGTGGTCCGGCAATGGACTAGGGAGGTGGGCTACCGTCAGTCCATGTACCTGATCCGTTGGCGGGAAGGCGCCTGGGCGTTGCTGGTCCTGCTCGCGGCCGTGCTGATGGCCTGCGGGTTGGCCGACGCCTTTACCTTCATCGTTCAGCCACCCACTTATCCGGTGGGGCACCGGCTGGTCCTGATGGGCGCAACTGCCTTTGCCGTTGCCGCTGGCTGGGCTTGGCTGCGGGGCAGTCCGCGGTGGGTGGCTGTCCTCACCAGCCTGCCCGCGGTGGTGGTGGGCGGACTCGCCCTGCAGTTTGAGGACGGCGGCTGGGGCGTCCTGGCCGGCATCTTCTTGATCCCGGCCGCCGTGATCGCGATGCTGCTGGACTTGCTGAGCGCTGGGAACCGAAGACCAGCCTAAMEMSSFALGIRRSEAVVRQWTREVGYRQSMYLIRWREGAWALLVLLAAVLMACGLADAFTFIVQPPTYPVGHRLVLMGATAFAVAAGWAWLRGSPRWVAVLTSLPAVVVGGLALQFEDGGWGVLAGIFLIPAAVIAMLLDLLSAGNRRPANANANANANA
D1-29_04202585hypothetical proteinATGGGGAAATTGGGGGATTTGGATACGGTGCTCTGGGATAAACGGCTTCAGGGGGACGGGGCATCATCGCGCCCGGAGCCGAAGTGGCGAAGGCCCGCATCCCTGACGTTGGCCGGGCTGGCGTTTGCAGGGGTCACGGCCGCGGTGGTCTTCCTGGCGTCCGCCCCCGACGGGGACAAACGGGACGTGCGCTGCTATTACCACGCGGATCTGACCACCACGTACCCCGCCCCCTACGCTCCCCACGTCACTCTGCCGCCCTACATCCTGGCGGGAGAAGTGGATGCCGGATCCAGCACCGCCACTCCCCTCACGCTCTGCAGGGATACCTGGGACCAGGGACTCATGAACCCTGGGAACATTACGGACGACCTCATTCCATCCGATTTTCAGCAGCCCACCGCCCCTGCCAATCCCAGGGATGTCCGGGACGTCGAAGGGGAACCTCCCACCGCTGTTCCGTACGACGTCGGCCCTGGCCACTTCGTGCCGGAACTGACCGCCTGCATCGTGGACAACGCTGTGGCCGTCATCCCGGGCCCGGCGCAGGTCTGCAATCAGCTCGGTATCCCGGCCTTCGAATAGMGKLGDLDTVLWDKRLQGDGASSRPEPKWRRPASLTLAGLAFAGVTAAVVFLASAPDGDKRDVRCYYHADLTTTYPAPYAPHVTLPPYILAGEVDAGSSTATPLTLCRDTWDQGLMNPGNITDDLIPSDFQQPTAPANPRDVRDVEGEPPTAVPYDVGPGHFVPELTACIVDNAVAVIPGPAQVCNQLGIPAFENANANANANA
D1-29_04203588sutR_3COG1396HTH-type transcriptional regulator SutRGTGAATGACACAAGCATGATGATTCAGTCCGCGCTTGATCAGGTTGGGGTTCGGCTGCGACGGCTGCGCACGCAGCGGAATGTGACCCTGACCAGCCTCGCCGAAGCAACTGGAATCTCAAAAAGCACGTTGTCGCGCCTGGAGAGCGGACAGCGGCGCCCCAGCCTGGAACTTCTCCTCCCACTGGCGCAGGCCTACCGGGTGCCGCTGGAGGAACTGGTGGGCGCACCGGAAGTGGGCGATCCGCGGATACGGCTCAAGCCCCGCAGCGCCAACGGGCGCACCGTGATCCCGCTGACCAGGCAACCGGGCGGGATGCAGGCGTGGAAAATCGTCATCCCCACCACAAAGGCCCACCCTGACCCGAAGACCCATGAAGGATACGAATGGCTTTATGTTCTCTCGGGCCGCCTGCGGCTGATTCTGGGAGATCACGACCTGATCCTGGGGCCCGGCGAGGTAGCCGAATTCGACACTCATGTTCCGCACTGGTTTGGCAGCGACGGCGAGCAGCCGGCAGAAATTTTGAGTCTGTTCGGCGGACAAGGCGAACGCATACATGTCCGTGCCAAGGCGAGTAAGGACTGAMNDTSMMIQSALDQVGVRLRRLRTQRNVTLTSLAEATGISKSTLSRLESGQRRPSLELLLPLAQAYRVPLEELVGAPEVGDPRIRLKPRSANGRTVIPLTRQPGGMQAWKIVIPTTKAHPDPKTHEGYEWLYVLSGRLRLILGDHDLILGPGEVAEFDTHVPHWFGSDGEQPAEILSLFGGQGERIHVRAKASKDNANANANANA
D1-29_04204930trxB_3Thioredoxin reductaseATGAGCGATTATGACGTAGTGATAGTGGGCGGCGGGGCTGCAGGACTGTCCGCCGCATTGGTGCTGGCGCGGGCCCGCCGCAAGATTCTGGTGGCTGACTCCGGGGGGCCGCGGAACGGGCCCGCCCCGCACATGCACGGTTTCCTCTCCCGTGATGGCATGCCACCCGCGGAGCTTCTGGCTGTGGGCCGGGCTGAGGTGAAGAGCTACGGCGGCGAGCTGCTCGAGGGTGAGGTCACGGAACTTGTGACCGCCGGCAGTTCAGGATTCTGGGTGCTGATGGCGGGCGGCCGGAGGATTTCGGCGAGGCGCATCCTGGTGGCCACCGGGTTGCGGGATGAGCTTCCTGATATCCCCGGCCTTGCTGACCGGTGGGCCCGCGATGTGTTGCACTGCCCGTACTGCCATGGGTACGAAGTCCGGGACCGGCAGCTGGGTGTGCTCGGCGGCGGACCCGACTCGGTCCGCTACGCGCAGATTGTCCGGCAGTGGGCTGACGACGTGGTGCTGTTCGTACCTGCCGGCTTCCTGACCGTACGCCAGCGTTCGGAGCTGGTGGCCCGTTCGATCGGGATTGTTGAAGGGGACGTGACCAGGGTTCTGGTGGAGGATGACCGCCTGCACGGTGTCGAAACCGACGACGGCCGCATCGTCCACCGGGATGCGCTGTTCGTCCCGCCGCGCTTTGTCCCCAACAACGATCTCCTGGCCCGAATGGGCTGCGAGCTGGACGACGCCGGATGGGCAGTACGGGATGGCGCTGGCCAGACCACCGTTCCCGGAGTATGGATCGCGGGCAACGTCGCCAACCCCCGGGCCCAGGTCATCACTGCGGCCGGCGAAGGATCCACTGCGGCGATGGCCATCAACGCCGATCTGGTGGATCAGGACATCCGGGACGCCGTCAGCGCCTTCAACCTGGGCTTCTGAMSDYDVVIVGGGAAGLSAALVLARARRKILVADSGGPRNGPAPHMHGFLSRDGMPPAELLAVGRAEVKSYGGELLEGEVTELVTAGSSGFWVLMAGGRRISARRILVATGLRDELPDIPGLADRWARDVLHCPYCHGYEVRDRQLGVLGGGPDSVRYAQIVRQWADDVVLFVPAGFLTVRQRSELVARSIGIVEGDVTRVLVEDDRLHGVETDDGRIVHRDALFVPPRFVPNNDLLARMGCELDDAGWAVRDGAGQTTVPGVWIAGNVANPRAQVITAAGEGSTAAMAINADLVDQDIRDAVSAFNLGFPGPT0013060_7501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
D1-29_04205267hypothetical proteinATGTCCAACCAACCTACGATGACCCCCACGGCGAAGATCCTTCCGCCCAACAAGCATCAGCTGGCCCTGATGATCTGGCTGGCGGTGTTCCCCTCCCTGACCCTGATCAACCTCGTATTAGGAGACTGGCTGGGGACCCTGCACCCCATACTGCGCACATTTGTCCTGGCAACAGTCGCCGTCCCGATTGTCATCTATGGCCTGATGCCGTACCTGCATCGGCTACGCGCCAGCCTGCTGAAGCGCGCCGCCGTCGCTAAGCCTTAAMSNQPTMTPTAKILPPNKHQLALMIWLAVFPSLTLINLVLGDWLGTLHPILRTFVLATVAVPIVIYGLMPYLHRLRASLLKRAAVAKPNANANANANA
D1-29_04206783hypothetical proteinATGGGCCCATCCGCACCCCGGCCCGATGCTGAGCGCGAGCTGGACGAGCTCCGCAGGAGGGCATACGGTCCGCATCCGGATATCCAGTCCGACCCGGCAGCACTGGCAAGACTGGCGGAACTGGAGGCGGCGCGCACCGCGAGTCCGCACGCCGTCACCGGCACCGATGTCAGACGACCCGTTGTAGCACCGGATTCCGGGTCAGTTGCTCACTCCACCCGGACTACGTTTATTGACGAATGGCCGGACCCGGAAACCAGCATCGCGCCCGTGACGGAGTCCAGGATTGGATGGACGTCGTTGACCTGGCGTCGTCTCACGGCGACCCGAGCCCGACGTTACTCATTTACGGCCGGCGCGCTGGCAGTCTTTCTTGCCGGTGTGGTCGCCGTGGCATGGATTGCAACACCGCATCCCGATGCCACATTGCATCCAATCGCAGACGAGGCAGACGGCGTCGTGCTCTCGGTGCTGGGATTCCTGGGTGCGGATGAAGGCCAATCCAGCTTCCGCGGCTATCAACCGTATCGGGGGGTTGAACCCTGGTTCTCAGTGGACGGACAGGGCTTCCAGTGCTTCATGATCATCGACCGTTCCGGTCCCCGTGTAGACGGCGCCAACTGTGTGCCGCCTGGGGTCGATCTTTTTGCAGACATCAACGGGGACTTCCTGTCGGTGGACGACGGCATGGAACGCCTTCCGAATGGGAGCATCTTCCGGTTCCATTACCGCGGCGACACGGTAGAGGTCTTCCTCTACCCCGCGTCGTCGAAGGCAGAATGAMGPSAPRPDAERELDELRRRAYGPHPDIQSDPAALARLAELEAARTASPHAVTGTDVRRPVVAPDSGSVAHSTRTTFIDEWPDPETSIAPVTESRIGWTSLTWRRLTATRARRYSFTAGALAVFLAGVVAVAWIATPHPDATLHPIADEADGVVLSVLGFLGADEGQSSFRGYQPYRGVEPWFSVDGQGFQCFMIIDRSGPRVDGANCVPPGVDLFADINGDFLSVDDGMERLPNGSIFRFHYRGDTVEVFLYPASSKAENANANANANA
D1-29_04207675hypothetical proteinGTGGAAGGCTTCAGGCACTCTTCGGACGCCGACGGTGAGTTTTATGAGCTCCGCAGGCGGGCATACGGTCCGGATCCGGACATAGGTGTCGACCCTCCGGCCCTGGCGAGGTTGCGCAAACTTGAGGCGGCGGACCGCACTGGCGACGATTCTCTGCCGGTTGCCCCCGTGAGCGAGAGTGCGGCAGATTCGGAAGCCCCCACCGACACTGCCCCGATAGAACACTCCGTGCCAAAGCGGAGTCGCCTGTATTGGCTCGGTGGCGCACTGGTCCTCGCGGGAGTGATCGTTGTGGCGACCCTGCTGTTATCCCCGCCGCGTCCTGACGCCACTCTTCATTCGACCGGTGCCGCCGCCGGTAACGGTCTCCCCGTACTGCTGGTTGAGGGGATGGAGGCCTCAACCCTCCGCGGACACGGGTCGTATCTCGGTCTCGAGATCTATTCCGGGGTGAACGCGTTCGACTCGCCGTGTCTGGTGGCATTGCACCGGGCGAGCCGTACGCTCTCAGAATATCGCTGTACCCCGGCGCCAGCAGATCTCATAATGGACGTTTCCTCACACGGCGATGGGTTTGAAGGATTCGAAGGACGCGCCGGGGACGGGATCATCCGATTCGTACTTCGTTACGACACGGTGGACGCTTACGTCTATCTCGTTCCGGAGGAGGGCTGAMEGFRHSSDADGEFYELRRRAYGPDPDIGVDPPALARLRKLEAADRTGDDSLPVAPVSESAADSEAPTDTAPIEHSVPKRSRLYWLGGALVLAGVIVVATLLLSPPRPDATLHSTGAAAGNGLPVLLVEGMEASTLRGHGSYLGLEIYSGVNAFDSPCLVALHRASRTLSEYRCTPAPADLIMDVSSHGDGFEGFEGRAGDGIIRFVLRYDTVDAYVYLVPEEGNANANANANA
D1-29_04208366hypothetical proteinATGAGCGAGAAGCTGATCTTCAACTGCACCTATGGAAAGGAAGAACCGGAGCGCGCCACGCTCCCGTTTGTCGCCGCGAACGTCGCCGCGGCAGCGGGTCAGGATGCGATCGTGCTGTGCACGATCGAAGCCGTGTGGCTGGGGACCAAGGGTGGAACCGACGGAGTGGCCCAGCCGGGGCTGCCGGAGCTCGGCAACTTGTACACCGAGTTCATCGAGAACGGCGGCCAGGTCTGGCTGTGCGGCGCTTGCGCCAAGCCCCGAGGCATCAACGAGGAGCAACTCGAGAAGGGCTCCACCATCGTGGGAGCCGCCAAGGTCGTCGAAGAGGTCGTGGCCGGAGCCAAGACGGTCGCGTTCGCCTGAMSEKLIFNCTYGKEEPERATLPFVAANVAAAAGQDAIVLCTIEAVWLGTKGGTDGVAQPGLPELGNLYTEFIENGGQVWLCGACAKPRGINEEQLEKGSTIVGAAKVVEEVVAGAKTVAFANANANANANA
D1-29_04209660hypothetical proteinATGCTCTCCAAAGGTACGCACAACAGCCTGCGGGGCGTCCCCGCTGCGGCTGGACCGCGTGACGTCGCGGCCGCTTTTCTGAACGCCCTGGCCGCCCGGGAGTTCACGCGAGCCCAGTCACTGCTGGCCCAGGACATCCAGTTCAGGATGCTGGTCCCGGGCAGGCTCATGACAGACCAGGGTGCGGACGCCACCATCCGCCGGTTCGCTGGCTGGTTCGCGGGGGCAGACCAGTTCCAGGTGGAGGCCTCCAGCGTCCAGGAGATCGAAGGCCGTGCGGTGGTGACGTACCGCTTCCGGCTCCACGACGCGAGGGGATGGCGGCTCCTCGAGCAGCACATGATGCTCGACGTCGGCACCGACGGTCGCGTGGAAGCGATTGATCTGCTGTGCTCGGGCTTCCGCCTGAGCACAGCAGTCGAGCCGGGTCAGGTGCACTCGTACGACGCGGGAGACCTCGGGTGCGCCGACGGTCTCGCCCGAGACTTCCGCGAACAGATCCAACACATCCCGATCGGCGACGTGCTTGTGGTGAGCACGCGCGATCCGGCTGCCAAAGAGGATCTGCCTTCCATGGCCCGTCTGATGGGCCACGTTGTTCATTCAATCAAAGCACCGGGAGACGGACGTCTGCTGGTTAGTGTGGAAAGGGGACGATGAMLSKGTHNSLRGVPAAAGPRDVAAAFLNALAAREFTRAQSLLAQDIQFRMLVPGRLMTDQGADATIRRFAGWFAGADQFQVEASSVQEIEGRAVVTYRFRLHDARGWRLLEQHMMLDVGTDGRVEAIDLLCSGFRLSTAVEPGQVHSYDAGDLGCADGLARDFREQIQHIPIGDVLVVSTRDPAAKEDLPSMARLMGHVVHSIKAPGDGRLLVSVERGRNANANANANA
D1-29_042101728hypothetical proteinATGAAGGAAGTGGAATTCCAACTCCTCGGGCGGTTTGCCGTCGCAGTCGATGGCAATCTGATGCCGGGTGACGCTTGGGGAAGCCGTCGGGCAGCAGACGTTCTCAAGCTGCTCGCTCTCTCCCCTGACCTTCGCCTGCACAGATCGCAGGTTATGGAGGCGCTCTGGCCCGAGAGCGATCCTCAGGCCTCTGGCACAAGCCTCCGAAAAGCCCTGTATTTCGCCCGGCGCGCCACAGCAGATGAGCAGACCGTCGTGAGCCACCAGGGGGTGCTCGTGCTCTGGCCCGCTGCCCAGGTCCACACCGACGTCGAGCGATTCGAGGGTGCGGCGCGCCAAGCGCTGGCTGCGAGTAATACTTCGGCCTGCCGAGCTGCAGCGAATCTTCACCACGGCGAACTCCTTCCCGACGACCGCTACGAGTCCTGGCTGGCCGAGCCACGCCAGCGTCTTCGCCAGCTGTATCTGGATCTTCTGCGCGTAGGGGAGCTGTGGCAGCGGCTCTCCGACGAAGACCCTACCGACGAGCAGGCAGCCCGCGCGCTCATGCGGGCCCATCTGGCCGCTGGCGAACGCAGAGAGGCTATCCGGCGGTTCGAGCGGCTGCGCGAGGCACTCCAAGACCACCTGGGCGTCGGGCCGGACCCGGCCACTATCGCCCTCTACGAAAACGTTCTGACCGTCGAAGGTGCGCTCCAACCCACCCAGGCCGAACGTGCCCACGCCCTGCTCGCCTGGGCCTTGGTGCATCTGAACCGCAACGACCTCAAGGAGGCGGAGCGTGCAGCGGAGGAGGCACGCTCCATCGCCCTCGACTCCAGACTGGGCCGAGAGCTTGGAGAAGCCGCTGTCATCCTCGCCAAGGTCGCCATGGCGCAAGGCCGCTGGCGCGAGCGGTTCGCCGAAGAGCTCGTGGAGTCTATGCGCATGAGGGCCAACATGGAGCCCATCGTCTACGACGCCCACCTCTGCCTTGCCGAGTACCACCTCACAGGGCCTGAAGGCTACGTCATCGCTGCCGACTTCGCACGACAGATGATGGGGATGGCCCAGGAGGCTGGGTCCCGGACCGGCACCGCCCTCGGCCAACTCATGCTTGGCGAGGCCCAGCTACTTGCCGGGCATCTCATCGACGCCCAAAAGAACCTCGCACAGGCGGCGCAGGCAAATGACCACGAAGGCTGTCTTTCCGGATCGGCCCTTTCGCGGCAGAGGCTCGCGGAGGTCGCACTCATTGGCGGCCGCAAGTTCGACGCAAACCGGCTGCTCAGCCGGGCGCGCTCATTCGCCGTCCGTTCCGAACTTGCCACCCACCTGTTGGTGCGTGTCTTCGGCACCATGATCCAGGCAGCTGCCGATTCGAAGAAGGCCCTCGCCGTCGTGCGGGCCGCCGAGCGGGAGCTGAGCGGGATGCGTTCCTGCGAGCCCTGCTTGATGGGCTACCTGACCAGTGCTGCGGCGGCCTGCGCGCGAGCCGGCGAACTTGATCGAGCACGCTCCTTCATCAGCAGAGCCGAAGGAATTGCAGGCATGTGGCAAGGAGGCCTGTGGAGCGGCGCTGTGTGGGAAGCCCGTGGCGTCCTCCGTAAGGCCGAAGGCGCGGACGATCAGTCTCGTGCAATGTTCCGCGAGGCAGCCCAGGAGTACACGCGCGCCGGCAGCCAGTCCGATGCCTACCGCTGCCTCGAAGCCGCGGCGACCCACACCAGGAGCACCCCTTCCGGGTAGMKEVEFQLLGRFAVAVDGNLMPGDAWGSRRAADVLKLLALSPDLRLHRSQVMEALWPESDPQASGTSLRKALYFARRATADEQTVVSHQGVLVLWPAAQVHTDVERFEGAARQALAASNTSACRAAANLHHGELLPDDRYESWLAEPRQRLRQLYLDLLRVGELWQRLSDEDPTDEQAARALMRAHLAAGERREAIRRFERLREALQDHLGVGPDPATIALYENVLTVEGALQPTQAERAHALLAWALVHLNRNDLKEAERAAEEARSIALDSRLGRELGEAAVILAKVAMAQGRWRERFAEELVESMRMRANMEPIVYDAHLCLAEYHLTGPEGYVIAADFARQMMGMAQEAGSRTGTALGQLMLGEAQLLAGHLIDAQKNLAQAAQANDHEGCLSGSALSRQRLAEVALIGGRKFDANRLLSRARSFAVRSELATHLLVRVFGTMIQAAADSKKALAVVRAAERELSGMRSCEPCLMGYLTSAAAACARAGELDRARSFISRAEGIAGMWQGGLWSGAVWEARGVLRKAEGADDQSRAMFREAAQEYTRAGSQSDAYRCLEAAATHTRSTPSGNANANANANA
D1-29_04211411hypothetical proteinATGCTGTTCAGCATGACGATCACCTTTGAATGGCGCGGTGCGGTAGGGAACGAAGAGATCAATCAGCTGCACGCGCAGGGGTTCGATCATGCGTACGTTGAAAATGATTGGACTGGCCTGCTCTCACGCCACAGCCTGGGCTGGGTCACAGCTCGCGACGACGAGGGCCTCGTCGGCTTCGTCAACGTGATCTGGGACGGTCAGGCACACGCGTTCATCGAAGACACGTTGGTTGCTGATCGTGCCCGCCGGCAGGGCGTCGGGAAACGGCTCATTGCCCTGGCAACGGAGGAAGCCAAGGCAGCTGGATGCGAATGGCTGCACGTTGACTTCGACGATCACCTGAAGGGCTTCTACCTGGACGTCTGCGGTTTCCGTCCCACGAGTGCCGGTCTCATTCAGCTCCGGTAGMLFSMTITFEWRGAVGNEEINQLHAQGFDHAYVENDWTGLLSRHSLGWVTARDDEGLVGFVNVIWDGQAHAFIEDTLVADRARRQGVGKRLIALATEEAKAAGCEWLHVDFDDHLKGFYLDVCGFRPTSAGLIQLRNANANANANA
D1-29_04212954hypothetical proteinGTGGTTTTGCCTAGGCTCGACCCCACACACCACGTGAAACGAGACGCATCCATGGGACTGTTTTCCCGCAAATCCAATACCGCCGATCCGCACCTGCCGGAACTGAGCATTAAACAAGCGGACAAACTTCGTGCCATGTCCGTCGCCGCGGTCAGCCGTCTCGGCGTCTCCGCAGTGGCGGCAGGAGACCACCTCGCTGTGTCAGAAGGCAGCGGGAACGGGTACGGACTGTTCGCCGTCGGGCGGAAGGCAGCGCAGCTGCCCGAATCGGACTGGCCCGGCATGGTCGAGCAGCACTTCGGCAGCATCATCGGGGGCACTTCACAGTCTTCGGAGCTAGCGGTGGATGAAATGTTGAGCCGCGTCTATCCCAAATTCATCTCCCCAGGAACACTGGCACATTCCCAGCAGATTGACCCGTCACGGTACGGCTACGCCCGGGACGTCGCCATGATCCCCCTCTTGGTCGCGCTGGATTCCCCGGAATCCGTCACCTACGTGGGCGCACCCGAGATTGAAACCGCCGGCGGAGAAGACATCGTCTGGGACGCCGCGCTGAAGAACCTGATCGCCGAGGGTCCGGGTGAGCCTGAGGCAATGAACTACGAAGACGGATCCTTTCTGGTCTTCGAAACCGAATCGGTCTACCAGGCATCCTGGCTGGCTTACCCGGACCGGTTCTTTGAACTTCTCGGCTACCAGCCCGGACCACTCGGGGCGCTGCTCAGCATCCCGGCTACGAATATCCTTTGCCTCCATTTGGTCACCGAGGCCACAAGCATCACCGACATCTCCGCGATGATCAGCGTCACTGGGGCCATGCAGGCCCAACACCCATCCGCGCTCAGCCCCCTTCTCTACTGGTGGGATGGCACTACCGTGCAGCCCATTACAGGCCACGACGGCGAAAACGTCCATCTGATCGTCCCGGACGAACTCGCCAGCATCCTCTAAMVLPRLDPTHHVKRDASMGLFSRKSNTADPHLPELSIKQADKLRAMSVAAVSRLGVSAVAAGDHLAVSEGSGNGYGLFAVGRKAAQLPESDWPGMVEQHFGSIIGGTSQSSELAVDEMLSRVYPKFISPGTLAHSQQIDPSRYGYARDVAMIPLLVALDSPESVTYVGAPEIETAGGEDIVWDAALKNLIAEGPGEPEAMNYEDGSFLVFETESVYQASWLAYPDRFFELLGYQPGPLGALLSIPATNILCLHLVTEATSITDISAMISVTGAMQAQHPSALSPLLYWWDGTTVQPITGHDGENVHLIVPDELASILNANANANANA
D1-29_04213825hypothetical proteinATGAGGGAAAGAATGGCTGATCCGGAGACGACCGGGCAGTTCAGCACGGTGACGGTCGAATCTGAGGACGGAACGCTCACTGCACTTGCCCGCCCTGGACAAGGAGTCCCCATCGTCATCGTGCACGGGGTCATCGCGGATGCGCTTACCTGGAAGCAGGTCTCCAGAAACGTAGCGCCTGGGCGTCCAGTCTTCTTGCTCAATCGCCGGGGACGCGTCCCGAGTGCTCCCCTGGGTGAAGGGTATGGAGTCGAGCGGGAGGTGCAGGACCTCCTGCGCTGGCTATCGACTCTTGAAGGTCCGGTTGACCTTGTTGGGCACAGCTACGGCGGCCTCATAGCGGTTCAGGCTGTTCGACAGGGTGCCAACGTTCGCTCGCTGGTCCTGTACGAGCCGGTCGCACATCCCTTTGGCCTCGAGGCGCTGCCGCTCGTGGCGGCGGCCATTAGCGCCGGCGATCTTGATACCGCCGTCGAAATCATCAACGTTGATCTTTCCGGCTACACCAAAGCACACGTTCAGGCACTCCGGGATGGCCCAGCATGGCCTAAGCTCATGCAGCTAACAGAGCCCGCCGCCGTCGAGCTGCATGCAATCAACCACTTCGTTCTCACCGTCCCACAGTCATGGAGTACTCCAACGACGCTCATCGCAGGCGAGTTGAGCAGGAACCGCCCGCCCTACGGGCCGAGCGTTGACCTGTTTATGGAAACCTTGGACGTCGGGAGTGTCACCATCTTGGCGGGCCAAGACCACCTGGCGCACGTGACCGCTCCACAGGAACTGGCGGACGCAATAAACGGTGGCCTTCCGACTGGACGATGAMRERMADPETTGQFSTVTVESEDGTLTALARPGQGVPIVIVHGVIADALTWKQVSRNVAPGRPVFLLNRRGRVPSAPLGEGYGVEREVQDLLRWLSTLEGPVDLVGHSYGGLIAVQAVRQGANVRSLVLYEPVAHPFGLEALPLVAAAISAGDLDTAVEIINVDLSGYTKAHVQALRDGPAWPKLMQLTEPAAVELHAINHFVLTVPQSWSTPTTLIAGELSRNRPPYGPSVDLFMETLDVGSVTILAGQDHLAHVTAPQELADAINGGLPTGRNANANANANA
D1-29_04214780hypothetical proteinATGCTCCTGAATCCCGCGGTCCTGCCCGCGCCGCCGAACCGTGCTCCAGACGTTCAAGATGACTTTTCCGGCCCACTGCGTACCGACTTATGGGTGGATCACTACCTGCCGCACTGGACCACCCCGGACAGGTCAGCCGCGCGCTACGAGACGACGCCGGCGGGGATGCAGCTGCGTATCGACGCCGACCAACTCGACTGGCGCCCCGAGGACGCGCCATTGCGGGTCTCCAACCTCCAGACGGGCAACTTCTCCGGCGGTCTTGGGTCGAGTGTGGGTACGCATCGTCACCGGAAGGACGGATTGAGCGTTCGTACGCCGACCGCCACCCAGCTTCTCTGGGCGCCCTCGGCGGGCCGCGTCGACATCACCGTCAGTGCCTCCCGTGACGAAGAGTGCATGCTCGCCGCCTGGCTTGTCGGCGCAGAGCATCTGGGTGCCCGGCATGCCGGCGAGGTTTGCATCTTCGAACTTGACGCTGCCGCCGTCGGGCCTACTACCACCGCGCGGTCGGGGATTAAGGCCCACGGCGACCCGGAGCTGGTCACGGACGTGACCACCGTCGAGATCCCCGTCGACGCTTCCAAGCCGCATACCTGGACGGCGATCTGGGGCAACGGCCAAACGATCATCGGCTGCGAGGGCCTCGCCATCCGGCACATTCAGCAGGCCCCCGACTATCCGCTCTTCCTGTTGATCGACCTCTTCGAGATTGGACCGCCCAGTGGCGCCTACCCGAAATCAGCGACCCTCCACCACTTCAGAGGCTGGACTGCCTGAMLLNPAVLPAPPNRAPDVQDDFSGPLRTDLWVDHYLPHWTTPDRSAARYETTPAGMQLRIDADQLDWRPEDAPLRVSNLQTGNFSGGLGSSVGTHRHRKDGLSVRTPTATQLLWAPSAGRVDITVSASRDEECMLAAWLVGAEHLGARHAGEVCIFELDAAAVGPTTTARSGIKAHGDPELVTDVTTVEIPVDASKPHTWTAIWGNGQTIIGCEGLAIRHIQQAPDYPLFLLIDLFEIGPPSGAYPKSATLHHFRGWTANANANANANA
D1-29_04215615betI_9HTH-type transcriptional regulator BetIATGCCATCCACACGGGAGCACCGGAGCATTCAGGAGCGGCGCCAACAACTCCTCGACGCCACGATCCATGTGATGTGCGCAGAAGGGGTGGCGTCAGCGACCACGCGCGCCATCACCAAGCAGGCGGGACTGCCCCACGGGGCGTTCCACTACTGCTTTGATTCTAAGAACGATCTCTTCGCAGCACTGCTCGAAAGAGAGCTGCACCAAGCCATAGCAGCAGCCTTTGAGCCCACCGGCACGGGTGTGAACGTCCAGCTCCGGATAGAGCATGGACTAACGACCCGTCTTGAGGCAGTCAAGGCAAGGCCCGATTATGAGCTCGCTCTTGCGGAGCTGGCTGTGATGTCACGGCGTGACCCGGAACTGCAGCCTCTCACCGGCTGGGAGCAGGCAGCCTGCTTGAAAGCTCTCAGTTCGTACCTGGAGAAGTGGTCTGCCGATGACGACATTACGTGGGTGGCACCGCCGGAAAAGGTAGCTGCACTGCTCATTGCGCTGATCGACGGGATCACCTCGGCATGGCTGAACGACCGTGACGATGAACGTGCCGCCTCATCCATCCAGTTGGCCGCTCAAGCCACTTCCTCCCTACGGAAAAGGAACACGCCGTGAMPSTREHRSIQERRQQLLDATIHVMCAEGVASATTRAITKQAGLPHGAFHYCFDSKNDLFAALLERELHQAIAAAFEPTGTGVNVQLRIEHGLTTRLEAVKARPDYELALAELAVMSRRDPELQPLTGWEQAACLKALSSYLEKWSADDDITWVAPPEKVAALLIALIDGITSAWLNDRDDERAASSIQLAAQATSSLRKRNTPNANANANANA
D1-29_04216375mdtJSpermidine export protein MdtJGTGAAATGGCTTTCCCTCGCCGGCGCCATTCTCTTGGAAGTTGCTGCGGCGCTGTCCATGCAGGCTGCTGTCGTTGACGCCGGGTGGTACGCCCTGGTGGTCATCGGTTACCTGGGTGCTTTCGTACTCCTTGTCCAGGTTCTCAAAGCCGGCATGGCTGTGGGCGTCGCCTACGGCATCTGGGGCGCCTCAGGCGTGGCGCTGACCGCGATTCTGGCAGCAATCCTTTTCGGTCAGGCACTCACCGGTGTGATGATCATGGGTCTGGTGCTGATCGTCGGCGGGGTCCTGCTCGTGGAAATAGGGTCCCAACGAGCCTTGGCCGCCAGAAAGAACTCAGCCCTGCCCGCCGCCGCAGAGCGAGTGGACGCCTGAMKWLSLAGAILLEVAAALSMQAAVVDAGWYALVVIGYLGAFVLLVQVLKAGMAVGVAYGIWGASGVALTAILAAILFGQALTGVMIMGLVLIVGGVLLVEIGSQRALAARKNSALPAAAERVDAPGPT0029230_117DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029230-emrE|qac|mmr|smr-K03297NANA
D1-29_04217315ebrAMultidrug resistance protein EbrAATGGGCTGGGTCCTTCTCTCCATTGCGATCATTTCCGAAGTGGGCGCAACCATCAGTCTCAAAGTCGCCACCGACGGAAAGAAGCGCTGGTATGCGCCGGTGGCCATTGGCTATATTGCGGCTTTCACCCTCTTGGCTGGCGCTCTATCGTTTGGGCTCCCCATCGGAGTGGCCTACGGCGTGTGGGCAGCGTCAGGGGTGGCCCTGACCGCCGTCCTGGCCCGCTATATCTTCAAAGACCCCCTGACACTAACGATGGGTGCCGGCATAGGCCTCATCATCGCCGGGGTGTTCCTGGTGGAACTGGGCCACTGAMGWVLLSIAIISEVGATISLKVATDGKKRWYAPVAIGYIAAFTLLAGALSFGLPIGVAYGVWAASGVALTAVLARYIFKDPLTLTMGAGIGLIIAGVFLVELGHPGPT0029230_2384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029230-emrE|qac|mmr|smr-K03297NANA
D1-29_04218474hypothetical proteinATGACCATAACCACCACAACTAAGGCCCGCCGCACGAACGTCGGAAGCAGGCACCCGGAGCTTTACGGGGCACTGACGGCGGTGGGGACATTAGCGGATAAGACAGCGCTCGCGGAAGGACTGTCGCCGCTGCTCGTCGAACTGGTCAAGATCCGGGCGTCCCAGATCAACGGGTGCGCCTTCTGCCTGCGGATCCATACAAAGGACTCGCTGGCCAAGGGCGAGACGCCGGAGCGGCTGAGTGTGTTGCCTGCCTGGCGGGAAAGCCTGTACTTCGACGAGCAGGAGCGCTCGGCCCTTGCCCTCGCCGAGTACATCACCGCCATCCAGGATTCCCACAGGAACCGGGGACTGTACGAATCGGCGGTAGCCCATCTGACCCCCGGCCAGGTGTCCGCAGTGACGTGGCTGACGATGACGATCAACACCTACAACCGCATCGCCATCAGCGGGGCCTACCCCGTCGCGCCGTAGMTITTTTKARRTNVGSRHPELYGALTAVGTLADKTALAEGLSPLLVELVKIRASQINGCAFCLRIHTKDSLAKGETPERLSVLPAWRESLYFDEQERSALALAEYITAIQDSHRNRGLYESAVAHLTPGQVSAVTWLTMTINTYNRIAISGAYPVAPNANANANANA
D1-29_04219702hypothetical proteinATGAGTGCATCCAATGACGGAGTGGACAGCCGTCATCGATTCCGGCGGGCGATGGCAGGGTTTCGGGTAGCGCAGCGAAGCGCGGCGGATCCCGCCCATCCCCTGGTGGCCTCGCATGAGGCTGAATTGCGGCTTCGTGTTCTGAAGGCCGCCAGTGTCCTGGTTGACCGTTTGACGTACGACGCCGTCACCATGGACGCCGTTGCCCGGGCGTCGGGTGTGAGCAAGTCAACTCTGTATCGGTATTGGCCCTCCCGTCAGGTTCTGGTGCTGGAAGCCTTTACGTTCAAGACGAATTTGCTGACCAACGTTGATGACTCCGGCGACGTGGCACGGGACCTGCACGCCTACCTTGTCGCTTTGACCTACTGCCTGAAGGTGGGCGGGGCGGCGTCGATAGTTTCCAACCTCATGGCTGAGGCGATCCGCAGTGAAGAGTTCGCAGGGCAGTTCCGCCAGACGCTGCTGCGGGAGCGCCGGCTGGGGTTTCTTGCGGTCCTGCGCCGGGGCCAGCGCCGCGGGCAGATTCGCGACGACGTCGATCTGGTCACGGTGATCGACGCCCTGTATGGGGCGGTCCATCACCGGCTGATCGCTACGGGACAGGACATCGACGGGGCGTTCCTACGGCGGCTGACCGAATTCGCCATTGACGGCACGGCAACCGCCGATTATCTGGCCAGCCACCGGGCAGAGAAGTAGMSASNDGVDSRHRFRRAMAGFRVAQRSAADPAHPLVASHEAELRLRVLKAASVLVDRLTYDAVTMDAVARASGVSKSTLYRYWPSRQVLVLEAFTFKTNLLTNVDDSGDVARDLHAYLVALTYCLKVGGAASIVSNLMAEAIRSEEFAGQFRQTLLRERRLGFLAVLRRGQRRGQIRDDVDLVTVIDALYGAVHHRLIATGQDIDGAFLRRLTEFAIDGTATADYLASHRAEKNANANANANA
D1-29_04220405Tn3 family transposase ISAau4ATGAATGACGATTCAGAAGGCGCGTTGCATCATATCGAGCTGTGGGTGCCTGACATCCATAGAGCCTCGGCCGAGTGGGGCTGGATCCTGTCCGCCCTGGGATACGAGACGTACCAGACCTGGCCCCGTGGAATCAGTTGGCTAAGAGGCTCCACCTACATAGTGCTGGAGGAATCACCGGATCTGAGTGGCCGGCATCATCAACGAAGGGCACCTGGATTGAATCACCTCGCATTCAAAGCGGGAGGCAGGACCCGCGTGGATGCCCTTGCTGGAGACAGTGTTAAGCACGGCTGGACGCCCTTGTTCCCGGACAAGTACCCACACGCCGGCGGACCGGACCATTATGCTGCCTACCTGGCGAATTCAGACGGCTTCGAAATAGAGCTCGTCGCCACCCGCTAGMNDDSEGALHHIELWVPDIHRASAEWGWILSALGYETYQTWPRGISWLRGSTYIVLEESPDLSGRHHQRRAPGLNHLAFKAGGRTRVDALAGDSVKHGWTPLFPDKYPHAGGPDHYAAYLANSDGFEIELVATRPGPT0004575_434DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004575-rhnA_cobC-K22316NANA
D1-29_04221711menH_72-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGTTGGCGCTCGATCCAGTCTTCGCCGCGCAGGGCCAGTGGAAGCGTGTGTACATCGATCTTCCGGGCATGGGCAAGTCCGCAGCGGGGCCGGAAATTGACAGCGCCGACAGTGTGGCGGAAGCGGTTGTGGAATTCGCCAGGAACACCTTTGGAAACGAAAAGTTCGCAGTGTTGGGAAACTCATTCGGTGGAATGATCGCGCGGCACATCGTTGCTGAATTTGGCGATCAGGTTCTGGGTCTGGCACTCATTTGCCCGGTTGCGGTGGCAGAGCAAGGTGCACGGAATGTGCCATCCAAGACTGTCCTGCAAAGGGATACAGGCCTTTTGGCGTCTTTGGACTTCGAGGATGCAACGGACTACGAGGCAATGGCCGTGGTCCAGTCGCCCGAGAACTGGGACCTGTTCCGTGAATCAGTGCTGCCGGGATTGCGGGCCTTTGACCAGGAGGCCATCGATCGGATTTCGGGCAACTATTCGTTCAGGACGGAGCCTGAGGATCGCTCGCCCACGTTTCAGGGGCCGACTGTCGTTATCACCGGAAGGCAAGACCACGTGGTCGGGTTCTACGATCAGATCGCCCTCGCCGACCACTACGTGCGATCCACGATTGCAGTTCTCGACGGAGCCGGCCACAACGCCCACCTTGACCAACCGGAGCTGACTGGCCGTCTCCTCGACGAATGGCTTGTTCGCTTGGAGCATTGAMLALDPVFAAQGQWKRVYIDLPGMGKSAAGPEIDSADSVAEAVVEFARNTFGNEKFAVLGNSFGGMIARHIVAEFGDQVLGLALICPVAVAEQGARNVPSKTVLQRDTGLLASLDFEDATDYEAMAVVQSPENWDLFRESVLPGLRAFDQEAIDRISGNYSFRTEPEDRSPTFQGPTVVITGRQDHVVGFYDQIALADHYVRSTIAVLDGAGHNAHLDQPELTGRLLDEWLVRLEHNANANANANA
D1-29_04222474hypothetical proteinATGACCAGCCCGGACCTTCACCGCTGGCCTCCCGGCAACGGCACATATCGCCGATCAGAGGTGACGGCGGGGATCGGATATGGCGAAGCCGTGTGGCAGCGGGTCGCCAGCGAAGTTCTCCTGTGGAAGGTAAAAACCGCTAGTGGTTTTGCTGTGGACTCCACGGGTCCGGTGTCGCCCGGCGACCGTGTCATCGTCACAGCAGGCCTGTTCGGTCTGACTGTTGTGGAGCCGGTTCAAGTCGTGGCTGTTGTGCAGAAGGCAGACCGGAGCGGTTTCTCCTACCGCACACTGCCGGGACACCCCGTCCATGGGGAGGAAGCGTTTATCGTCCACCGCCACGGCGATGAAGTCCGGCTCACCATTCGCTCACTCACCCGGGCGGCGTCTAGGCATCCGTGGCGGGGGCTCTTCCCACTCCTCCTGGTAGCCCAGCGAATGGTACGACGGCGGTACTTGCGCGCGCTCCGCTGAMTSPDLHRWPPGNGTYRRSEVTAGIGYGEAVWQRVASEVLLWKVKTASGFAVDSTGPVSPGDRVIVTAGLFGLTVVEPVQVVAVVQKADRSGFSYRTLPGHPVHGEEAFIVHRHGDEVRLTIRSLTRAASRHPWRGLFPLLLVAQRMVRRRYLRALRNANANANANA
D1-29_04223159hypothetical proteinATGCGGGTCACCAGGGGAGGGGGCAGGCGCTGGAAGCTCATGCTGGATCGTCTGAATTTGCTGGGCTTGATGGGTTTGTGGGCGGAAGAGTTCATCCGCAATTCCAAGCAGGTCACCGCTCCCTGCGCGCCTTGTGCCGTTGGCCCGGTTCCTGCGTGAMRVTRGGGRRWKLMLDRLNLLGLMGLWAEEFIRNSKQVTAPCAPCAVGPVPANANANANANA
D1-29_04224177hypothetical proteinATGAACGACTCCTCCACTCTCACCTTTACCCTCACGTATGCAGCCACCCTTGGAGTGGCGGCCGTGATGTTCCTGGGCCAGATGATCGCCTTTGGTGCCGTGCTGGCGCTGGCGGGAGCTGCGGGCCTCCTCGGCTATGGAGCACGCCTGATCATACGACGACGGCCACGTTCTTAAMNDSSTLTFTLTYAATLGVAAVMFLGQMIAFGAVLALAGAAGLLGYGARLIIRRRPRSNANANANANA
D1-29_04225393hypothetical proteinATGACCATGGATTCCCCTGCCCCCGGCGACGCAAGCAGCCTGGCGGCTTCGCTTTTTGCACCGCTGGACCTAAGCCTTCCGGCGAGTGCCGACGGCATTGCGGTGGACCAGACTCCGCTTGAGCCTTTTGCCGGTGCTTCCCTGACGAGTTTCACGGCCGATACTGAGGAGATGAAGTCCATCTGTGTGTCGGCGGGTTCGATGGTGGCCCCCAATGCGGAGATCGTTGGGCAGGACGCGAAGGTGCTGCGCGGCGTCGGGATTGAGCCAGGTTCCACCCTGTGTTCCAAAGAGACAGACTCCGGACGGGGGCCGGCATTCCGGGTAGTCATCCCGCCGAAAGACTCGGGAAAGATCCACGTGGCGATCTACCAGCTCCCTGCTGGGCGCTGAMTMDSPAPGDASSLAASLFAPLDLSLPASADGIAVDQTPLEPFAGASLTSFTADTEEMKSICVSAGSMVAPNAEIVGQDAKVLRGVGIEPGSTLCSKETDSGRGPAFRVVIPPKDSGKIHVAIYQLPAGRNANANANANA
D1-29_04226777COG10283-beta-hydroxycholanate 3-dehydrogenase (NAD(+)) 2ATGAGCAACACGTCATGGCAGGAAGTGGCCACCGAGGGCCGCTTCACCGGCAAGACGGTCATCGTTACCGGCGCAGCTTCGGGCATCGGCCAGGCTACGGCCCTGCGCATCGCGAAGGAGGGCGGCCGGGTGATCGCGGCCGATATCAGCAAGGAGCGGCTGGATGACCTGGTTGCCGACAACAGCGGCCTGGATATCGTTCCCGTGGCCGGAGACATCAGCGCGGAAGAGACGGTGGCTGCCGTGGTTGCCGCGGCGGGCGGCAGGGTTGACGCCCTTGCCAACGTGGCGGGCATCATGGACAACTTCGCTCCCATCCACGAGATCCACGACGACATGTGGGACAACGTCTTCCGCATCAATGTCACCGCACTCATGCGCCTCACCCGTGCGGTGGTTCCGCTGATGCTGCAAGCCGGAGCGGGATCGGTGGTCAATGTCGCTTCCGAAGCGGGCCTGCGCGGGTCCGCCGCCGGTGCCGCGTACACGGCGTCCAAGCACGCCGTCGTCGGCCTGACCAAAAACTCGGCAGTGATTTATGGGCCGCAAGGCCTGAGGTTCAACGCTGTGGCACCGGGCCCCACCATGACCGGCATCGTGGCGAACTGGGGGTCGAAAACGGCCGCCGAGCGTCTGGGTCCGATCATGCAGGCCACCGTCCCCGCCGTCGCCACCGCCGCGCAGCTTGCTGCGTCCATCACCTTCCTGCTGAGCGATGACGGCACCAACATCAACGGCGCCATCCTGGCGTCCGACGGCGGCTGGTCGGCACTGTAGMSNTSWQEVATEGRFTGKTVIVTGAASGIGQATALRIAKEGGRVIAADISKERLDDLVADNSGLDIVPVAGDISAEETVAAVVAAAGGRVDALANVAGIMDNFAPIHEIHDDMWDNVFRINVTALMRLTRAVVPLMLQAGAGSVVNVASEAGLRGSAAGAAYTASKHAVVGLTKNSAVIYGPQGLRFNAVAPGPTMTGIVANWGSKTAAERLGPIMQATVPAVATAAQLAASITFLLSDDGTNINGAILASDGGWSALNANANANANA
D1-29_04227609mftRPutative mycofactocin biosynthesis transcriptional regulator MftRATGCGAACTGAAGAGTCCACGGCTGCCGGGTCCCGCTCCACCGGACGGCCCGCCACCATCGATCCGGACGCGGTAGCCGCGGTGGCACTGCGGCTGTTCAGCCACCAGGGGTACGAGAACACGTCCATGGAGGACGTCGCCCGGGAAGCGGGCATCGGACGCAAGAGCCTGTACCGGTACTTCTCCACCAAGGCGGACCTGGTGTGGGGCGGGATGGAACCGGTCATTGAGGCCGTGACCCAGGAGTGGGACGTGTCCCCGGCCAGGCAGAGTTCCGACGGCGGCGTCCTGGCTGGGCTCCGGGCCGCCGCCGTCGCTGGGGTCACCACCCTCCCGGATCTTGCAGTGACCCGCGGGCGGCTGCGCCTCATCGCCGAGCACCCCGATCTGTCCAGCCGGAGCTACGAATTCCTGGCGCCGCAGCGGGAGCGCGCACGCCTCCATCTCGTGTCGCTGGGGCTTGGAGAGGATACGGCCCGCTACCTGTGCGCAGCGTTTCTGGGTGCGACGTTTGAGGCGTGGCTGCTGTGGGCGGCCGGCGAAGACGCCGATCCTGCGCCCTACCTCGCCGCGGCTATGGGGGTGCTTAGGGTCCCGGAAGCGGACTGAMRTEESTAAGSRSTGRPATIDPDAVAAVALRLFSHQGYENTSMEDVAREAGIGRKSLYRYFSTKADLVWGGMEPVIEAVTQEWDVSPARQSSDGGVLAGLRAAAVAGVTTLPDLAVTRGRLRLIAEHPDLSSRSYEFLAPQRERARLHLVSLGLGEDTARYLCAAFLGATFEAWLLWAAGEDADPAPYLAAAMGVLRVPEADNANANANANA
D1-29_04228702hypothetical proteinATGCCCCCGCGGCCAGAGCCGGATGCGGGCAACGAGGTCTTCAGTGACTATGCCTGGCAGGGCGAGGATGACCCGGGCCGCTTGGATACAGCCGCCGTCCTTTTTGGACGGGACAGGCTCCGGGCACACGGGACGTCCCGCACCGACTGGTACGCGCTGAGCTGGGTCCTGGAAACCGGGGCTCAGTGGGTCACTCGGAGGCTGGCGGCCACGGTTCACGGCCACGGCTGGAGCCGCCAGCTCGAACTTGAACGCAGTGAGGGCGGCGTCTGGAGTTCACACGCGTCCGCTTCCGGAAGCGGTGCGTCGGGAGGTGATGGGCACGCAGTTGCAGCCATGCCGCCGCCGGGTATCGATAACCCCGACGAGCTCCGCGATTCACTGGATTGTGACCTCGGCCTGTGCCCCATGACCAACACCATGCCCATCCGGCGGCTGAATTTGCTGGGTCAGCGAGCGGTGGGTCCGGGATCTTCCGAAGGGGAGTCATTGCTGACCATGGCTTGGGTGGAAGTTCCCAGCCTCAGGGTGTTCCCCAGCAGGCAGAGATACAGCAGCTCACCCGCCTCAGCAGGCACGGTCCGCTTCAGCTCGGAGAGCCGGGACTTCACGGCAGAGCTGACTACCGACCAGCACGGCGTTGTCACCCTGTACCCGGGGCTTGCCAGGTTGGTGCCTTTGCCCCACGGGAAAGGCGCCTGAMPPRPEPDAGNEVFSDYAWQGEDDPGRLDTAAVLFGRDRLRAHGTSRTDWYALSWVLETGAQWVTRRLAATVHGHGWSRQLELERSEGGVWSSHASASGSGASGGDGHAVAAMPPPGIDNPDELRDSLDCDLGLCPMTNTMPIRRLNLLGQRAVGPGSSEGESLLTMAWVEVPSLRVFPSRQRYSSSPASAGTVRFSSESRDFTAELTTDQHGVVTLYPGLARLVPLPHGKGANANANANANA
D1-29_04229231hypothetical proteinATGACAATCAATTCACCAGATTCATTGCCCGACGACGAAATGCCCGACGACGATCAGCAGCTAAAGCCAGCGGACGGCGGAACCCCTGCCGGTAAGGATGGGGACCAAAACGCCGACGGCGGGATCCCCGGCGGAGATAAGGGCGTGGGCCTGGGTGCCACGGGGGAGCCCAACACGTTTGAGCCCGAAGAGGACCCGGACGCTGCAGACCCGGACACTGCAGGCAGTTAGMTINSPDSLPDDEMPDDDQQLKPADGGTPAGKDGDQNADGGIPGGDKGVGLGATGEPNTFEPEEDPDAADPDTAGSNANANANANA
D1-29_04230930pld1Pyridoxal 4-dehydrogenaseATGGAATACAGGATTCTCGGCCGTACCGGACTCTCCGTCTCCACAGTCTGCGTTGGGACAAGCTCGCTGGGCAGCCACCCTGCCCCTCGCGGCACCGACACCGCCGTGGCCACCATCCGCCGGGTTTTTGAGGGTCCCTTCAATTTCATCGACACGTCCAACGAGTACGGGAACGGCGGCAACAGCGAACGCAGGATCGGCCAGGCCATTGCCGAAGCCGGTGGGCTGCCCGAAGGGGTTGTCATCGCCACCAAAGTGGATCCCGTCGTGGGAACCCGCGACTTCTCGGGCGACCGCGTCCGCCGCTCCGTGGAGGAAAGCCTGGAACGCCTGGGCCTGGACCGCCTCCAGCTGGTGTACCTGCACGACCCCGAGAAAATCACGTTCGAAGAAGGTACCGCGGCCGGCGGCCCCCTGGAAGCACTGACCGAACTCAGGGACCAGGGCGTGATCGGAAACATCGGCGTAGCTGGCGGCCCGATTGACCTGGAGCTGAAGTACCTGGCCACGGACATGTTCGACGTCGTCATCAGCCACAACAGGTACACGCTGGTGGACCGGACTGCCGAACCGCTGATCCAGGACGCGATGGAACGCGGCGTCGCCTTTGTCAACGCCGCCCCCTTTGGCGGCGGGATGCTTGTCAAGGGGCCCGACGCCGAACCCAACTACTGCTACCGCCCCGCGAGCCAGGCTACTATCAGCCGCGTCCGGAAGATGGAGGCGATCTGCGCCGAGCACTCGGTGCCGCTGGCTGCCGCCGCGCTGCAGTTCTCCACCCGGGACCGGCGCATCACGTCCACGATTGTTGGGATGTCCGAACCCGCGCGTGTTGACCAGACCCTCCAACTGGCCGAATGGGATATCCCCGCCGAGGCCTGGGCCCGGATCCTGCCGCTCGCCGCGGCCGGGACCGGCGAACTCGACTAGMEYRILGRTGLSVSTVCVGTSSLGSHPAPRGTDTAVATIRRVFEGPFNFIDTSNEYGNGGNSERRIGQAIAEAGGLPEGVVIATKVDPVVGTRDFSGDRVRRSVEESLERLGLDRLQLVYLHDPEKITFEEGTAAGGPLEALTELRDQGVIGNIGVAGGPIDLELKYLATDMFDVVISHNRYTLVDRTAEPLIQDAMERGVAFVNAAPFGGGMLVKGPDAEPNYCYRPASQATISRVRKMEAICAEHSVPLAAAALQFSTRDRRITSTIVGMSEPARVDQTLQLAEWDIPAEAWARILPLAAAGTGELDPGPT0017915_103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064NANA
D1-29_04231435hypothetical proteinATGTTGTGGGAGAGCGTTGCCGGGGTGGTTGCCGGCATCCTGCTGGCATACGCCGTCCTGCTGTTTTTGTTGTGGCTTTACGCGCGCAGGCACCCGGAGACTGTCACCCCGAAGGATGCGCTGCGGATGCTCCCGGACCTGCTGCGCCTGATCCGCCGGCTCGCTGCTGACCGCACCCTGGCCCTGGGGATTCGGGTCCGGCTGGTGCTCCTCCTGGCGTATCTGCTGTCTCCCCTTGACCTGGTTCCGGACTTCATCCCGGTGATTGGCTATGCCGATGACGCCATTATTGTTGCCATGGTGCTGCGTTCAGTCCTCCGGCGTGCGGGACCGGAGGCGCTGAGCCGGCACTGGCCCGGAACCCCTGCCGGCCTGGAAATCATCGTTAAGGCAGCGGGGCGGCCACAGGCTCCAGGCACAGCCGGGGCAGCATAGMLWESVAGVVAGILLAYAVLLFLLWLYARRHPETVTPKDALRMLPDLLRLIRRLAADRTLALGIRVRLVLLLAYLLSPLDLVPDFIPVIGYADDAIIVAMVLRSVLRRAGPEALSRHWPGTPAGLEIIVKAAGRPQAPGTAGAANANANANANA
D1-29_042322067ftsH3ATP-dependent zinc metalloprotease FtsH 3ATGGCCGAACCAGCACCGTCCAAGGACGAACAACAGGATGGCGGTTCCGCCCCGCCCGCGGCCGCCGACGGCAAGACGCCGTGGCGGACCGAAGGGTTGCCTGCCCGCCAGTCACAGCCTGAAAAACGCTTCGGCGGGTGGAAGCGCACGCTGGTGTTTGTCCTGCTCTACCTTGCCTTCTTCGCTGTGCTGTCCCTCCAGGACCGGCAAAACCAGCCACTGTCCATCGCCTATACCGAGTTCAAGGAAGAGGTCCGGGACAACAACATTTCGGAAGTTTTCGCGCGCGGTCAGACCATTGAGGGGAGCCTCCGGTCCGAAAGGCCAGTGCCCGACGGCGGCGGGGCCAACTACAGCCAGTTCACCACCGAGCGTCCCCTGTTCGCCGACGACAGCCTGCTGACCGAACTGGAGCAGAACGATGTCACGGTGCGGGCCACGCCCCTGGTTGATGAACGGGGTGTCCTGACCAACCTGCTCATCGCCGTCGCCCCCATTGCCCTCCTGGTGGCGTTCTATCTCTGGCTCTTCAAGAAACAGTCCGGACTGCTCGGCGGCCTGGGCGGATTCGGGGCAGGCAAGAAGTTCCAGCCCGTGGACCCGGAGAAGGTGAGGGTCACCTTCAAGGACGTGGCCGGGATCGACGAAGTGGAAGCCGAAATTTCAGAAGTGGTTGACTTCCTCAAACAACCGCAGAGATACCGGGACCTGGGTGCCAAACCACCCAAGGGGGTCCTTCTCAGCGGCCCGCCGGGAACCGGCAAGACGCTGCTCGCGCGTGCCACTGCGGGAGAAGCCGGCGTCCCCTTCTTCCATGCAAGCTCCTCTGAGTTCGTCGAAATGGTGGTGGGCGTGGGAGCCAGCCGCGTCCGGGAGCTGTTCCAGGCCGCCCGGGAGGCGGCGCCGTCCATCATCTTCATCGACGAAATCGACACCATCGGACGCAAGCGGGGCGGTTCGCTGTCAGTGGGCGGGCATGATGAGCGCGAGCAGACGCTGAACCAGATCCTGACCGAAATGGACGGCTTCTCCTCATCGGAGGGCATTGTTGTCCTGGCCGCCACGAACCGGCCGGATGTCCTGGATCCCGCACTCCTGAGGCCTGGCCGGTTTGACCGTTCCATCACAGTCCATGCCCCGGACCAGGCCGGCCGAGCGCAGATTCTCCGGGTGCATTCCGGCAACGTCAAACTTGGCCCGGACGCCGATTTGGAAGCGATCAGCCGGATCACGCCAGGCATGACGGGGGCTGAACTGGCGAACCTCGTCAATGAGGCAGCACTCCTGGCAGTCAAGCGTTCCCGGTCAGCCGTCAGCCAACGGGATCTCCTGGACGCCCTGGAAAAGGTCCAGCTGGGAACCGTGAGGAACGTTGTGATGCCGGCCGAGGAGCGCAGGCGGACGGCGTACCACGAATCAGGGCACGCGCTCCTGGGCATGCTGGAACCCGGCGCCGATCCGGTCCGGAAGATTTCCATCATTCCGCGGGGCCGTGCGCTGGGGGTGACCCTCTCCACGCCCGACACGGACCGGTACGGCTACGACGAGAACTACCTCAGGGGGCGGATCGCCGGAGCCCTGGGCGGCATGGTGGCTGAGGAACTGGTGTTTGGCCTGGTTACCACCGGTGCCGAAAGCGACCTCCAGACCAGCACCCACCTCGCCCGGATGATGGTGGGCCGTTGGGGCATGTCCGAACGAATCGGGCCGGTGCAGGTCCTGCCCGAAGAAGGTGACCCGCGGGCTGCCGGCGTGTCCGAAGGCATGCTGGACGCGGTGGCCGAGGAGGTCAGGGCCCTGGTGGAGCAATGCCACCAACGGGCACGGACCCTTCTGCAGGAAAACCGCTGGCGGCTCGACTCCCTGGCACAACGGCTGCTGGAGAAGGAAACCCTGGATGAGCCCGAGATCTACGAGGCGGCAGGCCTCCAACACCCTCCGGCGAATGCCGACACCGACGCCGCTGGTGCCGGTGCTGGTGCTGGTGCTGCGGCGCCTTCTGCTGCGGCCGGCACAGTCGCCGAAGGAACCAGCCCCGCACAGCGCTTTCGGGCAGACCCGGACTGAMAEPAPSKDEQQDGGSAPPAAADGKTPWRTEGLPARQSQPEKRFGGWKRTLVFVLLYLAFFAVLSLQDRQNQPLSIAYTEFKEEVRDNNISEVFARGQTIEGSLRSERPVPDGGGANYSQFTTERPLFADDSLLTELEQNDVTVRATPLVDERGVLTNLLIAVAPIALLVAFYLWLFKKQSGLLGGLGGFGAGKKFQPVDPEKVRVTFKDVAGIDEVEAEISEVVDFLKQPQRYRDLGAKPPKGVLLSGPPGTGKTLLARATAGEAGVPFFHASSSEFVEMVVGVGASRVRELFQAAREAAPSIIFIDEIDTIGRKRGGSLSVGGHDEREQTLNQILTEMDGFSSSEGIVVLAATNRPDVLDPALLRPGRFDRSITVHAPDQAGRAQILRVHSGNVKLGPDADLEAISRITPGMTGAELANLVNEAALLAVKRSRSAVSQRDLLDALEKVQLGTVRNVVMPAEERRRTAYHESGHALLGMLEPGADPVRKISIIPRGRALGVTLSTPDTDRYGYDENYLRGRIAGALGGMVAEELVFGLVTTGAESDLQTSTHLARMMVGRWGMSERIGPVQVLPEEGDPRAAGVSEGMLDAVAEEVRALVEQCHQRARTLLQENRWRLDSLAQRLLEKETLDEPEIYEAAGLQHPPANADTDAAGAGAGAGAAAPSAAAGTVAEGTSPAQRFRADPDNANANANANA
D1-29_04233837phoP_2COG0745Alkaline phosphatase synthesis transcriptional regulatory protein PhoPATGGTTGAGCGGGGTATTGCTGTTGTAGTGGAGGACGACGACGACGTCAGGACATCTCTGACGGAGGTGCTGCAGCAGTCAGGTTTCGCTGTGCATGCGACGGTTTCCGGTATCGAGGGCGTGGAGGCGGTCCGGGAGCACAACCCGGTGGTCGTCACCATGGACGTTGGCCTGCCGGACTTTGACGGCATTGAGGCATCGCGCCGGATCCGTACCTTCAGCGATGCCTACCTCATCATCGTCTCGGGCAGGGTGGAGGAAGCGGATGCCCTGATGGGGTTCGAGGCCGGAGCCGACGACTACCTCACCAAGCCGTTCAGGCCGCGGGAGCTCAGGGCCAGGATCGCGGCAATGCTCCGGCGGCCCCGGGCCCTAAGTGCAAGGGCAACAGAAACCACCTCAACACCGCAACAGGGGAACGGGTACCCATCCGGACATCAGCGGCCGGCGCCGCCGCCGTCGTCCCCTGTCTCTCCTGCCGGCCACGTTGCCGAGCGTCAGGGAACAATCATCCGCTGCGACTTCGAACATAAGGGATTGACCCTGCACGAGGGATCGCGCATGGCTGCCATTGATGGCCGGCCGCTGGATCTGACCCGGACCCAGTTCGACCTGCTCCTGGTCCTGATGGAAAACGGACGGGTGGTGCAGACCAAGGCTGACCTGGTCCGCCGGCTGAGGAACGAGCCCTACAACACCGGCTCCTATGTAAGCACCGGCGAGGAGCGCGCCGTCGAGGTCCATTTGGGAAATCTGCGCAAGCGCCTGGGCGACAATTCACGCGACCCCCGCTGGGTGGAAACGGTCCGGGGTGTGGGCTACCGGATGGCTCCGTAAMVERGIAVVVEDDDDVRTSLTEVLQQSGFAVHATVSGIEGVEAVREHNPVVVTMDVGLPDFDGIEASRRIRTFSDAYLIIVSGRVEEADALMGFEAGADDYLTKPFRPRELRARIAAMLRRPRALSARATETTSTPQQGNGYPSGHQRPAPPPSSPVSPAGHVAERQGTIIRCDFEHKGLTLHEGSRMAAIDGRPLDLTRTQFDLLLVLMENGRVVQTKADLVRRLRNEPYNTGSYVSTGEERAVEVHLGNLRKRLGDNSRDPRWVETVRGVGYRMAPPGPT0012985_11DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-29_042341140hypothetical proteinATGGGGCGCGAAGCTGCTCACTGGGGAGCAACAGGTAAGGGGCGTTACATGGCTTCTTTTCGGTTTTCCGTTCCGGATCATTCCCGCTGGCTGAAACTGCTGGCGATGTTCACTGCGGCCGGGCTGGCGATGCTGGTGTCTGTCCCGCCGGCTTCCGCGGCAGACACCACTCCGATGGATCCAAATCCCGGTCCGGCTGGAAACTTCGCTTGGAAAGGCTTCAACTGGGAGAAGCGTTTCTGGGGTGGAGCTCCGCAGTACAACAAGGCTTTTGCTGCCGGGAACGTCAGCAACCCGGATGCCAACGGTTACGTCACCATGACCCTGACAAATCCCACCCGGGAAGCTCCGGTGGGAGCGGAGTTCCAGTCCACCAGGCAAGGGTTTGGGTACGGGACCTACTCAACCACTGTGGAGAAGAACTTGAGCCTGCTGCAGAAGGAAGTGGTGTGGGGGTGCCTGTTCACCTACGATCCCTTGGCCGCACCGGGTTTCAACGAGATCGACCTGTGTGAGGCGTCCGCCTGGGGCGGCGGGGCTGCGTACGGCGAGTCGTGGCCCGTCACGCAGGGCCACGGATACTGGTTTGATGCAAGCAAGCCACCGGGGCAGGGAAACAACACCATAGTTTTTGATGTCACTGCAAGTCCCGTCACCACGCACAGGATGGTCTGGGAACCCGGGAAGCTGACGTTTGAAACCTACGCCGGCGCTGGCTTTGTGGGCACGCTGCTCAAGCGCACCGTCCTGGAAGGCGCTACCGTTCCCGTCCCGGCCAAGGAACAGATCCACTTCAACCTGTGGGTCACCGGTGGAGGCGGCGGGGATCCTGCCCATGTGAAGCCGGAAACCGTTGTGATCCGTGACTTCTCCTTCACCGCTGCGTCCACTGCGCCGGCTCCGGCGCCTGTCCCGGCCATCAAGCTCACCGCCGCCACCACCAAGTCGAAGGGGGTTAACACCACCACCCTGAAGTGGGCCGGCGCCGTGGGAACCAACGTCACCCTCTGGATCAACGGCCTGCCCCGGACGGTGGCCAACACAGGCAGCTATGTGAACAAGTTCAAGGGCGGGAGCACCACCTCATACAAGGTCTGCGATGCCGGCGGATGCTCAAACCCCGTCAGTGTGGTGACCTAGMGREAAHWGATGKGRYMASFRFSVPDHSRWLKLLAMFTAAGLAMLVSVPPASAADTTPMDPNPGPAGNFAWKGFNWEKRFWGGAPQYNKAFAAGNVSNPDANGYVTMTLTNPTREAPVGAEFQSTRQGFGYGTYSTTVEKNLSLLQKEVVWGCLFTYDPLAAPGFNEIDLCEASAWGGGAAYGESWPVTQGHGYWFDASKPPGQGNNTIVFDVTASPVTTHRMVWEPGKLTFETYAGAGFVGTLLKRTVLEGATVPVPAKEQIHFNLWVTGGGGGDPAHVKPETVVIRDFSFTAASTAPAPAPVPAIKLTAATTKSKGVNTTTLKWAGAVGTNVTLWINGLPRTVANTGSYVNKFKGGSTTSYKVCDAGGCSNPVSVVTNANANANANA
D1-29_04235108hypothetical proteinATGACGGGGGCCGGCGACCTCTTCTGGTTCGCCCTCGCCGCGTTTGCCCTGGTGGCCCTCGGAATGGCCGTCAAGAGGATCGTTCCCGTCCGTGGGGCAAAGTCCTAGMTGAGDLFWFALAAFALVALGMAVKRIVPVRGAKSNANANANANA
D1-29_042361050hypothetical proteinGTGATTACAGTCCTCATTCCGGCCCACAACGAGGCCGCAGGAATCACCGCAACGCTCCAGTCACTTAAAGATCAAACTCTTCCGCCGGGCAGGGTGATTGTCGTCGCAGATAATTGCACAGACGCTACGCAGCAGCTGGCACTTGCCCAGGGAGCTGAGGTTGTCCCGACGGAGGGGAACGTGGACAAGAAGGCCGGAGCACTCAACTTTGTCCTCAGCAGGCTGCTTCCGGACGCTGCGCCCGAGGACTTGATCCTTATCCAGGACGCCGACTCCCAACTGTCCGCTGACTTCATCGAACGGGCAGTGGCTCACCTGCAGGCGGATTCGCGGCTTGGTGCGGTTGGAGGGGTGTTCAGCGGGGGAAGCGGCGGAGGATTCGTTGGCCACCTGCAACGGAACGAATATGCCAGGTACGCCCGCGACGTCAAGCGGCTTAAGGGGAAATGCCTGGTGGTTACGGGCACTGCGGCGCTGTTCCGGGCGCGGACCCTTCGGGACGTTGTGGCAGCCCGCCTGGACGGTTCCCTGCCTCCCGGCAACGGACGCGGTGGGGTATACGACACGTCCGTCCTGACAGAGGACAACGAGCTCTCCTTCGCCCTGCTCACCCTCCATTACCGGATCAAGTCGCCGGCTGACTGCACTCTGGTCACAGAGGTCATGCCGTCCTGGCGGGAGCTCTGGGCCCAGCGGCTTCGGTGGAAACGTGGAGCCGTGGAGAACTGCGTCCAGTACGGATGGACGCGGGTCACCCGTCCCTATTGGGGAAGGCAGGCACTGGCCGTGGTTGGAGTGCTGGTGACACTTGCCTATTTCGGCACGGTGGCGTTTGCACTGGGCACGGGGGCAGGGCTGCACATCCAGCCATTCTGGCTTGCCGTGACCGGTGTCTTCGTGATCGAACGTGTGGTGACGGTGCGGCTGCGGGGATGGAAATACATGCTCGGGGCCGCCACCATGTACGAGCTGGTGATCGACCTGTTCCTGCAGGTGGTCCACGCGAAGGCGTATGCAGATGCAGCCCTTAACAACAAGAAAGCCTGGTAAMITVLIPAHNEAAGITATLQSLKDQTLPPGRVIVVADNCTDATQQLALAQGAEVVPTEGNVDKKAGALNFVLSRLLPDAAPEDLILIQDADSQLSADFIERAVAHLQADSRLGAVGGVFSGGSGGGFVGHLQRNEYARYARDVKRLKGKCLVVTGTAALFRARTLRDVVAARLDGSLPPGNGRGGVYDTSVLTEDNELSFALLTLHYRIKSPADCTLVTEVMPSWRELWAQRLRWKRGAVENCVQYGWTRVTRPYWGRQALAVVGVLVTLAYFGTVAFALGTGAGLHIQPFWLAVTGVFVIERVVTVRLRGWKYMLGAATMYELVIDLFLQVVHAKAYADAALNNKKAWPGPT0023485_1140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936NANA
D1-29_04237111hypothetical proteinATGCCGCCGGCTGTGGCCTCAAGTGTTCGTTCGCGCCTGGCGGAGGCCGCCGGCTGGGGCCTCAAGTGTTCGTTCGCGCCGTGGGGCCCGCTGGCCACCCCGAAGATCTGAMPPAVASSVRSRLAEAAGWGLKCSFAPWGPLATPKINANANANANA
D1-29_042381074rafRHTH-type transcriptional regulator RafRATGGGTTCCCGGCCAACCCTGGCGAGCCTGGCGCAGCAACTTGGTGTTTCCAGGCAAACCATTTCGAATGCCATCAACGCCCCCGAGCGCGTCAGTCCCCCCACGCTGGAACGGGTGACGGAGCTCATCGCCGCTTCCGGATACCGACCGAACATTGCCGCACGGCAACTGCGCACCCGCCGGTCCCGAAACCTTGGTTACCGGCTCTTTCCCTCAGCGGACGGCATCAACGGTGCCATCATGGACCGGTTCCTCCACTCCCTCACTGCGAGCCTTCAACAGCACGGCTACCGGGTTACGGTCTTTGCCGTCCCGCACGACGACGCTGAAATCGAAGCCTACGGGGAGCTCCTGGAGACATCCGACCTTGACGGATTTATCCTCGCCGACACGCGTCAGGATGATCCCCGGACGCGCTGGCTCATGGATCGGGAAGTCCCGTTTGTCACGTTCGGGCGACCCTGGAGCGCTGACAATGACGCATGCCCCCACGCCTGGGTGGATGTCGATGGCCAGGCCGGGACCGTGGAAGCAACACGATATCTGCTCGATCAGGGCCATCGCCGCATCGGCTTTCTCGGCTGGCCGGACAGTGACAGGCCAGCAAGGGAACGCCCCGCCGGGTATGACCTGGGACGGGACCGGAGGGAAGGCTGGAAAACTGCATTGTCCCCCCACTTGGGGCCACACGAACTGGATCTTTTGTCAGTGGGCGTCCCGGACAGTATCCGGGAAGGTGCAGCAGGAGCGCTTACCTTGCTGGCCAACGGCGCCACAGCAATAGTCTGTGCCAGTGATTCCCTGGCACTCGGTGCCTCGGAACAGCTACGGGCCGCCTTCCCGGACAAGGTCCCGGCAGTGATCGGCTTCGACGACACTCCTGTCGCCGCCGCGGTGGGAATGAGCAGTATCGCCCAGCCGATCGAAGAGGCGGCGGGCACGGTTGTGGACATCATGCGCTCCATCCTCGACGGCCCATCGAGCCAGCAACGCACGCCCGAGCATGTCCTTCTTCCCTCCCGGCTTGTCCTGCGCGACGGCGGAGGCCCACTGGCCACGCCGCCAGGACTGTAAMGSRPTLASLAQQLGVSRQTISNAINAPERVSPPTLERVTELIAASGYRPNIAARQLRTRRSRNLGYRLFPSADGINGAIMDRFLHSLTASLQQHGYRVTVFAVPHDDAEIEAYGELLETSDLDGFILADTRQDDPRTRWLMDREVPFVTFGRPWSADNDACPHAWVDVDGQAGTVEATRYLLDQGHRRIGFLGWPDSDRPARERPAGYDLGRDRREGWKTALSPHLGPHELDLLSVGVPDSIREGAAGALTLLANGATAIVCASDSLALGASEQLRAAFPDKVPAVIGFDDTPVAAAVGMSSIAQPIEEAAGTVVDIMRSILDGPSSQQRTPEHVLLPSRLVLRDGGGPLATPPGLPGPT0017992_1377DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_04239900araQ_14COG0395L-arabinose transport system permease protein AraQGTGACTGCGCTGATAGCCGATACGCCGGAAACCGCCGCCCCGGCATCCCCAGCGCCGGGCAAGACCCGCCGGAAACGCCAGGGGAAATTTATTTGGCTGGCCTACCTGGTCCTCATTTCACTGGCCGTGGTCTATATATTTCCGTTCCTCATCAACCTCGCCACCTCATTCAAGACCGAACCCGACGCCGCGAGCGATCCCCTGTCGCTGTTTCCGGCAACCTGGTCCACATTGGCCTACGAGAAGCTTTTCCTCAATTCGGATTTTCCATTGTGGTTCGGGAACTCCGTGGTGGTCACGGTCTTCGTCACCTGCGGGCGGGTGTTCTTCGATCTGCTTGCGGGCTATGCCCTGGCCCGGATCCCCTTCCGTGGAAGGTCCGTTATTTTCGCGGGAGTCGTGGCTGTTATGGCCGTCCCCGGGGTCGTTCTCTTGATTCCCAAGTTCCTGGTGATCAACCAGTTGGGACTTTACGACTCCTACGCGGGAATGATCATCCCGCTCATGGCAGATGCGGCCGGCGTGTTCATTATGAAGAACTTCTTCGAGTCCATCCCGGCAAGCGTCGAGGAACAAGCCAGAATCGACGGCGCAGGGACCTTCCGCACTTTCTGGTCCGTCGTCCTGCCTATGTCCATGCCGGCAGTGATGACCATCGTCATTCTCTCGTTTCAAGGTTCCTGGAACGAGCTGAGCCACTTCATCATTGCCGCCCAAAGTCCTGAGCTTGTCACTCTTACCAAGGGTGTGGCCCAGCTCTCGTCCGGCCAGCTCAGTGCCGGAACGCAATATCCGCTCAAACTGGCGGCAGCAGCCATCATGACCATCCCGGTGGCCATAGTGTTTTTCATCTTCCAGAAAAGGATCATGAACAGCACAGCCGGAGCGTTGAAGGAGTGAMTALIADTPETAAPASPAPGKTRRKRQGKFIWLAYLVLISLAVVYIFPFLINLATSFKTEPDAASDPLSLFPATWSTLAYEKLFLNSDFPLWFGNSVVVTVFVTCGRVFFDLLAGYALARIPFRGRSVIFAGVVAVMAVPGVVLLIPKFLVINQLGLYDSYAGMIIPLMADAAGVFIMKNFFESIPASVEEQARIDGAGTFRTFWSVVLPMSMPAVMTIVILSFQGSWNELSHFIIAAQSPELVTLTKGVAQLSSGQLSAGTQYPLKLAAAAIMTIPVAIVFFIFQKRIMNSTAGALKEPGPT0016540_1486DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_042401107lacF_14Lactose transport system permease protein LacFGTGAGCACCCTGACACGCAGTACCCGCGGAACCGGAACCCGCAGAAGCGGGACTAAGGGCAACCAGAACGCCACCGGGTGGCTCTTCACGGCTCCCGTGCTGATCATCCTCGGCCTCTTCCTGGTCCTGCCTGTCATCATGGCAGCCTGGGTCAGCATCTCGGACTGGACGGGAAGGGGGAGCCCGTTCTCCGGCGGCACACACTTCGTGGGAGCAGAGAACTTCGAAGCGGTTATCTCGGGCGGCGGCCTGGCCGAAAGGGACTTCGGTACCGCACTGCGGAACAACCTGTACTACGTTGTGCTGGTTGTTCCGCTGCAGACCATAGCATCCCTCTTCTTGGCGGTACTCGTTAACAGCAGGATTCTGAAGGGAAAGGGCTTCTTCCGGACCGCCTTCTACTTCCCCTCCGTCACCAGCTCAGTGGCCATCACGGTCCTATGGCTGTTCCTGTTCAATGCCACAGGAGCTGTGAACAAATTCCTGTCACTGCTGGGGATTAGCGGCCCTAACTGGTTCCAGGAACCTACCGGGATCATCCATCTCCTGGCGCAGTCGGTTGGCATCGGCGAACCGCCCGCGGCGTTGGCGTCCGGAACACTCATGGGGGTGAGCTGGTGGGACTGGCTTTCCGGGCCTTCCGTGGCCATGTCCGCCTTCATCCTCATGGCGATATTCACAACCTCCGGGACGTTCATGCTGCTCTTTATCGCCGCTCTGCAGAACCTGCAGGGCGAACTTGAAGAAGCGGCAATGCTCGACGGCGCCGGCGCCTGGCAGCGCTTCTGGTACGTAACCCTTCCCATGCTCCGTCCCACGCTCTTCACCGTGATCACCCTCGGTCTGATCGGCTCGTGGCAGGTGTTCGACCAGATCTACACAGGCACACAGGGCGGACCCGCAAAGACCACCCTCACCCCCGCCTACCTTTCCTTCAGCACCGCCTTTAACAATCAACAATGGGGGCAAGGCGCAGCCATCGCATTCCTGCTGTTCGCCATCATCATCGTCTTCACCGTCATCCAGCGCCTGATACTGCGAGAACGTGAATCCGTGCCCCGCCGCAAACGAATGAATCCAAAACCGAGCCGAGGGAGAGCACAGTGAMSTLTRSTRGTGTRRSGTKGNQNATGWLFTAPVLIILGLFLVLPVIMAAWVSISDWTGRGSPFSGGTHFVGAENFEAVISGGGLAERDFGTALRNNLYYVVLVVPLQTIASLFLAVLVNSRILKGKGFFRTAFYFPSVTSSVAITVLWLFLFNATGAVNKFLSLLGISGPNWFQEPTGIIHLLAQSVGIGEPPAALASGTLMGVSWWDWLSGPSVAMSAFILMAIFTTSGTFMLLFIAALQNLQGELEEAAMLDGAGAWQRFWYVTLPMLRPTLFTVITLGLIGSWQVFDQIYTGTQGGPAKTTLTPAYLSFSTAFNNQQWGQGAAIAFLLFAIIIVFTVIQRLILRERESVPRRKRMNPKPSRGRAQPGPT0016535_506DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_042411248malECOG2182Maltose/maltodextrin-binding periplasmic proteinATGAAAACACCACGCGCCTCCCGCCTCGCAGCAGCGATCACCATTTGCGTCACCGGCGCCCTTGGCCTGAGCGCCTGCGGTTCCGGTTTTGCCAGCTCGGACACTAAATCATCAGATGCGGGCTCGGGACCGATCAGCGTGCTGATCGCCTCTTCCGGCGATGCAGAGGCAACCGCTGTGAAATCTGCCGTGGCGGACTGGTCCAAGACATCCGGTACCGAAGCCTCCGTGAACGTAGCCTCAGATCTGATCCAGCAGCTCAGTCAGGGCTTCGCTTCAGGAAAGCCTGCCGACGTTTTCTACCTGTCCCCTGACCAGCTCAGCGGCTACGCCTCCAACGGTTCCCTTGAGCCCTACGCTGACTCCCTGGCCAACAAGGCTGACTTCCAGCCAAGCCTGACCAAAGCCTTCACCTATGACGGGAAGTTCTACTGCGCACCCAAGGATTCCTCCACGCTGTCCCTTGTCATCAACATTGACCTGTGGCAGGCGGCAGGTCTGACCGATGCCGATATTCCCACCACCTGGGACGAACTCGAAGCCACGGCCAAAAAGCTGACCTCCGGCAACGCCGTCGGCCTGTCCTTCGGCCCTGAAGTCGCACGCGTCGGTGCCTTCTTCCCCCAGGCAGGCGGGTCCCTGCTCAGCTCCGACGGCAAAACAGCCACCGTCAACAGCGCCGAGAACGTGAAGGCACTCACCTTCGTCAAGAAGATGCTCACCGATGGCGTGGCAAAGTACTCCTCTGACCTGGGCGCCGGCTGGGGAGGCGAGGCCTTCGGCAAACAGCTTTCGGCTATGACGATCGAAGGGAACTGGATAGCAGGAGCCCTGTCCAAGGACTTCCCGTCCATCAAGTACCGCACGGTAGAGCTTCCGGCAGGCCCCAAGGGCAAGGGCACCCTGCAGTTCACCAACTGCTGGGGAATCGCAGCTGACAGCAAGAACAAGCCCGCAGCAAAGGCCCTGGTTGAGCAGCTGACCGGCACCCAGACCCAGATGACCTTCGCGAAGGCCTTTGGCGTCATGCCCTCGGTCGTTTCTGCCGAGAGCGAGTTCAAGAAGGAGTTCCCCGAACAGGAAGCCTCCATTGCCGGCGTCGAGTATGCCCAGACCCTCCCGTCCCAGCCCGGCGCAGCTGACGTACTCAAGGACTTCAACGCGAAACTGGCAACGCTGCAGACCTCAGATCCGAAAGCCATCCTGGATTCCATCCAGACCGAAATGACGGCGACGTTGTCAAAGTGAMKTPRASRLAAAITICVTGALGLSACGSGFASSDTKSSDAGSGPISVLIASSGDAEATAVKSAVADWSKTSGTEASVNVASDLIQQLSQGFASGKPADVFYLSPDQLSGYASNGSLEPYADSLANKADFQPSLTKAFTYDGKFYCAPKDSSTLSLVINIDLWQAAGLTDADIPTTWDELEATAKKLTSGNAVGLSFGPEVARVGAFFPQAGGSLLSSDGKTATVNSAENVKALTFVKKMLTDGVAKYSSDLGAGWGGEAFGKQLSAMTIEGNWIAGALSKDFPSIKYRTVELPAGPKGKGTLQFTNCWGIAADSKNKPAAKALVEQLTGTQTQMTFAKAFGVMPSVVSAESEFKKEFPEQEASIAGVEYAQTLPSQPGAADVLKDFNAKLATLQTSDPKAILDSIQTEMTATLSKPGPT0016545_8342DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_042422031hypothetical proteinATGAACAACCGGCAGCCCTTCCTTCACGATTTGAATGTCCTCCTGGCCGCTCCCATGCAGGTCTGGTCTGAGCATGACGGACAGCTGCGGCGCAGCGGCGGCGTCCAGGGCATCTACTGTGCCGATACCCGGGTGATCGATGAGGCTGTACTTACCATCAATGGTGAGGAACCAGAACCTGTTGGCTCATCCTCGGCCCAGGGCCATGTTGTGTCCTTCCAGGCCCTCATCCGGACCCTCGGCAGCGAGAATCCAGATCCGCTGGTCAGCCTGACCCGCCGCCGCAGCATCCTCCCCGATCGCGTCAGCGAGGAAATCATCCTGCGATCCGATCTGAGCAAGGACGTTACAGCGTTGGTTGAGATGGAGCTCGGGTCCGACTTCTCACCGTTGGAGTCGGTGAAGGCCGGTGGCAGGGCGCACCCTGTCCCGCCGGTATTGGACGGCGGGGTTTGGAAGGCGGCCGACGAAGGCGTCAGCTCTTCGATCAGCGCGCCAGGGGCCGTGATTGAACCGAACAGCAGCCAGCTTCGCCTCCGGTGGGAAGTAAGGATTCCGGCCCGCGGTACCGCCCGGGTCGGCTGGGAGGTCCAGGCCAAGGACAGTCTTGCCCCCTTCGTTGCAGCCCAGCCCACGACTGCATCATTCCGCGTCCGTGCTGATGACCGGCGCCTGAGCGCGCTGGCAGAAAAGGCCCTCGGTGACCTTGAAGGGCTGCGAATGTCTGCTCTTTCCTCGCCGCAGGATGTTTTCCTTGCCGCCGGGGCTCCCTGGTTCTTCACGCTGTTTGGACGGGACTCGCTGATCGCAGCCAGAATGCTCCTCCCGGTTGAGCCGTCAGTGGCAGCGGGGACGCTGCGCACGCTGGCCGCCCGCCAGGGCACAAAGTACGATCCTGCCACTGCGGAACAACCAGGCAAGATCCTTCACGAAGTGCGCCGCGGCGAATTCCGGATGCCCGAGGACGCCAGCAACGGCGAATTGCGGCTTCCGCCCGTCTATTTCGGCACAGTTGACGCGACACTCCTCTGGATTTCCCTTCTTCACGACGCCTGGAAATGGGGCATGCCCGAGGAGGAAGTCAAGGACCTGATGAGCAACCTTGAAGAAGCACTGCTCTGGCTCCGGGACTGGGCGGACCCGGACGGCGACGGCTTCCTTGAGTACATCGACGAGACAGGATTCGGCCTGGCCAACCAGGGCTGGAAGGACTCCGCGGACTCCATCCGATGGAACGACGGCTCGCTCGCCACAGGTCCCATCGCGCTGGCAGAGGTGCAGGCTTATGCCTATCAGGCGGCTACACACGCTGCGGATCTGCTGGAGGCGTTCGGACTTAAAGGCGCTGAGGACTGGAGGGGTTATGCAGCGAACATGGCTGACAAGTTCCGCAGTGCGTTCTGGTGCAGGGACGAGATCGGGGCGTACCCGGCGATTGCACTGGATGTGGATAAGCGGCCGGTTGATGGAGTCGCCAGCAACATGGGCCACCTGCTGGGCACCGGCATTCTGAATGAGGAGGAAAGCGAGCTTGTGGCACGCCGGATCATGCACCCCACCATGTTTTCCGGTTATGGTGTCCGCACTTTGGATACGGGGAACGGAGCCTACTGGCCCCTGCGTTACCACTCCGGGTCCGTGTGGGCTCATGACACGGCTATGACCCTGGACGGCCTGACAAAAGCCGGCTTTAACGACGAAGCAGCCCTCCTGGCTGCCGGTGTCATGGACGCAGCCGAAGTCTTCGACTACCGGCTGCCCGAGCTGTTCTCCGGCCACAGCCAAGCCCAGGGCGGGCCCCAGCCTTACCCGGCGTCGTGCCGCCCCCAGGCCTGGGCCGCCGCGTCGGCAATCCCCCTGATGCTGGCAACCCTGGGCCTGACACCGCAGGGGCCCGGGCTGCTGCCCACGGTTTCCGCCAGTGTCCCCACACCCTTTGGTGCGTGCACTTTCGAGGGGCTTCAGGCCGGCGGGCTGCCCTTCGCCGTGCACGTCGACCGGCAGGGTGGTGCCACCGTTATTCCTGCATAGMNNRQPFLHDLNVLLAAPMQVWSEHDGQLRRSGGVQGIYCADTRVIDEAVLTINGEEPEPVGSSSAQGHVVSFQALIRTLGSENPDPLVSLTRRRSILPDRVSEEIILRSDLSKDVTALVEMELGSDFSPLESVKAGGRAHPVPPVLDGGVWKAADEGVSSSISAPGAVIEPNSSQLRLRWEVRIPARGTARVGWEVQAKDSLAPFVAAQPTTASFRVRADDRRLSALAEKALGDLEGLRMSALSSPQDVFLAAGAPWFFTLFGRDSLIAARMLLPVEPSVAAGTLRTLAARQGTKYDPATAEQPGKILHEVRRGEFRMPEDASNGELRLPPVYFGTVDATLLWISLLHDAWKWGMPEEEVKDLMSNLEEALLWLRDWADPDGDGFLEYIDETGFGLANQGWKDSADSIRWNDGSLATGPIALAEVQAYAYQAATHAADLLEAFGLKGAEDWRGYAANMADKFRSAFWCRDEIGAYPAIALDVDKRPVDGVASNMGHLLGTGILNEEESELVARRIMHPTMFSGYGVRTLDTGNGAYWPLRYHSGSVWAHDTAMTLDGLTKAGFNDEAALLAAGVMDAAEVFDYRLPELFSGHSQAQGGPQPYPASCRPQAWAAASAIPLMLATLGLTPQGPGLLPTVSASVPTPFGACTFEGLQAGGLPFAVHVDRQGGATVIPANANANANANA
D1-29_04243474hypothetical proteinATGGGAAGCGAATCAGCTCTTCAAGAAGTAACAGCCGTGGGAGGCGTGATCACGGATCAACATCCGCTCGACTTCCACACCTTGGGGCTTGCCGGCTGCATTGACCGGCTCACGGCGCCCCTCCGCCAGCAAGGTACCGCGGTCCGCTGGGACACCCCGCACTGGGGCATCGAGATCCCGGCGAACTGCGCGTCCCTGCTGTACCAGTCGGCCCGGGAAGCGTTGAGCAACTCCTTGAAGTACTCAGATGCTTCCGAGCTCACCATCCAGCTCGCCGCGGTGGACCACGGCATTCGCCTGGTAGTGGCCGACGACGGTTCGGGCTTTGACAGCAGGATCGCCATCAGCGGCAGGCACCACGGTTATGGCTTGCGGCTTATGTCAGTGGCAGTCCATGAGGCCGGAGGCAGCGTTGATATCTGCTCCAGTCCGGGACGCGGCACCTGCGTGACAGTCACCCTTCCGCTGGACTAAMGSESALQEVTAVGGVITDQHPLDFHTLGLAGCIDRLTAPLRQQGTAVRWDTPHWGIEIPANCASLLYQSAREALSNSLKYSDASELTIQLAAVDHGIRLVVADDGSGFDSRIAISGRHHGYGLRLMSVAVHEAGGSVDICSSPGRGTCVTVTLPLDPGPT0017175_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675NANA
D1-29_042446122-hydroxy-1,4-benzoquinone reductaseATGGCAACGCACAAGATCGGATACTTTGTCGGCAGCCTGGCAACTGGCTCCATCAACCGGACCCTGTCCAAGGCCCTGATCAAACTGGCTCCGGCCGAGCTGGAGTTCACTGAGATCGCCATCAAGGACCTGCCGCTCTACAGCTACGACTACGACGCGGATTTCCCGCCCGAAGGCCGGGCCCTGAAGGAAGCCATTGAGGAATCCGACGGCATCCTCTTCGTCTCGCCCGAGTACAACCGGTCCATCCCCGGCGCCCTGAAGAATGCCATCGACTGGGGGTCCCGCCCCTGGGGAACAAACTCCTTCGCCCGCAAACCCACCGGCATCATCGGCGCGTCACCCGGCGGCATCGGCACAGCCGTGATGCAGTCCTCCATGCGCAGCGTGCTGAGCTTCCTGGACGCGCCGCAGCTTAATGCCCCGGAAGCTTACGTCAAGTTCAATGCCAACGTCTTCGGTGAGGACGGCGAGGTCAAGGACGAGTCCACAGCCAAATTCCTGAGTCACTACATGGAGGAATACTGCGCCTTTGTCCAGCGGGTCCTTGCTGCCAACGCACCTGGCCACATCGGTGACCCGGAGCCGGACAGGGAGAAGCTGTCGCGCTGAMATHKIGYFVGSLATGSINRTLSKALIKLAPAELEFTEIAIKDLPLYSYDYDADFPPEGRALKEAIEESDGILFVSPEYNRSIPGALKNAIDWGSRPWGTNSFARKPTGIIGASPGGIGTAVMQSSMRSVLSFLDAPQLNAPEAYVKFNANVFGEDGEVKDESTAKFLSHYMEEYCAFVQRVLAANAPGHIGDPEPDREKLSRPGPT0004195_147DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004195-chrR-K19784NANA
D1-29_04245183hypothetical proteinATGACTGACAAACCAGAGGCAACGGAGCGCATCCACAACGAGGCTCCGGCAGAAGGGGACCTCGACGCTGACCCCACTGATCTCCGGATGCACTCCCAGGATCCTGCCGAAGGCGCCGACTTCCCGAGCACAGACTTCTCCAAAACTGACACGGGACAGGCGGAGCCCACTTCCGGCCGTTAGMTDKPEATERIHNEAPAEGDLDADPTDLRMHSQDPAEGADFPSTDFSKTDTGQAEPTSGRNANANANANA
D1-29_04246501hypothetical proteinATGGAGTACAGAATCCGCCAGGCCACTCCTGAGGACGCCGAGGCCGTGGTCCAGATGCATACGCTGGCCCACGAGGAGTGCTACTCGCACCTGCTTCCTTCGGACTTTTTCGCCGCCCGCCGTGCCAGCATTCCGGAGCGGATTGAACGGCGCCGCGCTTACCTTGGGGTCCGGGAGCCGCGGCTCATCGCCCTGGATCCAGGCGGTCAGGTGGTGGGGCTGGCCGACGCCGGCCCCGGCCGTGACAAGGACCAGCCGCACGCCCTGGAACTCTACTGCCTCTACACCCTGAGGCATACGCACGGCTCGGGACTCGGCCGGACGCTGCTGGAGGCCGCGGTTGGTGCGGCTCCCGCCTACCTGTGGGTGCTTGAAGACAACCCTCGCGCCCGCGCCTTCTATGGCAAGCACGGTTTTCGCCCCGACGGCGCGCACAATTTGTTGCCGCCGGACTGGTATAGGTTGCCGGAGATCCGGATGGTCAGGGATCCGGGTCAGTAGMEYRIRQATPEDAEAVVQMHTLAHEECYSHLLPSDFFAARRASIPERIERRRAYLGVREPRLIALDPGGQVVGLADAGPGRDKDQPHALELYCLYTLRHTHGSGLGRTLLEAAVGAAPAYLWVLEDNPRARAFYGKHGFRPDGAHNLLPPDWYRLPEIRMVRDPGQNANANANANA
D1-29_04247927hypothetical proteinGTGAGCACGAAGGTGGAAAAACGCATTCTGGTGAACGTGCCGGTGAGCACGGCCTACAACCAATGGACCCAATTCGAGGACTTTCCGCACTTCATGGGCGGCGTCAAAAGCGTGACGCAACTGACTGACGACCGCCTGGAATGGGTGGCCGAGATCGGCGGCATTCGCCGGCAATGGACGGCCAAAATCCTGGAGCAGATCCCGGACCGCAAGGTGGCCTGGGCTGCCACGGAAGGGGCAACCAACGCCGGTGCCGTGGAGTTCGAAGACGTCGGCGGGGGCCAGACCTCGCTGCGGCTGACCGTTGAATACGAGCCCGAGGGCATCATCGAGAAGGTGGGTGACAAGCTCAACGTCGTGGAGCGGCAGGCCGAGGCCGACCTGAAGAGGTTCAAGGAGTTCATCGAGGACGAACGGTATGCCAGCGGCGCCTGGCGGGGCACGGTGAATGAGGGGGCCTCCGTGGGCACCCCGGGCGTTGAGGACGCGGCGGCATCCCGCGGTGATTCCGGCAAGGCGGGCGTCTCGGGCAAGATGGCGGCAGCTGCCGGGGCGGCAGCCGCGGCGGGTGCAGCGGCAGCCATGGCCAGCGGCGGCAACAAAGGCGCCACCGCAGCTGCCGACGAAACGGTAACGCCAACCGCTCCCGGGGAGCCAGCCACGGTCACGCCATTGACGACGGACACCACCACAGACACCACAACATCCGGCACGATGGCGGCAGCCGGCTCCACAGGTTCGGTGGCCGACCTGGGCGATGACAGGATCGGGCACGCCTTCGACCAGACCAATGGCCTGGTGGACATGACGGGCGAATCCGATGAGACGGTGGAGGGCGAAAACCTGAGCGCCGGCGAGCGCCGGGAGAACGAGAACAGGCCCGACGGCGGCCTTCCGCCCGTGGGAGGCGGCCTCGGCCAGCACTGAMSTKVEKRILVNVPVSTAYNQWTQFEDFPHFMGGVKSVTQLTDDRLEWVAEIGGIRRQWTAKILEQIPDRKVAWAATEGATNAGAVEFEDVGGGQTSLRLTVEYEPEGIIEKVGDKLNVVERQAEADLKRFKEFIEDERYASGAWRGTVNEGASVGTPGVEDAAASRGDSGKAGVSGKMAAAAGAAAAAGAAAAMASGGNKGATAAADETVTPTAPGEPATVTPLTTDTTTDTTTSGTMAAAGSTGSVADLGDDRIGHAFDQTNGLVDMTGESDETVEGENLSAGERRENENRPDGGLPPVGGGLGQHNANANANANA
D1-29_04248789hypothetical proteinGTGAGCACAAAAGTTGAGAAGCGGATTGTGGTGGATGTACCGGTAACTACCGCCTACAACCAGTGGACCCAGTTTGAGGACTTCCCGCACTTCATGGGCGGCGTCGAGAGCGTCACCCAACTCGGTGATGACCGCCTGAAATGGGTGGCCCGGATCGCCGGTGTGCGCCGCGAGTGGGAAGCCAGGATCCTGGAACAGGTGCCGGACCGGAAGGTAGCGTGGGCATCCACCGGCGGCGCCACCAATGCCGGCGCCGTTGAGTTCGAAGACGCTGGCGGCGGCAAGACAGCCATCGCGTTGACCCTGGACTATCAGCCCGAGGGCGTGGTGGAAAAGGTGGGCGACCTCCTCCATGTGGTGGCGCGGCAGGCCGAGATGGACCTGAAGAAGTTCAAGAAGTTCATCGAGCACGAAGGCCACGCGAGCGGCGCCTGGCGGGGAACCGTCCACGGCGGCACCGTGGGTTCGGGAGCCGACGACGCCGGTGCCGGGGCTGTCGCAGGGTTAGGGTCAAGCGCTGGCGCTGGCGCAGGCGGGACAACCGCTGCAGCCCCTGGCGGGACAACGGCGGCAGGCCCGGACGTTGCAGGCCCGGGCGGCGTGGACCAGCCGGAGCACAACCGGTTTGCCCACCCGTTTGACCAGACCAATGGCCTGGTGGACGTTGAGGGCGAGTCGGACGAAACTGCCGACGGCGAGCTCCGCAGCGCAGCCCAGCGCCGGGAGGACGAGAAGCGCGGCCGGGGCTTCATTCCACCGCCTTCGGGAGGAACAACCGGACAGTTCTGAMSTKVEKRIVVDVPVTTAYNQWTQFEDFPHFMGGVESVTQLGDDRLKWVARIAGVRREWEARILEQVPDRKVAWASTGGATNAGAVEFEDAGGGKTAIALTLDYQPEGVVEKVGDLLHVVARQAEMDLKKFKKFIEHEGHASGAWRGTVHGGTVGSGADDAGAGAVAGLGSSAGAGAGGTTAAAPGGTTAAGPDVAGPGGVDQPEHNRFAHPFDQTNGLVDVEGESDETADGELRSAAQRREDEKRGRGFIPPPSGGTTGQFNANANANANA
D1-29_04249402hypothetical proteinATGACGCTGACGGCCGATCAGAAGCGCCAGGAATCGCAGGTGGCCTACAACGCCGGGCTGGAGCACTGTCCGGCGCGCCAACTCCTGGAAACCATCAGCAGTAAGTGGGTCACCCTGGTGCTGCTGGAGCTCGCGGAGGGGCAGTTGCGGCACAGCGAACTGAGGCGCCGGATCCCCGGGGCCAGCCAAAAAATGCTGACCTCCACCCTTCGTGCCCTCGAGCGCGACGGCCTGTTGCGACGCCACGTCACCCCGTCGGTTCCGGTGCGAACAGATTACGAACTCACACCGCTGGGGCGCTCGCTGCTGGGCCTGGTGTACGGGCTCAAGGACTGGGCCGAAACAAGCATGCCCGCGGTGGCACTGGCGCGGACGGAGCATGACCGGAACGTGCCGTCCTGAMTLTADQKRQESQVAYNAGLEHCPARQLLETISSKWVTLVLLELAEGQLRHSELRRRIPGASQKMLTSTLRALERDGLLRRHVTPSVPVRTDYELTPLGRSLLGLVYGLKDWAETSMPAVALARTEHDRNVPSNANANANANA
D1-29_04250717azoR1COG1182FMN-dependent NADH-azoreductase 1ATGGACGGGCCTTCAGCCCAGCCCACTTCGAAAGGAAATCCCTTGCCCACCATCCTCCATGTCAACGCGTCCCCCCGAGGCACCAGGAGCGGCTCCCTGCAGCTGGCCCGGCATTTCATCAGGACCGTGCAGGCCTCCACCCCCGGGGACATTGATATCCAGACCCTGAACGTGTTCGATCCCGGCGCCCTGCCCGAGTTCGGCACCACCGCCGCTGCGGCCAAGATGGCGGTATTCTCGGGCCAGGAGCAGACCCAGGAGCAGCTCACCGCGTGGGAGTCAGCCCGTGCCGTCTTTGACCAGTTTGCGGCTGCCGACGCCTACGTCTTCAACATCCCGATGTGGAATGCCGGCGTCCCTTATGCCCTCAAACAGTGGATCGATCTGGTGACGCAGCCCGGCTGGAGCTTCGGCTTTGATCCGAAGGATGGCTACAGCGGCCTCCTGGAGGGGAAGCATGCCATGGCCATCCACACCAGTGGCGTGTACGCACCGGGAGTTCCGCCGGCCTTCGGCCAGGACTTCAGCAGCACCTTCTTCGCTGACTGGCTGGACTTCGTGGGGATCAGCGATGCCGTCCATGTCCGCTTCGCGCCCACTGTGCTCAACGCCAGCCCTGAGGAGACGCGCCGCCTTGCGGAAGAAGAGCTCGACGGCGCCGCGCCGGCTTTCGCTGCGAAACTCACCCCGGCGGAACTACTGGCAGCCCGTGGCTGAMDGPSAQPTSKGNPLPTILHVNASPRGTRSGSLQLARHFIRTVQASTPGDIDIQTLNVFDPGALPEFGTTAAAAKMAVFSGQEQTQEQLTAWESARAVFDQFAAADAYVFNIPMWNAGVPYALKQWIDLVTQPGWSFGFDPKDGYSGLLEGKHAMAIHTSGVYAPGVPPAFGQDFSSTFFADWLDFVGISDAVHVRFAPTVLNASPEETRRLAEEELDGAAPAFAAKLTPAELLAARGPGPT0006790_205DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDSXENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118NANA
D1-29_04251642hypothetical proteinATGACAACAATAGGAATCATCGGTGCAGGACACATTGGAAGCCAGATTGCCCGGAAGGCGGTTGAACTCGGCTATGACGTGGTTATCAGCAACTCCAGGGGACCCGAAACCCTCAGCGGCCTGGTGGCGGAACTTGGCCCCAACGCCCGCGCCGCAACGGCGGAAGAGGCAGCAGCGGCGGGCGATTACGCCGTCGTAACCGTGCCTTTGAAGAATTACCGGGACATCCCGGTGGAGCCGCTGGCGGGCAAGATCGTCATCGACACCAACAACTACTACTGGGAACGGGACGGTCGCATTCCGGCCTTGGACAGGGGTGAGGCAACAACCTCCGGGCTCCTCCAGGAACACCTGCCGGAGTCCAAGGTAGCCAAGGGCTTCAACCACATCATGGCCTCGGAGATCACCACCGACGGCACCCCCGCCGGCACGCCGAACCGCCGGGCGCTGGCCACGGCCAGCGACTACCCGGAGGCGGCTGAACTGGTCACCCGGCTGTACGACGAGTTCGGCTTCGACACCGTCAACATCGGGCTGCTGTCCGAGAGCTGGCGGGTGGAGCGGGACCGGCCGGCATATGTCATCCGTCAGGACGAAGCCGAACTCAAGGAAAACCTCGCCAACGCAACCCGCACCATCTGAMTTIGIIGAGHIGSQIARKAVELGYDVVISNSRGPETLSGLVAELGPNARAATAEEAAAAGDYAVVTVPLKNYRDIPVEPLAGKIVIDTNNYYWERDGRIPALDRGEATTSGLLQEHLPESKVAKGFNHIMASEITTDGTPAGTPNRRALATASDYPEAAELVTRLYDEFGFDTVNIGLLSESWRVERDRPAYVIRQDEAELKENLANATRTINANANANANA
D1-29_042521200afr1,5-anhydro-D-fructose reductaseATGAGCCGCCCCTCCGCCACCATCGACGACGACGGCACGCCTCTGAAAGTGGTGGTGGTGGGCGCCGGTGCCATGGGCCGCGCCTGGCTCGGTGCCGTGGAAGCCTCGCCGCTGGTGGAACTCCGCGGCATCGTGGACCTTGACCTGGACGCGGCGCGCGCCAGCGCCGCTGCGATCGGAAAGCCGGACCTGCCGGTGGGGACGGGAACCGCGCAGCTGGCGTCCGACGTCGGCGCCCAGGCTGTTGTCAACGTCACCGTTCCGGCTGCCCACCATCCGGTGACCACCGAAGCCCTTTTTGCCGGGCTGCCCGTGCTGGGGGAGAAGCCCGTGGCTTCCACGGTGGCCCAGGGGCTGAGCCTTGCGGCAGCTGCCGAAGCCACCGGCCAGTTGTTCATGGTGAGCCAATCCCGCCGGTACAACCGCAACCTCTTTGCAGCCAAGGCTATGGCCGGCGGGGTGGGGCGGCTGGGGATCGTCTCCGCTGACTTCTTCAAAGCCCCCCGTTTCGGTGGGTTCCGCGACCAGATGGACCACCCGCTGCTGCTGGATATGGCCATCCACCAGTTCGATATGGCCCGTTTCCTCCTGGACGGTGATCCTGTCTCCGTTTTCTGCGAGGAGTACAACCCGCCGTGGAGCTGGTACCGCGGCGACGCCGCGGCCGTGGCGTCCTTCGAGATGTCCGGCGGCCAGCGGTTCGTCTTCAACGGAAGCTGGTGCAGCCCGGGGCTGGAAACGTCATGGAACGCAGCCTGGCGGCTGGGCGGCGAACACGGGACCGTGCTGTGGGACGGCGAAAACCAGCCGACGGCGGAGACCTCGCTCATGGCGGAGGCTTCCGGCCCGGAGAGCACCGGCTTTGCCCCGAACGGCGGGACTTTTGCATTCAGCAGCGTGGCGGACCCGGGTACCGAGGTCCACGGTTCCCTCCGGGAATTCGCCACCGCCCTCCGGACGGGAGCGGCACCCATGGGCCAGGTACACGACAACATCCTCAGCCTGGCCATGGTGGAAGCCGCGATTGAGAGCGCCGCCACCGGCCGGCGCATCAGTATCGACGCTCTGCTCCAGCGCTCCTACCGCCAGGCGGTCCTGGACGAGAAACGGCCCGACGTCGCGGATGTCCTTCTGTCCTGGGCCACCGCGGGCGCCTTTTCCGCGGCTGACCTCGGTCCGTCACATCAACCGATCCACTGAMSRPSATIDDDGTPLKVVVVGAGAMGRAWLGAVEASPLVELRGIVDLDLDAARASAAAIGKPDLPVGTGTAQLASDVGAQAVVNVTVPAAHHPVTTEALFAGLPVLGEKPVASTVAQGLSLAAAAEATGQLFMVSQSRRYNRNLFAAKAMAGGVGRLGIVSADFFKAPRFGGFRDQMDHPLLLDMAIHQFDMARFLLDGDPVSVFCEEYNPPWSWYRGDAAAVASFEMSGGQRFVFNGSWCSPGLETSWNAAWRLGGEHGTVLWDGENQPTAETSLMAEASGPESTGFAPNGGTFAFSSVADPGTEVHGSLREFATALRTGAAPMGQVHDNILSLAMVEAAIESAATGRRISIDALLQRSYRQAVLDEKRPDVADVLLSWATAGAFSAADLGPSHQPIHNANANANANA
D1-29_04253795hypothetical proteinATGACTGATACTGCCCCGATCCGGGTCACCGTCTGGAACGAAAACCGGCACGAACAGGAACACGAGCAGGTGGCAAAGCTCTACCCCCAGGGCATTCACGGCGCCGTGAAGGAGGGCATCGAGGAGAACCTGGGTGCCGCCGTCGTGGTCCGCACCGCCACCCTTGACGAACCGGAACACGGCCTCACCGAGGAAGTCCTGGCCAATACGGACGTCCTGACCTGGTGGGGTCATATGGCCCATGGTGCCGTCGACGACGAAATTGTCGAACGGGTCCACCGCCACGTCCTGTCCGGCATGGGCCTGATCGTGCTTCACTCCGGCCACTGGTCCAAGATCTTCACCAAGCTCATGGGCACCACCTGCACGTTGCGGTGGCGCAGCGAGCAGGACCGCGAACTGGTCTGGACCGTGGACCCCACGCACCCGATTGCCAAGGGAGTCCCGCATCCGATCATCATCGACGAGCAGGAAATGTACGGCGAGTTCTTCGACATCCCCGCGCCGGAGGAACTGGTTTTCATCAGCTCGTTCAGCGGCGGCGAAGTGTTCCGGTCAGGCTGCACCTTCCGCCGCGGCCACGGCAAGATCTTCTACTTCAGCCCCGGGGACCAGGACTATCCCGTGTACCACCACAAGGACATCCGCCGGGTCATCTCCAACGGCGTCCAGTGGGCCGCCACGGACCGGGACCGGCGAGAGCTGCCGGAACTGTTGCGCTACGACACCAACGAGTTCTTCAAGGGCGCCGGGTACCAGGGCGCTACAGCCATTTACGAGGACAGCGACGCATGAMTDTAPIRVTVWNENRHEQEHEQVAKLYPQGIHGAVKEGIEENLGAAVVVRTATLDEPEHGLTEEVLANTDVLTWWGHMAHGAVDDEIVERVHRHVLSGMGLIVLHSGHWSKIFTKLMGTTCTLRWRSEQDRELVWTVDPTHPIAKGVPHPIIIDEQEMYGEFFDIPAPEELVFISSFSGGEVFRSGCTFRRGHGKIFYFSPGDQDYPVYHHKDIRRVISNGVQWAATDRDRRELPELLRYDTNEFFKGAGYQGATAIYEDSDANANANANANA
D1-29_04254891dasC_7COG0395Diacetylchitobiose uptake system permease protein DasCATGACCATTAAATTGACCTCAAAGGATGCCGGCGCCGGCACAACCCGCCGGCTGCGCAGCACGGCAGGCCACGCCGGCCAGTCCGGAGGATTCCGGCGGTGGGGGAACACGGCCCTGGCGCTACTGTTCCTCGCCATCATGCTTTTCCCCGTCTATTGGATGATCAACGCATCCCTGCAGCCCAATGGGGCCACGCTGCAGACCTCATGGCTCCCGTTGTCGCCCGATTTCAGCGGCTACGCCACGGCCATCAGGGAACAGGGCCGGAACCTGGCAACCAGCCTGGTGGTGGCGCTGGGCAGTGTCCTGTTCAGCCTGGCCATTGCCGCGCCGGCGTCTTATGCCTTGGCCTACTTCAAGGTCCGCGGCGCCGGCGTTGTGCTTTTTGCCATCCTGATCAGCCAGATGATCCCTGGCATCGTGGTGGCCAATGCCCTTTACACGGCGTACAACGACCTCGGGCTGCTGAACTCCATCCCCGGACTCATCCTGGCCGATTCCTCCCACGGCATCCCCTTTGCCATCCTCATCATGCGGGCGTTCATGAACAACATGCCCGCCTCCGTGATCGAGGCTGCCAAGGTGGACGGAGCGGGGCACCTCCGGGCCTTTTGGTCCATTGTGCTTCCGCTGAGCCGCAACGCGCTGATCACGGCCGGGCTCTTCACGTTCCTGTTCACCTGGAGTGATTTCCTCTTTGCCCTCACCCTGACCACCACCGATGCCGTCCGTCCTGTCACTCTGGGCATCTTCCAGTACATGGGTGCGTACGTGAACGACTGGAGCTCGGTCATGGCCACGGCGGTCCTCGCCTCCATCCCCGCCATCATCCTGCTCATCGCGGCGCAGAAGTACGTGGCTGCCGGAACCACCGGCGGCGCGGTGAAGTAGMTIKLTSKDAGAGTTRRLRSTAGHAGQSGGFRRWGNTALALLFLAIMLFPVYWMINASLQPNGATLQTSWLPLSPDFSGYATAIREQGRNLATSLVVALGSVLFSLAIAAPASYALAYFKVRGAGVVLFAILISQMIPGIVVANALYTAYNDLGLLNSIPGLILADSSHGIPFAILIMRAFMNNMPASVIEAAKVDGAGHLRAFWSIVLPLSRNALITAGLFTFLFTWSDFLFALTLTTTDAVRPVTLGIFQYMGAYVNDWSSVMATAVLASIPAIILLIAAQKYVAAGTTGGAVKPGPT0016540_2632DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_04255963dasBCOG1175Diacetylchitobiose uptake system permease protein DasBATGTCAACAACCGTCGAACAGGTGCGGCACCGCCCGGTGCAGGCACTCCCGGGTCCCGCCGGTGCCCGCCGCCAGGGATACCGGCGCCGGGAGCGGGTCTACCAGTGGCTGTTCCTCCTGCCTGCCGTCGCCTATCTCGTGCTGTTCTTTGGCTACCCGGTGGTGAAGAACGTCCTGATGAGCTTCCAGGACTACTCCACCAGCACTTTCTACACCGGGGAAGCCCCATGGGTGGGGTTCGCCAATTACGCAAGTGTTCTGTCGTCGTCGCTCTTTTCCACGTCGTTGATCAACACTGCCCTGTTTACTGCCGGTTCCATTGCCGGACAGTTCGTGCTGGGGCTGGGCCTCGCGGTGTTCTTCAAGCGGCGGTTCCCGCTCAACGGCATTCTCCGCTCGCTGCTGCTTCTGCCTTGGCTGCTGCCGCTCATCGTGTCCAGTGCCGTGTGGCGCTGGATCCTGGACAAAGACAGCGGGGCCCTGAACAACTTCCTGGAAAGCCTTGGCCTCATCAGCACCGGCATTCCCTGGCTCACCAGCACCTCGCTGGCCCTGGCCGCCGTTGTCGGAGTCAACATCTGGATCGGCATTCCCTTCAACGTCACCGTTCTCTACGGCGGGCTGCAGGACATCCCGGATGAACTGTATGAGGCGGCTTCGCTGGATGGTGCCACCGGATGGCGGGCCTTCCGCCACGTGACGTGGCCGATGCTCCGCCCGGTGGTCAGTGTGGTCCTGGTGCTGGGAGTGGTCTACACCCTCAAGGTCCTGGACATCATCCTGGGCCTGACCAACGGCGGGCCCGCCAACTCCACGCAGACCATCGCCACCCAGTCCTACGCCCTGTCCTTCCAGGACTTCAAGTTCGGCGAAGGCGCGGCCATGGGCAACGTCCTGGTGCTGATCTCCCTGGTATTCGCAGTTCTGTACCTGCGCGTTAACCGTCGCGCCGTTGACGAGTGAMSTTVEQVRHRPVQALPGPAGARRQGYRRRERVYQWLFLLPAVAYLVLFFGYPVVKNVLMSFQDYSTSTFYTGEAPWVGFANYASVLSSSLFSTSLINTALFTAGSIAGQFVLGLGLAVFFKRRFPLNGILRSLLLLPWLLPLIVSSAVWRWILDKDSGALNNFLESLGLISTGIPWLTSTSLALAAVVGVNIWIGIPFNVTVLYGGLQDIPDELYEAASLDGATGWRAFRHVTWPMLRPVVSVVLVLGVVYTLKVLDIILGLTNGGPANSTQTIATQSYALSFQDFKFGEGAAMGNVLVLISLVFAVLYLRVNRRAVDEPGPT0016535_850DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_042561236malXCOG2182Maltose/maltodextrin-binding proteinATGAAGTCAGCTTTCGTCAGCACCAAAGCCGCCGCTCTCGCCGTCACGGCACTCGCAGGGTTACCACTGGTTCTCGCCGGCTGTGGCGCAAGCCCAGCGCCGGGCGGCGGCGGAGCCGTGACGGAAATTACCGTTGTGGACTACTACAACAACGAGCCGGACAAGTCGGTCATCGGCAACACGCTGGAGACTTGTGGTTCCCAGGCCGGCGTGAGCATCAAGCGCGAAACCATACCGGGCAAGTCCCTCATCGCCAAGGTGCTGCAGCAGGCATCCTCAAAGACCCTTCCTGACGTCCTGATGCTGGACAACCCCGACCTTCAGCAGATTGCCGGCACCGGCGCCCTGGCACCGCTGAGCGATTTCAAGATCAGCACCGATGGCTATCCAGAGGGAATCCTCAGCGCCGGAACGTACAAGGACGAGGTGTACGGCCTGGCCCCCACGGTGAACACCATCGCCCTCTTCTACAACAAGGACGTACTGGCCCAGGCCGGAGTGACCCCGCCCAAGACCTGGGAGGAGCTTAAGGCAGCGGCAGCAAAGCTCACCTCCGGTGACCAGTACGGACTCGCTTTCAACGCCAACGCGACCTACGAGGGCACCTGGCAGTTCCTTCCCTTTATGTGGTCCAACGGCGGCGACGAGAAAAACATTGCCACCTCCGAAACCGCCGAGGCACTCCAGCTCTGGACCGATCTGGTGGATAGCGGATCGGTGTCCTCATCTGCGTTGAACTGGACCCAGGCGGACGTTAACGACCAGTTCGTTGCGGGGAAGGCCGCCATGATGGTCAACGGCCCCTGGCAGATCCCGGTGCTGGACAAGCAGGCTGCACTCCAGTACGGCGTGGTTGACATCCCGGTCAAGGATTCCAGCAAGACGGCGGTTGGCCCGCTGGGCGGCGAAGTTTGGACCGTGCCGCAGACCGGCAACAAGGACAGGCAGGCAAAGGCCGCCGAAGTCGTGGCGTGCATGAACAGCGATGAAAACCAGCTGGCCATGGCCAAGGCACGCAACACCATTCCTTCCAAGACCGCGGTTGCTGCACAGTTCGCGGCCGAGAACCCGAAGCTGGCTTCATTTGCCGAACTGGTCAAGGACGCGCGGGCCAGGACCGGCCAGCTCGGAGAGGAGTGGCCCGCCCAGGCCACCAAGATCTACACCGCAATCCAGGCAGCACTGACTGACAAGGCCAGCCCCGCGGACGCCCTCAAGCAAGCCCAGGAAGGTTAAMKSAFVSTKAAALAVTALAGLPLVLAGCGASPAPGGGGAVTEITVVDYYNNEPDKSVIGNTLETCGSQAGVSIKRETIPGKSLIAKVLQQASSKTLPDVLMLDNPDLQQIAGTGALAPLSDFKISTDGYPEGILSAGTYKDEVYGLAPTVNTIALFYNKDVLAQAGVTPPKTWEELKAAAAKLTSGDQYGLAFNANATYEGTWQFLPFMWSNGGDEKNIATSETAEALQLWTDLVDSGSVSSSALNWTQADVNDQFVAGKAAMMVNGPWQIPVLDKQAALQYGVVDIPVKDSSKTAVGPLGGEVWTVPQTGNKDRQAKAAEVVACMNSDENQLAMAKARNTIPSKTAVAAQFAAENPKLASFAELVKDARARTGQLGEEWPAQATKIYTAIQAALTDKASPADALKQAQEGPGPT0016545_10280DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_042571011ccpA_12COG1609Catabolite control protein AGTGGCGGGCGTTTCCCAGAGCACTGTCTCCTACGTCATGAGCGGTAAGCGGCCCATCTCGGAAAAGACCCGGCTGAGGGTGGAGGCCGCCATTGAGCAGCTGACGTACAGGCCGAACGCGGGGGCCCGGGCGCTGGCCAGCCGAAAGTCCCAAGTGATCGGCCTGGTTATTCCCCTCACGCCGGAGTCTCAGTTCGGATCCCTGATGGAGTTCATCGCGGTGATCGCGGCCACGGCCCGGCGCCACGATCACGACGTCCTGCTGGTGACGGATGAGGAGGGCAACCAGGGCTTGGAGCGGGTGGTGGGGCAGCAGCTCTGTGACGGGCTGATCCTGATGCAGGTCCACGCCGAAGACGAACGGATTCCCGTGGTCCGGAAACTGCGGGTACCGGTGGTGTTCATCGGCATCCCGAATGACTCCACCGGCCTCAACTGCATCGATGCGGACTTCGCCAGGGCGGGCGAACTCTGCGTCGAGGAGTTGTCACAGGCGGGACACACCAGCGGAGTCATTATCGGTTGGCGCACTCAGCTGGCCGGAAGCAAGCTGAACTACGTGGACAGATTCCTGGGGGGCGCGAAAGAGGCCGCCCAGAGGCTGGGCGTGACACTTGACCATCTTCCGGCCCGCACTGACCGCAGAAGTATCGAAGCCGCCGTTGATGCCTGCGTTGCCGGCACTGACGGAAGGCCAGCGTTCATCTCCCCGGACACCACCACCTTGGAACTCCTTCCCCGGATCCTTCGTGAAAGGGGGCTGGAACCAGGCAGCGACGCATCGGTCGTCGGGGTCGGCGCGGTTTCCGAGGCCATGGCTGAACTCCAGGAATTCACCATCCTGGACCTCCAGCCAAGGCTGGTTTCCCAGCGCGCCGTTGAAATCCTTTTCAACCTCATGAATGCAGAGAGCCCTGACGCTGGGGGAACACTCGAACTCATACCACCGGTGATAACCCACCGGCATGGCACCGCAGGGCTCGTGGCTCCTGCACCCCAGTCCACCTCCTAGMAGVSQSTVSYVMSGKRPISEKTRLRVEAAIEQLTYRPNAGARALASRKSQVIGLVIPLTPESQFGSLMEFIAVIAATARRHDHDVLLVTDEEGNQGLERVVGQQLCDGLILMQVHAEDERIPVVRKLRVPVVFIGIPNDSTGLNCIDADFARAGELCVEELSQAGHTSGVIIGWRTQLAGSKLNYVDRFLGGAKEAAQRLGVTLDHLPARTDRRSIEAAVDACVAGTDGRPAFISPDTTTLELLPRILRERGLEPGSDASVVGVGAVSEAMAELQEFTILDLQPRLVSQRAVEILFNLMNAESPDAGGTLELIPPVITHRHGTAGLVAPAPQSTSNANANANANA
D1-29_042582037iolG_14Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAAGGAGTTTGTCGCGGGGTCCATCAGGTGGGGAATCCTCGGGCCGGGACATATTGCCCGGCGGTTCGCAAAGCAACTTCCGTCCAGCCAGACGGGGGAGCTCGTAGCAGTCGGCAGTTCCGACCGGACCCGGGCGAAGGCCTTCGCGGTGGAAGCCGGTGTCCCGCACGCTATCACCGGCACGTACGCAGAGGTGCTGGCCAGCCCGGACGTTGACGCTGTCTACGTGTCAACCGTGAACACCAGTCACGCGCAGCTCGTACTGGCCGCGGTGCGCGCAGGCAAGCATGTCCTGTGCGAGAAGCCGCTCGCGCCGAATCATGGAAGCGTTATGGCTGTTGTCGACGCCGCGCGCACCGCAGGCGTCATCCTCATCGAGGCCTACATGTACCGGTTCCATCCGCAGACGGTGAAGCTCCTCGAGCTCATCCGTAACGGAGCCATCGGGCAGGTCCAGCACATCGATGCCAGTTTCTGCTTTGACGTGCCTGAAAAGAAGGGCCGGTTGTTCGACCCGAACCTTGCCGGCGGCGGCATTCTCGATGTCGGTGGCTATCCGGTGACGATGGCACGTGCCGTGGCAGGCGCAGCTTCCGGGCAACCCTTCGTTGAACCCCTCGATGTGCGCGGGGCCGGACACGTCGGCAGCACAGGCGTGGACGAATGGGCGGTTGCACACCTGACCTTCCCTTCGAAGCTCACGGCAACACTGCGTGCGGGGATCCGCATCGAGAACCCCGAAGAGGTGACAATCTCCGGTTCAGAGGGCACCCTGTTCCTTTCTGATCCCTGGACCATTCACGACCGGCAGGAGCTGGTACTCCGGCGTGTGGGGGAGCAGCCGCAGAAGTTCACCTTCGCTTCGGACAGCCCTGCCAACCGGCCGTACGCCCTGGAGGCCGACGCCCTCGCACAGGCGGTGGCCACCGGCCAGGAGCCCGTTGAGATGTCCCTTGACGACACGCTGGGAACCTCGGCTGTGCTGGAGCGCTGGCGGGACCAGGTGGGTGTGCGGTTCCCGTTCGAAATCGATGAGGCCAACGTTCCTACCGTCTCTGGCCTGCCACTGGCTGTCATGCCCGATACACCCATGCGCTATGCGCAGATTCCCGGGTTGGGCAAATCCGTCTCCAGGCTTGTTATGGGCTGTGACAACCAGCCGAACCTGGCGCATGCATCGTCGCTCTTTGACGCGTTCTGGTCCGCCGGCGGCAACACCTTCGACACGGCGTGGCTGTACGGCACCAACGGTGAACACGAAAAGCGGTTCGGAAAGTGGCTCGCGAACCGCGGGGTCCGCGAGGATGCGGTGGTCATTGTGAAAGGAGCCCACACGCCGCACTGTGATCCTGATTCCCTGTCCCGGCAACTGCTGGAATCCCTGGACCGGCAGGGACTTGAGTATGCCGACGTGTACCTCATGCACCGCGACAATCCTGACATCCCGGTTGGTGAGTTTGTTGATGTGCTGGACGAGCATGCCGCTGCGGGGCGTATTACGGCCTTTGGCGGTTCGAACTGGTCGTTGGAGCGGTTTGATGAAGCCAATGCTTGGGCGGCCGCGAATGGCAAACGGCCCCTCACCGTCCTGAGCAACTACTTCGGCCTGGCGGAAGCCTACGATGTGCCCTGGACCGGATGCCGGACTGCTACCGACCCGGAGTCCAAACGTTGGCTCACGGAACACAATGTGGCGCTCCTGCCCTGGTCTTCACAGGCACGCGGGTTTTTCGCGCGCGCAAATGCTGACGACCTCAGTGACGCTGATCTGGTGCGTTGTTTCTATGGCGATGCAAACTTTGAGCGGAAGCGCCGGGCTGAACAGTTGGCAACAGAATTCGGAGTGCCGGCTACAGCTGTGGCGCTGGCCTACGTGCTGGCCCAGCAATTCCCAACCTTTGCCTTGGTGGGGCCACGGTCAATTGCTGAGTATCGCGGCACGATGACGGGTCTTGGCATCGAACTGACTGACGAGCAGTCCTCGTGGCTGGACCTGCGCAACGGCCAGAAGGGCTTTCCAGCACTCCGCGAATGAMKEFVAGSIRWGILGPGHIARRFAKQLPSSQTGELVAVGSSDRTRAKAFAVEAGVPHAITGTYAEVLASPDVDAVYVSTVNTSHAQLVLAAVRAGKHVLCEKPLAPNHGSVMAVVDAARTAGVILIEAYMYRFHPQTVKLLELIRNGAIGQVQHIDASFCFDVPEKKGRLFDPNLAGGGILDVGGYPVTMARAVAGAASGQPFVEPLDVRGAGHVGSTGVDEWAVAHLTFPSKLTATLRAGIRIENPEEVTISGSEGTLFLSDPWTIHDRQELVLRRVGEQPQKFTFASDSPANRPYALEADALAQAVATGQEPVEMSLDDTLGTSAVLERWRDQVGVRFPFEIDEANVPTVSGLPLAVMPDTPMRYAQIPGLGKSVSRLVMGCDNQPNLAHASSLFDAFWSAGGNTFDTAWLYGTNGEHEKRFGKWLANRGVREDAVVIVKGAHTPHCDPDSLSRQLLESLDRQGLEYADVYLMHRDNPDIPVGEFVDVLDEHAAAGRITAFGGSNWSLERFDEANAWAAANGKRPLTVLSNYFGLAEAYDVPWTGCRTATDPESKRWLTEHNVALLPWSSQARGFFARANADDLSDADLVRCFYGDANFERKRRAEQLATEFGVPATAVALAYVLAQQFPTFALVGPRSIAEYRGTMTGLGIELTDEQSSWLDLRNGQKGFPALRENANANANANA
D1-29_042592199yicICOG1501Alpha-xylosidaseATGAAATTCACGGACGGCTACTGGCTGTACCGCAAGGGCCTGTCTGCCCTGCATCCGCGGGACGTGGTGGATGTGGAAGCATCGGAGGACAAACTGACGGTCTTCGCGCCCACCAAGAGGATCGCGGACCGCGGCGATGCATTGAACTGCCCCCAGCTGACCATCACCTTCGAATCACCCCTTCCCGATGTCATTGGCGTGACCATTGAACACTTCCAGGGCGGCGTGGACGTTGGCCCGCACTTCGAACTGAAGGAAGGCACCGCGGACGTCAGCATCGGGAACGACGGCGGGACGGCCACGTTCACCTCCGGCGGCCTTACCGCACGCGTCAGCACAGGGGGCGACTGGAACGTTGACTTCGTGGGTGACGGCCGTCTGCTGACCAGCTCCGTGCCCCGCAGCATCGGCGTGATCACGGACCAGGACGGGAAGCACTTTGTCCATGAACAGCTGACGCTCGGCGTGGGCACCAACGTCTACGGCCTGGGCGAACGGTTCGGACCGCTGGTCAAGAACGGCCAGTCGATCGACATCTGGAATGAGGACGGCGGCACGTCCAGTGAGCTCGCCTACAAGAACGTGCCGTTCTTCATCACCAACGCCGGCTACGGCGTTTTCGTGAACCACCCGGCGCGCGTGTCCTACGAAATAGGCTCCGAAGTGGTGTCCCGTACGCAGTTCAGCGTGGAGGGGCAGAAGCTCCAGTATTTTGTGATCCACGGACCAACGCCCAAGGAGATTCTGCGCCGTTACACCGAGCTGACCGGGAGGCCCTCACGCATCCCGGCCTGGTCCTACGGGCTGTGGCTCTCCACGTCGTTCACCACGGATTACGACGAAAAGACGGTGATGTCCTTCATTGACGGGATGGCAGAGCGCCGGCTTCCGCTGTCCGTATTCCACTTCGACTGCCACTGGATGCGTGCCTTCCACTGGAGCGACTTCATCTGGGATCCTGCCACCTTCCCTGACCCGGAGGGCATGCTCCGCCGGCTCCACGAGCGGGGACTCAAGGTCTGCGTGTGGATCAACCCCTACATAGCGCAGCGCTCGTACCTGTTCCGTGAAGGCGCCGAGCTGGGTTACCTGGTGAAAAAGGCGGATGGCTCGGTCTGGCAATGGGACATGTGGCAGGCCGGCATGGGCCTGGTGGATTTCACCAATCCGGACGCTGTCACGTGGTACCAGGACAAGCTGCGCACCCTGCTGAACCAGGGCGTGGATTCCTTCAAGACGGACTTCGGCGAGCGCATTCCCACCGATGTGGCATGGCATGACGGCTCGGATCCCCAGCGGATGCACAACTACTATGCCCAGCTCTACAACCGGACGGTTTTTGACCTGCTGACCAAGGAGCTGGGCGAAGGCCAGGCCGTGCTGTTCGCCCGCTCGGCCACCGCGGGCGGACAGCAGCTGCCCGTCCACTGGGGCGGGGACTGCGAGTCCACCTTCTCCGCGATGTCCGAATCCCTCCGCGGTGGCCTGTCCATCGCGTCCTCGGGATTCGCGTTCTGGAGCCATGACATCGGCGGGTTCGAAGGCACCCCCGACCCTGAGCTCTTCAAACGGTGGATCGCCTTCGGGCTGCTGTCGTCGCACTCTCGGCTGCACGGTTCAGCCTCCTACCGGGTGCCCTGGCTGGTGGACGACGAATCCAGCGACGTCCTGCGCCACTTCACCGGGCTCAAGATGAAGCTGATGCCCTACCTGCTGGGCGCCGCGGAGGAAGCCCACCAGACGGGGACGCCACTGATGCGCCCCATGTTCCTGGAGTTCCCGGACGATCCGGCGTGCGCCCACCTCGACAGGCAGTACATGCTGGGGTCTGAGCTGCTCGTGGCGCCGGTCATGGGGAGTGGCGGCTCAGTGGACTTCTATTTGCCGGAGGGCACCTGGACGCATCTGGAAAGCGGCGAGCAGCTGTCCGGACAGCGCTGGCACAGCAAGGCCTTCTCGGTGATGGAGGCTGCAGTTTACGTCCGCCAGGGTGCGGTCCTGCCGCTCGGAACTGTCAGCGACAGGCCTGAATATGACTGGGCCAATGAGGTGGAATTCAAGGCCTTCGCCGCCGTCGACGGCCATCACAGGACGGTCACCGTTCCGAAGGCCGACGGCGGTTTTGCCCGGTTTGAGGTGACGGTGGAAAGCGGCCGGGCGGTGGCGCAGGTCCTGGCCGACACCGGCACCAAGCACTAGMKFTDGYWLYRKGLSALHPRDVVDVEASEDKLTVFAPTKRIADRGDALNCPQLTITFESPLPDVIGVTIEHFQGGVDVGPHFELKEGTADVSIGNDGGTATFTSGGLTARVSTGGDWNVDFVGDGRLLTSSVPRSIGVITDQDGKHFVHEQLTLGVGTNVYGLGERFGPLVKNGQSIDIWNEDGGTSSELAYKNVPFFITNAGYGVFVNHPARVSYEIGSEVVSRTQFSVEGQKLQYFVIHGPTPKEILRRYTELTGRPSRIPAWSYGLWLSTSFTTDYDEKTVMSFIDGMAERRLPLSVFHFDCHWMRAFHWSDFIWDPATFPDPEGMLRRLHERGLKVCVWINPYIAQRSYLFREGAELGYLVKKADGSVWQWDMWQAGMGLVDFTNPDAVTWYQDKLRTLLNQGVDSFKTDFGERIPTDVAWHDGSDPQRMHNYYAQLYNRTVFDLLTKELGEGQAVLFARSATAGGQQLPVHWGGDCESTFSAMSESLRGGLSIASSGFAFWSHDIGGFEGTPDPELFKRWIAFGLLSSHSRLHGSASYRVPWLVDDESSDVLRHFTGLKMKLMPYLLGAAEEAHQTGTPLMRPMFLEFPDDPACAHLDRQYMLGSELLVAPVMGSGGSVDFYLPEGTWTHLESGEQLSGQRWHSKAFSVMEAAVYVRQGAVLPLGTVSDRPEYDWANEVEFKAFAAVDGHHRTVTVPKADGGFARFEVTVESGRAVAQVLADTGTKHPGPT0019340_980DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019340-xylS|yicI-K01811NANA
D1-29_042602061bgaB_2Beta-galactosidase bgaBATGATCAACTTTGACCTTTCTCCCACTTCCACCCCTCAGGGCCGCTTGGGCTCCCTGACGGAGACGTTGGGACTCATCCACGGCGCGGACTACAACCCCGAGCAGTGGCCGGCGGAAAGCTGGCCGGAGGATATCCGGCTGATGCAGCAAGCCGGAATCAACTTGGCCACCGTCGGGGTGTTCAGTTGGGCACTGCTTGAACCCAGGGAAGGGGCCCGCAACTTCGGCTGGCTGGACGAGATCCTGGACCTCTTGCACAACGGGGGCATACGGGTCTGCCTGGCTACCCCCACTGCATCACCACCGCCCTGGTTGGGCCACGATTACCCCGAGACGCTTCCTGTTGACGCGGACGGCCGCACCCTTTGGTACGGCTCACGCAACCAGTTCAGCCCGTCGTCTGCCAAATACCGTCGTGCCGCGGCTGCCATTACGGAATCGTTGGCCAAAAGGTATGCGGGCCACCCGGCGGTTGCCATGTGGCACGTGGGCAACGAGCTGGGCCAGATCAGCTACGACGACGAAAGCGCGCTGGCGTTCCGCGCCTGGCTGATGCGGCGTTACGGATCGTTGGAGGAGCTGAACAGCGCTTGGGGCACCACGTTCTGGAGCCAGCGGTATGGCAGCTGGGACCAGATCATGCCGCCGCGCCGGGCGCCTTACCTGATCAATCCCAGCCAAACCCTGGACTTCCAGCGCTTCACCTCCGACCAGCTGTTGTCCCTGTATACCGCCGAACGGGACATCATCCGCCGCCACGACCCCACGAGCCCTGTCACCACCAACCTGATGGGATTTTTCCGCGGCGCCGACTACTTCTCGTTCGCCAAGGAAACGGATGTGGTGGCCAACGACTGGTACACCGATCCGTCCGATCCAGGGTCCCACCGGCTGGGCTCGCTGACCCACGACCTGTGCCGGGGGCTCTCACGCGGTGAACCATGGCTGCTCATGGAGTCCGCAACTTCGGCGGTGAACTGGCGCGAACACAACGTGGCCAAGGAACCGGGCGAACTGCGGGTGGATGCCCTCTCTGCCATTGCCCGGGGTGCCGATGGAGTCTGCTACTTCCAGTTCCGCCAGTCCAGCTTCGGCGCCGAACGCTTCCACTCCGCCGTAGTGCCCCTGGCCGGAGAACACACACGGGTGTTCCGCGAAGTGTCGGAACTCGGAAGCGACCTGCAGTCCCTGCGGCAGCTGGCCGGCACGCCTTGCAAGGCGAGGATCGCGGTCCTTTTTGACTGGGACAGCTGGTGGGCGGCCGAATCGCCGGACACCCCCACCAGCCGGCTGGACGTCCTGAAGCAGATCCAGGCCTACTACGCGCCGCTCCTCCGGAGAGGGCTCGCCGTTGAAGTGGTCCATCCTTCCGCGGACCTGGACAGATTCGAGCTGGTCCTGGCGCCGAGCCTGTTCCTCCTCACGCAGGAGCACGCCGGCTCGCTGGTGGCGTATATGCGGGGCGGCGGACACCTGGTGGTGGGCCCGTTCAGCGCAGTAGCCGACGGAAACGGACATCTGGCACCCGGACGCTTCCCGGGAGTGCTGTCGGAACTCCTTGGTGTGGACGGCGAGGAGTGGTTGCCGCTAGCCTCCCCGCTCCGCATTGATTTTGCCAGCGCGGTACTCGCAGGACGGGCTGAGGCAGCCTGGCAGGCCACTGTCTGGGCGGAGAGCCTGGCCCTCCGGGAGGAAACCGCGCAGGCCGTTGCCCACTTTGGCGAGGGACACCTGAAAGGCAAGCCCGCCGTCGTACATAACCGCCAAGGCGAGGGAAGTGCCTGGTACGTCGGCGCGGACCTTCCCGCAGAGGCGCTGGACGTGGTCATGGCGGCAGCCCTGGATTCAGCTGGCATCGCCTCCCCGCTGGCCGCGGCGCTTCCGGAACAGGTGGAAGCAGCCAGCCGCGGCGGCCACCTGTTCCTGCTCAACCATTCGAAACTGCCGCAGACGGTTCAGCTCGGCTGGGCGTCCGTGGACCTGCTCACCGGCACCGAGCACAACCAGCACCTGACCTTGCCGCCGTTCGGGGCTCTCGTACTTAAAGAACTAGGGAAATAGMINFDLSPTSTPQGRLGSLTETLGLIHGADYNPEQWPAESWPEDIRLMQQAGINLATVGVFSWALLEPREGARNFGWLDEILDLLHNGGIRVCLATPTASPPPWLGHDYPETLPVDADGRTLWYGSRNQFSPSSAKYRRAAAAITESLAKRYAGHPAVAMWHVGNELGQISYDDESALAFRAWLMRRYGSLEELNSAWGTTFWSQRYGSWDQIMPPRRAPYLINPSQTLDFQRFTSDQLLSLYTAERDIIRRHDPTSPVTTNLMGFFRGADYFSFAKETDVVANDWYTDPSDPGSHRLGSLTHDLCRGLSRGEPWLLMESATSAVNWREHNVAKEPGELRVDALSAIARGADGVCYFQFRQSSFGAERFHSAVVPLAGEHTRVFREVSELGSDLQSLRQLAGTPCKARIAVLFDWDSWWAAESPDTPTSRLDVLKQIQAYYAPLLRRGLAVEVVHPSADLDRFELVLAPSLFLLTQEHAGSLVAYMRGGGHLVVGPFSAVADGNGHLAPGRFPGVLSELLGVDGEEWLPLASPLRIDFASAVLAGRAEAAWQATVWAESLALREETAQAVAHFGEGHLKGKPAVVHNRQGEGSAWYVGADLPAEALDVVMAAALDSAGIASPLAAALPEQVEAASRGGHLFLLNHSKLPQTVQLGWASVDLLTGTEHNQHLTLPPFGALVLKELGKPGPT0017815_1233DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_042611002ccpA_13COG1609Catabolite control protein AGTGGCCACCATGAATGACGTCGCCAGGGCAGCCGGAGTTTCCACCAGCACGGTGTCCTACGTCTTGAGCGGCAAGCGGACTATCTCCGAGGAAACCCGCGAACAGGTCCTGGCCGCCATCCGGAAGCTGGACTACAGCCCCCATTCCGGCGCGAGGTCCCTTGCCTCCAGCAGGTCCAACGTGCTGGGCCTGATGGTTCCCCTGCGAGCGGACGTGAACGTCAGCGTGATCATGCAGTTCGTCGCCGGGGTTGTGACCACTGCCCGGGATTTCAACCAGGACGTCCTGCTCCTGACCCAGGACGACGCCGACGGCATCCACCGGGTGACCTCCCAGTCCATCGTGGACGGGCTGCTCATGATGGATATCGAAGCCCGCGATCCCCGGATCCCCCAGCTTGCGAAGCTCCGGAAGCCCGCTGTCCTGATCGGCTTTCCGGACGATCCACAGGGCCTGAGCTGCGTGGACTTCGATTTCGCCGCAGCCTCCCGCGCTGCCGTCCGCCACATGGCCGAGCTGGGCCACCGGAGTCTGGGTTTCATCGGCTCCCCGCAGGCCTCCCTGGAGCGTCACGCCACCTACGCCGACCGCGCCCGTAAAGGCTTTGAAGACGCCTGCCAGGCTGCCGGCATCACCGCTTCCCTCAGGGCCTGCGAACCCACATCCGGCGCCCTCGCAGGCGCCCTGGACGCCATGTTCTCGCGTGACGAGCCGCCTACTGCCCTGGTGGTCCACAACGAAGGACTGCTCCCCCTGCTGCGGGAAGCCCTGGCCCTGCGCGGACTGCAAATCCCCAAGGACATCTCGGTTGTTGCCATCGCTCCCGAAGACGCGGCCATGGCCTCCGCCCACCCGTGGACTGCAGTCTCCATCCCTGCCCACGACATTGGACGCGCCGCCGTCGAAATGGTCATGGACCGGCTCAACTCGGACAAGCCCGTGGAGATCCGGCTCATTGTGCCCTCCCTGGTGCAGCGCGACACCTCTGCGGCCCCAAGCTAGMATMNDVARAAGVSTSTVSYVLSGKRTISEETREQVLAAIRKLDYSPHSGARSLASSRSNVLGLMVPLRADVNVSVIMQFVAGVVTTARDFNQDVLLLTQDDADGIHRVTSQSIVDGLLMMDIEARDPRIPQLAKLRKPAVLIGFPDDPQGLSCVDFDFAAASRAAVRHMAELGHRSLGFIGSPQASLERHATYADRARKGFEDACQAAGITASLRACEPTSGALAGALDAMFSRDEPPTALVVHNEGLLPLLREALALRGLQIPKDISVVAIAPEDAAMASAHPWTAVSIPAHDIGRAAVEMVMDRLNSDKPVEIRLIVPSLVQRDTSAAPSPGPT0014791_330DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
D1-29_04262954araQ_15COG0395L-arabinose transport system permease protein AraQATGAGCACCATCAGCAAACAGCCAACAGAATCATTCGCCCTGCCCAAGCCATCAGCCCTGCGCCGCAGGAATCCGTCCAGGCCCGTCTGGGAGGAAGAGCCGGGCCCGGTTGCCAAGATCGGCAAGGCGGCCGTGCTCACCATGGTGGTGCTGGCCGTCCTGGGACCGCTTTACGCAATCGTGCTGACCAGCCTGTCCTCCCAGGCCACCATCACCGCGGCCGGCGGGATGGTCATCATTCCCGGCGAAATCAGCATTGACGCCTATCGCCAGATCATCAGCGGCGGCGTGGTCACCCGGGCCGTGCTGGTGAGCGTGGGCGTGACTGCGGTGGGAACCGTGCTCAGCATGGTGGTGTCGGTCCTGTGTGCCTACGGGCTCTCACGGCCGGGCTCCTTCGCCCATACGCCGCTGCTGTTCACCCTGCTGCTGACCATGTTCTTCAGCGCCGGCATGATTCCGGCCTTCCTGCTGGTGTCCGGACTGGGCCTGATCAACACCTACTGGGCGCTGATCCTTCCCGGGGCCATTTCGGTCTTCAACATCATCATCCTGCGCGGTTTCTTTATGGGGATCGACAGGGGAATCCTGGACAGTGCCCGGATCGACGGTGCCAGCGAATGGCGGATCCTGGCCCAGATTGTGCTTCCGATGTCCAAGGCCGTGACCGCAGTCATCGCCCTCTTCTACGGCGTGGGCTACTGGAACGCGTTCTTCAATGCCGTCCTTTACATCAATGACAGCGCCATGAACCCGCTCCAGGTTGTGCTGCGCTCCTACGTCCTGCAAGGCGTGATGGTTCCCGGCCAGATTGATGTTGGGCAGGGGGCAGCACCGTCCCTGGCCCTGCAGATGGCCGTCATTGTGGTGGCAGTTGTGCCCATTCTGCTGGTTTATCCCCTGGTGCAGAAGCACTTCACCAAGGGAGTAATGATCGGCGCGGTGAAGGGGTGAMSTISKQPTESFALPKPSALRRRNPSRPVWEEEPGPVAKIGKAAVLTMVVLAVLGPLYAIVLTSLSSQATITAAGGMVIIPGEISIDAYRQIISGGVVTRAVLVSVGVTAVGTVLSMVVSVLCAYGLSRPGSFAHTPLLFTLLLTMFFSAGMIPAFLLVSGLGLINTYWALILPGAISVFNIIILRGFFMGIDRGILDSARIDGASEWRILAQIVLPMSKAVTAVIALFYGVGYWNAFFNAVLYINDSAMNPLQVVLRSYVLQGVMVPGQIDVGQGAAPSLALQMAVIVVAVVPILLVYPLVQKHFTKGVMIGAVKGPGPT0017255_278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017255-lplC-K17320NANA
D1-29_042631020yteP_3COG4209putative multiple-sugar transport system permease YtePATGACTACCACTGAATCCACCCGGACTGCCCCGGCAGCTCTGGCGAACGACGGCAAACGCAGCCACCGCGCTGAGGACGGCGGCGGCAAGGCAACTGCGGCCCGGAAGAAGACGGGCTTCCGGACCAGGCTGATGCGGGATAAGTCCCTGGTGCTGATGACCCTGCCGGCAATTGCGCTCCTCCTGGTCTTTTCTTATGTGCCAATGCTGGGCAACATCGTGGCGTTCCAGGACTACTCACCCTTCGTGGGCATCCAGGACAGTCCTATTGTTGGCCTGGACAACTTCGGCCGGGTGCTGGGAGACCCTGGCTTCTGGCTCGCCGTGACAAACACCCTGGTGATTACTGCCTTCCAGCTGGTCTTCTTCTTTCCCATCCCCATTGTGCTGGCATTGCTGCTTAACTCCATGCTGTCCCCGGCGCTGCGTTCCACCATCCAGGCGATTGTTTACCTGCCGCACTTCTTCTCCTGGGTGCTTGTGGTGTCCGTCTTCCAGCAGGTCTTCGGCGGTGCAGGCCTCCTGAGCCAAAGCCTGAGGGCGCAAGGCTGGCAGGCCATGGACATCATGACCAACCCGGATACGTTCCTGTTCCTCATCACTTCGCAGGCCATCTGGAAGGACGCCGGCTGGGGCATCATCGTGTTCCTTGCCGCCCTCAGCGCCATAGACCAGGAGCAGTACGAAGCGGCAGCAGTGGATGGAGCCAGCCGTTGGCGGAGGACCTGGCACGTGACGCTGCCAGGACTGCGCGGTGTGGTTGTCCTGCTGCTCATCCTGCGCCTGGGGGATGCCTTGTCGGTGGGTTTCGAGCAGCTCATCCTGCAGCGGGACGCCGTGGGTGCGCAGGCCTCCGAGGTCCTGGACACATTCGTCTACTACACCGGCATCCAGAACGGTGACTGGAGCTACGCTGCTGCGGCCGGCCTGATCAAGGGCGTCGTGTCCCTGGCCCTCATTCTGGGCGCCAACAAACTTGCCCACATTTTCGGAGAGAGCGGGGTGTACTCAAAGTCATGAMTTTESTRTAPAALANDGKRSHRAEDGGGKATAARKKTGFRTRLMRDKSLVLMTLPAIALLLVFSYVPMLGNIVAFQDYSPFVGIQDSPIVGLDNFGRVLGDPGFWLAVTNTLVITAFQLVFFFPIPIVLALLLNSMLSPALRSTIQAIVYLPHFFSWVLVVSVFQQVFGGAGLLSQSLRAQGWQAMDIMTNPDTFLFLITSQAIWKDAGWGIIVFLAALSAIDQEQYEAAAVDGASRWRRTWHVTLPGLRGVVVLLLILRLGDALSVGFEQLILQRDAVGAQASEVLDTFVYYTGIQNGDWSYAAAAGLIKGVVSLALILGANKLAHIFGESGVYSKSPGPT0017250_292DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017250-lplB-K17319NANA
D1-29_042641671hypothetical proteinATGCTTGGAAAAATCACCTCACCGGAACCCAGAGCCTCGCTTTCAACGTTCAAGAGCGCAGGGTTAGGACGCCGGTCCTTTTTGGGAATCGTTGGCGGCGCGGTAGCCGCGGCAGCCCTCAGCTCCTGCAGCAGCGGAGGGGCGGCACCCCAGGCCACCAACTCTGCTGGCCTCTCAGACGCCGCGGCCAAGCTGGTGCCGGATTACATTCCGCTGGACATCGTCAAGCCGGACATCCCAGGGGTAAACGGCTCCGCCCCGGGCTTCACCAGGATTCCCGAGTCACTCGTGAAATCGGTCCAGGGTGTGCCCGGGAAGGGTGGCAGCTACACCGTCATGAGTCCCGCCTGGTGGGCGGTGCCCCCGGCTGATAACAGCTACTACCAGGCAGTCAACGAGCGGCTGGGCACCAAGCTGCATTTCCAGGTCAGTGACGGCAACACCTACGCGGACAAGATCCAGACCGTGCTCGCCTCACCGAAGGACGTCCCGGACTGGGTAGTCATTCCTTCCTGGAACCTTCCTCCTCGTTTCGGCCAGGCTGCCAAGGGACTGTTCACCGACCTTTCCGAGTACCTTGCCGGCGACAAGGTCAAGAAATACCCCAACCTCGCCAACCTCCCCACCGCCTCCTGGAAGTACAGCTGCTTTGAAGGCGGACTTTATGGACTGCCGTACCCGGCCGCGCTTATCACGGACGCCTTCTTCTACCGCAAGGACCTCTTCGACGAACTCGGCGTGGAACCGCCCAAGTCCGCGGATGACTACATTTCCGTGGCTAAGGAACTGACCGATCCGGCCAAGAACCGCTGGGGCTCCGACGACGTGTGGAACGGCGCCCAGATCATGCACGGTGTGGTGCCCAAATGGAAGCTGGTGGATGGCAAGCTCCAGAACAAGTTCGAGACCGACGAATACCGGGCCGCCCTGGAATGGGCGGCCAAGCTCTTCGCCTCGGGAGCGGTCCACCCCGATGCCGTGGCCGGCAACTCCCAGCAGGCCAAGCAGCGGTTCGAATCCGGCGCCGTCCTGATGACCAACGACGGCCTGGGCGGATGGCATGAAGCCCTGGGCCGGGTCCTGCCCAGCAATCCCAAGTTCCAAATGCAGCCGCTTGACTACTTTGCCCCCGACGGCGGCAAGCCCACACTGTTCCGCGGCTCACCGGCCGGCATCTTCAGCTTCATCAAAAAAACCGATGATCCGGCCAAGGTGGAAGAGCTGCTGGCCGTGGCCAACTTCGCGGCCGCACCCTTCGGCACGGAAGAAAACATGCTCATCAACAATGGCGTTGAGGGCGTCCACTACACCCGTGACGCGCAGAACATCCCCCAGGCCACCGAGAAGGGCAAGCAGGAAGTCACCAGTACCTACGCCTTCCTGGTCAACTCTGCAGTGGTCAACAACCATGTCCAGTACCCGGGCTATGTAAAGACCAAAACGGAGTGGGAGGCGCGGCAGGCCCCCAACGTGGTGGACGACGTCTTCTACGGCATGCAGATCCAGGAACCCAATAAGTTCGGTTCACTGGGGGCCCCTTTCGAGGACCTCGCCAAGGACATCCTCCGCGGACGGAAGAGCATTTCCGATCTTGACACCGCCATCGCTACCTGGAAGCGCAATGGCGGCGATGAACTGCGTGAGTTCTACGCAGGATTCCTGAACGCGTAGMLGKITSPEPRASLSTFKSAGLGRRSFLGIVGGAVAAAALSSCSSGGAAPQATNSAGLSDAAAKLVPDYIPLDIVKPDIPGVNGSAPGFTRIPESLVKSVQGVPGKGGSYTVMSPAWWAVPPADNSYYQAVNERLGTKLHFQVSDGNTYADKIQTVLASPKDVPDWVVIPSWNLPPRFGQAAKGLFTDLSEYLAGDKVKKYPNLANLPTASWKYSCFEGGLYGLPYPAALITDAFFYRKDLFDELGVEPPKSADDYISVAKELTDPAKNRWGSDDVWNGAQIMHGVVPKWKLVDGKLQNKFETDEYRAALEWAAKLFASGAVHPDAVAGNSQQAKQRFESGAVLMTNDGLGGWHEALGRVLPSNPKFQMQPLDYFAPDGGKPTLFRGSPAGIFSFIKKTDDPAKVEELLAVANFAAAPFGTEENMLINNGVEGVHYTRDAQNIPQATEKGKQEVTSTYAFLVNSAVVNNHVQYPGYVKTKTEWEARQAPNVVDDVFYGMQIQEPNKFGSLGAPFEDLAKDILRGRKSISDLDTAIATWKRNGGDELREFYAGFLNAPGPT0017245_938DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_ALDOURONATE_TRANSPORT,PGPT0017245-lplA-K17318NANA
D1-29_042652847xyl3ACOG1472Xylan 1,4-beta-xylosidaseATGCCCTTGCCAACCACTGCAGCAGCCACCCACTCAGGCACAAAACCAGGCACAGAACCAGGCACAGACGCCGCGGCCCCCCGTGCCTCCGCAGTCCCGGCCATGGTGGCCAGGCTTACTCTGGAGCAGAAAATAGCGATGCTCCATCAGCATGCCCCGGCCGTGGAGGAACTGGGCCTGGCACGGTTCCACACCGGTGAGGAAGGTGCACACGGGGTGGCCTGGCGGGGTACGGCCACCGTCTTTCCGCAGCCGGTGGGACTTGCCGCCAGCTGGGACGAGGACCTGATCCGGAGGGTGGGCACCGCCGTCGGGCTGGAGGTCCGGGGCAAGAAGGCCCAGGATCCGGACGTCAGCGCCAATGTCTGGGCGCCGGTGGTAAACCCGCTGCGCCATCCGCTTTGGGGCCGCAATGAGGAGGGCTTCTCCGAGGACCCGCACCTCACGGCGACGCTCGCGAGTGCCTACTGCGCCGGGCTGAAAGGAAACCATGACAGGTTTTGGCTGACCGTACCCACCCTGAAGCATTTCCTGGCCTACAACAACGAGGCTGACCGCAACGTTTCCAGCAGCCAGCTTCGGGCCCGCGTGCTGCACGAATACGAGCTCCCGGCCTACCGGGGACCCATCGAGGACGGCGTGGCCGGGGCCGTTATGCTCTCCTACAACCTGGTCAATGGCCGGCCGGCCCATGTCTCGGACCTGGTGGCGTCCCAGCTGCGCACGTGGCACGGCGGGGAGGACATCGCGATCGTCACCGATGCCGGCGCCCCGTCCGCCCTTTATACCGCGGAAAAGTATTTCGACGACGGCCCCGCCGCCTACGCCGCTGCGCTCCTTGCCGGCGTGGACAGCTTCACCGAAGACAGCGACAACCCGGAACCGTCCCTGCAGCATCTTCGGGCTGCGCTGGAGCGCGGGCTGATTGGCGAAGAGGATATTGACCGTGCGGTGGGCCGCCTCCTCGCCCTGCGGGAGCGCACCGGCGAGTTCGAGCCCGACGGCGGCCCTTACGGGGTGTTGGGGGCGGAACTGATCGGGGATCCCGGGCATGTGGAACTGGCCAGGGAAGCGGCGCGGAAGTCACTGGTCCTGCTGCGCAATGCCGCTTCCGGCCTGGATGTCCCGGTCCTTCCGTTGGGAGCGGAACCAGGGAGGATCGCGGTGATCGGCGCCCTGGGTTCAAGGGTTTTGAGCGACTGGTACAGCGGCACGCTCCAAAACGCCGTGAGCATCGCCGACGGACTTTCGGGCCGGTACGGGGACGTGGTGGCTGAGGCCGGCATGGATCAGGTGACGCTGCGCTGCGTCCGCACCAACACCTACCTGGGAAGCGAGGATCCGGGAACCTCCCTGGCGGCCGGCACAGCAGCCCCCGGGCTCGCGGAGACGTTCCTGCTGAAGGACTGGGGTGGCGGCGAGTCCACCCTGCAGTCCGCCGCCACCGGCAAATTCGTGGCGGCCAACGGCTACTACCTCACGGCGTCTGCGGACCGCGTGGGCGGCTGGGTGGTCCAGGAAACCTTCCGGCTTCACCACGAAGTGGACGGCACGGTGGCCGTGCAGCACATCGGTTCGGGAAAATGGCTCCGGATTGAGGCCCACACCGGCAGCGCGGCGCTGTCGGCAAGCACCAAGGAAACCGCCGACAGGTTTGTGCTCAGGACCGTCGGCTCCGGCCAGCAGGCTGCACGCGAGGCAGCCGCCGCAGCAGATGTCGCCGTCGTGGTGGTGGGAAATGATCCCCACCTGGGCGGCAGGGAAACCATCGACAGGTCCACACTGGCACTTCCCCAGCAGGAGCAGGAACTCATCAGGCTGGTCCGTGAGGCGAATCCCCGCACGGTGGTGGTGATCGCCTCCTCCTACCCTTACTCCCTGGAGGCGCTGGCGGACATTCCGGCCATTGTGTGGACGTCCCATGCAGGCCAGGAACTGGGCAACGGCCTGGCTGACGTCCTCAGCGGAGACTCGGAGCCAACCGGACGCCTGGCCCAAACCTGGTGGGCGCGGGACGGGGATCTTCCGGACATCCTGGACTACGATCTCATCGCATCGAAGGGCACCTACCTCTACAGCGACGCCGAACCGCTGTTCCCGCTGGGGCACGGCCTGGGCTACAGCACCGTGAACTACGAATCTGTGGTCCTGGCCCAAGGTTCACTGGAGGTGGCGGTCCGCAACGTGGGCGCGCGGACGGCCCACGAACTGGTTCAGGTCTACGCTGCATGCTCCGGCCACCCCTTTGAGTTCCCGCGGCGCCTTTTGGTGGCGCACCGGCGCGTGGAACTAGCCCCGGGAGAGCTCCGCACGGTGAACATCGAGGTGCCCCTGGACCGCCTGGCCACGTACAGCGTGACTGAAAACCGGATGGTGGTGGAACCCGGAACGTATGAGCTGATGGTTGGGCCCTCGGCCGGCAGCCTGCTGCTGGGAGCGGAACTGACGCTCAGCGGTCAAGGCAGCGGCCCGCGCCGCCGCGGGGAATGGATCCGGGCGGAGCACTTTGATGATCACACCAACCTCGCGCTGGTGCCGGAAACGCCGCTGGCAGGCACCGCCGTCGCACCCGTTTCCGGGCAGGAAAGGGCGACGGCGGTCTACCGGGGCTGGGAGGGCGGCGCTCCCCAGTCGGTGGTCTTGCGGCTGTCGGCAGCCGGTGCCGGCAGGGTGGCCGTTCAGCTGGCTGCCCGCGGCGGAACCTGGATGGACGTCGGCTCTGCAGACGTAAGCAACGGGTTCAGCGGCGAGCGGCGCCTGGGGCTTTCTGCTGCCGCCGGCACCTTTACGGCGCTTCGGCTGGTACTGGAAGGATCCATCACGGTGACCGAACTGCAGGTGGGCTGAMPLPTTAAATHSGTKPGTEPGTDAAAPRASAVPAMVARLTLEQKIAMLHQHAPAVEELGLARFHTGEEGAHGVAWRGTATVFPQPVGLAASWDEDLIRRVGTAVGLEVRGKKAQDPDVSANVWAPVVNPLRHPLWGRNEEGFSEDPHLTATLASAYCAGLKGNHDRFWLTVPTLKHFLAYNNEADRNVSSSQLRARVLHEYELPAYRGPIEDGVAGAVMLSYNLVNGRPAHVSDLVASQLRTWHGGEDIAIVTDAGAPSALYTAEKYFDDGPAAYAAALLAGVDSFTEDSDNPEPSLQHLRAALERGLIGEEDIDRAVGRLLALRERTGEFEPDGGPYGVLGAELIGDPGHVELAREAARKSLVLLRNAASGLDVPVLPLGAEPGRIAVIGALGSRVLSDWYSGTLQNAVSIADGLSGRYGDVVAEAGMDQVTLRCVRTNTYLGSEDPGTSLAAGTAAPGLAETFLLKDWGGGESTLQSAATGKFVAANGYYLTASADRVGGWVVQETFRLHHEVDGTVAVQHIGSGKWLRIEAHTGSAALSASTKETADRFVLRTVGSGQQAAREAAAAADVAVVVVGNDPHLGGRETIDRSTLALPQQEQELIRLVREANPRTVVVIASSYPYSLEALADIPAIVWTSHAGQELGNGLADVLSGDSEPTGRLAQTWWARDGDLPDILDYDLIASKGTYLYSDAEPLFPLGHGLGYSTVNYESVVLAQGSLEVAVRNVGARTAHELVQVYAACSGHPFEFPRRLLVAHRRVELAPGELRTVNIEVPLDRLATYSVTENRMVVEPGTYELMVGPSAGSLLLGAELTLSGQGSGPRRRGEWIRAEHFDDHTNLALVPETPLAGTAVAPVSGQERATAVYRGWEGGAPQSVVLRLSAAGAGRVAVQLAARGGTWMDVGSADVSNGFSGERRLGLSAAAGTFTALRLVLEGSITVTELQVGPGPT0019110_485DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
D1-29_04266933psdhtPhenylserine dehydrataseTTGATCACCCGCAACGACGTGGACCAGGCGGCAGCCAGAATCGCTGGACTGACCCGGCAAACGCCCATCCTGAAAGCCGATTCAGGCACCTATCCCGGACCAGTCTGGTTCAAATGTGAATTTATGCAGCATACCGGGACGTTCAAGGCACGTGGGGCGCTCAACCGCATCCTGGCCACCAAGGAGCGCGGGGAGCTCAAGCCCGATGTGGGCGTGGTGGTGGCTTCCGGCGGAAACGCCGGCCTCGCCAACGCCTATGCCGCTGCCCAGTTGGGAGTCCCCGCCACGGTCTTCGTGCCTGAAACCGCCCCTGCCGTCAAAGTGCGGAAACTCGAAGCAACCGGTGCCACTGTCATCCAGGCCGGTGCCGAGTACGCCGTGGCCTATGAAGCCGCTGTCACGCATGCCGCAGAAACTGGAGCGGTGTACTGCCATGCCTACGACCAGCCGGAGATCGTTGCCGGCGCGGGGACAGTGGGATCGGAACTCCTTGAACAGCTCGACGGCGTGGACACAGTCCTGGTGGCGGTGGGCGGCGGCGGTTTGATGGCCGGGATAGCTGCCGCCGTCGAAGGCCGCGCCAGGGTGGTTGCAGTGGAACCGGAAACCGCGCCCACCCTGCACTCCGCGCTCGCCGCCGGGGCGCCGGTGGACGTTGCGGTGTCCGGCATCGCCGCCGACTCCCTGGGCGCGCGGCGAATTGGCGAGATCGCTTTTACGGTGGCGGCGCGCACCGTCGTCGAAAGCGTTTTGGTGTCCGACGCCGATATCATCGCCGCCCGCCGGGAGCTGTGGAGCCAGTACCGCCTGGCAGTGGAGCACGGTGCTGCCGCGGCTTTTGCCGCCCTGCACTCGGGCGCCTACGTGCCCGGCTCAAGAGAGCGGGTGGTAGTGGTCCTCTGCGGGGCCAACACCGATCCCGCCACGCTGTGAMITRNDVDQAAARIAGLTRQTPILKADSGTYPGPVWFKCEFMQHTGTFKARGALNRILATKERGELKPDVGVVVASGGNAGLANAYAAAQLGVPATVFVPETAPAVKVRKLEATGATVIQAGAEYAVAYEAAVTHAAETGAVYCHAYDQPEIVAGAGTVGSELLEQLDGVDTVLVAVGGGGLMAGIAAAVEGRARVVAVEPETAPTLHSALAAGAPVDVAVSGIAADSLGARRIGEIAFTVAARTVVESVLVSDADIIAARRELWSQYRLAVEHGAAAAFAALHSGAYVPGSRERVVVVLCGANTDPATLPGPT0001960_6928DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-29_04267264hypothetical proteinATGACCACTTCAAGCGAAGAGCCGCAGAACTCCGCAGACCTCCGCGGCCCCGGCGATCCGGACCACGCAGCGGAGCCGAAGGCCGAACAGCAGCCCAAGCCGGACGCGGGCACGGCAACAAACATCCGCGAGGAGCAGCAGACGCAGGCGCCAGGGACCGTGCCGGCGTCGTACGTGGGCAGCGGCGGCCAGGCTGGCCAAACTGCAGAACCAAAACCGGAAGCGGCTGCGGACGAATCGGGAATGTGGGACGACCAGGCCTAAMTTSSEEPQNSADLRGPGDPDHAAEPKAEQQPKPDAGTATNIREEQQTQAPGTVPASYVGSGGQAGQTAEPKPEAAADESGMWDDQANANANANANA
D1-29_04268597tmk_2Thymidylate kinaseATGCTTATTGTTCTGACGGGAATCGACGGTTCGGGAAAATCAACGGCCGCCGGCGCCCTGGTGTCCGCTGCCCGTGCCCAGGGCAGGAATGCACGGCTGCTGAGCAACCACGCCGGGCGGCGGAGCATGTCCGTGCTCAGCGCCAAGCTGGGCCTCCGGCTTCCCACACGGCTGGCCGACGCCGTCGAAACGACCTTCCGCGTAGTGAATGTGCTGGTCTCCCATGCCAGGGCCAGCAGGTTTGACGGACTGGTGGTGATGGACCGCCACCTGTACTGCCAGCTGGCACTGAGGGAAACCAAGGACCTGCGGCGTGGCCGCCTGCTCCCCTGGCTGCTGTCTGCCCTCCCAGCACCCGATGCGGTGATCCACCTGGACATCGAACCCGAACTGGCGCACCAGCGGATCGTGGCCCGCGGCACCGATGTGGAGTCGCTGGCAGATTTGGTGGCCTTCCGGGACGCCTACCGCTCGCTGCCCGAATATGCGGACTTCCTGGAAGTTAACGCCGGCGTCCCGCCAGCCGAGCTGGTTGCCCGGCTGGCGGGTATCGCCAATGGCCTCTGCGCCCTTAGTGCCTCACCTCAGCCCCGCTAGMLIVLTGIDGSGKSTAAGALVSAARAQGRNARLLSNHAGRRSMSVLSAKLGLRLPTRLADAVETTFRVVNVLVSHARASRFDGLVVMDRHLYCQLALRETKDLRRGRLLPWLLSALPAPDAVIHLDIEPELAHQRIVARGTDVESLADLVAFRDAYRSLPEYADFLEVNAGVPPAELVARLAGIANGLCALSASPQPRPGPT0021395_5378DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943NANA
D1-29_042691476dctA_2COG1301Aerobic C4-dicarboxylate transport proteinATGATTCCCGTCCCCGCGCCAAGCAAAGTCCCACTGCCGATTGACACAGGTACAGCCGGCAGGAAACCGCTGTACAAGTCCCTTTTCGCGCAGATTCTGGTGGCCGTTGTTGCCGGCATCCTGATCGGACATTTCTGGCCGGACCTCGGGTCCGGCCTGCGGCCGCTGGGAGACGGGTTCATCCAGCTGATCAAGATGATCATCGCGCCGCTGATCTTCCTGGTGATCGTGACAGGCATAGCGGCCGTGGGAGACGTAAAGGCCGTGGGGCGCGTAGGCGTGAAGGCGCTCATCTACTTCACGGCGGCCACCCTGTTCGCGCTGGTGTTCGGACTTGTGGTGGGCAACATCGTGCAGCCGGGCGCGGGCCTGAACATCGATCCGGCGTCGCTCTCCCAGGACGCCCTCAATGCCAAGACCGCCACCGCGCCGCCCAAGGACGCCGGCCAGTTCCTGCTGGGCATCATCCCCACCAGTGTGGTGGGAGCGTTCGCCTCCAACACCCTGCTGCAGGTGCTTTGCTTCTCCGTTTTCTTCGGTGCCGCAATCGTTGTGATGGGCCGCGAGCGCTGCCTGCCGGTGGTCATCCTCCTGGAAACCGTCCTTGAACTGTTTTTCAAGATCATGACCTGGGTCATGCGGGTTGCCCCCATCGGCGCATTCGGGGCGATGGCCTTCATCATCGGCCAGTACGGCCTGGGCTCGCTCGGCACCTACGCACTCCTGATCGCGGCCTGCTACGGTGCTGCGATCGTGTTCATTGGGCTGCTCTTCATTGTGGCGTGGGTGTATCCGCGGGTGCCGCTGTGGCAGTTCATCAAGTACTCCCGCGAAGAATTCCTGCTGGCCCTGGGGACCGCTTCAACGGAGTCAGTCCTGCCACGCATTATGACCAAACTGACCAACGCGGGCTGCTCCCGGGCCACCACCGGGCTGGTGGTCCCCACCGGATACTCGTTCAACCTGGACGGCGCCGCCCTCTACCTGTCCATTTCGCTGCTCTTCCTGGCCCAGGCCTTTGGGCACCAGCTGGACCTCGGCCAGCAGCTGGTGGCTTTGGGCATCCTGATGCTGACGTCCAAGGGCATGGCAGGGGTCCCCGGCTCTGCCTTCCTGGCACTTTCCGCCACCGCCGGGGCATTGGGCATTTTCCCGGTGGCCGGTGTTGCCCTGCTGCTCGGCGCCGACCGCCTCATGGACTCCATGCGCGTCTCCGTCAACCTGCTGGGCAACTGCGTGGCCACGTTCGTCGTGGCCAAATGGGAGGGGCAGTTCGACCGCGAGGCCATGCTCCGGGCCTTCCGGGGAGAGCTCCCGGCGGAGGAACTGGCGGCCGACGCCGCTGACCCGGCACCCGCCGTCGGCTCTTCAGTAATGCCCGATGCAGCACCGCACGCGGTAACGGAAAATGCGGAAACGCACGACGGCGGGCCCTCCGCAGCGCCCGACAGTGCTGTTCCCGTTCCGGCGCGCTAGMIPVPAPSKVPLPIDTGTAGRKPLYKSLFAQILVAVVAGILIGHFWPDLGSGLRPLGDGFIQLIKMIIAPLIFLVIVTGIAAVGDVKAVGRVGVKALIYFTAATLFALVFGLVVGNIVQPGAGLNIDPASLSQDALNAKTATAPPKDAGQFLLGIIPTSVVGAFASNTLLQVLCFSVFFGAAIVVMGRERCLPVVILLETVLELFFKIMTWVMRVAPIGAFGAMAFIIGQYGLGSLGTYALLIAACYGAAIVFIGLLFIVAWVYPRVPLWQFIKYSREEFLLALGTASTESVLPRIMTKLTNAGCSRATTGLVVPTGYSFNLDGAALYLSISLLFLAQAFGHQLDLGQQLVALGILMLTSKGMAGVPGSAFLALSATAGALGIFPVAGVALLLGADRLMDSMRVSVNLLGNCVATFVVAKWEGQFDREAMLRAFRGELPAEELAADAADPAPAVGSSVMPDAAPHAVTENAETHDGGPSAAPDSAVPVPARPGPT0001450_242DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-29_04270399hypothetical proteinATGGCCGCAAATTTTGTTAGAGCTTTGGCAGTGAAATCCTTTGATGTCCCGGACAAGAAGCGGTGTCCAGACAAGGCTGAGTTCGATCTGGTCACCGTGGACGACTATTCGGTGGCCCGGCTGATCCTGGCTCCGGGCTGGCGCTGGTCCACGTCCGTCAAACCCACCGAGATGACTGAGTTCTGCGAGCATAACCACCTCGGATACTGCGTCTCGGGCTCACTGGAAATTGAAACGTCAGACGGCGTCCGCTCCACCATTCATGCGAACGATACGTATGCCCTTCCACCGGGCCACGACGAATGGGTTGTGGGCAGCGAACCTTTTGTCGCCGTCGAATTCCTGGGTGCCGCCTCATTCGGCAGGCCCCGGAGCCGCGGTCTGCACGCCCTGACCTAAMAANFVRALAVKSFDVPDKKRCPDKAEFDLVTVDDYSVARLILAPGWRWSTSVKPTEMTEFCEHNHLGYCVSGSLEIETSDGVRSTIHANDTYALPPGHDEWVVGSEPFVAVEFLGAASFGRPRSRGLHALTNANANANANA
D1-29_04271921rbn_2Ribonuclease BNATGACCACTAGCCATCAACCGGAATCGCATGAACCGGAATCGCTCCTCGAGGAATACCTCCAGGGCGGGCAGCTCGCCCGCGCCTGGCTTACCGAACCCCCGTCAGAAGACAAGGGACTGGAGCGGGTACGGCTACGCTGCTGGCTGAGCGGGACGGGTACTCCGGCGGTGGTGGATGGCCGCTACGGCCCCTCCACCGTGCTGGCCATCGGCGACGACGTCGTCATGGTGGATACCGGCAACGGCTGCGTCTACCAGCTCTTCCACCTCGGCTGGCGTCCCGAGGATGTCACCCACGTGCTCATCACCCATAACCACCTGGACCACAATGCTGATCTGGGCTTCCTCATCCTGGCGCCATGGATTCACGGGACCCAAAAGAAGCCGCCCACTGTCATCGGTCCTCCCGGCACCCTCGAATACGTCAACCGGGTCTTTGCGGCCCATGACTACGACATCCGGGCCAGGCTCCGGCATGGCTATGACCCTGCCCTCCTGAGCGTTCCTGTGGTGGAGGTCAAAGACGGGCTCATACTGAACTTTTCCGGATGGCAGGTGTCTGCGGTGGAGGTGGAGCATTCTCCTGTCGAGGATGCGTTCGGATACGTATTCAGGACCGCCGCCCACTCTGTAGCCATATCCGGTGACACAAGGCCCTCCGACAAGCTGATTGCAGCGGCCCAGGGTGCAGACGTGCTCATTCATGAAGCACTCTTCCCGGGGTACGGCATACCGGATTACCACACCTCGGTCCATGACGTGGGCCGGGTGGCAACAGCCGCCAATGTCTCCCGGCTGGTCCTGACCCACCTCATCCCTGGCCATTTGCCGGAAGAAAAATGGAAGGAAATTGTCCAGCAGAGTTTCCACGGCGACCTCACTGTGGGAACCGATCTGCTGCAGGTCTGCGACCTGTCCTAGMTTSHQPESHEPESLLEEYLQGGQLARAWLTEPPSEDKGLERVRLRCWLSGTGTPAVVDGRYGPSTVLAIGDDVVMVDTGNGCVYQLFHLGWRPEDVTHVLITHNHLDHNADLGFLILAPWIHGTQKKPPTVIGPPGTLEYVNRVFAAHDYDIRARLRHGYDPALLSVPVVEVKDGLILNFSGWQVSAVEVEHSPVEDAFGYVFRTAAHSVAISGDTRPSDKLIAAAQGADVLIHEALFPGYGIPDYHTSVHDVGRVATAANVSRLVLTHLIPGHLPEEKWKEIVQQSFHGDLTVGTDLLQVCDLSNANANANANA
D1-29_042721074iolG_15Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGGCAGCCAACGAACAACCGGTACGCGTCGCCCTGATAGGGGCGGGCGACATTGCTGAAGTGGCGCATCTGCCCGCTTGGGCGGTCGCTGCGGGCGCCCGGGTTGAGGTGCTGGTGGACCCCAACCAGGAACGGGCCCAACAGCTCGCGGACAAGTTCGGGATCCCCAGATGCGTCACGGATCTGGACGAACTCCTCAGATCGGGCGATGTTGACGCAGTGGATATCTGCACCCCGCCGCACCTGCACGCACCCATGGTTCTCCAGGCGCTGAATGCCGGCGTCCACGTTCTGGTTGAGAAGCCGATGGCAACAAACCTGCAGGACGCAGAAGCCATAGCCCGGGCGGCAGAGGCCAGCGGCAAAACAGTCATGGTCGCAGAGAACTGGCTCTTTTCCAGCGCGCGCCGGGAGGCTGAGGAGCTCATTCGCAAGCACGCCCTCGGTCAGCCGTTCCTGATCAAGGCCAGGCACGAAAGCTCACTCTACGTCTCATCAACAGGCGGTGCTCCGGCTTGGACGTTTTCACCGGATACTGCAGGAGGCGGGTATCTTATGCAGGCCGGAATCCACACCGTGGCACTGACCGAGGCCATGGTGGGACCCTTTGAGGAAGTTTCTGCCTTTACCAGTGCGGAAGCCGGTGCGCCCGAGGGGTCACTGGAAACTACTGCGGTGGTCACGTCGCGGTTCACCTCAGGGGCCCTCGGATCATTCGTTTTCACTGCACGTTCCAGGCATCTTGGACCGCGGCGGCTGGGACTCGAGCTGTTCTTCGACAGGGGTTCACTGGAACTGGATGTGTGGACCGGCCGGATCATTTACACGGTCGACGGGCGGCAGACCACAGTCCAGGACGAGAACAGTTCCATGGGGTTTGCCGAGGAGGTCAGCCACTTTGTCCATTGCATCAGAACCGGAGCCGAGCCGGAGGCCACTCCCACCCGGCTGCTCAGCAGCCTGAAGACCATTCTTGCCGCTTACGAGTCCGCCAGGTCCGGCTGCTCCAAACGGCCGTCGGACATGACCTCCATGCAGGTCGGGGCGAAGGGCGGGCCCGAAAATGACCACTAGMAANEQPVRVALIGAGDIAEVAHLPAWAVAAGARVEVLVDPNQERAQQLADKFGIPRCVTDLDELLRSGDVDAVDICTPPHLHAPMVLQALNAGVHVLVEKPMATNLQDAEAIARAAEASGKTVMVAENWLFSSARREAEELIRKHALGQPFLIKARHESSLYVSSTGGAPAWTFSPDTAGGGYLMQAGIHTVALTEAMVGPFEEVSAFTSAEAGAPEGSLETTAVVTSRFTSGALGSFVFTARSRHLGPRRLGLELFFDRGSLELDVWTGRIIYTVDGRQTTVQDENSSMGFAEEVSHFVHCIRTGAEPEATPTRLLSSLKTILAAYESARSGCSKRPSDMTSMQVGAKGGPENDHNANANANANA
D1-29_042731062hypothetical proteinGTGCAGCTTGGAATGATCGGTTCGGATCTGCTCCACGCGCTGGAGTACACATCCATCATCAACGCGGGCCCTGGGCCCGCCTTTCCCAAGGCCAAGGTGGACCATTCCGCCGCGGTCGGAGGCATGCCCTCGCCTCAGTTCCGGTGTCCGGGGGCCTGGGATCCTGTCCTGCCCTCAGCGGACGACATCCTGGCAGACAGCGCTTTCCGGGATGTCAGGGTCACCTCGTGGTGGGGCCAGGACCAAACATTGGTCAGACAATGGGCCGCGGAAACGGGCGTAGAGCACGTCGCAGCGCGGCCGGAGGAGATGCTCGGCCGGGTTGACGGGGTCCTGATCTGCACCTGGGATGGCAAAGACCATGCAGCACTGGCCCGCCCCTTTGTGGAGGCCGGGTTGCCCGTGTTCGTGGACAAGCCCTTTACGGAAAGTACCAGGGACGCCCAAGAACTCCTCAGCCTGGCCGAGGCGAGTGGCTCTGTCCTCTTTTCATCATCGCCGTGGAAATGGTCGCCCGCCGTCCTCGAGCTGATCAACCAGGCCCCCGATCTGGGGGATATCAAGACCTGTGTTGCCAGCGGTCCGTACCTGGACAACCCCTATTTTTATACGACCCACATGGTGGAGACCGGGCAGGCAATCCTGGGCACCGGCGCCATATCGGTCCAGGCGCAACACTCATCGGCGGCACGCATCATCGTCGTGACCTACCAGGACGGGCGAATGCTCGTGGTGAATGCGCTGCAAGGAGTAGCAGCCACGCGACACGTGGTGCTCTACGGCTCGAAGGGGTACCTCGAAGCCGACATAGGTGAGGGACAAAAAGAAGCAGGAATGGTGGAGACACTCGCCAGGTTCCTGCGTGGAGCCGCCGAAGGGCGGCCCCCTCTCCCCTATGCCTACCCCTTTGAAGCCACCGCAGTAATGGAGGCAGCACAGGCCTCCATCGATGCCGGCGGAACGCCGGTGCGCCTGGACAGCCTCCTGGAAGAACAGGCAGGCGGCCACGAATTCACGCCAGGCGCGGTCACACCACCCCTCAAGAAAGAAGGAGCATCGTGAMQLGMIGSDLLHALEYTSIINAGPGPAFPKAKVDHSAAVGGMPSPQFRCPGAWDPVLPSADDILADSAFRDVRVTSWWGQDQTLVRQWAAETGVEHVAARPEEMLGRVDGVLICTWDGKDHAALARPFVEAGLPVFVDKPFTESTRDAQELLSLAEASGSVLFSSSPWKWSPAVLELINQAPDLGDIKTCVASGPYLDNPYFYTTHMVETGQAILGTGAISVQAQHSSAARIIVVTYQDGRMLVVNALQGVAATRHVVLYGSKGYLEADIGEGQKEAGMVETLARFLRGAAEGRPPLPYAYPFEATAVMEAAQASIDAGGTPVRLDSLLEEQAGGHEFTPGAVTPPLKKEGASNANANANANA
D1-29_042741005hypothetical proteinGTGAAAGTTCTCAGTTCCGGACGTTCCGGACTCATTGGACTGCTGTGTCTCGCATTAGCGTTCGTCACCACTGGCTGCGCAGGAGACACGCCCCAGCAAGGCCAGGACGCCAAGATCCCCATGACCTTCACGGGGGCCGGAAACCTGTCCTGGCTCAACGTCTTCGTGGCCGAGGATGAGGGCATCTTCGACAAGCACGGGATCGAATCAACCGTGAGGGTCTTCGACGTCGGATTCCTGGGAACCGAAGCGGTCCTCGCCGGCGAAGCACAAACCGCAGGCTCCGTGGAGTTCCCCCTCCTTGGCCTCCTTGGCCAGGGTGCCGGGCTGGTTGTGCCAGCAGTGGTGGCCACCGCTGAGGACCAGCGCATTGTGGTCAAGGATTCCATCCAGAAGCCGGAAGACCTGCGTGGCAAGAAGATTGGCCTGATCGGCGGTTCGGCCTTCGAATACTCCTTCCAGGAGTATCTGAACCATTTCAACATCCCCAAGGAAGAAGTGGAGTTCGTGAATGTTGACGCGGCTGAGCAGGTGGCCGTGATGGCCCGTGGCGACATCGACGGTTTCCTGAATGTCGAGCCTGTTATCTCCCGTGCGTTGAACTCCCTGGAGAATGTCCATGTCCTTGAGCCCGGCACGGAAGAGGTCTACACCACGCGGATTTTGCTCCAGATGAACAAGGACTGGGTGAACCAAAACCCTGACGGCGTGAAGAAGGCACTGGCTGCCCTGATCGAAGCAAATGATTTCATCAAGGCAAACCGGGACAAGGCAGCCGAGATCGGCGCCAAGTGGACCAAGTCCGACAAGGCAACGGTCACTTCATTCCTGGAGGACGCAAAGTTCGACTACAACGTGCACTATGACGCCGAGACCCGCCAGAGCATGGAAAAGATCGCTAACTGGATGATGCAGAACGGCAAGCTGGAAAAGATGCCTGACCTGAACCAGGTCTTCGTGACGGATCATCTGAAGGAAGTTGCACCGGAGCAGGTGAAGGAATGAMKVLSSGRSGLIGLLCLALAFVTTGCAGDTPQQGQDAKIPMTFTGAGNLSWLNVFVAEDEGIFDKHGIESTVRVFDVGFLGTEAVLAGEAQTAGSVEFPLLGLLGQGAGLVVPAVVATAEDQRIVVKDSIQKPEDLRGKKIGLIGGSAFEYSFQEYLNHFNIPKEEVEFVNVDAAEQVAVMARGDIDGFLNVEPVISRALNSLENVHVLEPGTEEVYTTRILLQMNKDWVNQNPDGVKKALAALIEANDFIKANRDKAAEIGAKWTKSDKATVTSFLEDAKFDYNVHYDAETRQSMEKIANWMMQNGKLEKMPDLNQVFVTDHLKEVAPEQVKENANANANANA
D1-29_04275813nrtD_2COG1116Nitrate import ATP-binding protein NrtDATGAAGCGCGCAGAAAGCGGCACCAAGACCGCAACGGGAATTGAGCTGCAGAAGGTCACCAAGCACTTTCCCCCCACCCGGAGCACCGCCGGGTACACGGCGGTCCGGGATGTTGACCTCGCTGTACGCCCGGGAGAGTTTATGTGCATCCTGGGGCCCAGTGGATGCGGGAAGTCCACCCTGCTGCACATGATGGCCGGCTTCGAAAAGCCGAGTGCCGGGGCCATTCTGATCAATGGGCATCAGATCGTTCGGCCTGGTGCAGACAGGGGCGTGGTCTTCCAGAACGAGATCGCGCTGTTTCCCTGGCTGACCGTGGAACACAACGTCGAATACGGGCTCAAAGTCCGTGGCGTGGATAAGGACCGCCGGCTCGCTGCAGTCGATGATGCCCTGACCCTGGTGGGCCTGGACCAGCATCGCCACAAGCTGCCACGGGAACTGTCCGGCGGCATGAAGCAACGCGTCCAGATTGCCAGGGTCCTGGCCAATGACCCGGACGTCATGCTGATGGATGAGCCCTACGGAGCACTCGACGCCCAAACGCGGATGAGGCTCCAGGACGAGTTGGTTGACGTCTGGCAACGGAAGTCAAAGACGGTTGTCTTCGTCACGCACGACGTTTCAGAATCTGTCTACCTGGCAGACCGCGTGGCGGTGATGACTGCCGGGCCGGCTGCAGGGATTAAGAATGTCTTCGAGATTGATCTGCCGCGGGTGAGGAATCGGACTGATTCGGAATTCGTGGACCTGGCCTCGTCATTGACGGCGGAACTCCAGCACGGAAAGGAACACGACGATGGCAATAACTGAMKRAESGTKTATGIELQKVTKHFPPTRSTAGYTAVRDVDLAVRPGEFMCILGPSGCGKSTLLHMMAGFEKPSAGAILINGHQIVRPGADRGVVFQNEIALFPWLTVEHNVEYGLKVRGVDKDRRLAAVDDALTLVGLDQHRHKLPRELSGGMKQRVQIARVLANDPDVMLMDEPYGALDAQTRMRLQDELVDVWQRKSKTVVFVTHDVSESVYLADRVAVMTAGPAAGIKNVFEIDLPRVRNRTDSEFVDLASSLTAELQHGKEHDDGNNPGPT0001140_6256DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-29_04276807ssuC_6COG0600Putative aliphatic sulfonates transport permease protein SsuCATGGCAATAACTGACGTCCATGTGACACATCCGCCGGCGGAGGAAAGGGGAAAACTTGAAGCGCGCCCCTGGATTACCTATACCGCCGTGGTGGCAGCTGCCATCGTCCTGTGGCATCTGCTGTCGCTGGTGGTGAATCCGCTGTTTCTGCCCAGCCCGTTGCGGGTGGGAGCAGCCACGGTGGAACTGATCGGCTCCGGTGAAATGCTCCAGCATGTTTCTGCCTCGTACGGCCGGGTGCTGTCCGGGTGGGCTATCGGTGCCGCCCTGGCCATCCCGCTGGGACTGCTGGCAGGGCGGGTGACGTTGCTGCGCGTGGCGTTGGAACCCTTCCTGAACTTCTTCCGGTTTGTTCCACCCATCGCCTTTCTGAGCCTGGCTTTGATCTGGCTGGGCATCGGCGAGACCTCCAAGGTTGCACTCATTGTCTATGCCTCCTTCTTCATCGTCTTCCTCAGCGCAGTGGCGGGGGTGCAGGGTGTTGATAAGGAGAAGATCCATGCAGCGCAATGCCTCGGGGCCAGCAGGAGGCAAGTAATTACCACTGTGGTAATGCCGGCGGCAGTGCCGGAAATCGTCACCGGCCTCCGCACAGCCATGGGCATCGCGTTTATGACCGTGGTTGCAGCCGAACTTGTGGCAGCAGAAACCGGCATCGGGTTCTTGATCTACAACTCGCGGCTATTCGCCCGCACTGACATTGTGTTCGCCGGCATCCTGGCCCTGGGTGTCATGGGCCTGACGGCGGACATCCTGTTCAGGCAACTCACCCGCCCCATCCATTACCGGTACGCGCTTCGCTTCTGAMAITDVHVTHPPAEERGKLEARPWITYTAVVAAAIVLWHLLSLVVNPLFLPSPLRVGAATVELIGSGEMLQHVSASYGRVLSGWAIGAALAIPLGLLAGRVTLLRVALEPFLNFFRFVPPIAFLSLALIWLGIGETSKVALIVYASFFIVFLSAVAGVQGVDKEKIHAAQCLGASRRQVITTVVMPAAVPEIVTGLRTAMGIAFMTVVAAELVAAETGIGFLIYNSRLFARTDIVFAGILALGVMGLTADILFRQLTRPIHYRYALRFPGPT0001145_6906DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-29_04277840hypothetical proteinATGGGTGACGTTAGCAGGGCAGACCACGCGTTCGAACAGCTGGAGAGGCTCATTTTGGAGCTCAGCAGCCAGGACGTGGACCGGCTACCACCTGAGACAGAACTTAGTCAGAAATTTGGGGTTTCGAGGGCAACTGTTCGAGAGGCGCTTGGCCGGCTGGAAGCTGCCGGAAGAGTGCAACGCAGACGGGGAAGGGGTACCACTTTGACGCCGTTGGTTCGGCCAGCCATCCGGTACCCCGCGAATATCATCGGCTCCTTCGCGGACTTCCTCCGCGAGTCCGGTGTTGATCACAAGCTCCTTGAGTTTTCCGTGACTCATATGGAGCTTGAGGAGGACATTGTCAGGCTGTTCGATAAAGACAAGTTCGACAAGGACAATATGTCGAACTCGGGCTTCCGAAGCATCAGGTGCTATTCCCTGGGCGGAGTTCCGGCAGCACTCCTTTATCACCTGCTTCCGGCAACCATCCAGGGCAGCCCGCTTCACGTGGAGAAACTGCGCGGTGACATCGTTCCCTTCCTGGAGGCGGTACACCATGTGCAGATCGACAGTGTCACCAGCGCCATCACCGCGGAGGAAGCGTCCGAAGACGTGGCCAGGCAACTGGGCCTCAAAATCGGAAGCGCCGTGCTGGTGATGTACACCCGCGTTATCGACAGCGAAGGGGCCACCCTTGCTTTGGGCGCGCTCGCCTTCAACCCGGCGGTTGTCACGCTCGGGGTGGAGGCGCTGGAGCACGTCACGGCAGGCGGCCAGCTGCAGTTCCCCACGGGATGGCTGCAGCGCAATGTCACCGCCCGAAGTCCCGGAAGGAGGGAAACAAATGAAACATATTGAMGDVSRADHAFEQLERLILELSSQDVDRLPPETELSQKFGVSRATVREALGRLEAAGRVQRRRGRGTTLTPLVRPAIRYPANIIGSFADFLRESGVDHKLLEFSVTHMELEEDIVRLFDKDKFDKDNMSNSGFRSIRCYSLGGVPAALLYHLLPATIQGSPLHVEKLRGDIVPFLEAVHHVQIDSVTSAITAEEASEDVARQLGLKIGSAVLVMYTRVIDSEGATLALGALAFNPAVVTLGVEALEHVTAGGQLQFPTGWLQRNVTARSPGRRETNETYNANANANANA
D1-29_04278738hypothetical proteinATGAAACATATTGATGTCCACCAGCACCTTGGTCCCTGCAACGTCTTCGATTTGGAGGTTACGAAAAGCCAATTGGCGGCAGCCATAGACGACACACCGCTGGAGGGCTGCATCGTTCAGCCATTTCCGGGAGCTGCTGACGCTCCCCTGCAGCACGACGCGATCGCGGACCTGGCCAGGACGGCTCCGTTCAAGATCTGGGGCATCGCGAGCATCAATCCGCACATCCCCGACGACGCCTACCGCAACGAGATCCGCCGCTGCGTCCAAGACTTTGGTTTTGTCGGGGTTAAGCTCCACTCGATCGGGCACGCTGTCCATCCAGGCAGCAAGGACGGGCACAAGGTATTCACAGTCGCCCAGGAGTTGGGTATTCCGGTTATGGTGCACACGGGAGACGGAGTCCCGTTTGCGGACCCTACCGCCGTCCTCGGCCCGGCCCAGGAGTTCCCCGACGTTTCCATCCTCCTGGCCCACGCCGGCATGTCCACGTTCGCCGGTAACGCCATCGCAGTGGCCCGCGTCTGCCCCAACGTCTACCTCGAACCGTCCTGGTGCAAGACTCCCGAAATCGGCGCCATGATTGAGGCTCTGGGGGCGAACCGCGTGATGTTCGGCGCGGACCTGCCCTTCAACGTCAGGCCTGAAACCGAAAAGTTCCTTGCCCTTGGACTGTCCCCACGCGATCTGGAAGCAGTCATGTGGGGCACCGCCTCCGACTTTTTCAAACTGCAATGAMKHIDVHQHLGPCNVFDLEVTKSQLAAAIDDTPLEGCIVQPFPGAADAPLQHDAIADLARTAPFKIWGIASINPHIPDDAYRNEIRRCVQDFGFVGVKLHSIGHAVHPGSKDGHKVFTVAQELGIPVMVHTGDGVPFADPTAVLGPAQEFPDVSILLAHAGMSTFAGNAIAVARVCPNVYLEPSWCKTPEIGAMIEALGANRVMFGADLPFNVRPETEKFLALGLSPRDLEAVMWGTASDFFKLQNANANANANA
D1-29_04279327hypothetical proteinATGACGAACGTGATGGTGCGCGTCAGCGTCTCGATGGTTGTCGCGCCGGACAGAACCAGTGAAGTGATTCGCCGATTCGACGAGTCCTTCTTTCCCGCCATCTCTGCTCAGGACGGATTCCTCGAATGCGTCCTGCTCAGGGAGACAGACCGCGCTGACTCAGGCGATCTTCAACACCTGCGCATGGATATCAGCTTCAGCAGTGAGCGGCAGAGACTCAACTGGGTGGAGACAGAGTTGCACGACGACGTGTTTGCGCTCCTGGTCCAGGATACGAACAGCTACGAAGCCCTCCACCTCTCCGCCGTGTCAGCACAGGAGCAATAGMTNVMVRVSVSMVVAPDRTSEVIRRFDESFFPAISAQDGFLECVLLRETDRADSGDLQHLRMDISFSSERQRLNWVETELHDDVFALLVQDTNSYEALHLSAVSAQEQNANANANANA
D1-29_04280651hypothetical proteinATGATTACACCCTCTGATCTTGGGGTTATCGCGATCGTCCGCCTCCGCAACATTGCCGCCGGGGACGAAATCCTCGAGGCCCTAACCGGCGCAGGCATCCAAAGCATTGAGGTCACCCTCGGTACTCCCGGCTGCCTGGAGACAGTGGCTCGCTGGAGCCGGGCCCGGGCAGGCAATATCGGCGTTGGCAGCGTCCGGACGGAATCGGACGCCCGGCAGGCCATCGAAGCCGGTGCCCGTTTCCTTGTCACTCCGACGACGATGCCTCCAGTGCTGCAGGCAGCCCGGGAAGCACAAACCCCGGTGGTCTGCGGCGCCATGACCCCTACCGAAATAGACTCGGCCTGGCAGCAGGGCGCCACAGCGGTGAAGGTATTTCCCATTGATGCGCTGGGTGGTCCTGCCTACATTCGTGCCCTGCAGGGACCCATGCCGGACATCCCGCTGGTTCCCACTGGCGGCGTCGATGCCGAGCAGAGCAGGAACTACGCCCTCCTGGGCTGCGTCGGAGTCGGCGTCGGCAGCGCCATTGTGGAGGAAAAGACCGCCGCCACCGGTGATTGGGCCTCCCTGGCCCAGCGGGCCGCCGCATTCGTCCAGGCATGGCAGGCGCCTGGCCAGGCGGGACGTGGCGCAGGAACCGGAGCCTGAMITPSDLGVIAIVRLRNIAAGDEILEALTGAGIQSIEVTLGTPGCLETVARWSRARAGNIGVGSVRTESDARQAIEAGARFLVTPTTMPPVLQAAREAQTPVVCGAMTPTEIDSAWQQGATAVKVFPIDALGGPAYIRALQGPMPDIPLVPTGGVDAEQSRNYALLGCVGVGVGSAIVEEKTAATGDWASLAQRAAAFVQAWQAPGQAGRGAGTGAPGPT0002060_3693DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
D1-29_042811008kdgK_32-dehydro-3-deoxygluconokinaseGTGGCGCAGGAACCGGAGCCTGAGGTGGCGTGGTCACCGGCGATCCGGCCGCTGGGCGGGCTGCTCGACGTTGTGGGAGTGGGTGAAGCGATGATGCTCCTGCAGGCCCCGCCGCCGTCGAGCATTAAGGAAGCACCCCACCTCGAGGTGAACGTGGCGGGCGCAGAATTCAACGCCTGCGCGGCCGTGGCGCGACTGGGCGGACGAGCGGCGCTGCTCACCAGCCTTGGCGACGACGCGCCGGGGCAGCGGGTTTGGCAAACAATGATGGAGCTTGGCGTTGAAACCCAGTTTGTCCGCGTGGATCCCGCCCGCCCCACCGGGATCTTCCTCAGGGAGACACCCAGCGATGGAAGCCGCCGGGTGTTCTACTACCGCCGGGGATCGGCCGCCTCGGCGATGGACGGCTCAGACGCGGACCGGCTGGTGGCGGACCAGGCGCCCCGCGCTGTGCTGCTGTCAGGGCTGACGGCGGCGCTCGGTCCGGGGCTGCGGGACCTGATCAAGAGAATTTCCTCGGATGCTGCCAGCCGCGGCAGTGCGGTGGTGGTTGATGTCAATCTTCGTCCCACCCTGGGCAGCATGGCAGAGGTCATCGCCACCATCCGTGACGTGCTTCCCCTCGTTGACCTCCTGGTCCTGGGTGACGACGAATCGCCGGAACTGTTTGGAACAACGTCGCCTGATGCTGTTTTCTCCGCCGCCGCTGAGGCGGGCGTCAAGGAGACGGTCCTGAAGGGCGCTGAGCGTGGCTGCTGGTTCCAGGGCGACGACGGCAAGCCTGTCCACCAGCCGGCCCTCGCGTCCCAGGTAGTGGACCCCATCGGCGCCGGCGATGCATTCTTGGGCGGGTATCTGGGCGCCCGGCTCGCGGGGATCCCGCCGGCTGGGGCGGCAATACTTGGCTCACAGTTCGCGGCGGGTGTTATTGCCTCGGTGGGCGACACCAACGGGCTTCCGGGTCCTGGGGAAGCGAAGTCGCTGCTGGAAGCCGTTTCGAAGGGCTGAMAQEPEPEVAWSPAIRPLGGLLDVVGVGEAMMLLQAPPPSSIKEAPHLEVNVAGAEFNACAAVARLGGRAALLTSLGDDAPGQRVWQTMMELGVETQFVRVDPARPTGIFLRETPSDGSRRVFYYRRGSAASAMDGSDADRLVADQAPRAVLLSGLTAALGPGLRDLIKRISSDAASRGSAVVVDVNLRPTLGSMAEVIATIRDVLPLVDLLVLGDDESPELFGTTSPDAVFSAAAEAGVKETVLKGAERGCWFQGDDGKPVHQPALASQVVDPIGAGDAFLGGYLGARLAGIPPAGAAILGSQFAAGVIASVGDTNGLPGPGEAKSLLEAVSKGPGPT0018060_489DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-29_04282573COG5592DNA nickaseATGACGGAATCCAATGTTGGGCCGGGTTTGGATGTCGTCGACATCCTCACTGCCGACCACCAGGAAATGGTTGAGCTGTTCAGCCAAATTGGGGGCACCCCGGACGCCGAGCGGCGCAAGGACTTGGCAGACACCCTGATCGCTGAAGTGATGCGCCATGCGGTCGCAGAGGAGATGTACGTCTACCCAGCGATGGAGAAGCACATTCCGAACGGCGCTGAGGAGGTGGAGCACGATAAAAAGGAACATGACGAGATCGTTCAGCTGATGAAGCGGATAGAAGGCGTCGATCCTTCTGAGCCGACTTTCATGGAGCTGGTTGGGCAACTTGAGGCACAGTTGCGCCACCACGCGAACGATGAAGAATCCGAACAGTTCCCGAAACTCCGGACTCATATTCCTGCCGAGAAACTCGTCGAATTGGGCGAGAAGGTGCAGAAGGCCAAGAAACTGGCACCCACCAGGCCGCACCCCAGCGCACCCCACTCTGAGCTTTTCCACAAGACCGTCGGACCGGGTGTGGGCATGGTCGACCGGCTTTTGGACAAGCTCACAGGAAGACATACCGGCTAGMTESNVGPGLDVVDILTADHQEMVELFSQIGGTPDAERRKDLADTLIAEVMRHAVAEEMYVYPAMEKHIPNGAEEVEHDKKEHDEIVQLMKRIEGVDPSEPTFMELVGQLEAQLRHHANDEESEQFPKLRTHIPAEKLVELGEKVQKAKKLAPTRPHPSAPHSELFHKTVGPGVGMVDRLLDKLTGRHTGNANANANANA
D1-29_04283453hypothetical proteinATGCTCAGTCTGCAGCAAGCCGGCATTTCTGCGAAACAGGGCCTTCCTGCCGTGAACGTCTGGTGGGACGATGCCAGTATGAGCGAGAAACAGCACCAGAATCCGCCGGAACCCAGCCACCATGTGGAGGGCTACGCCGGTACACCAAACACCCAGCAAATGCGCACCGTGGGCCAGCGCCGACGGGACGCAGAAGAGAAACTGGAGCACCATTTAGAGGAAGCACGGCACAAGGATCCCCATCACCACCACGGCACTCCCAAGGAGGAAGGCACCAAGAAGGAAACCGAGAACACCAAACAGGAGCAGGCTGACGCCGTCGAAAGTCCCGACGTCGCCGCTATTCAAAACGACGAGGACCTAACGGCAGCGGACCGCGTTGATCTGATCGCCAACCAGGTTGTTCCGGAAGCCGGGGAGAGTGATAAACCCGACGCAGCGGGCAAACCCTGAMLSLQQAGISAKQGLPAVNVWWDDASMSEKQHQNPPEPSHHVEGYAGTPNTQQMRTVGQRRRDAEEKLEHHLEEARHKDPHHHHGTPKEEGTKKETENTKQEQADAVESPDVAAIQNDEDLTAADRVDLIANQVVPEAGESDKPDAAGKPNANANANANA
D1-29_042841311ftsH_3ATP-dependent zinc metalloprotease FtsHATGACCTGGGCAGCCAAAACCACGGCAGCCATGCAGCCCTGGCACATCCGCGATTTCCATCCTGACGATCTGGACCAGCTCATCGGCGTCTGGCAGGAGTCCAGGATCGAGGGGGTGCATCCGGTCTACACCCTGGCGGAGATTATCGATGCCTGCTCAAATGGGGTTGCTGCTGTAGCCGTGACCGAAGGGAGGGTTGTAGGGGCGGCAGCCTGCAAAATACAGGACGACCGGGCATGGATGGTCATGCTCGCCCAAGCCGCGGACTGGCGGCAGCAGGGACTGGGCAGTGCACTCCTCGCAGGAATTGAAGGCAGGCTTACCAGCCAGCGGATTCGAAGGATCTCGGCGCTTCTCCCGGCCTCGGAGACCCGGATCGAGGCCTTCCGGAACAGCGAATACAGGGTAGAGGAGGACCTGCATTATTTTGAGAGGACCATTCCCCTTCAGCCTCGGGAAATCAAACCCTTGGGTCAGCTGGGAGGACGACTCCTCCCGCACGGACTATGGAATGCCCTGGCCGGCATGCAGCGTGAGAAGGACCTGATCGAACAGCGGTTGATCCTGCCATTGGCGCGGACTGAACTCGCCAAGTCCCTGGGCGTCATTCCGCCGCGTTCCGTGGTCCTTTTCGGCCCTCCCGGCACAGGAAAAACGACATTTGCAAAGGCCGTCGCATCACGCCTTGACTGGCCCTTCGTGGAGGTGTTCCCCTCTCGGCTTGCCTCCGACCCGCAGGGCCTCGCCGGGGCCTTGCGTAAAGTATTCCAGGACATTGGCGAGCTTGAGCACGCGGTGGTGTTCATAGACGAGGTCGAGGAGATAGCCTCCACCCGTAAAGGTGACGCATCATCGCTGCAGGGAGTCACCAATGAACTGCTGAAAATCATTCCGGCCTTCCGGGAGAAGGAAGGCAGGATACTGATCTGCGCGACGAACTTTATCCGGTCGCTGGACAAGGCGTTCCTGCGGCATGGCCGCTTCGATTATGTGATTCCCATTGGTCCGCCCGATCTCACGGCGCGGATAGCCATCTGGAAGCGCTACATCCCTCCCGCAATCTCGCCCCGGATCAATCTCGAAGCGCTGGCTCAGGCGAGCGAGCGCTTCTCCCCTGCGGACATCGAGTTCGCAGCCAGAAAAGCATCCCAGCAGGCACTTGAGCAGGCAGTGCAGGCCGCGACGATTTCTGGAGAACCGGCATTGACGACGGAGGCCTACCTTCAGGCCATCGACGGAACCCGTGCCACCGTCACTGAAGCGGTGGCCAAGGACTTCTTTGAAGATATAGACCGGATAGCGAGGGTTTAGMTWAAKTTAAMQPWHIRDFHPDDLDQLIGVWQESRIEGVHPVYTLAEIIDACSNGVAAVAVTEGRVVGAAACKIQDDRAWMVMLAQAADWRQQGLGSALLAGIEGRLTSQRIRRISALLPASETRIEAFRNSEYRVEEDLHYFERTIPLQPREIKPLGQLGGRLLPHGLWNALAGMQREKDLIEQRLILPLARTELAKSLGVIPPRSVVLFGPPGTGKTTFAKAVASRLDWPFVEVFPSRLASDPQGLAGALRKVFQDIGELEHAVVFIDEVEEIASTRKGDASSLQGVTNELLKIIPAFREKEGRILICATNFIRSLDKAFLRHGRFDYVIPIGPPDLTARIAIWKRYIPPAISPRINLEALAQASERFSPADIEFAARKASQQALEQAVQAATISGEPALTTEAYLQAIDGTRATVTEAVAKDFFEDIDRIARVNANANANANA
D1-29_04285801hyi_2COG3622Hydroxypyruvate isomeraseATGACGTACACAGTGAACTGCTCCATCATGCTGACGGAGCTGCCCCTGCTCGAGCGGCCCGCCGCCGCCAAGGCAGCCGGCTTTGACGCCATCGAGTTCTGGTGGCCATTCGACACGTCCGTCCCCACAGACGCCCAGGTAAACGGGTTTGAGAACGCCATCAAGGACGCTGGCGTCCAGCTCACCGGACTGAATTTCAACGCCGGCAACATGCCGGGCGGTGACCGGGGCCTCGTTTCCTGGCCTGCACGGTCCGCCGAATTCCTGGACAACATCGACGTTGTGGCCGGCATCGGCGAGCGGCTCGGCTGCAAGGCCTTCAACGCCCTCTACGGCAACAGGATCGACGGCGAATCGCCCGAGAAGCAGGACGCCACCGGCGCAGAAAACCTCGCGGCGGCAGCAGCCGGCGTGGCGCGCATCGGCGGCACGGTCCTCCTGGAACCGGTGAGCGGCGCACCCAGGTATCCCCTCCTCACGGCTGAAGACGCGCTCAGGGTTATCGCCCGCGTCAAGGCCGAATCCGGCGCAACCAACGTCAAACTCCTCGCCGACTTCTACCACCTGGCAGTCAACGGCGACGACGTGGAATCCGTCATCGAAAACCACGCCAAGGACTTCGGCCACATCCAAATCGCCGACAACCCCGGCCGCGGGGCTCCCGGAACCGGTGAGCTTCCCCTCGGCGAGTGGATCGCCCGCAGCCGCGCACTCGGCTACACCGGCTACATCGGCCTTGAATACAAGGAACCGCAGGAAACAGCCTTCAACTGGGCCATCCGGCAGCGCGTCTCCAAGTAAMTYTVNCSIMLTELPLLERPAAAKAAGFDAIEFWWPFDTSVPTDAQVNGFENAIKDAGVQLTGLNFNAGNMPGGDRGLVSWPARSAEFLDNIDVVAGIGERLGCKAFNALYGNRIDGESPEKQDATGAENLAAAAAGVARIGGTVLLEPVSGAPRYPLLTAEDALRVIARVKAESGATNVKLLADFYHLAVNGDDVESVIENHAKDFGHIQIADNPGRGAPGTGELPLGEWIARSRALGYTGYIGLEYKEPQETAFNWAIRQRVSKNANANANANA
D1-29_04286879garR_3COG20842-hydroxy-3-oxopropionate reductaseATGAGCAACGTTGCAGTTATCGGACTCGGAATCATGGGCCTGCCCATGGCCATCAACCTGGTCAAGGCCGGCCACACAGTCACCGGCTTCAACCGCAGCCAGGACAGGATCGACAAGCTCGTCTCCGAAGGCGGCAAGGGCGCCGCCGGCATCGCGGATGCGGTCAAGGATGCCGACGTCGTCATCACCATGGTGCCTGACTCCCCCGATGTTGAGGGTGTGGTCAGCGGCGACGAAGGCGTCTTCGCCAACGCGAAGCAGGGCGCACTCTGGATTGACGCGTCCAGCATCCGCCCCGACGTCGCCAAGCGCCTCTCCGACGAAGCCCGCGAAGCCGGCATCCGCCCGCTCGACGCACCGGTCAGTGGCGGCGAACAGGGCGCCATCAACGCCGCCCTCTCCATCATGGTCGGCGGCGAGAAGGCAGACTTCGACGCAGCCTCGGACGTCCTGAACGCCGTCGGCAAAACCATCGTCCACGTCGGACCCTCCGGCTCCGGCCAGACCGTCAAGGCAGCCAACCAGCTCATCGTCGCCGTCAACATCGAAGTCCTCGCCGAAGCCATCGCCTTCCTCGAGGCCTACGGCGTGGACACCGACGCCGCGCTCAAGGTCCTCGGCGGCGGCCTGGCCGGCTCCAAGGTCCTGGACCAGAAGGGCCAGAAGATGCTGGACCGCAACTTCGACCCCGGCTTCCGCCTGGCCCTGCACCACAAGGACTTGGGCATCGTCACCTCAGCCGCCCGCGAAGCCAACGTCGCCGTCCCCCTCGGCGCCGTCGTCGCACAGCTCGTGGCCGCCACCGTCAACCAGGGCGACGGCGCACTGGACCACTCCGGACTCTTCAAGCAGGTCCTCCAGCTCAGCGGCCGCAGCTAAMSNVAVIGLGIMGLPMAINLVKAGHTVTGFNRSQDRIDKLVSEGGKGAAGIADAVKDADVVITMVPDSPDVEGVVSGDEGVFANAKQGALWIDASSIRPDVAKRLSDEAREAGIRPLDAPVSGGEQGAINAALSIMVGGEKADFDAASDVLNAVGKTIVHVGPSGSGQTVKAANQLIVAVNIEVLAEAIAFLEAYGVDTDAALKVLGGGLAGSKVLDQKGQKMLDRNFDPGFRLALHHKDLGIVTSAAREANVAVPLGAVVAQLVAATVNQGDGALDHSGLFKQVLQLSGRSPGPT0018170_839DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-29_042871791gclCOG3960Glyoxylate carboligaseATGAGCAAGATGCGTACCGTTGATGCAGCGGTGGCCATCCTGGAAAAGGAAGGCGCCATCGAGGCGTTCGGCCTGCCAGGCGCCGCCATCAACCCCTTCTATTCCGCCATGCGCGCCCACGGCGGAATCCGGCACACGCTGGCCCGCCACGTTGAAGGCGCCAGCCACATGGCCGACGGCTTCAGCCGCGCCAAGGACGGCAACATCGGCATCTGCATCGGCACCTCCGGCCCCGCAGGCACCGACATGATCACCGGCCTCTACGCTGCGTGGGCCGATTCCATCCCCATGCTCTGCATCACCGGCCAGGCCCCCGTGGCCAAGCTGCACAAGGAAGACTTCCAGGCCGTGGACATCGAGTCCATCGCCAAGCCCGTCACCAAGATGGCCATGACCGTGCTGGAGCCGGGCCAGGTTCCCGGCGCCTTCCAGAAGGCCTTCCAGCTGATGCGCTCGGGCCGCCCCGGCCCCGTGCTGCTGGACCTGCCCATCGACGTGCAGTTGGCCGAAATCGAATTCGACATCGACACCTATGAGCCCCTGCCCGTCGAAAAGCCCAAGGCCTCCCGCAAGCAGCTGGAAAAGGCCCTGGACATGCTGACTGCCGGCGAGCGGCCGCTGATCGTGGCCGGCGGTGGCATCATCAACGCCGGTGCGTCCGCGCAGCTGGTGGAACTGGCCGAAATCCTGAATGTTCCGGTGATCCCCACGCTGATGGGCTGGGGCACCATTCCGGACGACCACCAGCTCATGGCAGGCATGGTGGGCCTGCAGACGAGCCACCGCTACGGCAATGAGAACTACCTGCGCAGCGACTTCGTCATCGGCATCGGCAACCGCTGGGCCAACCGCCACACCGGCGGCCTGGACACCTACACTGCCGGCCGGAAGTTCGTGCACATCGACATCGAGCCCACGCAGATCGGCCGGGTGTTCTCGCCGGACCTGGGCATCGCGTCCGACGCCGGTGCGGCGCTGGCCGGGCTGGTTGAGCTCGCCCGCGAGCGCAAGGCGGCAGGGTCCCTGCCGGACTACAGTGCCTGGGTTGCCGAATGCCAGGAGCGCAAGGCGTCCCTGCACCGCAAGACCCACTTCGAAAATATCCCCATCAAGCCGCAGCGCGTTTATGAAGAGATGAACAAGTCCTTCGGCCGCGACACCATCTACGTGTCCACCATCGGGCTGTCCCAAATCGCCGGCGCGCAGATGCTGCACGTGTTCGGCCCGCGCAAGTGGATCAACGCCGGCCAGGCAGGGCCCCTGGGCTGGACCGCTCCGGCAGCCCTCGGCGTCGTGCGTGGCAAGCCTGACGAGACGGTTGTTGCCCTCTCCGGTGACTACGATTTCCAGTTCATGATCGAGGAACTGGCCGTGGGCGCGCAGTTCAACCTGCCGTACATCCACGTGGTGGTGAACAACTCCTACCTGGGCCTGATCCGCCAGTCCCAGCGCGGCTTCAGCATGGAGCAGAACGTGTCACTGGCGTTCGAGAACATCAACAGCGCGGACCTGTCCGAAACCACCCGCGGCTACGGCGTGGACCACCTGAAGGTGGCCGAGGGCCTGGGCTGCAAGGCCGTCCGAGTGGAGGACCCCAACGACCTCGCCGCCGCGTTCGACAAGGCCAAGGCCCTGATGGGTGAGTTCCAGGTTCCCGTGGTGGTTGAGGTGATCCTGGAAAAGGTCACCAACATCTCAATGGGTGTGGAAATCAACGCCATCAACGAGTTCGAGGAACTGGCCGAGACCGCCGCGGACGCGCCCACCGCCATCCTGGCCCTGCAGGCCTAAMSKMRTVDAAVAILEKEGAIEAFGLPGAAINPFYSAMRAHGGIRHTLARHVEGASHMADGFSRAKDGNIGICIGTSGPAGTDMITGLYAAWADSIPMLCITGQAPVAKLHKEDFQAVDIESIAKPVTKMAMTVLEPGQVPGAFQKAFQLMRSGRPGPVLLDLPIDVQLAEIEFDIDTYEPLPVEKPKASRKQLEKALDMLTAGERPLIVAGGGIINAGASAQLVELAEILNVPVIPTLMGWGTIPDDHQLMAGMVGLQTSHRYGNENYLRSDFVIGIGNRWANRHTGGLDTYTAGRKFVHIDIEPTQIGRVFSPDLGIASDAGAALAGLVELARERKAAGSLPDYSAWVAECQERKASLHRKTHFENIPIKPQRVYEEMNKSFGRDTIYVSTIGLSQIAGAQMLHVFGPRKWINAGQAGPLGWTAPAALGVVRGKPDETVVALSGDYDFQFMIEELAVGAQFNLPYIHVVVNNSYLGLIRQSQRGFSMEQNVSLAFENINSADLSETTRGYGVDHLKVAEGLGCKAVRVEDPNDLAAAFDKAKALMGEFQVPVVVEVILEKVTNISMGVEINAINEFEELAETAADAPTAILALQANANANANANA
D1-29_042881200glxKCOG1929Glycerate 3-kinaseATGCGGATCGTCATTGCCCCGGATAAATTCAAGGGATCGGCCTCGGCACCGGACGTGTGCAGGCACCTGGAAAAGGGGCTGCAGCGCGCTGCCGGCGGCAAGCTGGAGGTTCTCCGGATTCCAGTAGCCGACGGCGGCGAGGGCACCCTCGACGCCGCCGTCGGCTCCGGCTTCACCCGCCGGAGCGCCACGGTCAGCGGGCCTACCGGCCAGCCGGTCGAGGCGGATTTCGCGGTCCGCGGCCACGAGGCAGTCATTGAGATGGCGGCGGCCTCGGGCCTGGCCCTCCTCCCCGCCGGCGCGCTGGTTGGCGGACGGCCCGGCGCCACAGCGGCCACCACCGCGAGCAGCCTGGGCACCGGGCAGCTGATCCGCGCCGCGCTGGATGCCGGCTGCCGCCGCATCGTCCTGGGTGTTGGGGGGAGTGCGAATACCGACGGCGGTGCGGGGCTCCTGCAGGGGTTCGGCGCCAGGTTGCTGGACGCAACGAACAACGAACTGCCGCCGGGCGGAGCGGCGCTGGCCAACCTGCACAGCATCGACTTCACCCACTTTGAACCCCGCCTGGTAGACGCCCGCTTTGTGCTGGCCTCCGACGTCGACAATCCCCTGCTGGGCGCCCAGGGCGCCGCCGCAGTTTTTGGGCCTCAAAAGGGCGCAACACCGCAAGATGTCGAACTCCTCGACGCCGCCCTGGCCAGGTTTGTCGAAGTCCTGGCCAGGGAAATCGGAATCCGTGCCATCAAAGCCGCAGAGGCTCCGGGCGCCGGGGCGGCAGGTGGGGTGGGCTTCGCTGCAATAGCGGCCCTGGCCGCCAGCCGCCGCCCGGGCATCGACGTCGTGCTTGAATTCACGCAACTGGCGCGGCGGTTGGAGGGCGCGGACCTGGTGATCACCGGGGAAGGCAGCCTGGACGAACAAAGCCTGCTGGGCAAAACCCCTCTGGGCGTGGCCAGGGCGGCTGCGGCAGCCGGCGTGCCGGTGATTGCCGTGTGTGGGCGTACCACGCTTGACGCCGGACAGCTGGTGGAAGCCGGGTTCCAGGATGTTTACGCTTTGACTGGGCTTGAAAGCAATGTAGACAGGTGCATAGCAGAGGCGGGACGGCTGCTGGAGCAGCTGGGCACGCAGATCGGCGGACGGCTGGCGGCCAACAGGCTGCCAGAGCCCGCACGCAGTAAGGAGGACCTCCATGTCTGAMRIVIAPDKFKGSASAPDVCRHLEKGLQRAAGGKLEVLRIPVADGGEGTLDAAVGSGFTRRSATVSGPTGQPVEADFAVRGHEAVIEMAAASGLALLPAGALVGGRPGATAATTASSLGTGQLIRAALDAGCRRIVLGVGGSANTDGGAGLLQGFGARLLDATNNELPPGGAALANLHSIDFTHFEPRLVDARFVLASDVDNPLLGAQGAAAVFGPQKGATPQDVELLDAALARFVEVLAREIGIRAIKAAEAPGAGAAGGVGFAAIAALAASRRPGIDVVLEFTQLARRLEGADLVITGEGSLDEQSLLGKTPLGVARAAAAAGVPVIAVCGRTTLDAGQLVEAGFQDVYALTGLESNVDRCIAEAGRLLEQLGTQIGGRLAANRLPEPARSKEDLHVPGPT0018175_226DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
D1-29_042891344allBCOG0044AllantoinaseATGTCTGAAGAGCGCTTTGACCTCGTCATCCGGGGTCAGCGGATCCTCACCACCGCCGGCATCGCGGCCCGTGAGGTGGGCGTCCGCGGCGGCAGGATCGTTGCCATCGAGCCGCTGGGCAACGGGCTGACCGGCGCCGAGATCATCGAACTTGCCGACGACGAAACACTGCTTCCGGGCCTGGTGGACACCCACGTCCATGTGAACGAGCCCGGCCGCACCGAGTGGGAGGGCTTCGCTTCCGCCACCCGCGCCGCGGCAGCCGGCGGCGTTACCACCATCATCGACATGCCGCTGAACTCCATCCCGCCCACCACCACGGTGGCAGGCCTCAAGCTCAAGCGCGAAGTCGCGGAGGACCAGGCCTTCGTGGACGTCGGGTTCTGGGGCGGTGCCGTGCCAGGCAACAAGGCCGATCTCCGTCCCCTGCACGATGAGGGTGTGTTCGGCTTCAAATGCTTCCTCCTGCACTCCGGCGTGGACGAGTTCCCGCACCTGGAGGCGGATGAGATGGAGGAGGACATGGCCGAGCTGAAGTCCTTCGATTCCCTCATGATCGTCCATGCCGAGGATTCGCACGCCATCGACCACGCTCCCCACCCGGGCGGCGACCAGTACTCAACGTTCCTGGCTTCCCGCCCCCGCGGCGCGGAGAACAAAGCCATCGCCGAGGTCATCGAACGGGCCCGCTGGACCGGTGCGCGGGCGCACATCCTGCACCTGTCGTCGTCGGACGCGCTGCCCATGATCGCCACCGCAAAGCGCGACGGCGTCAAACTCACCGTGGAGACGTGCCCGCACTACCTCACCCTGGTGGCCGAGGAGATCCCCAACGGGGCCACCGCCTACAAGTGCTGCCCGCCCATCCGCGAAGCGTCCAACCGGGAGCTGCTGTGGCAGGGCCTGCAGGACGGCACCATCGACTGCATCGTCTCGGACCACTCCCCCTCCACACTGGATCTGAAAGACCTGGAGAACGGTGACTTCGCCGTCGCCTGGGGAGGCGTTTCTTCGCTCCAGCTGGGCCTGTCGCTAGTTTGGACCGAGGCCCGGCACCGTGGCATCCCGCTGGAGCAGGTGGTCAGCTGGATGGCCGCGAAGCCGGCCGCCCTGGCCCGGCTTTCCACCAAGGGCCAGCTGGCGCTGGGCTACGACGCCGACTTTGCGGTTTTTGCCCCAGACGAGGCGTTCGTGGTGGACGCCTCCAAGCTCAAGCACAAAAACCCCATCACCCCGTACGACGGCAAAGCGCTCTCCGGTGTGGTCCGCCAGACGTTCCTGCGCGGGAACCGGGTGGACGGCAAAACCCCCATCGGCAAGCTCATCCGCCGCGGCGGGGTCTGAMSEERFDLVIRGQRILTTAGIAAREVGVRGGRIVAIEPLGNGLTGAEIIELADDETLLPGLVDTHVHVNEPGRTEWEGFASATRAAAAGGVTTIIDMPLNSIPPTTTVAGLKLKREVAEDQAFVDVGFWGGAVPGNKADLRPLHDEGVFGFKCFLLHSGVDEFPHLEADEMEEDMAELKSFDSLMIVHAEDSHAIDHAPHPGGDQYSTFLASRPRGAENKAIAEVIERARWTGARAHILHLSSSDALPMIATAKRDGVKLTVETCPHYLTLVAEEIPNGATAYKCCPPIREASNRELLWQGLQDGTIDCIVSDHSPSTLDLKDLENGDFAVAWGGVSSLQLGLSLVWTEARHRGIPLEQVVSWMAAKPAALARLSTKGQLALGYDADFAVFAPDEAFVVDASKLKHKNPITPYDGKALSGVVRQTFLRGNRVDGKTPIGKLIRRGGVPGPT0000870_998DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000870-allB-K01466NANA
D1-29_04290375hypothetical proteinATGACTGTGGTGGCCGACGGCGGCACCCGGCTTCCGCCGTCGCGCGGCCCTGTCAGCCGGGTGGCCGTTGATCTGGCGGCCGGCCAGGTCCTGCTGGACGGCCGGGAGGTTCCGTTGTCCGGCGTCGAATTCCAGCTGCTCCGCTACCTCGCGGAGAACTGTTCGCGCGCGATCGACAGGACAGAACTTCAGCGGTTCCTTGACTCTTTTGATACCCCCGGCGCTTCGCTCCGGGCCATTGACGTGTATGTGGGGAGGCTGCGGCGGAAGCTCGGAAATGCAGGCCATGCAGTCACCACCGTGCGGGGCCGCGGATACAGGTTTATCCAAGGTCCGTGTGCCACCATTCGCGGACCGGCGGAATACTGCATATGAMTVVADGGTRLPPSRGPVSRVAVDLAAGQVLLDGREVPLSGVEFQLLRYLAENCSRAIDRTELQRFLDSFDTPGASLRAIDVYVGRLRRKLGNAGHAVTTVRGRGYRFIQGPCATIRGPAEYCINANANANANA
D1-29_04291480bcp_2COG1225Putative peroxiredoxinATGAGCCCCACACTGACCACCAAGCTTCAGCCCGGAACCCAGGCCCCTGATTTCTCCCTGAAGGACGCCAAAGGCAACACCACGTCCCTGGCCGCCTACCGCGGCAAAAACGTCATCGTTTACTTCTACCCGGCGGCGGCCACCCCCGGCTGCACCACTGAGGCCTGCGACTTCCGTGACAACCTGGCTTCCCTGCAGGGCTCCGGTTATGAAGTTATCGGCATCTCACCCGATGCACCGGAAAAGCTGGCCAACTTCACGGGTGATTTTGGCCTGACCTTCCCGCTGCTCTCGGACGAGGATCACCGGGTGGCACTGGCCTACGGCGCATGGGGTGAGAAGCTGGTGAACGGCGAAATCACCGAAGGAATCGTCCGCTCCACGGTTGTCCTTGATCCCGAGGGCAAGGTCACGCTGACCCAGTACCAGGTCAAGGCCGAGGGCCACGTCGCTGCGCTCAAAGAAGCGCTGGGCGTCTAGMSPTLTTKLQPGTQAPDFSLKDAKGNTTSLAAYRGKNVIVYFYPAAATPGCTTEACDFRDNLASLQGSGYEVIGISPDAPEKLANFTGDFGLTFPLLSDEDHRVALAYGAWGEKLVNGEITEGIVRSTVVLDPEGKVTLTQYQVKAEGHVAALKEALGVPGPT0013120_1915DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564NANA
D1-29_04292678ecsACOG1131ABC-type transporter ATP-binding protein EcsAATGGGGGATGTGCTTGAAGCGGAGCGATTGTTGGTGGGGTATGCCGGGGCTCCGGTATGTGGAGAGGTCTCCTTCGGTGTTGCTGCCGGGAAGGTCCTGGCGGTGGTGGGTTTCAATGGTGCCGGTAAGTCCACGGTGGTTCGCACCTTGGCTGGTCGTCAGGACCCCTTAGCCGGAGACGTGCGTGTGAATGGGTTGCCGGTGATGCCTGACGCAGTGTGGTTCCGGCGTCACGTCGCGGCTGTATTCGATGAAGATGTCTTCTTCCCTTCGTTGACGGTCCGTGAGCATCTGCTGTTGGTGGCGCGGGGTCACTCGCTGCGCTCCCCTGACGATGCGGTCGAGGCTGAGTTGAGCTTTTTCGGGCTCGCAGAGCGGTCGCATGCGGTTCCTGACGCGCTGTCCTCGGGCCAGCGCCGGCGATTGCTCCTGGCCGCTGCTTTCATCCGGCCGTCATCTCTGTTGATTCTCGATGAGCCGGAGCAGCGCCTGGATCCGGTGATGAGGGACGCGCTTGCCGAACGCATTCAACAGCTCGCCGATGCTGGCACCACCGTAGTGCTTGTTACGCACGACCCCCGATTGCTCGTTCAGACAGCAACCGACTGTCTGGTCATCGATGAGGTTGTCGAGACAGTTGATACGGAACGAGGTGCGCAGATCATTGCTGGCGCCTGAMGDVLEAERLLVGYAGAPVCGEVSFGVAAGKVLAVVGFNGAGKSTVVRTLAGRQDPLAGDVRVNGLPVMPDAVWFRRHVAAVFDEDVFFPSLTVREHLLLVARGHSLRSPDDAVEAELSFFGLAERSHAVPDALSSGQRRRLLLAAAFIRPSSLLILDEPEQRLDPVMRDALAERIQQLADAGTTVVLVTHDPRLLVQTATDCLVIDEVVETVDTERGAQIIAGAPGPT0006725_27984DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_042931161hypothetical proteinATGTCCGATGGGGACACGTCGCGCCTTGTAAGAGAGGTCGTCCGTTTCACCCGGACCAGGACCCGGCGGTACAACAGGGCCCGTTCATCACTCCGCGACATCTTCGTGGATGTGTACTCGTACGCCTTGGCCGGAGGCTGCGTCCTCATGCTTGCAGGGTCACTCATCGTGGCGCTCCGCAACGAAATTGCGGGGCTTAGCCTGGGTGCGCTGAGCCTGACGGCGGCACGGTGGCAGGTGTTGCCTGCGGAGTTCCTGTGGATGTTTTTGACCTACCTGGCACTAGTCGCAATCGCACTGACAGCCCGTCGGCTTGGACCGGTAACGGTCAGCCGTGCGGAAGGCGCGTGGTGGTTGCTGCTGCCGATTGACCGGCGCCTGATGGTCCTTCCTTCCTTTCGTTCCCGTCTCGTGGCGTCTGGCGCAGCGGCTTCGGTCGCCTACATGCCTTTCAGCCTGCTGACTGCTATCGACCGGTCCGCCTGGGCGCACGCCGGCTCAGCGGCAACCTTTGGACTCGGAGCCGTACTCGCTGTTGCCAGCGCAGCGATCCTGCAACGCACTCCAACATCGTCCGGGGCCCAGTGGGTGGCGATCTTCGCCGGCTTCATCCCCGTAGCCGTCCTGCCTTTCCTGGCTCCTGCTACATGGCCGCTCGTTTTGGCGCTCGTCGCAGCGGTGGCTCTCGTCGCGCATGTGCTTCCCCGCCTGGGTGATGTGCGTGGTGTCGAGCTGTTGCGTGGCGGTGCTGTTTCAGGCCACGCCGCCGCGTCCATCTTCTTTGTCGACGTCAACGAGTTGCGCCGGGCCCTAACTTCAGAACCGCGCCCGGGCATCAGCAGGCGCGGATCACGGTTCTATGGGAGGCCTACCCGTTGGCCCTTCGCTGCCGTGGTGCGCGCCGATATCGTGGCGTTCCTACGCCTGCAGCCCGCACCCACAGTTCCGCTGCTGGCGTTGGGTATCTGCGTAAGCGTCGCCCTGATCACTCCGGCCCTTCCCGTGCTGCTCCAGCTAGGCGTGATCCTCGTTGCTGGTTGCCTTACGACTGCGGGAACAGGGACAGTACTCGACGGACCGCCGTCGTCATCGCGCTCGACTCGCTTCTGCCCGTCAGCCCGGCGCTGGTGCGCTGCAGCCGATTGCTCATGCCCGCTTTAAMSDGDTSRLVREVVRFTRTRTRRYNRARSSLRDIFVDVYSYALAGGCVLMLAGSLIVALRNEIAGLSLGALSLTAARWQVLPAEFLWMFLTYLALVAIALTARRLGPVTVSRAEGAWWLLLPIDRRLMVLPSFRSRLVASGAAASVAYMPFSLLTAIDRSAWAHAGSAATFGLGAVLAVASAAILQRTPTSSGAQWVAIFAGFIPVAVLPFLAPATWPLVLALVAAVALVAHVLPRLGDVRGVELLRGGAVSGHAAASIFFVDVNELRRALTSEPRPGISRRGSRFYGRPTRWPFAAVVRADIVAFLRLQPAPTVPLLALGICVSVALITPALPVLLQLGVILVAGCLTTAGTGTVLDGPPSSSRSTRFCPSARRWCAAADCSCPLNANANANANA
D1-29_04294162hypothetical proteinATGTCATCTCTCCTGCGGGGTACGGACATCACGGTCCTGGCGATGGTTCCGGTCCTGCTCGCCCTGTTTCTAGGCTCTGTTCATCCATGGCTGGCCCTCGCCCAAGGCGTCGTCACCGTGGGGGCTGTCATCGCACAAGCCTCAGCCTCGACCGTCCGATAAMSSLLRGTDITVLAMVPVLLALFLGSVHPWLALAQGVVTVGAVIAQASASTVRNANANANANA
D1-29_04295297hypothetical proteinATGGCCAGCGATGTCGATTTAGTGGTGCTAAGCGACACTCCCAGAAGCCTTGAAGACGCGCGATGGTTCGAACAACTCCATCCTGGGGCGCGTCTCATCCGCTCGGAGGTATGGGGGCCAGTACGCGAAAGAAGATTTCGGTTGGCATCAGGATTGATCGTGGAATTGGGCATCGCTCCCTCCAGCTGGGCTGATACGCCCTTAGACGAAGGAACGCGTCGAGTCCTCAGCGATGGCCACCGCGTTCTGTACGACACAGGCCTCCTCGAAAGTGCTGCCGCAACCGTCACCAGGTAAMASDVDLVVLSDTPRSLEDARWFEQLHPGARLIRSEVWGPVRERRFRLASGLIVELGIAPSSWADTPLDEGTRRVLSDGHRVLYDTGLLESAAATVTRNANANANANA
D1-29_04296261hypothetical proteinTTGGACACCAAAGAGCGTTCCATCGAGCGGTTCAACGGCCGTGGCATGGGGGAGGATGTTCCCTGGCACGAGCAGATCAAGGCAATCGTGGAGCAAGGCGGCGGTTCGCGACTACTGGGGACCCTGTACGACGATCTGGCCCGCGGGCTTCACACGCGACCGTCCGCTTCTGTCATCCGCAGTACCCATGGAGCCATCGAAGAGACCTACGCGAACTTGATACGTGCGCTTGCGCCAGATCGAGCCAAGCCGCCGTCATAGMDTKERSIERFNGRGMGEDVPWHEQIKAIVEQGGGSRLLGTLYDDLARGLHTRPSASVIRSTHGAIEETYANLIRALAPDRAKPPSNANANANANA
D1-29_04297303hypothetical proteinATGAAGAAGTTCGTGCGAGCACTGGCAAGTGACATCCTCGGTGCTGTCGGTCCAGGGCGCCGGTTAGTGGCAGTCGACGGGGTGGATGGCAGCGGCAAAACATTCTTCGCGGCTAACCTGGCATCCGAGATTCAGAATCGACCCGTGATCACCATCCACGCCGACGACTTTCTGAACCCCTCGCCCTCAATGCTCGTATCGATGGTTACGACACCAACGAGCTCAACCCAGAGCCTCACAGAATCAGCCGGTAAGCGTTGTGGGCGCCCAACGCCGAATGACAGGATGGCGGAATGGGGATAGMKKFVRALASDILGAVGPGRRLVAVDGVDGSGKTFFAANLASEIQNRPVITIHADDFLNPSPSMLVSMVTTPTSSTQSLTESAGKRCGRPTPNDRMAEWGNANANANANA
D1-29_04298573hypothetical proteinATGGGGATAGAAATTCGGCCGGCCACGGAGTTTGAGGACCTGAAGGCGGTGGTGGGACCCAAGCGGCCCGACGCCAACGTCTGTTGGTGCCTGAGCTACCGCATCCCTTCCAAGCTGAACCTGGAGCTGCAGGGCCCGGCCCGCGGCGACCTGGTGAAGGAGCTGGTGGCCCAGGATCCGCCACCCGGCGTACTTGCGTACGACGGCGGCGACGTGGTGGGCTGGGCGGCTGTCCACCCCCGCTCGGACACCAGTTTTGCCCGCAACCGCAAAATACCGCACGTGGATGAACTCGACGTCTGGTCCGTGTGGTGCATCCGGGTCCGGCCCGGGCACCGCGGCAAGGGAATTTCACATCACCTGCTGGAGGGCGCCGTCGCCATGGCCCGCGCGTACGGCGCGCCTGCCATCGAGGGTTACCCCGTGGATAACAACGGCGAAAAGGTGGACCTCACTATGGCCTATGTGGGCACCCGCCAGCTTTTTGAACGGGCCGGGTTCGTCAAGGCCGCCGATACAGACTCCGTGCTCAACGGATTCCCGCGGGTGCTCATGCGCCTGGACTTGCGCTGAMGIEIRPATEFEDLKAVVGPKRPDANVCWCLSYRIPSKLNLELQGPARGDLVKELVAQDPPPGVLAYDGGDVVGWAAVHPRSDTSFARNRKIPHVDELDVWSVWCIRVRPGHRGKGISHHLLEGAVAMARAYGAPAIEGYPVDNNGEKVDLTMAYVGTRQLFERAGFVKAADTDSVLNGFPRVLMRLDLRNANANANANA
D1-29_04299144hypothetical proteinATGCTGCTTATCGGGTGGGGCTATCTGATTGCCGGCCTCATGACGGTGGATGGGCTTCTTTTGGCCCTCTGGCTAATGGACATGGACTGGCCCAGGCGCTGGAAAAAAATAGCACGATTATGGAAGAAAATAGCGCGGCGCTGAMLLIGWGYLIAGLMTVDGLLLALWLMDMDWPRRWKKIARLWKKIARRNANANANANA
D1-29_04300303hypothetical proteinATGCGGAGAATTCAAACCGGGTGGAAGCTGGTGGCCGTTGTGCTGTGGCTTTGGGAACTGGTGGACACGGTGAGGAAACGCCACTATCCCCAGCGAACCTTTCACTACCTGAAGCATTCATGGCGGATCCGTTTGCTTTCGCGTGCCCTCGCCAAAGCCCTGGGGGACTCCAGGGAGGCCTCGAGCTGGCCCGGCGACAGGCTGGCGGTGGGGGTTGAATTCTCGGAGAAAGTCGAGCGGCTCACCCGTCTCGTCAACCGTGAGAACGAAGTCCATGGTCGAGTAGTGGCCCTCCTGAAGTAGMRRIQTGWKLVAVVLWLWELVDTVRKRHYPQRTFHYLKHSWRIRLLSRALAKALGDSREASSWPGDRLAVGVEFSEKVERLTRLVNRENEVHGRVVALLKNANANANANA
D1-29_043011116cheB_2Protein-glutamate methylesterase/protein-glutamine glutaminaseATGCCTTACCTTCCCGAAACGCGCCGTGCCGTTGTGATTGAGGATGACCCGGACATCCGCGGACTGCTGGTGCGGGTCCTGACCAAGCAGGGATTCGACGTCACTGAGGCCGCTGCTGGCTTGCCCGGCGTGGAGGAAGTCCGCAGGGCCAAGCCGGACCTGGTCACTTTGGACCTGAACCTGCCCGATCTTGACGGCCTTGAGGTCTGCAAGCTCCTTCGCGAATTTTCGGACGCCTTTATTGTGATGCTCACGGCGCGGACGGATGAGCTGGACAAACTGACGGGGCTGGATAACGGCGCCGATGACTACATCAGCAAGCCGTTCAGCCCCCGGGAACTCCAGTCCCGGGTCAATGCGCTCTTCCGGCGCCGCCAACCCACGGCGGTGGTGGACCCCGCCGCCCAGGATGAACTTACGCGGGCCACCGAGGTGCAGCAGAGCCTGCTGCCCAAGGAGGACGTCAGAGTGGACGGTTACGATCTCGCCGGGATGTTCCGCCCCTCCCGCAGCGTGGGCGGGGACTTCTACGACTGGTACCGGACGCCTGACGGGCTGCACCTGACCTTCGCCGATGCGATGGGCAAGGGCATGGGAGCAGCCCTCATCGCTGCCACTGTCCGTGCTGTCATGCGCTCCATGGGTCCCCTGACGGATCTGGACGAAGCGTTTAGGGCGGCGAGCACGTCGATCGCGTCCGACCTCGATTCGTCCAGCTCATTTGTGACCCTGTTCCATGCCCGCCTTGATGCCGCTTCCGGCACCGTCAGTTATGTCGACGCCGGCCATGGGCTTGCACTGCACGTGGACGCCGGCGGGACGGCCCGCCGTCTTGCCTCCGGCGGCCCACCCGTGGGGGCATGGGGCGGTTCCATCTGGCCGCAGTCCGCACTGGTCCTGGCTCCGGGCGATTCCCTGGTGGTGGTCAGTGACGGCGTGCTGGATGTCTTTGATTCTGTGGATGCTTTCACGGAGGCAGTGCTGCAGGCAACGCACGGCCAGGAGTCGGCTGTCTCCGCCAGTGATGCCATCCTGTCCCTGGCACCGGCGGAATCCGCCGAGGATGACGTCACTGTGGTGGTGGTACGGCGGCTTCCGGTGACAGCCGGAGCATGAMPYLPETRRAVVIEDDPDIRGLLVRVLTKQGFDVTEAAAGLPGVEEVRRAKPDLVTLDLNLPDLDGLEVCKLLREFSDAFIVMLTARTDELDKLTGLDNGADDYISKPFSPRELQSRVNALFRRRQPTAVVDPAAQDELTRATEVQQSLLPKEDVRVDGYDLAGMFRPSRSVGGDFYDWYRTPDGLHLTFADAMGKGMGAALIAATVRAVMRSMGPLTDLDEAFRAASTSIASDLDSSSSFVTLFHARLDAASGTVSYVDAGHGLALHVDAGGTARRLASGGPPVGAWGGSIWPQSALVLAPGDSLVVVSDGVLDVFDSVDAFTEAVLQATHGQESAVSASDAILSLAPAESAEDDVTVVVVRRLPVTAGANANANANANA
D1-29_043021971hypothetical proteinATGACAAGGTTCTGGACCCGGCTGATAGTAGTACTGACGGTTGTCCTCGGCTTGAATTATGTGGCCTGGCGCTGGTCAGCCTCGCTGAACTGGGACGCGTGGTGGATCTCGGTTCCGCTGGTGATTGCAGAAACCTACAGCCTCATCGACGTCATGCTGTTTGGCATGACGGTGTGGAAACTGAAGCTGCGCAAGGGCGCCCCGGAGGCACCCGGGGATGCCACCGTGGACGTTTTCATCACCACCTACAACGAGCCGCTGGATATGGTGATGACCACAGCCCTGGCCGCCCAACGGATCCGCCACCCGCACAGCACCTGGATCCTCGACGACGGCTCCCGCCCGGAACTCAAAGCCCTTGCCGAGGAGCACGGTCTGGGGTACGTCACCCGCAGCGAGGACTGGACCTCGAACGTGCCCCGGCACGCCAAGGCAGGCAACCTAAACAACGCGCTGATGCAGACGCACGGCGAGTTCCTCCTGATCCTGGATGCGGACCAGATCCCTGAGCCGGACATCCTGGAAAAAACCCTGGGCTACTTCAACAACCGCCGCGTGGCGCTGGTCCAGACGCCGCAGTACTTCAGCAACGTTCCTCCCTCAGACCCCCTGGGCAGCCAGGCTCCCCTGTTTTACGGCCCCATTCAGCAGGGCAAGGACGGCTGGAATGCGGCCTTCTTCTGTGGTTCCAACGCCATCCTGCGCCGTGAGGCCCTGATGCAATTGGGCCTGGTGGGTTACGTCAAGGAGACCGAAAAGAGCATCCGGCGGGCCCTGGCGGCCTCCCGGTCTGCCATCCGGCAGGCCAGGAAATCGGCGGACATGGAATCGCCGCTGGTGGCCCAGGTGCTGGACGAGGTAGAGACCGCCACGCTGAAGGCCCAGCAGGAGCTGGACACGGGGGCGCCGCTGGGCGAAATCACGTACCGCGTCCGCCGCCGGGTTGACCAGGCCGTCCAAGCACTGGTGATGGCTGACGTTTCGGCCCTCCAGGCGGACCTTGAGGAGATCGCCGCCATGGAGCTCGCCCATGTTGGCGAAGCCGGGGTACCGGTGGTGGCCGATGACGCCGTGAAGCGGATGGCAGCCCGCGACTGGTCCCCGCTGGGCGCCCTGGAATCCGTGCAGGCAGTGCTGGATGCGCTGTCGGTAGAGCGTAATGACGAGGCACAGCCGGTGATGCCGCTGGCCACCATCTCCGTCACCGAGGACATGGCCACCGCGATGCGCATGCACTCCATGGGCTGGGAAAGTGTCTACCACCACGAGATTCTTGCCTACGGGCTGGCGCCGGAAGATCTCAAGACCATGCTGACCCAGCGGCTCCGCTGGGCACAGGGAACCATCCAGGTGATGCTGCGGGAAAACCCGCTGGTCCAGCGCGGCCTCAAACTTGGCCAGCGCCTGATGTACTTCGCCACCATGTGGACCTACCTCAGCGGATACGCGGCCGTCATCTACTTCGCCGCCCCCATCATCTACCTGCTGCTGGGTATCCTGCCCGTGACGAGCCTGAGCACGGACTTCTTTGTCCGCTTCATCCCCTTCATGGTGGTGAACCAGCTGCTGTTCGCCGTGGCCGGACGCGGGATCAGCACCTGGCGCGGCCAGCAGTACAGCCTGGCGCTGTTTCCCACCTGGATCAAAGCCTGCTCGACGGCGGCCCGAAACGTCTGGTTCGGACGCCCCCTGGGGTTCGCCGTCACCCCGAAGGCGCGCCAAAGCGGCGGTCCCTCCTGGAGCCTGATCCGGCCACAGATCGTGGTGTCCGCACTCCTGGCGGTGGCCGCCGTCGTCGGCCTGGTGCGGCTCGCCGTGGGACTGGCCGAGCCGCTAGGCACGCTGGTCAACGTTGCCTGGGTTATTTTTGACCTGGCGGTGATGAGCGTCCTGGTCCAGGCCGTTCGGTACAAGGGGTTTGAACCCGTTCCGCAAGCAGAGCCTGAAGAGAGGAAATCCGGTGGAGTTTAGMTRFWTRLIVVLTVVLGLNYVAWRWSASLNWDAWWISVPLVIAETYSLIDVMLFGMTVWKLKLRKGAPEAPGDATVDVFITTYNEPLDMVMTTALAAQRIRHPHSTWILDDGSRPELKALAEEHGLGYVTRSEDWTSNVPRHAKAGNLNNALMQTHGEFLLILDADQIPEPDILEKTLGYFNNRRVALVQTPQYFSNVPPSDPLGSQAPLFYGPIQQGKDGWNAAFFCGSNAILRREALMQLGLVGYVKETEKSIRRALAASRSAIRQARKSADMESPLVAQVLDEVETATLKAQQELDTGAPLGEITYRVRRRVDQAVQALVMADVSALQADLEEIAAMELAHVGEAGVPVVADDAVKRMAARDWSPLGALESVQAVLDALSVERNDEAQPVMPLATISVTEDMATAMRMHSMGWESVYHHEILAYGLAPEDLKTMLTQRLRWAQGTIQVMLRENPLVQRGLKLGQRLMYFATMWTYLSGYAAVIYFAAPIIYLLLGILPVTSLSTDFFVRFIPFMVVNQLLFAVAGRGISTWRGQQYSLALFPTWIKACSTAARNVWFGRPLGFAVTPKARQSGGPSWSLIRPQIVVSALLAVAAVVGLVRLAVGLAEPLGTLVNVAWVIFDLAVMSVLVQAVRYKGFEPVPQAEPEERKSGGVPGPT0022275_1183DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0022275-bcsA|yhjN|celA-K00694NANA
D1-29_04303333rsbVCOG1366Anti-sigma-B factor antagonistGTGGAGTTTAGCTACGAAATCAAGGACTCGTATGCGGAGGTGAAGGCAGACGGCCGGCTCAACATGGTGTCCGCGCCCAAGCTTCGTGAGTTCGTCACGGATATCATCGCGGGCGGGTCGAACAGGATTGTGGTCAACCTGGAAAACACCGCCTTTATGGATTCCTCCGGACTTGGGGCGCTGATTGGCTGCCTCAAAGCAGCACGCCAGGCGGGCGGGGACCTTCGGATCGCCGCTGTCCAGCCGCAGGTGAAGATGGTGCTTGAGCTGACCAGCATGGACCGGGTGCTGACCTCCTACACTTCCTCGGAGGAGGCGTTCAGCAATGACTGAMEFSYEIKDSYAEVKADGRLNMVSAPKLREFVTDIIAGGSNRIVVNLENTAFMDSSGLGALIGCLKAARQAGGDLRIAAVQPQVKMVLELTSMDRVLTSYTSSEEAFSNDPGPT0014350_2276DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
D1-29_04304423hypothetical proteinATGACTGACATCCTGGCGCGCCGCAGCTTCCGGGGATTGGCCACCGGAGATGCCATTGAGGCGGTCCATGACCACCTCGACGGCCTTTGGGCGGATGCTCCCTTCGTCCAGGACATGGACCAGATGACGTTCACAACCGCGGTGATCGAGGCTGCCACCAACATCGTCCAGCACGCTGAACCCGCGAAGGAATCGGCGGTTGAGCTGGGGGTGGACATCAGCGTGCAGGCGGCGCTCCTCCAGGCCCGAGTCAGCGCGTTCAATGCCAAACCGCCGTTCGGACCCATGGAACCGGGCGTGCCTGACGATGAATCCGAATCCGGCCGCGGGCTCGCGCTGATCCAGGCACTAGTAACCACGGTGACGTTCGAGCGCCAGGACGGCACCAATACCTGGATCCTGTCCCGGACGTCCCAGGATTAGMTDILARRSFRGLATGDAIEAVHDHLDGLWADAPFVQDMDQMTFTTAVIEAATNIVQHAEPAKESAVELGVDISVQAALLQARVSAFNAKPPFGPMEPGVPDDESESGRGLALIQALVTTVTFERQDGTNTWILSRTSQDPGPT0014950_1567DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014950-rsbW-K04757NANA
D1-29_04305498hypothetical proteinATGAAGCTTGCCGAATTCAACAGCGTGGAGCCCTCACGCGCCAGGGACGTCCTTAAGCCCTGCATCGACATCGGGCGCTGGGTGGAGGCGGTCACGGCCGCACGGCCCTTTCCGTCCAAGGCATCCCTCCTGGAGTTTGCTTCCCAGGCAGCTGAGCCGTTCACGCCCGCAGAGGTGGAAGCCGCCCTGGCCCACCACCCGCGAATCGGCGACCGGCCCACCGCCAGCACTGCGGAAGCCTCCATGTCCCGTTCTGAGCAGGCCGGAGTGGACCCTTCGGACGCCGGACTCGCTGAGGCGCTCGCCCAGGGCAACCGTGATTACGAGGAAAAGTTCGGCCGGGTCTTCCTGATCCGGGCCGCCGGAAGGACCGCCCCTGACATCCTGGCGGCCCTCGAATCCCGCCTGGCCAACTCCCCCAGTGAAGAAGATGCCATCGTGTCCCAGCAGCTGCGCGAAATAGCCCTGCTGCGGCTTGAAGGAGTGATCAACGAATGAMKLAEFNSVEPSRARDVLKPCIDIGRWVEAVTAARPFPSKASLLEFASQAAEPFTPAEVEAALAHHPRIGDRPTASTAEASMSRSEQAGVDPSDAGLAEALAQGNRDYEEKFGRVFLIRAAGRTAPDILAALESRLANSPSEEDAIVSQQLREIALLRLEGVINEPGPT0021135_588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021135-hpxQ-K16840NANA
D1-29_04306339hiuH5-hydroxyisourate hydrolaseATGAGCCCGTCCCATGTCACCACCCATGTCCTGGATACCGGCGCCGGGCGCCCGGCGGCGGGAGTCGCCGTCGTGCTTTACCAGCACGACGGCGGAAGCTGGCGTGAGCTGGCCCGTTCGGCCACCGATGCCGATGGCCGCGCGAAGGACCTGGGGCCAGAGTCGCTGTCACCCGGGCGCTACCGGCTCAACTTTGGCACCGGCGACTACTACGCCGGCCTCGGCACGACCACGTTCTTCCCGGAAGTGGACCTGGTGTTCGAGGTGACCGGCGCCGAGCACTACCACGTCCCGCTGCTGCTGAGCCCGTTCGCCTACTCCACCTACCGCGGCAGCTAAMSPSHVTTHVLDTGAGRPAAGVAVVLYQHDGGSWRELARSATDADGRAKDLGPESLSPGRYRLNFGTGDYYAGLGTTTFFPEVDLVFEVTGAEHYHVPLLLSPFAYSTYRGSPGPT0021125_1718DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021125-uraH|pucM|hiuH-K07127NANA
D1-29_04307315hypothetical proteinATGGCTTTTGAAGAAACCCCCGCTGAACGCCGTGATGTAACCGTCCGGCGGGCACCCAGATACGTACCCTTCCTGATCCTGGGCGCACTGGTTGGCGTCGCCGCTGCGGCCGTGGTGGCATACGCGCTGCCGGGCGACGCAAGCTTCGACAGGGGCTCGGTGTTCGGCTTCTTCCTGGTGATGTTCGGGGCCTTCGGCGCGATCCTGGGTGCAGCAGCTGCCCTGATTCTGGACCGGCGGAGTGTGAAGCGCCAGCAACGCGCGGTTGTGGAGGCTGTTCCGGATTCGGAACCGGACGACGGCACGCAGCCGTAAMAFEETPAERRDVTVRRAPRYVPFLILGALVGVAAAAVVAYALPGDASFDRGSVFGFFLVMFGAFGAILGAAAALILDRRSVKRQQRAVVEAVPDSEPDDGTQPNANANANANA
D1-29_043081683purFCOG0034AmidophosphoribosyltransferaseGTGGCACGCGGCGATGGAAAACTTTCTCATGATCTTCTCCCTGGCGAAAAAGGCCCTCAGGACGCTTGCGGCGTTTTTGGGGTCTGGGCACCAGGTGAAGAAGTAGCAAAACTCACCTACTACGGGCTGTATGCACTGCAGCACCGCGGTCAGGAGTCGGCTGGTATTGCCACCAGCGACGGCAAGCGGATCAACGTCTACAAGGACATGGGACTCGTTTCCCAGGTCTTCGACGAGACCACGCTGAACACCCTGACCGGGCACCTGGCGGTGGGACACTGCCGCTACTCCACCACCGGAGCCAGCCACTGGGCCAACGCCCAGCCCACGCTCGGCGCCACCAGCACCGGCACGGTGGCGCTGGCGCACAACGGCAACCTGACCAACACGGCCGAGCTCAACGCCATGATCATGGAGCGCAACGGCGGCCAGCTCAGCGGCGAAATGAAGCAGGGCAACACCTCGGACACAGCCCTGGTCACGGCCTTGCTCGAAGGCGAGGAGGGCAAGACCCTCGAACAGACCGCCATCGAGCTGCTGCCCAAGATCAAGGGCGGCTTCTGCTTCGTCTTTATGGACGAGGGCACCCTCTACGCCGCCCGCGACACCTACGGCATCCGTCCGCTGGTCCTGGGCCGGCTGGAACGCGGCTGGGTGGTTGCCTCCGAGCAGTCCGCCCTTGCCACCGTGGGCGCCAGCTTCATCCGTGAAATCGAACCCGGCGAATTCATCGCCATCGACGAGGACGGCGTGCGCTCCCAGCGCTTCGCGGAGCCGACGCCGGCGGGTTGCGTTTTCGAGTACGTTTACCTGGCCCGTCCGGACGCCGCCATCGCCGGCCGCTCCGTCTACGAGTCCCGGGTAGAGATGGGCCGCCAGCTCGCCCGCGAAAACACCCAGGTTGCGGACATTGTCATTCCCGTCCCGGAATCGGGAACGCCGGCCGCCGTGGGCTACGCCGAGGAATCCGGCATCCCGTTTGCACACGGCTTCGTCAAGAACTCCTACGTGGGCCGCACCTTCATCCAGCCCTCCCAGACGCTCCGCCAGCTGGGCATCCGGCTGAAGCTGAACGCCTTGGAATCCGTCATCCGCGGCAAGCGCGTGGTGGTGGTGGACGACTCCATCGTCCGCGGCAACACCCAGCGGGCGATCGTCCGGATGCTCCGCGAGGCCGGCGCGGCAGCAGTCCACGTCAAGATCTCCTCCCCGCCGGTGCAGTGGCCCTGCTTCTACGGCATCGACTTCGCGTCCCGCGCCGAACTGATCGCCAACGGCGCCACCATTGAGGAAATCTCCCAGGCCATCGGCGCCGATTCCCTGGCCTACATCTCGGAAGACGGCATGATCGGCGCCACCCAGCAGCCGCGCGAACGGCTCTGCACCGCGTGCTTCACGGGCAAGTACCCCATCGAGCTGCCGGGCTCGGACAAACTGGGCAAGAATCTGCTGGAGCGCAAAGACCTTGGCGGGCTCCCGCCGTCGCCCTCTGCGCTGCCGGGCGAAACGGCGGCCCTGCTGGTGCCCGCCGTCGGCGACGGCGAGGATCCCGCCGAGAAGCGGGGGGCCACCGGCTGCGACCCCGGACCGGACTCCGAGTTCGAGAACCTGCTGACCGAGGCAGACCTTGTTCCAGACGTACACGTAGCCACCATCGGCGCTGACAAGAAAGAGTCAATATGAMARGDGKLSHDLLPGEKGPQDACGVFGVWAPGEEVAKLTYYGLYALQHRGQESAGIATSDGKRINVYKDMGLVSQVFDETTLNTLTGHLAVGHCRYSTTGASHWANAQPTLGATSTGTVALAHNGNLTNTAELNAMIMERNGGQLSGEMKQGNTSDTALVTALLEGEEGKTLEQTAIELLPKIKGGFCFVFMDEGTLYAARDTYGIRPLVLGRLERGWVVASEQSALATVGASFIREIEPGEFIAIDEDGVRSQRFAEPTPAGCVFEYVYLARPDAAIAGRSVYESRVEMGRQLARENTQVADIVIPVPESGTPAAVGYAEESGIPFAHGFVKNSYVGRTFIQPSQTLRQLGIRLKLNALESVIRGKRVVVVDDSIVRGNTQRAIVRMLREAGAAAVHVKISSPPVQWPCFYGIDFASRAELIANGATIEEISQAIGADSLAYISEDGMIGATQQPRERLCTACFTGKYPIELPGSDKLGKNLLERKDLGGLPPSPSALPGETAALLVPAVGDGEDPAEKRGATGCDPGPDSEFENLLTEADLVPDVHVATIGADKKESIPGPT0020225_541DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764NANA
D1-29_043091167purMCOG0150Phosphoribosylformylglycinamidine cyclo-ligaseATGACTTCCGCAACCCCCGCCGCCGGCAACCTCTCCAACCAGGCCGGCGGCATCACCTATGCCTCCGCCGGCGTTGACGTTGAAGCCGGCGACCGTGCCGTTGAGCTGATGAAGGGCGCCGTCAAGGCCACCCACAACTCATCCGTGATCGGTGGCGTGGGCGGCTTCGCCGGACTGTACGACGTCTCCAGGCTGCTGACCTACAAGCGCCCGCTCCTGGCCACATCCACCGACGGCGTGGGTACCAAGGTTGCCATTGCGCAGGCCATGGACATCCACGACACCATCGGGTTTGACCTGGTGGGCATGGTGGTTGACGACATCGTGGTGGTTGGCGCCGAGCCGCTCTACATGACCGACTACATCGCCTGCGGCAAGGTTGTCCCGGAGCGCATCGCTGACATTGTCCGCGGCATCGCAGCGGCCTGCTCCGTTGCCGGCACCGCCCTGGTGGGCGGCGAGACCGCCGAGCACCCTGGCCTGCTGGGCGAGCACGAATACGACGTCGCGGGCGCCGCCACCGGCGTTGTAGAGGCTGACGCCCTGCTGGGCCCGGACCGTGTCCGCGCGGGTGACGTTGTGATCGGCATGGCCTCGTCCGGCCTGCACTCCAATGGCTACTCCTTGGTCCGCCGGGTCATCAACCACGCCGGCTGGGCCCTGGACCGCCAGGTTTCCGAGCTCGGCCGCACGCTGGGCGAAGAACTGCTGGAGCCCACCCGCGTCTACGCCGCCGACTGCCTTGACCTGGCCCGCACCTTCCCAGTGACCGGCGGCTCGGGCGCTGCCGTGCACGGCTTCAGCCACGTCACCGGCGGCGGCCTGGCAGCCAACCTGGCACGCGTGCTTCCCCAGGGGCTGGTGGCCACCGTGGACCGCGCCACCTGGGAACTGCCTGCCATCTTCAAGCTGGTATCCGAGCTGGGCAACGTCCCGCTGGCAGACCTGGAGCGCACGCTGAACCTGGGCGTCGGCATGGTGGCCATTGTCTCCCCGGAAGCTGCCGATGCCGCCGTGGCCCGCCTGAACGACCGCGGCCTGCCGTCCTGGATCATGGGCACGGTGACCGCAGACTCTGACTCCATCCTCAAGTCCGGCCCTGATTATGTCCAGGGCGCCAAGGGAGTGGACGGCGGCGCTGTCCGCCTGGTCAACGCCTACGCGTAGMTSATPAAGNLSNQAGGITYASAGVDVEAGDRAVELMKGAVKATHNSSVIGGVGGFAGLYDVSRLLTYKRPLLATSTDGVGTKVAIAQAMDIHDTIGFDLVGMVVDDIVVVGAEPLYMTDYIACGKVVPERIADIVRGIAAACSVAGTALVGGETAEHPGLLGEHEYDVAGAATGVVEADALLGPDRVRAGDVVIGMASSGLHSNGYSLVRRVINHAGWALDRQVSELGRTLGEELLEPTRVYAADCLDLARTFPVTGGSGAAVHGFSHVTGGGLAANLARVLPQGLVATVDRATWELPAIFKLVSELGNVPLADLERTLNLGVGMVAIVSPEAADAAVARLNDRGLPSWIMGTVTADSDSILKSGPDYVQGAKGVDGGAVRLVNAYAPGPT0021570_475DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933NANA
D1-29_04310306hypothetical proteinATGCACATGAAGAAAACCGGAGCCACAATCGCACTTACGAGCTCTCTCTTACTGGCTGGAGGAGCAATGGCCGGCCCAGCGTCCGCCCAAGTCGAGCAAGCCGGCCTCGTTAATGTCAACATCGGTGACGTCACTGTCCTAGAGGATGTCAGAGTGGCCGTGGCAGCCAACATCGTAGCCAACGTTTGCAACCTACAGGTCAACGCCGTGTTGCTTGCAGCGAATGTTGTGGACACAGGGGGCGACGACTTCACTTGTGTAGCTAGAGGGAATGGCCGCGACATCGTTATCACCCAGGACACTTAAMHMKKTGATIALTSSLLLAGGAMAGPASAQVEQAGLVNVNIGDVTVLEDVRVAVAANIVANVCNLQVNAVLLAANVVDTGGDDFTCVARGNGRDIVITQDTNANANANANA
D1-29_04311780COG3324Putative glyoxylase CFP32ATGCCCCATAACTCGAGTCCACGTTCGTTCCGACATGGCGAACCCTGCTGGGCGGACGTCCAGACGCGCGATGTTGAGGCTGGGAAGGCCTTCTACACTGCAGTGTTTGGGTGGCGGTTCCAGGACCTGCCGACGCCGGATGGCCGCAGCTACTCGCAGGCCTTCCTGGGTGATGACCTGGTGGCAGTGGTGGCACCCCAGAACCCGCAGCAGGAAGCCGCAGGCACACCCGCGCAATGGAACATCTACTTTGCGGCTGCCGATGTCCGCGCGGTGGCCGAGGAGGCGCCTCATGCGGGCGGAGCCGTGCAGTTCGGGCCTGAGACGGTGGGGGACAGCGGCGTGATGGTCTTCGTGGATCCGCCGGGCGGTGGTGCTACGGGCGTTTGGCAGGCCGGAACGCACACCGGCACCGCCCGCTACAACCAGCCCGGCGCCCTGTCCTGGGCGGAACTCCTGACGCCCGAGCCGCAGGCCGCCGTCGGGTTTTTCCAGCAGTTGTTCGGTCACGAGGTCACCGAGTATCCACAGGACGACGGCGGGACGTACACAACGCTGATGGTGGACGATGCGGAGGTGGCGGGGATCGCGGCCACCGAGGAGGCGGCCGGCTGGCAGATCTACTTTGGGGTCTCCGATGTGGCGGAGACTGTGCGGAAGGCAGTGGCAGCGGGAGCCGAGGTGCTGATTGCGCCTGAGGCAGAGGATGAGGAAACACCAGGCGCCACGGCCACCCTCAAGGATCCGCAGGGCGGCGTGTTCAGCCTGCTGGAGGTTTAAMPHNSSPRSFRHGEPCWADVQTRDVEAGKAFYTAVFGWRFQDLPTPDGRSYSQAFLGDDLVAVVAPQNPQQEAAGTPAQWNIYFAAADVRAVAEEAPHAGGAVQFGPETVGDSGVMVFVDPPGGGATGVWQAGTHTGTARYNQPGALSWAELLTPEPQAAVGFFQQLFGHEVTEYPQDDGGTYTTLMVDDAEVAGIAATEEAAGWQIYFGVSDVAETVRKAVAAGAEVLIAPEAEDEETPGATATLKDPQGGVFSLLEVNANANANANA
D1-29_04312234hypothetical proteinATGGGGCGCGGCCGTCAAAAGGCAAAAGCTACCAAGCAGGCTCGGGATATTAAGTACTACTCCCCGAACACTGACTATTCGGCACTTCAGCGTGAGCTGACGGGTCCGGGCAGTCGTGCCACGAGCCATTTCGCGAATGAGCCGGTTGAACCGGACTATTCGGCTTATGTGGATAAGTACGCGGACGATTTGGAAGAAGACGACGACGAGGTAGACACCCGTCGGATCGGCTAGMGRGRQKAKATKQARDIKYYSPNTDYSALQRELTGPGSRATSHFANEPVEPDYSAYVDKYADDLEEDDDEVDTRRIGNANANANANA
D1-29_04313933hypothetical proteinGTGAACGCCCAGGACGACCCTGCACGCCCATCTGAAGAAGGGCCGGGGAAGCCTTCCGGAAGCCCGGCCGGCAGTGGCCAGCGCCGCCTCCCGCCCAAGCCTTCCACGCCGCCCACGGCAAGCCAGCCGCAGGTGCCACCCGCGCCCGCTGGCGCTCCCGCAGCCGCTGGTGCTCCTCCAGCCAAGGTGCCACACGCGCCGGCAGCGCCTCCCGCACACAAGACACCCCAGACGCCCCCCACACCAGGATCAACGCCGAAGGCCCCAAAGGCAGGGCCAGGGACGGCAGGAGCAGTCCGCGGGCCAACGGCGGCGCCTCCCGCTCCTGCCCCCGAGGCACCCTTTCCGAAGAAGCCGCCGGCCCTGAAACCGGGCCGGTTCAAGGAGTTCCTCCTGAAACCCCGGCGCAACCGGCATATCCTGCTGAGGGCCGCCTTTGCGGTGGTGCTGCTGGCCGTTGTAGGAGTGCTGGTGTGGCTTGCCATGTGGCTCACGTCCAATGCCCAGCAACCATCCGCGGAAAACGACGTCCCCGGCGTGGTGGAAATTTCCCCCACCCCGCTGCCGAGCCCACTTCCGCTCCCGCGCGAAGGCGTGCCTCCGGCGGAGTACAGGCTGGGCGACTGCTTCAAGGACTTTGACCCGGAAGCCCTGTCCTCAACGCTGGTGGCCTGCGATACCGGCCACTCGGCCCAACTCGTGGCGATCTACCGGTATCCGGCAGGCGACCCCTATCCGGGCAGCGAGGCCCTCCAGGCCAAGGCCCTGGAGGCCTGCCAGGCAGCACGGCTGGCCCCCGCCGCCGACGACTACACCTTGAACTTCCGGCGCGCCTACCCGAGCAGCAGCAGCTGGGAATCGGGAGACCGCCGTGTGGACTGCTATGTCATGGCCGACGGCGGGAATGTCATCAACGCGAGCGTGTTGCCTTAGMNAQDDPARPSEEGPGKPSGSPAGSGQRRLPPKPSTPPTASQPQVPPAPAGAPAAAGAPPAKVPHAPAAPPAHKTPQTPPTPGSTPKAPKAGPGTAGAVRGPTAAPPAPAPEAPFPKKPPALKPGRFKEFLLKPRRNRHILLRAAFAVVLLAVVGVLVWLAMWLTSNAQQPSAENDVPGVVEISPTPLPSPLPLPREGVPPAEYRLGDCFKDFDPEALSSTLVACDTGHSAQLVAIYRYPAGDPYPGSEALQAKALEACQAARLAPAADDYTLNFRRAYPSSSSWESGDRRVDCYVMADGGNVINASVLPNANANANANA
D1-29_043142658clpBCOG0542Chaperone protein ClpBTTGGACGTCAAATTCACCACCAAGAGCCAGGAGGCGCTTTCGGCTGCAGCCATGAACGCCTCCACGGCGGGCAATCCGCAGGTGGAACCCGCACACCTGCTCAAGGCGCTGCTGGACCAGCGCGAGGGCGTCGCCGTCGCGCTTCTCCGCGCCACCGGCGCGGATCCGGACGCAGTCAGCGTCCAGGCGAGCAGTGCCATCAAGGCACTTCCGGCAACGTCCGGGAGTTCCACCCAGCAGGCCCAGCTCTCCCGGCCTGCCCTGCAGGCCATCCAAAATGCCAAAAACGAGGCGGACAGGCTGGGCGATACCTTCGTCTCCACCGAAGTCCTGCTGCTGGGACTCTCCGCCGGGAGTGACGCCGTCGGCCGGTTAATGCGCGACGCCGGTGCCTCCCATGAGGCGCTGCTCGCCGCACTGCCGGGTGTCCGTGGGGACCGTAAAGTCACCAGCCCGGACCCGGAAAACACCTTCCAGTCACTGGAGAAGTTCGGGACCGATCTGACCGCCATGGCGCGCTCCGCCAAGCTGGATCCTGTCATCGGCCGCGACAACGAAATCCGCCGGATTATCCAGGTCCTGAGCCGCCGCACCAAGAACAACCCCGTGCTCATTGGTGAGCCCGGCGTTGGCAAGACGGCCGTCGTCGAAGGCCTGGCCCAGAGGATCGTCGCCGGCGACGTCCCGGAGAGCCTGCGGGGCAAGACCCTGATCGCCCTGGACCTCGCATCCATGGTGGCGGGCGCCAAGTACCGGGGCGAGTTCGAGGAGCGGCTGAAGGCTGTCCTGGAGGAGATCAAAAACTCGGAAGGCCAGATTGTCACCTTCATCGACGAGATCCATACCGTCGTCGGTGCGGGCGCCACGGGGGAGTCCTCCATGGACGCCGGCAACATGCTCAAGCCCATGCTGGCGCGCGGTGAGCTGCGCCTCATTGGCGCCACAACGCTGGACGAATACCGCGAAAACATTGAGAAGGATCCGGCGCTTGAACGCCGCTTCCAGCAGGTGTACGTGGGGGAGCCGAGCGTTGATGACACCATCGGCATCCTCCGCGGCCTTAAGGAGCGCTATGAGGCCCACCATAAGGTGACCATTGCCGACGCCGCGCTGGTAGCCGCCGCGACGCTCTCCAACCGCTACATCTCGGGGCGCCAGCTGCCGGACAAGGCGATTGACCTGGTGGACGAGGCAGCGTCCCGGCTGCGGATGGAGATCGACTCCGCCCCGGAGGAAATCGACCAGCTGCGCCGTGCCGTGGACCGGCTGACCATGGAGGAGCTGGCCCTCGAAAACGAGACGGATCCTGCCTCTGTTGAGCGCTTGGCCGCGATCCGGGCGGACAAGGCCGACAAGAACGAGGAACTGGCCGCCCTCAACGCGCGCTGGGAAGCCGAGAAGGCCGGACTTAACCGGGTAGGTGACCTGAAGGCAAAGCTCGATGAGCTGCGCTCCGCCGCTGACAAGGCCCAGCGTGAAGGCGACCTGGAGACCGCCTCGCGGGTCCTCTATGGCGAGATTCCAGCGCTGGAACGCGAGCTGACCGCAGCTGCTGCCGCCGAAGCAGAAGTTACGGACAAGCCTGCCCAGATGGTTGCCGAGCAGGTCACGGCTGACGACATCGCCGAGGTCATCTCCGCCTGGACGGGTATTCCTGCCGGACGCATGCTGCAGGGCGAAAGCCAGAAGCTGCTGCACATGGAGGAGGAGCTGGGGAAGCGGCTGATTGGCCAGTCCAAGGCCGTGGCCGCCGTGTCCGACGCCGTCCGCCGTGCCCGTGCCGGCATCAGCGATCCCAACCGTCCCACCGGCTCCTTCCTGTTCCTGGGGCCAACCGGCGTTGGCAAGACGGAGCTGGCCAAGGCCTTGGCGGACTTCCTCTTCGACGACGAACGCGCCATGGTCAGGATCGACATGTCCGAGTACAGCGAGAAGCACTCCGTTGCACGGCTGGTTGGTGCGCCCCCGGGCTACGTCGGCTACGAGGAGGGCGGCCAGCTGACTGAAGCCGTCCGCCGCCGGCCGTACTCCGTGATCTTGCTGGACGAGGTGGAGAAGGCCCACCCGGAGGTCTTTGACATCCTCCTGCAGGTCCTCGACGACGGCCGGCTCACCGATGGCCAGGGCCGCACCGTGGACTTCCGGAACGTGATCCTGGTGCTGACCTCCAACCTGGGCAGCCAGTTCCTGGTGGACCAGAGCCTGGACGCCCAGGCCAAGCGGAATGCCGTGATGGCCACCGTGAACAATGCCTTCAAACCCGAGTTCCTGAACCGTCTGGACGAGGTGGTGCTCTTCGATGCGCTGTCCGTCGAAGAACTCGCACGGATCGTGGAACTGCAGGTGGCCGAACTCAGCAGGAGGCTCTACGAGCGGCGGCTCACCCTCGAGGTGACCGAAGGAGCCCGCGCCTGGCTGGCCATGTCCGGTTTTGATCCGGCCTACGGTGCCCGGCCCCTGCGCCGGCTGGTCCAGCGCGAGATTGGCGACAGGCTTGCCAAAGCCATCCTGTCCGGAGACATCGTTGACGGCGATACGGTGCTGGTGGACACGTCCGCTGACGTCAACGAACTCACGGTTGAAGGACTGGAGGCCATGGCAACTGCCGGCGCGGGCGGCCCTGGAGGCAGCGGCCTCTCTGTCCGGCGGAAGGGCTAGMDVKFTTKSQEALSAAAMNASTAGNPQVEPAHLLKALLDQREGVAVALLRATGADPDAVSVQASSAIKALPATSGSSTQQAQLSRPALQAIQNAKNEADRLGDTFVSTEVLLLGLSAGSDAVGRLMRDAGASHEALLAALPGVRGDRKVTSPDPENTFQSLEKFGTDLTAMARSAKLDPVIGRDNEIRRIIQVLSRRTKNNPVLIGEPGVGKTAVVEGLAQRIVAGDVPESLRGKTLIALDLASMVAGAKYRGEFEERLKAVLEEIKNSEGQIVTFIDEIHTVVGAGATGESSMDAGNMLKPMLARGELRLIGATTLDEYRENIEKDPALERRFQQVYVGEPSVDDTIGILRGLKERYEAHHKVTIADAALVAAATLSNRYISGRQLPDKAIDLVDEAASRLRMEIDSAPEEIDQLRRAVDRLTMEELALENETDPASVERLAAIRADKADKNEELAALNARWEAEKAGLNRVGDLKAKLDELRSAADKAQREGDLETASRVLYGEIPALERELTAAAAAEAEVTDKPAQMVAEQVTADDIAEVISAWTGIPAGRMLQGESQKLLHMEEELGKRLIGQSKAVAAVSDAVRRARAGISDPNRPTGSFLFLGPTGVGKTELAKALADFLFDDERAMVRIDMSEYSEKHSVARLVGAPPGYVGYEEGGQLTEAVRRRPYSVILLDEVEKAHPEVFDILLQVLDDGRLTDGQGRTVDFRNVILVLTSNLGSQFLVDQSLDAQAKRNAVMATVNNAFKPEFLNRLDEVVLFDALSVEELARIVELQVAELSRRLYERRLTLEVTEGARAWLAMSGFDPAYGARPLRRLVQREIGDRLAKAILSGDIVDGDTVLVDTSADVNELTVEGLEAMATAGAGGPGGSGLSVRRKGPGPT0014580_823DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695NANA
D1-29_04315336hypothetical proteinATGAAGAAATTTGTCGTTCTTTACATCGCACCGCAGTCCGCACAGGCACAGATGGCCGAGAGTTCCCCTGAAGCCGCCCAGGAAGGCATGAAAGCCTGGATGGAGTGGGCCGAACGCGCGGGCGACGGCCTCGTTGACTTGGGGAATCCGTTGGGCGCCGGCAAGGAAATCACCACGTCGGGAGCCTCCGAAACCACTACCAACGTTGCCGGTTACGGCATTCTCCAGGCCGAGGCTCTGGACGGCGCGCAGGCCTTGCTGGAGGATCACCCGCACCTCATGATGCCGGGGGCCAGCATCCAGGTCTACGAATCCCTTGACCTGCCCGGAATGTAAMKKFVVLYIAPQSAQAQMAESSPEAAQEGMKAWMEWAERAGDGLVDLGNPLGAGKEITTSGASETTTNVAGYGILQAEALDGAQALLEDHPHLMMPGASIQVYESLDLPGMNANANANANA
D1-29_04316678hypothetical proteinATGAGCGGGTTGGGCAGGAAATTTACGACGGCGGCTGCCGTGCTGGCGCTGGCGGCGGGGCTGAGCGGGTGCAGCCTCTTTCCTTCGCCGCCGCCTCCGTTGCCGCCCAGTCCCACGTCCCTGGTAGCGCCCGCCTGCCCCTTCCTGGGTGAGGAGGACGTGGTCCCGGTCCGGATCCCCAGAGGCACCCCGAAAGAAGCCATAGGCGGGGTGCTGAACTCCTATGAAGCGTGGCTCAACGCCGGCTCGGAGGTTCTGACCTCGTGGACGGCGGCCGGAGTTGTGCCCGAGAAGTGCATCGATGAGCTGGCGGGCCGCAACGCGGAGGCTTACGCCACCACCATTTTCACCTCGCACTCCGACGTCGCGTGGCAACAGTACTTTAGCGCCGTGGAGGCCATGAATGCCCGGACCCTGCGGTCTGTTGCGACGGACGAACCTGGCCAGGGCGGCCGCGGAACCTTTGAATTGGTGCAGGAGATCGATTCCAGTGCCACGGCCAACGGAACCTTCCTGAAGTTCGACGCCGTGTACCGCCCACGCCCGGGTGGCGACGCTTCAGGAGGTTCCTGGGAGGGGTGGGAGACACGCACCCGATGGTACGTGGAGCTGGTGCCGGCAGGCGACTTCCTGGTGATCAACTACATCGAGCAGACCCCTTCGGCCCCCCAGCCCTGAMSGLGRKFTTAAAVLALAAGLSGCSLFPSPPPPLPPSPTSLVAPACPFLGEEDVVPVRIPRGTPKEAIGGVLNSYEAWLNAGSEVLTSWTAAGVVPEKCIDELAGRNAEAYATTIFTSHSDVAWQQYFSAVEAMNARTLRSVATDEPGQGGRGTFELVQEIDSSATANGTFLKFDAVYRPRPGGDASGGSWEGWETRTRWYVELVPAGDFLVINYIEQTPSAPQPNANANANANA
D1-29_043171065modCCOG1118Molybdenum import ATP-binding protein ModCGTGACGTTCACGGTCCAGGCAGCCGTGGAGGCCCGTGGCTTCGATGTCTCCCTCACACTGGGGCCGGCAGAGACTGTAGCGGTGATGGGTCCGAACGGCGCAGGCAAGTCCTCCCTGCTGTCCGTCGTTGCGGGCTTGCTGCACCCGGACTCGGGCAGGGCGGAGCTCGACGGGCGGGTCCTGTTTGACCTCGCGGACGGCAGGGGTGAATGGACAGCTCCGCACCGGCGCGGCACGGCACTCCTGGCGCAGGAACCCCTGCTTTTCCCGCATCTTAGCGCGCTGGACAACGTGGCCTTTGGACCCCGCAGCGCGGGTGCCTCGAAGCACCACGCGCGGGAATCGGCCAGGCGGTGGCTGGCTGAAGTGGAAGCCGAAGGGCTGGCCATGCGGCGACCAGCCGAGCTGTCCGGCGGGCAGGCGCAGCGGGTGGCTGTGGCGAGGGCGCTGGCAGCGGATCCCGGGCTCCTCCTGCTGGACGAGCCCATGGCCGCCCTCGACATTCATGCTGCCCCGCTGCTGCGGCGGCTGCTGAAACGGGTTCTCGCCGGCCGGCGGGCCATCATCATTACGCATGACGTGCTGGATGCCCTGATGCTGGCGGACCGGGTGGTGATCCTGGAGAACGGCCGGATCAGCGAGGCAGGCCCCACCCGTGACGTGTTCCAGCGACCGAAAAGCCGGTTCGCCGCAGGGCTGGCCGGGCTGAACTTCATCCCGGGCAGGATCACGGCGCACGGCCTGGAGTCCGGGACCCTGGCCATCTACGGGCGGCACGATGACTTTCCCGGCCCGCTGCCCACCGGACAGCCCGGCGTGGCGGTCTTCCCGCCGTCGGCCGTTTCAGTGTTCCCCCATGAGGCGCACGGCAGTCCGCGGAATTCCTTCGCCGTGACCATCGCCCACCTGGAGCCGCACGGGGACCTGATCAGGGTCCGCGGCGGCGACGGCGGGTATTTGAGTGCCGACATCACCCCTGAAGCGTCTGCTGACCTGGGGCTGGCGCCGGGGATGCAGGTGTACTTTGTCATCAAGGCTGGCGCGGTGGCCATCTACCCCGGCTGAMTFTVQAAVEARGFDVSLTLGPAETVAVMGPNGAGKSSLLSVVAGLLHPDSGRAELDGRVLFDLADGRGEWTAPHRRGTALLAQEPLLFPHLSALDNVAFGPRSAGASKHHARESARRWLAEVEAEGLAMRRPAELSGGQAQRVAVARALAADPGLLLLDEPMAALDIHAAPLLRRLLKRVLAGRRAIIITHDVLDALMLADRVVILENGRISEAGPTRDVFQRPKSRFAAGLAGLNFIPGRITAHGLESGTLAIYGRHDDFPGPLPTGQPGVAVFPPSAVSVFPHEAHGSPRNSFAVTIAHLEPHGDLIRVRGGDGGYLSADITPEASADLGLAPGMQVYFVIKAGAVAIYPGPGPT0008445_1735DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017NANA
D1-29_04318855hypothetical proteinATGAGCCGCCGCAGAGCCCCCACCTACACGGGCGTTCCCGCGTGGATCTACGCCGTGGCCGCCGCCGGCGGGTTGCTGGTGTTGCTCCCGCTGGCCGCCATGGTGGCCCGGGTCAACTGGCCCCAATTCCTCCCACTGATCACCTCCGACTCCTCGCTGACGGCACTGGGCCTGAGCCTGCGCACCTCCGCCGCCAGCACCGCGCTGTGCCTCCTGCTGGGGGTTCCCATCGCCCTGGTCCTGGCGCGGGGCAGCTTTCCGGGCCAGCGGCTGCTCCGATCCCTGGTGCTGCTCCCGCTGGTGCTTCCGCCCGTGGTGGGCGGCATCGCCCTGCTGTACACGTTTGGCCGGCAGGGCCTGCTGGGCAGCACCGTTGAGGTCCTGGGCCTGCAGATAGCGTTCTCCACCACCGCGGTGGTCCTGGCCCAGACGTTTGTGGCCCTGCCGTTCCTGGTGGTCAGCCTCGAGGGTGCCTTGAGGACGGCGGGCCCCCGGTACGAGGCCGTGGCGGCCACGCTGGGTGCCCGGCCCAGCACGGTTCTTCGCCGGGTCACGCTGCCGCTGGTGCTTCCCGGCCTGGCCTCGGGCGCCGTGCTGTCCTTCGCCCGCAGCCTGGGCGAGTTCGGCGCAACGCTCACTTTCGCCGGGAGCCTTGAAGGAGTCACCAGGACGTTGCCGCTTGAAATCTACCTCCAGCGTGAAACGGATGCCGATGCCGCCGTCGCCCTTTCCCTGGTCCTGGTGGCAGTAGCGGTCTCGGTGGTGGCCCTCGCGTACCGCAGCCCGCGCCCTTCCGGCAGCGCCACTGCAGAAAGTACGACGGCGCCATCCGCCACCGGTAGGGGTGTCCAGTGAMSRRRAPTYTGVPAWIYAVAAAGGLLVLLPLAAMVARVNWPQFLPLITSDSSLTALGLSLRTSAASTALCLLLGVPIALVLARGSFPGQRLLRSLVLLPLVLPPVVGGIALLYTFGRQGLLGSTVEVLGLQIAFSTTAVVLAQTFVALPFLVVSLEGALRTAGPRYEAVAATLGARPSTVLRRVTLPLVLPGLASGAVLSFARSLGEFGATLTFAGSLEGVTRTLPLEIYLQRETDADAAVALSLVLVAVAVSVVALAYRSPRPSGSATAESTTAPSATGRGVQPGPT0008440_355DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018NANA
D1-29_04319831modACOG0725Molybdate-binding protein ModAATGAGGCTGCCAGTTGCAGGAAATCTCAGAGTTGCAGGAAAGCTGCTGGCCGCTGTGCTCGCCACCGGCTTCCTGGCCGCCTGCTCGCCGTCGGGGCCGGCTGGGCCGGCCGGGCCGGGGGGAAACAACGATGGCGGCGCCTCCGGATCCGGTGGCACAGTTACGGTTTTCGCCGCGGCCTCGCTCAAATCCCCCTTCACCGAGTTGGCCAGGCAATTTGAGGCCGCCAACCCGGGAACCAGGGTCACGCTCAATTTTGCCGGCTCTGCAGACCTGGCAACCCAGATCATCCAGGGTGCCCCGGCGGACGTCTTCGCCTCAGCGGACAGCCGGAACATGGGCAAGCTGGTGGATGAGGGACTGGTGGAGGATGAACCGCGAGACTTCGCCAGCAACACGCTCACCATCGCCGTTCCGCCCGGCAACCCCGCCGGCATCTTCACGTTCCGTGATCTGGGAAAGACCGGCACCAAGGTGGTGGTCTGCGCCAGCCAGGTGCCGTGTGGCGGAGCGATCCGCGGCATCACAGAAGAGACCGGCACCACGCTGAGCCCTGTCAGCGAGGAAACGTCCGTCACCGATGTCCTGGGCAAAGTCACGTCGGGCGAGGCTGACGCCGGGCTGGTCTACGTCACGGATGCAAAAGGTGCTGGCGGGAAGGTGGAGTCCGTGCCCTTCCCCGAGGCCGCCAAGGCCGTCAACACCTACCCCATTGCCACGGTGAAGGGCGCCAGGAACAAGGCCGCGGCAGAAGCATTCAGTGATCTTGTCCTGGGCATCGCGGGCCAGGAGGTGCTGGACGCTGCAGGCTTCGGTGCGCCGCCGCCATGAMRLPVAGNLRVAGKLLAAVLATGFLAACSPSGPAGPAGPGGNNDGGASGSGGTVTVFAAASLKSPFTELARQFEAANPGTRVTLNFAGSADLATQIIQGAPADVFASADSRNMGKLVDEGLVEDEPRDFASNTLTIAVPPGNPAGIFTFRDLGKTGTKVVVCASQVPCGGAIRGITEETGTTLSPVSEETSVTDVLGKVTSGEADAGLVYVTDAKGAGGKVESVPFPEAAKAVNTYPIATVKGARNKAAAEAFSDLVLGIAGQEVLDAAGFGAPPPPGPT0008435_2223DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020NANA
D1-29_04320411hypothetical proteinATGTCCAGTATCCGCGTTTCGGAAGCAGCCCGGTTCCTAGGCGTCAGCGACGACACCATCCGCCGCTGGATGGAGAACGGCAGCCTGACCCCCGTCAAGGACGCCGCCGGCCGGCTCTCCGTGGACGGCCTGGAGTTGGCCCATCACGCACAGAAGCTGGCACAACTCCCGGACGATCCGCACAGGACTGTCAGTTCGGCACGCAACAGGTTCGTAGGCCTGGTCACCGGCATCACCATGGACACCGTTATGGCCCAGGTGGAGCTGCAGTGCGGGCCGTTCCGCGTCGTGTCCCTGATGAGCAGCGAGGCTGTCCGCGAGCTGGGCCTGGAGCTTGGATCCGTGGCCACTGCCGTGGTCAAGGCCACCACCGTGATTATCGAGACGCCGCACGGAAAGGGCTCCGCATGAMSSIRVSEAARFLGVSDDTIRRWMENGSLTPVKDAAGRLSVDGLELAHHAQKLAQLPDDPHRTVSSARNRFVGLVTGITMDTVMAQVELQCGPFRVVSLMSSEAVRELGLELGSVATAVVKATTVIIETPHGKGSANANANANANA
D1-29_043211335mcrA_3Mitomycin radical oxidaseATGAAGTGGATAAAGCGGGACAGCCCGGACTACCAGGAGGCCCGGAAGGTCTTCAACGCCATGATCGACCGCAGGCCGGCCGTCATCGCCCAGTGTTCCAACGATGCCGACGTGGCCGAGGCCCTTCGGTACGGCCGGGAAAACTCGCTGCCCATTGCCGTCCGCGCCGGCGGGCACTCAGTGGCCGGAATGTCCACCAACGACGACGGCATAGTCATTGATGTGCGCCCCATGAAGTCCATCCACGTGGACCCGGAAAGCGGTATCGTCACCGCCGGCGCCGGCTTAACCTGGGGCGAGTTCGACCACGCCACGCAGGAGTACGGCCTGGCCGTGACCGGCGGCAGGGCCTCCACTACCGGAGTGGCAGGATTTACGCTGGGCGGCGGGTCCGGTTGGCTGGAACGTTCTTACGGCTTCGCGTGCGACAGCCTGGTATCAGTGAACCTGGTGACGGCCGACGGCGACCGCGTCACCGCGAGCGCACGCGAAAATCCCGACCTCTTTTGGGCTCTGCATGGCGGAGGCGGGAACTTCGGGGTGGCAACCTCCTTCACGTTCCAGGCGCACCGGGTGGGTCCGGTGGTTCATGCCGGCCTGCTGCTGTGGCCCGGCGATGCCGCAGGGGACGTCACCCCGGCGTTCAGGGACCTGGCGCTTGCGGCTCCTGACGGCGTGGGCCTTGGCCTGTTCTATTTGACTGCCCCTTCCGAGGATGGCATTCCCGAGGAGATGGCGGGAAAGATGGCAGTGGGGCTGGCCTACCTCTACGCCGGTGACCCCGAGCAGGGATCCGAGCATGCCAGGCCATTCCGTGAGCTCGGGCCCGCCGTGGACCTCGTGGGAGACACCAGCTACACGGCGTTCCAAAGCTCCCTCGACGACCCTGCCGACCACTACAACTACTGGAGTGCCGACCACCACGACGATCTGCCCGATGATGCGCTGGACCTGTTTGTGGAATCGGCACGGAACCTGCCCGACGCCACCTCCCAGCAGATCATCATCCGCTGGGGCGGGGCGGTGGGAGGGGACGCGGCCGCCGCAACTCCCCTGATGAACCGGAACTCCGCCTGGGTCAGCCATCCCTACGGGATCTCCCCCACCGCTGAGCAAGGCCAGGTTGCCAAGGCCTGGGTGAAGGGCTTCCGGGAGAAGATCTCGCCGTATGCCACGGGTGGCGTCTGGCTCAACTTCATTGGCAACGAGGGCCAGGACCGGATCCGGGCAGCCTTCGGCCAGCAGAACTACGCGCGCCTGGCCAGGGTCAAACGGGAGTTCGATCCGCAGAACGTGTTCCGCGGCAACCAAAACATCCTGCCGGCAGAGGGCTGAMKWIKRDSPDYQEARKVFNAMIDRRPAVIAQCSNDADVAEALRYGRENSLPIAVRAGGHSVAGMSTNDDGIVIDVRPMKSIHVDPESGIVTAGAGLTWGEFDHATQEYGLAVTGGRASTTGVAGFTLGGGSGWLERSYGFACDSLVSVNLVTADGDRVTASARENPDLFWALHGGGGNFGVATSFTFQAHRVGPVVHAGLLLWPGDAAGDVTPAFRDLALAAPDGVGLGLFYLTAPSEDGIPEEMAGKMAVGLAYLYAGDPEQGSEHARPFRELGPAVDLVGDTSYTAFQSSLDDPADHYNYWSADHHDDLPDDALDLFVESARNLPDATSQQIIIRWGGAVGGDAAAATPLMNRNSAWVSHPYGISPTAEQGQVAKAWVKGFREKISPYATGGVWLNFIGNEGQDRIRAAFGQQNYARLARVKREFDPQNVFRGNQNILPAEGNANANANANA
D1-29_043221227hypothetical proteinATGTTCCCCCTTGTGAAGCGTTTCCACCTTCCAGCCCGCCAGGCGGCGGCTCCCGTCACGTCAGCGGCAGTGTTGCTGGCCCTTGTGGTGCTGGAGCAACGTGGTTTCAACCGGGACAGCGCCGTGTTGTTTGGGCTGCTTAGCGCTGTAGCCGTCGCCCGCCTGATTCCACTGGGAGCCCTGGCTTTCGTGGCCGGCGTCCTGGTGCTGCAAACCTTCAAGCTGGCACCGGGCGTTATGGTCTCCGGCGTCCTCAGCTACATAGCAGTCCCCCTGGCCATCCTCTTCGCCACCCTGGCCTACCGGGGCCGGCACCGCTGGCTGTTGCCGGCGTTTGCCGCCGCATCGGCCGGGCTCATCACCATCATCTGGTTCAGTGACGGCACCTGGATCAACTTCGTTTTCGGCGCCCAGCTGTACGGCCGAGGCGACGTCCGCACCGGGACCTACATTTTCCTGGTCTTTGGCGCTTTCGCGGCCTTCCACCTCGCCGCCTGGGCCGGCGGGCTGGCCGTCAATAACGCCTCCAGTAGCCGCCGGGCTCAGCTCCGGGCGGAGAGGAACCTGCGGGAGGCCTCCACCGATCTCGCCGTAGAGCAGGAACGCAACAGGATTGCCCGTGAACTCCACGATGTCCTGGCCCACTCCCTGACCGTCATCACCGCGCAGGCCGAAGGAATCCGCTACATACACCGCACGGAGCCCGATACCGTGGAGGAATCCGCCAGGATCATTGCCTCGGCAGCCCGAACGGCATTGCTGGAAACCCGGCACATGCTAGAGAACGTCTCGCCGTCGGACTCCTCCCCTGCGCCGTCCCTCCGCCAGCTGGATTCCCTGGCCGGCCAGTTCTCTGCGAGCGGCATGACGGTCAGCGTGGACGCACCCGAGATGCCGCCCGCGGTGACCCCCGTGCAGGAACTCACGGCTTACCGCCTGATCCAGGAAAGCCTGACAAATGCGTTCCGTCACGGCGACAGGTCCAAGGGGGCCACCGTTTCGGTCACCCCCGGCAGGGATGGGCTCGCGGTTCGGGTGAGCTCTGCGCTTGTCACGGAAAACCCGAAGGCAGGCTCTGCCTCCAATACTTCTGCTTCCGGCACCTCTGCCCGTGCGGGCACCGGACGGGGCATCCCTGGCATGAAGGAACGCGCGACGGCGGTGGGCGGCTCGCTCACTGCGCGCACCACGGGGACGCAGTTCGATGTGGAGGCACTCCTGCCGTGAMFPLVKRFHLPARQAAAPVTSAAVLLALVVLEQRGFNRDSAVLFGLLSAVAVARLIPLGALAFVAGVLVLQTFKLAPGVMVSGVLSYIAVPLAILFATLAYRGRHRWLLPAFAAASAGLITIIWFSDGTWINFVFGAQLYGRGDVRTGTYIFLVFGAFAAFHLAAWAGGLAVNNASSSRRAQLRAERNLREASTDLAVEQERNRIARELHDVLAHSLTVITAQAEGIRYIHRTEPDTVEESARIIASAARTALLETRHMLENVSPSDSSPAPSLRQLDSLAGQFSASGMTVSVDAPEMPPAVTPVQELTAYRLIQESLTNAFRHGDRSKGATVSVTPGRDGLAVRVSSALVTENPKAGSASNTSASGTSARAGTGRGIPGMKERATAVGGSLTARTTGTQFDVEALLPNANANANANA
D1-29_04323669lnrK_2COG2197Transcriptional regulatory protein LnrKGTGACTGAAATAGACGGGAAAGCGCCAGCGATCCGGATTGCCCTGGTGGACGACCAGCCCCTGTTCAGCGCAGGCCTGAAGATGATCCTGCGAAGCCAGGCCGACCTGGACTTCGTTGGGGAGGCACACAATGGTGCGGAAGCCGTGGAACTGGCAGCCGCTGTCGGGCCTGACATCATGCTGATGGATATCCGGATGCCCGTCATGGACGGGATTACCGCAACCCGCAGCATTACCTCCGCTCCCGGTGCTCCGAAGATCATTGTGCTCACCACTATCCAGCACGATGAGGCGGTGGTCCGGGCCATCCAGGCGGGCGCCGCCGGATTCCTGACCAAGGATGCCACGCCCGAATTCCTGCTCGCTGCCATCCGGACCGTCCATTCAGGCCACGCCGTGATGGCTCCGCACGCCACGAACCAGCTGCTTCGCGACTACACCACGCCGTCGGCCGGAAACCCGGCTGCCCTGGCGGCCTTGTCTGAACGGGAAAAGGATGTGTTTCTGCTGGCCGCGGAAGGCCAGGGGAACGCCGAAATCGCCGCCGGCCTGGTCCTGAGCGAGGCGACGGTGAAGTCCCATGTGGGCAGCATTCTGGCAAAACTCAAGCTCCGCAGCCGGATCCAGCTGGTGGCCTACGCCTACCAGAATGGCCTGCTCGGCGGCTGAMTEIDGKAPAIRIALVDDQPLFSAGLKMILRSQADLDFVGEAHNGAEAVELAAAVGPDIMLMDIRMPVMDGITATRSITSAPGAPKIIVLTTIQHDEAVVRAIQAGAAGFLTKDATPEFLLAAIRTVHSGHAVMAPHATNQLLRDYTTPSAGNPAALAALSEREKDVFLLAAEGQGNAEIAAGLVLSEATVKSHVGSILAKLKLRSRIQLVAYAYQNGLLGGPGPT0014870_188DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_04324873hypothetical proteinATGAAAAGGAAACTCATCGGACTCGCCGTGCTCGCGGCAGGGGCAGCGGCAGCCCTCGCGGCCTCAACTGTGCCGGGCGGTGCCGTCACTGCCTCAGCCTCACCCGTCAGCGGGATTACGGCTGAGGCCCAGTTGTATGCCAGCGCGGATGCGGCAGCTGAAACGGGCCGGGCCGCGGCCATCACGAAGTGCATGGCGGCAGCAGGTTACGACTACGCCCCGCAGGTGGCGGCTTACAAGGTCGATTTCAATGCCAACATGGGCCTCAAGCGCCTGGACGTGGCGGCCGCGAAAGCGGACGGGTATGCCTCGCTGCAGACGGCAGGGCCTGGCGAACCGGCGGACGGGACGGTCGAAGCCGCACTCTTCGCCGACCCCGCCTTTGTGGCCGCCCTGTCCGGAACCGGGCAGGACGATGACATCGTGCAGGTGAACGGCACCGGGCTGGGCACGTCCGGCAGTGGCTGCCGCGGGCAGGCGGCAACGGCGATCTACGGCAGCATGGAGAACTACATTCTGGCGACCGGAGTGGCAGGAAACTCACTCAACTCGGCTGCCGGCGCGGCGATGTCCGATTCAGGCTTCCAAAAGGCCATCGATGCCTGGAAGGACTGCATGGCTTCCTCGCCCTACGCCAACTTTCGCAGCCCGGCGGACGCGGTCAGTGCCGGAGTCCAGGCCGGCGGACTCAACGAGCTCAAGATCGCCGTGACAGACGCGACCTGCCGCGAACAGGTCAGCTTTCACGGCCGCCTGGATACTGTGCTGGACAAGTACCTCACCACCCGAATGCAGGAGCTGGAGCCGGAGATCACCAGGGTGAGGGAGATCCGGAAGCAGGCGGCTGCCCGGGCAGCCGAACTGACGAGGTAGMKRKLIGLAVLAAGAAAALAASTVPGGAVTASASPVSGITAEAQLYASADAAAETGRAAAITKCMAAAGYDYAPQVAAYKVDFNANMGLKRLDVAAAKADGYASLQTAGPGEPADGTVEAALFADPAFVAALSGTGQDDDIVQVNGTGLGTSGSGCRGQAATAIYGSMENYILATGVAGNSLNSAAGAAMSDSGFQKAIDAWKDCMASSPYANFRSPADAVSAGVQAGGLNELKIAVTDATCREQVSFHGRLDTVLDKYLTTRMQELEPEITRVREIRKQAAARAAELTRNANANANANA
D1-29_04325870hypothetical proteinATGGCCATTTTTCTGGACCCGCCCCTTTGGCCTGCCCACGGAACACACTTCTCGCATCTCATCTCGGACAGTTCACTCGAGGAGCTCCACGCCTTTGCCTCTGCAGCCGGCATTCCGGAACGGGCGTTCGACTGCGACCACTACGACGTCCCGGAACGCCGCATTGAGGACCTGGTGGCCGCCGGGGCTGTCCCGGTTGAGGGGCGGATCCTGGTGCGGAAACTTATTTCCAGCGGGCTGCGCATCCCGGCTCGCCAGCGCAACGGGTCTCTGAAAGTGCCGCTGCTGAACCGCTGGAACTCTGTTATGCCGGGCCATGATGCACTGTTCCTGGACCTGCTGGACCGTTGGGGCGAAGAACACCGCAAGTATCATGGCCGCACCCACCTGCTCGCCGTGCTGGAGGCCCTGGACCTGCTCAGCGAACCCGCCGAGCCTCCCCGCCCGGTGGTCCTCGCAGCCTGGTTCCATGATGCCGTCTACCGCGGTATTGCCGGCCAGGATGAGGAGGAATCAGCCCGGCTCGCCGAGGACAGGCTGGCTGACGCCGGGCTGCCGGCCGCGGACGTCGAGGAGGTTGCCCGCCTGGTCCGGCTGACCGCTGACCACTGCCCGGAACCAGGGGACGACGACGGCGCCCTCCTTTGCGATGCTGACCTTTCGGTCCTCGGCGGCGAACCGGAGCCCTACGCCCGTTACCTGGCGGCCGTCCGGGAAGACTACGCGCACATCGGCGACGCCGACTTCGCGGCCGGACGCGCCGCCGTCGTACGGCGCCTGCTGGAACTGGACCCGCTGTTCCACACTGAACGGGCGCAGGAGCTGTGGCTGGACGCTGCCCGAAGCAACCTTCAGGGCGAGCTGGCCTGAMAIFLDPPLWPAHGTHFSHLISDSSLEELHAFASAAGIPERAFDCDHYDVPERRIEDLVAAGAVPVEGRILVRKLISSGLRIPARQRNGSLKVPLLNRWNSVMPGHDALFLDLLDRWGEEHRKYHGRTHLLAVLEALDLLSEPAEPPRPVVLAAWFHDAVYRGIAGQDEEESARLAEDRLADAGLPAADVEEVARLVRLTADHCPEPGDDDGALLCDADLSVLGGEPEPYARYLAAVREDYAHIGDADFAAGRAAVVRRLLELDPLFHTERAQELWLDAARSNLQGELANANANANANA
D1-29_04326420hypothetical proteinATGAACCTGCGAATCCAAGCCGTCTGCATCGACTCCACGAATCCCAAAGTGCCCGCAGATTTTTGGGAGAAAGCCCTGGGGTGGCGCCGGACGTATGAGGTGGAGGACGAGATAGTCCTCGAACCTCCGGCAGGCAGCCCCGAGGACGGCGTCTCACCGGACCTGCTGTTCCTCAAGGTGCCAGAGCGCAAGGAGATTAAGAACAGGCTGCACCTGGACCTTCGCCCGGAAGACCAGGCCGCGGAGGTCAAGCGCCTGCAGGAACTGGGCGCCCGCCGTGTATCGGTAGGCCAAGGGGATGACGTGACCTGGGTGGTGCTGGCGGACCCGGACGGCAACGAGTTCTGCGTGCTCCGCGCCCTCCGGACGGAGGAGCTGGAAGCCCAGGGACTGGTGCCGGGCGTTGAAACAAAGCCTTAGMNLRIQAVCIDSTNPKVPADFWEKALGWRRTYEVEDEIVLEPPAGSPEDGVSPDLLFLKVPERKEIKNRLHLDLRPEDQAAEVKRLQELGARRVSVGQGDDVTWVVLADPDGNEFCVLRALRTEELEAQGLVPGVETKPNANANANANA
D1-29_04327402yccFCOG3304Inner membrane protein YccFATGAAGACACTGCTCAACATCATCTGGCTGATCTTTGGCGGCTTCTGGCTTGCCCTTGGCTATTTCCTTGCTGGAATTATCTGCTGCCTGCTTATCATCACCATTCCGTGGGGGATCGCCTCATTCCGGATTGCCGCGTATACGCTGTGGCCGTTCGGGCGCACAGTGGTGGACAAGCCTGGCGGAACTGGCATCTTCTCGCTGCTGGGCAACGTGATCTGGCTGCTGGTGGCTGGGATCTGGATCGCGATCGGGCACGTGGTCACCGCCTTTGCCATGGCCATCACCATCATCGGCATCCCGCTGGCCATCGCCAACCTCAAGCTGATCCCGGTGTCCCTGATGCCGCTGGGCAAACAGATCGTTCCCACTGACGCGCCGTTCGTCACCAGCTACCGCTAAMKTLLNIIWLIFGGFWLALGYFLAGIICCLLIITIPWGIASFRIAAYTLWPFGRTVVDKPGGTGIFSLLGNVIWLLVAGIWIAIGHVVTAFAMAITIIGIPLAIANLKLIPVSLMPLGKQIVPTDAPFVTSYRNANANANANA
D1-29_04328597trpFCOG0135N-(5'-phosphoribosyl)anthranilate isomeraseATGTTCGTCAAAGTGTGCGGGCTGAGTACGCCCGAATCTGTCCGGGAGGCCGTGGCCGCCGGAGCGGACGCTGTCGGCTTTGTCCTGACGGCCAGCCCCCGTGTGGTGTCGCCGTCGCAGGTGCCAGCCCTCCTGGACAGCGTTCCCGACGGCGTTACGGCCGTTGGCGTCTTCCGGCACGAGCCTGCCGCGGATGCGGTGGCCATTGCCCGCGCCGCCGGGCTGCAGTGGGTCCAGTTGCACGGGGAGCGCACCCCTGGGGACGTCGCTACCGTCCACGACGCCGGCATGAAACTGATCAGGGCGGTCACCATGGGGGCGGGGCAGGCAGCCTTCGGCAACTGGGGCGAGGAACTCCTGCTGGTGGACGCCGCCGTCCCCGGCTCCGGCGAGGCATGGGATTACAGTTCGGTCAGGACGGCTGGACTGGAGGGCCGTCACTGGCTGCTGGCCGGCGGCCTTGATTCCGCCAACGTCGCAGAGGCTTCCGCTGCTGCAGGTGCGTGGGGAGTTGACGTGTCTTCCGGCGTCGAGGTTTCCCGCGGGGTGAAGGACCTGGAGAAAATCCGCGCCTTCGTCCATGCAGCCAAGGGCTAGMFVKVCGLSTPESVREAVAAGADAVGFVLTASPRVVSPSQVPALLDSVPDGVTAVGVFRHEPAADAVAIARAAGLQWVQLHGERTPGDVATVHDAGMKLIRAVTMGAGQAAFGNWGEELLLVDAAVPGSGEAWDYSSVRTAGLEGRHWLLAGGLDSANVAEASAAAGAWGVDVSSGVEVSRGVKDLEKIRAFVHAAKGPGPT0007115_3404DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007115-trpF-K01817NANA
D1-29_043291695hypothetical proteinATGCGCAGTCTTTCCTTCATCCGTGCCGGTGCCGCCGCTGTTCTTGCGCTGATGCTCTTGGCCGCACCGATCGTCGCGGATGCCGCCTACGCCGCCCAGGCTGAGACCAACACCATCGCCGTCGGCCGACTTCCGCAGGGGGTGGCTGTTGATCCGGTGACGCACACCGCCTATGTCGTCAACACTGAAGACGGAACTGTTTCCGTCATCAATGGGAACACGGTGACCAGCACCATCCCTGTAGGCGATCACCCTTTGGGGGTGGCAGTGGATCCCGTTACGCACACTGTCTACGTCACGAACGGCGGCAGCCAGTCGGTGTCCGTGATCAAGGGCAACACCGTGACCGGCACCATCCCTGTCGACAGCAGCCCTTATGGAGTGGCGGTGGACCCGGAGACGCACAGGGTCTACGTCACCCACCCTTACGCCAACGTGGTCTCTGTGGTTAGTGGAGCTGCCGTTACCAGCACTATCCCGGTCGGGAATGGACCGCACGGGGTGGCGGTGGATCTGGCGACGCACACGGTCTACATTGCGAACCTCTACGACGGCACCGTATCCGTGATTGACGGAACCGCTGTCAGCAGCACCATAACTGTTGGTGTCGGACCTCTGGGAGTGGCGGTGGATCCGGGGACGCACACCGTCTACGTCACCAACCCCTCGGCGAGCAGCGTGAGTGTTATTAACGGGACGACCGTGACCGGCAGCATTGCCTTCGGCAACAGGACTCCGAATTGGGTGGCGGTCGATCCGCGGACACACACCATTTATGTGACCCACGTATATTCGGACAAAGTGTCAGTGGTTAACGGAACCACGGTGACCAGCATCATTTCCGTCGGAAGCGCACCAGTGGGAGTGGCGGTGGATTCCACGATGCAAACGGTCTATGTCACGAACGCTGTCAGCGGGACAGTGTCAGTGATCACGAACTTAGTCAAAAAGGGCTTCGATGCTGATGGCCACCCTGACGTTTTGGCCCGTGATGGCAGCGGTGCCCTCTGGCTTTACCCGGGCAACGGCACCGGCGGATGGCTGACCCCGGTCCAGGTCGGCTCCGGCTGGAACGTCATGACCGCCATCGTAGGCCCAGGCGACTTCAATGGCGACGGCCACGCAGACGTCACGGCCCGCGACGGCAACGGTGCCCTCTGGCTTTACCCCGGCAACGGCACCGGCGGATGGCTAACCCCGGTCCAGGTCGGCTCCGGCTGGAACGTCATGACCGCCATCGTAGGCCCAGGCGACTTCAATGGCGACGGCCACGCAGACGTCACGGCCCGCGACGGCAACGGTGCCCTCTGGCTTTACCCCGGCAACGGCACCGGCGGATGGCTAACCCCGGTCCAGGTCGGCTCCGGCTGGAACGTCATGACCGCCATCGTAGGCCCAGGCGACTTCAATGGCGACGGCCACGCAGACGTCACGGCCCGCGACGGCAACGGTGCCCTCTGGCTTTACCCGGGCAACGGCACCGGCGGATGGCTGACCCCGGTCCAGGTCGGCTCCGGCTGGAACGTCATGACCGCCATCGTAGGCCCAGGCGACTTCAATGGCGACGGCCACGCAGACGTCACGGCCCGCGACGGCAACGGTGCCCTCTGGCTTTACCCCGGCAACGGCACCGGCGGATGGCTAACCCCCGTCCAAGTCGGCTCCGGCTGGAACGTCATGACCGCCATCATCTAAMRSLSFIRAGAAAVLALMLLAAPIVADAAYAAQAETNTIAVGRLPQGVAVDPVTHTAYVVNTEDGTVSVINGNTVTSTIPVGDHPLGVAVDPVTHTVYVTNGGSQSVSVIKGNTVTGTIPVDSSPYGVAVDPETHRVYVTHPYANVVSVVSGAAVTSTIPVGNGPHGVAVDLATHTVYIANLYDGTVSVIDGTAVSSTITVGVGPLGVAVDPGTHTVYVTNPSASSVSVINGTTVTGSIAFGNRTPNWVAVDPRTHTIYVTHVYSDKVSVVNGTTVTSIISVGSAPVGVAVDSTMQTVYVTNAVSGTVSVITNLVKKGFDADGHPDVLARDGSGALWLYPGNGTGGWLTPVQVGSGWNVMTAIVGPGDFNGDGHADVTARDGNGALWLYPGNGTGGWLTPVQVGSGWNVMTAIVGPGDFNGDGHADVTARDGNGALWLYPGNGTGGWLTPVQVGSGWNVMTAIVGPGDFNGDGHADVTARDGNGALWLYPGNGTGGWLTPVQVGSGWNVMTAIVGPGDFNGDGHADVTARDGNGALWLYPGNGTGGWLTPVQVGSGWNVMTAIINANANANANA
D1-29_04330666vesProtein VesATGGAGATCATCCGTTATGCAGAGCTCAGGCCCCAACCATGGCGCAACGGCGGTGGTGTGACCCGGGAACTGGCCAGCCATCCCAAAGCAGCCTCCGCCCAGGATGGTGCCTGGGATTGGCGCGTGAGCATCGCCGAAGTCAGCAAGGCAGGCGACTTCTCGGGGTTCCCCGGGATGGAACGCGTGCTGACCGTGATCGACGGTGAACTGCTCCTCCTGACCGTCGACGGCGCCGAGCACCCGCTGGAAAAATACCGGCCCTTCAGGTTCTCCGGCGAAGCCGCCAGCCACGGCGCACTGCCCACGGGTGACATCCGGGACCTGAACGTCATTACCCGGACCGGTTCCTTCAAGGGCTACACGTCCATCATCGAGCTGTCCAAGAAGCGCGCCCACCCCCTCTTTGAGGGCCAGCTGGGCGTCCTGCTGCAGGGCCAAGCCACTGTCAGCGCGGGTGCAGCAGAGGAAGCCGGAGATGGTGCCGAACAAGACAGTGCCGAACATGACAGTGCAAAACCGGAAGCCGCCGCCCCGGCAGCGGAACCCGAGGCACTGAGCCGTTACGACGCCGTCGTGGGTTCTGATGAGCGCTCCCCCGAAATCCTGGGCCGCGGATTCCTGGCGGTGGTCTCGATTGACCGCGTGGCGGGCGAGGGAGCAGGGTAAMEIIRYAELRPQPWRNGGGVTRELASHPKAASAQDGAWDWRVSIAEVSKAGDFSGFPGMERVLTVIDGELLLLTVDGAEHPLEKYRPFRFSGEAASHGALPTGDIRDLNVITRTGSFKGYTSIIELSKKRAHPLFEGQLGVLLQGQATVSAGAAEEAGDGAEQDSAEHDSAKPEAAAPAAEPEALSRYDAVVGSDERSPEILGRGFLAVVSIDRVAGEGAGPGPT0020255_83DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MAINTENANCECE-BACTERIAL_FITNESS-HISTIDINE_REPLETION_RELATED_FITNESS,PGPT0020255-hutD|ves-K09975NANA
D1-29_043311185ISNCY family transposase ISKol11ATGATCCAACGGCAGGCTGTGACGAAGAAGAAGGCTCTCGCTTACAAGACGGCGGATCGGGCGGGGAAGTCCCGGATCTTGAACGAGCTGGTCGAGCTGACCGGTTGGCACCGCGATTACGCCCGGGCGGCTCTGCGGGGCGCCTTGGTCCTGAAAGTTGTCAGGCCCAGGCCGGGCCGGAAGCCCGTGTACGGCCCTGATCTGCTGGACCCGCTGATCAGGTGCTGGGCTGTGTTGCGTGCCCCTGCCGGCAGGCTGCTGGCCCCGATGCTGCCGGTCCTGGTACCGCTGCTGCGCCGGGACAAAGAGCTGGTGATCACCGACAGGCAGGCTGATCTGCTGATGCGCATGAGCGCGGCGACGATCGACCGCAAACTCGTCGGTGAACGGGCGAAACTCTTCCCCCGGGGACGGTCCCATACCAAGCCCGGCACCCTCCTGAAATCCCAGATCCCGGTCCGGACCTGGGCCGAGTGGGACGACGCCGTCCCGGGATTCGTGGAGATTGATCTGGTTGGACATGAGGGCGGCAACAGCTTCGGGGAGTTCTGTTTCACCCTGACGGTGACCGATATTTCCACGGGCTGGACGGTGAACCGGTCGGTGCGGAACAAGGCGGCCAAATGGGTCTTCGAGGCCCTCGAACACGTCATCGCGGTGTTCCCTTTCCCGATCATCGGGATCGACTCGGACAACGGCTCCGAGTTCATCAATGAGCAACTGCTCGCTTACTGCCACGCACACCAGATCACCTTCACCCGGTCCCGCCCAGGCAACAAGAACGACGGCGCCCACGTGGAGCAAAAGAACTGGGCAAGGGTCCGGGAACTGGTCGGCTACCTCCGCTACGACACCACCGGGGAGCTCGGGAAACTCAACGAAATCTGGGAGCTGGACCGGCTCTTCACTAACTACCTGCTGCCCCAGCAAAAACTCATTCAGAAACAACGGCACGGCGCAAAAGTGACCAAGAAACACGACGCGCCGGCCACACCCCACCAGCGGGCGATCCGGCACGAGAAGATGCGTAAGCGCCCGATCATCCGGATGAATGCCGCCTTCAAACAGATCAAACCCGGCAGCCTCTCACGCCAGATCCTGGCACTCACCGCCCAGCTGGAGACCCTCTCCCGGGCAAAGAGTCCCGCCGCCGTCAAACCTGTCAACAGGGCTTGGAACAGCTAAMIQRQAVTKKKALAYKTADRAGKSRILNELVELTGWHRDYARAALRGALVLKVVRPRPGRKPVYGPDLLDPLIRCWAVLRAPAGRLLAPMLPVLVPLLRRDKELVITDRQADLLMRMSAATIDRKLVGERAKLFPRGRSHTKPGTLLKSQIPVRTWAEWDDAVPGFVEIDLVGHEGGNSFGEFCFTLTVTDISTGWTVNRSVRNKAAKWVFEALEHVIAVFPFPIIGIDSDNGSEFINEQLLAYCHAHQITFTRSRPGNKNDGAHVEQKNWARVRELVGYLRYDTTGELGKLNEIWELDRLFTNYLLPQQKLIQKQRHGAKVTKKHDAPATPHQRAIRHEKMRKRPIIRMNAAFKQIKPGSLSRQILALTAQLETLSRAKSPAAVKPVNRAWNSPGPT0030665_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030665-putative_transposase-K07493NANA
D1-29_04332531bfrBCOG1528Ferritin BfrBATGACCTCCACATCCTTCAATTCGCTCCTGTCCACCCAGATCGGCAACGAGTTCACCGCCTCGCAGCAGTACATCGCCGTGGCCACCTGGTTCGCCAACCAGGACCTCCCGCAGCTGGCGCGCTACTTCTACCGGCAGTCCGTGGAAGAGCGGAACCACGCCATGATGATGGTGCAGTACATGCTGGACCGGGACATCGCCTTCACCATTCCCGGCGTCCCCGCGGTCCGCAACGACTTCTCCTCGGTGACCGAACCACTGGCGCTTGCGCTGCAGCAGGAAAAGGAAGTCACCGCCAACATCGAAGCCCTCTTCCGTGCGGCCCGCGGCGAGGATGATGCCCTGGGTGAACAGTTCATGCTGTGGTTCCTCAAGGAGCAGGTGGAGGAAGTGGCCTCGATGACCACGCTGCTGAACATAGCCGAGCGTGCGGACAACCTGTTCGACATCGAGAACTTCATCGCCCGCGAGTCCATCGGCGACGGCGGCCGCGACTCCGCCGCCCCCGCGGCTGCCGGCGGCGCCCTCTAGMTSTSFNSLLSTQIGNEFTASQQYIAVATWFANQDLPQLARYFYRQSVEERNHAMMMVQYMLDRDIAFTIPGVPAVRNDFSSVTEPLALALQQEKEVTANIEALFRAARGEDDALGEQFMLWFLKEQVEEVASMTTLLNIAERADNLFDIENFIARESIGDGGRDSAAPAAAGGALPGPT0003960_202DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003960-bfrB-K22336NANA
D1-29_04334324gdxGuanidinium exporterATGTCGTGGTTAATCCTCATCCTCTCCGGAGCGCTGGAAGCCGTCTGGGCCGCCGCCCTGCACCGCACCTTCCAGGCCACCGGCCGCCGCAGGGTCCTGCCCGCCGCACTCTTCCTGGCCTCCGTCCTGGCCAGTACCGGCGGACTCGCGATCGCCATGCAATCCATCCCCACCGGAACCGCCTACGCCGTGTGGGTGGGGGTGGGCGTGGTGCTGACCAGTGCGTATGCCATCATCACCAAGGTGGAACGGCCGACGGCGGCGCGCCTGCTGCTGCTCGCCGGCATCGCCGCCTGCGTGGTTGGCCTGAAGGTGGTGGCATAGMSWLILILSGALEAVWAAALHRTFQATGRRRVLPAALFLASVLASTGGLAIAMQSIPTGTAYAVWVGVGVVLTSAYAIITKVERPTAARLLLLAGIAACVVGLKVVAPGPT0028785_792DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
D1-29_04335381hypothetical proteinGTGCTGCAACGCTCCGTTCCGTGGCTGGTGCTGCTGGCTTCCGCCATTTTGGAAGCTGTCTGGGCAACGGCACTTGGACTGTCTGACGGCTTCACCAGGCCGCTGCCCACCGCCGTCTTCGCCACCACCGCCACACTGAGCATGCTGGGGCTGGGCATCGCGGTCAAAAGCATCCCCCTGGGCACCGCCTACGCCGTTTGGGTAGGAATCGGCGCCGGGCTGACCGTGGCCTGGGCGATGGCCACCGGTGCCGAGCCCTTCAGCCTGCTCAAAGTGCTGTTCATCGGCGGCATTGTGGTGTGTGCGGCCGGGCTCAAGGCATTGGCCGGCGAACCCGGCAACTCCGCTGCCCCGCCGGCGGCCGCGCGTAGCCGCCGGTAGMLQRSVPWLVLLASAILEAVWATALGLSDGFTRPLPTAVFATTATLSMLGLGIAVKSIPLGTAYAVWVGIGAGLTVAWAMATGAEPFSLLKVLFIGGIVVCAAGLKALAGEPGNSAAPPAAARSRRPGPT0028785_185DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
D1-29_04336627udkUridine kinaseATGGACTCCCCCGAGATAATGCAGGCCCTGGACGCGCTGCGCCTCAGAGTAGCCGGGGGCAGCCGGACCCTGCTGGGCATTGCGGGCGCCCCCGGGTCCGGTAAATCCACCTTCGCCGAGTGGATCCGGCAGCAATTCGGCCCGGAGCAGGCCGTGGTGGTGCCCATGGACGGGTTCCACCTGGGCAACGCCATCATCGACGGCACTCCGCTGAGGCAGCGGAAAGGCGCCATCGACACGTTCGACGCCGGCGGGTACCTTTCGCTGCTCCAACGGCTGGTGCGCCGGGACGAAGACGTGGTGTATGCCCCGGAATTCCGGCGCTCCATCGACGAGCCCGTGGCGGCTTCCATCGCGGTCCCGGCCAGCATTCCGCTGGTCATCACCGAGGGCAACTACCTGCTGGCGGACACCCCTGCCTGGAAGCAGGTGCGGGCCCAGCTGGACGAAGTGTGGTTCGTTGACACCCCTGCGGATTTGCGGCTGGAACGGCTGGTGGCCAGGCACGAGGCGTTTGGCATGGAGCGTTCCGCCGCAGTGGCCTGGGCGCAGGGCCCGGACGAAGCCAACGCCGTTCTCATCGAGGCCACCCGCCTCGGAGCTGACCGGATCATCCCCTGGGGCTGAMDSPEIMQALDALRLRVAGGSRTLLGIAGAPGSGKSTFAEWIRQQFGPEQAVVVPMDGFHLGNAIIDGTPLRQRKGAIDTFDAGGYLSLLQRLVRRDEDVVYAPEFRRSIDEPVAASIAVPASIPLVITEGNYLLADTPAWKQVRAQLDEVWFVDTPADLRLERLVARHEAFGMERSAAVAWAQGPDEANAVLIEATRLGADRIIPWGNANANANANA
D1-29_043371017yajO_3COG06671-deoxyxylulose-5-phosphate synthase YajOATGAAACCCGCACCCGCAGCATTGGTACAGCTGGCCCAGGGCCTGGAGGTCAGTCCGCTGGGGTTCGGGGGGATGGCCCTCACGCCCGTCTACGGCGGGGTGGATCCGGCCGAGGCGCTGAAAACCCTGCATCACGCCGTAGACGCGGGCGTCAGCTTCATCGACACCGCCGACATCTACGACGGCGGCAGCAACGAAGAACTGATCGCGCACCTGCTCAAGGACCGCCGGGACGAGGTCCAGCTGGCCACCAAGTTCGGGCTGGTGGGGAGCCCGGCCACCGGATACTCAGATATCCGCGGTGATGCCCCGTACGTCCGGCAAGCCGTGGAGAACAGCCTTCGCCGGCTCGGAACGGACACCATCGACCTCTACTACATGCACCGCCGGGATCTCCGGACTCCGCTCGCCGAAACAGTGGGGGCCATGGCGGAGCTCGTGGAACAGGGCAAGGTCCGGCATCTGGGTTTATCCGAGGTGACGGCCGAGGAGCTGCGCGAGGCCCACGCAGTGCATCCTATTGCCGCAGTGCAAAGCGAATGGTCCATCTGGAGCCGGGACGTGGAGCGCAACGTTGTTCCGGCCGCCGCCGAGCTGGGGGTGGGCTTTGTTCCGTACTCGCCGCTGGGCAGGGGGTTCCTCACCGGCACCGTTGACGCTTCACAGCTGGGCGAAAATGACTTCCGACGCCGGATCCCGCGTTTCGCCGCAGACGCCGCCGACGCGAACCAGGCTGTTGTGGCCGCCGTCCGGCTGGTTGCCACGGTGCTTGACGCAACCTCTGCCCAGGTGGCACTTGCCTGGCTGCTGGCGCAAGGCAGGCGGTTCGGCCTTCCTGTTGTCCCCATCCCCGGCACGCGCAAAACCCACCGGATCGACGAGAACCTGGGCGCCCTCGCCCTGGACCTGACCCCGGCGCAACAGGAGGCGCTGGACTTGGCGGCGGACGCCGTCGTCGGCTCCCGCTCGGCTGATCCCAAATGGGTGTCTGAGGGGCGCGAGGAGGCAGCCTCCTAGMKPAPAALVQLAQGLEVSPLGFGGMALTPVYGGVDPAEALKTLHHAVDAGVSFIDTADIYDGGSNEELIAHLLKDRRDEVQLATKFGLVGSPATGYSDIRGDAPYVRQAVENSLRRLGTDTIDLYYMHRRDLRTPLAETVGAMAELVEQGKVRHLGLSEVTAEELREAHAVHPIAAVQSEWSIWSRDVERNVVPAAAELGVGFVPYSPLGRGFLTGTVDASQLGENDFRRRIPRFAADAADANQAVVAAVRLVATVLDATSAQVALAWLLAQGRRFGLPVVPIPGTRKTHRIDENLGALALDLTPAQQEALDLAADAVVGSRSADPKWVSEGREEAASPGPT0009140_364DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275NANA
D1-29_04338783hypothetical proteinATGACGCAACACACTGAGTCCACCGGCACGCTCCAGACCCAGACGCCCAAACGCCAGGTCAGCTTCGCTCTCCTGACGTGGGTGGAGATCCGAAAGTTGCTGGATACCCGGAGTTCCTTCGCCATCCTGGCCGTCCTCGCTGCTCTGGCCGCGGCGCTGGTAGCAGGATTGGCACTGTTCAGCCAGAGCCAGGGCACGCCCATGACGTTCGCCGGGTATGCAGGAGGCATCGGCCTTTTCACGGGCCTGGCGATGCCGCTGATCGGGATACTCGGAATGACCTCTGACTTCTCGCACCGCACCACCTTTGTCTACTACCCGTTGCTGCGCGGCAGGACCGGACAGTTCTGGGCCAAGGTGGTGGCGGCCGTGGCGGTGGCGCTGGCCCTGCAGCTCTTTGTGCTCCTCTGCTCGGCCGTCACCGCAGGCCTCACCATGGGGAACGCCGCCCCCGCCGACGTCTTCCAGGACTCCGCCGGAGTCATCGGCAGCGGACTGGCCGCCTGCCTGCTGGGCACCATGTTCGGCGTTGCACTGGCCGCGGCCATCCGGCGAACAGCCCTGACCATCGTGGCCGTCATTCTCATCACGCTGGTAGGCAACGGCCTCATCATCACCCTGCTGCCGGACGCCAGCGGCTACCTCAGCACCATTACCGCGATTGCCGTTATCGCCGGCGGTCCCGAAGCCCCGTCCGTCCTTGAGGCTTGCACGTCCGTGGCCATCTGGTACGCGCTTCCCCTGGGGATCGGCTGGTGGATCACGGAACGGGGCGAAGCCTAGMTQHTESTGTLQTQTPKRQVSFALLTWVEIRKLLDTRSSFAILAVLAALAAALVAGLALFSQSQGTPMTFAGYAGGIGLFTGLAMPLIGILGMTSDFSHRTTFVYYPLLRGRTGQFWAKVVAAVAVALALQLFVLLCSAVTAGLTMGNAAPADVFQDSAGVIGSGLAACLLGTMFGVALAAAIRRTALTIVAVILITLVGNGLIITLLPDASGYLSTITAIAVIAGGPEAPSVLEACTSVAIWYALPLGIGWWITERGEAPGPT0006730_16774DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_04339936lnrL_3COG1131Linearmycin resistance ATP-binding protein LnrLTTGGCGTTACAGTCTGAAACCGCGTCCGGAATTGCCTTCATTGGCGTCACCAAGGCCTATGCCGGGAGGGCGGTGGTGGATTCTGTCAGCTTCATTTGCCCGCCGGGTTCGGTCACCGCGTTCCTTGGGCCGAACGGTGCCGGGAAGTCCACCACGCTGCGCATCGCTGCCGGCCTCAGCCGCGCCGACACCGGGGAAGTCCTCTTCGCCGGGCGCAGGCGTGCGGACCTGGTGCACCCTGGCCGCGCCATCGGGTTTGTCCTGGATCCCACAGCGCTTCACCCGGGCAGGTCCGTGCGCGAGACCCTGAAGCTGAACGCCCTGCTCCTGGGAGTGGCGGACCCGCGCATCGAGGAGGTACTCATCCTGACCGGCCTGGTGACGGTCCGGGGCAAACGGGTGTCATCCCTGTCGCTCGGGATGCGCCAGCGTCTGGTCCTTGGCCTGGCCATCCTGGCAGGTCCGCAGTTCCTGGTGTTGGACGAACCGACGAACGGGCTCGACGCCGATGGTGCCGTGTGGGTGCGCAGATTCCTGAAGCACTTCACGTCCCAGGGCGGCACGGTGCTTCTGTCGAGCCACCTGCTCCGGGACGTGCAGGCAGTGGCGGACCACATTGTCATGATCGACCGGGGCCGGGTGGTGGCAGCCGGCCGGGTGGCAGAATTCAGCGTCAGCGCCGGTACCAAGGTATCCGCCGCAGATCCAACGCGCCTCCCGGAGGTGTTCGCGGGGCTGGGTTGGCAGTACAGCCGCACAGGTGACACGTTCATCGTGGAGGCAGCGCCTGAGGACATCGGCCAGGCGTGCCTCGCCCACGGAATAGCCCTCACCCACCTGTCCAACGTGACCGACTCGGCCTTGGAAGAGAAGTTCCTTGCCCTGACATCCGGTGAATTCGCCAGCCGAAACAACGCCCTGGAGCCCACAGCATGAMALQSETASGIAFIGVTKAYAGRAVVDSVSFICPPGSVTAFLGPNGAGKSTTLRIAAGLSRADTGEVLFAGRRRADLVHPGRAIGFVLDPTALHPGRSVRETLKLNALLLGVADPRIEEVLILTGLVTVRGKRVSSLSLGMRQRLVLGLAILAGPQFLVLDEPTNGLDADGAVWVRRFLKHFTSQGGTVLLSSHLLRDVQAVADHIVMIDRGRVVAAGRVAEFSVSAGTKVSAADPTRLPEVFAGLGWQYSRTGDTFIVEAAPEDIGQACLAHGIALTHLSNVTDSALEEKFLALTSGEFASRNNALEPTAPGPT0006725_19153DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_04340651gloCCOG0491Hydroxyacylglutathione hydrolase GloCATGGATACGCTCATTCACTCCTCAGACAGCATTACTGTCCGCCGGATCTCCGTCAGCGAGGTGGACAACAATGTGTATCTGCTCACCGCCAGGAAATCCGGGGCGCAGCTCCTGATCGACGCGGCCGACGACCTTCCTGCCATCCAGGCGCTGCTTGCTGAGTCCGCCGCGGACAGTGCTGTCCCTCCGAAACTGGAGCTGATTGCCACCACCCACCAGCACTGGGACCACGTCCGGGCCCTGCCCGCCCTGGTGGAAGCAAGCGGGGCGCGGACGGCAGCCGGAAAGGACGACGCACCGGAACTGCCGGTGGCTGTTGATGTCCTACTGGACCACGGAGACCGCTACGCCTTGGACGGGTTCGAGGTGACAGCGGTGCACCTGCGCGGCCACACCCCGGGCTCCATCGCCTTGGTCTACCAGGACCCCGAGGGGCCGGCGCACATCTTTTCCGGGGATTCCCTGTTCCCGGGCGGCGTGGGGAACACCCAGAAGGACGCCTCCCGGTTTGAGCAACTCATCACCGATGTCAGCGAACGCCTCTTTGACGTATATCCGGACAGCACGGTGGTCCACCCGGGGCACGGCAAGCCCACCACCCTTGGCGAGGAGCGTCCCCATCTTCAGGAATGGCGCGCCCGCGGATGGTGAMDTLIHSSDSITVRRISVSEVDNNVYLLTARKSGAQLLIDAADDLPAIQALLAESAADSAVPPKLELIATTHQHWDHVRALPALVEASGARTAAGKDDAPELPVAVDVLLDHGDRYALDGFEVTAVHLRGHTPGSIALVYQDPEGPAHIFSGDSLFPGGVGNTQKDASRFEQLITDVSERLFDVYPDSTVVHPGHGKPTTLGEERPHLQEWRARGWNANANANANA
D1-29_043411923rhlBATP-dependent RNA helicase RhlBTTGACTTTGACTACATTTGCTGCCCTTGGCACGCCCAAAGCCCTTGCTGACACGCTCACCGCACAGGGAATCACTGAACCGTTTCCCATCCAGGTCAAGACCCTTCCGGACACCCTGGCAGGACGCGACGTCCTGGGCCGCGGCCGCACCGGCTCCGGCAAGACCATCGCTTTCGCCATCCCGCTTGTAGCACGACTCGCTGAGCGGGAAGCCAAGCACTTCCGCAAGCCCGGCCGCCCCATGGGCCTGGTCCTGGCACCCACCCGTGAACTGGCCACCCAGATCAACGCCACCATCGAGCCGCTGGCCAAGGCCGCCGGCCTGAACACCACCGTGATCTACGGCGGCATCTCCCAGGCCCGCCAGGAAAAGGCGCTGCGCTCCGGCGTCGACATCGTCATTGCCTGCCCGGGCCGCCTGGAGGACCTGATCCGCCAGCGCATCCTGACCCTTGAGGCCGTGGAAATCACCGTCCTGGACGAGGCCGACCACATGGCCGACCTCGGCTTCCTGCCCGTGGTCAAGAAGCTCATGGACATGACCCCCAGCCAGGGCCAGCGCCTGCTCTTCTCCGCCACGCTGGACAACGGTGTGGACAAGATCGTCCAGCGCTACCTGTCCAACCCGCTGACCCACTCCGTGGATGACCCGCAGGCCGCGGTGACCACCATGGAACACCACGTCCTGGTGGTCAACGACCAGACAGTCAAGAAGCAGCTGATCGTGGAACTCGCCTCAGGAGCCGGCCGCCGCGTCCTCTTTATGCGGACCAAGCACCACGCCCGCAAGCTGGCCAAGACCCTGACCGACGCCGGGATCCCCGCCGTTGATCTGCACGGCAACCTCTCGCAGAATGCCCGTGACCGGAACCTGGCCGAATTCTCCAACGGTGACGTCCGCGTCCTGGTGGCCACCGACGTCGCTGCCCGCGGCGTCCACGTGGACGACGTCGAACTGGTGATCCACGTAGACCCGCCCACCGAGCACAAGGCTTACCTGCACCGCTCGGGACGGACGGCACGCGCCGGCTCAGACGGCACCGTGGTCACACTGACCCTCCCGGAGCAGCAGACCGACGTCAAGAAGCTGATGAAGGCTGCCGGCGTCGAGGTCAGCTTCGAGCGCGTCACCGCCAACTCCCCGCTGGTTGCAGAACTCGTGGGCGAAATGGCCGACAAGATCGATCCCCGCACCCGGGCAGCCCTGCTGGCCGCCAAGGCCAATCAGGGCGGCGGCACCTCCACGGGTGCCAACGCCGAGCGCAAGCGTGCCCGCCGCACTACCCAGGCGGCACCCACCGCAGGTGGCCGTGGCGGACGCGGTGGACGTGGAAGGGTCTCCGCCGAGCCCACCCGCTCCGACATCCCGCGCGCGGAGCGCCGTGCCGTGGCCTACGAAGGCCAGGCCGCTGCCCGCAATGCTGCAGACCGTGTCATTGAGCAGAACGAGGACCGCGCCATTGCCGCAGCTGCAGCGCGGCGCAATGCCCGTGGCCGTGGCACCGCTTCCACGCACCGCAACGACGTCCCCGCGGCAGGTGGCCGCTCATCGGCTGGCCGCGGTTCAGACGGCCGTGCGGACTCCCGCGTAACCCGTAGCGATGCTCCCCGCGGCGGCACCGGCCGGCCGGCTTCAACCGGTGGCCAGCGCAACGGCCGACCCGCCACCGGCCAGCGTGCAGCCGGAACCGGCTCCCGCACGGCTGCAGCCGGCGCCCGCACCGGCGGATCCGGCCAGCGTGCCGGTGCCTCCGCAGGCAGCGCCGGCGGCAACAAGGCTGTTTGGTCCTCCAACACCGGTGGAACCTCCGGCGGATCGTATGCAGGCAACGGCGGCTCCGGCCGGTCCGGCGAAGGCCGTCCTGCCCGCAGTGGCCCCCGCCGCGCGTCGGCTCCGGCGTCCAACGAACGCCGCGGCCGCTAAMTLTTFAALGTPKALADTLTAQGITEPFPIQVKTLPDTLAGRDVLGRGRTGSGKTIAFAIPLVARLAEREAKHFRKPGRPMGLVLAPTRELATQINATIEPLAKAAGLNTTVIYGGISQARQEKALRSGVDIVIACPGRLEDLIRQRILTLEAVEITVLDEADHMADLGFLPVVKKLMDMTPSQGQRLLFSATLDNGVDKIVQRYLSNPLTHSVDDPQAAVTTMEHHVLVVNDQTVKKQLIVELASGAGRRVLFMRTKHHARKLAKTLTDAGIPAVDLHGNLSQNARDRNLAEFSNGDVRVLVATDVAARGVHVDDVELVIHVDPPTEHKAYLHRSGRTARAGSDGTVVTLTLPEQQTDVKKLMKAAGVEVSFERVTANSPLVAELVGEMADKIDPRTRAALLAAKANQGGGTSTGANAERKRARRTTQAAPTAGGRGGRGGRGRVSAEPTRSDIPRAERRAVAYEGQAAARNAADRVIEQNEDRAIAAAAARRNARGRGTASTHRNDVPAAGGRSSAGRGSDGRADSRVTRSDAPRGGTGRPASTGGQRNGRPATGQRAAGTGSRTAAAGARTGGSGQRAGASAGSAGGNKAVWSSNTGGTSGGSYAGNGGSGRSGEGRPARSGPRRASAPASNERRGRNANANANANA
D1-29_04342726COQ3_3Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGACTGAACAGGGCGGACATCACCACCACAAGACGGACGACGGCGGCACCCGGCTCACCGATGAACCCACCCAAAGTGCCGCTGAAGCCTGGGACGAGCGGTACAGCAGCAAGCCGAAGCTCTGGAGCGGCAAGCCCAACCCGCAACTGGTCCGCGAGGGAGGCGGGCTCCGGCCAGGCAAGGCACTGGACCTGGGGTGCGGCGAGGGCGCCGACGCCATCTGGCTCGCCCAGCAGGGCTGGACCGTCACCGCCGTCGACGTTTCCGCCGTCGCCCTGGCACGCGCCGCCGCGCACGAAAAGGCCGCGCTGGAGCGCGAAAGCGTCCACGCCGAAGGTCCTGGCGAGATTCCGAGCCGCATCCACTGGGAACAGTGCGACCTCGAGGAGTGGAAGCCCGTGGGAACGTACGACCTCGTCTCCTCCCAGTTCCTGCACTCGCCGCAACTGGCATGGCAGGGTCCGCTGCGGACAGCCGCCGCCGCAGTCAAGCCCGGTGGCACACTGCTGATCGTGGGCCACCACCCGGACCGGCTGCCGCCATGGGGCAACCACACCTCCCATGAGATGTTCTATACCCCGGCCCAGCTGGTGGAGGAACTTGGCCTCGACTCGCCGGAATGGCTGGTGGAGGTCAACACCACGCGTGACCGGCGCGTAGCAGGGCCTGACGGGCAGGAAGCCGTCATCGGCGATACCGTGCTCCGGGCTACCCGGCTGTCCTGAMTEQGGHHHHKTDDGGTRLTDEPTQSAAEAWDERYSSKPKLWSGKPNPQLVREGGGLRPGKALDLGCGEGADAIWLAQQGWTVTAVDVSAVALARAAAHEKAALERESVHAEGPGEIPSRIHWEQCDLEEWKPVGTYDLVSSQFLHSPQLAWQGPLRTAAAAVKPGGTLLIVGHHPDRLPPWGNHTSHEMFYTPAQLVEELGLDSPEWLVEVNTTRDRRVAGPDGQEAVIGDTVLRATRLSPGPT0015670_4492DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575NANA
D1-29_043431410sdrMMultidrug efflux pump SdrMATGAAAACTGATCAGGCCGTTACCGTGCACGATTCGACTCTTCCAGCCACCCACCCCGCCGCCGGAATCCTCCGGCGGCCGTATCTGTGGGTGACAATCGGCGCGTGTGCCCTGGTGTTCCTGGCCGCCTTCGAATCGCTCGCGGTGACCACCATCATGCCCCTGGTCAGCCGGGAACTGGACGGCGCCGGCCTCTACGCCCTTGCCTTCGCCGGCCCGCTGGCCACCGGCGTGATTGGCATGGTGGCGGCCGGCAACTGGTCGGACCGCGGCGGGCCTGCCGTGCCGCTCTATTCGTCGGTTGTCCTGTTTGTCCTTGGCCTGCTGATTGCGGGCACGGCAGCCTCCATGCCCGTGCTGGTGGCCGGGCGCCTGGTGCAGGGGCTTGGTGGCGGAGCGATGACCGTGGCACTCTACGTTGTTGTGGCGCGGGTATATCCGGCACTGCTCCATCCGAAGATTTTCGCGGCCTTCTCAGCCGCCTGGGTTATCCCGTCCCTGATCGGACCGTTCGCAGCGGGGATCGTGGCGCAGGTGCTCAGCTGGCACTGGGTGTTCCTTGGCGTGGTTGGCCTGGTGATTCCTGCCCTGGTGATGATCGTGCCGGTACTCCGGGGGATGGCACGGGAACAGAAGGACGGGAGCGGTGCGGCCAAGCCGCCATGGGCTGTTGGCCGCATGGGGTGGGCGGCGCTCGCCGCCCTGGCCGTTCTGGGACTGAACCTGTCCGCCGGGGTCCGGATTCCCGGGGTTCCCGCCGCGGCCGCCGTCTTGGCCGTCGTCGCCGTCGCCATTGCCCTGGCGGCTGTGCGTCCGCTGGTGCCGCGGGGAACGCTGACGTCCCGGCGCGGACTGCCCACCGTGATCCTCACCCGGGGGCTGGCCTCGGCGGCATTCTTCGGTGCAGAGGTCTACCTGCCCTACCTGCTGATTGAGCAGTACTCCTTCCCGCCAACGTTCGCGGGGCTCACCCTCACGGGCGGTGCGTTGGCCTGGGCGGGCGCTTCGGCGATCCAGGGCAGGCTCGGCACCCGGCTGTCCCACAGCGCGGCGGTGCGGATCGGATCGGTGCTGGTGCTGGGCGCCATCATCCTGGCACTGGCAACCACCGCGCTTAACTGGTCCGCCGCCGTCGCGATTGCCGGCTGGATCTTCGCCGGCGGAGGCATGGGGCTCCTGTACCCCCGGCTCAGCGTGATGACGCTGGCGCTGTCCGCCAAGGAGGACCAGGGCTTCAACAGCTCGGCCATGTCCATTTCCGATTCCCTCGGCGGGGCGTTGGCGCTCGCCACCACCGGCATCGTTTTCGCGGCATTCACGACGACGTCAGGATCGTTCAGTGGCGTCTTCGCCCTGGCTGCCGTGCTTGCCGCCGTCGGCGTGGCGGTGGCCCCCCGCGTCTCCCCCTGAMKTDQAVTVHDSTLPATHPAAGILRRPYLWVTIGACALVFLAAFESLAVTTIMPLVSRELDGAGLYALAFAGPLATGVIGMVAAGNWSDRGGPAVPLYSSVVLFVLGLLIAGTAASMPVLVAGRLVQGLGGGAMTVALYVVVARVYPALLHPKIFAAFSAAWVIPSLIGPFAAGIVAQVLSWHWVFLGVVGLVIPALVMIVPVLRGMAREQKDGSGAAKPPWAVGRMGWAALAALAVLGLNLSAGVRIPGVPAAAAVLAVVAVAIALAAVRPLVPRGTLTSRRGLPTVILTRGLASAAFFGAEVYLPYLLIEQYSFPPTFAGLTLTGGALAWAGASAIQGRLGTRLSHSAAVRIGSVLVLGAIILALATTALNWSAAVAIAGWIFAGGGMGLLYPRLSVMTLALSAKEDQGFNSSAMSISDSLGGALALATTGIVFAAFTTTSGSFSGVFALAAVLAAVGVAVAPRVSPNANANANANA
D1-29_04344495soxRCOG0789Redox-sensitive transcriptional activator SoxRATGCCACAGCCCGCAGGCGGAGCGCACCATACTCTCAGCGTCGGCGAGTTGTCGGACCGCAGTGGAGTGGCGGCGTCGGCTCTTCACTTTTACGAACGCAACGGCCTACTCTCCTCCGAACGCACTGCCGGCAACCAGCGGCGATACCGCCGCGACGCCCTGCGGCGGGTGGCGTTCATCCGCGTGTCGCAGCGGGTGGGCATCCCGCTCAAAGACATCCGAGCGGCCCTGGATTCCCTGCCCGAAGGCCGCACACCCACCAAGCGCGACTGGTCACGGCTCTCGCGGCTCTGGCGCACCGAACTGGATGCCCGGATCGAGGCGCTTGAACACTTGCGCCGCGACTTGGATGGCTGCATAGGCTGCGGCTGCCTGAGCCTGAAGGCCTGCCGGCTGCAGAACCCGGCGGACCAGCTGGGCTCGGCCGGAACCGGGGCGGTCCGGTGGAAGGCTGGAGCCGTCCCGCCCACAGCCTCCATGCCGCCCAGCAACTGAMPQPAGGAHHTLSVGELSDRSGVAASALHFYERNGLLSSERTAGNQRRYRRDALRRVAFIRVSQRVGIPLKDIRAALDSLPEGRTPTKRDWSRLSRLWRTELDARIEALEHLRRDLDGCIGCGCLSLKACRLQNPADQLGSAGTGAVRWKAGAVPPTASMPPSNPGPT0012955_811DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012955-soxR-K13639NANA
D1-29_04345924trmBtRNA (guanine-N(7)-)-methyltransferaseATGAGTGAATCCCCAGAATCTCCCCAGCCCCCGCACAATCCGCGGCCGGTTACGCCCGGAACACAGGCCTCGTTCGGCACTTACGGTGGCCGGCCTGTCAGCTTCGTGCGCCGCGGAACCCGGCTGCAGGGACGCCGGCAGGCCGCATGGGAAGAGCACGCCGAGCGCTGGGCCGTGGACGTTCCCCGCCATATCGCCAACACCTCCGTCCACCCTGAGTACACGTTCGACGCCGAAGCGGTGTTCGGCCGGAAGGCGCCGCTGATCGTGGAGATCGGCTCCGGTCTGGGCGATGCCATCTGTCACGCCGCGGAGCAGAACCCGGACACTGACTTCCTGGCCGTGGAGGTCTATACGCCTGGACTGGCCAACACCATCATGAAAATCAACAGCCGCGGACTGCGCAACGTCCGCGTCGTTGAGGCCAATGCTCCGGAGGTGCTTGCCACCATGCTTCCCGCCGGGTCGGTCACCGAACTGTGGGTGTTCTTCCCTGACCCCTGGCACAAGTCCCGGCACCACAAGCGCCGCCTCATCCAGCCCGCGTTCGCCGGCCTTGCCGCGCGTGCCCTGAAGAAGGGCGGCCTGTGGCGGATCGCCACCGACTGGTCCAACTATGCCGTTCACGTCCGCGACGTCCTGGCCGACTCGGAAGACTTCGAAAACCTGCACACCGGCGAGCGCCATGGGCCCGAGAGCCCGCTCACCCAGGTGTGGCAGTCCGGCGTCGAATCCCTGGTGGGTGGCGCCCCGGTCCGCGAAGGCCGTGCCCCGGTCAGCACCGAACATACCGGCCCCAACGAGGGCGTAGACGAAACGGGTGGCTGGGCGCCGCGCTTCGAAGGCAGGATCCGCACCAGCTTTGAAGCGAAGGCCCATGAGGCCGGCAGGCTGATTTTCGACCTCTGCTACCGCAGGCTCTAGMSESPESPQPPHNPRPVTPGTQASFGTYGGRPVSFVRRGTRLQGRRQAAWEEHAERWAVDVPRHIANTSVHPEYTFDAEAVFGRKAPLIVEIGSGLGDAICHAAEQNPDTDFLAVEVYTPGLANTIMKINSRGLRNVRVVEANAPEVLATMLPAGSVTELWVFFPDPWHKSRHHKRRLIQPAFAGLAARALKKGGLWRIATDWSNYAVHVRDVLADSEDFENLHTGERHGPESPLTQVWQSGVESLVGGAPVREGRAPVSTEHTGPNEGVDETGGWAPRFEGRIRTSFEAKAHEAGRLIFDLCYRRLNANANANANA
D1-29_04346447hypothetical proteinATGTCAGTGCATATCGAATCCCCGCTTGGCTTCACCGCAGATTTTCCCGAACACACCCAGGTTCTGGACAATTCCACCGCAGGACCCAACAGCGAACAGTTCGGGCTCCTGGGCAATGTCCTGGTGACCGTGGCCACGGATGACGCCACCATTGATGGTCCCGCGCAGGCAAACGGCTGGGCGCATCTGATCTCCGAGTTCTACCTGGAAGACCGCGCGGGAACACTTCTGGCCGAAGGCGAATTGAACCTGCCGGGCAAGTCCTCGTACGCCCTGGTGGTGGGTTACACGGATGCTGACGGTGCGGCGAAAGTGGCAGCCCCCGTTGGCGTGTGGGAAAACAACCGCTTCATTGGCGTCCTGGCGATCTGGCCCTGCGTCAACCCTGAGATCGAGCCGCGGCTCAGTATGCTCAAAGAGATTGTGGCCGCCATCAGCGTCAGCTGAMSVHIESPLGFTADFPEHTQVLDNSTAGPNSEQFGLLGNVLVTVATDDATIDGPAQANGWAHLISEFYLEDRAGTLLAEGELNLPGKSSYALVVGYTDADGAAKVAAPVGVWENNRFIGVLAIWPCVNPEIEPRLSMLKEIVAAISVSNANANANANA
D1-29_043471605hypothetical proteinATGACTTTTTACGGCGCTGACGTCAGCCAGTTGCGGGATCTGGCCAAGGCCGCGGACAAGGCGGCCTCACTGCTGAGCAGCCAGGCTTCTTCCCTGCAGGGCCAGATTCAGTCCGCGCCGTGGAAAGGTGCCGACGGCGAGAGGTTCCGCCAGGAGTGGACCGGAAGCCACCGTCCCAACCTGGAACAGGTGGCGTCTACTCTCCGTCACAACTCCAAGCTTCTTTTGCAGCACGCCGACGAGCAGGAAAGGTCATCCGCCGGATCTTCCGGAGGGGCGGGTACCGGAGACGCGGGATCATCCGGAGGCGAGGGTGCCGGCCCGTTGGACAACATCGTCAATGACGGCCTGAACTGGCTCGAGCAGCGGGTCAAGGAAGCAGCGGAAGCCAAAGAGCGCCACCACGAATTGGAACAGGACCTGGGCCGGATGGTGGACGCAAGCCCTGAAGAACAGGCCAAATGGTGGGACGGCCTGTCGGCGGAGGACAGGCGGTACCTGATCGAGGGCGAAGACAATAACGATCCGTTCGCCCGGCAGTTGATGTTGATGGACGGCGGGATCCCGGAGTCTGCGCAGGCCCAGGCCATGGCAGAACTGACGAAGGTTGCCTCCAAGGACATCCCCCGCCTCGTAGAGACAGACAAAGCGGAACTGGAGTATAAGGCCGCCTGGCTGCATGGCGGCGCTGCAGTGGGAGCTAAAGTCCAGGAAAACATGGATGGCTCGGCCACCATGAAGGTATACGGAAATCTGGGCATTGGCGTCAATGATCCCTCCGGAACCGCCGGTATAACGGGGAGCAGTGAAGTGTCACGGGAGTACAAGTTCGATACCGCGGCGCAAGCCCTGGCCGCCCGCGATCGGATGATGTCGGATCTCCCGCCTGATGAGTTGTCTGAGGTGACGGATATGGCGGGCAGCCCACCGGCCTATATTCTGGACACCGTCAACGACGCCGCCCGGGACAACGGAGCCACCGGGCATGATGACAAGTTCAAGGGGACGTTGTCCATGAAAGCCCAGGGCGATTCAAGCGGGGCATCGGGTTCGGCCCAGCTTGACCTCGCCTATGAGCGGAGCATGACTCATGGCACGGCCACAGCCAGCAGCGAAGTGTCAGCGCAGGGCAAGCTGGACCTTGACGGACACGTGTGCCAGGCATCCGGGAAAGGCGGGATGGAGGTCAAACTGGATGCCGGCAACAACATGGAATCGATCTCCGTTTCCATGGAAGGAACAATGGCCTCCGGCGGCAGCGCTGGGCTGGACGGGCCGGGCGGCAAGGCCGAGTCAACGTTCACGGCAGGTACTCAGGGCACGGTGAAGATCGACGTCGATTACTCGGACAACAAGGAACTTGTGGACAGCTACGTTCGGAACATTGCCACGGGCAACATCCCGGGGGCAGCCTCGGATGCCGCCAAGCTCTACGAGGCCGGCTCCGCAACAGTGCAGCTCAACCACGTCGCCACCGCCACCCATGAGGTCGGACTCGACTTCGAGGCGGCCAAGGTAGGTCTCAAGACGGAGAGCCAGGTGGTGGTCAACCAGTCCACGTACCACAAGGTGGCGAACGACTCCTCGCTCAATAGGATGCCCTGAMTFYGADVSQLRDLAKAADKAASLLSSQASSLQGQIQSAPWKGADGERFRQEWTGSHRPNLEQVASTLRHNSKLLLQHADEQERSSAGSSGGAGTGDAGSSGGEGAGPLDNIVNDGLNWLEQRVKEAAEAKERHHELEQDLGRMVDASPEEQAKWWDGLSAEDRRYLIEGEDNNDPFARQLMLMDGGIPESAQAQAMAELTKVASKDIPRLVETDKAELEYKAAWLHGGAAVGAKVQENMDGSATMKVYGNLGIGVNDPSGTAGITGSSEVSREYKFDTAAQALAARDRMMSDLPPDELSEVTDMAGSPPAYILDTVNDAARDNGATGHDDKFKGTLSMKAQGDSSGASGSAQLDLAYERSMTHGTATASSEVSAQGKLDLDGHVCQASGKGGMEVKLDAGNNMESISVSMEGTMASGGSAGLDGPGGKAESTFTAGTQGTVKIDVDYSDNKELVDSYVRNIATGNIPGAASDAAKLYEAGSATVQLNHVATATHEVGLDFEAAKVGLKTESQVVVNQSTYHKVANDSSLNRMPNANANANANA
D1-29_04348843hypothetical proteinTTGCACAAAGGAACCACCATCAAAAGAGAACTCAGACAGGCCGCAGACGCGGCGGAGGATGTCACCAACTCGCATGCGTTGGAGGTATTGGCCAGGGCTGGGTTCGCGGCAAGCGGCCTGCTGCATTTCCTTGTAGGGGCCATCGCCATCCGGCTCGCAATGGGCGGAAACGGCAGCGCCGACGTCAGCGGAGCGGTAGCGGAACTCTCGAGCCAGCCGGCCGGGCCGCTCCTGCTGTGGAGCAGCTTTGCAGCCTGCGCAGCCCTGGCCCTGTGGCAAGTGGGTGATGCCATCTTCGATTTCAACCATCTGCCCACCAAAGACAAAGCGCTCAAGAAGGGCAAGGCAGCCGCCCAGGCCCTGGTGTTCACCACCCTGGCACTGACGCTGGCGTCGTTCGCCATGGGCACAGGTTCGGACGAGGACAACAGCCGCTCCGCGAGTGACCTGACTATCTCCGTCATGCAGGCACCAGGCGGCGTCGCCCTCCTGGTCCTTATTGGTGCAGGCATTGCGATAGCCGGAGTGGTGTACGCGGTCCGGGGAATCAGGAAGTCCTTCAAAAAGCACCTTAGGCTCCCCTCCTCCCCCACCGCCAGGACAGCGGTCTCGGCGGTGGGCGTTGCCGGGTACGTGGCCAAGGGCGTTGTGCTGCTGCTGACGGGACTGCTTATCGCGATCGCCACACTTCAGGCCAATCCGGAGGACTCCACAGGGCTCGACGGCGGGCTGAAGGCCCTCCGTGACCAGCCCTTCGGGATCTATCTGCTGGCGGCAGTGGGTGCCGGGGTGATCTGCTACGGCCTGTACATGATGGTCCGGGCGCGCCTGGCGAGAATGTAGMHKGTTIKRELRQAADAAEDVTNSHALEVLARAGFAASGLLHFLVGAIAIRLAMGGNGSADVSGAVAELSSQPAGPLLLWSSFAACAALALWQVGDAIFDFNHLPTKDKALKKGKAAAQALVFTTLALTLASFAMGTGSDEDNSRSASDLTISVMQAPGGVALLVLIGAGIAIAGVVYAVRGIRKSFKKHLRLPSSPTARTAVSAVGVAGYVAKGVVLLLTGLLIAIATLQANPEDSTGLDGGLKALRDQPFGIYLLAAVGAGVICYGLYMMVRARLARMNANANANANA
D1-29_04349495hypothetical proteinATGCCCCAGGTACGCGCCGAACGCTTCATCCGCCTCGACCCCGAAACCGCCTTCGCCTTCTCCCAGACCACCGGAGCCTTCCGGCTCAAGTGGGACCCGTTCATCTCCGCCCAGGGCTTCCTGGACGGAGCGACCTCTGCCGGGAAGGGCGTCAGGACGCGGACAGTGTCGCGGCTGGGCCTGGTGATGGTGAGCGAGTACGTTTCCTACACGCCGCCCAGGAACGTGGGCATGACCATGGTGTCAGGGCCATGGTTCTTTGCGAATTTCGGCGGGGGCTGGCGGTTCACTCCCGACGACGGCGGCACGCGGGCAGTCTGGAAGTACACCTTTTCCTGCCGGCCGGCATGGTTGCGGCCGGCAGCGGAGCGGATTGGCACCTGGCTCCTGGGCCAGGAGATCGACAAGCGGATCGAAGCGTTCGCCCGGGCCTGCGAGGATCCGGCCCTGGTAGCTGAGTTTCGCCGGACCGGCAGCGGAATCAACAATCAATAAMPQVRAERFIRLDPETAFAFSQTTGAFRLKWDPFISAQGFLDGATSAGKGVRTRTVSRLGLVMVSEYVSYTPPRNVGMTMVSGPWFFANFGGGWRFTPDDGGTRAVWKYTFSCRPAWLRPAAERIGTWLLGQEIDKRIEAFARACEDPALVAEFRRTGSGINNQNANANANANA
D1-29_04350663hypothetical proteinATGAGCAGCGAGCTGCACCAACTGCTCGGCGCCTACGTGCTGGGCGGCCTGGACGCCACGGATTCACTCCGCTTCGAAGCCCACCTTCAGGAATGCGCGGACTGCCGGGCTGAGCTGGCGGAACTGCAGAAACTGAGGCTCCTGCTGGACGCCCTGCCCGCCCCGGACGCGCTGGCGCTGACGGAAGGCGGCCGCCCTGCGTCCGTCTCCGAGCCGGCCACCACGGTTCCGGCGGCGGTTCTTGACGAACTCGCGGCCCGCCGTCGGACATCACGACGGCGTTGGGCAGCGCTCGTGGGAGCCGTGGCTGCCGCCTGCCTCGCCTTGGGCCTTGCCGCCGGACCGCTGCTCAACAGGCCCCCGCAACCGGACGCCAGCTACTCCGTCCAGTCCGGCAACGGCCTCCGGTTCAGCATCGACATGGCGAAGAAGACGTGGGGCACCGAACTTGCCGTGAACGGCAGCAGCATGCCCCTGGACGGGACCCTTTCGCTGTGGATCCGCGACCGTGACGGCGGAGAGGACAGGGCCTGCGCCTGGACCGCCACGCCCAGCGGCAGGATCAAGGTCACCGGCGCCACCCCAGTTCAGCTCTCCAGCATCGCCAGCGTGGAGCTGCGGGACGGAACCCAGCAGGCGGTGGCGGTTATCAGCGTTCCGTAGMSSELHQLLGAYVLGGLDATDSLRFEAHLQECADCRAELAELQKLRLLLDALPAPDALALTEGGRPASVSEPATTVPAAVLDELAARRRTSRRRWAALVGAVAAACLALGLAAGPLLNRPPQPDASYSVQSGNGLRFSIDMAKKTWGTELAVNGSSMPLDGTLSLWIRDRDGGEDRACAWTATPSGRIKVTGATPVQLSSIASVELRDGTQQAVAVISVPNANANANANA
D1-29_04351501sigLCOG1595ECF RNA polymerase sigma factor SigLATGCCGCTGGACGAGGACGTGGTGGCCGCCATCTACCGGGAACATGGCAGCGCCCTGCGGCGCTTTGTGCTGAGCGCGTCCCGGGATCCCCAGCTGGCCGAAGACGTGGTTCAGGAAACGGTGCTCCGCGTCTGGCAGCAGGCTCCTGATATCAGCGGAAGCCTGCGAAGCTACCTGTTCCGGACGGCGAGGAACATCATGATCGACAATTACCGCAAGGCGCAGCGGCGGCCTGCCGAAGCCCTGGAGCAGGAGCTCGCCGATCCCGCTGAGGCGGCCGAGCGGGTGGACGAACTCCTTAACAGGGTGCTCATGGAGGAGGCGCTGCTCCGGCTCAGTACCGAACACCGCACCGTCCTGGTGGCGCTCCACTACCGGCGCTTTACGGTCAACGAGGCCGCGGCGCAGCTGAACATCCCCAGCGGAACCGTGAAGTCGCGGGCCTACTACGCGGTGCGTGCGCTGCGGACAATCCTGGACGAAATGGGGGTGGAACGATGAMPLDEDVVAAIYREHGSALRRFVLSASRDPQLAEDVVQETVLRVWQQAPDISGSLRSYLFRTARNIMIDNYRKAQRRPAEALEQELADPAEAAERVDELLNRVLMEEALLRLSTEHRTVLVALHYRRFTVNEAAAQLNIPSGTVKSRAYYAVRALRTILDEMGVERPGPT0014960_11755DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_04352540hypothetical proteinATGAAACAGCATCTGGGCACTGGCTTTGCGGCACTGGTCCTTGCGGCCGCGCTCTCCGGCTGCGGCGGCAGCCCCGGAACCACCACAACAACGCCAGCCGCGCCGGCTGCACCGGAGACCACCAGCAGCCCCGGGACCACGTCTGCGTCGCCGGGAACCACTTCTGCAACCGCCGACCTTAAGAAGGCAACCTCCAGCGCCGGAGAGATCGTGGTTGACGCGAAGGGCATGAGCGTCTATTTCTTCACCAAGGATGTGAAGGACTCCGGCACCAGCGCCTGCACGGGATCGTGCATCACGCTGTGGCCGCCGGTTATCACCACCGCATCAACGCCCGCTGCTGAGGGCGTCACCGGAACGCTGGGCACCATCACGACGCCGGAGGGCGCAAAGCAGGTGACCCTGAACGGCCTTCCGCTGTACTACTACGCCGAGGACAAAGAACCCGGCGACGTCAAGGGACAGGGCTTCAGCAACGTTTGGTACCTGGCCAGCCCGTCCGGGGACATGATCAAGACGGGGGCGTCGGCGGGGTACTAAMKQHLGTGFAALVLAAALSGCGGSPGTTTTTPAAPAAPETTSSPGTTSASPGTTSATADLKKATSSAGEIVVDAKGMSVYFFTKDVKDSGTSACTGSCITLWPPVITTASTPAAEGVTGTLGTITTPEGAKQVTLNGLPLYYYAEDKEPGDVKGQGFSNVWYLASPSGDMIKTGASAGYNANANANANA
D1-29_04353813hypothetical proteinATGAGTGACACCGCAGGCTCCCGCACCAACGGGACTGTTGACCAGCTGCTGCTGGAGGCAGAACTGGGCGACGACGGCGCGCTCCGCCCGGTCCTGCTTGAGCTGCAGGCGCTGGGCGCCGGCCAGCCCGAGCCCTCGGCAGCCGTGGCCGCCCTCATGGCCCCGGCAACTGCCCGGCTTGCTGCTGTCCCGGCAACCTCGACTCTTCCGTCAGTCCAGTCAACTTCCTCGGCCCTGACGGCCCAAAACGCGGCTGCCACCACTGCCTCGACGGCGGCCGCAGCCGGTGCCTCCGCTGCCGGTGCCTCCGCAGGCTCCGGCAAAGTGACCGACGAACTGGCGGCACGGCGCCGTGCCAAGCGCCGGATCGCGCTCACCACTCTTTCTGTAGCAGTTTCACTGGCAGCCGGAGGAGCCGTTGCCGCGGCTTCGGACCAGGGTGTCCGTGACTCCTTTGGCCAGCTGAACCAGGCGGTGACGTCGTTCGTCTCCACCATGGGTGCGGGACCAGCGACCAAACCGGCCGAAGTTCCCGCGCCCGTGCCTGCCCAGCCCGGTAAGCCAGCACCGACCACTCCGGCTGACCAAACTGCCCCGGCTCAGGATGCAAAAGTCCCGGAGACCGAAAGCACGCATGGTGCTGCGCACGATTCGGTTCCTGCCCCGTCGGGGAAGGTAACCCTCCCGGAAGTCCACGTGCCGGATAACCTCACCCCGGCGGTCCCCGGCGGGCCGCTCCACGGTGAGGGAAACACTCCGGCCCTGCCGCTTCCGGCCACCCCACCCGTGCCGCTGCCCAGCCACGGCCCATAAMSDTAGSRTNGTVDQLLLEAELGDDGALRPVLLELQALGAGQPEPSAAVAALMAPATARLAAVPATSTLPSVQSTSSALTAQNAAATTASTAAAAGASAAGASAGSGKVTDELAARRRAKRRIALTTLSVAVSLAAGGAVAAASDQGVRDSFGQLNQAVTSFVSTMGAGPATKPAEVPAPVPAQPGKPAPTTPADQTAPAQDAKVPETESTHGAAHDSVPAPSGKVTLPEVHVPDNLTPAVPGGPLHGEGNTPALPLPATPPVPLPSHGPNANANANANA
D1-29_04354564hypothetical proteinGTGCTTGACATTTTGGCCGAAGAAGACATCGAGATATTCGCAGACACAGCCGGCACGGATCCGGCTGTGCTTTTTAGCGCTGTCTACCGTTTGTTCTCCGGCGCTGTGTTGGGCTACCTCCGCGCCCGTGGAGTTGATGATCCCGAGGCAGTCACCCAGGACGTCTTTCTGGCCTTCTTCCCCAAAATCGGCGATCTTACAGGCGGACTCCCAGGCGCAAAGTCATTACTGTTTTCCATCGCCCACGCCCGGATGGTTGATTACTACCGCAGAGTGGAGCGCAGGCCGGAGTTCACTCCGTATGATCCGCTGCAGGACGGGCGCAGCACCGCCTCGGCCGAAGACCACGCACTGGGCCACGACGGCGGGGCGGCCGCCCTGCTGGACGGCCTGGCAGAGGACCACCGTGAAGTCCTGGCCCTGCGGGTTGTGGCAGACCTCTCCATCGAACAGGTGGCCGGCATCATGGGCAAGTCCCAGGGTGCCATCAAGCAGCTCCAGCGCAGGGCGCTGCAAAATCTCAAAGACCAGACACTCAAAAGAAACCAGGCAGATCATGAGTGAMLDILAEEDIEIFADTAGTDPAVLFSAVYRLFSGAVLGYLRARGVDDPEAVTQDVFLAFFPKIGDLTGGLPGAKSLLFSIAHARMVDYYRRVERRPEFTPYDPLQDGRSTASAEDHALGHDGGAAALLDGLAEDHREVLALRVVADLSIEQVAGIMGKSQGAIKQLQRRALQNLKDQTLKRNQADHEPGPT0014960_8730DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-29_04355639hypothetical proteinATGTCGTTGTTCACTGTTCTCGCCACCAGCAAAATCGCAGCCGGAGTACTGGCTGCCGGCACCCTGGCAGCCGGCGGCACCGCCGTCGCCGCCACGTCCGGTGTGCTTCCCACGGCTGCACAGCAGACCGCCCACGAACTGCTCGGTGCCCCGGCCCCGAAGCTGGTTGACGACGTTGCCGCAGCTGCAAAGGCAGACGCGGATGCTGCTGCAGACGCCTCCGCCAAGACCGCCGTGTCCGGCGAAGAGGTTTCGGCTGAGGCCAAGGCTTCCGCCGCTGCCGGTACTGCAGTGGACGCTGCCGGCGCCGCCGCCTTCGGACTGTGCACCGCCTTCACCCACGGTGGCCTGAACGCCAACTCCGAGGGTTTCGCCTCGCTGGCAATTGCTGCCGATGGCGAAGCGAACATCGAGAGCTTCTGCACCGATGTCACCGCGGAGGCCAAGGCTGCCGCTGACGCCGAGGCTGCTGCCAAGGGCTCCGCTGCCGTCAAGGCAGAGGTTCCGGCTGTTCCGGCAGTCCCCGCCGTTCCGGCCGTTCCTTCTGTTGACGGAGCGCCTGAAGTTCCTGCCGTTCCGGCCGTTCCGGCAGTCCCCGGCAATGTAGTGGACGCTCCGGCCGTTTCGGCCCACCACTAGMSLFTVLATSKIAAGVLAAGTLAAGGTAVAATSGVLPTAAQQTAHELLGAPAPKLVDDVAAAAKADADAAADASAKTAVSGEEVSAEAKASAAAGTAVDAAGAAAFGLCTAFTHGGLNANSEGFASLAIAADGEANIESFCTDVTAEAKAAADAEAAAKGSAAVKAEVPAVPAVPAVPAVPSVDGAPEVPAVPAVPAVPGNVVDAPAVSAHHNANANANANA
D1-29_04356594hypothetical proteinATGCCCAAGACTCCGGAGCCCCAAAAGACCGCCAAAACGTGGCAGACCATGGTGGAAAGCAACCAGGCCCTCCTCCTGCGGAAGTCAGGGCACGACGTCGCTTATTGGGCGGAACGGGCGCGTGCCGAGGGCATCCAAAACGACGCGCAGCTCCGCGACTGGATGCGCGACCAGCACGGCATTACAGGCTACGCGCAGTACGCCGTGTCCTGGGAACTTTTCGGTTATCCGGAGTTCATGCTGCGCGACGCCGATGAGCTGATTGAGGGCCAGTACGGCCAGCACCCGGAGCTGCGCCCCATTGCGGATGCCCTCCTGGCCTGGGCCTCGGCCACTGACGGTGTGGGGATCCAGATGCGGAAGGGATACGTTTCCCTGCACAGCCCACGTCGGAAGTTCGCGCAGATCACCCGCACCACCAACACCGCCGTGGACGTGACGCTGCGCCTGGATGCCCCCGCACAGGGACGCCTGGAGGCCATCAAGGTCCGCCCCGACGACGCCTTTGACCGCCGCGTCCGCCTCACCTCCGTGGACGATGTTGACACAGAAATCCTGGACATCCTGGCCGCGGCCCTGGACCAGAACCGCTAAMPKTPEPQKTAKTWQTMVESNQALLLRKSGHDVAYWAERARAEGIQNDAQLRDWMRDQHGITGYAQYAVSWELFGYPEFMLRDADELIEGQYGQHPELRPIADALLAWASATDGVGIQMRKGYVSLHSPRRKFAQITRTTNTAVDVTLRLDAPAQGRLEAIKVRPDDAFDRRVRLTSVDDVDTEILDILAAALDQNRNANANANANA
D1-29_04357852hypothetical proteinATGACCACCAGCCAGCAGCCCGTCGTTCTGACCACCGGCAGCATCGAAGCAAGCAACGAGGAGGTTGTTGACTCCAATGTCCGGGTGGTTGATGCCATGCACCGGGAACTGCTGCACTCCAGCGAAATTTCCCCCGTGGCTTTCCGCAGCTACTACGTGGACTTCTACCTCACCCAGTCCCTGGAGGGCGGGTTCGCCCAGTACGTGTTCACGTCCCTTGACCGGGCGGAAAGTGACACCCTGATCCGCGAGGGTCTGGCAGGTATGGGGGCCACCGCCCACCTGGACCTGTTCAACCGGACCGCTGAGGCATTCGATGCCTTGTCCGAGGAGGACGCCGAACGGTATCTCGACGGCGGGCTGGATGAAGACGAGGAGACCCCCGACGGCGTCCTCCGCATGGAAGAGCTCGACGGCGACTTCGAGGAGCTTCTGGAAACCGAGAATGTCACCGCCCTCAACGCCGCCTGGCTCCGCGGGCAGGACGCGCTGCTGGCGCTCGACGACGACGGCCTCAACGCCCACATCGAGCGTCTGGTGGCTCTCATCCCGGACCTCGCCCAGCGTCAGGCCAGGGCGGAGGCCGAGGCCTTGGAGAACGCCCCGGACTTCGAGATTGTCATTCGTGAACTGTGCAACATCGCCGGCTACAGCCTCCAGAAGATCACCATGGGCGACCCCAACTACCTGCACCACGGGGACAAGACGCTGGCCTGGCACTTCAGCACGGACCATGGAGACTTCCTTATGGTGGAGGAAGACGACGAAGCGTTCATGATCAACCCGGTCACCCAGGAAGTCGTCGCCGCCGTCGAGTTCGAAGAGGCTGACGGGGACATGGTCGACGCGTAAMTTSQQPVVLTTGSIEASNEEVVDSNVRVVDAMHRELLHSSEISPVAFRSYYVDFYLTQSLEGGFAQYVFTSLDRAESDTLIREGLAGMGATAHLDLFNRTAEAFDALSEEDAERYLDGGLDEDEETPDGVLRMEELDGDFEELLETENVTALNAAWLRGQDALLALDDDGLNAHIERLVALIPDLAQRQARAEAEALENAPDFEIVIRELCNIAGYSLQKITMGDPNYLHHGDKTLAWHFSTDHGDFLMVEEDDEAFMINPVTQEVVAAVEFEEADGDMVDANANANANANA
D1-29_04358303hypothetical proteinATGCAACCGGATCTGGGCCAGCTCGCAGCAAACGAACACGCAAACTTGGCCACCTCACTGCTGTCATCTGCCGAAGCGGCGCTGCTGGAAAACCCCGGCAGCACCGAAGCCCATGTGGCACTCGCGCAGGCACACGCCACCCTGGCCCTGGCGCTTGAAACGCGCGCAGCGGCGTATGACACCCGCACTGCCACCTACGTCGCCTATCTGGCGACGCTGCCCACCGGAAACCAGGCGGACAAACAGCATGCTGCCGTCGTAGGGAAACTTGTCCGCGACCGACTTGGCTTCGAACCGGCCTGAMQPDLGQLAANEHANLATSLLSSAEAALLENPGSTEAHVALAQAHATLALALETRAAAYDTRTATYVAYLATLPTGNQADKQHAAVVGKLVRDRLGFEPANANANANANA
D1-29_04359396hypothetical proteinATGCGTGGATTTGAACACCTGACCCCCTTGCCGTTGGCCACAGCCGGCCAGAGCTGCTGCTCCCCGCACAGTGGAGGCGGACACGGCAAGCCTGTCCAGCTCAAAGCTGGCGAGATGAAAACTGGCGGAATCGAAGCTGGCGAGGATAAGGCCATTGAGGTCAAGGCAGCCGATGTTGCCGCTGCCGGCGAAACTGAGTTCGGCCTTGAGGGCTTGACGTGCGGGCACTGCGTCCAAACTGTGGAAAAGGCCGTCACCCGAGTGGAAGGTGTGGAAGCCGCCTCGGTTGAACTTGTCCCGAGTGGACGCTCACGGCTGGTCGTCGCCGGAACACCGGATGAATCAGCCATAAACCAGGCTGTCACAGCAGCCGGATACACCCTCATCAGCCACTGAMRGFEHLTPLPLATAGQSCCSPHSGGGHGKPVQLKAGEMKTGGIEAGEDKAIEVKAADVAAAGETEFGLEGLTCGHCVQTVEKAVTRVEGVEAASVELVPSGRSRLVVAGTPDESAINQAVTAAGYTLISHPGPT0004125_29DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
D1-29_043602142copBCopper-exporting P-type ATPase BATGGAAGACCACACCCACCATCACCACAACCACACTGCCGGCCACGGGACCGTCGCTGAGCGGTATACGCCTCCAGCGCCTGCAACAGACACCGCCCCGGACCATCGTCAGCATGGAGGACACGGCGGCAAGGATGACCACGCGGTCCACACCCAGGGGCAACATGCCGGGCACAGCACAGCCATGTTCAAGAACCGGTTCTGGCTGACACTCGTCCTGTCAGTTCCCGTCGTCTACTTCAGCCCCATGGTGGGCCACCTGCTGGGCTATATGGCCCCCACGTTCCCGGGATCGGCCTGGATTCCGCCAGTGCTCGGAACGGCGATCTTCATTTACGGAGGACAGCCGTTCCTCACCGGTGGCCTTCGGGAGCTGAAGGCCCGGCGCCCCGGAATGATGCTGCTGATTGCGATGGCCATCACCGTAGCGTTCGCGGCCTCCTGGACCACAAGCCTGGGCATCGGCGGGTTTGACCTGGACTTCTGGTGGGAGCTGGCCCTGCTGGTTGCCATCATGCTCCTAGGCCACTGGCTCGAAATGCGCGCCCTGGGTTCCGCGCAGGGAGCACTGGATGCGCTGGCGGCCCTGCTGCCGGATGAAGCCGAGCGGATCCAGGGGGACAGTACCGAAATCATTCCGGTGGCGGAGCTCCGCGAAGGCGACACAGTCCTTGTCCGCTCCGGGGCCAGGATGCCGGCAGACGGCATCATCGTGGGCGGGCAGGCCGAGTTTGACGAGTCGATGATCACCGGAGAATCCAAGACGGTGCCCCGGGGCGACGGAGACACCGTGGTGGCCGGCACGGTGGCCACGGACAACAGCGTCAGGGTGCGTGTCACCGCCGTCGGCGAGAACACTGCGCTCGCGGGCATCCAGCGGCTCGTCGCCGAAGCGCAGGCTTCCTCATCCAAGGCACAGGCGCTGGCTGACAGGGCTGCGGCGTTCCTGTTCTACTTCGCGGCCGGCGCTGGCATCGTCACCTTTGTGGCCTGGACCCTCCTGGGCAGTGTCCCTGAGGCAGTTACCCGGACAGTCACTGTGCTCGTGATCGCCTGCCCCCATGCACTGGGCCTGGCCATTCCCCTGGTCATCGCCATTTCCACGGAGCAGGCCGCCCGTGCCGGAGTGCTCATCAAAAACAGGATGGCCCTGGAACGCATGCGCACCGTCGACGTTGTCCTCTTCGACAAAACGGGCACATTGACCAAAGGCGAGCCCGAGCTGACTGACATCGCCGCTGCCCCGGGTGTTGACGCCGATTCACTTCTGACACTGGCAGGGGCCGCGGAGTCCGACAGTGAACACCCTGTGGCGCGTGCCGTCGTCCGGGCCGCCCGGCAACGCAACCTGACCATCCCGCCCGCCAACGGTTTCAGCTCGCTGACTGGCCGCGGCGTGCGTGCCGAGGTGGACGGCCGGATCGTCCATGTGGGTGGTCCTGCCCTGTTGCGCGAGCTTGGCACCGCCGAACCTGATGAGCTTGCCCCCTCCACCGGAGCCTGGATGGCCCGGGGCGCCGCTGTGCTGCACGTCATCGACGGCGGCAGGGTCCTTGGCGCAGTCAGCCTGGAAGATGCCGTCCGGCCGGAATCCCGCCAGGCGGTGGCTGCCCTGCAGAATCGCGGTGTCAAGGTAGCGATGATCACCGGCGACGCCCGGCAGGTGGCCCAGGCAGTCGCCGAGGACCTGCACATCGATGAGGTCTTCGCCGAAGTCCTTCCTGCAGACAAGGACAAGAAGGTGGCAGAACTTCAGGCCCGCGGCTTGAAAGTGGCCATGGTGGGCGACGGCGTAAACGACTCGCCTGCGCTGGCGAGGGCCGAGGTGGGCATCGCTATTGGAGCCGGCACCGACGTGGCGATGGAATCGGCAGGCGTTGTCCTGGCCGGGAACGATCCCCGGGCTGTACTTTCGATGGTGGACCTGTCCAGGGCCAGTTACGTGAAGATGTGGCAGAACCTCATGTGGGCAACCGGTTATAACGTCCTGGCTATCCCGCTGGCAGCTGGTGTCCTCGCCTTCGCTGGGGTGGTACTTTCCCCGGCGGCCGGCGCTGTCCTGATGTCAGTGTCAACCATCGTGGTGGCCTTGAACGCCCAACTCCTGCGGAGGATACGGCTTAATCCCTCCACGGTCAGTTGAMEDHTHHHHNHTAGHGTVAERYTPPAPATDTAPDHRQHGGHGGKDDHAVHTQGQHAGHSTAMFKNRFWLTLVLSVPVVYFSPMVGHLLGYMAPTFPGSAWIPPVLGTAIFIYGGQPFLTGGLRELKARRPGMMLLIAMAITVAFAASWTTSLGIGGFDLDFWWELALLVAIMLLGHWLEMRALGSAQGALDALAALLPDEAERIQGDSTEIIPVAELREGDTVLVRSGARMPADGIIVGGQAEFDESMITGESKTVPRGDGDTVVAGTVATDNSVRVRVTAVGENTALAGIQRLVAEAQASSSKAQALADRAAAFLFYFAAGAGIVTFVAWTLLGSVPEAVTRTVTVLVIACPHALGLAIPLVIAISTEQAARAGVLIKNRMALERMRTVDVVLFDKTGTLTKGEPELTDIAAAPGVDADSLLTLAGAAESDSEHPVARAVVRAARQRNLTIPPANGFSSLTGRGVRAEVDGRIVHVGGPALLRELGTAEPDELAPSTGAWMARGAAVLHVIDGGRVLGAVSLEDAVRPESRQAVAALQNRGVKVAMITGDARQVAQAVAEDLHIDEVFAEVLPADKDKKVAELQARGLKVAMVGDGVNDSPALARAEVGIAIGAGTDVAMESAGVVLAGNDPRAVLSMVDLSRASYVKMWQNLMWATGYNVLAIPLAAGVLAFAGVVLSPAAGAVLMSVSTIVVALNAQLLRRIRLNPSTVSNANANANANA
D1-29_04361579hypothetical proteinATGACCACAGCTGCACGCCGGCTCATGACGGCCTCCGTTCAGCGCACGCGCCTTCAGCGGGCCTTTCTTATGCGGCCGCTTCTGATCGCTGCGGTTCTGGCCATCGCGGCGGGGATCTTCGGAATGCATGTCATGACCGGCGGCAATCATGCCGGGCACTCCCCCAACGTGGCCAAAACGCCAGCCGCTGCAGCCAACAGCACGGCAGACGCCCACGGCACAACTGACAGCCACGCGAACGCCCTCACCGCAGGCCAAAGCTTGCCTGACAGCCACGCTGATCACCTCACCGCAGGCCACGACACGGCAACCGGATCCGAATTCGAGCACTCGTCACTTTCGGAACCTCGGTCCTACACCTGTTCCACAGAATGCACGCGCCAGACAGAGGGCAGCGGCGCCCACGCTATGGGCAGTCAATGCGTCCCTTCCGCCAAAACAGGCTCGCTGGCGGCACCGCAACCCGGAACCGCAGCCCTGGCCTTCACGGGCTATGGACGGTCCGTTACACCCACCGTTGCTTATAGCTATCTGCGGGAGGGTCCTTCTCCCGGTGAGCTGTCGATCAGCCGGACGTAGMTTAARRLMTASVQRTRLQRAFLMRPLLIAAVLAIAAGIFGMHVMTGGNHAGHSPNVAKTPAAAANSTADAHGTTDSHANALTAGQSLPDSHADHLTAGHDTATGSEFEHSSLSEPRSYTCSTECTRQTEGSGAHAMGSQCVPSAKTGSLAAPQPGTAALAFTGYGRSVTPTVAYSYLREGPSPGELSISRTNANANANANA
D1-29_04362624hypothetical proteinATGAACAAAAAACTCCTGACCCTTTCAGCAGCCTCCTTCGCCGTGGCTCTCACCTTGGCCGGCTGCGCCGCCGATTCCGGCTCCACCCCGATGCCAGGCATGAGCCACGGCAGCTCCGGAATGAGTCATGGCAACTCGGCACCGGCAGCATCAGCTGACCACAACGCCGCCGATGTAAAGTTCGCGCAAATGATGATTCCGCACCACGCGCAGGCTGTGGAAATGAGCGACATGATCCTGGACAAAACCGAAATCCCTGCTTCCGTCACAGCCTTGGCCACGAAGATCAAGGAAGCGCAGGGCCCGGAAATCGACACGATGACCGGCTGGCTCAAGAGCTGGAACGAACCCACAGAGATGGCTGCCGGCCACTCCATGAGCGGCAGCGGGATGAGCGGCATGATGGACGAGGCAGCCATGAAGGAACTTCAGGCCGCCCAGGGAACCGATGCCGCCCGGCTGTTCCTCACCCAGATGACTGCCCATCACGAAGGGGCAGTGACCATGGCCAAGGCCGAAACAAGTGAGGGCAAGAATCCGGAAGCAGTAGACCTGAGCAAGAAGATCGTGACCGCACAGGAAGCCGAAATCAAAGAAATGCAGGAGCTCCTGGCCACACTCTGAMNKKLLTLSAASFAVALTLAGCAADSGSTPMPGMSHGSSGMSHGNSAPAASADHNAADVKFAQMMIPHHAQAVEMSDMILDKTEIPASVTALATKIKEAQGPEIDTMTGWLKSWNEPTEMAAGHSMSGSGMSGMMDEAAMKELQAAQGTDAARLFLTQMTAHHEGAVTMAKAETSEGKNPEAVDLSKKIVTAQEAEIKEMQELLATLNANANANANA
D1-29_04363600hypothetical proteinATGTTGTATGATTCGGGAATGCCGAAGCTCTGGAATGAGACTATCGAGACTCACCGCGATGCTGTGCGGGCGGCCATTCTGGATGCTACTGCCGCCCTCGTACGAACGCAGGGCGTTGGCGCCGTGACCATGTCCGGAATCGCACAGGCGGCCGGGATCGGGCGCGCCACCTTGTACAAGTACTTCACTGACGTGGAGGCCATCCTGACGGCCTGGCATGAGCGTCAGATCCGGATCCACCTGGAGCATCTCGTTCAGGTCCGGGATCAAACGGCCGGGATCGCGCAGCAACTGGAAGCGGTGCTGCAGTCCTATGCGTTCCTGGCACATTCAGGCCATAACGATGCGGAATCTGTGCGACTGCACCAGGGCGGGCACACCGGGCGGGCCCAGCAGCAGCTTCAGGGTTTCCTGTCCGATCTGCTGCGCGAGGGGGCGGAGGCGGGAGTATTCCGGTCAGACGTGGCGCCCGAAGAACTGGCCGGTTTCTGCCTGCACGCCCTCGAGGCCGCTGGCAGTTTGAAGTCTCCTGACGCTGTCCGCCGCCTGGTGAAAGTGACCCTCACGGCCCTGCAGCCGGTAGAGACTTCCGTGGGCTAAMLYDSGMPKLWNETIETHRDAVRAAILDATAALVRTQGVGAVTMSGIAQAAGIGRATLYKYFTDVEAILTAWHERQIRIHLEHLVQVRDQTAGIAQQLEAVLQSYAFLAHSGHNDAESVRLHQGGHTGRAQQQLQGFLSDLLREGAEAGVFRSDVAPEELAGFCLHALEAAGSLKSPDAVRRLVKVTLTALQPVETSVGNANANANANA
D1-29_04364531hypothetical proteinGTGAAACTTTTCACTACGGGGATCCGCAAGTTCGCCCTGACCGTCCACATCGCAACGTCTGTCGGCTGGCTGGGGGCCGTTGCTGTTTTCCTGGTTCTGGCAATGGGAGGCATGACCTCTTCGGATCCGCAGCTGGTCCGGGCAGCGTACGTTGCGATGAACGTGGTCGGCTGGACAGTAATCTTCCCCCTGAGCCTGGCATCGTTGCTCTCCGGCGTTATCCAGGGGCTCGGAACCACGTGGGGCCTCTTTCGCCACTATTGGGTCCTGATCAAACTCCTGGTCACCACCTTGGCCACCGCCCTGCTGCTCCTTCATCTGCAACCGGTCACGCGGATGGCCGAGATCGCCCTGAACGCGGACCTTGCCCTCACTGATGCCGCAGGAATGCGGGTCCAGCTTGTGGCGGACGCCGGCGCCGCGCTGCTCGTACTCCTGGTGGCCACGGTCCTGTCCGTCTACAAGCCGCGAGGCCTGACCCGGTACGGGCAGTCCCGCCTCGAAAAACAGCAGTCCAGCCGCCCCACCTAGMKLFTTGIRKFALTVHIATSVGWLGAVAVFLVLAMGGMTSSDPQLVRAAYVAMNVVGWTVIFPLSLASLLSGVIQGLGTTWGLFRHYWVLIKLLVTTLATALLLLHLQPVTRMAEIALNADLALTDAAGMRVQLVADAGAALLVLLVATVLSVYKPRGLTRYGQSRLEKQQSSRPTNANANANANA
D1-29_04365984btuD_17Vitamin B12 import ATP-binding protein BtuDATGATCATCGAAGCGGAGCAGCTGAGCCGGAACTTTACCGTCGCCGAACCGGGGACGGGGCGTGGGCTCAAACGGCTCAAACGCCGACGGCGGACAGTGCACGCGGTCCGGGACGTGAGCTTCACGGTAGAGGCAGGGGAAGCCGTGGGCTATATCGGCGCCAACGGAGCCGGGAAGTCCACCACCATCAAGATGCTCACCGGCATCCTGGTGCCTTCCTCAGGGCGCGTCTCTGTCTGCGGACTGCAGCCCGTCCCTCAGCGTCAGGCACTGGCCCGGAAGATCGGTGTGGTGTTCGGGCAGCGCTCGCAGCTCTGGTGGGACCTTCCGCTCCAGGATTCCTTTCCCATCCTGGGTGCCATGCACCGCCAGCCGGAGAGCCGCTGGCGTCCCCGGTTCCAGGAACTGTCGGAGCAGCTGGCCCTTGAGCCGTTCCTCGGCACCCCCGTCCGCCAGCTGTCGCTGGGGCAGCGCATGCGCGGAGAGGTGGCGGCGGCGCTGCTGCACCGGCCCGAGCTGGTCATCCTGGACGAACCCACCATCGGCCTTGACATGATCAGCAAGGAGAGCCTGCGCCGCTACCTGGATTTCGAGCGCCGCGAACACGGGACCACGCTGCTGCTGACCACCCACGACATGAGTGATGTCCAGCGGCTCTGCCAGCGGGTACTGGTAGTGGACGACGGCGCCATCGCCTTCGACGGTCCCCTCACCGGGCTCGCGGAAGTTGCGGAAGCCCGCCGCACCATGGTGGTTGACTTCAGTTCGCCATTGCCGGCCGCCGGCCTGGTCCTGCCCCAGGGCGCCACCCACCTCGGGACCGAGGCGGAGGACATCCGGCACCGCATCACCTTCGACCCGCGGCAGCTCTCGGCCGCGGCGCTGCTGGCGGCAGTCTCGGCAACGGCTGCCGTTGCCGACTTGTCATTGCACGAGCCGGATATCGAAGACCTGGTGCGGCGGCTGTACACCGCGGCGCGGTAGMIIEAEQLSRNFTVAEPGTGRGLKRLKRRRRTVHAVRDVSFTVEAGEAVGYIGANGAGKSTTIKMLTGILVPSSGRVSVCGLQPVPQRQALARKIGVVFGQRSQLWWDLPLQDSFPILGAMHRQPESRWRPRFQELSEQLALEPFLGTPVRQLSLGQRMRGEVAAALLHRPELVILDEPTIGLDMISKESLRRYLDFERREHGTTLLLTTHDMSDVQRLCQRVLVVDDGAIAFDGPLTGLAEVAEARRTMVVDFSSPLPAAGLVLPQGATHLGTEAEDIRHRITFDPRQLSAAALLAAVSATAAVADLSLHEPDIEDLVRRLYTAARNANANANANA
D1-29_04366873hypothetical proteinGTGGCTGAAACTGAAACTGGAACTGGGACTGAAACTGGAACTGCAGACGGCCCGGCCCTGGACAGCACTCCGGTCACCAACGCCAAGCTGCTGCGGCTCCTGGTGTCTGCACGGTTGCGCTCGCAGACGGCGTACCGGGGAAGCTTTGCCGCCGACGTCGCCGGCCAGATGATGCTGGCCCTCACGGAGTTTGTGGAGCTCTACGCCATCGTGCACAACGTCCCGGCCTTCGGGGGCATGACCTTTGCCCAGACCCTGCTGGTGTTCGGCTTCGCGTCGGTGGGCTTCTCTGCCGCGGATCTGCTGCTGGGCGAGACCGATTCCATGAGTGACGCCATCCGGATGGGAAAGCTGGAGGTCCTGCTGGTCCGGCCGCTGCCTGTCCTGCTGCAACTGATGACCTCCGACTTCCAGCTACGGCGTGTGGGCAGGCTGGTCTTCGCGCTGGTGGCCCTGGCTGCGGCCTTGTTCCTGACCGACATTCAGTGGGACCCGGGGAAGGCGGCCTTGTTCATCGCCACGCCCCTGGCCGGCGCCGGGATTTTTGGCGCGCTGTTTGTCGGGGCGGGGGCGCTGCAGTTCTGGCTCCTGGACGGAAGGCAGTTCGCGAATGCCTTTACGTATGGCGGCCGGTATGTGGCGTCGATGCCTGGCGCCGCCCTGTTCCTGCCCCTGCAGGTCTTTTTTACGTTCGTGATCCCTGCGACGCTCGTGGCGTATGCCCCCAGCCTGGTTCTGCTCGGGCTTGACGGACCGGCCGGAATACCCAGCTGGACGGGCTGGCTGGGACTGCCTGCCGCCGTCGTTCTCTGGGCGCTTATGCTGCTGCTGTGGCGGGCGGCCATCAAAAAGTACACCGGAGCAGGAGGCTAGMAETETGTGTETGTADGPALDSTPVTNAKLLRLLVSARLRSQTAYRGSFAADVAGQMMLALTEFVELYAIVHNVPAFGGMTFAQTLLVFGFASVGFSAADLLLGETDSMSDAIRMGKLEVLLVRPLPVLLQLMTSDFQLRRVGRLVFALVALAAALFLTDIQWDPGKAALFIATPLAGAGIFGALFVGAGALQFWLLDGRQFANAFTYGGRYVASMPGAALFLPLQVFFTFVIPATLVAYAPSLVLLGLDGPAGIPSWTGWLGLPAAVVLWALMLLLWRAAIKKYTGAGGNANANANANA
D1-29_04367795hypothetical proteinGTGCGCGCGTATTGGGAGCTGGCCAAGTCATCCTTCCGCCGCCATTCCACCTACCGCCTGGCCGCACTGTATGGAGCGTTCACCAACACTGTCTTCGGCCTCATCCGTGCCTCCCTGCTGCTGTCGGCGATTTCGACGGCGGGCGGCACCATCGGGGGCTACTCGGCAATCGAGGCGGCAACCTATGTGTGGCTGGGGCAGGCGCTCCTGGCCCCGCTGGGACTCTTCGGCAGCGCGGAACTGGCCGGGCGGGTCAAAAGCGGGGACATCGCCGTCGACCTTTCCCGGTCCGTGAACCTCACCGCCTCCTACTGGGCTCAGGACATGGGGCGGGCGGCCTTTGACGTCCTGCCCCGGGGACTTCCGCCGCTGATCGTTGGGGCCATTGTCACCGGGCTGTCCCTTCCCACCGATGCCGGCCCGTACGTGCTGGGTTTCGTCTCCATCCTGGCCGCCATCACCCTGAACTTCCTGGGCTTTTTCATGATCAACCTGCTGGCCTTCTGGGTGGTCGAAGTCCGTGGCTACTGGATGTTGTACATGGTGGTGATGAACCTGCTGTCCGGGTTCCTGGTTCCCGTGACGTGGTTCCCGCAATGGATGCTGGACTTCGCCCGCGCCACTCCGTTCCCCTCCATGCTGCAGACCCCGGTGGACATCCTGGCCGGAAGGACCGACAGCGGAGAAAGCCTTGCGCTGGTGGGCGTCCAGCTCCTGTGGCTGGCAGTGCTGCTGGCCGGCACCCAGCTGATGGTCCGGTACGGTTCGCGGAAGCTGGTGGTCCAGGGTGGCTGAMRAYWELAKSSFRRHSTYRLAALYGAFTNTVFGLIRASLLLSAISTAGGTIGGYSAIEAATYVWLGQALLAPLGLFGSAELAGRVKSGDIAVDLSRSVNLTASYWAQDMGRAAFDVLPRGLPPLIVGAIVTGLSLPTDAGPYVLGFVSILAAITLNFLGFFMINLLAFWVVEVRGYWMLYMVVMNLLSGFLVPVTWFPQWMLDFARATPFPSMLQTPVDILAGRTDSGESLALVGVQLLWLAVLLAGTQLMVRYGSRKLVVQGGNANANANANA
D1-29_043683474hypothetical proteinATGCCATCCCTACCGGACGAGAGTGCGGCACTGGCAATACAGACTCCCGCCATCAACGACCGCTCCCTCGCGGCCGGACTGGCCTATGCCATGGGAAGCCGCGTTTCGGGGATCTCGTTCGACGCCACCACCGGCCTCATGCTGGGCAAGGTCCGGGGAGGCGCTGACGTCCCCTATTCCACCACCGCCAAGCTGGTCCGGAAGTCAGGCGGCTGGAGCTGCACCGTTGGTGTCTGCAGCTGCCCGGTGCGCAAGGACTGCAAGCACGTGGCCGCCCTGCTGTTCGCCGCCGAGGACAATCCGGCCACCCGCGTCCAACTGCTGGCCCCGGCGGAGGTTTCGCGCCTCTCCCGCCAGCCCGCCACGTTTGAGCTGGCCGACTGGGAACAGGCCCTGAGCCCGCTCATCTCCCAGCCGGGCATCACCCAGTCCACCAACGGCATCCCCCTGGCACTGCAGTTCGAAATCGAAGAACCGGCCCCGCACTTCTCCTACACAGGCCGCCGGGACCCGCTCCGCAGCGTCCGCCAGCTCAAGGCCCGGCCCGTGATCATGGGCACCAAGGGCAAGTGGATCCGCGGCGATGTCTCGTGGAACACGCTGAGCTACCTGAACTTCCGGCGTGAATGCAACGAGGCGCACGTGGAGTGGATGCAGACGTTCCTGGCCGCCCACACCGCCGCCGCCAACCGCCTGCATAACTCCTCGGCCCTCTGGCTGGGGCTGAATACCTTCGCCGGCAAGAACATGTGGGGCCTGCTGGCAGATGCCCAGAAGATCGGCCTGGCCCTGGTCCACAGCCGCGGCAGTGAGCCGGTGCGGCTCGCAGAGTCCCCCGCCGCCGTCGGGCTTAATCTGAGCCGGTTCGGCTCCGCGGCAACCGCGAATGCCGCAGGCGGCCCGCCCGCTGATAATGAAAAAGCGGACGACGGCGGCGGGCTGGAGCTCGCTCCCACCATCACCGTTGAGGGGGCGGAGGTTGACCCGGCAGCGGTGGGGACCATCGGCCGGCCCGCGCACGGCATCTTCCTGACCACCGGAGGGGAAGCCCTCCCTGGTGTTGCCGCGGACAACGTGATCACCCTGGCCCCGCTGGAGAACGGGCTCAGCGAGGAACTGCTGACTTTCGTCACCGCGGGCAGCACCCTGCACATCCCCGCGAAGGACGAGACGCGTTTCCTCACCGGTTTCTACCCGAAGCTCAAACAGGCAGCCCGGGTCACGGCCAAGGACGAGTCCGTGGAACTGCCCACGCTGGCTGTCCCCACACTCTCGCTGCTGGCCAACTACGGGGCCGACCACAAGGTCCGGCTGCACTGGGAATGGCATTACACCTCCGGCACCCTGGTGACGGCGCAGCCCCTGTGGCGGCACCCCGGTGACCACGGCTACCGTGATGACCTCGCCGAGGCCCGGATCCTGGAGGGCGTCGGCCAGCCCTGGGACCTGGTCCCGGCCCTCGGTGAGTCCGCTACTGGCGGCTGGGGAACTCCGCGGCTGGCGGCTTCGGCCGAACTGGGTGGCCTGGATACGCTGGCGTTCACCGAGGACGTACTGCCCATGCTCCGCCGCACCCCTGACGTTGTGGTGGACACCTCCGGCGACATCGCCGACTACCGGGAGGCCGAGGAAGCCCCGGTGGTGTCCATTTCCACCAAAGCCACCGAGCAGCGCGACTGGTTCGACCTCGGAATCCAGATCTCGCTTGAGGGCCAGCCGGTCTCCTTCGCCGCGGTGTTTTCCGCCCTGGCGGCCGGGCAAACCAAAATGCTGCTGCCCAGCGGCGCCTATTTCTCCCTCGACCTGCCCGAGCTGCATCAGCTGCGCGCGCTGATCGAGGAGGCCCGCTCGCTGCAGGACAACAAGGACGCGCCCCTGCAGATCAGCCGTTTCCAGGCCGGCCTGTGGGACGAACTGGCCCAGCTGGGCATCGTGGATGAGCAGGCCGCTGCCTGGCGCTCGGCGGTGGGTGGGCTGCTGGAAGGCGGCGTCAAAGGACTGCCGCTGCCTGACTCGCTCCACGCCGAGCTGCGCCCGTACCAGCTGGAGGGCTTTAACTGGCTCACGTTCCTTTACCGGCACAGCCTGGGCGGGATCCTCGCGGACGACATGGGCCTGGGCAAAACCGTGCAGGCCCTCGCCCTGATGTGCGCGGCCAAGGAGCATGCCGTTTCCGAGGGCCGCGCCAACGGTGACGCTCCAGGACCAGCGCAGGGAACAGCGTCCGACGGCGGCACGCCCTTTTTGGTGGTGGCGCCCACCAGCGTGGTGGGCAACTGGGCAGCCGAGGCCGCCCGTTTCGCCCCGGGCCTGACGGTGCAAACCATTGGCGAAACGTTCGCGAAAAACAGCAAGGACGCCGCACTGGCGCTCGCCGGTGTGGATATCGTGATCACCTCCTACGCCCTGTTCCGGATCGACTACGACTCCTACGCATCCAGGCCGTGGGCCGGGCTGGTCCTGGATGAGGCCCAGTTTGTGAAGAACCACCAGTCCAAGGCCTACCAGTGCGCCCGAAAACTGCCGGCGGCATTCAAGCTGGCCATCACCGGCACGCCGCTGGAGAACAACCTGATGGAATTCTGGGCACTGACCTCCATCGTTGCGCCGGGCCTGTTCGCCAGCCCCAAGCGGTTTGCCGAGTACTACCAGAAGCCGGTGGAAAAGAACGGCGACAAGGGACAGCTGGAGAAGCTCCGCCGTCGGGTCCGTCCGCTGATGATGCGCCGCACCAAGGACCAGGTCATCCAGGACCTGCCGCCCAAGCAGGAGCAGATCCTTGAAGTGGTGCTGAATCCGCGGCACCAGAAGGTCTACCAGACCCACCTGCAGCGCGAACGGCAGAAGATCCTGGGCCTGATCGAGGACGTTAACAAGAACCGCTTCACCATCTTCCAGTCGCTGACCCTGCTCCGGCAGCTCAGCCTGGACGCCTCCCTGGTGGATCCGTCGCTTTCCGGCGTTCGGTCCAGCAAACTGGATGTTCTCTTTGAGCAGCTGGAGGACCTGGTGGCGGAAGGCCACCGCGCATTGATCTTCAGCCAATTCACCGGGTTCCTGGGCAAGGTGCGCGAGCGGCTGGTGGAGGAAAACATCGAGTTCTGCTACCTCGACGGCAGCACCCGGAACCGCACAGACGTGGTCAATGAGTTCAAGAACGGCGCCGCGCCCGTCTTCCTGATTTCGCTCAAGGCCGGCGGATTTGGCCTGAACCTGACGGAAGCCGATTACGTGTTCCTGCTTGATCCCTGGTGGAACCCGGCGTCCGAGGCCCAGGCCGTGGACCGTACCCACCGGATCGGGCAGGCTCGGAACGTGATGGTGTACCGGCTGGTTGCCAAGGACACCATCGAGGAAAAGGTCATGGCGCTGAAGGCACGGAAGTCCCAGCTGTTCGCGGATGTGATGGAAGGCGACGCCCTCTCCGGCGGAGCCATCACCGCGGAAGACCTGGCTGGCCTGTTCAAAGAGTAGMPSLPDESAALAIQTPAINDRSLAAGLAYAMGSRVSGISFDATTGLMLGKVRGGADVPYSTTAKLVRKSGGWSCTVGVCSCPVRKDCKHVAALLFAAEDNPATRVQLLAPAEVSRLSRQPATFELADWEQALSPLISQPGITQSTNGIPLALQFEIEEPAPHFSYTGRRDPLRSVRQLKARPVIMGTKGKWIRGDVSWNTLSYLNFRRECNEAHVEWMQTFLAAHTAAANRLHNSSALWLGLNTFAGKNMWGLLADAQKIGLALVHSRGSEPVRLAESPAAVGLNLSRFGSAATANAAGGPPADNEKADDGGGLELAPTITVEGAEVDPAAVGTIGRPAHGIFLTTGGEALPGVAADNVITLAPLENGLSEELLTFVTAGSTLHIPAKDETRFLTGFYPKLKQAARVTAKDESVELPTLAVPTLSLLANYGADHKVRLHWEWHYTSGTLVTAQPLWRHPGDHGYRDDLAEARILEGVGQPWDLVPALGESATGGWGTPRLAASAELGGLDTLAFTEDVLPMLRRTPDVVVDTSGDIADYREAEEAPVVSISTKATEQRDWFDLGIQISLEGQPVSFAAVFSALAAGQTKMLLPSGAYFSLDLPELHQLRALIEEARSLQDNKDAPLQISRFQAGLWDELAQLGIVDEQAAAWRSAVGGLLEGGVKGLPLPDSLHAELRPYQLEGFNWLTFLYRHSLGGILADDMGLGKTVQALALMCAAKEHAVSEGRANGDAPGPAQGTASDGGTPFLVVAPTSVVGNWAAEAARFAPGLTVQTIGETFAKNSKDAALALAGVDIVITSYALFRIDYDSYASRPWAGLVLDEAQFVKNHQSKAYQCARKLPAAFKLAITGTPLENNLMEFWALTSIVAPGLFASPKRFAEYYQKPVEKNGDKGQLEKLRRRVRPLMMRRTKDQVIQDLPPKQEQILEVVLNPRHQKVYQTHLQRERQKILGLIEDVNKNRFTIFQSLTLLRQLSLDASLVDPSLSGVRSSKLDVLFEQLEDLVAEGHRALIFSQFTGFLGKVRERLVEENIEFCYLDGSTRNRTDVVNEFKNGAAPVFLISLKAGGFGLNLTEADYVFLLDPWWNPASEAQAVDRTHRIGQARNVMVYRLVAKDTIEEKVMALKARKSQLFADVMEGDALSGGAITAEDLAGLFKENANANANANA
D1-29_043691149hypothetical proteinGTGCCTCAGCACCAGGCATCCGAAGAATCTACCGCCACCCATATAATTCCCTTCCTCCGTGGCGGCTCAGCGTATGAGCGGTCCGGCCCCGCTCAGGCGGTGTCGGCCCGCAGCGCTTTTGCGGGCGAGGGCCGCTCGTACGGCGCAGGGCAGGGGGAAACCTCGGCACCGGCCCAGCCGCTCACTCCCCTGCGCCCCGACGCGTTTACAGTCCCCTATCGTGATCCCATCTGGGACGGCCCCACCGATCCCATTCTGGTCCCGGACCACCTCACCGGCGAATGGGTCCTGTTCTACACGCAGCGCCGTGCGACAGCGCCGGGCCTGACCGGCGTCGAGTGGGTGCACGGCACGGGAATAGGCGTGGCGAGATCGTCCGACGGCGGACTCAGCTGGAGCTACGAAGGTACCGTGGACGGACTGGTGCCCCCTGGAACTGAACTCCCCGCCACTCTCTGGGCGCCCGACGTCGTACGGATCGGTGACCAGTGGATCATGTACCTGACCGTCCTGGGCGGGGTGCGTACGGACTGGACGGGTAGTGCGTCCATCGTCCAGTTCGCCAGCCCGGATCTGGTGAACTGGGAGTACCTTGGTGCCCTGGACCTGGATTCGCCGCGCGTCATTGACGCCGCCGTGGCCCTGTGCGGCGATGGCCGCTACCGGCTCTGGTACAAGGACGAAGCCCGGGCGTCGAAAACATACAGTGCTGTCAGCGACACACCTGAGGACCCGTCGTCGTGGGTTCTTGAAGGCCTCACCATCCCGGGCCGCTCACATGAGGGGCCCAAGGTCTTCCAGCTCGAGGGAACGTTCTGGATGATCGTGGACGAGTGGCGGGGCCAGGGTGTTTACCGCTCGGAGGACGGCACGGGAGGTTGGACCCGGCAGGAACACCTCGACGGGCTCATCCTGACGCAACCGGAATCCGTGGGAGGACGGCCCGTCGTCGGACGGCATGCAGACGTGGTTCCCCTCGCACCGGCGGAGGACGGCAGGGAACGTGCCCTGCTGGTCTACTTCACCCACCCGTACTGGGGTGGGGAGGACATCGACACCATGGCCCCTGACCCCAGGACGCACCTGAGCCACGTCCGGGCGGCAGTATTGGAAGTACTGGACGGAAACCTGGTCTGCACGGAGCACTGAMPQHQASEESTATHIIPFLRGGSAYERSGPAQAVSARSAFAGEGRSYGAGQGETSAPAQPLTPLRPDAFTVPYRDPIWDGPTDPILVPDHLTGEWVLFYTQRRATAPGLTGVEWVHGTGIGVARSSDGGLSWSYEGTVDGLVPPGTELPATLWAPDVVRIGDQWIMYLTVLGGVRTDWTGSASIVQFASPDLVNWEYLGALDLDSPRVIDAAVALCGDGRYRLWYKDEARASKTYSAVSDTPEDPSSWVLEGLTIPGRSHEGPKVFQLEGTFWMIVDEWRGQGVYRSEDGTGGWTRQEHLDGLILTQPESVGGRPVVGRHADVVPLAPAEDGRERALLVYFTHPYWGGEDIDTMAPDPRTHLSHVRAAVLEVLDGNLVCTEHNANANANANA
D1-29_043701290amt_3Ammonia channelATGGATTCGGGAAATGTCGCTTGGATTCTGGCCAGTTCAGCACTGGTCTGCATGATGATTCCCGCCCTCGCCTTGTTCTACGGGGGCATGGTGGGGTCTCGCCGCATTCTCAACATGATGATGATGTGCTTTGGTGGGGCCAGCCTGGTTGCTGTGCTGTGGGCGCTGTTTGGCTACTCGATGGCCTTTGGAAATTCCGTGGGAGGCTTGGGCCTCATCGGGGACATCACCGAGTTCCCCGGCATGGGTCAGCTGATGGAAGCAGATGAGGCAGCATCCATTCCGGTGATCCTCTTCGCGGCTTTCCAGCTGTTCTTCGCCTGCGTCACTACGGCCCTGGTTGCGGGAGCGGCAGCCGGGCGGATGAAGTTCGGGGCCTGGATGTTGTTTGCCGGGATCTGGGCCACCATCGTCTACTTCCCCATCGCACACTGGGTGTTCGCCTTCTCCTCGGCGGACGGGAGCGTTACCGGTGGCTGGATCGCCAGTGGAATCAAGGCGATCGACTTTGCAGGCGGAACCGCTGTTCACATGAATGCGGGTGCCGCAGCGCTCGCCTTGGCCCTGGTGCTGGGCAAGAGTTCCGGCTGGCCGAAGATGGAACACACCAAGCCGCACAGCCGGCCGCTGGTACTGGTGGGCGCAGGGCTGCTCTGGGTTGGCTGGTTCGGTTTCAACGCCGGCTCGGCACTTTCTGCCGGCCAGTCCGCCTCTGTGGTGTTTCTCAACACCGCAGTCGCAGCCTCGGCCGGACTCCTCGCCTGGGCTCTGGTTGAACGGTTGCGCAGCGGGGCCGCCACCAGCATGGGTGCAGCTTCAGGCCTGATCTCCGCACTCGTTGCCATCACCCCTGCCTGTGGTGCCGTGAGCCCCCTCGGTGCCCTCGCCATCGGAGCCATAGCCGGCGCGGTCTGCTCCCTCGCCATCGAGTTGAAGTTCCGTCTGGGCTTCGATGATTCACTCGACGTGGTGGGCGTCCACCTGGTCGGCGGCATGCTGGGCACCCTGCTCATCGGTTTGTTCGCCACCGACGCGGCTCCGAATGGAGTGAGCGGCCTCTTCTACGGCGGCGGCGTCGAGCTCCTCGGTGTCCAGGCTTTGGCCACGGTGACGGTGCTGGCCTACTCGTTCGGCATCACATGGATCCTGGCGAAGATCCTTGACCGGACCATTGGACTCCGCATCAAGCCGGAGGACGAGATGCGCGGCATCGACCTCGCCGCCCACTCCGAGCTGGCGTACCTTACTGACGAAGACCCAGTGGAGCTGGGCTCCCCGCACCGAAGCTAAMDSGNVAWILASSALVCMMIPALALFYGGMVGSRRILNMMMMCFGGASLVAVLWALFGYSMAFGNSVGGLGLIGDITEFPGMGQLMEADEAASIPVILFAAFQLFFACVTTALVAGAAAGRMKFGAWMLFAGIWATIVYFPIAHWVFAFSSADGSVTGGWIASGIKAIDFAGGTAVHMNAGAAALALALVLGKSSGWPKMEHTKPHSRPLVLVGAGLLWVGWFGFNAGSALSAGQSASVVFLNTAVAASAGLLAWALVERLRSGAATSMGAASGLISALVAITPACGAVSPLGALAIGAIAGAVCSLAIELKFRLGFDDSLDVVGVHLVGGMLGTLLIGLFATDAAPNGVSGLFYGGGVELLGVQALATVTVLAYSFGITWILAKILDRTIGLRIKPEDEMRGIDLAAHSELAYLTDEDPVELGSPHRSPGPT0000840_5225DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
D1-29_04371561hypothetical proteinGTGGAGGGCCATTGTTATTCCAACGGCACACCGATCCAACCAGACCAGGTGGGCGAATCAGAAAGAGATGCAAAGGAAGCAGGGACAGCCGTGAGTCACACAACAGTTCTGGACCAACGTACCGCCGGCGCCGTCACTCATGACCTGGCCGCTGACTTCCATACTCTGGGACTTGCCGGCTGCATCGACAAGCTGACTGCTCCGCTGCGCCGGCAAGGTGTTGCGGTGCACTGGGAGACGCCGCATCACGGCATCGAAATTCCCGCAGCCTGCGCCGCCTTGCTTTACCAGGCTGCCCAGGAAACACTCACCAACGCCTTCAAATACTCCCGGGCAACCGCGGTCACTGTCCGCCTGGCAGCGGTTTTCCATGGCGTTCGGCTGACCATCACCGACGACGGCGTGGGATTCAGCGCCGACAGCAATGCCAACAGCCGGACCAATCACGGCTACGGCCTCAGACTGATGGCCATGGCCGTCCATGAAGCCGCCGGCACCATCACAGTGGAGTCCGCCCGCGGTGAGGGTACCCGCGTATGCATCACCCTTCCGCTGGACTGAMEGHCYSNGTPIQPDQVGESERDAKEAGTAVSHTTVLDQRTAGAVTHDLAADFHTLGLAGCIDKLTAPLRRQGVAVHWETPHHGIEIPAACAALLYQAAQETLTNAFKYSRATAVTVRLAAVFHGVRLTITDDGVGFSADSNANSRTNHGYGLRLMAMAVHEAAGTITVESARGEGTRVCITLPLDPGPT0017175_1128DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675NANA
D1-29_04372576hypothetical proteinGTGGATCCGCTCGAGTTCCGGAACGCCGGGGAGTGGGACTCGTGGCTCACCGCAAACGAAGGCAACACGAGCGAGGCCTGGCTGCTGATCGGCAAGCGGCATTCCGGGGCGGCGTTGCTGACCATTGAGGAAGCGCTGGACGTGGCGCTGTGCCACGGCTGGATCGATGGCCAGCGCAAGTCCAATGACGACGCGTCATTCCTCCAGCGGTACTCGCGGCGGCGGGCGAAAAGCTCGTGGTCCCGGATCAACGTGGTCAAGGCGGAGGCCTTGATGGAATCCGGGCGCATGAAGCCGCCGGGACTTGCGGAGATCGACGCAGCCAAGGCGGACGGACGCTGGGCTGCAGCGTATGAGTCCCAGCGCACCGCGGACGTGCCGCCCGACCTGACGGCCGCGCTGGCCGCTGACCCCGCTGCCGGAACAGCCTTCGAAAACCTGGGCAAATCGGAACGCTACGCCGTGATCCTTCCACTCCTCAAGGCCCGTACGCCTGAATCTCGGGCAAAGACCCTGGCGCGGGAGGTGGCGAAGCTGGCGGGCCCGACTTCTGCTGTCAGTCCAGCGGAAGGGTGAMDPLEFRNAGEWDSWLTANEGNTSEAWLLIGKRHSGAALLTIEEALDVALCHGWIDGQRKSNDDASFLQRYSRRRAKSSWSRINVVKAEALMESGRMKPPGLAEIDAAKADGRWAAAYESQRTADVPPDLTAALAADPAAGTAFENLGKSERYAVILPLLKARTPESRAKTLAREVAKLAGPTSAVSPAEGPGPT0006365_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006365-adhP-K13953NANA
D1-29_04373426hypothetical proteinGTGAGCCTACGGGGATTCAGCACCATCAACTTCTGGGCCGACGACGTGGCAGCTGCCACCGCCTGGTATCAGGAATTCCTTGGTCTTGACGCCTACTTCCAGCGGCCCGGGCCGGACGGGATCCTCGCCTACTCGGAGTTCCGCATCGGTGATTACCAGAATGAGCTGGGCATCATCGATAGCCGCTTCCGGCCGCCGTCGACAGCAAATGGGCCTGGTGGCGCCGTGATGCACTGGCATGTTGACGATCTCAGTGCCACCGTGGAGCGGCTGTTGGAGATGGGTGCCACGGAGTACCAGCCCATCACCGCCCACGGGGACTCGGGTTTCATCACCGCCTCAGTGGTGGACCCCTTTGGAAATGTGCTGGGCGTGATGAACAACCCCCATTACCTGGACGTGCTTGCCTCCCGCCCGCAGGGCTGAMSLRGFSTINFWADDVAAATAWYQEFLGLDAYFQRPGPDGILAYSEFRIGDYQNELGIIDSRFRPPSTANGPGGAVMHWHVDDLSATVERLLEMGATEYQPITAHGDSGFITASVVDPFGNVLGVMNNPHYLDVLASRPQGNANANANANA
D1-29_043741929mobA_2COG06543-hydroxybenzoate 4-monooxygenaseGTGCAATTCCACCACCACGGTTACGTATCCGGTGACCCGCGGGTCCAGCCAACCGCCGGCGTCGGCATCAACCGGCCCGCCGACCTTCCCAGTGAGGTGGATGTGCTGATCGTTGGTTCCGGCCCTGCCGGAATGCTGGCCGCTGCCCAGCTGTCCCGGTTCCCGAATGTCACTACGCGCATTATTGAGCGCCGTCCCGGCCGCCTCGCCATCGGCCAGGCCGATGGCATCCAGGCCCGAAGCGTAGAGACCTTCCAGGCTTTTGGCTTCGCCGAACGGATCATTGCCGAGGCGTACCGCATCACTGAAATGGCGTTCTGGAAGCCGGACCCGGCAAACCATGCCAACATCATCCGGACCGCCCGCGCCGTCGACGACGAGATGGGCATCAGCGAGTTCCCGCACCTCATCGTCAACCAGGCCCGCGTCCTGGACTACTTCGCTGAGTACATGGCGAACGCACCCACCCGCATGACGCCGGACTATGGCTACGACTTCCAGGGCCTGAGCGTTGCCGATGAGGGCGAGTACCCGGTCACCGTGACACTCCTCCACACCGCTGGCCCGAACGAAGGGCAGGAGCGCACTGTCCGCGCCAAATACGTGGTGGGGGCTGACGGCGCGCGGAGCAAGGTGCGCCAGGCCATTGGATGCACCCTCGCCGGGGACCAAGCCAACCATGCCTGGGGCGTCATGGATACGCTGGCGGTCACTGACTTCCCGGACATCCGAACCAAGTGCGCCATCCAGGGAGCCGAGGGCAGCATCCTGCTGATCCCGCGCGAGGGTGGCCACCTGTTCCGGATGTACGTGGACCTCGGCGAGGTGGACCCCGCAACCCATCATGCGGTCCGCAATACCAGCATCGAGCAGATCATCGCCAAGGCGAACGCCATCCTTCATCCGTATACCCTGGATGTCCGGAACGTCGCGTGGCACAGCGTCTATGAGGTGGGCCACCGCCTCACGGACCGGTTCGACGACGTCCTGCCGGAGGACCGCGGTACCCGCACCCCCCGCGTTTTCATCACGGGCGACGCCTGCCATACGCACAGCGCCAAGGCCGGCCAGGGCATGAACGTCTCCATGCAGGACGGCTTCAACATTGCCTGGAAACTTGGACACGTCCTGGAGGGGCGCAGCCCGGAGAGCCTGCTGTCCACGTACTCGGAGGAGCGCCAGGTGGTAGCCAGGAACCTGATCGACTTCGACAAAGAGTGGTCCGCGATGATGGCCAAGAAGCCGGAAGAGTTCGAGAACCCTTCCGATCTCGAGGACTTCTACGTGCGCACCGCCGAATTCCCGGCCGGCTTCATGACGCAGTACGCACCATCCATGCTCGTGGCTGCCTCCGACCACCAGGACCTGGCCGCCGGCTTCCCGATTGGCAAGCGTTTCAAGTCGGCGCCCGTTGTCCGTATCGGCGACACCAATCCCCTGCACCTTGGCCATCATGCCACTGCTGACGGCCGGTGGCGCATCTACGTTTTCGCCGATTCCGCCCTGCCCGGAACGGGAACGGGGCCGGCGCGTTCCGCCACCGATCAGCTTGCCGAGTGGCTTGCGAACTCGCCGGAATCACCGCTGGCTGCGACGCCGTCGGACGCTGATCCGGACGCATGGTTCGACGTTAAGGTGATCTACCAGCAGCCCCACACGGCCGTTGACATCGGCGCGGTGCCGGCTGTGTTCAAGCCGCAGGTGGGGCCGTTCAGGCTGACCGACTACGAGAAGGCCTACGCCACCGATCCGAATGCGGACATCTTTGAACTGCGCGGCCTGAGCCGCAACGGCGTTGTGGTGGTGGTGCGTCCGGACCAGTACGTGGCCAACGTCCTGCCCCTGACGGCGACGTCCGAACTGGTAGCGTTCTTTGCGCCCCTGCTGCGCCACCGGATCTCCAGCTCCTCGAGTGAACTGCGTGCATAAMQFHHHGYVSGDPRVQPTAGVGINRPADLPSEVDVLIVGSGPAGMLAAAQLSRFPNVTTRIIERRPGRLAIGQADGIQARSVETFQAFGFAERIIAEAYRITEMAFWKPDPANHANIIRTARAVDDEMGISEFPHLIVNQARVLDYFAEYMANAPTRMTPDYGYDFQGLSVADEGEYPVTVTLLHTAGPNEGQERTVRAKYVVGADGARSKVRQAIGCTLAGDQANHAWGVMDTLAVTDFPDIRTKCAIQGAEGSILLIPREGGHLFRMYVDLGEVDPATHHAVRNTSIEQIIAKANAILHPYTLDVRNVAWHSVYEVGHRLTDRFDDVLPEDRGTRTPRVFITGDACHTHSAKAGQGMNVSMQDGFNIAWKLGHVLEGRSPESLLSTYSEERQVVARNLIDFDKEWSAMMAKKPEEFENPSDLEDFYVRTAEFPAGFMTQYAPSMLVAASDHQDLAAGFPIGKRFKSAPVVRIGDTNPLHLGHHATADGRWRIYVFADSALPGTGTGPARSATDQLAEWLANSPESPLAATPSDADPDAWFDVKVIYQQPHTAVDIGAVPAVFKPQVGPFRLTDYEKAYATDPNADIFELRGLSRNGVVVVVRPDQYVANVLPLTATSELVAFFAPLLRHRISSSSSELRAPGPT0005430_229DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_BENZENE|PHENOL_DEGRADATION,PGPT0005430-mobA|pcpB|mhpA-K03380NANA
D1-29_043751566hypothetical proteinGTGATCGTATACGATTTCGTACCCGATGAGGAGACAACCTTGGAGAAGGTCAACGAAGACACCCTGGCGGCAGCACGCAAGGTGATCGCGGTGCATATCAATTACCCCAGCCGCGCAGCGCAGCGGGGCCGCACTCCGGCCCAGCCGTCCTACTTCCTCAAGCCATCGTCGTCGCTGGCCCTCGGCTCAGCAGAGGCCCCCGGGACGGTGGAACGGCCCTCAGGCTGCGAACTTCTCGGCTATGAAGGCGAAATTGCCCTGATCATCGGCAAACCTGCCCGCCGTGTGGGCCTTGACGATGCCTGGAGCCACGTCGCCGCCATTACGGCCAGCAATGACCTCGGCGTCTATGACCTTCGCTACGCGGACAAAGGTTCCAACCTCCGGTCCAAAGGTGGCGACGGCTTCACGCCGGTGGGCCCGGGCCTGATCGCGGCAGACATGGTGGACGCCGCCGGGCTCCGAATCCGCACCTGGCGCAACGGCGAACTGGTCCAGGACGACACCACGGAGGACCTGCTCTTCCCGTTTGCCCGCCTTGTGGCCGATCTCTCCCAGCTGCTCACCCTCCAGGAGGGGGACATCATCCTCACCGGCACGCCCGCCGGCGCGTCGGTCGCCACGCCGGGCGATGTCCTGGAAGTGGAGGTGGGCACCGTTGACGGCAGCCTCACCACGGGCCGCCTGGTCACCCGGGTGGAGGAAGGCACGACGCCGTTTGCGGACTTTGGTGCCGAGCCCCAGACTGATGACCTGCAGCGGGAGGAGGCCTACGGCTCTCGCGAGGCCGCCGGACTGCCAGCCGTCGATGATGCAGGGGCGGGCGCCGCCGTCGGGCCTGTCCTCTCCCCCGAACTGAAGGCAAAGCTGGAAAGCGTGTGCACCGCAACACTGTCCTCACAGTTGCGCAAGCGCGGCCTGAACAACGTCAGCATCGACGGCCTCACCGCCACCCGCCCGGAGAAGCGCGTGGTGGGGCTGGCCCGGACGCTCCGTTACGTCCCCAACCGCGAAGATCTCTTCAAGATCCATGGCGGCGGCTTCAACGCGCAGAAAAGGGCCATCGACTCTGTCAACGAGGGCGAAATCCTGGTCATGGAGGCCCGGGGCGAAAAGGGCACCGGCACCATCGGTGACATTCTGGCCCTGCGGGCCCAGGTCCGCGGTGCGGCAGCCATCATCACCGACGGCGGTGTCCGGGATTTCTCCGCTGTGGCAGCGATGGAGATGCCCACCTACTATTCCAACCCGCACCCTGCAGTGCTGGGCCGGCGCCACATCCCGTGGGACACGGACATCACCATCGCCTGCGGCGGCACCACCGTGCAGCCCGGCGACATCATCGTGGCTGACTCGGACGGCATCCTGGTCATTCCGCCGGCTCTGGCCGAGGAAGTGGCGGACGAATCCATCGTGCAGGAACGCGAGGAGACGTTCATTGCGGAAATGGTGGAGCAGGGCCACAGCGTGGACGGGCTCTATCCCTTGAACGCCGCCTGGCGCAAAAAGTACGAGGAATGGGAAGAAGGCATGGGAAGAAGCACGGGAAGCGGGCCGGTCCAATGAMIVYDFVPDEETTLEKVNEDTLAAARKVIAVHINYPSRAAQRGRTPAQPSYFLKPSSSLALGSAEAPGTVERPSGCELLGYEGEIALIIGKPARRVGLDDAWSHVAAITASNDLGVYDLRYADKGSNLRSKGGDGFTPVGPGLIAADMVDAAGLRIRTWRNGELVQDDTTEDLLFPFARLVADLSQLLTLQEGDIILTGTPAGASVATPGDVLEVEVGTVDGSLTTGRLVTRVEEGTTPFADFGAEPQTDDLQREEAYGSREAAGLPAVDDAGAGAAVGPVLSPELKAKLESVCTATLSSQLRKRGLNNVSIDGLTATRPEKRVVGLARTLRYVPNREDLFKIHGGGFNAQKRAIDSVNEGEILVMEARGEKGTGTIGDILALRAQVRGAAAIITDGGVRDFSAVAAMEMPTYYSNPHPAVLGRRHIPWDTDITIACGGTTVQPGDIIVADSDGILVIPPALAEEVADESIVQEREETFIAEMVEQGHSVDGLYPLNAAWRKKYEEWEEGMGRSTGSGPVQNANANANANA
D1-29_04376690hypothetical proteinATGACTGAAACAGCCACCGACACTGAGACCACGTCAGCCAACATCACCGGCAGCAAGTCCGAGCAGGCCTACCGGGCCATCAAGGCCAGGATTGTGGAAGGCACGTATACGCCCGGGTACCGGCTGGTGCTGGCCAGCATCGCCAAGGACCTGGGTTTCAGCGTGGTCCCGGTCCGGGAGGCCATCCGGAGGCTTGAAGCCGAAAACCTGGTCAAGTTCGAACGCAACGTGGGCGCCACCGTGTCCGGGATTGATCCCACCGAATACCTGTACACGATGCAGACGCTGAGCATCGTGGAGGGGGCGGCGACGGCGATGTCCGCACCTCTGATCGACTCGGTGGCAATAGCCCGGGCCCGTGCCGTGAATGCCGAGATGCGCGAATGCCTGGAGCACTTCGATCCCGTCCGGTTCACCCGGCTGAACCAGGACTTCCACAGCATCCTGTTCGAGCACTGCCCCAACCCGCACATTCTTGATCTGGTTCATCGCGGCTGGAACCGGCTGGCCTCCCTTCGCTCCTCCACGTTCCGCTTTGTCCCGGGCCGGGCCCATGATTCCGTGGACGAGCACGAGGCCCTCTTGAAGCTGATCGAGGACAGCGCCAGCGCCGACGAGATCGAAAAGGCCGCCCGTCTGCACCGCTCCGCCACCCTGGACGCCTACCTGAGCCAGGCCAAAAACATCTGAMTETATDTETTSANITGSKSEQAYRAIKARIVEGTYTPGYRLVLASIAKDLGFSVVPVREAIRRLEAENLVKFERNVGATVSGIDPTEYLYTMQTLSIVEGAATAMSAPLIDSVAIARARAVNAEMRECLEHFDPVRFTRLNQDFHSILFEHCPNPHILDLVHRGWNRLASLRSSTFRFVPGRAHDSVDEHEALLKLIEDSASADEIEKAARLHRSATLDAYLSQAKNINANANANANA
D1-29_043771542amnC2-aminomuconic 6-semialdehyde dehydrogenaseATGACGTTCACTGCCCAAGAAACCAAAGCCCATTACGTGCCGCAGGACCTGCCCGCCCACATCCAGCACTACATCAACGGCCAGTTCGTTGATTCCGTGGGCGGGGCGACCTTCGACGTCCTGGACCCTGTCTCCAACACCAACTACGCCACCGCCGCGGCCGGCCAGAAGGAGGACATCGACCTCGCCGTGGCCGCCGCCCGCGAGGCCTTCACCAACGGACCCTGGCCGAAGATGAAGCCCCGCGAACGGGCCCGGGTCCTGAACAGGATCGCCGACGCCGTCGAAGCCCAGGAAGAGCGCCTGGCTGAGCTGGAAACCTTCGATACCGGCCTGCCCATCACCCAGGCCAAGGGCCAGGCCCTTCGCGCCGCAGAGAACTTCCGCTTCTTCGCGGACCTGATCGTGGCCCAGTTCGACGACGCCATGAAGGTCCCCGGCTCCCAGATCAACTACGTGAACCGCAAGCCGATCGGCGTCGCGGGCCTGATCACGCCGTGGAACACCCCGTTCATGCTGGAGTCCTGGAAGCTGGCCCCGGCCCTGGCCACCGGCAATACAGTGGTCCTGAAGCCCGCCGAGTTCACCCCGCTCTCCGCGTCACTCTGGGCCACCATCTTCAAGGACGCGGGCCTGCCGGACGGTGTGTTCAACCTGGTTAACGGCCTGGGCGAGGAAGCCGGCGACGCACTCGTGAAGCACCCGGACGTGCCGCTGATCTCCTTCACCGGCGAGACCACCACCGGCCAGACAATCTTCCGCAACGCCGCCGCCAACCTCAAGGGCCTGTCCATGGAACTCGGCGGCAAGTCCCCCTGCGTCGTATTCGCCGACGCCGACCTGGACGCCGCCATCGATTCCGCCCTGTTTGGCGTCTTCTCCCTTAATGGCGAACGCTGCACGGCCGGCTCCCGCATCCTGGTGGAACGGGCCATCTACGACGAATTCTGCGAAAAGTACGCCGCCCGCGCCAAGAACATCGTGGTTGGGGACCCGCACGATCCCAAGACCCAGGTGGGCGCCCTGGTCCACCCCGAGCACTACGAAAAGGTGGCGTCCTACGTGGAGATCGGCAAGTCCGAAGGCCGGTTGCTGGCCGGCGGCGGCCGCCCTAACCACCTGCCTGAAGGCAACTACATCGCACCCACCGTGTTTGCCGACGTCGCCCCCGACGCCCGGATCTTCCAGGAGGAGATCTTCGGGCCCGTCGTCGCGATTACCCCGTTCGAGAACGATGACGAGGCGCTGGCTTTGGCGAACAACACCAAGTACGGCCTCGCGGCCTACATCTGGACGCAGAACCTGACCCGCGCGCACAACTTCTCGCAAAACGTGGAAGCCGGCATGGTGTGGCTGAACAGCCACAATGTCCGCGACCTCCGTACCCCGTTCGGCGGCGTCAAAGCTTCCGGCCTGGGCCACGAGGGCGGCTACCGCTCCATCGACTTCTACACCGACCAGCAGGCCGTGCACATCACACTCGGCAGCGTCCACACCCCCAAGTTCGGCAACATCGAAGCGTCCGCCGCCAACGAAGGCTAAMTFTAQETKAHYVPQDLPAHIQHYINGQFVDSVGGATFDVLDPVSNTNYATAAAGQKEDIDLAVAAAREAFTNGPWPKMKPRERARVLNRIADAVEAQEERLAELETFDTGLPITQAKGQALRAAENFRFFADLIVAQFDDAMKVPGSQINYVNRKPIGVAGLITPWNTPFMLESWKLAPALATGNTVVLKPAEFTPLSASLWATIFKDAGLPDGVFNLVNGLGEEAGDALVKHPDVPLISFTGETTTGQTIFRNAAANLKGLSMELGGKSPCVVFADADLDAAIDSALFGVFSLNGERCTAGSRILVERAIYDEFCEKYAARAKNIVVGDPHDPKTQVGALVHPEHYEKVASYVEIGKSEGRLLAGGGRPNHLPEGNYIAPTVFADVAPDARIFQEEIFGPVVAITPFENDDEALALANNTKYGLAAYIWTQNLTRAHNFSQNVEAGMVWLNSHNVRDLRTPFGGVKASGLGHEGGYRSIDFYTDQQAVHITLGSVHTPKFGNIEASAANEGPGPT0005060_125DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005060-dmpC|xylG|praB-K10217NANA
D1-29_043781095hypothetical proteinATGACAAACTTTGTACCCACCCCCACCGTTCCGGCTCCGGACATCGTCCGCTGCGCCTACATGGAAATCGTGGTCACCGACCTGGCCAAGTCCCGCGCCTTCTACGTGGACCTGCTGGGCCTGCACGTCACCGAGGAAGATGAAAACAACATCTACCTGCGCTCCCTGGAGGAGTTCATCCACCACAACCTGGTGCTGCGCAAGGGACCCATCGCCGCCGTCGCCGCCTTCGCCTACCGGGTCAAGTCCCCGGCCGAGGTGGACGCAGCCGAGGCCTACTACCGCGAGCTGGGCTGCCGAGTGGAACGCCGCAAGGAAGGCTTCACCAAGGGCATCGGGGACTCCGTCCGGGTGGAGGACCCGCTGGGCTTCCCCTACGAGTTCTTCTACGACGTGGAGCACGTCGAACGCCTCACCCAGCGCTACGACCTCTACTCCGCCGGCGAACTGGTCCGCCTGGACCACTTCAACCAGGTCACCCCGGACGTGCCCCGCGGCCGCAAATACCTCGAGGACCTGGGCTTCCGGGTCTCCGAGGACATCCAGGATTCCGACGGCGTCACGTACGCCGCGTGGATGCACCGCAAGCAGACGGTCCACGACACCGCGCTGACCGGCGGGAACGGCCCGCGCATGCACCACGTCGCGTTCGCCACGCACGAGAAGCACAACATCATTCAGATCTGCGACAAGATGGGCGCCCTGCGCATCAGTGACCGGATCGAACGCGGCCCCGGCCGGCACGGTGTCTCCAACGCCTTCTACCTCTACATCCTGGACCCGGACGGCCACCGGATCGAGATTTACACCCAGGACTACTACACCGGCGACCCCGACAACCCCACCATCACCTGGGACGTGCACGACAACCAGCGCCGCGACTGGTGGGGCAACCCCGTGGTCCCGTCCTGGTACACCGAAGCCTCCCTGGTCCTGGACCTCGACGGCAACCCCCAACCGGTGATCGTCCGCGAGGAAAAGTCCGAAATGGCTGTCACCGTGGGTGCCGACGGCTTCTCCTACACCCGCAAGCAGGACAGCGAAGGAACGGATGCCGGAGAAAAGACAGGCTTCAAACTGGGAGCGCAGCTGTAGMTNFVPTPTVPAPDIVRCAYMEIVVTDLAKSRAFYVDLLGLHVTEEDENNIYLRSLEEFIHHNLVLRKGPIAAVAAFAYRVKSPAEVDAAEAYYRELGCRVERRKEGFTKGIGDSVRVEDPLGFPYEFFYDVEHVERLTQRYDLYSAGELVRLDHFNQVTPDVPRGRKYLEDLGFRVSEDIQDSDGVTYAAWMHRKQTVHDTALTGGNGPRMHHVAFATHEKHNIIQICDKMGALRISDRIERGPGRHGVSNAFYLYILDPDGHRIEIYTQDYYTGDPDNPTITWDVHDNQRRDWWGNPVVPSWYTEASLVLDLDGNPQPVIVREEKSEMAVTVGADGFSYTRKQDSEGTDAGEKTGFKLGAQLPGPT0005055_103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-29_04379786hpcG2-oxo-hept-4-ene-1,7-dioate hydrataseATGATGGATGCCACCACGATTGAGGCCATCGCCGACGAACTGCTGGAAGCCGGCCGGAACCGCAAACCCGTGCCCCGGCTGACGGCACGCTACCCGGAGATGACAGTCGAGGACTCCTACGCCGTGCAGCAACTGTGGCGGCGCCGGAACGAGGACGCCGGCCGGACCCTGGTGGGACGCAAGATCGGCCTCACGTCCAAAGCCATGCAGGCCGCCACCGGCATCACCGAACCGGACTACGGCGCCATCTTCGATGACATGGTGCTGGAAACCGGCTGTTCGGTGCAGTGGGACCAGTACACCCACCCGCGGGTGGAGGTGGAGCTGGCCTTCGTCCTAAAGGACGGGCTGAAAGGCCCCGGCTGCACCATCTTCGATGTCCTGAACGCCACCGACTACGTGGTCCCGGCCCTTGAGATCCTTGATTCCCGGATCGAGATGGAGGGCCGGACCATCGTGGACACCATCGCCGACAACGCGGCCATGGGTGCAATGGTGGTCGGCGGCAACCCGGTCCGGCCTGATGACGTGGACCTGCGCTGGGTGGCGGCCATCCTGTACAAGAACCAGACAGTGGAAGAAACCGGCGTGGCCGCAGGCGTCCTGGACCACCCGGCCAACGGCGTGCACTGGCTGGCCAACAAGATCGCCGCCCATGGGGACAGCATGAAGGCAGGGGACATCATCCTGGCCGGCTCGTTCACCCGTCCGCTGTGGGTCTACAAAGGTGACACCGTCCATGCCGACTACGGACCGTTGGGGAGCATCACATGCCGCTTCGAATAGMMDATTIEAIADELLEAGRNRKPVPRLTARYPEMTVEDSYAVQQLWRRRNEDAGRTLVGRKIGLTSKAMQAATGITEPDYGAIFDDMVLETGCSVQWDQYTHPRVEVELAFVLKDGLKGPGCTIFDVLNATDYVVPALEILDSRIEMEGRTIVDTIADNAAMGAMVVGGNPVRPDDVDLRWVAAILYKNQTVEETGVAAGVLDHPANGVHWLANKIAAHGDSMKAGDIILAGSFTRPLWVYKGDTVHADYGPLGSITCRFEPGPT0005055_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-29_04380816hpcHCOG38364-hydroxy-2-oxo-heptane-1,7-dioate aldolaseATGCCGCTTCGAATAGAAGACACCTTCCGGGATGCACTGCGCAAACAAAACGGCAAAGGAGGCAGGCCGCTTGCCGGCATGTGGGTTTGTTCGGGGAGCCCGCTCATCGCCGAAGTGTGCGCCGGCTCCGGCCTGGACTGGCTGCTGATCGATGCCGAGCATAGCCCCAACGGCCTGGAATCCATCCTCGCCCAACTCCAGGCAATCAGCGGCTACCCGGTCCACGCCGTGGTCCGGCCGCCGGTCAACGACACCGTGCTGATCAAGCAGTACCTGGACCTCGGTGTCCAGAACCTGCTGATCCCCATGGTGAATTCCGCCGCGGACGCCGAAGCGGCGGTTGCTGCCACCCGGTACCCTCCCCACGGTGTCCGCGGTGTTGGCTCGGCACTTGCCCGGGCTTCACGCTGGAACCGGATCCCGGACTACCTGGGAAGGGCGGCGGAAACCATCAGTGTCACAGTCCAGATCGAGTCCGCAGCCGCCGTGGAAGCCGTGGACAAGATCCTGGACGTGGACGGTGTGGACGCCATCTTCCTGGGGCCCTCGGACCTTGCGGCCTCCATGGGCGTGCTGGGAGAGCAGGAACACCCGGAGGTCCGGGCCGCCGTCGAACACTGCCTGCAAGCCGCCAGAGCGGCAGGGAAACCGGCGGGCGTGAACGCATTCAATCCCGTCACGGCGAACCAGTACCTGGACAACGGCGCCAATTTCATCCTGGTGGGTGCCGACGTCGCGCTGCTCGCCCGGGGCTCGGAAGCGCTGGCCGCGGAGTTCATCCGGAGATCCGACGGCGGTTCCCGCGCCAGCTACTGAMPLRIEDTFRDALRKQNGKGGRPLAGMWVCSGSPLIAEVCAGSGLDWLLIDAEHSPNGLESILAQLQAISGYPVHAVVRPPVNDTVLIKQYLDLGVQNLLIPMVNSAADAEAAVAATRYPPHGVRGVGSALARASRWNRIPDYLGRAAETISVTVQIESAAAVEAVDKILDVDGVDAIFLGPSDLAASMGVLGEQEHPEVRAAVEHCLQAARAAGKPAGVNAFNPVTANQYLDNGANFILVGADVALLARGSEALAAEFIRRSDGGSRASYPGPT0001575_247DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001575-hpaI|hpcH-K02510NANA
D1-29_04381372hypothetical proteinATGTTCGCCTCATCAGCACCCGGCCAGCTGCTGCTGATCGCCGGGCAGACGCTGGTGGTGGTGTGCCTTTGCTTTGACATGGTGCGGGCGCTTTCGGTGCCGAGGTCGCACCGCCGGTACGTGGCCAGCACCGTCTTCCGGACCCTGGCTATCCCGTCGGTCATCGTCAACGGTGTCACTGTCCTGATCGCTTTGCTGCTGTGGTCCTGGATGGACGTGGTCACCGGCATGTTTGTCCTGGTCGCCATCATCTTCCGGCTGCACCATGACAAGGACGAGGACAACTGGTGGAAGGGCATGGGCAAGAAGCTGGCCCGCTGGGCGCGCCGCCAGTTCGCCGGCCGCACGTCCGCCGCCCCTGCCATGGGTTGAMFASSAPGQLLLIAGQTLVVVCLCFDMVRALSVPRSHRRYVASTVFRTLAIPSVIVNGVTVLIALLLWSWMDVVTGMFVLVAIIFRLHHDKDEDNWWKGMGKKLARWARRQFAGRTSAAPAMGNANANANANA
D1-29_04382426hypothetical proteinGTGGACATCAATGCTGACCAGCCGATCTTTGTGATCTCCGTGGCTGCCGAGCTGGCGGACATGCACCCACAGACGCTGCGGCAGTACGACCGGCTCGGCATCGTCTCGCCCAGCCGCGCGCCCGGCAAGTCCCGCCGCTACTCGCAGCGGGACATCAACATGCTGCGCGAAGTGCAGCGGCTCTCGCACGAGGGCGTCTCACTGGAGGGCATCAAGCGGATACTTGAGCTGGAACACCAGGTGCGTGCCCTTCAGCGCAAGGTGTCGGAGCTGACCGAGGAACTGGGCCGCCGTCGTAATCCCCTTGATTCAAGGATTTTTGCCGCTGGAGCCGCCGGCGACGTCGTGAGCCTGGCACGCGGCCAGCGCCCGCGTGCCCGCTCCCAGGCCGTGGTGCTCTGGCGGCCGCGGGCACTCACCGACTAGMDINADQPIFVISVAAELADMHPQTLRQYDRLGIVSPSRAPGKSRRYSQRDINMLREVQRLSHEGVSLEGIKRILELEHQVRALQRKVSELTEELGRRRNPLDSRIFAAGAAGDVVSLARGQRPRARSQAVVLWRPRALTDPGPT0014625_460DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014625-hspR-K13640NANA
D1-29_04383972dnaJ_3COG0484Chaperone protein DnaJTTGGCTAGCCAGGATTGGGTGGACAAGGACTTTTACGCGATCCTTGGTATCGCCAAGGACGCTTCCGACGCCGACATCAAGAAGGCTTACCGGAAGCTCGCCCGCCAGCACCACCCGGATACCAACTCGGGAAACACTGCGTCGGAGAAAAAGTTCAAGGACATTTCCGAGGCGTATTCCGTGCTGTCCGATCCCGAGGAGCGGCAGCAGTATGACGCCATCCGTGCCATGGGCGGCGGCGCCAGGTTTGCGCCCGGCGGCGCCGGTGCCGCCAACGGCGGATTCGAGGACATGTTCGGCGGCCTCTTTACCGGCAGCACCGGTCGCCACGCCGGCGGCTTCAGCACCTCCGGCGGCATTCCGCCCGAGTTCGCCGACCTGTTCGGCGGCGGCTTCGGTGCCCAGCCCGGCTTCCAGCGGACGCCGCAGAAGGGTGCCGACCGTACCGCTTCCACCACTATTTCGTTCGCCGGCTCCATCCGCGGCACCACCATCGGCCTGCGCGAGCCCAGCGGCGAGGTGATTGACGTCCGGGTTCCGCCGGGCATCAAGGATGGCCAGAAGGTCCGCGTCCGCGGGAAGGGCCAGCCAGGTCCGGCCGGCAACGGTGACCTGGTGGTTGCCGTTTCGGTCAAGCCCCACGATTTCTACACGCGCGACGGCGACAACCTGCGCATCCACGTACCGGTCAGCTTCCCCGAAGCTGCTTTGGGCGCCGACATCGAAGTTCCCACCATTGACGGAGACAAGGTCCGGGTCCGGGTACCTGCCGGCACACCTTCCGGGCGTACGCTGCGGGTCAAAGGCCGTGGCGTCAAAACGTCTAAGGGCGAGGGCGATCTCCTGGTGACCATCGACGTCGCGGTCCCCAAGAACCTGAATAAGGAAGCAGAAGCTGCGGTGAAGGCCTTCGCCGAGGCCACAGCCGATGCCGACGTCCGTCAGGGCCTGGCCGCCAAGGCCCGGCTGTAGMASQDWVDKDFYAILGIAKDASDADIKKAYRKLARQHHPDTNSGNTASEKKFKDISEAYSVLSDPEERQQYDAIRAMGGGARFAPGGAGAANGGFEDMFGGLFTGSTGRHAGGFSTSGGIPPEFADLFGGGFGAQPGFQRTPQKGADRTASTTISFAGSIRGTTIGLREPSGEVIDVRVPPGIKDGQKVRVRGKGQPGPAGNGDLVVAVSVKPHDFYTRDGDNLRIHVPVSFPEAALGADIEVPTIDGDKVRVRVPAGTPSGRTLRVKGRGVKTSKGEGDLLVTIDVAVPKNLNKEAEAAVKAFAEATADADVRQGLAAKARLPGPT0014545_6464DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
D1-29_04384747grpECOG0576Protein GrpEATGCCCCACCACGGTAACGAGGAAGAGCACAGCTCCTCCGCCCACGAGGAGCACCGTAAAGTCCGGGAAAGCCAGGAGCGCCAGCAGGAACAGCAGGCCAGCGGCCAGCAGGAGCCGGTCATCCGGGACAACCGCAAGGTTGACCCGGTGACCGGGCAGGCCCGCCACCCGCAGGGCGAGCAGCATGCTGCCCCCGCCGAGGCGGCGGCCGGCGCTGAAGCCTTTGCAGATTCTGATGGTGACGCCTTGGCCCAGGCCGAGGAGATCCTTAACGGCATTGAGGTGCCCGCCGAGGAATCCGTGGCCCAGGGGGTTTCGCCGGAGGCAACCACAGCTGAAGCCGCCGAGCTGAAGAATGACCTGCTCCGCCTCCAGGCTGAGTATGTCAACTACCGCAAGCGCGTTGAACGTGACCGTGCCGTAGCAGGGGAGATGGCCGTCATCGGCGTCCTGAACTCGCTGCTCCCGGTACTGGATGACGTGGACGCCGCCCGGCAGCACGGTGACCTGAACGACGGCCCGTTCGCCGCGATCGCCACCAAGCTGGAGAACGCGCTCAAGACGTACGGCCTGATCCGCATCGATGAGACCGGAGTGGAGTTCGATCCCACGATCCATGAGGCCCTCATCCAGCAGCCCGGCGAGGACATCGAGGTTGACACCGTCAGCCAGGTACTCCGCTCAGGCTACAAGTCAGGCGACCGCGTCCTCCGCGCAGCCCAAGTGATTGTGGCCGTCCCGGCTTAGMPHHGNEEEHSSSAHEEHRKVRESQERQQEQQASGQQEPVIRDNRKVDPVTGQARHPQGEQHAAPAEAAAGAEAFADSDGDALAQAEEILNGIEVPAEESVAQGVSPEATTAEAAELKNDLLRLQAEYVNYRKRVERDRAVAGEMAVIGVLNSLLPVLDDVDAARQHGDLNDGPFAAIATKLENALKTYGLIRIDETGVEFDPTIHEALIQQPGEDIEVDTVSQVLRSGYKSGDRVLRAAQVIVAVPAPGPT0014650_1503DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687NANA
D1-29_043851872dnaK_2COG0443Chaperone protein DnaKATGTCACGTGCAGTAGGTATCGACCTCGGAACAACAAACTCCGTCGTCTCCGTTCTCGAAGGTGGCGAGCCCACCGTCATTGCCAACGCCGAGGGTGGCCGCACCACGCCGTCGGTCGTTGCATTCTCCAAGTCCGGCGAAGTGCTGGTTGGCGAAATCGCCAAGCGCCAGGCCGTCAACAACATTGACCGCACCATCGCCTCCGTCAAGCGCCACATGGGCACCGACTGGAGCGTCTCGGTTGATGACAAGAAGTACACGGCGCAGGAAATCTCCGCCCGTATCCTGATGAAGCTTAAGAACGACGCCGAGTCCTACCTCGGCGAAAAGGTCACCGACGCCGTGGTCACCGTTCCGGCGTACTTCAACGACGCCCAGCGCCAGGCCACCAAGGAAGCCGGCGAGATTGCCGGCCTGAACGTTCTCCGCATTGTCAACGAGCCCACCGCGGCTGCGCTGGCCTACGGCCTGGACAAGGGCAAGGAAGACGAACTCATCCTGGTCTTCGACCTCGGCGGCGGAACTTTCGACGTCTCCCTGCTGGAAGTCGGCAAGGATGAGGACAACTTCTCCACCATCCAGGTCCGCGCCACGGCCGGTGACAACCACCTCGGCGGCGACGACTGGGACCAGCGCGTTGTTGACTACCTGCTGAAGCAGCTCAAGGTCAAGGGCATTGACCTCTCCAAGGACAAGATCGCCCTGCAGCGCCTGCGTGAAGCGTCGGAGCAGGCTAAGAAGGAACTCTCCTCCTCCACCAGCACCAACGTCTCCCTCCAGTACCTCTCCGTCACCCCTGACGGCCCGGTCCACCTGGACGAGCAGCTGACCCGCGCAAAGTTCCAGGACCTCACCAAGGACCTGCTGGACCGCACCAAGAAGCCATTCCAGGACGTCATCAAGGAAGCCGGCATCAAGCTCTCCGAGATCGACCACATCGTGCTGGTGGGCGGTTCCACCCGTATGCCCGCCGTTTACGAACTGGTCAAGGAAATGGCCGGCGGCAAGGAGCCGAACAAGGGCGTCAACCCTGATGAGGTCGTGGCCGTTGGCGCCGCACTGCAGGCCGGTGTCCTCAAGGGTGAGCGCAAGGACGTGCTGCTGATCGACGTCACGCCGCTTTCCCTCGGCATCGAGACCAAGGGTGGTGTCATGACCCACCTGATCGAGCGGAACACGGCTATCCCCACCAAGCGCTCCGAGACCTTCACCACGGCTGATGACAACCAGCCCTCGGTGGCTATCCAGGTCTTCCAGGGCGAGCGTGAATTCACCCGCGACAACAAGCCGCTGGGCACGTTCGAGCTGACCGGCATCGCGCCGGCTCCGCGCGGCGTCCCGCAGGTCGAGGTCACCTTCGACATCGACGCCAACGGCATTGTGCACGTCTCGGCGAAGGACAAGGGCACCGGCAAGGAGCAGTCCATGACCATCACCGGCGGCACCGCCCTGTCCAAGGAAGACATCGACCGCATGGTCCGTGACGCTGAGGAACACGCAGCCGAGGACAAGGCCCGCCGCGAGGCAACCGATACCCGCAACACGGCCGAGCAGCTCGCCTACTCCGTGGACAAGCTGATCGCCGACAACTCGGACAAGCTGCCTGAGGAGGTCAAGACCGAGGTCCAGGCCGACGTCGACGAACTCAAGAAGGCCCTGGAAGGCACGGATGACGCCGCCGTGAAGACTGCTTTCGAGAAGCTGCAGGCTTCCCAGGGCAAGCTCGGCGAAGCCATCTACGCGCAGGCCGGGTCGCCTAACGGCGCCACCGGAGCCGCAGGTGCCGAAGGCGCCGCGGGTGCGGATGAAAAGGCTGCTGACGAAGACATCGTTGACGCCGAAATCATCGACGAAGACGAAGCGAAGAAGTAGMSRAVGIDLGTTNSVVSVLEGGEPTVIANAEGGRTTPSVVAFSKSGEVLVGEIAKRQAVNNIDRTIASVKRHMGTDWSVSVDDKKYTAQEISARILMKLKNDAESYLGEKVTDAVVTVPAYFNDAQRQATKEAGEIAGLNVLRIVNEPTAAALAYGLDKGKEDELILVFDLGGGTFDVSLLEVGKDEDNFSTIQVRATAGDNHLGGDDWDQRVVDYLLKQLKVKGIDLSKDKIALQRLREASEQAKKELSSSTSTNVSLQYLSVTPDGPVHLDEQLTRAKFQDLTKDLLDRTKKPFQDVIKEAGIKLSEIDHIVLVGGSTRMPAVYELVKEMAGGKEPNKGVNPDEVVAVGAALQAGVLKGERKDVLLIDVTPLSLGIETKGGVMTHLIERNTAIPTKRSETFTTADDNQPSVAIQVFQGEREFTRDNKPLGTFELTGIAPAPRGVPQVEVTFDIDANGIVHVSAKDKGTGKEQSMTITGGTALSKEDIDRMVRDAEEHAAEDKARREATDTRNTAEQLAYSVDKLIADNSDKLPEEVKTEVQADVDELKKALEGTDDAAVKTAFEKLQASQGKLGEAIYAQAGSPNGATGAAGAEGAAGADEKAADEDIVDAEIIDEDEAKKPGPT0014555_4640DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
D1-29_04386267hypothetical proteinATGACCGAGAACAATGATCTCGAAAACGCAGGGATAGACGACGAGAACGCTCCGGCCGCTGTGGAAGAGGGCGAGGGCGAATACCTTGAAGGCGACTATCGCCGTGCCGGCGCCGTTGACCCCGACGCGCACGTCGGTGAAGGCGAATACGCCCAGGGCGACTACGGCCGGGCCGGCACGGCGGGCGCCGGCGAAAGGCCGGACATTTCCGAAGCGGACGCCGCAGGGGAAGACCGCACTCTCCGCGGCGACAGTGAAGGTACCTAGMTENNDLENAGIDDENAPAAVEEGEGEYLEGDYRRAGAVDPDAHVGEGEYAQGDYGRAGTAGAGERPDISEADAAGEDRTLRGDSEGTNANANANANA
D1-29_04387900araQ_16COG0395L-arabinose transport system permease protein AraQATGGCCACCACTACCCTCACACGGCCCGCCCTGCGTCTTAAGGGCTCAGACGCCGGCTTCTCCGCCCGCCGGAAGCGGACTCCGTTGTCCCGCGTCCTTGCCACCGCCGTTGTTACGGTCCTTGCCGTCACGTGGCTCGTCCCCTTCGCCTGGGCAACGGTCACCGCGCTCAAGAGCGAAACAGAAGCCGCGTCCACCCCCATCAGCTGGCTGCCGGCGTCGGGCTTTACGCTGGATGCCTTTACCAAAGTCCTGGCGAGCGGAAACATCCCCACCTGGACGCTGAATTCCCTCTTCACATCGGCGGCCATCACCCTCATCACCCTGGTGATTTCCGCATCAGTGGCCTACGCCATTTCGCGGATCGATTTCCGCGGCAAAGGGATCCTGATGGGCGTTATTATCGCGTCCATCATCATCCCGCCGCCGGTGCTGATTATCCCGCTGTTCCAGCAGATGCAGTCCCTGAACCTTATTGATACCTACTGGGCCCTGATCCTGCCGCAGGTGATCCATTCCCCCATGGTGTTTGTGCTGAAGAAATTCTTCGACCAGATTCCGCGGGAACTGGAGGAAGCGGCACTGATGGACGGTGCGGGCAGGCTGCGGATTTTTACCACGATCGTGCTTCCACTATCCCGTCCGATCCTCGCCGCAGTGGCCATCTTTGTGTTCATCGGGGCGTGGAACAACTTCCTCTGGCCGTTCATCGCCACCAACGAGAGCTCCCTGCTCACCCTGCCGGTTGGCCTGCAGACCATCAAGAGCGCCTACGGCATCCAGTACGCACAGAACATGGCCTCCGCGTTGCTCGCAGCGCTGCCCCTGATCGTGGTGTTCCTGTTCTTCCAGCGGCAGATCATCAAGGGTGTTGCCACTACCGGCCTGGCAGGAACGTAAMATTTLTRPALRLKGSDAGFSARRKRTPLSRVLATAVVTVLAVTWLVPFAWATVTALKSETEAASTPISWLPASGFTLDAFTKVLASGNIPTWTLNSLFTSAAITLITLVISASVAYAISRIDFRGKGILMGVIIASIIIPPPVLIIPLFQQMQSLNLIDTYWALILPQVIHSPMVFVLKKFFDQIPRELEEAALMDGAGRLRIFTTIVLPLSRPILAAVAIFVFIGAWNNFLWPFIATNESSLLTLPVGLQTIKSAYGIQYAQNMASALLAALPLIVVFLFFQRQIIKGVATTGLAGTPGPT0016540_2313DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_043881020lacF_15Lactose transport system permease protein LacFTTGAGTACCGTACGCACGCCGGCTTCAGCCGGAGAAAACCGGGCCGGACAAAGCCCTGCCCAACACACCGCTGCCATCGAAACCTTGGCCGCCGAAACCCACGCCCGAAAGGCAGGTTCCGGGCAGCCTTCCCCAGCCAGGCTGGCCGGCGCCCAGAGCCGGCGCAACAATATCCACGGCTGGGCGTTTTCCGCCCCTTTCCTGGCCTTCTTCCTGATGTTCCTGGTGTGGCCGATGCTTTCCGGCGCCTACATGAGCATGACCGGAACGTCCCTGACCGGCGCCAACACAGGATTTATCGGCCTGGAGAACTACACGGAGGCGTTCGCGGATTCCGACATGTGGCGCTCGCTGGGCAACACGCTGTACTTCACCCTGATCAGCACTGTCCCGCTGGTGGTGATTGCCCTGGCGCTGGCAGCCCTGGTCAACATGGGGCTGCCTGCACAGTGGCTGTGGCGCCTGTCCTTTTTCTCACCCTTCCTGCTCGCCTCCACCGTGGTCTCGCTCTTCTTTGCCTGGATGTACAACCCGGAGCTGGGACTCTTCAATGATGTCCTGGCGAAAATGGGCCTGCCGCCGGTGGCTTGGCTGAACGATCCAGGTGTGGCCATGTGGGCAATCGTGATCGCCACGGTCTGGTGGACCATAGGGTTCAACTTCCTGCTGTACCTGGCCGCGCTGCAGAACATTCCGCAGCAGCATTACGAGGCCGCGTCGCTGGACGGTGCGGGAGGGTGGCGCCAGTTCTTCTCCATCAGCCTTCCCCAGCTGGGCCCCACCACGGTCATGATCGTCATCCTGCAGATCCTGGCGTCCCTGAAGATCTTCGACCAGATCTACCAGATGACCCAAGGCGGTCCCGGCGGGGCCACCCGGCCGATTGTGCAGTACATCTTCGAGGCCGGCTTCACCGGCTACCGGCTGGGCTATTCGGCGGCCATTTCCTATATCTTCTTCGGCCTGATCCTGCTCATCGCACTGGTCCAGGTCTTTTTCACACGGAAACGGAGCGCCTGAMSTVRTPASAGENRAGQSPAQHTAAIETLAAETHARKAGSGQPSPARLAGAQSRRNNIHGWAFSAPFLAFFLMFLVWPMLSGAYMSMTGTSLTGANTGFIGLENYTEAFADSDMWRSLGNTLYFTLISTVPLVVIALALAALVNMGLPAQWLWRLSFFSPFLLASTVVSLFFAWMYNPELGLFNDVLAKMGLPPVAWLNDPGVAMWAIVIATVWWTIGFNFLLYLAALQNIPQQHYEAASLDGAGGWRQFFSISLPQLGPTTVMIVILQILASLKIFDQIYQMTQGGPGGATRPIVQYIFEAGFTGYRLGYSAAISYIFFGLILLIALVQVFFTRKRSAPGPT0016535_5850DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_043891308hypothetical proteinATGCACATGAACCGCCGGCAGGTGCTGATGGGCGGTGGGGCGTTGTTGGGGGGATTGGCCCTGGGGGCGGGGGTGACCGGATGCGGGGGGCCCGTGCAGGCTGCTACCGGTGATATCCGCTTCTGGCACCTGCTCTCCGGCGGCGACGGCATCAAGATGCAGGCCATGATCGATTCGGCCAACGCCCAGCACCGGGCGTTCAACGTCAAACCCACGGTGCTCGCGTGGGGTGCGCCGTACTACACAAAACTTGCCATGGCCTCGGCGGGTGGGCGGCCGCCCGAGGTGGCCGTGATGCACGCGGCCAGGGTTCCCGGCTACGCCCCGGGCGGACTCCTGGATGCCTGGGACCTGGACCTGCTGGCGGAGTTCGGAGTCCGGCCGGAGGATTTCAGCCCCAGGATCTGGGAGAAGAGCCAGTTTGGTGGCCAGGTGTTTTCGCTGGCACTGGACTCCCACCCCTTTGTGATGCTCTACAACACCGAGGTAGCCGACAAGGCCGGAGTGCTGGGGCAGGACGGGCGGCTGCTGGAGATCAGCTCACCTGACCGCTTCTTGGAGGTCAGCCGGGAACTGCAGCGCGTCACAGGAAAACACGGGCTCTCCTACGGCTACCTTGGCGACGGCGCCCAGATGTGGCGCCTCTTCTACACCCTCTACCGGCAGCACGGCGCAGACCTGGTGCTGGACCCGGGCCAGCCGGCCAGAGTGGAGCGGGATGTGGCCATCGACTGCCTGGAGTTCATCACCACCCTGCTTGACAACACCATCGCCACCAAAAGCGGCGACGGCGGGACTGCCATCGCGGAGTTCGCGGGCCAGGGTTCGGGCCTGCTTTTTACCGGCGTCTGGGAGCTGCCCACCATGAAGACGGCGGGGGTTCCCCTGGGTGCGGCCACCATTCCCACCCTGTACGGGACGCCGGCCGCGTTCGCTGATTCGCATTCGTTTGTGCTGCCGCACCAGGCACAGGCTGACGAGGCCAAACGCCGCGGCGTGTACCAGTTTGTGGCGTCCATGCTCAAGGGCTCACTCAGCTGGGCCGAGGCCGGACACATCCCGGCCTTCCAGCCGGTGGTCCGCTCAGCGGAATACGCGGCACTCGATCCGCAGGCCGACTACGCCCACGCCGCGGAGATCATCAACTACGATCCGGAAGCCTGGTTTACCGGATCGGGTTCCGACTTCCAGAGCTACTTTGCCGAGAACGTCCAGAACGTGTTCCTGGGCAGGGACAAGGCCACGGCCGGCTGGGATGCCTTCATCTCCCGGATTAATACCGTCCTGGCCATGCCGAACCCCGTCTGAMHMNRRQVLMGGGALLGGLALGAGVTGCGGPVQAATGDIRFWHLLSGGDGIKMQAMIDSANAQHRAFNVKPTVLAWGAPYYTKLAMASAGGRPPEVAVMHAARVPGYAPGGLLDAWDLDLLAEFGVRPEDFSPRIWEKSQFGGQVFSLALDSHPFVMLYNTEVADKAGVLGQDGRLLEISSPDRFLEVSRELQRVTGKHGLSYGYLGDGAQMWRLFYTLYRQHGADLVLDPGQPARVERDVAIDCLEFITTLLDNTIATKSGDGGTAIAEFAGQGSGLLFTGVWELPTMKTAGVPLGAATIPTLYGTPAAFADSHSFVLPHQAQADEAKRRGVYQFVASMLKGSLSWAEAGHIPAFQPVVRSAEYAALDPQADYAHAAEIINYDPEAWFTGSGSDFQSYFAENVQNVFLGRDKATAGWDAFISRINTVLAMPNPVPGPT0016545_4096DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_043902244apeXCOG2409Apo-petrobactin exporterATGGTGGAGATACTCTATTATGGAATCAATTCTACTCTCCGCAACCTTCGAGGGAACATGCCATCACATCCTGTACGTCGTCCCCGGGTGCCATTCCTGCTGCGCTGGCTCATTCCGGTCCTCCTGGTGCTGACCTGGCTCGCCGTCGCCGGTGTTGGCGGTCCAACGTTCGGCCGGCTGGAAGAGGTGTCCTCCAACGACCAGGCATCGTTTCTTCCGGCCGGCGCTGAAGCCACCGAGGCCCAGGACTGGCAGGCGAAGTTCCGCGACTCCAATGAAATTCCCGCCGTCATCGTCATCGAAAATGACGCTGCCTTTTCTCCGGCGCAGCTTGGACAGGCCGGGGCGGTCAAGGCGGACCTTGAGGCACTCCAGCTGGGCAGCGCCGTGATTGGTCCCATCCCTTCCGCGGATGGAAAGGCTGTGCAATTCATCGCTCCCATCTCCTCGTCGGATGAGCTCAAGGAGGGCGTTCAGGAACTGCGGGATACGCTGGCGGACGCCGCGCCTGAAGGCATGCAGGCCTACGTCACCGGCCCGGCAGGCCTGACCGCCGATCTGGTCAGCGCCTTTGCGGGCATCGACGGAATCCTGCTGCTGGTGGCCCTGGGCGCGGTCTTTGTGATCCTGCTGGTGGTGTACCGGTCCCTCCTGCTCCCCCTGGTGGTGCTGCTGACGTCAGTGTTCGCGCTGTGCGCCGCCATCCTGCTGGTGTTCGGCATGGCCAAGCTGGGGTGGATCCAGCTCAATGGCCAAAGCCAGGGCATCCTGTCCATCCTGGTGATTGGTGCGGCCACCGACTACGCGCTGCTTTACGTTGCCCGGTTCCGCGAAGCCCTCACCCACACCACCGACCGGACGGCGGCTGTGCTGACGGCGTGGAAAGCGTCGGTTGAACCGATCGTGGCCTCGGGCGCGACGGTGATTATTGCCCTGCTGTGCCTGCTGTTCTCCGACCTGAACTCGAACAAGGCCCTGGGCCCGGTGGCCGCGGCGGGCATCCTGTGCTCGCTGTTTGCGGCGCTTACATTGCTGCCCGCGCTGATGGCGCTCCTGGGCAGGGCATCCTTCTGGCCCTTCGTGCCGAAGCTTGTCCCCGCGGATGAACGCGAACCGGAACTCGTCACCGGTCTTGAGGGGCAAAAGGGCATCTGGCGGGCCACCGGATCGCTTGTCTCGCGCAGGCCGCGCATGGTCTGGATCGGATCGGTGCTCCTGCTCCTGGCAGCCTCGGCCGGCCTCCTGCAGCTGAAGGCGAACGGGGTGCCGCAGACCGACGTCATCCTCACCGCCTCCAACGCAGTGGACGGCCAGGACGCGCTGGCGCGGCACTTCGACGCCGGGAGCGGCAGCCCCGCCGTCGTGGTTGCGGACGAAGGCAAGGCAGCGCAGGTGCTGGAGACGGTCAGGGCGGCCGACGGCGTCGGGGAAGCCTATCTCCTGGCCGCGGGAAGCGTACCCATCACCGGAGCCCCCGGTGCTCCCGCTGTCCCCGACGTGCGGGAAGGGAAAGTGCTGATCAACGCAACGCTCGACTACGCGCCGGACTCCGGGGACGCCGAGAATGCCGTGAAGGCGTTGCGCGACCAGGTGAAAACAGTTGACCCCGATGCGCTGGTGGGAGGCGTCACTGCGACGGCCCTGGACACCAACACCACCGCCCAGCGTGACCTGGTAATCATCATTCCGGTGGTGCTGGCGGTCATCCTGGTCATCCTGATGCTGCTGCTGAGGTCGGTGGTTGCCCCGGTCCTGCTGGTACTTTCGGTGGTCCTTTCCTACGGCGCGGCCATGGGCGTATCGGCGCTGGTCTTCAACAACCTGCTCGGATTCCCCGGCGCGGACGCCACCGTGCCGCTGTTCGGGTTTGTGTTTTTGGTGGCCCTGGGAGTGGACTACAACATCTTCCTGATGAGCCGGGTGCGGGAGGAGTCGCTCAAGCACGGGACCCGGCCCGGCATCCTGCGCAGCCTGGGCGTCACCGGCGGGGTGATCACGTCAGCGGGAGTGGTGCTGGCCGCCACGTTTGCGGCGCTTGGCGTCATTCCCATCATGTTCCTGGTGCAGCTGGCGTTCATTGTGGCGTTCGGCGTGCTGCTGGACACCATGCTGGTGCGCTCGCTGCTGGTCCCGGCCCTGGCGTACCACATCGGGCCCCGCATTTGGTGGCCGGGGAAGCTGGGGAAGCCGGAGCTGGACGCCGCCGAAACGGGGGAGCCGGCGTCACGCCACGCCCTCATTTGAMVEILYYGINSTLRNLRGNMPSHPVRRPRVPFLLRWLIPVLLVLTWLAVAGVGGPTFGRLEEVSSNDQASFLPAGAEATEAQDWQAKFRDSNEIPAVIVIENDAAFSPAQLGQAGAVKADLEALQLGSAVIGPIPSADGKAVQFIAPISSSDELKEGVQELRDTLADAAPEGMQAYVTGPAGLTADLVSAFAGIDGILLLVALGAVFVILLVVYRSLLLPLVVLLTSVFALCAAILLVFGMAKLGWIQLNGQSQGILSILVIGAATDYALLYVARFREALTHTTDRTAAVLTAWKASVEPIVASGATVIIALLCLLFSDLNSNKALGPVAAAGILCSLFAALTLLPALMALLGRASFWPFVPKLVPADEREPELVTGLEGQKGIWRATGSLVSRRPRMVWIGSVLLLLAASAGLLQLKANGVPQTDVILTASNAVDGQDALARHFDAGSGSPAVVVADEGKAAQVLETVRAADGVGEAYLLAAGSVPITGAPGAPAVPDVREGKVLINATLDYAPDSGDAENAVKALRDQVKTVDPDALVGGVTATALDTNTTAQRDLVIIIPVVLAVILVILMLLLRSVVAPVLLVLSVVLSYGAAMGVSALVFNNLLGFPGADATVPLFGFVFLVALGVDYNIFLMSRVREESLKHGTRPGILRSLGVTGGVITSAGVVLAATFAALGVIPIMFLVQLAFIVAFGVLLDTMLVRSLLVPALAYHIGPRIWWPGKLGKPELDAAETGEPASRHALINANANANANA
D1-29_04391519hypothetical proteinATGGCAGAGGAAGTGTTCCAGCGCCCGCCAAATGCCGGACCCCAGGCACTGGTCCGACTCCTCCAGGACTTCACCCTCGAGGCAAACCGCTACGTGGACACAGCCGGCGGCCGGAACGACATGCACCGCACTGACCTCAATGCATTGGCCGTGATTATGCGCCACACCGCCAAGGGGCTGGTGGTCACGCCGGGCGTACTGCGCAGGGAACTCAACCTCAGCTCCCCCGCCACCACGGCGTTGATAGACCGGCTGGACAGTTCCGGACACGTGGTCCGCGAACGGCTCGGCTCGGACCGCCGCCAGGTCCAGCTCCGGATGACGCCCAAGGCTTTCCAGGACGGCAGCGCGATGTTTATGCCCCTGTCGCGGCACATGGGCACTGCCATGGCGGCCTTTTCTGCCGAGGAATTGGAAACCGTCTCGCGTTTTATGACCGCCATGGTGGAGGCCACCATCGCCGCCCGGCAGGAGGCTTCCGGAACAGCGTCCGACGCCGGCTCCTCCCCAGCCGGCTGAMAEEVFQRPPNAGPQALVRLLQDFTLEANRYVDTAGGRNDMHRTDLNALAVIMRHTAKGLVVTPGVLRRELNLSSPATTALIDRLDSSGHVVRERLGSDRRQVQLRMTPKAFQDGSAMFMPLSRHMGTAMAAFSAEELETVSRFMTAMVEATIAARQEASGTASDAGSSPAGNANANANANA
D1-29_04392819COQ5_32-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGAGTGCGCAAGAGCCTGAAGACGACGTCTACACCCACGGCCACCACGAGTCTGTGGTCCGCGCCCACGCCGCCCGTACGGCCGAGAATTCCGCCGCGTTTGTCCTTCCGCACCTGACCCCTGGCGTGAGTGTGCTCGACGTCGGCTGCGGACCGGGCAGCATCACCTGCGACTTCGCCGTCCTGGTGTCACCCGGCAAGGTAACAGGGCTGGACCGGTCCCCTGACATCATCGCCCAGGCCACAGCCCTCGCCGCCGAGCGGGGCGTGGACAATGTGGAGTTCCTCGCAGGCAACATCTATGATCTCGATTTTGAGGATGAAACCTTCGATCTGGTCCACGCACACCAGGTTCTCCAGCATCTGACCGATCCGGTGGAGGCGCTGCGGGAAATGCGGCGCGTCGCGAAGCCCGGCGGTATCGTGGCTGTCCGCGACGCCGATTTCCACGGCATGAGCTGGTACCCGGCCATCCCCGAACTGGATGAGTGGATGGACCTGTACCAGCGGATCGCCCGGCGCAACGGAGCGGAGCCCGACGCCGGACGCCGCCTGGTCTCCTGGGCACAGTCCGCAGGGTTTACTGACGTTGCACCCACCAGCAGCAACTGGCTCTATGCCACAGGCCAACAGCGGCGATGGCAGGCCCGTGTGTGGAGCGAACGGGTGCTGCACTCCGCCTTTGCAGAGCAGGCTCTGGAGTACGGCTTCGCCAACCCCGCGGACCTGGCGCGGATTTCAGCAGGCTGGCACCGCTGGGGGTCCACGGACGACGGCTGGTTCCTGATCCCCAACGGGGAAATCATCGCGAGGGCTTAAMSAQEPEDDVYTHGHHESVVRAHAARTAENSAAFVLPHLTPGVSVLDVGCGPGSITCDFAVLVSPGKVTGLDRSPDIIAQATALAAERGVDNVEFLAGNIYDLDFEDETFDLVHAHQVLQHLTDPVEALREMRRVAKPGGIVAVRDADFHGMSWYPAIPELDEWMDLYQRIARRNGAEPDAGRRLVSWAQSAGFTDVAPTSSNWLYATGQQRRWQARVWSERVLHSAFAEQALEYGFANPADLARISAGWHRWGSTDDGWFLIPNGEIIARANANANANANA
D1-29_04393624rhtB_2COG1280Homoserine/homoserine lactone efflux proteinGTGCAACTCTCCCTCTGGCTGGCTCTCGCCGGTACTGGCGCCCTGATCAGCTTCACTCCCGGTGCAGGCGCCATCAACACCATGAGCAATTCGCTGAGAGCGGGCTTCCGGCGCTCCATCTGGGGGATCCTCGGCCAGCAGGCGGCGCTGGTGATCCATGTGGTCATCGTTGCCCTGGGAGTGGGAGTCCTCGTCGCCAGTTCCCCGGTTGCCTTTAACGCCATCCGCTATTTGGGTGCCGCCTACCTGGTCTACCTGGGCATCCGGCAGTTCCTGAGCAAGCCGGGCCTGGACCAGGAGCAGGCTGTGGCCCTCCGGAACGAGCCGGCCTGGTCCATGTTCCGGCGGGGCCTCTGGGTGAATCTGCTCAATCCCAAGGCCGTGGTTTTCTTCCTGGCGTTCATGCCGCAGTTCATCCGCCCGGGGCAGCCACTGCTGGCGCAGTACGCCGTCCTCACGGCCACTGTTGTGGTGATCGACATCCTGGTCATGTGGTTCTTCTTTGCCCTCGCCGCCAAATCCTTCCAGCGGTTCACCCACGATGTCCGGGGACAGCTCATCCTCAACCGGATTTTCGGGGTCCTCTTCGTCGCGGTGGGAGTCCTGCTCGCCCTCATTCACTAGMQLSLWLALAGTGALISFTPGAGAINTMSNSLRAGFRRSIWGILGQQAALVIHVVIVALGVGVLVASSPVAFNAIRYLGAAYLVYLGIRQFLSKPGLDQEQAVALRNEPAWSMFRRGLWVNLLNPKAVVFFLAFMPQFIRPGQPLLAQYAVLTATVVVIDILVMWFFFALAAKSFQRFTHDVRGQLILNRIFGVLFVAVGVLLALIHPGPT0021036_675DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834NANA
D1-29_04394552ptpACOG0394putative low molecular weight protein-tyrosine-phosphataseATGCTTAGCTCCATGAACTCACCGTCGAGCCCATACCGGATCATTGCCGTGTGCACCGGAAACATCTGCCGGTCCCCCATGGCCGAACTGATGTTGGCCGCGGCCCTTGCTGCGGATGGGCTGGACGGCGTAGTGGAGGTGGACTCGGCCGGAACCACGGGCTATGAGGCCGGACGCCCCATCGATCCCAGGGCGGCACGGCGGCTGACCGCCACCAGGCTCGCGTCAGACCGGCACCTCGCCAGGGAATGGCGGGCCGACTGGTTCAGGGAACGGGATCTCATCCTGGCTTTGGATGTGGACCACTACGCCTGGCTGCGGGAATCGGCACCGGACCAGGAGTCCATGGACAAGGTGCGGATGTTCCGCAGCTTTGACCCTGCCATCGCCTCCAAGGACCTGCTGGACCAGGGCATCGAAGACCCCTGGTACGGCGGACAGTCCGATTTTGACGCCGTCTGGCACCAGATCAACGCTGCCGTGCCGGGGATCATCCGGCACGTCCGGGCAGCCCTCCGGGAATCCAGGCAGCTTCAGCCGCAGCAACAGTAGMLSSMNSPSSPYRIIAVCTGNICRSPMAELMLAAALAADGLDGVVEVDSAGTTGYEAGRPIDPRAARRLTATRLASDRHLAREWRADWFRERDLILALDVDHYAWLRESAPDQESMDKVRMFRSFDPAIASKDLLDQGIEDPWYGGQSDFDAVWHQINAAVPGIIRHVRAALRESRQLQPQQQPGPT0014530_3981DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
D1-29_043951116hypothetical proteinATGCATCTCACTGTTGTCAGTTCGATCGATTCCCTGTGCCGGCAGCAGGCGTGCCAGGACCTGGCCGCCAGCCACCCTGAAAGTGTGGTGGTCCTGCATGACCTGCTCGAGAACGGCGTGGTCATTCGGCGGGTCTTCAGCGCAGACCAGCTTCTGGAACGGGTAGAGACGCAGCTCGAGCACGGATGCCTGAGCTGCACGGTACGCCTGGACCTGGTCCCCACCATCGAGGGGCTGCTCTCCGCCGGTGCCACCCGCATCATTGTTGGCCTCCCCTCCGCCGTGCCTGCCGCCGCCGCGATTGCCGCCCTTGACCGTGGGCTGTCCAGTCCCTTCACCATTGATTCGGCCGTCCTGGCCTGTGCCCCGGACGCCCTGGAAGACCACATCTGGGACCACCACACGCTGTTCGAGTCCGGTTTCACGCCCATCCATGAAGACCAGCGCACTCCCGGGGAGTTTCTCCTCGGCGAACTGTGCTTCAACGACACTGTCCTCCTGGCAGCACCGGACATCGTTCCGGCCGACCAGCAAGGACACGAGAGGGGCGTTCACCTGATCCGCGAACTTGCCCCGCACGCCCACGTGGCGCCGGGTGCCACCGATGTACGCCCTGGCCTCCACCACTACGCCGACGCCGTTGCCCGGACGGTTCCCGGGACCGTCCATGATCCGGCTTCCTGCGCAACCGTGCCGGCCTCGCCGTTCGCCACCGTTTTCCAAAGCGTGGAGCGCCCGCTGCACCCGGAGCGGTTCCGGCACGCCCTGGCAACCCTCGCCGAAGGCTGCTGCGTTCTGCGCGGCCGGTTATGGATCGCCTCGGCGCCTGAATGCCGGATCGCCATCCAGGGCATCGGGCCACGCGTCTGGCTCGAAAACACCGGCGCCTGGGGCACCCAGACAGGAGCGCCGCCGTCGGGCTCCAGCGCCGCAACCGCTGCCAGATGCAACCGGCAGCCGGAATGCCGGGGGACCGTGCTGGCAGCAACCGGCGAGGACGTTGACTCGGCGGAGATCGAACAGCTGCTGAGGGGCTGCGAACTGACCGACGCGGAGATGCTCGCCGGCTTTGACGGCCTGCATGACCCGTTTGGCCTGAATTCCGAAGAAGCCTAGMHLTVVSSIDSLCRQQACQDLAASHPESVVVLHDLLENGVVIRRVFSADQLLERVETQLEHGCLSCTVRLDLVPTIEGLLSAGATRIIVGLPSAVPAAAAIAALDRGLSSPFTIDSAVLACAPDALEDHIWDHHTLFESGFTPIHEDQRTPGEFLLGELCFNDTVLLAAPDIVPADQQGHERGVHLIRELAPHAHVAPGATDVRPGLHHYADAVARTVPGTVHDPASCATVPASPFATVFQSVERPLHPERFRHALATLAEGCCVLRGRLWIASAPECRIAIQGIGPRVWLENTGAWGTQTGAPPSGSSAATAARCNRQPECRGTVLAATGEDVDSAEIEQLLRGCELTDAEMLAGFDGLHDPFGLNSEEANANANANANA
D1-29_04396123hypothetical proteinATGAAGGTACGGAATTCCCTGCGGGCACTGAAAAAGATGCCGGGAGCGCAGGTGGTGCGCCGTCGCGGCAGGACGTTTGTCATCAACAAGAAGAACCCCCGGATGAAGGCCCGGCAGGGCTGAMKVRNSLRALKKMPGAQVVRRRGRTFVINKKNPRMKARQGNANANANANA
D1-29_043972103menF_3Isochorismate synthase MenFATGACCCCCGCACCTGTGATCATCGCCATCGACGGGCGGTCCGGCGCAGGAAAGACCACATTGGCCATCGAACTGGCCGCACGCCTCAGGAACCATCACAAGGTTTCGCTGTTCCACCTCGAGGACATCTACCCAGGGTGGAACGGCCTGAGGGCTGGTGTGGAGCGCTACGTTTCAACCGTGCTCACGCCCCTGAGCCGCGGAGAACAAGCTACGTGGATCAGCTGGGACTGGGAAAAACACTACGACGGCGACACCCGGGTCACGCTGCCCGCGGAGATTGTCATCATTGAGGGCGTGGGAGCGGCCGCCGCCGAAGCGCGCCCGCTGCTCAGTGCCGTTATTTGGGCCGACTCCCCGACGGACGTCCGCCGGTCGCGCGCCCTGGACCGGGACGGCGGCACCTACGAGCCGTTCTGGGACGAGTGGGCTGCGCAGGAGGACGACTGGCTCGCCGGGGATGACGTCCCCGGGCAGGCGGACCTTCGCGTGCTCAATCCGGCAGACGGGTCCGCCCCCGCCGATGTCCTGCAGCTCCTCCCCTGCCTCCCCGCCCTGGCGCAGGTCCTGGTGCCCGAACTTTTCACCCGCCGCGGCCACAGGCTCCGGGCCGAGCGCCTTCACTCCAGCCCGGACGCCGCAACCCTCTTTAGCAAGCTCTACGGAAGCTCTCCGAATGCCGTCTGGCTGGACTCCTCCAATGCACCGTCCGCTCACGGGGCTGAGAAGTCCCCTGCCACGGAACGCAGCCGCTTCAGCATCCTGGCAGACGACGGCGGGACGTTCGGCCAGGCCCTTACCCACCGTTCCGGCGAGAGCCTGATAACCGCCGGCTGCGCTACCGCCAAGGTGGCAGGCCCGTTCTTCCGCTGGCTCGACACCGCCTGGGGCGGCAGCACCGTCCGGGCACCCGAGGGCTACCCCGGCGAATTTACGCTGGGCTGGCTCGGCTGCCTGGGTTATGAGCTCAAGCGCGAAACCGGGGGAAGCGACGTTTTCGCCCCCACCCCGGATGCCGCGCTGATCTTCGCCGGCCGGGCCGTGGTCCTGGACCATGCGGAGGAAACGGCGTGGCTCCTGGCGCTCGAGTCGCCGGACGCTGACGAGTGGCTGGCGGGCGCCCGGCTGGCGGTAACAGAAGCAGCCCCAGCCGGTCCGGGGACGGCGCACGACGCCGGGAGCAACGCCGTCGTACGTTCCGCGCCGCTGGCGCCTCCAACGCTGCCGGCGTTCAGCAGCCGCGACAGCGAACTGGCCTACAAGCACAAGATCGCCGCGGCGCAGCACGAAATCGGTGAAGGAAATTCCTACGAGGTGTGCCTCACCACCACCCTCACGGCCCTGGTTCCGGCCGAATCGCTGTCACCGTGGGAGGCCTACCTGGCGCTGCGGCGCCAGAACCCGGCACCCTTTGGCAGCTATCTCCGATTCGGCCCGCTGACCGTTGCCAGCACCTCGCCTGAGCGGTTCCTGAAGATAGCCTCCGACGGCGGCATGCGTGCCGAGCCGATCAAGGGCACCCGCCGCCGGGCTGCGGATCCGGTCCGGGACGCCGAGCTGCGGCGGGAGCTGGCCACCTCGCTCAAGGACCGCGCCGAGAACATCATGATCGTGGACCTGCTGCGGAACGATCTGAGCCACTTCGCGGAGCCGGGATCGGTCACCGTCAGCCGGCTGTGCGAGATTGAAAGCTACGCCACGGTGCATCAGATGGTGAGCACCATCGATGCCCGGCTGCTGCCAGGCTCGCCCCGGGCCGAGGCCGTGGCCGCGTGTTTCCCGGCGGGGTCCATGACGGGGGCGCCCAAGATCAGCACCATGGCCATCCTGGACCGGCTGGAGGGGGAGCCGCGCGGGATCTATTCCGGCGCCATCGGCTACTTCTCGCTCAACGGCGCCACGGACCTGGCAGTGGCCATCCGCACCCTGGTGATCAGGGCTGATGCCGGGGACGGCAACGACGGTAAGGCAACGGCCGAACTGACCCTCGGCGTCGGCGGTGCCATCACCTCCGACTCGGCGCCGGACGAGGAGTATGAGGAGATCCGGGTCAAGGCCTTCGGTGTGCTCTCGGCTCTGGGGGCCGTGTTTCCGGACTCCTGAMTPAPVIIAIDGRSGAGKTTLAIELAARLRNHHKVSLFHLEDIYPGWNGLRAGVERYVSTVLTPLSRGEQATWISWDWEKHYDGDTRVTLPAEIVIIEGVGAAAAEARPLLSAVIWADSPTDVRRSRALDRDGGTYEPFWDEWAAQEDDWLAGDDVPGQADLRVLNPADGSAPADVLQLLPCLPALAQVLVPELFTRRGHRLRAERLHSSPDAATLFSKLYGSSPNAVWLDSSNAPSAHGAEKSPATERSRFSILADDGGTFGQALTHRSGESLITAGCATAKVAGPFFRWLDTAWGGSTVRAPEGYPGEFTLGWLGCLGYELKRETGGSDVFAPTPDAALIFAGRAVVLDHAEETAWLLALESPDADEWLAGARLAVTEAAPAGPGTAHDAGSNAVVRSAPLAPPTLPAFSSRDSELAYKHKIAAAQHEIGEGNSYEVCLTTTLTALVPAESLSPWEAYLALRRQNPAPFGSYLRFGPLTVASTSPERFLKIASDGGMRAEPIKGTRRRAADPVRDAELRRELATSLKDRAENIMIVDLLRNDLSHFAEPGSVTVSRLCEIESYATVHQMVSTIDARLLPGSPRAEAVAACFPAGSMTGAPKISTMAILDRLEGEPRGIYSGAIGYFSLNGATDLAVAIRTLVIRADAGDGNDGKATAELTLGVGGAITSDSAPDEEYEEIRVKAFGVLSALGAVFPDSPGPT0008010_344DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008010-pabAB-K13950NANA
D1-29_043981476clsACOG1502Cardiolipin synthase AGTGTTGTGGCCGTTGTCGCTTGCGGGTACCTCGCCCACGTGGCTTGTGGTGCTGCTGAGCGTTGCGGACCTGGCCATCAGGGTGCTGGCAGTGGGCATCATCCCCGGCAACAGGCGCCCCACGACGGCCATGGCCTGGCTGCTGGTCATCTTCTTTGTGCCCTTCGTGGGCCTGGTGCTCTTTCTGCTGTTCGGCAACTTCAAGCTCTCCAGCCGTCGGCGGCAGCAGCAGGAACAAGTCAATGACAGGGTGCGCGCGGGCATCTCCTCCCTCGCCGACGTCGAAAGCCACTACCCCGGGCCGGAATGGGTGACGTCCGCCGCGGAACTGAACCGGCGGCTTGGCTCGCTCCCCATGGTGGACGGCAATTCCGTTGAGCTCCTCCCCGGCTACCCGGATTCGATCCTGGCCATGACCCAGGCCGTCCGGAAAGCGAAGAAGTTCGTCAACGCCGAGTTCTACATCATGAGCACCGACCACATCACCGATGACCTGCTCACGGCTCTGGAAGAGGCCACCGAACGAGGCGTCGAAGTCCGGGTCCTGTTCGACCACATCGGCACCCTCCGGATCAAGGGCTACCGTGACCTGCTCAAGCGGCTCAGGGCCGGCAAGATCCAATGGAAGCGCATGCTCCCGCTGCTGCCCATTCATGGCCAGTGGCGCCGGCCGGACCTGCGCAACCACCGCAAGATCATGGTGATCGACGGCGAGCTGGCCTTTACGGGATCCCAGAACCTGATCGAGCCCTCCTACAACAACCCCAGGCACCGCAAAGCCGGCCGCGAATGGGTGGAACTGATGGCCTGCCTGCGGGGCCCCATCGTGACCACCCTCAACGTGGTTTTCGCCACCGACTGGCTCAGCGAAACCGACGAATCCTTGGAGCACCAGCTTCAGCTTCCGTCCAACCCCGAGCCCGGCAAAGTGACGGCGCAGGTGGTACCCAGCGGTCCCGGGTTCATCACCGAAAACAACCTGCGGCTGTTTAACACCCTGATCTACTCGGCCCAGCACCGCATCTCCATCTGCAGCCCCTACTTTGTGCCGGACGATTCCCTGCTCTACGCCATCACCACGGCGGCCCAGCGCGGCGTGGACGTGGAACTTTTCGTCTCGGAGAAGGGCGACCAGTTCCTGGTCCACCATGCCCAGCGTTCCTACTACGAGGCCCTGCTGGAGGCCGGCGTCAGGATTTACCTCTACAAGGCCCCATTCGTGCTCCACGCCAAGCACTTCACCATCGACGATGAAGTGGCAGTCCTGGGGTCCAGCAACATGGACATGCGCTCCTTCTCGCTCAACCTGGAGGTCTCGGTGATGCTCCTGGGCGCTGAGATCGTGAACAATATGCGCGCGGTGGAAAATACCTATCGGGACATTTCGCACGAGCTCAAACTGGAGGACTGGCTGAAGCGCCCGCTCGCGGCCAGGTACGTGGACAACGTGGCGCGGCTGACCGCCACCGTGCAATAAMLWPLSLAGTSPTWLVVLLSVADLAIRVLAVGIIPGNRRPTTAMAWLLVIFFVPFVGLVLFLLFGNFKLSSRRRQQQEQVNDRVRAGISSLADVESHYPGPEWVTSAAELNRRLGSLPMVDGNSVELLPGYPDSILAMTQAVRKAKKFVNAEFYIMSTDHITDDLLTALEEATERGVEVRVLFDHIGTLRIKGYRDLLKRLRAGKIQWKRMLPLLPIHGQWRRPDLRNHRKIMVIDGELAFTGSQNLIEPSYNNPRHRKAGREWVELMACLRGPIVTTLNVVFATDWLSETDESLEHQLQLPSNPEPGKVTAQVVPSGPGFITENNLRLFNTLIYSAQHRISICSPYFVPDDSLLYAITTAAQRGVDVELFVSEKGDQFLVHHAQRSYYEALLEAGVRIYLYKAPFVLHAKHFTIDDEVAVLGSSNMDMRSFSLNLEVSVMLLGAEIVNNMRAVENTYRDISHELKLEDWLKRPLAARYVDNVARLTATVQPGPT0007725_1310DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
D1-29_04399942hypothetical proteinATGACTTCTCCTGCTTCCGTGGTGCTCGTTTTTCTTGACCCTGCCTTCCAGGACGGCCGGCTGGCGGACGCTTCCCAGCCCCAGCTGATGGCCACGGACCAGGGCGCCACCCGCGGCGACGGCGTCTTCGAGTCCATGCTTGCGGTGGGCGGCAGGGTCCGTAAGGTCCAGGCGCACCTGAACCGGCTGGACAGCTCGGCCGTGGCCCTGGACCTGGACATTCCCGGGCAGGATCAGTGGCGGCGTGCCATCGAAACTGGTGTGGCCGAGCATCGTTCCCAGCATCCGGCAAGCACGCCGGCGGATGACGAGCTGGTGGTGAAGCTGGTTGTAACGCGCGGCGTCGAAGGGGCATCCGGACCCACGTGCTGGGTACAGGTGTCACCCGTAGGTTCCCTTGGACGGCGCCAGCGCGAGACAGGCATCGACGTCATCCTCCTTGACCGGGGCTACGACAGTGACGCAGCCGAGCGCGCGCCGTGGCTCCTGCTGGGTGCCAAAACCCTGTCCTATGCGGTGAACATGGCAGCGCTGCGGCACGCACACAAACAAGGCGCTGACGACGTCATCTTTACGTCCTCAGACGGACGTGTCCTGGAGGGACCTACGTCCACTGTCCTGCTGGCCCACCTGCAAAGGTCCGACGACGGCGCCGGTGGCACCCGTACGGTGCGCCGGCTCGTCACGCCCCAGCTGGACAGCGGCATCCTCCCCGGGACATCACAGGAAGCCCTCTTCAAGGCCGCCGCGGCGGCGGGCTGGGAACTCGGGTATGGCCCCCTGCAGCCGCAGGACCTCCTGGAGGCCGACGCCGTCTGGCTGATTTCCAGCATCCGGCTGCTGGCGCCCGTCAACCACATCGACGGCAAGGAGATCGGCACGCCTGCCGTCCAGAAGCAGCTGACCGCCGAGCTGAACGAGCTGTTTGCCCGAATTCAGTAGMTSPASVVLVFLDPAFQDGRLADASQPQLMATDQGATRGDGVFESMLAVGGRVRKVQAHLNRLDSSAVALDLDIPGQDQWRRAIETGVAEHRSQHPASTPADDELVVKLVVTRGVEGASGPTCWVQVSPVGSLGRRQRETGIDVILLDRGYDSDAAERAPWLLLGAKTLSYAVNMAALRHAHKQGADDVIFTSSDGRVLEGPTSTVLLAHLQRSDDGAGGTRTVRRLVTPQLDSGILPGTSQEALFKAAAAAGWELGYGPLQPQDLLEADAVWLISSIRLLAPVNHIDGKEIGTPAVQKQLTAELNELFARIQPGPT0008020_91DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008020-pabC-K02619NANA
D1-29_04400204hypothetical proteinATGACCGCGGAGAATACCATTCCAGCCCTGATCGACAAGGCCCGGGAGGAGATGCTTTTTATCGGACCGGACCACCCCTACTATCCGATCCTCGCAGGCCTGGTCTCCGCCGTCGGAACAGCCTGGCAGCAGGGCTATGACCAGCATCGACGAGGCGGGCCGGCAGAGAACCCATACAGCTGGAGACCATCCCCTGGCGCATAGMTAENTIPALIDKAREEMLFIGPDHPYYPILAGLVSAVGTAWQQGYDQHRRGGPAENPYSWRPSPGANANANANANA
D1-29_04401510hypothetical proteinATGGCGGTTCACAGTGCAGGGATCATGTTGTACCGGTGGAGGACCACGGGTCAGCCGGAGGTTTGGATTGCCCACATGGGCGGACCATTCTGGGCGCGCAAGGACGCCCGGTCCTGGTCAATTCCCAAGGGCGAATACCCTGAAGACGAGGATCCGCTCACTGCGGCATTGCGCGAGTTTGCCGAGGAAATGGGAACTCCCGCTCCGGACGCGGAGTACCGCGAATTAGGCGCCTTCCGGCAACCGTCCGGAAAGATCATTACAGCCTTCGCAGCGGAGGCGGACTTCCAGCCCGAACAGATCCTCAGCAATACCTTTCCCCTTGAATGGCCGAAGGGTTCCGGCGTGATCCAGGACTTCCCGGAGATTGACCACGCTGCATGGTTTTCCGAGACGGACGCGCGCGTGAAGCTGGTGAAGGGGCAACTCCCCATCCTTGATGCCCTCCTTCGTGTCTTACGCCCATCCGGGGACAACAAAGAGCGGCGGGCTGATCCGCCCGCCCTTTGAMAVHSAGIMLYRWRTTGQPEVWIAHMGGPFWARKDARSWSIPKGEYPEDEDPLTAALREFAEEMGTPAPDAEYRELGAFRQPSGKIITAFAAEADFQPEQILSNTFPLEWPKGSGVIQDFPEIDHAAWFSETDARVKLVKGQLPILDALLRVLRPSGDNKERRADPPALNANANANANA
D1-29_04402273hypothetical proteinATGAATCCCACCCCAAAACAGCCCGTAACTGACGACAGCATCAAAGTACGCCAGGTCAGCCATTATCAGTTCACCTGGGTAGCAGGCGAGGCCACCAAACCAGGCACATGGACCCTCCAGCTGGTACTGGACCAAGGCGCCTGGGAGGAAGTCCTCAGCCTGAGCGCTGACGACGCAGACAACCTCCAGGACCTGCTGACTTCCGCCGGAACGGTTTTTTACGATGTCAGCCGAAGGACCCTCATGTTTGGCACCACCCCTGTGGGTCAGTGAMNPTPKQPVTDDSIKVRQVSHYQFTWVAGEATKPGTWTLQLVLDQGAWEEVLSLSADDADNLQDLLTSAGTVFYDVSRRTLMFGTTPVGQNANANANANA
D1-29_04403546rimJ_2COG1670[Ribosomal protein S5]-alanine N-acetyltransferaseTTGCACCACATCGAGTCCTCGCAGTTAATCGGCAACATCCAGGTCAGGCTGCTTCACCGGGAAGATGCAGCACTGCTGAGTCAGGCCTACGCCCGGAACCGGGAACACCTGGCGCCCTGGGAGCCGGCCCGTGCGGATGAGTTCTTTACCCCTTCCCACCAGCTTGGACTCATCCACATCAGGCTCGCCCAGCATTCAGTGGGGCAGGAAATTCCCTGGATCCTGCTGGACGGCCGCCGCGTCATCGGCACCGTCACCCTGACGGGCATTGTCCGGGGGCCGTTCCTCAACGCCCATCTGGGGTACTGGGTGGACAAAGACTACAACGGCGAGGGGGTAGGTTCCGCTGCCGTGCTGTTTGCCGTGAAGCATGCCCGCATGGAGCTGGGCCTCCACCGGGTCCAGGCAGCCACCCTGGTCCACAACGGTGCATCACGGAAGATCCTCCGGCGGGCCGGCTTCCAGGAAATCGGAGTGGCCCCGGAGTATCTGCACATCGCCGGCAGCTGGCAGGACCACCTCCTCCACCAGCTGCTCCTGCATTAGMHHIESSQLIGNIQVRLLHREDAALLSQAYARNREHLAPWEPARADEFFTPSHQLGLIHIRLAQHSVGQEIPWILLDGRRVIGTVTLTGIVRGPFLNAHLGYWVDKDYNGEGVGSAAVLFAVKHARMELGLHRVQAATLVHNGASRKILRRAGFQEIGVAPEYLHIAGSWQDHLLHQLLLHNANANANANA
D1-29_044041242COG0183putative acetyl-CoA acetyltransferaseATGAGCAACGAGGCCCTGAGTAACGAGCCTATGAGGAGCGAGGCCCTGAAAGCTGACGCGCGTACCGCAGTCATCCTGGGCGGCGCCCGCACTCCCTTCGGACGATTCCGGGGCAGCCTGGCCGCGCTGTCATCCAGTGAACTGGGCGCCCACGCGATCCGCAGTGCACTTGAAAGGACAGGCGTGGACCCCGGCCAGGTCCATGCGGTGATCGTGGGCCAGGTCATCCAGGCAGGTGCAGGGCAAGGACCCGCGCGGCAGGCAAGCCTGGCAGCAGGCATTGGCTGGGACGTTCCCACGGTAACCATCAACAAGCTCTGCCTCTCCGGACTCACTGCGGTGATCGACGCCGCCAGGATGATCCGGGCCGGCGAGGCAGACTTCATCGTGGCAGGGGGCCAGGAATCCATGAGCAACGCCCCGCACCTGCTTCAGCGCCTTCGCAACGGTGTGGCAATCGGCGACGCCCCGCTGATGGACTCACTGAATTACGATGCCCTGCAGGACCCCGTCTCCGGCGTCCTCCAGGGCGCCGCAACCGATGCGGGCAACGCCGAACGCGGAATCAGCCGGGCGGACCAGGACGCTGTTGCCGCGAGGTCCCATCAGCGGTCGGAGGCAGCGAGCTCCGCCGGACTGCTTGCTGCCGAGATCGCACCGGTCAAAGTACCGCAGCGCCGTGGTCCAGCACTGATGGTGGATTCTGATGAAGGCATTCGCCCGGGCACGACGGCGGAGGCCCTGGCTGCCCTTAAGCCCGCCTTCTCCACGGCCGCGACTGCCACTATCACCGCCGGATCCGCCTCTCCCCTTTCAGACGGCGCGGCCGCCGTCGTGATTGCCAGCAAGGCCGCCGCGGAACGTGCCGGACTGAGCTGGATCGCCGAGATCCGCAGCCACGGCCAGACTGCCGGCCCGGACGCTTCCCTGCATTCCCAGCCGTCCCGCGCCATCGAACGCGCCCTGGCTGCGGAAGGGCTTGGCGTGGCTGATCTGGACCTGATCGAAATTAATGAAGCCTTCGCGTCCGTGATTATCCAATCGGCCCAGGACCTGGGCGTCAGCACGGAGCGGATCAACGCCGAGGGCGGCGCCATCGCCTTGGGCCACCCAGTGGGCGCCTCAGGCGCACGCCTTGTGCTGCACCAGGCGCTGGCGCTGCAGCGGCGCGGCGGCGGCACCGGGGTTGTGTCCCTCTGCGGCGGCGGGGGCCAAGGCGAGGCTCTCATCCTCAAGGCCTGAMSNEALSNEPMRSEALKADARTAVILGGARTPFGRFRGSLAALSSSELGAHAIRSALERTGVDPGQVHAVIVGQVIQAGAGQGPARQASLAAGIGWDVPTVTINKLCLSGLTAVIDAARMIRAGEADFIVAGGQESMSNAPHLLQRLRNGVAIGDAPLMDSLNYDALQDPVSGVLQGAATDAGNAERGISRADQDAVAARSHQRSEAASSAGLLAAEIAPVKVPQRRGPALMVDSDEGIRPGTTAEALAALKPAFSTAATATITAGSASPLSDGAAAVVIASKAAAERAGLSWIAEIRSHGQTAGPDASLHSQPSRAIERALAAEGLGVADLDLIEINEAFASVIIQSAQDLGVSTERINAEGGAIALGHPVGASGARLVLHQALALQRRGGGTGVVSLCGGGGQGEALILKAPGPT0008320_5501DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-29_04405201hypothetical proteinATGAAGACACTCGTTGGATCGATGGATGGGAAGGGCCCGGCCGAGGCACTCTATGCCGTGGCGGAGCTGCAGAAGGAAGTAGGGCGGGCCGAAGCTGCCTTGGTCAGGAACGCCCGCCAGGCAGGACTCTCATGGGAAGCGATCGCCCTGTGCCTGGGCGTCAGCAAGCAGGCAGTTCACCGGAAGTACGGCAGGCGCTAGMKTLVGSMDGKGPAEALYAVAELQKEVGRAEAALVRNARQAGLSWEAIALCLGVSKQAVHRKYGRRNANANANANA
D1-29_04406552hypothetical proteinATGGGGAAACAGCAGGATATGGGTGAACGATCTGTGGGAAAAGACTGTGTGGGCAAACAGCGGGGAAGGCCAGCAGTGCAAAACCGGTTGCGATGGACCGCGGTCGTCCTCGCCGTCGCATCCCTTGCCTTTGCACTGACAGGCTGCCGGGACCCCTTCGCTCCGCCGCCCTGCGGGCCGCCGGAGTACTTTGTCTCCCCGTCGGCCGTTCAGGCTGGCGGGAAGGTTACGGTCTCCGCGCAGGACACCACCTGTGATGCGCTCTACGGCGCGGATGCCCGCATCCAGGTGACGGTGACGGATGCTGCGGGGCAGACGGTCCTGGAGGAGCTCGCTCCCATGACCGACGACGGCGGCTTCACCTTTGTCTTCACCGTTCCGGAGACCATGGCTGCCGGAGAGGGCGGAGTCAGCGCTGTCCCGTACGGCGTGGACTGGTGTGATGACACCGGCGTCAACAACAGGGCCGCTCCGGGCACCCTGAGCCTGGAACGTGCGTCCTGCACCCACCGGCTGGTCCCGCTCACAGTTCACGCGGCTCCACCGGCCTGAMGKQQDMGERSVGKDCVGKQRGRPAVQNRLRWTAVVLAVASLAFALTGCRDPFAPPPCGPPEYFVSPSAVQAGGKVTVSAQDTTCDALYGADARIQVTVTDAAGQTVLEELAPMTDDGGFTFVFTVPETMAAGEGGVSAVPYGVDWCDDTGVNNRAAPGTLSLERASCTHRLVPLTVHAAPPANANANANANA
D1-29_04408279hypothetical proteinGTGACAGACGCACCTGCCACTGAAGAAAAGCTGTCCTACCGACTGATCACAGGGCCGGATGACCGCTCCTTCTGTGAGCGGATCTCAACCGCATTGGCGGAGGGCTACGTCCTGCACGGCAGCCCGGCCGCAACGTTCAACGGCAGCAGCGTGATCGTGGCGCAGGCCCTGGTCCTCCCGGCTGCGATCGCCTCCGCGGACGCCGCCGTCGCCACCGCTGTGGACGATCTGGAAACTGCCGGCGAAGAGCTCGAATTCGACGGCGAGGGCCACGCATGAMTDAPATEEKLSYRLITGPDDRSFCERISTALAEGYVLHGSPAATFNGSSVIVAQALVLPAAIASADAAVATAVDDLETAGEELEFDGEGHANANANANANA
D1-29_04409411hypothetical proteinATGAGCTACGCAGGAGACCTCACCCCGGAGGAAGCCTGGACCAAGCTGGAGCAGGGCGCCATCCTGGTGGATGTGCGCACGGAGGGCGAATGGGCGCATATCGGCATCCCGGACACCAAGGCGACCGACAACGATCCCCTTTTCATCCAGTGGACGTTCCCGGGTGGCATCCCCAACCCCGATTTCATCAATGACCTGACACAGCAGGCACCCGAGGACACCGGCACGGAACTGGTGTTCCTGTGCCGTTCCGGGGCCCGGTCCATAGCTGCAGCCATCGCCGCCACCCAAGCAGGCTACACGTCCTACAACGTCCTCGAGGGCTTTGAAGGCGAGCCGGACCGCTACGGCGAACGCACCGTCAATGGCTGGAAGAACCGCGGCCTGCCTACGAATCTGGGAACGAACTAAMSYAGDLTPEEAWTKLEQGAILVDVRTEGEWAHIGIPDTKATDNDPLFIQWTFPGGIPNPDFINDLTQQAPEDTGTELVFLCRSGARSIAAAIAATQAGYTSYNVLEGFEGEPDRYGERTVNGWKNRGLPTNLGTNNANANANANA
D1-29_044101209metZCOG0626O-succinylhomoserine sulfhydrylaseGTGACATTCAATGAAGATGCCGCCGGCTGGAGTCCTGACACCCAGGCAGTCCGTGGCGGGCTGGACCGCACCAATTTCCAGGAGACCGCCGAGCCGGTCTTCCTGAACTCCGGGTTCGTCTACGAATCGGCCGCAGCTGCCGAACGCGCCTTCACCGGCGAGGACGAGCGCTTTGTCTACTCCCGCTACGGGAACCCCTCCGTAGCCACCTTCCAGGAACGGCTCCGCCTCCTCGAGGGCACCGAGGCGTGCTTTGCGACGGCGTCGGGAATGTCTGCAGTCTTCACCGCCCTGGGTGCCCTGCTGGCTGCCGGTGACCGCGTGGTTGCGGCCCGCTCGCTGTTCGGTTCCTGTTTCGTGATCCTGAACGAGATCCTGCCGCGCTGGGGCGTGGAGACCGTCTTTGTGGATGGCCCGGACCTGGACCAGTGGCGTGAAGCATTGTCCCAGCCCACCACCGCAGTCTTCTTCGAGTCGCCGTCCAACCCGATGCAGGAAATCGTGGACATCGCGGCAGTCAGCGAACTGGCGCATGCCGCCGGAGCCACCGTCGTCGTCGACAACGTCTTTGCCACTCCCCTGCTGCAGCGCTGCGGCCAGCTGGGCGCGGACGTCATTGTCTACTCCGGCACCAAGCACATCGACGGCCAGGGCCGAGTCATGGGCGGGGCAATCCTGGGCACCAAGGAATTCATCGACGGCCCCGTGAAACAGCTCATGCGCCACACCGGACCCTCACTGTCCGCCTTCAACGCCTGGGTCCTCACCAAGGGGCTGGAGACCATGGCGCTGCGCGTCAACCATTCCTCGGCCACCGCCCTGAGGCTGGCAGAGTGGCTGGAACAGCAGCCTGCGGTCAGCTGGGTCAAATACCCGCTGCTGAAATCCCACCCGCAGTATGAGCTCGCCGCCAAGCAGATGAAGGCCGGCGGCACCGTGCTGACCCTAGAACTCGCGACGACGGCCGGACGCTCGGGCAAGGAAGCCGCCTTTGCGCTGCTGGACGGGCTGCGGATCATCGACATCTCCAACAACCTCGGCGACGCCAAGTCCCTCATCACCCACCCTGCCACCACGACGCACCGCGCCATGGGTCCCGAAGGCCGTGCGGCCATCGGGCTGAGCGACGGTGTGGTGCGGCTGTCCGTGGGCCTCGAAGACGCGGATGACCTGATCGGCGACCTGGAGCGGGCGCTCAAGCAGATCTGAMTFNEDAAGWSPDTQAVRGGLDRTNFQETAEPVFLNSGFVYESAAAAERAFTGEDERFVYSRYGNPSVATFQERLRLLEGTEACFATASGMSAVFTALGALLAAGDRVVAARSLFGSCFVILNEILPRWGVETVFVDGPDLDQWREALSQPTTAVFFESPSNPMQEIVDIAAVSELAHAAGATVVVDNVFATPLLQRCGQLGADVIVYSGTKHIDGQGRVMGGAILGTKEFIDGPVKQLMRHTGPSLSAFNAWVLTKGLETMALRVNHSSATALRLAEWLEQQPAVSWVKYPLLKSHPQYELAAKQMKAGGTVLTLELATTAGRSGKEAAFALLDGLRIIDISNNLGDAKSLITHPATTTHRAMGPEGRAAIGLSDGVVRLSVGLEDADDLIGDLERALKQIPGPT0020020_1157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761NANA
D1-29_04411363hypothetical proteinGTGTTCGTTCGCGCCGAAGGGGTGCGGCTCTCAGGCCGGCGTGGAATACTCAGGCGCGTGACGTCGTCGTACTCTTTTCACGCCAAACTGTGGCATATCCCGGAAGAAGCGGGGTGGCACTTCCTGACTCTCCCCGCGGACGTTGCAGAGGACGTTCGCGACGATGCGGGCTCGCTCCGCAAAGGCTTCGGATCGGTTAGAGTTACCGCCGAAATCTCCGGCCACACGTGGCAGACGTCACTGTTCCCGGACAGCAAAAGCGGTTCGTACCTGCTGCCCGTCAAGAAGGCCGTGAGGGACGCGGCCCGGATCAGCGCCGGTGATGACGTGGCAGTGCGACTCCAAGTCCACGGAACGGATTAGMFVRAEGVRLSGRRGILRRVTSSYSFHAKLWHIPEEAGWHFLTLPADVAEDVRDDAGSLRKGFGSVRVTAEISGHTWQTSLFPDSKSGSYLLPVKKAVRDAARISAGDDVAVRLQVHGTDNANANANANA
D1-29_04412903COG0583putative HTH-type transcriptional regulatorATGCGAAGCTTCCAGTTGGAGCAGTTGCGGACCTTTGCTGCTGTGGTGGATGAGGGGACGCTGGAGGCCGCGGCCCGGAGCCTGGTGGTCACGCCGTCTGCCGTTTCCCAACGGCTGAAAGCGATGGAGGACGCGGCCGGGCAAATCCTGCTGCAGCGCACCAACCCCGTCCTGCCCACGGCGGCAGGGGCGGCTGTGCTGCGGTTCGCCCGGCAGGTCCGGCAACTGGAATGGGACGCCCGGCGCGAGCTCGGGGACAGCAGTGACAGCCCGGGCGCGCCGATTCCCCTGGTAGTAAATGCCGACTCACTGTCCACGTGGTTCCTGACGGCGCTGGCCAGCCTTCCCGCGGACGGCGGCGCCTTTTTTGAAATCCGCCGGGAGGATGAACAGCATTCCACGCAGCTCCTGCGCACCGGGACCGTGATGGCGGCTGTGACGGCTACGCCGGAGCCGGTGCAGGGCTGCAGCGTGGAGCCGCTGGGTGCCATGAGATACCGGGCCGTGGCCAGTTCCGGTTACGTCCGTCGCTGGTGGCCGGACGGGCCGGACCTTACCGCCGGAAGCGCGGCACCGGTGATGGATTTTGACCGGAAGGACGAGCTGCAGGGCGGCTTCTTCCAGTCGCTGACCGGCGCTGAACTGACCGCGCCGCGGCACTACGTGCCGTCGTCGGCCGAGTTCGCCCAGGCCATCGGGCTGGGGCTGGGATGGGGACTGTTGCCCGAGCAGCACTGCCTGGCTGATATCAGGAACGGCGAACTGGTGGAGCTGGCACCTGCTCATCCTGTGGATGTCTCGCTGTACTGGCAGCGCTGGAAGATAGACTCCCCGGTGCTGAACCAGCTCACCGCCGCGGTCCGCGAAGCCGCCTCGCGTCAGCTCCGCCAGCCCCAAGCCTGAMRSFQLEQLRTFAAVVDEGTLEAAARSLVVTPSAVSQRLKAMEDAAGQILLQRTNPVLPTAAGAAVLRFARQVRQLEWDARRELGDSSDSPGAPIPLVVNADSLSTWFLTALASLPADGGAFFEIRREDEQHSTQLLRTGTVMAAVTATPEPVQGCSVEPLGAMRYRAVASSGYVRRWWPDGPDLTAGSAAPVMDFDRKDELQGGFFQSLTGAELTAPRHYVPSSAEFAQAIGLGLGWGLLPEQHCLADIRNGELVELAPAHPVDVSLYWQRWKIDSPVLNQLTAAVREAASRQLRQPQANANANANANA
D1-29_04413669argOCOG1279Arginine exporter protein ArgOATGTTTAGCTGGATTAATTGTAAGCTCCACTTTACGTTGGAGGATATGGATTTGACTCAACTTTTGACCACCACGGCTCTCGGCTTCGGCACGGGACTGGCCCTCATCGTTGCCATCGGGAGCCAGAACGCGTTTGTTCTCCGCCAGGGCATCAGGGGCGAGCATGTGGCCGCCGTCGTCCTGGTGTGCAGCGTCTCGGACGCCCTGCTCATCGCCGCCGGCATCGCGGGAATTGGGGCCCTTGTGGAGGCGAGTCCGGTGGTGGTTGAGGTTGCACGGTACGCAGGAGCGGCGTTTCTGGCCGCCTATGGTGCCCTGGCGGCCAAGCGGGCCATCCGCCCGGGGGCGCTGACCGCCTCTGGCCGCCAGAGTGCCCTCAGCGCCGGGGCGGCAATCTCCACGGTGCTGGCCCTGACGTGGCTCAACCCTCACGTCTACCTGGATACCGTTCTGCTGCTGGGGTCGGTGGCCAACCAGCAGACGCAGGACCTGCGGTGGTGGTTTGGGGCCGGCGCCATCACCGCCAGCATTGCCTGGTTCAGCGCCCTTGGATTCGGGGCACGGAGCCTGCGTCCGTTCTTCGCGCGGCCGTCATCGTGGCGTGTCCTCGACGGACTCATCGCCCTGGTGATGCTGTCGCTGGGAGTGCGCCTGGCAGTGGGGGCCTGAMFSWINCKLHFTLEDMDLTQLLTTTALGFGTGLALIVAIGSQNAFVLRQGIRGEHVAAVVLVCSVSDALLIAAGIAGIGALVEASPVVVEVARYAGAAFLAAYGALAAKRAIRPGALTASGRQSALSAGAAISTVLALTWLNPHVYLDTVLLLGSVANQQTQDLRWWFGAGAITASIAWFSALGFGARSLRPFFARPSSWRVLDGLIALVMLSLGVRLAVGAPGPT0020651_976DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895NANA
D1-29_044141260COG2170Putative glutamate--cysteine ligase 2ATGCGCACATTCGGCGTCGAGGAAGAACTCCTGATCGTTGATCCGGAGACGGGGGAACCCCTTGCACTCGCCGACGCCCTGCTCTCGGGGCGGCGGCTTGCGGCAGATGATTCCCCGCAGGATCCGCATGCCTTGGAAACCGAAGACAAGACCGCCTTCCACGACGACGACATGGGTTTGAGTGCCGAGCTGAAGCTTGAGCAGATCGAGACCCAGACCCGGCCGTGCCTGGAATATGGGGAGTTGCTGCGGCAGATACGTGCCGGCCGCCTGCTGGCCGACCAGGCGGCCCGAAAGAACGGGGCCAGGGTGGCAGCCCTGGCCACATCGCCGCTTGCCTCCACTACCCACACCACTCCGGATCCGCGGTATGCCCGGATGCTGGAGCGTTTTGGCCTGACCGCTCAGGAACAGCTGACCTGCGGATTCCACGTCCACACCTTCATCGAGTCCCCGGAGGAAGGCGTGGCCGTGCTGGACAGGATCCGCGACAAGCTGGCGGTACTCACTGCGCTGAGTGCAAACTCGCCCTTCTGGAACGGCATGCCCACCGGGTTCGAAAGCTACCGTACGCAGGCCTGGAACCGGTGGCCCACCTCCGGCCCGTCCGGCATCTTCGGTACGTATTCGGCGTACCGGCGGCTGGTGGCCCGTCTGCTGGACAGTGGTGTGATGCTGGATGAAGGCATGATCTACTTCGATGCCCGGCTGTCAAGGAACCATCCCACGGTAGAGGTCCGGGTGGCCGACGTCTGCCTTCGGGCCGAGGACGCGGCCCTGATAGCCGTGCTGGTGCGGGCAATGGTGGAGTCAGCCAGCCGGGAGTGGCACGCCGGAGTTGAACCCGCCCCTGTTCCCACCGTTCTGCTGCGGATGGCGGCGTGGCAGGCAAGCAGCAGTGGCCTGAGCGGCGAACTGCTGGACTTCGGCACCTTCCGGCCTGCCCCCGCACACGACGTTGTCCGCTCACTCGTGGATTATCTCGCTCCCGTGCTCAGCGAACAGGGCGAGCTGGGGCTGGCACGCCAGGGCGTGGAGGACGTCATCTCACGCGGCACCGGCGCCGCCGAACAGCGCCGGGTGCGCGATGCGGTAATGGAAAAGGCGGTGAGCGACAAAACGGCTGCCGACGACGGCGGGCTGGCCGCCGTCGTCGCGAAGGCAGTTGCGGTCACCATGCGTGGAGCCTCCGGCTTTCCTGACGAGGACGACGCGCCGGAGCTGCTGCGGGTCCGCCTGTCCCAGCCAGGCTTCCACTAGMRTFGVEEELLIVDPETGEPLALADALLSGRRLAADDSPQDPHALETEDKTAFHDDDMGLSAELKLEQIETQTRPCLEYGELLRQIRAGRLLADQAARKNGARVAALATSPLASTTHTTPDPRYARMLERFGLTAQEQLTCGFHVHTFIESPEEGVAVLDRIRDKLAVLTALSANSPFWNGMPTGFESYRTQAWNRWPTSGPSGIFGTYSAYRRLVARLLDSGVMLDEGMIYFDARLSRNHPTVEVRVADVCLRAEDAALIAVLVRAMVESASREWHAGVEPAPVPTVLLRMAAWQASSSGLSGELLDFGTFRPAPAHDVVRSLVDYLAPVLSEQGELGLARQGVEDVISRGTGAAEQRRVRDAVMEKAVSDKTAADDGGLAAVVAKAVAVTMRGASGFPDEDDAPELLRVRLSQPGFHPGPT0026300_158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-29_044151524murACOG0766UDP-N-acetylglucosamine 1-carboxyvinyltransferaseATGACTCAGGAAACTGCTGACCACGTCGCCGCCACCCTTCGCGATGCCCGCAACGAGAAAGGCTGGACCCAAGGCCAGCTGGCCGCAGAGCTTGGGACCAGCCAAAGTGCCATCGCGCGAATGGAACAGGGGAAGCAGAACCTCAGCCTCAAAATGATCCAGCGCCTCGAAGCTATCTTCGGCCGCAGCATCGTCAACATTGGAAAACCCCAGATGACCCACTTGAGGGTTGAGGGCGGCCAAACCCTCTCGGGGGCAGTTGACGTCAACAGTAGCAAGAACGCCGGTGTGGCCCTTCTCTGCGCAAGCCTGATCAACCGCGGCACCACCGTCCTGCGCCGGCTGGCCCGGATCGAGGAAGTGAACCGCATCGTTGAAGTGCTTAGCAGTATTGGCGTTGAATGCACCTGGCTCAACGACACGGACCTCCGGCTCCGCCGCCCGGCCGTACTGGATCTGGCTGACATGGACGTGGAGGCGGCGCGCCGCACCCGGAGCGTGATCATGCTCCTTGGGCCGCTCCTGGATGAAACGTCTGAATACCGGCTTCCCTACGCCGGTGGCTGTGACCTGGGCACCCGGACCGTGGAGCCCCACATGCAGGCCCTTCGTCAGTTCGGGCTCTCGGTGGAAGCAACCTCGGGCTTCTATGCAGTCAAGGCACCGGCCGCGGACGAGCTCTCCCGTTCCTTTGTGCTGACGGAGCGCGGCGACACCGTCACGGAAAACGCCATCATGGCCGCTGCCCACCGGCGTGGCACCACTGTCATCCGTAACGCCAGCCCCAACTACATGGTGCAGGACCTTTGCTTCTACCTGCAGATGCTGGGAGTGGAGATCGACGGCGTGGGGACCACAACGTTGAGGATCACCGGCCAGGAGCACGTTGACGTCGACATCGAATACTTTCCGTCAGAGGACCCGATCGAGGCCATGAGCCTCATCACCGCCGGCATTGTGACCAACTCGGAGGTGACCATCTGCCGCGTTCCCATCGAGTTCATGGAAATCGAACTGGCCATGCTGGAGCAGATGGGCCAGCAGCTGGAGATATCCGGGGAATACATGGCCCGCAACGGCCGCACCCGTCTGGTGGATGTCACCACCAAACCCTCCGAACTCCATGCGCCCGAGGATAAGATCCACCCGATGCCCTTTCCGGGCCTGAACATCGACAACCTGCCGTTCTTCGCGGTGATCGCGGCCAACGCCCATGGCCAGACCCTGATCCACGACTGGGTGTATGAGAACCGTGCCATTTACCTTACCGAACTCAACCGGCTCGGCGCCCAGGTGCAGCTTTTGGACCCGCACCGGATCTACGTCACCGGTCCCACCAGGTGGCGCGCCGCCGAGGTGGGCTGCCCGCCCGCGCTCCGCCCGGCAGCCTGCCTGCTGCTGGCCATGCTTGCGGCACGCGGCGTTTCCGAGCTGCGCAACATTTACGTGATTGAGCGCGGCTACGAGGACCTCGCCGAAAGGCTCAACACCATCGGCGCAAAGGTTGAGTACTTCCAGGACTGAMTQETADHVAATLRDARNEKGWTQGQLAAELGTSQSAIARMEQGKQNLSLKMIQRLEAIFGRSIVNIGKPQMTHLRVEGGQTLSGAVDVNSSKNAGVALLCASLINRGTTVLRRLARIEEVNRIVEVLSSIGVECTWLNDTDLRLRRPAVLDLADMDVEAARRTRSVIMLLGPLLDETSEYRLPYAGGCDLGTRTVEPHMQALRQFGLSVEATSGFYAVKAPAADELSRSFVLTERGDTVTENAIMAAAHRRGTTVIRNASPNYMVQDLCFYLQMLGVEIDGVGTTTLRITGQEHVDVDIEYFPSEDPIEAMSLITAGIVTNSEVTICRVPIEFMEIELAMLEQMGQQLEISGEYMARNGRTRLVDVTTKPSELHAPEDKIHPMPFPGLNIDNLPFFAVIAANAHGQTLIHDWVYENRAIYLTELNRLGAQVQLLDPHRIYVTGPTRWRAAEVGCPPALRPAACLLLAMLAARGVSELRNIYVIERGYEDLAERLNTIGAKVEYFQDPGPT0024090_208DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790NANA
D1-29_04416861hypothetical proteinATGCATAGAAGCACAAACGCAGTACGCGCTCCAACGCACGTGCGGTTGCTGCTGTCATTGCTGTTATCGCTGGGCTTGGTCCTCTGCCTGCCGGCCGCCGTACTGCTGGCCTTGGCCCCACCGGCCGGCGCAGCCCCTTCGCCGGGAGAGGGCGTCCAGCAGTCCTTGGGCAATGACGTGTCGTGGCCCCAATGCAACAGACCCCTTCCCAAGGGGCAGGCGTTCGCGATCGTCGGCGTCAACAATGGACGGGCGAACACCACCAACCCATGCCTGGCCGAACAGCTCGAATGGGCCAGGACGTCGTCGTGGCATCCGGACCAGCCCGCCGTGGCCCTCTACGTGAACACCGCCAATCCGGCGCTTGCGGGCTCCTGGTGGCCGTTCAACAACGACTATCCTGAGGGTTCGGCTGTCCGGAACCCCTACGGCGCATGCGAGAGTGGGAAGGTTTCCGAGGCCTGCTCCTATATGTACGGTTACGCCAAGGCCTATGACGACGCGTACATCCGCGGCATCGATGATCCTGCGTCCTACCGGTGGTGGCTGGACGTGGAAACCGAAAACAGCTGGTCCACCAACCGGGCTGCCAACCGGGCCGTCCTGGAGGGAATGACAGATTTCTTCCGCAGCATTGGCGCGGAGGTGGGGATCTACTCCAGCAACGTGCAGTGGAACCAGATTGTTGGTCCAGTCAGCAGCTCCAGCAGCCTGTACTCCCTGCCCAGCTGGCTGGCCGGAGCCAGCACGGAACGCGGAGCAAAGGCCAATTGCTCCCGGCCCCCGCTTACGGCCGGCGGCAAAGTCACCCTGGCCCAATTCGTGTACGGCGGCTACGACTACAACTATTCCTGCAGCTGAMHRSTNAVRAPTHVRLLLSLLLSLGLVLCLPAAVLLALAPPAGAAPSPGEGVQQSLGNDVSWPQCNRPLPKGQAFAIVGVNNGRANTTNPCLAEQLEWARTSSWHPDQPAVALYVNTANPALAGSWWPFNNDYPEGSAVRNPYGACESGKVSEACSYMYGYAKAYDDAYIRGIDDPASYRWWLDVETENSWSTNRAANRAVLEGMTDFFRSIGAEVGIYSSNVQWNQIVGPVSSSSSLYSLPSWLAGASTERGAKANCSRPPLTAGGKVTLAQFVYGGYDYNYSCSNANANANANA
D1-29_04417795ykoC_2Putative HMP/thiamine permease protein YkoCATGAGGACAGCCCTGAACCTCCGCGGCAACCACGCTCTCCTGACCCGTGCCAATCCGCTGGCGAAATTCGCGGCCGTGTTCCTGATTACCCTCGTGCTGGCACTGTCCATCGACTGGGTGTCTGCCACCACGGCGCTGGTGGCGGAGCTTGCGCTCTTTCCACTTGCCGGCCTCACGCTGCGTATCCTGTGGCAGCGGGCCTGGCCCCTGATTCTCGCCGCGGCCGTTGGCGGCTGGAGCACATCGATCATGGCAGCTGACAGCGGTGCCGTACTGCTCGACGTCGGGATTTGGTCCATCAGCGAGGGTTCCCTGCAGCTGGGGATCGGATTTATGCTGCGCGGCCTGGCCATTGCGCTGCCGGCCATCCTGCTGATGACCTGCACAGACCCGACGGACCTCGCTGATGCGCTGGCGCAGAAGGCGAAGCTGCCGCACCGTTTCGTCCTGGGCACGCTTGCCGCCATGCGCCTCGTGGGGCTCATGGCGGAGGAATGGCAGACCATTGGCATGGCCCGGCGTGCGCGCGGAGTCGGCTCGCAGGGAAGTCCCCTCGAAAGGCTGCGCGCCACATTGGGCCAGAGTTTTGGCCTGCTGGTGCAGGCAATCCGGCGCGCTTCCCGGCTGGCGGTCACCATGGAAGCCCGCGGTTTTGGCGGTGCCCAGCGGACCTGGGCCCGCGAATCCACCTACTCCCTGCTGGATGTCTGGGTGCTGCTGGGCGGACTTCTCATTGCCGCGGGCGCTGTGCTGGCGGCGGCGGCATTCGGGACCTGGAGCTTCGTCTGGCGCTAGMRTALNLRGNHALLTRANPLAKFAAVFLITLVLALSIDWVSATTALVAELALFPLAGLTLRILWQRAWPLILAAAVGGWSTSIMAADSGAVLLDVGIWSISEGSLQLGIGFMLRGLAIALPAILLMTCTDPTDLADALAQKAKLPHRFVLGTLAAMRLVGLMAEEWQTIGMARRARGVGSQGSPLERLRATLGQSFGLLVQAIRRASRLAVTMEARGFGGAQRTWARESTYSLLDVWVLLGGLLIAAGAVLAAAAFGTWSFVWRPGPT0004015_2394DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0004015-fmnA|ecfT-K16785NANA
D1-29_044181632ykoD_2COG1122Putative HMP/thiamine import ATP-binding protein YkoDATGACACCTCCCGACGCCGGCGCTTCTGCTGCGCGGCCCGCTTCAGTTTCCGCCCGGGGCTGGGGCTGGCGGCATGCCGGCCGCTCCACACCCGCCGTCCGGGGACTCGATCTGGAGATCGGCCCGGGCGAGCGGGTGCTGCTCCTGGGCCCCTCAGGAGCGGGGAAATCCACACTCCTGCACGCCCTTGCCGGTGTGCTGGGGGATGAAGAGGACGACGCCGACGAAACCGGTTCGCTGCTCATTGACGGTTCGGCTCCGCGGGAGCGGCGAGGCCGGGCCGGGCTTATGCAGCAGGATCCGGAAACGCAGGTGGTGCTCTCGCGGCTTGGTGACGACGTCGCCTTTGGTGCCGAGAACCTGGCAGTGCCCCGGGAAGAGATCTGGCGGCGGGTCAATGAAGCACTTGAGGACGTGGGGCTCCGCAGCGCCGGCTCCAGGCAGAATTCAGGCGGACAGGGTTCTGCCGGACAGAGTGCTGCCGGACAGGCTGCCGCCGGACAGGGTGCCGGCGGGCTGCCGCTGGACCACCCGACGTCGGCCCTGTCCGGCGGGCAGAAGCAGCGCCTCGCGCTGGCCGGCATTCTGGCCATGCGGCCAGGGCTGATCCTGCTGGATGAACCGACGGCTAACCTGGATCCTAACGGGGTGCTGGAGGTCCGCGACGCCGTGGGCCGCTGCCTGGATAAGACCGGCGCCACACTGGTGGTGGTGGAGCACCGCGTCTCCGTCTGGAAAGACCTGGTGGACAGGATTGTGGTGCTGCAGCCGGGCTCTGACTCGGCGTCTGCAGTCCTGCTTGACGGCCCTCCGGACCAGGTGCTTGCAGATGCCCGGGACATGCTGGCCGGCGCCGGCGTCTGGGTGCCGGGCTACGTCCCTGCCACCCGGGCCCGCAGTTCGCCGGGTTCGGGCGGACTTCTGCTGGCCGCCGAGGAACTGGCAGTGTCCCGCGAACGGCCCCGCCGCCGCGGCTTCACGACCATTGCGCCTGTGCCGGTGCAGGAGGGGATTTCCGCGCAGGTCCGCGAGGGGCGCGCGCTGACGGTGACCGGCCCCAACGGCTCCGGGAAATCCACCTTCGCGCTCACACTCGCGGGGCTGTTGGCGCCGGTCCGCGGAAAAGTTTCGGCAACCGTGGACCTGAGCCGCGGCGCGGGTATCGATCCTTTCCGATGGAAGGCCAACCAGCTGATTTCCCGGGTGGGCACCGTGTTCCAGGAGCCCGAGCACCAGTTCGTCACCGGGCGCGTCCTTGACGAGTTGATGTTTGGTCCCCGCCATCTGGGACACGGCGAGGAGCGCGTCGACGACCTGATCCAACGGCTGCGCCTGACCCACCTCGTCGAGGCCAACCCTTACACCCTTTCCGGCGGTGAAAAGCGGCGCCTCTCCGTGGCCACGGTGCTGGCAGCCCACCCCAAGGTCCTGGTGCTGGACGAGCCAACCTTCGGCCAGGACGCCAACACCTGGGCTGAGCTGGCCTCCTTCCTTTCCGAGCTGCTGGACGCGGGAACGGCGGTTGTCTCCGTGACCCATGACCAGGAGTTCAGCGCGGTCCTGGGCGGCACTGAATTGCAGCTTGGCCCCGCCTCCCAAGGAGACGCCCGGCTGGAAGCGGGTGCCGCATGAMTPPDAGASAARPASVSARGWGWRHAGRSTPAVRGLDLEIGPGERVLLLGPSGAGKSTLLHALAGVLGDEEDDADETGSLLIDGSAPRERRGRAGLMQQDPETQVVLSRLGDDVAFGAENLAVPREEIWRRVNEALEDVGLRSAGSRQNSGGQGSAGQSAAGQAAAGQGAGGLPLDHPTSALSGGQKQRLALAGILAMRPGLILLDEPTANLDPNGVLEVRDAVGRCLDKTGATLVVVEHRVSVWKDLVDRIVVLQPGSDSASAVLLDGPPDQVLADARDMLAGAGVWVPGYVPATRARSSPGSGGLLLAAEELAVSRERPRRRGFTTIAPVPVQEGISAQVREGRALTVTGPNGSGKSTFALTLAGLLAPVRGKVSATVDLSRGAGIDPFRWKANQLISRVGTVFQEPEHQFVTGRVLDELMFGPRHLGHGEERVDDLIQRLRLTHLVEANPYTLSGGEKRRLSVATVLAAHPKVLVLDEPTFGQDANTWAELASFLSELLDAGTAVVSVTHDQEFSAVLGGTELQLGPASQGDARLEAGAANANANANANA
D1-29_04419651ykoECOG4721Putative HMP/thiamine permease protein YkoEATGACAACTGCAACAATCAAGAAGACCGGCAACTCCTGGCGTGTGGTGGACATCGTGGTGGCCGCCCTCATCGCCATCGCCGGCGGCGTGATCTTCTGGGCCTGGTCCCAGGGCGCCGGAATCGTCTCCGCCCCCATGAACGCCGTCTACCCGCCGCTGACCGGCCTGATCGCCGGCGGCTGGATGATCCCGGCGGTACTGGGCATGCTGATAATCCGCAAGCCGGGCGCTGCCATCTTCTGCGAAACCGTGGCCGCCACGGGCGAGCTCATCATGGGATCGCAGTACGGCGCCACCGTGCTGATCTCCGGACTCCTGCAGGGCCTGGGCGCCGAACTGGTGTTCTTCCTGCTGGTCTACGGCAATTTCAAGTTCAAGTCGTTCCTGCACCAGAAGTTCAACCTCATCGCTGCGCTGCTGGCCGGTGCCGCTGCCGGGCTCTTCTGCGGCCTCAACGACTCCTTTATGCCGTGGGGCTGGAACATCGCCTATGAGGCCGGTGACAAGCTGGCCTACATCCTGTTCTGCACTCTCTCCGGTGCCATCATCGCCGGCGCCCTGTCCTGGATCGCCACCCGCGGCCTGGCCAAGACCGGCGTCCTCAGCTCCTTCGCTTCCCGCAAGGCCGCTTCGGAGCGCGTCTTCAACTGAMTTATIKKTGNSWRVVDIVVAALIAIAGGVIFWAWSQGAGIVSAPMNAVYPPLTGLIAGGWMIPAVLGMLIIRKPGAAIFCETVAATGELIMGSQYGATVLISGLLQGLGAELVFFLLVYGNFKFKSFLHQKFNLIAALLAGAAAGLFCGLNDSFMPWGWNIAYEAGDKLAYILFCTLSGAIIAGALSWIATRGLAKTGVLSSFASRKAASERVFNNANANANANA
D1-29_04421543hypothetical proteinATGACTGCCGAACCCTCCCCTGTGACGACGTTTGATCCGGACTCTGCCGTGAGCCAGCCGGAAGGGTCGCTTGAAGCCTTGATTGCCCGGATCGAGGCAGAGATCAGCGAGCTGCAGTTCCCGCATTTCACCAAGGACGATGCCCTCAACCTCGGACTGCTCCTGGTGGAACTGGGCAAAGGCCGTCGGTTGCCCATTGCCATCGATATCACCAAGGGTGAGCAGGTCCTTTTCCACGTGGCCCTGGACGGGGCCACACCTGATAACGAACATTGGATCCGGGCGAAGCAGCGCACGGCCGCCCGCTATGAGATGCCGTCCCTGCTGGTGGGGCTCCGCGGACGGCGGGGCGGCGGCCGGGTGGAGGACGAGGGCTGGTTCGACGAGTCCCGGTACGCCCCGCACGGCGGCTCCTTCCCGCTGTACGTGGCGGGTGTGGGCGCGGTAGCCACGGTCACAGTGTCCGGGTTGCCCCAGCAGCAGGACCACGACCTGGTGGTCGAGGCGCTGCGGGAAATCCTGGCGTCGATGCAGGCGAGGTAGMTAEPSPVTTFDPDSAVSQPEGSLEALIARIEAEISELQFPHFTKDDALNLGLLLVELGKGRRLPIAIDITKGEQVLFHVALDGATPDNEHWIRAKQRTAARYEMPSLLVGLRGRRGGGRVEDEGWFDESRYAPHGGSFPLYVAGVGAVATVTVSGLPQQQDHDLVVEALREILASMQARNANANANANA
D1-29_04422276hypothetical proteinGTGACAGTTACAGCTGATGAAACAGCCGTGGACATCGCCGTTGATGTCAGGTTCAACCTTGCAGGCAAGCCCCTGGCCGTGCGGTACCAAGGCGATGTCTGGCCGGTGGCAGGCACGCCCACGCAGTGGTTTGGTGGCAGCGATAGCCCCGAAAAGGTCGAGTACTGGCGTGCCCAAGTGTGTCTCGGATCAAGCTCTGCCGTCCGCATTTTCACCCTGCGCCGCGAACACCTTTCCAGGCAGTGGTTCCTGGAGTCCATAGCCGAGAGCTGTTAGMTVTADETAVDIAVDVRFNLAGKPLAVRYQGDVWPVAGTPTQWFGGSDSPEKVEYWRAQVCLGSSSAVRIFTLRREHLSRQWFLESIAESCNANANANANA
D1-29_04423381hypothetical proteinGTGAGATCCGGCTGGCCGCCAATTAGCGACCAGACGTGGGCCGCGATCAGAACGGAATTCACCCTGCCTTCCCTGGACCAGGTCCAGCGCAGGCTCTCTGAGCTCATGGAGGATCCCGAACCCGTGATGCAGCAGCTGGTCCGCGTTTTCATTGGGGAGGGCACTTACTGCCCGGGATTCCAGTTCCTCGCCGGCGGCCTTGTCCACCCCACTGTCCTGGACCTTTTTCAGCGAGCCATGGCCTTGAAGATTCCCCACAATCACTTCACCCTATGGATGGTCTCCCCTTCGCCCGCCCTCGCAGGGGCCCGCCCCGTTGAGCTTCTGGAAACCCGGCCTCCGGCCTTGTTCAGGGCGCTGGAAGCGTTAGGCCGGAAGTAGMRSGWPPISDQTWAAIRTEFTLPSLDQVQRRLSELMEDPEPVMQQLVRVFIGEGTYCPGFQFLAGGLVHPTVLDLFQRAMALKIPHNHFTLWMVSPSPALAGARPVELLETRPPALFRALEALGRKNANANANANA
D1-29_04424495hypothetical proteinATGGGAAAACTGACCATCCTCGTGCTGCGCATTGTCCTCGCCGTGGCGCTCGCCGGCTCGCTGTTCGTGCAGGTAAGGATGGTGCCGCTGCTGGCCGTTGACCTGGAGGAGGCCGGAGCGGATTTGGTCGGCGTTCGGATTCCACTCCTCGCCATTGTGGTGCTGGGCATCATGACCGTCCAGGTCACCCTTGTTTGCGTGTGGCGCCTGCTGACCATGGTGCGGCGGGGGACAGTGTTCTCCCATGGTGCTTTCCGCTACGTCGACATCATTTTTGGAGCCGTCGCGGCGGCATCCGTCCTGGTGTTCGGGATTGCCGTCCTTCTCGCCCCGGGGGACGCGGCGCCGGGCATCGTTCTGCTGATCTGCGGGGCCTCCCTGCTGATTGCGGGCGCGGCCCTCATCGTCCTGGTGCTCCGCACTCTGCTCGCCCAGGCGGTGGCCCGGGACGTGGAGGCACAGCACCTGCGGACAGAGCTGGACGAGGTCATCTGAMGKLTILVLRIVLAVALAGSLFVQVRMVPLLAVDLEEAGADLVGVRIPLLAIVVLGIMTVQVTLVCVWRLLTMVRRGTVFSHGAFRYVDIIFGAVAAASVLVFGIAVLLAPGDAAPGIVLLICGASLLIAGAALIVLVLRTLLAQAVARDVEAQHLRTELDEVINANANANANA
D1-29_04425246hypothetical proteinATGCCCATCATCGTGGATATTGATGTGATGCTCGCTAAACGCAAAATGTCCGTTGGTGTGCTGGCGGAACGGGTTGGGATCACGCCCGCCAACTTAGCGGTGCTCAAGAACGGCCGGGCCAAGGCAGTGCGCTTTACAACTCTGGAGGCACTGTGCGAGGTTCTCTCCTGCCAGCCCGGAGACCTGCTCCGCTGGGAGCCCGATGACCAGCGGCAGCCGGCAGACCAGCTTGTCAGCGGGCAATGAMPIIVDIDVMLAKRKMSVGVLAERVGITPANLAVLKNGRAKAVRFTTLEALCEVLSCQPGDLLRWEPDDQRQPADQLVSGQPGPT0014940_95DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014940-yozG-K07727NANA
D1-29_04426657hypothetical proteinATGGCTGCTGCGAAACCTCAGGCTTCGGCCGGACACGTCGTTCTGCTCGGTGACTCGATCCTGGACAACAAGGCATACGTCGACGGCGGTCCCGACGTCATCGCCCAGGTCCGCGCTGAGCTTCCACCCGGCTGGAATGCCACACTGCTGGCCGTGGACGGGGATGTGATTTCCGGGGTCCTGCAACAGCTTGCTTCGCTGCCCCGCGATGCCACCCACCTGGTGGTCAGCGCCGGCGGCAACGATGCACTTGGCTTTGCGTACCTGCTCGAATCGCCGGCCAGCTCCGTCGCGGAAGCCCTGAACCTTTTCAGCAGCGCCCAGGAACAGTTTGCCGCGGACTACGACCTGATGGCTGAAGCCGTTTCGGCCACTGGGATCCCCGTTGCCTTGTGCACGATCTACGACACTCCTGCCTCCACTGCGCAGCACCGGATCATCAAGACCGCCCTGGCGTTTTTCAACGACTGCATCAGCCGCGCGGCATTCTCGCGGGGCATGTCCCTGATAGACCTTCGCCTGATCTGCAACGAGGATGGCGACTACGCGAACCCTATCGAACCCTCCTCCCAGGGAGGGGCCAAGATCGCCCGGGCGGTTGCCGCCGTCGCGGGTCTTCAGGGTTACTCCGTTGAATCCAGGGTCATTGCCCGCTGAMAAAKPQASAGHVVLLGDSILDNKAYVDGGPDVIAQVRAELPPGWNATLLAVDGDVISGVLQQLASLPRDATHLVVSAGGNDALGFAYLLESPASSVAEALNLFSSAQEQFAADYDLMAEAVSATGIPVALCTIYDTPASTAQHRIIKTALAFFNDCISRAAFSRGMSLIDLRLICNEDGDYANPIEPSSQGGAKIARAVAAVAGLQGYSVESRVIARNANANANANA
D1-29_04427264hypothetical proteinATGAACCTCTTCATCAAGCTGATTGGCACCGCCGTTAGCCTCGGCGCCGGACTGGTCGGCACCAAGGTGGTCAACGCCGTTTGGGAAAAATCCACCGGCAGGAAGGCGCCCACGGGCAGGGACGAAGATACTCCGACCAGCCTTCGTTCGGCCCTGACGTTTGCGCTCATCTCCGCCTCGGTCAGCACCATCATCCAGGTGCTCGCCAACCGCGGCACCCAGCGCGCCATCACCCGTTTCGCGAAGAGCCAGGACATCGTCTAAMNLFIKLIGTAVSLGAGLVGTKVVNAVWEKSTGRKAPTGRDEDTPTSLRSALTFALISASVSTIIQVLANRGTQRAITRFAKSQDIVNANANANANA
D1-29_04428411hypothetical proteinATGACTCCTGAGACCAGCACGCTGGATAGCGTCATTGACGCAGTGTCCGCGGTGTTTATGGTGGTGGGCGCACTGATGTCCCTGGCCGCCGCCCTCGGGCTGTTGCGCTTCCCGGACCTGATGAGCAGGATGCACGCGGCCACCAAGCCGCAGGTGCTGGGCCTGTTCCTGCTGCTGGCTGCCATCGGGCTGCAGCTGCGGACGTGGTGGGTGTGGCCGGTGCTGGCGGTGGCGTGGATTTTCCAGCTGCTGACTGTGCCGGTGTCCGCGCACATGGTGGGACGCGCCGGATACCGCACCAAGCACCTGCACAGGGAGCTGCTCAGTTCGGATGAGCTGGAGGCTGTGGTGCAGCGAGCCGCGGCCAAGACGGCCCAGGAGGACACTTCCGACGACCCCTCCCGGGACTAGMTPETSTLDSVIDAVSAVFMVVGALMSLAAALGLLRFPDLMSRMHAATKPQVLGLFLLLAAIGLQLRTWWVWPVLAVAWIFQLLTVPVSAHMVGRAGYRTKHLHRELLSSDELEAVVQRAAAKTAQEDTSDDPSRDPGPT0013925_209DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013925-mnhG-K05571NANA
D1-29_04429279hypothetical proteinATGATGCAGACCGTCCTGGCCGTCACGGCAATTATCCTTTCGCTGGCCGCGGCCGGCGCCATTATCAGGATCGCCCGCGGCCCTTCGCTCCTGGACCGGGTGCTGGCGTCCGACGTCCTGCTCGCCATCATCGGCGCTGCATTGTGCATTGACATGGCGGTGAACCGGCACCTGAACAACCTCATGCTGTTGGTGGCCCTGTCCATCATCGGCTTCATCGGCTCGGTGACCGTTGCCCGGTTCGTGGCGGACCGGCGGGAGCAGCCCCATGACTCCTGAMMQTVLAVTAIILSLAAAGAIIRIARGPSLLDRVLASDVLLAIIGAALCIDMAVNRHLNNLMLLVALSIIGFIGSVTVARFVADRREQPHDSPGPT0013920_888DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013920-mnhF-K05570NANA
D1-29_04430543hypothetical proteinATGAGCCGGCGCCGGGTCTCACTGCGCCAGGAGTTGCCGCTCCTTGTCTGGCTTGTTGTGGTCTGGGGTGCCCTTTGGCAGGACTTCAGCCCCGGAAATCTCCTCTTCGGCGCCTTGCTGGCGGTGGTGGTGGCACGGATGTTCTACCTGCCGCCCGTGGAACTAAGTGGGCGCTTTAATCTTCTCCACGCCATTCCGTTTGCCCTGGCTTTCCTTGGCAAAGTGGTGGCAGCAAGCTTCCAGGTCTTGTACCTGGCAGTCGTCCGCGGGCCCAACGTCACCAACGCCGTGGTGGCCGTACCGTTGCGTAGCCACCAGGACCTGATGATGACGGCCACAGGCCACGTTATCTCCCTCATCCCGGGTTCCCTGGTGGTGGAGGTGGACCGTTCATCGTCAACTTTGTACGTCCACGGGCTCAACGTAAAAAACGCCGAGGATGTGGAGAACCTGCGCCGCGAAGTGCGGGCCATCGAAGCGGGGCTGATCCGCGTCATGGGAACCAGGGAAGAACTCGACGCCGTCCGGTTGGAGGCAGCATGAMSRRRVSLRQELPLLVWLVVVWGALWQDFSPGNLLFGALLAVVVARMFYLPPVELSGRFNLLHAIPFALAFLGKVVAASFQVLYLAVVRGPNVTNAVVAVPLRSHQDLMMTATGHVISLIPGSLVVEVDRSSSTLYVHGLNVKNAEDVENLRREVRAIEAGLIRVMGTREELDAVRLEAAPGPT0013915_474DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013915-mnhE-K05569NANA
D1-29_044311605mrpDCOG0651Na(+)/H(+) antiporter subunit DGTGAACATCGCAAGCTTTGCCCCGCTCGCCGTCGTCCTTCCCATCCTGGGCGCCGCCCTGACCTTTCTCCTGATCCGGCACTCGCGGGCCCAGCGGGCTGTCAGCATCACGCTGCTGTCCCTGACGCTGCTGCTGGAGTGCGTCCTGCTGGCTTCTGTCTGGGATGGCGGGACTGCGGCGGTGAACATCGGCGGCTGGCTGCCGCCTTGGGGCATCGTCCTGGTGGTGGACCAGTTCTCCTCCCTGATGCTGGTGGTTTCCTCCGCCGTGAGCCTGGCGGTTCTGGTTTATGCCACGGGCCAGGGCATGGCCGACGGCGACCAGGATGCGCCAGTCTCGATCTTCCACCCCACGTATCTGATCCTGGTCGCCGGCGTCTCCAACGCGTTCCTTTCCGGGGACCTGTTCAACCTTTACGTGGGTTTCGAGATCCTGCTGACGGCAAGCTACGTCCTGATGACCCTGGGCGGCACCGGGCCCCGGATCAGGGCCGGTGTGACGTACGTGGTGGTCTCGGTGGTGTCATCGGTCCTGTTCCTGATCTCCATCGCGATGGTCTACGGGGCTACAGGAACGGTGAATATGGCGGACCTCGCCGTCAAGCTCGCGGAACTGGACCAAGGGACCCAAACGCTCCTGCACGTGATGCTTCTGGTGGCATTCGGGATCAAGGCGGCGGTGTTCCCGCTGTCTTTCTGGCTGCCTGACTCGTACCCGACCGCCCCCGCCCCCGTCACGGCGGTGTTCGCAGGCCTGCTGACCAAGGTGGGCGTCTATGCGATGGTCCGCACCGAGACGCTGCTCTTCCCCGGGGACACGCTCAACACTCCGCTGATGGTGGCCGCGCTGCTCACCATGATCGTGGGAATTCTTGGCGCCCTGGCCCAAAGTGACATCAAACGTCTGCTGTCCTTCACCTTGGTCAGCCACATCGGCTACATGGTGTTTGGCCTGGCGATGTCCTCGGCGGCCGGCCTTGGCGCGGCAGTCTTCTACGTGGCCCACCACATCACCATCCAGACCAGCCTGTTCCTGGTCACGGGGCTGATCGAACGCCGCGGCGGCAGTTCCTCGGTGGACCGGCTGGCCGGACTCGCGAAGCTGTCACCGTTGCTGGCACTGCTGTTCTTTGTGCCCGCCATGAACCTGGCCGGCATCCCGCCGTTCTCCGGGTTCCTGGGCAAGGTGGGGCTCATGCAGGCCGGCATCGAGTTGGGAACACCCCTGGCCTTCACCCTGGTCATTGGCGGCGTGGTCACCAGCCTCCTGACCCTCCTGGCCGTGGCCAGGGTCTGGAACCGTGCGTTCTGGCGGAAACCCTCGGATGCTGAGCACCCGGATCCTGTGCTCCTGGCCGCCCCCGAAGACTCCGACAGGGGCCGGCGCGGCGGCCGCAACAACGTGACGCTGCTGCCGCGCACCATGGTGGGCTCCACCCTGGGCCTGGTGCTGCTGGGTGTTGCGTTGACCGTGTTCGCCGGCCCGCTCTTCAAAGTCTCGGACCAGGCGGCCCAGGACATGCTGGACCGGTCCTCCTACATTCAGGCGGTGCTGGGCGATAACGCTCCGGTGCCTCTTGTCCTGGGCCCCGGGGGTGCCAAATGAMNIASFAPLAVVLPILGAALTFLLIRHSRAQRAVSITLLSLTLLLECVLLASVWDGGTAAVNIGGWLPPWGIVLVVDQFSSLMLVVSSAVSLAVLVYATGQGMADGDQDAPVSIFHPTYLILVAGVSNAFLSGDLFNLYVGFEILLTASYVLMTLGGTGPRIRAGVTYVVVSVVSSVLFLISIAMVYGATGTVNMADLAVKLAELDQGTQTLLHVMLLVAFGIKAAVFPLSFWLPDSYPTAPAPVTAVFAGLLTKVGVYAMVRTETLLFPGDTLNTPLMVAALLTMIVGILGALAQSDIKRLLSFTLVSHIGYMVFGLAMSSAAGLGAAVFYVAHHITIQTSLFLVTGLIERRGGSSSVDRLAGLAKLSPLLALLFFVPAMNLAGIPPFSGFLGKVGLMQAGIELGTPLAFTLVIGGVVTSLLTLLAVARVWNRAFWRKPSDAEHPDPVLLAAPEDSDRGRRGGRNNVTLLPRTMVGSTLGLVLLGVALTVFAGPLFKVSDQAAQDMLDRSSYIQAVLGDNAPVPLVLGPGGAKPGPT0013910_640DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013910-mnhD-K05568NANA
D1-29_04432579hypothetical proteinATGAGCGTTAACCTGACCCTCCTGGTTGTCATGGGAGCCCTGTACGCCTGCGGGATCTACCTGATCCTGGAACGCAGTCTCACGCGGGTGCTGCTGGGACTGATGCTTCTGGCCAACGCCACCAACCTGCTGATCCTCGCCACCGGCGGCTACGCGGGGCTGACGCCGCTGTACAACAAGGACACCCCTGCCCAGGACTACAACGATCCGCTTCCGCAGGCATTGATTCTCACCGCGATCGTCATCTCGTTCGCCGTGACGGCTTTTATGCTCAGCATCATCTACCGCACCTGGGTTCTGGCACGGCAGGACGAAATCCAGTTGGACGTGGAAGACCTTCGCGTGGCCGAGACCCCCAGTTTCGACGCCGAGGACGACGCCGAGATCCCGGTGGAGACCTCAGAATTCCCGCTCACCTTGCTGGGCGGTGACGGACGTTCTGTCTCCGACCACGCCACCGACGGTGCCGAACCAACCGTCGAGGCCGGCGGAACACAGCTCACCGCCACCGACGCCGCCTCGGAAGAGCAGCCCGGATCCAAAAATGTCACCCCCGGCCCCGAAGGAGGTGTGAAGTGAMSVNLTLLVVMGALYACGIYLILERSLTRVLLGLMLLANATNLLILATGGYAGLTPLYNKDTPAQDYNDPLPQALILTAIVISFAVTAFMLSIIYRTWVLARQDEIQLDVEDLRVAETPSFDAEDDAEIPVETSEFPLTLLGGDGRSVSDHATDGAEPTVEAGGTQLTATDAASEEQPGSKNVTPGPEGGVKPGPT0013905_67DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013905-mnhC-K05567NANA
D1-29_044333009ndhBNAD(P)H-quinone oxidoreductase subunit 2, chloroplasticGTGATCACAGTCCTTGCCGTGCATTTCGCGGTGGCTGCTGTGGCGCCCTTCCTGTTCAGGCGGTGGGGCCGGAACACCTTCTACGTACTCGCGGCCGTGCCGGGGTTATCGTTCGTCTGGCTGCTCTTCCAACATGCTGCTGTTTACGCCGGTCCAGGGGCGGTCGCCGAAGTCTTCCCGTGGATTCCAGGGCTCAAGCTTGAATTCGCGTTCCGGATGGATGCCCTTGCCTGGGTGATGTCCTTACTGGTCCTGGGCGTTGGCGCCCTGGTGCTTGTCTACTGCGCGAGGTATTTCAAGAAGACGGACCAGGACCTTGGCGGTTTCGGCGCACAGCTCCTGGCCTTCGCCGGGGCCATGTTTGGGCTGGTGGTGGCGGACGATCTGCTGCTGATGTTCATCTTCTGGGAACTGACCACCATCCTGTCGTACCTGCTGATCGGCTTCGCCCGCACCAGGCTTGCGGCCCGGCGCTCGGCGCTGCAGGCGCTGATGGTGACGACGGCGGGCGGGCTGGCCATGCTGGTGGGCCTGATCATGCTGGGCTTCAGCGCCGGAACCTACCGGATTTCCGCCATCCTGGAACAGGCCCCCGCCCTCGTAGCCGGGCCTTCCGGCGCGGCGGTGGCGGCCGCCGTCGTACTGATCCTGGTGGGTGCCATCACCAAATCTGCCCTGGTGCCGTTCCATTTCTGGTTGCCGGGCGCGATGGCCGCCCCCACGCCGGTGAGCGCCTACCTGCACGCGGCGGCAATGGTGAAGGCCGGCGTCTACCTGGTGGCCCGGCTGGCCCCCGGGTTTGCCGAAACCACCTACTGGCCGCCCATCGTGCTCGGGCTGGGCCTGGCCACCATGCTGGTGGGCGGGTACCGCGCGCTCCGCCAGACCGACATCAAGCTCATACTGGCCTACGGAACCGTCAGCCAGTTGGGATTCCTCACCATGGTGGTGGGGCTGGGCACTCCCGACGCCGCACTGGCCGGCCTCGCGATGCTGCTGGCTCATGGCCTGTTCAAGGCCACGCTGTTCCTGGTGGTGGGGATCATCGACCACCAGTCCGGCACTCGCGATGTGCGTAAGCTCTCGGGAGTGTTCAGCTCTTCCCGGGCCCTGGGCATCGTGGCCGGAATCGGCGCCGCGTCCATGGCGGGAGTCCCCCTGCTGGCAGGGTTCGTGGCAAAGGAATCAGTGCTTGAGGCCTTTGTCCACCATGCAGCCGACGGGGATCCCTGGGGGATGGCAGTGCTGGCAGGAATTGTGCTGGGCTCGGTCCTCACCTTCGCGTACAGTGCCCGTTTTATGTGGGGTGCGTTCGCCACCAAACCGGGAGTCGAACGGACACCGTTCAAGGCCATTCGGCCGTCTTTCATTGCGGCCCCTGCCCTGCTGAGCCTCCTCACCATCGCTTACGGTGTCTGGCCGGCGCCCGTCGATGGCTGGATCCAGCCATACGCTGGGCTGTTCGCCACGGCCACTCCCGACGCCGGCACATCAGCTGCAGAGGCAGGTCACCTGGCGCTGTGGCATGGCTTCACCCCTGCCCTGGGGCTCACGGCTGTCACCTTTGTTCTTGGTTTGGCCATGTACTACGGCCGGGACCTGGTGGCACGCGCCCAGTCCCGCGTCCCCGGCTGGATAGACGGGGACCGGGCCTACCAGCTGACCGTCGGGGCACTCGATGATGTTGCCGTCTGGATCACGGGGCGCACGCAGCGTGGTTCGCTCTACTTCTATCTGGCCGTCATCCTCACTGTGGCGTTTGCGCTTCCGATGACAGCACTGGTCCTGGCCAACAAGCCGCTTCCGGAGGGCCTGTACTTCATTGATCCCAACTCGCCCCTGCAGATCGTGGCAGGCGCGGGCATCGTGATTGGGGCCCTGGCAGCAGTGAAGGCCAACAAACGCTTCCTGGCAGTGCTGATGGTCTCGGTGACCGGCTATGGGATCGCGCTGATGTTCGCGCTCCAGGGTGCGCCGGACCTGGCCCTTACCCAGATGCTGGTGGAAACCATCATCCTGGTGGCGTTCCTGCTGGCCTTACGCAGCCTGCCAGCGGAGCTGAGGGACCGGACCGGCGGCAAATACCGTGTGGTGCGTGTCATCATCGGGCTGGCATTCGGGGCCACTATGGTCTTCGCCGCCATCTACGCGATGGGCGCGCGGGTGGCTACGCCCGTATCCCTGGAATTTCCGCGGCTGGCTTACGAGGGCGGCGGCGGGCTGAACATCGTCAACGTGACCCTCGTCGACATCCGTGTCTGGGACACCTTCGGCGAGATAACGGTCCTCGCCCTGGCTGCCACAGGGGTAGCCAGCCTCATTTTTGTCCGTGGCCGCGGCGACGGCATCCGGATCTCTTCCACTGTGGCGGAGGGCTCCGTGGGCCGCCGAAGGGGAGTGGATCCCGGCTCCCGGGACGCTGCCGCACTGGCCATCAGCCGGAAGTTTGCCGCATCCACCCGGGATGCCTGGATCGTGGCGGGACGGACACTGGCGCCGGAGCGCCGGTCCATCATCTTTGAAGTGGTGACCCGGCTGCTTTTCCACTCCATGATCATCTTCTCGCTCTACCTCCTCCTGGCCGGGCACAACTTCCCGGGCGGCGGCTTTGCGGGGGGCCTGACTGCCGGCCTGGCGCTCACCATCCGCTACCTGGCCGGCGGGCGCTTCGAGCTGCGGGAGGCCACCCCCATCAGCGCGGGGACACTCCTGGGGATGGGGCTAGCGACGGCCGCTGCCTCCGGCGTCGTGCCCCTGTTGCTCGGTGGCCAGGCGTTCCAGACGGCAATCATCGAGCTGTGGCTGCCGGTGTTCGGTGACATCAAGTTTGTCACTTCCACCATCTTCGACATTGGCGTCTACATCGTGGTGATTGGACTGGTGCTGGACGTTCTGCGCAGCCTGGGCGCCGAGATCGATGAGCACTTCGACGAGCAGGCAGCGGCGCCTGCCGAGGAGGGGGAACCGGTGGATGTCGCCGCAGGAACCGCCGGGAAGGGTGACGCATGAMITVLAVHFAVAAVAPFLFRRWGRNTFYVLAAVPGLSFVWLLFQHAAVYAGPGAVAEVFPWIPGLKLEFAFRMDALAWVMSLLVLGVGALVLVYCARYFKKTDQDLGGFGAQLLAFAGAMFGLVVADDLLLMFIFWELTTILSYLLIGFARTRLAARRSALQALMVTTAGGLAMLVGLIMLGFSAGTYRISAILEQAPALVAGPSGAAVAAAVVLILVGAITKSALVPFHFWLPGAMAAPTPVSAYLHAAAMVKAGVYLVARLAPGFAETTYWPPIVLGLGLATMLVGGYRALRQTDIKLILAYGTVSQLGFLTMVVGLGTPDAALAGLAMLLAHGLFKATLFLVVGIIDHQSGTRDVRKLSGVFSSSRALGIVAGIGAASMAGVPLLAGFVAKESVLEAFVHHAADGDPWGMAVLAGIVLGSVLTFAYSARFMWGAFATKPGVERTPFKAIRPSFIAAPALLSLLTIAYGVWPAPVDGWIQPYAGLFATATPDAGTSAAEAGHLALWHGFTPALGLTAVTFVLGLAMYYGRDLVARAQSRVPGWIDGDRAYQLTVGALDDVAVWITGRTQRGSLYFYLAVILTVAFALPMTALVLANKPLPEGLYFIDPNSPLQIVAGAGIVIGALAAVKANKRFLAVLMVSVTGYGIALMFALQGAPDLALTQMLVETIILVAFLLALRSLPAELRDRTGGKYRVVRVIIGLAFGATMVFAAIYAMGARVATPVSLEFPRLAYEGGGGLNIVNVTLVDIRVWDTFGEITVLALAATGVASLIFVRGRGDGIRISSTVAEGSVGRRRGVDPGSRDAAALAISRKFAASTRDAWIVAGRTLAPERRSIIFEVVTRLLFHSMIIFSLYLLLAGHNFPGGGFAGGLTAGLALTIRYLAGGRFELREATPISAGTLLGMGLATAAASGVVPLLLGGQAFQTAIIELWLPVFGDIKFVTSTIFDIGVYIVVIGLVLDVLRSLGAEIDEHFDEQAAAPAEEGEPVDVAAGTAGKGDAPGPT0013895_60DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013895-mnhA-K05565NANA
D1-29_04434213hypothetical proteinATGGGTAAGATTCGGTGCCCACAGTTTATCAAGACGCTGCTGTCACTTTTTCCCGCCGCCGCTGCTGCCGCCGCCGGAAAGCCGGGTGTCCGGGATATCCTCCGGCTGATGTTCGCCACGGGCGGATACGATGCTGCCTATGAACAGCGCCAGCGCTCCCGAGGCCATGCAGCCGCCATCGGAACTCGAATCCGGGAACCACGCCACAGGTAAMGKIRCPQFIKTLLSLFPAAAAAAAGKPGVRDILRLMFATGGYDAAYEQRQRSRGHAAAIGTRIREPRHRNANANANANA
D1-29_044351377hypothetical proteinATGCAGCCGCCATCGGAACTCGAATCCGGGAACCACGCCACAGGTAAGGGCCGCGTGCTCGCCTGGGCATCGTGGGACTGGGGATCTGCTGCGTTTAACGCCGTGATGACCACCTTCGTTTTCACTGTGTATCTCACCTCGAATGCCTTCGGCGGCCAAGACCGGGCCTCGGCTGTTCTTGGCGGCGCGCTGGCTGTGGCCGGGGTGGCCATCGCCCTGCTGGCTCCAGTGACCGGGCAGCGTTCTGACATCGGAGGACGGCGGAAGCTGTGGCTGGGAGTCAACACCACCGCCGTCGCGATTCTGACCGCGCTGTGCTTCTTTGTGTTTCCCCGGCCGGAGTTCCTGCTGCTGGGCGTTGCCCTGATCGCGCTGGGCAACGTGTTCTTTGAGTTCGCGGGCGTGAACTATAACGCCATGCTGGCCCAGATCTCCACCCCGAAGAACATCGGCAAGGTCAGCGGATTCGGCTGGGGCATGGGGTACCTGGGTGGCATCGTGGCGCTGCTCGCCGTCCTGCAGCTGTTCGTCCAGCCCAGCTTCGACTGGTTCGGCGCCTCCACGGAGAACGGCCTCAACATCCGGCTGGTGGCGGTCTTCTCCGCGCTCTGGTTCTTCATCTTCGCCCTGCCCGTCCTCTTCGCGGTTCCCGAACTGCCGCGGCCCAACCAGGCCAATCCGCTGGGATTCCTCGCTTCCTACCGCCTGCTCTTCCGCCGGATCAAGGCCATCTACGCCACAAGCCCGCACACCATCTACTTCCTGCTCGCCAGCGCCGTGTTCCGCGACGGGCTGGCCGCAGTCTTCACCTTCGGCGGAATCATCGCCGCCGGGACGTTCGGCTTTGAGCTGCCCCAAGTCATCTTTTTTGCGATCTTCGGCAACATTGTGGCCGCCGTGGGAGCAATCATTGGCGGTTTCGTGGATGACCGTGCAGGGCCCAAAGCTGTGATCATCGGCTCGCTGGTGGGACTCCTCATCGCCGGCACCATGATCTTGGTCCTGGGCAACGGTGACTATGTGTTCTTCGGCCTGGCCTGGGAAGGCAGCACTACGTTCTGGGTGTTCGGGCTGTTCCTGTGCCTCTTTGTGGGCCCTGCGCAGTCCTCCTCCCGGGCCTACCTCGCCAGGCTGGCGCCCCACGGCGAGTCGGGCGAACTCTTTGGCCTGTATGCCACCACCGGCCGTGCCGTCAGTTTTCTGGCCCCAGCCCTGTTCACCCTCTGCATCGCTGTAGCCACTCCCCTGGTGGCGCCGGGCGAGGCGCAGCGGTGGGGAATCCTGGGCATTATGGTGGTTCTGCTTGCCGGGCTTCTGGTCCTGCTGCCGGTCAAGTCTCCGGACAAAGCCCCCATCGCGGTGGTCCCCGCAGCCTAGMQPPSELESGNHATGKGRVLAWASWDWGSAAFNAVMTTFVFTVYLTSNAFGGQDRASAVLGGALAVAGVAIALLAPVTGQRSDIGGRRKLWLGVNTTAVAILTALCFFVFPRPEFLLLGVALIALGNVFFEFAGVNYNAMLAQISTPKNIGKVSGFGWGMGYLGGIVALLAVLQLFVQPSFDWFGASTENGLNIRLVAVFSALWFFIFALPVLFAVPELPRPNQANPLGFLASYRLLFRRIKAIYATSPHTIYFLLASAVFRDGLAAVFTFGGIIAAGTFGFELPQVIFFAIFGNIVAAVGAIIGGFVDDRAGPKAVIIGSLVGLLIAGTMILVLGNGDYVFFGLAWEGSTTFWVFGLFLCLFVGPAQSSSRAYLARLAPHGESGELFGLYATTGRAVSFLAPALFTLCIAVATPLVAPGEAQRWGILGIMVVLLAGLLVLLPVKSPDKAPIAVVPAANANANANANA
D1-29_04436483khtTCOG0490K(+)/H(+) antiporter subunit KhtTATGAACGTGGACGAGACGGACCTCCCCGGCCTGGGCCGGCGGAAGGATTTCATGACGGCTTCCGGCCGCCGTATCGGTGTGGTGGAGTTCCGGGAAGGCCAGACGGAACTCATTGTTTCCACCTGGGACGATCCCGATACCTGCCAGGCGTCGATTCCCCTGACCGGGGATGAGGCAGCCACCCTGGGCAACCTCCTGGGCGGACAGCACCTTGCCATGAAACTGACTGAGGAGCACAGGGACGTCCCGGGCATCGTGACCCGCCAGTTCTCCATCGCACCAGGGTCCCCGTTCCAAAACCAGCCCATGGGGAAGGCGTGCATCCGGACGCGGTGCGGAGTCTCGATCGTGGCGATCATGCGTGAAGGCGAGGTGCTCCCGTCGCCGGGTCCCGACGTCGTCCTTCATTCGGGTGACCTGCTCGTCGCAGTGGGCACGCAAGAAGGCCTGGACCAAGCAGCCGATATCCTGCGCAACGGCTGAMNVDETDLPGLGRRKDFMTASGRRIGVVEFREGQTELIVSTWDDPDTCQASIPLTGDEAATLGNLLGGQHLAMKLTEEHRDVPGIVTRQFSIAPGSPFQNQPMGKACIRTRCGVSIVAIMREGEVLPSPGPDVVLHSGDLLVAVGTQEGLDQAADILRNGNANANANANA
D1-29_044371182khtUCOG0475K(+)/H(+) antiporter subunit KhtUATGGACCCGCTGGCCCTGACCCTCATTGAACTGGGGGCCGTTGTGTTCTGCCTTGGCCTGTTGGCCAGGCTGGCCGGACGGATCGGAATGTCCCCCATCCCGCTGTACCTCGTAGGCGGCCTCGCCTTTGGTGCCGGCGGCGTGATGGAGCTCGAAGGCATCCACGAGTTCGCCCACCTCTCCGGCGAAATCGGTGTCATCCTCCTCTTGCTTATGCTCGGATTGGAATATACAGCTGCCGAGCTTTTCACCGGTCTGCGCAGGTCATGGCAGGCCGGTGTGCTGGACCTGGCACTGAACTTCGCGCCAGGGGCAGGACTCGCCCTGCTGCTGGGTTGGGGCGTGGTGGGGGCATTGGTGATGGGCGGCGTCACCTACATTTCCTCCTCCGGCATCGCCGCGAAAGTCATCACGGACCTCGGCCGGATCGGTAACCGCGAGACGCCTGTGGTGCTCGCCATCCTGGTATTCGAAGACCTGGCGATGGCTATCTACCTCCCCATTCTCACGGCCACCCTGGCCGGGGTGAGCTTTTGGGGCGGGCTGACCACGGTGGGCATTTCCCTGGCCGTGGTCACCGTGGTTTTGATGGTGGCGCTGCGGCACGGCCACCGGGTCTCCCAGGCGGTCCACAGTGAGAACTCAGAGGTGTTCCTGCTCAACCTCCTGGGTTTGGCCCTGCTGGTGGCCGGGCTTGCTTCCGCCATGCAGGTTTCGGCCGCGGTGGGTGCATTTATGCTCGGTATCGCCATCTCCGGCGCCACCGCCCACAACGCCACCCGGATTCTTGAGCCGCTCCGTGACCTTTTTGCGGCCATCTTTTTTGTGGCCTTTGGGCTCAATACGGATCCCTCCTCCATCCCTCCTGTCCTTGGCTGGGCGCTGGCCCTGGCCTTGATCACGGCCATCACCAAGATGGTCACCGGCGTGTGGGCCGCCAAGCGTGCGGGGATCGCCCGGCCCGGCCGGTACCGGGCCGGCGCCGCCCTCATTGCTCGCGGTGAATTCTCCATTGTCATCGCCGGGCTGGCCGTGGCGTCCGGGGTAGTCACTGGTGAACTGGCAGCCCTCGCCACTGCTTACGTGCTGCTCATGGCGATCATCGGTCCGCTGGCGGCCCGTTATGTAGAGCCCCTGGTCAAGCCGTTCCTGCGCCCGCTGCCCGTGCCTGCCCAGGCCTAAMDPLALTLIELGAVVFCLGLLARLAGRIGMSPIPLYLVGGLAFGAGGVMELEGIHEFAHLSGEIGVILLLLMLGLEYTAAELFTGLRRSWQAGVLDLALNFAPGAGLALLLGWGVVGALVMGGVTYISSSGIAAKVITDLGRIGNRETPVVLAILVFEDLAMAIYLPILTATLAGVSFWGGLTTVGISLAVVTVVLMVALRHGHRVSQAVHSENSEVFLLNLLGLALLVAGLASAMQVSAAVGAFMLGIAISGATAHNATRILEPLRDLFAAIFFVAFGLNTDPSSIPPVLGWALALALITAITKMVTGVWAAKRAGIARPGRYRAGAALIARGEFSIVIAGLAVASGVVTGELAALATAYVLLMAIIGPLAARYVEPLVKPFLRPLPVPAQAPGPT0014395_3955DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014395-ybaL|TC_KEF-K03455NANA
D1-29_04438957hypothetical proteinATGCGGCAGCCGTCTCCTCTCCCAAGCCATCTTGCGGGCCGTTCATTCACCCTGCAGGAGCAGCTGGATGCGGGCGTGGGGTCCGGGCGGGCTTGGCGGAGTGACCTGCGCGTGGCCAGCAGGGGAGTACGCGTCCCTTGGGGTGACGCACAGACTCTGCACCACACCTGCGCGTTACTCACGGGGCTGACACCTCAGTCTGTCTGCTGCCTGGGAACGGCCGCGCAACTCTGGGGCTGCCCTTTGCCGCTGGCGCTGCAAAACGATCTGAAAATCCACCTAGCCAAAACTGGTGGAGGCGCCCGCCCGGTCCGAAAAGGTGTTGCCGGTCACCGCTTGCTCCTCCGTGACACAGATGTGGGAGAGTTCGACGGCGTGCCGGTTACCAGCCCCGCCAGGACTTGGTTGGACTTGGCTTCGGTCCTGGATATGGAGGACCTCGTGGCCGCGGGAGATCACTTCATCTGCTGGCAGTCCAGGAGTTTTGGGCCGCGGAAGGAAGCGTTCTGCTCACTCGATGATCTCCGGGAGCAGGTCCTTGCCAACCCTGGGGCGAGGGGAGTCCGAACGGCGAGGCGCGCCGTGGAACTGTGCCGGGTTGGGGCAGATTCTGCGCCCGAGACCCGGCTGCGGCTGGCTCTTGGCCGGCTGCGACTGCCAGAGCCGACGTTGCGCTACGTGGTTCTGGACCACACAGGGTGGGAGTTGGCTTGGCCTGACATTGCCTATCCGGCCTTCAAGGTAGCCGTCAATTACGATGGCCGCCACCACCTGCAGGAGCGTCAGCGCGAATCCGACATCCGCCGGGACGAGTCAATAGCCGCCATCGGCTGGACATCAGTCACCATCACAGCGAGCCAGGTGCGGACGTGGGGCTTCGATGGCTGCGCACATCGGGTAGCCGATGCGTTGGTTCGGGCTGGATGGCGGGTCGAGAGGTGCGGTCTCGGTACTTAGMRQPSPLPSHLAGRSFTLQEQLDAGVGSGRAWRSDLRVASRGVRVPWGDAQTLHHTCALLTGLTPQSVCCLGTAAQLWGCPLPLALQNDLKIHLAKTGGGARPVRKGVAGHRLLLRDTDVGEFDGVPVTSPARTWLDLASVLDMEDLVAAGDHFICWQSRSFGPRKEAFCSLDDLREQVLANPGARGVRTARRAVELCRVGADSAPETRLRLALGRLRLPEPTLRYVVLDHTGWELAWPDIAYPAFKVAVNYDGRHHLQERQRESDIRRDESIAAIGWTSVTITASQVRTWGFDGCAHRVADALVRAGWRVERCGLGTNANANANANA
D1-29_04439606dcdCOG0717dCTP deaminase, dUMP-formingGTGGATGACGCATGCGGTACTTTGGGAGGCGTGCTGATCTCTGACCGCGATATTCGTGCCGAAATAGACTCCCAACGGATTGTCCTTGAACCGTACGATTCCGCGATGGTCCAGCCGTCGTCGGTGGACGTCCGGATCGACCGGTTCTTTCGGCTTTTCGACAACCACAAGTACGCGCACATCGACCCGGCGGAAGAGCAGCCCGAGCTGACCCGCCTGGTGGAGGTTGAGACCGGCGAGCCCTTTATCCTGCACCCCGGTGAGTTCGTCCTGGGCTCCACCTACGAGACAGTCACGCTGCCGGATGACATCGCTGCCCGGCTCGAAGGGAAATCCTCGCTCGGCAGGCTGGGGCTGCTGACGCATTCCACGGCCGGGTTTATCGACCCCGGCTTCTCCGGCCACGTGACCCTGGAGCTATCGAATATGGCCACCTTGCCCATCAAGCTGTGGCCGGGAATGAAGATCGGCCAGCTGTGCTTCTTCCGGCTGACCTCGGCCGCCGAGCACCCCTATGGCTCAGGCCAGTATGGCAACCGGTACCAGGGCCAGCGCGGCCCCACCGCCAGCCGCAGCCACCAGAACTTCCACCGAACCTCGATTTAGMDDACGTLGGVLISDRDIRAEIDSQRIVLEPYDSAMVQPSSVDVRIDRFFRLFDNHKYAHIDPAEEQPELTRLVEVETGEPFILHPGEFVLGSTYETVTLPDDIAARLEGKSSLGRLGLLTHSTAGFIDPGFSGHVTLELSNMATLPIKLWPGMKIGQLCFFRLTSAAEHPYGSGQYGNRYQGQRGPTASRSHQNFHRTSIPGPT0021225_1495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494NANA
D1-29_044401578hypothetical proteinATGAACGACGCCGGCGCCCCCCTTGCCGGGGAAAGTTCAGAAGAGACGGCGCTCACCCCCGCGGTGGAACCGGCCGCCGAACCTGGCATCCGGCCAGCATCGCCGGTACAGGCTCCTGCCACAGGGACGACAGCGAAAGCCGGCACCGGCCAGGCCCTCACCGAAGAAACTGCACCGAACCCCGGATCTACCGAGGAGCCAGCCCCCGAAGTTCCCTGGATTCCGCCGCTCTGGGCGCCGGACTCTGAACTGGCCTCGCCAACGGCCCCGGCGCCGGCGGCACCTCCCGTGCCCGGGGCAGAGTCCGCCACTACTGCCCCCGGCGCCGAGGCACTGGTTCCGGATAACAACGCCGCGGCCATACTCACGGTGTTCAACAGGATCAATGAATACCGGGCGTCCAGGGGCCTGGCGCCGGTCAAGTACCACGCCACGGTGGCCGGGATGGCCCAGGAATGGTCCGACAGCATCGCCTCACGGGAGGTTATTGAGCACCGCGCGAGTTTCTGGACAGACCCCCGCGCCCTGAAACCGAACAACGGCGCCGGCGAGGTCATCGCCATCCGTACCGACCGTGACGCAGCAATGCTCGTGGAGTGGTGGAAGGGTTCCCCCGGCCACAACGCCATGCTGCTCGATCCGCGGTTCAACGTGATGGGCGCAGGGATCACCTACACTGACCGCACGTACAAAATCTGGGGTGTGGTCAACTTCTTCGGCTACACCACGCTGCCGGCAGGCACCACCAACTCCCCCGGCGGCGCCCCGGCGCAGCCTACCCTTCCCCCCACCGTCTGCGACCCTGCCGTCAAGCACATGCCGCCAACTCTTGACCTTGCCAGCGCGGCCATCAACAGCCCGGCGGACCTGATCTCGATCAACTCTTCCGGGCAACTCCTCAACCGGCCAGCGGCCGGGAACCGGGCCTTCGGCGGGGCCAAGGTTATTGGTTCCGGCTTCGGGACTGCCAAGGAAGTGTTCATTACGGACTGGGAGCGTGATGGCACCTATGACCTCCTCACCCAATGGCAGGACGGGCGGCTGACGCTGCATGCCGGCGTGGCCAGCGGAGGCTTCCAGGCCCCGGTGACACTGGGGCAGTCCGGCTGGGCCCCGCTGACTCTGGCAGTGGGCGGCTGGTGCGCCAACAACCGTCTGCCCCAGGTCCTGGCGCTGGACGCTGAAGGAAATCTCTTCCTCTACCCAAACAAGGGCCTGGCCGATATGGCGGCAAGGACACTCATCGCCAGCGGGGTCACGGCCAGGCGGCTGGCCATGGTGGACTATGACGCCGACGGTTTCCAGGACCTGCTGGCCCTGCGGACGGACGGTGCGGTCCAGCTCTATCGTGGTGGAGGGATGCCAACTCCCAAGGCCGAGGGCCGCCCCACCGTGGCCACAGGCTGGTTGGATGTTACGGCGGTCCGGCCGCTGAAGGATGCCACCGGCTTGAACTCCACAGGGGTGGCGCTGCGGCGGGCTAACGACGTTGTGCAGTACTGGGACCTCACCACCGGAAGCCTCGCGGCGCCGTCGAACATCATCGGAAACTGGACGGGGCAGCGGCTGGCGCAATAGMNDAGAPLAGESSEETALTPAVEPAAEPGIRPASPVQAPATGTTAKAGTGQALTEETAPNPGSTEEPAPEVPWIPPLWAPDSELASPTAPAPAAPPVPGAESATTAPGAEALVPDNNAAAILTVFNRINEYRASRGLAPVKYHATVAGMAQEWSDSIASREVIEHRASFWTDPRALKPNNGAGEVIAIRTDRDAAMLVEWWKGSPGHNAMLLDPRFNVMGAGITYTDRTYKIWGVVNFFGYTTLPAGTTNSPGGAPAQPTLPPTVCDPAVKHMPPTLDLASAAINSPADLISINSSGQLLNRPAAGNRAFGGAKVIGSGFGTAKEVFITDWERDGTYDLLTQWQDGRLTLHAGVASGGFQAPVTLGQSGWAPLTLAVGGWCANNRLPQVLALDAEGNLFLYPNKGLADMAARTLIASGVTARRLAMVDYDADGFQDLLALRTDGAVQLYRGGGMPTPKAEGRPTVATGWLDVTAVRPLKDATGLNSTGVALRRANDVVQYWDLTTGSLAAPSNIIGNWTGQRLAQNANANANANA
D1-29_04441447hypothetical proteinATGGCATTTGCAGAGCACGAGGTTTTCATCCGGCGTGACGCGATGGCCGTTTACACCTACCTGATTGACGGAATGAACCTCCCCCAGTGGCGCGAAGGGATCCGCACCATCAGCCTCGCATCGGGGGCGGCCGGCACCAAAGGCGCCGTCTATCAGCAGACCGTCTCCAGCCGCTCCGGACGGTTTATCACGAGTGAATTCGAGATAACCCAGGCCCGCCCCGGCGCAGAGATTCAGTTCCGGGTCATCAGCGGACAGGCCCGGCCAGCGGGCGGTTACTACCTCAGCACCGAAGCCGAGGGAACCCGGGTGCGGTTCGCCCTGGAGTTCCAGCCCAAAGGCCTGATGGGCGGCCTGATGAGTGCCATGATCCAGCGGACCATGAAAGCAGAAGTCGCCCAGCTGGAGCGGCTTAAGGACGTCCTGGAACTCCAGGCCGCCGCCTAGMAFAEHEVFIRRDAMAVYTYLIDGMNLPQWREGIRTISLASGAAGTKGAVYQQTVSSRSGRFITSEFEITQARPGAEIQFRVISGQARPAGGYYLSTEAEGTRVRFALEFQPKGLMGGLMSAMIQRTMKAEVAQLERLKDVLELQAAANANANANANA
D1-29_04443378hypothetical proteinATGGGATCCATAGCCATTGAAAACACCCTCCTCATCCCCTGCAGCCGCGCCGCGGTCTACGCCTTCTGCGTCGATGCAGCAGCCCGTTCGGAAGTCCCGGGGCAGGAAAACCTCGTGCCGGAGTTCCTGGGTCTGGAACCTGAACGTTCGTGGACCGAGAAATTGGACGGCAGGAATGAAACCATCACCTGCTCGTATGTGGTTTATCCCGTGGCGGACAGTACCAGGATGACGGTGAGCGCTGAATACGCGCCCAAGGGGCTGGCCCGCCTGCTGCCCGCCGCAAAGGAAGGCAGCTACCGCAAACAGGAGGAGGCCAGGCTGGCCGCACTCAAAAAGGCGATCGAGCGGCGGGTCAGGCAGGAGAGGAAAACCTAGMGSIAIENTLLIPCSRAAVYAFCVDAAARSEVPGQENLVPEFLGLEPERSWTEKLDGRNETITCSYVVYPVADSTRMTVSAEYAPKGLARLLPAAKEGSYRKQEEARLAALKKAIERRVRQERKTNANANANANA
D1-29_04444138hypothetical proteinATGGCTGACAAGTCCCCGCGTCAAGCAGCATCCAAAAAAGCCGGCAAGTCCATCAAAGAAAAACGAGCAGACAAGAGGGCTGCAGCCGCACCGGCCAGTTCCCTGGACGTCACGTCCAAGGCCGCCAAAAAGAAGTGAMADKSPRQAASKKAGKSIKEKRADKRAAAAPASSLDVTSKAAKKKNANANANANA
D1-29_044451368entS_4Enterobactin exporter EntSGTGGCACCCCCACCGCCATCGTCGGCAACAGTCAGCCAGCCCATCATCGACTCCGCTTCCGCCCAGACCCAGCCCATCGCCGTCGTCAGTGAACGCCTGCCCTGGAAGCACACGTTCATCTCCCTGAAGGTTCCCAACTTCCGCATCTTCGCCATCGGGCACTTCGTGGCCGTTATCGCCGTCTGGATGCAGCGCATCGCGCAGGACTGGATGGTCCTTGAACTCTCCGGCTCGGTCACCGCCGTCGGCATCACCGTTGCCCTGCAGTTCATGCCTTCACTTTTCCTGGGGCCGTGGGCCGGGATGATGGCGGACAGGTTCGCCAAGCGAAAGATCCTGATCGTGTGCCAGTGCATGGCCGCAGTCCTGGCCGCTGCGCTCGCTGCCTTGGCCCTCAGCGGAGCGGTGGAGGTCTGGCACGTCTATGTCATCGCGCTGGTGCTGGGCCTGGTCACGGTGCTGGACCAGCCCGCGCGGCAGGTATTCGTGAACGAGTTGGTGGGCCCCAAGTATCTGCGCAACGCCATCAGCGTCAACTCCACCACGTTCCAGCTGGGCGGCCTGATCGGGCCTGCGCTGGCTGGAATCCTGCTCACTGCCGTCGGGGCAGGCTGGGCCTTCGCGGCGAACGCCGTGGCATGTTGCTCCACCGTGACCATGCTGCTACTCCTGCGGAAGGACCAGCTGTATGTCAGCACTCCGGCCCCGAAGCGCAAAGGGATGCTTCGGGAAGGCCTGAGGTACGCGCTGGGCAAACCAACCATTTACTGGCCGTGGCTGATGGCCGGGTTCATCGCCGTCTTCGCCATGAGCCTGCCGGTGCTGCTGGCAGCCTTCGCTGACCACGTGTTCGACGTCGGCGCCGGCGGCTACGGCCTGCTGAATGCGCTGGTGGCGCTGGGTGCCCTCTGCGGTGCCATCGCCTCCACCCGCCGCCGGCAGCTTCGGCTCCGGTCAGTGGTGTTCTGCGCCGGCATGTACGGCCTGATGCTGTGCCTGGCTGCCCTGGCCCCGTCGATGCTGTGGTTCAGCGTGGTGATGGTGCTCTCCGGCTTCTGGTGCCTGATGTTCCTGACCGGCTCCAACCAGCTGGTCCAGATCAGCTCCAACATGGGCATCCGCGGCCGCGTCATGAGCCTGTACATCATGGTGCTGATTGGCGGCCAGGCCATTGGCGGTCCCATGCTGGGCTGGATCGCCGAACATGCAGACCCGCATGCGGCGCTGCTCGTCTCCGGCGGTGTGCCGGCGCTCGCAGCACTCACAGTCGGTGTTGTCCTTGCCCGGAAAGGTGCACTGAAGCTGCGGGTGGACCTGAAAGACCGCCGCCACCCGGTACGGATTGTCAGCCGGCCGGCAGCGGCCTAGMAPPPPSSATVSQPIIDSASAQTQPIAVVSERLPWKHTFISLKVPNFRIFAIGHFVAVIAVWMQRIAQDWMVLELSGSVTAVGITVALQFMPSLFLGPWAGMMADRFAKRKILIVCQCMAAVLAAALAALALSGAVEVWHVYVIALVLGLVTVLDQPARQVFVNELVGPKYLRNAISVNSTTFQLGGLIGPALAGILLTAVGAGWAFAANAVACCSTVTMLLLLRKDQLYVSTPAPKRKGMLREGLRYALGKPTIYWPWLMAGFIAVFAMSLPVLLAAFADHVFDVGAGGYGLLNALVALGALCGAIASTRRRQLRLRSVVFCAGMYGLMLCLAALAPSMLWFSVVMVLSGFWCLMFLTGSNQLVQISSNMGIRGRVMSLYIMVLIGGQAIGGPMLGWIAEHADPHAALLVSGGVPALAALTVGVVLARKGALKLRVDLKDRRHPVRIVSRPAAANANANANANA
D1-29_04446855cysLCOG0583HTH-type transcriptional regulator CysLGTGTTTGAACCCGCCCAACTCCGCTCTTTCCTCGCCGTCGCAGAGACGCTGAGCTTCACCAAAGCAGCGGAACGGCTTGGCCTTGCCCAGCCAACCATCAGCCAGCACGTGCGGAAGTTGGAGGCAGCTGCCAAGCGCGTCCTGGTCACCCGTGACACCCGTGATGTACGGCTTACGGACAACGGCGACGCCATGGCCGGCTTCGCCCGGAACATCCTCTCCGCCCACGACGCCGCCTCGCGCTACTTCTCCGGCTCAGCCATGCGCGGCCGCCTGCGCTTTGGCACCGCCGATGACCTCGCCATCACCGGGCTGCCCCGGATCCTGCGCGAGTTCCGGCAGATCTATCCCCAGATCAACCTGGAACTGACGGTGGGCCAGAGCGATCAGCTCTACAAAAAACTCAACGCCGGCCAGCTGGATCTGGTGTTCGTGAAATGGGTGGCCGGGGCCAAGGACGGCACCGTGGTCCAGCACGATTCATTCTCCTGGGTAGGGCTGGAGCAGACCTTGCTGGAGCCAGGCAGCCCAGTCCCGCTGATTGCCTACCCGTCCCCCAGCCTCAGCCGGAAGCTGGCCATCGACGCCCTGGAATCGCATGGCAGGACGTGGCGGATTACGTGCACCACGCGGCAGATCAGCGGTGTCCTGGCCGCAGTTCGTGCAGGCATTGGCGTTGCCGTCATGCCGTCGTCGCTGGTCCCGGAGGACCTGAAGATCATCACCCGACGCTTCGAGCTTCCCCCGGTTGGCGACGTCGACTTCACCCTGATCCGCAACCCGCTGGCCAACGCCGAGGTGATTGATGCCCTGACGCAGGCCATCGTGGGCAGGACCCTGCAAAAGTCCGCCTGAMFEPAQLRSFLAVAETLSFTKAAERLGLAQPTISQHVRKLEAAAKRVLVTRDTRDVRLTDNGDAMAGFARNILSAHDAASRYFSGSAMRGRLRFGTADDLAITGLPRILREFRQIYPQINLELTVGQSDQLYKKLNAGQLDLVFVKWVAGAKDGTVVQHDSFSWVGLEQTLLEPGSPVPLIAYPSPSLSRKLAIDALESHGRTWRITCTTRQISGVLAAVRAGIGVAVMPSSLVPEDLKIITRRFELPPVGDVDFTLIRNPLANAEVIDALTQAIVGRTLQKSANANANANANA
D1-29_04447315hypothetical proteinATGACGACAGCCAAGAACACCCAATTCCACACAGCACACGCACGCCCCCTCAACACGGCGCGCCCGCTGACTACCCGCTATTCAAGCCTCGGCTCCGGCATCGCCGTTGAGTCCGAATATGTCGGAAAGCCCACCTGCGAAAAGTGCGGAACCGACGAATTCATCTACCTTGAGTCCTACGTCCCGCCTGTCTTCCGGCGCGACGGAGCAATAAGGACACTCGGCGAGGTTGCCTACACGTGCACCCGCTGTGAAGACTTCTCCGCCCATAGCGTTCCCGCGTCGTGGACACCCCCAGGCTGGTATCTGGGCTAAMTTAKNTQFHTAHARPLNTARPLTTRYSSLGSGIAVESEYVGKPTCEKCGTDEFIYLESYVPPVFRRDGAIRTLGEVAYTCTRCEDFSAHSVPASWTPPGWYLGNANANANANA
D1-29_044483519rocA1-pyrroline-5-carboxylate dehydrogenaseATGACCAACATTGCAGTGAAGACCGGTGTGAATGCCGGCCCAGCCAGCTCCTCCACACGTGCAGATGTGCCGGAGGCGAAGGCGCTTGCCCAGGAGAGCATCGCGTTGGTGCGCCACTGGCTGACAGAGGCCTCGAAGGTGCCGGTGGACGCTTCCGCGGAGCAGCTGGCCGGTGTCCTCAAGGACCCCAACGGCCTGGAATTCACCGTTGGGTTTGTGGACGGTGTGGTCCGCCCCGAAGACATCCACGTGGCGGCCCGGAACCTGGCGGCCCTGGCCCCCAAGGTCCCCGCCTTCCTCCCGTGGTACATGCGCAGCGCAGTCCGTTTGGGGGGCACCATGGCCCCCGTCCTTCCGCAGGTTGTCATTCCGGTCGCCCGCCGGGTGCTCCGCGAAATGGTGGGCCACCTGATCGTGGACGCCACCGACGCCAAGCTTGGCCCCGCCATCGCGAAGATCCGCAAGGACGGCATCAAGCTCAACGTGAACCTCCTGGGCGAGGCCGTCCTGGGTGAACACGAAGCTTCCCGCCGGCTCGAAGGCACCCACACCCTGCTGGCCCGTCCCGACGTGGACTACGTGTCCATCAAGGTCTCCTCCACCGTGGCACCCCACTCGCCCTGGGCCTTTGACGAGGCTGTGGAGCACGTGGTGGAGAAGCTCACTCCGCTGTTCGCCAAAGCCGCGTCCTTTGCCGGTGCGGGACAGAAGGCCAAGTTCATCAACCTGGACATGGAGGAATACAAGGACCTGGACATGACCATCGCGGTGTTCACCCGGATCCTGGACAAGCCCGAGTTCAAGAACCTCGAGGCCGGCATTGTGCTGCAGGCCTACCTGCCGGACGCGCTCTCCGCCATGATCCGGCTGCAGGACTGGGCGGCCGAACGCCGTGCCCAGGGCGGCGCGCCGATCAAGGTCCGTGTGGTCAAGGGCGCCAACCTGCCCATGGAACAGGTTGAGTCCTCCCTGCACGACTGGCCGCTGGCCACGTGGGGAACCAAGCAGGATTCCGACACCAACTACAAACGCGTCATCAACTACTCCCTGCACCCGGAGCGGATCCGCAACATCCGGATCGGCGTGGCCGGCCACAACCTCTTTGATATCGCCTTTGCCTGGCTTCTGGCCAAGCAGCGCGGCATCGCGGATACCGCACAGCAGAACATCGAGTTCGAGATGCTCCTGGGCATGGCGCAGGGCCAGGCGGAGGCCGTCAAGAAGGATGTGGGCTCGCTGCTGCTCTACACCCCGGTAGTGCACCCGGCCGAGTTCGACGTCGCCATTGCGTACCTGATCCGCCGCCTGGAAGAGGGCGCGAGCCAGGACAACTTCATGTCCGCAGTCTTCGAACTGAGCGAGAACGAATCCCTGTTCGAGCGTGAGAAGCTGCGCTTCCTGGTCTCCCTGGAAAAGCTCGACGACGCCGTCCCGGCGCCCAACCGCCGGCAGAACCGCAGCCTGCCGCCGGAGCCGCTGCCGCACGATTCATTCAAGGACACCCCTGACACCGACCCGTCACTGCCGGCCAACCGGGACTGGGGCCGGGCCATCCTGGGCCGCGTCCCGTCCTCCACGCTGGGCAACGCTGCCGTGGAGGCCGCCACCATCAGGGACGCGGACACCCTCAACACGGTGATCGAAACGGCCGTGGAAAAGGGCAAGGCCTGGGGTGCCCTGTCCGGCGACGAGCGGGCTGAAATCCTGCACCGGGCCGGCGACGTCCTGGAGGCCCGGCGCGCCGACCTGCTCGAGGTCATGGCCAGCGAAACCGGCAAAACCATCGACCAGGGCGACCCCGAGGTCAGCGAAGCCGTGGACTTCGCCCACTACTACGCCGAGTCCGCGCGGAAGCTGGCAAAGGTCGACGGTGCCACGTTCGTCCCGGCGAAGCTCACCGTGGTCACTCCGCCGTGGAACTTCCCTGTCGCCATCCCGGCAGGGTCCACCCTTGCGGCGCTCGCCGCCGGCTCCGCCGTCGTGATCAAGCCTGCCAAGCAGGCCCGCCGCAGCGGTGCGGTGATGATCGAGGCGCTGTGGGAAGCGGGCGTCCCGCGTGACGTGCTCACCATGGTGCAGCTGGGCGAGCGGGAACTCGGGAAGCAGCTGATCTCCCACCCAGCCGTGGACCGGGTGATCCTGACCGGCGGCTACGAGACCGCCGAGCTGTTCCGCTCCTTCCGCCAAGACCTTCCGCTGCTGGCAGAGACCAGCGGCAAAAACGCCATCATCGTCACCCCCAGCGCCGACTTCGACCTGGCCGCCAAAGACGTGGCCTACTCCGCCTTCGGCCACGCCGGACAGAAATGCTCTGCGGCTTCACTGGTGATCCTGGTGGGCTCCGTGGCAACATCCAAGCGGTTCCGCAACCAGCTGATCGACGCCGTGACATCCCTCAAGGTGGGCTACCCGCAGGACCCCACCAGCCAGATGGGACCGATCATCGAGCCGGCCAACGGCAAGCTGCTCAACGCCCTGACCACCCTCGGCGAAGGCGAAAGCTGGGCCATTGAACCCCGCAAGCTGGACGGCACCGGCAGGCTGTGGAGCCCGGGCGTCCGCTACGGCGTCAAGCGTGGATCCTACTTCCACCTCACCGAATTCTTCGGACCCGTGCTGGGCGTCATGACGGCGGATACCCTGGAAGAGGCCATCGCGCTCCAGAACCAGATTGAGTACGGCCTCACCGCAGGTTTGCACTCGCTCAACTCCGCTGAGCTGGCCACATGGCTGGACACCATCCAGGCCGGAAACCTGTACGTGAACCGCGGCATCACAGGCGCCATCGTGCAGCGCCAGCCCTTCGGCGGCTGGAAGAAGTCTGCTGTAGGTCCCGGAACCAAGGCCGGCGGCCCCAACTACCTGGCAGGCCTCGGCGACTGGATCAGCAAGGAAAGCTCGCTCGGTTCACGGGTCACAAACCCCGGTGTCCGCCGGATCATCAACGCGACCGGTAGCGCCGTTGAGCCTGCCGAGCTGGAATCCCTGCAGCGCGCTGTGGCGTCCGATGCCCAGGCCTGGGCGGACGAATTCGGTACCGCCAAGGATGTCTCCGGCCTGAGCGCGGAGCGGAACATCTTCCGCTACCGGTCCCTGCCGGTAACCGTCCGCCTCTCCGAAGGTGCCCCGCTGGTGCACCTGGCGCGGACTGTGGCCGCGGGCGTTGTGGCAGGCTCAAGGCTCACCGTTTCCACCGCCGTCGAACTTCCCGCCCAGCTCCGTTCGGTGTTTACGGGACTCGATATTGACGTGACCGTGGAGTCCGACGCCGGCTGGCTGGCAACGGCTGCCCGGCTCGCCGCCGCCGGCAAATTGTCGGGGGCGCGGATCCGCCTGATCGGCGGGAACTTCACCGCACTGGCGGAGGCGACAGACGGGCGGCCCGACCTCGCGGTTTACGCCCACGAGGTGACCGAATCCGGACGGGTGGAGCTGCTGCCGTTCCTTCATGAGCAGGCTGTCAGCATCACCGCACACCGCTTCGGAACCCCGAACCACCTCTCGGACGAGCTCATCTAGMTNIAVKTGVNAGPASSSTRADVPEAKALAQESIALVRHWLTEASKVPVDASAEQLAGVLKDPNGLEFTVGFVDGVVRPEDIHVAARNLAALAPKVPAFLPWYMRSAVRLGGTMAPVLPQVVIPVARRVLREMVGHLIVDATDAKLGPAIAKIRKDGIKLNVNLLGEAVLGEHEASRRLEGTHTLLARPDVDYVSIKVSSTVAPHSPWAFDEAVEHVVEKLTPLFAKAASFAGAGQKAKFINLDMEEYKDLDMTIAVFTRILDKPEFKNLEAGIVLQAYLPDALSAMIRLQDWAAERRAQGGAPIKVRVVKGANLPMEQVESSLHDWPLATWGTKQDSDTNYKRVINYSLHPERIRNIRIGVAGHNLFDIAFAWLLAKQRGIADTAQQNIEFEMLLGMAQGQAEAVKKDVGSLLLYTPVVHPAEFDVAIAYLIRRLEEGASQDNFMSAVFELSENESLFEREKLRFLVSLEKLDDAVPAPNRRQNRSLPPEPLPHDSFKDTPDTDPSLPANRDWGRAILGRVPSSTLGNAAVEAATIRDADTLNTVIETAVEKGKAWGALSGDERAEILHRAGDVLEARRADLLEVMASETGKTIDQGDPEVSEAVDFAHYYAESARKLAKVDGATFVPAKLTVVTPPWNFPVAIPAGSTLAALAAGSAVVIKPAKQARRSGAVMIEALWEAGVPRDVLTMVQLGERELGKQLISHPAVDRVILTGGYETAELFRSFRQDLPLLAETSGKNAIIVTPSADFDLAAKDVAYSAFGHAGQKCSAASLVILVGSVATSKRFRNQLIDAVTSLKVGYPQDPTSQMGPIIEPANGKLLNALTTLGEGESWAIEPRKLDGTGRLWSPGVRYGVKRGSYFHLTEFFGPVLGVMTADTLEEAIALQNQIEYGLTAGLHSLNSAELATWLDTIQAGNLYVNRGITGAIVQRQPFGGWKKSAVGPGTKAGGPNYLAGLGDWISKESSLGSRVTNPGVRRIINATGSAVEPAELESLQRAVASDAQAWADEFGTAKDVSGLSAERNIFRYRSLPVTVRLSEGAPLVHLARTVAAGVVAGSRLTVSTAVELPAQLRSVFTGLDIDVTVESDAGWLATAARLAAAGKLSGARIRLIGGNFTALAEATDGRPDLAVYAHEVTESGRVELLPFLHEQAVSITAHRFGTPNHLSDELIPGPT0020210_1490DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821NANA
D1-29_044491464yhdG_5COG0531putative amino acid permease YhdGATGAGCACAAGAGATTTGACCCAGTCGATCATGCGGCGAAAGCCCTTGAACGACATCGAAGAAGAAAACAAGCACAGCGGGCTGTTCAAGTCGCTTGGCCTCTGGCAGCTGACCGCGATCGGTGTCGGCGGCATCATCGGCGTCGGGATCTTCTCCCTTGCCGGGCTGGTCGCAGCAGGTAACGAGGACACTCCGGGTGTGGGGCCCGCCGTGCTGATTTCGTTCCTGATTGCAGGCCTCGCATCCGCGGCGGCGGCCCTGTCATACGCGGAATTCGCGGGCATGATTCCCCGTGCCGGCTCCGCCTACACCTACGGTTACGTGGCTTTGGGTGAAGTCATCGGCTGGTTTATTGGCTGGGACCTGCTGCTCGAATACATCGCCATCGTGGCGGTGGTGGCCATTGGCATCTCCGGCTACTTTGAAGCCTTCCTTTCGGGTCTGGGAATTCACCTGCCTACCTGGATGGCATCGACGCCGGATGAAGGCAAGGGGGGCATCATCAACATTCCCGCCATCCTGGTCTGCCTCCTGGTGACGTGGATCCTGAGCCGCGGTACAAAGGCCTTCGGCCGGTTTGAGCTGGTGGCCGTGGCGATCAAGGTAGTCCTGATCCTCTTCATCATCGGTCTTGGCGTCTTCTACATCGATGCCAACAACTACAACCCGTTCATGCCCAGCGGCTTTGGCCCCGTGCTGGCAGGCTCTGCCACTGTCTTCTTCGCTGTCTTCGGTTACGACGCGATGAGCACGGCTGCTGAGGAAGCAAAGGACGGCAAGAAGCACATGCCCAAGGCCATCGTCCTGTCCCTGATCGTGGCCATGCTGCTCTACGTTGCCGCAACCCTGGTTCTCACCGGAATGCAGAACTATAAGGACATTGATCCTGCTGCAGGCTTCGCTTCCGCCTTCACCAGCGTCGGCCTGCCGGTGATAGCCACCATCATCTCCGTGTTCGCAGTCCTGTCCATCCTCACTGTGATGCTGACCTTCCTGCTGGGCGTCACCCGCGTCTGGTTCTCCATGAGCCGCGACGGGCTGCTGCCGGGCTGGTTCGCCGGAACCGACAAGCACGGCACCCCTCAGCGCGTCACATGGATTGCTGGAATTTCCTCCGCCCTGCTGGCCGGCGTTTTCCCCATCAAGGCCGTGGCCGACCTGACCAACATCGGGATTCTGGCCGCGTTCGTAGTGGTCTGCCTCGCCGTCATCGTGTTCCGTTACAAGAGGCCTGATGCGCCGAGGACGTTCCGGCTGCCGCTGATGCCCTTCATCCCGGCTTTCGGCGTCCTGGCCTCTGCCCTGCTCATCTGGCAGCTGCCGGCTGACACCAAATGGCGCTTCGGCGTGTGGCTCCTCATCGGCCTGGCCATCTACTTCTTCTACGGCCGCAAGCACTCGCTGATGAACCCCAACAGCCCGCGCCACACGAAGACCGACGAGGTGGACACTCCCGTCCGCTAAMSTRDLTQSIMRRKPLNDIEEENKHSGLFKSLGLWQLTAIGVGGIIGVGIFSLAGLVAAGNEDTPGVGPAVLISFLIAGLASAAAALSYAEFAGMIPRAGSAYTYGYVALGEVIGWFIGWDLLLEYIAIVAVVAIGISGYFEAFLSGLGIHLPTWMASTPDEGKGGIINIPAILVCLLVTWILSRGTKAFGRFELVAVAIKVVLILFIIGLGVFYIDANNYNPFMPSGFGPVLAGSATVFFAVFGYDAMSTAAEEAKDGKKHMPKAIVLSLIVAMLLYVAATLVLTGMQNYKDIDPAAGFASAFTSVGLPVIATIISVFAVLSILTVMLTFLLGVTRVWFSMSRDGLLPGWFAGTDKHGTPQRVTWIAGISSALLAGVFPIKAVADLTNIGILAAFVVVCLAVIVFRYKRPDAPRTFRLPLMPFIPAFGVLASALLIWQLPADTKWRFGVWLLIGLAIYFFYGRKHSLMNPNSPRHTKTDEVDTPVRPGPT0020810_2238DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-29_04450918gltC_4HTH-type transcriptional regulator GltCATGCTCGACGTCCGGCGGCTGCGGCTGCTCCGTGAACTGCAGATCCGAGGCACTCTGGCGGAAGTGGCCGAGGCGCTTCAATACAGCCCTTCGTCAGTGTCCCAGCAGCTGGCCCTGCTGGAAAAAGAGGCCGGGGTGGAGTTGCTCCGGAAGACGGGGCGCCGCGTGCAGCTGACCCCCCAGGCGGAAGTCCTGGTGGCCCACACCGCGCAGCTGCTGGAGACCCTGGAGCAGGCGGAGGCGGACCTGGCAGCGTCGCTGACCACCGTCACCGGAACGGTCCGGATCGCCGTTTTCCAGTCCGCGGCCCTGGCCCTGATGCCGGACACCCTGTCCCGGATGTCCACCGCCTACCCCGAGGTCCGGATCGAAATGACCCAACGGGAGCCTGAAACAGCCCTGCATGAAACGTGGGCCCGGGACTTCGACCTGGTGATCGCCGAACAGTATCCGGGTCACGCCGCTCCCCGTTACCCCGAACTGGACCGCATCAAACTCACCACTGACGCCATCAGGCTTGCGGCTCCGCCGGAGGCTCCCGGCAGGCCGCAGATCACGTCCCTCAAGGACACCGCGGACATGCCTTGGGTGATGGAGCCCAGGGGTGCGGCCTCCCGGCACTGGGCCGAGCAGGCGTGCCGCAGCGCTGGTTTTGAACCCGATGTACGGTTCGAAACAGCTGACCTGCAGGCTCAGATCCGGCTGATCGAGTCGGGGAACGCCGTGGCTTTGATGCCGGACCTGGTCTGGACCGGGCGGGGCACCACGGCGCAGTTGCTGGATCTGCCGACCAACCCGTTCAGGACAATTTTTACGTCTGTCAGGCGCGCCAGCGCCTCCAGGCCTGCGATCCTGGCGGCCCGCGAAATGCTGGCCCTCACTGCCGAATCCGTCGCAAAATCGGACGACGCCGGGTAGMLDVRRLRLLRELQIRGTLAEVAEALQYSPSSVSQQLALLEKEAGVELLRKTGRRVQLTPQAEVLVAHTAQLLETLEQAEADLAASLTTVTGTVRIAVFQSAALALMPDTLSRMSTAYPEVRIEMTQREPETALHETWARDFDLVIAEQYPGHAAPRYPELDRIKLTTDAIRLAAPPEAPGRPQITSLKDTADMPWVMEPRGAASRHWAEQACRSAGFEPDVRFETADLQAQIRLIESGNAVALMPDLVWTGRGTTAQLLDLPTNPFRTIFTSVRRASASRPAILAAREMLALTAESVAKSDDAGNANANANANA
D1-29_04451414panD_2COG0853Aspartate 1-decarboxylaseATGTTCAAATCCAAAATCCACCGGGCCACCGTCACGCACGCTGACCTGCACTACGTAGGTTCGGTCACCGTTGACCTGGACCTGCTTGATGCTGCCGACATCCTCCCCGGCGAGCTCGTGGCCATTGTGGACGTAACAAACGGCGCGCGCCTGGAAACGTACACCATCGCCGGCGAGCGCGGCTCCGGCGTCATCGGCATCAACGGACCCGCTGCGCACCTGGTCCATGAGAACGACGTTGTCATCCTCATTACCTACGCCGCGATGACCACCGAGGAAGCCAGGGCTTACCAGCCACGGGTTGTCCACGTTGACCAGGACAACAAGATCATCCAGTTGGGCAATGATCCCGCCGAAGGCTTGACGCCCGGACTGATGCGGCCCCCTTTCGCACTTAACAACGCCACCCTGTAAMFKSKIHRATVTHADLHYVGSVTVDLDLLDAADILPGELVAIVDVTNGARLETYTIAGERGSGVIGINGPAAHLVHENDVVILITYAAMTTEEARAYQPRVVHVDQDNKIIQLGNDPAEGLTPGLMRPPFALNNATLPGPT0008890_468DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579NANA
D1-29_04452927hypothetical proteinTTGGTAGGCGTACTTTCGGGCTTCTTTGTGGTCTGGTGCATCATCCTGGTGGGCTGGTTTGTGGGCAGGCGCCGCCTCCTGGGCGAGAACGGACGCCAGGTCCTCAGCGGACTCACGTTTTTTGTTGCCAGCCCGGCGCTGTTGTTCGAAACGCTCGGCAAGGCCCGCCTGCAGGAGGTCTTTGCCGAGCCCCTGCTGGTGACAGCCGTGGCCGCCTTCGCGTCCGCCATGATCTTTTTCGCCATCATCAAATTCTGGCTCAGGCGCCCGCTGCCCGAAGCCCTGATGTCCTCCATGGCAGCATCCCTGGTCAACTCGGCCAACCTGGGCATCCCCATCGCCGTGTACGTCCTGGGGGATGCCAGCTACGTGGCACCCCTGCTGATCTTCCAGCTGGCGTTCTTCAGCCCGCTGTTCTTGATGATCCTGGATGCCAGCACAAGCTCCCACCGGGCCACGCCGCTGAGCTTTGTGGTGATGATCCTGAAGAATCCGATGATTGTGGGCTCGGCCCTGGGGCTGGTGGTGGCCGGAACCGGCTGGGAGGTCCCTGCTCTGGTCATGGAACCCATCCACCTGATTGGCGGCGCAGCCATTCCGGCCATGCTGATCGCGTTTGGTATGAGCCTGAACGGGTCCAGGCCACTGCAGGCTACGGGCGGACGGCGGCTGGATACCTTGCTGGCCAGCGGCTTCAAGCTGCTGGTGCAGCCTGGCATCGCCTACCTGTTTGCCCGGTTTGCGCTGGGGATGGAAGGCCACGCTTTGTTCGCCGTGGTGGTCATCTCCGCCCTCCCTACGGCGCAGAATGTCTTTGTGGCCGCCAGCCGCTACAAAACCGGCCTCATCGTGGCCAAGGACACCGTGCTGATCACCACCGTGGTGGCTGTGCCCGCCATGATAGGGCTCGCCCAACTGCTCACCTGAMVGVLSGFFVVWCIILVGWFVGRRRLLGENGRQVLSGLTFFVASPALLFETLGKARLQEVFAEPLLVTAVAAFASAMIFFAIIKFWLRRPLPEALMSSMAASLVNSANLGIPIAVYVLGDASYVAPLLIFQLAFFSPLFLMILDASTSSHRATPLSFVVMILKNPMIVGSALGLVVAGTGWEVPALVMEPIHLIGGAAIPAMLIAFGMSLNGSRPLQATGGRRLDTLLASGFKLLVQPGIAYLFARFALGMEGHALFAVVVISALPTAQNVFVAASRYKTGLIVAKDTVLITTVVAVPAMIGLAQLLTPGPT0001720_2271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0001720-mdcF-K13936NANA
D1-29_044531134soxA_8Monomeric sarcosine oxidaseATGGGAACAATCCTGGATACCGTTGTGATCGGCGGAGGTGCCATGGGCTCTGCTGCCGCTTGGGCCCTGTCCCGGCGCGGCCGGCAGGTCACGCTGCTGGAACAGTTCGGACCCGGCCACCTCAAGGGTGCCTCGCATGGAGCCACCCGCAACCTCAACCCCGGCTACCGCCGCCCGGAGTATGTGGCCATGCTGGCCGAATCACTGGCCTTGTGGGACAAGCTGGAGCAGGAGAGCGGCCAGCGGCTCCTCACCCGAACCGGCATCGTCAGCCATGGCCCGGATCCCCGGCTCTCCGAGGTGCAGGCGGCTCTTTCCGAGGCCGGGCTCCGGGCCGATTTCCTCAGTGTTGAAGCCGCCTCCGAGCGCTGGAGCGGGATCCGCTTTGACCAGCAGGTGCTTTACATGCCCGACGGCGGCCAGCTCAACCCCGAGGCTTCCCTGCCGGTTTTCCAGCAGCTCGCCGTGGCACGGGGAGCCGAAATCCGGCACCACACCAAAGTGGCGGACTTACAGATCGCGGACGACGGCGTCCGGCTCACGTTGGATTCGGAAGCGGGCAGGGAGACCGTCACTGCTGCCCAGGCAGTAGTGACGGCGGGTGGCTGGACGGAGAAACTGTTGGGCGGCAGCGCCGGTGCTTCGCAGCTGAGGCTCCCCCGGCTCCGGGTCACGCAGGAGCAGCCGGTCCACTTTGGCATTGCTGACCCCCATGCCGTATGGCCGGGGTTCAACCATCATCCGGGGAGCGGGGCAGCCTACAAGGACTGGTACTCACCCGTCTATGGGATGCAGACCCCGGGCGAAGGGATCAAGGCGGGCTGGCACGGCGTGGGACCCGTGGTGGACCCGGACCGGAGGTCATTCCAACCCGAACCCCGGCAGCTGGCGGCACTGCAGGACTATGCCCGGAGGTGGCTGCCCGGGGTGGACGCGGACTCTTTCGAGGCCATCAGCTGCACCTACACCACCACCCCGGATGAGGACTTCGTCCTGGACCGGATCGGCCCGGTGGTTATTGGTGCCGGCTTCTCAGGGCACGGGTTCAAATTCACCCCGGTGATCGGCAGGATCCTTGCTGACCTGGCAATCGGCACACGGCCTGCGCCCGCTATCTTCTCCGCGGCGCGCTAGMGTILDTVVIGGGAMGSAAAWALSRRGRQVTLLEQFGPGHLKGASHGATRNLNPGYRRPEYVAMLAESLALWDKLEQESGQRLLTRTGIVSHGPDPRLSEVQAALSEAGLRADFLSVEAASERWSGIRFDQQVLYMPDGGQLNPEASLPVFQQLAVARGAEIRHHTKVADLQIADDGVRLTLDSEAGRETVTAAQAVVTAGGWTEKLLGGSAGASQLRLPRLRVTQEQPVHFGIADPHAVWPGFNHHPGSGAAYKDWYSPVYGMQTPGEGIKAGWHGVGPVVDPDRRSFQPEPRQLAALQDYARRWLPGVDADSFEAISCTYTTTPDEDFVLDRIGPVVIGAGFSGHGFKFTPVIGRILADLAIGTRPAPAIFSAARPGPT0013530_367DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013530-soxA|solA-K00301NANA
D1-29_044541488bmr3_2Multidrug resistance protein 3ATGACTACCCAAGCCCAAGGAGTGGGGTTCCGATCTGAACGGGGCCCCATTCTCATTGCCCTGATGCTGGCCACCGGCCTTGTGGCCATTGACGCGACTATCGTGGCCACGGCTGTTCCCTCCATCGTGGATGACCTCGGCGGGTTCTCGTCATTTCCCTGGCTCTTCTCCGCGTACCTGCTGGCCCAGGCCGTTTCGGTGCCCATCTACGGGAAACTGTCCGACATGGTTGGCCGCAAGCCCATCATCCTGGCCGGAATCAGCCTCTTCCTGCTGGGCTCCGTACTCTGCGGCATCGCCTGGAGCATGCCGGCACTGATCGCTTTCCGGGCCCTGCAAGGCCTGGGCGCCGGGGCGGTCCTGCCAGTGTCCATCACCATTGCGGGGGACATCTACTCGCTCGAGGAACGCGCCAAGGTCCAGGGCTACCTCGCCAGCGTGTGGGCCATTTCCTCGGTGGTGGGACCGAGCCTTGGCGGCATTTTCTCCTCCCTGGGCCTTTGGCGGGGGATATTCCTTGTCAATGTTCCGCTGTGCATCCTGGCGGGCTGGATGCTGCTGCGGACCCTGCACGAGAACGTCCAGCGGGCCAAACACCGGGTGGACTATCCCGGCGCGGTCCTCCTGGCCGGTTCGCTCAGCCTACTTATCCTTGGCGCGCTTGAAGGCGGCCAGGCGTGGGCCTGGGATTCGCCGCTGAGCATCGGTGCGTTCGCAGTCGGCGGAGTCCTGCTGATCGTTTTTGTGCTGGTCGAGCGGCGGGCGGCAGAGCCCATCCTTCCGCCGTGGGTGGTGTCCCGGCGCCTGCTGGCCTCTACGGCCCTGGTTTCCTTCGGCGTGGGCTCAATCATGATTGGCCTGACGTCCTATGTGCCCACCTTCCTGGACGGGGCACTGGGCACTTCCCCGCTGGTGGCCGGCCTGGCCCTTGCCGCCCTTACCCTCGGCTGGCCGATCAGTGCCTCGCAGGCCGGAAAGCTCTACCTTCGGATCGGGTTTAAGCCGACGGCCCTGATCGGCATCACAGTCACCATCCTCGGCGTGGCCATCCTGACCCTCACTGCGGCGACTCCCAACGTAGCGCTGATCGCGGTCAGTTGCTTCGTCGTCGGATTAGGTCTTGGGCTGGTGGCCACACCCACGCTGATCGCGGCCCAGTCCAGTGTTCCGTGGAATGAGCGCGGCGTGGTCACCAGCACAAATCTCTTCGCACGCTCCATTGGCAGTGCCCTGGGTGTTGCCGTCTTCGGAGCCGTGGCCAATGCCCTTTATGCCGGCACCCCGCCCGAAGCTGCGGGCGAGCACACCGTTGTGGTCGCCTCCGGTGCCGTCTTCCTGGCAGTCCTTGCCTGCGCCGTGCTCAGCATCGGGGCGGTGGCGGCAATGCCGGCCACGTCCCCGAGCAGAGCAGACCTTGACGTGCAGGCCGAGGGGACTGGCGCCGCCGATAGTGCCCCTACGAATGCTGCCCTGCGCCGCACGCAGTGAMTTQAQGVGFRSERGPILIALMLATGLVAIDATIVATAVPSIVDDLGGFSSFPWLFSAYLLAQAVSVPIYGKLSDMVGRKPIILAGISLFLLGSVLCGIAWSMPALIAFRALQGLGAGAVLPVSITIAGDIYSLEERAKVQGYLASVWAISSVVGPSLGGIFSSLGLWRGIFLVNVPLCILAGWMLLRTLHENVQRAKHRVDYPGAVLLAGSLSLLILGALEGGQAWAWDSPLSIGAFAVGGVLLIVFVLVERRAAEPILPPWVVSRRLLASTALVSFGVGSIMIGLTSYVPTFLDGALGTSPLVAGLALAALTLGWPISASQAGKLYLRIGFKPTALIGITVTILGVAILTLTAATPNVALIAVSCFVVGLGLGLVATPTLIAAQSSVPWNERGVVTSTNLFARSIGSALGVAVFGAVANALYAGTPPEAAGEHTVVVASGAVFLAVLACAVLSIGAVAAMPATSPSRADLDVQAEGTGAADSAPTNAALRRTQNANANANANA
D1-29_044552631hypothetical proteinATGCCAACGCCTTTGAACCAGACCGTCGCGGACACCGCGCTGCTCACCAAATCGCTGCCGCTGGGCCTCCTGCGGGCCTTCGTGCAGTCGGACGCCGCCGACGACGGGCTGACACCAACGCTCCTGGCCCAGCTGAAGGTCCTGGCACGCGCGCCCGGCCTCCTCGTGGCCTGCAACTACGGCGGAACCCTGTGCGACGCAGAGGGCATCTCCACCGAAACGCTGCCGCTGGGGAGCGCCGCGATTGCACTGCGCGCCCTGGCCGCCTTGCCCAATACCCATGCCGCCGTGATTTCCGGGCGCTCGCTGCGTGACCTTGCCGCGGTGTCCCGGCTCCCCGCTGAAGTGCACCTCATCGGATCCCATGGTGCGGAGGCGGATATGGGGTTCGCCCACACACAGTCCCTGGCCACCGAAGCCGCCCTCCAAAGAGCAAGTACCGCACTGTCCGAGGCGGTGGGGTTCCAAAAGGGGATCTGGATTGAACGGAAGCCGGTGGCCGTCTCGGTGCACACCCGGCCGGCCGCACCGGACGTCGTGCGGGCGGTCACAAACACGGCACGGGAAATCGCCCGCGCCCACGGGCTGTTCTTTATTGTGGATGGCTCCGTGCTGGACCTGTCCGTTGTGGAACCGTCAAAGGCCGATGCGCTGGAGAGCCTGAGGTCCCGGCTGGGCGCCAGCGCAGCCATGTATGCGGGGGACGCCTACAGCGACGAACTGGCCATGGCCACACTCCGCGGCCCGGACATGGGCCTGCGCGTGGGCCCCGGCCAGACCGCCGCCGGCCACCGGCTGCGCGATCCGGAATCCTTTGCCCGGGTGCTCGCGATCCTTTTTGAACTGCGCCGGGCCTGGCTCTTCGGCGAGGACGCGGTGGGGCTGGAACGGCATTCCATGATCGGCAACGGGTCCTCCACCGCCCTGGTCACTCCCGACGCCAAAATCTGCTGGATGAGCCATCCACTGCCCGATTCCGGCTCCCTGTTCGCCCACATCCTGGGCGGAGATGCCGCCGGACACTTCTCGGTTGAACCGGTCAAGGCCTCGCAGGTGCTGGGCCAGCGCTACGTGGACAGCACCATGATCGTGGAGACACGCTGGGCGGACGTGACCGTCACGGACTACCTCGAACCGGCACCGGAGGGCATCACCAGCCTGGTCCGTGTGCTCTCCGGCAGCGGCGCGGCCAAGATCGTGTTTGCGCCGCGGCCGGACTACGCCAACGCCCCCTTCAGCATGGAGGCCCGCGGTGACGAAATCCACGTGGTGGGCACGTCGGACCCCATCATTCTCCTGTCACCAGGCGTTACGTTCGCCATCACTTCGGACGGACGGCACGCCACCGCCACGGCATCAGTGAACCTGCAGGAAGGGCCCGTGGTCCTCAACATGCGCTGCGGCGACACCGAGCCGCAGCCCGCAGACCCGGGCGGCGAGACTCAACGCCGTGCCGGGGTGGCGCATCACTCCCGCCGCTGGGTGCAGGACCTGGAGCTGCCCGACGTCAAGCCATCCCTGGTGCGCCGCTCGGCGCTGGTGCTGCGGGCCTTGGTACACGCACCCACGGGCGCCGTGCTGGCCGCCCCCACCACGTCCCTGCCGGAAGGCATCGGCGGAACCCGCAACTGGGACTACAGGTACTGCTGGCTGCGGGACGGATCCATGACCGTAAACGCGCTCGTGGATCTTGGTTCTTCGGCGGAGGCAGCCGGCTTCCTAGACTGGCTGGGCCGCATCCTGGAGAATGCGCCCGGCCCCGAATGGCTGCACCCGCTCTACTCAGTGACGGGGGCGCCGTTATCCACCGAAGCCGTGATCGACAGCCTTCCCGGCTATGCCGGTTCCCGTCCGGTGCGGATCGGGAACGCCGCCGACCACCAGGTCCAGCTGGACGTTTTCGGCCGCGTCGCCGAGCTTATCCACGCCCTCAGCGAGCGGGAGGGCGCGCTCGCCGATGAGCACTGGGAACTGATGGTGCAGATGGCGGCAGCCGTGCTGGCCCGCTGGCACGAGGCCGACCATGGCATCTGGGAGGCGCGGCGGGCACCCCGCCATCACGTGTATACCAAGGTGATGTGCTGGGTGACCCTGGACCGTGCGCTGCGCACCGCCGCCCGTCACGGCCGGGCGCCGGAACCGTCCTGGGCCCCCACGGCCTCCGTGATCCGGGACGAGGTCCTGCGCGAAGGCTGGGATGACTCCGCGCGGTCCTACACCGTCGCCTACGACAGCCCGGACCTGGATGCCGCCGTCCTGCACATCGGGCTCTCCGGCCTGCTGGATGTGAACGACCAGCGCTTCCTGGACACCGTCACCGCCGTCGAACGGGAACTGCGGGTAGGGCCAACAGTCTTCCGGTACAGGTACGACGACGGCCTGCCGGGCCTGGAGGGCGGCTTCCACATCTGCACCACCTGGCTGATTGAGGCGTACGTTGCGGTGGGCAGGATCGAGGAGGCCTGGGACCTTTTCGACCAGCTGGTGAACCTCTTTGGTCCCACCGGCCTGCTGCCGGAGGAATACGATCCGGGCACCGAAACGCATCTGGGGAACCATCCCCAGGCCTATTCGCACCTCGGATTCATCCGCTGCGCCAGGATCCTGGACGGGCATCAAGGTAAAAAGTAGMPTPLNQTVADTALLTKSLPLGLLRAFVQSDAADDGLTPTLLAQLKVLARAPGLLVACNYGGTLCDAEGISTETLPLGSAAIALRALAALPNTHAAVISGRSLRDLAAVSRLPAEVHLIGSHGAEADMGFAHTQSLATEAALQRASTALSEAVGFQKGIWIERKPVAVSVHTRPAAPDVVRAVTNTAREIARAHGLFFIVDGSVLDLSVVEPSKADALESLRSRLGASAAMYAGDAYSDELAMATLRGPDMGLRVGPGQTAAGHRLRDPESFARVLAILFELRRAWLFGEDAVGLERHSMIGNGSSTALVTPDAKICWMSHPLPDSGSLFAHILGGDAAGHFSVEPVKASQVLGQRYVDSTMIVETRWADVTVTDYLEPAPEGITSLVRVLSGSGAAKIVFAPRPDYANAPFSMEARGDEIHVVGTSDPIILLSPGVTFAITSDGRHATATASVNLQEGPVVLNMRCGDTEPQPADPGGETQRRAGVAHHSRRWVQDLELPDVKPSLVRRSALVLRALVHAPTGAVLAAPTTSLPEGIGGTRNWDYRYCWLRDGSMTVNALVDLGSSAEAAGFLDWLGRILENAPGPEWLHPLYSVTGAPLSTEAVIDSLPGYAGSRPVRIGNAADHQVQLDVFGRVAELIHALSEREGALADEHWELMVQMAAAVLARWHEADHGIWEARRAPRHHVYTKVMCWVTLDRALRTAARHGRAPEPSWAPTASVIRDEVLREGWDDSARSYTVAYDSPDLDAAVLHIGLSGLLDVNDQRFLDTVTAVERELRVGPTVFRYRYDDGLPGLEGGFHICTTWLIEAYVAVGRIEEAWDLFDQLVNLFGPTGLLPEEYDPGTETHLGNHPQAYSHLGFIRCARILDGHQGKKPGPT0014140_6DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014140-otsB-K01087NANA
D1-29_04456990hypothetical proteinGTGACTCTTCCCCTCTCCATTCTTGATCTGGCAACCATCGGCAAGGGCCAGACGGCGGCGGAGAGTTTCGCGGGCAGCGTGGCCATGGCGCAGCGTGCGGAGGAGCTGGGCTACCGGCGGATCTGGTACGCCGAGCACCACAACATGTCCTCCATCGCCTCCTCCGCCACCAGCGTGCTGATAGCCCACGTGGCGGCGCACACGGAAAGCATCAGGCTGGGCGCAGGGGGCATCATGCTGCCCAACCACTCCCCGCTGACCATCGCCGAGCAGTTCGGCACCCTGGAGGCACTGCACCCCGGACGCATCGACCTTGGCCTGGGCCGTGCCCCCGGCAGCGACCAGAACACCATGCGCGCACTGCGCCGGGACCCGATGTCCGCCGACAGCTTCCCGCAGGACGTCCTGGAACTGCAGGGCTACCTCACCGGCCCCACCCGGATCCAGGGCGTGGAAGCAACCCCCGGCAAGGGCACAAACGTGCCGCTGTACATCCTTGGCTCCTCTCTGTTCGGCGCGCGCCTGGCTGCCCAGCTGGGCCTGCCCTATGCCTTCGCCTCGCATTTCGCGCCCAACGCGCTGCAGGACGCCGTGGCCCTCTACCGCCGGGAGTTCAAGCCGTCGGCCCAGTTGGATGCCCCGCATGTGATCGCCGGCGTCAACGTGATTGCTGCGGACTCGGCGTCCGCCGCCCAGGAAACCCTCCAAGCCACCAAACGCGCCCGCGTTTCGCTGTTCTTCGGCGCTGGACGCGAGTTCACCGACGACGAAGCGGACATGATCCTGGACTCCCCGCAGGGGCAGCACGTGGCGCAGATGATGACGTACTCGGCCGTCGGGACCCCGGACGCCGTGATCGAGTACCTGGATGAGTTCGGCAGGCACTCCGACGCCGACGAACTCATCGTGGCGCACCAGAGCACCGATCCGGCTTCCAGGCTGGAATCTGTTGAGCTGCTGGCCCAGGCTGCAGGCCTGGCCCGGGTGTAGMTLPLSILDLATIGKGQTAAESFAGSVAMAQRAEELGYRRIWYAEHHNMSSIASSATSVLIAHVAAHTESIRLGAGGIMLPNHSPLTIAEQFGTLEALHPGRIDLGLGRAPGSDQNTMRALRRDPMSADSFPQDVLELQGYLTGPTRIQGVEATPGKGTNVPLYILGSSLFGARLAAQLGLPYAFASHFAPNALQDAVALYRREFKPSAQLDAPHVIAGVNVIAADSASAAQETLQATKRARVSLFFGAGREFTDDEADMILDSPQGQHVAQMMTYSAVGTPDAVIEYLDEFGRHSDADELIVAHQSTDPASRLESVELLAQAAGLARVPGPT0030680_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030680-putative_transposase-K07496NANA
D1-29_044572334smc_3Chromosome partition protein SmcATGAGTAATGTTCGCTCAACGCCAGCCCTTACCCGACGCCTCGCAGCTGCGGTTGTCCTTCCCGGTCTCCTGACCTCCACCCTCGTTTTTGCCATGCCCGCTGCTGCCAATTCCGGTTCCGGGACAGGCATCTGCACGGGCGTGGTGAATCAGTTGGCGCATCGCGGGACCGTCCAGGAGAATCTGCTCAGGGCTTCCGCCCGGAAGAACGCGGAGCTGATCGCTGCGTTGCAGGCTGATCGGGCCGGGCTGCAGGCAACTGCAGACAGCCTGACGGCGCAGATTGCCGCCGCGGACAAGGAACTGGCCGCCTTGGCCGCCGAGGCAACGCAACTCGACGGCGCCCTCGCTTCGGGGCAGGCCCAGAGCGCCGCTCTTGTAGTGACCCAGGACAGTTTGAACCAATCAATCGCCGATACCGAGCGGGAACTTGCTGCTCTCAGCACCCAGCGGACAGACGTCGAAGGACAAATAGTGCCTCTAAAGGCGGACCAGGTGAAGGCTGAGGCCGACCTCGCCCTGCTCAAGCAGCAGGCTGCTGAAGTCGACGCCGGGATCGCTGAGAAGACCAATCAGATCAACATCGCCGAAGGCGAAAAGGCAACCCTTCAGGCCGCCGCAGATGCTGCCGCCGCTGCGCTCGCGGAGCAGAATGCTGCCATCCGGATAGCCGAGGGAGAACTTACAGCGCTGACCGTCGCGGCTGAGACCGCCGCTGCCGCAGTCACCACTGCAGCCCAGGCCGTGAGCGAGGCCGAGGCTGAGCTGAACCGGCTCGTGGAGCTGGGGAATGCCGCGCAGGCCGAACTCGAAGCGCAGCAGGCAAAGGTCGATGACGCGAAATCGACGCTGGTCGACTCCCGGGCAGCGGCTGCGGCCGCAGCGGCGGCAGCGGCAGCCAAATCCGCGGCCATCAGCACCGCCCAAGGAGAATTGGCTGCCCTGCAGACCGACGTAACCGAGGCTACGGACGCCCTCAACGCCAAGAACGCCCAGATCACGACGGCACAGGCCGAATTGGTCACTTTGCAGGCAGAAGCCGCCGCCGCTGCCGCTGCCCTCGCAGTCAACACCAGCAAAATCGCAGCAGTCAATGCGGAGGTTACCTCCCTGCAGGGGAAGATCATCACACTGAACGCGTCGATCGCCGCCAAGCAGTCGGCTCTGACCACCGCCATCAGCGATCTTGAAGCCCTCAATGTCACTAAAGCGGCCCTGGACGCTGAGATCGCATCGCTCACTGCACAGATTGATGACATCAAGGGCAACTCCTCCCGAAAGCGCGCCCTGCAGGACGAGCGGACCGCCAAACAGACTCTGCTGGACGCTGCGAATGCCCAGATCACCGACAAAAACACGCTGATCTCGGGCCTCCAAGGCGACCTGAATGCGCTCAATACCCAAGTAGCCGCCCTGAACTCCCAGTTGCTGGCCAAGCAGCAGGAAAGCAGCATCTTGCAGCAACAGGCCGCACCACTGCAGGCAACGGTCACGGCGGCGAACGCCGGCGTTGCGGCCAAGGAAGCCGAGATTGCAGCCCTGAAGTCCGAGGTGCCCGACCTCCAGGCCGCCGTAACGCAGGCCAAAGGTTCGGTCACGGCAAAGCAGGGTGAACTCAGCGTCCTTCAGGGGCAGCTCCCGGCGCTACAGGATGCGGCGGCAGCCGCCGCAGACGCCGTCACGGCACAGGCGATAGTTGTAGCGGATCTTGAATCGGCACTCCCGGGACTGACTTCGGGAGTCGAAGACGCCAAGGCAGCTATCGCCGGCCAGAAGTCCGTCCTGGCAGGATTGCAGACCCGGCTGGCAGAAGCTGAGGCCTCGCTGAACTCCGCGAACGCTGCTGTTGAGGACAAGAAGGCTGAGCTCGGCACCTTGGAGAGCCACGTCCCGGCACTTCAGACAGCCGTCGACGAAGCAAACGCCGCAGTCGCAGCTAAGACCGGTGAAATCGATTCGTTGAATCTGATACTGGACAAGCTCGTGGCTGACCTCAAGAGCCTCAACACCCAGATCAGCGGGAAGGAAGCCGAGATCCTGAACCTGCAGACCCGGGTTGCGCCGCTTTTGGAGCAACTCAACAGGCTAAACGGCGAAATCAGCGCCGGGGAAGCTGCGCTGAAGGCTTTGCAGGGTGAGCTGTCGACGCTTGATAAGCAGCTCACGGATGCACAGGCATTGCTCAGGACGCTGGAGGCACAAAAGAAGGTGAACAAGGACGCCGTGGCGGTCCAGAAGAAGTTTGTGGGCGATGTGCAGGGCAAGCTTGGAACAGTCCAGAACCAGATCAAGGCAATCGACGGGCAGATTGTTCTGGGCGGTTGCGTGGCGTGAMSNVRSTPALTRRLAAAVVLPGLLTSTLVFAMPAAANSGSGTGICTGVVNQLAHRGTVQENLLRASARKNAELIAALQADRAGLQATADSLTAQIAAADKELAALAAEATQLDGALASGQAQSAALVVTQDSLNQSIADTERELAALSTQRTDVEGQIVPLKADQVKAEADLALLKQQAAEVDAGIAEKTNQINIAEGEKATLQAAADAAAAALAEQNAAIRIAEGELTALTVAAETAAAAVTTAAQAVSEAEAELNRLVELGNAAQAELEAQQAKVDDAKSTLVDSRAAAAAAAAAAAAKSAAISTAQGELAALQTDVTEATDALNAKNAQITTAQAELVTLQAEAAAAAAALAVNTSKIAAVNAEVTSLQGKIITLNASIAAKQSALTTAISDLEALNVTKAALDAEIASLTAQIDDIKGNSSRKRALQDERTAKQTLLDAANAQITDKNTLISGLQGDLNALNTQVAALNSQLLAKQQESSILQQQAAPLQATVTAANAGVAAKEAEIAALKSEVPDLQAAVTQAKGSVTAKQGELSVLQGQLPALQDAAAAAADAVTAQAIVVADLESALPGLTSGVEDAKAAIAGQKSVLAGLQTRLAEAEASLNSANAAVEDKKAELGTLESHVPALQTAVDEANAAVAAKTGEIDSLNLILDKLVADLKSLNTQISGKEAEILNLQTRVAPLLEQLNRLNGEISAGEAALKALQGELSTLDKQLTDAQALLRTLEAQKKVNKDAVAVQKKFVGDVQGKLGTVQNQIKAIDGQIVLGGCVANANANANANA
D1-29_044581716hypothetical proteinATGGCGAAGAAAACCACCGCGGAAAAAGTTGCCACCATCCAGCAGGGCTACACCCTTGAAGGCGCCACCATCGAGCTTGGCGCGGCCATCATCGACGGGGAGCTGCACAAGGAAGCCCAGGTCCGGCTGCCGCTGGCCATGATGAACCGGCACGGCCTGGTGGCCGGAGCTACCGGCACCGGCAAGACCGTCACCCTGCACATGATGGCCGAGCAGCTCTCAGCTGCAGGGGTGCCCGTTTTCCTGGCGGACATCAAGGGGGATCTCTCCGGCCTGGCGACGGCAGCCACCGGAAGCGGGAAACTGTCAGCCCGCACCGACAGCATCGGGCAGGTGTGGGCGGGCAAGACGTTCCCCGTCGAGTTCCTCGCCCTCGGTGGCGACGGCAACGGCATTCCCGTCCGCGCCACTGTCACCTCCTTCGGCCCCATCCTGCTGTCCCGGGTGATGGAACTCAACGACACCCAGGAATCCAGCCTTCAGCTGGTGTTCCACTTCGCGGACAAAAAGAACCTGGAACTTATTGACCTGAAGGACCTCCGTTCGGTGATCCAGTTCCTGACCTCAGCCGAGGGCAAGGACGAGCTGGAGGAACTGGGCGGCCTGTCCAAGGCAACGGCCGGGGTGATCCTGCGCGAACTGGTCAACCTGGAAGCCCAGGGGCTGGAAAGGTTCTTCGGCGAGCCGGAATTCGACACCGCGGAGCTCCTTCGCACAGCCCCTGACGGCCGCGGAGTGGTCACCTGCCTGGAGCTGCCCACGCTGCAGACCAAGCCCATGCTCTTCTCCACTTTCCTGATGTGGCTGCTGGCGGACCTTTTCGAAGACCTCCCCGAGGCTGGCGACCTGGACAAGCCCAAGCTGGTCTTCTTCCTGGACGAGGCCCACCTGCTGTTCAGCGACGCCTCCAAAGCCTTCCTGGACGCCATCACCACCACCGTCCGGCTGATCCGCTCCAAGGGTGTGGGCATTTTCTTTGTCACCCAGACTCCGAAGGACGTACCCGCCGCCGTCCTTGGCCAGCTTGCCAACCGCATCCAGCATGCCCTCCGCGCCTTCACCCCTGAGGACGCCAAGGCCCTCAAGGCCACGGTTTCCACCTTTCCGGTCAGTGACTACGACCTTGAAGAAACCCTCACCTCCGCAGGGATCGGTGAGGCAGTCATCACCGTCATGAACGAGAAAGGCGCCCCGACGCCGGTGGCCCTGACCCGGCTGCGCGCACCCGAATCCGTGATGGGCCCGAGCACTGACGAGCTCGTCAAAAGCACGGTGGCCGCCTCTGCACTGCTCGCGAAGTACGGCACTGCTGTGGACAACATCTCTGCCTACGAAAAACTCAGGGGAGAAACAGGCGCTGCTCCGGCCGTGGACACAGGGCCAGCCGCGCCCGGCCAGCCGCCGGTTCCGGAGAGTGCCAGCCAGGCCGACGTCGACGCCGAGGCCCGCCGGATCGAGGAGGAAATCCTGGGCCGGCCCAGCAGCCGGCCCGCACCGGCGCCGTTCCCGGAAACATCAAGTCCGGGACACGAACCCGCTCCGGCGCCGCGCGAGCGTCCGGTCCCGGCCGGCGGCGGAATGATGGACGATCTGGCTGGAGCGCTGGGCGGTGCACTGGGCGGTGGCCTGAAAAGCATGGCCAGATCCATGGGAACACAGCTCGGCCGGGAACTGCTCCGGGGCGTGTTCGGAACGTCGTCCAGGCGCCGCCGCTAAMAKKTTAEKVATIQQGYTLEGATIELGAAIIDGELHKEAQVRLPLAMMNRHGLVAGATGTGKTVTLHMMAEQLSAAGVPVFLADIKGDLSGLATAATGSGKLSARTDSIGQVWAGKTFPVEFLALGGDGNGIPVRATVTSFGPILLSRVMELNDTQESSLQLVFHFADKKNLELIDLKDLRSVIQFLTSAEGKDELEELGGLSKATAGVILRELVNLEAQGLERFFGEPEFDTAELLRTAPDGRGVVTCLELPTLQTKPMLFSTFLMWLLADLFEDLPEAGDLDKPKLVFFLDEAHLLFSDASKAFLDAITTTVRLIRSKGVGIFFVTQTPKDVPAAVLGQLANRIQHALRAFTPEDAKALKATVSTFPVSDYDLEETLTSAGIGEAVITVMNEKGAPTPVALTRLRAPESVMGPSTDELVKSTVAASALLAKYGTAVDNISAYEKLRGETGAAPAVDTGPAAPGQPPVPESASQADVDAEARRIEEEILGRPSSRPAPAPFPETSSPGHEPAPAPRERPVPAGGGMMDDLAGALGGALGGGLKSMARSMGTQLGRELLRGVFGTSSRRRRNANANANANA
D1-29_04459993hypothetical proteinATGAGTCAAGCGTTGGTGAAGATGGCGGCCGTATGGCTGCTGGGCCTCATGCTTGCCGTCGCCGGAGCGGTGGTTGCCGTGAACCTGGTCAACAACACAGTTGCCAGTCCGCAGCAGCCGGTCCGTGAATATCTGGACGCCCTGCACGACGGCGACGGCGGCAAGGCGCTGGGCCTGTTGCGGGCCGCTGTGCCCCCCGGCAACGCCGCAATGCTGGACGGTACCGCCCTGCAGACCGCCGCTTCCCGCTTCACGAATGTCAAGATCGGCAAGGCCGAGGAACGCACCGGCGAGCAGGTGATGGTGCCCATGGAGTACACCATCGACGGCAGCCGGCTCCGCACCGAGTTCCTGCTGGAGAAGACCGGGACGGAGTGGCTCTTCTTCAACACCTGGGCCTTCGTCCCGTCGCGGCTGCCCACACTGGATATCACCGTGGTGAACGCCAGCGAGGCCACGCTGAACGGGGTGCCGGTGAACATGCCCGATGGCCGCAACTCCTTCGCCGTGTTCTATCCCGGCGAATATGAAGCGTCACTGAACGGCGAATATTTCGCTGCCCCGCCCACACGTGCCACTGTCACGTCCCGGGAAGCACCCGTTGCCCCGCTGAACCTGCTGACCGAAGCCACCGGCGACCTGCGGGAGGATGTGTCGGCGAAGGTCAAGGAGTTCCTGGACACGTGCGCGGCCGACGCCGTGAAGCAGCAGAAGCTCCAGCCGGACTGCCCCTTCTACTTCGCCAGCAACAATCTGGTGAAGGACGGGACCATCAAGTGGACCGTGACGAAATACCCCGAGGTAGCGATCGAACCGTTTGACGGCCGCTGGGTGGTGTCCCCGCTGGACGGCAAGGCCAAGGTGGAGGGGCTGCAGCAGAACTCCTTCACGGGAGCCTGGTTCCCGCTGAACGAGGAAGTGGACTTCAGCTTCACCACGCGCCTGGACGTCAACGGCGACACTATCAACGTGACGCCGCTCCTGACCTACTAGMSQALVKMAAVWLLGLMLAVAGAVVAVNLVNNTVASPQQPVREYLDALHDGDGGKALGLLRAAVPPGNAAMLDGTALQTAASRFTNVKIGKAEERTGEQVMVPMEYTIDGSRLRTEFLLEKTGTEWLFFNTWAFVPSRLPTLDITVVNASEATLNGVPVNMPDGRNSFAVFYPGEYEASLNGEYFAAPPTRATVTSREAPVAPLNLLTEATGDLREDVSAKVKEFLDTCAADAVKQQKLQPDCPFYFASNNLVKDGTIKWTVTKYPEVAIEPFDGRWVVSPLDGKAKVEGLQQNSFTGAWFPLNEEVDFSFTTRLDVNGDTINVTPLLTYNANANANANA
D1-29_044601983resA_2Thiol-disulfide oxidoreductase ResAATGAGCGAAACCGTACGCACCCACCACCGGGTCCGCGCCTCCGAACTGGTGGGCCGCAACTGGCTCAACACCGGCGGCAAATCACTGGACCTGGAAGCCCTGCGCGGCAAGATCGTGCTGCTGGACTTCTGGACTTTCTGCTGCATCAACTGCCTGCATGTCCTGGACGAGCTGCGGCCACTGGAGGAACAGTACTCCGACGTCCTGGTGACCGTGGGCGTCCACTCGCCCAAGTTTGAGCATGAAGCCGATCCGGTGGCACTGGCTGCGGCCGTGGAGCGCTACGAGATCCACCACCCCGTCCTGGATGATCCCGAGCTGGAAACCTGGAAGGCGTACACCGCCCGCGCCTGGCCCACCCTGGTGGTCATTGATCCCGAGGGCTACATCGTGGCGCACCTCTCGGGCGAAGGCCACGCCGATGGCCTGTCCGTCCTCATCCCCGAACTGATCGCCGAACACGAGGCCAAAGGGACCCTGCACCGCGGTTCCGGCCCATACGTGGCACCGGAACCAACCTCCGGCACCCTGCGCTTCCCGGGGAAGGCCCTCTACCTTCCCGACGGGCGCGGTTCAGCCGCTGCCGCAGACGCCTCCGGGCATGGCAGCTGGCTTGTCACCGACACCGGCCACCACCGGCTGGTGGAGCTCGCAACCGACTTCAAGGCAGTACTGGCAACCTTCGGCTCCGGAACCAAGGGGCACGCCGACGGCGACGCCGCCGGTGAGGGAGCCACTGCCCGGTTCAACGAGCCGCAGGGCCTGGTCCTGCTCCCGGAGGACGTGGCAGCGAAGGTGGGCTACGACGTCGTCATTGCCGACTCGGTTAACCACCGCCTCCGCGGGCTGTCCCTGACGGACGGAAAGGCCACAACCCTGGCAGGCAACGGCATCCAGCGGCTCCTGGAAACGGGACCCGCCCGCGTGGATGAGGACGCAGCGGGCTTCACCGGGCGCCTCAGCGAGCACCCGCTGGAGGTTTCCCTGAGCTCGCCCTGGGATGTCATCTGGTCCAGGAAGCTCAACGCCGTGGTCATCGCGATGGCCGGCGTGCACCAGATCTTCAGCTTCGACCCGCTGAGTGGTGCCGTTGCTATCGCGGCGGGCAACGGCCTGGAAGGACTCCTGGACGGCGCCGCCCACGAGGCCTGGTTCGCACAGCCTTCAGGCCTTGCCGAGGACAGCGATGGCAACATCTGGGTGGCGGATTCCGAAACGTCCGCACTCCGCAAGCTGGTGATTGACGACGACGGCACGCTGACGGTGGAGTCCGCCGTGGGCAAGGGCCTGTTTGACTTCGGATTCCGGGACGGTGAGGCGTCTGCTGCCCGGCTCCAGCATCCGCTGGGGGTGACGGTTTTGCCGGACGGCTCTGTGGCCGTGGCGGATACCTACAACGGCGCGGTGCGGCGGTATGACCCGGCGGCGGGAACTGTCTCCACCCTTGCCCGGGGCCTGTCTGAGCCGTCCGATGTCATTGTGGACCACACCCAGGCGGCCGGCTCCGAGCCGCTGCTGGTGGTAGTGGAGGCGAACCAGCACCAGCTGGTGTACGTTCCCATCCCCAAGGAAGCCCAGCAGGTGGATGAGGGTGCGGTCCAGACCCACCGGCCCAAGAGCCCCGTCGCCCCCGGGCTGCATGAGCTGACCGTCCGCTTCACCGCTCCCACGGGCCAGAAGCTTGATGACCGCTGGGGCGATCCCACCCAGCTCAAGATCTCCTCCACGCCCCCGGAGCTCATCGTGTCCGGCGGCGGAACGTCCGTGGGCCTGCTGCGCACACTGGAGCTCGCCTCCGACGTCCCGGAAGGCATCCTGCACATCGCTGCCCGCGCCGCTGCATGTGACGGTGCCGAGACGGAGGACGGCGAGATCCCTGACCATGCGGCCTGCCACCTCTACCAGCAGGACTGGGGCATCCCCGTTCTGATGACGGACGACGGCGACAGGGAACTGGTCCTGGACCTGCGCGGCATGGACTGAMSETVRTHHRVRASELVGRNWLNTGGKSLDLEALRGKIVLLDFWTFCCINCLHVLDELRPLEEQYSDVLVTVGVHSPKFEHEADPVALAAAVERYEIHHPVLDDPELETWKAYTARAWPTLVVIDPEGYIVAHLSGEGHADGLSVLIPELIAEHEAKGTLHRGSGPYVAPEPTSGTLRFPGKALYLPDGRGSAAAADASGHGSWLVTDTGHHRLVELATDFKAVLATFGSGTKGHADGDAAGEGATARFNEPQGLVLLPEDVAAKVGYDVVIADSVNHRLRGLSLTDGKATTLAGNGIQRLLETGPARVDEDAAGFTGRLSEHPLEVSLSSPWDVIWSRKLNAVVIAMAGVHQIFSFDPLSGAVAIAAGNGLEGLLDGAAHEAWFAQPSGLAEDSDGNIWVADSETSALRKLVIDDDGTLTVESAVGKGLFDFGFRDGEASAARLQHPLGVTVLPDGSVAVADTYNGAVRRYDPAAGTVSTLARGLSEPSDVIVDHTQAAGSEPLLVVVEANQHQLVYVPIPKEAQQVDEGAVQTHRPKSPVAPGLHELTVRFTAPTGQKLDDRWGDPTQLKISSTPPELIVSGGGTSVGLLRTLELASDVPEGILHIAARAAACDGAETEDGEIPDHAACHLYQQDWGIPVLMTDDGDRELVLDLRGMDNANANANANA
D1-29_044612151hypothetical proteinGTGCCTTCCGCAGCAAAGTCCCGTTCCACAGCAGCCCATCCATCCCCTGGCAGGGGAGCATCGGGCGAGGCTGGCGGCGTCTTGGGGGTTTCCCGGCCGTGGCAGGTGGCAGGGCTTGCAGCACTGTTCCTGGGCCTGGCGGCGGCACTGCTGTTCTCCGGTGCGGCCGCCGCCCGTGAGGTCTCAGACCCGGGCGCGTTGGTCCGCTGGGGACTTCCCGTCAGCAAGGCCATCCACAACGTTTCCCTGGCGACGGTCATCGGCGGCCTGATCTTCGCCGTCGGAATTCTCCCCAGAACCTCGGGACCACGTTCCAGGACCAGCGATAGCGATGCTCCCGAACACCCGGCTTTTGCCCGCGCGCTGGCTGTGGCAGCCGCCGCCGGTGCGGCCTGGACATTGTCGGCCATTGCGGTGCTGGTGCTCACCTACGCCGACGTGGCCGGCCAGGGGGTGTCAGGGGACGCTGAGTTCACGCAGGCGCTGGTGTTCTTCATGACGGACATCGAAACGGGGCGCGCCTGGCTGGCGGTGACCATCATCGCCGCCGTCGTAACCACAGCACTCTTTGGTGTGCGGTCCCTCAATGCCTTGGCCCTGACCCTGATCCTGGCTTTGGCGGGGCTGGTGCCCCCAGCGCTGATTGGGCATTCGTCGAGTTCCTCTGACCATGAGGGCGCCATCAACTCCCTGGGCCTGCACTTGGTGGGTGTCAGCGTCTGGGTGGGCGGGATCATCATGCTGGCCCTCATCTCCGGGATCCTGACGGGTTCCAAGGCCGGGGCGGGCACCGACATTACCGAGCCCACGTTGCGCCGGTTCTCCACTCTTGCAGGCTTTGCCTTTGTCCTGGTGTTTGCTTCCGGTGTGATGAATGCAAGCATCCGCATCACCAGCTGGGGCGACCTCTTCGGCTCGCCTTACGGGCAACTGATCCTGGCAAAGTCAGCGGCTACCCTGGTCCTGGGCGGCATCGGACTGATGCACCGGCAATGGGTGATCCCGCAGCTGGGACGGAAGGGAGGTGCCTTCTCCTCCCGCAGGGTGCTGTGGCAGTTGGTACTGGTGGAACTTCTGGTCATGGCGGGGACCTCCGGTGTAGCTGTGGCGCTGAGCCGCTCAGCGCCACCGCAGCCCACCAGCTTTGCGCCTGACGCATCCCCCGCCTTCATCCTCACCGGCTATGAACTCCCGCCCGAGCTGACGCCGGAACGATGGCTCACAGAGTGGCGGCTGGACCTGCTCTGGGTTGCCCTTGCCCTGTTCGGCCTGGTGTCCTACTTCCTGGGCGTGGCCAAAGTCCGCCGGAGGGGGGACAAATGGGCGTGGTTCCGTTCCGTGAACTGGGTGATCGGCCTGCTGGTGCTGACCTACATCACGTCGGGGCCGCCGGCGGTCTATGGCCGTGTCCTTTTCTCGGCCCACATGGTGGATCACATGGCCCTGACCATGGTGGCACCAATCTTCCTTGTTCTCGGTGCCCCCGTAACACTGGCCCTGCGGGCCCTGCCCGCCCGCGGCGACGGGTCCCGGGGCCTGCGCGAGTGGCTCCTGGTCTTTGTGCACTCCAGGTTTTCTCAGCTGGTGACCCATCCCATCTTTGCAGCCGGCAACTTCGCCGGCTCGATTGTGCTGTTCTACTACTCTGACGCCTTCGGCTTTGCCATGCGTGAGCACGTGGGCCACGAACTGATGAACCTGCACTTCGCGCTTACGGGGTACATCTTCATCCTGAGCATGATCGGCACGGACCCGCTGCCCCGCCGGGCGCCCTACCCCATGCGGCTCCTCCTGCTGCTGGCCACCATGGGCTTCCATGCGTTCTTCGGCGTGGCGATCATGGGCGGGACCAACCTCCTGGCAGCAGACTACTTTGGCAACCTTGGCCGGACGTGGGGTCCCTCTGCCCTGGTGGACCAGCAGATGGGCGGTGCCGTGGCCTGGGGCATCGGTGAGGTGCCCACGCTGCTGGTGGCGATCGGCGTCGCCATCATGTGGTCCCGGTCCGATGAACGCGAGAAGCGGCGCGTGGACCGGGCAGCGGACAGGAATAACGACGCCGATCTCACCGCTTACAACGATATGTTTGCCAAATTGGCCGAACGCGACGCCAAGCTGGCAGAACGCAACTCAAAGCTGGAAGGACGCTGAMPSAAKSRSTAAHPSPGRGASGEAGGVLGVSRPWQVAGLAALFLGLAAALLFSGAAAAREVSDPGALVRWGLPVSKAIHNVSLATVIGGLIFAVGILPRTSGPRSRTSDSDAPEHPAFARALAVAAAAGAAWTLSAIAVLVLTYADVAGQGVSGDAEFTQALVFFMTDIETGRAWLAVTIIAAVVTTALFGVRSLNALALTLILALAGLVPPALIGHSSSSSDHEGAINSLGLHLVGVSVWVGGIIMLALISGILTGSKAGAGTDITEPTLRRFSTLAGFAFVLVFASGVMNASIRITSWGDLFGSPYGQLILAKSAATLVLGGIGLMHRQWVIPQLGRKGGAFSSRRVLWQLVLVELLVMAGTSGVAVALSRSAPPQPTSFAPDASPAFILTGYELPPELTPERWLTEWRLDLLWVALALFGLVSYFLGVAKVRRRGDKWAWFRSVNWVIGLLVLTYITSGPPAVYGRVLFSAHMVDHMALTMVAPIFLVLGAPVTLALRALPARGDGSRGLREWLLVFVHSRFSQLVTHPIFAAGNFAGSIVLFYYSDAFGFAMREHVGHELMNLHFALTGYIFILSMIGTDPLPRRAPYPMRLLLLLATMGFHAFFGVAIMGGTNLLAADYFGNLGRTWGPSALVDQQMGGAVAWGIGEVPTLLVAIGVAIMWSRSDEREKRRVDRAADRNNDADLTAYNDMFAKLAERDAKLAERNSKLEGRNANANANANA
D1-29_04462288hupCOG0776DNA-binding protein HB1ATGGCTAAGAACCGTAGTGAACTTGTTTCAGAGGTAGCAGGCAAGGCCGGCACCAGCCAGGCTGCCGTCAACTCCGTCCTCGATGCACTGTTCGAGGTTTTCGAGACTTCTGTCGCCCAGGGCGAGAAGATCACCATTCCGGGCTGGCTCGCAGTGGAGCGCACCGACCGTGCAGCACGCACCGGCCGTAACCCGCAGACGGGTGAGACCATCCAGATTGCAGCAGGCCACAGCGTTAAGCTGACCGCCGGCTCCAAGCTGAAGGCTGCAGTAGCCAAGAAGAAGTAGMAKNRSELVSEVAGKAGTSQAAVNSVLDALFEVFETSVAQGEKITIPGWLAVERTDRAARTGRNPQTGETIQIAAGHSVKLTAGSKLKAAVAKKKNANANANANA
D1-29_044663039lacZBeta-galactosidaseATGTCAGTTCAGTCACCCTCCGCGCCGGCAGCGGCAGAGACCGAAGTACCCGCACAGAGCAGCCAGGGCACTGCCGCCCAAGGCCGCGCCCTGGAAATTGGCGCAGACGCAATCCAGGAGCTGGCCTCGGTTCAGCCAGCCCGGGGAACCCTGCCGGCACGCGCGTACCTGCACAGCGACGCCCCCCGACAGTCACTGAACGGTGACTGGCAGTTTCGGCTGAGCCCGGGCATCCGGCAGGCACCGGAGGACGGCTGGCAGCTGAGACGGAGCACGGACGGATTTACCGGGCTTCCCGTGCCGTCGAGCTGGCCCATGCACGGACACGGCTCACCGTGGTACACCAACGTACAGTTCCCCTTCCCGGTGGAACCCCCTCATGTCCCGGAGACAAACCCCATCGGCGACCACCTGGTGGAGTTCCACGCCGGAGCGGAGTTCCAGCCGCGTGCCATTCTCCGGTTTGACGGCATCGAGTCCGCGGGCACCGTGTGGTTGAACGGGACGGAACTGGGCACAACCCGCGGCAGCCGGCTTGCCCACGAGTTTGACGTGTCCGGGATCCTCGTTGAAGGCAAAAACCTCCTGGCTGTACGCGTAGCCCAGTTTTCCGCTGCCACGTACACGGAGGACCAGGATATGTGGTGGCTCCCCGGCATCTTCCGGGATGTCACCCTGCAGGCCAGGCCCGAACAGGGCATTGATGACGCGTTTGTCCATGCGGATTATGACCATCACACCGGCGAAGGAATCCTGCGTGTGGAGGTGAGCCGGGACGGTGAGGCGATTGACGCCGTCGTACGCATCCCGGAGCTGGGGCTCGAATTGGCCGCCGGCTCTGAACACCGCCTCAAGGACATTTCGCCTTGGTCTGCGGAACTGCCGCGGCTCTATGAGGCCACCGTCAGCACCCCCGGGGTAACGGTTGAGCTGCAGATCGGCTTCCGCAGCATCACCATCGAGGACGCCCAGTTCAAAGTGAACGGGCAGCGGATCCTGTTGCGCGGCGTCAACCGGCATGAGCATCATCCGCGCCTGGGCAAGGTAGTGCCCCGGGAGGTGGTGGAAGCCGAGCTCCGGCTCATGAAGCAGCACAACATCAATGCCATCCGGACTTCGCACTACCCGCCGCACCCCGATTTTCTTGCCCTGGCGGACCAGCTGGGCTTCTACGTTGTGCTCGAGTGCGACCTGGAGACCCATGGCTTTGTCAGTGCCGGCTGGAACCAGAACCCCAGCGATGATCCGCAGTGGGAGCCGGCCCTGCTGGACAGGATGCGCCGTACGGTGGAACGGGACAAAAACCACGCCGCCGTCATCATGTGGTCCCTCGGGAACGAGGCCGGCACTGGCCGTAACCTGGAGGCGATGTCGCGCTGGACCAAGGACCGGGATCCCTCACGGCCCATCCACTACGAGGGTGACTGGACCTGCGCCTACGTGGATGTATATTCCCGAATGTATGCCAACCAGGCGGAAACTGCGTTGATCGGCCAAGGCCTGGAGGAGGCCCTCGAGGATCCCGCGCTTGACGCCCGGCGCCGTGCCATGCCTTTCGTCCTCTGCGAGTACGTCCATGCCATGGGCAACGGTCCGGGAGGAATGTCCGAGTACCAGGAGCTGTTCGACCGCTACCCACGGCTGATGGGCGGCTTCGTGTGGGAGTGGCTCGAGCATGGCATTACGGTCACGGACGAGGACGGCCAGGAGCACTTTGCGTACGGCGGTGACTTCGGTGAGGAAGTTCACGACGGCAACTTTGTCACTGACGGCCTCGTGGACGCTAACCGGAAGCCCCGGCCCGGGCTGCTTGACTTCAAGAAGGTCATCGAGCCGCTGAAAATCGAGGTGGACGAGGACTGGTCCGGATTCACTGTGCGCAACGGCTTTGACTTCGCGGATACCTCGGCGTTCACCTTCCGATACGTGGTGGAGTCCGACGGCGTGACGCTCGACGGCGGCCCCGTGGCCCTTGCGCCACTGCCGCCCCGATCCGACACGCGTGTGGAACTCCCCGCCGGCCTTGCCGGGCTGGGTGAAGGACGGCCGTCAGTCCTCACCGTCAGTGCAGTCCTTGCTGCTGACGCCGATTGGGCGGCCGCTGGTCATGAACTGGCTTGGGGCCAGGCCGTTCAGGGCCTTGCAGCCAGCGAGGAGCCTTTTGCAACCGAAACTGTGCAGGTTGAGGAAAGTGAACTTCGGCTGGGCCCGGTGGTGTTCGACCGTCTCTCGGGGCTGCCCACCTCGATCGGCGCCGTACCGGTGGACCACCTGCGACTCGTGCTCTGGTGGGCTCCCACGGACAATGACATGGGCGGCGAATGGACCGGCCCTGACCGGCGCCCGCTGGCCACCCAATGGAAGGAAGCCGGGCTCAACCGGCTCCACAGCCGCCTGCTGGGCATCTCCGCGGTTCCCTCCCCGGACGGCGGGGAGGTGCTGACGGTCCGCACCCGGATGGGCGCTGCCGACAAGCAGTTCGGCGTGCTGGTGGATTATTCGTGGAGCAGCGACGGTCAAAGCGTGAACCTGCGGACCCAGGTACGGCCGGATGGGGATTGGACCAACGCCGGCCACGGTGTGGAGTGGGCGCGGATCGGGCTCGAAATGGTGCTGGGCACTCAGACGAACACCGTGAGCTGGTTCGGCCAAGGCCCGCACCAGAGCTATGCGGATACCGGTCAGGGTGCCAGGACAGGCTGGTTTCAGCTGCCGCTGGCGGAGATGGACGTCGACTATGTCCGTCCGCAGGAATCGGGTGCGAGGTCCGGCGTCCGCAAGGCGGGCCTGGAGCTCGACGCCGGCAGTCTTGAAATTGCCGGCAGCCCCTTCGCTTTGACGGTCCGCCCTTATGGCCAGGATGTCCTTGACTCAGCCACCCACCGGACTGATCTGCTCGCCGATGGCCGGAGCTACGTCTACATTGACCACGTGATGCGCGGGGTGGGAACGGCAGCCTGCGGGCCCGGCGCCCTGGAGCCGTACCGGCTGAAGCCGCAGGAAGCTGACTTCTCAGTGGTGTTGACCATGCGGGACTGAMSVQSPSAPAAAETEVPAQSSQGTAAQGRALEIGADAIQELASVQPARGTLPARAYLHSDAPRQSLNGDWQFRLSPGIRQAPEDGWQLRRSTDGFTGLPVPSSWPMHGHGSPWYTNVQFPFPVEPPHVPETNPIGDHLVEFHAGAEFQPRAILRFDGIESAGTVWLNGTELGTTRGSRLAHEFDVSGILVEGKNLLAVRVAQFSAATYTEDQDMWWLPGIFRDVTLQARPEQGIDDAFVHADYDHHTGEGILRVEVSRDGEAIDAVVRIPELGLELAAGSEHRLKDISPWSAELPRLYEATVSTPGVTVELQIGFRSITIEDAQFKVNGQRILLRGVNRHEHHPRLGKVVPREVVEAELRLMKQHNINAIRTSHYPPHPDFLALADQLGFYVVLECDLETHGFVSAGWNQNPSDDPQWEPALLDRMRRTVERDKNHAAVIMWSLGNEAGTGRNLEAMSRWTKDRDPSRPIHYEGDWTCAYVDVYSRMYANQAETALIGQGLEEALEDPALDARRRAMPFVLCEYVHAMGNGPGGMSEYQELFDRYPRLMGGFVWEWLEHGITVTDEDGQEHFAYGGDFGEEVHDGNFVTDGLVDANRKPRPGLLDFKKVIEPLKIEVDEDWSGFTVRNGFDFADTSAFTFRYVVESDGVTLDGGPVALAPLPPRSDTRVELPAGLAGLGEGRPSVLTVSAVLAADADWAAAGHELAWGQAVQGLAASEEPFATETVQVEESELRLGPVVFDRLSGLPTSIGAVPVDHLRLVLWWAPTDNDMGGEWTGPDRRPLATQWKEAGLNRLHSRLLGISAVPSPDGGEVLTVRTRMGAADKQFGVLVDYSWSSDGQSVNLRTQVRPDGDWTNAGHGVEWARIGLEMVLGTQTNTVSWFGQGPHQSYADTGQGARTGWFQLPLAEMDVDYVRPQESGARSGVRKAGLELDAGSLEIAGSPFALTVRPYGQDVLDSATHRTDLLADGRSYVYIDHVMRGVGTAACGPGALEPYRLKPQEADFSVVLTMRDPGPT0017810_1961DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017810-lacZ-K01190NANA
D1-29_044671005ccpA_14COG1609Catabolite control protein AATGACCTCCACTTCGCGTATCCACCGGGCAAAACGCGCGACAATCCTGGACGTGGCGGCCGCTGCAGGAGTCTCGCGGCAGACCGTCACCAGGGCCATGAACGATATGCCGGGCATCAGGCAGGAAACGCGCGAGCGTGTCCAGGAGTTGGCTCGGGAGCTTGGCTATACGCCAAGCAGGTACGCAAGAGGGCTGGTCCAGGGAGCACACACCTCCGTGGGGCTGGCCATCCCGGATCTCACCAACCCGTACTTTCCGGCGTTTGCGTCAAGTGTGGTGGAGATGGCCACACAGCGGGGCTGGAATGTGGTGATGGATGATTTTGGTCACGGCACCAGCAGTGCGCTGGACGCCGTCGCCCGGCTCGCCCCTCAGGTCGATGCAGTCATCGGATACCTTGGACCGGACTCGGAGGCGGCGCAAGCCATGCTGGGACGGCGTCCCGCCGTTGTCCTGGATCATCCCTATATGGCTGCCGGGAGGATCTCATTCGATTACCCCCATGCAGCCAGGCTCGCGCTGGACCACTTGGTGACGCGGGGCTGCCGGGAGATCGCCTACCTGGATTCCGGGATGGAAGGGTCACTGACGGCGCGGGGCGCAGCGGTGGCGGGAGTGGCCGAGGAACGTGGAATCGGGCTCATAGTGGCCCATTCCACCGAGGCGGCCCAACCCTCACGTCATGCCGTCGAGGATCTGCTGTCACGCCATCCGGGACTGGACGGAGTGGTGGCTTTTAACGATCTGATGGCTGCCGGCGTCCTGAAGGCACTGGCTGGAAGTGGACGCAGCGTGCCAGATGACTGCGCCGTGATAGGAATGGACGGCATCCCGCTGGGTGAGCTGGTGACCCCTGAACTGACTACCTTGTCTATGAACCTGCGCGACGTGGGCCGGACCGCCGTCGACCTTCTTGAGGGTTTACTGTCCGGATCGATTGTGCCAGGCAGCTCTGATGCCGATTTGATGCTGAGGCATGACCTTGTCCTCCGTCAGTCGGCTTAGMTSTSRIHRAKRATILDVAAAAGVSRQTVTRAMNDMPGIRQETRERVQELARELGYTPSRYARGLVQGAHTSVGLAIPDLTNPYFPAFASSVVEMATQRGWNVVMDDFGHGTSSALDAVARLAPQVDAVIGYLGPDSEAAQAMLGRRPAVVLDHPYMAAGRISFDYPHAARLALDHLVTRGCREIAYLDSGMEGSLTARGAAVAGVAEERGIGLIVAHSTEAAQPSRHAVEDLLSRHPGLDGVVAFNDLMAAGVLKALAGSGRSVPDDCAVIGMDGIPLGELVTPELTTLSMNLRDVGRTAVDLLEGLLSGSIVPGSSDADLMLRHDLVLRQSAPGPT0017992_9009DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-29_04471306rpsNCOG019930S ribosomal protein S14ATGGCTAAGAAGTCAAAGATTGCTCGCAACGAGCAGCGCAAGGTCATCGTTGAGCGTTACGCCGCAAAGCGCCTCGAACTGAAGAAGACCCTCGTCGACGCCAACGCTACCGACGAAGCACGCGAAGCTGCACGCCTCGGCCTGCAGAAGCTGCCCCGCAACGCGTCCCCGATCCGTCTGCGTAACCGCGACATCATCGACGGCCGCCCCCGCGGTACCTTCCAGAAGTTCGGCATCTCCCGTGTTCGCTTCCGCGACATGGCTCACCGTGGCGAACTCCCGGGCATCACCAAGTCTTCCTGGTAAMAKKSKIARNEQRKVIVERYAAKRLELKKTLVDANATDEAREAARLGLQKLPRNASPIRLRNRDIIDGRPRGTFQKFGISRVRFRDMAHRGELPGITKSSWNANANANANA
D1-29_04472168rpmG2COG026750S ribosomal protein L33 2ATGGCTAAGGACAAGGACGTACGTCCGATCATCAAGCTCAAGTCGACTGCGGGCACGGGTTACACCTACGTAACCCGCAAGAACCGTCGTAACGATCCGGACCGCATGGTTCTGAAGAAGTACGATCCCAAGATCCGCCAGCACGTCGAATTCCGAGAGGAGCGCTAAMAKDKDVRPIIKLKSTAGTGYTYVTRKNRRNDPDRMVLKKYDPKIRQHVEFREERNANANANANA
D1-29_04473237rpmBCOG022750S ribosomal protein L28ATGGCAGCACACTGCCAAGTGACCGGAGCCGAGCCGGGCTTTGGGCACAGCATTTCGCACTCGCACCGCCGCAACAAGCGTCGGTTCGATCCGAACATTCAGAAGAAGCGCTACTGGGTTCCGTCCCTGCGCCGTAACGTCACGCTGCAGGTTTCTGCACGTGGCATCAAGACCATCGACGTGCGCGGCATCGACGTAGTCGTCGCCTCCATCCTTGCTCGGGGAGTGAAGCTCTAAMAAHCQVTGAEPGFGHSISHSHRRNKRRFDPNIQKKRYWVPSLRRNVTLQVSARGIKTIDVRGIDVVVASILARGVKLNANANANANA
D1-29_04474762hypothetical proteinATGGATTTTTCAGCCCGGTACGTAGCGCTTGGTGACTCCTTCACGGAAGGCGTCGGCGATGAGGATCCCTCGCGCCCCAATGGTGTCCGCGGCTGGGCGGACCGCGTAGCCGAACAGCTGGGTGCCGCCGATCCCGGTTTCGGTTACGCCAATCTCGCCATCCGCGGGAGGAAACTGCGCCAAATCATGGCAGAGCAGGTGGCCGCCGCCGTCGAACTTAAACCCACGCTGGTGACCGTTTATGCGGGGGCGAACGATATTTTTCGCCCCAAGGTAGACATCGACGATCTCCTGGTTGAGTACGACGCCGGCATCCGCAAGCTGACCGCCACGGGCGCCACCGTGGTCATGTTCACCGGCTTTGATTCCAGGGGTTCGAAGATTTTCGGCACCACCCGGGGCCGGACCGCTATCTACAACGAACTGGTCCGCGGAATCGCCGGCGACCACGGTGCCCTGCTGGTGGATTATTGGCGTTTCAGTGAGTACTACGACTGGGGAATGTGGGCCCAGGACCGGATGCACATGTCGGTGGCCGGGCATGCCAACATGGCCAAGCGCGTCCTCACAGTCCTGGAACACGATCATTCGATCGAGGTTCCGCCGATGACCCCGGTACCGGAACTGAGCCGGACGGAAGCCCTTCGCGCCAACGCCCGCTGGGTCCGCGAGTTCGCGGCCCCGTGGGTGGCCCGCCGAGTAACCGGAAGGTCTTCCGGCGACGGACTGAAGCCCAGATATGCGGAGTTGACCCGCATCTGAMDFSARYVALGDSFTEGVGDEDPSRPNGVRGWADRVAEQLGAADPGFGYANLAIRGRKLRQIMAEQVAAAVELKPTLVTVYAGANDIFRPKVDIDDLLVEYDAGIRKLTATGATVVMFTGFDSRGSKIFGTTRGRTAIYNELVRGIAGDHGALLVDYWRFSEYYDWGMWAQDRMHMSVAGHANMAKRVLTVLEHDHSIEVPPMTPVPELSRTEALRANARWVREFAAPWVARRVTGRSSGDGLKPRYAELTRINANANANANA
D1-29_04475480hypothetical proteinATGACTGAACCGCGCTGGCTCAACGCAGACGAACGCCGTGCCTGGCTTGCCCTGGTAAGCATCAACACCCTGTTGCCGGCCGCGCTGGACACGAAGTTGCATGTCGCCGGAAAGCTGTCCCTTTTCGACTACACCGTCCTGGCGATGTTGTCAGAAGCAGACGAGCGGTTCCTTCCAATGAGTGAACTCGCTGCCCGCAGTAGTGCCTCCCTGTCCAGGCTTTCGCACGTCGTGACCAAACTCCAGAAGCGGGGGTGGGTGGAGCGCCGCCCGCACCCGCACGACGCCCGCGTCACCATCGCCCACCTCACCGAAGAGGGGATGGCCACCATCGTGAGCCTGGCACCTGATCACGTCGAGTCGGTGCGGGAGCTATTCCTGGACGCCCTCTCCGAGCAGGATGTCCTGGACCTGGCACGTATCGGCGAAAAGGTCGTGGCACGCCTCGATGAGGACCACTGGATCCTTCGGGAGAGCTGAMTEPRWLNADERRAWLALVSINTLLPAALDTKLHVAGKLSLFDYTVLAMLSEADERFLPMSELAARSSASLSRLSHVVTKLQKRGWVERRPHPHDARVTIAHLTEEGMATIVSLAPDHVESVRELFLDALSEQDVLDLARIGEKVVARLDEDHWILRESNANANANANA
D1-29_04476333hypothetical proteinTTGAGGCTTCAAGTGAGGAGTCCTGCCAGCGGTAAGCTGGAACGCATGTATGTTGTGTCGCTGAGCTACAAAGTGCCCGAGGACATCGTGGAGTTCCATCTTGGAGCCCACGTCGAATGGTTGCAGGAAGCCTTTGACGACGGCGTCTTTGTTGCCGCCGGCCGGAAGGTTCCCCGAACCGGCGGGCTGCTGCTGTCGAGGACCGACCGCGCAACACTGGACGCGAGCCTCGCCAAGGACCCCTTTTACGTGAATGGCGTGGCGGAGTTCGAGGTCATGGAGTTCGCGGCCAACAGGGTGGCCCCTGGTTTTGATAACTTGCTGGACAACTAGMRLQVRSPASGKLERMYVVSLSYKVPEDIVEFHLGAHVEWLQEAFDDGVFVAAGRKVPRTGGLLLSRTDRATLDASLAKDPFYVNGVAEFEVMEFAANRVAPGFDNLLDNNANANANANA
D1-29_04477855hypothetical proteinATGGGTGCTGGTCCTTTGCTTCCGGATAGGGATGGGCGGCGGGTTTTTGTTGCCCTTGGCGATTCGTTTACCGAGGGGGTCGGTGACCGTGACGAGCGTTTCCCCAATGGCGTTCGGGGATGGGCTGACCGGGTAGCAGAAAAGTTGGCCAAAGCGCAGCCCGGTTGGAGGTACGCCAACCTGGCCATCAGGAGCAAGCGGCTGCGGCACATCATCAGCGAGCAGCTGGAACCGGCCGTGGCGATGCGGCCCACGCTGGTTACGCTGTATGCCGGCGGCAACGACATCCTGGACCTCGGCACCGACATGGACGCGCTGATGGCGGACTACGAATATATGGTGACGCGGCTGGCCCAAACCGGAGCAACCCTTGTCCTTTTTACCGGTTTCGACGTCAAAGTCTCAGCACTCCTTGAGCCCCTGAAGAAACGCAACACCAGTTACAACCAAAGAGTGCGCAAGATAGCTGCGGAGTACGGCGCCGTGCTGGTGGACTACTGGTGCCTCGACGCCTTCCACGACCGGCGGATGTGGGACGCTGACCGGCTGCACATGTCCAAGGCGGGTCACAAGTACCTTGCGGGACAGGTCCTGGACCAACTCGGCGTGCCGCACAAGATTCGTCCCAAGGAGTGGGATCCGCCGGTGAGGCTGAGCCTGCGGGAATGGGAAAGGCGGCAACGGCGCTGGGTCCATGACTGGGTGCTTCCGCTGTTCGGGCGAAAGATCAAGGGCATCACATTGGGGGATGCGCTTAGCCCGCGCTGGCCCGAGCCTGTCCGGGTGCCACCGAAGCGCGGCCTGAAAAAACTGCTCCGGCAGCGAGCTGCCGGAGCCCCGGAACAGCAGGGCTAGMGAGPLLPDRDGRRVFVALGDSFTEGVGDRDERFPNGVRGWADRVAEKLAKAQPGWRYANLAIRSKRLRHIISEQLEPAVAMRPTLVTLYAGGNDILDLGTDMDALMADYEYMVTRLAQTGATLVLFTGFDVKVSALLEPLKKRNTSYNQRVRKIAAEYGAVLVDYWCLDAFHDRRMWDADRLHMSKAGHKYLAGQVLDQLGVPHKIRPKEWDPPVRLSLREWERRQRRWVHDWVLPLFGRKIKGITLGDALSPRWPEPVRVPPKRGLKKLLRQRAAGAPEQQGNANANANANA
D1-29_044781041viuBCOG2375Vibriobactin utilization protein ViuBATGAAGACCCGCGATGTTGCCTCCACGGAACCGATGACCCTTGCGTTTGAAGTGACGGTTTCCTCCGTGCAGGAGCTCAGCCCCAACTTCCGCCGGGTGACCTTCGGCGGCTATTCCCTGCGCGACTTCGGCGTCCACGGCGACACCATGGATCTTCGGATCAAGCTTATGATCCCGTCCCTGGCCGAGGACGGCACGCAGCTTCCGCTGCCGGTCTTCGAAATGGCCGAGTCCGGCTGGTACCGCGAATGGCTGGCGATGGACCCGGCGGTCCGCGGCTCCATGCGTACCTACACCGTTCGCCAGTCACGGCTGGATTCGGTGTACCCGGAGATCGACGTGGACTTTGTGATGCACTTCGACGACCACGGTCACGGTGGCCCGGCCGCCCACTGGGCCCTCAACGCGAAGCCTGGTGACGCCATCACCATGATCGGCCCCAACAACCGCGCCGCGCACTGCGTGACTGCTGAGATCTATTCGGGCATCGAATGGCGGCCGGGTATGGCCCAGCGGGTCCTTCTGGCCGGGGATGAAACAGCCATTCCAGCGATCTCCGCGATCCTCGAGAACTTGCCCTCGTACATGAGCGGTCACGCCTTCCTCGAGGTGCCGCAGGCCGGTGACTTCCTGGACATCAAGACCGCCGCCGACGTCCAGATCACCTGGCTGGCGAGGGGCGCCGCCATCGGACGGTCCCGGCCGCACGGCGAACTGCTGCAGCAGGCAGTGCGCCAGGCAATCCCGGTTCCCGGGTGGGTGGGTATTAAGGAGTCCGACGGCGGCGCCGGTCCCGAGCCCGAGGACGTCAATGTGGACGTGGACATCCTCTGGGAGACTCCAGCCCGGATGGAAACAGCCGAGATCGAAGCCACGAAGAACCCCGACATGCCTGCCGGCGCCATGCCCTTCTACGCCTGGATCGCCGGGGAAGCCGCGGTCATCAAGGACATGCGTCGGTACTTGGTGCGGGACGTGGGGATCGACCGGAAGCAGGTCGCCTTCATGGGGTACTGGCGGCAGGGGAAGGCCGAGGGGTAGMKTRDVASTEPMTLAFEVTVSSVQELSPNFRRVTFGGYSLRDFGVHGDTMDLRIKLMIPSLAEDGTQLPLPVFEMAESGWYREWLAMDPAVRGSMRTYTVRQSRLDSVYPEIDVDFVMHFDDHGHGGPAAHWALNAKPGDAITMIGPNNRAAHCVTAEIYSGIEWRPGMAQRVLLAGDETAIPAISAILENLPSYMSGHAFLEVPQAGDFLDIKTAADVQITWLARGAAIGRSRPHGELLQQAVRQAIPVPGWVGIKESDGGAGPEPEDVNVDVDILWETPARMETAEIEATKNPDMPAGAMPFYAWIAGEAAVIKDMRRYLVRDVGIDRKQVAFMGYWRQGKAEGPGPT0003760_83DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_04479828fepCCOG1120Ferric enterobactin transport ATP-binding protein FepCATGGCAGTTCTGACCGCCCGGGACCTCACGCTCAAATACGATCAGCGCTGCGTGGTGGACGGCCTCACGGCCGAAATCCCCGAGGGCAAGGTGACCATGATCGTGGGCGCCAACGCCTGCGGAAAGTCGACGCTGCTCCGCGGCCTGTCCAGGCTCCTCAAACCCGCGGCGGGTTCAGTCACGCTGGACGGCAAGGACATCCACTCCCGGCCGGCCCGCGAACTTGCCCGCACCCTGGGGCTCCTCCCGCAGCACCCCACGGCTCCGGACGGCATCACCGTCCGCGACCTCGTGGGCCGGGGACGTTACCCGCACCAGGGCTTCTTCCGCAGCTGGTCCGAGCAGGACGACGCCGCAGTGCAGCGTGCGCTGGAAGCCACCGATACGCTTGAACTCGCCGGGCGGAACGTGGACGAGCTGTCCGGCGGGCAGCGTCAGCGCGTCTGGATCGCCATGGCGCTGGCGCAGGAAACCGAGGTGCTGCTGCTGGATGAGCCCACCACCTACCTGGATCTCGCCCACCAGGTGGAAGTCCTGGACCTCGTCACAGACCTGAACCGCAGGCGCGGCACCACGGTGGCCATCGTCCTGCACGACCTCAACCTGGCGGCGCGCTACGCGGACCACGTCATCGCCATGAAAGCCGGGGCGGTGGTCGCGCTGGGAGCCCCCGGTGACGTTGTCACGGAGGAACTGGTTCGCGAAGTCTTCGGACTGGAGTCCCGCGTGATTCCCGATCCTGTTTCAGGCACCCCCTTGATCATCCCCATCGGCCGCCACCACGCCACCGCTTATGAAGCCGTCAACGAACTGGAGTTTGTTTCATGAMAVLTARDLTLKYDQRCVVDGLTAEIPEGKVTMIVGANACGKSTLLRGLSRLLKPAAGSVTLDGKDIHSRPARELARTLGLLPQHPTAPDGITVRDLVGRGRYPHQGFFRSWSEQDDAAVQRALEATDTLELAGRNVDELSGGQRQRVWIAMALAQETEVLLLDEPTTYLDLAHQVEVLDLVTDLNRRRGTTVAIVLHDLNLAARYADHVIAMKAGAVVALGAPGDVVTEELVREVFGLESRVIPDPVSGTPLIIPIGRHHATAYEAVNELEFVSPGPT0003760_2288DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-29_044801113btuCVitamin B12 import system permease protein BtuCGTGAGCACCACCGAAACCAAACGCCCCGTTGACCTATCACTTCCGGTCCCCAAAACACCGTCCAAGCAGCCATATCTGATAGCGCAACCTGGGTGGCGGACACCTGCACTGGCCATCGGTGTGGTGGCGCTCTTCGCCGCGTACGTTCTGCTGGGCAGCTATACGGTGACGGTCCCGGACTTCTTCCGAATCGTCATCGCCCACCTGACCGGCGGTGAACGGATCCCCGGCGCCAGCTTCATCGTGATGGAAAACAAGCTGCCCCGCGCGGTCATCGGCACCATGATCGGCGCCGCATTCGGTCTTGCCGGGGGCCTCTTCCAGACCATGCTTCGCAACCCCCTGGCCAGCCCCGACGTCATCGGCATAACCTCAGGCGCCAGCGCGGCAGCGGTCACATCAATTGTCATCTTTGGAGCCTCGGGCGCTGCCGTGTCCGGCGCGGCTCTGGGCGGCGCGCTGGGCGTGGCCGCCCTGATCTACGCCATCTCCCGCGGGGGCTCCCTTGGTTCAGGGGGCGGCAACACCGGCAACGCGGCCGGCAACCGACTCATCCTGGCCGGAGTGGGCATCGCCGCCGCACTGCACGCAGTTGTCAGCTTCCTGATGACGCGGGCGGACATCCGGACAGCTGCAGATGCCCTTGTCTGGCTCAACGGCTCTCTCAATTCGGCAAACTGGGAACGCTCCGGCGTGCTGGCGCTTTCGCTCCTGATCCTGGTTCCCGCCGTCGTGGCCCTGGCCGGTCCGCTCCGCATCCTGGAACTCGGCGATGACGCCGCAGCAGGATTGGGGATCCGCGTGGGATTCACACGCCTGGCGTTGGTCATCACCGCCGTCGCTTTGGCAGCGGTCGCGACGGCGGCAGCAGGCCCGGTCTCGTTCGTCGCCTTCCTTGCCGGTCCCATCGCCCGCCGCTTTACCCGCCAAGCCAGCCTTCCGGCGTCGGCCTTTGTGGGTGCCCTGATTGTCCTGGCGGCGGATTACTTCGCCGCCAACATCGCCCCCCTGCTGCTGGATGGCACCGTGCTGCCCGTTGGCGTGATCACGGGGGCGCTGGGTGCCCCGTTCCTGCTGTGGCTCCTGGTCACGGCCAACCGAAAGGATGCCTGAMSTTETKRPVDLSLPVPKTPSKQPYLIAQPGWRTPALAIGVVALFAAYVLLGSYTVTVPDFFRIVIAHLTGGERIPGASFIVMENKLPRAVIGTMIGAAFGLAGGLFQTMLRNPLASPDVIGITSGASAAAVTSIVIFGASGAAVSGAALGGALGVAALIYAISRGGSLGSGGGNTGNAAGNRLILAGVGIAAALHAVVSFLMTRADIRTAADALVWLNGSLNSANWERSGVLALSLLILVPAVVALAGPLRILELGDDAAAGLGIRVGFTRLALVITAVALAAVATAAAGPVSFVAFLAGPIARRFTRQASLPASAFVGALIVLAADYFAANIAPLLLDGTVLPVGVITGALGAPFLLWLLVTANRKDAPGPT0003770_9240DIRECT 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
D1-29_044811122yfiZ_2COG0609putative siderophore transport system permease protein YfiZGTGACGGAAAGTACGACGACGGCGCCCTCCGCTGTGCGCGAACGGACACTTGGGGCCCCAAAAGGGTCGCAAAAAGGGCCTCAACTGTCCGTTCGCGCCGGTGGCGGGCTCCGCGAAGGCGGAAAAAGCAGAACCAGCCAGGCCGCCTGGCTGATCGCCGCCGTCGTCGTACTTGCCCTCCTGACAGCTCTCTCCTTGGCCGTCGGTGCCCGCGGCCTTTCCCTGGGCACCGTATGGCAGGCCCTTACCGGCTTTGATCCGGCCAACGGCGATCACGCAGTTGTCCATGCCCGCATCCCGCGCACCGTGCTGGGCCTGCTCGCCGGCGGCGCCCTCGGCCTCGCCGGCGCCGCCATGCAGGGTGTGGCCCGCAACCCCTTGGCAGATCCCGGAATCATCGGCGTGAATGCCGGGGCCGCCCTCGCCGTCGTCACCGGGATCTACGTGTTCGGGGTTTCCTCGCTCACCGGCTACATCTGGTTCGCCTTCATCGGAGCCGCAGCGGCCGCCGTCGTGGTTTATCTTGTTGCATCCCTGGGCCGGGACGGTGCGACGCCCATCAAACTCGCTTTGGCTGGTGCCGCGCTCAGCGCAGGCCTGTACTCGCTGATGAACGTCATCCTGGTTTCCAGCCAGGACACGCTGGACAGGTTCCGTTTCTGGCAAGTGGGCGGGATAGCGGGCCGCGACTGGTCTGTGGTGCTGCCGGGCCTGCCTTTCCTCGCGGCGGGGGCGTTGATTGTGCTCTTTACGGGCCGCATCCTCAACAGCCTGGCCCTGGGCGACGACATTGCCCGCGGTCTTGGCCAGCGGGTTGGCCTGGCACGCGGCGTGACAGCGCTGGGCATTGTCCTGCTCTGCGGTTCCGCCACGGCCCTGGCCGGCCCCATTGCGTTTGTTGGCCTGGTCATTCCGCACGCCGTCCGTTCCCTCACCGGCCCCGACTACCGCTGGATCCTGCCGTTCTCCCTGGTCCTGGCTCCTGCCTTGCTGCTGGCCGCTGACATCATCGGCCGGGTGGTGCTGCTGCCCGGTGAGGTTCCGGCCGGCATCATGACCGCCATCGTGGGTGCACCCGTTTTCGTCTGGCTGATCCGCCGCGGGAAGGGAGCAGGGCTGTGAMTESTTTAPSAVRERTLGAPKGSQKGPQLSVRAGGGLREGGKSRTSQAAWLIAAVVVLALLTALSLAVGARGLSLGTVWQALTGFDPANGDHAVVHARIPRTVLGLLAGGALGLAGAAMQGVARNPLADPGIIGVNAGAALAVVTGIYVFGVSSLTGYIWFAFIGAAAAAVVVYLVASLGRDGATPIKLALAGAALSAGLYSLMNVILVSSQDTLDRFRFWQVGGIAGRDWSVVLPGLPFLAAGALIVLFTGRILNSLALGDDIARGLGQRVGLARGVTALGIVLLCGSATALAGPIAFVGLVIPHAVRSLTGPDYRWILPFSLVLAPALLLAADIIGRVVLLPGEVPAGIMTAIVGAPVFVWLIRRGKGAGLPGPT0003770_539DIRECT 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
D1-29_044821104yfmCCOG4594Fe(3+)-citrate-binding protein YfmCGTGACTTCCCCCTTCTTCTCCGGCCCAAGTGCCACCCGCCGCATGCTGTTCAAGTCGGCCGGCAAGGCATCAGCTGTTCTGGCCGCCGCGGCGCTCACCATGACTGCCTGCTCCACGGGACCTGCATCCTCTGCCGCAGATGCCGGCACCTCCAGCTCCAGCAGCTCGCAATTCCCCGTCACCATCAAGCATGTCTACGGCGAGACCACCATCAAGGAACAGCCCAAGCGCGTCGCCACCGTTTCCTGGGTTAACGACGACGTCTCCATCGCCCTCGGTGTGGTCCCGGTTGGCCTCCCGAAGAACGAATGGGGCGGGAATGACCAGGGTTCCACGCCGTGGAAGGACGCAGCCCTCGAAAAGCTTGGCGCGGGCTTCGGCTCAGACAAGGCTCCCGTACAGTACTCCGAGACTGACGGCATCAACTTCACCGAAATCGCCAAGCTCACCCCGGACGTCATCCTGGCCGCATACTCCGGGCTGACCGAAGAGGACTACAAGAAGCTCAACGAGATCGCCCCCGTAGTGGCGCACCCCGAGCTGGCATACGGTACGTCCTGGCAGGACTCCACCTCCATCATTGGCAAGGCCCTTGGCAAGGACGCCGAGGCCACCAAGCTGATCGCGGACACCGAGTCCACCATCAAGGACAAGGTCGCCAAGTTCCCGCAGATCGCCGGCAAGACCTTCATCTACGGCAACCTGGAACCCGCCTCGGCTGACGGCGTCAACGTCTACACCGCCAACGACAACCGCCCCCGCTTCCTAAGCGAGATCGGCATGAAGCTGGCTTCTGTTGTGGAGGACAACTCCAAGGGCTCCAAGGAATTCTTCATTCCGTGGTCCGCCGAAAAGGCCAACGAGCTGGACTCCGACATCTTCGTCACCTGGGTTCCGGACGCCGCCACCACCGACACCATCAAGTCCGACCCCCTGCTCGGCCAGATCCCGGCCATCAAGAAGGGCGGCCTTGTTGCCGACTCGGACAATACCCTCACGCTGTCCATCTCCGCATCCTCTCCGCTGAGCCTGCCGTGGTCACTGGACACGTTCCTGCCGCAGCTTGCGAGCGCAGCGGATAAAGTCACCGGCGCAGTGAAGTAAMTSPFFSGPSATRRMLFKSAGKASAVLAAAALTMTACSTGPASSAADAGTSSSSSSQFPVTIKHVYGETTIKEQPKRVATVSWVNDDVSIALGVVPVGLPKNEWGGNDQGSTPWKDAALEKLGAGFGSDKAPVQYSETDGINFTEIAKLTPDVILAAYSGLTEEDYKKLNEIAPVVAHPELAYGTSWQDSTSIIGKALGKDAEATKLIADTESTIKDKVAKFPQIAGKTFIYGNLEPASADGVNVYTANDNRPRFLSEIGMKLASVVEDNSKGSKEFFIPWSAEKANELDSDIFVTWVPDAATTDTIKSDPLLGQIPAIKKGGLVADSDNTLTLSISASSPLSLPWSLDTFLPQLASAADKVTGAVKPGPT0003765_2114DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
D1-29_04483738hypothetical proteinATGCGCCCAGCACAAGCACGTCTTTTTGCCGCCATCGCCACCGCCGCCCTCGCTCTGACCGGCTGCATGGCCAACGCCTCGACTGCCGGTTCGGAAGCCCCGGGTTCGGAAGCTTCCGCCGCTGCCAGTCCCTCGGCCTCATCAAGCGCTCCGCCGGTTTCGTCAAACGCCACCCCGTCTGCCGACTCTGCCGGCCCGACGGCGGCCGCCGCACCGCCGTCGTCCTCTTCCGTTCCTGCCGGGCTGGCAACGTATACGTTCCCGGACGGCAGACTGTCGTTTAAGTACCCGGCGGACTGGCGCGTGGAGCTTTTCGAAGCCGCAGCCTCGCCCTTTGCGGGCACGGCCACCGTGTACGACGCGAACGGGACCAGGCAGGCTGAGATATATACGGGAGAGATTGCCGACGGTGTCAGCAGTCCCGTCACCAGGACGGTGTTCGAATCCGTGCCGGTTCCAGGCCTGCAGGGACAACCTGACCCGGCTGCGCACTACTCGTTCTACGTGGACAATGTGAACGACATTGCCATTTACCGGATGCACCTGACGCCGGGCGTCCCTCTGGCCGGGGCCGAGATGGCGCTGGGCGGGATTATCCGGATCGGCGACCGCGTCCTCATTGCGGAGGTTGATTTCATCGACAACCCCTTTGCCAGCGATGATGCCGCCAAGTCCTGGCTCGCCGGTACAGAAGGCCAGGCGCTCAGGGGGCTCCTGATGAGCATCTCCTACGCGTAAMRPAQARLFAAIATAALALTGCMANASTAGSEAPGSEASAAASPSASSSAPPVSSNATPSADSAGPTAAAAPPSSSSVPAGLATYTFPDGRLSFKYPADWRVELFEAAASPFAGTATVYDANGTRQAEIYTGEIADGVSSPVTRTVFESVPVPGLQGQPDPAAHYSFYVDNVNDIAIYRMHLTPGVPLAGAEMALGGIIRIGDRVLIAEVDFIDNPFASDDAAKSWLAGTEGQALRGLLMSISYANANANANANA
D1-29_044843483hypothetical proteinGTGAGCATCGCATCCATGCTGCCCATGGGCGAGCTCACGAACCCGGGCCAGATGCGCCTTGCCCTGGTCCAGGTGGTGAACTGGGGCACCTTCCATGGAGCCCACACGATGCACGTGGACCGCAATGGCACTCTGCTGACGGGCAACTCGGGCGTGGGCAAATCCACGCTGTTCGATGCCATGCTGCGCGTGTTTGATGCCCGGCCGCGCTCCAATGAGGCTGCGGCCCAGCGTTCCGGTGGTGCCGTGGAGGACAAGAGGACCACGTTCACGTACATGCGCGGAAAGGTGGGCGACAAGGCCGTGGGCGAGGGCTCGGCAAGTGCCTTCCAGCGCCCGGGTGCCACCTGGTCCGCCGTGGCCCTGACGTTCGATAACGCGGCGGGCACCCGGGTGACGGTGTCGGCTCTCTTTGACTTGCCCAAGAACGGCACGGAATCCAGCGTCGGCCGGTTTTATGTGATTGACGGCAAGCCGCTGGACCTGGCCGCCATCGAGGACATTGCGGAGAAGCGCTTCACCAAGGCGGCGCTGGAAACGATCTTCCCGGACGCCCAGATCTTCGATGTCCACAAGGCCTTCGCCGAACGGTTTCGGCGACTGCTGGGCATCAGCTCGGACCAGGCCTTGCCTCTCCTGCGTGTGATTCAGGCGGGTAAAGGCCTGGGCGGCAGCGTCAACACCTTTTTCCGTGACCAGGTCCTGGACGCCCCGGCCACCCTCGCCGCCGCCGATGACGTGGTGGAGGAGTTCAGCAACCTGATGTCCATCCGGCAGCGGCTGGAGGACGTGCGGCAGCAGCGTGACCAGCTGGCGCCGGTGCCCGGGCTGAACAAGGAGTATGCGCAATCGCTGCTGGACGCAAACCGCCTCCGTGATCTGGCCGGCGAGGAATTCGATGCCTACAAGCAGCAGCTCGCGGTAGCAGTCCACCAACAGACCCTGGCCCGGTTCAAGGAGCTGGCCCAGGCGAAGGCCAAGGAGCTCGGGGCGGAGCGGTCGGTGCGTGACGGACTGGCCAAGGAACTGCGCCAGCTGGAGACCGACTACAACAACCAGGGCGGCAACGCGATTTCCGCCATTGAGCAATCGATGGAAAATGCCCAGGTAGGGCTCCTCCTCCGTGAACAGGTGGAGGAGGCCGCCCGCAAAGCCCTGGCCGACGCCGGGCTGCAGCTTGAGTGGACTGCGGAGGGCTGGGAACAGGCCCACGAGCAGGCGGAGGCCCGATCAGCGGAGCTGAAGGACGATTCGAAGGCGCTCCAGGAACTTCGCTTTGAGGCTTTTGACGGCCACGCCACCAAAAAGCGTGAACTCGCGGCAGCGCAGCAGGAGCTGGTGTCGCTGAAAACGCGCAAGTCCCTGCTGCCGCCGTCGAGCATTGAAAACCGGGCAGCGATAGCAGCAGCCACCGGCGTTCCGGAGGAGCGGATGCCGTTCGGCGGCGAGCTGATCGACCTTGCCGAGGGGGAGGAGCGGTGGCGGCCTGCTGCAGAGCGTGCGCTCCGGAACCTTGCCACCACGCTGCTGGTCCCGGGCGAACATTTCGCGGCAGTGACCCGCTACCTCAATGACAACACAGTCCGTGGTGCCCTGCGCGCAGTGGACGTGTCCAAGCCGCTGCCCGGCGGCGCGCTGGCGGTAGAGGACGTTCGCGACGGCGATCTGCTGACCAAACTGGACATCCTCACTACCAATGCCGCCGCAGACGCCGGGGCGTGGATCCGGGAGCGCATCGCCCTCGATTTCGCCTTCCCGTGCGTCGAGGACCCGGGTGAACTGGCAGCACTGGAGAAGGGCCTGAGCCTGGGCGGTGTGGTCAAGCGGAACCGCCACACGGTGGAGAAGGATGACCGCTTCACAAGCCGGCAGGACTACGTTCTCGGGTTCGACAACGCCTCCAAGCTGGAACTGGTGGCGGCTCAGGTGGAGGATCTGCAGCAGGAACTCGCCAAGGCGGCGGAGCTGGCGCAAAGCCGCGAGGAGTCGCACCAGGGCATGAGCCGCCAGCTCGAGGCGCTGCGGCGCATCGCCGAAGACCACAGGCCATGGGAACAGGTCTCGGCAGCGGTGGCGGCGGAGGAGCTCGCCAGGATTGAACAGCGGCTCAAGGACGCCCTGGCCGCACAGGCGGACCTGGAGCCGCTGCGTGCCAACATCGAAGCGGCGCGGCAAAAACACCAGTCCAGCACGGAGGCGGCTGCCGTCCTGCAAAGCGAATACAAGGCGCTTGACCGGCAGATGAGCACCGCCGATTCCCTGCTGGAAGCTGCCCGGGCCCGCTTGGAGCAGGCGCCGCCGTCGGAGGCCACCGTGACGGCGCTTGAACCGTACTTCACCGAGTTTGGTGACGTCACGGAGATGCATGAGCTGGACAACCTGGCCAACCGGGTACGGACGGTACTCCTGGGCGAGCTGCATGCCGCTGAATCGAGCGGGCAGGCCACCTCCGAGCGGCTGACCCGGATTTTCGAGGGCTTTGTGCGGGAGTGGGGAACCGCGATCTCCGCGGACCATGGCACGTCCATCGGCGCGGCAGGCGAGTTCGAAACCCGGTACCACGCGATTGTGAGCGACGGGCTTCCCTCCCAGGAAGCGGAATTCCGGCAGTTCTTCAACCAGCGCACCCACGAGTCTTTTAGCACCCTCCTGCACTTGCTGGACGAGGAACGCCGGGCCATCACCAGCCGCATCCTGCCGCTGAACGGCATCCTGTCTCAGGTTAACTTCCATGAGGGCAGCTACCTGGAACTGGACATCAAGCAAACCCTGCCCGCCACGGCAAAGCAGTTCAAGGACGCGATCCAGAATGCGTTGAAGGCGCGCCACACGCGTACGGGTAAAGGCGAAGGAACCGACGACGCCGAACTCACCACCCGCTACAAGTCGCTGGAGACCCTCGTCAAACGGCTCAGCTCGCAGGCTCCGGAGGACCGGCGCTGGCGGGCGGAGGTGCTGGACGTGCGCGGGCACCTGTTCATCCAGTGCAAGGAACACCGCCACTTGGTGGCAGAGACAGTCGCAGCAGAGACAGCCGGGGGAGAGATAAGCGGCGGCCGGAACGGCGACGCGAAAAAGACCGACGTCTACATGCACGCGGACACGGGCTCCATGTCCGGCGGCGAGAGGCAGAGGTTCACGGCCTTCATCATGGCCGCGGCGTTGAGTTATCAGCTGGGCATTGCGGAACAGGGCTTCACCACCTACGGCACCGTGATGATGGACGAGGCGTTTGTCCTGGCCTCAGAGGAGTTTGCCGGTGCTGGAATCAAGGCACTTCACGAGTTCGGATTCCAACTGTTGCTTGCTGCCCCGGAGAACGTCATCGATCTCTCCCGGCACCTGGGCTCGGTGACGGAGATTCTGCGGGACAAGCGCACCAACCGCTCCGGTGTACTCACGGCTCCCGTGATCAACGCTGCACGCGGTTCCTCAGGTGTATGGCGTTCGGAGGCCAACCCGGTGGATATTGTGCTCCGCTGAMSIASMLPMGELTNPGQMRLALVQVVNWGTFHGAHTMHVDRNGTLLTGNSGVGKSTLFDAMLRVFDARPRSNEAAAQRSGGAVEDKRTTFTYMRGKVGDKAVGEGSASAFQRPGATWSAVALTFDNAAGTRVTVSALFDLPKNGTESSVGRFYVIDGKPLDLAAIEDIAEKRFTKAALETIFPDAQIFDVHKAFAERFRRLLGISSDQALPLLRVIQAGKGLGGSVNTFFRDQVLDAPATLAAADDVVEEFSNLMSIRQRLEDVRQQRDQLAPVPGLNKEYAQSLLDANRLRDLAGEEFDAYKQQLAVAVHQQTLARFKELAQAKAKELGAERSVRDGLAKELRQLETDYNNQGGNAISAIEQSMENAQVGLLLREQVEEAARKALADAGLQLEWTAEGWEQAHEQAEARSAELKDDSKALQELRFEAFDGHATKKRELAAAQQELVSLKTRKSLLPPSSIENRAAIAAATGVPEERMPFGGELIDLAEGEERWRPAAERALRNLATTLLVPGEHFAAVTRYLNDNTVRGALRAVDVSKPLPGGALAVEDVRDGDLLTKLDILTTNAAADAGAWIRERIALDFAFPCVEDPGELAALEKGLSLGGVVKRNRHTVEKDDRFTSRQDYVLGFDNASKLELVAAQVEDLQQELAKAAELAQSREESHQGMSRQLEALRRIAEDHRPWEQVSAAVAAEELARIEQRLKDALAAQADLEPLRANIEAARQKHQSSTEAAAVLQSEYKALDRQMSTADSLLEAARARLEQAPPSEATVTALEPYFTEFGDVTEMHELDNLANRVRTVLLGELHAAESSGQATSERLTRIFEGFVREWGTAISADHGTSIGAAGEFETRYHAIVSDGLPSQEAEFRQFFNQRTHESFSTLLHLLDEERRAITSRILPLNGILSQVNFHEGSYLELDIKQTLPATAKQFKDAIQNALKARHTRTGKGEGTDDAELTTRYKSLETLVKRLSSQAPEDRRWRAEVLDVRGHLFIQCKEHRHLVAETVAAETAGGEISGGRNGDAKKTDVYMHADTGSMSGGERQRFTAFIMAAALSYQLGIAEQGFTTYGTVMMDEAFVLASEEFAGAGIKALHEFGFQLLLAAPENVIDLSRHLGSVTEILRDKRTNRSGVLTAPVINAARGSSGVWRSEANPVDIVLRNANANANANA
D1-29_04485990hypothetical proteinATGACTGAAGAAACGACGACGGCGGCGGCCCCCGCTGAAGAGGCGACAGTTCCTTTGGAGGAGGCAGTTTCCTTGGCGGCGGCATCTGGTGCTGAACAAGCCTTTACCGTCACACCCAGGGACACATTCGTTGATGGCGCGGCGCTCTTCCCCGGGGATTCCGGCGTGCTGTCCATGAAGGTCCGTCAGGCGCTGGTCAAGCTCCTGAAAGGTCCGTACATCGACGGCGGCCGGGACGAAAAGCTGTGGACGACGCTCCTGGACAACCAGCTGATTCTCCGAAGCCGCCTGTCCGAGCTTTTCCTTACGCTGCAGTTGGACCATGAGCGCAAGATCGCGGTTTTGCGGCCTGTTGACCCCGAGGCCATCGGCGGCGGCACCCGCTCCAGCATCCTGCGCCAGCAGCGGGCCCTGAGCCGGGTGGAAACCATCGTGCTCCTCCGCCTCCGGCTCCTGCTTGACCGCCACGTCACAGCCCAGACAGATCCCACCATTACGCGGGAGGAAATCGCAGACCTGGTGGCCCACTACCAGCCAGCCGGCCAGCAGGATGCCCTCAGGGACGCCGACGTGGTCAGCAGGGCAATCACCAAACTCATGGCCCGCCAACTCCTCCTCAACACCGGCCTGGACGACGTCTACACCATCTCCAACGCCCTCCCGCTGGCACTGCCGTTCGAAAACATCGGCGACATCCCGGCCCAAATCGAAGCCCTGGTAGCAGCCACCTCGGACCCCGCAGGAACCGAAGCCCTCCTAGAACTCGACGGCGAGAATTCTACGGAAGAGGACGCTGGGGACGACGATTCGGAAGGTGAGCTACCTCCAGGCGCAGCAGCCGATGCCGCCCAGGGAGTGGCATCGGGCCTGTCGGAGCCGGGCGGATCGTCCGCAGGACGAATGCCGCCCGGCGAAGGGGCGGGGGCGGCATCGGCTGTGGAGCCGAACCCAGCAACGACAAACGCAACCACAGCGAAGGAAAGCAAGTGAMTEETTTAAAPAEEATVPLEEAVSLAAASGAEQAFTVTPRDTFVDGAALFPGDSGVLSMKVRQALVKLLKGPYIDGGRDEKLWTTLLDNQLILRSRLSELFLTLQLDHERKIAVLRPVDPEAIGGGTRSSILRQQRALSRVETIVLLRLRLLLDRHVTAQTDPTITREEIADLVAHYQPAGQQDALRDADVVSRAITKLMARQLLLNTGLDDVYTISNALPLALPFENIGDIPAQIEALVAATSDPAGTEALLELDGENSTEEDAGDDDSEGELPPGAAADAAQGVASGLSEPGGSSAGRMPPGEGAGAASAVEPNPATTNATTAKESKNANANANANA
D1-29_044861470hypothetical proteinGTGCCCCGTTCCGCCAGGTCATCCGCTGATGCGATGAGCGCCAGGCTCCGGGACCTCGAACTCCTCACCAAGGGACCGGCCTGGGCGCTGACACGCTCCGCACCCTGGGTGATTGCTGTACTGCAGGCCTCGTTTACCCGCGTCCGTCCGCAGCTTCCGCTGGAAGAGTTCCATGCCGACGTCGATTCCTTTCTTGAGCAGCTGCGGCGCCAGGAACCGGGGCTGGGCAGCGGGGCGAACGGAACGCCTTCCGGGAAAAAATACGCCGATGAATGGACACGTAAACAGTTCCTGACCCGGCGCAACCAGTCGGGGCAGATCGTGTACGAAGTCACGGAACCCGCGGCCCGCGTTCTGGCGTTCCTGGATAGCCTTTCCAGCGAGCGTTCCACCCTGAACGGTTCCCGGCTGGGCACGCTCCTGGGCGATGTGGAGAAGCTGGCCAACGAGACCAACCCGGACCAGAGCGCGCGGCTGGAATCCCTTGAAGAGGAGATCGAAGACCGCCGGCAGCTGATCCAGGACATCAGCTCCGGAGACTTCGACGGCCTGCTGGACGACGACGAAGCCGTAGAGGCCGCCGGGAACATCCTTGACCTGGCCGCCAGCCTGCCCGCTGACTATAAAAAGATGCGTGACCGCATCGAGGAGCTGGTGGGCGAACTGCGCAACCAGATCATTGAGGAGTCGCTCAGCAAGGGCGCCACCATGGCGCAGGTGCTGGAGGCGGACAAGAGGCTGCGGCAGAGCCCGGAAGGCAGGACTTTCCGTTCCTTCACCGCCTTCCTGGAGGACCCGCAACAGCAGCTCAGGTTCCGCTCGGCCATCGGCGAAGTCCTGAGCCGGCAGTTCGCTGACGACTTGTCGCCCGAGGACCGCGAAACGCTCAAGAACCTGGTGGCCGAACTCCGCCAGCAGCACAGCCAAATCCAGCGCATCTACGGCAAGCTCAGCGAGAGCCTGAACACCTACGTACAAAGTGACGATTTCCGTCAGTCAGTACGGCTCCGGAAGGTGCTGCGCGAAGCCGAACAAGCTATCCGTTCCCTGCCGTACGAGCGGGAACGCCCGGGCCTGGTAGCTGGTCCCGTCCTGTTCAACGCCGGATTTGAATCCCTGGCCATGGTCAAGCTCTATGATCCGGATGAGTTCGCTGTCCCGCCCAGGCTGGCTGACCCCATTGCCTTCAGCGACTCCGACCGCGTGCGCTCGCCGCGGACGGCCAAGGCCCGCCCCGATGTTGTCCGGGCCGCTGTTGCCGGGGCCTCCACCCTCGCCGAGGCCTGGGGCCAGCTGCCGCCGGAAGAGCGCCACATCAACACCATCCGCGCACTCCTCTCGCACGCACTCCAGTCCGGGGCGGACTTCTACCGCGAAGCCTGGGACGGACTGGACTTTGAACAGATAGACGGCACCAGCCGCACGGCCTACCTGCCGGTGGTCACGCTCGCAAAGGACTCAGATGACTGAMPRSARSSADAMSARLRDLELLTKGPAWALTRSAPWVIAVLQASFTRVRPQLPLEEFHADVDSFLEQLRRQEPGLGSGANGTPSGKKYADEWTRKQFLTRRNQSGQIVYEVTEPAARVLAFLDSLSSERSTLNGSRLGTLLGDVEKLANETNPDQSARLESLEEEIEDRRQLIQDISSGDFDGLLDDDEAVEAAGNILDLAASLPADYKKMRDRIEELVGELRNQIIEESLSKGATMAQVLEADKRLRQSPEGRTFRSFTAFLEDPQQQLRFRSAIGEVLSRQFADDLSPEDRETLKNLVAELRQQHSQIQRIYGKLSESLNTYVQSDDFRQSVRLRKVLREAEQAIRSLPYERERPGLVAGPVLFNAGFESLAMVKLYDPDEFAVPPRLADPIAFSDSDRVRSPRTAKARPDVVRAAVAGASTLAEAWGQLPPEERHINTIRALLSHALQSGADFYREAWDGLDFEQIDGTSRTAYLPVVTLAKDSDDNANANANANA
D1-29_04487291hypothetical proteinATGCAGTTCGACTTAAGTGCAGTGGAGACAGCCACCATGGTGTTCATCGGAACCCTGATGTTTGCCGCCGTCCTGCTGGTCTTTGTCCTGACGGCGGCGTTCATCGCGCTGGTCCTGGTGGGTGTGGGCAAGCTCGCCTGGATAATCCTCTCAAGCACGTTGCTGGCCGTGGTTCATGGCATCAACCACGGCTGGGACAGGCTTGTGCACCACGCCTCAGCGGTGGAGGTGTCCGGGGACTTTCAAGGACAGCAATCCCCTAGCACCGGTAGCTACCCGCGGGTAATATAGMQFDLSAVETATMVFIGTLMFAAVLLVFVLTAAFIALVLVGVGKLAWIILSSTLLAVVHGINHGWDRLVHHASAVEVSGDFQGQQSPSTGSYPRVINANANANANA
D1-29_044881986COG1960putative acyl-CoA dehydrogenase FadE10ATGAGCTCCGCTACTGACAGTCCCGCCGCCGAAACCCCCGTTGCCGCCCGCAAGATCGGCCCCGAAGTCACTGCCGAGGAAGCCCGCGCAGTGGCGGAAGCCGCCAGAGAGAGCGGCTGGGACAGGCCGAGCTTCGCGAAGGGCCTGTACCTGGGGAGCTTTGACCTTAACCTCATCCATCCGTGGCCGGCGGCTGATGCCGGGGACGTGGAACGCGGTGAGGCTTTTCTGGCGCGGCTGACCGAATATGCCCGCACCCTGTCCGGAAGAGTGATCGAACGCGAGTCCAAAATTCCGGACGAGTATCTGCGGGGACTGGCCGAGCTGGGCGCCTTTGGCATGAAGATCCCGCAGGAGTACGGCGGCCTGGGCCTTTCGCTGGTCTACTACGGCCGCGCCCTGGCGCTGCTGGGCAGTGTCCACCCCAGCCTCGGCGCACTCCTCTCCGCCCACCAGTCAATCGGTGTTCCGGAGCCCGTGAAGGTGTTTGGCACGGCCGAGCAGAAGCACGAATACCTTCCGAGGTGCGCCGGGGGCGCCATCACCGCCTTCCTGCTGACCGAACCCGACGTCGGCAGTGACCCCGCCCGGATGGGCAGCACGGCAGTACCAACGGACGACGGCGAGTCCTACCTTCTGGACGGTGTGAAGCTTTGGACCACTAACGGCGTGATCGCCGAACTGGTGGTGGTCATGGCGCTGGTCCCGGCGCACACCGATGCGGACGGCACCAAGCACAAGGGCGGCATCAGCGCATTCGTTGTTGAGATGGACTCCCCCGGCATCACCGTGGAAAACCGCAACGCCTTTATGGGGCTGCACGGAATCGAAAACGGGGTGACCAGGTTCCACCAGGTCCGCGTTCCTGCCGCGAACAGGCTGGGCCGCGAAGGCCAGGGGCTCAAGATCGCGCTCACCACGCTGAACACCGGCCGGCTCTCCATCCCGGCCCTTTGTGTCGCCTCGGGCCGCTGGAGCCTCAAGATCGCCCGGGAATGGTCCAATGCCCGCATTCAGTGGGGCCGGCCCGTGGGCAAGCATGAAGCCGTGGGCAAGAAGATCGCCTTCATCGCAGCTTCGGCTTTTGCCCTGGACGCCGTTTTTGAACTGTCGGCTGAACTTGCCGACGCCGGCCAGAAGGACGTCCGGATCGAGGCCGCGCTGGCCAAGCTCTGGTCCACGGAAATAAGCTGCCGGATCGCTGACGAACTGGTGCAAATCCGCGGCGGCCGCGGTTTCGAAACCGCCGAATCCCTGGAGGCCAGGGGCGAACGGGCGGTTCCCGCCGAGCAACAGCTGCGCGACCTCCGCATCAACAGGATCTTCGAAGGATCGTCGGAGATCATGAAGCTCCTCATCGCGCGGGAAGCGGTGGATGCCCACCTTGCCGCCGCAGGTGACCTCGCCTCCGCCGATGCCAGCCTGTCAGACAAAGCCAGGGCCGCCGTCGGGGCTTCCGGTTTCTACGCGAGATGGCTGCCCAAGCTCGTGGCCGGCGCGGGGATGGACCCGCGGTCCTACAGCGAGTTCGGCCGGCTGGCCAAGCAAATCAGGTTCGTGGAGCGGTCCTCTCGGCGGCTGGCCCGGCAGACCTTCTACGGCATGGGACGCTGGCAGGCAAAGCTGGAGCACAAGCAGGCGTTCCTGGGCCGTGTTGTGGACATCGGCGCGGAGCTTTACGCCATGGCCGCCTGCTGTTCACGGGCCGAAATGCTGCTCCGCACAGCCCCGGAGCGTGGGGCCACAGCATACGAACTGGCCGAGGCGTACTGCGAGCAGGCCCGGGTCCGCGTTGACGAGTACTTCGACCAGCTGTGGCGCAACACCGACGACGCCGATCATGACCTTTCGCGCAAGGTCCTGGCCGGGGATTACACCTGGCTGGAGGCCGGTGTCCTTGACTCATCTGAAGGCACCGGACCCTGGATTGCGGACGCCACTCCCGGCCCCTCCAAGATGGAAAACCTGCACCGGAACTACCGCTAGMSSATDSPAAETPVAARKIGPEVTAEEARAVAEAARESGWDRPSFAKGLYLGSFDLNLIHPWPAADAGDVERGEAFLARLTEYARTLSGRVIERESKIPDEYLRGLAELGAFGMKIPQEYGGLGLSLVYYGRALALLGSVHPSLGALLSAHQSIGVPEPVKVFGTAEQKHEYLPRCAGGAITAFLLTEPDVGSDPARMGSTAVPTDDGESYLLDGVKLWTTNGVIAELVVVMALVPAHTDADGTKHKGGISAFVVEMDSPGITVENRNAFMGLHGIENGVTRFHQVRVPAANRLGREGQGLKIALTTLNTGRLSIPALCVASGRWSLKIAREWSNARIQWGRPVGKHEAVGKKIAFIAASAFALDAVFELSAELADAGQKDVRIEAALAKLWSTEISCRIADELVQIRGGRGFETAESLEARGERAVPAEQQLRDLRINRIFEGSSEIMKLLIAREAVDAHLAAAGDLASADASLSDKARAAVGASGFYARWLPKLVAGAGMDPRSYSEFGRLAKQIRFVERSSRRLARQTFYGMGRWQAKLEHKQAFLGRVVDIGAELYAMAACCSRAEMLLRTAPERGATAYELAEAYCEQARVRVDEYFDQLWRNTDDADHDLSRKVLAGDYTWLEAGVLDSSEGTGPWIADATPGPSKMENLHRNYRNANANANANA
D1-29_04489846hypothetical proteinATGAGCAGCTCAACAGACCCAAATGACAGGCTTCCCCAGCGTGCCGGCGATGAGAACAGGCGTGCCGGGGATGAAACCAGGCGTGCCGGGGATGAGAACTTCCGCAGGGAAAGTGCTCGTGACGAAACATTCGCCGGCGGACAGCCCACCCGGGCATTCGACCAGGCTCCCGCGGGCGCCTACGGCGAACGGGAGTACGTGGCGGATCCGGACGTGACGGACACGGCGGCGGCCTATCCCGCTGCGGCAGACCCGAACCTGACCGACCGCGCCACCGCTGTGGCCCGCGAGAAGGAACAGTTCGGCGGCATCAAAGTGGGCTCAGCCTTCTTTGGCTGGCTCACCGCCACTGGAATGTCAGTACTCCTGACTGCCCTGGTGGCCGGAGCCGGGACCGCTGTAGGCCTCGCCAACAACACGGACGTCAATGAAGCGGTCAACCAGGTGACGACGAACGGCGCAGTGGGGATCGTAGGGATCATCGTCCTGCTGGCCATCCTGTTTGTGTCCTACTACTCGGGCGGCTACGTGGCCGGCCGGATGGCCAGGTTCAATGGCGCCAAGCAGGGATTCATGGTGTGGATCTGGGCACTGATCGCCGCCGTGGCGGTGGCGCTGCTGGGCCTCATCGCCGGGCAGCAGTTCAACATCCTGGCCAATCTGAACAGCTTCCCGCGCATCCCCATCAACGAAGGCGAGCTGACCACGGCAAGCATCATCGCCGCTGTAGTTGTGGCGCTGATCGCGCTGGCGGGAGCCGTGCTGGGCGGGCTGGCAGGCATGCACTTCCACCGCAAGGTGGACAAGGCAGGCTTCACTCCGGACGAAGCCTACGACGAGACCTAAMSSSTDPNDRLPQRAGDENRRAGDETRRAGDENFRRESARDETFAGGQPTRAFDQAPAGAYGEREYVADPDVTDTAAAYPAAADPNLTDRATAVAREKEQFGGIKVGSAFFGWLTATGMSVLLTALVAGAGTAVGLANNTDVNEAVNQVTTNGAVGIVGIIVLLAILFVSYYSGGYVAGRMARFNGAKQGFMVWIWALIAAVAVALLGLIAGQQFNILANLNSFPRIPINEGELTTASIIAAVVVALIALAGAVLGGLAGMHFHRKVDKAGFTPDEAYDETNANANANANA
D1-29_04490399hypothetical proteinATGTTTGAGAAGCCGACCAACGCCCGCACCTGCGTGTGCCTTTCCGGCCTTGAGTACTTTGAGTGCTGCGGCCGTTTCCACAGTGGCGAAGCCCGGGCGGGAACCGCTGAGCAACTGATGCGCTCCCGATACAGCGCGTTTGTCCTGCTCGACGCTGATTATCTGATGTCCACCTGGCACCCCCGCACCGCTCCCGCGGAGCTGGAACTGGACCAGGGGATGCAGTGGCGCCGCCTCGACATCCTGTCCGCCACGGGCGGGCCGTTTGATAATGAGGGCACAGTGGAGTTCAAGGCCCATTTCGTCTATGGCGGGGAACGGGGAGTTCATCATGAAACCAGCCGTTTTGTGCGGGAGGAGGGGCGCTGGTACTACGTCGACGCCGTCCTCATTGCTTAGMFEKPTNARTCVCLSGLEYFECCGRFHSGEARAGTAEQLMRSRYSAFVLLDADYLMSTWHPRTAPAELELDQGMQWRRLDILSATGGPFDNEGTVEFKAHFVYGGERGVHHETSRFVREEGRWYYVDAVLIANANANANANA
D1-29_04491891hypothetical proteinGTGGACGCAACAACGATTGCCCTCAACCTGACCTTTTTCGGAACACTCGGCCTCGCCTTCCTGATGTTTTTTGTCCTGTTCCTGCTGGTCGTGGCCACCCTGGTCCTGGCCGGCATCGGACGCCTGGCCGCCCTTCTGGTGATGGCCCTCTTTGGAAGGTTTCCCCGGAACGACCCCGCCTCGCTGGTCCACTTCCCTGCCAATGCAGCACAGGAAGCAGAGGATGCGCCCAGGCCCGGCCCAGCGGCCCCGGGGCAGTCAGTCCCGGCGTCAGGGGGCTTTCCAGGGTCCCGCAGCCTCCCAGAGTCCGATGGCTTTCCACAGTCCCGCGGTCTTCCTGAGTCGGGCGGTTTTCCAGAGTCCGACGGCGCCGCTGCCGCCCCCTCCCCTGCCTCCAAAGCACGCGCCGGCGGAGTACTCCGGGCCCTTCGTTCCAAGGCGGCGAAGCCAGCTTCAGCGCCGGCGGCTCCCCGCGACTGGGGCGCCCTCCTGAAGCCGGCGGAGTTTCGTTCCCGGTTCCTCACCGCCGTCGAACATCACCCGTTACTGACGGCCGCCCGGAGTGAGCCGCCAGTACTGGCCAAGGACTGGGCCGCAGCCGTCGCCGAAGCAGACGCCCGGGCCATTGCGCGTGCACGCGCCGCCGCGCCCGAGATCAAGCTGTCCGTGCGGGAACTTCCCAGTCCCGCCGTTCCAGCCGAAAAGGTGGAAGCCGTGGCGCCGCTGGTGGAGTCTGCTTTGCATCAGGACAAGCCGGTGCACGATGTTCCGCGCTCGTTCAAGAAACCTCCGGCCGCTGCTCCGCTGTCCATGCTGGACACAGGCTCGCTGGTATCCCTCTCCGGCCACTCCAACGCACTTAAGGGCAAGCTGCCTGCAGACCGGCACTGAMDATTIALNLTFFGTLGLAFLMFFVLFLLVVATLVLAGIGRLAALLVMALFGRFPRNDPASLVHFPANAAQEAEDAPRPGPAAPGQSVPASGGFPGSRSLPESDGFPQSRGLPESGGFPESDGAAAAPSPASKARAGGVLRALRSKAAKPASAPAAPRDWGALLKPAEFRSRFLTAVEHHPLLTAARSEPPVLAKDWAAAVAEADARAIARARAAAPEIKLSVRELPSPAVPAEKVEAVAPLVESALHQDKPVHDVPRSFKKPPAAAPLSMLDTGSLVSLSGHSNALKGKLPADRHNANANANANA
D1-29_044921074yajO_4COG06671-deoxyxylulose-5-phosphate synthase YajOATGAGCCTCAGCGAACTGCGGGTATTCGGGCGGTCAGGTACGCCCATCAGCCCGCTCACTTTGGGCACCATGAACTTCGGCGCGGGGCCTGGCGCATCCGGCAGCGGCATATCAGGCGGCGCCCCCACCGGCGCTCCCACCGGCGCCGACGAAGCCATCCGCATCATCCAGGCCGCGCTGGACGCCGGCATCACCGCGGTGGACACCGCCGATGTCTATTCACAGGGCGAGTCGGAGCAGGTGGTGGGCCGGGCACTTCGAGGCCGCCGCGACGATGTTTTCCTCGCCACCAAGTTCCACGGGCAGATGAGCCCCAACCCCGCCCATTCGGGAAACTCCCGTCGATGGATCATGCAGGCAGTGGAGGGCAGCCTCCGACGCCTGCAAACAGACCGGATCGACCTCTACCAGGCCCACCGTCCGGACTACAACACCGACGTACTGGAGACCATCACTGCCCTGAACGACCTGATCAGGCAGGGAAAAATCCTCTACTACGGCACCTCGGTATTCACACCCGCGCAGCTGGTGGAAGCCCAATGGCTTGCCACCACCAACCACCTGATCCCTCCGGTGGCCAACCAGGTCCCATATTCAATGCTGGTGCGCGGCAATGAACGCGACGTCCTGCCCATCGCCCAGCAATACGGCCTGGGCGTTCTCGCCTACGGCCCGCTGGCTGGAGGCTGGCTCTCCGGGGACTTTGTTTTGGACTCTGGAAGAGCCCCTACCCGGACGCATTCACTCCCTGGCCGCTACGACATTTCCGGACCGGCCAGCGAGCGGAAGCTGCTGGCCGCCGATTCGCTGGCGCGGCTGGCCGACAAGCTGGAGCTGCCCCTGGTGGAACTGGCTGTTGGTTTCGCCCTTAGCCACCCAGCCGTCAGCAGCGTGATCATCGGTCCCCGCAGCGAAGAGCACCTGCAGGCCTACCTGAAGGCCGCCGAGACCGTATTGGACGAGTCCGTGCTTGATCTGATCGATGACCTGGTGCCTCCCGGAACCAACTTTGTGGAGCGCGATGCCGGGGCTGTAGTCCCCTCCCTGGAGTACGCGGAGCTGCGCCGACGTTAGMSLSELRVFGRSGTPISPLTLGTMNFGAGPGASGSGISGGAPTGAPTGADEAIRIIQAALDAGITAVDTADVYSQGESEQVVGRALRGRRDDVFLATKFHGQMSPNPAHSGNSRRWIMQAVEGSLRRLQTDRIDLYQAHRPDYNTDVLETITALNDLIRQGKILYYGTSVFTPAQLVEAQWLATTNHLIPPVANQVPYSMLVRGNERDVLPIAQQYGLGVLAYGPLAGGWLSGDFVLDSGRAPTRTHSLPGRYDISGPASERKLLAADSLARLADKLELPLVELAVGFALSHPAVSSVIIGPRSEEHLQAYLKAAETVLDESVLDLIDDLVPPGTNFVERDAGAVVPSLEYAELRRRNANANANANA
D1-29_044931005yajO_5COG06671-deoxyxylulose-5-phosphate synthase YajOATGGAATTCAGATACCTCGGAAACAGCGGCTTCAAAGTCTCGGAAATCACGTTCGGCAACTGGCTCACCCACGGCTCGCAGGTGGAGAACGAGGTCGCGAGCCAGTGCGTGCGGGCGGCACTGGACGCCGGCATCAGCACTTTCGACACGGCGGACGTCTACGCCAACACGGCCGCGGAAACGGTCCTCGGTGAGGCGCTGAAAGGCGAGCGCCGGGAGTCCCTTGAAATCTTCACGAAGGTCTTCGGCGCCACCGGGCCCAAGGGCAAAAACGATGTGGGCCTGTCCCGCAAACACATCATGGAGTCCATCAATGGATCCCTGGGCAGGCTTCAGACCGACTACGTCGACCTCTACCAGGCGCACCGCTACGACTTTGAAACGCCGCTGGAGGAGACCATGCAGGCGTTTGCGGATATCGTGCGGCAGGGAAAGGCCCTGTATATCGGAGTCAGTGAATGGACGGCCGCCCAGCTCCGCGAAGGGCACGCGCTCTCCAAGGAACTGGGCTTCCAACTGATTTCCAACCAGCCGCAGTATTCCATGCTGTGGCGGGTCATCGAGGCTGAGGTGGTTCCGGCGTCGGAAGAATTGGGTGTATCCCAGATTGTCTGGTCCCCCATGGCCCAGGGAGTGCTGAGCGGCAAGTACCTGCCCGGCCAGCCGGCGCCCGAAGGCAGCCGCGCCACGGATGAGAAGGGCGGCGCCAGGATGATCGAACGATGGATGCGCGACGACGTCATTACCGGGGTTCAGGCGCTAAAGCCCATTGCGCAGGAAGCCGGGCTATCCATGCCGCAGCTTGCCGTGGCCTGGGTGCTGCAGAACCCGAATGTGGCCTCGGCCATCATCGGAGCGTCCCGGCCTGAGCAGATCGCGGACAGTGCGGCGGCGGCCGGCGTCACGCTTGAACCGCAGGTCATGAAGAAAATCGACGGCGCCATCGGGGCGCTGGCCGAGCGTGATCCTGCGCAGACTAAATCCCCCGCCACCCGGGAAGCCTAGMEFRYLGNSGFKVSEITFGNWLTHGSQVENEVASQCVRAALDAGISTFDTADVYANTAAETVLGEALKGERRESLEIFTKVFGATGPKGKNDVGLSRKHIMESINGSLGRLQTDYVDLYQAHRYDFETPLEETMQAFADIVRQGKALYIGVSEWTAAQLREGHALSKELGFQLISNQPQYSMLWRVIEAEVVPASEELGVSQIVWSPMAQGVLSGKYLPGQPAPEGSRATDEKGGARMIERWMRDDVITGVQALKPIAQEAGLSMPQLAVAWVLQNPNVASAIIGASRPEQIADSAAAAGVTLEPQVMKKIDGAIGALAERDPAQTKSPATREAPGPT0010570_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSTUMORICIDAL_COMPOUNDSTUMORICIDAL-TYPE_II_POLYKETIDE-MITHRAMYCIN_METABOLISM,PGPT0010570-mtmW-K15967NANA
D1-29_044941110msrP_3Protein-methionine-sulfoxide reductase catalytic subunit MsrPATGACAAAGCAGATCTACAGGCAACGTCCATCCACCCGCCCCGTGCCGCAGGCCGGCGAGCCCACCCCGGGGCCGCTGACACCCGAGGAGCTTCAGCTATCGGCCCGCAACCACTCCATGCCGCTGGAGGCGCTCCGGTACGACGTCACGCCCCCCGGGATGCACTACATCCTGACGCACTTCGATATCCCGGACACCGGCACGGGGCCTTGGCATCTGCGCATCGGCGGTGCGGTGGAACGGGCGATGGAACTCAGCCTTGCCGCGCTCAAAAAGGACCCCGCCATCACCATCCCGGTCACGCTGGAGTGTGCCGGCAACGGCCGCTCCCTGCTGAAGCCCCGGCCGCTCAGCCAGCCGTGGGTCCTGGAGGCAGTAGGCACGGCGGAGTGGACCGGGGTGCCGCTGGCCTATTTGCTGGCGAAGGCCGGGGTTCTGGACGAGGCCGTGGAGGTTGTCTTCACCGGTGCCGACGAAGGGATCCAGGGCGGCGTCCGGCAGAAGTACGCCCGCAGCCTGCCCATCCGGGAAGCGCTGCGCCCCGACGTCGTGCTTGCCTACAGGATGAACGGCGCGGACCTGCCGCCGCAGCACGGCTACCCCCTCCGCCTGGTGGTCCCCGGTTGGTACGGCATGACCAGCGTTAAGTGGCTGGAGTCCATCGAAGTGGTGACAGCCCCCTTTACCGGATTCCAGCAGCACGTGGCATACAGGTACCAGGACACCGCGGACGACGCCGGTACACCGGTTTCGCGGATCAGGATCCGTTCGCTGATGATTCCGCCGGGCATCCCGGACTTTTTCACGCGCAGGCGGTCGCTCCCGCCGGGGCCTGTGTTGCTGCAAGGCAGGGCCTGGTCAGGCGAGGCCGCGGTCACGGGCGTTGAGGTGGGGATCGACGGCGAGTGGCTGCCGGCCCAGCTGGAGAAACCTCCGGGCCCGTTCGCCTGGTGCAAGTGGACGCTGCCGTGGGTGGCCGATCCTGGCGAGCATATGCTGGCCTGCCGCGCCACGGATGCCACCGGGGCGGTCCAGCCGCTGGAACAGAACTGGAATTACCAGGGGCTGAGCAACAACATGGTGCAGCACGTGAACGTCACCGTGGAGTAAMTKQIYRQRPSTRPVPQAGEPTPGPLTPEELQLSARNHSMPLEALRYDVTPPGMHYILTHFDIPDTGTGPWHLRIGGAVERAMELSLAALKKDPAITIPVTLECAGNGRSLLKPRPLSQPWVLEAVGTAEWTGVPLAYLLAKAGVLDEAVEVVFTGADEGIQGGVRQKYARSLPIREALRPDVVLAYRMNGADLPPQHGYPLRLVVPGWYGMTSVKWLESIEVVTAPFTGFQQHVAYRYQDTADDAGTPVSRIRIRSLMIPPGIPDFFTRRRSLPPGPVLLQGRAWSGEAAVTGVEVGIDGEWLPAQLEKPPGPFAWCKWTLPWVADPGEHMLACRATDATGAVQPLEQNWNYQGLSNNMVQHVNVTVENANANANANA
D1-29_04495387hslRCOG1188Heat shock protein 15ATGACCAGCCTTCCTTCCTCCCCTGCCAGTGTTCGAATCGACGCTTGGCTGTGGGCCATTCGCGCCTACAAGACCCGCTCCGCAGCCACTGCCTCCTGCCGCGCCGGCCATGTACGCCTCAACGGCAGTCCGGCCAAGGCGTCCGCCACCCTGGTCACGGGGGACACTGTGACAGTCCGGATGTCTGGCTACGAACGGATTCTTGAGGTGAGGCGCCTGATTGCCAAGCGCGTTGGGGCTGAGGCCGCTTCCCACTGCTTCACCGATCACACCCCGCCGCGTCCCGTCGCGCCGGCCTTGGGTCTTCCGCAGCGGGACCGCGGCGCAGGGCGGCCAACCAAGAAGGACCGCCGCGAGATGGAGCGGCTCCGCGGGCCAGCACTTTAGMTSLPSSPASVRIDAWLWAIRAYKTRSAATASCRAGHVRLNGSPAKASATLVTGDTVTVRMSGYERILEVRRLIAKRVGAEAASHCFTDHTPPRPVAPALGLPQRDRGAGRPTKKDRREMERLRGPALPGPT0014620_1780DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762NANA
D1-29_04496591hypothetical proteinATGGGGACAGCAAAAGTGCTGGCCGTTCGGCGCATCTGCGGCGTTTCACGAACGCCGCATCGGCGGCTGGCCGTGGCAGGAATTCTGCTCGCAACGCTGCTGCTTCCGTCCCTGACCGGGTGCCAGCAGACACAGACACGTCCCGTACTGCCAACGGTGACCGAGCCGCCGTCGAACGTGGTGGAAAGCGCCCAAAAGTATGGACCGGTCATCGACGACATCCGTAGGGCGCTGGAAGATGAGTTCCCAGGTATCAGCTGGCGCGCGGGGGATGGATACGCCATCGCGGAGCGGACCGACGGGCAGTGCTCGCTCTGGCTGCCGTCGTTCCGGAGCAACGGTGACGTTGTGGGAGCGTCGGAGGAATTTCGGCGGGTTATGGACACTATCAATCCCGTGTTGGAACCGTACGGCTTCAGCCCCGTCTCAGTTCTGGATGAGGGGTCCGAAGGATGGTGGTCCGTCACGTCGGGCAATGCGCAGGGAGCCAGGGTGGGGATTTCCGGGCGGACGTCGGTCGAGTTGAGGCTTAACGTTCCTGTCGAGTCCGGCCGGTGTTCTCCCGAGGAGCTCGCGGGCCTCGCTCCATGAMGTAKVLAVRRICGVSRTPHRRLAVAGILLATLLLPSLTGCQQTQTRPVLPTVTEPPSNVVESAQKYGPVIDDIRRALEDEFPGISWRAGDGYAIAERTDGQCSLWLPSFRSNGDVVGASEEFRRVMDTINPVLEPYGFSPVSVLDEGSEGWWSVTSGNAQGARVGISGRTSVELRLNVPVESGRCSPEELAGLAPNANANANANA
D1-29_044971464nfdA_3N-substituted formamide deformylaseATGACCGGCCTCGTCCTGAAGTCCGTCCGCCAGCCCGGTAGAGACGCCATCTCGGACCTGCACATTGCGGATGGCGCGGTGAGCCGGATCAGCCCGGGAAGTGTGATTCCGGACGGCACACGCGTAGTCAGCCTGGATGGGCGTTATGTCATTCCCGGCCTCTGGGACGAGCACGTTCACATGGTCCAGTGGGCCCTGCATTCCAACAGGCTCGACCTGTCGGAGGTCCGTTCGGCCCGCGAGGCTGCGGCCGCCGTCGGATCCCACGGACTCGACGCCCTGCCTTCCGTCACAACCGTGGGCGTGGGCTTCCGCGATGCCCTCTGGCCGGATGTCCCCACTCTGGAAACGCTCGACGTCGCCACCGGCAATCAGCCGACGGCCCTGATCAGCCACGATCTGCATTGTGTGTGGGTGAACAGCGCTGCCGCGGCGCGCTACGGGGTGGCGGTTGACGGGAGCGGCCTGCTTCGGGAGGAACCGGCTTTCGCGCTGACCCGTGAACTTGGCAGACTGCCGGACGCGGTGGTGGACCGATGGGTCCGGGATGCTGCAGACGCGGCAGCTGCCCGGGGCATCGTGGGCATCGTTGATTTTGAGATGACCTGGAACCGGGACCCCTGGCTGCGGCGCATCGGCAGCGGCTTCGACGCCTTGCGGGTGGACGCGGGCGTTTATCCGGCGGACCTTGGGCGGGCCCGCAGCGACGGCATGCGCACAGGCCTGGTGCTCGACGGCGGGAGAGGACTGCTGCGCGTTGGCCCCCTGAAAGTGCTCATCGATGGCTCACTCAACACGCGCACCGCCTTCTGCACCGACCCATATCCCCACGGCGGCCACGGGCTGCTGACCGTCAGCGAGACGGAGCTGCTGGAGCTCCTGGAGGAGGCCAAGGCGGCGGGCTTCGTTCCGGCGGTACATGCCATCGGCGATGCTGCCAACCGGGTGGCCTTGGACGCCTTTGAACGCGCTGGTATCGGCGGCCGGATTGAGCACGCCCAGTTTGTCCGGCAGCAGGATCTTCCCCGGTTTGGCCAGCTGGGAGTTACCGCCAGCGTGCAGCCGGTCCATGCCCTCGACGACCGTGACGCTGCCGAGGCAAACTGGCCCGGCCGCACCGACCGGGCGTTTCCACTGAGGTCCCTCCTGGATTCAGGGGCCATCCTGGCACTTGGCTCAGATGCTCCCGTTGCGCCGATCGATCCATGGGGTGCCATGTCGGCCGCCACCACCCGATCCAGGCAGGACGGCCGCGGGCCCTGGCATCCCGAGCAGGGAATTAGCAGGCGGCAGGCTCTTTCGGCATCGGCGCGGGGACGTCGCCGTATCAGGGTAGGAGATCCGGCAGATCTCATGGTGCTCGACGCCGATCCGCTCACCGTTCCGGACGCGGTGTTTGCCGCGATGCCTGTTGCCGCCACGCTCCTGGCCGGCAGGTTCACCTACGACGGCGGGCTGGCTTAGMTGLVLKSVRQPGRDAISDLHIADGAVSRISPGSVIPDGTRVVSLDGRYVIPGLWDEHVHMVQWALHSNRLDLSEVRSAREAAAAVGSHGLDALPSVTTVGVGFRDALWPDVPTLETLDVATGNQPTALISHDLHCVWVNSAAAARYGVAVDGSGLLREEPAFALTRELGRLPDAVVDRWVRDAADAAAARGIVGIVDFEMTWNRDPWLRRIGSGFDALRVDAGVYPADLGRARSDGMRTGLVLDGGRGLLRVGPLKVLIDGSLNTRTAFCTDPYPHGGHGLLTVSETELLELLEEAKAAGFVPAVHAIGDAANRVALDAFERAGIGGRIEHAQFVRQQDLPRFGQLGVTASVQPVHALDDRDAAEANWPGRTDRAFPLRSLLDSGAILALGSDAPVAPIDPWGAMSAATTRSRQDGRGPWHPEQGISRRQALSASARGRRRIRVGDPADLMVLDADPLTVPDAVFAAMPVAATLLAGRFTYDGGLANANANANANA
D1-29_04498504hypothetical proteinATGGTCAGCAGGAAAACACTCAAGGCTGACGGATTTTCAGGATTCAGGGCAGTGGACGCCCTGGAGATTATGCGGGTGCCGCAGGGCACCGGCGTCTTTGCCGTGCTCAGGCCGGACGGATTCGAGCCCCAATTTCTACACAAAAGCACTGCCGGCGTCTTCAAAAAGAAGAATCCGTCGCTGCCCCTGCCGGCCCTTGGCGCCGAATGGATCAAGGACGCGGATGTCCTCTATATCGGCAAAGCCGGTCCCGGGAGCAAGGGTAACCGGGGACTGCGCCGCCAGATCCAGGAATTCCTCGATTTCGGGAAGGGAAAACCGCCGGGTCACTGGGACGGAAGGCTGGTGTGGCAGCTCAAGCACGCCGAATCGCTGCTCATCGCGTGGAAAGAACTGCCTGCCGGGGAACTGAACGCCGCCGAGGCCCGGCTGCACGCCGATTTTGTCGCGGAGTATGGCCGGTTGCCATTTGCGAACCTGGTGCAGGCCCGTGCGCGGAACTAAMVSRKTLKADGFSGFRAVDALEIMRVPQGTGVFAVLRPDGFEPQFLHKSTAGVFKKKNPSLPLPALGAEWIKDADVLYIGKAGPGSKGNRGLRRQIQEFLDFGKGKPPGHWDGRLVWQLKHAESLLIAWKELPAGELNAAEARLHADFVAEYGRLPFANLVQARARNNANANANANA
D1-29_04499618hypothetical proteinGTGACGATTGACTGGGACGAAAAAAAGGCCCTGCTACAGGAACCGAACATCGCGGCGGTCACGCAGCTTTGCGACGAACTGATGGAAAAGAAGCCAGGGTCAATCGTTCCCTACATCGATCCCGTGCATGACGAGGACGAATGCCGGATCGTGAGCCTGCAGGTAAGCCCCGGCAAGGGCACCGAGTCCGGGTTCATCTCCCACTACAACGACGACGAAGCCGCGCGCCGGGCCACCCAGATCTACGAACTCGCAGAGCTTGATCCCCGCTACGTCATGCCGTGGAACGCCTACCCCTGGATCCGGGATCCGGACCTTCCCTCCGCATTGAATGTCCAGGAGAAGACAGACGGCCTGCGCCCCTTCCGCCAGTTCCTGAAAATCAACCGCCGCGTCTCCGCCGTCATCGCCCACGGCACGGACGCCTCTACGTTCCTGACCCTCTTCGAGAAGACGTACCACTCCTCGCTCAAGAACAGCGGTATCAAGATCTACAAGGCCAGCGCCCTGGGCGGCCGGGCCTTCGCCGTCTCCGAAGCCAAGCAGGAGGACCTCCTGGCCAAGAGCGTGGAGATCTACCGGGACGCCATGCAGCGGGCCGGAATCCAGCACCTCTAGMTIDWDEKKALLQEPNIAAVTQLCDELMEKKPGSIVPYIDPVHDEDECRIVSLQVSPGKGTESGFISHYNDDEAARRATQIYELAELDPRYVMPWNAYPWIRDPDLPSALNVQEKTDGLRPFRQFLKINRRVSAVIAHGTDASTFLTLFEKTYHSSLKNSGIKIYKASALGGRAFAVSEAKQEDLLAKSVEIYRDAMQRAGIQHLNANANANANA
D1-29_045001176hypothetical proteinATGAAGCACCGGGTCGCGGATATCTACAAGGCAGGCGTGCTGGCTGCGCGGCTGGAGAGGCATGACGGCGGTACGCGCTTCAGCTACTTCACCGGCCTGCTCCCCGAGGGGCGCCGGCTCAACGCGCTGCGGCGGTCCGTCAAAACCAGTATTGATGATGATCTCTCCCTGCTGATTGCGGCAGGCGCCAACCCGGTGGGAGATGTCCAGATCGTCGGGCACGGTGAGCGGCTGGATCCTGACGAGCATGCGGTAGAGCTGGACACCCGGCAGCCCGTGGACTTCGACGAACTGCTGGGCAATCCGGACCTGATTGATCCAGTAGCCCTCGCCGGGGTGCAGGACAAGCTCTCCGCCGGGATGATTTCATTGCCGGTGGCCAGTGCAGGCAAACGCTTCATCCTCAAGCTCAACGCCCCCGAATTTCCCCATGTGGTGGAAAACGAGCTGGTCATGTTCCGCTACGCTGCAAGGCTGCGGATCCCGCTCAGCAGGGTCCGGCTGATCCGCGATGTGGCCGGCAGGCCCGGCCTGCTGGTGGAACGCTTTGACAGGGTCCCGGCAGCAGGGGGAGGACAGGCAGCAGCGGCAGGGCCGGCAGTCGACGGACCTGATATCCAGCGCCTGGCCGTGGAGGACGCGGCCCAAGTGCTCCGGCTCTACCCCGCGGACAAATACAACGTGGGCTACGGGCAGGTAGTCCACGCCTTGGCCGAATACTGCTCTGCGCCCCTCCCGGCGCTCCGTAACCTGGCGCTCCAGGCCGCTTTTGCCTGGCTCACGGGCAACGGTGACCTGCACGCAAAGAACGTCTCCATGGTTCAGCATCCGGAGGGGGAGTGGACCATTGCACCCGTGTATGACATCCCCTCCACGGTGGTCTACGGGGACAAAACACTGGCACTGACGCTGGGCGGAAAACGCAGCGGGATCTCCCGGCGGCACTTTCTGGCCTGGGCCACCGAACTTGGGCTGACGGAGCGTGCAGCGGCCCACGTGCTGGCGCTCGTATTGACGGCGTCCGGACCGCTGATTCCAGACCTCGAGGCAGGCCGCGCCTTCACCGGCGTGAACGCGGAGGAAGGGGACGACGACGGCGGCTCACCGTTTCCCGATCTGGTCACCAGATCGTGGGTCAAGGAGCTGAAGCACCGGCGGAGGCTGCTGGAAGGGTGAMKHRVADIYKAGVLAARLERHDGGTRFSYFTGLLPEGRRLNALRRSVKTSIDDDLSLLIAAGANPVGDVQIVGHGERLDPDEHAVELDTRQPVDFDELLGNPDLIDPVALAGVQDKLSAGMISLPVASAGKRFILKLNAPEFPHVVENELVMFRYAARLRIPLSRVRLIRDVAGRPGLLVERFDRVPAAGGGQAAAAGPAVDGPDIQRLAVEDAAQVLRLYPADKYNVGYGQVVHALAEYCSAPLPALRNLALQAAFAWLTGNGDLHAKNVSMVQHPEGEWTIAPVYDIPSTVVYGDKTLALTLGGKRSGISRRHFLAWATELGLTERAAAHVLALVLTASGPLIPDLEAGRAFTGVNAEEGDDDGGSPFPDLVTRSWVKELKHRRRLLEGPGPT0027480_2020DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
D1-29_04501267hypothetical proteinGTGGCAGAACCCATCAGTGCCCTCCTGGCAGCAGAGGTCCGGGCCCGGCGGGGAAGGCTGGGACTCACCCAGCAGGATCTTGCCGACATGGCGGGTGTGTCCGAACGCTTCGTCCGGTTCGTGGAGCAGGGAAAACCAAGCATCCAGCTGGATTCGCTGACTGCTGTACTTGAAACCCTTGGGCTGGAGCTCCGGCTGGCCGCCCGGCCCGGCAAGGCCGCCCACGCCCTCGCCACTCAGGCCAGGGACGGCGAGTCCAAACCATGAMAEPISALLAAEVRARRGRLGLTQQDLADMAGVSERFVRFVEQGKPSIQLDSLTAVLETLGLELRLAARPGKAAHALATQARDGESKPPGPT0027485_394DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027485-REGULATION_hipB-K15773NANA
D1-29_04502567hypothetical proteinATGCAGACCAGGCAGCAAACAGCAGAGGAAGCGCAACGCGAAAGACCTTTGACCCGGCCGGCTTCACGCAGCGCAACCCCGGCTCCCGGGCCCGGAGTGCGCTCTCTTGCGGTGGTTCGCATTCTGCTGGGGACAGTCTTTCTCTGGGCATTTCTGGACAAAACGTTCGGACTTGGTTTCGCAACGCTGCCGCAGAAAGCCTGGATCGCCGGCGGCTCACCCACGACTGGCTATCTCGGGAGTCTGGACGGAGCGTTCTCCGGCACCTTTCAGGCGCTAGCTGGAGCCGCCATCGTGGATTGGGCGTTTATGCTTGGACTCCTTGGTTTGGGAACCGCGCTGGTGTTGGGCATCGCGCTCCGCACCGCGGCCGCAGGCGGCACCATCCTTTTGGCCCTGATGTGGCTGTCTTCCCTCCCGCTCAAGAGCAATCCCGTCATTGACGAACACGTTATCTACGCTGCTGTCATCATCGCCCTTGCCGCCGTGCGCGCGGGGGACACGTTTGGCCTTGGCCGGCAATGGGCCGGCATGATCAAGAGTCCGTCGCTGCGCTGGCTGCGCTGAMQTRQQTAEEAQRERPLTRPASRSATPAPGPGVRSLAVVRILLGTVFLWAFLDKTFGLGFATLPQKAWIAGGSPTTGYLGSLDGAFSGTFQALAGAAIVDWAFMLGLLGLGTALVLGIALRTAAAGGTILLALMWLSSLPLKSNPVIDEHVIYAAVIIALAAVRAGDTFGLGRQWAGMIKSPSLRWLRNANANANANA
D1-29_045031854COG3387TrehalaseATGTTTGCTGCGGCGATCCCACGCCCGGTGGAGCGCCTCGATGGGTACCTGCCCATCGAGGATCATGGTCTCATCGGCGACGGTTCCACCTGTGCCCTGGTAGGGCGCGATGGTGCAATTTCCTGGCTCTGCCTCCCTGAATTCGACAGTCCCCCGTTCTTGGCAGGGCTTTTGGATATGGACGCGGGCGGGCTTTTCGAGATCGTCCCGGTGCCTCTGCACTCGTCGGCGCAAAGGTACACGGAAGACTCCTGCGTGCTGGTCACCTCGCTGTTCTCCGACCACGGCATGCTCCAGGTGACGGACTGCCTTACCCTTCGCTCCGGAGCGAACCTTGCCGAACCCGTCCCGGCCGGCCGGCGTGAGCTGCTCCGCCAGGCGCGGGCAGTGGGAGGCGATGTGCGGGTCCGGGTTCGCCTGACCCCCAAGATCGGCACGAGCTTTGACAAGCTTGCCGGCGGGTGGCGGTTTGACTGGCCGGTGAACGGCACCTCGGAAGTGTACCTTTGGTCGTCGGTGGAGCTTAGGCCTGACGGCCGCGGACTCTCCGCTGACTTGACCTTGCGCGCGGGCGAAACAATCACGGTCTCCCTCCACTGGTCCGGGCGCTTCCGGCTGCGTCAACGGCCGGACGCCAGAGTGCTGATCGACCAGACCGTGAGGGGCTGGCGCCAGTGGGCGTCAGGGCTGGACTGTGAGGGATCCCAGGCCGATCTGATGAAGCGCTCGGCCCTCACGCTGAAGATGCTGGACCATGCAGAGACGGGGGCGATCATGGCCGCCGCCACGTCCTCCCTGCCCGAATGGCCCGGGGCGCCCCGCAATTGGGACTACCGCTACACCTGGGTGCGGGACGCAGCATTCTCCAACTACGTCTTCCGCCGGATTGGCGATCCCAGCGATGCCGACGTGTTCCTCGCTTGGGTCCTCACCAACGTGGAGCGCGACGGCGAGCCACACGTGATGTACGCACTGGACGGCTCCCAGCCGCCTGAAGAAGTGGAGGACCCGGTGCTGCGCGGCTACCGGGGATCCTCCCCCGTACGTTGGGGAAATGGCGCCAGGCACCAGGCCCAGCACGATGTCTACGGAGAAATCGTGGACGTTGCCTACCAGTGGTCCAACAGCGGGCAGCCAGTGGACCGCCAGCTTTGGGCTGCCCTGACTCCTATCGTCGAGGCCGCCATCAGGAGCTGGAGAAGCCCGGACAGCGGGCCGTGGGAAGTCAGGAGCACCGGCCGGCCCTTCACCTATTCGGCAGCGATGTGCCACGTGGCCATCGACCGCGCTATCCGGATCGCCCGGCGACACAAGCTGCCGTATCCGAAACGGCGCTGGGAGGCGGCCGCGAGGGAGATTCACAACGCCACCCTTGGATTGTCCTGGAATGAGGATAAGGGAACCTTCACTGAACACCTCGGCGGCGCCGGTGGCCTTGACGCCGCCCTGCTGACGCTCCCCGTCCGGAACGTCATTTCGTTCAGTGACCCCAGGATGGTCGCCACCACCAAAGCCATCGCTGCCAACCTGGACGCCGGCGACGGACTGCTTTTCCGCTACCTGCCGTCGGAATCCCCGGACGGCCTCCCGGGCGGCGAAGGCGCTTTCCTCCTGTGCAGCTTCTGGCTGGTGGACAACTTGGCAGGGCAAGGACGTGTGGATGAGGCGCACGAGCTCTACGAATCCCTCTGCAGGCGGGCGAACCCCCTGGGACTGTTTCCCGAGCAGATCCATCCTGACACCGGGGAGTTCCTGGGGAACTTTCCGCAGGCCTTCAGCCACGTCGGCGTGCTGGCCAGCGGCCTGCGGCTCCTCAAAGCCCAGCAGCGCCGGCGCAGTGCCGAGGCTTCGTGAMFAAAIPRPVERLDGYLPIEDHGLIGDGSTCALVGRDGAISWLCLPEFDSPPFLAGLLDMDAGGLFEIVPVPLHSSAQRYTEDSCVLVTSLFSDHGMLQVTDCLTLRSGANLAEPVPAGRRELLRQARAVGGDVRVRVRLTPKIGTSFDKLAGGWRFDWPVNGTSEVYLWSSVELRPDGRGLSADLTLRAGETITVSLHWSGRFRLRQRPDARVLIDQTVRGWRQWASGLDCEGSQADLMKRSALTLKMLDHAETGAIMAAATSSLPEWPGAPRNWDYRYTWVRDAAFSNYVFRRIGDPSDADVFLAWVLTNVERDGEPHVMYALDGSQPPEEVEDPVLRGYRGSSPVRWGNGARHQAQHDVYGEIVDVAYQWSNSGQPVDRQLWAALTPIVEAAIRSWRSPDSGPWEVRSTGRPFTYSAAMCHVAIDRAIRIARRHKLPYPKRRWEAAAREIHNATLGLSWNEDKGTFTEHLGGAGGLDAALLTLPVRNVISFSDPRMVATTKAIAANLDAGDGLLFRYLPSESPDGLPGGEGAFLLCSFWLVDNLAGQGRVDEAHELYESLCRRANPLGLFPEQIHPDTGEFLGNFPQAFSHVGVLASGLRLLKAQQRRRSAEASPGPT0014070_156DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-TREHALASE,PGPT0014070-EC_3_2_1_28|alpha_trehalase-K22934NANA
D1-29_04504672lutR_4COG2186HTH-type transcriptional regulator LutRATGGCCCAGCCCTTGGCCCGGCTCAGTGCCGCCGAGGCAGTGTTCAATGCCATCCGTGCCGATATCGAGTCAGGCAAGGTAGCTGTAGGCGGCAAACTCAGCTCGGAAGCCACGCTTTCGCAGCAATATGGGGTAAGCCGCTCCGTCATCCGGGAAGCCTTGCGCTCCTGCACCGCCTTGGGCCTCACCGTCACCAAAACTGGCAAGGGCACCTTTGTGGTGGCCAACAAGGTGGCCAACGACCTCACATTGGGGCAGTACTCCGCCCGGGACCTCAACGAGGCCCGGCCCCACATCGAAGTGCCGGCTGCAGGGCTGGCCGCCCAGCGCCGCACCGATGAGGAACTGGAGACCCTCCGGCAGCTTGTGGCGGCAATGTCCACGGAATCCGATCCGGAATCGTGGGTTGCCCTGGACTCCAGCTTCCACGCGGCCATAGCGTTTGCCAGCCGCAACAAGGTCTTTGCCAGTGTGGTCGCAGAAATCAGGGGCGCCCTGGAGTTCCAATCCGAAACCCTGAACATGGTGGCTGACCGCCAGCACGCCTCAGACGTGGAGCATCAGAAGATTCTCGATGCCATCGAAGCAGGCTCCGCCGAAGAGGCAAGCGCCGCGATGGCTGAGCACCTGCACGCCGTGGGCCTCGCCCTCGAGTCCATCCTGAACAAGTAAMAQPLARLSAAEAVFNAIRADIESGKVAVGGKLSSEATLSQQYGVSRSVIREALRSCTALGLTVTKTGKGTFVVANKVANDLTLGQYSARDLNEARPHIEVPAAGLAAQRRTDEELETLRQLVAAMSTESDPESWVALDSSFHAAIAFASRNKVFASVVAEIRGALEFQSETLNMVADRQHASDVEHQKILDAIEAGSAEEASAAMAEHLHAVGLALESILNKNANANANANA
D1-29_045051164hypothetical proteinATGCCAACCCCCGCATTTTCCGCTGCCCAGAAGGCTGCCCGCACCGACGTCGGGCCTCTCGACGTGACTGGCACTGCGTCCGGCGCCGTGCCTGACGCCCTGACCGCAGAAGCGGCACCGGCAGCCCAAGATCTGCCGCAGCACGCCGCACTGGCGGTTGCCGTCCGCGACGGCCTGGTGGAAAGCGTGCACTACGGCTCGGTCATTGCCACCGCCCCGGATGGTTCGATCCTCGCGGCGGCCGGCGATCCCCTGGCCCCCTTCTATCCGCGTTCCTCACTCAAGCCGCTGCAGGCCGTAGCTATGGTCCGGGCCGGGCTGGAACTCCCGGCCGATTTGCTGGCCCTGGCCGCAGCCAGCCACTCCGGTGCTGCCAAGCACCGCGACGGCGCCCTGCGGATCCTGGAGCAGCACGGCCTCACGGCCAGCGACCTGGAAAACAGCACGGACCTCCCCTACGGCATCAATGAACGCGAAGAATGGCTCCGTTCCGGAGGTCGGCCAACCCAGCTCACCCAGAATTGCTCCGGCAAGCACGCCGCCATGGCCGCCACGTGCGTCATTAACGGCTGGCCTGTGCGCGGCTACCTTGAACCGTCCCACCCGCTGCAGCAGCTCGTGGCCCAAACCATTATCGAGTTGACCGGTGAGCAGCCGTTCGCCCTCAGCACGGACGGCTGCGGCACCCCTCTCCTGGCCTTGACCCTCCGCGGCATGGCGCGCGCCTTCGGCCGAATCGGCCGGGCCAGCGCCGCTGCCGGAAGCACGGGGAGGGACAGCAGCACACCCGGCGACGGCGGGACCCTGCCGCTGACAGCAGAAGCCACCGTTGGCCGTGCCATCCAGCAGCACCCTGACATGGTGGCCGGCGACCACCGGGACGTCACCGAACTGATGCACCTGCTGCCCGGCACCGTAGCCAAAGACGGTTTTGAGGGGATTCAGCTGGTGGGCCTGCCGGACGGCCGGGCCGTTGCCGTAAAAATCGCCGACGGCGCCGACCGCGCACGGATGCCCGTCACCGTGCGCGTCCTCAAGGCGCTGGGCGAGGACACCGCGTCCCTCGCCGGCATTGCCAGTGCACCCGTGCTGGGTGGAGGCCGCCAGGTAGGGCGGCTGCTGTCCACTGATTTTTTGTCCACGCCTGTCAAAGAAGCCGCGTGAMPTPAFSAAQKAARTDVGPLDVTGTASGAVPDALTAEAAPAAQDLPQHAALAVAVRDGLVESVHYGSVIATAPDGSILAAAGDPLAPFYPRSSLKPLQAVAMVRAGLELPADLLALAAASHSGAAKHRDGALRILEQHGLTASDLENSTDLPYGINEREEWLRSGGRPTQLTQNCSGKHAAMAATCVINGWPVRGYLEPSHPLQQLVAQTIIELTGEQPFALSTDGCGTPLLALTLRGMARAFGRIGRASAAAGSTGRDSSTPGDGGTLPLTAEATVGRAIQQHPDMVAGDHRDVTELMHLLPGTVAKDGFEGIQLVGLPDGRAVAVKIADGADRARMPVTVRVLKALGEDTASLAGIASAPVLGGGRQVGRLLSTDFLSTPVKEAANANANANANA
D1-29_045061503aspA_2COG1027Aspartate ammonia-lyaseATGACCACCCCCGATACCAGTAACGCCATCAAGGCCGCAGCCTCAACAAGGGCAGCGGACGGCATGGCGGCAAACTCCGCTGAGGAAAAGAAAGTGTCTACGCGTTCCGAGCATGATCTGCTCGGTGACCGGGACGTCCCGGCGGAGGCCTACTGGGGCGTGCATACCCTGCGCGCGGTGGAAAATTTCCCCATCACCGGCCAGCCGCTGTCCTCGAACATGCACCTGGTCCGCGGCCTGGCCGCGGTCAAACAGGCCGCGGCCCGCACCAACCTTGAACTCGGGCTCCTGGACCCCGAACGCGCCGCCGCGATCGAACAGGCCTGCACCGACGTGATCAACGGCCACTACGCTGACCAGTTCGTCGTGGACGTCATCCAGGGCGGCGCCGGGACCTCCTCAAACATGAACGCCAACGAGGTCATCGCCAACCGCGCCCTGCAAATCCTGGGCCACCCCAAAGGCGAATACACCCGCCTGCACCCCAACGACCACGTCAACCTCTCCCAGTCCACCAACGACGTCTACCCCACCGCCGTGAAACTGGGCACCATCTTCGCCGTCAAGGAACTCCTCGCCGCGCTCGAAGAACTCGAAGAAGCCTTCGCCGCCAAAGCCCTGGAATTCCGCACCATCGTCAAAATGGGCCGCACCCAACTCCAGGACGCCGTGCCCATGACCCTGGGCCAGGAATTCGGCACCTACGCCATCACCATCGGCGAAGACCGGCTCCGGCTCGCCGAAGCAAACCTGCTCATCCACGAAATCAACCTCGGCGCCACCGCCATCGGCACCGGCCTGAACGCCCCCGCCGGCTACACCGAAGCCGCCTGCCGCCACCTCGCCCACATCACCGGCCTGCCCCTGATCACCGCCCCGGACCTGATCGAAGCCACCCAGGACGTCGGCGCGTTCGTCCACCTCTCCGGCGTCCTCAAACGCGTCGCCGTGAAACTCTCCAAAACCTGCAACGACCTGCGCCTGCTCTCCTCCGGCCCACGCGCCGGCCTCGGCGAAATCAACCTCCCCGCCGTCCAGTCCGGCTCCTCCATCATGCCCGGCAAGATCAACCCCGTCATCCCCGAAGTAGTCTCCCAGGTCGCCTACGAAGTGATCGGCAACGACGTCACCATCACCATGGCCGCCGAAGCCGGACAACTCCAACTCAACGCCTTCGAACCCATCATCGTCCACAGCCTCCACAAGAGCATCTCCCACCTCCAGGCAGCCTGCACCACCCTCACCGCACGCTGCATCCGAGGCATCACCGCCAACACCGAACACCTACGCCTGACCGTGCAACAATCCATCGGCCTGGTCACCGCACTAAACCCGCACCTGGGCTACACCACGGCCACCGCCATCGCCCAGGAAGCACTCGCCACCGGCAAAGGCGTCGCCGAACTCGTCCTCGAACACGGACTGCTCACCGACGCGCAGCTCCAGGAACTCCTCAGCCCCGAACGCCTGGCAAACCTCACCAAACGCGCCACCCAGCAATAGMTTPDTSNAIKAAASTRAADGMAANSAEEKKVSTRSEHDLLGDRDVPAEAYWGVHTLRAVENFPITGQPLSSNMHLVRGLAAVKQAAARTNLELGLLDPERAAAIEQACTDVINGHYADQFVVDVIQGGAGTSSNMNANEVIANRALQILGHPKGEYTRLHPNDHVNLSQSTNDVYPTAVKLGTIFAVKELLAALEELEEAFAAKALEFRTIVKMGRTQLQDAVPMTLGQEFGTYAITIGEDRLRLAEANLLIHEINLGATAIGTGLNAPAGYTEAACRHLAHITGLPLITAPDLIEATQDVGAFVHLSGVLKRVAVKLSKTCNDLRLLSSGPRAGLGEINLPAVQSGSSIMPGKINPVIPEVVSQVAYEVIGNDVTITMAAEAGQLQLNAFEPIIVHSLHKSISHLQAACTTLTARCIRGITANTEHLRLTVQQSIGLVTALNPHLGYTTATAIAQEALATGKGVAELVLEHGLLTDAQLQELLSPERLANLTKRATQQPGPT0020125_861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020125-aspA-K01744NANA
D1-29_045071554ansP1COG1113L-asparagine permease 1GTGACACAGCCCCCAGTGACCGCCCAGCAACAAGCGGCCATCTCCGACCACACCATTCCGGCGCACGCCCATGCCTCCGAAGCAGCCCTGCATCAGGAGGATGAGGGCTACCACAAGGGCCTAAAGCCCCGCCAGGTCCAGATGATCGCTATCGGCGGCGCAATCGGCACCGGCCTGTTCATGGGTGCCGGCGGCCGCCTGGCCTCCGCCGGCCCCGCCCTGATCCTCAGCTACGCAGTCTGTGGCTTCTTTGCCTTTATGATCCTCCGGGCCCTCGGCGAACTGGTCATGCACCGGCCCTCCTCCGGTTCCTTCGTTTCATATGCCCGCGAATTCTTCGGTGAGAAGGCAGCGTTCGTCACCGGCTGGCTCTACTGGCTGAACTGGGCGATGACGGCGATCGTGGACATCACCGCCGTCGCGCTTTACATGAACTTTTTCAAGAAATACGTACCGGCCATTGCCGATGTCCAGCAGTGGATCTGGGCACTGCTCGCCCTCGTTCTGGTCCTTGGCCTGAACCTGGTTTCCGTCAAGGTGTTCGGCGAGCTTGAGTTCTGGTTCGCTCTCATCAAGGTGGTTGCCCTGGTGAGCTTCCTGGTCATTGGCATCTATTTCGTCATCTTCGGCACCCCTGTGGAGGGCCAGGAAGTTGGCTTCACCCTGATCGCCGACAACGGGGGCATGTTCCCCAACGGCCTGCTGCCGGCAATCGTGGTCATGCAGGGTGTGCTGTTCGCCTACGCCTCCATCGAGCTGATCGGTACCGCCGCCGGTGAAACGGAGAACCCGGAAAAGATCATGCCCAAGGCCATCAACACTGTGGTCCTGCGTATCGCTGTGTTCTATGTCGGTTCCCTGATCCTGCTTTCGCTGCTGCTCCCGTTCACGGCGTACAAGGCCGGCGAAAGCCCGTTTGTCACCTTCTTTGGCTCCATCGGCGTGGAGGGCATCGACGCGATCATGAACCTTGTAGTGCTCACCGCGGCGCTGTCTTCGCTGAACGCCGGGCTGTACTCCACGGGACGCATCATGCGCTCCATGTCGCTGGCCGGCTCGGCGCCGAAGTTCGCCGGGCGGATGAACAAGGCCGGCGTTCCCTACGGCGGCATCGCGCTGACCGCAGTGGTGGCTGTCCTTGGTGTGGTCCTCAATGCGATCGTCCCGGCGGAAGCATTCGAGATTGTCCTGAACGTCGCCTCGCTGGGCATCATCAGCACCTGGGCCATGATCGTCCTGTGCCAGATGCAGCTGGCTAAGCTCGCCAAGCGGGGAGAGGTGCTGCGCCCGGCCTTCCGGATGCCCGGCGCCCCGGTAACGGGCTGGCTTACCCTCGCTTTCCTTGCCGCGGTGCTGGTCATGATGGCCTTTGACTCCCCGGCCGGGACCTGGACTGTCGCTTCGCTGGTGGTCATCATTCCGGCCCTGATGCTCGGCTGGTACCTCTGCCGCGACCGCGTCCTGGAAATCGCCTCGATCCGCGACGGCCACACCGGACCTTACCCCCTGGTGGCCAACCGGCCGGCCCCCGGTACGGGCAAGGACGGCAAGTAAMTQPPVTAQQQAAISDHTIPAHAHASEAALHQEDEGYHKGLKPRQVQMIAIGGAIGTGLFMGAGGRLASAGPALILSYAVCGFFAFMILRALGELVMHRPSSGSFVSYAREFFGEKAAFVTGWLYWLNWAMTAIVDITAVALYMNFFKKYVPAIADVQQWIWALLALVLVLGLNLVSVKVFGELEFWFALIKVVALVSFLVIGIYFVIFGTPVEGQEVGFTLIADNGGMFPNGLLPAIVVMQGVLFAYASIELIGTAAGETENPEKIMPKAINTVVLRIAVFYVGSLILLSLLLPFTAYKAGESPFVTFFGSIGVEGIDAIMNLVVLTAALSSLNAGLYSTGRIMRSMSLAGSAPKFAGRMNKAGVPYGGIALTAVVAVLGVVLNAIVPAEAFEIVLNVASLGIISTWAMIVLCQMQLAKLAKRGEVLRPAFRMPGAPVTGWLTLAFLAAVLVMMAFDSPAGTWTVASLVVIIPALMLGWYLCRDRVLEIASIRDGHTGPYPLVANRPAPGTGKDGKPGPT0000815_1640DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-29_04508696lutR_5COG2186HTH-type transcriptional regulator LutRATGTATGCCGCTAAGATGAGTCCCATGGCAGTCACTGATGAAGCGATCGGCAAGATTAAGGAGATGCTCCTTCGGGGCGAACTCAGGGCCGGCGACCGCCTGCCTCCGGAGAAGGAGCTCAGCGACCGGCTGGGCCTCTCACGGAGCTCCCTGCGCGAGGCAGTCAAGGCGTTGGAGCTCATCAAGGTCCTGGACGTGAGGCGCGGGGATGGCACGTATGTCACCAGCCTGGATGCGAAGCTGCTCAATGAGGCCGTGGCTTTTGTGGTGGAACTCCATCAGGACAAGTCCATCCTTGAACTCTTCGAGGTCCGACGTATCCTCGAACCCGCCACCGCCTTTATCGCCACGGGAAAAATCGGCGCCACCGAACTCCTTGAACTCAGCGCCACCATGGAGGGCATCGACGAGAACACGGACGTGGAGGAACTGGTCGCCCATGACTTGGAGTTTCACCGCATTATCAGCAGGGCGGCGGGCAACGCGTATCTGGAAAGCCTGCTGGATGCCCTTTCCGGCAGCACGGTGCGCGCCCGCATCTGGCGCGGGCTCACGCAGGAGCGGGCGGTTGCGCACACGCTTGCCGAGCACAAGGCCATTGCCGATGCCCTGGAACGCGGCGACGCGGAACTTGTCAGGGCCCTGGTGACCGTGCACATCAGTGGTGTGGAGAGCTGGCTGCGGCAGGCACTCTAAMYAAKMSPMAVTDEAIGKIKEMLLRGELRAGDRLPPEKELSDRLGLSRSSLREAVKALELIKVLDVRRGDGTYVTSLDAKLLNEAVAFVVELHQDKSILELFEVRRILEPATAFIATGKIGATELLELSATMEGIDENTDVEELVAHDLEFHRIISRAAGNAYLESLLDALSGSTVRARIWRGLTQERAVAHTLAEHKAIADALERGDAELVRALVTVHISGVESWLRQALNANANANANA
D1-29_04509996alsBCOG1879D-allose-binding periplasmic proteinATGAACAAGCCCACTTTTGATCGCCGCAGTTTCCTCACCTTGTCCGGCCTGGCGCTGGGCGTGGTGGCAATCGCCGGCTGCGAGGCACCGGCAGGAACGCCGGCCGGAACTGCCGCCGGCGGAGCCAAGCCTTACATCGCCATCGTTTCCAAGGGGTTCCAGCACCAGTTCTGGCAGGCCGTGAAGCAGGGCGCTGACCAGGCCGCCAAGGAGTTCGACGTCGAAGTCAGCTTCGAGGGTCCCAACACTGAGAAGGACGTGGACCAGCAGATCCAGATGCTGACCACCGCCCTGGGCAAATCGCCGGCCGCCATCGGTTTTGCTGCCCTCGACTCACAGGCAGCCACGCCGCTGCTGGAACAGGCCAAGGGCAAGAACATCCCGGTGGTTGCCTTCGACTCCGGCGTCGACTCGGACATTCCCGTCACCACGGCATCCACGGACAACAAGGCTGCCGCTGCGGAGGCCGCCAAACACCTTGCCGAGCTCATTGGCGGCAAGGGTGAGATCGCCATCATCGGCCACGACCAGACGTCCAAGTCGGGTACGGACCGGCGGGACGGTTTCAAGGAATACATCGAGAAGAACCACCCGGAAATCAAGATCGTGGCCATCCAGTATGCCGGCGGCGATCAGCTCCTCTCCGCCGATGCCGCCAAGGCCATTGTGACGGCCAACCCCAACCTCAAGGGCATGTACGGCACCAATGAGGGTTCGGCCATCGGCGTGGTCAAGGCTGTGGAGGAACTTGGCCTCAAGGGCAAGCTGACCATTGTTGGCTTCGATTCCGGCAAAGCCCAGATCGACGCCATCCGGTCCGGGCTGATGGCCGGTGCCGTGACGCAGAACCCGGTGGGAATCGGCTACGAAACCGTGAAGGCTGCCGTGGCCGCGATCAAGGGCGACAAGCTGGAGAAGGTGGTGGATACCGGGTTCTACTGGTACGACGCCACGAACATTGACTCGGAGAAGATTAAACCGAACCTCTACCAGTAGMNKPTFDRRSFLTLSGLALGVVAIAGCEAPAGTPAGTAAGGAKPYIAIVSKGFQHQFWQAVKQGADQAAKEFDVEVSFEGPNTEKDVDQQIQMLTTALGKSPAAIGFAALDSQAATPLLEQAKGKNIPVVAFDSGVDSDIPVTTASTDNKAAAAEAAKHLAELIGGKGEIAIIGHDQTSKSGTDRRDGFKEYIEKNHPEIKIVAIQYAGGDQLLSADAAKAIVTANPNLKGMYGTNEGSAIGVVKAVEELGLKGKLTIVGFDSGKAQIDAIRSGLMAGAVTQNPVGIGYETVKAAVAAIKGDKLEKVVDTGFYWYDATNIDSEKIKPNLYQPGPT0015740_2826DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
D1-29_045101038rbsCCOG1172Ribose import permease protein RbsCATGAGCATCGTACAAACCCCCACACCGAAAGAATCCACGGTGCTGACGGCGAAGTCCCAGCCCACACGGGGAAACGGCCTTAGCCTGCGGCTTCGCTCCTCCCTGCAGCAGCTCCTGGCCTTCGGCTCGCTGATTGTCCTGGTGGTTTTCTTTGGAGCCATGAATTCACGGTTCCTGCTGCCCGGCAACCTCTCGGACATCCTCCTCTCCACCGTTGTCATCGGACTGCTGGCGCTTGGCGCCACGTTTGTCATCATCACGGGCGGCATCGACCTTTCGGTGGGCACCGGAATGAGTCTGTGCTCGGTGATGGTGGGCGTGGTGCTGACCTACCTGGGCCTGCCGCTGTGGGCCGGGGTGGTGGGCGGCATCCTGATGGGTGCGCTGATCGGGGCGGTGAACGGCTTCCTCATCTCGTTCCTGAAAATTCCGCCCTTCATCGCCACACTGGCAACCATGCTGGTGGCCCAGGGCATGGCGCTGGTGGTCTCGGGAACCAAGCCCATCTACTTCACCGGGACCGAAGGCTTTTCCAACCTCGCCCTCGGTAAGCCGATCGTCGGACTGGTGATTCCAAACGCTGTGTTCATCTTCTTCGCCGTGGCCACCGTGGCGGGCGTGGTGATGAGCAAGACCCTCCTGGGCCGCTACACCTTCTCCATCGGATCAAACGAGGAGGCAACGGCACTGTCCGGCATCAACGTCCGCAGCTGGAAGCTCTGGATCTACACCGCGGCGGGCGCCTTCACTGGGCTGGCCGGTGTCATCATCGCTGCCCGGCTTAACTCCGCCCAGCCCGGGCAGGGCATGGGATATGAGCTCCAGGCGATTGCCGCCGTCGTGATCGGTGGAACCTCCCTGGCCGGAGGCAAGGGCTCCATCGTGGGAACGGTGATTGGTGCCCTCATCATGTCCGTCCTCACCAATGGCCTGCGGGTCATCTCGGTGCCGCAGGAGTGGCAGAACGTGGCCATCGGCGTTGTGATCCTGGTGGCCGTCTACCTGGACATGCTTCGCCGGAAGGAGGCTGCCACGTAGMSIVQTPTPKESTVLTAKSQPTRGNGLSLRLRSSLQQLLAFGSLIVLVVFFGAMNSRFLLPGNLSDILLSTVVIGLLALGATFVIITGGIDLSVGTGMSLCSVMVGVVLTYLGLPLWAGVVGGILMGALIGAVNGFLISFLKIPPFIATLATMLVAQGMALVVSGTKPIYFTGTEGFSNLALGKPIVGLVIPNAVFIFFAVATVAGVVMSKTLLGRYTFSIGSNEEATALSGINVRSWKLWIYTAAGAFTGLAGVIIAARLNSAQPGQGMGYELQAIAAVVIGGTSLAGGKGSIVGTVIGALIMSVLTNGLRVISVPQEWQNVAIGVVILVAVYLDMLRRKEAATPGPT0016590_5526DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
D1-29_045111533rbsA_3COG1129Ribose import ATP-binding protein RbsAATGACCGCGGATCAAACAACGCTGTTATCCGTGCGCGGGGTGGGCAAGACATTCCCCGGGGTCAGGGCTTTGCACAACATGCAGTTGGACCTTCGGCACGGTGAAGTGCTGGCGCTGGTAGGCGAAAACGGTGCGGGCAAGTCAACGCTCATGAAGCTGCTCTCCGGCATCTACGTTCCCGACCAGGGAACCTTCGAGCTCAACGGCGTGGCCTTTACGCCGGCCGGACCAAAGCACGCGCAGGAACTGGGCATCAGCATCATCCATCAGGAGTTCAACCTGATGCCGGACCTGACGGTGGCCCAGAACATCTACATTGGCCGCGAACCCCGGCACTATGGGATCCTCAGCGAGCGCGCCCTGAACCGGAAAACCCAGGACCTGTTTGACCGGATGAGCCTCAAACTGGACCCCCGGGAGCGCTGCGGGGACCTGACAGTGGCAAAGCAGCAGATGGTGGAGATCGCCAAGGCCTTGAGCCATGACTCCAAGGTGATCATCATGGACGAGCCCACAGCCGCCCTCAATGACGCCGAGGTGGCCACCCTGCACGAACTGATCCGCGGCTTTGTTTCATCTGACACCGGCGTCATCTACATTTCTCACCGAATGGATGAGCTCAAGCAGATTTCCCAGCGCATCACCGTTATCCGCGACGGCGAATATGTGGACACCGTGGATACCGCGGCGAGCACCATGCGGGAGGTCATCTCGCTGATGGTGGGCCGTTCCATCTCCGGCGAACAGCGGCCGGCGGCCGAAGAAACACACCGTGCTGACGACGTCGTCCTGGCTGTTGCCGGGCTGTCCACTCCGTCCCTGCTGAAGGACGTCAGCTTTGAGCTGCGCCGGGGCGAGATCCTCGGGTTCGCCGGGCTGATGGGCGCCGGCCGGACGGAGGTTGCCAGGGCCCTGGTGGGCGCGGACAAAGCCAGCTTCCGGCAGCTGCAGGTGAACGGGGCCGACGCGCGGATTCCTAACCCGGCGGCCGCCGCGAAACTGGGAATCGGCTACCTCTCCGAGGACCGGAAGCATCTTGGCCTGCTCCTGGAACGCGACGTCAAGGAGAACATTATGCTCTCCTCGCTGGCAAAAAATTCGACGGCGGGATTCATCAATGACGGGTCCCTGCGCCGCACGGCCGACGAATACTCGCGGAAGCTTCGGATCAAGACGCCGTCCATCAAGCAGCTGGCCCGGAATCTTTCCGGCGGCAACCAGCAGAAGGTGGTTATCGCCAAATGGCTCGTCAAGGACTGTGACATCCTCATCTTTGACGAGCCCACCCGCGGCATTGACGTGGGCGCCAAGGACGAAATCTACAAACTGCTGAACGAACTCGCAGCTGAGGGCAAGGCGATCATCATGATCTCCTCGGAACTTCCCGAAGTCCTGCGCCTGTCCCATCGGATCGCCGTCATGTGCGAAGGGCGAATCACCGGCTTCCTCACCAACGCCGAAGCCACCCAGGAAAACATCATGGAGCTCGCCACCCGACGGGTCTCCATCACCACAGGAGCACCAACCTCATGAMTADQTTLLSVRGVGKTFPGVRALHNMQLDLRHGEVLALVGENGAGKSTLMKLLSGIYVPDQGTFELNGVAFTPAGPKHAQELGISIIHQEFNLMPDLTVAQNIYIGREPRHYGILSERALNRKTQDLFDRMSLKLDPRERCGDLTVAKQQMVEIAKALSHDSKVIIMDEPTAALNDAEVATLHELIRGFVSSDTGVIYISHRMDELKQISQRITVIRDGEYVDTVDTAASTMREVISLMVGRSISGEQRPAAEETHRADDVVLAVAGLSTPSLLKDVSFELRRGEILGFAGLMGAGRTEVARALVGADKASFRQLQVNGADARIPNPAAAAKLGIGYLSEDRKHLGLLLERDVKENIMLSSLAKNSTAGFINDGSLRRTADEYSRKLRIKTPSIKQLARNLSGGNQQKVVIAKWLVKDCDILIFDEPTRGIDVGAKDEIYKLLNELAAEGKAIIMISSELPEVLRLSHRIAVMCEGRITGFLTNAEATQENIMELATRRVSITTGAPTSPGPT0016600_1763DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
D1-29_04512969hypothetical proteinATGATCGACTCCCACTTGCACCTATGGGACCTGCAGTCGGCGAACCAGCCACTAGAAACCGGGCGATCCCTGGAACAGGACGGCGCGGCGCGCCCCTACTCGTGGCTGGGACCGCAGCATGGAGCGCTCTTTCGCAGCTTTGGGGAAGCGGAGGCCCAGCAGACCATCTCCGATGCCGGAGTCAGCGCCGCGGTACTGGTGCAGGCTGACGACACCCTTGCCGACACGGAATCCATGCTCGCCGTTGCTGACCGCAATGACTGGGTCATCGCCGTCGTGGGCTGGATTCCTTTGGAACATCCGGAGCAGGCAGCAGCTGCGCTGGAACGGTTTGCCCGGAACCCCAAGTTCCGGGGCGTCCGCCACCTGATCCATGACGATCCACGGGACAACTTCCTGGAGCTTCCGGAGGTCCGCGAGTCTTTGCGGCTGGTGGCCGACCGGGGCCTGACACTGGACATTCCCGATGCCTTTCCCCGGCATCTGGGCCCGGCCGCAGATCTGGCCCGCGACCTTCCGGAGCTGACAGTTGTGCTGGATCACCTGGGCAAGCCGCCCATCGGAGCCAACGGCGGACCTGAAGCAGGCGCTGAAGCAAACCAGGGTCTGGACCGCTGGCGCCGGGAGTTCCGGGCCTTGGCCGGGTTGCCCAATACAGTGGCAAAAGTATCCGGCCTGTACATGCCGGGAACGGAATATACAGCCGAGACGCTGCGCCCGGCCTGGGACGAGGCCCTGGCAAACTTTGGGCCCGAAAGGCTCATGATCGGGATGGACTGGCCGGTCAGCATGCTCGGGGCACCGTATCAACGCACATTGGATGTGTTGCTGGAGCTGGCGGAGGAGCTTGATGCTGCAGGTAAGCACGCTTTCCTCGAAGCCACGGCGCGGCACATCTACGGGACGCAGCACACAGAAGACATGCCGGAATCGGCAACAACAAGCAAGGAAGATGAGGTGAGAGCATGAMIDSHLHLWDLQSANQPLETGRSLEQDGAARPYSWLGPQHGALFRSFGEAEAQQTISDAGVSAAVLVQADDTLADTESMLAVADRNDWVIAVVGWIPLEHPEQAAAALERFARNPKFRGVRHLIHDDPRDNFLELPEVRESLRLVADRGLTLDIPDAFPRHLGPAADLARDLPELTVVLDHLGKPPIGANGGPEAGAEANQGLDRWRREFRALAGLPNTVAKVSGLYMPGTEYTAETLRPAWDEALANFGPERLMIGMDWPVSMLGAPYQRTLDVLLELAEELDAAGKHAFLEATARHIYGTQHTEDMPESATTSKEDEVRAPGPT0017915_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064NANA
D1-29_04513993fdh_2D-threo-aldose 1-dehydrogenaseGTGAACGCGCCACTGCCCCTCGGCGCCCTGGGCTTTGGGGGAGCGGGTATCGGCAACCTCTACCGCGCCATGCCAGACACCAGGGCCACCGCCACCGTTGAAGCAGCGTGGGAGGCCGGCATCAGGTACTTCGACACGGCCCCCCACTATGGACTGGGCCTGTCGGAGCGCCGGCTGGGCGGGGTGCTTCGGGGAAAGCCGAGGAATGAATTTGTGCTGTCCACCAAGGTGGGACGCCTTCTGGTACCGCACCAGGGCGTTCTGACGGGTGGTACGCCGCCCGATATCCATGCCGCTGAGGATGCACCGGGCGACCCCGAAGGCTTCGACGTGCCCGCCCTGAGCAGGCGCGTCTGGGACTTTTCAGAACAGGGTATCCGGCAAAGCCTGGAGGACTCGCTCGAGCGTCTCGGCCTGGACCAGGTGGACATTGCCTACCTGCACGACGCCGATGTCCACGATCTCGCCGCCGGCATCCGCGACGGGTTGCCTGCGCTGGAGAAGCTGCGCTCCGAAGGGCTGGTTCGCGCCATCGGCGTGGGGATCAACTCGGCGGAGGCAGCGCTGGAATGCGTCGAGGCCGCGAACCTGGACCTCGTGATGCTGGCCGGACGCTACACGCTGCTGGAGCAGCCGCAGGTTCCGCTGCTGGAGCGCTGCGTGGAAAAGGGTACAGGAGTGGTAAATGTTGGAGCCTACAATTCCGGACTGCTGGCGCGGCAGGATGTTCCTGATGACGCGCACTATAACTATGGGCAGGCGCCGCACGAAAAGATTGAGCGTGCCCGGCAGCTCGCCGGCATCTGCGCACGCTTTGGTGTGGAACTTCCGACGGCGGCCCTGCAGTTCGGGCTGCGCCACCCGGCCGTGGTCAATGTGACAGTGGGGGCAACGTCCCCGGAACAGATCCGGGACAACGCTGCCCGGATGGCTGAAGAAGTTCCCGGCGAACTTTGGGCAGAACTGTTGCGGCAGGAGCTGATCCCCTCATGAMNAPLPLGALGFGGAGIGNLYRAMPDTRATATVEAAWEAGIRYFDTAPHYGLGLSERRLGGVLRGKPRNEFVLSTKVGRLLVPHQGVLTGGTPPDIHAAEDAPGDPEGFDVPALSRRVWDFSEQGIRQSLEDSLERLGLDQVDIAYLHDADVHDLAAGIRDGLPALEKLRSEGLVRAIGVGINSAEAALECVEAANLDLVMLAGRYTLLEQPQVPLLERCVEKGTGVVNVGAYNSGLLARQDVPDDAHYNYGQAPHEKIERARQLAGICARFGVELPTAALQFGLRHPAVVNVTVGATSPEQIRDNAARMAEEVPGELWAELLRQELIPSPGPT0017915_1022DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017915-pld-K00064NANA
D1-29_04514315rhaM_2L-rhamnose mutarotaseATGCCTGAGACCATCGTCCTGCACACCAGGCTGAAGGTGGGTGCCGCCGAGGCATATGCGGACGCCCATGACGCCATACCGGCGGAGCTCGTGGCGGCCCTGAAGGGAGCCGGCGTGGTTAACTGGCGCATCTGGCGCAGCGGCCGCGAGCTGATCCACCTGGTGGAAGTGGAGGACTACAAGCGCATGCGCCGCGAACTGGCCCAGCATCCAGCCAACGTCCCCTGGCAGGCGCGGATGGCCGAGCTCCTGGAAGTGCAGGACGATTACAGCGGACAAGACTCCGGCATACCGCTCGTTTGGGAGCTGCCGTGAMPETIVLHTRLKVGAAEAYADAHDAIPAELVAALKGAGVVNWRIWRSGRELIHLVEVEDYKRMRRELAQHPANVPWQARMAELLEVQDDYSGQDSGIPLVWELPPGPT0017795_1140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_RHAMNOSE_DEGRADATION,PGPT0017795-rhaM|rhaU|yiiL-K03534NANA
D1-29_045151368COG4948L-fuconate dehydrataseGTGAGCATCATTACCGCGGTAGAAACCTTTGACATCCGCTTCCCCACGTCCAGGGACCTCGATGGTTCCGACGCCATGAATCCGGATCCGGATTACTCGGCCGCCTACCTGATCATTGGCACTGATGCCGGGGACGGTCTCGAGGGCCATGGATTCGTCTTCACCATTGGACGCGGAAATGAGGTGGAGGCGGCTGCAATCGATGCCCTTCGCCCGCACATCCTTGGCCGGAACGCTGAAGAGCTGCTGGACGACATGGGATCCACGTGGAAGCTGCTGGCCCACGATTCCCAGCTGCGGTGGCTGGGCCCGGAAAAGGGTGTAATGCACATGGCGATTGGCGCAGTGGTCAACGCCCTGTGGGACCTCAAAGCCAAACGTGCCGGGTTGCCGCTGTGGGACTTGCTGGCGGGTCTTAGCCCTGAGGAGATCATTGCCCTGGTTGACTTCCGTTACCTCAGCGACGCCCTCACCCCCGAGGAGGCACTGGAGATCCTCCGTAAGGCCGAACCGGGGAGGGCTGAGCGCCGCGCGCGCCTCCTTGAGGAAGGCTACGCCGGCTACACCACCACGCCCGGCTGGCTCGGGTACAGCGACCAGAAGCTGACACGGCTGGCCAAGGAAGCTGTGGCGGATGGCTTCAGCCAGATCAAACTGAAGGTTGGCGCTTCGCTGGAGGACGACCTCCGCCGTGTCCGCGTGGCCCGTGAAGCGGTGGGACCAGACATCAAAATTGCCGTCGACGCCAACCAGCGGTGGGATGTGCAGGACGCGATTGAATGGATGCGTCACCTGGCGCCCTACGACATCGCCTGGATTGAAGAACCCACCAGTCCTGACGACATCCTGGGCCACGCGGCCATTGCCAGGGGCGTCGCGCCCATTCCCGTGGCCACCGGGGAGCACGTCCAGAACCGGGTGATGTTCAAGCAGCTGCTGCAGGCGCAATCCCTGGAAGTACTCCAGATCGACGCGGCCCGCGTGGGCGGTGTGAACGAGAACATCGCGATCCTGCTGCTCGCCGCCAAGTTCGGTGTCCGGGTTTGCCCCCATGCAGGCGGTGTTGGCCTCTGTGAGGCAGTCCAGCATCTGTCCATGTTCGATTTCATTGCTGTCTCGGCCGACAAAGACGGCCGTATGATTGAATTCGTTGACCACCTCCACGAGCATTTCATCACTCCCGTGGACGTTCACGATGGCTGTTACTGGCCACCGTTAGCACCAGGTGCCGGCGCGGAGATGCACCGGAATACGCTGGCTGTTTACAGTTACCCGGACGGCGCGGAATGGAGCGCCACATCAGCCACTGACGGCAGTTACGAGCTGGTGCCGGAATTCCCCCTCAAAGAAGCCGCAGCTGATGCCTGAMSIITAVETFDIRFPTSRDLDGSDAMNPDPDYSAAYLIIGTDAGDGLEGHGFVFTIGRGNEVEAAAIDALRPHILGRNAEELLDDMGSTWKLLAHDSQLRWLGPEKGVMHMAIGAVVNALWDLKAKRAGLPLWDLLAGLSPEEIIALVDFRYLSDALTPEEALEILRKAEPGRAERRARLLEEGYAGYTTTPGWLGYSDQKLTRLAKEAVADGFSQIKLKVGASLEDDLRRVRVAREAVGPDIKIAVDANQRWDVQDAIEWMRHLAPYDIAWIEEPTSPDDILGHAAIARGVAPIPVATGEHVQNRVMFKQLLQAQSLEVLQIDAARVGGVNENIAILLLAAKFGVRVCPHAGGVGLCEAVQHLSMFDFIAVSADKDGRMIEFVDHLHEHFITPVDVHDGCYWPPLAPGAGAEMHRNTLAVYSYPDGAEWSATSATDGSYELVPEFPLKEAAADAPGPT0017495_445DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017495-fucD-K18334NANA
D1-29_04516879Ureidoglycolate lyaseATGGATATCAAGCTGGCCCGGCTCGGAGAGCGTGGCAAAGAAGAACCGGTGGTGCTCATGGCCGACGGGAGCGGGGACCACAAATACTTCAGCCTCGCTGCCCTCACGCAGGACATCGACGGCGCCTTCCTCGCTGCAGACGGCATTCAGCGGACGCGTGAAGCTCTGGCAGCCGGGGAACTGGCGGAGGTTTCAGCTTCCGGGGTCCGGATCGGGGCGCCGGTTGCCCGTCCCGGCTCAATCATTTGCATTGGCATGAACTATGCGGCGCACGCCGCAGAATCAGGCTCGGCTCCGCCCGAGATTCCGGTCGTTTTCCTCAAGCCGGCCAACACCGCCAGTGGCCCTTTCGACGCGGCCCCCATCCCGCCGTCGTCGGAAAAATACGACTGGGAAGTGGAGCTCGGCGTTGTTATCGGACGGGAAGCGAGCTACCTTTCCGATCCCGGCCAGGCTTTGGAGTGCGTTGCCGGATACCTCGTGGCCAACGACCTCTCGGAGCGGAACTATCAGCTGCCAGGTGCCGCAGGCCAGTGGACGAAAGGCAAGTCCCTCCCCGCCTCCACACCGCTTGGCCCCTGGCTCGTCCCCGCCGACCAGGTCAACGCCGGCCGCCTTCAGCTCCAGACCAGGGTCAATGGCGAAGTCCGGCAGGACTCCTCCACAGCCGACCTGATTTTTGACGTCCCCACGCTGGTACACCACGTCAGCCAATACATGCTCCTTGAACCAGGAGATGTCATCCTCACCGGCACTCCGGAAGGCGTGGCCCTGTCCGGCCGGTTCCCTTATCTCCAGCCGGGAGACGTGGTGGAACTGGACATCGAAGGCCTGGGCCGCCAACGCCAGGAGTTTTACCGTGAAGGAGCATTGCAGTGAMDIKLARLGERGKEEPVVLMADGSGDHKYFSLAALTQDIDGAFLAADGIQRTREALAAGELAEVSASGVRIGAPVARPGSIICIGMNYAAHAAESGSAPPEIPVVFLKPANTASGPFDAAPIPPSSEKYDWEVELGVVIGREASYLSDPGQALECVAGYLVANDLSERNYQLPGAAGQWTKGKSLPASTPLGPWLVPADQVNAGRLQLQTRVNGEVRQDSSTADLIFDVPTLVHHVSQYMLLEPGDVILTGTPEGVALSGRFPYLQPGDVVELDIEGLGRQRQEFYREGALQPGPT0001745_124DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001745-lra6-K18336NANA
D1-29_04517774tsaC14-formylbenzenesulfonate dehydrogenase TsaC1/TsaC2GTGACTGCCACACCTGAGAGTTTTGTGAACAGGGATTTCGAGGGCCTGGTTGCTCTGGTGACCGGAGGAGCGTCCGGAATCGGGGCAGCAGTGGCGGACAGGCTGGAGGCAGGCGGCGCCAAGGTTGCGGTCCTGGACCTCAACCCCGCCGGCACCTCCCACTACGCCGTTGAGTGCAACGTCGCCGAGGACGCCTCGGTGAGGGCCGCGGTGGACGCCGTTGCCAGGCAATTCGGCAGGCTGGACATTGTGGTGAACAACGCGGGCATCGGCGCCATGGGCGATGTCGCAGCCAACGACGACGCCGAATGGGCCCGCGTGCTGGATATCAATGTTGTGGGGGTTGCCAGGATCACGCGTGCTGCCCTTCCGCACCTGCGCCGATCCCCCGCGGCAGCCATTGTCAACATGTGCTCTATCGCTGCCACGGCCGGACTCCCGCAGCGTGCATTGTATTCGGCGTCCAAGGGTGCCGTGCTGTCGCTGACGCTGGCCATGGCGGCTGACCACATCCGCGAAGGCATCCGGGTCAACTGCGTCAACCCGGGAACAGTGGATACCCCCTGGGTTTCCCGGCTGCTTGGCCAGGCGGACGATCCTGAGGCCGAGCGTGCCGCCCTCAATGCCCGCCAACCCCATGGCCGGCTGGTGGCCGCCGAGGAAGTGGCAGAGGCGGTGGCGTACTTGGCAAGCCCTCGGTCCGGGTCAACCTCCGGCACGTCCCTGGCTGTCGACGGCGGCATGCAGGGGCTGCGGCTGAGGCCACTCGGCTAAMTATPESFVNRDFEGLVALVTGGASGIGAAVADRLEAGGAKVAVLDLNPAGTSHYAVECNVAEDASVRAAVDAVARQFGRLDIVVNNAGIGAMGDVAANDDAEWARVLDINVVGVARITRAALPHLRRSPAAAIVNMCSIAATAGLPQRALYSASKGAVLSLTLAMAADHIREGIRVNCVNPGTVDTPWVSRLLGQADDPEAERAALNARQPHGRLVAAEEVAEAVAYLASPRSGSTSGTSLAVDGGMQGLRLRPLGPGPT0008190_496DIRECT 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
D1-29_045181317ftsH_4ATP-dependent zinc metalloprotease FtsHATGACCACTTGGCGGATCAGGGATTTCCATTCTGCTGACCTTGACGGGATCCTGCACCTGTGGGAAACGCTCAAGGCAACCAATGTGGAACCCGTTTATGCTCTTTCCGAGGTGCTGGCCTCCTGCGAAAAGGACCACGCCGTGGTGGCTGTGCTGGGCGATATGGTGGTGGGCGCCGCCGTCGGACGTGCGGCGCACGACCAGGGCTGGATCGTTTTCCTGGCCACCCTTCCGGAGTACCGGGGCCGCGGCATCGGGACCTCGCTGCTGGCTGCCGTCGAAAACCGTATGGCTCCGCACGGCCTCAACAAGCTCTCGGCCCTGATGCCGGAGGCGGAAACCCGGGTGGAGGCCTTCCTCAGCCGGGGGTTCGCGTTGAAGAAGAACCTGCGCTATTTCGAGCGGACCATTCCCGTCCAGCGACAGGAGCTCGGCGCCCTTGGTCAGCTGGGCGGCCGGATCCTGGCCCGCGACCTCTGGGAAAACGTGGCCGGCATGCGCAAGGAAAAGGAACTCCTGGAGCGGCGCCTCGTCCTCCCCCTGGCCGAAGCCGATCTCGCCGATGAATACGGCGTGGTGCCGCCGCGTGCCGTCGTGCTTTTCGGTCCTCCGGGAACGGGCAAAACCACCTTCGCCAAGGCGATCGCATCGCGGCTGGAGTGGCCGTTTGTGGAAGTGTTCCCGTCCAGGCTTGCCTCCGATCCGAAAGGCCTGGCAGGAGCGCTGCGGGAAACATTCCTGGAGATCGCCGAGCTGGAGCACGCCGTGGTGTTCATCGACGAGGTGGAGGAGATCGCCTCCCAGCGTTCTGGCGAGCCGCCATCGCCGCTGCAGGGAGTCACCAACGAGCTCCTGAAGATCATTCCCGCCTTCCGGGAGCAGCCTGGCCGCCTCCTGGTCTGTGCCACCAACTTCATCAAGTCCCTGGACACTGCGTTCCTGCGGCACGGCCGGTTCGATTACGTCATCCCCATCGGCCTGCCGGACCGCCAGGCACGTGAGGCGATGTGGCAGCGCTTCATTCCTGCCGCCGTCGTGGACAACGTGGACGTGGAACTCCTGGTGGACCGCACCGAGGGCTTCTCGCCGGCGGACATCGAGTTCGCCGCCCGCAGCGCTTCCCAGCGAGCGCTGGAAAAAGCCGTGTACGACGACGGGGGGCTGGCTTCGGGCGGGACCCTTTCCGTTCGCGAGGCGGTGCGGAAGGGCCCATCCACGCAGGATTACCTCGAGGCTATCGGCGAGACGCGGACTACCGTCAGCGACGAGGTTCACCAGGACTTCCTGGAGGATATCGACCGCCTGGGCCGCGTCTAAMTTWRIRDFHSADLDGILHLWETLKATNVEPVYALSEVLASCEKDHAVVAVLGDMVVGAAVGRAAHDQGWIVFLATLPEYRGRGIGTSLLAAVENRMAPHGLNKLSALMPEAETRVEAFLSRGFALKKNLRYFERTIPVQRQELGALGQLGGRILARDLWENVAGMRKEKELLERRLVLPLAEADLADEYGVVPPRAVVLFGPPGTGKTTFAKAIASRLEWPFVEVFPSRLASDPKGLAGALRETFLEIAELEHAVVFIDEVEEIASQRSGEPPSPLQGVTNELLKIIPAFREQPGRLLVCATNFIKSLDTAFLRHGRFDYVIPIGLPDRQAREAMWQRFIPAAVVDNVDVELLVDRTEGFSPADIEFAARSASQRALEKAVYDDGGLASGGTLSVREAVRKGPSTQDYLEAIGETRTTVSDEVHQDFLEDIDRLGRVNANANANANA
D1-29_045191545hypothetical proteinATGGACAACGGGGAAGTCTTGGAAGCAGTTGAAGCACCTGATGCTGCCCTTGTCCTGATGGAAGTGGCCTCCTCCGCTGCCGGCGCAGGTTCTGATTCTGGTTCTGACGCGGGCACTGACTCTAACTCGGGAGCCGCTTTTGATGCTGGCGCTGGTTCTGATCCGTTGCGGGATTTGGCGGAGGAATGCCTGGCCGTCATGGCGGAGGCGGCCCGCGATGAAGCCCGGGCAGCTGCCCGGAAGGCCCGGGCGGCCGCCACATACGCGGACACCTGCCGCCGCCGGCTTTCACCGTCGGCGTCGCTGCACGAACAGTCCGTGGCGGAGATGGGCATGGTCGCCGAGGTCGCCTGTGCCCTGACCATCAGCGAAGGCGCCGCCTCAGCTTTCCTGGTCCAGTCACACCAGCTAAGCACCGAACTGCCGCGCACCCTGGCGTCCCTGCAGGCCGGGGGCCTGTCCTGGCAGCACGCCCGGATCCTCTGCGATGAAACCACCGGCCTGGGCCCCGCCGGTGCGGCCGCCCTGGAAACCCACTTCCTGGACCCCGACGCCGCCAATGCTGCCCGTGCCTGCCTCGCCGGGGACCTCACACCCTCCAGGTTTCGCGCCAGGGCCAGGACCTGGCGCGAACGCCACCATCCCGTCTCGATCGAAACCCGCCATACCAAGTGCGTCCTGGACCGCCGCCTCGAGTACACCCCGGACCGCGACGGGATGGCCTGGCTCTCCGCCTACCTGCCGGCAGATCAGGCCGCCGCCATCTGGGAACACACCACCGCCGCAGCCCGGGCACTCCAAGGCCCCACCGAGCCCCGCACCCTCACCCAACTCCGCGCCGACACCCTCGCCAGCGCACTCCTCGGCGGAGAGAACACCAACCCCGGCAGCAACAGCAACGGAAATACCGACGGCTCACCCCTAGATAGCGGCAGCGGAGCACTCCTTGGTGGAGGAAGCGACAAGGGCGCAAATAGCCTTGCCAACCCCGGCGAACGAGGCGCTGCCGGGCAGGTCCCGCCGCCACGGGCCCAGGTACTGGTCACCGTGCCCGTGTTCTCGCTCCTCGGCCTCACCGACGAACCAGCCACCCTAGACGGCCACGGCCCCATCCCCGCCGCCATGGCCCGGAACCTGGTCGCCAACGGAGCCCACTCCTTCTACCGCGTCCTGACCGACCCCCGCGACGGCGCACCACTGGAAATCGGCCGAACCAGCTACCGGCTCACCACAGCAATGCGCCGCTGGCTCAGGCTCCGCGACGCCAAATGCCCCTTCCCCGGGTGCAACAACCACTCGCTGGATAACGAAGCGGACCACCTTCTGGCCTGGGCTGACGGCGGCAATACCGGCATCAGCAACCTCGGTCAGCCTTGCCGCAAACACCACCACCTCAAGCACAACACCGCCTGGCAACCGACCCCGGCCACCAAAAACGAGCCACCCGGCTGGACCTCACCCACCGGCCGGCACTACAAAAGCGAACACCAAGACTGGGAACCACCCACCTGGCCGGACCACTCACTCACCGAACGCCTCACCTGAMDNGEVLEAVEAPDAALVLMEVASSAAGAGSDSGSDAGTDSNSGAAFDAGAGSDPLRDLAEECLAVMAEAARDEARAAARKARAAATYADTCRRRLSPSASLHEQSVAEMGMVAEVACALTISEGAASAFLVQSHQLSTELPRTLASLQAGGLSWQHARILCDETTGLGPAGAAALETHFLDPDAANAARACLAGDLTPSRFRARARTWRERHHPVSIETRHTKCVLDRRLEYTPDRDGMAWLSAYLPADQAAAIWEHTTAAARALQGPTEPRTLTQLRADTLASALLGGENTNPGSNSNGNTDGSPLDSGSGALLGGGSDKGANSLANPGERGAAGQVPPPRAQVLVTVPVFSLLGLTDEPATLDGHGPIPAAMARNLVANGAHSFYRVLTDPRDGAPLEIGRTSYRLTTAMRRWLRLRDAKCPFPGCNNHSLDNEADHLLAWADGGNTGISNLGQPCRKHHHLKHNTAWQPTPATKNEPPGWTSPTGRHYKSEHQDWEPPTWPDHSLTERLTNANANANANA
D1-29_045201233hypothetical proteinATGGCCCGCATGGGCGGCCGCGATCCGCATCAAGCCCACCGAGCCGCCACTCCGCTGGAACTCTTCTTCGACCTCACCTTCGTGATTGCCTTCGGCGTGGCCGGCAGCCAGTTCGCGCATGAAATTGCCGAAGCCCACTTTGCCGCCGGGTTCCTCGGATTCGGCTTCGCCATGTTCTCGGTGATCTGGGCCTGGATCAATTTCACCTGGTTCGCCAGCGCCTACGACACTGACGACTGGATCTTCCGTGTCGTCACCATGGTCCAGCTGCTGGGAGTCCTGATCCTGGCAATGGGCATCGAGCCGTTGTTTGAGTCGCTCGTCGAGGGCAAAAGCGTGGACAACGCAGTGATGGTGGGCGGCTACGTGATCATGAGGCTGGCTCTCGTCTTCCAATGGGTGCGCGCTTCCCGGCAGGATCCGGCCCGCCGTGAAACCTGCCTGCGCTACGCCACCTGCCTTGGGCTGGTGCAGCTCGGGTGGATCGCAGTGGCGGTCATCCAAGCCGACGTGTTGACCACCTTCCTGATGATCGTGCCCCTGTTCGTGCTGGAAATGGCCACACCGTACTTCGCCGAACGCCGGGCAACCACACCATGGCATGCGCACCATATCGCGGAGCGCTACGGCCTCCTGGCCATCATCGCCCTGGGCGAATGCCTGATCGGCGCCATCGAAACCCTTCGGGCCATCGTGGCCCTCCACGGCTGGAGCGTTGATGCTGCGCTGGTGGGCTTCGGCGGCACGGCTCTCGCCTTTGGCATGTGGTGGATCTACTTCATCCTGCCCGCCGGCCGCGCACTGCACCTTCAACGCGACCGTTCGTACTTCTTCGGCTACGGTCACATGCCTGTGTTCGCGGCCATCGCGGCGACCGGCGCTGGACTCCACGTCGTGGCCTACTACATCGACCACCAGGCGCACATCAGTGCCGCGGTAGCGGTGGCCAGCGTCGCAGTGCCGGTAGTGCTCTTCAAAGTGTCGCTGACCTGGCTGTTCAGCGGCATGATCTGCAGGGACCGCTCAGTGATGGCAGTAACCGCAGGCGTCACCGCAGCAATGGCGGCAACAATCGGCCTGGCGGCGGCCGGAGTCCCGGTTCCAGTCTGCCTCCTGGTGATCGTGCTGGCACTCGGCGCCTCGATTGTCGTGGACGAACGCCGCGGCGTCGACAAAATGAACACGGCCCTCGAACAGCTTGAGGCGGAGGCTAAAACGCCCCGTCCGGCCTAGMARMGGRDPHQAHRAATPLELFFDLTFVIAFGVAGSQFAHEIAEAHFAAGFLGFGFAMFSVIWAWINFTWFASAYDTDDWIFRVVTMVQLLGVLILAMGIEPLFESLVEGKSVDNAVMVGGYVIMRLALVFQWVRASRQDPARRETCLRYATCLGLVQLGWIAVAVIQADVLTTFLMIVPLFVLEMATPYFAERRATTPWHAHHIAERYGLLAIIALGECLIGAIETLRAIVALHGWSVDAALVGFGGTALAFGMWWIYFILPAGRALHLQRDRSYFFGYGHMPVFAAIAATGAGLHVVAYYIDHQAHISAAVAVASVAVPVVLFKVSLTWLFSGMICRDRSVMAVTAGVTAAMAATIGLAAAGVPVPVCLLVIVLALGASIVVDERRGVDKMNTALEQLEAEAKTPRPANANANANANA
D1-29_04521654hypothetical proteinATGTCTGAAATGGAATTTACGGAAGCCGGCTCTCCGGATAACGGGCCCCGCCAGCCGGGATTCACGGTGGAGACGGCCAAGGTCCTGGCCGAGGTGGCCCACAACCGCCAGAAGGACAAGCTCAAGCGTCCCTACCGTGAGCACGTGATCGCGGTGGGGGACGCCCTGGCCGACTTCGATGACGACATCCGGATTGCCGGGTACCTGCACGACATCGCGGAGGACACCCCCATTACACGCCAGGCGCTTCTGGACATGGGGGTTTCCGAGCGGGCAGTAGGCATTATCGAGCGCGTCACCAAACGGCTCCATGACGACCCGGATGACTACCAGGCCGGCATCCGCTTCATCGCCGAAGACCACGACGCAGCGCTGGTGAAGATCGCGGACAACGCCCACAACTCCCTGCCCGAGCGGGTCAAAGCGCTGGCCGAAAAGTGGCCGGACAAGCCGCCGGTCACGCGCTATGACGACGCCCGGCCGGTGCTTTACGCGGCCGTGGAAGTGGAAGAGGTGCGGAAGATCCTGGCACGGGTGAACCCCTGGCTGCTCCGGGAACTGGACGACAGGCTGGACGACGAGGACCAGACGGACTATGAGAACCTTTCGTACGAAGAGGCCCCCAGCGGAACGTCCGACTCCCGCGAGTCCTAGMSEMEFTEAGSPDNGPRQPGFTVETAKVLAEVAHNRQKDKLKRPYREHVIAVGDALADFDDDIRIAGYLHDIAEDTPITRQALLDMGVSERAVGIIERVTKRLHDDPDDYQAGIRFIAEDHDAALVKIADNAHNSLPERVKALAEKWPDKPPVTRYDDARPVLYAAVEVEEVRKILARVNPWLLRELDDRLDDEDQTDYENLSYEEAPSGTSDSRESNANANANANA
D1-29_045221107xylB_2Aryl-alcohol dehydrogenaseATGCTTCTTACCACCGACGCCGCTGTAGTTGAGTCCCCGGGCGCCCGCTTTTCCATCCAGCCCGTGCAACTGGACAACCTTAGGCCCCACGAAGTTTTGGTCGACATCAAGGCGGCCGGCCTGTGCCACACCGACCTTTCCGTGGCCGGCGGAGGCCTGCCCTTTCCACTGCCGGGCGTCCTGGGCCATGAAGGTGCCGGCGTGGTGGCTGACGTTGGCACTGCTGTCACCAGGGTCCGGCCGGGCGACAAGGTGGTGCTTTCCTTTACGTCCTGCGGATCCTGCGGGAACTGCCGGGACGGCCACCCCGCCTACTGTGACACCTGGCTTTCCGAGAACCTGATCGGGGGAGCCAGAAGCGACGGAACTTCCCCCATTTCCCGCGGAGGCGAACCCGTGGGTGGCCACTTTTTCGGCCAGTCATCCTTCGCCCGGCAGTCTGTGGTGGACGAGCGGAGCATCGTGAAAGTGGAGAGCGATCTTCCGTTTGAGCACCTGTCCCCGTTGGCCTGTGGAGTGCAGACCGGTGCCGGGGCGGTCTGGAACGCCATTCAGCCCAGGGCAGGATCCAGCCTTGCGGTGTTCGGCGTCGGAGCTGTGGGACTGTCAGCCATCATGGCCGCGGTGCTGTCCCCGGTGGCCACCATCATCGCTGTCGACATGGTTCCTGCCCGACTGGACCTGGCACGGGAGCTGGGCGCGACCCACACCATCGATGCCTCCCAAATCCAGGATGTCCCTGCTGAAATCCAAAGGATCACCGGGGGCGGCGCCAACGCGGCGATCGAAGCGACCGGACACACGAAAGTCCTGGAGCAGGCCGTCTTCTCGACGGCGGCCCGTGGCGAGATTGTGGCTGTTGGCGCGCCCGCTTTTGGTGCGACGGCGGCAGTGGACGTGAACTTCATGATGCCGGGCCGCCGAATCCAGGGAATTACGCTGGGGGACAGCGAAATCGAGAGACTCATCCCAGCCATCATTGCGCTGATGGAAGCCGGCCGGTTCCCCCTGGACAAGCTGGTCAGCACGTACAAACTCGAAGACATCAACCAGGCTGTGGAGGACATGAAATCAGGGCAGGCCATCAAGCCCGTGATGGTCCTCTGAMLLTTDAAVVESPGARFSIQPVQLDNLRPHEVLVDIKAAGLCHTDLSVAGGGLPFPLPGVLGHEGAGVVADVGTAVTRVRPGDKVVLSFTSCGSCGNCRDGHPAYCDTWLSENLIGGARSDGTSPISRGGEPVGGHFFGQSSFARQSVVDERSIVKVESDLPFEHLSPLACGVQTGAGAVWNAIQPRAGSSLAVFGVGAVGLSAIMAAVLSPVATIIAVDMVPARLDLARELGATHTIDASQIQDVPAEIQRITGGGANAAIEATGHTKVLEQAVFSTAARGEIVAVGAPAFGATAAVDVNFMMPGRRIQGITLGDSEIERLIPAIIALMEAGRFPLDKLVSTYKLEDINQAVEDMKSGQAIKPVMVLPGPT0005865_300DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_XYLENE|DERIVATE_DEGRADATIONXENOBIOTIC_p|o|m-XYLENE_DEGRADATION,PGPT0005865-EC_1_1_1_90-K00055NANA
D1-29_045231497betBCOG1012NAD/NADP-dependent betaine aldehyde dehydrogenaseATGACAATGACAGAGTCTGAAAAAGTGCTCATTCCGTCGGTCACCCTTCCGGAGGCCGTCACCCGGGGCCAGTTGTTCATCAACGGCGAATGGCGGCCTTCGTCCGACGGCGGCACAACCGACATCATCAACCCCGCCACGGGTGCCGTGGCCGTGACGGTCGCTGCCGGGACAATCTCGGACATCAACGCCGCTGTTGCCGCCGCTAAAACCGCGTTCGACGACGGCAGGTGGTCCCGTCTCAGCGGCCGGGAACGCTCACGGGTGCTCAATAAGGCGGCGCTGCTGATACGGGAACGCGCCGAGGACCTGGCGCTCACCGAGAGCACCGACGTCGGTAAGCCCATCATCTTCGCGCGAGTGGTGGATGTGGCCACAGCGGCTGACCAGTACGAGTACGTGGCCGCCCTGGCGCAGCAACTCGACGGTTCCGTCCGGGAGACTCCCCTCCCGGCGCATGCCTTCACCAAGAGGGAGCCGCTGGGCGTGGTGGCGGCCATCACGCCGTTCAATTTTCCGCTGATCCTTTCCAGCACCAAGATTGCAGCGGCCCTGGCTGCCGGCAACTCGGTAGTGCACAAACCCGCAGGCGACACTCCACTGAGTGCCCTGCTGATGGCCGAGATTCTCACCGAAGCAGGTGTGCCGGCGGGTGTCTTTAATGTTGTGACCGGCTCGGGAGGAACCCTGGGTGATCAACTCGTGGCCCACCCCGACGTCAGCAAGGTGGCCTTCACCGGCTCCACCGACGTCGGCCGGCATGTGGCTGCCCTCGCCGGTCAGAACCTCCGGCCGGTCACCGCTGAGCTGGGCGGCAATGCCGCGAACATCCTTTTCGCCGACGCCGACCTCGACAAGGCCATCGGCACCGTCATCGGCGCCTTCGTTTTCAATTCGGGCCAGTTCTGCATGGGCGGGCCACGGCTCCTGGTGGAACGGCCCATCTACGAAACGGTTTTGGGGATCCTGAAAGACGCCGTTGCCGGGGTTCCTGTGGGCGATCCCAGCAACCCGGAAACCGTTATGGGGCCATTGGCCAGCCGGAAACAGCTGGACAAAGTAGCTGACTATGTTGAGGGCGCCAAGGCTGTCGGCGGCCAGGTGGTGGTGGGCGGTGAGCGGCTGGAGCTGAACGGCGGGTTTTTCTACAGGCCGACAGTTATTGCCGGCCTTGCCAACGATGCCGCGGCTGTCCGGGAGGAGGTCTTTGGTCCCGTCCTCACCGTCCAGCCCTTCGACACGGAGGATGAGGCCATCGAGCTTGCAAACAGCACTGAGTACGGGCTCGCCTCCGGTGTCCAGACGTCAAGCATTGCCCGGGCGCACCGCGTTTCCTCGAGGCTTGATGCCGGTATTGTCTGGGTCAATTCCTGGGCGCTGTTGGACCCTGCGGTGCCTTTCGGCGGGGTCAAGAACTCCGGTTGGGGCCGCGAATACGGCCCGGAGGCCTTGGAGTCCTACAGCCGCACCAAGTCCGTCGTCATCGCCACGGATTAGMTMTESEKVLIPSVTLPEAVTRGQLFINGEWRPSSDGGTTDIINPATGAVAVTVAAGTISDINAAVAAAKTAFDDGRWSRLSGRERSRVLNKAALLIRERAEDLALTESTDVGKPIIFARVVDVATAADQYEYVAALAQQLDGSVRETPLPAHAFTKREPLGVVAAITPFNFPLILSSTKIAAALAAGNSVVHKPAGDTPLSALLMAEILTEAGVPAGVFNVVTGSGGTLGDQLVAHPDVSKVAFTGSTDVGRHVAALAGQNLRPVTAELGGNAANILFADADLDKAIGTVIGAFVFNSGQFCMGGPRLLVERPIYETVLGILKDAVAGVPVGDPSNPETVMGPLASRKQLDKVADYVEGAKAVGGQVVVGGERLELNGGFFYRPTVIAGLANDAAAVREEVFGPVLTVQPFDTEDEAIELANSTEYGLASGVQTSSIARAHRVSSRLDAGIVWVNSWALLDPAVPFGGVKNSGWGREYGPEALESYSRTKSVVIATDPGPT0006035_714DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146NANA
D1-29_045241023hypothetical proteinATGCGAGCCACCGGCGTTTCTGCAGCTGACGCCTCCGCCGAGGCGCTCGGCCGTTTTGCCATCCAGAGCAAAATCCCCGACGAGGCGTTGGACATCGGCGGCAAGGTCTACTACCCGCACCATCTGGACATGGGCCGTTCCGCCGAGGATTTTCAATGGCGCACCAAGGGCATAACCCTCGAGGGCGTGACGCTGGGCCTGCTGGAATACGGCACTCCGATGAAGATCTCGACGGGCGATTTGGAGACCTCCTACCAGGTCAATTTCCCCCGCTTTGGACGGATGAAGTTTTCCCAGGGCAGCAGTGTGGTGCTGGGGAGCCCCTCCCTCGCCGCCATCCACGGGCCTGTGGGGCCCACCACCCTCCAGGGCTGGTCAGAACCAACGCAGTTGCTGGGGCTGAAGATACCCACGTCCCTGATGCATCAGGAACTCGAAGCGCTCCTGGGGCGCTCAGCCGAAAAAGAGCTTGCCTTTGAAGGCTCCTTCGACCTGACCTCGCACCGGGGTAAGGAGTGGCGTGCCGCCGTCGAACTTCTGATTGCCGGTGTGAGCAATCCCGACTCTCTCCTGAGCTCGCCGCTGATGGCACACGCCGCCGTCCAGTACGCCGTGCGGGGGTTGCTCCTGTCGGCGCCGAACAACTTCAGCGAAGAGCTGGCCGGGGATGCGGAGGCTGTGGGCTCTGCGGCCGTGCGGCGGGCCATCGACTTCATGGAGTCCAACGCCCATTTGCCCATCACCCTGGAAGCCTTGGCGGCCGACGCCTTTGTCAGCCCGCGGGCGCTTCAGCTGGGGTTCCGGAAGCATCTCGACACAACGCCCATGGACCATTTGCGCAGCATCCGCCTTCGCCGGGTCCGAAGCGAGCTGCTTTCAGCCAGGCCTTCCACCCGCGTGGGTGATGTCGCCGCACGCTGGGGGTTCCCGCACGCAGGCAGGTTCGCTATCCACTATGCGAAGACTTTTGGCGAGGCGCCGTCCCAAACGTTGAAAAAATCAACGGAACCGACGGCTTCCTGAMRATGVSAADASAEALGRFAIQSKIPDEALDIGGKVYYPHHLDMGRSAEDFQWRTKGITLEGVTLGLLEYGTPMKISTGDLETSYQVNFPRFGRMKFSQGSSVVLGSPSLAAIHGPVGPTTLQGWSEPTQLLGLKIPTSLMHQELEALLGRSAEKELAFEGSFDLTSHRGKEWRAAVELLIAGVSNPDSLLSSPLMAHAAVQYAVRGLLLSAPNNFSEELAGDAEAVGSAAVRRAIDFMESNAHLPITLEALAADAFVSPRALQLGFRKHLDTTPMDHLRSIRLRRVRSELLSARPSTRVGDVAARWGFPHAGRFAIHYAKTFGEAPSQTLKKSTEPTASNANANANANA
D1-29_04525984hcaB_63-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGAGCCTCTCAGGCAAAGTAGCAATCGTCACCGGAAGCGGACGGGGATTGGGCCTGGCCTACGCCCGGGAACTGGCACGCCAGGGCGCCGCCGTGGTCATCAATGACGTGGACTCCGATGTCGCAGCTGATGCAGTCCGGACGATCGAGGCCGACGGCGGACGCGCCGTTTCCGTCGTCGCCCCCGTGGGCAGCACGGAAGTTGCGAAGCAACTGGTGGCCGGAGCCGTGGAGGCTTTCGGCCGGTTGGACATCCTGGTCACCAATGCCGGGATCCTGCGGGACAAGTCATTGTTGAAGATGACGGATGAGGATTTTGACCTGGTGATCAACGTCCACCTGAAAGGGACGTTCACCTGCGTACGGGAGGCCTTCGCGTACTTCAAGGAAAACAACGTGCCTGGCCGGATCATCACCATCGGTTCGCCGACCGGCCAGCGCGGCAACTTCGGCCAGACCAACTACGCCGCGGCGAAGGCCGGGATTGTGGGCATGGTCCGCACCTGGGCGCTGGAGATGAAGAAGGCCGGCGTGACCGTGAACTGCGTGATCCCGGTAGCCGCTACCGCGATGACCAAAACCATCCCGTATTTCCAGAAGGCTGTGGAAGCGGACGAGCGCGGCGAGGCCATGCCCGCGTTCTTCCGCCACGATCTTGGTTTCGGAACGGCCGACGACGTCGCCGGGCTGGTTGCCTTCCTCGCCTCTGACGAGGCCGCCAACATCACCGGCCAGGCCATCGGCGCCGGCGGTGACCGGCTGCAGGTCTGGACCCACCCGGAGGCAGCCAGCACCGAATACCGCGAGGGCGGCTGGAGCTACGAGGCCCTCCGCGACAGCGCCGATTCGCTCTTCAATGCAGACACCCTGCAGAGCTACGGCGAGGAATTCCTCCCGCTGCCCGAGGAACTGAAGCCCGAACCAGCCCAGCCTGCACCGGCACAGCCCTCGCAAGCACAGCCCTCGCAAGCACAGGCCCGCTGAMSLSGKVAIVTGSGRGLGLAYARELARQGAAVVINDVDSDVAADAVRTIEADGGRAVSVVAPVGSTEVAKQLVAGAVEAFGRLDILVTNAGILRDKSLLKMTDEDFDLVINVHLKGTFTCVREAFAYFKENNVPGRIITIGSPTGQRGNFGQTNYAAAKAGIVGMVRTWALEMKKAGVTVNCVIPVAATAMTKTIPYFQKAVEADERGEAMPAFFRHDLGFGTADDVAGLVAFLASDEAANITGQAIGAGGDRLQVWTHPEAASTEYREGGWSYEALRDSADSLFNADTLQSYGEEFLPLPEELKPEPAQPAPAQPSQAQPSQAQARPGPT0003180_16057DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-29_04526885hypothetical proteinATGGCACGCTACGAACTGGGCATCGATGCCGCCGCGCTGGACGCGATCGACATGCACGTCCACCTCGAAGTGGACAGCTGCGGCCACGGGTCCCTGCCCGACGCGCTGACAGAGGCCTCGGCGAAGTACTTCAAGGCCGAGGACCGCACTCCGTCCCTGGACCGGATCGCCGAGGTGTACCGCGAACTGAACATGGCCGCCGTCATCTTCACCGTGGACGCCCGCACCCAGCTCAAACACGAACCCAACAGCATCCCGGAACTGATCGCCGGCGCGGCCCGGAACAACGACGTGCTGATCCCGTTCGGCAGCGTTGACCCGCGCACCGGCGAAGACGCGATCGCCGGAGCCAAGCACCAGGCCATCGAACTCGGAGCCCGGGGCTTCAAGTTCCACCCGAGTCTGCAGGGCTTTGACCCGTCCAACGAACGCTTCTACCCGCTCTGGGAAACCCTGCAGGAACTCGGCCTGCCGGCCATCTTCCACACCGGTCAGAACGGCATGGGCGCCGGCCTTCCCGGCGGCTACGGGATCAAACTGGCGTACTCCAACCCTTTGCTGCTGGACGCGGTGGCCGCTGATTTCCCGGAACTGCAGATCATCATGGCCCACCCCTCCGTGCCGTGGCAGGACGAAGCCAACTCGATCGCCACGCACAAGGCAAACGTGTTCATCGACCTCTCCGGCTGGTCACCAAAGTACTTCCCGGAATCCCTCGTCCGCCTGTCCAACTCAGTACTGCAGGACAAGGTCCTCTTCGGCACCGACTTCCCGCTCATCACCCCACAAAAGTGGCTCGGCGCCTTCGCCGACCTGCCACTCAAGGAGGAGGTCCGCCCCAAAATCCTCAAACACAACGCCGTCCGCCTGCTTGGACTGGATTGAMARYELGIDAAALDAIDMHVHLEVDSCGHGSLPDALTEASAKYFKAEDRTPSLDRIAEVYRELNMAAVIFTVDARTQLKHEPNSIPELIAGAARNNDVLIPFGSVDPRTGEDAIAGAKHQAIELGARGFKFHPSLQGFDPSNERFYPLWETLQELGLPAIFHTGQNGMGAGLPGGYGIKLAYSNPLLLDAVAADFPELQIIMAHPSVPWQDEANSIATHKANVFIDLSGWSPKYFPESLVRLSNSVLQDKVLFGTDFPLITPQKWLGAFADLPLKEEVRPKILKHNAVRLLGLDNANANANANA
D1-29_04527456COG2030putative enoyl-CoA hydratase 1ATGCCCAATCTCGTCGTCGACTTCGACAAACTGCTCACACTCGCCGGGACGGACCTCGGATTCACCGGGTACCGTGAAATCACGCAGGAACAGATCAATAAGTTCGCCGAGGCCACCGGTGACGACCAGTGGATCCACGTGGACCCCGAGCGTGCCAAGGACGGGCCCTTCGGCGCCCCGATCGCGCACGGCTTCCTTACCCTCTCGCTCATCATCCCCTTCTGGGGCGAGCTGTTCGACGTCGAGAACGTCACCACCAAGGTGAACTACGGGCTTGATAAGGTCCGCTTCACGTCGCCCGTGAAGGTGGGCTCGCGGATCCGCATGCAAGCCACTATCGCCGACGTCACCGAGGTAAAGGGCGGAGCCCAGATCAAGGTGGCCAACACCATCCACATCGAAGGCCAGGAACGCCCCGCCGTGGTGGCCGAATTCCTGGCCCGCTTCTACATTTAGMPNLVVDFDKLLTLAGTDLGFTGYREITQEQINKFAEATGDDQWIHVDPERAKDGPFGAPIAHGFLTLSLIIPFWGELFDVENVTTKVNYGLDKVRFTSPVKVGSRIRMQATIADVTEVKGGAQIKVANTIHIEGQERPAVVAEFLARFYIPGPT0015282_21DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0015282-nodN_like-NANANA
D1-29_045281596COG0318Long-chain-fatty-acid--CoA ligase FadD13ATGGAAAACTTTGGCATTGGCTCGTGGCTGCAGCGTCGCCGCCCCAAGTCCGGCAACAAAACAGCTCTTATCAGCGGTGACCGGACAGTGAGCTATGACCAACTCGCGGATCGCAGCATCAGGCTTGCCAACGCCTTACGGGACCGCGGAGTTGCCAGGGGAGACAGGGTTGCCTACCTCGGCGAGAACCATCCCTCCTTCCTGGAAACCCTCTTTGCCTGTGGCCTGCTGGGCGCTGTTTTCGTCCCGCTCAACACCCGGCTGGCACCGCCCGAGATCCAGTTCCAGCTTCAGGACTGCGGTGCAGTATGCCTCGTTCATTCCAGCAGCCTGGATGGCCTCGCCATCAGCGGCGCAGCGGGCACACAGGTGGCACGGCGCATCGTCCTAGACGAAGGCATGGAAACAGGAGCCACTGAGTTCAAAACAGAAGCTGAGTTCAACACGGAACAGGGCACGACGGCGGTGGAGGACTTCGAGGCCGCCATTGCGACCGGCTCGAATGAGTTTTTCGACGAGCAAGTGGGGCTCGACGACGGCGCCATGATCCTCTATACGTCCGGCACCACGGGACGGCCCAAGGGTGCGCTCCTGACCCACGGGAACATCGTGTGGAATTGCCTCAATGTGGTGGTGGACTTTGATTTCGCGTCCACGGACGTGGCGCTGATCATCTCGCCGATGTTCCACGTTGCTTCATTGGACATGGGCGTGCTGCCCACCCTGCTGAAGGGCGGAACTGTTGTTCTGGAGGCGAAGTTCAATCCCCAGCGGACGCTGGAACTGATCGAAAAGCACCACGCCACCACCATGAGTGGTGTCCCCACCACCTACCAGATGCTCTGCGAGCACCCGGATTGGGAGGGAACCGACCTATCTTCGCTGAACAAGCTCACGTGCGGCGGCTCCGCTGTTCCCCTGCGGATCCTGGAAGCCTATGAGAGTCGGGGCCTTGTGCTTTCCAACGGCTACGGCATGACCGAAACAGCACCCGGGGCCACCACCCTTCCGGCCGCCCGTTCCCGGGAGAAGGCCGGCTCGTCGGGGCTGCCGCACTTCTTCACCGACGTGCGCATTGCGGACTTTGACGGCAGCGTGGCTGCTCCCGGTGCTGTGGGCGAGATCCAGGTCAAAGGCCCCAACGTTATCCTGCAGTACTGGAACCTGCCCGAGGCAACCGCCGAATCCTACGCCCCCGGTGGATGGTTCAAGTCCGGCGATATGGGCTACAAGGACGACGACGGGTTTGTGTTTGTCTCGGACCGGCTCAAGGACATGATCATCTCCGGCGGTGAGAACATCTATCCCGCGGAAGTGGAACAGGTCATCACGGAGCTGGAGGCCGTGGGCGGCGTAGCTGTGATTGGTGTGCCGGATGAGAAGTGGGGCGAGGTGCCGCGCGCCGTGGTGCTGCTCCGCGAGGGCATGCAGCTGACGGAAGAGGAGCTTCGGGCGCACCTTGAGGGCCGGCTGGCGCGCTACAAGATTCCCAAATCCGTGGTGTTCGTGGACGAGATGCCCAGGACGGCCAGCGGCAAGATCCGGAAGGCCGAGCTCCGGAGGATCAGCGGAGGCCAACCCTCCGGACGGGCCTGAMENFGIGSWLQRRRPKSGNKTALISGDRTVSYDQLADRSIRLANALRDRGVARGDRVAYLGENHPSFLETLFACGLLGAVFVPLNTRLAPPEIQFQLQDCGAVCLVHSSSLDGLAISGAAGTQVARRIVLDEGMETGATEFKTEAEFNTEQGTTAVEDFEAAIATGSNEFFDEQVGLDDGAMILYTSGTTGRPKGALLTHGNIVWNCLNVVVDFDFASTDVALIISPMFHVASLDMGVLPTLLKGGTVVLEAKFNPQRTLELIEKHHATTMSGVPTTYQMLCEHPDWEGTDLSSLNKLTCGGSAVPLRILEAYESRGLVLSNGYGMTETAPGATTLPAARSREKAGSSGLPHFFTDVRIADFDGSVAAPGAVGEIQVKGPNVILQYWNLPEATAESYAPGGWFKSGDMGYKDDDGFVFVSDRLKDMIISGGENIYPAEVEQVITELEAVGGVAVIGVPDEKWGEVPRAVVLLREGMQLTEEELRAHLEGRLARYKIPKSVVFVDEMPRTASGKIRKAELRRISGGQPSGRANANANANANA
D1-29_04529891gluQCOG0008Glutamyl-Q tRNA(Asp) synthetaseATGACTTCCGCCGGCCGCTTCGCCCCGAGCCCTTCCGGTGAGCTGCACGTTGGCAACCTTCGCACAGCCATCCTGGCCTGGCTGTTTGCCAGGTCCACGGACCGGAACTTCCTGGTGCGCGTGGAGGACCTGGACCGTGCCCGGGCCGGTGCGGAGGCGGAGCAGCTCCGCGATCTGATGGCTATCGGCGTGACTTGGGACGGCGCCGTCGTACGCCAGACGGACCGAACCGGGCTGTATGCGGCGGCGATCAGCAGGCTGGGTGATGCCGGCCGGACGTATGAATGCTTCTGCACGCGCCGGGAAATCCAGGAGGCGCCGTCAGCTCCGCACGCGCCCCAGGGTGCGTATCCAGGCACCTGCAGGAATCTTGACCCTGCCGAGCTTGAGTTCAAGAGATCCACGCGGCCGGCTGCCATCAGGCTGAGGTCGGACACGGCGGAGTACACCGTGCGGGACATCCTGCACGGGGAGTTCACAGGAGTGGTGGACGACTTTGTGCTGCGCCGAAACGACGGCGTGACGGCGTACAACCTGGCGGTAGTGGTGGATGACGCCGAGCAGGGGATTGACCAGGTGGTCCGTGGGGACGATCTGCTGCCGTCCACCCCCAGGCAGGCGTACTTGGCCTCGCTGCTGGACATACCGGTTCCGGAATATGCGCACGTCCCGCTGGTGGTGAATTCCGACGGCGTCCGCCTGGCGAAGCGCGATGGTGCCGTCACGCTGGCCGACCTCGCGCTCGCAGGAGTTTCGGCGTCCGCAGTGCGGGACGTGCTGTTGGAGTCCCTGGGTCTGCCGGCCGGAACATTGGAGCAGGCGCTGAGGGACTTCCGGCCGGAAGGGCTGCCGCGCGAACCGTGGGTGTGGCGCGGCTACCCGGGCGCTTAGMTSAGRFAPSPSGELHVGNLRTAILAWLFARSTDRNFLVRVEDLDRARAGAEAEQLRDLMAIGVTWDGAVVRQTDRTGLYAAAISRLGDAGRTYECFCTRREIQEAPSAPHAPQGAYPGTCRNLDPAELEFKRSTRPAAIRLRSDTAEYTVRDILHGEFTGVVDDFVLRRNDGVTAYNLAVVVDDAEQGIDQVVRGDDLLPSTPRQAYLASLLDIPVPEYAHVPLVVNSDGVRLAKRDGAVTLADLALAGVSASAVRDVLLESLGLPAGTLEQALRDFRPEGLPREPWVWRGYPGAPGPT0008460_6210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-29_04530459hypothetical proteinTTGCAGGAACTGGACGTAACGGACAGGCGGATCCTCAAGGCCCTGGACGATGATCCCCGGGTACCCATCATGGTGCTCGCCCAAAAGCTCGGCCTGGCCCGCGGGACTGTGCAGTCGCGCCTGGAGCGGATGACGGCGTCGGGAGCCCTGCGTCCCAACAGCAGCCGCGTGCTTCCTGCAGCATTGGGCCGAGGTGTGGCCGCGGCTGTCAGCGCCGAGCTGGACCAGAGCCACCTCAACGAAGCCATCGCCGCGCTTCGGGAGATCCCCGAGGTCCTGGAGTGCCATGCCCCGGCCGGCGACACCGACCTGCTGATCCGAGTGGTGGCCACCAGCCCGGATGACCTGTACCGCGTTTCCGAGGAAATCCGGCTCTGCCCGGGAATCGTACGGACGTCCACCAGCATGTTCCTGCGGGAAGTCATCCCCTACCGGACCACCGGACTGCTGAAGGGCTGAMQELDVTDRRILKALDDDPRVPIMVLAQKLGLARGTVQSRLERMTASGALRPNSSRVLPAALGRGVAAAVSAELDQSHLNEAIAALREIPEVLECHAPAGDTDLLIRVVATSPDDLYRVSEEIRLCPGIVRTSTSMFLREVIPYRTTGLLKGNANANANANA
D1-29_045311509hypothetical proteinATGGCGGGAACATTCTACGGCGCCGACGTGCCGGCGCTTCGGCAGCTCGCCAAGGAGTTGGCCAGCGGCGCCAGCCGGCTGGACCTGCTGGGCCAGCAACTCAACGGCTCGGTCAGCAACAGCCCCTGGAAAGGCCACGACGGCGACAGGTTCCGCAGCGACTGGAACTCTGGGCACCTCAAAGTACTGAAGTCCGCATCGGCGGGGCTGGAGCTGGCGTCCAGGGCGCTGCTCGCCAACGCCGATGAGCAGGACAAGGCAAGCACCAGCGGCGGGCCCGGCTCAGGCAACGGCAGTGGCGCCGGCGGTTCCGGCAACGGGAGTAACAGTGGGCCCGGGGAGGGCACGGCCCAGGATCTGACGGACACGCTGACCGGTATGACCCCGGAAGAACGTGATGACTACCTCAAGAGCGACGAGTTCAAGCAATGGGCCCTGGCTAATCCTGAAGCAGCCAAAACTGCCATGGATGCCGCCGCAGACTCGGGCCTGATCGATAAGAACTCCAAGGTGTACGGTGACTTTCTGAGCTCGTACTGGAACCAGCAAGCCATGCTGGACATGGGCATCGACCTCTCCGATTGGGACACCTCCAAGGGCACGGAGCACAACTGGGAGACCATCAGGAAGGTCTACGACTTCTATGGCCAGGCCTACCTCTCCAACCCTGACCTGCAATGGGCAGGCATGGCCAACATGATTGGCCCGTCATTCGCGGGTGGGTTCAAGGACATGGCCATGCTTCGGGACCTCGCCCAGCAGATTTCGGACAATCCGGCGTCGGATATCCCGCTCCCGGTCCTGGACCAGATCGAACAGCTCGCGGGGATGACCGACCAGGAAATCCGCTACTACGAAACCAGCATGCTGGATATGAACAAGGAAATCTTCCTGGACCAGGCCCGCCAGCATCAGGCCTACATGACCGGGGGACTGGACGAGATCAACCGGTTGCGTGATTCGGGCGCAATAGACCCAGGCACCGCCCAGGAATGGGCCAAAATTGCTTCCGGGGACCCCGAGCTGGTCCAGGAGGGCAACACGGCGTTGCTCTTCCGGGAACAAAACGAGATTATCGCGGACGACTACGACAACATGCGCAACCACCCTGGCGGGGAAGCGGTGACGTACATGGTGACGCTTGCCGGAGAACCCTCCATCCCCGGCGCGAAGAGCTACCCCGAGGTGTTCCCCTACACGTTCGACGTGGAAAGCCCAGGGCCGGAAAACATACCCTTCACCAACTGGGACAACCCCGCCCAATTCCGAACGGACTTCACCACAGGCTTCCCCGACGGCAACATCTCGGACGCAAACCAGCGGTGGGAACTCATCAGGCAGGACACCCTGCCCGCCTATCAGAACCTCCTGGCCGAAGATCCGGCACGCGCCGGCCAGATAATCGGCTCGGACTTCAACGACCGGGTGGAGCAACACCGCCCCATCAACAACATCCCCGGCATTATGGACCGCTTCCTGGATGGCTTTAGCGCGGAGGTCCACCAGTGAMAGTFYGADVPALRQLAKELASGASRLDLLGQQLNGSVSNSPWKGHDGDRFRSDWNSGHLKVLKSASAGLELASRALLANADEQDKASTSGGPGSGNGSGAGGSGNGSNSGPGEGTAQDLTDTLTGMTPEERDDYLKSDEFKQWALANPEAAKTAMDAAADSGLIDKNSKVYGDFLSSYWNQQAMLDMGIDLSDWDTSKGTEHNWETIRKVYDFYGQAYLSNPDLQWAGMANMIGPSFAGGFKDMAMLRDLAQQISDNPASDIPLPVLDQIEQLAGMTDQEIRYYETSMLDMNKEIFLDQARQHQAYMTGGLDEINRLRDSGAIDPGTAQEWAKIASGDPELVQEGNTALLFREQNEIIADDYDNMRNHPGGEAVTYMVTLAGEPSIPGAKSYPEVFPYTFDVESPGPENIPFTNWDNPAQFRTDFTTGFPDGNISDANQRWELIRQDTLPAYQNLLAEDPARAGQIIGSDFNDRVEQHRPINNIPGIMDRFLDGFSAEVHQNANANANANA
D1-29_04532642hypothetical proteinGTGACATCTACCCGCCATTTCCGCCGGCTCGCCGCCGCAGCTGTCCTTGCTGCAGTGACAGTATGTGTCGTTCTCACCGGCTGCCAGGTCAGCGGTACCACCACCGAACCAACCTCTCAAGGGAGCACCATGAGCACCTCGGAATTCTCTACCCTGGACGCAGCCGGAGTGGAGCAGATCCGCACGTCCAAGGCTGCACGGCTGGACATGAGCTCAGGGCGGCTGGAAAAGACGGCCGTACGCGTCACCGACGACAGCTACGGTCCCGAGATCAACACCAAGGATTCGGGAAAGATCAATCTCACCATCGTTGGCCCCAGCGGCGAGATCAGCGGTGACACGGACCGGATCCGGTTCAACACCACCACCAAGCGGCAGGACTTCACCGAAGTCACCTACTTCCTGACCGCCGAATCACCGGAGGAGTATTTTGAGCTGATCCGGGACGGTGTGGCCCGATACGGCATCGATTCCGGCTCCGCCGAACGCTGGATCAGCAGTACCCGGGACGATCCAGGTACCAAGAGCGACTTCTCCATCACCTCCGGCACGTCAACGGGGCTGGACGTAAATTATGACCTGCGGTACGACGGCGGCAAGGCCACCCAGGTGATCATCGTCCACGTCCGGCCAGCTACGTAGMTSTRHFRRLAAAAVLAAVTVCVVLTGCQVSGTTTEPTSQGSTMSTSEFSTLDAAGVEQIRTSKAARLDMSSGRLEKTAVRVTDDSYGPEINTKDSGKINLTIVGPSGEISGDTDRIRFNTTTKRQDFTEVTYFLTAESPEEYFELIRDGVARYGIDSGSAERWISSTRDDPGTKSDFSITSGTSTGLDVNYDLRYDGGKATQVIIVHVRPATNANANANANA
D1-29_04533402decRCOG1522DNA-binding transcriptional activator DecRATGACTGCAACAGCGCTCGCCGCCAGGGTGGGCCTTACCGTGGCGCCGTGCCATCGCCGCCTGCGGGACCTGGAGACGTCAGGGGTGATCCGCGGCTACAAGGCGGACATCGATCCCGCGGCGGTTGGACTGGGGTTCGAGGCCATCGTCTTTGTGACCCTGCGGCAGGTGGACCGGCCCACCATGGAGATCTTCGAGAACCGTGTGGCGGACAATCCCAACATCGTGGAGGCGCAGCGGCTGTTCGGCTCTCCTGACTACCTGCTCAAGGTCATTGCGGAGGACCTGCCCGCCTACCAGCGCTTCTACGATGCCGAACTGACGTCCCTGCCCGGCGTTGAGAGACTCACCTCAACCCTGGTGATGAAAAACCTCAAGTCCAACGCGGGTCCGCCGGTTTAGMTATALAARVGLTVAPCHRRLRDLETSGVIRGYKADIDPAAVGLGFEAIVFVTLRQVDRPTMEIFENRVADNPNIVEAQRLFGSPDYLLKVIAEDLPAYQRFYDAELTSLPGVERLTSTLVMKNLKSNAGPPVPGPT0014049_269DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782NANA
D1-29_04534639rhtB_3COG1280Homoserine/homoserine lactone efflux proteinTTGAATGCCCAGCTGTTTTTCGCCTTTGTCCTGGTGGCCGCTGCCCTCGCCTGCACTCCCGGAGTGGATTGGGCCTACTCCATCACTGCCGGCCTGCGGCAGCGCAGCTTTGTTCCCGCGGTGGCCGGGCTGTGCGGTGGTTACGTCCTGCACACCGTGCTGATGGTGGCTGGCCTCGCCGCGCTGCTGACGGGCATGCCCGGCGTCCTCGGCTGGATCACCCTGGCCGGCGCCGTCTATCTTTTGTGGCTCGGGGTCAGCACCCTGCGCTCCTGGCGCGAAGCCTCGTTCAGCGCAGCATCCGATGCCGGGACAGCCGCCAACCAGGTCCGCACCTTTTTCCAGGGGATGGGCACCAGCGGCATCAACCCCAAGGGCCTGCTGTTCTACGTGGCTTTGGTGCCGCAATTTGTGAGCGCCGAGGCGCCCCTCCCGGTGCCGGTGCAGTCAGGGCTGCTGGGCCTGACGTTTGTGCTGCTCGCCGCGGTGGTCTACACCTGTGTAGCGCTCCTGGCCCGCAAGCTCCTCCAGTCCCGTCCCGGGGCTGCGCGAAAGGTCACCCTGGCAAGCGGCATCATCATGGTGGGACTGGGCCTGGTGCTCCTGTCCGAGCAGGCGGTCCCGCTGTTCCTGTCCTGAMNAQLFFAFVLVAAALACTPGVDWAYSITAGLRQRSFVPAVAGLCGGYVLHTVLMVAGLAALLTGMPGVLGWITLAGAVYLLWLGVSTLRSWREASFSAASDAGTAANQVRTFFQGMGTSGINPKGLLFYVALVPQFVSAEAPLPVPVQSGLLGLTFVLLAAVVYTCVALLARKLLQSRPGAARKVTLASGIIMVGLGLVLLSEQAVPLFLSNANANANANA
D1-29_04535882hypothetical proteinGTGCGGGAGCTGGCTGACGGCGTCGGCGGGCTGATCCACGGAGTGCTGGGCGGCCGCGACCCGGCGTTGATTTCGGTGGACGGGGACGTCCCCAGACTCAAGAGGATGCCCAGCAAGGCGGCCAAGGCCGTCCATGCAGCCATCTTCGCCAACAAGGAACCGGAACGGCTGATCACGGTGGCCCGGACCTATCCCGGATGGGCGGGCCTCTGCTACATGATGGCCGGATTGCTGGAGTACAAGCATGGCGGCTACCTGCGTGCGTCCGAGCTCCTCCAGCGCGGCTTGTCCACCAGGAACGACGACGACGCCAACCAGTATGCTGCGGCCTACCTGATGCGCGTGGTCACCCCGGTGGAAGTGGCCGAACGCATCGAAGTCCCCGTGCTCTTCAGTGAGGAGTCGGTGTTCCTGGCGCTCTCGCACTCCCTGCGCGAAACCGGCCAGCTGGAAGCCGCGCTGCAGACTGTGGCCAGGCTGCCGCCGTCGTTGCCCTCAGCGTTGGCCCGCTGTTCACTGGCCTTCGCGCTGGGATGGGACAAGGAGGTAGTGGTCTGGACAGAAGGCCTGCTCAACTCCGATGATCTTTCCGCGGCGTTGCTGTTGCTCAGGGCGCGCTCGCTGCGGCGGCTTGGCGCCCGCGCGAAGGCCCAGGAAACCCTCAAGGAGGTCCTCCGCCGCCGGAAAACGGACCTGGCTTTGCGCAATGACGCCCTGACCGACCGCGCCCTGCTCCTGCTGGACAACGGGAGGAAGTCCCTCAACCCGCGGGACTGGCTTCGCGGCAGGCCCGCGGAGCTCGAAACCTTCGAGGTCATCCGAAAAGACGTCGAGGAGCGCAGGCTCTGGGAACAGGACTGGAAGCAGTCCGGCGGAGAGTGAMRELADGVGGLIHGVLGGRDPALISVDGDVPRLKRMPSKAAKAVHAAIFANKEPERLITVARTYPGWAGLCYMMAGLLEYKHGGYLRASELLQRGLSTRNDDDANQYAAAYLMRVVTPVEVAERIEVPVLFSEESVFLALSHSLRETGQLEAALQTVARLPPSLPSALARCSLAFALGWDKEVVVWTEGLLNSDDLSAALLLLRARSLRRLGARAKAQETLKEVLRRRKTDLALRNDALTDRALLLLDNGRKSLNPRDWLRGRPAELETFEVIRKDVEERRLWEQDWKQSGGENANANANANA
D1-29_04536501hypothetical proteinATGAACTCCGAAACGGTGGTGACCGTCCTCTGTGGCCTGGCGATCCTGGTGGGCGTGGCCGGCACCGTTATCCCGATCCTTCCCGGCAGCATCCTGATCGCGGCGAGCCTGTTGGCGTGGGCCATCTGGGGCGGGGCCGGAACAGCCGGCTGGGTGGTTTTGGGCGTGGGGCTGCCGCTTGTTCTCGCCGGAATGGTGGCAAGCACGGTGCTGACCGGCCGCAAACTCAGGGAGCACCGCATTCCCAACCGAAGCGTGCTGATCGGACTGGCCGCCGGCGTGGTGGGCATGTTCATCATCCCGCTGGTTGGACTCTTTGTGGGGTTCGCCGCCGGGCTCCTGCTCAGCGAGTTCCACCGCACCCGGAGCATCGGTACGGCCACGTCCACCAGCTGGGCCGCGCTGAAGGCAACCGGACTGGGCATACTCGTGGAATTTGGCCTGGCGAGCCTGGCGGCAAGCACGTGGGTCATCGGCCTGTGGGTCTCGCTGGCGACGTAGMNSETVVTVLCGLAILVGVAGTVIPILPGSILIAASLLAWAIWGGAGTAGWVVLGVGLPLVLAGMVASTVLTGRKLREHRIPNRSVLIGLAAGVVGMFIIPLVGLFVGFAAGLLLSEFHRTRSIGTATSTSWAALKATGLGILVEFGLASLAASTWVIGLWVSLATNANANANANA
D1-29_045371200NAD-dependent malic enzymeGTGTCCATTGACGCAATTGCACCCATCGATAACTCCGCAGCAACGGCCCTGACCGAAGCCGAGATCTTCGACGCCCACCAGGGCGGCAAGCTCTCGATCTCCAGCACCGTCCCGCTGTCGAACAAGCGCGACCTGTCCATCGCCTACACCCCTGGTGTGGCCGAGGTCAGCCGTGCCATCCACAACAAGCCCGAGCTTGCGCGCACACTCACCTGGGCACAGCGCCTGGTGGTGGTGGTCAGCGACGGAACTGCCGTGCTGGGCCTGGGCGACATCGGACCCAGCGCTTCCCTTCCCGTGATGGAGGGAAAGTCGGCCCTGTTCAAGACCTTCGGCGACCTTGATTCCATCCCCCTGGTCCTTAGCACCACCGACGTGGACGAGATCGTGGAGACCCTTGTCCGGCTGCGCCCCAGCTTCGGCGCCGTAAACCTCGAGGACATTTCCGCGCCGCGCTGCTTCGAGCTGGAAGAAAAGCTCATCGAGGCGCTGGACTGCCCGGTAATGCATGATGACCAGCACGGCACCGCCGTTGTAGCGCTGGCAGCCCTGACCAATGCAGCAAAGGTCACCGGCCGCGAACTGGCCGGCCTCCGCGTGGTGGTTTCCGGCGCCGGGGCAGCGGGCATCGCGGTGGCAGAAATCCTGCTCACGGCCGGCATCCAGGATGTGGTGCTGCTGGATTCGCGCGGCGTCATCAACAGCGAACGTGCCGACATTGCCGCCGGCCCGGAGAGCAAAAAGGCCCAGATGGCACAGCGCAGCAACCCGCGCGGCGTCAGCGGCGGCCCGGGCGAGGCCCTCCTGGGCGCCGACGTCTTCATCGGCGTTTCCTCCTCGAAGCTGGATGAAGAACACCTCAAGCTCATGAACAGCCAATCCATTGTGTTCGCCCTCTCCAACCCGGACCCCGAAGTCCTCCCGGAGGTTGCCTCCAAGTACGCCGCAGTAGTGGCCACCGGCCGCAGTGACTTCCCGAACCAGATCAACAACGTTCTTGCGTTCCCCGGGATTTTCCGCGGCGCCTTGGACGCCGGAGCACGCCGCATCACGCCGGCCATGAAGCTTGCGGCAGCCCGAGCCATTGCAGAACTGGCGGAGGCTGACCTCTCGGCAGAGTACATCGTGCCCAGCCCGCTGGACCCGCGCGTCGCTCCGGCAGTCACTGCCGCTGTGGCCGCAGCGGTGGACGCCGAGTAGMSIDAIAPIDNSAATALTEAEIFDAHQGGKLSISSTVPLSNKRDLSIAYTPGVAEVSRAIHNKPELARTLTWAQRLVVVVSDGTAVLGLGDIGPSASLPVMEGKSALFKTFGDLDSIPLVLSTTDVDEIVETLVRLRPSFGAVNLEDISAPRCFELEEKLIEALDCPVMHDDQHGTAVVALAALTNAAKVTGRELAGLRVVVSGAGAAGIAVAEILLTAGIQDVVLLDSRGVINSERADIAAGPESKKAQMAQRSNPRGVSGGPGEALLGADVFIGVSSSKLDEEHLKLMNSQSIVFALSNPDPEVLPEVASKYAAVVATGRSDFPNQINNVLAFPGIFRGALDAGARRITPAMKLAAARAIAELAEADLSAEYIVPSPLDPRVAPAVTAAVAAAVDAEPGPT0001350_2753DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001350-maeA|sfcA|ywkA-K00027NANA
D1-29_04538609hypothetical proteinATGCCCGAGACCCTTTCAGACCATCCGCCCATGGCCGCGAGGCCCTCTGCTCCACGCCAGCAGTTGCGCTACGCCCGAATCCTGGAGGCCGCTGCAGGGTGGGCGCGCAAGGGCCTGGCTTCGGTGGATATGGCCGAAGTTGCGGCCAAAGCCGATGTGCCGCTCGGCACCCTGTACCGCTACTTTCCCACTCCGACACACCTGATGCTTGCGCTGTATCGCCACCAGTTGGAGGAGTTACAGGGCGCCGCACGGAACGCGAGCCCGCGCTTCCGCAGCCGTGCCCTCGCTGGGGTTGTCATGGAGATCTTCCACATGAGGGTGATGCAGCCCGCCGTCGAGCAGTGCCTCACCAGGGGTGCTTACATCACGGGCCGGGATACCACCGCGCTGCTGCGTGAAATCGACGTCCTGGGTGAGAAGGCGCTGGGACCGGTATGCGACGATCCTGCCGTGGCAAGGGTCCTGCTGCTGACCGTCACTGGTCTGGTCCAGTCGGTCAGAAACAGGCGTCTCTCGCTCTTTGAGGCCGAAGAGGACCTGAAGAAGGCTTGCAGCCTCTTCGATCAGGCCTCCTCCGAGGGCTATTCACTGCACCATTCCGCTTAGMPETLSDHPPMAARPSAPRQQLRYARILEAAAGWARKGLASVDMAEVAAKADVPLGTLYRYFPTPTHLMLALYRHQLEELQGAARNASPRFRSRALAGVVMEIFHMRVMQPAVEQCLTRGAYITGRDTTALLREIDVLGEKALGPVCDDPAVARVLLLTVTGLVQSVRNRRLSLFEAEEDLKKACSLFDQASSEGYSLHHSANANANANANA
D1-29_045391140hypothetical proteinATGAGCATCATCAAGAGTGCCAAGTGGGCGGCGCGCCTGGGGGCCGGCGCGGCCGTGGCAATAGCGGCTGCTTTCGCCATTTCCGGGGCGGCCAACGCCAACAATAACCCGGAAAATCCCGTGATCAATGGGCAGCCCTTCGTCGGGTCAACCCTGACCGTCGAGATCGACCCGACGTCATACCGGGGCTGTGGAGCCGCGGCCGGTCCGGACTACCGCATCTATTGGACCCGCGACGGCGAGATCATGCCAAGTCACGGCACGTGGTGGTTTTACCGTCTGAGCGAAGAGGACCGTGGCAGCCAGATCGAGGCACACGTGGCCAGCAACTACCCCTGCCAGCCCATGGCTGTCCACAGCGGGCCAACGCCGCCCATAGCAGCCTCCAACCGCGTCAACGGATACACGGGCCGCGGCGCATCTGAACTCCTGGCCCGCACGTCCAGCGGCACACTGAACTTGTACTCGAAGGTGAACGGCGCCTGGGAAGCCCCCAGGACTGTCGGATGGGGCTGGAACATATTCAACCACCTTCTCTCCCCTGGCGACTTTGATGCCGACGGCAACAATGACGTACTGGCCCGCGACAGTTCCGGCCGGCTTTTCCTGTACGGCGGAACCGGCGACGGCGGGATGTTTCCGGGGCGGCAGATCGGCAGCGGCTGGAACATCTTCGAATCAATATTCAGCCCGGGGGATTTCAACGGCGACGGCACCAATGATGTCCTTGCCGCCAGCTTTGACGGAACACTCTATTTATATCCGGGAAACGGAGCCGGCGGGTGGCTGGCGCCATCCGTGGTGGGCAGTGGCTGGGGCGTGATGGACGCCATTCTCACACCAGGCGATTTCGACGGCAACGGCACAGTGGACTTGGCTGCCCGCGACCGAAGCGGGGCACTGCATCTGTACAACACCGACGGGACCGGCGGCTGGGGCGAGGTCAGCACCATCGGCCAAGGGTGGGATGTCATGACCATTATTGGCGGCGCCGGAGACTTCAACGGTGATGCAACCAACGACGTTTTCGCCATCGGCTCAGACGGACGCCTATTGGCCTACTACGGCAACGGCGCAGGAGGCTGGACTGGAGATGAAGCCATAGGACAGGGGTGGCAGATCTTTACTGCCGTCTTCTAGMSIIKSAKWAARLGAGAAVAIAAAFAISGAANANNNPENPVINGQPFVGSTLTVEIDPTSYRGCGAAAGPDYRIYWTRDGEIMPSHGTWWFYRLSEEDRGSQIEAHVASNYPCQPMAVHSGPTPPIAASNRVNGYTGRGASELLARTSSGTLNLYSKVNGAWEAPRTVGWGWNIFNHLLSPGDFDADGNNDVLARDSSGRLFLYGGTGDGGMFPGRQIGSGWNIFESIFSPGDFNGDGTNDVLAASFDGTLYLYPGNGAGGWLAPSVVGSGWGVMDAILTPGDFDGNGTVDLAARDRSGALHLYNTDGTGGWGEVSTIGQGWDVMTIIGGAGDFNGDATNDVFAIGSDGRLLAYYGNGAGGWTGDEAIGQGWQIFTAVFNANANANANA
D1-29_045402220hypothetical proteinATGGCGTATTCCAGTTCATCTTTTGAAGGACGTTCAACGCGCAACGGCCGCGCACGACTCCGCGAAGGGCCGTCACGTGGCACTGCACGAGGCACGACGGCGGCCCTGCTCTGCGCACTTTTGATCGCCTTCGCCCTGGTCCCGGTGGCGCCGGCTGAAGCAATGGGCCCCGTGCTAACACACTTTGAGCGCACCTCCCCGGACACTATCGACGCCGGGGACACCGTGATCATGCACTTCAGCACTGACATCCCGGTGGCCTTCGGGAGATTGAGGCTGTCCAACGCCAACGGACAGTACCCTCCCCGGGACTTCAGTTGGGGAGACCAAGACGGGCCCGAACTGACTCAGCACGTCATTAGTCTGCCCACCGATGCCGGCTCGTGGCTCGGCGGTCTCTATCTTGTGGAGTCCATATCGTTCTGGGACACCCATACCCATTCTGGTGGGACGACATACCGTAGCCATCCGGGAGGCCAGTGGTTGCGCGCCGCGGATTTCACTGTGGTCAATACCGAACTCACCGCAGCCCGCCCTGACCTGGTTGGGGTGGAGGTAACCTCGGGCGGTGTCCTTGTCCCGGGGGAGGAGGCGGTTATTGCTTTCAGCCTCTCGGCACCTGCTCAAAAGGTCAAACTCCATTTCAACGACGAGTCCCTGCTGAACGCAAAGGTCTTCGAATGGACAGGGAGCCCGGCCCCCCGCCCATTCACAGGCGAGGTGCGCATCCCCATCGATTCCAGCTTCCTCGAAGGTGAATATCAGCTGAAGTCAGTTGCAGTGTCCTACCTTGGCGGCCAGGCCGCATATAGTTTCGGCCGGGGGTTTTGGCCAAACTGGGATGGCGACTTTTTCGTAGTGAACCCCGATAAACCGCTACAAACGTTCGAGAACCTAACTCCGCCTGAGCTCTCAATTGGAAACTACCCGGACAACGTTGAATACGTCCTGAGCATGGGTGACGTTAGACCCAGTCCAACGGGAGGGACCTGGTCGAAGGCACCAACTCAGGTGTGGGGCAGGTGGCTACGGGATGGCAAGCCCCACTGCGGCGCGATGTGGTGCGATTCGAGGTTCTATGCGACCTCAGCCAGTGATATGGGATCGGTGCTCGAATACGAACAGACTGCAATGCTGGCAGGTCACAGGGCGTTAACGGTCCTTTCCAATCCCATCTATTTCTCCCGCTCGGGGCCAACAACTGTCACCGGGGGCAGCCGGGTAGGGAGTGAACTCAGGGCCAGCTTCGATCTATCGACTGTCACGGCATTGCCCGAAGGGGCCGCCCCGACAGTCGGGTTCGAATGGAAGGATTCCGCGGACCCGGCGATTATCCTTGCCACGGGAGACACCTACCGGCCCACCCAAGCGGATGTTGGACGCACTGTTCGTGCGGTGGCCGTGGTCGACTTCGATGGCCAGACGGTCGCCCGGTCGGTCAGTAACGACGTTGGACCGATTGGGAAGGCATCACGACTCAGCGACTTCAACGGTGACGGGTTCAACGACCTCTTTGCGGTGGACCAGACCGGCGTCCTTCGTCTGTACGGGGCCCGCCCGTCCGGCTGGGAGTCTCCGCTCGCCGTCGGCCGGGGCTGGGGTGTTTTCAATCTCGTCCTCTCGCCGGGCGATTTCAACGGCGATGGCAACGTGGACGTCATGGCACGGGATTCCAGTGGCAACCTGTTGCTCTATCAGGGGGATGGCCGCGGGGGCTGGCTTCACGCGTCAGTCGTGGGAACCGGCTGGTCCGGAATGACGGACATCATGGGCCCTGGAGATTTCAACGGCGACGGGACAAGCGATGTCCTGGCCAAAGACAGGAATGGCCGGTTGCTGCTTTATCCGGGTAACGGGCATGGCGGCTGGCTCGCCCCCTTCCAGGTGGGTCAGGGGTGGAACATCTTCGATAAGATCTTCGCCCCCGGCGATTTCGACGGCGACGGCGGACCTGACGTCCTGGCCCGCAACAGCAACGGCGAACTGTTCCTCTACCAAAGTGACGGGCTCGGGGGCATCTTCGGCGTCCACACCATTGGAACCGGCTGGGACGTGATGGCCAATGTGGGGAGCATCGGCGACACCAGCGGGGACGGTTGGAACGATCTCTACGCCATTGACCGTGGAGGAGTCCTGATGGTCTATCACCACAACGCCACCGGCTGGACCGGTCCTCATCCCAGCGGCCCGGACTGGAACACACTGAAATTTGTTTTCTAGMAYSSSSFEGRSTRNGRARLREGPSRGTARGTTAALLCALLIAFALVPVAPAEAMGPVLTHFERTSPDTIDAGDTVIMHFSTDIPVAFGRLRLSNANGQYPPRDFSWGDQDGPELTQHVISLPTDAGSWLGGLYLVESISFWDTHTHSGGTTYRSHPGGQWLRAADFTVVNTELTAARPDLVGVEVTSGGVLVPGEEAVIAFSLSAPAQKVKLHFNDESLLNAKVFEWTGSPAPRPFTGEVRIPIDSSFLEGEYQLKSVAVSYLGGQAAYSFGRGFWPNWDGDFFVVNPDKPLQTFENLTPPELSIGNYPDNVEYVLSMGDVRPSPTGGTWSKAPTQVWGRWLRDGKPHCGAMWCDSRFYATSASDMGSVLEYEQTAMLAGHRALTVLSNPIYFSRSGPTTVTGGSRVGSELRASFDLSTVTALPEGAAPTVGFEWKDSADPAIILATGDTYRPTQADVGRTVRAVAVVDFDGQTVARSVSNDVGPIGKASRLSDFNGDGFNDLFAVDQTGVLRLYGARPSGWESPLAVGRGWGVFNLVLSPGDFNGDGNVDVMARDSSGNLLLYQGDGRGGWLHASVVGTGWSGMTDIMGPGDFNGDGTSDVLAKDRNGRLLLYPGNGHGGWLAPFQVGQGWNIFDKIFAPGDFDGDGGPDVLARNSNGELFLYQSDGLGGIFGVHTIGTGWDVMANVGSIGDTSGDGWNDLYAIDRGGVLMVYHHNATGWTGPHPSGPDWNTLKFVFNANANANANA
D1-29_045411287hypothetical proteinATGAGCCTGTCCAACACACCCGCACCGCCGGATCCCGGCGCCGCAGCGGACGGCATGACGGCGGCACTCGCCGAACCCACCCGGAAGGTCACCGCGCGCTGGGTCACCGGCCTGGTGCTGGTCAACGTTGGTATTAATGCGGCGTTCTTTGGACCCATCAACGTCTTTATCGGCCTGCAGGCCATCGGCATTGACGAGGACAACAAGGAAGCCATCCTGTCCCTTGTGACAGCGTGCGGCGCCGCCGTGTCACTAGTGGCCAATCCGTTGTTTGGCGCCCTCTCTGACCGCACCACCTCCCGCTTCGGCCGCCGCTCGCCTTGGGTGCTGGCCGGTGCCATCCTGGGGACGGCCGCGCTCCTGGCCCTGTCAGGCGCAACGACTGTCGCTCTGATGGTGCTCTTCTGGTGCCTGGTGCAGCTGGGAGCCAACGCGGCCTACGCCGCCATTACAGCTGCCGTCCCGGACCGTGTTCCGGTGCTTCAGCGCGGCGGTGTGGGCGGTTTGGCTGCCATGGGCCAGACGGTGGGAATCCTGATCGGGGCGGTGTTCGGCGCCGTCGTCAGTGGCAACTACATGGTGGGATACGCCTTATGTGCTGCGGCGCTCATACTCTCTGTGCTGCCGTATCTGTTCCACCGGAACGATCCGCAACTGCCTAAAGGTGAGAAGGTTCCGTTCCGGCTGGGGGAGTTTGTCCGAAGCTTCTGGATCAGCCCTGCCCGCCACCCGGACTTCGCCTGGGCCTGGCTGACCCGCTTCCTGGTCAACGTCTGCAACCAGATGACCATCGTGTACCTGCTGTTCTTCCTCCGGGACGTCCTTAAGCATGAGGACCCGGCGCTGGGGGTCCTGACCCTGACTGGCATCTATGCGGTGATGGTGATGATCACCGCTGTGGTGGCGGGCCCGTGGAGCGACCGGCTGGGCCTGCGGAAGCCGTTTGTGATCGGGTCCTCCGGAATCATTGCCGCGGCGGGACTGACCATGGCCTTCTTCCCGGTCTGGACCGGCGCCCTCATTGGAGCCGGCATCCTGGGCGTGGGGTTTGGCGCTTACCTTGCCGTTGACTTCGCGCTGCTCACGCAGGTACTGCCTCAGGCGGCGGACCGAGGCAAGGACATGGGTGTCATCAACGTGGCCAACTCGCTGCCGCAGGTGTTCGCGCCAGGCCTCGCATTCCTTGCGGTGACGTACTTTGGCGGGTATCTGACACTGTTCATCACGGCCGCCTGCATCGGGCTCCTGGGCGCGGTCTTTGTGGTGAAGATCAAGGGCGTTGACTGAMSLSNTPAPPDPGAAADGMTAALAEPTRKVTARWVTGLVLVNVGINAAFFGPINVFIGLQAIGIDEDNKEAILSLVTACGAAVSLVANPLFGALSDRTTSRFGRRSPWVLAGAILGTAALLALSGATTVALMVLFWCLVQLGANAAYAAITAAVPDRVPVLQRGGVGGLAAMGQTVGILIGAVFGAVVSGNYMVGYALCAAALILSVLPYLFHRNDPQLPKGEKVPFRLGEFVRSFWISPARHPDFAWAWLTRFLVNVCNQMTIVYLLFFLRDVLKHEDPALGVLTLTGIYAVMVMITAVVAGPWSDRLGLRKPFVIGSSGIIAAAGLTMAFFPVWTGALIGAGILGVGFGAYLAVDFALLTQVLPQAADRGKDMGVINVANSLPQVFAPGLAFLAVTYFGGYLTLFITAACIGLLGAVFVVKIKGVDNANANANANA
D1-29_04542498rraACOG0684Putative 4-hydroxy-4-methyl-2-oxoglutarate aldolaseATGACAACAGCCGCAGGAAACCAGTCCGCCCAGGCCGTCAACACCGCAGACCTCTACGATGAGCGCGGCGAAGACCTGGCCTCGGTGTCCCTGCAGTTCCAGTCCCTCGGTGGCCGCTCACACTTCAGCGGGCCGGTCAGGACCATCCGCTGCTTCCAGGACAACGCCCTGGTGAAGTCGACGCTGGCGACTCCCGGCGATGGTGCGGTGCTGGTGGTGGACGGCGGCGGATCGCTGGGCACGGCCCTGATGGGCGACATGATTGCCGAAAGCGCCGTCGCGAACGGGTGGGCCGGCGTGGTGATCAATGGCGCCATCCGGGACCGCGAGGCCATCGCCCGGCTGGACCTCGGGGTAAAGGCCCTGGGCAGCAACCCGCGAAAGAGTGCCAAGGCTGGCGCCGGGGAAGTTGACGTGGACGTGGAGATCGACGGCGTGACCTTCCGCCCCGGCATCACCGTCTGGTGCGACCCCGACGGCATCCTCGTGGAGCGCTGAMTTAAGNQSAQAVNTADLYDERGEDLASVSLQFQSLGGRSHFSGPVRTIRCFQDNALVKSTLATPGDGAVLVVDGGGSLGTALMGDMIAESAVANGWAGVVINGAIRDREAIARLDLGVKALGSNPRKSAKAGAGEVDVDVEIDGVTFRPGITVWCDPDGILVERNANANANANA
D1-29_045431662bmr3_3Multidrug resistance protein 3ATGTCCAAATCCACCGCAGTGCGGGCCGCCGGAGAAACCCTGACGCACCGGCAAACAGTCACAGTGATGGTGGGACTCATGCTTGGCATGTTCCTCTCATCGCTGGACCAGACCATCGTGTCCACGTCCATCTACACCATCGCCAACGACCTGGACGGGCTCTCCCTCCAGGCGTGGGCCACCACCGCCTACCTCATCACCTCCACCGTCAGCACTCCGCTGTACGGCAAGCTGAGCGACATCTTCGGCCGCCGCCCCCTCTACCTTGCCGCCATCGTGATCTTCCTGGCAGGCTCGCTGTACGCCGGGTCCGTGCACTCCATGACGGAGCTGGCCATCGCCCGCGGCATCCAGGGCATGGGCGCCGGCGGCCTGCTGGCCCTCGCCCTGACCATCATCGGCGACATCGTCTCCCTCAAGGATCGCGCCAAATACCAGGGCTACTTCATGTCCGTGTTTGGCATTTCCTCAGTCCTGGGCCCAGTGGTCGGTGGCGCCTTCGCCGGCTCCGCCAACATCCTGGGATTCGACGGGTGGCGCTGGGTATTCTTCATCAACCTGCCCATCGGCCTGGCAGCGCTGGCCGTGGTGTTCCTCTACCTTCACCTGCCGGCCAAGCACGTCAAGCAAAAAATCGACTACTGGGGTGCAGCAGCCATCACCCTTGCCATCGTGCCGCTCCTGCTCGTCGCGGAGCAGGGGCGCAGCTGGGGCTGGACGTCCCCAAGTTCGTTCCTCTGCTACGGCCTGGGCGTGGTGGGAATCGTCTGGTTCCTGCTGGCTGAGAAGCGCGCCGGAGACTACGCACTGATTCCGCTCCGGCTCTTCAAGAACATGACCTTCGGCCTGTCCTCGCTCCTGAACTTCATCATCGGCGTCGGCATGTTCGGGGCCATCGCCATGCTTCCGATGTACCTGCAGCTGGTCAAGGGGCTCACCCCCACTGAGGCCGGCCTGATGATGATCACCTTCACCGCGGGCATCCTCACCGGCTCCATCACGGCCGGCCGCACCATTTCCGCCTCCGGCACCTACCGGATCTTCCCCATCATGGGTACGGCCATCCTGACCGCCGCCGCTCTGGCCATGGGCCTGACCCTCGGCGTGGATACCGGGCTCTGGGTGCCAGGACTCATTGCCGTCTTCTTCGGCATGGGACTGGGCTTCTGCATGCAGCCGCTCACCCTGGCCATGCAGGTCTCCGTCCCGGCGAAGGACATGGGCGTGGGAACCTCCTCCGCCGCGTTCTTCCGCTCGATGGGCGGTGCGGTGGGCACTGCGGTGTTCATCTCCATGCTCTTCAGCCTGGCCGCGGGCCGCATAGCTGACACCATGAAATCGGCCATGGGCAGTGCCGACTACCAGGCCGTGCTCAATGACCCGGCCGTGGCCGCCGACCCCGCCAACGCCAAGCTCTATGAGTTCTTCCAGCACGGCGCATCCAACGAGTCCCTCAACGACACCAGCTGGCTGCACACCGCCAACACCGTGCTCACCCGGCCCATCACCGAAGGATTCGCCTACGCGATCGACACCGTGATGATCACAGCGGCAGTACTCACGGGGATCGCCTTCCTCATCAGCTTCGCCTTGCCGAACAAGAAGCTGACGGACCCGAAAGCCGCGCCGCAGAAGGAGCCGGAGGCAGTGCCCGCGCACTGAMSKSTAVRAAGETLTHRQTVTVMVGLMLGMFLSSLDQTIVSTSIYTIANDLDGLSLQAWATTAYLITSTVSTPLYGKLSDIFGRRPLYLAAIVIFLAGSLYAGSVHSMTELAIARGIQGMGAGGLLALALTIIGDIVSLKDRAKYQGYFMSVFGISSVLGPVVGGAFAGSANILGFDGWRWVFFINLPIGLAALAVVFLYLHLPAKHVKQKIDYWGAAAITLAIVPLLLVAEQGRSWGWTSPSSFLCYGLGVVGIVWFLLAEKRAGDYALIPLRLFKNMTFGLSSLLNFIIGVGMFGAIAMLPMYLQLVKGLTPTEAGLMMITFTAGILTGSITAGRTISASGTYRIFPIMGTAILTAAALAMGLTLGVDTGLWVPGLIAVFFGMGLGFCMQPLTLAMQVSVPAKDMGVGTSSAAFFRSMGGAVGTAVFISMLFSLAAGRIADTMKSAMGSADYQAVLNDPAVAADPANAKLYEFFQHGASNESLNDTSWLHTANTVLTRPITEGFAYAIDTVMITAAVLTGIAFLISFALPNKKLTDPKAAPQKEPEAVPAHPGPT0010360_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TETRACYCLINE_RESISTANCE,PGPT0010360-otrB|tcr-K19542NANA
D1-29_045441440xylED-xylose-proton symporterATGTCCACCGCCAAGGAGCAGATAACCGCCAAGATCCCGCAGCGGGTGATCTGGCTGGCCCTGGCGGGCGCGGTGGGCGGCTTCCTCTTCGGCTTCGACTCGTCGGTAGTCAACGGCGCTGTTGACGCCATCAAGGACGAGTTTGCGCTCTCCGAGGCCGTCACCGGCTTCGCCGTGGCCATTGCCCTGCTGGGCTGCGCGGCGGGCGCCTACCTGGCCGGCAAGGTTGCCGACCGTTACGGCCGCATTCCCGCCATGAAGCTTGGCGCGCTGCTGTTCCTGGTCAGCGCCATCGGGACAGGATTCGCGTTCGGCGTCTGGGACCTGATCTTCTGGCGCCTGGTGGGAGGACTCGGCATCGGGCTGGCCTCAGTCATCGCCCCCGCCTACATCTCGGAGATCTCCCCCCGGCAGGTGCGCGGCCGGCTGGCCTCGCTGCAGCAGCTGGCCATCACCACGGGTATCTTCGCCGCACTCCTCTCCGATGCCCTCTTCGCCACCAGCGCTGGTGGAGCGGACCAGGGGTTCTGGCTGGGCATTGAAGCCTGGCGCTGGATGTTCCTGGCCGCGGCTGTGCCTGCCGTGGTTTACGGCTGGATCGCCTACACCCTCCCCGAGTCCCCGCGTTTCCTGGTCTTCCAGGGCAAAGACGAGGAAGCCCGCAAGGTCTTCGACTCCATCGCCCCGGCCGAAGACACAGACAGGCACATCCGCGAAATCCAGGATGCCATCGAAGAGGACAAGCTGGCGGGCCAGAAGGGATCGCTCCGCGGCAGGACCTTCGGTCTTCAGGCTGTGGTGTGGGTGGGCATTACCCTCTCCGTGCTGCAGCAGTTCGTGGGCATCAACGTGATCTTCTACTACTCCACCACGCTGTGGAAGGCCGTGGGCTTCCAGGAGAAGGACTCGCTGACCATCTCCGTGGCCACCTCCATCACCAATATCCTGGTCACCCTGGTGGCTATCGCGCTGGTGGACCGCATCGGCCGCCGCCCCATCCTGCTGGCCGGCTCGATCGGCATGGCTGCCTCCCTCGGCACCATGGCCCTGGCGTTCTCCTCCGCGGTGGGCTCCGGCCCGGACATCTCCCTGCCGGGCGCCTGGGGTCCTGTGGCCCTGGTGGCTGCCAACATCTTTGTGGTCAGCTTCGGCGCTTCCTGGGGGCCCCTGGTGTGGGTACTCCTGGGCGAGATCTTCCCGTCCCGGATCCGCGCCCGCGCGCTCGGCCTGGCTGCGGCGGCGCAGTGGGTGGCCAACTTCGCCATCACGCTCAGCTTCCCCGTGATGGCGGCCGCCTCCCTGCCGCTGACCTACGCCATGTATGCACTGTTCGCAGCGGCGTCATTCTTCTTTGTGATGTTCAAGGTACCGGAAACCAATGGCATGTCCCTGGAACAGGCCGAGACCCTGTTTGTGCCCAAGGGATCCGCGAAGGCGTAAMSTAKEQITAKIPQRVIWLALAGAVGGFLFGFDSSVVNGAVDAIKDEFALSEAVTGFAVAIALLGCAAGAYLAGKVADRYGRIPAMKLGALLFLVSAIGTGFAFGVWDLIFWRLVGGLGIGLASVIAPAYISEISPRQVRGRLASLQQLAITTGIFAALLSDALFATSAGGADQGFWLGIEAWRWMFLAAAVPAVVYGWIAYTLPESPRFLVFQGKDEEARKVFDSIAPAEDTDRHIREIQDAIEEDKLAGQKGSLRGRTFGLQAVVWVGITLSVLQQFVGINVIFYYSTTLWKAVGFQEKDSLTISVATSITNILVTLVAIALVDRIGRRPILLAGSIGMAASLGTMALAFSSAVGSGPDISLPGAWGPVALVAANIFVVSFGASWGPLVWVLLGEIFPSRIRARALGLAAAAQWVANFAITLSFPVMAAASLPLTYAMYALFAAASFFFVMFKVPETNGMSLEQAETLFVPKGSAKAPGPT0014440_898DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0014440-hxt-K08139NANA
D1-29_04545552hypothetical proteinATGGGGATCCGGATATGCAATGCTGGGCTGGTGACCCCAAACCCAGGTGCCCTCTCCGCCCTGCTGACTGCCGACGTCGACGGCGGTAGGTTCCTCCTTCGCCGCGCCCTGCGGACGGATGTGGCGGCCATCGTTGGGCTGCTCGCCGATGATTCGTTGGGGGCCGCTCGCGAAAGCGCGGAGGATCTGGCGCCCTACGAGGAGGCCTTCGGGGCGATCGACGCGGACCCCAACCACTTGCTGGTGGTGGGCGAACTCGTGCCTCCCGGCGAGGCGTCAGGGCAGGTAGTGGCAACGTTCCAGCTGAGTTTCCTGCCGGGAATTTCACGCCGCGGTTCGTGGCGTGCCCAGATTGAGGCTGTCAGGGTGGCGGCAAGCCTGCGCGGCCAGGGGATCGGCAACCTCATGCTGAACTGGGCCATCGAAGAGTCACGGACGCGGGGCTGCACCACGATGCAACTGACCACCCACAAGACGCGCAAGGACGCCCACCGGTTTTACGAGCGGCTTGGCTTCGATAGGAGCCACGAAGGCATGAAACTTACGCTCTAGMGIRICNAGLVTPNPGALSALLTADVDGGRFLLRRALRTDVAAIVGLLADDSLGAARESAEDLAPYEEAFGAIDADPNHLLVVGELVPPGEASGQVVATFQLSFLPGISRRGSWRAQIEAVRVAASLRGQGIGNLMLNWAIEESRTRGCTTMQLTTHKTRKDAHRFYERLGFDRSHEGMKLTLNANANANANA
D1-29_045461164mtlDCOG0246Mannitol-1-phosphate 5-dehydrogenaseGTGAAGGCGGTACATTTCGGTGCGGGCAACATCGGCCGCGGCTTTGTGGGCCTCCTGCTGCACCAGGCCGGGTATGAGGTGGTTTTCGCAGATGTCGCCGACGAGCTCATCAACCAGCTCGCCGGGGCGGACAGCTACGCGGTTCATGAGGTGGGCGAGAATCCCACAGTCAGGACCGTGACCAACTTCCGCGCACTCAATTCGGGCATGGAGGAAGCACGGCTGGTGGCGGAAATTGCGACGGCGGACATCGTCACCACCGCTGTGGGGCCGCACGTCCTGAAGTTCGTGGCGCCCACCATCACCAAGGGGATCGCCGCCCGGGACACCTCGCTGCCGCCGCTGCAGGTGATGGCTTGTGAGAACGCCATCAATGCCACAGACATCCTGCGGGCAGAGGTTGCCGCGCTCTGGGACGACGCCGCAGGTTCACTCGACTCCATGGCCGTGTTCGCGAACACGGCCGTGGACCGGATCGTGCCCAACCAGGAACCCGGACAGGGCCTGGATGTCACGGTGGAGACGTTCTACGAGTGGGTCATCGACCAGACGCCCTTCGCCGGGGCCGCGCCGGTGATTCCCGGGGCCACCTTTGTGGACGAGCTTTCGCCGTACATCGAACGGAAGCTTTTCACGGTGAACACCGGGCATGCCTCGGCGGCCTACTTCGGCTTCGAGGCAGGCCTGGAGAAGATCTCGGATGCCATGGCTGACCAGGATGTGGCCGAGGACGTGCGGGCGGTCCTGGAGGAAACCAAGCAGCTCCTGGTGGCCAAGCACGGCTTCAACAGCGACGAGCAGGAAGCCTACGTCCAGAAGATCCTGGTCCGGTTCTCCAACCCGCACCTGCCCGATACTGTCCACCGCGTAGGCCGGGCCCCGCTGCGCAAACTCAGCCGGAACGAACGCTTCATCAGTCCGGCTGCTGAGCTGGCCGAACGCGGGATCGTGCCGGAGGCCCTCCTGGGGGCCATCGCCGCCGCGCTGCGCTTCAACGATCCCGCCGACGCAGAGGCAACGGAACTGGCACAGATCCTGGCATCGTCATCTCCGGATGCCGCGACAGAGAGGATCACGGGCCTGGCTCCCGGGCATCCGCTGTTTGCTGCCATCTCCACCCTGGTGGAGGAACGCCAGGCGGAGGTGGCCAAGGCCCCGGCCTGAMKAVHFGAGNIGRGFVGLLLHQAGYEVVFADVADELINQLAGADSYAVHEVGENPTVRTVTNFRALNSGMEEARLVAEIATADIVTTAVGPHVLKFVAPTITKGIAARDTSLPPLQVMACENAINATDILRAEVAALWDDAAGSLDSMAVFANTAVDRIVPNQEPGQGLDVTVETFYEWVIDQTPFAGAAPVIPGATFVDELSPYIERKLFTVNTGHASAAYFGFEAGLEKISDAMADQDVAEDVRAVLEETKQLLVAKHGFNSDEQEAYVQKILVRFSNPHLPDTVHRVGRAPLRKLSRNERFISPAAELAERGIVPEALLGAIAAALRFNDPADAEATELAQILASSSPDAATERITGLAPGHPLFAAISTLVEERQAEVAKAPAPGPT0013700_237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0013700-mtlD-K00009NANA
D1-29_045472064mtlACOG2213PTS system mannitol-specific EIICBA componentATGGCAACAGAGACAGTTGCAAAGCCCCGCACCAGCATGCGGGTAGGCGTCCAGAAATTCGGGACGTTCCTGTCCGGCATGATCATGCCCAATATTGGGGCGTTTATCGCCTGGGGCCTGATCACGGCGCTTTTCATCGAAAAGGGCTGGATTCCCGTTCCCCAACTGGGCGGCTTTGGCGAGACAAACGGTGTGCCAAACACAGGCCTGGTTGGCCCCATGATCACCTACCTGCTGCCGCTCCTGATCGCCTACACCGGTGGGCGGATGGTCTATGACGTCCGTGGCGGCGTCGTGGGCGCCATCGGCACCATGGGCGTGATCGTGGGTGCCGGTATCCCGATGTTCATCGGTGCCATGATCATGGGCCCCCTTGGCGGCTGGACCATGAAGAAGATCGACTCCCTCTGGGACGGCAAGATCCGGCCCGGCTTTGAGATGCTGGTGAACAACTTCTCTGCCGGCATCTGGGGCGGGCTGCTTGCGATGCTCGGCTTCTATGGCATCTCCCCGCTGGTCACTGCCTTCAGCACCGCGGCGGGCAACGTGGTCCAGTTCCTGGTCAACAACGGCCTCCTGCCGCTGACCAGTATTTTCATTGAGCCTGCCAAGGTGCTGTTCCTCAACAACGCCATCAACCACGGTGTGCTGACCCCGCTGGGCATCCAGCAGTCGCTTGACCAGGGCAAATCCATCCTGTTCCTGCTGGAAGCCAATCCCGGCCCGGGCTTCGGCATCCTGCTCGCCTACATGCTGTTCGGGAGAGGAGCGGCGAGGGCTTCAGCTCCGGGCGCCGCCATCATCCACTTCCTTGGCGGTATCCACGAAATCTACTTCCCCTACGTCCTGATGCGCCCGCTGCTGATCCTGGCCGCGATCGCTGGCGGCATGACGGGCATCGCCACCCTGGCCATCACCAACTCCGGCCTCGTGGCACCGGCGGCGCCGGGGTCCATAATCGCGGTGCTCGCCCAGACCGCCCGTGACAGCTACCTGGGCGTGATCCTCTCGGTGGTGCTCGCTACCGCGGTTTCGTTCCTGGTTGCCTCAGTGATCCTCAAGACCACCAAGCACAGCGACGAAGTTGGGCTCAGCGATGCCACCAGCCGCATGGAAGCCATGAAGGGCAAGAAGAGCTCGGTCTCCTCGGCCCTGACTGGCGCAGGCACCGCAGGCACTGCTGTCATCGCCGGACCCATCAAGAACATTGTGTTCGCCTGCGACGCCGGCATGGGCTCCAGTGCGATGGGAGCTTCCGTGCTGCGGAACAAGATCAAGGCTGCCGGTTTCCCGGAAGTCAAAGTCACGAACGCCTCCATTGCCAGTCTCGACGACAATTACGACGTTGTGGTCACCCACCAGGACCTCACCGAACGCGCCAAACCTGTCACCTCCAGCGCCGCACACTTCTCCGTGGACAACTTCATGAACAGTCCGCGGTACGACGAGATCGTCGAGCTGGTCAAGAGCAGCCACACTGGGAAAACCGAGATGGAAATGTCAGAGGCCAAGGCTCCCGACGCCGCCGCACACGGCGCCCATGCGGCCGATGTTCCTGCCGGAACAGCCCCCGGCGCTGTCGCAACAGGAACCGCTGCCGCCGGCGCTGCCGCAAGTCCCGCCGTCGGACGTGCTGAGATCCTGGCGCCGGAGAGCGTGATCCTCAACGGCACTGCCACCACCCGCGATGCCGCGATCGACGAAGCCGGCCGGCTCCTGCTGGCGCGGGGCGCCGTGGACGAGGGCTACGTCACCGCCATGCACGAGCGCGAGGAATCTGTCTCCACCTATATGGGCAGCTACCTGGCCATCCCGCACGGTACCAATGCAGCCAAGGACCACATCAAGAGGTCAGCGGTTTCCGTGATCCGCTACCCGGACGGCATCGACTGGAACGGCAAAGAGGTGAAGTTCGTGGTGGGCGTGGCCGGCATCAACAATGAGCACCTCCACATCCTGTCCTCCATTGCCAAGGTGTTCACCGACAAGTCCCAGGTGGCCCAGCTGGAAGCAGCAACCACTGTGGATGAAGTGCTGGCGCTGTTCGGAAAGGTCAACTCATAGMATETVAKPRTSMRVGVQKFGTFLSGMIMPNIGAFIAWGLITALFIEKGWIPVPQLGGFGETNGVPNTGLVGPMITYLLPLLIAYTGGRMVYDVRGGVVGAIGTMGVIVGAGIPMFIGAMIMGPLGGWTMKKIDSLWDGKIRPGFEMLVNNFSAGIWGGLLAMLGFYGISPLVTAFSTAAGNVVQFLVNNGLLPLTSIFIEPAKVLFLNNAINHGVLTPLGIQQSLDQGKSILFLLEANPGPGFGILLAYMLFGRGAARASAPGAAIIHFLGGIHEIYFPYVLMRPLLILAAIAGGMTGIATLAITNSGLVAPAAPGSIIAVLAQTARDSYLGVILSVVLATAVSFLVASVILKTTKHSDEVGLSDATSRMEAMKGKKSSVSSALTGAGTAGTAVIAGPIKNIVFACDAGMGSSAMGASVLRNKIKAAGFPEVKVTNASIASLDDNYDVVVTHQDLTERAKPVTSSAAHFSVDNFMNSPRYDEIVELVKSSHTGKTEMEMSEAKAPDAAAHGAHAADVPAGTAPGAVATGTAAAGAAASPAVGRAEILAPESVILNGTATTRDAAIDEAGRLLLARGAVDEGYVTAMHEREESVSTYMGSYLAIPHGTNAAKDHIKRSAVSVIRYPDGIDWNGKEVKFVVGVAGINNEHLHILSSIAKVFTDKSQVAQLEAATTVDEVLALFGKVNSPGPT0016945_18DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0016945-mtlA|cmtA-K02800NANA
D1-29_04548729hypothetical proteinATGAGTTTGGATGGCCAGCTTCCCCCCAAAATGAGACTGCTGCGTGCGGCGGCCGAATTGCTGGCAAACTCTGCGGGGGCTCCCGTTTCAACCCGCCAGATCACCCAGCTGGCGGGCGTCACGGCGCCCACGCTGTACCACCACTTCGGTGACAAGGAAGGTCTGTTCGACGCCGTCGTCGCCGCAGGTTTTGAAGAGTATGTTGCGGGCGAGAGGGACTTCGCCCCGTCCGGGCATCCGCTGGAAGACATCCGGCGGATGTGGGACAACCACGTACAGTTCGGCCTCAACCAGCCGGAACTGTACCTGGTGATGTTCGGCAATATCCGGCCTGAAAGCCGCCCCGCCATCGTGGCTGATGCTGAGGCGCTGATGGAGGAGATGCTGAACAAGGCAGCAATGGCGGGCCAGCTGAATGTCCAGCCGCGGGAGGCAGCCAGGTCCATCCTGGCCGCGAACGTGGGTGTGACGCTCATGCTGATAGTGGAACCCGCCACTGAACGGAACCTTGAACTCTCCACCATGACCCGGGATGCCATGATTTTTGCGGTGTCCGCCGAGCAGTCCGCCGGTGCGGGCCCGGATGACTCCGGGAAGTCCTCGGTAGTGGTGGCAGCGATTGCCCTGAACGCCGCGCTTCAGTCATCGCACTCCGACCAGCTCTCCAGCTCCGAACTCAAACTCTTCCTCGAATGGCTGCACCGGATCTCGTCCAGCTCCAACGGCTAGMSLDGQLPPKMRLLRAAAELLANSAGAPVSTRQITQLAGVTAPTLYHHFGDKEGLFDAVVAAGFEEYVAGERDFAPSGHPLEDIRRMWDNHVQFGLNQPELYLVMFGNIRPESRPAIVADAEALMEEMLNKAAMAGQLNVQPREAARSILAANVGVTLMLIVEPATERNLELSTMTRDAMIFAVSAEQSAGAGPDDSGKSSVVVAAIALNAALQSSHSDQLSSSELKLFLEWLHRISSSSNGNANANANANA
D1-29_045491662ptsICOG1080Phosphoenolpyruvate-protein phosphotransferaseGTGAGCCCCGGCCGCATCATCGGCACCATCCGGCAGATGCCCAAACCGATCAGCGAACCTCCGGCGGGAGAGCAACTGGCAGCGGAAACCTCCGCCGAGGAAGCCACCGCCGCGCTCAAGTCGGCTTCCCAGGCCGTGCATGACGAGCTCAAAGCCCGTGCCGCCCATGCCACCGGCGACGGCAAGGCAGTCCTGGAAGCCACGGCACTGATGGCCAAGGACACCATGTTGATCAAGGGTGCCGCCAAGCTCGTTGCCCGCGGCGTATCAGCCGAACGCGCCATCTGGGAGTCCGGGTCCTCCGTCTCGGAAATGCTCCACAACCTGGGCGGCTACATGGCAGAGCGCGCCACGGACGTCCTGGACGTCCGGGCCCGCATCGTCGCCGCGCTCCGGGGCGTTCCCGCACCCGGCATCCCCACGTCCAGCACCCCCTTCGTTCTGGTGGCTGAGGATCTGGCTCCCGCGGACACTGCCACCCTGGACCCGAACAAGGTCCTGGCCCTGGTGACCTCAGGCGGCGGGCCCCAGTCACACACCGCCATCATCGCGCGCTCCCTTGGCCTTCCCGCCGTCGTCGCCGCAGTCGGGGTGGACGAACTTCCGGACGGCACGGAAGTGTATTTGGACGGTGCCGCCGGCACCGTCGTCTCCAAGCCGGACGAATCCCTGCGTGCAGCAGCGGAGGCATGGGCGGCCACGGCTTCGCTGCTGGCCGATTTCACAGGCACGGGCGCGACGGCGGATGGCCATCTGGTGCCGCTGCTGGCCAATGTGGGCGGCGGCAAGGACGCCGAGGCGGCCGCCAAGCTGGGCGCGCAGGGAGTAGGCCTGTTCCGCACCGAGTTCTGCTTCCTCGAACGGGATACGGAACCCTCAGTGGAAGAGCAGGCCGTCGCCTATAAGAAGGTTTTTGATGCCTTCCCCGGCAAGAAGGTTGTGCTGCGCACGCTCGACGCGGGCGCCGACAAGCCACTCCCCTTCCTGACGGACTCCACCGAGCCCAATCCCGCCCTGGGCGTCCGCGGTTACCGCACCGATTTCACCACGCCTGGCGTCCTGGACCGCCAGCTGGAGGCCATCGCACTGGCGGAGAAGCAGTCCGAGGCGGACGTGTGGGTCATGGCCCCCATGATCTCGACGGCCGAGGAAGCCGCACGTTTTGCCTCCATGTGCGCAGATGCCGGCATCAAGACTCCGGGCGTTATGGTGGAGGTTCCTTCCGCGGCCCTGACCGCAGAGGCCATCCTGCGCGAGGTGGGCTTCGCCAGCCTGGGCACCAACGACCTCACCCAGTACGCCATGGCGGCAGACCGCCAGCTTGGCCCGCTCGCCAACCTGAACACGCCGTGGCAGCCTGCCGTCCTGCGGCTCGTAGGCCTGACCGTTGAAGGCTCCCGCGCGGAAGGAAACAACAAACCCGTGGGTGTCTGCGGTGAGGCGGCAGCGGATCCGGCCCTCGCCGTCGTCCTCACCGGCCTGGGCGTTTCCACGCTGTCCATGACCGCACGGTCCCTGGCCGCGGTGGCTGCGGTGCTGAAGACTGTCACCCTCGCAGAGGCGCAGCAACTGGCCAAACTTGCGCTGTCCGCGCCAAGCGCCACTGAGGCGCGGGCCTGGGTGCGGGAGAAACTGCCCGTGCTGGAAGAACTCGGGCTCTGAMSPGRIIGTIRQMPKPISEPPAGEQLAAETSAEEATAALKSASQAVHDELKARAAHATGDGKAVLEATALMAKDTMLIKGAAKLVARGVSAERAIWESGSSVSEMLHNLGGYMAERATDVLDVRARIVAALRGVPAPGIPTSSTPFVLVAEDLAPADTATLDPNKVLALVTSGGGPQSHTAIIARSLGLPAVVAAVGVDELPDGTEVYLDGAAGTVVSKPDESLRAAAEAWAATASLLADFTGTGATADGHLVPLLANVGGGKDAEAAAKLGAQGVGLFRTEFCFLERDTEPSVEEQAVAYKKVFDAFPGKKVVLRTLDAGADKPLPFLTDSTEPNPALGVRGYRTDFTTPGVLDRQLEAIALAEKQSEADVWVMAPMISTAEEAARFASMCADAGIKTPGVMVEVPSAALTAEAILREVGFASLGTNDLTQYAMAADRQLGPLANLNTPWQPAVLRLVGLTVEGSRAEGNNKPVGVCGEAAADPALAVVLTGLGVSTLSMTARSLAAVAAVLKTVTLAEAQQLAKLALSAPSATEARAWVREKLPVLEELGLPGPT0002025_2616DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0002025-ptsI-K08483NANA
D1-29_04550783menH_82-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGAAACTCAGTGGTGGCCGTGACGTGGAGTCCGGTGGACTGACCGGGCGGGTGTATGCGTCCGTGGAACACAAAAACCACGGTCCGCGGCCAACGTACGTGCTGCTTCACGGAATCGGCGTCTCACACCGCTACCTTGCGCGGCTGCATGTTGAGCTGGCCCTCTCGGCAAACGTCTACACTTTTGACCTCCCGGGCTTCGGCGACGCACCACGGCCGCGTCGGCAGGTGCCGGTAGGCGAGTACGCAGCCTTTGTGCACACCGTCCTGACGGAGGCTGGGGCCGGGCCGGTTGTGGTTATTGGCCACTCCATGGGCGTGCAGTACGCCGTGGAACTCGCGCTGCAGGAGCCGTCATCGGTGGCTGGCCTGGTGCTGATGGGCCCGGTGGTCGACGACGAACGGAAGTCCGTGCCACGGCAGGCGATGGCACTGGCCCGCGATGCCCTGCTATATGAGACCCTCTCCTCCAACCTCACAGTATTCTCGGACTACTTCCGTGCCGGGCTGCGCTGGTACCTCACGGAGCTGCCCGTGATGATGGAATATCCGCTCGAAACAAGGCTGCCCGGCGTGAGCCAGCCTGTACTGGTCATGCGCGGAGGCAAAGACCCGGTGGCCCGCCGGCCCTGGTGCGAACGCCTGGCATCCGCGGCACCCCGGGGGAGCCTGACCGAAGTTCCCGGCGTAGGCCACGTCCTCCAGCACACGGCAACGGCGGCCACCGCGGCCGCGATCAGCAGCTGGGTCCGGGCGGCAGACGGCTTCGGAGTGACCGCCTGAMKLSGGRDVESGGLTGRVYASVEHKNHGPRPTYVLLHGIGVSHRYLARLHVELALSANVYTFDLPGFGDAPRPRRQVPVGEYAAFVHTVLTEAGAGPVVVIGHSMGVQYAVELALQEPSSVAGLVLMGPVVDDERKSVPRQAMALARDALLYETLSSNLTVFSDYFRAGLRWYLTELPVMMEYPLETRLPGVSQPVLVMRGGKDPVARRPWCERLASAAPRGSLTEVPGVGHVLQHTATAATAAAISSWVRAADGFGVTANANANANANA
D1-29_04551420hypothetical proteinATGGCATTGATCGCCCCAAGGATGACGGCCGGCCTGCCGGCCGAGGAAGCAGAGAAACTGCAGCGCGCCCTTCAGGGCAGCCATGACATCACCGTATTCGTGGATGGCACCGTCCACAGGCTCCCGCCCCAGGCGCGGGACGCCGTCGTCGATCTCCTCAGCCGCTTCAGCAGGGGGGAAGCGGTGACCGTCAGCAGCGTCGAAGAAATGCTGACCACATCCCAGGCCGCCGAACTTGCCGGCATCTCCCACACCTACCTGCGGAACATGACGGACCGTGGCGAGATACCGGTGGAATACCGCGGCACGCACCGGCGAATCCGGCTGGCCGCCATTATGGCGTGGCTGGACCAGCAGAAGAAAACGGCACAGGCAACGCAACAGTCAGGCGAAAATGACGGCGCATCAGCCGCAGGGTGAMALIAPRMTAGLPAEEAEKLQRALQGSHDITVFVDGTVHRLPPQARDAVVDLLSRFSRGEAVTVSSVEEMLTTSQAAELAGISHTYLRNMTDRGEIPVEYRGTHRRIRLAAIMAWLDQQKKTAQATQQSGENDGASAAGNANANANANA
D1-29_04552312hypothetical proteinGTGGTGGCGGGCATCGCCGCCATGATGGTTGCTGCCGTGCTGGGGTCCGCCATGAAGCTGAATAATACGTCCATCGTGATGTCCAGCTGCGTCGTATTTGTTGCCGTGGCCATGTGGACCGACAGTGCCCTCACCCGCCGCCGCCGTGAGGCGCTGACCCTCCAGCAGGCGGCTTCCCTGAAACAGGCCACCTCCCTTGAGCCCGGCCGGGACACTGCCGCCGCGCCGCACCAGGATATTTCCCACCAGCCTCAAGCCGGGCAGGACGAATCCAGCGGCGGGCAATCAAAACACGAGGGCAACGCGGCCTGAMVAGIAAMMVAAVLGSAMKLNNTSIVMSSCVVFVAVAMWTDSALTRRRREALTLQQAASLKQATSLEPGRDTAAAPHQDISHQPQAGQDESSGGQSKHEGNAANANANANANA
D1-29_045531221hypothetical proteinATGCAGCAGCAGGATGTGGAACAGCTCGTGGAGCGGATTGCCGGGAAACTCGGGCGCGGGCTTTCCCTCGAGGATCTTGACGGCCTGCTGCTCGCGTACAGCTCGAACCAGTCCCACGCTGACCGCGTCCGGGTCAACTTCCTGCTGAGCAAGCGGGTCCCCGCTGACGTCAGCGCGTGGCAGCTTTCCCATGGCATTGCGACGGCGGTCCGGCCGGTCGTGGTTCCGGCAAATCCGGATCTGGGGATGCTGGGGCGGGTCTGCGTTCCGTTGATGGTGCGTGGCTTCCGCGTGGGCTACCTGTGGGTCCAGCAGGACTCGGCAGAGGAAAACCCGACGGCGATTCTCACCCAATTGCCTGATGTGGGCCATGAGCTGGAGCTGCTCTCCGGGCTGCTGCTGGAATCCAACACTGCCGAATCCGAGTTCCGGCGCAGCAGGGAACGGGAATTCCTCGCCGCGTGTTCCGGCGAGGCCAATGCGGTGGCGGCGGTGGCCGGCTGGAAGGAAATCCAGGGCCGGGGACCATGGCAGGTAGTCACTGTGCTGGATGCCGACGGCTGGACCGGCAGTTCCGATCCGATCGCTTCCACGCTAATTCACCGGTCTGCTGCCCTCCAGGCCACCGTGGGCGTGGACGCGGCCCTGTTCAGCGCCGGTACGGAAACCCATTCCGTGGTGCTGTTCCAGGAATCTGTGGGCCGCGCCAACCACGCCCAGGTGCTGGTGCACTACCAGCTGGAACTGGCCAAGCGCTCCGGCCGGCCCGTGGACCGTATCATCCTTGGCATCAGCGAGGGGTTCGCCAAGCCAAGGGAACTGGGCGAGGCGTACCGGCAGTCCAAACAGGCGGCCCAGGCCGCCGCGGTGGATCCGCAGCTCGGCGAGCTGGTAGATTCCCGGGCCACGGGGATCTACCAGTTACTGGCAACGGCCGGCGGTGGAGCCGGCGCCTGGGCCGATACAGGATCTGTCTACTTCCGCATGCTTGAAGAACACGACCGCAACGGCGAGCTTATCCCCGTGCTGGAGCTGTTATGCGACAACGATGGCTCCGTCCAGGATGTTGCCAGCAAACTTCACCTGCACCGCAGCAGCATTTATAACCGGCTGGGCCGCATCCGCCAGCTCCTTGGTGTGGATCCGCTCAAGGGGATGGCCCGGCTTGAACTCCATGCAGCCCTGAAAATGCGGCGCTGGGCTGCGCGTCCACGGATCTAGMQQQDVEQLVERIAGKLGRGLSLEDLDGLLLAYSSNQSHADRVRVNFLLSKRVPADVSAWQLSHGIATAVRPVVVPANPDLGMLGRVCVPLMVRGFRVGYLWVQQDSAEENPTAILTQLPDVGHELELLSGLLLESNTAESEFRRSREREFLAACSGEANAVAAVAGWKEIQGRGPWQVVTVLDADGWTGSSDPIASTLIHRSAALQATVGVDAALFSAGTETHSVVLFQESVGRANHAQVLVHYQLELAKRSGRPVDRIILGISEGFAKPRELGEAYRQSKQAAQAAAVDPQLGELVDSRATGIYQLLATAGGGAGAWADTGSVYFRMLEEHDRNGELIPVLELLCDNDGSVQDVASKLHLHRSSIYNRLGRIRQLLGVDPLKGMARLELHAALKMRRWAARPRINANANANANA
D1-29_045541119aldCOG0686Alanine dehydrogenaseATGATCATCGGTATCCCTAAAGAGATCAAGAACAATGAATTCCGCGTAGCCATCACCGCCGCCGGCGTTCACGAGTTCCGTACCCACGGCCACACCATCCTGGTGGAGCGCGGGGCAGGCCTGGGTTCAGGCATCACCGACGAGGAATACGCCATCGCCGGCGCGGAGATCATCGCCGAAGCAGACGACGTGTGGGCCCGCGCAGACATGGTGATGAAGGTCAAGGAACCCATCAAGGCTGAGTACCACCGCTTCCGCAAAGGTCTGGTGCTGTTCACGTATCTGCACCTCGCCGCCGAGCCGGAACTGACCCGCGAACTCATCAATTCGGGCGTCACCGCCATCGCGTACGAAACAGTTCAGGAGGGACGCACCCTTCCGTTGCTCGCGCCGATGTCCGAAGTAGCCGGCCGCCTTTCGGTGCAGGTGGGGGCAACGTCGCTGATGGCCCCGGCCGGCGGCAAGGGTGTGCTGCTGGGCGGCGTCCCGGGAGTCCGCCCTGCAAAGGTCGTGGTGCTCGGGGCCGGCGTGGCGGGAACAAATGCCGCCGCCATGGCCCTGGGCCTGGGTGCCGACGTAACCATCCTGGACATCAACATCAACCGCCTCCGTGAACTGGACGCCCAGTACCAGGGCAGGCTGAAGACCGTGGCGTCCAACAAGTACGAAGTGGAGAAGTCAGTGGTGGACGCCGACCTGGTGATCGGCTCCGTGCTGATCCCGGGCGCCAGGGCCCCCAAGCTGGTGAGCAACGAGCTGGTGGCGCGCATGAAGCCGGGCTCGGTGCTGGTGGACATCGCAGTGGACCAGGGAGGCTGCTTCGAGGACACGCACCCCACCACCCACCAGGAGCCCACCTACAAGGTGCACAACACCATCTTCTATTGCGTGGCCAACATGCCGGGCGCCGTGCCAAACACATCCACCTATGCGCTGACCAACGTCACCCTCCGGTACGGCGTTGCCTTGGCCAACCTGGGCGTCCGCGCCGCCTTCGAGCGCGACCCCGCCCTGGCCGCCGGCCTCAACATCGCCGCCGGCCACGTGGCCCACCACTCCGTATCCGAGGCACACAACCTGCCCCTCGTGGCGGACTGGCACGAACTGGTGTCGGCGTAGMIIGIPKEIKNNEFRVAITAAGVHEFRTHGHTILVERGAGLGSGITDEEYAIAGAEIIAEADDVWARADMVMKVKEPIKAEYHRFRKGLVLFTYLHLAAEPELTRELINSGVTAIAYETVQEGRTLPLLAPMSEVAGRLSVQVGATSLMAPAGGKGVLLGGVPGVRPAKVVVLGAGVAGTNAAAMALGLGADVTILDININRLRELDAQYQGRLKTVASNKYEVEKSVVDADLVIGSVLIPGARAPKLVSNELVARMKPGSVLVDIAVDQGGCFEDTHPTTHQEPTYKVHNTIFYCVANMPGAVPNTSTYALTNVTLRYGVALANLGVRAAFERDPALAAGLNIAAGHVAHHSVSEAHNLPLVADWHELVSAPGPT0020070_1520DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0020070-ald-K00259NANA
D1-29_04555873iolWCOG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolWGTGGTTGCGCTGGCCGCGGACCTTGACCTGGTGGTGCTGGGCACTCCGCCCGCAACCCACTATCCGCTGGCCAGGGCTGCACTCGAGGCGGGCCTGGATGTGGTGGTGGACAAACCGTTCGCCGTGCGAAGCGCCGAAGGGCAGGAACTGGTTGAACTCGCGGAGCGGCTGGGACGCGTGCTGACCGTGTTCCACAACCGGCGCTGGGACGGGGACTTCCTGACCCTGCGCAAGCTGCTCGCCGGCGATGCCCTGGGCACTGTGACAAGGTTTGAGTCCCGCTTTGAACGGTGGTCACCGGCAATTTCCAAGGCTTGGAAGGCACAGGCATCAGCAGCCGACGGCGGGGGTGTGCTCTTTGACCTTGGCTCACACCTGATCGACCAGGCCCTGCAGCTCTTCGGCTCCGCTACCATTCTCCATGCCGAGCTTCTCGCGCGGCGTCCGGACGAACGGGCGGAGGACGATGTGTTCCTGGCGCTGCGCCATGACTCAGGCGTCATTAGCCACCTGTCCATGAATGCGCTGTGCGCCCAGCAGGGTCCCCGCTTCCGCGTGCTGGGCTCCGCAGCAGGATTCACCAAGCACGGGATCGACCCCCAGGAGCCGTACATCGTAGCCGGCGGCAGTCCCCTGGATGCCGAGTACGGGGTTGAGGCTGCCGAGTGGGCCGGTTCCTTGGGCCGCGATGGCCACCTGGACGCCCTCCCCACCGAGCGCGGCGCCTACCCCGAGTTCTACCGAATCCTGGCAGACAAGATCCTCGACGGCGGAGCAGCATCACAGCTGCCCCGCCCGGTAAACCCGGAAGACGCCGTCGAAGCCCTCAAACTAATAGAACAAGCAAGAGAACTGGCCTCGGCGCATCGTTAAMVALAADLDLVVLGTPPATHYPLARAALEAGLDVVVDKPFAVRSAEGQELVELAERLGRVLTVFHNRRWDGDFLTLRKLLAGDALGTVTRFESRFERWSPAISKAWKAQASAADGGGVLFDLGSHLIDQALQLFGSATILHAELLARRPDERAEDDVFLALRHDSGVISHLSMNALCAQQGPRFRVLGSAAGFTKHGIDPQEPYIVAGGSPLDAEYGVEAAEWAGSLGRDGHLDALPTERGAYPEFYRILADKILDGGAASQLPRPVNPEDAVEALKLIEQARELASAHRPGPT0018530_284DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044NANA
D1-29_04556222hypothetical proteinATGGCCGGGACTGAAGCTGAACGCACCATCCGCACCGCCGTCGTCGGCTATGGGCTTTCCGGGAGTGTCTTCCATGCGCCGCTGATTGCGGCGGACGCCCGCTACTCGCTGGAAGTCATCGCAACGTCCGACGCCGGGAGGCAGGCAGCCGTCGAAGAGCGGTACCCGGGCGCCAGGACTGTGCCCCGGCGACGCCGTGGTTGCGCTGGCCGCGGACCTTGAMAGTEAERTIRTAVVGYGLSGSVFHAPLIAADARYSLEVIATSDAGRQAAVEERYPGARTVPRRRRGCAGRGPPGPT0018530_422DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044NANA
D1-29_045571719COG0747putative proteinATGAAGAATCTGACCAGGATTGGCGGGGTGGCAGCCGTAGCTGCGGCTCTGGCGCTGACGGCCTGCGGGGGCGGTGGCACCGCCACCGGACCGGAGACGGCCAAGGGGCAGGAGGCCGGCAGTGACCTGTCCAAGCTGATCAGCATCAACGAGAAGCCCGCGGCGGATCTTCAGCCGGGTGGCAAAGTGACACTTCCCCTGGGCAGCATCGGCCCGGACTTCAATGGTTTCTCCAACAACGGCAACAGCTCGGACAACTCGGCCCTGATGGTCCCCATCAACACTGTGGCCGTGAGCAGCGGCGGCATCGGTGGCTGCTGGAAGCTCGACTTCGAGGGCAAGGCCACCCCCAACAAGGACTTCTGCGAGTCAGTGGAGAGCGAAGTCAAGGATGGCAAGCAGACCGTCACCATCAAGGTCAATGACAAGGCCACCTACAACGACGGCACTCCGATCGACGTCAAGGCCTTCCAGAACACCTGGAACATCCTGAAAAGCCCCGATGCCGGCTACGACATTGTGACCTCCGGTGGCTACGAGTTCGTTGAATCGGTGGAAGCAGGGAGCAGCGACAAGGAAGTCATCGTCAAGATGAGCCAGCCGGTGTACCCGCTGGAGGACCTCTTCTTCGGCCTGGTCCACCCGGCTGTGAACACGCCGGCAATCTTCAATGAAGGCTTTGTGGGCGAAATGCACCCCGAGTGGATGGCCGGCCCCTTCAAGCTGGATCAGTACGACGCCGCAGCCAAGACCGTGACCCTCGTTCCGAACGAGAAGTGGTGGGGCAACAAGCCGGTGCTGGAAAACGTGGTCTTCCGCCAGCTCGAAACCAGCGCACAGATCGCCGCCTTCAAAAACGGTGAAATCGACGCGATGTCAGCCAACACCATTGCGCTCTACAAACAGCTCGACGGCACCAAGGACTCCGAGGTCCGCCGTGGCCAGCGGCTCTTCGCCGGTGGCATGAACATCAATGCCCAGAAGGTCACGGACGTTGCCGTGCGTGAGGCAATCTTCGCGGCGGTGGACCGTGAGGCCCTCCGCAAGGTGCGCTTCAACGGCCTGAACTGGGAGGAGCCCAGCTCCGGTTCCATGATGCTCCTGCCGTTCTCTGAGTACTACCAGGACAACTACCCCGTGAAGGAGACGGGTCCGGAGGCAGCGAAGAAGGTCCTGACGGATGCCGGCTACGCTCCGAACGCTGCCGGAATCATGGAGAAGGGCGGCGTCCCCGCGGCGTTCAAGATCAGCAACTTCGGTGATGACCCCACCACGCTCGCCTTCACGCAGACACTGCAGAAGCAGCTGCAGGCCGGCGGCATGGATGTTGGAATCGACCAGCGCGCGTCAGCCGATTTCGGCAAGGTCATCGGCGGCCGCGACTTCGACATGAGCGTCTCCGGCTACACCGTGGGCGCCGACGCCACCTCTGCCGTCAAGCAGTACTACGACTCCAAGACCAATGAGAACGGTCTGGGTGACGCCGAGCTGGACAAGAAGATCGCTGACCTGGCATCCATCGAGGACAACGCTGAGCGCAACAAGGCCGCCATGGAGGTGGAAAAGGAGCACATGGCCAAGTACTTCTCCATGGGTGTGGTGATGAACGGCCCGCAGATCTCCTTCGTCCGCACCGGTTTGGCCAACTACGGCCCGTCACTGTTCCAGAGCCTGTCCCAGGTTCCGGACTGGACCACCCTGGGCTGGGAAAAGAAGTAAMKNLTRIGGVAAVAAALALTACGGGGTATGPETAKGQEAGSDLSKLISINEKPAADLQPGGKVTLPLGSIGPDFNGFSNNGNSSDNSALMVPINTVAVSSGGIGGCWKLDFEGKATPNKDFCESVESEVKDGKQTVTIKVNDKATYNDGTPIDVKAFQNTWNILKSPDAGYDIVTSGGYEFVESVEAGSSDKEVIVKMSQPVYPLEDLFFGLVHPAVNTPAIFNEGFVGEMHPEWMAGPFKLDQYDAAAKTVTLVPNEKWWGNKPVLENVVFRQLETSAQIAAFKNGEIDAMSANTIALYKQLDGTKDSEVRRGQRLFAGGMNINAQKVTDVAVREAIFAAVDREALRKVRFNGLNWEEPSSGSMMLLPFSEYYQDNYPVKETGPEAAKKVLTDAGYAPNAAGIMEKGGVPAAFKISNFGDDPTTLAFTQTLQKQLQAGGMDVGIDQRASADFGKVIGGRDFDMSVSGYTVGADATSAVKQYYDSKTNENGLGDAELDKKIADLASIEDNAERNKAAMEVEKEHMAKYFSMGVVMNGPQISFVRTGLANYGPSLFQSLSQVPDWTTLGWEKKPGPT0013020_96DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013020-gsiB-K13889NANA
D1-29_045582235COG1123putative ABC transporter ATP-binding proteinATGAGCAGCGAGACATACATCGAACCGGCGGACTCCACTCCCTCCACAGCTGAGCGGCTGCACATTGCCGGGCTGCACATGGCCGGGGACGCCGTCCTGTCCGTCCGGGACCTGAACGTCCGCTTTAATTCCGAGAACGGCGTGGTGCACGCTGTCCGTGGCGTTGACTTCGACCTGATGGCGGGCAAAACGCTGGGAATCGTGGGGGAATCCGGGTCCGGAAAATCCGTCACCTCGCTGGCTATCATGGGGCTTCTTCCGCCCACCGCAGAGATCACCGGTTCCGTCCGGCTCAAGGGCACGGAACTGCTGGGCCTCAGTGACAAGGCCATGTGTGCCTACCGCGGCAATGACATTGCCATGGTGTTCCAGGACCCGCTGTCCTCCCTGACCCCGGTCTACACGGTGGGCACCCAGATCACCGAAGCACTGGCCATCCACAACCCCGGCATGAGCAAACAGGCCAAAGAAGCCCGCGCCGTCGAACTTTTGGCGATGGTGGGCATCCCCAGTCCGAAGGACAGGCTCAAGGCGTTTCCGCACGAGTTCTCCGGTGGAATGCGGCAGCGGGTGATGATTGCGATTGCCATCGCCAACAATCCCCGCGTGCTGATCGCGGATGAGCCGACGACGGCCCTGGACGTCACCATCCAGGCCCAGGTGCTGGAGGTACTTCATAAGGCCCAGGAGGAAACGGGCGCCGCCGTGGTGATGATCACTCACGACCTGGGCGTGGTCGCAGGCATGGCGGACGACATCATGGTCATGTACGCGGGAAAACCGGTGGAAACGGGCGGCGTGGATGACATCTACTACAACCCGCGGATGCCGTACACCATGGGCCTGCTCGGCGCGGTGCCGCGGGTTGACGTAGCGGAGAAGACGTCCCTGGTCCCCATCGATGGCATCCCGCCGAACCTGATCCACACCCCCACCGGATGCTCCTTTGCGCCCCGCTGCCCGCTCGCAACGGAGGCGTGCCTGGACGGGGAGCCTCTCCTGGCGCCGGTGGCAGGCGGCACCGCACACCGGGCCGCCTGCATCAAGTCCGGTTCCCTCGAGGACGTGAACGTCCACGCGGTCTTCTCTGCACCTGAAGTGCCCGTATCCCGGTTCGACCTCATTCCCCGCGAAGAACGCTCCACCGTCCTCCAGCTGAAGGACGTGCGGAAGCATTTCCCGCTCACCAAGGGGGCGCTGCTCAAAAGGCGCATCGGCACCGTGAAGGCGGTGGACGGGCTGAGCTTCGATATACGCGAAGGGGAATGCTTCTCGATTGTGGGGGAGTCGGGATCGGGCAAAACCACCACACTGCTGGAAATTATGGAGTTCCATAAGGACCAGGACGGCGAAGTGACGATTGGCGGCATCAGCAACAAGGAAGCCGCCGACGCCAAGACCAAAAGCGCCATGCGCAAGGAACTCCAGATGGTTTTCCAGGACCCCACCGGCGCCCTGGATCCGCGGTTTACGGTGTACGAGGTCCTGGCGGAGCCGCTTCAGAATGCAGGCTTCTCAAAAGCCGCCATCAAGAAACGAATCATGGAGCTGATGAACCTTGTGGGCCTGCAGCCGGACCACGTTAACCGGTTCCCCAACCAATTCTCCGGAGGGCAGCGGCAGCGCGTGGGCATAGCCAGGGCCCTGGCTGTGAACCCGAAACTGGTGGTGCTGGACGAGCCCGTGTCCGCCCTGGACGTCTCCGTGCAGGCCGGTGTCATTAACCTGCTGGATAAACTCCGCGCCGAACTGGGCCTCAGCTACCTGATGGTGGCCCACGACCTTTCCGTGGTGCGCCACATCTCCAACCGCGTGGCTGTTATGTACCTGGGGAAGATCGTGGAGATCGGTGAGGTGGACCGTGTCTTTGACAGTCCCCGCCATCCCTACACCCGAGCACTGCTGTCCGCCATTCCTGTCCCGGACCCGCAGCTCGAGCGCACCCGGGAACGGATCATTCTGCAGGGAGACCTGCCGTCGCCGCTGGATGCACCCAAGGGCTGCAACTTCGCCTCCCGGTGCCCGGTGTTTGCCGCGCTGCCGGTGGCGAAGAAGGAGAAATGCCTCACGCTGGAGCCTCCGCTGGAATCGGTTCGCCCCTCGGCCGCTGTCCGGGCCCTTGAGGCAGGGCCGATACCGCCATTGGACCAGCAGTTCGCCTGCTTCTTCCCGGACGGTGAACTCGACGAGGACATGCTGGTTGTCCACGATCCGGGGGACCACCATGCGCCCTAGMSSETYIEPADSTPSTAERLHIAGLHMAGDAVLSVRDLNVRFNSENGVVHAVRGVDFDLMAGKTLGIVGESGSGKSVTSLAIMGLLPPTAEITGSVRLKGTELLGLSDKAMCAYRGNDIAMVFQDPLSSLTPVYTVGTQITEALAIHNPGMSKQAKEARAVELLAMVGIPSPKDRLKAFPHEFSGGMRQRVMIAIAIANNPRVLIADEPTTALDVTIQAQVLEVLHKAQEETGAAVVMITHDLGVVAGMADDIMVMYAGKPVETGGVDDIYYNPRMPYTMGLLGAVPRVDVAEKTSLVPIDGIPPNLIHTPTGCSFAPRCPLATEACLDGEPLLAPVAGGTAHRAACIKSGSLEDVNVHAVFSAPEVPVSRFDLIPREERSTVLQLKDVRKHFPLTKGALLKRRIGTVKAVDGLSFDIREGECFSIVGESGSGKTTTLLEIMEFHKDQDGEVTIGGISNKEAADAKTKSAMRKELQMVFQDPTGALDPRFTVYEVLAEPLQNAGFSKAAIKKRIMELMNLVGLQPDHVNRFPNQFSGGQRQRVGIARALAVNPKLVVLDEPVSALDVSVQAGVINLLDKLRAELGLSYLMVAHDLSVVRHISNRVAVMYLGKIVEIGEVDRVFDSPRHPYTRALLSAIPVPDPQLERTRERIILQGDLPSPLDAPKGCNFASRCPVFAALPVAKKEKCLTLEPPLESVRPSAAVRALEAGPIPPLDQQFACFFPDGELDEDMLVVHDPGDHHAPPGPT0013015_12DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013015-gsiA-K13892NANA
D1-29_04559975COG1173Putative peptide transport permease proteinATGACCAACCTCAATGCAGTGGATCCGGCGGCAGCCGCGGAGGAAGCGCACCTGCAAAACGCAGATGTGATGATCACCAAATCCACCATCATCTTCCGCCGATTCATGCGGAACAAGACCGCCGTCGCCGGCCTCCTCATCTTCCTGGCACTGACCGTGTTCTCCTTTGTGGGGGGATACCTGACGCCGTGGGACAAGGAGACCATTGATCCCTTCAACATCGGCATGCCGCCATCGGCTGACCATTTCCTCGGGACGTCGCAGGCGGGCATCGACCTGTATGCCATGACCGTGGAGGGGACCAGGATCTCCATCCTCATTGGCCTCATTGTTGGTCTTGTCTCCGTCCTCATCGCTGCGGTGTACGGCTGCACCATGGCGTATTTCGGCGGCAAGGTGGACAAGGTGATGCTCTTTGTCCTCGAAGCCCTCATCATGATGCCTGCCCTGCTGGTGGTGGCAGTGGCCACCAGCGGCGGCGGGGAGGGCCTGAAAAAGAGCCTCCCCAGTTGGCTGCTCCTCATCATTGTGCTCCTGGTCTTCAGCTGGATGGGCACCGCCAGGCTGATCCGTTCCCTCTCGATGTCCCTGATGCAGCGTGACTACGTCAAGGCAGCCCAGTACATGGGTGTGCCGCCGCGGCGGATCGTCTGGCGGCACCTCGTTCCCAACATCGGTTCCCTCCTGGTCCTGGACATCACCCGCGGAGTCACCGGCGCCATCCTTGCCGAAGTTGCTTTCTCCTTCATCGGAATTGGCATCAAGGTGCCGGACGTGAGCCTGGGGGTCCTGATCGGCGGCGCTACATCCCAGGTCCAGACCTTTCCCTGGATGTTCTGGGTTCCGCTGACGGTGATGTTCCTCCTGACCGGATCGCTCGCCATGATGAACGATGGCCTGCGGGACGCCTTTGATCCGAGCTCCAGTTCCATTGGCAGCGCCAGGAAGAACAGCACAAAGAAGAAGAGCGCATGAMTNLNAVDPAAAAEEAHLQNADVMITKSTIIFRRFMRNKTAVAGLLIFLALTVFSFVGGYLTPWDKETIDPFNIGMPPSADHFLGTSQAGIDLYAMTVEGTRISILIGLIVGLVSVLIAAVYGCTMAYFGGKVDKVMLFVLEALIMMPALLVVAVATSGGGEGLKKSLPSWLLLIIVLLVFSWMGTARLIRSLSMSLMQRDYVKAAQYMGVPPRRIVWRHLVPNIGSLLVLDITRGVTGAILAEVAFSFIGIGIKVPDVSLGVLIGGATSQVQTFPWMFWVPLTVMFLLTGSLAMMNDGLRDAFDPSSSSIGSARKNSTKKKSAPGPT0013030_86DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013030-gsiD-K13891NANA
D1-29_04560984COG0601Putative peptide transport permease proteinATGCTCAGATACCTTGCCAAGCGTGGCATCACGTATCTCCTGATGATCTTCCTGACCACCTCGGCCGGTTATTTCCTGGCAGTTACCTCGCTCAAGCCGGCCCTGCTGGAGCAGGAGCGCATACCGCGCCCAACCCCTGAGCAGGTTGCTAACTCCATGCGCCTCAAGGGCCTGGATCCTGACCTCAGTCCCTGGGAACGCTATGTGGACTGGCTAACGGGCATCGTGACACGCTGGGACTGGGGCCGCAGCCCCAACGGTGCCTTTATCAACGCTGAGTTCGGCGACAGGGTGTGGATTTCCACCCGGCTGTTCCTGGCATCCATAGTCCTGACACTGGTCATTGGAGTTGCCCTCGGAGTGTACTCGGCAGCGCGCCAGTACAAATTCCAGGACAGGGTCATCACCTCCTACAGCTATCTCGCGTATATCGTTCCGGCACCCATCGCGTACTTCCTGGTGCAGCTGGGGGCCATCAACATCAACGAGACCGTGGGCGAACGGATCTTTTTTGTCACCGGCATCTCCACTCCCGGTATGGAGCCCGGCTGGGCGCAGTTCATTGACATGCTGGCTCATTATGCGGTCCCCACCATCGCCATCACGCTGGTGGGCTGGGGTTCCTACCAGATCGCCCAGCGGCAGTATCTGCTGGACAACGTCAACGCAGACTTTGTCCGTACCGCCCGCGCCAAGGGGCTCACCCGCAACCAGGCCATCACGCGGCACGCCCTGAGGGTGTCGTTCATCCCCGTGGCCCAGAGCATCGCCTTCACCATTCCGGCCATATTCGCCGGCGGCTTCTTTGCCGAGAAAATCTTCGCCTGGCCCGGGGTCGGCTCGTGGAGCATCGACGCCATCTCGCTGCAGGACGTCAACGCGGCAACAGCCACCTTGGCCTATGGCTCTGTGATCTTCGCCCTCGGCGCCATCCTGGCTGACTTCGCCACCACGCTTGTTGACCCGAGAGTGAGGGTCCAGTAGMLRYLAKRGITYLLMIFLTTSAGYFLAVTSLKPALLEQERIPRPTPEQVANSMRLKGLDPDLSPWERYVDWLTGIVTRWDWGRSPNGAFINAEFGDRVWISTRLFLASIVLTLVIGVALGVYSAARQYKFQDRVITSYSYLAYIVPAPIAYFLVQLGAININETVGERIFFVTGISTPGMEPGWAQFIDMLAHYAVPTIAITLVGWGSYQIAQRQYLLDNVNADFVRTARAKGLTRNQAITRHALRVSFIPVAQSIAFTIPAIFAGGFFAEKIFAWPGVGSWSIDAISLQDVNAATATLAYGSVIFALGAILADFATTLVDPRVRVQPGPT0013025_143DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013025-gsiC-K13890NANA
D1-29_04561615hypothetical proteinATGTGGACTGTGAGCTTCATCCCATTGCGGCCCGGTTCGTTGGCCGGCCCCCATGAACGCAGTGATGCGGCGCGAAACCGCGAACGCCTGCTGGGGGCAGCCCGTGAGCTGATTGAGGAGTGCGGAGCTGACGGGCTCACCATGGACGGACTCGCTGAACGGGCAGGTGTGGGCAAGGGGACGGTCTTCCGCCGATTCGGCAGCCGGGCCGGACTCATGATGACACTCCTGAGTGACGCCGAGGCGGACTTCCAAGCCCGCTTTATGTTTGGTCCCCCGCCGCTGGGCCCCGGAGCGCCGGGGATGGAGCGGCTCATGGCGTTCGGCGTCGAACGCATAGCGTTTGTCATGCAGTACGGCGAACTGGCGCGCGCGGCCGACAAATCAGTCCACAACCGCTTTGATGTGCCGGCGGCCGGGCTGTGGCATCGCCACATTGAGCATCTGTTGCGCGAGGAAGGCGTGGAAGCGGACCCGTGGCTCCTGGCAATGTCCCTTAGCGCCAGCCTGGATCCGGAATGGGTGCTGCACGCGGTCCATGTCCATGGCGTGACCACAGAGCGCCTCGCGAATTCATGGCGCGAACTTGTCACACGGGTAGTGCGCGGGGCGTAGMWTVSFIPLRPGSLAGPHERSDAARNRERLLGAARELIEECGADGLTMDGLAERAGVGKGTVFRRFGSRAGLMMTLLSDAEADFQARFMFGPPPLGPGAPGMERLMAFGVERIAFVMQYGELARAADKSVHNRFDVPAAGLWHRHIEHLLREEGVEADPWLLAMSLSASLDPEWVLHAVHVHGVTTERLANSWRELVTRVVRGANANANANANA
D1-29_04562558hypothetical proteinATGAGCAAGAGCACCGTCCTTACCCTCGTCGGCAGCCTTCGCGCCGAGTCCACCAACCAGAAGCTTGCCGAGGCGATCCAGCTAAACGCCCCGGAGCAGGTGGACGTGATCATCCACGAAAGCCTCGGCAACATCCCGTTCTACAACGAGGACATCGACGTTGAGGGTCAGGTGCCGGCCGCAGCCGCCGCTCTCCGCGCCGCAGCCAACGAAGCCGACACCCTGCTGCTGGTTACACCTGAACACAACGGCACGGTGCCCGCTTCCCTGAAGAATGCCATCGACTGGCTGTCCCGCCCCTATGGTGCCGGCGCCCTCACCGGAAAGCCCACCGCCGTCGTCGGTACCGCATTTGGCCAGTTCGGTGGAGTCTGGGCACAGGATGAGGCACGCAAGGCAGTGGGCATCGCAGGCGCCAACGTGCTCGAAGACGCCAAGCTGGCCGTACCGGGTTCCATGGTGCGTTTCGCTGAACTGCACCCGAAGGACGACGCCGAGGTTATTGAGCAGATCAAGGGTGTCTTCGACGCTCTTGCCGCTGCCCAGCCTGTCGCCTGAMSKSTVLTLVGSLRAESTNQKLAEAIQLNAPEQVDVIIHESLGNIPFYNEDIDVEGQVPAAAAALRAAANEADTLLLVTPEHNGTVPASLKNAIDWLSRPYGAGALTGKPTAVVGTAFGQFGGVWAQDEARKAVGIAGANVLEDAKLAVPGSMVRFAELHPKDDAEVIEQIKGVFDALAAAQPVAPGPT0004195_1005DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004195-chrR-K19784NANA
D1-29_04563396hypothetical proteinATGCAGACGGTCACGGCCTACTACGTGCTTCTTGACGACGGCGGCAGCAGCGGCGTGCGTTTTGGCTGCAATGACAGCCTGGTGGGCGTCCGCCGGGCCACCTCCGGTTCAACAGAGCCGCTGCCGGCGGCCATCCGGGCCCTGCTTGATGGCAGCGCCCCGGCAGGCGGACTCTACAACTCGCTGTCCGCTTCGGAGCTGAATTTCCTCGCAGGCAGCTTCGACGGAACCACTGTGACGGTCTATCTGGCCGGGTCCCTCCGGCCTGGTGGAGTCTGCGACGTCCCACGGATAGAAGCGCAGCTCACCCAGACTGCAGTCTCCTCAGTGGGAGCCATCAGGGCCGAAATCTATGTAAACGGCGTGGGCCTGGCCGAGACCCTCAATCCCCGGTAAMQTVTAYYVLLDDGGSSGVRFGCNDSLVGVRRATSGSTEPLPAAIRALLDGSAPAGGLYNSLSASELNFLAGSFDGTTVTVYLAGSLRPGGVCDVPRIEAQLTQTAVSSVGAIRAEIYVNGVGLAETLNPRNANANANANA
D1-29_04564846COG2513putative proteinATGACTCCCGCCTCGCACTCCCCGGCCAGCGCCGCCGCGTTCCATGCCCTCCACAATGAGGGAGGCGAGCCGCTGGTCTTGGTCAATGTCTGGGATGCCGCTTCAGCCAGGCTGGTTGAGGAAGCCGGAGCCACAGCACTCGCCACGTCCAGCTCTGCCATTTCCTGGAGCCTGGGATTCCCGGATGGCAACAGGCTGCCCCGCGGGCTCGCCATGGAAGCGCTCAAGCGGATTGTCGCGGCCACCAGTCTTCCGGTGACCGCTGATGTGGAAACCGGCTATGCCGGCAGTGATGGCCACTATGAGGATGCGCTCCTTCGGGAGACCATCCTCGCTGTTGTTGACGCCGGCGCGGTGGGCATCAATTTCGAGGACTCCGGGGACCAGCCGCTCACCAGTGTGGCCGAACAGTGCCGGCGGCTGGAAGTGGTGCGTGAAACCGCCGCCGGTGCCGGGGTTGATCTTTTCATCAATGCCCGCATCGACACCTACCTCTCGGGCAATTTTCCGGAGCAGGCTTTTGCCGAGACCCTGTTGCGTGCCGGTGCATACCTGGACGCCGGGGCCAACGGCATCTTTGTGCCCGGGGTGACGGACCTGCATGTCCTGCACGAACTCTCACGCCGGGTTCCCGCCCCACTCAACGCCCTCGCCGGGGTGGGGGCGCCGTCGGTAGGTGAACTGCACGACGCCGGCGTGCGCCGTATCAGCATTGGCGGCAACACTGCCAAGGCGGCGTATGCAACGGTCTCCAAGGTGGCCCTTGAAGTGCTGGGCGATGGCAACTGGTCCGAACTGGCGGGTGCCCGCAGCCACGCGTCGATGGACGCCCTCTTCGGCGGTTGAMTPASHSPASAAAFHALHNEGGEPLVLVNVWDAASARLVEEAGATALATSSSAISWSLGFPDGNRLPRGLAMEALKRIVAATSLPVTADVETGYAGSDGHYEDALLRETILAVVDAGAVGINFEDSGDQPLTSVAEQCRRLEVVRETAAGAGVDLFINARIDTYLSGNFPEQAFAETLLRAGAYLDAGANGIFVPGVTDLHVLHELSRRVPAPLNALAGVGAPSVGELHDAGVRRISIGGNTAKAAYATVSKVALEVLGDGNWSELAGARSHASMDALFGGNANANANANA
D1-29_045651293lysNCOG11672-aminoadipate transaminaseGTGACCAACGAGACACTTGATGCCGCAGCAGGGCTGCTGCCAGCAGAAGCCATTGACGCAATCGAACGCGCGGCCACGTCCGCCCACCGCCACGAGAACCTCTTCTCGGAGCGCGCAGCCAACATCAAGCAATCCGCCGTCCGGGATGTTTTTGATATCTCAATGCGCCCCGGTCTGGTCTCCCTGGCCGGAGGCAGCCCGTACCTGCAGTCACTGCCGCTTGACCGTCTGACCGGCACGGCGGGCAGTATCATCGCCGAGGACGGCCTCACCGCGCTTCAGTATGGCAGCGGCCAAGGCACTGAGGAACTGCGGGCCCAAATCTGCGAGGTGATGGCCGCCGAGGGGATACTGGACGCCCTTCCGCAGAACGTCGTGATCACGGCCGGTTCGCAGTCCGCCCAGGACATCGCCACCAAGGTATTCTGCAATCCCGGAGACGTGGTGCTCGTGGAGAACCCCACTTATGTAGGGGCCCTCAATACCTTCGAGGCCTACCAGGTCCAGGTGGAAACCGTGGAAATGGACGCGTCCGGGATGGTACCGGACTTATTGGAGGCCAGGATCGCCGCCCTCCAGACGGCCGGGAAAAGCATCAAGTTCCTTTACACCATTCCCAGCTTCAATAACCCGTCAGGAATCACCTTGGCTCCCGAGCGCCGCCAGGAGATCGTGGATATATGCCGACGGGCGAATATCCTGGTGCTGGAGGACAACCCGTACGGTTTGCTCCGGTTTGACGGTCAGCCGTTGGAACCCCTCCGGGCTGCGAACCCCGACGACGTGATCTATATGGGCTCGTTCTCGAAGATCTTCGCCCCGGGCCTGCGCATCGGATGGGCACTGGTTCCCGAGCACCTTCAGCGCCGCTACTACCTCGCCGCGGAATCAGTCACCCTTTGCCCTCCCACGTTCAACCAAATGCTGGTGTCTGCCTACCTTCGGGACTATGACTGGAGGGGCCAGATTGAGACTTACCGAGGGCTGTATGCCCAGAGATGCCAGGCGATGCTGGCTGCCCTTGAGGAGTACATGCCGCCCGGCCTGAGCTGGACCACACCCGAGGGCGGCTTCTTTGTGTGGGTGACACTGCCTGAGGGCGTGGACACCTATCCCTTGCTGAAGAAGGCGATAGATGCCGGCGTCGTCTTTATCCCCGGCGCTGCGTTCACTCCATCAGTGGAATCGTCCAATAAGCTGCGGCTCGCCTTCAGCGCCGTGCCGCCTGACGCCATCGTGGAAGGCGTGAGACGTTTGGCCCCCGTGCTGCGCGAAGCCATCGCGGCGCTGTAGMTNETLDAAAGLLPAEAIDAIERAATSAHRHENLFSERAANIKQSAVRDVFDISMRPGLVSLAGGSPYLQSLPLDRLTGTAGSIIAEDGLTALQYGSGQGTEELRAQICEVMAAEGILDALPQNVVITAGSQSAQDIATKVFCNPGDVVLVENPTYVGALNTFEAYQVQVETVEMDASGMVPDLLEARIAALQTAGKSIKFLYTIPSFNNPSGITLAPERRQEIVDICRRANILVLEDNPYGLLRFDGQPLEPLRAANPDDVIYMGSFSKIFAPGLRIGWALVPEHLQRRYYLAAESVTLCPPTFNQMLVSAYLRDYDWRGQIETYRGLYAQRCQAMLAALEEYMPPGLSWTTPEGGFFVWVTLPEGVDTYPLLKKAIDAGVVFIPGAAFTPSVESSNKLRLAFSAVPPDAIVEGVRRLAPVLREAIAALPGPT0007135_325DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007135-lysN-K05825NANA
D1-29_04566429hypothetical proteinATGAGCGGAATTATTGTTGTAGGCGTTGACGGCAGCGGAACAGCCAGGAAGGCAGCCGAGGCGGCGCGGGACCTCGCTGCGGCTATGGGTGCCTCGCTGCACGTGGTGTCTGCCTTTGACAGCGACCGCACCGAGGTCTTTGGCTCCGGCAGCGACCAGTGGATTGTCTCCGATGCCGACAGCGCCGAGACCGTGGCCCGCGGGGTTGCCCAAGCCCTGGGGCAGGACATCAAGGTGAGCTACTCAGCAGCCCGGGGCAAGCCTGCCGATGCGCTGATCAAGGAAGCGGACCGCCTGGACGCGCGCATGATCGTGGTGGGCAACCGGAGGATGCGTGGCATCGGCCGTGTACTGGGCAGCGTGGCAAACAGCGTGGCCCACAACGCCCCCTGCGACGTCTACATCGCCAACACCTACGACGCCGACTAAMSGIIVVGVDGSGTARKAAEAARDLAAAMGASLHVVSAFDSDRTEVFGSGSDQWIVSDADSAETVARGVAQALGQDIKVSYSAARGKPADALIKEADRLDARMIVVGNRRMRGIGRVLGSVANSVAHNAPCDVYIANTYDADNANANANANA
D1-29_04567381hypothetical proteinATGATGCGGACAGCAAGCATCCGCCCTACCCAAGGGGTCCCCTTGATCGCCTTCCAGCACCGCCACCTTGTTGGCCACGACATCCTCCTGGCCCGCCACGGCAACCACTTCTGCTCCGTGCGGCTGGACCGCAGCGCAGGGCGCGTTGTGGCCCTGCTCGACGACGGAACCACCGACAGCGCGCCGAACCTCATCTCCCCCGACCTTCGCCTGCCGGAGACTGTCCAGGGTGTCCTCCGTGAGGACTGGAAGGTCTTTACGGCCATTTCGGCAGCCACCGCCGGTCTGGGGGCCCTGGTGTTTGCTGCAGCCTGGTCCTTCAGTGGCACGGTCATGGATCCCGCCGTGGCTCAGATGATCTCCACTTACCCGGCGTTCTGAMMRTASIRPTQGVPLIAFQHRHLVGHDILLARHGNHFCSVRLDRSAGRVVALLDDGTTDSAPNLISPDLRLPETVQGVLREDWKVFTAISAATAGLGALVFAAAWSFSGTVMDPAVAQMISTYPAFNANANANANA
D1-29_045681521hypothetical proteinATGACTCTCAATAAATTCAACCTTCCCGACGTGGGCGAAGGTCTGACCGAGGCTGAAATCGTCTCCTGGAAAGTCAAGCCCGGTGACACCGTCGCCATCAATGACGTCCTGTGCGAAATCGAGACCGCCAAATCACTGGTGGAGCTGCCCTCGCCTTTTGCCGGGACGGTAACCGAGCTGCTTGTCCCCGAGGGGGTGACCATCGACGTCGGCACAGCCATTATCAGCGTCTCCGACGCCGTCTCCGGAGATCCGACGCCTGCGGATGTCCCCGCCCCCGCAACCCCGGTGCAGCCGTTGTACGGCAAGCTTCCCGAGCCCGACGGCGGCACGGCGGACAGTGCCCTGGCGGGCGGCCCGCTGGTTGGTTCCGGCCCCAAGGCTGACGCCGTCAAGCGGCGGCCGCGCAAGGCCTCCCCCACCGCCAACACGGCAGGGGCCGATACAGCGGCGGCCAATACTGCAGCGGCCGGTCCAGCAGCGGCTGAGCCTGCTCCGCCGGCGCCGGTCCCGGCAGCATCGGCGACAAACGTGACAGCAAACGCGACAGCGCAAACGACGGCTGCCCCTGAACTGGACGAGCCGCTGGACAACCGCCCCACACTCGGCGGGACCATCACGGGCCTGGTCAACCGGGTCCTGGCGAAGCCGCCGGTGCGGAAAATCGCCAGGGACCTGGGCATTGACCTGGCCGATGTTGTGGCCACAGGCTCCCGCGGTGAAGTCACCCGGGAGGACTTGGTCAGCTACCAGGCGCAGCGTGATGCGGAACTGGACATGGCCGAAGGATTCTGGGGCAAGGCCGGAAAGCCGCAGGACCAGCGGATCGAAGTCATTCCCGTCAAGGGTGTCCGTAAGGCTACGGCCAAGGCAATGGTGGAATCTGCCTTCGCGGCACCGCATGTCAGCATCTTCGTGGATGTGGACGCCAGCCGCACTATGGAGTTCGTGAAGCGGCTCAAGGCCTCGCGGGACTTCGAGGGCATCAAAGTGTCCCCGCTGCTGATCCTGGCCAAGGCCGTCATCTGGGCCGCCGCCCGGAACCCCAGTGTCAATGCGACGTGGGTGGACAACGCCGACAACGCCGAGATCCATGTCAAGCACTATATGAACCTGGGTATCGCGGCGGCCACCCCGCGCGGGCTGATGGTTCCCAACATCAAGGACGCGCAGGACCTCTCGCTGAAGGAGTTGGCGCTGGCGTTGAACAACCTCGCCACCACCGCCAGGGCCGGGAAGACCCAGCCGGCACAAATGCAGGGCGGGACCCTCACCATTACCAACATTGGTGCCCTGGGGATCGATACCGGGACCCCCATTATCAACCCGGGCGAAGTGGCGATCGTTGCCTTTGGAACCATCAAGCAGAAGCCCTGGGTGCTGGACGGCGAAGTCATCCCCCGCTGGATCACGACGCTTGGCGGCTCATTCGACCACCGGGTGGTCGACGGCGATCTGTCCGCCCGCTTTATGGCTGACGTAGCGGCCATCCTGGAGGAGCCGGCGCTCCTGCTCGACTAGMTLNKFNLPDVGEGLTEAEIVSWKVKPGDTVAINDVLCEIETAKSLVELPSPFAGTVTELLVPEGVTIDVGTAIISVSDAVSGDPTPADVPAPATPVQPLYGKLPEPDGGTADSALAGGPLVGSGPKADAVKRRPRKASPTANTAGADTAAANTAAAGPAAAEPAPPAPVPAASATNVTANATAQTTAAPELDEPLDNRPTLGGTITGLVNRVLAKPPVRKIARDLGIDLADVVATGSRGEVTREDLVSYQAQRDAELDMAEGFWGKAGKPQDQRIEVIPVKGVRKATAKAMVESAFAAPHVSIFVDVDASRTMEFVKRLKASRDFEGIKVSPLLILAKAVIWAAARNPSVNATWVDNADNAEIHVKHYMNLGIAAATPRGLMVPNIKDAQDLSLKELALALNNLATTARAGKTQPAQMQGGTLTITNIGALGIDTGTPIINPGEVAIVAFGTIKQKPWVLDGEVIPRWITTLGGSFDHRVVDGDLSARFMADVAAILEEPALLLDNANANANANA
D1-29_04569981bkdB_3COG00223-methyl-2-oxobutanoate dehydrogenase subunit betaATGACCACCATGACTATTGCCAAGGCAATCAACGAAGGCCTCCGCGCAGCCCTGGCCAATAATCCGAAATCCCTGCTCATGGGTGAGGACATCGGGCCCCTCGGCGGCGTCTACCGTGTTACCGATGGTTTGATCGGCGAGTTCGGCCCGGACAGGGTGGTGGATACGCCACTCGCGGAGTCCGGCATTATTGGCACCGCGATCGGGCTGGCCTTACGGGGCTACAGCCCGGTCTGCGAAATCCAGTTTGACGGCTTTGTGTTCCCTGGCTTCAACCAGATCACCACGCAGCTTGCCAAAATGCACGCCCGAAGCCATGGCAACCTCACAGTCCCGGTGGTCATTCGCATCCCTTACGGCGGCGGCATCGGTTCCGTTGAGCACCATTCGGAGTCCCCTGAAGCGCTCTTCGCCCATACGGCCGGCCTGCGTATCATCACACCATCCAATCCGCACGACGCCTACTGGATGATCCAGCAGGCTGTCGACTGCCAGGACCCCATCATCATCTTCGAACCCAAGCGCCGCTACTGGCTCAAGGGAGATGTTGATGTCCAGGCGGCGGGTCCTGCTGCCGACCCGTTCAAGGCGCACGTTCTCCGCGAGGGCACGGACGCCACCATTGTGGCGTATGGCCCCCTGGTTCCGGTGGCACTCGCCGCCGCAAACGCCGCGGCTGAGGACGGCCGCAATGTGGAAGTGATCGACCTCAGGTCCCTGTCGCCCATCGATTTCGATACCGTCACCGAGTCCGTCACGAAGACCGGACGGCTGATTGTTGCCCACGAGGCCCCAACGTTCGGCGGGCTGGGCGGGGAGATCGCCGCCCGAATCAGCGAGCGGGCCTTCCTTTCGCTTGAAGCCCCCGTGATCCGGGTGGGCGGCTTCCACATGCCGTATCCCGTGGCGAAGGTTGAGGAAGACTACCTTCCGGACATCGACCGGATCCTCGAGGCGCTGGACCGCGCCCTGGCGTACTAGMTTMTIAKAINEGLRAALANNPKSLLMGEDIGPLGGVYRVTDGLIGEFGPDRVVDTPLAESGIIGTAIGLALRGYSPVCEIQFDGFVFPGFNQITTQLAKMHARSHGNLTVPVVIRIPYGGGIGSVEHHSESPEALFAHTAGLRIITPSNPHDAYWMIQQAVDCQDPIIIFEPKRRYWLKGDVDVQAAGPAADPFKAHVLREGTDATIVAYGPLVPVALAAANAAAEDGRNVEVIDLRSLSPIDFDTVTESVTKTGRLIVAHEAPTFGGLGGEIAARISERAFLSLEAPVIRVGGFHMPYPVAKVEEDYLPDIDRILEALDRALAYPGPT0008862_2004DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
D1-29_045701263bkdA_3COG10713-methyl-2-oxobutanoate dehydrogenase subunit alphaATGGGCGCCACACATCTGCCCTCCACCGAGTTCGATGGAACTGCAGTAGACGACCAGCTTGAGGCTGAGGCCGAGGCCGCCATGGGCGAGCCGCCGGCCCCCATGGTCCAGCTTCTGTGCCCTGAGGGAAAGCTTGGCACACACCCCGTCTTCAGTGAATATGCCGAAAAGCTGGACCCCGAAAAGCTGCGCCGGCTGTATGCCGATATGGCAGCCATCCGCCGGTTCGACGTGGAAGCTACCGCTCTGCAGCGGCAGGGCCAGCTTGCCCTGTGGGTTCCGCTGACAGGCCAGGAAGCCGCACAAATCGGTTCCGGGCGCGCCAGCCAACCCCAGGACTACATCTTCCCCACCTACCGTGAGCACGGCGTTGCCCTGACCCGCAACGTGGACTTGGCCGAACTGCTGCGCCAGTTCAGAGGGGTGTCCAATGGCGGCTGGAACCCCAAGGACACCAATTTCCATCTCTACACACTTGTCCTGGCGGCCCAGACCCTGCACGCAGTGGGTTACGCCATGGGCATCCAGCGCGACCAGAAGCTTGCTGCCACGTCGGATCCGGCACGCACCGAACCTGCGGCAGCAGTGATGGCCTACTACGGCGACGGTGCGAGCTCTGAGGGTGACGTCCACGAGTCCATGGTGTTTGCTTCGTCCTTCAACGCCCCCGTGGTGTTCTTTTGCCAGAACAACCACTGGGCGATTTCAGTGCCGAGCACTGTCCAGACCCGGATCCCGCTGTCCAACCGTGCCAAGGGCTATGGCTTCCCCGGTATCCGGGTGGACGGCAACGACGTCATCGCCGTGCATGCCGTCACCGAGTGGGCACTGGACCACGCGCGCCAAGGCAAAGGCCCGGTCCTGATCGAGGCCTTTACCTACCGGTTGGGAGCCCACACCACCGCCGATGACCCCACCAAGTACCGCGAATCCGCCGAGGAAGACGCCTGGCGGGCCAAAGATCCCCTGATCCGGCTGGAGAAGTACCTCCGCGCCCAGGACCTGGCCGACGACGCCTTCTTTGCGCAGGTCAAAGCTGACGGCGACGAGCTTGCGTCCTATGTCAGGCGCACAACGCATGACCTTGAAACCCCGGACATCCGCAGTGCCTTCGCCAACACCTATGTGGAGGCCCACCCGCTGGTTGCCGAGGAACTGGCGTGGTTCGAGGAATACAGTGCAGGTTTTGCCACTGGCGGGCCGGATGAAGGGGCAGACGCCCGTCCGGGCACACAGGCAGACACGGAGGCAGGCAGCCGATGAMGATHLPSTEFDGTAVDDQLEAEAEAAMGEPPAPMVQLLCPEGKLGTHPVFSEYAEKLDPEKLRRLYADMAAIRRFDVEATALQRQGQLALWVPLTGQEAAQIGSGRASQPQDYIFPTYREHGVALTRNVDLAELLRQFRGVSNGGWNPKDTNFHLYTLVLAAQTLHAVGYAMGIQRDQKLAATSDPARTEPAAAVMAYYGDGASSEGDVHESMVFASSFNAPVVFFCQNNHWAISVPSTVQTRIPLSNRAKGYGFPGIRVDGNDVIAVHAVTEWALDHARQGKGPVLIEAFTYRLGAHTTADDPTKYRESAEEDAWRAKDPLIRLEKYLRAQDLADDAFFAQVKADGDELASYVRRTTHDLETPDIRSAFANTYVEAHPLVAEELAWFEEYSAGFATGGPDEGADARPGTQADTEAGSRPGPT0008861_773DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
D1-29_045711119pat_3COG0079Putative phenylalanine aminotransferaseATGACTTCATCAGAGACCCTGGCTGGGGGAGTACGCCCCCGCCCGGTAATAGGCCGGCTTCCCCGCTACGCCGCAGGCAAACCGCCCGTCGCCGTTGAGGGTCTGGCAAGCTACAAGCTTTCCTCCAACGAGAACCCGCTGCCGCCGCTGCCTGCCGTTGTGGACGCCATTGCGCACCAGACAGACTTCAACCGATACCCGGATCCGCTGAGCAGCAAGCTTCGTGCCGCGCTGGCTGATTTCCTGGCTGTCCCGGCGGAGGACATTGTTACCGGCGCAGGCAGCCTGGGCGCCCTGAATCAACTGCTGGCCACGTTCGCCGGCCAGAACGACGACGGCGAACCGGACGAAGTCATTTATGCCTGGCGCTCCTTTGAGGCCTATCCCATCAGCGTGGGCCTGGTGGGTGCCACCGGCGTTGTCATACCTGTCACCCCTGACGGCCGGCACGATCTTGACGCCATGGCCGCGGCCGTCACGGTTCGCACCAAAGTCGTCCTGCTCTGCACGCCCAACAACCCCACCGGGCCCATCCTGACCACCGCCGAAACAGAACGGTTTATCCAGGCGGTCCCCGCGGACGTCATTGTGGTCATCGACGAGGCCTACCAGGAGTTCGTCCGGGCCGAAGACGCTGTGGACGGCATTTCGATGTACCGCAAGTATCCCAACGTGGTGGTGCTCCGGACCTTCTCCAAGGCCCATGGCCTGGCCGGGCTTCGCGTAGGTTACAGCATCTCCAACCCGGAATTGACACAGCACCTGAGAGTGGCAGCCACGCCCTTCGCGGTCTCACAAATCGCCGAGCGCGCAGCCATCGTTTCCCTGCAGAACTACCCCCAGATTGTAGAAAGGGTACAAAGCCTGGTGGAGGAACGCGACAGGGTGACGGCAGGGCTGAAGGAGCTGGGTTGGTTTGTTCCGGAGGCCCAGGGAAACTTTGTGTGGCTGGCTCTGGGAGCCAACAGTGGGGAATTCGCCGAACTGGCGGCTACCCAGGCACTCTCCGTGCGCGCCTTCGGAAACGAGGGCGTCCGGGTGAGCATTGGTGAGGTGGAGGCGAATACCCGCTTCCTCCAACTGTGTGCGAACTATACAAAGCCGCCACGCCGTTCCTAGMTSSETLAGGVRPRPVIGRLPRYAAGKPPVAVEGLASYKLSSNENPLPPLPAVVDAIAHQTDFNRYPDPLSSKLRAALADFLAVPAEDIVTGAGSLGALNQLLATFAGQNDDGEPDEVIYAWRSFEAYPISVGLVGATGVVIPVTPDGRHDLDAMAAAVTVRTKVVLLCTPNNPTGPILTTAETERFIQAVPADVIVVIDEAYQEFVRAEDAVDGISMYRKYPNVVVLRTFSKAHGLAGLRVGYSISNPELTQHLRVAATPFAVSQIAERAAIVSLQNYPQIVERVQSLVEERDRVTAGLKELGWFVPEAQGNFVWLALGANSGEFAELAATQALSVRAFGNEGVRVSIGEVEANTRFLQLCANYTKPPRRSPGPT0020305_1890DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-29_04572429hypothetical proteinATGCGCTCCTTTATCGTTCGGATCCTCATCAACGGACTGGCCCTCTGGATTGCCAGCTGGATCCTGCCCGGCATGGACATTTCTACGTCGGCCGCCACTGAAGCCGTTGCCAAGACCGGGGTGACCCAAGGGACGGACACCCTCGGGATCATCGGCGCCTACTTGTTCATAGGCGTGATTTTCGGAGTGGTCAACGCGTTTGTCCGGCCGCTTGTCAGCCTCCTCTCCCTGCCCATCACCATCCTTACGCTGGGCCTCTTCACCATCGTCATCAATGCAGCCATGCTCTACCTGACGTCCTGGATCAGCAGCTACACGCCGGTGCACTTCACCATTGACTCCTTCTTTTGGACAGCGGTGCTGGCAGCCATCATCATCACAGTCATTTCCCTTGTAGCGGGAAGGCTCCCCGGCGCGCGGAAGCGCTGAMRSFIVRILINGLALWIASWILPGMDISTSAATEAVAKTGVTQGTDTLGIIGAYLFIGVIFGVVNAFVRPLVSLLSLPITILTLGLFTIVINAAMLYLTSWISSYTPVHFTIDSFFWTAVLAAIIITVISLVAGRLPGARKRNANANANANA
D1-29_045731455hypothetical proteinATGTCAGAAGTGACGCCTTCGGACAGTGGAGGCCCCCTCCGGCCGGCTGGCCCTGCCCGCGATGGCGGCCTGGTAATTTCCGGCGGAATCGGGGGGATCAGCTTCCAGCTTGAGGAACTCATGGGCGGGGCAGAGAAGCTCGACGTCCTGGCGAGTGAACTCAGCGCCGTGGAAGTGGAAATGCACCACATCTGGGAGGACCTGTCGCCCTACCAGAATGCTTCACGCTACTCGGGCATGGAAGCAATCATTTCAGTGGGCGAGGCCCGGCGCAGCGTCCAGGCAGTCCGTACAGAGCTGCAGCGGATAAGTGGCCAAGTGCGTGCCAGCAAGCGGGACTACGAATCCGCAGAAGCACTGGCGAACGTAGTTCATGGGCTTGGTCTCAGGCTGACAAGCTGGGAGCTGCTGGGGCAGCAGGTTGCCGACCTTGGCCTTGGCCCGGTACCCAACAGGGAAGTCGCGGAAATTATGCTAGGCAACGTCCCCGTCACCATGGGTGCCTTCTTGGCTTTCTCGTCGCCGGCACACTTTGTGACGGCTGTGGCGGCGGACCTGGCGGCGGGAAAGCACATCTCGGTTGCAGCTCCCCTGATCAAGGCATTGGCAAGGCAGTCCGTTCCCGTGCTGAAGCCGCGTCCGGTCACCGTGGATCGGGAAGAGTCCCTGCCTCTGGAACTGGATGCTTCGGCCGCCGGCCTCTTGGAACGTGCCCGGGCTGTTGATGAGCGGGGCCAGGGTTACATCGAAGTCATTGAGGTGGACAACGGCGGGCAGAAAGCCTATATCGTGGTGATTCCTGGCACGCAGACAGAAACTGAGGTGGGCGGGACCAATCCCTTTGATCTAGCCGGAATCGGGGAAGGATTGGGCTATGGGTCGGCCGAGGTGAATTCAGCCGTTCTGCAGGCCCTGGAAGCGGCCGGAGCCGAGAAAGGATCGCCTGTCGTAGCAGTGGGTTACAGCCAGGGCGGTGTCCACGCCATGAACCTGGCAGCCGACGAGCTCTTCCTGGACGAGTACGACGTGAAGTATGTGCTGACCGCCGGATCCCCGGTAGGCGGGATCACTCCTGCCGCAGGCATCAGCAGCATGCATCTGGAACACAGGCAGGACTGGGTTCCCGGGAGCGATGGAACCCCCAGTCCTGACACCGTGGACCGTGTCACGGTAACCCTGACCGACCCGGCCCGGATCCCGGAAGGCGAGGAATTTGGCCTGGGCCCGGGGCACCGGCTCAGCGGCTATGTGGATGGCGCCCGGCAGGTGGAGGCCAGTGACGATCCTTCGCTCGTGGCGTCCACTGCCGTACTGGGCGGCGTGCTCGGAGCCGGAGGGACGGCCACCGCCACCCGTTTCTCACTTAACAGGCAGAAACCGCCCGATCCGCAGTCCACGCCGCTGACGGTACCGAATCCCAAACCTCAATCCTCACCGAGGCCACCCGCTGGTTAGMSEVTPSDSGGPLRPAGPARDGGLVISGGIGGISFQLEELMGGAEKLDVLASELSAVEVEMHHIWEDLSPYQNASRYSGMEAIISVGEARRSVQAVRTELQRISGQVRASKRDYESAEALANVVHGLGLRLTSWELLGQQVADLGLGPVPNREVAEIMLGNVPVTMGAFLAFSSPAHFVTAVAADLAAGKHISVAAPLIKALARQSVPVLKPRPVTVDREESLPLELDASAAGLLERARAVDERGQGYIEVIEVDNGGQKAYIVVIPGTQTETEVGGTNPFDLAGIGEGLGYGSAEVNSAVLQALEAAGAEKGSPVVAVGYSQGGVHAMNLAADELFLDEYDVKYVLTAGSPVGGITPAAGISSMHLEHRQDWVPGSDGTPSPDTVDRVTVTLTDPARIPEGEEFGLGPGHRLSGYVDGARQVEASDDPSLVASTAVLGGVLGAGGTATATRFSLNRQKPPDPQSTPLTVPNPKPQSSPRPPAGNANANANANA
D1-29_04574303hypothetical proteinATGAGCAGTGATACCGCGGCGGCAGACATGGCCTTCCGCATGTCCCGAAGCCACGACATCCAGCAGCTGGCTGCCCGGGTAGACGGCTGTACCCGGCGGGTTGAGGAAGTCCTGGCTGGCTTCTGGAAGATTCAGTTGCTGGACTGGCAGTCTCCTGCGGGCCGCGCCTACCGGGACTCCGTGGCTTTGCAGGCCGCCGCGCTCGGCCGGACGCGAGACCGTCTTCAGGGAGCCGCTGACGCCGTCAACCGCCACTCCCGGGCGGTTTTGGTCTGCGAAGCGCCGCCGGGCGGCGGCTACTGAMSSDTAAADMAFRMSRSHDIQQLAARVDGCTRRVEEVLAGFWKIQLLDWQSPAGRAYRDSVALQAAALGRTRDRLQGAADAVNRHSRAVLVCEAPPGGGYNANANANANA
D1-29_045751443purBCOG0015Adenylosuccinate lyaseATGCCTGAAACTGCTGCCACAGCTGATATCCGTACGCCCTCCGGACGCCTTGCCCTTGCCGCGTCACCGGAACAGATTGCGCTCGGCCCACTGGACGGCCGCTACCAGTCCGCCGTCGCGCCCCTGGTGGACTACCTTTCCGAAGCAGCCCTCAACCGGGACCGTGTGGCCGTCGAGGTGGAGTGGCTCATCCACCTGACCAGCAACAACGTCCTTCCCGGGGCCGGTCCGCTGACCAGCGCACAGCAGGACGAACTGCGCAGGATCGTCACGGAATTCGACGCATCTTCCGTGGCCGAGCTGGCCGAAATTGAGGCGGTGACGGTGCACGACGTCAAGGCCGTCGAGTACTACATCGGCCGCCGCCTGCCGGCGATCGGCATTGAGCACCTGACAGCTATGGTGCACTTCGGCTGCACCTCCGAGGACATCAACAACCTCTCCTACGCGCTGGGCGTGAAGGGCGCTGTGGAGGACGTGTGGCTGCCAGCCGCCCGTGGTTTGGTTGCCCAGATCAGCAGGATGGCCGAGGACAACAGGGCCGTTCCCATGCTGTCCCGCACACACGGCCAGCCTGCCACACCCACCACGCTGGGCAAGGAACTTGCCGTGATGGCGCACCGCCTGAAGCGCCAGCTGGACCGGATCGACACCACCGAATACCTGGGCAAGATCAACGGAGCCACGGGCACCTACGCCGCCCATGTGGCGTCGGTCCCCGGAGCCGACTGGGAGCAGGTGGCCAAGTCCTTCATCGAAGGGCTGGGGTTGACCTGGAACCCGCTGACCACACAGATCGAAAGCCACGACTGGCAGGCAGAGCTGTATGCGGACGTCGCGCGGTTCAACCGGATCCTGCACAATGTCTGCACCGATATCTGGAGCTACATCTCCATCGGCTACTTCGCGCAGGTCCCGGTGGCCGGGGCCACGGGCTCCTCCACGATGCCGCACAAGGTGAACCCCATCCGCTTTGAAAACGCCGAGGCCAACCTGGAGATCTCCTCTGGCCTGCTGGACGTCCTGGGCTCCACGCTGGTGACGTCCCGCTGGCAGCGTGACCTCACCGATTCCTCCAGCCAGCGCAACATCGGCGTGGCGTTCGGGCACTCCCTGCTGGCCATTTCCAATGTTGCCAAGGGCCTGGACCGGCTGGACGTTGCCGAGGACGTGCTGGCCGCCGACCTGGATACCAACTGGGAAGTCCTGGGCGAGGCAATCCAGATGGTCATGCGAGCCGAGGCCATTGCCGGCGTCGAAGGCATGGAGAACCCCTACGAACGCCTCAAGGACCTGACCCGCGGACAGCGCGTGGACGCGGCCCGCATGCAGGAGTTCGTCCAGGGCCTGGGCCTCTCCCCGGAGGCTGAAGCCCGGCTGCTCGCCCTGACCCCCGGCAAGTACACGGGCATCGCGGACCAGCTGGTGGACCACCTGAAGTAGMPETAATADIRTPSGRLALAASPEQIALGPLDGRYQSAVAPLVDYLSEAALNRDRVAVEVEWLIHLTSNNVLPGAGPLTSAQQDELRRIVTEFDASSVAELAEIEAVTVHDVKAVEYYIGRRLPAIGIEHLTAMVHFGCTSEDINNLSYALGVKGAVEDVWLPAARGLVAQISRMAEDNRAVPMLSRTHGQPATPTTLGKELAVMAHRLKRQLDRIDTTEYLGKINGATGTYAAHVASVPGADWEQVAKSFIEGLGLTWNPLTTQIESHDWQAELYADVARFNRILHNVCTDIWSYISIGYFAQVPVAGATGSSTMPHKVNPIRFENAEANLEISSGLLDVLGSTLVTSRWQRDLTDSSSQRNIGVAFGHSLLAISNVAKGLDRLDVAEDVLAADLDTNWEVLGEAIQMVMRAEAIAGVEGMENPYERLKDLTRGQRVDAARMQEFVQGLGLSPEAEARLLALTPGKYTGIADQLVDHLKPGPT0021555_789DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756NANA
D1-29_04576672COG0406PE-PGRS family protein PE_PGRS11ATGAAGCTGCTGCTCATCCGCCATGGACAGACCCCCGGAAACGTCCTCGGCCAGCTGGATACGGCCCACCCGGGACCAGGACTCACGGAACTTGGTGAACGGCAGGCGGAAGCCATGGCACGGTCACTGGCCAACGAGCCCATCTCAGCTCTGTATGCGTCCACCCTGGTCCGCACGCAGGTAACGGCCGCTCCCCTGGCCCGCGTGCATGGACTGGACGTTGAGGTGCTGGACGGTCTGCACGAAATCGAAGCCGGCGCCCTGGAGAAACTGACCGATCACGAGTCCCATAAGCGGTACATGGGAACGGTTTTCGCATGGGCCGCCGGAGACCTTGACCGTCGGATGCCCGCCGGCACGGACGGCCACGCATTTTTTGAGCGGTATGACGCCGCCATCACCCGGATCGCCGAACGCGCCATGAAGGACGGGGACAACGCTACTGCCGCAGCGGTCAGCCACGGTGCCGCGATCCGCACGTGGGCCGGGCGGCGGGCCGCGGATACGGATCACGAGTTCGCCGCCCACCATGTCTTATCCAACACCGGAATTGTGGCCCTGGAGGGTGATCCCGATGCTGGCTGGACGCTCCTCCATTGGGACGGCAGCCCCGTGGGCGGGCTGGCCCTGGCCGACCCGACGGCGGAGGACCCCATGGGCGAGCGCGCCTAGMKLLLIRHGQTPGNVLGQLDTAHPGPGLTELGERQAEAMARSLANEPISALYASTLVRTQVTAAPLARVHGLDVEVLDGLHEIEAGALEKLTDHESHKRYMGTVFAWAAGDLDRRMPAGTDGHAFFERYDAAITRIAERAMKDGDNATAAAVSHGAAIRTWAGRRAADTDHEFAAHHVLSNTGIVALEGDPDAGWTLLHWDGSPVGGLALADPTAEDPMGERANANANANANA
D1-29_04577504hypothetical proteinATGCAGACCAATCCCCGTCTCAACATCAGGCAGGTCACCTGGTCCAACCCCGTGGGCGCCGACCTGCGCAGGGCGCAGCAGGCGGAACTGGACGCCCGCTTTGGTACGCCGAACCACGAACCGGGGACCCCGCCGTCGGGCGCGGACTGTGCTGTTTTCCTGGTGGCGTACGACAAAGGCTCCGGGCAGCCAGTGGGGTGCGGCGGCCTGAGGCTGCTGGATGATTCAACGGCGGAAATCAAGCGGCTGTATGTCCTCCCGTACACCCGGGGAAGCGGCGTAGCGAGCTCCATCCTGGCCGCACTTGAAGCCGAGGCGTTCCGGCAGGGAATCAGCCGGATCAAGGCGGAGGCCGGGTCTGCGCAGCCGGACGGCCGGAACTTCTACCAGAACTCAGGCTTCGAGCCCGTGCCCAACTTTGGCCCTTACATCGGGGTGGAGCACTCTTACTGCTACGCGAAGAACATCAACTCGTACAGCGCCGCCAATACCGCTATGGCATAGMQTNPRLNIRQVTWSNPVGADLRRAQQAELDARFGTPNHEPGTPPSGADCAVFLVAYDKGSGQPVGCGGLRLLDDSTAEIKRLYVLPYTRGSGVASSILAALEAEAFRQGISRIKAEAGSAQPDGRNFYQNSGFEPVPNFGPYIGVEHSYCYAKNINSYSAANTAMAPGPT0007180_1021DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007180-iaaT|yedL|ysnE-K03829NANA
D1-29_045781086COG1840putative proteinGTGCGAAAATTTCAGACTTTGGTTGCTGCTGCCGTCGCCGTTACCCTTCTTTCGGGCTGTGCAGGGGGTGCCGCCACTCCCGCAGCCTCCGGTGATTCCTCTTCGTCCGCGGCAGGCGCATCGGGCGAAACACTGGTCATTTACACAAATTCCAACGGTGAAGGCCGCGGTGAATGGCTGACGGCCAAGGCGGCTGAGGCCGGTTTCAAAGTTGAGGTAGTGGGGGCCGGCGGTGCCGATGCCACAAACAAACTTATCGCCGAAAAGAACAATCCCATTGCCGATGTCGCGTTCGGCCTGAACAACATGTACTTCGCCCAGATCAAGGCTGCGGGGGCGATCGAGCCCTACGAACCCGCCTGGGCTGGTGAGGTGGACACCGCCCTGGGCGATGCCGGCGACGACAAAGCCTATTGGCCGCTGGTCAAGCAGGCGATTCTCCTGGGCTACAACTCCGACAAAATCACCGCTGACGCCGCGCCCAAGGACTGGACGGACCTGTGGACCAGGGACGAATTCAAGTCACGGTATGAGCGGGTGACCGGGCTGGGTACCGCCACCGCGCAACTGGTGTTCGCCAGCCTGCTGACGCGCTATAAGGACGAATCCGGAGATCTGGGCATCTCGGATGAAGGCTGGAAGCAGGTGGAGCAGTACTTCCAGAACGGCAGCCCGGCTGTTGCAAAGACAGACCTTTTCGCCCGGATTGCCGCCGGCGACGTGGACATGGGCCAGATGCCGTCCTCGATCATCGCCGAACGTGAGAAGTCCTTCAAGGTCAACGTGGAGACGGTAGCGCCGTCCGTTGGGGTTCCGCTGGCCGTGGAACAGGTGGCCCTGGTCAAGGGGACGGACAAGAAGGAAGAGGCGCAGAAGTTTATTGACTGGTTCGGCAGCGCAGATGTGCAGGGCGCGTGGGCCAAGCAGTTCAACTCGATGCCCGTGAACAAGGGCGCCGCGGCTCAGGCCAATCCGGAGGTGGTGGACTTCTTCGCTGACGTCAAGCAGCAGGACATCGACTGGAACTTCGTGCAGGAAAACATGGGCGCATGGGTGGAGAAGATCGAGCTCGAATACATGACGTAGMRKFQTLVAAAVAVTLLSGCAGGAATPAASGDSSSSAAGASGETLVIYTNSNGEGRGEWLTAKAAEAGFKVEVVGAGGADATNKLIAEKNNPIADVAFGLNNMYFAQIKAAGAIEPYEPAWAGEVDTALGDAGDDKAYWPLVKQAILLGYNSDKITADAAPKDWTDLWTRDEFKSRYERVTGLGTATAQLVFASLLTRYKDESGDLGISDEGWKQVEQYFQNGSPAVAKTDLFARIAAGDVDMGQMPSSIIAEREKSFKVNVETVAPSVGVPLAVEQVALVKGTDKKEEAQKFIDWFGSADVQGAWAKQFNSMPVNKGAAAQANPEVVDFFADVKQQDIDWNFVQENMGAWVEKIELEYMTPGPT0003725_1204DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-29_045791068potACOG3842Spermidine/putrescine import ATP-binding protein PotAATGATCCGCTTGGACAACATCGAAGTCTCCTTCGGCGATTTCGTCGCCATCCCCCACTTGGACCTTCACGTTAAACCCGGGGAGTTCTTCACGTTGCTGGGTCCGTCCGGCTGCGGAAAAACGACGGCGCTGCGCACCCTGGCAGGGTTCATTGAACCGTCAGCGGGAAGTGTCCATGTGGACGGCAGGAACGTGACCCGGCTTCCCAGCGACAAGCGGCAGGTGGGCATGGTGTTCCAGAACTATGCCCTGTTCCCCAGCATGAGTGTGTGGGAGAACATCGCCTTCGGACTCAGGGTCCGGAAGGAGAAGTCCGCCGAGACGGACCGCCTGGTGCGCGATATTGCGCGCCGGGTGGAGCTCAGCGATGAGCAGCTGCACAAAAACGTGGCGGAGCTTTCGGGTGGGCAACAGCAGCGTGTGGCGGTGGCGCGGGCCTTGGTGCTGCGTCCCAAGATCCTGCTCCTGGACGAGCCGCTCTCCAATCTGGATGCCAAGCTGCGGCACCAGCTGAGGCAGCAGCTCAAGGACCTCCAGAGCGAGTTCGGCATCACCACCGTGTACGTCACCCACGACCAGGATGAGGCGCTGGCCATGAGCGACCGCGTGGCCGTTTTCAACAAGGGCGTGATCGAGCAGGTGGGCACTCCGCAGGCGATCTATGATGAGGCCGCCACAGAGTTTGTCTGCACCTTCATCGGCGACAGTTCCCCGCTGTCCGCTGGCTTCATCACCGAACTGAACCGGCTCTCCGGTGCCGGCCTCAGCCCTGACGCCAACTCCTACCTGCGGGTGGAAAAGGCGTCACTGACCGCCCCCGCCAATGGCGGCACCGCCGTCGGGCTGGCTGGAACGGTGCTGTCACGCACCTATCACGGCCTCCACAGCCGCTACGTGGTGCGGAGCCACGGCGCTGATATCCGGCTGTTGGTCAGGGAAGACGGCGGCGTGCACCCCGACGCCGGCGCGGAAACGACCATCTATGTCCAGCCGGGCCACGTGCTTCAGTACCACGCCGATACGGGCGCGGCCCTGGCCCGGAAGGCCCAGGCAGTGGCCCTGCCATGAMIRLDNIEVSFGDFVAIPHLDLHVKPGEFFTLLGPSGCGKTTALRTLAGFIEPSAGSVHVDGRNVTRLPSDKRQVGMVFQNYALFPSMSVWENIAFGLRVRKEKSAETDRLVRDIARRVELSDEQLHKNVAELSGGQQQRVAVARALVLRPKILLLDEPLSNLDAKLRHQLRQQLKDLQSEFGITTVYVTHDQDEALAMSDRVAVFNKGVIEQVGTPQAIYDEAATEFVCTFIGDSSPLSAGFITELNRLSGAGLSPDANSYLRVEKASLTAPANGGTAVGLAGTVLSRTYHGLHSRYVVRSHGADIRLLVREDGGVHPDAGAETTIYVQPGHVLQYHADTGAALARKAQAVALPPGPT0003735_1080DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010NANA
D1-29_045801914hypothetical proteinATGAGCAGGGTCTCCGTCTCCCTGAAGAACAGGGGCAGGAACAGCGGCAGGAGTGGTGGCAGGAGTAGTGGCGACGCCAGGAGCATGCTCCGCTCGCCGTTCGTCCTGATGGTGGGCGCGGTGCTCACCTGGTTCATCGCAGCGTTCCTGGTCTGGCCCAACCTGAACGTCCTGATAGCAACGTTCTTTCCGGACGGCAGCTTCTCCGGGCGGGCGGCCGAGAAACTGTTCTCCTCCCAGCGCGCCATGAAATCCCTGGGCAACAGCTTCCTGCTGGCGCTTGCCCTGTCCGTCACCGTGAATGTTGTGGGCATCTTCATTGTGCTGGTTACGCAGTACTTCAGGATCCGCGGCTCCCGGATCCTGTTTTTGGGCTACGCCTCCACCTTCATCTACGGCGGCATTGTGCTGGCTGCCGGCTACAAATTCATCTATGGCGACAAAGGGATTGTCACGTCCTGGCTGCTCACGGTGTTCCCCGACATGGATCCGGCGTGGTTCTCCGGCTTCTTCGCCGTGCTGGTGGTGATGACGTTTGCCACCACCACCAACCACATGCTGTTTGTGGGCAATGCGCTTAAGGGCGTTGACTTCCAGACCATCGAGGCGGCCCGGAACCTGGGCGCATCCACTTGGACCATCCTGCGCCGGGTTGTGCTGCCCATGCTCAAACCCACTCTCTTCGCGGTCACCATCCTGTCCTTCCTGACCGGGCTGGGGGCCCTGAGCGCCCCGCAGGTGCTGGGCGGCCGGGAGTTCCAGACCATCACGCCGATGATTCTGACCTTTGCCAACAGCCCCACTTCACGGGACCTGGCTGCGCTGCTGGCTGTCATCCTGGGCGTTTCCACCATCCTGATGCTTGCGGTCATGTCCCGGCTGGAGAAGCGCGGCACCTATTACTCGCTGTCCAAAGTGTCTTCGGCAATGCAGAAACAGCAAATCACCAGTCCTGTCGCCAATGCTGCCGTGCACATCATCGCCTACCTGCTGTTCGCGTTGTACACGCTGCCCGTGGTGCTGATTGTGCTGTACTCGTTCGCCGACGGCGCGGCCATCCAAACCGGCCAGATCTCCCCGGGCAGCCTGACGCTGGACAACTACGTGCGGATCCTGACCCAGCCATCAGGCCTGCATCCTTTTATTGTCAGCGTGGTCTACAGCGGACTGGCAACAGTGATTGCGGTGGGCGGGCTGCTGTTTGTGGCCAGGCTGCTTCAGAAGTACAAAAACTGGGTTGCCTCTGTCTTCGAATACCTGCTCCACATTCCCTGGATCCTGCCCTCGGCCCTGCTGGCCCTGGGGCTCATCATCAGTTACGACCACCCGAATCCGATGGTGGGCGGCGCTGTCCTTACCGGAACCACAGTGATCCTGCTGATCGCGTTTGTGACGGTCAAGATCCCGTTCACCCTCCGGATGCTCAAGGCATCATTCGCGTCGGTCAACACCTCGATGGAGGAAGCCGCCGCCATCATGGGCGCCAAGACGCTGTACGTGTTCCGGCGGATCCTCCTGCCCCTGGTGCTGCCGGCCGCCGCAGCCATTGCCGCCCTGAACTTCAACAACCTGCTGGACGACTACGACACCGCGATCTTCCTGGCTCATCCGCTGGTCCAGCCTCTGGGGCTGGTGATTAAGGCGAACACCGACGGCGCCGAAGGGGTGGAGGGCGTGGCCAACACGTTCGTCTACACCGTGCTGCTGATGGTCATCACCGGGCTGACCATGTACCTCGTCTACGGCCGCTCCAGCAGGCGCGTGGCCGGCCCGGGCCTGAGCAGTGGTGCCGGTGCGGGCAAGGGTGCGGGCGGGAAGCGGCCCGGCGCTTTCCAGGGGACCTCTGGATCCCGGGACGCACCGGTGGCCGGGGCGGCAGGGCCGGAGGCCCCTGTCTTGAGCGGAAAGCGTTAGMSRVSVSLKNRGRNSGRSGGRSSGDARSMLRSPFVLMVGAVLTWFIAAFLVWPNLNVLIATFFPDGSFSGRAAEKLFSSQRAMKSLGNSFLLALALSVTVNVVGIFIVLVTQYFRIRGSRILFLGYASTFIYGGIVLAAGYKFIYGDKGIVTSWLLTVFPDMDPAWFSGFFAVLVVMTFATTTNHMLFVGNALKGVDFQTIEAARNLGASTWTILRRVVLPMLKPTLFAVTILSFLTGLGALSAPQVLGGREFQTITPMILTFANSPTSRDLAALLAVILGVSTILMLAVMSRLEKRGTYYSLSKVSSAMQKQQITSPVANAAVHIIAYLLFALYTLPVVLIVLYSFADGAAIQTGQISPGSLTLDNYVRILTQPSGLHPFIVSVVYSGLATVIAVGGLLFVARLLQKYKNWVASVFEYLLHIPWILPSALLALGLIISYDHPNPMVGGAVLTGTTVILLIAFVTVKIPFTLRMLKASFASVNTSMEEAAAIMGAKTLYVFRRILLPLVLPAAAAIAALNFNNLLDDYDTAIFLAHPLVQPLGLVIKANTDGAEGVEGVANTFVYTVLLMVITGLTMYLVYGRSSRRVAGPGLSSGAGAGKGAGGKRPGAFQGTSGSRDAPVAGAAGPEAPVLSGKRPGPT0003730_564DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-29_045811188praI4-hydroxybenzoate 3-monooxygenase (NAD(P)H)ATGGCAGCACGCAAGGTCGTCACCACCCAAGTAGCCATCGTTGGCGCCGGTCCGGCGGGACTGATGCTGTCCCACCTCCTGGCTTCCTCTGACATCAATTCCACCGTGATCGAGGCCCGCAGCCATCAAACGATCTCCGAGACAGTCCGCGCCGGCATCCTGGAGCATGGCACGGTTAACCTGCTCGTGGAGAGCGGGGTTTCGGACCGCGTGCTGCGCGACGGCGACCGGCACGACGGCATCGAGCTCAGGTTCCATGGCGAAAGCCACCGCATTGACTTCAAGGGGCTGGTGGGCGAATCCGTCTGGCTCTACCCCCAAACCGATGTATTCCTTGACCTCGCCGCCGCAAGGAAGGCCGACGGCGGGGACGTCCGTTACAGCGTCACTGACACCATGGTGCATGACCTGGAGGGCAGGCCGAAGGTCTGGTTCACCGACGCTGACGGTGTGGAGTATGAGATCCAGGCAGAGTTTGTGGTGGGGGCTGACGGCTCACGCAGCCACTGCCGGCTCCAGATCCCGGAGGCCAGCCGGAAGTGGTACTTCCACGAGTACCCGTTCGCCTGGTTCGGGATTCTGGCCGAAGCGCCGCGCAGTTCCGATGAACTCATCTACGCAAACTCAGCCAACGGCTTCGCCCTGATCAGCCAGCGGACCGAAACTGTCCAGCGCATGTACTTCCAGTGCGATCCCAAGGAGAGCGTGGCTGACTGGGACGATGACAGGATCTGGGCCGAATTCCGCAGCCGCGTCAACGGTAACGGCTTTGAACTAAAGGAAGGGCCGGTCATCGACAAGATGGTCCTGCCGTTCCGCAGCTTTGTCCACACCCCCATGCGCCACGGGAACCTCTTCCTTGCCGGCGACGCCGCCCACACGGTTCCGCCCACCGGTGCCAAGGGCCTGAACCTGGCCATTCAGGACGTCAAAGTGCTCTTCGAGGGACTGGACAGCTACTACCGCTCCGGCTCCAGTCAGCTCCTGGACTCGTTCAGTGACCGCGCCCTGGAGAGGGTCTGGAAGGCGCAGCAGTTCTCCTACTGGATGACCACCATGCTGCACACGCCGGCCGATGCTGACGAGTTCTCCCGTGCCCGCCAGCTCGGCGAACTCAATTCCGTAGTGTCCTCCAGGCACGGCATGGCGTACCTGGCTGAGGCGTACACAGGCTGGCCAGCTTCTTAGMAARKVVTTQVAIVGAGPAGLMLSHLLASSDINSTVIEARSHQTISETVRAGILEHGTVNLLVESGVSDRVLRDGDRHDGIELRFHGESHRIDFKGLVGESVWLYPQTDVFLDLAAARKADGGDVRYSVTDTMVHDLEGRPKVWFTDADGVEYEIQAEFVVGADGSRSHCRLQIPEASRKWYFHEYPFAWFGILAEAPRSSDELIYANSANGFALISQRTETVQRMYFQCDPKESVADWDDDRIWAEFRSRVNGNGFELKEGPVIDKMVLPFRSFVHTPMRHGNLFLAGDAAHTVPPTGAKGLNLAIQDVKVLFEGLDSYYRSGSSQLLDSFSDRALERVWKAQQFSYWMTTMLHTPADADEFSRARQLGELNSVVSSRHGMAYLAEAYTGWPASPGPT0005065_384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0005065-pobA-K00481NANA
D1-29_04582744xynR_5COG1414HTH-type transcriptional regulator XynRGTGGCCAACTCCGTTTCTGGAGACTCCGTGGTGGACCGCGTGGTGCGTGTCATCTCGGCCTTCCCGGAAGGTGCCGGAAGCCTGCAGTTGTCCGATCTGGCGGCCCGGGCGGGGCTTCCCCTCACCACTGCCCACCGGCTGGTCCGGCAGCTCGCGGCTCACGGACTGCTGGAACCCGGGCCGGGCGGGACGGTTCGATTGGGCCTGAGGCTGTGGGAGCTCGTGAACCGCAATTCCCCCACCCTGGCGCTGCGGCAGGCGGCGCTGCCCTTTATGGAGGACATTCAGGCCGTCCTCAACCAGAACGTCAACCTAGCCGTGCTGGAAGGTTGGGAGGTGCTGTTTGTAGAGCGTCTCTCGCGCAGGGGTTCCGTGGCCAACAGGGCGCGGGTTGCCGGCAGGATGCCGGTCCACGTCTCGTCCGTGGGACTTGCCCTCATGGCCCACCAGCCCAAGGCCCTGCAAAGGGAGTATCTGGACCAGTTCTCGGATCCGGCCGAAAAGGTGACCCCCCAAGCCCTGCGCGGCCTCCTCAGCGAAAGCGCCCGCCAGGGCTTCGCGCAGCTGGCCGGAGCGGTGGATCCGGAGACCTGGGGCATTGCCGTTCCCGTGCTCGACGGCAGGCAGCGGGCTGTCGCTGCCCTCGGCGTCGTGGTTCCCCTGCATGAGATGCGGCTGCAGTCGCTGGTTCCCGCGCTGCAAACCGCAGCGCGCGGGATAGCCCGCCGTCTGAGCGAAGCTTAAMANSVSGDSVVDRVVRVISAFPEGAGSLQLSDLAARAGLPLTTAHRLVRQLAAHGLLEPGPGGTVRLGLRLWELVNRNSPTLALRQAALPFMEDIQAVLNQNVNLAVLEGWEVLFVERLSRRGSVANRARVAGRMPVHVSSVGLALMAHQPKALQREYLDQFSDPAEKVTPQALRGLLSESARQGFAQLAGAVDPETWGIAVPVLDGRQRAVAALGVVVPLHEMRLQSLVPALQTAARGIARRLSEANANANANANA
D1-29_04583837hypothetical proteinATGAAGCCCCCTGCAAGGAAACCTGCCACGGCTGATTTGAGCTGCGAAGTCTGCGGCCTGATGCCGGAACCCACCAAGACCCGCCTCACCATGGCCAACGTGGCCGTTATGCTCCCCATCGAACTCCTGGTCCACGCCCTGGTGGTCCAGACGCACCTGCCCTACCTGGCCAAGGTTCTGGTGCTCACCCTCACCGCTACCGTCCTGGTCATCTGGGTGGCGGAACCCTCTGCCGCCCGGGTACTGAAGGGCTGGCTGCACGCCCCGGCACTGCGCCACCGGAGGCGCCTGGGCGCTGCGCCGGCGCTCTGGCGGGCGCGCACCGTGCTGCGGGACCAGCCCGGTGCCCTGCAGAAGATCACGCAGGCGCTGGCCCGCCTGGATACCAACATCCTGAGCATTCACGTCCACCCCGTCCCCGGCGGAGTGCTGGACGAGTTTGTCCTCTCCGCGCCGGGCAACCTCAGCGAGCGCAAACTCCTGGATGCACTGCACGACGGCGGCGGCTCGCGGTCCCATGTGTGGCCCACCACCGCGCTGGCCATGGCGGACGGACAGACCAGGGCGCTGAGCCTGGCCGCCCGGGTCGCCGATGCCCCAGACGAACTGCCGCTGGCAGTGGCCGAGCTGCTGCGGGCACGGATCGTCCCGGCGGCGGATGCGGCTCTGCAGGAAACGGACGACGCCGGCACCCGCCTGAAAATCCCCACAGCCTGGCACGGACCCATCACCTTCGCCCGTCCCGACGAACCATTCACGCCGGCGGAGTCAGCCCGGGCTCATCGGCTGGCGGAGCTGGCCGAGATCCTGTCGCACCGCCCGGCAGCGCCTGTCTAAMKPPARKPATADLSCEVCGLMPEPTKTRLTMANVAVMLPIELLVHALVVQTHLPYLAKVLVLTLTATVLVIWVAEPSAARVLKGWLHAPALRHRRRLGAAPALWRARTVLRDQPGALQKITQALARLDTNILSIHVHPVPGGVLDEFVLSAPGNLSERKLLDALHDGGGSRSHVWPTTALAMADGQTRALSLAARVADAPDELPLAVAELLRARIVPAADAALQETDDAGTRLKIPTAWHGPITFARPDEPFTPAESARAHRLAELAEILSHRPAAPVNANANANANA
D1-29_04584927dagK_3COG1597Diacylglycerol kinaseATGCCAGCCAACAGCTCCACAGCCCTCAAGCGTGCGGCCGTCATTATCAATCCCGCCAAGCCGGTGGATATCGACGTGCGCGGGCTGATCGCCAAGCACTCCGCAGACAATGGCTGGGGCGAGCCCATCTGGCTGGAAACCACCAAGGAGGATCCCGGCGTCGGGCAGGCGGAGGAGGCACTCAAGCAGGGGGCCGACGTCGTTATTGCAGCGGGGGGCGACGGCACCGTCCGTTACGTGGCCCAGGTCCTGGCCGGAACTCCTACCCCGTTGGGCCTGGTGCCGCTGGGTACCGGAAACCTGCTGGCCCGCAACCTGGGCCTGGATGTCACAGACGTGGAGGGCGCCATCAAGGGCGCGCTGGTGGGATGGGAACGCCGGATCGACGTGGTCCGCGCCGTCCGCAGCGACCCGGACAAGGAGCAGCTCTTCGTGGTCATGGCCGGCATGGGCTACGACGCCACTATCATGGCTGACACCGACGAGGAGCTCAAGGACAAGGTTGGCTGGCTGGCCTACGTGGACGCCGGAATCAGGAACCTGCCCGGGAAGCCGGTCAGGGCCACGATCGTGATAGACGGCAAGTCTGTGGTTCACCGCCGAATCCGCGGCGTGATGGTGGGCAACTGCGGAAAAGTCCAGGGCAATTTGGAGATCTTCCCGGACGCTGCAGTGAACGATGGCCTCCTGGACGTGGTGGTCCTGGCGCCAAAAGGCCGCTTCGGCTGGTTCTCCGTCATCGGCGGAATGATCATCAAGGGGCGGAACAGAGACACTTCGGTTCAATACTTCCAGGGCAAATCCGTGGAGATCACGCTGGAGCACAACGACGATTACCAGCTCGACGGCGACCACGAGGGCGAAGGCAAGCACGTAAAGATGAACATCGACCCGGAAGCGCTGACCATCCGCATGGCAGTCGGTTAAMPANSSTALKRAAVIINPAKPVDIDVRGLIAKHSADNGWGEPIWLETTKEDPGVGQAEEALKQGADVVIAAGGDGTVRYVAQVLAGTPTPLGLVPLGTGNLLARNLGLDVTDVEGAIKGALVGWERRIDVVRAVRSDPDKEQLFVVMAGMGYDATIMADTDEELKDKVGWLAYVDAGIRNLPGKPVRATIVIDGKSVVHRRIRGVMVGNCGKVQGNLEIFPDAAVNDGLLDVVVLAPKGRFGWFSVIGGMIIKGRNRDTSVQYFQGKSVEITLEHNDDYQLDGDHEGEGKHVKMNIDPEALTIRMAVGPGPT0024345_1310DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024345-dagK-K07029NANA
D1-29_04585315hypothetical proteinGTGAGCGAGCCGCAGGCAGCCCCTGACTCTTCCACCACACCCTCGTCCGCCACACCCAGGCAGGCGCGTCCCGTTTGGCTGTTGCCCGTCATCATGACAATCGCCACGGGCGTGGTGGGCATGTTCCTTGTGGCCGGCCAGGGCCTGTACTGGATGATCGCCGTCATCGCTCTGGTGGATGCCATCGGCGTCTTCACCATCATCCGATCGGCCCGGATAAATGCCCGCCACCAGGAAGCGCGGAACCTGAGTTCACAGAACCAGGCAAGCCAGAACACCACGATCCGGAACCAGGACGCCCGGCACCGCCCGTAGMSEPQAAPDSSTTPSSATPRQARPVWLLPVIMTIATGVVGMFLVAGQGLYWMIAVIALVDAIGVFTIIRSARINARHQEARNLSSQNQASQNTTIRNQDARHRPNANANANANA
D1-29_045861374pntB_3COG1282NAD(P) transhydrogenase subunit betaGTGAATATGCTCGATCCGGTATGGACCTCGCTCCTGTACCTCGTCGCCGCGGTCTTCTTTATCCTGGCACTAAGGGGTCTCAGTTCTCCGCGTACAGCCCGCCGGGGCAACCTGATCGGCGCGCTCGGTGCCCTGATCGGCGTCATCACGGTGTTCCTGTCCATGCGGCTGGATAACATCCCCTGGATCCTCGGTTCCATTGCGGTAGGGACAGTGGCGGCTGCCCCGGTGGCCCGTGGAGTGAAGATGACGCAGATGCCGCAGCTGGTGGCCGCCTTCAACGGTGTGGGCGGCGGCGCCGCGGCGCTGGTCGCCCTGCTGGAACTCAGCCACACAGAGGACCCGTGGGTGCGGCTTGCCATTGTGTTCACGCTGCTGGTGGGCGCAGTTTCCTTCGCCGGGTCCGGCGTGACGTTCGCCAAGCTGCAGGAACTGATGACCACCCGGCCGGTGGTCTTTCCTGGCCTGCCCGTGGTCATGGCGGCGGTGCTGCTCGCCGCGGTGGGGGCCGCCGTCGCCATTATCCTGACGGGTTCGCTGGTGCTCGCCGTGCTGCTCATGCTCCTGGGGCTGGTGGCCGGCGTGCTGCTGGTGCTGCCGGTGGGCGGCGCGGACGTGCCAATTGTCATCTCGCTGCTGAACGCCTTCACCGGCCTGGCCGTCGCGGCCTCGGGAATTGTGCTGGGCAACGTGCTCCTGGTGGTGGCGGGCACCCTGGTGGGCGCTTCCGGTACCATCCTGACCCGTGCCATGGCGGCGGCGATGGGCCGTAGCGTGGCCGGGATCCTGTTCGGGGCCTTCAAGGGAGGTTCGACGGCGGGATCCACCGCCGTGAGCGAACGTCCCGTTCGGTCCTCCAGCCCGGAGGACGTGGCGGTGCTGCTGGGCTACGCACAGCGGGTGATCATTGTTCCGGGGTATGGCCTGGCGGTGGCGCAGGGCCAGCACACGGCCGCCGAGCTGGCGACCGCCCTTGAGGCCCGTGGTATCGAGGTGGACTTCGCCATCCACCCCGTGGCCGGCCGGATGCCGGGGCATATGAATGTGCTCCTGGCCGAGGCCAACGTCCCGTACGAGTCGCTCAAGGAGATGGGCGAGATCAATTCCAAGTTCAGGACGGCCGATGTGGCCCTGGTGGTGGGCGCCAACGATGTGGTTAATCCGGCCGCGAAGACTTCCTCCGGCTCGCCCATCTACGGGATGCCCATCCTTGAGGTAGCTGACGCGCGGCAGGTGATTTTCCTGAAGCGCTCCATGCGGCCGGGGTTCGCCGGGATTGAAAACGAGCTGCTGTACGAGCCGCAGACCTCGCTGTTGTTCGGCGACGCCAAGGATTCCCTGGCCAAGGTGCTGGGCGCGGTGAAGGCGCTGTAGMNMLDPVWTSLLYLVAAVFFILALRGLSSPRTARRGNLIGALGALIGVITVFLSMRLDNIPWILGSIAVGTVAAAPVARGVKMTQMPQLVAAFNGVGGGAAALVALLELSHTEDPWVRLAIVFTLLVGAVSFAGSGVTFAKLQELMTTRPVVFPGLPVVMAAVLLAAVGAAVAIILTGSLVLAVLLMLLGLVAGVLLVLPVGGADVPIVISLLNAFTGLAVAASGIVLGNVLLVVAGTLVGASGTILTRAMAAAMGRSVAGILFGAFKGGSTAGSTAVSERPVRSSSPEDVAVLLGYAQRVIIVPGYGLAVAQGQHTAAELATALEARGIEVDFAIHPVAGRMPGHMNVLLAEANVPYESLKEMGEINSKFRTADVALVVGANDVVNPAAKTSSGSPIYGMPILEVADARQVIFLKRSMRPGFAGIENELLYEPQTSLLFGDAKDSLAKVLGAVKALPGPT0013505_2406DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
D1-29_04587315pntA_3COG3288NAD(P) transhydrogenase subunit alphaATGGACGGAATGAGCCTGCTGACGATTACCGTGCTGGCGGTGTTTGTCGGCTTCGAAGTGGTCTCCAAGGTCTCCAGCACCCTGCACACACCGCTGATGTCCGGGGCCAACGCCATCCACGGCATCATCCTGGTGGGCGCAGTCATCGTGGCCGGGCAGGCAACCGACGGCTGGGTGCTCGCGGTGGCGCTGCTCGCCGTGGTGCTTGCCACCGCCAACCTGGTGGGCGGCTTCGTGGTCACGGACCGGATGCTCCACATGTTCCACGGCAAAAAAGAGGTTGCCCGGACCGCGGCGAAGGCGGACAACAAGTGAMDGMSLLTITVLAVFVGFEVVSKVSSTLHTPLMSGANAIHGIILVGAVIVAGQATDGWVLAVALLAVVLATANLVGGFVVTDRMLHMFHGKKEVARTAAKADNKPGPT0013500_2913DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-29_045881179pntAACOG3288NAD(P) transhydrogenase subunit alpha part 1TTGAAACTCGGCATACCGCGGGAAAGCCGCGAAGGTGAGCGGCGGGTGGCCGCCACCCCGGAAACAGTGAAGCAGCTGGCCGGGCTCGGCCTTGAGGTGCTGGTCGAATCGATGGCAGGCGTTTCGGCCGGTTACAGCGACCAGGAGTACCAGCAGGCCGGCGCCCGGATCGTGGAGCGGCTCGAAACCCCCGGCCTGGACGTCCTCGCCCATGTCCGCCCGCTGGAGACCGCAACAGCCAGGTCCCTGAAAAGGGGAGCGGTCAGTGTGGGCCTGGCGTCGCCGTCGTCGGAATTGGCCACGGTTCAGGCACTTGCCGCCGCGGGCGTGACGTCCTTTGCCCTGGAACTGGTGCCCCGCATCTCCCGCGCCCAGTCCATGGATGCCCTCAGTTCGCAGGCCCTGGTGGCCGGCTACCGCTGCGTGCTCGAGGCCGCCATCCGCCTGCCGCGGTTCTTCCCGCTGTACATGACCGCCGCCGGCACAGTCCCGCCCGCCCGTGTCCTGGTGCTCGGCGCCGGGGTGGCCGGGCTCCAGGCCATCGGCACCGCGAAGAGGCTCGGCGCCCGGGTCTCCGCCAATGACATCCGCCCCGCGTCGGCGGATGAAGTCGCCTCGATGGGCGGCACTTTCATCAAACTGGACCTCGAAACCGCGGAGGCCTCAGGGGGCTATGCCCGGGAATTGAGCGCGGACCGGGGTGCGCTCCAACGCGAACTCCTCGCCCCGCATGTCGCCCAGGCTGACGTCCTGATTACGACGGCGGCCGTCCCCGGCAGGCGCGCGCCCCTCCTGGTCAGCCGCGGGATGGTGCAGGGCATGCGCGCCGGCTCTGTCGTCGTGGACCTCGCCGCGGAGTCCGGCGGCAACGTGGAGGGCTGCGTTCCCGGCGAGGACATCCTGGTGCCCACCGCGGACGGGCAGGGCCACGTCACCCTGGTGGGGCTGAAGGACGCGCCGTCCACGATGGCCTTCGACGCCTCCCGGCTTTACGCCAAGAACGTGGCCAACCTGCTCGCCCTGATGACCCGGGACGGCACCGTGGTACCCGATTTCGACGACGACGTGGTGGCGGGCGCCTGCCTCACCCACGACGGCGTGGTGGTCCACCCGCCGACGGCGGAAGCACTCGCCGCGCCCGCAGCCGGATCCCAGCCACATCAGGAAGGGGGGCTCTGAMKLGIPRESREGERRVAATPETVKQLAGLGLEVLVESMAGVSAGYSDQEYQQAGARIVERLETPGLDVLAHVRPLETATARSLKRGAVSVGLASPSSELATVQALAAAGVTSFALELVPRISRAQSMDALSSQALVAGYRCVLEAAIRLPRFFPLYMTAAGTVPPARVLVLGAGVAGLQAIGTAKRLGARVSANDIRPASADEVASMGGTFIKLDLETAEASGGYARELSADRGALQRELLAPHVAQADVLITTAAVPGRRAPLLVSRGMVQGMRAGSVVVDLAAESGGNVEGCVPGEDILVPTADGQGHVTLVGLKDAPSTMAFDASRLYAKNVANLLALMTRDGTVVPDFDDDVVAGACLTHDGVVVHPPTAEALAAPAAGSQPHQEGGLPGPT0013500_1089DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-29_04589813pcaR_3COG1414Pca regulon regulatory proteinATGACCGAAGCACCAGCCGCCACGCAGGCCGCTCCCCAGGCGAGTGACCAGTACGTGCAGTCGCTGGCGCGCGGGCTGGCCGTGATCCGCGCGTTCGACGGTGACCATCCGGTCATGACCCTCACCGAGGTGGCTGCCCGCACCGACCTCACCAGGGCCACGGCCCGGCGTTTCCTGCATACGCTCGTGGAGCTCGGCTACGTCAGGACCGACGGCAAGACGTTCGCCCTCACGGCCAAGGTCCTCCAGCTCGGCTACGCGTATCTGTCCGGGCTGTCCCTGCCGCAGCTGGCCCAGCCGCACCTGGAGGAGCTGTCGCTCAAGCTCGGGGAATCCACGTCTGCCGCCGTGCTGGACGGCACGGACATCGCGTACATCGCCCGGGTGACCACACGAAGGATCATGAATGTGGGCATCACCGTTGGCACCCGCTTCCCCGCCTACGCCACGTCGATGGGCAGGGTGCTGCTGGCGGCGCTGTCACCGGCCGAATTGAAGGCTTACCTGGCCGCAGCGGACATCAGGCCCCTCACTCCGCGCGCGCTGGGAACACCCCGCGAACTCCTGGCTGAGCTGGAAACCGTCCGGGCCCAGGGCTGGTGCCTGCTGGACGAGGAGCTGGAACTGGGGCTCATGTCGGTAGCCGCCCCTGTCTATGACGGTCCCAGCAAAGTGGTGGCTGCGGTGAACGTGTCCCTGCAGGCCCAGTCCGTCGCGGCCAAGCCGGACCGGGAGGCATACCTGGGATCGGTGGCGCAGGAGATCGTGGCCACAGCCAAGCTGATCTCGGCGGACCTGTCAGCGAGGCAGTAGMTEAPAATQAAPQASDQYVQSLARGLAVIRAFDGDHPVMTLTEVAARTDLTRATARRFLHTLVELGYVRTDGKTFALTAKVLQLGYAYLSGLSLPQLAQPHLEELSLKLGESTSAAVLDGTDIAYIARVTTRRIMNVGITVGTRFPAYATSMGRVLLAALSPAELKAYLAAADIRPLTPRALGTPRELLAELETVRAQGWCLLDEELELGLMSVAAPVYDGPSKVVAAVNVSLQAQSVAAKPDREAYLGSVAQEIVATAKLISADLSARQNANANANANA
D1-29_04590681pcaJCOG20573-oxoadipate CoA-transferase subunit BATGAGCACCGCAACGTCCCTCCAGACTTCCGCAACACCCCTGGGCCGTGACGACCTCGCACGGCTTGTGGCCAAGGACATCACGCCAGGCTCGTTCGTGAACCTCGGGATCGGCCAGCCCACGCTGGTGTCCAACTACCTCACCGAGGACCAGGACATCACCCTGCACACGGAAAACGGCATGCTGGGCATGGGCCCGGCCGCCGAAGGGGACCAGATCGACGGCGACCTCATCAACGCCGGCAAGATCCCCGTCACCGAGCTCCCGGGTGCGTCCTATTTCCACCACGCCGACTCCTTTGCCATCATGCGCGGCGGGCACCTGGACATCTGCGTGCTGGGCGCGTTCCAGGTCTCGGCCACCGGTGACCTCGCCAACTGGCACACGGGCGCACCGGATGCCATTCCCGCCGTGGGCGGAGCGATGGACCTGGCAACAGGCGCCAAGGACGTCTTTGTGATGATGACGCTCCTGACCCGCGAGGGGGCATCCAAAATCGTGGAAGCGTGCACCTACCCGCTCACCGGCGTGGGCTGCGTGACCCGTGTCTATACGGACAAGGCCGTGTTCCTGACCGGACCGGATGGCGTCAGCGTTCGGGAGACATTCGGCTGCACCTTTGAGGAGCTCCAGGAACTGGTGCCTGTCCCGCTCAAAGCAGCCCCCGCCGTCGGACCCTAAMSTATSLQTSATPLGRDDLARLVAKDITPGSFVNLGIGQPTLVSNYLTEDQDITLHTENGMLGMGPAAEGDQIDGDLINAGKIPVTELPGASYFHHADSFAIMRGGHLDICVLGAFQVSATGDLANWHTGAPDAIPAVGGAMDLATGAKDVFVMMTLLTREGASKIVEACTYPLTGVGCVTRVYTDKAVFLTGPDGVSVRETFGCTFEELQELVPVPLKAAPAVGPPGPT0005030_194DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005030-pcaJ-K01032NANA
D1-29_04591684pcaICOG17883-oxoadipate CoA-transferase subunit AATGCTGAATTTTGTTGACTCCGTGGCTGAGGCCGTTGCCGGGATCAAGGACGGCTCCACCGTCATGATCGGCGGCTTTGGCAACGCCGGGCAGCCGTTTGAGCTGATCGATGCGCTGCTGGACTGCGGCGCAAGGGACCTGACGGTGGTGAACAACAACGCCGGCCAGGGCGACCAGGGATTGGCGCTGCTGATCAAGGAAGGCCGGGTGAGAAAGATGATCTGCTCCTTCCCGCGGCAATCCGACTCCTGGCATTTCGACGCCAAATACAAGGCCGGGGAGATTGAGCTGGAGCTGGTGCCGCAGGGCAATCTGGCAGAGCGCATCCGCGCCGCCGGCGCGGGCATTGGCGGGTTTTTCACCCCCACCGGATACGGCACCATGCTGGCCGAGGGCAAGGAAACCCGGATCATCGACGGCCGCGGCCAGGTCTTCGAAACACCGATCCACGCCGACGTCGCGCTGATCAAGGCGCTCAAGGCCGACGGCAAGGGCAACCTCGTGTACCGCAAGACGGCGCGGAACTTTGGCCCCATCATGGCCGCCGCGGCGAAGCACACCATCGTCCAGGTCTCCGAGATCGTCTCCACCGGAGGATTGGACCCGGAGAACGTGGTGACCCCGGGAATTTACGTCAACACCGTCGTCCGAGTGGCCGGCGGCACTTCAGAGAAGGCGGCCTGAMLNFVDSVAEAVAGIKDGSTVMIGGFGNAGQPFELIDALLDCGARDLTVVNNNAGQGDQGLALLIKEGRVRKMICSFPRQSDSWHFDAKYKAGEIELELVPQGNLAERIRAAGAGIGGFFTPTGYGTMLAEGKETRIIDGRGQVFETPIHADVALIKALKADGKGNLVYRKTARNFGPIMAAAAKHTIVQVSEIVSTGGLDPENVVTPGIYVNTVVRVAGGTSEKAAPGPT0005025_409DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005025-pcaI-K01031NANA
D1-29_045921218pcaFCOG0183Beta-ketoadipyl-CoA thiolaseATGAATCAGGCCTTTGTGTACGACGCCGTGCGCACGCCGTTCGGGAAGTTCGGCTCCGGCCTCGCCGCAGTCCGCCCGGATGACCTTGCTGCGCACGTCATCACCGAATCCGTGAAGCGGGCGCCGAAGCTGGATCCCGAGCGCATCGACGAGGTGGTGTTCGGCAACGCCAATGGTGCCGGCGAGGAGAACCGCAACATCGCGCGGATGGGAACGCTTTTGGCCGGGCTGCCCGTGTCCATCCCCGGCACCACGGTCAACCGGCTTTGCGGGTCATCGCTTGACGCCGCGATCATCGCCTCCCGCCAGATCAATGCAGGCGACGCGGAACTGATGCTGGTGGGCGGTGCCGAGTCGATGTCCCGGTCGCCGTGGGTGCTGCCCAAGACGGACAAGCCCTACCCGGCAGGTGACCTGACCCTGGCCTCCACCACCCTGGGCTGGCGCCTGGTGAACAAGGCCATGCCGAAGGAGTGGACCATCTCCCTGGGCGAGGCCACCGAGCGGCTCCGCGAGAAGTATGGTGTGACCCGGCAGGCGCAGGACGAATTCGCCGCTAACTCGCACAACCTCTCCGCCGCGGCCTGGGACGAAGGCTTCTACGACAACCTGGTAGCCCCTGTCCCGGGCACGGACCTGGTCCGCGACGAGGGCATCCGCGCCGGCTCCACGGCCGAAAAGCTGGCAGCCCTTAAGACGGTGTTCCGCTCCGAGCCCGAAGGCGCCGAGGTTGGCGGCACCGTCACGGCCGGGAACGCATCTCCACTGTCCGACGGCGCCTCCGCGGCCTGGATCGGCTCCGAAAGTGCCGCCGGGCTGCTCGGGCTGGAACCGCTGTCCCGGATCGCCGGCCGCGGCGCGCACGCCAACGATCCCCAGTACTTTGGCTACGCCCCGGTGGAGGCGGCGAACAAGGCCCTCGCGAAGGCGGGCATCGGCTGGGACCAGGTGGGCGCCGTCGAACTTAACGAGGCGTTTGCCGCGCAGTCCTTGGCCTGCATCACCGCGTGGGGCATTGATCCAACAATTGTGAACCGGCACGGCGGCGCCATAGCGATGGGCCACCCGCTTGGCGCATCGGGCACCCGCATCCTTGGCACGCTAGCGCGCAGCCTGCAGGCCTCGGGGGAGCGCTGGGGCGTGGCGGCCATTTGCATCGGCGTGGGCCAGGGCTTGGCAGTGGTGCTGGAGAACGTGTCTGCCGGAGTGAAGGGTTAGMNQAFVYDAVRTPFGKFGSGLAAVRPDDLAAHVITESVKRAPKLDPERIDEVVFGNANGAGEENRNIARMGTLLAGLPVSIPGTTVNRLCGSSLDAAIIASRQINAGDAELMLVGGAESMSRSPWVLPKTDKPYPAGDLTLASTTLGWRLVNKAMPKEWTISLGEATERLREKYGVTRQAQDEFAANSHNLSAAAWDEGFYDNLVAPVPGTDLVRDEGIRAGSTAEKLAALKTVFRSEPEGAEVGGTVTAGNASPLSDGASAAWIGSESAAGLLGLEPLSRIAGRGAHANDPQYFGYAPVEAANKALAKAGIGWDQVGAVELNEAFAAQSLACITAWGIDPTIVNRHGGAIAMGHPLGASGTRILGTLARSLQASGERWGVAAICIGVGQGLAVVLENVSAGVKGPGPT0001565_699DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-29_04593504hypothetical proteinATGAGCGGCGTCGACAAGAATGTCTCCGAGCGAAACGGGGCCGTACAGCCCACTGCCACCACCCAGGAGATTTACGACGCCGGCATGGTAGTGCGGCGCGAAGTCCTGGGTGAGGCGCACGTGGACCGGGCCAACGCCACGAAGGACGGGTTCACCGAGGATTTCCAGGACATGATTACCCGGATCGCGTGGGCCGGCATCTGGACCCGCCCGGGCCTCACCCGGCAGATGCGCTCCGCCGTGACCATCACCGCCATGGTGGCGCACGGGCACTGGGACGAGCTGGCCATGCATATCCGCGCAGCCATCACCAACGGCCTCAGCAGGGATGAAATCAAGGAAATCCTGCTCCAGACGGCCATCTACTGCGGTGTCCCTTCCGCCAACACGGCTTTCAAGACGGCCCAGCAGGTGTTCCATGAAATGGACAGCACCGCAATGGACAGCACCGAAATGGACGCAAAAGAGCCCGACCAACCCACCACCCCCACCCCACCCAACTAGMSGVDKNVSERNGAVQPTATTQEIYDAGMVVRREVLGEAHVDRANATKDGFTEDFQDMITRIAWAGIWTRPGLTRQMRSAVTITAMVAHGHWDELAMHIRAAITNGLSRDEIKEILLQTAIYCGVPSANTAFKTAQQVFHEMDSTAMDSTEMDAKEPDQPTTPTPPNPGPT0005005_1552DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-29_04594819catD_2COG05963-oxoadipate enol-lactonase 2ATGGCTAAACCGGCCCTCAAAGCAGTCCTGCTTTCGCCCCAGCGCGCCCTCGGCAGCCACCCCCTCCTGGTGCTGGGTCCTTCCCTCGGGACCTCCACCATCCTCTGGAATGAGGCCGCGTCGATCCTGGGCAAAGACTTCGACGTAGTGGCCTGGGACCTCCCCGGCCACGGCGTGTCACCGGCAGCCACCGAAGGGTTCGACGTCGCGGGCCTTGCCGATGCCGTGGTGGAGCTCGTTGACTCCATCGCCCCGGGTGAGGCCTTCCACTACGCCGGCGTTTCCCTCGGCGGAGCCACCGGGCTGCAGCTCGGCATCAAACACGGCGAACGGCTCAAGAGCCTGTCCGTCCTGTGCACCGGTGCCAAGCTGGGCACCCCCGAAGGCTGGCTGGAACGCGCCGAGACCGTGCGGAACCAGGGTACGCCCGTCATGATCCAGGGGTCCGCGGAACGCTGGTTTGCGCCCGGCTTTATGGACCGCGAACCCGAGCGCAGCAGCAGGCTCCTCCACGCTCTCCGGGATGCCGACCGTTTCAGCTACGCCTTCTGCTGCGAGGCCCTGGCAGGGTACGACGTCCGGGCAGAACTGGGCAGTATTTCCGTCCCCACGCAGGCCGTCGCCGGCGCCCTGGACGGTGTGGCCCCGCCGTCGTTGGTTCAGGAAATCGCCGATGGCATCACCGCCGGCGGCGGCACGGCAAGCGCCGTGACCCTGGAGGGTGTGGCGCACCTGGCCCCGGCCGAGGCGCCCGCCCATGTTGCGGAACTGCTCCGCGGCCTCATTGCCTGGGCCGAAGCCCGCGGAGCAGCCAAATGAMAKPALKAVLLSPQRALGSHPLLVLGPSLGTSTILWNEAASILGKDFDVVAWDLPGHGVSPAATEGFDVAGLADAVVELVDSIAPGEAFHYAGVSLGGATGLQLGIKHGERLKSLSVLCTGAKLGTPEGWLERAETVRNQGTPVMIQGSAERWFAPGFMDREPERSSRLLHALRDADRFSYAFCCEALAGYDVRAELGSISVPTQAVAGALDGVAPPSLVQEIADGITAGGGTASAVTLEGVAHLAPAEAPAHVAELLRGLIAWAEARGAAKPGPT0004995_533DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-29_045951557pcaBCOG00153-carboxy-cis,cis-muconate cycloisomeraseGTGACAGACGCTCCAACGGCTGACCTTCCAGTGACTAATTCGCCAGTCACCGGCGCCGGCCACTTCAGCAGTACAGCTGACGGCGACGTCGGCCTGCTGAGTCCTGTTTCGGCGTCGCCGCTGGTCGCGGCGCTGACCGGGGACAGGGCAGTGCTGGGCGCCATCCTCGCCGTCGAAGCCGGCTGGGCCGCCGTACTGGAAAAGGCCGGCCTGGCGCCGGCCGGTTCCGCCGCCGTCGTGGTTTCCGCCGCGGACGCTGGACGTTACGACGTGGCGGACATCGCCCGCCGTGCCCAGGGTGGCGGCAACCCTGTGATCCCGCTCCTGGCGGACCTCCGGAAGAATGTTCAGGCGCTGGACAGCGCCGGTATCGGTGCCACAACAGCAGTGCATACGTCATTGACCAGCCAGGACGTGCTGGATACCGCCCTCATGCTGGTGGCCCGGCACACCGTACAGGCGGTGCTCGGCGACGTGAAGCGCACGACGGCGGCGCTCGCCGCCCTGACGAAACAGCATGCGGAAACGCTGTGCGTGGGCAGGAGCCTGACGCAGCACTCCCTTCCATTCACGTTTGGGCTGCGGGCGGCCCAGTGGTTCCACGGTGTGGCCGCCGCGGGCCGGCAGCTGGAGAGCCTGGAGCTGCCGGTCCAGTTCGGCGGAGCGGCGGGAACTCTCGCCGCCGGCACAGCCCTCACCTCCGGTGCGGTTTCCACCCCCTTCACACTCGCGGATCGCCTGGCCTCCCAGCTGGGTCTGGCGGCAGCACCCACACCTTGGCACACTAACCGCCTGGCCGTCACGTCACTGGGCAACGCACTGGCCTCAGTACTGGACGCGTTCGGCAAGATCGCAGCAGATGTCGTGTTCCTGAGCCGTCCCGAGGTTGCCGAACTCGCCGAGCCCCTGGCGGCCGGTCGCGGGGTTTCCTCGGCGATGCCGCACAAGCAGAACCCGGTCCTTTCCGTCCTGGTCCGCAGCGCCGCCCTCCAGGCTCCCGGCCTCGCCGCCCAACTGCACCTGGCCGCGGCCAACTTCAATGACGAACGCCCTGACGGCGCATGGCACAGCGAATGGCCCGCGCTCCGCCAGCTACTGGCCCTGTCGCTTGGCGCGGCCGGGCACGTCCGCGAGCTGGTCGAAGGGCTCCGGACCTACCCCGACGCCATGCGCCGCAACCTTGACCTCGCCGGGCCGCTGGTGCTGGCCGAGGGAGTGGCCGCCGCCGTGGCCCCGCTGCTCAAGGACGCCGACGGGCAGGAGGGCGGCCCTTCCGGCAAGCAGCAACTGCAGGCCCTGGTGGACCGCACGCTTGAGGCGCCCGCCGCAGAACAGGGTGCCACCTACCGACGGCTCCTTCGTGAAGCCGTCCCGGCGAACCTGCTCCCCGATGACAAGCTGGCCGAGCTCCTGGATCCGGCGAACTACCTGGGCCAGGCCGGCGTGATCTCCCGCCGAATCCTGGCCGCCTTCCCGGATTTCGCCGCCCAGGACAGCCCCCTTCCGAAGACCACGTCATCCGCCCACACCGACGCGAACGGAGCCAACCATGGCTAAMTDAPTADLPVTNSPVTGAGHFSSTADGDVGLLSPVSASPLVAALTGDRAVLGAILAVEAGWAAVLEKAGLAPAGSAAVVVSAADAGRYDVADIARRAQGGGNPVIPLLADLRKNVQALDSAGIGATTAVHTSLTSQDVLDTALMLVARHTVQAVLGDVKRTTAALAALTKQHAETLCVGRSLTQHSLPFTFGLRAAQWFHGVAAAGRQLESLELPVQFGGAAGTLAAGTALTSGAVSTPFTLADRLASQLGLAAAPTPWHTNRLAVTSLGNALASVLDAFGKIAADVVFLSRPEVAELAEPLAAGRGVSSAMPHKQNPVLSVLVRSAALQAPGLAAQLHLAAANFNDERPDGAWHSEWPALRQLLALSLGAAGHVRELVEGLRTYPDAMRRNLDLAGPLVLAEGVAAAVAPLLKDADGQEGGPSGKQQLQALVDRTLEAPAAEQGATYRRLLREAVPANLLPDDKLAELLDPANYLGQAGVISRRILAAFPDFAAQDSPLPKTTSSAHTDANGANHGPGPT0005000_67DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005000-pcaB-K01857NANA
D1-29_04596564pcaGCOG3485Protocatechuate 3,4-dioxygenase alpha chainGTGAACACGACTCCCAAACTTGTGGCCACCCCCGGCCAGACCATCGGACCCTTCTACGGCTACGCCCTGCCCTATGAAAAGGACAACGAACTCCTTGCGCCGGGCTCGCCAGGTTCCATCCGGCTCCAGGGCACTGTGTACGACGGCGCCGGGGAGACTGTCCCGGACGCCATCCTGGAAATCTGGCAGCCCGACGCCGACGGCAAAGTCGTGCAGCGCACCGGCTCCCTGGTCCGCGACGGCTACACCTTCACCGGTTGGGGCCGCGCTGCCGTGGGCTACTCCGGCGTCTACACCTTCACCACCGTCAACCCCGGTCCCACCGAGGCAGGCGCCGCACCGTTCATCGCGGTGGCGGTTTTCGCCCGCGGCCTCACGAACCGTCTCTTCACCCGCATCTACCTTCCCGAAAACGAGGAAGCCCTGGCCGCCGATCCGCTGCTCAGCTCGCTTGATATGGACCGCCGCAAGACCCTCATCGCCCGCCGGGACCCCGACGGCGGGCTCACCTGGGACGTCCGCCTGCAGGGTGAGGGCGAAACAGTGTTCCTGGACTTCCAGTGAMNTTPKLVATPGQTIGPFYGYALPYEKDNELLAPGSPGSIRLQGTVYDGAGETVPDAILEIWQPDADGKVVQRTGSLVRDGYTFTGWGRAAVGYSGVYTFTTVNPGPTEAGAAPFIAVAVFARGLTNRLFTRIYLPENEEALAADPLLSSLDMDRRKTLIARRDPDGGLTWDVRLQGEGETVFLDFQPGPT0005010_776DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005010-pcaG-K00448NANA
D1-29_04597870hypothetical proteinGTGCCGCAAGAAGCCAACCAGCTTGGGACCGACGAGCTCGTACCGCATGCGGAACCCCGTGCCGCGCACCTGCCCCTGGACCGCGCCATCGAAACCCAGGCCGATCTCAGTGCAGAGATCAACGCCATGAGCGACGCCTACGCGCGGAAGCTGAAGGAGGGCACCCCGGCCGAAACGCAGCCCCGGCTGGACTACCCGCCGTACCGCAGCAGTATCCTGCGCCATCCCACCAAGAGCCTGCACCACGCGGACCCGGAGACCATCGAGCTGTACTCGCCGGCCTTCGGGCACCAGGACGTACACCAGCTCGAATCCGACCTGACCATCCAGCACAACGGTGAACCCCAGGGTGAGCGGATCATTGTGCAGGGCAAAGTGCTCGACGGAAACGGCCGCCCGGTGGCAGGGCAGCTGGTGGAAATCTGGCAGGCCAACGCGTCCGGCCGGTACATCCACAAGCGGGACCAGCACCCCGCGCCCCTTGATCCCAACTTCACCGGCATTGGCCGCTGCATTACGGGCACGGATGGTTCCTACCGGTTCGTCACCATCAAGCCAGGTGCCTATCCCTGGAAGAACCACCTGAACGCCTGGCGTCCGGCCCACATCCACTTCTCGCTGTTCGGCACAGAGTTCACCCAGCGCATCATTACGCAGATGTACTTCCCCGGGGATCAGCTGTTCCCGCTGGACCCCATCTACCAGTCGATTGTGGACCAGGACGCCCGGGACCGCCTGGTGGCCAGCTACGACCACAGCCTCACCGAACCCGAATGGGCATTGGGCTACAACTGGGACATCGTCCTGACAGGATCCAAACGGACCTGGACCGAAAACGAGGCGCTCGGCGCGGCCGGAGATGAGGAATAAMPQEANQLGTDELVPHAEPRAAHLPLDRAIETQADLSAEINAMSDAYARKLKEGTPAETQPRLDYPPYRSSILRHPTKSLHHADPETIELYSPAFGHQDVHQLESDLTIQHNGEPQGERIIVQGKVLDGNGRPVAGQLVEIWQANASGRYIHKRDQHPAPLDPNFTGIGRCITGTDGSYRFVTIKPGAYPWKNHLNAWRPAHIHFSLFGTEFTQRIITQMYFPGDQLFPLDPIYQSIVDQDARDRLVASYDHSLTEPEWALGYNWDIVLTGSKRTWTENEALGAAGDEEPGPT0005015_31DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005015-pcaH-K00449NANA
D1-29_045981938hypothetical proteinATGCGCACCGGAATTGCCACCGTCTGCCTCTCCGGCACCCTGAAGGAAAAGATGCAGGCGTGCGCCATCGCCGGCTTCGACGGGATCGAAGTCTTCGAACAGGACCTGGTCACGTCACCGCTGACGCCGGAGGACATCCGCAAGATGGCAGCGGACCTTGGCCTCACCCTGGACCTCTATCAGCCGTTCCGCGACTTCGACAGTGTTCCTGACGAGCTGCTGGCCGCGAACCTTCGCCGCGCCGAAGCCAAATTCAGGCTTATGTCCCGCCTGGGCGTGGACACCATCCTGGTGTGCTCCAACGTGGCCACCGCCAGCGTCGACAGCGACGACCTCCGCACCGAGCAGCTGGGCCGCCTGGCCGAACTCGCCGGGGAGTACGGGGTCAACGTCGCCTACGAAGCCCTCGCCTGGGGCAAGTACGTCAACGACTACGAGCACGCCCACCGGCTGGTGGAGGCCGTGGACCACCCCAACCTGGGCACGTGCCTGGACTCCTTCCACATCCTTTCCCGCAACTGGGACACCGCACCCATCGAGGCCTTCAAGCCGGAAAAGATCTTCTTCGTTCAGGTGGCCGATGCCCCCAAGCTGTCCCTGGACGTGCTTTCCTGGAGCCGGCACTACCGCGTGTTCCCCGGCGAAGGCCAGTTCGACCTCGCCAAGTTCATGGGCCATGTTGTCCGGGCCGGGTATTCAGGGCCGGTGTCGCTGGAGGTCTTCAACGACGTCTTCCGCCAGTCCGACGTTGACCGCACTGCCGTGGACGCCATGCGCTCGCTGATCTGGCTTGAGGAACAGAGCGCCGCGTGGCTTGCCGGGGCCTCCGTCGAAGTCAAGGCCGGCAGCGCTCCTGGCTCCCGCCGTCGTTATCCCATGGAACTGGCCACGCTGCCCAAGGTGAGCGAACCGGCCGGATTCAACTTCGCCGAGGTCAAGGCCGAGGACACCGTTCAGCTCGAGAAGCTCTTGGGGCAGCTCGGCTTCGAATTCAACGGACGCCACCGCACCAAGGACGTCCAGCTCTGGACCATGGGCCAGGCCCGCGTGATCATCAACGAGCAGGCGGCGTCGCACTCGGAACCGGCTATCGCCGCGCTGGGGTTCGACGTCGATTCGCCCCTGATTGCTTCCGCCAGGGCACAGCAACTCAAGGCGCCGGTGGTGGCCCGGAAGGTGCAGGCCGACGAGGAAGTCTTCCAGGGCATCTCCGCGCCGGACTCCACCGAGATCTTCCTGTGCCAAGGCAGCCCGGACGGCACCGCAGCCTGGACTGCTGAATTTGGCCAGGCGAACGAGTCTGGCCAGGCGCATGAGTCTGGACAGGCGCAATCTGGAGGGGACCTGGAACACCCTTCCCTGCGGGACGGCGCCACCGCTCATGCTGTCATTGACCACGTGAACCTTGCCCAGCCGTGGCAGCACTTTGACGAAGCCGTTCTTTTCTACACCAGCGCGCTGGCCCTGGAACCGCAGCCCTTCGCCGAAGTTCCGAGCCCCAGCGGGCTGGTCCGCTCGCAGGTCATGCAGACTTCCGACGGCGCCGTACGGCTGGTGCTGAATCTCGCACCCGTGCAGCAGGCCCAGAGCGAGATCCGAAAAACGTACCAGGAACATATCGCCTTCGCCGTGGACGACCTCGTGGCAACGGCGCGGTCCGCCCGGGACCGGGGCCTTGAGTTCCTGCAGATTCCGGCCAACTACTACGAGGACCTGGACGCCCGGTTCAAACTTGAACCGAAGTTCCTGGCCACGCTTCAGGACCTCAACCTCCTGTATGACCGGGATGCCGACGGGGAATTCCTCCATTTCTACACGGCCACCGTAGGCAGTGTGTTCTTCGAAATGGTGGAACGCCGGGGCAACTACGGCGGCTATGGGGCGCCCAACGCTCCGGTGCGCCACGCCGTCCAGTACGACTCACTCCACCGTTTCTAAMRTGIATVCLSGTLKEKMQACAIAGFDGIEVFEQDLVTSPLTPEDIRKMAADLGLTLDLYQPFRDFDSVPDELLAANLRRAEAKFRLMSRLGVDTILVCSNVATASVDSDDLRTEQLGRLAELAGEYGVNVAYEALAWGKYVNDYEHAHRLVEAVDHPNLGTCLDSFHILSRNWDTAPIEAFKPEKIFFVQVADAPKLSLDVLSWSRHYRVFPGEGQFDLAKFMGHVVRAGYSGPVSLEVFNDVFRQSDVDRTAVDAMRSLIWLEEQSAAWLAGASVEVKAGSAPGSRRRYPMELATLPKVSEPAGFNFAEVKAEDTVQLEKLLGQLGFEFNGRHRTKDVQLWTMGQARVIINEQAASHSEPAIAALGFDVDSPLIASARAQQLKAPVVARKVQADEEVFQGISAPDSTEIFLCQGSPDGTAAWTAEFGQANESGQAHESGQAQSGGDLEHPSLRDGATAHAVIDHVNLAQPWQHFDEAVLFYTSALALEPQPFAEVPSPSGLVRSQVMQTSDGAVRLVLNLAPVQQAQSEIRKTYQEHIAFAVDDLVATARSARDRGLEFLQIPANYYEDLDARFKLEPKFLATLQDLNLLYDRDADGEFLHFYTATVGSVFFEMVERRGNYGGYGAPNAPVRHAVQYDSLHRFPGPT0009480_178DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0009480-hppD-K00457NANA
D1-29_04599882aroE_2Quinate/shikimate dehydrogenase (NAD(+))ATGAGTAATCGAACTGAGTCCTACCTTGTGGGACTGGTCGGCGATGGCGTGATGCCATCACTCACTCCCCACATGCACGAACGCGAAGGTGACGTGCAGGGCCTGCGCTACCTTTACCGGCCCATCGATCTCCTCGAAATCAAGGAGCCGGCAGAATCCGTCGGTGACCTGCTGAAGAGCGCCCGCAGCCTGGGTTTCAATGGCTTGAACATCACCCACCCGTGCAAGCAGCTGGTCCTTCAGCACCTGGACGAGGTTTCCCATGATGCCCGCAGGCTGGGCGCGGTCAACACCGTAGTGATTGAGGACGGCCGGTTCGTTGGCCACAACACAGACTTCTCCGGGTTCGCTGCCGCCCTTGCCTCCGGACTGCCCGGCGCCCGACTGGACCGCGTGGTCCAGCTCGGAGCAGGCGGCGCCGGATCCGCCGTCGCCTATGCCCTGCTCACCGCTGGAGTGCAGCAGCTGAACCTGGTGGACATGGACCCTGCCCGGGGCGCGGCCCGAGCCGCCCAACTGGCCGGCTTCTTCCCGGACCGCACCGTGACAGCGCGGACGACGGCGGAGCTGCCGCAGCTGATGCCGCTGGCCGACGGCCTGGTGCACTGCACCCCGGTGGGGATGGCAGCCCACCCGGGAGTGCCCCTGGACCTTGACCTGCTGGAACCCCGGCATTGGGTGGCGGACATCGTCTACCGTCCCATCGACACGGAGCTTGTGCTGGCTGCGAGGGACAAAGGCTGCGAGGTCCTGGACGGCGGGCGCATGGCCGTGGGGCAGGCAGCTGACGCCTTCCGGATCTTCACCGGCCTGGAACCTGACGCCGGGCGCATGCGTTCGCACTTCCTGGAGCTCGTTGCCGCAGAAGAGGTGGCCGCCTGAMSNRTESYLVGLVGDGVMPSLTPHMHEREGDVQGLRYLYRPIDLLEIKEPAESVGDLLKSARSLGFNGLNITHPCKQLVLQHLDEVSHDARRLGAVNTVVIEDGRFVGHNTDFSGFAAALASGLPGARLDRVVQLGAGGAGSAVAYALLTAGVQQLNLVDMDPARGAARAAQLAGFFPDRTVTARTTAELPQLMPLADGLVHCTPVGMAAHPGVPLDLDLLEPRHWVADIVYRPIDTELVLAARDKGCEVLDGGRMAVGQAADAFRIFTGLEPDAGRMRSHFLELVAAEEVAAPGPT0012890_744DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-29_04600930kdgR_5COG1414Transcriptional regulator KdgRATGAGTGTGAACCAAACCACAGCCGCCCACGACGCAACCTCCCACCAGCCTTCCGCTGACGCCCAGCCCGCCCACGGCCCCTCCGCTGACGCCCAGCCCGCTGATGCCCAACCCGCTGGCGCGCCACCCGCTGACGCGCCATCTGCTGAAACCAAGGGAGCGGCAGCCAAAGGATCAGACCGGACGGACATGGTAGGCAAAGCCCTGGGCCTGCTGGTGCTCCTCGGTGATGAGCCCCGCGGGGCCAGTGCCGCGGAGATCTCGCGCCGTGCCGAGTTGCCCTTCAGCACCACGTACCGGTTGCTGGGTTCGCTGACCCGGGACGGTTTTGTGGATTATGAACCGGATGGCCGCCGCTACCACCTGGGCCTGCGGATCTTCCAGCTGGGCCAGCGGGCGTCCAACCACCACGGCTTCGCCGGCACCGCGCTGCCTGTCCTGCGCCGCGTGACGGAACAGACTGGCGAGGCCACCATCCTCAGCGTCAGGGACGGCCATCATCACCTGACCGTCAACAAGGTGGATGGCCCGCAGATGTTCCGCGTCACCAGCGATCCTGGCCACCTCGGCGCCCTGCACACCACCGCTGTGGGTAAGGCGCTGGTGGCCTTCGCCGAAGACTCCGAGCGCGAACGCCTGCTGCAGGAGCTGGAACTCGAGCCACTCACCGAGCATTCCATCACCGACCGCGCGGCCTTCCGTGCCGAAATCGAGCAGGTTCGGCGCCAGGGCTACGCCGTCATGGACGAGGAGAATGAAATCGGCATGAGGGCCGTGGCTGTTCCCCTCCTGAATGGACAGGGCCATGCTTTCGCATCACTGGCCACCGCCGTGCCGGTCTTCCGCCTTGAGCTCGATGCGTTGCTCGCCCACGTGCCGCTGTTGCAGGATGCGGCAGCCGAGCTGTCGGCCCGGTTGCCCCAGAGATGAMSVNQTTAAHDATSHQPSADAQPAHGPSADAQPADAQPAGAPPADAPSAETKGAAAKGSDRTDMVGKALGLLVLLGDEPRGASAAEISRRAELPFSTTYRLLGSLTRDGFVDYEPDGRRYHLGLRIFQLGQRASNHHGFAGTALPVLRRVTEQTGEATILSVRDGHHHLTVNKVDGPQMFRVTSDPGHLGALHTTAVGKALVAFAEDSERERLLQELELEPLTEHSITDRAAFRAEIEQVRRQGYAVMDEENEIGMRAVAVPLLNGQGHAFASLATAVPVFRLELDALLAHVPLLQDAAAELSARLPQRPGPT0018213_148DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
D1-29_046011320abaF_4Fosfomycin resistance protein AbaFATGAGCCAGACACTTCCGTCCGCGGAGCCGGGCACTGTCGCCCCGGCCGGGACACCGAAGAAGGCCGCCGTCGCCAGCTTCCTGGGCAGCGCCGTCGAGTACTACGACTTCTTCATCTTCGGTTCGGCGGCCGCCCTGATTTTTCCCACAGTCTTCTTCCCCAGCGCCGACGCCAACGCAGCCATCATGTCCTTCGCCACCTTCGGCTTTGCTTACGTGGCGCGTCCCGTGGGCGCGGTCATCCTGGGGCACTTCGGTGACAGGGTGGGCCGGCAGAAAGTGCTGATGTTCACCCTGGTGCTGATGGGCGCCTCAACGTTCCTGATCGGCTGCCTGCCGGACTTCAACACCGTTGGCTGGTGGGCACCGGCGCTGCTGGTGCTGGCTCGGCTGTGCCAGGGCCTCTCGGCAGCCGGCGAACAGGCAGGCGCCTCCTCCATGACCTTGGAACACGCGCCGGACAACCGCCGCTCGTTCTTTACATCCTGGACCCTTACCGGCACCCAGGGCGGCCAGATCCTCGCCGCCCTCGTCTTTATCCCGGTCCTGGCCCTTCCTGACGAGATCAAGTACGGCATCGGCTGGCGCGTCCCGTTCTGGCTGAGCGCCGTGGTGGTGCTGGTGGCGTTCTTCATCCGACGCACGCTGCACGAACCGCCGGCCTTCGAAGAGGCCCAGAAGACCGCCCAGATTTCCAAACTCCCCGTCGCCGATCTCCTGAAATCCCACTGGCGCGACGTGCTGCGTGTTGTCTGCTGCGCCTTCATCGCTGCCGTTTCCACCGTGTTCGGTACCCTCGCCATCAGCTACGCCAAAACAGTTGCCGGTGTTGACGGGACCACCACACTGTGGCTGGTGGTTGGCGCCAACCTGGTGGCCCTGGGAACGCAGCCCGTGTTCGGAATGCTCGCCGACCGGGTTGGCCGCAAGCCTGTCTTCATCTACGGCGCCCTTTCCAGTGCCGTGCTGACCCCCGTTTTCCTGCTCAGCCTGGAATCCGGCAGCGTCCCGCTCATGTTCCTCGCCGCCATCGGATTCTTCTCCTGCGGCTATGCTGCCTCCAATGCTGTCTGGCCGTCCTTCTACGCCGAGATGTTCAGCACCAAAGTCCGCTTCTCTGGCCTGGCCATCGGCACCCAGCTTGGCTTCCTGATGGCAGGTTTTGCGCCGGCTGTCGTGGCAGCCATGGGCGGGATCAAGCCAGGAGGCTGGGTCCAGATCAGCATCTTCACCGCAATCATCTGCGTGGTGGCGGCCACTTCAGCCCTCACCGCCAAGGAAACGTTCAAAACCCCCACAAAGCAGCTCGGCCTGAAGTAAMSQTLPSAEPGTVAPAGTPKKAAVASFLGSAVEYYDFFIFGSAAALIFPTVFFPSADANAAIMSFATFGFAYVARPVGAVILGHFGDRVGRQKVLMFTLVLMGASTFLIGCLPDFNTVGWWAPALLVLARLCQGLSAAGEQAGASSMTLEHAPDNRRSFFTSWTLTGTQGGQILAALVFIPVLALPDEIKYGIGWRVPFWLSAVVVLVAFFIRRTLHEPPAFEEAQKTAQISKLPVADLLKSHWRDVLRVVCCAFIAAVSTVFGTLAISYAKTVAGVDGTTTLWLVVGANLVALGTQPVFGMLADRVGRKPVFIYGALSSAVLTPVFLLSLESGSVPLMFLAAIGFFSCGYAASNAVWPSFYAEMFSTKVRFSGLAIGTQLGFLMAGFAPAVVAAMGGIKPGGWVQISIFTAIICVVAATSALTAKETFKTPTKQLGLKPGPT0002956_293DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_SHIKIMATE_TRANSPORT,PGPT0002956-shiA-K08172NANA
D1-29_046021062hypothetical proteinGTGGTGAAGGCGTTTGCGGCAATCGACGCCGCCTTTGCTGCGCTGACTGCGGAAGTAACGGACGCTTCCCCTGCGGCCTCCTCTGGTGCCGATGCGCTCCGCCTTCTGGCCGATGGTTGCCTGGAAGTCCTTGAGGGGGCGAGGCGGACAGAGGCGCAAATGGCGGCTCTGAAGGCCCACGCTGCCGTGAAGTTCGCTGATACCACCAAGTCGATCGCAGGGCCGGCGGCGTCGCCACAGGATGCCACGGCGCAAGAGATGGCTGTGACTGCCGAGATCGCCTGCGTGCTGACCGTTGGTTCCCGTGCCGCTGGTGCATTGCTGTCCCAAGCACAGCAACTCACCACAGCATTGCCGCTCACCCTCACAGCGTTGCAGCTCGGAACTATCTCCTGGCAGCACGCCAGGGCAATGGTCGATGAATCCGCCTGTCTTGATCCCGCCGGCGCCGCCTCGCTGGAAGCGCATTTCCTCGATCCGGACGCCCTGGACGCGGCCCGCGGCTGCCCCGCGGGCGAAATGCCCGCGTCCCGGTTCCGCGCCATGGCGCGAACCTGGCGTGAACGCCACCACAAGGAGAGCATCGAGAAGCGGCACGCCAAGGGGCACCTGGACCGGCGGGTGGAATACACTCCGGATCAGGACGGCATGGCCTGGCTCTCCGCCTATCTTCCTGCAACCGAGGCCAGCGGAATCTGGAACCGGATCACCGCCATTTCCCGCAGCCTGCAGGGGCCAGCCGAGGCCCGAACCCTCACCCAGCTGCGGACCGACGTGCTCGCCACCGCACTCCTCAGCAGCGGAAACGGCGGGAGCAGCGGGGACGGCGACAGCAGCGGGAATGGCAAGAGTATCGGAAACGGCGGGAGCAGCGGGAATGGCCAAGAAATGGCCCCCGGGCAGGTCCCGTCGCCCCGGGCACAGGTCCTGGTCACTGTGCCGGTGTTTTCCCTGCTGGGGGCTCAGATGAGCCGGCGATGCTGGACGGGTACGGGCCCATCCCCGCTTCGATGGCCAGGGACGTCGTCGCGAACGGGGCCGACTCCTTCTACCGTGTGCTGAMVKAFAAIDAAFAALTAEVTDASPAASSGADALRLLADGCLEVLEGARRTEAQMAALKAHAAVKFADTTKSIAGPAASPQDATAQEMAVTAEIACVLTVGSRAAGALLSQAQQLTTALPLTLTALQLGTISWQHARAMVDESACLDPAGAASLEAHFLDPDALDAARGCPAGEMPASRFRAMARTWRERHHKESIEKRHAKGHLDRRVEYTPDQDGMAWLSAYLPATEASGIWNRITAISRSLQGPAEARTLTQLRTDVLATALLSSGNGGSSGDGDSSGNGKSIGNGGSSGNGQEMAPGQVPSPRAQVLVTVPVFSLLGAQMSRRCWTGTGPSPLRWPGTSSRTGPTPSTVCNANANANANA
D1-29_04603540hypothetical proteinATGGCCAGGGACGTCGTCGCGAACGGGGCCGACTCCTTCTACCGTGTGCTGATTGACCCGCGGGATGGGGCACCTCTGGAGATCGGCCGCACGAGTTACCGGCTCACCAAAGCGATGCGGAACTGGCTGCGGATGAGGGACGGCAAGTGTCCGTTCCCCGGCTGCAGCAACCAGTCGCTGGACAATGAAGCAGACCACCTCCTCGCATGGCACCATGGCGGAACCACAGGGATCAGCAACCTCGGGCAGCCGTGCCCCAAACACCATCGGCTCCGACACACCAGCGGCTGGAAACCCACGCCGGCCACAAAGAACGAACCGCCCGGCTGGATCTCACCCTCAGGCCGCCATTACAAAAGTGAACACCAGGACTGGGAACCACCACATTGGCCTAAAGCATTGAAGCCCGAACTGCAATCAAACACGGACCGGCCGCACGCAACGCCGGGTAATGCTTCCTGTCACTCCCCGGACTTCCATCACACCGGACTGTCCCTGGGAGAGAACGGCTTGGAGCGGTTCCTGCACGCCCGTGCGTAAMARDVVANGADSFYRVLIDPRDGAPLEIGRTSYRLTKAMRNWLRMRDGKCPFPGCSNQSLDNEADHLLAWHHGGTTGISNLGQPCPKHHRLRHTSGWKPTPATKNEPPGWISPSGRHYKSEHQDWEPPHWPKALKPELQSNTDRPHATPGNASCHSPDFHHTGLSLGENGLERFLHARANANANANANA
D1-29_046041056ligCCOG1793DNA ligase CATGCTCGCCAAATCCGTCAGCGGAATTGGTGGTATCCCGGCGGGGCGTGCCCTGAGTTACGAGCCCAAATGGGACGGTTTCCGGTCCATTATTTTCCGCGACGGGGACGACGTGGAGATCGGCAGCCGGAACGAGAAGCCCATGACCCGGTACTTCCCCGAGCTGGTGGAAGCGCTGAAGGAGAACCTTCCGCCGAAGTGTGTGCTGGACGGCGAGATCGTGCTCGTGGGCGCTTCCGGGGACAGGCTCGATTTTGACGCCCTGCAGCAGCGCATCCACCCTGCGGCCAGCCGCGTCAAGCTTCTTGCTGCCCAGACCCCGGCGAAGTTCGTGGCCTTCGACCTGCTGGCCCTCGGCGACGACGATTACATGGACCGGCCGTTCGCCGAGCGGCGCGCTGCCCTGGAGAAGGCGCTCGCCGCCAGCCGGGCTCCTGTCCATCTCACCGCCGCCACGCAGGACAAAGACCTGGCGGAACAGTGGTTCCAGCAGTTTGAGGGCGCAGGCCTGGACGGGATAGTGGCCAAGCCTCTCGACGGCCGGTACCAGCCGGACAAGCGCGTGATGTTCAAGGTCAAGCACGAACGCACGGCGGACTGTGTGGTGGCTGGCTACCGGGTCCACAAGAATGGGGAGGACGCTGTCGGTTCGCTTCTGCTGGGTCTGTACAAGGACGACGGCGTCCTGGCCAGTGTGGGGGTCATTGGCGCCTTTCCGATGAAGCGCCGCCAGGAACTGTTTAGGGAGCTTCAGCCGCTGGTTACCGATTTCGACGGTCACCCCTGGGCGTGGGCCAAGCAGGAGGAAGGTGAACGCACACCGCGGAACGCCGAGGGCAGCCGTTGGAGCGCAGGCAAGGATCTGTCCTTTGTGCCGCTCCGCCCCGAGCTGGTGGTTGAGGTCAGGTACGACCACATGGAGGGGGACCGGTTCCGCCACACCGCGCAGTTCAACCGTTGGCGGCCGGACCGGGATCCGGAGTCATGCACCTACGAGCAGCTGGAAGAACCGGTTAACTTCGATCTGGAGTCTGTATTGGAGACGGGCAGGCCATAAMLAKSVSGIGGIPAGRALSYEPKWDGFRSIIFRDGDDVEIGSRNEKPMTRYFPELVEALKENLPPKCVLDGEIVLVGASGDRLDFDALQQRIHPAASRVKLLAAQTPAKFVAFDLLALGDDDYMDRPFAERRAALEKALAASRAPVHLTAATQDKDLAEQWFQQFEGAGLDGIVAKPLDGRYQPDKRVMFKVKHERTADCVVAGYRVHKNGEDAVGSLLLGLYKDDGVLASVGVIGAFPMKRRQELFRELQPLVTDFDGHPWAWAKQEEGERTPRNAEGSRWSAGKDLSFVPLRPELVVEVRYDHMEGDRFRHTAQFNRWRPDRDPESCTYEQLEEPVNFDLESVLETGRPPGPT0014910_1126DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-29_046051029fgd1COG2141F420-dependent glucose-6-phosphate dehydrogenaseATGGTCACCGTCGGCTTTCACGCCTCACATGAACAGATCAGTCCCGCCCAGCTGCTCAAGGACGTCCAGCACGCAGAACAGGCGGGTTTTGACGCCGCCATGTGCTCGGACCACATCGAGCCCTGGTCCGCCAGGCAGGGACACTCCGGCTTTGCCTGGTCCTGGCTGGGAGCTGCACTGGCCACCACCAACCTCAGCTTCGGCGTGGTGACGGCACCCGGGCAGCGCTACCACCCCGCCATCATCGCGCACGCCTCTGCCACGCTTGCCGGAATGTTTCCCGGCAGGTTCTGGATGGCCCCCGGCAGCGGGGAGAACATGAACGAGCACGTCACCGGCGATGCCTGGCCGCCGAAGGAGACCCGCCAGCGCCGGCTCGAGGAATGTGTGGACGTGATCCGGCGCCTGCACCGCGGTGAGGAAGTGACCCACCACGGCCTGGTGACCGTTGAACAGGCAAGGATCTGGGACGTTCCCGAGCCTCCGCCTCCCCTGATCGCGCCGGCCATCAGTGTGGACACCGCACGCCGCGCCGCCTCCTGGGCCGACGGCCTGGTGACAGTCAACCAGTCGGCCGCGAAGCTGAAGGACATGCTGGCCGCGTACCGGGACAACGGCGGCCGCGGAAAGGCAGTCCTGCAGGTGCATTTGTCCTGGGCCCCGAGTGAAAGAGAAGCAACGGCGGTGGCGCTGGACCAGTGGCGCAGCAATACTTTCGCTCCGCCCATCCCCTGGGATCTCCCCACCGCCGGGCATTTTGACGGCGTCAGCGGCCACGTGGGCGAGGACCAGGTGCGGAAATCCGTCAACGTCTCGGCCAGCCTGGACCGTCATGCCGAGTGGCTTGCCGGCTACGGAGAGCTCGGCTTCGAGGAGCTCTACCTGCATTTTGTGGGCCAGGAGCAGGGACCCTTCATTGAGGCTTTCGCAGCCGATGTCCTTCCCCGGCTCCGTGGGACCGTCGCAAGGGAGAATCCGGTCAAAGTGACGCAGGCAAACGAGACCATGGCAAAGGCGGCCACACCATGAMVTVGFHASHEQISPAQLLKDVQHAEQAGFDAAMCSDHIEPWSARQGHSGFAWSWLGAALATTNLSFGVVTAPGQRYHPAIIAHASATLAGMFPGRFWMAPGSGENMNEHVTGDAWPPKETRQRRLEECVDVIRRLHRGEEVTHHGLVTVEQARIWDVPEPPPPLIAPAISVDTARRAASWADGLVTVNQSAAKLKDMLAAYRDNGGRGKAVLQVHLSWAPSEREATAVALDQWRSNTFAPPIPWDLPTAGHFDGVSGHVGEDQVRKSVNVSASLDRHAEWLAGYGELGFEELYLHFVGQEQGPFIEAFAADVLPRLRGTVARENPVKVTQANETMAKAATPNANANANANA
D1-29_046061695treS_2COG0366Trehalose synthase/amylase TreSATGAGGATCGCGGAAACTTCAGACCTCTGGTGGAAGAACTCGGTCATCTACTGCCTGGACGTGGAGACCTTTTTCGACGACGACGGCGACGGCACCGGCGACTTCGCCGGCCTCACCCAGCGAGTGGACTACCTCGCAGCACTGGGCGTTACATGCATCTGGCTGATGCCGTTCTACCCGTCGCCGGACCGGGATGACGGCTATGACGTCACTGACTTCTTCACCGTAGATCCCCGGTTGGGCACCATGGGGGACCTCGTGGAGTTCATCCGCGCGGCCAAGGACCGGGGCATGCGGGTCATCGCCGACTTCGTGGTCAACCACACCTCCATCCAGCATCCCTGGTTCCAGGAAGCCCGGAAATCGACGGACAACCCCTACCGGGACTATTACGTCTGGCGGAAGGACACTCCGCCGGACACCTCGTCCGAAGTGGTGTTTCCGGGGGAGCAAACGTCGCTGTGGACCAAGGATGACGCCACCGGCGAGTGGTACCTCCACATGTTCGCGGAGCACCAGCCGGACCTCAACGTCACCCACCCGGCTGTCCGGAACGAGATCGCCAAGGCAATGGGCCTGTGGCTTGAGCTGGGGCTGGACGGCTTTCGGCTGGATGCCGTCCCGTTCTTCCTGGAAACCCGCGGCCAGCCCAAGGACGAGGCCGCGAACCTTGATCCGCATGAGTACCTGACGGCGCTGCGCAGCTTCGTGAACCGCCGGAACGGCAGCGCGGTGCTGTTGGGCGAAGTCAACCTGCCCTACAAGGAGCAGCTGGAATACTTCGGCGGGCCCGACGGCAATGAGCTGAACATGCAGTTCGACTTTATGTCCATGCAGCACCTCTACCTGTCCCTGGCGCGACAGGATGCCCGGCCCTTGGCCGAGACCCTCAAAAGCAGGCCCGCCCTGCACCCGGACAACCAGTGGGCCATGTTCGTCCGCAACCACGACGAGCTGACGCTGGACAAGCTCAGCGACGCCGAACGGCAGGAAGTTTTCGCCGCCTTCGGTCCCGAGAAATCCATGCAGATCTACGGCCGCGGGCTGCGCCGCCGGCTGCCGCCAATGCTCGGCGGTGATGCGGACAGGATCCGGATGGTCTATTCGTTGCTGTTCTGCCTGCCCGGGACCCCTGTGCTCTTGTACGGCGAGGAGATCGGCATGGGCGAGGACCTGAAGCAGAAAAGCCGGGCCGCCGTCCGAACCCCGATGCAGTGGAACAACGGGAAGAACGGGGGCTTCTCGGATGCCAAGGCCTCAGACCTGGTGGTTCCGCTGGTGCGCGGCGAGTACGGGCCGGAGAATGTCAGTGCGGCGGCCGCCAAACGGGATCCTGATTCCCTCTGGAACTTTATGGCCATCCTGATGCAGCGGTACCGTGAGTCGCCGGAGCTGGGGTGGGGCCACTTCGCCATGATGGACCAGCCGGAGCCTGCGGTCTTCGCCCACACCTGCAGCTCGGACGGCGCCACCATGGTGCTGCTGCACAACCTCGGCGAGGACCCGGTGAAAGTCGCCGGCAGGGCAGGGCCGGAGGACACCGGGCCGCGAGCGTACAAGGGTGCCGTCCTGCTGGACGTGCTCGACGGCGACAATGTGCCTTTGGAACCCGACGGCGCCTTCACGGTGGAGCTGGGCCGTTATGGTTACAAATGGTTCAGGGTGCACCATCCCGGCGACCGGCTGGCGCCGTGAMRIAETSDLWWKNSVIYCLDVETFFDDDGDGTGDFAGLTQRVDYLAALGVTCIWLMPFYPSPDRDDGYDVTDFFTVDPRLGTMGDLVEFIRAAKDRGMRVIADFVVNHTSIQHPWFQEARKSTDNPYRDYYVWRKDTPPDTSSEVVFPGEQTSLWTKDDATGEWYLHMFAEHQPDLNVTHPAVRNEIAKAMGLWLELGLDGFRLDAVPFFLETRGQPKDEAANLDPHEYLTALRSFVNRRNGSAVLLGEVNLPYKEQLEYFGGPDGNELNMQFDFMSMQHLYLSLARQDARPLAETLKSRPALHPDNQWAMFVRNHDELTLDKLSDAERQEVFAAFGPEKSMQIYGRGLRRRLPPMLGGDADRIRMVYSLLFCLPGTPVLLYGEEIGMGEDLKQKSRAAVRTPMQWNNGKNGGFSDAKASDLVVPLVRGEYGPENVSAAAAKRDPDSLWNFMAILMQRYRESPELGWGHFAMMDQPEPAVFAHTCSSDGATMVLLHNLGEDPVKVAGRAGPEDTGPRAYKGAVLLDVLDGDNVPLEPDGAFTVELGRYGYKWFRVHHPGDRLAPPGPT0014120_1300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
D1-29_046071746malL_6COG0366Oligo-1,6-glucosidaseATGACCAGCCAGGAAACCCAGCGCGAGATGTCCCGCACGGGACGGGAGTGGTTCAGGAATGCCGTGGTCTACCAGATCTACCCGCGGAGCTTCGCCGATTCGGACGGCGACGGCGTGGGCGACCTCCGGGGGATCATCGGGCGGCTGGACTACTTGCACCGGCTGGGGGTGGACGTCGTGTGGCTCTCCCCGGTGTACCGCTCGCCGCAGGACGACAACGGGTATGACATCAGCGACTACCGTGACATCGATCCGGTGTTCGGTGATCTGGAGACGCTGGACGAACTGCTCAACGGCCTGCATGCCCGCGGCATGAAGCTGGTGATGGACCTGGTGGTGAACCATACCTCGGACGAGCACCCCTGGTTCATGGAATCCCGTTCCGGCAAGGACAGCCCCAAGCAGGATTGGTACTGGTGGCGGCCGGCACGCGACGGCATGGAACCGGGCGCTCCGGGAGCCGAACCCAACAACTGGGGTTCCGCCTTCTCCGGCCCGGCGTGGGAGTACGACCAGGCCAGCGGGGAGTATTACCTGCACCTGTTCTCCAAGAAGCAGCCTGACCTGAATTGGGAAAACCCGGAGGTCCGGGCCGCCATCTACGACATGATGAACTGGTGGCTGGACCGGGGCGTGGACGGCTTCCGGATGGACGTCATCAACTTCATCTCCAAGGATCCTGCCTTGCCTGATGGGCCCAGGGCGGACGGCATGCTGTACGGCGACGGCGCTCCGCACTACATTTCTGGGCCAAGGATCCACGAGTTCCTCCAGGAAATGCATCAGGAGGTCTTCGAGGGCAGGGACAAGGATCTGCTGACGGTGGGGGAAATGCCCGGAGTCACGGTTGAGGACGCCCTTCTGTTCACCGATCCCGCGCGCGGCGAAGTGGACATGGTGTTCCAGTTCGAACACGTGGCGCTGGACCAGGAGGGTGGCAATAAGTGGCGGCCCAGGAAGCTCCAGCTCACAGACCTCAAGAAGTCCCTTGGCCGCTGGCAGGAGGCGCTGGGGGAGCGCGGCTGGAACAGCCTGTACTGGGGAAACCACGACCAGGCCCGCGCAGTCTCGCGGTTCGGGGATGACGGCCAGTACCGTGAGCTGTCAGCCAAGATGCTGGCCGCTGTCCTCCACCTGCACCGCGGAACCCCGTACGTCTATCAGGGCGAAGAGCTGGGCATGACCAACATGACGTTCGGCGCCATCAGCGACTACCGCGACATCGAGGTCCTCAACCACCACCGGGAAGCCACCACCCACCTTGGCCACACGGATGCCGAAGTCCTCGCCGCCCTGGCGCCACTGAACCGGGACAACGCCCGCACCCCGGTCCAATGGGACGCCAGCAGGCATGGCGGCTTCACTACCGGGTCCCCCTGGATCGCTGTAAATCCCAATGCCAACACCATCAATGCCGCTGCCCAGGTGGACGACCCGGATTCCGTGTACAACTTCTACCGCCAGGTCATTGCGCTGCGCCACACGGATCCGGTAGTGGCCGACGGCGATTTCACCATGCTCCTGCCTGAGGACCCGCACGTCTACGCCTTCCGGCGCTCGCTGCCGGGCGCCGAGCTTCTGGTGCTGGGCAATTTTTCCGGGGCGCCACAAACGGCCGACGTCGGGATCCCAGCCTGGTCAGATATCGTCCAGTCAGATGCCGTCCAGGTTTTAGGGAACTACCCGGCCTCCCCGGGATTTGAGCTTCGTCCGTGGGAAGTGAAGGTGCTGCGCCGGGAAGCGTAAMTSQETQREMSRTGREWFRNAVVYQIYPRSFADSDGDGVGDLRGIIGRLDYLHRLGVDVVWLSPVYRSPQDDNGYDISDYRDIDPVFGDLETLDELLNGLHARGMKLVMDLVVNHTSDEHPWFMESRSGKDSPKQDWYWWRPARDGMEPGAPGAEPNNWGSAFSGPAWEYDQASGEYYLHLFSKKQPDLNWENPEVRAAIYDMMNWWLDRGVDGFRMDVINFISKDPALPDGPRADGMLYGDGAPHYISGPRIHEFLQEMHQEVFEGRDKDLLTVGEMPGVTVEDALLFTDPARGEVDMVFQFEHVALDQEGGNKWRPRKLQLTDLKKSLGRWQEALGERGWNSLYWGNHDQARAVSRFGDDGQYRELSAKMLAAVLHLHRGTPYVYQGEELGMTNMTFGAISDYRDIEVLNHHREATTHLGHTDAEVLAALAPLNRDNARTPVQWDASRHGGFTTGSPWIAVNPNANTINAAAQVDDPDSVYNFYRQVIALRHTDPVVADGDFTMLLPEDPHVYAFRRSLPGAELLVLGNFSGAPQTADVGIPAWSDIVQSDAVQVLGNYPASPGFELRPWEVKVLRREAPGPT0019145_166DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019145-malL-K01182NANA
D1-29_04608171hypothetical proteinGTGCTCGCCCTGGTCGCGGCCGGGGCGTCCAACCATGAGATCGCGGACCGGCTTTTCCTCAGCGACCGCACCGTCCACCGTCACGTGAGTCACATCTTCGACAAGCTGGGGGTGCACTCGCGCACCGCGGCTGCCGCGGTGGCTATCCGGGACCGGCTCATCGGCGCGTGAMLALVAAGASNHEIADRLFLSDRTVHRHVSHIFDKLGVHSRTAAAAVAIRDRLIGAPGPT0014870_431DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_046091860bga_2Beta-galactosidaseATGAGGACTTTTGAAATCGGCAGCCAGGACTTCCTGCTTGACGGCGAGCCGTTCCGGGTCCTGTCCGGTGCAATCCACTACTTCCGGGTCCACCCGGACCTGTGGGCAGACCGCATCCACAAGGCCAGGCTGATGGGCCTGAACACCATCGAGACGTATGTGCCCTGGAATGAACACTGCCCTTTGCCGGGAGTTTTTGCCTCGGAAGGACAGCTGGACCTGGGCCGGTTCCTTGACCTGGTGGCGGCAGAAGGCATGCAGGCCATTGTTCGGCCCGGCCCCTTCATCTGTGCGGAATGGGACAACGGCGGGCTTCCGGCCTGGCTTTTCAACGACCCCAGCGTAGGAATCCGGACCAGCGAACCGGGCTACCTTGCCGCCATCGACAGCTTCTTCCAAGCCATACTGCCCATCGTGGTGGCGCGGCAGATCAGCCGGGGCGGACCCGTCATTATGCTGCAGATCGAAAACGAATATGGTGCGTACGGGAAGGACAAGGCGTACCTGCAGCACCTCGTGGACCTGGCGAAACGGGAAGGCGTGGACATTCCGCTCTTCACCTGCGATCAGCCATTCGGCACCATGATCGAAGACGGCTCGCTTCCTGAACTGCACAAGACGGCCACTTTCGGCTCACGGGCCACGGAGCGGTTGGCGTTCCTCCGTGAGCACCAGCCTGACGGACCGCTGATGTGCGCGGAGTTCTGGAACGGCTGGTTCGACAACTGGGGCACCCACCACCACACCACCAACGCCGCCGCGTCCGCAGCCGAGCTGGATGCCCTGCTGGCCGCGGGAGCGTCCGTGAACATCTACATGTTCCACGGCGGCACCAACTTCGGGTTCACCAATGGCGCCAATGACAAGGGCATTTACGAGCCCACCATCACCTCCTACGACTACGACGCACCGCTGACCGAGGACGGCTTCCCCACGGAAAAGTACTTCGCCTTCCGGGACGTCATCGCCAAGTACTTCCCGGTGCCGGCGGAACGTCCGGCCAGCCGCCGGGAGGCCCCATCGGAAAGCATTTCGGTGACCAGCTCCGTGTCCGTCCTGGATTGCCTCGACGTCCTGGGCGCTCCCGCCCGTGTGGAAGGGCCGGCGCCCACTACCGAAGACGCCGGGCACTACCGCGGCTTCACCATGTACAGCACGGAACTTGTTTGCGGCGGCGTCCTGACCGTTGGCGAGGTCCGGGACCGTGCACAGTTCTTCCTGGACGGCCGTCCCGTGGGCGTGCTCAGCCGCGAATTGGGCGAACGGGCCATTGCCCTGCCGTCCGGCGGCCGCCTTGAGGTCCTGGTGGAGGACCAGGGCCGGGTCAACTACGGCCCCCGGATCGGGGAGTTCAAGGGCCTGATGGCACCGGTGAAGCTCGACGGCGTTGAGCTCCTGGAGTGGGACATCCGGCCGTTGGATTTCGGGAACCTGGGCGGACTCCGTGCGGCAGCCGGATTCCCGGGCGGATCCCTCGATGGCCTTGTGGCAGGGGAGGGCGGCGTCGCTGGGGATGGGGTAGACGCCGGGAAAGATGCCGCGGGCAGGGAAGGCACCGGGGACAAGGAACGCGCCGGGCAGGGTGGCGTGCCCGGGCCCTCAGTCTCCTTCGCAGACTTCGAGGCGGACGGACCCGGGGACCGGTACCTCCGGCTGGACGGCTGGACCAAAGGCAACGCCTTCATCAACGGCTTCAACCTGGGCCGGTACTGGAGCCGCGGACCGCAGAAGACCCTGTACGTCCCCGGCCCGCTGCTGCGTAAGGGAACCAACGAACTGGCCATCTTGGAACTGCACGGCAGCACCAGCCGGACAGTCCGGTTCGTGTCCGGACCGGACCTCGGACCCTACGAAAAGTAGMRTFEIGSQDFLLDGEPFRVLSGAIHYFRVHPDLWADRIHKARLMGLNTIETYVPWNEHCPLPGVFASEGQLDLGRFLDLVAAEGMQAIVRPGPFICAEWDNGGLPAWLFNDPSVGIRTSEPGYLAAIDSFFQAILPIVVARQISRGGPVIMLQIENEYGAYGKDKAYLQHLVDLAKREGVDIPLFTCDQPFGTMIEDGSLPELHKTATFGSRATERLAFLREHQPDGPLMCAEFWNGWFDNWGTHHHTTNAAASAAELDALLAAGASVNIYMFHGGTNFGFTNGANDKGIYEPTITSYDYDAPLTEDGFPTEKYFAFRDVIAKYFPVPAERPASRREAPSESISVTSSVSVLDCLDVLGAPARVEGPAPTTEDAGHYRGFTMYSTELVCGGVLTVGEVRDRAQFFLDGRPVGVLSRELGERAIALPSGGRLEVLVEDQGRVNYGPRIGEFKGLMAPVKLDGVELLEWDIRPLDFGNLGGLRAAAGFPGGSLDGLVAGEGGVAGDGVDAGKDAAGREGTGDKERAGQGGVPGPSVSFADFEADGPGDRYLRLDGWTKGNAFINGFNLGRYWSRGPQKTLYVPGPLLRKGTNELAILELHGSTSRTVRFVSGPDLGPYEKPGPT0017815_2380DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_046101263mlc_2COG1940Protein mlcATGCCGAAGAGAACCTCAAGGGACATCCGCAACGAGAGCCGGTTCGCGCTGCTCCGCGGCCTGTACTCACTCCGCACCGCCACCCGCCAGGAGTTGGCGGCCGCCACGGGCCTGAGCTTCGCCACCATATCCAACATCGTCGGGGAACTGATCGAGGTGGGAGTGCTAGTGGAGGCCGGCAGGGAGGACTCCGGCGGAGGGCGGCCCGTCACCCGGCTGAAAATATCCCCTGAACGCGGAGCCCTGGTGGGCGTGGACGTCGCTGAAACCTACATCCACGTGGACATCTACGATCTCGCCCTCGGGGTGATCGGCAAGGCCGAAAGCGAGCTGGCCATCGAGGAAAACGAGCCGGCCGCACTGGTCCGGCACGTGGCGGGCGTCATCGAACAAGCCGCAGCGGACGCCGGCATCACCAGGGACCGGCTCCTGCGGGCGGGGGTCAGCCTTCCCGGCCAGGTGGACCCCCAGCGCGGCGTGTCCGTCTTCGCGCCGAACTGGGACTGGCATGAAGTACGGATCCAGTCGCTGCTGTCCGAAGCCATCGGGCTTCCCGTGGACGTGGACAACCCGCTGCGCGCCATCGCCATTGCCGAACTCTGGTTTGGCGCGGGCCGGCTGGTGAACAACGTGGCCACCGTGAACCTGGGGACCGGCGTGGGGGCAGGCCTGGCGATTGACGGTGAGCTGGTTCGCGGAGCCAGCAACACGGCTGGTGAGTGGGGCCATACAACTCTGGTCTTCGACGGCCGCCTGTGCCGCTGTGGCCGCAGGGGTTGTGTGGAGGCCTACCTCGGCGTCCCTGGCCTGCAGCAGACCATGGCCGAAATCAATGCCTCCCACGATCTCCTCACGGGTGACCGCCAGCGCGAGTTCGTTTCGGATGTCGCCAAGGGGCTGTCCGACGGCGATGCCGACTGCCTGGAACTTATTGAGGTCACTGGGCGCTACTTTGCGGCGGCCCTGGGCAACCTGATCAATTTCATCAACCCGGACCACGTCAGTGTCCTGGGCTGGACAGCAGGAAGCATCGGCAAGGAGCTGCTGGACGTCACTGAGAAGTACCTGTCACAGGAGATGTTGCCCAGCGCCGGCCGCGCCGTCCAGGTGGGCCTGTCTACGGTGGCGGGAAATTCCGTCACGCTGGGCATGGCCACGCTGGCACTGGAAAGCTTCCTGGAACAGGTGGGGGTGCCCAGCCGGGGACGCACCGGGCCGGGAGCCACCCGGCGGGGCGCGAAACTTCCCGCAGGCGCGGAATAAMPKRTSRDIRNESRFALLRGLYSLRTATRQELAAATGLSFATISNIVGELIEVGVLVEAGREDSGGGRPVTRLKISPERGALVGVDVAETYIHVDIYDLALGVIGKAESELAIEENEPAALVRHVAGVIEQAAADAGITRDRLLRAGVSLPGQVDPQRGVSVFAPNWDWHEVRIQSLLSEAIGLPVDVDNPLRAIAIAELWFGAGRLVNNVATVNLGTGVGAGLAIDGELVRGASNTAGEWGHTTLVFDGRLCRCGRRGCVEAYLGVPGLQQTMAEINASHDLLTGDRQREFVSDVAKGLSDGDADCLELIEVTGRYFAAALGNLINFINPDHVSVLGWTAGSIGKELLDVTEKYLSQEMLPSAGRAVQVGLSTVAGNSVTLGMATLALESFLEQVGVPSRGRTGPGATRRGAKLPAGAENANANANANA
D1-29_046112940hypothetical proteinATGAGTTCCGCTTCAGGCAGCGCCGTTACGTCCAGCACCATCACACCAGACAGCACCGTCACGTCTAACAGCACCGTCACACCAGGCAGCACTGTCATGCTCGACGGCGGCGCGCTGATGATCGACGGCGAAGCGCAGCTCCTGCTGTGCTCTTCACTGTTCTACTTCCGGCTTCCGCCGGAGCAATGGGAGGAACGCCTGCGGCTGGTCCGTGAATCGGGCTACCGTGCCGTGGACGTCTACATCCCTTGGAACTTTCACGAGACCGCGCCAGGCGTCTTCGACTTCTCCGGCCACCGGGATGTTGCCATGTTCCTGGATCTTGCCGCGGCCGAGGGCCTCTACGTGATGGCCCGCCCGGGACCGTACATCTGCTCAGAAGTGGACGGCGGCGGGCTGCCGGCCTGGCTGGGCCTGGATCCGGAGCTGAAAGTGCGGCAAAACGAACCCCGGTACCTGGAGCAGGCTTTGGGCTGGTACCGGACCGTGCTTCCACTCCTTGCGGAGCGCCAACACGGGCGGCGGGGCAGCATCATCCTGCTGCAGATCGAGAACGAGCTCGACTTCTTCGACTGCCTGGACCGCACGGGCTACATGCAGGCGCTCGCCGACGAGGCTGCCGGGGCCGGAATCACCGTCCCGGTCATCGCCTGCGCGGGCCAGGGGGATCTGCTGGCTGCAACAGGCGGCGCCTCCGGAGTGGTGCCCGCGGCCAACTTCTATCCCGATGACTCATCACCTGAGATTGAGGCCGAGGTCCTTGCCTACCAGCGTGAACTGGCGGCGCGTGGCTACCCCCTGCTGGTGACGGAGACCAACCGGCTGCACCTGACCCTGCGGCGGGAGCTGCTGGCCGGCGCCCGGCTCATCTCCCCCTACCTGCAGAGTTCCGGCTGGAACTTCGGCCTGAATCCCTCCAGCGGGAATTGGGGCAGCCCCGGAAACTTCATGACCCACAGCTATGACTTTGGCGGGTACGTCTCCTCCGACGGCGCACGGCGGCCTGAGTTCTTCGAAGGCCAGATCCTGGCCGGGGTCGTCAACGCCTTGGGCCCCAGGCTCGCGGCTGCGGTTCCCGTGCTCGACTCCCCGGTTGAGCTGGTGCCGGACTTCGCTACGTCCACGGTCCGACCCGTGCTCGCCCTGGCCGGCGGCGGTTATTTGGCCGGCCTGCCCAACCTCAGCGGGCAGCCAGGACAGTTGCAGGTCAAGACTGACAGCGGTGCCATGGCCGCCGTTGAGGTGCCGCCGGGAAAGTGCCCCCTGGTTCCGGTTGGCCTGCCCTTACAGGACTGGGGAGTCCCTGCCGTCCTGGAATTGGCGACGGCGGAACTGACCGGCGTTGCCAGGACGGCGGCTGGGCTTGAACTGACGTTTGCCGCCTCACCGGGTGCCGTGCTGATCGTCTCGGCGGTATTTGAGTCCACGCTGTCTGACTATGCGGTTTCTGGCTCCGCGGCATCTGATCCCGCAGTGTCTGACTCCGCGGTGTTCCTCAGCACAGCATTCCCGGGGACACCCACCGTCCAGGACGGCGAGGTCAGCTACAACGGAAACCAGCTGGTGGTGCAGCTGTCAGCCGGGCCGGGTTCAGTGGTTTTAGACGACGGCACCCAGCTTGCGTGGAGCATGGATTTGCCCCCAAGAGAAGTAATAACGGCGGCAGGGCACCCGGAGGAGCTGACGGATCAAACCGGCGGCGCCGCCGTCGGGCTTTCCGTGTTCGCGGCCGAAACGGCGGAACTCTACGGAGAAATCCCGGCGGCCCTGCACGCGGAGGCGCCGCCGCTGGAAGCGTTGGGGGTTTACGCCGGCCGCGGCAGGTATCGGGCGGCGGTGCCGGCAGGGTGCACCCAGCTCCTCGTCGCGGGGGCCGCAGACATTCTCGCACTCTCGTTCAACCCCGACGCCGGTGAAGCCACGCCGCTGGGCACGCTGACCCCGTTCGGGGCGGCGGCCGTCGTTGACCTGCCGGCCGGAGGGGGCGGCGAACTTACTGCCGACGTTGAGATCTGGGGGCACTCGAATTTTGACGACGCCAGGTTGCCTGCGCTCGCCATGGGTGCGCTCCGTGGCCCCGGAGCAATCATGGCAGTGACCCGGTCCACCGACGTCTCCAGCCTCTGGCGTGTCCATGGTGGCGGGCAATGGGCGGAGCCAGGCCGTGCACTTCGCCATTTCGGCGGCTGGAGCAGCTCCCGGCTGGGGGTGGGCATCCAGTACCGGAAGAGGATTGCGGCGCCGCCGGAGGAGGAGAACTATCTGCATTTTGCAGGGCTGGTTTCACCCATCACCGTACGTGTCGGAAACCTGGCACCGGCTGTGGTCGTCCCGGAAAACGCCTACCTGCGGCTGCCTCCCGTGACGGATGCGTGGGACGTTGAGGTGTCCTTTCCGCATGATCCGTCCAACGGCCCCGGCTTCGTCACGCTCCTGTCCGGCGCCATGCTCGGGGAGTACACTGTCCAGGCCCTTCCGCAGGAGCAGCTGGATGATCTGGCCCACGCCGCCGGAACCTTGGGCAGGTCCAGTCCCACCGGAGAAGCCGCCGGGACCGACTCAGGCATGGTGGAACTTCCGCTTGAGGTTCCTCCGGGCACTGCCTGCTGGGTGACCCCTGACCTGACCGGGCTCGAAACCGGCAGCGGATACTTTCTAAGGGCAGAGGGAACCGGGCTGATGATCAGCGCCTGGCTGGACGGCATCCGGCTGGGCCGCGTTATACCCGGCCAGCAGGATGACAGCAGCGGCCACCAGGATCACAGCGCTGGCCGCCAGGATGACAGTGCGGCGCCCTCAATGCGCGGCGGGGATCCCGGCGTCATCTGGCTTCCGGCGCCTATGATGAAACCGCAGGCCAGGCTCACGCTGCTCCTTGAAAGTCGCGGAACCACCGCGGGCCGGCTTGACTCCCTGCTGTGCCAACGGGCGCATAGCTGAMSSASGSAVTSSTITPDSTVTSNSTVTPGSTVMLDGGALMIDGEAQLLLCSSLFYFRLPPEQWEERLRLVRESGYRAVDVYIPWNFHETAPGVFDFSGHRDVAMFLDLAAAEGLYVMARPGPYICSEVDGGGLPAWLGLDPELKVRQNEPRYLEQALGWYRTVLPLLAERQHGRRGSIILLQIENELDFFDCLDRTGYMQALADEAAGAGITVPVIACAGQGDLLAATGGASGVVPAANFYPDDSSPEIEAEVLAYQRELAARGYPLLVTETNRLHLTLRRELLAGARLISPYLQSSGWNFGLNPSSGNWGSPGNFMTHSYDFGGYVSSDGARRPEFFEGQILAGVVNALGPRLAAAVPVLDSPVELVPDFATSTVRPVLALAGGGYLAGLPNLSGQPGQLQVKTDSGAMAAVEVPPGKCPLVPVGLPLQDWGVPAVLELATAELTGVARTAAGLELTFAASPGAVLIVSAVFESTLSDYAVSGSAASDPAVSDSAVFLSTAFPGTPTVQDGEVSYNGNQLVVQLSAGPGSVVLDDGTQLAWSMDLPPREVITAAGHPEELTDQTGGAAVGLSVFAAETAELYGEIPAALHAEAPPLEALGVYAGRGRYRAAVPAGCTQLLVAGAADILALSFNPDAGEATPLGTLTPFGAAAVVDLPAGGGGELTADVEIWGHSNFDDARLPALAMGALRGPGAIMAVTRSTDVSSLWRVHGGGQWAEPGRALRHFGGWSSSRLGVGIQYRKRIAAPPEEENYLHFAGLVSPITVRVGNLAPAVVVPENAYLRLPPVTDAWDVEVSFPHDPSNGPGFVTLLSGAMLGEYTVQALPQEQLDDLAHAAGTLGRSSPTGEAAGTDSGMVELPLEVPPGTACWVTPDLTGLETGSGYFLRAEGTGLMISAWLDGIRLGRVIPGQQDDSSGHQDHSAGRQDDSAAPSMRGGDPGVIWLPAPMMKPQARLTLLLESRGTTAGRLDSLLCQRAHSPGPT0017815_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSIDASE,PGPT0017815-bgaB|lacA-K12308NANA
D1-29_04612855hypothetical proteinATGGCCGAACTTAAGGTCTACAAAAGCTCGGCGTTCACGTACGCCTGGCTGCTGGTCGCCTCCGCGATCTTCTTCGCGCCCGTGGTCTTTGTAGTGTCCATTGCGCTCAGCAGCGACCAAACCGTCAGCACGGGCAGCTTCTCCCTGATCCCGGCGGAGTTCCGCTGGGAGAACTTTGTCCGGATCTTCCAGACCCAGCAGCCGGTGGGCAACTTCGTGATGAACTCGGTGATCATCTCGGTGCTCTCCACCATAGGGCAGGTGTTTTCGTCCGCCCTGGTGGGCTACGCCTTCGCCAGGCTGCGGGCCAAGGGTAAAAACATCACCTTTATGGTGGTGCTTGCCACCATGATGATCCCGGCCCAGATCACCATGATTCCGCAGTTCATCCTGTTCAAGGAGCTCGGCTGGATCAACACCTTCCTGCCACTGATCATCCCCAACTTCTTCGGCAACGCGTACAACATCTTCCTGATCCGGCAGTTCGTTTCGCGGCTACCGCTGGAAATGGATGAGGCGGCGATGGTTGACGGCCTGGGCTACTTCGGCATTTTCCGCCGGATTGTCCTGCCCATGATGACCCCGGTCCTGATCGCCGTTGCGATCTTCACGCTGACCTACACCTGGGGCGACTTTATGGGTCCCCTGATCTACCTCAACGAGGACACCAAGATGCCCCTGGCCCTGGGCGTGCAGCTGCTGACCAGCACCAGCCAGGAGCTCCAGACGCCCCCGTGGAACCTGGTAATGGTGGGCACCATCTTCCTGTCCCTGCCGATGATCATCATTTACTACTTCGGGCAGAGATACATGTACGAGATGAACATCTCCACTGGAAGCGCAGGGGTGAAGTAGMAELKVYKSSAFTYAWLLVASAIFFAPVVFVVSIALSSDQTVSTGSFSLIPAEFRWENFVRIFQTQQPVGNFVMNSVIISVLSTIGQVFSSALVGYAFARLRAKGKNITFMVVLATMMIPAQITMIPQFILFKELGWINTFLPLIIPNFFGNAYNIFLIRQFVSRLPLEMDEAAMVDGLGYFGIFRRIVLPMMTPVLIAVAIFTLTYTWGDFMGPLIYLNEDTKMPLALGVQLLTSTSQELQTPPWNLVMVGTIFLSLPMIIIYYFGQRYMYEMNISTGSAGVKPGPT0016540_1187DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_04613975melD_11COG1175Melibiose/raffinose/stachyose import permease protein MelDATGACTACGGTTGAGCAAACTGTCCCCGCTCCGGCCGCGGCGCCGGAGCGGGGCGGAACCCCGCCCAAGCCAAGGGCCAGGCCCAGCTCCATGCGGCGCAAGGAAGCCAGGTTCTTCTGGCTCTTTATCTCGCCCTGGATCGTCGGGTTTATGGTCTTCCTCCTGGGGCCCATGCTGGCCTCTGTCTACCTTTCGTTTACTGACTGGGATTCCTTCACGGACCCCAACTGGGTGGGATTCGCCAACTATGCCCGGCTGCTGACGGAGGACGAGGTGTTCCACAAGTCGCTCTGGAACACCTTCTATTTCGCCTTCTTCTCCGTTCCGCTCGGCATGGCCATCGCCCTGTGGCTCGCGGCCCTGCTCAACAAGAAGGTGCGGGCACGCAAGGTCTTCCGCACCCTGGTCTACCTGCCCCACCTGGTTCCCATCGTCGCCGTCGCCCTGATCTTCCAGATGGTCCTTGCCCCCGACGCCGGCCCGCTCAATAAGTTCCTGGCTGTTTTCGGCGTCGACGGCCCTGCCTGGCTTTTCGATTCCGACTGGGTCAAGCCCGCCATCATCCTGCTTTCGCTGTGGCAGGCAGGCGGCGCCACCGTCCTGCTCCTCGCCGGCATGAAAGGCATCCCGCAGGAGTTTTACGAGGCAGCGGAGATCGACGGCGCCTCCTCCAGGCGGCAGTTCTGGAGCATCACTTTTCCGCAGCTGACCCCCATCATTTTCTTCAACCTGATCATGGGCATCATCGGTGCATTCCAGGTGTTCGCCCAGGTGTACATCCTCACCCAGGGCGGGCCGGACAACGCCAGCCAGATGGTGGTCCCGCTGCTCTTCACCGAAGCCTTCCGGAACTACCGCATGGGTTACGCCTCGGCCATCTCCTGGGTGCTGTTCCTGATTGTGATGGCGCTGACGGTGCTGGCCTTTGCCACGGCACGCAAGTGGGTTTTCTACGAGACTGAGGTGAAGAACTGAMTTVEQTVPAPAAAPERGGTPPKPRARPSSMRRKEARFFWLFISPWIVGFMVFLLGPMLASVYLSFTDWDSFTDPNWVGFANYARLLTEDEVFHKSLWNTFYFAFFSVPLGMAIALWLAALLNKKVRARKVFRTLVYLPHLVPIVAVALIFQMVLAPDAGPLNKFLAVFGVDGPAWLFDSDWVKPAIILLSLWQAGGATVLLLAGMKGIPQEFYEAAEIDGASSRRQFWSITFPQLTPIIFFNLIMGIIGAFQVFAQVYILTQGGPDNASQMVVPLLFTEAFRNYRMGYASAISWVLFLIVMALTVLAFATARKWVFYETEVKNPGPT0016535_1568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_046141296hypothetical proteinATGAAGCTTCTGGAAACCAACCTCTCCCGCCGCAATGTCCTGGCCGGGCTCGGTGCCTCCGCCGTCGGGATCATCACGCTGACAGCCTGTGGCGGTTCCGCTGCCCCGGCGTCGTCCGGTCCCAAGGAATTCGTGATGACGGTCTGGGGCGGCGACCCGGACAAGGCCGCGTACCAGGCGCGGCTGGACCTGGCGAAGGCAAAGTTCCCGGACTACAAGATCACCCTTCAGATCATTCCCAACAAGGACTACGCGCAGAAGGTCCAAACCATGATCTCCGGCGGCACCGGACCGGACATCATGCAGGTGGCCGAAGACGCCAACGCGTACAGCTCCAAAAACCAGCTGCTGCCGCTGGATGAGTACATCTCCGGCGCTTCACTGGACCTCCCCGGAACGTTTGGCCCGGTGGCCGAGAACTGGAAGTACAAGGACAAGACCTACGCCGTTCCCGACCGGGCCGGCGCCATGATCCTCTACTACAACAAGGGCGAGTTCGAGAAGAAGGGCATTGGCGCCCCCACCGCTGAATGGACGTGGGATGACCTGCTCTCGGCCGCCAAGGAACTCACCGGGGACGGCGTCTTCGGCTACGGCGGCACCGAATGGTGGCCCATCTGGATGTCCTTCGCCTACCAGAACGGGGGCCACATCATCGACCCCTCCAGCGGCAAACCCACGGTGAACACCCCCGAGGTCATCGAGGCCCTCCAGTTTTGCCAGGACCTGCTGTACAAGCACAAGGTGGCGCCCTCCAAGGTGGACTACGCCAACATGGGAGCCGGCGTGGGCGGCGACGCAGCCTTCGCCTCGGGCAAGGTCATGATGAACAGCACTGGCTTCTGGAACATCGGAAACCTCGCCAAGCAGGACAAGGTCATCTGGGATGTCGCCCCCATCTGGCGCGGCAAGGAAAAGGCCATCGCGGCCTTCGGGTCCGGCCTGGCGGTGTCCCGCAGCAGCAAGAACCCGGCCGACGCCTTCAAGATCATCGAGTTCATGACCTCCGCCGAGGGCCAGAAGCCCATCATGGACCTGGGGCAGGACGTTCCCGCCCGGCAGGACCTGCAAAAGAGCCAGGAGTTCCTGAAGCCGGCTTGGCTCAAGGCAGACGTCGATATGCAGGTGTTCCCGGATTCGGGCCCGTCCATCTTCAAGCCGCCGTTCATCCCGGAGTGGAATGAAATGCAGAAGGCCATGACGGACGCCATGGCGGATTTCTGGCTGGGCAAGTCCGATGCCGCTGCCACTGCGGCCGACCTTCAGAAGCGCCTCGAATCAGTCGTCAAGGCCTAGMKLLETNLSRRNVLAGLGASAVGIITLTACGGSAAPASSGPKEFVMTVWGGDPDKAAYQARLDLAKAKFPDYKITLQIIPNKDYAQKVQTMISGGTGPDIMQVAEDANAYSSKNQLLPLDEYISGASLDLPGTFGPVAENWKYKDKTYAVPDRAGAMILYYNKGEFEKKGIGAPTAEWTWDDLLSAAKELTGDGVFGYGGTEWWPIWMSFAYQNGGHIIDPSSGKPTVNTPEVIEALQFCQDLLYKHKVAPSKVDYANMGAGVGGDAAFASGKVMMNSTGFWNIGNLAKQDKVIWDVAPIWRGKEKAIAAFGSGLAVSRSSKNPADAFKIIEFMTSAEGQKPIMDLGQDVPARQDLQKSQEFLKPAWLKADVDMQVFPDSGPSIFKPPFIPEWNEMQKAMTDAMADFWLGKSDAAATAADLQKRLESVVKAPGPT0016545_6641DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_04615789cypMCypemycin N-terminal methyltransferaseATGCCCGGCCCGCCCGGCTGGAATAGTGGCCGGATGATTAACCAGCAACAGCTCTGGGACGACGAGGCAGCGAAACAGTACGACACGCCCGGGGAGGGGATGTTCTCGCCCGAGGTACTGGCCCCTACGGTGGAGGTCCTGTCACGGCTCGCCGGCGACGGCCCGGCCGTTGAGTTCGCCATCGGCACGGGCCGTGTCGCCATCCCCCTCTACGAGGCAGGGGTCCGGGTCAGCGGAATCGAGCTGTCCCACGCGATGATCTCCCGGCTGCGCGAGAAGGTTGGAGAGGACAGGATTCCCGTGGTCCAGGGGGACATGACAGAGGCAACGGCGGGCGGGGAATTCTCGCTTGCGTTCCTGGTGTTCAACACCATCGCCAACCTCCTGTCACAGGAGGACCAGGTCCGCTGTTTCCAGAACGCCGCCCGTCATCTTGCCCCCGGCGGGCACTTCGTCATCGAGCTTTGGGTGCCGCAATTGCGTTCCCTGCCCCCTGGGCACGGCGGAACCGTGGAGGTGAGCCAGCCGGGCTATCTCCTGGTGGATACCTATGACGTGCTGCACCAGCATGTCATCTCCCACCACGTGCAGTTCGGCCCGGAACTGTCCGACGGGCGGGAAGCAAGGATCTCGCGCACACCTCACCGTTACATCTGGCCCAGCGAGCTCGACCTTATGGCGCAGCTGGCCGGATTTGAGCTGGAGTCCCGGTGGGCGGACTGGGACCGCAGCGAGTTCACCGCAGAATCCCGCAGCCACGTGTCTGTGTACCGGCTCACCGCACGCTGAMPGPPGWNSGRMINQQQLWDDEAAKQYDTPGEGMFSPEVLAPTVEVLSRLAGDGPAVEFAIGTGRVAIPLYEAGVRVSGIELSHAMISRLREKVGEDRIPVVQGDMTEATAGGEFSLAFLVFNTIANLLSQEDQVRCFQNAARHLAPGGHFVIELWVPQLRSLPPGHGGTVEVSQPGYLLVDTYDVLHQHVISHHVQFGPELSDGREARISRTPHRYIWPSELDLMAQLAGFELESRWADWDRSEFTAESRSHVSVYRLTARNANANANANA
D1-29_04616498hypothetical proteinATGACCGCCGTTCAACGCAGCAACGTGTTGGTTCCTGACTCCGGACTGGGGCCCGTCGGTCCTCCCCGCAGACGCCGTTTCCTTCGTCGGGCCGTCATGTTCTTGCTGGCGGCCGCCCTCTTGGCTGGTTGCGCCGGTGCGCCTGAGCTGGACGAAGAGGCGGCTGGAAAGTTCCAGGCGCGGGTTGTCGCAGCGAAGCAGCTCGCCGCGGAACAGGAGTTCCATGGTGCCGTGGCTGAACTGGAGCAGCTGGGCAATGAAGTGCAGGCTGCCGGAGACCAGGGACGCCTGTCACAGGAGAGGCGGTCCCGGATCGAGGCCGCAATTGCCAAGGTCAGGGCCGACCTGGACGCTGCCATTGCCGCTGCCGAACGCCCCACACCCAGCCCATCTGTCTCCTCTGCTGCACCCCAGGAGGATGACGGGAAGGGCAAGGACGAGGACGGGAAAACTGAAGACGGCAAGGATGAAAACAAAAATAAGGGGAAGGACGACTGAMTAVQRSNVLVPDSGLGPVGPPRRRRFLRRAVMFLLAAALLAGCAGAPELDEEAAGKFQARVVAAKQLAAEQEFHGAVAELEQLGNEVQAAGDQGRLSQERRSRIEAAIAKVRADLDAAIAAAERPTPSPSVSSAAPQEDDGKGKDEDGKTEDGKDENKNKGKDDNANANANANA
D1-29_046171308pknD_4Serine/threonine-protein kinase PknDGTGAAGGACACTGATGCCGGAATGCAGGGAACAGTGCTGCAGGAGCGCTACAGGGTGGGTGAGGTACTGGGCCACGGCGGGATGGGCACCGTGTACCGCGGTACTGATCTGGCGCTGGGGCGCGACGTGGCCCTCAAGATTTTCCGCGCCGACGTTGCGGACGCGGCTGAGCTCAGCAGGCAGCAAAGCGAAGTTCGTTTGCTTGCCCGGCTGAACCATCACGGCCTGGTGACACTGTTCGACGCCGGCTCCCTCGTCCAGGGGCAGAGGGACGTTCCCTTCCTGGTGATGGAGCTGATCCCGGGGATCGACCTCCACCGTCATTTGCGGGCAGGCCCTCTGACGGGGACGGAAGCAGCACGGATAGGGGCGGAGCTTTCTGAGGCGCTGCAGTACATCCATCACCATGAGGTGGTGCACCGTGACGTTAAACCGGCCAATATCCTGCTGGCCCGCTATGGCTCTGATACGACCATCAGGGCAAAGCTCGCGGACTTTGGCATCGCCCGGATGCTGGACGGCACTCGGCACACCGCCACCAACATGATTCCAGGTACAGCCGCTTACCTGAGCCCGGAACAGGCCAGCGGGGAACCGGTGGGTCCGCCAGCGGACATCTATTCATTGGGCCTGGTGCTGCTGGAGGCCCTTACCGGGAAAGCGGAATTTCCGGGCCCTCCGCTTGAGGCCGCTGTGGCCCGGTTGTCCAGGGCCCCGGTTGTACCGGCTGCGTTGGGCAACCGGTGGAAACCGCTGCTGACCGCGATGACTGCGCGCGATCCTGACATGAGGCCGGATGCAGGAACAATCGCCACGGCCCTCCACGACGGCGGGGACTGGCGCACGTTGTCCGGGCCGGTGGATCCCGCGGGCACTGTGGAAACACCGGGTCCGCAGGGAACCTTGATCCTGGGCGCCGGCCAAGGGCAAAGCCCTGATGCGGCAGCGCCAGGTGGTTGGGAAGGAGGAGTGCTGCCGGCTCTTTCCAGCAGCGAGATAACCAACGCCACGTCCTGGCGTCCGGCTCCTCCGCAGCCGCCGGCGCGCAAGCCGGCCTCCGGCAAGCCTGCCTCCGTCCCCCGGGAGCAGGTTTCGCCGCGGCGCTGGGGAAAGCTGCTCCGCAACACCGGCCGCCGAAAACTATGGATCATCGGGGCGTTGGTTGTGGCTGTGGCTGTCTTCATCGCCATTGTGCTCCTGAATTCAGTGCCTCCGTCGGGTCCTGGCCCTGCAAATGCTCCCGAACCGGTCATTCCAGGGCAGATGGGCGAGCACTTCAAGGAACTGGAAGAGAGTGTGAAGCCATGAMKDTDAGMQGTVLQERYRVGEVLGHGGMGTVYRGTDLALGRDVALKIFRADVADAAELSRQQSEVRLLARLNHHGLVTLFDAGSLVQGQRDVPFLVMELIPGIDLHRHLRAGPLTGTEAARIGAELSEALQYIHHHEVVHRDVKPANILLARYGSDTTIRAKLADFGIARMLDGTRHTATNMIPGTAAYLSPEQASGEPVGPPADIYSLGLVLLEALTGKAEFPGPPLEAAVARLSRAPVVPAALGNRWKPLLTAMTARDPDMRPDAGTIATALHDGGDWRTLSGPVDPAGTVETPGPQGTLILGAGQGQSPDAAAPGGWEGGVLPALSSSEITNATSWRPAPPQPPARKPASGKPASVPREQVSPRRWGKLLRNTGRRKLWIIGALVVAVAVFIAIVLLNSVPPSGPGPANAPEPVIPGQMGEHFKELEESVKPNANANANANA
D1-29_046181884hypothetical proteinATGACTATCCCGCAGACTGTCCCGCCGCTGAATCTTCCCGCCGAAAACCGGGAGCTCTCGCCCCACACCGGCCTCACCAGGGAACACTGGTGCGCCTACGCCGATTTCCTGCTGCGCTCGGCCCACCGGTTCGCGACGGATGACCACGCGAACATCCACCTGCCCGGGGCCAACAGCGCCTATGGTCCCCGCAGTGATTCCCTGGAAGCCTTTGCCCGCACGTTCCTGCTGGCGTCCTTCCGGATGGCAGGGGAGCCTGAGCGTACCGGCTGGCTTGCGGAGTGGTACGCCAAGGGCCTGGACGCGGGAACCGATCCGCGCTCGCCGGACCGCTGGCCCACCCCCGCGGAACTGGGGCAGGCCAAGGTGGAGGCGGCCTCGCTGGCCGTGGGCCTGGCGCTGACGCGGGAGCAGCTGTGGGACAAGCTGCCCGAGCGCGTGAAGGAACAGCTCATCGCCTGGTTTGAGACGGTGATCGGCGGCGACTACCCACCCATCAACTGGGTATGGTTCCAGATCGTGGTGGAAACCTTCCTGGAAAGTGTGGGCGGCAAGTCCTCCGCCGCGGACATCGAGGCCGGGCTGGCGGTCCACGATTCCCTTTACCGCGGCCATGGCTGGTTTGCGGACGGCCCGGAGCGCGCCTACGACCACTACGTGGGCTGGGCCTTCCACGTCTACCCTCAGCTCTGGGCCCTCATGGCGCCGGAGGACCCCCGGATAAAGGCCCGCGGAACCCTCGACGGCGACCGTCTTGCGGACTACCTCGACGACGCCGTCCACCTGGTGGGCGCCAACGGCTCGCCCCTGATCCAGGGACGCAGCCTGATCTACCGGTTTGCTGCCGCCGCGCCGTTCTGGGTGGGCGAGCTCTCCGGGCATTCCCGGCTTTCGCCGGGCACCAGCCGGCGGGCCGCCTCCGGGATGCTGGACTATTTCACCCGCCACGGCGCCATCAACAGCGAGGGCCTGCTTTCCATCGGCTGGCACGGCGAATTCAGCGGCATGAAGCAGTCCTACTCCGGCGCAGGGTCACCCTACTGGGCGGCCAAGGGGATGCTGGGCCTGGCCCTTCCGGCGAGCCACCGCGTGTGGACTGCCGTGGAGGAGCCGCTGCCGGTGGAGTCCGGCGACACCAGCCGGCTCATTTCCGCTCCGGGCTGGATGGTGAACGGCACACGGGCGGACGGCATCGTCAGGGTCACCAACCACGGCACGGACCATGCGCGCAAGGGGGACCGGCTGACGGACTCAGCCCTCTACGCCAGGCTGGGGTACTCCACCCACAGCTTCCCTGACCTTTCGTCGGAATCCATGGATAACGCCGTCGTGCTGGTGGACGACGCCGGCCGCCTCACCCACCGCACCGGCTTTGCAACGCACCACCTGGCCGCCGCCGACGGCAGCCTGGAGGGATCATCCGGTGGCCCGGTTAGCTGGATATCCTTGCCAGGCGCCGCGGGTCCGGACCATGGGAGCGGCGTTGCCGGGCTGGTGACGCCAGGGCCGGAAGTGACGGTCAGTTCCTTCACCAGCGGCCCGGTGGAGGTGCGGCTGGTCCGGCTCCGCGGAATGGCTGACTGCCCGCCGGCGCGCCTCCGGATCGGGGGCTGGCCGCTGGATCCGGCGTCGGAACTCTTCAGTTTGGTGGTGCCGCTGGAGCAGGGAGAGGCGCTCGACGACGCCGGCAGCCTGGTGCGGGAGGAACCGCAGCCCATGGGGACAGGCCTGGTTGTGCCCTGGGCGGGGACGTCGGGACCCGCATCAGATGGTGTGTACGGGGTGGTGGTGGGTTTCGGCGGAAACGATGTTCCGGCTGCCGTTGAGGCTGCGCGGCTGGCGAAGGTGCCATCGCTGCGTTGGCAATCGCTGGCGGAGCGATGAMTIPQTVPPLNLPAENRELSPHTGLTREHWCAYADFLLRSAHRFATDDHANIHLPGANSAYGPRSDSLEAFARTFLLASFRMAGEPERTGWLAEWYAKGLDAGTDPRSPDRWPTPAELGQAKVEAASLAVGLALTREQLWDKLPERVKEQLIAWFETVIGGDYPPINWVWFQIVVETFLESVGGKSSAADIEAGLAVHDSLYRGHGWFADGPERAYDHYVGWAFHVYPQLWALMAPEDPRIKARGTLDGDRLADYLDDAVHLVGANGSPLIQGRSLIYRFAAAAPFWVGELSGHSRLSPGTSRRAASGMLDYFTRHGAINSEGLLSIGWHGEFSGMKQSYSGAGSPYWAAKGMLGLALPASHRVWTAVEEPLPVESGDTSRLISAPGWMVNGTRADGIVRVTNHGTDHARKGDRLTDSALYARLGYSTHSFPDLSSESMDNAVVLVDDAGRLTHRTGFATHHLAAADGSLEGSSGGPVSWISLPGAAGPDHGSGVAGLVTPGPEVTVSSFTSGPVEVRLVRLRGMADCPPARLRIGGWPLDPASELFSLVVPLEQGEALDDAGSLVREEPQPMGTGLVVPWAGTSGPASDGVYGVVVGFGGNDVPAAVEAARLAKVPSLRWQSLAERNANANANANA
D1-29_046191179araR_2COG1609Arabinose metabolism transcriptional repressorATGAGTCCTGAAGGGACCGCGGAACCGGCCGGCAGGTCACTCTTTTCGCTGCAGCGCCGGGAGCGGCTGATGGAGGAGTTGCGTGCCCACGGCTCCATCACGGTGCGGGGGCTGGCGGCTGAGCTGGGTGTGAGTGAGCTGACCATCCGCCGGGATGTGAACCTTCTGGCCGAGGAGGGCCTGGTGTCGCGGGTTCACGGCGGCGCCACTCTGCCCAGCCCGCTGGACAGATCGGCTTCCAAAGCACGCCACCAACATTCACACAGGTACTCGATCGGCATGGTGGTCCCGTCCCTGGACTACTACTGGCCCCAGGTCATCAGCGGCGCCCGTGCGGAGGCCGAGGAACTGCAGGCAAGGATTGTGGTCCGCGGTTCAAGCTACGACGCCGCGGACAACCGCCGGCAAGTCCAGGCGTTGCTGGACACCCAGAATCTCGATGGCCTGATCGTGGCGCCGGATATGACGGGCGAGGGAGGCCACGAACTGCTGCGGTGGCTCAACGCCCTGCCCCTTCCGGTGGTGCTGGCAGAGCGGCGCGCACCGACGGACACTCCCGCCCACCGCCTGGAGTGGGTGGCCACGGACCACGCCTTCGGGGCCGGAATGGCCACCCGCCACCTGTGGCAGGAGGGGCACCGCAAGATCGGCTGCATGACCGATTCATCCAGCCCCACCAGTTCGCACGTGGTCCGGGGCTGGCGCCAGGCACTGGCCGCCCTGCGGATCCCGCTGGAGGAGTCGGTCAGCGAGGATTCGGCCGAGGTGGCGGCGGGGAACCGTGCCGCGCATTTTGACCGCATCCTGGAGTGGTGCCGGGAAACCGGGACCACTGCCATGCTGGTTCATTCGGACACCCAGGCCGTCGCCTTTGTGCAGCATTGTGTGGACCGCGGCGTCCACGTTCCCGGCGGCATGGCGGTGGTGGGGTACGACGACGAAGTGGCCTACCTGGCCGAGCCCGCCATTTCCGCGGTCCGGCCGCCCAAGCAGTATGTGGGACGGGTGGTGGTCCAGCTGGTCACCGCACGGCTGGCCGAGGGCCGGAAACGTCCGGTGCACAGGATCCAGCTGAACCCTGACCTGATTGTCCGTGAATCCTCGCTGGGCGGTCCCCGCACCCCGGCAGAGGCCGGGGACCAGGCCGTCCCCGCCGCAGGCATGGCCCCCGCAACCTGAMSPEGTAEPAGRSLFSLQRRERLMEELRAHGSITVRGLAAELGVSELTIRRDVNLLAEEGLVSRVHGGATLPSPLDRSASKARHQHSHRYSIGMVVPSLDYYWPQVISGARAEAEELQARIVVRGSSYDAADNRRQVQALLDTQNLDGLIVAPDMTGEGGHELLRWLNALPLPVVLAERRAPTDTPAHRLEWVATDHAFGAGMATRHLWQEGHRKIGCMTDSSSPTSSHVVRGWRQALAALRIPLEESVSEDSAEVAAGNRAAHFDRILEWCRETGTTAMLVHSDTQAVAFVQHCVDRGVHVPGGMAVVGYDDEVAYLAEPAISAVRPPKQYVGRVVVQLVTARLAEGRKRPVHRIQLNPDLIVRESSLGGPRTPAEAGDQAVPAAGMAPATNANANANANA
D1-29_046202343hypothetical proteinATGCCCACTCACGTGAGCGCTTCCCAGCCGGACGCCGACGAGCAGGTTGGCCGCGGGCAGCTGAAAACCCGGCACCCGAAAAACATATCCGCACGCGGAACCTTCCAGGGACCGCTGGCGGCCGCCTGGGGAACTGAAGCCACACAGGACGCACTGCTCAGGACACTGCGGGGTGGCCGCGAACGCCTGGCCAACAGGGAAGCAGAAGGGCAGAAAACGTGGCCGACCGGGACGGCACTGGCGGGTTTGCAGGGGGAGGCGGAAGCCGAACGCAGTGCCCCCTGGCCTCAGCCCCTGCTCTCCCACTACGCCCGGTACTTCAGGGACGGCAACCGGACAGCTTACGAGGACCTGGTGGCGGCCAGGCAGCAGCGGCTGACCCGGGCGGTGGTCATGGCCTGCCTGTCCCGACGCGTCGAACAGGGCGCCGAGCCGGGCGACGGGCCAAGCACAGAGAAGCCCGGGGAGCCGGACTCCGTGGCAGCCTTCAACGAATGGCTGGACGACGTCATTGATGGCGCGTACCTGCTCTGTGAGCAAAGTTCCTGGTGCTGGGCCGCCCACGAGGACGCCTATCATCGGCTGGGACACGTGGTCCCGGAACGATCAGAGCCCTATCTGGACCTCGGGGCAGGAGAAGTTGCTGCCCAGTTGGCCTGGCTGGACCTGCTCCTGGGTGACCAACTGGACCAGCGGGCCCCCGGCCTGCGCCGCCGGATCCGCGGGGAGGTCCTGGATCGCGTGGTCCGCCCCTTCCTAAACCGCCATGACTGGCACTGGCTGGGCCTGGACGGCGACGTCCACAACTGGAACCCCTGGATCCACTCCAACGTGATTGCTGCCGCCGTCGTCCTCGTGGACGATCCCGGGCTGCAGGCCAAAACTATCGCCCTGGCCATTGAAGGACTGGACCGCTTCCTGGCATCGATGCCGGCGGACGGCGCCGTCGACGAAGGCTTTTCGTACTGGTGGAACGGAGCCGGGCGGGCCCTGGAAGCGCTGGCCGTCCTGGAGGACGCAACGGCAGGAAGGCTCGACGGCAACATCCCGGTGGTCCGGGAACTGGTGGCCTTCCCGCACCGCATGCACCTTGGCCACGACTGGTACCTGAACGTGGCGGACGGTCCGGCCAAGGGTGGTACCGACCTCCCCTGGGACCTGGTCCGGCGGTGGGGCGAACGGCTTGGGGACCATAACGCCGCACGCCACGCGACGGCCCAACGCACACAACACAGCACGGCACCACAGCCGGACGTCCTCGATGTTCGGCGTGGGCTGGGCAGGACACTGCGGGCGCTCGCGGACGCCGGGCAACGGAAGGGAACCGGCGGCGAGGGGATTCCGGAACCGCCCGCACCGCCATTAATCGGCTTCACCTACTTGGAATCGGTGCAGATCATGCTGGCCCGCGAAAATCCAGGCCGGACCGATGGCCTGGTCCTTGCTGCCAAGGGCGGCCACAATGGCGAACACCATAACCACCGGGATGTTGGCTCTGTGGTGGTGGCCGTGGACGGCGTGCCGCTGCTGGTGGACGCCGGCCAGCCCACGTACACCGCCCAAACGTTCGGCCCGGACAGGTACGCCATCAGGGCGATGCAGAGTGCATGGCACAACGTCCCTGCCCCGTTCGGCCTGGAGCAGGGCACCGGCCGGAAGTTCGCCGCAGCCGTGCAGGAGGCGCCCACCCCGGAGAAACCGCGGCTGGTCCTCGGGCTGGGGGAAGCATACGGGCTGGGCCCCGCCAACCGCTGGGTACGTTCCGCGTCACTGGTCAGGGCTTCGTCGCCGCCGAACCCTGCCGGCAACGGGGCCTCCGAGAGGAGAAAAGCCCGGGTGCTGATTGAGGACCGCTGGAACCTGCCGTCACCAAACCCTGCCGTCAGCAGAACCCCCGAGGCTCCCTCCGGAACCCCCGACGTCGACATCCACTACCTGCTCTCCGGAACCGTGACGATGGGCCCGGTCGGGACGGCAACCATCCGCCCCAGCAGAATTCCCGGCGGAGTTCCCGGCAGGACTCTTGAGCGGACTCCGCGAGGGATGGCAACCATCCGCCCCAGGGAAATTCCTGACGGAGTTCCAGGCAGGGTTCCCGGCGGAACTTCCATCGCGACTCCCGGCGGGATTTCCCACCTCATTCCCAACGAAGACCGGCGCGGCGGGCTGCTGCGCTGGGAGCCTGCAGCCGCCGTCGTACTGGTGGACGAGTGGCTCCTCGATGATCCCCTCCTGGCAAACATCTGGGGCAGCAAACTGACCAGGCTCCGGTTCCGGATGCCCGCACACATGCGCGCCGCCGGCGCGTTCACCCTGACTGTGGAGGCCAATGATGAGTCCTGAMPTHVSASQPDADEQVGRGQLKTRHPKNISARGTFQGPLAAAWGTEATQDALLRTLRGGRERLANREAEGQKTWPTGTALAGLQGEAEAERSAPWPQPLLSHYARYFRDGNRTAYEDLVAARQQRLTRAVVMACLSRRVEQGAEPGDGPSTEKPGEPDSVAAFNEWLDDVIDGAYLLCEQSSWCWAAHEDAYHRLGHVVPERSEPYLDLGAGEVAAQLAWLDLLLGDQLDQRAPGLRRRIRGEVLDRVVRPFLNRHDWHWLGLDGDVHNWNPWIHSNVIAAAVVLVDDPGLQAKTIALAIEGLDRFLASMPADGAVDEGFSYWWNGAGRALEALAVLEDATAGRLDGNIPVVRELVAFPHRMHLGHDWYLNVADGPAKGGTDLPWDLVRRWGERLGDHNAARHATAQRTQHSTAPQPDVLDVRRGLGRTLRALADAGQRKGTGGEGIPEPPAPPLIGFTYLESVQIMLARENPGRTDGLVLAAKGGHNGEHHNHRDVGSVVVAVDGVPLLVDAGQPTYTAQTFGPDRYAIRAMQSAWHNVPAPFGLEQGTGRKFAAAVQEAPTPEKPRLVLGLGEAYGLGPANRWVRSASLVRASSPPNPAGNGASERRKARVLIEDRWNLPSPNPAVSRTPEAPSGTPDVDIHYLLSGTVTMGPVGTATIRPSRIPGGVPGRTLERTPRGMATIRPREIPDGVPGRVPGGTSIATPGGISHLIPNEDRRGGLLRWEPAAAVVLVDEWLLDDPLLANIWGSKLTRLRFRMPAHMRAAGAFTLTVEANDESNANANANANA
D1-29_046211014ghrB_4COG1052Glyoxylate/hydroxypyruvate reductase BATGCCGCGGAAACCCAAAGCGCTTCTGCTGATGAACCGGTCCACCCTGAATGACCAGTTCGATTCCAGCCGCCTGGAGCGGCTCGGCGGCCTGGTGGAACTGGACACACCTCACTGGGCAGACAGCTTGGCCGACCCTCAGGTTGCTGCCCGCCTGCCCGAGGTCGAAGTCCTGCTGACCAGCTGGGGCGTACCCCGGCTGGACCGCGAGGCACTCGACCGTATGCCCCGCCTCCGGGCCGTCTTCCACTGTGCCGGTTCCGTCCGCTCCTTCGTCACCGAGGAACTGTGGGAGCGCGGGATCGTGGTGACAACCGGAGCGGAAGCGAATGCCATACCTGTGGCGGAGTTTACGTTCGCGTCCATCGTCCTGGCCGGCAAGAAAGCACAGGTCCTGGCGAACGCTTCGCGCATTGCGCGGGAGGACTGGACGTACTCAACCGCCTACGGCGAGCTCGGCAACGTTGGCCGGACCATCGGCGTCGTCGGCTTCTCCCGGATCGGGCGCCGGGTTGTCCAGCTCGTCCAGCAACTGCAGGACGTCACCTGCCTTGTCTCGGACCCGTATGCCGAACCTGACACCGTGGCGGCCGCAGGCGCGCGGCTGGTCACGCTGCAGGAGTTGCTGCAGACCTCCGATATTGTCACCATCCACGCCCCCGCGCTCCCGGAAACGCACCACATGATCGGCGCGGAACAGCTCGCCGCAATGAAGGACCATGCCACCCTCATCAACACTGCCCGGGGATCGCTCGTGGATACAAAGGCCCTGGAAGCGGCATGTACCACCGGCCGGCTCCACGCGATTCTGGACGTGACAGAACCCGAACCGCTGCCGGCCGGATCCGTGCTCTATGACCTCCCAAATGTGGTGATAACTCCGCATATCGCCGGCTCCCTGGGCACCGAAACCCGCCGCATGTCGGACGTTGCCATGGACGAACTTGTTCGGTACCTGGCAGGGAAGGACCTTACTGCCGAGGTCCTTTCAAAACACCTTGACCTCATCGCCTAGMPRKPKALLLMNRSTLNDQFDSSRLERLGGLVELDTPHWADSLADPQVAARLPEVEVLLTSWGVPRLDREALDRMPRLRAVFHCAGSVRSFVTEELWERGIVVTTGAEANAIPVAEFTFASIVLAGKKAQVLANASRIAREDWTYSTAYGELGNVGRTIGVVGFSRIGRRVVQLVQQLQDVTCLVSDPYAEPDTVAAAGARLVTLQELLQTSDIVTIHAPALPETHHMIGAEQLAAMKDHATLINTARGSLVDTKALEAACTTGRLHAILDVTEPEPLPAGSVLYDLPNVVITPHIAGSLGTETRRMSDVAMDELVRYLAGKDLTAEVLSKHLDLIANANANANANA
D1-29_046221284hypothetical proteinATGAAGCGCACCACTCTCGTGGCGATAGCCCTCGCCGCCACTGCCAGCCTCGGCCTGACCGCCTGCGCGGGTGCGGCCGGCCCCGCCGAAACGGCCAGTGTGGACGAAAAAACCACACTCAGCATTTCCGTCTGGAACTACGAGGGGACACCGGAATTCAAGGCGCTGTTCGACGGCTACGAAGCTGCACATCCCAACGTCGACATCGAACCGGTGGACATCCTTGCCGATGACTACCCCCAGAAAGTAACCACCATGCTGGCCGGTGGCGACACCACCGACGTCCTCACCATGAAGAACGTCATCGATTACTCCCGCTACGCCAGCAACGGCCAGCTCCAGGAAATCAACAGTGTGGTGGACACCCTGGACAAGGACAACCTCGCCGGGCTGGACGCCTTCGACGTCGGCGGAAAGTACTTCGCCGCCCCGTACCGCCAGGACTTCTGGCTCCTTTACTACAACAGGGACCTCTTTCAGGCCGCCGGCGTGGAAGATCCCGCAAACCTCACGTGGGATGAATACGCAGCCCTCGCCCAGAAGCTCACCACCAAGGGCGCGGACGGCAAGACCGTCTACGGCACCTACCAGCACGTCTGGCGCTCAGTTATCCAGGCCATCGCCGCCGCCCAGAACGGCGGCGACCAGGTCGGCGGCGATTACGGCTTCTTCAAAGACCAGTACAACACGGCCCTGGAGCTGCAGAAGAGCGGCGCCACTCTGGACTTCGGCACCGCCAAGAGTCAGAAGACCAGCTACCGCACCATGTTCGAAACCGGCCAGGCTGCCATGATGCCCATGGGCACCTGGTACATCGCCGGCATTCTCCAGGCGAAGAAGGACGGAAAGACCAACGTCAACTGGGGCCTGGCTCCGATGCCGCAGAAGAACTCCGGCGGCGATGTCACCACCTTCGGCTCCCCCACGGCATTCGCCGTCAACAAGAACGCGGCACACTCTGAGGAAGCCAAGAAATTCATTGCGTGGGCCGCCGGTGAAGAAGGCGCCAAGGCCATTTCGAAGATCGGGGTCGTGCCTGCCCTGCAAAATGACGCGGTAACGGACGCCTACTTCACCCTGGATGGCCTGCCCACCGACGAACTGTCGAAGAAGGCCTTCACCCCTGACGAAACAGCACTGGAAATGCCTGTGAGCGACAAGTCCGCCGCGACCGACAAGATCCTCAACCAGGAGCACGACCTCATCATGGTGGGCGAGCGCTCCGTGGCTGACGGCATCACGGAGATGGGCAAGCGGGTCAAGAGCGAAGTCCTGGGCCAGTGAMKRTTLVAIALAATASLGLTACAGAAGPAETASVDEKTTLSISVWNYEGTPEFKALFDGYEAAHPNVDIEPVDILADDYPQKVTTMLAGGDTTDVLTMKNVIDYSRYASNGQLQEINSVVDTLDKDNLAGLDAFDVGGKYFAAPYRQDFWLLYYNRDLFQAAGVEDPANLTWDEYAALAQKLTTKGADGKTVYGTYQHVWRSVIQAIAAAQNGGDQVGGDYGFFKDQYNTALELQKSGATLDFGTAKSQKTSYRTMFETGQAAMMPMGTWYIAGILQAKKDGKTNVNWGLAPMPQKNSGGDVTTFGSPTAFAVNKNAAHSEEAKKFIAWAAGEEGAKAISKIGVVPALQNDAVTDAYFTLDGLPTDELSKKAFTPDETALEMPVSDKSAATDKILNQEHDLIMVGERSVADGITEMGKRVKSEVLGQPGPT0016545_7738DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016545-ABC_MS_S-K02027NANA
D1-29_04623924lacF_16Lactose transport system permease protein LacFGTGACAACAGAAACACTCAAGCGGGCCCCGGCTGTCATCAGCCGGGGCAATCGGAAGCAGGCCCGGCGCAACACGCTGGTGGGCTGGACCTTCATCCTCCCCAACTTCCTGGGGTTCCTGGCCTTCACCCTCATTCCCGTCCTCGCCGCGTTCGCCCTCTCGTTTATGGAATGGACCTCCTTCAGTGCCCCGCGCTGGGTGGGCCTGGCAAACTTCCAGAGGATGGTCCAGAGCGACACCTTCTGGGTAGCACTGCGCAACACGGTGGTCTACGCCCTGGGGCACGTCCCGCTGACCATGGCCCTTGCCCTGGTCCTGGCGTTGCTCCTGAACCGCAAACTCAAGGGCATCGGCTTCTTTCGGGTAGCCATCTTCTTCCCGTACATCACCTCCCTGGTGGCGGTCGCCGTCGTCTGGAACATGCTTTTCAGCCCGGACAGCGGCCCCATCAACCAGTTCCTGCATGCCGCGGGCGTCGCAGAAGCTCCGGGCTGGACCTCCAGCTCCGACTGGGCCATGCCGGCGGTGATCATCACCAGCGTCTGGCGGGACATGGGCTACTACATGATCCTGTACTTAGCCGGGCTCCAGGCCATCCCCACCGAACTCTACGAAGCAGCGGAAGTGGATGGCGCCAGCCCCTGGCAGCGCTTCTGGAACGTTACGCTGCCGTCGCTGCGGCCCACCACATTCTTTGTAGTGGTCATGCTGACCGTATCCAGCTTCAAGGTCTTTGACTTGATTGTGGTGATGACCAACGGCGGGCCGGGCCGGGCCACTACGGTGCTGTCCCAGCTCATCTACCAGGAGGGAATCGGCGAGGGCAAGTTCGGCTACTCCTCGGCCATCTCCCTCGTGCTCTTCGTCATCGTCCTGACGATTACCGTCCTGCAATTCAAGCTCCAACAGCGGAGGGAACGCTGAMTTETLKRAPAVISRGNRKQARRNTLVGWTFILPNFLGFLAFTLIPVLAAFALSFMEWTSFSAPRWVGLANFQRMVQSDTFWVALRNTVVYALGHVPLTMALALVLALLLNRKLKGIGFFRVAIFFPYITSLVAVAVVWNMLFSPDSGPINQFLHAAGVAEAPGWTSSSDWAMPAVIITSVWRDMGYYMILYLAGLQAIPTELYEAAEVDGASPWQRFWNVTLPSLRPTTFFVVVMLTVSSFKVFDLIVVMTNGGPGRATTVLSQLIYQEGIGEGKFGYSSAISLVLFVIVLTITVLQFKLQQRRERPGPT0016535_4620DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016535-ABC_MS_P-K02025NANA
D1-29_04624942araQ_17COG0395L-arabinose transport system permease protein AraQATGACCGACATGGCCGAAGACCTCAAGGCCCCTGATCTCAAAGAGACAGGGCCCTCGAGGGGCGGGGCATTCAGCCCGGAAGACCGCCGTCGTTCCCAGCGCAGGCGGTCCACGCGCGAACAGAAGAAGCGGACCAGCGACGCCATCATCTACTGCGTCCTGGCGGTGCTGGTGGTAGCGCTGATGGTGCCGTTCATCTGGATGGTTTCCTCCTCCCTGAAGGAGAACAACCAGGTCCTAACGGTTCCCATCCAATGGATCCCGTCGGAGTTCGTGTGGAGCAACTACACCGATATCTGGACCCGCATCCCGATGACGGGGTACCTGCAGAACTCGCTCTACCTGGCCGTGATCATCACCTGCCTGCAGGTCCTCACCGGGTCCCTCGCGGCGTACGGGTTCTCGAAGGTCCGCTTTCCGGGCCGGGACGTGCTGTTCCTTGCCTACATCGGCACCATCGCCGTGCCGTGGCAGGCCTACATGGTGCCGCAGTACATCATGATGCAGAACCTGGGACTGACCAACAGCTTTAACGCCCTCATCCTGCTCCAGGCCTTCGGCGCGTTTGGAGTGTTCCTGATGCGCCAGTACTACATGACCATCCCCGATGAGCTCTGCGAGGCCGCCCGCATCGACGGCCTTAGCGAGTACGGCATCTGGGCCCGGGTGATCCTGCCCCTGTCCAAGCCGGCCCTGGCCAGCCTGGCACTGCTGACGTTCGTGAATACCTGGAACGACTACATGGGCCCCTTCATCTACCTCACCAGCAACAGGTTGTGGACGGTGCAGCTGGGACTGCGCTCCTTCGTGGGCCAGTTCGACGCCGAATTCGCCATGATCATGACAGGCTCCGTCATCTCTGTGGTTCCCATCCTCATCATCTTCCTGGTGGGTCAGCGTTACTTTATCCAGGGCATCGCGACGAGCGGGATGAAGGGATGAMTDMAEDLKAPDLKETGPSRGGAFSPEDRRRSQRRRSTREQKKRTSDAIIYCVLAVLVVALMVPFIWMVSSSLKENNQVLTVPIQWIPSEFVWSNYTDIWTRIPMTGYLQNSLYLAVIITCLQVLTGSLAAYGFSKVRFPGRDVLFLAYIGTIAVPWQAYMVPQYIMMQNLGLTNSFNALILLQAFGAFGVFLMRQYYMTIPDELCEAARIDGLSEYGIWARVILPLSKPALASLALLTFVNTWNDYMGPFIYLTSNRLWTVQLGLRSFVGQFDAEFAMIMTGSVISVVPILIIFLVGQRYFIQGIATSGMKGPGPT0016540_849DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MULTIPLE_SUGAR_TRANSPORT_III,PGPT0016540-ABC_MS_P1-K02026NANA
D1-29_04625774hypothetical proteinATGAGCTCTGTTCGCCAGCATGCGACACCGCCGATGCGGCACCGCTGGACCGGGCTGGGGTTCGAAACCTTCGGCAGCATCTTCGGGTTCGTCTACACGTTCCTGGCGGGGAACGTGATGCTGGCCCTGGCCAACGCCCCGCTTGTGCTCTGCCTCGCCCTCGTGGCCGACCCCATGGCATCGTGGCCGTTCTTCCTGGCGGTTTCGGTCACAGTCCCGCCGTCACTGGGCGGCCTGTTCGCCGCTTTCCAGGCACTGAACGACGACGGCGGTGCAGTCAAGCCGTTTGCCTCCTTCCTCCGGGGCTACGTGCGCAGCTTCCGCCACACCGCACCGCTGGGGCTGGCAGCCATTGCGCTGCTGCTGTTCCTGGGCGTGGACCTCGTGGCTGTTCAGTCGATGCCCGGGGCAGGGCTGCTGGTACCGCTCATCGTGCTGGCGGCTGCTGTCACGGTGAGCGCCGCTGTGATGGTGATCGCCGGCGTCGTACTTCTCCCCGGGGCACGGCTCAAGAGCCTGGCCAAGGCATCGCTCTACCTGTGCGTCCAGCGCTGGTACCTGAGCCTGGCCCTGCTGGTCCTGCTCGGCGTCATCGCTTCGGCGGCGTTGCTGCAGCCGGTGATCGGCGTGGCCCTGGCACCTGCGCCGCTGCTTTTTGTTGTGTGGAGTAACGCGTCGTTTGCGTTCCAGGCGGTAATGGCCCGCCCTGCCCCAACTACCCGCCCTGCCCCAACTAAAATCCCTGGAGTGGCGTGCCAGCTACGCGAGGGCTAGMSSVRQHATPPMRHRWTGLGFETFGSIFGFVYTFLAGNVMLALANAPLVLCLALVADPMASWPFFLAVSVTVPPSLGGLFAAFQALNDDGGAVKPFASFLRGYVRSFRHTAPLGLAAIALLLFLGVDLVAVQSMPGAGLLVPLIVLAAAVTVSAAVMVIAGVVLLPGARLKSLAKASLYLCVQRWYLSLALLVLLGVIASAALLQPVIGVALAPAPLLFVVWSNASFAFQAVMARPAPTTRPAPTKIPGVACQLREGNANANANANA
D1-29_04626474hypothetical proteinATGGAGATCCTCGACGTGATCTGGAACGGTGTGCTGGGCGTGTCCGCGATAGCACCGCTGGCCACGTTCGGAGTGGTCCTGGTGGCGTACCTGGCCTACCGGCAAAAGGCCCACGCGGACAGGCGGGACCAGTGGTGGAAACGCGCGCAGTGGGCCATCGACTCGGCGTTGAACGATGCTGATCCGCAGCGACGCCTCGCGGGGATGCGCGTGCTGGTCCAGCTCGTTGGCAGCGACCTGGCCACGGCGGAGGACGCTGACCTGATGAGTGCGCTGGCGGTGGGAATCCAGGCCCAGGAGCTCTCTCGGCTCTCCGCCGGCGCTCCCGGGCTTCGTGCCGACGGACCTGCTCACGAACAGTCCCACGGGCGTTCCGGCCGGCGGGCCGGAGATCGTCCCGCGGTTGTTGACGGGATCCTGGCGGAAGCTGAAAAGCTCATCGCCGCAGCGGACGCCCGGTCCGCCCGCCCCTAGMEILDVIWNGVLGVSAIAPLATFGVVLVAYLAYRQKAHADRRDQWWKRAQWAIDSALNDADPQRRLAGMRVLVQLVGSDLATAEDADLMSALAVGIQAQELSRLSAGAPGLRADGPAHEQSHGRSGRRAGDRPAVVDGILAEAEKLIAAADARSARPNANANANANA
D1-29_04627237hypothetical proteinATGTTGAAGGAAGCCAAAGCCCATGTAACGAGAGTCCGCGCCCTGGACCAGCTCCACCGCGGTGACGAAATCGAAGCCCGCCTCTCCGTGGGCCCCAGCTACGACGACGTGGTGATCCGCCGCGGCAGCGTCCAGGAGACGGCGCCCGGCATTGGCGTTGTCTGGATCATGGACCGGCACACCGGCCTCCGCAAAGCCATCAATACCGACGAGTGCAGCGTCTGGCGGGTCGCCTGAMLKEAKAHVTRVRALDQLHRGDEIEARLSVGPSYDDVVIRRGSVQETAPGIGVVWIMDRHTGLRKAINTDECSVWRVANANANANANA
D1-29_046281452ligM_2COG0404Vanillate/3-O-methylgallate O-demethylaseATGGCGCAGAAGACCCTGCAGGATGTTCTTGACGAAGCAGGCAACACCGTCGAACTCCTGCGCAACTCACAACTTGGCACGTATATCTACCCGGTGGTCCCGGCCGAGTTCACCAACTGGCGGCGCGAGCAGCGGGCCTGGCGCGAGACCGCCGTGCTCTATGACCAGTCACACCACATGGTCAACTTCTTTATGAACGGTCCGGGCGCCCTCAAGCTCCTGTCCGACACAGGAATCAACAGCTTCGCCAACTTTCCGGTGAACACCGCCAAACAGTTCGTACCGACGGCATCCAACGGCGGCGTGATCGGCGACGGCATTCTCTTCCACCTGGCCGAGAACGAATTCGTCTACGTCGGGCGCGCCCCCACCGCGAACTGGCTCCAGTTCCACGCCGAGACGGGAGGGTACGACGTCGAGTGCAGGTATGACGACCGGTCGCCGTCGCGTCCCTATGGCCAGGCGGTCAGGCGCGAGTTCTACCGCTTCCAGATCCAGGGCCCCAACGCCTGGCAGATCATCGAGAAGCTCAACAAGGCAACGCTTGAACCGGTGAAGTTTTTCCACATGGGTCAGTTGGGCATTGCCGGGGAGCAGGTTCGTACCCTGCGCCACGGCATGGCCGGCGCACCCGGGCTGGAGATCTGGGGGCCCTATGAGCAGCACGGGAAGATCCGGGATGCCGTGCTGGAGGCTGGCGCCGAGTTTGGCCTGGAACCATGCGGGTCCCGCGCCTATTCCTCGAACACCCTGGAATCCGGATGGATCCCGTCGCCCTTGCCGGCGATTTACAGCAGCGAAGCCGAACGGAACTACCGTGAATGGCTGCCCGCCACGAGTTATGAAGCGATCAATGCTCTCGCCGGCTCCTTCGTGTCCCAGAACATCGAGGACTATTACTTAACCCCGTGGGAGCTCGGCTATGGCTCGTTCGTGAAGTTCGACCACGATTTTATTGGCCGCGACGCCCTCGAGAAGATTGATCCTGCCAGGCAGCGCAAGAAGGTCACGCTGGCCTGGAACGATGAGGACCTGGCGAAGATCTGGGCCTCCTTCCTGGACCGCGACAGCGTGGGCTACCAGTTCTTTGACGTGCCGAACGCGAACTACGGATCATCGAACTATGACTCCGTGGTGGACGCCGACGGCACCGGAGTTGGGCTCTCGCTCTTCACCGGCGTCACCGCCAATGAACGGCGCGGGCTGTCCCTGGCCACCGTGGACCCCGACGTCGATATCGGTACGGAGGTCCATGTCATCTGGGGTGAACCAGACGGCGGAACGACGAAGACCACGGTGGAACCACACGAGCAGTTCAGTGTGCGCGCGGTGGTCAGCCCCGCGCCCTACGCTGTCACTGCCCGCACCGAATACCACGGCGGCTGGCGGACCGCCGCCGCTGCCGGCACGGGAAGCCGAGGGGCCGACGGCGGCTCCGGGCCGGTCATGTGAMAQKTLQDVLDEAGNTVELLRNSQLGTYIYPVVPAEFTNWRREQRAWRETAVLYDQSHHMVNFFMNGPGALKLLSDTGINSFANFPVNTAKQFVPTASNGGVIGDGILFHLAENEFVYVGRAPTANWLQFHAETGGYDVECRYDDRSPSRPYGQAVRREFYRFQIQGPNAWQIIEKLNKATLEPVKFFHMGQLGIAGEQVRTLRHGMAGAPGLEIWGPYEQHGKIRDAVLEAGAEFGLEPCGSRAYSSNTLESGWIPSPLPAIYSSEAERNYREWLPATSYEAINALAGSFVSQNIEDYYLTPWELGYGSFVKFDHDFIGRDALEKIDPARQRKKVTLAWNDEDLAKIWASFLDRDSVGYQFFDVPNANYGSSNYDSVVDADGTGVGLSLFTGVTANERRGLSLATVDPDVDIGTEVHVIWGEPDGGTTKTTVEPHEQFSVRAVVSPAPYAVTARTEYHGGWRTAAAAGTGSRGADGGSGPVMPGPT0005520_25DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005520-ligM-K15066NANA
D1-29_046291353ligM_3COG0404Vanillate/3-O-methylgallate O-demethylaseGTGACGCAGACCTTGCAGGAAGCGATCGATCGGCTGGGCTCTCCGGTCGAGCTGCTGCGCAACTCACAGGCGCCGCCCACCGTGTTCCCCGTCAAGCCGGAATTCAGCAACTGGCGGTCCGAGCAGCAATCATGGCGCACGGGATGCGCACTGCTGGACCAGTCACACCACATGACCGATCTGTTCCTTAGCGGTCCCGGCGCCGAACGCCTGCTCAGCAGTCTGGCTGTTAATTCCTTCGCAAGGTTCCCGGTGGACCGCGCCAAGCAGTTCATCGCCGTGAACCACCAGGGTTATCTTATTGGCGACGCCATCCTGACCCACCTGGACGTGGATTCCTACAACCTGGTGGGGCATCACATGGCGATCGACTGGGTGCAGTTCCACGCAGAGACGGGCGCACACGATGTGGACGTTGAGCGGGACGGGAATTCCATCGTGCGCCCCGGCGACCCCCGGCTCTTCAGGTACGAACTCCAGGGACCAACAGCACCAGCCATCGTGGAGAAGCTCATCGGCGGTCCGGTGCCGCAGATCGGCTTCTTCCATATGGGCCGTTTCGGGATCGCCGGGCTCGAGGTCCGCGGCATCCGGCACGGGATGGCCGGCCAGCCCGGCTACGAGCTTTTCGGGCCATGGGCTGACGGGGTGCGGGTCAGGGACGCATTGCTGGAAGCCGGTGCCGGGCTTGGCCTGACCCAGGTTGGCGCCAAGGGCTACTCAACGGCCAACCTTGAATCGGGATGGGTGCCCTCGCCGGTGCCCGCAATCTTCTCGGACAGCCGGTTGCGGGCCTACCGGGAATGGCTGCCGGCACCGGCGGCCGGCTCGCTGGGCGGCAGCTTCGATTCGCCCAACATCGAGGACTACTACCTGACACCCTACGACCTGGACTACGGGCGTGCGGTGGCGTTTGACCACGACTTCATCGGACGGGACGCGCTCGAGGCCCTTCCCCTGGATTCACACCGCCGCAAAGTCACGCTCGTATGGAACCCCGATGATGTCCAGGACGCCATCGGCTCACTCCTGCGCCCTGGCCTCCCGGCCAAGTACATCGACCTGCCAAAGGCGCGGTACGCCCTGTACCAGGTGGATAGTGTGCTCCACGAGGGCGCCACCATCGGCCAGTCCTTTGACTGTGGCTACATCGCCAACGAGCAGTCGTTTGTTTCGCTTGCCAGCGTTGACCCAGCCTTCGCGGAAACCGGCACGGAGGTCACTGTCATCTGGGGCGAACAGCCCAATTCGTCCAAGCTCCAGGTGGAGCCGCACCGGCAGGTTGCCATGCACGCCACCGTCGCCCCCGCCCCCTTCGTGCAATTTGCACGCGAAAACTACCGCGCCGCCTGAMTQTLQEAIDRLGSPVELLRNSQAPPTVFPVKPEFSNWRSEQQSWRTGCALLDQSHHMTDLFLSGPGAERLLSSLAVNSFARFPVDRAKQFIAVNHQGYLIGDAILTHLDVDSYNLVGHHMAIDWVQFHAETGAHDVDVERDGNSIVRPGDPRLFRYELQGPTAPAIVEKLIGGPVPQIGFFHMGRFGIAGLEVRGIRHGMAGQPGYELFGPWADGVRVRDALLEAGAGLGLTQVGAKGYSTANLESGWVPSPVPAIFSDSRLRAYREWLPAPAAGSLGGSFDSPNIEDYYLTPYDLDYGRAVAFDHDFIGRDALEALPLDSHRRKVTLVWNPDDVQDAIGSLLRPGLPAKYIDLPKARYALYQVDSVLHEGATIGQSFDCGYIANEQSFVSLASVDPAFAETGTEVTVIWGEQPNSSKLQVEPHRQVAMHATVAPAPFVQFARENYRAAPGPT0005520_135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005520-ligM-K15066NANA
D1-29_04630732galBCOG21204-oxalmesaconate hydrataseATGGCCAATGCAGGCACCGTGCTGGTGGTAAGCGCGCACGCCGGGGACTTCGTCTGGCGGGCCGGCGGCGCCATTGCCGCCGCCACCGCCCGGGGTGATCGCGCCGTCGTCGTCTGCCTCTCCTACGGCGAGCGCGGCGAGTCTGCCAGCCAATGGCGGGCGGGGAAATCACTGGATGAGATTAAGGCCATCCGGCGCGGAGAGGCCCAGGCCGCCGCCGAGGCCCTGGGCGCCGAAATTGAATTCCTCGACGCCGGCGACTACCCCCTGCTGCCCAGCCGCGAACTGCTGGATGAACTGGTGCGGATCTACCGCCGGGTCCAGCCCACCGTTGTGCTGACGCATCCGCTGCTGGATCCTTACAACGGCGACCACCCGGCTGCCGGAAAACTGGCAATCGAGGCCAGGATCCTGGCCCAGGCCATTGGGTACGAGGCCCCGGGCGAAGTGCTGGGTGCACCGCCCGTGTTCTTCTTCGAGCCGCATCAGCCGGAACAATGCGATTTCAAACCCGATGTCCTGCTCGACATCACGTCCGCTTTCCCCGCCAAGGAGCAGGCAATGAAGTGCCTGCCCGCCCAGCAGCATATGTGGGACTACTACACGTCGCTTGCGGTCCGCCGCGGAGTCCAGGTCAAGCGCAACGCTGGCCCCAACCTCGGCCTGCCGGTTGACACCAAGGGAGAGGCGTACATGCGCTATTACCCCCAGGTCACCGAGGTCCTGGAATGAMANAGTVLVVSAHAGDFVWRAGGAIAAATARGDRAVVVCLSYGERGESASQWRAGKSLDEIKAIRRGEAQAAAEALGAEIEFLDAGDYPLLPSRELLDELVRIYRRVQPTVVLTHPLLDPYNGDHPAAGKLAIEARILAQAIGYEAPGEVLGAPPVFFFEPHQPEQCDFKPDVLLDITSAFPAKEQAMKCLPAQQHMWDYYTSLAVRRGVQVKRNAGPNLGLPVDTKGEAYMRYYPQVTEVLEPGPT0005285_142DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005285-galB-K16515NANA
D1-29_04631756ligK_5COG06844-carboxy-4-hydroxy-2-oxoadipate aldolaseATGAAGACCGTTGTGGTCACCGGCATCCCGCGGGCGGACGCTTCCGCCATCGATGCGCTCGGATCGCACGGCGTCGCAACGGTGCACGAAGCAATGGGGCGCACGGGACTGGCGGGCGCCTCGCTCCGTCCCATCCAGGAGGGGGTCCGGATTGCGGGTTCGGCGGTTACAGTCCTGTGCTGGCCCGGCGACAACCTGATGATCCATGCCGCAGTGGAGCAGTGCCGCGAGGGTGACGTCCTGGTGGTGACCACGGCCTCCCCCTCCCTTGACGGCTCGTTTGGCGAACTGTTCGCAACGGCTCTGCGGCAGCGCGGAGTGCGAGGGCTGGTGACAACCGGCGGGGTCCGGGACGTGGCCGACCTGCGGATCATGGGGTTTCCTGCCTGGTCTGCCGCGGTCAATGCCCAAGGGACGGTCAAGGCCACGGCCGGCTCTGTGAATGTGCCGATCACGGTGGGCGGCACGGTGGTGCGCCCGGGCGACGTCATCGTGGCCGATGACGACGGCGTGCTCTGCGTGCCGCGCGCGGACGTGCAGTCTGTCCTCGAAGCGGCCCATGCGCGGGTGATGAAGGAGGCGGAGTCACGTGCGGCCTACATCGCCGGTGAACTGAGCCTGGACCGCAACCGGCTGCGCGGCGTCTTGGAGGACCTGGGCGTACGGTACGTGAGCGCCGCTGAATACAACCAGGCTGAGCACAGCGCGGCTGAGCACAACGCGGCTGAGCACGGGGCGGATCATGGCCGGGGTTGAMKTVVVTGIPRADASAIDALGSHGVATVHEAMGRTGLAGASLRPIQEGVRIAGSAVTVLCWPGDNLMIHAAVEQCREGDVLVVTTASPSLDGSFGELFATALRQRGVRGLVTTGGVRDVADLRIMGFPAWSAAVNAQGTVKATAGSVNVPITVGGTVVRPGDVIVADDDGVLCVPRADVQSVLEAAHARVMKEAESRAAYIAGELSLDRNRLRGVLEDLGVRYVSAAEYNQAEHSAAEHNAAEHGADHGRGPGPT0002085_228DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0002085-ligK|galC-K10218NANA
D1-29_046321080ligU(4E)-oxalomesaconate Delta-isomeraseATGGCCGGGGTTGAGGGAATCCCCTGCCTCTATATGCGTGGGGGCACATCCAAGGGTGCGTTCTTCCTCGCTGCGGACCTCCCGGCCGACCACGAGGAACGTGACAACCTGCTCCTGCGCATTATGGGCACGCCGGATCCGCGCCAGATCGACGGGCTGGGCGCTGCGCATCCGCTGACCAGCAAGGTGGCAGTCATTTCACCATCTCCCGACGACGGCGCCGACGTCGACTATCTTTTCCTCCAGCTGGGCATCGACAGCGCCTTCGTGACCGACCGCCAAAACTGCGGCAACATTCTGGCCGGCGTCGGTCCGTTCGCGGTGGAGCGCGGCCTCGTTCCGGCCGGCAACGGGCAGACCGAAGTGCGGATCCGCATGGTCAATACTGACAGCCTGGCCACTGCCACGTTCGCCACTCCGGGCGGGATGGTGGATTACGACGGCGACCTCGAGATCGACGGCGTCCCCGGTACGGCGGGAGCGATCAGGCTCAACTTCGAGGGGACCGCCGGATCCTCCACCGGGGCGCTCTTCCCGTCCGGCAGCGTGCTGGACAAGGTTGCCGGCGTGGACGTCACGTGCGTGGACAACGGTATGCCCACCGTCCTGATCCGCGCCGCCGATCTCGGGCTGACGGGCGGCGAATCACCTGAGGACCTGGAGGGCGACGGCGGCCTGGCCGACCGCCTGAGGGCGCTCCGCCTTGAGGCCGCAAAGGTGATGGGCATGGGGGATGTCACGGACGCCACCGTGCCGAAGCTTGTGCTGCTGGCCCCACCCACCGCGGGGGGCTCCATTGCCACCCGCAGCTTCCTGCCGGTGCGGGTGCACACGTCCATCGGCGTGTTGGGGGCCCTGACCGTGGGCGCGGGAGTGCTGGCAGAGGGATCGGTGGGCCACGCACTCGCTGCGTTGCCGTCCACCGGCGATCCGCTGCGGATCGAACACCCCACCGGGCACTTCGACGTCGACATTGCGGTCGAGTCAACCCCGGACGGGTTCACCGTCACCAAATCGGCTGCCCTCCGCACGGCGCGGAAGATCTTCGACGGGCGTGTTTTCCCGCGCCCCCGCCTGTGAMAGVEGIPCLYMRGGTSKGAFFLAADLPADHEERDNLLLRIMGTPDPRQIDGLGAAHPLTSKVAVISPSPDDGADVDYLFLQLGIDSAFVTDRQNCGNILAGVGPFAVERGLVPAGNGQTEVRIRMVNTDSLATATFATPGGMVDYDGDLEIDGVPGTAGAIRLNFEGTAGSSTGALFPSGSVLDKVAGVDVTCVDNGMPTVLIRAADLGLTGGESPEDLEGDGGLADRLRALRLEAAKVMGMGDVTDATVPKLVLLAPPTAGGSIATRSFLPVRVHTSIGVLGALTVGAGVLAEGSVGHALAALPSTGDPLRIEHPTGHFDVDIAVESTPDGFTVTKSAALRTARKIFDGRVFPRPRLPGPT0005280_24DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005280-galD-K16514NANA
D1-29_04633954bphC_3Manganese-dependent 2,3-dihydroxybiphenyl 1,2-dioxygenaseATGACCGAGTACACCTCATTCGACGTCGCCCACGTGGGGAACGTGGAACTGCTGACGCCCACCTTCGACAAGAGCCTGTGGTTCTTCCGCGACCTGCTGGCCATGCGTGTCGTCGCCGAGGCCGGCGATTCGGTGTACCTGCGCACCTGGGACGAATATCAGCTGTACACGCTGAAGCTCACAGCATCCGCCGACGCAGGAGTGGGCCGGACGACGTTCCGTGCAACGAGCCAGGAGGCGCTCGAGCGGCGGGTGGCCGCGATCGAAGCCACTGGCCTGGGCATCGGCTGGGTGGACGGGGAAGTGGGCACGGGCCCCGCCTACGCTTTCCAGGATCCTGACGGGCACGACATGGCTATCTATTATGAAACCGAGCGGTACGTGGCCACCGACGACAAGCCCGCCCTGAAAAACCAGGCCTCTGCGTTTCCCGGCCGTGGCGTCAACGCCAGGCGGCTGGACCATATCAATTACCTGGCCAAAGATGTGGTGGCCAACGGAGAGTTCGTGGTTAACGCCCTGCGGGGACGCGAAAGTGAACGAATCAAGCTTAATGACGGCGGTTACGCCGCCTGGTGGTTCCACTTCAACAACAAGTCCTACGACATCGTGTACTCCGACGACTGGCTTAAGCACGGCAACCGGCTGCACCACGTCGCCTTCTCCCCCGACACCCGGGAGGACATCCTCAAGGCAGCTGACATCTTCCTCGAGAACGGCATCCACATCGAGTCAGGCCCGCACAAGCATGCGATCAACCAGACCTTTTTCCTCTACGTCTGGGAGCCCGGCGGCAACCGCATCGAACTCGCCAACGCCGGCGCACGCCTCCTGCTGGACCCCGACTCGCCGGTAGTGGAGTGGACGCAGGAGGAGCGAGCAAAGGGGCAGGCCTGGGGCATGAAAACGATCGAAACGTTCCACACCCACGGAACACCCGTCGTCCACCAGTGAMTEYTSFDVAHVGNVELLTPTFDKSLWFFRDLLAMRVVAEAGDSVYLRTWDEYQLYTLKLTASADAGVGRTTFRATSQEALERRVAAIEATGLGIGWVDGEVGTGPAYAFQDPDGHDMAIYYETERYVATDDKPALKNQASAFPGRGVNARRLDHINYLAKDVVANGEFVVNALRGRESERIKLNDGGYAAWWFHFNNKSYDIVYSDDWLKHGNRLHHVAFSPDTREDILKAADIFLENGIHIESGPHKHAINQTFFLYVWEPGGNRIELANAGARLLLDPDSPVVEWTQEERAKGQAWGMKTIETFHTHGTPVVHQPGPT0005055_570DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-29_046341494gabD_3COG1012Succinate-semialdehyde dehydrogenase [NADP(+)]ATGACCGACACAGTGAACACTTCAGCGCCGGTGACCACCGGCCTGTACATCGGAGGGGCCGAACGTCAGGCCGCCGCCACCCTGGAGGTGGCCGATCCGGGAAAACCGGGCGCCATCGTGGGGCATGCGGCAGCGGCAGGCCCCGCCGACGTCGACGACGCGATTGCCGCGGCCAAGGCGGCCTTCCCCGGATGGTCCGCACTGAGCGCACGGGAACGAGCGGACCAGATGCGCGCCGCCATCGAGGGAATCGCCGACTTCCGTGATGAGGACGCCGCCATCCTGTCGCAGGAGAACGGGAAGATCCGGATGGAGGCGTGGATTGACTCACTGGTGTTCGAGCTCCGGTGGAACCTTGCACTGGAGCTGGCGGACGAAGTGGACGCGACCAAGGTCCTCCCCCCGGCGCCAGGGATCCCCGTGTCCACCACGGTGGAGTACCAGCCGCTGGGCGTGGTGACGGTCATCGTGCCGTTCAATTGGCCCATCGCGATCCTCGGGGCATCACTGCCACATGCGCTTCTTGCCGGCAACACCGCTATTGTGAAGCCTCCGCCCACCACTCCGCTAGCCACTACCCGTGTGGTCCAGAGAGTCGCGGAGAAGCTTCCGCCCGGCGTGCTCAACGTGGTGACCGGCAAGGACGCGGACATGTCGGCTCTCATCACAAGCCCCGATGTTGCGAAAGTCTGCTTCACCGGCAGTGTCTCCGGCGGCAAGCGCATCATGGAGATGGCCTCCAAGTCCCTGACCCGGGTAACGCTGGAATTGGGCGGGAACGACGCGGCCGTGGTGCTGGAAGATGCCATCCTTGATGACGCCCACCTTGACCGTCTGTACGCTTCAATCTTCGACACCACCGGGCAGATCTGTATGGCCGCGAAACGGGTTTTTGTCCACCGTTCGCGCCTGGATGAGCTGGTGGCAGGACTGTCGGCCCGGCTCGAGAAAGCCGTCGTCGGTTACGGATTGGACGAGGGGACCACCATGGGACCGTTGCACCAGCCGGCCCAGAAGGCTTTCGTCACCGAGATCATCGAGGAGGCAAAGGAAGCGGGCGCCGACGTCAGGGAGTTTGGGACGCTGCCCTCTGATCCGGACCTTCGAAGCGGCAACTTCCTGCGGCCGGCGCTGGTGATCAACCCGGATCCGTCGCTGCGCGTTGTTACCCAGGAGCAGTTCGGCCCGGTGATTCCGCTTATCCCGTTCGACATCGAGGATGAGGCCATCCGTGCCGCTAACGATTCCTGGTCCGGGCTTTGCGGCTCGGTCTGGACTGCCGACCCGGAGTCGGCCAACCGCGTGGGCGGACGGCTGGTCTGCGGCTACGTCTGGGTGAATGACCACGGCGCCACGCGGCTGGACCTGCGTGCTCCCTTCGGGGGAATGAAGCAGTCCGGCATGGGCCGTGAGCAGGGCATCGAGGGAGTGCGTGCCTTCCAGGACACCCGCTCGATCGCCCACCTCGATCCCGATGCCCTGGCCGCGGGCTGAMTDTVNTSAPVTTGLYIGGAERQAAATLEVADPGKPGAIVGHAAAAGPADVDDAIAAAKAAFPGWSALSARERADQMRAAIEGIADFRDEDAAILSQENGKIRMEAWIDSLVFELRWNLALELADEVDATKVLPPAPGIPVSTTVEYQPLGVVTVIVPFNWPIAILGASLPHALLAGNTAIVKPPPTTPLATTRVVQRVAEKLPPGVLNVVTGKDADMSALITSPDVAKVCFTGSVSGGKRIMEMASKSLTRVTLELGGNDAAVVLEDAILDDAHLDRLYASIFDTTGQICMAAKRVFVHRSRLDELVAGLSARLEKAVVGYGLDEGTTMGPLHQPAQKAFVTEIIEEAKEAGADVREFGTLPSDPDLRSGNFLRPALVINPDPSLRVVTQEQFGPVIPLIPFDIEDEAIRAANDSWSGLCGSVWTADPESANRVGGRLVCGYVWVNDHGATRLDLRAPFGGMKQSGMGREQGIEGVRAFQDTRSIAHLDPDALAAGNANANANANA
D1-29_046351305yycB_3COG2807putative transporter YycBATGCCACCATCAGAGCAGGTAAGGCATCCCCGCCTCCTCCTTTTCGCCGCCGTGCTGCTGATCGCAGCAAACCTGCGCTCCACGATCACGGGCGTGGGGCCACTCCTTGCGCAGATCTCCGCAGATCTGGGCACCACTGAGGCTGCACTGGGGCTGCTGGCCGCCATCCCCCTGATTGGCTTCGCCGTGGTCTCACCCCTGGCCCACGCCCTCGGCATGCGCTTTGGCATTTCGCCTGTGGTGTTCTGGTCCCTGATCGGGCTTGGAGCCGGCACCGTGTGGCGCTCACTCCCGGGAACGAACCTGAACCTGTGGGCCGGAACGGTCCTGATCGGAGCGTCCCTCGCGGTGGCCAACGTCCTGCTCCCCGCGGTGATTAAGCATGAATTTAGCGACCGCCTGGCGGTGGTGACGGCACTTTTCACCGCCTTCCTCAGCGGCACGGGAGCACTGGCGTCGGGGATCGTGGTTCCGGTCTCGCAGGTACCTGCGGGCGAGGGAGTACTTGGTTGGCGTGGGGCGTTGCTCTTCTCGGGAGTACTGATTCCACTGGCAACCGTTGCCTGGCTCGCGGTCCTGGCGCGGAAGCGTGCCGGTGGGACCGTGCGCGTCTCCGGGCCGGATACTGGGGGGCCTGATACTGCGGGGTCTGATACGGAAGGGCCGCATGCCGTGGCGTCCTCCGCGGAACCGGGGGCAGCACAAGATAGCCGCTGGGGCGTCTGGGGCGACCGCGTCGCATGGCAGGTGCTCTCGTACATGGGGTTCCAGGCCATGACGTTCTACATGATGGTCACGTGGCTTGCCCCACTCGCACAGAGCATCGGACGTTCAGAGATAGTGGCGGGGATCGACGTCATGGTGCTCCAGGTAAGCTCGCTCGCGGGTTCACTTACCGTCCCGCTGATGCTTCGCGGGCGTTTGGCGCGGTGGACGCCCGCCCTCATCCCGGTGCTCGGCCTGGTGGCAATTATGGGACTCATCACCACGCCGGCGCTTTTCCCGGGCTGGGTGATCCTTTACGGACTCTCGTCAGGAGCATCGCTGGCGATGTCCTTCAGCCTGTTCGGCCTGCGTGCACGCACGTCCGGGGCTGCGGGGCGGTTGTCGGGCATGGCGCAGTCAGGCGGCTATGCCATTGCCGCTGTGGGTCCCGTTGCGTTCGGCAGCCTGCTTGCGCTCACTGGGGGCTGGCTCGTGCCACTGCTGCTCGTGGAGCTCACCCTCGCAGCACAGCTTGCAGTCGGCCTTTTCGTTGGGCGGGAACGGCATGTGCTGCCAACTTCCAGCTCTGCCGCCGGCTGAMPPSEQVRHPRLLLFAAVLLIAANLRSTITGVGPLLAQISADLGTTEAALGLLAAIPLIGFAVVSPLAHALGMRFGISPVVFWSLIGLGAGTVWRSLPGTNLNLWAGTVLIGASLAVANVLLPAVIKHEFSDRLAVVTALFTAFLSGTGALASGIVVPVSQVPAGEGVLGWRGALLFSGVLIPLATVAWLAVLARKRAGGTVRVSGPDTGGPDTAGSDTEGPHAVASSAEPGAAQDSRWGVWGDRVAWQVLSYMGFQAMTFYMMVTWLAPLAQSIGRSEIVAGIDVMVLQVSSLAGSLTVPLMLRGRLARWTPALIPVLGLVAIMGLITTPALFPGWVILYGLSSGASLAMSFSLFGLRARTSGAAGRLSGMAQSGGYAIAAVGPVAFGSLLALTGGWLVPLLLVELTLAAQLAVGLFVGRERHVLPTSSSAAGPGPT0005211_864DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
D1-29_04636912hypothetical proteinATGAAGGGACGTGGCATTGTGACTAAAAGCACACAGACGATCAACCGCGCGGCTTCCCGCGAACTCATGAAGGACTTCTCCCTGGAGATGACAGGCAAAGACGTGCCTTCTCTCCTCGAGGCAAGAACGCTCATTCCCCTCGGGACGAGAATCAATGTGACCTTCCTGGGGAATGAAGACCTTGAAATGCGCGTGGCCGCCGCCAAGTCGGTCCGGGAGATGGGCTTTGTTCCCGTACCCCACATCTCGGCCCGGCGGCTGGAGTCCGAGCGGCGGTTTAGGGAGTTCCTCGGCCGCCTGAAGGACGTTGACGCGGCCCAACATATTTTCGCCGTCGGCGGTGATCCCGCCCAGCCCGAGGGTCCCTACAGCGACTCCCTCTCGCTGATACGCAGTGGCATCCTCCAGGAGTTCGGAGTACGCGAAGTCGGGATCGGAGGGTACCCCGAAGGTCATCCGGACATCCCGAAGGAGGTCCTGTGGCGCGCACTGGAAGACAAGTACGCAGCGCTCCGGGACCAGGGTCTTGACCCGGTCATCCTCACCCAGTTCGCGTTCGATACCGATCCTGTGGCCGAGTGGATCGCGGAGGTTCGGGCCAGGGGCATCAACGCTCCAATCCGCGTCGGAACTCCAGGGCCGGCGGGGATCAAACGCCTCCTGGGCTTTGCCCGCCGCTTTGGCGTCGGCGCGAACGCCATGATCGTGAAGAAATACGGATTCTCACTCACCAACCTCGTCGGCGAGGCAGGGCCCGACAACTTCGTCAATGACCTTGCCGCAGTTCTCGCCCATCAATCCGCGCGCAGAGGCCCCGGCCTCCGTGGACAGGTAGGGCTGCACTTCTACACCTTCGGCGGACTGGCGGAGACGGCGGGCTGGGCCCGCCGGTTCACGGGCCGGCAGGAGTGAMKGRGIVTKSTQTINRAASRELMKDFSLEMTGKDVPSLLEARTLIPLGTRINVTFLGNEDLEMRVAAAKSVREMGFVPVPHISARRLESERRFREFLGRLKDVDAAQHIFAVGGDPAQPEGPYSDSLSLIRSGILQEFGVREVGIGGYPEGHPDIPKEVLWRALEDKYAALRDQGLDPVILTQFAFDTDPVAEWIAEVRARGINAPIRVGTPGPAGIKRLLGFARRFGVGANAMIVKKYGFSLTNLVGEAGPDNFVNDLAAVLAHQSARRGPGLRGQVGLHFYTFGGLAETAGWARRFTGRQEPGPT0008160_2629DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
D1-29_04637873purU_3COG0788Formyltetrahydrofolate deformylaseATGGCTCTGCACAGCCAAGGGCAGAGGGACCAGGCCTGTCTGATTGTCCATGGCCCCGACCGGCCAGGGATCGTCTCCGCGGTTGCGGCCTTGGTCACCCGAAACCAGGGAAACATCGTCTCCCTGGACCAGTACTCCAGCGATCCCACCGGGGGCGACTTCTTTCAGCGGATCGTCTTCAGCCGGGCTGACCTGACAGTTGCCTTGCCCGAGATCGAGGCAGATCTGGGCAGGACGCTGGAGTCATTGGGGCTGGCCTGGAACCTCACCGACCGCTCTGTTCCCAAACGCATGGCCATCATGGTCTCCACGTCAGACCACTGCCTGCTCGAACTGCTGTGGCGGCACCGCCGCGGTGAGCTGCATGTCATCATCCCGATGGTGATTTCCAACCACACAAACACCGCCGAGGACGTCCGCTCGTTCGGGGTGCCCTTCTTCCACGTGCCGTCCGCCGGCAGTGACAAGTCGCACGCGGAGGCCCAGATCCTGAAGCTGCTGGAGGGCAACGTGGATTTCGTTGTTTTAGCCCGCTACATGCAGATCCTGTCGCCGGAGTTCCTCGACCAGGTTGGCGTGCCGCTGATCAACATCCACCACTCCTTCCTGCCCGCTTTCATCGGGGCGGCCCCCTACCGCAAAGCCAAGGAGCGCGGCGTGAAACTGATCGGCGCAACGTCGCACTACGTGACCAAGTACTTGGATGAGGGGCCAATCATCGAGCAGGACGTTGCCAGGGTGACACATGCCCACACCGCCACCGATCTCCAGGCCCGTGGCGCGTATGTGGAACGTGCCGTCCTTTCAAGGGCTGTCGAATGGCACGCCGACGACCGGGTCATCCGGCACGGCAACCACACCATCGTCTTCTGAMALHSQGQRDQACLIVHGPDRPGIVSAVAALVTRNQGNIVSLDQYSSDPTGGDFFQRIVFSRADLTVALPEIEADLGRTLESLGLAWNLTDRSVPKRMAIMVSTSDHCLLELLWRHRRGELHVIIPMVISNHTNTAEDVRSFGVPFFHVPSAGSDKSHAEAQILKLLEGNVDFVVLARYMQILSPEFLDQVGVPLINIHHSFLPAFIGAAPYRKAKERGVKLIGATSHYVTKYLDEGPIIEQDVARVTHAHTATDLQARGAYVERAVLSRAVEWHADDRVIRHGNHTIVFPGPT0008155_1510DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
D1-29_046381413ligM_4COG0404Vanillate/3-O-methylgallate O-demethylaseGTGGCACCGAAGAATCTGCAGGAAGTCCTCGACTCGTCCAGCGGCGCAGTGGATTTGCTCCGCAACTCACAGATCGGGTCCTACATCTACCCCGTGGTTCCGGCCGACTTCCAGAACTGGATCAAGGAGCAGACCGCGTGGCGCTCGACCGCTGTGCTCTTCGACCAGTCCCACCACATGGACAACCTGATCATGAAGGGTCCGGACGCTATCAAGCTGATCTCGTCGACGGCCATCAACTCCACGGCAGTGTTCCCCGTCAACAGGGCTAAGCAGTACGTCCCCACCACCGAGTCCGGACACGTCATCGGCGATGGCATCCTCTTCCGCCTTGCCGAGGAGGAGTATGTCTACGTGGGACGCGCACCTGCCGCCAACTGGCTGCTTTACCATGGCGAAACCGGCGGCTACCCGAACCTGGACATGACCATCGACCGCCGTTCGCCGTCCCGGCCCTACGGCCAGCAGGTCACCCGCCAGTACTACCGATTCCAGATCCAGGGGCCGAACGCCTGGCAGGTCATCGAAAAGCTGAACCGCGGCCCGGTGGAGCAGCTGAAGTTCTTCAACATGTCCAACATGACCATCGACGGGACAAACGTCCGCACCCTTCGCCACGGTATGGCGGGCGCTCCGGGTCTTGAAATCTTTGGGCCCTATGCCGACCACGGGCGTATCAGGGAGGCGATCATGGAAGCCGGCGCCGAATTCGGGCTGGTGCCGGTCGGTTCGCGGGCCTATCCCTCCAACACCCTCGAGTCCGGCTGGATTCCGTCTCCCTTGCCGGCCATCTACTCAGGCGAAGCGGAGCGCGGCTACCGCGAGTGGCTTCCCGCGGACGGATACGAGGCCACGGGAACACTGGCGGGATCGTTCGTGTCCGGGAACATCGAGGACTACTACCTGACTCCCTGGGAGCTTGGCTACGGCACGTTTGTGAAGTTTGACCATGACTTCATCGGCCGCGATGCCTTGGAGCGGATGGACCAGGATTCGCAGCGCAAGAAGGTCACCCTTGCCTGGGACGGCGACGACGTCACGTCGATCTTCGCATCGCTGTTCAAGGGGGAAGGACCGAACTACAAGTTCTTCGACCTGCCCCTCGCCAACTATGGTTCGGCGAACTACGATTCCGTCATCGACGCCGACGGCACGGTGGTGGGGTACTCCATGTTCACCGGCTACAGCGCGAACGAGCGGCGCGCGCTCTCGCTCGCAACCATCGACCCCAACGTGCCCGAAGGCACCGAACTGAGGGTGGTGTGGGGCGAACCCGACGGCGGCACCGCTAAGGCGGCAGTGGAACCGCACGTTCAGACCGACGTACGGGCGGTGGTCAGCCCCGTGCCATACTCGGCCGTCGCACGCGCCAGCTATCGTGGCGGGTGGCGGACCAACTATAAGTCGGCCTAGMAPKNLQEVLDSSSGAVDLLRNSQIGSYIYPVVPADFQNWIKEQTAWRSTAVLFDQSHHMDNLIMKGPDAIKLISSTAINSTAVFPVNRAKQYVPTTESGHVIGDGILFRLAEEEYVYVGRAPAANWLLYHGETGGYPNLDMTIDRRSPSRPYGQQVTRQYYRFQIQGPNAWQVIEKLNRGPVEQLKFFNMSNMTIDGTNVRTLRHGMAGAPGLEIFGPYADHGRIREAIMEAGAEFGLVPVGSRAYPSNTLESGWIPSPLPAIYSGEAERGYREWLPADGYEATGTLAGSFVSGNIEDYYLTPWELGYGTFVKFDHDFIGRDALERMDQDSQRKKVTLAWDGDDVTSIFASLFKGEGPNYKFFDLPLANYGSANYDSVIDADGTVVGYSMFTGYSANERRALSLATIDPNVPEGTELRVVWGEPDGGTAKAAVEPHVQTDVRAVVSPVPYSAVARASYRGGWRTNYKSAPGPT0005520_23DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005520-ligM-K15066NANA
D1-29_04639621hypothetical proteinATGAGCCTGCGATACGCGCTGCTTGCATTGCTTCGCGTGGGCCCGCTCTCCGGCTATGAACTGCAGAAGCAGTTCTCCATGTCGGTGGGTCACGTGTGGCATGCGCCTGACTCGCAGATCTACCCCGAGCTTCGCAAGATGGAAGCTGAGCACCTCATCGAGGGTGAGGAGCAGCCACGGGGCCAGCGTGCCACCAGGCGCATCTATCACGTGACCGACGCCGGGGAGCAGGCCTTCCTCGCCTGGATGCACACGCCCCTGGAATACGCGCGGGTCCGGGACCCGGCCCATCTCCGGGCTGCCTACCTGGAGGCGGCGGCTCCCGAGGCAGCCCGGGACTTCTTCCGTTCGCACATCGCGCAGTGGGAGAGCGAACTGGCCCAGTGGGAGGGCGAACTCCTGCGCATCGCTGAAATTGCCAACCCGATGCTGGTGCGGCGGCTGGCAGTCACAGCACCAGAGGACCGTGACCGGACCATCGCGTTCAAACGCTTTACGTACGAGGGCCTTGTTGACCGGGCCCGGGGCGAAATCGCGTGGGCGAAGCGCGGACTCAAGCTGATCGATGAGCTGGCAGAAGCGGACGGCGTCTGGGCTGACCAGAACGCCGCCCGCGTCTAGMSLRYALLALLRVGPLSGYELQKQFSMSVGHVWHAPDSQIYPELRKMEAEHLIEGEEQPRGQRATRRIYHVTDAGEQAFLAWMHTPLEYARVRDPAHLRAAYLEAAAPEAARDFFRSHIAQWESELAQWEGELLRIAEIANPMLVRRLAVTAPEDRDRTIAFKRFTYEGLVDRARGEIAWAKRGLKLIDELAEADGVWADQNAARVPGPT0025575_42DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR|BF-CELL_DENSITY_REGULATIONCE-QSR|BF-BIOFILM-LOW_CELL_DENSITY_REGULATOR,PGPT0025575-aphA-K10917NANA
D1-29_046401257hypothetical proteinATGAAGATTAGAAAAAAGCCAGACGGGGTCCTCGGTATCGTCGCGATGGCGTCGATCATCGCGCTCTCCCTTGCAGGCTGCGCCCGTGACGGCGCCGGACAGGGTAACGGCTCCGGGGCAAGCCCCGGCATCACCGACACCGCGATCACGCTGGGTGTTACCACTCCGCTCAGCGGCCCCACAGCCGGGCCCGGAACCTGTACCGTCGCGGGCCTCGCAGCCTACTTCGGCTCCGTGAATGCGGCCGGTGGCGTGAAATTCGGCGACGGCAAGACGCGCACAGTCGAGATCAAGTCCTACGACGACGGATATGATCCGCAGAAATCGCTGTCGAACTTCCAGCAGATGGTCTCCGACAACGTTTTTGCCGTCACATCCGGCCTCGGTACTCCCACCAACCGCGCCTTCCGTGATGCCGCCATCAGCCAGGAGGTCCCCCAGGTGCTGGTGATGACCGGTGACCCACTGTTCAGCGACCGGGATGAGAGCCCGTGGCAGCTGGGGTTCGTGCCGATCTACCAGAATGAGGGCTCTGCCTTCGGCAAGCTGCTCGCAGAGTCAGGCAATCAGCACAAGGTAGCCATCCTGTCTCAGAACGACGACTACGGCAAGGGCTACGTTTCGGGATTCAAGGATGCCGTCAAGGACGCATCCAACGTCTCGGTCGTGGGAGAACTGACGTACGAAGCGACTGACACATCAGTAGACGCCCAGCTCACCCAGCTCGCCGCCTCAGGCGCCGATGTCTTCTTCAACGCGATGTCCATCACTCCGCTGGTGATCTCATCGCTCCAGAAGGCGCAGCAGATCGGCTGGAAGCCCAGCTGGTTCCTCCCGTCCAATACATCAAGCCCGACGGCGATCCTCCAGCCCGGTGGTGCGGCGGCATACCCCGGCATCTACTCGGTGTCGTTCTCTAAGGCGCCGCAAAGCCCGGCCTTCGCCCAGGATGAGGACGTGGTCAAGTTCCTGGCGGACCTCAAGCAGTACGGCAACTACCCGGATATGCCGGCCTTCCCGCACTGCATGTGGAGTTACATGGTGGGAGCAACGCTCGAGGAAGCCTTCAAGAAGATGACCGAACCGACGCGTGAGGACTTTATGGCCAAGCTGCGGGACATCAAGGGACTGCAGGCTCCACTGATGCTGGAAGGCACGGCCGTGGACACTACAGTCGACGGTCAGCCGGCAGTATCTTCGGTTCTCGTGCAGAAGTACGACGGGAGGGGATACAGCACGGTGGAGAACTTCGGCTAGMKIRKKPDGVLGIVAMASIIALSLAGCARDGAGQGNGSGASPGITDTAITLGVTTPLSGPTAGPGTCTVAGLAAYFGSVNAAGGVKFGDGKTRTVEIKSYDDGYDPQKSLSNFQQMVSDNVFAVTSGLGTPTNRAFRDAAISQEVPQVLVMTGDPLFSDRDESPWQLGFVPIYQNEGSAFGKLLAESGNQHKVAILSQNDDYGKGYVSGFKDAVKDASNVSVVGELTYEATDTSVDAQLTQLAASGADVFFNAMSITPLVISSLQKAQQIGWKPSWFLPSNTSSPTAILQPGGAAAYPGIYSVSFSKAPQSPAFAQDEDVVKFLADLKQYGNYPDMPAFPHCMWSYMVGATLEEAFKKMTEPTREDFMAKLRDIKGLQAPLMLEGTAVDTTVDGQPAVSSVLVQKYDGRGYSTVENFGPGPT0020765_2717DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-29_046411077hypothetical proteinATGCCTGCCATGTCCAGCGTTCTTGCCAAGAGATCCACCCGCGTCATCCTCATAGCGGTGGTGGCCATCGCCCTGATCGTTGCCCCACTCATCCTCCCGGCATTCACCAACCAGACGCTCGTGCGCATTGGTGTGTATGCCGTGGCGGTACTGGGACTGAACATCGTCATGGGCTACACGGGGCAAGTAAACCTTGGACAGATCTTCTTTGTCGGCCTCGGGGCCTATGTCACAGCCTACGGAGTCAACCACGACTGGAACATCATCGTGGTGTTCGTCGCGGCGTGCGTCGTTCCGGGCATCGTAGGGCTGCTGGTGGCCCTGGCTGCAGCCCGGCTTGGTGGCCTGGCCATCGCTATGGTCACCATCGCCCTGCCGATTGTCGGCGTCCCGCTGGCCAAACGCCTTGATGAATTCACTGGCGGCTCCCAGGGGATCTCGGCCCGCTTCACCGATGCGCCGGACTGGTCGGGGCTGTACAACGACCAGTGGCAGTTCTACATCGTCTTGCTGGTGACGGTTGCCGCGTTCCTGCTGGGCCGCAGCCTGGTAACCGGCAAGTACGGCCGGGCGTTCGGTGTGGTGAAGGAAAACGAAGCCGTGGCAGCGTCCATGGGCATCTCGCCGTACCGCACCAAGGTGCTCGCCTTCACTGTCGCCTCCATATTCGGCGGGGCGAGCGGCTTCCTTTACCTTGCGGCGGTGCAGTACACATCGCCCGAGACCCTCAGCTTCGGCCACTCCATCGGCCTGGTGGCCGCGATGGTCATCGGCGGCGCGGGAAGCATCATCGGCGCGCTGATCGGCGGCGCCTACTACGTTTTCGTCCCGCAGCTGACGAACGCCATCGATCCGAACTTAACCACCATCAGCCAGGGCGCGATCCTCCTCGTGGTGCTCTTCCTGCTGCCCCAGGGACTGGTCAGTCTTCCACGTGTGATCCGCTGGCTGCTCCGCCGGCGCACGTCCCGCTCAGCACTACCGGGGAATCCCCCGCAGAACTCTCCTGTGCATCAGCCCGCTCCCGGGGCCGCGCCGGAGGGACTCGAAAAAACAGAGAGGCAAGATCGATCATGAMPAMSSVLAKRSTRVILIAVVAIALIVAPLILPAFTNQTLVRIGVYAVAVLGLNIVMGYTGQVNLGQIFFVGLGAYVTAYGVNHDWNIIVVFVAACVVPGIVGLLVALAAARLGGLAIAMVTIALPIVGVPLAKRLDEFTGGSQGISARFTDAPDWSGLYNDQWQFYIVLLVTVAAFLLGRSLVTGKYGRAFGVVKENEAVAASMGISPYRTKVLAFTVASIFGGASGFLYLAAVQYTSPETLSFGHSIGLVAAMVIGGAGSIIGALIGGAYYVFVPQLTNAIDPNLTTISQGAILLVVLFLLPQGLVSLPRVIRWLLRRRTSRSALPGNPPQNSPVHQPAPGAAPEGLEKTERQDRSPGPT0020775_3753DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-29_04642882livH_2COG0559High-affinity branched-chain amino acid transport system permease protein LivHTTGGGCACCTTCATACAACTCGTAGTCGACGGGCTCGCCACCGGCTCAATTTACGCGGCGTTGGCGCTCGCCATCGTGCTCGTGAACCAGGCGACCGGACTGATCAACTTCGCCCAGGGCGGCATGGCCGTGCTGTCGGCTTACATCGCCTACGCTTTCACGCAGCTCGGCCTGCCGCTCATCCTCGCGATCCTGGCCGCGGTGGTGATTTCGTTCCTTATCGGCGCGGTGATCGAGCGGTTTCTCATCCGCAGGTTCGAGGGAGGCGAGACCGACACGGCCGTGGTGGTCACCATCGGCCTGCTGACCCTGGTCACCGGCATCGCTGCCGTCCTGTGGGGTTACAACAACCTGGCGTTCCCTTCGCTTTTCCCGCTGGACAGCGTGGAGCTCCTCGGTGCTGTGGTGAGTGTGCGGTCGCTGGCGACAACGGTGACAATTGTGGCCATCATGGTGGTTCTGCAGGTGCTCTTCCTGCGTACCAAGCTGGGGCTCGCGCTGCGGGCCGTTGCCGACAACCCGGGCTCCGCTGCCTTCTCGGGCCTGCCCGTCGGCCGGCTCCTGATGGTGGGCTGGGGGCTCGCCGCGGTTCTGGGCGCGATCGCCGGCGTCCTCGTCGCCCCGCAGCTGACCCTCACCCCCGGCATGCTGGATACGGCACTCGTCTACGCGCTCGCCGCCGTGATCCTCGGTGGCCTCAGCAGTCCGATCGGATGTGTGGTGGCCGCTTCCGCCATCGGCGTGCTTGAAAACCTCGTGGCCGTTTACGTGCCGCTCATCGGCCACGACCTCAAGATTGCCGTGCCGTTTGTGCTGATCTTCGTCATCCTCGTCATCCGACCCCAAGGACTGTTCGGGCGAAAGGTCGTGGTGAGGGTCTGAMGTFIQLVVDGLATGSIYAALALAIVLVNQATGLINFAQGGMAVLSAYIAYAFTQLGLPLILAILAAVVISFLIGAVIERFLIRRFEGGETDTAVVVTIGLLTLVTGIAAVLWGYNNLAFPSLFPLDSVELLGAVVSVRSLATTVTIVAIMVVLQVLFLRTKLGLALRAVADNPGSAAFSGLPVGRLLMVGWGLAAVLGAIAGVLVAPQLTLTPGMLDTALVYALAAVILGGLSSPIGCVVAASAIGVLENLVAVYVPLIGHDLKIAVPFVLIFVILVIRPQGLFGRKVVVRVPGPT0020770_6289DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-29_04643711livF_3COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGACGCTACTTGAACTTGCCGGTGTGACCGCTTCCTACGGACCTGTCCAGGTGCTCGACGGGGTGGAGCTGAGCGTGCCCGAGGGTGGCTCGGTGGGGATCCTCGGCGCAAACGGGGCAGGCAAAACGACGACGCTGCGCGCCATCAGCGGCACGGTGCGCACCGGTGGACGGATCAGGTTCGAGGGACGCGACATCCGCGGTTTGCGCCCCGATCAAGTGGCATCGCTGGGGGTCGCCCATGTTCCGGAGGGCCGCGGAACCCTCGGCCAGCTGAGCGTGCGGGAAAACCTCCTGGTGGGCGCCTATCTCCGCAAGGACAGGAAGGCGATCTCCGGCGATATCGAGTACTGCCTTGACCTGTTCCCGCAGCTGCAGGACCGGGTGGGTTCGCGCGCGGCGTCACTTTCTGGCGGTGAGCAGCAGATGCTTGCGGTAGCCAGGGCCTTTATGGCCAAGCCCAAGCTGCTGTTGCTCGACGAAGCATCCCTCGGACTTGCACCGAGCACATCAAAGGCTGTGTACCAGGCAATCAGGCGGCTGCGGCTCGAGTCAGGCATTGCCATGCTGGTGGTGGAGCAGAACGCCAATCTCGCGTTCTCCCTGGTTGATACTGCCACCGTGCTTGAAACGGGGCGCAACGTGCTAACGGGAACTTCGGCTGAACTTAAGGGCATGGACGAGATCCGCCGTGCCTACCTGGGGGGCTGAMTLLELAGVTASYGPVQVLDGVELSVPEGGSVGILGANGAGKTTTLRAISGTVRTGGRIRFEGRDIRGLRPDQVASLGVAHVPEGRGTLGQLSVRENLLVGAYLRKDRKAISGDIEYCLDLFPQLQDRVGSRAASLSGGEQQMLAVARAFMAKPKLLLLDEASLGLAPSTSKAVYQAIRRLRLESGIAMLVVEQNANLAFSLVDTATVLETGRNVLTGTSAELKGMDEIRRAYLGGPGPT0020785_6348DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-29_04644786araGCOG1129Arabinose import ATP-binding protein AraGGTGGTGGCCGCAAGCCTGAGCCTCAAGGGAGTGGACCTCCACTTCGGCGGCGTCAAGGTTCTGCAGGAAGTGACCTTTGATGTCGAACCGGGAGTGATCTTCGGCCTGGTGGGGCCCAACGGCGCCGGCAAGACTTCTCTTTTCAACTGCATCAGCGGCCACTACAAGCCCAACGCCGGATCGATTACCATCAGCGGCACAGAGGTGCTGGGGAGTGCCCCCTACCGCCTGGCGCGCCTGGGGCTGGCACGCACTTTCCAGCAACCCGCACTGGAGTTGCACGCCACCGTCCTGGAGAATGTGCTGCTCGGAGGGCACATCAGGCTCCCCGGCGGGCCTGTTGCGTGGTCGCTGCGGCTGCCGTTCACGGTGCGGGCCGAGCAAGGAATCCGGGCGGAAGCACTCGAGCTGCTCAACCGGGCCGGGCTGGGCTGGGCCTCCAATCTGCCGGCCGGGGAGCTTTCGCATGGCCTGCATAAGGGCGTGGAGCTCTGGCGTGCGCTGCTCTCCAAGCCGGCGCTCCTGCTGCTGGATGAACCTGCCGCGGGACTCTCGCATGGCGAGGTGGAGCAATTCATCAAGACCGTGCGGCGGCTCCGGGCCGAGCAGGACATTACGATCATCATCGTCGAGCATCACATGGGGCTTATCTCCGCCCTCACCGACCGCGTGGTGGTGCTGGACCATGGACGCAAGCTCATGGAGGGCACTGCTGCCGAGGCGCAGTCCGACGCCCGGGTGATCGAAGCCTACATCGGGAAGGATGCGGCGGATGACGCTACTTGAMVAASLSLKGVDLHFGGVKVLQEVTFDVEPGVIFGLVGPNGAGKTSLFNCISGHYKPNAGSITISGTEVLGSAPYRLARLGLARTFQQPALELHATVLENVLLGGHIRLPGGPVAWSLRLPFTVRAEQGIRAEALELLNRAGLGWASNLPAGELSHGLHKGVELWRALLSKPALLLLDEPAAGLSHGEVEQFIKTVRRLRAEQDITIIIVEHHMGLISALTDRVVVLDHGRKLMEGTAAEAQSDARVIEAYIGKDAADDATPGPT0020780_4251DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-29_046451353desASyringate O-demethylaseATGACAAACCAGAGCCTTCAGTCCGCCATTGACCAGCAGGGCAGCGCCGTCGAGGTGTTGCGTAATGCATACTCCAGGCCCTTTACCTTCCCGGTGACCCCTGAATTCACGAATTGGCGAAGCGAACAGGCGTCGTGGCGGGATTCGTGCGCCCTGCTGGACCAGTCGCACCACATGGCGGACCTCTTCGTCCGCGGCCCCGATGCAAGAAGGTTCTTCACCTGGATCGGGACGAACTCCGCCGCCGGCTACCAGGTGGGGAGGGCGAAGCAACTGGTAGCCGTTAACCACGACGGGTACCTCATCGGTGACGGCATCCTGTTCCACCTCGGCGAGGACTCGTTCGACTTGGTGGCCCTTCCCATGCTGAGTGATTGGGTCGAATACAACATCTCCTCCGGCGACTGGGACGTCACCCTCGAGCGCGACGACCACTCGCTGATCAGGCAGGGCGATCCGAAACTCTTCCGGTATGAGCTGCAGGGGCCGAACGCGCTCGCGATCATCGAGAAGGTCACCGGCAAGCCGGCACCTGAGCTCAAGTTCTTCCATATGGGTGAAATCGACATTGGCGGACGCCCCGTGGGCGTCCTGCGCCACGGCATGGCGGGCCAGCCGGGCTTCGAGCTGTGGGGCCCGTGGGCCGACGCGGCCGCGGTGCATGCGCAACTGCTGGCCGACGGGGAGGAATTCGGCATCACTCCGGTGGGGGCCAAAGGATATTCGTCGGCCAACCTGGGCTCCGGATGGGTGCCCTCCCCGCCGCCGGCGATCTTCCAGCCTGAGCTCCAGGCATACCGCGAATGGCTGGACGTGTCGAAGGCCGGTTCATTGGGAGGCAGCTTCTACTCGACTGACATCACTGACTACTACGTCACTCCCTACGACATCGGGCTCGGCCGTTCGGTGTCCTTCGACCATGAATTCCTCGGCAAGGAAGCCCTGCAGCGGCACTCCGAAGACAAGCGGCGCACCAAAGTTACGCTCGTGTGGAACAACCACGACGTGAAGGATGCGCTCGGATCCATCCTGGGCGAAGGCACTCCCGCCAAGTACATCGAGCTTCCCAAGTCGCGCTACGCGCTGTACCAGACAGACCGGGTCCTGAAGGAAGGCGAGACCGTCGGAATGTCGCTCGACGTCGGCTACCTCGCCAATGAGCAGGCCTTCCTCTCCCTGGCGACGATCGACGTCGAGCACTCCCAGACCGGAACGGAGGTGGTGGTGGTCTGGGGCGAGGAGCCAAACTCCCGCAAGGTCCAGGTGGAGCGGCACCGCCAGGTGGAGATCAGGGCAACGGTTGCTCCGGCACCGTACAGCGAGTTTGCGAGGGCCGGTTACCGGGCCCCGTAAMTNQSLQSAIDQQGSAVEVLRNAYSRPFTFPVTPEFTNWRSEQASWRDSCALLDQSHHMADLFVRGPDARRFFTWIGTNSAAGYQVGRAKQLVAVNHDGYLIGDGILFHLGEDSFDLVALPMLSDWVEYNISSGDWDVTLERDDHSLIRQGDPKLFRYELQGPNALAIIEKVTGKPAPELKFFHMGEIDIGGRPVGVLRHGMAGQPGFELWGPWADAAAVHAQLLADGEEFGITPVGAKGYSSANLGSGWVPSPPPAIFQPELQAYREWLDVSKAGSLGGSFYSTDITDYYVTPYDIGLGRSVSFDHEFLGKEALQRHSEDKRRTKVTLVWNNHDVKDALGSILGEGTPAKYIELPKSRYALYQTDRVLKEGETVGMSLDVGYLANEQAFLSLATIDVEHSQTGTEVVVVWGEEPNSRKVQVERHRQVEIRATVAPAPYSEFARAGYRAPPGPT0005520_131DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005520-ligM-K15066NANA
D1-29_04646195cysOCOG1977Sulfur carrier protein CysOGTGGCGAAGCTGCTGGACTCGGTGACCGGGAACTACCCGGTGCTGGCAAGGCGCCTGCGGGACGAAACCGGGGCGTTGCGCCGTTACGTGAACATATACGTCAACGGTGACGAGGTGCGGCGGCTGCAGGGACTTGAAACCGAGGTGGCTGCCGGCCAGGAAGTGCTGGTCATCCAGTCAGTCGCGGGCGGCTAGMAKLLDSVTGNYPVLARRLRDETGALRRYVNIYVNGDEVRRLQGLETEVAAGQEVLVIQSVAGGNANANANANA
D1-29_046471107hypothetical proteinATGGGGTGCATGTCAACTGCAGAGAGTTATGTCCTGGCGATCGGAACCAAAAAAGGCCTGTGGCTGGCTACCAGCCCTGACCGTAAGGACTGGTCCTTTTCCGGACCGCATTTCCTGATGAGTGAGATTCCCAGCATTGGCATCGATACGCGGGACGGCCGGACCCGGATCATGGTCGGCGTGAGGTCCGAGCACTGGGGCCCCACGGTGGCGCACTCGGATGACTTGGGCGCGTCCTGGACGGAGCCTGAACAAGGTGCGATTGGCTTTCCTGAGGATACGGGCGCGGCCTTGGAACGAATCTGGCAGATCTACCCCGACGCAGAGTCGCGGCCCGGGGTGGTATGGGCAGGGGCCGAGCCGATTTCCGTGTGGAAATCCACCGACGGCGGAGAACACTTTGAGCTGAACCGGGGGCTCTGGGACCACCCCCACCGAAGCGAATGGGGCGCGGGCTTTGGGGGAGCGGCAGCCCATTCCATTGTGGTGAACCCTGCCGGGGATAACGTGCACGTCGCCATGAGCACCGGCGGAGTTTACCGTTCGCTCGACGGCGGGACGTCCTGGGAGCCGAGGAATAAGGGAATTTCCGCGTACTTTATGCCCGATCCAAACCCGGAGTTCGGACAGTGCGTGCACAAGATAGCGGCGGATGCCGCCGTCGAAGGCCGTCTTTATGCGCAGAACCATCACGGCGTCTACCGCACCGATGACAATGGCGAAAACTGGGAGTCCATCGCGGAAGGCCTGCCTGCTGACTTCGGCTTTGTGATGCTGACGCACCCGCGCCGTGAAGGAACGGCGTGGGTTGTGCCACTGAAGGCCGACGGCGAGCGGATCCCGCCGGACGGGCAGCTCGCGGTTCACCGCACGGACGATGCCGGGGCCAGCTGGAAGCGGCTGGACTCCGGGCTGCCGGAAAACGAGTACAACAGTGTGCTTCGCGATGCCGCCTCAGTGGATGCCGCGGAACCGGCGGGCGTCTATTTCGGCACGCGCGGCGGCACGGTCTATGCCAGCGCGGATGAAGGGGAGACCTTCACGGAGGTGGCGGCACACCTTCCCGATGTCCTCTGTGTGCGGGCAGCCGTGGTGGCCGGTGCCTGAMGCMSTAESYVLAIGTKKGLWLATSPDRKDWSFSGPHFLMSEIPSIGIDTRDGRTRIMVGVRSEHWGPTVAHSDDLGASWTEPEQGAIGFPEDTGAALERIWQIYPDAESRPGVVWAGAEPISVWKSTDGGEHFELNRGLWDHPHRSEWGAGFGGAAAHSIVVNPAGDNVHVAMSTGGVYRSLDGGTSWEPRNKGISAYFMPDPNPEFGQCVHKIAADAAVEGRLYAQNHHGVYRTDDNGENWESIAEGLPADFGFVMLTHPRREGTAWVVPLKADGERIPPDGQLAVHRTDDAGASWKRLDSGLPENEYNSVLRDAASVDAAEPAGVYFGTRGGTVYASADEGETFTEVAAHLPDVLCVRAAVVAGANANANANANA
D1-29_04648342hypothetical proteinTTGTCGGATGCCCGGCCTGAACGCGAACAGAAACTGCGGAGCCTCCCAGGCCTTAAAGCGCGTCCGGAACCCCTCATCTTTCCCTTGTACGCAGCCATGCCCGCGCCTAACGTGGAGACATATGAAAGGTGCGTGAACGGCATGGAAATCTTCATGTGGTGGCTCGATCTGGATCTGGCAACGAAGGAATGGCTCCGGGAGAATCTGCGCGCCGAGGAGTTGCCCCTCCCAGTGCTCCAGGGCATCGCCGAGGCAGGCGGACCACATCCGGATAACCCCGTCTCGGTCCTCACCGAAGCCGACTGGGATTTCATCGAGACCCAGTCTGAATTCGTGGACTGAMSDARPEREQKLRSLPGLKARPEPLIFPLYAAMPAPNVETYERCVNGMEIFMWWLDLDLATKEWLRENLRAEELPLPVLQGIAEAGGPHPDNPVSVLTEADWDFIETQSEFVDNANANANANA
D1-29_04649900hypothetical proteinATGAAACGAACTTCTGCAACCCTGGCGGTGGTGGGGCTGGGACTAATCAGTGTCACCGCCCCCGCCAGCGCCGCTCCGAATATGGTCACCGTCTGCCATGACGGGTCAGACACGGGTACGGGCTGGAACCCAATGCAATTCAATGTGAACGGCTTGAACGGCCACGACGGGCATCCCACCGACATCATTCCGCCTAACAATTCCATTCCGGGCGGCCTGAACTGGACGAATTCGGGAAAGATCATCTACATCGCCAACTGCGCCCCGTTGCCGCCGGGTGAGACGCCGCCGGTCTATCCTCCTGTGGAGGAAGAACCAGTCGTTCCCCCCGTCGAGGAAGAACCAGTGGTCCCCCCGGTCGAGGAAGAACCAGTCGTTCCCCCCGTCGACGAAGAACCAGTGGTCCCCCCGGTCGACGAAGAACCAGTGGTCCCCCCGGTCGACGAAGAACCAGTGGTCCCCCCGGTCGACGAAGAACCAGTCATTCCCCCCGTCGATGAAGAACCAGTCGTTCCCCCGGTCGACGAAGAACCAGTCATTCCCCCCGTCGACGAAGAACCAGTCATTCCCCCCGTCGACGAAGAACCAGTGGTCCCCCCGGTCGACGAAGAACCAGTCGTTCCCCCGGTCGAGGAAGAACCAGTGGTCCCCCCGGTCGACGAAGAACCAGTGGTCCCCCCGGTCGTGAACCAGCCTGTAGTGGCTCCAGCTGCTCCTGCCGCCGCTGTTGCCGCCACCGGCATCCAGAGCAGAAATCGGGGCTTCAACGCACAGACGGCAATCGGCGAAGCCACCGATACCGCACCAACCTGGTTGGGAGGCCTGGGCGTGATGGTTGCGGCAGTTATGGCAGTTACGGTCCGACGTCGGGTTCGCTCAGAAGCACCAGCCGTCCGATAAMKRTSATLAVVGLGLISVTAPASAAPNMVTVCHDGSDTGTGWNPMQFNVNGLNGHDGHPTDIIPPNNSIPGGLNWTNSGKIIYIANCAPLPPGETPPVYPPVEEEPVVPPVEEEPVVPPVEEEPVVPPVDEEPVVPPVDEEPVVPPVDEEPVVPPVDEEPVIPPVDEEPVVPPVDEEPVIPPVDEEPVIPPVDEEPVVPPVDEEPVVPPVEEEPVVPPVDEEPVVPPVVNQPVVAPAAPAAAVAATGIQSRNRGFNAQTAIGEATDTAPTWLGGLGVMVAAVMAVTVRRRVRSEAPAVRNANANANANA
D1-29_04650771hypothetical proteinATGGGAAAGCATCGGGAATCCACAACAAAACGCCGGCGCCGCTTTAGCCGCGCAGATGCAGCCATCCTGTTGTGCGGGATCCTGGGGTTTCTTTCCCTCACGTTCGGTGCACCGCTCCTCCAAGCGGGAGAACCTGGCGCGGGCGGAACGGCCGCCACGGTCGAGTCGCCAGGAACGACGTCGTTTATTGAGTGGCCGGAATCCGCTGGCGCCACCCAACCGGTGGCCAGGCCTGCAGCACCGACACAGGAGGCTTCTGGTCCCCCGGACCCGGTAGCTGCGGTGGCAGCTGAGCCTGCACCAGCACCCGCCGGTCCCGTTCTTCCCGATGCCTCCGCACCCGTCCGTATCCAATACGCAGCCGCAGCTATCGATACCGCCGTCCATCCTCTTGAGCCGGACAACTCCGCCATGGCCAGCCAGACCATCGTGCCACCCACCACCATGGACGGATACTGGCTGATGCCCTTCGGCGCGCCGGGAAACGGGTCAACAAACACGACGTACATCATTGGCCACAGCTGGGAAGGCCGTGATGCCCCTTTTAACCACCTCAGCTCGGACGCGGCGGTGGGCGACGAGTTCGATGTGGTGACCGGCAACGGCACCATCCGCTATCGCGTGGACAGCGTCACAACGTACGTCAAGGCCGCCCTGAAGGACAGCCCCATCTGGGACATGGTGCCCAATCGCATCGTGCTGATCAGCTGCTACACGGAAGACCCATGGGGAAAGAATGTGGTGGTATCGGCGTCGCCCGCTGTTGCCTGAMGKHRESTTKRRRRFSRADAAILLCGILGFLSLTFGAPLLQAGEPGAGGTAATVESPGTTSFIEWPESAGATQPVARPAAPTQEASGPPDPVAAVAAEPAPAPAGPVLPDASAPVRIQYAAAAIDTAVHPLEPDNSAMASQTIVPPTTMDGYWLMPFGAPGNGSTNTTYIIGHSWEGRDAPFNHLSSDAAVGDEFDVVTGNGTIRYRVDSVTTYVKAALKDSPIWDMVPNRIVLISCYTEDPWGKNVVVSASPAVANANANANANA
D1-29_04651519hypothetical proteinATGACTCCAGAACGTTTCAACGCATCGGCTCCGCTGCTGGTGGGGGTTGTGCCGAACCAGCATCCGGAGGTTCTTCAGACTGCGGCAGCCCTCGCAGTCAAGCTCTCAACTCCGCTCGTGTGCGCCTATGTGGATGAAGCAAGCTATCTGGTGGAATGGGACCCGGCCAGGTCAGCGCACCGGCTGTCCCTGCATCCGGACAAGAACGACGACGACATCCGGGCGGTGACCGTGGAGCTCGGGGCCGTGATCGAATCCGCAATGAACGATGCGGCCACAGGAGGTCCCCCACCGGAATGGAGCCTGCGCACCCTGGCAGGGGATCCTGCCCGGGCACTTGCCCGGCTCGCCGCGGAAAGCAACGCCCCGATGATCATTGTGGGAACGTCCGAGCGCGGGCTGGTGCACAAGATTTCCGAAGTCCTGACCGGCTCGGTGGGAGCGTGGCTGACCCATCATCAGAGCAAACCGGTGCTGCTGGTCCCCTATCGGATGCCAGCCCATCAGGATGGATTGTGAMTPERFNASAPLLVGVVPNQHPEVLQTAAALAVKLSTPLVCAYVDEASYLVEWDPARSAHRLSLHPDKNDDDIRAVTVELGAVIESAMNDAATGGPPPEWSLRTLAGDPARALARLAAESNAPMIIVGTSERGLVHKISEVLTGSVGAWLTHHQSKPVLLVPYRMPAHQDGLNANANANANA
D1-29_04652354ricRCOG1937Copper-sensing transcriptional repressor RicRATGAATACACCGGAAGAAGCCGCCCAAGTGCTGCCTACCGCTGAATCGCAGCCGGAGCACGCACACGGCTATACAGGAAATAAAGAGGCTTACCTCCGCCGTTTGAAGCGGATCGAAGGCCAGGTACGGGGAATCGCCCGCATGGTTGATGAGGACAAATACTGCATCGACATCCTGACCCAGGTATCGGCGGTAACCAAGGCCCTCCATGCTGTGAGTCTCGGGCTTGTGGAGGAGCATATCGGGCATTGTGTCGTGGGAGCTGCGGCCGAACCGGACTCGGCGCTGCGGGCGGAGGCCATCGATTTCAAGGTCAAAGAGGCCGCCGACGCTATTGGCCGGCTGCTTCGCTGAMNTPEEAAQVLPTAESQPEHAHGYTGNKEAYLRRLKRIEGQVRGIARMVDEDKYCIDILTQVSAVTKALHAVSLGLVEEHIGHCVVGAAAEPDSALRAEAIDFKVKEAADAIGRLLRPGPT0004175_380DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-RELATED_FUNCTIONS,PGPT0004175-csoR|ricR-K21600NANA
D1-29_04653240hypothetical proteinATGAGCACCACCTCCACAGTCACCACCACCGTCAGCGTTTCGGGCATGACCTGCGGCCATTGCGTCTCGTCGGTGAGTGAAGAACTTGAAGCCCTCGCCGGCGTCGAAGCTGTCGACGTCGATCTCAACGCCGGTGGCATCTCCACCGTTACCATCACCTCCAGTGATGAACTGTCCCCCTCCGAAATCGGCGAGGCGGTCGCGGAGGCCGGCTACCTCGTTGTTGCCAACGAAGCCTGAMSTTSTVTTTVSVSGMTCGHCVSSVSEELEALAGVEAVDVDLNAGGISTVTITSSDELSPSEIGEAVAEAGYLVVANEAPGPT0004125_771DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
D1-29_046542460ctpACOG2217Copper-exporting P-type ATPaseATGACTAACGAACAACTCCTCCATCAGGGCGGGAGCCGGGTGGTTGAACTTGATATCGAGGGTATGACCTGCGCGTCCTGCGTGAACCGCGTGGAAAAGAAGCTCGGCAAGCTCGACGGCGTGGAAGCCTCGGTCAACCTTCCCCTGGAATCAGCCCACGTGACGGCTCCGGACGGCATCACGGATGAACAGATCGTGAATACGGTCAACGCCGCGGGTTACAAGGCAACGGTCCGCATGCAGGAGGCGCCCCCGCAGGACGACGGGCAGAGCCAAGACCACGGGCAGAGGCAGGACGACGGGCAGACCGGGCACGCAGGTCACGGGATGGATGGCACTGGACCATCCAGTCATGTCCAGCACGGCGGCGCGGCGGCCGCGCTGAAGCCGCGCCTGATGGTGGCCGCCGTCCTGACCGTTCCCGTGTTCCTGATCTCGATGCTGGAGGCCTTCCAGTTCCCGCATTGGGGCTGGGTTGCCGCGGCCCTCGCGCTGCCCGTGGTCACCTGGGCGGCCTGGCCCTTCCACCGTGCGGCAGCCGTCAATGCCCGCCACCTTGCCTCCACCATGGACACCCTGGTGTCCATCGGCGTGGCGGCCGCCTACCTGTTCTCCACCGCGCAACTCCTGATGGATCCGCGCATGACGGAACACCCCGGGATGGAAGGGATGGAGTCCGGCGGGCTGTACTTTGAGGTGGCTGCGGTGGTGACCACCTTCCTGCTCCTGGGCAGGTTCCTGGAAGCCAGTGCCAAGCAAAAGGCCGGTGATGCGCTCAGGGCCCTGCTGAATCTCGGGGCCAAGGAGGCCACCCTCCTCAGTAACGGTACGGAGCGCAAGATTGCCGCCGAGCAGCTCCAGGTGGGTGACGTGATGGTGGTACGCCCCGGTGAGAAGATCGCTGCCGACGGAATAGTCATCGACGGCAGTTCCGCAGTTGATGCCTCCCTGGTGACCGGTGAGTCTGTGCCCGTGGAGGTGGGCCCGGACAGCAAGGTCACCGGCGCCACCATCAACACCTCCGGCCGGCTGCTTGTCCGTGCCACCCGGGTGGGCTCCGAAACCACGCTGGCGCACATGGCCCGCCTCGTGGCACAGGCGCAAACGGGGAAAGCCCCCATCGCCCGGCTGGCCGACCGTATCAGCGCTGTTTTCGTTCCGGTTGTCCTGGTAATTGCGGTGCTCACCTTTGCGCTGTGGCTCCTGTTCGCCGCGCCCGTTATCAGCGACGCGGAGCTGCGCGCCGCCTTCACCGCCGCGGTCACTGTCCTGGTCATTGCCTGCCCGTGCGCGCTGGGGCTTGCCACACCGGTGGGCCTGCTCACCGGATCCGGCCGCGGCGCCCAACTGGGCATCCTGATCAAGGGTCCTCAGGTCCTGGAGGACACCCGGACCGTGGACACCATCCTGCTGGACAAGACCGGTACGGTAACCACCGGGAAGCTTGCGGTAGACGGCGCTGAGGCCTTTGACGGCTTCAATCGGTCCGAAATTCTGCGGCTCTCCGGTGCAGTCGAAGCGGCGTCCGAGCACCCCATTGCGCACGCCATCGCCGCGGCCGCGCTGGCAGAACGTATTGCCCACTTCGCCCCGCAGGCGGGGGCGGCGCATGCCCCCGAGCCGGCACTTACTGGACAATCGGGCCATCCGCTTGCCCACACCCCAATGGGCAACGAAAGCCACGACGACGACGGCAGGCGCCTTCCCGCCGTCGCAAACTTCCGCTCCGCGCCAGGTGGCGGCGTAACCGGAACCGTGGAGGGGCAAGTGGTCGTGGCCGGCCGAACAGGATGGCTGGAAGAGAACGGCATCTCCATTGCGCCAGCACAGCGGCAGGCGTTTGCCGCGGCCGAACTCAGCGGTGCCACAGCCATCTGGGTCGCGGTGGACGGCAGGACCGCTGGCTTTATCACGCTCCGGGACACCATCAAGGAAGGCTCAGCCGAGGCCATCTCCCGCCTCAAGCGGCTGGGTCTGCGCCCCATCCTGCTGACCGGCGACAACGGCGCGGTTGCAGCGCAGGTTGCCGCCGCCGTCGGCATCGCCCCGGAGGATGTTTACGCGGAAGTCCTGCCCGCCGGAAAAGTTGAGGCCGTGCGAAAGCTGCAGGCTGCCGGCGCCACGGTGGCCATGGCCGGCGACGGGGTCAACGATGCCGCCGCCCTGGCGCAGGCAGACCTGGGCATCGCCATGGGCTCGGGCACTGATGTGGCCATCGAGGCTGCGGATCTGACGGTGATGGGCAACGATCTGGGCCAGGTGGCCCAGGCCATCGAACTGTCCCGCCGGACCTTGGGCACCATCAAGACGAACCTGTTCTGGGCCTTCTTCTACAACGCGGTGGGCATACCGGTGGCCGCGCTGGGCCTGCTGAATCCCATGATTGCCGGCGCTGCGATGGCCGCCAGCTCAGTCCTGGTGGTGGCGAACTCCCTTCGGCTTCGCAGCTTCGGCAAGTAGMTNEQLLHQGGSRVVELDIEGMTCASCVNRVEKKLGKLDGVEASVNLPLESAHVTAPDGITDEQIVNTVNAAGYKATVRMQEAPPQDDGQSQDHGQRQDDGQTGHAGHGMDGTGPSSHVQHGGAAAALKPRLMVAAVLTVPVFLISMLEAFQFPHWGWVAAALALPVVTWAAWPFHRAAAVNARHLASTMDTLVSIGVAAAYLFSTAQLLMDPRMTEHPGMEGMESGGLYFEVAAVVTTFLLLGRFLEASAKQKAGDALRALLNLGAKEATLLSNGTERKIAAEQLQVGDVMVVRPGEKIAADGIVIDGSSAVDASLVTGESVPVEVGPDSKVTGATINTSGRLLVRATRVGSETTLAHMARLVAQAQTGKAPIARLADRISAVFVPVVLVIAVLTFALWLLFAAPVISDAELRAAFTAAVTVLVIACPCALGLATPVGLLTGSGRGAQLGILIKGPQVLEDTRTVDTILLDKTGTVTTGKLAVDGAEAFDGFNRSEILRLSGAVEAASEHPIAHAIAAAALAERIAHFAPQAGAAHAPEPALTGQSGHPLAHTPMGNESHDDDGRRLPAVANFRSAPGGGVTGTVEGQVVVAGRTGWLEENGISIAPAQRQAFAAAELSGATAIWVAVDGRTAGFITLRDTIKEGSAEAISRLKRLGLRPILLTGDNGAVAAQVAAAVGIAPEDVYAEVLPAGKVEAVRKLQAAGATVAMAGDGVNDAAALAQADLGIAMGSGTDVAIEAADLTVMGNDLGQVAQAIELSRRTLGTIKTNLFWAFFYNAVGIPVAALGLLNPMIAGAAMAASSVLVVANSLRLRSFGKPGPT0004090_3800DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
D1-29_04655279hypothetical proteinGTGAATATGTGCCGGAATATCCGAACCCTCCACAACTTTGAACCGCACGCTTCCTCCGAAGAGGTGCATGCCGCCGCGCTGCAATACGTGCGGAAAATCAGCGGCAGCACCAAGCCGTCCAAGGCCAACGAGGAAGCTTTCCAGGAGGCGGTGCACGAGATCGCCCACATCACCCAGCACCTCCTGGATTCGCTCGTTACCCAGGCTCCGCCCAAGGACCGGGAGGAAGAGGCGGCCAAGGCCAAGGCTCGCTCCGCCGTTCGGTTCGGCGCGGCTTAGMNMCRNIRTLHNFEPHASSEEVHAAALQYVRKISGSTKPSKANEEAFQEAVHEIAHITQHLLDSLVTQAPPKDREEEAAKAKARSAVRFGAANANANANANA
D1-29_04656264hypothetical proteinATGGCTATTTGGGGCGCAGACGTAGAAGGTCTCAGGACTCTCAGCACCAAGCTCAACGGAGGTGCCGAGGCTATCGAGGCTCAGAAGAGTGAGCTCAACTCACGGCTCGAAAGCACGCAGTGGATGGGCCCGGACGCGGACAAGTTCCGCAGCGAATGGTCCGGCACCCACATGACCGCGCTTTCGCGGGTCGTTGAAGCCCTGCGCGATGCCGGCACCCGTGCAGGCAAGAACGCCGACGAGCAGACCACCGCTTCGGCCTAGMAIWGADVEGLRTLSTKLNGGAEAIEAQKSELNSRLESTQWMGPDADKFRSEWSGTHMTALSRVVEALRDAGTRAGKNADEQTTASANANANANANA
D1-29_046571086yicLCOG0697putative inner membrane transporter YicLTTGCCTGCCGCCAAAACCATCCGGTTCCGCCGGCCACCAGCTGCAGAACGCCGCGGCTTCGGAGCCCGGGGGCTGTGGATCGCACTGTTTTCGTCTGCCGTGTTCGGAATCTCGGGCTCTTTCGCCAAGGCCCTCCTGGAAACCGGCTGGTCGCCGGGGGCGGCCGTGACTGCCCGCCTCACGGGCGCCGCCCTTATCCTTGCCATTCCGGCGCTCTTCGCGCTGCGCGGAAACTGGCACCAGTTAAGGGACAACTGGGTCACCATCGTGCTGTTTGGCCTGATCGGGGTTGCCGCCTGCCAACTGTTCTACTTCAACGCGGTAGCCAGGCTTTCGGTGGGGGTGGCGCTCCTCCTGGAGTACCTGGCGCCGGTGATCATTGTGCTCTGGCTGTGGGCTGCCAGCCGGAAACGGCCCCGTGCGCTCACCTTCGGCGGAACGCTGCTGTCCCTCGCCGGCCTGGTCCTGGTGCTGGACCTCACAGGGGCCGTCAAGATCGATATCGTCGGCGTCTTCTGGGGAATCGCTGCTGCGGTCTGCCTTGCCATGTACTTCTTCATCACCGCCAAGGAGAACGAGTCCCTGCCGCCGATCGTCCTGGCCTCAACCGGGCTGATGGTTGGTGCGGCGGTCATGTGGCTGGCCGGCGCAACAGGCCTGTTGCCGATGGAATTCAGCACTGCCGATACCAGGCTCGGCCCCTGGGTGACGCCGTGGTGGGTTTCCGTGGGCGGGCTGGTGATCCTGGCGACGGTATTGGCCTACGTGTCCGGCATCATGGCTGCCCGAGCTCTGGGCTCCAAGGTGGCGTCCTTCATGTCACTCACCGAGGTTCTGTTCGCCGTCATCTGGGCGTGGCTGTTGCTGGGTGAACTTCCCGGAGTCATCCAGCTGCTGGGCGGGGCCCTCATCGTCGGCGGTGTCATCCTGGTCCGGCTTGATGAGCTCCGCCGGCCCCGGACACCGTCCACGAAACTGTCAGCCCGGGCACTGGCGGATGGGGAAAAATCGCAGCCGAAAAAGGCAGGTGCTGCAAAGGCGGCGTCGCCCCTGGCGCACGCCAACGACGTCGAACCTGTACCGTAAMPAAKTIRFRRPPAAERRGFGARGLWIALFSSAVFGISGSFAKALLETGWSPGAAVTARLTGAALILAIPALFALRGNWHQLRDNWVTIVLFGLIGVAACQLFYFNAVARLSVGVALLLEYLAPVIIVLWLWAASRKRPRALTFGGTLLSLAGLVLVLDLTGAVKIDIVGVFWGIAAAVCLAMYFFITAKENESLPPIVLASTGLMVGAAVMWLAGATGLLPMEFSTADTRLGPWVTPWWVSVGGLVILATVLAYVSGIMAARALGSKVASFMSLTEVLFAVIWAWLLLGELPGVIQLLGGALIVGGVILVRLDELRRPRTPSTKLSARALADGEKSQPKKAGAAKAASPLAHANDVEPVPNANANANANA
D1-29_04658546hypothetical proteinATGCTTTTTGCCCCTGACACGGACGTTGCGCTGCGCACCGTCGTCAACCTGATCAATACGGCTGCGAACGGAAGGGAAAACCTAGCCAGCGTTGGCGATCTGGACCGCTTCCTGGAGGCGGAAGGATTCAGCGGCTCACGCACCCGCGATGACGCCGAGCTCGCCAGCGTTCATGAGCTCCGGAGCCAACTGGCTGTGCTCTGGACTATGGATGAGGACACGGCCGTGGCGACAGTTAACCGCCTCCTGCGGGACGCCAATGCCCTCCCGCAGCTGATGAAGCATGACGAATGGGACTGGCATCTGCATGCCACCACGCCCGAAGCGCCACTGGCGGACCGAATGAGCACCGAGGCTGCCATGGCGCTGGTGGACGTCATCCGCAGCAAAGAAATGGACCGAATGCTTGTCTGCGAAGCGGAAGGCTGCGATGCCGTGGTGCTGGACCTCAGCCGCAACCGCTCGAAGCGGTACTGCGATACGGGAAACTGCGCCAACCGGATGCATGTTGCCGCCTACCGGGCACGCCAGGCGGCAACAACCTAAMLFAPDTDVALRTVVNLINTAANGRENLASVGDLDRFLEAEGFSGSRTRDDAELASVHELRSQLAVLWTMDEDTAVATVNRLLRDANALPQLMKHDEWDWHLHATTPEAPLADRMSTEAAMALVDVIRSKEMDRMLVCEAEGCDAVVLDLSRNRSKRYCDTGNCANRMHVAAYRARQAATTNANANANANA
D1-29_04659321hypothetical proteinATGTTCTCCGCGTTCTGGGCCGTCATCGCCTTCTTTGCAGTACTGATTTTCGCCTCCGGCGGCAGTTCCCGTGCCCCGCGCTTTGACTTGGCCTTTACCGGCGCCGGTATAGCCTTCATCGTCACGCTGGTCATCGCCGCCATGCTTTCCATGAGCTACAAGGACAACGCCGAGCACCTTGGCAAGGGGTCCGGCGTGAACCTGAGTTCGGCCAAGAAGTCATCTCACGGGTTTGGCGGCCACGGCAGCCAGGGAACGGCCCGTCCCGGAGCGCCCGAATCCGATAATCCGGATTCGAGCGGCAAAGGCGCCGGAACCTAGMFSAFWAVIAFFAVLIFASGGSSRAPRFDLAFTGAGIAFIVTLVIAAMLSMSYKDNAEHLGKGSGVNLSSAKKSSHGFGGHGSQGTARPGAPESDNPDSSGKGAGTNANANANANA
D1-29_04660591hypothetical proteinGTGACCCAACCGCTGACACCCGCAGGAACGTCCCCAGGTACCGCACCCCAAGCCGAGCTGTGGAAATCCATACTCCTGCGCGCCGGGGCGGCGCTGGCGTTTGGCGCGGTGACCGTTTTTTGGACTTCACCGTCCGTCGCCGTGATGGGTTGGGCGGGCGGACTCTACCTGCTGGCCACCGGCCTGCTGTTCCTCAAGAGCATCCCGCTGGCCGGTTTCCGAGCTGACGCCATGCCGGGGCGGATTTTTTCCGCCGCCGGATCGGTTCTGGCCGGCGGCGGCGTGGCTCTTGTCCTGATCCACGGGGACCTCGTCTGGGGTGTCCTGGCAGCGCTGGGCCTGGGCCTGGCCGGCGCCGTGGAGTTGTACTGCGGTGTCCAGTACCGCGGCCGGCATGTCCTGGCAAGGGACTGGCTGATCTCCGGCATCGTTGGCCTTGGCACCGCCGCTGCCCTGCCCTTTTTCATCAGCCTGGGCGCCCACGCCCTGCTTGGCGTTGCCGGTGGTGGTGCCATCATTTCCGGAGTTCTGTGGACGCTGTCCGGGCTGACCCTCAGGCACGATGCCAGGCCAGCCAGCGAGAAGCCGTAAMTQPLTPAGTSPGTAPQAELWKSILLRAGAALAFGAVTVFWTSPSVAVMGWAGGLYLLATGLLFLKSIPLAGFRADAMPGRIFSAAGSVLAGGGVALVLIHGDLVWGVLAALGLGLAGAVELYCGVQYRGRHVLARDWLISGIVGLGTAAALPFFISLGAHALLGVAGGGAIISGVLWTLSGLTLRHDARPASEKPNANANANANA
D1-29_046611281dinFCOG0534DNA damage-inducible protein FGTGCCGGCCTTCGGCGCGCTCATTGCCGAACCGATGTTCCTGCTTGCTGATTCCGCCATTGTTGGTCATCTCGGCGTCGCGCAGCTGGCCGGTGTGGGACTGGCCTCGGCGGTGCTGCACACGGTCGTCGGGCTGATGGTTTTCCTGGCCTACTCCACCACGCCCGCAGTGGCCCGCGCCATCGGCCACGGGCAGCTCGCCAAGGCACTGGCTGCAGGCCGTGACGGCGTGTGGCTGGCGTTGTTGCTCGGCATCATCCTTGCCGCGGCAGGGTTTGTCGCCGCCGAGCCTCTGATGGACCTGATGGGCGCCCAGGGTGACGTTCGCACCTTTGCGGTGGATTACCTCAGATGGTCAATGCCCGGACTCGTGGCCATGCTGCTCATTTTCGCCGGGACAGGCGTGCTGCGCGGGCTGCAGGACACGCGCACCCCCCTGGTGGTGGCCACTGTGGGCTTTGCACTCAACATCGCCCTCAACCTGTGGCTTGTTTATGGCCTGGGCTGGTCGGTAACAGGTTCGGCGGTGGGTACCAGCATCGCGCAGTGGGCCATGGCAGCCGTCTATCTCGTTATGGTCCAACGGAATGCCTCCCGGCACGGGGTCAGCCTGCTGCCGGACTGGCACGGCATCCGCACCATGACCCGGATCGGTTCCTGGCTGATGCTGCGCACGCTCAGCCTGCGGGTGGCCATCCTGGCTACCGTCCTGGTGGTCACAGCCCAGGGCGCAACCAACCTTGCCGCACACCAGTTGGCCATGACCATCTTTTCATTCCTCGCCTTCGCGCTCGATGCGCTGGCGATCGCCGCCCAGGCTCTGATCGGAAAGGAATTGGGGGCATCACGCCCCCGCATGGCACGCCAGTTGACCCGCATCATGATCCGTTGGGGTGCGGGCTTCGGGGTGGTCACCGGGATCCTGCTGGCCCTGGCCGCGCCGTGGGTGGGCGCATTGTTTACGCCGGATCCCGGCGTGCAGTCCACCCTCACCCTTGCGCTGTGGGTACTGGCCGCCGGCCAGCCTGTCGCAGGGTACGTTTTTGTCCTCGACGGCGTCCTGATCGGTGCCGGGGATGCGAAGTACCTGGCGCTCGCGGGCGTGGTCAATCTTGCCGTGTATGTGCCCATGCTCCTTGCCATCAGTGGCTCTGGTATTTCCGGGGCATCAGGATTGATGTGGCTCTGGGCCGCCTTTGCCCTGGGTTATATGGCCGCCCGCGCCGTGACGCTCGGTCTCCGTGCGCGGTCCGACCGCTGGATGGTGCTCGGTTCGTCCTAGMPAFGALIAEPMFLLADSAIVGHLGVAQLAGVGLASAVLHTVVGLMVFLAYSTTPAVARAIGHGQLAKALAAGRDGVWLALLLGIILAAAGFVAAEPLMDLMGAQGDVRTFAVDYLRWSMPGLVAMLLIFAGTGVLRGLQDTRTPLVVATVGFALNIALNLWLVYGLGWSVTGSAVGTSIAQWAMAAVYLVMVQRNASRHGVSLLPDWHGIRTMTRIGSWLMLRTLSLRVAILATVLVVTAQGATNLAAHQLAMTIFSFLAFALDALAIAAQALIGKELGASRPRMARQLTRIMIRWGAGFGVVTGILLALAAPWVGALFTPDPGVQSTLTLALWVLAAGQPVAGYVFVLDGVLIGAGDAKYLALAGVVNLAVYVPMLLAISGSGISGASGLMWLWAAFALGYMAARAVTLGLRARSDRWMVLGSSNANANANANA
D1-29_04662435catD_3COG2259Putative oxidoreductase CatDATGAACCAGACCTCCCTTACCACCAGCGCCATCACCATCCTGCGCGTCATCCTCGGCTTCCTCTTCACGGCCCACGGTTGGCAGAAGTTCAACGAATTCACCATCGCCGGCACCCAGGCCTCCTTCGCCAAGATGGGTGTTCCAGCCGCCGAAGTGGCCGCACCTGTCATAGCAAGCCTTGAGTTGGCCGGCGGAATTGCCCTGATCCTGGGCGTCCTGACCCGCGTAGTAGCCGCCCTCCTTGCCCTGGATATGCTCGGCGCCCTGTTCCTGGTGCATGCCCCGGCAGGCATTTTCGCCGCCACAGGCGGCTATGAGCTGGTACTCCTGCTCGCCGCCGCTGCCTTGGCCCTGGCCCTCACCGGAGCAGGCCGCATTTCGGTGGACCGCGCCCTCTTTGGCCGCAGCAACTCAAAGCTTGCAGTCCTGGCCTAAMNQTSLTTSAITILRVILGFLFTAHGWQKFNEFTIAGTQASFAKMGVPAAEVAAPVIASLELAGGIALILGVLTRVVAALLALDMLGALFLVHAPAGIFAATGGYELVLLLAAAALALALTGAGRISVDRALFGRSNSKLAVLAPGPT0028505_3408DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-29_046634392hypothetical proteinGTGAAGAAACCCCCGCAAGCGATATCCAGCTCCAAGGCAGGGCCCCCGCACCGCCGCAGGATCCTCACCTCAGGCACCAGGGCTGCCACCGCAGCCGTTGCCTCTGCCGCGATCGCTTTGACCGGCCTCCCGCCGGTCCACGCGGACACGCTGCCACCGGTGGGCAGCGGATTCAAGTTTGATTTCGGTCCTGGTCCCACGGCGGATGGGTACACCCGAGTGGACGCCGCTACCCAATACACGGCAGCAGGAAAGTTCGGTTTCACGGACACCGCCGTCACCTCCGGCGCAGACCGTGGCACCGGTGATGCCGTCCGCTCAGACTTCGTGCAGGCCCAGGGCAGCACGTTCCTGGTTGACCTGCCCAACGGTGACTACACCATCAAGCTGCTGGCAGGCGATGCCGCAGAAGCAACCAACATCGCCATCACCGCCGAGAAAATGGCAAAAGTCCAGCTCACAGACAAAGCTCCCGGCCAGTACCTGGAGATGGAGTTCCCCATTTCGCTGGTGGACGGCCAGCTGAACCTCGATTTCAGCGGCACCGCAGCCAAGATCAACTCACTGGTCATCGCCGCACGGGCACCCCGCACCGCCACCACCGATCCCGGCATCTACCTGGCCGGCGACTCAACGGTCCAGACCTATGACCCGGGCTTCGTTCCGCAGGCCGGCTGGGGCCAGATGATCGACCGCTACTTCGACAGTGCGGTGACGTTCCGCAACCACGCCATCGGCGGCCGGAGCTCCAAGAACTTCATCAGCCAGGGACGGCTCGATGAGATCCTCCGCGTCATTAACCCCGGCGATTACCTGATGGTCCAGTTCGGCCACAATGACGCAACCATCGGCGTGGACGACCGGTACGCCTCCCCCGCGGACTACAAGGAATACCTGCGGACGTACGTCCACGGCGCCCGGCAGCGCGGTGCCACCCCCATCCTGGTCACTCCCGTGGGCCGCCGCGACTTTGATGAGGCCACCGGCAAATTCAGGGTCAGCTTCCCCGAGTACGTAGCCAAGATGCAGGAACTGGCCGCCGAGGAAAGTGTGGCCCTGGTGGACCTCTCCGCCTCAAGCCGCGCTTATTATGACGAGATCGGGCCGGAGGACACCAAGTCCGTCTTCCTCCACGTGGACGCCGGGGTCTACCCCAACCGGCCCACCGGGACAGTGGACAATACGCACTTCCAGGAGTACGGGGCCATCCAGATCGCCCGCCTCGTGGCCGGCGGCGTGAAGCAGCTCAGCGTTCCGCTGGCCTCCCGCGTCAAGGAAATCGCGCCGCCGTCGTCCGTTCCTGCCAAGCCGAAGGGCCTGGTGGCGGGCAGCATCTCCAACGCGGGCGCCCTCCTGAAGTGGCAGCCCGTTGAGGGTGCGGACATCTACAAGGTGTACCGCAAGCCGGCCGCCGAGCCGGACAGCGCCTACAAGCTGACCACCACCGCCACGGTCCCCACCGCCAACCTCGCCGGGCTGGCCGAAGGCACGGCCTACAGCGTCCGCGTTGCGGCCATGAACGGCAAGGGCCTTTCCGAGCCGAGCGACACCCTCAACCTGACCACCAAGCAGGCGAAATACAAGTTCGATTTCGGCCCGGTGGGAGCACCGGTCGAACCGGGCTACACCGAGGTGAACCGGACCATGGGCTACTCTCCGGAACGCACCTTCGGCTTCAAGGACATCTCCGTCCTCAGCGACCGGGACCGCGGTGCGGTGACCACGAACCTGCTGCGCGACTTCGTCCTCAGCGGCTCCAGCTTCGAATTCCAGCTGGACGTGCCCAACGGCACCTACGCCCTGAAGACCTACCACAGCGACTGGATCGGCTCCACGCGGACAGACGTTGCGGCCGAAGGCACCCCCTTCGGCCAGGTCTCCTCCGGCCGTGCCTCCTCCGCCACCAAAATCATCAACCAGGTCCTGGTCTCGGACGGGCAGCTGAACCTGTCCATCAGCGGCTCCGGGCAGCGGCTCAATGGCTTGGAGGTCACCCCGCTGCTGGTGGGCCCCACGAACCTGCACGCCACGGGCCTCAACGCGGCAGCCGAACCGCCCACCGTGGACCTTGCCTGGGACGCAGTGACGGACGCCGCCAGCTACAAGGTGTTCCGCCAGGCGTCCTTTGAAGCCGAGCCCGGGCTGATCGCGGAAAACGTCTCAGCCCCGTCCTTCCAGGACGCCACTGCTTTCGCCGGGCTGACCTACAAGTACTTCGTCACCGCACTGGACAACACCGGCCTGGAATCAGTCCCCTCCAACACGGTAGGGATTCCGCTGGTGGATCCCGGCACTCCTGTCCCCGCAGCCACAGCCAAGGTGGACATCAAAGCCGTGGAGAAGACCAGCGTGAACCTGAAATGGCAGAAAGTGGCCAACGCTGCCGCCTACCAGGTCTACCGGTCCACGTCACCTGACGGTCCCTTCGACTACGTGGGCCGGGCCACCGAGGTGAACTACACCGACTACACGGTCCTGACCACCATCAAGTACTACTACCGGGTCACCACCGTGAACAAGGGCGGCGAATCTGCTCCCTCGCCTGTTGTGGGCACGGAGAAAGTGACCGTGGTCAACCGGCAGATGGAGAAGCTTGACCGTGCACCAGTGGCCCTGCTGACTGACGGCGGCGTCCGCGTTGGCTGGCGCATGCTGGGCCTGGACCCGGAGCAGGTGGGCTTCCATGTCATCCGCGACGGCGTCCAGCTCACCGAGGAGCCCATCCGCAGCAGCACCACCTTCCTGGACCCGTCAGGGACAGCGGCTTCCCGCTACGTCATCAAGACCGTCGGTGCCGGCGCTGACCAGCTGACCGGAGAGTTCACGCCGCTGGCGCAGGACTACCTGGCAGTCAAGCTGGACAAGCCGGCGGACGACTACACCAAGGACGGGCAGCCCTACTCCTACTCGGCCGGTGACGCGAGCGTTGCTGACCTGGATGGCGACGGAACCTACGAAATCCTCCAGATGTGGTCTCCGTCCAACTCCAAGGACAACTCCCAGGCGGGCTACACCGGCACGGTCTACGTGGACGCCTACCGGATGGACGGCACCAGGCTCTGGCGGATCAACATGGGCCCGAACATCCGCGCCGGCGCACACTACACGCAGCTGCTGGCCTACGACTTCGACGGCGACGGCAAGGCCGAAGTTGCCATGAAGACAGCGGATGGCACACGGGACGGTGCCGGAACCGTCATCGGGAACACTGGGGCGGATTACCGCAACAGCAGCGGCTATGTGCTGACCGGGCCCGAGTTCCTGACGGTCTTCCACGGGGCCACCGGCACGGTCATGGACACAGTGGCCTACGACCCGCCGCGCGGTGATGTGGCTGCCTGGGGAGATGGTTACGGCAACCGGGTGGACCGGTTCCTGGGCGCGGTAGCGTACCTGGACGGGGAACGCCCCTCCATGATGTTCAGCAGGGGCTACTACACCCGCACCGTGCTGGCCACCTATGACCTGCTGGGCGGCAAGATCATCAAACGCTGGATCTTCGACTCCGATGTTGCAGGGGCGCAGTACCGGGGCCAGGGCAACCACAACCTGTCCGTGGCTGACGTGGACGCTGATGGCAAGGACGAATTCATCTTCGGTTCCATGACCGTCGATGACAACGGCAAGCCCTTGTACAACACCGGCCTGGGTCACGGGGATGCCATCCACACCAGTGACTTCGATCCTTCCCGCCCGGGGCTGGAAACGTTTATGCCCCACGAGGACATGGGAGCCAGCGGCAACACGGGCGCCACGTTCCGGGACTCCCGGACCGGCGAAGTCCTGTGGAGCATCCCTGCCGCGAAGGACACGGGCCGGGCCGCTGCCGGCGACATCGACCCCCGCTACGCCGGCGCCGAGGGCTGGGCCATTGGTGGTGATGCTGCCTGGAATTCACCTGTCGGCGAGTTGCGCTCCGCCAAGGGTGAACTGATCGCGAACAAAATCCCGGCCGCCAACTTCCTGGCCTGGTGGGACGGGGATCTGCTCCGCGAAATCGTGGACCATGACTGGGATGCCACCACCAGCCGTGGAACTCCGAGCATCGCCAAATGGAACTGGGAGACAGAGTCCAGCGACAGGTTGCTGACAGCCTCCGGAGCGAAGTCGAATAACACCACCAAGGGCACACCTGCCATCCAGGCGGACCTGCTCGGTGACTGGCGGGAAGAAATTACCTGGCCGTCGTCGGACAGCACCGAACTGCGGATCTACACCACCACCGCCGGCACCGACATCCGCCTCCGGACGCTGATGCACGATCCGGTGTACCGGCTCTCTGTGGCGCGGGAGAACGTCTCCTACAACCAGCCGCCGCACCCGGGCTTCTACATCGGAGTGGGCATGGAAATGCCCTCCCAGCCGGACATCGTCTACACGGGAGTCCGCTAAMKKPPQAISSSKAGPPHRRRILTSGTRAATAAVASAAIALTGLPPVHADTLPPVGSGFKFDFGPGPTADGYTRVDAATQYTAAGKFGFTDTAVTSGADRGTGDAVRSDFVQAQGSTFLVDLPNGDYTIKLLAGDAAEATNIAITAEKMAKVQLTDKAPGQYLEMEFPISLVDGQLNLDFSGTAAKINSLVIAARAPRTATTDPGIYLAGDSTVQTYDPGFVPQAGWGQMIDRYFDSAVTFRNHAIGGRSSKNFISQGRLDEILRVINPGDYLMVQFGHNDATIGVDDRYASPADYKEYLRTYVHGARQRGATPILVTPVGRRDFDEATGKFRVSFPEYVAKMQELAAEESVALVDLSASSRAYYDEIGPEDTKSVFLHVDAGVYPNRPTGTVDNTHFQEYGAIQIARLVAGGVKQLSVPLASRVKEIAPPSSVPAKPKGLVAGSISNAGALLKWQPVEGADIYKVYRKPAAEPDSAYKLTTTATVPTANLAGLAEGTAYSVRVAAMNGKGLSEPSDTLNLTTKQAKYKFDFGPVGAPVEPGYTEVNRTMGYSPERTFGFKDISVLSDRDRGAVTTNLLRDFVLSGSSFEFQLDVPNGTYALKTYHSDWIGSTRTDVAAEGTPFGQVSSGRASSATKIINQVLVSDGQLNLSISGSGQRLNGLEVTPLLVGPTNLHATGLNAAAEPPTVDLAWDAVTDAASYKVFRQASFEAEPGLIAENVSAPSFQDATAFAGLTYKYFVTALDNTGLESVPSNTVGIPLVDPGTPVPAATAKVDIKAVEKTSVNLKWQKVANAAAYQVYRSTSPDGPFDYVGRATEVNYTDYTVLTTIKYYYRVTTVNKGGESAPSPVVGTEKVTVVNRQMEKLDRAPVALLTDGGVRVGWRMLGLDPEQVGFHVIRDGVQLTEEPIRSSTTFLDPSGTAASRYVIKTVGAGADQLTGEFTPLAQDYLAVKLDKPADDYTKDGQPYSYSAGDASVADLDGDGTYEILQMWSPSNSKDNSQAGYTGTVYVDAYRMDGTRLWRINMGPNIRAGAHYTQLLAYDFDGDGKAEVAMKTADGTRDGAGTVIGNTGADYRNSSGYVLTGPEFLTVFHGATGTVMDTVAYDPPRGDVAAWGDGYGNRVDRFLGAVAYLDGERPSMMFSRGYYTRTVLATYDLLGGKIIKRWIFDSDVAGAQYRGQGNHNLSVADVDADGKDEFIFGSMTVDDNGKPLYNTGLGHGDAIHTSDFDPSRPGLETFMPHEDMGASGNTGATFRDSRTGEVLWSIPAAKDTGRAAAGDIDPRYAGAEGWAIGGDAAWNSPVGELRSAKGELIANKIPAANFLAWWDGDLLREIVDHDWDATTSRGTPSIAKWNWETESSDRLLTASGAKSNNTTKGTPAIQADLLGDWREEITWPSSDSTELRIYTTTAGTDIRLRTLMHDPVYRLSVARENVSYNQPPHPGFYIGVGMEMPSQPDIVYTGVRNANANANANA
D1-29_04664984hypothetical proteinATGACTGAGACCGCACCCAATTCAGTAACCCTCCGCTTCCTGGCCGCTCCCATGGACGTCGGCCACAGCGGATCCGTGGATGCCGGAACTGTGCTGGAGTGGGTGGACAAGGCCGCGTATGCAGCGGCCGTTGGCTGGGCCAAGGCCTATTGCGTCACCGCCTACGTGGGCAATATCCATTTCGCTGACCCCGTCAACGTCGGGGACATGGTGGAGGTCGAAGCCACCATTGTTTACACCGGCCGTTCCTCCATGCACATTCATACCGTTGTTTCCTCGGGGGATCCCAAGGGCGGTCCTGCCACCATGCGGAGCCAGTGCATGGTGATATTTGTGGCGGTGGGCCAGGACGGGAAGCCCGTCCCGGTAAAGCACTTTGAACCGGTCACGCCGCGGGAGATCGAACAACGCGACCACGCTCTGGCACGGATCAGGGTCCGCGAGCAGATCGTGGAGGCAATGAATAGCCAAAAATATACCGACGCCGGCACCGCCGAACGCGTGACCCTGCGGTTTATGGCCGCCCCGACAGATGTCAACTGGGGAGGGAAGGTCCACGGCGGCATTGTGATGAAGTGGATCGACGAAGCCGCATACGTCTGCGCGTCACGCTACTGCGGGAAGGACACCGTTGCCGTCTTCTCCGGCGGCGTCCGTTTCTACCGGCCCCTGCTGATCGGCCACGTGGTGGAAGTGGAAGCCAGGCTGGTGTATACCGGCACAAAAGGCATGCACGTGGCGGTCCACGTCCGCTCAGGAGATCCCAAAAGCGGCGAGCTGGACCTCACTACCTACTGCCTCACCGTGATGGTGGCGCGCGACGCCGAAGGCAACTCCGTGCCCATCCCGCCGTGGGTGCCCGTCTCGGAGGAAGACAAGCGGCTCCACGCCCACGCACGGGAACTGTTGGAGATTCGCGGCACCGCACCGGGTAACCGGCTACCCAACCACCTGCTGGAGGCGGGCGCAGCAGGGCAGAACTAAMTETAPNSVTLRFLAAPMDVGHSGSVDAGTVLEWVDKAAYAAAVGWAKAYCVTAYVGNIHFADPVNVGDMVEVEATIVYTGRSSMHIHTVVSSGDPKGGPATMRSQCMVIFVAVGQDGKPVPVKHFEPVTPREIEQRDHALARIRVREQIVEAMNSQKYTDAGTAERVTLRFMAAPTDVNWGGKVHGGIVMKWIDEAAYVCASRYCGKDTVAVFSGGVRFYRPLLIGHVVEVEARLVYTGTKGMHVAVHVRSGDPKSGELDLTTYCLTVMVARDAEGNSVPIPPWVPVSEEDKRLHAHARELLEIRGTAPGNRLPNHLLEAGAAGQNNANANANANA
D1-29_046651383dnaBCOG0305Replicative DNA helicaseTTGTCAGTAACGCACCTGGATTCGATCGAGGGCACCCGCGCGTCGGAAGGCAGCCGTAAACCGCCGCAGGATATTCCTGCCGAACAGTCGGTATTGGGCGGCATGATGCTTTCCAAGGACGCCATCGCTGACGTCGTGGAGATCCTCCGCGGGCAGGACTTCTACCGGCCCGCCCATGAAACCATCTACGAAGCCATCATCGACCTCTACGGCCGCGGTGAACCTGCCGATGCCGTCACGGTCTCGGACGAACTGACCAAACGCGCCGAGATCAACAGGATCGGCGGCCCCGCGTACCTGCACGAGCTCATCCAGACCGTCCCCACGGCAGCCAACGCCGGTTATTACGCGGAGATCGTGGCCGAACGGGCTGTTCTCCGCCGCCTGGTCAATGCCGGCACCAAGATCGTCCAGCTGGGATACGGCTCCGACGGCGAAGTGGAGGACCTGGTTAACCAGGCCCAGGCCGAGGTTTACGCTGTGGCCGAGCGGCGCACTGCCGAGGACTACGTGGTCCTCAAGGACGTGATGGAGTCCACGGTGGACGAGATCGAAGCGTCCGGGCACCGTGGCGAGGGAATGACAGGTGTTCCCACCGGCTTCTATGAACTTGATGAGCTGACGCACGGCCTGCACCCTGGCCAGATGATCGTGATCGCTGCCCGCCCTGCCGTAGGCAAGTCCACCTTCGCCCTGGACTTCGCCCGGTCAGCGGCGATCAAGAACAACCTGGCCACCGTGATGTTTTCATTGGAAATGGGCCGCAACGAGATCGCGATGCGCCTCCTCTCGGCCGAGGCAACCATCGGTCTGCAGGACCTCCGCAAGGGCACCATCAAGGACGAGCAGTGGTCCAAGATCGCCACCACCATGGGCCGGATGAATGATGCGCCGCTGTTCATTGATGACAGCCCCAACATGTCGCTGATGGAAATCAGGGCCAAGTGCCGCCGGCTCAAGCAGCAGCATGACCTCAAGCTGGTCATCCTGGACTACCTCCAGCTCATGAGCTCGGGTAAAAAAGTGGAGTCCCGCCAGCAAGAGGTATCGGAATTCTCCCGTGCGCTGAAGCTGTTGGCCAAGGAGCTGCAGGTCCCGGTTATCGCCCTCTCGCAGCTGAACCGTGGCTCCGAACAGCGCCAGGACAAACGCCCGATGGTCTCGGACCTTCGCGAGTCCGGTTCCATTGAGCAGGACGCTGACATGGTGATCCTGCTGCACCGTGAGGACGTCTATGATAAGGAGTCACCGCGCGCGGGCGAGGCGGACATCCTGATCGCCAAGCACCGTAACGGCCCTACCAAAGACATCGTGGTGGCATTCCAGGGCCACTATTCGCGTTTCGCCAACATGGCCGCGGACGCCGGCGGCGGCGGCTTCTAGMSVTHLDSIEGTRASEGSRKPPQDIPAEQSVLGGMMLSKDAIADVVEILRGQDFYRPAHETIYEAIIDLYGRGEPADAVTVSDELTKRAEINRIGGPAYLHELIQTVPTAANAGYYAEIVAERAVLRRLVNAGTKIVQLGYGSDGEVEDLVNQAQAEVYAVAERRTAEDYVVLKDVMESTVDEIEASGHRGEGMTGVPTGFYELDELTHGLHPGQMIVIAARPAVGKSTFALDFARSAAIKNNLATVMFSLEMGRNEIAMRLLSAEATIGLQDLRKGTIKDEQWSKIATTMGRMNDAPLFIDDSPNMSLMEIRAKCRRLKQQHDLKLVILDYLQLMSSGKKVESRQQEVSEFSRALKLLAKELQVPVIALSQLNRGSEQRQDKRPMVSDLRESGSIEQDADMVILLHREDVYDKESPRAGEADILIAKHRNGPTKDIVVAFQGHYSRFANMAADAGGGGFNANANANANA
D1-29_04666456hypothetical proteinATGGGCGAACTACTGATGGTGTTACTGCCTGGTTTCATTCTGGTAGCAGTCTTGTGGGCGCTTTCAACAGCCCTGCGCCCGCGCGACTCCGGCATTTCGGACGCAGAGCGATACCAGCTGGACCTCGCATTGCGTTCTGCTGAACACTATGCGGCACAGGTACAGGCCGCCACCGCTGCACGCGCCCGCGTGGATGCCATGACCAGGCCAAGCCAGAATGAGCAGCAGCAGTCCCAGCAGCAGGACCACGCCCGGGCAGCCTTCCGGGCTCAGACTGGTCCGGTCCCCGGGCATTACGGGAACATGGCAGTGCCCGGCGGACAGTTGGATCCCCAGTTCGCCCTGCAGCTGCAGTCGATGGCACGCAACGGGCAGAAGCTGCAGGCCATCAAACTCCTCCGCCAGGCAACCCACTCTGACCTGGCTACCGCTAAGAAGTATGTAGATCGGCTTTAGMGELLMVLLPGFILVAVLWALSTALRPRDSGISDAERYQLDLALRSAEHYAAQVQAATAARARVDAMTRPSQNEQQQSQQQDHARAAFRAQTGPVPGHYGNMAVPGGQLDPQFALQLQSMARNGQKLQAIKLLRQATHSDLATAKKYVDRLNANANANANA
D1-29_04667576hypothetical proteinATGGAATCGCTTGTGATCCCCGCCCTCATTCTTGTGCTGGTGGCAGCCGGTGTCGCCCTGGCGTCACGCGCCATCAGCAGGCGTCTGGCCGCCACCACACGTCATGCCAGCGCTCCTGCTGTCGTGGACCCTGTGGAGGTTGCCCGGGCAGCCTCAGCCAGGCTCACCGAGGATCAGCACCGCAGGCTGTATGCGCTCATCGCCCAGGGACAGGCGATGGCGGCCATCAAGCTCTACTACGAGTCAACGGGCGAAGGATTGCGGGCCTCACGGGACGCCGTCACTGCGTTGGCGGCCCATCCGCAGCCTTACCGCAGCCCCACTGCTGAACCGGTTGCTGCGGAGCCTGACGACGACGACACCCCCCAGCGGTTTCCGTACCGCTACCGCGCCATCGCCAGCAAGGGTGACGTTACACGGGAGGTCAGCAGCAACATGCTCAACGACGAGATCTACGGGCGGATCCGGACACTGGCACGCAGCGGAGACACCGAAGCAGCCGCCACTGCACTCACGCGGCATTCGGACATCTCCCTGAAGCAGGCCCGCGAGTTCATCGCCCTGCTGGACGACTGAMESLVIPALILVLVAAGVALASRAISRRLAATTRHASAPAVVDPVEVARAASARLTEDQHRRLYALIAQGQAMAAIKLYYESTGEGLRASRDAVTALAAHPQPYRSPTAEPVAAEPDDDDTPQRFPYRYRAIASKGDVTREVSSNMLNDEIYGRIRTLARSGDTEAAATALTRHSDISLKQAREFIALLDDNANANANANA
D1-29_04668354hypothetical proteinATGAAGTGTCCTGTGGATTCCATTGACCTGATCATGAGCGAACGCAGTGGTGTGGAGATTGACTACTGCCCCCAGTGCCGGGGTGTCTGGCTGGACAGGGGTGAGCTGGACAAGATCATCGACCGCGCCGAAGCCATGGGCGGAACGGCTGCGCCGGAGCGCCCTGCGTCCCCGCCCCCTGCCATGACTCCGCCGCCGCTGTACCAGAACCTGGACCCGCGCCGGGAACAGGGGCACGACAGCAGGAACTACGGCGACAACAGGAACTACGGCAAGCAGGGCTATGACCGCGACTACGACCGGCGGCGGCCCAAGAAGAAGGAAGGCTGGCTGGGCGAGCTCTTCGACTTCTAGMKCPVDSIDLIMSERSGVEIDYCPQCRGVWLDRGELDKIIDRAEAMGGTAAPERPASPPPAMTPPPLYQNLDPRREQGHDSRNYGDNRNYGKQGYDRDYDRRRPKKKEGWLGELFDFPGPT0003045_6DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299NANA
D1-29_04669627sfnFCOG0431NADH-dependent FMN reductase SfnFGTGGAAACCCGCCGCATCACAGTTCTTTCAGCCGGCCTTGGCGTCCCGTCGTCGAGCAGGCTGCTCGCTGACCAGCTTGCAACGTCAGCAGAACGCCAGCTCACCGATGCCGGCTACCGGGTACGCACGGACGTTGTTGAGCTCCGCGACCTGGCTGTGGACATTGCGAACAACTTTGTGACCGGCTACGCCGCCCCGCGGCTGGCTGATGTTGTTTCGGGGGTGGAGGCATCGCACGGCATCATTGCCGTCACTCCGGTGTTCAGTGCGTCCTACAGCGGCCTCTTCAAGTCCTTTATCGACATCCTGGATCCCAAAGCCCTGGAGGGAAAAGCAGTCCTGCTGGGTGCGACCGGAGGCACAGACCGCCACCAGATGGTTCTGGACTACGCCCTGCGTCCGCTGTTCAGCTACTTGAGGACGCGCATCGCTGCCACGGGTGTCTTTGCCGGGCCGCAGGACTGGGGGAACGCCGATCAAGGCAGCTCCCCGCTTTCGGACCGGATCGCGCGGGCCGCCGGAGAGTTCGCCGGCCTCCTTCAGGGCACCCAGCCAGCGCCCAGGCCTGTGGTCTCTGCCTCGTTGCCCTTTGAGCAGTTGCTCGCCGGTATCTCGGGCGGCCACTGAMETRRITVLSAGLGVPSSSRLLADQLATSAERQLTDAGYRVRTDVVELRDLAVDIANNFVTGYAAPRLADVVSGVEASHGIIAVTPVFSASYSGLFKSFIDILDPKALEGKAVLLGATGGTDRHQMVLDYALRPLFSYLRTRIAATGVFAGPQDWGNADQGSSPLSDRIARAAGEFAGLLQGTQPAPRPVVSASLPFEQLLAGISGGHPGPT0003045_441DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299NANA
D1-29_04670831yddECOG0384putative isomerase YddEGTGTTCACCGCTGAACCGTACCGGGGGAACCCGCTGGCCGTGGTGGTGGACGGAGACGGACTGACAACGGAGCAGATGCAGCAGTTCGCCAACTGGACCAACCTCTCGGAGACAACGTTTCTCCTGCCTCCCACTCATCCGGAGGCCGACTACCGCGTGCGTATCTTCACGGCCCGGGAGGAGTTCCCGTTTGCAGGGCATCCCACGCTGGGTTCTGCCCATGCGTGGCTGGAGGCCGGCGGCATGCCCAAACAGCAGGGCCTCCTGGTTCAGGAATGTGGCGCCGGGCTGGTCCGGGTAAAGCGCGACGGCGGCCAGCTGTCCTTCGCAGCGCCCCCGCTCACGCGTTCCGGACCGGTGGATGAGGAAGACCTCCTGAAGATCGCTTTTGGACTCCAGTTGCCCCGTACAGCGCTTCTGGACGCGTCCTGGCTGGTGAACGGACCTCGCTGGATCGGAGTGCTGCTGGAATCGGCCGGGCACGTGCTGGCAGTCACGCCCGACTACCCCGCACTGGACGGGCTTAGTGTGGGTGTTATCGGGCCTTACGGTACGGGCAGCACGGGTGCCTACCCGGATCCGGGCAGGCCGGATTTTGAGGTCCGTACCTTCATCCCGGGCGATGCCGCAGCCGAAGATCCCGTGACAGGCAGTTTTAATGCCGGGGCAGCGCAATGGCTGATCGGCACCGGGCGCGCGCCGGCGTCGTACACTGCCGCGCAGGGCACGGCGCTGGGGCGGGCAGGCAGGGTCAGCGTGTATTCTGTGCAAGGCGACATCTGGATCGGCGGAAGCTCCACTACCTGCATTAACGGATCTGTGGTCCTTTAGMFTAEPYRGNPLAVVVDGDGLTTEQMQQFANWTNLSETTFLLPPTHPEADYRVRIFTAREEFPFAGHPTLGSAHAWLEAGGMPKQQGLLVQECGAGLVRVKRDGGQLSFAAPPLTRSGPVDEEDLLKIAFGLQLPRTALLDASWLVNGPRWIGVLLESAGHVLAVTPDYPALDGLSVGVIGPYGTGSTGAYPDPGRPDFEVRTFIPGDAAAEDPVTGSFNAGAAQWLIGTGRAPASYTAAQGTALGRAGRVSVYSVQGDIWIGGSSTTCINGSVVLNANANANANA
D1-29_04671453rplICOG035950S ribosomal protein L9ATGGCAAAGCTCATTCTGACCCACGAAGTAACCGGTCTCGGTGCTGCTGGCGACGTTGTCGAGGTCAAGGACGGTTACGCACGTAACTACCTGCTGCCCCGCAACTTCGCCCTGACCTGGTCCAAGGGTGGCGAGAAGCAGGTTGAGTCCATCAAGGCTGCCCGCGCCGCCCGCGAGCACGCTTCCCTGGAAGATGCTCAGAAGCAGGCCGCTGCACTCTCCGCCAAGCCGGTCAAGCTGGTCGTCAAGGCCGGCGAGACCGGACGCCTGTTCGGCACCGTCAAGCAGGCCGACGTTGCTGACGCTGTTGAGGCCGCTGGCCTTGGCCGCATCGACAAGCGCAAGGTTGAACTTCCGGCACACATCAAGTCGGTTGGTTCCTACCAGGCCAACGTCCGTCTTCACGACGACGTTGCCGCTGTGATCGAACTCGACGTCGTCGCCAGCAAGTAGMAKLILTHEVTGLGAAGDVVEVKDGYARNYLLPRNFALTWSKGGEKQVESIKAARAAREHASLEDAQKQAAALSAKPVKLVVKAGETGRLFGTVKQADVADAVEAAGLGRIDKRKVELPAHIKSVGSYQANVRLHDDVAAVIELDVVASKNANANANANA
D1-29_04672240rpsR1COG023830S ribosomal protein S18 1ATGGCTAAGGCTGAACTCCGTAAGCCCAAACCAAAGTCCAACCCCTTGAAGGCCGCTGACATCACTGTCATCGACTACAAGGACGTAGCATTGCTGCGCAAGTTCATCTCCGACCGCGGAAAGATCCGCGCCCGTCGCGTCACTGGCGTCACGGTGCAGGAACAGCGCAAAATCGCACAGGCAATCAAGAACGCCCGCGAAGTTGCTCTGCTGCCTTACTCCGGCGCTGGCCGCGGCTAAMAKAELRKPKPKSNPLKAADITVIDYKDVALLRKFISDRGKIRARRVTGVTVQEQRKIAQAIKNAREVALLPYSGAGRGNANANANANA
D1-29_04673573ssbCOG0629Single-stranded DNA-binding proteinATGGCAGGCGAAACCACCATTACGGTCATCGGTAATCTCACCAGTGACCCGGAATTGCGGTTCACACCGTCGGGTTCGGCAGTTGCGAACTTCACCATCGCTTCCACCCCTCGTACCTTTGATCGCCAGTCCAATGAGTGGAAGGACGGGGAAACCCTGTTCCTCCGCGCCTCTGTCTGGCGTGAAGCTGCCGAGAACGTCGCGGAATCCCTGACCAAGGGCATGCGCGTCATCGTCTCAGGCCGCCTGAAGAGCCGTTCCTACGAAACAAAAGAAGGCGAGAAGCGCACCGTTATCGAGCTTGAGGTCGATGAAATCGGCCCTAGCCTGCGCTACGCCAATGCCAAAGTCAACCGCACCCAGCGCTCCGGCGCCGGAGGCGGACAAGGTGGCTTCGGCGGCGGCAACAGCGGTGGCGGCTTCGGAGGCAACCCTGGCGCAAACCAGGGTGGAAACTCCGGCGGAAGCTGGGGCGGCAACCAGCCTGCTGCACAGGAGGACCCTTGGGCCACCCCCGGTGTCAGCAACGCAGGCGGCTGGGGCAACGGCCCGGATTCCGAACCTCCCTTCTAAMAGETTITVIGNLTSDPELRFTPSGSAVANFTIASTPRTFDRQSNEWKDGETLFLRASVWREAAENVAESLTKGMRVIVSGRLKSRSYETKEGEKRTVIELEVDEIGPSLRYANAKVNRTQRSGAGGGQGGFGGGNSGGGFGGNPGANQGGNSGGSWGGNQPAAQEDPWATPGVSNAGGWGNGPDSEPPFNANANANANA
D1-29_04674306rpsFCOG036030S ribosomal protein S6ATGCGTCCTTACGAATTGATGGTAATCATCGACCCCGAGGTCGAAGAGCGTACCGTTGAGCCGTCGCTTCAGAAGTTCCTGAATGTCATCACCAACGATGGTGGAACCATCGAAAAGGTTGACATCTGGGGCCGTCGCCGACTGGCCTACGACATCAAGAAGAAGTCTGAAGGTATCTACGCCGTGGTGAACTTCACCGCCAAGCCGGACACCGCCAAGGAACTTGACCGCCAGCTGAGTCTCAACGAGACCATCATGCGCACCAAGATCACCCGCCCCGAAGAGCAGAAGGTCGTTGCTGAGTAAMRPYELMVIIDPEVEERTVEPSLQKFLNVITNDGGTIEKVDIWGRRRLAYDIKKKSEGIYAVVNFTAKPDTAKELDRQLSLNETIMRTKITRPEEQKVVAENANANANANA
D1-29_04675651hypothetical proteinATGGACGCCTCCCCCACCACCCTCCGCCGCAGCAGGCTTCGCTTCCTCGCCATGTTGGTCGCGGGGGTTGCCGCGGCAGCAGCCACCGGGGCCAGCGGCGGGTGGCTGCAGGCTCCGGCGGCAGGCTGGGCCACCGCGGCACTGGTTTATGTGGTGTGGGTGTGGACTGCGGTGGGCCGCATGGACCCCATGGAAACCAAATCGCACGCCACCACCGAGGACCCGTCCCGGGCCACGACTGACCTCCTCATCCTGGTGGCAAACATCGCCTCACTGGTTGCGGTGGCCGTCGTCGTTGTTGATTCACACCGGCCAGACGGTGGCGCCAGGCTGGAGGGTGCGGCGCTGGTGCTGGCAAGCGTTGCACTGTCGTGGATGCTGGTGCAGACCTTGTTCACACTCCGGTATGCCGGCCATTACTACGGCGGGCAGCAGGACGGCGGAGTGAACTTCAACCAGGACGGGCCACCCCGGTACACCGACTTCGCGTACCTGGCCACGAGCATCGGCATGACCTACCAGGTGTCCGACACCAGCCTGGAGAACCACCTGATCCGGCGCGAAGCCCTCAAGCACAGCCTGCTGTCCTACCTGTTCGGGACGGTCATCCTGGCGGCCACCATCAACCTTGTGCTGGACCTGGCGGCTTGAMDASPTTLRRSRLRFLAMLVAGVAAAAATGASGGWLQAPAAGWATAALVYVVWVWTAVGRMDPMETKSHATTEDPSRATTDLLILVANIASLVAVAVVVVDSHRPDGGARLEGAALVLASVALSWMLVQTLFTLRYAGHYYGGQQDGGVNFNQDGPPRYTDFAYLATSIGMTYQVSDTSLENHLIRREALKHSLLSYLFGTVILAATINLVLDLAANANANANANA
D1-29_046762694hypothetical proteinATGTCGTTAATTGGCCGAAGCAAGGAGCTGGACCGGGTCCTCGCAGTTATCCGAGGGCCGAAGGATTCCGCCCTGACCATCGTCGGCAGGCGCGGTGTCGGCAAGACGGCGCTGCTCTCCGAGATCCCAAGGCTCTCTGATTACCGGACAGTGTTCCTGCGCGCCAGCGCGTCCGAATCGGACTGGCCCCTCTCCGGCCTTACCGCCCTGCTCAACGGAATCGACGATCCGGTCCTGAACAGGTTCACCGATGAACTGCTCCGGGACTCCAACAGATCCATGGACGTCCCTACTGTTTCCACGATGCTGCTCAACGGACTCCACCAACGCTCATCGTCCCGCACCGTGATCGTCATCGACGACGCCGACCGGCTTGATCCCAGCAGCCAGGCCGTGATCGGTTTCCTGGCCCGGCGCCTCGCAGGAACGGAAATCGCGCTCTTCCTCAGTGTGCGGGAGGAAACAGCGGAGAGTCCTTTTGCCAGCCTGCCGGCGCTCGTGCTGAAACCGCTGAACTACAACGACACCGTCCGGATGCTTGAGTCGATTCCGGCGCGGCAGACCGCCACCGCAGCAGTCCACGCCGTTGCGGCAGCCACCCAGGGTAACCCGCTCGCCGCCGTCGAGCTCTACACCTGCCTGCTTGAGCGGCAGGCCGAGGGGAAGTACGCCCTTCCGGTTCCGCTTCCCTGCAGGGGTAGTTTCGAATCTGAGTTTGCCGCAACCGTTGGAGGGCTCTCGCGGGCGGCCCACCATGTCCTTGAGTTGCTTTCGCTGTCATGCCGGAGCGACATCGCAACACTGGAAAAGGTGTACAGCGATCTGTGGCCTGGAGTGGATGAGCTGCTCGCCTGTGGAATGGCCGCCAGAACGGGGCCGCACCTTCGGATTTCGGACCAGCTGCTCCGGGGTTATGTCTTTGCCGCCATGACACCGGCGGTCCGGACAGCTAACCACCGCGCCATGGCTGCAGCGGCGGACCCTACAGACCCTTACGCCAGGCGGTGGCACCTGAGTTTTACCGCACTGGAGCGGCAGACACCGTTTGGCCTCCTCCGGTTCGCCGTGGACCTCATCCGGAGCGGGGAAATTGCCTTCGCCGTCGAATACATTGAGCGCGCCCTTACCATCAACCCCTGGGAAGCAGAGACCGCTTCCCGCCTCGCCACTGTTGCCGAGCTGCTGTTTAACCGAAGCGAGTTTGTCTACGCAAAGCGCTACCTGGAGTGGGCGCAGCGGGTGACGCGCAACCCCGCCCTGATCCTTCGCCTCACAGGCCTCTCCTTCGAAATCCAGTTCGTTCAAGGCGCCGCCGTGCGCTCCAGCATGGTGCTGCGGCTGGTCAAGGAATTCGGCCGGCACGATCCCACTTTCGCCGCCAACCTACTGGCAGTGGGCGCGCTCTACTACGCGGAACGGTGGGAACTGGAGGACGCGGTCGGCCTGCTCCACTATGGGGAACAGTTCAAGGATTCAGCCAACGCGGACTGCCTGGCCCTGATGGGACGCACGAAGCTCCTGATCGAGGCCATCAGCGGAAAAACCGACAACGTCAACCGCAAACGCGACGCCGGAGGGTCGGATAACGCGGCAACCCTCCTGGTGATGGCCCGTGCCCTGAGCTATGCGGAGCACCATGAGCTGGCCCAGGAGGCCTTCGCCATGGTCCGGAACACCGTTGAGCCGGGCAACATCAACTGGCGGGAAACCGCAGCCTACCTTGCGGCGGACAATGAGATCCGTGCAGGCAATGTCCGGACAGCCGTGAGACTGATCGAGGACCTGGAGCTCTCTGAACCGGAGCTCAAATACCACCGCGGGATGCGGCATATCTTTCGGGTCTGGCGGGCCCATGCCTTGGGCGACGAAGCGCTGGCGCGGATCTACGCCACAGAGGCACAACACTTCTCCGGCGCCGAGAGCCACGCTGCCATTACGGCCCAACTGGCCGCCTGCCAGGGCCATTTTGCCCTGATGCGGGGCAACCTGGCTGAGTCATTCGCACAGCTCTCCCGGGCGGTGGAGATCGGAGCGGCATTCGGGAACCCCACACTGCTGCGGTGCGAGGCCGATCTGGTGGAAGTCCTGATCCGAATGGGAAGACACCGCGAAGCCACCGTGGCGCTCTTCCGGTTGGAGAGCCGGTCGGTGGGCCTGAGGTCCCCCTGGCTGATGATGGCTGTTGCGAGGAGCAGGGCGATGCTGGCCGACGGCGAACAGTCCCTGCAGCTGTTCGGCCAGGCGCTGGACGGCCGGAACGGCCATGAGTCCGTGCTCGAGCGGGCGCGGACGCTGCTCTGCTACGCAGAACGGCTCCACGCCTTTGGCCGGCTGCGGGATGCCCGCGACGGCCTGCTGCGTGCCAAGGTGATGTTCGATGAAGCCGGCGCCGATGCCTGGACCCAGCACGTGGACTCGCTTTTGCTTGATGAACGGGTGGAACCGGCACGTGCGGCAGGCAACCCGGCCATGCTCATGCTCATTGACCATGAACGTGCGTTGGCGCAGATGGTGGCCAGGGGGATGCGGAACAAAGAGATCGCAGCCACACTGTACGTCTCCGTCCGCACGGTAGAAGTGCGCCTGACGGCGATCTATCGCAAGCTCGGAGTAGAGTCACGCGCCCAGCTGACGGCCCTGGCTGCGGGCAAGGAAGCTGCCGCCCGGGAACCGTACGTCCTGCCCGTCTTATAGMSLIGRSKELDRVLAVIRGPKDSALTIVGRRGVGKTALLSEIPRLSDYRTVFLRASASESDWPLSGLTALLNGIDDPVLNRFTDELLRDSNRSMDVPTVSTMLLNGLHQRSSSRTVIVIDDADRLDPSSQAVIGFLARRLAGTEIALFLSVREETAESPFASLPALVLKPLNYNDTVRMLESIPARQTATAAVHAVAAATQGNPLAAVELYTCLLERQAEGKYALPVPLPCRGSFESEFAATVGGLSRAAHHVLELLSLSCRSDIATLEKVYSDLWPGVDELLACGMAARTGPHLRISDQLLRGYVFAAMTPAVRTANHRAMAAAADPTDPYARRWHLSFTALERQTPFGLLRFAVDLIRSGEIAFAVEYIERALTINPWEAETASRLATVAELLFNRSEFVYAKRYLEWAQRVTRNPALILRLTGLSFEIQFVQGAAVRSSMVLRLVKEFGRHDPTFAANLLAVGALYYAERWELEDAVGLLHYGEQFKDSANADCLALMGRTKLLIEAISGKTDNVNRKRDAGGSDNAATLLVMARALSYAEHHELAQEAFAMVRNTVEPGNINWRETAAYLAADNEIRAGNVRTAVRLIEDLELSEPELKYHRGMRHIFRVWRAHALGDEALARIYATEAQHFSGAESHAAITAQLAACQGHFALMRGNLAESFAQLSRAVEIGAAFGNPTLLRCEADLVEVLIRMGRHREATVALFRLESRSVGLRSPWLMMAVARSRAMLADGEQSLQLFGQALDGRNGHESVLERARTLLCYAERLHAFGRLRDARDGLLRAKVMFDEAGADAWTQHVDSLLLDERVEPARAAGNPAMLMLIDHERALAQMVARGMRNKEIAATLYVSVRTVEVRLTAIYRKLGVESRAQLTALAAGKEAAAREPYVLPVLNANANANANA
D1-29_046771587hypothetical proteinATGGCAGAGATACCAGTTGCCCGCACCCGGCATGGCGCCTTTAGCTGGCCCGTTGCCACCGTTGCTGCACAACGGCAGGCAACCGCGCCGTTGGCGGCAGCAGTACCCGTTGGAACCCGGGACCTGCTGCCGCCGGCGGCGGCCTTCCCCCAGGCCGGGCAAGGCCGTAAGGCGGCCAGTGCCTGGATCGGCACACTCATTGGACTTCTTCGCACCGCGGACTCGCTCCTGGTGGCGGGCGCCGTCTACGCCGGCTACCTGCTGTCCGGGGGCGGAGCTTCAGCCGGCACAGGCAACGGCAACAGAACTCTCGCCACCGCAGCAGTAGTAACCGTCCTGTGGCTCGCAGCCCTGGAGCTCTACCGGACCCGTGACTCAAAGGTCCTGGGCGTTGGCGCCGATGAATACAAGCGCGTTGCCTCCGCAAGCCTGCGGATCTTCGGGCTGATGGCGATCATCGCCGTCGTGTTTTCAGTCCCCGCCACCGCCTTTGTTACCGTCTCCCTGCCACTGGGCCTGGTGGCCCTGACAGGAAACCGCTGGGCCTTCAGGCGCTGGCTTACCAAGGAAAAGGCCCGCGGACACCACCTCTCGAGGGCAATCGTGGTGGGGGAGCCGGAGGATGTCCGGTACGTGGTCCAACAGGTCGCCAGGAAATCCAGTGCGGTCTACAAGATTCTTGGGGTCTGCCTTCCAGGTGCACGCAGGGGGGCAAGTCTCCGGGTGGACAGGGAACAGGTACCGGTCCTGTCCTCCACTGACGACATTGCACGGACCGCGCGCCTGGCAGAGGCCGACGCCGTAATTGTTGCCGGCCCGCTCCCTGGCGGCAACAGGTTCATCCGTGAGCTTGGCTGGAAGCTGGAGGAATGCGCCGCCGAAATGGTCCTGGCGGCTACACTCACCAACGTGGCCGGTCCGCGGATCCATTGGCGTCCGGTGGAGGGCCTTCCCCTCATGCACGTGGACATACCGCAGTACTCCGGGGCGAAGCATGTGCTCAAGCGCGTCATGGATGTTGCGATGGCGCTGGCGGCGCTCCTGGCACTGTCCCCCCTGCTCGTGGCTTTGGCAATCATCGTCCGGATGGACAGCCCGGGCCCGGTGTTTTTCCGCCAGGACCGGGTTGGAAAGGGCGGCAACGTGTTCGCGATGTTCAAGTTCCGGTCCATGGTGGTGGATGCCGAAGCCCGTCTTGCGGCCCTGAACGGCAGCAATGAAGGAGCCGGCGTTCTGTTCAAGCTGCGGGATGATCCCCGGGTCACCCGCTGCGGACGCTGGATGCGGAAGTACTCACTGGACGAACTTCCGCAGCTGTGGAACGTGGTGCTCGGCAACATGAGCCTTGTGGGCCCGCGTCCCCCTCTAAACCGGGAAGTGGACGGCTACGAACGGCACACACACCGGCGCCTGCTGATCAAACCGGGAATCACGGGGCTCTGGCAGATCAACGGCCGCTCGGACCTTTCCTGGGACGAGGCCGTACGCCTGGACCTCTATTACGTCGAAAACTGGTCCATCGCCGGAGATCTCCTGATTCTCTGGCGGACCTTCCGCGCAGTCATCCGGCCTTCCGGCGCCTACTAAMAEIPVARTRHGAFSWPVATVAAQRQATAPLAAAVPVGTRDLLPPAAAFPQAGQGRKAASAWIGTLIGLLRTADSLLVAGAVYAGYLLSGGGASAGTGNGNRTLATAAVVTVLWLAALELYRTRDSKVLGVGADEYKRVASASLRIFGLMAIIAVVFSVPATAFVTVSLPLGLVALTGNRWAFRRWLTKEKARGHHLSRAIVVGEPEDVRYVVQQVARKSSAVYKILGVCLPGARRGASLRVDREQVPVLSSTDDIARTARLAEADAVIVAGPLPGGNRFIRELGWKLEECAAEMVLAATLTNVAGPRIHWRPVEGLPLMHVDIPQYSGAKHVLKRVMDVAMALAALLALSPLLVALAIIVRMDSPGPVFFRQDRVGKGGNVFAMFKFRSMVVDAEARLAALNGSNEGAGVLFKLRDDPRVTRCGRWMRKYSLDELPQLWNVVLGNMSLVGPRPPLNREVDGYERHTHRRLLIKPGITGLWQINGRSDLSWDEAVRLDLYYVENWSIAGDLLILWRTFRAVIRPSGAYNANANANANA
D1-29_046781140iolG_16Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGAAAAACTTCGCCAATCCGTTCCACACCCCCACGCACCGGCAACCGACACGGAAACTCAGGATCGCCGTCGTCGGGGCCGGGTACTGGGGTCCGAACCTGGCCCGGAACCTGCAGGCAAGCCCCGAGTGGGACCTGGTGGCCATCTGTGATCTGGACATTGAGCGCGCCGCCAAGCTGGCTGCCACGCTGGGTGAGATTCCCGTCGTCGAGTCCCTTGATGAACTGCTGGACACCTTTGACGTGGACGCAGTGGCCATCGCGACGCCGGCCCGCACCCACCACGGGACGGTCATGACCGCGCTGCGCGCCGGGAAGCACGTCCTGGTGGAGAAGCCGCTGGCAGACAGCCGGGCGCACGGGCTGGAGATGGTGGCCGAGGCCGAGGCGAACGGGCTGGTCCTGATGGCAGACCACACCTATTGCTATACCCCGGCGGTGCTGAAGATGCAGGAACTGGTGCAGGCCGGCTCACTGGGCGAGATCCTCTTTGTGGATTCCGTACGGATCAATCTGGGGCTGGTGCAGCCCGATGTGGATGTGTTCTGGGACCTGGCGCCCCACGACCTGGCCATCCTGGACTTCATCCTTCCCGGTGGGCTGAACCCGGCTGAGGTGTCAGCATTCGGAGCAGATCCCTTGGGTACGGGCCGTGACTGTGTGGGACACCTGAATTTCAGGCTGCCCAATGACGCCACTGCCCACGTGCACGTGAACTGGCTGAGCCCCACCAAGATCCGGCAGATGGTGATCGGGGGTTCGCTGCGGACGCTGGTGTGGGACGATCTCAACCCGCAGCAGCGGCTCAGTGTCTACGACCGGGGAGTCAGCCTGGACCGGCAGCCCAAATCACCTGGCGAGAAGAAAACCTCCGCGATCTCCTACCGGCTGGGTGACACCTGGTCCCCGGCCCTGCCGGAACGGGAGGCCCTGAGCCAGGTGGTGGAAGAGCTGGCCTACTGCATCCACAACAGGCGTGAAGCCCGCACCGGCGGAGCATCCGGCCTCCGGGTTCTCTCCGTGCTGGAAGCGGTGACCCGCAGCCTGAGCCTGGATGGCCGGGCCTCTTCAGTGGCCGGGGTTGGGGCTGCAGGTTCCGAAACTGTAGATTCCGCTGTTCAGCTGGAGCGTGTGCGGTGAMKNFANPFHTPTHRQPTRKLRIAVVGAGYWGPNLARNLQASPEWDLVAICDLDIERAAKLAATLGEIPVVESLDELLDTFDVDAVAIATPARTHHGTVMTALRAGKHVLVEKPLADSRAHGLEMVAEAEANGLVLMADHTYCYTPAVLKMQELVQAGSLGEILFVDSVRINLGLVQPDVDVFWDLAPHDLAILDFILPGGLNPAEVSAFGADPLGTGRDCVGHLNFRLPNDATAHVHVNWLSPTKIRQMVIGGSLRTLVWDDLNPQQRLSVYDRGVSLDRQPKSPGEKKTSAISYRLGDTWSPALPEREALSQVVEELAYCIHNRREARTGGASGLRVLSVLEAVTRSLSLDGRASSVAGVGAAGSETVDSAVQLERVRNANANANANA
D1-29_04679996galE1COG1088UDP-glucose 4-epimeraseGTGAGCGAGCTTCAGGGGGCCAACGTCCTGGTGACCGGTGGAGCCGGGACCGTGGGGTCGACCTTGGTGGACGCCCTGCTGGAAGCAGGCGTGAACCGCATTGACGTACTGGACAACATGGTCCGGGGCAGGCTGACCAATCTCGCCGGGGCGCTGGCCACAGGGCAGGTGGCTCTGGTCCAGGGAAATATCTGCAACCGGGACCTGGTGCACGACCTGACCAGGGGCAAAGACCTCGTCTTCCATCAGGCGGCCATCAGAATTACCCAATGCGCCGAGGAACCCCGGCTTGCCCTGGAGGTCCTGGTTAACGGAACCTTCAACGTTTTGGAAGCTGCCGCCGAACACCAGGTTGACAAGGTGATAGCGGCCTCAAGCGCCTCGGTGTACGGCATGGCGGAAGAGTTTCCCACGCCTGAGCGCCACCATCACGCCAACAATGACACGTTCTACGGAGCCGCCAAGTCCTTCAATGAGGGGATGGCCCGCAGCTTCCACGCCATGACCGGGCTGGACTACGTGATGCTCCGCTACTTCAACGTTTATGGACCCCGGATGGACGTCCATGGCCTGTACACCGAGGTACTGGTCCGGTGGATGGAGAGGATCGCGGACGGCGAACCGCCCCTGATCTTTGGCGATGGGCTGCAGACCATGGACTTTGTGTATACCGCCGACGTGGCCAGGGCCAACGTCCTGGCGGCCGGCAGCGACGTCAGCCATGGCATCTACAACATCGCCAGCGGAACCGAAACAAGCCTGCTGGACATGGCACGCACGCTGCTCCGGGCCATGGGCTCTGAGCTGGCCGTGGAGCACGGCCCGGCGCGTCTGGTGAACAGTGTGGTCCGGCGGCTCGCCGACACCACCGCAGCCCGGCGCGATCTGGGATTCGAAACCGAAGTGGGGCTCGAGGAAGGGCTCCGCGAACTCGTCAGCTGGTGGGAGCCATTGCGGGACGAGATCGCCGCAACCAGGAAAGTTGGTGCCCGATGAMSELQGANVLVTGGAGTVGSTLVDALLEAGVNRIDVLDNMVRGRLTNLAGALATGQVALVQGNICNRDLVHDLTRGKDLVFHQAAIRITQCAEEPRLALEVLVNGTFNVLEAAAEHQVDKVIAASSASVYGMAEEFPTPERHHHANNDTFYGAAKSFNEGMARSFHAMTGLDYVMLRYFNVYGPRMDVHGLYTEVLVRWMERIADGEPPLIFGDGLQTMDFVYTADVARANVLAAGSDVSHGIYNIASGTETSLLDMARTLLRAMGSELAVEHGPARLVNSVVRRLADTTAARRDLGFETEVGLEEGLRELVSWWEPLRDEIAATRKVGARNANANANANA
D1-29_046801167arnBCOG0399UDP-4-amino-4-deoxy-L-arabinose--oxoglutarate aminotransferaseATGACTGCGGAAACAGTCCTTGCCCGGATCAACGTCATGAAGCCCTGGCTCGGCGACGAGGAGGCCCGTGCTTTGGCGGAGGTTGTTGCCTCCGGCTGGGTTGCCCAGGGACCCAAAGTCAAGGAGTTTGAAGCGGACTTCAGCCGCGCGCAGCAGGTGCGTCACGCCGTCGCGACCTCCAGCTGCACCTCCGCGCTGCACCTGGGGCTGGTGGTGGCCGGCGTCGGGCCCGGAGACGACGTGGTGGTGCCGTCGCTGTCCTTCATTGCCACAGCGAACGCCGTGGCGTATGTGGGGGCCCGGCCCGTGTTCTGCGACGTCGACCCGGCCACCGGCAATGTGACCGCAGAGACGATCCACGCGGCATTGACCCTGGATACGCGGGCGGTCATCGTGGTGGACCAAGGCGGCGTACCCGTTGATCTGGACCCCATCCGGGAGCTGTGCAACCGGCACGAACTCACCGTCATCGAGGACGCGGCATGCGCCGTCGGGTCCACCTATAAAGGCAGGCCGGTGGGGACCGGGGCGGATGTGGCGGTGTGGTCGTTCCATCCGCGCAAGATCCTTACCACCGGCGAGGGCGGGATGCTGACCACCCACCGCGCTGATTGGGCGGCCCGGGCCAGGACATTGCGGGAGCACTCCATGAGCGTTTCCGCCACCGACCGCCACGGGTCCTTGCTGGCCCCGCCGGAGGTGTATCTGGAGATTGGCTTCAACTACCGGATGACTGACCTGCAGGCCGCCGTCGGGATTGTGCAGCTGGGCCGGCTCCATCAGATAGTGGAACGGCGGCGGGAGATCGCAGACCAGTATGTCGCCCGTCTCTCAGGCTTGAAAGGCCTTCGGTTTGTTGCCGACCCGCCATACGGTGCCACCAACTTCCAGTCTTTCTGGCTCGAGGTCCTGCCGGCCTTCCCGGTTGACCGTGAAGGGCTGCTGGCCCGGCTGGCCGATGCCGGCATCTCAGCCCGCCGCGGGATCATGGCGGCCCACCGGCAGCCGGCTTACCGCTGGCGCGACACCGGTAACGCCGCGCTGCAGAACACGGAGCGGCTCACCGACAGGACCCTGATCCTCCCGGTCTTCCACGAACTGGATGCATCGGGGCTGGACCGGGTCATTGCCTGCATCCGTGCCGCGGCCGGCGAGGTGGGAACGTGAMTAETVLARINVMKPWLGDEEARALAEVVASGWVAQGPKVKEFEADFSRAQQVRHAVATSSCTSALHLGLVVAGVGPGDDVVVPSLSFIATANAVAYVGARPVFCDVDPATGNVTAETIHAALTLDTRAVIVVDQGGVPVDLDPIRELCNRHELTVIEDAACAVGSTYKGRPVGTGADVAVWSFHPRKILTTGEGGMLTTHRADWAARARTLREHSMSVSATDRHGSLLAPPEVYLEIGFNYRMTDLQAAVGIVQLGRLHQIVERRREIADQYVARLSGLKGLRFVADPPYGATNFQSFWLEVLPAFPVDREGLLARLADAGISARRGIMAAHRQPAYRWRDTGNAALQNTERLTDRTLILPVFHELDASGLDRVIACIRAAAGEVGTPGPT0022785_621DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PEROSAMINE_MODIFICATION,PGPT0022785-per|rfbE-K13010NANA
D1-29_04681660lpxD_2UDP-3-O-(3-hydroxymyristoyl)glucosamine N-acyltransferaseGTGAGCGAACTGATCCTGATCGCGGCGAGCGGACTTGCCCGCGAAGTCCTGGCAATGGTGCGCAGCAGCGGCCAGTACGACGTCGTGGGACTGCTCGACGACGACAAGGAGATGGCGGGCGTCACCGTCGACGGCGCGCCCGTCCTGGGGACCATCGATGACGCCCCCAAGTACACCCACGCCTTTGTGCTGGTCTGCCTGGGATCCGGCAAGGCGCGTGAGGCGGTGGTGGACCGGCTCACCGCGATGGGCCTGCATGAGGCCCGCTACGGTACGGCGATCGACCCCAGCGTGCAGTGCCCCGAAGGCTGCCGGATCGGCAGGGGCAGCATCCTGCTGCGGAACGTCACGCTGACCGCGTCCGTCACCCTGGGACGGCACGTAGTTGCAATGCCGTCAGTGACGTTCACGCACGACGACGACGTGGCTGACTTCGCCACGTTTGCCGCCGGTGTCTCGCTGGGCGGCGGAGTCCGGATCGGCAGGGCTGCCTACCTCGGGATGAATTCCAGCGTCCGCGAGAGGACATCTGTGGGAGCGTACGCCACAGTGGGCATGGGTGCCGCCGTCCTGAGCAACGTCCCGGATGGCCAAACCTGGGTGGGGGTACCGGCCCACGAAATGGACAACGGAACCTTCAGCTTTGGGAGCGCACGATGAMSELILIAASGLAREVLAMVRSSGQYDVVGLLDDDKEMAGVTVDGAPVLGTIDDAPKYTHAFVLVCLGSGKAREAVVDRLTAMGLHEARYGTAIDPSVQCPEGCRIGRGSILLRNVTLTASVTLGRHVVAMPSVTFTHDDDVADFATFAAGVSLGGGVRIGRAAYLGMNSSVRERTSVGAYATVGMGAAVLSNVPDGQTWVGVPAHEMDNGTFSFGSARNANANANANA
D1-29_046821191desVdTDP-3-amino-3,4,6-trideoxy-alpha-D-glucose transaminaseATGAGTGCGGGGATGCCCGTCTGGGCGGACGCCGGCACTGCTGAGGCCCCGGCTCTGTTTGTGTTGCCTGGAGCACCAGTGCCGCTGGTTGATCTCGCTGCCCAGCAGGCAGAGGTCAACGACGAGGTGATGGCCGGGGTGCGGGAAGTCCTCGCCCGGGCGGCCTTTATTGGCGGTCCAGCCGTAGCCGGCTTCGAGGCCTCCTACGCGCGCTTCGTCGGTGCCCGCCATTGTGTGGGGGCGGCAAATGGCACCGATGCGCTGGAACTGGCACTGAGGGCATCTGGTGTTGTTTCGGGTGGCGAAGTCATTCTTCCGGCCAATACTTTTATTGCCACCGCTGAAGCGGTGAGCCGCATTGGCGCAGTGCCTGTTCCGGTCGACGTCGATCCTGAGTACCTGCTGATCGATCCAGAGGCCGTCGCGGCCGCCGTGACGTCCCGGACCCAGGCAATCGTCCCCGTGCACCTGTTTGGGCAGACGGCCTTTGTGGAACGCCTCATCCCGATTGCTGCTGCCTGCGGAGCTGTCATCGTGGAAGATGCCGCGCAGGCGCAGGGCGCCAGCCGGTTTGGCCGTTCTGCGGGAACGCTGGGTTTGGCAGCCGGGACAAGCTTCTACCCAGGCAAGAATCTCGGAGCTGCCGGGGATGCAGGGGCCGTTCTGACGGACGACGCCGGCATTGCCGACAGGGTACGCCTGCTTAGCGCTCACGGCAGCTCACAGAAGTACGTGCACGACGCCGTGGGGTTCAACTCCCGGCTGGACGCCATCCAGGCCGTGGTGCTCAGTGCCAAACTGGCCAAACTGCAGACCTGGAACGCGATGCGTCGCGCAGCAGCCGCCCGCTACTCCGAGCTTCTGGCTGATATCCCTGGGCTTGAACTCCCCCGTGAAGCACCTGGCAACAGGGACGTGTGGCACCTCTACGTGGTGCGGGTGGCCGAACGGGATGCGGTTTTGCAGGCTCTGCACGCTGCAGGCATCGAGGCCGGAGTCCACTATCCGGTCCCGGTACACCTCAGCGGAGCCTATGCCGATCTTGGCCTGGGCAGGGGCTCGTTCCCGGTTGCCGAAGCGGCCGCGGCGAGGATCCTCTCACTCCCGCTCTTTCCGCACATAACGCCGGAACAACAGGTGCGCGTGGTGGAGGCGCTGCGGAGGACGCCGGCAGCGGTGGACGGTGCCTAGMSAGMPVWADAGTAEAPALFVLPGAPVPLVDLAAQQAEVNDEVMAGVREVLARAAFIGGPAVAGFEASYARFVGARHCVGAANGTDALELALRASGVVSGGEVILPANTFIATAEAVSRIGAVPVPVDVDPEYLLIDPEAVAAAVTSRTQAIVPVHLFGQTAFVERLIPIAAACGAVIVEDAAQAQGASRFGRSAGTLGLAAGTSFYPGKNLGAAGDAGAVLTDDAGIADRVRLLSAHGSSQKYVHDAVGFNSRLDAIQAVVLSAKLAKLQTWNAMRRAAAARYSELLADIPGLELPREAPGNRDVWHLYVVRVAERDAVLQALHAAGIEAGVHYPVPVHLSGAYADLGLGRGSFPVAEAAAARILSLPLFPHITPEQQVRVVEALRRTPAAVDGAPGPT0010900_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-ERYTHROMYCIN_METABOLISM,PGPT0010900-erCI|desV-K13310NANA
D1-29_046831563wzxCCOG2244Lipopolysaccharide biosynthesis protein WzxCATGACCGATGAGTCCAAGGTCCGGGTGACGACGCAGGAGGCCCTGCCCCGCCAGCACAAAAAGGCTGCTAATTCCAACGCCGCTTTGGGTTCAGCGGTAAGACGCGGGGCCCTGTGGACAGCAGGCAGCACAGTGCTGCTACGCCTGGGCAACATCGCACTTATGGCAGTCGTGGCCAGAATCGTGTCACCAAGGGAACTGGGGATCTTTACGCTCGCGGTAACGGTTCATGCGGTGATCGTGAGTGTCGCGGAGCTCGGAGCGGCCTCTGCTATTGCACGATCCGACTTGGACCTCGGCCGCATTGCCCCTACCGTAGGCTTGATTTCAATCGTCAGCAGCCTCGCTATGGCTGCACCAATGTTCATCTTCGCTGACAGCATCGCTGAGGTACTTGGCACGGCAGAAGCTGGACCGTCCATGAAGATCATGGCCATCGGAGTGGCGCTCATCGGCCCGTTTGCCGTACCCGGAGCCCTTCTTCAGCGGGATTTCCGTCAGCATGTGATCTTCTGGGCCTCCGCCATCGCCTTCGTGCCCGGCAGCGCCACTTTGCTGCTCCTTGCCCTGCAAGGCAGCGGTCCCGAGTCCTTCGCTTGGTCACGGATTGTGGGCCAGGTGGTAATGGGCGCGATCATCCTGGCGGCAACCGGCAGGCCATTGATGCCCCGGCTGGACCTTAGCGTGCTCAGACCGCTCCTCGCCTTCGGGCTGCCACTGGCGGGGGCGAACCTCCTAAGCCAAGTGCTGCTGAACGCCGACTACCTATTCATCGGACGGATGTTGAGCGCCACCGAACTTGGTATCTACTTCCTTGCCTTCAGTATTGCTATGTGGCCCACGGCAGTGATCGGCTCGATGCTGAACGGGCTCGTGCTACCCGCCATCTCCGCGGTCCGCCGCGACGGCGGGGATGTAGCGGGAGCCGTCAGGTTGGGAGTACGGACCGTTGCTCTCATCGCGTTCCCTTTGGCGGCGTTCCTTTGCACGTTCTCGGCTGCGTTGGTGGAAACGATCTACGGGACGGCGTGGCTGCCGGCTGCACGGGTGCTTTCCGTGCTGGCCATCTATGGTGCGGTGTCGGTCGTGGGACTCTTCCTGGCCAACGTCATCATCGCCACCGGACGCACCGGTGTCCTGCTCGGGGTCCAGGTCTGCGCCCTGGCGGTGCTTCTGCCGGGCCTTCCGTCGGCTATCAACTTGGGCGGCATCGAGGGTGCTGCACTCACGCATGTCATCGTCATCGTGGCCGTCACTTCACCGGTTTACGTGGTTGCCCTGAGGCGCTCCACCGGACTCCGGATCCCCGAACTCCTGGCGGCGCTATCTCTTCCCACGGGGACAGCCGCGCTGACGGCACTGGTCGCGTGGGCGGCCACGCTTGGCCTTGAGGACCCGCTGCTGAAACTCATCGTCGCAGGCATTATCGGCCTGTGCCTCTACATGTCACTCAACTGGCGGGACATATCCTCGCTGGTCCCAGCCAAACTCATCACCCGTCTCCCACGGGCGAAAAGCCGCTTCTTCGGCCGTACAGGCGGTCCAAAGAGGAGTTCACTATGAMTDESKVRVTTQEALPRQHKKAANSNAALGSAVRRGALWTAGSTVLLRLGNIALMAVVARIVSPRELGIFTLAVTVHAVIVSVAELGAASAIARSDLDLGRIAPTVGLISIVSSLAMAAPMFIFADSIAEVLGTAEAGPSMKIMAIGVALIGPFAVPGALLQRDFRQHVIFWASAIAFVPGSATLLLLALQGSGPESFAWSRIVGQVVMGAIILAATGRPLMPRLDLSVLRPLLAFGLPLAGANLLSQVLLNADYLFIGRMLSATELGIYFLAFSIAMWPTAVIGSMLNGLVLPAISAVRRDGGDVAGAVRLGVRTVALIAFPLAAFLCTFSAALVETIYGTAWLPAARVLSVLAIYGAVSVVGLFLANVIIATGRTGVLLGVQVCALAVLLPGLPSAINLGGIEGAALTHVIVIVAVTSPVYVVALRRSTGLRIPELLAALSLPTGTAALTALVAWAATLGLEDPLLKLIVAGIIGLCLYMSLNWRDISSLVPAKLITRLPRAKSRFFGRTGGPKRSSLPGPT0023260_22DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023260-wzxC|wzx-K16695NANA
D1-29_046841164hypothetical proteinATGAGAGTAGGAATCATCTACCCGGTTCCGGAGCCGCTTGCAGCGGCTAACTGGTCCGGCACGCCCCACGGGATTGCCTCTGGATTCACGTCCATTGGAGCCGACGTCGTGCCGCTGGGGGTCAAGGTCCCACCGGTTCTGCACGAAGCCGTGGCAGTCCTGTCCCGGGCCACCGGCCGACGGGGCGCCGTCGCCGATCGCATGCAAATCCGGCAGTGGGCGAGGACCAATGCCCTGAAGAGCCGCATCGCCGAAGCACTGCCCCTGAACGCCGTCGTTGCCATGGGCACCGAAATGTACGACTTGGCCAGTATCCTGCCACCGGGTCTACCGGCGGCGACCTACGACGACGGGACCCTACTCCAGATGTACGCGGACCCAATGTCCGACATCAGCCAGTCCCGATTTCCAGCAGGACACGTCAGGCGTTGGGTTGACCGGCAGAAGCGGTCGAGCCAGGCCGCCCAGGTGTGTTGCGTTAGCACTGGCTGGGCTGCTGAATCGTTTGTTGCGGATTACCGTATTCCGTCACATCTCGTTGCAGTTGTAGGTATGGGGCACCGTCCGCGCCGGGCTGCTCCCGGTGTCGTCAGAGACTGGTCAGTACCCAGGTTCCTTTTCGTGGGTGTCGAGTGGCAGCGCAAGAACGGTGACGTCGTGCTGGAGGCATTCCGGGAAGTCCGGCACCGTCACCCGGAGGCCACCCTCGACATTGCCGGAAACCATCCGGCCCTGAACGTCCCCGGTGTCACCGGGCACAAATTCCTTTCCCGTACGGATGTGGCCGCGCAGGAGCGGCTGGATGGCCTTTACGCGCGGGCTACCTGCTTTGTGCTGCCCAGCCGGTTTGATCCCTCACCAATCGCCTACCTTGAAGCCGCATCTTCAGGACTGCCTGTCATCGCGACCACTAGGGGCGGGGCTGCAAGCCTACTAAAAGACGGAGCGCTTGTTGTCGAGCCCGACGACCACGACGCCCTGGTGGCGGCCATGCTCACCTACTCAGATCCGGCCGCAGCCGCCAAGGCCGGTGCGGCCGCCGCGGACAGTGCAGCTACATCGTCCTGGGCCCACGTCGCCCGCCGCATATGTGACAGCCTCGGCCTTGGTGACGGGCGCGAGAGCGTCGCAGCCATCAGAACGCAAGGAAAACGCTATGTTTAGMRVGIIYPVPEPLAAANWSGTPHGIASGFTSIGADVVPLGVKVPPVLHEAVAVLSRATGRRGAVADRMQIRQWARTNALKSRIAEALPLNAVVAMGTEMYDLASILPPGLPAATYDDGTLLQMYADPMSDISQSRFPAGHVRRWVDRQKRSSQAAQVCCVSTGWAAESFVADYRIPSHLVAVVGMGHRPRRAAPGVVRDWSVPRFLFVGVEWQRKNGDVVLEAFREVRHRHPEATLDIAGNHPALNVPGVTGHKFLSRTDVAAQERLDGLYARATCFVLPSRFDPSPIAYLEAASSGLPVIATTRGGAASLLKDGALVVEPDDHDALVAAMLTYSDPAAAAKAGAAAADSAATSSWAHVARRICDSLGLGDGRESVAAIRTQGKRYVPGPT0018547_725DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018547-yqgM-K16150NANA
D1-29_046851074hypothetical proteinATGTTTAGGCGCGTCCGGCAGGGCGGGGGCGACCGCCAGCCCGAGGTCCTGGTCGTCGTCCCGTGTTACAACTACGGCCGCTACCTCCAGGCTTGCGTACTGAGCCTGCTGTCCCAAGAAGGCGTTTCAGTCCGGATCCACATCCTCGACGACGCTTCAACTGATGGGAGTGACAAGGTTGCGGAAGCGATCGCTGAGCGGGACCGGCGGGTCCAGTTGACTCTACATGCCAGCAACCGCGGACACATCGCAACCTACAACGAGGGTCTCATGGTCGCCGATTCCGACTACGTAGTGCTACTGTCCGCTGACGACATGCTCGCACCCGGCGCGCTGGCACGCGCTACCGCACTGATGGATGCCTTTCCTTCCGTTGGATTGGTTTACGGCCATCCGCAAGCATTTGAAACGGAGCCTGAACCCGAGACGGGCCGGCTTCGGAACTGGTCAGTCTGGCATGGTGACCGCTGGATCGCCGCCCAGTGCAGGCGGGGAATCAGCATCATCAGCAGCCCGGAGGCGGTGGTCCGGACAGCAGTTCAGCACCGCGTGGGCTACTACAGGCCGGAGCTGCCGCATTCGGGTGATCTCGAAATGTGGCTCCGGATCGCAGACGTAGCAGGCGTAGGACGGATCAATGGACTCGACCAGGCCTACCGCCGTGTGCATCCTGCCAGCATGATGTCCACCGGATACGGCACCCTGCAGGCGGACCTGCAAGAACGCGTCAAGGCCTACGACTCATTCTTCGCCCGCACTGCACTCGATGACGCTAGAACCCAACAGCTGGGGCGCGTCGTGAAACGCCGGATGGCCATGGAGGCACTCGAATGGTCAGCGACATCATGCACGGCGGGCAACGTTCCCGCCCCTGAAATAGACGAGGCCATTTCCTTTGCCCTCGAAATCTATCCGGAGGCAGTGTCATCGCCCGCGTACCTGGACTACCTCTACCGCTCGGGGACCGCCTCAGGGCCGAGCCTGGCCAAGGCGGTGACCGCGTGGCGCGGGTCCATCCAGCGCGACGTTGGCCCGCGTATCCGGTGGCGCCAGTGGAGGAGATATGGAATCTAAMFRRVRQGGGDRQPEVLVVVPCYNYGRYLQACVLSLLSQEGVSVRIHILDDASTDGSDKVAEAIAERDRRVQLTLHASNRGHIATYNEGLMVADSDYVVLLSADDMLAPGALARATALMDAFPSVGLVYGHPQAFETEPEPETGRLRNWSVWHGDRWIAAQCRRGISIISSPEAVVRTAVQHRVGYYRPELPHSGDLEMWLRIADVAGVGRINGLDQAYRRVHPASMMSTGYGTLQADLQERVKAYDSFFARTALDDARTQQLGRVVKRRMAMEALEWSATSCTAGNVPAPEIDEAISFALEIYPEAVSSPAYLDYLYRSGTASGPSLAKAVTAWRGSIQRDVGPRIRWRQWRRYGINANANANANA
D1-29_04686906hypothetical proteinATGGAATCTAAAATGCGCGGCCTCGCTGTGGTTACGCCAAGCTACGCCCCCGACAGCGAACTCTGTCGCGATCTGAACCGCTCTGTCCTGCAATGGACGCCTCCGGACGTACAGCACCACATCATCGTGCCCAAGCAGGACCTGGCGCGCTTCCGGATGCTCGCCAACGACAGAACAGTCATCCACGATGACAGAGAGTTCCTCTCATCCACGATCAGGAGGCTGCCGCTGCTGAAGTTGTGGATCAACAGCCAGCGCCCCTGGCTGCCTGTCCGTGGCTGGATCACGCAGCAGCTGATTAAGCTCTCCGCCGCAGCAAACCTGGATGCGGAAGCCACGCTGCTGGTCGATTCGGACATGGTCTTCGTCTCGACGACCGGATTGAAGTCATTTCAGCAGAACGGCACGCTGGCACTCTACAGAAAGCCCGGGGCTGTCCATTCCGGGCTGCCCAGGCACCGGCAGTGGCTGGAGTCGGCACACTACCTGCTGGGCTTGGAACAGCCCGGCCCGGAGGACCTGACGGACTATATTTGCTGGCCCTGCGCATGGGATCCCGGAACCGTTCGGGCCATGCTCCGACGGGTCGAGGACGTCACGGGGCTTCCATGGCAGTCAGCGATCGCATCCCAGCTTCACTTCTCCGAGATGATGCTCTACGGCGCCTACGTTGACGGGGTCCTGGGTGGTGCACTGGCTACGACATCTTCGATGAACAGTGTCATTTACTCCGCCGAGGCGCCACTGAACCCCGCCGAAATCAACGCCCTGCTTAACAACGCCACCGGAACCGTACAGTCGGTAATGATTTCCGCCAAGTCCGGGATTGCGTACGAGGTCCGCGCGAAGGCCCTGCAGGAATACGTGGATTCCCGCCTCCGCAGCAGAAGTGGAGGCTCTTTGTGAMESKMRGLAVVTPSYAPDSELCRDLNRSVLQWTPPDVQHHIIVPKQDLARFRMLANDRTVIHDDREFLSSTIRRLPLLKLWINSQRPWLPVRGWITQQLIKLSAAANLDAEATLLVDSDMVFVSTTGLKSFQQNGTLALYRKPGAVHSGLPRHRQWLESAHYLLGLEQPGPEDLTDYICWPCAWDPGTVRAMLRRVEDVTGLPWQSAIASQLHFSEMMLYGAYVDGVLGGALATTSSMNSVIYSAEAPLNPAEINALLNNATGTVQSVMISAKSGIAYEVRAKALQEYVDSRLRSRSGGSLNANANANANA
D1-29_046871266hypothetical proteinGTGACTTCGATCCAGCGTTTCCTCTACCGTCCTTGGCGGCTTCTGCAGACCCAAGGGACAGCCGGCGTGACCACGATTGTGGCACGACGGCTGGTGAACAAGATGAACGAGCACATGGACCTTGTCTCCGCTGAACTGCCCGTGCGGCCCGAAGACCTCGCCGACTCCAGTGCCCTGCCTCCGACAATCACGGGTGCACCTCGGTTGGGCAAACTGCGGATCGGATGGGTGTGCGCCCCGCCGGCTGGCGGTTCGGGTGGCCACACCACCCTGTTCCGGATGGTTGAGATGGCTGAGCAGCGCGGGCACGAGTGCACACTGTTCCTCTACGACAAGAACTCCGACGACGTCACCCGACATAGGGCAGTCATCAGGCGGCACTGGAAAAACCTCAAGGCAGATATCCGCAGCGCCACCACCGGAATGGACGGTATGGATGCCGTCGTCGCCAGTTCCTGGGGTGCGGCGCACGTCGTGGCTATGCGAGCCCCACGAAGGGCCAACAAGTTCTATTTCATCCAGGACTTCGAGCCCTACTTCTATCCGCGGGGTGCCCTCTACACCTTCGCAGAGGACACATACCGGTTCGGATTCACCAACATCGCGTTGGGCGAGATGATTGCTTCCAGGCTGCGGACGGAAATCGGCATCGAACCGGCCACCGTGGTGCCATTCGGCTGCGACGACGCAGAGTACCGAATATTGAGTAGGGATGGTGCGGCGGCACCACGCACTGGAGTCGTCTACTACGCCAAACGCTCAGTGGACCGGCGCGGCTACCTTTTGGCGAAACTCGCCCTTGAGAAGTTCCACCAAGACCACCCGCAACATGAGATCCATGTTTTCGGCGACCGGGTGTCCGGGTGGCCGATTCCGGTGACAAACCATGGGTCCCTAAGCCCACGCGACCTGAACGTCCTTTACAACCGGACCATTGCCAGCCTCACATTCTCCTTCACCAATATCAGCCTTGTTGCGGAGGAGCTGATGGCGGCGGGAAATGTCCCTGTCCTGAACGATCACCCCTTTGCCCGGGCGGATCTTTTCGCGCCGTACGCGATCTGGACGAGGCCGAATCCAGCAGCGATGGCTCGGGCCCTGTCCACCGCGGTAAGCGCACCGGATATCGAAGAACGGGCCCGGCTTCTCAGCGCATCAGCCCGTCGCGGCTGGACCACCACAGCAGTATCCGTGTCAGAAACCATAGAGGGCGCCTGCGCATCTCCGGGCCCGCGCAAGGCTGACGCCCAAATCCTGAGGCCGTGAMTSIQRFLYRPWRLLQTQGTAGVTTIVARRLVNKMNEHMDLVSAELPVRPEDLADSSALPPTITGAPRLGKLRIGWVCAPPAGGSGGHTTLFRMVEMAEQRGHECTLFLYDKNSDDVTRHRAVIRRHWKNLKADIRSATTGMDGMDAVVASSWGAAHVVAMRAPRRANKFYFIQDFEPYFYPRGALYTFAEDTYRFGFTNIALGEMIASRLRTEIGIEPATVVPFGCDDAEYRILSRDGAAAPRTGVVYYAKRSVDRRGYLLAKLALEKFHQDHPQHEIHVFGDRVSGWPIPVTNHGSLSPRDLNVLYNRTIASLTFSFTNISLVAEELMAAGNVPVLNDHPFARADLFAPYAIWTRPNPAAMARALSTAVSAPDIEERARLLSASARRGWTTTAVSVSETIEGACASPGPRKADAQILRPNANANANANA
D1-29_046881431hypothetical proteinATGGAGACGGGAAGGGCCGGGAGGGCCGGCGGAGGACGTTCAACCGCCCCCGTTGTTGTCCAAAGCCGCCCGGGGGTTCCTCTGATCATTCGGGCAACGGCCTTTTGCATCTTCTTTTTCCCGTCTTCGATGGTGTTCAAGCCCATCGGGGCTGCCGGAACAGCCCCGATGATCCTGGCCCTGATCGTATTCGGGCTGTGGGTCTGCAGTATCCTTTTCGGCCTGCATGATCCGCTGAGTGTCAGGCATCCCGGACGCCTGGCGGTGGGTGTCCTTTTCCTGGCCACTAGTGCTTCGTATGTAGCCCTGTATGCGGGGATCACCGGGGGAAGTACAGACGTTGCGCGGGCATCCGCGGACCGGTGGATGCTTCTGCTGCTGGCTAGTGCCGGTGTTGTCATAGTCCTGGGTGAGGTAGTGCGGACAATGGACGATGCCATGGTGTTTCTTCGCGCGCTGCTGGCCGGTGCCAGCTTTTGTTGCCTGGTGGCAGTGGTGCAATTCGCCTTCCAATTGAATCCGATGGAATGGTTCCGCGTTGCGATGCCCGGTTTTGACTACAACGGTGGTGACACCCCGTTTCAATCCCGCGGCGCGCTTCTTCGCGTTGCCGGCAGCACGTTCCACTCCATCGAATTGGGTGTGGTATCCGCAATGCTCCTGCCACTATCCATCTGGCGTGTGATTTACGACCGGCGCGGGCACCTGATGCGTCGGTTACTCGGTCCGGCCCTCCTAATTTTCGCTATCGCGTCCACGGTGTCCCGCTCCGGGATTCTGGGGATAATTACCGCGATGGTGGTCTTCATCCCCTTCCTTCCCCGCATTCCCCGGCTGTGGGCCCTGTTAGCCGCCCCGGTCGCGCTGGCAGGTCTGTTCCTGGGAGTGCCGGGACTGGTCAGCACGCTTACAGGCACTGTCACCACATCGGGCTCCGATCCGTCGATTACTACGCGTACCAACAACTTCCCTCGTGTGGAGGCGATGGTTTCCGAACGTCCATGGCTAGGGCTCGGCCCCGGAAACTACCTCGCGGACACAGCGGTGCATATTCTCGACAATCAGTACCTGAACGCAGTCGTCACGCAGGGCATTGTCGGGCTGGTGGCCATCATCATCTACTTGGTGCTGCCGGGCGTGAGCTCCATCATGGCCGCTCTCGCCACCCGCGATCCGCAGCTCAAGTCCTTCACCGGCGCTGTAGGCGCCGGAGCCTTGGTGGCGTCCGTGTGTTCCCTGACTTTTGACTCCATGTCCTTCCCGGTTTTTGCGCTGATCTATCCAGTTCTAGTCGGACTGGGCGGTGCGGTCTGGGTGATGGTAAAGCGCGAGAAGGATACGGATTCACAGATTGAGTTTGATTTTTCCAGACCTGTTCCGAGCACGGGATCGGGTCAGCCCCTGAGAGGAGAAAGCCCATGGACCCGATAGMETGRAGRAGGGRSTAPVVVQSRPGVPLIIRATAFCIFFFPSSMVFKPIGAAGTAPMILALIVFGLWVCSILFGLHDPLSVRHPGRLAVGVLFLATSASYVALYAGITGGSTDVARASADRWMLLLLASAGVVIVLGEVVRTMDDAMVFLRALLAGASFCCLVAVVQFAFQLNPMEWFRVAMPGFDYNGGDTPFQSRGALLRVAGSTFHSIELGVVSAMLLPLSIWRVIYDRRGHLMRRLLGPALLIFAIASTVSRSGILGIITAMVVFIPFLPRIPRLWALLAAPVALAGLFLGVPGLVSTLTGTVTTSGSDPSITTRTNNFPRVEAMVSERPWLGLGPGNYLADTAVHILDNQYLNAVVTQGIVGLVAIIIYLVLPGVSSIMAALATRDPQLKSFTGAVGAGALVASVCSLTFDSMSFPVFALIYPVLVGLGGAVWVMVKREKDTDSQIEFDFSRPVPSTGSGQPLRGESPWTRPGPT0026055_137DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSL_POLYSACCHARIDE_METABOLISMCE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026055-pslJ-K21003NANA
D1-29_04689837hypothetical proteinATGGACCCGATAGCCGTCGTGAGGACCATTTGGCAGCATCGAATCGTTTCGATTCCGATCCTGGTGCTGACAGCACTGGCCGCCCTGTACATCTTCGAGTTTGCACCCCGGTCCTACGAGTCATCGTCGACCTTCGCGATGATCAACCCAGACATCCCCTCGGAACTGGACATCATCAAGCACCCGGAGCTGAAGGACCTGAACAACAAGAATCCGTACCTCCGTTCCTCAGATCCATCATTGATCGTCCAGGTTCTATTGACCAGGCTCAATGACCGGTCCACGGCCGATCTGCTCGTCGAACAGGGCCTCAGCGACCAGTACACGGTCAGCCGCGGCGTGGGCGGTTTGAATGGCTTCCTGGTGGACATCACCGGAGAAGGGGAAACGCCGGAGAAGTCCATAGCCACGACGCAGGCTCTGGGTCAGCTGCTGCAGGAATACCTGCGTGAGGCTCAGAAGGTCAACGGAGCAGATGACCTCTACCTGTTTTCCGCTCTCGTGGTCGCTACCCCTGACAAAGCCAAGGAACAGTTCTCCAGCCGGCTTCGCGCCCTGATCGTTGTGTTCCTCTGCGGAGTGGTGACGATGTTTGGTTCAGTCTCAGTGGCGCGATCGATGGCGGCGGCCAGGGAGCGGCGCCTGCTGTTATCCGACGATGCAGGTGGCAGAAGAAAACGCCGCAAGAGTGCTCCCGACAGCAGCACAGTCCAAGAGCCTCCCCCCACACGCGGGTCGATGGCGCTGACCGGTCAAGCCCAAATCGATCTGGGCTTGGATGAACCCAAAACGCTGGACGCCCTGCCAGGGCATCACCTATCCGGAGTCAAGCAATGAMDPIAVVRTIWQHRIVSIPILVLTALAALYIFEFAPRSYESSSTFAMINPDIPSELDIIKHPELKDLNNKNPYLRSSDPSLIVQVLLTRLNDRSTADLLVEQGLSDQYTVSRGVGGLNGFLVDITGEGETPEKSIATTQALGQLLQEYLREAQKVNGADDLYLFSALVVATPDKAKEQFSSRLRALIVVFLCGVVTMFGSVSVARSMAAARERRLLLSDDAGGRRKRRKSAPDSSTVQEPPPTRGSMALTGQAQIDLGLDEPKTLDALPGHHLSGVKQNANANANANA
D1-29_046901299mshA_7D-inositol-3-phosphate glycosyltransferaseATGACAGTTAGGACAGTGCCTGATCTGCTGCGGATGGGATATCTTGTTCCTGAGTTTCCTGGCCAGACGCACGGTTTCTTCTGGCGTGAACTGGGGGTCCTGAGGCAGCTCGGCGTCACACCGATGGTCGTTTCAACCCGGCATCCCGGCGCGAATGCGTCCAGGAACGGGTGGGCGGAAAACGCCGAATCGAGTACCATCTACCTGGCATCGGCCTCCGTGCCGGCGTTTCTTTCCGTCGCGCGGGAACTGCGGACTCTGAAGCGCGGCAGGCTGGCAGCCGTCCTCCGTCGCGCCGCCGACATGTCAAAGGCCGGAAACGACTCGCCCCGCCATCCCGCCCGACCTCGCCAGTTCGCCGCCCAGCTCGTGTGGCTGGCCCTCGGCGCGAGGTTGTCTGGCCTGGCACGGGAACTGGGCTGGCAGCATGTGCACGTGCACTCGTGCGGCAACGCGGCCTACATTGCCCTGTACGCCCGGCTCCTCTCCGGCCTGCCTTACAGCCTGACACTGCATGGGCCGCTTAGTGACTATGGCGGCAACCAGGAGTACAAGTGGTCCAACGCCGCCTTTGCGTTCGTCATCACCAATGAACTGCACAGCCAGATCCGACAGTCCCTGGGAGCGGCCCTGCCGGCGACCGTCAAGGTGGTTCCGATGGGCGTGGATGCGAACGAATTCAGCAGGAGCCAGCCTTACGTTCCGTGGACCCCTCCCAGCGCGTTCCGGATCTTCTCCTGTGGCCGCCTGAATCCAAGCAAAGGCCACGACGTTCTCGTGGCCGCGGTAAGGAGGATGGTTGAAACCGGTGCCGACGTCCAACTGACCATCGCCGGTGAGGATGAGGCCGGCGGCAGGGGATATCGCCGGGAACTGGAGGGCCTGATTGGCCAGATGGGCCTCCGTGACCGCGTGCGGCTCCTCGGTTCCGTGCCGGGCAGTGTGATCAGAGAGGAATTGAGCCTTGCGCACGTTTTCACCTTGGCCAGCCACGCTGAGCCGCTTGGCGTAGCGATCATGGAAGCAATGTGCATGGGCGTTCCAGTAGTGGCTACAGATGCCGGTGGGGTTTCCGAGCTGGTGCTGGCAGGTCGGACCGGGATCCTCGTCAGGCCAGGTGATCCGGGAGCCCTGATGGACGGGCTAATTCAATTGATGTCTGATCCTTTGTTGTGCGCAGACCTGGGTGAAGCCGGGCGCAAGCGTGTCAGCGCCCTGTTCGGATACCGCCGGAGCGCGGAGATGCTTGCACAGCTGGCCAGGGCAGGGATGGCCGAGAATACGGAATCAATCCGGTAAMTVRTVPDLLRMGYLVPEFPGQTHGFFWRELGVLRQLGVTPMVVSTRHPGANASRNGWAENAESSTIYLASASVPAFLSVARELRTLKRGRLAAVLRRAADMSKAGNDSPRHPARPRQFAAQLVWLALGARLSGLARELGWQHVHVHSCGNAAYIALYARLLSGLPYSLTLHGPLSDYGGNQEYKWSNAAFAFVITNELHSQIRQSLGAALPATVKVVPMGVDANEFSRSQPYVPWTPPSAFRIFSCGRLNPSKGHDVLVAAVRRMVETGADVQLTIAGEDEAGGRGYRRELEGLIGQMGLRDRVRLLGSVPGSVIREELSLAHVFTLASHAEPLGVAIMEAMCMGVPVVATDAGGVSELVLAGRTGILVRPGDPGALMDGLIQLMSDPLLCADLGEAGRKRVSALFGYRRSAEMLAQLARAGMAENTESIRPGPT0023355_222DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-COLANIC_ACID_METABOLISMCE-EPS-COLANIC_ACID_BIOSYNTHESIS,PGPT0023355-wcaL-K16703NANA
D1-29_046911308hypothetical proteinATGTCCGCAAAAGCCCACCGCGTTGCCGTCCGCAAGCGGTCTGACGTCCACGTCTTTGCCCTGACAACCGTCATAGGGCTGATACTGTCTGCTGCGCTGAGTGCATGCGATGCGGTTGATGTGGGTTCGGCGGGCCCGGCCGGCAGTTCGGCATCACGGATCGGCGACCTGCCGAGGATCCCCTGGGAAGGTGGTCCAGCCTACTGGGATAGGTTCCCCAAGGCCGCTGCCGCCGGTTGGAACGATCCCTCGTTCTTTCCGATCTCTGTATTTATGGGTAAACCCGAGCACGCTCAGCAGTTGAAGGCGCTCGGTATCAACACCTACATGGGGGCTGAGCATGACGGCTCGCCGCTATCAGCCGTTACTGGCAAGGGCCTCTTTGTCCTGCCCCAGGACGAATGGTCAACGGCGGAAGTCGGCGACGATGCACGCGCCGTCGGTTGGTTCGTGTCCGACGAATGTGACATCGGTCTGGGCTGCTCGGGCTTGGACGCCGCCGCCAACCTGATAGATCAGCAACAGAAGGTCGCCAGGATACGTGGGCTCAATGACAACCGCTTCACCATGGCCAACTACTCCAATGGCGTCCTGGACACGTACTGGGCTCAGGGTTCAATGGCCGAGCTGATGAAAACAGTGGATGTAGCCAGTGTGGACAAGTATGCCTACACGAGTCCTTTCGTTGATGATCAGTTAGCTCATTCGCCGCATTGGCCAAGTGGCGTTGAACCTGCTTCCTCAGGCGCCTACGGCTGGCTGGTGGACCGGATGCGGTCTTATCAGGATCCGGCCGGCGTCCATCCCAACTGGATATTTATCGAGTCGGCACGGCCTCTCCTCCTCGAAGACGGTTCCCTCACCATTTCCCTGGAGCAAATGGAAGGCGCCGCCTGGTCAGCCATCATCCATGAGGCACGAGGACTGGCTTATTTCCAGCACAACAACGGCAGCACCTGCGGCTTCTACTCCCTGGTGGACTGCGATACCGACCGACTTAATGGGATCCGCGCCATCAATGCCCGTATACAGGCGCTGGCACCGGTACTGAACACCCAGTCTTACCAATACAACTTCAACACCACAACGGACACAATGCTCAAGGAATTCCAGGGCTCCGCATACATCTTCGCCGGCATTGGACTCACACACTCGCCGGGCCAAAAAACCTTCACCCTGCCGGCAGGTGTTACGTCCTCCATTGTTGAAGTGGTTGGTGAAAACCGGACGCTGAACGTGGTGGGCGGCCAATTCACCGACAACTTCCCGGCTGAGTACTCACACCACACCTACAAAGTGTCCCTCTGAMSAKAHRVAVRKRSDVHVFALTTVIGLILSAALSACDAVDVGSAGPAGSSASRIGDLPRIPWEGGPAYWDRFPKAAAAGWNDPSFFPISVFMGKPEHAQQLKALGINTYMGAEHDGSPLSAVTGKGLFVLPQDEWSTAEVGDDARAVGWFVSDECDIGLGCSGLDAAANLIDQQQKVARIRGLNDNRFTMANYSNGVLDTYWAQGSMAELMKTVDVASVDKYAYTSPFVDDQLAHSPHWPSGVEPASSGAYGWLVDRMRSYQDPAGVHPNWIFIESARPLLLEDGSLTISLEQMEGAAWSAIIHEARGLAYFQHNNGSTCGFYSLVDCDTDRLNGIRAINARIQALAPVLNTQSYQYNFNTTTDTMLKEFQGSAYIFAGIGLTHSPGQKTFTLPAGVTSSIVEVVGENRTLNVVGGQFTDNFPAEYSHHTYKVSLNANANANANA
D1-29_046922727N-acetylglucosaminyldiphosphoundecaprenol N-acetyl-beta-D-mannosaminyltransferaseATGACACTGTCAGGCTCCCTCCGAAGCCTCGTGCAGCCCGCGGCACTGCTGCGGCCGGTACGCCAACGCCCGGTCCTTTCCAAGGAAGGCGGACTGGCCAGACAGGACAGCGTCAGCGAATGGGTGAAGCTGGGGGGTGTGCCCGTCAAGTTGCTGGAACTCGATGACGCCCTTAGGACCATCGTTGACCGGGCACGGGCCGGCGGAAGCCAGCCCTTGGCTGTGGCCTCCGCGAACCTTGACCATGTGAAGCACTTCGGCCAGGACAGCCGGTGGGCCGACACCTTGGACCACCAGGCACCGGTGGAATGGCTGACGCTCCTGGACGGCTCTCCCCTGGTTTCCCAAGCCGCGGTGATCACTGGGCGGAAGTGGCCGCGGCTCTCCGGAAGTGACCTTATCGGGCCATTGTTGGATGCCGCCGAAGGCGCCGGACTAAGGGTGGGTTTCATCGGCGGAACCGCTCAGTGCCACGACCTGATACGCGAAAACTTCGCCATCGATCATCCCGGTCTCACTGTGGCTGGCTGGTGGGCTCCCGAACGCAGTTCACTTGTGGACACGGCCGCTTCACGTGACCTTGCGGCCGAAATTTCGAAAGCCCGGACGGACATCCTGGTGGTCTGCCTTGGCAAACCCCGCCAGGAACTTTGGATCTCCGAGTTCGGCCACTTGACAGGAGCGAAGGTGATGCTGGCCTTTGGCGCTGTAGTGGACTTCCTTGCAGGACGTGTGCGCAGGGCTCCAGCACGGGTCAGCAACGCAGGTTTGGAATGGGCCTGGCGGCTCGCGCTCGAGCCCAGGCGGCTGGCGCGCCGCTATCTGGTGGACGGGCCGGAAGCCTACCTTAACCTCCGGCGCTGCAGTGGTATCAGCCATCCGGGAAGCGCGACGGGCGGTACCGGCCGCGGGCGTTTGACGCCTGGACAGGCTGGCACATCGCCAGTTCGCAGAATCGCGCGCGTGCAAGCGTTCTCGCCGAGAGCTGAACATACCGACGTTGCCGTTCTTGTGGTCACTTACAACAGCGAAAAAGATATCCCGATACTCCTTGAAAGTCTGAGAGTGGAGACAGAGGATCAATCAATCAAGGTCATCGTCGCGGACAATTCCCCGGCACCGTCCACTATTTTGGCTCTGACGGATCAGACTGACGTTTTCGTCTTCCAGACAGGGGGAAACGTCGGTTACGCTGCTGCAATCAACGCGGCCGTTATCAAGGCGGGCGACACCGATTCCTATCTGATACTTAACCCGGATATGCGCGTGGTGCCGGGATCGGTCCGGGCGCTGCGGGACAGGTTGGCTTCGTCCGGGGCCGGCGTGGTGGTCCCCCTATTGCTCGACGACGACGGTAGTGTCTACCCATCCCTACGCCGGGAGCCAAGCGTTTCCCGGGCGATCGGAGATGCGCTGATGGGAAGCAAGCTCCCGGGGCGTCCGGGCTGGTTGGCCGAAATGGATCTCGATCCAGAAAGCTACCTTCATGCCCACAAAATCGACTGGGCAACGGGAGCAGCCCTCCTGATCAGGCCTGAAGTGGCAAAGTTGGTGGGAGACTGGGAAGAAGGCTATTTCCTGTACTCCGAAGAAACGGACTATTTGCGGCGGGTTCGAGAGGCCGGAGCCAGTGTCTGGTTCGAACCGCTGGCACGGATGCGGCACAGCCGGGGAGGTTCGGGCAGTTCTTCCGCGTTGGACGCCCTGATGACGATTAATCGCATCAAGTATGTGCGGAAGTTCCATTCCTCGGGTTACGCACGCGCGTTCCGGGCCGCCGTGGTCCTGGCAGCACTGCTGCGTTCAGCGCTGCCGCACGGCAAGGAAATCCTTTCAATAGTAAGTCGGGAACGGCGATGGGAGCAGCTGCCACACGCCACCCGCTATCCCCAGACAGCAGCGGGCCGAGAAGCGTTTCCCGAGGGGTCCGTGATCATACCGGCGCACAACGAGGCGGCAGTCCTGCGGCGGACGCTCGAGGAACTGGCCGTCCCGTTGGCAAGCGGCGCCGTGGAAGTGATTGTGGCGTGCAACGGCTGCACTGATGGGACGGAGGCCATTGCGGAATCGTTTGCCGGTGTCCAGGTCCTCCACGTCCCTGAAGCGTCAAAGGTCGCGGCCCTGAACGCGGGGGACCGTGTGGCAACTCGGTGGCCCCGCGTATACTTGGATGCCGACATCGAGGTGCCGGCCGAAGCGCTCCGTTCCACGTTGGAACTGCTGTCCTGCGACGGGACCGTCCAGTGTGCGCGCCCCGAGTTCAGGTACGACGCCGAGGGCGCATCCTGGCCGGTTCGGGCCTACTACCGTGCGCGGAACCGCTTGCCGCAGGCTTCGGAATCAATGTGGGGAGCAGGAGTTTACGGCATAAGCCTCAAGGGCCACGAGAGACTTGGCGAATTTCCCACAGTCACTGCCGACGACTGCTACGTGGACCGCCTCTTTGACAGCTCCGAGAAGACCGTCGTCCATTGCCCGCCTGTCATCATCCGCACACCCCGGTCGACATCGGGCCTTTTAGCTATCCTGCGAAGGGTCTATAGGGGCAACGCAGAACTTAAAACAATGCCGGGCTCCGGTACCTTCCGCACTGTTGGCCAACTGCTGAGGTCAGTCAGGGGCCCTGGATCGGCGTTCGATGCCGCCGCCTATGCGGCCTTCGCCGTCCGCGGACGCCGCCTCCGCCCCGGGCCTGTCGCATGGGAGCGGGACGATTCAAGCCGCTAGMTLSGSLRSLVQPAALLRPVRQRPVLSKEGGLARQDSVSEWVKLGGVPVKLLELDDALRTIVDRARAGGSQPLAVASANLDHVKHFGQDSRWADTLDHQAPVEWLTLLDGSPLVSQAAVITGRKWPRLSGSDLIGPLLDAAEGAGLRVGFIGGTAQCHDLIRENFAIDHPGLTVAGWWAPERSSLVDTAASRDLAAEISKARTDILVVCLGKPRQELWISEFGHLTGAKVMLAFGAVVDFLAGRVRRAPARVSNAGLEWAWRLALEPRRLARRYLVDGPEAYLNLRRCSGISHPGSATGGTGRGRLTPGQAGTSPVRRIARVQAFSPRAEHTDVAVLVVTYNSEKDIPILLESLRVETEDQSIKVIVADNSPAPSTILALTDQTDVFVFQTGGNVGYAAAINAAVIKAGDTDSYLILNPDMRVVPGSVRALRDRLASSGAGVVVPLLLDDDGSVYPSLRREPSVSRAIGDALMGSKLPGRPGWLAEMDLDPESYLHAHKIDWATGAALLIRPEVAKLVGDWEEGYFLYSEETDYLRRVREAGASVWFEPLARMRHSRGGSGSSSALDALMTINRIKYVRKFHSSGYARAFRAAVVLAALLRSALPHGKEILSIVSRERRWEQLPHATRYPQTAAGREAFPEGSVIIPAHNEAAVLRRTLEELAVPLASGAVEVIVACNGCTDGTEAIAESFAGVQVLHVPEASKVAALNAGDRVATRWPRVYLDADIEVPAEALRSTLELLSCDGTVQCARPEFRYDAEGASWPVRAYYRARNRLPQASESMWGAGVYGISLKGHERLGEFPTVTADDCYVDRLFDSSEKTVVHCPPVIIRTPRSTSGLLAILRRVYRGNAELKTMPGSGTFRTVGQLLRSVRGPGSAFDAAAYAAFAVRGRRLRPGPVAWERDDSSRNANANANANA
D1-29_046931455hypothetical proteinATGAGATGGGCTACCAGGGTTGCCACCATAGCGCTGGGAGGTCTGCTGGCCTTGGAAGTGGCGGGATGCTCGGCTGGCGCAAACGGAGGAAGCATCCGGACGACGCATGCCACACCCCCTTCCGGAGGACAGCCCGCCGTTCAGCCCACGTCGGAAGCATTGGGCAAGGTGACTGAATTCCAGCAGATGTCCGGCCTGGGTGTGAACGCCAATGTCCACAGCTGGAATGACGGCGAGCTGAAACCCGCCATCGACAAAATCGCCGGGCTGGGGGAGGTGACCTGGCGAGTCATCATCGACAGGGCGGACTGGGAAACCGAGGAGATCCCCGGCGGCACGGAAACCATCGACTGGGACCGCTACACGCCCATCTATGAGAACGGAAAGATGGCCGACCTTTGGGACACCATCACGTACATCGACTCCAAGCCCGGGCAGCAGATCATGGTCAATGTCATGGGCGGCGTGCCGGGCTGGATGGGTGGCAACAGGATCGACGAGGCCCACGAAGATCATTGGGTACGCATGATCGCCTCCATGGTGGCCTATGGCCGCACAGTCCGGGGCCTGGACTTCACACTGCTCGGACCGATGAACGAATCGGACTGGAACGGCATCGAAGGTCCGCAGGTAGGGCCTGAGCAGTACGTGCGGATGCTCCACAAACTCATCGTCCGCCTCGACGAGCTGGACCTTGCCGATATCCGCCTCGTAGGGCCGGACACGGCGTCTGCATCTACAGGGGTCTCGAAGTACCTTCCGGCACTGGCAGAGGACCCACTTGTTGTGGAGCGGCTGGCGCACTTCGCCATCCATACCTACGACGGCGACTCGGCAGGGACGCAGCGTGCGTTGCAAGGATTGGCCAACCCGGGGCTGGACTTCTGGGTCACGGAATTTTCGGGTCCCTGCCCCGGCTGTGACAACGGATCACCCAACCCCACGGATTGGTCATCCGCCGCCGCCACTGCTGCATACGCCCTCAATCTCCTGGAACAGGGAGCCGCAGGGCTGCAGCAGTATGACGCTTGGGACGGCTACTACGAACACCACGAAAGCATGGGCTACTGGGGCCTGCTGGCTTACGACCAGACGACGGGAAACTACACACCGCGCAAAACCTATTACGTGATGCAGCAACTGATCAGCCACACCCCCCGTAACGCCGTGCGGATAGCCGTATCCTCCGACGACGAAGGCATCAGGGTGGTCGCCTTCCTCGACCAGGCGACGGGGCGCATCACATTCTTCGGGAACAACACGTCCGACAGGGATGTGGTGGCCACTTTGCACTTACCTGGGGTGGTCCAGGACATGCAGCTCGCAACATATACCACGGACGCCCGCAGGAACATGGAGGCCGGCGATCCAGCCGTCCTGACGGACGGGATAGTCACCTTTACAGCCGCTCCCGGCTCTGTCTTTACCTTGACCGGAACACCCACGAAAGGCTAGMRWATRVATIALGGLLALEVAGCSAGANGGSIRTTHATPPSGGQPAVQPTSEALGKVTEFQQMSGLGVNANVHSWNDGELKPAIDKIAGLGEVTWRVIIDRADWETEEIPGGTETIDWDRYTPIYENGKMADLWDTITYIDSKPGQQIMVNVMGGVPGWMGGNRIDEAHEDHWVRMIASMVAYGRTVRGLDFTLLGPMNESDWNGIEGPQVGPEQYVRMLHKLIVRLDELDLADIRLVGPDTASASTGVSKYLPALAEDPLVVERLAHFAIHTYDGDSAGTQRALQGLANPGLDFWVTEFSGPCPGCDNGSPNPTDWSSAAATAAYALNLLEQGAAGLQQYDAWDGYYEHHESMGYWGLLAYDQTTGNYTPRKTYYVMQQLISHTPRNAVRIAVSSDDEGIRVVAFLDQATGRITFFGNNTSDRDVVATLHLPGVVQDMQLATYTTDARRNMEAGDPAVLTDGIVTFTAAPGSVFTLTGTPTKGNANANANANA
D1-29_046945517hypothetical proteinATGAAGTCTGCACCTGGATTGTTCTCCCGGCGGATCCTCAAGCAGGGTGTGCCTGCCCTGATCCTCGCACTGATTGTTTCGACGCTTTCGGTCGCGGCCGACCCTTCGCTGCTGGCTCCTGCCCGTGCCGCAGGTCCGTGCGATGCGCCGGTGGTCAGCAAGGTTGCCTGCGAGAATACCCAGCCCGGCAGCCCGGCGTCTGAGTGGCAGGTGGCAGGTGCGGGCAACAGCACCATCCAGGGCTACGCGACGTCGATGAGCGTCAACGTGGGTCAGACCGTCACCTTCAAGGTTAAGACGACGGCCTCCGCGTACCGGATCGACATCTATCGGCTGGGCTACTACCAGGGGCTTGGTGCCCGTAAAGTCGCCCCCAACATTCTTCCCTCGGTACCCCTGCCGCAGGCCCAACCGAACTGCGCCACGTTCCCGGCCACAGGTTTGATCGACTGTGGCAACTGGGCTGTATCGGCGTCCTGGCCAGTGCCGGCGTCGGCGGTATCAGGTGTCTACCTGGCGCGGCTGGTCAGGACGGACAACAGCGCCGCGAGTGTTATTCCGTTTGTTGTCCGCGATGACGCCGCCAAATCCGACATGCTGTTCCAGACATCCGACACCACGTGGCAGGCCTACAACACCTACGGCGGCAACAGCCTCTACAGCTGCACCGTAGCTTGCCCCCCGGGAAACCCCCTGGCCTACAAGGCAGCCTTCAAAGTGTCCTACAACAGGCCATTCAATTCGGCGCTGGATGACCAGGGGCGCAGTTGGCTGATGTATGCCGAATATCCCATGATCCGCTTCATGGAGGCTAACGGCTACGACGTGAGCTACATGAGCGGGCTTGATGTCGCAACCAAAGCCCCGTTGCTGCTCAACCACAAGGCATTCCTGTCCGTGGGTCACGATGAGTATTGGTCCGCCGAACAGCGGACGAACGTCCAGGCTGCCCGGGACGCAGGTGTCAGCCTCGCCTTCTTCAGCGGCAATGAAATGTTCTGGAAAACGAGATGGGAACCCAGCTCTGACGGCACCAACACTGCCGGACGGACCCTGGTCTCCTATAAGGACACGCACTTCAACGGCCCTACGGATCCGGTCTCCTGGACGGGTACCTGGCGGGATCCGCGATATGGGACCTCCACCGGTGGAGGGAATCCGGAAAATGCCCTCACTGGCCAGTACTTCATGGTCAATTCCGGGACAGCAGACATAGATGTGCCTTCAGCGTTCAAACACCTTCGGTTTTGGCGGGGCACATCAATTCCAGGGATGGCTAATGGTGCTTTAGTGACCCTCGGGGATGGCTTAGGGACGCTGGGGTATGAATGGGACATAGATGCGGATAACGGCTTCCGTCCACCGGGCGCCTTCCAGCTGTCTCACACGAACAGTAATTCCGCTGAGATCTTTACGGATTACGGCTCGACTGTTCTGCCTGGTCAGCCAGCGACCCACAACCTCACTTTGTACAAGGCGAACAGCGGCGCCTTGGTGTTCGGCGCCGGGACTGTCCAATGGTCCTGGGGCCTCGACGGCTACACAACGGGCAAAGCCGTGGACCGGAACATGCAACAGGCCACGATCAATCTCTTCGCCGACATGCGGACCCAGCCGACAACGCTGATTTCAGGCCTTTCTGCAGCCCAAGCGTCTACGGACGCAACGGCCCCGACATCCAACGTGACGCAGCCGGCCACAGGGTCGACAGTTGCCGACGGCACGACCGTCACTGTATCAGGGACCGCCTCTGACGTGGGCGGCGTAGTGGCTGGCGTCGAGGTATCCACCGATGGTGGTACGACATGGCGCCGCGCGAGTGGGACCACAAACTGGACCTATACGTGGAACGCGCACGGGAGCCCCAACTCAGTGTTGCGGTCCCGGGCTGTGGACGACAGCGGCAATCTGGGGCCGGCCTCCTCAGGGAGTGTTGTCAATGTTTCCTGCCCCTGCTCGCTTGTGGGAGCAAATCTTGTTCCAGCGAATACGGACGCCGGTGACCCTGGCTCGATCGAGATTGGCGCGAAGTTCTACTCCGACGTCCCCGGTACCATCAGTGCAGTCCGTTTTTTCAAGTCCACCAGGAACACCGGCACCCACATCGGCAGCGTCTGGAGTGAGTCGGGCCAAAGGCTGGCCAGTGCCACGTTCACCGCTGAATCCGCCACTGGCTGGCAGACCGCCACGCTGTCGCCGCCCTTGATTATTGCTGCGAATACCAAATACGTGGTTTCCTATTTCGCACCGTCCGGCCACTATGCCCAGAATGTTGGCTACTTTTACAACAACCCTTCTCCATCCGGGGGGTCAAACAGCACAGACAGTGCTCCGCTTCACTTCACGAGAAGTACTCCGGGGGCACCCAATGGCTTTTACCGCTACGGCTCCACGTCCAGTTTCCCGAACCAGGTTTTTGATGCCGAGTACTACTGGGTGGACGCATTATTCACTCCGTCGGGAACAGTTGCTCCTGCGGTTTCATCAGTCTCTCCAAGCCCCAACGCTTCAAATGTCGACTTGGCCGTCAAGCCCTCTGTTACCTTCAACCAGGCAGTGACTGCGTCGTCGGTGGTGTTCACACTGAAGAATTCGGCGGGCACTACCATCGCAGGTTCACTGGCCCACGACTCGACAAAGAACACATCCACTTTTACTCCGGCGAGTGCTCTGGGCAATGGTACGGCTTACACGGCAACAGTCAGTGGGGCTAGGAATGCGGCAGGGGAAACGATCGCCGCGCCGTATTCGTGGTCTTTCACGACAGTTGCGGAGCCCGCTGCTCCTGAGGTGACCGCGGTTTCGCCGGCGACCAACGCCGCTGGCGTCGCTGTAGATGTGAAGCCGGCGGTCACCTTCAACCAAGGGGTGATTGCCTCATCCGTCGTCTTCGGGCTCAAGGACGCAGCCGGGTCCGCCGTCAGTGGTTCGACCACCTATGACGCCTCGTCCAGCACTGCTACGTTCACTCCGGCTGCCGCGCTGGCATACAGCACCAACTACACAGCGACAGTAAGCGGTGCCACGAACGCATCCGGCCAGCAGATGGCCGGTCCGCATTCCTGGACGTTCGGTACAACTGCTGCGCCGCCGAGCTGTCCGTGCACGGTGTTCAGCCCTACCTCCGTGCCTGCTGTTCCAGCCGACAGCGATTCTAACGCTGTGGAGCTAGGTATGAAGTTCCGCTCCGACGTAGCCGGCAGCGTCACCGGAGTTCGGTTCTACAAGGGCACCTCCAACAGCGGTACCCACACCGGGCACCTCTGGTCCAACACCGGATCACTCCTTGCATCAGTTACGTTTGCGGGAGAGACCGCCTCCGGCTGGCAGCAGGCAGACTTCTCGACTCCGGTGAAGATTACCGCGAATACTACTTACGTAGTTTCCTACCACGCACCGAACGGCCGCTACGCGGCGAACAGCGGATACTTCGGCAGCTCCGCCGACAGGGCGCCGCTGCATGGCCTGGCAAGCGGCGTCGACGGACCAAATGGCGTCTACAGGTACGGAAATTCGGCATTCCCCACGGACAGCTACAACAATACGAATTACTGGGTGGACGTGGTCTTTAGTGCGACGGCCACTACGACGGCCCCATCTGTGACGACCGTTGCACCCGCGGCCGGTGCCACAGGCGTTGCCGTAGACGTGAAGCCGACGGCGGCCTTCAATCAGCCCGTGACGGCATCCTCGGTGGTGTTCACCCTGAAGGACCCAGCCAACGCGGATGTAGCCGGCTCTACGTCATACGACGCCGGCGCAAACACAGCGACGTTCACGCCGTCCGCCTCCCTGTCCCACAACACCACGTACACGGCAACGGTTAGTGGTGCCACCAACGCCACCGGCCAGACTATGGGCGGGCCTTACGCTTGGGCCTTCAGTACAACTGCGGCGGCGATACCACCGGCCGTCTCTTCCTCAACTCCGGCAAACAACGCTACGAACGTGGCTGTTGCCGTGGAACCGACTGCGACGTTTAACCAGGCGGTGACTCCATCCTCCGTCGCCTTCACTTTGAAGGACGCTGCTAACGCGGCCGTTTCGGGCACCGTAGCTTACGACGCGGCCACATCCACCGCGACTTTCACGCCACGCTCCGCACTCAGCTACAGCAGCACCTACACAGCAACGGTCAGTGGTGCAGCAAACTCCACTGGGCAAAGCATGAGCGCGCCACACTCCTGGGCCTTTTCGACGGCATCAGCCCCCGCCGCCTGTCCATGCACAGTGTTCAGTCCAGATGCGGTCCCCGCCACGGTCTCAACCGCGGATAACAACGCTGTGGAACTCGGTATGAAGTTCCGCTCCGATACTGCCGGCACAGTTGCCGGCGTACGGTTCTACAAAGGAGAACTAAATACAGGGACGCACACCGGGCATCTCTGGTCCTCGACAGGAACACTCCTGGCTTCGGTAACTTTCGCCGGAGAGACAGCAAGTGGATGGCAGCAGGCACTCTTCTCATCACCTGTTCCGATTGCCGCAAACACCACCTATGTTGTTTCGTACTTCGCACCCGACGGATTCTATTCATCGAGCAGCGGGTACTTCTCATCCGCCGTTGACCGGGCGCCGTTGCATGGCCTGGCGAGTGGAACCGATGGACCCAATGGCGTCTACCGGTATAGCGCAACGGCCTTCCCAACCGAAAGTTTTAACAGTACGAACTACTGGGTAGACGTGGTCTTCAACGCCAGCACGTCGGGAGTAGCGCCGGCAGTAACCGCCGTTTCACCAGCAAGCAACGCAACGGACGTATCACAGGGTGTGCGCCCTACGGCCACTTTCGACCAAGCGGTGACGGGATCGTCGGTGGTCTTCGGTCTAAAAGATGCCACGGGAACTGTCGTACCCGGGTCAACCGCCTATGATCCGGCGACGAATACATCCACATTCTCGCCTGCTGCGGCACTAGCGTTCGGTACCACTTTCACGGCTACCGTCAGCGGCGCAACGAATGCCGCCGGCACGGCAATGACTGCGCCTTACTCCTGGACTTTCACCACCAAGGCTGCCCCGGCAGCCTGTCCGTGCAGCGTTTTCAGTCCCGCCGCCGTTCCAACCGTTGCCAACTCCAACGACAGAAAGGCCGTGGAGGTGGGCATGAAGTTCCGTTCCGATGTAGCCGGAACGGTAACGGGAGTCCGGTTCTTCAAGGGCAGCTCCAACACAGGAACGCATGTTGGCCACCTCTGGTCATCGACCGGTGCCCTGCTTGCATCCGTCACCTTTACGGGCGAAACAGGCTCCGGCTGGCAGCAGGCGCTGTTCGCCACGCCCGTCCCCATCGCAGCAAACACAACTTATGTTGTCTCTTATCACGCACCTGTGGGCTTCTACTCATCGACTAAGGACTACTTCAGCGGTACATCTGCGGACAACCCTCCGCTGCACGGGCTGGCCAGTGGCGTCGATGGAGCAAATGGTGTCTACCGCTACGGTAGCGCGGCCTTCCCAACGGAAAGCTTCAAAAATACCAACTACTGGGTCGACGTCGTTTTTACCCGTTCCTAGMKSAPGLFSRRILKQGVPALILALIVSTLSVAADPSLLAPARAAGPCDAPVVSKVACENTQPGSPASEWQVAGAGNSTIQGYATSMSVNVGQTVTFKVKTTASAYRIDIYRLGYYQGLGARKVAPNILPSVPLPQAQPNCATFPATGLIDCGNWAVSASWPVPASAVSGVYLARLVRTDNSAASVIPFVVRDDAAKSDMLFQTSDTTWQAYNTYGGNSLYSCTVACPPGNPLAYKAAFKVSYNRPFNSALDDQGRSWLMYAEYPMIRFMEANGYDVSYMSGLDVATKAPLLLNHKAFLSVGHDEYWSAEQRTNVQAARDAGVSLAFFSGNEMFWKTRWEPSSDGTNTAGRTLVSYKDTHFNGPTDPVSWTGTWRDPRYGTSTGGGNPENALTGQYFMVNSGTADIDVPSAFKHLRFWRGTSIPGMANGALVTLGDGLGTLGYEWDIDADNGFRPPGAFQLSHTNSNSAEIFTDYGSTVLPGQPATHNLTLYKANSGALVFGAGTVQWSWGLDGYTTGKAVDRNMQQATINLFADMRTQPTTLISGLSAAQASTDATAPTSNVTQPATGSTVADGTTVTVSGTASDVGGVVAGVEVSTDGGTTWRRASGTTNWTYTWNAHGSPNSVLRSRAVDDSGNLGPASSGSVVNVSCPCSLVGANLVPANTDAGDPGSIEIGAKFYSDVPGTISAVRFFKSTRNTGTHIGSVWSESGQRLASATFTAESATGWQTATLSPPLIIAANTKYVVSYFAPSGHYAQNVGYFYNNPSPSGGSNSTDSAPLHFTRSTPGAPNGFYRYGSTSSFPNQVFDAEYYWVDALFTPSGTVAPAVSSVSPSPNASNVDLAVKPSVTFNQAVTASSVVFTLKNSAGTTIAGSLAHDSTKNTSTFTPASALGNGTAYTATVSGARNAAGETIAAPYSWSFTTVAEPAAPEVTAVSPATNAAGVAVDVKPAVTFNQGVIASSVVFGLKDAAGSAVSGSTTYDASSSTATFTPAAALAYSTNYTATVSGATNASGQQMAGPHSWTFGTTAAPPSCPCTVFSPTSVPAVPADSDSNAVELGMKFRSDVAGSVTGVRFYKGTSNSGTHTGHLWSNTGSLLASVTFAGETASGWQQADFSTPVKITANTTYVVSYHAPNGRYAANSGYFGSSADRAPLHGLASGVDGPNGVYRYGNSAFPTDSYNNTNYWVDVVFSATATTTAPSVTTVAPAAGATGVAVDVKPTAAFNQPVTASSVVFTLKDPANADVAGSTSYDAGANTATFTPSASLSHNTTYTATVSGATNATGQTMGGPYAWAFSTTAAAIPPAVSSSTPANNATNVAVAVEPTATFNQAVTPSSVAFTLKDAANAAVSGTVAYDAATSTATFTPRSALSYSSTYTATVSGAANSTGQSMSAPHSWAFSTASAPAACPCTVFSPDAVPATVSTADNNAVELGMKFRSDTAGTVAGVRFYKGELNTGTHTGHLWSSTGTLLASVTFAGETASGWQQALFSSPVPIAANTTYVVSYFAPDGFYSSSSGYFSSAVDRAPLHGLASGTDGPNGVYRYSATAFPTESFNSTNYWVDVVFNASTSGVAPAVTAVSPASNATDVSQGVRPTATFDQAVTGSSVVFGLKDATGTVVPGSTAYDPATNTSTFSPAAALAFGTTFTATVSGATNAAGTAMTAPYSWTFTTKAAPAACPCSVFSPAAVPTVANSNDRKAVEVGMKFRSDVAGTVTGVRFFKGSSNTGTHVGHLWSSTGALLASVTFTGETGSGWQQALFATPVPIAANTTYVVSYHAPVGFYSSTKDYFSGTSADNPPLHGLASGVDGANGVYRYGSAAFPTESFKNTNYWVDVVFTRSNANANANANA
D1-29_046951374apeBCOG1362putative M18 family aminopeptidase 2GTGGGGCCGTGGCCCGGCACTAGACTCGAGACCATGCCTTTGCCTTCCACCGCCGCTGACCACATCCAGGACCTCGGCGCATATGTCAGCGCCTCGCCGTCGAGCTTTCACGCCGTCCACGAAGCCGCCCGGCGGCTGGACGAGGCCGGCTTCACGGGGCTCGACGAACGCGAGCCCTGGGAGGGTGGGACTTCGGACGGCAAGGCCGACCGGTTCTACATCGTCCGTGATGGCGCCCTCATCGCCTGGGTGGTTCCGCAGGGGGCAGGCCCCACCACCGGCTTCAACATTGTGGGTTCGCACACTGATTCGCCGTCGTTCAAGCTCAAGCCGAAGCCCACCATTGGCGCCCACGGGTGGCTGCAGGCCGGGGTTGAGATCTACGGTGGTCCGCTGCTGAACTCCTGGCTGGACCGCGAACTGCGCCTGGCCGGCAGGCTGGTGATGCTGGACGGCACACAGCACCTCACGTCAACCGGTCCCATGCTGCGTTTCCCCCAGCTGGCGATCCACCTGGACCGTGCAGCGAATGACGCCCTCACGCTGGACAAGCAGCGGCACATGAACCCGGTATGGGGCCTCGGGGACCCGGCCGAATTTGACCTGCTGGGGGTGCTGGCGTCCCACGTGTCCGGGGCCGACTCTGTGAACGCGGCTGAGATCGGAGGGTACGACGTCGTTATTGCAGACACGCAGGCCCCTTCGGTTTTCGGCGCCAACAGTGAGTTCTTTGCCGCCGGGCGGCTGGATAACCTGTCCGCCACGCACGCCGGGCTGATGGCACTGATTGCGCACGGCGCCGACGCGGCAGCGGACAGCACAGCGCCAAACGGTACAGCGCCCATCGCTGTCCTGGCGGCATTCGACCACGAGGAAATTGGCTCCAATTCCCGTTCCGGGGCCTGTGGTCCCATCCTCGAAGACGTGCTGGTCCGTATCTCCGACGGGCTGGGCGCGACGGCGGGCCAACGGCGTCAGGCCCTGGCGGCGTCGTTCTGTGTATCCGCGGACGCGGGCCACGCCGTGCACCCCAACTATGCGGAGCGGCACGATCCCGCCAATCATCCTGTGCTCAACGGCGGGCCCCTGCTGAAGATCAACGCCAACCAGCGCTATGCCACGGATGCCAGCGGGGCTGCTTTCTGGGCCAGGCTGTGTGGGGAGGCCAAGGTGCCGTACCAGGAATTCGTCTCAAACAATGTGATGCCGTGCGGCTCCACCATCGGCCCTTTGACCGCTACGAGGCTGGGCATCCGCACTGTGGACGTTGGGGTGCCGCTGCTCTCGATGCACTCCGCCCGCGAACTGTGCGGTGTGGATGATCCGCACGGACTGGCCAGGGTGGCGGAGCTGTTCTTCAGGACCTCTCCGTAGMGPWPGTRLETMPLPSTAADHIQDLGAYVSASPSSFHAVHEAARRLDEAGFTGLDEREPWEGGTSDGKADRFYIVRDGALIAWVVPQGAGPTTGFNIVGSHTDSPSFKLKPKPTIGAHGWLQAGVEIYGGPLLNSWLDRELRLAGRLVMLDGTQHLTSTGPMLRFPQLAIHLDRAANDALTLDKQRHMNPVWGLGDPAEFDLLGVLASHVSGADSVNAAEIGGYDVVIADTQAPSVFGANSEFFAAGRLDNLSATHAGLMALIAHGADAAADSTAPNGTAPIAVLAAFDHEEIGSNSRSGACGPILEDVLVRISDGLGATAGQRRQALAASFCVSADAGHAVHPNYAERHDPANHPVLNGGPLLKINANQRYATDASGAAFWARLCGEAKVPYQEFVSNNVMPCGSTIGPLTATRLGIRTVDVGVPLLSMHSARELCGVDDPHGLARVAELFFRTSPNANANANANA
D1-29_04696885hypothetical proteinATGACCAATCACGAACCCCATCCCAACCACGACCGCGGCCTTGAGTTCGATCTGTCCACGCTCATGAGCCGCCGTTCGCTGGGGATGTTCCTCGGCGCAGGCGGGGCCGCCGCGGCACTGGCGGCCTGTACTCCCGGGGGATCATCGTCGGCGCCGGCCACATCATCCGCTGCGGCTACAGAAACTGCCTCCGCAACTGGCTCCCTGGCACCTTCCGCCAGTGCAACTCCCACCGTGACCCGGGCCATTGCCGAGTGTGGCGTGGAGATCCCGGAGGAAACGGCCGGACCCTACCCTGGCGACGGCTCCAACGGTCCCAATGTGCTGGAGGCCTCCGGAGTGGTCCGCCGGGACATCACCTCCAGCTTCGGGACCTCAGGGACCAAGGCCGATGGTGTGCCGCTGACCTTCACCCTGACGCTCCTGGACAACGCCAACGGCTGCGTGCCCCTGGCCGGCGCTGCCGTCTACGCATGGCATTGCGACAAGGACGGCAAGTACTCGATGTACGATTCGGGCCTGACTGACGAAAATTACCTCCGCGGTGTCCAGGAAGCCGATGCCAACGGCCAGGTCACCTTCGCCTCAATCTTCCCGGGGGCTTATCGGGGACGATGGCCGCACATCCACTTTGAAGTGTTCGAATCCATGAGCAATGCGACGTCGGCCGGCCAGGTCCTGGCTGTTTCCCAGATCGCCCTCACAGATTCCTCCTGCCGTGACGTTTATTCCAGAGCAGGCTACGAAGCCAGCGCCAGTAATTTCCCCAGCACCACCCTGCAGTCGGACATGGTGTTCCGCGAGGACGGCGGCGTCTACCAGCTCGCCACCATGTCAGGGTCTGCTGCCACGGGTTACACGGCGGGGCTCAACGTCACCATCTAGMTNHEPHPNHDRGLEFDLSTLMSRRSLGMFLGAGGAAAALAACTPGGSSSAPATSSAAATETASATGSLAPSASATPTVTRAIAECGVEIPEETAGPYPGDGSNGPNVLEASGVVRRDITSSFGTSGTKADGVPLTFTLTLLDNANGCVPLAGAAVYAWHCDKDGKYSMYDSGLTDENYLRGVQEADANGQVTFASIFPGAYRGRWPHIHFEVFESMSNATSAGQVLAVSQIALTDSSCRDVYSRAGYEASASNFPSTTLQSDMVFREDGGVYQLATMSGSAATGYTAGLNVTINANANANANA
D1-29_04697693lnrK_3COG2197Transcriptional regulatory protein LnrKATGACCGACTCCCAACCCATCACCGTCCTCCTGGTGGATGATCAGCCGCTCCTCCGAATGGGCTTCCGCCTCATCCTTGAAGGTGAGGATGATCTCCGGATCGTTGGCGAGGCCTCCGACGGCGCCGAGGCAGTTCGCCAGGTCCGCGGGCTCAACCCCGACGTTGTGCTGATGGATGTGCGCATGCCTGTCCTGGACGGCATCGAGGCAACACGTGCCATCACCGCGTCCGGATCGTCGGCGAGGATCATCATCCTGACCACTTTTGATGTGGACGAGTATGCCTTTGCCGGCCTGCAGGCAGGTGCGTCCGCCTTCCTGCTGAAGGACGTGGCCCCGTCAGAGCTGATTCATGCCGTACGTGTGGTGGCCAGCGGCGATGCGGTGGTGGCCCCGCGGGTCACCCAGCGGCTGCTGGAAACGTACGTCCGCGGAGTGGAACGGCCGGCCAACGCTGCAGCCTCCAGGGATCCTCTCCTGGAGGACCTGACGCCCCGCGAAACGGAGATGCTGGAGGCCATGGCCGAGGGACTGTCCAATGGGGAAATTGCACACCGCTATTTCCTGTCCGAAGCCACGGTCAAGACGCACGTCCGAAGGATCCTGACCAAACTCCACCTGCGGGACAGGGTCCAGGCGGTGGTGTATGCCTACGAGACAGGACTGGTTGTCCCGAGCAACCCCGACTACTGAMTDSQPITVLLVDDQPLLRMGFRLILEGEDDLRIVGEASDGAEAVRQVRGLNPDVVLMDVRMPVLDGIEATRAITASGSSARIIILTTFDVDEYAFAGLQAGASAFLLKDVAPSELIHAVRVVASGDAVVAPRVTQRLLETYVRGVERPANAAASRDPLLEDLTPRETEMLEAMAEGLSNGEIAHRYFLSEATVKTHVRRILTKLHLRDRVQAVVYAYETGLVVPSNPDYPGPT0014870_122DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-29_046981518hypothetical proteinATGACCCATGCAGTGCCTGTAAAGGACGCGCCGGCCGGGCAGGCCGACGCGTCCTTTGCCGAGATCACAGCCAAGCGCCGCGGCACGATCCGCCGCTACCTCTTCCAGCACCCCCGGGTGATGGACGGGCTGGTTGCGCTCAGCTATGCGCTGCTGGTTGCCCCCACGGTAGTGGATGCCGTGATGTCCGGCAGCTGGCTGGCCGCCGCCCTCCTCCTCTTCGTGGCCGGTGGCATGTTCTTCCGGCGCTCATACCCTGTGGCCCTGGTGGCGTTTATAGCGGTGATGGAAGTGGCCGTCACCCTTCTCCATCCCTGGGGTTCCAATGTTTCCGCCGGACTGTGGTTCTCGCTGTACGCGGTGGCCGTCGTGCACACGAGGCGGTTCGCTCTGATCACGCTGGCAGTGGCTACGGCTCCGCTGGCCCTGCTGTACCTACTGGCCGCCGTCGGCCCCATGGAAAATTCCTTTGTCCACGACCCGGGAGCCAATCCGGGGGACTTCCACCTACTGACCAGCATCGCCACGGGCGCCACCATCGCGCTGTCCAACGTCATTGCCACCGGCATCGGGATCTCCGTGCGGCAGCGGCGGGAACACGAACAGGAAATCGCCGCCTGGGCGGCCCGCACCGCCAGCCTTGCCTCTGTCAACGAACGGAACCGCATCGCCCGCGAAATGCACGACGTCGTGGCGCACTCGCTGACGGTGATGATCAGCCTGTCGGACGGCGCCGCCGTCGTGGTCAGGAAAAGTCCCGACCGCGCCGGCGAAGTCCTCGGTGAGCTCTCCCGCACCGGCCGGATGGCCTTGGGCGACATGCGGCGGGTGCTGGGTGTCCTGCGGGACGACGCCCAAGGAACCGCGCCACGGCAACCGCTCGCCTCAGGAGACAGCCTGGCGAAGCTGCTGGAGGGATTCCGCACCGCCGGTCTCCCGCTGCACTACTCGCACACCGGCCCCGCGCTGCCCCAGGATGCGGCGTTCCAGCTGACGGTCTACCGGATCGTGCAGGAATCCCTCACGAATGTGCTGCGGTACGGCCGCTCGCTCAGCCGCGTGGACGTGGGCATCGTCCGCGCCGGCTCCACCGTGACCATAGACGTGCTCGACGACGGCACCGGGCTTGCTGCGCACGGCTCTTCTGAACCTGGCGGACCCGGCCCGGGTTCCTCGTTCGGATCGGTTCCGGGGCAAGGACTTGGGCTCGGCCCAGGTGTGGGGTCCGGGCAGGGGCTGGCGGGGATGGCAGAGCGTGCGCGGATCTATTCAGGCACGGTGGAGGCCGGGCGGAGCGGACACGGCTGGCGGGTTCGGGCGCTGCTGACCTGGCCCGGTGACCGGGACTCCGAGCAGCCCGGCAGCGGGAATTCCGCAGCCGGGGAACAGATCCAACAGCTCCCATCCGGCAAGGGCCAAATCGACCAGCCCCACATCCACCGGCTTCAAGTCCAGCAGCCCCGAGTCCAAGAGCCTCCAGCCCAACAGCCCCAAGTCCAACAGCAAGGTAAGGCATGAMTHAVPVKDAPAGQADASFAEITAKRRGTIRRYLFQHPRVMDGLVALSYALLVAPTVVDAVMSGSWLAAALLLFVAGGMFFRRSYPVALVAFIAVMEVAVTLLHPWGSNVSAGLWFSLYAVAVVHTRRFALITLAVATAPLALLYLLAAVGPMENSFVHDPGANPGDFHLLTSIATGATIALSNVIATGIGISVRQRREHEQEIAAWAARTASLASVNERNRIAREMHDVVAHSLTVMISLSDGAAVVVRKSPDRAGEVLGELSRTGRMALGDMRRVLGVLRDDAQGTAPRQPLASGDSLAKLLEGFRTAGLPLHYSHTGPALPQDAAFQLTVYRIVQESLTNVLRYGRSLSRVDVGIVRAGSTVTIDVLDDGTGLAAHGSSEPGGPGPGSSFGSVPGQGLGLGPGVGSGQGLAGMAERARIYSGTVEAGRSGHGWRVRALLTWPGDRDSEQPGSGNSAAGEQIQQLPSGKGQIDQPHIHRLQVQQPRVQEPPAQQPQVQQQGKANANANANANA
D1-29_04699903hypothetical proteinATGAGCTCAACCACCCTCGACCCCAAGCCTTCCCGCCGCGGCGCGCACGCCGGCACCGTCTTTTCCGGAAAGCTGCCCGGCGACGCCACCAGCACCGGCCCGGGCCCCTCCTTCCTCCGCGTGCTGAACTCCGAATTCATCAAGTTCCGCACGCTGCTGTCCACGCTGATCCTGCTCGGCTGCACCATCCTGGTTATGGTTGGCTTCGGAGCGCTCTCAGCCTGGGGTGTTGGCCAGTTCGCCGAGGAAGCGTTGCGTGACCCGCAAGCCGCCGCGGCCCTTGCCGCCCAGGGCGGAGACCCGGCCATCACCGTCCCCACCTCCGCCATTCCGTTCGCCCAGCTCATCCTGGGATCGCTTGGCGTACTTCTGATGAGCTCCGAGTTCGCAACGGGGATGGCGCGCTCCACCTTTGCAGCGGTGCCGAAGCGGACGCCGGCCTTCATAGCCAAACTGCTGGTGGTGATGCTGACCGCGTTCATTGTCACCGCGGTCTCGGTGTACCTCGCTGGTTTGGTGGCCCTGCCAATCCTGGACAACTACGACCTCAAGCTGGACTTGGCCAGCTCCCAGTCGGTGAAGTTGCTGCTCGTCAACAGCGTCTACGTCGCAGCCGTCGCCGCTATTGGCATGGCACTGGGCTCCTTGCTCCGGAACTCGGCCGGCGGCATCATGAGCCTCGTTGGCCTGTTCTTTGTGGCGCCGATTGCGTTCCAGCTGATTCCGGGCGACTTTTTTGTCCAGACACGCAAGTACCTGCCCGGCAATACGGTGGAGGCCATAACAGCCGTCCAGCACGCGCCCGACACCCTTGAAGTCTGGCAGGCGTCCCTGGTTCTCGGCGCCTGGGTGGTCATCCCGGTGGTGCTCGCCGCCGTCGTCCTCAAGAAGCGCGACGTTTAGMSSTTLDPKPSRRGAHAGTVFSGKLPGDATSTGPGPSFLRVLNSEFIKFRTLLSTLILLGCTILVMVGFGALSAWGVGQFAEEALRDPQAAAALAAQGGDPAITVPTSAIPFAQLILGSLGVLLMSSEFATGMARSTFAAVPKRTPAFIAKLLVVMLTAFIVTAVSVYLAGLVALPILDNYDLKLDLASSQSVKLLLVNSVYVAAVAAIGMALGSLLRNSAGGIMSLVGLFFVAPIAFQLIPGDFFVQTRKYLPGNTVEAITAVQHAPDTLEVWQASLVLGAWVVIPVVLAAVVLKKRDVPGPT0006730_9804DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-29_04700945btuD_18Vitamin B12 import ATP-binding protein BtuDATGATCGAGGCAAAAGGCCTGACCAAGGTGTACGGCGAGAAGACCGCCGTCGCCGGAGTCGACTTCACCGTCGAGGCAGGACGGGTGACAGGCTTCCTGGGCCCCAACGGCGCCGGCAAATCCACCACCATGCGCATGATTATGGGACTGGACCGTCCGACGTCGGGCACCGTAACCGTCAACGGCGCACCCTTTGCCCGGCACGCCGCGCCACTGCGCGACGTCGGGGCGCTGCTGGACGCGAAGGCCGTCCACACCAGCCGCTCGGCTTACAACCACCTGAGGGCCATGGCAGCCACTCACAGCATTCCCAAGAAGCGGGTGCACGAGGTCATCGAAATGACAGGCCTGGCGGAAGTGGCCAAGAAGAAGGTGGGCGGCTTTTCGCTCGGCATGGGGCAGCGGCTCGGAATTGCTGCTGCCCTGCTGGGGGATCCGCAGACCGTCATCCTGGACGAACCCGTCAACGGCCTGGACCCCGAGGGTGTGGTCTGGGTCCGGAACCTGGTCAAGTACCTGGCCTCGGAGGGACGCACCGTGTTCCTCTCCAGCCACCTGATGAGCGAAATGGCTGTCACCGCGGACCACCTGATTGTGATCGGCCGCGGCAGGATCATCGCCGATGCACCCATCCGGGACATCATCAACGGCAAGGGCCGGATCCGCACCCGCGTCCGGACCGACCAGCCGGACCAGCTGATGCAGCTGCTCGCAGGAGACGGCGTCTCTATCGAGCTGCAGGAAAACGAACTGCTCGAGGTCACCGGCCTGGACCCCCGCCGGATCGCACGCGCCGCGCTGGACAGCCACGTCATGATCTACGAACTGACTCCGCTGCAGGCAAGCCTTGAGGAGGCCTACATGGAGCTGACCAAGGATGAGGTCGAATACCACTCGCTGATCACCACGGGGGACACTGCTCCCGTCCAGTCCGGAGGCAACTGAMIEAKGLTKVYGEKTAVAGVDFTVEAGRVTGFLGPNGAGKSTTMRMIMGLDRPTSGTVTVNGAPFARHAAPLRDVGALLDAKAVHTSRSAYNHLRAMAATHSIPKKRVHEVIEMTGLAEVAKKKVGGFSLGMGQRLGIAAALLGDPQTVILDEPVNGLDPEGVVWVRNLVKYLASEGRTVFLSSHLMSEMAVTADHLIVIGRGRIIADAPIRDIINGKGRIRTRVRTDQPDQLMQLLAGDGVSIELQENELLEVTGLDPRRIARAALDSHVMIYELTPLQASLEEAYMELTKDEVEYHSLITTGDTAPVQSGGNPGPT0006725_7150DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-29_047011497yegSlipid kinase YegSATGCGCAGGATATGGGGCAGAGGCCCGGGCTTAATCAGCCGCTTTGACCGGCACTTGGTCCGGGCTGTTTCCGACTTCCCCGGCGGAAACCACGACACCTTTTTCCGCCGCCTCTCTGCGTCCGCCAACCACGGCAAGCTGTGGATGGGCGCAGCCGCTGTGATGGCTGCCTTTCCCGGGAAGCCGCGGCGGGCCGCATTGCACGGACTCATTGCGCAGGCTGTGGCGTCGGCCGTGACCAATGTGGGGTTCAAGACCCTGCTGCCGCGGGCCCGTCCGCTGCCGGAACACCTTCCTGTTTTCCGGTTTGTGCATCCTCAGCCCACCAGTTCCTCCATGCCGTCCGGGCACTCTGCATCAGCGATTGCCTTCGCGGTAGGGGCAGGCCTGGTCCGACCCTCCCTGGGGATGGCCCTGGCCCCGGTGGCGGCAGGGGTTGCATACTCCCGGGTCCATACCGGCGCGCACTGGCCGTCCGACGTCGTGTTCGGTTCCGCTATTGGGGCGGGGGCAGCACTTATTACCCGAAAATGGTGGCCGGTCCGTCCTCCATTCCCTGAGACCGCCCGCAGCAGGACCTCAGCCCCGCAACTTCCCGGCGGTGAAGGACTCAGCATTGTGGTGAACACGCTGGGCGGATCCTTTACGAATGAAACCGCCGCAGCGCTTCAGGAAGTATTCCCTAAGGCCTATATAAATACTGTCGAGACGGGAGAGAAGCTGGAGGACGAGATCCAGTCAACCACCCGCTTTCCAGGAACAGTCGCCCTGGGGGTCTGGGGCGGCGACGGAACGGTGGGGACGGCAGCTGCTGCCGCCATTGAGCATTCAATGCCCTTGCTGGTCCTGCCCGGAGGCACCCTCAATCACTTTGCACGGGACGCCGGCACAGGATCCCTCAAAGCGGCTTTGGCTGCAGCAGCGAACGGCGAAGCGGCCCTTGCTGACGTAGGGATAGTTTCCGTGGAGCGCGGTCTTGCAGAAAATCCGGAGACCGCCGAGCTGGTGATGCTCAATACCGCAAGCATCGGCCTGTATCCGAACCTGGTGCGGCGCCGTGAGCAACTGCAGCCAGCGCTGGGCAAGCCGCTCGCCGGAGTCGTGGCCATGTTCCGGACTTTCGCAGCCGGAACGCCCACCACGCTGACGGTTGATGGGGTGAGGCACAAACTTTGGATTGCCTACATTGGCCGCGGCCGCTACTACCCCAGGGACCATGCTCCCCTGGTGCGTCCGGTGCTGGATGACGGCGTCCTTGATGTCCGCATGATCACCGCCGACGAATCGTTCGCCCGGCTCCGCCTGCTCTGGTCCGTCCTGACCGGTACGGTGGCCACGTCCCGGATCACGCACCTGAGCGAAGCCACCAGCCTGCGTATCGAGTCCGGCGCTTCGCCCATGGTGCTGGCCGTGGACGGCGAGGCCCTGGCCGGAGTCCGCAGGGCAGACTTCCGGGTGGAACGGCATGCGCTGACGTACTACTCGCCGGTGTCCTGAMRRIWGRGPGLISRFDRHLVRAVSDFPGGNHDTFFRRLSASANHGKLWMGAAAVMAAFPGKPRRAALHGLIAQAVASAVTNVGFKTLLPRARPLPEHLPVFRFVHPQPTSSSMPSGHSASAIAFAVGAGLVRPSLGMALAPVAAGVAYSRVHTGAHWPSDVVFGSAIGAGAALITRKWWPVRPPFPETARSRTSAPQLPGGEGLSIVVNTLGGSFTNETAAALQEVFPKAYINTVETGEKLEDEIQSTTRFPGTVALGVWGGDGTVGTAAAAAIEHSMPLLVLPGGTLNHFARDAGTGSLKAALAAAANGEAALADVGIVSVERGLAENPETAELVMLNTASIGLYPNLVRRREQLQPALGKPLAGVVAMFRTFAAGTPTTLTVDGVRHKLWIAYIGRGRYYPRDHAPLVRPVLDDGVLDVRMITADESFARLRLLWSVLTGTVATSRITHLSEATSLRIESGASPMVLAVDGEALAGVRRADFRVERHALTYYSPVSNANANANANA
D1-29_047021197ybjJ_3Inner membrane protein YbjJATGAGCATCAATACCAGCACCACAGCCGGACCGGCCGTGAAAGCAGCAGCAATAGCGACATTTGTGGTCTTCGGAATCAACGGACTGGTTTTTGCCAGCTGGGCTGCCCGGATCCCCGCAGTGACCGAAACGCTGCACCTGACGTCGGGACAAATGGGCACGCTCCTGCTGTGCACAGCCATCGGCTCACTGATCGCACTGCCCACTGCAGGGCTCGTGGTAGGCAAGCTCGGGACGGCCAACACGGTACGGGCCGCGGGCGTCCTGGTAACGCTGTCAGGCGTCGGGATTGCCCTGTCACTCCTCGCTGAATCCGTTGCCGGTACCGCCGTTTGCCTATTCTTCTTCGGAATCGGGATTGGTCTGTGGGATGTCGCCCAAAACATTGAAGGGGCCGACGTTGAACACCGGCTCAGGCGCACCATCATGCCGCAGTTCCATGCCGCCTTTAGCGGTGGAGCGTTTGTGGGAGCGCTGATCGGGGCTGGCCTGTCCAACCTGGGAGTCGGCCTGCCGGTTCACCTGTTGGTCATTGCCGGCGCAGTGGGCCTGGTGGCCCTGCTGACCCCGCGCTATTTCCTCCCTCATCTTCCTGCCGCTGTTCCTGCCGATGGTGAACCGAAGCCAGCCAAGGGGCCCTCTGCCTGGCGAGACAGCCGGACCCTGCTGATCGGGGTGGTGGTACTGGGAGCGACACTGACCGAAGGTGCCGGCAATGACTGGATCGCCAAGGCTTCGGTGGACGGGCTCCACACCACAGAGTCCACGGGCGCCCTGATGTTTGCCCTCTTTGTCCTGGCCATGACGGCCATGCGCTTCTTTGGCGGCCGCGTCATCGACATTTATGGCCGTGTGGTTGTCCTGCGGGCCAGTATGGCGGCCGCAGCAGCCGGGCTTTGCCTGTTTGTGCTGGCCGGAAACGTGTGGCTTGCTGCCGTAGGCGCTGCGCTGTGGGGCGTCGGTGCCGCCCTGACGTTCCCCATGGGAATGTCCGCGGCGGCGGATGACCCAAAGCGCGCGGCTGCCAGGGTTTCCGTTGTATCCACTTTGGGGTATGTCTCCTTCCTGGCTGGGCCCCCGCTGCTCGGATACCTGGGCGACCTCACGGGAATCCACCTGGCGCTGCTGGCGATCCTCGCCCCCATCCTGGTGGCGCTCCTGCTGGCTGGAGCAGCCAAACCGCTGCCGTCCAAGTAAMSINTSTTAGPAVKAAAIATFVVFGINGLVFASWAARIPAVTETLHLTSGQMGTLLLCTAIGSLIALPTAGLVVGKLGTANTVRAAGVLVTLSGVGIALSLLAESVAGTAVCLFFFGIGIGLWDVAQNIEGADVEHRLRRTIMPQFHAAFSGGAFVGALIGAGLSNLGVGLPVHLLVIAGAVGLVALLTPRYFLPHLPAAVPADGEPKPAKGPSAWRDSRTLLIGVVVLGATLTEGAGNDWIAKASVDGLHTTESTGALMFALFVLAMTAMRFFGGRVIDIYGRVVVLRASMAAAAAGLCLFVLAGNVWLAAVGAALWGVGAALTFPMGMSAAADDPKRAAARVSVVSTLGYVSFLAGPPLLGYLGDLTGIHLALLAILAPILVALLLAGAAKPLPSKNANANANANA
D1-29_04703774srlR_4COG1349Glucitol operon repressorATGAAAACCGATGAGCGCCACCGGTTGATCGGGGACCTCCTGCGCGAGCGGGCAGAAGTGAGCGTTGAGGACCTGACGGCGGCCTGCGACGCCTCAGGGGCAACGATCCGGCGCGATCTTGAAGTGCTCGCAGCGCACGGCGTTCTTCGCCGGATCCACGGCGGTGCAAGGAGCCTCATCGTGGGCGGGGAGAACCCTGGCTACGGTCAGCGTGAACTTGAAGACCAGGACATCAAGCTGCGCATCGCTGCCGGTGTGGCCGGATTGCTGCGGGACCAGGAACGCGTGTGGTTGGACAGCGGCACAACCGCCACGGAAATCGCCAGGACCCTGCGGGGCCGGCATTTGACCCTGATGCCCATGTCCCTGCGTTCCCTGAATGCGGTAACAGCCGAGGACCGGAATGCCGGGCAACGCCCCTCGCTGCTCCTGCCTGGTGGGAGCCTCGTCCCGGGGGAACTCTGCTTCCGGGGACCGATGGCGGAATCGAACATCAGGTCCCTCCGCTTTGACAGCGCGGTAGTCACGCCCTGCGCCTTGAACCTCAAGGACGGGCTGCTGGCGCACGACTTGGATGACGCCGCGGTGAAGCGGGCCGGGCTGGAGTCGTCGGGGCGGGTGATTGTTGCCTGCGCCGGCTCCAAATGGAATGCCAAGGCGATGGCGCTGGTGGCCGAACTGGACCTCGTGGACGTGATCGTGACTGAAAAGAACCTCACTGCGCAGGAACTCGCGCAGCTCAAGAACCTCTCGGTGGAAGTAGTGAATGTATGAMKTDERHRLIGDLLRERAEVSVEDLTAACDASGATIRRDLEVLAAHGVLRRIHGGARSLIVGGENPGYGQRELEDQDIKLRIAAGVAGLLRDQERVWLDSGTTATEIARTLRGRHLTLMPMSLRSLNAVTAEDRNAGQRPSLLLPGGSLVPGELCFRGPMAESNIRSLRFDSAVVTPCALNLKDGLLAHDLDDAAVKRAGLESSGRVIVACAGSKWNAKAMALVAELDLVDVIVTEKNLTAQELAQLKNLSVEVVNVPGPT0017590_1074DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017590-fruR2-K03436NANA
D1-29_04704345hypothetical proteinATGGCTGATGAACTGTTCAAAGACGGCAAGGTATCGGGCACCGGTGAATACCTCAATGGTGAACGGCACGGCCGCTGGACGTTCTATTTCCGGAACGGTCAGGTGAAATCTGAAGCCGGATACGCCCACGGCCAGCTGGATGGACCGTGCGTCTGGTACCGGGAGGGCGGTGGACTGCTCCAGAAAGGCGCTTTCGTCGACGGCCGGCAGGACGGCTTCTGGCAGCGCTGGCACAGCACTGGCGAACTGCTGGATGAAGGAGCCTACGACGCCGGACGCAAAGTAGGCGAATGGGTCACTTATGCAGCGGACGGCTCAGAGACCAGGCGCCGGACGTATAAATAGMADELFKDGKVSGTGEYLNGERHGRWTFYFRNGQVKSEAGYAHGQLDGPCVWYREGGGLLQKGAFVDGRQDGFWQRWHSTGELLDEGAYDAGRKVGEWVTYAADGSETRRRTYKNANANANANA
D1-29_047051728ybiT_2COG0488putative ABC transporter ATP-binding protein YbiTGTGGACAAAAACTCGTGGGGGTGTGGGCATGGGAAGATTGTTGGCGTGGCCCATATTGACATTTCCGGCATCGATTACTTCCTCTCCGACGGCACCCAACTGCTCAACGGCGTGACCTTTAAGGTCCCGGACGGCACCAAAACTGCCCTGATCGGCCCCAACGGCACCGGGAAAACCACCCTCTTCCGCATCATCTCCGGGGACCTCACCCCTGACGAAGGAGTGATCGGACGGTCCGGGAACATGGGCATCATGCGCCAGTTCGTCGGGCAGGTCCGCGACGACTCCACGGTCCGCGACCTCCTGGTCTCCGCCGCCCCTCCCGCGCTGGCAGCTGCCGCCCTCGCTGTGGACGAGTCTGAGCTCGCAATGATCGAGCACGACGACGAACCCAGCCAGATGCGTTACGCTCAGGCCATCGTCGACTGGGGCGATGCCGGCGGCTACGACGTGGAAACCGTCTGGGACGAGGTCTGCATGGCCGCCCTGGGACTGCCCTTTGACCGTGCCCAGCACCGGCCGGCGTCGAGCCTTTCCGGCGGTGAGCAGAAGCGCCTTGTCCTGGAGGCGCTGTTTGCCGGGCCGGATGAACTGCTGCTGCTGGACGAACCGGACAACTACCTGGACGTCCCCGGCAAGCGCTGGCTGGAGGACAAACTGAACGAGTCCAAGAAAACCGTCTTCTTCATCAGTCACGACCGTGAACTGCTGAACAACGCCGCCAGCCGTATAGTCACCCTGGAACCCGGCATTAATGGCGCCGGGGCGTGGGTCCACGGCGGTGGCTTCGGTTCCTATGTGGATGCCCGCGCGGACCGGAACGCGCGCTTTGAGGAGCTGCGAAAGCGCTGGGACGAGGAGCACATCAAGCTCAAGGAACTCGTCAACATGTACAAAAACAAGGCGGCGTTCCGCTCCGACATGGCCAACCGCTACCACGCTGCCCAGACGCGGCTGGCCAAGTTCCTGGAAGCCGGCCCGCCGGAAGCCCTCCCGATCGAGCAGAACGTGAAGATGCGGCTCAAGGGCGGCCGCACCGCCAAACGCGCCATTGTGGCGGAGAAACTCGAACTGACCGGCCTGATGAAACCGTTCTCCACGGAGGTGTGGTTCGGCGACCGGGTTGGCGTGTTGGGGTCAAACGGCTCGGGCAAGAGCCATTTCCTCCGGCTGCTCGCCACCGGCGGAACGGATCCTGAGCGGGAGCACGTTCCTGTGTCAGATGTTGAAATCGCCGAGGTGCCGCACGAAGGCACCGTTAAGCTCGGCGCCCGGATCCGGCCGGGATTTTTTGCCCAGACCCATGTCCGGCCCGACCTTCTGGGCAAAACCCTGCTGGAAATCCTGCACCGGGGCGACGAACACCGCTCGGGACTGGGCCGGGAGGCGGCGGCCGGAGCACTGGATGGCTACGGCCTTGCCGGGCAGTCCGAGCAGAAGTACGAGTCCCTGTCCGGCGGCCAGCAGGCGCGGTTCCAGATCCTGCTGCTCCAGCTCTCCGGGGCAACCCTGTTGCTGCTGGATGAGCCCACCGACAACCTCGATCTGCACTCTGCGGAGGCGCTGGAACGGGCCATCGACCACTTCGAGGGGACGGTCCTGGCGGTGACGCACGACCGCTGGTTCGCCCGCACCTTTGACCGGTTCCTGGTGTTCGGTTCGGACGGCCGCGTTTACGAATCGGCCGAACCGGTGTGGGACGAGAAACGGGTGGAGCGCGCCCGCTGAMDKNSWGCGHGKIVGVAHIDISGIDYFLSDGTQLLNGVTFKVPDGTKTALIGPNGTGKTTLFRIISGDLTPDEGVIGRSGNMGIMRQFVGQVRDDSTVRDLLVSAAPPALAAAALAVDESELAMIEHDDEPSQMRYAQAIVDWGDAGGYDVETVWDEVCMAALGLPFDRAQHRPASSLSGGEQKRLVLEALFAGPDELLLLDEPDNYLDVPGKRWLEDKLNESKKTVFFISHDRELLNNAASRIVTLEPGINGAGAWVHGGGFGSYVDARADRNARFEELRKRWDEEHIKLKELVNMYKNKAAFRSDMANRYHAAQTRLAKFLEAGPPEALPIEQNVKMRLKGGRTAKRAIVAEKLELTGLMKPFSTEVWFGDRVGVLGSNGSGKSHFLRLLATGGTDPEREHVPVSDVEIAEVPHEGTVKLGARIRPGFFAQTHVRPDLLGKTLLEILHRGDEHRSGLGREAAAGALDGYGLAGQSEQKYESLSGGQQARFQILLLQLSGATLLLLDEPTDNLDLHSAEALERAIDHFEGTVLAVTHDRWFARTFDRFLVFGSDGRVYESAEPVWDEKRVERARNANANANANA
D1-29_047062100mrdAPeptidoglycan D,D-transpeptidase MrdAATGCCTATGATGACGCCCAGGATGCAGCGCGACTGGGGTGAAAGCCGCCGTGTAATGCCCTCCAGGGCCCCGCGGGACGAAGGACCTCAGAAACGGGGCATAATAGCGCGGGTGGGGAATTCAAAAAAACTGACACTTGGCATCATTGGACTTATTCTCGGTGCCTCCTTGGTGGCGTGCGATGACGGCAAAGCCGCTGCGAGGGATGCCGCCGGGCAGCTTGCGTCGGCAGTTTCCGCGCTCGACGTCGGCTCCGTCGCCTTTGACGGGAAGGACTCCGCGGCCGCCAACGAGCAGCTTCGTGAGGTTTTCAAAGCACTCGATCCGGAGAAGCCGGCGGTTCAAGCCGGTGAGGTGACGGTGGAGGGCGACACCGCCGCCGTTCCGCTGAACTACACCTGGAAAATCGATGGCGCTGAGTGGAAGTACACAGTCTCAGCCAAACTCAAGAAGTCGGGCGACAAGTGGCTGACCGCGTGGGAGCCTGCCGCGTTTGTGCCTGGCCTGGCCGACGGCGAAATCCTCACCAAGGACTCCCAGTCCCCGCCGCGAGCGGACATTCTGGGTGCGGGCGACGCCAAGCTGGTCACCTACCGTCCCGTGGTCAATGTCGGCATTGACAAGCCCCAGTTGGGATCAGCAGACCCTGCGGCGTCTGCGACGAAACTGGCGGAACTGGTGGGTGTGGATCCCGCCGCCTTCGCTCAGCAGGTGGCCGCTTCCGGCCCCGAGGCCTTCGTTTCGGCGATCACCCTTCGTGAGGAGGGCCGCACCATCACGGACCAGCAGATCACCGCGATCCCGGGTGCGCGGGCCATCCCGGCAACCCTGCCACTCGCGCCCAGCCGCACGTTCGCACGGGCAGTGCTTGGTTCTGTTGGCGAGGCCAATGCAGAGCAGATTGAAGCATCGGACGGCGCCCTGACCGCCGGTGACGTGACCGGCACGGGGGGACTGCAGCAGCAGTACGACGCGCAGCTCCGCGGTACGGATGCAGTGGTGATCCGGGCCCAGCGCGCCGGCCTCACCCGGGAAGAGATCCAGGCCACCCGCCCCGATCCCCGACGAGTTGTTTTCGAGGTGTCGCCCACACCGGGCACGCCGTTGAAGACCACCCTTGATCCCAACCTGCAGTCCCTGGCGGAGACCGTCCTGGTGAAGGTGGGCCCGGCGTCGGCCATTGTTGCCCTCCGTCCGTCTTCGGGTGCAGTCCTGGCGGCCGCCTCCGGTCCCGGAAGCAATGGCTATAACACCGCCATGCTGGGCCAGTACGCGCCCGGGTCCACCTTCAAGATGGTTGATTCGCTGGCCATGCTCCGCAACGGCATGACTCCGGATTCAAAAGTGGAGTGCACACCCAGCCTCACGGTCGATGGCCGGACCTTCAAGAACGCCGAGGGCTATCCCGCCGACTCGTTGGGCTCCGTAACGCTCCGCGATGCCTTTGCCCACTCCTGCAACACGGCGTTCATCGCGGCACGTGAGAACGTCACCCAGGCGCAGCTTGAAGCTGCCGCAATGGCCATGGGAGTGGCGGTGGAAGCCCCCGCCCTGGGTGCGGATGCCTTCCTTGGCTCGGTACCCGGTGAGGCTGCAGGCACCGAACATGCAGCCTCCATGATCGGGCAGGGCAAGGTCCTGCTGTCACCGCTGGCCGCTGCCATGATGGCCGGAGCAGTGGCCAAGGGGGCGCCGGTTTCACCGCAGCTCGTCCTGAACCCCGACGCCGGTGCTCCCGCCGCCGATACTGCCGGCGAGCCGAGCGCCGAAGCCGGGCAGCCGACGTCGACCGTTACGCCCGAGGCGCCGTCGAAGGCATCCGACAAGCCGATCACCAAGGAGGAAGCTGCGGCATTGGCGGACATGATGCGGGCCGTGGTCACCTCCGGTCATGCAGGGTTCCTGGCCAGCGTCCCGGGAGCGCCCGTGGCAGCCAAAACCGGCACCGCCGAGTTCGGCAACGAGAACCCGCCCAAAACCCACGCATGGATTGTCGCTGTGCACGGTGACCTTGCGGTGGCTGTTTTCGTGGAGGACGGCGGCCTCGGAGCGACGACGTCCGGGCCCCTGCTGAAGGAATTCCTCACCGCCGCCGGCTAAMPMMTPRMQRDWGESRRVMPSRAPRDEGPQKRGIIARVGNSKKLTLGIIGLILGASLVACDDGKAAARDAAGQLASAVSALDVGSVAFDGKDSAAANEQLREVFKALDPEKPAVQAGEVTVEGDTAAVPLNYTWKIDGAEWKYTVSAKLKKSGDKWLTAWEPAAFVPGLADGEILTKDSQSPPRADILGAGDAKLVTYRPVVNVGIDKPQLGSADPAASATKLAELVGVDPAAFAQQVAASGPEAFVSAITLREEGRTITDQQITAIPGARAIPATLPLAPSRTFARAVLGSVGEANAEQIEASDGALTAGDVTGTGGLQQQYDAQLRGTDAVVIRAQRAGLTREEIQATRPDPRRVVFEVSPTPGTPLKTTLDPNLQSLAETVLVKVGPASAIVALRPSSGAVLAAASGPGSNGYNTAMLGQYAPGSTFKMVDSLAMLRNGMTPDSKVECTPSLTVDGRTFKNAEGYPADSLGSVTLRDAFAHSCNTAFIAARENVTQAQLEAAAMAMGVAVEAPALGADAFLGSVPGEAAGTEHAASMIGQGKVLLSPLAAAMMAGAVAKGAPVSPQLVLNPDAGAPAADTAGEPSAEAGQPTSTVTPEAPSKASDKPITKEEAAALADMMRAVVTSGHAGFLASVPGAPVAAKTGTAEFGNENPPKTHAWIVAVHGDLAVAVFVEDGGLGATTSGPLLKEFLTAAGNANANANANA
D1-29_04707444hypothetical proteinATGGAAACCATGCAGACCGGGGCCACTGCCTCCAACTCCCCTGCCTCCAACTCCCGCGCCTACAGCTCCCCCGTCTTCGACGTCTTTGAGCCCGACTGTCCCTCCCGTGTGGTCTTCCAGCGCATCGGGGACAAGTGGGCTTCCCTGGTCATCCAGGTTTTGGCGGGCGGCCCGGTCAGGTTCTCTGAACTGCGGAAAATGGTCAACTTCGTCACGCCCAAGGTTTTGACGCAGACGCTCCGGACCCTTGAGCGGGACGGGCTGATCACACGGCATGTTTTTGCGCAGGTCCCTCCCCGGGTGGACTACGAACTGACCGGCCTGGGCCGCTCCCTGCTGGAACCCCTCACCATGCTTCGCCGCTGGGCAGAGAACAATGTGCCCACCATCCTGGATGCACGTGATGCCTATGATGACGCCCAGGATGCAGCGCGACTGGGGTGAMETMQTGATASNSPASNSRAYSSPVFDVFEPDCPSRVVFQRIGDKWASLVIQVLAGGPVRFSELRKMVNFVTPKVLTQTLRTLERDGLITRHVFAQVPPRVDYELTGLGRSLLEPLTMLRRWAENNVPTILDARDAYDDAQDAARLGNANANANANA
D1-29_04708606hypothetical proteinATGAAAATTGCAGTCTATGGAGCCACAGGCATGATCGGCAGCGAGATCGTGAATGAGTCATTGACCCGCGGCCATCAGGTAACGGCCATCTCCCGCTCGGGGGCCGACGTGTCCGGCGCACAATCTGTTGCAGCCCACCTCGCAGACGAAAGCACCTTCGCGGAGATCGCCAAGGACCACGACGCCGTTGTCCTCGCGACGGGACCCAGCCGCACCGGCGGGGACCACGGCGAATGGCTCGCGGCCATGGACACCGCCTACAGCAACTCTGAAGGGACACGCCTCCTCATTGTGGGCGGGGCCGGCTCCCTGGAGATCGACGGCGTTCGGCTGGTCGATTCACCCGACTTTCCCGAAGCCTACAAAGCAGAGGCACAAACCCACGCTGTCGCACTCAACGCCGTCCGGAAGGCTTCCGAGTCCCTGGACTGGACGGTACTTGCCCCGGCTCCCCTCATCCAGCCGGGCGAACGCACGGGCACCTATGTCACCGCCAAGGACACCCCGGCAGGTGGCAGCATCTCCAGCCAGGACTATGCCGTTGCACTGCTGGACGAGATCGAAACGCCTGCCCACCGCCGGGCGCGCTTCACCGCCGCAAACTAGMKIAVYGATGMIGSEIVNESLTRGHQVTAISRSGADVSGAQSVAAHLADESTFAEIAKDHDAVVLATGPSRTGGDHGEWLAAMDTAYSNSEGTRLLIVGGAGSLEIDGVRLVDSPDFPEAYKAEAQTHAVALNAVRKASESLDWTVLAPAPLIQPGERTGTYVTAKDTPAGGSISSQDYAVALLDEIETPAHRRARFTAANPGPT0020900_1867DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118NANA
D1-29_047091440hypothetical proteinATGCCTGACGTAGCCGTTGTTGGTTCCGGCCCCAACGGGCTGGCTGCAGCCGCAGTGATGGCGCGGGCGGGCCTTTCCGTGGAGGTCTACGAGGCCGCAGACACGTTTGGCGGGGGGACACGAACTGTTGAACTGATGCAGCCCGGGCACTTCCATGATGTTTGCTCGTCCGTCCACCCCATGGCGCTGGCCTCGCCGTTCTTCCGCGATTTTGAGCTGGCCCGCCGGGTGGATCTGGTGGTTCCGGAACTTTCTTTTGGATCACCGCTCGACGGCGGCCGCGCCGCCCTCGCGTACCGCTCCCTGGACCGGACAGCTGACGGACTGGCGCAGGACGGCCCCGCGTACCGGCACCTGATGCGCCCGCTCGTGAGCCGCATCGACGGCGTCATGGACTTCACCCAGCACCAGCTCCTGCGGATGCCCCGGGATCCGCTCGCGGCACTCCTCTTTGGTCTCAGGACGCTTGAGCAGGGATCGCCGCTGTGGAATGCCAGGTTTCGGGAGGACCTCGTGCCCACGCTGCTCAGCGGAGTCGCAGCGCATGCGGTATCGCACCTTCCGTCGCTGGCGGCTTCGGCTGCCGGGTTGATGCTCACCGCGCTGGCACATGCTCAGGGATGGCCAATTCCTGTTGGCGGATCAGCCTCCATCGCGGCAGCACTCGCGGCGGACATCAAAGCCCATGGTGGAACGATCCACACAGGAACACCAATAGACAACATCAAGGACCTTGGTGCCCCCCGTGCCATTCTCCTGGACGTCGCCCCACGGGGACTGGTGAACCTGGCAGGCACGCATCTCCCCACGGCATACCGGCGGGCCCTGGAATCCTTTCGCTATGGCAACGGTTCCTGCAAAGTGGATTTCATCCTCTCCGGTCCTGTCCCATGGGCGGCCGGTGAACTGGCAGAAGCGGGGACTGTGCACGTGGCAGGAACGCGGGCCGAGCTTGCTCTCGCGGAGAACGAGGTTTCGGCTGGCAGGCATCCCGAACGGCCGTACGTGCTTGCGGCGCAGCCCTCGCCGTTTGACAGCGGCCGGGCGCCGGCAGGCAGGCACATTCTCTGGACGTACTGCCATGTGCCGGCCGGATCAGACCGGGATATGGGCGAGGCGGTCACCGCCCAGTTGGAGAGGTTTGCTCCCGGATTCCGCGACGTGGTGGTCCAGACTCATGTGACAACGGCCGCCGGACTTGCCAGGTACAACAGGAACTATGTTGGTGGCGACTTTAGCGCCGGCGTCATGGACGTGCGCGGATTGCTGCAGCGGCCTGTGGTTTCCCCCGTACCATGGCGGACACCCTTGCGCGGGATCTATCTCTGTTCCTCTTCCACGCCTCCGGGCCCGGGTGTCACCGGCATGCCCGGATTCTTCGCAGCAAAGTATGCACTAAAGGACATATTCGGGCTGCCCGTCCCGCACCTTGGCCTCTGAMPDVAVVGSGPNGLAAAAVMARAGLSVEVYEAADTFGGGTRTVELMQPGHFHDVCSSVHPMALASPFFRDFELARRVDLVVPELSFGSPLDGGRAALAYRSLDRTADGLAQDGPAYRHLMRPLVSRIDGVMDFTQHQLLRMPRDPLAALLFGLRTLEQGSPLWNARFREDLVPTLLSGVAAHAVSHLPSLAASAAGLMLTALAHAQGWPIPVGGSASIAAALAADIKAHGGTIHTGTPIDNIKDLGAPRAILLDVAPRGLVNLAGTHLPTAYRRALESFRYGNGSCKVDFILSGPVPWAAGELAEAGTVHVAGTRAELALAENEVSAGRHPERPYVLAAQPSPFDSGRAPAGRHILWTYCHVPAGSDRDMGEAVTAQLERFAPGFRDVVVQTHVTTAAGLARYNRNYVGGDFSAGVMDVRGLLQRPVVSPVPWRTPLRGIYLCSSSTPPGPGVTGMPGFFAAKYALKDIFGLPVPHLGLNANANANANA
D1-29_047101467hypothetical proteinATGCAGGAGACCAGACCGCCGGCGAACCGACGACGCACCCGGCTGGTGGTTCCAAGCCGCAGCGACCTGCTGCTGAGGAACTTCACCGAGCTGATCGGTGGACCAATGGGAACCCGTTCGGCCCCCGGAGTTGTTTCACCAGGGATATTTACGGTGGAGCGGGTGCTGATCATCCTGACGGTCATCGCCGCGTTGGCGGGTATTGCCATCAAAGGCTACTGCCGCGCCAACGGGTGGGAGTCCCCCAGCCAGTTTTACGCGACGTGCTACTCCGACTTCCCTGAACTCTTCCGTAACCGCGGCCTTGGGGAGGGGACGTTTCCATTCTTCAGCCAGGGAAGCCTCTTTGAGTACCCGGTCCTGATGGGCCTGATCGCCGGAGCAACAGCCCTTTTGGTTCCCGGCCAGGGGGTCAGCGATGACCGCATCCTGGGCTATTACGACATCAACGCAACCCTGATTGCCGCTGTCTGGATCGTCACCGTGCTGGCTACTGCACGAATGTCGAGCCGTCGCCCTTGGGATGCGGCGATGGTGGCGCTGGCCCCTGGAATCGTCCTCGCCGGGACCATCAACTGGGACATGTGGGCTGTGGGAATGCTGGCCCTGGGAATGTACTTCTTTTCGAAGGAACGGCTGCTGATTGCCGGGGTCCTCATGGGGCTGGGCACGGCAACGAAGGTTTATCCCGTGCTGATCTTCGGTGCGATTCTGCTTCTCGCACTGCGCACAGGCCGGATCAGGGTGTTCCTGGTGACCGCCGGGGCGGCACTGGTGTCATGGCTCGCGGTCAACGTTCCCATCGCGGCAATGAACCCCTCCGGCTGGCAATACTTTTACCAGTTCACGGAAGACCGGCCGGCCGGTTACAGCTCGCCGTGGTTCGCCTACAACCTGGTGGCGGAAAGGCTCCGCTGGCGGATCCTGGACGCCGAGAGCATCAACGCCCTGGCCCTGAACATTTTCGTGCTGGCCTGCATCGGGATAGCTGTGGTGGCACTGACGGCGTCGCGGCGGCCACGGATAGCGCAGCTGGCCTTCCTGATTGTGGCGGCGTTCATCCTCACCAACAAGGTCTACTCCCCCCAGTTTGTGATCTGGCTAATCCCCCTCCTGGCCCTTGCAAGGCCCAGATGGCGGGATTTCCTGATCTGGCAAGGCATTGAAGGCCTGCACTGGGCGGCGATCTGGATGTACCTCGGGCAGGTGACCAGCAATGGGCCCTCGCAGCACAATATAGACATGCCCTACTATGTTTTCGCCGTAGCGGCTCATATGCTGGCGATGGCATATCTTATGTTCAGGGTGGTGTGGGACATTTACGAGCCTACGTACGATCCCATCCGCCGGCATGACCTGGATGACCCCCACGGAGGTCCTTTTGACGGGGCTCCCGACTGGCTGAGGATCGCTGTAGCCCGGCCGGCCGAGTCTGTCCTTCCCTGGAGGGCGAGGAGCCATGCCTGAMQETRPPANRRRTRLVVPSRSDLLLRNFTELIGGPMGTRSAPGVVSPGIFTVERVLIILTVIAALAGIAIKGYCRANGWESPSQFYATCYSDFPELFRNRGLGEGTFPFFSQGSLFEYPVLMGLIAGATALLVPGQGVSDDRILGYYDINATLIAAVWIVTVLATARMSSRRPWDAAMVALAPGIVLAGTINWDMWAVGMLALGMYFFSKERLLIAGVLMGLGTATKVYPVLIFGAILLLALRTGRIRVFLVTAGAALVSWLAVNVPIAAMNPSGWQYFYQFTEDRPAGYSSPWFAYNLVAERLRWRILDAESINALALNIFVLACIGIAVVALTASRRPRIAQLAFLIVAAFILTNKVYSPQFVIWLIPLLALARPRWRDFLIWQGIEGLHWAAIWMYLGQVTSNGPSQHNIDMPYYVFAVAAHMLAMAYLMFRVVWDIYEPTYDPIRRHDLDDPHGGPFDGAPDWLRIAVARPAESVLPWRARSHANANANANANA
D1-29_04711144hypothetical proteinATGATCAAGAAGATCCAAAAGGCACTGTTTTCCCGGCGCAAGCCCATCCGTGAACAACCCCGTGAGTTCAACGCGGAACTGTTGAACGCACACCGTGAGTACGTTTTCTTACTGATGCACCAGCAGATGCGCGGCCTGAACTGAMIKKIQKALFSRRKPIREQPREFNAELLNAHREYVFLLMHQQMRGLNNANANANANA
D1-29_04712585gpm2COG0406Acid phosphataseGTGAGCATCCCGATGATTGCGCCCCGACCCCAGCTCTGGATCCTGCGCCACGGCGAAACCGAGTGGTCCAAGAGCGGCCAGTACACAGGCCTGACCGACCTGCCGCTGACCGTGGAGGGTGAACAGCAGGCCGTTGAAGCACGCAAGGTCCTGGACCCGGTGGACTTTGACCTGGTGCTGACGTCGCCCCTGCGCAGGGCCCGCCGCACTGCTGAACTGGCGGGCTTCCCCGACGCCCAGCACGAACCCCTCGCCGTGGAATGGAATTACGGCGACTATGAAGGTGTCAGCTCTGACCTGATCCGCAAGGACAACCCTGACTACCTGATCTGGACGCACGGGGTGCCCAATGGGGAGACCCTGGACGAGGTTGCTGCCCGAGCGGACAAGATTGTGGCCAGGGTCCTCGAATCAGGCCTGGACAATGTGCTGATTGTGGCGCACGGTCATTTCTCCCGAATCCTGACGGCACGCTGGCTTGAACTTCCGCCCAGCGAAGGCCGGCATTTCATTCTGGGAACAGCAAAAGTCTGCACCCTGGGCTGGGACAAAAAGACCCCCGCCATTGTCCGCTGGGGACTCTAAMSIPMIAPRPQLWILRHGETEWSKSGQYTGLTDLPLTVEGEQQAVEARKVLDPVDFDLVLTSPLRRARRTAELAGFPDAQHEPLAVEWNYGDYEGVSSDLIRKDNPDYLIWTHGVPNGETLDEVAARADKIVARVLESGLDNVLIVAHGHFSRILTARWLELPPSEGRHFILGTAKVCTLGWDKKTPAIVRWGLPGPT0017735_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810NANA
D1-29_047131509ccaCCA-adding enzymeATGGCGCACGCACATCACAAGACTGATACCCACACCGTCGACTTCCAGGTGGACCCGGTGGTCCTGGAGTTGGGGCAGCGCTTTGTCGACGCCGGACATGAGCTCTCGCTGGTGGGCGGCCCGGTGCGGGACCTCTTCTTGGGGCGGACATCACCGGACCTTGACTTCACCACGGACGGCACGCCGGACCAGACGGTGGCCCTGATCAAGAAATGGGCCGACAACTACTGGGAAATCGGCCGCGCCTTTGGAACGATCGGAATGCGCAAGGCAGGCTTCCAGATCGAGATCACTACCTACCGCGCCGAAGCCTACGACCCGGAATCCCGCAAGCCCGTAGTGGCATTTGGATCGTCACTGACGGATGACCTGCTGAGGCGCGACTTCACCATCAATGCCATGGCGCTGCGGCTGCCCAGCTTGGAGCTCGTTGACCCGTTCGGCGGAGTCCGGGACCTGCATGCTTCTGTCCTTGCCACTCCGGGCGCGCCCGAGTCATCCTTCTCCGACGACCCCCTCCGGATGATGAGGGCGGCCAGGTTTGCATCGCAGCTCGGCATTTCAGTGCACGACGACGTTCGCTTGGCCATGAGCCAAATGGCCGAACGGATTGCCATCATTTCCGCGGAACGCGTCCGTGATGAGCTCATCAAGCTGATCTCCGGCGCCCACCCCCGCGTGGGCGTGGACCTGCTGGTGGACACAGGACTGGCGGAGTTCGTGCTGCCGGAAGTGTCAGCTTTGCGGCTTGAATCCGATGAGCATCACCGCCACAAGGATGTCTACCAGCATTCCCTGCAGGTGCTGGAACAGGCTACAGAGCTGGAAACAGGGCCGGACGGTGCCGTTCCCGCCCCGGATTTTGTGCTGCGCTTCGCTGCACTGATGCACGACGTCGGCAAGCCGGCTACGCGGCGCTTTGAACCGGGCGGCGCGGTCAGCTTCAGGCACCACGACATGGTGGGGTCAAAGCTCACCGCCAAACGGATGAAGGCGCTCCGCTTCGACAATGACACCATCAAGGCCGTGGCCCGCCTGGTGGAGCTGCACATGCGCTTCTATGGCTATGGCGAAGCCGGTTGGAGCGACTCCGCCGTTCGGCGCTACGTGACCGACGCCGGCCCGCTCCTGGAACGGCTCCACCGGCTGACCCGCTCGGACGTCACCACGCGCAACCAGCGCAAGGCGGAGCGGCTGGCCTTTGCCTATGACGACCTTGAAGCCAGGATCGCCACCCTGCGTGAGCAGGAGTCCTTGGATGCTGTGCGCCCCGACCTTGACGGGGCACAGATCATGGCCATCCTGGGGCTCAAACCAGGACCTGTTGTGGGCCGTGCCTATAAGTTCCTCCTTGAGGAACGGATGGAAAACGGCCCCCTGGATCCCGACGATGCAAAGTCCAGGCTGCTGGAGTGGTGGGCGGACCAGCCGGAATCAACACCGCCTGCACCCGAGACCGGCATGTCCCCTGCAAATGTGGAACTCTCCCCCACTGAGGAGCCCAAGTGAMAHAHHKTDTHTVDFQVDPVVLELGQRFVDAGHELSLVGGPVRDLFLGRTSPDLDFTTDGTPDQTVALIKKWADNYWEIGRAFGTIGMRKAGFQIEITTYRAEAYDPESRKPVVAFGSSLTDDLLRRDFTINAMALRLPSLELVDPFGGVRDLHASVLATPGAPESSFSDDPLRMMRAARFASQLGISVHDDVRLAMSQMAERIAIISAERVRDELIKLISGAHPRVGVDLLVDTGLAEFVLPEVSALRLESDEHHRHKDVYQHSLQVLEQATELETGPDGAVPAPDFVLRFAALMHDVGKPATRRFEPGGAVSFRHHDMVGSKLTAKRMKALRFDNDTIKAVARLVELHMRFYGYGEAGWSDSAVRRYVTDAGPLLERLHRLTRSDVTTRNQRKAERLAFAYDDLEARIATLREQESLDAVRPDLDGAQIMAILGLKPGPVVGRAYKFLLEERMENGPLDPDDAKSRLLEWWADQPESTPPAPETGMSPANVELSPTEEPKNANANANANA
D1-29_04714549hypothetical proteinATGGCCCATCCCGTACCGAGCGCTCCCGGCAGGAGGACAAACCCACCGTTGCCGTCGGCAATCGGTGCCCACGTCGCGCCTGCGCAGCATTCGGCGCCGGCATCGCTGCCAACCGTTGAGGAAATTTCCGCCGGGGGCGTTGTGGTGGACACGTCCGACGCCGAACTCCGGGTTGCGATCATTGCCCGCCTGAACAGGGGCGGACGTTTGGAGTGGTGCCTGCCGAAGGGTCATCCGGAGGGCAAGGAGAACAACGAACAGGCCGCAGTCCGCGAGATCGCCGAGGAGACCGGCATTGACGGCCGGATCCTTGCTCCGCTGGGCAGCATCGACTACTGGTTTACGGTCAGCGGCCACCGGGTTCACAAGACCGTGCACCACTACCTCCTGCGCGCCACAGGCGGTGAGCTCACCATTGAAAACGATCCCGACCAGGAAGCCGTTGACGTGGCGTGGGTGCCCATCCAGGAACTCGCGCGGAAGCTCTCCTTTCCCAATGAGCGGCGCATCGCGGATCTGGCCAGGGAAGTCCTGCCCGAGCACCTCTGAMAHPVPSAPGRRTNPPLPSAIGAHVAPAQHSAPASLPTVEEISAGGVVVDTSDAELRVAIIARLNRGGRLEWCLPKGHPEGKENNEQAAVREIAEETGIDGRILAPLGSIDYWFTVSGHRVHKTVHHYLLRATGGELTIENDPDQEAVDVAWVPIQELARKLSFPNERRIADLAREVLPEHLPGPT0021680_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021680-ndx1-K18445NANA
D1-29_047152106murJlipid II flippase MurJATGCCAGCTACCAACTTCCCCTCCGACAACGCAGGCAATGCCGGTGAAGCCGAGCCTGCTGCCGTCCAACCCAGCGAAACGCGCTCCAGTGCCATCATGGCTGTCGGAACGCTGATTTCCCGCTTCCTGGGATTCGGCAAAACCTGGATGCTCGGCATTGCCCTTGGACTCGGGTCCACTGTCAACGACACTTTCATCAACGCGAACAACCTTCCCAACCTGATCTTCCTGCTGGTGGCGGGCGGTGTCTTTAACGCCGTGCTGGTGCCCCAGATCATCAAGGCAAGCAAAGCGCCGGACAGGGGAGCGGACTACATCAGCCGGCTGCTGACCCTGGCCGTGCTCCTGCTGCTGGGGCTCACGGCCCTGGTGACCCTTGCGGCCCCCTGGGTGATTGAACTGACCACACAGGGTTACTCGCCCCAGCAGAAGTCGCTTGCGGTGGCTTTTGCGTTCTGGTGCCTGCCACAGATCTTCTTCTACGGCCTGTACGCGCTCCTCACCCAGGTCCTGAACGCCAACGGAGCCTTTGGCCCTGCCATGTGGGCCCCCATCCTGAACAACCTCGTGGCCATCGCGGGGCTGGGGATGTTCATCTGGATCTTCGGCGCGAACATCGCCAACCCGCACACCCTGGAAAACTGGGGTCCCTCACAGACCCTGCTCGTGGCGGGATTCTCCACCATCGGTGTGGTGGCCCAAACCGCCATCCTGCTGGTGCCTGTGTTCCGTCTGAAGCTGAAGCTGCGTCCGCGGTTTGGCTGGCGGGGAGTGGGACTTGGCCAGGCGGCAAAACTCAGTGTGTGGACGCTGCTGACTGCCGCCGTCGGACAGCTAGCCTTCCTGTATGTCATGCGTATCGCCACGATTCCCGGAGCGGAGCGGCTCAGGCTTGAGGCTGCCGGTGACCCGGCAGCAGACACGCTGCCCGGCAACGCCGTACTGGAGGTGGCCAGCCAGCTGTATCTGCTGCCGCACTCGATCATTGCCATCTCGCTGGCCACAGTCCTGTTCAACCGGATGACCCGTGCATCCCAGGACGGCAACCGGGATGAGCTCCGCGACGCACTGTCCCACGGGCTGCGCACCATGGCAGTCGCAACTGTTTTTGGCGCCTTGGCACTCTTCGCCCTGGCCGGCCCGCTGGGCATGTTCTTCTCCGGCGGCCCCCGGCAGGACGGTGTGATGCTGGCCCAGACGCTCACGCTCCTGGCCCTCAGTACGCCGTTTATGAGCGCTAACTTCATGATGTCCCGTGTCTTCTACGCCAACGAAGACGCCCGCACACCGTTCTATATCCAGCTTCTGCTGGCCCTTGTCTACGTTGTCGGTGCGTTCGCCATCCAGTTCCTGCCCGTCGGCCAGATCATCTACGCCATCGCCATCCTGTACATGATCGGCAACATCCTCTCCGTGGTCATCAGTGCCTACTTCCTGCGCCGGCTGCTGGGGCACCTTGACGGTCCTCGAATTGCCAATTCGTATATCCGGATGGGGTACGCCGCTCTGGGATCCGCCGTTGCGGGTGCCGGTGCGTTATGGCTGATGGGCAGTTACAGCCCGGACGGCTTTGCCTGGACCAATCAGGCAACCGCCTTGGTGACCCTCATCGTCGTCGGGCCTATCATGCTGGTGGTCTATGTCTTCCTGCTCAAAATCTTCCATGTGGCCGAGCTCCGTGATCTCCTCCGGCCCCTGCTGGGGAGGCTCGGTCGGGGTTCGTCCTCAGCGGAACCGGAAACTGCGGTGCCCGGCGGAGCGCCATCGTCGCCGGGAGCTGCTGCCGGGCAAGGAACGGGACGTTCGACGCCGGAACGCGCCACGGTCTCGGTGGACACCGGCCTGATACCCAGGATCTCCGGGGAATTCGACGCCGCCTCCTTCCGGGCCGGTCCGGTGCCCGAACGGTCACCAACGCCCGCCGTTCCTGTGGACCCCGAGACCGGATCTTCCTCTGGACCCCGCTACTTGCCCGCCGAAGACGTTCCCGGAACTGCACAGGGAAGCCTGCTTCGGGACGAGATCCCGCTGCCCGGCCGGCGGACTTTCCAGGGAAAGGCGGGCCACAACCCTCATTTCAAGCCCCGGCGGCCGCGGAAAAAGTGAMPATNFPSDNAGNAGEAEPAAVQPSETRSSAIMAVGTLISRFLGFGKTWMLGIALGLGSTVNDTFINANNLPNLIFLLVAGGVFNAVLVPQIIKASKAPDRGADYISRLLTLAVLLLLGLTALVTLAAPWVIELTTQGYSPQQKSLAVAFAFWCLPQIFFYGLYALLTQVLNANGAFGPAMWAPILNNLVAIAGLGMFIWIFGANIANPHTLENWGPSQTLLVAGFSTIGVVAQTAILLVPVFRLKLKLRPRFGWRGVGLGQAAKLSVWTLLTAAVGQLAFLYVMRIATIPGAERLRLEAAGDPAADTLPGNAVLEVASQLYLLPHSIIAISLATVLFNRMTRASQDGNRDELRDALSHGLRTMAVATVFGALALFALAGPLGMFFSGGPRQDGVMLAQTLTLLALSTPFMSANFMMSRVFYANEDARTPFYIQLLLALVYVVGAFAIQFLPVGQIIYAIAILYMIGNILSVVISAYFLRRLLGHLDGPRIANSYIRMGYAALGSAVAGAGALWLMGSYSPDGFAWTNQATALVTLIVVGPIMLVVYVFLLKIFHVAELRDLLRPLLGRLGRGSSSAEPETAVPGGAPSSPGAAAGQGTGRSTPERATVSVDTGLIPRISGEFDAASFRAGPVPERSPTPAVPVDPETGSSSGPRYLPAEDVPGTAQGSLLRDEIPLPGRRTFQGKAGHNPHFKPRRPRKKPGPT0024200_442DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
D1-29_047161677hypothetical proteinGTGTCCCACCCGATCGATGTTGGATCAGTGCTCGGCGGCCGCTACAAGGTCACAGCCACAGTATTGACTTCGCACGACCACGATCTGGTGCTGGACGGGGTGGACCAGGTTCTCAACCGTCCGGTCAGCATTCTGGTTGCCGGCCCGGAGAACACCGAACAGGTGGCCCAGAGCGCCCGGGAGGTAGCCACCGGGGAGCGCCCCGGCACCGTGCAGGTTTTGGACCTCGGCGTTACCGAGGCCGCGACCTACCTCATCACCAACCACACGTCCGCCGCGGACCTGCTGGACCTGGTGGTTGCCTCAAACCCTCCCTATGTTGAACCGTTCTTCACGGACACCCTGGGCAGCGAGATTTTCGGCCAGCCACGTTCCAACGAACCTGAACCGTACGACGACGAAGAAAACGTTGACGCCGGCTACATCAATTACTCGGGTGGCCACGAGAACCAGGCTGACCCCTACCGGTCAACTGCTCCCGTCGTTCCACCCAGGCCGCCTGCCCGTCCATCAGCGGCACCGGCTGCCGGTGTGGCGGGAGCAGCCGCCGCTGGAGCAGCAGCCGGCGCGGGAGCCGCCGGAGTGGGATCCGCTGGTATGGGAGCTGCCGGAAGGGCAGCGGTTGATGAAGCCAAGGCCCGCAACCATGCCCCCGCGGCAGAACGCAGCGCCGCTGATTCGCTGGCATCAAGCCAGGACCCGACGACACAACAACCGCTGCAGTCATCAGGCCGGCAGGCCGAGGCTCTTGGTTCGGGGACGGCCGGGTCCGGCGATGCTCAAGGGCCGGGGAAGCCGAAGGTATCACTGTGGTCCGAGGAGGACTACGGCTATGACAATGGGGACCAGGACGACCTGCATGACGTCGCTGCCGATTCCGGCCAGCGCCGGCAGCCCGGCTCCGGCGAATCCCCGCACGCAGACCGTTCCGCCAAGAAGTTTCCTGCATTTTCGCGGTCCACGGCCGGCGTTTCGCCGGCCTCCGTGCCGCCTTCCACCTCGGGACGGGACTATGACTCCGAGGAGGAGCCTGAGCGGGAACCACGTTCAATGCGCTGGCTGGTGGGCGGACTCCTGGCTCTTGTACTGATTGCCGGCCTGGTGTTTGCAGTCACCAATCTTGGCAGCCTTTTCACCACACCGCAGGCAACGTCCACCGACGCGACCACGTCATCCCCGTCCGATGCCCCTACCTCCGCGCCAACACAGAGTTCAGCAGCTCCCGCAGCACCCCCCGCCATTGAAGGCGTCACCCGTCAGGGTGACTTCGACTTCGCGGCCACTTACGACGTCGATCTGGTCAAGGCCTATGACGGGAATGCTGCCAGTTACTGGTCGGACATGGAGTTCGCCACGGAGAACTGGGGCGGGCTTTCGCCCAACGGTGTCCCGTTGTTCATCAAACTCAAGGCAGAGGCGCCGGTCTCATCCGTCACCCTGACCCAACTGGGCGCCTCTGGCGGCAACGTCAGCGTCTACACCAATGACCGTCCTTCCTTGGACGGCGCCAAGCTGGTGGGGACCAACAGCTTCACTTCCACAGACCTGACCATGCCTCTTGCCCAGCCTGTCGAATCGCAGTACGTCATTGTATCCATCAAGAGCCTGCCCAGGCTGGCCGCGCCGAAGACCCGCTACGGCTACGGAATCCGGCTGGCCGAAATCAAGGTCCAGTAGMSHPIDVGSVLGGRYKVTATVLTSHDHDLVLDGVDQVLNRPVSILVAGPENTEQVAQSAREVATGERPGTVQVLDLGVTEAATYLITNHTSAADLLDLVVASNPPYVEPFFTDTLGSEIFGQPRSNEPEPYDDEENVDAGYINYSGGHENQADPYRSTAPVVPPRPPARPSAAPAAGVAGAAAAGAAAGAGAAGVGSAGMGAAGRAAVDEAKARNHAPAAERSAADSLASSQDPTTQQPLQSSGRQAEALGSGTAGSGDAQGPGKPKVSLWSEEDYGYDNGDQDDLHDVAADSGQRRQPGSGESPHADRSAKKFPAFSRSTAGVSPASVPPSTSGRDYDSEEEPEREPRSMRWLVGGLLALVLIAGLVFAVTNLGSLFTTPQATSTDATTSSPSDAPTSAPTQSSAAPAAPPAIEGVTRQGDFDFAATYDVDLVKAYDGNAASYWSDMEFATENWGGLSPNGVPLFIKLKAEAPVSSVTLTQLGASGGNVSVYTNDRPSLDGAKLVGTNSFTSTDLTMPLAQPVESQYVIVSIKSLPRLAAPKTRYGYGIRLAEIKVQNANANANANA
D1-29_04717957trxB_4COG0492Thioredoxin reductaseGTGAGCAACGCAGAAAACGCCGCGTCCGAAGTACGTGATGTCATCATCGTCGGCTCTGGCCCGGCTGGTTACACGGCAGCTGTCTACACAGCCCGTGCCAACCTGAAGCCCTTGCTGCTGGCGGGTTCTGTCACGGCCGGTGGCGAACTGATGAACACCACTGACGTCGAGAACTACCCTGGGTTCCCAGAGGGCATCATGGGTCCGGACCTCATGGAGAACTTCGAAAAGCAGGCTGTCCGTTTCGGAACCGAAATCCAGTTTGAGGACGTCACGGACCTACAGCTCAACGGCGACATCAAGACGGTAACCATCGCCACGGGGGAGTCCTTCCAGGCACGGGCCATCATTCTCTCGACCGGGTCCGCTTACCGGGAACTGGGATTGCCTAACGAGAAACGGCTTTCCGGTCACGGAGTCAGCTGGTGTGCAACCTGCGACGGTTTCTTTTTCAAGGACCAGGACATCGCCGTTATTGGAGGCGGAGACTCGGCTATGGAAGAGGCCCTGTTCCTGACCAAGTTTGCGAAGTCGGTCACGGTTGTTCACCGCCGCGATTCACTGAAGGCCTCCAAGATTATGGCCGACCGCGCCCTGGCTCATGAGAAGATCCGCTTTGTCTGGAACAGCACAGTGGACGACGTCATCGGAGACAGCAAGGTCACTGGCCTCAAGATCAAGAACCTCCTGGACGGTTCCGTTTCAGATCTCGCTGTGACTGGGGTGTTTGTGGCGATCGGAAACGATCCCCGGACTGAACTGGTCAAGGACATCCTGGAGATCACTCCGGCCGGCACCATCGCAGTGGAGGGCCGCAGTTCCAAAACGAGCCTTCCCGGCGTCTTCGCCGCCGGCGATGTAGTTGACCCCACCTACCGTCAGGCCATCACCGCCTCCGGTTCGGGGTGCGTTGCCGCCATCGATGTAGAACACTACCTCGCAGACCTTCACGCATAAMSNAENAASEVRDVIIVGSGPAGYTAAVYTARANLKPLLLAGSVTAGGELMNTTDVENYPGFPEGIMGPDLMENFEKQAVRFGTEIQFEDVTDLQLNGDIKTVTIATGESFQARAIILSTGSAYRELGLPNEKRLSGHGVSWCATCDGFFFKDQDIAVIGGGDSAMEEALFLTKFAKSVTVVHRRDSLKASKIMADRALAHEKIRFVWNSTVDDVIGDSKVTGLKIKNLLDGSVSDLAVTGVFVAIGNDPRTELVKDILEITPAGTIAVEGRSSKTSLPGVFAAGDVVDPTYRQAITASGSGCVAAIDVEHYLADLHAPGPT0013060_5761DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
D1-29_04718327trxACOG0526Thioredoxin 1ATGAGCAACGCAAAAGACGTAACGGATGCAAGTTTCGGCAGTGATGTACTGTCAGCCGACAAGCCGGTCATCGTGGACTTCTGGGCGGAATGGTGCGGCCCCTGCCGCAAACTGGGACCCATTCTCGACGAGATCTCGGTTGAGTACGGCGAAAAGGTCAATGTCGTCAAGGTGAACGTGGACGACAATCCCGCCATCGCCGCAGAGTACGGAATCACATCAATTCCCGCCGTTTACCTTTTCCAGGACGGCCAGGTGAAGAGCACTGTGATCGGAGCCAAGCCCAAGCAGTTCTTCGAGAAGGAATTCGCAGACGTCCTGTCATAGMSNAKDVTDASFGSDVLSADKPVIVDFWAEWCGPCRKLGPILDEISVEYGEKVNVVKVNVDDNPAIAAEYGITSIPAVYLFQDGQVKSTVIGAKPKQFFEKEFADVLSPGPT0013055_6833DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
D1-29_04719861hypothetical proteinATGGAAGGTTTCGAGCCCTATCTGACCTTGACGCGCACGGTGAGGATGAAAGTATTGGGTCCGTGGTCCTGTTCAGGCCGCTGGTGCTATGACGGTCGAGCAAGACGTAAGTTCCATGGGCAACCTACGAATCAGGCATTGCCGCCGCCCAGTCCATCGGAATCCCGATGCTGGACTCCCGGGTGGTCAACTATCCGTTCTGGTGTTCGTGTTGACAATCAAAACCACCTTCGTGGAGTTGCCGAAGCCACCTTTGTGGATTGGCCTTTCCGTCAACTCTTCGTGTTTCACGTGAAACTTGGAGGTGTCAGCGGTGCACACCCGGCCACTAACAAGCGGCAATTAGTGGCGGGTGCTACCGTTTGGCGTCAGCCCGGTTCCGAGGGCTGGTTCTCAGTGAATCCGCACTACCAGAATCCTCACGTGGGGCGGCTATGGATGCAGTCCGGAGTACGAGCGCGGCATACGTTCCTGGTTTGCACTAACCATGCCTACTTAGTTTGGCTGGGCGGCTCTTGGTGTGAACTAGCCGAGCCAGCATTTGGGGGTTTCGGGCGGCTCTCTGCCGAAGTGGTGGCGCCGAGAATGGTGGACTTCAGAATGTCGATTTTGGGAAGAACGCGGTGGCGACTCTGTCACGGGATCGGGCCGCTTTCAACTGGAACGCGTTTAGCTGGGGACGGTAGACACCTGTCGATCCTGACCCAAGTTCCTCTGTGCGTATTTGGGAGTGACCATGACTGTAGACAGCGCCCTTGGGCGCCTCCCCCACGGTGTGATTCCGCTGCCGGACCAGTAGGTCTAGGTGAAGGAACGGCCAGGGCAGTGTTGAGTATAAACCGCACTGGAAGAGGAGCATAAMEGFEPYLTLTRTVRMKVLGPWSCSGRWCYDGRARRKFHGQPTNQALPPPSPSESRCWTPGWSTIRSGVRVDNQNHLRGVAEATFVDWPFRQLFVFHVKLGGVSGAHPATNKRQLVAGATVWRQPGSEGWFSVNPHYQNPHVGRLWMQSGVRARHTFLVCTNHAYLVWLGGSWCELAEPAFGGFGRLSAEVVAPRMVDFRMSILGRTRWRLCHGIGPLSTGTRLAGDGRHLSILTQVPLCVFGSDHDCRQRPWAPPPRCDSAAGPVGLGEGTARAVLSINRTGRGANANANANANA
D1-29_04720816hypothetical proteinATGAGCTCGATGGACAGGAGCGGACCAATCCGCGGCAAAGTTGTCCTTCTCGTTCGGGCCCTTCGCGCCTGCGACTCTTCCGCGTATCGTTCCTTCTGGCCGGCGTCCGTAACTGATCACCGCCTCAAAAGAATGCAGCTAGAGCCGACTGATGGACGCTCCGATGTGGGAATTGCGGGTTTCGTCAAAGTGTCCATACCCCGGAGGGAGTGCTGTAGGGGAGCAATTCTTACTCCACGAAGGCTCGGCAATCGGATCCTAACCGCACAGTCTTCGCTTTGGACGGAGGGCGCGCAGCCACTCGCAGTGTCGGCCCGACGGACGTCCGCGGTTTATCCCCAGATCTTATGCACACGTTTATCCACAGGCTTACCCACAGGTTTCCACACGCCCTTTGGCAACGGCCTGGTTGTCAGGTTGTCCCAAAATTTGTACGGCCCCATCAAGGCCATGCGGCCGCCAGATAATTTAGAGTGTAACGGAGCCCGGTATGAGCTTTTGCGCGGTCAAAAACACCACAAAATCGCCCGAGACCGGGGATTAGCTATCCTTCCGCAAGGCTCACCGCGCCGGTTAGGGCCGTTTCACGTGAAACATGATCGCAAGGTCGTCGGCCCACAAAAGACTTGGCTGTATCAGCATTGTTCTTTAGCGGACCCAGATAGTCTGCGCGACCCAACTCCACTCTCTTATCCCCAAAGTTATCCACAGCGATATCCACCGAGCTTTCCACTGCTTTATCCACCGCTTCGTCACCAGGCAGAGACTAGGGAGCAGCCGTCTCTGAGCTCGACTCGGTTCCTGGCTTCGGCTTGAMSSMDRSGPIRGKVVLLVRALRACDSSAYRSFWPASVTDHRLKRMQLEPTDGRSDVGIAGFVKVSIPRRECCRGAILTPRRLGNRILTAQSSLWTEGAQPLAVSARRTSAVYPQILCTRLSTGLPTGFHTPFGNGLVVRLSQNLYGPIKAMRPPDNLECNGARYELLRGQKHHKIARDRGLAILPQGSPRRLGPFHVKHDRKVVGPQKTWLYQHCSLADPDSLRDPTPLSYPQSYPQRYPPSFPLLYPPLRHQAETREQPSLSSTRFLASANANANANANA
D1-29_04721642hypothetical proteinATGATGCAGACACCTTGTAATTGGACGGCTATACCCATTGGATATCTCGGCGAACGCGGGGGGATGGGCGGCAACAGCCGGTCGGCGACTAACAGCGTGAGAGTCAGTGCAGAGGGCCCTGTCGACAAGACCGTTAATCAGGAGCGACCATCCTTGCGTCCTACCGATAGTTCCATGGGTCACCGGGCCGGCACTCTGCTGATACGACTGGCGAACACCAGGGTGCCTTTCAAGCCCCGTGCATTAGATGACCTTTCGTCACTCCCACTGATGCCCTTGAGTGGTCGTCTAAGGACCTGGGCACCTCGATGTATGAATCTTCACTGCACACGACATCCCGATACTTCTCCTTGGTTTCACATGAAACTACCTTGGCTACACACAGATGGCTGCTGGAGTTTCGCCCAGTTGATGGGTCAGCCTAGACACACATTCTCGCCTGAAGAATCAGGGCAAACAGTTGCGCAACATGGATGGTCAAACCGTCTTCGGCGAAGGAAGAGTACTTTAGGCGACGCGTGTCTGGGGGACCGCACACAGTGGATGCTGCGGCCGATCCGGCGCACTGTGGCATCTTCGGTCGGACAGCACCAGATAATGGCACCAGATACCGTCTCATTGGCTAGTGAACTTGTTTTCTGAMMQTPCNWTAIPIGYLGERGGMGGNSRSATNSVRVSAEGPVDKTVNQERPSLRPTDSSMGHRAGTLLIRLANTRVPFKPRALDDLSSLPLMPLSGRLRTWAPRCMNLHCTRHPDTSPWFHMKLPWLHTDGCWSFAQLMGQPRHTFSPEESGQTVAQHGWSNRLRRRKSTLGDACLGDRTQWMLRPIRRTVASSVGQHQIMAPDTVSLASELVFNANANANANA
D1-29_04722240hypothetical proteinGTGTTAGCCTCCACTGAAGTGGTCACGGGTTTCCTGTGCACGCCGATTAAGCAGAGCTGCGTCATCCATACCCCGCTGAAGGAGCCTGGTAATACGCCCTACTATTCCCACCGGATGGGGTGTGCCGCCCTACATCTGCTCCACTTGGGGGCATCGGTCATAGTTGGTAGAACCCAGCCCAGGCCGCTGAGCCGGTTTCACGTGAAACACCATGCCGGCCTACTGGCTAGCGTTTACTAGMLASTEVVTGFLCTPIKQSCVIHTPLKEPGNTPYYSHRMGCAALHLLHLGASVIVGRTQPRPLSRFHVKHHAGLLASVYNANANANANA
D1-29_047231287nocNucleoid occlusion proteinATGAGCGAAAAGCGACGGGGCCTAGGCCGCGGTCTTGGCGCACTCATTCCAAGTTCCGCCGCCGGCAGTGCGTCTGGCAACGGGGCCGCTGCTTCACGTCCAGTGGATCTCTTCTTTCCCGAAGGCCGTAAGAAAGTGATGCCTGACGAGGCTGAAGGCAACGGCGCCTCACGCGCTCCTTCAACTGAGCCGGACTCTTCGTCCGAGTCAACGATCTCCAAGCAGGCTCCGGCCGTAAAGTCATCCACGGCATCTGCGGATAAGCCCACCAGAAGGGCATCCGGCACAGAAACTGAAAAGCCAGCACTGAAAGGTCCAGCCAAGGGCCGTACGACTTCGGCTGCCGCCGGTGCGGATAAGGATTCGAAAGTATCCCCGACCCCCGCGGCCTCTGACTCAGTTCCGGCAGGCAGTGAGGATGTCACAGCTGACGATGCCGCTGTTGACAATGGCGTTGACCTCGTGGAGGTCCCGGGCGTGCGTTTCGCTGAAATCCCTGTTTCCGACATTCATCCCAACCGCAAACAGCCGCGCTCGGTCTTCGATGAGGACGACATGGCGGAGCTTGTCCACTCTGTTCGCGAAATCGGTGTCCTCCAGCCAATTGTGGTGCGTACTTCAACCGAAGAAGGTGGAGAACCCTATGAGCTGGTTATGGGTGAACGCCGCTGGAGGGCAGTGCAGGCCGCCGGGATGGCCACCATCCCCGCAATCGTTCGCGACACCACCGACGACGCCCTTCTTCGGGACGCCCTGCTGGAGAACCTCCACCGCAGCCAGCTGAACCCATTGGAAGAGGCAGCAGCGTACCAGCAGCTGCTGGAAGACTTTGGCACCACCCACGAGCAGCTTGCTGACCGCATCGGCCGTTCGCGTCCTCAGGTTTCGAACACGCTCCGGTTGCTCAAGCTCCCGCCCCTGGTGCAGCGCAGGGTGGCTGCCAGCGTACTCTCTGCCGGCCACGCCCGTGCTCTGCTGGCACTTCCTGATGCTGCCGCTATGGAACGGCTGGCTCAGAAGATCGTGGCCGAGGGTATGTCGGTGCGCGCCACCGAAGAAGCGGTGACCCTCTATCAGGATCCTGCTAAGCCGGCCAAGAACAACATTCCGCGTCCAGGAGCCCGCCACGAGCGCCTGGATTATCTGGCCTCTTCCTTGTCGGACCGGCTGGACACCAATGTGAAGATTTCCCTGGGTGTCCGGAAGGGCAGGGTAAGCATTGAATTCGCCAGCGTCGAAGACCTGAACCGTATTATGGACGTGCTTGCTCCCGGTTCGGATACCTGAMSEKRRGLGRGLGALIPSSAAGSASGNGAAASRPVDLFFPEGRKKVMPDEAEGNGASRAPSTEPDSSSESTISKQAPAVKSSTASADKPTRRASGTETEKPALKGPAKGRTTSAAAGADKDSKVSPTPAASDSVPAGSEDVTADDAAVDNGVDLVEVPGVRFAEIPVSDIHPNRKQPRSVFDEDDMAELVHSVREIGVLQPIVVRTSTEEGGEPYELVMGERRWRAVQAAGMATIPAIVRDTTDDALLRDALLENLHRSQLNPLEEAAAYQQLLEDFGTTHEQLADRIGRSRPQVSNTLRLLKLPPLVQRRVAASVLSAGHARALLALPDAAAMERLAQKIVAEGMSVRATEEAVTLYQDPAKPAKNNIPRPGARHERLDYLASSLSDRLDTNVKISLGVRKGRVSIEFASVEDLNRIMDVLAPGSDTPGPT0014815_1488DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497NANA
D1-29_04724876sojCOG1192Sporulation initiation inhibitor protein SojATGGACGATTCCAGTCCCATCGCCCGTGAGCTCGCCCATGAAACCAAGCGGCGGGAACGACTCCTCGGCCGGGAGCTTCTCAAGCCGGAAAAGACCAGGGTCTTTACCGTGTCCAATCAAAAGGGCGGCGTTGGGAAGACCACCACCACCGTCAATATTGCCGCTGCGCTGGCCGCCGCCGGACTGAATGTCCTGGTCATAGATATTGATCCCCAGGGCAACGCCTCCACCGCGCTTGGCGTCGAGCACCACGCCGACGTGGACAGCATCTACGACGTCCTCATCAACGACTTTCCCCTCGCCGACGTGGTGGCGCCCTGCCCGGACATCAAGAACCTGATCTGTGCCCCCGCTACCATCCATTTGGCCGGTGCAGAGATTGAGCTGGTGTCTCTGGTAGCCCGCGAACAGCGGCTTCGCCGCGCCATCGACGTCTATTCGAAGGCACGGGAGAAGAATGGCGAAGAGCGCCTGGACTACATCTTCATCGACTGCCCTCCAAGCTTGGGGCTGCTGACTGTCAATGCCTTCTGTGCCGCCGGTGAGGTGCTGATTCCTATCCAGTGCGAGTACTACGCGCTGGAGGGTTTGAGCCAGCTGCTGAAGAACATCGAGATGATCCAAAAGCACCTCAATGCCGATCTCGAGGTTTCCACCATCCTCCTGACAATGTATGACGGTCGGACCAACCTCGCCGCGCAGGTGGCGGCCGAGGTGCGCCAGCACTTCCCCAAGCAGGTACTCGGAGCAGTCGTACCACGCTCGGTCCGCATTTCCGAGGCACCCAGCTACCAGCAGACCGTCATGACGTACGACCCTTCCTCCAGCGGCGCCCTGTCCTATTTGGAAGCCGCAGCCGAAATCGCTGAACGCTAGMDDSSPIARELAHETKRRERLLGRELLKPEKTRVFTVSNQKGGVGKTTTTVNIAAALAAAGLNVLVIDIDPQGNASTALGVEHHADVDSIYDVLINDFPLADVVAPCPDIKNLICAPATIHLAGAEIELVSLVAREQRLRRAIDVYSKAREKNGEERLDYIFIDCPPSLGLLTVNAFCAAGEVLIPIQCEYYALEGLSQLLKNIEMIQKHLNADLEVSTILLTMYDGRTNLAAQVAAEVRQHFPKQVLGAVVPRSVRISEAPSYQQTVMTYDPSSSGALSYLEAAAEIAERNANANANANA
D1-29_04725651rsmGCOG0357Ribosomal RNA small subunit methyltransferase GATGGTTGACATCACGGCAGCAGAATTACTGGCGGCTGAGAAAATCTTCGGCGACCGCCTGGACCTTGCCAAGCGGTACGTTGAGCACCTGGCCACGTCCGGGACCGAACGGGGCCTCATCGGCCCGCGGGAGATCCCGCGCCTGTGGAGCCGGCATGTGCTCAACTGTGCAGTCATTGAAAGCGTCATCGCCCACGGCAGCCATGTGGCCGACGTCGGCAGCGGCGCAGGGCTTCCCGGTCTCTGTCTCGCCATCGCACGCCCTGATCTGGAACTCACCCTGATCGAACCCCTGGAACGCCGTGTTATTTGGCTCCAGGAAGTGGTTGATGACCTGGACCTGAGCAATGTCACCGTCATGAGGACGCGTGCCGAACTGGCCGTCGGCCTGGTTCAGGCTGATGTGGTCACTGCCCGTGCCGTCTCGGCGCTCAGCAACCTGGCAGGTCTCACCATCCCCCTTCTCGCCGGCAAAGGCGAGGTGGTGGCCATCAAGGGCCGCAGCGCGGGCGAGGAAATCGATAAGGCCGCCAAAGTAATTCGCAAGCTCGGCGGAATCGAGACGTCAGTGCTGACCGTCGGTGAACACCTCCTGGAAGAACCCACCACTGTGGTGCGGATCGTTGTAAACAAGTCGCAAAAGATTGCCTAGMVDITAAELLAAEKIFGDRLDLAKRYVEHLATSGTERGLIGPREIPRLWSRHVLNCAVIESVIAHGSHVADVGSGAGLPGLCLAIARPDLELTLIEPLERRVIWLQEVVDDLDLSNVTVMRTRAELAVGLVQADVVTARAVSALSNLAGLTIPLLAGKGEVVAIKGRSAGEEIDKAAKVIRKLGGIETSVLTVGEHLLEEPTTVVRIVVNKSQKIANANANANANA
D1-29_04726567hypothetical proteinATGTCAGCCGAGAGCACCGAACACGCCCTTTCCGACGAGGTTATTGACGATCAGGACGAGTCCGTTACCGACTCCGCTGCTTCCTCCAAAGGTTCCGCTGCCAGCCGTCTCGAAGAAGAAGGCGACGTTGCCGCCGACTACCTCGAAGAGCTCCTGGACATTGCTGACATTGATGGCGATATCGACATTGAGGTCCGGAACGGCCGGACCTACATCTCCATCGTTGCCGAGGAAGAGTCGGACGGCCTCGACAGCCTGGTGGGCGAAGACGGCGAGGTCCTGGAGGCACTGCAGGAACTGACAAGGCTTTCCGTTCTTTCCGCCACGGAGAACCGCTCACGCCTGGTCCTGGACATCAACGGCTACCGCCAGGAGCGCGCCGGGCACCTGCAAAAGATTGCAGAGGATGCCGCCGCTTCCGTCAAGGAAACCGGCAAAGCTGTGGCCCTGGAACCCATGAGCGCCTACGAACGCAAGATCGTCCACGATGCTGTTGCCGACCTCGGCCTGGTCAGCGAATCCGAGGGCGAAGGCGCAGACCGCCACATTGTTGTTTCCGCTGACTAGMSAESTEHALSDEVIDDQDESVTDSAASSKGSAASRLEEEGDVAADYLEELLDIADIDGDIDIEVRNGRTYISIVAEEESDGLDSLVGEDGEVLEALQELTRLSVLSATENRSRLVLDINGYRQERAGHLQKIAEDAAASVKETGKAVALEPMSAYERKIVHDAVADLGLVSESEGEGADRHIVVSADPGPT0024530_1367DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
D1-29_04727975yidC_2COG0706Membrane protein insertase YidCATGGACTTCTTTGAAACAATCATGTTTCCGTTCAAGTGGCTTGTGTCCGTCATTATGGTGGGCTTCCACGAAGGTCTGAGCACCATTGGGCTGCCGGAGGCCTCCGGCTGGACCTGGACGCTGTCCATCATCGGGCTGGTGCTGGTCATTCGTGCCGCCCTGATCCCAGTGTTCGTCAAGCAGATCAAAGCGCAGCGCGGCATGCAGCTGCTCCAGCCTGATCTGAAGAAGCTCCAGGACAAGTACAAAGGCAAGACCGACCAGCTTTCCCGCCAGGCCATGGCGCAGGAACAGATGGCGATGTACAAGAAGCACGGCACCAACCCGTTCTCGGCCTGCCTGCCCATGCTGATCCAGATGCCGTTCTTCTTTGCACTCTTCCAGGTCCTCTCCGGAATCAGTTCTGCCCGGGACCAGGGCAAGGGCATGGGGGCGATGAGCCACGACCAGGTGGTGCAGTTTGACGACTCCACCATCTTCGGGGCGCCGCTCTCGGCAACACTGCTGCACAATCCCGAGGGCAACGTTGTTGCCGTTTATGTTCTCTCGATTGTGATGATCCTGGCCATGACGGCGTCGCAGTTCATCACCCAAAAGCAGATCATGGCCAAGAACATGTCCGAAGAGGCCATGGCCAGCCCCTTTATGCGCCAGCAGAAGATGATGCTCTACATCCTGCCGATCGTCTTCGGCGTGGGTGGCATCAACTTCCCCATCGGTGTCCTTATCTACTGGACAACCACCAACCTCTGGACCATGGCCCAGCAGTTCTTCGTGATCCGCCGCATGCCGACGCCGGGATCCCCCGCAGCAAAGGCACTCGCCGAACGCCGTGCCGCCAAGGGCCTTCCGGCCCTGCCCATCCTGGGCGGGAAAAAGGCCGATGTTGAAGCCGAAGCTGCCGCCGCGGCTGCAGTTATCGAAGCCAAGGGACAGCGTGTCCAGCCACAACGTAAGAACAGGAAGAAGAAGTAAMDFFETIMFPFKWLVSVIMVGFHEGLSTIGLPEASGWTWTLSIIGLVLVIRAALIPVFVKQIKAQRGMQLLQPDLKKLQDKYKGKTDQLSRQAMAQEQMAMYKKHGTNPFSACLPMLIQMPFFFALFQVLSGISSARDQGKGMGAMSHDQVVQFDDSTIFGAPLSATLLHNPEGNVVAVYVLSIVMILAMTASQFITQKQIMAKNMSEEAMASPFMRQQKMMLYILPIVFGVGGINFPIGVLIYWTTTNLWTMAQQFFVIRRMPTPGSPAAKALAERRAAKGLPALPILGGKKADVEAEAAAAAAVIEAKGQRVQPQRKNRKKKPGPT0024530_4851DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
D1-29_04728390yidDPutative membrane protein insertion efficiency factorGTGCGTAAGGTAACTGCCGCCGTCGTCCGCTTCCTTCAGCCCGCTGTCCTGGGCAGGACTATCTGGAACCTGCCCCGCAATCTCCTCATTCTGCTGCTGATGGCTTACCGCAAGGTGATTTCCCCCTTGTACGGCCAGGTGTGCCGATTCTTTCCTTCATGCTCGGCCTACGCCCTTGAAGCGATCACCGTCCATGGCGCCGTCAAGGGAAGCTGGCTTGCCGTCCGCCGCCTTGCACGCTGCCATCCATGGAATGCCGGTGGTGTGGACCACGTCCCCGCCGGCCATCGGCACTGGCCTGAAAACCAGACCCCCACAATTGTTGTGCTGAACAATCCGGACAAGTACCTGGCTGCTCAGACTGATGGAGAAGGCCGCCTTGCGGCCTGAMRKVTAAVVRFLQPAVLGRTIWNLPRNLLILLLMAYRKVISPLYGQVCRFFPSCSAYALEAITVHGAVKGSWLAVRRLARCHPWNAGGVDHVPAGHRHWPENQTPTIVVLNNPDKYLAAQTDGEGRLAANANANANANA
D1-29_04729324rnpARibonuclease P protein componentGTGTTATATACGGCAGCCATTGCTGCCGACGAACCCAGCCGGATCGGGTTTATCGTTTCCAAAGGTGTCGGGAACGCTGTGGTCAGGAACCTCGTTAAGAGGAGACTGAGAGAAGCCGGTGCGGCCTCGCTTCGCGAGTACGGCACCGGGTTTGCCATAGTGGTCCGGGCGCTGCCCGCGTCCGCGGCCGCCAGCTGGGATCAACTGCTGGCGGATTACAACGCCGCACTGGAATCGAACATGAACCGGTTGGGCAGACGCCTTCCGCGGGCTGCTGCCAATGGTTCAACGGGTACAACACAGGAAGGGACACAGCGTGCGTAAMLYTAAIAADEPSRIGFIVSKGVGNAVVRNLVKRRLREAGAASLREYGTGFAIVVRALPASAAASWDQLLADYNAALESNMNRLGRRLPRAAANGSTGTTQEGTQRANANANANANA
D1-29_047301422dnaAChromosomal replication initiator protein DnaAATGACAGTAGACGAAGCCAACCATGCCAATACTGTCGGAAGTTCCTGGCGCAGGGTTGTCAGCCTGCTGGAACAGGACGACCGTGTTTCACCACGGCAAAGGGGCTTTGTCATCCTGGCGCAGGCCCAGGGTCTGATCGGCTCCACCCTCCTGGTCGCCGTACCCAATGAGCTCACCCGCGAAGTCCTCCAGACACAGGTCAAAGACGCGCTGGACGATGCACTCCACAACGTCTTCTCGGAAGATATCCGCTGCGCCATCGATGTGGACACCGACCTGGTGCCCATCCATGTAGAGCCGGAACCCGTCGTCGAGCCGTCCTTCACCTCGGACCAGCTGATCGAACAGAAGCCGCAGCCCATGCTGCCCAGCACCTCACACGAATTCGGCAGGCTGAATCCCAAGTACGTTTTTGACACTTTCGTGATCGGCTCGTCCAACCGGTTTGCCCATGCCGCGGCCGTGGCCGTGGCTGAAGCGCCGGCCAAGGCATACAACCCGCTGTTCATCTACGGCGATTCCGGACTCGGCAAGACGCACCTGCTCCATGCGATCGGCCACTATGCCCGCCGCCTCTACAGCGGGATCCGTGTCCGGTACGTGAACTCCGAGGAATTCACCAACGACTTCATCAACTCCATCCGCGATGACGAAGGCGCCAGCTTCAAGACCACGTACCGCAACGTGGATGTGCTGCTGATTGACGACATCCAGTTCCTGGCCGGCAAGGACCGGACGCTGGAGGAGTTCTTCCACACGTTCAACTCCCTGCATAACAACAACAAGCAGGTAGTGATCACCTCGGACCAGCCGCCCAAACTGCTGGCCGGCTTTGAGGACAGGATGAAGTCCCGCTTCGAATGGGGTCTGCTCACAGATATCCAGCCGCCGGAGCTCGAAACCCGCATCGCCATCCTGCGCAAGAAGGCCCTCAGCGAGGGGCTTTCAGCTCCCGATGATGCGCTTGAGTACATCGCCTCCAAGATTTCCAGCAACATCAGGGAGCTCGAAGGTGCCCTCATCAGGGTCACCGCATTCGCCAGCCTCAACCGGCAGCCAGTTGACGTTGCCTTGGCCGAGATGGTCCTGAAGGACCTCATCACGGACGACGGCGCCCAGGAGATCACCTCAAGCCAGATCCTCACGCAGACGGCCGACTACTTCAAGCTCAGCATGGAGGAACTCTGCAGCAAGTCCCGGACCAGGACCCTGGTCACCGCACGGCAAATCGCCATGTACCTGTGCCGTGAACTGACGGACATGTCGCTTCCCAAGATCGGCCAGGAGCTCGGCGGCCGCGACCACACCACCGTCATCCACGCGGACCGGAAGATCCGTGAGCTGATGGCCGAGCGCCGTGTGATCTACAACCAGGTCACCGAGCTCACCAACAGGATCAAACAGCAACAGCGCGACTCCTGAMTVDEANHANTVGSSWRRVVSLLEQDDRVSPRQRGFVILAQAQGLIGSTLLVAVPNELTREVLQTQVKDALDDALHNVFSEDIRCAIDVDTDLVPIHVEPEPVVEPSFTSDQLIEQKPQPMLPSTSHEFGRLNPKYVFDTFVIGSSNRFAHAAAVAVAEAPAKAYNPLFIYGDSGLGKTHLLHAIGHYARRLYSGIRVRYVNSEEFTNDFINSIRDDEGASFKTTYRNVDVLLIDDIQFLAGKDRTLEEFFHTFNSLHNNNKQVVITSDQPPKLLAGFEDRMKSRFEWGLLTDIQPPELETRIAILRKKALSEGLSAPDDALEYIASKISSNIRELEGALIRVTAFASLNRQPVDVALAEMVLKDLITDDGAQEITSSQILTQTADYFKLSMEELCSKSRTRTLVTARQIAMYLCRELTDMSLPKIGQELGGRDHTTVIHADRKIRELMAERRVIYNQVTELTNRIKQQQRDSPGPT0014800_1872DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313NANA
D1-29_04731102hypothetical proteinATGGGCTTAAAACCCTTAAGGCATCTGTGGATCAGCGAAAACGCCAAAATAGTTATCCCCATCCACACCCTGTTTAAAACCTGCGCCACCCACATTCCATGAMGLKPLRHLWISENAKIVIPIHTLFKTCATHIPNANANANANA
D1-29_047321125griRBeta sliding clamp GriRGTGAAGTTCAGAGTCGAACGGGACGTCCTGGCAGAAGCCGTCACCTGGACAGCCCGGTCGCTGTCTCCGCGGCCGCCGGTACCCGTGCTCTCAGGCCTGCTCCTCAAGGCTGAAGCAGGCACCGTTAGCCTTTCGAGCTTTGACTACGAGACCTCCGCACGGCTGGAGATCCCCGCGGACATCGCTGTTGAGGGCACCATCCTTGTCTCCGGCCGGCTCCTGGCTGACATCTGCCGCAGCCTTCCCTCCGCCCCGGTGGATGTGGAAACCGACGGAAACAAAGTCACGCTCACCTGCCGCCGCAGCAGTTTCCACTTGGCCACCATGCCGGAAGCCGAGTACCCGCCCCTGCCTGCACTGCCCACCATCAGCGGTACAGTCCCCGGCGATGCTTTCGCCCAGGCCGTATCCCAGGTGATCATCGCCGCCAGCAAGGACGACACCCTGCCGATTCTTACCGGCGTCCGGATGGAAATCGAGGACGATCTCATCACCCTCCTGGCCACCGACCGCTACCGGCTCGCCATGCGTGAAGTGCCGTGGAAGCCTGTAAATCCGGGCATCTCCACCAGCGCGCTGGTCAAGGCAAAAACCCTCAACGAAGTAGCCAAGACCCTGGGCAACAGCGGTGACATCAACCTCGCCCTCGCCGATGACGAGAGCCGGCTTATCGGCTTCGAAAGCGGCGGACGAACCACCACGTCCTTGCTGGTTGACGGCGACTATCCCAAGATCCGCTCGCTTTTCCCGGATTCCACGCCCATCCACGCGACTGTCCAGACGCAGGAGCTGGTCGAGGCAGTCCGTCGTGTGTCCCTGGTTGCCGAGCGCAATACCCCGGTCCGACTCGCTTTCACCGAGGGCCAGCTGCACCTCGACGCCGGCACTGGTGAAGACGCCCAGGCTTCCGAAGAGCTCGAAGCACAGCTTTCCGGCGAGGACATCACGGTGGCGTTCAACCCGCACTACCTGGTGGAAGGCCTGAGCGTGATTGAAACCAAGTTCGTCAGGTTCTCGTTCACCACAGCTCCCAAGCCGGCCATGATCACCGCCCAGGCGGAAGCTGACGGCGAAGACCAGGATGACTACCGCTATCTCGTCATGCCTGTCCGCCTCCCCAATTAGMKFRVERDVLAEAVTWTARSLSPRPPVPVLSGLLLKAEAGTVSLSSFDYETSARLEIPADIAVEGTILVSGRLLADICRSLPSAPVDVETDGNKVTLTCRRSSFHLATMPEAEYPPLPALPTISGTVPGDAFAQAVSQVIIAASKDDTLPILTGVRMEIEDDLITLLATDRYRLAMREVPWKPVNPGISTSALVKAKTLNEVAKTLGNSGDINLALADDESRLIGFESGGRTTTSLLVDGDYPKIRSLFPDSTPIHATVQTQELVEAVRRVSLVAERNTPVRLAFTEGQLHLDAGTGEDAQASEELEAQLSGEDITVAFNPHYLVEGLSVIETKFVRFSFTTAPKPAMITAQAEADGEDQDDYRYLVMPVRLPNNANANANANA
D1-29_04733885COG10236-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylatingGTGCATATCGGACTGATCGGCCTTGGCAAGATGGGTTTCAACATGCGCGAACGCCTGCGCAAGGGCGGGGTTGATGTAACCGGCTTCGACCGCAATCCGGACGTCACCGATGTCTCGTCCATGGACGAACTGATTGCAGCCGTCCCGTCACCCCGGATTATCTGGGTCATGGTTCCGGCCGGCGACATCACCAACGCGGTCATCACCGAACTTGGCGAAAAGCTCGACGCCGGCGACCTGGTAATCGACGGCGGCAACTCACGCTTCACGGAAGACCAGAAACACGGTGCAGCGCTGACCGAAAAGGGCATCCGTTTTGCCGACTGCGGTGTTTCCGGCGGTGTGTGGGGCCTGCAGAACGGTTATGGGCTGATGGCCGGCGGCGACGCCGCCGACATCGAGCGGGCACTGCCGGTCTTTGATGCACTGCGCCCTGACGGTGAACGGGCTGACAGCTTTGTCCATGTGGGAGGCGTCGGCGCAGGCCATTACGCCAAAATGGTCCACAACGGCATCGAATACGGCCTGATGCAGGCTTACGCCGAGGGCTACCAACTGCTTGCTTCCAAGGACATCATCAACGATTTGCCCGGCACGTTCCGCGCCTGGCAAAAAGGTACCGTGGTCCGGTCGTGGCTCCTCGACCTGCTGGTCAAGGCGCTCGATGAAGATCCGGGGCTGCAGAACATCGATGACTACGTCGAGGATTCGGGTGAGGGACGGTGGACGGTTGAAGAGGCGATCGCCAATGCAATTCCCGCGCCGGCCATAACGGCAGCCCTGTTTGCGCGCTTCGAGTCCCGCGAGGACAGCTCCCCGGCCATGAAAATGGTTTCGGCGTTACGCCACCAGTTCGGCGGGCATGCCACCCGCCCCGCCAAATAGMHIGLIGLGKMGFNMRERLRKGGVDVTGFDRNPDVTDVSSMDELIAAVPSPRIIWVMVPAGDITNAVITELGEKLDAGDLVIDGGNSRFTEDQKHGAALTEKGIRFADCGVSGGVWGLQNGYGLMAGGDAADIERALPVFDALRPDGERADSFVHVGGVGAGHYAKMVHNGIEYGLMQAYAEGYQLLASKDIINDLPGTFRAWQKGTVVRSWLLDLLVKALDEDPGLQNIDDYVEDSGEGRWTVEEAIANAIPAPAITAALFARFESREDSSPAMKMVSALRHQFGGHATRPAKPGPT0017385_4873DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
D1-29_047341203recFCOG1195DNA replication and repair protein RecFGTGTACCTACAGCACCTCTCACTGACTGACTTCCGCAGTTACGCCCAGGTGGACCTTGCCCTCGAACCCGGCGTCACCGTGCTGGTGGGCGCCAATGGGATTGGCAAGACCAACCTCATGGAGGCTATTGGTTACCTCGCCACGCTTAGCTCGCACCGCGTCAGCTCGGACGCGCCGCTGCTGCGGTTCGGCGTGGACCGCGCCCTGGTCCGGGCAAGGCTTGTCCGCGGTGGCCAGATTACTGTGCTGGAACTGGAAATCAACGCGGCCAGGGCAAACCGCGGCCGGATCAACCGCAGTAATCCTGTCCGCGCCCGGGATCTTCTGGGAATTTGCCAGACAGTCCTTTTTGCTCCGGAAGACCTCGCCCTGGTCAAGGGTGACCCGTCCAACCGGCGCCGCTTCCTTGATGAACTCCTGGTGAGCCTGATTCCCCGGCATTCTGCAACCCGGGGTGATTACGACCGAGTCCTGAAACAGCGGAATGCGCTCCTGAAATCGGCGCGGGCCGGGAAATTCACTTCCGCGCACGAGGCCACCCTGGATGTGTGGGACCAGCACATGGCGCGGGCAGCTGCAGAGCTGCTGCATGCGCGCCTGGAACTGGTGGACCGGTTGCGTCCACATCTGGCGAAAGCCTATGCACAGCTCACTGATGGCACCAAGGACGCTGGCGCCGTCTACCGTTCAACCCTTCAAAACCACATGGACGACGACGGCGCCCTGGCTTTTACTGCCGGTGCTGCGCCTGCCGCTTCGGCAGAGGCCGGCCAGGAAGATCTCCGGCAATTTTCCGTCGAAGAGCTCACCGAGCTCTACATCCGGGCATTCGCGGCTTCCCGCCGAAAAGAACTGGAACGCGGCATTTCCCTCGTGGGCCCGCACCGGGACGAGCTGGACCTCATCCTGGGGGAAGCACCGGCAAAGGGATACGCTTCGCACGGCGAAACCTGGTCCATGTGCCTGTCCCTGCGGCTTGCTTCCTACTACGTGATGCTGGACGACGCGCGGACCGGCGGGTCTGCTCCGATTCTTATCCTCGACGACGTTTTTGCCGAGCTGGATGTCCAGCGTCGGCGTAAACTTGCGGCAATAGTCTCCGGCGCGGAACAGGTCCTGGTGACCGCCGCCGTCGACGCCGATATTCCGGAAGAGTTGTCCGGCCGGCGGGTGAAGGTTATTCCGGGAGGAATTGATGAGTAGMYLQHLSLTDFRSYAQVDLALEPGVTVLVGANGIGKTNLMEAIGYLATLSSHRVSSDAPLLRFGVDRALVRARLVRGGQITVLELEINAARANRGRINRSNPVRARDLLGICQTVLFAPEDLALVKGDPSNRRRFLDELLVSLIPRHSATRGDYDRVLKQRNALLKSARAGKFTSAHEATLDVWDQHMARAAAELLHARLELVDRLRPHLAKAYAQLTDGTKDAGAVYRSTLQNHMDDDGALAFTAGAAPAASAEAGQEDLRQFSVEELTELYIRAFAASRRKELERGISLVGPHRDELDLILGEAPAKGYASHGETWSMCLSLRLASYYVMLDDARTGGSAPILILDDVFAELDVQRRRKLAAIVSGAEQVLVTAAVDADIPEELSGRRVKVIPGGIDENANANANANA
D1-29_04735558hypothetical proteinATGAGTAGGGACGACAGAAGCGGTCTTCAGCCCGGCCGCGATCCCGACGATATCGATGCACCGCAGGCAGCACTGAACAGGATGCGAGAGGCCGCGGCCGCGCGGGGAGAAATCCGCCGTAAAGCCCCCAAGCCCGGGGGTACGCCAAAGTCCAAACGGGGAATCAGCGATACCCGCGGCTTCAGCCAGTTCCACGCCACGGGGCGCGACCCACTGGGGTTGGGCAAAGTGGTGGGCCGGCTGGTGGCCGAGCGGGGCTGGACCTCTCCGGTGGCTGTCGGATCGGTGATGGCTGAGTGGGCAACACTGGTGGGACCGGAGATCTCGGCCCATTGCACCCCGGAGAGCTTCACCGATACAACGCTCCACGTACGGTGCGATTCCACGGCCTGGGCCACGCAGCTTCGGCTCCTGAGCATCAGTCTGCTGGAGAAGTTCCGCACCGAACTTGGGGACGGCGTTGTCACCAGCATCCAGGTGCTTGGTCCGTCCGCACCGAGCTGGCGCAAGGGCGGCCGCACCGTTAACGGACGCGGGCCCCGCGATACTTACGGATAGMSRDDRSGLQPGRDPDDIDAPQAALNRMREAAAARGEIRRKAPKPGGTPKSKRGISDTRGFSQFHATGRDPLGLGKVVGRLVAERGWTSPVAVGSVMAEWATLVGPEISAHCTPESFTDTTLHVRCDSTAWATQLRLLSISLLEKFRTELGDGVVTSIQVLGPSAPSWRKGGRTVNGRGPRDTYGNANANANANA
D1-29_047362091gyrB_2COG0187DNA gyrase subunit BGTGGCTAACGACAATACAGATACCCAGGCAGTGGAACTCGCACTTGAAGATGTCCCAACACCTGAGATGCCGACGGAAGCTGTGACACCGCGCGAATACGGCGCAAGTGACATCACTGTACTTGAAGGCCTGGAAGCCGTCCGGAAACGGCCCGGCATGTACATCGGCTCCACTGGCCTGCGCGGCCTCCACCACTTGGTGTACGAAGTGGTTGACAACTCTGTTGATGAGGCCCTGGCCGGATACTGCACGCACATCGAGGTAGTGCTGCAGGCGGATGGCGGCGTCAAGGTGGTGGATGACGGCCGTGGAATCCCGGTGGACATGCACCCCACTGAGCACAAGCCCACCGTCGAAGTGGTCATGACCATCCTGCACGCCGGCGGCAAGTTTGGCGGCGGCGGCTACGCGGTCTCCGGTGGACTTCACGGCGTGGGCATTTCGGTTGTTAATGCACTGTCCAGCCGCGTTGAGACAGAGGTCCGGCGGCAGGGACACGTGTGGCGGATGTCATTCGCCGACGGCGGCAAGCCGCAGGGCGGCCTGGTGAAGGGCGAAGAGACCGACACCACCGGGACCACCCAGACGTTCTACCCCGATGAGAGCATCTTCGAATCCACCGAGTTCGATTTTGAGACCCTCCGCTCGCGCTTCCAGCAGATGGCGTTCCTGAACAAGGGCCTCCGCATCACCCTCACCGACGAACGCGTGCCCGCTAAAAACGCCGTCGACGACGAAGACCTTGATCTTGACGCCGTGGTGACCGAAGGCGAAGTCACTGCGGATCACCGTACCGTGGTTTACCAGTACAACGACGGCCTGCTGGACTATGTAAAGCACCTGAACTCGGGCAAAAAAGTCGATGTTGTCCATGAGGACGTCATTGCCTTTGAAACCGAGGACACGGAGCGCCACATTGCCGTCGAGATGGCCATGCAGTGGACCAGCGCGTATTCGGAAAGCGTGCACACGTACGCAAACACCATCAATACGCATGAGGGCGGCACGCACGAAGAGGGTTTCCGCGCAGCCATGACGTCGCTCATCAACCGCTACGCGCGGGAGAAGAGCATCATCAAGGAAAAGGAAGACAACCTCACCGGCGATGACATCCGCGAAGGCCTGACTGCGGTTATTTCGGTGAAGCTCGCTGAGCCTCAGTTCGAGGGCCAAACCAAGACCAAGCTCGGCAATTCCGAGGTCAAGGGCTTTGTCCAGCGGGTGGTCACCGACCAGCTGGGCGACTGGCTGGAACGGAACCCCGGCCCGGCGCGGGACGTCATCCGCAAAGCGATTTCTGCAGCCCAGGCCCGTATGGCAGCACGCAAGGCCCGCGACAACGCCCGCCGCAAGAGTCCTTTGGAATCGTTCGGCATGCCGGGGAAGCTGTCCGATTGTTCCTCCAAGGATCCGGCCAAGTGTGAGGTCTACCTCGTGGAGGGTGACTCCGCCGGCGGCTCGGCCAAGCGTGGCCGCAACCCGGAAACCCAGGCCATCCTCCCGCTCCGCGGCAAGATCCTGAACGTTGAACGGGCCCGGCTGGACAAGGCCCTTGGTAACGCTGAGGTCCAGTCCATGATCACGGCGTTCGGCACGGGCATCGGCGAGGACTTCGACCTCAGCAAACTCCGGTACCACAAGATTGTGCTGATGGCTGATGCCGATGTTGACGGCCAGCACATCACCACGCTGCTGATGACGCTGCTTTTCCGGTACATGCGCCCGCTCATCGAGAACGGCTACGTGTACCTGGCCCAGCCTCCGCTGTACAGGATCAAGTGGTCCAACGCTCCGCACGACTATGTGTTTAGCGACAAGCAGCGCGATGCGATGCTGCTCTCCGGCCAGGCCGCCGGCCGCCGTATTCCAAAGGACAACGGGATCCAGCGCTACAAGGGCCTCGGGGAGATGGACTACACCGAACTGTGGGACACCACCATGGACCCGGACCACCGCACCCTGCTTCAGGTCACCATGGATGATGCACTGGCCGCTGACCAGATCTTCTCCGTGCTGATGGGCGAAGACGTGGAATCGCGCCGCAACTTCATTCAGCAGAACGCCAAGGACGTCAGGTTCCTGGATATCTGAMANDNTDTQAVELALEDVPTPEMPTEAVTPREYGASDITVLEGLEAVRKRPGMYIGSTGLRGLHHLVYEVVDNSVDEALAGYCTHIEVVLQADGGVKVVDDGRGIPVDMHPTEHKPTVEVVMTILHAGGKFGGGGYAVSGGLHGVGISVVNALSSRVETEVRRQGHVWRMSFADGGKPQGGLVKGEETDTTGTTQTFYPDESIFESTEFDFETLRSRFQQMAFLNKGLRITLTDERVPAKNAVDDEDLDLDAVVTEGEVTADHRTVVYQYNDGLLDYVKHLNSGKKVDVVHEDVIAFETEDTERHIAVEMAMQWTSAYSESVHTYANTINTHEGGTHEEGFRAAMTSLINRYAREKSIIKEKEDNLTGDDIREGLTAVISVKLAEPQFEGQTKTKLGNSEVKGFVQRVVTDQLGDWLERNPGPARDVIRKAISAAQARMAARKARDNARRKSPLESFGMPGKLSDCSSKDPAKCEVYLVEGDSAGGSAKRGRNPETQAILPLRGKILNVERARLDKALGNAEVQSMITAFGTGIGEDFDLSKLRYHKIVLMADADVDGQHITTLLMTLLFRYMRPLIENGYVYLAQPPLYRIKWSNAPHDYVFSDKQRDAMLLSGQAAGRRIPKDNGIQRYKGLGEMDYTELWDTTMDPDHRTLLQVTMDDALAADQIFSVLMGEDVESRRNFIQQNAKDVRFLDIPGPT0027710_1240DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
D1-29_047371116hypothetical proteinGTGCTTGGCCACGATCTCGCCGAGTTCATTGCTGATGATCTCGCGCTGGCGTTCCTCGGAGCCGAGGATGCTGTTGTACTCGGTGATCAGTGCTTCCAGTTCCGAGTGCCGGTCCTGGATTTTCTGGCGTTCCAGGGCGGCAAGGCGGCGGAGCTGCATGTCCAGGATGGCCCGGGCCTGCAGTTCGTCGATGTCCAGAAGCTGCATCAGCCCGTCGCGGGCGGCCTCCGTGGTGTTCGATGCCCGGATGAGGGCAATAACCTCGTCCAGCATGTCCAACGCCTTGAGGAGGGCGCGCAGGATGTGCGCCTCTTCTTCCGCCTTGCGCAGGCGGTAGCGTGTCCGGCGGGCAATAACGTCCATCTGGTGGGTCACCCAGTGACGGATGAACGCATCCAGGCTCAGCGTCCGGGGAACACCGTCCACGATGGCCAGCATGTTCGCGGAGAAGTTGCTCTGCAGCTCGGTGTGCTTGTAGAGGTTGTTCAGCACCACCTTGGCCACGGCATCGCGCTTCAGCACAATCACCAGGCGCTGGCCGGTGCGGCCCGAGGTCTCGTCCCGGAGGTCGGCAATCCCGGAGATCTTGCCGTCCTTGACCAGTTCGGCGATCTTGATGGCCAGGTTGTCGGGGTTGGCCTGGTACGGCAGTTCGGTGACCACCAGGCAGGTGCGCCCCTGGAGTTCCTCAACGTTGACCACGGCGCGCATGGTGACGGAGCCGCGGCCGGTCCGGTAAGCGTCCTCAATGCCCTTGTGACCCAGGATGGTGGCACCCGTGGGGAAGTCGGGCCCCTTAATCCGGAGCAGCAGTTCTTCGAGGAGTTCCTCGCGGCTGGCCGTCGGGTTGGCAAGATACCACTGGACACCGTCGGCCACCTCCCGCAGGTTGTGCGGCGGAATGTTGGTTGCCATTCCGACGGCGATCCCGGACGAACCGTTGACCAGCAGGTTGGGGAACCGCGCCGGCAGGATGGTGGGTTCCTGGTTCTTGCCGTCGTAGTTGTCCTGGAAGTCGACGGTTTCCTCGTCGATGTCGCGGACCATTTCCATGGCCAGCGGCGCCATCTTGGTTTCGGTGTACCGCGGGGCGGCTGCGCCGTCATTTCCGGGTGAMLGHDLAEFIADDLALAFLGAEDAVVLGDQCFQFRVPVLDFLAFQGGKAAELHVQDGPGLQFVDVQKLHQPVAGGLRGVRCPDEGNNLVQHVQRLEEGAQDVRLFFRLAQAVACPAGNNVHLVGHPVTDERIQAQRPGNTVHDGQHVRGEVALQLGVLVEVVQHHLGHGIALQHNHQALAGAARGLVPEVGNPGDLAVLDQFGDLDGQVVGVGLVRQFGDHQAGAPLEFLNVDHGAHGDGAAAGPVSVLNALVTQDGGTRGEVGPLNPEQQFFEEFLAAGRRVGKIPLDTVGHLPQVVRRNVGCHSDGDPGRTVDQQVGEPRRQDGGFLVLAVVVVLEVDGFLVDVADHFHGQRRHLGFGVPRGGCAVISGNANANANANA